diff --git a/flax_model/alphafold3/structure/cpp/mmcif_altlocs.h b/flax_model/alphafold3/structure/cpp/mmcif_altlocs.h new file mode 100644 index 0000000000000000000000000000000000000000..fab57817c38b62d96b3370d4b67cc4358656cc19 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_altlocs.h @@ -0,0 +1,51 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ALTLOCS_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ALTLOCS_H_ + +#include +#include +#include +#include + +#include "absl/types/span.h" +#include "alphafold3/structure/cpp/mmcif_layout.h" + +namespace alphafold3 { + +// Returns the list of indices that should be kept after resolving alt-locs. +// 1) Partial Residue. Each cycle of alt-locs are resolved separately with the +// highest occupancy alt-loc. Tie-breaks are resolved alphabetically. See +// tests for examples. +// 2) Whole Residue. These are resolved in two passes. +// a) The residue with the highest occupancy is chosen. +// b) The locations for a given residue are resolved. +// All tie-breaks are resolved alphabetically. See tests for examples. +// +// Preconditions: layout and comp_ids, alt_ids, occupancies are all from same +// mmCIF file and chain_indices are monotonically increasing and less than +// layout.num_chains(). +// +// comp_ids from '_atom_site.label_comp_id'. +// alt_ids from '_atom_site.label_alt_id'. +// occupancies from '_atom_site.occupancy'. +std::vector ResolveMmcifAltLocs( + const MmcifLayout& layout, absl::Span comp_ids, + absl::Span atom_ids, + absl::Span alt_ids, + absl::Span occupancies, + absl::Span chain_indices); + +} // namespace alphafold3 + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ALTLOCS_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_atom_site.pyi b/flax_model/alphafold3/structure/cpp/mmcif_atom_site.pyi new file mode 100644 index 0000000000000000000000000000000000000000..c3dd19e82ab549a03c6052e9c106e19307e61014 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_atom_site.pyi @@ -0,0 +1,15 @@ + + +from collections.abc import Callable +from flax_model.alphafold3.cpp import cif_dict + + +def get_internal_to_author_chain_id_map( + mmcif: cif_dict.CifDict +) -> dict[str,str]: ... + + +def get_or_infer_type_symbol( + mmcif: cif_dict.CifDict, + atom_id_to_type_symbol: Callable[[str, str], str], +) -> list[str]: ... diff --git a/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.cc b/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..6037fe08ba30d169047a7f6644f0a33cebfdc2e7 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.cc @@ -0,0 +1,83 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include + +#include "absl/container/flat_hash_map.h" +#include "absl/log/check.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" +#include "pybind11/gil.h" +#include "pybind11/pybind11.h" +#include "pybind11/pytypes.h" +#include "pybind11/stl.h" +#include "pybind11_abseil/absl_casters.h" + +namespace alphafold3 { +namespace { +namespace py = pybind11; + +// If present, returns the _atom_site.type_symbol. If not, infers it using +// _atom_site.label_comp_id (residue name), _atom_site.label_atom_id (atom name) +// and the CCD. +py::list GetOrInferTypeSymbol(const CifDict& mmcif, + const py::object& atom_id_to_type_symbol) { + const auto& type_symbol = mmcif["_atom_site.type_symbol"]; + const int num_atom = mmcif["_atom_site.id"].size(); + py::list patched_type_symbol(num_atom); + if (type_symbol.empty()) { + const auto& label_comp_id = mmcif["_atom_site.label_comp_id"]; + const auto& label_atom_id = mmcif["_atom_site.label_atom_id"]; + CHECK_EQ(label_comp_id.size(), num_atom); + CHECK_EQ(label_atom_id.size(), num_atom); + for (int i = 0; i < num_atom; i++) { + patched_type_symbol[i] = + atom_id_to_type_symbol(label_comp_id[i], label_atom_id[i]); + } + } else { + for (int i = 0; i < num_atom; i++) { + patched_type_symbol[i] = type_symbol[i]; + } + } + return patched_type_symbol; +} + +absl::flat_hash_map +GetInternalToAuthorChainIdMap(const CifDict& mmcif) { + const auto& label_asym_ids = mmcif["_atom_site.label_asym_id"]; + const auto& auth_asym_ids = mmcif["_atom_site.auth_asym_id"]; + CHECK_EQ(label_asym_ids.size(), auth_asym_ids.size()); + + absl::flat_hash_map mapping; + for (size_t i = 0, num_rows = label_asym_ids.size(); i < num_rows; ++i) { + // Use only the first internal_chain_id occurrence to generate the mapping. + // It should not matter as there should not be a case where a single + // internal chain ID would map to more than one author chain IDs (i.e. the + // mapping should be injective). Since we need this method to be fast, we + // choose not to check it. + mapping.emplace(label_asym_ids[i], auth_asym_ids[i]); + } + return mapping; +} + +} // namespace + +namespace py = pybind11; + +void RegisterModuleMmcifAtomSite(pybind11::module m) { + m.def("get_or_infer_type_symbol", &GetOrInferTypeSymbol, py::arg("mmcif"), + py::arg("atom_id_to_type_symbol")); + + m.def("get_internal_to_author_chain_id_map", &GetInternalToAuthorChainIdMap, + py::arg("mmcif"), py::call_guard()); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.h b/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.h new file mode 100644 index 0000000000000000000000000000000000000000..1f2104ecf0de171483b67370a91ff1acef0e0e28 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_atom_site_pybind.h @@ -0,0 +1,24 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ATOM_SITE_PYBIND_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ATOM_SITE_PYBIND_H_ + +#include "pybind11/pybind11.h" + +namespace alphafold3 { + +void RegisterModuleMmcifAtomSite(pybind11::module m); + +} + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_ATOM_SITE_PYBIND_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_layout.h b/flax_model/alphafold3/structure/cpp/mmcif_layout.h new file mode 100644 index 0000000000000000000000000000000000000000..51c67c528f60b71d009fd6ed9da199443bb5c5d4 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_layout.h @@ -0,0 +1,146 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_H_ + +#include +#include +#include +#include +#include + +#include "absl/status/statusor.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" + +namespace alphafold3 { + +// Holds the layout of a parsed mmCIF file. +class MmcifLayout { + public: + MmcifLayout(std::vector chain_ends, + std::vector residues, std::size_t model_offset, + std::size_t num_models) + : chain_ends_(std::move(chain_ends)), + residue_ends_(std::move(residues)), + model_offset_(model_offset), + num_models_(num_models) {} + + // Reads a layout from a valid parsed mmCIF. If a valid model_id is provided + // the offsets will select that model from the mmCIF. + // If no model_id is specified, we calculate the layout of the first model + // only. Therefore it is a requirement that each model has identical atom + // layouts. An error is returned if the atom counts do not between models. + static absl::StatusOr Create(const CifDict& mmcif, + absl::string_view model_id = ""); + + std::string ToDebugString() const; + + // Returns the start index and one past the last residue index of a given + // chain. A chain_index of n refers to the n-th chain in the mmCIF. The + // returned residue indices are 0-based enumerations of residues in the + // _atom_site records, and therefore do not include missing residues. + std::pair residue_range( + std::size_t chain_index) const { + if (chain_index > 0) { + return {chain_ends_[chain_index - 1], chain_ends_[chain_index]}; + } else { + return {0, chain_ends_[0]}; + } + } + + // Returns the start index and one past the last index of a given residue. + // A residue_index of n refers to the n-th residue in the mmCIF, not + // including residues that are unresolved (i.e. only using _atom_site). + std::pair atom_range( + std::size_t residue_index) const { + if (residue_index > 0) { + return {residue_ends_[residue_index - 1], residue_ends_[residue_index]}; + } else { + return {model_offset_, residue_ends_[residue_index]}; + } + } + + // If model_id was provided during construction then this is 1, otherwise + // it is the number of models present in the mmCIF. + std::size_t num_models() const { return num_models_; } + // The number of atoms in the chosen model. + std::size_t num_atoms() const { + return residue_ends_.empty() ? 0 : residue_ends_.back() - model_offset_; + } + // The number of chains in the chosen model. + std::size_t num_chains() const { return chain_ends_.size(); } + // The number of residues in the chosen model, not counting unresolved + // residues. + std::size_t num_residues() const { return residue_ends_.size(); } + + // Returns the first atom index that is part of the specified chain. + // The chain is specified using chain_index, which is a 0-based + // enumeration of the chains in the _atom_site table. + std::size_t atom_site_from_chain_index(std::size_t chain_index) const { + if (chain_index == 0) { + return model_offset_; + } + return atom_site_from_residue_index(chain_ends_[chain_index - 1]); + } + + // Returns the first atom index that is part of the specified residue. + // The residue is specified using residue_index, which is a 0-based + // enumeration of the residues in the _atom_site table. + std::size_t atom_site_from_residue_index(std::size_t residues_index) const { + if (residues_index == 0) { + return model_offset_; + } + return residue_ends_[residues_index - 1]; + } + + // One past last residue index of each chain. The residue index does not + // include unresolved residues and is a simple 0-based enumeration of the + // residues in _atom_site table. + const std::vector& chains() const { return chain_ends_; } + + // Indices of the first atom of each chain. Note that this returns atom + // indices (like residue_starts()), not residue indices (like chains()). + std::vector chain_starts() const; + + // One past last atom index of each residue. + const std::vector& residues() const { return residue_ends_; } + + // Indices of the first atom of each residue. + std::vector residue_starts() const { + std::vector residue_starts; + if (!residue_ends_.empty()) { + residue_starts.reserve(residue_ends_.size()); + residue_starts.push_back(model_offset_); + residue_starts.insert(residue_starts.end(), residue_ends_.begin(), + residue_ends_.end() - 1); + } + return residue_starts; + } + + // The first atom index that is part of the specified model. + std::size_t model_offset() const { return model_offset_; } + + void Filter(absl::Span keep_indices); + + private: + std::vector chain_ends_; + std::vector residue_ends_; + std::size_t model_offset_; + std::size_t num_models_; +}; + +} // namespace alphafold3 + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_layout.pyi b/flax_model/alphafold3/structure/cpp/mmcif_layout.pyi new file mode 100644 index 0000000000000000000000000000000000000000..82809ed9c17a0a5a0ffcefbd856f8259be97ba54 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_layout.pyi @@ -0,0 +1,18 @@ + + +from flax_model.alphafold3.cpp import cif_dict + +class MmcifLayout: + def atom_range(self, residue_index: int) -> tuple[int, int]: ... + def chain_starts(self) -> list[int]: ... + def chains(self) -> list[int]: ... + def model_offset(self) -> int: ... + def num_atoms(self) -> int: ... + def num_chains(self) -> int: ... + def num_models(self) -> int: ... + def num_residues(self) -> int: ... + def residue_range(self, chain_index: int) -> tuple[int, int]: ... + def residue_starts(self) -> list[int]: ... + def residues(self) -> list[int]: ... + +def from_mmcif(mmcif: cif_dict.CifDict, model_id: str = ...) -> MmcifLayout: ... diff --git a/flax_model/alphafold3/structure/cpp/mmcif_layout_lib.cc b/flax_model/alphafold3/structure/cpp/mmcif_layout_lib.cc new file mode 100644 index 0000000000000000000000000000000000000000..91ad70c0b7b4f5bc38d3bcb994593e11bb2b7616 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_layout_lib.cc @@ -0,0 +1,213 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include +#include +#include +#include +#include +#include +#include +#include + +#include "absl/algorithm/container.h" +#include "absl/status/status.h" +#include "absl/status/statusor.h" +#include "absl/strings/str_cat.h" +#include "absl/strings/str_format.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" +#include "alphafold3/structure/cpp/mmcif_layout.h" + +namespace alphafold3 { + +std::string MmcifLayout::ToDebugString() const { + return absl::StrFormat( + "MmcifLayout(models=%d, chains=%d, num_residues=%d, atoms=%d)", + num_models(), num_chains(), num_residues(), num_atoms()); +} + +// Changes layout to match keep_indices removing empty chains/residues. +void MmcifLayout::Filter(absl::Span keep_indices) { + if (num_chains() == 0) { + return; + } + // Update residue indices. + auto keep_it = absl::c_lower_bound(keep_indices, residue_ends_.front()); + for (auto& residue : residue_ends_) { + while (keep_it != keep_indices.end() && *keep_it < residue) { + ++keep_it; + } + residue = std::distance(keep_indices.begin(), keep_it); + } + // Unique residue_ends_ with updating chains. + auto first = residue_ends_.begin(); + auto tail = first; + std::size_t num_skipped = 0; + std::size_t current = 0; + for (std::size_t& chain_end : chain_ends_) { + for (auto e = residue_ends_.begin() + chain_end; first != e; ++first) { + std::size_t next = *first; + *tail = next; + if (current != next) { + current = next; + ++tail; + } else { + ++num_skipped; + } + } + chain_end -= num_skipped; + } + residue_ends_.erase(tail, residue_ends_.end()); + + current = 0; + chain_ends_.erase(std::remove_if(chain_ends_.begin(), chain_ends_.end(), + [¤t](std::size_t next) { + bool result = current == next; + current = next; + return result; + }), + chain_ends_.end()); + model_offset_ = 0; +} + +absl::StatusOr MmcifLayout::Create(const CifDict& mmcif, + absl::string_view model_id) { + auto model_ids = mmcif["_atom_site.pdbx_PDB_model_num"]; + auto chain_ids = mmcif["_atom_site.label_asym_id"]; // chain ID. + auto label_seq_ids = mmcif["_atom_site.label_seq_id"]; // residue ID. + auto auth_seq_ids = mmcif["_atom_site.auth_seq_id"]; // author residue ID. + auto insertion_codes = mmcif["_atom_site.pdbx_PDB_ins_code"]; + + if (model_ids.size() != chain_ids.size() || + model_ids.size() != label_seq_ids.size() || + (model_ids.size() != auth_seq_ids.size() && !auth_seq_ids.empty()) || + (model_ids.size() != insertion_codes.size() && + !insertion_codes.empty())) { + return absl::InvalidArgumentError(absl::StrCat( + "Invalid _atom_site table.", // + " len(_atom_site.pdbx_PDB_model_num): ", model_ids.size(), + " len(_atom_site.label_asym_id): ", chain_ids.size(), + " len(_atom_site.label_seq_id): ", label_seq_ids.size(), + " len(_atom_site.auth_seq_id): ", auth_seq_ids.size(), + " len(_atom_site.pdbx_PDB_ins_code): ", insertion_codes.size())); + } + std::size_t num_atoms = model_ids.size(); + if (num_atoms == 0) { + return MmcifLayout({}, {}, 0, 0); + } + std::size_t model_offset = 0; + std::size_t num_models; + std::size_t num_atoms_per_model; + if (model_id.empty()) { + absl::string_view first_model_id = model_ids.front(); + + // Binary search for where the first model ends. + num_atoms_per_model = std::distance( + model_ids.begin(), + absl::c_upper_bound(model_ids, first_model_id, std::not_equal_to<>{})); + if (num_atoms % num_atoms_per_model != 0) { + return absl::InvalidArgumentError(absl::StrCat( + "Each model must have the same number of atoms: (", num_atoms, " % ", + num_atoms_per_model, " == ", num_atoms % num_atoms_per_model, ").")); + } + num_models = num_atoms / num_atoms_per_model; + // Test boundary conditions for each model hold. + for (std::size_t i = 1; i < num_models; ++i) { + if ((model_ids[i * num_atoms_per_model] != + model_ids[(i + 1) * num_atoms_per_model - 1]) || + (model_ids[i * num_atoms_per_model - 1] == + model_ids[i * num_atoms_per_model])) { + return absl::InvalidArgumentError( + absl::StrCat("Each model must have the same number of atoms: (", + num_atoms, " % ", num_atoms_per_model, + " == ", num_atoms % num_atoms_per_model, ").")); + } + } + } else { + num_models = 1; + model_offset = + std::distance(model_ids.begin(), absl::c_find(model_ids, model_id)); + if (model_offset == model_ids.size()) { + return absl::InvalidArgumentError( + absl::StrCat("Unknown model_id: ", model_id)); + } + model_ids.remove_prefix(model_offset); + chain_ids.remove_prefix(model_offset); + label_seq_ids.remove_prefix(model_offset); + if (!auth_seq_ids.empty()) auth_seq_ids.remove_prefix(model_offset); + if (!insertion_codes.empty()) insertion_codes.remove_prefix(model_offset); + + num_atoms_per_model = std::distance( + model_ids.begin(), std::upper_bound(model_ids.begin(), model_ids.end(), + model_id, std::not_equal_to<>{})); + num_atoms = num_atoms_per_model; + } + std::vector residues; + std::vector chains; + absl::string_view chain_id = chain_ids.front(); + if (!auth_seq_ids.empty() && !insertion_codes.empty()) { + // If author residue IDs are present then these are preferred to + // label residue IDs because they work for multi-residue ligands (which + // are given constant "." label residue IDs). + // NB: Author residue IDs require both the auth_seq_id and the insertion + // code to be unique. + absl::string_view auth_seq_id = auth_seq_ids.front(); + absl::string_view insertion_code = insertion_codes.front(); + for (std::size_t i = 1; i < num_atoms_per_model; ++i) { + if (absl::string_view current_chain_id = chain_ids[i]; + current_chain_id != chain_id) { + residues.push_back(i + model_offset); + chains.push_back(residues.size()); + chain_id = current_chain_id; + auth_seq_id = auth_seq_ids[i]; + insertion_code = insertion_codes[i]; + } else if (absl::string_view current_seq_id = auth_seq_ids[i], + current_insertion_code = insertion_codes[i]; + insertion_code != current_insertion_code || + auth_seq_id != current_seq_id) { + residues.push_back(i + model_offset); + auth_seq_id = current_seq_id; + insertion_code = current_insertion_code; + } + } + } else { + absl::string_view label_seq_id = label_seq_ids.front(); + for (std::size_t i = 1; i < num_atoms_per_model; ++i) { + if (absl::string_view current_chain_id = chain_ids[i]; + current_chain_id != chain_id) { + residues.push_back(i + model_offset); + chains.push_back(residues.size()); + chain_id = current_chain_id; + label_seq_id = label_seq_ids[i]; + } else if (absl::string_view current_seq_id = label_seq_ids[i]; + label_seq_id != current_seq_id) { + residues.push_back(i + model_offset); + label_seq_id = current_seq_id; + } + } + } + residues.push_back(num_atoms_per_model + model_offset); + chains.push_back(residues.size()); + return MmcifLayout(std::move(chains), std::move(residues), model_offset, + num_models); +} + +std::vector MmcifLayout::chain_starts() const { + std::vector chain_starts; + chain_starts.reserve(chain_ends_.size()); + for (std::size_t index = 0; index < chain_ends_.size(); ++index) { + chain_starts.push_back(atom_site_from_chain_index(index)); + } + return chain_starts; +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.cc b/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..8eb69befc0e93baf084333b055e1466e5902f35e --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.cc @@ -0,0 +1,49 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include "alphafold3/structure/cpp/mmcif_layout.h" +#include "pybind11/pybind11.h" +#include "pybind11/pytypes.h" +#include "pybind11/stl.h" + +namespace alphafold3 { + +namespace py = pybind11; + +void RegisterModuleMmcifLayout(pybind11::module m) { + py::class_(m, "MmcifLayout") + .def("__str__", &MmcifLayout::ToDebugString) + .def("num_models", &MmcifLayout::num_models) + .def("num_chains", &MmcifLayout::num_chains) + .def("num_residues", &MmcifLayout::num_residues) + .def("num_atoms", &MmcifLayout::num_atoms) + .def("residue_range", &MmcifLayout::residue_range, py::arg("chain_index")) + .def("atom_range", &MmcifLayout::atom_range, py::arg("residue_index")) + .def("chains", &MmcifLayout::chains, + py::doc("Returns a list of indices one past the last residue of " + "each chain.")) + .def( + "chain_starts", &MmcifLayout::chain_starts, + py::doc("Returns a list of indices of the first atom of each chain.")) + .def("residues", &MmcifLayout::residues, + py::doc("Returns a list of indices one past the last atom of each " + "residue.")) + .def("residue_starts", &MmcifLayout::residue_starts, + py::doc( + "Returns a list of indices of the first atom of each residue.")) + .def("model_offset", &MmcifLayout::model_offset, + py::doc("Returns the first atom index that is part of the specified " + "model.")); + + m.def("from_mmcif", &MmcifLayout::Create, py::arg("mmcif"), + py::arg("model_id") = ""); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.h b/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.h new file mode 100644 index 0000000000000000000000000000000000000000..c79b2dd50e0e48bc6065ae3e5468b1142126e659 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_layout_pybind.h @@ -0,0 +1,24 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_PYBIND_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_PYBIND_H_ + +#include "pybind11/pybind11.h" + +namespace alphafold3 { + +void RegisterModuleMmcifLayout(pybind11::module m); + +} + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_LAYOUT_PYBIND_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.h b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.h new file mode 100644 index 0000000000000000000000000000000000000000..821be658da838e72bd85bb884669414224a7a7f0 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.h @@ -0,0 +1,34 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_H_ + +#include +#include + +#include "absl/status/statusor.h" +#include "absl/strings/string_view.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" + +namespace alphafold3 { + +// Returns a pair of atom indices for each row in the bonds table (aka +// _struct_conn). The indices are simple 0-based indexes into the columns of +// the _atom_site table in the input mmCIF, and do not necessarily correspond +// to the values in _atom_site.id, or any other column. +absl::StatusOr, std::vector>> +GetBondAtomIndices(const CifDict& mmcif, absl::string_view model_id); + +} // namespace alphafold3 + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.pyi b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.pyi new file mode 100644 index 0000000000000000000000000000000000000000..a932c84ac2cb3fe5e0c27497f2778d6da50cb24b --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn.pyi @@ -0,0 +1,5 @@ + + +from flax_model.alphafold3.cpp import cif_dict + +def get_bond_atom_indices(mmcif_dict: cif_dict.CifDict, model_id: str) -> tuple[list[int],list[int]]: ... diff --git a/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_lib.cc b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_lib.cc new file mode 100644 index 0000000000000000000000000000000000000000..afb930fab350d1c39098c1f73f4deeb968b22a02 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_lib.cc @@ -0,0 +1,380 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include +#include +#include +#include +#include +#include + +#include "absl/algorithm/container.h" +#include "absl/container/flat_hash_map.h" +#include "absl/container/flat_hash_set.h" +#include "absl/status/status.h" +#include "absl/status/statusor.h" +#include "absl/strings/str_cat.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" +#include "alphafold3/structure/cpp/mmcif_struct_conn.h" + +namespace alphafold3 { + +namespace { + +struct AtomId { + absl::string_view chain_id; + absl::string_view res_id_1; + absl::string_view res_id_2; + absl::string_view atom_name; + absl::string_view alt_id; + + friend bool operator==(const AtomId&, const AtomId&) = default; + template + friend H AbslHashValue(H h, const AtomId& m) { + return H::combine(std::move(h), m.chain_id, m.res_id_1, m.res_id_2, + m.atom_name, m.alt_id); + } +}; + +using StringArrayRef = absl::Span; +using BondIndexByAtom = absl::flat_hash_map>; +using BondAtomIndices = std::vector; + +// Returns whether each container is the same size. +template +bool AreSameSize(const C& c, const Cs&... cs) { + return ((c.size() == cs.size()) && ...); +} + +struct ColumnSpec { + absl::string_view chain_id_col; + absl::string_view res_id_1_col; + absl::string_view res_id_2_col; + absl::string_view atom_name_col; + std::optional alt_id_col; // Not used by OpenMM. +}; + +class AtomColumns { + public: + static absl::StatusOr Create(const CifDict& mmcif, + const ColumnSpec& column_spec) { + StringArrayRef chain_id = mmcif[column_spec.chain_id_col]; + StringArrayRef res_id_1 = mmcif[column_spec.res_id_1_col]; + StringArrayRef res_id_2 = mmcif[column_spec.res_id_2_col]; + StringArrayRef atom_name = mmcif[column_spec.atom_name_col]; + if (!AreSameSize(chain_id, res_id_1, res_id_2, atom_name)) { + return absl::InvalidArgumentError(absl::StrCat( + "Atom columns are not the same size. ", // + "len(", column_spec.chain_id_col, ")=", chain_id.size(), // + ", len(", column_spec.res_id_1_col, ")=", res_id_1.size(), // + ", len(", column_spec.res_id_2_col, ")=", res_id_2.size(), // + ", len(", column_spec.atom_name_col, ")=", atom_name.size(), // + ".")); + } + if (column_spec.alt_id_col.has_value()) { + StringArrayRef alt_id = mmcif[*column_spec.alt_id_col]; + if (!AreSameSize(alt_id, chain_id)) { + return absl::InvalidArgumentError(absl::StrCat( + "Atom columns are not the same size. ", // + "len(", column_spec.chain_id_col, ")=", chain_id.size(), // + ", len(", *column_spec.alt_id_col, ")=", alt_id.size(), // + ".")); + } + return AtomColumns(chain_id, res_id_1, res_id_2, atom_name, alt_id, + column_spec); + } else { + return AtomColumns(chain_id, res_id_1, res_id_2, atom_name, std::nullopt, + column_spec); + } + } + + inline std::size_t size() const { return size_; } + + absl::string_view GetNormalizedAltId(const std::size_t index) const { + constexpr absl::string_view kFullStop = "."; + if (alt_id_.has_value()) { + absl::string_view alt_id = (*alt_id_)[index]; + return alt_id == "?" ? kFullStop : alt_id; + } else { + return kFullStop; + } + } + + AtomId GetAtom(const std::size_t index) const { + return {.chain_id = chain_id_[index], + .res_id_1 = res_id_1_[index], + .res_id_2 = res_id_2_[index], + .atom_name = atom_name_[index], + .alt_id = GetNormalizedAltId(index)}; + } + + std::string GetAtomString(const std::size_t index) const { + std::string alt_id_col; + if (column_spec_.alt_id_col.has_value()) { + alt_id_col = *column_spec_.alt_id_col; + } else { + alt_id_col = "default label_alt_id"; + } + return absl::StrCat( + column_spec_.chain_id_col, "=", chain_id_[index], ", ", // + column_spec_.res_id_1_col, "=", res_id_1_[index], ", ", // + column_spec_.res_id_2_col, "=", res_id_2_[index], ", ", // + column_spec_.atom_name_col, "=", atom_name_[index], ", ", // + alt_id_col, "=", GetNormalizedAltId(index)); // + } + + private: + AtomColumns(StringArrayRef chain_id, StringArrayRef res_id_1, + StringArrayRef res_id_2, StringArrayRef atom_name, + std::optional alt_id, + const ColumnSpec& column_spec) + : chain_id_(chain_id), + res_id_1_(res_id_1), + res_id_2_(res_id_2), + atom_name_(atom_name), + alt_id_(alt_id), + column_spec_(column_spec), + size_(chain_id.size()) {} + StringArrayRef chain_id_; + StringArrayRef res_id_1_; + StringArrayRef res_id_2_; + StringArrayRef atom_name_; + std::optional alt_id_; + ColumnSpec column_spec_; + std::size_t size_; +}; + +// Adds the atom index to any rows in the bond table involving that atom. +absl::Status FillInBondsForAtom(const BondIndexByAtom& bond_index_by_atom, + const AtomId& atom, + const std::size_t atom_index, + BondAtomIndices& bond_atom_indices) { + if (auto bond_index_it = bond_index_by_atom.find(atom); + bond_index_it != bond_index_by_atom.end()) { + for (std::size_t bond_index : bond_index_it->second) { + if (bond_index < 0 || bond_index >= bond_atom_indices.size()) { + return absl::OutOfRangeError( + absl::StrCat("Bond index out of range: ", bond_index)); + } + bond_atom_indices[bond_index] = atom_index; + } + } + return absl::OkStatus(); +} + +// Checks that the CifDict has all of the columns in the column spec. +bool HasAllColumns(const CifDict& mmcif, const ColumnSpec& columns) { + return mmcif.Contains(columns.chain_id_col) && + mmcif.Contains(columns.res_id_1_col) && + mmcif.Contains(columns.res_id_2_col) && + mmcif.Contains(columns.atom_name_col) && + (!columns.alt_id_col.has_value() || + mmcif.Contains(*columns.alt_id_col)); +} + +// Fully specified ptnr1 atom. +constexpr ColumnSpec kStructConnPtnr1ColumnsFull{ + .chain_id_col = "_struct_conn.ptnr1_label_asym_id", + .res_id_1_col = "_struct_conn.ptnr1_auth_seq_id", + .res_id_2_col = "_struct_conn.pdbx_ptnr1_PDB_ins_code", + .atom_name_col = "_struct_conn.ptnr1_label_atom_id", + .alt_id_col = "_struct_conn.pdbx_ptnr1_label_alt_id", +}; + +// Fully specified ptnr2 atom. +constexpr ColumnSpec kStructConnPtnr2ColumnsFull{ + .chain_id_col = "_struct_conn.ptnr2_label_asym_id", + .res_id_1_col = "_struct_conn.ptnr2_auth_seq_id", + .res_id_2_col = "_struct_conn.pdbx_ptnr2_PDB_ins_code", + .atom_name_col = "_struct_conn.ptnr2_label_atom_id", + .alt_id_col = "_struct_conn.pdbx_ptnr2_label_alt_id", +}; + +// Columns used by OpenMM for ptnr1 atoms. +constexpr ColumnSpec kStructConnPtnr1OpenMM{ + .chain_id_col = "_struct_conn.ptnr1_label_asym_id", + .res_id_1_col = "_struct_conn.ptnr1_label_seq_id", + .res_id_2_col = "_struct_conn.ptnr1_label_comp_id", + .atom_name_col = "_struct_conn.ptnr1_label_atom_id", + .alt_id_col = std::nullopt, +}; + +// Columns used by OpenMM for ptnr2 atoms. +constexpr ColumnSpec kStructConnPtnr2OpenMM{ + .chain_id_col = "_struct_conn.ptnr2_label_asym_id", + .res_id_1_col = "_struct_conn.ptnr2_label_seq_id", + .res_id_2_col = "_struct_conn.ptnr2_label_comp_id", + .atom_name_col = "_struct_conn.ptnr2_label_atom_id", + .alt_id_col = std::nullopt, +}; + +// Fully specified atom sites. +constexpr ColumnSpec kAtomSiteColumnsFull{ + .chain_id_col = "_atom_site.label_asym_id", + .res_id_1_col = "_atom_site.auth_seq_id", + .res_id_2_col = "_atom_site.pdbx_PDB_ins_code", + .atom_name_col = "_atom_site.label_atom_id", + .alt_id_col = "_atom_site.label_alt_id", +}; + +// Atom site columns used to match OpenMM _struct_conn tables. +constexpr ColumnSpec kAtomSiteColumnsOpenMM{ + .chain_id_col = "_atom_site.label_asym_id", + .res_id_1_col = "_atom_site.label_seq_id", + .res_id_2_col = "_atom_site.label_comp_id", + .atom_name_col = "_atom_site.label_atom_id", + .alt_id_col = "_atom_site.label_alt_id", +}; + +} // namespace + +absl::StatusOr> GetBondAtomIndices( + const CifDict& mmcif, absl::string_view model_id) { + ColumnSpec ptnr1_columns, ptnr2_columns, atom_site_columns; + + if (HasAllColumns(mmcif, kStructConnPtnr1ColumnsFull) && + HasAllColumns(mmcif, kStructConnPtnr2ColumnsFull)) { + ptnr1_columns = kStructConnPtnr1ColumnsFull; + ptnr2_columns = kStructConnPtnr2ColumnsFull; + atom_site_columns = kAtomSiteColumnsFull; + } else { + ptnr1_columns = kStructConnPtnr1OpenMM; + ptnr2_columns = kStructConnPtnr2OpenMM; + atom_site_columns = kAtomSiteColumnsOpenMM; + } + + absl::StatusOr ptnr1_atoms = + AtomColumns::Create(mmcif, ptnr1_columns); + if (!ptnr1_atoms.ok()) { + return ptnr1_atoms.status(); + } + absl::StatusOr ptnr2_atoms = + AtomColumns::Create(mmcif, ptnr2_columns); + if (!ptnr2_atoms.ok()) { + return ptnr2_atoms.status(); + } + StringArrayRef struct_conn_id = mmcif["_struct_conn.id"]; + if (!AreSameSize(struct_conn_id, *ptnr1_atoms, *ptnr2_atoms)) { + return absl::InvalidArgumentError(absl::StrCat( + "Invalid '_struct_conn.' loop. ", // + "len(id) = ", struct_conn_id.size(), ", ", // + "len(ptnr1_atoms) = ", ptnr1_atoms->size(), ", ", // + "len(ptnr2_atoms) = ", ptnr2_atoms->size(), "." // + )); + } + + absl::StatusOr atoms = + AtomColumns::Create(mmcif, atom_site_columns); + if (!atoms.ok()) { + return atoms.status(); + } + StringArrayRef atom_site_id = mmcif["_atom_site.id"]; + StringArrayRef atom_site_model_id = mmcif["_atom_site.pdbx_PDB_model_num"]; + if (!AreSameSize(atom_site_id, atom_site_model_id, *atoms)) { + return absl::InvalidArgumentError(absl::StrCat( + "Invalid '_atom_site.' loop. ", // + "len(id)= ", atom_site_id.size(), ", ", // + "len(pdbx_PDB_model_num)= ", atom_site_model_id.size(), ", ", // + "len(atoms)= ", atoms->size(), ".")); // + } + + // Build maps from atom ID tuples to the rows in _struct_conn where that + // atom appears (NB could be multiple). + const std::size_t struct_conn_size = struct_conn_id.size(); + BondIndexByAtom ptnr1_rows_by_atom(struct_conn_size); + BondIndexByAtom ptnr2_rows_by_atom(struct_conn_size); + for (std::size_t i = 0; i < struct_conn_size; ++i) { + ptnr1_rows_by_atom[ptnr1_atoms->GetAtom(i)].push_back(i); + ptnr2_rows_by_atom[ptnr2_atoms->GetAtom(i)].push_back(i); + } + + // Allocate two output arrays with one element per row in struct_conn, where + // each element will be the index of that atom in the atom_site table. + // Fill the arrays with atom_site_size, which is an invalid value, so that + // we can check at the end that each atom has been found. + const std::size_t atom_site_size = atom_site_id.size(); + BondAtomIndices ptnr1_atom_indices(struct_conn_size, atom_site_size); + BondAtomIndices ptnr2_atom_indices(struct_conn_size, atom_site_size); + + bool model_id_ecountered = false; + absl::flat_hash_set seen_alt_ids; + for (std::size_t atom_i = 0; atom_i < atom_site_size; ++atom_i) { + if (atom_site_model_id[atom_i] != model_id) { + if (!model_id_ecountered) { + continue; + } else { + // Models are contiguous so once we see a different model ID after + // encountering our model ID then we can exit early. + break; + } + } else { + model_id_ecountered = true; + } + AtomId atom = atoms->GetAtom(atom_i); + seen_alt_ids.insert(atom.alt_id); + + if (auto fill_in_bonds_status1 = FillInBondsForAtom( + ptnr1_rows_by_atom, atom, atom_i, ptnr1_atom_indices); + !fill_in_bonds_status1.ok()) { + return fill_in_bonds_status1; + } + if (auto fill_in_bonds_status2 = FillInBondsForAtom( + ptnr2_rows_by_atom, atom, atom_i, ptnr2_atom_indices); + !fill_in_bonds_status2.ok()) { + return fill_in_bonds_status2; + } + } + // The seen_alt_ids check is a workaround for a known PDB issue: some mmCIFs + // (2evw, 2g0v, 2g0x, 2g0z, 2g10, 2g11, 2g12, 2g14, 2grz, 2ntw as of 2024) + // have multiple models and they set different whole-chain altloc in each + // model. The bond table however doesn't distinguish between models, so there + // are bonds that are valid only for some models. E.g. 2grz has model 1 with + // chain A with altloc A, and model 2 with chain A with altloc B. The bonds + // table lists a bond for each of these. + + // Check that a ptnr1 atom was found for every bond. + if (auto row_it = absl::c_find(ptnr1_atom_indices, atom_site_size); + row_it != ptnr1_atom_indices.end()) { + if (seen_alt_ids.size() > 1 || seen_alt_ids.contains(".") || + seen_alt_ids.contains("?")) { + std::size_t i = std::distance(ptnr1_atom_indices.begin(), row_it); + return absl::InvalidArgumentError( + absl::StrCat("Error parsing \"", mmcif.GetDataName(), "\". ", + "Cannot find atom for bond ID ", struct_conn_id[i], ": ", + ptnr1_atoms->GetAtomString(i))); + } + } + + // Check that a ptnr2 atom was found for every bond. + if (auto row_it = absl::c_find(ptnr2_atom_indices, atom_site_size); + row_it != ptnr2_atom_indices.end()) { + if (seen_alt_ids.size() > 1 || seen_alt_ids.contains(".") || + seen_alt_ids.contains("?")) { + std::size_t i = std::distance(ptnr2_atom_indices.begin(), row_it); + return absl::InvalidArgumentError( + absl::StrCat("Error parsing \"", mmcif.GetDataName(), "\". ", + "Cannot find atom for bond ID ", struct_conn_id[i], ": ", + ptnr2_atoms->GetAtomString(i))); + } + } + + if (!model_id_ecountered) { + return absl::InvalidArgumentError(absl::StrCat( + "Error parsing \"", mmcif.GetDataName(), "\". model_id \"", model_id, + "\" not found in _atom_site.pdbx_PDB_model_num.")); + } + + return std::make_pair(std::move(ptnr1_atom_indices), + std::move(ptnr2_atom_indices)); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.cc b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..111715ab5b5d0bce3ea735b85302be3e5e852beb --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.cc @@ -0,0 +1,68 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include + +#include "absl/strings/string_view.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" +#include "alphafold3/structure/cpp/mmcif_struct_conn.h" +#include "pybind11/gil.h" +#include "pybind11/pybind11.h" +#include "pybind11/pytypes.h" +#include "pybind11/stl.h" + +namespace alphafold3 { + +namespace py = pybind11; + +constexpr char kGetBondAtomIndices[] = R"( +Extracts the indices of the atoms that participate in bonds. + +This function has a workaround for a known PDB issue: some mmCIFs have +(2evw, 2g0v, 2g0x, 2g0z, 2g10, 2g11, 2g12, 2g14, 2grz, 2ntw as of 2024) +multiple models and they set different whole-chain altloc in each model. +The bond table however doesn't distinguish between models, so there are +bonds that are valid only for some models. E.g. 2grz has model 1 with +chain A with altloc A, and model 2 with chain A with altloc B. The bonds +table lists a bond for each of these. This case is rather rare (10 cases +in PDB as of 2024). For the offending bonds, the returned atom index is +set to the size of the atom_site table, i.e. it is an invalid index. + +Args: + mmcif: The mmCIF object to process. + model_id: The ID of the model that the returned atoms will belong to. This + should be a value in the mmCIF's _atom_site.pdbx_PDB_model_num column. + +Returns: + Two lists of atom indices, `from_atoms` and `to_atoms`, each one having + length num_bonds (as defined by _struct_conn, the bonds table). The bond + i, defined by the i'th row in _struct_conn, is a bond from atom at index + from_atoms[i], to the atom at index to_atoms[i]. The indices are simple + 0-based indexes into the columns of the _atom_site table in the input + mmCIF, and do not necessarily correspond to the values in _atom_site.id, + or any other column. +)"; + +void RegisterModuleMmcifStructConn(pybind11::module m) { + m.def( + "get_bond_atom_indices", + [](const CifDict& mmcif, absl::string_view model_id) { + auto result = GetBondAtomIndices(mmcif, model_id); + if (result.ok()) { + return *result; + } + throw py::value_error(std::string(result.status().message())); + }, + py::arg("mmcif_dict"), py::arg("model_id"), + py::doc(kGetBondAtomIndices + 1), + py::call_guard()); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.h b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.h new file mode 100644 index 0000000000000000000000000000000000000000..acdbf7b773ba65c779bb88dffb7dc8b69ca8ee60 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_struct_conn_pybind.h @@ -0,0 +1,24 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_PYBIND_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_PYBIND_H_ + +#include "pybind11/pybind11.h" + +namespace alphafold3 { + +void RegisterModuleMmcifStructConn(pybind11::module m); + +} + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_STRUCT_CONN_PYBIND_H_ diff --git a/flax_model/alphafold3/structure/cpp/mmcif_utils.pyi b/flax_model/alphafold3/structure/cpp/mmcif_utils.pyi new file mode 100644 index 0000000000000000000000000000000000000000..af1b11ae44b876497816ad05106dbba6bf14f4ca --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_utils.pyi @@ -0,0 +1,63 @@ + + +from collections.abc import Sequence + +import numpy as np + +from flax_model.alphafold3.cpp import cif_dict +from flax_model.alphafold3.structure.python import mmcif_layout + + +def filter( + mmcif: cif_dict.CifDict, + include_nucleotides: bool, + include_ligands: bool = ..., + include_water: bool = ..., + include_other: bool = ..., + model_id: str = ..., +) -> tuple[np.ndarray[int], mmcif_layout.MmcifLayout]: ... + + +def fix_residues( + layout: mmcif_layout.MmcifLayout, + comp_id: Sequence[str], + atom_id: Sequence[str], + atom_x: Sequence[float], + atom_y: Sequence[float], + atom_z: Sequence[float], + fix_arg: bool = ..., +) -> None: ... + + +def read_layout( + mmcif: cif_dict.CifDict, model_id: str = ... +) -> mmcif_layout.MmcifLayout: ... + + +def selected_ligand_residue_mask( + layout: mmcif_layout.MmcifLayout, + atom_site_label_asym_ids: list[str], + atom_site_label_seq_ids: list[str], + atom_site_auth_seq_ids: list[str], + atom_site_label_comp_ids: list[str], + atom_site_pdbx_pdb_ins_codes: list[str], + nonpoly_asym_ids: list[str], + nonpoly_auth_seq_ids: list[str], + nonpoly_pdb_ins_codes: list[str], + nonpoly_mon_ids: list[str], + branch_asym_ids: list[str], + branch_auth_seq_ids: list[str], + branch_pdb_ins_codes: list[str], + branch_mon_ids: list[str], +) -> tuple[list[bool], list[bool]]: ... + + +def selected_polymer_residue_mask( + layout: mmcif_layout.MmcifLayout, + atom_site_label_asym_ids: list[str], + atom_site_label_seq_ids: list[str], + atom_site_label_comp_ids: list[str], + poly_seq_asym_ids: list[str], + poly_seq_seq_ids: list[str], + poly_seq_mon_ids: list[str], +) -> list[bool]: ... diff --git a/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.cc b/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..52bd039b2984e6d8c599124bfc0c4b201c0a7041 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.cc @@ -0,0 +1,787 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include + +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#include "numpy/ndarrayobject.h" +#include "numpy/ndarraytypes.h" +#include "numpy/npy_common.h" +#include "absl/container/flat_hash_map.h" +#include "absl/container/flat_hash_set.h" +#include "absl/memory/memory.h" +#include "absl/strings/str_cat.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "alphafold3/parsers/cpp/cif_dict_lib.h" +#include "alphafold3/structure/cpp/mmcif_altlocs.h" +#include "alphafold3/structure/cpp/mmcif_layout.h" +#include "pybind11/cast.h" +#include "pybind11/gil.h" +#include "pybind11/numpy.h" +#include "pybind11/pybind11.h" +#include "pybind11/pytypes.h" +#include "pybind11/stl.h" +#include "pybind11_abseil/absl_casters.h" + +namespace alphafold3 { +namespace { +namespace py = pybind11; + +struct PyObjectDeleter { + inline void operator()(PyObject* obj) const { Py_CLEAR(obj); } +}; + +using ScopedPyObject = std::unique_ptr; + +using StringArrayRef = absl::Span; +using Indexer = absl::flat_hash_map; + +// Returns the reverse look-up map of name to index. +Indexer MakeIndex(StringArrayRef col) { + Indexer index; + index.reserve(col.size()); + for (std::size_t i = 0; i < col.size(); ++i) { + index[col[i]] = i; + } + return index; +} + +// Returns whether each container is the same size. +template +bool AreSameSize(C c, const Cs&... cs) { + return ((c.size() == cs.size()) && ...); +} + +// Stores references to columns in `_atom_site` ensuring they all exist and +// are the same size. +struct AtomSiteLoop { + explicit AtomSiteLoop(const CifDict& cif_dict) + : id(cif_dict["_atom_site.id"]), + model_id(cif_dict["_atom_site.pdbx_PDB_model_num"]), + chain_id(cif_dict["_atom_site.label_asym_id"]), + seq_id(cif_dict["_atom_site.label_seq_id"]), + + comp_id(cif_dict["_atom_site.label_comp_id"]), + atom_id(cif_dict["_atom_site.label_atom_id"]), + + alt_id(cif_dict["_atom_site.label_alt_id"]), + occupancy(cif_dict["_atom_site.occupancy"]) + + { + if (!AreSameSize(id, model_id, chain_id, seq_id, comp_id, atom_id, alt_id, + occupancy)) { + throw py::value_error( + absl::StrCat("Invalid '_atom_site.' loop. ", // + "len(id)=", id.size(), ", ", // + "len(pdbx_PDB_model_num)=", model_id.size(), ", ", // + "len(label_asym_id)=", chain_id.size(), ", ", // + "len(label_seq_id)=", seq_id.size(), ", ", // + "len(label_comp_id)=", comp_id.size(), ", ", // + "len(atom_id)=", atom_id.size(), ", ", // + "len(label_alt_id)=", alt_id.size(), ", ", // + "len(occupancy)=", occupancy.size())); + } + } + StringArrayRef id; + StringArrayRef model_id; + StringArrayRef chain_id; + StringArrayRef seq_id; + StringArrayRef comp_id; + StringArrayRef atom_id; + StringArrayRef alt_id; + StringArrayRef occupancy; +}; + +// Stores references to columns in `_entity` ensuring they all exist and are the +// same size. +struct EntityLoop { + explicit EntityLoop(const CifDict& cif_dict) + : id(cif_dict["_entity.id"]), type(cif_dict["_entity.type"]) { + if (!AreSameSize(id, type)) { + throw py::value_error(absl::StrCat("Invalid '_entity.' loop. ", // + "len(id)=", id.size(), ", ", // + "len(type)=", type.size())); + } + } + StringArrayRef id; + StringArrayRef type; +}; + +// Stores references to columns in `_entity_poly` ensuring they all exist and +// are the same size. +struct EntityPolyLoop { + explicit EntityPolyLoop(const CifDict& cif_dict) + : entity_id(cif_dict["_entity_poly.entity_id"]), + type(cif_dict["_entity_poly.type"]) { + if (!AreSameSize(entity_id, type)) { + throw py::value_error(absl::StrCat("Invalid '_entity_poly.' loop. ", // + "len(entity_id)=", entity_id.size(), + ", ", // + "len(type)=", type.size())); + } + } + StringArrayRef entity_id; + StringArrayRef type; +}; + +// Returns a set of entity names removing ones not included by the flags +// specified. +absl::flat_hash_set SelectChains(const CifDict& mmcif, + bool include_nucleotides, + bool include_ligands, + bool include_water, + bool include_other) { + EntityLoop entity_loop(mmcif); + EntityPolyLoop entity_poly(mmcif); + absl::flat_hash_set permitted_polymers{"polypeptide(L)"}; + absl::flat_hash_set forbidden_polymers; + for (absl::string_view type : + {"polydeoxyribonucleotide", "polyribonucleotide", + "polydeoxyribonucleotide/polyribonucleotide hybrid"}) { + if (include_nucleotides) { + permitted_polymers.emplace(type); + } else { + forbidden_polymers.emplace(type); + } + } + + absl::flat_hash_set permitted_nonpoly_entity_types; + absl::flat_hash_set forbidden_nonpoly_entity_types; + for (absl::string_view type : {"non-polymer", "branched"}) { + if (include_ligands) { + permitted_nonpoly_entity_types.emplace(type); + } else { + forbidden_nonpoly_entity_types.emplace(type); + } + } + absl::string_view water_type = "water"; + if (include_water) { + permitted_nonpoly_entity_types.emplace(water_type); + } else { + forbidden_nonpoly_entity_types.emplace(water_type); + } + + StringArrayRef chain_ids = mmcif["_struct_asym.id"]; + StringArrayRef entity_ids = mmcif["_struct_asym.entity_id"]; + Indexer chain_index = MakeIndex(chain_ids); + Indexer entity_poly_index = MakeIndex(entity_poly.entity_id); + Indexer entity_id_to_index = MakeIndex(entity_loop.id); + + absl::flat_hash_set keep_chain_id; + for (std::size_t i = 0; i < chain_ids.size(); ++i) { + absl::string_view chain_id = chain_ids[i]; + absl::string_view entity_id = entity_ids[i]; + if (entity_id_to_index.empty() || + entity_loop.type[entity_id_to_index[entity_id]] == "polymer") { + if (auto it = entity_poly_index.find(entity_id); + it != entity_poly_index.end()) { + absl::string_view poly_type = entity_poly.type[it->second]; + if (include_other) { + if (!forbidden_polymers.contains(poly_type)) { + keep_chain_id.insert(chain_id); + } + } else { + if (permitted_polymers.contains(poly_type)) { + keep_chain_id.insert(chain_id); + } + } + } + } else { + absl::string_view entity_type = + entity_loop.type[entity_id_to_index[entity_id]]; + if (include_other) { + if (!forbidden_nonpoly_entity_types.contains(entity_type)) { + keep_chain_id.insert(chain_id); + continue; + } + } else { + if (permitted_nonpoly_entity_types.contains(entity_type)) { + keep_chain_id.insert(chain_id); + continue; + } + } + } + } + return keep_chain_id; +} + +class ProcessResidue { + public: + explicit ProcessResidue(const char* residue) + : residue_(PyUnicode_InternFromString(residue)) {} + bool IsResidue(PyObject* residue) { + return ArePyObjectsEqual(residue_.get(), residue); + } + + static bool ArePyObjectsEqual(PyObject* lhs, PyObject* rhs) { + switch (PyObject_RichCompareBool(lhs, rhs, Py_EQ)) { + case -1: + PyErr_Clear(); + return false; + case 0: + return false; + default: + return true; + } + } + + private: + ScopedPyObject residue_; +}; + +struct Position3 { + float x; + float y; + float z; +}; + +float DistanceSquared(Position3 v1, Position3 v2) { + float dx = v1.x - v2.x; + float dy = v1.y - v2.y; + float dz = v1.z - v2.z; + return dx * dx + dy * dy + dz * dz; +} + +class FixArginine : public ProcessResidue { + public: + FixArginine() + : ProcessResidue("ARG"), + cd_(PyUnicode_InternFromString("CD")), + nh1_(PyUnicode_InternFromString("NH1")), + nh2_(PyUnicode_InternFromString("NH2")), + hh11_(PyUnicode_InternFromString("HH11")), + hh21_(PyUnicode_InternFromString("HH21")), + hh12_(PyUnicode_InternFromString("HH12")), + hh22_(PyUnicode_InternFromString("HH22")) {} + void Fix(absl::Span atom_ids, absl::Span atom_x, + absl::Span atom_y, absl::Span atom_z) { + std::ptrdiff_t cd_index = -1; + std::ptrdiff_t nh1_index = -1; + std::ptrdiff_t nh2_index = -1; + std::ptrdiff_t hh11_index = -1; + std::ptrdiff_t hh21_index = -1; + std::ptrdiff_t hh12_index = -1; + std::ptrdiff_t hh22_index = -1; + for (std::ptrdiff_t index = 0; index < atom_ids.size(); ++index) { + PyObject* atom_id = atom_ids[index]; + if (cd_index == -1 && ArePyObjectsEqual(atom_id, cd_.get())) { + cd_index = index; + } else if (nh1_index == -1 && ArePyObjectsEqual(atom_id, nh1_.get())) { + nh1_index = index; + } else if (nh2_index == -1 && ArePyObjectsEqual(atom_id, nh2_.get())) { + nh2_index = index; + } else if (hh11_index == -1 && ArePyObjectsEqual(atom_id, hh11_.get())) { + hh11_index = index; + } else if (hh21_index == -1 && ArePyObjectsEqual(atom_id, hh21_.get())) { + hh21_index = index; + } else if (hh12_index == -1 && ArePyObjectsEqual(atom_id, hh12_.get())) { + hh12_index = index; + } else if (hh22_index == -1 && ArePyObjectsEqual(atom_id, hh22_.get())) { + hh22_index = index; + } + } + if (cd_index < 0 || nh1_index < 0 || nh2_index < 0) { + return; + } + Position3 cd_pos(atom_x[cd_index], atom_y[cd_index], atom_z[cd_index]); + Position3 nh1_pos(atom_x[nh1_index], atom_y[nh1_index], atom_z[nh1_index]); + Position3 nh2_pos(atom_x[nh2_index], atom_y[nh2_index], atom_z[nh2_index]); + if (DistanceSquared(nh1_pos, cd_pos) <= DistanceSquared(nh2_pos, cd_pos)) { + return; + } + std::swap(atom_ids[nh1_index], atom_ids[nh2_index]); + if (hh11_index >= 0 && hh21_index >= 0) { + std::swap(atom_ids[hh11_index], atom_ids[hh21_index]); + } else if (hh11_index >= 0) { + Py_DECREF(atom_ids[hh11_index]); + Py_INCREF(hh21_.get()); + atom_ids[hh11_index] = hh21_.get(); + } else if (hh21_index >= 0) { + Py_DECREF(atom_ids[hh21_index]); + Py_INCREF(hh11_.get()); + atom_ids[hh21_index] = hh11_.get(); + } + if (hh12_index >= 0 && hh22_index >= 0) { + std::swap(atom_ids[hh12_index], atom_ids[hh22_index]); + } else if (hh12_index >= 0) { + Py_DECREF(atom_ids[hh12_index]); + Py_INCREF(hh22_.get()); + atom_ids[hh12_index] = hh22_.get(); + } else if (hh22_index >= 0) { + Py_DECREF(atom_ids[hh22_index]); + Py_INCREF(hh21_.get()); + atom_ids[hh22_index] = hh21_.get(); + } + } + + private: + ScopedPyObject cd_; + ScopedPyObject nh1_; + ScopedPyObject nh2_; + ScopedPyObject hh11_; + ScopedPyObject hh21_; + ScopedPyObject hh12_; + ScopedPyObject hh22_; +}; + +// Returns the layout of the mmCIF `_atom_site` table. +inline MmcifLayout ReadMmcifLayout(const CifDict& mmcif, + absl::string_view model_id = "") { + py::gil_scoped_release release; + auto mmcif_layout = MmcifLayout::Create(mmcif, model_id); + if (mmcif_layout.ok()) { + return *mmcif_layout; + } + + throw py::value_error(std::string(mmcif_layout.status().message())); +} + +std::pair MmcifFilter( // + const CifDict& mmcif, // + bool include_nucleotides, // + bool include_ligands, // + bool include_water, // + bool include_other, // + absl::string_view model_id) { + if (_import_array() < 0) { + throw py::import_error("Failed to import NumPy."); + } + auto layout = ReadMmcifLayout(mmcif, model_id); + std::unique_ptr> keep_indices; + size_t new_num_atoms; + + { + py::gil_scoped_release release; + + AtomSiteLoop atom_site(mmcif); + + auto keep_chain_ids = + SelectChains(mmcif, include_nucleotides, include_ligands, include_water, + include_other); + + std::vector chain_indices; + chain_indices.reserve(keep_chain_ids.size()); + for (std::size_t i = 0; i < layout.num_chains(); ++i) { + if (keep_chain_ids.contains( + atom_site.chain_id[layout.atom_site_from_chain_index(i)])) { + chain_indices.push_back(i); + } + } + + keep_indices = + absl::WrapUnique(new std::vector(ResolveMmcifAltLocs( + layout, atom_site.comp_id, atom_site.atom_id, atom_site.alt_id, + atom_site.occupancy, chain_indices))); + new_num_atoms = keep_indices->size(); + + if (layout.num_models() > 1) { + keep_indices->reserve(layout.num_models() * new_num_atoms); + std::uint64_t* start = &(*keep_indices->begin()); + std::size_t num_atom = keep_indices->size(); + // Copy first model indices into all model indices offsetting each copy. + for (std::size_t i = 1; i < layout.num_models(); ++i) { + std::size_t offset = i * layout.num_atoms(); + std::transform(start, start + num_atom, + std::back_inserter(*keep_indices), + [offset](std::size_t v) { return v + offset; }); + } + } + } + + layout.Filter(*keep_indices); + + npy_intp shape[] = {static_cast(layout.num_models()), + static_cast(new_num_atoms)}; + PyObject* arr = + PyArray_SimpleNewFromData(2, shape, NPY_INT64, keep_indices->data()); + // Create a capsule to hold the memory of the buffer so NumPy knows how to + // delete it when done with it. + PyObject* capsule = PyCapsule_New( + keep_indices.release(), nullptr, +[](PyObject* capsule_cleanup) { + void* memory = PyCapsule_GetPointer(capsule_cleanup, nullptr); + delete static_cast*>(memory); + }); + PyArray_SetBaseObject(reinterpret_cast(arr), capsule); + + return std::make_pair(py::reinterpret_steal(arr), + std::move(layout)); +} + +void MmcifFixResidues( // + const MmcifLayout& layout, // + absl::Span comp_id, // + absl::Span atom_id, // + absl::Span atom_x, // + absl::Span atom_y, // + absl::Span atom_z, // + bool fix_arginine // +) { + std::optional arginine; + std::size_t num_atoms = layout.num_atoms(); + if (comp_id.size() != num_atoms || atom_id.size() != num_atoms || + atom_x.size() != num_atoms || atom_y.size() != num_atoms || + atom_z.size() != num_atoms) { + throw py::value_error( + absl::StrCat("Sizes must match. ", // + "num_atoms=", num_atoms, ", ", // + "len(comp_id)=", comp_id.size(), ", ", // + "len(atom_id)=", atom_id.size(), ", ", // + "len(atom_x)=", atom_x.size(), ", ", // + "len(atom_y)=", atom_y.size(), ", ", // + "len(atom_z)=", atom_z.size())); + } + + if (fix_arginine) { + arginine.emplace(); + } + if (!arginine.has_value()) { + return; + } + + for (std::size_t res_index = 0; res_index < layout.num_residues(); + ++res_index) { + auto [atom_start, atom_end] = layout.atom_range(res_index); + std::size_t atom_count = atom_end - atom_start; + PyObject* resname = comp_id[atom_start]; + if (arginine.has_value() && arginine->IsResidue(resname)) { + arginine->Fix(atom_id.subspan(atom_start, atom_count), + atom_x.subspan(atom_start, atom_count), + atom_y.subspan(atom_start, atom_count), + atom_z.subspan(atom_start, atom_count)); + } + } +} + +std::vector SelectedPolymerResidueMask( + const MmcifLayout& layout, + const std::vector& atom_site_label_asym_ids, // + const std::vector& atom_site_label_seq_ids, // + const std::vector& atom_site_label_comp_ids, // + const std::vector& poly_seq_asym_ids, // + const std::vector& poly_seq_seq_ids, // + const std::vector& poly_seq_mon_ids // +) { + absl::flat_hash_map, + absl::string_view> + selected; + selected.reserve(layout.num_residues()); + // layout.residues() is O(1) while layout.residue_starts() is O(num_res). + const std::vector& residue_starts = layout.residue_starts(); + for (int i = 0; i < layout.residues().size(); ++i) { + std::size_t res_start = residue_starts[i]; + std::size_t res_end = layout.residues()[i]; + if (res_start == res_end) { + continue; // Skip empty residues (containing no atoms). + } + + absl::string_view label_seq_id = atom_site_label_seq_ids[i]; + if (label_seq_id == ".") { + continue; // Skip non-polymers. + } + + absl::string_view label_asym_id = atom_site_label_asym_ids[i]; + absl::string_view label_comp_id = atom_site_label_comp_ids[i]; + selected[std::make_pair(label_asym_id, label_seq_id)] = label_comp_id; + } + + std::vector mask; + mask.reserve(poly_seq_mon_ids.size()); + for (int i = 0; i < poly_seq_mon_ids.size(); ++i) { + absl::string_view poly_seq_asym_id = poly_seq_asym_ids[i]; + absl::string_view poly_seq_seq_id = poly_seq_seq_ids[i]; + absl::string_view poly_seq_mon_id = poly_seq_mon_ids[i]; + + auto it = selected.find(std::make_pair(poly_seq_asym_id, poly_seq_seq_id)); + if (it != selected.end()) { + mask.push_back(it->second == poly_seq_mon_id); + } else { + mask.push_back(true); // Missing residues are not heterogeneous. + } + } + return mask; +} + +std::pair, std::vector> SelectedLigandResidueMask( + const MmcifLayout& layout, // + const std::vector& atom_site_label_asym_ids, // + const std::vector& atom_site_label_seq_ids, // + const std::vector& atom_site_auth_seq_ids, // + const std::vector& atom_site_label_comp_ids, // + const std::vector& atom_site_pdbx_pdb_ins_codes, // + const std::vector& nonpoly_asym_ids, // + const std::vector& nonpoly_auth_seq_ids, // + const std::vector& nonpoly_pdb_ins_codes, // + const std::vector& nonpoly_mon_ids, // + const std::vector& branch_asym_ids, // + const std::vector& branch_auth_seq_ids, // + const std::vector& branch_pdb_ins_codes, // + const std::vector& branch_mon_ids) { + absl::flat_hash_map< + std::tuple, + absl::string_view> + selected; + selected.reserve(layout.num_residues()); + // layout.residues() is O(1) while layout.residue_starts() is O(num_res). + const std::vector& residue_starts = layout.residue_starts(); + for (int i = 0; i < layout.residues().size(); ++i) { + std::size_t res_start = residue_starts[i]; + std::size_t res_end = layout.residues()[i]; + if (res_start == res_end) { + continue; // Skip empty residues (containing no atoms). + } + + absl::string_view label_seq_id = atom_site_label_seq_ids[i]; + if (label_seq_id != ".") { + continue; // Skip polymers. + } + + absl::string_view label_asym_id = atom_site_label_asym_ids[i]; + absl::string_view auth_seq_id = atom_site_auth_seq_ids[i]; + absl::string_view ins_code = atom_site_pdbx_pdb_ins_codes[i]; + ins_code = ins_code == "?" ? "." : ins_code; // Remap unknown to unset. + absl::string_view label_comp_id = atom_site_label_comp_ids[i]; + selected[std::make_tuple(label_asym_id, auth_seq_id, ins_code)] = + label_comp_id; + } + + std::vector nonpoly_mask; + nonpoly_mask.reserve(nonpoly_asym_ids.size()); + for (int i = 0; i < nonpoly_asym_ids.size(); ++i) { + absl::string_view nonpoly_asym_id = nonpoly_asym_ids[i]; + absl::string_view nonpoly_auth_seq_id = nonpoly_auth_seq_ids[i]; + absl::string_view nonpoly_ins_code = nonpoly_pdb_ins_codes[i]; + // Remap unknown to unset. + nonpoly_ins_code = nonpoly_ins_code == "?" ? "." : nonpoly_ins_code; + absl::string_view nonpoly_mon_id = nonpoly_mon_ids[i]; + + auto it = selected.find(std::make_tuple( + nonpoly_asym_id, nonpoly_auth_seq_id, nonpoly_ins_code)); + if (it != selected.end()) { + nonpoly_mask.push_back(it->second == nonpoly_mon_id); + } else { + nonpoly_mask.push_back(true); // Missing residues are not heterogeneous. + } + } + + std::vector branch_mask; + branch_mask.reserve(branch_asym_ids.size()); + for (int i = 0; i < branch_asym_ids.size(); ++i) { + absl::string_view branch_asym_id = branch_asym_ids[i]; + absl::string_view branch_auth_seq_id = branch_auth_seq_ids[i]; + + // Insertion codes in _pdbx_branch_scheme are not required and can be + // missing. Default to unset ('.') in such case. + absl::string_view branch_ins_code; + if (i < branch_pdb_ins_codes.size()) { + branch_ins_code = branch_pdb_ins_codes[i]; + // Remap unknown to unset. + branch_ins_code = branch_ins_code == "?" ? "." : branch_ins_code; + } else { + branch_ins_code = "."; + } + + absl::string_view branch_mon_id = branch_mon_ids[i]; + + auto it = selected.find( + std::make_tuple(branch_asym_id, branch_auth_seq_id, branch_ins_code)); + if (it != selected.end()) { + branch_mask.push_back(it->second == branch_mon_id); + } else { + branch_mask.push_back(true); // Missing residues are not heterogeneous. + } + } + + return std::make_pair(nonpoly_mask, branch_mask); +} + +constexpr char kReadMmcifLayout[] = R"( +Returns the layout of the cif_dict. + +Args: + mmcif: mmCIF to calculate the layout for. + model_id: If non-empty the layout of the given model is returned + otherwise the layout of all models are returned. +Raises: + ValueError: if the mmCIF is malformed or the number of atoms in each + model are inconsistent. +)"; + +constexpr char kMmcifFilter[] = R"( +Returns NumpyArray of selected rows in `_atom_site` and new layout. + +Args: + mmcif: mmCIF to filter. + include_nucleotides: Whether to include polymer entities of type: + "polypeptide(L)\", "polydeoxyribonucleotide", "polyribonucleotide". + Otherwise only "polypeptide(L)\". ("polypeptide(D)\" is never included.) + include_ligands: Whether to include non-polymer entities of type: + "non-polymer", "branched". + include_water: Whether to include entities of type water. + include_other: Whether to include other (non-standard) entity types + that are not covered by any of the above parameters. + model_id: If non-empty the model with given name is selected otherwise + all models are selected. + +Returns: + A tuple containing a numpy array with a shape (num_models, num_atoms) + with the atom_site indices selected and the new layout. + +Raises: + ValueError error if mmCIF dict does not have all required fields. +)"; + +constexpr char kMmcifFixResidues[] = R"( +Fixes residue columns in-place. + +Args: + layout: layout from filter command. + comp_id: '_atom_site.label_comp_id' of first model. + group: '_atom_site.group_PDB' of first model. + atom_id: '_atom_site.label_atom_id' of first model. + type_symbol: '_atom_site.type_symbol' of first model. + atom_x: '_atom_site.Cartn_x' of first model. + atom_y: '_atom_site.Cartn_y' of first model. + atom_z: '_atom_site.Cartn_z' of first model. + fix_mse: Whether to convert MSE residues into MET residues. + fix_arg: Whether to ensure the atoms in ARG are in the correct order. + fix_unknown_dna: Whether to convert DNA residues from N to DN. + dna_mask: Which atoms are from DNA chains. + +Raises: + ValueError: If shapes are invalid. +)"; + +constexpr char kSelectedPolymerResidueMask[] = R"( +Returns a _pdbx_poly_seq_scheme mask for selected hetero residues. + +Should be called after filtering the layout using mmcif_utils.filter. + +Args: + layout: Layout defining the _atom_site residue selection. + atom_site_label_asym_ids: Internal (label) chain ID, per selected residue. + atom_site_label_seq_ids: Internal (label) residue ID, per selected residue. + atom_site_label_comp_ids: Residue name, per selected residue. + poly_seq_asym_ids: Internal (label) chain ID, per residue. + poly_seq_seq_ids: Internal (label) residue ID, per residue. + poly_seq_mon_ids: Residue name, per residue. + +Returns: + A mask for the _pdbx_poly_seq_scheme table. If residues are selected + using this mask, they will have consistent heterogeneous residue + selection with the _atom_site table. +)"; + +constexpr char kSelectedLigandResidueMask[] = R"( +Returns masks for selected ligand hetero residues. + +Should be called after filtering the layout using mmcif_utils.filter. + +Args: + layout: Layout defining the _atom_site residue selection. + atom_site_label_asym_ids: Internal (label) chain ID, per selected residue. + atom_site_label_seq_ids: Internal (author) residue ID, per selected residue. + atom_site_auth_seq_ids: External (author) residue ID, per selected residue. + atom_site_label_comp_ids: Residue name, per selected residue. + atom_site_pdbx_pdb_ins_codes: Insertion code, per selected residue. + nonpoly_asym_ids: Internal (label) chain ID, per residue from + _pdbx_nonpoly_scheme. + nonpoly_auth_seq_ids: External (author) residue ID, per residue from + _pdbx_nonpoly_scheme. + nonpoly_pdb_ins_codes: Residue name, per residue from + _pdbx_nonpoly_scheme. + nonpoly_mon_ids: Insertion code, per residue from _pdbx_nonpoly_scheme. + branch_asym_ids: Internal (label) chain ID, per residue from + _pdbx_branch_scheme. + branch_auth_seq_ids: External (author) residue ID, per residue from + _pdbx_branch_scheme. + branch_pdb_ins_codes: Residue name, per residue from _pdbx_branch_scheme. + branch_mon_ids: Insertion code, per residue from _pdbx_branch_scheme. + +Returns: + A tuple with masks for _pdbx_nonpoly_scheme and _pdbx_branch_scheme. If + residues are selected using these masks, they will have consistent + heterogeneous residue selection with the _atom_site table. +)"; + +} // namespace + +void RegisterModuleMmcifUtils(pybind11::module m) { + m.def("read_layout", ReadMmcifLayout, + py::arg("mmcif"), // + py::arg("model_id") = "", // + py::doc(kReadMmcifLayout + 1) // + ); + + m.def("filter", MmcifFilter, // + py::arg("mmcif"), // + py::arg("include_nucleotides"), // + py::arg("include_ligands") = false, // + py::arg("include_water") = false, // + py::arg("include_other") = false, // + py::arg("model_id") = "", // + py::doc(kMmcifFilter + 1) // + ); + + m.def("fix_residues", MmcifFixResidues, + py::arg("layout"), // + py::arg("comp_id"), // + py::arg("atom_id"), // + py::arg("atom_x"), // + py::arg("atom_y"), // + py::arg("atom_z"), // + py::arg("fix_arg") = false, // + py::doc(kMmcifFixResidues + 1) // + ); + + m.def("selected_polymer_residue_mask", SelectedPolymerResidueMask, + py::arg("layout"), // + py::arg("atom_site_label_asym_ids"), // + py::arg("atom_site_label_seq_ids"), // + py::arg("atom_site_label_comp_ids"), // + py::arg("poly_seq_asym_ids"), // + py::arg("poly_seq_seq_ids"), // + py::arg("poly_seq_mon_ids"), // + py::call_guard(), // + py::doc(kSelectedPolymerResidueMask + 1) // + ); + + m.def("selected_ligand_residue_mask", SelectedLigandResidueMask, + py::arg("layout"), // + py::arg("atom_site_label_asym_ids"), // + py::arg("atom_site_label_seq_ids"), // + py::arg("atom_site_auth_seq_ids"), // + py::arg("atom_site_label_comp_ids"), // + py::arg("atom_site_pdbx_pdb_ins_codes"), // + py::arg("nonpoly_asym_ids"), // + py::arg("nonpoly_auth_seq_ids"), // + py::arg("nonpoly_pdb_ins_codes"), // + py::arg("nonpoly_mon_ids"), // + py::arg("branch_asym_ids"), // + py::arg("branch_auth_seq_ids"), // + py::arg("branch_pdb_ins_codes"), // + py::arg("branch_mon_ids"), // + py::call_guard(), // + py::doc(kSelectedLigandResidueMask + 1) // + ); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.h b/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.h new file mode 100644 index 0000000000000000000000000000000000000000..7ba19420b228b6ad3fb81ce55d47608437ddc45e --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/mmcif_utils_pybind.h @@ -0,0 +1,24 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_UTILS_PYBIND_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_UTILS_PYBIND_H_ + +#include "pybind11/pybind11.h" + +namespace alphafold3 { + +void RegisterModuleMmcifUtils(pybind11::module m); + +} + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_MMCIF_UTILS_PYBIND_H_ diff --git a/flax_model/alphafold3/structure/cpp/string_array.pyi b/flax_model/alphafold3/structure/cpp/string_array.pyi new file mode 100644 index 0000000000000000000000000000000000000000..5c0573b0494a03a9aa4b79702601f6df3a205515 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/string_array.pyi @@ -0,0 +1,42 @@ + + +from collections.abc import Sequence +from typing import Any, overload + +import numpy as np + + +def format_float_array( + values: Sequence[float], num_decimal_places: int +) -> list[str]: ... + + +def isin( + array: np.ndarray[object], + test_elements: set[str | bytes], + *, + invert: bool = ..., +) -> np.ndarray[bool]: ... + + +@overload +def remap( + array: np.ndarray[object], + mapping: dict[str, str], + default_value: str, + inplace: bool = ..., +) -> np.ndarray[object]: ... + + +@overload +def remap( + array: np.ndarray[object], + mapping: dict[str, str], + inplace: bool = ..., +) -> np.ndarray[object]: ... + + +def remap_multiple( + arrays: Sequence[np.ndarray[object]], + mapping: dict[tuple[Any], int], +) -> np.ndarray[int]: ... diff --git a/flax_model/alphafold3/structure/cpp/string_array_pybind.cc b/flax_model/alphafold3/structure/cpp/string_array_pybind.cc new file mode 100644 index 0000000000000000000000000000000000000000..29fac727a3e689aa116bc82aba1d16d7a190e391 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/string_array_pybind.cc @@ -0,0 +1,329 @@ +// Copyright 2024 DeepMind Technologies Limited +// +// AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +// this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +// +// To request access to the AlphaFold 3 model parameters, follow the process set +// out at https://github.com/google-deepmind/alphafold3. You may only use these +// if received directly from Google. Use is subject to terms of use available at +// https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +#include + +#include +#include +#include +#include +#include +#include +#include +#include + +#include "numpy/arrayobject.h" +#include "numpy/ndarrayobject.h" +#include "numpy/ndarraytypes.h" +#include "numpy/npy_common.h" +#include "absl/algorithm/container.h" +#include "absl/container/flat_hash_set.h" +#include "absl/strings/str_format.h" +#include "absl/strings/string_view.h" +#include "absl/types/span.h" +#include "pybind11/cast.h" +#include "pybind11/numpy.h" +#include "pybind11/pybind11.h" +#include "pybind11/pytypes.h" +#include "pybind11_abseil/absl_casters.h" + +namespace { + +namespace py = pybind11; + +PyObject* RemapNumpyArrayObjects(PyObject* array, PyObject* mapping, + bool inplace, PyObject* default_value) { + import_array(); + if (!PyArray_Check(array)) { + PyErr_SetString(PyExc_TypeError, "'array' must be a np.ndarray."); + return nullptr; + } + if (!PyDict_Check(mapping)) { + PyErr_SetString(PyExc_TypeError, "'mapping' must be a Python dict."); + return nullptr; + } + + PyArrayObject* array_obj = reinterpret_cast(array); + if (PyArray_TYPE(array_obj) != NPY_OBJECT) { + PyErr_SetString(PyExc_TypeError, "`array` must be an array of objects."); + return nullptr; + } + + if (inplace) { + // We are returning original array so we need to increase the ref count. + Py_INCREF(array); + } else { + // We are returning a fresh copy. + array = PyArray_NewCopy(array_obj, NPY_CORDER); + if (array == nullptr) { + PyErr_SetString(PyExc_MemoryError, "Out of memory!"); + return nullptr; + } + array_obj = reinterpret_cast(array); + } + + if (PyArray_SIZE(array_obj) == 0) { + return array; + } + + if (default_value == nullptr && PyDict_Size(mapping) == 0) { + return array; + } + + NpyIter* iter = NpyIter_New( + array_obj, NPY_ITER_READWRITE | NPY_ITER_EXTERNAL_LOOP | NPY_ITER_REFS_OK, + NPY_KEEPORDER, NPY_NO_CASTING, nullptr); + if (iter == nullptr) { + PyErr_SetString(PyExc_MemoryError, "Out of memory!"); + Py_XDECREF(array); + return nullptr; + } + + NpyIter_IterNextFunc* iter_next = NpyIter_GetIterNext(iter, nullptr); + if (iter_next == nullptr) { + NpyIter_Deallocate(iter); + Py_XDECREF(array); + PyErr_SetString(PyExc_MemoryError, "Out of memory!"); + return nullptr; + } + + // Iterating arrays taken from: + // https://numpy.org/doc/stable/reference/c-api/iterator.html + char** data_pointer = NpyIter_GetDataPtrArray(iter); + npy_intp* stride_pointer = NpyIter_GetInnerStrideArray(iter); + npy_intp* inner_size_pointer = NpyIter_GetInnerLoopSizePtr(iter); + do { + char* data = *data_pointer; + npy_intp stride = *stride_pointer; + npy_intp count = *inner_size_pointer; + for (size_t i = 0; i < count; ++i) { + PyObject* entry; + std::memcpy(&entry, data, sizeof(PyObject*)); + PyObject* result = PyDict_GetItem(mapping, entry); + if (result != nullptr) { + // Replace entry. + Py_INCREF(result); + Py_XDECREF(entry); + std::memcpy(data, &result, sizeof(PyObject*)); + } else if (default_value != nullptr) { + // Replace entry with a default value. + Py_INCREF(default_value); + Py_XDECREF(entry); + std::memcpy(data, &default_value, sizeof(PyObject*)); + } + data += stride; + } + } while (iter_next(iter)); + + NpyIter_Deallocate(iter); + return array; +} + +// Convert 1D Numpy float array to a list of strings where each string has fixed +// number of decimal points. This is faster than Python list comprehension. +std::vector FormatFloatArray(absl::Span values, + int num_decimal_places) { + std::vector output; + output.reserve(values.size()); + + absl::c_transform(values, std::back_inserter(output), + [num_decimal_places](float value) { + return absl::StrFormat("%.*f", num_decimal_places, value); + }); + return output; +} + +py::array_t IsIn( + const py::array_t& array, + const absl::flat_hash_set& test_elements, bool invert) { + const size_t num_elements = array.size(); + py::array_t output(num_elements); + std::fill(output.mutable_data(), output.mutable_data() + output.size(), + invert); + + // Shortcut: The output will be trivially always false if test_elements empty. + if (test_elements.empty()) { + return output; + } + + for (size_t i = 0; i < num_elements; ++i) { + // Compare the string values instead of comparing just object pointers. + py::handle handle = array.data()[i]; + if (!PyUnicode_Check(handle.ptr()) && !PyBytes_Check(handle.ptr())) { + continue; + } + if (test_elements.contains(py::cast(handle))) { + output.mutable_data()[i] = !invert; + } + } + if (array.ndim() > 1) { + auto shape = + std::vector(array.shape(), array.shape() + array.ndim()); + return output.reshape(shape); + } + return output; +} + +py::array RemapMultipleArrays( + const std::vector>& arrays, + const py::dict& mapping) { + size_t array_size = arrays[0].size(); + for (const auto& array : arrays) { + if (array.size() != array_size) { + throw py::value_error("All arrays must have the same length."); + } + } + + // Create a result buffer. + auto result = py::array_t(array_size); + absl::Span result_buffer(result.mutable_data(), array_size); + PyObject* entry = PyTuple_New(arrays.size()); + if (entry == nullptr) { + throw py::error_already_set(); + } + std::vector> array_spans; + array_spans.reserve(arrays.size()); + for (const auto& array : arrays) { + array_spans.emplace_back(array.data(), array.size()); + } + + // Iterate over arrays and look up elements in the `py_dict`. + bool fail = false; + for (size_t i = 0; i < array_size; ++i) { + for (size_t j = 0; j < array_spans.size(); ++j) { + PyTuple_SET_ITEM(entry, j, array_spans[j][i]); + } + PyObject* result = PyDict_GetItem(mapping.ptr(), entry); + if (result != nullptr) { + int64_t result_value = PyLong_AsLongLong(result); + if (result_value == -1 && PyErr_Occurred()) { + fail = true; + break; + } + if (result_value > std::numeric_limits::max() || + result_value < std::numeric_limits::lowest()) { + PyErr_SetString(PyExc_OverflowError, "Result value too large."); + fail = true; + break; + } + result_buffer[i] = result_value; + } else { + PyErr_Format(PyExc_KeyError, "%R", entry); + fail = true; + break; + } + } + + for (size_t j = 0; j < array_spans.size(); ++j) { + PyTuple_SET_ITEM(entry, j, nullptr); + } + Py_XDECREF(entry); + if (fail) { + throw py::error_already_set(); + } + return result; +} + +constexpr char kRemapNumpyArrayObjects[] = R"( +Replace objects in NumPy array of objects using mapping. + +Args: + array: NumPy array with dtype=object. + mapping: Dict mapping old values to new values. + inplace: Bool (default False) whether to replace values inplace or to + create a new array. + default_value: If given, what value to map to if the mapping is missing + for that particular item. If not given, such items are left unchanged. + +Returns + NumPy array of dtype object with values replaced according to mapping. + If inplace is True the original array is modified inplace otherwise a + new array is returned. +)"; + +constexpr char kFormatFloatArrayDoc[] = R"( +Converts float -> string array with given number of decimal places. +)"; + +constexpr char kIsInDoc[] = R"( +Computes whether each element is in test_elements. + +Same use as np.isin, but much faster. If len(array) = n, len(test_elements) = m: +* This function has complexity O(n). +* np.isin with arrays of objects has complexity O(m*log(m) + n * log(m)). + +Args: + array: Input NumPy array with dtype=object. + test_elements: The values against which to test each value of array. + invert: If True, the values in the returned array are inverted, as if + calculating `element not in test_elements`. Default is False. + `isin(a, b, invert=True)` is equivalent to but faster than `~isin(a, b)`. + +Returns + A boolean array of the same shape as the input array. Each value `val` is: + * `val in test_elements` if `invert=False`, + * `val not in test_elements` if `invert=True`. +)"; + +constexpr char kRemapMultipleDoc[] = R"( +Maps keys from multiple aligned arrays to a single array. + +Args: + arrays: Numpy arrays of the same length. The tuple of aligned entries is used + as key for the mapping. + mapping: Dict mapping from tuples to integer values. + +Returns + NumPy array of dtype `int` with values looked up in mapping according to the + tuple of aligned array entries as keys. +)"; + +} // namespace + +namespace alphafold3 { + +void RegisterModuleStringArray(pybind11::module m) { + m.def( + "remap", + [](py::object array, py::object mapping, bool inplace, + py::object default_value) -> py::object { + PyObject* result = RemapNumpyArrayObjects(array.ptr(), mapping.ptr(), + inplace, default_value.ptr()); + if (result == nullptr) { + throw py::error_already_set(); + } + return py::reinterpret_steal(result); + }, + py::return_value_policy::take_ownership, py::arg("array"), + py::arg("mapping"), py::arg("inplace") = false, py::arg("default_value"), + py::doc(kRemapNumpyArrayObjects + 1)); + m.def( + "remap", + [](py::object array, py::object mapping, bool inplace) -> py::object { + PyObject* result = RemapNumpyArrayObjects(array.ptr(), mapping.ptr(), + inplace, nullptr); + if (result == nullptr) { + throw py::error_already_set(); + } + return py::reinterpret_steal(result); + }, + py::return_value_policy::take_ownership, py::arg("array"), + py::arg("mapping"), py::arg("inplace") = false, + py::doc(kRemapNumpyArrayObjects + 1)); + m.def("format_float_array", &FormatFloatArray, py::arg("values"), + py::arg("num_decimal_places"), py::doc(kFormatFloatArrayDoc + 1), + py::call_guard()); + m.def("isin", &IsIn, py::arg("array"), py::arg("test_elements"), + py::kw_only(), py::arg("invert") = false, py::doc(kIsInDoc + 1)); + m.def("remap_multiple", &RemapMultipleArrays, py::arg("arrays"), + py::arg("mapping"), py::doc(kRemapMultipleDoc + 1)); +} + +} // namespace alphafold3 diff --git a/flax_model/alphafold3/structure/cpp/string_array_pybind.h b/flax_model/alphafold3/structure/cpp/string_array_pybind.h new file mode 100644 index 0000000000000000000000000000000000000000..85790ddd831cd560b9340c2c8b6047e50250ec94 --- /dev/null +++ b/flax_model/alphafold3/structure/cpp/string_array_pybind.h @@ -0,0 +1,24 @@ +/* + * Copyright 2024 DeepMind Technologies Limited + * + * AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of + * this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + * + * To request access to the AlphaFold 3 model parameters, follow the process set + * out at https://github.com/google-deepmind/alphafold3. You may only use these + * if received directly from Google. Use is subject to terms of use available at + * https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + */ + +#ifndef ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_STRING_ARRAY_PYBIND_H_ +#define ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_STRING_ARRAY_PYBIND_H_ + +#include "pybind11/pybind11.h" + +namespace alphafold3 { + +void RegisterModuleStringArray(pybind11::module m); + +} + +#endif // ALPHAFOLD3_SRC_ALPHAFOLD3_STRUCTURE_PYTHON_STRING_ARRAY_PYBIND_H_ diff --git a/flax_model/alphafold3/structure/mmcif.py b/flax_model/alphafold3/structure/mmcif.py new file mode 100644 index 0000000000000000000000000000000000000000..2f9252af2a3dd078b9c770dc86cbf6698177ffd4 --- /dev/null +++ b/flax_model/alphafold3/structure/mmcif.py @@ -0,0 +1,321 @@ + + +"""Low level mmCIF parsing operations and wrappers for nicer C++/Py errors. + +Note that the cif_dict.CifDict class has many useful methods to help with data +extraction which are not shown in this file. You can find them in cif_dict.clif +together with docstrings. The cif_dict.CifDict class behaves like an immutable +Python dictionary (some methods are not implemented though). +""" +from collections.abc import Callable, Mapping, Sequence +import functools +import itertools +import re +from typing import ParamSpec, TypeAlias, TypeVar + +from flax_model.alphafold3.constants import chemical_components +from flax_model.alphafold3.cpp import cif_dict +from flax_model.alphafold3.cpp import mmcif_atom_site +from flax_model.alphafold3.cpp import mmcif_struct_conn +from flax_model.alphafold3.cpp import string_array +import numpy as np + +Mmcif = cif_dict.CifDict + + +_P = ParamSpec('_P') +_T = TypeVar('_T') +_WappedFn: TypeAlias = Callable[_P, _T] + + +@functools.lru_cache(maxsize=256) +def int_id_to_str_id(num: int) -> str: + """Encodes a number as a string, using reverse spreadsheet style naming. + + Args: + num: A positive integer. + + Returns: + A string that encodes the positive integer using reverse spreadsheet style, + naming e.g. 1 = A, 2 = B, ..., 27 = AA, 28 = BA, 29 = CA, ... This is the + usual way to encode chain IDs in mmCIF files. + """ + if num <= 0: + raise ValueError(f'Only positive integers allowed, got {num}.') + + num = num - 1 # 1-based indexing. + output = [] + while num >= 0: + output.append(chr(num % 26 + ord('A'))) + num = num // 26 - 1 + return ''.join(output) + + +@functools.lru_cache(maxsize=256) +def str_id_to_int_id(str_id: str) -> int: + """Encodes an mmCIF-style string chain ID as an integer. + + The integer IDs are one based so this function is the inverse of + int_id_to_str_id. + + Args: + str_id: A string chain ID consisting only of upper case letters A-Z. + + Returns: + An integer that can be used to order mmCIF chain IDs in the standard + (reverse spreadsheet style) ordering. + """ + if not re.match('^[A-Z]+$', str_id): + raise ValueError(f'String ID must be upper case letters, got {str_id}.') + + offset = ord('A') - 1 + output = 0 + for i, c in enumerate(str_id): + output += (ord(c) - offset) * int(26**i) + return output + + +def from_string(mmcif_string: str | bytes) -> Mmcif: + return cif_dict.from_string(mmcif_string) + + +def parse_multi_data_cif(cif_string: str) -> dict[str, Mmcif]: + """Parses a CIF string with multiple data records. + + For instance, the CIF string: + + ``` + data_001 + _foo bar + # + data_002 + _foo baz + ``` + + is parsed as: + + ``` + {'001': Mmcif({'_foo': ['bar']}), '002': Mmcif({'_foo': ['baz']})} + ``` + + Args: + cif_string: The multi-data CIF string to be parsed. + + Returns: + A dictionary mapping record names to Mmcif objects with data. + """ + return cif_dict.parse_multi_data_cif(cif_string) + + +# def tokenize(mmcif_string: str) -> list[str]: +# return cif_dict.tokenize(mmcif_string) + + +# def split_line(line: str) -> list[str]: +# return cif_dict.split_line(line) + + +class BondParsingError(Exception): + """Exception raised by errors when getting bond atom indices.""" + + +def get_bond_atom_indices( + mmcif: Mmcif, + model_id: str = '1', +) -> tuple[Sequence[int], Sequence[int]]: + """Extracts the indices of the atoms that participate in bonds. + + Args: + mmcif: The mmCIF object to process. + model_id: The ID of the model that the returned atoms will belong to. This + should be a value in the mmCIF's _atom_site.pdbx_PDB_model_num column. + + Returns: + Two lists of atom indices, `from_atoms` and `to_atoms`, each one having + length num_bonds (as defined by _struct_conn, the bonds table). The bond + i, defined by the i'th row in _struct_conn, is a bond from atom at index + from_atoms[i], to the atom at index to_atoms[i]. The indices are simple + 0-based indexes into the columns of the _atom_site table in the input + mmCIF, and do not necessarily correspond to the values in _atom_site.id, + or any other column. + + Raises: + BondParsingError: If any of the required tables or columns are not present + in + the mmCIF, or if the _struct_conn table refers to atoms that cannot + be found in the _atom_site table. + """ + try: + return mmcif_struct_conn.get_bond_atom_indices(mmcif, model_id) + except ValueError as e: + raise BondParsingError(str(e)) from e + + +def get_or_infer_type_symbol( + mmcif: Mmcif, ccd: chemical_components.Ccd | None = None +) -> Sequence[str]: + """Returns the type symbol (element) for all of the atoms. + + Args: + mmcif: A parsed mmCIF file in the Mmcif format. + ccd: The chemical component dictionary. If not provided, defaults to the + cached CCD. + + If present, returns the _atom_site.type_symbol. If not, infers it using + _atom_site.label_comp_id (residue name), _atom_site.label_atom_id (atom name) + and the CCD. + """ + ccd = ccd or chemical_components.Ccd() + type_symbol_fn = lambda res_name, atom_name: chemical_components.type_symbol( + ccd, res_name, atom_name + ) + return mmcif_atom_site.get_or_infer_type_symbol(mmcif, type_symbol_fn) + + +def get_chain_type_by_entity_id(mmcif: Mmcif) -> Mapping[str, str]: + """Returns mapping from entity ID to its type or polymer type if available. + + If the entity is in the _entity_poly table, returns its polymer chain type. + If not, returns the type as specified in the _entity table. + + Args: + mmcif: CifDict holding the mmCIF. + """ + poly_entity_id = mmcif.get('_entity_poly.entity_id', []) + poly_type = mmcif.get('_entity_poly.type', []) + poly_type_by_entity_id = dict(zip(poly_entity_id, poly_type, strict=True)) + + chain_type_by_entity_id = {} + for entity_id, entity_type in zip( + mmcif.get('_entity.id', []), mmcif.get('_entity.type', []), strict=True + ): + chain_type = poly_type_by_entity_id.get(entity_id) or entity_type + chain_type_by_entity_id[entity_id] = chain_type + + return chain_type_by_entity_id + + +def get_internal_to_author_chain_id_map(mmcif: Mmcif) -> Mapping[str, str]: + """Returns a mapping from internal chain ID to the author chain ID. + + Note that this is not a bijection. One author chain ID can map to multiple + internal chain IDs. For example, a protein chain and a ligand bound to it will + share the same author chain ID, but they will each have a unique internal + chain ID). + + Args: + mmcif: CifDict holding the mmCIF. + """ + return mmcif_atom_site.get_internal_to_author_chain_id_map(mmcif) + + +def get_experimental_method(mmcif: Mmcif) -> str | None: + field = '_exptl.method' + return ','.join(mmcif[field]).lower() if field in mmcif else None + + +def get_release_date(mmcif: Mmcif) -> str | None: + """Returns the oldest revision date.""" + if '_pdbx_audit_revision_history.revision_date' not in mmcif: + return None + + # Release dates are ISO-8601, hence sort well. + return min(mmcif['_pdbx_audit_revision_history.revision_date']) + + +def get_resolution(mmcif: Mmcif) -> float | None: + """Returns the resolution of the structure. + + More than one resolution can be reported in an mmCIF. This function returns + the first one (in the order _refine.ls_d_res_high, + _em_3d_reconstruction.resolution, _reflns.d_resolution_high) that appears + in the mmCIF as is parseable as a float. + + Args: + mmcif: An `Mmcif` object. + + Returns: + The resolution as reported in the mmCIF. + """ + for res_key in ('_refine.ls_d_res_high', + '_em_3d_reconstruction.resolution', + '_reflns.d_resolution_high'): + if res_key in mmcif: + try: + raw_resolution = mmcif[res_key][0] + return float(raw_resolution) + except ValueError: + continue + return None + + +def parse_oper_expr(oper_expression: str) -> list[tuple[str, ...]]: + """Determines which transforms to apply based on an MMCIF oper_expression str. + + Args: + oper_expression: the field oper_expression from MMCIF format data. + Transform ids may be either numbers or single letters. Hyphens are used to + denote a numeric range of transforms to apply, and commas are used to + delimit a sequence of transforms. Where two sets of parentheses are + adjacent without a comma, the two sets of transforms should be combined as + a cartesian product, i.e. all possible pairs. + example 1,2,3 -> generate 3 copies of each chain by applying 1, 2 or 3. + example (1-3) -> generate 3 copies of each chain by applying 1, 2 or 3. + example (1-3)(4-6) -> generate 9 copies of each chain by applying one of + [(1,4), (1,5), (1,6), + (2,4), (2,5), (2,6), + (3,4), (3,5), (3,6)] + example (P) -> apply transform with id P. + + Raises: + ValueError: Failure to parse oper_expression. + + Returns: + A list with one element for each chain copy that should be generated. + Each element is a list of transform ids to apply. + """ + # Expand ranges, e.g. 1-4 -> 1,2,3,4. + def range_expander(match): + return ','.join( + [str(i) for i in range(int(match.group(1)), + int(match.group(2)) + 1)]) + + ranges_expanded = re.sub(r'\b(\d+)-(\d+)', range_expander, oper_expression) + + if re.fullmatch(r'(\w+,)*\w+', ranges_expanded): + # No brackets, just a single range, e.g. "1,2,3". + return [(t,) for t in ranges_expanded.split(',')] + elif re.fullmatch(r'\((\w+,)*\w+\)', ranges_expanded): + # Single range in brackets, e.g. "(1,2,3)". + return [(t,) for t in ranges_expanded[1:-1].split(',')] + elif re.fullmatch(r'\((\w+,)*\w+\)\((\w+,)*\w+\)', ranges_expanded): + # Cartesian product of two ranges, e.g. "(1,2,3)(4,5)". + part1, part2 = ranges_expanded[1:-1].split(')(') + return list(itertools.product(part1.split(','), part2.split(','))) + else: + raise ValueError(f'Unsupported oper_expression format: {oper_expression}') + + +def format_float_array( + values: np.ndarray, num_decimal_places: int) -> Sequence[str]: + """Converts 1D array to a list of strings with the given number of decimals. + + This function is faster than converting via Python list comprehension, e.g.: + atoms_x = ['%.3f' % x for x in atoms_x] + + Args: + values: A numpy array with values to convert. This array is casted to + float32 before doing the conversion. + num_decimal_places: The number of decimal points to keep, including trailing + zeros. E.g. for 1.07 and num_decimal_places=1: 1.1, + num_decimal_places=2: 1.07, num_decimal_places=3: 1.070. + + Returns: + A list of formatted strings. + """ + if values.ndim != 1: + raise ValueError(f'The given array must be 1D, got {values.ndim}D') + + return string_array.format_float_array( + values=values.astype(np.float32), num_decimal_places=num_decimal_places + ) diff --git a/flax_model/alphafold3/structure/parsing.py b/flax_model/alphafold3/structure/parsing.py new file mode 100644 index 0000000000000000000000000000000000000000..e924737e83bf1fb092dcd031a8c24fe7f46967a6 --- /dev/null +++ b/flax_model/alphafold3/structure/parsing.py @@ -0,0 +1,1801 @@ + + +"""Module for parsing various data sources and producing Structures.""" + +from collections.abc import Collection, Mapping, MutableMapping, Sequence +import dataclasses +import datetime +import enum +import functools +import itertools +from typing import TypeAlias + +from flax_model.alphafold3.constants import chemical_components +from flax_model.alphafold3.constants import mmcif_names +from flax_model.alphafold3.constants import residue_names +from flax_model.alphafold3.cpp import mmcif_utils +from flax_model.alphafold3.cpp import string_array +from flax_model.alphafold3.structure import bioassemblies +from flax_model.alphafold3.structure import bonds +from flax_model.alphafold3.structure import chemical_components as struc_chem_comps +from flax_model.alphafold3.structure import mmcif +from flax_model.alphafold3.structure import structure +from flax_model.alphafold3.structure import structure_tables +import numpy as np + + +ChainIndex: TypeAlias = int +ResIndex: TypeAlias = int +AtomName: TypeAlias = str +BondAtomId: TypeAlias = tuple[ChainIndex, ResIndex, AtomName] + +_INSERTION_CODE_REMAP: Mapping[str, str] = {'.': '?'} + + +class NoAtomsError(Exception): + """Raise when the mmCIF does not have any atoms.""" + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class BondIndices: + from_indices: list[int] + dest_indices: list[int] + + +@enum.unique +class ModelID(enum.Enum): + """Values for specifying model IDs when parsing.""" + + FIRST = 1 # The first model in the file. + ALL = 2 # All models in the file. + + +@enum.unique +class SequenceFormat(enum.Enum): + """The possible formats for an input sequence.""" + + FASTA = 'fasta' # One-letter code used in FASTA. + CCD_CODES = 'ccd_codes' # Multiple-letter chemical components dictionary ids. + LIGAND_SMILES = 'ligand_smiles' # SMILES string defining a molecule. + + +def _create_bond_lookup( + bonded_atom_pairs: Sequence[tuple[BondAtomId, BondAtomId]], +) -> Mapping[tuple[ChainIndex, ResIndex], Mapping[AtomName, BondIndices]]: + """Creates maps to help find bonds during a loop over residues.""" + bond_lookup = {} + for bond_i, (from_atom_id, dest_atom_id) in enumerate(bonded_atom_pairs): + from_chain_i, from_res_i, from_atom_name = from_atom_id + dest_chain_i, dest_res_i, dest_atom_name = dest_atom_id + bonds_by_from_atom_name = bond_lookup.setdefault( + (from_chain_i, from_res_i), {} + ) + bonds_by_dest_atom_name = bond_lookup.setdefault( + (dest_chain_i, dest_res_i), {} + ) + bonds_by_from_atom_name.setdefault( + from_atom_name, BondIndices(from_indices=[], dest_indices=[]) + ).from_indices.append(bond_i) + bonds_by_dest_atom_name.setdefault( + dest_atom_name, BondIndices(from_indices=[], dest_indices=[]) + ).dest_indices.append(bond_i) + return bond_lookup + + +def _get_atom_element( + ccd: chemical_components.Ccd, res_name: str, atom_name: str +) -> str: + type_symbol = chemical_components.type_symbol( + ccd, res_name=res_name, atom_name=atom_name + ) + return type_symbol or '?' + + +def _get_representative_atom( + ccd: chemical_components.Ccd, + res_name: str, + chain_type: str, + sequence_format: SequenceFormat, +) -> tuple[str, str]: + match sequence_format: + case SequenceFormat.CCD_CODES: + atom_name = _get_first_non_leaving_atom(ccd=ccd, res_name=res_name) + atom_element = _get_atom_element( + ccd=ccd, res_name=res_name, atom_name=atom_name + ) + return atom_name, atom_element + case SequenceFormat.LIGAND_SMILES: + return '', '?' + case SequenceFormat.FASTA: + if chain_type in mmcif_names.PEPTIDE_CHAIN_TYPES: + return 'CA', 'C' + if chain_type in mmcif_names.NUCLEIC_ACID_CHAIN_TYPES: + return "C1'", 'C' + else: + raise ValueError(chain_type) + case _: + raise ValueError(sequence_format) + + +@functools.lru_cache(maxsize=128) +def _get_first_non_leaving_atom( + ccd: chemical_components.Ccd, res_name: str +) -> str: + """Returns first definitely non-leaving atom if exists, as a stand-in.""" + all_atoms = struc_chem_comps.get_all_atoms_in_entry(ccd, res_name=res_name)[ + '_chem_comp_atom.atom_id' + ] + representative_atom = all_atoms[0] + if representative_atom == 'O1' and len(all_atoms) > 1: + representative_atom = all_atoms[1] + return representative_atom + + +def _add_ligand_to_chem_comp( + chem_comp: MutableMapping[str, struc_chem_comps.ChemCompEntry], + ligand_id: str, + ligand_smiles: str, +): + """Adds a ligand to chemical components. Raises ValueError on mismatch.""" + new_entry = struc_chem_comps.ChemCompEntry( + type='non-polymer', pdbx_smiles=ligand_smiles + ) + + existing_entry = chem_comp.get(ligand_id) + if existing_entry is None: + chem_comp[ligand_id] = new_entry + elif existing_entry != new_entry: + raise ValueError( + f'Mismatching data for ligand {ligand_id}: ' + f'{new_entry} != {existing_entry}' + ) + + +def _get_first_model_id(cif: mmcif.Mmcif) -> str: + """Returns cheaply the first model ID from the mmCIF.""" + return cif.get_array( + '_atom_site.pdbx_PDB_model_num', dtype=object, gather=slice(1) + )[0] + + +def _get_str_model_id( + cif: mmcif.Mmcif, + model_id: ModelID | int, +) -> str: + """Converts a user-specified model_id argument into a string.""" + match model_id: + case int(): + str_model_id = str(model_id) + case enum.Enum(): + # We compare the enum's value attribute since regular enum comparison + # breaks when adhoc importing. + match model_id.value: + case ModelID.FIRST.value: + try: + str_model_id = _get_first_model_id(cif) + except IndexError as e: + raise NoAtomsError( + 'The mmCIF does not have any atoms or' + ' _atom_site.pdbx_PDB_model_num is missing.' + ) from e + case ModelID.ALL.value: + str_model_id = '' + case _: + raise ValueError( + f'Model ID {model_id} with value {model_id.value} not recognized.' + ) + case _: + raise ValueError( + f'Model ID {model_id} with type {type(model_id)} not recognized.' + ) + return str_model_id + + +def _parse_bonds( + cif: mmcif.Mmcif, + atom_key: np.ndarray, + model_id: str, +) -> bonds.Bonds: + """Returns the bonds table extracted from the mmCIF. + + Args: + cif: The raw mmCIF to extract the bond information from. + atom_key: A numpy array defining atom key for each atom in _atom_site. Note + that the atom key must be computed before resolving alt-locs since this + function operates on the raw mmCIF! + model_id: The ID of the model to get bonds for. + """ + if '_struct_conn.id' not in cif: + # This is the category key item for the _struct_conn table, therefore + # we use it to determine whether to parse bond info. + return bonds.Bonds.make_empty() + from_atom, dest_atom = mmcif.get_bond_atom_indices(cif, model_id) + from_atom = np.array(from_atom, dtype=np.int64) + dest_atom = np.array(dest_atom, dtype=np.int64) + num_bonds = from_atom.shape[0] + bond_key = np.arange(num_bonds, dtype=np.int64) + bond_type = cif.get_array('_struct_conn.conn_type_id', dtype=object) + if '_struct_conn.pdbx_role' in cif: # This column isn't always present. + bond_role = cif.get_array('_struct_conn.pdbx_role', dtype=object) + else: + bond_role = np.full((num_bonds,), '?', dtype=object) + + bonds_mask = np.ones((num_bonds,), dtype=bool) + # Symmetries other than 1_555 imply the atom is not part of the asymmetric + # unit, and therefore this is a bond that only exists in the expanded + # bioassembly. + # We do not currently support parsing these types of bonds. + if '_struct_conn.ptnr1_symmetry' in cif: + ptnr1_symmetry = cif.get_array('_struct_conn.ptnr1_symmetry', dtype=object) + np.logical_and(bonds_mask, ptnr1_symmetry == '1_555', out=bonds_mask) + if '_struct_conn.ptnr2_symmetry' in cif: + ptnr2_symmetry = cif.get_array('_struct_conn.ptnr2_symmetry', dtype=object) + np.logical_and(bonds_mask, ptnr2_symmetry == '1_555', out=bonds_mask) + # Remove bonds that involve atoms that are not part of the structure, + # e.g. waters if include_water=False. In a rare case this also removes invalid + # bonds that are indicated by a key that is set to _atom_site size. + np.logical_and(bonds_mask, np.isin(from_atom, atom_key), out=bonds_mask) + np.logical_and(bonds_mask, np.isin(dest_atom, atom_key), out=bonds_mask) + return bonds.Bonds( + key=bond_key[bonds_mask], + type=bond_type[bonds_mask], + role=bond_role[bonds_mask], + from_atom_key=from_atom[bonds_mask], + dest_atom_key=dest_atom[bonds_mask], + ) + + +@dataclasses.dataclass(frozen=True, slots=True) +class _MmcifHeader: + name: str + resolution: float | None + release_date: datetime.date | None + structure_method: str | None + bioassembly_data: bioassemblies.BioassemblyData | None + chemical_components_data: struc_chem_comps.ChemicalComponentsData | None + + +def _get_mmcif_header( + cif: mmcif.Mmcif, + fix_mse: bool, + fix_unknown_dna: bool, +) -> _MmcifHeader: + """Extract header fields from an mmCIF object.""" + entry_id = cif.get('_entry.id') + name = entry_id[0] if entry_id else cif.get_data_name() + resolution = mmcif.get_resolution(cif) + + release_date = mmcif.get_release_date(cif) + if release_date is not None: + release_date = datetime.date.fromisoformat(release_date) + + experiments = cif.get('_exptl.method') + structure_method = ','.join(experiments) if experiments else None + + try: + bioassembly_data = bioassemblies.BioassemblyData.from_mmcif(cif) + except bioassemblies.MissingBioassemblyDataError: + bioassembly_data = None + + try: + chemical_components_data = ( + struc_chem_comps.ChemicalComponentsData.from_mmcif( + cif, fix_mse=fix_mse, fix_unknown_dna=fix_unknown_dna + ) + ) + except struc_chem_comps.MissingChemicalComponentsDataError: + chemical_components_data = None + + return _MmcifHeader( + name=name, + resolution=resolution, + release_date=release_date, + structure_method=structure_method, + bioassembly_data=bioassembly_data, + chemical_components_data=chemical_components_data, + ) + + +def from_parsed_mmcif( + mmcif_object: mmcif.Mmcif, + *, + name: str | None = None, + fix_mse_residues: bool = False, + fix_arginines: bool = False, + fix_unknown_dna: bool = False, + include_water: bool = False, + include_other: bool = False, + include_bonds: bool = False, + model_id: int | ModelID = ModelID.FIRST, +) -> structure.Structure: + """Construct a Structure from a parsed mmCIF object. + + This function is called by `from_mmcif` but can be useful when an mmCIF has + already been parsed e.g. to extract extra information from the header before + then converting to Structure for further manipulation. + + Args: + mmcif_object: A parsed mmcif.Mmcif object. + name: Optional name for the structure. If not provided, the name will be + taken from the mmCIF data_ field. + fix_mse_residues: If True, selenium atom sites (SE) in selenomethionine + (MSE) residues will be changed to sulphur atom sites (SD). This is because + methionine (MET) residues are often replaced with MSE to aid X-Ray + crystallography. If False, the SE MSE atom sites won't be modified. + fix_arginines: If True, NH1 and NH2 in arginine will be swapped if needed so + that NH1 is always closer to CD than NH2. If False, no atom sites in + arginine will be touched. Note that HH11, HH12, HH21, HH22 are fixed too. + fix_unknown_dna: If True, residues with name N in DNA chains will have their + res_name replaced with DN. Atoms are not changed. + include_water: If True, water (HOH) molecules will be parsed. Water + molecules may be grouped into chains, where number of residues > 1. Water + molecules are usually grouped into chains but do not necessarily all share + the same chain ID. + include_other: If True, all other atoms that are not included by any of the + above parameters will be included. This covers e.g. "polypeptide(D)" and + "macrolide" entities, as well as all other non-standard types. + include_bonds: If True, bond information will be parsed from the mmCIF and + stored in the Structure. + model_id: Either the integer model ID to parse, or one of ModelID.FIRST to + parse the first model, or ModelID.ALL to parse all models. + + Returns: + A Structure representation of the mmCIF object. + """ + str_model_id = _get_str_model_id(cif=mmcif_object, model_id=model_id) + header = _get_mmcif_header( + mmcif_object, fix_mse=fix_mse_residues, fix_unknown_dna=fix_unknown_dna + ) + + chains, residues, atoms = get_tables( + cif=mmcif_object, + fix_mse_residues=fix_mse_residues, + fix_arginines=fix_arginines, + fix_unknown_dna=fix_unknown_dna, + include_water=include_water, + include_other=include_other, + model_id=str_model_id, + ) + + if include_bonds and atoms.size > 0: + # NB: parsing the atom table before the bonds table allows for a more + # informative error message when dealing with bad multi-model mmCIFs. + # Also always use a specific model ID, even when parsing all models. + if str_model_id == '': # pylint: disable=g-explicit-bool-comparison + bonds_model_id = _get_first_model_id(mmcif_object) + else: + bonds_model_id = str_model_id + + bonds_table = _parse_bonds( + mmcif_object, + atom_key=atoms.key, + model_id=bonds_model_id, + ) + else: + bonds_table = bonds.Bonds.make_empty() + + return structure.Structure( + name=name if name is not None else header.name, + resolution=header.resolution, + release_date=header.release_date, + structure_method=header.structure_method, + bioassembly_data=header.bioassembly_data, + chemical_components_data=header.chemical_components_data, + bonds=bonds_table, + chains=chains, + residues=residues, + atoms=atoms, + ) + + +def from_mmcif( + mmcif_string: str | bytes, + *, + name: str | None = None, + fix_mse_residues: bool = False, + fix_arginines: bool = False, + fix_unknown_dna: bool = False, + include_water: bool = False, + include_other: bool = False, + include_bonds: bool = False, + model_id: int | ModelID = ModelID.FIRST, +) -> structure.Structure: + """Construct a Structure from a mmCIF string. + + Args: + mmcif_string: The string contents of an mmCIF file. + name: Optional name for the structure. If not provided, the name will be + taken from the mmCIF data_ field. + fix_mse_residues: If True, selenium atom sites (SE) in selenomethionine + (MSE) residues will be changed to sulphur atom sites (SD). This is because + methionine (MET) residues are often replaced with MSE to aid X-Ray + crystallography. If False, the SE MSE atom sites won't be modified. + fix_arginines: If True, NH1 and NH2 in arginine will be swapped if needed so + that NH1 is always closer to CD than NH2. If False, no atom sites in + arginine will be touched. Note that HH11, HH12, HH21, HH22 are fixed too. + fix_unknown_dna: If True, residues with name N in DNA chains will have their + res_name replaced with DN. Atoms are not changed. + include_water: If True, water (HOH) molecules will be parsed. Water + molecules may be grouped into chains, where number of residues > 1. Water + molecules are usually grouped into chains but do not necessarily all share + the same chain ID. + include_other: If True, all other atoms that are not included by any of the + above parameters will be included. This covers e.g. "polypeptide(D)" and + "macrolide" entities, as well as all other non-standard types. + include_bonds: If True, bond information will be parsed from the mmCIF and + stored in the Structure. + model_id: Either the integer model ID to parse, or one of ModelID.FIRST to + parse the first model, or ModelID.ALL to parse all models. + + Returns: + A Structure representation of the mmCIF string. + """ + mmcif_object = mmcif.from_string(mmcif_string) + + return from_parsed_mmcif( + mmcif_object, + name=name, + fix_mse_residues=fix_mse_residues, + fix_arginines=fix_arginines, + fix_unknown_dna=fix_unknown_dna, + include_water=include_water, + include_other=include_other, + include_bonds=include_bonds, + model_id=model_id, + ) + + +def from_res_arrays(atom_mask: np.ndarray, **kwargs) -> structure.Structure: + """Returns Structure created from from arrays with a residue dimension. + + All unset fields are filled with defaults (e.g. 1.0 for occupancy) or + unset/unknown values (e.g. UNK for residue type, or '.' for atom element). + + Args: + atom_mask: A array with shape (num_res, num_atom). This is used to decide + which atoms in the atom dimension are present in a given residue. Present + atoms should have a nonzero value, e.g. 1.0 or True. + **kwargs: A mapping from field name to values. For all array-valued fields + these arrays must have a dimension of length num_res. Chain and residue + fields should have this as their only dimension and atom fields should be + shaped (num_res, num_atom). Coordinate fields may also have arbitrary + leading dimensions (they must be the same across all coordinate fields). + See structure.{CHAIN,RESIDUE,ATOM}_FIELDS for a list of allowed fields. + """ + num_res, num_atom = atom_mask.shape + included_indices = np.flatnonzero(atom_mask) + + array_fields = ( + structure.CHAIN_FIELDS.keys() + | structure.RESIDUE_FIELDS.keys() + | structure.ATOM_FIELDS.keys() + ) + initializer_kwargs = {} + fields = {} + for k, val in kwargs.items(): + if k not in array_fields: + # The kwarg key isn't an array field name. Such kwargs are forwarded as-is + # to the constructor. They are expected to be global fields (e.g. name). + # Other values will raise an error when the constructor is called. + if k in structure.TABLE_FIELDS: + raise ValueError(f'Table fields must not be set. Got {k}.') + initializer_kwargs[k] = val + continue + elif val is None: + raise ValueError(f'{k} must be non-None.') + + if not isinstance(val, np.ndarray): + raise TypeError(f'Value for {k} must be a NumPy array. Got {type(val)}.') + if k in structure.CHAIN_FIELDS or k in structure.RESIDUE_FIELDS: + if val.shape != (num_res,): + raise ValueError( + f'{k} must have shape ({num_res=},). Got {val.shape=}.' + ) + # Do not reshape the chain/residue arrays, they have the shape we need. + fields[k] = val + else: + assert k in structure.ATOM_FIELDS + if val.shape[-2:] != (num_res, num_atom): + raise ValueError( + f'{k} must have final two dimensions of length ' + f'{(num_res, num_atom)=}. Got {val.shape=}.' + ) + leading_dims = val.shape[:-2] + flat_val = val.reshape(leading_dims + (-1,), order='C') + masked_val = flat_val[..., included_indices] + fields[k] = masked_val + + # Get chain IDs or assume this is a single-chain structure. + chain_id = kwargs.get('chain_id', np.array(['A'] * num_res, dtype=object)) + # Find chain starts in res-sized arrays, use these to make chain-sized arrays. + chain_start = np.concatenate( + ([0], np.where(chain_id[1:] != chain_id[:-1])[0] + 1) + ) + if len(set(chain_id)) != len(chain_start): + raise ValueError(f'Chain IDs must be contiguous, but got {chain_id}') + + chain_lengths = np.diff(chain_start, append=len(chain_id)) + chain_key = np.repeat(np.arange(len(chain_start)), chain_lengths) + + chain_entity_id = fields.get('chain_entity_id') + if chain_entity_id is not None: + entity_id = chain_entity_id[chain_start] + else: + entity_id = np.array( + [str(mmcif.str_id_to_int_id(cid)) for cid in chain_id[chain_start]], + dtype=object, + ) + chain_str_empty = np.full((num_res,), '.', dtype=object) + chains_table = structure_tables.Chains( + key=chain_key[chain_start], + id=chain_id[chain_start], + type=fields.get('chain_type', chain_str_empty)[chain_start], + auth_asym_id=fields.get('chain_auth_asym_id', chain_id)[chain_start], + entity_id=entity_id, + entity_desc=fields.get('chain_entity_desc', chain_str_empty)[chain_start], + ) + + # Since all arrays are residue-shaped, we can use them directly. + res_key = np.arange(num_res, dtype=np.int64) + res_id = fields.get('res_id', res_key + 1).astype(np.int32) + residues_table = structure_tables.Residues( + key=res_key, + chain_key=chain_key, + id=res_id, + name=fields.get('res_name', np.full(num_res, 'UNK', dtype=object)), + auth_seq_id=fields.get( + 'res_auth_seq_id', np.char.mod('%d', res_id).astype(object) + ), + insertion_code=fields.get( + 'res_insertion_code', np.full(num_res, '?', dtype=object) + ), + ) + + # The atom-sized arrays have already been masked and reshaped. + num_atoms_per_res = np.sum(atom_mask, axis=1, dtype=np.int32) + num_atoms_total = np.sum(num_atoms_per_res, dtype=np.int32) + # Structure is immutable, so use the same array multiple times to save RAM. + atom_str_empty = np.full(num_atoms_total, '.', dtype=object) + atom_float32_zeros = np.zeros(num_atoms_total, dtype=np.float32) + atom_float32_ones = np.ones(num_atoms_total, dtype=np.float32) + atoms_table = structure_tables.Atoms( + key=np.arange(num_atoms_total, dtype=np.int64), + chain_key=np.repeat(chain_key, num_atoms_per_res), + res_key=np.repeat(res_key, num_atoms_per_res), + name=fields.get('atom_name', atom_str_empty), + element=fields.get('atom_element', atom_str_empty), + x=fields.get('atom_x', atom_float32_zeros), + y=fields.get('atom_y', atom_float32_zeros), + z=fields.get('atom_z', atom_float32_zeros), + b_factor=fields.get('atom_b_factor', atom_float32_zeros), + occupancy=fields.get('atom_occupancy', atom_float32_ones), + ) + + return structure.Structure( + chains=chains_table, + residues=residues_table, + atoms=atoms_table, + bonds=structure_tables.Bonds.make_empty(), # Currently not set. + **initializer_kwargs, + ) + + +def expand_sequence( + sequence: str, chain_type: str, sequence_format: SequenceFormat +) -> Sequence[str]: + """Returns full residue names based on a sequence string. + + Args: + sequence: A string representing the sequence. + chain_type: The chain type of the sequence. + sequence_format: The format of the sequence argument. + """ + match sequence_format: + case SequenceFormat.FASTA: + if not all(c.isalpha() for c in sequence): + raise ValueError(f'Sequence "{sequence}" has non-alphabetic characters') + match chain_type: + case mmcif_names.PROTEIN_CHAIN: + res_name_map = residue_names.PROTEIN_COMMON_ONE_TO_THREE + default_res_name = residue_names.UNK + case mmcif_names.RNA_CHAIN: + res_name_map = {r: r for r in residue_names.RNA_TYPES} + default_res_name = residue_names.UNK_RNA + case mmcif_names.DNA_CHAIN: + res_name_map = residue_names.DNA_COMMON_ONE_TO_TWO + default_res_name = residue_names.UNK_DNA + case _: + raise ValueError(f'{chain_type=} not supported for FASTA format.') + return [ + res_name_map.get(one_letter_res, default_res_name) + for one_letter_res in sequence + ] + case SequenceFormat.CCD_CODES: + return sequence.strip('()').split(')(') + case SequenceFormat.LIGAND_SMILES: + ligand_id, _ = sequence.split(':', maxsplit=1) + return [ligand_id] + + +def from_sequences_and_bonds( + *, + sequences: Sequence[str], + chain_types: Sequence[str], + sequence_formats: Sequence[SequenceFormat], + bonded_atom_pairs: Sequence[tuple[BondAtomId, BondAtomId]] | None, + ccd: chemical_components.Ccd, + chain_ids: Sequence[str] | None = None, + name: str = 'from_sequences_and_bonds', + bond_type: str | None = None, + **constructor_args, +) -> structure.Structure: + """Returns a minimal structure for the input sequences and bonds. + + The returned structure will have at least one atom per residue. If the + residue has any bonded atoms, according to `bonded_atom_pairs`, then + all (and only) those atoms will be present for that residue. If the residue + is not involved in any bond then an arbitrary atom will be created. + + Args: + sequences: A sequence of strings, each one representing a single chain. + chain_types: The types of each chain, e.g. polypeptide(L). The n-th element + describes the n-th sequence in `sequences`. + sequence_formats: The format of each sequence. The n-th element describes + the n-th sequence in `sequences`. + bonded_atom_pairs: A sequence of bonded atom pairs. Each atom is described + as a tuple of (chain_index, res_index, atom_name), where the first two + values are 0-based indices. The chain_index is the index of the chain in + the `sequences` argument, and the res_index is the index of the residue in + that sequence. The atom_name is the name of the atom in the residue, e.g. + CA. If the atom is not found in the standard atoms for that residue + (according to the CCD) then an error is raised. + ccd: The chemical components dictionary. + chain_ids: A sequence of chain IDs, one for each chain in `sequences`. If + not provided, then the chain IDs will be generated automatically based on + sequence indices. + name: A name for the returned structure. + bond_type: This type will be used for all bonds in the structure, where type + follows PDB scheme, e.g. unknown (?), hydrog, metalc, covale, disulf. + **constructor_args: These arguments are passed directly to the + structure.Structure constructor. + """ + chain_id = [] + chain_type = [] + chain_res_count = [] + res_id = [] + res_name = [] + res_atom_count = [] + atom_name = [] + atom_element = [] + chem_comp = {} + + num_bonds = len(bonded_atom_pairs or ()) + from_atom_key = np.full((num_bonds,), -1, dtype=np.int64) + dest_atom_key = np.full((num_bonds,), -1, dtype=np.int64) + + # Create map (chain_i, res_i) -> {atom_name -> (from_idxs dest_idxs)}. + # This allows quick lookup of whether a residue has any bonded atoms, and + # which bonds those atoms participate in. + bond_lookup = _create_bond_lookup(bonded_atom_pairs or ()) + + current_atom_key = 0 + for chain_i, (sequence, curr_chain_type, sequence_format) in enumerate( + zip(sequences, chain_types, sequence_formats, strict=True) + ): + if chain_ids is not None: + current_chain_id = chain_ids[chain_i] + else: + current_chain_id = mmcif.int_id_to_str_id(chain_i + 1) + num_chain_residues = 0 + for res_i, full_res_name in enumerate( + expand_sequence(sequence, curr_chain_type, sequence_format) + ): + current_res_id = res_i + 1 + num_res_atoms = 0 + + # Look for bonded atoms in the bond lookup and if any are found, add + # their atom keys to the bond atom_key columns. + if bond_indices_by_atom_name := bond_lookup.get((chain_i, res_i)): + comp_atoms = None + if sequence_format != SequenceFormat.LIGAND_SMILES: + comp_atoms = set(ccd.get(full_res_name)['_chem_comp_atom.atom_id']) + for bond_atom_name, bond_indices in bond_indices_by_atom_name.items(): + if comp_atoms is not None and bond_atom_name not in comp_atoms: + raise ValueError( + f'Bonded atom "{bond_atom_name}" was not found in the list of' + f' atoms of the chemical component {full_res_name}. Valid atom' + f' names for {full_res_name} are: {sorted(comp_atoms)}.' + ' This is likely caused by an invalid atom name in the bonded' + f' atom (chain_id={current_chain_id}, res_id={current_res_id},' + f' atom_name={bond_atom_name}) specified in `bondedAtomPairs`' + ' in the input JSON.' + ) + atom_name.append(bond_atom_name) + atom_element.append( + _get_atom_element( + ccd=ccd, res_name=full_res_name, atom_name=bond_atom_name + ) + ) + for from_bond_i in bond_indices.from_indices: + from_atom_key[from_bond_i] = current_atom_key + for dest_bond_i in bond_indices.dest_indices: + dest_atom_key[dest_bond_i] = current_atom_key + current_atom_key += 1 + num_res_atoms += 1 + else: + # If this residue has no bonded atoms then we need to add one atom + # like in from_sequences. + assert num_res_atoms == 0 + rep_atom_name, rep_atom_element = _get_representative_atom( + ccd=ccd, + res_name=full_res_name, + chain_type=curr_chain_type, + sequence_format=sequence_format, + ) + atom_name.append(rep_atom_name) + atom_element.append(rep_atom_element) + num_res_atoms += 1 + current_atom_key += 1 + + if sequence_format == SequenceFormat.LIGAND_SMILES: + # Sequence expect to be in the format :, + # which always corresponds to a single-residue chain. + ligand_id, ligand_smiles = sequence.split(':', maxsplit=1) + if ccd.get(ligand_id) is not None: + raise ValueError( + f'Ligand name {ligand_id} is in CCD - it is not supported to give' + ' ligands created from SMILES the same name as CCD components.' + ) + # We need to provide additional chemical components metadata for + # ligands specified via SMILES strings since they might not be in CCD. + _add_ligand_to_chem_comp(chem_comp, ligand_id, ligand_smiles) + + assert num_res_atoms >= 1 + res_atom_count.append(num_res_atoms) + num_chain_residues += 1 + res_id.append(current_res_id) + res_name.append(full_res_name) + + chain_id.append(current_chain_id) + chain_type.append(curr_chain_type) + chain_res_count.append(num_chain_residues) + + chem_comp_data = struc_chem_comps.ChemicalComponentsData(chem_comp) + chem_comp_data = struc_chem_comps.populate_missing_ccd_data( + ccd=ccd, + chemical_components_data=chem_comp_data, + chemical_component_ids=set(res_name), + ) + + if bonded_atom_pairs is not None: + unknown_bond_col = np.full((num_bonds,), '?', dtype=object) + if bond_type is None: + bond_type_col = unknown_bond_col + else: + bond_type_col = np.full((num_bonds,), bond_type, dtype=object) + bonds_table = bonds.Bonds( + key=np.arange(num_bonds, dtype=np.int64), + type=bond_type_col, + role=unknown_bond_col, + from_atom_key=from_atom_key, + dest_atom_key=dest_atom_key, + ) + else: + bonds_table = structure_tables.Bonds.make_empty() + + chain_key = np.arange(len(sequences), dtype=np.int64) # 1 chain per sequence. + chain_id = np.array(chain_id, dtype=object) + chains_table = structure_tables.Chains( + key=chain_key, + id=chain_id, + type=np.array(chain_type, dtype=object), + auth_asym_id=chain_id, + entity_id=np.char.mod('%d', chain_key + 1).astype(object), + entity_desc=np.array(['.'] * len(chain_key), dtype=object), + ) + + res_key = np.arange(len(res_name), dtype=np.int64) + res_chain_key = np.repeat(chain_key, chain_res_count) + residues_table = structure_tables.Residues( + key=res_key, + chain_key=res_chain_key, + id=np.array(res_id, dtype=np.int32), + name=np.array(res_name, dtype=object), + auth_seq_id=np.char.mod('%d', res_id).astype(object), + insertion_code=np.full(len(res_name), '?', dtype=object), + ) + + num_atoms = current_atom_key + atom_float32_zeros = np.zeros(num_atoms, dtype=np.float32) + atoms_table = structure_tables.Atoms( + key=np.arange(num_atoms, dtype=np.int64), + chain_key=np.repeat(res_chain_key, res_atom_count), + res_key=np.repeat(res_key, res_atom_count), + name=np.array(atom_name, dtype=object), + element=np.array(atom_element, dtype=object), + x=atom_float32_zeros, + y=atom_float32_zeros, + z=atom_float32_zeros, + b_factor=atom_float32_zeros, + occupancy=np.ones(num_atoms, np.float32), + ) + + return structure.Structure( + name=name, + atoms=atoms_table, + residues=residues_table, + chains=chains_table, + bonds=bonds_table, + chemical_components_data=chem_comp_data, + **constructor_args, + ) + + +class _ChainResBuilder: + """Class for incrementally building chain and residue tables.""" + + def __init__( + self, + *, + chain_key_by_chain_id: Mapping[str, int], + entity_id_by_chain_id: Mapping[str, str], + chain_type_by_entity_id: Mapping[str, str], + entity_desc_by_entity_id: Mapping[str, str], + fix_mse_residues: bool, + fix_unknown_dna: bool, + ): + # Len: num_chains. + self.chain_key = [] + self.chain_id = [] + self.chain_type = [] + self.chain_auth_asym_id = [] + self.chain_entity_id = [] + self.chain_entity_desc = [] + + # Len: num_residues. + self.res_key = [] + self.res_chain_key = [] + self.res_id = [] + self.res_name = [] + self.res_auth_seq_id = [] + self.res_insertion_code = [] + + self.chain_key_by_chain_id = chain_key_by_chain_id + self.entity_id_by_chain_id = entity_id_by_chain_id + self.chain_type_by_entity_id = chain_type_by_entity_id + self.entity_desc_by_entity_id = entity_desc_by_entity_id + self.key_for_res: dict[tuple[str, str, str, str], int] = {} + + self._fix_mse_residues = fix_mse_residues + self._fix_unknown_dna = fix_unknown_dna + + def add_residues( + self, + *, + chain_ids: np.ndarray, + chain_auth_asym_ids: np.ndarray, + res_ids: np.ndarray, + res_names: np.ndarray, + res_auth_seq_ids: np.ndarray, + res_ins_codes: np.ndarray, + ): + """Adds a residue (and its chain) to the tables.""" + # Create chain table data. + if chain_ids.size == 0: + return + + chain_ids_with_prev = np.concatenate( + (([self.chain_id[-1] if self.chain_id else None], chain_ids)) + ) + chain_change_mask = chain_ids_with_prev[:-1] != chain_ids_with_prev[1:] + chain_change_ids = chain_ids[chain_change_mask] + chain_keys = string_array.remap( + chain_change_ids, self.chain_key_by_chain_id, inplace=False + ) + self.chain_key.extend(chain_keys) + self.chain_id.extend(chain_change_ids) + self.chain_auth_asym_id.extend(chain_auth_asym_ids[chain_change_mask]) + chain_entity_id = string_array.remap( + chain_change_ids, self.entity_id_by_chain_id, inplace=False + ) + self.chain_entity_id.extend(chain_entity_id) + chain_type = string_array.remap( + chain_entity_id, self.chain_type_by_entity_id, inplace=False + ) + self.chain_type.extend(chain_type) + chain_entity_desc = string_array.remap( + chain_entity_id, self.entity_desc_by_entity_id, inplace=False + ) + self.chain_entity_desc.extend(chain_entity_desc) + + # Create residue table data. + num_prev_res = len(self.res_id) + res_keys = np.arange(num_prev_res, num_prev_res + len(res_ids)) + res_iter = zip( + chain_ids, + res_auth_seq_ids, + res_names, + res_ins_codes, + strict=True, + ) + key_for_res_update = { + res_unique_id: res_key + for res_key, res_unique_id in enumerate(res_iter, num_prev_res) + } + self.key_for_res.update(key_for_res_update) + self.res_key.extend(res_keys) + self.res_chain_key.extend( + string_array.remap(chain_ids, self.chain_key_by_chain_id, inplace=False) + ) + self.res_id.extend(res_ids) + self.res_name.extend(res_names) + self.res_auth_seq_id.extend(res_auth_seq_ids) + self.res_insertion_code.extend(res_ins_codes) + + def make_chains_table(self) -> structure_tables.Chains: + """Returns the Structure chains table.""" + chain_key = np.array(self.chain_key, dtype=np.int64) + if not np.all(chain_key[:-1] <= chain_key[1:]): + # If the order is inconsistent with the atoms table, sort so that it is. + order = np.argsort(self.chain_key, kind='stable') + return structure_tables.Chains( + key=chain_key[order], + id=np.array(self.chain_id, dtype=object)[order], + type=np.array(self.chain_type, dtype=object)[order], + auth_asym_id=np.array(self.chain_auth_asym_id, dtype=object)[order], + entity_id=np.array(self.chain_entity_id, dtype=object)[order], + entity_desc=np.array(self.chain_entity_desc, dtype=object)[order], + ) + return structure_tables.Chains( + key=chain_key, + id=np.array(self.chain_id, dtype=object), + type=np.array(self.chain_type, dtype=object), + auth_asym_id=np.array(self.chain_auth_asym_id, dtype=object), + entity_id=np.array(self.chain_entity_id, dtype=object), + entity_desc=np.array(self.chain_entity_desc, dtype=object), + ) + + def make_residues_table(self) -> structure_tables.Residues: + """Returns the Structure residues table.""" + res_name = np.array(self.res_name, dtype=object) + res_chain_key = np.array(self.res_chain_key, dtype=np.int64) + + if self._fix_mse_residues: + string_array.remap(res_name, mapping={'MSE': 'MET'}, inplace=True) + + if self._fix_unknown_dna: + # Remap residues from N -> DN in DNA chains only. + dna_chain_mask = ( + np.array(self.chain_type, dtype=object) == mmcif_names.DNA_CHAIN + ) + dna_chain_key = np.array(self.chain_key, dtype=object)[dna_chain_mask] + res_name[(res_name == 'N') & np.isin(res_chain_key, dna_chain_key)] = 'DN' + + if not np.all(res_chain_key[:-1] <= res_chain_key[1:]): + # If the order is inconsistent with the atoms table, sort so that it is. + order = np.argsort(res_chain_key, kind='stable') + return structure_tables.Residues( + key=np.array(self.res_key, dtype=np.int64)[order], + chain_key=res_chain_key[order], + id=np.array(self.res_id, dtype=np.int32)[order], + name=res_name[order], + auth_seq_id=np.array(self.res_auth_seq_id, dtype=object)[order], + insertion_code=np.array(self.res_insertion_code, dtype=object)[order], + ) + return structure_tables.Residues( + key=np.array(self.res_key, dtype=np.int64), + chain_key=res_chain_key, + id=np.array(self.res_id, dtype=np.int32), + name=res_name, + auth_seq_id=np.array(self.res_auth_seq_id, dtype=object), + insertion_code=np.array(self.res_insertion_code, dtype=object), + ) + + +def _get_string_array_default(cif: mmcif.Mmcif, key: str, default: list[str]): + try: + return cif.get_array(key, dtype=object) + except KeyError: + return default + + +def _generate_required_tables_if_missing( + cif: mmcif.Mmcif, +) -> Mapping[str, Sequence[str]]: + """Generates all required tables and columns if missing.""" + update = {} + + atom_site_entities = _get_string_array_default( + cif, '_atom_site.label_entity_id', [] + ) + + # OpenMM produces files that don't have any of the tables and also have + # _atom_site.label_entity_id set to '?' for all atoms. We infer the entities + # based on the _atom_site.label_asym_id column. We start with cheaper O(1) + # checks to prevent running the expensive O(n) check on most files. + if ( + len(atom_site_entities) > 0 # pylint: disable=g-explicit-length-test + and '_entity.id' not in cif # Ignore if the _entity table exists. + and atom_site_entities[0] == '?' # Cheap check. + and set(atom_site_entities) == {'?'} # Expensive check. + ): + label_asym_ids = cif.get_array('_atom_site.label_asym_id', dtype=object) + atom_site_entities = [ + str(mmcif.str_id_to_int_id(cid)) for cid in label_asym_ids + ] + # Update _atom_site.label_entity_id to be consistent with the new tables. + update['_atom_site.label_entity_id'] = atom_site_entities + + # Check table existence by checking the presence of its primary key. + if '_struct_asym.id' not in cif: + # Infer the _struct_asym table using the _atom_site table. + asym_ids = _get_string_array_default(cif, '_atom_site.label_asym_id', []) + + if len(atom_site_entities) == 0 or len(asym_ids) == 0: # pylint: disable=g-explicit-length-test + raise ValueError( + 'Could not parse an mmCIF with no _struct_asym table and also no ' + '_atom_site.label_entity_id or _atom_site.label_asym_id columns.' + ) + + # Deduplicate, but keep the order intact - dict.fromkeys maintains order. + entity_id_chain_id_pairs = list( + dict.fromkeys(zip(atom_site_entities, asym_ids, strict=True)) + ) + update['_struct_asym.entity_id'] = [e for e, _ in entity_id_chain_id_pairs] + update['_struct_asym.id'] = [c for _, c in entity_id_chain_id_pairs] + + if '_entity.id' not in cif: + # Infer the _entity_poly and _entity tables using the _atom_site table. + residues = _get_string_array_default(cif, '_atom_site.label_comp_id', []) + group_pdb = _get_string_array_default(cif, '_atom_site.group_PDB', []) + if '_atom_site.label_entity_id' in cif: + entities = atom_site_entities + else: + # If _atom_site.label_entity_id not set, use the asym_id -> entity_id map. + asym_to_entity = dict( + zip( + cif['_struct_asym.id'], cif['_struct_asym.entity_id'], strict=True + ) + ) + entities = string_array.remap( + cif.get_array('_atom_site.label_asym_id', dtype=object), + mapping=asym_to_entity, + ) + + entity_ids = [] + entity_types = [] + entity_poly_entity_ids = [] + entity_poly_types = [] + entity_poly_table_missing = '_entity_poly.entity_id' not in cif + for entity_id, group in itertools.groupby( + zip(entities, residues, group_pdb, strict=True), key=lambda e: e[0] + ): + _, entity_residues, entity_group_pdb = zip(*group, strict=True) + entity_type = _guess_entity_type( + chain_residues=entity_residues, atom_types=entity_group_pdb + ) + entity_ids.append(entity_id) + entity_types.append(entity_type) + + if entity_poly_table_missing and entity_type == mmcif_names.POLYMER_CHAIN: + polymer_type = mmcif_names.guess_polymer_type(entity_residues) + entity_poly_entity_ids.append(entity_id) + entity_poly_types.append(polymer_type) + + update['_entity.id'] = entity_ids + update['_entity.type'] = entity_types + if entity_poly_table_missing: + update['_entity_poly.entity_id'] = entity_poly_entity_ids + update['_entity_poly.type'] = entity_poly_types + + if '_atom_site.type_symbol' not in cif: + update['_atom_site.type_symbol'] = mmcif.get_or_infer_type_symbol(cif) + + return update + + +def _maybe_add_missing_scheme_tables( + cif: mmcif.Mmcif, + res_starts: Sequence[int], + label_asym_ids: np.ndarray, + label_seq_ids: np.ndarray, + label_comp_ids: np.ndarray, + auth_seq_ids: np.ndarray, + pdb_ins_codes: np.ndarray, +) -> Mapping[str, Sequence[str]]: + """If missing, infers the scheme tables from the _atom_site table.""" + update = {} + + required_poly_seq_scheme_cols = ( + '_pdbx_poly_seq_scheme.asym_id', + '_pdbx_poly_seq_scheme.pdb_seq_num', + '_pdbx_poly_seq_scheme.pdb_ins_code', + '_pdbx_poly_seq_scheme.seq_id', + '_pdbx_poly_seq_scheme.mon_id', + '_pdbx_poly_seq_scheme.pdb_strand_id', + ) + if not all(col in cif for col in required_poly_seq_scheme_cols): + # Create a mask for atoms where each polymer residue start. + entity_id_by_chain_id = dict( + zip(cif['_struct_asym.id'], cif['_struct_asym.entity_id'], strict=True) + ) + chain_type_by_entity_id = dict( + zip(cif['_entity.id'], cif['_entity.type'], strict=True) + ) + # Remap asym ID -> entity ID. + label_entity_id = string_array.remap( + label_asym_ids, mapping=entity_id_by_chain_id, inplace=False + ) + # Remap entity ID -> chain type. + chain_type = string_array.remap( + label_entity_id, mapping=chain_type_by_entity_id, inplace=False + ) + res_mask = np.zeros_like(label_seq_ids, dtype=bool) + res_mask[res_starts] = True + res_mask &= chain_type == mmcif_names.POLYMER_CHAIN + + entity_poly_seq_cols = ( + '_entity_poly_seq.entity_id', + '_entity_poly_seq.num', + '_entity_poly_seq.mon_id', + ) + if all(col in cif for col in entity_poly_seq_cols): + # Use _entity_poly_seq if available. + poly_seq_num = cif.get_array('_entity_poly_seq.num', dtype=object) + poly_seq_mon_id = cif.get_array('_entity_poly_seq.mon_id', dtype=object) + poly_seq_entity_id = cif.get_array( + '_entity_poly_seq.entity_id', dtype=object + ) + # We have to add the entity ID to the residue ID because multiple residues + # can share the same ID. This also allows using string_array.remap. + label_seq_id_to_auth_seq_id = dict( + zip( + np.char.add(label_entity_id[res_mask], label_seq_ids[res_mask]), + auth_seq_ids[res_mask], + strict=True, + ) + ) + scheme_pdb_seq_num = string_array.remap( + np.char.add(poly_seq_entity_id, poly_seq_num), + mapping=label_seq_id_to_auth_seq_id, + default_value='.', + ) + label_seq_id_to_ins_code = dict( + zip(label_seq_ids[res_mask], pdb_ins_codes[res_mask], strict=True) + ) + scheme_pdb_ins_code = string_array.remap( + poly_seq_num, mapping=label_seq_id_to_ins_code, default_value='.' + ) + + # The _entity_poly_seq table is entity-based, while _pdbx_poly_seq_scheme + # is chain-based. A single entity could mean multiple chains (asym_ids), + # we therefore need to replicate each entity for all of the chains. + scheme_asym_id = [] + select = [] + indices = np.arange(len(poly_seq_entity_id), dtype=np.int32) + for asym_id, entity_id in zip( + cif['_struct_asym.id'], cif['_struct_asym.entity_id'], strict=True + ): + entity_mask = poly_seq_entity_id == entity_id + select.extend(indices[entity_mask]) + scheme_asym_id.extend([asym_id] * sum(entity_mask)) + + scheme_pdb_strand_id = string_array.remap( + np.array(scheme_asym_id, dtype=object), + mapping=mmcif.get_internal_to_author_chain_id_map(cif), + inplace=False, + ) + + update['_pdbx_poly_seq_scheme.asym_id'] = scheme_asym_id + update['_pdbx_poly_seq_scheme.pdb_strand_id'] = scheme_pdb_strand_id + update['_pdbx_poly_seq_scheme.pdb_seq_num'] = scheme_pdb_seq_num[select] + update['_pdbx_poly_seq_scheme.pdb_ins_code'] = scheme_pdb_ins_code[select] + update['_pdbx_poly_seq_scheme.seq_id'] = poly_seq_num[select] + update['_pdbx_poly_seq_scheme.mon_id'] = poly_seq_mon_id[select] + else: + # _entity_poly_seq not available, fallback to _atom_site. + res_asym_ids = label_asym_ids[res_mask] + res_strand_ids = string_array.remap( + array=res_asym_ids, + mapping=mmcif.get_internal_to_author_chain_id_map(cif), + inplace=False, + ) + update['_pdbx_poly_seq_scheme.asym_id'] = res_asym_ids + update['_pdbx_poly_seq_scheme.pdb_strand_id'] = res_strand_ids + update['_pdbx_poly_seq_scheme.pdb_seq_num'] = auth_seq_ids[res_mask] + update['_pdbx_poly_seq_scheme.pdb_ins_code'] = pdb_ins_codes[res_mask] + update['_pdbx_poly_seq_scheme.seq_id'] = label_seq_ids[res_mask] + update['_pdbx_poly_seq_scheme.mon_id'] = label_comp_ids[res_mask] + + required_nonpoly_scheme_cols = ( + '_pdbx_nonpoly_scheme.mon_id', + '_pdbx_nonpoly_scheme.asym_id', + '_pdbx_nonpoly_scheme.pdb_seq_num', + '_pdbx_nonpoly_scheme.pdb_ins_code', + ) + required_branch_scheme_cols = ( + '_pdbx_branch_scheme.mon_id', + '_pdbx_branch_scheme.asym_id', + '_pdbx_branch_scheme.pdb_seq_num', + ) + + # Generate _pdbx_nonpoly_scheme only if both tables are missing. + if not ( + all(col in cif for col in required_nonpoly_scheme_cols) + or all(col in cif for col in required_branch_scheme_cols) + ): + # To be strictly semantically correct, multi-residue ligands should be + # written in _pdbx_branch_scheme. However, Structure parsing handles + # correctly multi-residue ligands in _pdbx_nonpoly_scheme and the tables + # constructed here live only while parsing, hence this is unnecessary. + entity_id_by_chain_id = dict( + zip(cif['_struct_asym.id'], cif['_struct_asym.entity_id'], strict=True) + ) + chain_type_by_entity_id = dict( + zip(cif['_entity.id'], cif['_entity.type'], strict=True) + ) + # Remap asym ID -> entity ID. + chain_type = string_array.remap( + label_asym_ids, mapping=entity_id_by_chain_id, inplace=False + ) + # Remap entity ID -> chain type. + string_array.remap( + chain_type, mapping=chain_type_by_entity_id, inplace=True + ) + res_mask = np.zeros_like(label_seq_ids, dtype=bool) + res_mask[res_starts] = True + res_mask &= chain_type != mmcif_names.POLYMER_CHAIN + + if not np.any(res_mask): + return update # Shortcut: no non-polymer residues. + + ins_codes = string_array.remap( + pdb_ins_codes[res_mask], mapping={'?': '.'}, inplace=False + ) + + update['_pdbx_nonpoly_scheme.asym_id'] = label_asym_ids[res_mask] + update['_pdbx_nonpoly_scheme.pdb_seq_num'] = auth_seq_ids[res_mask] + update['_pdbx_nonpoly_scheme.pdb_ins_code'] = ins_codes + update['_pdbx_nonpoly_scheme.mon_id'] = label_comp_ids[res_mask] + + return update + + +def _get_chain_key_by_chain_id( + resolved_chain_ids: np.ndarray, struct_asym_chain_ids: np.ndarray +) -> Mapping[str, int]: + """Returns chain key for each chain ID respecting resolved chain ordering.""" + # Check that all chain IDs found in the (potentially filtered) _atom_site + # table are present in the _struct_asym table. + unique_resolved_chain_ids = set(resolved_chain_ids) + if not unique_resolved_chain_ids.issubset(set(struct_asym_chain_ids)): + unique_resolved_chain_ids = sorted(unique_resolved_chain_ids) + unique_struct_asym_chain_ids = sorted(set(struct_asym_chain_ids)) + raise ValueError( + 'Bad mmCIF: chain IDs in _atom_site.label_asym_id ' + f'{unique_resolved_chain_ids} is not a subset of chain IDs in ' + f'_struct_asym.id {unique_struct_asym_chain_ids}.' + ) + + resolved_mask = string_array.isin( + struct_asym_chain_ids, unique_resolved_chain_ids + ) + # For all resolved chains, use the _atom_site order they appear in. E.g. + # resolved_chain_ids = [B A E D F] + # struct_asym_chain_ids = [A B C D E F] + # consistent_chain_order = [B A C E D F] + # chain_keys = [0 1 2 3 4 5] + consistent_chain_order = struct_asym_chain_ids.copy() + consistent_chain_order[resolved_mask] = resolved_chain_ids + return dict(zip(consistent_chain_order, range(len(struct_asym_chain_ids)))) + + +def get_tables( + cif: mmcif.Mmcif, + fix_mse_residues: bool, + fix_arginines: bool, + fix_unknown_dna: bool, + include_water: bool, + include_other: bool, + model_id: str, +) -> tuple[ + structure_tables.Chains, structure_tables.Residues, structure_tables.Atoms +]: + """Returns chain, residue, and atom tables from a parsed mmcif. + + Args: + cif: A parsed mmcif.Mmcif. + fix_mse_residues: See from_mmcif. + fix_arginines: See from_mmcif. + fix_unknown_dna: See from_mmcif. + include_water: See from_mmcif. + include_other: See from_mmcif. + model_id: A string defining which model ID to use. If set, only coordinates, + b-factors and occupancies for the given model are returned. If empty, + coordinates, b-factors and occupanciesall for models are returned with a + leading dimension of num_models. Note that the model_id argument in + from_mmcif is an integer and has slightly different use (see from_mmcif). + """ + # Add any missing tables and columns we require for parsing. + if cif_update := _generate_required_tables_if_missing(cif): + cif = cif.copy_and_update(cif_update) + + # Resolve alt-locs, selecting only a single option for each residue. Also + # computes the layout, which defines where chain and residue boundaries are. + atom_site_all_models, layout = mmcif_utils.filter( + cif, + include_nucleotides=True, + include_ligands=True, + include_water=include_water, + include_other=include_other, + model_id=model_id, + ) + atom_site_first_model = atom_site_all_models[0] + + # Get atom information from the _atom_site table. + def _first_model_string_array(col: str) -> np.ndarray: + return cif.get_array(col, dtype=object, gather=atom_site_first_model) + + def _requested_models_float_array(col: str) -> np.ndarray: + if not model_id: + # Return data for all models with a leading dimension of num_models. + return cif.get_array(col, dtype=np.float32, gather=atom_site_all_models) + else: + # Return data only for the single requested model. + return cif.get_array(col, dtype=np.float32, gather=atom_site_first_model) + + # These columns are the same for all models, fetch them just for the 1st one. + label_comp_ids = _first_model_string_array('_atom_site.label_comp_id') + label_asym_ids = _first_model_string_array('_atom_site.label_asym_id') + label_seq_ids = _first_model_string_array('_atom_site.label_seq_id') + label_atom_ids = _first_model_string_array('_atom_site.label_atom_id') + if '_atom_site.auth_seq_id' in cif: + auth_seq_ids = _first_model_string_array('_atom_site.auth_seq_id') + else: + auth_seq_ids = label_seq_ids # auth_seq_id unset, fallback to label_seq_id. + type_symbols = _first_model_string_array('_atom_site.type_symbol') + pdbx_pdb_ins_codes = _first_model_string_array('_atom_site.pdbx_PDB_ins_code') + + # These columns are different for all models, fetch them as requested. + atom_x = _requested_models_float_array('_atom_site.Cartn_x') + atom_y = _requested_models_float_array('_atom_site.Cartn_y') + atom_z = _requested_models_float_array('_atom_site.Cartn_z') + atom_b_factor = _requested_models_float_array('_atom_site.B_iso_or_equiv') + atom_occupancy = _requested_models_float_array('_atom_site.occupancy') + + # Make sure the scheme (residue) tables exist in case they are not present. + if cif_update := _maybe_add_missing_scheme_tables( + cif, + res_starts=layout.residue_starts(), + label_asym_ids=label_asym_ids, + label_seq_ids=label_seq_ids, + label_comp_ids=label_comp_ids, + auth_seq_ids=auth_seq_ids, + pdb_ins_codes=pdbx_pdb_ins_codes, + ): + cif = cif.copy_and_update(cif_update) + + # Fix common issues found in mmCIF files, like swapped arginine NH atoms. + mmcif_utils.fix_residues( + layout, + comp_id=label_comp_ids, + atom_id=label_atom_ids, + atom_x=atom_x[0] if not model_id else atom_x, + atom_y=atom_y[0] if not model_id else atom_y, + atom_z=atom_z[0] if not model_id else atom_z, + fix_arg=fix_arginines, + ) + + # Get keys for chains in the order they appear in _atom_site while also + # dealing with empty chains. + resolved_chain_ids = label_asym_ids[layout.chain_starts()] + struct_asym_chain_ids = cif.get_array('_struct_asym.id', dtype=object) + + chain_key_by_chain_id = _get_chain_key_by_chain_id( + resolved_chain_ids=resolved_chain_ids, + struct_asym_chain_ids=struct_asym_chain_ids, + ) + entity_id_by_chain_id = dict( + zip(struct_asym_chain_ids, cif['_struct_asym.entity_id'], strict=True) + ) + entity_description = cif.get( + '_entity.pdbx_description', ['?'] * len(cif['_entity.id']) + ) + entity_desc_by_entity_id = dict( + zip(cif['_entity.id'], entity_description, strict=True) + ) + chain_type_by_entity_id = mmcif.get_chain_type_by_entity_id(cif) + auth_asym_id_by_chain_id = mmcif.get_internal_to_author_chain_id_map(cif) + + chain_res_builder = _ChainResBuilder( + chain_key_by_chain_id=chain_key_by_chain_id, + entity_id_by_chain_id=entity_id_by_chain_id, + chain_type_by_entity_id=chain_type_by_entity_id, + entity_desc_by_entity_id=entity_desc_by_entity_id, + fix_mse_residues=fix_mse_residues, + fix_unknown_dna=fix_unknown_dna, + ) + + # Collect data for polymer chain and residue tables. _pdbx_poly_seq_scheme is + # guaranteed to be present thanks to _maybe_add_missing_scheme_tables. + def _get_poly_seq_scheme_col(col: str) -> np.ndarray: + return cif.get_array(key=f'_pdbx_poly_seq_scheme.{col}', dtype=object) + + poly_seq_asym_ids = _get_poly_seq_scheme_col('asym_id') + poly_seq_pdb_seq_nums = _get_poly_seq_scheme_col('pdb_seq_num') + poly_seq_seq_ids = _get_poly_seq_scheme_col('seq_id') + poly_seq_mon_ids = _get_poly_seq_scheme_col('mon_id') + poly_seq_pdb_strand_ids = _get_poly_seq_scheme_col('pdb_strand_id') + poly_seq_pdb_ins_codes = _get_poly_seq_scheme_col('pdb_ins_code') + string_array.remap( + poly_seq_pdb_ins_codes, mapping=_INSERTION_CODE_REMAP, inplace=True + ) + + # We resolved alt-locs earlier for the atoms table. In cases of heterogeneous + # residues (a residue with an alt-loc that is of different residue type), we + # need to also do the same resolution in the residues table. Compute a mask + # for the residues that were selected in the atoms table. + poly_seq_mask = mmcif_utils.selected_polymer_residue_mask( + layout=layout, + atom_site_label_asym_ids=label_asym_ids[layout.residue_starts()], + atom_site_label_seq_ids=label_seq_ids[layout.residue_starts()], + atom_site_label_comp_ids=label_comp_ids[layout.residue_starts()], + poly_seq_asym_ids=poly_seq_asym_ids, + poly_seq_seq_ids=poly_seq_seq_ids, + poly_seq_mon_ids=poly_seq_mon_ids, + ) + + if not include_other and poly_seq_mask: + # Mask filtered-out residues so that they are not treated as missing. + # Instead, we don't want them included in the chains/residues tables at all. + keep_mask = string_array.remap( + poly_seq_asym_ids, + mapping={cid: True for cid in resolved_chain_ids}, + default_value=False, + inplace=False, + ).astype(bool) + poly_seq_mask &= keep_mask + + chain_res_builder.add_residues( + chain_ids=poly_seq_asym_ids[poly_seq_mask], + chain_auth_asym_ids=poly_seq_pdb_strand_ids[poly_seq_mask], + res_ids=poly_seq_seq_ids[poly_seq_mask].astype(np.int32), + res_names=poly_seq_mon_ids[poly_seq_mask], + res_auth_seq_ids=poly_seq_pdb_seq_nums[poly_seq_mask], + res_ins_codes=poly_seq_pdb_ins_codes[poly_seq_mask], + ) + + # Collect data for ligand chain and residue tables. _pdbx_nonpoly_scheme + # could be empty/unset if there are only branched ligands. + def _get_nonpoly_scheme_col(col: str) -> np.ndarray: + key = f'_pdbx_nonpoly_scheme.{col}' + if f'_pdbx_nonpoly_scheme.{col}' in cif: + return cif.get_array(key=key, dtype=object) + else: + return np.array([], dtype=object) + + nonpoly_asym_ids = _get_nonpoly_scheme_col('asym_id') + nonpoly_auth_seq_ids = _get_nonpoly_scheme_col('pdb_seq_num') + nonpoly_pdb_ins_codes = _get_nonpoly_scheme_col('pdb_ins_code') + nonpoly_mon_ids = _get_nonpoly_scheme_col('mon_id') + nonpoly_auth_asym_id = string_array.remap( + nonpoly_asym_ids, mapping=auth_asym_id_by_chain_id, inplace=False + ) + + def _get_branch_scheme_col(col: str) -> np.ndarray: + key = f'_pdbx_branch_scheme.{col}' + if f'_pdbx_branch_scheme.{col}' in cif: + return cif.get_array(key=key, dtype=object) + else: + return np.array([], dtype=object) + + branch_asym_ids = _get_branch_scheme_col('asym_id') + branch_auth_seq_ids = _get_branch_scheme_col('pdb_seq_num') + branch_pdb_ins_codes = _get_branch_scheme_col('pdb_ins_code') + branch_mon_ids = _get_branch_scheme_col('mon_id') + branch_auth_asym_id = string_array.remap( + branch_asym_ids, mapping=auth_asym_id_by_chain_id, inplace=False + ) + + if branch_asym_ids.size > 0 and branch_pdb_ins_codes.size == 0: + branch_pdb_ins_codes = np.array(['.'] * branch_asym_ids.size, dtype=object) + + # Compute the heterogeneous residue masks as above, this time for ligands. + nonpoly_mask, branch_mask = mmcif_utils.selected_ligand_residue_mask( + layout=layout, + atom_site_label_asym_ids=label_asym_ids[layout.residue_starts()], + atom_site_label_seq_ids=label_seq_ids[layout.residue_starts()], + atom_site_auth_seq_ids=auth_seq_ids[layout.residue_starts()], + atom_site_label_comp_ids=label_comp_ids[layout.residue_starts()], + atom_site_pdbx_pdb_ins_codes=pdbx_pdb_ins_codes[layout.residue_starts()], + nonpoly_asym_ids=nonpoly_asym_ids, + nonpoly_auth_seq_ids=nonpoly_auth_seq_ids, + nonpoly_pdb_ins_codes=nonpoly_pdb_ins_codes, + nonpoly_mon_ids=nonpoly_mon_ids, + branch_asym_ids=branch_asym_ids, + branch_auth_seq_ids=branch_auth_seq_ids, + branch_pdb_ins_codes=branch_pdb_ins_codes, + branch_mon_ids=branch_mon_ids, + ) + + if not include_water: + if nonpoly_mask: + nonpoly_mask &= (nonpoly_mon_ids != 'HOH') & (nonpoly_mon_ids != 'DOD') + if branch_mask: + # Fix for bad mmCIFs that have water in the branch scheme table. + branch_mask &= (branch_mon_ids != 'HOH') & (branch_mon_ids != 'DOD') + + string_array.remap( + pdbx_pdb_ins_codes, mapping=_INSERTION_CODE_REMAP, inplace=True + ) + string_array.remap( + nonpoly_pdb_ins_codes, mapping=_INSERTION_CODE_REMAP, inplace=True + ) + string_array.remap( + branch_pdb_ins_codes, mapping=_INSERTION_CODE_REMAP, inplace=True + ) + + def _ligand_residue_ids(chain_ids: np.ndarray) -> np.ndarray: + """Computes internal residue ID for ligand residues that don't have it.""" + + # E.g. chain_ids=[A, A, A, B, C, C, D, D, D] -> [1, 2, 3, 1, 1, 2, 1, 2, 3]. + indices = np.arange(chain_ids.size, dtype=np.int32) + return (indices + 1) - np.maximum.accumulate( + indices * (chain_ids != np.roll(chain_ids, 1)) + ) + + branch_residue_ids = _ligand_residue_ids(branch_asym_ids[branch_mask]) + nonpoly_residue_ids = _ligand_residue_ids(nonpoly_asym_ids[nonpoly_mask]) + + chain_res_builder.add_residues( + chain_ids=branch_asym_ids[branch_mask], + chain_auth_asym_ids=branch_auth_asym_id[branch_mask], + res_ids=branch_residue_ids, + res_names=branch_mon_ids[branch_mask], + res_auth_seq_ids=branch_auth_seq_ids[branch_mask], + res_ins_codes=branch_pdb_ins_codes[branch_mask], + ) + + chain_res_builder.add_residues( + chain_ids=nonpoly_asym_ids[nonpoly_mask], + chain_auth_asym_ids=nonpoly_auth_asym_id[nonpoly_mask], + res_ids=nonpoly_residue_ids, + res_names=nonpoly_mon_ids[nonpoly_mask], + res_auth_seq_ids=nonpoly_auth_seq_ids[nonpoly_mask], + res_ins_codes=nonpoly_pdb_ins_codes[nonpoly_mask], + ) + + chains = chain_res_builder.make_chains_table() + residues = chain_res_builder.make_residues_table() + + # Construct foreign residue keys for the atoms table. + res_ends = np.array(layout.residues(), dtype=np.int32) + res_starts = np.array(layout.residue_starts(), dtype=np.int32) + res_lengths = res_ends - res_starts + + # Check just for HOH, DOD can be part e.g. of hydroxycysteine. + if include_water: + res_chain_types = chains.apply_array_to_column( + column_name='type', arr=residues.chain_key + ) + water_mask = res_chain_types != mmcif_names.WATER + if 'HOH' in set(residues.name[water_mask]): + raise ValueError('Bad mmCIF file: non-water entity has water molecules.') + else: + # Include resolved and unresolved residues. + if 'HOH' in set(residues.name) | set(label_comp_ids[res_starts]): + raise ValueError('Bad mmCIF file: non-water entity has water molecules.') + + atom_chain_key = string_array.remap( + label_asym_ids, mapping=chain_res_builder.chain_key_by_chain_id + ).astype(int) + + # If any of the residue lookups failed, the mmCIF is corrupted. + try: + atom_res_key_per_res = string_array.remap_multiple( + ( + label_asym_ids[res_starts], + auth_seq_ids[res_starts], + label_comp_ids[res_starts], + pdbx_pdb_ins_codes[res_starts], + ), + mapping=chain_res_builder.key_for_res, + ) + except KeyError as e: + raise ValueError( + 'Lookup for the following atom from the _atom_site table failed: ' + f'(label_asym_id, auth_seq_id, res_name, ins_code)={e}. This typically ' + 'indicates that the _pdbx_poly_seq_scheme, _pdbx_nonpoly_scheme, or ' + '_pdbx_branch_scheme tables do not have data for all residues present ' + 'in the _atom_site table. It could also be due to a known issue with ' + 'a small number of multi-model mmCIFs.' + ) from e + + # The residue ID will be shared for all atoms within that residue. + atom_res_key = np.repeat(atom_res_key_per_res, repeats=res_lengths) + + if fix_mse_residues: + met_residues_mask = (residues.name == 'MET')[atom_res_key] + unfixed_mse_selenium_mask = met_residues_mask & (label_atom_ids == 'SE') + label_atom_ids[unfixed_mse_selenium_mask] = 'SD' + type_symbols[unfixed_mse_selenium_mask] = 'S' + + atoms = structure_tables.Atoms( + key=atom_site_first_model, + chain_key=atom_chain_key, + res_key=atom_res_key, + name=label_atom_ids, + element=type_symbols, + x=atom_x, + y=atom_y, + z=atom_z, + b_factor=atom_b_factor, + occupancy=atom_occupancy, + ) + + return chains, residues, atoms + + +def from_atom_arrays( + *, + res_id: np.ndarray, + name: str = 'unset', + release_date: datetime.date | None = None, + resolution: float | None = None, + structure_method: str | None = None, + all_residues: Mapping[str, Sequence[tuple[str, int]]] | None = None, + bioassembly_data: bioassemblies.BioassemblyData | None = None, + chemical_components_data: ( + struc_chem_comps.ChemicalComponentsData | None + ) = None, + bond_table: structure_tables.Bonds | None = None, + chain_id: np.ndarray | None = None, + chain_type: np.ndarray | None = None, + res_name: np.ndarray | None = None, + atom_key: np.ndarray | None = None, + atom_name: np.ndarray | None = None, + atom_element: np.ndarray | None = None, + atom_x: np.ndarray | None = None, + atom_y: np.ndarray | None = None, + atom_z: np.ndarray | None = None, + atom_b_factor: np.ndarray | None = None, + atom_occupancy: np.ndarray | None = None, +) -> structure.Structure: + """Returns a Structure constructed from atom array level data. + + All fields except name and, res_id are optional, all array fields consist of a + value for each atom in the structure - so residue and chain values should hold + the same value for each atom in the chain or residue. Fields which are not + defined are filled with default values. + + Validation is performed by the Structure constructor where possible - but + author_naming scheme and all_residues must be checked in this function. + + It is not possible to construct structures with chains that do not contain + any resolved residues using this function. If this is necessary, use the + structure.Structure constructor directly. + + Args: + res_id: Integer array of shape [num_atom]. The unique residue identifier for + each residue. mmCIF field - _atom_site.label_seq_id. + name: The name of the structure. E.g. a PDB ID. + release_date: The release date of the structure as a `datetime.date`. + resolution: The resolution of the structure in Angstroms. + structure_method: The method used to solve this structure's coordinates. + all_residues: An optional mapping from each chain ID (i.e. label_asym_id) to + a sequence of (label_comp_id, label_seq_id) tuples, one per residue. This + can contain residues that aren't present in the atom arrays. This is + common in experimental data where some residues are not resolved but are + known to be present. + bioassembly_data: An optional instance of bioassembly.BioassemblyData. If + present then a new Structure representing a specific bioassembly can be + extracted using `Structure.generate_bioassembly(assembly_id)`. + chemical_components_data: An optional instance of ChemicalComponentsData. + Its content will be used for providing metadata about chemical components + in this Structure instance. If not specified information will be retrieved + from the standard chemical component dictionary (CCD, for more details see + https://www.wwpdb.org/data/ccd). + bond_table: A table representing manually-specified bonds. This corresponds + to the _struct_conn table in an mmCIF. Atoms are identified by their key, + as specified by the atom_key column. If this table is provided then the + atom_key column must also be defined. + chain_id: String array of shape [num_atom] of unique chain identifiers. + mmCIF field - _atom_site.label_asym_id. + chain_type: String array of shape [num_atom]. The molecular type of the + current chain (e.g. polyribonucleotide). mmCIF field - _entity_poly.type + OR _entity.type (for non-polymers). + res_name: String array of shape [num_atom].. The name of each residue, + typically a 3 letter string for polypeptides or 1-2 letter strings for + polynucleotides. mmCIF field - _atom_site.label_comp_id. + atom_key: A unique sorted integer array, used only by the bonds table to + identify the atoms participating in each bond. If the bonds table is + specified then this column must be non-None. + atom_name: String array of shape [num_atom]. The name of each atom (e.g CA, + O2', etc.). mmCIF field - _atom_site.label_atom_id. + atom_element: String array of shape [num_atom]. The element type of each + atom (e.g. C, O, N, etc.). mmCIF field - _atom_site.type_symbol. + atom_x: Float array of shape [..., num_atom] of atom x coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_y: Float array of shape [..., num_atom] of atom y coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_z: Float array of shape [..., num_atom] of atom z coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_b_factor: Float array of shape [..., num_atom] or [num_atom] of atom + b-factors or equivalent. If there are no extra leading dimensions then + these values are assumed to apply to all coordinates for a given atom. If + there are leading dimensions then these must match those used by the + coordinate fields. + atom_occupancy: Float array of shape [..., num_atom] or [num_atom] of atom + occupancies or equivalent. If there are no extra leading dimensions then + these values are assumed to apply to all coordinates for a given atom. If + there are leading dimensions then these must match those used by the + coordinate fields. + """ + + atoms, residues, chains = structure_tables.tables_from_atom_arrays( + res_id=res_id, + all_residues=all_residues, + chain_id=chain_id, + chain_type=chain_type, + res_name=res_name, + atom_key=atom_key, + atom_name=atom_name, + atom_element=atom_element, + atom_x=atom_x, + atom_y=atom_y, + atom_z=atom_z, + atom_b_factor=atom_b_factor, + atom_occupancy=atom_occupancy, + ) + + return structure.Structure( + name=name, + release_date=release_date, + resolution=resolution, + structure_method=structure_method, + bioassembly_data=bioassembly_data, + chemical_components_data=chemical_components_data, + atoms=atoms, + chains=chains, + residues=residues, + bonds=bond_table or structure_tables.Bonds.make_empty(), + ) + + +def _guess_entity_type( + chain_residues: Collection[str], atom_types: Collection[str] +) -> str: + """Guess the entity type (polymer/non-polymer/water) based on residues/atoms. + + We treat both arguments as unordered collections since we care only whether + all elements satisfy come conditions. The chain_residues can be either + grouped by residue (length num_res), or it can be raw (length num_atoms). + Atom type is unique for each atom in a residue, so don't group atom_types. + + Args: + chain_residues: A sequence of full residue name (1-letter for DNA, 2-letters + for RNA, 3 for protein). The _atom_site.label_comp_id column in mmCIF. + atom_types: Atom type: ATOM or HETATM. The _atom_site.group_PDB column in + mmCIF. + + Returns: + One of polymer/non-polymer/water based on the following criteria: + * If all atoms are HETATMs and all residues are water -> water. + * If all atoms are HETATMs and not all residues are water -> non-polymer. + * Otherwise -> polymer. + """ + if not chain_residues or not atom_types: + raise ValueError( + f'chain_residues (len {len(chain_residues)}) and atom_types (len ' + f'{len(atom_types)}) must be both non-empty. Got: {chain_residues=} ' + f'and {atom_types=}' + ) + + if all(a == 'HETATM' for a in atom_types): + if all(c in residue_names.WATER_TYPES for c in chain_residues): + return mmcif_names.WATER + return mmcif_names.NON_POLYMER_CHAIN + return mmcif_names.POLYMER_CHAIN diff --git a/flax_model/alphafold3/structure/sterics.py b/flax_model/alphafold3/structure/sterics.py new file mode 100644 index 0000000000000000000000000000000000000000..ba4dd15bccca70fcc06b4c5cb50c8fcacb19252d --- /dev/null +++ b/flax_model/alphafold3/structure/sterics.py @@ -0,0 +1,132 @@ + + +"""Functions relating to spatial locations of atoms within a structure.""" + +from collections.abc import Collection, Sequence + +from flax_model.alphafold3 import structure +from flax_model.alphafold3.structure import mmcif +import numpy as np +import scipy + + +def _make_atom_has_clash_mask( + kd_query_result: np.ndarray, + struc: structure.Structure, + ignore_chains: Collection[str], +) -> np.ndarray: + """Returns a boolean NumPy array representing whether each atom has a clash. + + Args: + kd_query_result: NumPy array containing N-atoms arrays, each array + containing indices to atoms that clash with the N'th atom. + struc: Structure over which clashes were detected. + ignore_chains: Collection of chains that should not be considered clashing. + A boolean NumPy array of length N atoms. + """ + atom_is_clashing = np.zeros((struc.num_atoms,), dtype=bool) + for atom_index, clashes in enumerate(kd_query_result): + chain_i = struc.chain_id[atom_index] + if chain_i in ignore_chains: + continue + islig_i = struc.is_ligand_mask[atom_index] + for clashing_atom_index in clashes: + chain_c = struc.chain_id[clashing_atom_index] + if chain_c in ignore_chains: + continue + islig_c = struc.is_ligand_mask[clashing_atom_index] + if ( + clashing_atom_index == atom_index + or chain_i == chain_c + or islig_i != islig_c + ): + # Ignore clashes within chain or between ligand and polymer. + continue + atom_is_clashing[atom_index] = True + return atom_is_clashing + + +def find_clashing_chains( + struc: structure.Structure, + clash_thresh_angstrom: float = 1.7, + clash_thresh_fraction: float = 0.3, +) -> Sequence[str]: + """Finds chains that clash with others. + + Clashes are defined by polymer backbone atoms and all ligand atoms. + Ligand-polymer clashes are not dropped. + + Will not find clashes if all coordinates are 0. Coordinates are all 0s if + the structure is generated from sequences only, as done for inference in + dendro for example. + + Args: + struc: The structure defining the chains and atom positions. + clash_thresh_angstrom: Below this distance, atoms are considered clashing. + clash_thresh_fraction: Chains with more than this fraction of their atoms + considered clashing will be dropped. This value should be in the range (0, + 1]. + + Returns: + A sequence of chain ids for chains that clash. + + Raises: + ValueError: If `clash_thresh_fraction` is not in range (0,1]. + """ + if not 0 < clash_thresh_fraction <= 1: + raise ValueError('clash_thresh_fraction must be in range (0,1]') + + struc_backbone = struc.filter_polymers_to_single_atom_per_res() + if struc_backbone.num_chains == 0: + return [] + + # If the coordinates are all 0, do not search for clashes. + if not np.any(struc_backbone.coords): + return [] + + coord_kdtree = scipy.spatial.cKDTree(struc_backbone.coords) + + # For each atom coordinate, find all atoms within the clash thresh radius. + clashing_per_atom = coord_kdtree.query_ball_point( + struc_backbone.coords, r=clash_thresh_angstrom + ) + chain_ids = struc_backbone.chains + if struc_backbone.atom_occupancy is not None: + chain_occupancy = np.array([ + np.mean(struc_backbone.atom_occupancy[start:end]) + for start, end in struc_backbone.iter_chain_ranges() + ]) + else: + chain_occupancy = None + + # Remove chains until no more significant clashing. + chains_to_remove = set() + for _ in range(len(chain_ids)): + # Calculate maximally clashing. + atom_has_clash = _make_atom_has_clash_mask( + clashing_per_atom, struc_backbone, chains_to_remove + ) + clashes_per_chain = np.array([ + atom_has_clash[start:end].mean() + for start, end in struc_backbone.iter_chain_ranges() + ]) + max_clash = np.max(clashes_per_chain) + if max_clash <= clash_thresh_fraction: + # None of the remaining chains exceed the clash fraction threshold, so + # we can exit. + break + + # Greedily remove worst with the lowest occupancy. + most_clashes = np.nonzero(clashes_per_chain == max_clash)[0] + if chain_occupancy is not None: + occupancy_clashing = chain_occupancy[most_clashes] + last_lowest_occupancy = ( + len(occupancy_clashing) - np.argmin(occupancy_clashing[::-1]) - 1 + ) + worst_and_last = most_clashes[last_lowest_occupancy] + else: + worst_and_last = most_clashes[-1] + + chains_to_remove.add(chain_ids[worst_and_last]) + + return sorted(chains_to_remove, key=mmcif.str_id_to_int_id) diff --git a/flax_model/alphafold3/structure/structure.py b/flax_model/alphafold3/structure/structure.py new file mode 100644 index 0000000000000000000000000000000000000000..1fc7e024ab55edc722e1ac549bb7b2c45b47cad7 --- /dev/null +++ b/flax_model/alphafold3/structure/structure.py @@ -0,0 +1,3277 @@ + + +"""Structure class for representing and processing molecular structures.""" + +import collections +from collections.abc import Callable, Collection, Iterable, Iterator, Mapping, Sequence, Set +import dataclasses +import datetime +import enum +import functools +import itertools +import typing +from typing import Any, ClassVar, Final, Literal, NamedTuple, Self, TypeAlias, TypeVar + +from flax_model.alphafold3.constants import atom_types +from flax_model.alphafold3.constants import chemical_components +from flax_model.alphafold3.constants import mmcif_names +from flax_model.alphafold3.constants import residue_names +from flax_model.alphafold3.cpp import membership +from flax_model.alphafold3.cpp import string_array +from flax_model.alphafold3.structure import bioassemblies +from flax_model.alphafold3.structure import chemical_components as struc_chem_comps +from flax_model.alphafold3.structure import mmcif +from flax_model.alphafold3.structure import structure_tables +from flax_model.alphafold3.structure import table +import numpy as np + +# Controls the default number of decimal places for coordinates when writing to +# mmCIF. +_COORDS_DECIMAL_PLACES: Final[int] = 3 + + +@enum.unique +class CascadeDelete(enum.Enum): + NONE = 0 + FULL = 1 + CHAINS = 2 + + +# See www.python.org/dev/peps/pep-0484/#support-for-singleton-types-in-unions +class _UnsetSentinel(enum.Enum): + UNSET = object() + + +_UNSET = _UnsetSentinel.UNSET + + +class Bond(NamedTuple): + """Describes a bond between two atoms.""" + + from_atom: Mapping[str, str | int | float | np.ndarray] + dest_atom: Mapping[str, str | int | float | np.ndarray] + bond_info: Mapping[str, str | int] + + +class MissingAtomError(Exception): + """Error raised when an atom is missing during alignment.""" + + +class MissingAuthorResidueIdError(Exception): + """Raised when author naming data is missing for a residue. + + This can occur in certain edge cases where missing residue data is provided + without also providing author IDs for those missing residues. + """ + + +# AllResidues is a mapping from label_asym_id to a sequence of (label_comp_id, +# label_seq_id) pairs. These represent the full sequence including residues +# that might be missing (e.g. unresolved residues in X-ray data). +AllResidues: TypeAlias = Mapping[str, Sequence[tuple[str, int]]] +AuthorNamingScheme: TypeAlias = structure_tables.AuthorNamingScheme + + +# External residue ID given to missing residues that don't have an ID +# already provided. In mmCIFs this data is found in _pdbx_poly_seq_scheme. +MISSING_AUTH_SEQ_ID: Final[str] = '.' + + +# Maps from structure fields to column names in the relevant table. +CHAIN_FIELDS: Final[Mapping[str, str]] = { + 'chain_id': 'id', + 'chain_type': 'type', + 'chain_auth_asym_id': 'auth_asym_id', + 'chain_entity_id': 'entity_id', + 'chain_entity_desc': 'entity_desc', +} + + +RESIDUE_FIELDS: Final[Mapping[str, str]] = { + 'res_id': 'id', + 'res_name': 'name', + 'res_auth_seq_id': 'auth_seq_id', + 'res_insertion_code': 'insertion_code', +} + +ATOM_FIELDS: Final[Mapping[str, str]] = { + 'atom_name': 'name', + 'atom_element': 'element', + 'atom_x': 'x', + 'atom_y': 'y', + 'atom_z': 'z', + 'atom_b_factor': 'b_factor', + 'atom_occupancy': 'occupancy', + 'atom_key': 'key', +} + +# Fields in structure. +ARRAY_FIELDS = frozenset({ + 'atom_b_factor', + 'atom_element', + 'atom_key', + 'atom_name', + 'atom_occupancy', + 'atom_x', + 'atom_y', + 'atom_z', + 'chain_id', + 'chain_type', + 'res_id', + 'res_name', +}) + +GLOBAL_FIELDS = frozenset({ + 'name', + 'release_date', + 'resolution', + 'structure_method', + 'bioassembly_data', + 'chemical_components_data', +}) + +# Fields which can be updated in copy_and_update. +_UPDATEABLE_FIELDS: Final[Set[str]] = frozenset({ + 'all_residues', + 'atom_b_factor', + 'atom_element', + 'atom_key', + 'atom_name', + 'atom_occupancy', + 'atom_x', + 'atom_y', + 'atom_z', + 'bioassembly_data', + 'bonds', + 'chain_id', + 'chain_type', + 'chemical_components_data', + 'name', + 'release_date', + 'res_id', + 'res_name', + 'resolution', + 'structure_method', +}) + + +def fix_non_standard_polymer_residues( + res_names: np.ndarray, chain_type: str +) -> np.ndarray: + """Remaps residue names to the closest standard protein/RNA/DNA residue. + + If residue name is already a standard type, it is not altered. + If a match cannot be found, returns 'UNK' for protein chainresidues and 'N' + for RNA/DNA chain residue. + + Args: + res_names: A numpy array of string residue names (CCD monomer codes). E.g. + 'ARG' (protein), 'DT' (DNA), 'N' (RNA). + chain_type: The type of the chain, must be PROTEIN_CHAIN, RNA_CHAIN or + DNA_CHAIN. + + Returns: + An array remapped so that its elements are all from + PROTEIN_TYPES_WITH_UNKNOWN | RNA_TYPES | DNA_TYPES | {'N'}. + + Raises: + ValueError: If chain_type not in PEPTIDE_CHAIN_TYPES or + {OTHER_CHAIN, RNA_CHAIN, DNA_CHAIN, DNA_RNA_HYBRID_CHAIN}. + """ + # Map to one letter code, then back to common res_names. + one_letter_codes = string_array.remap( + res_names, mapping=residue_names.CCD_NAME_TO_ONE_LETTER, default_value='X' + ) + + if ( + chain_type in mmcif_names.PEPTIDE_CHAIN_TYPES + or chain_type == mmcif_names.OTHER_CHAIN + ): + mapping = residue_names.PROTEIN_COMMON_ONE_TO_THREE + default_value = 'UNK' + elif chain_type == mmcif_names.RNA_CHAIN: + # RNA has single-letter CCD monomer codes. + mapping = {r: r for r in residue_names.RNA_TYPES} + default_value = 'N' + elif chain_type == mmcif_names.DNA_CHAIN: + mapping = residue_names.DNA_COMMON_ONE_TO_TWO + default_value = 'N' + elif chain_type == mmcif_names.DNA_RNA_HYBRID_CHAIN: + mapping = {r: r for r in residue_names.NUCLEIC_TYPES_WITH_UNKNOWN} + default_value = 'N' + else: + raise ValueError(f'Expected a protein/DNA/RNA chain but got {chain_type}') + + return string_array.remap( + one_letter_codes, mapping=mapping, default_value=default_value + ) + + +def _get_change_indices(arr: np.ndarray) -> np.ndarray: + if arr.size == 0: + return np.array([], dtype=np.int32) + else: + changing_idxs = np.where(arr[1:] != arr[:-1])[0] + 1 + return np.concatenate(([0], changing_idxs), axis=0) + + +def _unpack_filter_predicates( + predicate_by_field_name: Mapping[str, table.FilterPredicate], +) -> tuple[ + Mapping[str, table.FilterPredicate], + Mapping[str, table.FilterPredicate], + Mapping[str, table.FilterPredicate], +]: + """Unpacks filter kwargs into predicates for each table.""" + chain_predicates = {} + res_predicates = {} + atom_predicates = {} + for k, pred in predicate_by_field_name.items(): + if col := CHAIN_FIELDS.get(k): + chain_predicates[col] = pred + elif col := RESIDUE_FIELDS.get(k): + res_predicates[col] = pred + elif col := ATOM_FIELDS.get(k): + atom_predicates[col] = pred + else: + raise ValueError(k) + return chain_predicates, res_predicates, atom_predicates + + +_T = TypeVar('_T') + + +SCALAR_FIELDS: Final[Collection[str]] = frozenset({ + 'name', + 'release_date', + 'resolution', + 'structure_method', + 'bioassembly_data', + 'chemical_components_data', +}) + + +TABLE_FIELDS: Final[Collection[str]] = frozenset( + {'chains', 'residues', 'atoms', 'bonds'} +) + + +V2_FIELDS: Final[Collection[str]] = frozenset({*SCALAR_FIELDS, *TABLE_FIELDS}) + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class StructureTables: + chains: structure_tables.Chains + residues: structure_tables.Residues + atoms: structure_tables.Atoms + bonds: structure_tables.Bonds + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class ResArrays: + """Atom-level data arrays with a residue dimension. + + Attributes: + atom_positions: float32 of shape [num_res, num_atom_type, 3] coordinates. + atom_mask: float32 of shape [num_res, num_atom_type] indicating if an atom + is present. + atom_b_factor: float32 of shape [num_res, num_atom_type] b_factors. + atom_occupancy: float32 of shape [num_res, num_atom_type] occupancies. + """ + + atom_positions: np.ndarray + atom_mask: np.ndarray + atom_b_factor: np.ndarray + atom_occupancy: np.ndarray + + +class Structure(table.Database): + """Structure class for representing and processing molecular structures.""" + + tables: ClassVar[Collection[str]] = TABLE_FIELDS + + foreign_keys: ClassVar[Mapping[str, Collection[tuple[str, str]]]] = { + 'residues': (('chain_key', 'chains'),), + 'atoms': (('chain_key', 'chains'), ('res_key', 'residues')), + 'bonds': (('from_atom_key', 'atoms'), ('dest_atom_key', 'atoms')), + } + + def __init__( + self, + *, + name: str = 'unset', + release_date: datetime.date | None = None, + resolution: float | None = None, + structure_method: str | None = None, + bioassembly_data: bioassemblies.BioassemblyData | None = None, + chemical_components_data: ( + struc_chem_comps.ChemicalComponentsData | None + ) = None, + chains: structure_tables.Chains, + residues: structure_tables.Residues, + atoms: structure_tables.Atoms, + bonds: structure_tables.Bonds, + skip_validation: bool = False, + ): + # Version number is written to mmCIF and should be incremented when changes + # are made to mmCIF writing or internals that affect this. + # b/345221494 Rename this variable when structure_v1 compatibility code + # is removed. + self._VERSION = '2.0.0' # pylint: disable=invalid-name + self._name = name or 'unset' + self._release_date = release_date + self._resolution = resolution + self._structure_method = structure_method + self._bioassembly_data = bioassembly_data + self._chemical_components_data = chemical_components_data + + self._chains = chains + self._residues = residues + self._atoms = atoms + self._bonds = bonds + + if not skip_validation: + self._validate_table_foreign_keys() + self._validate_consistent_table_ordering() + + def _validate_table_foreign_keys(self): + """Validates that all foreign keys are present in the referred tables.""" + residue_keys = set(self._residues.key) + chain_keys = set(self._chains.key) + if np.any(membership.isin(self._atoms.res_key, residue_keys, invert=True)): + raise ValueError( + 'Atom residue keys not in the residues table: ' + f'{set(self._atoms.res_key).difference(self._residues.key)}' + ) + if np.any(membership.isin(self._atoms.chain_key, chain_keys, invert=True)): + raise ValueError( + 'Atom chain keys not in the chains table: ' + f'{set(self._atoms.chain_key).difference(self._chains.key)}' + ) + if np.any( + membership.isin(self._residues.chain_key, chain_keys, invert=True) + ): + raise ValueError( + 'Residue chain keys not in the chains table: ' + f'{set(self._residues.chain_key).difference(self._chains.key)}' + ) + + def _validate_consistent_table_ordering(self): + """Validates that all tables have the same ordering.""" + atom_chain_keys = self._atoms.chain_key[self.chain_boundaries] + atom_res_keys = self._atoms.res_key[self.res_boundaries] + + if not np.array_equal(self.present_chains.key, atom_chain_keys): + raise ValueError( + f'Atom table chain order\n{atom_chain_keys}\ndoes not match the ' + f'chain table order\n{self._chains.key}' + ) + if not np.array_equal(self.present_residues.key, atom_res_keys): + raise ValueError( + f'Atom table residue order\n{atom_res_keys}\ndoes not match the ' + f'present residue table order\n{self.present_residues.key}' + ) + + def get_table(self, table_name: str) -> table.Table: + match table_name: + case 'chains': + return self.chains_table + case 'residues': + return self.residues_table + case 'atoms': + return self.atoms_table + case 'bonds': + return self.bonds_table + case _: + raise ValueError(table_name) + + @property + def chains_table(self) -> structure_tables.Chains: + """Chains table.""" + return self._chains + + @property + def residues_table(self) -> structure_tables.Residues: + """Residues table.""" + return self._residues + + @property + def atoms_table(self) -> structure_tables.Atoms: + """Atoms table.""" + return self._atoms + + @property + def bonds_table(self) -> structure_tables.Bonds: + """Bonds table.""" + return self._bonds + + @property + def name(self) -> str: + return self._name + + @property + def release_date(self) -> datetime.date | None: + return self._release_date + + @property + def resolution(self) -> float | None: + return self._resolution + + @property + def structure_method(self) -> str | None: + return self._structure_method + + @property + def bioassembly_data(self) -> bioassemblies.BioassemblyData | None: + return self._bioassembly_data + + @property + def chemical_components_data( + self, + ) -> struc_chem_comps.ChemicalComponentsData | None: + return self._chemical_components_data + + @property + def bonds(self) -> structure_tables.Bonds: + return self._bonds + + @functools.cached_property + def author_naming_scheme(self) -> AuthorNamingScheme: + auth_asym_id = {} + entity_id = {} + entity_desc = {} + auth_seq_id = collections.defaultdict(dict) + insertion_code = collections.defaultdict(dict) + + for chain_i in range(self._chains.size): + chain_id = self._chains.id[chain_i] + auth_asym_id[chain_id] = self._chains.auth_asym_id[chain_i] + chain_entity_id = self._chains.entity_id[chain_i] + entity_id[chain_id] = chain_entity_id + entity_desc[chain_entity_id] = self._chains.entity_desc[chain_i] + + chain_index_by_key = self._chains.index_by_key + for res_i in range(self._residues.size): + chain_key = self._residues.chain_key[res_i] + chain_id = self._chains.id[chain_index_by_key[chain_key]] + res_id = self._residues.id[res_i] + res_auth_seq_id = self._residues.auth_seq_id[res_i] + if res_auth_seq_id == MISSING_AUTH_SEQ_ID: + continue + auth_seq_id[chain_id][res_id] = res_auth_seq_id + ins_code = self._residues.insertion_code[res_i] + # Compatibility with Structure v1 which used None to represent . or ?. + insertion_code[chain_id][res_id] = ( + ins_code if ins_code not in {'.', '?'} else None + ) + + return AuthorNamingScheme( + auth_asym_id=auth_asym_id, + entity_id=entity_id, + entity_desc=entity_desc, + auth_seq_id=dict(auth_seq_id), + insertion_code=dict(insertion_code), + ) + + @functools.cached_property + def all_residues(self) -> AllResidues: + chain_id_by_key = dict(zip(self._chains.key, self._chains.id)) + residue_chain_boundaries = _get_change_indices(self._residues.chain_key) + boundaries = self._iter_residue_ranges( + residue_chain_boundaries, count_unresolved=True + ) + return { + chain_id_by_key[self._residues.chain_key[start]]: list( + zip(self._residues.name[start:end], self._residues.id[start:end]) + ) + for start, end in boundaries + } + + @functools.cached_property + def label_asym_id_to_entity_id(self) -> Mapping[str, str]: + return dict(zip(self._chains.id, self._chains.entity_id)) + + @functools.cached_property + def chain_entity_id(self) -> np.ndarray: + """Returns the entity ID for each atom in the structure.""" + return self.chains_table.apply_array_to_column( + 'entity_id', self._atoms.chain_key + ) + + @functools.cached_property + def chain_entity_desc(self) -> np.ndarray: + """Returns the entity description for each atom in the structure.""" + return self.chains_table.apply_array_to_column( + 'entity_desc', self._atoms.chain_key + ) + + @functools.cached_property + def chain_auth_asym_id(self) -> np.ndarray: + """Returns the chain auth asym ID for each atom in the structure.""" + return self.chains_table.apply_array_to_column( + 'auth_asym_id', self._atoms.chain_key + ) + + @functools.cached_property + def chain_id(self) -> np.ndarray: + chain_index_by_key = self._chains.index_by_key + return self._chains.id[chain_index_by_key[self._atoms.chain_key]] + + @functools.cached_property + def chain_type(self) -> np.ndarray: + chain_index_by_key = self._chains.index_by_key + return self._chains.type[chain_index_by_key[self._atoms.chain_key]] + + @functools.cached_property + def res_id(self) -> np.ndarray: + return self._residues['id', self._atoms.res_key] + + @functools.cached_property + def res_name(self) -> np.ndarray: + return self._residues['name', self._atoms.res_key] + + @functools.cached_property + def res_auth_seq_id(self) -> np.ndarray: + """Returns the residue auth seq ID for each atom in the structure.""" + return self.residues_table.apply_array_to_column( + 'auth_seq_id', self._atoms.res_key + ) + + @functools.cached_property + def res_insertion_code(self) -> np.ndarray: + """Returns the residue insertion code for each atom in the structure.""" + return self.residues_table.apply_array_to_column( + 'insertion_code', self._atoms.res_key + ) + + @property + def atom_key(self) -> np.ndarray: + return self._atoms.key + + @property + def atom_name(self) -> np.ndarray: + return self._atoms.name + + @property + def atom_element(self) -> np.ndarray: + return self._atoms.element + + @property + def atom_x(self) -> np.ndarray: + return self._atoms.x + + @property + def atom_y(self) -> np.ndarray: + return self._atoms.y + + @property + def atom_z(self) -> np.ndarray: + return self._atoms.z + + @property + def atom_b_factor(self) -> np.ndarray: + return self._atoms.b_factor + + @property + def atom_occupancy(self) -> np.ndarray: + return self._atoms.occupancy + + @functools.cached_property + def chain_boundaries(self) -> np.ndarray: + """The indices in the atom fields where each present chain begins.""" + return _get_change_indices(self._atoms.chain_key) + + @functools.cached_property + def res_boundaries(self) -> np.ndarray: + """The indices in the atom fields where each present residue begins.""" + return _get_change_indices(self._atoms.res_key) + + @functools.cached_property + def present_chains(self) -> structure_tables.Chains: + """Returns table of chains which have at least 1 resolved atom.""" + is_present_mask = np.isin(self._chains.key, self._atoms.chain_key) + return typing.cast(structure_tables.Chains, self._chains[is_present_mask]) + + @functools.cached_property + def present_residues(self) -> structure_tables.Residues: + """Returns table of residues which have at least 1 resolved atom.""" + is_present_mask = np.isin(self._residues.key, self._atoms.res_key) + return typing.cast( + structure_tables.Residues, self._residues[is_present_mask] + ) + + @functools.cached_property + def unresolved_residues(self) -> structure_tables.Residues: + """Returns table of residues which have at least 1 resolved atom.""" + is_unresolved_mask = np.isin( + self._residues.key, self._atoms.res_key, invert=True + ) + return typing.cast( + structure_tables.Residues, self._residues[is_unresolved_mask] + ) + + def __getitem__(self, field: str) -> Any: + """Gets raw field data using field name as a string.""" + if field in TABLE_FIELDS: + return self.get_table(field) + else: + return getattr(self, field) + + def __getstate__(self) -> dict[str, Any]: + """Pickle calls this on dump. + + Returns: + Members with cached properties removed. + """ + cached_props = { + k + for k, v in self.__class__.__dict__.items() + if isinstance(v, functools.cached_property) + } + return {k: v for k, v in self.__dict__.items() if k not in cached_props} + + def __repr__(self): + return ( + f'Structure({self._name}: {self.num_chains} chains, ' + f'{self.num_residues(count_unresolved=False)} residues, ' + f'{self.num_atoms} atoms)' + ) + + @property + def num_atoms(self) -> int: + return self._atoms.size + + def num_residues(self, *, count_unresolved: bool) -> int: + """Returns the number of residues in this Structure. + + Args: + count_unresolved: Whether to include unresolved (empty) residues. + + Returns: + Number of residues in the Structure. + """ + if count_unresolved: + return self._residues.size + else: + return self.present_residues.size + + @property + def num_chains(self) -> int: + return self._chains.size + + @property + def num_models(self) -> int: + """The number of models of this Structure.""" + return self._atoms.num_models + + def _atom_mask(self, entities: Set[str]) -> np.ndarray: + """Boolean label indicating if each atom is from entities or not.""" + mask = np.zeros(self.num_atoms, dtype=bool) + chain_index_by_key = self._chains.index_by_key + for start, end in self.iter_chain_ranges(): + chain_index = chain_index_by_key[self._atoms.chain_key[start]] + chain_type = self._chains.type[chain_index] + mask[start:end] = chain_type in entities + return mask + + @functools.cached_property + def is_protein_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is from protein or not.""" + return self._atom_mask(entities={mmcif_names.PROTEIN_CHAIN}) + + @functools.cached_property + def is_dna_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is from DNA or not.""" + return self._atom_mask(entities={mmcif_names.DNA_CHAIN}) + + @functools.cached_property + def is_rna_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is from RNA or not.""" + return self._atom_mask(entities={mmcif_names.RNA_CHAIN}) + + @functools.cached_property + def is_nucleic_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is a nucleic acid or not.""" + return self._atom_mask(entities=mmcif_names.NUCLEIC_ACID_CHAIN_TYPES) + + @functools.cached_property + def is_ligand_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is a ligand or not.""" + return self._atom_mask(entities=mmcif_names.LIGAND_CHAIN_TYPES) + + @functools.cached_property + def is_water_mask(self) -> np.ndarray: + """Boolean label indicating if each atom is from water or not.""" + return self._atom_mask(entities={mmcif_names.WATER}) + + def iter_atoms(self) -> Iterator[Mapping[str, Any]]: + """Iterates over the atoms in the structure.""" + if self._atoms.size == 0: + return + + current_chain = self._chains.get_row_by_key( + column_name_map=CHAIN_FIELDS, key=self._atoms.chain_key[0] + ) + current_chain_key = self._atoms.chain_key[0] + current_res = self._residues.get_row_by_key( + column_name_map=RESIDUE_FIELDS, key=self._atoms.res_key[0] + ) + current_res_key = self._atoms.res_key[0] + for atom_i in range(self._atoms.size): + atom_chain_key = self._atoms.chain_key[atom_i] + atom_res_key = self._atoms.res_key[atom_i] + + if atom_chain_key != current_chain_key: + chain_index = self._chains.index_by_key[atom_chain_key] + current_chain = { + 'chain_id': self._chains.id[chain_index], + 'chain_type': self._chains.type[chain_index], + 'chain_auth_asym_id': self._chains.auth_asym_id[chain_index], + 'chain_entity_id': self._chains.entity_id[chain_index], + 'chain_entity_desc': self._chains.entity_desc[chain_index], + } + current_chain_key = atom_chain_key + if atom_res_key != current_res_key: + res_index = self._residues.index_by_key[atom_res_key] + current_res = { + 'res_id': self._residues.id[res_index], + 'res_name': self._residues.name[res_index], + 'res_auth_seq_id': self._residues.auth_seq_id[res_index], + 'res_insertion_code': self._residues.insertion_code[res_index], + } + current_res_key = atom_res_key + + yield { + 'atom_name': self._atoms.name[atom_i], + 'atom_element': self._atoms.element[atom_i], + 'atom_x': self._atoms.x[..., atom_i], + 'atom_y': self._atoms.y[..., atom_i], + 'atom_z': self._atoms.z[..., atom_i], + 'atom_b_factor': self._atoms.b_factor[..., atom_i], + 'atom_occupancy': self._atoms.occupancy[..., atom_i], + 'atom_key': self._atoms.key[atom_i], + **current_res, + **current_chain, + } + + def iter_residues( + self, + include_unresolved: bool = False, + ) -> Iterator[Mapping[str, Any]]: + """Iterates over the residues in the structure.""" + res_table = self._residues if include_unresolved else self.present_residues + if res_table.size == 0: + return + + current_chain = self._chains.get_row_by_key( + column_name_map=CHAIN_FIELDS, key=res_table.chain_key[0] + ) + current_chain_key = res_table.chain_key[0] + for res_i in range(res_table.size): + res_chain_key = res_table.chain_key[res_i] + + if res_chain_key != current_chain_key: + current_chain = self._chains.get_row_by_key( + column_name_map=CHAIN_FIELDS, key=res_table.chain_key[res_i] + ) + current_chain_key = res_chain_key + + row = { + 'res_id': res_table.id[res_i], + 'res_name': res_table.name[res_i], + 'res_auth_seq_id': res_table.auth_seq_id[res_i], + 'res_insertion_code': res_table.insertion_code[res_i], + } + yield row | current_chain + + def _iter_atom_ranges( + self, boundaries: Sequence[int] + ) -> Iterator[tuple[int, int]]: + """Iterator for (start, end) pairs from an array of start indices.""" + yield from itertools.pairwise(boundaries) + # Use explicit length test as boundaries can be a NumPy array. + if len(boundaries) > 0: # pylint: disable=g-explicit-length-test + yield boundaries[-1], self.num_atoms + + def _iter_residue_ranges( + self, + boundaries: Sequence[int], + *, + count_unresolved: bool, + ) -> Iterator[tuple[int, int]]: + """Iterator for (start, end) pairs from an array of start indices.""" + yield from itertools.pairwise(boundaries) + # Use explicit length test as boundaries can be a NumPy array. + if len(boundaries) > 0: # pylint: disable=g-explicit-length-test + yield boundaries[-1], self.num_residues(count_unresolved=count_unresolved) + + def iter_chain_ranges(self) -> Iterator[tuple[int, int]]: + """Iterates pairs of (chain_start, chain_end) indices. + + Yields: + Pairs of (start, end) indices for each chain, where end is not inclusive. + i.e. struc.chain_id[start:end] would be a constant array with length + equal to the number of atoms in the chain. + """ + yield from self._iter_atom_ranges(self.chain_boundaries) + + def iter_residue_ranges(self) -> Iterator[tuple[int, int]]: + """Iterates pairs of (residue_start, residue_end) indices. + + Yields: + Pairs of (start, end) indices for each residue, where end is not + inclusive. i.e. struc.res_id[start:end] would be a constant array with + length equal to the number of atoms in the residue. + """ + yield from self._iter_atom_ranges(self.res_boundaries) + + def iter_chains(self) -> Iterator[Mapping[str, Any]]: + """Iterates over the chains in the structure.""" + for chain_i in range(self.present_chains.size): + yield { + 'chain_id': self.present_chains.id[chain_i], + 'chain_type': self.present_chains.type[chain_i], + 'chain_auth_asym_id': self.present_chains.auth_asym_id[chain_i], + 'chain_entity_id': self.present_chains.entity_id[chain_i], + 'chain_entity_desc': self.present_chains.entity_desc[chain_i], + } + + def iter_bonds(self) -> Iterator[Bond]: + """Iterates over the atoms and bond information. + + Example usage: + + ``` + for from_atom, dest_atom, bond_info in struc.iter_bonds(): + print( + f'From atom: name={from_atom["atom_name"]}, ' + f'chain={from_atom["chain_id"]}, ...' + ) + # Same for dest_atom + print(f'Bond info: type={bond_info["type"]}, role={bond_info["role"]}') + ``` + + Yields: + A `Bond` NamedTuple for each bond in the bonds table. + These have fields `from_atom`, `dest_atom`, `bond_info` where each + is a dictionary. The first two have the same keys as the atom dicts + returned by self.iter_atoms() -- i.e. one key per non-None field. + The final dict has the same keys as self.bonds.iterrows() -- i.e. one + key per column in the bonds table. + """ + from_atom_iter = self._atoms.iterrows( + row_keys=self._bonds.from_atom_key, + column_name_map=ATOM_FIELDS, + chain_key=self._chains.with_column_names(CHAIN_FIELDS), + res_key=self._residues.with_column_names(RESIDUE_FIELDS), + ) + dest_atom_iter = self._atoms.iterrows( + row_keys=self._bonds.dest_atom_key, + column_name_map=ATOM_FIELDS, + chain_key=self._chains.with_column_names(CHAIN_FIELDS), + res_key=self._residues.with_column_names(RESIDUE_FIELDS), + ) + + for from_atom, dest_atom, bond_info in zip( + from_atom_iter, dest_atom_iter, self._bonds.iterrows(), strict=True + ): + yield Bond(from_atom=from_atom, dest_atom=dest_atom, bond_info=bond_info) + + def _apply_atom_index_array( + self, + index_arr: np.ndarray, + chain_boundaries: np.ndarray | None = None, + res_boundaries: np.ndarray | None = None, + skip_validation: bool = False, + ) -> Self: + """Applies index_arr to the atom table using NumPy-style array indexing. + + Args: + index_arr: A 1D NumPy array that will be used to index into the atoms + table. This can either be a boolean array to act as a mask, or an + integer array to perform a gather operation. + chain_boundaries: Unused in structure v2. + res_boundaries: Unused in structure v2. + skip_validation: Whether to skip the validation step that checks internal + consistency after applying atom index array. Do not set to True unless + you are certain the transform is safe, e.g. when the order of atoms is + guaranteed to not change. + + Returns: + A new Structure with an updated atoms table. + """ + del chain_boundaries, res_boundaries + + if index_arr.ndim != 1: + raise ValueError( + f'index_arr must be a 1D NumPy array, but has shape {index_arr.shape}' + ) + + if index_arr.dtype == bool and np.all(index_arr): + return self # Shortcut: The operation is a no-op, so just return itself. + + atoms = structure_tables.Atoms( + **{col: self._atoms[col][..., index_arr] for col in self._atoms.columns} + ) + updated_tables = self._cascade_delete(atoms=atoms) + return self.copy_and_update( + atoms=updated_tables.atoms, + bonds=updated_tables.bonds, + skip_validation=skip_validation, + ) + + @property + def group_by_residue(self) -> Self: + """Returns a Structure with one atom per residue. + + e.g. restypes = struc.group_by_residue['res_id'] + + Returns: + A new Structure with one atom per residue such that per-atom arrays + such as res_name (i.e. Structure v1 fields) have one element per residue. + """ + # This use of _apply_atom_index_array is safe because the chain/residue/atom + # ordering won't change (essentially applying a residue start mask). + return self._apply_atom_index_array( + self.res_boundaries, skip_validation=True + ) + + @property + def group_by_chain(self) -> Self: + """Returns a Structure where all fields are per-chain. + + e.g. chains = struc.group_by_chain['chain_id'] + + Returns: + A new Structure with one atom per chain such that per-atom arrays + such as res_name (i.e. Structure v1 fields) have one element per chain. + """ + # This use of _apply_atom_index_array is safe because the chain/residue/atom + # ordering won't change (essentially applying a chain start mask). + return self._apply_atom_index_array( + self.chain_boundaries, skip_validation=True + ) + + @property + def with_sorted_chains(self) -> Self: + """Returns a new structure with the chains are in reverse spreadsheet style. + + This is the usual order to write chains in an mmCIF: + (A < B < ... < AA < BA < CA < ... < AB < BB < CB ...) + + NB: this method will fail if chains do not conform to this mmCIF naming + convention. + + Only to be used for third party metrics that rely on the chain order. + Elsewhere chains should be identified by name and code should be agnostic to + the order. + """ + sorted_chains = sorted(self.chains, key=mmcif.str_id_to_int_id) + return self.reorder_chains(new_order=sorted_chains) + + @functools.cached_property + def atom_ids(self) -> Sequence[tuple[str, str, None, str]]: + """Gets a list of atom ID tuples from Structure class arrays. + + Returns: + A list of tuples of (chain_id, res_id, insertion_code, atom_name) where + insertion code is always None. There is one element per atom, and the + list is ordered according to the order of atoms in the input arrays. + """ + # Convert to Numpy strings, then to Python strings (dtype=object). + res_ids = self.residues_table.id.astype(str).astype(object) + res_ids = res_ids[ + self.residues_table.index_by_key[self.atoms_table.res_key] + ] + ins_codes = [None] * self.num_atoms + return list( + zip(self.chain_id, res_ids, ins_codes, self.atom_name, strict=True) + ) + + def order_and_drop_atoms_to_match( + self, + other: 'Structure', + *, + allow_missing_atoms: bool = False, + ) -> Self: + """Returns a new structure with atoms ordered & dropped to match another's. + + This performs two operations simultaneously: + * Ordering the atoms in this structure to match the order in the other. + * Dropping atoms in this structure that do not appear in the other. + + Example: + Consider a prediction and ground truth with the following atoms, described + using tuples of `(chain_id, res_id, atom_name)`: + * `prediction: [(A, 1, CA), (A, 1, N), (A, 2, CA), (B, 1, CA)]` + * `ground_truth: [(B, 1, CA), (A, 1, N), (A, 1, CA)]` + Note how the ground truth is missing the `(A, 2, CA)` atom and also + has the atoms in a different order. This method returns a modified + prediction that has reordered atoms and without any atoms not in the ground + truth so that its atom list looks the same as the ground truth atom list. + This means `prediction.coords` and `ground_truth.coords` now have the + same shape and can be compared across the atom dimension. + + Note that matching residues with no atoms and matching chains with no + residues will also be kept. E.g. in the example above, if prediction and + ground truth both had an unresolved residue (A, 3), the output structure + will also have an unresolved residue (A, 3). + + Args: + other: Another `Structure`. This provides the reference ordering that is + used to sort this structure's atom arrays. + allow_missing_atoms: Whether to skip atoms present in `other` but not this + structure and return a structure containing a subset of the atoms in the + other structure. + + Returns: + A new `Structure`, based on this structure, which, if + `allow_missing_atoms` is False, contains exactly the same atoms as in + the `other` structure and which matches the `other` structure in terms + of the order of the atoms in the field arrays. Otherwise, if missing + atoms are allowed then the resulting structure contains a subset of + those atoms in the other structure. + + Raises: + MissingAtomError: If there are atoms present in the other structure that + cannot be found in this structure. + """ + atom_index_map = {atom_id: i for i, atom_id in enumerate(self.atom_ids)} + try: + if allow_missing_atoms: + # Only include atoms that were found in the other structure. + atom_indices = [ + atom_index + for atom_id in other.atom_ids + if (atom_index := atom_index_map.get(atom_id)) is not None + ] + else: + atom_indices = [ + atom_index_map[atom_id] # Hard fail on missing. + for atom_id in other.atom_ids + ] + except KeyError as e: + if len(e.args[0]) == 4: + chain_id, res_id, ins_code, atom_name = e.args[0] + raise MissingAtomError( + f'No atom in this structure (name: {self._name}) matches atom in ' + f'other structure (name: {other.name}) with internal (label) chain ' + f'ID {chain_id}, residue ID {res_id}, insertion code {ins_code} ' + f'and atom name {atom_name}.' + ) from e + else: + raise + + def _iter_residues(struc: Self) -> Iterable[tuple[str, str]]: + yield from zip( + struc.chains_table['id', struc.residues_table.chain_key], + struc.residues_table.id, + strict=True, + ) + + chain_index_map = { + chain_id: i for i, chain_id in enumerate(self._chains.id) + } + chain_indices = [ + chain_index + for chain_id in other.chains_table.id + if (chain_index := chain_index_map.get(chain_id)) is not None + ] + residue_index_map = { + res_id: i for i, res_id in enumerate(_iter_residues(self)) + } + res_indices = [ + residue_index + for res_id in _iter_residues(other) + if (residue_index := residue_index_map.get(res_id)) is not None + ] + + # Reorder all tables. + chains = self._chains.apply_index(np.array(chain_indices, dtype=np.int64)) + residues = self._residues.apply_index(np.array(res_indices, dtype=np.int64)) + atoms = self._atoms.apply_index(np.array(atom_indices, dtype=np.int64)) + + # Get chain keys in the order they appear in the atoms table. + new_chain_boundaries = _get_change_indices(atoms.chain_key) + new_chain_key_order = atoms.chain_key[new_chain_boundaries] + if len(new_chain_key_order) != len(set(new_chain_key_order)): + raise ValueError( + f'Chain keys not contiguous after reordering: {new_chain_key_order}' + ) + + # Get residue keys in the order they appear in the atoms table. + new_res_boundaries = _get_change_indices(atoms.res_key) + new_res_key_order = atoms.res_key[new_res_boundaries] + if len(new_res_key_order) != len(set(new_res_key_order)): + raise ValueError( + f'Residue keys not contiguous after reordering: {new_res_key_order}' + ) + + # If any atoms were deleted, propagate that into the bonds table. + updated_tables = self._cascade_delete( + chains=chains, + residues=residues, + atoms=atoms, + ) + return self.copy_and_update( + chains=chains, + residues=residues, + atoms=updated_tables.atoms, + bonds=updated_tables.bonds, + ) + + def copy_and_update( + self, + *, + name: str | Literal[_UNSET] = _UNSET, + release_date: datetime.date | None | Literal[_UNSET] = _UNSET, + resolution: float | None | Literal[_UNSET] = _UNSET, + structure_method: str | None | Literal[_UNSET] = _UNSET, + bioassembly_data: ( + bioassemblies.BioassemblyData | None | Literal[_UNSET] + ) = _UNSET, + chemical_components_data: ( + struc_chem_comps.ChemicalComponentsData | None | Literal[_UNSET] + ) = _UNSET, + chains: structure_tables.Chains | None | Literal[_UNSET] = _UNSET, + residues: structure_tables.Residues | None | Literal[_UNSET] = _UNSET, + atoms: structure_tables.Atoms | None | Literal[_UNSET] = _UNSET, + bonds: structure_tables.Bonds | None | Literal[_UNSET] = _UNSET, + skip_validation: bool = False, + ) -> Self: + """Performs a shallow copy but with specified fields updated.""" + + def all_unset(fields): + return all(field == _UNSET for field in fields) + + if all_unset((chains, residues, atoms, bonds)): + if all_unset(( + name, + release_date, + resolution, + structure_method, + bioassembly_data, + chemical_components_data, + )): + raise ValueError( + 'Unnecessary call to copy_and_update with no changes. As Structure' + ' and its component tables are immutable, there is no need to copy' + ' it. Any subsequent operation that modifies structure will return' + ' a new object.' + ) + else: + raise ValueError( + 'When only changing global fields, prefer to use the specialised ' + 'copy_and_update_globals.' + ) + + def select(field, default): + return field if field != _UNSET else default + + return Structure( + name=select(name, self.name), + release_date=select(release_date, self.release_date), + resolution=select(resolution, self.resolution), + structure_method=select(structure_method, self.structure_method), + bioassembly_data=select(bioassembly_data, self.bioassembly_data), + chemical_components_data=select( + chemical_components_data, self.chemical_components_data + ), + chains=select(chains, self._chains), + residues=select(residues, self._residues), + atoms=select(atoms, self._atoms), + bonds=select(bonds, self._bonds), + skip_validation=skip_validation, + ) + + def _copy_and_update( + self, skip_validation: bool = False, **changes: Any + ) -> Self: + """Performs a shallow copy but with specified fields updated.""" + if not changes: + raise ValueError( + 'Unnecessary call to copy_and_update with no changes. As Structure ' + 'and its component tables are immutable, there is no need to copy ' + 'it. Any subsequent operation that modifies structure will return a ' + 'new object.' + ) + + if 'author_naming_scheme' in changes: + raise ValueError( + 'Updating using author_naming_scheme is not supported. Update ' + 'auth_asym_id, entity_id, entity_desc fields directly in the chains ' + 'table and auth_seq_id, insertion_code in the residues table.' + ) + + if all(k in GLOBAL_FIELDS for k in changes): + raise ValueError( + 'When only changing global fields, prefer to use the specialised ' + 'copy_and_update_globals.' + ) + + if all(k in V2_FIELDS for k in changes): + constructor_kwargs = {field: self[field] for field in V2_FIELDS} + constructor_kwargs.update(changes) + elif any(k in ('atoms', 'residues', 'chains') for k in changes): + raise ValueError( + 'Cannot specify atoms/chains/residues table changes with non-v2' + f' constructor params: {changes.keys()}' + ) + elif all(k in ATOM_FIELDS for k in changes): + if 'atom_key' not in changes: + raise ValueError( + 'When only changing atom fields, prefer to use the specialised ' + 'copy_and_update_atoms.' + ) + # Only atom fields are being updated, do that directly on the atoms table. + updated_atoms = self._atoms.copy_and_update( + **{ATOM_FIELDS[k]: v for k, v in changes.items()} + ) + constructor_kwargs = { + field: self[field] for field in V2_FIELDS if field != 'atoms' + } + constructor_kwargs['atoms'] = updated_atoms + else: + constructor_kwargs = {field: self[field] for field in _UPDATEABLE_FIELDS} + constructor_kwargs.update(changes) + return Structure(skip_validation=skip_validation, **constructor_kwargs) + + def copy_and_update_coords(self, coords: np.ndarray) -> Self: + """Performs a shallow copy but with coordinates updated.""" + if coords.shape[-2:] != (self.num_atoms, 3): + raise ValueError( + f'{coords.shape=} does not have last dimensions ({self.num_atoms}, 3)' + ) + updated_atoms = self._atoms.copy_and_update_coords(coords) + return self.copy_and_update(atoms=updated_atoms, skip_validation=True) + + def copy_and_update_from_res_arrays( + self, + *, + include_unresolved: bool = False, + **changes: np.ndarray, + ) -> Self: + """Like copy_and_update but changes are arrays of length num_residues. + + These changes are first scattered into arrays of length num_atoms such + that each value is repeated across the residue at that index, then they + are used as the new values of these fields. + + E.g. + * This structure's res_id: 1, 1, 1, 2, 3, 3 (3 res, 6 atoms) + * new atom_b_factor: 7, 8, 9 + * Returned structure's atom_b_factor: 7, 7, 7, 8, 9, 9 + + Args: + include_unresolved: Whether the provided list of new values per residue + include values for all residues, or only those that are resolved. + **changes: kwargs corresponding to atom array fields, e.g. atom_x or + atom_b_factor, but with length num_residues rather than num_atoms. Note + that changing atom_key this way is is not supported. + + Returns: + A new `Structure` with all fields other than those specified as kwargs + shallow copied from this structure. The values of the kwargs are + scattered across the atom arrays and then used to overwrite these + fields for the returned structure. + """ + if not all(c in set(ATOM_FIELDS) - {'atom_key'} for c in changes): + raise ValueError( + 'Changes must only be to atom fields, got changes to' + f' {changes.keys()}' + ) + + num_residues = self.num_residues(count_unresolved=include_unresolved) + + for field_name, new_values in changes.items(): + if len(new_values) != num_residues: + raise ValueError( + f'{field_name} array of length {len(new_values)} does not match ' + f'{num_residues=} - is include_unresolved set correctly?' + ) + + # We cannot assume that atom_table.res_keys are the relevant indices of the + # residue table. + + # Therefore we need to construct a map from res_key to the new values and + # update the atoms_table with that. + if include_unresolved: + target_keys = self.residues_table.key + else: + target_keys = self.present_residues.key + + new_atom_columns = {} + for field_name, new_values in changes.items(): + value_by_key = dict(zip(target_keys, new_values, strict=True)) + # pylint: disable=cell-var-from-loop + new_atom_columns[field_name] = np.vectorize(lambda x: value_by_key[x])( + self.atoms_table.res_key + ) + # pylint: enable=cell-var-from-loop + + return self.copy_and_update_atoms(**new_atom_columns) + + def copy_and_update_globals( + self, + *, + name: str | Literal[_UNSET] = _UNSET, + release_date: datetime.date | Literal[_UNSET] | None = _UNSET, + resolution: float | Literal[_UNSET] | None = _UNSET, + structure_method: str | Literal[_UNSET] | None = _UNSET, + bioassembly_data: ( + bioassemblies.BioassemblyData | Literal[_UNSET] | None + ) = _UNSET, + chemical_components_data: ( + struc_chem_comps.ChemicalComponentsData | Literal[_UNSET] | None + ) = _UNSET, + ) -> Self: + """Returns a shallow copy with the global columns updated.""" + + def select(field, default): + return field if field != _UNSET else default + + name = select(name, self.name) + release_date = select(release_date, self.release_date) + resolution = select(resolution, self.resolution) + structure_method = select(structure_method, self.structure_method) + bioassembly_data = select(bioassembly_data, self.bioassembly_data) + chem_data = select(chemical_components_data, self.chemical_components_data) + + return Structure( + name=name, + release_date=release_date, + resolution=resolution, + structure_method=structure_method, + bioassembly_data=bioassembly_data, + chemical_components_data=chem_data, + atoms=self._atoms, + residues=self._residues, + chains=self._chains, + bonds=self._bonds, + ) + + def copy_and_update_atoms( + self, + *, + atom_name: np.ndarray | None = None, + atom_element: np.ndarray | None = None, + atom_x: np.ndarray | None = None, + atom_y: np.ndarray | None = None, + atom_z: np.ndarray | None = None, + atom_b_factor: np.ndarray | None = None, + atom_occupancy: np.ndarray | None = None, + ) -> Self: + """Returns a shallow copy with the atoms table updated.""" + new_atoms = structure_tables.Atoms( + key=self._atoms.key, + res_key=self._atoms.res_key, + chain_key=self._atoms.chain_key, + name=atom_name if atom_name is not None else self.atom_name, + element=atom_element if atom_element is not None else self.atom_element, + x=atom_x if atom_x is not None else self.atom_x, + y=atom_y if atom_y is not None else self.atom_y, + z=atom_z if atom_z is not None else self.atom_z, + b_factor=( + atom_b_factor if atom_b_factor is not None else self.atom_b_factor + ), + occupancy=( + atom_occupancy + if atom_occupancy is not None + else self.atom_occupancy + ), + ) + return self.copy_and_update(atoms=new_atoms) + + def copy_and_update_residues( + self, + *, + res_id: np.ndarray | None = None, + res_name: np.ndarray | None = None, + res_auth_seq_id: np.ndarray | None = None, + res_insertion_code: np.ndarray | None = None, + ) -> Self: + """Returns a shallow copy with the residues table updated.""" + new_residues = structure_tables.Residues( + key=self._residues.key, + chain_key=self._residues.chain_key, + id=res_id if res_id is not None else self._residues.id, + name=res_name if res_name is not None else self._residues.name, + auth_seq_id=res_auth_seq_id + if res_auth_seq_id is not None + else self._residues.auth_seq_id, + insertion_code=res_insertion_code + if res_insertion_code is not None + else self._residues.insertion_code, + ) + return self.copy_and_update(residues=new_residues) + + def _cascade_delete( + self, + *, + chains: structure_tables.Chains | None = None, + residues: structure_tables.Residues | None = None, + atoms: structure_tables.Atoms | None = None, + bonds: structure_tables.Bonds | None = None, + ) -> StructureTables: + """Performs a cascade delete operation on the structure's tables. + + Cascade delete ensures all the tables are consistent after any table fields + are being updated by cascading any deletions down the hierarchy of tables: + chains > residues > atoms > bonds. + + E.g.: if a row from residues table is removed then all the atoms in that + residue will also be removed from the atoms table. In turn this cascades + also to the bond table, by removing any bond row which involves any of those + removed atoms. However the chains table will not be modified, even if + that was the only residue in its chain, because the chains table is above + the residues table in the hierarchy. + + Args: + chains: An optional new chains table. + residues: An optional new residues table. + atoms: An optional new atoms table. + bonds: An optional new bonds table. + + Returns: + A StructureTables object with the updated tables. + """ + if chains_unchanged := chains is None: + chains = self._chains + if residues_unchanged := residues is None: + residues = self._residues + if atoms_unchanged := atoms is None: + atoms = self._atoms + if bonds is None: + bonds = self._bonds + + if not chains_unchanged: + residues_mask = membership.isin(residues.chain_key, set(chains.key)) # pylint:disable=attribute-error + if not np.all(residues_mask): # Only apply if this is not a no-op. + residues = residues[residues_mask] + residues_unchanged = False + if not residues_unchanged: + atoms_mask = membership.isin(atoms.res_key, set(residues.key)) # pylint:disable=attribute-error + if not np.all(atoms_mask): # Only apply if this is not a no-op. + atoms = atoms[atoms_mask] + atoms_unchanged = False + if not atoms_unchanged: + bonds = bonds.restrict_to_atoms(atoms.key) + return StructureTables( + chains=chains, residues=residues, atoms=atoms, bonds=bonds + ) + + def filter( + self, + mask: np.ndarray | None = None, + *, + apply_per_element: bool = False, + invert: bool = False, + cascade_delete: CascadeDelete = CascadeDelete.CHAINS, + **predicate_by_field_name: table.FilterPredicate, + ) -> Self: + """Filters the structure by field values and returns a new structure. + + Predicates are specified as keyword arguments, with names following the + pattern: _, where table_name := (chain|res|atom). + For instance the auth_seq_id column in the residues table can be filtered + by passing `res_auth_seq_id=pred_value`. The full list of valid options + are defined in the `col_by_field_name` fields on the different Table + dataclasses. + + Predicate values can be either: + 1. A constant value, e.g. 'CA'. In this case then only rows that match + this value for the given field are retained. + 2. A (non-string) iterable e.g. ('A', 'B'). In this + case then rows are retained if they match any of the provided values for + the given field. + 3. A boolean function e.g. lambda b_fac: b_fac < 100.0. + In this case then only rows that evaluate to True are retained. By + default this function's parameter is expected to be an array, unless + apply_per_element=True. + + Example usage: + # Filter to backbone atoms in residues up to 100 in chain B. + filtered_struc = struc.filter( + chain_id='B', + atom_name=('N', 'CA', 'C'), + res_id=lambda res_id: res_id < 100) + + Example usage where predicate must be applied per-element: + # Filter to residues with IDs in either [1, 100) or [300, 400). + ranges = ((1, 100), (300, 400)) + filtered_struc = struc.filter( + res_id=lambda i: np.any([start <= i < end for start, end in ranges]), + apply_per_element=True) + + Example usage of providing a raw mask: + filtered_struc = struc.filter(struc.atom_b_factor < 10.0) + + Args: + mask: An optional boolean NumPy array with length equal to num_atoms. If + provided then this will be combined with the other predicates so that an + atom is included if it is masked-in *and* matches all the predicates. + apply_per_element: Whether apply predicates to each element individually, + or to pass the whole column array to the predicate. + invert: Whether to remove, rather than retain, the entities which match + the specified predicates. + cascade_delete: Whether to remove residues and chains which are left + unresolved in a cascade. filter operates on the atoms table, removing + atoms which match the predicate. If all atoms in a residue are removed, + the residue is "unresolved". The value of this argument then determines + whether such residues and their parent chains should be deleted. FULL + implies that all unresolved residues should be deleted, and any chains + which are left with no resolved residues should be deleted. CHAINS is + the default behaviour - only chains with no resolved residues, and their + child residues are deleted. Unresolved residues in partially resolved + chains remain. NONE implies that no unresolved residues or chains should + be deleted. + **predicate_by_field_name: A mapping from field name to a predicate. + Filtered columns must be 1D arrays. If multiple fields are provided as + keyword arguments then each predicate is applied and the results are + combined using a boolean AND operation, so an atom is only retained if + it passes all predicates. + + Returns: + A new structure representing a filtered version of the current structure. + + Raises: + ValueError: If mask is provided and is not a bool array with shape + (num_atoms,). + """ + chain_predicates, res_predicates, atom_predicates = ( + _unpack_filter_predicates(predicate_by_field_name) + ) + # Get boolean masks for each table. These are None if none of the filter + # parameters affect the table in question. + chain_mask = self._chains.make_filter_mask( + **chain_predicates, apply_per_element=apply_per_element + ) + res_mask = self._residues.make_filter_mask( + **res_predicates, apply_per_element=apply_per_element + ) + atom_mask = self._atoms.make_filter_mask( + mask, **atom_predicates, apply_per_element=apply_per_element + ) + if atom_mask is None: + atom_mask = np.ones((self._atoms.size,), dtype=bool) + + # Remove atoms that belong to filtered out chains. + if chain_mask is not None: + atom_chain_mask = membership.isin( + self._atoms.chain_key, set(self._chains.key[chain_mask]) + ) + np.logical_and(atom_mask, atom_chain_mask, out=atom_mask) + + # Remove atoms that belong to filtered out residues. + if res_mask is not None: + atom_res_mask = membership.isin( + self._atoms.res_key, set(self._residues.key[res_mask]) + ) + np.logical_and(atom_mask, atom_res_mask, out=atom_mask) + + final_atom_mask = ~atom_mask if invert else atom_mask + + if cascade_delete == CascadeDelete.NONE and np.all(final_atom_mask): + return self # Shortcut: The filter is a no-op, so just return itself. + + filtered_atoms = typing.cast( + structure_tables.Atoms, self._atoms[final_atom_mask] + ) + + match cascade_delete: + case CascadeDelete.FULL: + nonempty_residues_mask = np.isin( + self._residues.key, filtered_atoms.res_key + ) + filtered_residues = self._residues[nonempty_residues_mask] + nonempty_chain_mask = np.isin( + self._chains.key, filtered_atoms.chain_key + ) + filtered_chains = self._chains[nonempty_chain_mask] + updated_tables = self._cascade_delete( + chains=filtered_chains, + residues=filtered_residues, + atoms=filtered_atoms, + ) + case CascadeDelete.CHAINS: + # To match v1 behavior we remove chains that have no atoms remaining, + # and we remove residues in those chains. + # NB we do not remove empty residues. + nonempty_chain_mask = membership.isin( + self._chains.key, set(filtered_atoms.chain_key) + ) + filtered_chains = self._chains[nonempty_chain_mask] + updated_tables = self._cascade_delete( + chains=filtered_chains, atoms=filtered_atoms + ) + case CascadeDelete.NONE: + updated_tables = self._cascade_delete(atoms=filtered_atoms) + case _: + raise ValueError(f'Unknown cascade_delete behaviour: {cascade_delete}') + return self.copy_and_update( + chains=updated_tables.chains, + residues=updated_tables.residues, + atoms=updated_tables.atoms, + bonds=updated_tables.bonds, + skip_validation=True, + ) + + def filter_out(self, *args, **kwargs) -> Self: + """Returns a new structure with the specified elements removed.""" + return self.filter(*args, invert=True, **kwargs) + + def filter_to_entity_type( + self, + *, + protein: bool = False, + rna: bool = False, + dna: bool = False, + dna_rna_hybrid: bool = False, + ligand: bool = False, + water: bool = False, + ) -> Self: + """Filters the structure to only include the selected entity types. + + This convenience method abstracts away the specifics of mmCIF entity + type names which, especially for ligands, are non-trivial. + + Args: + protein: Whether to include protein (polypeptide(L)) chains. + rna: Whether to include RNA chains. + dna: Whether to include DNA chains. + dna_rna_hybrid: Whether to include DNA RNA hybrid chains. + ligand: Whether to include ligand (i.e. not polymer) chains. + water: Whether to include water chains. + + Returns: + The filtered structure. + """ + include_types = [] + if protein: + include_types.append(mmcif_names.PROTEIN_CHAIN) + if rna: + include_types.append(mmcif_names.RNA_CHAIN) + if dna: + include_types.append(mmcif_names.DNA_CHAIN) + if dna_rna_hybrid: + include_types.append(mmcif_names.DNA_RNA_HYBRID_CHAIN) + if ligand: + include_types.extend(mmcif_names.LIGAND_CHAIN_TYPES) + if water: + include_types.append(mmcif_names.WATER) + return self.filter(chain_type=include_types) + + def get_stoichiometry( + self, *, fix_non_standard_polymer_res: bool = False + ) -> Sequence[int]: + """Returns the structure's stoichiometry using chain_res_name_sequence. + + Note that everything is considered (protein, RNA, DNA, ligands) except for + water molecules. If you are interested only in a certain type of entities, + filter them out before calling this method. + + Args: + fix_non_standard_polymer_res: If True, maps non standard residues in + protein / RNA / DNA chains to standard residues (e.g. MSE -> MET) or UNK + / N if a match is not found. + + Returns: + A list of integers, one for each unique chain in the structure, + determining the number of that chain appearing in the structure. The + numbers are sorted highest to lowest. E.g. for an A3B2 protein this method + will return [3, 2]. + """ + filtered = self.filter_to_entity_type( + protein=True, + rna=True, + dna=True, + dna_rna_hybrid=True, + ligand=True, + water=False, + ) + seqs = filtered.chain_res_name_sequence( + include_missing_residues=True, + fix_non_standard_polymer_res=fix_non_standard_polymer_res, + ) + + unique_seq_counts = collections.Counter(seqs.values()) + return sorted(unique_seq_counts.values(), reverse=True) + + def without_hydrogen(self) -> Self: + """Returns the structure without hydrogen atoms.""" + return self.filter( + np.logical_and(self._atoms.element != 'H', self._atoms.element != 'D') + ) + + def without_terminal_oxygens(self) -> Self: + """Returns the structure without terminal oxygen atoms.""" + terminal_oxygen_filter = np.zeros(self.num_atoms, dtype=bool) + for chain_type, atom_name in mmcif_names.TERMINAL_OXYGENS.items(): + chain_keys = self._chains.key[self._chains.type == chain_type] + chain_atom_filter = np.logical_and( + self._atoms.name == atom_name, + np.isin(self._atoms.chain_key, chain_keys), + ) + np.logical_or( + terminal_oxygen_filter, chain_atom_filter, out=terminal_oxygen_filter + ) + return self.filter_out(terminal_oxygen_filter) + + def reset_author_naming_scheme(self) -> Self: + """Remove author chain/residue ids, entity info and use internal ids.""" + new_chains = structure_tables.Chains( + key=self._chains.key, + id=self._chains.id, + type=self._chains.type, + auth_asym_id=self._chains.id, + entity_id=np.arange(1, self.num_chains + 1).astype(str).astype(object), + entity_desc=np.full(self.num_chains, '.', dtype=object), + ) + new_residues = structure_tables.Residues( + key=self._residues.key, + chain_key=self._residues.chain_key, + id=self._residues.id, + name=self._residues.name, + auth_seq_id=self._residues.id.astype(str).astype(object), + insertion_code=np.full( + self.num_residues(count_unresolved=True), '?', dtype=object + ), + ) + return self.copy_and_update( + chains=new_chains, residues=new_residues, skip_validation=True + ) + + def filter_residues(self, res_mask: np.ndarray) -> Self: + """Filter resolved residues using a boolean mask.""" + required_shape = (self.num_residues(count_unresolved=False),) + if res_mask.shape != required_shape: + raise ValueError( + f'res_mask must have shape {required_shape}. Got: {res_mask.shape}.' + ) + if res_mask.dtype != bool: + raise ValueError(f'res_mask must have dtype bool. Got: {res_mask.dtype}.') + + filtered_residues = self.present_residues.filter(res_mask) + atom_mask = np.isin(self._atoms.res_key, filtered_residues.key) + return self.filter(atom_mask) + + def filter_coords( + self, coord_predicate: Callable[[np.ndarray], bool] + ) -> Self: + """Filter a structure's atoms by a function of their coordinates. + + Args: + coord_predicate: A boolean function of coordinate vectors (shape (3,)). + + Returns: + A Structure filtered so that only atoms with coords passing the predicate + function are present. + + Raises: + ValueError: If the coords are not shaped (num_atom, 3). + """ + coords = self.coords + if coords.ndim != 2 or coords.shape[-1] != 3: + raise ValueError( + f'coords should have shape (num_atom, 3). Got {coords.shape}.' + ) + mask = np.vectorize(coord_predicate, signature='(n)->()')(coords) + # This use of _apply_atom_index_array is safe because a boolean mask is + # used, which means the chain/residue/atom ordering will stay unchanged. + return self._apply_atom_index_array(mask, skip_validation=True) + + def filter_polymers_to_single_atom_per_res( + self, + representative_atom_by_chain_type: Mapping[ + str, str + ] = mmcif_names.RESIDUE_REPRESENTATIVE_ATOMS, + ) -> Self: + """Filter to one representative atom per polymer residue, ligands unchanged. + + Args: + representative_atom_by_chain_type: Chain type str to atom name, only atoms + with this name will be kept for this chain type. Chains types from the + structure not found in this mapping will keep all their atoms. + + Returns: + A Structure filtered so that per chain types, only specified atoms are + present. + """ + polymer_chain_keys = self._chains.key[ + string_array.isin( + self._chains.type, set(representative_atom_by_chain_type) + ) + ] + polymer_atoms_mask = np.isin(self._atoms.chain_key, polymer_chain_keys) + + wanted_atom_by_chain_key = { + chain_key: representative_atom_by_chain_type.get(chain_type, None) + for chain_key, chain_type in zip(self._chains.key, self._chains.type) + } + wanted_atoms = string_array.remap( + self._atoms.chain_key.astype(object), mapping=wanted_atom_by_chain_key + ) + + representative_polymer_atoms_mask = polymer_atoms_mask & ( + wanted_atoms == self._atoms.name + ) + + return self.filter(representative_polymer_atoms_mask | ~polymer_atoms_mask) + + def drop_non_standard_protein_atoms(self, *, drop_oxt: bool = True) -> Self: + """Drops non-standard atom names from protein chains. + + Args: + drop_oxt: If True, also drop terminal oxygens (OXT). + + Returns: + A new Structure object where the protein chains have been filtered to + only contain atoms with names listed in `atom_types` + (including OXT unless `drop_oxt` is `True`). Non-protein chains are + unaltered. + """ + allowed_names = set(atom_types.ATOM37) + if drop_oxt: + allowed_names = {n for n in allowed_names if n != atom_types.OXT} + + return self.filter_out( + chain_type=mmcif_names.PROTEIN_CHAIN, + atom_name=lambda n: string_array.isin(n, allowed_names, invert=True), + ) + + def drop_non_standard_atoms( + self, + *, + ccd: chemical_components.Ccd, + drop_unk: bool, + drop_non_ccd: bool, + drop_terminal_oxygens: bool = False, + ) -> Self: + """Drops atoms that are not in the CCD for the given residue type.""" + + # We don't remove any atoms in UNL, as it has no standard atoms. + def _keep(atom_index: int) -> bool: + atom_name = self._atoms.name[atom_index] + res_name = self._residues.name[ + self._residues.index_by_key[self._atoms.res_key[atom_index]] + ] + if drop_unk and res_name in residue_names.UNKNOWN_TYPES: + return False + else: + return ( + (not drop_non_ccd and not ccd.get(res_name)) + or atom_name in struc_chem_comps.get_res_atom_names(ccd, res_name) + or res_name == residue_names.UNL + ) + + standard_atom_mask = np.array( + [_keep(atom_i) for atom_i in range(self.num_atoms)], dtype=bool + ) + standard_atoms = self.filter(mask=standard_atom_mask) + if drop_terminal_oxygens: + standard_atoms = standard_atoms.without_terminal_oxygens() + return standard_atoms + + def find_chains_with_unknown_sequence(self) -> Sequence[str]: + """Returns a sequence of chain IDs that contain only unknown residues.""" + unknown_sequences = [] + for start, end in self.iter_chain_ranges(): + try: + unknown_id = residue_names.UNKNOWN_TYPES.index(self.res_name[start]) + if start + 1 == end or np.all( + self.res_name[start + 1 : end] + == residue_names.UNKNOWN_TYPES[unknown_id] + ): + unknown_sequences.append(self.chain_id[start]) + except ValueError: + pass + return unknown_sequences + + def add_bonds( + self, + bonded_atom_pairs: Sequence[ + tuple[tuple[str, int, str], tuple[str, int, str]], + ], + bond_type: str | None = None, + ) -> Self: + """Returns a structure with new bonds added. + + Args: + bonded_atom_pairs: A sequence of pairs of atoms, with one pair per bond. + Each element of the pair is a tuple of (chain_id, res_id, atom_name), + matching values from the respective fields of this structure. The first + element is the start atom, and the second atom is the end atom of the + bond. + bond_type: This type will be used for all bonds in the structure, where + type follows PDB scheme, e.g. unknown (?), hydrog, metalc, covale, + disulf. + + Returns: + A copy of this structure with the new bonds added. If this structure has + bonds already then the new bonds are concatenated onto the end of the + old bonds. NB: bonds are not deduplicated. + """ + atom_key_lookup: dict[tuple[str, str, None, str], int] = dict( + zip(self.atom_ids, self._atoms.key, strict=True) + ) + + # iter_atoms returns a 4-tuple (chain_id, res_id, ins_code, atom_name) but + # the insertion code is always None. It also uses string residue IDs. + def _to_internal_res_id( + bonded_atom_id: tuple[str, int, str], + ) -> tuple[str, str, None, str]: + return bonded_atom_id[0], str(bonded_atom_id[1]), None, bonded_atom_id[2] + + from_atom_key = [] + dest_atom_key = [] + for from_atom, dest_atom in bonded_atom_pairs: + from_atom_key.append(atom_key_lookup[_to_internal_res_id(from_atom)]) + dest_atom_key.append(atom_key_lookup[_to_internal_res_id(dest_atom)]) + num_bonds = len(bonded_atom_pairs) + bonds_key = np.arange(num_bonds, dtype=np.int64) + from_atom_key = np.array(from_atom_key, dtype=np.int64) + dest_atom_key = np.array(dest_atom_key, dtype=np.int64) + all_unk_col = np.array(['?'] * num_bonds, dtype=object) + if bond_type is None: + bond_type_col = all_unk_col + else: + bond_type_col = np.full((num_bonds,), bond_type, dtype=object) + + max_key = -1 if not self._bonds.size else np.max(self._bonds.key) + new_bonds = structure_tables.Bonds( + key=np.concatenate([self._bonds.key, bonds_key + max_key + 1]), + from_atom_key=np.concatenate( + [self._bonds.from_atom_key, from_atom_key] + ), + dest_atom_key=np.concatenate( + [self._bonds.dest_atom_key, dest_atom_key] + ), + type=np.concatenate([self._bonds.type, bond_type_col]), + role=np.concatenate([self._bonds.role, all_unk_col]), + ) + return self.copy_and_update(bonds=new_bonds) + + @property + def coords(self) -> np.ndarray: + """A [..., num_atom, 3] shaped array of atom coordinates.""" + return np.stack([self._atoms.x, self._atoms.y, self._atoms.z], axis=-1) + + def chain_single_letter_sequence( + self, include_missing_residues: bool = True + ) -> Mapping[str, str]: + """Returns a mapping from chain ID to a single letter residue sequence. + + Args: + include_missing_residues: Whether to include residues that have no atoms. + """ + res_table = ( + self._residues if include_missing_residues else self.present_residues + ) + residue_chain_boundaries = _get_change_indices(res_table.chain_key) + boundaries = self._iter_residue_ranges( + residue_chain_boundaries, + count_unresolved=include_missing_residues, + ) + chain_keys = res_table.chain_key[residue_chain_boundaries] + chain_ids = self._chains.apply_array_to_column('id', chain_keys) + chain_types = self._chains.apply_array_to_column('type', chain_keys) + chain_seqs = {} + for idx, (start, end) in enumerate(boundaries): + chain_id = chain_ids[idx] + chain_type = chain_types[idx] + chain_res = res_table.name[start:end] + if chain_type in mmcif_names.PEPTIDE_CHAIN_TYPES: + unknown_default = 'X' + elif chain_type in mmcif_names.NUCLEIC_ACID_CHAIN_TYPES: + unknown_default = 'N' + else: + chain_seqs[chain_id] = 'X' * chain_res.size + continue + + chain_res = string_array.remap( + chain_res, + mapping=residue_names.CCD_NAME_TO_ONE_LETTER, + inplace=False, + default_value=unknown_default, + ) + chain_seqs[chain_id] = ''.join(chain_res.tolist()) + + return chain_seqs + + def polymer_auth_asym_id_to_label_asym_id( + self, + *, + protein: bool = True, + rna: bool = True, + dna: bool = True, + other: bool = True, + ) -> Mapping[str, str]: + """Mapping from author chain ID to internal chain ID, polymers only. + + This mapping is well defined only for polymers (protein, DNA, RNA), but not + for ligands or water. + + E.g. if a structure had the following internal chain IDs (label_asym_id): + A (protein), B (DNA), C (ligand bound to A), D (ligand bound to A), + E (ligand bound to B). + + Such structure would have this internal chain ID (label_asym_id) -> author + chain ID (auth_asym_id) mapping: + A -> A, B -> B, C -> A, D -> A, E -> B + + This is a bijection only for polymers (A, B), but not for ligands. + + Args: + protein: Whether to include protein (polypeptide(L)) chains. + rna: Whether to include RNA chains. + dna: Whether to include DNA chains. + other: Whether to include other polymer chains, e.g. RNA/DNA hybrid or + polypeptide(D). Note that include_other=True must be set in from_mmcif. + + Returns: + A mapping from author chain ID to the internal (label) chain ID for the + given polymer types in the Structure, ligands/water are ignored. + + Raises: + ValueError: If the mapping from internal chain IDs to author chain IDs is + not a bijection for polymer chains. + """ + allowed_types = set() + if protein: + allowed_types.add(mmcif_names.PROTEIN_CHAIN) + if rna: + allowed_types.add(mmcif_names.RNA_CHAIN) + if dna: + allowed_types.add(mmcif_names.DNA_CHAIN) + if other: + non_standard_chain_types = ( + mmcif_names.POLYMER_CHAIN_TYPES + - mmcif_names.STANDARD_POLYMER_CHAIN_TYPES + ) + allowed_types |= non_standard_chain_types + + auth_asym_id_to_label_asym_id = {} + for chain in self.iter_chains(): + if chain['chain_type'] not in allowed_types: + continue + label_asym_id = chain['chain_id'] + auth_asym_id = chain['chain_auth_asym_id'] + # The mapping from author chain id to label chain id is only one-to-one if + # we restrict our attention to polymers. But check nevertheless. + if auth_asym_id in auth_asym_id_to_label_asym_id: + raise ValueError( + f'Author chain ID "{auth_asym_id}" does not have a unique mapping ' + f'to internal chain ID "{label_asym_id}", it is already mapped to ' + f'"{auth_asym_id_to_label_asym_id[auth_asym_id]}".' + ) + auth_asym_id_to_label_asym_id[auth_asym_id] = label_asym_id + + return auth_asym_id_to_label_asym_id + + def polymer_author_chain_single_letter_sequence( + self, + *, + include_missing_residues: bool = True, + protein: bool = True, + rna: bool = True, + dna: bool = True, + other: bool = True, + ) -> Mapping[str, str]: + """Mapping from author chain ID to single letter aa sequence, polymers only. + + This mapping is well defined only for polymers (protein, DNA, RNA), but not + for ligands or water. + + Args: + include_missing_residues: If True then all residues will be returned for + each polymer chain present in the structure. This uses the all_residues + field and will include residues missing due to filtering operations as + well as e.g. unresolved residues specified in an mmCIF header. + protein: Whether to include protein (polypeptide(L)) chains. + rna: Whether to include RNA chains. + dna: Whether to include DNA chains. + other: Whether to include other polymer chains, e.g. RNA/DNA hybrid or + polypeptide(D). Note that include_other=True must be set in from_mmcif. + + Returns: + A mapping from (author) chain IDs to their single-letter sequences for all + polymers in the Structure, ligands/water are ignored. + + Raises: + ValueError: If the mapping from internal chain IDs to author chain IDs is + not a bijection for polymer chains. + """ + label_chain_id_to_seq = self.chain_single_letter_sequence( + include_missing_residues=include_missing_residues + ) + auth_to_label = self.polymer_auth_asym_id_to_label_asym_id( + protein=protein, rna=rna, dna=dna, other=other + ) + return { + auth: label_chain_id_to_seq[label] + for auth, label in auth_to_label.items() + } + + def chain_res_name_sequence( + self, + *, + include_missing_residues: bool = True, + fix_non_standard_polymer_res: bool = False, + ) -> Mapping[str, Sequence[str]]: + """A mapping from internal chain ID to a sequence of residue names. + + The residue names are the full residue names rather than single letter + codes. For instance, for proteins these are the 3 letter CCD codes. + + Args: + include_missing_residues: Whether to include residues with no atoms in the + returned sequences. + fix_non_standard_polymer_res: Whether to map non standard residues in + protein / RNA / DNA chains to standard residues (e.g. MSE -> MET) or UNK + / N if a match is not found. + + Returns: + A mapping from (internal) chain IDs to a sequence of residue names. + """ + res_table = ( + self._residues if include_missing_residues else self.present_residues + ) + residue_chain_boundaries = _get_change_indices(res_table.chain_key) + boundaries = self._iter_residue_ranges( + residue_chain_boundaries, count_unresolved=include_missing_residues + ) + chain_keys = res_table.chain_key[residue_chain_boundaries] + chain_ids = self._chains.apply_array_to_column('id', chain_keys) + chain_types = self._chains.apply_array_to_column('type', chain_keys) + chain_seqs = {} + for idx, (start, end) in enumerate(boundaries): + chain_id = chain_ids[idx] + chain_type = chain_types[idx] + chain_res = res_table.name[start:end] + if ( + fix_non_standard_polymer_res + and chain_type in mmcif_names.POLYMER_CHAIN_TYPES + ): + chain_seqs[chain_id] = tuple( + fix_non_standard_polymer_residues( + res_names=chain_res, chain_type=chain_type + ) + ) + else: + chain_seqs[chain_id] = tuple(chain_res) + + return chain_seqs + + def fix_non_standard_polymer_res( + self, + res_mapper: Callable[ + [np.ndarray, str], np.ndarray + ] = fix_non_standard_polymer_residues, + ) -> Self: + """Replaces non-standard polymer residues with standard alternatives or UNK. + + e.g. maps 'ACE' -> 'UNK', 'MSE' -> 'MET'. + + NB: Only fixes the residue names, but does not fix the atom names. + E.g., 'MSE' will be renamed to 'MET' but its 'SE' atom will not be renamed + to 'S'. Fixing MSE should be done during conversion from mmcif with the + `fix_mse_residues` flag. + + Args: + res_mapper: An optional function that accepts a numpy array of residue + names and chain_type, and returns an array with fixed res_names. This + defaults to fix_non_standard_polymer_residues. + + Returns: + A Structure containing only standard residue types (or 'UNK') in its + polymer chains. + """ + fixed_res_name = self._residues.name.copy() + chain_change_indices = _get_change_indices(self._residues.chain_key) + for start, end in self._iter_atom_ranges(chain_change_indices): + chain_key = self._residues.chain_key[start] + chain_type = self._chains.type[self._chains.index_by_key[chain_key]] + if chain_type not in mmcif_names.POLYMER_CHAIN_TYPES: + continue # We don't need to change anything for non-polymers. + fixed_res_name[start:end] = res_mapper( + fixed_res_name[start:end], chain_type + ) + fixed_residues = self._residues.copy_and_update(name=fixed_res_name) + return self.copy_and_update(residues=fixed_residues, skip_validation=True) + + @property + def slice_leading_dims(self) -> '_LeadingDimSlice': + """Used to create a new Structure by slicing into the leading dimensions. + + Example usage 1: + + ``` + final_state = multi_state_struc.slice_leading_dims[-1] + ``` + + Example usage 2: + + ``` + # Structure has leading batch and time dimensions. + # Get final 3 time frames from first two batch elements. + sliced_strucs = batched_trajectories.slice_leading_dims[:2, -3:] + ``` + """ + return _LeadingDimSlice(self) + + def unstack(self, axis: int = 0) -> Sequence[Self]: + """Unstacks a multi-model structure into a list of Structures. + + This method is the inverse of `stack`. + + Example usage: + ``` + strucs = multi_dim_struc.unstack(axis=0) + ``` + + Args: + axis: The axis to unstack over. The structures in the returned list won't + have this axis in their coordinate of b-factor fields. + + Returns: + A list of `Structure`s with length equal to the size of the specified + axis in the coorinate field arrays. + + Raises: + IndexError: If axis does not refer to one of the leading dimensions of + `self.atoms_table.size`. + """ + ndim = self._atoms.ndim + if not (-ndim <= axis < ndim): + raise IndexError( + f'{axis=} is out of range for atom coordinate fields with {ndim=}.' + ) + elif axis < 0: + axis += ndim + if axis == ndim - 1: + raise IndexError( + 'axis must refer to one of the leading dimensions, not the final ' + f'dimension. The atom fields have {ndim=} and {axis=} was specified.' + ) + unstacked = [] + leading_dim_slice = self.slice_leading_dims # Compute once here. + for i in range(self._atoms.shape[axis]): + slice_i = (slice(None),) * axis + (i,) + unstacked.append(leading_dim_slice[slice_i]) + return unstacked + + def split_by_chain(self) -> Sequence[Self]: + """Splits a Structure into single-chain Structures, one for each chain. + + The obtained structures can be merged back together into the original + structure using the `concat` function. + + Returns: + A list of `Structure`s, one for each chain. The order is the same as the + chain order in the original Structure. + """ + return [self.filter(chain_id=chain_id) for chain_id in self.chains] + + def transform_states_to_chains(self) -> Self: + """Transforms states to chains. + + A multi-state protein structure will be transformed to a multi-chain + single-state protein structure. Useful for visualising multiples states to + examine diversity. This structure's coordinate fields must have shape + `(num_states, num_atoms)`. + + Returns: + A new `Structure`, based on this structure, but with the multiple states + now represented as `num_states * num_chains` chains in a + single-state protein. + + Raises: + ValueError: If this structure's array fields don't have shape + `(num_states, num_atoms)`. + """ + if self._atoms.ndim != 2: + raise ValueError( + 'Coordinate field tensor must have 2 dimensions: ' + f'(num_states, num_atoms), got {self._atoms.ndim}.' + ) + return concat(self.unstack(axis=0)) + + def merge_chains( + self, + *, + chain_groups: Sequence[Sequence[str]], + chain_group_ids: Sequence[str] | None = None, + chain_group_types: Sequence[str] | None = None, + chain_group_entity_ids: Sequence[str] | None = None, + ) -> Self: + """Merges chains in each group into a single chain. + + If a Structure has chains A, B, C, D, E, and + `merge_chains([[A, C], [B, D], [E]])` is called, the new Structure will have + 3 chains A, B, C, the first being concatenation of A+C, the second B+D, the + third just the original chain E. + + Args: + chain_groups: Each group defines what chains should be merged into a + single chain. The output structure will therefore have len(chain_groups) + chains. Residue IDs (label and author) are renumbered to preserve + uniqueness within new chains. Order of chain groups and within each + group matters. + chain_group_ids: Optional sequence of new chain IDs for each group. If not + given, the new internal chain IDs (label_asym_id) are assigned in the + standard mmCIF order (i.e. A, B, ..., Z, AA, BA, CA, ...). Author chain + names (auth_asym_id) are set to be equal to the new internal chain IDs. + chain_group_types: Optional sequence of new chain types for each group. If + not given, only chains with the same type can be merged. + chain_group_entity_ids: Optional sequence of new entity IDs for each + group. If not given, the new internal entity IDs (entity_id) are + assigned in the standard mmCIF order (i.e. 1, 2, 3, ...). Entity + descriptions (entity_desc) are set to '.' for each chain. + + Returns: + A new `Structure` with chains merged together into a single chain within + each chain group. + + Raises: + ValueError: If chain_group_ids or chain_group_types are given but don't + match the length of chain_groups. + ValueError: If the chain IDs in the flattened chain_groups don't match the + chain IDs in the Structure. + ValueError: If chains in any of the groups don't have the same chain type. + """ + if chain_group_ids and len(chain_group_ids) != len(chain_groups): + raise ValueError( + 'chain_group_ids must the same length as chain_groups: ' + f'{len(chain_group_ids)=} != {len(chain_groups)=}' + ) + if chain_group_types and len(chain_group_types) != len(chain_groups): + raise ValueError( + 'chain_group_types must the same length as chain_groups: ' + f'{len(chain_group_types)=} != {len(chain_groups)=}' + ) + if chain_group_entity_ids and len(chain_group_entity_ids) != len( + chain_groups + ): + raise ValueError( + 'chain_group_entity_ids must the same length as chain_groups: ' + f'{len(chain_group_entity_ids)=} != {len(chain_groups)=}' + ) + + flattened = sorted(itertools.chain.from_iterable(chain_groups)) + if flattened != sorted(self.chains): + raise ValueError( + 'IDs in chain groups do not match Structure chain IDs: ' + f'{chain_groups=}, chains={self.chains}' + ) + + new_chain_key_by_chain_id = {} + for new_chain_key, group_chain_ids in enumerate(chain_groups): + for chain_id in group_chain_ids: + new_chain_key_by_chain_id[chain_id] = new_chain_key + + chain_key_remap = {} + new_chain_type_by_chain_key = {} + for old_chain_key, old_chain_id, old_chain_type in zip( + self._chains.key, self._chains.id, self._chains.type + ): + new_chain_key = new_chain_key_by_chain_id[old_chain_id] + chain_key_remap[old_chain_key] = new_chain_key + + if new_chain_key not in new_chain_type_by_chain_key: + new_chain_type_by_chain_key[new_chain_key] = old_chain_type + elif not chain_group_types: + if new_chain_type_by_chain_key[new_chain_key] != old_chain_type: + bad_types = [ + f'{cid}: {self._chains.type[np.where(self._chains.id == cid)][0]}' + for cid in chain_groups[new_chain_key] + ] + raise ValueError( + 'Inconsistent chain types within group:\n' + '\n'.join(bad_types) + ) + + new_chain_key = np.arange(len(chain_groups), dtype=np.int64) + if chain_group_ids: + new_chain_id = np.array(chain_group_ids, dtype=object) + else: + new_chain_id = np.array( + [mmcif.int_id_to_str_id(k) for k in new_chain_key + 1], dtype=object + ) + if chain_group_types: + new_chain_type = np.array(chain_group_types, dtype=object) + else: + new_chain_type = np.array( + [new_chain_type_by_chain_key[k] for k in new_chain_key], dtype=object + ) + if chain_group_entity_ids: + new_chain_entity_id = np.array(chain_group_entity_ids, dtype=object) + else: + new_chain_entity_id = np.char.mod('%d', new_chain_key + 1).astype(object) + new_chains = structure_tables.Chains( + key=new_chain_key, + id=new_chain_id, + type=new_chain_type, + auth_asym_id=new_chain_id, + entity_id=new_chain_entity_id, + entity_desc=np.full(len(chain_groups), fill_value='.', dtype=object), + ) + + # Remap chain keys and sort residues to match the chain table order. + new_residues = self._residues.copy_and_remap(chain_key=chain_key_remap) + new_residues = new_residues.apply_index( + np.argsort(new_residues.chain_key, kind='stable') + ) + # Renumber uniquely residues in each chain. + indices = np.arange(new_residues.chain_key.size, dtype=np.int32) + new_res_ids = (indices + 1) - np.maximum.accumulate( + indices * (new_residues.chain_key != np.roll(new_residues.chain_key, 1)) + ) + new_residues = new_residues.copy_and_update( + id=new_res_ids, + auth_seq_id=np.char.mod('%d', new_res_ids).astype(object), + ) + + # Remap chain keys and sort atoms to match the chain table order. + new_atoms = self._atoms.copy_and_remap(chain_key=chain_key_remap) + new_atoms = new_atoms.apply_index( + np.argsort(new_atoms.chain_key, kind='stable') + ) + + return self.copy_and_update( + chains=new_chains, + residues=new_residues, + atoms=new_atoms, + bonds=self._bonds, + ) + + def to_res_arrays( + self, + *, + include_missing_residues: bool, + atom_order: Mapping[str, int] = atom_types.ATOM37_ORDER, + ) -> ResArrays: + """Returns atom-level information in arrays containing a num_res dimension. + + NB: All residues in the structure will appear in the residue dimension but + atoms will only have a True (1.0) mask value if the residue + atom + combination is defined in `atom_order`. E.g. for the standard ATOM37_ORDER, + atoms are guaranteed to be present only for standard protein residues. + + Args: + include_missing_residues: If True then the res arrays will include rows + for missing residues where all atoms will be masked out. Otherwise these + will simply be skipped. + atom_order: Atom order mapping atom names to their index in the atom + dimension of the returned arrays. Default is atom_order for proteins, + choose atom_types.ATOM29_ORDER for nucleics. + + Returns: + A ResArrays object. + """ + num_res = self.num_residues(count_unresolved=include_missing_residues) + atom_type_num = len(atom_order) + atom_positions = np.zeros((num_res, atom_type_num, 3), dtype=np.float32) + atom_mask = np.zeros((num_res, atom_type_num), dtype=np.float32) + atom_b_factor = np.zeros((num_res, atom_type_num), dtype=np.float32) + atom_occupancy = np.zeros((num_res, atom_type_num), dtype=np.float32) + + all_residues = None if not include_missing_residues else self.all_residues + for i, atom in enumerate_residues(self.iter_atoms(), all_residues): + atom_idx = atom_order.get(atom['atom_name']) + if atom_idx is not None: + atom_positions[i, atom_idx, 0] = atom['atom_x'] + atom_positions[i, atom_idx, 1] = atom['atom_y'] + atom_positions[i, atom_idx, 2] = atom['atom_z'] + atom_mask[i, atom_idx] = 1.0 + atom_b_factor[i, atom_idx] = atom['atom_b_factor'] + atom_occupancy[i, atom_idx] = atom['atom_occupancy'] + + return ResArrays( + atom_positions=atom_positions, + atom_mask=atom_mask, + atom_b_factor=atom_b_factor, + atom_occupancy=atom_occupancy, + ) + + def to_res_atom_lists( + self, *, include_missing_residues: bool + ) -> Sequence[Sequence[Mapping[str, Any]]]: + """Returns list of atom dictionaries grouped by residue. + + If this is a multi-model structure, each atom will store its fields + atom_x, atom_y, atom_z, and atom_b_factor as Numpy arrays of shape of the + leading dimension(s). If this is a single-mode structure, these fields will + just be scalars. + + Args: + include_missing_residues: If True, then the output list will contain an + empty list of atoms for missing residues. Otherwise missing residues + will simply be skipped. + + Returns: + A list of size `num_res`. Each element in the list represents atoms of one + residue. If a residue is present is present, the list will contain an atom + dictionary for every atom present in that residue. If a residue is missing + and `include_missing_residues=True`, the list for that missing residue + will be empty. + """ + num_res = self.num_residues(count_unresolved=include_missing_residues) + residue_atoms = [[] for _ in range(num_res)] + all_residues = None if not include_missing_residues else self.all_residues + + # We could yield directly in this loop but the code would be more complex. + # Let's optimise if memory usage is an issue. + for res_index, atom in enumerate_residues(self.iter_atoms(), all_residues): + residue_atoms[res_index].append(atom) + + return residue_atoms + + def reorder_chains(self, new_order: Sequence[str]) -> Self: + """Reorders tables so that the label_asym_ids are in the given order. + + This method changes the order of the chains, residues, and atoms tables so + that they are all consistent with each other. Moreover, it remaps chain keys + so that they stay monotonically increasing in chains/residues/atoms tables. + + Args: + new_order: The order in which the chain IDs (label_asym_id) should be. + This must be a permutation of the current chain IDs. + + Returns: + A structure with chains reorded. + """ + if len(new_order) != len(self.chains): + raise ValueError( + f'The new number of chains ({len(new_order)}) does not match the ' + f'current number of chains ({len(self.chains)}).' + ) + new_chain_set = set(new_order) + if len(new_chain_set) != len(new_order): + raise ValueError(f'The new order {new_order} contains non-unique IDs.') + if new_chain_set.symmetric_difference(set(self.chains)): + raise ValueError( + f'New chain IDs {new_order} do not match the old {set(self.chains)}' + ) + + if self.chains == tuple(new_order): + return self # Shortcut: the new order is the same as the current one. + + desired_chain_id_pos = {chain_id: i for i, chain_id in enumerate(new_order)} + + current_chain_index_order = np.empty(self.num_chains, dtype=np.int64) + for index, old_chain_id in enumerate(self._chains.id): + current_chain_index_order[index] = desired_chain_id_pos[old_chain_id] + chain_reorder = np.argsort(current_chain_index_order, kind='stable') + chain_key_map = dict( + zip(self._chains.key[chain_reorder], range(self.num_chains)) + ) + chains = self._chains.apply_index(chain_reorder) + chains = chains.copy_and_remap(key=chain_key_map) + + # The stable sort keeps the original residue ordering within each chain. + residues = self._residues.copy_and_remap(chain_key=chain_key_map) + residue_reorder = np.argsort(residues.chain_key, kind='stable') + residues = residues.apply_index(residue_reorder) + + # The stable sort keeps the original atom ordering within each chain. + atoms = self._atoms.copy_and_remap(chain_key=chain_key_map) + atoms_reorder = np.argsort(atoms.chain_key, kind='stable') + atoms = atoms.apply_index(atoms_reorder) + + # Bonds unchanged - each references 2 atom keys, hence ordering not defined. + return self.copy_and_update(chains=chains, residues=residues, atoms=atoms) + + def rename_auth_asym_ids(self, new_id_by_old_id: Mapping[str, str]) -> Self: + """Returns a new structure with renamed author chain IDs (auth_asym_ids). + + Args: + new_id_by_old_id: A mapping from original auth_asym_ids to their new + values. Any auth_asym_ids in this structure that are not in the mapping + will remain unchanged. + + Raises: + ValueError: If any two previously distinct polymer chains do not have + unique names anymore after the rename. + """ + mapped_chains = self._chains.copy_and_remap(auth_asym_id=new_id_by_old_id) + mapped_polymer_ids = mapped_chains.filter( + type=mmcif_names.POLYMER_CHAIN_TYPES + ).auth_asym_id + if len(mapped_polymer_ids) != len(set(mapped_polymer_ids)): + raise ValueError( + 'The new polymer auth_asym_ids are not unique:' + f' {sorted(mapped_polymer_ids)}.' + ) + return self.copy_and_update(chains=mapped_chains, skip_validation=True) + + def rename_chain_ids(self, new_id_by_old_id: Mapping[str, str]) -> Self: + """Returns a new structure with renamed chain IDs (label_asym_ids). + + The chains' auth_asym_ids will be updated to be identical to the chain ID + since there isn't one unambiguous way to maintain the auth_asym_ids after + renaming the chain IDs (depending on whether you view the auth_asym_id as + more strongly associated with a given physical chain, or with a given + chain ID). + + The residues' auth_seq_id will be updated to be identical to the residue ID + since they are strongly tied to the original author chain naming and keeping + them would be misleading. + + Args: + new_id_by_old_id: A mapping from original chain ID to their new values. + Any chain IDs in this structure that are not in this mapping will remain + unchanged. + + Returns: + A new structure with renamed chains (and bioassembly data if it is + present). + + Raises: + ValueError: If any two previously distinct chains do not have unique names + anymore after the rename. + """ + new_chain_id = string_array.remap(self._chains.id, new_id_by_old_id) + if len(new_chain_id) != len(set(new_chain_id)): + raise ValueError(f"New chain names aren't unique: {sorted(new_chain_id)}") + + # Map label_asym_ids in the bioassembly data. + if self._bioassembly_data is None: + new_bioassembly_data = None + else: + new_bioassembly_data = self._bioassembly_data.rename_label_asym_ids( + new_id_by_old_id, present_chains=set(self.present_chains.id) + ) + + # Set author residue IDs to be the string version of internal residue IDs. + new_residues = self._residues.copy_and_update( + auth_seq_id=self._residues.id.astype(str).astype(object) + ) + + new_chains = self._chains.copy_and_update( + id=new_chain_id, auth_asym_id=new_chain_id + ) + + return self.copy_and_update( + bioassembly_data=new_bioassembly_data, + chains=new_chains, + residues=new_residues, + skip_validation=True, + ) + + @functools.cached_property + def chains(self) -> tuple[str, ...]: + """Ordered internal chain IDs (label_asym_id) present in the Structure.""" + return tuple(self._chains.id) + + def rename_res_name( + self, + res_name_map: Mapping[str, str], + fail_if_not_found: bool = True, + ) -> Self: + """Returns a copy of this structure with residues renamed. + + Residue names in chemical components data will also be renamed. + + Args: + res_name_map: A mapping from old residue names to new residue names. Any + residues that are not in this mapping will be left unchanged. + fail_if_not_found: Whether to fail if keys in the res_name_map mapping are + not found in this structure's residues' `name` column. + + Raises: + ValueError: If `fail_if_not_found=True` and a residue name isn't found in + the residues table's `name` field. + """ + res_name_set = set(self._residues.name) + if fail_if_not_found: + for res_name in res_name_map: + if res_name not in res_name_set: + raise ValueError(f'"{res_name}" not found in this structure.') + new_residues = self._residues.copy_and_remap(name=res_name_map) + + if self._chemical_components_data is not None: + chem_comp = { + res_name_map.get(res_name, res_name): data + for res_name, data in self._chemical_components_data.chem_comp.items() + } + new_chem_comp = struc_chem_comps.ChemicalComponentsData(chem_comp) + else: + new_chem_comp = None + + return self.copy_and_update( + residues=new_residues, + chemical_components_data=new_chem_comp, + skip_validation=True, + ) + + def remap_res_id(self, res_id_map: Mapping[str, Mapping[int, int]]) -> Self: + """Returns a copy of this structure with residue IDs remapped. + + Example structure with 2 chains: + Chain A: residues 1, 2, 3; chain B: residues 6, 7, 8 + res_id_map: {'A': {1: 1, 2: 5, 3: 6}, 'B': {6: 1, 7: 2, 8: 8}} + Will result in: + Chain A: residues 1, 5, 6; chain B: residues 1, 2, 8 + + Args: + res_id_map: A mapping from internal chain ID to a mapping from old residue + ID to new residue ID. A mapping must be provided for each residue in + each chain. + + Raises: + KeyError: If residue ID in a given chain is not found in the mapping for + that chain. + ValueError: If residue IDs are not unique in each chain after remapping. + """ + chain_ids = self._chains.apply_array_to_column( + column_name='id', arr=self._residues.chain_key + ) + flat_res_id_map = {} + for chain_id, chain_res_id_map in res_id_map.items(): + flat_res_id_map.update({ + (chain_id, old_res_id): new_res_id + for old_res_id, new_res_id in chain_res_id_map.items() + }) + + try: + new_res_id = string_array.remap_multiple( + (chain_ids, self._residues.id), flat_res_id_map + ) + except KeyError as e: + raise KeyError( + f'Could not find new residue ID for residue {e} in {res_id_map=}' + ) from e + + residue_chain_boundaries = _get_change_indices(self._residues.chain_key) + res_boundaries = self._iter_residue_ranges( + residue_chain_boundaries, count_unresolved=True + ) + for idx, (start, end) in enumerate(res_boundaries): + chain_id = chain_ids[idx] + chain_res_ids = new_res_id[start:end] + if len(chain_res_ids) != len(set(chain_res_ids)): + raise ValueError( + f'New residue IDs not unique in chain {chain_id}: {chain_res_ids}' + ) + + return self.copy_and_update( + residues=self._residues.copy_and_update(id=new_res_id.astype(np.int32)), + skip_validation=True, + ) + + def rename_chains_to_match( + self, + other: 'Structure', + *, + fuzzy_match_non_standard_res: bool = True, + ) -> Self: + """Returns a new structure with renamed chains to match another's. + + Example: + This structure has chains: {'A': 'DEEP', 'B': 'MIND', 'C': 'MIND'} + Other structure has chains: {'X': 'DEEP', 'Z': 'MIND', 'Y': 'MIND'} + + After calling this method, you will get a structure that has chains named: + {'X': 'DEEP', 'Z': 'MIND', Y: 'MIND'} + + Args: + other: Another `Structure`. This provides the reference chain names that + is used to rename this structure's chains. + fuzzy_match_non_standard_res: If True, protein/RNA/DNA chains with the + same one letter sequence will be matched. e.g. "MET-MET-UNK1" will match + "MET-MSE-UNK2", since both will be mapped to "MMX". If False, we require + the full res_names to match. + + Returns: + A new `Structure`, based on this structure, which has chains renamed to + match the other structure. + """ + sequences = self.chain_res_name_sequence( + include_missing_residues=True, + fix_non_standard_polymer_res=fuzzy_match_non_standard_res, + ) + + other_sequences = other.chain_res_name_sequence( + include_missing_residues=True, + fix_non_standard_polymer_res=fuzzy_match_non_standard_res, + ) + + # Check that the sequences are the same. + sequence_counts = collections.Counter(sequences.values()) + other_sequence_counts = collections.Counter(other_sequences.values()) + if other_sequence_counts != sequence_counts: + raise ValueError( + 'The other structure does not have the same sequences\n' + f' other: {other_sequence_counts}\n self: {sequence_counts}' + ) + + new_decoy_id_by_old_id = {} + used_chain_ids = set() + # Sort self keys and take min over other to make matching deterministic. + # The matching is arbitrary but this helps debugging. + for self_chain_id, self_seq in sorted(sequences.items()): + # Find corresponding chains in the other structure. + other_chain_id = min( + k + for k, v in other_sequences.items() + if v == self_seq and k not in used_chain_ids + ) + + new_decoy_id_by_old_id[self_chain_id] = other_chain_id + used_chain_ids.add(other_chain_id) + + return self.rename_chain_ids(new_decoy_id_by_old_id) + + def _apply_bioassembly_transform( + self, transform: bioassemblies.Transform + ) -> Self: + """Applies a bioassembly transform to this structure.""" + base_struc = self.filter(chain_id=transform.chain_ids) + transformed_atoms = base_struc.atoms_table.copy_and_update_coords( + transform.apply_to_coords(base_struc.coords) + ) + transformed_chains = base_struc.chains_table.copy_and_remap( + id=transform.chain_id_rename_map + ) + # Set the transformed author chain ID to match the label chain ID. + transformed_chains = transformed_chains.copy_and_update( + auth_asym_id=transformed_chains.id + ) + return base_struc.copy_and_update( + chains=transformed_chains, + atoms=transformed_atoms, + skip_validation=True, + ) + + def generate_bioassembly(self, assembly_id: str | None = None) -> Self: + """Generates a biological assembly as a new `Structure`. + + When no assembly ID is provided this method produces a default assembly. + If this structure has no `bioassembly_data` then this returns itself + unchanged. Otherwise a default assembly ID is picked with + `BioassemblyData.get_default_assembly_id()`. + + Args: + assembly_id: The assembly ID to generate, or None to generate a default + bioassembly. + + Returns: + A new `Structure`, based on this one, representing the specified + bioassembly. Note that if the bioassembly contains copies of chains + in the original structure then they will be given new unique chain IDs. + + Raises: + ValueError: If this structure's `bioassembly_data` is `None` and + `assembly_id` is not `None`. + """ + if self._bioassembly_data is None: + if assembly_id is None: + return self + else: + raise ValueError( + f'Unset bioassembly_data, cannot generate assembly {assembly_id}' + ) + + if assembly_id is None: + assembly_id = self._bioassembly_data.get_default_assembly_id() + + transformed_strucs = [ + self._apply_bioassembly_transform(transform) + for transform in self._bioassembly_data.get_transforms(assembly_id) + ] + + # We don't need to assign unique chain IDs because the bioassembly + # transform takes care of remapping chain IDs to be unique. + concatenated = concat(transformed_strucs, assign_unique_chain_ids=False) + + # Copy over all scalar fields (e.g. name, release date, etc.) other than + # bioassembly_data because it relates only to the pre-transformed structure. + return concatenated.copy_and_update_globals( + name=self.name, + release_date=self.release_date, + resolution=self.resolution, + structure_method=self.structure_method, + bioassembly_data=None, + chemical_components_data=self.chemical_components_data, + ) + + def _to_mmcif_header(self) -> Mapping[str, Sequence[str]]: + raw_mmcif = collections.defaultdict(list) + raw_mmcif['data_'] = [self._name.replace(' ', '-')] + raw_mmcif['_entry.id'] = [self._name] + + if self._release_date is not None: + date = [datetime.datetime.strftime(self._release_date, '%Y-%m-%d')] + raw_mmcif['_pdbx_audit_revision_history.revision_date'] = date + raw_mmcif['_pdbx_database_status.recvd_initial_deposition_date'] = date + + if self._resolution is not None: + raw_mmcif['_refine.ls_d_res_high'] = ['%.2f' % self._resolution] + + if self._structure_method is not None: + for method in self._structure_method.split(','): + raw_mmcif['_exptl.method'].append(method) + + if self._bioassembly_data is not None: + raw_mmcif.update(self._bioassembly_data.to_mmcif_dict()) + + # Populate chemical components data for all residues of this Structure. + if self._chemical_components_data: + raw_mmcif.update(self._chemical_components_data.to_mmcif_dict()) + + # Add _software table to store version number used to generate mmCIF. + # Only required data items are used (+ _software.version). + raw_mmcif['_software.pdbx_ordinal'] = ['1'] + raw_mmcif['_software.name'] = ['DeepMind Structure Class'] + raw_mmcif['_software.version'] = [self._VERSION] + raw_mmcif['_software.classification'] = ['other'] # Required. + + return raw_mmcif + + def to_mmcif_dict( + self, + *, + coords_decimal_places: int = _COORDS_DECIMAL_PLACES, + ) -> mmcif.Mmcif: + """Returns an Mmcif representing the structure.""" + header = self._to_mmcif_header() + sequence_tables = structure_tables.to_mmcif_sequence_and_entity_tables( + self._chains, self._residues, self._atoms.res_key + ) + atom_and_bond_tables = structure_tables.to_mmcif_atom_site_and_bonds_table( + chains=self._chains, + residues=self._residues, + atoms=self._atoms, + bonds=self._bonds, + coords_decimal_places=coords_decimal_places, + ) + return mmcif.Mmcif({**header, **sequence_tables, **atom_and_bond_tables}) + + def to_mmcif( + self, *, coords_decimal_places: int = _COORDS_DECIMAL_PLACES + ) -> str: + """Returns an mmCIF string representing the structure. + + Args: + coords_decimal_places: The number of decimal places to keep for atom + coordinates, including trailing zeros. + """ + return self.to_mmcif_dict( + coords_decimal_places=coords_decimal_places + ).to_string() + + +class _LeadingDimSlice: + """Helper class for slicing the leading dimensions of a `Structure`. + + Wraps a `Structure` instance and applies a slice operation to the coordinate + fields and other fields that may have leading dimensions (e.g. b_factor). + + Example usage: + t0_struc = multi_state_struc.slice_leading_dims[0] + """ + + def __init__(self, struc: Structure): + self._struc = struc + + def __getitem__(self, *args, **kwargs) -> Structure: + sliced_atom_cols = {} + for col_name in structure_tables.Atoms.multimodel_cols: + if (col := self._struc.atoms_table.get_column(col_name)).ndim > 1: + sliced_col = col.__getitem__(*args, **kwargs) + if ( + not sliced_col.shape + or sliced_col.shape[-1] != self._struc.num_atoms + ): + raise ValueError( + 'Coordinate slice cannot change final (atom) dimension.' + ) + sliced_atom_cols[col_name] = sliced_col + sliced_atoms = self._struc.atoms_table.copy_and_update(**sliced_atom_cols) + return self._struc.copy_and_update(atoms=sliced_atoms, skip_validation=True) + + +def stack(strucs: Sequence[Structure], axis: int = 0) -> Structure: + """Stacks multiple structures into a single multi-model Structure. + + This function is the inverse of `Structure.unstack()`. + + NB: this function assumes that every structure in `strucs` is identical + other than the coordinates and b-factors. Under this assumption we can safely + copy all these identical fields from the first element of strucs w.l.o.g. + However this is not checked in full detail as full comparison is expensive. + Instead this only checks that the `atom_name` field is identical, and that + the coordinates have the same shape. + + Usage example: + ``` + multi_model_struc = structure.stack(strucs, axis=0) + ``` + + Args: + strucs: A sequence of structures, each with the same atoms, but they may + have different coordinates and b-factors. If any b-factors are not None + then they must have the same shape as each of the coordinate fields. + axis: The axis in the returned structure that represents the different + structures in `strucs` and will have size `len(strucs)`. This cannot be + the final dimension as this is reserved for `num_atoms`. + + Returns: + A `Structure` with the same atoms as the structures in `strucs` but with + all of their coordinates stacked into a new leading axis. + + Raises: + ValueError: If `strucs` is empty. + ValueError: If `strucs` do not all have the same `atom_name` field. + """ + if not strucs: + raise ValueError('Need at least one Structure to stack.') + struc_0, *other_strucs = strucs + for i, struc in enumerate(other_strucs, start=1): + # Check that every structure has the same atom name column. + # This check is intended to catch cases where the input structures might + # contain the same atoms, but in different orders. This won't catch every + # such case, e.g. if these are carbon-alpha-only structures, but should + # catch most cases. + if np.any(struc.atoms_table.name != struc_0.atoms_table.name): + raise ValueError( + f'strucs[0] and strucs[{i}] have mismatching atom name columns.' + ) + + stacked_atoms = struc_0.atoms_table.copy_and_update( + x=np.stack([s.atoms_table.x for s in strucs], axis=axis), + y=np.stack([s.atoms_table.y for s in strucs], axis=axis), + z=np.stack([s.atoms_table.z for s in strucs], axis=axis), + b_factor=np.stack([s.atoms_table.b_factor for s in strucs], axis=axis), + occupancy=np.stack([s.atoms_table.occupancy for s in strucs], axis=axis), + ) + return struc_0.copy_and_update(atoms=stacked_atoms, skip_validation=True) + + +def _assign_unique_chain_ids( + strucs: Iterable[Structure], +) -> Sequence[Structure]: + """Creates a sequence of `Structure` objects with unique chain IDs. + + Let e.g. [A, B] denote a structure of two chains A and B, then this function + performs the following kind of renaming operation: + + e.g.: [Z], [C], [B, C] -> [A], [B], [C, D] + + NB: This function uses Structure.rename_chain_ids which will define each + structure's chains.auth_asym_id to be identical to its chains.id columns. + + Args: + strucs: Structures whose chains ids are to be uniquified. + + Returns: + A sequence with the same number of elements as `strucs` but where each + element has had its chains renamed so that they aren't shared with any + other `Structure` in the sequence. + """ + # Start counting at 1 because mmcif.int_id_to_str_id expects integers >= 1. + chain_counter = 1 + strucs_with_new_chain_ids = [] + for struc in strucs: + rename_map = {} + for chain_id in struc.chains: + rename_map[chain_id] = mmcif.int_id_to_str_id(chain_counter) + chain_counter += 1 + renamed = struc.rename_chain_ids(rename_map) + strucs_with_new_chain_ids.append(renamed) + return strucs_with_new_chain_ids + + +def concat( + strucs: Sequence[Structure], + *, + name: str | None = None, + assign_unique_chain_ids: bool = True, +) -> Structure: + """Concatenates structures along the atom dimension. + + NB: By default this function will first assign unique chain IDs to all chains + in `strucs` so that the resulting structure does not contain duplicate chain + IDs. This will also fix entity IDs and author chain IDs. If this is disabled + via `assign_unique_chain_ids=False` the user must ensure that there are no + duplicate chains (label_asym_id). However, duplicate entity IDs and author + chain IDs are allowed as that might be the desired behavior. + + If `assign_unique_chain_ids=True`, note also that the chain_ids may be + overwritten even if they are already unique. + + Let e.g. [A, B] denote a structure of two chains A and B, then this function + performs the following kind of concatenation operation: + + assign_unique_chain_ids=True: + label chain IDS : [Z], [C], [B, C] -> [A, B, C, D] + author chain IDS: [U], [V], [V, C] -> [A, B, C, D] + entity IDs : [1], [1], [3, 3] -> [1, 2, 3, 4] + assign_unique_chain_ids=False: + label chain IDS : [D], [B], [C, A] -> [D, B, C, A] (inputs must be unique) + author chain IDS: [U], [V], [V, A] -> [U, V, V, A] + entity IDs : [1], [1], [3, 3] -> [1, 1, 3, 3] + + NB: This operation loses some information from the elements of `strucs`, + namely the `name`, `resolution`, `release_date` and `bioassembly_data` fields. + + Args: + strucs: The `Structure` instances to concatenate. These should all have the + same number and shape of leading dimensions (i.e. if any are multi-model + structures then they should all have the same number of models). + name: Optional name to give to the concatenated structure. If None, the name + will be concatenation of names of all concatenated structures. + assign_unique_chain_ids: Whether this function will first assign new unique + chain IDs, entity IDs and author chain IDs to every chain in `strucs`. If + `False` then users must ensure chain IDs are already unique, otherwise an + exception is raised. See `_assign_unique_chain_ids` for more information + on how this is performed. + + Returns: + A new concatenated `Structure` with all of the chains in `strucs` combined + into one new structure. The new structure will be named by joining the + names of `strucs` with underscores. + + Raises: + ValueError: If `strucs` is empty. + ValueError: If `assign_unique_chain_ids=False` and not all chains in + `strucs` have unique chain IDs. + """ + if not strucs: + raise ValueError('Need at least one Structure to concatenate.') + if assign_unique_chain_ids: + strucs = _assign_unique_chain_ids(strucs) + + chemical_components_data = {} + seen_label_chain_ids = set() + for i, struc in enumerate(strucs): + if not assign_unique_chain_ids: + if seen_cid := seen_label_chain_ids.intersection(struc.chains): + raise ValueError( + f'Chain IDs {seen_cid} from strucs[{i}] also exist in other' + ' members of strucs. All given structures must have unique chain' + ' IDs. Consider setting assign_unique_chain_ids=True.' + ) + seen_label_chain_ids.update(struc.chains) + + if struc.chemical_components_data is not None: + chemical_components_data.update(struc.chemical_components_data.chem_comp) # pytype: disable=attribute-error # always-use-property-annotation + + concatted_struc = table.concat_databases(strucs) + name = name if name is not None else '_'.join(s.name for s in strucs) + # Chain IDs (label and author) are fixed at this point, fix also entity IDs. + if assign_unique_chain_ids: + entity_id = np.char.mod('%d', np.arange(1, concatted_struc.num_chains + 1)) + chains = concatted_struc.chains_table.copy_and_update(entity_id=entity_id) + else: + chains = concatted_struc.chains_table + return concatted_struc.copy_and_update( + name=name, + release_date=None, + resolution=None, + structure_method=None, + bioassembly_data=None, + chemical_components_data=( + struc_chem_comps.ChemicalComponentsData(chemical_components_data) + if chemical_components_data + else None + ), + chains=chains, + skip_validation=True, # Already validated by table.concat_databases. + ) + + +def multichain_residue_index( + struc: Structure, chain_offset: int = 9000, between_chain_buffer: int = 1000 +) -> np.ndarray: + """Compute a residue index array that is monotonic across all chains. + + Lots of metrics (lddt, l1_long, etc) require computing a + distance-along-chain between two residues. For multimers we want to ensure + that any residues on different chains have a high along-chain distance + (i.e. they should always count as long-range contacts for example). To + do this we add 10000 to the residue indices of each chain, and enforce that + the residue index is monotonically increasing across the whole complex. + + Note: This returns the same as struc.res_id for monomers. + + Args: + struc: The structure to make a multichain residue index for. + chain_offset: The start of each chain is offset by at least this amount. + This must be larger than the absolute range of standard residue IDs. + between_chain_buffer: The final residue in one chain will have at least this + much of a buffer before the first residue in the next chain. + + Returns: + A monotonically increasing residue index, with at least + `between_chain_buffer` residues in between each chain. + """ + if struc.num_atoms: + res_id_range = np.max(struc.res_id) - np.min(struc.res_id) + assert res_id_range < chain_offset + chain_id_int = struc.chain_id + monotonic_chain_id_int = np.concatenate( + ([0], np.cumsum(chain_id_int[1:] != chain_id_int[:-1])) + ) + return struc.res_id + monotonic_chain_id_int * ( + chain_offset + between_chain_buffer + ) + + +def make_empty_structure() -> Structure: + """Returns a new structure consisting of empty array fields.""" + return Structure( + chains=structure_tables.Chains.make_empty(), + residues=structure_tables.Residues.make_empty(), + atoms=structure_tables.Atoms.make_empty(), + bonds=structure_tables.Bonds.make_empty(), + ) + + +def enumerate_residues( + atom_iter: Iterable[Mapping[str, Any]], + all_residues: AllResidues | None = None, +) -> Iterator[tuple[int, Mapping[str, Any]]]: + """Provides a zero-indexed enumeration of residues in an atom iterable. + + Args: + atom_iter: An iterable of atom dicts as returned by Structure.iter_atoms(). + all_residues: (Optional) A structure's all_residues field. If present then + this will be used to count missing residues by adding appropriate gaps in + the residue enumeration. + + Yields: + (res_i, atom) pairs where atom is the unmodified atom dict and res_i is a + zero-based index for the residue that the atom belongs to. + """ + if all_residues is None: + prev_res = None + res_i = -1 + for atom in atom_iter: + res = (atom['chain_id'], atom['res_id']) + if res != prev_res: + prev_res = res + res_i += 1 + yield res_i, atom + else: + all_res_seq = [] # Sequence of (chain_id, res_id) for all chains. + prev_chain = None + res_i = 0 + for atom in atom_iter: + chain_id = atom['chain_id'] + if chain_id not in all_residues: + raise ValueError( + f'Atom {atom} does not belong to any residue in all_residues.' + ) + if chain_id != prev_chain: + prev_chain = chain_id + all_res_seq.extend( + (chain_id, res_id) for (_, res_id) in all_residues[chain_id] + ) + res = (chain_id, atom['res_id']) + while res_i < len(all_res_seq) and res != all_res_seq[res_i]: + res_i += 1 + if res_i == len(all_res_seq): + raise ValueError( + f'Atom {atom} does not belong to a residue in all_residues.' + ) + yield res_i, atom diff --git a/flax_model/alphafold3/structure/structure_tables.py b/flax_model/alphafold3/structure/structure_tables.py new file mode 100644 index 0000000000000000000000000000000000000000..b11dc7404e79c0b5b215e1a73211b2df426f7659 --- /dev/null +++ b/flax_model/alphafold3/structure/structure_tables.py @@ -0,0 +1,811 @@ + + +"""Table implementations for the Structure class.""" + +import collections +from collections.abc import Mapping, Sequence +import dataclasses +import functools +import itertools +import typing +from typing import Any, ClassVar, Self + +from flax_model.alphafold3.constants import mmcif_names +from flax_model.alphafold3.constants import residue_names +from flax_model.alphafold3.cpp import aggregation +from flax_model.alphafold3.cpp import string_array +from flax_model.alphafold3.structure import bonds as bonds_module +from flax_model.alphafold3.structure import mmcif +from flax_model.alphafold3.structure import table +import numpy as np + + +Bonds = bonds_module.Bonds + + +def _residue_name_to_record_name( + residue_name: np.ndarray, + polymer_mask: np.ndarray, +) -> np.ndarray: + """Returns record names (ATOM/HETATM) given residue names and polymer mask.""" + record_name = np.array(['HETATM'] * len(residue_name), dtype=object) + record_name[polymer_mask] = string_array.remap( + residue_name[polymer_mask], + mapping={r: 'ATOM' for r in residue_names.STANDARD_POLYMER_TYPES}, + default_value='HETATM', + ) + return record_name + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class AuthorNamingScheme: + """A mapping from internal values to author values in a mmCIF. + + Fields: + auth_asym_id: A mapping from label_asym_id to auth_asym_id. + auth_seq_id: A mapping from label_asym_id to a mapping from + label_seq_id to auth_seq_id. + insertion_code: A mapping from label_asym_id to a mapping from + label_seq_id to insertion codes. + entity_id: A mapping from label_asym_id to _entity.id. + entity_desc: A mapping from _entity.id to _entity.pdbx_description. + """ + + auth_asym_id: Mapping[str, str] + auth_seq_id: Mapping[str, Mapping[int, str]] + insertion_code: Mapping[str, Mapping[int, str | None]] + entity_id: Mapping[str, str] + entity_desc: Mapping[str, str] + + +def _default( + candidate_value: np.ndarray | None, default_value: Sequence[Any], dtype: Any +) -> np.ndarray: + if candidate_value is None: + return np.array(default_value, dtype=dtype) + return np.array(candidate_value, dtype=dtype) + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class Atoms(table.Table): + """Table of atoms in a Structure.""" + + chain_key: np.ndarray + res_key: np.ndarray + name: np.ndarray + element: np.ndarray + x: np.ndarray + y: np.ndarray + z: np.ndarray + b_factor: np.ndarray + occupancy: np.ndarray + multimodel_cols: ClassVar[tuple[str, ...]] = ( + 'x', + 'y', + 'z', + 'b_factor', + 'occupancy', + ) + + def __post_init__(self): + # Validates that the atom coordinates, b-factors and occupancies are finite. + for column_name in ('x', 'y', 'z', 'b_factor', 'occupancy'): + column = self.get_column(column_name) + if not np.isfinite(column).all(): + raise ValueError( + f'Column {column_name} must not contain NaN/inf values.' + ) + # super().__post_init__() can't be used as that causes the following error: + # TypeError: super(type, obj): obj must be an instance or subtype of type + super(Atoms, self).__post_init__() + + @classmethod + def make_empty(cls) -> Self: + return cls( + key=np.array([], dtype=np.int64), + chain_key=np.array([], dtype=np.int64), + res_key=np.array([], dtype=np.int64), + name=np.array([], dtype=object), + element=np.array([], dtype=object), + x=np.array([], dtype=np.float32), + y=np.array([], dtype=np.float32), + z=np.array([], dtype=np.float32), + b_factor=np.array([], dtype=np.float32), + occupancy=np.array([], dtype=np.float32), + ) + + @classmethod + def from_defaults( + cls, + *, + chain_key: np.ndarray, + res_key: np.ndarray, + key: np.ndarray | None = None, + name: np.ndarray | None = None, + element: np.ndarray | None = None, + x: np.ndarray | None = None, + y: np.ndarray | None = None, + z: np.ndarray | None = None, + b_factor: np.ndarray | None = None, + occupancy: np.ndarray | None = None, + ) -> Self: + """Create an Atoms table with minimal user inputs.""" + num_atoms = len(chain_key) + if not num_atoms: + return cls.make_empty() + return Atoms( + chain_key=chain_key, + res_key=res_key, + key=_default(key, np.arange(num_atoms), np.int64), + name=_default(name, ['?'] * num_atoms, object), + element=_default(element, ['?'] * num_atoms, object), + x=_default(x, [0.0] * num_atoms, np.float32), + y=_default(y, [0.0] * num_atoms, np.float32), + z=_default(z, [0.0] * num_atoms, np.float32), + b_factor=_default(b_factor, [0.0] * num_atoms, np.float32), + occupancy=_default(occupancy, [1.0] * num_atoms, np.float32), + ) + + def get_value_by_index( + self, column_name: str, index: int + ) -> table.TableEntry | np.ndarray: + if column_name in self.multimodel_cols: + return self.get_column(column_name)[..., index] + else: + return self.get_column(column_name)[index] + + def copy_and_update_coords(self, coords: np.ndarray) -> Self: + """Returns a copy with the x, y and z columns updated.""" + if coords.shape[-1] != 3: + raise ValueError( + f'Expecting 3-dimensional coordinates, got {coords.shape}' + ) + return typing.cast( + Atoms, + self.copy_and_update( + x=coords[..., 0], y=coords[..., 1], z=coords[..., 2] + ), + ) + + @property + def shape(self) -> tuple[int, ...]: + return self.x.shape + + @property + def ndim(self) -> int: + return len(self.shape) + + @functools.cached_property + def num_models(self) -> int: + """The number of models of this Structure.""" + leading_dims = self.shape[:-1] + match leading_dims: + case (): + return 1 + case (single_leading_dim_size,): + return single_leading_dim_size + case _: + raise ValueError( + 'num_models not defined for atom tables with more than one ' + 'leading dimension.' + ) + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class Residues(table.Table): + """Table of residues in a Structure.""" + + chain_key: np.ndarray + id: np.ndarray + name: np.ndarray + auth_seq_id: np.ndarray + insertion_code: np.ndarray + + @classmethod + def make_empty(cls) -> Self: + return cls( + key=np.array([], dtype=np.int64), + chain_key=np.array([], dtype=np.int64), + id=np.array([], dtype=np.int32), + name=np.array([], dtype=object), + auth_seq_id=np.array([], dtype=object), + insertion_code=np.array([], dtype=object), + ) + + @classmethod + def from_defaults( + cls, + *, + id: np.ndarray, # pylint:disable=redefined-builtin + chain_key: np.ndarray, + key: np.ndarray | None = None, + name: np.ndarray | None = None, + auth_seq_id: np.ndarray | None = None, + insertion_code: np.ndarray | None = None, + ) -> Self: + """Create a Residues table with minimal user inputs.""" + num_res = len(id) + if not num_res: + return cls.make_empty() + return Residues( + key=_default(key, np.arange(num_res), np.int64), + id=id, + chain_key=chain_key, + name=_default(name, ['UNK'] * num_res, object), + auth_seq_id=_default(auth_seq_id, id.astype(str), object), + insertion_code=_default(insertion_code, ['?'] * num_res, object), + ) + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class Chains(table.Table): + """Table of chains in a Structure.""" + + id: np.ndarray + type: np.ndarray + auth_asym_id: np.ndarray + entity_id: np.ndarray + entity_desc: np.ndarray + + @classmethod + def make_empty(cls) -> Self: + return cls( + key=np.array([], dtype=np.int64), + id=np.array([], dtype=object), + type=np.array([], dtype=object), + auth_asym_id=np.array([], dtype=object), + entity_id=np.array([], dtype=object), + entity_desc=np.array([], dtype=object), + ) + + @classmethod + def from_defaults( + cls, + *, + id: np.ndarray, # pylint:disable=redefined-builtin + key: np.ndarray | None = None, + type: np.ndarray | None = None, # pylint:disable=redefined-builtin + auth_asym_id: np.ndarray | None = None, + entity_id: np.ndarray | None = None, + entity_desc: np.ndarray | None = None, + ) -> Self: + """Create a Chains table with minimal user inputs.""" + num_chains = len(id) + if not num_chains: + return cls.make_empty() + + return Chains( + key=_default(key, np.arange(num_chains), np.int64), + id=id, + type=_default(type, [mmcif_names.PROTEIN_CHAIN] * num_chains, object), + auth_asym_id=_default(auth_asym_id, id, object), + entity_id=_default( + entity_id, np.arange(1, num_chains + 1).astype(str), object + ), + entity_desc=_default(entity_desc, ['.'] * num_chains, object), + ) + + +def to_mmcif_sequence_and_entity_tables( + chains: Chains, + residues: Residues, + atom_res_key: np.ndarray, +) -> Mapping[str, Sequence[str]]: + """Returns raw sequence and entity mmCIF tables.""" + raw_mmcif = collections.defaultdict(list) + chains_by_entity_id = {} + written_entity_poly_seq_ids = set() + present_res_keys = set(atom_res_key) + + # Performance optimisation: Find residue indices for each chain in advance, so + # that we don't have to do redunant masking work for each chain. + res_indices_for_chain = aggregation.indices_grouped_by_value( + residues.chain_key + ) + + for chain in chains.iterrows(): + # Add all chain information to the _struct_asym table. + chain_id = chain['id'] # Saves multiple dict lookups. + auth_asym_id = chain['auth_asym_id'] + entity_id = chain['entity_id'] + chains_by_entity_id.setdefault(entity_id, []).append(chain) + raw_mmcif['_struct_asym.id'].append(chain_id) + raw_mmcif['_struct_asym.entity_id'].append(entity_id) + + res_chain_indices = res_indices_for_chain[chain['key']] + chain_type = chain['type'] + is_polymer = chain_type in mmcif_names.POLYMER_CHAIN_TYPES + is_water = chain_type == mmcif_names.WATER + is_branched = len(res_chain_indices) > 1 and not is_polymer and not is_water + write_entity_poly_seq = entity_id not in written_entity_poly_seq_ids + + # Iterate over the individual masked residue table columns, as that doesn't + # create a copy (only a view), while residues[res_chain_indices] does. + for res_key, res_name, res_id, pdb_seq_num, res_ins_code in zip( + residues.key[res_chain_indices], + residues.name[res_chain_indices], + residues.id[res_chain_indices], + residues.auth_seq_id[res_chain_indices], + residues.insertion_code[res_chain_indices], + strict=True, + ): + is_missing = res_key not in present_res_keys + str_res_id = str(res_id) + # While atom_site uses "?" for insertion codes, scheme tables use ".". + ins_code = (res_ins_code or '.').replace('?', '.') + auth_seq_num = '?' if is_missing else pdb_seq_num + + if is_polymer: + raw_mmcif['_pdbx_poly_seq_scheme.asym_id'].append(chain_id) + raw_mmcif['_pdbx_poly_seq_scheme.entity_id'].append(entity_id) + raw_mmcif['_pdbx_poly_seq_scheme.seq_id'].append(str_res_id) + raw_mmcif['_pdbx_poly_seq_scheme.mon_id'].append(res_name) + raw_mmcif['_pdbx_poly_seq_scheme.pdb_seq_num'].append(pdb_seq_num) + raw_mmcif['_pdbx_poly_seq_scheme.auth_seq_num'].append(auth_seq_num) + raw_mmcif['_pdbx_poly_seq_scheme.pdb_strand_id'].append(auth_asym_id) + raw_mmcif['_pdbx_poly_seq_scheme.pdb_ins_code'].append(ins_code) + # Structure doesn't support heterogeneous sequences. + raw_mmcif['_pdbx_poly_seq_scheme.hetero'].append('n') + if write_entity_poly_seq: + raw_mmcif['_entity_poly_seq.entity_id'].append(entity_id) + raw_mmcif['_entity_poly_seq.num'].append(str_res_id) + raw_mmcif['_entity_poly_seq.mon_id'].append(res_name) + # Structure doesn't support heterogeneous sequences. + raw_mmcif['_entity_poly_seq.hetero'].append('n') + written_entity_poly_seq_ids.add(entity_id) + elif is_branched: + raw_mmcif['_pdbx_branch_scheme.asym_id'].append(chain_id) + raw_mmcif['_pdbx_branch_scheme.entity_id'].append(entity_id) + raw_mmcif['_pdbx_branch_scheme.mon_id'].append(res_name) + raw_mmcif['_pdbx_branch_scheme.num'].append(str_res_id) + raw_mmcif['_pdbx_branch_scheme.pdb_asym_id'].append(auth_asym_id) + raw_mmcif['_pdbx_branch_scheme.pdb_seq_num'].append(pdb_seq_num) + raw_mmcif['_pdbx_branch_scheme.auth_asym_id'].append(auth_asym_id) + raw_mmcif['_pdbx_branch_scheme.auth_seq_num'].append(auth_seq_num) + raw_mmcif['_pdbx_branch_scheme.pdb_ins_code'].append(ins_code) + # Structure doesn't support heterogeneous sequences. + raw_mmcif['_pdbx_branch_scheme.hetero'].append('n') + else: + raw_mmcif['_pdbx_nonpoly_scheme.asym_id'].append(chain_id) + raw_mmcif['_pdbx_nonpoly_scheme.entity_id'].append(entity_id) + raw_mmcif['_pdbx_nonpoly_scheme.mon_id'].append(res_name) + raw_mmcif['_pdbx_nonpoly_scheme.pdb_seq_num'].append(pdb_seq_num) + raw_mmcif['_pdbx_nonpoly_scheme.auth_seq_num'].append(auth_seq_num) + raw_mmcif['_pdbx_nonpoly_scheme.pdb_strand_id'].append(auth_asym_id) + raw_mmcif['_pdbx_nonpoly_scheme.pdb_ins_code'].append(ins_code) + + # Add _entity and _entity_poly tables. + for entity_id, chains in chains_by_entity_id.items(): + # chains should always be a non-empty list because of how we constructed + # chains_by_entity_id. + assert chains + # All chains for a given entity should have the same type and sequence + # so we can pick the first one without losing information. + key_chain = chains[0] + raw_mmcif['_entity.id'].append(entity_id) + raw_mmcif['_entity.pdbx_description'].append(key_chain['entity_desc']) + entity_type = key_chain['type'] + if entity_type not in mmcif_names.POLYMER_CHAIN_TYPES: + raw_mmcif['_entity.type'].append(entity_type) + else: + raw_mmcif['_entity.type'].append('polymer') + raw_mmcif['_entity_poly.entity_id'].append(entity_id) + raw_mmcif['_entity_poly.type'].append(entity_type) + + # _entity_poly.pdbx_strand_id is a comma-separated list of + # auth_asym_ids that are part of the entity. + raw_mmcif['_entity_poly.pdbx_strand_id'].append( + ','.join(chain['auth_asym_id'] for chain in chains) + ) + return raw_mmcif + + +def to_mmcif_atom_site_and_bonds_table( + *, + chains: Chains, + residues: Residues, + atoms: Atoms, + bonds: Bonds, + coords_decimal_places: int, +) -> Mapping[str, Sequence[str]]: + """Returns raw _atom_site and _struct_conn mmCIF tables.""" + raw_mmcif = collections.defaultdict(list) + # Use [value] * num wherever possible since it is about 10x faster than list + # comprehension in such cases. Also use f-strings instead of str() - faster. + total_atoms = atoms.size * atoms.num_models + raw_mmcif['_atom_site.id'] = [f'{i}' for i in range(1, total_atoms + 1)] + raw_mmcif['_atom_site.label_alt_id'] = ['.'] * total_atoms + # Use format_float_array instead of list comprehension for performance. + raw_mmcif['_atom_site.Cartn_x'] = mmcif.format_float_array( + values=atoms.x.ravel(), num_decimal_places=coords_decimal_places + ) + raw_mmcif['_atom_site.Cartn_y'] = mmcif.format_float_array( + values=atoms.y.ravel(), num_decimal_places=coords_decimal_places + ) + raw_mmcif['_atom_site.Cartn_z'] = mmcif.format_float_array( + values=atoms.z.ravel(), num_decimal_places=coords_decimal_places + ) + + # atoms.b_factor or atoms.occupancy can be flat even when the coordinates have + # leading dimensions. In this case we tile it to match. + if atoms.b_factor.ndim == 1: + atom_b_factor = np.tile(atoms.b_factor, atoms.num_models) + else: + atom_b_factor = atoms.b_factor.ravel() + raw_mmcif['_atom_site.B_iso_or_equiv'] = mmcif.format_float_array( + values=atom_b_factor, num_decimal_places=2 + ) + + if atoms.occupancy.ndim == 1: + atom_occupancy = np.tile(atoms.occupancy, atoms.num_models) + else: + atom_occupancy = atoms.occupancy.ravel() + raw_mmcif['_atom_site.occupancy'] = mmcif.format_float_array( + values=atom_occupancy.ravel(), num_decimal_places=2 + ) + + label_atom_id = atoms.name + type_symbol = atoms.element + label_comp_id = residues.apply_array_to_column('name', atoms.res_key) + label_asym_id = chains.apply_array_to_column('id', atoms.chain_key) + label_entity_id = chains.apply_array_to_column('entity_id', atoms.chain_key) + # Performance optimisation: Do the int->str conversion on num_residue-sized, + # array, then select instead of selecting and then converting. + label_seq_id = residues.id.astype('str').astype(object)[ + ..., residues.index_by_key[atoms.res_key] + ] + + # _atom_site.label_seq_id is '.' for non-polymers. + non_polymer_chain_mask = string_array.isin( + chains.type, mmcif_names.POLYMER_CHAIN_TYPES, invert=True + ) + non_polymer_chain_keys = chains.key[non_polymer_chain_mask] + non_polymer_atom_mask = np.isin(atoms.chain_key, non_polymer_chain_keys) + label_seq_id[non_polymer_atom_mask] = '.' + + auth_asym_id = chains.apply_array_to_column('auth_asym_id', atoms.chain_key) + auth_seq_id = residues.apply_array_to_column('auth_seq_id', atoms.res_key) + pdbx_pdb_ins_code = residues.apply_array_to_column( + 'insertion_code', atoms.res_key + ) + string_array.remap(pdbx_pdb_ins_code, mapping={None: '?'}, inplace=True) + + group_pdb = _residue_name_to_record_name( + residue_name=label_comp_id, polymer_mask=~non_polymer_atom_mask + ) + + def tile_for_models(arr: np.ndarray) -> list[str]: + if atoms.num_models == 1: + return arr.tolist() # Memory optimisation: np.tile(arr, 1) does a copy. + return np.tile(arr, atoms.num_models).tolist() + + raw_mmcif['_atom_site.group_PDB'] = tile_for_models(group_pdb) + raw_mmcif['_atom_site.label_atom_id'] = tile_for_models(label_atom_id) + raw_mmcif['_atom_site.type_symbol'] = tile_for_models(type_symbol) + raw_mmcif['_atom_site.label_comp_id'] = tile_for_models(label_comp_id) + raw_mmcif['_atom_site.label_asym_id'] = tile_for_models(label_asym_id) + raw_mmcif['_atom_site.label_entity_id'] = tile_for_models(label_entity_id) + raw_mmcif['_atom_site.label_seq_id'] = tile_for_models(label_seq_id) + raw_mmcif['_atom_site.auth_asym_id'] = tile_for_models(auth_asym_id) + raw_mmcif['_atom_site.auth_seq_id'] = tile_for_models(auth_seq_id) + raw_mmcif['_atom_site.pdbx_PDB_ins_code'] = tile_for_models(pdbx_pdb_ins_code) + model_id = np.array( + [str(i + 1) for i in range(atoms.num_models)], dtype=object + ) + raw_mmcif['_atom_site.pdbx_PDB_model_num'] = np.repeat( + model_id, [atoms.size] * atoms.num_models + ).tolist() + + if bonds.key.size > 0: + raw_mmcif.update( + bonds.to_mmcif_dict_from_atom_arrays( + atom_key=atoms.key, + chain_id=label_asym_id, + res_id=label_seq_id, + res_name=label_comp_id, + atom_name=label_atom_id, + auth_asym_id=auth_asym_id, + auth_seq_id=auth_seq_id, + insertion_code=np.array(pdbx_pdb_ins_code), + ) + ) + return raw_mmcif + + +def _flatten_author_naming_scheme_table( + res_table: Mapping[str, Mapping[int, str]], + chain_ids: np.ndarray, + res_chain_ids: np.ndarray, + res_ids: np.ndarray, + default_if_missing: str, + table_name: str, +) -> np.ndarray: + """Flattens an author naming scheme table consistently with res_ids.""" + if not set(chain_ids).issubset(res_table): + raise ValueError( + f'Chain IDs in the chain_id array must be a subset of {table_name} in ' + 'author naming scheme:\n' + f'chain_ids: {sorted(chain_ids)}\n' + f'{table_name} keys: {sorted(res_table.keys())}' + ) + + chain_change_mask = res_chain_ids[1:] != res_chain_ids[:-1] + res_chain_boundaries = np.concatenate( + ([0], np.where(chain_change_mask)[0] + 1, [len(res_chain_ids)]) + ) + + flat_vals = np.empty(len(res_ids), dtype=object) + for chain_start, chain_end in itertools.pairwise(res_chain_boundaries): + chain_id = res_chain_ids[chain_start] + chain_res_ids = res_ids[chain_start:chain_end] + chain_mapping = res_table[chain_id] + flat_vals[chain_start:chain_end] = [ + chain_mapping.get(r, default_if_missing) for r in chain_res_ids + ] + + return flat_vals + + +def tables_from_atom_arrays( + *, + res_id: np.ndarray, + author_naming_scheme: AuthorNamingScheme | None = None, + all_residues: Mapping[str, Sequence[tuple[str, int]]] | None = None, + chain_id: np.ndarray | None = None, + chain_type: np.ndarray | None = None, + res_name: np.ndarray | None = None, + atom_key: np.ndarray | None = None, + atom_name: np.ndarray | None = None, + atom_element: np.ndarray | None = None, + atom_x: np.ndarray | None = None, + atom_y: np.ndarray | None = None, + atom_z: np.ndarray | None = None, + atom_b_factor: np.ndarray | None = None, + atom_occupancy: np.ndarray | None = None, +) -> tuple[Atoms, Residues, Chains]: + """Returns Structure tables constructed from atom array level data. + + All fields except name and, res_id are optional, all array fields consist of a + value for each atom in the structure - so residue and chain values should hold + the same value for each atom in the chain or residue. Fields which are not + defined are filled with default values. + + Validation is performed by the Structure constructor where possible - but + author_naming scheme and all_residues must be checked in this function. + + It is not possible to construct structures with chains that do not contain + any resolved residues using this function. If this is necessary, use the + structure.Structure constructor directly. + + Args: + res_id: Integer array of shape [num_atom]. The unique residue identifier for + each residue. mmCIF field - _atom_site.label_seq_id. + author_naming_scheme: An optional instance of AuthorNamingScheme to use when + converting this structure to mmCIF. + all_residues: An optional mapping from each chain ID (i.e. label_asym_id) to + a sequence of (label_comp_id, label_seq_id) tuples, one per residue. This + can contain residues that aren't present in the atom arrays. This is + common in experimental data where some residues are not resolved but are + known to be present. + chain_id: String array of shape [num_atom] of unique chain identifiers. + mmCIF field - _atom_site.label_asym_id. + chain_type: String array of shape [num_atom]. The molecular type of the + current chain (e.g. polyribonucleotide). mmCIF field - _entity_poly.type + OR _entity.type (for non-polymers). + res_name: String array of shape [num_atom].. The name of each residue, + typically a 3 letter string for polypeptides or 1-2 letter strings for + polynucleotides. mmCIF field - _atom_site.label_comp_id. + atom_key: A unique sorted integer array, used only by the bonds table to + identify the atoms participating in each bond. If the bonds table is + specified then this column must be non-None. + atom_name: String array of shape [num_atom]. The name of each atom (e.g CA, + O2', etc.). mmCIF field - _atom_site.label_atom_id. + atom_element: String array of shape [num_atom]. The element type of each + atom (e.g. C, O, N, etc.). mmCIF field - _atom_site.type_symbol. + atom_x: Float array of shape [..., num_atom] of atom x coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_y: Float array of shape [..., num_atom] of atom y coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_z: Float array of shape [..., num_atom] of atom z coordinates. May have + arbitrary leading dimensions, provided that these are consistent across + all coordinate fields. + atom_b_factor: Float array of shape [..., num_atom] or [num_atom] of atom + b-factors or equivalent. If there are no extra leading dimensions then + these values are assumed to apply to all coordinates for a given atom. If + there are leading dimensions then these must match those used by the + coordinate fields. + atom_occupancy: Float array of shape [..., num_atom] or [num_atom] of atom + occupancies or equivalent. If there are no extra leading dimensions then + these values are assumed to apply to all coordinates for a given atom. If + there are leading dimensions then these must match those used by the + coordinate fields. + """ + num_atoms = len(res_id) + + for arr_name, array, dtype in ( + ('chain_id', chain_id, object), + ('chain_type', chain_type, object), + ('res_id', res_id, np.int32), + ('res_name', res_name, object), + ('atom_key', atom_key, np.int64), + ('atom_name', atom_name, object), + ('atom_element', atom_element, object), + ): + if array is not None and array.shape != (num_atoms,): + raise ValueError(f'{arr_name} shape {array.shape} != ({num_atoms},)') + if array is not None and array.dtype != dtype: + raise ValueError(f'{arr_name} dtype {array.dtype} != {dtype}') + + for arr_name, array in ( + ('atom_x', atom_x), + ('atom_y', atom_y), + ('atom_z', atom_z), + ('atom_b_factor', atom_b_factor), + ('atom_occupancy', atom_occupancy), + ): + if array is not None and array.shape[-1] != num_atoms: + raise ValueError(f'{arr_name} last dim {array.shape[-1]} != {num_atoms=}') + if ( + array is not None + and array.dtype != np.float32 + and array.dtype != np.float64 + ): + raise ValueError( + f'{arr_name} must be np.float32 or np.float64, got {array.dtype=}' + ) + + if all_residues is not None and (res_name is None or res_id is None): + raise ValueError( + 'If all_residues != None, res_name and res_id must not be None either.' + ) + + if num_atoms == 0: + return Atoms.make_empty(), Residues.make_empty(), Chains.make_empty() + + if chain_id is None: + chain_id = np.full(shape=num_atoms, fill_value='A', dtype=object) + if res_name is None: + res_name = np.full(shape=num_atoms, fill_value='UNK', dtype=object) + + chain_change_mask = chain_id[1:] != chain_id[:-1] + chain_start = np.concatenate(([0], np.where(chain_change_mask)[0] + 1)) + res_start = np.concatenate( + ([0], np.where((res_id[1:] != res_id[:-1]) | chain_change_mask)[0] + 1) + ) + + if len(set(chain_id)) != len(chain_start): + raise ValueError(f'Chain IDs must be contiguous, but got {chain_id}') + + # We do not support chains with unresolved residues-only in this function. + chain_ids = chain_id[chain_start] + if all_residues and set(all_residues.keys()) != set(chain_ids): + raise ValueError( + 'all_residues must contain the same set of chain IDs as the chain_id ' + f'array:\nall_residues keys: {sorted(all_residues.keys())}\n' + f'chain_ids: {sorted(chain_ids)}.' + ) + # Make sure all_residue ordering is consistent with chain_id. + if all_residues and np.any(list(all_residues.keys()) != chain_ids): + all_residues = {cid: all_residues[cid] for cid in chain_ids} + + # Create the chains table. + num_chains = len(chain_ids) + chain_keys = np.arange(num_chains, dtype=np.int64) + chain_key_by_chain_id = dict(zip(chain_ids, chain_keys, strict=True)) + + if chain_type is not None: + chain_types = chain_type[chain_start] + else: + chain_types = np.full(num_chains, mmcif_names.PROTEIN_CHAIN, dtype=object) + + if author_naming_scheme is not None: + auth_asym_id = string_array.remap( + chain_ids, author_naming_scheme.auth_asym_id + ) + entity_id = string_array.remap( + chain_ids, author_naming_scheme.entity_id, default_value='.' + ) + entity_desc = string_array.remap( + entity_id, author_naming_scheme.entity_desc, default_value='.' + ) + else: + auth_asym_id = chain_ids + entity_id = (chain_keys + 1).astype(str).astype(object) + entity_desc = np.full(num_chains, '.', dtype=object) + + chains = Chains( + key=chain_keys, + id=chain_ids, + type=chain_types, + auth_asym_id=auth_asym_id, + entity_id=entity_id, + entity_desc=entity_desc, + ) + + # Create the residues table. + if all_residues is not None: + residue_order = [] + for cid, residues in all_residues.items(): + residue_order.extend((cid, rname, int(rid)) for (rname, rid) in residues) + res_chain_ids, res_names, res_ids = zip(*residue_order) + res_chain_ids = np.array(res_chain_ids, dtype=object) + res_ids = np.array(res_ids, dtype=np.int32) + res_names = np.array(res_names, dtype=object) + else: + res_chain_ids = chain_id[res_start] + res_ids = res_id[res_start] + res_names = res_name[res_start] + residue_order = list(zip(res_chain_ids, res_names, res_ids)) + + if author_naming_scheme is not None and author_naming_scheme.auth_seq_id: + auth_seq_id = _flatten_author_naming_scheme_table( + author_naming_scheme.auth_seq_id, + chain_ids=chain_ids, + res_chain_ids=res_chain_ids, + res_ids=res_ids, + default_if_missing='.', + table_name='auth_seq_id', + ) + else: + auth_seq_id = res_ids.astype(str).astype(object) + + if author_naming_scheme is not None and author_naming_scheme.insertion_code: + insertion_code = _flatten_author_naming_scheme_table( + author_naming_scheme.insertion_code, + chain_ids=chain_ids, + res_chain_ids=res_chain_ids, + res_ids=res_ids, + default_if_missing='?', + table_name='insertion_code', + ) + # Make sure insertion code of None is mapped to '.'. + insertion_code = string_array.remap(insertion_code, {None: '?'}) + else: + insertion_code = np.full(shape=len(res_ids), fill_value='?', dtype=object) + + res_key_by_res = {res: i for i, res in enumerate(residue_order)} + res_keys = np.arange(len(residue_order), dtype=np.int64) + res_chain_keys = string_array.remap( + res_chain_ids, chain_key_by_chain_id + ).astype(np.int64) + residues = Residues( + chain_key=res_chain_keys, + key=res_keys, + id=res_ids, + name=res_names, + auth_seq_id=auth_seq_id, + insertion_code=insertion_code, + ) + + if atom_key is None: + atom_key = np.arange(num_atoms, dtype=np.int64) + + atom_chain_keys = string_array.remap(chain_id, chain_key_by_chain_id).astype( + np.int64 + ) + + try: + atom_res_keys = [res_key_by_res[r] for r in zip(chain_id, res_name, res_id)] + except KeyError as e: + missing_chain_id, missing_res_name, missing_res_id = e.args[0] + raise ValueError( + 'Inconsistent res_name, res_id and all_residues. Could not find ' + f'residue with chain_id={missing_chain_id}, ' + f'res_name={missing_res_name}, res_id={missing_res_id} in all_residues.' + ) from e + + atoms = Atoms( + key=atom_key, + chain_key=atom_chain_keys, + res_key=np.array(atom_res_keys, dtype=np.int64), + name=_default(atom_name, ['?'] * num_atoms, object), + element=_default(atom_element, ['?'] * num_atoms, object), + x=_default(atom_x, [0.0] * num_atoms, np.float32), + y=_default(atom_y, [0.0] * num_atoms, np.float32), + z=_default(atom_z, [0.0] * num_atoms, np.float32), + b_factor=_default(atom_b_factor, [0.0] * num_atoms, np.float32), + occupancy=_default(atom_occupancy, [1.0] * num_atoms, np.float32), + ) + return atoms, residues, chains diff --git a/flax_model/alphafold3/structure/table.py b/flax_model/alphafold3/structure/table.py new file mode 100644 index 0000000000000000000000000000000000000000..40c5b041fab7497a97df28fe3d47936885e3119b --- /dev/null +++ b/flax_model/alphafold3/structure/table.py @@ -0,0 +1,555 @@ + + +"""Table module for atom/residue/chain tables in Structure. + +Tables are intended to be lightweight collections of columns, loosely based +on a pandas dataframe, for use in the Structure class. +""" + +import abc +from collections.abc import Callable, Collection, Iterable, Iterator, Mapping, Sequence +import dataclasses +import functools +import graphlib +import typing +from typing import Any, Protocol, Self, TypeAlias, TypeVar, overload + +from flax_model.alphafold3.cpp import string_array +import numpy as np + + +TableEntry: TypeAlias = str | int | float | None +FilterPredicate: TypeAlias = ( + TableEntry + | Iterable[Any] # Workaround for b/326384670. Tighten once fixed. + | Callable[[Any], bool] # Workaround for b/326384670. Tighten once fixed. + | Callable[[np.ndarray], bool] +) + + +class RowLookup(Protocol): + + def get_row_by_key( + self, + key: int, + column_name_map: Mapping[str, str] | None = None, + ) -> Mapping[str, Any]: + ... + + +@dataclasses.dataclass(frozen=True, kw_only=True) +class Table: + """Parent class for structure tables. + + A table is a collection of columns of equal length, where one column is the + key. The key uniquely identifies each row in the table. + + A table can refer to other tables by including a foreign key column, whose + values are key values from the other table's key column. These column can have + arbitrary names and are treated like any other integer-valued column. + + See the `Database` class in this module for utilities for handing sets of + tables that are related via foreign keys. + + NB: This does not correspond to an mmCIF table. + """ + + key: np.ndarray + + def __post_init__(self): + for col_name in self.columns: + if (col_len := self.get_column(col_name).shape[-1]) != self.size: + raise ValueError( + f'All columns should have length {self.size} but got "{col_name}"' + f' with length {col_len}.' + ) + self.get_column(col_name).flags.writeable = False # Make col immutable. + if self.key.size and self.key.min() < 0: + raise ValueError( + 'Key values must be non-negative. Got negative values:' + f' {set(self.key[self.key < 0])}' + ) + self.key.flags.writeable = False # Make key immutable. + + def __getstate__(self) -> dict[str, Any]: + """Returns members with cached properties removed for pickling.""" + cached_props = { + k + for k, v in self.__class__.__dict__.items() + if isinstance(v, functools.cached_property) + } + return {k: v for k, v in self.__dict__.items() if k not in cached_props} + + @functools.cached_property + def index_by_key(self) -> np.ndarray: + """Mapping from key values to their index in the column arrays. + + i.e.: self.key[index_by_key[k]] == k + """ + if not self.key.size: + return np.array([], dtype=np.int64) + else: + index_by_key = np.zeros(np.max(self.key) + 1, dtype=np.int64) + index_by_key[self.key] = np.arange(self.size) + return index_by_key + + @functools.cached_property + def columns(self) -> tuple[str, ...]: + """The names of the columns in the table, including the key column.""" + return tuple(field.name for field in dataclasses.fields(self)) + + @functools.cached_property + def items(self) -> Mapping[str, np.ndarray]: + """Returns the mapping from column names to column values.""" + return {col: getattr(self, col) for col in self.columns} + + @functools.cached_property + def size(self) -> int: + """The number of rows in the table.""" + return self.key.shape[-1] + + def __len__(self) -> int: + return self.size + + def get_column(self, column_name: str) -> np.ndarray: + """Gets a column by name.""" + # Performance optimisation: use the cached columns, instead of getattr. + return self.items[column_name] + + def apply_array(self, arr: np.ndarray) -> Self: + """Returns a sliced table using a key (!= index) array or a boolean mask.""" + if arr.dtype == bool and np.all(arr): + return self # Shortcut: No-op, so just return. + + return self.copy_and_update(**{ + column_name: self.apply_array_to_column(column_name, arr) + for column_name in self.columns + }) + + def apply_index(self, index_arr: np.ndarray) -> Self: + """Returns a sliced table using an index (!= key) array.""" + if index_arr.dtype == bool: + raise ValueError('The index array must not be a boolean mask.') + + return self.copy_and_update( + **{col: self.get_column(col)[..., index_arr] for col in self.columns} + ) + + def apply_array_to_column( + self, + column_name: str, + arr: np.ndarray, + ) -> np.ndarray: + """Returns a sliced column array using a key array or a boolean mask.""" + if arr.dtype == bool: + return self.get_column(column_name)[..., arr] + else: + return self.get_column(column_name)[..., self.index_by_key[arr]] + + def get_value_by_index(self, column_name: str, index: int) -> Any: + return self.get_column(column_name)[index] + + def get_value_by_key( + self, + column_name: str, + key: int | np.integer, + ) -> TableEntry: + """Gets the value of a column at the row with specified key value.""" + return self.get_value_by_index(column_name, self.index_by_key[key]) + + @overload + def __getitem__(self, key: str) -> np.ndarray: + ... + + @overload + def __getitem__(self, key: np.ndarray) -> 'Table': + ... + + @overload + def __getitem__(self, key: tuple[str, int | np.integer]) -> TableEntry: + ... + + @overload + def __getitem__(self, key: tuple[str, np.ndarray]) -> np.ndarray: + ... + + def __getitem__(self, key): + match key: + case str(): + return self.get_column(key) + case np.ndarray() as key_arr_or_mask: + return self.apply_array(key_arr_or_mask) + case str() as col, int() | np.integer() as key_val: + return self.get_value_by_key(col, key_val) + case str() as col, np.ndarray() as key_arr_or_mask: + return self.apply_array_to_column(col, key_arr_or_mask) + case _: + if isinstance(key, tuple): + err_msg = f'{key}, type: tuple({[type(v) for v in key]})' + else: + err_msg = f'{key}, type: {type(key)}' + raise KeyError(err_msg) + + def get_row_by_key( + self, + key: int, + column_name_map: Mapping[str, str] | None = None, + ) -> dict[str, Any]: + """Gets the row with specified key value.""" + return self.get_row_by_index( + self.index_by_key[key], column_name_map=column_name_map + ) + + def get_row_by_index( + self, + index: int, + column_name_map: Mapping[str, str] | None = None, + ) -> dict[str, Any]: + """Gets the row at the specified index.""" + if column_name_map is not None: + return { + renamed_col: self.get_value_by_index(col, index) + for renamed_col, col in column_name_map.items() + } + else: + return {col: self.get_value_by_index(col, index) for col in self.columns} + + def iterrows( + self, + *, + row_keys: np.ndarray | None = None, + column_name_map: Mapping[str, str] | None = None, + **table_by_foreign_key_col: RowLookup, + ) -> Iterator[Mapping[str, Any]]: + """Yields rows from the table. + + This can be used to easily convert a table to a Pandas dataframe: + + ```py + df = pd.DataFrame(table.iterrows()) + ``` + + Args: + row_keys: An optional array of keys of rows to yield. If None, all rows + will be yielded. + column_name_map: An optional mapping from desired keys in the row dicts to + the names of the columns they correspond to. + **table_by_foreign_key_col: An optional mapping from column names in this + table, which are expected to be columns of foreign keys, to the table + that the foreign keys point into. If provided, then the yielded rows + will include data from the foreign tables at the appropriate key. + """ + if row_keys is not None: + row_indices = self.index_by_key[row_keys] + else: + row_indices = range(self.size) + for i in row_indices: + row = self.get_row_by_index(i, column_name_map=column_name_map) + for key_col, table in table_by_foreign_key_col.items(): + foreign_key = self[key_col][i] + foreign_row = table.get_row_by_key(foreign_key) + row.update(foreign_row) + yield row + + def with_column_names( + self, column_name_map: Mapping[str, str] + ) -> 'RenamedTableView': + """Returns a view of this table with mapped column names.""" + return RenamedTableView(self, column_name_map=column_name_map) + + def make_filter_mask( + self, + mask: np.ndarray | None = None, + *, + apply_per_element: bool = False, + **predicate_by_col: FilterPredicate, + ) -> np.ndarray | None: + """Returns a boolean array of rows to keep, or None if all can be kept. + + Args: + mask: See `Table.filter`. + apply_per_element: See `Table.filter`. + **predicate_by_col: See `Table.filter`. + + Returns: + Either a boolean NumPy array of length `(self.size,)` denoting which rows + should be kept according to the input mask and predicates, or None. None + implies there is no filtering required, and is used where possible + instead of an all-True array to save time and space. + """ + if mask is None: + if not predicate_by_col: + return None + else: + mask = np.ones((self.size,), dtype=bool) + else: + if mask.shape != (self.size,): + raise ValueError( + f'mask must have shape ({self.size},). Got: {mask.shape}.' + ) + if mask.dtype != bool: + raise ValueError(f'mask must have dtype bool. Got: {mask.dtype}.') + + for col, predicate in predicate_by_col.items(): + if self[col].ndim > 1: + raise ValueError( + f'Cannot filter by column {col} with more than 1 dimension.' + ) + + callable_predicates = [] + if not callable(predicate): + if isinstance(predicate, Iterable) and not isinstance(predicate, str): + target_vals = predicate + else: + target_vals = [predicate] + for target_val in target_vals: + callable_predicates.append(lambda x, target=target_val: x == target) + else: + callable_predicates.append(predicate) + + field_mask = np.zeros_like(mask) + for callable_predicate in callable_predicates: + if not apply_per_element: + callable_predicate = typing.cast( + Callable[[np.ndarray], bool], callable_predicate + ) + predicate_result = callable_predicate(self.get_column(col)) + else: + predicate_result = np.array( + [callable_predicate(elem) for elem in self.get_column(col)] + ) + np.logical_or(field_mask, predicate_result, out=field_mask) + np.logical_and(mask, field_mask, out=mask) # Update in-place. + return mask + + def filter( + self, + mask: np.ndarray | None = None, + *, + apply_per_element: bool = False, + invert: bool = False, + **predicate_by_col: FilterPredicate, + ) -> Self: + """Filters the table using mask and/or predicates and returns a new table. + + Predicates can be either: + 1. A constant value, e.g. `'CA'`. In this case then only rows that match + this value for the given column are retained. + 2. A (non-string) iterable e.g. `('A', 'B')`. In this + case then rows are retained if they match any of the provided values for + the given column. + 3. A boolean function e.g. `lambda b_fac: b_fac < 100.0`. + In this case then only rows that evaluate to `True` are retained. By + default this function's parameter is expected to be an array, unless + `apply_per_element=True`. + + Args: + mask: An optional boolean NumPy array with length equal to the table size. + If provided then this will be combined with the other predicates so that + a row is included if it is masked-in *and* matches all the predicates. + apply_per_element: Whether apply predicates to each element in the column + individually, or to pass the whole column array to the predicate. + invert: If True then the returned table will contain exactly those rows + that would be removed if this was `False`. + **predicate_by_col: A mapping from column name to a predicate. Filtered + columns must be 1D arrays. If multiple columns are provided as keyword + arguments then each predicate is applied and the results are combined + using a boolean AND operation, so an atom is only retained if it passes + all predicates. + + Returns: + A new table with the desired rows retained (or filtered out if + `invert=True`). + + Raises: + ValueError: If mask is provided and is not a bool array with shape + `(num_atoms,)`. + """ + filter_mask = self.make_filter_mask( + mask, apply_per_element=apply_per_element, **predicate_by_col + ) + if filter_mask is None: + # No mask or predicate was specified, so we can return early. + if not invert: + return self + else: + return self[np.array((), dtype=np.int64)] + else: + return self[~filter_mask if invert else filter_mask] + + def _validate_keys_are_column_names(self, keys: Collection[str]) -> None: + """Raises an error if any of the keys are not column names.""" + if mismatches := set(keys) - set(self.columns): + raise ValueError(f'Invalid column names: {sorted(mismatches)}.') + + def copy_and_update(self, **new_column_by_column_name: np.ndarray) -> Self: + """Returns a copy of this table with the specified changes applied. + + Args: + **new_column_by_column_name: New values for the specified columns. + + Raises: + ValueError: If a specified column name is not a column in this table. + """ + self._validate_keys_are_column_names(new_column_by_column_name) + return dataclasses.replace(self, **new_column_by_column_name) + + def copy_and_remap( + self, **mapping_by_col: Mapping[TableEntry, TableEntry] + ) -> Self: + """Returns a copy of the table with the specified columns remapped. + + Args: + **mapping_by_col: Each kwarg key should be the name of one of this table's + columns, and each value should be a mapping. The values in the column + will be looked up in the mapping and replaced with the result if one is + found. + + Raises: + ValueError: If a specified column name is not a column in this table. + """ + self._validate_keys_are_column_names(mapping_by_col) + if not self.size: + return self + remapped_cols = {} + for column_name, mapping in mapping_by_col.items(): + col_arr = self.get_column(column_name) + if col_arr.dtype == object: + remapped = string_array.remap(col_arr, mapping) + else: + remapped = np.vectorize(lambda x: mapping.get(x, x))(col_arr) # pylint: disable=cell-var-from-loop + remapped_cols[column_name] = remapped + return self.copy_and_update(**remapped_cols) + + +class RenamedTableView: + """View of a table with renamed column names.""" + + def __init__(self, table: Table, column_name_map: Mapping[str, str]): + self._table = table + self._column_name_map = column_name_map + + def get_row_by_key( + self, + key: int, + column_name_map: Mapping[str, str] | None = None, + ) -> Mapping[str, Any]: + del column_name_map + return self._table.get_row_by_key( + key, column_name_map=self._column_name_map + ) + + +_DatabaseT = TypeVar('_DatabaseT', bound='Database') + + +class Database(abc.ABC): + """Relational database base class.""" + + @property + @abc.abstractmethod + def tables(self) -> Collection[str]: + """The names of the tables in this database.""" + + @abc.abstractmethod + def get_table(self, table_name: str) -> Table: + """Gets the table with the given name.""" + + @property + @abc.abstractmethod + def foreign_keys(self) -> Mapping[str, Collection[tuple[str, str]]]: + """Describes the relationship between keys in the database. + + Returns: + A map from table names to pairs of `(column_name, foreign_table_name)` + where `column_name` is a column containing foreign keys in the table named + by the key, and the `foreign_table_name` is the name of the table that + those foreign keys refer to. + """ + + @abc.abstractmethod + def copy_and_update( + self: _DatabaseT, + **new_field_by_field_name: ..., + ) -> _DatabaseT: + """Returns a copy of this database with the specified changes applied.""" + + +def table_dependency_order(db: Database) -> Iterable[str]: + """Yields the names of the tables in the database in dependency order. + + This order guarantees that a table appears after all other tables that + it refers to using foreign keys. Specifically A < B implies that A contains + no column that refers to B.key as a foreign key. + + Args: + db: The database that defines the table names and foreign keys. + """ + connections: dict[str, set[str]] = {} + for table_name in db.tables: + connection_set = set() + for _, foreign_table in db.foreign_keys.get(table_name, ()): + connection_set.add(foreign_table) + connections[table_name] = connection_set + yield from graphlib.TopologicalSorter(connections).static_order() + + +def concat_databases(dbs: Sequence[_DatabaseT]) -> _DatabaseT: + """Concatenates the tables across a sequence of databases. + + Args: + dbs: A non-empty sequence of database instances of the same type. + + Returns: + A new database containing the concatenated tables from the input databases. + + Raises: + ValueError: If `dbs` is empty or `dbs` contains different Database + types. + """ + if not dbs: + raise ValueError('Need at least one value to concatenate.') + distinct_db_types = {type(db) for db in dbs} + if len(distinct_db_types) > 1: + raise ValueError( + f'All `dbs` must be of the same type, got: {distinct_db_types}' + ) + + first_db, *other_dbs = dbs + concatted_tables: dict[str, Table] = {} + key_offsets: dict[str, list[int]] = {} + for table_name in table_dependency_order(first_db): + first_table = first_db.get_table(table_name) + columns: dict[str, list[np.ndarray]] = { + column_name: [first_table.get_column(column_name)] + for column_name in first_table.columns + } + key_offsets[table_name] = [ + first_table.key.max() + 1 if first_table.size else 0 + ] + + for prev_index, db in enumerate(other_dbs): + table = db.get_table(table_name) + for col_name in table.columns: + columns[col_name].append(table.get_column(col_name)) + key_offset = key_offsets[table_name][prev_index] + offset_key = table.key + key_offset + columns['key'][-1] = offset_key + if table.size: + key_offsets[table_name].append(offset_key.max() + 1) + else: + key_offsets[table_name].append(key_offsets[table_name][prev_index]) + for fkey_col_name, foreign_table_name in first_db.foreign_keys.get( + table_name, [] + ): + fkey_columns = columns[fkey_col_name] + fkey_columns[-1] = ( + fkey_columns[-1] + key_offsets[foreign_table_name][prev_index] + ) + + concatted_columns = { + column_name: np.concatenate(values, axis=-1) + for column_name, values in columns.items() + } + concatted_tables[table_name] = (type(first_table))(**concatted_columns) + return first_db.copy_and_update(**concatted_tables) diff --git a/flax_model/alphafold3/structure/test_utils.py b/flax_model/alphafold3/structure/test_utils.py new file mode 100644 index 0000000000000000000000000000000000000000..524899f68f4a82e076862f9754872df9c634e672 --- /dev/null +++ b/flax_model/alphafold3/structure/test_utils.py @@ -0,0 +1,161 @@ + + +"""Utilities for structure module testing.""" + +import dataclasses + +from absl.testing import parameterized +from flax_model.alphafold3 import structure +from flax_model.alphafold3.common.testing import data +import numpy as np +import tree + + +class StructureTestCase(parameterized.TestCase): + """Testing utilities for working with structure.Structure.""" + + def assertAuthorNamingSchemeEqual(self, ans1, ans2): # pylint: disable=invalid-name + """Walks naming scheme, making sure all elements are equal.""" + if ans1 is None or ans2 is None: + self.assertIsNone(ans1) + self.assertIsNone(ans2) + return + flat_ans1 = dict(tree.flatten_with_path(dataclasses.asdict(ans1))) + flat_ans2 = dict(tree.flatten_with_path(dataclasses.asdict(ans2))) + for k, v in flat_ans1.items(): + self.assertEqual(v, flat_ans2[k], msg=str(k)) + for k, v in flat_ans2.items(): + self.assertEqual(v, flat_ans1[k], msg=str(k)) + + def assertAllResiduesEqual(self, all_res1, all_res2): # pylint: disable=invalid-name + """Walks all residues, making sure alll elements are equal.""" + if all_res1 is None or all_res2 is None: + self.assertIsNone(all_res1) + self.assertIsNone(all_res2) + return + self.assertSameElements(all_res1.keys(), all_res2.keys()) + for chain_id, chain_res in all_res1.items(): + self.assertSequenceEqual(chain_res, all_res2[chain_id], msg=chain_id) + + def assertBioassemblyDataEqual(self, data1, data2): # pylint: disable=invalid-name + if data1 is None or data2 is None: + self.assertIsNone(data1) + self.assertIsNone(data2) + return + self.assertDictEqual(data1.to_mmcif_dict(), data2.to_mmcif_dict()) + + def assertChemicalComponentsDataEqual( # pylint: disable=invalid-name + self, + data1, + data2, + allow_chem_comp_data_extension, + ): + """Checks whether two ChemicalComponentData objects are considered equal.""" + if data1 is None or data2 is None: + self.assertIsNone(data1) + self.assertIsNone(data2) + return + if (not allow_chem_comp_data_extension) or ( + data1.chem_comp.keys() ^ data2.chem_comp.keys() + ): + self.assertDictEqual(data1.chem_comp, data2.chem_comp) + else: + mismatching_values = [] + for component_id in data1.chem_comp: + found = data1.chem_comp[component_id] + expected = data2.chem_comp[component_id] + if not found.extends(expected): + mismatching_values.append((component_id, expected, found)) + + if mismatching_values: + mismatch_err_msgs = '\n'.join( + f'{component_id}: {expected} or its extension expected,' + f' but {found} found.' + for component_id, expected, found in mismatching_values + ) + self.fail( + f'Mismatching values for `_chem_comp` table: {mismatch_err_msgs}', + ) + + def assertBondsEqual(self, bonds1, bonds2, atom_key1, atom_key2): # pylint: disable=invalid-name + """Checks whether two Bonds objects are considered equal.""" + # An empty bonds table is functionally equivalent to an empty bonds table. + # NB: this can only ever be None in structure v1. + if bonds1 is None or not bonds1.size or bonds2 is None or not bonds2.size: + self.assertTrue(bonds1 is None or not bonds1.size, msg=f'{bonds1=}') + self.assertTrue(bonds2 is None or not bonds2.size, msg=f'{bonds2=}') + return + + ptnr1_indices1, ptnr2_indices1 = bonds1.get_atom_indices(atom_key1) + ptnr1_indices2, ptnr2_indices2 = bonds2.get_atom_indices(atom_key2) + np.testing.assert_array_equal(ptnr1_indices1, ptnr1_indices2) + np.testing.assert_array_equal(ptnr2_indices1, ptnr2_indices2) + np.testing.assert_array_equal(bonds1.type, bonds2.type) + np.testing.assert_array_equal(bonds1.role, bonds2.role) + + def assertStructuresEqual( # pylint: disable=invalid-name + self, + struc1, + struc2, + *, + ignore_fields=None, + allow_chem_comp_data_extension=False, + atol=0, + ): + """Checks whether two Structure objects could be considered equal. + + Args: + struc1: First Structure object. + struc2: Second Structure object. + ignore_fields: Fields not taken into account during comparison. + allow_chem_comp_data_extension: Whether to allow data of `_chem_comp` + table to differ if `struc2` is missing some fields, but `struc1` has + specific values for them. + atol: Absolute tolerance for floating point comparisons (in + np.testing.assert_allclose). + """ + for field in sorted(structure.GLOBAL_FIELDS): + if ignore_fields and field in ignore_fields: + continue + if field == 'author_naming_scheme': + self.assertAuthorNamingSchemeEqual(struc1[field], struc2[field]) + elif field == 'all_residues': + self.assertAllResiduesEqual(struc1[field], struc2[field]) + elif field == 'bioassembly_data': + self.assertBioassemblyDataEqual(struc1[field], struc2[field]) + elif field == 'chemical_components_data': + self.assertChemicalComponentsDataEqual( + struc1[field], struc2[field], allow_chem_comp_data_extension + ) + elif field == 'bonds': + self.assertBondsEqual( + struc1.bonds, struc2.bonds, struc1.atom_key, struc2.atom_key + ) + else: + self.assertEqual(struc1[field], struc2[field], msg=field) + + # The chain order within a structure is arbitrary so in order to + # directly compare arrays we first align struc1 to struc2 and check that + # the number of atoms doesn't change. + num_atoms = struc1.num_atoms + self.assertEqual(struc2.num_atoms, num_atoms) + struc1 = struc1.order_and_drop_atoms_to_match(struc2) + self.assertEqual(struc1.num_atoms, num_atoms) + + for field in sorted(structure.ARRAY_FIELDS): + if field == 'atom_key': + # atom_key has no external meaning, so it doesn't matter whether it + # differs between two structures. + continue + if ignore_fields and field in ignore_fields: + continue + self.assertEqual(struc1[field] is None, struc2[field] is None, msg=field) + + if np.issubdtype(struc1[field].dtype, np.inexact): + np.testing.assert_allclose( + struc1[field], struc2[field], err_msg=field, atol=atol + ) + else: + np.testing.assert_array_equal( + struc1[field], struc2[field], err_msg=field + ) diff --git a/flax_model/alphafold3/test_data/__init__.py b/flax_model/alphafold3/test_data/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/test_data/featurised_example.json b/flax_model/alphafold3/test_data/featurised_example.json new file mode 100644 index 0000000000000000000000000000000000000000..257fa69478f21202bd2c7d93abe984b411c46bf9 --- /dev/null +++ b/flax_model/alphafold3/test_data/featurised_example.json @@ -0,0 +1,68 @@ +[ + { + "aatype": "46551530df4e79371352989100ae6af82ccd939009517b788173bdbb323ae40a", + "asym_id": "42c714885d17f6c0fcfebebd171b5ed7d7e77a56cf9c4983d9ff9ff90995bd1c", + "cleaned_struc": "<>", + "deletion_matrix": "54f980b5b3be8ce80cb6490c527e38d681deade50f239f2cb7d23cf9d0108c37", + "deletion_mean": "655a3ef0465a9f30fddf25f4dde0c19a05c6f9069b83961800c1944165955273", + "empty_output_struc": "<>", + "entity_id": "42c714885d17f6c0fcfebebd171b5ed7d7e77a56cf9c4983d9ff9ff90995bd1c", + "flat_output_layout": "<>", + "frames_mask": "e8a48532fba32c318f7d809fae3ea0999baa01376b29d94ef3c27d82f12f6a90", + "is_dna": "1d83518b897b14e2943990eff655838246cc0207a7c95a5f3dfccc2e395f8bbf", + "is_ligand": "cfa4e080dc2885de94224db5075c2feb0805567d31e8898abdebaebc6646ce12", + "is_nonstandard_polymer_chain": "1d83518b897b14e2943990eff655838246cc0207a7c95a5f3dfccc2e395f8bbf", + "is_protein": "569b0e93b5f77c1a9d430b643f29e600c7db6f44ded72b96ab1dd25351d26075", + "is_rna": "1d83518b897b14e2943990eff655838246cc0207a7c95a5f3dfccc2e395f8bbf", + "is_water": "1d83518b897b14e2943990eff655838246cc0207a7c95a5f3dfccc2e395f8bbf", + "ligand_ligand_bonds": "<>", + "msa": "871c93669d8a7dd046f8ba6a1ea7b9fc52e1a2e040c8d9bdc4ae73a77f95d3f7", + "msa_mask": "13a46a8a2c5305d2a07bb9587ad092d97749d2b2a2d10ad5d64474a4f0f4c803", + "num_alignments": "26b25d457597a7b0463f9620f666dd10aa2c4373a505967c7c8d70922a2d6ece", + "polymer_ligand_bonds": "<>", + "pred_dense_atom_mask": "1e388e40167a4d31291903d74c98544868d0dc574706cdfd259ddd65f56d2993", + "profile": "6ec7da33d5f9801357ca6c82725416ef59025c7a8810bfd67fed2262845b480b", + "queries_to_keys:gather_idxs": "e0a2fd867fbae573b5613a98ee037eeb575cc5aa3285db2fe5158cda0e8c49cd", + "queries_to_keys:gather_mask": "7ddcbfda2904f013d9ab73c55517ac933ecb3dbfbfab9bb351ee43b5fd66e54e", + "queries_to_keys:input_shape": "cf801b14d3da833c486e3d73e355c3c2068523012b42c2b17decc45dbd8b9972", + "queries_to_token_atoms:gather_idxs": "3c2d0028564167c93b2f33e877974d45756c1e2e8934270c024fc5f1e85fcf14", + "queries_to_token_atoms:gather_mask": "1e388e40167a4d31291903d74c98544868d0dc574706cdfd259ddd65f56d2993", + "queries_to_token_atoms:input_shape": "cf801b14d3da833c486e3d73e355c3c2068523012b42c2b17decc45dbd8b9972", + "ref_atom_name_chars": "043f3242ff4dff04fd36699ccefdff718c57c325f72c71f33f4c4774e75a64dc", + "ref_charge": "27898ee238963105942db19f27a980c1fe4f7aeb396c1e5ea4e82da3876deef4", + "ref_element": "cc437747adeea094daf8a0e551be02f406c7e7d9b0a9328a84a59d907c5492b5", + "ref_mask": "1e388e40167a4d31291903d74c98544868d0dc574706cdfd259ddd65f56d2993", + "ref_space_uid": "97afd7d9d3ba835731457ef090ba4939d707bb2a270d48fde56369bde8e58e9f", + "residue_center_index": "dfef3704f73a7ee9a3be86b74e25ecd43e056c76574bc9bb65b6b446eeed87a7", + "residue_index": "6bf4ea803d0fcd31446e07f6ba9e012f794ced1fe5ad60b7181f66bb92601638", + "seq_length": "5a667734987b65ef5c4d07bf176148504bcf8378a5a1a0e23a7fa2c1121cc143", + "seq_mask": "a795c048f28bc4307f8599dc5140fe6e971bce6a34a0349b6c18d6cbb197f75f", + "sym_id": "5f170600b904a3464c72817993120957c1ce2eec8c2421af02d4912b5e8d8372", + "template_aatype": "6c5c3e7a5e23f064f1e8791f61bde8fb59ccf837095144b29e6c8e1607081398", + "template_atom_mask": "8a282b7476e13f6de5afbb52c14ea7baa3434281ed77b542bb790287e8c92e82", + "template_atom_positions": "b032ac0c813748a81b8d50ce94487c66510a177ad25e84581c7ea5f4b524987f", + "token_atoms_layout": "<>", + "token_atoms_to_polymer_ligand_bonds:gather_idxs": "a0ee989ed2a0a2e3626520afa4032e06144865c8c8f6357293c9f4cd2069eaf2", + "token_atoms_to_polymer_ligand_bonds:gather_mask": "d13d4a8b3b8add19b5970157f09d00c12cbda4fed4d74d8493156523f7069b66", + "token_atoms_to_polymer_ligand_bonds:input_shape": "6ed5c8b9711af5b9c7c3d98ba048bed4dfe5974be758f1a632abd746b8278ed2", + "token_atoms_to_pseudo_beta:gather_idxs": "3fd8de4dd02450c6e249f33de9c6573694f7991e6a36528d6f32b6c6334a4d4f", + "token_atoms_to_pseudo_beta:gather_mask": "a795c048f28bc4307f8599dc5140fe6e971bce6a34a0349b6c18d6cbb197f75f", + "token_atoms_to_pseudo_beta:input_shape": "6ed5c8b9711af5b9c7c3d98ba048bed4dfe5974be758f1a632abd746b8278ed2", + "token_atoms_to_queries:gather_idxs": "50a1708678bb3d848be6fb49816196b13fcac36891817dac585f4a7556a8310e", + "token_atoms_to_queries:gather_mask": "3f4ac4f311cea0c7f6b8464e225815b791a767c9a8d15f9c7fb488c49f674fa9", + "token_atoms_to_queries:input_shape": "6ed5c8b9711af5b9c7c3d98ba048bed4dfe5974be758f1a632abd746b8278ed2", + "token_index": "77627a5d3856b90a27ae1f5bf5aa14754743c03c00a97bab68f4e7961a405454", + "tokens_to_keys:gather_idxs": "bc16a2a2b81bdbb3fb3ff180d984704b201866a7cdc373fb345a9be417aa246e", + "tokens_to_keys:gather_mask": "7ddcbfda2904f013d9ab73c55517ac933ecb3dbfbfab9bb351ee43b5fd66e54e", + "tokens_to_keys:input_shape": "5545412ee9a21a04712910d53fc1447c73ff94a29ddd1268131b4ed30d1dbe07", + "tokens_to_ligand_ligand_bonds:gather_idxs": "bac3003591bd8ef44d85b82cd4d23191d48496c1992e61d3fca2a37e6ddd34ea", + "tokens_to_ligand_ligand_bonds:gather_mask": "4d33ec9784aaf54079b4445118c1be26b4a5555e1d6034ccc4182defd86f2068", + "tokens_to_ligand_ligand_bonds:input_shape": "5545412ee9a21a04712910d53fc1447c73ff94a29ddd1268131b4ed30d1dbe07", + "tokens_to_polymer_ligand_bonds:gather_idxs": "a0ee989ed2a0a2e3626520afa4032e06144865c8c8f6357293c9f4cd2069eaf2", + "tokens_to_polymer_ligand_bonds:gather_mask": "d13d4a8b3b8add19b5970157f09d00c12cbda4fed4d74d8493156523f7069b66", + "tokens_to_polymer_ligand_bonds:input_shape": "5545412ee9a21a04712910d53fc1447c73ff94a29ddd1268131b4ed30d1dbe07", + "tokens_to_queries:gather_idxs": "f82b61cc7f007a744fc9186107647ff333b598642a681b046d61aef4994931e1", + "tokens_to_queries:gather_mask": "3f4ac4f311cea0c7f6b8464e225815b791a767c9a8d15f9c7fb488c49f674fa9", + "tokens_to_queries:input_shape": "5545412ee9a21a04712910d53fc1447c73ff94a29ddd1268131b4ed30d1dbe07" + } +] \ No newline at end of file diff --git a/flax_model/alphafold3/test_data/miniature_databases/__init__.py b/flax_model/alphafold3/test_data/miniature_databases/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/test_data/miniature_databases/bfd-first_non_consensus_sequences__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/bfd-first_non_consensus_sequences__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..98c1e3d93365a662dcfc9950ff465f012f8b0a87 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/bfd-first_non_consensus_sequences__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>SRR5689334_7619591 +TFRYLCRQMERRLDGRPTLVVIDEAWTKIRKQPEWLEESLRTLRKKNCAVVLATQSLSEVVESPIASVVFESCQTRLLLPNPEARTPAIRALYTQRLGLTEPQVDALASVAPKRWYMYVGGGRTRLFTLDLGPVALAFVGASGRVDVAQIDALHRR +>SRR5262249_54877602 +WRLEHPAVREAEVVKRLVNGREAVTAVVVSDSGVSPAELCAHLGRTLPAWMIPRQFEFVGELPRTTSGKVDYPRLRSSPSHLVGEGGSRSESGEGYFMAGTPEAILAEIWSAVLGRPADPDAGFFDQGGDSLGVLQVVAGAHARGVTVPPELVAEGRSLRDIAAVLPTVDHSVAPGALTGSELEYDTAAVLDGWPSPSARRRPAGPAX +>SRR3546814_5789022 +IVCLFYVSSCCFLFVYVFFFKQKTAYEMRISDWSSDVCSSDLTPAQIDRSFHRNTAHQVTRPAATHRRNTLAANPELLAGLRALGDFQLHATVEGRDLKLTAQGLINETDRHFAEQMLEIGRAHVX +>B9TJ46_RICCO 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+XIGEDTAEMATTTKEAVVATHIFSHYTARPDERSEAEPLQRLMHYPAMRLIPILILCALSGCSLFGADFDDLDPGTFRMKADGKEMSGQATYYPERDLASQEPLVFLESDEGDFMFIRSEAFLNAISGQSVTPRASYRPLTGGVFTRRSGRVEX +>ERR1035437_2281458 +IDEEYGTGPGGLSGNEDAGQMSAWLVLSMMGFYPVCPGKPEYVIGTPAFDEVQIKTGIKAKPFIIKAIHNSSKIQEFKSVTLNGLPLEGSIIQQIGRASCRERVXX +>SRR6266478_5987559 +GGETAPGWSQFKFCRSSRTVIGWDHTGPRGAAARWGWTDPGAKGPPSTPKPPVYYVGCSSLNSAPQIGGAVSYRGGPIDRRRVLFRYFAMIAGLNVPTKLSNGGSRHGRRCLAEQGGRILGEGTCDQRSTTCSASSRAGAQLSQVCX +>JI10StandDraft_1071094.scaffolds.fasta_scaffold2749928_1 +MILVSGLPATGKTTFSEWLSSEICIPLLSRDRVLEKYVEIAKVHCEYEEQRGNVADNIPAVFLGHSIPALLFWFFCEEIMKSSSALIIETVFTNQMKETIGNLIEKYKYQTVNVHLDASVEIKRHRINERSPNKKISLENLKKAHESEKIKDAKNFRYGNCIIYVDTTDFSMVSYKDISEQIRQFILRNVX +>SRR3989344_2742104 +RSTFGPRFNIATKQDEREQGGRRFPERMIDVEKEKADRTIEISRRSAENHQNIHVGHANTKGGESVTIEWPSNNKLNRGGQHPVNIVQIQTPNFMHMFQIKHVNEHIINNDRGRNDEGKENAATSLFDLLHLFLLFFLKCPAFLLRPDQIVTQLIDELINFLKRDHRFVKLESHLLGAITSARLNHPRLLPHQLINQDRAGGAMHALNFKYEFGHCVX +>ERR1700722_7849674 +STRAALTHWAQCLAFLSPPSVYQVSSNSAGRSSSNPCSMARPWSSLSRWQALRSEGAVSCDRFARSTIRVRKRIAGGHNGVFARSPRSAAIGPSPKCRTPRLRSRTARQQLIGRIRMSRFYMIGGGLLASAAIAGLHAGVAQAADDEFMKMAKDYIAQASAPVTTWDGPTTGPKAQGKKVVIYVSADQKNGGASGVGDGVPEAAKAIGWDFRILDGQGSVPARSSALTQAIALKPDGIILGTIDAAEQAPIVEQAIAAGIKVVGWHAGPGPGKIEAVPGVFTNITTDPNEVAKASGLYAVVDSGGTAGVILFTDSIYAIATAKTNAEKAAVEGCTGCKVLSIEDTPIGDLSNRMGQLTTSLLAKYGKAWTYSIGVNDLYFDFAAPSLQSAGVDPATGYPRNIAAGDGSVPAFQRIREKQYQIATVAEPLHLHGWQCIDEMNRALAGQPPSGYVAHVHLFIKANIDKDGGAQNIFDPDNDYKGHYKKIWGGMX +>GraSoiStandDraft_35_1057300.scaffolds.fasta_scaffold1321871_1 +ITAQTGSFAGIVHVATEAGGLETGQKISIGREVSASHDGIWINRFNYWFTTADFRVGDATNYIQVTGSGGNFGNDTRIKMDTFTLEAGNLDINSTDETIRLGSVTDFAKDGSAKGILMGKESSGNYDFFVGKEDGNYIHWDDSDNSLKVVGTIEIGSAGSFTPDTATQNQLAALNATTGSLSSETGSLQNATASLYTSASAQYLTGSILRQDSGSMATQVTLANDGMTLNQADGTNLASYGSTIRIGKSGEGRVEITDTALDMYDGAGSPVSRVNLNSSGQLTLGKSSDNRVQITDTSFKLYEGSNERINITSTGVQILEDGNNFTEVSASGLSIHAGGQPKAYFTDKWTTLSNDARSQKENSVQIWNGGGIGIYRDANNYASMSADGMKLYQGGSHVATFGQDVYLGEVGSSKRNIFIDADAGIKIRNNTTTIAEFGEDAIIGEVGSNKRNILIDADDGISIRDNTTVKAKFDTDVILGEVGSSKRNILIDADDGISIRDNTTVKAKFDTDIVLGEVGSSKRNILIDA +>SRR5271165_1503329 +APRSPGTTSSWTGCLATPPGRCSSASFARYPGRVGIEPATSPEGEEQATLAEPAASSRKLERSSGRLSDLPSGESTGSRITSVITPRETLHLQEINRTRIFTVMVVALSAFVLATLTVIGGDPMAKRVFAFALLAIASSCGWLRWELRRDEGYTVERATSVAYISIFCAFTGIWFFGVFSPAPMILPFGIAFFSVGQSQRAVFGTYITCAILQAGLMLAVLGGVLPDQGLIRSSGLAPLEQ +>SRR5258708_2540147 +LQVPGHALPHAGVGAQPVEQKQRRPPVGLGRPPLQPLQTHARAFDPTLSHERIVWEAGRRNAPQWPATTGSPAPWAGAGARCRRLMARQLAAPIASATTGTSSVGRIASMNALANTSCAIRAICSATWGGRPARWPAAELLDAPTSRPLLPALLKPSMKRWRAAAGTVLGSWAAYWMAWLWRVTPSWFCSPPPVIAPPIPPP +>A0A0R1K2P3_9LACO +MLRERFDKGEKKMSLRVLLVCGTGASSSFMAVSMRKAVQQLGLDYKIQARSESELENYLDEVDVIMVGPHLSFMEEEIKKSIGGRKIKVILMNPAYYAVLDGKKALDHLQSELDYKEEDSNK +>A0A2A4RMB9_9BACT +MNPDLKVYDTQIMIDGKTENIRTGMSCKATILIEDHEDTLFVPLQAVVGKAGETVVYVVNGKTSEARVVETGLDNNAMVHIISGINAGDKVLLTPPLGDDLFSASSKPKDAQAKGKPKGERQGKPQRGSSSQGMPKGKRP +>ERR1719320_184571 +QSCLTSLHTNHSYTPGITNSWIMEEALLRKKAKKLRLFTFWVENHAESSSPWLRRALARADSGGKRLLADLERFLEEVEKTGGRRDGTVLCNSEMTGGNDISLIYPWLHISSSLVTINTWVRREESRDIEAAGGSLSSYPCYGSLERHEYLRSSSLRKRKVVQGTYSIVESVVPSQEVLPAGEELCILLGFRTTDDNCVDTVEAETERSGEARTWREWTGIGTLYQNMTQEDSVEVIKVEFMESHIPDHAAVFHYLVLMFLQVTSHRGKLGVLDAVARFRVRNMSGYVTVYSNLSDVTVDDRADDCLGDNLKTLQHSKQEAKKMFFKQEIIQVEQSGRKMEEX +>SRR5215204_6862387 +GIFFFFFIFFVVEKKWNFFFFFFSSRRRHTRSLCDWSSDVCSSDLRHPNSRRRRGKGGPDQSRTRSRAGCRFRALPRCHGLPHRAGSVGRRRAHGLRRCWRPTPSRLRFLLLHQASGEAAKRGMLALLEICTEVPRSSVLRSWAREERVGASFGVSPPPTKGARWTIRKGKX +>ERR1719195_1908659 +RRRTRMLIGEVQIQEWRLAVPSLPTCRLVVVPQSPLADQPVPLPLAARPKRSPRRRPPNQSLTPTLTWAWDFSTKQLKKPLKLFHPNFSTPLLVCLLGSGLQNCILDDSWVEIDLFLHSLKKK +>ERR1719313_113703 +RRAGVRFQRRRALPQQALLLCTLAVVAVVAPYMWESAQRGAASLEYSNAQVSSGGRSLLSAITPHEDSAPCCSTACCKASDGRTDRDSFCAKRLESNGALNLTGTCMKRSTVLKDDQWGPSVALGLRATNASSGMLYCYSHLDCPVGHECKTAVTIQTNVNCSTNSDCSADRVACLTNTLNCTEPKCEGGTLSESGVRTTCRVQSPDSWGVCRVFDVDTEPTCDVSKGGINPRDLFSCTQKRQGALILHLIGIYWMFNALAIVCDDYFVAALEELVERWGISEDVAGATFMAAGGSAPELFTSIVGVFLAQNDVGFGTIVGSAVFNVLLVIGACSVAAGKVLELTWFPLFR +>ERR1719245_442272 +FSLTLRAHLPSTIAAEHTAVSPSSLRVPDSPGSPPGSNKESPSKARKASLQGAGITSKLPLKQLADFAVTLSSPDEKSGGKSFGNIAKPPTPKASSPSESTPFLPAPAPADPSMPLSPTDQLKLRRKRLVHYKSNAARNNNRSDPDSPHNQLLDLESGGGAGVGGFHQRRGSGHSLPGRLLKRTNQMKRRESQALLEQIRKRGSR +>ERR1712194_41197 +HGDAPEHMAIREAVMRTNMDTVHGEMKGSDGDHVLFSPKALLESLGEMGQGISAYVVDAHKKLLVPYVVLEFVSGIPLEIAPLSLGGSLPDEIWPKLGHVCALDILLNNMDRLPLPIFPTLGNLNNIMVQDSGRRAVAIDQQVNTITDDIGLMVYLEKVRTFVRDVARLAGEDSAETDDILGHMRDSLKTRAQTELTESNARLVLQGMWETLKHIAKAWESGDLKAAIDASVLAAGESLVSGVIEKEWSFLEDGVLAPPASCDHGPYQGVVEASAAQLRVVACEISTSVRSAGAFQLGASANGSTLQGTSSARQLADLTSSFVKX +>SRR4051812_43875519 +AHKKGSFDEARQLYKQSEQSARAALDLARSYPPAHFELCRVLHRQALLPGPDVDALFEGAIGACRQATTVDPDDESIVAKAGTALMSAAERDLARGREPSTIDEAQLDVEHAIALNPKRSNSYRNLCDVLLVRAESLSARGRDAGPAFAA +>A0A1V2Q3A6_9PSEU +MQTISRGSVHIEQCENCKGVFLDGGELEQIIAAERAHYAQPYRPEGFPVPPPAPTMAVPVNVGVPVDAAVPVDVGVPVDTGVPVDVGVPVDAPVPADGAVPVEGAVPVDGEQPPPATPAPAPAPTTGPPPPYQPPPGTPMPGTPAAAPPPYQPPPGTVTGPPPPVYPPGYYQPYPHRKRSFLEELLD +>ERR1043166_9773265 +VFFFNGTATTEIYTLSPTRRSSDLKAVSASATSAFRLRNRQRFRAGPDSRRSEEHTSELQSRFGISYADFWLKKKQHENIFDSWWRSGDRVLNHRGSTKFSQPRSEERRVGKECRSRWSPYHX +>SRR4029434_590066 +PLSHSHTHTHTHTLTLTHTHTTHTHSNTHTHTHTHIHTHTHTHSTHTHTHTHTHTHTHTYTHTHTLPTHTHSYTHTHNYPRDGLEPVSQAWFSLLRDICFADSSGWQTGKSSDSHKTHSDEREGLDMRV +>SRR5690554_368104 +XMELKKKVPEVRFKGFSGEWEEKELGKLFDITSASRVHKNEWTESGIPFFRSSDVVADYKGQENIKAFISYELYKELSSKTGCVQKNDILVTGGGSIGIPYLVKNDEPLYFKDADLLWLKNGNIINGNFLYTFFSTLGFRRYVNSITHIGTISHYTVEQAKLTPFKVPVRAEQDKIGDYLLKLDQLISLHQKKYNKLTNIKKAMLEKMFPKNGADVPEIRFEGFEGKWEEKKLNQVSEIIGGGTPSTIIPEFWDGDIDWYSPTEIGDKVYAEGSVKKITALGLENSSAKILPANNTVLFTSRAGIGDMAILRKDGATNQGFQSFVIKEDNDPYFVYSKGHLIKDYALKHASGSTFLEVSGKQLGNMNFSIPIALEQSRIGTWFQHLDQLITLHQKKYNKLTNIKKAMLEKMFPKNGSDVPEIRFEGFEGKWEEKKLGDFTNFRRGSFPQPYGNKEWYDGKGAMPFVQVVDVSDNLLLVNDTKQKISKLAQIRSVFVEKGKVIVTLQGSIGRVAITQYNAYVDRTILIFEGYENKTDSRFWAYTIQKIFEIEKMKAPGGTIKTITKEALSVFIVKLPVFEEQRSIGTYFQKLDHLISLQQTQIDKLKNIKKACLEKMFVX +>ERR1700679_1367360 +KLLSYILLTHLFSIWMNEAQTAINVKPGRGTQAGKNPAVRILFYRLCRLLTLPIIPVFVFDGPDCPKMKRGVNVKTGKSHWLSSPFKKFIEVFGFSWYMVSFTSCDLGFPFKYL +>SRR3954454_14908726 +YRLRRTPEYPAPARRAARLQLSERPARGGGRARSRCVPDLIVAGLARGERRKGTAVRLEVDQGRAVETIEATHEHTLAFDPHQPDKLRPDRIGPHGCAQRKGPTRDAVIAGALPDEVAARQVQPVEHLQALVFRDPIERCDPGLEHLDPAGRTIRTALAWARQTIDPGRVDPADEHEPGVGRRWRLYRHLAGADLVLPDHAARLYWSTATITSEVFTTAX +>SRR5436190_15766111 +XMPPATRTELNARKLFRTRCAKNTSTPPATRPINVRPVSLIRPLPMAYCMSNPMPITSTAIPILLIRFSPMNFSRSGWRSKNEGRGGGGGVRSGGGCATNGGGVLAAVTGARTTVGAGCGGTSRTGSWIASFSAVGGLKTGGVTAGGEGTGGGAALDAPSAMDDGPDRNRSASFSMLWRVLVSSRDTLPSRANRTIINTMIAIGTSASRTKYSSIQPGFWKQSTHEAAHRSGRMQDRRLAPSIFQGYLPSICTGCRIRVRQDSRGGGGPFLPPX +>SRR6266540_2703125 +GRDAPERRAAARLAHARAGPQADRRAQGRAREGEDRGEAPVPARRAAVEALQARGGAEGRREDPRGARDGGGGAGGRRGGGEDRREARRRRGEARRVRRGDRKARGGAGQGRRGARGARGGGRGGRAEALLGGPALLGRGRRWARRRGGGPPRRVAPVGPPLPRAARHARLRLGRVGRAALGRRARGLGADRAAPARRGRMGEEGRGALRARLSRDPRGREGARRLEAGGAEGGGRPRRRRGCGRGRVAEPARRMGARARCAGRARREGEGGGRAAGRRDAPRLRGRRVRARRPLDRFGAPAARGGRGGPRGAGRPRRRAPGAGASTARGRSAPDAARARRGRTRREPHGRGPRRGAEGVPGALRPLVPAAAGGAGGRPRQRAGPDRRPTRPGDDPRARGPRSRLHRAQALVRRAGPRRREGDRDRGGRVRRPLGGGAALRGAAPQADREAGATPPRDDRSVVPGGGGPRRLIVAEGPRDGGRRARGREAEALAAAFLEERGYRILARNHALRRGEVDLVCETGGLLCFVEVRSRTGDAHGGPEETVDRRKARRVVLAATDWAERNGGSGRNIRFDVVAVTFGESAPRVVHFPA +>SRR3984957_4909703 +TNAAIRRRRVKPRFLKVGNAVFAWGLDRRRMGRLINSYFRAAGQLDGCFDSPSFLLRRRTLYAFSLQRFYERGQVVAHEVEVRSRQLVSAVKLTSLAVGRVDRGLGRWQRKEQPTSAGVDSAKIENITKESTVGLRVVAVEEDVSASDSGNHDDSENTILKTPRIVRPGRRRAFEEFPSGGRLSNAGVFVIRRSVLELLPFTSIYRFRGIDRLIVDLFIDDFSGFVDQESCTPRRFHRNSLNVELLGQSITACYWAPPVPENRGGHSILLGKCEVREGAVHAHTQHLGVGAFQLGQILLESLHFAGSTTGESKDKKCQGDIFLSPIVLQX +>SRR5579862_538352 +XMVVSYPKLTPKARNAGDLGVPYARVKGLSRQARAGIAGPVLARWRAPPWPLRLRFRLRSVVYRIWYTRWVTRMAMNAKKNRGRVDHGGSSFDSFLEQEGIREEVEVEAVAVKRVLARQLQRAMQKQQKTKQAMAKQLRTSRSQLDRLLDPGNASVTLDTIARAARALGKRLIIRVADAKAEKRAX +>SRR5262249_1788368 +ALGQWPGETAQHQALTLAQLRRRRAPPPPWRRFERGDPLFQDAGIRAAVDDRPRLGDGCGGPITIAQRLQHLGLLEQAERANRRLAESAERLETAVDVVSSRGHVPAHQLGDRSGKMDLAVDALDTALASELHRLLREQGLVLPPPLLAGDE +>SRR5438270_12444290 +RNEGLSPHDSQLLCTRKLRTQPLSILFFRFISRVIIAEFAFDPYICLCYKYRSATREYSRSRTLLSSSMAEHSAVNRRVVGSSPTSGAKFINDFQHLPPITSPNCLQILRFRREPPDIAPLQTQPLNHRSPAIEYRVGVRVDRAHDARLDHLHVDIACRRDAGVAX +>SRR6476620_8373323 +GPLPVSSSVAADSTLPTTRFTRWWLSSSIGPFGGTPTCQNPTRPGASWTVVNGPAVSTSKADVSGEPSSTGGTGRRRPGSGATSVIGSGHLGRVVAEDDHAHRRRIEAVARVVDLRAVRDEDDHVALGPDVEVQAGRRDAVDDAERAIGADG +>G7IQB2_MEDTR +MEGEEGGGVRLSKRFNDDKGGGEVDYKTKSGTAWSHNFLNQKPWHPLSYPNQRRKWIAEQTHAQRERRTEEVAREYAQEQEFYRTTSLISKKDKEKVELMQAVSFMYVRPPGYNPESAKAAELNDEKKKEDTVNNEPTQTNPDGPSSLPPHGEKKKPRPKDVFGRALPTEEEFEVLKNAPRHETGVAARAKPFGVEIRNVKCLRCGNYGHQSGDRECPLKDAIMPNEENRLKRDDPLNAILAHTDLTEPLKWELKQKPGISPPRGGFKPDDPNQQIVAEEEDIFDEYGGFLNMGDIPDLLTNLSKKPKKSKNKKHKKQKLLHSEREASLDDGESRSKKKRVKESKKKRDYKESSSSGSFASEKVHGKSRNKHSDDFDSDRNDPSRKTKPERSLSLKDYDHPRHGRSKHGKRRHSFSSEESGPDCYNGNYKNRDRRSYSSEDPDSDRDDRGRKNIQKHKRKHGRKRHYNSDEKDSGPADYHLKQKGRDEHSYKSDDCNHQRQPEDKISSHKYSSIIHCDSQRHHVSFSHDRYRGSQKSRSEHSCSSNDSDVEKNDQSRRIKEERGSQKRREEHLYSSDDSDVVKNDRSRRICSSNDSDVEKNDQSRRIKEERGSQKRRAEHLYSSDDVVKNNRSRRIKEKHGNQKRRTEHSYSSDDSDEKNDRSRRIKEKYGSVKRRAEHSYSSDDSDVEKDNRSRRIKEKDGSVKRRAEHSYSSDDSDVEKDCRSRRIKEKHRSQKSRAERSYSSVDSDVEKDGRSRRIKEKHCGTPDGSEHAEIDVRQQNREKPSYHRSEKSYIHREKHKLRKRSKNLPHHESVVYLLYDSSAFSQAQSLQSVLEKVDVKATIFNQQDSGCRDLHGSRLALDCQDRFCLRHRPWQSGHFLLAYIRGLLEVGMLTNLPIADLHVGGLAWSVKWIE +>SRR2546423_6060734 +SPVWATSCPMAACAGDPLTATDVAARAEMSMVLRRRGFISISLLAARGRAKAICPCARGAQRPGERNTSGARRLRAPVRTLLAVPSVRKPVMVRTFGELVRRWALGGAVVGAAALLGGPAAPAPAAVDRSLAR +>SRR6187399_628079 +TYSVLQHQFADTLRAQKLAALTAEQPDVIATANVGCQLHLRDGAAVPVRHWLELLGYRAPQRSASMQDFPHHYRVGTRLTAAEDGVVLAADGLPDLDTAPPMEFGGKGDRWSPETLLVAAVCDCFVLGFKAIAAASRLTWTDLDVRVDGTLDRIDRKMRFTHFVVSARLTVPAGQETRAPRILEKAEEACLITNSLSAEVQLSSEVIVGX +>ERR1719375_252775 +ALSMGLLGTGLRVGEDRRLRGRPSWDPENRGASAAGSTPGRPACTRRPWRGQRPRRRVRGPEPRRRPCPWTSSEASPAFALDRKRLASRASRASQASLATAAAVAPRGLLGAYQAPCPTWPLEYTGPGRPVQRPASHQFMPHPSAAAALSNYELAQRTPRGWMSTRQAAPSAPKLPGLNNGALGAACRVDIHPR +>SRR5579859_4059679 +AIRTATATLLPLGQTGTIINRIHHSCPDSPWVARGTDLAHCCFDGNRISGRRMTDVITLIRVKRDNKRPLTDQEITWLFAAYAGGEVADEQMAALLMAIYLNGLDAAELRAWTGAMIDSGERLKLGGDTRAGGRPTVDKHSTGGVGDKVSLVLAPLVASCGAI +>SRR2546428_4694028 +GTLGFIYGMSEPMPDLLAEHSRWAATRAQELGAQSLNATNFGETFSAGAFRDPVTGRVYNAVGSRLPGGGLQGGATARPGEFVIRGYFGHAEYQLLQWAAEKGLVPVSIGASRPHCWVCADLTLHMGGTNASPLKGVS +>ERR1719343_138255 +PGGAFIFGTFCASSVRDRFSSGPKLLLYRSEGAVLSRGVFLLLGAAPRPHAASTRGVVRPRMPREFRTYSIMAMVRMPHQRGVSSGRECQGNSGHIRSWPWSACRINEGCRQAENAKGIQDIFDHGHGPHAASTRGVVRPRMPREFRTYSIMA +>ERR1039458_2685568 +FFLMIRRPPRSTLFPYTTLFQSISDTNILPAVSISLFLLTACRSDIALVLRKNGAPMTYKYLFASACEELKLSVWAKGESALGYNPIFYRRDIFGAWMQYNAHGDTLTHFGWEIGYITPVEQGGTNELSNLQPVQWRNNRNRTAPQPX +>SRR5712672_4201355 +HSEKSGAGGRRLFSPDARGTVRQASGRGRRRPRQGSRGLSQIARSDAADAEQPKLSRRRRAELCRLHRVRRVSVGARRQPVQAARRRRSGLCGARALARCVRGHGAKVAELSRVRISAALNLTAAVSTARFWTSRPPSFANNPDTGSRRRPTASAGGTIHRNTSTAPTGCRRTPRHNRSRRAAARVGFLTDLSSKGPLFRPAFNSGFIRDGVMIRRKSYLDDGPREARWPAIRKPPWSRSIDSDLVHAAGPRAISSTRRPIRAVLSRPS +>SRR4051812_7757704 +TRPRTSPRTATRCGSACGWPIPAGCARSCWAPPDRSRSCRRTGSPRASATKLCGRLRPTPRSRVPDVTWVPIAAWGAAAFIALAVLGFCAYEIMWKARRLERDLGRLQTMTGELADLQSRLALAQQRVVAARQRX +>ERR1711998_154733 +GELSIIIAISGARPRMDMSLTNCEPWLTQESRNRRELTYPFGSSVSRTGSAYFARDAVNTTTSNISATFSRKTSTPGRFATKTSWWIPSISTLIWKSKNAVGWKEECTNVSSRSSTRHFLFLNFGSGGGRRGCLLEVLX +>ERR1719424_536034 +RSHHTASLHESMNGMHGPMVQTEEDEALPPIISLDDLVAQQELKEEPPSTVQYIHCGSTPEERRTCIRLMQRCLQCPVLPAPRPTLSARRALLQLVCDESGQPAADDPATLRLPEPKAAAAAALADLTAQLEQCHGDDLEDQSDRDAARRAEAVRSSSSAMATTWRIR +>SRR5947207_3404454 +IPPTFKDFVGRIEGAFLHPGSRIGGIVADLSDLTTFLPLDAQYDQITVGSWVVVENLDSTGTAIRTFHQVTDVKTITLTPLDFLSRGVFVGIEGIELQQISAILTIATTITLLTLDPAWLPRERGKDRNDLFTVLRTTTIYAQSECLPLAEVPSSESTDNQSASGEPTSQSASSGATSQCIIENDTIELDRLYPDLKSGQRLIISGERADVPGVRVSELVMLAGVKQDVGQVIVEVNGVKQSIPLSNDKLHTFLQLAVPLAFRYKCGTVTIYGNVVRATHGETRSETLGSGDGTK +>SRR4051812_28246904 +DYVRLHQWVARRFHVHRTVLVSVSMGAIAGLQLAAHHDVPRLAGWVGVSPVLDLTSAAASGPLSDDIHLSAAQVHGLDPTRLAPGRLRGLPMAVAISREDRVVSVPAAESFARRTGARLIACAGGHATGDCYRPGVVEKMLRX +>SRR2546428_178850 +PRDSRAGPRAVRSGHRRRAREACARRIRARLLRPAARSRGLAPTPRRGAPSPARPCSPQHLWAPSMRLWAFSAGLLSLGSPPNFAQSGQFFVYYGTATGTPPDPWHSVIAGYRVSARDPNRADPSSGRILLQVKRQKGPQHFGGGFCFGSDGMLYIGNGDSA +>SRR5215472_1953996 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+>SRR3954468_8813130 +LSQGGSGPAYGDFPPGRPLTGSVTTRAGRRLAGRLVYDLDESETTETLDAPSQGVDYTIPFGLIASIVPPGRGARRARVTLHNGEELQLERIGDLGEGNAGMLIVVDGRQRAEYVPWTDVEQVDFDRPPAMSPPAVGGVYPATGAASTLCSTASSSWRLTGLVRWARKPASRLCRMSSSMPKPVRQMPLTSSPQRARIWRMRSSPLPSGRPRSLMIRSKQGSKGGVSRWARAAATEAAVSTEXX +>A0A1Q6RLF7_9FIRM +MEGLEKAIEQIKENIPKLDLRENEPMRNHCSFKVGGAVRAFAVPGDLFEMSKVMFYLHMNGVSPLTLGKCTNVIFPEEGLDIMVISTENLRKLRLGETENTIYAEAGVSLAKLAQFARDNGLSGLEFASGIPGSVGGGVLMNAGAYGGEMKDVIESVVVYYVPTQALTEVRGSDCGFEYRRSGFEKINCAIMGAVFKLTPDDPEAIGARMKEMNEKRTASQPLDMPSAGSAFKRPVGGYAVALIDQCGLKGYTVGGAQISRKHAGFAVNTGSATYDDVVELLDHVRREVYAQTQVTLEPEIRIYPKGMLLVDDWRERKQTIIDGMLEQAKQNAADSAAESSDVRPS +>SRR5689334_5448804 +SGTSAALSGTRRTIFVVDRTGNARARAALEAFKDRWNSESFGRTSLPLVGIVAGRPADGCALPAAGSETDTGDVILCLDDTLTSAGVGGPLRVDAHKHTELALVKLKSATLRWTECSLRTAVAHEMGHVMGLAHNDKGGALQPSIMMSAAGPYKYGCAVWFNA +>U2SVQ8_9FUSO 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+CDGARRRRLRAGRRHGRTRHGGARARGGRRAARRAARRRRRELGRPAVGQRAQPLRRRLALLVRASDRRAAATAARARAGDGGGRRGSVRDLVVGPAADRRARHLERPATGRERADEGALARARPPRHPRERGGAGPDRHRSRAVQRRRPRRAHRPPGRGREGRVGARGAARSLRGARGDGPRGRVPALRRRVVRERRGRTGGRRAGDRAAMSDFLRVAAAQLENVVGDLDGNADRILDAMRWAEEQDADVIVFPELALTGYPLADLVLRDEFVDASLDCLRRIAARSGRTAAVIGTVDRVPPRRAWDTRPRDVAISAALACDGELRGSYHKTLLPNYEVFNEARNFAPGNDPAVLWRIGTAIAGVAICEDSWSGDGPPEDQAAAGARILLIPNASPFNLEKPAGRLELVSSVARRNAAPVVYVNFVGGQDELVFDGGSLVVDADGELLYRARQFEPERFCLDVPLGRDRPLARDPRTVHARPPAPRRRMPQPEPAVQLSDDEQVWRAIVLGTRDFV +>SRR6478735_3307528 +SSPVGRRSEGCVASATPNSGRYRKSGDCRTASITAARPDVKVSPLVTLFSSASSASASPAASGRRYALGTQLSTNVRAQLSWLVEVVALAAQGASLASGVACTARLAISPATSLYPETRSAETVCWAASLLKPFPSTSGGRLMAGEVVSPSNSATVLLNSLRVRRRIGAELGSNVWLVQAETCVSPALALAPPRPCVAPPFAPAKPELFGPAPEPFPAVDPRLGAPGASRFALQATPSNRHKRTVTSAGAPIAGGDLLVIGGX +>ERR1039458_4032371 +PPRSTLFPYTTALPIYALFVERCTGKIAAECANEPARPAKLFVITTEFYLRPHERSLSFDHFDGHAGQVIGQPVRPGKSKGSFADGFDQRFRLEIAIDPAARRQGVTTKRPACRIACFRDPIRVKDHNVSRLERQGYLVVDFSFTDSERQIISVYQVAQARLAVKVNYPRMQAINENEIALIQVQSDITESHETFEIDQMRRQFRMGQRDDLFRLRQLAMLGQEIGRAP +>SRR2546423_9850065 +IQHKRNCLIASEPRFPPCGIGNTTGKDPAIRNIAKSNPDRFRISATSVINSGECLFQRNTFAESRLAGQDEAFFGQELIKMFRYLMVSIPFTIWIVEKSIAMHAARDVRAKRDPESFPGNYHCLIX +>SRR6185437_1912756 +GDRAGARKRRRSLAAHRRKAGRNAAGSLGNAPFLEEDAVLKPASCQIPSAASLRGLGAFAPAPILEQTLAARGIARLERVRRGDPVGAEMAKALPQLTPGHDDALLVEKANPERPDGALGPCALRVVINEREFAFGADRGADLREVGRGRAFGFX +>SRR5678815_2292360 +STTTARVRAASSRPADVTVWTRAGASDFLPGRRRLNPSMPETIDLFVPLAELDEPLAPRVEQALGWRRGQVGELRVLRRSLDARKGRPLGQRLRVLVGREGEALGPAAARGSQRAGHDRRTGQARAAAPPRSRAADARRADAELELLFRRGRGR +>ERR550532_1119739 +AAGVASQVLGVRCNLAGHCNCLEGNLLSSFGAAVMDVEDVEEDNVPEVFVLLTQEVPYQLEVDPQEEEDLHPNFLHKALVAVGPDSRMECYSDARIHHNCCYLGVHSHQDHPFACRNAHLGAVVLLGDLHNKDVGLGQEDLEGHLYYYTSYVAGVPX +>SRR5690349_19480509 +KAPFPICSSSTAARASCTRRSPQRTTSACRRSRCRATRARRSSRWSASRRAASSTTGRRGWCRGGAPGALRSSPRPFAASEAESKGAALADAAEATSRGFVGELERTPERVFLPGRKDPVVLRQNSAELFLLTRLRDEAHRFAITFHRKLRRSRNFQSVLEEIPGIGAGRRKALLRTLGSLKRIKEARVEEIAAVEGFGPKAAQAVWDFFHGSAAAGDADAARAPGGLADQVDAGSGAGTGTAEALGDVTEADIDAALAEDDDAGDATAVRX +>ERR1740129_664351 +VLLSSFSFGAAGRMCLLKRLVFIWHYSTLIEGVFLRGGLVEDPRQTLVTTPIESYIVASRSFSEDYNAVVVDYYMKSFGIYSSLHPSVVLRRDKLGVESGGGTEVINFDKTYGFGTKITFESDHFGRPRLACVDGYLPCLARNCLRTRVVRVLSHLSTVLKTCCGNLTNGWTTPGMLTVPAAFMTLHAEAERVYNPWAFQGVTNCSEAIEALNMASHKFRRSSELAGAAVHAALLHYHSDAAGHTPGATAPIPRKVVFHRYIGSHRSTILLSLLEGMSKLMESPQESLNAVEIGVYTAYTSAFILENLWQLRVWSVDPYRVERPKNRGIGSWQNVYDVDIFGQVRQLLSRYGHRSTLWRLTSKEAAQRFNDTLDLVFIDGDHSYEAVREDINLWEPFVRLGGIVAGHDYHTDSVIQAVHGHLDGTNTVLHIAPDFMWWYIVGSSGSCEVGSERPARDHTQPLRFPSX +>SRR6202011_3201054 +XVRVVGGFGNDGCLLALAQYLDRELRPESCELRLDVADREALADAMSIITRCCASNYTAVSIEKRLVAERIGVRDAMYFERDEPVRHAGSQLLLELCLADEVALVHAHEAVETGLERRVVRRHVATPHX +>ERR1700756_1693894 +HQTSGPREFTRLIDRRYLVSECKHRKPLRLAVEKWIGAYDEDAGFQLGKTSERSLDLGFRTCPQNMKLKSARERRRLHIFHDDVGTGVGRVDKQRNEGCGRHHFMSQLQ +>SRR3712207_7425182 +LKERHTGGKEKREVTIVFFSSRRRHTRYWRDWSSDVCSSDLQELLGRGRLVGREAHARGELEVERRGHRDQDGAGAVGRLHLAGSEERRVGKEGRSRWSPYHLKKYIDTLAHAVTHSTISTTIS +>ERR1719174_1663456 +PDLLFRSAGRVSSVEPIDLAGNAAAVEAVARARSYRGELIVLAATASHWPYAINAVSELALLGMEHYVFIAPSRTDCDVLRARRPGLACVFSTLVSNTTMAQEKSFTVWTTRKRYVGRWAALGLGVLQADLDVIWYANPYPALKGALRNVSLVHLQEGKCNEGRANGGMLYAQSACDGSMAHWVLREVYERVRRNEDDPRILETHYPGLFSD +>SRR6185312_1149132 +XMNWNSPRADEVLAAAFGLKLDSIFAVASRYSKLAPVVDAACLIEPAILARTGSTPAAIVAFDVSTAMSLVPCPSRTSRGRSGAGNQRPYAAETAAIIVNDRLRAPPLRLGFVIAGDLVDLFRGHLAGDVAHLLADVVAAGAGRERLQLRLDVDSRLTAKPGTTGLVVDVAMAGAARCDVAHRRPRRDDRRCRHRRIELVRWHARQIG +>A0A1V9EVA1_9BACT +MATIEFLDQLLSDNKAREAKKLALIMDPAKKPFHILSFIGINEVYFIYKAFVEGDFKAARQHLYNMGMTNAWYYEKINGEIFDVLATFTYPLLSDSSFLIERYLTYTRMDSPGSFAACFGKAIQNVLKNDIDGLSLNIEGLKKRSGQGWEKNYNGVIPVFEGFIDNDKAKIEEGLMSLLAKHNKQNQPPVLKDFMNLEATALAKLAWRKGISVDVKSHLIPIVLLPVQEPDQYSGYEFFNEVS +>SRR6478735_9024146 +TARPPRTCRRASGRRPAPARPTGRRASPRGSASSGAPPTRTRPPGPSRPGARSRRHGPSPPSPHGTRRVPRPRPVRCWACSPSSVGRGGALGVGDRGAAIGDRPLLPASGPPLGLEDAHVDLIPPSAVAPDRLPRAALVDEADPLVGPDGALVEGEHGQGDAMEAERAQGVVHHQRGRLAAVAPAPGVALADG +>ERR1017187_5434680 +XMLVFKTTSTANQPVGATSAYHILFRILIISGSRAKSQPFPVPNGSCSGQSRKWVQGRGLLRKKRFSRGLTHGLRSSYVRLLLSKFWPRCSFDDTPFQRKRSEVQERIDAREILFEGDRGCGRGIVLVAIGCAKLQPLRHEILGANPALPNIVYAAYSGVLIMLVGATSIDQELLPVNLLVDLKICAGRGDGGX +>SRR2546423_1398384 +DGITEVARRSLQCWLYRTIALERACPQFWNSVVSWFFSVTYNADRSITYTPGFLTALRQLLRQPRPEVVTASSLPNARLSDFAEVMSWLGTAFPFPAGAAAVAHAGFEDAGFEAALAMTRSALAGMRQAPYVPPTTYTAAPPPGATGTLLPPAPL +>SRR5699024_12166037 +SLLPSDTVTLYLHSFPTRRSSDLRIIKRHSTFHLLFQILPGIVLRLQLLPATAWFSCFLHFTHAAPAAVHPGRGRKSSSCRCNQDRKSTRLNSSHVSISYAVFCLKX +>SRR6266536_896491 +GTMSHDERACEHEWRRWVDKDGIAHRECWRCATYYAWPVNGEPRAGVAKGTVYYNFASKAALFEEVHTQSDYIQRYRLTKLAIVGSRHLTTQQADLVHVIIDAVLDDYPDDAVICSGGAPGVDTMAITRAHQAGRTTRLFLPHHQRWEPDGYKARNMLIASWCDDLVAIMATDSKTFGSGWTANYAESLGKNVRRLYVX +>SRR4051794_24080993 +LARLARRTRWSSTASCAASGCALRPPARRSSSPSTRSPARNAACPIGAFGVLTQDEARREARAILGAAAKGGDPYIDRKQKAAAGCQAKAEAEFTFSRMVEAWAAAREGDRRASYLREAVSCLRRNLPGWW +>ERR1719310_114900 +SARYVGRSQAAWQAASQRMGGLDAPPRKTAWSSSPDGLKSPRLDSRNASMQPPSGDIRGRRPSHLGLAHEVKERRPLFDALDTEKIKQQARESLQGRPAYNVFEFYHETGVFQFVAKHPLFENITLGVISLNAVYMAIDTDYNKSDTLLQAHPFFIACENMFCLYFFGEWFIRFMAFKNKCNG +>ERR1719193_2294297 +LYCCLLRRGLLLFGPFLYFLVPGVLLRIHVLLVVLLRTGLGALLPIRVGRRGRGDVRRGGAAGPAARGDAADDPPHPRLEVPLDQGTEIDLVCEVIARDEPDVQRRVPLKLAPIFLHVYACAPFVAVPAQLLAVHLVVQVILPLARRLLRARRLPGRRLLLFGEQAVLPAVLDEGGAELPPSVAR +>ERR1719433_1424020 +ASAICILATGRASFLNFLRQNPRKSLTSLIHRNFYEFEMAEKTIQFKAKKEIFDKAAARLACSDCKVVPRDVPIFQTGQGDVLCSICKPNSKLTGIFRSSVLEDLLMSLPISCKFQKNECPVVLQDRENLSYHEEDCEHRDVLCPYGFCKERIPAIQFKNHFLEKHEIDLEEYMKAVTKMTENGMYKVK +>ERR1700730_4647339 +XMISACRQWVRLSPRIPLFQQNPLWFESEDFARFSFAPLPRASPDHFAGAPRGLDRLAKIGQKALLPLFVVSHPPASRALHPCRLPCASALPVSAPLEPRLLRCSAGRPRRCDAGPAGNSRLPEFRPAKGRSSGGSI +>SRR5947209_14544591 +VGNKVRPRSSDAQVVRLAQADVIDRNDGDGMCRQLPAARPGRDDVLRETNPLREVARECKLRLSRAVDAPVTSVANRDEIPNVSRLGLIEPDGNDVVGVKAAAGFAAPDAREPVLLVNDGCMFRRPAADVLPVGAEATTPEV +>SRR6267378_108524 +XMPPSLTSALRRASSGPMPDRRLSSMCNWRWLSISCASSRSRRSLPNIPANRNNQPRSVLIGTPAETSSSRLLVAQRHHRIHTHCATRRDVASRERNECEQDCDTRECRGVRRFHLEKQTGHKASQRKRSCNPGGDAEERDSRSISHNEPQHVALLRTQCCPYADLMRSLVHGISHRAERSEEPEKQHVEAFLRKRHSDELVH +>A0A1E5NXB1_9ACTN +MAERVILVDDLDGKSTEGVERVEFSWQGKDYEVDLSSAHIERYSDLLDPLLKAARLRQVTGRKTGRTAAGKSKADAAETKRIRDWGKTSGLDVPDRGPVPKEVRDAYAAAQASGEAAVPSQAQPGAPVSASQG +>ERR1719507_515787 +FFLRFVCNVFIPLSLASHIRNFWQRKKGKKAIKKGPNLWGRFQVLVVEVEAESLGVVILDDLGEEVDVACELAYVVRVRLNEVLLEEVRDRRIVARLEAGLGRNNVLVHRVLVEADRLLGRLLHHVQRRAQGVQLSKLLGDLSIFNLEAVSYRSAPLDNVLHERQPIIPHLVRVPAEVSVDAHAVDLVGVEDASHEEEAEAISEVMAHQLVQVVRVSLEVAVDGVAGTAVVLPLGPDFVITTVLDVVGAGVLPVAVGRGSRSRQYEGGGX +>ERR1740120_427324 +RTTISLKRPRAWCRCRRRRRRLIRLCIVDRCHDPGVRLLGSGEDIAHWRSEGSAPGGRRAHFEADAQSADFVGVIHGGARCRVEHLGCSPLGVCDTIDLPHGGLHERADLTVLSSARIVCCGVGISRNDQLSEGMDVNVHSARCLIQSAMREVDGITYTEGAAAQVLYTASGTTMDYADKIGALGICFEMRPASSGGGAFAPPVSDILPGSLESYAGVMAAIDYAKNPPPPTPAPPPSANCPWFCSIICMSPDCDGCP +>SRR5512145_1624320 +PGGGARGGSIGSVLVSPRSAGRQPRSPAPPGPRGRGAAELRAARRARVGGRSGSGSRAAKAGGERRLRQRPNKALQLASASGACSDTPPVRLTPPGGLGRLAAHFGGVSYRSAALAAERLV +>A0A0H4L3H5_9RHOB +MTAIIATPAALTTDLTEELAALIDAALEIRDLTAPLSFVDFFDGDEGDEENEGNEGDEDDEDNEGDEFDEGDENDEGDEDNEGNEGDEQNEPDGGDEADEGNEGNEGDEGNEDNEGNEADEGNEGDEGEEGNEDDEGNEGDEGNEADEGDEGNEGDEGNEDDEGNEGNEPDGNNEGNEGDEGNEGDEGNEDDEGNETSASGDEGDEADEDNEGNEADEGNEGNEGNEGNEGNEGDEDDEGNEGDEANEGNEGDEGNEGNEGDEGNEDNEGNEGDEGNESEGDEGDEGNEQDERDEGDEADEGDEGDEADEDDEGNEDNEGNEGDEDFNEGDESNEGDEGDEADEDNEGNEGNEGNEGDEGDEGDEPGVDPQDEGDEENEGDEGDEDDEGDEGDGTDTFDDEGDEGNEDDEDDEADEANEGNEHGTNPDDDDNEGNEGDEGNENVPGQEDNEGDEGDESNEDNEDDEGNEDDEADENDEGDEGDENDEGDEANEDDENDEGDEGDENDEFNEGNEDNENDENDENDEGDEGNEGDEDDENNEGNEALPDTGNENDENDEGDEGNEGDELDEHDEDDEGDENDEDDENDEGDEGQEGDEGDEGDEDNEFDENDENDEGDEANEGDEYDEGDEGDEANEGDEGDEGDEPVAGTGDEGDEGNEGDEIDPDIDNSGDEADEGDEGDEADEGDEADEHDENDEGDEEDEGDEGNEDDESDEDDEGDEDNEGDEADEDDEGDEHDEENEGDEADENNEGDEGNEGDESDENDEADEGDENNEGDENDESDEGDEGGINNEGDEGDEDNENDENDENDEDDEANEDDEGDEFDEGDEENEGDENDEEDENNEGDEGNEDFEGDEGDEGQEGNEGDEDDEDNEGDEDDENNEGDEGNEGDEGDEGDEADEADEENEGDEGDENDELNEEDSDDEGDEANEGNENDEGDEGDEGNEADSQADNNEGDEGDENNEGNEGDENDEDDEGNEHDEDDEGDEGDEGNEPV +>SRR3954447_5641343 +VHVERLQVGLLPVGVARRRRAHAVALEQVLVALRVAEALVDLLELDGVLAPVGRPGNRAVRVHVRAGPVVVADVPDLRALVGRAEVLDVEREDAVLPALHQVGLDEAVLALAGARVAGALEADARRVAAGHPQPVQEPALVGLRIGDGRIRLRVDQLGDVVVVVLRARVLDPLALLRVEVTVVAGAGATEGEGRALEDARAVRRDAEDAGAAVRLVRLPPAVHRVRARLPGGDRARVRDRRARARQVDRAARVAAAGTELVAVPRVHLRERAAEVRGARRS +>ERR1700712_4604191 +DVSIIAHGNQGEIELGSTIVTEATLNANAAALRTIGHALAPGADILLYGCDTGEGSAGQQFVDTLAAATGATVAAASHLVGDVAAGDGWNLDVTSPGAAVAAPQVLSAAALNSYDHPLVINSPPTGLPISVTTFTGNTSFVETGTAVTTTSSGYLQLTNTSTNQAGIAVYSQAFPSTAAVSVQFTYYSGGGTGADGLSFFLLNADTIT +>ERR1719161_2539103 +LVQTDPRVACSVFGPTLVQRGLGAKRPALPRLEARMRFGFLCIAWVLEFRLQGSSALDHQGVLRSWSPSTANRNMALSAERVQLRAEESCPPGVPCSCNCHCNPGRYPPPPPPPMPYPPPPPTPPGGWPGVPYPPPPPQENPEPPPPLPLPWDAPPPPKMPPLFGIGSYKGAPKIVALRNNAGPIKAPPGFGVPPKPPWETPAPPPPPLIMPRAMTDAPPYSKPPPFTTTLPPTTTTVDAWWLRTTFPWWHYTTKEYEWTTTTEAPTTTTTAAPTTTTTPAPTTPPPTTTTTPAPTTTTAAPTTTTMPTTTTPAPTTTTPAPTTTTPVPTTTTPAPTTTTPAPTATTPAPTTTPAPTTTTSAPTTTGPAVVLAQAGMKWNAQKGKLQLHAGPDDLNPNKGGWGGGQSGDEYKLGDAYHARAAEYLGYGSRKAPNPAEEYAIPQFQEEQSAECKSICPPCEAX +>SRR4029453_7064880 +XGGALSTQTSPPAARRRVRGWRRSNRRNGVSFGPPTLRTDQPGNLAPALTMGRFGRSLLPMKRHLFGIAAGVPLACAMAGLVSVSSSAQAPAAAPDVTFTKHIAPILQRSCQRCHRPDGGAPMPLITYEQVRPWARSIKTRTGLGPHAGVMPPWFVEKNIGIQGFKQDPSLSEAEIAMVAKWVDSGAPRGNAADMPKPLDFENADKWQLGEPDLIVRSPDVVVPASGPDRWGSLGMVPTGLKEDRYVSSVEVREVNDIPVGGAKGTVGGRYV +>ERR1719342_652718 +TRQRYAHTLRNIILHSTPTLYPILHLDASSAWYDLKELNAISGEPIFQVMMIQVKKIQILKRRPLPLLLTMLVMMLSTTPRTRLWRKVQVTMKIMRRRIQSIRRRKSSRSIFDRLCPASQRYPFQRLNDVLLHLNSKHSGRGGGLSNVVFPGNKNDLTGLGLATCKHCGFIVYGLGQTLYKHHEKKHSGVGCMKFNVFCRLCQISSKSMVTPFEDVRALQVHISEAHTNIFDLLPEKX +>SRR5450756_449411 +TNYSVPWTVTQAVGTYTLWVRYCSSAGKVIRSDASDAALGITPFPTPSPPNLPAGPFNVMDYGAKADGVTDDSPFIQAAVNACYSAGGGTVYMPAGTYRLNYADSSWAPPGIHGSRNNDCSCLLYTSDAADDLLCVDLGGRRIIKNKK +>SRR5258708_35312273 +GEEGPGRIELKADPESGAEGDDEEAQRGRGREEVEGSVSDGPDHSRSGQRHDDAEADDPEPLTGDFGDDLLPLMSSDARVEEGQDAADDSGERDEGSGDQEAPATKVFSFDPLIDGQADHGREGRLDRHEGVVTFVRRELNEKAPEERPATQEAPGRAVGGIAEPARQPHNPRHEWQHGTPLPEPITITHL +>SRR3984957_2613687 +PRVVSRIESLAFPAKLEQPLGDSPLISRIQVDGPPPLRGPAYDLDWEGLGIVHETTIAFETGLGGNFDRRFVRPPHPGRGYIGEFPLTHVHVVRSCDEISELCRAEGRLVSRFPARAQDRVSRSGRPRRRQACGRSSRQX +>SRR6266536_1781336 +DAGDVLVTQRRESRRSSSGAEVPSHGTKDPCRVRMAAEEAGGTARVTTRHPWEAAMSPTVSDHPSIRGALDRAEALAARRRAYAPEVVALLANAEFAGRVADLAGSLGRPAAEVRGEVAGYLREMGETRTRRATSDWARFS +>SoimicMinimDraft_7_1059735.scaffolds.fasta_scaffold44147_1 +LPKHAHMQLFGFFLSQKATKVRCRFIQLMHSAAEEAERIYRFEMGLLSKEFFPVTISKLGRYKARLFVCTFICIAYTKYTTKHKIKKDDNDSYEMLQISSEIAYTPFSMPATEDFIDKKQKEEAAGLMYKIISSINIELSNRPSPIVGESTKGLENLFTIYEGIFVESIGQKNYNSEIKERLKVRIFSHIWSGFNTMIKISQSRSISQVLFKNELGLPRLSSPX +>SRR3954453_3871201 +LGVPLWLDRRGKYRGEEAVGQVLAGVLAGDAHRVEQAAVAAIGGELDRLDPALNSRQALEAVVPLGVDVDDRARALQEGLPGEELQGDRLAGPEAAGEQAGWWTGALAGLGEVEEDRRTAAAEGVPYIWTDLRSGVTDRVRDHRPDLVGQQVLGVLGQREPGGGKGGEEEAVLLAAGTMQLGAPVGL +>J3L6R9_ORYBR +MQRLLVKKNAARIAETPRVVWVNRFSCLRSSMASRAPIAIQDENLPIFRGIGGKKAGAAAAARAVGRQERKALGDLSKARKAPPASAGGGPPAAAAAAASGSKNLVKPSYLSDEEWMKCCEWAKDGIEAASFTGNDMQKLLSDKREERIRKKVEKAMRTMKLSMDNLYDIDVHSEACMVDPEDKTKLDLDTEFLPPKPYLSSRLGEHEANYVLSDMEFEHETFANCNLDLKLKDEYGT +>SRR3990172_7523137 +XMQFVAIDMETANADMASICQIGLVKCENGILSHEWKTYVDPENYFDVINVSIHGIDEKVVEGAPTFPELADTLHSYLDGTVVVCHTHFDRVAMHQAARRYGVSTPECTWLDSARVARRTWKEFAWRGYGLSSVCQRLGYEFKHHDALEDAKAAAQILLAASNETGLDLDGWLRRVRQPIDPTAGSSDSAIRRKGNPEGPFYGEVLVFTGALEIPRRKAADLAAAIGCQVASGVTKNTTMLVVGDQDIKRLAGHEKSSKHRKAEELIEKGTPIRIVKESDFEELARVSNELQANARWTTLRSRSVLAAAGTSLHTGVWMEKKGLLQYYGLDTWWQSVLTPAERERVESLFHPLCSPHAQPLTDGVVGQIIGATSTPVSFLSELVGWLHSTPEDLAIRRKIRDKMTELVSTEPNVISRHFSLQVLLSEYYRDRDVDPSALAAAINACRQQIAIAPAVAIVMRTDFPGGLPGHVGYQQLAIILEKEKSYTDAIGVCEEAKGAGWGGEWDKRIARCTACRDKATAS +>SRR5260370_27521811 +ALVDFEVDDLRGLMPDVQPRDEARLLVEEELLDLVLRLAQERCHLYREVTAECVLEREVVVVRHLRTDGMSRRRRETERPETNQTGDVVRLEEIVLLEGGVWRLGVPAVARPHNRARIQAVRQSDARLPFGIGEDLTRHIEDRGRRVYCVERIIEKRPSSRVCRIGADELVIVESHAEVDVEAIGRLPDVRDRAGPELRPPRLX +>ERR1719507_1551978 +ATKGELHMCRKGCIACFIPQGDTDSCQNSRVLMQPEFSGALRIGEPQMSMQFFQDESCPNWFDKLDSKIAQQDVFVGDCFKARELVKNQKYAFIKEASEGKPMTLWACAAADCRTNSCEETTVAVESCATSHYVGIPDNAWYKKLRFMRYQPTEAMHVWDDPYCRERVGLIRQTMGLVQQAVDRVAAFKHLEPSCSFGTAVQDEIVEKKFAEFRGHVTDLRPQYPKRGVLWX +>SRR5690349_24626955 +RPTLFPYTTLFRSLAGKKTVDLARRDVQRAKQNGHRRGEVFAVPRASDEKKIRQRIRTRLATEVQRVAVAAAQKTFHGGRFVVRSASACGDLRGQVRNARVERIGKLEILSAHLVGIIGRGSAQLGD +>SRR5687768_17364510 +DKAVSTYDYFASYYTNVAMTFDQRYTLSLSGRLDQSNLFGAKTNRKIIPLYSAGIKWDISEEPFYNKAWPFITARVTYGLSGNLNKSTTAYTTSIATLVNDNTILSVITPANPYLQWERSAMWNYSIGLTDQGGHFQLNFEYYHRRSTLLTGPGDQDATLGMTSLWGNNAALKSR +>SRR5262245_62041426 +IANLARVGILAVTQIDVLHLIAMRVDHPLQLPAEDALMIVYTGVVRLAKEIADAIGRLPLPAAALAPFEAHEAALILKAVAAIVERHELFPTAIDKGILRIHIRRQTILGPPLDKWYAQLPAHSPGAVAIAAVIVKRNLRLKLX +>SRR5690554_5011345 +LKVSTMDCVAPRLPSGETVTVGGVLPPPPPPPPPPPPPPPPPPPPPPPPPPPPELPPQAASEMANITATRMRMAPPENGFEIFNIVRLHGESYETKPVEMTVNTPSTAGNPRKHLPWFARCSVIRKPYNGPCKKTLKGCESEVVKTRGITRCCNRETKRLSDVDVEHDEFLEVQTAFAQGAHEILFICHTAEIYRGDLDEQRLGDLEQSRAAFAERLREEDAPLGLQQCADVSKRFLGFGKQHEARGKVHCIIRSADMIVDGFQRERDVVMQACLGDAFAGALHVFIIDVYAADVKLLVTDQRRVVRERTGGADTDIEQVRAVGEARQHLRIPARRQWAEQRVVNQASDHGRRFPVGGKVFVWTMRDRIKAERKGTQCVPGQFIVSTGSADRSAPFSRR +>SRR6185295_1157811 +XSRVGRVEPRREHLLAAAAVWLWAIAAPAAAGASGAAGNDVQRYIQAAAKLYESLDYDQALEQLAHAKALAVRADDGVEISLYEGIIYADMSGHRDQSQAAFRAALLLRPDARLPVKVSPKVEKEFEQLRKQVTQEQAKEQKEQAKRKVASKPPSPAASDRPVAGAPPTPPSLVPLEPSGRGPAPSSGFSAFGVRVPLX +>SRR6266480_734243 +DPGFELEAARLDKLGPETDRLFFGASRPITDGGDLQVRRRGKAAAGDVRRTIARRQAGGRVQLVDRRRILEVDLVYARDPEVAAAVIAAGGGRRLVGAEESRPRDRDGRSDRFFARAQRQHPALGAEEIALRSEQLRAARRTKGHVLQAVVGRVEQIRLGNRGYRADVRRIDIGELAVLEHVIAVGDGRIERVLPVAX +>SRR4051794_34720228 +SIERKSEGCTLPVAGWNNLQPSTCNPQRTVQFYFFLAGAAALAAGAAEVLAPAAGAAALAPAAPFAPAAGAAAAPAAGAAPGAPGTAPSAVSSFSAFASAILRCATFGRPSGLLLSSHFSSSLSLSKRSPRVSTLRX +>SRR5258706_1188100 +FALFAGNSFAVKNVVLFQFNIVSPRLIEIRKFVRRKLALDLRRRTYDKRIRRYLRSRRQQAPGCDERIASDANAVHQDRPNADQASALDMTSVQRDAVADGDVFLKDGGMRLGADMDDSRVLDISPCADPYKIHIAANDRAKPDARVLADLNIAYDDRVVRYKRCVVNFRFDX +>ERR1043166_2789281 +PGRKICSERKSGRNYLGADNALGQPEELTADLHRFNPVNPAFLSELSVFICGRSSFDHIQYRIGFWLRLGFWMFGMTKFAESKEHVALIRRVGQSVLLGHDTTANHLFDLTVESLHAFGLTLLHRVEQRLTFGLAAFDVFARSGRCFQNLNRCEATVAVGARX +>A0A1X2JM77_PARBF +MSLLKLILQNELCSINFNKNVACATNIYYNNFKISTLVYGGVEMKKYEPLGDLIYFISKELKSRMDESLKDRNLGQGQLLTLMTLFKLKNYDEITQEDLAKVMGINKANTSRNLAKLKESGFIVINQSKDDQRKKNIELTNKAFEEFLYLEKIMREIHNEMIFGLDSPSLDCTLSTLIKMKENLLNK +>SRR5260370_10911006 +GTAGFSMDTDVMPISSCDGPSLERPASTKLRVPDLSAWLQARAEQLDLDRDLATDTLPQLGRAGPLRVGVPTDMGGSGGTILHAIEAVAAVAEDSLAAAFVFWGQRAFIECLLQSDNAVLRASLLPSLLSGDLAGAVGLSNAMKFLANMERLQVSAASLPSPGDAQRWTLTGNHPLVSNLRPEGFVAAIAADHGDGRPPSIFVVSDEVPGVIRSDDLDLVGLRASNTAAVRLNDAIADEHFQLASSAPDFLARVRPNFLGLQCGLSIGLARRSLRALDSMGPTARATIGEDGRKLEAELPLCFLSLLDGISTGEFVTRPTQLFRLRLLLATLVEDAIILEVHATGGRGYIRGQADVARRRREAAFIPIVTPSVVQLRSLLQEX +>SRR5512139_1340698 +XMAVAQRTPEWIAARQMGIGSSDIPVLAGESPYRSPYSLWAEKTGQIMPEPDEAQAELFEIGHLMEPVLLTIYERRTGRHPRRARMMRTHPDLPWAHASLDAVAPVRRVVEAKWTTSQRWGDEGVPDDVLLQVQWQLFVVGWQVADVVALAGRRARVVEVPRDDGLIDRLVALATDFWQGVEHRVPPPVDGSEATRQTLVALHPAATAPALSPTPELVSLVDRYVEAKAVTRAAADDESTIGNALRAVIGEADGIAGLVTYRQSADVTRVNWPAVAAAYRQLLEGSGADLDALEAIHSVTSQGPRSLRLSKGVTSX +>SRR5882757_368707 +VIPECPLRDVGWDRDVRARLLDPVRDLVRRHAGWRLRVPACAGPARGRLHGGGPHDQARLVADHRRRLGRALSVPAARQHLHPVDGGPGRGARLHRGRAAETERGPARQPVVTGSLASGLRWQGFGGGPPITLVAPGLGATPGEARIPASGLSGTRVVVTFPSHGEAADAPAGYWTYPTISTDLERVADEVGATRAVGVSMGAGGLTALLTRRPDYFERIALLLPAALDKPRATPAMWAFEQLADAVEAGDVDGLRELVAAEVPAGVGVGEHISSRADALLRLGGALRTLPEQTPTNDAALLQRVSAAALVIGAVGDPMHPEQVARDVAAALPNSRLELVDSPAPLLTHRREVRSLLVDFFVGXX +>ERR1712082_453316 +YLKEHLDTIGPHLFVNKNSWNILGRKLGKNCKVRFLLIKRSILVRFSKFLKCYLQNYQTKLTICVIFLCDLYGPHNGPSKMNDPEKKGKKLESSFFANKTLNFGPIFKIFKMLFAELSDKTHYMCNFFVRLIRPAQWSVKDERPRKKGKFRRVX +>SRR5271166_3589085 +QGRIAGVTTGDRSVHFEYDASGGWVIHDKDAAGERILRYDASGSLTARTDEKGRTTQYAYDGQHRLASVSDPDGSVLRYQYDDAGRVASVTGNADGSPASIAFSYDASGRPLSVTHEDGTREQYAYDAAGRVAQTTNRFGQTLSYTRDDAGRVLSIAGPSGTLANKYDGQGRLIEHDDPVEGTTRFEYAPGHIALVDAADDRTQFAFDAK +>SRR5262249_39470886 +GSKMTVLVRFNDDILLGTRLESQPDWEGYVAPVEILLLLERQLDFSAFLEQLGRKHRFERQGERLRSLWGDTTRRKLVDERLAGDQLDGLVDRFGRRRLGNGRDVLGIDRSNLKLAFQNDRLTVAIGQLVSGDAGIIPVLIEPALGDDEVDX +>ERR1719421_1404448 +HYVAGRGRREYEELPDVLDAVLEVSEGREALALQDAEARTALVVAVAGDSELELKDLYEELDDEETVVERSAGSPWFVRAVLACAEGRALLPQTWPAEVMTLLHLAAHADTVAAILEHAEGRKLLEARLPGQLRPVVGQHVRLRDSAQKTDGVLAEGATGIVADDDWTDQPFCVRPLENPDEDYDWYY +>SRR5437773_2629605 +GGGCVCRCASSWSPVRWRADPLRVRLWLTAVVPPPEHSTRAATPRVVFPSRSHVLAGARDRRPVSRHCIHRLRPRLGKGVGVPGRSCRTHYPRLPPTDALSVVRRRHRGLATRSDRFWLLACRLEVRLRVSSDCCSLGAGQLAKARPX +>SRR2546425_291204 +DSAVSAYPFCLSFRLPGAASLSPQRSRLTQVLLCRSVVRRPPRRPLIILRPSFRTVRVAFMCPVPPRTEYTAWLQMVRSVWSRVPQQKGFSGDSGLATSAELKYPVGVAVDGSGNLFIADPGNSRIRKVTPAGVISTVAGDGTSGFSGDGGPAASAQLNASSGVVADRSGNLFIADAGNSRIRKVTP +>GraSoiStandDraft_43_1057313.scaffolds.fasta_scaffold3636311_1 +RFFYDEDDNLNLDFYSEYIKAIKKITNEEFLSTFFEKRKKNINKINSAIYSDYFLVDNNSYLKYGPGLYYFNQEDLLFRAEILKKKIKQKLNKISAIETNDQITIENKDIPGNISLTVDGLICEKLQNNWRKNFTYKIISAEYLKNKVEIKKDSPYLSNSRCIYVKFKDKFDNEVFLKKINYSLPVLFNEKEIKEKYLNYFYKKNNILFLKNKETEINEDIIIPENFTVRIKSGENIKILNNAFIISNSQWEVGDKNGRVLITGAKDNFGGGLVIKRVKQISKFYNTDFKYLSGVENRFLNNKKSEKTSFILTKYFENKKNSYIYSQVTSNDYNYGFSDKFSYTGAVNLYETKAQFQNCRFIRIDSEDALNIISSQFLIEDSIFEENSSDSIDIDFGEGIIKNSKFTSVDNDAIDLSGSKVYLENLYFLDVDDKLISSGENTKVNIKKIEGKNSYVGIASKDGSETIAEDINFINVKIPFASYQKKKSFKHGILKINDPINLENYVVKNIKDRNSYIYINKKQIRNSNKQALNIVYKKKLSLINEHX +>SRR5690606_2703104 +NREPLVTNRFADGRERIERPACGRTNLEIVELAGREAAIAGIRDHGGVVRAELRARIHHAHVHAAAELAELGAQLAVRADAACDDERRKRRLLERALALGDERLDDGILKLASNVGARRVIELESSRRDDDRRFQAAETEVEPGPIEHRPRKTKAARFPGIRQLRERGAAGVRQPEQLCGLVERFAGRVIDRRAYDVVLPEPANFREQGMPARDEQREKRKFGRLALEHRREQMAFEMMYAX +>ERR1043165_1439568 +XMIVQTKIEDSMTLKLVSERAEAELRLINSRELEQELANRDNHFNVRDIVAAALWKTDLMEAVIIRKIYEAIIKIDMKDLTKVENWAEEINRASQNPLAIESMKSKKKQAMPREEIITPEMYIEKVRQETDSVDVVMNEKESRQDTSPEEKERQKRRKGKEVTDIEVINTKMEMTTLDEIEEVKTKATEAGFQQQNYKDIITAIRNENDTREIEEMQDTVHQKKENSFAEAPLEQSIWSPSNRSCNSKATYAAKIPAYNVPGSSQEERTKFVRRLLAFNDHVKEVKEVFERGNAWVRAVFDYKYSREEAINKIQKKHNDWFRMIPDTDEREEDKIREHERPKQKENLVKEEEERREEGLLALTIWDLPQEISEQEVRYLVKRIGKVISCKVKRSAYRTIDRKR +>SRR4051812_11463556 +RHAYRDRPAEPKPNIGNYLEKTSRFGTPRVLEGDRIAHNGIRQRERTNMGATATWAGTGAGRRRMEAVIETLASVHEHGESVSELAHDARTMVTALSLYCDLLDEPGVLASSHRHYASELRLVAEASRRLVEKLAQLEGGDEETSCPGRTSALQACLFPEIAQPHGGAFQGALNGMPGMEPVSGGLIHDLREELLSSRGLLAAIAGPSVTVNTATEGGAQPVRMSGENLIRALVNLVKNSAESIDGAGTIDLRLIEQWEPGKVHTLVLTLEDTGCGIPPEFLEKIFDPGFSTHPARQPGGSWTSGHRGLGLAITRSIFTAAGGRIHAENRTARGARFVIEMPVRN +>SRR5688572_23826730 +GVLALEALGLIALSLLLGNALTLFTLGRIIGMVLRVFSFAAATVDIAIGRLGSDGRLLVGDTVVWLIVLEWLAQSILAFAVGAFVLWVSSDTIGLAGAVLSGFVRTIRRIGIHAHNGRVGLTVVLAAFAAALAGAINS +>SRR3972149_4567815 +PPRSTLFPYTTLFRSDGLAYPFGRWSAFIVLTLAALNAFWLLKRFLGQLRLGGKVPAFFRGHLIENTMLLVSLAVFRGALGRADFPHISYNVFFTYLLALYLVVKHGLAGFVERVGGERAASRVAM +>ERR1700722_15463975 +GITVAQELRDREREPLAAEYVVLAGPDHEPDAPLTQGVEDRQQPRASLGQAVQGRGDRRRSFFPADQPGSFQLADAVGEKVRRDSRQSVFEVGVPQSVADQQFTDDQQAPTVAHDIQSFGDRAVLSVAPHDLSLSVLQLNFKSKRLTSSSLRVTLASMRTGCRRX +>ERR1719253_2112 +CSHETALPMILRGPHSLTSDLMSALISSVASSSIPTVLCITAQGPRYIGTLLSCLSFASLALIHRLHDWCVVLRLMDDDVVWQRHLGTHLALRVMRKHDLDLNAKHPLTHGHVADSLANVVLLRLTSGNE +>A0A1Y4JJG6_9BACE +MHATKEFSSISELKHIREQKSRLSEREAELVSPILTNLECIPYIYELFKNIVRTMNIPLREEIIQRKEFLFIVLFLFVPSVLAGGRIPNGVRKALEHVFPKVKPCTISNNIADVFFLYQQYKYFRSDIEIIYKEMLKRLENDDVSNGLKRFIIK +>SRR5471032_1837456 +MLLVDVDGLSSLVVAVIPLHEIGLDLRDTQAGQLAGASGPKERTAEHSRKRDSLQCAAQVGGLAFAGFGQRQVGAARMLAGQSPGGFPMANEVNLRCHRARIAIRSSLPMDETRSSPGELPGAIVGSSTRTIGPKFEHMRPTLRVL +>ERR1019366_9306790 +AMPITPSSANLRFSDRAVTNVPRSSANTRFFAHQQASPAARVPFAQQQRAVGQAATGAPNRATAAAPGASQAGPAQNAVRPQTPQAGAASGWRRFGEPGGSQQAPRSQTAPQNNRGWTGFGTPGSSSSAPRQQYSQPQPGYRGNSGSSAPQSLRIAPPVVQQRSGGGSYSAPRSYSGGSNGSRPSGGGGASHSSGGGSSRRGSRREKLGSREISVSSPRPRPASAGSRP +>A0A098LH02_9BACT +MAVLSWAQTPLSMNGRLSVTDGKLVNECGTAVQLRGLSTHGVMFHQECYTESSVKAIAQDWKADLLRLALYTENSDGATKGFAQSTNKEFYYQWIDKMVSLTEKYGIYVIIDWHILKDGNPSKYQNEAKAFFTLMSSKYKDKKHVIYEICNEPNGGTQWNQIKTYAEDIIPAIRNNDPNAVILVGTPEWSSRIDQARSNPLSGNNAKNVMYTLHFYAGSGAHNQYKNYLRDAVSAKFPVFVSEWGTTEASGAGNIDSGNSRDWLSLLEQNKISWANWQFSDKNESSSLLKEGSCIRESWIDFRTDNSGNSGKLIYDELRKTKNYTACGSVTIPVTPKPPVCPNATGSNLNIYGCPVTNTFNTNYCQGYNTKQAYVRTDFSKDTVPYFTYWKKPSEGSTVYSAVIQNEKLVITSVNADPNYSTFGFDFGKLNATTHVPIDLRANAVLKFDVSFQKTNYSANDIALYIELVDANEKSINATALGSYNRFILPVNGTTKTIVADFTNGVKRTPPATPGTNGDPKEDTYDRTTFDFSKVTKITIWVNPNVSGVYSRPPFTGTWTIDNFSLGYDETKAVSCEEYVDVDLCPEDPNKTKPGKCGCGVPEDGCDCNGVAGGTAFIDLCGVCVGGNTGKIECDGNAYSGTPYPIPGTIEAENFDKGGQGVGYYDITEGQPASSYRPGDKVFTELAGGSTNNWNVGYTSTGEWLNYTVDVKYPGTYHVSFRAASERATGKWHLEVNGQKIPNSDFSLASTGGWQTYTTLKTTQPIALSQGKQVIRLVFDGPDANIDNMTFEAFEVITSIPAKAERKVTVYPMPANGLINIRQEEMSYNKAVMMDMTGNVIKTKTLSGLTEELPLQNVARGIYMLELTGAKGTEHVRVVVE +>DeetaT_19_FD_contig_21_9884499_length_257_multi_3_in_0_out_0_1 +MKDYIGLVDTLNMKGMVVLERGGGALLSRTYPSNKIDVKDCAFKFPLYTTEYKMGKETPELVRTQSWNGAIQVHTSKAFTAEYGYDLFMNIPPWIYYNHTNLKSQTKKQIKTASETKIMLQIKIPSIKSLFLSNAFKDWLSSGTTKENNNQPDKLLWDYILHHHDFRVYGIKPWGKSNYLHYRDLPITQMDLHIDIRGIETKDVLGLTSVAGYYARKNMAIWHNTDATENEKVVIYQSPNGIEFRKGKKSSEIYKFYDKKLQQQQQYYDAIYTPQSFASDRYKKAMKPFFEKLTDAERTTLRYEVSLRKVPSQRNAVNKVYAKYSDGIEKDIHLDDIIGNTTIYSRVASKVLQVGLYNIFGSEITKEISNLESGDNAMNDTDILQKYKSKGLKYLGIKYLMKNEGLNNEQVWKYLTNAIAGNSSYEVVRRLRNEFRDEGLALDLLDTHQQTLDRLKDVYKNALSX +>SRR5580698_6036952 +PHHKIFDSVNFLLRTWLHWTLRVRKISESHPVPAIVSQIAGFRCCTTETSAPPQSSSPALSRSMQVREYKESDLAQLKAIHASQGFDYAFPDLSNPLFVTKLVLIDANANAATSENRQSIDSTATANGKILAAAFLRLTAETYLLLDPNAG +>SRR5690348_4651858 +LTPGEVMQLDPEEEIILAAGQPPIRAHKLRYYADAALRARVLAPPEVTCPDRPSQMSSPWEDEGPKALAPGSRRAPRGMADTEDTEEEGHVIERGVDEDDAGPGEEEAIEEEGYVLX +>A0A085GHN3_9GAMM +MINNICISLYGSIEDICKQQLVNAGFRVPKETTNGYLPLLLNMNKRLIEPRKRNVHFHSTLIVPEKNRNGFALLINKMQCGSNINGYQSHHLERTNFNDDFLNDFGLHHFHLGETTQKTGKHKRYIERTGNTIFAKVDQNDIYLLGVFGHNSEEKQFIYSDEQLLKSLYDEWPHLLEQCRVRGVTGQTLSPEERNALRSNGTNVITALSDDIAIMSPGGGFMANKMSAYVSIEMIHLYRTISLLKKSLFKIQEQHYPFDADFKVITFGHDELSLFCDKNCFFTKIQILDGNHKTMSLAPGYGPVYTHGFVRGQTTKLYVALIEALNTTASRNYLHPFPSLYIRHL +>SRR5205085_12251670 +XMNDCGALCAPFVCQGGTWEKSRKCRCFPGMRQERRKLWLEASQGAILVAALLGAVLSSRASDWHPASLVLLLLALVVATDQFAIATKRMRISGGHVSFVLAMALX +>ERR1700748_1727377 +DSAGDPRAIYNRLAEETDESNLFLDVEAIGAGENWRTRIDNMLQKVNAVVVVIGPRWLDLLNARAAAGAFDSVRGEIAASLKRSDVQVIPVLVNGARLPAQSTLPDEIKGLTDLNAIEVRGSAWTSDVERLVKALRKSGALPTSRTRWMIRAAALAAVPVVVLAVVIAFFELRREVPNLPKNISYRFARELVSNAGLKVVGHKIEPRNGTIDVVSAQRRAPGSHLFTWQSVEVDLVAVEPYRLVCREGQNFAYGSDDDGFRFEQYKGQASIDMTEGSCAWIDRPMRQEEANVLKPLGFERNLAKHFHSAPGGLLAFCAISDYDKHNKSPRLLALSLEWYARKEGSGQLVPIIGDYMCVDRLEX +>SRR6478672_9921535 +KLYVSHKVTVARSAVDNSETCRAYGDSVAQRRRRGLGRAPLYVARLQGDVLRTRRRELLGAGVQRLLGFVSPSHEREQRIDGELRGRRASLRGALNESHASGGGMAGGQTDLHVPELGFFTGVDLDGLCALERECRDLDLGLGLAGILCGCRRGALPLDDRVRLARLVVPETSQRHSFEFDCTGEAPGVLVEEARGNREISGEAETGSRIGAEEVX +>G7DWE7_MIXOS +MVNQDAKGKLKKLEPVEAAKRLAAYAAVDAHIKPHHRVIGIGSGSTVPYVVERILEQGSEINEDRWFIPTGFQSKQLIVQAGLNLGDVDQFPSIDVTIDGADEVDDDLNAIKGGGACHLREKVLAEAAADFILVADSRKDSRVLGTTWTQGIPVEVAPFAWAKVYQNLALLGCEEPILRMGKAKAGPIVTDNGNFVIDAPFSAVYMRDPADLLHRIKMLTGVLEVGLFAGMAKAAYFGQNDGSVIVRYVDASPPNSARGPPSPSLAVLQSFSFTFQNGPPEHRARIMPSTSLFSQRSVMSMFTESHIRSIKSLDDLDNAPGGRSAKPKYPYVITLRAALLGSPNGQLTLQEIYAEIANRFPYYKHAGKGWKNSVRHNLSINRCFKRIKSADPSKGSLWSVDEDEEVTTTRIRNKKRYATSSRSNYRYRARAAKSRRSFADDDEDEEEEDDRSSVSESASAAFIARSPIRTRRAVLAVDTQTKSSASSHPSATMPSSPTTSELSDANSVNSTFSPLSPAHKPIQHIQREPAPIDSFGRAGTRPTPITALNAGQSVAPRASESPRSAAFPHTESHMRSFAGHVQSPSYRFSAVQGHQMDDHYPTVWPSLGTYTPRQTTFAGAASSTVAGTGPSYPDARHSLGNYALKSDNNHEHVPSTSGAENAQPYYDYPPETEETPTSSYYRDYATVTQSDPHWWQQVYQHSSAAQQHSPTQATHPAPPPYYHHQVHQPPVTMSPLHAGHPLSSGYGTWYPAPNLPPIGHAPNGDVTSPHYPTLLPISQQKRMLQAAQ +>SRR5437870_1888551 +ARCCFLIRELQFWVLGPSRSASWSGFSRIMPLRSSPKLRRRYSVRRVVTVRRSPQNRLARRLEPTEAVLRWMSGVSEPPFVWVTPTRVRRLQSSRAPAGIGEKARGLLWLPAAWVPPFFVLSPEFHQTLSECPAARRNALIDSWATVFERAIVAAGLGRAEKLYLRSNAVDETIEARGRYKSEVCERKHWKPVLRNL +>SRR3972149_5390364 +RLLRGGLLLGLFACLRLLCGGLLLDRLLLGGPLPRPLACPPPLPPTPLPPPGPLPPQSPPRQPPPQPYRPAAPRSRSPACERFASASPPPRGRRGPGSDDGGRPACAPARCRCPPGASPRCRGRSRSRTTCPVRQRAPRX +>ERR1719354_373981 +NLVKLSNTTDLLIVPRKSRRTKDSLLSSRELEQMSSVLAQVLVCWLVSTKCKQHTSTTSSAQKTKTYIRKHNQFLLKPPSLKSKFAIPTTNSPSRKHTTNYEHLFIEVKPTRKHKRKKELSLFQRDGASGFDHEFLNMTNNLLERSSTHTPKEGVIFWKCLSKVDSFLPRPLQRFFLLYILTSASRGVNSLSX +>SRR3954463_10117746 +LSFFFFLMIRRPPRSTLFPYTTLFRSVGEVAALGQGQALGQGVGAATELQDRKSTRLNSSHTIISYAVFCLKNKRIKRHEAREVACLVVVFAENPSPRLRYVIGRDAHLQIFFFLITRRPRNYTLFPNAALFD +>ERR1700722_4865254 +VQQQFVPSLATRVDCGKMGEAQNAKGTTCDHQHFLERVFLLFLELYHSMRYTFIPRTLLLLISLSRGSLSSPGSFVSTRFPPVLQDGISCPIEQGDSHMQPLLHNHDLGTKTKLWAKVARLQGDNASVSANALX +>ERR1035441_2809112 +GLSGREITWSPVNFRADGNGIPAPSTEDPQVTVERCNAHLNVTPTGKSDQPLRIVIPHLVVTTILIEELHHSIPLEVKQATGDRLPHGISPRQLCFSHVETVAEAISGALSGLHQHDYSIDRSVRTLPVGRLRRNRRPACLLRSEWWSTTVVAASPDR +>SRR5215472_7227805 +GTPIVIGEASEGATLGVVAADATNILFQRYDSAGTAQGTPITVAPSPPAPRPTFIGSGGGSSLVVWGQGGGLHGSVVSSSGAGAPFDFAPGSWARTLYLSIADAGNGTFAIAWTGDTATGVTVSGFALAGAGGITGGPSIITAGSVEFRVIKLVHTPAGFGLLIAGLPGNDTVYVVPLDSAGNVTGSAHRFLGADVAWDMGAQGGGLGI +>SRR5580700_8890822 +VLAGYSRRPVPGRSHRPLAWSRVRPGKARTRLWARRCHGANAPSMPGRRRPANRHEQPSLAIVFLSPVFVPSASCEGFPHFEIRTMKGEPHETSSSQLPCELFAAVARSRNRPRTCPRSSGLRTARQFPLGERGQRAHDRVYQHHRARTVARCNRRVRTHFRFWGRGIQKGPRRRAVRRGNGDRCGELSGLALSGGVRAEYEHMAETRRINKVHRSLSRPLTILGAERKLFFFAMCMGAATFNLLGSLLGGLLMFLLLYAMARSATQTDPQILRFLLSAARLRRQYDPMKFSPIVIRREGDAX +>SRR6266545_3341769 +RNGSDRVLLLKREPGRKRPKPCSDTLKRLAALRLRCVTPGTCDEFSRAPADRAFPVLQESCPGIDTALANERIGVLRRGKMFGIDNEKRGAPTGTGGLFHRSRGGRVAGPVAVETKRHGVDPERCEPFKQTRAHTRSTKGGDVVDAASAELVEVEDSLDEDELLPV +>SRR5438128_2375330 +XMRSMASGGSFHCAYRHATQQAFLEAHELAFAYFGGVFRLLRYDNLTSAVKKILRGYQREETTRFVAFRSHWGYEAQFCNAAKGNEKGGVEGDVGYSRRNYLVPIPQARDLVELNAHLLARSQEDEGRKIGDRAQSVGAGMVIETEHLLPVASEGFELGEVSFLVVDGKGCVKARTNWYSTPLRAGAKARVNVLPAWLEVWHEGRCVARHERNYGRGRQVFNLEHYLDVLERKPGALAGSTPLQQWREQGRWPDSYDRLWKNLIQRNGKLSGTREMVELLLLGRHPDFIRGYAIMVRGGSQMFPSHANLIDGFGADYKRRIKRNHPAWVIVYARGEPLQTFGNHVDIDKNVVDAWGIPVLWIHYERTENEQKMAKDAFQNLQELMHTAGAEVLSADDTLSTPGAISHEMGTTRMGNDPKSSVLNGFCQSHDLRNLFVIDGGCWPSATCQNPTETMLAVAWRASDYLAEQLRRGELX +>SRR5262249_4210377 +FPDEGNEDREIDEPPYRLHGWIRTVSHDGALDDQDPLRNSISRSESLPGRALWSAFDLQAGQPPAKEWFRAGSLTFRTGVWSDLPESYDDSRPYRRRAGSHGSRVQIRSDLLTDLLRSVQMDLIVSVHIERSIESEYGRSYDTSTKKRKEFERIFIFRSDGX +>SRR5258706_5404908 +DAPPLLTPPETPANVLNPQWRRIGAQAAPDAEQLRRRGFRQGVIVAAGVVLAAVALTLFLLPVRRPAASPGAASALAPGVNAAPGANATPGANAASAAADAVDLQQLAQQKSSAESWYTRVAPRVRMLADSGAAEWDAAGMSSASAALATVDALLAGRDYIAAQRQLQALDVTLRQLEAGRAAALKAALQHGADALHQHDAAAAATAYAAALRIDVSNRDAMHGARRAASLDSVLAAVARAREAEQAGRLADASAGYRKALSLDPLTSEAQAGLARTSAQVASDQFGRAMARGYAALQARPPP +>H1UR20_ACEPA +MRILNQCVTKCFALDLAGTAKGINLNRKGWENVTFQAARQQNSYPMPYPKDKDMETARNLMVDDQLRPSEITNLSLLSVMRELPRECCVMPDQHSVAYADITLPLGQGRVLPQPLLTARLVQAVMPAEKARVLVVGAATGYTAALFAALGANVTALESNTRLAEQGQLFCQQEALSVSWVIAPLNEGAAGNAPYDVIYFDGAILRFPAFCAAQLAASGTMAGVMASPNKLAKAFIAMREPKSASSFIVTNLFETQLPLLPDLAAPITFEF +>SRR5687768_16770258 +ISAAPARRPPSRIGAFPPERTGFRVARMGRGMHRLPLRCQMARASVGRDASSVHRIDLPCEQTGFLCPPPFDVHLKFLPNLPPLQGWTLLAHAAAGRPDALARWLAGHRGVTDVRVEPGLAPKILRAKVAVLPELWAAASPYVRVHHLDLSTEGHASWFIEGSKKDVLAF +>ERR550537_1009424 +GKPWPPRTTSDPTSQRAGHVYLIHAAVSNVNGFLDLGVGDKFGEAASAVDPGSAAVKQRVAAVTLDHALDHESVIHVLKSDTQGFEVNVMSGGKQIHRKARLVIYELWPKGLAFAEASVKDFFTELADAGFVICYDLYQQRPANALE +>ERR1719378_273336 +QVHFKTRLEFLKLDLQQIMKEEEIPLFPTKGLFHRTEDIAIMVQHFVSELLILPNLCSAREIYRDDFLKLLQQKSNTLFSYIEAKSLRGVDPFTHADIRQMKIDLSLNSEADFRIVLAEAEKLHPGLVSFLFQDPGSGTPYQAIRTAFVX +>SRR5260370_18266583 +DRTGPVRPDRFAQPRNSGANVGRQTSRFLIGSKYWDVDYTRTQTASNADTDAIMRRNRKVLVGVFAPIRVVFATPGRALLGATEGNGRVGSIWHGTRFQVPKREFGSLVCSSSKYLILHDRNNLSVRS +>A7T0A9_NEMVE +MKSSPTFRFWNAILHYQMLVLLVVRAQRQRNFVLYVEALEELVPLFFVLDHVNYAKWTSIHIRDMKSLPQSITEKFQDEGQFVLSRTDNDFSAMPFDQAHEQENKIVKSAGGAVGLTENPTAFRRWMLPGPETTRLLQQFEGQYLDDTDSETGDRANHETGLSSQKTFKIQVNNLIDVIRKMGNPFLDNFPELVTLDSRDCMDNEEAETIVNLDALGKSQYSSFLKDVTKDRTVAIGKPLMQNKLPLFRKQASRNKPKQSKTTPLLQNNAALFAQLYIAMQSRDAEFFSHEVQPSPPSLSEFGSLRLPTAKSDLLKCLSQPPQPEPPTEVDCKVCDGAVIVHCLPVTGVMTFDDYAENVFLPYIRNLRSRRVDIVWDSYIPNCLKEATREKRGTGLRRKVEGRTKIPPKWMEFLRDPRNKQELFQFLSVKVAEFPWFTVRKEVYITRRWMLSGPETTRLLQQFEGQYLDDTDSETGDRTNHETGLSSQKTFKIQVNNLIDVIRKMGNPFLDNFPELVTLDSRDCMDNEVAETIVNLDALESNVASSGEADSFLRVTYLKDQKLKSEAFSHSGDQLTTAEWEQTMKSSPTFRFWNAILHYQMLVLLVVRAQRQRNFVLYVEALEKLVPLFFVLDHVNYARWTPIHIRDMKSLPQSITEKFQDEGQFVLSRTGYDFSAMPFDQAHEQENKIVKSAGGAVGLTENPTAFRRWMLSGPETTRLLQQFEGQYLDDTDSETGDRTNHETGLSSQKTFKIQVNNLIDVIRKMGNPFLDNFPELVTLDSRDCMDNEVAETIVNLDALGKSQYSSFLKDVIKDRTVTIGKSLKHNKLPLFRKQASRNKSKQSKTISLLQNNVALFAQLYRSSMVTVEIKKLLNIQFLVSLCGFALFIKEL +>SRR5262249_55098951 +TLLAGDVGLYSDFRYDQTGTDILWMGSYPPASTAGIYEWHRSDGSIVQLSPTGDVVGSFAHNADWSIIAYTAKRDSGFVYDQRVLNRAVPGKALQLSNPAGTAGVLLYTGSYFFTKX +>SRR5215218_3154104 +SPDVAAATSVPATSGAAPRTRSRGSMDAAVRVADEAVMPGTSGCWGPPLGGTMAAESPMLRPVTFRLPVPALPEGCTRDRLHPERREPPRPRRRPSLRRGGDPPVHPRVGREGRGPPRGLREDGGARVPGSSDPGTVRRIRDGLRLVRAPVRGAGARGHRVPRRAERPRRPELAHAPPVGDGGAEAALAGAPGEGREARDVRADGARRGDRRGVAGVHGTTRRRLVRAQRAQDLDLARGPRRPLP +>SRR5699024_12259917 +SCALIILLSFPTRRSSDLKVVCAADDAAAGHLGAGLRVLRIVESLVVLGPDIDAAPADALAVRVLFLDQIEHAADDEGAGDLGTEEVLFLESDAGEFGGEGMGIRIGREIDIVGQPVQWDAHIKPSFRIGSRSAHRLRPCRAYRX +>SRR6185437_13271781 +SVKNRVSARRCAAHAADYVGGFIAAHAALDVRLQVNGQFDGVKAGLAGLCNFVVNTAEAGGGEELLRHIVLDPGGGAQSGIGVALQIALLNGLRVFHHIPAVAGKVRSVNDKHADGAQTRGFLVLVCPAAVVGERFALEEAVVIRWRFVDDDEGYFSFHIDAGVVVPVVLGRIDAVAGEDDRRINVGALLPCLVLGNDVGAVVEIDGCAARGCEGEARLVFHGVDGNERDFLEIGAVIACRLEAGHRELRADVFGGELVAACAGAAAFEQIERKKADVRANLLRINGVCGSARGGRHAGNVGNGGLLRAEQRKRGEREYESKMHVPKLHSGGSFGLHRYAAMVIAGTAQFKAQTLRALCGALQASRADGRGX +>ERR1700731_1967141 +WPAQLKISEISTGPVQPAFRWQRTTIPLLHDCDRAKSYRSIAPRHWRELMDSPTRSPSRPEFRTRPATPAGRQVESFFRCADNEPDAQNCSRVLLPTPRVSDRLPLKMPFRRETEPLHALKSRAGIRLCHLTGSLILEFVCCEIRFDLRASLREPTASPRTAXX +>ERR1711974_545716 +CLRYELVPLFKSACCPPFFAKQTVSSKRTISIGSDRATSELSLELGWPIASAWGVCTEMATTGGHPPKGCLLRQATTCMGGHFVACLVRMLLNDVALKSIVLPARX +>ERR1719506_2640246 +SAQLAGGMGGYSQHRVAETGSSKAMLGSLGVFRYVNLKFPSLAHAKRRALMLFLATWSSSHRRAVPLLTKPALQDLAVCEETLCLWDVYGLNWPHGDRTATFQLNKRYGSTVSEMISMCGHGPWSSIPSREDKGDANRLQPVGVRVASPVDEQEISRASAGNHQGKITGRGRLPQIASAASGGSTLAKASILSARTFTSSGGIVSPLKTNRKHVSSEELSSPRHRKMTLRCITGSSFSIG +>SRR5574344_946438 +PRSLRADTLKRRSRRMVEKMTKYSFVLLSGETEGFLKWLQGLGIVDVTRSTKPVDEKSSQMLDKVSRVTKTLSILEKLDYSADPDFELIRQAADKTCIEGCKAVNTLGATARLEELKAELAAARKTMNDVA +>ERR1712128_216805 +TAAAVFLLQLVMARSSSLVVRMVGSVWSSPSRPTAKPKEVICTKTRGHARIDIASAASQVLQPLSHQHLHQLNLQSWHHAQSHSNVEAPSASLFMKIKMIFLIGMKLEFDVWPWERELTWQNLMTWLTLX +>SRR6266568_2358632 +PSTASSAYALVTVPRAMPRSAASTRVDGIRVPAASRPSRIAFRIASASPWPRPAAQSRCRSRPALDHSIAMPLDHTDGPVSAYRGRYERQAQSEPQGGGRIGVSRGLRTATGSAQAGRGRGDSGRSGSETGRVDQDPGVAAQRLRVLPRHAQPRRAQDRRGRAAAVRAVGLARDRLLHRTGTGRAGTDRGHDGSPPAPGRAERDLRPGRRGFQLPPVDRRGLARQRNQHVQPLRCHRPGTATVPGMNNIELAATLKSLHVPGRPLVLANVWDAASAKLVAAAGFPAVATSSVAVAETLGYPDGHGAPVAEMLGAAARIARVVDVPVTVDAEGGYGLPADEFVDRLLATGAVGCNLEDTDHAASGGLIDIDRQAKYLADVRAAADRAGVPLVLNARIDVVLATGRPADQAPLVAPIVERAQAYLAAGADCVYPIALRDPEAIRQVVAAVAPAPVNTNCPPDKAGIAAAAKLGSGRLSMGGGLWAVVRTGLAARLA +>SRR5882762_5772273 +SRPLFAVYHQTFPRTCFGRVYRRGSRMKLSVGRYFTQASLGCGECCIFIEIGELIDWVVFSLNKENIPSRAYIAFKNEEQLATFSQGYDGHLFRDKAGAFVFVVRHSCPSSNWHCFGGLIMSLVPGNESIAVVEFAPYQKIPTEKKKADARGGTIEKDEDYLSFLESLSNKNKPTGENGEPPNLESLSVYLLSSRIPSFPHTLPLHPLLQHLYDYSLTHAFICSCRNATRPPTKNHPTSX +>SRR5262245_8502620 +XMSWLRIEKFFLVAVATVLAHQALGAELIHPGARRVAFTRAVVNLEYLSGRLGHDEPPSIRRSAPLGESVWFGEIPRQLVGEELDSRRHYVPFAVMLDGNTVVRAWCDANMNGDLADDPSPALSAYPGSMTTRSFRVMLRWRARVGDRTLPIERLVRVVVEGPDTVGAVPTYRLQDVYGMLGTIEVEGVQRAALLYDANHDGIYTRGRSDGVFIDLDGDRHFTIDPMAPDFGPFAIPFTILHASYAVDSVALDGSSIVWRRLSPAYAAPAELGRPAPDFAFQDMQGRSVRLSGLRGKTAVLYFWATWCGICRRQAEDLRSLYAQSSRTDWELVGVCYDTDRDAAQRFQSEHSFTWPASFSGGLPAEDPVGRLYREAGAGVFYVIDHDGTLARKVFDVTELEAVLDSLRTAPTESSLTGHHYPKX +>SRR5262249_12765844 +RAIWAAWRRFCCHERVGIIRPPKMSYPAYFFNSGCVDHTAAHGSLQDSRVRRTQQAHFQDLGAAAAIGRCAGARTRTPDAAAGRSRAARFSSPTAARAVAPATPTVAAADAGAPRTIYQGPYSAAPCSRELVNGRSMLPX +>SRR5438132_851461 +XMADLDTTQDHRTRTLVDTAAYQPGAIAPDDATGYRDHAAVIGQTSAGPTRPVPADRRIREGEGAAGIFNAAAVAAGGVAADGAVGQRGRAAKAGQAAAETEGCAAGGVAADGGVGQRRTAAAADHSAACQAGGVAAAGAVGKRGGPDQVVHATAEDCRVAAHGGVGHHKIAVVEDAAAAGKAAKAVVFASRGVAAHGAVVQRKRAGIEHTATGVGGVAADAA +>SRR5262249_12382799 +RPDRPTASSTNRSSALGRRADDRAVISAFLQMAAAVLAIAPLGICMNTQRGLCPPSHLMQECAMSVRDDTPAVRDLNGRAALVTGGASGIGAACARELAARGATVTVADVDEAGAKDLAQGIGGRAWAVDLLDVSSLENLRIEADILVNNAGVQSINSIVDFAPX +>ERR1740117_695841 +LRIKYLNETQQKNPKHFQDPETGAQLEIKDQQTLSDWLLMYYGKFGIKIELVTDQSSESFQFVKGFGGIGGFLRYKLELDDIIGDAAGQYDDQPVPITVIPISNSRESTFTTTKPPVEDTFQEPSSWISNQEPWTPSELDHSDNSSDQTTSSSDKLVPVTTGLKDITPRVPSSSTPSSTSLEKKLKVAIAFKVSKSPTLSVEELDPVWEPSLSPRSERNTQTEX +>SRR5258706_2253991 +TVEDVAILRCVAAAPHDHAQPDLALVSVAVGELVFPAPIGPIVREVPLVTIAVVPCVGAFAVLETFAEFAFVLECLRDVLALAVKALAAHGAAVDRSVGERELAYARRDFASGSRVRLRRGRRGGRRWREWRLGGNRRPWCHLRRSRGNGDRCGGYDRLFRDLVPRALGRRAVRGCDLLGRFRGGFGRSRGGLHASLRR +>SRR6476619_4763585 +PKAQPRLHREHELRLLHVAVLRTRLSHHLCRVARPGPTRPLARRARDPHHVRTASANLSRSRRMYPRLLAAALLSPAQPPKADPNDVGVLPLGADGKPLNLDFETGDLKDWTATGDAFKGQPIKGDTVAPRRGDNRSRHQGQ +>SRR4029079_7780467 +PEPDSGTGAVGGGVPDVSAERQADYRELVEEGPVALTALDPRGTDAVAAYCLLPTAYCLLPTAYCLLLVFPVHVVIHELLEARRQLVVGSAQRRDVLAVDEDGAVGRLARAGQADADVCGLRFAGAVDDAAHDGEGEGLDAVVLLLPRWHLLSDVALDALGQLLERRARRAAAAGTRRHARRERAEAERLEDX +>SRR5215204_4095657 +VHGLAGLRGGQGAVARDRAVGRVARRSSALRAGSVALAEAVAVAAGVRVAAAVAVAAAVAVAARVAAAVDRVAGHGIAGVGAALAGVSAALAGVVPTALTGVPTAALAGVAAALLVVGRLGRGRADRHLRVAHAGAALGPRSRGRRGDDERDQAQQTQKSGDPAHIGPVAMRSRRLEX +>SRR5512147_2844591 +RAYFNAERPPWFLDPAMSGGGMFGNVGLHRLALSRSCLPGLRPAAVTASVSTLPEHPVEACTAAIVTYAGGGAVLYEEVGYFPKPSWLNTGTHYIFENGIVSWDEKLW +>SRR5579859_1021161 +DAGTVAGAGRQPRADCRDTDAESAAAAAKTRLDLGRGRRRRRGGGDQHRPRRRSGSRQGSFAVDRRRHVGQVMRAVWLCLLLAGCRTGPCKSGTLLVSVHFTGAAATADSVDVTVTVDGMNGHTTLLPLRSSSGTIEIDFAPNYPVGHTANLTVVARREGNLVGTGQLDVK +>SRR4029079_5257423 +VRLDVSAGSDVPKEVDLVHDRPVVTACDRGCIVDDQPAGGELSEMDTAEVCRLDLANRHLCLAEPDVELLGQTAICDRPEARYGRRHLQVETRGIDDVELESSGYIPAHQPIVPTTRPARSAVAPAREACDQLPGRVRRDVTGLTTRPSRGASILENGRRSSRSSSSAGDPLDEPDVVAAPTHRARQTCGQRRVVX +>SRR5215218_4007277 +XMKQSVLVLASVALAVLLAATGVVWAEPLAAEDQEGSGQSAASVTEASQPAGRVWSWGFNRDGQLGDGTTANRSTPVRVEGLSGVVDVSSGRQHSLALKTDGTVWAWGGNDAGQLGDGTTANRITPIRVIGLINVVEVEAGWNHSLALKDNGTVWAWGNNFQGQLGDGTTTNRRSPVKVDGLGDVVDVSAGGGGGGIGLYNHSLAVKDDGTVWAWGRTLGEFGDVVNSSKTPTKVSGLNNVADVEAGWHHSLALKDNGVVRAWGYNGGGQLRVDGLRAVKDVSGGGGHSLAAMRDRTVQASGARSFGQLGVRSLRFVVDV +>SRR5688572_11278665 +ICRAPSCTSGTARCSISTTSLRRCCSARGWCCRRTNTRSSARTCSTCSTPAAASASRSGPRTSCASVSLRSRWRRRGWARTTGTRAAARPRERRIMDRELLIEIGVEELPAAWMPDLTVQLAKRLEARLKEYRIAPGAPVESFTTPRRLTARVAGIAERQDDLDETITGPPVSAAYGADGQPTPAALGFAKKQGVPFEQLTRVKTPKGEYLACQKRHRGRSAV +>SRR5947208_11212059 +AFALSNPPFRESVVDVGNRILMIHETRIQREGQKPAELMSFRHLANRVSIAICFLWPTITAIPALAVEPYIPLSLAIRRNSYQRKASAALATTRCCIKKNAFICVAIILYFVKRRNPLRRFAPQLCARFARTTDALPPYPAVSRLYLLX +>SRR5439155_26842666 +XLQDDATDQGALRHARHRVRRCRQPPAPGRASSGVNGALTPMPSALIVSVGGTPDPVAFTLREHRPDFVCFLASQRSVDLVGQIKSAASLPIQDEKVLVDDADDLLACYRAALDCVGX +>SRR6266480_5487073 +VLAEANVLPETDMDYFGDDGDRMHMMFNFQVNQNLFYALAAADTRPLIKALKATNRGRRRHSGGSFCEITTNLTSVVCKRSSGKPCLRHLDRTNRCSFTIVGSDAGLPQCSGAISAGLSWPTVX +>ERR1719433_450597 +TGCATPKEVLTAAAAAAATAAAAEVAIAGIAAACSVQQFLSPKQEKQLGSPWNLPRGLLSRGNATVPGVRSCREGLAPAGTTPARRYAAAAREPTWSSRVWASAGPGQAGPVPPHSGGSWSVGARFRMQLGTSPGATRVHFRLIR +>SRR6218665_3920812 +XMARAVTRIREENGVSATRRFVVPIAIVMLLVGAAMVAVILYSARKMDENIVSSQTELIDNSLNARLTRSLSEVRSVAWWDEAVTKSRGTIDTGWLDLEVGAFMTESFHHDRIMILDEQNRPVYGYNGEGRNVSPPITDSSYTEGATEGTTERRYGRSAAAVVRIGDHGELASAMAITPSVDMSLQSARPRILVSFIKLDQAYWAAAGRDMLLPDLGFGRPSGERRGDYQLKTDTGQALGTLTWTPRRPGQLLMKNVLPLVLAGLAISLLVIGAFARRLFSASRAIEAREAKAQHLANHDSLTGLPNRRKLEAEFARFTDAAKAEGHTLAIACVDVDRFKDINDTLGHHTRDQLIPSLADRLRRAMREGDFIARLGGDEFAVMRNCRDAEDGEGLLADLRDCFRTPFRVVGHLVEANSSVGVAFAEPGRSFDDLMREADIALYEAKASGRGCDVRFEAEMGQKIEKRRMLEAALKPAIAKGELSVLYQPIVEASTGQIASVEALCRWNSPRHGFVPPDVFIPIAEEAGLMADLGRVVMESAGQDSLRWAQARTPINVSAAQLRAVSILEYLISPTEKYGVNPERITI +>SRR3989338_8474758 +XMKHGEMARRSRKPASSCKSRDCLIGSTEDFYHVEQLRDLLDNKLPLPLTVFGHLCEGKRVGRQTIERAVRDLQAIAVQFKTGPTKAERRGNMTTVGSQYRGTQEFLRVYRQLITAAEHRGLVTYTQVAHILGIHSLGHHMARQVGQILGEISEDEHRANRPMLSVVAVGSGGMPGEGFFGLARRLKKFSGSDPSSKRRFWATEQERVYKVWQPEXX +>SRR5215472_2857866 +AERGADSKVRCRDEYDYASQKVAVCASVLVVGGLLVERGAIRADDLAVALQEQESGDRRRLGEILVALGWCRQEEVSAAQQILDSRSRATVVFETVRVAVDVLDTLTVLQCSITSVITHVNDISGTIASAAEDQSATTRETTRNVSEAAKASDEITSNIAGVADAAHGTANNAHESQKSAEDLAQMFSQLRSLVEQFKIDRNMSSARTRTAHSRERQPGWX +>SRR5215216_7579447 +EGYLQHGNTHSDRWASVRWQACTPSLPPSWLPFRWRRARFASLFLSLGVATPSALDWQPLAPSSILYNILQLYHQKGAGVATLGLGLRVLSGPQQETNVFGLQSLAHPTHQVLVQPVQVGLLAQPRRRTRSRSLLRQHFLHYFSEDVSRGQRGIRTSMRRHICQRRRGGPLRSRALRLRVLRAMLPSALLMSQLSSDPVHRMRSFFSDYX +>ERR1719150_3364345 +SSSSSSSDKILWFPFQPPINTGCGGVEVEVTKSTGTMLHSAAPQPFNMFPFGHPAQHPQTSHPGDMFSHPPAHHHNPQPAAQQPEAAPKPRFLFKMPRVVPNQKEKFESDEFLKRHSREGEVRYTGYRDRPIHERQNKFLNAARDGSTEIAFVATGFNLIMNFDTSSHFNPAHRQCDFDREVGKLHLKAPMILNGVCIRWRGWLDLERLDGVGCLEFDEENAMVEDAKLREQVESYNRRLREFEEQSKARSRHLAGLVSSQHSQFPSHHHLQSDILRRLDLDILQGLFPPSTANSLHTIICSQTFSLRLGRSRSNLQQRPSSPSDAGSGARLHQVHQAPEKQLPPVEASSLTATTTPSPTFDLLPLLGLPHPPDFAQHPPPALWVEVTEQQASLAAPLPAGQARLKQTNTSQSFGRRGTFRPGTCLEKINASKLGGDLLRPKKKLDPWTFVRASQLSAQMLQYHNRX +>SRR6185312_8718178 +QPVGHAALSRFVSPPRSKGIGWAIAGYFRLTTACLLRIVSPQSRLACVGGQLPTHISISRQSRLQFAQRDVLQRFLDEPSSYSVAEVKLGLSKLQPEIARRIKGPPSPETHSFVATAVRSLGRIKGSSNCELRIQCLFDCAIYSYNNGDTAGFVTSIQLLDELGKYSNSPSWTRRIQMFGGVCHADIGNVAEAVMRYAQALEISRRANDIPGQVATLCNLGGALNYGGLHREAIPALRLAIRLAQX +>SRR5438132_413551 +QGQANALGNLAIAYHETGKLDDALNAYQDALGIYRQIQNRLGEAATLNNIGIFERERGKLDVALSNVRESLAINRQIDDKDGIAEALNNLGNIYRDQGKFDLAISSTREALDMYREIQKPMGEAICQTTMGEIYTAQGKLSDALIALQRALELDEQAKYVPGIANVSGDMGIVFAKQKDEGKALEQLKKAIDLYVKNGIRGPELKLYQEWVTRLEGGTRTMSRX +>ERR1719318_1879121 +KVIMVRADMLVHHATIEKAITEYDDDDKVIICSGSEKTIVSKRILILFSPIIRTLIASLPCCTPATIMIPEFSSSAVQHLTRILETGFTLGVPIESFKQVYEIIDLAKSLNIEMSDLRREVKAKVLEDEKDVKTEETHLVNNEVVNATNEETEELQSDKILILKDKQKTISKDILSFISQFRNGVEKLTCSECSETVTRANVVDHFKEHIMDLNQKIDELSKGNQSSTDKEEKITKKPEIATPAEAFKTESELDNVDIVTDMKVEENYVNEIKER +>SRR5689334_23174827 +GRGHRGREKQISHLQARVSRQLAQQRRSLVMGLGIDLAVKDLRPVTCLRRDRDAVVDNLRISRNLLRYGQDPREVDAEVHAASLGAVSAGVSGRPGYRSSPTSASKASVYAARNDEAPAMKAARDWFTSASIRS +>SRR5271157_4508164 +RLKHGFVARSTSIGHHVGKWRAASGGTIERCAPRLTRRVERRTRRRVGTRKLARQGGSMPEELAYARKASGLVRGLSFWDVLGIGLAFLTPIYAIWYVIGFSLSVFPRAQLLIAIGISVLTVVWASPIVWGILGGTMPRSGGEYVYNSRIITPAVALGASFAAIVAQFYWNLFNASLLGVPSLCTLGQSLGWK +>ERR1719433_1034072 +PSYRVFVGLFTLKKRLCWFVYIEKMAVNDHPFILTSIYVAYLFLMNLGTMVGNACFGCKWWLDVILLKGDQAKNHSCTDAALFNHTQHSYTYTLGFVVFVCGLAHSWVDGDMETDAIYGPPAQDVATALGVWFLLLAVVNFYTMLGCSAGCGDIKCSEDFEFFNILVNLCFDLLLAIWLLLYSNASWSDEGEPPLYDWRVTKVVVWVGYVILVLCIIGDWIVQSVRKNIMGCGACGMKCCDDESQEVVGVGVNQEEVMPMSPNAQGMQGGMQGGGQGQVMVSGNNFDTQMVDMQQPQYGHVNYNQQYGGQPVTYGHQQYGPSGQSLMX +>SRR6516225_9276130 +SAPRGTRRFGFESQAMIVNFPRKNIRHDIKTTALGLLPAIKTTRDIVEEIREVLKQVLAAIHNEQRRRRLRFQVFPRLMTKAQAANYCGVCVESFAVNCPVEPIRIRSGEKSVRWDTHDLNEWIESKKQDLIGSNGVDWLKRVGX +>SRR5215831_4168361 +TDRRRGDRGFDRRAGGQVDPVPRRRAWQGPVPAAGYRRRVRAVQAAGRGRRTGAAAPAPRLVCGAGGAAGGLRARPGSMAHRPGRRSREPSRRLGVLPVGPAGGGRGGEDGVRPVAVLGNPRASHRGPPHPDRAAGQAGPGRRGAAPGPVGRRLPGAVSRRHPAARALLEAGLSAARTAGDIGAEAWASSFLGWDLYYFGDTKAGDALAQTALKLHRESGDQVGVVYALAQIGFTRLCAGEALAAADAWGECARVCESSGNVWFHAYAQWGLGVAALLRADYDSAAGLECAALRTMRHMDDPMGVV +>SRR2546428_4767028 +GRTVRAIGAGGEQKVEPLGDRGWMGDPRPQPARAEEVPQRDFAAHPVAVGVDVRREGDAPARLQDARDRLRGPGALGGNADAICGHDNNISAAGAASRLASSAQACQLPLQHAVLAAVAEVNPEPDYQPYEQPDPRVHGEKTNITKTGGLPQQRPHGDD +>ERR1740121_3388036 +PEPPQMAPPRDSKPTGTAWPQGNSLQSLAGVLAQIDRAVWDFDISQDELQAKFYEALEARKRCTEIVVEGELPEEEWDWRPGEDDGAVLALPPPPLAPPAKRARPSLPDLNLPVQEYGNVQEVPKHEKGPRLELILEEVVRMLKEAGGRMKLQDLGTRRLMELRKGACGNLAKFLYTQPETVFVDDSTNV +>SRR5579859_1509829 +SCQPEVEVREHSTRNSLPLRARLSLQARVFLFALRARAGITCCVFYPGETIRLLHALPDSGLPQFAEGRVLSLRRDEHNQIIDVEVDFHRDSHTLKAELPLGDVELVISDSSLAQTAVFWGLDEPPRKVIEAAMHSLLDSGFLMRDGLNLVQLHYDRENRWWKWGEKLMDPTGALVATAAAAWDGFVVAFSGQQRFHLEFRQQRLREAVRMLHERHEVYLEQARTTHPAMSLMRVLLNLSNAAGARYCAFPVATPWIYDQDFASVLRPPLYPDFLLVPEKELPRSISTPFRLIRLTGQRSILTVLPVKSSPTETGFERSERELQVDRLRKCKALGEKYYDQMYEARFGTSGLYADAKDAFRDAIAAANELGLKEEAAELEKRLDHIKAVYRSQFSX +>SRR5256885_8719643 +RKKEKGPAPWGARASPSPELLRGCGSGAAFFVRVFRGIAGGLAVGLTLRLVGFQLVFVRLDGVFVAGLAIGFDLVLVLLDLLLVGLHGVLRGGLRERGPAERQESGKDESRQQFHTSSCGVGLPASFNARTLNPDDTQTGPAFPRTIDDAMTRQSAIAAAQKYFDAGGFHADLARRVAIPTESQNPERQAELERYLETEMAESLAKLGLQSRIFPNPRGKGGPFLVAELLEDPKRPTVLLYGHGDVIRGQENEWRPGLGPWTLRQEGDRIYGRGTADNKGQHTINLAAIETVLRTRGRLGFNLKVLIETGEGMGSPGLKEFCEQNKALLRADVLISSDGPRLQPQRPTIYLGTRGALNFHLTVELRKGAHHSGNWGGLLANPGIVLAHAIASITDARGAIRAPEWRRGRRX +>SRR5258706_15926144 +GFGAGGRAGLGAGGPPARRFGAGGGGAGGAGGRGGAGAERNDRRERGAQVLEPPRQVVENREDRTSHSASSMPSGRHHCHTAQRDNGSPFIVGLIVVHCGEHGGELEQLPFKTPPRX +>SRR3972149_2856803 +TVYNAVRQGAMPRMTDERVKQLQDEILKMPQAEGSVRHIFMPGIYMRELTIPAGVVSVGHNHRYNHISMLTKGRITVLNNDGSLTELVAPFTMISSPGKKCAYSHDEVVWVNIHAAPCTDVETMEQLLYDWSDAPDRIKELPDNTSSDDYQQMLIEWGLTEDDVQAETQVDNVAPMPYGIHKCKVSDSKLHGKGVFATANISDGELIAPVFMDGLRTPIGRYMNHSGNPNAVVIKAPNGDNYLMATRNIQGCMGGNDGEEITTNYRETLRLLGGAGWSGRRDPSRAARASREACRSCPRPISPVP +>ERR1719162_375500 +LMAGALSQPSHVDPLPGWDFICNGYVPGNLPGREGLGTTSPQWLGEVGCMRACENQGRCDFVTYDTFNGNCWMEIIPDRPTECDSNTGGWAYWRNSQPAPAPSPAPVPSHVDPLPGWDFICNGYLAGNIPGRQGLGAASTQWLGEVGCMRACENQGRCDFVTYDNLNGNCWMEIIPDRPNECDSNTGGWAYWRNSQDEVRRRSTTQQNDVRRRSTTQQNDVRRRSTTQ +>SRR6266849_10918975 +VQMLGPQAASQALAVLEAGREEPLGLVDHLFSPIRTKAASIVPSALSRCSSMGLSGWHPGAPSPARCGARRAAPGASARGSYAERTTPSAHPDRLPVVQSPPLEEVAGIRGRPALRDQTGGPGFQGEDAPHPLVLRGLDMDVRDRDEDLVQDARPLKRREDHCPALTVQVAHVELVEESLVRADEPARLDPLLAGEEERDALSLTPFRAKTARAGVRRDDDR +>ERR1711972_1082418 +RSKGRAMPCCYMEDGAHQHHRKRCLGRQDLAPNRAKLTTLAPLASWPSWPLPFLFRISGRPLSKLGSFWAAPEQALGGSAFDLAWEPSESAPRSPLRQRPAQLIMLGTLKPNLSRHVPPGADAPNTLMPTKASAHSPQPIVTAASTLILGTLFGKSASLQLSGCARKSSQHGMDTTRTFWRISLAASTQRCTSEPVATRMSSGSSHSTTAX +>SRR5512136_1229453 +DTPEAEKAKNRVTRPHYTAHGYARSFFCQSTHMYLQTLSLENFRNYKKGIIEFSPYGAFFEGENGSGKTNLIESIHLLCTGRSQRNAQKKEMVNFNASYASVRGVFVSRD +>SRR5712692_9023375 +TLGIERIECNAQDARRRDACGKCKVWLCEAAQLAMLTKLGKYEIQGELGRGAMGIVYRAEDPRLGRPVALKTTTAEVAGNPNLLKRFHREAQAAAKLTHPNIVTIYEIDEANGVPFIAMEFLEGESLQKIIADRANIPILRKVHILIDTCKGLDYAHQHGIVHRDVKPGNIVVLNNGQVKIVDFGIARVGVSSMTRTGVVLGTVMYMSPEQVQGQTVDARSDVFSLGVVLYELLTYQAPFRGDDVPSIFFKIINEPPEAITKYIPQCPALLEQIVQRALATDREERYQSAEDMGFDLQRIGDSLKRDTIDVFLQQGQRSLRQGDFTIAKESLQKVLEIDSSHQLAKSLLAQVREQIQSRQRAQKVDHNLGQAKEALQAEQYEDALSLFEEVLRLDPGNEEAKQCKQLAVERRDRSEKVRRHLERAEKLAAEADFQRAKAELEAVLTIEPGNAAALEMIDWVVKELTEQERLRQVRQYLEGARAHLAGKNFVKALETLERAREIDPINIEVEALTRLVRSSQEKEERRKVLVTRVAEIEEALSKGKLDLALACVEQALREFTDDAQVLRLHEQVLRRTEVDKKRRYVEEQLQAARDFVQKNQYSSALAVLERAIQAVPDDPRLGPFLKTVQESQEQSVLEASRRDAVREANEQIRAQNFLAAIETLEKSLVRAGQSPELIDLLQFARERYAEQQQQERVRQALARAHSHLRDEQHEEAIRVLARAQDELKSSEIDALLAAAREQQEAFERRREEVIASALKLLQSGEAARAVALFETAPKVYFTQEEFQRVYSQCRQSLDRANFVHSAVEQAEKSLAEEDIGSAHSVLEQALKPYPGEPALLALQKRLREEEFRLRREERVKLLEEAQVAVGRMEYGRAAELLTSVTWESRDLPELAVQAELLLEEAQRRERERQVLSRAQGYLRNEQYVEAEQFLLGIRNELKTGEIDALLATVRKEREAFERRREEIIAIALQFLQSGEAAKAVAIFEGAPKVFFKNENFQRVYSQCRQNLDRANFVHAAAEQIKKCLAEEDISAAESLLEQALKPYPSEPALLALQKQLREEEFRLRREERTKLLEEAQVAVGRMEYGRAAELLTSVTWESRDLPELAVQAKLLLEEAQRRERERQVLSRAQGYLRNEQYVEAEQFLLGIRNELKTGEIDALLATVRKGREAFERRREEIMAIALQFLQSGEAAKAVAIFEGAPKVFFKNENFQRVYSQCRQNLDRANFVHAAAEQIKKCLAEEDISAAESLLEQALKPYPSEPALLALQKQLREEEFRLRREERTKLLEEAQVAVGRMEYGRAAELLTSVTWESRDLPELAVQAKLLLEEAQRRERERQVLSRAQGYLRNEQYVEAEQFLLGIRNELKTGEIDALLATVRKGREAFERRREEIMAIALQFLQSGEAAKAVAI +>ERR1719240_1252999 +IRDTTRGVSDFDYCLCGEAGAKFLVWLHDCTNKLINFEDRDHFDYEHEVWFRPPNATCASPKVKLCAESARCTLCVDPVADDHTFLVQLFGISQLIKCVGPREYAPRLPVVYEAEQNERRSLX +>SRR6266511_3081427 +SAPMTVTPTRIFLRYGLIVSVCCGRCLYSLSPRVASETSGADHQVVRITSLAVAVAFMLIGPLLSSAAQEDVLATLRKGHPRLLVLDDDIARIKKQIETDPTARKYFEHLKIAAEKVIQQPVTERVLVGPRMLGASRAVLARVTLCAGLYRLT +>SRR6185312_7578494 +SSDLCVHGHEAGSGDRAGGGRGSRQALLRTARLAPGRGDLPPDARDIPGPRPGSGATKLRLVRHLQGPGRQRLVGPRGPAALAGTVKGPTTMGATSTEPTSAELIRDLLEQAAAAHGMHEREIGRPDPDWPRWYAEHMARALRAGGYEVHPSHGDGGTTLPVGSRRPELAGQTVVVIGGSSGIGLETARRARAEGAELIIAGRNPERLRTAAQEIGAQGSRAFDATHPASLDRFFQELPAHIDHLMLTGGGPSYGRLVDMDLADLRRGLDEHILLILQVARRAATKLRPGGTLLFMAGTGARRPHLGLGIVPTVTAALPALAASLAIELAPVRVNSIAAGFVDTPLSASLLGEDLERRRDQLRATLPIHH +>ERR671919_521420 +XMRGRGPGEASRRAAPRPFFPLPPRAAGRRGEGSCLSLCFEHSGGERILGRFARPQHELEGLIIALASLERSPKQRLALAGMGVGAGEQEPVAIEQKPVLAPQIEMAKPELLVDQRHQLIDFREPPLRDLEIESASEMQRLQIVAPVQRDVIVAPGARDGQREFVRGGALEAPGMNGGDVLDHIHWVGEMVVDRQCRSHTSPLWPRQSFAFPSCPSANHFVNQLYIGESRSTNAGRDPKTGFAKDSCGLRARPKPLEARATPQANDARTVKTFGASRSPGPAQESLRLLGEALDDGGLERRDPLLQGLVFLARFLRHRLDGLELLAL +>SRR3990172_7588517 +RRCGNARSPARRVVVRGSVKPERPAMSIVRSSFLAALTLVSLTACSGTTAPTGEAARQGVVVEVTPESVSVSSGVAAAFDASVTGAADTSVRWSVLEGSPSGGSVSAAGLYTAPGTPGTYHVVATSSADATKSATATVRVAAGYGGGAGAGGEGGGEGACRDEKLRAAG +>SRR5439155_1739346 +QASVPVESARTGLVSSSLKCSDNVAGSKRARRTARAHRCGTVAGRVPTAWLSQSARSTSREPAHLHPQTARASASGDRRDRPGQCRGRQVVRRGGGLRALLPRRTRRPRHRAPCLGAPALGLCARCPGGDGPRSGTDGLCRLPKPRSARPDADDQLGEGDHSVGEIAPARTDRELAKLRGSARTERELSLLRGAIDADVTELRTRISRDVDPRRLARRQPVAFFGTLGSVIAVLGFAVASRVKSFRRSRTETELDQVIQRLGGRLDRLKGRTRKRFRESLRKEIGEVESGPRAKQMFWETATAALVSAATLLARSIASRTVGIAPATAAPTTNAKRLMSTSGRAPGAATSNSGNEITTVAVMSAPADSSRAPRRRAMRGPTSAEGENARIVTAGSSTX +>SRR6185312_8989730 +QIDAVAGFHRGIDNQNPYSADENVPYVYYNYERSLYDFADLEGTSQIAKCQDGGPNDPYPMIRNCPVTAYGEQGLGYLERDTKDRTSLVASITQRVKAAGYHVIKAGVDAEFETFDINKNYTGGVVWRHDAPSVATGANGRWNQREFLKVVRNLTPAEIADPTSVQLDMGQLLCAGDRAICAVASSITANTTDSNYGAYLQDSWQLRPNFTINAGLRYEDQIGYAASQLAGQETPVGEKVPSQVFNLNDLWAPRLGFIYD +>SRR5258707_393308 +GLNSGQPSLDAQNVGATAARAVHAIADRAEVVAEHEPRIARRKGVNVAEHPRFPLAEDPQVTGITGGHPQPGRHVHAMLSAGAHYGVELNHVEAVPDPAAPVELKDADQQLDQFLTWHGLTGRALPAARGNDQSAVRTEIDAAVLLLHPRGELQDKHRRPDQDRLDALLPIEEPLDQLIGEEPSVPYVEFRRVDEVDDAEHIGEPEVGGLNGVGPEDIEAGRPLRVKVEDLQGGGDAAEKPLERPAVAVDHAPAALGPAARAAPELAVERPGHQVASLEDRG +>SRR5213594_1844093 +NPGSVCSRIHRHVMMACFNSRLLLHESQKRSPTPRVSRSPRYSTTQQLATDHFRATGHSIPYQRPFLAQNRSCRPASQPGLGLRQDQSTIQYTFAIQQPRPQHLPRGLAQRIFSQPPRLSTSRLPLPHGSPRRSAKNALLSVTSPQSAKPRKWPPDTCGIAFEKLILKAKHADPIPYCQLGKMDVVKASNKNKALTDFRSEPQWPVRTPTPPLRLGVCRGRRRYKRPDSHPIRGRVDRRPASDRYRPVAIDWRACVAX +>SRR5947209_20053041 +NACENYSIICCYSDGYSVAGQLISTRSLPVCCFFFFNDTATTEIYTLSLHDALPICQRTIRLVSWPQVNHFALPPLFRGSEKGRSEEHTSELQSRQYLVCRLLLEKKKKDDAKRKKIHHVVILDSKERSTEWX +>SRR5436190_7157327 +PSLNPAPESLPSSRIVDLMLSVHKDLVPVSETGKQRFRSQFYSGRDLDDVLERVQRAGVFKREARIAGGLIRPTLADAARLNEERRAAIATALERTSEGLGAILDEAASVFRLPGRIDLRIVIVPGDGPCRFFVGAESLALSAPPGPGDAILLRAAIAIAVGCQNDMIGPMPRGIVATPCDSFLLAAIALQLAARGWVTSYGADVLESAAQRETFATEDDDAALQLCRLAVAVRPMFDDVYVRKTSFADALVAARHVWRGLYAIQYVHGAPGEIPEGW +>ERR1700739_2321498 +XMRAVMDRTAPKRFAHSNRPARTVAGPPRHRKAVAGGRGSRIRTCDLQYPKLPRYQAAPYPAGSRHWIAFSPAPSKRRGQSMRFAENRAADTVACLDTEAAGDAGIDFEDRADREYGRDEVIGHRLGIFGDAYDPPVA +>SRR5579862_6422017 +TRLYREAAAGCRPARREFLSSPCQRSEYGPAPSVALPPAKPGGRSEAQPSVQSQCISCLFLLNPLHHYVFTLFTWAMQRIGWGNCLAARWTRSFFASQGVPSLPGSSAAQFPLRPDRRLGKSITGQL +>SRR5258706_10244772 +EDAVARVVGALEEDFADDALPALLEAVGDLDLVFLAVEAQFGFEELPRGRPQRRVRDVPALSVVLPQRPFVGVLRRALVALAGREPADLQELRLREEEIDGLLDRFLVRAGRIGLRLEGSDGEFGNPVRLALVDDDVDHHVAAIRRELQRVELDDGVEEALVAVDLAHREDVGLERVLDEPLALPVEEPWAVELDAGELPQSPLPEPGPGLGKRVIPADLH +>ERR1719491_1280783 +VRDVLGRPSSLLLDCGHGPLLTAACAVRPFAPVQTVEGAGACTGARCEDPSHCRSKWGWCNAGGSYCNKDSTWTSACDGSATTTEAATTTQEHDATTSTFLPRGACTGARCEDRSHCRLKWGWCNAGGNHCNKDSIWTSACDGSATTTQAATTTKQSDATTTMRAATTATTTRVATTTATKPMLADLAPCTYSKTFTHAGWPVQQDSTDVAQMVDRCQGQHFVNNVDAATCVINSNADGYDYDKWTPQTACPYPLGQSPDVSQAQCQAEFTRWKSMGVRMVSLAGGVEAMTGIGHGVFNGVRGECALMEFQGRYAVIMQVDIRSWSMEFTEQTLNHLTNNVNPGGHCFVPNVKVIDCATVRAX +>SRR4029453_3979317 +AVGLDPETTVQEFLDEMKQSENEAARVASTPSEVTPEDRAFLERQKRAIRLLQIAGVLVVVAAGTGAALAYMKWKKSAPADAPAAAVAPPSSPSPPTNSPAPPPGPPRPPGAGVSAPAPKSSTTTPASPPPAAGTSQSPPVTVVPPEAPAPVPVPPAPAEPLTIEFEGTSACFV +>SRR5437868_9650668 +PNSHYSTHIIDILSLLPLYLYMQLLYFLSFFFNAPPTPDISTLSLHDALPISHLRSPETRRHRWRGRCLSPRLAGQLGKGSDHADRKSTRLNSSHVSISYAVFCLKKKKTLNHRKYLAYDYPSLINLSRIIRTLL +>SRR3989339_1542112 +WHFLFFMDLFLIHCKSIFLKNKIERYLRVPYDFMHTGLFLCYTITMTNELGTLYVVATPIGNMEDITLRALRVLKEVDVILCEDTRTTKNLLNKYDIHTKTLSYNAHSSDNKHSNIIEMLREGKNLAMVSDAGTPCISDPGVLLVAYVREEFGKEAKVVPIPGASALVSALSASGISSAEFIFIGFLPHKKGRETLFKEMATTNRTIVFYESTHRILKTLASLDTFCKNHRVMIAREITKQFEEFVKGTPAEVLEYFTVNTDKQRGEFVVIVDPKX +>SRR5438552_9638688 +LFRLVPVAFAVGAVPLGPPPPAGMAGRDFRLDGLQMELAWIPPGTFVMGNAEGDEDERVTTRVTISRGFWLGKDEVTQGQWDQVTGDDPSGYRDAGPTVPVENVTWYEAMAFCHRLTESEGVAGGRLPPGYEFRLPTEAEWEYACRAGGPGARSTATALDEIAWYGGNSHGRTHPVGQKK +>SRR5580693_6454278 +RTLTKLCYILFVWNVDSALFSQKLLLSGQCLNRADQSPGNRNGQKATKVFGQTENMKTLKARVLSVLSFQPFRRGNKSDGQSKDTIIKFWRMRCSYPGPETPYECELREPLENFASKKYTVGLNGFVEFELLSKPNVAAGDSIQIDAYEPEEKILEGGNGEHNPRAGAIDDC +>A0A1H1AGA9_9GAMM +MATSKPHRLSSCIALALHCARAGIIGGLGCAAAFSAYAGCDSTAPVSGQTVTCDANVPNPQTTGVQAVAGSTGVTVNIVDGATLQIAAGPGVQVRDQSQVNNDGSINLSAADTFDAIFAEGSGNTVVNTGAIATAGGASDGIQSNGSNNTLTNGVGGSIVTTGANANGMLSLNGSGNALANNGTITVSGAGSSGIRIDGAAGGTNTVVNDGSIASQAGIGVLFNGSAGSTLINRGTISGATGGVTSGTGNDRLEMLGGSISGAVAQGAGDDTLIISAGQLSAVNQGDGADRFEISGTGSVTGTVQQGSGIDTFLMSGGQLGALLQGDNLDTFTMSGGRIVGAFEDGDRATMTGGRIGRVDMKLDDNVFDMSGGTIDGNLVTGFGNDTIRLSNGYIGGNISVSGGNDSITVTGGTVRGEVRVSAGDDTFEWAGGGVIYGAIDLGEGTDTATLRNLNQSHLGATPSLSGGNGVDSLSFANVTSGGVARFGNWETINAGNDTELTFDGNLVLGDAASGTGVLNVDASSTLFAGNGASASLMAFGAGQLATVNNAGRIDLTNGAASATDTFTIVGNYVGNNAALFLQTQLGDDSSPSDRLVISGGVASGTTGLEIINLNGSGGSTLLDGIMVIQAINGASSSNSAFALMGPVAAGAFEYFLFKGGVSGGTSENWYLRSTLVAPPASPPPTPAPAPDPLEPTPPPVPPTPPEPPAPPPPTLPPPPPPEVPDNPDPEVPPAPPPAPPTAPPPAEPPAPPPPLPPVPEDPAPLPTPSPEPPPVLPTPPTPGATPATGTVIPLYRVETPTYAVVPPIVHQLGLATLGTFHERQGEQALLDSEGALRSAWGRVIGQNTEQSWTGTVAPTFDGSLWGVQAGVELFAREGDDGRRDHFGLFVGRTRADGDVRGFALGWNNLTVGQTRLDDTHLGLSWTRIGTSGAYLDAVIVASRYDGEATSSRGIGIDLEGDGVTVSLEVGYPTRWGEDSRWSLEPQAQLVWQHVSLDRQQDDFASVDFDSDDALTGRIGLRLSADYSTSAGLLQPYLKLNYLRGFSGEDRLHFNTDIVETDQQFDAVELGAGLVVQFNANISAYVVLDYTTDADDADRERKTVEGNVGLRITW +>SRR6266849_3749832 +XMGRGKSYLEESHELQEGTVWTSVQGNGRSGCEDGHDGGRGAGVADCGRRRSGDCYAKLARIREAGETNGDNTRQILLQHQGADAGGAGASQAIERKTDGGAEADRGVGERVRIPVWPGGRIAGGIGGLGGGGEQVLPVFX +>NGEPerStandDraft_8_1074529.scaffolds.fasta_scaffold152358_1 +MAGSTAMARRLSPCPALPATARTAAGPGPGGGSGRCAGPGRHLGVPAPELGELVLRAQIHELRGEVDHAQGGDVRHAERLSGDEAGGRELVVQTAVESPGRTLPLLLRRGNLLAVRQQPGHHRAVDPRLAHGAEQLELELPVGHVHQADRHRVGAEQGRFRVERLEITADGHGFGDAGAVVELQHRHLAAGIAAQKLRRAVLAAPHVHLDGGHLDPLLGEEHPHPPRVGRRGHVVELQIRLPGCRX +>ERR1711990_8348 +FQLVSPGTNDVNRVCIDIDPQVVIVPHHYHVHPEGHPRDTGGPPSLPSRQESPCPVRVAAEAVVQEVQVSLSSHHQEVSSAPLHGDGDVCTVALPPAPHIHHPGLHVQFPLESQQYKYGGRVLQLFIFLCNQFDL +>SRR6185503_5987732 +GQPRAVRAHAQRAEREELAPAGERVAVEQHLLAVEGSAVRGYRRRGLVRADGTPALDAVLLALLGAGVVPVALLAHRQREVGLLGARLDLGEERLAQGGQVPRGGVGVRVLGLEVLGRRRVFLVPEPGVLVDHGVDVDRPFGRDGLGYLRLLSRHVDDVTIRSSWNTRSRDCENPEGLRKYLSGHCQ +>ERR1700694_3206782 +KRQRAMENLFTGADQPRKLRRQPLSGLRKWTRNYIPYLEVLEDRNLLSAGTKGFGAQIRDPGFEMPAAGTGNILYDPPTSPWTFNGSAGLAGINSGFTAGNPAAPQGPQVAFLQGVGSLGQTTTFAAGTYNVSLSAAQRGNGLASSQTFQMLVDGTVV +>Q19Z88_9CAUD +MTLDALASLPGVAVIQLPEPTEAVTMQDCAGSGKPFKPGTLSRDGEVAKCSACRTNRYVRDDGSMWAPSGARCCGCGYRGESMILSHVRTELERSRNHRFYDRPVNKNVQAMYVWWEYMDEIDLVNGENDTMRITLTEEEVHPPPGDLFHEKPKVIRAIQTWTKISLEYQINGAYVDLRTLSAAESIRDDRWIPLEQYQIQRYCIQGRIRPGGNGYEPYRIVILAGEVSPPGVWYPWPGQPEGVPNEVLDGTYHGMFMADK +>SRR5690554_76201 +XMRAYLSRFVLFGGFIMEIIQNIAVAIDNLRISKGLTVSELCLDICDESSYRRYKSGNRDIPIAKIKQFCDKLGIGLDEFLYNVSVKNSYEYKKIHKMFLDLQSKKYDEIRKSLPLIKVDDIGIDRNKVLFKFILYTYQYETKKITSSNYYELLLKLLPEQSGFYTFNDLIIFEKLALLEVNQNESPSLKILLDILLNTEKLYVTNTNQYVLATTYANVANYLTKRKEYEEALKICNKGLEYSKSFYVTKNIHYLYYLKAYCLFHTEDKEGATFNLSIVISWVFAIQDEYMSNYFINLIMKEFNMTKSMIYQMHQKVLANYLX +>SRR6185369_2141686 +SSDLRAGVEVRQRRQRRLRDAREVRRQALAVRRDAALLLLRRFPLLDGGVERRLGAGRDLRLLDLRRLLDLVLLLLGFLDLLRRRRLGRVLVLRRGRLVLIALGDGLARRRAAAHRRRSEQQRQPISVELLHYFISSCWTGVLSMTMS +>SRR5262249_26280313 +MGRLQTPFQSKEDCMDDAEAKVIELIFGSWRSQLLYGGVQLGVFDALRRGPVSADQVARELQVDARLLYRLMRALGSLELVHEDPHQHFTLTPLGEVLCRDHPQTLRGLTLLEAGPEHSAAWMQLPELITTGQQDAFGREVGQPVYAYADQDPSYAAVLDEGLNTYALLDNPLVLEALAAYDFAGIAHLCDVGGGHGLTLCSLLVQHPHLRGTVLERPHVLAQPDAFWADKLGVSDRCTYVVGDMFHAVPPADAYLLKRMLRHWNDVEGGQLLATLARAAPAQGRVFIIEQIVPGPDTPHFAKLFDLHMLILLTGRERTLEEYTRLLAGAGWTYRQTWYPASKQLGVVEAVKASDFNVLGSEQSEINGFEHHRLFHRLRNPCLIIHRASYFRSCFAEREEILVDLILVRRAHAVRRALVDRALGQFIRLHGKAVAQRGMPHANRSSIFTGSSRTRMPVACX +>SRR5882757_3079952 +DAVEDGVAGHFQGAFQADVAEALVLEVLEDLVADGHRRGAGVLAVDVVPGVDRRGGGHHLEGGARGGDAAHPLVGVVGGGAGHRDDLAGVVVHHHGRAGVGLVVLVGDRVVGLAGVLHGRVELLFGDRLDLGVDAGDQVVAGGGRGVALLADHPAQVVDLVVGDAGLAAQLGVVRALQAGAADLVRAQQRVVAALRGGQLGVGDRGEVAEHLRGVGVVRRRVAAYGGGLGGDAREVLAALHDLQRLLGGGLVGDRDRLVGRAVPAGLRGLRVAQPHLVQHVLRLHAEHVGQLRQYGLAVVALLEQVGPVGGDHQPGLVVGERHPAVVQYRAAHRGRDDLLDLVARGFLVVLLAVADLQVPQPAAEGEQQGQGEDLQDDQPDGDPRGPAGLRDVTHLATRSPGRRIDLSHLACAPEQAALGGQAGSGGTHAGAVQASGPGTRAGAAAGAAQTAEAATEAAEAPAETAGRVLGQRVVV +>SRR3972149_160959 +LVNCWPVFPSFFFWWWSLRLYGSSGDKIRMRCEALLAAILLLAAIPIPTATALQNTALYAPTGDVQAADSFAVNGCTYAARHTCVDEIPPGPNDGDTTRLQSNVTQDESQIDLTAYWQLDPEDSVVGMRIHFFVKTLTGSWPIGTTLMIFIQENIGGGRICYFETFSPPTSTGSYRRFSYPAGYDETCINSDVNTWEILVVLDCDTPPNCSNWLRITSIYLEILYFDRFGFPSSPENFAWIIYAILIGSGCLIAAWRIKKWRETIX +>SRR5262249_38322783 +GLRGRGDGRMSAAVRRVLCTVLLSGLFVTVTAAQDAKMPVPAERKKALLEGTHVFRRILYDNDCTSLKNFKELVDEPSKSILIVFGDLDRIADVPGGLANFVKDGGAVLLASDRPLVDRDARAQLLAVAGVSINVETVFMNPAGGQLYRGWPYCPFPDPAAGASPALFSGDSREGGGTLSVATNVPTHLVVHGRPRGINVLARLPANCQYDVTEAERQRGFWVGRFPHDRTFLVGGDVGDGRILVAADHSVFINEMMLPDDTNNVEFSINCIRYLRGGEQRSRV +>ERR1700745_413936 +KTENVRIPKTLLLFVYYRTRPLPHLSGVRFAMAKLCTPCRRVDVALLDALDGSLHLDLITFSCNHYRPCPPHFPGPSHRVKSAGCLRLLLWRGLSPCIPVRRSRARSGSFFLARYDRLSRYALFGSPLSSERDNEYAFCPGDVVLRPRRGMAIATLPTWNRCRVGLTGLSRAGLSSSPAV +>SRR3954463_761953 +GPALLDEQELAARMAVPGRARTGFETPAARDGARCVERRSLPGKPRRFRVGGGLLGAHPRGRSAKQHEERAGNLYSLHGSDTTPAKLVRLKPEATNRDRSRTLRQMNRRTFLKSSGMAMVSGLAQRGAAPMERTIQTPVLSIGFEESGSPSGFPIVLLHGFPDDVR +>SRR6266566_9387372 +APAVSCGQEKFLAAPAQPEGLVVQPLNNCIVFRAVIKPSGVEVNDMVSRDPCHLLENGIDKEYVITIVSNHNAFVQRLQNALHLFQPVRLYNIHDVFHFVHSATCVSCQNGHLAASLSDPARHKCVRRDRGSVPTCTSSSSLSRETRRX +>SRR6516225_4656599 +RAVRADLSQRACHENATHVCPTCSNRRAARVPKAPCGMGYGNGRTPSCPLQRRSRKPRCPSRRARRARSSGRGLLSGRLDGGLPPCNLPAGDEAIGDGKNVVKYIDAFNHFFPRRFFAGVLETPAARKDMGKRIRGIPALWDLEVRLGIVDSFPDYSQILSLAMPAIDRLWDAEHAPEWARIGNDELARARCQVSAAFSGLCGIASDERAAGRDSGSGTGPAQRRQCDPA +>SRR3954451_7163765 +RQCFDQLLFLAGVADGAPSGIDARRQSGVRDDATIPDASDEVVLTDDTFPVPDQIVQKVEYLRGDSNRVGSLPQLPPFRIQHEIRKGVKQMHPPVVRSQCKQTVRRMEGACKALLMTLAHPRARLSSMNCLRIPRHEGEYHEADGCTDVGCHCSEALDLGRMRSRLCEPRSRSMLAAX +>SRR5262249_15769881 +VVDANFNPVAGGDDGDKVTITTSLSSKVLLSPIAPGLSLTTVLSNQSGMRLLGFPDVIFGYAQAPFADVLLNAYDQVFRDWPIDVKDKRTVGTSSMCTEASFTVTATVRATPAPGLSSHDSVLSAAGTLGAQAPPCP +>ERR1719265_1088395 +SVLPTSHVRFGDRRNIRPLQGAKIVYRAFDPVAGWSPLLVNNHHSVLVHGGANAVPQSWPRVLPHPYHDGPEDLGIARGSGAHNDHHVAGGNAVPPTHASLDADLPDDIQLPHPRGVGTGNLEILRRRRREVHECDESRNGAHHQRKPFARTIASASLLHLATPRARQLPDLEATQPWLVDDGLSAGX +>SRR5680860_510741 +GSGAAGGARPRYGAGRPRCRGGRRGGPARAGRPGRCAAAGGDPVVTPVKVWPYVVGAAACALLQVAVTLGFAATVTMSGDISSASPSEPAPPLPLPGLPTPGPPPSEPSEPPSGAYAEPRDDRPVVRLRFDVADDLTTVAGSETVVFTPDLRVCELVFRLWPNKPETALAGNELSVTSASVDGASVTPVVEAAGAPSGTTGTLVELPVEGCAEPGEQVTAELEFALVLGEDTPERVGWSAEESMAWFATAFPLLAWEHGVGWMRNPAVGLAGETVASETFRLESLEVVALEGLEVMGTGASRGETDVGSSGRVAHVFSADAVRDVAVVVGELEVSTTEVDGTAVHVAVPVAGSVAGVDLWESASVESLGLVSGYLGPYPYTDLWVTVVPDFPTGVEFPGAIFYGDVDPAVFVQLVPHETAHMWLYGLVGNHQGRDPWLDEGITSFVEAHVLGVSEFLVDQPVPPPADGYLGASMPFWAELDPSGDLYGAGVYGAGASVLASARAVADPAAFDASLRAYVSAQAYQIATPEDVREAFGSVPEALAVLEDAGAFAGDAGDPX +>SRR6266849_1400336 +VRTCSTNSGVSDGSNRSLQAPNDLDSEMRIVNDRDLRVVIEHHLQQSCARPGTADDKQIGVSNRTVFAPAFVPDHDFSEPYSLRVYARFTCASNRTCPANLFRLSRATDPAEEKPPTSRPLAEGDSAGAIPQRNQVAGTPHRPQSRAARHLFGRGIVSFGIVDASPARFADHGHGAPNEDX +>SRR6185503_8510077 +LVEAMRGSIAVDSTPGRGTTFSVDLDLSIDASAERPLQSARTVIGYAGTRVSIVIADDDAVSRGLVADFLAGLGFEVRRAPDGAAALEQLRNAATDLLITDLVMPRVDGIELIRAVRSGLSARAPRILAVSASASDYTSHEALDAGCDAFLPKPLHLGDLLDRMTELLHIDWQYQDTPAAVGQRSAASSTFALQRELADELYHLAMQGDIAGLVERANARLSDDPSACGFCDELRALASEYDTGGIRRMLSAHSPA +>SRR4029434_6363074 +SRCAAVGSNTARFGGRESPGNGAIVNGTAFGVSGWALDAEDATLTVQLLVDGAVVSSSPTRSARPDVCAAFPSVSHCGSSQPGVTFAWNTTAVADGPRTIAPRATGPAGLPATSATRTEMRRAHA +>SRR4051812_49403107 +HVVRHGGIAKAAAAGCGDLSSLSKLMKGLEEELCTELFKRNPFRLLSHGRIYFAALERAREVRDAAMDQIWTETRPTLQLISAEVVTLCYFPGITRELERKHPNLQCSTESGGEEQIQRMLRDGDVNLAIAPEHEGWRGFQRAPLLELRPVLICPEKMPFRSAKEIWALPEP +>B4ND15_DROWI +MAKKGAVQQLQADLQNDEDFARFLERPGLLVLDVYSDWCGPCLGMVGSLRRVKLEYGGDNLQLAICKSDTITDLKRFNKRSEPTWLFVTGGKAVNIMYGTDAPKLLAVVIKELEKTLQKLPRSHVYDIAELQPIEVEQLRVKTEALEKLERIERDAKNKKQNDYLNQVTDAIMENMPDIGVTVFGPQVNRDMFKKLTEPAEPLKMQCKDRKVVQVTAEQFDIVNYACRNPMPPDVLEQLDGKELLMCFWKIDETVGTVPNVLAAYAHELTKERSAPPNEQFFEEHAIPPIISPMKIKFEVELKEGEVWVEDVSSEEEQKPVKGKKQPKLKSPTHQEDATPVPVDEEVGEQDGEEEGSEEDGPEYGADGLPSLPSMPFDIDLDLDLGDDMGEEEEEVKEEEPPKPLTRTKTVKMPAVWVPNNRRTHAALIYMFFRGQTTGFLAPDPKPEPPHIIMAFDATKRREIMHVVERHREEVPLYGYFTNDDPDGTELIANSTDKYDYYPEQLLSDKIVLKVNKVQSNMMLSLVSYGPSYVSPNVTAGHDEALKFFPDDYRQQEEPPADVKQKKVKKGKKGEEIPEKAREKAASLEPQRTTLPADAGAAVSADVQQPGEDIEKETSQTAVQGAEGEAAVPPTTEGEGAPAPEGESVVAEVTHESAPTEAAAEEAPQPGEAVAETSAPPESAPPEVAPEPPKEETPPVEAPPTEAPPPEPTPPEPTPPEAAPTEAPPAEEPPTEAPPPEAPPPDAE +>SRR5690606_34130643 +XGLQHTPTGHRRSNRRRDRTDPLRLGVVERLIDRLARRCAPPDRLPARPERRPFDRHNPRPSQRHHEPLAQRHVITRRLQPSRPQPAIAVATVAAIALTRCALAYSNVLLTASTGVAPPSIASKIARSVAPLIASARDRADALTNPSVSASSX +>ERR1719410_660988 +GSNLVKGVMPIWCGGSSRSRSRGNRQPHRRRSSSRRFSPPRGRGYSPPQRKDPPWRRSISRCRRRSSSRQSSLPRRSDGSRERSCSRKHSPRRPNRARSVSGGRNYSPRRVGGTKPDVPVPVDGEPAEFGKARVLKNPSTGRDETWKAEIDIETGEVNHVGRRRVMSIRGPSRTTKERAEEDARRLEAAVPQGPQAVRAVGNQLQKTKRGALGVLAELPGVHVLATYTDLPPLPALRSSGTCRRPIPCMLPDVKTIMDLRLRMGEVYMKDEAVLLRVATLRVTLGLAPEAAPC +>SRR6266487_7083492 +WREDFARGTEVGVEVGIDRAVSQDRGGRLGAGRVDQRRSGMAIIRYHMVAVIGRDCEAQELIRRWLVADQGPGNLDLNEAAWQLAVGRADQLRSAAVATRRSGGAAVESRWVKITARRRGESCLNHIFPAGSAGYVGADAVRQRVDSAGGVIGIDRDHHLRRWIVRDSTDAIYLDQKIEVVAVAGDAERIQIGLAGDVYGTGDDSLVVEGVIEDELALIGGVEI +>SRR5574344_1391919 +KLKPQHGALIFYVLFAAGAGLELLEEVIALVIHEDECREVFYGNLPDSFHTEFGILNALDALDGALRENSSNTADGAEIESSVLLASLSDTVATVTLGNHHERSAVCLELIHVGIHTVGSGRTHRTARIAFGSLGRSCIENRVILEVVGHTLTGIQASLELGMCDVASHDDSALEVDAGADGILRQFGTHGVDTLVEIDFDPLGTFARIAHFGRDKLCGVVVHLLKPYTVLVDLCLDVAVGRAAYTHTDGTACSVARQTDDTDVVGEILTAKLCSKSNLVSLFEQLLLKVDVAEGTTCLVACGGQX +>ERR1700722_5898992 +VDLGAREHQVGGIERKTGQDAQRLEIGRRGNASQDGEEHQRNGAAKEPHIAAVTPRGAEGARTVVTAPERGPAWIAHGRCKAQCAYPLRGPAECGRESSARGYLNAAPPPNKSPCNYGCDTAVPSLRTCSGMGKNVLTGPAREVEAGPIGQEAETGGGKLGAPLARQHEVKLVLEGVQKQHIGGRIGDLSIGQLGRTPIGXX +>ETNmetMinimDraft_35_1059890.scaffolds.fasta_scaffold1061826_1 +MRSLRIDAGMRGFCGVLALSVLLAGCGGVSDLAGSINPFSREKKLSGERQPVFDGADPATVATARPASVGPASGGQEWPSAGGGLANDPGNQAISVTGARVWRSNIGATGGGLTTDALRASARPVSAGGRIFIYKPNGDVVALSTNGGRQWVKNLRPEGERDVAPGGGVAVSGGRVYAATAYRQVAALDAGSGQVLWTADLSTPARGAPAVGQGHLVVVTQSNEVIALKLEDGSQAWSYQGIEEIGGILSAADPAIAGNQVVVPFSSGEIMSLDIKSGEPQWADGVTRGFRTQALSGLADVSASPVISGDTVYATGVAGRTVAASLKTGTRIWGTDLGSVHTPVVSGNALFMVDLEDRMVALDRKTGETLWSTVLPRPEKKKRRRNWAGPILASGALVAFSSDGRFAAVDAASGQIILTKDVNTKVYVTPIVAGGRVIVLDGDRAVAAFNX +>SRR2546427_1622280 +PAFSRCHEIMVPPIFVTDSPETSAGARKEPASLGAQSRASPTPSPSASVEHASPMPSPFASACVGLGQVGQLSSTSAKPSPSVSRRTREQGDPLGREAPLDWLPRPDSPQRFLDETRX +>SRR4051812_6966754 +SLRPRRPTKEGCSMSLRRRAVTTAFAALAVAGLTAGCASTGSQAADSGGGDVHATPDAAYPKDLGWEPMDNSLTNLACTDNSYANAVKKGIKLGIYSAAPYEYMDNGKPAGLDWDVNMAVLKYLGIKKYTTVTLQWDAMIPALKSNRID +>SRR5262249_18224374 +TLAPLAVLIVASRSPALRLWQRRQVMELTGKQIAVTGATGFLGRYIVDALLKRGARVIGVVRNPDRVPALAQRGVEFRKADLTQRDQLVKGFAGADAVVSNAALFSVRKMFALGSSVWDEHERTNIAGTRNVFEAVTAAGVKRVVHVSSVAVYG +>ERR1719430_1578260 +GWSSPPGGTRGGWSCPPRSSPWSPWWPAGLKWFPGHFVISECLPEILSSSPSVLSYYRSPWDFHRKRRVAIQHLIQDHTQGPPVAPGVVPTLGEHLGGDVVRGTHSGVSQLASSSLPTLSLPLGLRWVGCQVERLSLRIVFVEFCSMSFLESSAKTKVGQLDVSAGIKKDIVRLNIPVYEAKLVYX +>ERR1712156_240685 +LNLMKQAAGKFTFQIFLFKPQSRILKRSLVSLERSNRSPFQKFTVLEGQRGLLLFVLLLKNKEKLPLKDSMVLLLKEESLEFELTKDVLSVLNKTLLIVVVAVADHKNKDLNSQNQLKDVPRFTSGIFRGSLMKRSWNNYFRSLVQSRTHEL +>SRR5581483_5340204 +VRVFVVKQRVAARRVARGLPGVGEARLDVGEFLAMLGRVAAVAVTATQVERLLVVRVVLVLVTREAAGALHGRRLRVLAQQVEDRLADDDRFLAPAWRDPRPAAAQHQANDDRRGHPEQDGKAREKLRLDRHEGRQGTLRAGFGAAHPWRSRCFVAGRVFSVNGKPRPPRRRADRAELACFPRLPNLPSGHYPSCRIPWASCPCTQGETPMFPHLARARSRRRPFSWKPRLEVLEDRRTPSGIAKVQDLGTKADTTMAQSVSINVPAQGVAKGDTILVTVATTEADPTQGVSVTDGAGNLYHRDADVLKSNERLLVFSAPVYHALSGGGSITFTQSGMAGSPTALSATEFSGLLLHDKSAKATGIGTTASSGPTPITSEANELLFGAIAANAFNVNNPPPSTMITAGQAYTGLPQKTVVDSVERTDLKPEFAVVAATGAYTADGTIAANREFLAALTTYRQVPPLSAVAVTATVGPHTKDNRILVLAGNTDPSGGTLSVQSVSHPAHGTASX +>ERR1719323_1321519 +GKCGNLEGVRVLLVLVHGFGVNGLGLLWPRGNRRGRRLRLVILGRRQRRHGGRGGGRAGSPDRGDGRQRGSVVRLLLQLLLLERVVVMVVGRGCLLLRVDVLLLLGVRGRRRRRRRPRPAAHGRGERRGQRRGRDRVGWSRRRVCRGGLRHK +>SRR5690606_29123364 +LEGVPARATIRAEYTKMKQERYTFLTAELAQQVRDLIAFKHRERNLACRNSKDGTYYIAKLKPKVRPNDLLFAIYRRDETAKMAPKVQSLYNMYNVKLNALLDTMGLDAKEDDARRRRITEYSLRRYVKSAISNAX +>SRR6516165_751239 +XMRFSTIIVLLLFASMGWGQAQVNEKLETAFIYVDVNTGSDSNPGTASQPLKTIGAATSKALSNNHQGVGSRVIINPGTYRESISMGKNVRSTSLPMTFEAATSGTVFVSGADVWTGWTPYSGNPSIYTQSWPFQWGLCQTVTGSPNNLEDIVLRREMIIVNGTSLTEVLALTAMRPGTFFPDEANATVYLWPPSGTDMSTATVEVATRPVLFSDQGQSGVVLRGLTFQYANSCREKVAVGFNSASNVLIDKDNFFWNNADGLGMFYSQNFTVQSSVGNHNGEHGLDTAFVKYGVWQSDRASYNNWRGAQGAFYLWDTGKFLYNHNNTFNDHRALFNQGPGVWFDTDAADTTLTGLIAVGNMMNGIFVEKSEGPVTLSNSYVCGNNPQGWAPYGGVGLRNSSSVSLIGNTVFGNGFSQISIVGEAGGILVTNWETGQVYNLQTENLALSQDIVVGGPTAQVFSDGTLGGEDWNVFASTLSSDYNSWWAGPNTQAFTVPSPSFENLDLSGWQNMTAQDTNSSWTSSTSPAACNVQSQGRDYWLVADLIVPVTVSPAGVAAYNLTTMPLGGMTGTVNLSLDGLSGIPGVTASFAPSSVSTSGASVLTLTTSPSTPAGTYPFTVIGTSGSITRTVTIPLVVPTTSVRLSTTSLSFATQTLGTTSSAQAVTLTNTGTLPLAMSGISVNGSFAETDTCGASVAAGASCAISVTFSPQWLGTATGTLTLNDADPTSPQLVSLTGTGQGALVTWAPTSLTFAGQAVNTTSPAQALTLSNTGNAAMTITSIATNGDFAESNNCGSRLAAGASCSVRITFTPQRVGTRNGSVTIVTNATLNPGVGLTGTGLGPLVTWSPTSLTFAGQTVKTTSPARPVTLSNTGNTAMTIASITANGDFAQSNNCGSRLAAGASCSVQITFTPQWAGTRNGNVTIVTNATSNPGVGLTGTGLGPLVTWTPTSLTFAGQAVKTTSPAKPLTLSNTGNATMTITSITANGDFAQSNNCGSSLAAGASCSVQITFTPQWVGTRNGNVTIVTNATLNPGVG +>SRR4028118_1117479 +FNDPATTEIYTLSLHDALPISHVASTKGSIQSRPVAIACPSLVLKLSASEDRKSGSAGMPRPISYAAFCLHKTTHLRAHRLHHAPSNLAQALTCARPRLSADASSRALRPGHDRWLCVVFFLMMRRPPRSTLFPYTTLFRSDRGRASRRRSGRWGRRSAGRRGAX +>SRR5690348_14199435 +AIVSRLVERGNTDRFAIDLCRRPDLVRPADIAWLGSKAQRASEPARALWLDLLDWVFYPLMASSARALLDAAAVNPIVHERFADWLDPVEFGSAREVTHRDRYENATRSEAPERPLGPSPRTIVRRFLRRFESGDVDAYWHLQRALQAEAATGRSHLSEMDLC +>SRR5215217_5590548 +QADTFPPRITLTESPPANATLTSNPTIRGVVVDNPPPGVQLTVKVDGAAPVNVPLDATGQFQFTSNFTTDGGHTLEFQARDPAANLSAPKIVTFTLQTGALTVDLAAASDTGVQGNRTTTLNSVTLTGKGPANQTITLVPTGTTTTADANGNYS +>SRR5262249_54389218 +PALGARQRDHGAVPDTERKWDDDRSGDAFGGERVLWVADYPAARWLGGRRLARQTIVICRTSKRRQFPESPVAVAHWPADTTEESPQEPALAPRVLIADDQPDVLEALRLLLKGEGYQIDSAGSPAAILDAVDAEEFDVALVDLNYTRDTTSGQEGLDLL +>SRR5262245_362740 +AVGLPAIGMLKQALESGDPEIARQSELILKKVEKVPSEALAAAVARMLGRTKPDGALDTILAQLPVADDEQVADALRGALAQLAAKDGKPEPKLIAALSDREPARRGAAAEALIKSKLTAVEADVRKLLKDSDPGVRLRVALGLVRVWRAKDAVPTLIELLATGPANRVWLADEVLRHLAGEDAPAVSPFGTAAERARAREAWTTWWKTNGERVDLARLDKEPPHLGYTLVLKMNRNTGLGEAVELAPDGKTVRWRISGLQYPTDAQVLPNLNHVLVAEHESGAVNERDLNGKVVRTWPVSMPIACQRLPDGNTLVAHRGGLIEFNAKDEKIFAYDRNSHDIVAARKDRDGTYVFLTRNGLCERIDAKGKSVKAFNGGRTYSYASLELLPNNRVLVSQLTGVAEYDLATGKLEWSATAKRNVTSATRLPNGNTLMSSITSNSILELDRDGKVVKETRMDDGS +>ERR1719242_22332 +SHSHFSTEHTAFNQYNQAPSSPTQNYSTHSSLPCPLSATIHVIVQYKKTKCHTLSTVTPILKEGFAEQNGGTKFIVVPLGDPHWSKRLQRRQQRSSNPGDIVPLQWRIHFDLGLGLTHFVLQFRHQSASKVLGVGGPSREHNLFIQIPSQIQIALIDAVKDTVLNAAIFRTDNGGIEQDLRCSIPGTSNTQFRTVRQLIFRCISQSTTNATRCTIPQIEVVHNIRVIRIVFGIVISTRCCTTSTTAGCSQGTDTRGSTTSHDLX +>ERR1719359_2831734 +AQHKNLGKGVGVRNDPVFKVSNQDMLKQMDSHDFSGEGSRTQAATGIVDLMKIIKEDLQSDMKKADKIEGDAQAEYDQYKKESDKMLDDLKDKIDDYQSQKADRNTDIDDTEDAKQDEESDLADYNQAMNVLMGKGADDIPFPCEFMLREFHNRRHRREAEVEGLHE +>SRR5437773_2584272 +PESDAKPFQHAGLSGCRGGSFLFDSRRTEGFEVDVLFRNAPLRQAVSDPAHHRPRATQEIVIVTRRQHLLENINGEPAGVLIISPQDIGFLGPAIADVHVNVVMLSRHLLNVGLLNMVGSTSRSEEHTSELQSHHDIVCRLTPRLTLFPYTTLFRSQEIVIVTRRQHLLENINGEPAGVLIISPQDIGFLGPAIADVHVNVVMLSRHLLNVGLLNMVGSTSRAVEEPYFPPX +>SRR4029453_10054290 +TFDKDTGHPQHGTSPITRTTGELSLATNVVIQGPGASALTITRDGSGATFRIFHNQANVTSTISGVTVTGGNVPASGAFYGGEGGGILNDEGTLTLQSVVVTGNFAAHDGSGVLNGTVNGGAHATMTILDSTISGNGSVFTNAGGAIFNHPARGNIGVTATDTTISGNTAFGHGGGIQNRNDDEGTGHTAQVTLTNCTITANQANAGGGGINNLDTVSLRNTIVAGNTTGG +>SRR5579859_1338868 +EVILAGLNDSGVLAGWYMNDVTAAAIFELVNGRFQTVSLPVPDVISASVSGLNNEGQLVGSYETSTSGHGFILSGRHLRTLDLPPNWGGTGLTPGRINDEGVVIGTYEIESDFVTVHSVVWTDGVFRKIDFPGAAATIASYLNNRGEIVGTYSTSPAGGIANTHPFLLKDGVYSDLSSLFPGTFAIVGINNRGQ +>SRR3990172_9676722 +LLFIDEGTEMFQFPWFASRPYGFRPGWPDTTPAGFPHSGIPGSTPVCGFPGLIAAYHALHRLLVPRHPPYALSSLTPLPSGRCGQRPEPPLAPSRRGQCPGSPPTLFTCQRTRGISPPEPSCPHSPGSPGGDERSRTADPLLAKQVLSRLSYIPTESPAGTAVPFWDRPPPAGGGPFW +>SRR5580692_1321847 +DLGLAWSYYDLAQKMTQKSLSANVSLLYFSESQKINAALERIPKSYAQGHIEERNGHKSFVDSSGTVVGQERWPGTLMSEKVRRKQAEYNTWLETRAKETSLSNIRLVPQYPRQFLVVGANGALSADHAEIAEIRVPRHIELTGVLDLDTLAIGYYKSAIEWAELCKAAGANNQGLTRPTKEEDFKE +>SRR5262249_47273405 +XVQIHVLLAVDGNHPGAGVFVLGDDANPPPDVVRPGRAGSVGGDQAVPAHTVRVALEQRERHGATGAGAPGPVGAGLAARGSAAVGAGTAERIRAACGSVVDEPVAVLVLPVANLDPLGRVVGHAPEVRPGGSAVLVSGRSHRIGAGCCIGGSRQRNTHPIAVLDASTSIGQLAGLSSLGPVAVRRAATVTGDRAAASVGEGAPGSGTRATGRRVAAPETAVQVAGLRTRGAAGSEAPAVAGRIQLALAPDGGGVAHAGAGALVQQRATCTAX +>SRR5438093_5564102 +SHIPDAVKILCDTRIVDHARTGEVNITNVRLAYHKRIGARAWVKDYTIECELAGDGNVSDVRNIKGRDICVFVRHRFGCPVSGCVPIIVGRIQLPSRAPSVSGGERQQTGYEETEGSFHTTVISTANAA +>SRR5919201_5360144 +FRWFAASAETVVQPSSPTYWRSSAQIGQTRGGGPGGPAWFPQVRQTGASAVASSATAAEPFAKRRQVVVEIGRGLVAVVGLLGERLQDGVLELRIELPPHSRRRSRLSPDMLGEERKGTLLLGRLERRLAAEDLVAQDPCAVDVGAAVDGPVHNLLRRHVLRGSDHRATTVARRGRALVRGARDPEVGHFDVPGVGDHDVLRLDVAVDNALAVRTVERREHTVHPSER +>SRR4029077_8001983 +RDSSQVQEVSRRNPGTSACTALRAARKLRATRPWMPRTLLERSGGGSGTQRDKTRRHAESWCRSFPLHDGFFLESTLGAGVSLQHAAELPVWPAAGHAPTKLEASRTTLALGIGVGLQLALQRGVLIHEFVELQLHFCQLEHQVRDQLLELRVPAPLTDDSQAGCEGYGTRNPRKQIAHTDSIGRVAGSPRLFAVSLRRASHRVRKFGGPTHIRARGGSRPPPPHR +>SRR6266508_4076808 +WLAFAVIAVTLLVQGLTLSKVVRALKVPRDDPTQDLLAEASVQSQASQAALTRLAAEGDGAPPDVVQRLREHAEKRTNHAWERLGSQVRETPAHAYRRLRRSMLEAERDVFRQARDAGRIPEEIMAQAQRALDLEESILTRECPSMSLPVGCEDLAAAPADIEPTSKRCVDCEAIGRVGWVHLRQCLAGGRV +>SRR6266404_7425182 +GIVRRHEVILGSPCPVPRGLEQKRQLRSYRPALFPVTTEQRLRYRRAQLSPSRWPERSVQRVLIKHVDEPITQRQHMSGKLPFTDEPNQRIDSLQRLEALFNIRRIQLESFRHDSRIELISLHARSNQQAPIFVAQLRDLALNHPAQ +>A0A1G9LFL1_9RHOB +MRSECVECHDGPVHCTAIKKTIEYRGNDALMRNILNAAILASFGGILLATTALADWTYSGPPYPNATIQTNDMSLEVQCDRIRFAPAGYEDSQDIVRKNGLSFRFLVNGSQEVASFQMGRENSFVQIVDNYPVEIQLSDEADYAFVLDQIAANATLNLSMVDQDVSYGIFDLKGSGAAIQSLRAECRALDQTSAPLEAPEGVVYCGGGGIKRQIEFEILDDASDEWDARVTVNGETQRAMTAYSYFGNSEPVKDFVVALLAEDRSEFLIFRNRMENWLEFGDYRYDQCN +>SRR6218665_3367076 +XMKLSMCSKCPPLTCTHAFRRLVKSFTALLIGSCGMSSHINCKEAFSPVIVFGFGCSYDTFPAWPPHVIVKGVEIWGIWWPTVLHNDLRTVCVQLLLRDTCRVCWSAILLENEPGWHQLFAVLDKLNFHSLYGYARTIAFAPHPCSRSVCIRILSACDTFPILTALTKYWLLTAILPKHRVLYLHIRLSDEFAWLQLGCKVIKRGILSVQIAX +>SRR5258705_1672816 +XMFGWEVDGQRSLMRRFFHIWSFVFHKFISVVTMYRCAKGVRRRTSCLADPGDAGRRVVGEAAGEALAGARAAAGAAAARRNKQVMPEVLGKWVENRMGVAEGVHGAGQVMVKALDGFSDRVSGFLGGVTSPPRIVFLVLVNRLQFALDLGLDRPELGFVVEDGFQLLLLAPERPGGP +>SRR6266850_6431312 +CAWTCRAWGAARSRSCSIATTARRAPMRATRLWRPRWWCAARAGPGPTTRAATAPPGTGTLHRRSRAARLRLGTLRAVALAFALALALIPTAPARWCAADGRPEALSRGEIAFLDTLEQRTFRWFWELSDPRTGLTPDRAPTRSFSSVSAIGFALTAYPIGVDRTWVTRGEARERVGRTLEFLWAARQDTSRAGATGLRGFYYHFLDPASGTRFENVELSTMDTALLLAGVLFCQSYFDRRNPGETHIRALAESLYARVDWTWAQVRPPTISHGWTPEQGFLPYDWRGYNEAMVLYVMALGSTTHPVGADAWNAWTGGYRWGAFHGEPHVGFAPMFGHQYTQVWLDLRGIRDAWMRARGIDYFENSRRATLAQRAYAIANPDGWRGYGPALWGLSACDGPLDGTVSIAGRARSRRIRPTPTRTTRSATPIRRGATIATRWRCSSARCRWNATRTSSG +>SRR6266545_636481 +EWAEGAGGVGLVGPGSGDGLGQVEFGGGGGDAAVVGLGGGQADGGDFGLGEHDPGDAGVVGAVGFAEDGVGDDPGLVLGDMGEQGVAGDEVTDPRLFPVQQPGAALDDGDLGAHAGQKLAQLDADRAAADHHHPAWDVAQGGGFPVGPHRHLVQAVDRRTYRVGAGCNDDVGCGELLPGDLYPPRATAGQPGGAFDHGGALFLVAGDLVGVVEVADHVVAVVAQPRPVQVRGGQAGGVAGLGARLDRAQQGLGRDARPVGAFPADQLPLDQRHPQPAGKQPGGGDLAAGTGANHDRVEVGAHRFYLRLLVGWGWGRRWRSAHAASVTAATASPX +>SRR4051794_24386335 +MLSSSACEVRCWSTRATGLARGAAGGPEPYATLPASMPETRVSGAPRLDLSPYPLASHLGRIFAGRGFPLHLVGGSVRSLLLGLPAGDLDFTTPARPADITQLIRQAGGHPVPIGERFGTMAGVFAGHVTVEITTYR +>ERR1719330_1029551 +LLQALIVTTWPDADGPRIPAAGSEPKRNRLHSILPSPSSGIQPRLHEPPCEHRSIAGANHTRRAGTRCRPWLPSALCLVQSCLTRALATQPRYLPYWNSSLPEHWNPMFASLLNLSSAVRSLLEHPSLLWLLLSSPFPGPCSTSRASQSHLSSPRIWSRMRPMLQGVPPEQLCAHETRSLPALQFLFLQYLRGQQWRRVRPGCPNSYRLDLPQKVLPSAEPCTTSDYRICSACFWQMQALLWPLCQMPSRPCTRRSDPCAEPSLQSSDLLPKRCNGLFGLRDGSFLACYTALKRLLVLIVVLFGFQNSHHVVNHLNDLVEASPGDILLTGQCQHQQFQPRFVLHGCSLHG +>SRR6188472_3631345 +RRLLREKQFLGRRFRDSRGLARRLRGKLGGRRLPSRSDRDRAGRLVERSRRARVSPAPAIEAAVLGKKLVDALATRNPDKAVAPRLLPSAELSLSQERPNRLRRCSKRPRGFGHSEVVGHFGKMLAQPAWPSETFX +>SRR5262249_43660061 +XEIIDAVVGSDVRDWRVVEGDHALGSEADDGEGGRSYHSLAVYRAEPAVSLVWGLTENPNFREIEWANNFADPSAKSAWFDIRYNGVPVLRELLVVVDGGRCYLPMPSRHGETRSVPSAYSRVVRLMQKLKGRHEYDDYFARAGLIETGDEWPTT +>R8G6Q3_BACCE +MLPEDILIVDNFYSNPDAVRKLALEINYQEFGEMQNFPGFESEKSFSSTSIKERFQKLIKNEIIISPREYIFGKFRYSTENDYAHTEVHLDHDVDWTGIVYLTKDEDCQGGLSIYHHKKLGLDSAPVQSELQDFNCKNIAEFDSKYIYPYTKLAENWNLLYYIPIKFNRLILFRGSKYFHGITEQFGNSIYNSRLTQNFFFKEKVKKGVGL +>SRR4029079_2700613 +CQARAAAPTMYRPGQVRTTRSECGQAASSLSLDVITAQALAQERAHARVRRLAGGRIGADMDALPRMHAVGDIEPLHDGSRRRIERLITARIRRHEELAPAARHRRAERDAGGSRRPVVELADMNAPR +>SRR5579875_498642 +XMGGGPGSGSVLQAHGGDDRRDRGDAAADGPSAGRDWQAHAAPSCSRARRAGSCRAAWRAARVIAAGLNVKTRKNPVNTRCERVREVCPPGYCRVMGRGEPVRGSGRPSGRRGGAGDRGGAGSARKGDRMRGMALAAALAGAALLGVAGCGAAPAPQGSRPAVSPSPAGHRAGPPSCVTPGTAGRARTFTITEKDNGRSYCVTSGTRLLVFLHGTLARKWGPIQASSPALRRRPSPVMMLAIGVTGGYFVAASLGTATLTSVRGSCPPGASHCRDRQVFRVSVLVRGTMX +>SRR5215472_4865484 +SANGRSVAPLIPLPEAAQARIKAREAQAAAELEILYRACESDLSNARRNPAGYGTRHGRLDLVTEQVRQTMREAQSVGAQYIFNVHAVEYRAVTPDPVELKAVLEQLRETIIIHYGEHCRTVVQVMETREFEEAWKQKPAVDSAAPIERRGEAVGSSDYPHPLRRGDGSNHQAIPAVRRSPASRGRQVKSESGHRRLDPVVQRIKAKVREYKKANLTFKEMCERLGNSERPPRATWTHLPWPKAYEKHTSAVSKWLSEA +>ERR1700722_18781964 +XMSWSSDIRCLYCDGKLPLYRKLTSGQFCSAGHRKLYWQEQERLGVERLHETHDSLRAFRPKEAVEALLGYPPSYPMPEPARAHGVPIQAELPPVAANPIEATPVADSYPGSYLNDADLSPQTPLWAPQEISEPDHGVEPPAPMGGFIVVHAMMPQPRWPLDRLVIPEPNPLATTGPVWIPLRTMAALIRDVLGAGAAAMPMAPRPYEGTRRLEPVHPAMLPCLDVSHSATPAGNALAAEEDAPRAEKLLALAAFAAHEPAPDGTRRDPWPAAPFSKVHKAHLPPATMERNVRLTIAAPPQAGLRSLAIDQVPLVHGTWIDSLRALKSEGELPRYELSTPAMRPRLRLATGSRYPVATRDQNPGVATVEPQNLQPSATAVAIPERAMAAAASCSAQNVPDAAGLIPLLAAVKPNEPAAQLAPSTQSLNLPQPLLTEPMRPASHLEPLDAKPVMDFMAPTPQIPSQIIKMAADEPKKDSPAMENAAALPPSESGDVTPWTVVAGFWQHAPRDLKLLVFGIPILLALALHPSLKKIPYAAPLKAGGIERNLEHNFQSKLKDQWVTVKQTMVDRGAIALA +>SRR5947209_11779987 +PPRRPAPASPPRSRPRSGRRSGGRPRPPARPSPGPARTPRRPAAAPPARPRPPRWPARPWTRPGAGPPTWAAPSRPPPRTRSTGPPGWPPAAPPASGRRRPAAAGRRAGSARTGSAGSGSRPARPPAPRPGSRPASAASAGTSPTGRSPGRPGWSRRTPFFPPRQGGLDRLGRDRQHPVAGLELGSPEQFGVALGGQHIGQAAQVGLTGRRQRGEDAVGLGALLGGQFRSAHGSAPANEFRRPTHTPRPAAKNPPTSETHTPPGIATWELIAPPLRRGYNG +>SRR4051812_12632978 +GRRSTARAGRSPAGTARRGTGWGPAGGSGRGSARSCRSPAAARRRPRPAGRHCGRPWRTLPRPSPRDGSRTAGESPCRLLPPASSTRGSGRPACTPATTPPLAGTVDRGREPGQTHVAGGCSGVPASYRARSGPSAVVRVTLDRPPRPATAGLGRLVAVGYPERASGASGGIGRRARFRSVCPKGRGGSTPPSRTRRRAPDPGTPRAGASSSARTAGQEAVSTVRPPRRPRAPSADDPGARDGVAGHASIYYSAGPDGCHAARHRDSRLAGPLCHKRTQIRTWRPSTGGGPPRPVTSAGSTESATPKPGVRPSRQESAPFERESAPTQRVLYRGTMDVGPCSPLRSDPRGPGRQTYQRASRTRCVTTATSHATETSPARATGPAISLRGLVKRFDDVRAVDGVDLDIARGEFFSMLGPSGSGKTTVLRLIGGFERPTSGTVELDGSDVTALAPFERNLTTVFQDYALFPHMNVLDNVAYGLRVRGVGRTERHDRAAEALATVALHGMEKRRPAQLSGGQRQRVALAPPGRPAAGGAPPRGLGRRPGRAAARRAARSARPEAARAHAGRAQADPARRRDHLRLRHPRPGGGADHERPGRGLRPRPDPAGGDPREIYERPASRFVAGFVGTSNLLSAQAAQELLGRAGTFTVRPEKVRMAAADALGDDRHVVAEGTVAEVVYAGPVTRYLVDLDVGERLTAVLQN +>SRR5207247_1084271 +DDSKCSLAQQKGEHCVSMPPAWSEWIVQVLPISDGRSTAFSNPTQGVGGSFILSLQRDSRARPKSHQRSWWIVHTQPTKRLARPSRIPPTALVGLSGLPDGRPLGLFQQPARAQAKVRSW +>ERR1719350_1727719 +GKPPSRRQRLFDMVVSPAFQGFFAVLIATDSVVLGVETEYVSRHRDDDRNPGFFAIRQIFAFLFFVELALKAVALRVRFFADPALRNWNVFDTLLVTNSIVELFIDGALGGDQVSELRLLRIIRTVRIFRVFRFVRMFPALKLLVNSILATLQSLLWTIFLLLVFLYLFGIVFTQVATNHFEKVGEVDE +>SRR3954447_23639997 +YRDVVGLWVAVGTCQYDGGGNAEVEHGDDRDGRADRARNVPAGVGELPDEVRDGLPPGEREEQDDDTSADRGDAMRGERGQALQRHEWCGGGDREDQRRGHPAGESELNATADTQAEKVRADGRGEDRGGYRVGAPGPDLQRLGDVVAASERDD +>SRR5688500_19711690 +RPLSPPSPLSLHDALPISLGGAEQRDLPAPDQRQRGQCRAHGREDATQPGHGAVTAPRCRTVAAWHAERVVGRRTVLTGAALLRSEEHTSELQSPCNLVCS +>SRR5512143_883754 +LERIFFHDVLGAANAVQGLARLVAGDDAERAKSAAQSLVRATDQLLEEIQAQRDLMLAERGALTIREDETAVSDILEAVRQQYQWSPLAEGRELVVETAVANKRLRVDRTQLIRSLGNLVRNALEATADGQRVTVSTQPLAEGVLFQVTNPGAIAAPLQR +>SRR5579863_223257 +ALDWEGVVLVVIGESESELVHQRGSDRVVIRGHHAASLFVRAVAGQKVARRRYRPRVVELGIERILEAVAHVNLLLGIEVVVDSNIEAVRVRWDGRERLVVIGRVCYTQVRVRHWIVLQQCGRYGIDAGRARSGWNGVVRERRTGKWVEQGSGSNRLHQVIQVAGSFGCRGHQKFFGIGLCFAVALVVGEDEGLVAPVIEPWDCDRASYASTEGVKGAGRLYVEVEHGGVESAVLEVFERTALPSIGPALCDEGYVADLRELRIVIECGDLHFIDALKRWIRICEX +>SRR6266404_1434125 +XMRVLVSHEAVSVSPLISSSLFVSLIVFATSDLVLACPASCWFPLTRLRARGVFLQDRKSTGIEVVDNPAYHLWWECTRLIDSLSRCQKFPASRHRVVLRYCHRAITFIHKSAHLQX +>SRR4051794_20682467 +VGRGGLPRAAVVGKRTLTLDMPAATRWHVRHERAHLPVAPRRPVLGRPDRAGRRRRPAVLRGRPRLDVRRRRAGVRRLRDRAGGRGSGGRHRPAAAGDCDRLDALLRQRRRRGDREAVTDSGGTLLLPRGDVGPLGRLCVAADPTGAVFGVWQAGQHIGAGHVNAPGGLTWEDLRSPDPATAQAFYTAVFGHVVDPMPEAAPDYGLFHLPHEQAPLGGMGPIFGRDDASAHWLVYFGVADTAGAVEAAQNAGGSVTNPLFESPYGRMAGLADPAGGRFWVVETDGSCQPDRSDX +>SRR4051794_34313143 +PVADFAHVAPSSEPVAQPEERVAVLLGDRLAELDAVLLLDLLEPVLVTELQEKTVGEVDAHARAEEPARARLPGDRAVGERAVQHREVSALGVKDAVVKLELRAQARVRLRVALLVVLEKGPDAPPRTEVIEVRLGEQRR +>SRR5450759_4329672 +CVEETGRDVQLRALLPCYEVAVAIFDHAFHGDRFTTDREIELRAEGGRAERHTEGDVRLEVVARGVLARRPVWRGDVGVRGNLRRHLARDGLRQRPRTVGELTIETGQHDGAKLRWLDGAGHRVYGHVHGLSGGHDTVVGQGIETRAARDDERLLELALLLGETKIDFGPDRRRHRRDVAAGFARAATNPDGKMHIRARRHTQQA +>SRR6185295_8040175 +RFSPGSGRSRPSSLSLPVLDDSVKSTPTPSGQPEHESSSIKAAVVSTAPSKRGFLVGGLGLVALALAVVIAVRPGGAPASPGPAVRAAEAVGMVSITSEPPEAMLSWNGRVLGKTPLKADLPPGTQSMVVSRPGFFDETLVITVPPAGTVERSVTLRRREDPAPLTAX +>ERR1719401_1546905 +KLLPLLAARQTATGTGDELRFALLQAKSRTHPRTRRAQITALKRPGTRPPAKLTSSPSTHVLVSLASLHSRPDLHVVASVLPSQVAPLSAVPVLFVAAPVTKNRQDRTSAIIFSIFSMANELERQCAGLVVRX +>SRR5207248_7680326 +GPIPRAQPRCPAYPAGRHCREPSTVCLLECSAGPRDLHSFPTRRSSDLPGTYFGTAGSALIRAAALWDDLEAAGVPGIKGVWKIDRKSTRLNSSHRTSSYAVLCFIKKRVPDNACLVEARLPGRQNVAGHT +>ERR1039458_7977961 +VLISGPTGVSQADLSSPLLPWILPCGPVFFFNDPATTEIYTLSLHDALSISNKLFVESPATRRFLSPSNCSRTDRKSTRLNSSHLGISYAVFCLKKKPTVLLVALGYGLASLYYLDHFDKLSVLIKRQFSCIRVSIVVSVLTLSNFFFNDTATTEIYTLSLHDALPIWKRRACRCLRHLSCFWCSPCGPRDRKSTRLNSSHLGISYAVFCLKKKX +>ERR1700760_2163761 +SPHPTAPIGDVVPSTPPANALGKPRTSAVWKTATTAGGAGARTARSRRWWYVSRRGLLSPAKFERRPSVGRFVLGDDVRGNPAALIHLVAVRPRPLADSGTLLAAGAVALTAAANLSATRFACVIHVLSKLGAELARVAGTQIDLIGQAIETKADGLSCLTAVDVIDQX +>SRR6185437_11610463 +QDRRVWQRLQLLLHGQDHWAGSRAPVLRSAPRHRGPSAMRPTPRPISATRRRSQRVRRIARLLAAGLALAALVAGAATAEATSTGQLQQKISSGRAHISSLSGAVSAANRKVRQLDASVTATSNRLDAVQRDLDAKRAQLLSLRAQLNAAQARLKRLQATEAADEQVLATQLVGSYEGQRPDIVTVVLEARGFNDLLERLDFAQRIGHHNAQIVGAVKSARRAVAAEAIRLGVLSARQQRLTEEVLTERDNVASLRISLLSQRLGAARARDTTAGRLSSAKAQVASLTTQLNRLQAAQRAAAQRAANAGSSPAASTGSRRSSSSSGPPPSAPPSRGFPFPMPTGAVSPPD +>SRR5260221_13052907 +SLQPTRARATRTCWACSTSCSATASGRSACSPVRREARDWRAPCHPFAHADIARTGPSVVQKSERPRAPRQVTGKWLALILALLVQAAFVAVLVVSVRWQNRTPEPVTAELYAPAPRNPVAEAPPAPAPEPAPPPAPPPAPPKPVVATPSPKVDQPDTRAADIALRA +>SRR5437868_12203378 +LVRRGVLGPGPTDAGIHYVVSLRFGLDPMLRVAPGFVVHFFFLMSRRPPSSTLFPYTTLFRSPHQSVYCFTGSLFYRVPCSRSRSEEHTSELQSRFDLVCRLLLEKKKQWRTMCPVGVRVRSGACVLILSVCASAPACGVVRTAL +>ERR1740130_985408 +VVTKNHAAVLKMSTRHMQGTSDSRSDRKRKNAEVAREELQRQKQRLDFHRHKTRDLKARLKDIEKGTCKEYLAQCKTLDSTTQKEIRTIALLREAHMTSTSQLYSFDTMAARHGNRDSKDALKLQLRNTVIEELKEIDDLVKSESSFRRVSKRNLRSKSKTDDVPNGTNHAGTSCLDSFRLHFPLTMREVDEDLRIIADDWHKAALEFKKSQDMIPVTVTHGKLKYDDLVIERGANILVQSELTQTQTEGHVLSIRRNEIRIKCKNGKKWQVQVEHLRTGRVHLFPAGSAEX +>_1 +FPEDIAHTAVRNLGVPFYMIEIADDPRYRAVVGIENTTASQWLAPPDLVSVPSNGEIPIDFCLDSTFPYTTNMTYTHLMWRFVEPTRQQDDFGPTEWITVPWEMSGFVDAGNSCELLDGSNGTVLQAQIPLPDSSVGKIHYKAMLGTTNGAFPFSYPTVEEGPNYYELSIPYRASFGSSVLALLMFSLIATMVWGGLGYTLKEMFNDERDVLGLPLKCVIWRKLKWKLRMKQAQMSLVEDX +>SRR5262245_59441811 +SGIRVLERERLRQSTAAAWRHRISGGRSAHTHSDETPCGCHRGVLSAAGPVEGCRSVQGRASSADERRIRCHVEPERPEPYAGRVVGADADHRSAKMVCPTVREEVERLVRDPRVDVYAAVVRRSGVPLAVVIRIVICGEPEVRRLMWIVHVTECVAGDAWC +>SRR5689334_15183997 +RLGDVVLDALLQRRERFVDDAEGVIAVGHRIDEHADREEVIDLLVRPLAGLHLFVDRPQMLRSTRDFEVLDAGARQRSFERLTHLANELFSLATLGRDLLGERFVPVALEVLEREILKLPPQLRHTKAMRERRVEIARLLGNATPLFGRQPLERPHVMEAVRELDDDDAGVFGDREQQLAVALDLPLFLRATGRQLGDLRETVDDRGNVFSELPLDVGDGNLGVFDDVVDQPAGDGNRVQLEVGQNLGDIHAMRDVRVARVAHLPAMGSLAEAIGAHEQVPVELVVERSLLLPPTRYDLANRRCRRHPFSNVFSGIPSAIPTGRWGFGTLPSACSARLPSWDKQGPTTTDGPRSSTANIRGS +>SRR5437773_4994510 +TIKIGNGTGCAVTFLRKEDGMPLRRTLELTDSQRQDLVHYRDHDPRPYVRERCAALLKIADGQSPHAVARHGLLKRRDPDTLYDWLNWYERLVSAVSGCFSTAGNIGSVFDRSDELVERLQHAPGEQARQELAPTADGPPPSRWTLRGVREIGRAHVX +>SRR5512137_1013993 +LWHTLSAATVRMTALATRVLYQRGGGSWRERLLDQLAWPREAARSRFSGSVSSRRIVEGVGFDMEEVRRIRKWVSGATTNDVFMATVGGALRSYLQLCGDPLPPGLAAAVPVGHHDTLPGGEPGNKLNQHRVSLHIDCESGLARLRALRQASEDA +>SRR6267143_4187927 +LGEALRADARRLAAVDLAYGRDHPVGCPVDVLGEDAARVIELRGNLSAVVWSSGRATSRSKDGRRVLRADDRVRVTKIDERDRTRIRLDVVKRVHQSDLVGARGLQRLVLPVPLLNRDEGDVIARVVRVPEGERRRVREAFGQGGRLHILQPSEVSK +>SRR5215211_5171990 +PPWRRALPSRSPSRLLGWRNSPSLGRAPSPADGHSSSRPKLLLVLLAPMLPHRGYGPFIAEQTLGPGAGRLAAEQPHGEVSARNEQLVEGLAHVPVGNDELSPLLRGEERCPAQQLLDKGSAHASGAGYYGVEVFEFEVEALAVERDQAPPAARVGERYLRGLVYAAGSRGERRLEQVWTVGSEHEDDVCVLGEAIHLVQX +>ERR1043166_75354 +YRLLLGSDPAEPLLNEAHGFRFEADTEIKGQPVYVLRWQQDARSFLNAMGLTNTPTSGRSFPVKAWVNTTNHLVLQLQSDLSNWAKEIMGKRPEFPVTGLLITESHSAIETAAIAASVRVFSTQLQEGVRTVERIELPPPNFAILAAPRRHFSKLIPARLSMASSNQIDLTDYYNGALIQAWHPGPPGNNLSALPNGLLQLGGVVFDVRGVVQLAGVDLLRAGGRFPQQISGIRIAQVCHELHFLQAAGWRSRDGTRIGTYLIHYADGRTQAIPVIYGEDVRDWNAAADPGPQLKRAVIAWGGINSEGRPVRLFKTTWDNPWPDTEIVSMDYVSAMAASAPFLVAITVE +>SRR5689334_14209035 +IANNGIIATVSLIISTFIGAILYNISPGLPHTAMGVVHLVGFLLAFRLVEPKIKDAAKEKFTFKAYRQQLSNGFRHLMTPALWGFLPMMFGLLGITELMRASLVQPALAFNMGFGPEAQSGIFALQLFVAMFAANAMPFLRRRIGDWIGLVAMTLLLMVG +>ERR1719265_2530241 +PTNTDPRCAGRVHAVRQPTLVVRVGSLDKEVVRLVQLFPQHVLVQVASVVIQETTVKIPVHVNGLATWSVIANVLAEILVSANRVACDVVVAAVVPTAETVVSRARRVQTTLSVALVFLDVHHHAGKRNLYLVQIHVA +>SRR6266545_7407710 +ASRRRHAAAVRAGDRDPAAGGEGAHVQADRRAVGDLDSYGAEPRPEHAGEAAAAQPYRAGPVRHRNRPRPGRLTSGVPMTVLAAPGATWGITGPQFLALYGGLILVSFARRGHQRPARCRQPRRPAGRAGRRPVAGAPLPDGFDPRTVRAAAAALLRKRASGSPPT +>SRR6202166_3668028 +KDGPAAVAPAPAPPKPDMAGLDLPLPDPVRERPASNPGANASGLNLNKPGEKIPAGKAVPGPAAPRETFRRLVPDFAPLEEQRRPARAFMSENMMPDVRATFPVRKKVLGTAFLQALLRQWWPLLVAILLVVGALWLLLPHPARREAPSARVLPETPSTDAGTPARPLGLYVDSSGPVWRVSWNPGATAFRGARGVALFVRDGDDQNRIDLSPQDLQSGTYQYAAKNQEVTFRLEVTDDRGRLSAESFRLVKSVPVPPEKPTGESVRRTAEPPRPASTAKNLVHPRATHKVPPVVPAGIRPRIKSPIPVDILVHVDSHGRVTDAAPAVKQHAGLESYLAERAVTAAKQWRFDPARENGRAVPGTETIHFVFERXX +>SRR5215217_2643638 +DDASPAVRGKVGPDVPAMQLDDLPADIEPQAESLGGIIRSSLEEALEDPVTCVGRDPDATITDRELDRAGRRQGESHDDRCSTGTVLEGVIEENGEYLLESQRIDPRFERCRHLQHDRVPVAPGSRAGDYLFQQRRQISWPPAAMSSGRPPAVRHPG +>ERR1035438_2618940 +SSDLTDLSRQPHGTNAEVDLAFLEAKSWFVKTNQAKAERMLLSLLDAHPDDLILLNRAKGLFAAFASYTNALRITDRQLQHEPDNLQLLQEKGFLCLKAGQFSNAIPTFTRILSVTNSYPVLMSRALAYLQPRRWGEATKDYDRARQASPDSSEPYYGLSDVARHRGDPNTASQYYQQGVSNGLRVIEER +>SRR5437762_5397717 +RAATGEKAPDARQLVAVDVQGDAHASGEQAFAQHTLPYHPRSAEQKHLHNASTIARQTASIKEARYGVRLQATRWLGGGAGDRVARGVCRVFRVQRGRRARRRRRSADLGRRSGRRGPAGGPAGVLVRIWIWMASAVGIRVLPVLLYSVLAVRPAGAVLGRRVAPAPMLWLWRLLRSSADLRRLAPARPRAHDEGAGSIANRGATNRX +>SRR5882762_3560359 +RAPGQIFFRLHDDCIYLGGDVAQIGSLHRTEDIERRRGVVVGHDRGRDTAVNVRHAREDLRRSARSVQRRVAEIIEILQAKLRRLRRDLVLSSALGIDPERGRRLETARQRYQHVGGNRLLGQTQQLRLAAIDIHVELRIVARLVDVQIDGARNGAEFLQQLVGKFTVAVHVEAGYLHVDGGGQPEVQYLADHIGGQERERGRRIGGGEFR +>SRR4030081_1498409 +RRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLPATLSDLGVLERDEGNIDAARRHLEDAGAHERALVQADPAPHHRRSLAITLSDLGVLERDEGNIDAARRHLEAARAHERALVQADPTPNHRRRLAITLSDLGVRERDEGNIDAARRHLEAALEHNQALVQAD +>I1BUC6_RHIO9 +MLYSRLSPAKDRIFLQKILPACNTTSKLFLNQNKLFVIRLASTRSTLYNNQSKPDNVSLNGDAKKPKRRFVKVDSEFSKANKFTYVMPQDPYVASDRVTSILKNGSVDDAIEYIKALPLDLQSVVVWNHLIGYCAQQGKAKFAEQSYVQMRRRGIAPNDRTFTHMISVYSKSTTPNAVENAEEWLKKMKNFDIKPSIIHINNLLKVYNHAQQPSKTIKLLHEMPSRRIHPDAFTYSIALKACSELSEPGQAAKEIKQIWQNIVYRLEGEDHGDSLKIENLNLKIDDGLVISLLTAISRTLSKESDMIPGLEAIHRLYSLYPPRAAAVIEKHQLFNVNQQYGFGMQPSIKALDTILRFCGKTKQYALAIKSILDGCMTLSHKYIHDQKDQHKSKYNVWNQSGRGSTYATATKSRNDTTRGPIIAAAATNLTIAVSIIASANFRC +>SRR3984893_10676208 +QLRRAYPKWRKAGRPAGAGSDPVRAGDKPQDCEGDRPRSAADAARACRRGDRITAAVRESVPGTKRRKPRRRVYVSFWGSSGSAWTDGLGCLRRKCRVGPGELHPEPLTDPDLTLSRHPARATARRLPPSVENWRLLLLPVGSLPTAMTCLLRSTSITPASSLLQGSPPLSGASVLSASRLEPLAPFPLPSPARFSRSVPEPDX +>SRR6185369_3836006 +IGELLSSLRLQIVRIDIELAVAVRAKVDRVSHPHRVYVVGAALGLGKLLGGVVAKTIKPYRRVEAAAIMLPLGKRLRQRVVSQSRSVGRIGRLECVWQLERLFDAAFDRNGEQLGVASGEDSARRSEQHRRSIGCESLNYVRTRMPRQPRRHSAGNRHYIDVGVSFILGGKRDERSVRREPRAGLLAFVAG +>ERR1719376_375132 +FYPGMVNTDKMKKTSLTYTITPEQMKAEDRIFEQQIEKERRHTLMLRQARKRKKRANKNRGSVPGTLVPIRAYNSYKTRERGTRIDELRNVDQQVAQRIPEQQPKAPVIINWNDDDDGSVTDPGHHLHQTFIEAITTNIKGLDPPKENEGPSKHNIRAGAGTPWQHGMKEIPSSFVDQISIVGVKKSSFFQLMVTGNLFWLRMFLKGKEQMLLPDKLGGKSLDLDTLKVSTPALSGLSDNNYFNNCSQIIELGKTLMSKDFPHLKVYRCHNKESKKNCNLVSKFRHWTVSEDLKYLDLNGNEAFESAAHNTPDILIADTVKKYLEDVNQHDSMIEVMTMIVKILCNHLHVPLRVLKRERSFKEIIKCLVEYCMNKSITFDGTKQLQYSINKLMSKASKWIGGKRMYRKLLQSYLNELFIRRWIEYDSDKSITDLINDFSGRTMVDISDMSSITKSSFCSDVSENVRGGGGGGERYNSSSPISSKRSGLYSFRCNEMSDLLLLIVRMRSTKNLGGKIESSSEKMILDEYLLDWFFNKIKEMNLIESQVSNTNLNEGSAKITALENFMLTLALPNTDNEVTDTTTTSDASVATAIHYKWNYIEEDKYGSLESFNGTNHSDMMKHLILDNVDIDKEERKEEKLSDYIKTVDESIQNSLTNLLNNEKCWGPIRVIWGTTSYIRLLLHKYSNVLDLYSESCHVIEEIPSFKVILLRGRRX +>ERR1719191_268510 +RNLLVLGARNAAGIIRVFHRLARLPVGAYIRIALATWRARRFVFLLRAATHGNVEKSRSARLLEQDGFCRSCCRVLFCDRRKRDLLLMLLLVFPKNSSSTTVLCFRSTGKRSETSQDTEYPKMNMNTTRTRNSIVSKPRSNSADSTALITILRKCCKEMGGCKSQRQTARSLRRTNTSYVASVRG +>ERR1740124_282413 +RDDRRPCCEEMYVLVRESPRAAGTELRFASKPCAGEKAAMDQWRDAYNTSRSSAQLKREGKVVSVALTEQLAHEYRRFRSDHPSWLSLEPPAAVRAVAMVEADEPEAAAAAGGGDSGGGGGGGGGGGGG +>SRR5271168_1700852 +LALLPHISHGRGIVTLFVAHCRWISGPDNYYGPTIDLESIGVRDGLVEDLVVGVVNVGPVCRVADVKGGGGIIVGIGPLGLPGRRVVIEGTYLYLVGKAGVVQGRQYGGHACGTPAGDRTCSAKVGAKKVQPGLTRLANPG +>SRR5712692_205962 +KLFERSSKMNTMIRCLGAAFVLSLLTLCICPDASGQGWTSTATKAYLVQNLSNATLIGPLDSSTTLHVVVGLQGQNANQIQPTLRRMLTPGDPLYGTSLTVPQFITQFGPADRKSTRLNSSHSSISYAVFCLKKKKQNKKTSCYEKKKIKKTKQETTIQKQ +>SRR5271156_1441549 +CVGAATQVLLVLIPPVLIDALGLFWTRWASLLINSIGPFDQQHLLILVDLLQLHFDDFALGGRNVAPDKRRLNRKLAMPAVDQHQQLDSLGTPMIKQGVERSTDGSPGVQHVVDQDDIASVHIKADSAGADHGANIVGREVVAVKADVQHAVVDWGLFNRADDLRQPLGQRYAAAFDADQPYIFAPVVLLNDLVGQPDQRA +>ERR1719300_424020 +SGDQLFRSFTKFICSFFRFLTLSFATRFTLALHGFGRFLGCFSSWLLLLSSYSRTRSGCWCSTLFRSGKDLIVIRDIIIIRVFLWFRCWTFFTLGRFFLFSLFFLFLFFFFIIRSPQLLRRRIVWIHKPVGARKSLSTDLLKPTFGX +>SRR6267378_6278353 +RLSVPKRIIHGEGIWGSDKLARVEPVWARPEYANLIPLALANGVFEINPKKIWSSVYSYNRPEITVEKVEEILAAFVKAALLFIWDDPATGKQWGFWIGIDKAGRLPAASRLKKGHDSVGPTPPLDSLQQYMKQPMASHGSANGLVGSGSGSGSGSGKDVRADSSSPHESVTPQTPKPPDEKLLVVERVWAYYVQKLGKNPKQLSFTAGRKQKGLARLRECLEKEGGDLGHAEGLMRLAVDALAESPFHRGENNRKKRYDSWEKNLFKDQDQAENWLDSTGGSKRGPVPVPLLDRRGELNDAGRTVYDKAGVSMSX +>SRR6185503_10073111 +SSSLASRLDQQRQFARENYNWEKRAEEWERWLSGFGNATSRLPAAVADTALSAKTAGNFLRFVGEPEAAIAMYRRSLEIEPDYLPALYNLGMMLHQTDRFEEAEESFRRVIAIDP +>SRR5438552_10382664 +SYCYSSLLYSCRHLFISLLLWFMVYFFFFLLIRRPPRSTLFPYTTLFRSTRQFLTESLVDGERSQSKSFSSCARIGRILRPFADRKSGSAGMPRPISYAVFCLKKKKNILKEALALEHTTGERWYAPELYRLKCK +>SRR5947209_3319617 +CRAMRVLMRFYQKIGFRIIVGAVLLVSAVAGLLAWRIQGLSKEVLRTHEYADVFDETNLRFREVSSDIQTLRDELLGLFNDPVVRQLQWSEHYKEGWLPIAPPGLEDKAAFSKHARKQATEVFVQLLRRHVRYFRIEYYLDRTRT +>W8CC99_CERCA +MKFLLTLCFAACFIATLQAAAVDSTTAQPKAAEAADASTTVAPTEASDVVEECHQPKETGRCFGLFYRYAYNVENRQCEEFVYGGCNGNKNNFESKEDCEAKCLAAKKDEAPKEAEEGEESSTLAKEGDEDAPVVPVVEAKPVAED +>SRR4030042_5098232 +KGDAFLLIESQRGVRRSNYCQIGKASLENLVDCDTLQAAEVLSHALPWLAGTAVECFGDDCRFSLPGREVGRERWAEKSHDRSRRCGRDVHRAAVRADKQGGATDDLPELDHVELSGQX +>SRR5688572_19060020 +KIFRIYIQANSYFTILPACFTFTQLKILIMKTIISALFIMAAMFTACNSKSGSADAQSTPEGAANMIFDAAKSGDYSKLKGLCDASLDTDVDSKKICEVSDGNEELKKMFKDYFSKGKVVGTPTIEGDDAKVAIMFGPEGTNDETMNFKKKDGKWY +>SRR5438552_950382 +AYRYVPATPAPDLFLADESIRLGVTAPGTSVTRDLRLANQGTAPLEICDIATDDARFAVRPASLRLAPGAHATVQVTWSASDGNPALGTLTLGSDDPGSPRRTVQLVAGAGRVAVGQPAPEVVATLLDGTTFRLSAERGHVVVVAFFATFCPACSF +>SRR5208337_2690271 +XMAFALLVRLAEQPPMEVNIFEDAECWIKIAAKALGHVGNPANLGVPVYLAGHIAAKHMDLALLNDSDACGEPEQRRLAGAVRPDQSDHPAGGNIDGNVIQRDRLAVTMGNALDLGHDVIRHWEASRQVFPARQRRDWCGRTPFREFRSSREYDI +>SRR5262245_35595640 +GRRHVRAVGGAQAPDRRAGRRDGRARGQPADRRRARAARRPGDRPAREDALGHRAGRLAVLPRQLRHQPLRGAGHTDGALDTADGAAHRARPHQGRARARAEPRVPDPGRGRVRLREVPRADAEARLPGPHQPRDLAHGPAPTGLRRGRGDGADLPRGRGRLRAERRATRAADDLIRAALLLGVLLAALVPGGARAQSLPDVSDDGGVLFRSELRRLGGVQTVGYPLTGRFVWEGFTVQAFQRAIFQWRPESRAVAFVNVFDRLYELGHDDWLLVHRQTPRHDPSLGDASARLALLEARPAIRAAYFGVVGDPVQANGLPTSRVQDMGNHYALRAQRVVFQEWKEDVPWARRGQVTVALGGSIARELGVLPSVA +>ERR1719499_2701023 +LKQFCKKTCCKKAEMAVADPCYWTDDCDEKAVGSSSDESSEDSAEKAVANNRFDWSDQKGWCQGERARFNGAKKYPGKRYTSREQCLADCEKENYSGWAPKGCEYSARYGTCNVFFGKSVSGTNRGSSYRCNINRSKAADYERAYGDFILQSNANAAKDEKAVGSSSDESSEDNAEKAVANERFDWSDQKGWCQGERARFNGAKKYP +>A0A2E9IMM2_9BACT +MTRRLYTMALMVLGLSMLLSSTGCHEPTSRDPRVLRVGVIVSLKGPARYWGVVTMRSAQVVADYYNERGGFEVAGERVKIELVVLDDEFDATEANRVAHQLVSEGIHYTIGPLGDATVDAARRVLEGANVFYLHYGFDPALQGSGGLAVLGMPRPEQTLSIMFRHLRQEHHVSRAVVMAYGTEAGIRQKRVAEQLALDAGMELVRIARYDVSKETFDVSLDPQGIQRRVAGVVAAAPDLVVLAGCPPEAFVVIVDRLRSAGYRGFVGTQTTQDPRALAKLGEASDGIYYVGGEPADALRSEYFRTLKERYLDLAGEWDAEANKKFYALELIVSCIRAAGLEALDETSLIYPVLSELNIEDPFYQEPRALRLIGGQEEGLPRQLEIPIYITKMSGGRAVLVEESPRVLP +>SRR5262249_35545196 +GDFGSAQGGDWHSSRKEEHLAANADAEQQTREERVDPVEHSGQAMDDPQELFDLINEDDVVVGRVRRGEAHRNPALLHRSVQVLVLDSSGQLLLQRRSQQKDLFPGYYCASASGHVMAGERYAETAARELAEELGIAPPLTYLGTTLVRSAFETEMTQVFLARSDGPFRFHPTETEGGLFLTRRALQRAQSAGSLPLTPAVLAALDILDRQLPDADARTGE +>SRR6266550_8732594 +AAIGQRRVTRPGERDRDRVLPPVVGGSRLVVLGRAVGGRSRSIRSRLVDVDASDGGQRSIARLVEHRARERLTLTLVRESVVRLTCVYTGEIVVAGELSRNSRVVPTVRVRPRRSGAGDGWRRGIEAEALRSASTVAGVVHATARDSRRISVRDAVARRWIAALDSAQIVKLVCDRIAERVVVPVIVVGSPRERHVERWRRLVELEAL +>SRR5438874_2142771 +LRRRKGTDMKRRDRRNGGRWGRSVLASLLVVGGLGGLGLPVVAATCVLEPQLRAITANQGIGSYATVARGKETLVRLYLSLPSCAASGSSIKVTGASLTADNGSGVKKTVSPFSPTPTSTPEIVAAGMAPAFDSDGDPKFVLPGTYLAPSYTTARFDVTFTATVNYQATANSTSSPVVSSKTFDKLSDSTPLKVTVERKTNALRLLVVPMGDGHQTYSSQFGNLDKITTQNGLTTLARLLPVPDGTGDLTSTARGGVRYRIAPTLLDLSSLMTAGKFCGKSTTWGALQSLLLGFLSSWNAANTANPAATADRVLGVVSENISVGGSGDCVDGYATFGEKQAWVRAIADTAFAPSKTGALMAMEIGHTLGAVPPDRDDDFNVRHSPNVAAVPSTALAPNRGYNVDKRAFVPNDRSAMKVSPSGAWNNTNVLFEAADWAWIQCQLSNTASTACPSPGKVGSAVGVGANPTLTITGRTDGTRSGTDVVESGFAPGGFAPGGLLTEPDPTSVYRLVQRDGATILRDDGVEVSFEESQHDGGAVFLDNPFGVFSVAFPFDTGANSIELWNGTPDGPTSVLLYARDRTAPPTLTSVNAQPPSTGTAATERASVSSAEAQTTSGSTGAQPSISADGRFVAFPSTATSLSVEADTNAQSDIFVRDRQSGTTERVSVSDSEAQATGGPSTDPVISGDGRYVAFVSSATHLVPGDTNGQPDIFLRDRQAGATVRVSVATAGTQANNRSIHPSISDDGNLVAFTSLASNLVTADTNSTDDVFVHNLTTAVTERASVSTSGTATITSTTGAVVGVAAPVSVRPNAAVSDDDIIAFDEQPGDAPSARAPAGGLNVDVTNGTADRTHALSPSTIPAGTTVKTHLLHADRPNNPVDFKSFTGTATFGADILGVIVRQSRLEATDGLSSVGTTYPVANDPQLQGLRGLDF +>SRR3954447_7250895 +XMEAGWEMPAMSSIALAVLVSVVAFVCVWCQRAQDRADKRAELLLQQHLTTEQLAHLNRTGSLQVPSKSFESRVYTVPIRGFVSVHDEGRLVMRLCVRPGTFLPGREAILAHKMYIEAAEDEYVESATVVWRAMSLKTSATAVX +>SRR6185437_774131 +RLHGRGDETSRYSAKSVRDLGNGAVVSLKVPSRCNLMTRKKITGLDQALGASAKLEATASAAYSRKRSITEVIPPDVTRAKAGAWLDLISPLSEWAGLKGDALRAKREQLRLQREDVLGEIARRARARITAQGLSVTPVPNKFLVPFLEQASLEDPDSSLVEIWRNLLVSAASDFSSHHTHFVSVIARLSPKQGDIFRAIIKAESLDELEYARDEIGMWFEAHSVRQGIAREYGKIPKRTRADLSDDDFAEFIHGYMKTAGISIVHGSFENEQTKS +>ERR1719456_362451 +AMTATTLSAPILTTMTATIALVRLTTRPATDLTTTGMLLAMTLIRMTTTTLPLTLRTAMTAATLSAPILTAMTATIALVRLTTRPVTDLTTTGMLLAMTLIRMTTTTLPLTLPTATTPTTPFAPTMKAMTVTIALIISTTKLTTDWTMTLMDSVIRVTLTTTMILIPTP +>SRR5690348_12433932 +LENVTSFDPKTGKALWSKKVFPNAPATVLSVSPDGKRVAVGGWAEICVLDARTGKEEARVPGKDLSIKLIKWLPDGKTALVVRKNPDRQGIPEDRTITLYDTATWKKV +>SRR5438093_595488 +YNIGTYPTKSMIWVFLPSLEGLFYAVITASYLGLNKTLPRFLDKSLAWLGSLSYSFYLNHLFVIDVSYKICTALGWKVARFADALIFALLIVFPPLIVTSAATYYLIELPFLSLRRRYFRDEHDGVYSSRQPSNHESPHLPFERDDAKNVQLSSX +>SRR6267378_3168319 +GLRRELSTMNSQTYRLQLCSSDLKVFQRTNRFCTGQRCTKLHLFQSGWTVSMTNVKMQISGKDRTHAPATTVFASIGFASLLTIIIAAPAAWDSRRTEDERVAPLSAKSAAGRPRGLWYIRSGQWQAHARTLVAAIRYILQNDSETNSGKSDGSCPALHLAMP +>SRR5919106_1596169 +LSRSFLRCGHASAAVRSRCTDELFALRSALDLNRQDRADALRVVLALDDVGLERVDLLGHEHFVVRTDRHGDRLGKAEHLGLVLGLAGVVLLPVRVADLWLGRHDDARLGTIHPGLPRTLGADDLAVLVLGALFTEIPDGAVGVLGEPVVRVLDDLAVEGDGVAYDDARHAHHLARLVCDLHNGALKAVLGATLVHPLSTRLQWEIGVVHRGGERCRIDGRCVRDLGFVRAARSFVILVAHSRGEDDGSDRRNDGCGPDRDEGGARDRHRQSSPSSASPASSSAPTTLNDSSSWTSTWRPLSRVTSTSYMLSSSPTSVPVTSPPPVCSRAASAARSYASPEMGRSFSASSPPAATAVPTPAPTTVTPAAAAAASLDLRFIADSSRRGWTLTSCGQPAESRLKARAYPAPASYPGSRTVNRAPPSVLSAIETSPPCAVTNSATMASPSPAPPASRARASSSLTNRSKTRTLSSAPMPGPSSSTSRTTQPSRSASRSRTRERACRAALSARFRTTRRAATASASTRPADTAVVSMWRRVFARSRRASSKTRSSRSSGLACRWRACSSAAARSIRSSTRPWSLRHSALTVAPRSAGGVAFGX +>ERR1700674_3395430 +XMALRPARPRLAGRWLEPRGDPRPRGMAAGPTGFARMGPQNPAYRPSPTAFYVPVGFVIVPPAYSWHNLGMAVLAKIGKPNTAPALFRLLEDSALSRAALGCCGIPLAMLDANAKSSPVTYVNSAFEAFFGYREGEALGRSLAAVLLRNDEPLLQRLLAESPKRWEISAWGKDGEARHVEAALAALRDASGKLTHWVVAFSDRAELERLRSEVESLKSLAAASLGIGIEAGGKPARGSQKARIEVPAADELHPDRQS +>SRR6478672_5938487 +SVRRLSKETILAAPEKIFTALLREINASPDPKIKRACGNSWIAPHNWEGFFLNFGDMIVKNGEFEAAKEIYSTAKLSPSYNEWVYEPALEKRLLEMKENNIAFNKKQDVFALNGNDQIMINSSMSCTGCHQMSNSEFIKAGYKEP +>SRR5262245_38459693 +KSVAAGQQECAERLTPHKRGKAFPRDERRKSGTVWRLGLTFAPAGVCEVYKFTTLIGCILAQTLGAARTGIAAGPDRPTERTGSPGPVRPFYGRGAIGGVCGFGAMPVVEPPPGAVVVRAGGLWYWKSGAFLSCSFVHVTCSFTLVGSSLPMAAPAPVVLPVLAGTTLNEFMSMATLFSPMPRKPPTPTISARILPCLSNRMSLTSPTWALSGPSTSVPLNFENTHX +>SRR5215831_1038994 +TPDGTSESNWTNFFNIEKNLLSSNVIFPAIGNHEADGVLFAKYFALPQNGASGLSPAERTYWFKYGNSMFIALDANNPSGGSQVQWLQQELAAARADSSVQNIFVFYHQCAYSNGTGHGDTSTVDSAWVPSLEGNGGVTLVFQGHDHIYSRITHGPNTYIVAGGGGAPLYGTGASTAGTVVKTEASHHYIRVQVNGTYIQATVFRPDGTQIEAFTVGQPGGSGGSGGGGAGGGAGGSGGNPGSGGSGGTTGSGGSGNGTTDSGGCQM +>SRR5215212_9325299 +NKCDHLSTLRLAVIVVAFGRIAGVDPILFSTCVVRHVCISHIRQFTGGHFGCRSGRFRAIDNYLGVLIGQNGGCEFRDLIGRQIERTRKVFVMVSSITECLYEHEVFSSIDLPFQIFSGNCIHSIFLLFRGHNSHDAVVVLCCGAPAVAIRGGKINESVRTFLHFTYAAVCAFEKILLTHDVSTVEYHADDPGASKAAKKVISLKLRKCQAGVKHPACGCASRRVFKKGRFHSLLCLPVMDDRPAVILAPLDEIKLIASISKPFKATWAVLSFENKIRAWLPVDPLRISDSIGPDLGTRSLLIDEWIVRGN +>SRR3990167_6373537 +CALPICREEARDLKNEDRKATRITRAKLRGQNIIERATIRIDKLEKLNIKATDLARKMQEKEIDITLATASLQAATEKIALARASISEAKTMLDQLENAEDPLAVAKNFKSKMTEVYKTLVDARQSIKEVFAKNADTSYMRTFIEPMKNKNAVIGIVIIIIIIALLVAVRKQKYAIAPIDEQPATTAPTTPPPSITPDTTTSINDESALRELDIELNAEDDTVLPDELNIETELXX +>A0A0J8TGQ0_COCIT +MASMRLAFCGTEVPGIRGTVICPLLLVDESFWLGEKVRPWVLAGLNLLEFDHCTYSRLAKSV +>SRR5262245_63831105 +LSRLLVKSFMGTFLCAVVFLVVSNSIIVYEVISYERSQLDAYRSQWGRASAWVSGLGRLFFFSSRRRHKICLSDWSSDVCSSDLCSAFGRTGRNYPRRREVGYAPLASSARFSAQQGLASLSHKCLLAPSLPGFPRTVQPVRQTRSEERRVGKECRSRCALKTIDKK +>SRR5262249_16412955 +EVVLQARKGLRRVFRFQLRIGHRDDSRVVVHGDRATEVAVIGAEDGLTERELAAELLREVVLDAAAQEPVVVFAMPLGKRAVVVLIEQALDGAGRKTRCNHVARGTDIGDPRRRLRLLVTQTQIEPSVADARLTFDVRGIDLFLYALVVVELALX +>SRR5579875_1120949 +TIGVDDLPIAKGTLIDQQVATNEDANGGDHAGDIVADVELVHGDLAGIASSRFVRLNDHTGADPQQADGRSDQAEGAENQWKENPADIACNLEKGHTEDHGADVLSGGGLEEVGPTSGAVAHVVAHEVGDDGGVTRVIFWNAGLDLAHEVGSHISRFSIDTTAELGEERDETGTKAETHDQRWSGSRQRGTGQAAVGRENDGDAQERKRDDQEARDRAAAQRNHQCFTKTAPCRAGGTNVRTYRDQHADVAGDTGAESPDQKCQCRVPGQANLDGLAALTEYGQYNGDHDSRDDCQCGNGSILSVEESYRSX +>ERR1719436_269911 +IIHKFSCMPEGPFSPPSKGQYQRMMGSSSLSFLCQQALPFTSLFLINKNIPSTRLRAESGAPPKSKAIGLSFGFVEAASVEELALAKLLGWKVRVIGIFACFIVFRISPCFFCFTFSSFFQIILFLDRTDIRISSGGVHNNTKTKRFFLPCNRVLFVRVRTWFYSHFLQNQSSGDKLSX +>A0A137STU4_9FIRM +MKILIVGAGRLAQRVVRMLSLENHKLTVVDANAEKLGKLRRFKNHTYIEADPLGLDFYKSVNLGDFDVVVCLTRSDKTNIIIGSAAKRLGAKKTIALFKEVSPIEDLDDLKSSIGIDEVVSLNRESAQAIADLVFDDFSGKSDFFAKGKMQVLSFRANNSPDLINKTIEKVGALMPFLIVALARDNKVFIPNGNTIIEKDDLIYIAGLTKDIQKFRHIYFPAKTQVESKNIMIVGGGEVCEYAAELMSKKSCNIKLIAKDEKNVKRLRRNLSDALVVRGDFEDFRVLEGEDIEKQDVFIAATDSDELNIVTGLMSKKYKVGMAISKVEGLSYSLLLDELSIDQFVNPIGICANRIVEIIRGNKGLNTFVSFSGRAEMWEVKLRQKLPIVDKKIKDLNLADGIIIAGIEREDGLILVPRGETVIRQNDKLIVFCKNESLKNLCKVVNPESTPTFFGEIFR +>SRR3990167_1971404 +VASAEQADAVFLLDQRNVQAIEAGTGHHAEVEGHGLALIVEGEHGGLFFVHLCHQRFAQLHKAGFLAAGDRVSHGQLLTQWVNVYAVNLELIVQVRPGGQAGGADITDDLTLLDVAAAADALGKAIHVGIQGAVALAVLNDYRIAIATVAAGQGNAAITGGLDRRAAWGSVIHTFVRTNLVQHRMAAPGAETRTDAGEIDRGADKGFAHAFASGAVVAAIALLVGVTHGGVGLAAVGEARREDIASADLLAVDHFLFVDQLELVAFTNIHGEVDVVAKYVGQIHGQTVRQAGAFGREKQRAVDHAVAIGGLDFRFDQFALETEALLALRQGNAFQVAELAVQAFQLAVGIQVELKRLAYFQACQLLGFLTAIKHVMQSGCAQAHLGKYRGQRVAVFHANRVLQWVDFFLRFFSLCGLQLIASWLLCSCCIGERXX +>ERR1719397_1477701 +QRSRGSQRWMGTRRTLMERFSTTHSSCLLLEMEEVVSRTEEWRWKAMEEQKLDRSKKRSNLCNISKLSNGGNGGTNALWDFFFAKIQTQCLISKQKLCNISQHSYGGTGEQMLDRSKKLANVQTQCLISKQSFISKQNLCNISQYSNGEEWGEQMLDRKELAKMVISQHSNSX +>SRR5690606_35020854 +ALVRAPARRVATPPAAATAGDGDRRLRAGLVFIARHRLLRTLTLVTALMNVWWAAWTAVLVVHAVSPGPVGVSEGGYGLLLTAMAAGGVAGAALAEPARRRFGARTVLALDVVGTAAMVGVPALTTDPWLIGAAIVAGGAGSAVWRVIGASVRQLVVPDRLLGRVYSASRVVSWGVLPLGAALRGALGEALGVRSVFAVGGIAGLALLQVFAIAVRPGDLAAVGLGAQRTSRGRSVRWATSRPASTRASVPPHTGSSCSTDSTPSKPPSYRASTSRTQSTX +>SRR6266498_1588512 +ICRSWERSTLEVNSTSSRGPGMDPALGWSQGLAVEVGGAGTVASAEIVLPRLLADRVGLTTGLSGALARAGFIPLRDRGRALTDAACALAAGASCLSDIEAMTAQVEIFGPGGGASDTTMLRVLNELAARLGSDGLPGRKLAKTMAGARAKAWAQIVARHGQLPAVKVAGTGHTRPGVDQDQDAGAPRPVLFVRLDATLIEADSTKTGAAGNYKGGFGFHPLTAWCSNVGDNLAVMLRPGNAGSFTASDHIVVLDAAIAQIPAAWRTDVLVTIDGAGASHDVINHLTALNSAAAHGRRGRRIEYSIGWPVDERTLTGIGELRESDWTDALSADGKPDPNASVADLTGILRHGPGGDTMSGWPPDQRIIARRVPRPVGEQAKLGRPPRLALRRVRDQHRHRTDPMAGRPPPHPGPRRGQDEGTKDLWRRQPALSRLGPQQRLATAGGAGLLAERLAAPPRPRRRTRQSRTQNAALPAPGRPSPPRHPRPPQDPEDPTRLAMGRRSGHRLRTTPRPPRLNKRPVPTNSTTPADQWTRRPPEHIGPTNLDPDHHPAHDNRKSHYHEPRTPPRIIQVHAVRRADDSAAR +>SRR6266481_5783698 +ERDQYLRARPHVGRSRERQCPDLGSVGAPDVRQPQRERPEPRGLRRHSADVLLVRPRERCASRDPGRQAPRWVRPERLGDGLMALLSILTSVLSVLTPPAKPLVPKPDPVVSTPTPGGADVQTGRALPVSSGPSRGLASWYPMRPATCDGISVPTWVKAWTASLTLPCGSLVRLSGPTGSITVPVWDRGPEGWTGRLFDLNPAAFIAVAGNLWSGVVPVSWQPAX +>SRR5918996_3897299 +ASRWFARVRFDHVAMVTPRQAPALALLGVAAVLTSCGADEDDPEPPPPPTAVASCGEAFLGSGDPNWRRDATTSGPFGLFGAGRHFQRPVMRELDNGQLLTKLPVIVDGTRPVVLSVPEDELGRVGLDYGDLRTERAIED +>SRR4051794_24721663 +SGDGSVRRQQGSPRRRPVPGSAAQVCDLQRGGPAGVRQPRLDLLPGCEATRCDGCQPAGPRRRRPPQGAGRACRGGRRPMTGGHANARRDMSTRSLISTDDLSDAELRALVERGATLAAGARPNDALAGQVVGIYFPLTSRRTRTAFSSGALRLGGQIIAYGPNDLQTNTGGSTEDTGAVLSRMLDLLVARTGGTDAELRGWAANGRMSVVNAMSAQEHPTQALADLSRITRHFG +>SRR6185437_8036068 +RGAGRFRFAGAESTLRLWAAGRPPTGLAMRCRSPRLPVRFSRTTDSWRSSAKRADKDENLRNDEPTGVCCLRRLFQLADLAQLVVQGLEAHAELLGRLGLVAAMAVEGLLDGLQLDLAQTERAEGLEVRAAQPAVGELAGQMGRGDRPAVAQNCGVLDDVGQLAHIAGPYVLFERGDRIGGEQLVAGLRVRAKARQQVPSERGHVVDPVAQRRQMNX +>SRR5215471_7291055 +APGLPQPTSEQPTKPKTPLSPPPWFVRGFFARRLNVCRAPDMEGRSLGHHLEFDMQAARQVRWTKTLHLGVLALLERVLHAARALLPRSIKRHLARFARVAEFALTPSVQLRFDARSTALVDWQALLPADTFADGPIVHANNGLAPGGVERQIVNTLVGLQRRQRAAGLLCLRLHDDA +>ERR1719233_1599910 +FAYAGSFLKDPAQSTLGSSFFLSWACNHHQSHLSLVLYHLQNLNYHSERLWLPWKFLQSFLLLLEIVFWILFWVRLPLFPQLLGQLSYPSLKGLCYQQFQTLPX +>ERR1700722_19934493 +QLPWRNSQFSDAPGIEVSLTIETVLSNLNSLSRKSQCHDVAGVRNRPESLRSNAAVKNPPVPSLRWRADPSPPGPRVRAPRGGKSGKMTRRRRRKVTTTRSLDARLTSAGPKRILALDCGGVRGVISLAYLERLEAILRGRFGPATVLADYFDLIGGTSTGAIIATGLALGLTVERLIEIYLDLAHKGFRRSAFSAFLGPKFRAASLLEQIQIQVGDETLGSARLRTGLAIVAKRIDTGSVWVFHNNPRGPWFDPAGLDPAAVANKDLKLTRLLRASTAAPTYFAPEHLEIAAGVTGTFVDGGVSPHNNPGLLLFLLATLEGYGFRWPAGAEQLMLVSVGTGHHPMTQARLPGKGSPSALLAVLALRSVLDDCSWLGQTMLQFLGT +>GraSoiStandDraft_51_1057287.scaffolds.fasta_scaffold520000_1 +VSRNPHGSGSGFATPQVKRGRPASTPPGVDTRALANPTTMHTMSPDTSCKEERPKLRKIDLGEPITVDFTGASRVATSTSMAGSLGQDADATAKVNELRQQCIAAHTEGQVNFERLDGRALHLEAEVTKMALVVAEVQRVVVDIHAQQERLKVETTRVGDELHGQQAAIVEMGDRLVGTTTSFTQHLEDMKAKLEETAGETLKKHEDNFTDVQGFAKLVDNKVVQVEATFAVMQKTMEDIHVRLQATESMAKRAEHQPPPGPPAGVRAGRWMGSAMGNAFSIGKATASCSPGCTDDHTASQSSAGKSSAMAEMTNIINEAMTMVSSQFEMV +>ERR550519_1962169 +ELSASKSQGQMALEMILDEATGVFCHDERQNLSGLFESENCKINNHENVDIITGNDENESLGEHELEVMKGLEVEQLSTSKLTTKKRKAKESDEVMKENRGLDGNILSTVLKSQSGNKKLKVTGLDGSFLSSVKKTYPRDRKLGTKITCSKCDYTTTRKDNLNRHCDRVHLKILYNCNQCDYKTSCGQSLKRHIEAVHEKIPQTKLACSKCDFTTKRKDNLNRHFDSVHKKILYNCNQCDFKITWKRALTRHIEAVHEKKLETKLACSKCDYTTQRKDTLNSHFNRMHKKILYNCNQCDYTTMWRENLIKHNEAVHENNSYSCDKCDFMSTSKLIVKKHVERVHQEINFHYNCSKCEFTTTHKQNLKNHIDVVHLKISQNCDQCDFTTKYKRALKKHIQVAHQKLGFNCTQCEFKTMWKNSLKYHIKGMHAGVSHTNYQHNAINVHKPSLSSRKSVDGEVTTNCRTRAQNVSRDVTGAVNPIRKVSENPSSISDNTEQKRVQKKSETKGGTRFTMKKRKQDEKTSRLEX +>SRR5687768_17643082 +LLYTGLYHSLLLLFFLFQHPSTTQTYPLSLHDALPICRRVLDQAAARRCRRHHAVQLPGDGPDVDVRQRTRLREHVRAQAERERSEEHTSELQSRLHIVCRLLLEKKKENINNTRLTEYR +>SRR4029434_9585403 +VIFFSLSVSLFLSLSLPFSLSLSLSLCLSLSLPLSLSLCLPLPFGCQATQLGCAPWWLCCVGIREPIPSHSHGNRVPECLCVFVCVCACVRVCMCVCVCLSVCVCVCVCVCVCVCVRADRERTRLHYTHSCISYSVLFHKNRTSAAVDHIAS +>SRR5271168_4498088 +RAGGVGRRVEVVLRCRRRWRRRLRADRTGARQQERGDGAHEQAGRSGGLNHRTASPTGAPLRCPRRAAPGAPRCFCIPRRRPRSKATKGCPTMPRLAFALALLATGSTSPAGATWLYCTATGTDGTGAIEFQTTAADVGAVPPARVAYFKQRLVQHATQADADARGMQANCFSFDDQTAAMSDYS +>SRR5713101_1804337 +HARIQARLNAARDRAEPGEGRPLAYSHRHRRAQDRNRMRLRAHRCTPARVDEYLSAVRLQSDTSIVWCCSNRRIAVLLVLYSSSMSPATPESGKAAGSTHERILRVSKSLFANRGYEHTSTSAIARQAGTSESQLMKHFGNKAGLLEAIFVEGWTQITDAARVAIQDVTSPLLKLQTISGCVLRSLERDPELKLLLLLEGRRIRKEGQMVSLTQGFLGFVQLVDGVLYEMRDLKILRPNISAQAVRSALMGMLEGMLRDRFLAERLGFPADFNHEQIREMLATAMAAFVRAX +>SRR3954470_16959927 +VSTGLVLVGAAIPLAWLTGVVGLGWPPNASARPASAIGLDRFGAALHLTNDPLGVLRAEIALQLTGFAALVVVHRAHGLDACGESGGSSDTVIARRLRHVVADVPTTSRRPAATTSASRGLGIVLGAPTARPDRPSARDTAAAARRLRARTSWRSIVLKEHGARRRPRGP +>SRR3954468_5071070 +NGALIGSNTGGAALGGEQVVTVTGGGIDLKGGGIGVNNRASITAVNANQTINATGTITVIGGDSGGVANSSNSSNGAFIVDNTTVGPVRTQTINAGSIELKGGAGGTENFAAIGAAKQVITSVGDVKLTGGNSDGVFTGTRIGGQGGAAPTATDLTLTTLTGDVILTGGSQANAGARLGSSGLTATTPATPVAVANKVTVNAGGNVILNEGTAVGALIGYSSAALPSAGDISVTAGKSIQMNGTTFGTAIRTTGNVELHADQPAATITQSSASRVLASGLTTTSDGSTSLNGQNQVSTYNGKSTSAGITLNNSGPLTVTGLQAATSSSITNNGAMVINGALNTGAGSLNLTTLGATSGLSLSSGAALRAVGSTVQLTAGGAITEASDAVIQSGSLITSSGGATTLVGANQVSSFNGTTTGGDLTLINSGTLDVTGLGVAGNVSVTNNGDLTISGVASSTGSQSYGAATISEASNAFILANGLTTTSAGNTTLTGPNEVSSFNGTSASGDVSLRNIGGLNLTGLNAAGSATLAAESLNGAGNVSTGTGFTVTVASDSLLSGVISGAGGLNKKGGGTLTVSGNNSYAGDTNVLVGTLALGGSDRTNSGVVNISSGATYRGSAGSFTNAGIIGGNGTLDVAATSFTNTGTLRPGGAGAIGTLTVAGNATLAATSIVDIEAQSATSHDVLAVTGAAALGGNLNVTPINGYAPANGDTLTPLTYASRSGTVFVPGTWLPTYNPSNLQLGFDSTINRWVGTTGNWNVAANWRPGHTPLASETVLIDVMGTQLVTLSDGSRFGGKLVSFENFLLSGGSLSLGGPSAFNGALSLTGGTLQGAGNVTASGAFNWTGGTLAGAGQFITGPGSLV +>SRR6185312_6080286 +RAEEVEELLARHPAAPPHHRLFHERDVRRRSAERGEAEPQEEQRDLDERALHAGVKRARSAIPSVSSSRATASTIFSKPPCGSAFSLSSKRSCSLASSFSPTSSRNAGKSTVSSRAACGSYMRMNLASASASGLRPASLFMPAAVASLSTSAVTRR +>SRR5215213_10844578 +XMPKTCTRCNSEPVLSARSAAVRAARSASLEPSVAKRTLVGKMLIWCPPRWTLALRLHDASRTYPVRTSENYPSTHFTWVNRGRKGILRTSASVLALVASGTSETASFGKEDTKMYWYNPTTHSSENVAAPSNDSQAIQMLAGTQDSAEFVKEYCQLRRSGTPIEQVLVLVGHEFRLRQPEYQLVLRX +>SRR6266496_2280139 +ELTMQYVLRLFENDVEVSTSSVAITPDAQSYSSVGQTIDDTWRVTDVISQARTEQLRKEQSPPRFYNYDGSVDPINVSGKEHSAQGPFMNLHCLITVVNTTQAPIKVNPVRLVVDGQERTLENAFFRLKDGSRERLKKISLRGNDKEDYELHFMFPDDQCPTSKDGELWVSSDNRPEPITLKVKFRX +>SRR5439155_630595 +RTAAAIVVPPSVASASASGPSDSEPTRSTLSERAGGSAKTGPKSGCVPGLANPLMRTSNASRSGRSKIPTSVATTAVPPAETNFFTFWASAGVIASVAPRMNSTDAVDASGANRSHARGADEQLAIGERRVPADRLARDERGEREKVERVDRLARPTGGERVVRGAEVAGRIGTLRADRLTQRHLGAHALAEAAAERRDDEEDDRRAEDPEKRPHQTEIDARTLEPREEPLDRARDGVEERRRGSRVVNGAQRVAQRRVRTRSLDRRX +>ERR1719277_1000244 +PDRASKAAGLRCAAEVELWEEMVVAGVRQVLQHHFGEVLARAPTTFVAWVALRTVRGDNPVQWVPQEDRLRPVLALHGIHAELASLLEPRVHHVAHAGRKEIGRGASTICPFLDAVQGVDHPGELRAGVLRDEAEEQPEPGHRENVLGDWLGQAVYPSSSPLLGVALIPAQVEVGSERPAQ +>SRR5947207_102588 +DRREGQIPAVLAPRRHVLTCLSNNASQGVLAMSRIPGLRALFVCSALSFMAVAATAQTKVAVLNLQRAVLESDEIQKASAAMEAKFKPRQQEIEKLQRDLQGIQQQLQAGAGKLTQQAEADLTAQGQRKQRDLQRMTDDLQADVTADRNDVLGKSSQKMSEVVKKLAEKRTEEFLALLRKGDYKGAYRLWGCTDEKPCRDYAFKNFMDDWGPQSVRADNPPTITKSRACGSGVIVTVNSSKGDATLWVQQGD +>SRR5207247_709107 +DVLAAHPRLQLSGEHNASLLRDREVHVPGRPPEPERGRPYAVTECAVRAVRAAVRVGAGDERAGENELLLGEVEVEDPVARRRAVAASGQVTSGGRRTDSGNSRRPTLIIPPERRISSSCGDSAAGSYVLPRVSLLSFLVFGSNENASPSCASSTASRLWTTVSPRFSALRRKMSPIAAPHTMNISRPASSATPLRPAGLISRELPMAQRSPATTNVSPRCTRSRKLGLRX +>ERR1700688_3359193 +RRRRRTLERRRLSAARARDARRDGTIGVHRTGRRLRPRSALRRDHSRRVACDDRGRAGLARCARRFRPAQRTPRRALRRARSRHDHLERHPHPRPDPSPRFRGVRKIQGDRQRSQRPARRRLRRDADRATARNRRSDRRRDLERPWRPARRGASLEEPRRRRLRRPGGAPRDPRALQPRRALHSVRPPCERRLHRSREPGERRTCPRDGDRCRARCALVRRRRLPLTARALRRARWRRRGGVFRRAPFRRVRRRRHRVPWRFWGTCSGRRRLSRGRALSREPGARKSRRRRGHSAPHRRRSAARRVAAASAANACPLHRRGSGRGSRIPPTSRASARRLRDCARCPARRRRARGRGRCGAHRSLGNVAGAGSYGRTRRGRADSALRARYLPRRMSELEAIRTEIPGPRSRELTAVLARTETRGVTYVAHNFPMVWDSAQRATVTDVDGTRYLDLTSAFGVAVTGHANPAVARAIAEQAARLPHAMGDVHPSDVKIALLAKLASLTPLDEPRTFLCSSGAESIEFALKTAFLATDKPDLLSFEGAYHGLSYGALEVGGIEKFRAPWRRQLLDRTVFARFPDRRIPSTAARALAEIEAAPPRRSSIGAVVVEPIQGRAGVVIPPDGFFHALQTLCRDRDVFLIVDEIYTGFGRTGTLFACERESVRPDMLCVGKALGGGFPLSATILARRVADAWTPSRGEALHTSTYLGNPMGCAAALANVGEIERLDLPARGRAGEAKIAARLEPLRERPDVVDVRGRGMLWAIEFRDGAAAAATVVRALQNGVITLQSGVRGESLAVTPPLVIDDAQLERALALLCDAVAEKVMTX +>SRR5262249_19266331 +XTLAARQLASRFGGDRGSCDWRHFGRLAVFTNQKKERRLQSGFQPFVRLRSSEGYVYSAANEFLREVEALKREHLSCRQRRESPRLPRETDTPVRAITSFHADLRYGGDLHRADLAWAVHAAARGLSLKKQDSRAPHRLRDRQVLNRVVWRACAVTX +>SRR5512143_347789 +GFTGCRRVRGVECCESILQLRGETVLGSVRQVKATDQRNEIVDLSRHRTRELEREGVDVEGPRARNGIDNSPDAVAHADVAERLVNAWRVGDLVEIPCADVVDKNVVTCSRLRLEGDQVSGDSDVALLAGNGDLRLCAASDGLVIDVGLAAAGRRINRDLAVGVRETVLARCAGECSNGEYAWRGLGRRVDVTARDIRLALLPNDGVAIRTDGGVHVVQAIVGQPGHGSSAQVIDTDFALL +>ERR1739838_676663 +EIVSHFESDTNSSLGQISDNIGFSLGEGGVSCNGGGDQSVVHFLVFSAASSVFRSVFSVTGQTKTSVLGGEIPAILVESSVASVGLVDTVQVLLLRKALPLSRDYCVVGLDGTDSSESPARSTASLVLDSGSFTLRSPVLGCGDISYKGAGEGPVSVGGGVVSEISCLLFDRQVSELVEALPPX +>SRR5918995_363747 +HQPSSFGSSSPAAASPSSASKSTPKRSKVSPCSASTPSPTTRPSSNKPASPSTSTKRRRDGPTASIRRSANSSAPATRATARWASAPPPALSEAMLTVAVRPYPAECTSLPDDPTDLPWSVPHVVELLHPAPARRARRQLSGQLLDNSTSHRASVLDTLLMLPIGMDALDARLIRAMWETARAGVMELTRQLGVRRATVRTRLDKLQQRGIICGFEPDLDLRAMGYEVLAFVSLEIAPGRLQAVAKHLREIPEVLEIHSVTGPADLHCRVVARTNDHLQHIIGCILEAQGINRTTTQIALTEQLRHRVLPLVDLVIDHGEQATTEDPWRGGPPNPPAPTAVRSPGRSA +>SRR3954452_4728668 +DRDDRPHRRVAASDLLDDQAVARVVERADAVLLRDRSAEIAQVPKSPGEVDVEPLRPIAVAGARDDLAVGEVASGLGDQPLLIAELEVHLNPPRRQTLQLSSSSRARTPANASAASRVRGPGASSSTSSIAATGWTSRTVEARNASLAASRSPRANVPSSTWSSRISAARVIDSRMPTSIAGVLRTPSPTQKIEEVGGSRTTPSGRTRTASSAPAARAIRLACMLAPX +>SRR5215813_7369292 +CIDTTSMGVSSAVARVGASVRVLHPQDTPSQGSRFVAQSSSHRIRRHRLFFLWNVTQIELPRCILGERSMGGRPVDTPEDEILIDRMRQGRTDALGVLFDRYARLVFTVARRILRNDAEAEDLTQEVFIEIYKKAGLYDSGKGSVK +>SRR5260221_1576336 +QITLLAVDRTAARNPRHGDELSSSLKLGCARPIRLPHASQHWHAAQGGPGVEHPGLGRRHGDAQDLRGFFHGKFPKLVHLHYFSTAWPKAPDGRTDNLPALTVAVIFFRIRRPVRELPLRPCLFRGARLVHRNFPDSAFLSELSQRGVDGNASQPGGKTRAPIETCEVYKCAQEGVLHCVLRVLAIACDSKRHAENHFRMPFAKYPERGAMPASCGGYQFAFAPSLDAARRVCFVKFGLTCTHQASVHRLLLTPVSTQQLCPAVLRVSFSNPLPDVGGTIFQMHSCCFTACQELLNLPVHQPYILQIQDNQSRAALKAEKGLQFPDMLSLQTTDX +>ERR550514_625570 +ETFKIISVTCTNEWTLPNPFLGAAWVTSPLVGAPNGVRPSDYVFNWDYQQKEYPLISIDTTVNNAIVPNAQYQFEVFINGNLNNPKQVISEKKGSGTFQYQPDVAGTYTFRVYVSDQCKTQIYDMPTAFTVGCGFTPEPQITGSENVAFGVTFDNFEYRVRYDNRKAGFYRVRLSCKESKMTGLPVSFKWRDVCKWNFENSNNLPTNTTKDGEITLQPIQKSGTDG +>SRR5262249_32914110 +XAGVLTMSIAGSVAWQVREGSEISELRGADLELEVNSAYRSGGDRKHESNIVAVRITEMVIHNNLKLLGGADIRVDTLVVHGKRPGGKSDLYQPGTLRFPDVRDEQHLPFGEKGVLIYLGEPRYFLDIFINVSRDNKDAPDLHKLLTGESARNFASX +>SRR5581483_4550651 +TVPSFIAAVAVPEITIPTCSTSQNATPACGPTCSDHLHPGSYVAQPMVIPPTLTISNFPFANKRTSSGFSNRFKITSSMLFPRFAFLLLSFYFCLPHSGHHLQPSSVHLQGRTDAVTRPRRTEEHKEVGQFLRRSEPPDRSFLPGDPVKILSPVGPGPGHSLSCRFLPGSRQDQAGVDAVDTDVVPDQFIGQALX +>SRR6478609_4614806 +SHAMEGERPAYARIAGSDFAALSIEEQELVMKIRHVFGALTVTAITCGMTAGVSIVRAQDHHDPFLSGTSPEAVQQSSPEAVHQSSPEAVEPVVVEQTSPQVETVQKDTPRDPYILKTSPKAPKVKKVKHEKEAYSGLPKGHITIVGCFYRDVDGDGDHAHYMLADAKMGPATAVADQNCTPSGAGQLIRLKDADDVGLTQVASNRWVELYGEMGSPKDADDARKFEVKSFREVPLAQRPRIAILIPPAPAPQAAVETPPAQEVGVTESPKPMATTGETPYERKLPKTASELPLIALLGLFALAGGLVLGLVDRQKVLGRGX +>A0A1W9U6M8_9DELT +MEIKINRDVLLKGVSRVQGILEKRSHMPILSTILLTTKQDNIEISATDLEIGFQNSYPAEIIKPGSITISGKKLLDITRETNSKNIYILEKENNWIYISDNKAHYNLSCLPADEFPILTEPEGIIMIEINSKILTEMINKTIYSITMEDTAFKLSGVFMEIVNKNKEDFLRMVATDGHRLSLIDKKIPKLQEIDIQQGVMIPKKGLIELNKLCLENGNILFGIKQNNLVGKKEEALIVIRLLDTEFPDYKDVILPKKEDKRNIITVNRKLLLESMRRMIIIGGDQYQGVKITIGTDYLEMVSVNPDLGDVEEKIEIKYDGEPIDKKKYTASNIKVLKDLLAVRKRPAMYIGNTSTEGLHHLLYEVVDNSVDEALAGYCDQIDIKILGDNSVIVKDNGRGIPVDIHKTEKLPALEVVMTKLHAGGKFDNKTYKVSGGLHGVGVSVVNALSEYLEVEVYLNGSVYYQTTDFSFDIIRQRMRELAFLNTGLKINIYDDRTHKEKKLFYKGGIVS +>SRR4030081_3248946 +WPPAAKRAPPTSVLSTLSWRFSLASHRRADRRPLWVRGCVKTLEPPRAQCIFGHVGSISHDFVGLNRALANLHGMLFAFSHSLGRERSFERQVGIRSAFGAARPEQAVWRGSALGPCR +>SRR5262245_55954626 +PRAPIRPTRTASTTCRATSGNGCPIGTARITMGGERCAIRRARRSGRCGSCAAGRGSTRTSRCCGAPIVTRSRPTPTRTASDSGSYAADSGSLARADLRRRGAGAGAAAAERRRDGRRGDDPARTGSRVRHRRRRDAREEPARGAAPQRRSDERRAAASRAGAPRVRHPAHDRLRSAAGVRLRAGQTRAARVRCPQRHRSPPRRHRPNRGNPRRGGAVGRDVGERHPLRSEGSRRRRARSAAPGGRRCARPSRCRGLWRRPGRRARAARRRRPRTVDQPAAADGPDDDRRGVGGADAGRTGDDRNPRARDPDCFAAMTDADYQKARRWLIRRDPILADAIKRIGPCRMAERQRKDHLTALIGAIVSQQLSTKAAATIFGRFAALFPDNQITTAAAIDAFDDATLRGVGLSGQKVSYLRDLAARIADGRLNLDELDALPDEQVIERLTAVKGFGRWTAEMFLMFRLHRPDVLPAGDLGIVNAIQRLYRLRKRPDPKRILKMGELWRPYRSVASWYLWQTLRNEPLSTAPRSRPRSPAKSHARX +>S3BF76_9BURK +MNALGVWGQFFSMAILGLVLWAAVSDLLFRRIPNAAVVSIVLVEAAALAAAALGGNGGAALGLLQSGSVWAVGVLIAGFLLYLTGRMGAGDVKLAAVLSFWAGSEALLFLILLSLVGGLMVLGLPILRMIETKTGFWAERLAEAFGRPLECTPIGLLGGEAQKGLPYGLAIAAGFAAVQFGVFSHIF +>SRR6266545_3847418 +SWRLPGRQGRPPPPSTWARSASTSVTRMGPTARCGSAAASPAACPCPRTRVPPATTTAPTPCGSARRTPTATCTSKAPTAWNAGHARPTRSTAPERRQGRLVADPLWMEHQIKFLCPTRLLGRSIPRSAAAVAQALVIPLVIQTIRRVPSGSVWIDEAPNLSGADPSGPTTSTWSTRLRIWRLGLRIPRGVDADRHGPGWRLPRGRGPLPVAAMHHLLERAPVGPLNRREGAVGGDAERDQQRTEPVLGKAQQAPRQLLVMHARMGAADAEIGGGQHDAHRRLAQVELDQVAQAGVVGLRGHQRDRRRRAGDVPGGAPHPGQLSELLPVSADHEIPRLLVAGRRCAPRGLQDPVQVLGRDRSLVVGPHVAPGPDRIPRLHLDLPQTRPERRARRPRPQX +>Q4DQ35_TRYCC +MVIFLAYWRNETTQTGKHANRRKCVQMIIKRWFSRVHERICVFRLCSFLFPFFFLYYFYTCKCNSIATYVMHIYIYIYIYIYIYIYLPFPLFFYLFCISIELVKKRSQMVKANYIRAGRLVRIIRGPRQDRVGVVVDIIDGNRVLVENPADKKMWRHVQNLKNVEPLKFSVELSRNCSTRTLKNVLAEKKILEKYAATKSARRIAAKRAFARSTDFERYQLRVAKRSRAFWTRKVFDENDKKKPVSWHKVALKKLQKNAKKVDSKPAAKKRIEKARAARKAKAAAGKK +>U2C1V5_CLOSY +MGADSMFEILLNSLGDTAVYVVRKDDYRILYFNDIVGEMVPGIRKGDFCRELWTGYKEACIFSGIGSKKPYSAVGFDETFGATVMLTASEIEWGEKKTPAFAITVKPYAMSGTEENGKEEKELLLCAMRLFGEVFLLDINTGRYLVYKSDGLPDTMFEEADFCDFNRLYGENLIHPHDRQVFYDSFTLENIRNRARERQQMISAEVRRKDRSGEYRYCELIGIFYKDREGISEKMMLTYRDTDELAKARIRERQANRRFVRAVNESYDEIYEGELYTDYLRQWKGEKSTPYFRSSPSFSEQIKWAADTIVHPEEKEVFLSRLSPDRLKEDFENGKSEVTISYRRLTPSGSYRWHSLYVRLSEMTTDCIRVMLYLKDIDDVKKEEERKQRELQNALAMAEKANEAKTDFLSRMSHDIRTPMNVIVGMASVARFVLQSEAKETANLQCDEKTGNYAKLLNCLEKIEMSSAFLLSLINDILDMSKIESGKMKIANREMNLKDTIRNIKVMIEAQAEERRQTFLVSVAPEVGEFYYCDSLRLNQILLNLLGNALKYTPEQGEIRLCVTAGKVEAGEQLIWFIISDTGIGMSEEFMARMFDPFEQQDFGGSRIFEGTGLGLSISRKLVELLNGTISAESEPGKGTVFTVKIPMKISDKKQKVRKLGETQHRETDREDSLRNKRVLLVEDNEINREIAVMLLEQTGIRCETAVNGAEGVSSFEKTVPGWYDAILMDIRMPVLNGIESAKKIREMERRDAKTIPIIAMTANAFSEEREEALEAGINDYLTKPIDAEVMYACLRNYMRR +>SRR4029078_11775012 +IAEGAVNLPIGDTAAMRVSGRWNQSGEGWQESLLTGKDHGKKDLWSDRALLLADIGESTELLVNVHGSADNSETPLGRGIGLYDASTGGFCAAVLAGHQDDANCAMEATFYDPQFRYPSVQGDSGRKTLSDPINQFDNDGHGASIRLTSEFDAATLTSITAYERFNYGLVFDYDGSDGEFAHQHAKSQIEAWSQELRLASTTNGPLSPLPGVALATGALRA +>SRR5260370_25801032 +THRLCLARRQIRVHRSNPSQKSGPMRCSEAPAMHPAPPAAFPGSLEAGTERHKLNQVTGFEIKVFFVLQLAVINSDYRREITGTLRPGVIVIVTGGYYVDAFQVGEIDPRFVAMDVFSYAATKAAIQNFVAVIQRQINSLTDYIDAIGVVLVQNPETSDLGF +>SRR3990172_1850163 +VGRRGAAGHIPAVVDGDAVEPGREARVLPEGGERQVGLEEDLLHHILGLLPALAQQPPGQPPDPARVPEDQGLEGVRVPPLAAGDPGRVVLRLGRRTHQPHPPGCGSVRLRGPPLYQEGSKGARLAESSRCLVRRPRVPPPGGGGYIMAGNQGFGADSGVKPREAGGEGGRGWPFGRRWRGRRGRWAAGSFTWWPPRATWPS +>SRR5580700_5373870 +XMPRSQSRLLDGLTPTERWQPQPGLVLSAQLGSLAATGCIVWLLAVRSRPHVHSLPGAVTQSVVVGLVAFVCSGMFMTAFQLATARSLGFDALRTSLPTARTAVWLAPTAILLTRSSPFAVGAALALVIGTTKMLYFQWAEFESVGGPLPGRSNRWLRTSAYGVALAGQTTIVCLWMGSPLLAAALLCVSAAGLTLMCLVADAYRAREPSTLPDSLLRILFTLILGVGLTVGGRIGGFGSSSETSGEPDDRARPELIT +>SRR3954452_18840074 +IARDALRRGYSRNPAHFLLWSEILPFWPKTLDGWFRDAVRRSAVLLASLIAHGRGPHAGGEPAGASRLPLRVELPWGRRGAPRPPRGGCRQAGRLLPRRADLVVPLAQGDPARARRRLPLHRPRLRRLRPLRQAHRPRLVHLRPPRRADGGAAGGIGPARRNRRRPRLGRADRAPLG +>SRR6185437_12615591 +XVHPRAGLSQAPGQVVLSFPLHVLLQAGNPRWPRRPAVLPLHLIVRAVHLPETGRTPSTGEGSEAGEGRAMTTPAEQPVAQPAAPADRLVPSARSISPWTTRQKIARVLWMFVRATLFRWSFHNWYAWRVMLLRLFGAKLGHAVRIRPTVSIEIPWNLEIGADTGIGDHAILYSLX +>SRR5689334_22958838 +LSDPERRADYDEQRFAGIRGAADLPPAAQRAAPPMRAPAIATAVLAFVLSFGVWMSQQPAVPAAKSAVVRPAAHVSPVPMVELEPESERLARLHAQSGVVATAPAPPDPQLEAVADVPAPSPVLPTSRVPDRRLAPAVRVSAHVPPPAPSTA +>SRR5215469_4716775 +PCLSITHDDVYRMPKHLADLERRARPYQACYVRWLASNIATIGGCVAFAAENFPQFAEMRNSARTPVGKRIIAGSSTMGNPMADDEITLETLLTFQLGDMEGGIALVLGYATSAEKLSKREMDTFAIGMTREKAAELGRALVEITDKAPVTRGPRRREHX +>ERR1711865_1142824 +IHPFFACLSHRAIRHFPGLLSSFITPDTRISVAFLGEVQTYIHLLPPGVHLVPDTPCRGFTQPRLVPQVTRAEQYRPVRLPFTLSFLSYLRLVRCTYPIAVHHNSFIPFHPSSPAPATACTPRLYLRPYRPCPAICYPHLLSCLQPLLLFNRYDYPLFVDPKHHFFYLLWLPCALLPLFSTIFILYSGTACQPLHQCRX +>SRR5688572_31128903 +FLVVTFIILFFFFFQAEDGIRDLTVTGVQTCAFRSGCSRQAPPSRSGPVFATRCSTLGLVSPLQWLRRQFRAACMARQRCCLTRSEERRVGKECRSRWSPDHLKKKKKKDMKIKEX +>SRR5436305_2025442 +IRARVEWFVQKCRCDRQGAEERAAERTGPLGQFGNIVEIARAPALLRMESVKRSEQAPAALIGVVVVSMFRGGNQKRASDGVTNLNFEPVIAARQCSDRDLMTASRSRIDDCQMARSSVFEMKNAFDVSGGKRAIEPDFGRPLPPDHAHRLKHSSIASFFDPCDCILYVSIFX +>ERR1700722_19574956 +LQLADQRTGKVVSTSYQDHDIAGYKRPAPALQRHAAASLPRDPTRQRLGKDWRGGGKPLVLFGHHPWFWFGGLGRLGQRPQLHAASLSGPVSVVGQHVTFPHHPGSRQRVGEYAVDQIEHGARGPEGYIEPRFAPWFAGRLDPLAQQLVRMIERFDIRALKRI +>SRR5512141_2661244 +XMGGPTWELFSCAIGNPNDFSALYPSERLAPSLNDSLPGIQITPFERGSEMKRILAAVMAVAFVISVAGFAVAAEKAAAPAAEKAAASAEKAATSAEKAATSAEKSAASAKKSAKAAKSYLLTGTIETLDPAAGTFSVKGRKGNVELKAGEKVKLGDFKVGDKVIVKHADGTASSVKAVKAAKVAKKAAAKAEKSAVAAEKSATAAEKSADAAKKAAPAAAPAMPAEKKX +>B3ZYH5_BACCE +MNIKSVYKCIATTVLLSQIMSPSILHAQEVSDKAESGVVTQPENKRTGLMGYYYNDSNFSELVMMTPEKNGELKIIKEDHGELLPEGKRNIQSIRWIGYIKPSEDGEYIFSTSSDQNIVMQIDGKTVINQSPMENKIELDKDKLYEIRLEYRQDENGKHQNLSDLKLFWSRTNSDKIVIPEENLVLPNFAPGENKTKLIPETHSFDDNSIPDTADLCLDTDDDSIPDYWETNGFTIKGNKFVEWTDDLAKKGYIKYVSNPMTAYTTGDPYTDFEKSAGQMPAAVAKEAHNPLVAAFPAVGVKMEKMIISENKDYTNAEEHAMSSNQSSGTTVGTEVHVGVSENYGITGGVSASFSHSNTTENTISKSNGNTIHLNEADAAFTNLNVRYYNSGTAPIYRVAPTTSFVLGGETIGSFTAQANQIGNDLNPGDTYPNKELHALSLNTMDQFNAQPIKMNRQQLERLRAGAPVKLETPQVAGKYAKVLSNGDISVAGDWAPKLGQIENKTADIILNTGDTVKEEKVAAREYNNPEDKTPELTLADALKLAFGAKEENGKLTFNGHNISEHSVELFYDENTKKEMKKQLEKMSNKNMYDIKLTPKMKIVIKTPTILESGTDSNIDWETTNTNQPGLDDVGYSTANIGYGILKSKLEPNTSYVLSAYFKGTKHEKEIEFGIGSGKGDYAVNQKFELSQGGNWKKVELKFTTGDDVSKFNTVRVKNDRNDETRQVYFDNIAITKLGKAEKKFDGVSEDYIKEAHTFKSVHSDKKNGTNYINSINLNVNKPIKWKYKVKMNGKEVGDLKNISEPDANGVIKINFLDLNNGSGFLSTDHIEVYAVKEGLRPVKIAENHKYNMEAILKFKNAGESGMIEPYGDIRFINNGEVFEIWKDAIENSSREYTQDQPYKKDITFRTFTPITEESNIRFIANVKEEDYLANQDDILAYGENDPKDSKGLNGNIYFTGDVADDSVNIEYKITK +>ERR1719506_2373094 +ANGQAAHAAANYDSYTEAEPPIMASGAGSATYGTGAAYGTGAATYQRANEYTGGAGSLPIEAGAGAGQSWQYTYSSGGASTKYHDSAVSGSPGSTHVVTGSSWTNDRTHRINIDEGSRVIVTVNGRDVEGGAQPVRQAVPNNFPKPPPAQFAAFGGDSIATMRARAERHAKEEAEQILRAEQGRERTEEVRKAEQILRAEAKQNPALIIEEAQRIEAKRHRGRPAAAAQPVEEEEDCPAPPELLTLPGKGCPGNVVTHCLNENKAYATLDEAWQACHTTSGCAYIEKNDLDKMYVLRRESDPDNAGPHVTMMRFM +>SRR5919107_2884606 +SRPTTSLRRFLTVGCKSPETVVSTRSRWEMPLPSPNIKSDGCRYYVCSQHRKRGPCESVRCILGDHLCILSAGQLSQHSPLLRCPYPSCRKLRVLPLPLRSHEKAPQLLGRNPRRTRSAKRVEDQVPFPAGGHDGSPYQAQGLLGGMVAVQLLFLGHRRDRPDGGDLCRGVSAVNEVVVEGVVGPSLASPEQRLVGVGPRKSGQRRDRASTRWSDQTTSPMYSKWSSRDAEERTNALHSLRRNGX +>SRR3990172_5150764 +LRLVNSVSYQGDALRRFSSRCGGLGGGFLVANACDLRPLAAIPLDAISALRRDTPLSLDDNIRSVPPLIGTPRCAWASGVTHEYVAVFMKRSTYASGNAPLRLAGFGRILPRPADRWNNRVSGYRMDDHAVTMDIVAQRAEVFGPADLRGPGPVPPGGEREDGRFHHHPHLRLDQRHSGDGGRELRVPPDPQSGAPEQPVPHVSRRRRVPRRRPEVRPLRVDRDRPLVPAGDRHGATERGGPPRAGPRRVRAVLRGGVRSALMDLWLVRHGEAVPEREDPARPLSPEGARAIRALVESHAGEAGPFDLVAASGKKRAIQTAAIWAEAAGYPAVKIAETAALAPNATPEAFLAFLEDRGEEGRILCVGPLPSIAAIASFFLSDGDPVRLAFSPGTVCRIRVEATRRGAGELLLFVX +>SRR2546426_2734100 +GRASTAPDRARGRRRWKRRRPRRSAGSIAWSARRRYEIRKEANLTDANAIIERLGAVFVESFHVEVPSSDTDLLETGILDSFQFVELLFELEQRFGFRIKIESIDLDDLRTLSRIARLVAANGEAAQPVAARSSSDTAAYIVRLAGRSSIAKNQSCHGHAAYLCRGRYARR +>ERR1700722_10537092 +LQPAAGKRRAQITRSPVLDKRHLALGHAARSVAVDIEYSHALAAQRKCDRQRQPDVTASPNHAQVKAHRKLLDLKSIRTLLPSLRRPLSNHEHLFAQKPLRRPHAKVQAYHPTGGRKSRLEAVGKELRNQQLDFEPVLHQSFTQAQMGEGCYVIVKVPVACAEIPDVRLEHQQSSAGTKPLPGLRE +>SRR6266511_848920 +FGAEPAALVRDALGARRQAPLPTPAAPSPRLALAVMAELTAERATFTRREVVQAVARCLDAADAATIRERAKELADAVLADLEVVCLHAPERVEVPAALRRRDGWSVWDAPQAIRYTTREMLALEGRILHTAEMGRAPIAPAGVVELQTLERAVADEARPLGTDQHDALRAVTSRGRRIEVVVGPAGAGKTAMVRVAARAWHATGCEVIGLAHTAVAADVLRTEADVGAETVAKFLDWHARGEVPAGWRLTPRTVLVVDEAGMLSTRDLDRLRELVARRVGTKLVLVGDDRQLGAVRGPGGMFAALAHELGAVELRDTHRYQHSWEAHALGELRRGEGSWLEDFAAHGRVHGGTDTSARNECFARWWRAHQARRDAVMLAQDHATAGELAAKAHATRVLAGDAQPGGLRVRTETGTQTVGVEDLVETRRNDRRLTYGPAPDQWVRNHDRWHVRAIDQHRGTLEVEHARHHARLRLP +>SRR5207249_3827138 +KMVVLNSIVSVLSAILALAKSGRPSPLRSTATTDPGWWPTAGEKARAKPPLPLLVSTERVFASGFALTKSILPSPLTSAAATHQGKLVPLGKEENIKPPLPLLVRTTSPNDAQTKSCFPSPLTSATAIETVVLLSNCEAKTKPPLPPLVNTETVGLSS +>SRR3546814_18573071 +ILSLHDTLPFLGSSKVAVVWPAWGAKAGTQGWLENARVRRYDEEQHALQAASAGHGLGLASNVLVAEAVGRGELVEYRPEVRLAGARYTVVCVPGRERQAAVRVFSEWLLGRSIAEAEDRKSTRLNSSHX +>SRR5436190_12017692 +PTGVQDILQRVLDDGADCQAETQVAKTLEAVAAKPFGLDSTRHGKREWQIEDDEQQERRQGKIAGRIREDGKAADQKNSGEQEYGRKIEARLPLDKQPGGQTIDRHQAEAHGKIRQHLYPEH +>SRR5438309_4153540 +CWTRRMQSFPHVRKSFSKTFIPPRGNDAQLRRQRGRRQFKTNLIIPLSSCPVRDGIRRLRARDLDYSLRNQGTGDAGPEKILSFVSRARLKYGKNKITSEFFAQISMMHFIVPAGRAFSSRPSSSSSCPIIGAEGDNLCVVVVPKPAKNYRSAEPAGIRENNLHLRTRRRQSPKLISTSRAVCTISPVGGTSRKRLTASAIGTWR +>SRR5678815_2528847 +TRHLCACRPSSRMDDMTTCPRTRCGTASSMRSLTPRSTSSNEAVTRRSSSSRSDLSRWSVDGWRVPAHLGDNEPPASSESPLSASSPERLAEWISASPEARSRALAKCLETITLKDPRIHAWVQINPQSATETGPLSGIPFGAKDIIDTRGLVTEYGSAIYRGRVGVDDADIIAELKDRGAILIGKTQTTAFAYMTPGPTRNPRNVEHTPGGSSSGSAAAVAAGMVPLALGTQTKGSVLRLSLIH +>SRR4051794_18478678 +RRDERRADPDFGRVHRRRPLVRLEGRRICVGAGRLRPADRSEPGRAVPDRAGARGDRGRRPDALQGGLAVRAGPAVRRGGEHGEAPRLRGVVGGGERVPRHARRLRLRRGVRRRAQVPRDTALLGRARLEQPDPRVPRPARARHAALVLMRYTRVFTETDGETRFEELETPGETIQAVESDLVGTVSVTLAVKGIYFREVVEESSPVPHTAPYPLFIIGLRGTFSIEISSGETREFPPGSVVLVEDTTGKGHTTRRVGDEPRATLMAPLAX +>SRR5512138_1963781 +GAPTRDAVTRTTSYCVRCPPSRGACSHSAISLCGICTRRRDAMAKRRDNKEDLPEQVAGNGLLHRRVFLQSGAAMAGAAAALGAGAAQAQSIGAGSPPSMLKPGAPFSAYGVPSHWRNNITRIVTQNPPPGREGAGSSRTPLQMLEGTITPAGLHYERHHNGVPDIDPDKHELMIHGMVRQPLVFNLNSLLRYPMETRVHFVECAGNSGGIAGAAEPQQANAGVLHGLLSCSEWTGVKLSV +>SRR4051812_18625933 +GTPEAVVLALQGGTEVLAFRTGQEPLLATARIHPGEPLAFAYRNGGRWPWLMVFARDPRGAVSWFHPQWTDAAQDPKAVPLEVEPGLHELTTAVAHPFAPGPLALCAMVLPAPLSVRQVEAALATGSEAPAGGAAALRDPGGVPLGPPRFRRRFCWWARPGPP +>SRR5215216_1715194 +ILYEAATSRKPFAGDSVIDSLHKIVYMQAPPIRESNPNAPAELQRIVRKCLAKDPADRYQSIRDVAIDLRDLLREYDSQQSISASFPPAPPSGSYTRDPSTGSHSQPHMTDSHSQIAPTMMHPQSTITGPEEALSSGPVSGATSAPQRESNRR +>ERR1711871_72301 +NSVQSLRSPCASIDDNKSIALDPLRVSSFKPRRSIIDMVTFEESDEDDEIAGGPADEAPIWGDDRPPSVQPRRLSVRERFRNSVSTPLIGYWRRNAVTFAVKLVRHPRFDHFVLLLIVTSSVCLALESPRTANDAGLMNALRVLDVIFTMLFTLEVILKSIAMGFVTGLKPYLSNNWNRLDFFVVLTSWINLIFTWSGMGGEFGYVRALRMLRCLRPLRMISRYPGMKKVVGALLLSFWPMINVIMVLMLVWLIFAIVGVQLFGGTMYHCLPSVESCILNGTHCVTSRTQCLSRGGAWTRHDSNFDDVLNSIMVLFTVSSLEGWPEIMWNAIDGTGSDYASLYFIFFILLGVFFFLNLFVLTIFRNFMYLKQTMDGVGFLTPEQQNWVDSQKRIMASNAVRRLKPPRSVWRLTAWRVVRYRWFEPFILSMIAINVMLMATVGVKVDDWEEILDDLNTFFVVVYTLEMLLKIVALHFSQYISDRWNQLDFALVVLSLADLAIGSIDGGAVLTVRILRLTRLIRVLRMVKRAEGLRRIFLTIYLALPSLVNVGSLLLLLFFIFAVLGVNLFGEVQFDVFVNDHANFRDVLVSALTLFRCTTGEGWQDIMYELRRTGPSPYTATAFFVVFLTLASYMLINLFVMVLIDTFDGVTTRASGMRDEHMSDFKECWGVLDPNASEMVHAYQVEALLRMLLPPLGVGPHEPLHTVLEVVDQLQLIAYDGKIEYHKTFLAILNVSFGDVMEAKTKNHAMVKADNDGLKRRATHNFIHGDKSGGIGSKLRVMTRRLSSEFGLLKGGMMNELALLKARPTSVKDEVAAFRLQTWARAITGNRKWLSLVQQAKANSPKRMPSTNLAAVFLAPVPDTVLLPPVQQSSPISDKLHSPHKLPPMRTKRIESEPSVQPVTGSTRQQPLRKPARAGSLPTSPSATDVVIDLDAVLHDFQKQGINLSTGGSTQSEESPVDIEHAMAMARLTGGSVX +>SRR6266567_3171955 +TQPLLIGALSLSSTFRLGLRDLADLQKVAVRIAEEAADLTTPVDRRRQEDGPTGFERLIRCLAVWHTQRQLMADGIRIGRRGKRDGRLVPGGPTTSHQQQPVPLKREDAGRAPIVTVDRGSQHVSIELPRAVKFTDHQQVGEGNPFRGEASVRHASAPSVVRAALATKRHAASLWMISQVCYPSNVYGKDRRLKRSSFLHRTVYPTTNHILESSAFYPADDSKEKERHDKMSMKERTITEDQPGEKMADHEDVLAQAQPFGRMGRPEAIALLLHALSPRMKLASX +>SRR5580704_9526292 +XMASHTGISSANRRIESDFPSVFGWECCKRAKPATDRMQAATLSAWVRMRFAFPLRLAMNLALLLGAALHCFGQRELFHEYGSSDGLANLNVKCLFQDRVGFLWVGTDNGLFRYDGSTFRGYGHADGLTNTEILSLAESPNGTLWVGTNSGVAQASGERFVSVDGSEEGATR +>SRR5215469_13096766 +TGFSALLSNGTFDFLYGRNPSVPIAQIDTGDSATSQLVIDPSSNVRGIVEVSSSAANPFLLDNYTDYDAYGNPISGSGGSVNAGGLTVDGKSGDADSASSYGFGGGYEDATSLVYLINRYLEPAIGAFASLDPALRTTGAPFAYATDSPPNRVDPHGLNTGGVCVGASAVDSITLGLLQFSTVFGQACLAETVNTPKTNNDVGFLLVSGVGKKGWGF +>ERR1719424_287230 +WLKKAALSGAAIYIVAMAILGRWQGAVVAVAAFVLPLSAHSNAAAATAAEARLHLRGGEGVMAAGEAQGPMDVTLKSSTKPPPPPVPNPLGYGDLRAGGLGVLPTPTPMPPPPPPDPPIPPLGLPNMEEIGMDKLWEMDMPKGPVMVTGPSTTRAIGSTGVRPRRKRKRMTQPSTSLLVHMQKCLRRMKLLRRTGENDCVRPSCRSELISLHRLGRPGHERLLC +>SRR3954454_10920512 +VSMIAMRPTWACAAVAGLVLPLLLAACSSDAAAAAAKEGCELVMSGNGIDESQLDALSTRAQNVTQAAGMLADAAAENPDYAELSGTAAAAAADLAAQLQFAEVNGFDPQGWSAEVLADYQREFPATRDDPYARLTSACAAQVTGX +>SRR5947199_9062679 +RKKPVTWAFAASGCSRSAPNVVTMAPTSLCERDWSHRAENDKPAAHAVGVHPAAVLPGPSRRPGGDRRAARRRAVLRAVPAVLRPRHRPAVDPHRDLPADDVPEVPLPARLRTAVPGGGRLHRLAALLPCA +>SRR3989338_3014829 +RRFGQAEGSSMILPPGQCIKSAIDFATLDFFVLLQELTKKSFTGYLTMMIRGVGGLEEGTLVYDGGKIVACTYEYLKYDNLLLGSDAFLRIVNASTAKKGIVDLYQLSSDQIKLVIAFNEKMVFVPNEKDLRNIKVTEFSPFLEDQIKEKVKTDRTEILKKLKMGEVANSGDGGKPDANADQPAETDSDM +>RhiMetStandDraft_4_1073278.scaffolds.fasta_scaffold4497251_1 +MKIPLTFAFLIIPCFSCSAEITGYWNFNGSLKATIGENLEWAWEQGDATFGTTETFEIPGIQGNSANVLKIPDSDEFSDFSGIEVWIGDGLDEDSWLHNEYSIIVDILYPETSSAEIRAIVSNAPVEQASIIINGEGKIGGTSFHGEILANTWYRVGIVVSHASKKIMYYLDGQKVGHESIGGLVDGEGEHSLWDFFYLFTTSGLSKGGYISSLQFHNEALSDTVINDLGGTTKLDEPEDITLPGDEVMPTSDNSPGGERAPNAIDDNPSTKYLNFDKVDTGLTITTGGGVVTGLGLTSANDAPDRDPANFILSGSNDDGATFTEIASGEIPEFLERFERQTVSFDNDVAYTTYKLIFPEVVNPDGANSMQIAEIELLAGAPEAGGDEPDDNQEHHIDDMVLAPFGFRFGFSINTEEGESYTVEATGDLLQWNKIETINGTGSSVQFTDTRNEVFQYQYYRVRMAEX +>SRR4051812_32645189 +TFNGSSTPQTFTITPTATGTITLTPTNSGGLTNPSPRTYLVTLQTATAYTVTGPTTGIVNTASTAFTVTPNGLFTGSITITPTPGFGLTPIVLNWNNTNAAESFTITPTAVGTVTLTPTNSDSLANPTAPTYVVTLPAATSYSLTGP +>SRR5690625_3194486 +XMTMPQIVPTTSKNAMALIAGGGISMTSQEIAELVEKRHDNVKRTIETLAYQGVISRPQIEDGIKSANGVVPRHYRFTGEQGKRDSIIVVAQLSPEFTARLVDRWQELERIHSGPALPNFSNPAEAARAWAEQYEARIAAERTKAEIGSRREATAMATASAATRKAKRLEAELDQSMQYASVKRMEMLYHGQKFNWRHLKSTGTEMGIPSIDIFDANYGTVKAYHADVWREAYALDINQTEVAX +>SRR6267142_3947303 +TQGKLEKPASEERSLHVITADRDYTEQEIAGNQSHESGYDQERDRTNLLKHPEQHREYEVQLDEQAEIPPCSIQIVENGFGRVKTIAGQAEQEAVVDRFTGPRKWRDEIYDVRSPVHRIQPQQPIPVPSGPSRWRINEVRERVGQAESAEQQKYADGMIPTLDCEYVDALEPALQHRENAVRX +>ERR1700761_8280655 +RYVRTAACQSRSCASARRSKSEASLRRRDEQFLCIVRRSQTIRAAGEIAPGQIGRRDVPCVGDPSVASERHDLGWCEVTEERRAAGTRSLLRHLKPGADLGVRQLQREQERHGERRSGGKRGDFAERACVRLLAEVHAHAGGVYDGWLAVIKAGSHELVAP +>SRR4029078_20332 +SAPRGWCCACSCWLWSWSWSSVMSAPGEGLAERVGFEPTDLSVSGFQDRRNRPLCHLSAGDSTAGGSESRCRCRRRARLPEQALEVEDRGVARRDEHDLDLVAQLLDVLVLEDLVRQRRRARLVGRGLGGRERDVRVGLALSLGDDLLGLDLPLGQDLLL +>SRR2546423_8221276 +LRFNGVLKALYAPAAADCKAAAGGDSVRVFVHLSVIDLDIEKLSTDRSWWARLLPGDRFAKWVVNHVLSFAGAYIERHDARALSVWEKGGEKGLPLVPIGFPLCWGKTTDCGYVAKKSAPPGFKTATVALGKLGSITFASAGTAAPYLSASSRRFLC +>GraSoiStandDraft_11_1057310.scaffolds.fasta_scaffold1002834_1 +MSSLDDELAEIESQTAYGVSAADYAQVTSNKRASPISTYRLASSSPTATNSPTSLNGGGGAGTATTSSGVAKVKASQLKSKSRGRRGSGFKPDDPAGEGGGAGSGAAGTNGAGGGDSAPVTKLPMSAYINPNMTPQQQAALQAMLERNPGLAKYAPPGAFSPLPGATPATQTTGGRGPPTSHRMGDMAPPPSIRMGGAAMPPSMKMGEPISRGADLTAGGQGQRGADLLVGWGQDLGEEEESDEDVYKPPVSKKMGQSAPPPTTRPGGAVSPRDAIGGQPLNPPELHESTQESLKNPTKPGADKEDDEEGGITYRPTVDAMARGGEAERIMRKQNEMYDLQMPAHRTYVGGFAAAAYETAREYHYIQKAEKAAEDNMVNKARIRDKRPPPSIX +>ERR1039458_81816 +FAQVLVGGGNDAQVELDIFEAAETAEALIFEHAQELGLEHERDLADFVQEKGAFVGQFEDAALLLAGIREGAFFVAEQFAFEQGFRDGGAVDGDERFGLADALVVEGFGDEVLAGAVFAFEQDGGGFAGGHAAHEVERFAHCGRDGFDFEFLRGGLFGDVLGGGHRAFQAAFVIEHLGGAHDDQALHAVIGVQADGRMRRGGRLIETDEDAATGFADTAAKDVLAVAADHVLGGHTEEVFSSAVNSGYGEIRRIQDQRPDAADHHHDGEGRSEAGLGDDGHAGPSPEHCRLHLDRQFGHRRSRVHGPKEWAAAAPGGREPVGGGPPGGLTLGSFEAHPSLVNVRVTNRQLPSTFTRVSAYLPEWVT +>ERR1719162_2616429 +GRELEQARQRCCDPHCGEGGHCPCAKDSPNPSAQPSAGDTDGSARADPGSCQERSTRSANSGASADSGACSSANLRQARWSMQFEVIDLTGAYCGPARGFEVVCVLPFCPKTKCKA +>SRR6266571_5669770 +PTSSTAPRPTSATPTSRAPASTPSTTSTGRGSGSSSTRPPRFPDYDWGARSRNGPPIRLERSEWLDDAGYPPLHRPAAAADHGDRAHRLLDRLHRHPPAARERLPQRAQPQPLGGAGPGPPLRPRPALARPVPELADGRAARGPRRVAGQPRRQDHATVAARS +>ERR1700722_2864867 +VLERVARALEPLDAPLEQRDRRARIADRAVGASEALRELGLLDGVEPAGLDRLAEQRDRLRVVAFPEREAAEACERLGACGPGLLVRRERPFVEAPCGLGIVEAQRDVGVDERGVVLRAEEPGGEEVGADREPRSQLTQQLDRRDALAELEPGDVGGRACLAGELALAQPGALAGLPQALSDRGRVVDMLCLLFRHALY +>SRR5437879_7003822 +SKREWPGGSVERLISAGEDLSHEMAPAAQKDVCHLLLGLDNRAQDSRQCWVQRDDLLELVEHDDHATLALHRELLRDREQLLDCQVLILWQRQRTELDSWSAVLANGELGLEWKGPKQVKGLRPCTGHRTAQPTVERGAELVDKALLAGRAEQVCVGDEHLPVLELLACVQRDRCLAVAPRX +>SRR5918993_323855 +APASSRPCGYWDANAACSAPGRRQEDAAPSCLERLTKAHGSTVLTKRRLSGKLFQLQAARPHRLEAKDIALSRRKPGFESRWGHSRKPASPGESLLTRGDRIGLVWWSGGAAKTISVQRSTSDVAKSDPQRWSIPTKKPIAQNSHPIRCSGRREAIRGPTVEKATVIAVACAQYWX +>ETNmetMinimDraft_11_1059920.scaffolds.fasta_scaffold246889_1 +MSIKTINGTKPNINPDYIAPATDNFWDKLNAAAAFTVGGSVINNIAPNDYQIQNVDYVLSNLPDREQDENFFDDRWNRKKRGLIADIIPSINEYRKQNDLEELNYKAYRYLTDSDTVSEFEKRYNELDKLAFANRTMARNPASVLGLTVGLSMVEPWNLFAGPYALVGQATAGKAALRAGAATAAIAATEEAILYRNDPHRTPGMSLLNIGAAGVIGSTIGGIVGARKSNQKALIKDISARMKSIDDEQHVVLDVDNFYTGSSPDTINLNLASFEDILEATKSIPGVGKKTAQLIVKLRNSKPNKVFDSYADLLDDPDLTKAQKKQLEIALGHCTSPCRFHVNGMPYGGDEATIIGSYGLDKVAAITSPLARLLQSEFPEIRREAVSLLNTPFMLSDNLQGVATKKSLEEIIDGNRIHYTRLIDSLENNYFNYLNIKTAPNGSVRKHIAKTRAGRILRTPSNVVRNGLRGNFSKMGTPAGKMSFEEFKLAAVKHRTGAVVSLDKNVIAASKSIDNLFDSNADAVKKLMKSIYRGKEFTWIDSEPYTHRLWNKAVISSNKEGFISFLHEQLIKKYGSKEAVEEAIGDGMQHIDASIRRSVDKIVMSPEERIDLSNIFEPLKRGATHNRFWNFVDDSDLYNTDWAVHDIEAIANSYIMGPLADVSFYNTYKTLNPETVTLRIRKAAIDNARMRYRQEGIQLDDDVVLFEKHMESLDNSLSLLESMLKRVRGSYVDVWSPVPGGTIQGVLDNIKRYNNIRLGGAFGLRSAADVGRTVMFLGLKKAYGPLFESYIKRNRKAMMMYDQASAELAAINVGNEINSMSLVSAITNTNFNTPYSDKFTQLMSKANSSMFVFNGLVLWNQSMKRNAGIGVMNEIITSAKAATLGKLDSKKASNLAKLGLEREDLYEIAKEFKAHGASYRGVHLMNFENWNADSTIADKLARAVKKEVDTIIVTPGIGDTPLLMENSFVSMMMQYRSFPMAAMLRQTIPLAQNMNRNALSGLLISVVTGMAARQYINFANDKDGPDDLDELLYQGLEDTGTLSTIGEFANYGQMIYNRNPFFLGPTVTGAGDMYKVGSSLISGEEMNQYEINAASRLVPYDGLKKLVTAIVPEIGEX +>ERR1711988_1839548 +KSAEKQKIAARVKRRVDEKVAEAKESFQKKADKEIAKDRADEAEEVSELKEKAKAGNVGKKVKDVNDHLEAKASDKDKIDAALKSKTAANVTQVYVKANSTLHQQEEQQKTDVSQIDSQIKDLEAKKGKSQDPVEQHKIDSQIKELHAKGGNMPADYFHKTGPASK +>SRR6266542_965261 +NNRIFLPYKPKNGLFHSDFSVHSITSTKEISIALAKKAQDDIVSYKNMEEDLKWIVHTKCKTHGSSCGGSLSQKITSGIFTINEKKVEKFAENYFSYLDEEPREILKSSLISLFDTEGYSWTHKYIDISCEESDVNKSITGDFFFMYAEEGSGEKHKVFIGLAQLTKRPATNYYFLKDYYKGNEDRVEQALKHMLYKDVKSKGLITNX +>SRR4051812_43011536 +LNEFKSARDSVYHQMVTPERPLPERAAAMGASLDEYFSYRGLALSCGFSLAGLEKLDRMESWRTGARLTGGHQPQILRDIFGNPFRPVSFDTAWRTPSVLAVAQVIYEERRFGELPILADALEEAGAVDEQLLAHFRQQGQVHVRGCWALDLVLERRX +>ERR1719272_2699062 +RRHAGGCWVVWIYAARMLHEVVKERVHLLLDGGRLVNGHVALGIFGERDAPRPRHTIFFAEVPKNGALYRHSPPRLNHARRGAGERLEHIHEVIAAERVRLDGGERHRLRVVDQVHVLHNHVLAPNLAGAKEAPHLDHEAAAQDVQLAHGQPLLGNEAAHHELLCELCDEVRAALDLLDVPEEPDVVKPLLVGHHRDGALEX +>SRR4051812_6490251 +EGGIDLSDTGWGTPNQLAGAAPNTLSGGGGDASTDAAPGDPLGVPPPTEADSNAEPQPPTAPARAAKKRLNWRSGFVQLAVIGAIAGGALVFRDRLTGNATDLRVGDCFDEPAGVVTEVKDVQHHPCIEPHDGEVFFVGKHPDSGSFPGRPALEAWAGEQCVPAFATYVGQAYDVNRELDFAGFVPVQDGWNSGDHEVVCYIVRVDHAKLTKSVKAAGX +>SRR5690242_7610662 +LNHWNYPDTEFTAQYTQQTRHRIGPYTEQPFHYCFLLGPTNSCGVLLDEPRQNKKIADFVFLATATDALDKLHGELVDQEIPLTGLDGVGCPTHYLSFGLNTIEFPLLAVQHVLSMHMARRILESWTAEQDYQRLGLPREAEEMFRVAEVGAR +>SRR5207248_4090244 +FSCLCILYLFHNPPPPDIYTLSLHDALPISFRTIYRPSENISHTVGVIADIVTLCDASDDFVSDAMVSEFTPIRNSRHSVGQRRDVAVGNEKSADVLLNCLRESTNRCCNDRHTSDDGLESDESKRLCPERWRNECPGX +>SRR5260370_35461453 +GGAGWEERRGQLGGGGAEVGGPVTRVREQQRRRGPTPYLDAGLAAFRQDSTAHARAGQRTMAQPLLNPLSERERDVLQLLARGDSNPEIAEVLVLSVDTVKRHVYNIFSKLGVKNRVQAVTRARALGLLSEETCFLFGLVVSTASFLTNGSVMRNNGTLAAAWARAQALPIEGSFTITFFYAIASTKYCDWIKMALX +>SRR5438128_2108134 +RRYPVPAAQRAIPAIRRPLSAIRRSQYATLSFQSCGAGPQVRKEFHRTFATVPFVQPTVFRTRIEQVWGAWEKLADNDLRQRVAALREERRRLKDKQTDLETRGQTLNAADQRRLDESNFELDVSDFEAELRDYERQPWLNVQDPVLRNRQQLAHYYRVVGQFV +>SRR5450755_1345668 +GTRCLGGRLEQHDSFGHLTAQITLAACQLALEFVAPAGEGVGPRLDRVLPAPGPVELDLGLPAHPVEVGVDWPQLGLAPLPLPGSAVADNRADDLVPVPEHVGGNRDGVPDAPLGRKSPTVDGRGGVLDHDPLRRPARAAVLRGSPSGELRADGACGHHCESIQNRRSGKHPGVKTFPRSSGIQLHITSLPGARLGPEAYRFLDWLASAGQSWWQVLPLGPPDRHRSPYKSSSAFAAWRGLLAQPRARVSASEIAEFRERQRFWIGDWERFSGAGAVADQVRFEREWTALRRYGAERGVRLMGDVAIYVSPGSADHVAHPELFQRGFVAGAPPDAYAVEGQLWGNPLYYWPALRRSRYRWWVERLRRTLECFDLARIDHFRGFTAYWAIPDGAANAIGGSWRRGPGRAPFDAAVRELGRSLPLVAEDLGVITPAVHRLRDSLHLPGMAVLQFGLDPEERRSPHRLENQVERQVVYMGTHDQDTARGWYESLAPARRAAVDSQLQRHGVAERQPWWALTRLALSSPARLAIAQAQDVLGLGSAARMNDPSRAGGNWRWQMEPGALTPALARRLRELTGAADRRDGRSPGQAWSERTSTELPAPVGIGRVVAQTSPPRRLELDQRRWSRRRGQAVALERRQRSLRDRDLAQRRRMHAISHHQVARAQLAQIHDQPTELVRDALDRITQLVHLGPGAGTAELQRRREGQQPVAALAQKSRGGAEARLESGYVPLGRPNVVDSDVQASKLVTCARVGGAPLERGDLGPHDIAYVCAVDRVSGKRQSERARHPQCPRLKRHAPLQLAPAVGDRIAEREQAEAASVVGIFVGGHGRRAX +>SRR4030095_10399445 +SALSAPVTTQHRGSNSAARVSCLVTRHHDVCGRRSCVHNPRAALISVIRHSQSLRSRARHRNGGVRTSLSLTRSGQVVEDGSELRFGPLAGFLCGFKGGTTFHRIGNRFDLQALSDAFEVGNAGAFHGKRLPARRHWTVVTHKPVRALFQGVVCKITLPFDDRCAFLHLRRWSSEQGFFNLGRILRLSEGTERKCHHNNQGHESHGMTSTRSSIRFNPPIPRLISCFEISAVVNSPEMRNVLLILLLLLLASIAALPQTAGDPTTEERLRPPRAGDWLSYRRTDDVFGFSPLTQINRANVKNLRAVWSYPVQDDSRWVPTPIVANGIMYVAEGKGRVLAFDVPTGEIKWIHTRSYPEDIRASQAYLRARGVAVYDDKLYWGTAESYLVALDARTGKQVWQVKTADYKKGVGHAHPPMIVDGKVI +>SRR5256885_12855722 +RSSSSNSLILYIYSTASLFFFFFLMIRRPPRSTLFPYTTLFRSLGLRRGGDQDRGDLAGGRALVGYERRGIAAHRDDPQEHRWRSEEHTSELQSPCNLVCRLLLEKKKKNNTMLDGHTSRTTVCCH +>SRR5262245_11139375 +ECIRLLNYPAVECSRQAVSTGKHIERTQRFQLASKVRELSICFLDRYANCPAKASVEFVEARLPVTHLVERRTECAPFDNCFKPLLGHFDSPRHPLAHSTLAIAKERQQLGTIGGQISHRMAWRQGPVVGDHVGDRKVGLVADSADYRNARGKNGVGDDLLVERPEVFEAPAAAANDHGVEPKSRSQLQPIQAMNGVGNFRSRAFALHSYWDDQDAGDGPASAQX +>ERR1711871_676384 +VHGGFSEIAKVPHHPEHTATTSAVPLVTETQLPLPQTIFVVDPVVVRRAEEDKSTEEEKDVFLSDADQKEAADAIRKWMKMLRKNRRAGRHKRLRELERMRRMRLQRLKAARLQMKRKMQADFGGYDPGLEKRSSQEKDEAMTP +>SRR6266852_8977469 +KRSQVKFKDHKEKLHIIFFFSSRRRHTRCYRDWSSDVCSSDLGAWLRRRRRHHRRAGVAKRLLQKDQGVRVRSEERRVGKECRSRWSPHQSKKKEAVSGTLRVQSVHESCYRYGSASRCLL +>SRR5262249_17805584 +TGPGTPRATGAALPGAGPPHPDAARGPGRGGPGLERLPAPCACVPGAADNAGHGGGAHGPWLDEARPAVVAGAAISFGTTEAAWASFTGAAASDCTVVRTVTTVHCGATHCFFNTAFPDLTSQRPRCDIYGPAHDVKGVSRRGTRVRTDAVIYPTSQ +>SRR5262249_30216735 +LRNGSTRNIALLTLLIAEAGAFAASGATGCSSGETTSSAEPDASPSVPPPPPLENGQTAAPHTPTAHSPRTPTHDPATDAGVTPGKANVVFVLADDFSMNLLDYMPHVQDMMKNGLTFSHYYVTDSLCCPSRTSIFTGKFPHESHVYTNGGDAGGFATF +>SRR6266540_3007965 +ASDGIHRNIRRMRGAGANTSLKTHCMRHPGSRPPAYLLLYSLKYRLFKRTGFRELFTNTKQMLIGADEDSSVGNRGRGQATFIQQVFLQQSELSPGFQHKGFPGFVQKEDFPITPNGGCGKNTSNPFLPDHFARIGIRANYNAVFSSHVNELSVTKKRRDIRSTGGDAPCYVGLGDVSLPSRSNRHVGTTAISSACVEHSVDINRHGNRHWAE +>ERR1712159_79709 +PVTKRPTANYSQTCFTPQMSSATWEINYEPIQGANCMWMIMCTCLTGFVIGHWVMTYVKGGLNDFRNQLLCGFPISFVNTALLDDPESVPKWPVVTWKKALEKFYLFVVVIIVIFGEAALPTHQVFPEWLYVDIWCTGGAQIFWVILPRSAFLGFMEHMHHACEITLPYTHGAVWFTVFLTVLGAGIASTINTSFSGEYNRDLEYW +>SRR5215468_965392 +NDPLILAALRQHYQRYARFLTGLIQGAQRAGQVRKDVMAAGMAWQLIHSAIGFAFIKPLQIPGHATPAAVEQAIGLLLEQLSSLKPALPTNGRVAVRRARPPRRTIHHKPARRSKX +>GraSoiStandDraft_49_1057285.scaffolds.fasta_scaffold1147020_1 +MTKKWKLSLLRILLLASPVYAASVAGGATLDIDTGDPLSCPPSNSFWWSNERGSAFYSYCTDPRDEGACDGKGQNGETTGNASTGCCGASAEKGKEECDTCRDPEAGGGSGTNGEDPADSSTEAGRKIDKDQSCQDCPEAGMPLWSVEEPLLSVRLVDVPMWYKPAFGPKMALKLHYKSLEGSFGHADTRQANVFGFGPGWSTPWRSYIRAKAGSSPAEVWVFDGVGNVRSYFVGSPGGNAPYYHKKTGAFVETDTVGYVLTHNNGAKDFYAEEVENNSNGAGNGEKIYFLSRREDAVGRGLTFNYSTTTSGGFDQMRLANIVDAAGLSTTFTYTNVGPMNSLIHKVTNPHGFAAMMLYDANGRLETIVDTISLTSKFVYDGTDRITSVKTPYGTNRFEYVSLSDTNCLAVRVIEKEVRKHLFVFGDLPVDPWPNVADVITSLNNYMDMATNVLATTDFFYKLLDDLKGRNPAAFTNHPSARCSAYWGPLQYQNLTNTIDSSLNNSTFAINSVTTNSYNLAHVTRWRAAWGGFISNIKSFERLPGAAINGSEVGPFVFYAYDMGATHEAGTKEGFDNLPAQIFRETMLTDPTDSNLRVWDATQIEYYGLGTVRPGYVKKKMVLERNDFPEPALGIPQFCFRIHRPIRPLTGCSGSGCNRYASGVIQDENEFTCMGVSSYSTNWLASLSGTDGRYIEIIAFPWDPSTGAGIGGPGGAPIHYEYHGTNKELTKVTYEGIVEKIRAFNAAGQLQSEMFQQTTGGVTVTLWTNSWTYLNGFVRTNINPRGLAISYDTDPMGRVTKIGFPDSTYVSNRYDRLDLVETIDRNGFSTRYVYDAFRKLLYTTNAMTNVVSSSYCNCGSLSSVTDGNGQVTSYTYDNRGRKTQVTFPGGSWVATKFDAWSHPTNLTTSGGIEQGILYNLKGQVREKWLKSG +>ERR1044072_1391978 +RNWCCSALAVPKHSQHPKEAAELAAWLTAPEQQIKAFQKTGNFPSQVEALSSPELLGTTNDYFGDVKTGELFAAQAQKVGQAQYKGPGDGQIQENATSPALQAVEQGKSPEDGWQQAVEARWCGARAPPRAAEAGERTPAGPGAGAGGAGRRAARRAPPPPRKPRL +>SRR4051794_8328619 +XMSHPPIPPILASVIACIAAAVPARGRATFLDLLLGAAATKSGHVTDAILASGLSRGWSTYYWFLEQGRWSWLRVWAALLEVLTMLFRPAVWYAVIDDSVVERVSTEAPGALTHHNHNAKPNRPKFLRGQGWLCLAAVIERNDFAVGAVPLLLRLVRRGTNRGKLRSAGLLLHLLGQRLGHVRLLLDAWFMRAWLIHRALAAGHIVIGCVRRDLALFDVPKPPRKRRQGRPLKYGPRLTPGCGIAGAPQRPDPLRQAGSRALSHLPGCCAVPARAGGAGGVGGTGASRPARQTVPAAIADLHRPGAVRTAGDQRICQEMGGGVAVQEPQARLWPEGCLAAVASGADALGHRTGGRICDPADAGLHRPGAPGRPGPARPLACARHPHRRANPGRHRPHFTRGRAGGLHRGDLGKNRRRGIKHKRIVSAARRQSRVSHPTPPSSFRSCGANPAPRRRNVAWKLQICKTTSGSENRRDRPQGRNAPRIRPELQFNEPADLGQAETPEFPRFRPSCCRAAITGWRADTAADDTRRRDVDRGRPDLDDALYAGIDPARPSLRDDRGRDPHDDHRLFVRVRAGAAPLRPAVGPLRPAPGRARLPRALCR +>SRR6184192_2552679 +LQAAVPEYWYRRRQSDLRSRDLLWEWTAIETTPDCTSQNYWAVDFAFRVTGNTRPTAILSIPCRKHLGDFYQTTLTKEDYVAGGRASVARVKRYRHRVVAIRGEWAHIETRSRIAKSQLENKANESIPLGFGYCPTRAVX +>SRR5512141_912622 +XMIGSRPGCGATPILMVGQPPRAVAAGSQRPNVYRRIELINHYGRGFHEADNEQRDYKQGLMGSSPEPVVAAWIYKLRGCGRSLPRNSRFYFTEKGWREIGRMVVSACRKSGQEYRVIAIKETDAQVVWRDKHTGYEVAVQPARRRAX +>APWor3302396189_1045246.scaffolds.fasta_scaffold344749_1 +ADPTTISLPTLTWDINVNMPANETLTIRFRGITTAAPGGSSVNDSTATGTLGTLTYSASDKATVDISGLQITKTSNATGPLNPGDDIHYTIDVTNIGSIGQNNIIIRDPQPAGTHYLDDTTLVTGYTLVSGDYLDEFGAASYSNDDGSETWSTPWTEGGLESGNDPNNGRIVIIGGRLRFHDTTATGADYWLQRNVDLTGVTTATLTLSYEEAGTLEASDRVRVQVSGDNGASWTNALDINNDFGGPTNLSWDVPIPSVGNTNTVIRILVNNYQEAGVEYLYIDDVRIALTKPGAAIKDNAAGGNPDLLNGDPEQLVLAGDGFMLAPGATMRVEYDVSVNNPLLTPGLTDITNVAYASSVEEPVEISATREDPLNFIDVSLDKQINDDTPLVNDTVTFTLRVSNAMGSQTATNLTVTDIVPVGYTYVVGSILGGDTNNGDDPTGTGLTWTINSLSAGNFVDLTYQATVNLTGPYENYAEITAYAQYDLDSIPGNGQQTPDEDDDDTVTVVPEATPDLTLDKVYVDYTDNDTSGDITAGDDLNYTVTMTNTGNTTLTNVVVSDPELIPTSQTCASVAPLGTCVLTGSYTVIQSDVDAGEFENTATVTDDNICTTTPGPECEDTETVPIPQA +>SRR5262249_48298838 +MDVKSERSSARDRQQSEPCESGTEVTRSRTGRPEASSDRAASSSHRRSERGIDPAKPRTDDRDVARDRSVRRIPDQRTGPAIASRVPAMLTPEEVALLLRTSKKAVYAMVERGQLPGIVRLGRRVLVREEALVDWLRQKSLTPSSERX +>ERR1700737_2044360 +HRGPGVSQKCGHFAGKHVIPAGEMVQKINAAVDARHDGDLQIVARTDARAIEGLEAAIARAHAYVEAGADVTFVEAPLNFAEMQRIAREIAVPQIANMVFGGLTPPLRQTELATLGFGGVLYANAALQAALKAVSDVMQALRRDGSLDAVAEQLAGFEERQRMVGKAHYDELELRYQSAGPRRSRSAPRLSPFGRSCPLGSQPRAGAVSRQAWVCKRAVT +>SRR5580704_900937 +PRDRHLFGAYVRKNITSTGTAVNQGARLDKQFPLVSMTRPPSDPLERDKIGKQVWTGIGLLFVMSLSDRDRSLWANPPTRPEESPEHLRLLHAFDDFLLCQFAEWGWRLLMSAEVLHRISEWEKHDPVLLERLGKELGLRSKVLRGEKCAPLGKNIHKFADPTIKELKILLRRQQLDFGSKRKAVSCEKIALRIRSEVAAHPTKFPLLSANLEQLCGFIHNLPKNHQRAAQKFERGDLRENSFFYLWYASCSNRSVKDVRNQISRSRGAHRSSX +>SRR5947207_3184146 +NDKKEPRSGGAEVKAFRLTLSCSSAPLPLCPLLLSLVTCHFRIGASSHREWSSVIGAICFPNLNRPGEDLMSHLPFRSLAATHCLRKLWRCARTAATLATVCALLLAAAPRTAAQTFRGTILGTVTDPQGAVVAGATVTAKNLDTGVERSTVTDDAGNYSLPELPIGRYEVKVQATGFQVYLITNVRVEVAGERRVDPELSLGGSDTVTITANAVQVETTANTLGGTISGSAVVDLPINGRQFTKFQ +>SRR3954471_2680322 +LAHHRRGVVQPDVHPTGPGHHRVEVVEGTAARANFEVVGVEDAASRTARPGDAQGGGLARLRQGRVHRVGAALGDRLDVRWREHAELLEVPAVVVVDPGGAHDVEGVAVLDRLAAVADGHGGAAGGTGQAVGVVEAEVVPHLVRRDLHGEGAVDPGVRAGHVAHPTPVAV +>SRR5580698_10972885 +SGRPSPSTRTTWSITPTGTRATSSGPAGSCRAARTRWSRNTEVTAQQSLGRSAPARCRCRCRCRPATTGAGGQRRGSPSRRAGRAAPARPPCTRRTLLAACSPQYPGRAGLGEADCLVVGHAAAALVGVVEGILAELFPGGRADTGRVEAAVVDRAADRVG +>ERR1700674_1031357 +VWRGWWVSVAGAPRRRVAGGRLDDERQGGSACREVDAEPLHGAGAQVVGGEVRDAVLLGPCRAPLGQVVLRRGLGGIACHLDGRTLPPVLGQPRAALERQARVGEGVALDRRGPDDGVAGPGAELALETPHGLPERRLDLPDLLAEDVGQRREVAPPRPGQRGVDPFPAVPHALPLLVVLAGKQQGEAGGTFGGGPEAGARHLPTPPPAAR +>ERR1712151_647775 +PLPSRCRGSLQQIARERAGLTSLHLRVFFARSRERLRSLALSFLARVGLPPRAFTFAVSAPWLLLRRLFWTSFSLSRLSSLSFTLRFRFTFSFDRSSLVRSSSRFFLSLSFSFARSFPFSFSFSLR +>SRR5258706_534337 +WGSRAPAHRHGKRARLVPTRTFGSVRAEVAVTPARGSQHSPFSLEGVSMSMDASETLERSVLESKDREQLLAIASALGAKAGSRTKKADIIDKILEQTGSGAPASNGKTPEARASDGPRTSDGPRTSGGPRTSDGPPGDAAPAAGGARAGGGTPGGAPPGGGGENVRASPAGAPGGPGSRRPRRPRPRGDDAFVGGKKPRQYGLRRGDHVTGACRPAGRN +>SRR5215471_3001876 +XMVPENASPTRVRSNVVPGGAFMLNIGPAATSTQLAGTSAALAIPKLNTAASRLPVTRRIASSSENSRAKKLVLWAASGNGRRRVAIFRRGRDAADQQDAGNDSRGDDREGGRGREGQPLVGGVSVGQDREGIEIERPQHQRRRKLLHHIDEDKKRRGKHARTDQRQIDSHQRIPGTARQQFRSAANRRRHPLET +>SRR6266702_5134999 +XMSCCSNPFTLFPLNTMVIRKTIGEVSSLLFQFTCKCDILNTDDAYYQPHPAETALARVFLHAILIDTGNSASSEAPPYPYNRGLIETIMHEKSLITLEYPKILEKVAKEAAFSASKELILNLEPTPNLEEARRRLAYTTEAYQLIEQYADTGIRGARDIRPILTRAAREGILSPGELLEVLATAQSAMYVAKLLERPDPENFPLLHKWVTDIPRRPQIIRRIEETISAEGEVLETASPTLHRLRANIRAANQRLQERLRRLVNEFGPSLQEPIVTIRNDRYVIPVRRSEERRVGKECRSR +>SRR6266480_5337023 +YGFEELGALVVRRHGIGGLPQDAILVRVGKSRVREQRVEVLPLRVIGVHQVRLVQHGVRSALLEQQRHTGLGKPCGAPFDGEQRVREPAIPIDVEGRVAIETPAIVQCAVDVSDANLAAVIAGALFYFHKVVDAFEAAEVGPGREVTTRVDSELTVTITQANGGGSRLCITVDV +>SRR5580658_3392266 +DRVALPSRRTVQAPHWARPQPNFGPLKPTTSRRTYSSGVSGAAVTSCLRPLRCRVVLVLTGRMIRPECAEGNRVKRTLLLATLGALALGAAALAAPAITTLPTGWKILGSDGPVATVGTLPEGLALARDGSRVFELEGGHRKPTLRVLDAATLHELRTVALNGAYGVPLRDPDGDGVWVNVAGTFQEQLAHVDTESGTVDRDVSLPLPFFPVALARSPDGNLLAVAGDLGGRLAFVDPRAERVVAIERVGLHPAAVAFSADGTAVFVAERGERYVDVVPVPGSGPATPADPDAPRPFSVAMRIPVGLHPDALVL +>SRR5437879_9218440 +PRGSKAYSLKNVMRATSSPGAQTPKSPQASFGPSLSPGLNPSPPTFTDRISGHGRGRTATPAFWRIPRMGPAHPPVGGPARSVSPGIFWLRQGDFGSGLLLVVTRICDPVRAMARGSFEPPVRIPPAVDPRSLGRHGLARLRAERALVVRYADEYRRLEPRLGHIGAISTLVRRHTKEYGRMVTASAAGAPEQPGFVRRRLSA +>SRR5438105_2884871 +AATRRTTTCGPRPWAGSSRPRGEMPSRNTRSPRRKDHSMSDKQQYAVPQHYHALDTSELAALRTALAKAERTAAGTGPWVDRTRAEQDVKIIQRQLHSAETAARSELELQRLNAPRPSETPAGNQAAGQQYVVPEPYFAEQQDYDQPSSS +>SRR4029453_17137562 +PPPRRPVLARRRPGVRPRVGCRGRQRLARRPPGHLGLRQWLVRGALGRRAGDDRRDLAAPAPGLGGGGAVDRGPRRLPGRPRPRSPPATGPAARPAARGHADAAVRPRAPPGLGSARGADHRRNGHRVVGVRPPGRRPGRHRGHGAEPRVALGRAGHPAGGRRDRRLCRRLHLRQADPQRPAGGLRLAPELRVGPLVDDDRGSVARRRRRRRPGPAAGAEGGPVRRAAVILGVLVVMLVLAEVGARALAPYLPEPSLWTDDTTEGKVEQLDALAPGPGCVDVVFAGNSMTRDGLVPDTFTEADPEGRTTYNAALDAATPALLERWVLQEVDDRVDPDGVVLGLSSFDLNDEAKIGQSALDAYDDAPLX +>ERR1700733_14753379 +NGLLELTPYNTPSISMSNIIEEKDNRIHTEEESQADYTPELRPTIRTDNQTIDLEISKHSTVLRPLHNLSHRLIHNRLKGPTGVELPAIIVEDSDIWKRTVGGNWDCVX +>SRR3972149_5498235 +EPRGREHVGQHDVVFVEDGGRVIVEILDAADLRRQVEADVHPLQRPLGLAPLAQVSLEELHRRVRLQIGVALGEVVNDPDLMSPLQQPAHHGAADEPGASGYQYHAPPPLPKTRSSTLAARARSSSQTPQQSTRIGRGPEVFSRSRNDRSRKARWLVASTTTSASRTAVFRSGVSWKGSLTATRAPSAFSSSARRTAGDCRVSSISALNPIPSTATLAPTRLWERSSRRRS +>ERR1700722_8398492 +HAPIGRGSHNRSALNGSRAVSGGAVVMERACPRVSPDECGSGNLCDRLHDLRADARSKSHLAHFVVSPIERHPQQRITPFVGVRRIQVHEVLPVGKMLRSHIHTWTDSVPMLNCSFFPGRAPVARSFPHGHSSEGSNWTFAGSGATQKSSSAYYFFRNLMVEISLKIGDAIAHRARSHKEIQPFLEDQHTGPSAGDLVGQVLAQRSLGRDWIVGFADTREK +>ERR1719253_1353614 +RSLLRKSALSHKLHNHMLGTRIFQDQSLHWDHAPLGLSLVSFLPCGWCRALAESVLETARHSLQVLHAARAWSTTTLWLGSPLVGSDLSCRVAATCASLLLVVEGPLAATEAKPVSLGVPLSHAWSTVTHGCRCAENCQMLPANEMEP +>SRR5206468_5774351 +GCSGYDGEILTEPFPAAVVLTDVPNTPRMHLSRVIVTFAVGFVPVASPSQYRKTQPLAEVAVIVTTELLRYGPDGGAIVKVPPPAASRESEYVGTKRAVTCSFRSIVTLTVRFVPVASPAHPSNTQPAAGLALSVTTVLLE +>SRR5690625_4794838 +XMESVHAPIRSCTHQANGTSAQVGHIGSRTDQYTAVSHLLGHYLRGPLTIISATYSRRSVRYFRRSVTRSPPSVDCLPAFGGAAEAQHARSVAGRPHIDLFADTPLEFADMADDADESPSGAQRAELVHNRIQALGIQGAKSLIDEERAQAYSAARAGDHIGQSQCQAQRGVKSFAAGQCARLTLTPGDVIEYPKSQTGAPAAAGLDFFAADQAQPAGRHFREPRVSRLDNVFEASQQHIX +>ERR1719284_851324 +RTVAYPVLSERCTASIHSWDSKKGLTSKDLLENSLLSTTQVRLMGKSPNKVKQQEKAAHAKNKVISVLSNKLRGACKMGGKLETNPKKNYNLAKVIAEVEKAGMN +>SRR5579875_2658053 +WDAVLRKPRPHPGRASADDPRTRPQRQADRSRSRRARPLEDPHPARLQECQVGESNRGGEHVLAPLFRKGRILGRQRLQLVRRDLIRRLLFPAFFIGAVIGIASAAEPAHFSYIPPPPGKMVESRLVALSGAGTQGRWRAVLSRKVVGREGDQRFYQWYLTIYAPNAAGDYVQKYRAPGNGTSSLLTVVEKARGANLWFPVQTVKIVGSAELMQPGVQQLVVAVHESGADCGAATVTILRYDQASGKIAPAVSVRNGCRLDAGIVRTSSGDALRLKARITALRPLCAVRPSPRPARSSGTVPAGGSRARRIMKCRSGRTRSAGNAGYIRNTPKLVREGGAHEATSRPMPRTX +>SRR5215469_13482869 +LGGHRVLAGPGAWRADGSIGVWDSSGCGCAYSAILHLRLSYVDSKFGTDVYGPRLDEFDALGARLLGWRDNGDAVVDRDQPGGHFAPAAATYPLDGQAELVALSPGGGAQRLVSLPGGTNRVEVAARLLDRFGGASPSIGYRLADWLRTHLDDLVGLVALTAVVVAIVLLRRRFRRRPVTX +>SRR3954453_2381136 +RRHDHHEPDRPDPDHPAAPRGLRRRDLRGRPGRRAGGHRQLPGGLHGLPAVPAVLHHPVVGDQPGRLLLGAQGALRGGRPVRPERQLRPVQQGRLRRLRRRHPHPDPLHEQHPVRRPDRQLAGWRGAGLAARPDRGRRPLLPLLRRGAPQRPGGCLGARRTRRPRHGPGAAPDRQGAGVKYDPAVEKSPLPYSPFKSCTVPRPIGWLSSVSPDGVENLAPYSQWQTLTFDPPMVMFSANQYPDGRRKDTVLNAEQTGWFVWNMATWDLREAVNISAMALPFAESEFDRAGISKRYADLSATPMVRESPVHFECRYLSTHRLAGHSAVGTIDVVYAAVERI +>SRR5436853_886914 +GSSPRISLWEHGSDPEEMEELPLQSPHLGPSPRISLWKRGSGLREMKALRLSQAAGASVVDVDAFLRCVYALQEETDPPRPVGSHGRELQWPLGLVQGHRPRPNDWGRKGRADPPWLHTCGLX +>SRR2546423_1658942 +AAWDADVVVKVAPTSEEEVGRLTGDSVLIGFLSHLTNAAGVRALAAGGATAFALEAVPRISRAQSMDALSSQSNVAGYRAALMGATLLGRYYPLLVTPAGTIRPAQALVLGAGVPGRRGGRQLRALRAGRDRGQARRDDRGAAEPGQRHGRGRLPDVRAQHPVAARAHDRRGRRAEARLRRRDHRRRLRHARRRDRARGRQAGRGSGRLMLVTNLAILVLAGFVGFVVISKVPNTLHTPLMSGTNAIHGIVILGGLLVLGLSGSGTLNKVLLVIAITFGTINVVGGFLVTDRMLEMFKGRKPARQEEIEEAQDEEEKKAAX +>SRR6185295_6827403 +XSGTYVVQDYDLAMKFIVSARGLTSGWTAHTTFTDGNATAQGTVVSAAAGNPPISGATVQCIAGCNNISITTTNGTGSYSLTFQFGGNGPTSITLQASAPGFTSQSITLTNVTKGQTRTNVNFVLTPTFRNTSTTVSCTPNPTVVGGGVSCTSTVS +>ERR1719499_497600 +MWSSLPTELTDTVDGLASDLTAFGFNDLESLTDYDSMLETTWQNVQDNSGIDVSDIEGQMNSLIGDFEDYLTGGTDMTLDTIIADIDDAMTAVSAELEENVDNEQLVELYQNLEIVDWGVTTWNQFASETELLTDFTGNLDIVLQSIQFTSEFGDVLTYDWLDNFMTSLNDILRVDGNQYSVCDEEYIKDQVWNLYDAEYDWYTARSEYMTNCYTTNFADTWTNSLASLMSGDLSGAFTPDCSCWEDLWNDQDLVSTMNCVMDAGDSITVEGQIAECNGVIMDTVDEVSLITGALETFEELANDLTSLETD +>SRR5574343_384457 +YLKTSKSSIYYYIKSILFYFILFYLHIKNLFIILYLYLEINLIGDNMESLTIKDLKHGKAFASDMLRENFNNYNDTDIIINFAYTDYGGTFFDNVCIEYFVQNYPNNIVQENTSWNGKNAILFGNNLVQNFIEQFENYPLGFEVLEDFYYEKESELLESDFIEFIKNNFSTDEYSYNEIDLLNFIIDNCSYNLTSNSVDYNENGLIEYIIQHYKRLNKIX +>SRR6185503_2167616 +RVESATGCGTAWLMASRLDSYERDEVAEPAIGEQPAEARIRREPVAQRRGKRIGVYRPQRIGGQSPDLPSEGAELPAERCDTHAIDAVMTPVVIALPLLAEHLMAEASRIRRVDEQHGARPGDGAQRVDHLEGLVKMFEHGPHDDGAK +>SRR6266567_1659920 +LYRCGASACSEHTFHPAIYKNYAHSIERELTILCYERVDRKLQSDLSTVHPPLQCCSRLFTHCNEKSPTKLEIPSSSCTPAPGSSPIATPVLLPPHGKPLRLALCERRFNPMKKERPFSWIHTIRAALFQSPGEIYQWPLATIINQRLNDT +>SRR6187431_3469506 +CFILYLLSDFELRAVCVRPLLFFFFFLMIRRPPRSTQQSTPFPYTTLFRSPPPSAPVARHARPLVFCAARARSSSARGDRKSTRLNSSHGLLSRMPSSAXX +>SRR5574338_764212 +DTGEPPADIRRETSRDTTGVVWYASTSPVKVQTASKKEDSDLDDNHKITISGLSSGTKYYFIIVGKDNDGDTATSTERSFTTDQVNDTTAPTISNISITVGTTTANISWKTNESSTGF +>SRR5690606_34928301 +VDLTRFYGADANTLQTVYPVEVSEQIGQTVIIQIVPITARMNTCQHNFLIACSDELPRLLQHAFRITASGQPSRPRNNTKCTKIVTSFLNFQKGTCPFGKIGHVKLLEFPRLHNVAHSIDRLTLALQISDVIEQFVPX +>ERR1719424_1028065 +RFAALSSPTNTALPRRRRRRRVEAIMWRTRARAAVRMPGVLRSSRRPLSNEISATSYAAALATRKDATMGRELISTEDTSIKNFTLNFGPQHPAAHGVLRLVLELQGELVARADPHIGLLHRGTEKLIEYKNYQQALPYFDRLDYVSMMAQEHTYSMAVEKLVNCDVPRRAQVIRTLFLEITRILNHLLAVSCHALDVGATTPFFTGFEEREKLMEFYERVSGARMHAAYIRPGGVHVDMPVGMAEDIYTFCEQFPSRLDEMEELLTGSRIWKGRLVDIGTVTAQEALDWGFTGVMLRGSGVPWDLRRAQPYEIYPEVEFDVPVGTSGDCYDRYLIRVEEMRQSIRIMVQCLNLLEPGCIKADDRKLCPPSRAEMKDDMESLIHHFKLYSEVRPPASTAPRPHLGRTSAAPRLHLGCTSAAPRLHLGRTSAAPRPHLNCISPRLHLGCTSATPPRSGCGRRMARRSTGGRLVACSTRWCAACLPFGATRSRTSTRRSSTRSQSTPAX +>ERR1712137_1537553 +PPARPAPVKRTFRPAAYSLADKPVEASFDTSEGIYQLQRTHRMPPYPIPLKEAFDTIHNHPTRCSLTPCPAPAFLSSRIHEARSEKRILLSEDTGMPTDDDGFLLVYNKKDSLFLDRYFHQPLQPYQVLELPPAPKEGAPFKALTVTQWPHQIRCKRFPSCHLVAHRVTASPPREALLIVFGFSTGELIVYEPWREANCPRVSEPLHLFRTAITCMIWVPLQEGRLLLVGLLDGTVALINLEHKQISTSTAPSAETMQEYLPQDRTGRFVMWKNPHSRTHNPVMKWKFSSHPIYDIKYAPDAVQVALACGDGYIRVLPLLESKSNDLHPLETDQPGAAGFHMEVGQVAVAFQSYFGSVCCLDWSFDGEYLLAGGEDDLVALWSMRKLAVVVRGKGHRSWVSSVAFDSWRCKDGTYRFGSVGQDGRLPLWEYSKETVHRPRSLSAMAIRRRNGRHHASDQGAREGTKPMEPKELARLGHGMIVPAAGSTEVPMLEPIVEHQAHLVPSHSICFTPQAIVTAGNEPCVRVWARPGHYVAPPPKKEPVVPEVEKIPLSVLDAATPLSKSEPADPSIKDTSGNSEITDSKEEQTTVEETETTSTASLSESEEDTHLVTMKDGTSTTSPRVNGKEYDSVHDEAGAPESREIQIPHSMANEKEEKAALPVAEESFLPEQPSDPLIVQX +>SRR5437868_9687141 +RRADRPSVEKLIGHAPAAHAGNGGAALFDGPEIAVGGAAIQPAAVLRAPRIRIGLGRYGGDAAEDQYRSCRESNAHHDLLWMAAFNAARISRLNPHRCCLVVSPVSPRYGLYRVPPGIAAVSIRGAPPSLTANVLAERRFLSHQH +>ERR687886_608271 +ESVISDVDAIALFSLSEVTAVLFVTGEVSTTETDGFSIAGARSSELAEVTSVSVLAGSDVAAAVVTTAVSDFDTSEAIASELLFVTTAESGFFGGLVDAGWPELVDVGSVSVLAGSDVAAAVVTTAVSDFDTSEAIAAELLFVTTAESGFLGVSDTIATASPVTLAEDSVVTNGCSDDTGAVDPESSGAIGTFSVEVMETSGVLDX +>SRR5262245_18501370 +CALHSRSASASSKAFNVSSTVPRTTRSRWLLIRSSSIVMTLFSRLGVSSDMAAPSCWPGCVWPPPVQPDSGPPALPNCAKDSVRHPIESNSGRRNAVLAAAEIYFGAYWENKFVKQSLQDIINAVGWASRRRDDIAHGIIWGNIVVDHVSYGAFLFPPEYNTGRTLAFMADTPDPLRFMRTKYRYTAANIAKWGSKFTKLRDAIIDYFKAIKREDGRFPVLEARLEPLMDRAEKKRX +>SRR4051812_41527219 +VTGAIEPTLERAEVDRVRSRPARNQDAYDFYLRALPLRLQTTRVSSEEALALLRRALELDPGFAPAQAHMLTCIIERVAQGWSAPEEQEEGTQLARKAYTDHGDDPLVLTSVADALGFLAYDPEGSLEAASRAVTLNPNSSWAQSAAGWAN +>SRR6478672_26151 +ARRAAGGHPGPGRAPARGAAAPAGRPRGPRRSVGAQRRPGPDPGPAGPRPGRPHQPAHPVQAAAGRRPGSGTPPHRTRPARRRPADPGRRHPRPAGRRHPGSAAGRPRGGARPTARSARRGPHRARRHRHRTRPGGAPGGRPGRGARAGGRRGTSNRDVGRPHRRRAARPARGRRDRGVLLLQRGPAERRQVRPSRSDRGCGPGEHRGGGVRRDRRRRRIRSGRRAGPGRRPARPGRPGIAGRRRHRGRHGSGPRDPAARRDPPRRPGRGPLRRPGSGPTRRPGRHRAHRPGRRRARTVGRRWVVTGRGVAARPLLLGAARFVIALAVYAGAAALWWSASGDPDRMPGWVAVLATGVVAVAFGMLRRPLDALADRLLLGGRNTGYATVRALLARMATTLPVDEVIPALAETAGRTVHADRAEVRVLLSDGADLSRVWAAPAVPPARTADTVTVGVRHHGTAVGEIEVEVTDQAQADHDRRLLRDLAGPAGVAVSTVRLTVELRRRAADLELLAGELAESNRRIGDARRSQLAAVHAEMTERVLPLVDRARAGLDSASGAGARGAPDITGTADAVAGALDALRTLARGVYPPRLTEAGLAVSIEGWQHRTGRVLRLRIVGDQAVLRRDEDLESLVYFGVVGMVDGLRAGGAEPPAVTLDVERAQVRLTVTGESDGPALDRAVDALRDRVEAFGGTLERTSTAAGDDARVRIVTRLPYGEGSDDMAARHRGAEA +>ERR1719505_362534 +STSSIILSQASFAASIGYIAHIVLTAFSMNSILALTVFTSNVMNRTTALQTVHPMGPPKFLRPSHGSRRPNPPNPGLSKSPKSSPRPPNRPRPRPPHNPRFGDNPFRPHWPRHRHGGRHGGRHGGRGLW +>SRR6266536_3216943 +RPVGWCAATVLGPRGATRPARRGRSSPSTGGLPEHRVAGLVALPAGGGYAVRAGAAERVAHLRPARASVLTPTVRRVGLNNAVVYPPEGGCGGGDEQGDVVVQRGDAPPAAFQAGFDELVGVAPVHLRAGWAARGAAVAAGRVDDPVGHVRGGVGGDALAVAVVDVDRAFQADRVSAAGRGSHVVQPLVVVAGGGAGDDGRGFGHTTGPCRDGGGCGGLRPRPVPVIGGGRVEERRLAVGARTRGEGVLLPGYEGPRRDAHRSAPTGVPLWTLVFEVVEMVPRAARICSAVLVLMPSRTASX +>SRR5713226_9196200 +KLYGWKLYGLEVIWMEAVWVGSYMDGSCMGWKLYGWKLYGLEVICMAVVWFGSHMDGSCMGWKLYEWKLYGLEVIWMEVVWVGSYMDGSCMGWKLYGWKLYGLEVIWMEVVWVGSYMYGSCMVWKSYGWKLYGLEVIX +>SRR5829696_2428463 +SRPVRIADAIPSIGSPACSQASARRTFCTSLARNGAGPGRATRMPSSTSRPTSASVVPARSASPDAESPVMPPSSYERGNLRGECRSVPDRHLASVAPARPTTASRQALDCASWLFSPGLGRNAGLTCAYDPARTYEPDHLACRPYKHGSIGCLQDQPGVDLNAGGWVLTGRPVADEGQRPGWRQAPQPVSRAPATLASTGPVVVEERRVGLVGLEGPGPAPRVGADRLAVGEAELQPEVAEEMAVGPVWIVAGLLELVWVRSGGEGERQAGGVGAQVGDQDGMGVGAGRHELNRDDAGNHGLGWSRPGRDPVARGRLPGRHREEAHGGLGSGHRVWARAAAASTSPASSAACEGGICSAGQWQAKVSGPGGGRPHSHTWPPSGPLTLWYSRGGSGGWSPVGRGQRRGSLSARRPSAKRTSSRRSSPQRCSGWRGWLGRRRTARSKSNPVGYTSRPSTRTAW +>ERR1719375_709491 +AFIALKEVLDGAASRLDRDGGAFAHEPRLGFLTSCPSNLGTALQASMLLRLPLLVQQEEAWPWRDWCREQRVQVQAAFSEEYKPVPDTFLLSNMDRIGTSDVHLVNLLVEAASLLVQMELCLETAGAGGTVDLRDLMVDIKVPGDGEAEEFPGFPAEECPDALPDLSGHCSFLADVLQKDPACYANLRNVRTPLGVSFGRCIKAALDNRGHPLVKFPGLVAGDEQCFEVFREVFDPVIKLCNVGFGEGAGGQGTGLLSTPIDPS +>SRR3546814_8950902 +XMRISGWSSDVCSSDLVDIEQHALRALEQDALAPRPRIIQRQPDGPRELKHELGDLAQVRLQPCAIDGTLAEAGAEGIVMSAEPVDMRAELAQMGKIADPDRAAADLVFIGRTDAAPGGADLALFARLLPTRIEVAMEGEDERAIIGYLQGFRGDRKSTRLNSSHX +>SRR5205814_2128888 +NLGVTTAGQPIANEKVTIALAASTPADYSGVAVKSASVNSSFARTTVNGATINLKSAGVFDMIQKASLQVAIPDINKTMNVAQAFSPPSTQPAATQPSAPLQIGGGAVVNVDLQREGQTTHITIPELAASKVSLVRGKRRFAFDKAIAVKLAADLAAGEKIDKIDV +>SRR5262245_33090118 +HWALGQNHVALFLQPVAKVGPEWRGLLLTQANAQRVSAVAVQVFRLDAFLGFLLQGVELTIPGQGSMAADRIAVLRLIERAPRMRVAGHLDNGAARGQVDAVVTTERVRLQIALEAGQKALRPIAGPSRRVVEHVVRMTAIAGIDPEPALAGRVTRFVLHRQ +>ERR1700744_713940 +QPIVEKQGIKAACHFFILSMRKLLRPAFDFLLFSNVFMSLCAVAQGLLTFYLISSKPIYPVLGLLFTSTLGIYNFSILISKPKHPEKSPYRRISWFFSHYRLMVTFTIVSLLSFIPLFFFISTPSKILMIFLAVLSFGYGLPLFTIGEQKFGLRNIPGLKLIMITLVWTMSCVLLPILESQAAHLATISMRDTTILIAKRFLFICALAIPFDIRDLFEDKQLGLKTIPVAWGEKNAYLFCQVLLAGYVALLFLFRNNGFSTDFWALTLSVVLTGWLIFRSKWEKNEYYYFFYLDGVLILQYVFVLTFNYVSRYLX +>D4D873_TRIVH +MLRKGAINPDIDSLAPKNTSFFLFFLCTYSFFSPTSISSCINHPFSKVHLVQVLNYTAHQTFPSASRNTNRFTHLGAMAEMRYISPDGPPLGGMPPQDFAFLQAFHMPHFMAYPSIIQNPPPGPPPASTPAPAPAAGAPAATPAPQVSTFPLTIYVVQHGLTDQVILHQTFTTNVPPPAPAPMAPASSPPRAPNPNPTAAQAPSPASPPSAAPAQGRRLPSGAYPPDSERAMVLPTGQGYIFPKKHTTLHIIEAFTAPWDNPGSTFQWRSYRVPSSMSISELIDQLCPTKAPDGRDATSRGVIECLEIGDGTWLKGSEFWIGGRRGGDDNMKRRVSQSLTAVGWTEQRGTIAQPVWITLSIAV +>SRR5690554_8049497 +YPLLILSFFFFLMIRRPPRSTLFPYTTLFRSGKNQGVGPQFDFNGVGPASTHTLGIPNFGAHGLAFVVTRTRKIGVPAVCSQCEGPVFIIAVTFLIQEQDRILPVAPGILNHAVDARKALAGNAVLMALLFAGSAHGGKEX +>ERR1719239_204793 +GKVAVKVSLPTRNNSCKRSSVDQESTPASTFQGHSLKYKLCSLHGCHDVDVHTSPPTSHIAVDSSIIAEDVHLGVEMFLATIIKGNQIIFFGHIAPDKSNFVLPKLLPQLDQGFFAHLTVDVRQANLGSSGQESDCKSFAEPLSRTRDDX +>SRR5271157_3087616 +XMKLLLKILFAGILIYMVGMTTWVSLHKSILLSPDEFSWAQHPWAVATLFDAYFGFVTFYAWVFYKETSWLARMGWFAAIMGLGNIAMSGYVLIQLFRLRPEQAGIGHPVAESRVTRGFFHRRVVRPIVDLLTQGITPEKIALSIAFGLVLGVFPALGWTTLLCLLVAVWLKLNVPAMQLVNYLAYPLQLALLVPFIRAGEVLFRAPKLVISLAQILAMVRADLWHAIAALWVATLHAIVAWTLIAPVAVYLIYKILLPILTRLAQVTGLAKQEGSAASVAEVCX +>SRR3546814_2889336 +XMLRHGKYVLVPASAHIDDDDTVFRHRRRDLGKGSDGVTGLKRRDDTFGSAKKLERLERFGVGHGGIVDPPDFLEPCVLGADARIIETCADRIAFDDLPVRSEEHTSELQSLMRISYAVFCLQKKTNRQKSA +>SRR5262245_5483048 +DTMKQLVNAFGDYARPPKLELRPLDLNRVLGEVLDLYEDEQRLDVTRALAPDLPPLRADPVRIRQLLHNLIRNTLEAMPEGTRPRLEVATRCGSGNGVAMELEVGDNGPGLPPDFDASWFEPYTTTKPKGGGLGLAIVKKIAEEHGATVSARNRDQGGAEFLVRFPAX +>SRR6266699_1496226 +AGIGPVPRAAEPSDPGSTPWGRLRGRLRDSLRPTVSLYVIRSCQGRSTMAGQFAGRAVTGGRGRGPRGRLTTLSSGVRHCPISGCGDQIDPSRLMCRRHWYMVPKETRDEVWATWRSGHGAYSRGHRNAVRRAVAAVLEAAGHADGHRTGHADGHADGRTTGNADGHASGHASGHASGMATVGDSAGX +>SRR6218665_631217 +XMMLQTTYTVELHPETWYVLKVTATSSAGSTECILKFGTKSYFGATIEPLRLVHRFETPFYENIYIMVPLAVVTISCLIVIVAVALFCYRRRLRKRHKASSALRMHQEAKTALSLLRDIEKPVAAVGTEKSRDTQTYVAVPGLSTNVLKLVPQVSMDAKDNEDDEAIFRERTLSTGGLDIGLPNRVRVTAETGSQDESGTVCKDVLYGYPQKSSLF +>SRR3972149_6447067 +RERAARALVHKGIALGHLGRPDHAIAVFDEVVGRFGEAAEPALREPVATAVFSKGVALGGRGWRPTTRSSGASARRPSRRYWNRWRWHWSTGPSRSASWSGRRMNSRP +>SRR5678815_2305109 +XMCIRDRQPGGTWVDADRGIQVEFPTFVGSAPDAACRVNIQYAAAGAKPDPMFLTVGAGTVDLWMDNMQNGTGVYPSTQPLDGDGVPTGPGDPFAPGKVNLLNFRVRNLGAAPTPSLAVRLIAEQPPHVTCGVNPPRILDKIRLVDPIAPGGVALDGVNLEIPDNRLVRVRAEILSVPGETTTSNNKGERTFTTGANSAVLDQQYAGPVTINATFINGCPGDQLATAVPMTMPVKTGPPIPDPIFDRWRVTDPGLTLVGPGEQAQLAFTFLPPSPVTPGSGVTIPISFRAGGGLAAAGGMFGESRPQIDSMEVTIPVVEQAT +>ERR1039458_8973043 +PPSLNRKKWGRAEPPREQKIIWQHGPPAVSPHQFSRSDTACSRKTCSADAGFPARRRPPATLPRCRNGFSPPGFSTAADNPAPSAKAAAASAHPPPPLDRIAEIVEVLDLVFGRHRLGLRLAETGTARVRQIAEREHVHRMAVRADLAVDLETALQLRLVVFSERAGERPFQPRWGHLLGQLRGPRGPDGGQRTGEDKGEDGALYVHDHPHALAPRTDSEIEFGSGFVFSKMPSSGRTIRKKAKX +>SRR2546421_543181 +GCFRREAGAAGRDTHGMFRVHQFEKVEMFVWAPPEESWEEHERLLAIEEELVQELGLPYRVLNIAAGDLSASAAKRYDIEAWFPSQERYREITSCSNTTDYQARRLGTRFRRDGKAEAPHTLNGTGCERVPAQEVELSGVAGVFHVGVRSSFHQLVVESCDDVLPWLVEDDDAVVAVRAVFGENTHGVVDDLVSSSGVHPAVVAAEAVRRVGFLLELARQRVGFFLAGRALGVRSLLRTDRRLGAEDDPRGEQEVEDARREVEVGX +>SRR5262249_31764099 +DDPHTLVIQGDTKTFNCNFSQDAIDRLIKDDPESAKAEIEGEFRTDLSAFLEDAVIDAAIVNDRPKEIEPRKGVYYTAFVDAAAGGCDAYCIAIGHSEGSGDSGVVEIDVLRGRRATDPYQITAEYVELCRKYGIKKVMGDKFGKSWVEMA +>SRR5574337_5095 +NLKSGSVIPPAPFFFLKTVLAIWGRLCFHMNCEIFCSSSVKNATGNLIGIALNLQIAFGSIFAILSLPTQEHGISLHLSISSSIFFTSVLEFLSIVLSSPKVSLFLDIYFFVAMVNGIYSLIALFDFSLLVYRNVGDFCVLILYPATLLNSLISSSNFLILSLGFSMYSIISSANSESFTSFRIWIPFISFSSLIAVASTSRTMLNNSGX +>SRR3989338_7824970 +RWNCDWSSDVCSSDLSLFCLFCISEIHAVFLFNFLGSSRIFRVVFFACFTCDPCTFLFLVLRSLGGGGCIFFFFSFFLFLTLAPDALEGFLIDGEESFEGETDTSLVDIDINDLCVNTLADREDLCRVVDVVMCEFGEMNETVDIFLESYECAVVRETHNRPCYFLANWVAFRHFLPWVICQLFHTEGKLVTIDANHFHGHSVACFCMLGRILHVAPCDLX +>SRR5688572_19622849 +TDDEMQNPGSWTQDGRLLFSQGIRGVDGDIRILTLDSPPRVDTLLGGPAIEVLPAMSPDGRLLAYMLVEPVGQIFVRPYPNINDARIPVSNGPGMGPEWSQDGRDLYFMVRQTELFAARLESTNPIAFGKPRLVRSLREPTGDPIRVTLPPVNGRLLRQVRPQVSLSNPTEYRVVLNWTEELKARVGTKX +>SRR5687767_14888222 +VIDAHTGKQLQVVDRLELEHGEGAGARYRAGRLDLVDGTPEQRPGAVTVVEVYRRVAPGNVVRQPLRVDAGDGSDLLTQAKTEVAATLDHEHVGIGVDRALGEGHDILADGKAGGPTQIVRDSCLGACLNAEETGVQLGITAGGRIAAVRX +>SRR5216684_2934442 +YASRKTLPSDAKPQQHHSQGLETWLREKSKRVYARASVLLRAPVSSPHKESLGRLPINRAGFLFTLFIASFNCLRTDLLIDLLISNALVVKPDGLLRDVQSWVKPFAVSIQVSDPLVSIFAKDANFLVERVVVQSQVLQKVPLESIRICDDSFPRVVPISFAEELAPVEHAHIKEITVYGIPEVSTVRVRFEQVSELHRPSSAVVGHVAPKRPAQSLNVSEDLASRX +>SRR5215469_11197210 +SLQVQPVRSKRLWPAIASVLLVALVGVSAIHFREHPPDSPKPIRFQLAPANVIIGSSARPSFSPDGTKLAYYATGSDGVARLWIRSMDTLESRSLSATELNANVPIFWSYDSRFVLFPSAGRLKKIDISGGPAQPLCDVAAQVVGGSWNREGVIVFGTNNTAIQRVPSEGGNATPVTALDSTLGESAHLGPVFLPDGRHFLYLRRGRPESTGIYIGSLDLKPDQQSLKRLFASDYIPEFVPFQDGRSGEILFLREGTLLAQPFDLRRLELTGDAIPLAERVGSYLGDPLFSSSRTGALVYRSGGAGEFSTLTWFDRQGKMLSNLADAFYGPFTLAVSPDGSRAVAERLETTGVNLWLVDLARGGRTRFTYTRSGIDRYAAWSPDGAKIAFSSNRGGHEDLYLHAANGAGEDELLLKSDSDKSVTDWSRDGRFLLFNQLSGKAIRELWVLPMDAAGGQKPIPFLRSDFDSRSGRFSPNGRWVAYGSNESGGNYEIYVRPFPPSAGGGKWMVSQGNGAYPRWRRDGKELFYLRPDGELMVADVGADGAVFQAGVPRPLFKATYVQGWDMSADGTKFLFPMAGGETTQFPFTVVL +>SRR5215471_2447632 +SWRRSSGSPSRRRASTWGSSPAWPCWRASGAGRGRCTGSGRNSSAAYSSRRRTGSCGPSRSDLPNGDQRMQLVPAVLIVEDPVARRLDAGADSWDHEVVVVALTGRHGVSLGDVPLADRLEHEVTVLLLDVLRVGARLSIAALSDVELEADVVVAIGLRPLVLDQPLQRGRLAAVQQPEPARMIDMSGRRRAVGGAERNGTGRRIELGRRT +>SRR4029077_541644 +SPASLRPAKANSAHTGPAFSSPSVPIPSAASPNFHSSICTAQIARTPTPHVFPLAPAPDPKSSVSSFPNTARSHNRHTSTHQTPFPNNQSPAQCESARIAPSEIHPARLLQQAPEKPASRPAPDSLSPPFRSSGTSLSASQIAGRAASRPPN +>SRR3989344_1047100 +AYFEIIEKRQAPSETSAKVRVPAVFLANSRSIPIKAPNRTANANWPNISKFSPPKNPILVHQKYLVAFSDALADFNPDFFAFWRHGNLLVIILHGFNHLIKIRRRPAETKFRARFNRFFKFYDRDFNVSVEMSNYSDGLALSLPNGLFHLHRRLCFRHRFLGGFLRCFFNYFSHGHIFRNXX +>SRR5215510_3565519 +WPRALLHRTCRRGRWRLQTGELGHGLQVQTMTVGCMRVVTFSQLPSSMPTALIQINDGVKPCSPLIKARPRPATGRPRPRSGAAVEGQADPASDISSMPRPVGLVASRHLGIAKSLRWFAELPIGDVLSRTGTRARHRHNRDRYSRRPX +>SRR3974390_2059552 +ARVIHTCLNKDAEERFQSAHDLKLQLEVLVSFAEQPAKAAPPVATKPWTARAQWVAIAVLVFVVGVTAFAWWQLRNELKPVVRSYLTAPDKSNFNTESVALSPDGRFLAFSAVSATGGKMLWVRPLSSLI +>SRR6266566_5267620 +PLPRPPLPRRTGRSDGRAGGAACRGLPRDDGNRRRPVLRIRGGGEPARGARGELAGGGVGSGRRAGGAGAGSRGVRGGRAALAARRARSPARLRRRFRDRGDDGELPRARRRPPGRPAARARGAWVHVDGAFGLWAAAAPAREHLVAGIAAADSWALDAHKWLNVPYDSGVALCRDGAALRAAMATQAAYLLQ +>SRR6476620_1160279 +LSNNKGTIITLAVAKKKEPTSPSSSSSHHKRTMTSNTNTANTIHPSPKPNHLHRGKNQDLHSAIPKTTTTTTSPSLSPSTLSLSPSSERPSDVPAPSPEEQQATVQKLYAASAVAASDPTNFNSPMDQQTQQQQQSCSYSDSIDKFILPFKEARFTHIRPCVTMTGTVISGLKVNADGDISFNIAVDPAYEGMLGPGNLDPSHATSSGEHGIHIEVICQEPVNSSAPMDVGACNGYNGPDFHSLLPTDHEHVMVTGRFQIEWNEAPGGLTEIHPVYDIKTIPKTX +>SRR5580700_450720 +DMPIGDDVIVLVEHHPPCLRMMLEDDGPLLGRSLVARILAAQSQPLETTIHALAQPVQRIARHGIDGRHLVDVQLDEVFEEIHPIPTPAHDVVMAADPIRRQQPAYAVDDFADVAVVGDFKIFQLADGDEVVGQSVGRNYGAVDQDRQDLESVLLAQIQSGFELATDEIMAAVETVLGVPLRTDERDHHLARLQLAHDLGDDLVARLRDVDVEENLFLRKGRFQRLVEPTRNRPGIVAPIADEDTLRHGSPSAFLGLPGNDLALELRQQCRSDEAKEADHHDADEHGIDLEQLPGIPDHVADADLGGNEFGGDQHDEGHRDRDAQPSEDHRQRAEEHDTREHHPKARAIIARDIPVDFLDISRTRIGVDDHREEHADGDQRDLRGIAEAEGEQHERHQRHFRDREQHGNQRIEEDAHRTEHRHEEADRNRRHDADDEAGDDT +>SRR5580658_247251 +RAKLLRALPAALFFRRRLTRRTQRAHNVLAGAVDRKKNPPGESLGLPCCRRLERTALPAEPRLHHAVAAHALIHAAGDRLHLGQLRHSKILTDYLRSAFICGRPIISGQRWCDQAPQQSCSPRSSQSSTRPEGLPHTRAYSGSFLKYRRPAWCPVCRRSTSPAPLSHKSAPCG +>SRR4051812_49755575 +XMAIFVTRWIRRLSWSSWRVFRLSRQNSGVLWFGNSLLCLGEGRTSRVSFFERSSPHPRSDALLLLADGIRVDRCRGELGMAEPLLHHIEGDAPADSLHPEAMAQALGVGVGAVRDARRRDNLLHPPVGRHAAPRPQPHFCWAAPGCSAAGPCPPACARLPDAPGPCARSAX +>ERR1719445_2651091 +NIYVVLLFFYVGVAFVAGEQYWWKFVHADCGYDDVSPQPACGRSHKGDVEALKACCLNTTGCGGFNTNGIIKKTDCLSNKKFESACDLYVLEDRPQPPPGTKFPPIWPLPKKYSNGTSYASVSTAFKFTSGKTTTTLTDAFTRYTNLIFLHDIKSSTVNAAVNATALSGLDVSCDSYDESHPQLETDESY +>SRR5215211_4540433 +AAGGLQRGGAGVGGEVMLGREPANVADLAQEPGRQHRPHPEQPQQAGVGPGDRGLDSRLDRGDLLLHLAGVGDEFCGQLPTGDRRRTGRGHFTEQGGGPLGGEVTPGAAGDQVHQQPMQPVDGLGPRGHRSWRRLVNKCRTTAWSSTPTWRGAGILNAATTTETASSGSLLRPCPTDSTRTRAASLAGTSRTCSPSPTSRWASARPMPWAPSTAQQALWPALGPSPQGLVALKGGSDALLAEQLAVFVKRGAGVGGLVRGRRRSSPACGRLLEGRREQPGGQADIGALAILCXX +>SRR5215471_16031673 +ANGSNVQNEQPGSRRHDNETGKHNSRRAPAFAVRTAFRLHGSGRKDRGLEREKIARPPTCTAPLAPYRSERGVRWINWQAYSLEQRAGWSRDRFASETSVRAARMAALFRKGSESRQPLEHHFVAADWRSPQDSMGVDTLHPX +>SRR3984893_4885850 +CCRRAATGSSRCPRRRSCVPRLSTSTAPDRPRTALPVPGQVVDHLDDLAAAVPLLPGELQQVSDLGQDGTAFGGARHRDAASAAELQQPFLAQDVQRAQDRVLFHAEDGRQVLGQRQAFARAGLAVGDGAADLRGDLVVQRSRAGSVDVDINHGPSHSSPMLDEWHGPVSAVLAPPGPSAPSEAEALFAEARRRRRPRRLAVRVACLLLAGSAAAGLMTAWPSHGAGTQYGHPGRAAVPHTPDFTLPRVRVAWVDYGGQLHIGDLATGTSRSWRRSMPRQPTP +>SRR6266568_5935642 +YSAIRLNSLKALAALAAQKADTNVSTAKATSNPPTTTTARPSGARGRRPKPTPTRIAHHSTIPTIARAVRPEPPFSYAMQKTRIATTPAIHHVSKATRGLRRGVGSTDRTAWVRGATDMGGARLAL +>A0A061IJV5_CRIGR +MLCFEGLVSLVSGASCFPFFRADYWKSQPKKFCDYCKCWIADNRPSVEFHERGKNHKENVARRISEIKQKSLDKAKEEEKASKEFAAMEAAALKAYQEDLKRLGLESDIPEPSISPVTSTVQPTSTSDQPKEKKKKKEKKKKDPSKGRWVEGVTADGHCYYYDLITGASQWEKPEGFQGNLKKTAAKAVWVEGLSEDGYTYYYNTETGESKWEKPDDFIPHTGDVPSSKDKEKSPESLEESKSSDSHSDSDGEQKKPGEASAETKKLVIKFKEKNKSTEKRTDPEIQKEKSTPKQNPSTTNEEKSKPLKKLTNPYGEWQEIKQEAESQEEVDLELPSTESEYLSAPEAAAGEIKVVFKEKTVSSLGVAADGVAPXFKKRKIENGRSRNLRQRAAEMSHHLCIHLFRNPSYTRRHVFLYCQRFRQISLDTRLWDFKQNKSHVLHQVLNKSWSRSYCHQDPKMLWKHKALQKYMEGLNEEYQTLDGCLQDISGNEDSRRALCRRHAKLAPLAAIYQEIQEAEQAIEELESMCKTLHKQDEKQLQELVSEERQIIDQKINTLYSELLEQLVPKEKYDKSDVILEVTSGRTTGGDICQQFTREIFDMYQNYSYYKHWKFELLNYTPADYGGLHHAAARISGDSVYKHLKYEGGIHRVQRIPDVGLSSRMQRIHTGTMSVIVLLQPDEVDVKVDPRDLRIDTFRSRGPGGQHVNTTDSAVRLVHIPTGLVVECQQERSQLKNKEIALRVLRARLYQQILEKDKCQQQSARKLQVGTRAQSERIRTYNFTQDRVTDHRIAFEVRDIKEFLRGEKCLDQLIQRLLQSADEEAIAEFLDESLKSVK +>SRR4051794_32399155 +ADVGRASAGSCMVRRSFRTLPGDGGGATTVLSLETQTLATSSWRAELPFALSRPRISPRVALALEAGAVLAILLLAAIVRADSYMVVPRLTDETLEVMLGLRLARQGGLPLVGYAPHIGSLFTYLTAGAFLLLGPKIEAGRLLVLTTGVLTVLPTYLLGRDLGQLLVARGEGRGARDNTRRAEAERLTRGRIVGLIAALLLALSAPHVATSSRIAYSNSLTPLFIMTGLWLVSRAIGRRSDRALIGSGVAFGLALQSHVSAVTVLPGVAAAILLPLLASWKRGELARVTPGGQ +>SRR3954453_11447405 +AENDRKNQDYDPENFRLLAGRRVERCWSDAGINECDDLDDEQRQADDQEDAVQRPEDEHRSSTVARWRRDVIECRKIFRRRFPGTGGDIRADLFWLRRSSDDRRNRRLSGEATDSDVEQAATTLGGVLLEFLTDVEDTFGERLGSGGKSSPLRRWLSAPVLAGQQSACEREIGQDAEPEALARRSHLRLDVAFEQAVVVLHADEPVETPDAHRPVRVRDLPALEVGAAEVANLATFHQLVX +>ERR1719182_1343932 +LLKAKYVEVNALRVNGKSLADYIVMTAKKSNLCKCGGGGPTKKPTKKPKCPVAMIKCKCGHTYTMVKGCKMAKCKPCGDKTLSGGNNGGAKNLKACTGECDSEAQCAKGLKCFQRSKGEKIPGCKGNGGGKDWDYCYNPVHGGIKELGGPNDSKAKNLQRCVGECDADSQCAYGLKCFQRSKGEKIPGCKDGKKKMPGHYDYCYDPKTEVKKPDPCKKNNGGCDKARKCMNSNGKAKCGNCPKGYTNSGATKCQKNRPRGKEPERRQQRWCQEPEGVHWRMRCGFAMREGPEVLPALQGREDSRMQGQWRRQRLGLLLQSVARRRQDAERRKQRQCQEFATLHWRVRRRLAMRVRSEVLPAFQGRADSRLQGSWRRQRLGLLLRPQDRSEEARACNEVRSRQCIQLQSYQDQHPQVLRRELHPQVDWWX +>SRR5574341_165588 +XMGGYLSSKLFRIIESGDRTMNPEQPQIFGLIGNPVTHSLSPLIFEYLFKKHRIKGSYHLFPLQPEQLKSALEGMKILGMSGLNVTAPYKEQVLPHLYNLDESATKIGAANVICNHKGKLKGYNTDVIGVRRTLKEIMYIQAKIGAVALIGAGGAARACLQVLKELKPEKIVLFNRTAEKAKQLAQQFNSSIPLQHRNLGELENCRSERDFNLVINATSGRNPAIKKAMLKGLSLGSHLFDLNYNRDYGINHRFHKRFCDGLYMLSCQAAESFRIWFGKRTEAEEIHRYLKKRLKX +>ERR687887_1747641 +AGEAAQAQGDGAQRRVAGLDAAAGVEGAEAVDVDERQRRGPAVALGTAQLVGGGAAEGVVDEEARPGVAVAPFVELGLQRAQARLRVSQLAAQRLLLAGSEHGGSSAERRRSHSRWTRFGARSPELGTAHRRYPARPASAAARX +>SRR5215218_6855622 +PSVRRAVMPYWSVLLGGFARIPSGENRHDDMPVRLSAFVSLLAGVWAVLAVLSVWGAGSAAAAAGTRLVISGAFHATSARTVARDEACAYRPNHTLIYQSDALRLGRSPKAVVRVQFFIRRYRGLARYPAAGSAPYRRTAVQVVTARNAATGVATAFYIATSGSVAISQAKGVARAGHRASLSGSVHAKLREQDGSRRLRLDGTWHCRIEPDANGGRPRTSRRVQERSPSMTDVGSSRHCSGEAAAGLEPTNRRPGRASAGRARGRARX +>SRR6476619_648836 +LFFTTYIGWQPVLVTRDRHGELHCLLNTCRHSGTIVCPFQDGNAKLHVCRYHGWSYDAAGINRAITGEQDGQYPVAFKNANHNLINVARFGNYRGLLFASLCVDVPSLEEYLGDARIFLDIVLDQSENGFEFVPGPVIYTYDGNWKLQFENGLDFYHFNLLSPKSGAAADKIAALGPRLAHWNVIGASNVRNVASSRCYLRHHRNSMPFSVLARLSTYWCIAANDAMCRX +>SRR3954447_23271464 +NWRRLWRRYRFVATLEGRLERLGLLCPPDMMQGWNKGPAIWFPPPGRARCTAETAAQCAGPNAHRQYGQRPVAPSNEIIMSARMPARGGLGVECQEAKRHGRSRKSGALEKVRGFRPRCAQGAFRRPWARTAFGLX +>SRR5437588_9293553 +ASAAEMAAAAGLSLAGASALAAGADPATAKLATEPVGPSALMDGRTAVLGGDEVAQPPVSPPGPPAGGDQGAGRLRPVALLAVVLVALAAIGIALALRGNSGSTPTTTTTSVPATTAVTRPPTTRPPVTTTSAPTTTTTSPTTTSSSSTTTSSTTSTTSGVLGRVGGRDHKNADAANIGGGX +>ERR1719421_986179 +GSSSEDFGDQSSIQRCATLDDAYAKLQRESAVAGQFEAFAAATLDNALAERAALYRLDGAESYVDACEREASGAIMGLLDSLPGDDAPGALRALVGRALPQALRERLWSRRLTDIKVQREFRESRGDWSVRSPHEADVTAFCVRVLSDTDGDKLCCARSAFSFLDQKARESGGPLPSDVYWLAKPLLEVLALDDAVLASAVRCVLERGLEPATKPEGTLAFGDESTDNQSVLEGGAGAAALALRLGVQRKNTQRWWVPRDWLRRCRTLLVELCPSLAKALKCEEDTDDSENVIARAIGRSMRRGLSDILSTEVLLFVWDQCVLTSFDLVIPYAAACVLALLDEPLQFFLRDNEDPQVHEALMRLGKDLPLIDVEACFRRVVPKIAPDARELTDAISARPPPGLLVEASLPGAAALGGLADVVVDSLADGAGFTMHGTLHCFLRNLDCRLEWCEVFPAKDSLPNVVDRLLALPANRKCILKARQQWGDQGGFDASLREACAVAACRALPGLAALYAGSYPATIQDALKDIMKECVRFSLPVRADDDDRDGDGVKDEVEYEPTTGALLGEHVPQVDVLLRKNSKPQDPGLGPGSALLQAAGIFAIRAAPGSLWPHYSPGLMHLVYLAYNMLREQHHLAGIEESKQKEIAAAEKAIDNCRRAEAKKKELAQKERDSMNAQEQAKLDEQYRKEAREQQRKRIEAADAADEKVKDAFLACVNAAKECGDTYKKCREAFEAKERWRKQLIFRWSRGSKRP +>SRR6266571_3544720 +ERFPERGPVPTVPDSLVKSSPSNPSGNSPHSHSSPKQHLLRILEALSLSTDKALLRNMSILENNLRGNRASVTQLVDMLTRLRRPCVNEECRGPFRRLGEEEVEVAVAAICGEHLRTIHHPLSTLETGGGLKIACVGARARLGQRKAGELLAAYHLRKILLLLTRITELANALATGTVNGERKSGAGASLPAHLHSCDVNRPGKLQSTKVFWKAHAGESLLEEFPNVLARKLCLQVGLASCRLDLLLEEIAQRLKEEQIIFRSXX +>SRR5918994_7596206 +TQERPRRNRPGGDPAAGDARRGRGGDPGKGADDVPRVRAAQGPREPGGPQPGVGNDDGGPGPPAGVRGRGQVRAGRDEQCDPVAGGDPVVGEPDGQLVHAPDEQVPGDRADIRFDDGGGGVAGAGVERGPQRGVRALRVTARWTSGPFVRTYPTNGP +>ERR1039457_7143814 +XMLSIIGSVLVLGSVLGSFLMEGGSLLLLWHPSEFIIILGAALGAFITSNPLKVVKGSFVAIFGLLKGPRYGRADYLDLLKLLYDILVKIRKFGMLAIEADIESPGKSKMFTEYPRILADHHMIEFITDCLRLIVGGNLDPQELESLLEYELETHHKEAAEPGHAVQKVADALPGFGIVAAVLGIVNTMAAIEGADTATIGKKVGAALVVTFLGILVAYGFVGPIASAIENRAHEEGKAFEVVKMALVASVRGYAPAVAVEFARKLLWSDVRPIIVKKVKKSAAGHHGGAWKVAYADFVTAMMAFFMVMWLIAAVTKEQRAAIFEYFKNPSMEQGKSVRASLGQMGPGGASTSVINMGGGLDARRSASALSTGIGTPHNAEPTADKEKAQDKERAASSEEQARKLTEAADHKKLESLMQELRKAIDMSQALRPFKDQLLLDITPEGLRIQIVDAQNRPMFDLGSAKLKDYTATILHELAPYLNTVPNHISLSGHTDTTPYLAQNGATNWDLSADRANAARRALESGGLATEKIARVVGLSSSVLFDQDNPRNPINRRISIIVMTKQAEESALAPDAAPQAKVSELPATLAPQAPAVPSVAHX +>SRR6185436_12656879 +PHKNFLAPLARCFRHLDRGDKKMNSAKQRGISLTVLLALSVAVVALNAAPAAAQTSTYMKVDGITGSATDPRHIGWINIASLGQSASMPVQASSLGGTSAGHVVGACDVEVLKGLDAAGPLLWAALFAGKHI +>A0A2D6A177_9PROT +MGQIFLATANLLALLISISASAQSNQDQFYRYFTKRIELTANGQEMALEVHAPASELPAEAGLFAEVDGLLQPFGQSQRISMNRSKGAWVMTMAFRKVPNEGRVYLVTRSSTGTKTYRFTERPWESPREGELESTRPRAIAAKPLPEMKDSDVFRPVDSYYFPAMTARFGGVTLETETNVQRTVQAITTVCPQEPLNYDPLRHKRFVVEYFPAQDDADKVEAALQAPPLSTQSLRTTPQGCLALSIEVSHLWYQCQRYFLLPIRFTDPTTGISETLTLGVNPWDEGWVFARDARDLQPHQLEQVQCRPPQIHLNSYSLDGAGMNYSIDHNLSLVVEKNYYLKLSPRVQRADSITRGRFGGAALRDGFYLLNIGLFYRAEEGEITPKDYVSSWEQIVEVKSSEIVAPLKFDLKDMTLMGARNQILMQLQPIDESKVVLKPATASGNREIDQDATLRAENLVLENTGLHSPVYQGPIIPLSAGQGPILRPSHINLEQSIKLGQLQLAELAGDFQRRYRMTHFDRMFRLKSMLHSEPEARLWLQQTFGKYILAGPLFDFSVSPDINRSYLDKQRLQASLCDGWAGRFLRQQIQLDDQTTAAQRTMQIHYFEQFLRDFRQACIRETLDDRQTFSLSPSMMIRDIDPERTKYIGGTSFNYNINESFSLGRSENWGTSQSTSSSLSFSASLKAEIGVTSLGASRTETLSSSENYGRNLNESNSISYGRGTYLVVQHSQVEFVPTEYQACQVIRPKSEFIMDLLDKEVIERRTERPRSRMVHLWDRIVDFFKVDTDDVSVDTMTYRDVFGRDLSLDLMETGLRLCEDGTRTNDDSVIEDYYYVTQHFTAGDMQDTFDNRNRPWLMMIRSTRDFNVFLSNLQGQSRLEHRGVENIAPVEILADAYDDFAGTLPAWPGIYNPTERTRSDQTRCDNQVSAPDLLVSAIRQVIAGPFVQPDGNHIFSDRDFRRIWHCGEE +>ERR1712176_1124453 +KMKANNNMAAATANSAHADVVNASNKTERDRLAEKMKANKNMAAATANSAHAEVAKDTRRHTKALRKRTFATSNYKRFYGGAKAPVFYHQLLNNVYTVLELYTARINPTLEKDMLTEGLNDFMSLLQNDAFKNNKTLQTVDAVAEYLWTSCKRHAIVQDMEL +>ERR1719473_1570082 +RGGDLHKKCSSGKARGTKSAQSPEEGRPTKMITRTCRTERHLVFPNNAITMKKKHFSVIVPQEPSAQQDPRDIHLLSVTQTSRALDSDFGIRRLTAWQVPHSSRLAAFEQKKERRQLCNRAIMCCVTLYEFIPLTGLKRPEILFYLSRATDSQVPHASRLPLFWPTLSQADKX +>ERR1719473_2414288 +AGYDFNSCVPVPQATTATAGTMSMAEGEPTTLPECTCEGENGEMFCPGDSYTAPDGCNSCTCTETGVGACTLMACPEEPTTLPECTCEGENGEMFCPGDSYTAPDGCN +>ERR1719473_87410 +ISKMMRAVVLMCGFLALASSTNLRGASEDQKKKKDGPWPKLPLEHLGLKDFLDWEEPEDPIPPERPARPEGGLAAVDWDYNDAERARMEIEHSRNNEWVNGHAPTGQIDPVEPPMTEPERTLLYQLFGKATNLLEFGTGGSTIAALNFENIKKVTSIDSAERWKKLIEHRDDAKAAIEAGKLNLIYSDIGKVGTWGHPKKPNTKPIYKKTASSPGFHEDGSENGPHRSSPFGGLKMIDRIAMKRRAHEAVAQFAQYSGETPAAAGVADLILVDGRFRVASLLKALQRTPADKRSETVFAMHDYGYVSTKYNAVEQFVDKVQQADSLAVFKAKPNIDESALAQVIKTFEKNPKX +>SRR5437660_4872881 +PLARCRRASRVTARAHPRADSASSTRLSKRGLHPGIGGNIAQAGLPELYADLRHAGIKQAVRVPIAHGVAARLTASQVSFFASDPRVDRIIYDAPVQLSDTPFDPGALASLYPQVVDAAASWSNRPSPLTGNGIGIAVIDSGIAAHPDLAGRVVVRKGFSPDVKEASDTYGHGPAVAGIIAGDGTASGGAYVGVAPRASLIHIRVNDGTGAAPTSAILNALLWATVNRKTYNIRVINLSLQASVQESYQTSPLDAAVEYAWLKGILVVVAAGNKGPNSELYAPANDPYIGVIRGRVQLAVRTLVAGGNDHQDALEPGILHRRVQRAGLIRLLDGCLQRQVDDADVVGLAVDGCPEQGVQDGGRGRRPGAVVNPDVDQAGPRRDADIRASTGRSVARDDAGHGGAMPIGVTRVVDIRVEVLAGDDPTGQVGVGRNSAIDHSDPDSIAGQRRRAIAPAGRRVHDLRIQARQRTWIEWSVGELHRGVINDPVDPGVAREEADLRRRKPGCNPVGDRNPDRLLDAGVSQVGIELGQACLGNQDHIDGGANARRAAGFTVEPFVSPRRGERWSRRQGSERQADPEAGRESCPEQGGHPVTGRX +>SRR5674476_1677054 +GRPVAMDVSAQAVVVGATEVIDSSLPAAPVRVGASSRRAVSCSHPNPSTINRTIWFASRAGEGSQVGGCPASPLPPANPDNRAGTRVARQPPSSTGRSGTADPSEREDAAITSDGTP +>SRR5258708_27400449 +SRRVCSALLTDGSAMFLLRHLACSVFFFFNDPAPAEISPLPLHDALPISRGRPRAALDDAPERRAVAHRRGGRRGPGDHPDGARDLKSTRLNSSHQIISYAVFSLKKKNGGLADQPPDFPPRAHLHRGAGQD +>SRR5260221_9098150 +LVPDATPASPHRDAKVSAPRHPQPNNACRCPAPARARKDAPEAVATAPARSTRLGNTSFLPSRETSHQVAACARTLRSRAAQKACAETLRHLGTATRKGLRAAEVAWPQARIALCSCPTSRCRTPRQSPRSKKTKPHMAGQLRIVPMSRLPPRVRGDFGPAPLEQLPPIAPPCIV +>A0A151A617_STASA +MFDMLKTLKLYLAKDATINQYCKNRIRAYTIPETADRTDTNILIIPLIAPTPSTYASDKNLTTDYLFQIDVRSKSYEETKLVSEAIRLVMKGIGFGQQDGTDEYDSELKAYFETRRYRGNPYTIDELRHIDKDIEPTLNT +>SRR5882724_11345676 +RQRLSRPARASMRPVACAITASGSRRWRSSIARTAKSPRTPRSTTCWPTSTSSTTGRSKGWPPRRVRSARTRRCAGTATWSTRRSSRWPTTRATIARRRSCVGSGRRRPPSSRKPRATTPAPRCASERRRCSKVQVGRGRHLGRRPARRQAFSTDRKVTSHTIGHAGNIWSVRLRSRSMRMLRGLPRGEPSRPATIETAVHPDGGLVSLLEEQVLELRGALEDAAEAICRTDASGRLISVNRAFTEMLGYAAPEILGRSWQTVIAAHDRALVSADLEAGIRAKIERQAVGLRRDGTSFAMHLVLVPLFSRRDHHDAVQGHYFYIRDLTERRRT +>SRR5882762_10441494 +XMCSTEAIDGNVDDAAKEQRAALAFELKIQIGAPVLPLITDGKFVRQWSKLSEQDRKFSLLQEPAFVISWYRQHEALFEPIVCLGYDFSGELLGVMALARCREDGAITHAGDFHAEYSGWVALSTIDERFVEESLIAIKRTLGLKRWAWKWLAPGTPVGFLSSSRLAQNGIFATFRTERSPVWNLEDPERLNQLLKTKSIKNQINRFTKKGGFFLERVRDKERTRQLLKHLRLQCDFRQEAIQGVRPFADNPCKEPFFVERQEYPESNHFTVLWSNDRPVSFHFGACNRDTLLLGLTAYDPTESRNSPGKVHLIELARMLREEGIRRIDLTPGGDQYKEFVANESQELVVPTFYFSRAAKLWADLVEAARRTTKAALTLARISPNALRALPTRLRRATLGRLLKRIRRIFYENVVYLQYTTECKPSEAARDPEIFVQRYEDLLLYDDDNPWLGRRQLLSAALKRFGSGETLYSASRGGKLLHYGWMTPGGQTHLLQGVNATFHSPSDSVVLYDFFTHPEYRGQSWYQRTLRQMLQDLSAAGVRRAFIGVLQGNESSQRAIENVGFSPYRSFGRRRILWFEKKDERAMKPQNMTX +>ERR1711974_149456 +NAEYMGGTSLKCYSLVSGTSDDMGTETTCPSIANKFCQKTYDSNSGIVIKNCQLTGTNGCTSVGTLPLASRHRSVQWVGNYRDQTNDCHHYCPVDNLLRKNVLGWVEENPSNFSKSLSCHX +>SRR5919202_1515199 +GQLDHLEDPDPDPRRRRAARTTGRAQLGRPADGLADGHQRPQPEAAGRGGVCRARAAGPRRLKRIATNTPSRGDTPMNTFQKYLLVTLAVGLPATALSLPLWPPQPGADPSPLQIALFFGIFAAEGLLFGFGVAFVLFGGPLVRAATGAAGVRSWPVFVSLAWTLLSWWPHDGFHRASPLGDLDATLRIDYAFHLTLIIAAVVMARFFLATLRAT +>SRR5947207_7774739 +SGGPRAAGCEANRPTESGTTACPVASRPANGGSPLLLRSPVPARLQTRSRRPSVRFPATHATPGRDRQDRAPARTPPPPRPAGRETAWARTTESNGAPTPPALLHRVTPTVSRRRGTRAGARAWACGRHLQIDERLWIPX +>SRR6516225_11363389 +NVCARRVSTGANSAEGTVDPLTTRNAATLQEAKEELLDLEIPEHRGRSLHHFGDVLARQRTRIPLAERNVRDNLGLAHLHGLGYGLLLGRVGLARKVIAQFLDLRVTGPAKHSLVAGRIHEASEDWIADVSRHPSGYEGMPAARIRRVLLRTTRNQGLPVHRLHVDLEAGFLQQRLGHWRKVGKRGQIRRLHENDRGAVVP +>ERR550534_489957 +PHPPASSGAAPRAAGRAPRQMSAADLWAQLQGALELLSNVPLTHLTQQACVPYWVFGAVFLTHLTLLTITWIFWRRIRNVYSQLEQSSEDAATLSELFSSELGRLRVQLSQSQEDSESLDEMLGSILKGGLPGHLELTSKDYWCVKTMQVVYTDQDGKRQEWRQSGYRVNCFVPGGARDIEVTFGVVGGAECKQVDRSKPKFPYVYDESGRTKLERFSYERCPANVRYEIRGPSIAAFISHVTEVHGAAQPSGGDAAKETSPDAKRERSLSDHFSVAESRVCSX +>SRR5262245_51303680 +SRDAVRALLPRNENVVRRQHSKVVEDVVDGKPCPGYELQVCIHSCAFDGVPTCVPTSHAALAVDEHKILALRCDEMGDPPDETVSHPKCVLELPGEQSLPPRVDFPPTHGELFGDVLFVGVPYYFSLLKARHECSVTRPPGRITWCGSNPASPIRS +>SRR5690625_3526233 +RECFFFSSRRRHTRWPRDWSSDVCSSDLYDYDYQNVGGRWVHGFGVTSPADEPFSQPGDSGGGVYQGDTAVGVISGGGNLGGESFTWVADLDHSLEQSGTDFNLEKPGDEAPENPDAPKAKDQTIEPGEEVTGKAEAGAEVEVTWKPAEEGEEEGTDNHAGEEGSETVKADEDGNFSVEGPEAEGAYTYTATATVDGEESETTEFEVTVEKDESETPAPDEREISVDPKEIAASDFVKEDEGVTITVKGFDEGEKVTLEVASGPENVKGITLEETANENGAAAFAIYGTSASDPSAYLGKYDVEVTGANDTEDEDALTGSFEVVANEDGNGGGTGGEDLKSTRLNSSHVAISYAVFCLI +>ERR1051325_2865591 +WLEAAAGRHGGLGTKEFSRSGLLFGRDRGGSQPLHFVNATAGNRPLDLPSLPAFRFGGYSGASKVDGPSNAHDRRWLRLLLSIDSVFERQVFFRMGVGFGGGYTGRFTAELCAVAGGWQAGIGGRRHLSGALPGISHYRRVCGLAPRNGPALPGSRDLGCADQFAKSRPK +>SRR4051794_2477398 +VSDRRWFGISVCARRSNAPRQECWRPPDQIAEAIYLMCNAMFGIMCIVTVSAATPTITILLFCAAGVSWWASEICLVFFLPATLQDLLGVLRHQRVGVPGQFRHSLHPHLLSDVETVPLEAPQNHLRVARIQQPRHCFLA +>SRR2546422_7969508 +SATSRLLMFCFPSIHASPFYFFFFFLMIRRPPRSTLFPYTTLFRSKKQTRSVRPDSPLRPGGETHAYDEQPPVRCSSFSSRTQRDRKSTRLNSSHGYISYAVFCLKKKKKRNIKRVEAKVCARPPNAQ +>ERR1719506_1077933 +EKADENIEEYFAHLENKSGTCRQVGTVRIGKIYNDVWSYNLACDRQYDTPCNSEGWRLLDRGSLYGGCIIVNQIEVCQFPQERYGHMATVHLNKLWVYGGFAMFCEDYCIDMWTFELPDYRGYEQNVYVPGIGVVPGQTPLPWGYDVDLYGIDPIDGHMKKLRDHQTIGHEQTKTGDFPRWNE +>ERR1719159_229085 +PMQASMETLPCLISVCRRLAKSSALPSAVKPRGSQKPTGGCTPSSFSKALSGDASYNAQSPYAEPVSPSWKNIPMIAIIASLPFAISAASFFSFSAGSLDVSTLNPKSPFAAGVPGDWSCESSQKAPYAKICPQPATGTLEIAPKPFGMSANFKVPVAGWGQILAYGAFCELSQDQSPGTPAAKGDFGFKVLTSSDPAEKEKKLAAEIANGRLAMMAIIGMFFQDGLTGSAWGDWALYEASPLRAFEDELGVQAPVGFWDPLGYTAEGNAEDFARRRQTEIKHGRVSMLACMGYITPELTGKLPVYLSPSMGLKFADIPNGLGAISKVPLAGWGQILAYGAFCELSQDQSPGTPGAKGDFGFKVLTSSDPEEKTKKLAAEIANGRLAMMAIIGMFFQDGLTGSAWGDWSLYTASPLRAFENEL +>ERR1700751_3884456 +LASSIYGGEQGLGDPSTVLVASQWAKWTKDYLPTDFGLLSGFPYPFPINGGLNSRTVLPPPAVQRLVEKKVYVRGYMIPLEMDAKGVSQFILVGDLNTCCYGLTGDPNTWVVVYMKKTTAFTRYDPLTVFGTLHATEIAHGNGYETIE +>SRR3569833_572735 +LPIIPRRDAPAQIGRDTQSPALSVRLRHMGLDRVARGEIPKFDQGVLAGGEQESLGRNVKDHRLSRLFVFQALRPRLDEMEPGNLVFVSAKFELASLRHQVPYDDIRVLGTAREPHARAVKSQDGHGRAVAIEVDYSGCDLAIPEPDAAIFVSNSKHILVRLALRDSRNLGLALIVSTSTQYKTSSLAATSACPTPVPERSLDVHTMVEVLEVTRPNDLVYSYFLYD +>ERR1719329_115142 +SGIPKGTEADTFERTVESIHTALNHGDTIHHTFSVDAVGNQHDLQTSSPGGQGGCCKLHLINSNGISKPGGGSRPGGTSNPGGKRNNASASTSESLSARVELSSCRDLLAEGQSSSSSSLSSAKYTAVSTACEQTX +>SRR5690606_4275788 +YIGVIFNKEVAFELVEPAKPSSIHGRVLVLNQSYEPLTVCSVQRAFVLVYLQKAEIVSSLNGKRLHSVNASYAFPSIVRLSKYRRVPFKEIILSRKNIIRRDGNRCQYCGTTRPPITVDHIIPKSR +>SRR3990172_6323865 +VVDMVDGAGVAEPCREGKETGVERPAACRDATMLPAMYFLATLFNGEIPPRAVPNRFQIFCAPAQDLSQKDGWQHDTHSVAKALGRGVWVREVPVASDEDVYIARQQGQGNGHVLLAAHQVALLANEVGGRHRELFVVRAGQEGIEHVRLSGRLEMPPRLYDDLFRQDQVEIVRQRRPHDLVRPARQPDTGDEHVGVQSDTEPTLRHS +>ERR1719186_79813 +LILLDSLLQEIFAKSLNRKLNVKRMGDDMEYLTLKVVGTDSNEFHFKLKWVTQLGKLKQSYSERMGVPVSSVRFLFDGQRIGDDDTPKSLKMENNDEIEVFYGKGGPIDRAKTALQDAVQKDNTNVIKFLLKFGANVNAKFDGETPLDLALAAGKIANCKILIEHGAEFGLGCWFGEDYEYLLRYQQSYKKAVKQVTNNEELISENRYTELTCEEIQWLKELKAKKVKEVDSQMISMDHKLDEVTTVNKNKIKVIQNQVDEVKENCDEKITALENEITIARKKLNDLEFEKNAETLNMKTRIKTLEQQEKEIRDSTDKIEFERLVTVATKSKLNKEFKMIDFELKRKGFSESTKRTVTGKTPSKTDGLEFVEHLKQQISSMEQELECPVCLEVSEVPIYTCPSQHHICAKCWSDVKSQDYESGRYPCRRPCPVCREYIQDPPSKHRSLEKMAQQLKQARAKLDKIL +>ERR1719186_361628 +TEETLLARRHQSRGKMSKLTDPAALKSSPQVWTLYLVPQDLLTRSLACQVLGRSLPHKTAPAHCPLTLHLVTVQSSPSTSGGGEGDPRGREGRHAGGQTRTGTAGRTRTTTRPTTLPRSWRWTEPASSPRTVWQLX +>SRR5215208_4256899 +LCHTVSLHPKTKSLLWQICVRCAIWFCVLSRSDMLVCRRQVSPSTAVSCNRSHELVTDASGLTFGTDVVKRHGSLAHDASCSPMIHRANSGHTASSLDLKAHRGCFAINNRLDPCLLALLLGEPKGADERHRRTAGGVGAADSTCPDPGDHGLPVGSLRVEMADPLLGLVAHPVTVVTHVFGQSPCPAPALGVAYALARLRVYRRLSGELRWDLDQGLGDEDGDGVEVGAVGFEAKALGFEGDRTSPAEGVX +>UPI0003AA342E +MFNSGAETVSGAYIELRVDGELVNSWNVTLAEGGLRELEYDYIWAEHNPTVMGYADPGKVIDELDESNNYKSIWVAIAAPRHDVQLGAISHSGGQWVELTVELQNLLGEVPHYRLSLFVDNATAPEYQDPNQVQELYYVEGFNLAYNESRVVSIWWYNTVGFGWHNLSVEVEVVDHSYPDLNLSDNRNSTSFYLKQIFYQLSLEIEPLPEKIRLNETVRVIVHAFNFGPEILSEGAEVVITGNGTQCEPGLQRTRELDRATGEDTLEFFCTPNSTGPYVIEARIDPDNIHDEPNEDDNFATGVVNVTNEEFTPVTPPVISDDSFITQPIVWVPLATLAIIGAGMFAYYRLRGDDDFLPGTRGRQSGGSAPEQASGSATFRYDAESGITYDANTGEVIGEKKKDX +>ERR1712099_209071 +ILLCAGEEHISSGNRSISMERKRKGGSGEHTHTTEEGNYYANTSAVFNFFLFLSFFTVGARKERESISLHYHVSFRLSLNLYLLRSSEIRYGHLLIFIYTYPPGQPEFERHSIKYHQKYKKNKKKKKKKKKKKKKKKKKKKSKTKKKKKKKKKKKKKKKKETH +>SRR5437762_3435613 +GQRTGVRDVDEPGRWRSGEVWELGQRAGRRVELVDQRVQAGQRRGQLSTQISALRKLIVDRLDREQKLGLLSEAEVLAREGEAVPVAVRDAGVGVGRAAARLRRGKAAADGEVAARVAKTSIQGRLGDRRGAHGERGVGEGLEVLR +>SRR5579883_1301911 +PDLPRYGEFHAAVGRAVMLAAAYAGGWIMSAAIAESYMEEGVVGLEPRIVRIESNVANLNEKVGRVETRVDTLDAKVDRLDESVRSIDRGVAVLEANTENIKENVATLQIDMREMDAKLDRRFDSIDRKFESLDRKFDSMDRKFDSIDGRFDSIHQELRGVTRTLMGIVITFFTTLIGFGAAILGVLAKG +>SRR5438034_829519 +RPDWQSGQPGRITNPSYTIGTSAPVLENTAVPKQGEIDYVSRLTPDELRFALDKPFSDAECGRYLMELGALMYLLPAPPARLLDLGCGTGWTSCFFARRGYDVVGQDIAPAMVSQAQLNKERYGVPNANFVDCDYEGLPFRDEFDCALFYDSLHHAVSEEQALRGVYRALKPGAVCVTSEPGVGHARRQSSLDAMRKFNVTERDMPPTRIIRVARRIGFRRFRLYPHMKPFGMLLYGKSESGILAKLRWLPYWVRSLALMFYASFYKRFNGLVVLEKX +>ERR1719411_249020 +KSTVYIKPTISNSFEHEPNHHPHSPSASYSFSETNNSSTNPDFPLIEPQYGHFAHLKQRHNRPQSTPQKLVQFKAFKFDENAYDVTANSQSIHSPQFIQANTPNTITPIQTPSNQQQQQQTQNERFQQLIPNDSTTVMTPTPSPAPSINIPPVINLDLIDLGSVNKSTARDNGGHKF +>SRR5262245_60002328 +TRLFQGFLSTLLERSDGWQAHGSAWEEALLSFGNRSQPSGRRRCHWRKEPSRYRPARSTQRLVFEDKKSCWEKPICSIQPALRLPPRGRLPRITSEPACIAQSPAAFAQRKPNCKRPASTQSPAPKPNVSSSALRMPLRGLRRLRH +>SRR5438132_1115162 +SRNLYRAEASRGTGFPPYASDFAEAPSLARVYAQERGRVMGGELAELAARVRVGDRHGAVFRHRVEATAIRAARNAGDGPAGGDDRQIEDAERAPRVEVKHVDEGPAVGVVVEAEVPLPIAARDRRLVDAVHDAVDARLGVVAICLRGELHVDDQRLRELRGWDVVDPDAIGVGGVHADQRLRGLRSDPLDQIQGGSVVADRVIGEGTRDVDVGGDLEETRVHDGESASLAGRSDEHKPPAVRRESGGSRTVLVGERESAWKLNARDRPPGLRLDQLQCGRGCAVERVVPGSVWSRDGAAKGAQEITLRVADLDVTGGSDDELVAGRRRGRGLARPSARGEEQAGRGX +>SRR3990172_10122028 +APRPSRARGDPRSLAPGPRGGVARAGGCAPRAGDRGGARAGHPARPPDALGECHPPADAVVLLAADPRSAGGARDRRHPRAGAPAGLRPRAALLGPRRRPSPRPRRLAALAANPLARAPRRDGRGGCRDGADVADGRGLTPAPVTGCWWGVAE +>SRR5262245_24698148 +ADLVVPLLQPGIEHVARQPGHIRGLEHLDGHLDAAARSEEQQTQEELEESPEDYTAKPRGRVGLSVSERAAPQTAGSHQDDTGFGDSLEDVGSSAGWSESLDAVALDVPRRPQNECASLLEAILDRVNRCLDLRA +>SRR5579863_8325721 +ALPADSPRIARQRLEQLVHRGKPLFRTRAETAEQDLAQPPRYLRVLRHRLDPSADHGVADLEKAIALEGTFPVERLVQRHAKTELIRALVGLKTAVLLGRHVVRGAEDGASL +>SRR5216684_4526886 +LSRGDIGDATGAAAAALRAAIGGARLRERRPEILGRRDGLIDVFLLRGVEAHQSFDRLDQSLGIANEIAIDLLRRHVLGNAGEEASEMQDLAVRPAHGGEAVALSQDFGELWIDIALVVALVRNYLLLNHPVCLGDQRGRALGGGVVERIDERSPPGPAAASRRSPPTWPGSKAPCRRRCFRSRSAVPVARSX +>SRR5262245_20684417 +IALPEPLPGLIRRVRAPAPVLGALGLDEEGDDLGVTGLDSPLEPRGDLLDVARGQLVGKIHVEGGDDLTRPQVHAEHRGRGLDAGLLARDAGHGRHGLRRRALADEEGLALAGEEQRHPTQQEADRDGGEAVQNRQVQPGGGDGAGERDEQTEHRRGVLEEHDESRRILALSNGLVVPLCALGRAELSKGDPPGAALEEHRETDHRVVHHGTGHRARAEHVHEALVERDAGSQGEDQQRDDEAREIELTAVAEWVSRIRRPGGAAKTVEEQRLVGRVDERVHPFADHDRAAREAARGELRGGHEQIAEQGRVDHLPRCAARHGARPARHRPRAYQRGASDRAAFRYTAGVTKLGVLALLALLAVSPLVALLPYDTGSIRLLGVSLGWWYAVAVAPVVAVLVAALSAPRRSPSPPAX +>SRR6218665_887351 +RHNRHNRHNRHNRHNRHNRHNRHNRHNRHNRHNRHNRHNRHNRHNTNSSYRQNAHDPETSAWISRCNSVGPHIRLLDGSALNPDRTTWGPSLGGGPQSGLVNLHRCSAPASPGQSSTLAGQPTPIQDKVRNTYPAGRGCRWISGCQRHGQQHLPRRTIYPNTTHNPPSTPPLTPPNNLRRHETESTLQRAEDPRPLGVLGQSVGERGVGRRLSFWVVSHVIYREAFFWSTVTX +>SRR6266516_6846987 +LAGWPPGRPGLAATATWASAAFEFGGQSRNSAGVAAAEQPGSWRDWLVVRPFQVDVRLSEPLGDLDGMRSLPVRRDQVQAWHQSLARVVHFEQRDSPALAGLDAVQTMSEQALTDAARVYAEASRQLGDGDARGKDGRVLGGGSRQRVVGSQIACGKVGEVHASLFEECDLGLRQLRSRVGGGALRQDVLNGLHDQLLKVGQGQVETRTPK +>SRR5450432_930278 +VVRKSLVACLGALLVLQACGSSSNSGSAGSMAGSPATGGASGAAGASAAAAGGSSGSPAASGSGGLAASGSGGLAASGSGGSAGSGGSAGSGGSEPAPPWDSSLRARATAGMVPLATWYSADTGLWNKTDWWTSANQLETVIDYTREVGDPKYNDEIDNTFVKNSGNDFDQFGFYDDDGWWALAWIKAYDLSHQQKYLDMAKVIFQRMTGGWDDKCGGGIYWASAKAGSNGLMNKNAIPNSLFMQVAAKLHQRTPGDTGPGSFLDWAQREWTWFKGTGMLTAKHQVVDGLDGLTTCKAGGPIFTYNNGVLVGALVDLGVGTGDATLIDEASAIASATMTLMNDGKGTLKEAPCGGDICTQFKGVFMRNLAALYRARPAADLQAYAGHQSDQLWTANRNAQDQFGYEWYVPFDKADASRQSSALDALVAAVMTANLNLALVGSTATGSAPCSAAGAASNAIDGSSRWDSKWCAGGMGGQTLVVDLGATRKIVGFRVRHAGAGGESSGWNTRDFELETSADGQTWTRVVSVTGNTADVTTHGIPPVMARDVRFHVTAAQTATDNLAARIYELEIFGTGLX +>SRR5512147_282644 +GGEISHMLRETVVSAVVSSGLRQATFAFCPYLLPDCGAVIVFGRHLRQQAIAKPKRRVGEAAQSESIDQFLIDRRPCDNNLRTARSQTFHQTTLSKVAFREFCIHLGQGLSRDKALASGAIHIFRKRRQRCRCSRCRDHPLRSALSHALFKLAYLFPDELPHPLEFLRFGRIALDEVLGETNRSKGK +>SRR3972149_3229708 +PQNLDALYPPRRFAEPFTGTPCTPLKHGDGARRRMDRRGTNAAGDGNRRVHTPSVQIRVYGVGHVARRRKEASNVVAYTARSYYGHAPSHIDAPRQHVEIGDGGRMIDAGDVRGSREGPGGYHYGIVPVTQHLLGTHSRVETDIDTMQFELCSVITQHFAKLRLSRDAQRKIDLSADLAACFVKRDAMPPQSGIDCHRQSGRSRAHDSNATRDPPRSKRKSRFPAGAGIHEATGRFISENVVETGLIAGNAGIDLRCATRRAF +>SRR3954451_16501819 +WCGAGRSADRRSPPATNPPGPGRRGTPVRRPRALARLESAGRSARLRRVGGVAVGGRVDRGCVGRLVRLSWRRRPGATFRREAGGRAPGRLGPAGQLGQPGLQHLGHGQPVAVRGLVVQQGLDAARVQGPYPLAQRGDRKVVVVRQGELVVAGHAGSLPRPATAEPFPRDSSGRCRGVTDRNRLVLAATASEAPRRCRMTSPTGSPRWYWVTPSTAWSSSTASSSTAARLRSSPTATRVAPTVPX +>SRR3989442_4700027 +SVCRRQGRGLTSHASKDTAANENPLVVEYCHLGGALDAGLVRGTPLLNLRNEKAAPDGQVQRRSQIFCNRISGNAEPGAQYPAVADKVIHNAPDRARGNGETYADVSPADGEYRSVDPDHFTGAVEQRSPRISGIDGRVRLNDVIDQFPALSLNRSPX +>SRR5215472_13468930 +CEKGMQWTFFGQEKTLSLSGLFRNLIPENECRFLSDKRPAHAFYEFKTPATIAAVEESMNKLRRLPFLILLAPVRSSICLGAKALCRNELQNKRSLRPALIHGHNTTKNCVNPRSMVKARSDCAPVAAARSFDSEKNRGSK +>ERR1719158_407498 +DDLSNHPLSSSRVSKYFIKFFSIKYKFYTSVCVCANYSTIRSNAPAVTCPNKTLNARTIATTSGDAVFIWIRTADIRTAEIRTSDIRTLEIRTAEITTAEIRTAEIRTAITPVSSEEYRPAVTRRGWIYGSTVATMPGRFTVX +>SRR5262245_10967354 +DATTSSIGSLAGSNGAATVSGTGSKWTVAGGFTAGDSGNASLTIQNGGLLTATSSIVGNLLGSSGTATVSGTGALWSTSGALTVGNLGTGSLSIQNGGIVSAVSSTIGNAAVSNSTATVTGAGSQWSITGALVAGNQGVANLTIQNGGLVSTASSTMGSVAGSSGTATVTGVGSKWSTTGDFTVGDSGSATLSILNQWTFSVGNTLLIGNQGTVNLDGGTLRLGFAFGLIHLNYTSGTIQLAGNSTTGNTDVVGQIFGLSPVIPANKTLAVEGNLTVQNFSPLTIMNQGSVNVGGSLTLLGNSTVNLYGGTLRFSSYAKDPTATFNYLAGTIQLASDRSIGTDAAIQSLFGSSPTIPAGKGLTVEGTATLLTPVALNGGTLTVGDIINPGLLNFQSGMFRLTTANLQVSGGQFGSTLNVASGQNYLIDHTTNLSIDALLSISSGASFASAQTNNSGEIA +>SRR6266481_4594428 +DFQHALGTAAIGGTVSRAAVDPARLRLWSVGAASRPAGSADDFQHALGTAAIGGTVSRAAVDPARLRLWSVGAASRPAGSADDFQHALGTAAIGGTVSRAAVDPARLRLWSVGAASRPAGSADDFQHALGTAAIGGTVSRAAVDPARLRLWSVGAASRTAGSADDFQHALGTASRAAAGTTGAVWQHSWRHRSAARRRHWWCLGAASAGATAGRPRRAVQPPAAVCSRATVDPARLRLRSVGAA +>SRR6185312_13763440 +HFYEKKGLITSRRTSGNQRRYRRDTLRRVALVRIGQRVGIPLAEIAEVLATLPEGRTPNRRDWQELSARWQERLDDRIRDLQHLRDDFDDCIGAGCSPRPADRHPTARRSAQSAPVTAPPSGSADSARRTTPVTAGSVGSAEWVTRAPGHSACSWTWTVPANRAATSGGVTVSSSAVHTANQGSASPTRSRASSVISALPGASCRQAAGQASGATTDAVAARDVPARGAPRVTTRRALAAPSSRATH +>SRR4029453_7084716 +XRESAPCPTGSRPRTTLEMLAPLVGVLEQRRVDRHGKWPCAHPSSFSLSLLASRSWGVVGAMAERRPASPAREPGRVAARPGTTATRTPADGGQPVSKATAARVRHPSWRDGRDQPPHPATSVQPPVSVPPASAGGTFLRVLNGWPRVDGVQGRGPAIAGTAGP +>SRR6266850_5569252 +RRGQAAEKSGALQYCLCGQSHDGIPPAKHCEQCTSCVVLLTEPHSECAHDALDGEVAVNTQSVKESIMSITKVFRTNAIGVAWVILASGPMTWLANAAQAGESLPHKVVSFKDLNLSSTEGAGVAYRRIKSAADEVCGKRDRFELSQSHAIQTCINQAVSRAVAQVNSPMLTSLYNAKTGKADKQTTTLAQTHX +>ERR1700690_1151612 +HHLVIHKTEGELPAFLKDLVQKLIALLDGPLHALMLDREHDRGLDGHVQGASEPQPLRLELFAIQHGKNALSARGNGALDKYGSACALRQRDHSYPASGSNLGNSAVRAKNSGSPGNPAEWNGGRRSATAWPSPTAFPQASFAAKAPASRPKYGSSAGPHAGRGRTSGMPWAGPSPRSVRLRTWFPELFPPWSCPSSPPCASX +>SRR2546430_15524557 +IYTLSPHDALPISVERLHGARHAVTVWKIEPPASKLPNRSGVPAEATGGSSIAPPAERSPGRYVKSPIPTPLATVEPFASFRGSARPVGRPPWLFAAARCPWVTFPVVFTRCLNGSGPDRSSAMX +>SRR5687767_7487181 +EPGPDLALEQRLRTASPYIEWSLEQTWDYWQLDIQSSRPGSDPAQRTNYIAQLNTQLRSAQVIRAVHAQNQLQEVMTWFWMNHFNVNLPDDIVRFTIHDYERQLRRHALGKFKDLLSASAHHPAMMVYLDNNLSTVSRYDNRGRLLSGLNENYGRELMELHTL +>SRR3546814_18830037 +FLFVYIMVLHYLCFFFLVVGRIPGSPRTDTLFPDTTLFRSWGLRRGYPRRPFQRLGRRSAPVRRRRANGDGSAVPTAMRPPDRNCLRCLAGGSGRSSHRASGRIAGLATPDRSRRRPEPSQATPKAAPRRTPPPCGGYRHRTRRDRKSTRLNSSHX +>SRR6185312_7772205 +RRTSMPLSLPDYDTLWQQIVAFFRNRFTGKDDHAESFIGKLARSVGMAIYGLLQAVAAVDADSPPSESTSSQGLRDWAFVFGVPADTDGDYGPKGPSLATGGQGDCTGTLGTVFADGLLLTAPDGQTSIKLSGAVSIPGTPPGAGSVLGSFVAVTPGSSGNLAAGTVLAWESPPSGADSTVTLKAPLRGALDAESDPSLLGRTRQRMQTPPKGGTAADFRFWAESVPGVFRAYVYPLRGGMDSVHTVVTTAGSGLARVPSDAVRSAVDVEVAADRSVTVEGYKTLVPRMVAPGMALRLRVAPYPKFGFHWSSAGASYTVTAYAPPGSAVATLX +>ERR550525_1171417 +EKSSLFVHQCSQCSQNGFCRKCWIQFVRLQKDDDDEKSHPVSQQKTGNSKQNAVDLTSVSDEEIDDGNDESSPTFPRRKRKRPMNGQDTQERNAKKAKRTVNVDCNTQSNGDGNNSGATPIMPLVHTERGIDKSNGLNETEHSNDRK +>SRR5690242_17665658 +RLLRHARGNLAAGSPGAQARRPRPVALSGAMARMSFANVVVWIGALAACGDNLGPVEETVDAGVTLERAFRGEDLPGCTLASPVLVDVAGDLRIVAATSEGRIAAYGRDGSARWSFDLPRAEGERAEVASTPVVVGTRVVVVWQAFAADGARIS +>ERR1700687_127959 +RIAPPDEEQAFRLQPCGAMQQRGFERLAGHFAAGDYVLGGFAHGGIGALDGRCRLIFFASVFFATVEHHYDEAIGFQLRRDGGREVCIHDGVSSVSTVEGGTRNSAADVCRAKSLSPGRRLDAGTTGSCRAALGLGGEGARPHTSRVQQRWIHSTLVFFPGRWPPALPCRRCDGARSRACPIAVCPSPARVRLX +>SRR5256885_2151122 +NSILKKEQIGIHICDRTPMDPIAFNEDSEVSAKAKFITERLSPGKSRRKAQQGQVILLTGAPEELETRVVGRHKQSPAALIGDLQKRLQRIFAGAIRPSVVDTFGLSIPQVIKRVARIVLLEEYCPSDLATRLKELEKVGFFPPETPTX +>SRR5205085_4486535 +CRTRTRSLAEGGRGWRCGYAVGLYLDRSCGRRSCRDVRCILASAEPGQAKTPSWTKRAASHAGKRHRGARSWLSLKNVGMCLTCPRVPVASGAVRSRSYDPANPRAGEEAPNRDGEARGRGAIADRRGRRVVRVPRGDPRAARRSVSGGRALGVGPPPAAHARDQGATREASPGGRLVAAWRADGLEPANGSFAERTRSRIRNSPFHRPPRYWNEIEQLARERPHAEAGAEGGRDLRQPLARVDLEAVRLLEPQDEPKLVQREHRQVDARQEHRGTDDPVLARERRDEPLADRAA +>SRR6266545_2846328 +WRSRARAPACAGRRARRTRAAGRQRGAEADRKGGPGDSIDRPGSRAAHRRRSVLAARRRPPAPGRTDRRAPRPAGTGGRSRGHDPSRGPGPPHGWQGAGDRASRHRVARRGEGSPGRLRGGLRPAQRDPGAQVLVARRPDRARPRAPGPGRRRRQRRVRFDRPDRHAGGEPRRSPRGSARLRRAAGSRHRRAPPEEDPRPMRPWRRAGPVLALAAALLALARAAGWAGPPPGAAAADLLVEAGAALGAGEHERAAALAGRVAHDPRPIARQDRAEAWRILGLAEYALGRRDRAESSFYAYLKLDPDAHLDPALVAPEVLSVFEDVRARHAAELAALRPRPQRRRSFWLNFVPLAGQWQNGEHRKMWVMGSAGALLLGANITSYALLRSWCGNSGASATCDDPDGTNSRAESARTMQVVNIASGVGFIAL +>SRR3990172_1023493 +DLDDLGRTSGRCEMSARGAAACAFLLASTVALAQSPRVLRLEGGAAQIRQKERTARAAGVFGGLWRVEGPRLASLASAAFTWAGDSATAAQGIVAAAWRPTVESAWHTEGGVTASAFGVYALGRGGNRSAYARERVVLDDGGFWAGGAAGHTTRDGRSWHSTVVDVGAFLRSGGLETSVAFARLRTNDWPLMQASGIFLETDAAAHDLDDVTLAMRYARGALALDASHTWRGGARKTLARQTAFLWSAAYELSPRYAVIVGGGRQLADAVRGVPDAMVASAVLRVVLFPWRADAAERATARSSARVEQTAEGAVLVVRVAVNDSARVEVAGSFSGWEPVPLQRTSEGWEARVPLGPGTHRVAVRLGGGPWRAPRNLGKVRDEYGGEAGIVVVPX +>SRR5438132_1110025 +VRGHDVTRVSAGAVLGANIRALRAQQGLSLSELARQSGIAKGTLSQLENGQGNPTIETVFSLSNALNVPVSSLLAEVPEPSVMVVRSAGLDVLSGTAVDLRLLRRMDVTDTVLELYDQRVRPGQVQQSAGQPGVERGRAAGHRAGPRRARLRHHRGRRGQCAALGQGARAGARPGHGVAAALAGADRRARAGSGVGAQGRAGRVHCGPRAAARVRR +>SRR5581483_1731585 +VRAPADGTVAVAIDHLDDNAVGESDFYNLAGNQVVIDTGSNRFVLLAHLQKGSVLVTTGEVVHAGQPVARCGNSGKTTGPHLFLQVQDQPRFGASGVKTFPIRFRDVTCLRSGHPRTDAPFFVRRNDRIVMDPPAPVKSDTIGQTWFPNGDTIELLSVERNDDQIVARGRYHLASHDHATLGLYITSTNISRVHEGREQTMVIGRGDGSFQLIHPHPVPGMPHVTMYADGKGIATVYFGTEDEAARSKKMHLQPLASTETWTPAFATGETPDMSKILEQAQKL +>SRR6266496_2749558 +ELGGLLGLRPSCPPPYRRGTDASPHRSRWRCPEAVDLWQVSGLPMPGPDGCPTDRERSGIGVANAGPLVDAKRDALDQAHRAPRPPGHPPLVVVSERLRMLLHSDEIPVIAQPLDDLPGGRDVAAVRRYVASQAERRDESMSASVGRVLTDLLAKDEARDLNVKVX +>ERR1017187_5553991 +RRRNSGPARACPAMCCGARLGTGWRSVGRVEAVDVIQVLDALDEAGVRHWAGGGWGVAALAGRQTRPHRDLDLAVDARDLGSCLTALGRLGYAAETDWLPARIELRSPGDRWVDVHPVAFGEGGHGRQADLDGGSFDYPPDAFSHGLIAGRSVPCLSAGQQRRFRAGYEHRPQDVHDLAQLDALRESATHGPDSWPLTNLRSYPLRISECPVCTGSSGSGPGPATVQFVPARVPAAGVTRRRWSIKGLRCGSRSEEHTS +>A0A2G9SB67_LITCT +SNKVPVVQPSHAVHPLTPLITYSDEHFAPGAHPSHIPSDVCSKQGMNCNSKYEKTLSCILLGEDALHYVDALQNTKHSVTKQEERKSEQKTRSALTDLLYFFILLRYSHHMVPGPPGPHTTGIPHPAIVNPQVKQEHHHNDNDLMHVKPHHEQRKEQEPKRPHIKKPLNAFMLYMKEMRANVVAECTLKESAAINQILGRRIFASQSGTIILHRNLAFYIAGSAPVHCDARREQSLAQRGFGQRTEPSDRGTLQDPGDKWHALSREEQAKYYELARKERQLHMQLYPGWSARDNYRHAASIPGKFEAHVDVESLFSQGKKKKRKREKLQESTSVASRSVQWNRSNRSDASRSDLEERFLYYFGGDLHRLLYRSRLASRHGSRVQVTSVRRPASRAASNVNRR +>ERR1739844_819532 +MGEEYMEDHRGNIDLELLQEEITAQICLRILERSCNTNEAIDRMCLEDEDGDGELLPESGGKMMTKRRRKQRNAERDLTRIKVKLDRDIEELLGTNKHLINNVGLGVWDILSQMTIPTLSSQANVRALDLRGGAYDSS +>SRR4029434_248713 +SRSCEERMMGWEGREEKVRGGEVWGGQGERGGERRRGVGVCSEGNLSGQRRCEKTGSQWCSVMFTPHIHTHTRTHAHRHTCTRTRIRNTHTHTCTLRSPLQSRQTVTRATNKSAANTEVELSVTYQHTPTHSTGQTICCHT +>SRR5207248_268926 +ISLDAGAHVEVAIVKQRPAAVRALQAAKINADLALKLGIDGLGEIVPHQHIFTRYRGIGFQLEYPMAVGLLPLEKGTGGALNVLFEGGNAAIVHRSRDHFVYEGRLSPRAVVPAERRSLRKQAWAREPGPIP +>SRR2546428_1292487 +GRVHAGRFQLAANSLDSQRMTPKPRAFPLLLSLVLAMFAPQQTRAGEPHRLQVKPEQQILTAQEYFAAVLKLPDSHGTPLRNRVKPAGARDEFGELSDYEEVIVFKQLAAGYRAGIPVERVQRWISAYDAGRSHDNIFRRLASLATRPGLIDCLHNIEGRKDSLGRNVSPHMAFRYCAAGAQPDEITAQSLEGRALVILSYSDFNGALEVQQFARLLDNVRLSYRLSFALARTPADVHAAVAKHRNGPRIIAGHPVRGGIELMRESPDGILSSVAAQTLVEHLGGEALVVYSCRGGERFAPALAAGGARGRGRPRGRSAPHAGGHAERAPYTERRTPLPRRKG +>SRR3954454_11295577 +LAMLTPVVFGFLSKQQESMDLNADGLANLLVGQKDNIKAAMPAGLEAALSSALPGGGQVLGGNGPTEPELAQVEGKSAASANRTADWHSRAVYSKPHRDAGKRLSVPVLLVLGALAVGILWARHQHNRQNDPPSVGAPAASPSETVTGSSSSVVPNMTRLINQASGTLAGIKDPASAEAATLRLRQINQQISGLRSSWSRLPESARSAASTALEPQIVKLKE +>SRR5207245_10474605 +FFPAGCGPAPYADERMPGDSLHNAEQGRWAVYAAVLLEPRAKVRDPERVAVGQRDDRHENVGVWQVLLGRREMFRSRGSGNREAPAVGVQDAAEHRRAIGPWQTHPVNGPRVADQR +>SRR6266480_972767 +DVVARQDHEELRPGGAQDVEILVNRIGRAAVPGRLVEPLLRRQQIEKFVHLGAQKRPAHLQMPQQAVRFVLGEDSDATDVRIEAIRQRKIYDAELAAEKHGGLGAAVRQLFEPTAAAARQHQRERTPRQPFLDPRRGQHGGVPPTTRLTQSGPRGEPIRKGKANEAKNWAYKMNRDRSAFLASSPTRSRTX +>SRR4051812_21032643 +XMKKVMVTSCSHSHGWRSVRVTTSQMTVTVNPEMAMPHSTISASSSGSSARHFRWRWVCWTSEGMAPALLDVAHHVQDLDGVGTEVLGELVLDGFAHGLEAGLVDRGDDLDADLLQARARVTLHLEGLGRLHLVHVVGGL +>SRR5579875_2506212 +PNPLVPRGSRVSEPASTPVVVHSRRPSPLFPGRTRAATQTNWAPRAATSASWPSTKSRLAWSSPCLPDQRAENTPGMPCSASTHRPESSATAGSPVYDAIARALSSALSANVRPVSGTSGAPGNESRPATPSANPAADRIRESSAILLRFRVASTRRGPAGSAIEGFGLPPGQLRTPGCRQVEQRRQHRPAERLAFGRALDLHKVPGPGADHVHVGLRHRVLLIAQVAPGLAVHDPDAHRRHRSDQRGPLAPPAGLQPCDGIRQRHIPAGHRGGAGAAVGLQHVAVDDDRILAERLVVHAGTQRAADEAGYLLSPPAEPPLDRLPLAPRVRRAGQHRVLGGHPAEPAPPPPPRHLLGDTRRAQHPRGAELDEHRSLGVVKPPPGKAHRTQRVRRPSIWSCHIAFLIGLIGAGSFPRAGSVYPTGIAPGCGPGTGYGPGTGCGSGAQEPGREPGQAPGAETGARAPGAGPGPARRCCSFMPTAGGCLGCSRARFERIAX +>ERR1719468_912648 +AFDEFLIVSVNFIEKFTVKLFFNRENVTEFRSMAAHIFAIFVFFRSSFSIFSLPDFSQQGGFEGWNSRDRLFWVGNALETANLGNICNHWRAEVPPVCRLGTSFLQNLICRAGEDPLGSGSFESIALIRSFIANAGEIAVDLLTNLFNGIFRGSASDSSESFAKRTKTVFTRNRLFGRDRFASSWIFLQKQIGCFAVLDNRANGEFIRESVNWSFWPNX +>ERR1017187_631561 +LRPRPDRRQEAADQHGSGIEGASKPRRQHQTRRGQEVLPPRYALAWQKRLQGRSDELQLRALVRTQCGRDQPKARRGPGGAGQARWTGDKVAMTAASQGPDDVGPSVSSSSPGNGFTSTKIGARLGRYEIVGTLGHGAMATVFRARDTQLGRDVAIKVMSMVHAARGGAGERFRREAHAVAALKHPAIVEIYDFVSATENEPSYIVVELIPGPTLRTMLEERGGRFLPEIAALIALPLAEALAAAHDHGVIHRDVKTDNVMIQTSGQSSRVVLTDFGVAHITGMETMTATGALVGSPAYMSPEQSRGHEVTAAADLWTFGAMLYELVTGVVPFSGKDPFTMIAAIVRGTFRRPSQVVATVGPDFEAMIMRCLKASPAERYPSASALATDLREFTRTAGLVPEAKGLRGFLDEPDAMLADLRPRVADMAVERARQFARRGQLARALAEIGHATASVPSHTGADKLLRRLSASRIAIKIAVVAAGLLAALGIVLAAKPLLTPHVPAPVAPIASPVASPIASPAGTTPAPVRKVQAVAPPT +>SRR5699024_12213394 +XHYSAASALSPLSLHDALPILPHFAGAFVLRAPNVYGDSLRFGRGGERTADFELYTAAGDRRVRSDERKLVYIQHGIRRGGNGGEDRKSTRLNSSHVSISYAVFX +>SRR6266508_47967 +RGSDPGAFDIELGPVAEREVEHVPRTADVISAVEQRAQSVQGDPAADLQRRGTAGDPGTADEPASPFEARRPSYRTGLVAGHRRTPDDVLGTVAERLAQDVRARGVAAGQLGAEGAGVRRLGDRVLRTDVPAGDAQLGTLVGQVRPDRERQQVAAVGELDGTAVPVRPPRYVQRRTVQPHLTVVAAGQRTQEGQIALVQLGADPARGAIEVDRRGQPVLAGQLVGDIRGRRVVESTGTPGQPQVLQPVLGEDQHLRLLGGRVVGLDRADPSLEDPPAAVLRAERDGERGTEVEDVAAEVEIAGGVVAEPVVVQPRLAPAHPDRRLLHGQGKEVARRLGVGCAGDGEDGSGYERGHSHGVLNQRSGAVGVRRSRVAAGAVARGWVRYGRGPQEYRTPAVARAVPAPRSRX +>SRR5215831_1420303 +RMRVSVRRVKARPGIRCCAGEESVRIGGPVAHGGRTGARPRLEQSLANSGGPIEIHTFREVGQFQVVIAVFYGDGIGIRPIGVAAVSHSIKSVAPNVDGFGRLMRPDNFPRRAVHDIWPALARDQVSLTSPHLVDARIARGIRVTVPRGRGPAKRGTAIAPAVWGGRLRISDVVGSHRIFMNELHKSRNGVAPPQTCARFQLHNESEIIVAGPGAVRKRVVVNLHGSAAAMDVRSQPVGLQPGVSSDVIVAEHKARSGNAIERPAVSRKSVVFGKHEVVSPKIRAVCPRRIAVAIGVALAVPTRRGKLYKEQISSLVEKIVVNYAVEPALSLESVRTVSSD +>SRR5690606_9332282 +RQMADSSSSLVPATKQKSFNRWEERRVGKECKAMFTVYALYSEKYNKIYIVVTSNIQQRMLSHNHLGKKGWTVRFRPWVIVYTEEFQDKQLALKREKQLKTAKGREFIREIIAAGSYPPDGGQQFESGPRYX +>SRR5688572_13872492 +PAGGRANGQVRLRDGVPPMVAAVLRTATARRPADRYPDGAAFGAALDRAVGRRPVSPAGARRVARFRRVAALVAVPSAVVWASAASTSAGGRARGVPGSVTDRSGQFTVALPDGWQAWRARLTDTPRLAERSPAAMLITPSLGGWQSDPAVPGAFVLFTRG +>SRR5581483_4009571 +RVREEVARAYVRRELVVPELDGGDRRAPDRLASRELAASLREVDAEAGPLGDDHVDLAVAVHVAEELLPADLVVGGAPEERLAGYDLLRRDLEVGLAGRALGRVERVGPDAVVADEDDLLRLPGREDVAHVHDHGARVDLEAEVGLLPERARGALEEDPHLAAEEEDQVLQSVAVQVLEQDLX +>SRR4051794_2395804 +RHGSDRELQERECRRVVPCSPHRDRPYLRLCRSSGRASRRSPEAEALLHRPSDRRLEDGRHIQSTCRTWRFARSQSCHRICLCLNNQSRGISLSFSSLSRVWRDAQFFSGAGMKKISRTSMGKRHALTPLRAHAITSSTSAHSSIHKPPTCSLVSRYGPSVTSNSPLGCGRSVFVGPRPPANFLTPAAIISRLSAWISSIIASSWVDGSKLSGRX +>GraSoiStandDraft_16_1057320.scaffolds.fasta_scaffold8539811_1 +RQRHPRLRARQHLEPQRRGEVGLDGVQPEPIAQPHRRPVHKPLTGLRDLALERALGLAAGAQGQRRQEAAHLQAARAEHAQLGQAQVHRADVAQGDLHGERPLRHQPLAARRARQPPHELQVAPPQERRARRELQVAAKEQRRRAQARGGQRPAAAAHPDDQKDQAQREQVAAAHGQGRLFAAPGRQALASFIRLDRLARPRPLARADGDLGERLGDDAGGAHAFHLGLGDEQQAVGDDVRGERLDIVGQHEVAPLQQRPRPPRVQERQRGARRGPERDPPVPPGEVDELHHIVEDLLVDVHARRHAAQLEDRLRRQHRLQLRPRLRVGAQHLLLGPELGIRHVQLHEEAVKLRLGQRVGALVLDGVLGRQDHERLWQRPRLALERDLALLHRLEQRRLRLGRGAVDLVAEDDLGEDRPLAQDKVPRRLIEDVGAGDVRRQQVGRELDAAELAADHQRERLGQGGLGDPRHPFQEHVAAAEQADEQPLHQTRVTDKYLADLLDHRLAEVLGLHQALRVX +>A0A0C3LW61_9HOMO +MKYSIAYFDGYKRHVLPKGKSETMWLGRPGIPKGLQAGLFHLKEGQSGTWTCNAEDGFERDIDLVDHGKQFKIPAKTQLDFEVDLESVIVGAASN +>A0A1I2KW36_9BACI +MKRHLTGKRLKYKSMTFIDRFSAVQLDVLKEVGNIGAGHAATALSYLLERKIGMFVPSVQLADFDEVVELSGSAEEVVVSVFLKIEGDAPGGMFFILSPPQAESFVRIMTGDASFTIHNPKSMGIGVSALKELGNILAGSYLTALSDLTQLTLYPSVPSLNIDMAGAILSFGLLELSLVSDQGIVIETCLTDPSNETKESVEGHFFLFPDPDSYDTLFKALGVSAYD +>GraSoiStandDraft_57_1057295.scaffolds.fasta_scaffold1415339_1 +MKTYRRTELDRTGLTRIAGCGVGRAAAAMAVITACLAAVGCSTDVNARRTIGAERELPTLAGADATHGINAERATRLDRGDWEPVDFRLPVDGTVHNALLKSEPSFGDEQPRAHGLYPTAESALDLGSDRGAEAWRGVVEPVRSFVDLAIMPVRAFTDPAWGKRQSASNFKRWRSGAWYAGPVPEADSGADEDGG +>SRR5690625_3860754 +EVFSHARGNAAFEAASFDGQYKGSLDLFTGSDTERADDALRRIISKVRVGEVDVPEMRIGHSILFRPEMVLPACVIASILDTHSFGGLRNFAIAGSAGGAIRRVVRQVKLHHAAPDGLDPLAAGGNLQALCYGSGTGGWRPASPRDLHQAKPAGAECLHHVVCTKLGNFNSSQACRAHDRGAFRHADLFSIDRELDELVRFCSGGAVVGFFHERHLFSPAPGX +>SRR5689334_12383051 +ELQRERHPRHRDVCRRGSRFPASRRQRCHNCVLDRFRQSPEDLESRPVLRGLHIYQLPDGSGLCRYRDLHQRVRRRRIELCIVQRLDPPLHVPHPGSLGNPGIRKPQLLGHPDVHLDRPVEIHSKNESPMHTLDHVQRRRKLTFLGALLAALLAAGTASAQVGLGLIPMREELALGPGAAHSGVLTLNNDSPARVRVVAELLDFFIDSTGTPQFGRQWTQEADYSCRSWLSVNPMEMELEGNSQISVRYTVRTPPAAPARGYHCAVGFSTQPTAGQARGTGLRTAVQIVAAIYVVVGKPAAQGSLKDLTLEYVADARQPGWRAVVVLANPGVMHYRPSGDLDVFDQSGKVVESVKFVPMPVLPGRDQRFLFPLKLASGPGKYTLRARVDLGDSEIQEATALVVAAKDSRX +>ERR1719375_951704 +ENAPDGGAHATWSGFSYWWDLLRPDVELHAELRVRVGVRDLPLRTRREGGLPLRPCQLRQDPPRRPPDRLRRLLHRPSCLLLLQSLFFGVTLRVLRGLQLARLFGCGPQVPLEGRRVHLPKQRRVPLVRGRWGRHNPRPFFPLREGDVERPTGPGRGGRPPEAALWSRPGGQPKEGARGHQPASQRQGLVEGEERRAFPDGAPEFGGWRAGCPLGPKVPEEVRERQNGCDLLLIPLPLGIPAELEE +>SRR5690606_30224247 +KPLALQWCVDSWGALKERRDLITDAWHKCCVSLFNVMDPAKRIEAVAAVARQELEHTHVPAEIEEQHDSSESDSDDAGGTDGDTEDDDELDVSQPKEFGSRKSQRQRTQATAFGFQLDSSAIALTEDSEHXX +>SRR3954447_19024062 +LGAVARQQALEPPRGVEPAEAAAGDDDAPSHASASPIEGRSKLFRKPAPHAPGAAREGVIRNCGEADLVAAEREQQVGDAIGRRQLLVGGRDAEAVDTTLPVEEQDPAGFADQPGPEPAPFQDDAGLALELTRVMTEQVAEKALRDGLRVLAARPFSAQDAGAAECVQLRNDPGMRDARDRHRCGEWLD +>SRR5205085_4690665 +RRVGWRERHEEERGDCRPISQGHGHVHGRQGRADVRSERRRPEVQLQGSLTLRARRRSSRLPRASSMFLYGRFAWSSGDDVAADSTRWSAGAGWAALAVALCWCNCADAETEVYLVRGWFGVFSTGMDSIAQKLRAKGIRAEAIMHLSSKSTAAKIIGEREAGRTSRLVLVGHSQGX +>SRR5712692_4144902 +RNRKEETGGVQLMDPYRLRPHLDIQRGHKERRTRKVQAWLQSLPSLQKPTDTEHIIRLDPIALFLIFFAVTSFVLVIVLTNTPINIAGPATDLGGIAVNYLLITAPIAGFAPLLVGSYFYDPRQLGPILRPVTFGKKVRRESFPDVAILGIVAALAVVTVIDYAGTYGGFTPTLSFWNTTTNRIVYADGGIFEEF +>SRR5262249_38079830 +FADGMFEGVVRAFVPEAQTWADVRENRSYADALAAGVASDEGLMLCAGLFADELAELVGVEATPDQRESAIAVLKGTFQLPLRIYNALMYRILKDGVNVRRPEIANTIWDMQLALTIPISSQMVRTPLWLISGDSAFADAGRAAGVPHVVHRLDDYIALX +>SRR5581483_8213852 +ITITYTAMNGHQYSVRKSAPLLITYGFHQQRPWPIIVVLVTRRVLQGMPHHSRQRSVTAFKHQRVAVPPGHGRPRRHLRGSRAHRAGAAAVLLMAAGCALIGCAGSVQGLGSSSHRVDLTGGGNPPRAGNSLPLPEATARRLPAGVFYLLAGPNPLSCNVWEVSRSGKETELTHNRPNFGISSFGASRAGIVMADASTGADELVRLTAHGIVPLPGQHLGSPAINRRGEIAAVRPPGGTGTKAYFYLVVKKSFSAQPHRTYRQHPALGGLAWGPHSS +>SRR5579863_3949436 +SDLRDRRPGRGRLAGVDGIHCARADSRLDHLAFLLRRGAQSSTICVSGDAGGVLLLVALAAGRGPSRRGTCGRRRKRDDFHDAPAIGCAMSAHPFRLNSEKLSVALRVSLFVLIAWSGLILFPWLISGVTGDFTGSALSTFAAAAVANAILVRIYEHGQLSAVGLVWQETSTRELFTGMAAAAAGAVAIVAAALILQMAMFESAPRVENAWANLAFLGLVLLFGAAGEEMLFHGYAFQLLVRALGQFATILPVAVLFGLMHLNNRNVTALAVANTMAWGVLLGYAYVRTGALWLSIGLHFGWNAASPLLGVNLSGFTIGVAGYELHWRAGILWSGGGYGLEGSLFTTVIAIALFFVVYRVIPDRDRQVIPERGTX +>SRR5438876_2751381 +YRREHHVEDPRRRGGRHLPRAEQHGRRSRVRPAAGTGCAAVRRCGAEGGGGEEAQPSEGVTRMLDIKLIREDPEPFRTALARRGLAERVDELLAADERRRQLTGRVEELRAEQNRASKAIGRASGDEKRTLIGEVAKVSAELKEFEPELAEAETALTL +>SRR5215831_6834791 +RFQHGCLAVSIHLFASALNSSTFAGPSFHDGSNPPGCPTLGAAHDLARFGRKAQFPKSSNPTRRSPAVGAFQHPTLTGALLPRSGRPAMRLRALIGRQRRVKKLLLRLSNREIHGAITDLTIPQVLSHRLKKGTASIWLERRTTAHDGIELTVAQFDRRHVAEFRGGQRGYVVGRX +>SRR4051794_29872810 +EQVLLQLKLMMETELGITGGISEREVEVLELRRQGKGPAASGYQRTAVQLSPGAPVYLRHVDAAYLADLLNTPGNLPFVMDATGLLVSFDLELGKLPATLAEWNAALKGSGLCLVRGRRELPVFVLRENGGRQLTGSHQSPANS +>ERR1719217_1201603 +GRACRWRSWAAWRGVAWRGVAWPSLPLAFLGSVAYIGARVRSMTSSALWSAFTSSRWRSSIVMGESSPEALWLRNPFGSPDAHGTIRHEITLAIMKVVRLDEPVRAAQPMAIARGDVMQGLEQLAPGRTYLLREITLAKGR +>SRR5579884_3263431 +XMSKGLILGHTDGKASKLRSFKALFDRSLDDKVACQRFLQAFQRKSAKHLLRLTPAIHTAVFAPSGAGKNVSVVEPFLFTSEESAFVTDIKGENAELTGRFREEVFGHKIMRLDPWHLTTDKPARWNVLDLIKTDDPEALDKARALAEAIVEKNPNDQQPHWPKKAQDFIAGAIAAVTHFCPPELRSLQQVAEILADKTLLAQVIEKMKQSTAHGGLLARKGYEMSASADKELDGILSTANQSLAFLSTPAVMESTKCTSDFDLSALYEGKGATIYTIIPLQYLKSHAALMRLWVTAFTKYVVSRGIKNARPVHVILDECAAVMAGHGDTLDEMLTVGRGFNMKVTAIFQSMAQLKKLFPPGQEGVLLANASLLFFAVNEVEDAKYVASRLGEETIIVQDWGTSDSESEQPSGQGGRSKSYSRSRSLNFRQVGRQLLKPEEVIGLHPRVALTFTPGRPPIWTWLTRYYEKDFGAPTGLSPAKMIFDTACLFLSSAMLAALWTAGLFHHWFQX +>A0A1Q9BUH2_SYMMI +MCAEWEPRWTAQLQAPGQAWQSVLQRAGVQPTPPGDFANVSVEEMRTAISEGAGGAGFDGWTAKELRGXCTSCAWLVDDLVSLFNETLQHQSPEVLQACRDSVFAWRVVGIPKRTEAATRPIAVASSLVRAFNRAILKRCPEPPEGQQCGVSGQSAVTATLQWLAVRAQRGAELDLRRAFDTIDHRLAGCAASTYGVHPVVIRYLQQLVWCAPRSCVVGGEPPPRSIQATCGLPQGDPVSPLFLSFVLGPWFKIVCALPAISAFLYMDDRSLLDSGDRNSLEPALRLTEWHDHTLGLQEHLGKRQQWAIDGSYAARAVEHLGLTATPGVDVLPSTRAGPDDLKALASQLQYLPGAMEMKERLLAAFILPKISWAAPLIPAVEFSIVRSCFRAIRGHVTWWCQGRVWADCINLHPLFAACGCKCGQGLKSPQGYHLQAYGRRXTPKESTTSTSKLKVQLALAPVVIFKDIAYSSAAIPDFDLALPVPLLGSVGSCPGCCPRGSIGER +>ERR1700730_765710 +HRLWCDSLHSAVAARGFNRDTTTPDKKTCSALSRSMSQRNGACGRAQLRRNCAYAGRLCRTRSGAWTDHGITDTGGPAIRAPSGMPGPVALSTQARARRSGSGCLEPGAGSALRERNLLFRHLLCNFPAQPARFRVPTQRRHVEPLVGRHEIDGNIASHRIHHAELIEGLGRRRRTPEGCAVDAVHLETSHVSVSQFPAARRCGLRGCTPSPPAETWRISGENLKGGLSKSMNRIX +>SRR6476620_3825097 +TERCRSGSARSRGARREHRRRRGGPGCGRHFRRTRRYRAGLHEVDARALPRARGRDAAAPSARRRLDSPFRRRGGGAVSAYPHLFSPLRIGNITVRNRIMQTAHVKLFAYNAVDSQRNVAYQAARAKGGAGLLITGNRVVHPTSTTGFPRVAWAYLSEALDADQKLTDAVHEHGAA +>SRR5438132_6851853 +APPSRFFSIRSTMRIWSLLRRGCLETLDDALQQLNLLLLDVQQLDPFLYPQVVDAAVQLFDQHLGLQVGVQVELGLQTVFGRLAILAHHDDGRGVRGLEAQGQVEQDERVWVPRASKNFVDVQHDPGCKQKRLDDDEPPAAHGGRDTV +>SRR4051794_37294934 +XMRSCRASSCCVIPRSSRNRRTSNASHSSSEALGSSSSARDIATPRGRVYPCLSDRGFASHGSDAGPCWVAIHPKKEDRRMDATRNVDYSVYLHAHHGATPCARDVLAGKLTEWHMPELIEDGSIIVAELVTNAARLGEVFRMTLRNPGDGMLRIEVEDRSRAIPVRKDPLADLGNDDYDANGGRGLVLVDALADDWGYELLPDGKVVWAVLSKX +>RhiMetStandDraft_4_1073278.scaffolds.fasta_scaffold432969_1 +MYRSRFEVFFEDEFEHPFMIMIIMIMIIMIIIIMIIIIIIYRYNNIIHTMWIEDELQKDQTGIQESIQRLTRDYQSQLSRNIRSHLSENREKTTDFLKHFYHKLRNAEYILYHQHAGTGTGTGTGADCENDAYCRLTFNITEIKNSAHDLPHPRILSELQRKYEHNRGIAQPNDNGDNGDTYIPYKVYTYIREKSEFCIQFQATIYGRVITLYFITFPESHISVCNRSSSGSGGSRCAAETAVYQTYAYKAFIWLSIVTSMADKECSEKSLNVYFYMTPFKKQRPKQSASGETDTVLSAIHVNTGLTRNCETHGEIVVYRTEEWFKVFIHESMHNFNMDFIDLDLRAANEQLRRTFCIPHDDILLFETYTEAWARIINTIFNVYFVSAATSATSATSQAHFIRNVREKLTTNALFYAHQAVKVLNIMGLTYGNITIQSPENTEVSRKRYAENTNVYAYYILGGILSVYSLPFISWCCENNRSRVSAIRFSQHPSNLTKFVDFISSAARDPVMLSMVAFIEKAATTTATAATAATAVVTKTMRMTMDX +>SRR5215217_9088951 +RRGSDRPVFPPPRRRRRNRRGRWRGCRAPCAAKGEGTRKPSTAPPEGWLKASGNHGRKERRSWAAGLFELGRREGPMGLHDVFRLGVQLLGKRDQQRLVGYDIVEDPGEETRGRGGRADGVGAQAGDRQEPTQALLVARKERKSAECDIFGLLAGNSFX +>SRR5260221_1043445 +LHDSTTNRATRLAQTPDDLRGLIKSRLDQWDTLTPGLRREFLDNERTLRYFTHVDATNNPAERHHGPSDDEQARWNSLSENERQKITAQFNQFFELTPDEKQKTLKTLSDAERAQMEKTLQSFDKLPLPQRRECIHAFAKFADMSTQDRAEFLKNAERWSQMLPAERKIWRDLVTNIPQWPPLPTSLIMPPMPPMPIIPNNIRPLVATN +>SRR5215204_1812972 +PFALRELVGDTVKSLALRAHAKGLELACRVAPDVPDWVVGDDDRLRQVLVNLLGNAIKFTDRGEVVLSVSRELGNSGDRELGNSGDRELGRSEDRARHQAAGKQPSSVCPEFPNSRT +>A0A0B2WMB5_9HYPO +MDQQLDFSTLNKSLVIKAATLFLMIVGLLACITRISMKWFTVRSLGLDDQLAVGATCLAVAQSIVVVEATSNGLGKHVGGLQAGQIDHVLKSEYAAHVIFIASLTLAKLSAITTLWALAPLYHRRTVVITSSLVVAWTLSSILPALLQCQMPRPWDYISGQCFQRAAFWMYVSVGNIVTDVAIVVIMTTIFVNLQLPLSKKLLVGGIFGSRILVTPAIIGHISTWHEAITNPGDATFRMVMPTILAELVQCLSILTACLPYLKPFLDSFQSGAMVVVDATSQNARSKGSKAGTATSAAYGGNSKNDTSTSNNNNNHINHNNMNNMNNINQHHHSQSHSQSRSHGHSYSNSSGHGRAASGVTTPRGHPDEFELADMPSSKTATTVTANQGMMDAAMEAWDGQSHTSQTVLVQQSWQVDIEHNLPARGNGRRV +>SRR4029453_5233173 +DPRPSRTRDRSSLSRSSSHPTGLAGALRSDPWTGRPAMLAKLQLPVVAGRLPGRAGRAAIASTVSAMEPAAVVGQIGVTTIVATRDRTPPGGGSATGWPGPAARLERAAGDLAGGPRSVVAGDQAGLVPGSSVRTVLHGRATERSVIDRLLEGVRAGRGGALVIRGEVGIGKTTLLDYAAVAAGTAGTRNATVGGTAPPGRVAVRVLRGAGIQSEAEPPFAGLHP +>SRR5690606_9372909 +YLTKSSFTMPHVAEGCIIEFSYKIISPFFFSIDDFSFQSGIPIKKLEAKFEAPSYFQFKPTYKGYLPVNPKHETKNSPQLGDVIKRTSYSLIDVPALKSEVYVDNINNYRSGISYELSAIDIPGGMYKSYTQSWDDITKNIYAYSSFGAELEKTGYFEEDLDILIKGVTDPSEKINLIFNHVKSTMNWNKYMGYGCNEGVRKAYKEKTGN +>SRR6266436_1748777 +IEFLRRLTDVEVAAQHAQKLLDPKLLRRARTSENRALRTLVAMAKPIWQSLTGRKPSVNKVAGKRKSDFVTFVQELAKIAGGPEPTFKQVQNAFRARTLPILLTAKEVGARLKVSLSWLAKARMRSDGPPYIRIGRSIRYTEATTMTRPVAHRAAFEAQTPTEVRAKTRAGAPCIMRVVPGKRRCRFHGGLSTGPKTKAGRVVSPHAMLKLTSSPANTPHHCSPSFGKV +>ERR1700722_19782650 +XMAHCEASAIAERFVRLRGSVVGENENCGSIKAHDCAPPFDVMAGLLPALHAGALAVNFLIHGLPAGMAGPPPAMTREGWATGLTELDTPAPRSRGEPLAEHRQAADRLRRGRLVLKNVPMLGEPAVFEAHDVGGDPRRGTTVAGKTAVGDHIIPSGEDDVIFIAQRIRQGANEIEQAIAARRNMGAVLDVSVRPEALCGGVVAFVEQRVEGFENKRLVLRSE +>SRR6185295_4310521 +TAEEVREYVVRSSEVGKAVGARVVISSAAGMVAIKAAGRPLGARSIDLAAIEASALLGVTHQIVGRRHLLELLLGLLVAGVEVGVELLGQRAIGLLDVLLGGILGDTQNLIGIGAQGFLPSATRHLTTSAVAGHDGAWRRQRGRGAAADRGSCSRLPTPAGLCRTSPPDRRAPSPPRAAPGRKPHPRPRSFARRSARRRPPACARWLRPLRETPHHRFRARRRPRPSX +>SRR2546428_4765453 +FNCTPVTLPDAARVCPAGREKLVSVLAIVARFDIHDRGRRFGAATLTRQQQGECTMTPRNFVVRSLLMAGLFASALPGWADCQSNFVNRITQLRPIKLGTSGSNLRDRVIFRNLECCGGTLGALLTDTNGNYYVLGNNHAMGRLNKGKKGESITQPGLIDADC +>ERR1700722_5782801 +PTNFSCPQIEPDHDGTMLDFECEDTRYCRYREDCRRAELHDTVVTNYAHWVTMLRSPTGSRIGGFSTLILDEAHLVPDLVTDYLRVRLSRAYVQARLGLDMPEPDQSLRIWRSWATGARREAEQRAERAPERSKEGRRVSGLADTLARIADIQDGEEWLVDQTPRGAELTPVWCARYLERYLYAGIEQVVLSSATLLPAITRYMGVGAGQSVTHEIDSTFPIERRPFIYVWPQTRLQETRVQYNMSNTVRRAWAAKMDRFIGDRLDRKGLIHTRSYDRGGEIPGLSQWSSAMIVADRRNGRAATDLFKRAEAPSILLSPVVEEGVDFPDGAARWGFIAKLPSVDRRG +>SRR3712207_4962885 +IVLIIKHVVLFFFFFQAEDGIRDIGVTGVQTCALPILRVSFNSIGADYLRTAGLPLLRGRGFTTAEATQAGGPAVALIDDALAKKLWPNGDAIGQQLQLAGERITNTSGDVTPGEAIEVVGIVPVVRSSILEKAPAGAIYLPFARGFQNNAFFYVRFKAGAQANSAATGELLRSTVRSVDPALPVLSLKTAAQHLDD +>SRR3954447_3399888 +AQLTAWNLATVRRLNSWIIRATTSLPDPVGPRISTEISDFAAVRIHSKTISIFSSRPIISRNRCTDGDWSSVLTAARRSRNVSRSSTVASLAGRSARYRGGLLPATTAATPKSTSSLIQFSTSRRSRPNVCINDSTSKLSSGRALMYRSNPARSGDCTRLRNRVSRSAGSAVLVALAALARRALKIRSSMDRLSLSAGYRRADRGGPLAAIILGLVALDQRFHRHRVAFTVSVADDRRAATAGFDENVRQQHACINFDGGDMRHVDCFFLPPDPPWLVLHDAGRRNQDLRREKVIAGTEAAGAEHI +>SRR5688572_24783379 +ATVICGMNRPIVWRTPIASMRMSAAQTSTVRVDFISSCCRVARGLPNDHRASRACARLMAIQGMTNRNTRQVPGNALGPRVAQNAPIPKSRSTRSMNPRHLALATFLACAMPAAADCKWEWLCNGDGACKQMPVCGSVYDRPPPRPTESTPPATPPLAMRHNTFAGRGANRGPPLTCEHIMRKDHTGRWYWSEACFCTDAARAKDPTPPFANIVRCENGTKX +>A0A1E5AL09_ALIFS +MIVNSNNILSLTSTSRVMSINWALMNNCNYKCKYCHSDLNSGSIKSPEYNIVVVFVKKIIKQCQQLNLTPYFEFGGGEVTLLRYFSELIELIHKNDGLISIISNGSKSLDWWKANTPYLGGVSLSYHVNDIKDNNHFIDVAKILEQSKNTRLHINVMMDPERFSDCLFFAKQLKKEIRCSIALQPLYEGFGHGGITKKYTYTQEQEKEMQTFRGRADNKNLPEPRAYLDVIYLDGSKKTLSTFDLLITDNVNFIGWDCYAGIESMVITFSGEIYRAWCMQDGPIGSIYDEIITLPTTPIRCRTKICQCGADISAKKVNTTLLKHYQNSIETKYIE +>SRR5262245_57968688 +XMICLQILVPFRFSIVSARTHWASDAKQYNKSHARPPPAPGNCPRAAVDHWAMARQFRWCLRGASRMAVLILGNDRDEHAECMRAYLSTKGAVVEFLDSQRFPAELQIAHDPAAGSGTIRLPSGSTWEFAEIESVYWRSYGGATAAELPDAEQAFIAANDARSLLESLLLCLPARWVNGLAGYRWHQTKPAALARVAALGVAVPATVVTNDPQAVLAFADRHGRCIFKPVQGGAHTQRVTREHLTEQNLASLAVAPVTIQEEVPGVDVRVFVAGPRVLACEIRTEVLDFRKDPRADIVAIDLPGGVAETCR +>SRR2546425_387409 +PKSGWTLAAAGLLLYASASHVQAAGAFVRAGASYTVDKWDAADFVGFDSAALPPNEIIAMTQNRDGYLWLGTLNGLVRFDGVHFKVFDEENISGLSGSPVIRLFEDSQGNLWVGTEIGAIALMKDGQITTPLETGLGGRERRLMSVCEDSSGAVWLYTANGDLWRCRNGECRAFPENPRAQSVYRGVIAEPSGTVWVGSDHRQFAIGPVPGSASFELPVARQLPVAKLDFLLASQHGGHWRLADGRIQKRRGDQIEDLGAYPWGLASVSAACEDRDGNLVVGTRGAGVFWFEQDGKVASLSTTNRLSHNYIL +>ERR1700751_958828 +LDGETGLQPGVATHVQALGAELGHAPGDHILHLPGLDPGPLDHRAIGRAQQLVGMSVLVVALLQVPAPNRGARGLDDHYLTASCRHQLSLSGTGPAPEPALRVYKHQLTVTVPRRAGPAGPRSHPSRPAPRRGRDAEPPG +>SRR6185437_9543277 +LWSMRGSLRFGLGCRSVRALTVDVPSPCFVRGFHASARSALPRCALPSPRVTRRRRMECGCFHCIQTFEATAVIDWIDDGETPLCPYCGMDSVMLEVTDLTTLWRMRARRFGMEGLAALGEGPFSVAGPLDD +>SRR3954464_8629952 +PLEHAIARVHGRVISFDPATSTLTARVPASALRRLSGRRDVASVAAVPVRRRLALSDFVATTGAPNFWAAGYTGGQGTNDSVPATLWIDEDLDTAHPDFHGVNWENIPGAAPGPLCGSPSNDAGGSCEHGTQVASLAIGQGVDAAHCPSGITCTASDAQQKGVAYGIAHAISTQGGGAAAPPGGYWDIFGFALGIYQTGGSSCSSPLPGATWPAQVTNESYGSGAGTVTAANLRDDSIFSAYGVLPVPGAGNDGPTASSVASPCIGYDTLCVGSYETNASVSDPADDSISDWSSRGPGPA +>SRR5450759_3105029 +SGWSEEGEMFVQSADSATRPQFSASYSHLITCSRSSPSPSHPLSSPSHLQSPSRLKSPTLLALPLNHMVKATIFIHMKTTLNIDDALLADARRLSRIEEKTALVHAGLEALIARESALRLAALGVTERRRRPVRRRRPARTATRX +>SRR5580765_3100358 +LPAPGDAPRALSTKNTEHQEHWAPRARRAATARIATKLTSHPIVTRIPMLAEFSAVLETVANSGPGIGAGLAAGLGAVGAGLGIGQIGSAAGEGIARQPEAADVIKGNALVLSALVEGVALFAAVIGLLLVGKGX +>SRR5690242_3907823 +RAHPDRPPRRPRLPPFAVARERRRALDRGDAPRAGAARRGRARDVPVAEARRARAPARLLARGARAARRGRRLGAPSGGIRRGRSPSPRPPSGDSPMSKPEVLRQHAEELFSEELAELSRADDKQKPPNWKLSPWAVRTYLCGGKLPNGFEVSVKYI +>SRR4051812_6319949 +PRPAEVMRDDRRHAADGAIGAERAATIEVSRREMIRVGAAARNHPGFESRARRRVMLPVGEYVDGRLGFGLPAHRAAQGDGLLAIERRAIGDVVDHAVVLVPREGEPAEQDVGGEGQVDVSGRAALVVIAEAGGERAGGLVLRLVLDEGNRADFRAAAKKRALGSFQHFHALEIEELDNTAPRTADRYA +>SRR5580658_5004565 +YLKARQRTRTKRGHERNVGGIAPARHQNTADARLVMAGIECVPAFSQIGLKPGAKIHWGRIRWYADVTEIARAVAHRDVHAAAQGDGEMSKVPTYPALFGMDIPCCFGRTRVFITKFNAIVDVVADRLNKAPSSGNICELRPCDLDEAIRLAISAAEEEDERVDGEVLQCMLLRPQVHRVRFALVLHKEVRRHCELACGSMNDMAEIAENVVIGIGKNRRIELQAIPGQQVGCPGWMNTQLQDHVRGLRAIIRDLVARMNLHRYPLRTSQPRACRSLAKIIAPQKFHCDAARNKQHKSSALGSIRSLCRX +>SRR5919197_97304 +QSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSTERSAGGATQAAPAQSPKRSRERSAGGGTPAAPAQSPKRSRERSAGGATQGAPAQSPKRSTERSAGGATQAAPAQSPKRS +>SRR5215470_420408 +EIQPGKFETLSNASKRALVAAMNKSRSSRGNARNGAELGSINLRSTAVKVDLAEPCSPARHKTGYGPLAQRRKDKGHAENEIPVLIFGSIFILWHAHVQELAKLIDRSTTGRLRQWQHSAGAAKRDGCLINDAPAVGIDFNRAPTRISEVEIQAAIECADPNVHRALPTVEMCTRLDDVERRLDRVGVRSARR +>ERR1719223_2153901 +QAQTVSAPANFASKTVWGQNVINIRPFSIESHKTFEFVGSYKNNGQIPIFPSPEIAFLGRSNVGKSSLLNQLTALNKNIAVVGKTPGRTQSINLFKCSERQ +>SRR2546430_7123832 +TRRRTQTRWAAPPRSTGAAPLSAPAHPPTRNLRCSPRTGEMGVAAQPCVRSPIGLQPQRCINVGKRLPAPRTNDGRRLGPRGPATSRHHLARETPSAPPDRERVRRRARARAKQRGSASGRARAPGREPRVRPGHRCRSNPPSPHPRSEEHTSELQSQSNLVCRLLLEKKTGAHAHDMRLTGTGSATIFRDGLRQEATWSRANNTDPFIFKNASGERILLDQGQTSVHVIPNDWETPSQX +>SRR5207245_1019995 +XMYPARGPAAERKRSNWLSASSGSGLFHSVSSSAGYSRSIASRRAPAYGTSGRPSRISLRFWRARSGSAKPVARSASRLGSRSRRRGGAARSLKKSVNARWTAVVTARCRARKTPAAGAQLDVAARRPAAPAQRAVDLALHRADRGQDALVHAGPVDDGARPVHEARADARIAGGHPGLEQRLALPQLGALVVIRAEGVERQRHRAHAALRAQAQVHAEDVALLGDRLDDRDDVAADAREVLAVGQPPLGPAGGVAVGAVGEHQVECGRVIQLLAAQLAHADHRQARLVAVDVPRRADAGAEVGGGHAPGLAEADVGQPRQLLRRDAEVX +>A0A1H8BLI9_9MICO +MTDHISRSYRRPLTLTPTHHNGASQRGPAAHRLEPPRPDLNRPDLPGAVRLERKRARFTATTRTPALVAAATLAVLIPLAGLAAPAQAAIAGIARAATAGAGTTGVPAGTTLKVHNGDLNITRAGTVISGLDIRGLVKINAINVTIKNSIIRGRSVSAPAALINNLGGRSDLKVIDSELYPSKPSPDINGINGYNFTLTRVDIHGVIDAAHITGSNVTIANSWLHGNLHYVSDPNQGGKPSHDDSIQIQKGSNIKVYGSTLSGSHNAGVQITQDTGDVSNFSFTNNFADGGACTINVAQKSYGPIHGTVIQDNKFGRNTRLLNCAVISPTTTKISTARNYYTPDSKTVAVRTG +>SRR5262245_45043355 +TGSMLLIGVFGGPGFAQQPATNDTLKQNKNEAVPPAPSATAPGKTVFEKVEPAKPPEKSQEAKPPVVKPDGTPAKVDEVPKPVVVKETQPAGAPVPPPDGKPELSAPVPPATVIPPVRYFVMIFGSESVPKRARFSHTWYTIVKATPKQNLPPGYDPDGNLVKYYDLTAHTISWLPSSLHIRVLKLRPDCGHNFSLH +>SRR5512132_3388807 +TDLEILAAARAHFPTEERLAIIQASAQRALLRHAEAEAGLRAHLAANPGAHGCLMTLGQALLDQKRSAAARELAESTLRAEPRGEVAVGAHFLLATAYQQEGEREKARPHLEAMLALEPGNTRIELLLASLDREAGRLEESLARLDRLVEREPRPGNHDWDRMVTATLLGRWDAVRASAARIGMNLKGAGPIEEAWGLCRIELREPDGEIGIHHALRTGPVTARILDVARPRAPQHYGDEIVFEAAPRNAGPRPGEADHSYLYPALATRKPGGYEAFLLDGVHPGAEALDTLRRELAALGCVLAVQSDTTYVVTEAATGEARPGLFAYLAAPAGCSRRELHDLLVQHGGSPARPLVWPGLAQALEQASELEDELARQAAIIERLGLX +>SRR5215472_956881 +RSWSPPGGCTRCRPLGVVIRPVDLAEDLIRRATAWHAGSRGAGRSGGAGRARIALWSSRARGTSWTCRPSRAGCALLGQILPRRARWRRGHVARQGDPARAVVEDRVVLQVRGRRGLPVAAPVDARQARRSSRARGALWTLRARGASRARRPGRAGGTRRASLRQHAPVGRVLGWWHVVGGVVERDVARALITDAVVFGVGRGRRPRAAPLHRDAPAAGHRWTVGALAIVVVAADRVEQAVGHPPRLRQPPLQVRLDIVAPRVLQKADHVRLERHTADX +>SRR5258707_121040 +GRDEMCEASASNRKRTREGCSPIRFSSIVITAVRPGGELSLMPLSVALAILMCPAMRLRDLRMHRYHWAMLEARRRIHERRIRMNPPRVRLRVPVAVATIVAVVRRAVAIGRVILIMLIALILLIAALDFAAAIIRFAIAVVPIPATIINIAIAIISIVIAISGRPVLMRPVALFAEHQPIWMGLELX +>ERR1039457_2916573 +FFFNDTATTEIYTLSLHDALPIWDAEARRDLQAGRLAGQAQAQVVGGLEGLLIEPHGAVHHAFGGSAVDLERHQVRGNQGEGAGGTEVFDDRHTQRAALLRVGGGAQFVQKHQRCGRHIERHLADIRNVGREGTEILLDGLIVADIGQDLLEEGEFGFGGGHRQRGLRHQAEEADGLESHGLAARIGAADEQRAALLREFERDRDGGFAAAAQDVFEQRMARVAQHQALPKTRDHAIELGAEAGLGEDQLQLGHGDEGLADGIAVAAQTVGDFEQDAADLALLLFGEADQLIIQVDGFERLDEQGVAAGAGAMDDAIELAALAGDHRHHETLVADGDELLLEDAILAVGAQEALERFLDRLFLTFHIAAPAGARAI +>SRR5918993_1097003 +GCAPDITPGGRAMRNRTMALVGPFAAATVLLLAPTAAADPPPPEFGRSNMGLCSSFLGPREAARQRSSRARVPPTALDAVAAAHPVPSYRPGGPLMNRLLGMLATCAVLLGLSAFLAPAAGGQEPVPTFTYTTPEGGATPAQACANSDDAVIGQFRLDGEVVEEFPLSGPGDLTRGGCVTTITMQELSTPAYVANCKILEPEFAAANESGRPYPYAFYGNPDYTANNRADCVSFLRGFHTGTLIPGPX +>ERR1700722_7859116 +XMKYRVYKPFLLAVVLLCVVAPHARAQAFQNLNFEAANIPPGTQPASMISASAAIPGWTTSQNTWYDAFSGGGALVSVNDSLTPIMNFSPLQGRYSAILFGGAFVPSTSISQMGLVPANAHSIQMDISLLIPSAPFTVSLGGQLITMVPLQVFPNYTVYGGDVSPFAGMIENLTITQFAPAPPNVPPAALELDDIIFSPQIVPE +>SRR5437773_11503562 +SRWRVKARRFTRATAQRVTNPALNLQTRWLLSPRLGLIRSGCIRGRKMPRPRQTGASRNWASIVHQWRRPRIHTDTSRLHWMESGSARLTLHNGSVPTLHDLLNPPNERPQTFHRGYDVFDPVKIGFKEPPPQPTGPNGTLTQPYFFAIPEKKETAIKVTPTAPSYPARTKRNCWNIX +>ERR1712178_671869 +SVKTIRVEIRVNENKCLLNLRSIMLQRKVLIIKLSTPDRFTTGSVTSCEITTLNHKIFNNSMKLTAFITKTFSTGGEFAKVFYGFWDSFSKETNFDCTSGFPSDSDVKEHFVSNNW +>SRR5258708_11690673 +GVPRRPQRDVDVLGSRIGVGEESLDGLIGCAEQRPARDSRVPFRAPLFLQRRLDARGVGGVTREVEADVDGAPDGRRLPTLDLAPVVQHAAEAPELIWSDVRNVPAIGVTGDEEEGASFAHPTKPDRKAVLHGTWQARRVLRGEVLAAEGGALLGEQAADDLRGLVEHVEPYADLRKRVPERAGLGF +>ERR1017187_4658610 +LFRSDVPAVHKGATQPGKWIARPTKKRPLRLGGPLLPGRQAENFQLPAIAVAIPVPVTVVITITVAISVAIEISAPVVPIEIAAHKAVPIAVADKVPAARNPIAAVHVSGAPGVTRSRGRWNVGKRCVHVNSKLGSLSRDACQPRCASQYRCSQHPVLHTSHNASVPAGPWFKISVTIDRPGSVPVX +>SRR5690554_4605005 +ALSLTMKNGFNFGSHQAEVQGGSWGRRVVTVESGGNDGTWGYYLNATGFEEDGWRDLSDSDALNVYGSLSWRAGDTSALNLNLQHGDSELRGNGASPVGLLATRRAAIFTAPDITENDMRMVSLDGSHFITPSIQLAGSAF +>SRR6201996_3122915 +PFDWERSVASGCKFSRGPICSKIAPIEPYSLSQSVSRRVLLLDPPLLRFSHCVLCLLPDLLELLQPAGYLGHRAVRCFPISAGVSSHQKIKRGLPCCGVLPIVMREFCQWEVLRPIVLLIVYEKPEIGFEPLIGPFRLSVRSRVVGRRNVLPYLQEATQLRCKFX +>SRR5438477_5602888 +RCGPDCRRGDPHPRQRGRTPGLPPAGHGRDPDRDPRPAAPGPARDRARRGGRVPVRHHAPEGHDQKEERQGEEREERHDAQERRARARSRKRARGHRRGGDRAGHARPGRHAVHGGRQGPRGLGGAARTGRMAAATARSAAANVRGRGPAARRGRPAQADHRRRRPAPDQPAAARRQRCRSDALGRSGRRGDGLGRAPDGSAGPARGHVHRPERPPARAGVLSVGSPHLRGPAHGAWPGRDRSLRSGRDRRRRAAPSGRNDPARPPGTLAVGQADGGRLGVGGGSAREAPGGVGVVHVAHRSARDRAGRVAARAARRRHRLLPARFPDRDGARQGRGVGLLDAHGVAAPRQLPGRVRGCGRRRGARGPGGRRRHRRPRGPDVRAGLDLAERGLVDGDGAAALAGRAGRPRAPAQKPRRRLPRRARALSDARAGRGDRAQAGPALLDLPADAVSGRPLPRSRLDALVPSLLTGQALVSLVPATGDHVWAAGAAWDVARAAATTDRRVALVDLWLERPTLHEVVGLSPAEGIVDAFEYDVSLTKAAHEIDRVFFIAAGTVTAHAGDLFANPRWRKLHGGFRSEDALLLLYLSAGALARLSTVPDGLIVLSADGYEPESSIGQGITAAMERGIPLLGVVRERWTPLATPAPDPRAMAPPPGRISAAVRPGLRGGGVSHRRTRPVVIAATLVAGTAGGWALLARGAEHRAPNAAVRAAPTPTATSAPAPAAPAPSQPRVDSLAWTVQLAAYARLDRALALADRLTADGITPFVTPVTLGPRRGGTVWYRVLAGGYRTRDSAVSVRATLWNRRLAQRGQGDVLRAPYSYAVSGTTTPDELRARGIPALARDGAGRLLVGALETPEQGGVLEARLKRAGVRAKLVTRMGATPX +>ERR1719231_1158533 +HLVPYAARLNPTMVICFFPNIFMNSKNEPGGELNQDSSFFSSPSSEAVASCTSSAPLDMPKRAQMFSSTHGASASAMPIRNGTANRASVRKPRDHADTLPASSTFDMSGTCPLVARNANAASGTDTTQKSSSNSPYEMPPAMPYFLICAVISLTLSIASSPFSASSAIISSGAERGAGAGSPGSTTLRATKRCGATVDGTKAAAGMMSSSARASIV +>SRR3954468_1616850 +AGSAVLHVGRDARASAGHETRRARARAVLAGGAGAAGLTAGSAILTVGLNVDAGAVALVLIATALRVHRPATAFGAAGEQDQRREKSRGQRRQGRLAFVHDRLLRGKLPRLKKERAAASAPAGGLEGRRHAYHNSRLGALLETYGVIARNGVPRX +>SRR6516225_4192873 +TSASVTSTSWPLGVTPPSGIDAVLAGALSATVADNTGSGSGLIVFTFGAGDALDFLAAGEKLTITYDVTVTDNNGASSTQLVTITVIGTNDAPVITSSAQTGAVTEHTNVDNSGNLNAAGAITFSDLDLTDTHTVSFTPDGNNYLGTFKPTLTQDATGGSTGVVGWTFSVSEKTVEFLAAGQTLTQTYTVQVADNNGGFTTQDVTITITGTNEAPVITSGVQSGLVTEIADGAPGENTAPHSLNGAVTFTDVNLSDIEASSISNTQVVATLANGYTLSAAQRSALVNAFTIDAATHSTTDGTGSIGWHYNINDSALDFLGKNDQVVLTFTVQVADGNGGFASQDVKITVLGAEDAPVITSGVQSGLVTEIADGAPGENTAPHSLSGAVTFTDVDLSDIEASSISNTQVVATLANGYTLTAAQRSALVNAFTIDAATHSTTDGTGSIGWHYNINDSALDFLGKNDQVVLTFTVQVADGNGGFASQDVTITVHGAEDAPVITSGVQSGSVAHGTTTTHSLSGAVTFTDVDLSDIETSAISNTQVVATLANGATLSAAQQSALVNAFTIDAATHSTTDGTGSIGWHYNINDSALAFLGQNDQVVLTFTVQVADGNGGLTTQDVTITIGGSNEAPVITSGPQSGSVTEIADGAPGENTAPHSLNGAVTFTDVNLSDIETSSITNTQVVATLANGYTLSAAQRSALVNAFTIDAATHSTTDGTGSIGWHYNINDSALDFLGKNDQVVLTFTVQVADGNGGFASQDVKITVHGAEDAPTITAGSTTATGSFSESTGVTGSTALDSASGNIVFADVDLSDAHTVSQAAPTFSWSGGTLSASQIAALTSASTLTLTRTADSTGTGSGSVAWSYSAQDQTFDFLAAGQLLTITYQVTINDGNGGAAVQNVAVTVTGTDDAPVLSVAGTALYTQNGPPVTLLSAATVSDVDNQTMQSAIVSISSGFLTGDMLAFTNTSSTTYGNIVANYNAATGVLTLASAGATATLAQWQAALDAVQYSSTSSDPTNFGNDPGRTISWVVNDGTLASAPLQTTTLNIKASTLTIPAGSTTTLNGGTLQASVIDVEGTVIGFGTIIANVLTNNGTITSKSAHTLTIEITSGIQGTGLLEITNNTTLALDGPVGSGQTVQFDIGNGPAPILILNDPSDFQGKITGFQGSDQIDFVNIDPARIHYLNGILTITGTTNAITFVGSPNLKFASDNHGGTLIIDPPLSTTTAAVTTTAAATTTADAAVTPVAKTSTLTATKTTSSQTKATSATETASSRTNATLAAVDEASVVALSTAVAVAVALDTAVADPGKMSSLTISGDGTAVDITGTGSGLDSSTVNSSAALGFSSISHEMAGAPADKAVEVSNGKPQTADTVSETGAFKIDAAATPQLDGSDAVDALVITAGTNADAINVPGDHATKTAWHVSDDGRGGKTVHESPVSATSEEASAQSTSADHHVIVGGPLTETLSGNGDHSASPFKPNADHDATVDPGINLDSIPKNHLLQHPADNLIHIPAQPDHGADPAHPHVDGNQSANVKFADDGSAPSGALPSDPSALTALPSDPSEAHGPAARALAPGDDTPVQPTPADNGHHWGTDPEMKFASIPQNNPPEHPADNSLHAPAQQDAPAATDGTHPLRGQVDASESASPNFAANGSPQSAHATGEDTSVPVALLDNGHHGDADPKNNDIAKDPPPQHPADNSSHMQHDDGTIAATDGAHPGLGQVDGSESASPNFADNGSPQSAHATGEDTSVPAALADNGHHGDADPKNNDIAKDLPPQHPADNSSHMQHDDDGSSAASDGTHPGRGQVDGSESASPNFADNGSPQSAHATGESLSVPSTPADNGHRPITDPDINLASIAPNQPPEHPADHLPPTPAQPDDGPHPADPSVDVNEVSSFKFADNGSDHGTGPDGAHPADPQVDRNQLKLADDGSDHGTGPDGAHPAHPQVDGNQSDSFKFADSADHPGTVTNDPTAVTAPSSDSTGTHGPAAPTLAKTDVPDAGLSAAPDQFVFVDNTGHGPVTDHKTDVVEIDHTVPADIQHLLDTAHETNAVSALDPNHATASQDMTKVPPHHQGDFHFAX +>SRR5271156_26155 +RCLPVGNFRSNRGVEHTMSSPYTFVPIWSIWRELPSPLKLFCLVLVIVCIRTLISALTTLVGLRAFPTSRKAADESRVHPCLATLCLRVENMRQLLSATVYLFVFIFCWILPWVMVTLDNSKTPGGILVMRHFFIDIAFAANVFLAFLVLHSVQWFVSSRVNTINLSAKTSPAG +>SRR5580698_4360037 +DHLHHLTACRLSLNLTFGLGHGARLVGPATSLAQLLQPCERGCLGRRRRRGWRARLRFGDSPIGLLLIPGGVALSLRDQAGLIGPAARARELGRSLSSGVCPLLSRRDTRRRRGRGARLCVRARGPAERYARDNHTYFGNSVHRKHGVLSSSSSPFVAGFVLTVRCWS +>SRR5947208_1864857 +SSWSQFGPRLASLGATRANAAPGMARATPPAAPMRNCRRLGSDGVFWGGVGGMCGVPDMSLATPSRPAIELTVVDSGRRERGASPGSQPTPTSGGAGATVAERRPLRNHRGRGGAVFYINSEYLSNRGPGSDGRX +>SRR3989344_4462318 +XMDFRTRRTENIYNRIHCMKNTLTISIATLVGVLLSDTRHIVAQSVTPVPNMIWINSGTFVMGSPLNEEGHTIYEEQQTRVTLTYGFYMNKFEATQQEYLDLTCLNPSTTTNLDAPVTKTSWNGAVNYCFLLTERERSAGRIPSNWEYRLPTDAEWEYCCRAGTTTRYSFGDDPTYTLINQYEWYIGNTGTNGLFPRSVGIKLPNRWGLYDMQGNVSEYALDWFIDNPFRGSLPGGSLVDSHGPTTGDWRVFRGGSFFEGVSSCRAAVRGGISPTSTSGLIGFRVVLAPATPEWRQVIETQLERPKYSSGPVKEVGKSKLVLVTHGWIPSWDIPQLSTAWVDEMTNSIDRYLTDKGLDGWQVVGYKWIEGAHPLDLLSIAFPTRAAQTALENAKREGRKLGEYLAGQGWSEIHFIAHSAGSGLIQAATEAIKDISPSTIVHVTFLDPFVGLDYSGVSSYGNRADWAENYYSRDLDTGGENWPFTQGLFDYCYNIEVTWVDDNKILGPVYISTPLGTQRCTQTVSSHGWPIQFYQNTIPPNTQLGSAGFGFPLSRAGGNWDYAISNYMVSSNALWVLGTPDDPQCNQLYTSTPPMIGERVDFSNSPIEKSSTGEVKIHGIDSFSLITGSPVWLAAVINPTNSVNLVSFDAKFVNANGSEGLLSLYWDTNSIGSVDEPAIQLGFKRYAFMFPRAASNTLHILGFRLDAFTNVPSSVLVTNVSLVSMGVSEPFTLSFAGVYTNMLPIFALTGPTGVVYTIETSSNLVDWTTSVVLVNNSGKVRFSDLASTNALQRFYRAVAPX +>SRR5262245_14032018 +XMSEDIDTAPPAALPPRNCTTCGKPATVAYTWEWGESGMACPEHAATLQQNAGNLNRTVTVVPLPAQGPTPLTRDERIKYNATILALEAEIEDLKSRGLELVRSNEDLAKQAQLFSMREREKTAYLEDAQAEVKQLSARLEEVETELADAVTEVERLRSIVKFTPGAQPPQQPPAGPTVVDGPRX +>SRR5260370_42043382 +RSGGFPELTIHQTGHGLGLGVHAAPRVLIGNEQRCANPSVIILDEPSRGVDIGARRRIHDFVVEAAAGGAAVLLISSELEEVMGLSHRSYLMSEGRILGEIDPRKTSVADVLFPLFNVVGARAVAASLSRAAAPASX +>SRR5690242_10536872 +SVAPSPMSPLPVDPQTGGLRSMDTALVTSTQPLATGPSLAGSTVFHDASGRIGYISDSAFPTLKSAWTYDIRGRLATTKLLQPQSSLASLTPITDHHMPTAFRDLRDTGSLSVTDVGHLGVPAALATEPAKWIVNDGPAHEITSKTLFLDGHVVTPTMQLGVVPPPNQIPATFNFTFEGGRRTSDGVWNTSFDEFGRLMRLENADRVIDYVYDPRGRLIGRTASQKTSSGNVLETRSEVLNRDGLPAETTFVWDPVVDRLVAMYEAGKSTQPNATA +>ERR1719203_2165260 +DRTIDKFDQSIRVSNIALSASNAQIRIVSLVPITLQKATAMMASTAIRCPSRSPSQSSSASECKGSLLSLCRLLGRLGLLLGALPSVANVPAAPLEVLLHQLPLVFLGAPHVVVGHLRHAHQLALLGFVQVRHRRLGEVAVARHLALGLLLRHQVGDHLLPVVAVFAPAPCP +>SRR5690349_23072571 +YFFFFFFSSRRRHTRSLRDWSSDVCSSDLLGIPTLPTGGISVALLIAFVWIVAFALPVCLWMLAFWCRPAHTFVLVIAVAALLRSEERRVGKECRSRWAPDDVRTKGVALLD +>SRR5262252_5786708 +IRTAARDQQEHMPTGVQIIATRRKSPAHDLSSIVNIVGFYKLQTRIRRNHSVQVDDGPIVPEDYSKGIGVAIERITDDLMLRINRSREAGAISGRIQIRDTPVLPQCGVKLPIAGIGATDRLPIVVKPERHG +>A0A0N1ILD7_LEPSE +MSKYFEPDTTFGKDAECAVCCCLWTNPVEVNNCQHIFCRECVANLDLCPVCCGPVDHLNTPGKFILRLLDLTRGKCSACAWRGTYKDFISKHAKCLKEGEVMRSREDTNATAPEAEPMHEYYLEEGWPAAHSLARLAAASPTLTSTNSATQNAPQPAPAIAADNPEKRDLSHVSNAAREVSAEPTHAQRARWQQTLTSTARDFGMPEGEFKELVRRFPDFASLVTDRSSRLELRWRDACRLLRFMNYPSHPDDVKNLFEMAERSPKTDSISFNTLCLWLMMNRRSPAQWYQMSDAPYRQILQVAQLLDVEATGLFTVEQCRILAEQYFERDVEDSEWSQITPLLRSKDAGIRQSFIPSNRCHPDPLEDFTQSAVKLPLHDALCSFARHVNELKSLKLQSPVQQRQADFVHRIKKIVGYYEPDALPQLETTLQKFNGEEESLLMTLTAMYGPEPM +>ERR1700733_3340046 +VVGANTSTGGSNPPLSASKPFRIPANASNPRHDRYLRLQNEGPRAFSYYVCARVSAPAIASTARFSYSCEWAMLRSDMEFRVIWEIDIHADSPKQAVEAAREVQLSTDMPATVFEVWDHARQKMHRIDLATVTGRLENGEVASLRAAFRQLQCAPDLGAGVRDFLSVMLIFLDADGGYWRRRX +>SRR5262245_2448521 +XMNSRSRANSARRVAFLIIRLILLTTVLVRFPVQAQTDAAARFAQRLQEARQVDAAAQDDVGVMYAEADGVKRNYSKAVFWLKRSAAQGNVLGACNLALHYARGEGVRKNPILAMKWTFVSHSLDGLKCFPDDLLQFFKPRRSAVRKAWSLANAFLRSHPDLKNEFGERPWLKSGTQPNKSLDRSPDVSGFARLECLVRX +>ERR1711873_241630 +PELTDSEGEEDSEDETEDDMLVEYRPSGNIASGISRSPKPDGYHLSERLLTSKTTIKNKSTSNTDADSSDEDTEKPQMNKEINKNRLHRKRLTYPCHPPGRYSPMIEDQQHTETSKEIGSITVKEEEVSNTDLSSSLTWGKDQEVSWLSGTSIRLELT +>ERR1039458_8309614 +RKTSRPDRPLQQTLDYVEPQTWVPQVSPLRPGTAANQSKVRAAIAKPESMYPEATMLNSTRPAGSGESSVLSTGHSNSGFALAAISNGHLYNLRNSRRYRERRLNYTKTRPTTVSISERRKPDPRGQPGYLRIDTDQGDSPTAKGVYHINAVDEVTQWQLPPHGRRPVRGDPGAX +>SRR4030042_4963036 +YTPSDCSTPGVIPFPSPLYVVLPVLLLAGFQLLKPKLRSSLSFVLLLCLFFFFNMSSSLRLVEASRDRHLRIVGLTSAMEETGRRYWLGEYWRCWLLTAVSKEKLIVDSYTTESSLPYSLAYWNQAESDNYVFVSPSDRERPAYYARFGRWLETIGVRSEKKEGGTFRLVYDLEPRVFQRVLFMDPPGQIPRLDLEMIEPRQGYLPLLFPNPAPGKSDLGFWLTVEIPGFSGRKELFSLNQPEVRVKIPHPSEASFSIRYFIDYIGVRIPASERKVHGSLPPDAVLVRSDPVVLLRGIPPEAPLRKAGRMICEKESWLELNRMSPGASRLRLILNSPFKFRSWLWYGKYVQQVDIAVNGTSLGKRTLDDGRNVLDVQVAKDILKPGPNLVCLRFRYHGWFPTRSPWPFSAFLERVKL +>SRR3954469_24847718 +VACSAQAPEWTSVLGSRPQEALKRFGRALLGAVAGLRAALGLGVMVGQEGARSVAPRAADRGRRAAQVGDQRPRPPAHGAGHGVVDVGCLLVGAPGDGERSGTGPAATSPTGPVRRPGASLASRPCSMSPPPPLPPPPRPARRRX +>SRR6478609_5279812 +RVGGRRGPRARRHRDQHHRRGAQREPVHQRGAHGRVAGRVRRDHRRARDREGRLRRGLPADVAESVTTARVRLNAALEALRKVDDSLGADVATRKARVTNAVTALVTDIDAFVSPRVDDVMWVDELAGEHRLQVAPLDVGLTLDRLLWDPPDRGGLEIAAAGPADPEDDPRYGLPTSVVLTSATIP +>ERR1700736_2808299 +HTIRGAVTRARGLLAPNKLFRSRDKGKGRGFCPRPGFPRMADGTAGATRRDTRCQQTQCFMQILVQPGISGQSFATPEVGCQASEYRRIHFQETLDSARGTKHCGKETSGIVLLAGRRQPALKEPAGNLPKQLMLGWDPRFREXX +>SRR5580700_6228722 +SRGSVNADARLAEDNVHRRVPAIAEGERTELNEMFARPSLPSRAGALHPDVHEALAGRLDAAAADGKVQSSRRGVVHSFVVVRQVRDGVVNGRVLSHADVLAAGGLELGQDGDAGAARVLQEHPPACKERLGVGLTGDHVYE +>ERR1051326_2460312 +VLEFVFRRLFACAAFRGLWFLTRCASRGNSLGLGGFEAGEPPLCGAWRAKADDGQVGVFRLSKEQRIFSAAPFIELERPHEQGIAAEEGAAPGFAVAIPEFRVPGGAPDRSPDRTPQNERQGVIQPDEGISALPDHLADHIAIDDPAIPADCPSDTLAQDIRWRGCPVWPPMEGVHLYMGEH +>SRR6185437_12123836 +PHSPTDRARRGKSNAAATARRPSGYAAPASRACTAPPSPLPRQIAQKVVVAPSRCLGSESRAKFLRSPPPVPSCAPSRVVSPPARRRCFRHRELHDALTQRTEIESHRRRGLRQQAQWCHPRQCVRLETEKFTAVRHTEVDARVAVKLERAECSQRQPLNFRRLACRELGRELLARHARRVFALVIVDLVTRENFAHRQRLVAEHAHRQFSSRNKSLDHYLIIVLQRLGHRRREISSSTNQRKTNSRPLLRRLHDHRPAQLLLDLLGLWTRTGRLANEQPVRRGHAGRPKQHLXX +>A0A1F8KNI6_9CHLR +MLTNVLGDYLDSISERNFDFPFMALLRAQGFYDIHFTHGQVEFGKDFIAKQSLNGNIFQYSFQLKAGNINQATWRNDIQGQMLEAVISRLSHPCFDHTVPHQNVLVITGRLIGNASLGMEDLNRTIVDKYRSRRIQLWDREKLIDMLVSAGLEEFYSTTSSGHMGYGDFHILYGKSLKGYISEKDIENHSKNWLDDLVISKNRVLGAILESEIITQNCRRNGFFYESIHSQLSALRVILFEINNVQDPSDDIFLNKILSSAVINLARDCFEYTTHVQKSWEESGHDLVKIIPGTGKIFTYLVNCARILEIAGLAFFLVQSPDEKQVLCKFISNFILSEQGCSHIPSDRYAVSIVFPVLALKKCERNEVALEFLHRLTIWLCDRYEQGNGIAGIGKSPLEEISILLGAPFSFIATMKRNDNYLATVLSDLAAFFEDDIFYSKVINDIRAVKIFPTYWQISDNNDLFIIEGRSIISYPNIEYLDHLKRFNDYDFAQHIIHEERTYGLSQKVSPVSIMTLMLLLRDRYFPTLWNLLIE +>SRR4051794_33743283 +ARSGWPGLADLRERRSRRRRASCRDAARAVKRRCRLVDREGSAGGGGKPLARGVACVVDAAVQVRADRDVRQRTCRGDRRRRGARRERERRDRGQESNYDHGERPSVAFERATELFHLPRQSPPNRERLRVSGIAAPACREPQGHQLVRRKPRQKSSPKRASRPSKGGLPRRRSRSNGPKCEGAARDTRPPSSFQGPAGPLQLSPCLAPTYAVCCEVTQPYVMCVGPCRVRPWSVQTSAALPPLSIAIEIESARSRLPSFTVQKIPFVQIPPTCMTELDADVWLNFGTASYPSVVCANVVYHGDCSGSLGVX +>A0A1T5DHB0_9SPHN +MARPYRNGINRSAGANGASAALRVRGTMAAAVIIIIIALTFSAAMLTGVMLIAWRSFGRPRHALLWAAAFAVATVEWIANLAFRIAHAQDNAAIYAAIAGLSCLSNALIAAGFVQRSRPQTGPGPFLIAAAGAALLIAGAAIVVPHDGVRDATGLLFGGAMMAISAAHVGRGFRSASLPERSVTLMLMLFAMLDGAMAVIALRQGIAGQGEAFALFRTILVLLYPPAFIGVGLFSVFLVAADLAETMRTLATSDVLTGVYNRRGFEDAAERAIRNAHRQRQPLSVVVADIDGFKAINDRYGHGVGDRALRHFASRVERLVRRGDLIGRIGGEEFALLLVNTRPQDAVEVVERIRRDIAAMPVSGPDRIVMTASFGVTGLRPGDISLASLLTRADRALYRSKLDGRDRVTSAEELEEA +>ERR1017187_5107048 +MMRRPPRSTLFPYTTLFRSVGVGGKHHRRGGARVRQGIGGARRVEIRQGRRPARCRYGGGGGAEIEIRGQAVVIADGSLVKRDAIAGGIGAAIEQAEQSPGGTVVGEVGSGGRAEHGGREGSSAAIEVVGRRRAYSNELVRGKGEVDAAANAGAGQIDDIGAGILYLDELEVLVLIRAVRGRRRGVIVDLRDAQRGKGGDIKGFGRSAPCIGVEGAGDDSGIIGQRDCAAI +>SRR5450756_1904656 +IVTPNGPGRLSSGGDGGLGGGGGKAYRAWLDAEQPAGQRLRGTLGLGEPDACRGDVEVGEAGAAEGAACRLGHGDRKHRVLLAARGEPAKHAAAPHRDPDVAVRVHGQPIGDALDPGQVDEDPSLEGVAGRRIIVEPVSYTHL +>SRR6267143_246127 +PPSTSTRCRRAACPSRCYSAGPSSKRASKEPCRFRRSPGASRPASRCRWRPGKRSSTCISRTRATSRCSARCWTGSTATRSGAGCPPGSGRWNRCSRARRRKHEPRRDRPDRPGRALRGLPPVPVPGLGGEEPAAVQFRDAPPGILGGRASGAQLPPGRGPRPWRGAARGRSGALPPPRRAAVPLRTLAAGTRTGGRDPLPSRPGAVLLRPRGRWTGAAGRVHRALLGRARARFAPRLRAAAQPRRARSLCLPRGGAPPRAGLGAPAPGSARRRVRLAPGASGRGGRGRCGLPQPRVLAGPGGRAGNPRHHARLAHHPLRLPGGRPREPRRPLRRGRDRRDPVAPDPHPDRRREGGGPRDRSPRAGLARSDGSALPGRSDEAPRSAARAARGAPPGSARAHPTPAGRGRLRPGARGEGGHRGGRRARRPGPAAPGGHRRRRSGPRPRRLRPPLLLPRRRGGAAAMKRILVAGVGNIFLGDDGFGVEVSRRLAGRPLPDGVRVVDFGIRGLDLTYTLLDGWDAAILVDAAPRGGRPGTLYVLEPRLDPDAPAALEPHAMDPAKVLALVREMGGTPPLMRVVGCEPEAAGDFEVGLSPAVQAAVDSAVALVERIVAQLGAADAX +>SRR3954471_23318179 +XMSTPPCRRAAPDALNAIRPAVGGCICGGARPAAISAAATTPWRVTLLRTGGSPAIPSFARSNRARTGSGTSRPTSITTVQNSLRPNAVPRTRPFPVRGAGCPATGPTSCVAASERSLRGYSVAVNKEKPDTADSDSGPSGADDDVVSDPAKSDGASGDWSDEGGAPPSGPADTGDHTQX +>SRR2546422_8761933 +RCSLFVMRRHSLRGLARLCLLCFLCTHTALSYFFFFFFFNDTATTEIYPLSLHDALPIYLARHDGHASGDERLARHPGGGVLGEDRKSTRLNSSHGYISYAVFCLKKKKKTKKLTERIEHNTTDSPPAHADSCHTQHSPDX +>SRR5258705_435907 +YTSYGKVRDLNELLPETAKAIAKVENPTLRDALAMELFGRGGVKMIQALTTIGNDMEGTGKKAKDLGVLLSTDVINAGKQTSIAFQRLSLAVQGLLLAIGTPLLSRITKMTEALVTWLAAHQHIIALRVHEVFEHINNSLNAFLAIAKYIVNNSGLV +>ERR1719362_736321 +LKPYLANIAFFFSSGSCIWSHSLFGFTGVDLGSVFSIDLVVVFSLKYEGMLCCLLTVLLLCRFCISGTIWACFMGSMITLGFFTFGFNESSDIVLDMPEPFVVSKNFLIIDVLSSEPGTSVVFFSVMEGLLSKNEDASTLPMFFFVSAIVPGLLNSSRNFDFFESSLKGDVISGSVFVLTSVDFSSIKSRNALIPSLNATSLVFSQGLLEKSCKSSMKPFIALSLSLMLLASCSDF +>SRR5262245_8711603 +CPPTEKRVGSSAAVRNDRPFGTSIGFVRRLLPALHNPPGRAGGPARLTRNRMTSRALITLLSWLTLLALSGLGSTHVGAQSGKPATAPAAAPAVPNRSGYLRFPDLNGSQVVFCAGGDLWITSDRGGASRRLTTHVGNEVYPKFSPDGRQV +>SRR6478752_7265712 +FVSLVLLCFRPCSSLLWLDCCFLHCLFFFFLMIRRPPRSTLFPYTTLFRSHPVGELLADRPEVHARHSSIWVLATPASTCFITLPDAVRGRASSVSSTTVGTLYAANCAAQNSRSSSASTSAPGRTTTTALTSWPYTALSTP +>ERR1740124_914837 +AAAKTRATEDARGRAREMSSMNVIMLEDGWAKLKTGGVKKIEDILEDMKDGVYKDKITTDEYSALYTTVYTMCTQKPPNNWSEHLYNNYCEAVKDYLSSRILPRIKEKHDEYMLRELVRRWENHKLMIRFLSHVFKYLDRFYVKRLSLPELAEVGSQAFHEIVFNAVKREVRTAILALIQREREGEMIDTKLVKDVVAIFVEMGGNRTSLEVYVVDFGEMLLSSTADFYSRCSSKWAEEDSFPDYMCKAEDRIKQEADRVRSYLHSSTEDKLLRVCDEQLLQTPETQLLEKENSGCEALLRDNKPDDPQEPQPNSDPPKRRRSPPPLPTVAGGSGQIDVISRLLKDRILLLGTDVNDEVANVLVAQLLYLAQDDPDADITLYINSPGGSVSAGLAIYDTMKFIPCDVQTVCFGMAASMGAFLLGAGTPGKRKSLPNARIMIHQPLGGAQGQAADIEIQAKEILFIREVRCVD +>SRR6478735_628956 +QRRSERPWNAATWLTASWCRSDRRVLSDVGSEPLVAVSAANPLRCRSPQPSLHTEPDMDLGLTDDQRAIEQMFSSFFANEAPPAVARAAEPLGFDRSLWQRLLETGAPGMGAPESAGGGGARLSDLVVVAEAFGRSIAPAPLLEHIVASRVVYDADVLSGDAIATVALRPADADVVWRIVPA +>SRR5256885_2358642 +FGGKTCYETENSSLLVMRFKLKASGYDVDGTDQTSLGQFSGRVQQTYKHSVPRFFVPEHGTMFTLALVRFPPTATTEIQYLNAKGTLTYTDIAVFFSSRRQHTRLQGDWSSDVCSSDLDPEATAVFPRLLASERLAGDSEPAGPDLASVTRPAERSSDDELPTAIQAPPAAGAPEPTQIGRASCRERVX +>SRR5258705_12133918 +YVIIIKSASMNCMTDRPPGITALDERIPFLLSQLGAHIAGEFQRRMSATGVAPRTYAVLMALATEDGQSQRQLSARLGIHRNTMVSVVDALEADGLVKRTAHPDDRRAFVITLTDQARSLLPDLDNAGHALENAVTAPLSAVERNTLREMLQRIATGAGLIPGVHPDLAHSVAAIAKQRLSSDETSRRKRVDQPWPNRDPMS +>ERR1043165_342850 +GTTAGTNFLGTTDNQALDIRANNLVRLRLNTNNSIQRDNAGNARGQNAIDLQASRANTTMVASGNYSVLSGGMDNKVLGTYAVIAGGEDNIANGDDNAIGGGASNWTNGGAATVAGGGGNDASGNYSTVGGGGNNTAQNTYSTVSGGHYNNAAGIYSSISGGLENHVLGLSSTILGGQNNYIDGNFSTIAGGAHLAITSGY +>SRR6516162_8751238 +RFVFNGGPMRRLLLGSAIAMLGMFFAAPAMANPTPATGYLELCKYSDQTAPVTGPFTFTVTDGSYSSTQTVTTGTCTSPFQVPVGTATVKEQSVPYASVTAISALPSGNLVPGSVHLGQGGSAQFTITGGDESTTTTAEFTNKEVTGYIEICKQAVPGSGLTGSFQFAISGAMGYKQNVTVPVGACSDSIQVPAGSVIAQENPGSSTYVVSITSTAGFTTLPMGWTSNPDLLNARASVPVAAGDTSAETILTFTNSPSVLKLCKAVTNSSMLGVNYPFTVNGSPISVPAALAPNATCEIVPGIFTAGTTVNIAEGVVPGTQVQSIAVTPSGREVSGSNNPAARTDSVILGSGETVVTYTNEPAPPGTLKICKIAGFGVAPGSMWSFTVAGVPGTI +>SRR5262245_26240924 +KANPKPEGVKTPPEKEAITVPSKAKAEPAKPKPTYVTVVGQLLDDATGQPIEKAGWEWGQADPKKPEQIAWGHSRQGDGNYPGGKFAGRVNIGADGHHHTWRVYSAGYETAIVVDDLAKPYPERIERVVRLKRGRNITGVLRDHAGKPVANGWVFFIPKGHRANIVEGVPGTDAHELPGRARDDAVAEVRTNADGTFAFSTGADGALAASTDLVDLWPFPLPEDGHAVLKMPTPSYLVIDLTYWYLDELAKKGKRELSPNSEDPNQCWLAVD +>SRR3990172_2002343 +YTLSLHDALPICRRGIQDIFYAKSFDGGLTWTDPNLRVDDDTGSAWQAFPSVAVGPPGNVFIAWGDQRNGDADIYVARLAPAPPFVEAPTVDGFAPGSAEIDHLIGNVPAFGFTYRDLDLDRLTAYNVTVLDGALAPLWTCNRTLSAPLPDGFPIFVNYNVWPCPTSGPALADGSDYAVDLTVQDATGRWSVPERVGFHLNEVLGPTAPVQPAPGAVVPCSRSHTLSWTAPPADVEGELPVSFSYQVASDPAFTAIVASGNSTFNVTDPFTTCPGGPYHWRVRATDGWEASTWVSWNFSTFTPPNAPPSALNPAVEGYGEGSPGILRIGPDRPTFLWNYTDAEGDPQVEARVTVGTANGSNDIWDSGNLTLSGSALVYGGGTALVDGAEYWYGVRVHDGKDWSPWASVRFRVNTPPRAPLAGGGGRGGRPPHLSGLDQHHARVRVPLGLRAGLGPLRHGHGGGLHDVLLAGPGPRPARRRPEQLDVPVHHVPGPRQRDGPCHLRRAGPLRRSGDRRGVHPHVSWRRLVQPRCERHDGERRAGGLPPRPQDVPRARRDRHAPRGGPLGEPYRFLTEYLPPHP +>SRR5262245_7034097 +YVLVTEGTTSFDTADVQVSTNNFATFTTVASRSTNLPNSSTWRSVAPVSLASFAGQTVQIRWVFDTRDGIANNFEGWYVDDVQITAPGTWNDYYSFTLGAGETATVALKNLTGSGTSLTLEDGTGATVATGLAGPTNFDRVISNFTGAPGAYFLHVSGAVAATYSAVVTRNAAFDTEANDTFLTAQPIAGGQAALGAVATSASTASTVIPNANTNVEGDFSNGFPFHISAFSLPSMRYQQIYASSQFTGGGVIDQIRFRKDVSAGTNFSTSNIDVKINLSYSATSPTAPSNIFANNVGAGVVTVFDGLLSLSSTGTGTPNPFDIVIDVANSFNYDPTQGNLLVDVFMRNSPVTTFFDAVGNSPGVTSRIFSNNTVNDTSGSSFQSGLVTRFDFVTTGAAQEDWYTVNVTNAASALRLETATPADGPNQFVNTLTPRIALFDPTGVQVASGTPLADGRNEFVQYQPLATGAYRVRLSAEAGTSGEYFLTKNFKPAVTSLSVTSPINENDVATLTGTFTDADPLDTHTVLIDWGPGEGTTTLTLAAGVTSFNSTHTYLDDNPTGTSSDNYPVSVTVTDSPGVSGSASTSVTVNNVAPSHVVLNSGNINENGTFTLTGSFADPGIQDAHTVVIAWGPGEGSSTLTLPAGVLNFTASHLYLDDNPTATDADTYPVSVTVADDDGGSGTGNTSVTVSNVAPSNVVLNSGSINENGTFTLNGSFTDPGTQDTHTVVITWGPGEGSTTLNLAAGVLSFSAAHQYLDDNPTGTASDTYPVSVTVTDDDTGVGTGTTSVTVNNAAPSNVVLNSGTINENDTFNLNGSFTDPGTQDTHTVVITWGPGEGTTTLSLAAGVLTFSAAHQYLDDNPTGTASDVYPVNVTVTDDDTGVGTGTASVTVNKLAPSAVTLSTGTINQHVTFTLTGSFADAGTLDTHHVVITWGPGEGSTTLDLPAGVLTFTASHQYLDDNPTGTPSDVIDIGVTVTDDDGGSATASTSVTVNNLAPVVTPIVAPTDPVAAGSPSPVAVSSSFTDVGTVDTHTAVWDWGDGTNTPATVTEAGGSGTVAGTHTYLAAGVYTVTLTVTDDDAGAVSVSSGYIVVYDPSAGFVTGGGWIDSPAGAYAADPGLTGRASFGFVSQYHVGTSVPDGNTQFKLHAAGFDFRSTSYDWMVIAGPKAQYKGTGTVNGIGTYKFLLTATDGQRPGGGGVDKFRIKVWDPVTGMVVYDNQMGASDTSNPVTALAGGSIQIHDNSHX +>SRR5690349_22883871 +LYPLMSSLYSFLFVFFRLFSFTIFFFSMIRRPPMSTLFPYTTLFRSDARSAGSRSRHRPSRRRSRRSARASTPPARRRTRRRPRSEEHTSELQSRREIVCRLLLEKKKRPHLVCLLLLEKKKNTAQNTQ +>ERR1700731_2171409 +LQDPTGAVASRGCGKVDLGVVDTVEDVGEDGGRESQADLDQLRVAIARSLDRGEILVADGATGLCELADEADQRVALGAAGGLTLADLPEHFRLRPGELGEMVVGGDAIVAAAGGADDELDHFLIALGQRARSENRTGGEDRLEGGRAVGCNGSECFRDAADGLLIPDDQQLLRTFNSPWRKNRATLVRAIKVSGAAICRGRTCARCAPNITRRIAARVLVQRAFTTQFEYSDRCFRPTRAFQSLKPCLSANSTMRRARWEPQVSASKLACRSCRRRSRTRSTMRLANAYGRSADRTGKAPTKAVLAQRYRPFICPRRFLFPF +>SRR5688572_8862321 +ERKLRWDNQQRRLPAGETGQPLAHADGHGKVLSVERVELGLVVEQFQMRRPAGLEEVDDALGLGREVGRLERSGRGRRAAGSRENGWVDQRGHRQRAQAQARARQQLTAGNEASLFQEFVHMLSRYFVITSSRFSSMLATVVYAASSVASSFSSRGDSPIERSFAAVSGFALYAANRRSKVSRSTFSSSADGACAVARRNANVIRSSAAVPPSCIIRSAS +>SRR3546814_633682 +IDHDILYFLFFKQKTAYEMRISDWSSDVCSSDLIGKFGGEPIVDRENDGARGGSERAHRAVLAARRPHDITAAMNVEDGTPRPVRNIKQPAYRAAFAEGYGARLDAIRMAQGNFAAGHQTAEMRQIVEGKIVEIGNRRQGADQLRIDRRQCAGSRFIHLLSLPIAGLSAKQARRSVGPCGNKIGRAX +>SRR6185369_2348986 +LVGITPPALPTLPQTSAHTTASVEPPDGTSQSARATLVGIADSATPSGPAPIGQRPTPTLNPVIEQARGTLLYFALQNNSYDLYTLNLNTRAEQQLTFNVGGDSYGIYSPDGKQIAFESDRDGDFDIYVMDADGQNLRRLTQNVVTDRLPSWSPDGQWIVFSSDVRGDTNYDLYEIHPDGTGIQLVFSDGERSSHASWSPDGRSLIFTHGNNLDGSTW +>SRR5262245_26026989 +EPDLWPGKNDGSDFAGSAQYTIAIAIRTTPRMIAAAARRRLLLTRKKSRGPLGGGRVRGVRELAEFARDQVGRLLADVDRAVADPLDRACDDHHPQPPLAKAGLGHDVDEALDEPAVRPVDELVEIDEALGTMPLAPAERVERNADHLLRAVTHLRQDVDERRVRLGAGDELRELRNRDAPVCRPLEQQIDVEDREEEPQVACDRSLQRQXX +>SRR5687767_9486488 +DEVSRMRVSTCLGFAVTLFVTGCDKAVGNASVTRTLDSLTTIVDSLNTRLGALEWDKLISGVEGVAVLRPSDAGYDRLATDFGSITVSLEDVVPYANGSRITLKFGNVTSATINDAAANIQWGSVDSA +>SRR3954452_6150108 +PGHVPRQQEMRAEDLENPCKQVDFCRTAELPERAEEQREVRAVLVVAAVRDRPGVEVCGGLVVVTARRVVRQTQHPEQERADQCDRQPDGEPVAPPAGEQRGIERKRAPGTQPGAHPQPTARAAAAAASATCSTSASVSSGYMGSETTVRASSSAPASDRP +>SRR3954453_16503950 +DRRRHVPAARRQTAVGVCVNWSRRWASRWRSTTWTVVTAVTLAQAAAWRGLAGQLVGGCASGLDARFDRTTVFTVDRVGRSAVDAGRDLTIDAPAVNQRGRRIERIHRFDRGRWRQRRQWLDHRRGQRLDGRRW +>SRR3546814_3464296 +MSFLQYVVLLVISFFFFLRNRRPPRSTRTDTLVPYTTLFLSDRRRPGGCACRGRPHAPAGARPARPGQGAAAGVHARRHLLRRLPVAPEGPRRHRDSQWRGQPRRQQRRSEEHTSELQSLMRISYAVFCLKKKQHKKIDKSTSKTPNTQQK +>ERR1017187_7010674 +PYTTLFRSSELRNSGRSFWDVRRATGGIHLFPCHFRLAGLDKSYQNSAATMLGGPVLPLMISVESTMAILFPSQPLGATASSFLIWLGSVRNSPAIRVPKQVIPAAVTTICSVFGSLSRRTIAX +>SRR6266545_5506238 +RLSAALPPAACAGPRCRGGRAAGRGRSTRPGAACRSSRSAEDRDPVHGVRRAAHARVVAERRRPRDHRPRRSRHHPPVPAALPARDRRGAAAFVRHALSLHRHAAVERRGLNVRSLSRVVAATLAGVVIGLVVGYIPSLLAYGLVAGATQNTISRTGGWAEAGAVGGVVWLASAGLIVGFLQQRVLPPTARSIWWVVALAAVWAAAHVINMALRGLAGDVDLAAILPALVVISLVAGVAALRLATRVTRXX +>ERR1041385_9034566 +RSDLGFLTDRRDDVRRDVPAEISRRDAQERDGALGAFLANPFLRRSTDRLQGREVGCIHEQDASVAPTVNYHLVQQGKIRRQYILLEAVAVDALLLIHVTIPARQEDRDSRFFGRGQSWSNRLCVSPLRDDEVVLLTDRANDPIS +>ERR1719323_877409 +FTSTREWLVIMQNPNEDTEWNDVLRKKGIIPEKPKEAEVNEEDLVRMLEETIREKSGVKRTEDMDLDELDELEDEEEEKILLQMRNRRMAEIKARMEKSKYGGHGPGRAGRARGRGGGEDLAPDEEPEDGRDQGQNGKIKIWRRKRDYCSRLCSGSEQGRRRCVCDPALVQAGRAPLRPGQRVHEQAGAQVPHHQVHQGHLDHMHPQLPRQELAHDLRLPRGRLEVPDHRTRADARNELDRERVX +>ERR550517_2316039 +SEASLEGTAMEEETTTVTDAVVAGGEGGDGRMEEVDEAMEEEAVDEAMVEETATVVEAVEAKTANPSQNSLAPRSTNSGAQAKLQVSAQKGSPSTMLQRPKTAVQICPQTELSVGAKAAMPKCASTAVX +>SRR5689334_23514466 +HLRPCTVLIMRVPCFYLFFFKDAATTEIYTLSLHDALPICADHVDADVRGTPVGRVGRILFRTDERGRVPGVAGPPFLDDPSDADRKSTRLNSSHSSISYAVFCLKKKRTRPEDRTEPSLRAF +>SRR6266436_2860317 +SPRCSKRGVMLIESSFMILFKALWLDNPKSKRSPGTLLSVKRIANNWRRNCNRVFHPQNLPVQLSSELLAVGVAFAQVIEMHRRLNGALAAQVDEMRHERHVLPVTNLLAHIAVAEFVSEKTRRQRMSLPRGGFXX +>SRR5271166_360653 +CDARDVEFQIAERRDRDVADGEGKIERPEVVGVADIDVGDSIGKSDVNVPFDGDLYRDRDVHVLQQGMRRVEGEADVAERETAHRDRPDAQLTDRNRLQACLLYRELRDLELHDPCPPLGNELIAMSTELQNARAARPRASFLPVRRKYSLETDQRQLRREPIALSRRANGASAARSMVEEPLPPRLTRSAFAIAPLPARGX +>SRR5438128_8400954 +IAGARSDWSRSGVAVRRGRRAARRVDGVGFPAPAQRRKRGPTGSPSDRGARSPGSVAVQSLAGTFQVFNSENRHPVRFGRGVARRGALAHPTLLRRRPMLPAVISVRAGKPASASRPSRASARVGLGIVLVALLTLSTASIVSAHAFLASTTPRAGERLLGSPSEVVLQFSEPVSVESGGVVVHTAQGAAIPLGPSESNGRSQLRIPLPPLAPAVYSVSWSVVASDGHQSAGEFAFGVGTEAIEASTAVTSDAPIAWPAAAAGAMLLVGFALGAGGLLSELAV +>SRR5262249_6274811 +LFALAAQPDWPMAQVWREPLKSTLRRRSWGGDLDGPQESVQHVNGRVPFAGTSDDLRGRIAFRFDRRGDRLCALRGACNQKPARGLRVGQEMALPVRASRWKLDAILVAFPIAMRSAGDEALLRQLRSLVEQRDVPQIDCQPQSGAARHLQCMAEQAKARHVGX +>ERR1700710_2726627 +CVTTRSRRTRRSGRDFPATSAGVPATRASSTRCTAPLRPQKRGKSGVLGCVPQCALGLQVFVEPVLAPLATVSAALVAAERGVEVERVVDRHLAGADPARQSTRSVQIGGX +>SRR5438105_150411 +AADRSHGERRGRHEAHVVPALLVRRHAHPRRPATQVERGAHAAAPDLGLALLAGKAQARRAAARFVEAVHVHVLVGDPHRGPDAQAPEAEIVAPHELGRCVRAAGLRGGGARYLPQAERAADIVEVEVRVRHYAGAIEPAPLHGAEERPGVLAGAEASRFPTEAGVELAAPIGDAQGRALRYAHREAHGGGGDVAADAGIAGA +>SRR5919112_1724051 +RGARRAALRDQGPHRARARHTALLQQDHHLPGSTELGRPRGSLPLARAREVLPYAFERAFQGADPRAQAATPDHGHPHHEQPGQPQRPFLRVQAGRGDGGSGVRDRPCLHGGARDLLYALPVGCYRGPGQYVRGEGADQDDARRPQTRRACDPLAAPLPPRAAPRRGDDLALLRGCCRTLRAHPWDPARRRPRSGGERGPPPYRGERTTGRGGAGREPRPAVLRTGRFRRGQLHGRVPRDDSGLILHPRRQAQAPLAATPYPGSPPRQSLAHARALGPARRHLQPAGRPRRRDTKRYSGRQTRQRTHRGMGRSQQGARRPHPAGSRRHKLERYLRPLHPLGRAAGDPKPHHDAGGPARGGGCAKWLKPRCELSDISYLFLLMADSAIWGGSMTLPKSLERLSVGGGALYVLAGAAGYFPGLLVAHVADAFGGDADYEAPGWELAGLGDDGAGGDDGTRADLRAVEDGCAHADETVVLDLAPVHDGVVADDASFADDRRVAWVRVQDAAVLDVGSGPDADRLCVTAQHGPVPNARFFVQVDVPDDVGSRRDPGGLCDPGEGVAVGKHVALFVQIQRGALTLYSRYTSPNFRSRX +>SRR5258708_1650640 +PMKSRAPVMHDRCCDGARRARRSAMKRGASSGGSGGGVATLLAVVVGAAIVAGAGAARADVVLEGLPTVSVGYTDNAALAPTPVVAPGLPPRSDEFGIVAGIARARLRKAHAEHSLGYRLAETFYFHGRGPSSLAQELAWLSDLSLSAPTQLRLGASVAYGRTSNPTGVDASGAGPGAQLAISSNIISLGATEELVHIVGRRSRILQNLRFAGVHYLNAPGAFDGTFVVGAFVRGEHEVGQSLFSLELDVADNIVPGAVGVSDQVLLLQSLAGWRRDLGLAWWVELKAGALGVLDFHGTEILEPAALASLNYRQIYWFATLSGSQTATANLFIGAATISDQAMLRLALPLARSERYLLAGYGGHTYARLIDDTGPHRGYTLPPAAPPF +>SRR5205823_11678186 +FGTMALSRFVIIRKGAIKRILSRREFYRNVIAPISRIWIVQAAVVLGQSLSHELTRFGTGLLGAGFSPIQKTVVTIWLFHGKRCPGSIGFRANCPGVNAIELTSTTRSSADFWDFLLNLVLAGSVFEAVPCAX +>SRR5690348_5794318 +GGRGGASGSGGGAVRGDANKNRRGGGRGGASAPAPSDPTSLQPFDFEKANSLFDKDKLREEDGPLVPSAEAEAAVDDEPPAYSKDSFFDSISCEALEKQDRANYNAGRVTMDEQRRRDMETFGAVSVNDRNRYRGRGGRRYHNHNNRGGGYQRNYRVCL +>SRR5208337_1056505 +SSSPLSSANGPTAPADDPSSSSPSSAHSSASSSSSSPTSSSPSTPASPSSSSISPASSTASPAATSPSPPPTSQISPPPRTAPKAWGSSAPPSASASSSVPSSVASSENTSAFTGFPSPPPSSPPPHSPSPSSPSPNPTTPATPTPKVSAATTPPPSSTSSHAPSSACX +>ERR1700722_2816766 +LNRITNCGLVSKSCRIWFPFQCSGVESGEEDEDDKNAKEETAAVGDGVDNRVFVELAARALEPETHDPEEKNGDEKPETPRVLVELCRVQVRDVEGQDNDRGKAACGAEGAELLDVGDVVAAASSGDAAAFAQAFELGEALNQGEGEEEEDAEASEPGGDLDSSGGGAGDDTDGVETRQDDNVDQDGALQTQGVSEGGEEIDAKPQKEIIRFDQGQRVRX +>SRR5262245_51317312 +CRVFSALITTKQSMMAMMAPTSISAIASPFLADAAAAAARARRRVSGCELVKRPGTPTSSLASVEAALPNDSLDPGRDESVDGTSGRESFPDRRGRHVESRDRKVFDLPSRSGWFGMLAGALDDDKRRERTGVLEPLPRRHVGDRVGPGDQEELVAVAAERLERVGGDGRLVALDLDRATIQAVDAVDRGLDERESITRRGNHEPALLPRVAGYDEEHAVERKGRARVHRGDDVPDVHRIERATEHADALRVPAHHGSVRAPVF +>SRR5439155_7586424 +XWDAESVVDLVGHLVPVGELTARRVSRCEDGLQVGECGLSSDSSKDRVGEVIRRQLAVLVRRPARSPAVAVARPADLVRGELILTAAAFGCKARRDDDRILELARQECGGDGGAEVVVGVAARAVNHDHRAGDLLVLLVHSIRAIDQRAAGPAADRDPFRAFLLRDRARRGVSRHRRREADENTGGKDQRAFHVADDTTLTSTAWRLAPTCPCALYSIQPQDMVESX +>SRR5262249_42789402 +GVLAVAQLDHARDAHEIDARAEIERADDRRARQDQHRELLEAVDERVRDRAAAAQVPQPERVVAVDHDATVVAALPHGDALPPAGAVFYNVPKMVTLLMFSGGLDSTAALYKLLTQDSGALRVHHVHLINREARARAERDACAAIIDWC +>SRR5437667_1021999 +LETICLKCLEKEPGRRYATARELAEDIARFLNHEPIRARRANPVRRVWSWFIRHPWIVTGAASLVVLLTVGFAYRMWERVDALEWQHAHPKESPPFNSEYFLPVWFNFLLLFEFLFLQGVPVLSFLTLRARQQRANWFHWVFAMMGAVQLLFGLEILRRAVATQAWQPQFILGPILASIAALTNVWFGSALAWKALREARLDLPGVDLSEEPIEHPLEFTNQK +>ERR1740121_1965673 +ASWLAQERPAAAAGLAFRRARHGRTPACAEDCELRSREAVERIRQYAWQLVLQSRENISMAGKSAEWRLNNTLYERSREEQRNLQHASKQHREQALVQEREWLAAQTAHNESLRSAAEYELLSSAFSAMMKEFSKDRGLWQQLSQNATRLRQEFGDAVQDWSSAVGESSLASQTGEVLLRNSTATLYEDMRWLKEAHREVGVRLVRVGLQARPRGRVPGAAGGEPGAARAAGHADQCREAGQAGGDDYRGRGPGAGGGPLRSAQARVPSSGRARKRLFPAVSX +>ERR1740122_63733 +TSAEPTAEADNDEPDEERQDPIFEALAILSLDGDVRGLLVAACCGARYVRRQLCRHPDADGAGFVLDAAQVHTTLELEEASVAPRVAPRVLRYPILHLTSGSLRLDTEPHEHDHVPTDDLTVVTTMLLEVHCFGVVLPEREQIDAHAEVHSQRSVGRQLCSHHVGGATSQCGLLQRQLVEGHDFDVAVGHAALLLSVCAPGPLRTRACSARIELVLNVAPSALVGHLVLPDCCCDQRVVSVGGCAAVAAPPAARDGAPHDVLNAEMSLAEHVGAIAAVIALAVLHASALPGHRGDGKRPAAAAGTLGAWLQLEAVGPLRAGVERRRHVVRNVR +>SRR4029453_18409069 +MTMRRSDPRRLHAGRMPPLRAGLAVGETVGPRARPSGGPGSRQAPRREAHGPGVGEPAMAPRSSEVAGRLPRARRGAMAVGYTPGAGLDVQPKTGTAWRVTPAPRGPQAAGILERTAWGTITADRRALADWRAATGVTPVAMASPAASGRPVDPLREGPVAVWLVHAAHVQQGPGHQTDQAEARWWAPH +>SRR6185503_13583503 +RLDFVARAEGWETCAVTVPRPDDVWLVSRRATAVRGRVTDAAGRPLADAQVWRVEPPNEATMTPTDSSGAFESFFTAPGAGQFRVSHPAFLEKTVAVAAPSTDVVVALEHGREVSGRVAFPDGRPLPGVPMYGENERVATTDADGRYVVTGLTEGRVDIRCGLGNDIERRFVESGTTGVDFVVDRPVARIRFVDADGRPFRFVTPRMRVCKDGKDLW +>SRR5579875_218622 +PSSGRFCRLPRGRLIPAEVSAEALARERRMHSIVQAQDSFHNQLILLHRFGGAGADAIGERQQHQIGQRQPVDGRYERGSDAGGHRSQIGKPAQDLEETDHGSENAEGWRKSAGDFERARAAFQLALAQADAAEQRVLQFGSLRHIQREGERFSEERTAHAFEHRLNRQQAAGARVFHQRHDLVDQFGVIQLRRNKELARPPEGLNQRGAGGGHEKGPQGSAGDDQRSGGLKEIDEPYAAGRDAGQQCGGRDGDAGQHPNIQARRRRRARHFFQGGGGGQRATPARCEAIRLPRAGGRKQRRARRRRFVTGTSLKPSCLEMTRREAIVIAFGQPLAASDTRPFWEGKKPEDWTEEERRELLSRSPWTREAEVKFNGGPGPLGGPDGWLMAQPGVILNEPNGSTTRTPKKFAATVRWESALPIRLAGGNKSGKEPANYVLSVTGDLPMLGGAGEETDEEHQSRLENLKQYTRIEKRGGPLYLADFADQRGKGTEAGTRFFFDRSDPITLHDGSVTFVTRLGPIDLKCKFALKEMVYHGRLELX +>SRR5277367_2534031 +QITSFCEEHHIDLLSTPRSRRIRTLPSRFKDAFITISVGQRVNMNNEDQYRANLYYPLINSVLIELNDRFSFENMQMLNGISALCPDSDNFLQSEVLKPFEVQMKADLSSLFNEIQVLKSMLKDTKLKSIV +>SRR6266568_6098953 +GVTITVSAPSSAPAGLKGVHPAWSPMQPANVKSPAALMVKWLTVLPRVEVAYSCLPSAVTATPCAQSSAPAGEVGVHPARSPMQPANVGLPVASIVKWLTAPAWSPNLVVVX +>SRR5207244_11792182 +GARGEPLGLWWARRVAGPAGARLGGALRQGAGASLPPRHALPPLAARQGSGCLHLGERPPPAGAERPDGRRAARRRSLTCSPARHRTIVGVGVRTRSALAAPAVAALVLAASAAAGPPGQWTPISKGSPLSSDEVGVARTPDGVLHVX +>SRR6266852_3314374 +RTTSACRRCRSRVPRQRHSYDVSDQRECGPGRDNGDIRVASRSLLVGTDRPERGALRMNHNHWDDLARENAEYYICPSETDYSTPEGRRHFFAEGQLQVNRLLEDIGQDIHSHRRALEIGCGVGRLAIPMSQHFDRLSAVDVAPRMLKALAKN +>SRR5688572_20022461 +MIRGSLGRLSSVPEAALRQRYWWSCRSSRRNQKVATAGIRMRRWKPARSPRRGTDPATRADRTPPPCSRRGACRWSGAPGGPALCTCRAALDAFPGAAGVGGELGRFILGVSDDFIDGRHAVADQPPAILAQALHALLDGRLADVMRWSALQDQRADLIAEEHHLEDAATTMVAAPLALSAAGAPVENRRH +>SRR5579859_288497 +LSCRKSAGDNEREERKNGAAQTTHLDGTARRTLRAGGPFGAGRRHFLRDGGGNDRAEVSLDYVFAGGLRTVERRAGATGRRGSRKRGIDPPGPTNSGEGQGEEPEYRGGDAREQAIRKRYFDGFRGEPGDGRIAWEPLRQYQPGDHRCAIERRSGSSRDRRKSHEGSGRTERGSARQSPGVVGKRPGSDHRCEAGQRLAGKDSDRX +>SRR5688572_26030911 +SRRGDRLRAHPSPARPRHGRHHRRNRVRDALRRRGPTQASCARGRSVLGAGLRSYLRRRLPMGAPYVVREPVGGSAGHRVSDYAVVHRSWLRWTVRGWPGSEPPEMALAAQRPHRLHLLDHRRGARAGRRPRRVGALRAGRVLGDPHRPAGARRVWSTAGRRDHRLDRPPGRDQPRCGHRASSHHRRPAALRVVRGVVAGGVLGSRRRARLRGARPGKLTAAKSEAFRVDRLGRSIVIAAGGTGGHIFPGLALADALRLRAPETPVSFIGTPHGLEQAIIPKRGYPLHLIDMKPFVRRIGPGPLIAIGSLILATGQATRLLRTHGAAAVVGMGGYASLPVLAAARRLHLPSLLHESGAIPGLSNRVAARMTRHVALAFDEAARSFPRSVRPRTVGMPLDASITDLERGSLRSDARSALDLPPDARVLLVLGGSLGAMRLNRVGVDLASRWRHRGDLRILLKTGAEHIEAVQAELHRREVSHLVRCFAFFERMDLAYAAADVALCRAGAGTVAELAASALPAILVPYPHAPRDHQTRNAAPLARAGGAVIVPDAEANGARIGAIAEELFGDEER +>SRR5437867_1173916 +SAWADVALLHAALFGATIVSSRPIDDVEAEGVVLIKQHLKVGCARSPKVSRAPLTNEDAVGGGTGNRGENAAAAGESRAVGLCIGAQVVLICDNGLDDRLIRQGTVCAQIICIARKLQVAIGTDVCTGKTRTVKAYRKRKRNGGCAIIAMVAYVRVPGHDCVRRSRRGIVAASAGGSARERLLNGNHIWLDHWFGDALLGDPATAGLRQRKWDRADCDEQKX +>A0A0T9YTR4_MYCTX +MRSFCPGRSPQITVVRARSGRASVVISTRPGTSTSCSIPAAIISALARVRCMRSAPRSVRSCSTACSGLSRMADTRGSAEVSGTSSLVTSSDCTVTRTNSSIASTTYSIAATLRWASDTSRVDVTLTCLPAGERQCARRVSVPARRSRIRSWEINSPYRTSNGSSPTNRRKILPLVTSTTVWPASGYP +>SRR5882724_3941186 +SLPSEGHAEGDEDTARGSGRERAVRDQRRLRLAVEVRRVAVFAEAILRVEEIGRDDAKLKRYPGRGGGCVDREDVVARLAVREWTWSDVRDAGAERPAQGPSEDEPWEVVKEGSVGAQDRAWHVRDGGARVVVCRADERQVRGFVEERSRTPQRAEPPRSSRADADDVAPLRLIEDEILVDNRLEDDRAGDERGVTQVAREGGAGLVSRDAGERGADVGDDVAGIDRADALAPAQRERKAAQWPRDQRSARQERSSRGRSDLVGLARAAEVLLCEAALVDGRVAGRRMRDGLRGAVVMHVIREQLGAAAPAEREPATEAQVGVAVEAD +>SRR5258708_38243777 +HDVDRVVVGGQAADQLQPLAVRRGRELLVGDRVLAVALVAAAGDRLAGRARGIRTDVVVERNRTETTAAGTARSQSGCGEGGAGENRHALPDTVGPSPHLASNAELRLEWLPDRREDRRLWPAGRPALPRCTTSIARASSPATPTATSRTLALPNGVHR +>SRR5262245_54597287 +GAVIASVGCAFTTVDAIDAPHVLAAKLSIESPLKETYHQYVPAAADEMPALGLQRPSPVGDAVPSVVPPEVPVEGAVAPVKYLNVSVPLVWPELLASVARIDVGRIAVPVPAVSGDVSERVGDHLPLRTCVTGMLAPQALLAAAFVPSVGIDA +>ERR1700689_1111789 +AGCMRRHGENIDEALRRYEETRRPATAAIVQANRGFGPELPMQLVEERAPDGFANVADVITPEEIAEVTERYRTTAGVSLAALQRRTSLFEDPYPLSEHRGQGARKGIRDGGESPGTRATVWGKMRQWFHPIGMPQTEV +>SRR5439155_12922379 +FFRRLMRLTGMGAETGSQKSVSRDALPVREQTPSLPVLPQRLDRSFTPARPLALETGAATKAMLALALANGDDFAGSLADAGSALDWRWMAAALALGVDRWAEPPARRSKQTNFSPKRK +>ERR1711871_374509 +VQQHRDSNTESHTRAHSNITTQEQAIIDHANEQLRNNGLPNFQLSSDELNPYSQSTVSIVNGSGRQDVDVCSNNEGFQPIYDGPNLACPDGLLQFSHEIPGQNDWYCCMLPDDPMNISTDENGHKSSKFASMVASNLERLQSAPRAFKIGLGVTIIGITLSSKFRSLVSKIAT +>ERR1711871_1877964 +KDYSVASEVTAVLSLILERAKYDDLGVSSSLLSEVYATLALLAQACQDNLAIGETPMSFVDDNLRMTVAMTDSIDMRNKSFAVPVSTYESYAGETSASLGMSDMADSENAAGSVGLMVLQYLSNPNAVPTNSTSLLLEATKYDSSSRRRTKRRLTSITDRRFNSGLRGRSSRQKRLARNQD +>SRR5579859_5275108 +RPVLPAELAYAAADRVQPGRGKAREKVVLDMPIQSAQDRPPTPPDDEVLARLDLKAAPGIGTFLAEIRIVVRRDLVADAAPHLKARENEISDHGRDQPCREHLFPAVAGHRREKHILISDEDRKSVVX +>A0A257SWG7_9GAMM +MSAGTDSRRAPRGGALFVWCGLALVLLLIPSLAPRAAGRCGADRVDAQVRVTYVYDGDTVRLADGRHLRLIGIDTPELHPDHGGPQPLAEAARDQLRALLQRHRYQLRLRFDQDRQDRYHRLLAHAFLNDGSSVERRLLDAGLGTALVVPPNLWHLTCYHDAQAVAQHARRGLWALPAYQPVAAARLPRDADGFHLLTGRVTAVRGGRRGIWLQLDGPVVLRIPRGDLIYFVGHDLPALKGQRVLAQGWLHRSFGDRSGWFMAVRHPEALEVLR +>SRR6266542_84348 +RDRHCRNLLRFQVLRAGPHEVYGYGPRGQEISRQTRRAVSGGAHTKGVHVKIRFARGRGGSLVAGGALLALTLAVLVQSASPSGEEGATTRFAPVDISMSGDRPSSFTPAALAGSSRTLMLQLGPAPLAAHDAAAARQGRKLSQNERAAIRAEIKSKQEPLLGRIRQGGADVVGQLQSAYDGIMVRGGDLARLAALPGVVAVRPLEKFQASNERGVPFVGTPPVWASSLTGAGVKVAIIDSGIDYTHANFGGPGTRAAYLDAFAHGTEAPPPTLVGAGAPK +>SRR6266511_5884634 +WTSAALGTLPPHATTAAVAEGVGVGVGVGVAAGFFLGLFRMRAYAAKPRPPTATAMATDAARMRWRRRRTRSRRRRSANFANCRSRVFLLLWGMVRTDEPTGWWLLRPCDRRCRRACRSQRSGP +>SRR4051794_24959122 +XMFSSAGSAIIGSSDEAGGGPPIPRVHHVQGQPIMEAKLRLATLVAISLMPSARSLAHAARPDVVLADFEGDDYDGWTTTGDAFGRGPAHATLPGQMPVSGFHGKGWVSSFAGGDRTTGTLTSPAFAVERNFVVFLIGGGGWEGTTCVNLLVDGRVARTARGPNTQ +>SRR5437762_3811764 +FRPRDRVKASRVNAFQLPQDGRRPRLRWRRALILGKIPAHRDFSGVAGRQHGTIEGRLALGDDIVKRDLLDRLCQQLADAIRQRAVVDEIRRLAGDPLVVQRRPLLQVGGNVIGDRKVLSEHVSPAGGKSSRRVARYGKWFPNIAPRSGTYFRCRLPKAAAMPSGLPMRSISMSMRSPPQNNSPLNTMVGTPNTPSVSASSMMRSCSARAG +>A0A2E6AYA7_9BACT +MNFTAIECSTNVCSIASYKSNKLLNVIDISDSYNHSTNLPIIFKSIDDDLKKIDTKVNYYAISIGPGSFTSLRISLSFLKGIVFSKNIPILPVQTHAALNVGTEKIGKHYIIIDSSKDRCFIQKFNNHTQIGTPYIEKILNLKNLDYPIYGYSKNIEKNNYIKPSSLLIGAYVTKNYKRLIKKPAKDISPIYLSENVYKKIDDT +>SRR5258707_10299995 +FAQDDRNGVVWWEADDGIVVIGVIVVQWFVFFFQAEDGIRDIGVTGVQTCALPISYNRTAMSRTPPPSQPDSPELLSEADYEERSEERRVGKECRSRWSPYHX +>SRR5882757_10583142 +RINDAERRVERPAAREGQAVRPRMAGDAIPRDGEVAAPFHERGIRNPSPCAVGDSGIRCVREVGYDETGYDEAGYDETGAQAGGAIELHRGDGHGMTACQNMAPTPVPIFGGMPRARFSSTGSAVAESPRPRLPPARAVS +>SRR3954468_7113634 +LDGHPEAPTGERSACELNVDGCTWDAIAGELNRQEIRRPTASSWSLVNTSKIARRAALVLDIYSRRIVGFALGQHHDTALAYAAFAMAECVRGGAVDGVVLHTDGGSNTPHGPSRLTAPDLGQPVDGPARAGARQTPRSSPGTPPX +>SRR4029077_1358176 +SRSRKVPRQRCLRRSPSTGKTRGWTCAVPSPTLQGMGMDTYERPAGAGMEATQGPPQVGAVDSLLAGVLRLSHLADSTGEPREIFHALASELFAELGVEEVHVHHHAEQEDMVVVYMFGGDGRLSYLAPLGERPHGVAWVAESGKHIVPHGTRELAAAVPRLAVGGRVGAALLLPLAVRGEVEAVVILARADGRGAIGVGGSTRAAGGAAQA +>SRR5271154_6067984 +TMRVLKPGDRILVSTSLKRANCRSLGRQDILALMYFNNYLSRDIASAEQSARKGKSIKFGNSMPTQAISSSWLSWRICKLMGHLIPSSMVSLFINVSDRRRRWDLSCCESLSFQASRQRKRFTSPGDKRDDKYPEFRTEGTVCQAHRYYFNDGNYITYRKRSMAWKSVX +>SRR5437763_77052 +AAFHAGWHVPQLVHDQRPVSRRYRAVFDSVVVIIAGHADHFPPHAGKILAYALADRLLRIMPQIARKFLRKDDVIPLGVSIRPRVIAPGDDPVSHRLEVARRDEFIPPQGRQLAFGGRLVLGEDRIVALPPVHRDGTGRGHLGDARNRGDLVQDFVVHLYDAIVALDCRVRNRYPQRLYVLRILEPGIDAP +>A0A1J6JVT2_NICAT +MGSLMDESKMERMGDESKEAILYVNGRALLVYDVSKRHTFERLSSWLEDILQQRDTTVIVVGNKYDAGEIIRTVSAEGGEEFAKSNGCLFMEASVKTAVNVVAAFDKTTERICEKMGYGDVEEVDEALEINMWNWKGFRIGKNTGVK +>ERR1700728_2000873 +GTAPLFSASQAIGRLLPCEQAHGASAHPAEPFAPDEERTPGIRCSCGQFEVANHPRALAHQRCVGSGTGAAPAMTAQRESTVTDLLLLQLIRLKGLVDAAGLASSTDAPVEAIRSTCAAWAREGLVLETPRGVRLTATGRERLADLLEQERAGLDLRALQAVYDRFGEHNGKLKAAITAWQVRDATTPNDHS +>SRR5262245_41074620 +GRDLVREDGRRGRGHAQLGRGARRGPVDSIRALAGARAHGVREPPVAVADRRALPPAELRPDGRLLGADRPGGRQPQESIHPLRRAAQSVPAARRGGWECFAMNDVNVAVPVLIEQSGLEHQGNGRAGAERLGKVAAPPNKESTSEFFHFWVEKGKLCERTQIVTTSSQLGGRTVEFVGLVEEVYRQSRQRDMGEEVDRFDADSAVTPPFASAGFTYAKVTILRTDPVTHAPPTEESTVYLGGEREAEKGYGVDRMGKPMRVGLLRNGGTPFAGPATIDLDYLLGENGGHLNVNGIAGLGAKTSFLLHVNALLLHEAERQITALGISHSGRLQVVPVIFNVKNYDLFFIDHWGKQWQKEKLTALPEWRDYLGINTPTPFRDVQFFAPEDEGGNPAKVGRTDEKVRGYSWSLSDIIEHRLFKFLFSEEDIYDANFGGLVGELEEELTDESSGAPRLNTQGGDTATFAKLLQWFRANRDTFTDSAPGTRGKLLRRLKYIVQEG +>SRR5262249_55421997 +XDQCANIEIIENFLRSGYDILRHDCTVTGSNLCHKMTAVRCANNGASERHDPSRVLPIQNHVIARREQSLEPIAESNALPTELVGSEHDTAQHRIQSRAIATAGQNTNPWPHVIKTRSERLGRIDESTPSRPLIVQLPPFIHQSRALSESVSA +>ERR1719460_1257335 +AMGLGYTKKNWDNQSGKEKYPASAMKYWSELTSCGCKNQQAAATKFGYTQLTWDNKSGKEQQPHSAYKETWSLLTDDEKAAAMVLGYSQTIWDDSSKQTYPASAGKYWSQLITCAPPATAAGDAAGDANIVEDQQDQIGEDFIIGGVIALAIVLVVALVVTIAIVAAQSNKADEYSEESHNANVLDKKTDDDL +>SRR5258705_15912 +PPFWRTWWFLISVIGAGIGIVLGVVWFLLSRQKNLFKQHALQAEQEILRLQNENLEKDICSKQAQLNASVLQSAHKNQFLEDLKANIQKIDSAETKSKSKELHRLTRSIDTELTQKNYWEQFQLTFNQVHQDFVHKLHQRHPHISATDSRLCCFIRMGF +>SRR5665213_2795117 +QSRSSAASDVYKRQCPKPPAMFVSVLLVVAGLSSHAQQPVYPVTCILSNGDRLSGDLISISKFRLRLQHVTLGRLVLKRSSVAVCETTDSTTRVKLGDLALDTLPENSRTTVGVLPDVMPLPPGSVAPVVSLEHLMHPPKPTPLASRALPTYVSHVGWKRAIGMNYMLTRGNANVSNLGFTGSVARRADRSQVALSAKREFGSQDGNATENYFSATLRYDLALGPNDSAAKSRPSFFSEAVVEHDPFAQIGSRAVENTGVSVPLTRNKQNDIALEIGTGITHEAPTGVPSYTRFGGLLRLAARQIFGKAKSDQQLAIFPDLSGPHGHYRSNGDFNLSAPLISGVALKLGVADRYDTRPQARVRKNDVTVQSGIGIEFX +>ERR1719443_2623778 +VHDFKRKRTMDKYVSDDSDRKPTPPLEAPRAEKGEVAAPQANAPASDTVAGVSVRGGFAGQRQLRDLKASQEKEGGGGTSKPRGEPLEEWTYSDYQNGEVLNPVNFDQQRDCGAWTAIALHAFQADISKKPIRVRENNQPQAVQKAKFSINGGPNDVINRDQDECMARNPFVSMYSDVRPNRVLRTRPPRTTLAVKKMGSVPAYTHRDAVTAKAIERSNARRTASKATYNEAAKTIQQIWRHYSDYLSSTKEWFLQCKMAAMQIQWTWRQYHVWRRQVDKLMTRVQAVARGFLVRRHIRKHFHIVRAQKICVGAHQRSKLKNMARCVRVIQRWGRGHLVRVKLRVFKGFLVQTVRVIQSYWRMRKANQEVALLQEEKQAQALLVKSAIHMQRLFRGWKGRQRVLVRQQEHAQAQLKAMMAVKCQGQMRGASCRSKVAKLRQAKLTRMNNAATYLRKMWLGYVQRKRHAEWKNFRVDQIPYIVTMQRIARGFLVRNRMWRAVEKEEREFYAVHKISRLWRGNRGREKWQRLKHSQLEREIAAACIQPVVRGWLARLSIRRGTDRTRYAHFELLKRRHLAALKILKQWKVMLPRIKISITLRKKQKAACTIIALCKGVRTRAMNALRLRQMCAILIQAHFRGALARARAEARFPRVREIRLAAVASQEICFPNRLKRKAFLIMCSGLSAPAWSTDLEVSKSKPAKTPEAKEAQLMLLEAVQRARAAGMGLIM +>SRR3569832_936138 +AMTIRSSAARCGRTLAVMIALHVVPVLAAPADQAFRQGLSAYRSGDYGKAMKIWLPLAQKEDAAAQAGIGFMYHRGQGVALDDSKAAYWLRKAAEHGQPEGQLMLGSLYFYGTGVEKSYVKAYAWCDLAQDGGNADAQMCRDAALQSFKSEDDVKAAFRLSLELHQRFRRSRRAARYSCLFFLFFSVGFSVLPVI +>SRR6185312_8416935 +TMWLLVRASHDERLRDSSLGWAVLTAGLAIGTKFSNGLVMLIFVPLVPWLYRRSIFSKGRLAIPWTLYGFPLTVFLPTILSWPWIWQDSGAHLGETFGHWNNYVVNELFLGRTAPAPIYYFLVAFCFTMPIGIAPLFVSGISQMFRPRAEALLRPLPPGSAFSARGWWVFLTIWLAVPFVWTFAGMRQDGIRYVYSAYGPFAILCGAGIVALGRGVAALWKNPRARYATAALTAVTACYLAVADVRTYPFX +>SRR5919199_676836 +RKWRFNAEEVGKMRRIALEQAQLATTLFALFSIIRFSTGVGHPRQHLGIKSRLQLKTEDEGRELQEMSVIAICGEGRIAVSALRYTHHLLLASIPNIRLVACPNYSDRGYDTWYPSLSKAARAMGVDVVELDSLAAEQDLLLLSLEYRRIVKVDRFASKRLFNLHFSRLPKYRGVYMATWPILNGETEAGVTLHLMDEGIDSGPIVDQRSFALPSHITARGLYETYMDEAFELFKENFLRLIYGDYRLIEQDHSKATYYAKDSIDFAQHTKLDLSQPASRVERTVRGFYFPEYQLPTLENRPVRACHIIHGRSSEQPPGTEVCNTSIGAIYVAGDNSLVELVWAXX +>SRR6185312_187726 +PRDVFPEHRSRRVAGYPEGVVVDTMRREEQPILMHAVMFEIFAVPLADIEEAVEAPQDAREDDRLGQADEHAAPCHELRVAAYEDGHPGAPARVRRLEIGPQTPARHDEGIEAAVGDLARDPGRIAAAKVLGRRPGCDVLEELAV +>SRR6266851_1047964 +NCGLQVISSGGIASSTTVLSGGQEQVKTLGHALGTVLSSGGVQVVSAGGVANGTIVSNGGSVIASSGGTAGGTIVSNGGSVVASASGTASGALISSGGQEIILAGGIAKSAVLLSAGQELVSGGVASAATVSSGATLNVAAGGLVSGTQLSGGVTNISTGAVASRTTLFSGGVENVSSGGKTVSATISSGGVVNVLSGSHVGSSVIFNGGIENVLLGGVTGKARISSGGVQNMFGSTNNAIVFSGGLQNVFSGATVTATTVSLGGSTVVSSGGTVINTTIASGGTLELQGGALVSGTTTRVAGSIERIVSGYGLNNFTVQSGVTLQVGAAGAASGTIVSSGGAENVL +>SRR6185312_1756791 +XMRAKPLCFSPASINGTSCCLSPEKLRATKVAPSVIASSTGSIGGWKLVSPFFALVPMSAEAENCPFVNPYTPLFSMMYSMFRLRRMAWQNCPSPIDRVSPSPETPMKLRLRFAALAPMAIDGMRPWTELNPWPPLTKYAVVFEEQPMPESFTTFCGSSDSSQAASTIAAVIESWPHPAHRVDSAPSYCRRVNPSAFLGREGWATLGFARNVMWTPAQRYAPAPWAVLGSALSSLRGRISWSTPSTMNEEEM +>SRR3954471_24146024 +TGARRRRKPGPGGHRAVGVPAARAAAGLANRSDASTQGSPGMIQAQELLRRLADPGHDMVITPILDARQQIGAASVDLRLGPDIIVSRRATGTTAFDASDPQGFSRALQERQAYVRRRLGDTFHIQPGEFVIARTLEFVRLPPDLSAQALGRSSWGRLGLII +>SRR5690606_23903138 +LEPSVITVESPEHKFLNKLMGVIEARMAESDFGVEELVMEMNMSRTVLYKKVQSITGFSVGDLVKNMRLKKAAMLFSQTSMNVSEVAYQVGFNDRKHFSREFRKFHELSPSEYIKKVKDESLNGSDL +>SRR3569623_980461 +LVDLEVRRHKKKNTGQHHRMAAVVQGLRMPVEALHPLQFGLEFGALDRIAVRRIEAGHDHAFHRGFQVAALLVLWIAGQAAAAFDRFRSFRQDRHAVPRSLAVPETVVALRLDGRDGELLVRRLQFLQAGDVRRLALQPFEQVGEAGAYAVAVERGDAQGPGAFPGGFLYRGHRQCFFVAGLDSAGFSAGFAAGFAAGAAASLRRDSSSGRQAISRSWLGAISAPSAASGARVARAAAATPRISSGPLFTPTSGFDSVPRTCSGERSESRRRRLACGCTVRSSFSVPRSMLPSTVISASSVSMLNSRGVSTPSFATRSAAAQWMR +>SRR5262249_45364707 +TVEVEQPALSDHLRAELAVGERGVGEFHVHPEVACRTVGEANNGNGAEIRDPMVAVARDARVDAVGLAADEPAEKIEVVDALTHEQAGLRVAVPRAGPDDRLRPRRGKEGPDPHLAGAADAPLVEEALGLLVDAAEALALDDHQLHPSGGTVS +>SRR3990172_9952057 +RRGKEKRRRNARLIHAGILGICTSTASTIPRYSQSRAGKKRRCLPSGRGGWGTMSSEGVQTVMPVDASPIHLNPQAGKFESIKQTTPVCFHDPQTELGQLLLGLVRVRYRLPLKPELPCTAAAEALDQETLARGIFLPVHHPDRVEAMVSAVAGKILAAGLGSRLFLGLIAGLFRQLHGSGRSWIDNTVAVEVDIGPGDEETQWKGTGYPETTRVEHPPWHGGCGDIRGLQTLFSEIEEXX +>SRR6185369_2406511 +FWASTNGGVDWTRYPAPDGSGQQFYPPYMDPYDPKHMLIAGHGSDLLAETTNGGMTWTKVTQAAGMAGGATAEVAFIDNGDPAATRKTWLWLATGTGGKIGTWRTTDGGVTWKHVESNEHVAGSTQVYQPDTKGVVFMAGVYSTQGAGVLRSTDYGQTWTHVGRNSPETIVFGTARSLYALYGVGLPADVGLEVSPVPGTGTWTTPGTPAAMKLGPAQAAILNDGQTSIILLAN +>SRR5258706_8531874 +AMGFDLRSRNSQDRAGATNGNECDQGEPHAHATIETVQCRPPSNGRNVVSAQTQGAGPSLLRRGTRVLWRFISLHPLPFSAAVTGSVVYAITSVIGAGVLGRVTDRVITPSFSSHGHVRASTVWFYAFLIVLVALLRGCGVVSRR +>SRR6266481_2504579 +TLRRGNDQNSRARQGRHPRRRYRQGLRAGPDLSRQPDAHHRLSLQRSDLSVLRGHDLRCSQDFSRAASESEIVLESLANQIQESMMQSSPLNLRRAIIWIGRLVLGGIFVYAGLSKLLMPNTHLWPMFVLRFSISMNISSFAQQVESYKLISPDASQVVAHTLPFVEIVLGLLLLIGWRLRIWATAITAIMVGFLAVVTRAYLLHMDINCGCFGTPEKLNGMTVVRDGAFTALALAMTIFAFIEAREPHPWSAPEKACAGLAAMKTLAEYLDLAAVAHGHLCAGQVLGVRLAMLGLRELGIDDPVSERKRIVTYVEIDRCVTDAVALVANCRLGKRALKFRDWGKVAATFVDLQTGRAVRVAAKESSKQAAREMFPELGKDAGQQKAYAQLSDEILFDKQRVKVEVQPEDLPGFKGPRVVCAQCGEGINFKREVVVKGRALCRSCAGEKYYETLSX +>SRR6185312_10010982 +LLTGGSLNQDHIDILQNSMKPFGSNKDEDPPPDSTSLISSSNASHTELKSVSTIISAFKTLPKCVSLYAQHYISIDPANTDRLEPKFTNYGEYYKGTLDYIFYLGKSNNNNRDNIERETNEEIEMQVVKLLKMPREMDI +>SRR5437899_3944324 +SDVCSSDLNISCGRDLRCCRPSGLSRIRFLYDGLALFWSCRRRGNIRRTGEIMRQQAHNRPERIAGHGSLQTLNPSKRNQRCPLGDPSQANLEFRFLRGPREDGRATKARGRKSVGGTPTWPAVGSRLPPRSVTRHVSLLAAQTTQWRRSDGX +>ERR1712112_183966 +LMFDGIKDHPLNFGTLNYWVLREWASHCLGQDTREVGICPLGEKFAFVQALDPEGEHSLPSVHVCHRHTEQYPGYVGEVYMDGEVMDWETYQKRTGTLYPVQWSGYSFYLDDVGGSLQRVMVDHTVQYPTPSAYGMFASRALISGSGGDFSLGGVFPTVHVPTRPLDTSRDMGKVVYKKSPFSGDAAVLQELTENGYGFLVDKEEGFIYYSNSVAVAKGYPPVASALGWHKVPLRPLPSDWMVQLDQGQMAIGIAX +>SRR5437660_607594 +RLGPPLPDSRRRRRSLLAPTGEGLDARLQPVRARLAPQAELDPRLLAPAEGLRPGRGAARGQVARALQPRGPPVVGRADVRARADPPAVPQAAGLSRQLGPGSLPDALPAVARNACLAPADAGVVPADRGARRALGARTPVVAAPGGGATARRGGRGRARSGGKERGARGVPGAATIAPGTGRSAHAHRLPVPDAVLRPPLGPARARPVALAHARASGPQAPPPTHAHALGGVLALARRSPPGDRDDPGRGGNGHPPGRGLRPLGPGGPRRRFGVRAHPPRSRGAWRRQTALAPSLLAAPFGRRVADTALAHGALGCGRARGRGSGRRRARCPRRDRCRAFAARVLRSDR +>SRR5581483_1442169 +RARAQPHPHAGRLCGDLCRAGHAARLPRPSRHLHGAHRAHRCHPARPQPGAHGHHAGLPQRGLQRHQRRRRALVAAVGPDRLVLRAGGGVGAPAETDGVDARQGAGLAARRAPPRARAATARCDRPLGLCRLRAGPGLRRGLAHHQAAPHRLRRVPRHRGHGARPPRPLSPGPAAPLRAASPRVASGILGIADLGHPRALPRFRHARAMARARQLLAVNKPATVAHPPGRRVAVPRTRKTLGWRVGSTPPAADVAADGERPPERGLDLMQQDATKAELAPMTGAARVRHLRQILLWPVQLLPIEGDLQYWEHLAKGTDPSPWREVDDEFGDPTEFQERHYNEFVTFLPPVQRFLYGQGVGKAVRRIYGESPIKTMRRTDVATARVTLSRGDKPVELRIVHTDLYFFFDIDIAILAMEIAADDLPLPVAQEAVFRFGRAYPAYX +>ERR1712159_470442 +NGAPEQDRLLPDETDLLSKPLHIELAKVGAVEGDGPLVRIIKSFHQLNRSRFTTPTRTHERHGSTCLHLEAVSVADFGVGAAWVTEMHILKHDPALDAGQSFALVTMGIDHRLSVDHFENSLGSFTCLSHRCEPWGNATKTLCSNLQAKHRDQDVAAREVTCRCGETATVLTRAVSGVLKLLRVFDGTVEEAECAHDVPGGKHET +>SRR3546814_65869 +YCVFFHSFLLLFSLRSLLMCSLVCWIYTFSLLLFFFFFKQKTAYEMRISDWSSDVCSSDLFAGFVVSTQSVSAPGVQFTGVVCDHCADDSDGTCDACQSLCLELPRAVRVRHAGVLIAAGVRDFFAAKPAARTVTVVHPAAGRIHGPRAGIRDRRRARAALAQRAQGVWRGGCAGRGRRCRDCDPPSVVAVIAPRPRSRLRPGAGVHAX +>SRR4051794_20208749 +PGQYGVVGLARNVDSMHPKSGGAKGLNAKIRNTLLCASAILVLTTVARAQPADPIGDLLAQAQTTPAMPPSLRQTVAHPISSADQALFAQAMSAAKRGDVSGARNAIANLSDPIAKKTATWWLVDQNAESLSFWEVDAA +>SRR6266852_3879948 +XMGRLNANQPRELALTVSKNLASYADGGPELGVRFHLFLSFLQRSRHVNENRYRSVFMSIRDRSIRRSGLLVRTAVRRPSSCTKARRVLPNSLAQNEFPIALDQGRTWX +>SRR5215204_675534 +GEIAGFEEAAAAAPAALAAAPGAGDDMRLGVREGAEALHDDGRWGVLGEVGHGARSFWCGAGARNPPGAPGRVRLRCQRARVLFRPPGEGRWDAGGPAGLGLNAGHDRRPTRFLPGFPVPGPGFHDRLDPTSRALRPRRIGENSAPSGQRGRPVVAGEWCSWG +>F2U329_SALR5 +MMMGVAPVIACCLVLSLLALGAVAQDVDVTVYPGRLFRADLSLQFGAAASVEAIATLTGNPAPPAWLRVNLLPIIYGQVPDDIAGDRFSAAILLRINDQPVTRTLNLMVDRTQGLPRVAFEVHATNANETQLVGDRYDDLETAVGITRARLSADTGQVGSGVLFVRSVAPFETDRRNINPMTSNPPLPVNNAYINGTAWLTLGSKLSDSQLTCAELEATAGSLFAAQGLQLDFDLCTPFPISTNATIDRSRVLATVEMRTWARTKDDFNETIIPASVIAAFIFFPFALIFIIHYFARSSDEAIEQQMHRLVKNMLRRNRAHTLRVISDDNTIAAAWLANSEEEEVVPPRLSTVSKPSNTSLPTSEHSRNLRYRTHTRPPTYRPPPQHDF +>SRR5919199_6745454 +RVPKTTDGESHKEEETHSSLDFPSRLCYPGNIITCRMGQNLLNYTTEIPVEKTITEIQQVLVKAHATSILTEYDNGAIKAIMFKIRGKNGQELPFRLPAKVDEAYQVMYGNRQQWEVRRYGEKWQQHARRTAWRILLTWVKAQLALIELELAKPEEVFLPYLLVKGNKTLFEDVQDKQFLLGSGTEEX +>ERR1700761_7736419 +GQRFDSAQLHQPSLAMRAKAAAAQPAQQAKTGCRQVRKPARSALQHPRFSALGALPMLFPVIDSLLYVFNTVLGIYEFVVILAILVTWLIPAGVISMRNDVVRSIVNALDALTDPVLRRIRRVIPPIGGVDLSAIALLIALEVIKRLVNGYAPLLYTVX +>ERR1719296_360158 +THRTGPLADCVAWPSREGQPQALLRRAAARQPTALRAGTRSRACSLAEAESFSTGATCEAAARVAATEGAGAIVLLCRRRRRRRRRRCGPRGGEHAADVDGNLGCLLLVAPKLGNVLVAEDVQRTFLELAPIVLFKCD +>SRR5262245_40312332 +AGRRDRTFCSGERPAAARLRLPAAGRGAQFLYGQAGGGKMPFNVWGRVKNMTRETKLGLVVSCSFLCLLGVVLGLKMTEPPEEDQGAEVAATEPAEGPPAPPTGAQPDTQPRPAKAADKSAPPAKADTAPPPLPPNVNNAIELTAGTAGQKKAAPG +>SRR5579871_2118101 +ESTQDPGMSDLELPPEVTLRAAPLLGDRRKVEQDRPLEEVRPARELVDAVQEHGALRVEDRLGVVRVELPRREASSGGQPAERIGDPRLEPAQVVEGKTPRVLRGDREIPLLPRQATERGGRGVHTRPEETRRRALGAALLADQDYDLVRTTRSKGRNEPANEEDEVVVAGDVDEPTKLLNGTTASRAGERTHSSGPTEPYERHSHDPPPLLRHLHAGPRVVSEVEVDRSFVLGEADVDLALRTAERGFALEHSRRVHDGLTPGRLLRPVEVKLREEPPELLRAEGPRLAMTAASDRGVTDAVGVVEEFDTSLASELDELRRNGPAVLLLVVVGGTRAAPRRLDPLGSLLPRAELRGEELEERLLEAARPLGRAP +>SRR5256886_992629 +MFAQLSYAQAPNGTIPATFFGMTFSGGNAPSEYAAQPAAITSSMGTMGKESAAEWSYIEQNAPTGSGCPGTTNCTHTYNWTVLDGYVNTAFNHGLPFMFFFTEAPPWATNSVGCRSIAPGQACRGPIVSGHTADQQAFVTALVTRYGSKIGSYELGNEEDYQGTWAQYAAQSDLYVKAIKAVSPSALIVGMGWDHPDGHYAQGGDFDQFWSAWGAIPNNSRHLDVVSFHGYPHTFCAPSCVVPEIVISNNGLGTQGSGDCATTGFAKCAQNAIARNGVTTFTGGTPLLRDTEGSWGTTNYTIPAPAFISRMLLLNWAAGVSEHQWSYPDGGSVYGQLDGITANISAYQQTYNWMAGSTMTSPCAIQSGTVWTCGLTESSGKSALAVWNTAGASSYTITAGAYPDYKGLSGNTTTIASGVTSINIGAQPILLERNGSHAPRAP +>SRR5688500_8464034 +AVELDPGSRVLLMAVDRWVQLGAKDKARRTLLNAPSSTWENVPRTQGAEALLNMGESKAAAALLRGAPDSEQEPAAKLALARVLTANGEFKSARELYLIALTKSPYVALETRIEYFEFERLHGSARDALAAYDKLRGEGFAADSLARHRLSLFVSRPGLAWAWRDALGVLTLLGVTLAFCIMPLLIIVPVHYRGLALRASGRAPAREGTSWTLLDAWYASGVFLLVGFVCSYVFALPYLE +>SRR5215218_300340 +SPATSPRDSGAARWQQRSSSAAAFPLAPRNSTTGSPKNVRPTGAWVRSFDQLAAYQPFFGNCTRLLRGFGQRYLCFRSQGTNRFCTIRNLGLAAAFSKWGRAAGSREAFMPAYRLRDVAVLVGAVVVGAAAGFNGGWFAAVPPKVVTVDAPNKLATGTADTRTPATAPAPAPQAPPPIQGTAAPVTPAPPAAPAEATPQSDARNVRVIRPVEQANEISATARQ +>SRR4051794_31039054 +PGCAGSPRPVHRRDDPSAVAAGPEEAEGVSRVRPVGRGARAPRGGWRKERRRLTLGATGVHAMVHQVRYSVWVALGWIGVYMMLWVALAMVPVLGLFLEKKSPWGWAALGVFLVCWVAHSRQYWRRLFDRTPQIEL +>SRR5688572_28435885 +GALLPIYFFYDSAPSFLTLLLDTNGAMLGSILIFIGLRKLAKLLDIQTHFASPAVLASTLLVFLLLGLLFPENGSVSKNAVVQFIAQVGPIVDALRYGFSASLVWVIRKNANRTYSWALGWFFVALLSNALNTALIALDPLLMMTGLPVELLSMPFILNTFIFAIAGAAFYKMAHAAPKPTQDAGVLEVVMFTASLTSKPSDVDPILDPVRKITARHQAGDFTPQEIATLSGVYTKLEDYLVTQEPLRRVTREHLQAMIKERFDWSPSAAX +>SRR5450759_1044538 +SCATATTTEWPVASRNVTRPAMKSAETTLPNPSGVRATPWMWLITVSWLGSSTSVVGIPSRLRELGATDPATPAPKYDRTSSSPRHASRPYHGEKWRPRFAVQMRVEGRMDESFRANQRKPLVVNVAAVQAGVGAGSLKTIKPSVYPRPVGYDEX +>ERR1043165_7129941 +RRPAGGIVPWLARAGDQTAFAGGALGTETHIFRPGKVLHRLEGVSTSSFDASPEQLRAAAQKAHAALDPSRPRFLYVHVMWMHRPLWNHPAYHEALPELDVALGALHAEIGPEALWIVTADHGEEYGEHGGSFHANTLFDE +>SRR5258708_5362479 +GRAKLRRAQGHALCPLAAQRRQPAHAALVALPAGGDSFARPQRLALAQLVEPRRGGALRNQNSLRPFVEAGIALVVLAQRAAVEPQGAARQPRQERAVVADQQQPGAVRCQPLFQPFDGGDVEVVGRLVEQQDVGIAGQRTGEADPPSLAAGQRRQRLAGTDPDLVQRRFDQMPVDKPPAHIFGGREIRIERRQLRRVGDPRAWLPEHRPGLQLDLAGQRLEQGRLAGAVAPDQAYPVAEPERYRDAGEDRPPVELNAGIAQSNKRRRGHDDAAAGSTRVGESPAGSTTYNSIASCPRRCPSVLGKFRTQLTAHAALPLTLWRDWSWXX +>SRR5665811_2613661 +RSTRVRSSAASDVYKRQPICRSAARVRRSSDFCHLLTRAIRTKSVGSSMKVQAMAPPVTWSVSGEACQLYIGCLLYTSDAADDLTRVDLGGRRIIKKKKKKKKINKYL +>SRR5256885_2171212 +VRGRRRNGAGVTGGTRTGAKARALEPLGAKVAASPGEAAAGAERVHMTLPDDVVVDRIVDDVRRHLGKDAIVVDHSTTSPRGAAARIPRLNAAGVRFLHAPVFMSPQMARDGVGIILVSGPRAVFDDVKPALETMTGDVWYIGEEPDRAAAYKIFGNSMLFVIAAGVADVFAMAKGLGIAPADALAVFSKFQPGGVIAGRPPNPSAPANFVSRRARVIALAHARVIDGTGAPPREDQTLVIRDGRIADLGDAAAVAPPPGAAIVDLAGKSVVPGLVMMHEHLYYTTGPGVYGQLGVSFSRLYLAGGVTTMRTAGNLNGIMDINIARRIAAGEMRSEEHTSELQSPCNLVCR +>SRR5437016_5746367 +CLSPAYHPVRSTAFRMAIRGKAQLDTRVSVEDNPPRLSSRTICLTQVSNLLGKSSSSAARKKEVGMRRALVCILPFCVIAFSAFAQDAVKVDPQHYKVEFENDQVRVLRIHYGPHEKSIMHAHPNAVAVFLTANRSKFTLPDGKSEERSWKVGDARWTPAETPARKPDGSAARSSFGRAKKVAGFKNTHARSREX +>SRR6266481_1587377 +RRKPRRPIGRSASGQAAEVRDIRPSVDMPVSGAKAASGNLLFSPSVTSLARLAIESGCELHRNRSIGGNLSHQVYLTRAVVAGDAAGVDLRRQATGLRRWQAAWTQGPQYCHRSRRWKTSQGSX +>SRR6185369_7209777 +IVLGDTACPSSSCGRVNAQRGRTTMDLPSKTVFEVLLNNGVDTLHHANSVITSCQFLRQKSLLSRGSAERSGLKQTSQSSDATDLRYSLWYDVFMDSVDIHRRARKQNHYGPVLFLLDVEKLAATRTGRIWVTKLNPTKWAGVPVEDRWFRSKKELVTGFRRGTFDQMIVFRHSGGALPLADCLDEIILDDPDLKVDGYDLCSTAHGALTLAMSDFGLQVPITKRRCAPTCTCGHYYGSTNADIKDGVVKMFFPYQ +>ERR1719183_2396889 +LVVGTGPRRPASRRKAGRMSALARHDDGAGRETAHSLAKDGGCPPAAPYSATTHEGGTAVDVVQYGADAPPGLTRPIGDPRPVSVSSGSAQQRSGPSLQSRAGTGASSLDSRSSRSSSSSSSTASGWSSVSSSSSGSWPDDEYPPPPPPPPR +>SRR5438045_3528744 +PGAVAHEVAVAAANVGQAEREDPVQHPEGPLAVQSIEVDDDLGIARGVKLQSRGAALFAQPAIVVDLAVEDDAGAAVDVPKRLRAGGAEIDDAQPAVAEDGVASSCDAVAVRAAMREGRVHRIDPRANVAARLEHAMDAAHSVESDPLGDLVXX +>ERR1700691_2800241 +HAIVVGIGDIVERAVGIESFDLAVGFLEDECTAGLLGEDAVVAGLGEVVAASAIGLEDTLFTVGHVNRDGPVGRDREEILPVVGPAVSQRSERVAGADRVKKRPREVQRYAARYS +>SRR3989338_1552555 +GWDERGDDYKTFFFVRIAKQSEQRKIFIKEQKVFLTMEEYMLSNSTAQGKQELLAPLLHQNSDDTLFIRAFEERVARTIKTFGLLDGKKNIVVAASGGKDSTAVLYILSKLGYPVTALSIDTHIGCYTEQNKRNVITFCKTHNIPLLLKDFNTEFG +>SRR5215470_13194424 +THVRCGEPLHLATEQSRGAAGEQAAGLTPCPARGWMGEACGGTPSFRRPGPRADEHACKVMGLSLVHQGEVPTRITLGTAPGKITCWYSGGTLAGRTDPGRRERGCPALATNFGQLMTPRPFRSVCKSGLA +>SRR6267378_3904149 +VLRLLNRLHELKLSDEELAKVGAAVGSDVPFFVYGGTALVEGRGERVRPLSVVAETWLVVIAPSIDVPGKTARAYGSLTVEDFADGDHTKQMVACVDKRKNVPAAFLYNSFDSTKLGISLATRVYAGL +>Dee2metaT_26_FD_contig_111_7158_length_345_multi_4_in_0_out_0_2 +MDTSKLKSNLNINMRLINLDNIGEISRKNIRKFISTIYGFKATTKDLKKIAIDMGLDIGKRKDTQKTRTYKFFGEMYNDDIEKKKNISQQLDKQIKILEKKRGKTYTALDLNKDLLTKRPFKNMFKSSKSKRKPFSVNLISRVVSNVKLSTNFNNYWQFRNWLENEEKWNGMEMNSGETIIKIGNEEAEVWDLFNMTINFIEGGKTWGENKKTITRNIKFLNYECKVLDPATSHVGDNNCGIRVLSKLLDIKLNPKSIRKEINSPAGTLINTEQLNYIYKKNNGRKNLIIIDENYEGEFNLKDTDYVLYKDNHYTAIIEAKRQNHKETGKKKQKGKLAFDIETRHTEEIIMVGETKSKVLKSTILSMVYKCVRGKKMKKTFTTDNNKNCCVKFLDWLGHEANNGRYYNCVAHNGSRFDFYLLMSYFTEEDLLDSKTQLRGTSIIGLQYKSHTFKDSCCFLTDNLNNLCNGYLITPEEKAFSKLTNIKIGDKTITNHQLCFYKPELNFNEFMELETKEPEFWTEYVKYCEYDCESLFLVWEKFKFQIDTIIGKMGEWLKKSVSLNTCNTIGSLSKKLIDANNGVKSKKQPTKEMQIIRNKYKNGNKWKYGVCKADYNEEVKKLKESGNELYEVGGITGKPNFRKYCEFMSNDEEKYEFIKNFKRGGISHSNQKGYHKEGVCGFDIKSQYPTALMNMKIPVGKSRWVENYEPTAYGFYLINNIKWCSNVKLFKPVANKKDDGILDWATNKFNELYCDSYMIKYLKENCGLVNFNVIKGLVSNEEMISNKLFGTYVDTLYKEKAHQDYLKDSNQEYNKPYREAIKLLMNSLTGKLVEDPSRYFKLEFKSNDEKTQSINNVKINKTDANKGINYWVVAGVMVYSYSKRLLWEYINCLPNKADDVIHIETDGIYFGLPNKDAFIKNLKEKNDPIIRIGRELGNVEQEICTKEESFFIGKKDYMIGEPILNNDKSINYNKSKIRNKGIPKTTINDEGNKIDLLNKQFYIDRYNGKTCYKTFKTIGKALYDTKHHSGITLTGYDMVRKSTPHDFKNFKMYEEKDGKVIIKDWKKY +>GraSoiStandDraft_4_1057263.scaffolds.fasta_scaffold10840448_1 +DNNEAFTLTATPAGGQAATGTGTIKDDGTGDIYKADGTTDTSAVKNDDRVVAVTSPTVNEASPYAVFTVTGTAGQTVSLGLTAGTATGGGTDFGSATATTNLQYSIDGGANWLDYSTTGAFALPAGGSVLVRTPINNDATPDNNEAFTLTATPAGGQAATGTGTIKDDGTGDIYKADGTKDTSAVKDDDRGLTVTSPTVNEASPYAVFTVTGVSGQKLTLALGNTSTVSDKDAQLGTDTGNAGTGVPLQVYDPSAAAGAGAWVDYTPASLATIPSGGVLLVRTRIANDSILEGAETFTLVATNTGGTSAEGICTIRDDGQGSIYPDNKTGADDPAAVKDDDREPIAVDDTYTVAEGGTITGNINANDTDPDGKTLVGSSVAVVNGSTFTSLTDSAHPIYTAADGYKQLTLATGTLYVKSSGQFAYVHNGGETPADSFTYKVSDGSELSVAAAKVSLAVTAVNDPPVPGKLPGGANDPAYNASAGRYEISTPEDTPISGRASASDVDGGPLTYALTNQPAKGTVVVNPDGSYTYTPAPDFNGTDSFAITVSDGKGGTAVITVFVTVTPVNDPPVPGKLPDGAADPNFNPAAGRYQTTTPENTPVSGRVRAYDVDGDPLTFAKASDPQNGTVTVNPDGTYTYTPKPGFNGNDSFTVTVSDGKGGTATITVAVTVTPVNDAPQGGKLPSGAADPNFNPTAGRYEISTGQDKPVSGRVSAFDPDGDRLTYTAKTAPANGSVVVNPDGSYTYTPAPGFNGEDRFVVLASDGNGGVVEILVVVRVSAAPVNTVPNGPMKFRGEPARVVGPDGSVFRVADADSSELTVELSCGHGLLSLPVRTGLQIVKGTGSNDTVVAFRGTKESINAALAQLVYQPITGYFGLDTITITSVDERGNSDRDQIDPPFTVELVTLGGNDANASVASLAAQGKTVVGSAVTSFDSTLIKGAQVVGDGPVGRLAIGTPLRQDGSVQETTVKVELAYADGSKETFDVRVTIYNPKLELITQLRLNPQTSLYEQRVQVTNTTPFVIDSFRVIVPTLPAGVSLYSRSTTTSDGRAAIEDQRPLQANEARVFIVEYFAPNVQRFTEPVLALEINTSGGVSTPIGTNSPVDRVVVGANNRTYVEFATQSGRTYFVQYRDGANGAWQTSPVAVNGTGTTIHWLDEGMPKTLTPPTAAREYRLLVTSGIATPLLITTQPQSTQVASGGATTLRVAMGAGGPYTYQWFRDGVAVSAATGASLAISDATLASEGDYHVVVSDGRSSIQSQTATVSLASNNPGRIVNLSVRAQLEASGTPLITGFVMEGAGSRPILVRAVGDTLANFGVQTAVRDTALKLYRGQSVLSENDDWTRDSEAAQTRSASANVGAFALAETAKDAALVRRLLAEPYTIHVDNRTTQEGIVLVEMYDALGAYDSGNRIANVSARARVSSGDGVLIAGLVVGGNTTCRLLARVVGPTLSSLGVTGTLADPTLELYAAGGSTPIATNDDWGTVQGAVLGERLFRRVGAFDLPLGSRDSVIVTRIQPGAYTLVAQGKGGAQGQALIEIYLIDX +>SRR5450759_2854005 +HSVTNDLPEKRYILDERGAVIDQSAQSLSLPPPILTRSAPLLDSGSVVGRFVTSRSLVPLLQDTALVALFGLVLALAVYFSLSVLPLRALKRTLGALVQERERLRAIVDNAVEGIITFDPQGKLQSSNPAAGRMFDYSAAELVGRSAGDLLPEIDMANTDPAGRQAHLGTQETVGRRKDGTRFPIELAISQAIL +>SRR5919197_598751 +AANPGLHGILFDTAEGVGDARDVLPERAEIVTGDFFEHVPGGDAHMIKSVIHDWDDEHSITILRRVREAMQPHGKLFLVEPVLPDDHEGLARSKVTLMSDLNMLIMLGGRERTEGEFRALLTAAGLRLGDVTPAPPGSFSVLTAGAGITKGRAGGLRRGPPRPVLPAALRRRARLARGLAGRPGRLX +>SRR3712207_1410375 +XMNCKKILISSLLISFISCNLSTDFEPITQEEKSNYLGTRSQQSLVIFEDDFEQTGRIPDTTKWSLCPRIEPAWGKHLSESYDQAFVENGNLVLLAEKKEGEYKAGGIQTLGKFDFQYGKVEVCARFTKTAQGGWPAIWMMPSIHRYAGSSWPACGEIDIMEQLNHQSIVHQTIHSHYKNTLHFYLPVPAMISSYKRDEYNVYGLEWTPDYLIFSINGQSKLKYPNMHFASEPSKKQWPFNAPFYLILNYALGGPDTWPGEIKDADLPAKMEIDWVRIYSHTLSEHHITSGDTYNILTALNAKSAVDVAGAGTTDGTSVILWHGNSAVNQKWIVTELDNGYYRLSPVYVPDQALSAPLDSSATNQQLEIRTYKGELSQQWKIKSVGNGFFTLSPASSPEMSMDVIGEETEDGTSIALWKTTEKINQRFMFKKTRXX +>SRR6056297_976187 +DDVGKIGIPDAILLKPGRLDDDEFDTMREHVDVGVRLLAQGQSELMVLAEKVALTHHERWDGSGYPRGLSGDEIPLVGQIVAIADVFDTLINARPYKPAWKLETAIAEIRRKSGRWFSPRIVEAFMTVLADQPELLARLERESWEDAQNGRLLGTVVAERRKRRHLAVLEAELPQARPRGGRDLGRRQDAADRRPRRLAHPPHVAVELMDGVVAGSAPLELDDHQTPLAVASVQIDPAHADGKLDLEQDEAVLDQLGTPGQRPLHLGLAAVQEQAALVAWSQRQSERGVEERHANQLGGRGSLRDQHGPSRLLDQLHRVDPRLPVQRLDAARRVHLQAAVRLEQQQVVAGVGGAGRPPVVDDLHLAADLEPAARLRELLAQEREQLAGAWLEQLRCDHGPDGTTGPGRHPRPVPCRHGTAWSARIGIRRRREGGGASRRPPLRRLPDLRQEPQPLVRAAEVRGGRRDVPRAAWYRRSTGGGARGLPDQPREPQAGGGPEVARGRSEEHTSELQSLRRISYAVFCLKKKKKKKKKQKKKIKIKQKKTHQQKKRK +>C1N8J1_MICPC +MHAVASTPCAAAAAARGRGRRRRPEDAARGGGGGGGCENASSWSSSCRRWEVAPSPRRLLATPRRATPRLRALRGDEWKAIAPPGFTPSALNLSYDEHEADALFERVTEVMDEVDVDAQSAPGGGVKLTASQKRALDAFWLSCGVASASHRASLVREGGKRGLFRDPRRVVERVTELEDSLWRAVGISEIDVGLCVGRFPKVLFFEPDFLIERLRLLRDLLPNVNLRKVIERNPQVLGMDMTCTLPAKMRELSVLLPHVDVIHLIETHPKILSTNVSGNVAGNLRQLKRLMSEVGVEDIGVEMMVTRAPRLLTSDVDGTVRERMRAIERASPGTFRRYADKPASAARMLCASEKVIDRIAFLHETVEEGERGSEIAAVNAPAGTFSKKHPGFEAWQRERSKARERERSADTGAL +>SRR6202050_3633006 +FFYGYGDHQELHSFPTRRSSDLGRRQHSHHGYRPAIKGQRSSHNVRVRPEKRKSTRLNSSHGSISYAGFCLKKKNHHSHSGVLVQSDLLARDTCHAPNACSFSMPKENGPSVVCARSMSQSSGGPRHRHGSPRPRSSFFPDG +>SRR5882724_974133 +ICIGFGLNIDDSGPATPNTNTLTVQLDGVTIISNGTNVSSGTATVTRIGASTAISYSQSALLASLSSHTVHVTFSGTGFSGTIDETRNFTVAFYPTLPVSVRTPVGSGSQPGFRVKVWQINNAFSFVNGWLNRIVFDEQQLAGLISTNTADLTSFTNNGSFYESSTINYSLTLASGFIQPDAALPGVPGSLTVNDDVVYEMLSFVEFPTNGLYTMGVASDDGFKITVGDRTGPDVGLKVLAPASVAGRYFGVPTASDYGDAFGAALPKTPLVARAVLCDLPWPPSLPNNAAALSNNIALLHRDPSGGVAVHGIWAKQAGAVAVVLVDQDDQGATVDQRGAGRLPGNWGGSIAGFTIPVVMMDYALGTNIFALATSNTSSPVIMSIGDDSSYELAEFNGGRGDGTPTVFNVNVPQAGVYPLRLVYENGGGGAAVELWTVSGGTTISSMIRVVWLRRIERAPSRLDQP +>SRR5882757_10675725 +XMTISDMSSRQAACAFSVPVSERDQLLGKRTPLKATIDFHPTIVREEQQLTSRLCSDQRVPIRLKGKLYNFGQLVSLVRLELMSRRVIQSAILAICGSPPSVEAPSLIRRGAFIPAVAADAEQEMQVCLGKNDAGADGEVVWSCLDADVESVEARPARPGAGE diff --git a/flax_model/alphafold3/test_data/miniature_databases/mgy_clusters__subsampled_1000.fa b/flax_model/alphafold3/test_data/miniature_databases/mgy_clusters__subsampled_1000.fa new file mode 100644 index 0000000000000000000000000000000000000000..dfb824c59b7bf072a88e818aec4baca30f982a1d --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/mgy_clusters__subsampled_1000.fa @@ -0,0 +1,2000 @@ +>MGYP001379502932 FL=0 +KNNVKKNNANKNNVKKNNVENIIKQEDDSESNEKLMFKISDDISNDISEIYSYNVDKSKKVYKTYNFYILILVLFILFFIYINEDSSILPFSYTPTPSPEFLNSSTEF +>MGYP001093304395 FL=0 +MGVPVGVGVSVEVGVPVGVGVPVEVGVSVEVGVPVEVGVPVEVGVEVGMEVEVGMEVEVGMGVEVEVEVEVGVEVEVGVEVEVGVEVEVGVGVEVEVGVGVEVEV +>MGYP000080920170 FL=0 +MPVLSGLKPESVFSYFEKLCAVPHGSGNTQIISDLCVSFARELGLKCRQEDCGNVVIWKDGSTGYENAAPIILQGHIDMVCAKTDDCTKDMTREGSGRLAGRKWSGQSNPRRTPPFVRRAARSPYAYRRRRTR +>MGYP003331872083 FL=0 +LDYEYVATVFDLNASKWNAVLMEEYLQWIIDIFSDTHPDVPNFLFFFAIFLRDIHIDPIKSEHELILNQIEALQQQFPNKVTTIKRLKPIPIPILEDWIRDLGEQNQAVIEDTIKEIVASLPKEKREQYQNENQNLMLYIGSFEFVRNFS +>MGYP001589871100 FL=0 +REVKRAVYEALKVLSGSGSPEELLNSVIKGTKSVVGLKVNVYFGEPNNATHPAVAYALAELINKIGVNRNNIIIWDRAEDELNKANYQTNKSAKDVRCLATLTHRNPRFAKPFIGYEDSPITIGKAQVRLSKLVNMSNVIINMPVLRTYKFKDNTGISNAITNMYHVVDIAEADMPFFYDNECNPGAAEIYNIPAIKTRTGLTVCDAIYPLYNGGPGDDQRYHWRANAVIASLDPVALDTVAQNIIQKYRDKVMPGEQPLKSAYLETCAKAPYLLGASDIKQIDVIEREI +>MGYP000312263992 FL=0 +FSPFFNKNKKLQSLCDLLLKYAPDFDHKQLSRPVLHQKIFKTKTYKVTQINNLISDLLKMLYAYLAFVNYEAKPALGKDLLLEELLHKDIHQDVERVSRAFEKIQQHTPFENYDFHLNEYQRYDKLDRFFFTKGIRTYDENLQLKNDHLDLYYFINKFRIACDMASRNIVTNAQYQCNFLKDLLKHFESKHELLDQIPALQIYYKILRMIQEHEVEAHYQEI +>MGYP001087948731 FL=0 +MSRAADPLLFGTAGVPDTTPQTSTLAAVKRVRELGLDCLEIEFVRGVRIMPDSAAKIRERAAALGVALSAHAPYYVNLNSPEPGKRMQSQDHLLRSARMAAACGARTVVFHAGYYGADSPEKAMSAIRAELSQVISILRSERNPVRMRIETMGKPSQFGTLDEVFEAITLIQTRKMPPIPIVLFGRDYWEKAINFQ +>MGYP000560073095 FL=0 +RRSKGGSDFFQCLAQGPTQGQAKPRSDLGFRSRQSSVVMVTVAAVGVADNLATWLQGSDAAVPQGVDGATQTTRLGRADGRIGAQTSYELALRMWRAYQPWPGVWVEIPGVADRLILSGVSAVEGGALVAPGVLELRDDTLLLGLAGGTVRLDRVTPAGGKSMTGGEFARGRQGELAARGRIAE +>MGYP000244154749 FL=0 +SIVFNVGSKSTFMQRDYKLDVSWLWNVYVLVICPILGHPLFPLISNRISKSILFLQNAISSALIALHSCVFAIANIFTCATPYKVTPLHIKKSSLKC +>MGYP001210306911 FL=0 +DFRPTYNEEDEEPVVLPVRFPNFLVNGSEGIAVGMATSTPPHSLSEVIDALLALLDDADISNEALMRILPGPDFPTGGIIVNRDDLPAIYETGQGRIRIRGKVETEKGRNGHINLVITEIPYTMVGAGIGKFLSDVAALAENKVTNDIIDITNQSSKEGIRIVIELRKDTDVENFKNLLYKKTRLEDTFGVNMLALVEGEPRLLPLKRALQIFIDHRVVVITRRTRFELEKAKHRAHILEGLLIALNNLDEVIKTIRSSADADIAKTNLIHRFKLTEIQAQAILDMQLRRLAQLEREKIENEYKELMDRIAYLEDLLAHPKKILGLIQE +>MGYP001762835755 FL=0 +QRRAGRGEEGGGAARGREPIGETQAEVAMRNQLRTAVDRAEHDAGVVDLYGQRPAANQKARKDMNLLDVGRYTLAGNRLW +>MGYP001516588361 FL=0 +QMCIRDRINSTQEFAIFAESRNLNRNQNENGIDE +>MGYP001111298869 FL=1 +MITELRIADLGVINDANFVPGVFPQAR +>MGYP000402828031 FL=0 +EHILEYQNQFYYVGGKVPEKECVDKTENENYYLLTLAALAQEMRFRGLTDASVKMGAALPPRRFQQQKESFKKYLLKTKELHFRYEGGTLSCVVGKCVCFYAGACGDPYAFRSGSPVIAF +>MGYP001006094493 FL=0 +AVIPATDLTKSPEEAAKPEAGNDINTPADKAVVKDPAKLTDAEKKAIEDKVKAVNPGATVAVDDKGNATVTTPEGKTAVIPATDLVKSPEEATKPNAGNDIVKPADKTVAANPEKLTDAEKKAIEDKVKEVNPGATVVVDDKGNATVTTPEGKTAVIPASDLTKSEKDVNDGKAKDNAVTPAAKTKVANPEKLTDAEKKAIADKVKAANPGAEVVVDDKGNATVVKDGNVSVIPSTDLVKVQDDATKPNGGNDANTPAAKTVVKDPANLTDEEKAKVKKAVEAV +>MGYP003389908322 FL=0 +VSTDISSRYDAFLFIDETHALHPLHMQTIKDEDLPETFPTGL +>MGYP000520683910 FL=1 +MVGRNGGMRSGDSLAIVERKKMSASQRNKGQRGERELFGILSDLLGTCVRRNVDQARNGGADGLDVPGWAIECKRVESGFREAWWVQAVNQSVDTDRKPALVYRASRQPWRVRMFLHDCNPGMYCSHAWVEMNLETFAFVVRESLETETT +>MGYP000427244613 FL=0 +VDIFKISNVLNIGDIIHGDLDTKTITLPSLIVNDGINVIVPSNGVNKNIIGSDASGLTNLSFDKVEKKKLSFEDYGFVIDPANRLGIIEETVNTGNDNRQVTYLGNSAVDTGSIWGVAKTSNDGALWESVIAATQAGNIGIDKNNPESKLDVNGDIRFQTVNPITRLANGSSPTHVTLLRNLLTNEIEHYENTEWFTYRNVDIINGASANSVQSRIVNGRVQLRIFNLSNFTANQRFLILGPTFRPSNPMHAGALFPNNPADTSSFVNIQVRNNGSLFIDKDSAGLVYGGIITYDLW +>MGYP003153183859 FL=1 +MKHPIKVSPVSRKPVLRKKVKVGDIVTCKWGSPFGVVVKVLAADQWRIVEACRVRWIDDPHGLGEEFSADLKVISRG +>MGYP001561007815 FL=0 +IEKNTITVSKKINKDELPNGKIEITLKNINWINRKPNIGESLEARSRYRQTLEKIKIKDEKTIIFEKPQYTLSSGQSLVIYDGDICLGGGIIS +>MGYP001231096471 FL=0 +LKILLLGGDTGESEGGAVAKEDFGKVSGDDCPVSCPDDSLWGVFAGTAAPEIHSGNENGRPFVLGLVDRVIPGFSIGGITDIPEEMLAETVKGDAPHVAGGDDAVRVDIVPHHGDGSARHLLDGNQRHFRQRPGGRR +>MGYP001181966303 FL=1 +NTLTNYNSFYADEMNTTNRVENAFVQNAGSSSETSNNGLSSFHGGATDLPDMKFNKERNYDGGGTFLPTYDNGGMTTEHGMAMLQKGETVIPKTQNMLSGGGGITLNIGGDIVTNDAEDFAQRIADVLPEALRRQDDMGGI +>MGYP001558603255 FL=0 +MLCDNCKERDAVINLTQVEHDSKVTLHLCEQCAQQKGVETGETVLKSPLGGFLTALGKGGGGAALLPTPTDGLRCAACGATLRDFRDSGRLGCDQCYVTFDFHLRDLLRRLHGSSQHVGERYELPGVDDADPKGRLLELRAQL +>MGYP000721412648 FL=0 +VSMGSDGAVLLDENGYSYKINALNTKDAINTVGAGDSMIAGFIAGYKLSSKYEEALDMGIAAATATTASMFLGKKEKIYNIYNDIKDARLSKKGECIDW +>MGYP001793408712 FL=0 +MQEKDIQEKDIQNYIKKIILDEKTLDKKPEILVSYPEKTDEKGHITVICGKNHSGKSYVLKKISEALTKTEERKKYNKDEGILQCAETNLKVEFSSLGDDLPEVGKILSIGDSTSTKRIYEQINSITFKELRDNKIFTCALYFNDDKNSFLKILTSTNLKENFRFSSIHPPVLYSNKFFDTLLKNRCQQYLEQYFQQYFQQYLKHYLKRYLQQNFRQDFKQYLKQYLKQYLKQNFQQDFKQYFQQYLKQDLKQYFQQYFQQYLKQNFQQDFKQYFQQYLKQDLKQY +>MGYP001036737385 FL=0 +MAGKLAIQGGEPAITIKDPE +>MGYP000214490624 FL=0 +RSLALYDTLLDEMHDDAISHTEVAAELAQKTIGNGESDDDDTGAGIASDSPAEASKVKAEESEDDLRLGPDDAESWSDDPVRMYLTQMGEIPLLTRKEEIALAERIETTRAAFRRKLLECDFVIRASAKVLNRVFQGELPFDRTVQVSVTDQLEKEQILGRMPHNLRTLDILLQRNREDYEIATNKRQRVAHRRAAWRRLGRRRHRAVQLVEELGLRTQRIEPMIKVVEDFSRRIDELKATLTSMKKTRRSLTERKPLMLEYRSILRCTQETPTSLRNRINYLKAVYCEYQTAKRGLSEGNLRLVVSIAKKYRNRGLSFLDLIQEGNAGLMRAVDKFEYRRGFKFCTYATWWI +>MGYP001362031269 FL=0 +GGPGGGPAAGPRRPFEGVGVGGKDTRIEQKKQRCLLGGEEGGDDDGE +>MGYP001241401404 FL=0 +KDIFLKIILLFPLLLNSQIQRVDPPNWWIDFKNNSFQLLFKGESISNLSPTIKYQGLKINNITRSNSSDNYLFVDFAMDSTIKPGKFTIYFNGNPQIKYKYELKERSFDKLRFNGFDSSDVIYLITPDRFANGDYANDVIHKLRENKINRSDDYARHGGDIKGIIDNIDYLSRMGFTALWTNPFLINDMEKHSYHGYAITDHYKIDPRLGSLNDVINLSEKLNSKGIKLIMDQIVNHCGLEHWWMKDLPFDDWLNFQQEFQSKPISIDKMRISNEYNQDSINKYLIKTNHRRTINQDKYSSQFDEIKMLNGWFVSSMPDLNHNNQFMSRYLIQNSIWWIETLGLGGIRQDTYPYSDKKFMSKWASEIMYEYPNITIVGEEWSYNPLSINYWHKDSNNSDGYVSNINSVMDFPLQKSIIEGINEKESWNTGFIKIYESLSNDFYYSNPFELMIFIDNHDINRAYTQFNKNIENFKMAFGYILSIPRIPQILYGSEILLHNSDRIGSHGKIRSDFPGGWKDDKKNGFNDIGITNNQKDAKLFFKKILNFRKSSRAIQKGETIHFAPFENIYVLFRIFQEELLMIVLNKNLESYKLNLNRFREIDILDKTYLDIIRNDSIKVKNSIIIPEKGFYIFSIR +>MGYP001468330683 FL=0 +KKLTPIMTFGKMPIANGFIDKKDLKKEFFFDMSIGFSEDLSLLQLLDHPKPEAMFNNNYPFFTSSSRFMVDHFKSFSNWLKKNYSNHIKNIIEIGSNDGTFLLNFKGEDMNLIGFEPSSNVSDLAKKKGINSVNDFFNTSSIKNYSNYINQTDIICAANVICHIPNLPDLFETINMCLNKNGLFIFEEPYLGSMFSKVSYDQIYDEHIYIFSATSISKICSLYELELIDAIPQTTHGGSLRYVCGRKNHHKQSINVKKILDQEKKMNLDNIESCLQFKKNCKNSKKKLREKLIKFKMQNKKISGYAATSKSTTILNYCDIGPDVIDYICDTTKEKIGKLSPGKHIPIKPMEYFYNNQPDVAFLFAWNHKKEIFEKEKEFSKKGEWMAHVEL +>MGYP003628530332 FL=1 +MILLDSAQSMIRNEPITLSAVILVLTGTISYLYRERDKDRKAERERFLDQIDRLEEEINDLRNRKEKRKTL +>MGYP002780399917 FL=0 +TGQIERRRETGNVVSSISADDVEPAAVSDIADMLTARAPGVIVQNNSGTTGTSQRIRIRGSNSISLSNQPLLIIDGVRVNNNALGLNTVEARAVWVGGQETS +>MGYP001284371659 FL=0 +HGVGETQVRGSSSSASSSSSLKRNAKEHRNPLARTKGENDAASLGGKYERSKSKLGDVLVPPKAPARGVAEEGKLGSTTIESLSRDGDEERARDDRETDETMKKLDGYFNFDDNASNNKASEEKKSSASSLSSNDDAETAEEAKTKVEFSARKNEEDGSKTITSGTKIDESISDKDALDAYFSAKSSSSQAASVASSSSGSSSGGGDLSSAVKTALDARADEDPSLEDLKSSLKSGKTVNGEELEGKVETKPIASTPKASSLTSSVNMEVEAEKLLKEASEETEKSLSSTTKTAATGSIDSTSSTAAASEKSKYVPITTSHSMRSLSPIAQKYLRPRATSAYASTSSTSSASAAAAAAPSLHSDLASSARSLYSRDASTSGKSASSNKNAIAAKYANMFSLRSSDASSSSGKPSTGYA +>MGYP003656136555 FL=1 +MLINLNVKNKYTNCVMKKGRRYIEPELGKGDKKGKNIKPKKTKGFAWDGKSRPVDDAYRENWKVIFGKQEKTTAEKENEEYLEEIKNKL +>MGYP001595159463 FL=1 +MKQLNDMMRVGLGVRKMLSVCPHNPQPTTHSGNCLFQSCRAQSILEFTFSTIVFLAMVSGMVLIFRWAMMDLAERRFDHDRNLTVNSLTPEQQLAPDFHRVRAMDTFLFKKP +>MGYP001794431668 FL=1 +MYVQVAGLQCNNAVNCSTVTLIWTDVNSVTVIAGSQENFPVVSDSTMTVLLTDLIVVQHSC +>MGYP000352505163 FL=0 +VVISAPVFSKQLINTEIVTGGNSSTQVVAGEILTYSIVITLPEGTIPNLLLSDTLGSTSGALAYVNCVSITASANVTRTGGSGGTTGNWPSFALMAPPTELPTDTVSLTDWAMFETRLEPMQSRAHSFSVLLPISGPGSDIATLQRDMDLVRRVVSLEKPAHTRFDIQPYWTLFRLGQVRLGLDTLLGDGSRDPQLAPAMVLGQGHIGSSRTASRRDVPPDRILLEC +>MGYP003280527331 FL=0 +MSDGTAVQFKTEKRRFLCFFY +>MGYP003443885239 FL=0 +GVTSIGNDAFRGCSSLSSLVIPDYVVNIKGNPFSGWNGELKCLSPYFIYDNKVLFNKDKSKIIAFRDKNTTSYVIPDSVTSIGSGAFRGCWSLSSLVIPDGVTSIGDYAFVGCGSLRSLVIPNSVTSIGGGAFSDCESLGNLVFPNSITSIGDCAFDECFSLRSVVIPDSVTSIGDYAFDSCRSLTDIVIPDGVTSIGDCAFRGCRSLSSLVIPDSVTSI +>MGYP001559223103 FL=0 +MLAFRRDVQTTQRLGGRSLRFDGRRPVRGLGSAVVVGSGGGMTVHGVELQNCNSLPFGAQYSCSLA +>MGYP001074122584 FL=1 +GIAVGMATNIPPHNLREVAEAVLWALDHPEATDEELLNALLARIQGPDFPTGGLIVGRQGLEEAYRTGRGSIRMRAVVEVDEDARGRTQLVVTELPYQVNPDNLALSIAELVKEGRIGGIADVRDEGSLRTGQRLVIVLKRDAVAKVVLNNLYKHTQLQFTFGANMLAIVDGVPRTLRLDEFVRYYVAHQVEVIVRRTRYRLRKAEERAHILRALGKALDALDAVIALIRGAESADAAREGLMQLLDIDEIQAVAILDMQLRRLAALERQRILDELAEREAEIADLTAILADGARQRRIVGEEMTEIVDKYGDERRT +>MGYP001605154428 FL=0 +RLIKSLRAGFLADSFGRSKRQWRGGSHWIICNHXHRYNTHHRGHHDSRTIISSNSWRGRRIEHSWTGLLYMYVRFKVX +>MGYP000199882868 FL=0 +MGKAKKFFMYLILTVASILSVFPLYYMFCASTNRSIDVIAGKLIPGTYLIDNFKALIAQQNLRLALCNSFRNATVLTILCLLVCSIAGYGFEIYHDKGKDILMSILLLAMMLPFVAIMIPLFKMFTSWKLVNTWIALALPSISTPFMIMLFRQAARSFPHDIIEAARPERNTDFLPDVHSGDEIYLWSGDDGYIYECVEQLSVADDHFTGQQGDHHADVSSQSEEWIQCGLWYADAGSIDLYTSYSDHLPVFTEELCKWNYGSSEIMQQKMPKQETMTQAHIRKAQGAFLLAHRMGLIEDPSMEGLKARRKKHNEELRRMEQEGQRFYGPHYFSAPAYLQYELTRFKMDFAEPCEK +>MGYP000548054597 FL=0 +MLRKILVPVRGDGKGDNVLAHAAALARGFNAHIEITHCRAKPENLLPFGVPIPAALRAQLVESTSQVFDIEDYNLPYFIMFSDYRVATNKKYPEIENDIAESLCFFLLPFVYDNETYDEYLSFYNSYEEDEEFNLYSYKTKSGKYI +>MGYP001129376977 FL=0 +MNDFSETNPYTPLVFNSLEVNEQNFCSNLLNRLIVFTQASFHYSSIESLHLFREIVNSSRSSQGSLFSPFFFFKTKKTNLKFQISNQKDKDKEKEKEKEKDKEKEKDKEKEKEKEKDRPKMFKTDAQLLFYCYLIAPSFRLAKANVKLSQDVIFFFLSK +>MGYP003295116401 FL=0 +LREAYDYLLLDLPPVAEVTDAMAVAPKVDGMLLVVRQNYCDRIVLSETVQQFAFINAKILGVVFNCTSEHGGKYYGKGYYKGYYRRYYKRYKGYGYNQENQNA +>MGYP000887695439 FL=0 +KGEYYLEAMVFDLNSKGQYLPEWYDNAKDMTEATPVILDCADAATADFYLEKMPEPVYHKVSGTVKDAETGDPIQWAIVEFYGNDPNGYGYSSYASTDEDGYYEAQILEGVSYIAYANSGYRGKKDYDTIPYQDIYLPQYWDGKSDPSEADPIVAYEDVENINFNLEKYVFHENLITGIVVGEDEKELSDIMVFAYLIDGENVDESNYKYHGFMGYTDHNGKFYLNNLVPGTYVLFAVPARPMKYAPGFYMEDDLAILTWEDATQIEITEDGEFGPYTITLPLFENIFGEGIVKGKVSSEIGKVKVDEEVQGNEDGLQGAFVHVTDYLGARIKTSETNSKGNFELKGLANGTYTVTVDKVGFKSTSFQITITDDNKVIEHGVTLVKDDNTTDVNDDVLSPLSITVYPNPSVESFNVQFNSISGKSDLQIFDNMGRVVYQQTVNSTNGANYININSDNFTNGTYYIRLSNGNSTVLTPVVIAK +>MGYP001202805109 FL=0 +GVDGEGGAVRTWLGLGSGLRVGVGSGIGLGIGLGIGIGLGLGLGLPGI +>MGYP000917578306 FL=1 +MNKKFTSLLLLSSVILITTADKTRTKADTTDSSIEQQENIINEAQSAKDKSLSDISLLQSKIDGIRVEKNKTEQKISEIKKQAQNLNNKIEELSKNIEKRTDVLESQARSAQVNSNATNYVDTIVNSKSLSDIIQRLSAMATISSANKSMLSLQIKEQKDLNNKSDEVKKNYIEYDNLVKNQALQEKDLTSQEKQLKVASLNYQSTIETAQDKKENLLKQKSTAEKEAKIAQAEKEKVASAQKSAKEAYTSSSVTNTPSSSVEKSSSPKKENTKTSSNTGTTVEQGTGTSSNNDTNNSTSGTGNPNYNPYAGGGCTDFVWQYFAAKGIYIANIVNGNGGYWGTNGVSQGVLRRTNLAPGVIASGFTFHFTGYGTSTTARTSPYGHVAVVTGVNPDGTFNVQEAGYGGTFPWGNVRTNISPENVVFLLPN +>MGYP000491110560 FL=1 +GTAIYGETRAIPLNLVDFTLRDFATRQSDDSQTISYLETDYSNSYQFNLDSNNILRLVYDLAPTARGFSRSFDGSTSATNFTVAVIPISARAPVIVSDGGGPTASLSIAENGAAVTTVVTRSNFRHLAEIVRLATRMMTGAGLAVVLIAMTAAVLVIFAVRSGLAIHRETIEVLHLIG +>MGYP001489963689 FL=0 +SERNKYSRSIQVSLKNIIILMFFGISLFGLAVIGTLRIINKEPLTRELNDLRADRLLLKQIVSDLHASGIIDSTKAYEHFVYEFYNSHKMSFPDLAPVMGYVTRGVHMGNNHLGIDIAAKYKDDIYAPADGRIIFSGVGDDLGNTIIMSHDGGFITVYGHNATNLVNTGDSIHKGQVISQVGDTGKSKGPHLHFEIWKNNQVLDPREIIKKYKEKDVSIRETRK +>MGYP003582534822 FL=1 +MLFFAQKGTVTDGHQYIPAVIEAGAAAIVCKDLPEVLQPEVCYIQVDEVAPVIGLMASAFYDHPTRKLQVVGVTGTNGKTSVATLLYKLFNQLGEDSGLVSTVENRIMDNVIPSTHTTPDPVSLQALFRQMVDASCTYAFMEVSSHAVHQHRIAGITFRGGIFTNITHDHLDYHQTFDEYIRVKKQFFDHLPKGTFALTNIDDKRGMVMLQNTKAAKKAYGLRVPCDFKGKVFENNLTGLLMNIDGQDVHFRMSGLFNAYNLLAVYGAAVLCGKDKIDILTALSNMQGAAGRFETYHSENEKILGIIDYAHTPDALQNVLSTIKQFGQQANIITVIGCGGDRDKLKRPEMAQVACELSTKVILTSDNPRSEDPEAILDDMEAGLTPGMMRKALRISDRKAAIKTAVSMAHADDVILVAGKGHETYQEIKGVRHHFDDREVLLEMFKLLEK +>MGYP001208310892 FL=1 +MKKKKAYVVGTNVSKSLSPLIFNYWFKKYKINGSYNYKEIKEKKFDLEIKKILQEEGVRGINVTIPFKEKIIKHLNQQNKHAKLIGAVNCVSIVKEKTKGINTDWTGFKDCTKHIKKRNVAIVLGYGGSAKAVIYALKQMGFKKIRVFNRTFNKIKRLKNIKPHKLEEIPDYFYTADIIVNTIPKNFISKLLKAKQKPTNKTNKTGYGFDLVYNHPTLFLDSISKTKRIYGVEMLAHQAAPCFYKWFGKKPKVDKKLIKKLINS +>MGYP000076073552 FL=0 +DLVLGVFGWVVRSDKLGKGTLDHTLKIQVESELQYWRSVLNRVVAVIKFLSSRGLAFRGEN +>MGYP001544161807 FL=0 +MGLQQRLDSLALNDFFTLYHFIWTHSKESICNTTHCGTFYIPPRQIVPKVYNIITRTFPSVARIQGRDKDCTEICFAVAFCNSGEHVTGSSGDGFQLRRCCFALISPRTCLRPDCNDASVHRSVXERASLAVRTTHGEGNAGXTKLLRRRCXLX +>MGYP000196507220 FL=0 +RFMAEKRELQMKEITEQLEQGVKELFTSEMYTEYLRTMSQFHNYSFNNTLLIAMQKPDATLVAGYQAWQKKFKRQVRRGEKAIQIIAPAPIREKQEVEKIDPETQEPVLRFDGQPETEEVEIVIPRFRVASVFDISQTDGEPLPELETPELMGSVENFKVFMKAVQEVSPVPVRFDEISSGAKGYYSNTEKEIVIQNGMSESQTMKTGIHEVTHAMLHDRDFMEEQGEKKNQMTKEVEAESVAYTVCQYFGLDTSDYSFPYIAGWSSSMDMKELRTSMDTIRKTAGSFIDSMTEVIQRLMWEQPELSLSAMKQAEILIDRVEQERTLFSGEERNLLVNYAYKFDNAEETEKLIRKLAEAKAIPDLRSATEICRDIQKEIEFLPDGMVGMTELHRYGYQNEGCFRLKGRGHMNCFRKVLRYSPCIRMIRRQCWMMKENLIRMTVFSG +>MGYP000592636036 FL=1 +MTDRPLWQMTATETANAIRDGQITAQQATEAALSRMQEVNPHLNAVVEDLSREALEQALGMESGYVLDFSDRTFNDFFYETIAIDPEDQSQLFNGRGTSKAKRLRSFIERAQPALVAKILREMWEYRDAMVFAPSAHNEEKLKESYFTTVARIEGRADVIDTSAIETFEPNETLEELVASIRRDLDANKPQAALDRLHTYCMKRFASLVRKHGGGECGKDDALHARVAKYVKILGAQKNLNPISERIVKSSISVFEAMNPVRNDQSFAHDNPDLVQMEEARFVFDSVTAFLRFSKAIDGRFFED +>MGYP000923000473 FL=0 +GISVENTSMFEITNFDIVIEVIISGTISIHFIYNTDVFENETIKRLSGHFRNVINVIVNNLEIEVSRVELLTEYEKKQIKYGFNNSKTLFPDNLAVHEVFEEKVKNTPENKALSFNGFELTYKELDEKANQLAWFIRSKGIIQNSIVAIIFKRSIEMIVSILAILKAGGAYLPIDPMYPIERIDSIIEDSGAKLVLTQKNIFDQANISENGMFHRNNIELVFLNDVEYLLSQYEKNYIQNINVPGDVAYVLYTSGSTGKPKGTLITHYNICSKIVNANF +>MGYP000510006770 FL=0 +RVGKRTWWYENGQIRQESNFKDGKIDGKLTEWNENGQIRLESNFKDGKRVGKRTWWYENGQIEREENYKDGKKNGKWTWWYENGQMEREENWKDKIPDGNWVSWFENGLQSSEGNFKDGTGVFLQLHENNQKSYEVIYKDGLGKMTEWYENGQIAGERNYKDGELHGKHTYWHENGQIFEEANLKDGKWDGKYTRWYENGQID +>MGYP000191306956 FL=0 +LRTQTSGVQIRTMEAEKPPLRIISPGRVYRNDYDQTHTPMFHQVEGLMVDKNVSFTDLKGILHDFLHHFFEESLEIRFRPSYFPFTEPSAEVDVMGKNGQWLEVLGCGMVHPNVLKAVGIDPEEYTGFAFGMGVERLTMLRYGVNDLRAFFENDLRFLKQFN +>MGYP002707266309 FL=1 +MNKFGLDNVVTEKANVELTDLDNGVKVSFSGDIDVQNPEPIFVPFFEQIHNKIIENGIKYVELDFSKLTFLNSSGIKTLIKWITKVTPLPADKKYNFKVIANSQITWQETSLKMLSMLAPGLIEIQIQ +>MGYP000629646757 FL=0 +MPFVTTPDGTEIFYKDWGPRGGQPIVFHHGWPLSADDWDNQLLFFRDKGFRVLVAQRGAGHHAVALEKLDVPVVVDGNPRQRRLWFPLRSGRDAQDLVGRVVVDVAVLDLAQVDAGLH +>MGYP003443031209 FL=0 +PSVMVSVTTVSTVYVPIMVSVVVSVAVKIPVVVIMSAIDVTPVMIPVVHCCTGRAVACTIMMVAIVSAVPSVTHTEMTGGVMVDIVVTTTMVPTSSSYDMPGMSTTIRGVEDRATIVEIVTMRIACIDGEVPETVTPVEWTIEVGGCTESA +>MGYP004007491671 FL=0 +TTQSVHDTLFELDAAGKLAPGLVEAWEWKDSLTIVLTTRSGVKFHDDTEFNAEAVRYNLERIRNPDTGSIRGGEISALDTVEVLDAKTVRLRLKQPFAAFLYPLVDVAGCVVSPTAAERWGKEYGLHPAGTGPFKLVEYLKDAHSILERNGDYWIPGKPHLDRLVLRPIPVDSTRLAELRSGGVQFAESLPWQDIQRLRAGNEVVVSEKVGFRWEWFGFNVREEYPGHSK +>MGYP002477604874 FL=1 +MESMHFLHLLTAVAALLLGALLGGRIASLLHIPRVTGYLLTGLLAGPSFTQLVGLPSLLTTDALQELAVLSKVALALILLNIGGQFRTEQLRRFRHRILLFSASESLGTALLVSGGTVAVNQFYLQQVVPGLSLLGTSLAFGLLLGLVAIATAPAATLMVIREYEAEGPVTGTLLTLVGLNNILAILSFSVAAHLMFHGDSGMGQLAIKMFGPLLVGGSLGFFLSIWGQRLELDTEFKLLLLGGAVATAALCSALGLDVLLASMALGIVLANSSPRWHRMQEALRQVDYPLYVAFFVLAGAQLHLETLSHIGLLGVVYVVARTLGKLGGAWFGAKLGHFGERERKWIGITLLAQAGVAIGLAEQIAQLWPVGGHLIETVVLGSVVIFELIGPLAVRHGLVSAGEVPILSLLQKRAPQNAIEGFHSVLSHFRSSIGLPAGHRMRDPGDILIRHVMRQNVETIRNDTPFNELLRHISHSRYDRFPVVDESGHFLGMINYTEIRELLFEPALAKLVVASDLVSTSHLAVNPDQPLREALQLLQKHRDISYFPVVDPEDQNLLLGILRQNDVLAAFRRLDLQ +>MGYP001551819414 FL=0 +TLDASLGDVAVLYRTRDQGEVIANALGKLGLPVKMTGKATLEQSENIDRVLGALEFIAGRKTPPVDFEGVLETSSALADLSAREVIHKVSETLFEEDGSASADIAPLVRIAKKVDEHWAKKVTKKVSFVKPGRPIDDFLDRIALQGKADLHESKVDSITLTTLHASKGLE +>MGYP000703270391 FL=0 +MPKSEKLRDVLIGFDSAWTDSLRNPGAISACILDGGQHVTFYRPRLATFEEALHFTRQVGGDADYVLIAIDQPTVDPNRDG +>MGYP001030102971 FL=0 +GRYRSEPPPRAGGDRSSRADGTLVIPVEGAGLSVRVAFASPIQERGYAPLVEACGMLVGLARAPSAEASASLRPVPPPPEPATVAPAVRHLYADALRVAQGDVSVLIRGESGTGKEILARYIHAASRRAAAPFVPLNCAALPRDLLEAELFGVEKGTATGVDARPGKFELADGGTLFLDEIADMAPDT +>MGYP000938480968 FL=0 +FEAKLKELSDDAQVNGFRHGKAPRRLIENRYKKEISEQLKNELLYQSLEQMSEDKKLNPISPPNIDPNRIEIPMEGDFVYEFEVEVRPEFNMPEYKGLKLNKPVHHYTPEEIVREERRILATYGTPLPKEEAVALEDMVILSGPVKYGEQQIGMIKSHPFRVDGQLAFKDGVAPKFAEQ +>MGYP001617072387 FL=0 +MNRDEFADKTVESYKAACLEHLRQFLRSMRLRDKVSSNPTRLGNLSVECIWHEGQNHYIENYHKQQWAWGFTLFCPQGHEIARRLVISQEQVGAFLAHQERPCYACKEAKP +>MGYP003654168572 FL=1 +MEELVDNFERLDGPQKRKKLEELLRIDRRLGEIDDLPFGVPPNRLEACYYDVLRWLRSGEDVRAPEVGDLVDVLAGTYHTGFGRMRDTPAYHGAIVLKLDSHGRIVARLPDSAGPFAAEDRAMHLGWNVKPTRKLYLSFDEYKLKRKE +>MGYP002623322284 FL=0 +PPEETHRLLPCLQTGIIDDRGAAAWQWRNRGRASPGGPLTMDMAANRTIRHKGGFPPATPGRAQEWRKPMFKKTAAAMALSLGLVLGAGAIAPEAAAQTRVTLKSAKAGTSYYVMMVQLGEMMKAQSGGKIQATVEESQGSVQNVKESARRPGNFLFTTPPSLLVSAREGKKPFEGETGYDRVRALFVVPFVTIHFAVQQDSGITDVMQLEGKKFIAGGKG +>MGYP001568520366 FL=0 +HQLRVWLTVGDVLAVRQQPQALIVMLIVSLFRHLFVSYMVNRFSSPIS +>MGYP000925408016 FL=0 +MVEHIGYHTLKEGKTLLAIFNALEGFANNLTGLAGKNIEISTDIPSSAKAPVKQT +>MGYP003579269052 FL=0 +MNSDVPGPDDGAAPDALDFASLDVVYIDDALAVVDKPAGLMVHDSALARGETDFAADRLREQFGRPIFLVHRLDRATSGCLLLAFDREVASALGKTLMARDVEKDYVAVCRGWPAEERFTIEHPLDGGPGKPVQKPATTPVG +>MGYP003309607925 FL=0 +MSVKRIFLIVLDSVGVGELPDAAKYGDEGSNTLKACV +>MGYP000957236481 FL=0 +MVEGALDARHLPGLAPFLSRETLDRLALKIGEGQIDAGCLTSLAPFLSQEALSRLVDQAAEGTFDAVHLTGLAPFLSRETLDRLALKIGEGQIDAAHLPALAPFLSQEALTRLLGLAGAGKLGAETIVALAPFLDSAVLGELIKNSARQK +>MGYP000599625106 FL=1 +MIENNQKLGSLSSGKNFDRTQSWVERSDQISNSNTGIFIQISLPAKISGFYGLKEFNFMNCEMSGMFGPNLAKCISFYNTDWVKNEKYFSMPTNGIQKVTIPTSAVYKITAFGAGWQNYGAMAKSNVKLENGTQIYVGIGQRGKHISDGCGGTFVTFRKNGKFVPLIIAGGAGGGDYENEYGNGSTDEFGKKSDSIEESNRNIGKGGKSGYSNCYNGGNGFEGEINENWEKT +>MGYP001217081736 FL=0 +SFADKFLEVLIFRTALFLFLLTIILQIIMPFCIYFLAPGFLDNSLVLDQITTLTRITIIFMPLISIVALLGVATNVSGKFWILSFTPIILNFCLIISCFFISDNWTVKSLPLALATVLGGVLQLIFTLIMIKKFGILKLSFKSKTIKEYDQIKLYLKQTWKKFLPAAFGGGILQVNLLVDTVLASLLGFGSVSYLYFADRIAQLPLGIIGIALGTALLTSLSKSSAIKDTKQFSKELIISLKIGLFFSIPASFVFINFSELFIKVLFERGEFSSLETNQTAQALIAYAFGIPAFIIIKSCQPAFLADGNTKTPMYIGFILLLLNVFLSYTLMHYLKHSGIALATSLVSWTGSIMYIVLLIKKGKISKFKFTFKYDQFNLFAVLIYALKIIFTSCLMVLVMKSIFYFLNIYKINEISILLFIVLFGMLTYFSTTYFLKYIPQELLKINVFKFRKVN +>MGYP002526846326 FL=1 +MIRRSSDKISVTKPSPFNGIGEITVRSLLNGPEEMENKGRVFGHTTVYPGSKIGLHMHKGDSETYYILSGHGKYNDNGTIIDVQPGDVYYCADGESHSIEAIDEPIEMIALILYTT +>MGYP003577118151 FL=0 +MIPSQINDTSLKIFRDGMAAYVVFEDTEWEILKNYIELKVLQKKDHFAVSGKICDHIGFIVNGSVRYYHIKDGTEITGYFSFENDFVSSYKSYVTRTPGTGYIQALEQTEFAIISYNNLEQMLNHPL +>MGYP000225436725 FL=1 +MRNTFHLKTLAVAIAAFSVASVTNAAGLDRSGQDVTAFLQDGIYAEAVYTYIDADVSGYDNGRVATDDAGYVQGNKTGDIAEYYDFFRYGVKADVNDTFSVGILYDEPFGAAAAYTGDSNFT +>MGYP003337284868 FL=0 +MKEGYGEENSDIRRYSGDYLNDVPHGYGTIIYGKNIYTGNMKNGKKDGIGTIRNFTGKFEYHYYYQGKKYRGPLYRFPIYEEKKAFWKEDKFIVDFYIKKGELMIQNYLNSMNEKDIKYCKSNNIRNYIYKNFH +>MGYP003906308351 FL=0 +AYGFVRDCDGAERHQGPLVEAALAAKRPGDAGELANELARVCLESGNADKAENWYRKGHDAGIAQPDFTPATKDLWEFRTAHALAALVGDQGRQRRDRVDARAHERVGVAEAEPIVPVASAPATAAFSRGCVAAKITGLPRDVLYAHALTMKPEEPARS +>MGYP001106728357 FL=0 +MINAIIFSKDRAPQLRLLIYSIQKNAPHAFNLNVIYKYSNDKFKEGYEKVKGEFSSICNFVEQ +>MGYP000556042202 FL=0 +MRLKLLVALVAALLLSACNDPHTGTFIFTAIPDQDESQLEKRFGTIALYLEDQLGVPVKYVPVKSYAAAVTAFRNCLLYTSPSPR +>MGYP003339182432 FL=0 +MISRRNFLGLSLSTVALQRLSIFDAFAANADISHGLRTKKEVALTFHGAGDLKIARDLLAIASDAKTPISVMAVGSWLSANPEIGKEILAGGHDLGNHTYNHKAMLHLNLNEAKSEIAKGKAAIIKSVGSAQKYFRPSGTPKSNATIRKAAIASGYSNCITYDVDTLDYRSEEHTSELQSLRHPRMPS +>MGYP000070210673 FL=0 +MRSKYISKLILLCAIIIISNINVFSQDEDSIKTIEMKEVMVSANKTEKPFVELTVPAKIISKKEIENSGHSRLDEIISEQVGIITVPGFGGSEGIQLQGIDPEYTLILIDGLPVIGRVAGILDLSRISLASVERIEIVKKALFYDLKLNKKKVVVISFSSLTTELCKKYKSNIILRGLRAVSDFEYEFQLAGMNRKLNKNIETLFLMSDVENQIISSRFVKEIVNLKGDIKKFTTKSTIKLLKRKYE +>MGYP000373531853 FL=0 +TYWFLIHFIFERNKWRYAKINESPGILTIREPNGTDRVELERLEVEEARETLGVFIAMDGNQDAQTQALKDKAATWADKIRTGSFSHAEAWFSLQYCLMKSLEYPLMATCLTKKQCEDIMTPVRKAVLPALGINRKLSLVVSQAPKKYQGLGVLDLWTVQGSLKTWLAINHGDASTITGHQLRASMELHTLEIGLPGQLTQHDFEIYGAITTTSWIKNLWKFCQHSKIQLNTTTPQLQLACTNDSLLMGTFAEYGYREPQLSLLKLCRLHCHAVRVSDISTGDGRRI +>MGYP000570708825 FL=0 +LERYDVDPANVLGAGDGGNDVGWLSGIGFPVAMGNARPEVHEIARAVAPSNADDGAAHLLERLAAAHGGA +>MGYP000034617079 FL=0 +RVRNGAGRAVVVQRLGQDRNVGTGRVWPYQDREVFDTADGARFDLDSAPGGLPNEGYFGTRSTSRA +>MGYP003372218023 FL=0 +MTNYSVYIDESGDLGINKGTHWFVISAVVV +>MGYP000394300602 FL=1 +AKERMKLVDLDPAFGARSVNEGFSGGEKKRNEVFQMAVLEPRLAILDEIDSGLDIDALRIVAGGVNALRRADRAILLVTHYKRLLEYVEPDHVHVMAGGRIVRSGGPELADELERTGYAWVAGAAPETAAAGA +>MGYP003610839716 FL=0 +MIEMKLLVTGGLGFIGSNFIRLMLHEREDCRIVNVDAMHYGSNPDN +>MGYP000586146873 FL=1 +MQDELKVYEEKMEKSIEAMMSEFASIRAGRANPHVLDKIKVDYYGTPTPIQQVGNISVPEARMILIQPWEKSLIKPIEKAIQTSDLGINPNNDGSCIRLVFPELTEDRRKELAKDIKKKGEAAKVAVRNIRRDANDAFKKMEKNNEISEDDLKDAETGIQKITDKAIEKIDKAVDNKTKEVMTV +>MGYP003291547436 FL=1 +MLSFFVGALSSCAAQLLKLMIHGIHHLVEHYLIEQHHWWYLITPMIGITLAGLFVKYVVKDDISHGITKILYAISQRKSIIKLHNTWSSLVGSAITIGFGGSVGAEAPIVMTGAAIGSNLAKLFRLDQKTMMLMIGCGAAGAVGGIFQAPIAGLVFTLEVLMMDLTMTRMAPLLISSVTATAISFLANGQEAMFPLTNSEPFFVERLPWYILLGVMCGLVSLYFTRGMNHLEQFFKHHVQNIWLKFVVGGSVLGLLLFLFPPLYGEGYDVIKQLINGDSVSAIVNSPFEQLGKSNWVLVGYFVAILLFKIFASVATNGGGGVGGIFAPSLFMGAITGFICARLMNMIGISVPEANFALAGMSGLMAGVMHAPLTGIFLIAELTGGYHLFMPLMAVAVISFLTIKIFEPHSLYAMRLAQKGELLTHNKDRSVLTLMKMENVLETDLRTLHPEMTLGELVKVIAESSRNIFPVIDEEGRLLGILLLDEVRNIMFQPRLYDRFIVKQLMNSPQAILTNTMPMGKVMEVFEDTGAWNLPVVDEQKKYLGFVSKSKIFNSYRHVLVHFSEE +>MGYP000629932273 FL=0 +KSDVSIARTIWQENEIRRLERAVTGYFDYIEDLIERENTFNMEQFAASVNEFLTFRKYQILPDKGRISAAQARQRQKANTIFLIKTNGLILTLTKKLGGCWVKSNKMK +>MGYP002789926533 FL=0 +REALDALDASERAAQEALLKAREAADAASAAAGEKARDKRGVVLEPGDAVEVATLGGKTGKLIERRGSDAVVMVGALKLTVPFAALRRVSQRHLKDQAPAIAIIDVPEVMAKTEVDLRGLRVHEVDDAIVQAIDAAHRADLRALRIIHGKGTGALRERVNQLLKGDKRVKSFRLGAWNEGGAGVTVAELS +>MGYP000243790712 FL=1 +MKTGFRKSQKGAVAIEFALVFIIFFAVFYGLVSYSLPLVMMQSFNQATSEAVRRSVAVDPNTPNYSTVVLNTANATLTQQLSWIPPVFNLVVGVDTSSQYSASGLLTVRVDYPVSKLNQVMPFLVLPVVGTVPNLPTYLTAKSSLQF +>MGYP003301794412 FL=1 +MNKTKLLILLFFIALATNVNAQFGIGLKGGLDFNSVTRSNSGRIDETYHAKNGADYGIILSYQINEWFALRANVEMLSRSHTMKRNLNAVKGLYTDYKNQYLTVPVMADFTFGGARVRGQFMMGGYVSYWMMANVSGNTFDLYNKIRPFNEKMEFNEYHNRFVAGLVAGPGLSVALTEKISLELDALLYYDLVSYMKVSKVSPDPRYNNTASLTLGVIYKL +>MGYP003383111361 FL=0 +MYKTSKLRKLVFQRLTTPEGTRAQQSLSSGTGQSLHDLVVQAMINVKLVKW +>MGYP003686761737 FL=0 +TPHAPIHARDTRQEAPVFFQAEDGIRDRSPSRGLGDVYKRQVQLNEKFSDGKYIVKSQYGNSKSTVNTSSFLIATSNISSMESTSSEIPTWIKNNAGWWADGSIDDDSFVQGIQFLVQEGFMKITN +>MGYP001302444474 FL=1 +RSNSDSNWANEGNLENEVVLEAEFDLGS +>MGYP002051420820 FL=0 +GRQDRQGGQRAWTPNQTTSTITSKKIILLAYTYTYVISNYFSPTGSLLYYVSCNPEIQDKIFDEILDTIGSDEITHDNISKLDYLEACIMETLRTCPPVIEHDRVCTNDCVVQGIPVKKGVKICMPNYPAHYDADFFPEPEMFKPERFLKENADQIIPYTWRPFGSGNRVCIGQRFALMEIKIFISKLLYKFKVERTPRTELKYSPGGFFIISYPEIRVALHPRNWTNKILQKKVFMRSGILRKINFRACKEKPSYKKLCQKMVDK +>MGYP000789720163 FL=0 +SSSSPMVLVDGMEYSLNELNPGDIETISVLKDASASIYGSKAANGVILINTKNGRNSEKMNVSVRLENTFSMPTMVQQVADGVTYMQLYNEAVFNTAKETGTLHAYQPFYSADKINGTKAGLNKYLYPNNDWYDLMFKDFSVNQNLNLNIRGGGRKVSYFLNAAVSNEN +>MGYP003304858611 FL=0 +MVTERTRELDESNHLLEQKQLLIEQRNKDLEQALQEKDRLLSVIAHDLKNPMFAIVGALDSVLKNHSSLESTWKTLKDIYLSALNLQSAMVKLLEWARGKQTDVVCHVEDASVRKMVQEVVSLLNGLFKEKKIKVSTSFNVSHCALMDSRMIGTALRNVLSNAVKFTPEEGSVEIEVLEESGYITMKVTDTGVGMTEEQLVSIRNNENVISTMGTKMEKGTGLGFKMAKDFVEKSGGVLLVDSKKNEGTVITIKLPVALTDD +>MGYP000358995731 FL=0 +PSGYHEERVMSKCENIYDTLLQVFEISSEKDIPTFEAANHMVEERLETIAHIKSIKS +>MGYP001565574238 FL=0 +MKALTLPFPPSANRYWRHTAGRVYVSEEAKDYKYYAVMEALRQGILAPLVGKLSLVARFYFPFPVKGDLENRLKVLDDAMNKILWDDDSQLWRIVLERHYDRANPRVELEV +>MGYP000188450185 FL=0 +QITASLGGVSTGFPREAGFDITVASEVMAILCLAKDLSDLQKRLGDMIVAYTRERKPIYARDIKADGAMTVLLKDAMQPNLVQTLENNPAFVHGGPFANIAHGCNSVIATTTALKLADYVVTEAGFGADLGAEKFLNIKCRKAGLAPSCVVVVATVRAMKMNGGVAKADLGAENVEAVQKGCPNLGRHIANVKSFGVPVVVAINRFPTDSDAEVELARKAAEAAGAEAAVMSNHWEEGGKGAVELAEAVVAACEQPADFKLLYPDDMTIKQKIETIAKEIYNADGGTFE +>MGYP000733041054 FL=0 +SPCSFYTIGTQQIFANTSDWSSEFFARGEEVGLIPSSLSQSKKSYITRKNFSEIAINFYSLYTGNPAVSINISPFMDEKSPKIVKAYELGIVNGYIEEMMEGQKVVKVFTHEEESIADFNRLNDQLFHSADNANKFGNILMPVNAQIGNISYVLCAIVGGILALGGYGGFTLGKLASFLTYNKSFGQPINQLSMQLNNIVMALAGSERIFALLDEQPEVDDGYVTLVRAKWENGQIVESKERTGMWAWKHTHQADGSVDYIELKGDVVFDDVDFGYVPEKTVLHNVDLYATPGQKIAFVGSTGAGKTTITNLINRFYDIQDGKIRYDGININKIKKDDLRHSLGIVLQDTHLFTATVMENIRYGKLDATDEEVMAAARLANADTFIQQLPNGYDTLLTGDGANLSQGQRQLLAIARAAIADPPVLILDEATSSIDTRTEKIVQDGMDKLMAGRTTFVIAHRLSTVRNSDCIIVLEQGRVIERGSHDQLIEKHGKYYQLYTGNLAEG +>MGYP003499035801 FL=0 +MTNSSFSVLIVDDEPNIRSGLAKGLISEADSIETAKDADEALLAFGKHDYQLVLADVRLNCSMNGIDLMRKMLLARPQTAVIVITAHGTMETAVEAMRAGAFDFIAKPLDLNLVRQQVRKAREHYQLQLENRNLRNQLANAGEISNIIGNCTAMQEVFHQIRQVANTDATVMIHGESGTGKELIARALHELSDRSGGPFLAVN +>MGYP002865127206 FL=0 +MERNELKKKAKEALRSTDLDEKVGAAANEMKEKVQDVLDKTDLDEKIKAGADRLREKADANVDALKAQVHANAEQLKDKVQDALDKTDVDERVK +>MGYP000383000818 FL=0 +MTLLVAGPEVEEQCRQLGLPLAAPLAEGWALPTKPRCLHLEKGPQGFGFLLREEKGLDGRPGEWEPWGRWGKVGLGVGTQAYIHLSVHRRGVPV +>MGYP000367940092 FL=1 +LMSGESVLLEPILSFVIEVDSGDLGRVLFDIQRMQGEAEPPQAAGERMEVRGRAPAACMADYPQTLISATRGTGRISLRFEGYAPCHNAQEVIEAKGYDPERDVENTPDSVFCSHGAGYPVKWDQVPNHIHCK +>MGYP001277400934 FL=0 +CARSVLKPRPPPVPPAPPKPLVCAAEPARQLTPRELPRVPPAVVQAEIHEHLADVSTGPDENMMRMLFEAEPDPALVFLKAVRPSPLPRTGPRAVLASSCPAER +>MGYP000821197694 FL=1 +MIMQNLSLIHISEPTRLLSIS +>MGYP000868773532 FL=0 +MLSINERDGVRLDALALPHRPQFFSGLGLHVDLPGLDAQGPGNGVAHGLAVRRHAGCLGHNGAIDIADLPPLLAHPPDGLGKQAQRVGAPENRVGIGEMRADVAQRGRPQQRVGDGVQQHVGIGVAEQAHGMRDGDPADDQRAARHQGVDVPALADTEIDGCVHAARLFRMASARAKSSG +>MGYP003609178968 FL=1 +MLRKPVYRSWAYTADADAKSKSNAEYFEELSHLRSKEHMSFTTSPQYAHTTFSGELLSEEALALTADEILLLMDHGNLCFGGRCSKSGNKFSGSYNTD +>MGYP003113185133 FL=0 +KKKKKIRIGIIDAKADQILTGIGTVADNPELGNIIDIVVGMGITQTLVGKTSIGAGSTSSLSGYLKGMVTEVGEGQVSVKKKKKVEGSTETPRDYQEGGAFPFDDLGSLGIHTAGISTAAATVPYAGRQDWFSQQTVAISTSTVGGSTITTTQPWNTVADKPGTSQYAADRGTRFDEVHVVVIDGAGKVSGNAGTILEKHLGLSKAKDAEFSAGAPSYWRSYLKTNSAFVFGGDEPSGTIDVGFDVGGFSPAGGSWDKTAEGTIFKSIGKFNGVMGGGKNYDGNTDITGDNALAVDLSKLVTGYSLFENADNFKVDFLLMGSADYSKEIAQALANKLIAVADTRKDALAFISPYRKAFLTDTVAGSVTVNNDETITENVLEFFSPVTSSSYAIFDSGYKYMYDRFANTFRYVPLNGDIAGLCARNDIDNFPWFSPAGTTRGAILNAVKLTYNPSQTQRDRLYSARINPVIVSPGGGIILFGDKTGLAKASAFDRINV +>MGYP000828330599 FL=0 +MRKLNYSLKELVLADLYRYEGKTDTKSFLHAYATYEGFKFSVWLRMCSVARKKKLTKIFILPICRMIYRHYKYKYGYDIPYACLLYTSPSPRDKRQSR +>MGYP001429112534 FL=0 +ESGGITQHIGAYEVIVEGDKKITFLDTPGHAAFTAMRARGAQVTDIAIIIIAADDDVKPQTIEAIDHAKAASVPMIFAINKSDLPEADIDRVKKSLSGINILVEDWGGKYQSQTISAKTGDGIKELLEKVLLEADVMDLKASREVSAQGVVVESRLDKGLGPVATVLVNKGTLK +>MGYP001154957988 FL=1 +DVCFCKANKGCAVGESSTDGSFTNDSIIWRTIDGGKTWKQTYAGEGEGGLGAVTFTSKKKGWAVGRGGTILKTKTGGRKWKKVTVPAGAEHYDLTDVSFPDKMHGWAIGGLSQGATDYNIFLRTRDGGHSWDLTTFNMTEPLSILWKISFPTDTEGWAVGDEGRIYHTSDGGTTWSEQESPHTDTFIQATDVHFTDADTGYVVTSDGYLLTTINGGADWEIAHHENSGFYGIAFGDLLNGWAFGADGMAVTTLDGGETWQRTTEGATEVLLGCSFADLSAGWAVGAFGTALGTSDGGHTWRDLQTGTVEHLRAVKFIDRDHGWAVGDSGAILHTYDGGESWAPQESGTGQALAGVDFVDSLHGWAVGGDTTLLRTVDGGETWTASSADAAIDLYTVDFVDTMHGWAAGKGPGHVLRTEDGGETWDAVEVVFIQGQTVAGYFSVRFRDAYEGWLCGAVQVGLDDATVIGHTTDGGWTWDSQHLSRSTDHILQAMAVTEDGRGWA +>MGYP004345682747 FL=0 +ALMISIKNFPNPSLKVYNVSALICFQSTQNPNKTAPDSPATQHRTGFKDGLATSPIDRHFP +>MGYP003480708303 FL=0 +MYHSGYKKSFKITGFALVELLVSISILVMVTGAVMANHGAFNSAVLLRGQAYEVAFQARDTQLFAVSIMSDAGQYRNIYGLHFDKNNNTGYKIFRDSNRNSYFGTSEEFGRQGSLDSRFVIGDVRWVHSNGSETSINNVSVLFERPNFDAKFFEAAAPGGELSNAMAVEIDIRTKGTSGNTNGEVRTVEITRTGQI +>MGYP001578248368 FL=1 +MKEEIKRLPQTLSELRKQEDEDDYSPRPRGGKPYKRKFLISFKKNEGK +>MGYP001074384480 FL=0 +RHHRGPGDHGQRGQLSGRGVHHEGRLAWGPASQDPALHPAPQREGGEVQPADGR +>MGYP003184699802 FL=1 +MYKKKQITCSPCFSDNPSESLDFNPFVDKVAVARPMSYYLNGGVDLDGISTRKPLPDAFDDAESIASGDVNVFTDLTVGKLDLMDMASTMASESQARALKDGARETNFD +>MGYP003330398148 FL=0 +LLPSFAIIVLGTIGSIPGAIVGSIIVGFVRALSSPVLIGVGLPLGRSNYSALDGVMPYIFLVAILMIMPEGIGDAYEKWKIDRLRKKREASVRDDKLQSTTYKCFMERSYYVYLLASRRMGTLYCGVTNELMRRVYEHKLGQADGFTRKYGVSRLVWFERHELVNNAITREKRIKRWRRDWKIELIEKDNP +>MGYP001273406180 FL=1 +MAIIYMLFKHISQLFSYKITLLFVFIVLFSIVYMFLDDKHFSGVNFIKDAIKEEVIKKKIEKKVDKTLENFTGDVFSFKPITANDEEDVDTKIDRVAEVTEQEVKEQDLSAEKIETSYPQKLFDRFYFSINTTTLLGYGDIYPVTNVCKSLAMTQSLLTIFLIVV +>MGYP003308729374 FL=0 +MIAKIEKCTLSGTAYAPTSKSIAHRLLICAALSEGVSIIKKVTFSEDIYATLECLKTLGANYTVDGDTVIINGIENIQQSEEKIFNCRESGSTLRFIIPLLLLSDVKQILTGKGRLIERPQDVYEDICNEQNLLFEKNDKITVRGRITAGNYYVKGNISSQFITGLLFALST +>MGYP000219845609 FL=0 +TTTTTANITEPTAVVISGAPVTDANCTGANNGSITINANGGTGTLQYSIDNGITYQIGNTFSSLSPGSYIIVVQDANGCTATTTAIALPAGQLILSGFGSGSLKSKIIKAKSIFRANECDEHSGEQLYILYTSAMMEKILGDTTLTSADFMAGKMIQEGGVGGKWMGFNWIPYEKLSQGAAVGELRTVAYCGSAIHFGEADITGFDITTRSDK +>MGYP000496951928 FL=0 +MSIEAMKQALETFKMLNLTQVIEVQWTINALRQAIEEAEKQFNPDWDQQAVLVKRIRELEAQQALDKKADNARELGLDYEPTHTDHPMRHWDRTCPACVEQAEKQEPSRAQTKQIVEGLKHCHHPDSQHEFLRVWIKDWTAHKSAQPRKEWQAVNGKLEVEPIKGTLLPQAQGQEPVANEKEGSPCPEFWDWLPKAYNFAGNGVFTKYNMEVAFLAGKQFSSTAPSRTSIEHAVIAGVLFDFMGWLTS +>MGYP001105606284 FL=0 +YGMIPCYKWPRNSSRLESFLQKQGTLHPKGYTYSEVKKMTKSFAHKLGQGGYGAVYRGNMPDGREIAVKMLKGIEGDGEEFMNEVASISRTSHVNIVTLVGYCLQGSKRALLYEYMANGSLERYTFGNNSTQGEDTLSWDKLFNIVIGIARGLEYLHTGCNTPIVHFDIKPQNILLDQDFCPKISDFGLA +>MGYP001562148884 FL=1 +MILIGLVTGLGAMIALSYWLTGSVGSNPAAADVCAEVATPVLDGPVADVTLGTVCGDIDLRLDEPISGTDGFEGDFRYSGPPSDPDRPRPGYLVWESDGCSAPVLGRGPFDFTLACNRHDFGWRNLKHIDGDDVPTWQVENKDRVDAGFLHDMRKRCAAVPAIVRIGCDTTARVYYTAVRLNPSGVKGIPGSG +>MGYP000254919864 FL=0 +RYHKIIIMTDADVDGSHIRTLLLTFFFRQMPELVERGHIYIAQPPLYKLKKGKQEQYIKDNDALETYLISNAIDELELHVSADAPAIRGEALAKVIADYQTSQKSLSRLTLRYPASLLDGLLELDAFKIDQAVSSYQTAKVKPKVIGSP +>MGYP003314355870 FL=0 +KESSAASDVYKRQVQESVLRKEETPLVSHVRTIVGHIILMENYWQQRA +>MGYP003594184147 FL=0 +NDKFRGQSMMSIDQMELFFQLLISQNSDRKVVEVFPSYYNKETTFGQCEILKETYGVNSKHDYAETISLSSERLIVRFRNIFVVGILFKRDFITWKEGKPIENEFVPFYKHLLNFVSFEDKV +>MGYP000202344024 FL=1 +METATKASDQQATNAALAALAATGNSYALGQLWELNKGLLRSMFWKWYPAHKAQADAHGLTADDFEQEGIFCCPARRPDLRPGTGSLYHLADCRHAAPDPAHPYQRPRPQRDRR +>MGYP000205932652 FL=0 +HQARMAPLRHQVDAGRVVQIDLHIPETSHMQHAPFLDEQPPLALRPVRPHAADGHAQPDHPGDGERRAKQHAQPVEREIGQSDDPQRRDRRGQRHRRLEPPFQQGRRLGADHRETLA +>MGYP000157303393 FL=0 +MKAKLLSTLKYLFFLGIGIAILIVVFKDKDLDKMVEDLRNAEYKWLIFSMIFGYAAYLFRGLRWLLLLETMNYKSSANHATQAI +>MGYP001265825478 FL=0 +MLRFILLTLLALIVWVVAFVGGTIAGLWREPIAPRGDTAAFVKAATARIDREHKGNVAFTLVEHGRKVA +>MGYP000910426799 FL=0 +MNMNAVTRAERGCVEAPTVSFTLNGRQISALASETLIEIATRESIDIPQLCYRPGLEAVGNCRACMVEVKGERVLATSCCRFPLPGMDVTTDSERARKAQQMVLELLQSDLPKTALTRNNEVDEWAARLEVCSPRFAPRPAVAADLSHPAIAVNMDACIQCTRCL +>MGYP001021135751 FL=0 +FKARFFALWAQNDKKHTQNDKKHTQNDKIFSEWQYILRMTKHT +>MGYP001288254412 FL=0 +MAGHNASKRLPLATQGRDRGVPHEKPRELLPNQRAARTLRKVPAHDQAQASPAAAQVPRLWKRDRVEHYRSQRGEAVRTWDIQQGDCLDLLRALPDNCIDAIVTDPPYGLSPDGRCRTWDDIESGRKGGGFMGKQWDAAVPGVTWARECLRVCKPGAHIVAFGGQRTIHRLICGLEDAGWEIRDLGAWQQWQGFPKSLAVGKAIDAHHGAEREVVGHADRKTGPGRHLAALAGNPGESATPSITAPATEDARRWEGYGTALKPCLEPWTLARKPLDGTVAANVLRWGTGAINVDGCRYGYGDPAWPGPQGDPGGRHNSADRSGSPTVHLPPVSLDSHDLGRWPANVYACPKASRAEREAGCGHLKGRAGFEAVERTEGSAGLDNPRAGAGRTAGEVRNHHPTVKPTALMAWLCRLVGGQPGSLILDPFCGSGTTGIAALREGFRFLGFELDPEYIQIAEARIAGDAPLLNRRESVLG +>MGYP001416122492 FL=0 +SEKEHHPDYERNTNHIKWRFVMDNANFCSDHKQVEFCAHELDFTCDYDAAITKKTGKHHKHTKNKTKRQYSGRDSEDNGSDMDLFEYTLNSDSESDTSQRGSGRKTSKKPKKRSNTGDGVKDSFLRDSMQFHPYNKSEHDTLNSTEMRWSGRKSYRDNRRNIGLNNNKSRARVVTVVS +>MGYP000266266674 FL=0 +MGMEDFWEQLPTGKEDKPLLFEMGPLEYDFHDIDGLYFMLDRRLSGCLLMMLSLIHISEPTRRV +>MGYP001810632152 FL=0 +ALENMPLEELQGQVQARQQDLEGLFRFVNSQEEELTLQRQDIEELQVKLSRSSEGERPGLEAELADQQEQYNMLNETLVGQRRNLREREEILSKHQEVLWRRLGNPPGLGRSKRLDVGSALQKAEAWRQNFGAAVQNLTGSVESLQQSLGELRETVTQKAAAMEGKQQELKEKESALATRQQEVLELAGRVSLYQEMLQPERDRLHSLHEKLEELGAAIAHLDETKDYQQQAITQIRDALMPIISPSA +>MGYP000787850220 FL=1 +MCKAKAWVLALTAGLLLLLIPAQARADVTRLLILNDEQTSETSAAATDVLRRFALYSSWTCTFVSSEDVPDTCLLYTSPSPRD +>MGYP003299208211 FL=0 +ENRCQNGPVQGQFSGRNRDVADEGAEGTKYEHGCHKHPGGASGVLHGNHFLSKMVLIVPEDGAVCKMYLIRQEPKNFFKMRIIPIDK +>MGYP003980343243 FL=0 +MMKSKIDPTVLYPSRRSMYKQDALAIERNEELPLFDATLLDTDVIIVVGKRQKVKDVAAYPFYLVKENNTVNSLVTTVEIQLGIYEVSVNKEEEYLDDTGTIDISLIGKPLLHTFVTKTLLESILSPTPTVNNHNNNNHNNNNHNNNNYNNGFNANNENPEENNNNNNNNTLQPSETERKRKSNSKTALEAEAENYIDIMTPTKT +>MGYP001799802231 FL=0 +YVIYINTFSKVLVPGLRIGYLVVSGPVRQLLLQQKLNHDRTTSDLMQRALEAYMTVGKYQVHVRRVCRAYRQRQVAMHQALKRHMPQGVTWQRPNGGLFFWVKLPDGVTAVSLFQQALRQGVVVSPGTSYTTPIDNESPYLRLNFTVHDTAVLEEGIARLGQIVRERLD +>MGYP003466254295 FL=1 +MSLSKIIGYASAALAVYFYKQSSDLENEIKSEKKAHEAYVRELLAANSALENKIDPNLGSYQSPIIFSATMRSGGQMLEQNEITLNCTNPTDSIIEISDFQARIWVAGYMADLCVPANILSIKIPAKKTVSFRLYARYGKMFRNYVEVKRALNLLYDGKNTSTMRAGTFIPLDKEPVLMNMQYLWVGKGFEDKCYVYDVPGSFRWKYAGWTVGAYVGYNAGNENQQKANPSYWTDTQEIDSIDE +>MGYP001158205152 FL=0 +MHANQYNFISSVSSNIIQVNIDITPKYNDYEMAQIIQNHAINQNGYIKNHGLMIYQKKDVYLVYAMDYVGFEFAWKYMIDAHSGKIVDQIPLIYDSGPTIGSGINLLNESITDLKVYEGSSFETMGGDLITPNLICEQFCWDYGDCDGQNYSDCIVVAEQYNCDDGYIVDCDGICFNEWYMQFPGVGNGFCNDPWIEYEEANI +>MGYP003680783999 FL=0 +QATIFGILAGALVIIFSKNLQAIFHTQSHWMFVLFGIGIPLYFFMSVNRGTFQGHQDFKNLSITYQTEMWSRLFLIPWEPSFLVALGIGLSFLFGLIPSNLKDISFKSKAKLLPENSKRVTQFMLLTACYEFTQIIINNSDILLVKHYFNALDAGLYASLALIGRVVYFVAWMFVMLLLPTVVQKQKD +>MGYP001343183673 FL=1 +MSNTYERLQKVIAQSGVTSRRKAEKLIEEGKVKVNNKVVTELGTKVSPDDKIEVNGIQLEKEVPVHYLFYKPRGVISSVKDEKGRKVVTDFFPEIEERIYPVGRLDYDTSGILLLTNDGEFANLVMHPKHGVEKVYVAKIKGIPSKLELGRLRKGVKDNGELLKAIKYRVISSDKKKNTMILELTLQEGKNRHVRRMMEQLGYPVIKLKRERYGMLTLDGMRVGEYRKLTPKEVKQMINLATQIVED +>MGYP001231558494 FL=0 +KNSDLILINGDKDIDFEKKLFSYNAKVKIYYSVYKPINADKFKNKKILALAGIGNPENFFNLLKNSNLSVSEKNFFPDHYEFSKSELSKIILKAKRNNFCIVTTEKDYFRVKDYNLAEIEYLKTELVIENKKQFLKDIMKIYD +>MGYP000160763201 FL=0 +MINKSIKYIGVILLAYTLNACNEQRMSSSSETTTPVWLAEVGKRDVLELTTTTGTAKAAKTVEVKSETNGKYELMINPKTKRPYKLGDIVEEGAVIIKLNNKEHENTVSLPTKKMQVDIAKKEWDGQKAVFEKGGATEKDVLNAESSYIQAQTALETAYTELAKLTIKAPFKGAIVSLPYFTPNVEIASGETMVGLMDYSHMRSEERRVGKECRSRWS +>MGYP003702127599 FL=1 +MSAMKRASSVVKMKPLSSRSKPLPVNDVIAATDLPTPSPASPRGGRASGSAMIRCEFFARDVCENFFLAIFPFMHKFQDDPMITNLKVSEVKNLRKFSSNIWTAIKYMGRNLYSHL +>MGYP001407002453 FL=0 +GFAVLGGLKPALNLLGNVPLSVLTDYNLAVIPMFILMGAFASHSGMSRELFGAGRAWLGHRRGGLAYASIAACAGFAAINGSSVATAATMTQVALPEMRKSGYDAGFSAGLIAAGGTLGIMIPPSVIFVLYGIMTETDISKLFAAGVMPGLLAVLLYFAVVQFLGWRYPASMPLGEPHSWPERWTSLRALWAVLLLFLFVLGGIYGGWFTVQEAAGIGAAGTLGIGMMRGRLRWQQIRAALIDALRVSSAIMLIVVGAYLFGYFLTITQFTQKAVAFLTTLPIGAYGVLALVMLGYLILGAVMDELAMILLTVPIVFPAMMQLGFDPVWFGVIIVMAVTFGMICPPVGMNVFVINSIARDITLARIYRGTLPFATELWDPVLR +>MGYP000300748531 FL=0 +MTVEFTFQAIFGFLSNFVEYLCTIQKRIYGIKRLHHSDRCLLLDDIGPPIETLRSIPLLVSRYELLAHCLYAVTSYQFSFNLVCLDKVTIHITISTIHKMQNILVSKNNKITSTS +>MGYP003495590882 FL=0 +MPTGHWPAEAAHTDEYLQVAPGICYMNIPARDKYVPGGEMWVTESGDAGGGGDTWASTYLDVLRTLNELGSFCTLTNGVIFHNTLASSDYGFLQHGSFDPRPNYFAALLWNRLMGSECYKVEDAPQTEGAHVYCHSSKDGRGNYCYLIINNSLAEETLVSVPKHSY +>MGYP001249907410 FL=1 +MWARIEQTMAKQIRHVRPIARDHADPTTQRIAAQIERDFGAFVPPFALHAPAPAVLAACWMMLRESLVPAHVDRRTKEAVASAVSRLNACTYCVDAHTAALHALGETATAAAIADAAPALDASGALGPFIAWAAATRSPDNRLLRQPPLSAAQGPEVIGIALCFHYINRLVSIFLAPSPLPFKSARLKAIARRLLSPILTGLLQRPLEPGESLAWLPEAPSPPDFAWAAGNPTIAAAFARAAASFESAGAAVLPATVRALVRDRLHAWHGEEMGLGRRWLEDAVDLVDAELRPAARLTLLTAFAPFQVDDVLLREVRRTLPDDAALIAATAWASFAATRRIGTWLTVDQFTSGSRK +>MGYP003567298226 FL=1 +MFSAEVFRLSGFRHDIQAGDPPLPLWWKIEQNKNMNLSRKPRPQLSLGPAAPDLALGRMHEATGPSAVIFAALAAGRLTGPILWARPAWEGGVLNPEGLAPLFDPTRLVVASCPRPLDILWTAEEALRSGAVQMVVAETAEPPALTPLRRLQLAAEAGGANTKRPPLGLILPPRAGTAGAVESRWRCRPSPAWASGQPARWRFERSYGKSGPPLVWETGVSDTIQRRAA +>MGYP003550943715 FL=0 +MLLCPPRLIAERQAAQYEIIFSHGDSLARSIMIRGVVDAVLTLPLVLPPTVTRYFLLRLLGSRRVIGAWLMTY +>MGYP003599591953 FL=1 +MKLIEDWKQAWKLKSVQVGAMSAFFYALILFSEQFVNIWNVIPQDLKNYIPAQWQEYMGMFVGVAIVLARLKKQPELHAPELSGINSLLSMPTQTNDLAWMIEAKKHIGLKEVSGKAHNPTILNWLKSLGAWWSEDETAWCGTFIAHCLKVAGAKYPKHWYRALDYVNYGSKLTKPAYGCVAIKTRQGGGHVCFVFGRDEKTRKLVCIGGNQSNMVCYALYAESEFQEFRWYGMTDRPADKRYNLPIMTGVTATKVSEA +>MGYP001120090256 FL=0 +VRLLLRLLLLLLLRRTRFDLDSRSSLLLPPLLLALLLSS +>MGYP000141974819 FL=0 +MSVIERVLKTGDTMQVSDYELTPLTEVVKIQLPGKHAGLIWNHPKAVIVRTTDGRESHLPVRDVTRIVMWATLAGGLLGAIMVARIYRKN +>MGYP002637710184 FL=0 +TQRKKEDGTLDPIKDLFRSPDIKTIGIHLDVPKGLVLKKSDGAVAEVGIQSGDEVTAINGIPVFTFGDLQYYYDQVGRKSTSITL +>MGYP001617737781 FL=1 +MGEILLIWMVGGWKMYKKRSYDGKNTPRLIHVLMAIIPILVLGGLLVYFAYIKVPEYQQSDTTYSSRQPAYDEYSQQWQSVQSREKQQRENVTAAYKQMSQYTQDQLQQLRTERELQKTQQKVIYPFK +>MGYP000263732607 FL=1 +MPLFIFIRLFHHRKMSAAELDAKLVELKKNLFMLRMQHATNQLDNPLQIAVVKKDIARIKTIIRENETK +>MGYP001213662979 FL=1 +MAFNNFLEGVATQLINTGLRKVAGNLPGLNISVNSSNSSPVADVTRNSRSTKFFRFPLDVEADPGIGNQGHYMMFEINEQDHARLKFGGKGSPMRRVKAVSPVLSNLDQPPPARLDPIQQMNRYGSIQNYEKAVSDYKTKSVGTKRASTTEISAHIAMYMPESVTTGYSAQYTDTEIGYITSAAIDAYEKFAQGNMRGGLEEIGRRDKDLAAALNAMMLNTAGALPGLSGLKAAAEMRSGVVLSDRMELAFKGIDKRTFQYEFKMVPKSEDEAKEIKEIVNMFKLNMLPEFAGNDVHGRSLIVPNTFNIRYMYAGAENEFLHKISECVLESMNVTYGGERYKTHSATDGGAPPIQTTMSLTFKELDLITREQVMMGM +>MGYP003703380869 FL=0 +MVPLLNSPGASWKVLAPYILSTANSPGANWRVMVPLILSACTLP +>MGYP000959007105 FL=0 +MSGTQTETVACDVLCIGGGGAAVMAAISAKKAGADVVIASKGKIGNSGDTIMIGGSYSMDGESAKKKYGFKKANASVTKDVLFEQIVKQGFLPFRTEPCGAVRGGRPGGGLSVLAVGGARK +>MGYP003576775111 FL=0 +MASAPSISDAFRTTLDLFQTGCDLMRQNLRRRYPDAHEHEIDRLLQTWLLERPGAERATAPAGRSTSSPDLRDGTRSGAQNDCGTRISPRTRARDRVRRTVAPAASLX +>MGYP003283773441 FL=1 +MEQGGTLAARQRTRQVDVGGVTLGGGAPVRVQSMLTAPTADAGGALAQTRALAQAGCEIVRAAIPNEAALAGFEALCAASPIPVVADVHFDHRLAVEAARRGAAGLRINPGNIGSWEKVDLVIDAAARAGIPIRIGVNAGSIGRDLAERDDLSVADKMVRSAVSFVEHFEGRGFTDVVLSAKAHDVPTTVETYRRLSRDLPLVPLHLGVTEAGTALQGTVKSAVGLGILLEEGIGDTLRVSLTADPVDELPVAWGILGALGLRRRGAELVSCPTCARCQVDLIPIAREVECRLAALELPITVAVMGCEVNGPGEARGADIGVACGRGSGAVFYGGKIVARAPEDRIVDVLFGEIASRFGC +>MGYP000469828058 FL=0 +SYRRDLVKLQSGRLVCGYIYASAGEGESSTDLVFAAHNLIAENGTILAQSKRFENEIVTADLDIHRIRAERRRMTTYPTTQEEYEWTEFELKTEETKLERTFARTPFVPQNKNDRERRCEEILSIQALGLKKRLVHTNCKSLVVGISGGLDSTLALLVAARACDMAGIGRDHILSVTMPCFGTTDRTYQNACELTRRLGATLKEVDIRKSVTCHFEDIGQDINCHDVTYENGQARERTQVLMDLANKSGGMVIGTGDMSELALGWATYNGDHMSMYGVNVGVPKTLVRHLVAYCANTCSESEKVLQEVLLDVLDTPVSPELLPPEDGKISQKTEDLVGPYELHDFFLYQLLRCGFGPAKIYRLACRAFEGIYSKETIGKWLKTFCRRFFAQQFKRSCLPDGPKVGSVAVSPRGDLRMPSDASSA +>MGYP001221173772 FL=0 +MTIPSALASLLLSQAAAEQQTLIMESLDLISQNSSEDLIASSGSSTQSSSLPSSFGEI +>MGYP001563734490 FL=0 +MSGRAMGWVTVALLFAGCAGVNYRDKYERYLEEGHKLPPSTAEEVKLQRQAYVDAVGRDSPFKEVLWDVAINGHRIARVTLRGDHVYVETRDYWLYAIEAKTGITKWALDVTRPIQYPPTVVHGLDDAMAAQRALLANIQE +>MGYP000046061924 FL=0 +KLDAFFNDNVNYIKRFTNPEHLGIAADVEVPDLVMSSIITGAEIYLPLADLLNVEEELARLEKELAKWQKELDMSVRSSLTNAS +>MGYP003435272778 FL=0 +FIFCLVAFNYTMRELKRGRILNKVTFLEKVIKQIKL +>MGYP000462850367 FL=0 +YIYKRYGTSWRIDKKVVANDPAEDDQYGISVAIDGDYVAVGAPYKNANAADQGTIYVIEHNASANAGSAQVYNYDGTSWIQIGQTLYGKTELSHFGVSVSLDYDGDIVAIGAPDVNNGVVGVYKFGTDGSWAQLGSDIVGEADGDYFGISVSIDSDGSHVAIGGAGNNAAGDDAGHARVYEYNGTRWREVGYDIDGDGDGDYFGNAVSIDS +>MGYP000891392761 FL=0 +YNFFPFCYISRFFVQFICQIPFFFVFMRPSVFLREKRWDASTRKFWIYFNNVELPYLNNLNFS +>MGYP000314751283 FL=0 +YQEAVKWYRLAAEQGIAKAQYNLGVMYRDGKGVLQDYQEAVRLFRLSAEQGHAKAQYNLGVMYANGQGVPQDYKEAAKWYRLAAEQGVAEAQSNLGVMYEKGHGVPQDYKEAVKWYRFAAEQGTAEAQYNLGGKYYFGKGIPQDYQEAFKWYRLAAEQGIAEAQYNLGTMYN +>MGYP001575587140 FL=0 +FLEHMCFKGTFKRPRAIDITSELDSLGAQYNAFTGHEYTGYYAKVEARHLDKALDVVADLYQNPIFNEREIEKEKGVVIEEINMYEDLPQKKVQDLITKLLYGDQPAGWSIAGNKETIKILTKADFLKDRNQHHVASATTVVVAGKFDDKNIFKKIETKFAVFSDLRKKGYIVKTALKFGAEFRVYEKGVKPGEDHAKWILYTV +>MGYP000040707706 FL=1 +MGMLNTSCFYSFGKEMFRKIFYKSCKRHSFCINDTKGLACGSFISLIEYEIASRKTRLPTLPFLSILFMSLFR +>MGYP001557050405 FL=1 +MLEQYKKTAFHESGHIAMTYFAEYACQEVEVLISGDGKTTMEYGNDLLLISAITNCKEYPEMFNDLPHATKLNSPGVAFKASLILLAGSIEESIYMNNGIVDGDMEVELSGPDLLRVQNIDYLLSSIAKNHPSNFIQSNIENIMMTFSIPEIWTSITALAESIYSKDGMKLTKDEIEQNLTSTGYFDHIKKYL +>MGYP002626139264 FL=0 +NNDTAALLAPIAISVAASMGVAARPLVMTVAVAASASFLTPVGYQTNTMIYGAGHYRFGDFVRLGGPLSLLTGIVATLLIPWLWPL +>MGYP001591609445 FL=0 +LTESGSCPTFPIFYGTYSGVAKEFKADITEEYSLMKNQDWFDFFNNKLFTIEKNKLDSINKSKNSFELNLEFDNNLGEDINLETHDLEENNEDITKEENSEDIKLETHDLEENSDSDGKWSDITSEEEYKDVIRVAEKIDIPYFSVNFVEEYRENVFKNFVQEYRDGFTPNPDILCNREIKFKVFFQKAMELGADYFATGHYCQHEYIDGKSILTKGIDAGKDQTYFLYTMQEEILNKVLFPIGHLEKKIVRKVALDFELATATKKDSTGICFIGERNFKNFLSQYIKEQKGEFVRLDDGKTVGPHDGYCYYTIGQRKGLGLGGPGGPWFVAGKEVDTNIVYVVEGEN +>MGYP000075518654 FL=0 +AQIGKGVHLSAGVQIGGVLEPLQASPVIVEDHAFIGAGSIVVEGVLVRRSAVLAPGVVLSGSTPIVELNEKHEKVAEYKGEVPENAIVIPGIRMKGNSGYGYQTPLIIGYKSEGTSAKVALNTLLRDF +>MGYP001377906329 FL=1 +METDQIMSAIFLIAVLALILPGFLSTNNRAKQFMKNLSIWTIIVLIIIVIIYLIKQ +>MGYP003341019630 FL=0 +MLFRSIGAFWALTLAAKPADRTHHYGHFKAEYFSSGLESVLIVVAALAIIHTAIARLQQPQPLEQLGLGLAISLVATALNGLVAWALLRAARRFDSITLRADAQHLLSDVWTSCGVVLGIGLVKLTGLTILDPLIAIAVALNIVVTGWMLLRETASGLLDRSLPDHEQQLVERSEEHTSELQSHSDLVCRL +>MGYP001601917572 FL=0 +LKALATSRAINLIEVEENKLKLRQKNNYLQVGGRFPRLGGRQAGDRFDEIREWIAKLAVARAAE +>MGYP000576050399 FL=0 +MADSKKNDKTEAPKNNIEDSKEQIKEKFRNKDNMVDLDSDPTKLIEIVEI +>MGYP000088332676 FL=0 +MSSWGRPERVVVLLVGEGAVGDTSAVRERIVHQQSTYAWEFVLVDVKRGRRRAAFNHGKLARALQQATGKEFDDDRLPLEQLRFSPDRTACWFRVAGKGWTCVLKTCVLE +>MGYP000901407724 FL=0 +MDSAGERFEAIRAALADRNNILTVKDLCELAGVSRSGYYNWVRSEKNRELREAKDRAAFEQILEAYRFRGYAKGVRGIHMRLLHMGIRMNVKKIRRLMRKYKLTCPIRKPNPYRRLQRSIRMGSAAENLVNREFESHGPRAILLTDITYIPLCGRFCYLSTILDACTKQVLAYAMSESLEVDFVLETVQLLVKHHGISLSKETVIHSDQGTHYTSLKFIQLVENSALRRSMSRRGNCWDNAPQESFFGHMKDELASEIPGWTSFEAAKASIDRWMDYYNNDRCQWDLAKLSPNEYYHYITTGEYPAGTMRRCREELSKLFKRLYEDNVLGRVTDEQYRMLAGDYTGEQKALEEQIPEKEARLEKLKAASANVNTFVEKAKQYTAIDELTPELLRLFIQRIEVGERTEKYSRSSHQSIRIVYRDIGTVDSAMEQGEAQPHIAPPLSEVFELPA +>MGYP001844006787 FL=0 +FGNFVKITXPNLAKRHIYRPRAFIXSQHEISRPLRSRDIARTNKKSIFVGFFLAILSRSRDQIGQNGQKAHLQAESFHLSPTXNLXASPFSRXWPHKQKSIFGVFCQFRQDHVIKFGQNGQKAHLQAENFYLRPTSNL +>MGYP000461460321 FL=0 +MERKSFASLDCSIAQCLEVVGEWWSLLIVRDAFLGVHRFDDYQRRLGISRNVLRQRLTHLVEAGILEKVPYSTRPPRSEYHLTDKGTDLWPVLTAMRQWGDRHAAPNGPPALFVHRSCGATTDTLLVCESCREPVRAGDMKLVPGPGRTLASLVSTSRTDK +>MGYP001244209094 FL=0 +MARNWCSAHAPVGNSESPAHSLESPRLHSSAKRRGDRFTGQIVVGRVGLEPTTTRESVRTSTCQRAIDPLKVTRKKYRLREDGHDPSSSYSASATSGLMPSDGCSARLVTGRDGFLWFPLLFLFVFLFVCLALWVFLKCSGICLVCHSGEEQPMCCVVVDHRVQALLVSELVPS +>MGYP002522304077 FL=1 +MLNNTSTDMDTHPPTQAGIGIATPVCYSEIGAKANQEDALFPLAGEATARQRVFLVCDGMGGHEHGEVASQCVAHTVGTLTAAQPPCDTATMRTTFEQALATAYDRLDEIDTPPSEGRTMGTTLTFLALCTDGILIAHIGDSRVYQLRPGEDVVMRTRDHSLVSDLIAAGELTEDEARTFPQRNVITRAIQPHQERRDRATYNVVRDVREGDVFLLCCDGVVEQLDDASLCALLLAPGSLTDRLAALRDECLRRHTRDNNSAYLIGITAVDSPARPQAAMPTSPVTQPRGRHNWVYVAIALLIALACFLLAQVFMGSKDGARAGKTDPPATETTADSAPLRTIQHR +>MGYP002571109560 FL=1 +MKNILFVIGSGIYPHVVGGMEIFNYYLIKKLSSFFKIHYLSYKRYDYDEGKQLKCFKIKPTKFFAPLQLAYYLLIKPQIQTVVFSYSAAHWILWHLYQKVTRLFNRNYIVVIHYGHTPPVEKKQAYQKFFQQAKAVIAVSNDIKKNYDAYFNINCEVIYPLVPFEHSNLNKKELRENYNLPIKSNIISMIGSLKPMKNPETIIHALCLFTQEEIAKYNPHIVYAGKGESMVKLQELAKQYNLTERISFLGFIPKEKVNDIMKLSNIYLIASDFEGTSVSLLEAMYNELPILASRAPGITNTLNENKDCLMFETKNAQQLKMQLLRLLSNESLSKQLAINAYRNYCNKFSYESIVNSYQKIL +>MGYP000323132695 FL=0 +MIERLLRIDNPPAHRRRAGAVLFDKPRGKTVGVVVQHVCDIALLPKLDLLGLVPCDFFVTHARKKIAQFLRVGRRKFNKFKAVGASGVLWRDLRFRRAVGERTHGNASLVVRG +>MGYP001035366785 FL=1 +MSPRRSFHTISCPLQKAAGLQDDDRPAFIAKPCAQYYKLRAPSSVLGPSRGQQVPEPELVRQDLDAAGLGARAPAAALHGPHRLLAQPRRQLQAHPIHERVHVLGEVQQVPVQELGHRQPPRRRHAHGRLQVLPLRRLQLLLHARRRVHPHLKSEETTASPPGQAHIVTRTIASADCCYCRRPAAAGRNLINYRGGGPAPAGEREGDEGLRPLQPERAALRRHVVAGAGAALAPFRIHLPGHESSIRSAHSATATRGVAPLYRARR +>MGYP000942704436 FL=0 +MAAISKGTVAFSFGVDETYTGGTVTSLSVNESWGNIGEVRNETGTMISKRYDDIRKEGTITVLLEDATVPSSALGSTFTYDAVVYYIDGISEARSNEGYAEYTFNIKEYENMSSVTIV +>MGYP000205166280 FL=0 +EINIERAFPDADHVVLEKAGTAMARILEAINTI +>MGYP003568659006 FL=0 +FYAAYTRSPYFLLQNYRNENDVDRVTGNFTITYKPMEWLDIVERVGADVYADRRRLKYPKFTYYPVDETTGNYTRANVQSATGEYRETQFNVSEIVHDLMITARKKMGSITGSLMLGHNVRQRTSTILEASTNESAGLIVPGWYNLDNSNGPVSNYNNFSRRRLTGLYAQLTLGFNEMLFLDLTARNDWSSTLPKSNNSFFYPSASASFAFSELMKNGNLSDVLS +>MGYP000466899968 FL=0 +ARYGTRKLKKGYRSHKLKPYREVAKAEKAAFKANVNFQYHKALQENPQLTSNPFSRFMQKQKIKRQYAKTVKKGGAATAKAAAGASQTAAKEAAAFAGRHPAGVIIAIAALLLFIMVSVGLSSCGAMFSGTLNGVLGTSYTSEDSDLVEVENSYAGLENELQSRIDNIERDNPGYDEYRYDLANIGHNPHELASYLTAKYQSYTCAEVQSELQRIFNQQYKLTLTEEVEIRYREEERTDTWTDEDGNEHTDTYTVQVPYEYYILNVKLTNKPISELAEKLLTPEQLEMYRVYLETSGNKPLIFGGGSPDGSPSEDLSGVEFVNGTRPGNQ +>MGYP003111832576 FL=1 +MSIATSLGKRLRDWQLVYVADNAFFPYGDQAESLVIDRCATLISSVMAETPIDMVVVGCNTASTVVLPALRAILSCPVVGVVPAIKPAAALSRNRRIGLLATPATIQRPYLDQLIAEFASDCTVTRIGSSELVRLAERWMGTGEIALGDCQRILRPFAEAEVDTVVLGCTHFPLIRYLLEPVLGPGVGWVDSGEAIARRLEALWQQSAAGGLGRAEQEDPVEFSFYFTGLEPPRIRSYLAATGWPTARIHPEYVPSAPGSAPGLARGVKGAG +>MGYP004300484681 FL=0 +PPPHSTQAARWPDARTSSSGSWHACKYAADTVRRLLRTELADALQHGAEAPAEGAPELTRLGEAIVALLLQKEGAIDVRDLFNAAFAAHWHGIDHLAAHFRVGAHHRRPHRRHEAGVDRVDPDIVTCELHGSGFCRKAPLAALAPRAVPLHSLPGAGVPYSQSARSMIMPRSTSGPGSVPNSCVTWSARSHAP +>MGYP001071452416 FL=0 +PFIKSLKLWVNAVSKSPALKPLVQPLVIVLLSAIRAKESHLIFLPYVSIILGMVNDLSLSCETFVPIISSCLSALNMCSNKLASKSLTAEGREPNISDVVRVSDRQLKDKRVVRTLTLMILKELTRHLCFLARTGAFPEVAWPVAQTLRKLAKSNSTLKPEVASLIDSIDKTIVDIKEKRAAEIGTSLFQFSFEETPMGKEYEKVLTKMEKSWEYKDEEGDEEEEDDEDDDEEDEENTKKSMSKEERSKRSIKRQRQNEKKRALKQTVPEDALVA +>MGYP003153901614 FL=0 +DTARAVVDGLAAKGIACPAVTGAGTGTFELEAASGVFTELQAGSYAFMDADYGRILDADGNRIDAGEWENAFFILTSVMSHAKADKAIVDAGLKAQSVDSGLPVIYGRDDVEYVKCSDEHGVVADPKGVLKVNDKLKLIPGHCDPTANVHDWYVGVRNGKVETLWPVSARGKAY +>MGYP003386720413 FL=0 +MGQKVNPVGIRLGITRDWTSKWFASTKNFPSYVHSDWLVRDYLKRRLAEASVSRIQIERAAKKANIMIHTARPGVVIGKKGEDIEKLRVDVARLMKMAVSDVRVNIAEIRKPELDAQLVAEGVAQ +>MGYP001336422905 FL=1 +MKILKKSQERTEEDRRELSRLVQDIIDNVRANKDEALKEYGRKFDACEREQIRVSKDEIEEAYAQLSEEEKELAEQYADLE +>MGYP000344590912 FL=0 +KGDVDFAQKLARLGNVWVNDAFGTAHRAHASTAVIGQFFTDKVSGYVMQAELDNAQKILEYSERPFTAIMGGSKISDKILIIERLLDKVDNLIIGGGMTYTFSLAEGGKIGKSICEPDKVELAKQLIEKAKAKGVNLIMPLDNVCADDFNNNANRQIVERGCIPDGWEGMDAGPKSLELFDAVVNQCKTILWNGPMGVFEKEKFSLGTEAICKSLREAKSNGVNVIVGGGDSIAALKKLGNKDWVTYISTGGGALLESLEGKALPGVKALSNDY +>MGYP001550816469 FL=0 +MVLNYTRFFGVFTGAIERVAVTGREGNIGPSPTDSNLMPTPLVFAHNAQDDIALLPAMSNRHGLITGATGTGKTVSLQVMAERFSSIGVPVFMADVKGDLAGMSQPGAGSPKLTER +>MGYP003138151264 FL=1 +MAKAAATARPRRRERKNIAAGIAHVNSTFNNTIITITDAQGNSIAWSSAGAQGFKGSRKSTPYAAQVAGEVVGRAAMEHGMKTLEVEVKGPGSGRESALRALQSVGFTITAIRDVTPIPHNGCRPRKRRRV +>MGYP003443083341 FL=0 +MGDTLLVRIDPRLIDPLMEQAEACGAAFADELCLVLLGLSTGARDSALERILGRLAHNMTLTLHGPAEFI +>MGYP001435087364 FL=0 +IIESDIVKTFNGDMQASEPKYFDIEEILMKTYLPVWA +>MGYP001431098935 FL=0 +MSHYNLILKNYKIDKTQNNNIKYSFNNIDQDSNSVSETFILSEGSNFLKNEIKGYKGSVEKINSQGDPVKKHAR +>MGYP003304349197 FL=0 +GIRDPLWSRGLGDVYKRQVKYKAPNSWKWVKLN +>MGYP001141817981 FL=1 +ITTIHGFAQRCLRRPALEAGMAPDLSLDTDPATLIAQVVHDYWQQQVLALPPDWLAALQRAALNPALLETLLGTLDGDPALALDPPPPELPPELPLPVGLPVLWQRLWDSFADAWRRDGRALQDELCEQAAEWRGLGVEDTGEYRPTFRKTNDRAAAIDGFVAAAGEQPPGYEAVLAIKPLTTYFHPGPFTKEARKAEGEDRPIRLPRPDLMEAVAALVDGPLEAVLAHACSWGRAELRRRRQRAGTLSYADLLAGLDPGAAATGPTPLLQAVGERYRVALIDEFQDTDPVQWRVLRLAFGGPDHLLVMVGDPKQAIYRFRGGD +>MGYP000931218709 FL=0 +MRTVLAVAALGVALGTVSLGLRSALDGGVLPRLLGVLEGLGGAQLLAGAPGGASVTGDLRRGGEDGRGRRCGAVRLSRRRLQGLLGGGLGLFDGALMPAGHTAHRCDGLGLRRLCGDRRR +>MGYP002812137160 FL=0 +VRNLPFSAVRPFVRGLPLLRSSERFGQFGYFNVRLQSRIDGSEIKSADLKIHQCNESLFPEFALHARQNPLWGLNVTLAAN +>MGYP000364897687 FL=1 +MNSPFRIFLLARAVPALVAAAVITFSANHAVIVGQIVFIAYGFVLAPLFVWAAFSNSFTTIVRRSFLAIGLTSLAAAAAAALTIGQGLIAFTLTIGIWAAISGLLELFAGWSSTNKDQTREMLLLGALTAVLGLVEAVVPLNDVYAVGLFGAYAAIVAVFSAIAGFSGSSATPAPSSSAPSPRLPSGRPT +>MGYP003364664002 FL=1 +MSIFNFFKKSSKNEPTTAPTAQTCESSVEMQSVAVPKASSDEQPVQPKIDTTGAKRVHNLIIVDESGSMSSIYQPALTGLNETLQTIREAQKEHENQEHIVWLVTFDTSHFKQIYANTPAEKAEDITREQYRPCGGTPLYDAMGKSINQLRQMATADDVVLVTVITDGYENASREYNGKAIKALVEEMKGKGWVFTYIGANQDVEAVAASMSIDNHLAFEEDAEGAKEMFARECRSRKKFFGKLNDNMPMCDISKDYFEEE +>MGYP000037013818 FL=1 +MAHRIDERVVLVLRRDVGEARALQEALDGGVRRADARPLLLLAQVRLARGQSRDVQGEAKKMGRP +>MGYP001133519274 FL=0 +MKTRYVVQRKPLIVGLAGLTMLAALAAPNAAWSPLATAAAQDSHGSSHSSGTHGSQNKGGQGQGKGKSSSGDASGSSSHGNSGSKSVESKVLHGSGDASAAADESSDRRGPKYGGGKASTGKPTGAGTKKGDLLGDLNVILRDANGIPILDQYGHVQPLDASGNLIPLTPEGDIVAGSEDLVVPVEFSRLSVSRSPSKVTDKAYDEAIAALNAATAITTDSSGRLVTTVDGVAKTIDSPLENLALYEALMNNGYLPGFVPKDGVSLGSLSFLVDKSATNSDMLQAASFLAAASDKAGSINEDMVVYTDSILGVTGATPLVGADGKDYVDFSNVTYDRSATYTGTVTYLKSNGDGTYSTVTAPIIDAVFGGTTYTGTQLDAFTQAADDARAVIEYVHDNPLPAQ +>MGYP001272594557 FL=1 +MKFGRKKDTNYFELLNSMAECTSRAAEQLDEMLHNYTDVAAKAEAVHGTEHECDNYLHRLVRELNRAFITPIDREDLLQIGSMIDTITDAIEDVANSFEMLSIRKVEKPALDMSELIKAVCTALSKAVKEFEHFRSSKKLSEYVIEVNHLEEQADVLYRSTIKALYNNTHMTVLDVIKWKEIYDYMERIFDACEDVANLLEGTAIKNR +>MGYP003517379434 FL=0 +TLPLYLVRNYESGVNLSGSNATTTTTTTTTPAVCSGRCKWIWDLTNEIWELDSSNCSTATTTTTSTTTTAGSTTTTIALDCECVSGTTTTTNTSTSTTTTTTTASPCSCSYPAYCGTEDGECTYTNCVAGYVTTTLECTTTTSCDCNTTTTTPDCSSCANYICTPTGWVLVDDNCTGNCTAEEPSSDCNFGTSGSCSGLGGISVAGYGCSGECIYIYYDALDDWYFAYGNC +>MGYP003652714744 FL=1 +MSVATSAGYDNLSGGKWNPSIYSQKVLKFFRRSSVAEAITNTDYSGEIENFGDTVKIIKEPTITVSSYTRGAVVNTQDLTDSEITLTVDQGNYFAFKVDDIEERQSHVNWESLSTSSGAFSLKKAFDYNVLKEINDSAVQGTAGTDTGAAGAAISCNTGNKAANVLARYSQQLDANDVPQENRWFVANSGFYELLKQADAKLMDASVTGESMSALMNGAVTSRQVHGFTLYQTNVIQTASVGSAAAFTFGPSATSGETTCLAGHISAVATASHIAKTEVIRDPDSFADIVRGLHVFGRKVLRGSGDGYKGVLQGVVDLNS +>MGYP002630153343 FL=0 +HLTPVSSPLHSLPLQAWTMASLTDLLNEMLELVFLQLEDWQDLISLGSSSTALRQVFIQPRMWRELLEKTRIVQRGVGFEEVTESQVKKIMTFLKTVVGHEPLLEVLNDSICDQHQSIMWRRTIMKLGALRKMGAMRKMGAMRKLRAMRKIGATKKIGAMQWGEFGPQLWEELGQAAAR +>MGYP002515195457 FL=1 +MGSLFLSVFCVFSTLHLISSWKNDRTRRAKTKPFLISSLALAYLVSAEVPSALLLAALVTSWLGDVLLIPRGNRWVILGGISFLGSHFLLMVLFLHHIHFAAIPWFRLLPVAAVYALLSVISIRSIWDNTPTLMLLSFGLYLLTNSCMNLLALMQLLTSRHPGAAVAYAGAVLFFLSDCILLLVRYHRNPDLVPKKHFPVMLCYLSGEFLITLGIFMMA +>MGYP000652960749 FL=1 +MLNSFKNLSTVLKLRKQPASLKAARQFHDCGNFQMLYIASGITVTILLEHPQA +>MGYP001560261255 FL=1 +MTPAPPTLLAGQGAQPGDIINAIAVQRNQLMDALAMAEANFAAFRRAHQGGGCGLDEVVPGERKVPDDAPA +>MGYP001590704470 FL=0 +REAAAGFIPEGGTITLKALEVDSSLSGLRETWPASMPPVTLGLKLDDLSFRLKGFDEPFSGVGGTVSLKGDNITVENVSARYGKSVLKSADATLRGITGNTAYGISAEGTLDAGAGLSLARDITGGNTLPGQRGFPGPRPPAL +>MGYP001590172643 FL=0 +AKSQREIASDSVKLNVLSCFDYSLQTEKTLLSVCDHTTTIVPITLVNSGSLSNIYDLSLKGPSWVGLDNNNILVNSGNQGKVNLIVSPDYGINGNFDLIVESKSKNGEIVKSSDIKVNVKGCNSVNVNIADDKIKMCGSLTNQYNVLVKNTGEVTNRFNLRTSGVDWVSLDKSLVELRGGEETNVILTIKPDKDVISGVYDVRIEAVNIEGNVKSDDTIKIEVVNMEKCYEPNLNISKKSVEIVIGDSVTIPILIENKGSNTADYNVGISGDAVNFVQVNPASITLEAGKSEIVYLYLAPSIQNRQGPYSLTVSVRYDSTTIIDSDTIEINVVEKQGVKITSEEKKEEKKEKGVFSLIWSYKWYILIALILLFVIVKVISTKGEEEYLDEIEELNKEKKIEKKEVKEKKLIEKPKEKKKEEKREEIIKEDVEERNYGFVKYIVGLVVLAALAYVIYRYNSYLGVYKWYILSAIALLIIVILIIRGFGGLIKFFEEDEEFEEVKEEKKIEKKEVKEKKLIEK +>MGYP003651019918 FL=0 +MEFMEFYFYISDITLPQQEYLRDRIERMNVHFNEEEGYVAYGRGMMEGIDRSLSHPLTRTPLSRDTTYLPGAPALPFTVRTIFNGSYTYDPESEWARNSSTILHAFNRDRFSLSLSLSLSLSLSLSLIC +>MGYP003348846132 FL=0 +ASTVTVEANATVDASATQNGNGGYISIWSAVKTAVAGILNATGGQFGGNGGVIETSSKGSLQLPNSLAVNTTAPNGKTGTWTLDPTAIIVDSADVAVVPVVCVTID +>MGYP000962646007 FL=0 +GGCGGPAPGAAKDLRRVVRRDGNRRCHGGRGALEEPKGAVAIASLQEISDTSFERGLVCHRPGSGGVGGGRNQLVPQDPERAEVLDLLDGGDQVVQERRGHHGLQ +>MGYP003955760495 FL=0 +MWAQERVLVTGGRGFLGRHIVDFLRQAGA +>MGYP001189459322 FL=0 +MNKILLIIKREYLSRVRKKSFIIMTILGPVLMAGLILAPILLMDSSDEEKKEIWVCDENNLFEPQFEDINGTDYQFFKNDIIEVKERFNTSDGYALVHIPKFKNESIDVLESSVKVYVRKPMSFSNQNQISNNIESVIESIKLKEEGLTRDIIDRTRSNVNLNTIILGESGSEKTGSTEVSMGISMFGGFLIYIFIFLYGAMVMRGVMEEKTSRIVEIIISSV +>MGYP000827854766 FL=0 +MDNNNLVNDLSGILDGLDSSQEQLEKDAFDVINSSDTSLNLVKESISSVEEILKMIDELNEVAEESATRIKELEKLSKDIEQFAGVISSISNRTNILSLNASIEAARAGEHGRGFAVVASEVRNLAAQSAKSSKEITDTITMVQQSVGKTVDSMKNIYENSNQQKEKADEIGNVLNKVVEAAYTCLLYTSDAADDMQC +>MGYP003969404433 FL=1 +MPLPSKSTNMDNNNNQALRIHQSDNVYVALADLVPGKDILANGNKIHVSEPIPAKQKFSISGLKKGEVVRMYGVTVGEVIRNIPAGGLLSRSNIKHKSDGFVSTDSRYHWDEPDVSPWQGRTFKGFYRSNGSVGTANTWIFVPMVFCENKNIHVLRDSLNKSLGYEKTTIYQDYAKKLAEMVRNGASEEELADFEISKLKSSTPHVNRAFPNVDGIKFLTHNIGCGGTRQDSNSLCGLLAGYITHPNVAGATVLSLGCENAEVSILKDEVIKRDPEFDKPLLIYEQQKFGSEMDMITSAIRETIINLSVANECERKPAPLNKLLIGLECGASDGFSGISANPAIGACTDRLIALGGGAILSEFPELCGAEQSLVNRCITKEIGDRFIKLMRDYAARAEAVGSGFDMNPSPGNIRDGLITDAIKSTGAARKGGTSPIVDVLDYPEKVINTKGLNLLCTPGNDLESTTAMAGSGANLILFSTGLGTPTGNPVTPVIKVSTNDKLSNTLSEIIDFNTGSIITGNKTVDELGSELLNLCIDTASGDYITCTNKMSQDDFLPWKRGVSL +>MGYP001828137919 FL=1 +MLPDKADIVVIGGGVIGASIAYHLSKQKVKVVLLEKSDPAGGSSGACGGTIFLQTKSPGIHLEMALASARRFVHLEEELGDGFEYQRNGGMIVIEHEEELQAVKRHVENQKKFGLDVSLLDRKQAREFEPSLSETILGATFSPMDAQVNPMLLTFAFIKAAKKNGAKFFSHTRVTGFRKTFNRINIVKTDQGEIETQMVVNAAGVHAAEIGALVDLEIPITPRRGQLVVTEAAESVIGRCMLSAQYIAAKFNPDQAQKSGGVSIEPTANRNFVIGSTREFVGFNKGITLEGIHHIAKHVFRIVPCLKKLQFIRVFSGLRPYTPDGLPILGKVTGLPGFIMAAGHEGDGIALAPITGRIIADLIVDNQTTFPLKEYNLERFSS +>MGYP003643276008 FL=0 +RGFKKIAKSPLGKMALMYFGGNLLQGNALFGNPLSGNLTNKLGSMFTGGGGGGGGGGFKGITEGFKNIAKSAFKPENAFATISGISGLSGLYTSYMNNKREDESMADYQRRLEEERGNFAPIPTDFVQFAANGGRMGFADGGDDDDDDESFRSKALGALYSMKRPQFSMGGGAGMPPVTMMSEGQDTQSFGDDESTGMVNATPTMPNQTPMRSPM +>MGYP000011570578 FL=0 +NRFDAEIIIIVDKIFQSEVVDYALQLGITNAFIQEGDVAKESFIPDFDTTGV +>MGYP002350897487 FL=0 +MQIDAIDRRILYRLQENGHLSNQ +>MGYP001584058516 FL=0 +VLYSNKLTALPESLGQLAQLQSLNFSNNQLTALPSFIKQLVNLTVLNIGDNPFDKSIEIIGSLHQLKELYCFKINVPLPKTIGELKNLERLSIMQNKLELLPEFVCELSNLNWLWLFDNQLTELTSSISQLKNLKEISLHKNKLTDIPSSLVYLEHLEKLSLDDNPLNPALQSAYKQGLVALKAY +>MGYP003693669217 FL=1 +MASPTVAANAYAALSRIMESGGAEKGGQSAGGPSFGALLKDAVGSVLDAGKKSDAQTMAMSSGKANVMDVVTAVAETDVAVSTLVSVRDRVIQSYEDIMKMPI +>MGYP000343390212 FL=0 +MNIAIIAHDAKKELMVQFCIAYCRVLSQHSLVATGTTGKLVAEATGLP +>MGYP001158220473 FL=0 +EMSELVQIKDHDQTSNHENEWAEKAKGKEVLMIMSELNYEVLEQLELMQKCLSEYDLYNNTDGKFCTIFMLNKDIGNESQLVSVGMAVGAEVEKVWETYSENNNPPEWVKSFAESYNRNMELLEKWNNLNAKLKKAYGY +>MGYP000395984138 FL=0 +MKKEIAVTERPEIFTEQYLAAFGNMSWYDFVTAMPSLVFVVTGWKSNGKENACLHSWSSFAGSGADNFICILGKVNKDGHMYQSLKETKACVLNFPSNDIYDRCIKTIGNNQFETDEITASGLTAEAALKVNAPRIKECFL +>MGYP001462322588 FL=0 +QATISSDARFGILSKSGADAKKMFTDKVVPISVNYPFFFKPIQDGMDRPKTELAYRVPASKLTRRKLESNEQLRELDGLDTTIDWKNTGDNSYDGEKLKLLAHDESGKWERPDNILNNWRVTKTTLRLGSRVVGKCMMGSTSNALNKGGDEFKKLYQDSDVTKRNGNGQTKSGLYSLFIPMEWNMEGFIDIYGMPVFTNPEKPVLGIDGEMIHQGAVDYWVAVIKPGAVLFEINGLEEERAYKVLKLASYKLPIKTKIISR +>MGYP001101270620 FL=1 +MDRIIFHIDVNSAYLSWSALEKLHNGSCVDLRTIPAIIGGDMAKRHGVVLAKSIPAKAYGIVTGEPIVNARRKCPNLTLEPPDHKLYSRRSRELMTLLSDFSPDLEQVSVDECYMDFTPIRRQYPSPETAAHLIKERIETELGFTVNVGISDRKVLAKMASDFRKPNLVHTLYSYEIQEKMWPLPLSSLFMCGHSSVETLRNLEILTIGDLARTDRAIVESHLKSHGTLLWEYANGIDASEVATVQADAKGIGNSTTLTKDAEDKETAHLVLLSLAESVSRRLRSSGQSAGMVSTEIKYNNFRKVSHQTTLLSPTGQTDAIHQTACALFDEIWDGTPVRLLGIRSSKLVSNEDPVQLSLFDLQTADAGTAADDSFAPAYTRSPRRQPSTKKKEQLDAALDSIRKRYGADAVVRGSLLSDSKKPKYD +>MGYP001545760421 FL=0 +MKRRVAALYGLAIRNAALSQNPMLSTAARPLPHSALQRVQRSGSWQIGLDFDKTALSKAAAESRVLHIELDVVTRVA +>MGYP000446957473 FL=0 +EIQCVTGVQTCALPISGGDGIYLVGVGVGDTGYNDELMDTVTDAGKGASVFIHEPAEAWKVFNQNFVNTMAIAARDVQVQLDMPPGFDIVKFSGEEYSGDPTEVEPQHIAPNDAMVFHQVIETCAPESVDGSAEITVTARYRDAWTFLPKEVSHTYTFDELSAQTTPLMYKGAAILAFAEMIDAWDQLST +>MGYP000532152884 FL=0 +LDVMDGHFVDNISFGPAFVEATAAVATRPIDVHLMIERPDHYVPRFLKSATNITVHVEAKHNVNKTLRAIREAGKSCGLALNPATPVEAAVPYLDLIDLLLVMTVVPGFGGQPFMPETMEKVRHAHAARQIKACAISCQRFMIAAAHMIGAQARPKRQCAQSQPTAKPRFGANEISERRYFSICASRL +>MGYP001076569615 FL=1 +MDDRLTGKLIQMIGELTGKEMKRFEDFVDSPFYNKKEKLQKLSRFIAKYHPNFQHRNFTKQA +>MGYP001614764691 FL=1 +MRGLRAGVYTNGPWGRLRGMSSAMGQMTDVKDRDELFLEG +>MGYP000090456593 FL=0 +MCDDFSSPFQQISSYTLTIEPYLNTYSKQYENIIVIDKMPLGPLSQLVSHFNAPRLSPFAKQTNSCCKYAIRRHYNNTLRRENCFLTADDVPSLLSYLSANGYTINSEITKIVQKTNYNKKNFVCVFYYTV +>MGYP002742331534 FL=0 +YFVCDMYPLLELVCTDTYFIGLTVFVNGGTICIVVFTLLLISYGVILNSLKTYSQEGRHKALSTCSSHVTVVILFFASCIFIYVRPVSNFPTEHFMFNP +>MGYP002712581081 FL=1 +MATLASAARPDDAARVLSEAIARIARFWSLSNAQAGAILGLSAPTVSRLRAGNWRLEPGSKPFELAQHLLRLFRSLDSWLGQDDAAARSWLATPNLDLGAAPIALIASVRGLLRTADYVDALRART +>MGYP000897634123 FL=0 +MDDVGPEAQLGSGRPVAVSGEEEIGIDGDRRGDHQGVGKFHRPVGGTDERSGPRDVVVDGVHPNGEPLEPSVDRSDAPWPAL +>MGYP003681647399 FL=0 +MYPLDTIHFKKPETVLALAKSLELTGNAFTFARLRLETNIETNRVMRSSITWDSMSEAPSQGKASAP +>MGYP003287676207 FL=0 +MLAGLAKFAYDVVLDNLSESAVLAAHHFGRANSIFEMLSDRYRAARAKFLLGRAYSAAQPERAAEHEPAADGPADGSEAIRWTSPDWPTSPTKPKPSCGCGVCDPAETLMNIGSFICS +>MGYP001816890121 FL=1 +MSDGRPPFHLAFPVNDLEQARHFYAEVLGCPVGRESDRWIDFDFFGHQITAHLSEPGDAGSANLVDGDAVPVRHFGAVLPWARWRDLADRLAGQDLEFLIEPKIRFKGQAGEQGTFFVRDPAGNALEFKSFRDPARLFARA +>MGYP003627722903 FL=0 +MDIFKTLILDTPDTLSNISGILPVSNGGTGADNAPDARVNLLPSYTGNANKVLSLNGGATDVEWTSNGAGDVVGPASATDNAVVRYDGTTGKLVQNSGVAIDDSGNVNLADNSSLNWSTAPGRPYIVGNKASDLIKLGTPTGGDLLNLVGSNVGIGSTAPAKNLAISSNANSQTTA +>MGYP001002779910 FL=1 +MTAPSAPPHPGNTVPDAPYDARPASASTNRLKLGIDFGTTNSVVVLAHPDGKTETLRFRFPEHAESDTCRTLLCFWQDEVGSRIIQQEAIGAAAIDAYLEDPAESRMIMSMKSYLAQKSFRETQVFSRRLTLEMLIARFLSNLMQAVAIDPASVDVTVGRPVEFAGDFPDDALGAQRLRDSFTAAGFPSVELAWEPEAAGWRFAQRLENPTTILVGDFGGGTSDFSVLRFDPARPGHAEPLGHSGVGIAGDQFDYRILNTVIAPLLGRDCTYRVMGGEPLPVPIEWYASLGRWHRLALMRTPQTLRAMEDVARTVSEPQKLRALIDLVQDQQGQALYRAVGAAKNALSSADSTVLRFQHRSFKVEQTITRAEFESWIAPDLAQFDSAVDQALTHAGLTAADVDRVFLTGGTSFVPAVRNLFIRRFGTERVDTGGEFVSVAEGLALMSGKAAHAA +>MGYP000271019841 FL=1 +GTAADARSPVHRATLGDPRGGDRIRRPDSRGHRRASSLAPHGRLGRIPLRPDDVRGVAGRGRLRGADARGTRRGRRLADRAGAVRLSGRDAEDLGVPARWNPRRVRRASTEHESGDLLGSTSGRDRRTRPRRGSTRHREACASDVLRDRLPKTPRRAPAKARLRLVRSPPALGRSTPAGPIHGLRRRPAAARRRGRRRERQLLIGTREAAAQTRSRGSSRGINALRAARRVAPSARPEVHRLAQERRQAVRGGHAVEPAEPPCAVRLVTERGEDAHG +>MGYP000735556993 FL=0 +MKKNILYVLLIFIFIACDLTKEDKKNTVRGDIVSIPITEMETDYGKLSDFAEDIKMIPLEFKDECILGEIRKVVMSDSYIFIMERNNPKGVYVFDHMGKYLYKIGNRGQEPEEFVDLSDFSLNEEERVVYLYDLMRTKVLTFSYEGDFIKDIPMNYYADN +>MGYP003340149605 FL=1 +MGPNIANAIIIYLSGRVIDELINESNTKVEQGDFKLLDILHHFTSGMKSISTDMMYRGTDELRSSCGGAGFHVASGLVTGFTDHAPLATFEGVNTLMTQQSSRYLIKQVKKAKSGKTCKDYFEYINHLSKLVSSKSEAKTLEDC +>MGYP003571959109 FL=0 +GADSRVAFTENNSQTIGDYGTESHGSIDQKDGQPGCLLQAKSEETLGRKATGPFSMKKG +>MGYP003329312794 FL=0 +RRGAETSGDIDIIINDQPTFDQFIKDLVDKNIIVEMLTDGKTKKLTVAQLPGKTPRRIDFLYSPPDEYAFAILYFTGSKEFNTSVRERSLKLGFSINEHGFSKMEGKKKGDKLNQEFKSEKDTIDFLKIKYREPSQRNSDNLEEIIEISQPKSDNSPKKTTRKKRDSNKKNKILEKIEELLL +>MGYP003570303464 FL=0 +FLICQTFHFXLXKKHTTAXSTLCQIFTTQEKPRALLELFLKMLSKFLIFKVKKKLDAAALTLFKNIQIRLFQQEPVQYILEQAD +>MGYP003863973903 FL=0 +MRLCLSPRRPYRHRRQARVDGLHSVIVKAEPIDIYRMLRLHNPSPYMYLFQFSDGISVVGSSPEALVKVNQKEVMVHPIAGTRKRSASPEIDKKLAEELLADPKERAEHLMLVDLGRNDLGRICTAGTVEVVDFMHIERYSHVMHIVSTVIGELNDGVSVVQALSAVFPAGTLSGAPKPRAMEIIEELEPTRRGLYGGIVGYI +>MGYP000597221545 FL=1 +DQVADARLDHHRRVHAGKLRERQLAAHHLGILLVAARCAGRGDIVLAVDRRQTVGVLRNADHEARIGTEGFANDTGGGRQGLAQRLGPAILDFVPGDDRHRALGFKDRRAGLGARGCALGNIAFHRRGRIALPRDDDLVQFRRCGLLGDSSGMKGKETGSGEKGYPGVHGPSNKTKEIHD +>MGYP001178354147 FL=0 +MEIMQDDLHKVEYRVWFSDSHRTLYLDTYMVWERKSKRHGWVVKASYHRLYDRYSTLTLAEVPFGDDIREMVKKEFMDSVTVKVWEDRK +>MGYP003521894557 FL=0 +DYHPVTEVLMALRQRPFDKAPAFDLDDIWKKYRWQLATVGVLITLVLLLAASLDRYNRRLRQLKVRAEEGDNRRTIRMSATPCSSCTKQRPKP +>MGYP000829874590 FL=1 +MFEMKIHTVRKYGLTINDEDVYFSSKGKAIEAGKISIKLNPNTKLFEEYKLCLLYTSDA +>MGYP002763718406 FL=0 +MFTADAHYKRCGYPFFCKYLCPQGVLEGAIPLSAVDSGIRAALGTLFSWKLGILIAVIVLSVLFYRPFCKWLCPLGAFYALLNKVS +>MGYP003059114969 FL=0 +MPDRIPVAEKDFMFSAITEEFGLIFSIALLLVCLNNLILMMNIASRCKTLFYRLVAVVAFAQITPHFGNGPVLANLND +>MGYP000926614758 FL=0 +PNWVPSIWGVLETDPATLAQPRAAALRTKARTMVVASEASGKLVELDTMLSDLRHKADAMSLSLSDGSLRQQRSRLNSLRDQAAVQEAAVFDTSGHVIAFTSDEKDALAPVLPSSEVLRDIRMQRSSSRIRVAVIEPRFSPRSPARCSKCALAGAACARRSQARWALPARLASTRR +>MGYP000302371285 FL=1 +MAKMAPGNAVHGDAYKYDLMGEYQMLADVAFKLSVNNLTDKHYADMLYRGHYIAGKPRTLQLTATAKF +>MGYP001304573571 FL=0 +LLNEIPFPKNLKNVPTIASNHHEKLDGSGYPFGKQEKDLSIQSRILGFSDIFEALTAPDRPYKRANTLRESLDIMYDMCNKGKIDKEIFKVFLNKKLYKKYAKKHIHKNQIDGIDINQYSFS +>MGYP001161862952 FL=0 +MKERGISSSLWKQSSMLIETFTENHTIECAVDNIAYCSCHNCTDSQNQSSGCFFTDKGRKEPSYTENCYNSEDTKNEFPGFAPHFHPEGHPVIFYEMQNTPVTKQVNFLPDLHMGFDPYLQNLIRQ +>MGYP001557844164 FL=0 +KTNLFVFFNRIGLKDEGSYYLAELEDLGKDLKIRHN +>MGYP000311311414 FL=0 +LVMFFIFSLSLSFSFYCVFSLIH +>MGYP003155641669 FL=0 +MIWSNRFQEILADLDRPYAPMFRLQIGTTAITYHMSETERISGHKVLEILSHPGTASYPDLSAPNPQLEGQGNFSNGYTSGPYKYVVGLTSRISMGAQSVSPRSFKYTGASLQVDVSRKAFSLATKIYVGAMAVLQVCLDDPDDPT +>MGYP000405580788 FL=0 +AAQANLQAAKQDANRLQAERSAAVQQRQNTRLIAPADAVVISRDAESGSTVVAGQAVLRLANPLSLWVKLRVDQARSAGLATGLPAQIVLRSRPQQLLSGKVERVELQADAVTEERIAQVAFEQIPAALSIGEMAEVTLKLQPADQDLDADFGGGDRIGDALGRAVARKGRRQRLARRQKHLPEPT +>MGYP000037092074 FL=1 +MINLKLIATNILSNENKLVYEIIYDAAGTRYSYLDGELDGGDGPAVEKTNGDKEWYINGELNREDGPAIEHANGDKYWYVNDKLHREDGPAVEYANGRDVWYLDGHKIKHDSKTWSQLVKDSEMEREIGRVMDA +>MGYP001501362630 FL=0 +QAFIQHGNTAGESGFSSVDTTSVAAGVGGEIAFHGKYNTGAQDYAYYGHIRGIKENATNGNTACALTFHTRPNATAPIERLRIDSSGRLIVGGGTHAGGSALVVKGGNQNNYSTIGMFSNHTNPANNTLLTQIRFGANASAVGADIRVYADADWGTNDYPTRMEFHTTPDGSNSKQVRLKIEKDGRVNVLGPKLKLPTGTSNPGSSVAGDSYYNTSDGTFKIYDGSIWGSVVVAAKGTQQNPAANSTELAATGALAQYYFKPNTGDTAFQQYACGGLSNLGTIPSGGPSWVNSHSSLIIIEKGQVGATSTMKMSQANYGKFIKESITRNSGTTPYVYWAVFDGGTLWGIWRIRWTGATYSTWFSNHNYSEGVNTAPSGTPSSDVWKTGSGTTGNALATGTYTISNNTSLNRAVLPEQDYNSAGSWGIHYKRLGSGEHYPWRNSAGNYTSNGYFEPSTSYSMGTDTRYIHYVYLADN +>MGYP001058876537 FL=0 +KSISTSRISSAKEKEKLEEESLKSTSQLLPVIDDIIIKEDPRKFLKNIVQFDKGSTCTIYTAEYNGEEIIVKEMIIDKDNEQPLLEETRLMASMDSQYIVKFIAAYRVDDHLWILMEYMDGGSLTNIATLCDCQEEHIAYFAREILHALDYMHKQHKIHRDIKTDNVLLKKNGEVKLADFGFTAQLDKKRPVRKSIVGTPYWMA +>MGYP000564650396 FL=0 +LTVSSTKLDALKKDFDNWAHVSESADFPQQ +>MGYP000266732317 FL=1 +MAQILFYTLTVLIWGSTWLAITFQLGRVDPETVGISPERLEFLTRTFQDYVDNGQLPGAVVLVARGSQVAYLALLLPLPDGQPHGSRLRQRLDYQHPGHYRFLREVPLEERLVVGDVLDALEGVPLLGDEGVDHEERVTVRKYGACLLYTSDAADE +>MGYP000394770065 FL=0 +PWLKELAGIRHEFEARMAQLLPDSADALAAFLAEYDLGPATAFEGILQGIENTNYRLETPAGRFVLTLFERRAAAHDLPYFVALMAHLAGAGFPAPKPIPRRDGATIGEIAGKPAAIVEKLSNYALVALEFSSFAPDSASAMMARLALGVAGQKVVDLEAVLVTMLKQAAGEHIGHPEVLGDILRKATRKR +>MGYP003657985056 FL=0 +GVVIASYRPTLAAEEATGGNTIATLGNYTVHTFTSSGTFTIPADKRVPIQYLVIAGGGAGADGGGGGGAGGYRNSTIGELTGGGGSAEATLASAAGSYTVTVGAGGAGTSSDGNNGANSAFGSITATGGGGGGGGGRVGLAGGSGGGGGYFTKSGGSASSPTQGFNGGTGGGAGGGCAASPHNGGGGGGASAVGTNTAGSTDGSGGDGLSSSITGTSVQRAGGG +>MGYP000700515465 FL=0 +SSDVCSSDLGFADQGADRASLVAKGQHGPAYHEADHRHTQGGHTQKTQKRTECFADGNGQRMNDGAEAPDHDRPGISFFGTEFIDDTSGEQHADGITELEYRCDIGIIAVRPPEFFSKVGLQQAQYLPVEVIDRGGKKQQGADRPAVFADCFPIHMKHFIFCRPG +>MGYP001095249562 FL=0 +KSLLDITKCEEGASLQFKQTDLRDFIRNIIEESAICVLGKQLNLIENVQDIPNFIPIDETALKRAIMNIMMNAIEYSPTKGDLMFSVEMISEKLQFIVEDSGRGFTEEEMHSATEQFYRGDKSRNSKDHHGMGLYIAKSFAKQHGGNLYLSNSEKLHGAKVVLEISA +>MGYP000020363101 FL=0 +LLKQLKPTSVQQLAATLAIIRPAKRHLANQSWEKILKEVWVKPTNNEYFFKKAHAFAYAMSVIVHINLLCEKIKS +>MGYP000387930855 FL=0 +MTIDEKLQHFYEVSVEEAKEDAAKAIQEHRESLSQMLEDHKAARRQSAEAEVKAEAEHVRREINKALAAEQITLKRGWSRKQEELKETLFVEVQEKLADYMATQEYQQLLISQIREILKFAGNEEVTIYIDPADQSCLSGLTAAVNHPLTVSEYSFSGGTRAVIPGRHILIDNSFA +>MGYP003117850129 FL=1 +MADTNGFWTTAGARDPKRGFRFRVSFAGGTNSVLNGIAWYAKKATKPSVSFSEASHQYLNHTYYWPARTEWNEVDITFVDPVEPDLCDGLTSLIESVGYVVPAGGAFAPADFSTVSKSRSVAALGNVQVEQIDEDGAPLETWTLNNGWVKELTFGDLDYGSDDLTEVTMKIRYDWASVQIRNAVTKKFSLRT +>MGYP001108639497 FL=1 +MKRFALIGAAGYIAPRHLKAIKEVGGELVAAYDPSDSVGHMDAYFPKAAFFTEFERFDRHLNKLQEAGTPVEYISICSPNYLHDSHIRYALRNGAHCICEKPLTLRPWNIQGLTNTAQATGNKVFTILQLRLHEQVIALKERVEQKWLKEPDHVFEVDLTYITSRGNWYYASWKGDEEKSGGIATNIGVHFFDMLQWIFGPLTSQKVYLRTHDRASGMLSFERANIKWFLSINESTLPETATNEGKRTFRTLSFDDWSFDFTEGFTELHTQSYQHILDQGGFDEKAAENAISIVHQMRETALTPLDDQAHPFAHLPLEEHPFYPKR +>MGYP001328585271 FL=1 +MRHVIDARESGSQDYKCWFFISVVNRLTVRMSYPYVTHNNNVTKEQSGFAQNRIQVVRHKVDLMFDRRRQRPSTVPLL +>MGYP001616298175 FL=0 +MAKQFKTNVVVLGAGPGGYTAAFRAADLGLNV +>MGYP000014566423 FL=0 +DKSFPKVSIIIPVKNEEETITELLDSIFELDYPKDKMEVIIVDGKSTDKTVEKASKYPVKILFEEGKSPNNARRIGIQHASGDIYIFTDGDCVVPKDWIRRIIDDINEEEIGCVGGSVFVEKSLQDNLLAAYSDHSIMRVMPLVEEKEEISEVRVFKHLAFCNMAIKKRALERTGGLDPTLKTFEDVDVVTSICKIGYKVLRDPKVYVWHKHRHTIREIIRQTYNYGRGGPKFRRKHPDTPIARFYTFGLTIFTAYFFILILSSLSGIILSNIRPI +>MGYP003409085276 FL=0 +MAIESTLYGDRKVFTVAAFNSGVATWLRRLPELWVEGEVTELRRNEAWANVFFTLKDPASGSCLAATMPRRRFDALE +>MGYP001804777217 FL=0 +MLVLHPSCEINLLISLIQVLSSTVNAVFHPIVTTSRELLVNIMLCWFLLESYISGAVKRH +>MGYP000216902384 FL=0 +VPADQAGMVVDGDAAAADGDAIPSDFIQGTFKPSETTVQAQDSYEYPFLGLTMKLPEELLKQIKEQTIAMITNEGWNDNADAIKYAYISWSEMTEEQKEAEVDKLGTAYDDWYNSSVEEILYEDPDGIGDMIQAVCKLIHSCVDAGEYKEAFRTGRRLFMQEILTDDEYMTGPLEVEDFICCNELDIDLKKIALDTLYACYQVKKEAERADIMYEIWSNSGIHDLKLEDVMQHGD +>MGYP003292492700 FL=1 +MNKKISLVTLGLSLSSILILTGAMIISQPKYTLKNIVGKQSSLGDVVVYSQSKRGIYSNDSVILSKDKYQFNKNVNQNPDLYKYSKNFNKNRDIFPGYIHDTGSIYSDENSIGYIEYIDEQYGETDITLSTTIKDKNLDTGEFTQFKIEIPNSLKSENNNNHKGLVTKYNGEVYIALLGEQENNPDIKMGEKDELENFVEISKVNFNSKEAKSVNNINLKIDDKSKYRIVYHNPFVIDNKIYFYLENQDKLENSYYLAYYDMENNKFDYIDNKINLEFPLESYQQDIEGEKLNLLADIDNKNKVDLRISTIDLTTGKVITNNEEYSIKKLNKEMGIDGFRIIDNKIYILASALKSYYDVRDYTENIIVLDKTSKSTLYIGEYKQGNEFKANSYILKKDEL +>MGYP001325456118 FL=1 +MNVAVFSDKFSGTLTAKEALSIIKDVFQASSINAEFFSVTDGGEDSSKIFKEYGFKQFEAFRSYNCDGTEVEVESLNINGLKYFETAQLIGINSIKDSLEINSASLFKVLQKVNILGTGGSKTVDFGVGLLSKLGIDFLSNGERINNPTPKDFPLINSVSTKEFDPDINLKVLADTTIPLLGQNSAYDVFGPQKGLKQEFIKQHQIETERLIELLAKELSLELNPYEQLSGAAGGLSFCLHQILGCEISSGSKYFMETTNLAEKVKEYEIGVFCEGKFDESSFEGKIIGELLKNFNGNSYFLGGQYKAESKKLFTNIFECGEAGLNDPKGTLKIATNNLIKELT +>MGYP000616556949 FL=1 +KPTEEAIFYAACKKAKLLMYMKKMKIINTQNLLRLCYVLQELKHQKQEFIR +>MGYP000530409509 FL=1 +SPPVNSEAQEDAAGISKDATIEALQKTADSNVLIQEYSNTTQEKTTETVDVLKEILELMKKMSADNQSGTAGGDGGDGGGMDIDLPDRRRGPRRSRGRLRARARMASRGIRGRVGGLARGLVSGARTVGSAILSGGARTLGMLGLGTAGATGAAGLGTAGATGLAATGATGAAAGGGCGHAAGPQQHRP +>MGYP000350425517 FL=0 +HRPEDFLAVDPHGGRHVVEQARADEVALLVTGHLEAATVDDELRAFRDAQSWRRLEVGAAWIEAQEEWRGARFYPDANSTLRVTYGTVRGYRPTPDAPNGGRRLATDRARPGRSRPG +>MGYP003641307857 FL=0 +GGTWQXSGHAHSAYPLQDXSLSPVDKALSFAGLLWKKLIMSSAKRTRSRSIWMLRWLPCMSRVSHGESFGQTCTRETGAAIWYPAKPALSPFDRLTAASYLRAHPFAFKRDALLLRQHNSVQSANGHGSSLTDRNDRETDISLFSQLLGRRCATVFSLHSAIFFVNY +>MGYP002623368859 FL=0 +IKFPKVTIPVKPGRNIAMIVEVAAKNMRQKRLGYNAAEELNKRVLKSIEERKASKTLG +>MGYP001326310147 FL=0 +SQADLGKTQYGSAPSPNKLMDAYHSMYQDQKEQTLDEEGRNIFGSTPQLDKVEKIKKYKENADRVLRNKKPESGNDNTKNLNNSVDLLAAYRAVYEHHKKDEDGNTIPHEDDVKEGKIPAGLQAYLDKKKGKKKDDDDNGNDEKESKKKAKKDVKEGYDLVYNHFISEGFSEEETYERMSNLTEEQLDEFLKALAQAGMRGAESIGKKTQGLAARAAQQGAMTDPKFRKLEKVQGPRPNRADQVLDDLRTRRKQQSDNLRGRLDTAVTQLRSKEGLKFGGSQSSTLKSTPTPTSSTSKSTATQTSSGNTTIKPQQKKNNNLLSTDNLVKAQVVGSMLSGGGNQQKKKTGQVSSVQGPSQAGALSSIRRSRGQVMQDSFDLISNELIKEGYSEKETYKIMSNLTEDQIEELNEAIVSGTLATLGVLGKLLGGGVAKAAAVGKGLATAAKGGAMAVKGAAKGAMSAAKTTMTGTKDLANKALTKVQSIAKPPSKGPKITSSGGDIVQGSDQAKNKILSTDNMMKAQMASSMLSGGGGQKKEKTATVSASADLFDIVKGQLLDEGLSEEEIKDIMLTLTPEEILNEMGAKFPAGKGAKYRETPKPNPQKRLGDRTDGTAGSYVEKPQKPQK +>MGYP001574869672 FL=0 +MNTPTESAAQESELLKGIVTEAMRRARHFRAVVGSDYDFAYKELETFLYGILRGAPQPPITKDAKPTNGHAADNENAIPPGAYRDGYAAG +>MGYP001569408988 FL=1 +MTRKKEEFKSIVKGKVGMYTCGPTVYWYQHIGNLRTYLFSDFLKRVLLYNTYKVNQIINITDVGHLTSDADEGEDKMEKAALKEGKRAQDIAKHYFDVFHVDLHKLNILEPLNWTKATDHIPEQVTLIEQLEKKGFTYKTDDGIYFDTSKLEDYGILAGIQKDQIKAGKRVDIGGKKHTTDFALWKFSGEVGKRQQEWDSPWGVGFPGWHIECSAMSMKYLGKTFDIHVGGEDHRQIHHPNEIAQSEAATGKKFVHYWLHGAFLLDKEGKKVSKSTGGLYTLSELEEQGYAPMHYRYFCLQTHYRKPLQFSFENLDSAKNAFERLKRKVFELKATEHTGRDKTKEYEKEFHSAINNDLNIPEALQVFLKMLDDSAFDTCKRIALLEKFDTVLGLGVVEFKEEKFTVPQDIQELIDAREVLRKEKKWAESDILRQRILEKGFRVIDMPQGSKAEKI +>MGYP000341628933 FL=0 +QRGPKIASAKINDTGKKKSYRKSTIHQAEKKEKEPSKFKRNIRESNTSIKTKNTNLHIAGRTGALAAGAVTEQVEGGQEVSQAAYLAYEVSRPVTGTASRGASLFRRKAAAEAKRRIKKVETGKKLAKKMGKKAASDTAKKVAGDTTKTAAKETAKNTAKETAKNTAKETAKNTAKETAKTTAKAATTAAGTAVAPGAGIAVGMAAGYAT +>MGYP001115643208 FL=1 +MCSRKKWPNSSGSFVLSLFFPMDGKWWLTFHIVGLGTASFEIHDQHGLQKIIYEEVCWKWCFSLLLEANRLVYIGYRLAS +>MGYP001336892370 FL=0 +SKLGIKALFKILFAENDVVVSYPGDRMIIPSKSTWAETQILRVLPIPEVFCPVGSRILPPDKFINSKLTYFKENFDKEDEILSESICEYAFSFPFEGETQFELVLQKDSLLGEILPTAKSILTLALEDDDRTITMETTLGFPSSGVVYIENEAIFYTSKSLNQLFDCKRGYNGVAVNHPNGSRVF +>MGYP003760760195 FL=0 +ARIPAELVVLEVGLGGRLDATNIIDRPAACAIASISLDHREMLGDTLAAIAFEKAGIIKPGIPVATGAQPAEALEVIAARAAALGAPLLARGADWHVAPTATGFTWRDASAKLDLPRPSLPGIHQLDNAGIAIAAIRASGLAVADAAIAQGIARAQWPARMQRLTGHLAALL +>MGYP001290313395 FL=1 +FRSALARFKDAEAFILLNRWSIKYFHSDGPIMPYVLFQVWSFIAPGLYEKEKKLAMPLFISSVLLFYLGIAFCYYIVFPLVFGFFTSVAPVGISVTPDINSYLNFILKLFFAFGLAFEIPVATVILVRTGITSHSALAKKRPYIIVCCFIFGMLLTPPDVISQSLLAIPTWLLFEFGLILSRFISVKS +>MGYP001572697057 FL=0 +ADEVNFPSLPGGIGQKLILRTAFSPPVTINLAATSPEGQRGGDSQGGAATAVMNALKPSIEEPATGLRIEPWGSPGDWRIPLGILLALAAFGVYALARG +>MGYP000217052795 FL=0 +TLFRSFFNDPCDLLLSLSLAPIMSFDEDYLVVSLNELSYEDESLPNNTLKISDVAELIPLTEIAFSGYDRKFSTGMIWTHPSKYQFDDTFLDFSKLQIRKDAEKNFNFLNEVYNFNEVERHINEDIKKEIIEASICKRLLKKSDLNIKGNEFPHVYCSLMIYEQGSHLSRESAMGFLMHAVGVYILHKGYGSQLTSKIELNNST +>MGYP000907485586 FL=0 +MLRWQFVLVGVVALTLSACKKNEQPTAMPAE +>MGYP000122865995 FL=0 +MEGVGRGMGFITSLESYSILTRLNQHHKSELFLTSLNHMSESFPISLIQHKFASSTPIWNDALANLKRLRIAYLRLIYPVLSLAGQFV +>MGYP001557166919 FL=0 +TPLEHTIPADSLLPVELCWRVLAEVEKDYSIMVQVIGPENSLISNRRTFPGLGRYPTSTWQPGAAWCDLIHLLVADKGIPKTLVYKIEVGMLYPELDDRISIYGTAGDQIETFAADVLITQDADESVSLLDTDEIMTLLDYQVEPVWRPGQANQFVLTWAVSSPISEDYQLYVHLRDT +>MGYP000281517610 FL=0 +MREHRRLGAASLAVGATLLLSGCIGAGPSVVVGSEVNIGSTVSFTSMNPQSQSGRTDTNIAVAAATGARFFNFDETAAVVFDPSFGSVTKLSGDPLVVRYTVADGVRWSDGVAVDGADLLLNWAALSGVLNDPRLSRADVFEENTDGDGEEFRADLPTDAVYFDTGVNPARPRGIQLARAIPQLSDDRKSITMTYSAPFADWAIAMPSAGLPAHVVAGEGLDVEGSNQAKDAVIAAVLEGDTAALGPLSRFWNTGFNVADTAIDGTSSLLVSNGPYLISDIVAEQFVTLSPNPNYVGAHRPEFETVTFRYFSDPLAAIQGLSIGAIQVATPPLTASVVSALGALQLDTQAGYSARWEHLDLRVTESKSGVFDNPLVREAFLKIVPRQLIAGMLTEDADAPAGPRDSFLFQPGQDGYTSASRANGDYLLASPGGATAAVALLAEAGVTAPEVCILYPSDDPLRAREFLAIQGAAAPAGFVVTDCSSADWQDRLGAAGEYDAALFSWELATPGISDLEQIFATEGFENLTGYSNPELDALFSEITASTSVPERRALRLKADALIFSDHYGLPLFNYPRVTLFDEDEVSGILPSPTASGPYWNIWAWKPVLPG +>MGYP000572280030 FL=1 +MKDKDLLKLLLKNGWKDVPVGLLNAILKRTGLK +>MGYP000287529352 FL=1 +TMEKALKIEKYREIREKKERTSQDLEGSPKVP +>MGYP000977872181 FL=0 +MMTKNPGQDEIHMIATNRRARHDYTIENSLEAGLVLQGTEVKSLRE +>MGYP003566039669 FL=0 +ERQLAEAVMKLKPTTSIQEKLWSRITADVDLMSDYRLIRLDNALAEPPVYVFVIIIGFILTMSCFGVYQPQAPLVGLVVLYTVFIGLVRFLLLTLSDPFHGIGVQPTSFELKYALP +>MGYP003578873141 FL=0 +EGHLRAQLRRAAEFEEDVEVTSEMTHAKENVFALRVKGTSMIDALVNEYRTCRPDLVLTHSTDDPYNPDHPTAHQISLQARVYAQAEGYPASGRPIGAPPVFMFEPHQPERCGFMPDVLLDITAVWEQKRKAMESMEAQRHLVDYYSDLGRRRGTQAVRNSGRKGITVLTGEVGTGKTTLLRAALEPMKSTAVRYAHLSNPTLTRSEFYEFL +>MGYP003526032744 FL=0 +MRLSLRWQEALLLVSGYTLLALQPSWMPNVGLFALHGLLVLLLGWMAGQRLFGSGYTAFERFGGGVLTWASSLSLVHTAAYYASIPLTTLNTTLLEAVIAAVVFAIPPLPETSPTNAPVAPVALHQRFLGLLAGAVGIGSAAFLFRAALLHPATVSIRTPWPLLPNGVFLFFALCFASGLVAAHVTRSVQTTWLAAVSWFTISALPALLYPLGYGFDGFIHRASQELLLRTGTLTPKPLYYIGQYVWTVWLSRWTELPLTIIDTWLVPASIGVVIFAFVGLLRRSSPSLRWAPWPLLLLLPLGAFVTTTPQTWSYLLGFSALLIALWPGLQGRAWIFPLLISLWAGLVHPLGGLPFASIVWALGIGALPIFKRYAVPVRIIGFIGALLLIPLAFWAQSRLGNTPIRWSWDWLRWEVLRTSFADLLLAPRQTLTLWLDGAEWARTAVSLGGILVGAWLCLRPK +>MGYP001228241971 FL=0 +INLSLKETGSMKIELIIDAIAVLFLAIGGSLYFSYSKSRIKGLQIWTPISKRLILNFLVPLATGGLFIIILYVQNQWQLIVPSMLIFYGLAIINAGKFTYSEVFYLGLAEILTGLISAISPEHAIFFWSFGFGLLHIAYGLFMYRKYEV +>MGYP003467506258 FL=0 +EHVFDDEHALRPAEPAERGLRRLVRLRDPSLRHEIRDPVGVVDVAERTPHDRLREVEAPTAVGGERRREREDVADSAVRIGRKIIELLGARDENGYVFRVDMRLRPSPEVTPIAIPVEAAISYYESSALAWEQAAFIRARAAAGDKALGDYFLKSIQPFVWRRSLDFGQLANIRKMSGQIRDHYHKGQVLGPGYDLKRGRGGIRECEFFAQAHQLIHGGRDPGLRMADTRTALAALA +>MGYP000492251796 FL=0 +DMTGSASVALPQITAGAITSTGLNSTTGTVQYTDGGSAFDSSDADGYPRFTVTNGSAQLGLFRAGSSVGGSYIGADDSKLLRVYNTSFASKFDIDTSGNVTALGTISSGALATTGNSTHGGYSSWTAGNGTSGIFQHYNSSNSYRGYFDWRTLQLGNNGANNILAGNSSTGGYFKFWVNATGISQTGGTSGINALTISAAGNSTFSGSIDSGAISSTDRVTVTTAGADGLVLAPDTGSTNNSARLFLNGSVGNWAIFNNSNILKFNSSATAGSTSGNLAASLTTAGLLTVVSLTESSSIRYKENLKPITNGLEVIKKLEPVTYDRTDNDSKDEPGFIAEEVLKFLPN +>MGYP000299415252 FL=0 +LQKEGKDRSAYRVSEADKRELLAAYQRRGYCEGYYHQHNGRDMISLKRPKNAKDGNTEEKPWQDIKVQEKINGILTFSVGKRAKLTVSYGNITVECTGQEVQEAQKQPLDPKRIEKQMRKTGNTEFVFERLKIHTEGNVFLPMQALNELRREGIEELTEQIQMQYRREKAGCGMKTATAGFDSDADGVTETAGKKE +>MGYP000035781564 FL=0 +FDRLLSIYNRFPLKELIIHPRVLKDFYKYTPRMEAFRNAFANSAAPVCYNGDIVDRESYERLTAAYPALDAVMIGRGLLADPFLIETLSGQAGTERRRTQIERLSAFHQQILEGYCQTMSGDKNVLFKMKELWFYMGHLFEENKKQMKKIKKSQKLSDYMEAVDSLFEEGEFHAWGTFE +>MGYP000547744649 FL=1 +LLFGFETQEEYKELLELLIQLRTPKLSSLFNSI +>MGYP001288746208 FL=0 +FFDCKRCFFFDLKFGIKRPHGTPLVLNNKIIQQVKKEFDFFREKKKPHPEIIKLKRGFIPSNHENLLKWKNSFNGVFFVDKKTNLKFHGTIDDLWFDNQTNSHISVIFKSTSRKDQLNQSEIWDGYWKQLSFYSFLLSKNSIEMSQSGLILYINVLNEDNFEKEIKLDFNLFEQILDFSWIENTIENIHELLNKDAIPDQNRKCKFCNYFNNIKKIHE +>MGYP000877297596 FL=1 +MLFRSADAVEAVIRGLKRAGVSVATYLPDSLLKELYPALDADPDIRTIPVTNEGEGAAIAGGVFLSGKRAVLVMENSGLRAATEHLARMGLGAGIPVVMIMSYRGEMGENNWWAIPHGITMEPLLQALRTPYTIVRDVDQLETAIVRAYDTAYASYYHAAIVLGGDLVR +>MGYP000780934939 FL=1 +MTLKEAYETGRDLDVYVDSEMADQDSHSFDDLWQSIYDICLLYTSPSPRDS +>MGYP003414964913 FL=0 +FMKKNEEINMFTVYILYSPSMSKYYVGSTSMDISERLARHLHDHQGFTSRAKDWEVIYTEKYDDKTEALSKEKAIKKRGAKRYLEQLGHL +>MGYP000195956432 FL=0 +MIGYLEGKLLKKDSDRILLLANQVGYEVLLPAVVMETFGAQKIGDQISLYIYYQQTERQPKPVLIGFNLEAEREFFQLFISVEDIGPLKAVRALNIPIRDIARAIEARDVQKLNQLKGVGKRTAQKIIATLAGKMDKFA +>MGYP000654245701 FL=0 +MSETRYSKDHEYIRVEGDVGIVGISDYAQSQLGDVVFVELPATGKALSKGAEAAVVESVKAASEVYAPVSG +>MGYP001494102332 FL=1 +MADYKPIEAGFTKIRMLRKYDVFDLLSISLFNAVVFGCGLGVGWLVWCY +>MGYP003981121435 FL=0 +GTLCHFDSXYYXQSDSDCISSGFXNDSPFLKCLAFYYQSIGEEGKTRKELQNHVLQVEETFISNFS +>MGYP000559679233 FL=0 +DILEDIRAFFERNVHMKMPENNVQQAELPEGCTVFDNPVGTAPGCAFEADGVHVLMLPGPPFEMLTMLKGHVVPYLRGFSSEVIVSHDIMTFGMGESSVDQLLHEKMSHMENPTLATYAKPAEVRLRATAKAETAEAAEAMLAPVVKDVTDFLGDYVYGVDVSSLEETCFRLLKEKGMTLATAESCTGGRVAERMTALPGVSAVYRGGVVSYWTSVKAAVLGRQTFLRPAQHNRLDGSPVAAPAPTVEGDHNPRRSHPPRHSPHCAAHWRGVQAAIAPQ +>MGYP003443514059 FL=0 +MASLIDYIHLYGGVSFSKKRFNDVDNVILSLVAYIDMSNTAAATSDGIRLADALENFIRSHTQKEISRYGLAIKDAYLVAKELIGAPRFADVRVSDYVYLADGDTQFGAMVFHLTKYLDYICFEGTDHTIGGWREDCLLACYHPVSSHILGADYLKKHIKLSGPTVILGGHSKGGNTALVSALMTTPMRRKKIRMIYSNDGPGLRRRELLSKEYKSIRSKYKHIVPQNSIVGML +>MGYP000585668832 FL=0 +TRSSHALALNLGNITDARMKSMPESLKTAASLHIPVMLDLVGTACSNLRYEFANRLMNIHMPELLKGNMSELLAMSGQTAHAIGIDAGDEDTVTDINRLHLQELFQEKAAQWNTTLLITGKEDMIVSANKCSFIKRGTPAMSQITGTGCQLSGLMTLIWQRIRTTCWSRGRSCLRHGTGG +>MGYP000681108114 FL=0 +MKDQDLIQAIEQLVTDHNPPVSDLPGHVDFIKETNRSLVTKIKELFFKSVPVGSTKATIQVHAVMSFWYAQRNIERWSLIDKVFGEEDEGVVNHLKDLFMKAKYCINDFMIDLDEEKRMKLIQYVMDQYNGFTLESAKRYVDQLEK +>MGYP000336411506 FL=1 +MDIINIVAVISFFLIEIHTLPLVESLIVLLVEFFLHVNQRFAIDVGFDEKAEVF +>MGYP001129885005 FL=0 +QLLRDLVSRLRLPDSPTATAVAEIRPFDFVAADDYELPAAYDQRRPPSPSAATVAKALSGEKPPPYWAGQAAPEADATHLTRLELASVEPELCVALRAEGKRRGVSLHAILFTACAAALRAAFDVPPALGIKAATPISARRFCEPPVDADEVGNFIGGVETWLPLVSAADPSDDAGEFWASCAAYSRHLSANLREGAALPGLLAHVGEWPAAWER +>MGYP000989466621 FL=1 +MNQSIKNQNIFSSVLLAALGYFVDIYDLILFS +>MGYP003369514027 FL=1 +MNNSEIITCVNGALSHDQKSVERLYQYTYPNASALARHLCSNPNDVDDILQESYITAFTQLNPLREKASFPFWLRKIVINTWRAFAKNKSNYYEILVQDIPGEELVDESLQLSVQDEVELSENQREINDLVEALPESHRLCVRLFYYEEISVEEIAEILDIPVGTVMSRLYYGRKRLKEQIEQRGLHTFHASPTAASAADPLLLSQILSALQAASGGVSAGGIALKLCLGLASLLTIGGLIGIPVLMKDDSKPAQPSITAHSTTATTAAATSSTSSMTSATASSTTVTTTATTIAATTPRSYISFEFEDYDGGIMLTSYTGTEPDVTIPDSIDGKPVTAVGSGAFKKNRILRSVKIPPSVRRIDSNAFRDCRALQSVAFGSGVSYIGDMAFLGCSSLRKINIPSNVDEIPESVKVEKRRS +>MGYP003580237746 FL=0 +MEMTITEKPARTLPVQDARIYPRGGLDVLSRAEVARLRDASGGGMHELLRRCALAVLTSGSASDDPRAARDLYPDFDIQVAQQDRGVRID +>MGYP002553410909 FL=0 +MGDFGGVEQDANRCLYPSLATGENAGLSARLFWEQGKARSNKKINCRGLNNLYQSGIDKAIVSALPFGPQYSNQQLCCFNNYIKQQVALFPHRLKGFCTINPLEQDALSYLEQLIGSEGFKGLKLHNNMQQFYPDDTKLYPIYQKMQEYQLPILFHCGGIGLPPTRDSYGQPIRFDAIACDFPDLPIILGHAGRTWYDETAMMLRKHKNIYADISTNIGRLKSHAGKPMADLLEKVKVWAGHTNTLFLGSDYPFYGQAETVEIL +>MGYP001481087062 FL=0 +FIEDKALDFFKNQTLKSAIVQSVEIMESKGDFEQIKRLVDDALNAGSERNIGHDKKPARMKAGFQVVIYPVSKGLKDSN +>MGYP001410066015 FL=1 +MNITGIKKLAKEGKSPYFFSPDTMRFFSSKVYKDVRAVKEGHLFITSEVFGDDSRHYSLRLIDSKGSIETLITKDNLKIIKQLMRAY +>MGYP000418322004 FL=1 +ATANKKAQQRESNSRPQHSNPKRGREAGFTPTHEKRPNPHANYGVHFDMYSASDEERQNSLGRYGKQAPWAQPKQSHTPRTPEQEASLKRKIRALEGKLEDAKRDQASGRNDFPQVMLVDGTSSSLSVHVRKSMETELRAWNFDVPPRVSKDLVTIRFLLDYGEFIQELNCPVDMAYLNLRLMSQKWKEARLTPLRTAVS +>MGYP001323574780 FL=1 +MYSLELFVIAIYCLIEDALYPHFCHQHGQPRRAGFPPALSDSECLTLEVVGHYLGYGTQKQLYEQLCDRFGTWFPGLRIGWPLPGSRPTCGRSKPGSTSTL +>MGYP003297312165 FL=1 +MDNASNTLLGKVKKLIGVEPGTKLQPMVAYNSAVFFTGGGPYILGCYLLPFLTKVEGLDAVPESVSAEVDVLQIAENWSLFMSNDLPFSTVAKDLIPSSYQYEVATKYANGIDITFTSIHTLLDPAFVDEKVTNFVWITDNLFSVDISFVKRMLLSSGTTIEDSMNDRFYFVKYDDTNDYSDNPTWKLLSMKEIVGNAE +>MGYP001502702574 FL=0 +MINPINLAILGLICGGLMKFFWQMGLENKVDIASFLAVDALFIFLFTVITFLYLKQPFVLSGRMSIAAALAGIFGGIAMTAVAYAIKLGGAGSVIFPIISLETLLVVILAFV +>MGYP000531888355 FL=0 +RKRNIHRSIHVESDDYPFVAIFKERINIMREKYESLSLGALKEIAKARGMRGISTLKKSELVERMVQEDDKERQMKESSAPQESEQESRNGSRAGKAEERQESRASGRQEERQETRASGRQEERQETRTSGRQEDRQESRTYVRKEEKQESRTERPPMEQSDLDSGMSVSGILEVLPDGYGFIRSENYLPGENDVYVSPSQIRRFNLKTGDILRGNTRVKSQNEKFSALLYVTSINGIKPNEMRRLNFEDMTPIFPNERLHLERPGGSLAMRIVDLVSPIGKGQRGMIVSPPKAGKTTLLKDAAKSILKNNPEMHLIILLIDERPEEVTDIREAIQGPNVEIIYSTFDELPEHHKRVSEMTIERAKRLVEHKKDVTIFIDSITRLARAYNLTVPPSGRTLSGGLDPAALHMPKRFFGAARNMREGGSLTILATALVDTGSKMDDVVYEEFKGTGNMELVLDRRLQEKRVFPAIDISKSGTRREDLLLTKEEHEAVDIMRKALNGMKADDALENILNMFAHTRNNNEFVQTVKKQRFL +>MGYP001261365442 FL=1 +MTFDITKPFAPSTRSPNSTPIASWSSWAEERRCRETLASAQQLKQVALSKRHRITFYMERTTVADFVVDDLVSPADVVRIGPCLVVDDHAQHPVVGAQIHHPLRSDDVGIGQDGNAVFGRTSRHDRVVGEASRLRKVPSARLSVPTGVDRALGSRIISTGGGREWIG +>MGYP001159235774 FL=0 +DGDVYYVAGGGDWHTSGNNGYYSDPNYIRLATTQENATGYYWDDDSDSDTPDVWHAPVVLNLVHHDTSPYTDVTHTLRAVNDQPMSGLVNGQAYFVVNRTATSFQLSNTPNGSPIAFSNGGLTGGHHTFAVEGIDLTSAGSGSQDLVLDIDNGATGSFSGMGGARGASGAPSGDLQFTVSTTGSTGGAVTVGYAKADGTASIDTDLTINSAKIFGADVNIETKSFMNVSAVSDSGAFGGVAIGESNTSALGTNDSDITINSGAVIESTTDLKVSATIDS +>MGYP001146147798 FL=1 +MRSKSQKLQLKLTIEFALFFIVVSVFIFIHFTKKFEDQINDKYVYKADVFVNFFKQSPNAFTGEKLADKEAVSNLLDLNGAVYLVIEKPTGEILDAINLDIAENNLYVLSKTNREGISKDEKVYRIALPVEGDNISGKIYVGFESRDDAQKILKNRMLTALFSLSILLAGIVFTYFLSSISFRPLAKIFKALDSANIYADIKGKKNVNKSELRVLEDRVNILLGELDRSSGEVESLNRKLHDVFKDKIAELNFEINQRKKAEILLQKSEEQFRLVFQNAPIGIVIISTEGKIISVNRSFCNTVGFERDEIIGIPIKYLFEKNDLEGFENDSLVYDGKPIADISTERTLLKKEGKEINVIVKLVSVLDEKNKVKHYVMQLLDITEIKRVQQELVAALKKAEESDRLKSAFLAQMSHEIRTPLNVILTSIPLLADEISSKDEELKIILDSVKSAGRRLQRTIDMILNMSSVQSGNYKPVFEKFDLLTDLKKLMNEFKSLSDDKGLELKFKQSADESFIVADRYTVNQIFQNLINNAIKYTLKGYVEVFVRNENDNKVRVEIRDSGIGMSDEYLKKIFTPFSQEDVGYKREFEGNGLGLALVKKYVELNKAEIEVESEKSIGSVFSVTFDLSVNFEDESQVKKYSNYQ +>MGYP000699489815 FL=0 +MQINITIEPEYSGTVWCKETMDGINEKVSSLRYSVNFCSDVSEAKDAMDWAGR +>MGYP003287736390 FL=0 +GLLHGLWFIGQGEEGGVLFIGDDWAEAHHDIEIEDEAGRLLVRKRLPEGLAGVTLLHELVAEHLDPSGEPDQVLVGIETDRGPWVQALLATGYLVYAINPLQVARYRERHSTSGAKSDQGDAHLLAEIVRLDRAHHRPVAGDSEIAEHIKVAARAHQTMIWSRVRQVNTLRSMLREYYPAALAAFGADLAGREALAVLAAAPSPDPGRRLAQARLESLLRKAGRQRNVAATAAKIRATLATEQLTARPGVVPAYAPARRR +>MGYP003686838251 FL=1 +MQDIPYAHEVLSAETQTLALEAIKKAGPYEPQTAAAKLERTETAIIELIEQQAAGIANKVHDEMTELAPNESCLIEVYPSRFGNLYLLQKVPCLQTIVENINRISGLDISAMLATEEQDIGDRNPLYVTVAGILIQKGKSLHRGQHLLRTRS +>MGYP000072504175 FL=0 +RIGPHLVGVARDQPEAPARLGTKMDLGVRFAQLHVAPQRGHMAVGAPLDGIVGAELDLIAQKRLERAAELGREFVVKVEGVVRERSSKNMKIPTGEIEIQVINMTILNESKVPPFTIEDESDGGDELRMKYRYLDIRRRPVKENLIFRSRVTMEVRKYLSDKGFIEVETPYLIKSTPEGARDFVVPSRMNEGEFYALPQSPQTFKQLLMVGGMDKYFQIVKCFRDEDLRADRQPEFTQIDCEMAFVEQEDILQAFGGLTLHLLETICGVRLDSIPRMTYDEAMRRYGSDKPDIRFGMEFGDLNEVARHRDFKVFNEAELVVGFAVPGGNAYSRKEIDALTEWVKRPQVGAKGLVYVRCNEDGSFKSSVDKFFGQEDLAAWAERTGAQQGDLILVLSGEADSTRTQLSALRMELAERLGLRNPGEFAPLWVVDFPLLEFDEETGRYHAMHHPFTAPKPGQLELLDSDPAAVRANAYDLVLNGNEIGGGSIRIHDRETQEVMFGHLGFSPEEARQQFGFLMDAFQYGAPPHGGIAFGLDRLVAILGGQESIRDFIAFPKNNAGRDMMIDTPSTISGEQLDELKLRVIKD +>MGYP001564172474 FL=0 +IVVASLNFFDTYLAVIRFVDYKLITRLIRGYLVAAVVLYGIARYLDSAAWSERMLLMFVILGPAIALQVRLLAQWFLRPYLRKDQREPVLIYGAGHAGTQLAAALVTSARYKVKGFVDDRPSLQGREMLALPVHAPARLRALKEEDVFRQIIVAIPSITKSRRRAILESLEDLSVKVQVVPGLDEVASGQRKFEDVREVQVEDLLGRDPVEPIAGLVEAQVRGQCVLVTGAGGSIGSELCRQIAMLGASK +>MGYP000465940127 FL=0 +YAAKRTRRQAQPKVCVLVENMEYANIGQFGYEIVAGFRLAAAARGWAVDVLPTTPEAQARTKYGSLLLEGGYGGAFILGLTPQDAYMRALAGTGTPTVLLDNCVPNASVGYVGTDSWEGVELGDILSSGFEAASFDAALSECAFFLTGDPEGALREAARLLRPGGALLYSDICPGGEARLRRAAEAAGFAVEALTDVTEDWKRYYIAALWRGEAECPPDGARNCRYLCAVFRKEAR +>MGYP000176012788 FL=0 +NIAKITLKNLSEKVLTIHPLGKAVVRCFKNDHSATIPEASDFKMIPGRGVSANVEGYHVLAGNMAMLNENNITVSQPIMAKTEEYINRGCTITYVALDNEFAGYVILSDTIRALIADEKSPA +>MGYP001150477923 FL=0 +MMMEVQDEANEVDSDLMENKTHLDANEGELLILRRVLHTQDSPYD +>MGYP000662722262 FL=0 +MTYVVTDNCIKCKYTDCVSVCPVDCFYEGENTLVIDPDECIDCGVCVPECPAEAIFPESPDLANWVEINRKYAKQWPVITKKKDALPEAKDFDGMKNKYEKFFDPRGFQGQTRK +>MGYP003721390011 FL=0 +XXSLKSSXVSPPAXFLHTXLLPXEVYSKSASLLXQVDRLIESLLLPISQQQIRKLESERTMLVDRNVGIQAELDQLKQQSRDRIAAVAATQQN +>MGYP001010919623 FL=1 +MYPVLFHIGDNPVHSYYLLWTLALTLAVVFSRRRMTFFYGIDDDDARSVIIWAFIGMLLGARAGSVYDSWSIYSADPLKILRIWEGGLSAVPAFLGAGAVSFVYSKRRKIPYWMIVDAGALPAALTVAIGRWGCFLNGCCTGIETTVPWGVRFPSDALGLLRHPTQLYYSFGALFIAALLQWTESSWLGYHNDRRIRGAVLCPLFAILYSLLRLAADPFRSDFSRIGMQTNRSVLFVVLGISMLWLGYSVFYEKKCIRS +>MGYP000546373282 FL=1 +MSHQRVKRLTQFIAATAIASLITLPAAADGLSLGSRPDQAPRTSQSGNSISVEAWAGGTTATTNTADTTATEFDSTAWTRWAPVSYTHLTLP +>MGYP001816006016 FL=0 +MSRKCIVVIGAAGRVGSQIVAELLRRHHRVVMVDALPGDALTRRAGRLLNDARLAVSPCSGSLRAYGGIDALNCAAMTDILIRENPDLVINYAIPITWDAAKRLPNYKAISAAGLGAFTPIQVLTPLKVAQAIHDSGVESRYMVGNLPDITIPIINGIAQGGTLQPALCGAGNVGLNQIAMRHQAALELAASFDDVDVALVSHHLHWVAPREPGYSNEGPFLATVSLAGEDVSASFKDLRALMNEGVRRHYEADASFSSTTGILASQVAMALLDDTDTTHHLHTPAPNGLPGGYPVEIQHGAINVNLPKQWSLDDAVAAMAICHTLDGVASIIADGTVTFTDLARDILRDELSFDLPSQMLPHDIETVAREQIDCMRCLLYTADAAD +>MGYP001138444575 FL=0 +MPTIEVEGSKVELDDEGYLVHPEDWNEKIACILAEREGIIKKCPMTKEKVGILKFMREYYKNFEAFPIPRGICVNIHQPRNCTYEEFPDPSIAWKIAGLPQPSRHVVAQLKGLGGVS +>MGYP000402310384 FL=0 +MTRDPLDEVTVTFQPRRPNSIFRQKVLVQYSEQFNTFGFGMVVKKHGIYREYRMNVKRKTLWISDLIFNVEESRHSMNNPVSFCFDRKIICGKRPRSMYQTSVNRPMPFPQCKFDAVWMRPGAIF +>MGYP000123267625 FL=1 +MFKDKLAVEQEQGCKVPITLLESLTTFLGKNSTKRLDQVKGALTLWMSGILIKTLPATSDPACGKGIFFFFTTHLFA +>MGYP000748431043 FL=0 +LRALGTSSTAESHVPAISFQSDQGDGVTARASISADRDGGATKGSLIFSTRISDNITEAMKIDSSGRVGIANDTPGDFDADGDDLVIGNSTGNRGLTVRSSASGFGSMYFAMGTSTTAQKVDGFLVYDHGTSFSGTSGLHIGTGASTRIGIDESGKIGINETAPTATLDVRGSSSQPICNFGDDNIRDSDALDIFGSDSFRYQFQNGQQARPAIIEGGGDVAANESAVYFTGFSSSQTDGHRNLGGMIVYRKNTGGADSGQYGSQIQFRSKADGTATPAQNMVLSENGSLGIGVGAPSATRLQLVRADGVTDSTEFTQTIQNLDTTEGQGSGLFIQAGNGSTDKILQCQTRGGTFVLDLNGAGRFNTTANVAND +>MGYP001244487380 FL=1 +MQYHVKAMQSLDMVVELNVDCVEADDARRQVERLGYEGVTLRSKRAGLAAYLKRRTTFPLTLFSQELIALLGAGLSLVEALETLREKERHPDLKQVLEQILTKLREGLTFSSSVEQLPSSFPALYVATIRASERTGDLREALSRYIAYQVQLELVRKKLVSASIYPVVLLVVGGLVMLFLMMYVVPKFSRIYEDAGKDLPVLSQLLLEWGKVMEAHGLLVMGCLACVGIASAYGLTVPAVKARILSQLRSIPAIGSRLQVFDLARFYRTLGMLVKGGIPIVSAIEMVSGILPLSLRGPLHAAVRDLREGKPVSQAMESHGLTTPVAHRMLRVGERTGQMGEMMERIAVFYDEDIARALDWVTKLIEPALMAAIGLVIGTIVLLMYFPMFELAGSIQ +>MGYP001368835617 FL=0 +FTWKSLQISSFILNNLSVRKRSLFAKKKLRGSFFRKLLFYYLSEKSKTTQTSIYLKNNLIITIFLL +>MGYP003476759632 FL=0 +AGQAFEQTGLKLTPWQQYEKDLAEYNEYIKQNPNAATQSTAASAANVAKGNGTGNVPMNTDTISLKDQFPETTTTGGGASWQGIGDTDRFGDVEPPLKDQFPDTPQGTGASFLGTPEAPPDDPIPPDIITTPPPDVAPPPGGPCPQPTTYSQCTSYHPESTIPGKMSQAATVRSITAYINSKGFRHDPDGIPWLAPSAWKTWDGVTTINPCTSTTAQIMAFVFPPPGSVNTMRGLRERFYQVNPFADNQNPTVAEIENWNVEVIRHFRRLLGFNQTTHPVYNDKCTYLKAAWAEERARTNYWSASYPGVQDSASGPCTQPSSSNAHCGASFLPSPADQAPYLCPATMPACTTTAGAEGISNQNKDIPWGIKMSRIIGNYLSADGITGHTG +>MGYP001453318140 FL=1 +MREFGAELGELRLHRRTHGEGILLAAVGHNATVDLEELCVRRQGDVGPVGALANGRPLLLAQVADHEHRAVH +>MGYP000100214384 FL=1 +MNIEKFYDDDLSGQIKAKNFQGKIFEILCLLAILLGISILLILLIDVTLDGIPWLRPQLFNSFPSRFPDQSGLRSALQGTLWMAILTAIIAFPIGVSAAIYLEEYASDNRFSRFIEINIANLAGVPSIIYGLLGLGLFVRGLGLNRSVLAGSLTMTLLILPTIIVTSREAIRAVPRSLRMASLALGATQWETIRYHVLPYAMPGILTGLILGMSRAIGETAPLITIGALTYIAFDLRGPMDIFTVLPIQIFNWISLPQKDFHDLAAAGILILLAILLSLNSIAIYLRNRLQHRW +>MGYP000373900305 FL=1 +MKDYAKKFYLSQAWRKTRDAYAKSQNGLCERCKQAGDIVHHKQYITPKNISNPLITLDWANLELLCQDCHNKEHTKKQNSRYAIDEFGNILPPGCVKNKRPREPVKGS +>MGYP000933484466 FL=1 +MKIGNLNLDNRVFLSPMAGVTDLPFRLICKEQDCGMLYTEMVNAKALCYDDQNTKKMLKIEEEEHPVAIQIFGSDPEYMGGAAKIFNSYPNEILDINMGCPAPKVVKNGDGSALLKNPELAAKVLKAVVGNSEKPVTLKIRKGWDDTCINAVEIAKIAEDCGISAIAIHGRTREQYYSGKADWDIIRQVKENVSIPVIGNGDVFEVEDAINMLNQTNCDAIMIGRGAQGNPWIFKRINHYMQTGEILPEPTLEEKINTAKKHLKLAVEEHGEYVAVREMRKHIAWYLKGLRNSARVRDEINKIESYEEVVNKLESYMQDCLTLE +>MGYP003298397327 FL=1 +MKKIYENIEIAIILMPTMDIVTLSINQKDDVADDIFAPNN +>MGYP001558061087 FL=1 +MNILQRLKLRLGLQVCLGERTREGWSGALPFYAFKCPVHGLVENYPSGWAEILRCPLCIEAEKLRHGESRPP +>MGYP000481936423 FL=0 +RTQIGKASLNVGWPRDYAKLPVIRRYSFAPHVSPRDGTMPVELIGPVNSPGGNGPSNGMYALQKALRKRIDEGLDWLSIKPLPASKGSLPWFWHWDDRRYAAWWDSEGQPFVQGPNMLFTYSGKPRSDTEECALLDAVNCRAMFCHSEWYRDLIAKHRGPANQSPIVLWPYPIDPWPGEPLPDEYDLLLSLIHISE +>MGYP003150238574 FL=0 +IGPYFKSETGTGNTGKTPIQAYVPAGPAPATSTIQSSYWTNLGHRVYGYGTVYGCGVFRDPLSVEHLLVATSDGVYATKEANPSVLLSGITSITNDVTFVQCFNVVVMFRGEGEEPYVMERIDEGFKAISQVASDTDLDENDSDGTESIPNASTGLFFANRLLIPHSDDQVAVSDFLNYTRYQPIMSNFRINQGSEDELVGLRRINNSTLACFKTNSVYIVSNIYGNLTDIVLDEVTREYSAVSDKSIVQVGSDVLFLSSKRGVCSLTVATNGKVSAVDQPVSEAIQPLVDRINWNHSSKAVAAYHNNRYYLAVPLDGSTYNNAILIYDTFNKAWAGYDDGDAVKVKDFVETKHQGKRRLFFLSTDGFVNLYDDDITECGFVDEIPSSTTITDSDFGQVTVKDIKDELVTRGYTAGDVSPKKWRSAEVHLSTNDPWFQVKTQYDGPEEDDQELTAAATIDANGYITAGGKTFSRSAYDRPFDKTAFVESMTNNDFFTQHRQDYSVDPDTEIVLGSNGFDPDIHQKSVNRYR +>MGYP001768574441 FL=0 +FPDPSTQDLAGYISTDPETKDELKYY +>MGYP001452703586 FL=0 +SVLIFLIAAGIVLFAVTSSMMSWDFVMSIDSHWFSTMFGWYTFAGIWVSGLTMIGLMTVYLKRKNLMAAVTSHHVHDIGKFMFAFSVFWTYLWVAQYMLIWYSNLPEEIVYFRTRLDHYRWTFWIAFFLNFIIPFLVLMTRDAKRQFNILFFGGIVILCGHWLDSFNMIIPGTLTAHGNHWQLSWMEVGTTIGFLGGFLYVTFRSLAKAPLLRTKHPLMMESVQHAI +>MGYP000024922526 FL=0 +MEDIYKLIDDINLQKIDNIDSRVNDALTSPNDDALFILGETLYNFGLMPQGLEVFRTLYHKYPDESELLIYFIEGLMAENQTDEALEYLSHVETSTEKLMLEADLYQQINMLEVAIDKLIEARDLEPNDPIIHFALAEILYYDGQYLRATHEYQTVLDTGEYEINGINLFARMADCSLQSGNYSDAIRLFDEISDEEMTSDDYFKKAIAYEKNDLSLEAIKIMTTLLTKNPDFLQGYYYLQQLYEHEKNYADAIEIGKEGLRLSQFYKELMVSTGSIEIEHGDANEGVALLKQALEVDNAYHEPLLLLADLFRSEEDYEALINLLQYVDEEDLDPVFTWHLAFAFGQEERDKEAQHFFELAYPTLKTQSAFLSDYYYYLLEIGDKNHAQQILNQLLELDPSNEIWHEETARLEN +>MGYP000184957940 FL=1 +MLSDSLADGKAIHPRHIDIQQNQVWLFTRLLDGLPAAVGGEDLVLGGEVGFHGIDNAGLIVHYQQGRFQGDAPFHGVFFILP +>MGYP000054682017 FL=0 +MHIHILGICGTFMGGLAALAREAGHRVTGCDAGVYPPMSDQLRALGIEALSRGAGHVTFVDTSPRALAAVRDPGVIDDKIELVGAHRRVAAGAVDDQIDATETDHQTAQRFAQARCVEHIDRQRQTARMRLLEGEQFSLHRGALRDARWIGLLEDPHRGDRVALADGRVLRDARRLEPDLAGLDAIAPV +>MGYP001618312234 FL=0 +MMLHRIHPVVNPWHAQNCSRSTPSKRVSSPSQPWALCMAWAWPQAHSGPGAGQGRDLRRVSLYVTMSLLSLSLFGLGWTSDL +>MGYP003315070702 FL=1 +MGDDIMGSSTFIPRWVKIDDNASIYNRKVSYLSGNNKIIERSFECKTQKNNQKLVVEIWDIEFVVTKFDENSIQIGDSAESIPCKARSPVLYLFVKFSNFNINYSFLKSQAHIKSLA +>MGYP001373614446 FL=0 +RQVRVETTLPEIKTQDFSAASVAAIADPKLRRALDRVASGFEVARLARVADATPEVWDAWRQEARDIKAHTIEHLDYYLDLLHTNVTAAGGHLHFAKDAGQANEIVAQIARTRNVKVATKSKSMVSEELGLNPILEAVGVEVWETDLGEYIIQLAEETPSHLVAPALHKSKEDVAELFSEKLGIPYDEDIFHMAATAREVLRDKFMEADLGISGANFVIAETGTLVIITNEGNGRLCTSAPRIHIGITGMEKVIPSLQDLSIFLRLLPQSATGQRITSYVSMTTGPRRSDDEDGPEEFHLVLVDNGRSRMLADPALREALYCIRCGACLNICPVYARVGGHAYGWVYPGPIGAVVSPMLVGLKKAKELPQASSLCGACREVCPIKIDIPKMFLHLRNQTAESPDPNLRSAPIVERTMAKMYARLMSSPRLLGLFRKFGRALQLAEGMIPFSPLTKDGEWIRMAPLPPLSKWTRSRDLPTLPKQSFHEIWKKGLSRDDS +>MGYP000395248815 FL=0 +NKSYTMYFTEINFTEIDFTEIYFTKIFLNYLVCILPPTIVQKGKSQK +>MGYP001502370584 FL=0 +AAGSTEYTTGVETNGTPGNSGAYTRITVAADAPTLYYYCTNHSGMGSFVTIGANVQFNNDADPPNITITPKTDFTVGQRYALSYPSGVFTQTGAGGSFVGTGYTFTARNYSYQLWTWGDNEFGNLGLNAPETSRKSSPTQIPGLTWENSLSSSSQSKHSAVAKNDGTLWTWGRNDWGQLGQNSEVNYSSPVQIPGTTWAGPTATDSEGTTYATKSDGTMWAWGRNTMGNLGQNSTNTGYSSPVQVGSDTTWPTDLGSDDGVIKLATGSDNVFAIKTDNTLWSWGTNLTGQLGLNNTVKYSSPVQVPGSWKSIGDDGYTKFGVKTDGTAYYWGQSNDGYSGINLFEPKRSSPTQLHGGGTTWNHIAFGGTIALAVKTDGTMWGWGENTYGQAAIGNPDTFPQGTPGKSAPIQIGNQTNWKFVQSSASGGASPQFAGLKTDGTLWIWGLAPFGTAGNNTVTPGSAGYSSPVQIPGTDWKTVALSYGKVAATKQI +>MGYP001024040911 FL=0 +LDIRLTPARNDAGRVVAIRDMGKAQFLQIQDQSGRVQVYAGNKTLGEDDYFVLRNLDLGDIIGIKGRPFRTKTGEASIHADELKILSKNLAPLPVVKEKDGETYDGISDIELRYRQRYIDLAVNAEARATFTLRSAILREIRDFLHRKGFMEVETPMMQAIASGAAARPFTTHHNALDIDLYMRIAPELYLKRLIVGGYEKVFEMNRNFR +>MGYP003311824185 FL=0 +RLRIGEQEHLLELRRFTPWILLEFRAGFTMKIRGICRFYLLEKAPHMRLYMSPVNIDPENPALPISYPATYSMYLAKTQGRFSTLGLAEDTWALNERVLDEDAFLEQAYLVHEEREKMFLDAIEKTEQGLAVCVFDITDRVQHMFWRYLEKDHPSNVDKDVTRHKNAIFDLYERMDGLVGKVMKNISDDTVMLVMSDHGFKSFQRGVNLNSWLHQEGYLAVHSGPSGAEWFAEVDWERTRAYAVGLGGIYLNVRGREAQGIVD +>MGYP000397936239 FL=0 +GVFAENHSLALGVFGNFGQRVANNTIGQADTILNVMRTWWKAVCLVTSTCLAASMNLT +>MGYP003982510387 FL=0 +IKDAPNIQKWTNPISWPGLHLKNDDDIYAIPGNTIVRADGMMIRKDWLDAVGLDLPADNEVTLDEYTEILKRFTENDPDGNGEDDTYGMGVAASGGNMYLVFGWPFGVGRRATEDWWQKVDGEEFDYMPMKYAKNHENMIDALEYHQMLWDKSYVDKNWPSNNGTMRNDRVWSGVSGGRESFGGHVYGNWLPNIQKNFPEAE +>MGYP001965651419 FL=0 +THARTHARTHARAHTHTHTQEGALLQVLCADMVERFQMFIFLLLVTVQNWAKDGRVSSHSFAWLQEWVQAILLVFASELGVLRASC +>MGYP001756801604 FL=0 +YIFTGLRIGIGLSWLVIVAAEMLTGGVGIGFFIWDAWNSSRISDIILALVYVGVIGFLLDRLVAWAGRLITRGTTAAQRMRRVDRWLTDVHGPLLRRTPRPLAVDLGFGAEPVTAVEMAQRLRVQNPALELVGLEIDPARVARARERAGGLPGVTWAVGGFELPVPRPPTVVRAFNVLRQYREEDVPAIWSLLCAGLADDGVLVEGTCSEDGRRAAWVDLRRDGPASLTVALRLGSFARPSDVAARLPKVLIHRHVPGEPVHRLLAEADAAWAAHAPLAAYGTRQGGRARRVGRE +>MGYP001019934495 FL=1 +MFLPVKRRGLLFILSSPSGAGKTTITRSLLERDDQLSISVSATTRAPRVGETDGKDYHFVSKEAFDQMVERHELLEHAKVFNNYYGTPLVPVEQALANSQDIIFDIDWQGTQQLKQKLVNDLVTIFILPPSKDELERRLRSRQQDDEDVIRERMKKASDEISHYSEYDYIIINHDLEKSILQARAILEAERCKRRRLTELPDFVRTLMQESI +>MGYP000405630647 FL=1 +GYPSQVSPVVKTPSQRCKVNLSRTQQIPSRKLAQATKKEVTSFVFVTVLGSSVVTLI +>MGYP003603128023 FL=0 +MSLNIAFIGLGAMGWHMASHLPKLGHPVWVWNRRAERASSRAKTVVAWAYEM +>MGYP001304718576 FL=1 +MHCSRCGSREYFKNGKMNGKQRYRCKGCGYNFTNLHGRGYPPALRLYALKLYTENVGIRSIARLLGIDPSTIVHWVRDEGKKVMEQLKASIPDSLPEMDIIEIDEMWHYTQKNSANYGYGLLCLDSPDKSLPSKWDLVVQSHSKNSGNV +>MGYP001796365966 FL=0 +MSQGRLKRRGTGFTAVPNSFLRDDSLSGDARMLFMLLSSHSENWVFRVPQIQKNLRYGKDRLRNAKNGLIKRGFLTLWQPKDENGSVIPGPWSWEICIDPALPISAGRKTAQADARPAETRIALKEQDQEDQVQEDYVDSAREPNLLDRLDAGLKTAT +>MGYP000859918013 FL=0 +KGWTLDGNAVNGTNNSYSFTVTKAAEVKVSFESDSTPLPQYAVNFSVEGGNGTLKAKADGVAETATSPISVQKGKTVIFTAFPAAGYEVKEWQIFGTGAVFEAGTGTPANNTAQVNLKEGLTDLVVKVSFQVQTLTPKHKVTMSAGANGSISAEPALPAGGMVNENTTIVFTASPNSASYTVDAWTITGGQVLSGGSPGSSTAMVKITEPVTVAVSFKLKPPTTYTVSFGVAGTPPNGTISATYKTDGAAFTSGTAVAENTALVFTASPAAGYKVEKWTVNGTAVPGNTSNTYEHTVTQPADIRVTFVSSVTIPDTFTLPNGAEYKVTDKAQKLVIMTKRENNASGTVYTVNVKPEYSGITYTLTGFSESV +>MGYP003019047097 FL=0 +EKYQSPVYKVLSVPIEKIVANSYNPNIVAPPEMKLLEVSIWEDGYTMPVYVIISPVSYTHLRAHETRSN +>MGYP001083449663 FL=1 +MDDSAPIRDFEKLLRETIGLSMETVGASVIRHALKRRMTACAISDLHAYWAFVTSSPAERQELVDAVIVPETWFFRDREAFGAMVRHLRENRASCRPLKLLSLPCSTGEEPYSIAMALLDAGFPDGSFQIDAIDVSSRNLVHAERAIYGKNSFRGADIAFRDRYFEACNGGFRPHDIVRRHVRFRIGNVLSAAAQTGNEAYAVAFCRNLLIYFDRETQGAALNQLRQMLADDGLLLVGPAESGLPPLHGFNSTRVPRAFAFIKAEAAPVKPPEPPAARRPRPAPAKAAPLPRAQTAKASSAPRPFAQKTASAQPSAPSPDRVAASLAEIERAADAGHLAEVSAAAERHIAEFGPSPDAFYWLGLAHDAADAVEDAMRNYRKALYLAPDHQRALAQLRLLQQRQGDHGAAKALADRLDRLAKRSGT +>MGYP000234632724 FL=1 +RDVERSRGLGDVYKRQIAGIATPTEASAIGAMGALIITFVNGKFSIDFIKEASEKTAIVSTMIFTILIGASIFSLIFRGVGGDELIDLIFGSLPGGPYMALIFVLLLVFLLGFILDFIEICYVIVPLVAPPLLMMGFDPVWLAILLAINLQTSFLTPPFGFSLFYLRGVADESIKTSDIYKGVIPFIFIQLLILALVLIFPFIVL +>MGYP001050647894 FL=0 +MATTKNKKEGLARKRQSPMVLISPSFPWNFRVLPGDVAHLAVQKHREPAADGVSGAF +>MGYP001636256112 FL=0 +MIFRPQGLEAKGLSAGTGRV +>MGYP001782636417 FL=1 +MFVQGNAFRYGSDVDTDVIIPARYLNTSSAEELASHCMEDIDPDFVKRVKKGDVIVAEDNFGCGSSREHAPLAIKTSGVSLVIANSFARIFYRNAINIGLPILECPDAVKAIKAGDVVSCDLSTGVITDVTTGETFRAEPFPPFIQNIIDAGGLIASLASKED +>MGYP003367769974 FL=1 +MDQSLNMVKIAYDALDDKLAEDIKIIDIRSISVLADYFIIADGNNKNQVQAMYRKNFLKLDMR +>MGYP003688882127 FL=0 +EREREREREIEKNREREKEKEEKESEKEKEIERQRDIDSCDFDVFSDF +>MGYP003700002783 FL=1 +MLPAFVLRAIEEGVSLQEILKEHNIYLAFAKLSGRVHGLTYADSSGYYLIIINENLSITAQYKTLLHELKHIIYDLPKMKYIVGKDMNSNIEKEADKIAEEWFKEIVKKLRKG +>MGYP000043255058 FL=0 +MEFNYTVTDKVAIISWNMTTSPMNVLNDVSIPEFEQNVDKALADESLKGIIITSDKNEFIAGADVKMILKNADKDPKEIHKLSMDLNRLATRLERCGKPVVAAINGTALGGGYEICLGCHH +>MGYP001157010399 FL=0 +MKSLRKQGIILFTILALVLVACGGDAAEEEVVEAKEDEPAAEEAPAEEESPAEEEVVEAK +>MGYP000411183089 FL=0 +MSLTLREASKDTLQAENKTWHYYSLPLAARTLGDISRLPKSLKVLLENLLRWQDDDSVTAEDIQALAGWLKNALALIQISWPHESMGKRVIRLLVSKKDRRV +>MGYP000600471748 FL=1 +MTTTRRLSLAYLALTAGVAVLFALNLFWGSVSLTPGAVAAALLGRGEDALAVGIVLQLRLPRAVMVVLLGAALSAAGYLLQTFFANPIAGPFVMGVSSGAKLAVALTMVVFLQQGLLTGSATLIIAAFAGSMAAMAFVLVVARRVPRMSILVICGIMIGYICSAVTDIVVTFAQDSNIVNLHNWSMGSFSGMTWENVLTAALIVLPCLALSFMLSKPMAAYQMGEAYAQSVGVSVRPFSVTLVLLSSLLAACVTAFAGPISFVGIAVPHLVKRTLRSAKPLHVLPGCVLGGAAFCLLCDLIARSIFAPTELSVSSVTAIFGAPVVILLLVRKQRREAAA +>MGYP000149143676 FL=1 +MQFVEDYIVLTAVLSLWQRVNVYVTNSTQETFVIQVKKLCLLLNTLTFNTTMLTISSHTLSIIYYNDNTLDAVFD +>MGYP001584307752 FL=0 +IREGRHDPVLYSVGPVPPGKDRNSHGVVVSWEGRSLRTVFSRMVSDSPVTILEERLLSEDGREMTVRNVSDRDGSETVQLYXXXXRQLSVEHGYQGRGINTSETVTDVYLRQAR +>MGYP001913057525 FL=0 +YRCRDHGFEWPGQAYRIHSMGEPGSAEGMNAENPKHLILKAPHPSPLSAFRGFFGSRPFSKTNAFLEEHGIEPIDWQID +>MGYP003393519970 FL=0 +ENALKALAKNIKGDRYDDAILSAPLPDNANAWKELVDVKALKKSLADQKAEQARLKELLGAIENREQLATERAQVQEECDRRLSSLSLWERLQKEKIEEPRLKKRLSELTKEKAQAEHTRVDARAKLDELSVKLFEQRTALNKEDERFNRLLRLMEQCVPPPSMEAQPSGPMAVPADAEDAIALYTKLTLSYKDMSREMDQLRSKIENVLKSDIIGATENETVRLMKEQIEGLPTFEEALRKDWDNYLHLLRANFANVLSGLSDIRNAAEKLNKRFGSVRVSNLESLRMDVLDQSDLVEPLKELAETDHTGLFDSSTKLDAAYQSFRNKLSERITLNYGDLFTLRFSVVIKGKTHSYDNLQVESHGTAITIKVLFNLLVLRSMLKEDPKTRAPLSNVPFFLDEIHSLDAANRGAVLRMARDLGFMAITAAPEPVSEVDALYFLRPINGRLVVRNELRVGVKYDAVEA +>MGYP000523383570 FL=0 +MQIENNYGNDVYNGDIGFVAGIDLDEQELSVSFDGRTVRYAFGELNELVLCYATTIHKSQGSEYPAVVIPLSTQHYIMLKRNLVYTGITRGKRLVVLVDQKRALAIALKGEQLERRWSKLEERLREPGSIRYRPESLRHLDCPRSGRVHQALESGQVVAHPAEHPEIVSARLPLLVLRLPSYLRRSGVGFISLAHCYNITA +>MGYP002653935032 FL=0 +NDALLREVGSDVKRGDPLASVGNSGGQGRPALYFELRRNGQPVNPASWLSAAR +>MGYP003551677296 FL=0 +QDGMGIRFTGQYAEVLPGFRLDFSGRAGISDAGNFAANIDFQSSEPDASIKIDLGKFSPQLTDLSFEGNIGMSGSCQVTGSTVTSNAVLSTHNAKIEIPGRKMTLEGIDLNLNLQDLYQFHSAPDQVLKFKRFAWGDIEMNEGEVLFQIESLSSFFLQKSSFSWCGGHVYTHGLQITSGKREIDIICYCDRLKLATLLQQ +>MGYP000229859498 FL=0 +MEKEVSFVYCNNNNNVVLFYVAELRPHGLLY +>MGYP001544784897 FL=0 +MPVVEAARYQVHRLQRISPVSQAQLKAERATPLHTLDTLTVATKKGRLFREEAPVLRRLSAAQARPVLAALSPAQAEEFLAGYRTRIRAAYPAAPYGTVLPFRRVFVVARVKA +>MGYP001256815242 FL=0 +MVPETQLRAFRPPLRTPASLYQRDAGWDLSHAQVRGLARHPDTHDLDKIKPIALSHSDKTYLIDNCCNDKV +>MGYP000824429490 FL=0 +RMKGQKNVKDVGRQKGKHSKDQKKQKIKDVRNVIRHQL +>MGYP001586178734 FL=0 +EQLAKGQARTKAYLASEQSCAAEELRADLVDASDVRVVLREAEGESFLLVADGEDELVEDLDAVLRGLDPLFQGHDRVELGVDDREQLAAEVIDQRYVEGAEELVAGEPSFDRGERGELESECARERAVRVRGVAGESVEDAGLVAGQGELVVRRENNRRLRFLAFENNLRG +>MGYP000104835098 FL=0 +SLLIYIIHENIILMSLVERILPYERNLFLWLNDQHTSYWDVFMWIYSGKLVWLPLAIVAIGVFVYKIKWKEALLLLLCAVLVGVLCDYVSSSLIKPFFERLRPTHHPDFQNYVDTVRNYRGGKYGFISNHAANGFGIVAFISLLFRYKYYTITVLLWACITGYSRIYLGVHFVSDVVGGAIWGALVGISMYYVYLTSRRYILKVPKDELKIPVYTKVRAQILMCTIWVLVISIAIYS +>MGYP001657250507 FL=0 +MQTKQTLLKTKRINNKQTKKLEDQLXRLFIHLSLSQSYXVSLLAQLQRMKQSKKILFLNQXKVLMEXKMLHIMX +>MGYP003575916264 FL=0 +VLLVIAGMFLTWRFMIGGLWLGLAGNSRVLAFSAAPYVILPLFVLPAILIMEQPIMDWIAENSRRLLPPLVWIAAAGVVIKFWLAAFSWRKIEPRYVRRYLPVWLGGAVCLTVLAFMLGVLLSLFLPEDTYRL +>MGYP002282927298 FL=0 +MEWTSGVSAVAFKSSLRSVPGSSAANGTSFSVFGHDDSSRGSMDRGAGSGPGSRADSPVEFRFHDHFDFQRQIGRSPTSEAWLVRSKQSNKPYCVKKVTAKFRTPAERSRYIHEVEAVCFLPPHANVVKYYRAWQEHRHFYAQM +>MGYP001843998727 FL=0 +MLLTMSLDSTWRDGKKVRWFAVQATNKTQRNKFTQDCYYSHAQGSQEKWARDXMXSRKSRMCVWQTSNKIIAGDRSCHLRHQRPQPADGEISHSAQLKATDQPIIVKRTVLX +>MGYP000291769357 FL=1 +SAGGADRCAESGVNMSNDRTIGFIGAGNMAEAMIRGLLRGGDFAIAQIAASGPREERMRELRDTYGIYATTDNKVPAASEIVVLSVKPQILSRVLDDVLEYGGDYSIDRFEVGKTPLDPSYARLTVTADTEEDLARLVMRLQTHGVNLTDPGELTVREVEQDGVFPDDFYSTTNLETVVRTGGHWVPVENPEMDCGILVEGDDEHPRARTIAVSDVKRGDRIVCGASGVKVVPLPAIDRSVGGFEFMNSEVSSEKPQALLVRQIAQQMREIKAEGRKVLWVGGPAVVHTGAAPAMVALVEAGYVDVLFAGNALATHDIEAALFGT +>MGYP001585133350 FL=0 +MFSCSFIDKLPIRILSDVKESFLNLGMMCKXKXFKRSYXLHKTTSIWNXIFQSSNRILX +>MGYP003587374593 FL=0 +LNDLSFSELAHKRISLIHQSAIRLLNLINKILDFRKAETRNMLLKISQGYLSKLIREIGLKYKELNRNENITLQIVLESDEQPIRVDEEKVYIIVDNLLSNAFKYTQKGEIVLTLRTIYKQKTAWAEIEVRDTGNGIPVSRQAAVFEAFSQADDSTTRRYGGTGLGLTICTHLVQMMGGRVWLESVEGEGSCFYFTARFGVDSSSSAISSVLQFGDLRVLLIESNPAVAAQLSAFLAQLGVQVTHMAASEAAVDAIEKSRSLGFPFDCVLADIKMAPPGGMDLAESWHGYDHSEKLIMVMDSEEQRRHMSKLRGLGVD +>MGYP003618342538 FL=0 +MEHLFDHAASSTPLDDLLKQLHLTDPSSAIPQDDAFSSLLSDANMVAPPHDADWNAPTFDAAQHESPFDPTNWQDPAHLSSEDMLTSAFET +>MGYP003539180734 FL=0 +LLACVFSLSLVFAVACEEEETEEVVFAPTYTYTDYTQDTDALITNGDFTKGLAEKTEKDFPVSSIGSWNVGADTNSDASVVTNGVISVSDNGWKELMGTFHGVSNFKSWAEKTFNGNNKIDTKEAFQDFMVGQNGLKNPGKASGTTLNDDKVLMLANFTNSTTVDGRGTAMKASSTSTISIAKGKMA +>MGYP000164259871 FL=0 +QIPKGYESRLRYEKFPKKSVDTHATNRKADEAP +>MGYP001127871448 FL=1 +MQAPTKYALVINLKTAKALGLAVPPSLLGRADKLIE +>MGYP001811598644 FL=0 +MTWMCAGLEPLLEDIQQPPLLSGRPVQHTNLWMCSRCVLQAVAGAAGVGLCXAAPCKSXKVX +>MGYP003351460088 FL=0 +MTDLGTGAGRLAWPPPASLLPWRQPVKFPGVAAPEFRRGRRGDPANPRLHQPRDFRVFGRELAYRPVGSEQHLVLRDRLRVLHDQRVDVVRGVAAQVHPHVGLVDDHCESVLVPREGRVREDDLQVGEVRGDVVEIFPAYEEERAIRVEFFGDEIESISEIDPLRGVRIQKIPRITIYPGSHYVTTVENRKRAVDSIRIELQQRLQERALALISIAHPKYRADLLKRSEEHTSELQSRVDIS +>MGYP002526488509 FL=0 +MAGNVDNRVVQLTFENRQFERNIAKSKKSLDELKASMNFDETSKGLNKFAEGMDKLSFSHLEDNIQKLTDKFTGLGTATELVVSQIRRKIEEAARSMSGFVESMTTQQIGVGKDKYDMLNKSVRTIMNATGKEEKEVLAVMERLNNRRSE +>MGYP001359237027 FL=0 +NSVNNQFTPLFQDEIKPGCRIISNTTFENLNNFRINLDIHDSKKWNKNIIYGELRNGYRIAERYKTQQYATFEIINKNDGSICTLQAKVRISGDAADHINLEKFQASIDVELIDENIFGYTDFKLFLPETRNNENEIFVTTLLRHLNYLAPNTFFIDIFVNDQKVKYLFQEKINK +>MGYP000346659406 FL=0 +MGTRIGSIHANVTAKDLSWSDTMRRVREETKRTADLLQGISDRGGGLGSLGSIMPTIDIGNVINRSIGLVTDAYRQLSEAREKAEIKADKADVLGLSMADLQGLSVGAALANTDIETVTGATDKRGTEVHFWADEAIFSHVEFHYDILAKRIRELSFLNNGVHIKL +>MGYP002611241135 FL=0 +SPATPLGSKRRFIRVPSNNFVWHILGGSNAVMGFISSTSAWMEVPFMLLCGFLLTKYSCASLLRISSFFYILKPSILLLASSIPMVALGQYMQGPSYAIFTIASVYYMNHMVDIKDNAKAQALLGICTKGLSGIVANLVSGIMLDRFGINGMLGFCMACTICGFCVIQVMTLQKEKGR +>MGYP001764798971 FL=1 +MSATPVLPRHAANAAGLIARPAWKGRLDWRGLLGWLRDDRLISAEDEQRVTQRFGAGASSQHALVRLGGAGLKRAGTQQPLDTEALTEWLAARCRLPYLRIDPLKADVGRVADVMSVHYAESRCALPLQLNNTEVVIATSEPFDAGWVGEIEAHTRRSVKLVLANPQDVRKYTTEFYALAKSVRAAQKTGEVSPAASFEQLVELGKTAKQLDANDQGVVQVVDWLWQYAFDQRASDIHLEPRREMGAIRFRIDGVLHTVYQVPLGVMNAMVSRIKLLGRMDVVEKRRPLDGRIKTKRPDTADKIGAEVEMRLSTLPTAFGEKLVMRIFDPETAVKSIEALGFGAHDTARWQELIARPHGIILVTGPTGSGKTTTLYSTLKTLATDEVNVCTIEDPIEMIEPAFNQTQVHAAIDMGFAEGLRALMRQDPDIIMVGEIRDLATAEMAIQAALTGHLVFSTLHTNDAASAITRLADLGVPSYLISATVIGVLAQRLTRMLCPACKQRDEDTTRETLDELAKPWRLSGGVRPYKPVGCLECRHTGYRGRVGLYELLVMTDGARAAVHPALDATALRRQAVKDGMRALRLAGAMKVAEGLTTVEEVLRSTPSLDVRA +>MGYP000601219188 FL=0 +GGGLFYMYYVETRSHYVAWAGLELLASSDPPTSASQNAGIIGLSHQAGPGYSKYIIILRSIHHLDHSLTIYFYFPVIVLISWVRHSSLDI +>MGYP000591043049 FL=1 +LARGVARALWLPGLSLSPLRIPFCEFSQIYIYSNALYKQVIYGQRPDHNTGNYVPYSLR +>MGYP003318478948 FL=1 +MIYLFLANGFEECEALCPLDLMRRAKIEVTTVGVGGKYIEGAHGITVCADITDAELCDDAPDGVILPGGMPGTLNLDACAAVHKALDAPEKRGALICAICAAPSVLGKRGYLRGKQAVCFPSFEEYLDGAILQPKGIKVVTDGKIITAVGMGAAVEFGLALVRVLKGDEAANALCSAILAD +>MGYP004071202169 FL=1 +MIVLSAINEPKRYAPLSPKKIFALGKLNNKIDNKIIIWAINIKEISVFALIRLIYTKTKLIIIRLITSKPLKPSIKFAPLTMNKKHRRTKITENISLFVKEIKKGISIFVILIGKKNIMELKKKIINNSLLKGLILNLRSSRNPIKNIE +>MGYP003151139587 FL=0 +MDVEQTEEAVAEAPPAEIVDQAQINEWLDDKLGPAEPEVTEEPEATEEPEPEPAAAEPETPEPETPRVSKAFSKVAKKEREVQQQKQELNKEKEKLKPLQEAQAAADRGDMLGALEKVGWTYEAATNSVLQDGKLQTPKAEPAALTPEVEGRLAKLETMERQKQIDNYVNRMKTKVEGDERFELVKDNWDNAWPTILEMQKIVAQETGTIKQDEEILQEVENFYEQQAQKLAKSGKFKNLLQPDAGPPEKP +>MGYP004197989809 FL=0 +FHVKSEKIEISQKNHLKHDLN +>MGYP001807843292 FL=0 +MCVKEHKEHNTRRTVYARCVCVCVCVCVCVCVCVC +>MGYP000196272724 FL=1 +MALRICSQLTVGGFVPTIMVLGSATEVDRIKPIQPLGTFIFIVFIYLFIYFLRRSLTLSPRLECNGTISAHHNLHLPSSSN +>MGYP000647749030 FL=0 +MEVGAEGDPITFAERRTMSVAGRKIIAGS +>MGYP000363977344 FL=1 +VQHDRNCSRNVSPNRMCLCVFPKGTQMVRMGPDSIGICRGSVKIDVSTMRNPGDALPNIAPKSNVSDNRNENRSKQHIYSTYLNSTRGQNIKSGTGGTLFFSGNFAPGVDFGRPDAHNHQGMISRDTSLQNRPWEPTQGRKPTLFIQIISTSFLF +>MGYP001764752421 FL=0 +MFENLSERLEKSFKLLKGQGRITEINIAETLKEVRRALLDADVNFKIAKQFTDNVKQKAIGQEVLKSVNPSQMMVKIVHDELVELMGGD +>MGYP003108819162 FL=1 +MACFHPLEDFDFINRILPKISFFGGLDDEQLAYIFSRLESAEFSQGEIIGRPGTVPSHIHVIQEGAVDLLISHDQRLVRKRQFTVGDCFGEAALLSLINDTATFTAAGPTSVASLSRLQLLRLHSEKPDIFLQLVLNMARDLARKLQYSDELLLRR +>MGYP001799047598 FL=1 +MYSLYIPVVDSFYVYCIQEAEAAQASTEDDSYEQEIEEATSQEIETDDQVFH +>MGYP000061367530 FL=1 +MGSTYTRQSSTEIVDGEVIAASDFNNEFAQLVSAFASSTGHTHDGTTAEGGPITKLLGTAITIGDGSSGTDIAVTFDGETSDGVLTWMEDEDYFKFSDDVLIVDDEKDLREIIRYNLEQEGINSIQASNGDKAIESLSQNPSLI +>MGYP003345690776 FL=1 +MRNFLKSHFWVLAGCFLFYSVHADQHGTTERILFDGQSLDNWEKTDYAGGGEVRLDGKGGVVLEFGIALTGIHWIGEKVPRCNYEISWSAKKVSGTDFFGSLTFPYLNEHATLVLGGWGGALVGISCLDGFDASENQTATAHLFNTNQWYRCVLRVTEAHFKFWVDQEKLIDCDIQGRTISMRTGEIELSKPLGFSTFDTTGLIKDVRLSSLVP +>MGYP000806452421 FL=1 +MEEKVDIVALGELLIDFTEAGHSQGGRKLFEQNPGGAPANLLTVASHFGYRTSFIGKVGNDMHGKFLKRTLQTEGINTDAIVEDPDYFTTLAFVEIGENGERNFSFARKPGADTRMEKEEIDVDILDKTHIFHVGSLSVSYTHLTLPTILRV +>MGYP001393538896 FL=1 +MKCKDCRKQFSVTGNKRIIYELRGDMACVHVICDVRRDLRALLLRRLVEAPRSPGP +>MGYP003366091699 FL=0 +LRMSRGLGDVYKRQPLASGAKAADQAEIDIIIAELSALAAQYTE +>MGYP001054490991 FL=0 +RRLGHGELKLGGGNGGRGDGAPALMCSPRFKRLR +>MGYP004024396583 FL=0 +MITLILHYXSNRFKIFLFLKYLFHQIXFVMXTRLVXTRLGLIXQCHCFCLVLSGIYMRKMGTSILYGTNRHLRCRLWPKKKKIVTCMTVGLVSCGYFGTIALQADMFI +>MGYP001796939300 FL=0 +FDTVTIKDIAKALNFSTSTVSRALRGSYEISAETKKLVLEYAEKINYRPNPVALSLKERRSRAIGVVVSEIANNFFSQAIDGIESIAYNRGYHVIITQSHESEAREKVNVQHQASISVDGLLISLSSETVDLSYLKELHDKGFPIVFFDRITDEIETHKVTANNYLGALQATEH +>MGYP000574954487 FL=0 +MKKFSLITLLLITVGFSSCTQEDSTFLEEPTAQVLLKSFTLNKSTSGDYSLDYQLNNGAASDNVLDAKTNTSNIYLYSSENVSKSIKNEGIALKDGELRISFNDTEKHKKHSITVLDEEIKASRSEDDTDLGYLNSYSVTTNNDGTFTLDFKVNEWVVVDYIFDLCDGYQYSDSRTSGKANTHATPRKTKGR +>MGYP001104094517 FL=0 +TVFGEEYKNVISSLTDWKMYGFFKINGTIGLKYFDNKVVTLDYKNKKIAVSNNALDYSRLQNEKYTVLPLIKSNLSNEQDLLFFEGDVNGEKSTIYLDTGSSRSFYNLDGTREEIEVKLGEKAYTFNSNKFRHDEIGFKDTFKYPLKLAINSDLLKANHFIIVVDKQKKVVFFRFI +>MGYP004251094059 FL=0 +MNQLIIRTKIICTFTCNPIKRFRYAQVIITKIFKNINAKSKK +>MGYP001561011533 FL=0 +LTLLRFANDDIKMRELGNSIIDEIVNDANVPHEQHLIIEQDREDIMNLTKKAHS +>MGYP003626153934 FL=1 +MPAVHAPRLLMIGAGGHARVCLDVMVDNDDVAIVGAVSAEGVVSEPLGVPLLGTDAQLRELTQSYAVTTFCVSIGSNPIRQAFGELLTQSGRHVTRIISRSAVISRSAKLGDGVQIMPAAVITAATVLGDGTIVNTNASVDHNCRVGRFVHIGPGAVIGGDVTIGSRAFIGLGSRILPGVTIGADAIVGAGAVVLSDVPAGATVVGVPARIIKSKSAQQ +>MGYP003586072608 FL=0 +PLFTIAQIVAAHIGSTPGVLRVLASSFILISLSSIFFGLFCVXXRSPGLCQKNLXNTWCTASVCGSSGEVRARKRLQICPKTIAKVCNRFWADFLCXLFPFAVSHRVKEVRKRLFSCAWALFSEKPFFESDRIRSGXKNMX +>MGYP003337571193 FL=1 +MSKITDLIVPNIGDFKNVEIIEILTKPEQNINKNDGLITLESDKSSVEVPSQFSGKIKNIKVKIGDRVSQGDIIGQIELTADEKIEERIIKNRSNHDLTTEVFSKKKELQTIAISPNKDENNFVKSASPKIKKYARELGVDLQLVNGSARKGRIVEEDVKQFIKNTLNTKIIKEEVIKNIETKEEKLPFEHEEFGEIDIQKIPRIKRLSGPHLVKAWNEIPHVTQFDEVDVTDMEYFRKNLIDLNTKEKITITPLAFIMKALVNAMKKYPNFNCSLETINENIIYKKYFHIGIAVDTPHGLMVPKIRNVDQKNLLTLSNELRRISKLSKELKIDKKEFFGGSMTISSLGGIGGSFFTPIINSPEVAIIGIGKTETKQIFIDGKFISRAMMPISLSYDHRIIDGAEAARFCQDLKTSLGKNFAFKIGRAHV +>MGYP002417791626 FL=1 +MLKMEESKININRIHFLYEALAKRHASPEETYHAILNEGLKAFNLSLGIISQIEGERYSLLAVSPTRGDISAGMVFELKDTYCQRVVSENRIISVEHAGEHPGFNNHPVYIGMRLESYISAPIWVRENLWGTLNFSSTQVRAISFSEDDYEFISLMAEGIGSLIEMNLLISENENVISALRKNNDILESIFENSTIGMALVAPSGQWMKVNSSLTRMLGYTEDHLLSINFQNITHPDDLTTDLKQLEALSQGNIPFYQLEKRYLTASGHYIWILLSVSLVREDNGDVKYYIAQIQSIDERKKMEMELKNQKEALHKVNIILERMATEDSLTEIANRRKFMLWFESEITRMARHPVPVSLAIADIDFFKSYNDDYGHQEGDFALQNIARALSHPLRSQDKIARFGGEEFIMLFPETDEKGCLLACERLRKRVENLTSLRRTVTISIGAVTCHPKEGELVHFDDLLKVADSKLYEAKRSGRNQVKVTSLEDHQE +>MGYP003123586391 FL=0 +VWGRWLRRRLRKDRGEQLLSIVRSLDYAMNNTSLILLFEVGDTKLLFPGDAQYENWMYALGQDWVKKLLEGVDVYKVGHHGSLNASPRSMLDLFEKKRSRTDDPEKVMHSLLSTMHGVHGSVSSRTEVPRKTLVKTLEDETQLTATSDFGGEISHTVTLPL +>MGYP003322783177 FL=0 +MLSNVNDIDEEKLKTISNNQYAIVKTEDLNNIKDENRIIFAIGDLHNKINNPDLKIIILGNVFVETEDFTSTEGIQSISGSLYIQSKGGLETPNLESVYGNIYIDDSLFTQIYVKEIYGEINIKNSIKTYILADNAYGKIKCNKSVDTQLD +>MGYP000483552797 FL=0 +GRPVAVPDLPGLPEAVSEAMTITLNPIGVIRSPHLAAPGTPIQPAFAQQYEGHVLVNNEFEAALADIEGFERLWLIYLFDRAGRYKPRVVPYRDTREHGLFATRSPCRPNPIGLSVVRLLGREHNMLRIAGVDILDGSPLLDIKPYVPSFDAHPSSMAGWLDERREDRTEADSRFHGENGPETAHDGAARHGKTTVKP +>MGYP002514261527 FL=0 +SRVTRDLPANEVAVGTTCRVLRKIGEKDREYYFRDKKIKL +>MGYP003501294569 FL=0 +NEEAYELTVKTGKMTYFSRSRNEIWVKGLTSGHFQYLMSMEIDCDNDTLLAKVRQVGAACHTGERSCFYRNLMSREYANTNPLKVFSDVMATILDRKENPKEGSYTNYLFEKGIDKILKKVGEEATEIIIAAKNPDKEEIKYEVADFLYHVMVLMAVKDVTWDEIITELARR +>MGYP001567805989 FL=1 +MNATITTIIISFAVLPILVLSYQLGTPSIGESAVGEYLKQPALTTFALAKKQESKEVLPRRRPEIADLVVDSSEALAWDSKQNVTLFSKNSEVTRPIASLTKLITAAVVLDYTQPRETVAVSLKAIRTEGNSGNLKEGEVLTVYDLIAAALLESSNDAAYALAEYTGNKIISNQETPPDPVKTFVRSMNQKFNDLGLVHTNFTDPSGLADKTSFSTAEDFSRFIKYLRDNQRYLPIWEILKMNTYTTESQNGVSAHEFRNTNPFLAELSGVIGGKTGYTPAALGNMALVMSGPNGTEIIYLVLGSADRFGDIRKMVGWVSEAWVWPAPM +>MGYP003352111790 FL=1 +MREWNLEEIKMNKAQSKENIFLLKGWKGVVVLYTVMIATAAITIGIAQFGGGVLSP +>MGYP002236981273 FL=0 +DNNRKEINEARRDFENSFFNMLNLLQVKIKDMRVVNKITKEVHAEDVGYSFISLSHSEVKYCKEITLEYLKRIINESWTEWPKQSANNICNIFIAAHRIYLIIIDFCLIHLSLLMSLKLVMLIKKRYANILGRKISNYELLMLFYNCLSEDGRKFQYYFEKYEILDNLPIIKMAYKNHVLLVNKKCWGDNKQALELINGE +>MGYP001471266083 FL=0 +MNVFCALRSLPHIMSIGILSQKTLFLIMLTSSTNLNFMIKDHPIFLESIRYIRSNLEANDFNYLEKKVLERLVHSSGDFSIQNLVNFSEGACEKGLQALKNGAPILTDTDMAAAAIKSMAENTTRNKVFTASMWFGE +>MGYP000742235348 FL=0 +MAQATESRSSSSSQPNIQDVFLNYARRERLPVTLHLL +>MGYP001188259027 FL=0 +EQYGLDHDNFIGSTVQKNNLELDASIVWHATDYLDITLEAANLLNEALVLRQPKAGNIVHSVDEFGTRYFVGASIRF +>MGYP004019405559 FL=0 +MKLQNYFPYFSLFKFSIYFLISSIYLLDMSVYISVSIIEKIIIDSPKATPYVMELFAISLANSFGLKPIKRIKEK +>MGYP000810644476 FL=0 +MTVAEDGSVTVADETLTTLRVPQGVAWMAQPVLRSVNGGDAAENRYPMEPNGTVALVPDTVGPTGGLYLYGVPGADLESKTYQWNGSKVTLCAVYTDVNGKKVDASVFTYKKGNTLFFYFPVTIGGEAKEIEITDLDVPTHGQPLDRTATASVGTVTKVRYEMLRKEINEVSKGDNISVGVQVKIPKGFTFADGSYAVWNGQTSEYRIRTSSMGSDEYLYVF +>MGYP000110014348 FL=0 +LLRKNELSSCIPLAKSIISLGTSGFIMQLTNSLVSICCNHVLSVTGGDVYVSVMTIVSSVRQMVETPIYAINEGTSPILSYNYGAQRPKKVKKAICVLTCMILIYTAITWSVIIFEPEFLIGIFSTDRELLADCVGALKLYFAAFIFMDLQYIGQTVFKSLNKKKQ +>MGYP000289551974 FL=0 +KRNCAKAGIQQEIRKREHYEKPSVRRKKKAEAARRKNAKK +>MGYP000993698250 FL=0 +LTVHVDKRPDLESHTMTNLLVEDEKLENLVQETGVPNLFVVPSDTSLAGVEQVLANRIGRETILREALEVFPAGKEFDFVLFDCPPSLGVLSANALVAADFVVIPMQAEYLSLQGMAKLLEVIQLVQKRLNPQLQIACVLPCMLDARTNLSTEVLREIDAHFGSLLAKTRIRNNVKLAEAPSFGRTIFEHAPDSNGARDYEAFGAEFLAMILVLVYVGAVAVLFLFVVMMLDVDFVELRQGMLNYLPVG +>MGYP002735085997 FL=0 +EDAFGFVNAECRYPENGANWTEEVFQNYGGTLKWISYNSGVGIPEPEPDITGKCGDNVTWGFVERSGKLTLSGTGATWDYGSYGPEEFKSFRDRVRVIEVKPGVTDLGTSLFVFCENAEKVILHEGLKTIDMFTFQRCDSLTELIVPESVTYIESAAFRDCPSLVSVRLPSHFTRIPDVLL +>MGYP001200674681 FL=0 +NGWIITIVLINLLGCLWLLWWTRKRPEDTIKEGESLGHSFDGIEELNNPLPHWWLNLFYFTIAFAFIYLTLYPGWGDAKGILGWTSVGQWETEVEKAENRYDRLFEEYAQVPVEQLAGNEEVVKTGQRLFGNNCAICHGSDARGNVGYPNLADDDWLYGGQPENIKTSIVQGRNGIMNPWGDVIGEEGVVASANYVLKLSGRDHDAGQAAE +>MGYP003380670323 FL=0 +MKKRYXQSAXYGCASRXAHKNYXLIREMVIQYRPSGXWRKGKMVQPHFEXLHQPARFHARETERXXGYRKDPMDRQSLXQFLLLXSIHGKIPXRRXYXISILSDSPTNIMXELLGIRKRXIYLPTGKVNVFCCSWNVPIXKQPYGXTDKRQECRIVFVFPINMIXPIMSVPENVLSLSGWIIVSKKSMSDRIRTAXPTRPKETGTALXDASVCKRLRKHISMIFKYIRNRNKTGTCQSRHQRYRHCKSKIISRELQYGXKHIVPAIQQEIKLNKGVTETEMVLPMGNDMLLWDEFHPALYKLKAEVTNGKKLRXKKYNSVCADLKSKVNGFMXTGAKPSFAEQLKTVTSRXPVTPRWMXKVGNGYSVSVAVMDXITCVSIHSVLPKPLLWLPTGXDSICNPKVRAGPIMVPNXVWDNLLTNIXWTKPSHXPKNMATMLLIACWHAETNLADAGXNGXPSSXNIGKRRIPDMYIPEHRXATDGNGNLATNIMXRLGHVAXPGPRNNRPPKTTIVSKIILTPXDSPTYPMKQVNGALSPISMKYVNIQASIKPRTSRFSKTFWLTTTXATKPIYLXWPAESCKPFVTNMKXKRHSARPIMPVSNYWHXTIIRVRELHWXVFSMFSLKKKDISTLQNGDVSAHLQFHXCVQINLYIITRKFXRRILKSLILVPRHXNKQKLYIRXKTNMAKYMRKAHWQHKTFLSEIXIAQVALSFRLLISKRLKAESGNTHYGNRSCKXLEFLGLSRPSDNSRRKSIHYRHLGFESPGNSSEWWKCAYYSCGQSELWXRSGPAIHSCILEHLLVQNASSSYHRYLSEPQTPVIPSVSDRISQQSAMVGTAESCSSDAIHPLSTRFPTYGSKHRHLVYKPQDRYVIRSQCIKWESAHDKHGHYLPARETHCSPSDAXSHFGLYEFGPVPSAIYCNASTNQXVVHKTAGDIX +>MGYP001753171793 FL=0 +EMTSSLVGSEMCIRDSDRLLSLLGLARRAGRLSLGNDPVLSSMEEGKAKLVLVCPDLSQRTLKGIESRAEAFGVPLVTIEQTMDQVSMSLGKRCGVLALNDEGFARKALTLTKTNGEDLII +>MGYP001606986961 FL=0 +MKSQEKNCIIIHGCPSDAEKAMNPETRTYDKHWIPWLKRNLVAARIKTDFPFYMQIVNRWVKIEPAVWNLFYRNNGAKVNFSGQIFQAVQYGLNPETEQIDYDQVATLAQEHRPKVIVAGA +>MGYP001452258850 FL=0 +MHDKKIVNERLISSTVEITKEAGEAITEIYNSDFDYQLKKDLSPITAADNLSHNIIVERLESLTPEIPILSEENCDIPYKIRTQWTKYWLVDPLDGTKEFIKKNGEFTVNIALIEKDTPVFGVVYAPAIDLLFWGSMQLGAWRKNAQESEKRISISTQTSKKIKIAGSRSHPSEKMKSFLSQFVDYELQPMGSSLKICLVADGTVHLYPRLGPTMEWDTAAAHAILQSAGG +>MGYP000432580839 FL=0 +GYAFFGSHRIGESYRTGLDGVYYLTAAGVLAKYRSSTEMLRRLVLSAMKELAARSPLGRIETIMSEKDPKLRRIFESLGFETTARYRSFIKRP +>MGYP001553361461 FL=0 +GPRHRRRRISEGPQGPHPVIDGRRMTAFCSNDYLGLASHPQLVTALKRGAERYGVGSGAAHLVTGHSGAHHALEQELADFLGRPRALLFSTGYMANLGVISALAGRGDLVLEDRLNHASLLDGATLSRARLIRYAHGDAAALAAALEGDAGGECLVATDGVFSMDGDLAPLPDLARAARERGAWLMVDDAHGLG +>MGYP000983384177 FL=0 +MKGKILGVNGDGSGGVILGDDNKRYNFTQEEMKNSSNPEVNQSVDFNADGRDAKDVYTVASGLFDVSQLKIPSFSIGDNFQVVILSLLVLFFAFTYYKNSKIEEAFVEFIATQEEYKITFEDYDCSGLFSTDCTLENIEFTTGGVLDFEAESLEISNIYELGTFDQSYRKSKIPFSVEIEGIKFAERIQETYFKSFVNNGGFISAREKELSEEVYNYLIDSLDSDTITLDGKLEVANKKLNRLEIIELSYDNDILPISIDMKVDNLGEEKRIVRNVTLRLSSENLL +>MGYP003554407810 FL=0 +ILCFVTRLLMGLCVGLVYGAMAKACKNATANCFVASLSAPLLNTLFFMGYIVLAFYNCDYVQNLVSVKGAANPLMFVVLLVGVQGVAEFLVSGILGGIVARAVHKFLK +>MGYP003431497335 FL=1 +MHQQVSLELLEILEIGCSKSNPASAGHLKLKHED +>MGYP002928876319 FL=0 +ALHVMDEANRCLQCKVPQCQKGCPINTNIPMAIRLLKENKLNEAGKMLFENNPLTTGAVSSAIMRTSVKVTVYLDCLLYTSDAADDKA +>MGYP003442291329 FL=0 +RDNTMNTINAYYEYSIDMQPNMSIGQNYITDIRTSKQTFPNGSTTGARWIQFKIPVAQPENTIGNISDFRSIRFMRMFMTGFSDAVTVRFGALDLVRGDWRRYTNTLDPNDTNPTDDKTHCDESTPPDYGVPEYTAATRPAPVRLEAAH +>MGYP000852449644 FL=0 +AINFKFSLSPLLDSTKSQVTVFINGIYAGTTKLKTVPGRKMNFKVKIPPQARDRQLLEVAVRYYLDTEQQVNLDCGRRDYDKAWFIIHGDSWLDYKHRDKNVFYLSDLPGPYLLRKKVNLPLFVMPDQPTAADLTALERLSMSMGQLMPKNENWFSVKKASQITKEDLKTNHLIVIGLAERQ +>MGYP000542208118 FL=0 +HTTAAALPMMRKAGWGRVVNIASAHGLTASPFKGAYVAAKHGIVGMTKVVALETAREPITCNAICPGYVLTPLVEAQIPDTAKEYNMTEEEVVEQVILQRQPSKEFATVEQIGGTAVFLCSDAAAQITGTTISVDGGWTAL +>MGYP001017409220 FL=0 +ACRTTRAITRRSNPRTSRASNKMTSSSMAVFGQVNLMVLVARRSFRQHLLDDELGNIGAVGLLMVHRADRPVAHIANRPAMRFRRAVAAVLGGAGFAAIQPAVQLGQGAGGDHGMHHVLQVGGLLDGERLRVRDRLFAVDQIGRQGLGGADRGGLGRQRHRGYQHLALTDGVGCHGDRVVGRRHGTVEGVEAGVEIHAHAQACGRCGQLTGCEIPGLVHEGGVAGLLEGGAQRDLADELGRIAVVVAEYPAVDLGGL +>MGYP001607760096 FL=0 +MSDTGTEAPGGATHFTVSKGNLDLFDYTRACEEDRKSPNCK +>MGYP003410680479 FL=0 +MKNNLLKYGLFTFSLAFAISCGTPKANLTAIQKDPIAQRVDSVLKLMTLEEKVGQMNQYNGFYDVTGPAPSEGEASKKYENIKKGLVGSMLNIRGAKEVRAMQKIAVEETRLGIPMLFGFDVVHGYKTVSPIPLAEAASWDLEAMKKSAEIAAAEAAAAGLNWTFAPMVDITRD +>MGYP000424193527 FL=0 +CDSVVISSFVRTGYTTRRTRLIKHVIPPGLLGLVGCQIENVEPVISTFL +>MGYP001346217960 FL=1 +MGDAFKALADPTRRRILELLAQGDLTAGEIAAHFDMTKPSVSHHLNILRSAALITDERGGQNIVYSVNLTVFQELMKWFYDCGLVKGDDSNEKE +>MGYP003339884708 FL=0 +MSVSKFRFVSPGVQVAEIDNSQLPRLPSAMGPVIIGRSL +>MGYP003507622094 FL=0 +VELSADDGDPTEPDHALVWMSASEALSKMRHEAHAWAILHWLRGRRGV +>MGYP003457963375 FL=0 +RSSETRAALASSGVPRGVYAGKKPEKLLLDPGFVITQANLAEKQEEMWGFTVWKKQNG +>MGYP002508125824 FL=1 +MRAGCNPGGGIGVPRDNSVSTGSVRVLSRSESSWIWAEKSLSAFTAGSFWSSVSTDTGAGIPEEEREQIFKPFTRVRNLAEGDGLGLPICAFINALGESSVA +>MGYP003488338009 FL=1 +MDHVWLRNPPRPSGPDRGPPRTLNELHYDQLMLRLKFVEKIEKELGHKGLAAKGSIEEIMSADFNQEFEVEREHVPGKIASCWEVCYWVRTNYGNRHMEVLLTGELLRFSDDVVKLKEKFAKQDSAFAYSGR +>MGYP003140940673 FL=0 +MSASGPAGQDGGGSKESNKKARKDLEVSAYEREIEKQNKLKSQKQLTT +>MGYP003132782948 FL=1 +MASAPPTGFVLKAYLTEANARADSNALQVTTNTAYLINKEQDANYNFFTHIEYYFRIEANDPVIEFYIDWDDGENNDPKGKANFSLIKLDTPNNIAITSHIFTRDKLHFPKIRVKSVDGFLSKFYQAAGDDTFEGIDVLAVGDALIDEGRNDRYRLENDKTNAERIPILAPTPRPPVGILKADKKRVFAGITNKYLAGVGGTYDGVTCRLIGSHALMDTTRDNVKVKVTYYAGGADQNDLGNTGSGELIETEMSITTTPTISNVLSVVKMELVDLRENTSENQADIADGTASSFNTSRLFAGEKMILVVDGSSAYQNDTPSVIGEVSMGNPILVLDDPKFSVSLDATESFCRSPEQTIDEYKIWDGDYVTNHGFDENTALFSASSTDTSDIFGAGAGRDTLRAASGIKTTSYAFHPSMTFTDEYHRWLPKQLLAIAQVKSSESAAKAATGTVNDTRATYDHSFVEHWVDESQSNNYGEDRAGIEEYNWPSDMTSSAFFAFKGPSDSDNWHDLNPFNRLTGLDMEHTLFHQTDRASVTGGTRRYANTSTNDLDQVNAQGAYMICARDSKWTKQHFVTKAYSRDTNRTASVGENGPYRAAPITVNGVANKTTANEWSGVSHAAVRVEIFYTARQDGSTNIIWKPLKRIDKTKHPYLSDSTFYSSGAMEWMEPEDWVECDPGDIPDRFWPGGDFESSLEPDTERDSFAYDSDATGNYFDVSNRWNATNKKYGLMWVLTSDGGVDSQHDTFGWGPDVHYSFPASNKNSVLIDIVDPMHVSLNTHAIAQSVSYNHKGKYQIIEDRMGKSEIRKIGATGGTLTFGGVDLKDKDGTFTRDKFYEYQKRAIPVFFDIEHKSRNISRFFGVITDMSEDHPVGKQHGKFGITMQCSHMIYFAGSGSSLGDGSILSDGYVSLGGDMIDEFDYI +>MGYP000711591066 FL=1 +MKTNTIITIGRQYGSAGREIGSKVAEAFGIKLYDKEMLARAAKESGICEEIFETHDEKPTNSFLYSLVMDTYSFGYSSAAFADMPINHKIFLAQFDTIRKIASEGPCILVGRCADYALEDNPYAVSVFIKASLDERVQRIKRIYELNDSKAA +>MGYP003326832321 FL=0 +TIEQVLYRRVYDASDDEVQLRACAPKGYVKSFTVPGFHGPKPLQIRHQILLDYHNSRAGGHPGRAATVDAISKDWWWPGLYEDVKQWIQRCPFCSKEKGISGVSAWTRTELHSRPFRMLQFDTVSAIGGGDSGYKHILTARCPFSRYYWLIPLVGETAEEIAEALVTHVLLGLANFPTILQSDNGLLNQVMTCLMKTFEIEHITSSSYHPQSQGKVERMHGHLNELIKGLVRSEPSNWVKMLPYAQC +>MGYP001544677532 FL=0 +LLDRDLSLHFRLLLALTGTLGRAVAARPTQRYDYFTTDDTDETGCWRPDAGWNGGRPGS +>MGYP001464162734 FL=0 +IMFLLRKPSVKILAIDNFSNSKPNFVNNIKKKYKNKFFFKKIDIRDEEKLTNFFFKNSIDVVIHLAGKIDAIDSFKNKDEYRSVNLDSTKKLINISASNNVKRFIFASSAAVYGEVTQGNCSEKKKTNPINPYGKYKLQAEKYIINKKKELNFVILRLFNIAGIDKIFYS +>MGYP003602224053 FL=0 +YSFLLTKNILMILRRQYGKSQLIFPEAFLFPYALIINRTKHKINLFVRFLVYFFVFVE +>MGYP000042883827 FL=0 +WKVQIQVLQIVLARAFENQARRALSHHALEPETHLLAPTQIGAGQGIGLAQILGRAVEHDAPALRAGKNEAEPHPFPATMHPVIEAHRAQLLALARRHGMRSIKVFGSMARGAAGPDSDVDLLVEPEPGQSEPVRMFALGALLMDAEELLGRHVDVVTVALLHPLLRGRVLSEARALGVIAAA +>MGYP001545084500 FL=0 +RMAPAIQDLWMLLSGDRADQIAQLSEVVEGYNEFYDFHPRELNLIEALRALRILYHTAWIARRWDDPAFPRAFSWFNTERFWGEHILELREQCVVLREPPLSLT +>MGYP000472409418 FL=0 +SGDAMDLIKNFKLHVLALVIVIIAEMIGVLRFGLIMFLPLFYALVIGGIISYPSFKIMKLPEMERASRILTVGMLVLVTKILGIGPNLEMLSHSSLALLVQEFGHFFGTLVFGLPVAFLVGMKREAIGACYSIDREPNIAIIAERYGLDSAEGRGVMGMYICGTVFGALWVSILAGVIAQLGIFHPHSLAMGAGIGSASMMAAEWEMQGGTSVPVSGPYGSRLMETPISSTASIVATHPEWAETVQAYAAAANLLTSVLGIYFALFVSLPVTIKVYDWLDRFRSKKKAA +>MGYP000294864057 FL=1 +MKHRMKRAAAPLAGIGAVVLVWYMVSRLGLLSAYVLPPPPKVWSSFIKMLVTGELWKDIYISYVRVMKGFSIAFVLAFLLGMVRSLLPASGRYYEFIVQFFRNVPPLSMIPLLILWCGIGEMTKTVIIVLASFFPMYLNIVKGFTGCDRKLMEVGEMFGYSKGRRFLRIVLPYALADILVGMRIGLGYSWRAIIGAEMVAASTGLGHMILFAQQMSRTDKVIVGILVIGIVGYVTDRVFALAISKLLKGSGDNGWD +>MGYP003498844063 FL=1 +MSNDTTSTRPALTTLSDDEAAFRDAVAAFAEGEVRPRVQAMEREEGAARDLVRSLLERGRGEVLFQVETLTDHVTQNLPRVEIVEQVGQIDIEHVSQNSGRVCRDMVAGFIRWVTFDRKIENFTE +>MGYP003578506829 FL=0 +MLMVTPKTLVATTAELIAYAKARPGKLNFPTGLGGAPHLAGLSFAQRAGIDWVYVPTKGGANSVAAMMAGEGDAMFLGMLQSLPHVNAGGLKLIGISAG +>MGYP002788440824 FL=1 +MSRISLAKNYDYNCELIIIGDSTVGKSSILSIYNNNTNPLKQISTIGIDYIIKDEKINDKLVKVKIWDTSGQERFKSLADNVLKTSHGVILVFDLNNKETYDNLKTWIQFITIKISENIPLLLIGNKSDLEANILYGESIKFADKFNMKYFETSVKNNTNILESINWLVTQTIEKGIIKLIDKNINK +>MGYP001490688083 FL=0 +VVIRRRVIPAAVAVVRQRAGTTADGEITDRQRVAFNVRRVRQQRRARDRVRPAVLGNGGQRHPTRYRGVVDRGDVHRRGTGDGTIVRNTVRRAVVGDRVAEAHIAVVVIRRRVIPAAVAVVRQRTQTIGNDQVTDRQRVAFNIQRVDQQRRARDRVRPAVFGNGGQRHRRTRRGVVDRGDVHRRGTRDRTVVWSAVRRPIVGDRVAEADIAVVVIRR +>MGYP001613389359 FL=0 +LEFLLSQVDKMCVGGKIANVFLAAQGILKSELYPADEIAVAKHLLESYSNKIIVPSDIVIGNDDGSYVQTIDAGNIPESVGGVWDIGPKSVAQIQAACEGAKTIIWNGPVGRVEVPAYEQGTKSLVDFLASHSAYRVVGGGDTVNVLEKMKKIDAFNHVSVGGGAMLEFLEGKRMPGLEPLKI +>MGYP001822186784 FL=0 +AKSEVPGPPKAIPVEKLAPAQTELGLRLVGTVVAYDSRLSRAFIGNRQTRRQKIYSEGDTIDDVLIKKILRNKVIIATKAGDRLLTVRSAASGNSNETYSAAPQVSRASMPQSQSPGRPSNSARVRHISLDRQEVEDSLANVDQVLQELTLTPYMRFQKPAGFRISNLSRNSIFNKMGLSSRDVIMGINDQKITSPDQAAEFLQTLAEGDEVTIKARRRLRTRRIILSIQ +>MGYP001418701337 FL=0 +VKPLMSSSGKGQSLIKNDSDIQKSWDYAMEGSRGDLMEIIIEEFIDFDYEITLLTLTQKNHNTLFCPPIGHRQERGDYQESWQPIDMREEHLKMAQEMALQVTESLGGNGIWGVEFFIKENKVYFSELSPRPHDTGMVTLAGTQNFSEFELHARAVLGLPIPEIKLMKNGASAVVLANNISVEQPKFSGLEEAMNVTDSDLRIFGKPTTRPFRRMAVTLTYGKEDVDSLVERAKELAA +>MGYP001258882498 FL=1 +MADAFFVCVVFCSAGAGAPHDWPGHQARRAGPRALLQNGGDARRHRGRQREAPRRGHQLRGEVLRGQAQAGGHGKLILFKSSRMCALRWRPASRCLERESNNSEQQ +>MGYP002553949049 FL=0 +TESTKCVIALIDEIPDRITLDESVIAKVEAARKAYDAITDLTQKSLTRNFGKLTGAETNIERLRAGQQSSSSDSSSSAQSKSAPVALFIVLGVLLVSCAAAAVVFVLRKKKNK +>MGYP000347212883 FL=0 +NRIVLRNYGSSPPTLQIWLLLSHLASHCPIHTHTHTHTHNTYMHVTMYMYVSMSMSMSMSMSMSMSMYMNVYMHMYMYVSVSVSVYVCVYVYVYVYECVYAYVYVCVCVCACACGCACLCLCLCLCLCLSRVCVYVYHICICVCVCVCVCGSIFLCLSLSTAFPACV +>MGYP003507787529 FL=1 +MSEQSTHDAYEAKAKSTFSAERKEDYFVLAVAAITVALVLSGVIGPNFFKSLFF +>MGYP000959777104 FL=0 +KEAKDARRLERAVFRSRPVERDEAEWVEADDPEDALAPLFTWVGPDLPEHIGPDCDPEEDMLCAVGSNLLVIANYKVGKTTQVFGMCYRLAGAPTPWLGVFATPQPLTVAYFDFELLASQHKRWRRRASDALGVRHDEDVQSRFRSLPLRSASAPNPATKAGRKALVRVWLAYQPDVAVLEPATAWVEGDGNSAEVVIAWTRGLDLAKGKYDRARMRAWEEAGAVGVPPPPLTCVISLHTPKSVKPGEETAIGSGRWMGWADE +>MGYP000823295119 FL=0 +KIADFLAGMYPETIDRSLLLTGTLLHDMAKAQEFVFSQLGLATDYSIKGQLLGHLVMGAQDAAETAARLGVPEEKSVLLQHLILSHHGEPEFGAAVRPLCAEAELLSYIDLIDSRMEIYAETLPAVPAGSFSARIFALEKKIYHHN +>MGYP000922530624 FL=0 +MSPTTVRRPIRPAALLRSVLR +>MGYP000535681885 FL=0 +VWLKDYELPGVGDFLGRPPGYLMGSDLDRAYAHCRRIAKKHAKNFYYAFRTLPREKRRAIYAAYAFCRHCDDIADEELSHEEKMRLFADTRRRLSQAQNGSAQDPVFMALGHAAKAFGIPSEYFEQIIEGVEMDLTKARFQDFDELRTYCYHVASVVGLVCIEVFEYE +>MGYP003610816290 FL=0 +CCSMSPSVHSIWSPPCILAPRFLAPARLGALVGXDFPLGMPLDDVFFDLVTVWAP +>MGYP001477694372 FL=0 +MPRGGTAGKAQESNRRLGSVRGATRAKTPPPCAYAQTSQITIKVEGKFVSRGSREQA +>MGYP000729372693 FL=0 +LLGTLCGDPRATSGRIVFDDKDITDWQTAKIMREAVAIVPEGRRVFSRMTVEENLAMGGFFAERDQFQERIKWVYELFPRLHERRVQRAGTMSGGEQQMLAIGRALMSNPRLLLLDEPSLGLAPIIIQQIFDTIEQLREQGMTIFLVEQNANQALKLADRGYVLENGHVVLSDTALDKLESIPGFDIFPDDNRFREIIKDVGVAIIGQTSSLAPADKRFYATRDITATVDSIPLITASILAKKLAEGLDALVMDVKVGSGAFMPTYELSEALAEAIVGVANGAGVRTTALLTDMNQVLASSAGNAVEVREA +>MGYP003294174267 FL=0 +PQIDQRFVNFGVVAAEDAGVGRGLVKTDKNNIAPRLGIAWRLTDSSVLRGGYGIYYPTSAAQGMRDAFAANAFNQRITKSSTTATPLGGLPGGVNPRGVTPFSGGSVVVQGVAINAIRFDLQSPRIEQFNVTFEQEVKWNTGVRVSFVGSRQHNLIAGIDLNMLAPNDTPFGVHNADGDLCTPGDDCEESAADSARRPFPAL +>MGYP002514170153 FL=0 +LKSARIYREEQMKNLEIKNPERHTERLMNAMQRELRLDRQPRHIECFDNSNLQGTNPVASCVVFRDGKPSRKEYRHFNVKTVVGPDDFASMREIVYRRYSRLLEEKAELPDLIIVDGGKGQLSSAYEVLCALGIENQVPIVGLAKRLEEVYYPNDPMPYYLSRTGEPLKVICHLRDEAHRFGITFHRQKRSKNFIVSELESIEGVGPKSIEALLRRFRSVSKIRAASVEELAEVVGPKRAELIEQWRSKS +>MGYP000515275479 FL=0 +MASRVKINNIKELEKRKNSTHPSLVNIRKILSLLKNPQKNLGITIGITGTNGKGSVAKTLSTILNDSNLKTGLYTSPHLYSINERISIGKKNIPTKELNQILTEIFETEIKANIKLSFFELITVVAIIFLSKKKNIFNIFEVGLGGRFDATNVIDSDISIITNIGKDHKEYLGNTLLKIAKEKIGIIKKDSFFITGMKPYPFYRVKDYILKKTKKIYIFKKDFQIENNKEFYKYENLTFKPSLKGSHQIENMALVLKTCSIIKNNLGFNLKNQNIVDSLESVKWEGRFSILSSSPYKIVDVAHNYEAIKVLVQNVKKITSKKFIVILGMLNDKDPIKCINELLNIANKIILFKVNNQRTFIPEKIAKKINNKKVVLGKSEELGALIEKDINTLYCGSIYFIGDLLKKYKNLRSC +>MGYP000931687007 FL=0 +MKNYLNEKYNDLDSVAKLHCKSYITADPYPHIVFDNFFNDVMLNEILNEFPSELDKVGSKYNTNQERKSFSNNPDQLSPKINNFLNFTNSHKFINFINILSGIERSLIPDPYLFGGGLHELKDGGFLNIHCDFNKHPQMNLDRRINALIYLNHDWQEKYGGALELWDKNMKNCVQKIQPIFNRMVIFNTTNFSFHGNPEKVTLADKSKSRKSIALYYYSNGRPANEVSSKDHSTLWQNRPNTSDT +>MGYP001385379217 FL=0 +INLILIYQIFIYLLKNKYWTFIENDATNYHYLHLLYRNSVLEVAKHIIEGCKAEDQKCCKQLYSMFKDKMYGVCLRYAESEHDANDIFQEGFIKVFRDISSFRGEGSFEGWMRRLFVNTSLHFLKQKRKSGFVFEDDFSQYDNADELDDSIEISENRQNLLIDLMQKLPSGYRTVLNLYIMEDYSHVDIANQLGISVSTSKTQLMRAKKMMKLMVESALIKN +>MGYP001196022355 FL=0 +MLHAPVLHREAVIPNLATQRGFRRRVAVVDFPWSDRERVRGDAHALLVRISGKALRVVRAGPDRHALALRALLVLVVDRLVVEEVADLHLAAVPRAPAIFVVAVVVPTRSLGDGSPLFCIRFALQVAVRLLPRVVPGPGKTERPAYHVRVGVRVLVDPVAPGVDRVRRQARAQLKRGLGVGGLGAFYLVLCALRFEPEALFKA +>MGYP003389695985 FL=0 +DEIQYRVWEMTPHLELPGSDHRSPGPRTPNPNRRQVRVPPATQSSHGQHAPGGQMGXIPPAHPRLLPARFQWCQKYSTGTALNRRLVGVX +>MGYP000014734933 FL=1 +LGRYGVRTIGELSKCSEEMLETLMGKMGSQLYRYANGLDDSPVRGAADREPIKSVGNSTTFRRDLTRWDEVQSGISLLSDSVAMRLRRYGLYCGGVQAGIKNSRFQVFSRQTTLDHSTHLMREINDTALRLTKDLWKQSQARALCVFQHSGCYRHRSLQVPGCASQVGGHNFGGRGHGPFFISILFIQHRVSGSVHHHGTLSAGGRQRPHRHQQKQT +>MGYP000109000080 FL=0 +NVFYQDMGFSKTDIANAVKLVGVIMVIAGGFLGGILAQKLRMMQAMMVGAILACVTNLLFVLLTYHPGSLPHMYVAVIFDNLAAGLASAVFIAFLSALTSIRFSAVQYAIFSSLMTLLPKVMGGYSGAIVDNMGYPFFFIFTFAIGMPILILIYLVDKHIVIGDNDDIYGDNDKLTKANPNLTDTSEPPRASE +>MGYP003723858749 FL=0 +ARGESQRTGQRSREEIQQEAGQGLRCEDHSACAGTRQGQGSCAANLRQRQGPLQSVFRCHVVKEAA +>MGYP001454151373 FL=1 +VSEDDGVDKIDRVVSNGEANTVVITVVVSST +>MGYP003345151193 FL=0 +DLRVRCLVACCSWRGDECESAVWRVAVIATPFQSLGDHVVE +>MGYP004046731215 FL=0 +MSADPFXIXSGTLLLAAXSIGSQAFRLRLRFIMPKRTSKTSGRATRKTSPIPASPGPLFPSTPERRSSPKRSRSKSSPRSPPRREVRRRVTFADGTEGEGDASHSTSDESVVNNSD +>MGYP003232878591 FL=0 +MSTLFCVARAPHCSASVPHEARIAPPRLLEESIEGAHGALINIAGPSDLKLQEAAAATQLVGKAIHPEAQIIWGLSLDDAYGDEVRVTVIAAGFDANSKKAAQAEAQKQAEPAESTVPLSALSAAPRA +>MGYP002780757469 FL=1 +MRESSFIRQNFDKWKYIETRLELKKGENPDELASLYIQLTDDLSYAKTFYPKSKVTDYLNDLTGLAYANLYKNKREKSNRFITFWKSELPLLYFKYQKTLALAFFVLIISFVFGYLSAAFNEDFVRGILGDRYVNMTIENIESGDPMGVYGKSEPFEMFITITGNNIYVSFLTFIWGGVNFGFPVFIFLSGGSIFSLLYNGIVLGAFMRFFYDYSLTTTASSALWIHGVFELTAITIAAAAGIIMGNGILLPGTRTRIESFAIAAKDGLKILLGLIPFFIVAGFLEGFVTRHYKNELVAWFIIILSLVFVIWYFVIYPINVKKNYGSTE +>MGYP003421169975 FL=0 +ASNLALLVRSLYKHWSSIKSSIWFDLFSRLVNDIYDQKIGIKKAWEYIQNIKNAIPSKYPLDETSNNSDSNKAGYAKVLDDYNWSIRSNINIDNFGWTIEKIVNDMSYWTLPYQYIIPQLFKNDIYVSYKINKINNEYTNDFKIYDGKTKTFNIINIFNGTVVDWLDLAVKEIKDVWAKNQVPIVVGGTGMYIDNLING +>MGYP002515247338 FL=0 +LSRIVVELSPATPADRMPQMWDELRRKVQNVQNELPEGASAISVGDDFGDLYGIYYGLKGDDGIDNEELREWAQEIKRRVVTVDGVQKVVLYGEQQPVVNVYVSMARLSNFSIRPESIIAAMSGQNRVVDSGEKLAGEMQIRILESGTYRTLDDIANQLLTSSDGKQFRLGDVARIEREVIEPPTSIMRIDGDRAIGIGIATDPSRDVVRSGRAVAEQLRQLSSQMPLGMEIVTLYPEDEIAREANNQFIINLLESVAIVVAVIMLVMGLRQGVVIGSSLLLAIGGTMLIMLVVGEGLNRTSLAGFIIAMGMLVDNAIVVTDNAQRGVAQGVDLQTSFISGANRPMWGLLGATLIAMISFLPLYLAPSSVAESIKPLFVVISLSLLLSWVLSLTQVP +>MGYP000642399635 FL=0 +DAPLAEEIAEELGAELVPVEPSAGAQRVPVPLFYPVLFDRLSIRRRDK +>MGYP001211563207 FL=0 +MSSSSIVNKKIPVTVLTGFLGSGKTTLLNHI +>MGYP001099929414 FL=1 +PVDPNKSANKTVLLLIKGLLTINSTNRFFFRRKYIFQPTDLRLFFYMLIGTIIYIST +>MGYP003481454472 FL=0 +VVLNSQTKRAELTVEGADMVGFVFFAPSPRHLSLETARELGRQAKGRAAKVALSVDADDATLENIVETLQPDLLQLHGKETIARVRDIKAKFGLPVMKVIAVETSADLAVLPGYASVADRILFDARAPKGATRPGGLGAVFDWNALAKLELDLPYLVSGGLTADNLAEAVRVTRAGGIDVSSGVESAPGIKDPEMIRNFIRAARASE +>MGYP003404440343 FL=0 +PGLTAHEEEPTASIDRIVEPGRQLPQLALPPDKHITGTAGSDVILALVHGPIVPTCAPARIPR +>MGYP003306851604 FL=0 +IKIPANRGAGCCLGGNSYLTVTGCRNLLISGISTTVNGAVLISVPTNLGTGCCLSFNRYLVMACCRDLHIGSISTLGAVLIGIPADFGTACGLCLYNSQAMAGCGDCFIRGVITAGTSNILLPAIFGTGCCLTLMGLVIMTQLCLFDIGGVITVCTVLIGFPADFGTGGSLCLY +>MGYP001507408964 FL=0 +PELCIAGVKEGDSGLYWCEAAPEGGQGQKTSPPRELCGRGWGAEGWKQSLQSPPRKEATGLTALPTLTPKQ +>MGYP000892867995 FL=0 +GSAPRMRRLHELGFAVLGIDYRGFGRSEGSALPSEAMAYEDARAAWDWLKRDAEKTGAPEAGAVRRFVFGHSLGGAIAVDLAAQVEDDASGLIVEGSFTSLRELLATFKWGWLPVGPLLTQRFEAAARIAQVRAPVLVVHGSDDHLVPPTLGRALYERAPGRKRFLLVEGGSHHDSSARGLDEYRVAVRELFGVAAVE +>MGYP001570592810 FL=0 +KLEMITTENAPTIAPHINPNVTITDGNVLTIKQNAVPLPHTEGWSAASGAISPYLIDMCFDKNGNMYFVCRFSWASMGNLDGTQDGDMAGIHKMAPDGTITYKWWYYSDPSIEPTKGEAGIWSGTSWDNAFNLSTAIWCEGNDIYLGCGDHGTANCLKISISDTSDILSTKVLRLNRAAAAGSVDGPYSAPVKGVSVEGDSATTCPPIAKIRSFSNGDICMVIGARN +>MGYP000867335061 FL=0 +MDPVRRDVLAMGAAATAVAATSPAAFAQDGAAASFFEKDGVRIRYGIVRQLGSFNLLWAVFHEWIGIARDVWRAPWRAKLPYMFAPPGWSHDGSRDTSDSIRARWQERQEAVPAE +>MGYP000426411893 FL=1 +MQSSVFYFPHCRNETEVESKLIVDFLLPRLGYTPHTWHQEVAFGHIRLDFLVFAVNRAPLRLADNQPVSLVIEAKSPQHGLDRFEGKLREYLTKLRIGHGVLTNGKDFRVYGRDKDSVRLLFRCPGEAIEQSLPQIRELIGREALITLSSSEPVLLDPVQEVDDLPSLRVVPIPASTEGIPETQGLSNVSSLEYSVIREDSSMIIIAIYHNKGGVGKTTTTVNLSATLSKMGYRVLLVDLDSQANSTFAVGLMKFPDEIDDDIKKSYVYHVILEKNQFSIPEVARKSSFCNPEFDVIPSHIDLMTHEFELKEGGSGITKYRLLKKLEEVQNSYDVVLIDTPPSLNLFAEIALITADYLLIPSDLKPFANEGLNNVRRFIDDINEDREDRGKTTLEVLGILPSKIATHARFVEHTLPKMEKTVEERYGYKLLNSRIYERRDASAAIEKTIVVGDLDIPDPQSVLDFKPDSASALEFKRLAEEIISLTGL +>MGYP000549342313 FL=1 +MLKNIIWRDIEVVITLSLIHIS +>MGYP001554259151 FL=0 +PFWSKVRQVSIDSDQESQRELFLFEDMSSQNEMFEKVQRLSQAVEQSSNSVVITDIDGIIEYVNRTFIKTTGYSSNEVIGRNLSFLSPDQAASSVYEEMWTAVRAGKEWAGELINKKKNSELYEENVVVSPIRNEQNEITHIITTKENITDLKKARQQADSANKAKSQFLANMSHEIRTPMNAII +>MGYP001144722731 FL=1 +MCYWNCPLASRLFRKSKASWRVAPAWSRWQLQLPWPIFIASQPTRAVPWLVV +>MGYP001076062122 FL=0 +MSKRLILFVAVAVMLLSSAGIVTFLSAQEGEIPAGAPQDSPGNAPAGGEPLETQYAPDRIYRTGSPDVWRVSTGDGILLSRDSGRTWENRGTGLPARAVWPFDKPRPPIVTGLSVDPAHTDRVGLTTLDPLYLSEDAGGTWEKVELKDPLKANDQLTCIALSPLQPASLLIGTSFHGFFETR +>MGYP001119048589 FL=1 +MKQNIITKKDFDINKDRDVKNFLLNFGPQHPAAHGVLRLVLELNGEVVLKADPHIGLLHRGTEKLLEYKTYSQGLPYVDRLDYVSMMAQEHAFAYVVESFFNKKVPKRASYIRVIFLEITRILNHLLALTTHALDVGAMTPFLWAFEEREKLMEFYERVSGARMHANYIRPGGVAQDIPVGLLDDIFKFIKQFGSRIDELEELLTGNRIWKQRLVDVGIVSAEEALAWGFTGVMLRGSGIPWDLRKKESYEIYDELSFEIPIGSKGDCYDRYLIRIEEMRQSLKILEQCLDKIPETGNYKIFDFKLVSPPRALIKFDMHALIHHFKFFSEGYSLPKGESYVGVEAPKGEFGLFLVSVGSNKPYRFRIRAPGFFHLQSLNQMSYKHMIADVVTIVGTQDIVFGEIDR +>MGYP000170037481 FL=1 +SGPLFVFHGIEKTFAEDEVLRKVDLSLYPTKCILLTGKNGSGKTTLLKIVAGLEKPEKAEIEISGKLHCWKKVMPIIRKEIIYLHQQAFLFSGTVESNVAYGLRFTSLTREKRRESLKKALEWSGLTDMAKQEANTLSGGVQQRVAFTRAQIMKPKVLLLDEPMANMDHESREQTYQLLVRMKLAGMSLVITSHFMQYFEGIVDQHFQLKNGALELKSKS +>MGYP001203790631 FL=0 +MIKNFKQLILFHRLKPFMNFEESIAEVHAISMSIKWCRPGALLGLFASPIRSYLLAAKPYIE +>MGYP001549860555 FL=0 +LSLEGKSGPAAQSARAFARNFAKRSDIPIALVDERFSTAAVTRTLLEADSSRKRRAEVVDKMAAAYILQGALDLVRGLKLELANLKEADIVACPPFTALSEVSKATLDSNIRLGAQNMSEHNVGAYTGEIAAVMLKEFSVRYVILGHSERRQYQKESNELIAKKAPEVHVDALRPIVCVGESMAEREQ +>MGYP002065815634 FL=0 +VAYRQPLYLLRTAVEWDVVQDRVMAYSLPMVEATMHMPFRVAEYTDFYASRHHATNVGTMFRGPENALPPNWLHIPIGYNGRASSVVVSGTDIRRPWGQLKGAEYDAPIFAPSRHRRTVQNASIPSRSSRSSVLRVPLSRNHAVR +>MGYP001354736308 FL=0 +QKKKKMGIRNVSPIYTPAAARTKPPHRLAPLNDSSSSTGAFNGLKPLGKISIDSPWDAFGKPKSITAVEKKK +>MGYP003506483410 FL=0 +XSPLLPKXATSNGHNHDNKQWFYQFATELDGSVGTKVRAEHQAKSHGNAQLVVNVT +>MGYP001354348586 FL=0 +DTGTGIHAAAGAAAGWGGEARINWALLQLQNNLWRYAFGNVLAARVRAMAMNWVQFQEGLSMAEFMARYGSEAKCRRALCRARWPKGFRCPACGDRRHSTFQRGGQTYYQCRACGHQTTLLSGTLLQATKLPLTTWFLAMHLLTSTKTNMAALELKRHLGVCYRTAWRLKHKIMQAMATREETRRLDGFVQIDGAYLGGERNGGKAGRGSEDKQAFVVAVETDETLEHPRYAVIEPVSTFSNATITAWAQRRLA +>MGYP003378432903 FL=0 +MGSRKKKNGKFLSENNNNCDYEGFTKVLSKRRIIVTIYFYLEVQ +>MGYP001118074481 FL=1 +VNCPLCSPSRASLLTGQYAVTHGYTVNAAVNAVPDERLPIYQHTLRGAGYRTGHVGKWHKDSYVEPRPGFDYWVTYHGQGVHTDPQLRVKQYDAPVRTVNETGFTTNVLTEYALDFLDDYGTGGDRTEPFALTLSFKAVHGPHGDQYTQSGGAYAGQTIDRPPNAR +>MGYP001597331187 FL=0 +MWLSLAGLVETLRGGCGACSLGCGILLLPYGPHILRQCLELLNFISIHVSDVVRLWARELALSSLRHPMQMEVGEIGIERGGFCSQ +>MGYP001567613541 FL=1 +MDNNNKWYISSTGSGLSLTIKGVLVGIVPLIAGLARTYGYDLTEGELFNFIEAGFQAVSLSMVVFGLARKLFFKFKPL +>MGYP000114959871 FL=0 +MRPVLASARALSQNPHESSFPSTNGNCGFVGQYFDRKDLTDLRLSRLDSRIAFDWGNGSPDRRIEPDTFSVRWTGRIVPRYTEVYTLSTVSDDGVRLWVDGALVIDNWTDHAQTENSASVELAAGRHPIRLDFYEKTGGASIRLEWEGPGIGRQIVPRTVLAPSNADEKAEGLLGTYYQGGPGESIFAWTDENDDGRVQPPEVRTGTITFEGAPWRQVAATWQTRMNDRFEIAFSDGEYGRAGIAFFNVRGFNRRGYPLYELPKSFVPIPGLAHASDAVMRDRAGNAISLDEYVVSVSPDGRILWRYKNRWPGLHAGHYTTAAGDEPGVLIATTRFLGSAVVNETLGEVIAILSNLGATYLFTADGLYIDRVFQDCRQGLSWSFNAPPSDELLKRVSLGDEHFGGTFQKVKTADGSFRCRYVVSPGSPHNSVVELHGLENVIRLEGGSFEVTAEHLSRAEHLRQRRTLAATEPRRLIVR +>MGYP002866891791 FL=0 +TSIDTMITRHHQKGDAASVAVYTACESYRYLLTRTWDASGPRALFVMLNPSTATEVQNDPTVERCERRSRALGFGAFRVTNIFAFRATDPKVMRAQTDPTGPANDDTIVGSAIDWIRGGDDRVICAWGTHGAHLDRGPAVEALLRQTDRPLWHLGLSKAGHPKHPLYIAYDQQPQLWRTT +>MGYP000706738672 FL=0 +MSSKFYTKATTLALLTGGGTSAAALAWFPLRQNSKDTDDNVDSPFSDEGLEAGMLLLEHAQDVPGLLPIAFLVSAIVKSSEHSGHSDATRFARLIETLEILLLQASSLPLPFLAQLTTVLEQAEV +>MGYP000526671817 FL=0 +MTKQKSIMTNGIIMKFKNNNTMRNIFYSLIFIFVIWVLMQPRPTNDIVTYHNDYRIDSNYLTPIEPLTESVNTMSVIPKQKENAVDLYIKRYSKTAIEEMRLYGIPASIT +>MGYP001798615877 FL=0 +MNQDRTVSFKNGHSGYTNCDFTILDIYDCDFTILDMYDCDFTFLDMYDCDFTI +>MGYP003125760673 FL=0 +MKQRKLKVRKGHWAYTLKSQPYSGNRITPFLLLKGTWLEQAGFNIDTPVSVSVEDGRLSIIRDHTRXEPRPGHRPGHSVLXQIRGMX +>MGYP001490802382 FL=0 +MPLHLNVQQSNSSAAVKKLWFVPEVLMFIMQIVYISDTFSLLISNFYYFWAVLCT +>MGYP003141655914 FL=0 +VDGVKNEGLLQPDNVTEPKKINIPRSVAGTHTDGNIHTYLINSALDIGPPDGLGFPVFYNNQIPIREEHITVIKKGPKNILNLDLDTGRDSDISTYINQQKTIKVAIRSDLNGNQDFNLLGWESYKGKTVVLKEFENDTAPSIPIADYRIKGIITDWHNFQNPELISDTGLQDISYPDGDSTGIIEIEILPTAVQGLPPLAPSGETLNYAIDLFDEEEKLFEFKFPRFSYRYKYEDGE +>MGYP000069741418 FL=0 +REAPPAEAPPAPETPAPRREKAATAREVAVQTAAVAAEIEEKMATGEDAYRFPPVTLLHENREENHVEAGAELRNNSRRLAETLTSFGVDASPGDVVHGPAVTRYEFVLDQGVKLSKITNLADDIALALGATGVRIAPIPDKISVVGIEVPNKQVTPVLIRDVIESRDFTEHKSHVAFALGRDIGGRNVIGNIEKLPHVLIAGTTGSGKSVCTNSLIISLLYKSTPDEVRFIMVDPKMVELAPYNGIPHLLIPVVTDPKKAAGALQWAVFEMMKRYKTFSEHGVKKLEEFNRLARATEGMETLPAVVVVIDELADLMLVAAKEVEESICRVAQMGRAAGVHLVIATQRPSADVITGLMKANIPSRIAFAVASSLESRIILDTTGAEKLVGKGDMLYAPLGAGKPTRVQGCFISPEEIEDVVACVKQSGEAQYSDEVIAKIEESIQEKEKGGKGASAASADPGEDEGDELLPAAVDVVLETGQASVSMLQRRLKLGYSRAARLVDQMEERGIVGPFEGSKPRQLLITRAQWQEQQMGGAPDAGEPPFPVEGDEGL +>MGYP000844791533 FL=0 +PRRTFIDFSENDKVASRRDSPLDRALSESESEVTTIRARSIIAAPKGDSAEPMSNFSREAPRKVVTKPAPSPAATPAPPVLVATPAAPYEAVRPVRPFEDFKEFSSPPLVVPKTVVRPIPVETVVVPEPTPAPAPEIATSVANIETTTVKSEPREGFIKSIAPATLTFVRTGYYSAKYRKFDDRMKNEASMLGLGAARGIETSWGSFEARAAVDIYHAMDQSMTIDNIRMMSVRTEVAYWLSHSRVKPGLSLGLGWADYSIRSYRSISGANEDIVTLRTHAKGKAFSIIPATSLRIEVADSDTSQLVVDVQTEFVALLGGESPDAAQGLG +>MGYP000545153660 FL=1 +MSADPHVVYVTVPEMLDAARIAREVVSARLAACANIMPNIQSVYHWDGEVCLSDEVVIVFKTTGDRVVELTHMVVDEHPDEVPCVTSWPITDGNPEYLKWVRDEATGQPQG +>MGYP000168519987 FL=0 +MASITIPYAVADFIEMRERGFYYVDKTQYIAKLEDYKAPVFLRPRRFGKSLLVSTLACYYDRTKAHRFEELFGDTWIGNHPTKEHNRYMIIRYDFSAMVMSDHIQGLAQNFNDLNCGPVEVMVAHNRDLFGDFEFSNRGDASKMLEEVLTYARSHELPKVYILIDEYDNFTNTILSTYGTEFYRKATHGEGFIRGFFNVIKSATTGTGAALERLFITGVSPVTMDDVTSGFNIGTNITNDSWFNDLVGFSEKELREMLTYYKEQGVLQESIDEIVAMMKPNYDNYCFSRSRLVDCMFNSDMVLYFMKSFVLHGEKPEEIVDPNIRTDFNKLAYLIKLDHGLGENFSVIKEIAEQGEITTDIVTHFSALE +>MGYP000057883855 FL=0 +KNLLKPGDHGTTYGGNPFCSVLQLIRCFEMIGARPHHRPCERNHTISWKKNYDELVASYDFLTARRGLWTDAGLWYPKSRSDRSLQMALEEGLIVITAGSERTPFCTTAHHRETTCG +>MGYP003384944733 FL=0 +MPVYRYYVPHAIVFLTQTVANRAPIFREPRWVDLLRATLHRVQERHPFRMRGYVFSPDHFHLLIQPTPPETHSSVMHSLKRAFTLAYKQATGIPGSLQFWQRSFYDHLIRDERDFEQHLHYIHFNPVKHGLVARPEDWPDSSLAAWKARGAYPEMWRWSLEERAAA +>MGYP002790362313 FL=0 +GKWQSVWRLDLNTEGLLLFTNSGELANQLMHPRFGVEREYAVRVLGTLEPDARKKLLEGVKIDGQPASFKSIEDGG +>MGYP001259587854 FL=1 +MLTNRIAKLLSVLLLLTLASACGGGGGGGNDDSSSPPETINLGQFYDGDLSSKNSETWSFSAAANTFISVELYGARLDQTSWNTPLNAPIVKLLNSNGSTILAHNITDSAGDLTSYWYFGYRDTEIPLYYLTDAGDYSIEVSKKTTNSGAPYKIRVNNENKSILAQFGSAQEETEPRGLGTNNILASAETILRDGPGTDEIIFGLFEDDDPDTYAIDIAADTTTPAVISCFEIISQRLGILTPQTGQSYPDLELTLYDTTDTKVNFVDDFYFTDPKVCRKITNTDTANDTYKIQVTETTGASNPTTDAYYFLKYTEEKILN +>MGYP000577366278 FL=0 +MPWEIGDIVRQVKKQVKIPLGIHAHNDSGCAV +>MGYP002519074643 FL=1 +MQTAVFTRETSVAMPSDMFAARNSGILSAAAVIAAETGVPVFELDMIMHGSSYFDSMYRNIDTLKGALG +>MGYP002064227981 FL=0 +LLRRAAISRPEIGDADRRAGCRLRQRRHRIHQHVRCLVDDVLGAQLDAVGKSHLADGHDPPIADRHVANQRFRARTVVDRAALKQQILKAVPSIPDLVRPAWASASTFRGSDKRGGANGARIRLEPQASWDVNVRSGVGEVVAKLDAADLVARRRMRPVRRLRRWSPTSITGDDAGLMALPVAAAAVSSDCSPLPPAIAPDRRSVTIGRAPWIAGVSGLASQATTRPAAHTANSATSSGSRCRSGSMSTSAAKELADLGYTNVVELDGGMRAWSA +>MGYP000874961551 FL=1 +MISKISNDFPVFDFKKDARYLGFFDFSCPEGPIFSWSGCSIQTNFNGTGIYAKIIDKNMTGNSWISVIIDYKESDPINIKPDKDMYVIAKGLKNEAHNLEIHKRTEALLGQLQFCGFELSSGGRFLTPPSEKARKIEIIGDSITCGAGNEGVYSGDDAEFLGKEENNYMSYGPIAARILDADIAMVSISGSGCYQNYGGAKENTIGDLYLKTNLSTSYDEWNLKKWTPDVVVVNLGTNDFSAEIDTDKFKEKYKRLIKHIRNKYSKAAIFCSIGPMNLQPGKYIDSVVNELKIEGDSSIFYCEFDPIDLKDEGLGWGTHPTIKTHEKMAKKLANEIKLRLCW +>MGYP000873909662 FL=0 +IYYLETGANQRGSTVVYDRAASSVALAAAEEYDFRSALGGVARVHVTGITPAISENGFLATRALLRLASQQGAKVSCDLNFRKKLWRWRKGVPPGELARQCMTELLPMVDLVIGNEADAEDVLGIKAEGTEVERGRVSAEAYVEVARGIAERFPNVSRVAITLRESVSASHNNWGAMLFDARSASAHFAPLDGQGRYRPYEIRNIVDRVGAGDSFAAGLLYALDSEKYAAPADAVRLINKGALVIDVRDPAAFATGHIVNAKNVPLAEIESGTEVAKKKNKVLVTVCDRG +>MGYP001229117954 FL=0 +NREAKLPPRQELFECNLAVAADIELGHDQVLLLRLQLVPHVPAQQLQLVGVERDHVHAVGAVRLVGVALAEGADVDPPQAPRPLDRARAFPGREFGPPLEDLEAAWVVAVADFLRPARDSLGIGEALNGRDRERDRRQRAPAALRKEVVTPSADLLDSEVLVAWSAELPDLTLLRA +>MGYP003486854474 FL=0 +ALGLSGERAGRIDANLAEHRLRDRTLAEEAVQDAFLRVVRHRQRFDPARRFAPWFYTMLFNLCADHWRKAARYAARLKAFVPEIDTVQFAHNFRCHGTHPWLAHKMAETDRISAVX +>MGYP000004611563 FL=0 +SDSPASASQVAGTTVAHHHAWLSFVFLVEMRFHHVGQAGLELLTSCDPPTSTSHSAGITGVSHCA +>MGYP000261681696 FL=1 +MDFEQFYQDKYPAGVPRNVDLDKYTSMVDVFDQAVKKFAERPAFSAVGATLTYKDLDTQSRNFAAWIQNRTDLKPGDRIAVQMPNVSQYPVIVFGAMRAGLIVVNTNPLYTTREMEHQFNDSGAKAIVVLANMANNVEKVLPHTGIEHVIVTEIADMHSPLKRTVMNAAVKHLKKMVPAYNLPQAHKLPAVLSAGSKEKFSPVECKKDDIAVLQYTGGTTGTETECTRFRPYDRGYHFNALLLIDNIFHSAKDFLHLLG +>MGYP000082023964 FL=0 +PFVPRRMPDGSGYELMMLEPELAPPLEDAETTARWIERCLAGSEPVPASLKIQMACCLVATGESASLAEGLARVEQSF +>MGYP000378578682 FL=0 +MEKMRFSISSSPHIRQSQTVQSIMRDVVIALIPTAIYGVIQFGYQAALVMLSGVAGAVLTEFVGNKLTGRPVTVTDFSAIITGLLLAMCCPAYVPLWVPFIGSVFAIAIGKLPFGGLGQNFLNPALVGRAFLLASWPALMTHWAPADAVSAATPLAAYKATGAMASYGDLFFGNIPGCIGEVSKLCILIGAAYLLLRHVITLATPIGYLGGLALMIFAFGGQDGLFTGDALFAILSGGAMFGAFFMCTDYVTSPVTQKGQFIMGLGAGILTALIRTFGGYAEGVTYAILFMNVVTPLIDRFVHPKLYGEADRKSVV +>MGYP002628574471 FL=1 +MKINFHHPAPEKTPRIWRSLRELENDPEFEKHLHTEFPRGADVYQDSGLSKRDFIKLMGASIALAGVGLTGCRRPESYLVPFTKGVEFTIPGKFLYYATSMPARFGAIPLVATTSDGRPTKLEGNPLHPFSNGGTDTFAQAETLNLYDPHRSKQITENGKPSSREAFDAYVASVAQSDGSNLAILTEPSSSPTRARLRAALQTKFPKLVWAEYDPLAPTAANAANEASFGSSVRLVPQFSRADVILAIDSDFLNPIETGIGYAQGFSARRNPEQKGASMNRLYAVENHYTVTGGMADHRLRCKISETGEFARQLGLALAAATNNAALAEVANAFPASQTSIDPAWIKECAADLAKNAGSSIVLAGPMTPAPVQVLVNAINNALGNIGSTLLPVKADLVPAASIEDLAAAIDKGNVKTLFLMGVNPVYNAPANLGFKELLSKVPDTVHLGFFEDETGTASRWHVPAAHFLESWGDCRTFDGTYTSVQPMILPLWNGVSEIEVLNILSGATAPEGPSLVRETFNAIAPQATAESWNAFLRDGFLPESAFQQIQPTFNAATASGLAKKGAPAKADALELVFLQSSSVDDGRYANNSWLLETPDFVTKVTWDNVLMVSPATAVRLGIKTNNFGLLGDVAEKMGNDVNYDLIGDIVELSDGKSTIEAAAIVAPGHADDSLSIALGYGRKGVSALMDGVGFDAYPLRSSNSMRFLDGVTIKVTDRNYPIAQTQEHRSMEGRDLVREGSLERYAKDNAFAQTMGMDSHIPPNISLYTHPELNAKDQWGMTVDLNTCTGCNACVVACQAENNVPVVGKDQVRKNRDMAWIRLDRYFAGDSSDPEMLSHAIMCQHCENAPCETVCPVNATVHSEDGLNLMAYNRCIGTRYCANNCPWKVRRFNYFDYNQRPIDELYWGPLAKKGMADSLKMSKNPNVTVRMRGVMEKCTFCIQRIEEAKISRLVEAGPTPASDTPIAPFKVACQQACPNDSIVFGNIADPKSQVSRMRKDPRGYVMFKYLNVSPRVTYLARIRNPNPKMPGADLVGMANGSGHHGDAHGEHADQGHVDSHSDHHTEPAAH +>MGYP000967004213 FL=0 +SSEGALPGNGRFFAVTRPALVDALDAQGGEHPT +>MGYP003580660516 FL=0 +MPIINRNIESPINILIIFLFITVSFYSNHKKSRHSGGNDGLRSNSIDSEFXDQSPSSIPGSFTALX +>MGYP003382547724 FL=0 +MRWVRFRENEDRVIRKSMLCEAVIRRKKRRMMPPFSTIFDQNAVTGITSRPRQRSGMVNLPCGRKSVTIAILLLVSWLNSLAGDAFADDVQSRRQGSFAAGGTDGKILQQHEASFQASDDGQENGSWQKAEFKAETKVTSLPQQPASFRSLLSGTPDFLNYDAP +>MGYP000595587323 FL=0 +NVTATDPATGAVVSSATQVVDAERVLGNVAVVSHPGTKGPRLEPALYAFDDWTITGEGVAHHPGQTFGPIACAQHTLSRGVLKMTAQFLPMDDNAPSGVDLQVNQGGQWVTVDTAELDTLSWTAGFRVPDWDDTVDQDCSGADLTDVDGDQYDAEAAGGGDCDDDDPEVHPGAIDIEGDGVDSDCDGVDGRGGGDDTGGGDDTGGGDD +>MGYP000311212580 FL=1 +MLTGVDQAKAVRALLPELPAENFIIEPLRRDTAAAMALAAGSIARRNPHATAVVLPADHHIPSTIDFQKTLHCAVQAAETSGSIVTVAIKPDWPCPGFGYLELGDPVERESGAVYPVVRFHEKPSAETASEYLAQGNFRWNAGMFVWSVPVLCEALQKTAPALFDFYTGLKQASDAVEFLNANFESVPKVSFDYAVMEKLSGVLAVEAGFAWDDLGGWAAAGKYFPSDQHGNSGNTAIQSIDARNNIVFSKEPNQHVALLGVENLIVVNTGDALLVCPRGQAERLKELVAGLPSDLQ +>MGYP000202157561 FL=0 +AQVRTLGCVGDCVAQASELIDQSALQRLIAAPYASLTDLIDLFRGLVAIGGDLGDEILVAGVDHRLQDFTDARIEELHAKHIFCVLNRRRQALAYLGGELGHQALAVGLGALPGSLRGQLGGQQRRADENADEAEGDDAAEDAEHDQQQRQAAAAADQVGLDEVVDAADHQQAPGGHEDGPAHRTLGQQPQRGPTPHQRRPHRHHGQQEGGRGQGWRAGYAGHQEADQGHQGLGQRRAEDAVHHAGDGAGDGGQQLVGQAAGQLVQDGARGQDQLVTVAVEEEGDEGRESELQQAAAQGLAA +>MGYP000361399541 FL=0 +MGAPPALCGRAADRPALRPSTFGLPLRRVPGLAPAAQRSPSRLSPALHTQRAARCLRVAVPVTGLAAARRRSAALHAPVHDPDAVRDAQRLLGEVHAQKLRELSVERADLLRCQHGADALAGPDAPAPAAVRVRHRVIVREGLDVADAAFRQIADEGGVEARGHGEADVRLELRRVVALDQRLGPLDDVAAERDPVEGRDHDVPTGAQLRADLTQRRRPIEPVPALTRADHVEALGAKRDLLGAPEHIIDPQPRLRIEAARRREQRLRDVQADDPAAVAGEAARHDPGPGPQVQDRLAAGADSLVGEAAEQGVWEPDPVLPVVLCGAIKVDLHVCLPVQCPALFNALPCSAPCLRGTAYQRGAVSVRGQRLLQGDVRLDAAQRLRLARHAARQLRRHAREDAAAAQKLDGADDAQELGHRGLVQHLGAGEVEDDPQRPQLDDLLEQPRRHVAGALGVEPTDDREGERALPDLDHRRRQEQQLLLFRGQRLQLPIEPLFIRDAVVGRAGHAGGVAEHHDVGRAEGVRLRAGEPVGADAADIAQDRDEEARADAQAAAGAALRAPFGVGLDVRDVQELRVAHHPAGVS +>MGYP003362107572 FL=0 +MSLFSKKTTQQPIPEEQRVEQAYLAGMTTLRDLIAPSSLEIFSNYFRLGTKFGRTLYVYGYPRQVHTGWLSPLINIDEILDISMFIYPVDTQIVLNNLRKKVTQLEATMNINTEKGRVRDPGLETALQDAEELRDQLQIGAEKFFRYGLYITIYADSMDELNFVQHKIETIFGQQLVFSKVASSQQEQGLNSTIPQLTDELQIRRNMNTGAISTSFPFTSADLTDGKGVLYGINMHNNGLVIFDRFSLENANMVVFAKSGAGKSFTVKLEALRSMMTGSDIVIIDPENEYQKLCEAVGGSYIRLSLNSDTRINPFDLPRVIDTEEADDALRANLVTLHGLLR +>MGYP001412591253 FL=1 +MTRISLPFAPQVRSGIPKSPCHSNVVYECVCEKKITVSLICAGGKEGFASPAAEPQSPVPLSHTPRPVASTLTCFPPLPLGPAHGRKDRL +>MGYP001520358773 FL=0 +IFANEYPNEFIGEAGTINGPNNIRKRKNKVPGALYIAITSLYLK +>MGYP002525796693 FL=0 +MNKKLITLLVALLSGSAAFPQVHKMERKDSSAVDRTYNLNPVVVTGSGHHQRLKSTATPVHVLSNQEISEQGISTFDGALTRMMPQISMSPNSMGTFLRLNGLGNKYILILINGQKLSGDISNNVDLNRINMSRVKRIEVLDGAASSLYGSDAIAGVINIITDQPTQNLISVTSDTRVSGHGQLTENVTLDIYKNGFGSYTSFSHDRADSYRHNDLEYVKGSDTETQQTIAPFFTGYRSNVIGQKFTYAPIEQLALNAGLDYSYKITDRPETRQDITGGTDYEMRYKGFRWNVGGIYKFTAKNSLQANFTVDRFRYGKQYDVKTKDYAVGDYVQSKKQMMMDGELKAILGLTKNSTTIFGADWRKDYLTATSGNIEENVYSLAAYAQHEHKLFKDFTATLGLRLTHHE +>MGYP001301746093 FL=0 +MTQEVQITRDQVLEQLREVYDPEIPVNVVDLGLIYDVQVSGKNEGFVQMTLTAAGCGMGPYIAQQAEWSISELEGVEE +>MGYP004005692463 FL=0 +GVAAHGPSRVVRDPEQASGVERALVVRLGGVHDILVAELFEHRLAAQYHQDLTLARRRPEHRFAVLFLDLDHFKVVNDSLGHHVGDRLLVEVARRLRTCVRPGDTIARLGGDEFIILLTDLAESADVDRVTARVQEVFEAPFNVASHEVQTSASVGVAAGELSYTRAEELLRDADTAMYRAKALGRSRTEQFEASMRVKALARLGTEIGIRQGLDDDQFVVHYQPIVSLGTRKILSFEALVRWEHPEAGLVGPDQFIQVAEETG +>MGYP001224191517 FL=0 +LNYVGHLRGYHDITESTNIDLGASYSYGHNPAGVINDIDIGRFTTKLFGVDATLRWRPLTRAIYHQFVGRSAVIWSHRQQFGGPQDRLGYYVPGDYQFARRWFAGGRFDHSDRVDDSAIVETGGSAVLTYWPSEFSQVRGQYRRTSYAEGVVANEFLFQFLFSIGAHGAHTF +>MGYP001086061371 FL=0 +AAYGAVFTIRALQQNTEDEPQPGHAFSFVTALKFALVLAAILLASAALREWFGETGVILAAAVAGFVDAHSAAISIAALVASGKMDAADAVMPILAGFTTNTISKMVFAGTSGGYGFALRVIPGLILVAVAAWAGAGTTRIGR +>MGYP000610080798 FL=0 +MSIGGLTKDKLSNFDKLSQPRD +>MGYP001730562506 FL=0 +LNVLHHSSVKYFISFPSIQDFEIIILKSVKKSTIILTISGKNRFSFCAFHPDILIEK +>MGYP000961376923 FL=1 +MKHHVENQCDEPRVSVVILNWNGRKLLEQFLPLVLEHTLGDEFRVVVADNGSTDDSVEFLQTLFPEVPLILLDENHGFAEGYNRALEQVRSEYVVLLNSDVETTPNWLQPLVDFMDNHPEVAAVQPKLLSYHQRDHFEYAGAAGGFIDRYGYPFCRGRILEEVEEDRGQYDTVIPLFWATGACLMIRKSDFVENGGLDGRFFAHMEEIDLCWRLNARGRKVMCVPSSTVYHVGGASLDKENPKKMYLNFRNNLLMLYKNVPRTRYFTTFAVRYFMDLLAFVHLVMKGNFKNARAVVKAYVDYWKMRPSYKQVRRENLAKTLIEIPTQYPKSILMRFYTGKKTYQSLYSK +>MGYP003987264985 FL=1 +MEDIKKAIIKAKGEGNKHLVQRLQQELDALQEISNNLDWPRYEKVIRKLEDKPDMEDFPDGPKKNNS +>MGYP001575371671 FL=0 +EESALDTLPGLAALCNALSPKLVSGAVELGAEGTA +>MGYP002783228703 FL=1 +MSDEIGRLDIMVEAEANRANRALGGMEKRLNRIADSLEKVTALTAGINGFDKFDLKGLESFRKELDSVFKSSSKKSVKVDDSDLKYAKKSMDELQRQYKNAKLEVNISTIGEEELKKFINQTERRYRKLKQTLADTIELNGSDMVGGKAWYKANMQLMQYENALDDATEALGRMKSMRDRIPEITIDRGETYNNDTDIPEYPKIVEIGNCEQYDASEIEEYINNFAGARKEANTFEAQIKSLKSELSDLASQGFSQYDPEYDSVARELAEVTIAQKQYNKELRESARESLGISNSERSAEAMKKASKQAGVFKRTIDGIKSSAKNINALKRNFDNVSKSIRSAIKLSKSALHPIRSLKQVISGDGGNRKGMSWGRMIGSSVLFSFVFQGINAIQKAIKEGSDNLVKYSAEYNYSISSMLSSLLYLKNAFAAAFSPIVNVVSPYISQFIDMMASAANAVGQFMAALTGKGFAVQAKKAWKDYAAGLDTTKDSAGDAAKAIKDLQNYTLRIDELNVLQPNDNSSSGSGSGGSGSGGADISPSDMFETVEVSNSMSKLAEMFKEAIANSDFTEIGRMISNKLSDELESIDWQSIYKKADNFGKDLATFLNGLITPRLFYNLGKTIANSINTAFHSANAFAINFDWSNLGDSLASSVKGFFENWDAKLTGETFSNFVKGVLESITSFVNSLNSNDTFEDIGQKFVDLLCGVDWAGLTWDMGKFFKALSDAMTDFPKDFSKGVAESILEHMFDSEFSDGMKQKFNDSIQPLNDIWDYLFSSLNPAINAFKIMDFVRETVSSKGQNILDFLSDCWESIKIIFSPVVKWFKDTFSGAYEAIKSPFEFIASWFGEKWTAIKGVFDKDKVRNFFKSAFKAALDAVKNIWDGIGDYFKKIANHIISPIGKAVNGIIKGINWVLDKVGSKKPPLDLWEIPKFARGAAGLPEDTIGIVNDQKGSVYKELIVPPDGKPFIPEGRNVMLPLQKGTKIMPADETKALMSAFPHFAGGIGDFFGNAWAKFKDFTGNVLDYITHPNKIVQIALDKFVDISNMAEPISSIAKGTVDTVFDGIVDYIKGIFDSETTVKYNPTAGVEQWRSLATKALQMTGQFTESNLSRMLMQMQTESGGNPNAINNWDINAKNGTPSKGLMQVIDPTFRAYAYPGYNANIYDPLSNMLAAIRYTVSRYGSLAKGWKGHGYASGIGKINFADFLPQLAGGGAVKSGQMFIAREKGPELVANYGNKSFVMNNDQIVQSVSNGVEAAFERQNARTNALLQQIAECQKMLIHKDTSVNIDGKKADKQLSKARKNSGYSFSPA +>MGYP000278592768 FL=0 +RPPRSTLFPYTTLFRSRKVMAYNDQVMMCEITFEKGAKGNFHTHPHIQTTYIVKGSFAFTIDGETQVVNAGDSILMPSNSLHGCECLEAGVLCDVFTPMREDFIKK +>MGYP000014633898 FL=1 +MSDGKKILITGGAGYLGSVMTPLFLHAGHSVTVLDNFMWRQSSLAAVCHHPRFELINGDARTESTMKPLVNEADIAIPLAALVGAPLCDKDPIAATSTNLDAVRMMLDMLSKDQWVLLPNTNSGYGVGEGCCVGKLGVPSREPAPSVGTCGGRGRRARKMKPVPTSRATMKLMKAIW +>MGYP001266816030 FL=0 +MEHYGKKLKFRPLNYVFILL +>MGYP000960759586 FL=1 +MRVDPVTQTTMARMMDHAVLNPAMTENDIRRAAAMCRARGVGNLCVRPTDAALAASLLKGSATTVAVVVGFPHGASRSEVKALEARLAIGDGASELDMVMNIGKFLSGDYEYVKRDIEAVVAVAKPQGVLVKVIQESCLLTLDQVAKACELTIAAGADFVKTSTGFNGDGATVEQVEVMLKTCAGRTKVKPSGGIRDWERAAMFVRMGVDRLGVSSTDKILDGAPTEDGC +>MGYP001420375246 FL=0 +PEQLAGVLSIVARQSAAAKGQPYDEEADTAIRAAVEQQIEAESLPVFLSGRLYDDGVIDPRDTRTVLGLCLSAVHSAPVEGVHGGFGVFRM +>MGYP003296810821 FL=0 +CQGYFTEERGDCYGGNFNIVKVIIESPIAPTSCEGLFQGLTACKVIEGIEKLDTSRATSMEDMFASCFKLYNPDVSGFDTSNVTDMSGMFTSCHAITKLDLSNFDTSKVTDMSKMFVACHGLATELNLSSFIFCYF +>MGYP002731676114 FL=0 +NTKALRQKILDLAIHGKLVPQDPNDEPASVLLERIRAEIVEGVTTEATNALGEKVQMDFAANRTSLPMDLRAAEVQENAIQENQNPKKFVVHSGANENRKTLDSKKNL +>MGYP000800539561 FL=0 +MKNICIGLFEGETLPESLAAFKDVKLDLEFGKVTTIYTLHQLDCEKVVVVGLGDGKKNIKEAFSKVEADDYLAYVTENTAYAAGFGLVYAVSYTHLRAHETDS +>MGYP000365574991 FL=1 +MNEATYISELGEAIYPHLNKPDVKFNENGEYKVILKVSQGRATKMVAQFEKAMQDSISKAESELKGKTVKVAPSPYSEEGGFVNFKFKMKATGVNRKTKEPFSQRPALFDAKKNPLNPTSCNIWGGSKIKVAYQLRPYHTPLIGAGVTAILKAVQVIDLVEGKQMNLFSKEDGYENTTSPEEMNNVPETEVQTSTDF +>MGYP001556904936 FL=0 +SLTEILITVFLGFIGFVAFIGFVAFIGFDRLLGVFRPLLSATLQPSYHPCITLGL +>MGYP004044994415 FL=0 +FSGSGFLGENKKFKIIKPILRLKATKKKIIIDKYSFKKSASILYVYLYSTFFYTYRREIDAK +>MGYP000469735265 FL=1 +MFHVNLICKRCAKTVSYTHLRAHETG +>MGYP000883239672 FL=1 +NPEAIKKHKGIIANPNCATIIGLVAVNPLHKAAGIRRITGQAIADI +>MGYP003386468952 FL=0 +KLLSTNALDGIELPPKGEQIPKALYSVEEIEKF +>MGYP001795370918 FL=0 +MIGIVLYLELKLISEANKSSNIVFELLMSASQISIWAYMLQGTYPTATNIIHLSQLVMVDRGKGSQ +>MGYP000051665382 FL=0 +MTDPAALAREYYRTIDADEYDALADLLAPEFVHARPDRTLSGRDRFVAFTRDERPMTETTHVVETVYDVGPGDSGSVAVRGRLLDADGAELFAFVDVFTVRDCHLTRVETYVSAGTETG +>MGYP001510798038 FL=0 +MVKFKYSKAWWGKTSYKIIGLHEQLDQELLNFITTIQNQESSTVTALENSVDLLISSLNSCIAKVGLNQGTIANYESNSFYTDKDVYALANISELFYQQHEDNKDVYDAICEAEQNLKAVSYTHLRAHETV +>MGYP003638701188 FL=1 +MAKRLPEFLPHKYQEDVIQEMEDAGVLALLLDPGLGKTSIVLEYFRRQMDCMAATRMLVVAPLRTCWGVWPQEVQKWKGFKHLKVHVAHGKTGKDAALCNDADIVVINPEGLTWLEGEMKAKRIERFDVLAVDESTLFKSGSSLRTKTLFRIAHKHQGGIPNRFILTGTPAPNGVEDLFGQFAILDPDVLGKTLTAFRTNFRFSASKRPWGMVWAPSVHTAQLVQDAIRTHSVRLEATDHLDLPDLIQVQREVVLPKGVMDLYKELQAEMLVNLDGNTSVVAVNPAVLSAKCRQVANGAVYVDDNGEAGDSSARRIEYLHQAKVKELAQLFDELGQKPLLVAYEFRHDLKQIRNHMKASYKLDVPFIGGGSSGEETAQAIDDWNAGNLPMLLVNPASAAHGLNLQSGGSHLCWYAMTWNLEHYQQLNARLWRQGQREAVIVHHLLAKDTVDLVVWEAVQRKDATQRDLLLGLKRSKS +>MGYP001045944336 FL=0 +LVWRSYRPYAVGQSRRDATPPCPSSKNHDELLPSSTRNPKRDELLHPSSRNPMVCA +>MGYP003142759631 FL=1 +MKKARNIKNKKHNQIVNDYDKIKSRHLEKLANKILKDEERRDNLRSKDIKGDFLKNF +>MGYP001277206801 FL=0 +VAAGLAGGLLDEHIAYVTSDESFRTPFARGYVVVEQLPYREKALKAALRERGVGRLAIKKRGVDVIPDQLRKRLDLRGDAEATIVLTRARGHGIALLVQPF +>MGYP000667709688 FL=0 +ACTDITGFGLIGHGLEMAVASQVGLVIQSGAVPVFPEALDYAKIGLVPGGAHSNRQFFSCKVEVHPGVPDLLLDIFYDPQTSGGLFISLPRDGAETLVQRLKDRGHVNTAIIGEVVPEPKGKIRIF +>MGYP001758919174 FL=0 +RDSVASRGLGDVYKRQEVVKDE +>MGYP003402598952 FL=1 +MRHGNKNNALGRKKAHRDALLSNLAISLIDHKRIETTLAKAKALRLYVEPLITKSKDDTTHSRRVIFSELQNKEATAALFRDVAPKVASRPGGYTRIIKLGNRLGDAAEMAMIELVDFNTTYTKEKSAGAAKKTRRTRRATAKPTTAKTDGGDEAKSE +>MGYP002859056165 FL=1 +MANKIMKFFHEEFGNVRGRYIGGECRFAGKDVAQALGYKDTKSALADHVFDDYKQVFNAKTIRQMASQSKGGETPPLETTSPRGMIYIKEPGLYQLIFSSKMPKAIKFQRWVFEEILPKMRREALREEARAEGKRVRRELTDVIKSFIEYLTARGELDRAEVAWYSAFSNLVNKMTATNDKRDNLLMLPLLRLSDCEDILTDAIEEGMAEGKGHHDIWLACQGKLDAWRQLTK +>MGYP003351460330 FL=0 +MAGQMDTMPGERAGRREQNKAENRAALLKAARSVFAEIGYNAAGVRDIVRRTDLASGTFYNYLDRKSTRLNSSHVSESRM +>MGYP001464310971 FL=0 +QALDVLLLRAGEDGAGGDGHFQERAGLVRVDVLEGLHGDLAGFGALGHDVHNLAAHQALGSHALAHVHDDPQGAFGGHGLGSLAADVLERVAEQRVAREDGHLLTIYLVVGGLASAEVVVVHGRKVVVDEGHGVNHLERARGGHGDIHSPAHEFAGGDAEAGADALA +>MGYP001323269287 FL=0 +VGDRGGGTSSPSPSAPPPMAISPRSTARGDPGEEPGTVSHRLTPGTAAPLISPRTDPAPRRGRGRSAAGAGGVGEPEEYGYPCGGAGGVGEPAKCMGIPLEGNAGAERMINPPAKVLARRRTGLCRTPPVGIYLNPVQKVHYYWLQIISCNG +>MGYP003154234093 FL=0 +DDPIEGSYEALEQISKKYTIIIFTTKAKSDRGLVNGKTGTELVWDWLKKHDMAQFVSKVTAEKPRAVAYIDDKAVRFENWKDALENVL +>MGYP001373085551 FL=1 +FCIHTTGSAFDDLRKLIESGGGYTPAWKGRIRGKETAIVPVTMYTYFIIGLAEKPLFMGQVELAKRLGMENDFILANLIKAQDQWIIDIKGNSSLYGSFINNSSRNEKDILIQWLEKT +>MGYP001489405527 FL=0 +VTASSAVPVVFDPVVVENYAACSAGLPSWLEAARSRQSMDANLRMVVADDAAYADKTGHRYAHFVDGGITDNLGLRALLETVEVIGGAQEYVAQLGMQPPRRIAVISVNAAADPRQGIDASRQQPTIGQTLDAVTNIQLQRYNTDTLQEMQQSLQRWSKALSTPQWQVQNYFIRLSFEGVPDLPLRRFL +>MGYP002718885158 FL=1 +MSLILPNSKGKSTLVNMIDTPGHVNFVDEVASVARLVDGVVVVVDVVEGVMHGTEAVIRHAMQEKLKIVLVVNKMDRLILELRLPPSEAFFKIKHTIEEVNSFIA +>MGYP003566853254 FL=1 +MKYIGVKRKKNRGNRYKFVVDIHVNGVRYFFGNYDDPKEAAKAYDLLVIRKGLDRPTNFFKKKLV +>MGYP001092313238 FL=0 +TYYKVMNNLASRTDEELVVLYSKGNNEAFDILLNRYKNRIYSYIYYIVKDRELTEDIFQETFVKVITTIKQGRYVETGKFPSWISRIAHNLIIDYYRQEKSENHLSNDEMNPDVFNRKELSEGTIEDSLVQTQIQADIRKLVAALPDNQKEVLIMRYYKNMSFKEIADATNVSINTALGRMRYAILNMRKMAEDHHIELSL +>MGYP001474034502 FL=0 +AKAALELVQAKDFKGLVALARKHADSIAEKALDASQSFEAQVLAQKERLQTLARAAEAPAIPPRAMIPTDAKEPADESIRLAGKFDELGAVVPRGVLRVVSAERVAIPSDHSGRLELADWIIDPQAGAGRLTARVLVNRLWHHSFGRGIVRTVDNFGRTGEAPSHPEL +>MGYP000079457881 FL=0 +MSSTSRDASAVVAGPALEAVAAELEAQGPLAVLSWAFETFGPGVAIATGFGVEGAALIDMAARVNPRPFVFFVDTGFHFEETLALRTRIERRYRIEIRAVEPDLTPDEQADAYGVRLWHYDPDFCCSLRKVEPLERFLAGRDAWVTAIRRDQTAARATARTVEWDA +>MGYP001330772963 FL=1 +MQVPEDIGVNEINIFLLLPSPIMLIGLTGRNASGKSTLVEWFSEKGMNSYSCSDSIRAWLREQDKEITRDTLIEGGRELRRQGGGGILAEMLIEILDGEDAVIDSIRTPAEVSVLRSRGDFFLIEVKASEEVRWSRLQERARPGDPTEKNIFLEQENKEIKAKDSAGQDLDATAKMSDFQIFNDGSVENLYTKLDDLWEKLHNSKN +>MGYP002627366002 FL=0 +MTNQVRPESMKRITTTELAQAFIDEQIIELKKQVGNGKVLLALSGGVDSSVAAVLLNKAIGKNLTCVFVDH +>MGYP003117035852 FL=1 +MSLLRNSVIVGGATFLVGSAFMEIGKADSKSDIGKWPYVATFLSGALGFYLLKQNVIPVPKALELNADYTDSDLSHFGKPLEDDEKFTTMQVRIGSPSGSTTSWTTAFNLQCVGDDDNLTYFTGLLEDSVRDRVRKWNGDELGDFIPMQIVIGSPSGSTTSWYRAFTVQPVDVDEENLYYLSGEIQDLLVDKAKWWNGHEVIYDAEIEYDGAKSYARSLDSKFDGANDEGYFPVDEDDFSEMVVDEIGEHTTLDAESFDADSLKGRWEEGTTRIVHGVSVTKSRYGEYEKPQYRASYNGYSCRIFYEGVAFYLPCWMYHGYGGVGRGGCFKNPMEAILDFKRRAEGGFQQISHRKDFDADTSLLQSFAAEVFMADRKIRRRTRWTWTRGNEKGFEIENDDLSELPYNIDYTAYTGRGYYRNSQPMYSIDEAYYISDLPEGYHLHLYKPSVRSGEWRAFSKSPTSEDWNEYRNYKKSNLTGDLLNWYNQDIAQPEEKTLSPIEKLMISKGMKSGTVQIERVVIPKTNYTPEKVQYFALGGPTNMSPTKFCEIEGGVIALENLRYEDEPNLFAFGQGLKFMTEKAGTLRSVNRFNKNPEAWVKSYPAWFQNAVKNKLTDIDVQFKFYQEHDGGIRINNIRVLKFLNGVDRLSWRPINESERKMMDTPYGEMPQFEIYELDMSDPAPITPRPSTMRKIYGKSFKQNLNGEWKFDKDMFMMAVVDKYKFENGGSERVHKSMVDEPLYSIDIIPYMTPMAELMARRYKKKE +>MGYP002788159078 FL=0 +TQTLIRDTARGFAERVLAPQATKLDREGGFPVESLAQAAELGLLGIAVPEELGGVEAGQQLAFLDLHAF +>MGYP001798696378 FL=0 +MLTGGEMAVSVITIQTKDIKAETKETHPNHYQKTNLXCHWSXKWRHAVKKTSCCMX +>MGYP001406754757 FL=0 +MRPLGSMCAIEYPAIPLPVFFLLEMMIPSSFDWSFTNRIILKFFWLRFGPIGARPPALVLRSLLAAPGDDVDRVGSPNVSSSPCP +>MGYP000997370353 FL=0 +FECGICKYLEHVDYRDLFLFRFGLVYRLWWFSQVESLVTDLHDVFGLDPGSLALAQSLRRAERLLSGTVLWAIGEGLQFASVVALIVSFGLGLSATIHFLNRLRLENTPDTTAEAAVEKATVLVGPALILTTVVLACGLVVTVFSDLPSLRLFGWLSAFSMVAALVADLFILRPTSMWLIGMAQKIRGRGADGKAI +>MGYP002214501719 FL=0 +IIIHVIFDKNSRANDVYKKQISSTTITTTATKKKKILVTTGIDSTSLFYNQGKGGNSGTSGYIAILAAIDAL +>MGYP000390568609 FL=0 +PISCFLPCVCFLCVFFFGGGVGGGSSILLAKKLISLKFAII +>MGYP000957035233 FL=0 +MSPLAAASPARPAIEPRGVVIAVRGSVVDARFPRHLPALRQQLHAGRDRSVVIEVSDHLAADTVRGIALTPTQGLARGDPVQDCGGSLTVPVGPELLGRMINVFGQTIDEGPALADGERRSIHQPPIPLAQRRVGLEMFETGIKVIDLLCPLERGGKAGLFGGAGVGKTVVITELIHNMVGRYQGVSLFCGIGERCREAEELYREMREAGVLLSTDGPFDNVLKIKPPLAFGKPEADMLLAALADAAPVEAELLRG +>MGYP003548451047 FL=0 +VARAMGGAVFLLMIAAGSAFDLVTQNAALSIGLGVTRETLFRVALGCGLAGLVLLTYAFVRSRLRNQSNDAQLAELEDEYADLLDRKNSSSEND +>MGYP001276729923 FL=0 +AFAALSLQSPPQRQTLESIPESMNECVHESMDDSVNE +>MGYP002536854477 FL=0 +MADKIRVLLSEDEVNKRISEVAAQISRDYQGKEIHLICILKGASFFTCELAKRITVPVEVEFMSVSSYGSGTESSGIVKIVQDLSTSIEGKNVIVVEDIIDTGRTLSYLLENLKTRSPKSVRLCTLLDKPERRVVDVKVDYVGFEIPDEFVV +>MGYP000601791154 FL=0 +MPALRHMSQTYALCANTSLHRRSWLVRSNTAGLLKRTAPERKKSNGAVPPKRSTSSKNTLLTRVLLGRFPMRPVPQSASSCGLASWTGQYFPSCSPRVCLGASCPRFSVTFIIEHFYLSMACQIDRVKNRRPFPARETRKTLLDRTSASVLWSS +>MGYP000636477196 FL=0 +MNTLNVKLSHSISQLYETLCQVGKSTFAELQRATNLKTRSPVWLYARSCTTTKYIRHVSAIPFITLLNNVLHRKFDLTKPDHRIKQANQRVRDKSCGRITAGTILPFPNRDARIVPSNKGTSGVSHWLPFHKAILAIDVSVKTPSRMIKISSASPF +>MGYP000562867999 FL=0 +NSFFYGWAFGFGYFFSNLYWISISLTFDSNFKFLIPFSLFLIPAFLALFYGFISFLFFKINLRSTLTSFFLLTLLFSIFEFLRGHILTGFPWNLIAFSFSNYPKFLSIISLIGTYGFNTICISLFLIPGLLYLRNSYINRFVCGIFFLILIFFNVYGNYYSNIFLNLKKIKLDYQIRAIASNFEIKKFYNNFSTEEIIKELIDISNPSTTTKKTLFLWPESIIPGVTKEQFQNQNVGSSINYFLLMLNIYALSV +>MGYP003365983449 FL=0 +MLVAVAPLARMLFIALLEPASIAWLTSTALGGQLGVLCWG +>MGYP001155155630 FL=0 +MLMVNHALSLVAECRAEARAVFMVFSFCFLELYVVCVRACASRGWLLSSPLGIGNE +>MGYP001568236931 FL=0 +MISSQAGQQSSPVEWVSAPELGESMFYMVQRTPDAELLLTPNEAFFPKLGLNAGGEGEFPLEKPELNQNKNFKWISGWDPGDAAEWGLWVEKPGSLKVSVAMDGAEGSYLLSLSGEEKKLSGKVVSFNVRKPGMHVLRITCRADADAEKLHALKLSGSAVENAGLLRKRWRPSAAHARFSSSANPKDVRLVIIEMDAKPGTLGFYAPITTPFGYYGPTWKADGLVNTGFNFSLWSYGRGKEEPPVERLSHLIAIGDPTAEFSGFGHEGTGVKIRGW +>MGYP001201323188 FL=1 +MYTTFTQITPAINLRRRRTLSAAGTVMVRLGQKVSADDVIAEAVIPTRHELVDVVRLLGLSKRKTADTLIQRKIGDTLAEQDIIAETGGLFSRVIRTPAPGKIISIRDGQVLIETETRKVQVLAIYSGVIDEIIANRGAVINTTGSIIQGAWGNGKIAVGPLLCKAETSSSNLTQADLEITARGSIIASASCSEEKLFDLAAQLPIAGLILGSMPAALIEKALAQPYAVMLIEGFGKSGMNSAAFKYLSMYNNHEITLNAGVDNETTEHQIEALISAAVEGEIGRGQSRVTSGQTVRIHTAPFLGQSGTIEKVLPGLTLLPNGLRVCAASVIMDNKDRKTIPVNNLDGIGFTQSNLG +>MGYP000016403168 FL=0 +LQTVEQIALMLPLCSDLKYRFHYIGNSFIALDCFCAFY +>MGYP001020068561 FL=0 +DFVKVCRHAGIAAEAGVQLFFQELAHIQIHIAARRRGLPPQDPAPRRAHQFAGSFMAEPHPTSAEEDLELLRASAVTAGIIAAGYFRRDLKSWTKEFGSPVSEADIVLDKFLHSALTTARPDYGWLSEESVDNADRLGRNRVFIVDPIDGTRGFIRGEDSWTVSLAVVENGIAVAGVVYAPARDQMYEAFAGGGARLNGASLQRQQEPGRRAPLIPAPGAVHQELQAAGLDYTRGPAYPSLAYRLVQVASGTLDAAVARRGAQDWDIAGAAVILAEAGIAFEDVCAGAM +>MGYP001126300050 FL=0 +WMVWKEKMMLNWFEKSNRQIYYGILITVSFHIFVVAFQ +>MGYP001386794033 FL=0 +PLGGNAAVALLDAAMERQAALIVEWMRVGFIHGVMNTDNMTLSGETIDYGPCAFLDAYDPAATFSSIDRQRRYAFANQPPIAQWNLARLAESLLPLIDEDENKAVEIASERIGRFKPLHEERWKAMMRGKLGLAGEEEGDATLALELLEWMRASRADYTNTFLALAGRVVEGGNAPLPVGTDAWNLQRRARIERPEGGGGAAHAPGGRHNQR +>MGYP002527839631 FL=0 +KAFERTHQMYNLGIEGLPYELIINSNPSIAYLMKQNPLHLQILIMAHCVGHSDFFKNNRMFKDTRPDSSVSRSRNARKRIQGYSEDPLIGRKKVEKFLDVLHTIRFQTERNGRKRNTRNDIKKGLIEEYNRNRSSGKNIPVPDLDRKLLHQDDDLLSFFIEYGNHFSD +>MGYP001804104866 FL=0 +MLTFPHANTLLFLGIPTYYVSFVPCAWHVCDMHMAFVHFRDWVXKRQNRTHXQKRRLLYSLVSTSINLQXHGRGXWTLTIDSSERLLXDRVLLNKAEQGRXVQCXKSYFFX +>MGYP000506167729 FL=0 +SKETMDKCPNLKAIAVLATGYNVVDYEYAKAKGIPVMNVPVYGTDNVSQFAVSLLLEVCSHIGHHNESVHKGEWASNADWCYWHYPMIEVSGKTAGIIGLGRIGRDTASLCTGIGMKVAGYDPFLTKEQIEGMGYEYYANYEDLLKDCDVISIHVPLTKETENMVSAKQLKEMKNTAIIINCSRGGIINEADLIEALDSGEIAGAGLDVF +>MGYP000552990992 FL=0 +GGMHEKFLNLRTKIQMLGGGFGNVQGGNLSFYGGDSNLGNGGDLLLAGGPTVSGDGGSIAFEGGIGEEGVGGSINFSSGQGVDLPSEGEINFNTNYKPVFFNTAGNKYKLLTTTQRDALPTTESLLLWNTSTKNFNWYNGTSFASPITDLDNAAGDVTGLFSNLQLGANVVTNIEVADNAIGSAEIINSSITNADLAPNSVTSGA +>MGYP001062954301 FL=0 +IYNECHIDKLDSYQGYTVFVDDYDGYVTLYDELKDKRIGIHLFFDSIFDINELKKINVIIKMIIIAMSFILIIVQVWLELKMPDYMSEITKLVQTKGALMSDILIQGGYMLLCAFGSLVSAIIVGYLISNIAASFSMRTRKSLFEKVENLSMEEVKNFQASSLITRTTNDITQIQMFIAMGLQLLIKSPITAVWAVTKILGKNLTWSMITAIAVVILLVTILVLMIIVMPRFKIVQNLIDKINGVTRENLTGIRVVRAFNAEKYQEDKFEKVNNDLTKNQLFNQKAFSVMQPVMYLVMYFLTLSIYFIGAGLIESANMTDKISLFGDMVVFSSYAMQVIMSFLMLAMIFMMLPRANVSAKRVNEVLDTVISVKDGKGAKAKEVGTVEFKNVSFKYPDAEEYLLEDISFKAKKGETIAFIGSTGSGKSTLINLIPRFYDATKGEVLVDGVNVKEYKLKDLYNKLGYIPQRAVMFNGSVSSNIAYGENGKGEITKEKIKDAVKVAQAEEFVSKMENAYDAHIAQGGTNVSGGQKQRLSIARAIARDPEIYIFDDSFSALDYKTDSVLRKELKKYTKDATILIVAQRIGTIMNADKIIVLDNGKCAGIGTHKELLKTCDVYKEIALSQLSKEELENE +>MGYP000237869789 FL=0 +GGGREKNTERSGRVGPNGPRVQLRFRVTSSGVTRIKGLTFNDGAREIFSRNSLRPRLPPPIFVSPSVSGA +>MGYP003956841209 FL=0 +SDISSIELLERARAVIPGGVNSPVRAFKSVGGSPVFVREASGPW +>MGYP000266856341 FL=0 +MSDCNLDKRITRRQFLTFAGGLTDAGFGALPRWVREASAQAKQGRKVLIVLFQRGAADGLNIVPPFNDEVYRKARPSIKIEAPIAGSRTIDLDGKFGLHPKLASLMPLWKDNRFAIVQAAGSPEETRSHFDAQDYMESGTPGVKVTEDGWLNRALVSGKIPQDPMAAISVTARL +>MGYP000179581380 FL=0 +MYFHFTVILDIIKELWADFFRKHHVRPIAVGLQPVKQGAKIGAPSVNVQRKYGILPRCFISLPALICSMFRI +>MGYP000648191730 FL=0 +IGIEKTNSGSIFKGKEDITKADPSKRGMGIVFQNYCLFPNMTVLQNVMYALNIKIKNKDEARKLSLEMLELVKMEEHKNKYPHELSGGQQQRVAIARTLVLKPDIILFDEPMSALDADNRLTLRKELKNIQSKFKTTMIYITHDQEEAFSLSDRVMVMKDGNIVDNLCATIKLVLPSINFRIRCQ +>MGYP001537497899 FL=0 +AASDVYKRQICKQAKNLFLEITIPEQKAYHVQTMLETSGNFQHSWQKFPA +>MGYP000667005491 FL=0 +QGQEHPADTAPRQAEQTGAEPDVRFYAVELDRGSQIAYGVWDDQNDRIYVDDEGVSEEFTSRWQAEEYARQLNQVNPLARYYGEGETILIRQYPNGQYYVQYCYDDQDNTVYATAGGFDTFEQAEAALYTHRPKAKKDPIAAQDLAYRQAAEYWSGDEHLVIFREPNGTFCNQYGFISGRVTPTTGSFAKLEEAEKQLYADRPLAQKVQAREKPPAHAPADRDEAERRYQVVVYHHLENGMDEKLEYATPEEAEQAARGYLEGTMEPDGFAYEGTAVYDLLEKKWLRVIGDFPTPEPPAAKEEQPLPSREDTETAASDRDLLGKEITLEGRRFRVEKIDEDGRASLRDLTFEGAVGFPIERVEHISVIRRLMGPAEKTAGPGKGVESLADGHDQGGTEPPLAPQRRARVSPFVLHPEVPNADRHEYHITDDAIGTGTPGERFSNNVRVIRLLKRLEAEDRLATPEEQEVLAQYVGWGGLADCFDERHSKYAELKALLTEEEYAAARESTLTAFYTPPVVIRSIYQALTNMGFQTGNLLEPSCGIGNFIGMRPEALADSKIYGVELDGISGRIAQQLYQQSSIAVQGFEKTDLPDSFFDAAIGNVPFGSFKVIDKRYDRYNFLIHDYFFARTLDKVRPGGVIAFVTSKGTMDKDTPTVRKYLAQRADLLGAIRLPNNTFKDAAGTDVTSDILFLQKRDALSSEEPDWVHLNTDANGLKMNQYFIDHPEMVMGEMREISGPYGPETACLPIEGRDLGEQLAAAIQNIQGSITEYVMDDPEIEGEDKSIPADPEVRNFSYTIVDGKVYYRENSRMNPVEVSVTAANRIKGLIGIRDCVRTLIEYQTEDWPDQDIQAQQRKLNALYDAFVDKYGRINSRANSSVFSMDSAYFLLTSLEVLDDERNFVRKADMFTKRTIKQRVTITHVDTASEALAVSLAEKAKVDMDYMAELTGKTEQEVYADLTGVIFLNPMHGYGGGSEEKYLTADEYLSGNVREKLEWAKRSAELYPEDYTAHVQALERVQPVDLTASEIAVRLGATWLPTEVIDQFIYELFGTSPRSQRMIRSHYSQHTGAWNIESKFADRGNVKAENTYGTTRVNGYKIIEETLNLRDLRIFDYVEDEHGNRVPILNKKETAIAQGKQQLIKQSFQDWIWKDPQRRERLTRLYNDKFNSIRPREYDGSHLNFVGINPEITLRPHQVNAIAHILYGGNTLLAHVVGAGKTFEMVAAAQESKRLGLCQKSLFVVPNHLTEQWASEYLQLYPSANILVATRKDFETKNRKRFCGRIATGDYDAIIIGHSQFEKIPVSVERQRYLLEQQRSEVLNGIAELKANHGERFSIKQMERTKKSIDAKLAKLNDQSRKDDVVTFEELGIDRLFVDEAHYYKNLAAFSKMRNVGGISQTEAQKSSDLYMKCRYLDELTGGRGVVFATGTPISNTMVEMYTMQKYLQYHTLEEHGLLNFDAWASTFGETVTAIELAPEGTGYRAKTRFSRFYNLPELMSMFKEVADIQTADMLKLPVPKANSHNIVLKPSEQQKEMVAALGERAEKVRNRMVDSTEDNMLLITNDGRKLALDQRLLNPLLPDSDTSKINACADNVFEIWQRTADQRSAQMVFCDRVAIRCYK +>MGYP003718977623 FL=0 +SKQHVNSAGTNTRGDLSPLSFPPPAPQPFPLVAPHHQLNCQTPYNQGSLLESGDLQKKSHTVGLHLR +>MGYP001491601391 FL=0 +EDSFQKSSSLLKHGFLDAIIERDALNEKIGNLCSILLKKNEIETSDAQPQQDREFIKKTAASS +>MGYP002264516364 FL=0 +IRYNDVPADLRTADEDLIGGVQTHDHADGDDHLELAVLVVGILAADLGKQVGPAPAEQGNEGKPEPHVFFFLLYYVCVIFVFWIIFSLKGYKIKIKGKRFFHALFFIPSMLPIALMATVFGSMLEYKNGIVNQILRGVGLGALAQRWLADPKLAMGAVCSVSIFMIGIPIMYYTADLTTISRSILEAATIDGAGMKDQLLLIIFPVLKNTHKTIILSMLLGGFREMERVYLMTDGGPGGSTEIIGTYIYRATRSAGSNIGLVCAAAIIVLIVAFIISFIQLKMTSKNG +>MGYP001571232008 FL=0 +PLCEYEYGVHWFWPSAECAREMIDSDSEDDWNHSGVSQCEKDASVLSVFYQESMHLLKLDISIAEFVIKHSKGRSXXXXKFKRHQRACGSRFAASAQIIRTEWKCSPLLVAILRELQPCCQRRSEDFIETVLGRSSQLRFGKIDG +>MGYP001478861697 FL=0 +MEKNPSLILVVAAAMLGHDGRVLMQRRRHDAQHGGLWEFPGGKVEPAETLQSALVREIAEELGVVVQQAGLVPLTFAAAESASDGRQIVILLYTCREWVGEPVCVDAEELGWFHPRELPGLAMPPLDYPLANALILSN +>MGYP003588991860 FL=1 +MKKMGSRCLAALAMVLCSSAFAADKVDLARAEEIVSGRCFLCHGLEGESASPVFPLPVGA +>MGYP000788765185 FL=0 +MDMTNIMYELVNTKTSLTIADRTIETLQKQNRRLNRRCLRQSLMIAGLTLSLIHISEPTRRSYIS +>MGYP001606674547 FL=0 +ASRDHIRRVIPLTNEVLAQSGQALEAIDMVAFTRGPGLAGALLVGAGMACALGAALGKPVLGVHHLEGHLLSPFLSADPPSFPFIALLVSGGHTQLMRVDGVGRYQLLGETIDDAAGEAFDKTAKLLGLPYPGGALLSQLAEQGDPRRFTLPRPMLRSGDFEMSFSGLKTAVLTLVRQQEALSPTGQLDDRTRADICRAFQEAIVEVLVTKSLAALKHTG +>MGYP000296153156 FL=0 +METPTKSKKRFLPAGRRIFLLQAATSVKKKREGKGEHVKSKKGAEAKEIELT +>MGYP001120318111 FL=0 +SIATCESEAETTCAFIIDIAGDQDHIANCVGSVY +>MGYP002231636691 FL=0 +VGIIGFGRMGRFYWEAMTKSDGWNIAYICDTDPASRQLAKKLSPNSIIVEDNQKIFEDEKLCRLVGLFTLADSLEWKQIEKAIRYGKHIISEKPVADTMENEWKVVEMAEVQMSFLR +>MGYP001205799662 FL=0 +NMVSHTVDKLVGTDATNGATRTVYSLTESPTNPDAVSVYLNGVYQRSGSGGANNYDVSGSTLTFTSSLATTDQIDVHHHTFRSTLTKVADNSVGDAQLASGTLTTKGALTVTGNVIIANAGNIGSVGDTDAIAIASGGDVTMTQNLVVNGNMTVSGTTTTVDTTLTLSDAMVINNAGSDVGLLINSTSTGNIIQLQDGGVNKFVIADGGALTYTGAATI +>MGYP000237547906 FL=0 +IREQAWSQLLPGLGFMRWPIFRGAVVLAESLHNGYSALKFSTEHGLPPDDDGKPHDAEPHANHRRDHVRVPLGERVKVQEGPRVRRGLPAARRPAGEGDVEAEAFQHLQRGDGGARGELVDEAGREERDAHCRDGAIGQRTDGLLIMGHKQQRRPVAAQMLHPLEAALLEQGIAHRQRFVDDQDLRLDAHLHRKGQPHQHPARIGLAGLVDELADIRKSLDVGDPGFHLLPREPEHGAVHEDVFPPGELWVESRPELQQGGDPATGFNAPRGRVQGAADELQEGGLP +>MGYP003113969438 FL=1 +MAHLPPLYHLRPAWLRQAFFLIALTCAVCAGQASACVGSADPVISRLEIEVGRNPLAALDSITQEIADTDPLDKRRLAELYIVQAKALNMGGLDSAPALKKARSAASKLSERAPANILLQMNAYYDLPDEAAKRRAMSSLLRGYRSLPDGSSAKTCRAVDLAFNYSFQEKPREAFTFASQAYLNSADDKSSPARAEAASALAYLVSNSHDFDYAKQLHSEALAIQLKLGMSDLAANELLVRGYTKLKDGEWTDAVADFRESAKQARSYGNQYAVDYALLGVCQAASEGGKIADAAPECERAYQGLGKPDEAMALPATALMAKLFVERGNPGRALAILDPMIAKGKQENASDDWVMALETRAQALFALGRNAQAYEQMREANEAAKTFHNADMQSGAAALQARFQTRELQNLLAEEERASSTRLRLAIAVIAGSTTTLLLLGTLIFFLLRHRRRFRRLAMTDPLTGLANRRATLERVGAALPGPDAPHPRASFALLDIDHFKSCNDTFGHDAGDQVLSQFARVVERCVRPTDIVGRWGGEEFLVILPATGLKDALDIIERVRSEAALEEFDFAPGYRLRFSAGIAMPSETGGVTDACIKLADRRLYAAKHNGRNRTCIDAGIAWAGPPAPTPPPSSGVSGTGSGSAQAA +>MGYP000344450175 FL=0 +STQGVSSAASDVYKRQNKAYIVGEEGPEIMISKSSGKVLSNDDSQIFAMLLAANPQLQKVSKARAEKIMRSRFPEYFE +>MGYP001069234379 FL=0 +MVSLSERTDLLGAAIEAARLGGVVLREFFGQKKEIAFKGAIDPVTNADVASERAIVEFISRRFPGHDIVTEETRPDLSGSSYRWVIDPLDGTVNYAHDHPMVAVSVGVEVDGVV +>MGYP001488139253 FL=0 +MDNLIGKKLDGLYEVKELIGSGGMANVYKAVMLGRNGPVPAGTVVAVKVLRQEYTHDPELVRRFKNESKAISLLNHPNIVKVYDVSVNDQLQYIVMEYVDGMTLREYLNERGGKLTSRETVHFISQILKALEHAHANGVVHRDIKPQNIMLLDNGQLRMMDFGIARISRAENQLLSGKTMGSVHYISPEQAKGDETDCTSDIYSVGVMMYEMLSGQLPFDAEDAVEVAIKQISDQPKSLHEIAPQVPAALVEITEKAMAKLPQNRYASAREMLDALDTYVQNPSVMFEYQYITEDAPEKVVKRTMNQNKAARQNHPNESAAPRGKNAKRKRRTIFLPVLFGITIAFALACLALCWLILNDSSNLMNNKADITLNDYIGMTQEEAQATEQVASGQISVTWEQEYNSNYAAGYIYKQSPVSGRTVREGQGVTLTVSLGTQYVTVPDLTNYVQADAEQQLKSLGVSVLVTQAVDTSVASGAVI +>MGYP000855914706 FL=0 +VSSDKMEKTITVSVETVKQHPLYKKTIRTSKKYTAHDENNEAKTGDVVKIMETRPLSKNKRWRLVEIVRQQETMLQVGDNTGAKKVLCIKIPGGSSRRYATVGDVIVASVKEAAPGGVVKKGEIVKAVVVRTKKEIRRPDGSYIAFSENAAVIIDDNNNPRGTRIFGPVARELREKNFMKIVSLAPEVL +>MGYP000079949637 FL=0 +EQEALYPFGYGLSYTEFSLSEPEITVYEGDKVSETGIIRKGTGMTVRTVIRNIGKMAGGETVQVYVKSCCDGTPNPQEVVLTLKPEAFELFDIDGAAQILSGEYCVYTGTSQPDKRSKTLTGKGGFVNTFAAEV +>MGYP003113302263 FL=0 +KKKKKSSKLTVDVVFDSLYSSLSRNEINGFRSKRINFTGLIGDAVYEVEVPLEDDKDYEGFETGIFSLQNLSTGRFGDFISHTVMVSDNELPEIKIEIVENLNKKVLVLHNLESRELDLRNWELVKGDIKIVFPKNTRLKVGESIVILAGEDQGLFANSLLLDNEKAELLNSNGTIHLKNYEGTKVAEVSISKKEESSNSLVASGQVSSN +>MGYP001378584181 FL=0 +ITIVVTNVLDLAGNPIDLYNNSGTDVGIGVSPTVIISSTATNPTNSSPIPIIVTFSEPVTGFDLTDVTVGNGTADNFASSSATTYTFDITPSADGLVTVDIPAGVATDLAGNGNEEATQFSITYTSITYDETPPQVISVDVTDPFTVDVTFSEAMGDGVTTADNYAISGDGQGTLADHPDSVVHKSDNTYTLTWNTGEMRNGASITIVVTNVLDLAGNPIDLLHNFGTDVGIGVSPTVVISSTATNPTNSSPIPITVTFSEDVTGFDLTDVTV +>MGYP000737688134 FL=0 +MYRIAVLTNSRAQEAFLTEQILQFCAEHCLFPQMDCYHDQESFFETARSEPLTNAVIALPGVDGLNAVEHLRALCPQTRVIWCSDLDFSLHAFRLRVDYFLLEPITEEAFQQGLSTWLDGKKTSALFRADHNKHNNEEDY +>MGYP000609830271 FL=1 +MDFNDTTEEAKFRKEVGDWLSANATLKEDEESGSYPGMGEDDALSLAKKWAAKLYDSGWACLHWPKEYGGRGSTPIERVIWGQEASKYRIPGGFFEIGQGMAGPVLMMYATEEQKKRYLPPMAKGEEIWCQLFSEPGAGSDLAGLKTKSVLEGDTWTINGQKIWTSGAHYSDYGILVTRSDPSAQKHKGLTYFFLDMKSPGVEVRPIKQISGGANFNEVYFTDVKIPDEQRLGSVGDGWKVALTTLMNERLAVGDASGPDFQEAFNLACGHDLNGDLAIKDGSVRDKLADWYCQASGLKYTKYRNISALSRGETPGPQASITKIVSGNKLQEIANFGMDIMDAAGIVRPESADAEQNMYQMGFFGAAGIRIAGGTDEILRNIISEQVLGLPQDMRADKGIPFNEIPSSNK +>MGYP001094161847 FL=0 +MNPRYILVLFSGIVVCTLEYYIHILRPQLESAPPMKKPVLQVGNRAKHSTEIVNEMQVTFAYLEGTFLKSAMGMDELTTEMHNYTLLAGIVSASGGPYYFKDSGSAATMIEHKKMFKSFIYSIDVL +>MGYP002524929742 FL=0 +MKAVDNDEDFALVTPRDTGDGPVNEVVATVKAKDLWDDIAESAWKTGDPGVVFVDRVWETAPNPQMGKIKTSNPCGEEFLENYSNCCLGSINLDLHINGTDFNWELLEDTTRTAVRFLNDVIEVKDRKSTRLNSSHSWISYA +>MGYP003440339087 FL=0 +IIHRINMDTHVVIMAGGIGSRFWPMSTPQMPKQFVDVMGVGKTMIQMTVDRLASLCPMKNFWVVTSERYVDIVRKQLPEIPVDHILAEPAARNTAPCIAYACWKIRKHHPEANVVVTPSDALVLNIEEYRRVISSALEFTRSGERIVTVGICPTRPETGYGYIKTGEYVESEICTVSSFREKPSLEVAEEYLADGGYLWNAGIFVWNINTITEALRRHSPGLASIMDEMSISFYTTEEKAVVEKLFPTCEKISSDYAVMEKADNIYTLPAEFGWSDLGTWGSLWTLKERDENGNAVVGDDVRLFDCKNCIIHTPDLKRVVIQGLEDCIVSKHGDRLLISRKDHEQQITDYSKD +>MGYP001086002945 FL=0 +AEQSTRYSMWTEITRPKYERKGLGYSSDLGDAEWAMIEPRLPQRHRLGRPPKTEMRRVVNALLYMVRTGCQWRQLPREFPPYTTVQHYFYAWRDDGVLQRINFELLLEARETAGRAARDHRRNSRTTTVAAHVMRSD +>MGYP003329493463 FL=0 +SCKLHEDGSTRRTYQNEIASVWSKEIPIEIPSSEWSNDDVEPETIASLIQRNQKLKALIYEDAESLNLVKEKISKLPV +>MGYP001213017408 FL=0 +GPGSGPGQGDARQDTGLGTPGPPLLQVCSLTQRYGNKIVLQDVDLEVRSGEIVGVMGDNGSGKTTLLLSIMGILRPVSGRVMLEGEDITNVPVSARARRIGMVFQNPNHQLFTDQVWREVVAGPLSRAVRRRRAVPRPRRFSTGLTSSRFARATR +>MGYP003197570824 FL=0 +KDSEGWLKHTDFIILDMICLQLAYVLAYAISGYGFNPYETIIYRNMAVFLELADLVMIFAYGTMKSVLKRGFCSYVKSCDYGRCLSGFIFIPAS +>MGYP001590617569 FL=0 +YNTLFIHFRQSIHTLLRSRPVGKRFSKFLAITGEAFWASLGSFGGVQYWYGAVVNEWIVADAWASSCVPHAILYRMDSGTHVEVDQAFERAYEHSLFLCAVFCDCTFWSAPREVEWVFVFFALGTPFKRKNTILISNVKCTDELACLIPHHQIQRGFRFTDPVLQYVTRHWISLMVYLILCASQCRT +>MGYP000882899174 FL=0 +MLLNVTLIVLCAGNSTRFEHKTKKQWIRIENEPLWLNVSKRLASFSQFDKIIIASHEDELNYMKNFTDNFIFVKGGETRQKSIINALELVTTKYVMMSDVARACVPQSAIKNLL +>MGYP001793805036 FL=0 +MRGNSKYMRREILFDSTRPILCNTLTSGVCDGILLLARCIRFDISPYDPPSPPI +>MGYP001580518470 FL=1 +MSWIGGIDKVSRERRGIKDLVNGWDKGVGFGIYLLNI +>MGYP000055909560 FL=0 +EALLVWTAHRCITSLELVLTAMSEHAPLDDRPFWALVGDAGYNKDPITAFGISDAFRDAQLLSEAIDDGMSGRAGLEEALGEYERRRNESAMPLYETTLRAAEYDQHHPRSLELRAALRGNQPDTDLFMGVLTGSVPKEEFFNSQNIRRILSQAKDGGSAA +>MGYP000181573229 FL=0 +MGSKKILLVEDDPNFGTVLKDYLALHDYNVTHAKDGIEGLIEFKNGEFDLCILDVMMPRKDGFSLAADIRSTNKEIPIIFLTAKTMKEDVLRGYQVGADDYLNKPFDSEVLLFKIKAILQRKESDVNKESELLQEIRQFCIAAGRNPNLDSIITYNYDDLLESCLANIEVDIPFKSIHASGMKHKPHELPIYHVHGFLPQKSKLTNKNRVVLSEDGYHQQYTDVYGWSNLSQINKSVSYTHLRAHETVLDL +>MGYP002759741552 FL=1 +MSNPVPASPFSPVAIGPLTLKNRFIKAATNEGMSAGGVPSKQLAQLHGNLAAGGVALTTVAYCAVSRDGRTLPNQLILEPASLPHFKALTDAVHGNGGLASAQITHGGCFTFIRERSTRRPLSASGGFNKIGVMSGMFFKQAMSEADMAQVVADFAQGARLAREAGFDAVEIHMGHGYLLSQFISPIYNKRRDQYGGSLENRLRFPRRVLRAVLDAVGQDLAVICKYSITEGTRAGNSADDGARIARMLEAEGAHLLVLSAGMNAESITTMFGSSFPKENRVQQKNPLIALAMAIQRRTEPEVKFRELYLLEHARKVRAAVKMPLAYLGGAQGLAGIEQVIGEGFELVAMGRALIAEPGYVNKLASGEERNNRCTACNRCVAMMYTPGGTSCVLGEPGDAALNRVPAGSA +>MGYP003289090808 FL=1 +MKKSILLWLMVLCVGIVSAQTIEINTVEDLSALATNNESQNGYVGQTIDLKADLTITKVWRPIGTRDYPFRGTFKGNGHIISGLGAIAGTDGVGLFGYVGEEGVIEEVGIGTGHIKTMKNDECQYVGALVGRNNGTIRRCWNMATLEVNAIHVGGLVGQNSGTTEDCYNAGPILKAIDYIGGLVGTNTNTGAIRYCYNIGYAANGYGVVAQNTGTINDCYYDRQLYIQNPDAGHQDPTGVTAMEKSADMYTIFSARSAWQQMGDNYPILKVFQNQDAAIVSAASIDLTNKGDALADNHMNLLTSDFIVNSKNGVHWEVTSPLMEQWVYPDAANANQWRVAFPCRPTDVIMQVSKNGNVREVYAFPKPVPDFIPGKFAADSFVVCLSETLNFKDIEFKEKGYEAPSGGAGNYQVKLMLNYLDEKGEVDHNEILISAPSWGDYIALYNSGSWTPSEPGHYTLQRYAADEQCHPELMEAEGVVPIFVPANLTAGDIAGDAILCGIDQTITIHSVEPAICEGTEVYYFWTKNGIEITGEDNASLENYPMNTSGTFVFKRYAYNNACVSKDHPLEAEHSVTITVYEEFVWGAIVEPSDTIIGCTVQDVLNQLSVISEQETVRGGKKPYSYQWMMKIDDGAAQPITGADQHDLNLRDAGLEDAHDYVIYRTVKDSHCQTEWIKSDGQVKIQIYSKITGGKIETKTIQADCIMPEEKGAIPVQIQSRQPAQGRGDIDYKWYMVVNDETFNPIDLKQHTESLDYKLDYGSVQNNATYTFFRTATNKSCGGEEVRSEGETTLQVVIATNVDSTLLICESMFENGQYTFYYPNAENPRQTNIFYKDDLQIWEFNDKLESGCEPRVTIRPVLTLAPKIHADNVSTICQDGDAGTLTIYFEMLEGKADTYNIELSESLRPFFDGKQYISGTIPTVTAGNSGAITVQCQRIGISGGDKIMNLQVAQQIDGQELCYSAMSEIVLNVTQGGYVLDKYGKVLFIDNNPKHPTDPKFIAYQWYKNGQPVEGATGQYYHEDGASLNGSYFADLFYFNGGREMILRTCPIEMENGTKREQENATDSVSKRLENSQIIIQRGDAEYTILGSEL +>MGYP000988737932 FL=1 +MRLILVFLTLLLAAASAMPQDAHPHEESLPAWFAETFLDLREDVAEAAKAKKRLLVYFGQDGCPYCRELLQTNFSQKRIVDKTQRHFTAVAINIWGDREVTTMDGRTQTEKEFARALGVQFTPSVLFLDEKGQVVARMNGYYPPHRFEAVLDYVAGHMERKRSITAHLRTAAREAASPDLHAEPFLIPPPHDLRRRPGGKPLAVLFETRHCAGCDELHRDGFRRPEMRNLLNGFDIVRFPLFGTEKITAPDGRATTAGDWARRLKIAYSPSIVFFAPDGREVFRIEAYLRPFHLAGSFEYVATGAYASEPEFQRFLQGRAGRLRERGEAVELWK +>MGYP003328125236 FL=1 +MNIKTNISLKSYNTFGIDVNAKYFFEFSSVDDLQYLLSDKSLKNEEKLVLGGGSNILFTRDVDALVLKNEIGGIELINEDDTHFYIKAGAGVVWHEFVLYCINHGYAGIENLALIPGNVGASPMQNIGAYGVEIKDVFHSLEAIDIIENKKVVFTNSECEFGYRESVFKNIYKNQFVITSVVYQLNKTPKYNIEYGAIREELDNMKIDHLSINSIAQAVMNIRRSKLPDPKIIGNAGSFFKNPEISSAEFENLKTEFPKLVGYKNENNSVKVAAGWLIENCGWKGYRIGDAGCHEKQALVLVNFCNASGDEIYDLSEKIIESVKNKFGIQLQREVNII +>MGYP000122910653 FL=1 +MLDLATAEYSLVGCVLIDARCLPAAREILPTAEAFASEPCRKAYAAACRLEDEDKGIDPVIVGRAAGLSNDFLMQCMDLAPTCTRAAEYAKAVLDGYQRRQLQALGEKLQTEALCAGSTADQLLTEARSTLDDLASTPGRCSVKSARDSLLDFMTFRAEVQQGKRQAIRTGFPSLDRILGGFAQGGFYVMAARPGVGKSALGIALADMMARDRRVLYVSLEMTEAELNARRVAAVSDITCTFGKLLFGKTTEEQDAAIANACGKLYAHKLQISAVSTLTVPELELQARNVGAEVVIVDYLGLLSAEDKRLSEYDRVTRISGDLKRLAKRLGCVVLALCQLNRESVSAPGQDTRPRLSQLRSSGAIEQDSDGVLLLHRPEYGRTETPREASAPQQFFVDVAKNRHGRTGTAELAWYAPVNRFEDYGGKWTVKSWM +>MGYP001552508999 FL=0 +LAGAGISTLDPLEDNERGVIISTASVAAYEGQIGQAAYAASKGGVVSLTLPAAREFAQFGVRMNAIAPGIFLTPMLQGLPEDVQQCLAASVPFPKVLGNPAQYAALVLHIDHHHRADRARQVVX +>MGYP003447821379 FL=0 +SCTKNRFLINNNIQLLKQQTIMDLNEFVAHFAEQFEDTDASVFTPETKYHDLEEWSSLIGLSVIAMVDDEYDVTLKGNDVKNSVTIEDLFNIVKERA +>MGYP001289232407 FL=0 +ELTVSENRLVYDSLVRAGEAPPVVWDTVKAGNYGRVYIYTDDERAENLKISNLQSASRRILLSDKTINGQHYTTQVYLDKTLFLSTDGPKGPITIQVKSVSEDYFTYLKGYEQFEASSDFNALSQPVRVNGNVQNGLGVVGGAYVQEFQYLYDRW +>MGYP000237473348 FL=0 +MTPVGLWALGWQNTATGRWSRAAASWSGGNIVARQAGNVNMLCYVVWASLFSIPPLFALSLWLEGWSAMVHGVRSADALTWVAVLWQAVGNTMLDRKSVV +>MGYP002446805835 FL=1 +MLRVQLICTGKLKESFYAAACEEYNKRLQRYCSPEIIELPETGDIKARRRGDARAHRLWRPRRRHVH +>MGYP001329416472 FL=0 +ETIQSKNGCLIKGNISSSGDRIYHVQEGQYYNETKISMSLNSARKCSECNGIGAKNASDVKTCTKCDGSGVFVQIQQIGPGMISQSTQTCGICQGKGKMLDPSKLCKRCNGKKVEKKRVKLDLQLNRSHKDGDKVVFSEMADFDPEATTQGDLIIILKEKNNQQFLRIDDDLVYTKTITLLDALCGMDLTITHMDNRKLFIKTSEVIQPDSIYRISGEGMNKNSNLFVKFKVVFPSKLSEERKKYLRKLIQTKVTENVQDKEENTKDREIKFLDDLNENEVVYINEKINILNLKGKTSSDNQPEYEYSGEEEGIPACAQQ +>MGYP000295350481 FL=0 +MVRNRPKVRKKFVVIRPKNHRKKAAGCPIEQPAAYLFT +>MGYP003428885701 FL=0 +NMITGAAQMDGAILVVSAADGPMPQTREHILLARQVGVPYVVVFLNKCDMVDDAELLELVEMEVRELLSKYEFPGDDTPIVHGSALKALEGDQSDIGVPAIVKLVAEMDRYIPLPERAIDGAFLMPVEDVFSISGRGTVVTGRIERGIVKINDEVEIVGIKDTVKTTCTGVEMFRKLLDQGQAGDNVGVLLRGTKREDVERGQVLCKPGSIKPHTKFEAEVYVLTKEEGGR +>MGYP001619181529 FL=1 +MKRTVLWSAIGIALALTAPPVQAEPARSADLPTLIDQAMRKSPGLQAKKRAYEAARGRVVSAWLPDDPMVGVDVEGQPDLFNFGGRTNNEYMVSQTIPFPTTLILRGQVALRDAQMAFQQYKEKERDVVWHLEQPYYEFYLAKKTRAALEEVRALLEKLAETARRRYEANQASLQDVLKAQIERSKVDIELYQTAQEEHIAQAHLSHILNLPLNTPYELPEERHSPPLSWTHEELEHLAVRMRPELRAAELGIKRAKASRMLALTRWLPDVTGRIEARQFKADGRANERDTFIGVTVPVWSLLKGAGGEWKSAGKDVEETEAAYQELKNEVLLSVHEAYAKAKTAEHALGVYEQFTLPQAKQQVELALSAYEAGRAGFXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSPSATCTTARNSTRASRAR +>MGYP001234761162 FL=0 +SGYKCGIDLVFIFIVVFKLILNLHYDLRLNPIDICKTVSTNFKTEIFDVRDRHEGTHI +>MGYP000998860503 FL=0 +MKRMLSYVVWVLSAALLWGCSKRAMGRMESGAKLPVHFSCEGFSKTGGAATRVTGENFEPGDVVGMFSYPSDGPMFGSGDFTKGNVPYVYMQEGELLVREGEVPLYFPDDPSVPLTFKGYYPYSEQMTADGLLTLDLADQRAGEKNAVLYSDNAQRIVRTANYVGLEFGYAMAQVIIRIQYDPDEMPDGDLAAVSAVTLEGEGIYSACDFHMADGSVTAAAGVPARGTIGMRPGSAETTATVAPATARDLTVSVTTPAHTYVARPKDITYERGRQYTYNVTLKGGGEAQIGEASIVDWEPGNDGIPPIIGVPEYEQR +>MGYP003398871467 FL=0 +YALIDLPEFFDWLEANAEKLRAGDKAALAEAVRVSCASKARIVAIDPATYADAVTWSEQFGADVDEVIEALSSSTEESIPVIAIEGEPVPEVGSFGLGRTYPYRVVATVRGFPTAGNRSVSVLASADAINEYAARGGDEDAPAVTESFRRTAVSQAGADVLTSLAQAQRIRRTPGTAAERDKARVDWLTQYNRSSAKDNAK +>MGYP002477722919 FL=0 +CICVHQAEEEGASLGGWDERAESAWHATWVASLSRCIAYASKASAVAFVQKQVRVATLVVEIMIDHACVSLDLSLADQAANNNSDLVIMEDHKFTNPYEEQKDHINEYTAQEIATLQSRLDKQLGPEYISTRPGNGGGKVHYLAAEKVINLANEVFGFNGWSSAIRDVQIDFVSFSDSPRSLVMLTTTVRRESNNRKDQLRTVYHCARLFERWHIPRGKLSSALIYPLELTGVDIGYGHIENCKGKAAAFEKAKKEATTDALKRALRNFGNVLGNCLYDKDYLQRVTKVRIAPSKWDAENLHRHPDYAPIKKEAIAGPSAPTTIASNPPARMPSAQSNTSEFEDEFGGNLFDEVDFSHPDEVRLDNSITEVSVETPVRPPANSVSAQAMNRQQPNRVASMPNVRQFSGGPQQNGQQNGQQARPQVPSQTFKNTNGMNNQPPNRMMGPPHQASNQNGFRSNPSSASESTTTNGRQITPPESVITPSQVPSHVPSGFVSGAAASALVQPPESGAVPPIKLFDPHHESPSIRRTQGVDLRKSAPIKRSEVGAPTVPIPNPKPMMNGGAPANRSNFVNPAMDAGRRIGMPGMQQSPLANRSAYKPPAMKRPLPAEAPVGRPPLADMSNVQQTDGASDPKKLKMDAVQEPPNPASGETGAAA +>MGYP003292343469 FL=1 +MPVLYISHDETLIEKTANMVIHLEQLKRKTEPKFTVAKMPYRQYVEERLHNFDRQEQQALNERREKRKRDERFAEIYQKVQTQLAGCSRQAPSVAKNLKDKMHSVKAMGKRFEREDENMTEMPEQEEAIFFKLGNKEDSIPAGKVVLEYELDEVFRYNSKTKKIMSDYWVKVKIAKNKVAPPFKTAEFDIIYGKGISREGDILDLAADVDIVNKSGAWYAYEGNKIGQGRENAKLFLQNNPEICNLLDAKIREYYSLGGAISGEKSE +>MGYP002583638056 FL=1 +MGLFDFFKSLTNSKTEITSTDNDVTHLTNITKSGLSIHPDLVDLIWIGDGKYQNYSNQPHPTMTYPYRGFVVKVAAFGAEEPSLLYLKYPIEQVQPSEQIERPPYYPFYGELTPKQKYLYWKFLNDPYNPHNDIGYVFIFYYGLERHLLYGDFEKAFNVILKLRDVYNNRSFQHYSAGALILSTLIHKRADYTQKFINSLDKDYEFQMPGELYFLCKLSLGIPITAFDIMKFHKFFNFTNTRYIKNNSDMFLKNLRQNICYQNNGRESLDASLYCTESNFSHLPTISLPIFANVSIREKEVTIPNLSCDSHFMGCIFLLLDKAHQDTKQELANLRKGKSANSTTEEQSTESHTPYAGSYFDDKKFMSLQQIYYDNSQKIESQWSILYNLKTYTGSNADRYMELCRLNIQQYTKMNDRGKHYTDYESPLGVPAYRRLAMLYEKQGNYEASFEVCIEAIKSGILYDGNKSGFKGRAARMIKKGNIQPDEEIITLLME +>MGYP001139541149 FL=0 +MDIQEILEHLPHRYPFLLVDRVLECEPGKR +>MGYP003566972480 FL=1 +MRLSIRNNGRYLVEFDRLDVQGRNAISGCGLVFSLKGSSPGSEKNVNIFGIQIGLYHSEDSKFIVPSISCADSLRQVSQYSNNNENFHFEAVLTSEQINAIEEIRQDGDLKLTLTLKALLSSSSGLANSYERSEVVVPRELWLKALRSSGFCRTVLYEIPLPASDIDIEGLITKARGFIETGHYKDAVMQCRHIIESLEELRGDKRQAQAANRMAHSDSRKDMTSIERLLSLREQLKNVCQLGGHGREAFTRSQALSVLGMTMALVSEPTVGALVNAVSEGTERGEA +>MGYP001095359691 FL=0 +MNSRRSWSRNRCRFDARTDAAGEPVLLADQDRTRWDRTLVMHGLAALDRATTLGRPLGPYTLQAAIAACHSRAPRFADTDGEAVVALNDSRPQLAPSSVV +>MGYP000548248604 FL=0 +MDEQKRPRAWVYARIPGDYDGTMNSYKVCSMQALHDGCDIVGGSIDERGGWLLRPGYRDNPFGGDRPSQT +>MGYP000364143963 FL=0 +GDGTFQPAASYTAGIPYWDPAHAVAVGDFNGDGRADLAVANLGTVSILLGNGNGTFQSEVKYGTAGGSTIQPIAVGDFNGDGKTDLAVASLGGTNVAILLAKSDGTFQPAANYAVGHQPYGVVVGDFNGDGWADLAFASNVDKNVTILLGIGATSTPDLIISKTHVGSFVQGQTGATYTITVSNRGGSTTSQVTVTDSLPVGLTATALSGTGWTCSLGDRKSTRLNSSHLVIS +>MGYP000838638459 FL=0 +YTRLFVGSSDVYKRQAAGQLLYEKGFFFVTFVWGAALAAALIKRWRDGGSLSTVKK +>MGYP000110898291 FL=0 +CKIICQKLAEMGFFDSAMNDADQQFGVLLRNNDPDAYTGYLRWAKPVVELLEGKGSATFRKVVFFWVRDEQRRQQMQSNIVAHYLDVIARPWAEEMAYRMQAQGYDKSNPAGRFIMNIGLPMCRVISKFGKKTELPMWLKTALIWGTTTVLLVAVSAISGTDKVLNKLRKHLYRDWE +>MGYP001080633953 FL=1 +MSPGQAASLQLSTARLRILPLDSENLRLSLEAPEQMEMNLGLQVTGNRPQGEVRDAVESMLAHVQQDPENWLWHTHWQIVLKRDKLIVGGCCFKGPANVRGEVEIGYGIEPEHRRQGYMEEALSETVRWARQQPGIRSVTAET +>MGYP003432707236 FL=0 +MAGGSQIIISSDGIIIKTPGEFKVFAGQHIFNEASVASLKATHLQHLLPPCDVIPKAKITPDVHFPVMGILARIERLDGEKINSTDKLLINGSPLKEVWIAENAYEPAYGARPLKR +>MGYP000920430015 FL=0 +RELAEVWDELREYGEQVIIELKSQPSVYRIKDKLVKWDYGYDLFNDKLVAIKGSLTLNAFH +>MGYP000639132496 FL=0 +MGAYILRRLLLVIPTLFGVMVINFALTQFVPGGPVEQVIARLEGGGDSIQNLGGSENAGVQEEEAVGEGGDNGYVGARGLPPEFIAKLEVQFGFARITCDEGFTGTPSVTAPECRKEKIPAVERFFIMMGNYLTFDFGQSYFRSISVVDLVIEKMPVSITLGLWSTLIAYLVSIPLGIRKAVRDGSGFDTWTSGVIIAAYAIPGFLFAILLMVVFAGGSYFQWFPLRGLTSDNWEELSLWGKIVDYLWHITLPVTAQLISSFAVLTLLTKNSFLDEIKKQYVLTARAKGLSESRVLYGHVFRNAMLIVIAGFPGLFLAVFFGSSLLIEVIFSLDGLGQLGFRSAVERDYPVIFGTLFAFGLIGLVVGILSDLMYVFVDPRIDFERRG +>MGYP001328790198 FL=1 +MSELYEKTAVELGKVLSSGEASSEEVARSFADRTAKVDDKVHAFLNRDDEDFIRQAKESDERRSKGAALGPLDGVPVALKDVISHKGQPLTAASRILENYVSPYDATTTRKLKEAGALVWGRLNLDEFAMGSSTENSAFGATRNPWDVDCVPGGSSGGSAAAVAAREAPLTLGSDTGGSIRQPASLCGVVGMKPTYGMVSRYGLAAFASSLDQIGPFSQTVEDTALALGVIAGHDPLDSTSFPTEVPNYLETITKPCPKMKLGLPKEFFGEGIDEEVRKLVDEAISFYRKEGHELVEISLPTTDLAVPVYYLIATAEASSNLARYDGIRYSHRSERAENAVDVYAKSRGEGFGEEVKRRCILGAYALSSGYYDAYYLRAQKTRTLIRRDFEQAFQEVDAILTPTSPTPAFKQGERAEDPIAMYLSDVFTISVNLAGLPAISVPCGHTSSGLPVGLQVIGQAFGETEMLAVANAYDSVHGFGRKCPEL +>MGYP003694182255 FL=1 +MKLNCAAIPTGLLESELFGHEKGAFTGAMAQRIGRFELANGGTVFLDEVSEIPLDLQTKLLRVLQEREFERLGSGRTLRTDARLIAATNRELGALVDEQKFRADLFYRLNVFPIHVPSLRERPEDIRCSSGISSSTMRAG +>MGYP000441261351 FL=1 +MRLNIRKSIITGISLATLLPAFSLLQSCDDSEAEKWVDLRYRVEDSYLVEAKNPEPVSFQVKSTDPWEVFGKYDWYTISPSTGEAGETYTVTVTCKENTELDDRIDTLNIKSDYWTGKRFVLTQKGTAYLNVEGVDMIDQEGNSETFSVLSNQKWTAKVTDGDVWLLHPIRSIGRNERRNYCHRFTEYRRTTYRYCNHL +>MGYP002925163669 FL=0 +FAARKAFVRECIDANLVLETPDPVIDTQFRYAKLRAAESIVATRGGYMHAPGGESYYAAIWANDQAEYVNPFFPFLGYGVGNASALNSFRHFARFMNPAYEPLPSSVIAEGDDIWITDPKGREHRLAMLRNQTRGQDNLSLADFIAPKGDWIGCFAVTAGIGLKELCEKFRAGGDDYNAITVSYTHLTLPTNSR +>MGYP000555143592 FL=0 +FTTTGLKNNITRYMIASANWNLGGTSSKTLYANQLYTSERGTAVYSGHTTMWQGKVALPYASDYAYAAAFGNGSSLLCSSNINSYSSTNCKNNNWLYTQFKSGSAWLITPYSGNQYDPWLVDTTGIGNYGSVAYNANAIYPTVYLNPDIVISKGTGTSDEPYQLSADTVTSSQVGEYFNGYTSYKNLDFAYYDFGSSVSVIAKFKIDDYPIKFADIVANWETGGFGLVIDTDKKLKFGIRTTTGSDYVYAASSGAVSLSEWHTAVGTYDGTTIKVYLDGSLVGSTTISGSIKSTSAQIAVGADPYTGGSASGEYFPGYVSEVSVIDQAIGASTIATYFSKSTPSTTTYTNTKTLVKAKSTSLNSPTLVKDSIYRGKYFDGTIESGSYVARAELTGDTYFSLGTQWNDITKAYGLSDKEMFNLFNTRALDDAVRQGKSIRFSQNPLEWKGTALGDEWLYLQSKHGYTRLKKIGDYWYAK +>MGYP001202979195 FL=0 +LCLIRNEYLWYPTPKQSPLLGVAGLGGGIASRLGGKAPNPYRGLVGNGSLRSGFTNLQMAFPFTDSKNGLDLSGNNRNLSNWSTNTPVEYAVTGVDKNGDPPPYTTSYGKTQSGPDYGWKNLSSDFNFQGSKTYTMECWFQVNSPDTGILMISMRSNESEGQVLTASTSYGIKSLAWSGSEDYTLSGGTIVVGQWHHGAYTRDSSTSPDTHTLFLDGTQVAQITSDTYGDAYDYNQYGFATFGGGGVAYYPNSFMQDLRVFDTVKYTSDFDIAEYLPTLDA +>MGYP003457825976 FL=0 +LEAACRRDEPAALIVEPLVLGAGGMLMYAPQVLADMARICAEHGVLFIADDSGAYDVYDIPASGGPVRRLTRLAAGALDPLELDGNLYFAGYRAAGWDLARASPFEYTAICLSNASGAVISSIFSARSNRVTMSSTESDCSA +>MGYP000975471581 FL=0 +MSNYVINHLRELESEAIFVIREIAAQFENPVLLFSGGKDSILLTHLAKKAFYPAKIPFPLIHVDTGHNFPETIAFRDMLVKELGVQLIVGSVQESIDKGRAKEETGADASRNALQIVSLLDTLEENKVDAAMGGARRDEEKARAKERFFSHRDEFGQ +>MGYP002779293856 FL=0 +YHWLTETIKRNSMKYKRVLLKLSGEALMGNQGYGIDTTVLTTYAQEIKNVVDKGVEVAVVIGGGNIYRGIEATATGIDRVQGDYM +>MGYP001768057102 FL=0 +ISEHDALLATHVATILSGGDRSPGVASEQDFLDLEREAFLSLLGTQKTKERIQHMLKSGRPLRN +>MGYP000742296790 FL=0 +MKTRNDTNFTSTKKFLPLFVAIIITAIFLSNCVPIEQPKPEAPMAVTEPAPEPR +>MGYP003387108590 FL=0 +QLAKAEGLRVIADSSTEDKELVTELGADVVVPRGDNISEQIRNIMPEGVDGLADGSVQNELSVGAIREGGSFASVRYWEGTGERDIKFHRTSVSDYFQRSDLLDQLSKQVDDGILTLRVAETFSAEQATEAHKKLEAGGTRGRCVILL +>MGYP001556444362 FL=0 +MKLKIQQIKNPLLFIGLLLGLVFMVTSCQKETNEPDQAFHKAKKGPQKEEIVVVANRLDGSISFIDAISDQVQNTLSIAGSEPMYVVYVPDNDRLYVGDRAQDKVHVIDPATRQVESSIDVGNGVFHMWAGGNGDQLWVNNDQDETTSVIDLSTNTVIQTISIVLK +>MGYP002617661281 FL=0 +GRGGVAGHDDHLASLRDEAGDGLVGEDVTENLKTIRSIPMTLEGAPARLIVRGEVFMPRASFARLNEAREAAGKSLFANPRNAAAGSIRQLDTSVTASRPLRFLAYGFGDVRFGGVQPWSTYEEVMGRLRDFGFETPPGGRLCRGSEEVEAYYASLSEKRESLAYEIDGVVMKLNDLEAQEALGYTARAPRFAVAWKFPAQQATTLLLDITVQVGRTGVLTPVAELEPVNVGGVLVSRATLHNEDEIRNRDVRIGDRVVVQRAGDVIPEVVRAVLSERAPDSQ +>MGYP000022545691 FL=0 +IAQKGGIIMDGRDIGTVVLPQANLKIFLVASVDERAERRYKENLSKGIPTDLERLKVEIAERDRKDSTRVVSPLKQAEDAILLDSTGKTIKEIVQFIEEKAKKLMENEFFYIFLYYKSFASFCRNYQTLI +>MGYP000539356882 FL=0 +PPAWAVYIPIETPNTRSGETATAANADDAGYIDANKKCHWYSQENTGNAVANVKGAWFTYIVFFNGVHITNNTDPAIWNTGAAGTGTNGTSGRAVLTLKLIHQDPREYVLQLNGVDLKATDNYSVMRMTYVQPNFNNMPSSPYTIGSSSYEEFRHHNESQAAFTLPAAGYWISADEVSYSFWEEISGDATLDATITQHLQDDLITGFRNNYIGLNQPITYMSYDEVTAFCSGQLSAKIGTTARLPNEAEWEFACRAGKDSTYSNMKGYTLDGISSNPFDAGNNDPVDDNNIKDYYEKVEVYVNGSNTMPCPVPTILSNENQWINGAWESKAFSVFYTIESEIKAIKQMI +>MGYP001030690318 FL=0 +MHVLLDELAEFVRSHRLENEKFHEGAPGAANILLIWRIDVICKNLTFKQVLPSLLILAKVFDQW +>MGYP001004560480 FL=1 +MARKVGFVIGLILLVCLTPMFATGAAETPVTGAGPKVINLWSFTDEVPKMLEKYKELHPEFDYEIKTTIIATTDGAYQPALDQALIAGGADAPDIYCAESAFVLKYTQGDAAQYAATYKDLGIDVDTLLKQADIAQYTIDIGSNERGLVGLGYQATGGAFIYRRSIAKAVWGTDDPAVIKTKVGPGWDKFFEAAAALKAKGYGILSGDGDLWHAVEGASEKGWVVDGKLYLDPDREAFIDMSMELMQKGYHNDTRDWTDAWFADMKDANPKQVFGFFGPAWLINYVMAGNSGGTKPGEGTYGDWAVCEPPVGFFWGGTWLLANKDSKVKDAVADIIEWITLDSSDTGLQYFWANGTLAGPGGTKDTVASGTVMKKSDGSLPFLGGQNMFDVFVPAGQFATGKNKHQYDETINTYWRDQVREYTGGKKSRAQTIADFKQMVADNLAIPVK +>MGYP000510584249 FL=0 +MEVLVENLTFLTWQQVLMWIIGGTLIYFAIVKEMEPSLLLPMGFGAILVNLPNSGAAGVIAHLFQLGIAGHELFPLLLFIGIGAMIDFQPLLANPKLMIFGAAAQFGIFFTLGLASLLGFELNDAASIAIIGAADGPTSIFVANVLKSHYTAAIIVAAYSYMALVPIVQPFCIRLITTKKERMIRMEYTPGKITKTTR +>MGYP001059407761 FL=0 +NGTQAKDEGALPLTAAQSATLKQGLKLVTGPNGTAASAFANLGYNDFLGKSGTAEDSGEQSHVDFVAAAPAETPTVLCTVFLDHGTSGSTQAGPIARDIVLAALAEGL +>MGYP002518956829 FL=0 +MVSWNNLDTLASYKELSEVARVNLAEAMTGENGAERVKKYSVPMAAGMAFNYAAKQVDDNVLAVLAKLADEMQLVEKFQALYNGEVINTGEKRMVLHHMTRGQLGEAVTADGGDKRAFYLNEQKKIAEFANKVHNGEITNVQFGLYADADMIADDGKVIPKGALLETAYCDKDGNIIKSGKCDPWIIKELYPTENGYMTKVVGSNVALDLIILPSLKNSLPLCQTEVTPTVDTSTACPLVKSII +>MGYP001810087265 FL=0 +IMRRCSQTADLLNAALSGSHGXCPGREFLCTLHRCGFKWXDVQTDAVCRHTCFRRLWVGCVCMLCVCVXGXGXVSXEGVVIGVWLAGTGALCVCLXRCGFLLX +>MGYP000952481259 FL=0 +FELESHFVAQAGQQTDSVSKNKTKQNKNKKQN +>MGYP000924557708 FL=0 +WRTDHQSFAENGVNRWLRTWPGNELTKTNIAFYWFRGLHLSMDYVPDVAIRQPDHAERIHQALMQSPHEAPMPEAVQAQFAQLAADNRAREPWIARLWVPLVHLQTMLMQASAYPEVARLLDRVAPGLGQIVLALLRAGILVGLLLLVLHWRRLRLWDQQVRLARGFINALAGDCEVIRVQFNSRPVTAHALASDKG +>MGYP003568761090 FL=1 +MSRLDSMLRRFTAQRDGLNWAASFIEGMEGDALDMGLGNGRTYDHMREIMPDRRLWVMDRILQCHPSCVPPEEDFLQGEAEDGLAGLKEMGAKIVISHYDFGFGVKEKDVEEAARFSPLIAEVMAPNGVIVSGQPLIGFEAVKGPDHIAPDRYYFYRT +>MGYP000894995155 FL=0 +TLPLFGGCTGQDGDKGQSNAKTAGKDSPLVTIRWFQEARGQDPNKDRILQEIQNKLNIKLEFVAAPAGQESEKLNLMVSTGEQLELVTAFDIDRAAIQWAKDDFIYAYDEFMESGDYPRIKAILDSDVYKDLKVNGKSYFKPQPLWPGLRGYVIRKDWLDNLGLEIPTTIDEYYNVLRAFRYDDPDNNGKEDT +>MGYP001069368337 FL=0 +PALGGGEQALEDRPIVDALDKAEIPATIVIAFEIVVIELRADAPDRPAIADRQPIGDLGMIEIRIGFRIEMVAPLKHQRRDPMGVIGVDVERDSDEAVYTGTVADLLDAEISHRQRHRSLRRAQSTAL +>MGYP001036930292 FL=1 +MRCIFLFVFLISHLVMPFLFFLLYFCFLTLCYDSNSK +>MGYP000703538265 FL=0 +MLSYPVNVAGLEKLDIGFAAYTRYVAPLLEEALKGLIIVALLRSHRIGFLVDAAIFGFAVGAGFAIFENLFYLQALPQTQMGTWIVRGFGTAIMHGGATAIFAIVSHTLIEQERSFALLPGFAGDVIKTVQAMPGVARPTATDPGAVVVRGSGNYDTRFFVDGIDLLVVVLANEITALSGGQPHPGTAHDTQGRRRKPVDLYALAQAALGNGLFAVLLWLLLDPKLWYTDGVSPDPVATTESPEDPAVAAPSGDAADKSAKAESVRPHDVLRSAGRLLAALILVATALGYVRLANFVFHRGVLLAAFLISVWSVRVLAAWGLSRLPAAKPPGAHA +>MGYP001563729933 FL=0 +MVERNLLREGFVVNTRTPLGTISGTQVVTPQEIDRLADSDIATTALIASGTKLLSLDADLGARFKISRLELYTAE +>MGYP000417054785 FL=1 +MTTAEASGKNFGSLKITFKYPCDFYISGHHVVITIVFEYHGDIEELLSHNPNYD +>MGYP003967751787 FL=1 +MIYEKYNNMIQQLVMFNCTSVIIINELTQSNTDYYIGLCIKILTIFLIILYKI +>MGYP000178255560 FL=0 +MIKKTIKYVDFNGVERTEDHYFNLTKAEITEMQLGVKGGLDKYIEEKVYENDTE +>MGYP000422954699 FL=0 +MSARGLWIKSLEAILLVVLCFVIFAPMLGLLLWSIAIRWYWPHVLPQQVGLDYWKQALGFERSLAIGAVSITDAFNTSVLIALIVVAIVMVIATPVGYVLAR +>MGYP000957065041 FL=0 +MKNDVNKSLERRFSTVQLYSQSEDFELSISGEEGTYYKFRSEDLLYVTKK +>MGYP001611453920 FL=1 +MMLFHISGVLAEANPDSNPESVPAATTGARRINQSPTSQNDFMSSLANASEPSG +>MGYP003568452137 FL=0 +MDDGFRRCQAATFKMSCFEFSHSNTDEKEIHIFIWTEKRKSYN +>MGYP001429666462 FL=0 +FTQRAFRVTIRLVTDTPGMRAWVKLSGDDLVTGGNIGRPMADALLDEHDRRVEAGTLYGFQPFVTLVAERV +>MGYP001129982810 FL=0 +LYDKENRREVFKSGQKGTLMRMYEDKPIYYDNWDVDLFHMLKHEEAAADGAPELIAEGALRVTLRFHYTYRHSTFEQDVIFHAGSRRIDFETRADWHETHRLLKAAFPLDIRTTKATYDIQYGHVERPTHFNTSWDYARFEVVAHKWADMSEEGYGVSVLNNCKYGHSAHDNVLRITLLKSGKYPDTEADMGRHEFTDALLPHAGSVVEGDTIEESVKLNLPLHKAEGMLWAAAPLVETGSRSVIVDAVKKAEDDGCLVVRIHECRG +>MGYP000615634015 FL=1 +VKLEANTSDGYKDESYSVDGNILEVVNGSVLSISNNGYNGYNYGKPSEIGKDTALGRKDRLADFHNALVLFFGEDIGKELYQEVKNSSAYAICRVNQTAISEEEKFDVYCQTVFAYSDPKMDCPEDFSSFLYKANTKRKNLNSLRAALQGHYGKDKGMKYYSLFKSHIKIMNRM +>MGYP001275058744 FL=1 +MSEMTPREIVEELDKHIIGQAQAKRAVAIALRNRWRRRQVPDEFLRSEITPKNILMIGPTGVGKTEIARRLARLARAPFIKVEATKFTEVGYVGREVDSIVRDLVDMAIKMTREEALERVRPRAEDAAEERLLDLLLPPARGSSAPDQETAPTNEEGAGRQRLRKLLREGTLDEKEVEVEVASPTVGVEIMGPPGMEQMTDQLQGMFQNLGGQRKITRKVRVREALRLLTEEEASTLVNDDDLKHEALERVEQDGIVFLDEIDKIVGHSERQGGDVSREGVQRDLLPLIEGCTVSTRSGMVKTDHILFIASGAFQLNKPSDLIPELQGRLPIRVELDALGTTDFVRILTEPDASLTEQYAGLMNTEGVTLEFDPAGIDRIAQVAWQVNEQTENIGARRLHTVMERLLEGVSFEAADRSGQHVVVDQDYVDGQLVGLAEDEDLSRYIL +>MGYP000812623567 FL=1 +MKRKVTLRKKQVLAIAVAVIAVIGAIAAWQTWGATTRIAFLNFQVTELGQISKANDNSMIELCEISADDIADLDSYDMVMVTAMGLKLTEEQRAMLKEKAEKVAVYTRMATNPDNYICSVDSVDADFISQYLDNGGRTNYRSMLAYIRKFIDGKKLNAPEPELVKERPDCLLTHYDPSDVDGEELGFNSVAEYNAFLAKHGLYSEGSPQVMLTGFMGATDDMTRALEKKGMTVYRVNKPQLFIGGKHADSIHVAAVVNMAHGRMGDYMVEFLKMKNVPLFSPVNVNRLVDEWLDDKQGMSGGFMSQSIVTPEIDGAIRPFVVFGHRTNDDGLRETYGIPGRMDDFVETVSRYITLQKKSNAQKRIAVYYFKGPGQNSLTASGMEVIPSLYNFLCQLRSEGYNVSGLPATVKEFESMIMAQGAVFGTYAEGAYANFIKTQHPALVTAAQYSEWTGKALSTQQIKEMNEINGEFPGKYMATADGRLAVARLQFGNVMLLPQVIAGAGDDSFKIIHGTNVAPPHTYIASYLYARYAFNADALIHFGTHGSLEYTPRKQAALDSNDWPDRLIGTLPHYYVYTIGNVGEAMIAKRRTYAQIQSYLTPPFRESELRNTYRQLNDAIDSYNKAPNAAAAQKVKQLTDKMEIAAELGLSKKAAYTADDIQRVESFAEELANEKITGQLYTMGEAYSQADIRTSVFAMTTDPIAFGLLGIDKLKGRADGNAEKHKQTFNRQYVEKAKAIVTRLMAAGGNMTDEEICRTAGITAAELKMAREVEAMQAAPDPIMMMMQMAEKMGAKSGKPQMQASQKKLTVSELRKMRLPRHGKIPQLSKAVFDKMEQSGRFPEKMMTAIRNEQKWYKESLKKGAKKPAAKKANAPRFSRSEIRLAQAITAVEHALKNVKAYSDALAESPRMEMASMINALNGGYTAPTPGGDPIVNPNALPTGRNLYSINVENTPTEDAWDKAKELCDNTIKMYRERHNGEYPRKVSYTLWSSEFIETGGATIAQVLYMLGVEPVRDAFGRVADIRLIPSSQLGRPRIDVVVQTSGQLRDLAASRLFLVNRAIAMAANANDDKYDNLVKAGVTESERLLVEKGMSPKEAREVSMFRVFGGVNGNYGTGIQSMVTAGDRWDKESQIAEVYLNNMGAYYGDDKNWESVRKDAFEAALTRTDVVVQPRQSNTWGALSLDHVYEFMGGVNLAVRNVTGKDPDAYLADYRNHQNMRMQEVKEAIGVESRTTIFNPAYIREKMKGGASSAGTFAEIVTNTYGWNVMKPKAIDQHIWNEIYNVYVKDKHNLGTKEFFEKQSPAALEEMTAVMMETIRKGMWKATPQQTADIARLHVEMVNKHKPSCSGFVCDNAKLRQFIASKTDAASAREYQANVENIRQEQLADGKKSTVMKKETLNDDSNKTKAVVSGVLVAAIAIVAVIAIVVLIRRRRKNLN +>MGYP001306074617 FL=0 +DIMRTKELQNGVLWNPETGQKVEQIEKGLHVVVLARRRRDRPARLPRIVETSIHV +>MGYP001598923031 FL=1 +MVNAITQVGNVMGIMSVAVLVESRVVLDTLVAIGF +>MGYP000619228673 FL=1 +MYMHFLHSWIFVCYRAMFVCIFLHLDCLSFFHSFQSIFKNLTISSPLC +>MGYP003648209433 FL=0 +GFQIVGIPLIDGGFGFELHWHQRSVDLFLGLPFNIASYAALGLILEKITGYKCIAVQGDLKNVYLYENSYSSAAEIMKRGVEVIS +>MGYP002561378225 FL=1 +MMDSPKHEAYENGGTIVNRYARIAIAVLASVGLLTSASACGTSQDGAGSAHGAIPVVSSINQWGTLAEQLGGSGVQVTSIINSTNVDAHDYEPTTSDIAKLQKARIVIVNGAGYDSWAVKAAQSAKSQVINAAEIGGVKDGGNPHVWFSAAVRKAVAQAITRAYEGTRPDGKADFDKLNQQWRSKEDEVARKITETKRKADGEAYAATESVAEYLAGDLGLKDATPTGYMRATANESEPTPTDIKQFTDMLEAGKVGLLVVNIQEETELTGKIVTVAKSSNIPIVELTEQMPEQYDSLTDWMAALVDAFSQAI +>MGYP000499357948 FL=0 +MRLFSDFFQPSIYIFLLLNKNALNGCPKIPNFYEKIAEYYDRHSAAKKNIFTTFHLLNQFYYQKNILERILAD +>MGYP001675491746 FL=1 +MTHEYTIFEIKARGVGRNKTTCYSIFMSEKRSDNIKKQRQRTKPKRLSVKQYMFIAVVLVLLITTVGIFGIIRYSDTRRLDVAYYGVPESIATAINAVLENPDNATVQKKYSRLRIVQLAESDIRNTKRIAKKYDLLFMWNGANAANAAEKAVVLPESVYNLFPASVRHTGKVNNVPKMLPLLLDHYELACYRTYRNNAGLALPETFNELESYLHTIKGYADYPLICAGKTDATLTAFISAFTESLAGSEGYATLVKAAAGADCLSDVLDVSLGKNISLASILGIIKQWQHEGLIHPQWYNVTEKDIESYMEEHRLGAIFMPLSEHRVKPLILIKYYDTVQFPKGDVANHALIAPVLVGMAFRNDASQLAVLEHFAHTDLQMLLSQHSKLAPASARAEAHDVQADDVRFWAASCTDGPVPELGKAAFASPVKTAAFAEEIRAYMAFTQE +>MGYP000328593210 FL=0 +MVPVIALVGRPNVGKSTLFNRLTKSRDAIVAEYAGLTRDRQYGEARWQGRTYIVIDTGGISGDEEGIDAKMAEQSLQAIEEADAVLFLVDSRAGMTAADQMIAEHLRKRNKRSFLIANKVDTIDPDLARAEFSPLGLGDALPIAAAHGRGINHMLQEALGIFPKDNAEEEGEGEPASEEVAEGEEPTRIPGPSEKDGIKIAIIGRPNVGKSTLVNRMLGEERVIVYDQAGTTRDSIYIPFERNEEKYTLIDTAGVRRRGKIFEAVEKFSVVKTLQAIQDANVVIFVMDAREGVVEHDLNLLGFVLETGRALVIALNKWDGMEAAERDYVKTELERRLLFVDFADIHFISALHGTGVGHLYKSVQESFRSAVTRWPTSRLTSILEDAVQVHQPPMVNGRRIKLRYAHLGGANPPLIVIHGNQVDAVPKAYTRYLEKTYRRVLKLVGTPIRIEYKGGENPYEGKKNSLTARQVNKKRRLMSHHKKAEKKKKKDKRR +>MGYP000632763877 FL=1 +MASEDGCGGGNRRVVEPEARISRFAEPVVEVEFVDVGDLVEAHAHDPDEDEDPDGGHDHAEAETEIGYSERVSLFIPTGDW +>MGYP003625842865 FL=1 +MKSLFDFIIQPLGGKYDNEITIGDKKLILNNKIESFKSVNNLAIVIETPKAYKTPIKKGDIIVIHHNVFRTFYDMKGKKKKSRGFFHDNLYFCQIDQIYLYKKNQQWKSFGDRCFIMPLKNDNYLTADKERKLIGIVKISNSSLEAAGINTGDLVGYTPNGEWEFIIDDQRLYCMKSNDIVIKYEYEGNEVEYNPSWAHSVCLYII +>MGYP003126176265 FL=0 +MATIITADRVSGSFTSTGSLGQLSLGGTSTSGSIQPSSSLHIQGNNAEGGIHMFRDAFPGAYGMRMYLVDSGADGQYLRFDSQRNLNWTEVLRIGNGGNTSNQTLQLVTGNLSGSVESTASFGALRVESEEDGTTITTDRFGLTIDGQAGYYPLTVQSPYETAARFISTDGTANIEIGDNSSTTNYNRIQVVGDTRLQIIQNNVDKVRFNQNTTIFNENSNDINFRVESNNDQHMLFIDAGKDKISIGSDIFGDDKMLVAGNVGITGSLHVSGNISTSGSIIAKEFRTEFVNQIIATSSGSTEFGDSIDDTHDFTGSIEVSGTLNIPTGSITVEGGIGGANIARFSRNQGTT +>MGYP001636533327 FL=0 +AAAAVLVLLAAGLLAAVVVPEDPGAGKAGGLAGLAFQGQAMDTVL +>MGYP000052352460 FL=0 +IDKQFRLLELILFYYETAGEALRKGAPMQPVFDIPARTDWVLLNANYYVREFFALGKTLLFD +>MGYP001423369931 FL=1 +SMIAKLIVTADDRPRAVARLSRALSEFVVEGIRTNLPFHRRVVEHPDYLSGNLDTHFVERLLGPQAT +>MGYP000606642193 FL=1 +MDPILLAIIVVTVIGLIGAVILVAASIFMYVPVDERVEQITAVLAGANCGACGCAGCADYAKSIVEDGNAVNKCTPGGAACAAKVAAIMGVEAGSSTPMKAVVACSGTCGKTGKKYEFQGIQSCQAVKGLYGGDGLCKFGCLGYGDCTRACAFDAIHIVDGIAKVDRSKCTGCGACAAVCPNAVISIVPEHKRKPVVLCQNKDKGADTRKACTAGCIGCMKCAKACPKEAITVENFLAKIDQDKCVGCQLCVKECPMGVIHVPASE +>MGYP001134501289 FL=1 +MFFAVLAVQIYLLKTTTTRDHQNITEFTFMIHHVCMNKPMVTCTLDELDVDFLLYPLSIPNSAKKFEDFGGATCPLIWLSSELLPVLAAGAFSTYSNREVQDLLLVIVLSVTDGRTGAGSSGFCS +>MGYP002743407678 FL=0 +MAKIFDDLGYNWKFKVLNSKEYGIPQNRERVFVVGFRNDLNINDFNFPNKLELNKTMQDFLLDSVSGKYYLAKKGVEFVTSKKNIDKRYTQIDGEIQLCQKKNQQFNWHGDFIFQAAREFEFDDFIFDVNSVEEKYYLSEKIKNYVLAGGTKNFKTSTETDLPVARPLLQTMHKMHRAGVDNYVTHNRGRIRKLTPRECLRLMGFRDDFKILVSDTQMYRQAGNSIVVD +>MGYP000205383798 FL=1 +IHAIEAHHGVAEDAHAGDWHRQVSLLAWESIEKARARGLELGGLDVSLESWKEVLEAMARLPE +>MGYP000432900193 FL=1 +LIPMDIIEEMAELGVFGLTIPEEYGGLGLGALELCVVAEELGRAAAPVPFSSSVYLGTEAIVKYGTNSQKEKWLPKLSSGELISTFALPETNSEPTEKNIKTTFSNGKINGKKLPVADGSYADISIVVVKNTDNDDIALAIAELTSENVKRKQISTLDPSRDHAEIIFENSEAEIMDIGDEGWGAVDSILNSAAVLMAFEQIGGAEASLNMAKEYALDRYAFGRQIGSYQAIKHKLADMYIAVELARSNCYYGAWALSCLLYTSPSPRDS +>MGYP000580577341 FL=0 +MKIVPLTLESMWPSAALLSANKEASRENFLKFLEGGFKATQLKFKNMGPSFKNLKMWMDHLRTGVQDQAGQHGETPPLLKIQELARCGGR +>MGYP001331097511 FL=1 +LNLNSARQLSFQGDVAGAQKEILNQVRQMGDFNKMNVFQQEALAKATGYSAVELTKMLKNEEKLAQLSDKEKASYEKALEAMKEQNEETGKDLLMKTQMQSAMAQLNNTYEAFKQILADILTPVVNVAVKLLIPALKLALLVFNLILIPVKVLANALYKLFEPLEPVVQSISDAFDGINSKIEEAVQF +>MGYP000153268017 FL=0 +MIVSCLYCGYVAPIHRVMKRQARALACLALAATVVGFMLRGAALTGGIDGMVDPEMLGLLWQTSVGDVLVYRLIGAVMILVGLSPALGTFLAGVVLANSEFRHELESDIAPFKGLLLGLFFITVGAGINFAVFFRDPFELLGFTLLLMGGKGMVLYLLALIFRMKGRDKWLFTLGLAQAGEFGFVLISFSLQQNVLGAALGERLLLVVALSMLLTPLFFIAYERFQHRMSGDTSDAPEADQIDEKQKIIIAGIGRFGQVVNRLLMLAGFRAVVLDHNLEAI +>MGYP000930301694 FL=1 +MADDVIPDVIGGAIPVTVIGGYLGSGKTTLLNALLRGGHGRRLAVLVNDFGSINIDADLITAHGGDTISLANGCICCSLQDNLGTTLHSLAARSDPPDQIVIEASGVANPSRIGHYAMSLPGLHLDAVIVVADAEGIRRQARDKYVGDVVLQQLAAADLLVLTKTDLVAPQVVQEVRQWLETQVPCVPCVERGNDQVPPALILGLRSELAGPDHGLGCDHEPYEHVHGEEPHDHRFAQVTFTTEEPLDRGALVAAIDALPPGVVRAKGIFYLADALGEQVILQMAGRRREWQTGEPWGDERPYSRLVLIGPRALVDEESLHARLSVLLTPTIE +>MGYP001478987189 FL=0 +MRMRRGVIFAALAFFLSAGAFAQDKRPDPKFFIYLCFGQR +>MGYP001414076324 FL=1 +MLDDFFTRAVIGGIGVALVAGPIGCFIIWRRLAYFGDTLSHSALLGIALALLLEVNITLTVFLISVMISFLLLLLQRRAVLSSDALLGLLAHSTLAIGLVVLAFMTWVRVDLMGFLFGDILAITSYDLVIIWGGGVIVLIVLSFIWQPLFAATVSYDLATAEGVRPEIINMIFMVILAGVIAVSMKLVGVLLITALLIMPAATARRFSTSPEWMAVIAAAVGAGSVLIGLNGSLKWDTPAGPSIVVAALVCFLFSLLPFPNFLGKKHK +>MGYP000072544056 FL=0 +MAIPMTTGNIFSSCTDDFEKLNTSNIQVDPADLPFAAQCTEPMTYCYPPQQNMFQFWTNLTIDLYGGYFMTPNGNFTNGDMGENRGHSGGMYENYYLHIFNNTRRIIAQCDASGERGLSGVMRIVQAYGTLMTTDAYGPIPYSSILSGENEVYFEFDSQKDLYKAMLEDLSTAITDISAMGADEIAKLKSFDCWCNGDKDLWVKIANTMKLRMALRLSKRETEAGNAGMNLKAIATEAAQNTLATVNKDILIDKSLENEMWLMFNWGDCGFNANLVTIMSGTKDQRQPLYMTPVS +>MGYP002856813101 FL=1 +MSLNLMYITNKPAVAKIAEEVGVDWIFLDMEFIGKDSRQGGLDTVQNHHTVEDIKNIRKAITKAKLLVRVNPIHEALTDYPSSKDEIDAAIQAGADILMLPFFKTVKEEGQFIRFVGGRAKTLLLLETVEAANLIDDILKVPGIDMIHLGLNDLHLEMGMKFMFQLLADGTVDKLGDKIKAKGIPFGFGGLATLDGGALPGSMVLKEHYRTGSSMVIVSRSFCNTDIVTDLDEVRHIFETGIAAIRDLESKVQHESKEYFEKNHREVVAAVNQIVKNIEAKEHGNQ +>MGYP003291001117 FL=0 +RSRRPATSNARTGAPMRTIWALCAAAACVVALAATQTTEFPLLIVLMAVLTMVVSWL +>MGYP002777180191 FL=0 +VRVIVVGTALPTWAAGADVVLPITTMAEEEGTFTNLRGRVQRYLQAKPAPGLARPSWFAAGDLLAAAGEGQGFFTASEAFDAMAAQHPKFAGLSYARLGLRGLPVIEAEPAGELAGVGA +>MGYP003430828053 FL=0 +WLNDLLYTHSENPPLEFIENVKGDLAQDALYVFTPKNELIRLPAGSTPVDFSYAIHTNLGNRTVAAKVDGQFVPLASPLTHGQTISIVTNPNATPNPAWLSFIKTPRARQAIRDQLKTLREDEARKLGKRVLTLAMSSVGLSSQRIKKSQLAKTLNQWGEPSLDSLYTSIGLGQKLAPVVARQLLPQDDAHSDRETLPLVLDGSETQVVEYAKCCKPLPGDPIVGHMSAGRGLVIHRKQCTQIGQKRHKNMPPPQKQDGNWLSVTWGGQV +>MGYP003343356212 FL=1 +MKVSIDKSVGGLQQGLTFLASTGATAPFIGLFCTVWGIYHALISISTSGSAQIDQVAGPIGEALIMTALGLAVAIPAVLGFNAINRANKLLVADLNRFGNDLLAYFVTGARVHSGE +>MGYP002238360443 FL=1 +MSQQELASMVGVSYRTIRSWEVEGRFPKQNVLYQKLADALQCDVSYLMSENEAFITEASEQFGNRGARQAQQILEQAAAMFAGGSLTDEDKIAFMDEIQSLILGFPKDVQRKFTP +>MGYP003335923377 FL=0 +DSCCRGCFSFVSALFNLVASGCLSGRFSLVSSCFARPSRFFRMSFWGNGDHSLVARGXSTQFPGGYILHDKGTPLQTRTVRRVLQILGRSPEMELCLCLREKRESSCHTSDAQKCEVHAXRRGWRERQLHLWSTPXAEPMDTACAPGRTQQDSMLHSAGGLLLRPRAKPACTRPAESAADPTVLPSVFPWRPWTDIPLTX +>MGYP003595024705 FL=0 +HPWFVATQYHPEFKSQPLAPHPLFSAFVAAALRHAGERP +>MGYP001183065379 FL=1 +MNDHQNITGIYPGTFDPVTFGHLDIVERACNIVDKLIQNHKIAWICGAFVAAMNNYLCSKYLLFDD +>MGYP001772517118 FL=1 +MSTYIRAVVAAMAIEEKYGIPLGDLVDTFADIPAADVVEVVHGRWVFGKDLADSFGSINKNKYHLYCSECRNQAFNKTVDNDPDFDVDTPFCPWCGAKMDKEVIL +>MGYP000932959631 FL=0 +MAELLKVEKLWAGYGEAVVLEDIAFSLQEGDSLALLGRNGVGKTPLLSTLMGAARHRSGTIQFAGRDQDRIAVGIFE +>MGYP001710201224 FL=0 +MEKELDLLIATEMSGDGDSVAEELRSVFAKRGVTVHRIEFRSGKDSVIRSVRANPQIHAVVLSQYQDQEKLSPRDIDQICSTAEGDLQVFVVVSEMRGSDYMKEIESLGIYTAVYQEDASFEKIADCEAIRPDIAGIMGAFGAALIAREHYEDGYVTTMLDYQKICELQFETSMAKCKGCTNNCRLTINKFSGGRQFISGNRCERGIGGQKNAHNVPNLYEYKLHRLFSYESLDADKAPRGVVGIPRVLNMYEDYPFWFTFFTELGYRVVLSPSSNRKIYELGIESIPSESECYPAKLAHGHVTWLIRQGIKFIFYPALFYERNEFEDANNHYNCPIVTSYSENIKNNVEEIAGGEITFRNPFMSFRDLGTVTDALTKEFTEIPAGEIAAACEKGWQELANARHDMEKKGEETLEYLRQTGKRGIVLAGRPYHVDPEINHGIPELITSYDMAVLTEDSISHLAKPERPLIVSDQWMYHSRLYAAASYVKT +>MGYP002084656506 FL=0 +LLGFVDVVGGEDDGHARVAQRAHHAPHVLAQLDVDARRRLVEKQDARLVRQRLGDQEAALHAARQSEDLAVLLVPQREVFQHLLDVGRVRALAEQAERIDLAVVSANFFEVFGARAAQGRLFSSADEQAGHAPVVVLSHAFWERRLGADNAARVAELVGANASFELCETLKDLANLPRVVQAKRN +>MGYP003719918597 FL=0 +LGLTVSGPLEPEPGPALDKIVTFVPVGPSIAAVHTALSDAGAGAIGNYSHCSFATAGTGQFLPLDGAAPVIGSVGRLERVAETRLEMVLPRSRRRDVVAALRAAHPYEEPAFDLLEMAPLPSSLGLGRVGELAALGQQRHAVQQLDGAALVLPRGAGVAQPGDQRMRRVX +>MGYP003357866643 FL=0 +FVLQMIWKNKSQQSFSRLFYHSTGLLAPGGWNGAFRSIYPTLLCITISGAATLYGSIQKFVPTTWVEFYFHPTINPFSLEPAHLGSFYNQRLVYLYYLVHGSYRFVASWTVSTSSYSFYRTCLHLCDSLSNLYHHCSKLCRLSSPLDLLDLCYFAVSQSTLYNTVLWQLRSRNTSARNLPILWRNQQIVAHSR +>MGYP001703284989 FL=0 +SNLETACCQIVSCSLXNXXXFYIHLGXGNKKQFIKIRIFRNSFWXFFFYIYKRFNFKIXRYNPNRQNRVYKXVDVLX +>MGYP000305843427 FL=1 +MAQIIVLGAGTGGVPAAYELKSALGSDHQVTLVNASSRFQFVPSNPWVAVGWRKPDDTSLDLT +>MGYP003518858476 FL=1 +MILAGITLFNPDVARLEENISSIYGQVDRVICVDNGSDNIKSIEDCVLKNWKNITIINIERLKSGQF +>MGYP000766296581 FL=1 +MVCSIEKVSLRHERRVSRLAEDYVIEMLHITKEFPGIKANDDITLQLRKGEVHALLGENGAGKSTLMSVLFGPVSYTHLTLPTILR +>MGYP000585817851 FL=0 +AVLVAFDTAEEFEAYQEGIEDAFLIALNGLFETSESVCNRDFRFVESVQAKLGVDVNQDYFDRRLQEDSLTTSNPSERPLNEPISFQATVEPANQEPTTNPSISLGPSTSHQPTFEPTYAFSSSLNAILFVSGICNGCENSIIWTNQINGRARHLGGEDDQPQNWSPRRSLEEEQAESSCFCPISAIVQDVALVASDVEQQFQSQLSRSS +>MGYP000583006313 FL=0 +MTGQRFSNKQVRDMERLAHLTSALLVAV +>MGYP001048952483 FL=1 +MKRNRILIVEDEQKLARTMGDFLRFQGYETCRAANGREALAIFYRERKTLDLILLDVMMPDISGYEGLKEIRKTSNIPVIMLTARSSVEDQMSGFEKGADDYITKPYTLELVKLHIEAVLKRSGKLAKVLEYQDISINVEAQKVYWKGNYIETTRKEYELLVYFIENSGIVLARNKILDAVWGYDYVGDIRTVDTLVKQLRKKLTEECTYIKSVYGVGYLFGEGGYEE +>MGYP000370032573 FL=0 +TATTEIYTLSLHDALPISARFWYAAASMKSHLSGGKALTAQKY +>MGYP003323358317 FL=1 +MASIRSRNGRYQVQVRRADLGSRSRTFVLKQDAERWARKMEAQFDQGELQQLRTKDVVLHDLIDRYRREIAPAKKSRDTEGVRLARLMRDPIASLSVGKLTAHELALFRDRRIKDGIRTCQYDLVLIRHILEIARKEWNLGLAVNPVDQIRKPNGLRPRNRRLEPHEETLLLDGCSKSSVTHLKPIITLALETAMRRGEILAIQWGDINESLRILSIPVTKNGRLGHPTIKYGPDDSPGDSKGHF +>MGYP003316122480 FL=0 +PKVTRLTHPHRRHLAAARLDVHHRGELRVGLGGERRGDAHALDAGLGGGHGRAVIVLARWRCWRRIAQAVRAARGVTIFAREVRQLGELKGNSAQLPADA +>MGYP004316249655 FL=0 +MIRNDTLRLYNQRLTSGDKMSTNPDEWKDNLIRQLAEMFKGMNMPFDENMIRQMMEQFSEQFEEMGIDPEKLGSVDMKVDMKNFAKAFSGGADMTEIFSNFGFNVEVNSPPVEVEVDGTPNSSKNEIMKLPEADWYLDGWNMCLTVDCNNSLSSDDEKVNLSIVNNGGLLEISLENAPQPFARIELPHPCESVEEIEINNGIVDVILKLMPQGSALDDEDD +>MGYP002631629027 FL=0 +KPEITLNMTDGSNNRFAKIYYLDNATTSFDNGYDGETFGGIANTTDVFTHLVANSEGKKYQVQSLPNSDFENMIVPVGIKAAAGKEITFSAEAINLPDGIKVYLEDRTANSVTLLSEANATYKVTLGESLDGIGRFYLHTKASGVLSTSEVALDNISIYSPAKSTLRIAGLTQGKASVKIYSVLGKQVFANTYNTTGVIDMNLPTLATGLYVVQLATEKGTLNKKITLE +>MGYP001549131463 FL=0 +QLARRFCTVTITRMPDHKGRKTMKFILIAPVLANLLFFASIASAEKTILAGGCFWCMEADFEKLEGVSDVISGFTGGTLIDPTYNGNHEGHVEAVQITYDPDTISYQDLLKHYWVNIDPFDARGQFCDKGPSYLSAIFVSNETERGIAEQLKKDVEEQFPDKTVVTPILDASTFYPIKGSEGYHQDYYKKSPFRYKTYRWNCGRDKRLKEIWGDKAVDT +>MGYP001793035123 FL=0 +MRTLWVSAAAGAPLQSNPTTPGTQARGVEDGHRATTAAAGKCHR +>MGYP000255802630 FL=0 +MEEKNISRHPDQSLKQGRKCVTYMYENRPNIWLQIQRDFNMIRAQTPAKVEMDPEEIYILG +>MGYP004001795269 FL=0 +GETIGFWDGDALITWTSNIQGWMSHSGFEFSNKMQTIEIYKSNYDSNGNFSGINHEAIFYDPEALLEPVRIVRDLNKLSSFREGDPIVFTECIQTIFPQNGRGEPVAPGTVIEYKVPDMYGQPWRQIWEEYFEQDMDIPKEDDIFSF +>MGYP000644120371 FL=1 +MKKRTPWKLIPLKSVPIFILLLLSLGGTQAFSFSPTVVLGGRLDQVFSPQSAALWGDMYGFGSWRTTLGSEAYAVFNADSSFSLPLDQQAASVDQHSLSAQVGLSLPRGSLLLSSETFFSIKDPLYGLTMLPDWRGRYGIALDQKSTKKAYVGYSGSYLYQEKGTEDRLSQSTAIGFIYEPSFTRSYRFELNGSLDDLRQRETSSGQQRRDYGTAGEFEVSGLAGYFMDWSLQILAGARLSNDPTYEASIADLEAQISWGPTRNLNLSALLYGEGLSYWERTTEDGSDELTRIDIGGQVELDWTFNNSLYYTVRLTGAHILSNEPSLASWDISLGLGIEWGF +>MGYP002638041597 FL=0 +KAYRENMPFDQFTIEQLAGDMLPDATEQQRLATAFNRNHRQNGEGGALAAEYFVENVIDRVETTSTVWLGLTTGCARCHDHKYDPISQKEFFQLYGYFNNIGEKGIGNGTKANPLMSIGSPLERAPADHAEKVAALDAAVATAEKDLPARFNKWVTGAHAAAIDPEAVWFSADSVMSNTVAGKKGSLKLLPDSSFRYSGKTTTGVDYNLKLAPG +>MGYP000692869867 FL=0 +MESRTVAQAGVQWRDLRSLQAPPPGFTPFFCLSLPSGWGYRHPPPLPANFFVFLVETGFHHVSQDGLE +>MGYP000986204494 FL=0 +MKRLILVPLALILLKVLAACSSDEEAEPEINQVAYSAMDNYFVGPQYLPAGMTKLTLTNDGQELHHQQLIAIPEGMTADRLLVGMAEGGDAPPPPGVEAAGGASALNPGLAGLVTQNLAAG +>MGYP003576055532 FL=1 +MFRTALMAGVAVLAGVAVGFGAIEASAPVSAAEAIPNFAPDRNTGWVLDRGNHDDLLPDGSRPGPVTFDKAHPYIPNAQAKGRQPTYRVADLSNPILQPWAKEQMKKANDQVLAGKMPFRARELCWPIGVPGFAVFSAVEPTYIFQKRDEVIMINQGGPEIRRIRLNAQHSANPKPSWYGESIGRYENGDTLVIDTIGVTTRTFVDNFRTPHTDKLHTVERYKLVDGGKAIEISIEVDDPGAFTTKWYARQRWNRVQEPLTEIHCNENNEDLFNLYPMPSPKAEKPDF +>MGYP001236546810 FL=0 +MKQAIRVAEAQEIVLQSVQPLGIEKVDLLQALHRLTAEEVIAQRYIPLEDNSAMDGYAVQHHDIATATTERPALLTVLETLPAGKTPHYQVAPGTAIKIMTGAPLPAGAE +>MGYP001162411550 FL=0 +MLSRIVTLKVLLKELLGHTTPIIPLMISWMIFKFSTNFYDGSTDSSKEKLKSLDINVISHPHNLGYGAALKTGIKNAKFDTIVISDIDGSYPPKHIPELIKIYEDSFDLGNGLDMVVGARKGKEYDGSFAKFIFRKLLKFLVEWTTGRTIVDINSGMRVFSKKTVSNFLQQLCNTFSFTTSLTLAYMLNAKFVKYESIEYDARQGNSHVRIFRDSLRTLQYIVEAIIYYNPLKLFLLFFIFFIFISLIFLILSIYIKSILFMMIMASSVIVAFISLFFGFLLDLIRQNSKQK +>MGYP001489463811 FL=1 +MFAGACCRVEKADSVLCGDDQFVSVGHDVAYNIRGQCGRVARFHPVNGKAVGVQVEFVQSSQVCADPHNLLCPVVIDCLELLCEILFLPSSWRYQR +>MGYP001439564737 FL=1 +MSFIIRAARMDDVQALYEMAKRTGGGFTNLPPDRKSLTAKLERASAAFARTGDGIADDLFVFVLENLDSGEVRGTCQIFAQVGQKWPFYSYRIGTLTQHSVELDKTFRAEMLTLTTDLEGSTEVGGLFLHPGERAGGLGMLIARSRYLFIRNHRARFGDRTIAELRGVIDEAGGSPFWDGVAGRFFGMNFQQADEFNAVHGNQFIADLMPKHPVYTAMLPESARSVIGIPHPSGRAAMRMLENEGFAWENYVDIFDGGPTMTARTDQIKSLREAIDSRIVAIDPSLSERSSGETASPAHGQLPPPRAAYDLLDRREDGIAIDPDAARLLAVEPGNEVSHVSRA +>MGYP000479884579 FL=0 +MRLKNPELFRQQCFVAGEWIDAKSGKTFEVYNPATGGSVGHVPVMGRDETRAAIAAAEAAWPAWRQLTARRRSRIVRRWYELIMENQEDLAVIMTVEQGKPLVESRAEIANGANFVEWFAEEAKRVYGDTIPMAQAGKRIVVIKQPIGVCGAITPWNFPSAMITRKAAPALAVGCPVVVKPASRTPFSALALARLAEEAGMPAGVFNVLTGPAVEIGAELTGNPVVRKLSFTGSTEVGKKLMRACASTVKKISLELGGHAPFIVFDDADLDEAVAGAVASKYRNSGQTCVCANRFLVQEGIYQTFADKLIRAVSAGLTVGNGFTEGVNQGPLISLDAVQKVERQIEDALSRGARIGCGGKRIEGNGFFFEPTILLDVTPDALISREETFGPVAPLFSFATEEEAIVMANDTPYGLASYFYSRDVGRIWRVAEELEYGMVSINTGIMSTEAAPFGGVKESGIGREGSKYGIEEYLEIKYLCLGGLDKT +>MGYP001249954087 FL=1 +MRPGFAPDFAEANQDKLMIFGLLRKNNVNAVIVERQYGILTTAARRPEFYLEANVPDTVMGRFEMLSAVLILYFRRTRQSGEAVKTIAQEIVDAFFEDLDHSMRELGIGDNGVPKRMKKLASMFYGRVDSYGTALDANDSQALAAALKRNFHPENSDETLTMERLALYMTEAARALDSVPESVLERGELELPPFNGGAADAAHV +>MGYP001276526933 FL=1 +PQHSDTKGFTTTSVALPDGTAGVQVSMTIVSAGSSILEFAAQADNRTEKMINGAVRKRVS +>MGYP003150834777 FL=0 +MALISRSQHEAFECFENDVLMMAESDEMSGSSDDKTPVERLQVA +>MGYP000526089798 FL=0 +PYAEWIAGYGDPAYAGTVDRAMGIGSEIAETLKTEERLAMTAAFLRSNRLEWMFWDAAWRLEAWPPIHRDAGVPPRQ +>MGYP003495424184 FL=0 +MEQIVANLALMKKNLKQIGYQGEILLESLDYHEGGAYERVTEPDFIREVVEKSGVKLLVDFGHLLMAATNNSLYKPDQ +>MGYP000214496963 FL=0 +QHPNVPEAHYELIPKRAANPMKTDWLHPVRTWRRRRATSVPFPREWDEILARNFPLDARLPERDRKELRKRIQIFIAEKHFEGLGGLKLTDEVRVTVAAQACLLLLHCGEKDYPRLSSILVYPTAYKAREVSRSADGLVTEGEEVRLGEAWNLGAVVLSWHDVQFGAGDYHDGSNLVLHEFAHQLDMENNVANGAPLLPRRSMYVAWARVLGREYEHLRQEVAKHHRTILDRYGATNPAEFFAVATETFFEKPAQLHDRHPELYELLREFYRQDPRSYFTRPPGAGSPGSETAG +>MGYP000694618993 FL=1 +MVSLAFISVHLSAVIGPVGRLHGLAHDLAIRVLGQLLHKLDMARALETAQAIGAEAVDGLVDARVTGCLPLLEHDVGSHGFAPFVVGAGDDGGLEHVGVAVEDVLDLDRGDVLD +>MGYP000858948085 FL=0 +WTRRVPHPVLIGHAASLTSVLLSPLRGAARAGGRTAQARRGPAAQVRGAPGARRPAPPTRDAPRLRPDIGRASGPRRGALTCGVLAEGYHGLGSRTRRLQCPHRHPRCGEVVGEPRRGARRVAAGRRRRRPKWTRSVQLVREGGGGGGGGGEGAGGGGRTLRVGSSPAVHSRQHNQYVFQAA +>MGYP001041972360 FL=0 +HGGDYNPDQWIRTPEIWDEDMRLMKLAGCNAMSTGIFSWSSLEPEEGRFEFGWLDTIMDKLAANDAYAVLATPSGARPAWMSEKYPEVNRVNEAGVRALHRGRHNHCSSSPVYRDKCNIMNSKLAERYRDHPALLVWHLSNEYNAGACHCDYCYAAFEKWLRAKYNDDLDELNHQYWSGFWSHSYSKWNEVRPVDGSVHALMIDWRRFLSDQLIDFCKAEIAPLKKFTPDVPVTTNFMGF +>MGYP000630167433 FL=0 +NFTRKYPTLESGSKVKIFRKKKNFEKERTSTWQNEIHEVISIGTSHGQTFFKLDSLPKEYLHNELLKVS +>MGYP003587511970 FL=1 +MGKILLVDGSSILFRAFFALPHFTTTSNIPTSAVYGFLRMLIRIIKDEKPDYLAVAFDKKAPTFRHIEFKEYKAQRPKMPDELSLQFDIAREILQSFGINYFEIDGFEADDIIATFVERLKGENIKISILSSDFDLSQLIDDNVELISPKKGVTKIEKIDKEKFIQEYGFEPTSVPDYKALTGDPSDNIEGIKGIGEKTATKIIQEFKNVENLLKNEETCKKYGIIGNEEKILQNKSLCVLVRNVPIAFELESLKLRDFKTENVKAILEKYEFKSIVKELGLDKVDFNEESIFNSLPKEIGKEEYRVNLESENTAVVYLISSEKRIDKAILFYNERFYDFDFSSNLFLNPSELDVLKKVLEDETVIKYTNSYKSLLKLGNFLYTFVNNVKLDSTLASYLIDPDQSEFSLKNLAFLLGKDETFNSFSDEVVFLKKNGDYILDFLKKEKLFELYETLEMPLSRVLFEMERKGITVDVKVFKSLKEEVEAELSKLENEIYKLAGLSFNILSPKQLSSVLFDVLGLEAPPDSKGSTGSSTLLEIVNKHPIIPLILKYRHLTKLLNSYIEPIPRLVSKETNKLHTIYHQIGTATGRLRSTNPNLQNLPVKDEWGERIQSGFVVSSPDSVLLSADYSQIELRVLAHLSSDENLIDSFLNNYDIHERTAMEVFNLKKQEVTKDKRNLAKAINFGIIYGISPYGLSKQIGTSKEEAADYIDKYFKKYPKVYEYINVAVEEAKKTGETRTILGRRRLIRGLDDRSAAVRDAARRVAINSPIQGSASDIIKLAMVKIFNDVSDVDILLQIHDELVFELKEALVSEKGEQIRNIMESIVNLKVPLKVDVSFGKNLGTARK +>MGYP001804161484 FL=0 +YWMIGTNSSNLRPPTGEQSREGIMLYFTMKTICTKISCLXQSQMALVHRTXSCNQPLNAMFTFMLLWDFAKKTQPTXSLFFGSIVIFSLAHIGSQIWVEKNFMKNHWPD +>MGYP001421152768 FL=1 +MLVGGAAGDAGPPVRPVPPRPGRPAGVDPWSPRGAALSAARTGLSPGAPGLGASGDTTRAARRAPRASDAQKTLRPPRPGDVAARRGPARVRPRAR +>MGYP000446294339 FL=0 +LIVAYPITKNGAPATAADIDGTNNHGDLNDGDRITFTFETTVTGTVDQWVEAEGRLDWEDDTITSPYHNESKGRVQIQDDEQTYTPKDTDDMSIQSVPVYFNHGTNPIMSTAQTYHLHSMNYQSNTKVVTDGFYTRIKDDRAISTGWKLTAKLSDFKDSSNAPMPNGTGTSLKLENMSIERVTDRDTPQETIDPSPTGTDVPSSVQSTETIVAGQPTAKTLVTAQPNQGQDTWQLRMPFDKISLNLPANAGKKGTVYKAKLTWSLDDTP +>MGYP001472249376 FL=0 +MDYSVSEGINFFDTAEIYSVPPTAESYGKTEEMIGNWFEKRKNREKIILASKVAGPGCDWIRGGGNSFDEKKIGEAIDGSLKRLKTDYIDLYQLHWPERSTNFFSKLGYRHNKNEGSWTAFEDILATAQKFVDQGKIRYLGLSNETPYGLSKYLHLASTHKFPRVVSVQNPYSLINRTYEVGMAEMSVREKVGLLAYSPLAFGMLTGKYLNGQMPEGSRLKLYSKNFPRYQGTRSQLAVEEYYKIAQKYEMSLTQMSLAFVNMQPFVDSNIIGATNMKQLEENINSIHIDLSDEIIKDINAIHENNPSPAP +>MGYP001245916141 FL=0 +VDTMQSTPVESGTTTFTAEEEEMAQFVSVVLKDTETIWGEIFKQAGSTYRQPSLVLFSGQVQSACGYASAASGPFYCPGDEKVYIDLSFCDELKTKFGAYGDFAVAYVLAHEIGHHVQNLMGILDQVNAQRSRLSETKANQLLVRLELQADFLSGMWAHYEQQMDYLETGDIEEAMNAAAS +>MGYP003647845281 FL=0 +DYVTMPDSDVFDWGTGDFSISWSIYFTTIHTTTAAYVNNMFGSSLSGVGLVIAYKNGANLFLLMNNTTVIDQSYSLSTGQWYQMEITRSGTSINWFIDGVSRATATSSANADKAAPLAIGASNEGGYRASDRDIAGYMDEIQIIKGRALNTSNFTAPSAAYSDPQAPANNFTNNNTVTTTTHTPTNLNCLLSPLDKNSATVLSNGNRTQSDLGASW +>MGYP000974398092 FL=0 +MVRRQEADRYGLAAVDHRAPAAVVFRRVEVAQRLRNVVVVNLGVVLGDDAVERRQRTVVDGVGIPVARHLPVGHAQREVGVGVEGPLAVPFAQTFNIGGVEFVENFAVEVAQRLGSQHPRDMVEHAFGLLAQSGGRLHGHAVGAFPDGLEKGVGMGFRRFVAGYAFGEGGYAVDLRATAVFAECLAPERPLGGLAPCETLLGAFFGGIGCRQRRQRFAGDLVSEIGIHDTAVFGAQAHHFGVFGVLHGPESELRLVIEFCCDGPAAVDAQRFALPFFPGVGDRGVFGGIVDAQRGVGLLRFGDDVEAPRADSDLGRIGTFGDVGHGVGKDILLRVARESVDHREIALFDPFRRYREMFFRTIRNVPGRVGRRAVVFRSIDAEHREVARVAGPDPVVGVAAELADRRGRRGHEAHVVELLVDEQELLVAVVHLLDRGPETLAFGLGPADDLLGRLPGLQAVGHLLHAHEEADVEPFVGQLFGPRHGPESVREVVVLDGRVALDGVVAAVVVGQQQPFGRDQLARAAAVEEHYGVLHRGLVDRIDVFGREAESFRAHVVDALRDEARKPHALVGQSRQDSEGREQ +>MGYP000161612758 FL=0 +MAKQSKNLAKVQSMLDGTYGGKTQVGYGDQDSKHRSVGDTWTDSEGYEWEQKEGFRVKNSVMPAVGMFNHQCKDCKKNCSPKTAKPWDRDCFKADGRCYYCQLDYEVELKTKPIRWFAYRRLKDLQNMESLEKDMIQWVDEMTKQREKNPFDMKVANAMANGEVEMSIKKNTQ +>MGYP003493975136 FL=0 +CIQPXRXMXGFLIVKLRPIHQLPLPQVQHGHPGAIQLGQDIRVRYXHETSESPNHALQIIVYPKSKDLVSQSMCNHSIKDTNMPSITWILKLVSKRYSR +>MGYP000200203148 FL=1 +IWGVLPVFGGILIFVSMASLGLPGLNGFPGEFAITRSAWGIYTWQVAISMVGLLMTGAYVLKGIGETLHGPVKPEWRNLPKMTITEHAVVWPLMILILSLGIWPQWLQAVINDTATMILGG +>MGYP000071017550 FL=0 +MKKFLSLMLAGLMSASLFVVGAAAEEPKKETVVGKDGGVLDADFTKNETSNDNNINVKVEAVTHKYAVDLTFNFTDLTIGGLVWNVETLRYDFAEGKALTDSEQTITVTNRSDKPVYAWGTVTDGDANDYVTVGMKTGETGSGTNDRLEVAKATAGQTANGTATNGKLTVSISSANWANVANYYGKKVAETEDPSTVNFKAATVTVTISKNATK +>MGYP003685103309 FL=0 +MKKNIISNIVKQVRTNEPIEPDTVLLGLILVSLGPLNIFPTT +>MGYP000129413943 FL=0 +NLKSIQYGGSLQFPACTHRKDKYDGIREEIELWLDDMMVKVNDFTVEKRYGEALNYYVHDIFPTALKLIVKIERWMAREKRREMEKRLARSMLGNINTHMVDPEELTNKRLRGLDTYFYGMMNEQIVVLIEHLKKCRMEGKNGWDPSFLRRDLIMRLAELYRGEFRSKNYKKKPEYVGEKYRYLITR +>MGYP004202648141 FL=0 +FQTQFFEFCNEIEPFLYELAQILLRGEKRENDVRRLSQNTYKRLGM +>MGYP003594687530 FL=0 +MYPQLTTQPGAIASAAAIARGELSPLEAVDAAIARIEALDGPLNAVVVRDFDRAREAAKALDGKQPGADQPLFGLPMTIKESFDIAGLPTSWGIAEHKGHIAQGDAVVVRRLKRAGALFLGKTNVPPFLADWQCDNPNYGRTSNVHDHARSPGGSSGGSATALASGMVAAEYGSDIGGSIRIPAHFSGVWGHKTTWGAVSGDGQNFPETDGHEIALGVVGPLARNGEDLALLLDLTLDLPLPKADKPIGQSRFLYIDRHPLCEVDDAVRGP +>MGYP001596028094 FL=0 +SERAGGSAIPRERDSGGVRRSDSEIRGSDNRRFGKRKPHHEKSDRKNEKKLLHKC +>MGYP001229890441 FL=0 +TGRIPVWWGFVHIVSKAVVSASIAGIPCAHDLASIDATLANDRIDDPHVAMELAEFIRDCFMKSKSKLYQLDNTATLTEAENKSTAWIGSKYFLQKSGYYDSNYSESGRKDWSFNPTRDAGFESSKTPGGKGGHPICSEWWLDRNVGLRKKLIGSIDNNYFTNLMTIIGSPKYFNPVGNATDRENILLRKYLALQTNNSGYSGSGLNQSFGNSYAERWTLDRSQGSDIQASISYGLGNVAIDGLVVASAAVGGLLKGPGALVEGVMIREGVTLFQGFLLMVFVIILPFL +>MGYP003333085768 FL=0 +MDGLKFDLAQFCKEIRTLLQVAAEGHVAFGMRNETYCFDFAYRKFVTAEASRRKEEVNWETTMSEIQEITADSGDLLGEVDTHVVSVALSHAVFGRADWAIMLSCFACLWHEVKTKYVDKEKWSLTILLDLLRSGRLSSIVAEYKQKHGYAPHPCTLLELYEKEHPDELDLHPPTPRMKKKRGAPTQLLDAKADPDQRTASNGEDAFMLAATLRTAH +>MGYP001563487917 FL=0 +YNSQSPSYTQSNSILANVHANARSVYYNVLMSLVRGAQCDPADPYIQQPYMQQPFVYQPLMSPQFRAFVNSRYKGVGIGIKQADSLHIVKATTLPPFYLYVLAQSEVASHYVKGVPAAGGEAAPVNVLTYTLVPNVLFDADAGLVRIVNDDAEQSPIIIASTKDDQLNYNLGAASSLVLVGDQLHDTN +>MGYP001435143440 FL=0 +MKEVIELRLSCIVYARIRVILPPNLDQTKRKRFSKRADIWGTQDPGPQRPDI +>MGYP001552004220 FL=0 +NQAIFQLAQLEYLANMPGNEGLRPLVEAQRQVIMGGMPPSGAGATPSVTTGATPRVVPAGGAPGATPSVVQPADQYLADQAILLDSETGGVNADGTPFEPPAPVVTPSEPLPEAAPTPDVAAPTETPAPQSTILDDLQQEIDQNNALIAQRREELEAAIEQYGRAETGAGMGLPTSPGGAELIVEQIQSDINNLTNRNETLEQRIFEQRQVERETQAAAEQEAAEQAETESRMQPLIDDA +>MGYP003921459353 FL=1 +MENLKKQGRLIMPQKKPKGNQKLLLIKKNNGTYLEEEFFDVKFVPLLNKDIK +>MGYP000745101651 FL=0 +RSEKRLRTLAWQYEGKHIVVANATIFIEEKPAMPNRRIRRNRTENASKRGTKETLREICNRNFNVVTLINLLVMTAYPLIFTFVYSFTDYNLLRSLKKGSHFIALQNYTKLLSDPYFQQSILNTVKFTILAVIFEMFIGLVMALFVNSLKRGQKTMRTLLLLPYLLPTVTVALSWRMMLSPNYGIVNQVLQALHLPVYNWFSDIHTAFGMLVLIDVWQSAPFVFLLLYAALQSVPQSQYEAARIDGANRFKILFYVTLPNIKNSLALCALLRTIDSFRLFDKVNLLTGGGPANSTSTITQYLYNYGIKSLDFGFGSAGAIVMTVLVLLLSSVYIKRAIS +>MGYP000475249838 FL=1 +DALPICFNLDFTYQRGFIKTWECNTSNVLIRLGVAF +>MGYP000373718212 FL=0 +AAEMWYSMHSKVLGDSFTVKNPLIIYNDHPGFQQTNAIQGAISVGTGGVTEGLRNRVIFPVAPTNQQTNHVLGHELVHAFQYHMIINGDSTNIRNLGNIPLWMIEGLAEYLSIGRIDPHTALWMRDAVLNDEVPRIKDLDNGKFFPYRWGQAFWAYVTGIYGDEVIAPLFENTAKYGLKMSVPMTLGVKVDSLSENWRSALKSHYGRWAIKGKKEDLPGKTLLDDANAGEMNISPVLSPNGKYVIFLSEKNLFTTDLFLADAKTGKLMRKVASTASDGNVDHFNFLESAGTWSPDSKRFAFDVYENGRSVLVIKGIFKGAKSEKIRIPDVPAFSNPTWSPDGKTIVVSGLVRGQTDLYEYNLKSKKVRRLTNDLYSEILPTWSADGLTLAFSTDALSVQRGRTNGAWAMNLAVMDIAFGKTENLDVFPGADNMNPQFDKNGNLFFLSNRDGRRNLYRYDMLTKKVFQLTDLMTGITGITPYSPAITVADDRDRILYTHYNKGRYTIHQAKDADFSPKEIDPMSVDQVPATLPPFSTKQRDMVNTSLRLMDTAKDSVSMTSKKFKPKFKLDYLGGSTGVGVNTGNSSFGTQTGLAGGIDALFSDILGNNQLYAGAVLNGDIQDAGGQVSYINQKNRIGWGLNASHIAYQTGGYSYLAYTPVETSPGQTDTVLASVFGLERVFQQRLGASAFYPFSVTKRVEVGAAAEFYSSRVTEYSDYYDPVFQNYLGSDQKKQPKGPSLNLNNINAAFVGDNSYFGLTAPLQGWRYRFGAEQYFGDYQFTALLADARKYLYLKPITLAVRGLSYARTGGNSTAFSLQYPLFAANSNFVRGYDRKVFAATDDPDFIYRTVGSKMIVGNVEIRLPFTGPRRLSVIKSN +>MGYP000608946936 FL=1 +MLSLAKRALASDYVKSAELAKKADDKQAEIDALYSQWEQAQQALDELCEESSKQG +>MGYP001546073984 FL=0 +LIAAREERQRRKEEERRAAAEAIERAKREAEEARVRAEEEARAEAGRKKEEELQKMMQLLAEQKAARDARYAARKERLKKGRR +>MGYP003398203515 FL=0 +LLPPWEQGYKNVFVNKAKEILAMLLFNEESLEGQLKVRTSGTPDGAETHATTQVYPLPTFHPDCQVVSPSDFSMKPVPCGYDLTRLLPTPDIARTHIKLANSVSTSSMLVIDPDNVIKHKIVPPPILDKIYIYQAINPYNGLVYGHGAPKIFPVDGLRKLDLSKFPIDGDFTLWAAREIGCGVEVLNETVAVHEFGTSQTSGAITAYREAYKLQRTLVGAAPYDSLFVPRIDSPRMGAPRTANTDAKNSTMDSVFNVTDALLEAERRTVLKRLETWISVNCYPSTFKYMA +>MGYP001150268012 FL=0 +MQLESTGESGEDMGAVSDDMFTEFFTQVLNPELGCVDMVIFLLCSFC +>MGYP001140916756 FL=1 +MISLIFLVMEVGICYNKWEKIFYTNGGCIIMSEENFNTENGTNEQTCSQPQQAYSQPQQTYSQPQQTYSQPQQAYEQPQQNYDQQAYNQNQQYAQQNYGYDQSQQGYGTYQQPQQQAYGSFDQTQYGYNQPASSGKGMAIASMVLGIISIPAICFWIVGLPCAIVGLILGILYNKKNEHSPMATAGIVCSIITIALLVLVLILCIVGAVSLSSLEYSYYY +>MGYP001587054973 FL=0 +MQPKPVTNRRSTAQEIFAGCADSARQPYMNTPLQLRPVHTLLCPWPXFPGRSSRPNGAFSPVRTESSPANRAGSRAGSHAESAPTFVLRGRVCGAXXLX +>MGYP000208465860 FL=0 +SSDLQLVEYPVISAELIMMPQNMTEISDEETAGKVLKLIDVLEDHDDVQNVFANFSIDDELLEKINF +>MGYP003351738706 FL=0 +MKQSGGFIWVYSELGRGTTFKIYFPRVGQTVEPRTVETPRIILPADTGATILLVEDEDSLRRSIQQMLTKAGYPNGFSTELVTYVLPQWAASVQGYLKAVGIDAKISQLQVQALVQRCQGRGECPMDMGSWGSYSINDVSAVMPVFLGGGV +>MGYP000525123928 FL=0 +MFDLFIKEVDKKLADKSLNNEITSKEYYAEKQKLKYLKPAKEYTNNLKYAKIEDMILDFKTKLEQLKFDTKLTTFEQKEFNIKDLEKNKKNNQTELEYQKEDIQKEKYDYEYHKIYQERDELSEEKLKEKIKELEDKEIEPPTEKEVDDMYNDLGYKYLGKEMSDRENYKLAETWKNLEKQDINEEHESMYMNYDELDNKITRYTFDNDLDNNEIKTYIGKRLGEDYGKNLDREKKELASKFAELEVSGRYRDIDINNPKLLLQLEKVDGLNIETLEETIGLDTKDLKKEIYIATYEEYLDENKGIMSPAKEYYTKDEKGEYIKIGESDKEETTITVDGFDFKLKNDEILKGEELEKVTQKEMVEELIKNEVEKSLGDGKRVTGISKVLDVNFLKELEKQCGYDKKDETLWDRVSLVSTINEKGEEDFQILEKYYDEDGNITYKDLEGISTLENSNRDIAIETEEIIYGKYKKVESTKTLKEYQTESGDRYAITRDEDGNLGFSEIYSEIHREDYHILEAKEIDTYSFETKWLTEGYDEFDINQSDIENAKEIFDRSKDEMEKTQENTKEDKGREL +>MGYP001623022299 FL=1 +MEVDLEHLRKPCTCGRAHEISVRGIWIESGASGRLYEMLTEGELREFTAPVIVWDDNTSEAAEKILGDVSEICQEICLSAGNLRADSRSVEILEETLPEETDLILAVGGGTIHDLSRYVAAQRRIPFLSVPTAASMDGFLSTTADLSQDGMKKRVPARAPLYVFADTDIFSKAPYRLTAAGISDLLGKYICLADWRIAHAVTGEYICEEICSLEYKAVKDVVKRLDDIREGDAEACERLMYALLLSGLAMQMAGGPRPAFCAEHHLSCLWEMEVINESTDALHGEQVGVGLLLAEKYYRRIQKAIENGRCEIRRHEGLEKELLQTTFGSHGLYEAVMDENTPDPLDEVDPERLRRAFLEIAEILDDIPSRERLMDMMEEGGCRVSLSEIGLPESLEEESLALAPYVGRQMSLLRLGKLLVI +>MGYP003326090123 FL=0 +VYKRQIVKTVEESFSNDFNVDKCLLKFYKNKDIEKIEKETGLSLHKGAIHCGSFSSEKADILFGDNKIESMVIAVIILEKEIGLLKLGSLDRAKYLGDEDTTFIQAHDYVDLDWYGNYDTWADFPDGNTTYRQILMHYDMRCSSSGCSGWDYTTKIIILKPNGEYNADGDPTFINAQTLANVVTPYGTYMQEGNSQGSGFSPNWVQRYTYDVTDFAHLLVDSVKMRAFYGGWSTGFNVTLNFEFIEGTPPRDVLDVQQLWSGSTS +>MGYP001037461204 FL=0 +MTRMLAKRIIPCLDVTAGRVVKGVNFVELKDAGDPVEIGRASCRERVSDTV +>MGYP001119331046 FL=0 +LEERIKAIMKRKHISITALVAVLVVMCVTTTVFASAAPEDREDPHQNAPETGYVYDHLGIVEDNGVSIMSKGGENGEKLYSADDGKTWMTEERYHAEYGSCYKGKLSAFESGGSPFPVGL +>MGYP001570668198 FL=1 +MSLNKRLSWTLLTLFFIFDNFVSYYAVTYHGGREANLAIAWLVEKYPLLYFVCIPGQIVIIYFIVKWLTRFASEKVILTALVIYWPIANSSMNLTFILGHRQPAKNWLMFTAVGVLLAVVYALRNWKNKNHRKF +>MGYP000837251816 FL=0 +GLGDVYKRQHFKAKREMEASHQLEKVGEGIRAMYSWNGDDKYAEK +>MGYP003705394679 FL=0 +TDLNKVVTLAENGNREAQIGIAHVFEQRGQSRENIMRAIAWFHLAHNTDEDHFSSGRERGSRITDEFKRIRVESELFTEGLRSELTGTNVGVAMAGRNCSAEQRA +>MGYP000950492884 FL=0 +MSEMHATVEAVTARIVERSKRGRQAYLDLIAKQRDAGVNRPVLSCGNLAHGFAASGEDKASIRDGKAMNIGIISAYNDMLSAHQPYGRYPEQMKIFAREVGATAQVAGSTPAMCDGVTQGQQRDVLDAASQLNRMLDERVDDPEIANKVNEELRLQYRYLDLRRPEMIRNLRLRS +>MGYP000774599694 FL=0 +MALEKISDKQKEILEFIKSEILNRGYPPSVRDICEGVHLKSTSSVHAHLETLERKGYIRRDPAKNRAIEIIDDSFGLQRREMVNVPLVGRVACLLYTSDAADDL +>MGYP000900149593 FL=1 +MKIKINRFKNIHDGTIGKLTITDDGKKLFECFTLEPAGADTIERGKDRRIPAGLYNVEWYNSPSQRRICPLLWNELVPKSRYILIHTGNFPKDTAGCVLVGDGHNAAGVTNSLKTYNTLFKLAQKHGLQSVEIINGAGV +>MGYP003625506155 FL=0 +MKEVKVKLTLDDKGAVVAAKNIQDSIKDIGDEAEKTGGKVGEVGKSASKSKKGFATMAKGLKSVGVALKAAGIGLVVALVAGLTEAFSRNKRIMDGVSIVLGTIQEVFTQVADALIATYDAVAQSSDNFDALGKVMGGILTLFINPFKISFFAIQLALQAAQLAWEDSFFGGGDEEKMAQLRLDIEDTKTSISEVADEMVEAGSTIVDNFAEAVTEVGKITDIASENLSKVSIKAANETAKAHKAATDAAIIAQAMAAKNIALFDRQAEQQRQIRDDANKSIKERQEANIKLGEILEKQEEALLKQAAAVEAGARAEFAKNNSIDNRAALIAAEAATAQVLADIEGKRSEQKSNTNTLL +>MGYP003576697368 FL=0 +ITTKLDLNALHAGIFTEGEVTENSAFYLSARGSIQQYLFGDKAKEDLEKEDGIRVQQVPQDSDYQFKYQYNLDDANSITLSANGATDLAEAEFLDLSTDVLEDPDMAGDARIKNNFQNAFISWRSQPDDSSQLNVQLGQYINKGDTFWGDKKYFFNIKTTDSYVTAQYEFLLAKDHSLTLGAEAHSTDY +>MGYP000113647356 FL=0 +VTLWIVAEGRYEPQNFQWYAIRNDDLEWDWAVGASNYKDIRAERSAVQPGKMWEIESSVDILRQQVETPLRNGFFGASGGPGGGSVTAARSSASRRSLSARSASSLAWRSAASRCLRSASSLASRTSVSAVRWALTSVLRNVSSKSGMGAGGAPGGMGVCEGLRASISRASADQRAGRAGRTQPGIAVRLWRAEQNAALPAFTPPEI +>MGYP003702691201 FL=1 +MLSRFGYKRFIKSYKYIIGKEAVILLQFYNKDIGHYSLLINTRSSLSDPFPSIFSDFPVVSEVGGGPTLIH +>MGYP001051415245 FL=0 +EALAVYKELVDKGADFFKSQAMFDQARVLAKKGDTAGAKDLYKKILEKQATGPLHDEVQARLGAIGG +>MGYP000892997868 FL=0 +LSYSLAQGDGINDAHNSLVEIIDNLGVVAQDADINFEADPVLRIFLEVSDGDLSYQQSFAIDVLNLDEIAPAITSGATATAIDENSGAAQVVYTATSDDSSDVSGGVSYSIKPGSGDGEAFSIDSSTGVVSLIGNPDFESKPSYAFTVVATDAAGNSTEQTVALSINNLDEIAPLITS +>MGYP003509546382 FL=0 +NTAEDARRAVAAVKFGPGNHRGLAAGTRPDNYGLAKSMEEFVERSNAETLVCVQLEHAAAISNVDEILAVDGVDVLFVGPSDLSQSMGFPGNPTAEPVRAAIEETLRKIAAAGRISGMPASTDSVVSVLKTGAKYIYTHLPRLIGAGAAQFRNAAASSK +>MGYP002781630755 FL=0 +AYIRRGDGGFEEVMRIRVADVIKTVRVKATVIGSGSRARVLGVDLDITDQLLAQEKIEETAENLQAVLDGSP +>MGYP000437988234 FL=0 +TTVASASSATGAGATGVALLEIYEVP +>MGYP001158237079 FL=0 +MNRNLFTSESVTEGHPDKVCDQISDAILDDILTHDPNGRVACETLTTTGLVVISGEITSSYNPNYEQIIRDTIKKIGYDDPKSNFCSKTLKVLLYIDRQSSEIAQGVNENNNQEQGAGDQGLMFGYACLETPEFMPLPIQLSHRLTQRLSDVRKNKKLPWLRPDGKSQVTIEYDGYKPVSVSKVVIATQHEDLIEKFSSEEKEHSYIKEEVIKEVVLPVL +>MGYP001046820937 FL=0 +MPEVLDGLRAAGVNDVPVIVGGIIPEADAARLLGWGVAAVFTPKAFSITDLRGDVVRLIRPAPRLAAAVCVWGLALLALSQPVADQVHLG +>MGYP000228404273 FL=1 +MSLTMADLLFIWQLFILFEIVLFASYTFIMYIYSRKEEEFPINNNLPNVTLIIPMYNEEKVIREKIENTAHLDYPKDKLEVI +>MGYP003201765208 FL=1 +MLTSGLGVDKNGVENTLYELLLGEADVKKTIVKDVVENLDLIPSNINLSGAEIELINMDDKEYILRKITEKLRRKYDYIIMDCPPSLNMLTINALTAATSVLVPIQCEYYALEGLSQLIHTIDLVKDRLNKKLVMEGVVFTMYDARTNLSLQVVENVKDNLEQNIYKTIIPRNVRLAEAPSYGQPINLYDSRSAGAEAYRLLAEEVINREDK +>MGYP000603741297 FL=0 +MVPFQETPIEEPQQLALPRPQDVEQAPQEPGVEYGGILEALRDTGRQALASFPTLVAMANKPGIYDPGIYQDKEEYIEKVNDFRAEMLTDALKILEGKENEKQAYHDLFDLIKNGEWDKLDNWAGTFLGQTVPQLAMSYLTKGISGFVLESASSYQESVRKISEKKGISVEDVIREGHDKPALDFLIGTINASLELMGAKSVIKPGATGVRSIFRRIFQSAGTESGTEALQGNITKLG +>MGYP004409704841 FL=0 +LKQVSKDFAQPARNTLCDVQWLMRNNVSLHGLLKQGSPSPALVTKLAKASPGCLMQRDGDGLLPLQFAAAYKSRFGDALVSTIREVTVRAVPGSVWPARSDEARGLRKGLRPVRTRVSGVIVAA +>MGYP000111574240 FL=0 +HGMAEEHEPAVPALLRDWIPEVQDYRMLVFGAFLAAMMVVRPGESKPERLREIIDDINSQPKGPASAFSNMAQQLARDNIRVNSVAPGSILFEGNNLYAKDIDPVEVRYRIGMVFQKPNPFPKSIYENIAWGARIHGYTGNMDELVEQSLRGSALWDEVKDVLKKSAYEVSGGQQQRVALARALITQPKLILLDEPFAALDERSRFRMQDLLLDLKQGRHAPVHTLIDLTFVHEMAALEVRGDDLYIGAAVPVNRVALDPLVGTHAQALVEACNLIAGPQVRNTATLGGNVAHALPAA +>MGYP001611773216 FL=0 +DDITKSLEAGAFWDAHLKEAFDQTPADGWAIDLGANIGFFSLYFAERFERVVAVEAHPDTARLLYQNVMVNGQGGKVLVITAAAYDRHTTLELATSKVHGWLEDERSFLDTDSVLHSAGFSFVEDPSQQHHLHEIRVPTVVLDEIIPESAPIRLLKVDVQGAALRALHGCDRILARC +>MGYP000527795113 FL=0 +MKTTQYKDQSAIKTIQYKDQSAIKTTQYKDQSAIKTTQYKDQSAIKTTLYKDQSAVKTTQYKVQSAIKTTCFWSLTSLFQCN +>MGYP000852577756 FL=0 +MARNRAEEEVEQLHFLRVGEVFEPFVPWRRNEQGKQVYIKLTRAEEVSFLYVGSQLSVRAELQQALMRLVNDGWSVEGEVVVQFDGRSEPGTDPYVYREPLVIELGKGLLPLIDPQNGAPLISKFEQIREEVAREVGLVIPPARVVDNLQLDNQYLLRVKDSPIAMGEVFLDRLLALGSLELLGQVEGWTCQDPVHRMPAKWITEEH +>MGYP001572973866 FL=0 +GLKKLGFNTGMSETPITPVIVGDAALAHQFSRDLFAEGVFAMSVGFPTVPVGKARIRTIVTATHSEEELSQALEILGSVGKKLGII +>MGYP000527111928 FL=0 +GLKSIWIPWLWPVFNQIFLMVFLSIWLRRSKVTTGAEWITTRFGRTRDSNLSHGVVVVFALIMCLGYLAYGFIGLGKFVMIFIPWEIVQPYIPVHIPLEYVPHVYGIAFTLFAVFYAVLGGMSSIVWADVLQYIIMTISAILIGILAMKALAVETLNVPETWKSPFFGWNLDKLDWRGIIDEVNTKIASETKT +>MGYP000292924687 FL=0 +MKKILYMTIGIVSVILGLIGVFVPGLPTTPFLLLSSWLFYKSSKSLHDRLHRSRLGKYIRHYEAREGVSWLSKLISIVCMWNMIRIFSNREFTCTDLIIGAGMYWNWKCVVYSAYSKEVKDELSKNILDSFLLFLDHYVYNFSGNNDHFADFFAFKPFCSFRGRFYCSFNFGIGGS +>MGYP000084281174 FL=0 +EALGGPGDRHPDDGVADGHDGGTDVGREPRDALAPARVLGQPEEAHPLSILNDPGGRELAQEEGRLRRGDRGRAHAFRPDEPGDQREEGFDVSPANERLYGRVVRNYYRFVDGVIADYLAEVGENS +>MGYP003569383907 FL=1 +MPTYTFRNEETNEEFTTLMSLNEREIFLKENPHIKQCLSTPAFGDAVRMGMHKIDRGFNDVLQKAKSAHLHSTIDTL +>MGYP000625040987 FL=1 +MSKRHLHLGQTLTFTADPFVEGPGAARHDTQGALVVEDGVITQVGEAGALRQGEFASVTDHGQALLLPGFIDAHAHYPQTAMIASWGKRLIDWLNTYTFPEEMRFGDPDYAAEIAGRYLDLLLAQGTTTVCSYCTIHPTSVTAFFEAAEARGMRVLAGKTCMDRNAPEGLRDTAQSAYDDSKALLGRWHGQGRASYVITPRFSPTSTPDQLSALGALWAEHPDCLMQTHLSEQTDEIAWVKSLYPQARDYLDTYEAHGLLGANGLYGHAIHLEPREKDRLREVGAALIHCPTSNTFIGSGLFDMDGLTRAGHRVGLATDTGGGSSFSMLRSMAAAYEIAQLRGRALHPAELIWLATTGSARALRLDDRIGSLAPGMEADFIALDLASTTAIAQRSARANDLWEALFPTIMMGDDRAIASTYVAGRRVA +>MGYP003399258141 FL=0 +AGSADILTAGIAIIAASDIIIAILFIVLSIKFL +>MGYP000308143635 FL=0 +MKRIAWVDAARGFAIILVVFGHVLGGVMSRRRLDGEGLYRAIYNYIYLFHMPLFFMISGLFCIEAMRKSPINAFISRTESIASPYIFWDFFVRTAALPLIGAFMSNPPSDIGWHARLEQALTGEVSWFLWTLYVMQILLIPFARMPIWVLFLVSLAVILYLPNSHLGTINSVVDHLPFLLFG +>MGYP000676410644 FL=0 +MDGNISLENRLELCNSKLSEKEKMKKITAALCDMPLFKGLSEPQIQQALESFHAYTRCYDKGTYLLSCGQPPQFGLVIAGEVHIIKEDFWGHRSLLAQLGPGALFGESFSLSATPSLPVSVLAGTQVEALFFRAELFFQPSVVSACSISLVTNLLGILAEKNQLL +>MGYP000176506859 FL=0 +MVVNKLLITSTILIATTLITYSCTEDTKSKDRLSLEQKTSVKSDAKKVCELVSNIKIAISEVSNAINEGANSSYVEALNAKAKALDVRIKEIQKRNAGNEEFMKLQQSCYEVMNK +>MGYP001197552457 FL=1 +MSNFVQLGRYRHYKGKEYQVLGCARHTETEEEFVVYQALYGERRLWIRPKSMFLEHVQIGTKLIPRFILIERA +>MGYP003478946207 FL=0 +MSPQSVNTRQATRQVRDVVFVDGVRTPFGKAGDKGIYHGTRADDLVVKCIRDLMRRNPSLPAERIDEVAIAATTQTGDQGLTIGRTAAMLAGLPQSVPGFAIDRMCAGAMTAVTTTAGSIAFGAYDVVIAGGVEHMGNHPMGAGADPNPRFLSERIVDPAALNMGNTAENLHDRF +>MGYP001199610918 FL=1 +MQSIGTYLKQRRESLSLKQKDVANSVGVSSAYLNKVEKGDSIPAPAFLEKIARTLELDFIDLYLRSLEDRPLPDTLMHAMREYRSLRPLLAPGMPVERFRSFIRSMSPEQTHRILLMIESVVLMIHEAEDRGAGARAIREPVPGDGTGADRIPPE +>MGYP003348169323 FL=0 +HQPLLHAKEKLASIINTTSGRGGKIIAPAFAVGRTQQLVLMIHELIHEGKIKEIPVFVDSPLAVNVTDAFRAQRHARKTGGHAKEKTGPALPAGEHGAHLGARQAGEVDHGVGGLAVVPGMNGRAHLERIGGIDRAHRIGEARRLHRIERRLRPVERQQPHIRPRPSRRRHRQHARLARADE +>MGYP001430805213 FL=1 +MRIESREDLKTWASFKNISVYLDQKKILSNININIKHGENILILGPNGSGKSTFLKLLNRSIYPITKKDSSLKLFNKENINIWDVRKRIGFLFKEMEGRVNHGVKLYDLITSGFSGTFNSRYSKLLSEIEKVKVDNLINEWELNNIVNNEFLSLSDGEKRRALLARALVYEPDILILDEPFCNLDIKSSFILNQNLNRLIEQSINILYVTHNLESILPKTNRVILIKEGKIIKEGNPNEIINSKIISDLFKISINVVKQDGYWRSYPVSI +>MGYP001428761037 FL=0 +MRIDGIQGVYVPSKKPPINPLKKAVGRIRDVIATPKKYTHKDRLREQWSNSGSSLSYREYATTHDHTIKTPASELVKRFK +>MGYP001559191903 FL=0 +MLILMAYIYKKTIHGKQYYYLRVSKRVKGKIVVKDIAYLGNDASKLDYAMQKLPLLYKKDIRKAYRNIRKFVQEESFSVANKSPATIACAGAINPPETKEKIQYLKKSFKGMPYGAAF +>MGYP003492916345 FL=0 +TMGKNAKFFPENIWKFELKKHELLIIMP +>MGYP001589567138 FL=0 +VQDVEQIVARALAEFAAAPDPAALENSKARYLGKSGELTALLKSLGTLAPEARRSAGAAINTAKARLEQALEQRRAELANERMQARLAQEALDVTLPGRGRGRGGVHPISRTWARIEAIFGSIGFEVADGPEIETDWYNFTALNNPENHPARSMQDTFYVDLRDSGGLPLVLRTHTSPMQVRYARTHRPPIKVIAPGRTYRVDSDATHSPMFHQVEGLWIDEDVSFADLKGVFADFMRRFFESDDIEVRFRPSYFPFTEPSAEIDMKFDSGPLKGRWLEISGAGQVHPEVVRNFGLDPERCIGFAFGAGLERLTMLRYGIDDLRLFFDGDLRFLRQFA +>MGYP001206066660 FL=0 +MIVTLNKKVLIVIRVVKIFMTFLTSKAFNFN +>MGYP001314004753 FL=0 +FHTPNYKYEVFGSFINSKNSVKETFGLANPTEFDQLSGRAKTYAGTANFYDASNLFIDRTWSITQFFRPGKRTIQLNDTTIVPDTNTSNIKSQWFHELRYRRHINRFTDSDTNTDLFPVRYVSLETHDSMFHAVLSNRIGKVIKSKSQLIKLWGLHEAIQVKQQYFHSSNLSHLRFGAEMSKTLLSVKHDFYAHISALGYYQGDIKALYGFNPELEKVDVRAEASITRRRPDYNDQFFGSNNYYWNQDLNQTQTSKLLLTIDNKKATQGIELAYFNINQFVYYDTSGFAQQFNESINHLRATAKLQLQLGSWFWQHRLTYQSTSSNVLALPDLSVKTRLYKEGYLFNKNMWARMGVDLQYFTPFTGTVYNPIVRQMTLSNTEIGGFP +>MGYP001770970470 FL=1 +MIRSIKYGLLLLLPGMLFTAQAADRQDVKCHLITSKGEQIAFYRWDLDKQQLFMARLSGKSLKDARGKRYFIREARECVLLKEAFSSEKARKLDEMALR +>MGYP000978871530 FL=1 +RAEPAELDAELARLILLSEQRRLAILAPLLTGLTLLVACFGVLANARGTLPNGFGWILCIASVACAYEWLAGLFVARLAQKGRQPARFRFYLNALVELGALAVMTLVLARTNNPVHAISGPASYSYFLFIILATLRLDFRICVFTGTVAAAAYTLTGLLHWNALEASFSE +>MGYP003540537710 FL=0 +TPTAVTPAAPVITPTIVPNAPSVTGQAIVAASTTVTPPAAPKTVAEAYPTLISNDRGVTSLDKAFSLRKIASRFLGSVSPIETLVNALSSTKAMINFVGSTTTKHTLTPLAQVFYRETLPEIAGKLINTLNTRLSAALDGTNGKSALGDLFSNPTMSKKGELNIPQDMVRGRVFNITEMDA diff --git a/flax_model/alphafold3/test_data/miniature_databases/nt_rna_2023_02_23_clust_seq_id_90_cov_80_rep_seq__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/nt_rna_2023_02_23_clust_seq_id_90_cov_80_rep_seq__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..2498236b976dc46888358d37012d57e7fd063681 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/nt_rna_2023_02_23_clust_seq_id_90_cov_80_rep_seq__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>XM_032924760.2 PREDICTED: Daphnia magna juvenile hormone acid O-methyltransferase (LOC116918952), mRNA +CAACAGTGTCTCAAAGAGTCCGTGACGACCGAGTGACCGATGCTTCAAGCAGAGCGGAGAGATGGAACTGCCTGAACTCTACGCTGGCGCGAGTCCGTTCCAAAAACGTGACGCTGTGCACGTACTTACGCAGTACCTTCCTCAGTTCGATTGGGCGGAGGGCGACTCCGTTTTGGACTTCGGTTGTGGTGATGGTGACCTGACTGAGTATTTGGCCCGTTGCATCCCCAGGTGTGCGTCGTTGACGGGCATAGATATTTCAAAGAAAATGATAGACTACGCCAGGTGCCATCACCAAGAGCATGATTTGCGCCTTGGATTTCAGCAAGTCGACATCATGAAATCTATTGACGCCAGAGATGTATTTCCAGATGGATTCGATAAGATATTTTCTTTCTATTGTCTCCACTGGATCAAAGACCATCAACGGCTAATGGAGCATATGTACGACATCCTCAAGCCAGGCGGGGATATCTTGTTGGTATTTTTGGCATCCAATCCTATTTTTACCATGTACGAACGCATGGCAGAACGGACGGAGTGGGCCGAATACATGAAGGATGTTGCTGATTATGTTCCTCATTACCAGTACGCTGCTCGACCAGCTGAAATGTTTTCTTCTATTTGTCGCTCAGTTGGTTTGCAGGTGGTCGAATGCACGGCCCAGGAAAGGAGCTTTTCGTTTCAGAATATCAATATTGTTAAGAATGCGGTGGCTGCTGTCAACCCGTTCCTTCGTCGGGTCCCTGTTCGACTGCGCGAGAGCTACCTTCTGGATTGTTTGATGGAATTGCAGAAATTAAAGGCACCATCTGCAGATGAAACAACTGTTGCAAGTTACCGTTTGATGATTGCGCACGTTCGCAAACCATAAGCGCAGGATGGCTGTTGAGACTTGTGGAGGGGGCAAAACCCGGAAGGCTCCCATAAGACAAGTGCTAAAATAGCAAAAAACAAAACAAAAAAAACAAAAAACAAAAAAACAAAAAAAAATTAGTTATCTCATAATCCGCATCAAGGTGAGGTAAGATGATGACGAATCTAATGGCAAACCGGTGCTGTTACTGTAAATAAGGTTTGGGTGGTTATGGGATGGTTACAGCCAATGGCTGCAGTGAGTGATTCCAGTGACAAAGAGAGCTTTAAAACATTAAAGAATAAAAAACAAAAACAAAAAAACATTGCGGTACAGTACGTGTTCGAAATGGAAATAATGATCTCGTTTTCGGGGTCCGAACGGTATGGATGGATTTTTCTAGATTTGCATAAAGGGCGGTCGATGCGGATTTGTAGTCACGCAGTAGTAAAAACCTCAATACTCCCGGTTCACTGAAATCAGCAAAAAACAAAAAGATTAGATGTACAATACGTACTCCGTGTAGTACGTAACATTTGGAATTTCAGATTAATACAAGTATGATCCACA +>XM_052522147.1 PREDICTED: Oncorhynchus keta serine/threonine-protein kinase DCLK1-like (LOC118377397), transcript variant X16, mRNA +TGAGAGAGGAGGGAGCATTCGCGAGGTGAGATGCTTGGTGCTTCCCTCGGAAGGCCTGCATGTCAATGAGGGACGGCCATCTGGAAATCACTGCTTAAGACACAGAAACCAGCTGCAGCTCTTGCAGCGCACACTTGCTCAATCACAGGGCAACAAAGGGACGGATGCTTTTTCTATCGCTCGGGCCATTATACTACACATATATGCACTGACACAGTCTGTTGGAGAGCTGCTATATGCAATTGCTAAAGAATTGACGCGGTTGACTGCATCAGACTTCAATTAAAGTTATGGAGCTGGAGCACTTTGACGAGCGGGAGAAAGCCCAGAGAAACACCCGCCGAGGCTCCAGGAACAACGGGCTGCCGAGCCCCACTCACAGTGCCCACTGTAGTCTGTACAGGACCCGGACACTGCAGTCCCTGGCCTCGGAGAAGAAAGCCAAGAAGGTCCGCTTTTACCGCAACGGAGACCGCTACTTCAAAGGGATTGTCTATGCCATTTCCCAGGACAGGTTTCGGTCTATAGACGCCCTGTTAGCCGATCTGACCCGCTCCCTGTCAGATAATGTGAACTTGCCCCAGGGGGTCCGGACCATCTACTCTATTGACGGGACCAAGAAGATATTGGGCATGGAGCAGCTGGAGGAAGGAGAGAGCTATGTGTGTGGCTCCATAGAGCCATACAGGAAGCTGGACTACACTAAGAATGTCAACCCCAACTGGTCAGTTGGGGTGAAGACAGCTGCCTCGGCACGTGGCCCATCCTCCCTGGGCAGTGCCAAGGCTGGGGCCCCAGAGACCAGGGAGAGTAAGGACTTCATCCGGCCCAAACTGGTCACCATCATCCGGAGCGGGGTGAAGCCTCGAAAGGCCGTCCGCATCCTCCTCAACAAAAAGACGGCCCACTCCTTCGAACAGGTCCTCTCTGACATCACAGATGCCATCAAGATGGACTCTGGGGTCGTCAAGAGACTATACACCGTGGATGGGAAGCTGGTGACATGCCTTCAGGACTTCTTTGGTGACGATGACATCTTTATGGCCTGTGGTCCAGAGAAGTTTCGCTACCAAGATGACTTCCTCTTAGATGAGAGTGAGTGTAGGGTGGTGAAGTCGACGTCATACGGTCGGATCTCCTCTCTGCTGGGACGCTACTCACCCAGAGGAGGAGGCTCACGCCGAAGCTCAGGTTCAGCCAATGGGACGGCAGGCAGTCAGCTGTCGACTCCTCGCTCAGGGAAGTCCCCCAGCCCCTCTCCCACCAGTCCTGCTAGTCTCCAACGACGCAGGGGGTCCCAACACAGTGGCTCGTCCCTGTCTCTAGCCTCCACCAAGGTGTGTAGCTCCATGGATGAGGGAGACGGAGCAGGTAGTGAAGCGGAGCTGAACCTGCTGAGTGATGAATGTCCCTCCATCCCTCCGTCCATCGCTGAGAGGTACAAGGTGGGGAGGACTTTAGGTGACGGTACCTTTGCTGTGGTTAAAGAATGTGTGGAGAGATGTACCGGCAGAGAATACGCCCTGAAGATCATCAACAAAGGCAAATGTAGGGGAAAGGAACACATGATCCAGAACGAGGTGTCCATCCTCCGTCGTGTCAAACACCCCAACATCGTTCTGCTGATCGAGGAAATGGACACCTACAGCGAGCTTTACCTGGTCATGGAGCTGGTCAAGGGGGGTGACCTGTTTGATGCCATCACTTCCTCTAGTAAATACACAGAGAGAGATGCTAGTGGGATGCTGTATAACCTGGCCAGTGCCATCAAGTACCTGCACAGCCTCAACATCGTGCACAGAGACATCAAACCTGAGAACCTGCTGGTGTATGAACATCAGGATGGTAGTAAGTCTCTGAAGCTGGGAGACTTTGGCTTGGCTAGCCTGGTGGATGGACTCCTCTACCTGGTCTGTGGCACCCCCACCTATGTAGCACCTGAGATCATCGCTGAGACAGGGTACGGGCTGAAGGTCGATATCTGGGCAGCTGGAGTAATCACATACATCCTGCTGTGTGGCTTCCCTCCCTTCAGTGGGAACAGTGAGGACCAGGAGATTTTGCTGGACCAGATTCTAACGGGACAACTAGACTTCCCTTCCCCGTCCTGGGACAACGTGTCTGTCACTGCTAAGGAGCTGATTACTGGGATGCTGCAGGTGAAGGTGGAACAGAGATACACAGCTCTGCAGGTTCTGGATCACCCCTGGGTCAATGATGATGGGCGATTAGTGAACGACCAGCAGCTCTCTGTGGCTGGGAAGATTAAGAAACACTTCAACACGGGTCCTAAAGCCTGCAGCACCACTGCTGGAGTGTCTGTTATCACAACCACCCCTCTTGATAAGGAGCGGCAGGATTTCAGACTAAGACACCAGCAGGATGTGAGATTGAAGCCCCGCCCCTGCCCCCAACCAACCGGCTTCCCCACCAGTGCCAGCCAAAGCTCAGCCCACAGCTCCAATAACCCTGCCCTCTCTCCCGCTGACTTTACCTCAGAGTCAGAAGATTACTCCCCCAGCCCCTCCCCCACCTCTCCTAGCTCCGCTGATACCGTCCGCTCCCCCACCTCCCCCTTCTAGACCCCGAAGGAAGAGAGAGGGGAGAGGAGGAAGGATAGGGGGTGCGTGTCCCTGTACTAACACTAGCCCATGTCCCTGTATTCACGACGACACTGTCAAGATGCCTGCCAATTACTTAAACATTGATTTTCCATTCCGGCTACAGTGTCAGTTTACCAAAAGATACACTGGGGTCAGAGCCATGCATAGGGGTCAGTTAGGGTGGGGTTAGGGTTAAAGGTTAGAGGTTAGGGTCAAGGATAAAGGTGTATTCTGGATGGGTTCTGCTCTGGCCCTGAGAGGTTACTAAGGCTGAGAATCTGTATCTGCTTATCTTTTTAAGACACCACACAGACATACAAGAGTTAAGCCTTATTTCAGCAAATACTGAATAATGATCCACTGAGGTCCCCTGGTGTTGGGAGGTGAGTACTGCAGGCCAACCAACCTGCTAACAGGACAGCTTAAACTGCAACACAACTAACCTACAGATCAAAATCTTCCATTTAACTTGACGGGACCTCATACGCCCTAAATAGGGCATCTTAAGTATTTATGTGATTATACATACATTTTGAAAATAATAATGATGATAATAATAATGACGTTGGGTCCTTGAAAAGTGCTGTATAAACAAAATGCCGCGTATTATTATTCATTTTGACAATGTATGTATCAAGTCAGGTATCTATTTGTGTGAAGTTATATTGCACCCAATTCATTACAACTTGTACAGTTCATTCTGTAGAAAAACACTTTCATGTCAATAAGACATGCTGTATGATGTAACGTGAAGATATAATCTACGTGTGTCTGGAAGGACACGTGGCTACGGTCATGTCCACTCCAGTCCACTTTCATTTATCCAACTGTCTAGTGTTCAGCTATTCTCCAGTTCTTGGTGCTGTTGTAGACATAATATACTACACACTTTACAGAGGACCAGAGAGGGGCGCTGGAAGATCTCCAGGCATTCTGCGATACCATATCTATTGGTTGATTGATTGTGTTTTTGTCCATGACTGTTATGCCACTGTGCCAGTTCATGTACAGTCGTCATTTAATGGACTACGAAAAAGGTTGTGTATTTGGTAGAGTATTAACAGACATTTTCATGGCTTTTTACTTTTGTACAAAATTGGCCTTGTTTCAGTTAATATGTTAATATGTTGATAGTGAAATAATGACCTATTTAAAGTACGATTATTGGCCTGAACACAATGGACCAAGTGCAATTAGGTTCTGGATCTCTTACCAATATTAGACAGCACAGACTTTTTCAAGCTATTGTTAACTATAAACAATCCATACATTGTGAATGTATGTCAGAACAGAGGTGCTATGGCAGCGTCTTTCAGTGCTGCCTGAGTTTTCCGCTTGCTGTGTGTGAGCCAGGGGTTGGAACCGGTTCAGTGAACAGAACTGAAAACTGGAAAATCATGTAGTTCAAAACAAGATGCCCAGCACTTCAAGCCTCCTCCTCCACCCTCTCTTCCCACCCACAACATTTTAGTCACATCTCACTCCCTACAATTGTCTGTCCAATGCATGTAAACAACTACAGCTTGCCCACTCCATAGCAAGCTACTATATCCGCACTGATTGGTAAAGTAATTTAATGTTGAGTTCAATGTTTTTTAGAAACTATGATTGCAGAGGTTTAAAAAGGAACAGAAAGGAACAATATAAACTGCTACTAATTTGGGGAATCAATCCGGTTCAGAACTTTATTTTGCTGGTCAGAACAATGGAACTGAACAAAAAAAATGGTTTTGTTAAAAACGATGCGATTGGAAAATACTTTTGCTTCCAACCCCTGGTGTAAGCACAGTGAGTTGGCAGGTCTAGAGAGAGAAGCACAGTGAGTTGGCAGGTCTAGAGAGAGAAGCACAGTGAGTTGGCAGGTCTAGAGAGAGAGAGAAGCACAGTGAGTTGGCAGGTCTAGAGAGAGAGAGAAGAACAGTGAGTTGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAACACAGTAATTCAGACAGGTCTAGGGAGAGAAGAACAGTAATTCAGACAGGTCTAGAGAGAGAAGCAAAAAGCACAAGAGAAGCATGAGATGATTGATGTGTGGAACACTTGTTTGTCCTCTAGGACAGACAAACAACTATGTTAGTACTGAATTTTAATCATAGAAACAGAGGAAGTGAAGTGTATCTATCTGCTGAATGTAATTGTCCAAATTTCTGTTGTGAGAGAATGAAAAAGTACAGATTGAAATTATGTTGCTATGCAAAATATGTATTGATACCCAATGATATGTAAGAATTAGTGACTACATGTGAAGCCAATTTGATCGGGATTCATCACCAGTAGCACATCTTTTTTCCTGATGATGGTAGTGAATGGTCATTGTTCCTGTATAGCAACCCTTTAACAGTGGTCATCACCAAGCCAAACCTGTGAATAAACCACTTCCTCAATCTGAGAGCCTGGTCATTGTACTGCGTCCGTCCAGGGGGACTACAGTCGGACAATCTGGGATTTACAAACAGCAGCCACAGACGCAGCAATAACATCATCCAGCCAGTAGATGGCAGTATAGGATAATCTGTACCAGATCTAGAAGGTAGTAAGTAATAAGACAACAAACACATGCATTTTGAGTTTCCACTATTGAGATACCTTTTAAGTGCATGGGGTTATATTCCATTTTTTGTTGTTTAAGATATGAGTAATATACATATAGATATTCTATTGGGGCGGCAGGTAGCCCAGTGGTTAGCGCGTTGGACTAGTAACCGGAAGGTTGCAAGCTCGAATCCTTGAGCTGACAAGGTTGTTCTGCCCCTGAACAAGGCAGTTAACCCACTGTTCCTAACTGACTTGCCTGGTTATAATTCTATATGTCAGAATATTCGAAAAACAAACTACTAGTTTTGTTCAAACTGCAATTAACATTTGAGAATTCAGTCGCATAAGAGCTTGCTTTATTTATTGTTATTATAAACACAACAAAAAGGAAAACAATAAAAAATGTTACTGTTCATCAATCTTTATATATTGTCATAAGTTAATGTATAACAGCTCCAAACAAACACAGGGTAAATGCCTCAGACATTGCAATCTACACAAAAAAACAACATGTAAATACAAATAACTTGTGAAATCATGATATACTTAAATCTATACTTAAATCAACAAAAATACAGATCAACTAAATATTTTACAAAAAAATCTAAATTTGTTTTTTAAAGCAACAATGTCAACACAAATAAAATGCATTTATTTAGCAAAATCCTCCAAAATCCTCCTTACACAAAGATTTAAGTCAAATATTCAAAATAAACCCAGTATGTCAAATTCATATTGATGGGTATTATGAACCAAAGCAGTAAAGTCA +>XM_051681377.1 PREDICTED: Myxocyprinus asiaticus CDC-like kinase 4b (LOC127431112), transcript variant X2, mRNA +GCCAAATGGAGCAGGTCAAAGAGACCGAGAGGGAGAAGAATGGTTACCACTACAGCAAGTCATCCGGACGCAGTGGGAGGAGTCGGCACAGCAGTAGAGAACGCCAGCGATCACGCCATCACAGCCCCTGCTCAGACTCGATGAGATTGTAGGCACCCTGGGCGAAGGAGCCTTTGGAAAAGTGGTGGAGTGCCTTGACCGTTCAAAAGGTGGTGCAAGAGTGGCCCTGAAGATCATCAAAAATATTGAGCGCTATCGGGAGGCAGCCATGACAGAAGTAGATGTGCTTGAGCGGATAAACTCGCTTGATGGCGATAAGAAATTTGCCTGTGTTCGGATGCTGGATTGGTTTGATCACCATGGTCACATCTGCATAGTATTTGAGCTGCTGGGACTGAGCACATATGACTTTCTTAAAGAGAATGGATTCATGCCCTTCTCAGTGGACCAGATCAGATGCATGGCAGATCAGATCTTTAAAGCTATACGCTTTCTGCATCAAAATAAACTGACGCACACTGACCTTAAGCCTGAAAATATTCTCTTTGTGGACTCCACGTATGACATGGATTATAACTCCAAGATGAAACGAGATGAGAGGACCTTGAAGAGGTTGGATGTCAAAGTGGTAGACTTTGGTAATGCTACATATGACCACGAGCATCACACCTCTGTGGTGTCAACTCGCCACTACAGAGCCCCCGAAGTTATTTTAGAACTGGGCTGGAACCAGTCATGTGATGTGTGGAGTTTGGGCTGTATTCTGATTGAGTTCTATCTAGGATTAACATTGTTTCAGACTCATGACAGTAAGGAGCATCTTGCCATGATGGAGAGGGTTCTAGGCCCCATTCCTACTCACTTACTCCAGAAAACCAGGAAGCGACGCTATGTGCATCATGATAAACTGGACTGGGATGAACTCAGCTCGGCTGGGAGATACGTGAGGAAACACTGTAAACCTCTAAGGCAATACATGTCCTCTAAAACCCCAGAGCACGAGCTGTTGTTTGACCTGCTTCAGAAGATGATGGAGTATGACTCATCGAAACGGATCACCCTGGAACAAGCCATCGGACATCCTTTCTTCAACCCATTACGAAAAGTTAGGAGAAATTGACTTTGAAGGGGACACTTGAACATTAATGCTCCCGGGGAGACCTGCTGCTGACTGTATCAGTCAGCTTAAAGACTGCCTACTTTACATCCTCTGTCTGTTTTTATTGTCTGTTTGAATATATGGGCCAAATTCCTGTGTATTTTCGGCAAAATAAACTTGAATGCTTTGTATGCA +>XM_039837429.1 PREDICTED: Pteropus giganteus SEC22 homolog C, vesicle trafficking protein (SEC22C), transcript variant X2, mRNA +CCTCGGCTTGTCAGTCCTGTCCGCTACCCTGGCAGGAATCGAGCTTACACCGCGAAGCCTCCTCGCATCTCCAGACGTGGGAATTACAGGCCTGGACCTCAAACCCAAGCGTGTGTCCTCATGACTTCTCTTGCGGACCATGTCCATGATCCTCTTTGCCTGTGTGGTAAGGGTGAGGGACGGACTGCCCTTCTCGGCCTCCACTGACTTTTACCACACCCAAGATTTTCTGGAATGCAGGAGACGGCTCAAGACTTTAGCCTCGCGACTGGCCCAGTATCCAGGTCGCGGTTCTGCACAAGGATGTGACTTCAGTATACATTTTTCTTCTTCGGGGGATGTGGCCTGCATGGCTATCTGCTCCCGCCAGTGTCCAGCAGCCATGGCCTTCTGCTTCCTGGAGACCTTGTGGTGGGAATTCACAGCTTCCTATGACACCACCTGCATTGGCCTCGCCTCCAGGCCGTATGCCTTCCTTGAATTTGACAGCATCATTCAGAAAGTGAAGTGGCATTTTAACTATGTAAGTTCCACTCAGATGAAGAGCAGCTTAGAAAAAATTCAGGAGGAGCTCAAGTTCCAGCCTCCCACTGTTCTCACTCTGGAGGACACAGATGTGGCAAACGGGGTGATGAATGGTCACACGCAGATGCTCCTGGAGCCTGCTCCTACCTTCCGAATGGAACCAGTGACAGCCCTGGGTGTCCTGTCCCTTATTCTCAACATCATGTGTGCTGCTCTGAATCTCATTCGTGGAATTCACCTTGCAGAACATTCTTTACAGGTTGCCCATGAGGAAATCGGAAATATTCTGGCTTTTCTTATTCCTTTTGTAGCCTGCATTTTCCAGTGTTATTTGTACCTGTTCTACAGTCCAGCCAGGACTACGAAGGTGGTGCTGATGCTGCTCTTCATTTGCCTGGGCAACGTGTACCTGCACGGGCTGCGGAACCTCTGGCAGATCCTTTTCCACATCGGAGTGGCTTTCCTGTCTTCACATCAGATACTGACGAGGCAGCTTCAGGAGAAGCAGTCCGACTGTGGAGTGTGAGGGTGACAGTGTGCGAGGAATGGATCCTTTGATTTTCTTAGAGGGTCAGCCGTGTGTCCCTTTCGGCTTCTCGACTTCACCTCAAGTTTCCATTCTTGAAGTTCATCTTGACCAAACCCGACTGATACCGAGACTTGGGGACTTTGAACGGGTGCAGTTGAGGGTACGAGGTCGCTTGACACCCAGCCCCGGTTTTGTGCTGAGTATAAATTCCTGTGAGACCTCCAGTTCGGCACGTTTACTTAGGACAGCAGACGCTGGGGGCTCATTCAGAGAGAGCATTATTACAAGATCAGAATGGAATTATTTTGGTCTTTCAAATTGAATGATGTAATAAACCACTAGGCTCAGTAATACTAGTTTATGTTATTGGCAGTTGTCTCCAGGGAGCTACCTTAAAATCCATATCAGCTTTTCAGTATAAGTGTGACTTGGTTAGCTTTTATAGTGGGTCAGTACAGGTGCATTAAAAACTTAAAAACATGGTTCATAAATGTAAGCAAGGTAAATTCTGTTTACATATTTGATAACAGGTTCAATACAATACCTTTAGAATATTTAAATATATTTTGGATATAAATTGAACTTGGTTTAGGGTAAGGACAGACAAAGAAAATGGTTTAAAAGCTGAGTTTAATTTGTACATAACCTTTTGTGGTGGGACTGTGTGGGCACAGAAATATTTTGTATTTATTTGCAGGGTATATCTGAATATTTTAAAAGTTGAATAACCAGTGCTACTGGATCGTAAGCTTTTAAGCATGAACAGAAATGAGACTATCAGGATTCTTTGCGGTGGGCCACAAACTGGAGTAGGTGAGTCACGTGGATTCACACAGCGGCACTTTTCAGACGTAGGTGGGAGCGGCCGCCGTCATCAGCCTTGTACAAGGTAGTCGAGTGCCTGCCATTTTAATGATGGTGAATGCTTGACCCGTGTACCTGTTCCCAGAACACCTCCCAAATTAATTACTCCTCTACACCATTCTCAATCCTCTTAATTAGATCAAGGGCTTCATTTTTTATGAATAAGAGTTAAGTAGATATTAACTTTTTAAAAGCTTTATGAAGATATAATTAGCCCTCTGAAAAGTTCCTTTTGTTTTTTCTCAACTATGATTGATCATAGTTTTCCAAAACGTAGACCCGAATCAGGTCCCTTAGCTCTCTGGACATTGCAGCCTGGGCTGTCCGGCACCACTTAGGAGGCCTTTTTGGGAGCCTGCCCTTAGGTTGTTCCTGGTATAAGTCTGGAATATGAATGGCTCAACCACAATTGCATGGAATACTTGGGGTTGAATTATGTAGTCTTGAAAATTCAACACATCCTATTTCGATAGTTCTTCAAAGTTGAAAACCATTGATTGCAAGAGTTACTGAGCACATGAGGGAAGCAAGGAGGTTTTTCAGGGAATTCCGTTAGACGTGGTTGTTACCAGTGGTGTATCGTTGCTGAGCTACCTTGATATCGTTTTAAGAAAAACAAGTTTACGTAACTGGAAACCGTTGGGGGAAATGTTGCCAAAGTCATTTTATTTTCTTATAATAGAATTTTCTATTTTTCATCAAATAAAATATCTGGGTATGAAAGTTCTGTTGGCAACACCGTCAGATGGAAACTTCAGAGCTGTTTCTCTGTCGACTACGTCTACATGATTTTCTGCATACCCAGCAGGTGAATGTTCAGGCTTTCCGGGAGATAATTTTGAAGAGACAGTAAAATGGAACGGGAAGACAAGGAGGAGAAAAAAATTCCTTTTTTGTGATAGAAGCACAAAAAGCTTGAAAAGTTGGTAAGAACAGCTTACCAATGAATTGTTTTCTTTTTGAGCCCCTGTGCCATTGGTGTTGCCATGTAGCCCTGTACCCCAGAAGCTCTGGGGGTCTGGGCCTGTGACCCACATTCAGCAAGCAGTACAGAACAATCCTTGAGGAGGACTCCCTCCTAGTGAAGGCTTTCTACCCTAGCAGAGATGTTATCCTCACTGGGTTGAATGTGGTCTTAATCCGTTAACATCTGCTTGGAGGTTGAGATTAATTTTGCAAACAGGAAGGAAAAGATGCACTGGGTGAGCAGCACCAAATAATGGCCACGAAAACATAGTGTGACTAAAACCCAGCTAAAACTCAGCTCACTGTGGGGAGAAACTAGTGATGGGAAAGAATTTCTGAAGATTTTGTCCAAAGGAAGTCCCAGGCTCAGGGTTGGCTTGGTCCAGGCCTGGAGTTTCGTGGCCCCCGTGTCATCCTGGGTGCCAGAAAGCGGGCTCCACATCGCAGTGGTTATCCTCACCCCACCATGACTCAGTGCCGCTCCAGCACCTTTTGTTTTCCCAGTGGTTAAATGCCGCCTGCCTGGCCCACCTCACAGGGCTAGATCTGGGAATAGATGAAATCACGTTGAACACAAAACCTTAAAAGTGCCTTCTGGTACCAGATGCTGCAAGGTCTGGAGCATCAGAGTGTGTTACATCTCGACTACTATATTGGGGTGGGAGTGTGGCTCTGTTCGCAGGCTTTGCCCCTTTCTCAAGCATAACTAGTGAAGGACAGCTGTAGACTTTGGTTTTCTTCTCCCCGGGCTAGCCTAACTGTGATAGGACCATTTCTGGGTTTCTGTTTCCTGTGTGGGGACAGTCAGGGCATATTTGGGGTGGTATCTGCCTCGGTGCTAGGAGCCCCCACTGCCCGCAGCAAGAGGAGTACGACCACAGCCTCCCGGCGTTGCTTTCCAGCCTCGCACCCCTGTTACCTGTGAGCTCTGTTGATGGACAGTGTGAATCGAGGCCCAACATTTTAAAGTTCTTTAAGAGGTGGGAAAAGGGCGTCGGGACGAGTGCTGAAATGAAAATGTGTAATCATCGTTTCTACCCACCTCACTTTGAGCTCCCTGTTCTTTTCCTAGGTGCCCCTGTTCTCCAGGTCCCCCCGCCCCCACTGCTTCCCACCTCTGCCCCCCACACTCCAGCCCTGGGGACAGAGGCTGGAACCGGAGTCTCTGAAAGGGAGGGAAAGCCACCTTTAATTGTATCAGTAGGGTGGGTGCAGGAGCTTCCGAGGAGAGCAGAAGGTGCACTGTGCACCCTGGGGAGCTCAGCACATACTGGGAGTTGGGTCTCGGAGGGAAGTAGCACTGCTTAGAGTCAAAGACAATAGCCAGCAAGGTGGGCTGTTTGGGGTGCTGGAAGCAGGGGGGTAGGTGGGAAGCAGAGCTGGAAGACAGCAGCCTCCCCTTGGTGTGTGGGAGCTGCCGCTTGCTGTTCCTCCAAAGAGTCAGCCACTCATTGTAACAATCAGGACAGGTGGCCCTCAGAGAATCTGCTGCTTGCACTGTGTAACACAGGTGAGGGCCAGTGGATGGGAGTGTTCACGGGGACCGGATGTGGGCCCCTGCCCTGACCGGATGTGGGCCCCTGCCCTGATGCTCCCGGTCCGATAGTTCCTACGGGGAATCCTGCCTGAGGACAGGGAGGCGCCACCTGAGTGCTGTGAATGTTCACGGTGGTGGAAGAAGAGAGAGCAGACGTGCCCTTGAGAGAGGAGGCTGGGGAAGGAGTGTACTGGTCAGCTGGCTGGAAGCCTGGCTTGGCTCTGACATTCGGTCTTGCACCACAGTGGCCAAGTCACTGCCCTTCGGCCCCAGTGTTCCCATCTGGGAAATGGTGATAACATCCGCCTGTCCCCTGCTGTCACGAGGATAAAAGCCTAGTGGAGGGGAATACTGGGTGAACCCATTGTGTGTGTGCAGGCGGGAGGCTTTGAGTTCACCTGCCACACGGAGGTGTCTTCTGGCCTTTACACAGAAAAAGACACCGCAGTGTAAATGGCTGTATTCTTTCCCTCCAGAAAGGAAGCGGACTCTTCCCCTTCCCCTGACCCTGCCTCCTTCCTCCAGGCACAGAGCCCCTTGGTACCGCTGGCTGGGGTCCTCCAGGGTCCAAGGAGGCCAGTTCTGCTGGTTGTGTTTGAGGCTTGTCCTGGGGAACCAGGGGCTGAACCTCAAGGTTTGTCCCTGACCCAGATGAGGAAAGCTCTGCTTCTCCCATCGGGGAGCAGTGATGTCAAACGTCTGTTGCTGGGGAAATGTCATTGGCAGGGGACCTGTGGAAAGGGCTTGTTGGTAAAATCTGGGAATGGCCGGATATGGAAACATCTGGCTGTGTGTACCGATGGCAGAGCCGTTGCCCACAAGCGCCCTTTATTTAGGGTGAAATTATCAAGTCCATTCTGTTCCTCTAATCTGTACTTGGTACATATGACCTTCTCGAACGCTTATCCGTGTATGGTTCTGGGGTTGCTTCAGAAGTAGTATTTAATGAGTTGTTTATATGACCCCAAGATTCTATTTTGTTTAATGAACTTTTCTACTGAGAGCGTAAAAGACTGAGTCTGATTTAGCCAGGGCAAAACCATTCATTTCATATATTCATTTTGAATGCTTGCTGTCCGTGTTATACAAGCTTCTTAACTGTTTTCATGTAATAACAAAGATCTATTTTGAATAAACGATGGGTACGTTTTAACAAACTTCCACACAGTAGTAAAGCCTAACCTTGTGTTAACGTATGTGCAGAATGTTGCATAGCCATTTATATACTGTGTATATGTAAATTAAATGGGGTGGCTTCAGAAGTGAGAAGAGAATAAATCTAAGGTGCTTCTTAACGA +>XM_028554974.1 PREDICTED: Dendronephthya gigantea vegetative cell wall protein gp1-like (LOC114533457), mRNA +TTACTGAATACAGTACAATGATTTTTAGTTTAAATTACAAAGTCAGAGGGGCTGAAGCACCATGTTACGCCTATGCTCTGTTCTTTCGATATTTTCCATCATCTTATCAAATTGTGGAGAAGTACACACAAAAAAAGAAGCAGACAAACTTACTTTGTTAATGAAAACAAAATGCAAGCAATGTACTCATATTTTCATATGTCCTATGATATGCGGTAAAAATAGCACTAAGCCAACCATTAAACCCCCACCCACCAAGCTACCTCCAACCTCTACACCGATCTTTCCACCAACGCCACGTCCGCCGACACTACCACCCCTTCCTCCAGTAACCCCTGCTCCACCGATCATACCGCCATCTCCATCCCCTCCAACCAAACCTTCCCCACTGCCGCCAGCAACCCCTGCTCCACCGATCATACCGCCATCTCCACCCCCTCCAACCAAACCTTCCCCACTGCCGCCAGCAACCCCTGCACCACCGATCATACCATCTCCACCCCCTCCAACCAAACCTTCCCCACCACAGCCAGCAACCCCTGCACCACCCATCATACCATCTCCAGCCCCTCCAACCAAACCTTCCCCACTACCGCCAGCAACCCCTGCACCACCGATCATACCATCCTCACCGCCACCCACAACCCCTACTAGTCCTTCTGGTGGTCAAGAAAAAATCCGACCACCCTCACCAGTGACCCAAGCCCCACCAGTTATTGTTCCCACATCTGCCCCAGTCCCACCACCATCGCCATCCATTCCTGGAGAATTATCATGTCTAGTACGTCTTGAGAAGAAAGGATGTTTTAAAGACGATCAAATTCCTCCACGTCCTCTTCCAAACTACATCTTAACTGATCGCGACAATACTTTATCGATTTACAGTGGCAAAGGAATTGACTGGGGAAATTGGGTGAACTATCTTCCTGATTTCGTGTGCCGTTGTGCCCAACTTACTAAGTCTAAAAATTTTAAATACTTCGGAATACAATATTATGGTGAATGTTGGTCAGGTCCTTCAGGAGACGAAAATTCTTTCAAAGAAGATGGAGTTTCAACAGAATGCGTCAACACGAACTGGAAGACATGTTCTGATCAATCAAAATTAGCTTGTGCTGGAAAGGAGAAAAATAACTATGTTTACGCAATTGTTTAATGTATTTTGTAGTAGTTTGAAATGATCTGTAACCTAGTCTGGGAGGAATATAAATAGGAAATAGCCTAAAGTGTTATTGCATGCATTCACCGCTAGATCATAATGTTATTGTTAGATCATAATGTTACTGTTAGATCATAATGTTACTGTTAGATCATAATGTTACTGTTAGATCATAATGTTACTGTTAGATCATAATGTTACTGTTAGGTCATAATGTTACTGTTAGATCATAATGTTACTGTTAGATCATAATGTTACTGTTAGATTATAATGTTACTGTTAGATCATAATGTTACTGTCAGCGTTAACCTATAGTTAACATGGCTCCAGTTTCGGCTGACCGTTGATAAATAGAAACGAAAATGTCAGCAAAAAGGAAATGAAATTTATTATAAAAATTATTAAAATTTCTCCTGCTGCATGGGCATATATATGCTTCACTAAAGTTTTACATTACCCCATGCTGAACTTCGACATAATTTAATTTGTTCGAAATGCCTTTTTCAAACAAATCTATCCCCTTTCATGAAAAAGTTCCAATTCCATCTCAAAACATTTACATATCCGGGGGCATAAAATATTCCTTACCGCTACATGGCTGGTTTGGGGTTGGTTTATTACTGTTTCCTTGGCACAGTTTATAGACAAACAGTCGGACTGCAGTGTGGAGAGTACTACTTAGCTATATACGGTGCCGTTTATAAGTAACACGTATCAGGCCGAACGAAAATTTTACAAAATATACTGATAACAGTGAGTCAAATCCAACGGGGGTGGAAGTCAATTTGATACCTCCTCACCTCGTCCTTTCATATCTATAAACTGTGCCAGGGAAACAGGAATAAACCAGCCGTAAACTAGATAAAATGAAAATATTTGTTCCGTTGCACGAATAAAAACATTCAATACAGCAAATACACAAAAATAGAGCTAATGCGTTTACCGTAAACGTCGAATTCGTACTATTAATGTA +>XM_039788533.1 PREDICTED: Perca fluviatilis E3 ubiquitin-protein ligase MARCHF7-like (LOC120551252), mRNA +GCAACAGGGCGCTGAAAACCTCATTAGGCGCTGAATACAGATCAAAAGTGGTAGATACAGAAGTGAAACGACAGATTCCAGGCATGCAGGCTTTTTCGACACTGTTGCAGCGCATGTCTGCAAGGAAGGCCTCAAAGCAGCCGTCCCCCTGCAGCGCTGGGAAAAGTGCTTTGTCTGAACCAGAGAGCCAATTGAATAAAGATTCGGAGTCCTGCCTTCAGGCTATCTCCAGTGGAACCCGGAGCATGTCTGCAGAGCTGGCAATGACTTCAAAGATTCCCCACAGAGAAAAGGCGCCCCTGGCATCCAGATTACTCCCCGCAAAGGATCACAACGATCACAGGTCTGAGCGTGTGAAACACAAAGGATTAAAAGGATCCACCCAAGCGAGCAAGCAAACACAAAGCCGGGACGTCCTGAAGAGCAACAGCAAGATGAAACACCTTTTCAACAAAACAAACGTTGAGGATGTCATACACCCCAAAGCTGAGACTACGTTTGCCTTCCCAGCAAGTACTGACACTGTCCCGCATGTTCCCACACGTGATACAGGCTCACTGTACAGTGAATCTGAAGAAGAGGAGGAGGCAGATAATGACCCATCAAGCTCACTGTACAGTGAATCTGAAGAAGAGGAGGAGGCAGATAATGACCCATCAAGCTCACTGTACAGTGAATCTGAAGAAGAGGAGAAGGCAGATAATGACCCATCAAGCTCACTGTACAGTGAATCTGAAGAAGAGGAAGAGGCAGATAATGACCCATCAGGCTCCTGTCAGGGCACATTTAGAGAGGCCACCTATCCATGGCAAGTTTCTCGGTCAAGCTCAGCCTTCCGTTGCTTCTCTCACAGTTCACACCTAAGTACATCAACAGTTTCACCTGTTGGTCGTCATGGATACGGTCCTGGTCCTTTCCTGGAGCGAACAAGGCGACCTCATGCAGCATCGCTGTTATCTACCACTGACAAACTCAATAGGGGTTTTGTAGGCTGTGTGAGTAGCACTCAGCAGACACACCAACATCTCCATAAGTTTCAAAGCAGCTGGCCAAGCACAGCCTCTTCACACAGGACTGTCGGCTTCTGTTCTGCTGGGTTTGCTGAGAAGCAAAGCTACCGTACCACTGACTACAAATCGAGGTCTTCTAATGAGTCCTGGCGTCTAAGTGCCTCTGGACAGGTAGATAATCTGAATGTGGATGATATGACGACGTGTAGTGATATCAAAGAGCGAGTACCCAGTCAAGAATGTCAAGAAGCCCGGGAAGGAGCTACTGCTGCCCAAAACGCTCAGTCTCTAAAGGATCGCAGCAAAGAGACTGTTTGCAGACCCAAACAAAGGTTATTAGATGAGTCATCTGATGAGGAAGAAGGGGAGCAATGTCGAATCTGCCACAGTGGCGAGAGTTCACCAACCAACCCACTGATATCACCGTGCCTGTGTTCAGGCAGTATGCAGTTCGTTCACCTCGACTGCCTGAAGAAATGGATTAGGACAAAAATCGAGTCAGGGTCAGGGCCCTATACTGTCAAAAGATGTGAACTTTGTATGGGGAGGCTGACTCTGGACCCGGATACACTTCACTTGGACGTTTACTACAGAGAACAACAGCAACAGATGTTGGGCAACCCTGACCTGTATGATCTCAATGATGTGTTTGGAATGCTAAGGCGGCCAAGACTTGTGCACGTTCCGATATGGTCATTGCTTTCCAACCTAAGGAGAAGACTCCTCAGAGGGAGGAGGAACCCCTCACCACAAGAGACATCGGACACTTGATCCTCAGCCAAACTCCTTTTTTTTCCACATCTTTGCTGATGTGGAACTAAACACACATGTTTTACAATAAACCACCATGCATCTAA +>XR_006693933.1 PREDICTED: Macaca fascicularis uncharacterized LOC102122981 (LOC102122981), ncRNA +TAGAAACAGGGGTTTCACAGTGTTGACCAGGATGGTCTCGAACTCCTGGACTCAAGTGATCCTCCCACCTCAGCCTCCCAAAATCCTGGGTTTACAGATATGAGCCACTACGCCCAGCGTGACAGAGCATGACTTCTGAGGGTAGGTCATAAAAGACATTGTGACTTCCGGTTTGTTCTTTGAACACTTGTCTAAAGGAAGTCAGCTGCCATGTCTCAATGACACTCAAGTGGCCCTATGGAGGGGCCTAAAACAGCATCCTCCCGCCAACAGCCATCAAGGAACTGAGGAACTGAGGCCCTTTGCTAACAGCCATGAGGGCACGATCATGGAAGTAGATCTCCCGCCCCTGTCAAGCCTTCAGATAACTGCAGCCCCAGCTGACTGCTCAACTGCAACCTCGTGAGAAACCCTCAGTTAGGACAACCCAGCTAAGCTATTCTCAAATTCCACAGAAACTGTGAAATAATACATGCTTTTGTTTTAAGCAACTAAGCTTTGGTTAATTTGTTACACAGTAATAGACAACGAATACAGCTGGCTTATCAGCCTCTCCTCTTTTTGCAGGCTGCAGGACTGCCGAGCTTCGAGGGAGCTGAGAGGAATGCTGTATTCAGGCCCTCTTACCTGACTTGACCTTGAGACCAATGGGTGTGTTGGAAAGAGGCTGGCAAGGTCTGAGGGTACAGCCTGTGGCGGAGGTGGGGCCAGGCAGGCCCAGCCCCTCAAGCCAGGCCGTGGGCCCCAGGGCCCTGCCGGATGGCCGCTCTCTGGGAGCTGCATGCAGAGGTGCCTGGCACCCCCAACCGCGCCCCACGGGGCACCTGACCTCCAGAGGAAGGAAATGAGTCTGGAGATGCCGTAGACGAAAGAGTTGCCGCTTCCTCCGCCTGGGATCACTCACAGATGCCTCAGGGAGGCGGCCGGCCCTGAGTCACGCTGAGCGCTGAGCCGGCTGTGACTCAGCGGGACCGCGGTCCCTTGGTTGCGCCTGGGTTGATTTGCGCCCCGCTTGTTTTCTGCAGAAGACAAGGCCGTCTCGGATTAGACTGCCCCTCCTAAACAACCAGCAACTGTTTTTCTTCCTCAAAGTGCAGTTTCCCTCTGGCACAACCAAAAATAAACACAAACCAGGCTCCTGCCCAAGGAGGAGGGGGGGAGGAAGACAGTCCCCGGGGCGCCCACCGAACGCATGTGAGAGCTCGCAGGTCACCTGCTTGCATGAATCTGTGAAGCAAGCAGCCATGAAGGCAGAGAAACCTCTCCCATCGCAGGCTGCCAGCACAGAGGCTCTGATTGTTGAGTTGGCGCTCTGTTTATTTCCCCAACTGCCTCCTCTCAGGTTCCGTCCTAACTGCTGGACTCACTGCCGCGTGGGCCTGAGCACATTTCCTTGGCAAATTGTCCTCAGTGGAAGTTTTTTCTTCTCGATGTGGTGAGTCAGAGCTGGCTCACACACAAACACCAAGCAGCAGCCTCAGGGACTAAAGTGCTTTAAGGACACGAGGACCTATCCTCCCTCCCCCTATCTCAGTGGGGTGGGCCCACAGTTCCTGAAAGCTGGCCCAGTGCAGTTCATTTGACAGGCAGAGGCTGAAAATGCAAATCACCCCAGCATAGGTGAGTGCACAGCAGAGACCACGCCCGGGCTGCAGCTTATCCTGAAATCCTGAAGGCAGGAAACACCGTGCCCACAGGAAGAGCTGGGAAGCCTGAACCATGCTAAGATGTCCCAGGGTGAACCGGAGCCACTGGTTAGTCACACTGACTTCACATTTCCTTCGTGAGAAGGAACTGAAGACAGATTCCAGACTTGCTGTGCATAGAATGTATAGTTCATTGCATGTGAGAACACAGCAACAAGGCACCATCTTGGAAGCAGACAGCAACCCTCA +>XM_043685587.1 PREDICTED: Chiloscyllium plagiosum uncharacterized LOC122546987 (LOC122546987), mRNA +ATGGGAAATCAGACTTCTAGACTTACTAAGGAGAAGTCAGGGAAGACTGCAAATGGGAAAGAAATACCCCCCGATAGTCCACTAGTTCGGAAGGTAACTCTATGGACGGACAGTCGTAGAACGAAGGACTTAAAGAAAGACACCATGATAAAATATTGTTGTTTTATATGGACCAAAGAATCTATCCGCGCCCCCTCGGTAGTTTGGCCCGAGTATGGTTCTGATGAAGACTGGGTGTGTCTAATCCTAAATGTATATGTTAACAGAAAACAACCGTTTGACCCAGAAGAGAGCAAATACGCCGCCGCCTGGTTGGCGGGCGACGGCGAGAGTCCCACGCGTCTCTATCCTCTGATTCCCCAAACAGACCCGAGGAAGCCCCAGAAGTCTTGGGACATCCTCACTGACGGTGCCGTTGGGAACGAACGGACCGGGTTCGTAGTACAACCTTTAAATTCTGGGGATATCCGGCAACTCCGTAACGAACTACCCCATCTACTGGACGACCCCATCAGTGTGGGAATACAACTGGACCAATTTCTGGGGCCCAGTATATACACATGGGCTGAACTGCAGGCCATGATGAGAATACTATTTAATTACGATGAAATTGTTATGATCCGGAATAGTGCAATGGCCATTTGGGATAGGGAGCATCAGGACGGCCCTCAGCGTGGAGAGCAGAAGTACCCCTTAGAGGACCCCCGGTGGGATCATAAAGACGCGGGGGGATGGGCCAATATGACAGATCTCAGAAGCCTTATAATCAGGGGGATCCAAACCTGCGTGCCCAAACAGCGGAATTTAGCGAAAGCATTCGAAGTTGGACAGAAAAAGGATGAATCCCCGAGTGAGTTTTTAGACCGTTTGCGGGAGTCCATGCGAAAGTATTCAGGTTTAAACCCCGATGGGGAAATAGGCAAGGGCATGCTTAAGGTGCACTTTGTGACTAAGTCATGGCCTGACATTCAGAAGAAATTACAGAAAGTGGAGGATTGGGCTGAAAAAGATGTTGCAGAATTATTACGGGGAACACAGAAGGTGTACGTTCAGAGGGATGTAATAAGGGAGAAACAAAAGACAAAAATGATGGTGGCAGCCGTACGGGAAGCTTGTAAGTCCACCGGAATGGGGGAGGGAGGTTATGGGGTGGAAAGAGGAACGTCGAAGAAAAGTTGGAGAGGGAGAGAAGAGAGACGGGGCAGAAGTGAGAGAGGAGGATCTTATGGAATTGAGCGGCCTCAGGTGGCCGGATGTTATCATTGCGGGAAACTGGGACACTTCAAAAGGGATTGTCCCGAGTTTAAAAGGGAAAGAGAAGGGATGTATGAAATGGAGCGTGAACAAATGGATTAGGGAAGTCAGGGGAGGATCGGACAAACGTGCGAATTGTACGCCTTGCACC +>BT024918.1 Arabidopsis thaliana At5g50110 mRNA, complete cds +ATGAACCTTACAGCAACTAAAGAAGCTGATGAAGTAATGGAGAGGCATATCGAAGATTCTCTTGCGATATTGCCTCCTATAAAGACTTGTTACAACTTACATTCCAGTGATTTGTTTGATCACATCAATTTAATCGATGTTGGAAGCGGGGCTGGTCTTCCTGGGTTGGTTCTAGCCATTGCATGCCCAGATTGGAGAGTTACTCTACTGGAGTCTATAAATAAGCGATGTGTTTTCTTGGAGCACGTTGTGAATGTTACCGGGCTTACAAATGTTACAATCGTTAGGGGCAGAGCAGAGAGTTGTGGGCACGATGTTATGTACAGAGAGAAGTTTGATGTGGCTATTGCAAGAGCTGTCGCGGAGATGAGAGTCTTAGCTGAATATTGTCTTCCTCTGGTTCGGATTGGTGGATTGTTTGTAGCTGCTAAGGGTCATGACCCAAAGGAGGAAGTTCAAAATGCAGAAAATGCTGTTCGCTTGTTGGGTGGTTCAATACTACAAATTAGTCCAGTGGATTCACATAGCCCATACGGACAGCGGACAACGGTTGTTTGTCGTAAAGATCATTCCACCCCACAAAAATATCCACGTGAAGCAGGTACTCCTGCTAAATTACCGTTGTAA +>XM_041034442.1 PREDICTED: Toxotes jaculatrix potassium channel subfamily K member 15-like (LOC121179542), mRNA +ATGAAGACGCAGAACATCAGGACCCTGTCTCTCATCCTCTCCATTATTTTCTACCTGCTCATAGGAGCCGCCGTCTTCGACGCACTGGAGTCCGAAAGTGAAACTTCGAGGAAAAAGACGCTGGAGCAGAGGCTGAACGAGCTGAAGAAAAAGTACGGCTTCACCGAGGATGACTACAGGGAGATTGAGAGAGTGGTCCTTCTGTCGGAGCCGCACCGAGCCGGCAGGCAGTGGAAGTTCACCGGCTCGTTTTATTTTGCCATCACTGTGATCACCACGATTGGTTATGGCCACGTTGCTCCTCGAACTGATGCTGGCAAGGCCTTCTGTATGTTTTACGCAGTCTTGGGGATTCCTTTGACGCTGGTCATGTTCCAGAGCCTGGGCGAGAGGATCAACACTTCTGTCCGCTACCTGCTGCGAAGAGCCAAGCAGGGCCTGGGCTTTCAGAAGACGGAGGTGTCCATGGGGAATATGGTCCTGGTGGGTCTGCTGTCTTGCATGAGCACTCTGTGCATCGGAGCTGCAGCCTTCTCCCATTTTGAGGACTGGACCTTCTTCAACGCCTACTACTACTGCTTCATCACACTCACCACCATCGGCTTTGGGGATTTTGTAGCCCTGCAGAAGAAAGATGCTCTCCAGAAGCGACCCCCCTATGTGGCCTTCAGCTTTATGTACATTTTGGTCGGGCTGACAGTGATTGGGGCTTTTCTTAACCTGGTGGTCCTGAGGTTCCTCACTGTAAGCTCAGATGAGCCCGACGTGAGGCTTGAGGATGGGGAGGTGTCACACGCTGAAGCAGAAGCTGCTGAAGTGGCATATAAAGACAGAGAAGATGGACACAGCAGCCAGTGCAACCTGAGCCTGCCCATGGAGGGGGGCACTAGCTGTACGAACCTCCTCCCTTCACCTGCAGAGGATCGCAGGCTTATTATATCCGAACAGAGAGAGCACTCTAAGCTCCCTGAACCCAGCAGACTCAGAGCCTTGTTCTCCTGCATCTGCTGTGGCCTGGACATTTACGACAGCCACCCTCCATCTCACCATGAGCAGGAGCGCGGCCACAGCAACCCCGTCTTCTACAACTCCATCTCCTACAGGGTGGACCAGGCCTCATGCAGCTCCTGCACCGTGTCGTCACAGGACTCCCCCACCAGCATAGCACTCTGCCTGGGCAAGAACAATCCTCACAGCAGGAGGAAGTCACTCTGA +>XM_015424951.1 PREDICTED: Gekko japonicus serum amyloid P-component-like (LOC107121936), mRNA +ATGGCTGTGGAGCATTTGCACGGCGGGCCGACAGACCTCAAACAGAAGACCTTGGTTTTCCCAGAAGCGTCCAACACGGCTCATGTGGTTTTGAGGCCTGCGCGCCAGCAACCTTTGACCAGCTTCACTGTCTGCCTGAGATCCTACACAGACCTGAGCCGTGCCCACAGCCTTTTCTCGTACGCCACCAGGACGGTCGACAACGAGTTGCTGGTCTTCAAACCCAAACCCAACCAATACAGTTTGTATGTGGGGGGGTCAGTTGTGACCTTCAGCGTTGCAGACAATCCGGTCCCCAAACCGCTGTGGGAGCACATTTGTGTGAGCTGGGAGTCCGTCACAGGAATAGCAGAGCTTTGGCTGAACGGGGTTAGCTTGCCCCGCAAGGGAATGAAGAGAGGTTACACCATCGGTCCGGAAGCTTCTATCGTCCTTGGGCAGGAGCAGGATTCCTTTGGAGGAGGCTTCGACACCAACCAGTCCTTCATAGGGGAGCTCATGGATGTGTCTATGTGGGATCGGGTGCTTTCCTCAGATGAGCTGGTCGTCATTCAGAACAGCGGCCGCCTTTCCAACTATTTGATTGACTGGCAGTCCCTAAATTACGAAATCAAAGGCTATGTGGTGGTGAAGCCCTCCTGGGGGTGAAGCCCTCCTTTGTAAGCCCCCCTGTAGGCTTCGCAAAACAAAGCAGAGAGCTGGAAACAAATCGATAGTCTTCCCCATAATTAATGTTTCTGTTAGTAGTAAGGCAGCATTCCTACAAACGATTTCCTGGACGTAAACTCCTTGGAGTAGCATGGGACTTCCTTCTGAAAAAGACCTGCAGAGACTTGTTCTCGTAGTCCTCAATCTGTTTGTGCAAACGCATTCATGAAGCTTGTAGATCTGTATTCTCCAATGAAAGATTTCAACCCCCCCCCCCCAAGTATTTTGCATTCCCTGACACC +>XR_005453858.1 PREDICTED: Tachyglossus aculeatus small nucleolar RNA SNORA7 (LOC119936833), ncRNA +CCCCTCTTAGGGTCACACCTGGAGAGTTTCTAGTACTCTACCAGTCTCAGTTATGGGAGGGAGAGTCAAGTAGAGGCATACCCATTCCATTCCTAGCTTGGCCAGTGACTAGCGAGTGGAAGACAATCTGCTACAAGT +>XR_008035993.1 PREDICTED: Dreissena polymorpha uncharacterized LOC127851864 (LOC127851864), ncRNA +TTGGCAAGCGTGGTTAAATGTTATCCTGTCACATAACGTGTTACATAGTTACTTTTGTTTACTGGAGACATAACCTTGCGAAACAAACTTCAAGTTGATTTTAATTAGACTCCGTTAAGGTTGACATTACGTGTTGAGACTTTGGACAAATGCTAGATTGGTGTGTTTTGTTTTGTTTAATAATCAATTAGCTTTAATACCTAAGTTATTTGAGTTAAATCAAATATATTGAGATCAAAAGCTTCAGGGTTGAACAAAATGGCGACCTTTTCACAGTCCACCATCGAAAAAGGATCTGACATCGTCCAAGACTTCTTGTGTTCGGCGTGCGAAGACAAGAAACTGGAAATCTCAGCTGATAATATTTGCGGATCTTGCGTGAAGTTTTACTGCCAATCATGTATTCATTTGCATCGCCAGTTGTTTACAAACCATTCTACTCATGGAAGGGGAAATATGAAGAAATGGCCAGTTGCGAAGACGGTGGAAGATTTTCTTCTTAAATGTGATGTTCACAAAGAAGAAAACTTGGCAATGTTTTGCAAAGACCACTGCAAGCTGTGTTGCAATAATTGTGCATTCCTTAATCACAGGCAATGCCAAACAGTGATGATCTTATCAGACTTAGTAAAACATACCTCCACAGACCTCAAAAAAGTATCAGCTACTATCCAAACTACTCTGGCAGAACTTAAAAAACTTCAAGACAACCAGGAGGCAAGCGTACGGTCTGTGCAAAGTTCCTTCGATGAGCAATTAAAAGAGATACAGGAAACTCGCAAAAAATAATTGAAGCCTTAAACATGCTTGAAAAGAAGACACTGAACGATATGAAAGATGCGCTGGGAAATCTGCAAGCCTCTCTAAAAGCAAATGTTGACAAATGTGCCACTCTTCGTGATCAATTAAAGCAACTTGGAGATGCAATACATGACTTAAGTGATAAAAGCAAGCAATAACTATCTCTTATAGCCAGATTTAAATGCCAGGACAAAATACAGCAGTTTGAAAATGAGAAGAAGAACTTTGTTCAAGTAAGATCTTCAATCACTTTCCAACCTAATAGAAAAATTGTGAAGTACCTTTCTAAGTTGTCAGGTCTTGGGAGGGTTGAAACCAGTACCCAGATATTGACAATGCCGGGAAATCCAGACAAAGTAATAAGGCTGAAAGAGAAGTATGAGTATGACGTGCGCACGCGAGGTGATTCATATGAAGAGTATGCAGTATGCAGTATCAGAGACATTTGTGTTCTCCCTAGGGGACAGGTCTTGGTTGCAGACGCGATGAATAATAATGTCAAGCTGTTGAACCAGCAGTACAAGGTGTTGAGTCACTGTGTTAAACTTGATACGCCATCGGGCATTTTTCAGATCACACCCAGTGAGGTTGGCGTCACTTCTGGTTCAGTAGTCCAGTTTATCAAAGTCAACTAAAGCCGACTGGTGACAGACAGAAAGCTAACATTACAACGTGAATGTAAAGTAGATGTATGTGCAGTGAGCCCGACAGGTGACAAATTGTACATCACCAGCCACTACCAGCACAGGATACTCACCCTTGCCAGAGATGGATCAGTCCTTGCCACATTCAGGGACCAAGAATTACAATGGCCAACTGGTGTACACGTTACATCTGCAGGCCAGGTGCTGGTATGTGGATATGATTCAAAGACAATCATTCAGGTTAACCGTAATGGCAGTAAAAAGCTGGCAACTCTGGCTACAGAGAGGGATGGGCTTCAGGGAGGCACATGGTCCGTCTGCTACAACAGCAACAATGATTCCATTATCGTGGGGCAGTTGAACAACAGGATACTGGTGTACAAATTACAATAGCTTATCATTCTTGTATTTTATATGAGTAACAATAAGTGATATACATTAAAATAGCTATTACATTGAGTGCTTTGTTACTTTGCAAAAATATTTTAAACATATAATATGTTTGTAGGAATAATGTATGTAAATAACAATAGTTGTTTATGTAATAGTGCTGTGTAACCATGCAAACAAACTTCAAATGTGCATACCAATAGTTTTGTAAAAAATAATCTAATATTTTTTTTGTTTTTAAAATCTAGCGTGTTTCTTAATTGATGAGTCTTAAGTGGCAAATATGAATGTTTACTTTTGTTCTTAGAACTCAATATCTTAACATATTATTTATGATACAATATGTTTGTAAAATAGTTTATAAGACATTTTTTACTATAAAGAACTCGTACAGAACAATCATGCTAGTGTTAGACCGTCATGTATAAGATGCATAGCAATTAGGTTATTAATTTATTTCTATTTAAGTAGCAATCATAAATCTATCTTTAACTCACTGGTCTATAAAAATAGCTGATATAATGTCAGTAGCATTTATTAAAACACCTTTTAAATG +>XM_028615390.1 Sodiomyces alkalinus F11 IKI3 family protein (SODALDRAFT_45849), mRNA +ATTTGATGCGCAAGAGTTACATCTGCGGAACCCCCACCAAAGTACCAACGTAGTCCCTTTTCATACCTCGAAGATTTTCATCGCAACCACAACGGCAGCAGCACAAAGCGTCCATCGTGACCACCTCAGTCAATAACTCGAAGACGACCTCCACCTCCCTCTCCCTCCCAAGCCCAAACGCCGGGACAGGGAACACTTATTATGACCAGTGATTAGTGACTTCATCACCAACCCGAGAATGCGGAATTTGCGCAACATCCGCTTCGATGCCTGGCGCCTCGCCGACATCACTTCCACCTGCTGGGACCCCGCCAAGGATGAACTCCTTTGCACTCTAGGTCCGACCGAGACGAGACGCTCCATCGAGCTTGTCCGGATTGCAGATACATTTGAGCTACAATCTCACACTATTGCTTCGTGGGACGTCCCGAGTCCCCATCCCGATGTCCCAGCCGACTCAGTAGTGAGCCTTCACCACTTCAGCGACACGTCTACCACGTGTGTTATTCTTGCCGGCGGCGATATCGTCACTATCAAGGAACCCGATGCCTTCTCTTCCCAGGATGACGTCCACATTGAGATTATCGGCTCCATCGATGCCGGAATTACGGCGGCCCGCTGGTCTCCCGACGACGAGCTACTCCTCGTAACCACCAAAGATGGCAAGGCCGTCTTCATGGGCCGCACCTTCGATGCCATCGCCGACGTGTCCATGACCTCGGAGGACCTCAAAGCATCCAAGCACGTCTCCGTCGGCTGGGGGAAGAAGGAGACCCAATTCGAGGGGCGGGGCGCGAAGGCCCTCAGAGACCCCACCATCCCCGAGAAGGTGGACGAGGGCGTTCTCAGCCCGAAGGACGACGGCTCGTCGTCCATCAGCTGGCGCGGGGACGGCGCCTACGTTGCCGTCAACTCCGTCGAGGGCGGCTTTCGGAGAGTCGTGAGGGTGTACTCGCGAGAAGGCGTCCTGGACAGCGCGAGCGAGCCTGTTGATGGACTGGAGGGAACTCTGAGCTGGCGGCCGGCGGGGAATCTCATCGCCGCCATCCAGCGTCGGTCGGACAGGATCGATGTCGTGTTCTTTGAAAGGAACGGTCTGAGGCATGGCGACTTTACCTTGCGCTCGCCTGGTGGAGATATCCTGTCACACGATGGGATCAGGCTGGAGTGGAACAACGACTCGACTGTTCTTGCCGTCATCTTGTCGGATACGATCCAGCTCTGGACCATGGGGAACTACCATTACTACCTCAAACAAGAGGTGCCCATCACGTCCCCGTACGTCCACTTGGCCTGGCATCCTGAAAAGGCCTTGCGCTTTGCCGCGGCGACGTCCAGTCTCCTCACCTCCGCCGAGTACATTTTCACTGTGGCAAGGGGTTCTCAGAGGCCACCCCACGATCATGGCGCCGTTGCGGTCATCGACGGCCACACGGCGAAAATTACCCCCTTCCGGACGGCAAACATGCCTCCTCCCATGACCATGTTCGACTTGGAGGAGGCATCGAGTGTTGTTGACGTCGTCTTTGATTCTGCCAATTCCTCCATGGCCGTCCTGCATCGTACCGGAATAGACGTCTATGCATGGCAAACTAAAGGAAGCCGCTCCCTTCACCCCAAGAGGGTGAGCCGAACAACTTTCTTTGAATCATCATCAACGGACGACTCGCCTCGGGTTCCACTTCAAGCATGCTTTTCCTCGTCTGAAGAAATCTCTGTCCTCGTTCACGACGGAGGGGACCTAAAAGTTGAAGTATACAGCTTTGGGCCTGGGGATAGTAACCTCCAGGATGTCGTGGAAATCGATCGATCGGAGCCGATTTCTTCCATTTCGAGCTACTGCGGTCTACCCGATATAGGGGCCTACGCCCAAGATCGCTCTGGAAAGTTATACAACTTATCCGGACAACAGGGCCTTATGCCTCTCGGACTTCGACTGCCCGTCCAACTGCCATGGTGTCAGCTGGTTGCCGTCGGAGACAATACGGTGGCGGTGGGAATGGCTCGCAACGGACGCCTCTACGCTGACAGTAGGCTGATAGCCAAGAACTGCACTTCCTTTGTGGTTACTGATGCCCATATCATCTTCACAACAACCAACCACTTCCTCAAGTTCGTCCATCTGGTGGATCCTCAAGAAATGGAAGTCCCGGAAGACGACCCTGAGGTGGATGAAAGGTGTCGCAGCATCGAGCGAGGTGCTCGGCTCGTCACGGCCATGCCTACCAACATGAGCCTCGTGTTGCAGATGCCCAGGGGTAACCTTGAGACTATATACCCTAGAGCCATGGTGGTCGCGGGTATCAGGCAACTCGTCGAGGAGAAGAACTACGGTCGTGCTTTTTCATATTGTCGTACACAACGGGTGGACATGAACATTCTCTATGATCACCGCCCGAACCAGTTCCTAGCCAACGTTGGCCTCTTTCTCGACCAGATTCAGGACGTGGCATATATCGATCTCTTCCTCTCGTCTCTCAGAGAGGAGGACGTCGCCCAAACGATGTACAAAGATACCAAGCGGACAACAGCTCGCGACCCGGACATTATCGCCGAGGAAGCGGCCGCAGATTCACTGGCTCCGCAGAACTCGGGGAACAAGTCCAAAGTCAACAAGATCTGCAATGCTGTTCTCAAGGCTCTGCAGCATAAGAAAGAAACCCACCTCCAAAACATCATCACCGCCCACGTCTGCAAGGTGCCTCCCGCCTTGGATGACGGCTTGACTCTGGTTGCCGAGTTGGTGCAAGAAGACGAGAAGCTTGCAGAGAAGGCCGTAGAGCATATCTGCTTCCTCGTAGATGTCAACCTTCTCTATGACCATGCTTTGGGGCTTTACAACCTCGACCTTGCCTTGCTCGTTGCCCAGCAATCACAGCGAGACCCGCGGGAATATCTGCCCTTCATCCAAAACCTCCACAAACTCCCCGAGCTTCGCAGACGGTTTGAGATTGACGACCACCTTAACCGGCGATCCAAGGCCCTAGCACATCTGAAGGCGTTAGATGCGTTTGACGAACTACAGGCATATACTACCAAGCACGCTCTGTACCAAGACGCACTCGGCCTCTGCAGGTACGAGAGGCAAAGACACCGTACTCTCATCAACCTCTTTGCCGAATATCTCGAATCCAAATCCAAGTTCCGGGAGGCTGGTCTAGCCTTCGAGTCTCTCGGGAACTACGAAAAGGCCATGGTCTGCTACCGCAGCGACGGCGCCACGAGCTGGCGCGAGTGCCTCTTCGCCGCCCAGCAGGTACAACCGCCTCTCTCCAAAGAAGCGCTCACCGACCAAGCCACCACCCTCGCCGAGGCGCTCACAGAAGCCAAAGACCACGCCTCAGCGGCGACCCTGCACCTGGACTACCTCGACTCCCTCGAAGGCGCCGTCCGCTCGCTCTGCAAGGGGAACCACTTCGCCGAAGCGCTCCGCCTCCTCGCCCACCGCAGCCGGGCCGACCTCGTCCCCTCCGTCTTCGACCCCGCCCTCGTCGACACCCTCAGCACCACCACCGAGTTCCTGGCCGACTGCAAATCCCAGCTCCGCGCCCAGGTGCCCCGCATCCTCGAGCTCCGTCGCCGCGCGGCCGAGGATCCCCTGGCCTTCTACGAAGGCGAGCGCGCCGGCGGCGCCGACGGGATCCCGGACGACGTGTCGGTGGCGGCCAGCTCGCGGCTCAGCACCGGCGGCGCGAGCTTGCTCACGCGGTACACGGGCAAAGGCGGCGGCGGCGGGGCGAGGACGACGAGCACGGGCACGGTGGGGACGGGGGTCAGTCGGGCTACGAGCAAGAATCGGCGGCGCGAGGAGAAGAAGCGCGCGCGGGGCCGCAAGGGTACCGTTTACGAGGAGGAGTACCTCGTGAACAGCGTGAGGCGGCTCGTGGACCGCGTCGGTGCCGTGCGCGGGGAGGTTGGGGCGCTTGTTTTCGCGTTGGTGAGGCGGGATATGGCTGAGCGGGCTCGGGCGGTGGAGACGCTGGTGGATGAAGTTGTGGAGGGATGCAGGACGGCTGTGGCGGAGGTGTTTGGATCCCCCGAAGAAACCGAGCAACAGGATGGGGAGGACCCGAACGAGGGTCTGGCTGGTGGTGGTGGTGGTGGTGGTGGTGGTGTTGGTGGAGACATGGGATATGTGGCTACAGGAGGTGCGGGTGTCTTCCATGAATACTTGGAGGCGAGGAACAGGAGGCAGGAAGTTCCCCTTGTCCAGGCGGTCCAAAAGCTATCCTTGCTCGGAGGATAGCGTAGTCCTAGATTATGGCAATCCACATAGATGATGTACATAGAAACGATTTTTCCAAGGTGGGAAAATTCCGGAACCATTCACACGACTAAAGATGATCATGATAGCTGCAGTGCTATCTGCTGATAAAAGTACACTATTGCACAAGTGAAGATCGCCT +>XM_002560539.1 Penicillium chrysogenum Wisconsin 54-1255 hypothetical protein (Pc16g02130) mRNA, complete cds +ATGGACGCCTACCCCGAAGACTACGTCAATCACAATCTGCCTTTAGTCCTACTCTCAGGGCTGGAGGCAGACACTGAAAATGAGCCAGGAACACCATCGGATTATCCTCTGCTATCAGAGAAGGGGACGCATATCTTCTCAGACTTCCCACCTCTGAGCGGGGCTGTTGCGGAGGAGCTCCGGAGCTTGCTTCTAGAGGAAGATAGCTCTCAATCGCCATGGAAGTCTAGAGTTACTGTAAGCGGGAATACTACGATTGCGAATATTGGTTACCGCATCAAAAGTTCTGGCCGCTCATGCAGACTCCCTCCACAAAAAGCTGACCCCCCTATCCCCTCACCACCAACTACTCCCAGTGATGACCATGATAATGAACACTCCGAGCCTAGCGCACACTATGTCCTCCACTCCCCGATATCGCCTCTGTCACCGGGTTCCCCAACTTTCCCAGATGGCTTGCTCACACCTCTATGGGTAACTAAACACCAGGACCTGGTTCCAGCAGCAGTGATAAATTTCTTCCCGTTTTCGCTGGACCCAAATATGAACTCGCTGCGAGACAATCAACTCAAGATCGAGATCAATAGCTTGAAAAAAGAATGGCAATCCTCCGGGTACAAGACGCGGTTCGTGGTCGTTCTGTTATCAGAAGACGGAGAAGAAGGCGGCTATGAGGGCGAGATTGATGACCGAATTGCGGGGATTCGGCGGGCAACAAACCTTGACCCCAGGTCAATATTTGTGATTCCACCAGACGCGACTTCATCGGAACTGCAAGACTTTGTGAAATCACTCTTCTCTTTACTGCAACCGTCGGTTGTTGAATACTATCGGGATCTGTCAAAGCATGCCAGGCGTAAACGGAACAGGGGGAATATCCCCCCTCCGACCGCACCACCAACGACCGGAACTTCTCAGACCCTATCGTCCCAAGGCTGGAACGTACGGTATGAATTCAAGCTTGGAATTTTTGCCGAGTTTCGCCAAGAAATGGATGCAGCCTGCCGGAACTATGAGAGTGCGTACGAAACCCTGTTTGGGCATGAAGTCTTCGAAAATATTGCAGGCTGGAATCCTCGATTCAACGATGCGCGCCTTTTGGCCGACGCCCTGGCCATTCGGATTATACGCTGCCTGCTATGGACGGGCCAGACGACCACTGCAGCTCGGCTTTGGGTTGACCACAGAGTCCGTGTAAAGGATATTGTCGATCGCAGAGGAAAGGGCAGTAAACACTACGGGTGGGAGGCCTGGGAGGCGCGTTGGTCGATGGTAATGGCACAGCTTATCCGCCGAGCGGAAATTCCGCCTATCTCCAGCGAAATCTCTTCTGAGCAGCCCAGAAAGCTCTATGCTCTACCTGAGAAATCGATTCCAACCGGGGAAAGAGTCAGGCCCTGGGAACATCTCCATCACGAGGGTTACTGGCTACACCGTTCAGCGAAACATACGATGTTGCGACGTGCCCTTGCCCAGGAAATCCCCTTGGAAGATCGCAAGCCCCCCGGGCAATCACCCGCCTCACAACTCGCAAATAAATCCTACTTGTACGACACGTACCTTGTTCCCGACGCTCACGCCGAAGCACCCCAAGAAGGACGAACTGGCTTCGACCATTCTGGTCTAATATTAAGCACGCTGAAGGCTGCTATCGAGGAATTCGCAAAACGCGACCAAACAAGGAAAGTCGAGAGCTTGAGTCTTGAGGCGGCCGAGGAGTATATGCGTATTGGCTCATGGTCCGAAGCGCATGGCCTTCTTCGGCCGCTGTGGTCTACTCTTAGCTGGCGCCGCTCAGGGTGGTGGCATCTGATGGCCAATTTCGGGCGGGCGCTCAGAGAATGTGCCCTCAGGATGCAGGACAGCGAGACAATCTTGCGAGTGGACTGGGAGCTGTTGAATAAGAATCTCAAACCTAGATCTGCGTGGCATTATGACATCCACAAGAGTCTTGAAAGTTTACCCTCAGAAAAGCCTAAACCTTCTCTTATCCTTCGCGCAGAGGATGTTATAACAAGTCTGACCGCGTCGCTGGTGTTCGAGAAATCTGATGGCAACGTTGGCGAACCTCTACATGCACAGCTTGCCATCACATCCTGTGCTCATAAATTCTCGGCGCCTATTCGGCTTTCGGAGGTCAAACTGGTTTTCGAAGGATGTCTTCGACCGGTAAAGGTTCAATCTGACCAGAACCAGGATGCTGACACCACAACCTCATGTTGTATCGCAACTCTTCCACTCCGGGAACCGAGCAACGCTGATACTGCGGTTCAATCCCCAGCCGGTGGACTGACCGCATTGACCAAGGTGTTTGACCTCACCTGTGTTCCTCGCGAAGCTGGTGAAGCCAGGGTTGCTTCAATCACCATGCTGATTGAAGAAGAACAATTCGATTTGGGTTATGCGGTCACTGAACCAGAACAGCGTGAATCGTTCTGGTGGGAGCAGACCCAGAAGGGCGTGACCCGTAGGAGAGTGGGCAAGGATAGGGATACTGGCAGGTGCAAGGTTATGCCTAAGCCTCCCAAGATCCGCCTCACAACTCCCAACCTGAAGCGGACCTACTACACCAATGAACGAGTGATGCTTCAGATTGGTATACACAATGAAGAAGACGAAGCTGCCGATATATCTGCTGAGATCAGACTATTCGGCACCGAGTCCGCAGCTCAAATCCAGTGGCTCGACGGCGACAGCAACCCCGAACTCCTCGAATCAGGCGCCAGCACTCCGATTGAGGGGCCGTCTCATTACTTGAAACGATCTGTGGGTGTTCTGGAGCGCTCCTCCCAGAAAACTCTTACAATTGTGTTGGTCGATACCCAGGAGGCTACGGATTTCACCTTGGAAGTTTCGACTGTGTACCATTTGGTGTCTGATACCCAGACCCCGATTATGAAGAATACTACCGTGGATCTATCATTTATTCGGCCGTTTGAAGCAAACTATGAATTCTTGCCGGCAATTCACCCTCAGCCATGGCCCAATTTCTTCGCAGTTAGCGACAACTTACTCGAGGATGGCTCTGCGCCAAGTCCTGGAGGCCTGTTCCAGAAATGGTACCTCAATTCCAAGGTAGTTTCCTTTGCACTGGAGCCATTGGTAATTGACAAGATGTCCCTGGTTCTTCTCGAAGCCAACGGGGGAGTCGTTTGCGATGTTCACTCAGAGGAGCTTGTGACTCCCGGAACACCACATCTCGCACCGGAAGAACTGCGAGAATCCAACTTCTGCCTCGATGTCCAGAAGCTCCTTCTCGGAGACCGCCGGCCAACTGCGCTCACCTGCACATTGGAGATCAATTGGCGCCGGCAGTCATCTGAATCTGTAGCTTCCTCGGACGCAGAGAACTCAGTCACAACCACCGTCCTTGATATTCCCCGATTTGTGGTCCCAATGGGCGAACCTCGAGTCCTTGCATCAGCCACCCCATCCAGCAGTATGGCGGGGTTGATTCATATGGGCTATGTACTGGAGAACCCCTCCACCCATTTCCTCACCTTCAACCTGGTCATGGAAGCTAGCGAGCACTTTGCCTTTAGCGGACCGAAGACCACCGTTGTGCAGCTTGTGCCGCTGAGTCGCCACACAGTGAACTTCAATTTGTTTGCAGCGAAGCGTGGCTTATGGATTCAGCCACAACTGGTAGTTATTGATACCTACTTCAACAAAACGCTCCGCGTCCTTCCAACGGGGGATATGAGGTCGGACAAGAAGGGGGTTCTGGTATGGGTTGATGCCGACGATTGA +>XM_011327141.1 Fusarium graminearum PH-1 hypothetical protein partial mRNA +ATGACATCCTCCATCGTGGAGGCATTGGCGAATGTTCAACCACCAGAAACACCAGACAGCGAAGATCATGACATCGAAAACGAGACCCAAGAATCACCACAACCTACAAACGAACCTTCCCTAGACGACCCCCAAATCGGAAAGCCCATATCTCATGGCCAAATTGTCGACCTTTGGAAGCGCTCCAAAGCACAAGACGATGCAAACTACACTCTAGAACAACTCCTTCGCGGCGCATCCGTCTACATCCCTCCTCCACCACCTAAACCCGAACCTCTAACCAAGTGCAGTCTCCCGAATACAAAGCCCTCATGGCCCGTCTTCGCCGCCAAGAAGAAGCCCGCTCCTACGAACGAATGA +>XM_039262098.1 PREDICTED: Dioscorea cayenensis subsp. rotundata uncharacterized LOC120253894 (LOC120253894), mRNA +ATGGCCACAGTTCAAGGACCAATAGTTCTGGTTCCTGAACTAGAACCGAACTGGCTAGGTTCCAGTTTTAGGACAATTACGGTTCTGCCGGTTCCAGCCCGAAGAAAGAGTAACTACTTATTGGCCCACTTCATCTCTCTTCTACTCAGCCCTAATTCCTCTTCTTCTCTGTTTCATCACCACGCTCCTCCACCATCGAACCCGTTGCCGATCACCCGCCCGTCACCACGGTCCTCATCTTCGCACCATCGTCGGACCCGTCGCCGGTCACCCACCCGATCACCACGATCCTCATCTTCACCATATCATCGAAACTCGTCACCAGTCACCTACCCGTCACCCGCTCGTCACCCACAAGCCTGCAGACCTTCTTTTTCTTCGAAGAAGGAAACGATCTTCATCTTCTTCTTTGATGATTCTAGGGTGGGTGGTGGTGATCTTCCTGATGACACTGTGTTGACTTGTTCTCACGGCTTAGAAAGGTGGGCTTATTACATTCTTTGTCTGGCTTCCTATCCGTCATTAGGTCCTCACATTATGTTTGTGATGCATTTGCATCAACATTAAAGGGCTCTCCAAACAGTGTTACAGTTGCGAGAACCCGAATTGAAGGAGGTGCAAAGGCTGTTTGGACTAGTGGAAGCCTGGTGCTTCAAAGTATACGAGCCATCTATGCTCGCTAAAGCATCTTCTTCTGGTTCGAAGTTGGGGAAATGATTGTTGCCTAATGATAGCCCTTGTGTATGTAATGTTGTACTTTGAGTTCCTCATCATCTGATTTGTATGTCATTTAAGCATTAGTGCTTTTCCAATTGAATCAACTTCGACAAACGAATATATTTGCTTGT +>XM_040352829.1 PREDICTED: Rana temporaria histone deacetylase 9 (HDAC9), transcript variant X3, mRNA +TCCCTCTATTGAGATGCTATTTTTAGCAAATCCTACTCGTGTCGCCACGGGCTGTGATCACATCTTTCTCTCCCCGTTTCTGCCTCCCTCCCATCCTCAGCCATCCCTTTCCCTCTCTGTCTGCAGATTTGAAAACATCACTGGCAGCGCTCCCCGGCGACTCAGCACTCATGTAACCTGCACGGGCAGCGAGCACGGCGTCAACTTTCTTCTGCTTTGTGTTGTACGCTTCCTGGCAGCCTCCTTTCTGAGGATGGATGGTCTGGATGAGCGGCCAACTTCTCCGAGCAGCTACTGAATGAGCAGCAAGATCCTGCTTTTCAGTTACAAACCACTGAAATACATTCCTATCAGATCTGGGATCTCTATCAAACAGCTGGTCGGCATGTCTTCTCCAACCATGAGCACCACAACACAGTCAGATGGGGTATCTGGACGGGAGAAGCTCCTGGCACAGCACAGAATGCACAGCATGATCAGTCCAGATGTGAAGACTGAAGTCCCAGTAGGTTTGGACCCCATCACACCACTGGACCTACGGACAGATCTAAGGACAGTCATGCCTATGTTAGATCCTAGCTTACGAGAGAAGCAGCTGCAGCAAGAGCTTTTACTGATTCAGCAGCAACAGCAGATTCAGAAACAGCTGCTCATTGCCGAGTTTCAGAAGCAGCATGAAAACCTCACAAGACAACACCAAGCCCAGCTGCAGGAGCACCTCAAGCAAGAACTTCTAGCAATGAAACAAAAACAAGAGATCTTAGAACGGGAGAAAGAGCACAAAATGGAACAACAGAGACAGGAACAAGAAGCAGAAAGGCATCGCCGCGAGCAACAGCTGTCTCACCCTCGCAGCAAGGACAGAGCAAAAGAGCGAGCCGTTGCCAGCACTGAAGTCAAGCTGAAACTACAGGAATTCCTTCTGAGTAAATCTGCCACAAAAGATTCCTATACAAACGGAAACAGTCATTCCATAGGCCGCCACCCAAAGCTTTGGTACACGGCAGCACATCATACTTCATTGGATCAAAGCTCTCCTCCATTAAGTGGGACCTCTCCATCATATAAATGTCCTCTTCCTGGAGCACATGATTGCAAAAACGACTTTCCTTTGAGAAAAACCGCTTCAGAGCCCAATTTGAAAGTTCGCTCTCGATTAAAACAGAAGGTAGCAGAGAGGAGAAGTAGCCCTTTACTAAGAAGAAAAGATGGCAGTGTTACCAGTTCATATAAAAAGAGAATATTTGAAGTGGCAGAGTCTTCAGTTAGTAGCAGCTCTCCAGTATCTGGACCCAGCTCTCCAAATAACGGCCCAGTTAACATGGGTGTGGAGAATGAAAACTCAGCATCACCATCCAGCTCACATGTCGAGCACTTGGTTTCCCAACAACATATAGTTCATCATGAAAAGTCGATGAATCTGCTAAGTCTTTACACATCTCCATCATTACCCAACATTACTCTAGGACTTCCAGCAGTAGCTCCCCAACTCAGTGCCTCATCTTCATTAAAAGAGAAACAAAAGTACGAGCCTCAGGCACCCAGGCAGGGGGTGTCACTGCCTGGATCGTATGGAGGAGCCCTGCCTGTTTCTTCAGCTCATGCATCCCTGGAGAGCAAGACCAACAGCAGCCACCAGGCCTTACTGCAGCACTTACTGCTAAAAGAACAGTTGCGACAACAAAAGATTTTAGCTACAGGTAGTGCTGCAATTCTTCACCAATCTCCACTTACAGCAAAAGAGCGGGTTTCTCCGGCGGGCAGGGTGGCGCACAAACTTCCTCGGCACCGGCCACTGCACAGAACACAGTCGGCTCCGCTGCCTCACAGCACTTTGGCCCAGCTTGTCATTCAGCAGCAGCACCAGCAGTTTTTGGAGAAGCAGAAACAATATCAGCAACAAATCCAAATGAACAAAATGCTTTCAAAATCAATCGAACAACTCCGCCAGCCTGGAAGCCATCTAGAGGAATCGGAGGAAGAACAGCATAGTGATTATCTGATGCAAGAAGAGAAGGTGTCCTCCTCGGCTTACATACGAAGTTACAGCAGTACTGACATCAGAACTGACCACCTCAGACCTGTGAAGGTGAAGGAGGAGCCACCGGACAGTGATGACGAAAGCCAAATGCCACATGAATCTATTCACAAAATGGCTTTTGTGCAACAGGTAATAGGCCAAGAAATAGCTCCAGGATTTGTTATTAAAGTTGTCCTTTGAACTTTAGGACTGACTAAGAAAAAGTAAGACCCCTACATTATGTAAATAGACATTTTTATTTGAATATGTTAATACAGGTTCTTTTCTTTTTTTAATCTTAGTAAAGCTGGTCATATACTAGATTTTTGAATAACAGTCCTTATAAATATCTGTGCAAACATTTGCAATGAAATTCTCAGTACATCAGATGACTGGACAAATGTCATTCGATTTTGGAGTGAATGGAATTTCCTAAACAAAAACTACATACACTATTGAGAAAAAAAATCCATCCTGCACCTTCAAGCTTTCTCATTACTATGGTTTAAAAAAAAAAGTTATTTTTATCCCACTAACAATTAGAAAGTCAAATGAATGTCAACAAAAATCCTATAATGCCGTGTACGGAAATTCCGTGGATTTTTTTTTCCGACGGAATGTTGACTACTTGTGTTGCATACACACGGTCACACAAAACA +>XM_039196864.1 PREDICTED: Hibiscus syriacus probable prolyl 4-hydroxylase 3 (LOC120194605), transcript variant X1, mRNA +AAATTCTCTGATACTTTTCATCCGAGTTTTACCCAGAATCAGGGGTGATTTTCTTCCACCGATCCCTGGGTTTTGAGCTGATTTCTCTCGTGTCATCTCCGTAAATTCAAGAATGCCGAAATTGAGACATTCTCGGTTGCAGGCGAAGAAGCTGCCGACAGCGACGCTTGTATTATTCATGTTGTTTATGTTAACGGTAGTTTTATTGATGCTTTTAGGACTAGGGATTTTCTCTCTTCCGATAAACAGTGATGATTCTCCGCCCACTGATCTTACTTCTTATAGACGCATGGCCTCTGAAAGAGGAAAAGGCTTGGGGAAAAGAGGGCAGCAGTGGACTGAAATCCTTTCTTGGGAGCCTAGAGCTTTCATTTATCATAAATTCTTGTCCAAGGAAGAATGTGAATACCTAATCAGTCTTGCTAAACCTCACATGGCAAAGTCCACTGTTGTTGATAGCAAAACAGGGAAAAGTACAGATAGCAGGGTGCGTACAAGTTCTGGTATGTTTCTGAGAAGAGGGCAAGATAAAATCATTAGAAACATAGAAAAAAGGATAGCTGATTATACTTTCATTCCTGCAGAGCATGGAGAAGGCCTTCAAGTTCTCCACTATGAGGTTGGACAGAAATATGATGCACACTTCGATTACTTCCTTGATGAATTCAACACTAAAAATGGAGGCCAGCGGATGGCTACTGTGCTTATGTATTTGTCAGATGTTGAAGAAGGAGGTGAGACAATATTTCCAGCGGCCAAGGGAAATGTTAGTGCTGTGCCTTGGTGGAATGAATTGTCTGAATGTGGTAAACAGGGTCTAGCTGTGAAGCCAAAGATGGGAGATGCATTGCTGTTCTGGAGCATGAGGCCTGATGCCACACTAGATCCTTCAAGTTTGCATGGTGGGTGCCCTGTGATTTCGGGGAACAAATGGTCCTCAACAAAGTGGATTCATGTTGAAGAATACAAGGCTTAAGCTGCTGTATAGAGGGTGCAGTTCTGAGGAAGTGTGATTGAAGCAACCCCCTTTAGACTCGGGTCCATCAATCTCTTTTTGACGGGGCACGGTGTCTCTAGACCTAATCCTTAGGTTGAGAAGTAATTGTTCTCGTGTATTCTGCTGGAAACTATCGGGTTAAGAGAATGCGGTTCATACGTGTTAGGTCCTATAAAATCCGATTGTAAAGTAGCTAAATAATAATGAATAGAAGTATCTTGGAGCTATTGTGAGTCTGGTGGTTTTAAAATCAAAAGTACGTACTAAAGTTACCGGCTATTTTGTTGTTAACACACTGATGTGGCCCATAGTTCATAAAAACAGAAACAAGCTGGATAGACAAAA +>XM_045620325.1 PREDICTED: Harmonia axyridis 26S proteasome non-ATPase regulatory subunit 14 (LOC123681941), transcript variant X2, mRNA +TATAAACCAGCTGTCAATCTGTCAGTGGAAGTCAAATATCGTCAAATAACAAACGGTGATTTGCAAAATTAACACTCCTTGTTTTTTCACTTTATAAATAAGAATATTAATTCATTTAATAGTACTTTTATATTATAGCCATGGATCGACTACTCAGGCTTGGTGGTGGAATGCCCGGATTGTCTCAGGCAGCCCCTGCTTCTGATGCTCCTGTTGTAGATACTGCAGAACAAGTTTATATTTCTTCATTGGCCTTATTAAAGATGTTAAAGCATGGAAGAGCAGGTGTACCCATGGAAGTGATGGGGCTCATGCTGGGTGAATTTGTTGATGACTACACCGTTAGAGTAATCGATGTATTTGCTATGCCCCAAACTGGTACTGGTGTAAGTGTCGAAGCTGTGGATCCTGTATTTCAAGCAAAAATGTTGGATATGCTTCGACAAACAGGCAGACCTGAAATGGTTGTTGGCTGGTATCATTCCCATCCTGGTTTTGGATGCTGGCTTTCTGGAGTGGATATAAATACGCAACAATCATTTGAAGCATTGTCAGAAAGAGCTGTTGCAGTTGTTGTTGATCCTATCCAGTCTGTAAAAGGCAAGGTTGTTATTGATGCATTCAGACTGATAAATCCTAATATGATGGTACTAGGTCAGGAACCCAGACAAACCACATCAAATTTGGGACACCTTCAAAAACCTTCCGTCCAGGCTCTCATTCATGGTCTAAACCGTCATTATTATTCAATCAGTATAAACTACAGGAAAAATGAACTTGAACAAAAAATGTTGCTTAATTTACACAAAAAATCTTGGATGGATGGCCTCACTTTGGCAGATTATTCAGAAAATTGTAGTGTGAATGAAAAAACCGTATCAGAAATGCTGGAACTGGCTAAAAATTATAACAAAGCCTTAGAGGATGAGGAGAAAATGACACCTGAACAGTTAGCAATTAAAAATGTTGGAAAACAGGACCCTAAAAGACATTTGGAAGAGAAAGTTGATGTACTTATGACGAATAATATTGTTCAGTGCTTAGGTTCAATGTTGGACACTGTAGTGTTCAATTAATTTATTATTTTTACAATAAATTATCAACATATTCAACTTCATCATTTTGATTCAATAGTTTTTCATTTCACTTATCGTTTGCTGCAAGTTAAACACTACAGTAGGCAAAAATTACTCCAATCTTCTATTGGAACTCATAATATTAATTCATTAATTCTCAAATGAACTAAAGTTTATTTTCAATGAGTATGAAAATATTAAGATAAATAAGGATTTTATAAGAATAAAATTTCAATGATCTGTAATAAAAAAACCAAATGTCAA +>XM_018196263.1 PREDICTED: Atta colombica NADP-dependent malic enzyme-like (LOC108689497), transcript variant X2, mRNA +CAATAATGGAGAAGCCAACGTACCTCGTCCGCCGATTTAATTACAAGTGAACGAACCGCAACCGGTTCGTCGTGCCGCGCGTTTGCTTCGGGAGTGCCGTTAAAGTTATCGGACTCAAGTTATGGTCCGCGCGCGATTATAGTGCACTATTCGCGAGTGTTTTACGGGAGTGGATGTCAATCCAATTCTGAGAGGAGGAGAAGGGAGAGACATCGGGCACCGGCGGAGCATTTACCTTGCAAATTATCGACGTTGCAGATAACTCCACTGTTGCGCATCGGGATGATAACGATGTTCAGAACAGACAGCTGAGAGACATGCCGCTATCGATGAATGGCTGTCAGAAAAAATTTGCTCGCATTCTAGAAGACTCGAGCGAGGAATTGTCTTCTCAGTCGCATGAAGCCATCCCTCTCTGCGCACGACACACAAAGTTACGCACGCATGACCCAGAGCAGTACACAACCTAACTGTAGCAAGAATAAAAGCATGTCGAGCTTGGAACGCGATCAGCTGGGCCAACGAGGAAGCGGCGACACGGTCTCCGCTGGTCTTCTGCGTGGCCTCGATCACATTAGAGATCCGCACTTGAACAAGGGTATGGCGTTCAGTATTGAGGAAAGGCAGATACTGGGTATACATGGTCTTCTACCGGCAGCCGTAAAAACCCAAGAAGAACAGTTAGAGCTTTGTCGTCTTAATCTGGAACACTACACGGATGATCTCTCAAAATACATATATCTCATAGGCCTACTGGATAGAAACGAGAAACTCTTCTACCGTTTGTTGGCAGAAGATGTAGATAAAATAATGCCATTGGTATATACGCCGACCGTGGGTTTAGCATGTCAGAAATTCGGTCTGGTTTACCGTAGGCCGCGTGGCCTTTTCATAAGCATTCACGATAAAGGCTATGTCTATGACGTTTTGAAAAATTGGCCCGAACACGACGTACGAGCAATCGTTGTCACGGACGGTGAGAGAATATTGGGATTGGGTGACCTAGGTGCTCACGGCATGGGCATTCCCGTAGGTAAATTGTCATTGTATACCGCATTAGCTGGTATCAAACCCCATCATTGTTTGCCTATCACTTTGGACGTCGGCACTAATACCCAGTCTTTGTTGAATGATCCCCTATATATCGGTCACAGACACAAACGTGTTACTGGACAAGAGTATGACGACTTCGTGGACGAATTTATGAAGGCTGTTGTGAAGCGATTTGGTCCGAATACGTTAATTCAATTCGAAGACTTCGGAAATGTTAATGCGTTCAGATTGCTTCAAAAATATCACAAGGAATATTGCACCTTTAATGATGATATTCAGGGTACCGCCTCTGTCGCTGTTGCCGGGTTATTGGCATCACTTCGTGTTACGCAGACAAAGCTCTCAGAGAATACAATCGTATTTCAGGGTGCTGGAGAGGCGTCATTAGGTATCGCGGCATTGTGCGTGATGACAATGCTAAAAGAAGGAATAACTAAGGAAGAAGCTAAGAGCAAAATTTGGATGGTAGACTCGAAAGGATTGATAGTGAAAGATCGTCCAAAAGGCGGACTGACGGAGCATAAATTGCACTTTGCTCGTGAGGATAAGCCAATCGACACTCTGTTCAATGTTGTTAAGACCGCCAAACCTTCGGTTATTATTGGCGCAGCTGCTATCAGGGGTGCCTTCACAACAGAAATATTGAGGGAAATGGCGCGTATCAATGAGAGACCCATTATTTTCGCTCTGAGTAATCCAACGAGCAAAGCAGAGTGCACCGCGGAAGAAGCATATATTGCTACAGAGGGAAGATGCTTATTCGCAAGCGGCTCGCCTTTTCCACCAGTCACATATAACAATAAAACTTACTATCCTGGTCAAGGTAATAATAGTTACATATTCCCTGGAATCGCGCTGGCCGTAATATGCGCTGGTATGCGCACCATTCCCGAGGAAACTTTCCTTATTGCTGCGACGGCTCTCTCCGACTTGGTAACGCAAGCCGATTTGGACAGCGGTAATCTTTACCCACCATTGGCCGATATACAGAAATGTTCGTTGTGTATAGCATGTGCAATCATGAAATATGCTTATGAAAAATCTCTAGCAACTGTCTATCCGGAGCCTTCAGATTACGAGAGTTTTATCAAGGCACAATTATACGATCCAAGCTATAAATCGGCAATTCCTCCAGTTTATTCATGGCCAACAATAGAATTCTTTGGGAATCTTCCTCGCTTTTTTAAAGTCTGTTGACCGGGCTTATTTCTAACAAGTATGTGCAAACGTGATCAATATTTAATTATTAAAATTCGCAAGAATGAATTTGTGTTTAA +>XM_051723159.1 PREDICTED: Myxocyprinus asiaticus protein EFR3 homolog B-like (LOC127455345), transcript variant X3, mRNA +TGCATGCATGCACATGTGTGTGTTTGAGTGTGTATTTGTGTGCATGTGTATATATGTGTGTGTGTGTGTGTGTGTGTGCACCTGTGTGTTAAACCAGCATTGTTCCTGATAGAGGGAAAGCTGTGCCGCACTGTTTGGAAAATCCAAGGTCATTGAAGCCCGGTCACATGCACCATATGTGAGCGTGCATGTGTGATTTAGTGTCTGAGTGAGTGAGTGTGTATGTCTCTCTTCCTCTCTCTCTCTGGCTGGAAAGAGGCTTCAGGCAAAGAATAGTGAATTTCATCAGGTTTTCCATCAATGTACGGTGTGTGTGGATGCTGTGGGGCCTTGAGACCTCGTTATAAGAGGCTGGTGGATAACATCTTTCCTGAAGACCCTGAGGTATGTTTGTATTGCTATGGAGGCTTTGGACCAGCTGCTGATGGCCTGTCACTGTCAGAGTATAAACCTTTTTGTTGAGAGTTTTCTCACTATGGTGCGCAAGCTTTTGGAGGCAGACAAACCCAACTTGCAGATCCTGGGCACTAACTCATTTGTGAAGTTTGCAAACATCGAGGAAGACACACCATCATACCATCGCAGCTACGATTTCTTTGTCTCACGCTTCAGTGAGATGTGCCATTCCAGTTATGAAGATCCAGACATTCGCACCAAGATTCGTATGGCAGGTATCAGAGGTCTGCAGGGTGTGGTGAGGAAGACTGTCAATGATGAACTGCAGGCAAATATTTGGGACCCTCAACACATGGACAAAATAGTGCCATCCCTTCTGTTCAACCTCCAGCAGGAAGAAGGCATAGAGAGATCTCCCTCCCCAGAGACAGAGAAGGAAAGTCCAGTGGAGCTGACCGAGAGGTGTTTCAGAGAGCTGCTAGGACGAGCAGCTTATGGTAACATAAAGAATGCCGTCAAACCCGTGCTCATGCACCTTGATAACCATTCACTCTGGGAGGGCAAAACATTTGCTGTGCGCTGTTTTAAAATCGTTATGTACTCCATCCAGTCCCAACATTCACATTTGGTGATTCAGCAGCTGTTGGGTCACTTGGATGCTAACAGTAAGAACTCAGCCAGAGTGCGTGCTGGGATTGTGGAGGTGATCTCAGAGGCAGCGGTCATAGAGGCCAGTGGCTCAATAGGGCCGACAGTACTGGAGGTGTTTAATACTCTGCTGAAGCAGCTGAGACTCAGTGTGGACTACGAGCTCACCGGATCATACGACTCTTTTGGAAACATGGGAACCAAAGTCATTAAAGTGCACGAGGAGAGACAACTCCAAGAATCTGTCATCAAAACTATTGGCTCATTTGCGAACACGCTGCCCACCTACCAGCGCTCAGAAGTCATGCTGTTCATCATTGGTAAAATTCCTGTGCCAGGGATGTATCCGGCTCTGGGGTCAGCCAACACAGGGGTTGAGGGCAGTAGGATGATACAGATTATGCTGCTAAAATCTTTGCTGCAGGTAACAGCAGGATTCCAGTCTACGAACATTCTGACAACTCTTCCCACCTCATTCCTGGACCCTCTCTTGTCCTTTACTCTGATGGAGGAGGCAGAGATCCGGCTACTTGTTCTGGACATCCTCATCAGCATCATTGATCGCCATGACAACCGTCACAAATTCTCCCCTGTCAGAATTGTGTCAGATATCGCTGTACTGAAACTGAAAGTAGACAAGTGCTCAAGGCAGGATAATCTCTTCATGAAGAAACACAGCCAGAGGCTCTACCGCCACATTTACCTGGCCTGCAAAGAGGAGAGCAGTGTCCAGTGGCACTTTGAGTCTCTTTATACGCTGCTGGGGTTGATCAGTGTTGAGCTGGCCAATGAGGAAGTGGTGGTGGACCTGATTCGACTGGCTTTGGCCTTACAGGACCTGGCCTTGACTGAAGAGGCACTTCCTGTGTATAACCGCTGTGCCATCCATGCTCTATCATCTGCATACCTGAACCTCATTAGCCAGCTGACCACTGTGCCCACCTTCTGCCAACACGTCCATGAGGTGATTGAATCAAGAAAGAAACTGGTCCCCTGTCTGCTGCCTGAGGATGTGCTTGTTGAGACCTCAAAGATCCCAGAGAAACTGGAGAAGGTGGAAGGTGAGGTTCTGTTCATGCAGGCTAAGATAGCGGAGATGCTGGGCGGCAGTGGATACAATACAGAGAGACTGGCCACTCCATACATCCCACAGATCACAGATGAAGACAGACTATCTAAGAGGAAGAGTATTGGTGACACCATTTCCCTGCAGTTAGAGATGGAGTCCAGAGACAGTCCAGAAAAAGAGCAGAGATCCAAAGCTGAGCAGATAACATTTGAAACCCTTAAACAAGCCATTGTAGACAGTGTGAGTGTGGAGGAGCTGGAGAGAGAACGCAGGAGGCAGGTGGTGGAAAGGTTTCAGACGGCTCCATTTGAGGAGATCGCAGCACACTGTGGGGCCAGGGCTTCCTTGTTGCAGAGTAAACTCAACCAAATCTTCGAAATCACAATCAGGCCTCCTCCGAGTCCGTCTGGCTCTGTCGGGAATGGCCGAAATCGTTCTGTACCAGTCTATGAAATGACGTTTCCAGACCTTTGTGTGTACTGAGAAAACCTGGAGCCACAGTCACCAGATACAGACCTATTTCAATCCCTACAATATTGTCACTCCTTCTCAATGTCCAGTTGAAACTATGCGTCTTCTAAACTGTGTCCTTTAGTTTAATATCTTTAGATAAAGATCAAAACTTGACTTGATCCCGAGGTGTTCACCAAAAAAGACAACCAAACCAAGAGAATATACATTGGTTATATATGCACTGTATCACTAAAAATGACAAAACAATGTTCACACAGCTTAATCTAAATGCAAATAGATTGAATGTATTTAGAAACATTTGTGCCATTGTCTGATACTAGCATACATAGCAGAACAAGGTTTTCATGTTTAATCAAATGTCCAGTGAATAGGCCAGGTTACTGTGTAAGTCTATTGTTCAGAGCAAGTGGATGATATTCTTGTACAAATAAAAAGTACAGCTGCCTTACATTTTGTATCTTAAGTTAAGACTTAAAGAATTGTTAAAGAATGTTCTCGGCATGTTTTCTGTAACTATGTTTTTCAATCTATTGATTATTAAAGTGACGGTGCACTTAAAGGTAGATAAATATAAGGTTGTTTGCCTGGTATATACTGTATTTCTTTGTGCATGTTTAAACCTTCTCTACATTCTGCAATAATATTTGTATTTAAAGCAATAATTAATGAATTTAATAATGCAGATTCTTCTGAGATAAAAGCTGAAGAAAAAATGCAACACATTTTGTTTGCGAACACTGGATGATGCAGTATTACAATCAGAACTAACAGCTTATTGACACGCTGTGTGCAAGAAAGTAAATTCAGTAGAGCCTCTGGTGTATTTGCATAGTAACGTCATGTTAATTATGTTCTAATTGAGTTCTGTACATCTGTACCTCATTACCACAAGAAATATGTCATATATTTCAAAGAATATGTCAGTGAAGGGTAGGAGTTTTCATTTGCTTAATAGTCTAACAATGATTGTGTACATTTCCCAAATGACCATTTTCCTTTTTTGAACCAGAGTGAAGTGGTAACACTTCTCATAGTCCCCTACATTTGGGGTCTAAAGGGGCCAATTAGCTCTCTATTTGTTTTTGTTTTTTAAATTAGCTATGATATATGTTTGTTCCTTTTGTCACTTGTATAACTTTTCTCTCTTCATAAATCCTGTAATTTCAGGTTTACGTCAAGATTTGGTTCTCTCTTGTATTTTATTGCAGCACTTTAAAGATCATTGTGTAAATGTGGTGTATGCTAAAAAATATATGTTCTGTGATTTTCCACCTTGACATGTGAATGTGTTCTTGAGTGTCATTTTAAAGTGAATTATCTTTTATCGTCTCATATTTTCCTATTCCACATGAAAGTTTGCCTGTTTTTCTGCTATAATTCCATGAAGTCCTTTTAACTTTTTTTTTTCTTTTTAAAGTTATTTAATCAAGTCATTGTGTTTTTTGTGATGACTTGAATTTATTTACTGTTTCTACATACTGGTTTTAAAAGCAAAGCATCCAAAAAGAACTTGACTTTTGCCATCTTTAATATGGGTATAATGTCCAACTGATAGAACATTCTAGACTTCTTACATGTGAGGTGTTTGACGATGTACTGCATGTATGAAATATCAAAGTTTAGTCTTTCCTCTCAAAAAACTGTGTCCTTGACAGTTGCCGCATGCACTGGGAGTTTTGTCTGTGCTTTTACTATTTTTGTTGTTGTTTAATTTTTTGGGTTGAATCCTTATTAAGAAAATTAAAACATTGTGGATTGTAATTAGTAATTATTACATGTCAGCTTAGTCCCTGTTATGTGTTTGGTACCGTCAATGCAAACTGATGACTTCAGAACTGTGTTCTGTGAATGTTTGCCTAAATGAAACAATTCCTAAGTAATGTACAGAAGTGGTGTGAATAATAAGAATATCAATTAAAGACTAATTTTATGAA +>XM_039521359.1 PREDICTED: Mauremys reevesii poly(rC)-binding protein 3-like (LOC120396454), transcript variant X13, mRNA +GAGGGAGGGGGGGGAAAGAAAAAAAGAAAAAAAAAAAAAAAAAAGCAAAGCTTTGCCTCATTCCAGTAGGGCTCAGGGCTCCCGGCCATCTGTCCACCCTTGGAATCAGAAGACAAATAGAGGGACCACACTCACTATAACTGTGCAGAAGGAAATTGTTCGGAAAGTCTGGCTGAGCTTTGCATTTGAAGTGCGGGCTTTGAGAGCAGCTCAGCAGGTTGACGAAGTGAAAAAACTAAGAAACTGCTTTCAAGCATTGAAGATACCAGGCCAGGATGAACACGAAGGACACAAAAGTGACAGAAGGAGGTCTCAATGTCACACTTACCATACGTCTTCTCATGCACGGCAAGAAATATTCACTTACTGTGGTGTTGTTTTTTCCTGTTCCAGGAGGTTGGGAGCATTATTGGAAAGAAAGGGGAGACAGTTAAGAAGATGAGGGAGGAGAGTGGTGCACGAATCAATATTTCAGAAGGTTCCTGTCCAGAAAGAATTGTGACAATAACAGGCCCAACAGATGCGATTTTTAAGGCTTTTTCTATGATTGCATTAAAATTTGAAGAGGACATAAATGCTTCAATGACAAACAGCACAGTGACAAGCAAACCACCTGTGACATTGAGACTTGTAGTCCCTGCAAGTCAGTGTGGATCCCTTATAGGAAAAGGTGGCTCCAAAATCAAAGAAATCAGGGAGTCCACAGGGGCCCAGGTACAAGTAGCAGGGGATATGTTGCCAAATTCAACAGAACGTGCTGTAACTATATCAGGCACTCCGGATGCCATTATTCAGTGTGTAAAACAAATCTGTGTGGTCATGCTAGAGTCCCCACCCAAAGGTGCCACCATTCCCTACCGTCCCAAACCTGCCTCTGCACCTATCATTTTTGCAGGTGGCCAGGTAAGAGCAGACACCATTTTGGCTTCAGCTGGAAACCACACCGTCTTGGCCCAACCTCAGCCAGCGCCTGCATTTACAATTCAGGGGCAGTATGCCATCCCTCATCCAGATTTGACCAAGCTTCACCAGTTGGCTATGCAGCATCCCCCCTTTACTCCCCTTGGGCAGACCACCCCTGGTTTCCCTGGATTGGATGCCACTACTCCAACCAGTTCCCATGAGCTTACTATTCCAAATGATTTAATAGGCTGCATTATTGGCAGACAAGGCAGTAAGATAAATGAAATCAGGCAGATGTCAGGAGCGCAGATCAAGATTGCTAATGCCACAGAAGGCTCGGCAGAGCGACAAGTTACAATCACAGGCTCCCCGGCAAACATCAGCTTAGCACAGTACCTCATTAATGCAAGCTTAGAGATGGCTAAAGTCAGCACCCAGACTGCTTCCGTCACGACCCCTGTTGACCTCAACATGAACCTCTCTCAGTCTGCCACCCCTACCTCCACCCCCACCTCTATGGCTGTCTTGGCGGCAGCAGCAGCTGCCTCCGCGGTTAACGTCAGTACCCCTCCCCCTTTACCAACTTTACCAACCACCCACTATGCCGTTCCTGTCTCCAGTCTGCTTGGCATGAAAACTGTCCCACTCCTGGCACTAAATGCCGCGGCCGCTGCGGGGGCCACGGGGAGTTTATCTGCTTACACTGCCAAAATTCCATCGACGAGTGGGGTTAAGAAATCTGACCGCCAGAAGTTTGCTCCATATTGAAGGGATGAGAAACAAATGCAAGGTTTTTCGAGCTCTACCAAGATTCTGTGGTAGATAATAGCTATCAAGGAAACAATATGGCATATTTTTATTTTCTGTTAAATTGCTAGTGTTAACTGTTGCCACCTCAAATTGTCTTCCACTTTCCATAACTATTAACACGTGTGCACGCACACACCCACCCAAAATGTAGCAACTAGTTCCAACAGCCTCCCTGAGTCTTTTAAACTCTAGTTGGTAACCATACTTAGCTAAAGTTTGTCATGTAACGGGTATGGTTCCCACATAATCTAGCGTGTTTAGCTTAATACAGCTATTAATAAAGGGTCCAACACTAGGCTTAGAATGGAGACAGATTTTCATTCTGAGGCATCACTGCTCTGACAACAATAATAGAGAGCTGCAGGCTCAAGTGTTGACACAAACAAATGCTGCCTGGTCTAGCCAGCGTATAGGAAAAGACTCCTTCCCAGGGCTAAGTTCTGTCCTCATTTATGCTTGATGCATTTCAGTAGGGTTGCATGGGGGACAGCAAGGACAGAATTGGGACCTTCAAAAAGGGGGGGGAAAAATGATACCTAAGACAAACGTCTTTGGCATTAGAAATAGTTATTAATTACTGCCTAGCGCATCAGTATTTATATCTATTTGAAGTGATCCCTTCAGCTGTGAGACTACTTCTCAGTTGATGTATCCTTCAAATTTGACATTTGTCTTCATGAACATTTTGATAGGCCTATAGCTAGAAAGCACCATGCGTCTCTGAAAGGAAATGCCCATGCATGCCTGACCTCCAGCGGTCATTCTACTAAAGTTCACAAAGCACTGAGACTTGTATTAATCTGCTTGGCATTTACATCTTACTAGATAATGAAGCTAAAAAGAACACCAAATATTCTTCTAATACATACATGCATATAGTCATGGATCGCCCATGTGTATGAATCTTGCTGCACTGAGAAACTCTTAACAGAATGGAAAGAGAGAGAAAAAACATTAAAGGAAGAGAAATATTAAGTGGTAACATGAGGTAATTTTAACAAGCTTTTAAATCTTCTATGTGCCATCCTTATAGCCATACTAATGTATCAGCCAAGCCTCAGTACTCACTTAACCAATCTGTTTCTATAGGATATTTACAGAGCACAATGGTTCATCTTAATTTAGGATACTAGTGAAGGATAATGTACTTTAAGGAGGCCATTTTCAGGAGGGCAGGCTCCCTTTTGGATGCACAATTTGCCCCTATATATTTTGCTCCTGCTTATGACCTGGAGGTGCAACTCCAAATACATGCATCTCGAAGTATTGAATTATGGGTACAAATCAGAGGAGCAAGTATTCAGATTTGTGCCCACAGTTTGTTTTGCAGGCCCAAGATACACTCCCACAGCCAGGCATCAGACTGGCTGAAACTAGACCCCATGTAATTTAGGGCCCAGATCATCCTCCCGCTGAAGTCAATAATAAAACACCCATTGACTTTTTCATGGGAGCAGGGTCACATGGCCTTCTTGGCCAACATGCATTGGCTAAGGTTTACTAAGGTTACTGTACAAATCCTAAATACATTCCAGTTTAAAAGCTTGGCAACTCATTTCACAGTGTAAGTTATGGTTAGAAAACAGGCATTTAAAAATGAACTACACGTACAAGCTATTTCATATCAAATGTTATTTGAAGGTTGTCACGTTGATTGGATGCCAGCCAGCAAACATAATTACACACAAGTTTACTATGAAAGGAAAAATAATTGCAAGCAAACTGAAAGTAGCTGGGAGATGTACGAGCTGGTTGCTAGCTGTTGGAACTAGTTTTTAATTGCATTTTCTGTTTGTCCATTCACCTTATTTTTAGTTTACGTTGCATAGCACTGGCTCAGTAATGCAATATTGTTTTCCTCACAACTTCAAAATTCAGAATCCCATTAGCCTGCCATGTTCATCCACTTTGCACTCCTTGGACACAAAGCTTTAACGAATTGAACTGTATTCGGTGCATTTTAATATAAACTAAAAACACAGAATGCAAATGCAATACTTTTTAAACCATGGTATTTAAAAGTGTGTTGTTATTGTATAGGGCTAAGTACTATTTCAGTATTCTTTGTCATTTCTGTATTTTATAGGCTTTTCTCCACCTTCGTACCTTTGCGCTAAGTTTTGTCACTGTAACCATTTGTAGAACTGTCGTTGTTACAATTTTCACTTAACAAAATGGGGAGGCGGGGCTGTTTGTATATAATGAAGGAAAAACTGGAACAAATGTCATGGTACCTCAGATATTTGACAGCTCTAGAAAACTGCTGTAAAATTGTTCTGGACTATTGTAACTGTTTTAATAACTGAAGTAAAAAAATGTGAGAAAACTTGCCTGCATTGAAATGCTGTTCTATGCTAGTTGTACTCAAGTGTAATTTTTTTAATGGTGCGAAGATTTTTTTTTCTTTTTTTTTTCTTTTTCTCCTCATTTTTGTTCCTACA +>XM_039832640.1 PREDICTED: Medicago truncatula lichenase-like (LOC25491909), mRNA +ATGATTATTTTGTTTCTTATTGTTCTTATTGGGTTGAAGACTTCAGGAATAGGAGCACAATCTATTGGAATATGCTATGGGAGAGTGGCAAACAACTTACCTCCTGCAAAGGAAGTAATAGATCTTTACAAATCAAATGCTCTTGAGAAAGTTGGAGGTGCTAATTTGGAAGTAGTCATATCAGAAAGTGGATGGCCTTCTCATGGTGATGTTGCTGCATCAGTTGAAAATGCACAAATCTACTATGAGAATTTAATTAAGCATGTTTCTAATGGGACTATTAGTAGACCTAATCAAGCATTAGAAACTTATTTATTTGCCATGTTCGATGAAAATAAAAAAGGACCTGCTGAAATAGAGAGACATTACGATGTCTCGTCACTGCAGTCAGAGTTTGTTGTGCTCGAAAGAGCCGTAATGCTTGTTGTGCTTTGTTGTTGCAGGGATAGTTGGTCCGTGGATCTGTCCGTGTTGGCGGTCAGTTCATATACCATGTCTGAAAAGATGGGTTTGGTTTTGTTCAGATCCGTCTCTGGTTTGATTATGATGCTCGCGAATGTATTGCTCCTCCAAGATCATGATGTGCTTCGTAACATGTCTTCTAGGCTAGAAATAGTCATGTACATGTTGTCCATTGTTGTTGCGAATGGAGGGTACGGGTGTTACCGTGTTGGCGGTGCTCAGACTCGTTGA +>XR_005989539.1 PREDICTED: Vulpes lagopus uncharacterized LOC121497833 (LOC121497833), transcript variant X2, ncRNA +GGTTCTGCGTGATTGGCCCGGGCTGCGGCCGACCTAGACTTAAAGGGACGGCGCCCTCCAGGGGCAGGAGGGAGGGAGGTGACCTGGGGAGTTCGTAGCGGGGTTGGACCACGAAGTTCCAGGGTTCTTTCTGGCGCTGGAAGGAATTTAGAAATCGCCTGGCCTGGTCCTGGTCACCTGTTCTTTCCAGAAGCCCAGAGAGACCGTGCTGCTCGTTCAGCTCCACACGGCGCTCCTCCCGCTTTCAGTGTGGCGGAAAGGCGGAGTGAGGAGTGAGATTCCCAATGTACAGAAGAGGAAACCGGGACCTACACACGGTTGCTTCCCCAAGCAGAGGACTGCAGAGGTGAATGGTGCTGGGCCACCCCCTCATCAGGTCTACTCCTCTTTGGGCTCAGGGCCCATGATTCTAGGCCTGTGTGCAGATGGAGGAGTAGTGCCTGCAAGCAGCCCTCAGTAGGCCTCCCGCATAAATACCTTGTCTCCGTGTCTACTTCAAGGATCCTGAACCCAGATGAGGTGGCCCCCGAGACAGCCATCCAGCCATGGGACCTCCTACGTACCAGGCCTGCACTAAATGAGGAGACGGGCCATAGCACATACATGACACACATAATACGAGGCGGTGCTCTGGAAGAAAGCGAAGGACAAAGGGTAGAAGGAGGGAAGATGCCATCTGTTCTGAGAGCTGTATGAGGTGAGAAGAAGCCACAGAAAAGTCTGGGTGTGGAACATTCCAGACAGGGGGAACAGCAAGTGCAAGGGGCCCTGAGGCCAAAGAATTTGAGGGACAAGGAAGCCAGTAGACCCAGAATGGAAAGAACAAGGGCCAGAGCGACAGGCGACAAGGCAGCAGAGGTGAGAGGACGCTGGTCACGCGGGGCTTGTGAGGCCGAGGAAAGAGTTTGGATTTTATTCCAAGTGGGAAGCTGATGGGAGGCTCAAGGGTGGCGGTTAGGAGGCTGTCGGCACTGCCTGGCTAGTGGAGAACTTTCTGCAGAAGGGAAGCCGGAGGCCTCGTTCTCAGGAGAGGGCAGCTGTCCTGAGCAGGGATGGTGCTGGCCCGGCGGGGCCGGGCGACGGGGGTGGACACGGGATGGAGCAGGCGGAGAGCTGACGGACGCCCCTGTGGGTTGCCTGACATGACGGAGATATCACAGGATGACACCTGCGCTTTGAACCCCTGGTTTTTATGTGACTACTTGGTTACTTTCTATCTTTTTCGTCCAAGAGAGCAGGGACTTTGTCTGCTCTGTTTTGCTCACTGCACTTAGCCTAGACTCCAGTACACTGTAGATGCTTCGTGAGTGTTTGTTGAATGACTGAATGATGGAGATATGGCATTTGCTAGGACTTGAACCCTGATCTTTTGGCTCCAGGCCCCAGTGCCTTTTCTCTCCCACCAGGGTTTTGATGAGGATCAAAGAGATAGGAGTTGTGCAAGGGGGTTGCAGGTGGCAAAACAGCCCACAAGCTGGTGGCTCTGGGGCCATTTACCAAACAGTAGCTCAACAGACTCGCCTCAGAGCCCAGCACAGGCTACAGCCTGTGCTGCCTGCAGGGTGGGCACCCCCCTAAGCCAGCCTGGCCAGCCTCCCCTGGGGAGCAATCCTGCCCCTACTCACAGCCCCTGGAGCCCACGCTCGGAGCAGCTCTGCCCAAAGAGTACACAGGTGCCCAGGCTGATGCCCAGGGGAGGGGACGGTATACTCTGCTCTTCGGACCCCAGGGGCCTAAGCCAGCCCCCCACCCCCTTCAGGAGATGTGGAGCAGATGTGAAGGGAATGTAGGCCTACCCACAGGCTCGCTCCCCCAGGCCTCGCCCCAGGGAGGCTCCTCTGGGAGACCTCTCCTTCCCCTGGGCCAGCTTGGGCCCCCCTGTTCCTTCACCCTACCTCATTGGTGCCCTGGGGCAGCTGCCTGCCCTGTCCTGAGATTTGGGGTCTCCACCGAGGCCCTGGGAGTAAGAGTCATCCTTGGCCACTGCTGGGCGGCTTTGTGGAGACCGAATCCTTTGTGATTCTCCTGACCCCTGTATTGTTCTCCCCAAGCCCTTAATCCACTTGCTACCTAGACATTCATTTGTGTGATGAACTACCTGGTGTCAGCTCTCTGGGTGCCAGGAAGCGCCTTCACCAGGAGATACCCAGCCCCCAGCCTGGGCTGGTTTTCACAGGAGGCACCCAGTAAATGTTGAATGAATGGCTGAAAGCGCTTAGCAAGCTAGGGAGCAGGAGTGATGGGAAAGTTTGGGTCATGAGGGTGGAACAGTAACTGTTCTGTCCACAGGCCGTGGGGGCAACACAGCAGGAGGCCACCAGCCCATGGCTGTGGCTGGGGTGGGGGTCGGTGTAAGCTGAGCGGCCTCCCCGCCCCACTTCTACACCCCAGCACTTAAATAACAGTAATAACAGCCTTTCCATCCATCCCTGAGTCTGTGCAACAAAATTACGAGGTGAGGACTACCGTTAATCCCATTGTGAAGATTTGGAAACCGAGGCTCAGGGAGTTTAAGGAATTTATCCAAGGTAAATAAATGGTGGGGCTGGGATTCAAATCCAGGTCTGTCTGAGGTCGGGTCCACCAGAGGGTTAGCCATGGCATCCTTCTGCTCCTCTCCTCACCTTTAAACTTCTCAGCCTCCCCCATCCACATCTGGCCTCCTCCAGACTCTGCTCTGTCCTCAGGCGCCTCTCAGAGCCTCTGTTTATCCATCTGTAAAATGGACACACTAACCCCTGCCTGTTTTGTAGTGAAGGTCCGTGAGGATGGGGATGCTTTCTGTCAGACAAGGGCTGGGCGAGCTGGCACCGAGGGAGTGGAAGCCACTGCAGGGTCCCGTCCGAGGCCACCAAGAGGGGCCGATGAGCAGGGCCCTCTCCCAGCTCTGTGGCTGCGCACGGCGGGCGAGGATTTGTTTGCAGTGGCTCCCTGGATGAATTCCCGGCAGACCTCTCCTCTTCCCTTGACATTCCTGCTGGAGGCTGAGTCTGCGGTGAAGGCCATGCAGCTTCTCCCATCCCGGACCTTGCTCCTGAGGTGGCCTCCACATTTTCCCCTTCCTGCCCTTATAGGTCTCATCTCTGCGTGGTTGCTTTAGGGCCTCAGGGCAGGGCAAGGTTAGGAGCCTCCTCTGCGATCTGGAAACTCTGTGCTTCCCTTTGGGAAAGCCTTGAGGGAAGGCAGATGTGTGTGAGGGAAGTGGTTTAGGAACCACATCTGCCCTTTATCAATCTGCCTTCCTCACTAGACTTTTGGTGCCTTGAGAGTGGGGGCTAGTTTGTGGGTTTTCTTTTGTTTTACTTTAGGGTTTTTTTTTAAGATTATTTATTTATTCATGGGAGTCTCAGAGCCCAAGTCATAAGCAGAGGGAGAAGCAGGCTCCCTCCGGGGAGCCTGATGCGAGACTCGATCCCAGGACCAGGGATAGCAACCTGAGCCAAAGGCAGACACCCAACCAGACGCTCAATGCCTGAATCACCTAGGTGTCCTGGTTTTTTTTTTTTTTTTTTTTTTTTTTAAATAAATCTTGTATTCATTCACTGATTTGTTAGGTTGTTCACAAAGGTTTATGGAGCACCTATTCTGTGTTCTGAGATCAATTCTGAGCTCTGGAGATGCAGCAGCTAAGAGAACAGACTATAGGTCCCTGCTCTCAGGAAGCCCACAGTCTAGGTGGGAGCTGGACGCTCAAGAAGGAAATCAGGCCCTATAAGCAGTGAAGAATGCCCTGGAAGGGATTAACGGGGACTGAGAGGATTACTGGAGATCCTGGCGCCCAGTGTAGGGTCTGGCAGAGAATTGGCACCAAAAACATTTGAATTCGAACTAAAGGGCCTCAAATCAACTTGTTAAGCGGCAGGATCAAGGGCCTCACCACCCCTCTCCTGTGTAGAGAGGAGCTCTTCTGGCCCACCTCCTTAGCTGCACAGCCTTAGGAAAACTCCTTCACTTCTCTGTGCTTCAGTTTCTTCATCTATATAATGGTACTAAGTGTTCCCTGCCTTTTAAGATTGTTCCAAGAACTAAATGTGCTACAGGCTTGAAAAGGGCTGAACACTCAGCCTGGAATATCTTCAGTGCTCAATAAATGAAAGGGTGAAGATGAGGATGAAGAGGATGGAAGCCAGGAAAATGGGAGGAGTGTTGGCCTGGCTCCCCTTGCTCTTGGAAGTCGGGGCTCTACTCCGCCTGGATAGGCAGTTTCAGGAATGGCCACGAGATGGTGCCCAAACACCAGTTATTCAGGAATCTTGATTTCTCCGCAGATGAAGCTGTTTAGGGAAGTAGGGGCCAGAGAAGCAGGTGCATTCTGTGTTGTAAGATGGGCTGGGGTGGGGATTTTCAGCTACTTGAAATCCAGCCCCTTCCCACCATTCTCTTCCTTCAGTTTTCTTCTTGGGGTTCCTGTCCGTGTTTGGGGGTCCAGCCCTCCCTTGCCCCTCAGGCCCCCAGCACTGGAGTCCAAGGCTTCTGTTGAGTAGGTCCTGGTTCTTGTCTACCCAATGAGGGCACCCTGGGTCCTCAAGCCATCACTTCTTCCCCTTCTCATTCACGAACCAGGCAGGGGTACTTAACTGAACACTTCCTTGGGGGCCTTGAAGGATGGAGAGCCAGAGGAAATGACCCTGTTTCTGTTCATCATATCCTGGGGGGGTGGGAGTGGGGGGAGGGGGCAGTAGAAACCGAAAGAGGGAAAAGGAAAACATGCAACAGTTACCAAAGACCTCCTTCTCATCAGCACGTAGGAAACAGCCTCATTTCACACACGCAGGAACCGAGGCTCAGAAGCACTAGGCCACACGAATGCGTTGCCCTTTCCAAGCACCAGGGGCTCCTTCGCCAGCAGCGAGGTGTGGCCCAAAGTGAGTATATTCCTAAATTCATTCCACAGCATCTACTGAGCTCTGCAGATCCAGCGAGAATCAGACCTGGCCCCTGCCCTTGGGAGCTGGGAGTCTGGAGGGAGATGCTGGCAGAGAAGCACACAAGGGCAGCTTGTCCCCGAAGTCTGTGCTGCACCGCGGTGACCCAGAGGCTGCTGTTGCTGGTGCCACCTGAACAGATGGGGGGGGGGGCAGGAGGGATGGAAGGTGTGAGAGACTTTGTAGATTCCATGGGGACCGAGGGTCTGTGGAAATATCATTTTCAAGAAGGTGAAATCATGACCCTCATACAATAAAAACAAGTGAATGCACGTCCAAGATTTCCTTTAGCTCATTAATTGACAAGGAACCAGCAAAATGTTAACACAGCTCAGATGAGGATTCCACTTCAGGCATTTACATTCTCTACTGGACAAAACTTCTTTGTGTTATGAACAGGACTCATTTGCTTGCTCTTGGGCAGGAATCATTTCCATGATTATCTGTTTTCTACAAATCGCCTCTATCCCTACAGAGTTATAAAATCAATCAAATAATCAATAGCACACAACCCTAAAGAATCAGATGATCATCCAGAGGACACGTAGCTGACACCCAGACCTCCTCTGAAAGGACACCCAGGAATCGCTCAGGCCTTTTTCCAAGGCTTTGATATGTTTTCTTGACTGACCCCAGAAGGATCGGGATAAATTAGGTAGCAGGTGTTCCAGAGGAGGCAGGTCATCTGGGTTGTCTAGTCTCAGCCTTCTGGGGTTCCCTTTCGGCTCCCAGGAGACAGACTTCCCAGTCCGGGGGGAGCTGGCCCCGCTCAGTGCCCACCAGCAGGTGGCGCCGAGGCAAATTCGCAGCAGGAACCTAGTGGGTTCTGGGGCTGGGAACAGGGGGGCAGCTCCCAATTTTCCGCCATTCCTGGTCTCCAGCAGTCAGGTTTCACGATTTCAGAATTTCAGAGGGCCCTTCCCACCTAGAGTTGTTGGTTTAGTCATTCACTGATTCAGTTTTGTTTTTTTTTTTCATTTGACAAACGTGCCCAGGCCCACAAGTCAGGTTCCCGAGTTTCTCCTTCTCCAGACAGAAACTCACAAGTATCAAAGAATCAGTCCTTGTCTTTGCTTGTCTGGCTTTGCTGCCAGGATTTGGAGCCACCTGAAATTCTGAAATCTCACTCCACCCCACTCCTGCCCTGCCTACCAGGGTGT +>JQ061302.1 Uncultured Pneumocystis clone CS13 large subunit ribosomal RNA gene, partial sequence; mitochondrial +TGTGAAATACAAATCGGACTAGGATATAGCTGGTTTTCTGCGAAATTTGTTTTAGCAAAGAGTTTATAATAACATTATTAGTGGGTATAGCACTGAGTATTTTTAAGAAGGAGTACTAGTAATACTTATTTCGAATACTTAATCTCAAAATAACTAATAAGTAATTAAAATAAGCTTTCAAACTATATGCGATAAGGTATATAGTCTAAAGGGAAACAGCCCAAAACAGTAATTAAAGCTCCCCAATTATTATTAAGTGAAATAAAGGAAGTTATTCTTTTGAGACAGTCAAGAAGGGGGCT +>MF242562.1 Uncultured bacterium clone denovo36630_N25_23851 16S ribosomal RNA gene, partial sequence +ACCAGACTCCTACGGGAGGCAGCAGTGGGGGATATTGCACAATGGGGGGAACCCTGATGCAGCGACGCCGCGTGGGTGAAGAAGCGCCTCGGCGCGTAAAGCCCTGTCAGCAGGGAAGAAAATGACGGTACCTGAAGAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGGGCGCAGACGGCGATGCAGGCCAGGAGTGAAAGCCCGGGGCCCAACCCCGGGACTGCTCTTGGAACTGCGTGGCTGGAGTGCAGGAGGGGCAGGCGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGCCTGCTGGACTGCAACTGACGTTGAGGCCCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCGGGTACC +>XM_044441890.1 PREDICTED: Varanus komodoensis zinc finger SWIM-type containing 5 (ZSWIM5), mRNA +AGATTAGGTTTTCTTTCCCTTTGTGTGTGGCAACACCTGCCCAGGGAGTCTGTGTGTATCAAAAGAGCAACAAAAAGTGGGTTTAATTGCATGCATCTTCAGTGGAGGCTTTCTGGCACTTACAGCACAAAAGGCCATTACTGAGCTGTTTTCAATGGAGACTAGGAGTGCAGGACTGAGAAGAACTCTCCACTATTCTCACAGGCAAGCAAATCACTTTACAGGAGCATTGTCATGTGGAAATGAGTTCATGAGCCCATCTTCTTCCAACTGCAAGGTCAGGGAGAGAGCAATTGTCAGTTTCAGCTGGCTGGAGCAATTGATCTGTTTGCTTGAAAATGTTTGCTTACCTCCCTTCCCTGCTGTGCTAGTATATAGATATCTCTCTGTGTGTGTCTGTGCACAGGCATGTGTACACTCCACCATATGCTGAATGACTGAAGTTCATAACTATATGTTAGCAGTTGCTTACCATATGACCATTAGTGTGTCATAGGGATGTACAGTTTTTGTTAAATCCATTCCATCTGCATTTCACAGATTGTGAGGTACTTTTCAATCTCTCCTCCATTCTCATTGACAGTGTGTGTGTGTGTGGGGGGGGAATTGTTACAAGTTCCTGAACTTCTTGCATACATGTGCTTTTTTGCAAATCTCCACTGTTAAAAATGCACAACCTCCTCCAGAATGTGCATTTGCATGCTTTAGTATGCGGGGAAATGTGCTTCTTTTCTTTTTCTTTTCAACAGGAATGTTTGTGCAAAATTCTGAAAAGTAAAGTAGTGGTTCACAAGTCCACAGAATCCATGTGATTCAGAAAGGGCTGGTAGACTGCAGAATCTGGGGAATCCTAGAAATCTGAACTCATTTAAAACCCATGGCAGGTTCTCCAATATCCCTAGAGTGTTATAAATAACTAATAGTACAGCAACCTTAATTTAATGCTAGTTAAAGCTCTTTTTGAAGAGGGAAAATCATCAAGGTCCCCCACACACATCCCCAGTCAGGCTTTCAAATATGTTTTTGGATCATGGTCAATACTGTCAGTTCCTGTGTTAGGTGTGTGTTCTTTCCCCACATATTTGCATCTCTGAAGAATTATGGCTTCTCATCTTAAGATGAAAGGCTCAAACAGTGATGCAGCTTTGGCTGGACTCTGGGGCCAAAGTCCAGGGCCCTGCATTCCAGGAAGGCCTGAATAACCACCCAGAAAATGTCAGGTGATGAAAGTCAAAGAAGCAAGTTCCATGTTATTCCTGTAGTCACGATAATACAAGGATTTCAATATATTTTAAATGCAAAACTGCACATGCTCTGTATTTTATTACTATTTTTATTATGGAGGGCAAATAGCTTTTTCATTGTTCTAACACAGCAGGTGTGCAGAAGCAGTTGTAAAGCGTGGAATAGTGGTGGTGAAGGAGGAGAGAGTCGCATGCTTCACAACTTGAAGTAATACAGCCATTTAAAAGGGGGACATAATAAGAACTGCTCTCACTCTTTGGCCTCACAGGGCATCCTGAATTGTGCTGCTGGTCAAGACTTTTGTTCTAAGATGAAAAGCTATATTCTTCAGATATTCAAATATGCGGAAAAAGAACAAACAAACAAGAATCTAAAATGACTAAGCTGCACCCCTGTCTCAAACCCAGGCAAACCATTCTCCAGATAGCTCATGATGTCCCATGATTGACCTTCACTCTGGTCTGGAAGAGTGATGTGTTTAGGGAAGGGGAAATGCTGTTCATTTGTCCAACAGAAAAGAAGAAGCTGGTAAAGTCAGAAAGAACCATGTGATCTTAGCCATTCATCACTACCACATTTTCTTGGTGTCAGGCAGCTTTATAATCGGACAGCAAGCTGTTATGCAGCAGACAGTTGAAATTGGGTTAGTCTGATTAGATGTGGGTGTTTTGGAGCTGGAGGCTGAACATGCTCAGTAAGATGATATGCTACCTCAGGGTGACAGAGAAAGGCAGAAAGCCTCTTTGTTATGGAGCGGCAGCACCTTGCTGGAAGCATGCTAGAAAGTATCAGCAATGCCTGCTAGAAACAAAATATATGGGGCACAGCTTTCTGCAATATTTTTTTAAAAAAAATTCAGATTCTGTAACAAAAAGAAACAAATACTGAGCAGCATGTAGCTTGCTGCTTCTAGAATTTATACTGCTACTACTTAAACAGCCCCACAATTTGGATAGCTTTAAAGGGGATGGGACAAATTTATGAAGGCAAAGCTATCTGTGGCTACTAGTCCTGGTGGTTGTTTGTTACCTGCAGTATCAGAGGCAGTGTGCCTATGCACAGCTACTGTTTGCTTCTGTTCTTTAACCAGTTACTGATCCATGAGAGGACCATGATGCTAAGTTTGTTCAGGAACCTTTGGTGAAGGACTTCGTGAAAAGTGCTAGAATACACTGCCTGATGAATTGTGATGTATCATTCAACAATTTGAATATGTCAGTTCTTGATTTAGGATACAGCCTGCCTCCTACTGACAGCTCAGGGCAGACATCCATATTCATCTGTAAACATAAAAACAGAAATTTAGATAAAATGAATAGAGCCTAGCAAATCTTAGAACACTACCTTATATATCAGGTGCTTTTAGGCATCCAAGGAAATAAACTTGTACCAGATTGGGGAAGCGAGATAGAAGAGAAGCACTTCATTCCCCAAAGCCAAGAAATTATATTATTTATGAGTGAACATAATGTCTTACAGAATAGCACCAACAGAAAACTGGTATCTTTCTCGAAGTGCTTAAAATCTAAATTAAGGCCACAGCTTTTGCAGGTGGGCAAAGAGAGAAAACAGAATGAAGGCAATGAGAACAATGGTGTGAACCCTCTACCTTTTTCCAAAAGTTCAAAGTAAGTTGTTGCCAACTTAATTTGCACATATGTTATAAGAATCATGAGAACAATTGGGATAAAAACTGTTTGGCATTCTGAATTGTTTCCTTCTCTTATATTTCGTATTTGAAAGTGTCCAAATTTGGCCAAATGCACATATTTCTAATTATGTAGTATTTTCTAAGCCCCATAATTCAGGATACTCCATTATTCAGCCCCATAATTCAGGATACTTGCTCATTTTCCAGACATTCACACACCACTCACCACTCACCAGGAGACCATTCTTTTCCTACATTCCATGTTGTATATTTGGGAAACAAACAGGCTCAAAGTATTATCGTGGCATTTTAATTCCATTCTTCTTTGGCATATATGCTTCCCTCTTTTATACTCACAACACCCTGAGCTAAGTTAGGCCAACCAGTCTAGATTTTACTGAAGAGAAAGGTATTTAAAAATAAAATTACTAAAATAAAAGACAATAGTAACAGGCTCAAGCTTACAGTAAGTTTCACAACTGAGTGAAGAATTGAACACAGGTTCCCATGGTTAAAGTTCAGCGTGTTATCTGTTACAGCACACTAGCTCTTACTACTGCTTTGACAGCTGCATCTGTAAGTGTTTACTGAATGAACCTGCATTGTTTCACTTTCAATGAACTTTTCTTTCCTGTACCAGATTCACATTTCTGGGGCTTGAAGTACCTGACAGCCCAGTTTTCTTTGTGGGAAGTATGGTTGGGGCAGTAACCTTTCGTAAAACATGTATTCCTATATTGGCTTTGCTAGTGATTATTCAAAAGTATGACTACTGAGGCAGCCAGTTGAACAAAAGCATCCCATGTACTCATGTAAATACTTCAGATAAAATAAATATCCTGATGAACTTTTTTCCAGAGCAGTGTTTAATCTTTGGCTAAACATTTGATAAATATTTTACATTTTTTCCTAGTTGATATTAAATATATGTGCTGTCATGAAAGCTAGAAATTAAACTAATGCTTGATTTAAAGCCTAAACATCAGATAAACTTGGCAGACTCCAGAGATACTTGCGCAAGACGTGAGTTGTGTCCCTTTCCCCTTAGACTGTTTTCCAGCTGTCATCAACACCAGACCAAGATATTTTAAGGTAATTTAATATGCCTAAAAGCCAGTGTTTAAAATGGAGCAGCTACTCAGTTGGTTCCTGGTCTATTTTTCTGATTTGCCTGCAGACACAGATCACAGAACAAGGTTTATACTTGGTTTGGATACTGGTTGGAGAATGAGAAATAAGCTGTGGGCTTACACACTTTGCTTTCCCTTTGCAAGTAGATTTCTTTCCTTGCCCCCTGGCTTCTACCGCATCTTCTTCATTCTCTAACAATCAGCCCTTCTCCCATCCACCTATGAACCAAACAAATGCATACAATATTTTACTTTGAATGTAATATATGCAGGTATTGATGAATGGGAGGCAATTAAAGAGGAACTGATTGAATTTTGCAGCAGAATCTGGATAGGAATTGGGAAATTAATTGAGGTGATATCCTGACCCATCCTTGGCTGGCTTTGTAATTTTCAATAAATAAATACATAAATTTTAGGGATGTGTGTAAGAGGACTTATTTGGAAAAGTTTCCCAAACATTGTTTCTTGTTTGTTTTTTCACTTCTGTTCACAGCCATTGCAAAGTAATTTAAAATAGTTGATGCACAATTTAGCTAATTAAAAATTATATGGTTTTATAGTTGATTAACCAACTGATAAATTGCAGCCCTTGTATTTGTACAAGCAGACAGTGTGACTATGGCCAAGATAACTATAGTATCAACTGAGGTATTGTCAACTTGGTAAATGTCTGTAAGTTTCTATCCCTGATCAGATGTAGTCTGTAGGCTACCCAGTATAGCCTTAAGGGACAAGAGCCTCCACGACTCTGGCTGCTCATTTGCATGAAATATTTCTTTATAGGTGGTAAGGATTTCAGTTCAATTGCCAGTATTAAAATATGAGTGGAAAGAAATCTAGTAATGTGGCTAAAGATTATTTTTCAAAGAACAGGTAAAATATAAATGCCTTTGAATTTTTGCCTTTTTGAGTGTTATCCTTTAACAAAAATTCTAATAGAGACTCTAGAATGAAATTGCTAAATTAGAAATTATCAAAGGTTGGATTATGTTGGGTTAGACCTGATCTGAGATATTGGTGGGGTTTACATGATCATGAGGAGAAGAAACCACAGTGGCATCTTTTCCCTGCCACTGTGCAAGGCAGCCATTCCTACGCAATTATGGTGTGTGGGTTGCTCTGTTGTCCAAGCCCAGTGGGGCAGCTTTCAGAGCATGGCTTGTTGTAGGTTTCTGGGGTCGTGGTGAAGCCACGTCCTCCTGTGCACCTTGCTTGATTTGGGCAACACAGCAATGGATGTGCTGTGAGGGTAGTTAGGTAAACTGTGCAGCGCACAGCTGTGTCTTATTTTTCCTATGATCTTGCCACAATAAAAAATCTACTAGTCTTTAATGTGCTACAAGTCTGCTGCTTTTGCTCAGCAGACCTTTTTTAGGATTTGTATGATGAACACCTCACAGGAAGAATGGAGCTCTTGGCTAAGATTTTCTTGTATAAAATGCATACCTTTGTTCCTATCTGCTCATGAAGAATCATACAATGGGATATCAAGAGAGGAAAAGAGAGGAGAGTGAGGCTGTTGATGATAATGTTACGGAGTCCTTTATACTGAGCTGTCTTTACCCTCAGCATGCAGTATCATTATGTAGGGGTAAAGAAAGGAAGTTGCTCCTGCTGTTGCAAAGGAATAATTGTACAGAACTGGGAGTTACCATGCATATTGGTTAGAATGAATTAAATGAAGAACATGGATATGTTGATTGGACAGGTTTTGAATGGAGGTGGTTTTTTGGGTATATTCCTGGTTTTTAGATCAGTCTAAGGAGTCTATGATTTGTTTAGAAGGCCTTTAGAAAAATCTAGTTCCTAAAGCGAAAAAGAAAACCCCTCTTAGTACTTAATCAGATCTTGATGTGGGTTTTGGCATCACTTTAAAGAAGATGGTTTTGATACTGTTGATTAAAAACTTCTGGTAGAATTTGACTCAGAATGGTTGTGCTGTTTGGCAAGCACACAAGGGCTATATGCAGTTAATGTAGTTAAATAAATTTTCTCTTTTGCTGTCTGTAAGCCTTTCAGATTCCTCTGGTATGAGTTAACATTTGGAATCATAAAAAATTTCTAGCAGTATAGTCAATAGTCATCTGAGAGGAAAATTACAATGTGGTTGAACTTGTGCGGTGGGAATCTGGACTCACAGATAACTTTTTTTCCAATCATATTTTAAATTTAGGGAAGTCATCTGATATTTCACCTTACTGTTTTCATATTTAACTAACTGGAATATTAGATGATGACTATTCTGTATCCACACATTTTGGGAACTATTTTCCTTACATTTTGTTGGTTGGAAGCTGGTGTGTTGAAATATTAGTGAATTTTCTGCTATGAATTGTGTGAATTTTCTGTTGACCACTTTGGAATGTCTTGGCTGTCAGTCTTTCCCTCCTTCTTTAGGACAGCCAAGACCTGCATGCCACATTAACAAACATTCCTTTGCAGTTACCAGAACTGAAAGCATCTCATTTAGTTCCTTTGAGAGCCTAGTGGGTTGAAGAGCTCTTCTCAAGGACTGTCTTGATTGCATAAGATGATGATCAAGTGTTGGTACCCCCTTTTTTCTGGATCACCATTTATTTTGACTGCTGTCTCTCTAAGCATGTGGATCTGTGCTGTGGAGTAATGCTCCAGGATAGCGTCTATGTACCTTATACAATACTGGTACAAAGGTGAATGCCATTTTGGTCTGTATGTATCCATGATCATGGTCTCTAGTTCTAGCCTCCTGTAGTAAAGATCCAGGAGAGAGTAACAGCATAGATTTTTCCTATTACTTTTGTCCTGGTAAAATAGCAGTTGAAAACTGGGTTTTCAGAGTTGGGGTAGGAAAAGAAACCACAGTTGGACCTTATTTCCCCACCTGGGCCAATTGCATACTGCTTCACTTCCATAATTATCCATGCCAAATGTGGGTTGCTGTGTCATCCAAACCTGATTGGGGGGGGAGGGGGGAATGTTCTAAAGCACTTGAGAACCCTAGAATAAGCAAGGTGGTTTGGAAGTCATCTCTGTGGGTCTGGTCAAGCCAAGGCACCTCCCTTCAGATTCAAGCATGCTCAGAATGGAACAAAACCACTTGTCAAGAAATGATATACAGTTTATGAATACAATGGTGAAATACGGATGCAAAACATAAACTAGCAAACAAAAGATTATAGTCCCCTTATTTGTGGCCATTTGTTGTTGTTCCCTAAGTAGGTCAGGGATGCTCCATGGGCTTCCAGAATTGCCTGAGTGAATGACTCATTAATTCTTCTCTTCAAGCCAAGAACAAAAGATAATGCCTTTTGGCACAGATTTTATAAAGTTCTTTTCTCACCTTGTTTTGTAGGCTTTCAGTACAAACAGCTTTTAATTTCATTCCTGGGAGACAAGAAAGGACAAAGCTGCTACAATAAAGCAACAGTTTTTGTTCTTACAGTAAGAGCAGGGCTTATCTATTTATGTTTGCTGTTATAACCTTGCATTTCTTATACAGATGGTTGTTAAATTTCCTTGGAGTTGTTTCAGTGCTTCCTTTATCTTAAAGTTTCTACATGGCTTTAATATTTATATATTACTTTCCTCAAGAGTATATAGGCATTTATGTTACCTCAGTAATATATAGAAATCTGTATGGTAGGATTGAATTATTATTCCTAAATTGCAGATGTGATAACTGAGATTGAGAACAATTTGCTTAAGGGCTAATGTAGACATCTTGGCTGCAAGCCCATCTGTTACAGTGTGGATCGTGCAGCTTTCTCATAAATCAGGGGGGGAATTAAGCACAATTTGACATGGGTGGATAAGATGTATGCTCAACTTTCCTGCTACTCTTTCTCTGCTGCCATTTATTATTTAAAATATTTATATGCCATCCTGTCACGAAAGCCTCAGGACAGCTTACATATATGAAATAACATAAAATATAACATAAATATTTATTTATTCCCCTTCTTGTGGCTGCAGTGTGGAAAGTAGCCATCACTGGGAGGAAACATCTGAGAAGAAGCATTTTTGTGTGGAAGTGTACTTTATGGAAAATTGATATGATCTACATTGTAGATCACTTACTTCATTGTCCACGTTCTTAGATGGAAATACACAGAGAATTGTGTTTTTCACCTGGAATAATGAAGGAAAGAAGACATTATCTACAATTTTACTTAAATTGATTGAGGTCTTGAAGGGAAGGGCTGCATAAATATTTTAATGCAGTGTGGTTTTGCTTTCGTATTTGCTAAAATGCATTGGTGCTCTTTCTCACTCAGTTTGTGTCCATTACACCATCACAAAATAAAGGGTGAATATTTTTGTTTCTTTGCTTTGAACTGTACCATTTTCTGACACAAAATAATTTTCTGTTAAGTTTCTGAGCCATTCTAGATGTGTCTTAAGATTGGGTCTGCTCAGCTGCAGCATTTATATGTCATGGGAATGAATATAGACTATTTTACCATAGCAAGTTTATATATAATTTTCCCTAGATTTGTGTTGTCTTTGTTAGTGAGGCATTGTACTTTTTGTTCTTTTTCCCTAAGAGCACAATCTTATGCAATTTTATAAAGAAAGTATAGACTGCTGGGTGGGGCATGCTGGATGCTATAGGCCTTTTTCTGGCTAAACTTGCATAGGCTTGTGTCTTAAAGCAATGAAATATGAATTGATATGTTGCAATGTTGTTCAACGGCAATTAATGACCTTTTAAATCAGATTTGGTGGTGTGTTATATTTTGCATGGATATCTGGCAGTTGACTGATTTTTGCAAAGCCTACCTTTCCCAAAAATACTAAACCATATTTTCTGGCAGAGAAAATGTCCAAGATGCAGCATGATATTAAACCCCTTTTGCCATCAGATGAAGTATCTCTCAGTTGCAGCCAATCCTTGCTTATTTGGCAATAAAGGACTGGAAGGAATGCAGTTACGTTACAGGGACATGAGACTGAAAAGGGAGCAACCACTCTTTTCTCCAAAAGTTTAATGAATTTGCCCATGGGTTTGATAGTAGCTGAAAAGTCTGAGACAATTTTGGAGTGGGTCTTATGCTAGTCCAACTGATTTGAAAGCAAATTGAATATTTTACATTCCGTTGAGTACTACAGTTCATTCAGCTTGGAATCATTCTAAGCTGGCTAAAGAATGCAGAATGTGACTGTTCAACTGGAAGCAGCCTTCATGCTGGGTAGATAATTTTCTTGAGCCCTGAATATATTTTGGTTTTGGAGAGAGGGTACTGCTGCCAGTGGCTATGACCTGTCTTTTGTGCTCAACAGTTTCAAGGAGGGTAATGTGTGCATTCTTGTAAGCATTATTGAAGCCTGAGCTTAGTGGTGTTCTATTAAGATGAAGTTTCCTTGCAAAGCTAAATATCCTTCTCCCTGTTTTATTCTCCTTCTCACAGGATTCCACCTGAGTGGCACAGTTACAGAGCCTGCTACTTCAGCAGAGCCAGAAATGACCTATAAAGTGGCCATCAGCTTCGACCGATGCAAAATAACTTCCGTGACGTGTGGTTGTGGGAACAAGGACATTTTTTACTGTGCTCATGTTGTGGCACTCTCGCTGTACAGGATACGAAAACCTGATCAGGTCAAACTCCGTCTTCCTATCTCAGAGACCCTTTTCCAAATGAACAGGGACCAGCTCCAAAAGTTTGTTCAGTATTTGATCACAGCCCACCACACTGAAGTGCTCCCAACAGCTCAAAAACTGGCTGATGAAATTTTGTCCTCCAACTCTGAAATCAATCAAGTTCATGGTGCACCAGACCCCACTGCAGGGGCCAGCATTGATGATGAGAATTGCTGGCATTTGGATGAGGAACAGGTGCGGGAGCAAGTGAAGCTGTTCCTCTCCCAAGGAGGGTACTATGGCTCTGGGAAGCAACTCAATTCCATGTTTGCTAAGGTCCGTGAAATGCTGCGCATGAGAGATTCCAATGGGGCCAGGATGTTGACACTAATAACAGAGCAGTTTATGGCAGACCCACGTCTTGCTCTTTGGAGACAGCAGGGAACAGGCATGACAGACAAATGCCGACAGCTCTGGGATGAGCTGGGGGCGCTGTGGGTGTGCATTGTGTTAAACCCACACTGCACGCTGGAAGAGAAGGCATGCTGGCTGCGACAGCTCCGGAAGTGGGGAGATATGGATGTTTGCCCGCTGGAGGATGGGAATTATGGCAATGAACTTCCCAACATCACTAGTGCACTTACTCAGAGCTCCAGTCACAGGCAAAGCTCTTTAGCAAGGCCGAGACGCACAGTGTTCACTCGTGCCATCGAAGGTTGTGATCTGCACTGGCAGGATAGTCACCTTCAGCGGATAATCAGCAGTGACTTCTATATTTCTCCCTCTTACCAAAGGGATGGAGAGGGCCTTCTCTTCAACTCGCAGGGGCAGCCATTGTGGCTGGAGCATGTCCCTACAGCCTGTGCCCGTGTTGATGCCCTTCGTTCACATGGATACCCCAAGGAAGCACTCCGTCTCACTGTAGCTATAATCAACACCCTGCGATTGCAACAGCAGAGGCAGCTGGAGATATACAAGCATCAGAAGAAAGAACTGCTGCAGAGAGGAGCGACCACTATCACAAATCTGGAAAGTTGGGTAGGGCATCCGCTCAATCCCATTGGCTGCTTATTTCTCACATTGACCGAAGCATGCCGAGTAGAAGACGAGAACTGCCTTGAAATTTCAGATGCTGGTGACCCGAAGCCTCCAGTGTATCAACACGTGCCAGTGGCCAATGGCACTCCTGAGAATGGGGAATCCTACCTCTCCCTAGCTCTGGAAGTAGCACTGATGGGAATGGGGCAGCAGCGGGTGATGCCCGAGGGCCTTTATGCTCAAGACAAAGTGTGGCGGAATGAGGAGCAGATTATTGCCTGCCTGCAGGAGCTGGAGCTGGATGCCGTGCTGGTGCAGACACTACGCAAGCAGTGCATCCTGCTCCTGGAAGGTGGCCCCTTCAGTGGCCTTGGCGAGGTGATCCACCGAGAAAGCGTGCCCATGCACACCTTTGCCAAGTTCCTGTTCTCTGCCTTGCTGCCCCACGATGCTGACCTAGCCTACAAACTGGCACTGCGTTCCATGAGACTTCCTGTTCTGGAAACAACTCCTTCAAGTGATGTCACACATTCTCACCATCTGGTTTCAGTGGTGCCTAGTAGGTACCCACGTTGGTTTACTCTGGGACACTTGGAATCACAGCAGTGTGAGCTGGCTTCCACCATGCTGACAGCAGCCAAAGGTGACATGCTGCGTCTACGGACGGTCCTGGAAGCAATTCAGAAAAACATCCACTCTTCCTCCCTGATCTTCAAACTGGCACAGGATGCCTTCAAGATTGCAACTCCTGCTGACAACAGCTCTGACACAACCCTGCTCAATGTGGCACTGGAGCTTGGGTTGCAGGTGATGCGCATGACCCTATCAACCTTGAACTGGAGACGGAGGGAAATGGTGCGATGGCTGGTGACCTGTGCGACAGAAGTGGGTGTTCGGGCCTTGGTCAGCATACTGCAGAGTTGGTATACCCTCTTCACCCCCACTGAAGCCACCAGCATAGTAGCAGCGACAGTGATGTCTCATAACACCATCTTGCGCCTCAGCCTGGACTATCCGCAGCGAGAGGAGCTGGCCAGCTGTGCCCGTACACTGGCCCTCCAGTGTGCCATGAAGGACCCGCAGAACTGTGCGCTCTCAGCCCTGACTCTGTGTGAGAAAGACCACATCGCCTTTGAGACAGCCTACCAAATTGTCATAGATGCTGCTTCCACGGGCATGACTTACTCGCAGCTTTTCACCATTGCACGGTACATGGAGCACCGAGGGTACCCACTGCGGGCCTTCAAGCTAGCCTCGCTTGCCATGACGCACCTCAACCTTGCCTATAATCAGGACACACACCCTGCCATCAATGATGTGCTTTGGGCATGTGCACTCAGCCACTCCCTGGGCAAGAATGAGCTGGCAGCCATTATCCCGCTGGTGGTGAAGAGCGTTCACTGTGCCACTGTTCTGTCTGACATCCTACGGCGCTGCACCATGACAGCACCTGGTCTGGCAGGCATTCCTGGCCGCAGGAACTCTGGGAAACTGATGTCAACGGACAAAGCACCTTTGCGCCAACTGCTGGATGCTACAATAAGCGCTTACATCAACACCACACACTCCCGGCTCACCCACATCAGCCCTCGGCATTACGGAGAATTCATAGAGTTTCTTAGCAAAGCTCGGGAAACTTTCCTGCTGGCTCAGGATGGCCACATCCAGTTTGCGCAGTTCATAGACAACCTCAAGCAGATCTACAAGGGCAAGAAGAAACTCATGTTGCTAGTGAGAGAACGGTTTGGATGAGCTGCTGCACGAGGAAACCCTGATCCCTGTTGGTGGAATTACGCTTACCAGGCAAGACTGATGGAGTTTTCCATTCAGAGAAGATTGGACTGTAAACCAAAAGCAGCATGGCAGGAAGGGTTTGCGTCCTACCTACCATTCATTTGCAAACACCTCGGCAATACCAAAAGCTAACTAGGAAACTGAATACCTCTTTCCCAAAGGGCATGGCAAATGGAGGCTGGAAAGCAAACCCCCACC +>XM_031777163.1 PREDICTED: Contarinia nasturtii U1 small nuclear ribonucleoprotein 70 kDa (LOC116346891), mRNA +GTCCGACGACCAACGAAGACACTTCACAGCAGATATTCATTGCGAACGATACATTGTAAAAATGTATCGGTAAAAAAGTAAATTTGGAAATTAACCAACTCGTTCTCAAAAGTTACAAAGAAAAAAAAAAAGAGTGAAAAATCTGTCATTTTATGCAATATCAACGAAAAAGTGCACTTTTAAAGTGAAAATTATAAAATATTAGTGAATTGCGTTGTTTGATACATCGACATAAACATTAGCACAAGAAAAGAAACATTCAGATCTTGTGTCATTTGAAATTGTTTTTCATACGCATACTGCGAATAGTTTTGAAATAAAGACGACGAAAGGTTTATTCAGAAATGACACAATATTTGCCACCAAATTTATTGGCACTATTTGCTCCACGCGATCCATTACCATTTCTACCACCACCCGATAAATTGCCACATGAAAAGAAAACAAAAGGTTATTTAGGCGTTGGACAGTTTTTGTCGAATTTTGAGGATCCTAGTGAAACTCCGCCACCAACCCGTGTTGAAACACGTGAGGAACGTTTAGAGCGACGTCGAAAAGAAAAGGCTGAACAAGTTGCTTATAAATTAGAGCGTGAGATCGCCATTTGGGATCCAAATCAACTTCAAGATGCCACAGAAGATCCCTTCAAAACATTATTCATCGCTCGTATCAACTACGATACCTCGGAATCGAAACTGCGTCGTGAGTTTGAAGTGTATGGGGCAATTAAAAAAATTGTCCTAGTTCACAATGTTGACACAGGAAAGCCTCGTGGCTATGCTTTTATCGAGTACGAACATGAACGTGATATGCATTCTGCGTACAAACATGCTGATGGTAAGAAAATTGATGGTAAGAGAGTATTGGTCGACGTTGAGCGCTCAAGAACGGTCAAAGGATGGCTTCCTCGTCGTTTAGGTGGTGGTTTGGGTGGAACAAGACGTGGCGGTCCTGATGTAAATATTAAACATTCTGGACGAGAAGACAATGACAGAGAACGAGAAAGATATCGCATGGAAAGAGAGCGTGATGATTATAGACGCGACTTTCGAGACAGAGAACGACGTGATCGTCGATCACGGTCTCCGAAAGTTCGTGACCGTGTTAGAAGTAGAAGTCGAGATCGCAAAGAACGGAAACGACGACGATCAGAGGAAATTGAATACGAGAGAAGAGACTCACGTCGTGATCGTGAAAGAGAAAAGGAACGTAAACGTAGTAAGCGATCGAGATCCCGAGAAAGAAAGCGAGATAAACGTGATAAATCACGTGACAAACGCGATAAAGAGCGTAAAGAACGAAAACCAGAATATGGTGAAATTAAAATCAAAGAAGAACCAGTTGATGATGATTATCCTGACTATAATTCACGTATCTACAGTTCATACGGAGCCGAAGTCAAGTATGAAGATGGCGAAGAACAGAAATATCGACCGCAGGAAAACAATGGCCAGTACGGACATAATGACGATGATGACTATGATGACAGAGGATACTAAGTTTTATAAGTTTTTAGCGTGTAGCAGCGGAGCTCATACAAATGCGTTACTGTCAATTTATACGGTATTGAAGTAACGCAATATTGAACTCTCCACAATTAATATTAATCAAGCAAAAATGATTCGATTAATTATTAATTTTTATTTTTATTTTTGAATCTAAGAAAAACAAGTTAAATGCTCCGTAAAATATTTCATTTGCGCTACTTTTATCTCGCTTTCGTTCTCCAAAATATACAAAAATCGTTTTTTTGGTAGGTATACACAAGTTAATTACAATTTTCCTATAAACAAACAACAACAAAATTAATAACTTTGACAGGCGCTATGATTTGTAAATTTTATTAATCAAATGTTATTTTGCAAACGGAATAAAGTGAACGAAAACGGCTTTTGCAGTGGCAAACACAATAAAAATTACAAACATATTTTCA +>XM_047789246.1 PREDICTED: Phacochoerus africanus adenine DNA glycosylase-like (LOC125132267), transcript variant X10, mRNA +GCGGGGAGGGAAGGGGAAGGCGTGTCCTCGGCAGCCGTCAGGCCAAGTCCTCTGTCGCTCGTGAGATGTGGCAGAGGTCACAGCCTTCCGGAAGAGCCTGCTGAGCTGGTATGACCGAGAGAAGCGGGACCTGCCCTGGAGGAGGCTGGCGGAGAGTGAGGTGGACCCCGACAGGCGGGCATACGCTGTGTGGGTGTCAGAGGTCATGCTGCAGCAGACCCAGGTGGCCACGGTGATCAACTACTACACCCGGTGGATGCAGACGTGGCCGACCCTGCGGGACCTGGCCAGCGCTTCCCTGGAGGAGGTCAACCAGCTCTGGGCTGGCCTGGGCTATTACTCTCGAGGCCGCTGGCTACAGACAGGCGCCCGGAAGGTGGTCGAGGAGCTAGGAGGCCACATGCCACGAACAGCAGAGACCCTGCAGCGGCTCCTGCCTGGCGTGGGGCGGTACACAGCCGGGGCCATTGCTTCCATTGCCTTTGGCCAGGCAGCTGGTGTGGTGGACGGGAATGTAGTTCGGGTGCTGTGCCGCGTCCGAGCCATAGGTGCTGACCCCCGCAGCCCCCTCGTCTCCCAGCAGCTCTGGAGCCTAGCCCAGCAGCTGGTGGACCCAGCCCGGCCAGGGGACTTTAACCAGGCAGCCATGGAGCTAGGGGCCACGGTGTGCACCCCCCAGCGCCCACTCTGCAGCCAGTGCCCTGTGCAGAGCCTGTGCCGGGCGCACCAGAGGGTGGAGCGGGAGCAGCTTTCAGCCCCCCAGAGCTTACCGGGCACTTGTGACATAGAGGCGTGTGCTCCCGACACCGGACAGTGCCAGCTCTGCGCACCTCCCACAGAGCCCTGGGACAAGACCCTGGGAGTGGCCAACTTTCCCAGAAAGGCCAATCGCAGGCCCCCCAGGGAAGAGAGCTCTGCCGTCTGTGTTTTGGAGCAGCCCAGGGCCTTTGGAGGTGCCCGACTTCTGCTGGTACAGAGGCCCAACTCAGGTCTGCTGGCAGGACTGTGGGAGTTCCCGTCTGTGGCCGCAGAGCCCTCAGAGCAGCTCCAGTGCACGGCTCTGCTGCAGGAACTGCAGAATTGGGTCGGACCCCTCCCAGCCACCCGCCTCCAGCACCTGGGGGAGGTGGTCCACAGCTTCTCTCACATCAAGCTGACTTACCACGTGTACGGGCTGGCCCTGGAAGGACAGACCCCGGTGACGGTCCTGCCCGCTGACGCTCGCTGGCTCACCCGGGAGGAGTTTCACGCCGCAGCTGTCTCCACAGCCATGAAAAAGGTGTTCCGTGTGTATGAGGGCCAACGGCCAGGGACCTGCAAGGCTTCCAAAAAATCCCAGGTGTCTACCCTGTCCAGACGGAAAAAGCCCAGCCCAGGCCAGCAAGTCCTGGATAATTTCTTGCGACCCCACATCCCCGCTGATGCACCCAGCCTCGACAGTACAGCCCAGTGATGCCTCTGGAAGTTCTCATCCCCTGAGAATCTTGTTTAATAAAGTGCTTATTTTTGTAATCA +>XM_007261321.1 Fomitiporia mediterranea MF3/22 uncharacterized protein (FOMMEDRAFT_143842), mRNA +CGAGTGGTTACAATATTATGCGCGATGACATCGCACTGCTCGAGGTGCATGAGAAGCACCCTCCGTCTTTCTCAGCAAATCTCTATCCTGACTACTGGACTCTCAATCACGGACCCAAGTTCTCATATAATAATTCTGTTTCGTCAATTCTGGAAGATATACGGGCCTTCAGGATACCTACTGACTTCATTAAAGTTTTCGACGAGGCAGGTATACAGTATTATAATGGGTGCTTAATTGTTGAACTCTTGGATTTCCGACCTGCAAGGGCGAAGGAACCAGTACTGGAGAAGCCAGATAAGCAGCGCGTAGTACTGCGACCTAACGCTGAAACAATATGGGCAGACATTTGCAACATGAACGAGAAGACGGGGTCGAAATGGTCAGATATGGATGCTCTACTAGTCGAATCAAAGATTCTGTTGTGTACTTCGGCTCCGTTATGTCTGGATCCGGATCCGTCTTTGACACGAGTTGTTAATAGTATTCTCCGTGTCTCCACGCCAAACGTTCCGAATTCACTAAAACGCAAGGCAACTGCTATGGTTGACATCGAAGAAGACGAAACCGAGAAGGCCAAACGTGCGAAGATTATGCAGTTCATGAATCCGCAATTTAGCAATACGCATAAGCCATTTCATCCTAGTTATAAAATTCTCTCAGTTATGGAACAGAAGCGTGCAGCGGCAGCCTCTCAGCAGACCTCACAGCCTGCGACGACTACATCAGTTCCAAACAACATATCTTCTGGTACTATGGCTCCGCAGAACCTGACTCGCCAACAAGCACCTGAAAAACCTTCAGCGCCTGTCGCGCCTATCGCACCCACACTTACCACGTCGTACTCACAAACAAATACGAACACGATTCCACAACCCGCACCCACCACAGTCCCCCAGACGCAGGCGCCACCTGCTATTGATCCTGCCCATAGGCAGTCGCCTTCAAAACAACAGCAATCCGCAAGTCAGCCTCTCCCACAACGCCCACCGTCGCAAACTGCCGCTCCGCCGCAGGCGAGCGCGGTTAGCCAACCGCCTCAAGCTCAAGTTCCTCAGCCAACTCGACCTCAACCGACTCAGTTCAACCCCCCATTACCTCCGGCCAATTTCCTCAACCCTGCTCTTCCCCCTGGTCGGCGCCGACCTTCGACAGTTGTTAAACCTAGCACTCCTGCTGTTGCGACCTCTTCGCTGCCGACTCAACAACCGGTAAATCAGAGTCAACCGCAGACTCAAACACAAATACCGACGCAGACTCCGGTTCAATCTCAACCGCAAACACAACCGCAGCCAGCATCGCAACCACAACCGCAGCAGCCCGCACCACAGCCAATTGCACATCCAACGCAGGTACAGGCACAGGCTCAACCGCGTCTCGCACAGATTCCTGCAAATATGGCACAATTCTACCAGACCGGTAGACCAACAATGGCCATGACACAGGCTGCAGCTGCGACCATTGCAGCGCAGAGACAGGCACAGAGTGGTCGAAACACGCCTATTACTGTGAACAACCCAAGTTCCTCGCCCGCACCACCTCCGTCGGCGCTAGCACGGAGCCCTATGGTACCGCCGGCTGTAGCTGCAGCGATGATGTCAAGGCAGAGCACACCGGTAGCAACAAGCAACCAAGTCATGCGTGGTAGTCCGCTAGTTGGAAGTCACCCAGTTGTCGCACGGCCAGTTGCAGGACAGACACCAGCTCCAGTCCAACAGCAACCCCAGCAACCTCAGCAGCCGATCCCGGGCAGCCAGGCGATGATGATGCAACCAGGTGCGAGCGCGAATCCCCAGGCAGTCCTCCAGTACCAGCAGCAACGTATGGCCATGTATAGGTCGCTACAAGCGCAGGCGGCCCACGCACAGGCAATGCATCAAGCGCAGATGCAACAGCAAGGTCATGTGTCACCGGCGCCGCAGCAACAGCAGAATCCACAAGGTGGCAATACCCAAACAATCCAGCAGACCGCGCACGATCAAGCTCCCAGAACACAGCAAAACTTCGCCGGCGTCCAGATGCCTCTCAATTATATGCATATGGGCCAAATGGGCCAGATGGGTCAGATGGGTCAGATGGGTCAGTTGACTCTACAGCAGCAACAGCAATTCCTTTGGGCCCAGGCCCAGGCCCAGACTCAGCGAAGCATGGGTCGAGGAATGCCCCAAGTCGGACCAAACGGGCAGCAACAGATGCCAACTATGCCTGCAAACATGACACTCCAGCAATATCAGCAAATGCAGGGGTTGGGACGTGGTGGAGCCCCACCGAATCGATGAATGTTATTCTTTCCACTTTTTCTTTTCCAATTTGCCATGTATTTCAATCTGTGTTTCCTCGTCATGCTTGCGTCCGGACAGGTGTTAACGTAGATGTACCTCAGTGTATCTTTATCTCAGCTTCTTCGTAACGAACAACGCCATGAAATGCTCCCG +>XM_045941201.1 PREDICTED: Trifolium pratense germin-like protein subfamily 1 member 17 (LOC123891348), mRNA +ATAATTCACACGAGCAATATATAACTTTTACATAAGAAGAATAAATAATTAAAGAGTATTAGCTAGTGAGTTTGAAAATGAAGGTTCTCTACTTCCTAGTTAGCATCTTGGCTTTGGCATCATCAGTTACCTTTGCTTATGACCCCAGTCCTCTCCAAGACTTTTGTGTTGCAATCAAAGACCCCAAAGATGGTGTATTTGTGAACGGAAAATTCTGTAAAGACCCTGCTCTTGTTAAAGCTGAAGATTTTTTCAAACATATTGAAGCTGGGAATACATCAAATCCATTAGGCTCTCAAGTAACTCCAGTTACTGTAGACCAACTGTTTGGACTTAACACACTCGGTATATCTTTTGCACGCATTGATTTTGCACCTAAGGGTTTAAACCCACCCCACACTCACCCCCGAGGCACAGAGATCCTTATAGTCCTCGAAGGAACTCTTTATGTTGGATTTGTCACGTCCAATCAAGGCAATACTAATCGCCTTTTCACCAAAGTCCTCAATAAGGGTGATGTATTTGTGTTCCCAATAGGCCTAATTCATTTTCAACTAAACGTGGGATATGGCAATGCGGTTGCTATTGCTGGGCTTAGCAGTCAAAATGCAGGAGTTATCACAATTGCAAATGCTTTGTTTAAATCTAATCCAGCCATTTCTGATGAGGTTCTTACCAAAGCTTTCCAGGTGGATAAAAGCATAATTGATTATCTTCAAGGACAATCTTGGTATGACAACAACTAGTTCGAGAACATGATTAATCGTTTTATTATTATTAATAGATGATTCATCTCATCTTTAGTGTTACAATCACCTAGTGGAATCGACCTTCTCTACTTACTTATTTTTATTGTAATAAATAAAATAAATGTTGTTTTATTTAAACACATGGTTGTTTTAATTTTAGTTTAATTTGGTTCAATAATAGATTGTTGTTGCTGATATGTTCACCAATAAATAAAAAGATTGTTGTTGAGGTTTTTGTAATATAATAATTTTCTATCCCA +>KX055998.1 Phytophthora gonapodyides isolate H18 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +ACGTGAACCGTATCAACCCCTATAATTTGGGGGCTTGCTCGGCGGCGTGCGTGCTGGCCTGTAATGGGTCGGCGTGCTGCTGCTGGGCGGGCTCTATCATGGGCGAGCGTTTGGGCTTCGGCTCGAGCTAGTAGCTATCAATTTTAAACCCTTTCTTAAATACTGAACATACTGTGGGGACGAAAGTCTCTGCTTTTAACTAGATAGCAACTTTCAGCAGTGGATGTCTAGGCTCGCACATCGATGAAGAACGCTGCGAACTGCGATACGTAATGCGAATTGCAGGATTCAGTGAGTCATCGAAATTTTGAACGCATATTGCACTTCCGGGTTAGTCCTGGGAGTATGCCTGTATCAGTGTCCGTACATCAACCTTGGTTTTCTTCCTTCCGTGTAGTCGGTGGAGGATATGCCAGACGTGAAGTGTCTTGCTGGCGGTCTTTCGAGTCTGCCGGTGAGTCCTTTGAAATGTACTGAACTGTACTCTCTCTTTGCGCGAAAAGCGTGGCGTTGCTGGTTGTGGAGGCTGCCTGTGTGGCCAGTCGGCGACCGGTTTGTTAGCTGTGACGTTTAATGGAGGAGTGTTCGATTCGCGGTATGGTTGGCTTCGGCTGAACAATCTGCTTATTGGGTGCTTTTCCTGTCATTGGCGGTACGAACTGGTGAACCGTAGCTGTGTGGTGCTTGGCTTTTGAACCGGCTTTGCTTTGCGAAGTAGTGTGACGGCTTCGGCTGTCGAGGGGTCGATCCATTTTGGGAAACTTTTGTGTGTGCGGCTTCGTGCTGCGCGC +>XM_008173413.3 PREDICTED: Chrysemys picta bellii NECAP endocytosis associated 1 (NECAP1), transcript variant X1, mRNA +CCCTTAACAAAAATGGCGGTCGGAAGCATCCCCGGTTACTAGGACCCCCCGCCCCTCCCGCTGGGGTCTCAGATCCGAGATGGCGGCGGCCGAGGCGGAGTACGAGTCCATCCTGTGTGTGAAGCCCGATGTCAGCGTCTACCGCATCCCGCCGCGGGCCTCCAACCGGGGATACAGGGCATCTGACTGGAAACTGGACCAGCCGGACTGGACAGGGCGTCTCCGTGTCACGTCAAAAGGCAAAATTGCATATATAAAGCTAGAGGATAAAGTTTCAGGAGAGCTCTTTGCTCAGGCTCCCATAGACCAGTTCCCTGGCCTTGCAGTGGAGACTGTGACAGATTCCAGCCGGTACTTTGTCCTCCGAATTCAGGATGGGAATGGGCGAAGCGCTTTCATTGGCATCGGCTTTTCAGATCGGGGTGACGCCTTTGACTTCAATGTCTCCCTGCAGGATCACTTCAAGTGGGTGAAACAGGAGACCGAAATCTCCAAGGAGTCACAGGAAACTGACACACGCCCCAAACTGGACCTAGGGTTCAAGGAAGGACAGACCATCAAACTAAACATTGGGAACATGCCAACAAAGAAAGGAGGGGCACCCAAACCCCGTGCAGCTGGATTGGGGGGGCTGAACCTGCTCCCACCCCCTCCAGGTGGCAAAATCACAGCCCCTCCAATCCCTCCCCCATCTTCAACAGCCATTTCCAACCATGTGACGCCGCCACCAGTGCTGAAATCCAGCAACATGGGCAATGCTGATATCCTGTTGGATTTGGACTCTCCTGCATCCATCTCTAAGGCACCAGCACTTGCTGCTGTTCCAGCCACCACAGACCTCTGGGGAGACTTCAGCACTGCATCCAGATGTGCTCCAGCCTGGAATAGACAGGAGGTGGTGGATCTCTTGGGCCTGTGGAGAGAAGTGGCTGTGCAGGAACAGCTCTGAACCAGCCATAGAAAT +>XM_029877336.1 PREDICTED: Aedes albopictus nuclear inhibitor of protein phosphatase 1 (LOC109424494), mRNA +CTTTTGCTCAGGTCAAGGAACACAAATCGCCCATTATGTGGTTAGTGCGTGAATTTCGTTCCAATTTACTTATTTTCCACCGTAAAAACTTCTAAAACTATCGTAATTAGTGTATTAAGTTGAGGATTCGTGTTTTCCTGATCTGGGACAACAACTCATTCTGAGCGTAATGTCCAACCACTACGACATACCCTCTTGGGCTGGTAAGCCGCCCACGGGGCTACATCTGGACGTGATGAAGGAAGACAAACTGGTTCAAAAGTTGATGATTGACGAAAAGAAATGTTATCTCTTCGGTCGGAATCCCCAGATGAACGACTTCTGCATCGATCATGCGTCCTGTTCCCGCGTACACGCCGCATTCGTTTATCACAAACACTTGAACATTGCCTACCTGGTGGATTTGGGCTCCACTCACGGGACGTACATCGGCTCGGTCCGGCTGGAAGCTCACAAACCCACCCAGTTGCAAATTAACTCGACGTTCCATTTCGGCGCTTCGACCAGGCACTATATGCTCCGGGAGAGACCCAATGTCCGATCCAACATTATGGAAGACATCCCGATGATGGACACCAGCGATGGAACCTATCTAGGCCTTCCCGAGAGCCAAACGGAACTTGATAACTTGACTGAATACAATACCGCTCATAACCGGAGGATTTCCATGCTTGGAATATCGGACGAAACCAGCACTTTCAAGAAGAATATGAAGAACAAAAGGAAAAGGAAAGGCGTCCAGTTCAATGAGGATGAAATCGTTATAAATCCCGAAGATATCGATCCAAGCATAGGACGCTTCCGTAATCTCGTATCGTCCACAGTTGTTCCAGTACAGGCGAAACGTGCAAAACTAGAAGTTCACTCAATGGGTCTCTCTACGTCGCCCTCATCCAGCAAAATCCTTCATCATCCGCACAGCTTGGTACCAAATTTGTATCATGGAATCGACGACCAAGCGCATGATCCACGAGGTCCGCCCGGCAATGGTTCCGGATTCGGGTTCGGCATGGACACCACACCCAGTGGACTCACCACTAAGCTGGGTATAATTTTGCCGAATCCAGCACCGGATGTGAATCCGGCCAGTTCCAGCACTGCTCTAATGCCTCCTCCTATCTACAGCAGCATGGCTCCCAAAAGTGTTAAAATTGTCGACAAACCGGACCTATCGGACGAACCCAAAAAGAAGAAATACGCCAAGGAACAGTGGCCCGGAAGGAAACCTCTGGGATTGGGAGGTTTCTAAGCGGTTACAATACAAATGTAACGTTACATTTATCTTATATTGGTGTGACTATTTGGTAAGTGAATAAGGTTTACCGAATTTAATCTAACATCATAATAATCGAAAGTTAA +>XM_053193968.1 Colletotrichum fioriniae uncharacterized protein (COL516b_007061), partial mRNA +ATGGGAAAGTCAAGACGAAACAGAGGCGGCCCAAGCCATCGCAAGGACCCCATCGCCAAAACCGTCAAGCCCCCCTCCGACCCAGAGCTCGCCGCCCTCAGGGAAAAGTCCATCCTGCCCGTCATCAAGGACCTGCAGAGCGCTGACCCCAAGTCGCGCACCGCCGCCGCCGAGGCCGTCTCCAACCTCGTCTCCAACGAAAAGTGCCGGAAGCTGTTGTTGCGTGAGCAGATTGTCCACATCGTCCTGAACGAGACCCTCACCGACGCCAGCCTCGACAGCCGCGCCGCTGGTTGGGACATCTTGCGCGTTCTCGCCGAGGAGGAGGAGGCCGACTTTTGCATTCACCTGTACCGTCAAGATGTTTTGAGCGCCATTGGTTTTGCTTCTCAGACTATTCTCCAAAACCTTGCAAAGGGCTCATCTCTGAGCAAGGGCGAGACAAAGGTCACCTGGACCATCACCGAGTCTGTCATTGGCCTTTTGTCTGCTCTTGCCGAAGCCCAGGATGAGGTTCTCGAGGCCATTGTGGGTATCGAGGGCATCAAGCACTTGCTCTTTACTGTCATCGCTCACCCCGACACACCATCAAGCATCTGCCTCGACGCCCTCTCAGCCCTCCTGACCCTGTCCGAAGACAACCAGCGCCTGGCGCAGGATGTCGTCGCCGACGAGAGCCCCAAGCCGCTCACGTCGTTGACCAAGCTGCAAGAGGTCGCTGGCGCAAAGGGCGTCCTAGCCTGTGGTATTCTGCATAACATATTCACCACCTTGCATTGGTTCGACAGCACGCCGGGCCCCAAGGACCTCTCTGACGCCTCTCTCATCCCAACTCTGTCATCGGCACTCAAGAACACCACGCCGGAAACTGATTTGCCACCCAGAAGCCAATGGTCTAACCCGACCGAGGTTCTTCAGCTTGCCCTGGAAATCCTCGCCGATGTTGGAACGACGCTGCAGCAGTCTCTCCAGGGAGGCGACAGCAAGAAGGCCAAGAAGGAGGAATGGAACGGAATCGAAGACGACGACACCGCCATGGACGAGGACGTCAAGGAGGACAACGGCTCCGGCGACGAGGACATTGGCGAGGGCGACGAGGAGGACGACAATGACGACGACTCCATGGACGAAGACGAGATGCAGGCCGACATGGACCTCGTCACCGGCGCCGACGACGACGTCGACGAGGAGGCGAGCATGGACGACCTGCCCACCCTGCGCGAGCTGGTCCAGCAGGCCATCCCGCAGCTCATCACCCTCGCGACGCCGTCATCACAAGCAGAGGGCGACAACGTCCGGGTACAAGCGCACGCCCTGGCCGCCCTCAGCAACATCGCCTGGTCCATCTCCGTCTTTGACTTCTCCGACGATCACAACGCCGGCATCCTCAAGGCCTGGGCCCCGTCCGGCAAGGCCGTCTGGGCCCAAGTCATCGCCCCTATCTTGGCCGCCAACACCGCCGACGTCGAGCTCGCCACAAAAGTCACCAGCCTCGCGTGGGCCGTGTCCCGCAGCTTGCCCCGCCGCCTACCCCTCAGCGGCGACGAGCACACCAAATTCATGGCGCTGTACCACGCGACCAAAAACCTTCCCTCAAAACAGGCGGCCGAGACGGCGGCCAACGGAGACAAGGCAAAGGACGAGGATCCCGAAGATCCTTTCCAGGGTCTCGGCGTAAAGTGCATCGGCGTCCTGGGCCAGCTGGCGCGGGACCCGGCACCCCTTGCGCTCAACAGGGAGATTGGTGTGTTCCTTATCGCGGTGGTGACTGCATTGCCAGAGACCCCGGCGGCGGATGCCGTCGAGGCCCTGAACCAGCTTTTTGACATTTACGGAGACGAAGACATGCCATGCGACAAGGAGGTCTTCTGGAAGGACAACTTCATCCAGCACCTCGAGGCGGTTCAGCCCAAGGTCAAGGCCTTGGTCAAGACGATTGATAAGCGAACTCTCCCCGAGTTGCGCACTCGTACTGAGGAGGCTGTGTTGAACCTTGGACGGTTCATTCAGTACAAGAAAAAGAACAAGGCATAA +>XM_046724795.1 PREDICTED: Haliotis rubra E3 ubiquitin-protein ligase parkin-like (LOC124288282), mRNA +AACAACAAATCGAGTGTCAAGCACGTGTTTCTTGTCATTATAGGAGGGGATTTTTTTGTTTGTCGTTATCGGATGTGGACTACACAAAACTGACGACACCAAAACAACCCAGGGTGCACGTTTCTCTGTCTTTAAGCAGATGACAAGTGTGCCAGGTTGTGCTTTCGATCGCATACCTGTGCTAACTACGATGCAGGAAGTTGTTTGACAGCCACACTTAGCCTTCAGGGAACATACGGCGCATTATATGCAGCGAATGAACATGGTGTAATCTTATCTACATAACTTGCATCATGATTACCGTGAATGTGAAATTTCACAGCAATTGTGCAGTTCTTGTTGAAATTAACCCCGACAGCAGCTTGCATGAAATCAAAAGAGAAATATCAAAGAAGGTCAATTTGCCACTGGAAGAAGTCAAGATTATATTTGGGGGGAAAATTGCTGACGGACGATTGTGTGTTTCAAGATTTGGATTTTGGTGATCAAAGCACTCTCCATATCTTCAGACAGATATCAGGGAGTGAAAAAACTCTGACATCAGAAGCAAGCGAGGAAAGAGAGCTCAAGAACCAGTACTATGTGTACTGTAAGGAATGTAGATCAATACAGCCAGGCAAGCTTAGGGTCAAATGTGCTACATGCCAGGATGGGGCCTTTGTTCTCAGCAGGGACCCCGAGGGCTGGAGCGATGTGTTGCAGTCAAGGAGCATGGGTGGGGAGTGTCGGAATGATGGCTGTGAAGGGACAACTGCGGAGTTTGTGTTCAAATGTGGCAAGTCCCACGCTGATGGCATATCAGCTGTCGTTCTACGACATGTCCGACCAAACAGACGGGAGGTTGAGTGCATTACCTGTGCAGATGTGAGATCTCCTGTGCTGGTGTTCCCCTGTGAGTCAGGACACGTGATGTGCATCGAATGCTTCAAAATATATGGAATCACCCAGTTGAGTGAACGCAGGTTCATTAAGCACCCAGAGCATGGGTACACCCTGCCTTGCCCAGCTGGCTGTCCCAGCTCGGAGATCCAGGAGAGCCACCATTTCCACCTACTGGGAGATGAGCAGTATGAACGGTTCAACACGTTCGCTACAGAAGAGTATGTACTACAAGATGGTGGCGTGCTGTGTCCAGGACCAGGATGTGGGATGGGCTTCGTCCTTGACACAGCGGGGAGGAAAGTCACCTGTGTTGCCAAGGACTGCATGATGACATTTTGTCGTGACTGCAAGAATGAGTACCATGACGGGCCTTGTGATGTCAACCCTCTCCTCACACTCTCACCTCTGGACTACTTGGTGGACCCACTCCAGGCTGACGGTCTCTGGGAGGACCAGTCTCGAACGCTGATAGACCGCACCACCAAGCCCTGTCCAAAGTGTGGCTCCAGGACTGAGAGAAACGGTGGTTGTATGCACATGCTGTGTCCACGGTGCGGGGAAGACTGGTGCTGGGTGTGCAACAAGGTGTGGGATCGGGACTGCCAAGGCCAGCACTGGTTTGGATAGTGTGCATATCCTTCCAGATAGTGATTACAATAATAATATACAGGATATACAATTCGGGAAGAAACCTCCTATATTTTCATACACTCTGAACCTCCACCATTCATATGTATAAATGATATTGATGTCATGTTGATATATGTGTGAAATATTCCAGAGACCTGCTGAAATGGTATTTGATGGCTATGTTGTATGTGATGTCAAGAGTGAGATGCTATGCTGTTGCCATTGGAAACTCACAAAACATGATATTCACGGCTAGATTTAAGCATTTAGAACTTGCACTGGTGCAGCCTGAAACTGCAAAATGCAACCTCATACTTATACCGGTACCAACTGGCACCCACTGCATGTTTTTATTTTTGCTGCTCAAAGAACACAGACTTCAGTTTGAAAACAGAATGGCAAGGAAATGACTTGGAGCAGTGACTCTGATGGCTGCATGGACAGTAAGACCATGACCGTTAGTGTTCATATGATGGAATTTTATTAAGTTAGATAAAGTGACCTCATCAGACTCTTACTAATTTTGTCTCAGCACCAGATGCAAACTGTTTTTGTCTGGTGCTACAAGGTTAATACCAGTTGGAAGTAGGTTTCCTGTTTTTAAATCAAGCCCTGATATCTGTTTCAGTTTCTACTATCAGCATGGTGATCTCACTCTGTACACAAAAATAGACAGTATTCTTCAGGAAGTTAACATGGGAAAGTATTTTTAGATGTCTTTTACATATAGAAATATATGGTAAGTGATGCTCAGGTTTATTCATGGGCCATGTTTCACAAAGCAATATTGGAGTTACGACCATCATAAGCAAATGTT +>KC455192.1 Uncultured eukaryote clone T2S303B03 18S ribosomal RNA gene, partial sequence +AAAGATTAAGCCATGTTTGTCTAATTATAAGCTTTTATACAGTGAAACTGCGAATGGCTCACTAAATCAGTTATGATCTACTTGACAAATTTACTACTGGATATCCGGGGTAATTCTAAAGCTAATCCAGTGCATTCAACCCCGGATGTTTTGATGGGAGCACTAGTTAGATCCATAGACCAAACCCCCAGGGCAACCTGGTATTGCTTAGTCATAACTATTAACCTTACCACCCGCAAGGCCGACGGTTCAATCAAATTTCTGCCCAATCATTGCCCTGTTGGTAGGAAAAAGGCCTACCATGGCTGCAACGGGTAACGGGGAATAAGGGTTCTTTTCCGGAAAGGGCCCCTGAAAAATGGCGACCCCATCCAAGGAAGGCAGCCGGGGCGCAAATTACCCAATCCCCACCCGGGGAGGTAGTGACAATAAAAAACAAAGCAGGGCCCTTTTGGGTCTTGTAATTGGAATGAGCTCAATTTAAACCCCTTAACAAGGAA +>XM_047242661.1 PREDICTED: Schistocerca piceifrons protein O-mannosyl-transferase TMTC2-like (LOC124712366), mRNA +CGGCGCCGCGAACGTCGGAGGCAGCAACGACGCGTCGCGACGCTTTCGACGCACGACACGTGGACACATCCTGCAAAAGCTGCTTCTGGTCGCCGCGGAACTGTCAGCGAGCTTCTCTTGTACAGTCGTCCGCCCCTGTGAGCGCGCCTGTCGCCCCGCTGCCCCTGGCGGGGTGTCTGCAGCCAACAAGTGTGGGAGCGAGAGGCAACAGGTAGTCTGCTGGTGTGACGCGGCCGCCCTTATCTGGATGGACGGCACGGCCGTGGCGTGCGCGCTGCTCGCCGCCGCCGCCTACTACAACACGCTGGACGCCGGCTTCGTCTACGACGACAGGCGGGCCATCCTCGGCAACCCGGACGTGACGGGCAACGAGACGTCGCTGTGGCGGCTGGCGACGTCGGACTTCTGGGGCACGCCGCTGCGGCTGGCCGGCTCGCACGGCTCGTGGCGGCCGCTGGCGGTGCTCAGCTTCCGCGCCAACCACCTGCTGGGCGGCGGCTGGCACGCCGCCAACGCCGCGCTGCACGCCCTCTGCGCCGCGCTGCTGGTGCGCGTCGCGCGCCGCCTCCGGGCCGCCCCCGGCGTCGCGGGGGCGGCGTTCGCGCTGCACCCGGCGCACTGCGAGGCCGTGGCCGGGCTGGTGGGCCGCGCCGACGTCGCCGCCGCCGCCTGCTCGCTGCTGGCGCTGCTCTGCTACGCGCGCCACGCCGACCTGCGCGACGCCGCCGACGCCCGCCGGCGGCGCTGCCGCGGCTGCGGGGGCCCCGTGCACCGCCAGCAGGGCTGCGCCCTCCGGAGGGCTCTCGCCGCCGCCAAGGGCCTCCTCGGCGCCGCTCTCTGCTCGGCGAGCGACCGCCTCTCTTGCCAAACCCGCAACTCCTCTCACCCCCCTGCCACCGGCACAGTCACGACGAACGGTACTGCTTATAAATCCGGCGCCTGGCTGGGACAAACTTCTAAGTCACCTCGAGCTGACATCGTCACTGAGTCCAATGACGCCAACAACAACACCAGTACGAACGCACTCGCGTGTCAACAGGCTCCGTCGAAAACATCCGTCGACTTCGATACACCGCCATCAATCTCGAAAGCGATCACGGCAGAAATCACTCGCATTAACGCCTCTCACACCACATGTTGCAAACAACCTCGCACTTCAACGCAACATTACAATGGAACTGTTCCTCTCGCCTCTTGGCCGTCGACCGAACGGACGGAAAATGAGGACGTTGCCGAAGGCAGTGATGCGACACGAGACGCTAATCACAACACTGAGTTCGTCAGTTCGTCGCAATTGTTTTCAATTAGCCAGTGGCGATACCAGAACGCTTTCGACCATCATCTTGAAGAAAAGGTTGTGAGACGCAGCCTCTTCAGAGCCAAAAGGGAGGCGTCCAGCAGGCTCGGAAGTAATGTGTTGAGGAGGAGGTGGAAGAAGTGTTTCAAGGACAAAAATTTAATCACAGACAGCGGTGAAGATCAGAAACGGCTTCTGAAGACAGCAGAGAGGAGCACCTGTTGCGCCGCGGAGGGCTGCAACAAGGAAGAGTCGCGCTCGTGTCGGAACAGCGCCAGCGGCGGGCCGCTGCTGCAGCTGGTGGCGTGCGTTCTTCTGAGCGCATGCGCGCTGCTCTTCAAGGAGACGGGCATCGCGGCGCTCGCAATCTGCGTCGCCTACGACGTGGCGCTGCTCGCAGAGAGGGGCGTCGCCGGGCCGCGGCAGCTGCTCGCCACTCGAGCGATCGAACGCCGCCGGCTGGCGCAACAGGTGTCGCCTGTGGAGAGCCAGAGGCGGCCTGCGGCCTGCCCCTCCAACCGAGCCAAGGGCAACCGCTGCTGCCTGCTCGGCGGATGCGCCGAAACGCACGCGTGCGCCGACAACAGCGTCAGTGGCCCCTGTGGCAGAGGTGCGCTGCTGGTGAGCCTGTCGCTGCTGGTGGTGCCGTTCCTGCCGGCCAGCAACGTGGCGCGCTACGTGGGCTTCGCGGCAGCGGAGCGCGTGCTCTACCTGCCCAGCGCCGGGCACTGCCTGCTGCTCGGCCTGGGCTGGCAGCGCCTCAACCGGAGGTCCCACCACCACCAGCACCAGCACCACCACCACCACCACCACTGGGCGTGGCTGTCAGGGTTTGCACTGGCTGCCACACTGGCCAGTCTTGGAGCACGGACCGTACTCCGCAACAGGGACTGGTACGACGAGGAGAGCCTCTTTCGCTCTGCGCTTCACATCAACCCACCCAAAGCGTACGGCAACCTGGGCTGCGTGCTGAGCTCTGCGGGCCGCCTGGAGGAGGCGGAGTGGGCGCTGAGGCAGGCGCTCAAGCACAGGCCCAACATGGCGGACGTCCACTACAACCTGGGCAACCTACTGCAGGCTAGAGGCCGCCCGGAGGAGGCAGAGCGCAGCTACCGGCTCGCCATCCACTACCGGCCCTCTCTCGCAGCGGCGTACGTGTCACTGGGGCAGCTGCTGGAGGCACGGGGTCGGCTGCGGGAGGCGTCGCAGGTGTACGAGGACGGCACACAGCTGGACGGCGAGCGGCTGCGGGACCCGGCGGCGCACCTGCAGGCCACCCTCAGGGCGCTGCTGAGACTGGCCCGGCTGCGGGCCCAGCAGGGCGACTGGCAGGCGGCGGCCGACAGCTGCAGGCAGGTGCTGCTCAGGCACCGCACTGCCCAGCTGCAGGGGCTGTTGACACAGGTAATGGCGCAGCAGGGTGCTGACCACTTAGTAAACAAGTGCTGTTCAGGCACCGTGCTGCCCAGCTGCAGGGACTGTTGA +>XM_020923618.1 PREDICTED: Boleophthalmus pectinirostris sodium bicarbonate transporter-like protein 11 (LOC110159053), mRNA +ATGAACAGCAAGAAGAACGCAGAAGAAACACCCACGGTCATCGTCACCAGATTCACTGAGGAACTCAAGGATGGGGAGAAGGAAGAAACAAACATTTATGAAATCCCAGTTAGTACTACAGCCACTGAAGGGCCCGGATTTGGACTTTTAAATACAACCAGAAAGTATGTGAAGCCAATGAACTTCCAGGAGGAGGTACGAGCTCATAGAGACCTGGACAGCTTTCTGGCCCAGGCTAGCATCGTCTTGGATGAGAAGGCTGCCACTCTGGACGAGGTGCTGAGGAGAATGTTGACGAATCTGGTTCAAGAGGGACATGGGAGCTGTGACACTGAAGAGGTCATGAACACACTGTTCACAGACGCAGGGGGACAGGACTGTGATGTGCACCTTCTAACAGAGACCATTCAAGGAGTAACGGCTAATTCTACTGGGGTTCACTATCAGCAATCATGGCTTTGTATACTCTCTACAGTGAGGACTCTGCAGCGGCGCCATGTCTGTGTCACTCGTTTAGAGCGACCTCAGAACTGGGGAGTGAACTGCTGCGAGGCGCGATATGTCATACTAATCCTCGCTCCTCCCAGAACGAAAAGCACCAAGACAGCCATTGAGCTCGGTAGAACGTTCGCGACAATGTTCTCGGACATCTCCTTCAGACAGAAGCTTTTGGAGGCCAGAACACAGGACGAGTTCAAACAGGAGCTGGTCCTCCAACGACAGCAACTCTCCATGGTGACAGAGAAGCCAGTGATCGAGGAAGTGGTGGACTCGGACCCCCGCAGGGCCAAAGATCTACAGTGCATGGACTTCTTCAAAGCCGGCAAAGGTGTTTATGAAGATCTCCGCCGCAGACTCCCACTCTACCCGTCAGACTTCACAGATGGAATTACTGGAAATGACCGCTCACTACTCAAGTACACCACCACAGCTATTTTCCTCTACATTGCTATTCTGCTCCCAAACATCGCATTTGGCTCTTTGAATGATGAAAGTACAAGAGGTGAAATTGATGTTCAGAAGACAATAGTTGGCCAGAGCATTGGTGGAGTTATATACGCGCTGTTTGCAGGCTCTCCTCTTGTCATCCCACTAACTACAGCTCCGCTTGCTATCTTCATTAGTGTGATCCGTGGCATCTGTGACGACTACAACCTGGACTTTGATGCCTTCTACGCCTGCATTGGTTTATGGAACAGTCTCTTCCTTATCCTCGGGGGCCTATTCAATGTCAGTCTGCTGATGAAGCTCTTCAAACGCTCCACAGAAGAAGTCATTGCTCTGTTCATCTCCATAGCATTTGTCGGCGACGCGGTGAAAGGCACAGTCAAAATTTTTGAACACTACTACTATGGACCTACCCTTGCTACCTCCAACAGTACAGTGGTGCTCCAGCAGATTAATGAGATTCTGGAGCGGGCAAACAACCACACCTCCACCAATGGCACTGGGTCAGAGACTGGACACTCAAACCTCCTCCTCCTGCCTGAGTCTCTTATCGTGTGCACCAGGGAGAGACCCATCCTATGTCTGCTGCTCATGCTCGGGACACTGTGGCTGGGATATGCTCTCTACCTCATCAAGAGAAGCCCATATCTGAATGCCAAAGTGCGGGAAGTGGTGTCGGACTGTGCTTTGCCCATATCAGTCGTCATTTTCTCATTCATTGGGTCCTACCTGTTTATCGATATTCAGCTTCCTCAGTTTAGCGTCCACAATGGTCCAGTTTTCAACTTCCCTCCCTTTGACAGGCTGAGTGGCATGACAACATTAAGTGCAGTAGGGCTTGGGTTCTTACTCGCTCTGCTCATCTTCATCGATCAGAACATCGTCATCTCACTCACACATGTACCTGAACACAAGCTGCTAAAGGGCACCACATTCCACTGGGACTTAGTGCTGACCGGCCTCATCAACATCCTCATGTCCTGTCTGGGGTTGCCATGGATGCACGCCGCTTTCCCACACTCGTCTCTGCACGCCCGTCAGCTGGCCAAAATGGAGCAGCATGTGGAGAACGGACATGTCTACTCTACCATCGTAAGTGTGAAGGAGACTCGGCTAACGGCGCTGGTAGCAAACATCCTGATCGGCGTGTCTGCCTTCATGCTGCCCGTTCCCCTGCAGTGGATCCCCAAGCCTGTGCTCTACGGCCTCTTCCTCTACATCGCTGCCACTTCTCTTGATGGGAACCAGATGGTGGACCGCATGGCTCTACTGCTGAAGGAGCAGACGTCGTACCCTCCCACTCACTACATCCGCCGTGTCCCCCAGAGGAAAGTGCACTATTTCACCGGGGTGCAGATGGTTCAGCTCGTGATCCTGTGCGCGTTTGGCATGTACCCTTTGCCCTATATGAAGATGGTATTTCCTCTCCTCATGATCCTGCTCGTTCCTGTCAGGACAAGTCTCCTTCCGAAATTAATTGACGCCAAATATCTGGATATCATGGACGCCCAGCACATGTAG +>XR_545375.1 PREDICTED: Equus przewalskii uncharacterized LOC103553015 (LOC103553015), ncRNA +CGTCTACACAAAGACTTGCACACGAATGTTCACAGCAGCACTATTTGTAATAGCCCAGAGTGGAGACCACTCAAATGTCCCTCAGCTAGTGAACGGATAAGCAGGGTGTGGCCCTTCCACACAATGGAATGTTTTTCAGCCATAAGAAGGAATGAAGTACTGACACAGGCTGCAACGTGGAGGACCCTTGAACACATTCTGCCAAGTGAAAGAAGCTGGCCACAAAGGACCACATGTTGTGTGATTCCTTATATGAAATGTCCAGAACAGGCAAATCCATAGAAATGGAAAGTAGATGAGTGGCTGCCTAGAGCTTGGGTAGGGAAAT +>XR_002766617.1 PREDICTED: Eurytemora affinis uncharacterized LOC111708265 (LOC111708265), ncRNA +CTGGTGAATTATAGCTGAAATTGTGATAAAGTTACGCATCTATTTTGTATCAAAAATAGCCGATAATTGTTTGTGAAAATTTTCAGATGTCGTCAAATATTTTTTCTGAGGTACTATGGAATGGAATTTTAGGCGATGAAGAAGAGAGGGGACCCGAAATGTCCAATATTATAAACGGTCTGTCAGTGCCAATCAAAGCTCCAACATGTATAATACAGAGCTGCAATCCAAGAGTATGAGGATCACGGTTTAGATTTCCAGCAAGAAAAAAATTGTGGCTGAAGGCCCTTCATTTAAATCAAGAGTATATCACAGTAAAAGATCCAAGAGTATGTGAAAAACATTTCAAACCCTCTGATTTTAAAAGTAATTTATAGTATAATAAATATTACGACGTTAA +>XR_006947954.1 PREDICTED: Xenia sp. Carnegie-2017 uncharacterized LOC124444429 (LOC124444429), transcript variant X1, misc_RNA +GCTTAATTTTAAAATCAAAGTACTTTCAGAAAAACGCTATTGGTTTTGAATTTGTAAAGATCATAATTTTACCAATTAACTTGTCTCTTAATTGCTTAGAAATTTAAATATATTCCAAATTGCGCTGCGGTAATTAATTTTGAGGCACCTCAGATCCTCCAAGGGTTTACTACATACAATTTGGGACATCTTTTCGTAGGTTGCCACCGGCGGGCAGTGACGCATTTGACTTTATCACTCAATCGTTTTAGCTGTTTGAAAAGTACTTGACTCCTTTGAGAAAAAAAGTTCACATCACGTTGGGTAAAGATAGTCATCTTGGCCGTTATGAAACAGGAAGGTGGTGGGGAACTTTGATTGTTGCTCTCGTCGTTCTGTTCACGTCAATGGCAACGATGACAAGTGTCGCAGTAAAGCAAACGCAAAATTTGTTTCGTCGACGACCTATTGTGGAAAAATTGACAAAATGGTATTCGTCGTTGTCTCGGAAACTTTTTTTAAGTTCAGTGATCGCACAACTGCTTATCATCGTCATTCTCAACGCATGCGCAGGAATAACATTCCTCCTGGCATCCAACATGTCTCTTGTGTGTGACGTCACCTCTCATCATGAAAATATTGACAGGATCTTCGATATTTCAAGTGTGTTACCAAAGTCTACAATGCTTCCCAGGACAAAATCAATACAATTATTCAAGAAACTTAGCGAATGTCCCGAGAACGGCACTCTCTGGACGATGTTGGATCTGGATGATAAAGTGGACATCAATTCTGGTATTAGTCAATTACGTAAACTTCCACATTTTGCTGAGCGTCTGTTTCTCGTCGGTGACACATTCCATGATTTCCAAGCCGATAAAAAATATGCAAGACTTTTTTTGAAATGGAAACGGTTCATGTTGGAAAGCCTCGAGATTGATTCTATGGTGAATGAGACTATAGAATCGTTCAAAACGTACCGAAAGAAGGCTGTTAAAAATGGGAATGCAATCCGGAACGTTCATATTGAAATTTTTCCCATATTGTTGAAGCGACTTCGGCAAGATTTCAAGAGATTCCAAGAATCCAGAGCTCAAATTTCCAAAAGCATTAAAGAAATAAAAGACACTTATTTTGATATTACTTCAAATACTTCAAAAAAGGTCGGTCTTCAGGCTTCCAACGGTCTCGCCGTCCAAACTATCGAATCACTGAAGTCGTTTATCAACGAGGGTGTTTTCAAGATCAGAAGTCACGTGGGAAAATGTTTGCCAATGAAAAAAGCCTATTACAACATCACGTGTCTGTTATGCCATGACATCTTCCGATCTTGGAATCGCTATTTTCTGTTGTTTTTTGCCTGCGCCTTCCTTACGACAATCTCCATCATCGTTTCCATGGTTACTGTGATCTGAATAATCGTGTTTTATCGCTGGAAAGTTCGCGTAGACTGGTAACGAATTAGGACTGAGCTCTGAAATTCGCTTTGGAGATCGAGAACGAGACGAGGGAAAGACAGCTCCTGCTCAATTCCCGAGATGATTTG +>MW805831.1 Corticium thailandicum isolate MG242 TYPE large subunit ribosomal RNA gene, partial sequence +TCTAGCATATCAATAAGCGGAGGAAAAGAAACTAACAAGGATTCCCCTAGTAACTGCGAGTGAAGCGGGAAAAGCTCAAATTTAAAATCTGGCGTCCTTAGGGCGTCCGAGTTGTAGTCTGGAGAAGCGTCTTCCGCGCTGGACCATGCATAAATCTCTTGGAACAGAGTATCATAGTGGGTGAGAATCCCGTCTTTGGCATGGACTACCAGTGCTTTGTGATGCGCTCTCAAAGAGTCGCGTTGTTTGGGAATGCAGCGCAAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGTTGAAAGGGAAACGCTTGAAGTCAGTCGCGTCGTTCGGGACTCAGCCTTGCTTCTGCTTGGTGTATTTCCTGTACGACGGGCCAGCATCGATTTTGATCGTTGGAAAAAGTTCAGGGGAAGGTGGCACCTCCGGGTGTGTTATAGCCCCTGTTCGCATGCAACGGTTGGGATCGAGGTTCGCAGCACGCCTTTATGGCCGGGGTTCGCCCACGTACGTGCTTAGGATGCTGGCGTAATGGCTTTAAACGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGCCTGCGAGTGTTTGGGTGTAAAACCCATCCGCGTAATGAAAGTGAAAGTTGAGATCTCTGTCATGGAGAGCATCGACGCCCGGTCTTGAGCTTTGGCGACGGATCTGAGGTTGAGCATGTATGTTGGGACCCGAAAGATGGTGAACTATGCCTGAATAGGGTGAAGCCAGAGGAAACTCTGGTGGAGGCTCGTAGCGATTCTGACGTGCAAATCGATCGTCAAATTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCTGCCGA +>XR_004926052.1 PREDICTED: Halichoerus grypus uncharacterized LOC118553476 (LOC118553476), ncRNA +GCCCAGACAGAAGAGGCAGGCGCGTGTAACACAGAGCCTGGCCCTGGCCTGTCACGGCCTTCCTGTCTCTGCAGCTGGGCTGGGGCAGAAGCCGAAGTGAACTCGGGCCTGCAGACAGAGGCTTACCGCCAAGGTTTTCCAGAAGAGGGAAGTCCACTCTTTCAAAGACACAGCTGGAGTCAGACGGGGCAGGACAGCCCCTCTGAGGCTGACCCCTGCACAGTGTCCCTTCCTGACTCAGGAAAGGTCTACTCCTGCGCTGTCCCAACATGCCGGCCGCCAGCCACGCGGGGCTCCTGGGCACTTGAAATGCGGCTGGCGTGACCCTAGGTGTGCTACAAAGTACCAGTACACCCCAGGTTTTGAAGACTTGGTATGGAAAAAAAAAAGTAAAATATCTGTAATAATTTTCTGTATCGACTGCATGTTGAAATGACAGTACTTGGAGTAA +>XM_028734882.1 PREDICTED: Podarcis muralis zinc finger protein 341 (ZNF341), transcript variant X4, mRNA +ACATTAGTCCAGGGGAATATCTTAGTGAGTGATGAGGTCTTGATGTCAGCTATGTCTGCTTTTACAACCCTGGACCAACCAATGTCCACAGTACAACCCTCTGTGCAGCCTGAATATGCATACTGGAGCTGGCTACCTTTCTCAACCACCACCTCCTCCTCCTCCTCCACCACCACCACCTCAGCCTCCTCCTCCCACACCTCAGTCTCTTGGAGCACCAGGTCAGGCCAACTCAGGCAGCAATGGAGTGGTGGAAGTGTACAGTGCATCAACCCCCATGACTGGGAATAGCACAGTAGAGATACAGAATCTGGGGATGCAACCCTACCCACCTATGGAGGTGCCCAATCAATGTGTGGAAACCCCAGTGTACCCCTCCCCTCCAGTATACAGTCCAGGGAAGCAAGGTTTTAAGTCTAAAAGCCCCAACACTGTTTCTCCCTTGAACAATGCCTGCGGAGGAAATGTGACCAGTTTTGATCCGGCTTCAGCTGCCAAGAACCGTCGTCTTAAGACAGACAGCAGCCTGCTAGAAGGGAAACCCAAGTCACCAAAACTGAAATGCACATACTGCGATAAGGCATTCACCAAGAACTTTGACCTGCAGCAGCATATCAGAAGTCACACAGGGGAGAAGCCATTCCAGTGCATCGTATGTGGTCGTGCCTTCGCCCAAAAGTCCAACGTGAAAAAGCATATGCAGACGCATAAGGTGTGGCCACCAGGAATTGGGTGTACCATCTCTCGGAGCTCTGTCACTGTGCAAGTCATGGCACTCAACCCCAACCAGCAGGAGGAGGAGAATGCAGGTTTGAACACGGTTCCCAGAAGCAGCCCCCCACCGCCACAGGTCATGCCTCCTGCAGAAGAGCATGAGGCTTGCAAACTGGAAGCTAAGCAAGTGGTCTTGATAGACAGTTCTTACCAGTGCCAGTTCTGCCCCAACAAATTCTGCACATATTTCCAGTTGAAATCGCACATGACCCAACACAAACATGAACAGGTTTACAAGTGTGTTGTGAAAAGTTGTGCTCAAACATTCCAGAAGCTGGATTCCTTCTTGGAGCACATCAAGAACCATCAGGAGGAGCTGAGCTACCGTTGCCACCTTTGCAGCAAGGACTTCCCCTCCCTCTATGAACTGGGTGTCCATCAGTATTCCCACAGCTTGCTCCCTCAACACAGTCCCAAGAAGGACATTGCCATTTACAAGTGTGTCAAGTGTGTAAATAAATATTCTACCCCAGAAGCCCTGGAGCATCACTTACAGACAGCAACACACAACTTTCCCTGTCCTCACTGTCAGAAGGTGTTCCCTTGTGAGAGGTACTTACGGCGACATCTACCTACACATGGGGGTGGAGGGAAATTCAAATGTCAGATCTGCAAAAAATTCTTCCGCCGAGAACACTACCTCAAACTACACGCTCACATTCACTCGGGTGAAAAACCTTTTAAATGCTCTGTGTGTGACTCAGCCTTCAACAGGAAAGATAAACTCAAACGGCATATGTTGATCCATGAGCCTTTCAAGAAATATAAATGCCCCTTCTCAAATCATACAGGCTGCAATAAAGAGTTCAACAGACCGGACAAATTGAAAGCTCATATTCTCTCCCATTCAGGGATGAAGATCCACAAGTGCCAATACTGCAGCAAGGCCTTCAGCCGGCGAGCTCACATGGTGGAACACCAGCGCTCTCACACTGGAAACTATAAGTACCGCTGCCCTACATGCAGCAAAGGCTTTACACGCCAGAAGTACATGAAGGACCACAAGTGTAGACTGAGTTCAGCCAAGGACAAAGAGCTGCCAGTGAGAAAATCCCAGAAGAAGTGGGGGACTCGTGGCCGGAAAGTGGGGCTTCCTGTTTCAGCTCAGTTGACCTTGACAGAACTGAAAGACAGTACAGATGGAGGAAACCCTCAGAAAGGTGGTCCCAATAAAGAACAGTTTCCAGTGTCTGACACAGTCCTGTCCATTGTGGTTGGCAGATCAACGGCCGTGTCGGCAACAGACTCTGATCTTGGCAACCCTACCCAATGCAGTGGCATTCCATCCAACCTTGCTCTGGCCGAGTTGCAGCCTGGCTCGGAGAGTCCATGCGCCATGCTAGCAGTTCCTGTATACATTCAGGCTACTGAATAACTGAATAGTACTGTGACTTAATGGGGGAAATAATTCCTCTGCTGTTTGATGGAGATACGCTGCTGCAGGGGATTGGAAATGAATGAAATGTGTATGTGTACTGTATGTGTGAGTGTATGTTTCAGCTGCCGTGATGCAGTGATCAGCATTCATAAAGAATTTTGTTGATAAAA +>XM_046012474.1 PREDICTED: Meles meles microfibril associated protein 5 (MFAP5), transcript variant X3, mRNA +CAGCCCCCTTCTCATTCCCGCCTCATCACACTCCTCTAGCCTGGCTTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCCTCGCTCTCCCTCATCTCATTGTTTCAGAGTAGGCCGAATTTGAAGTCCTTCCCAGGGAGTGGCCCTGTTCATCTTATTCGCCAGCCAAAGTAGAAACAGTGTGAGAAGGAGAGAGGCCCATTCGGCAGCCAAAGGACTCGGTGGAAAAGAGCAGAGGAAAAATACACAATATGCTGCTCGTGGGACCCAAGGTGCTGCTGTTCCTCACCGCCCTCATCATCCCCTCTGATGATGTGACTCCAGTGACTCCAGAGACATTCACAGAAGATCCTAATCTGGTGAATGAGCCTTCTACAGATGAAACAGTTCTGGCTGATATGGAGCCTTCCACAGATGACCTGGCTTCTCCTGCTGATAAAAATACCACAACAGACTGCCGGGATGAAAAATTTGCTTGCACGAGACTCTACTCTGTGCATCGGCCAGTCAAGCAATGCATTCATCAGTTATGTTTCACAAGTTTACGACGTATGTACATCATCAACAATGAGATCTGCTCTCGTCTTGTCTGTAAAGAACACGAAGTTATGAAAGACGAACTTTGCCGTCAGATGGCTGGTTTACCCCCAAGACGACTCCGTCGCTCCCACTACTTCCGACTTCCACCCTGTGAAAATGTGAATTTGCAGAGACCCAGCGGTCTGTGATCACCAAGGAAGAGGAAAGAATAATGTGTGGGTGGGAGGAAGAGAATGCTCTAACAAGAGGGAACTCCTTCTTGTCCAACCATTGTCCACTAACCCATAGACATTAGGATTTCTTAAACCAATCCCTTTGCAGCGCCTAACTTTTGCCTCCATTCCCTGACTGATAACAAAGTCTATATTATTGCATGGTTTTGCTGTTTCTCAGTATCATAGATGTAGATTAATGATAACCATGTGGCTTATATACAAACATCCTACACACAATTTCAAAGGAAAATAAACTTTAGGTTAATATTTA +>XM_052001689.1 PREDICTED: Antechinus flavipes supervillin (LOC127564871), transcript variant X20, mRNA +CTTCCCATCCTATTCGTCTTCCCTTTTGTCATGATTTTTCCTTTTTTCTGTTTCCTTTCTATCTTCTTTATTTTTCTCTTCCTGATTTTCCCTCTCCCTTTTTGTGTTTTTTCTTTCCTTATCTCTTCTCTTACCTTTATTCATCTTCTGAAACCAAAATCAAGATCTCTACTCATGAATATCTATTTCAACAAGAAAAGATCAGACCTTTTCCAGCTACCACATCAAAGAAGAATATCAAGCTTTCAGAGAGAATTTTCACTTGAAGAAAAGGAACAACTTGTCAACAATAGAAAGGATATCGATGCTAATCTTTTAACTGTACTTCCCAAAGTTGCAGAACTAAGAAAACTCTTTGAGCCAAAGAGAAAAGAAGTTTTAGAAATGAAGAGAAAAGAACGGATTGCCAGACGCTTGGAAGGCATTGAAAATGATTCGCAGCCCATACTCTTGCAGAGCTGTACAGGATTAGTTACCCACCGATTACTAGAAGAAGATACTCCCCGATATACGCGAGCTACAGACCCTTATAGCCCCCATATTGGTCGATCCAATGAAGAGGAGGAAACTTCAGATTCTTCTGTAGAGAAGCAACCTCGATCCCGATATTGCATAGAAACTACCACCCTCAATACAGAGTCATCCTACAGCCCAGTGACGATGGACACCCAGGGACTGGACTCCAAAGCTGAGAGAATAGCCAGATATAAGGCTGAAAGAAGGAGACAGCTTGCTGAAAAATATGGGCTGACTCTGGATTCCGATGCAGACTCTGAATATATGTCGCGTTATACTAAGACCAGGAAGGATCATGATGTCGAGAGGAGGGGAGGTAAAAGTGAGAAGCAGGAGGAGGAGAGCAAAGACTTGACTTATCATTATTCTAGGACTGAGACTGTGGAGCCCAGGAGCACCACAGCTGAATCCAAGGACTATAGCTTTCATGGGAGTGATGGTGTTATTGATAAGGAGGCGCTGTTGAATGTGGAAAACCACAGAAGAGCCCAAGAATTGAGTGCAATTGGCCAGATCCGTGACTTGCCACCTGCAGCTGATGGTTCCCCCTCCTTTTCCTTTTCTGGACGAGAATCCTCATTCAGTGACGTGCCAAGGTCTCCCAAGCAGACCCGCAGAGTATCCCTTTCTTCACCTAAGCAGCCAGCATCACCAAGTCATTCACTTACTGACTCATCATTACACGGTGATTCCAGAACGAGATCCACTTCAAATTCAGAAATGCCAACTGCTGAGGATGAAGAAAAATTGGATGAACGCGCCAAGCTGAGTGTTGCTGCCAAAAGGCTCCTTTTCAGGGAAATGGAAAAATCATTTGATGAAAAAAATATTCCAAAGCCACGTTCCAGAAATGCAGCCGTGGAGCGACGCCTTCGCCGTTTGCAGGACAGATCTCACACACAGCCCATCACCACTGAGGAAGTGGTCATTGCAGCAACTTTGCAGGCATCGGCACACCAAAAGGCACTAGCTAGAGAACAGGCAAATGAGGCCAAAGATTCTGCTGAACAAGGTGAACCTGATTCCTCCACTCTGAGCTTAGCAGAGAAGCTGGCCTTGTTTAACAAATTGTCCCAGCCAGTCTCAAAAGCGATTTCTACCCGAAACAGAGTGGATGCTAGGCAGAGGAGGATGAATTCTCGTTACCAAACTCAACCAGTCACCCTTGGAGAAGTGGAACAGGTTCAGAGTGGAAAACTCACTCCTTTCTCTCTTACTATTAACACATCTGTGTCTACTGTGGCATCGACAGTTGCTCCAATGTATGCAGGGGATCTACGGACAAAGCCATCGGTGGAAGAAAATGCAGGTGCTGCCGACTTTGGATTCCATTCACCAATGGAAAATGCAGACTGTTCAGTGAAGAGCATCCTAAAGCCACAAGGGTGGCAACCTTTGGGGGAAGATATCAGAAGCAAGCGAGGATCGAGGGAATTTGGGGAGATGGAAACTGAGAGAATCTTAGCTCAAGAGGAGAGGGAAGTGAGAAAGAACAGGTCCTTTGAGGAAGAAGGGAGTTCCTCCCTTTTCCTAAATAAAACTGGGGAAAGGGACAACCAAAGAAAATATACTCCAAGAAAAGGCAGCATGGAACATGCTGACCTCCTAGTGCCATGTCATGAAGAAATACGGGAGTTTTCAGTCACCAAAAGCACTGGACAGAGCAAACAGGACCTGAAGGAAGTGCAAACCTTGGAGGAAAAGATGGATTTGGAGAATGTTGCAAAAAGCAGGTTCATGCTACGAGAGCCTGCTGAGCCCACGTCCGAACTTCCTGGCACGATAGCTACAAAAACTGTTTCTCAGACCACATCCCTGGTCTCCAGTAGACGAGAGTCTTCAGAGCAGTCGGAGGAAAGACTTTCCAAGAATCCATGTAGGATGTTTGCTGGTGGAGAGAGCAAAATATCAGAGGATGCCCTTGATGCATCTAGCAAAACCATGTCCATCAAAGAAAGGTTGGCACTATTGAAAAAGAGTGGAGAAGAAGACTGGAAAACCCGGATTAGCAAAAAGCAAGACTACAGCAAAGTGTGCGTCACTGAACGAAGCACGAGGCTGCAAGAGGCTGAGCAGTCCTTCAAGAAGAAGGAAGAAGGAGGATTTACAGATGATAATGCCATTTCTAATCTGCTTTGGGAACCTGTATACGCTTCTACTTATTTTCCTGCTATGCCTGCTGTCCATAAATACCAGTCTTTTGTACCCATTAATCAGCAGAGGATGGCAGAAAGTCATGAAAGCCAAATGACAATTGAAGAGAGGAAACATCTTATTACTGTAAGAGAAGAAGCCTGGAAGACCAGAGGAAAAGGAGCAGCCAATGATTCCACCCAATTTACCGTTGCTGGCAGGATGGTAAAGAAAGGTTTAGCATCACCTACTGCCATAACTCCAGTAAGCTCCCCCTTTAGCAATCGAATGAAGGGCACTACACCGATCTCCAAACCCCTTGAAGATATAGAAGCCAAACCCGATATGCAGTTAGAGTCGGATCTGAAGCTAGATAGGTTAGAATCATTTCTGGGGAGACTGAATAACAAAGTCGGTGGTATGCAAGAAACCATTCTCACTGTTACTGGAAAAACTGTGAAAGAGGTGATGAAACTGGATGACTATGAGACCTTTTCCAAATTTTACCGCAGCGTGGATTCTGTGCCTCTAGGAAGAGTAGAGTTGGATGAGGATTTTGATGCAATTTTTGATCCTTATGCTCCCAAGCTGACATCTTCTGTGGCAGAGCACAAACGTGCTGTTAGACCTATGCGCAGGGTTCAATCTTCAAGAAATCCCTTGAAAATGCTGGCAGCAAGAGAAGATATTCTTCAAGAATATACTGAACAGAGATTAAATGTTGCTTTCATGGAGTCAAAACGGATGAAAGTTGAAAAAATGTCTGCCAACTCAAATTTCTCAGAAGTCGCCCTCGCCGGTTTAGCTAGTAAAGAAAATTTCAGCAGCGTCAATCTACGGAGTGTCAACCTAACAGAACAAAACTCCAACAATAGTGCTGTGCCCTACAAGAAACTTATGTTGCTACAAATTAAAGGAAGAAGAAATGTGCAGACAAGATTAGTGGAGCCACGAGCTTCATCGTTGAATGGCGGCGATTGCTTTCTCCTGTTAACTCCCCATTACTGCTTCTTGTGGGTAGGAGAATTTGCAAATGTCATCGAGAAAGCTAAGGCATCAGAGCTTGCAACTCTAATTCAGACGAGGAGAGAACTCGGCTGTAGAGCTACTTATATTCAGACCATAGAAGAAGGAATAAATACGCATACCCATGCAGCAAAAGACTTCTGGAAACTCCTGGGTGGCCAGACAAGTTACCAGTCTGCCGGAAATCCAGAAGAAGATGAATTGTATGAAACTGCCATCACAGAAACTAATTGTGTTTATCGCTTAGTGGAAGATAAACTTGTTCCTGATGACTACTACTGGGGCAAAATACCAAAATGTTCTCTTCTGCAGCCAAAAGAGGTCTTAGTGTTTGATTTTGGCAGTGAAGTTTATGTATGGCATGGAAAGGAAGTCACATTAGCACAGAGAAAAATAGCATTCCAATTGGCAAAACACTTGTGGAATGGAACCTTCGACTATGCCAATTGTGACATAAATCCTTTAGATCCTGGAGAGTGCAATCCTCGTATACCCAGAAAAGGACAGGGGCGACCTGATTGGGCAATATTTGGGAGACTTACTGAGCACAATGAGACTATTCTCTTCAAAGAAAAATTTCTTGATTGGACTGAAATGAAGAAGCCTTGTGAAAAGAACTCAAGTGAACTCACCCCACAGAAGGAAGAGCCAAGGTCTGAGGTTAAGGCTTACGATATCATGCTGATGGTCCCCGTGCCCCAAGTGACCGTCGGCACCATCTTGGATGGAGTCAACGTCGGCCGTGGCTACGGGTTTATCGAAGGAGATGACAGGAGGCAGTTCGAGATTGCCAGTGTTTCTGTGGACGTCTGGCACATCTTGGAATTTGACTACAGTAGGCTCCCCAAACAGAGCATCGGGCAGTTCCACGAGGGAGATACGTATGTGGTGAAATGGAAGTACATGGTGAGCACTGCAGTTGGGAGTCGGCAGAAAGGCGAGCACCCGGTCAGGACGGCCGGCAAGGAGAAGTGCGTCTACTTTTTCTGGCAGGGCAGACATTCGACCGTGAGTGAGAAAGGCACGTCGGCGCTGATGACTGTGGAATTAGACGAGGAGAGGGGGGCCCAGGTTCAAGTGCTTCAGGGAAAGGAGCCACCATGTTTTCTGCAGTGCTTTCAAGGAGGAATGGTTGTACACGCAGGGAAGCGAGAAGAAGAAGAAGAAAATGCACAAAATGACTGGAGATTGTACTGTGTCCGAGGAGAAGTTCCCATTGAAGGAAATTTGCTTGAAGTTGCCTGTCACTGTAGCAGCCTGAGATCCAGGACTTCCATGATTGTTCTTAGTGTCAATAAAGCACTCATGTACCTTTGGCATGGGTGCAAAGCACAGGCCCATACAAAGGATGTTGGGAGAACTGCTGCAAATAAAATCAAAGAACAATGTCCCTTGGAAGCAGGATTGCACAGTAGCAGCAAAGTGACGATCCATGAGTGTGATGAAGGGTCAGAGCCACTGGGATTCTGGGATGCGTTAGGAAGGAAAGATCGGAAGGCCTACGACTGCATGCTACAAGATCCTGGGAAGTTTAATTTCACGCCCCGCCTGTTCATCCTCAGTAGTTCATCTGGAGATTTCTCAGCCACGGAATTCATGTATCCTGCCCGTGATCCTTCTGTGGTCAATTCCATGCCCTTCTTACAGGAAGACCTGTACAGTGCCCCTCAGCCAGCACTTTTCCTCGTCGACAACCACCATGAAGTGTATCTCTGGCAAGGGTGGTGGCCAATTGAGAACAAGATAACGGGGTCTGCCAGGATTCGCTGGGCCAACGACCGAAAGTGTGCCATGGAGACGGTGCTTCGGTACTGCAAAGGAAAAAATGTTAAGAAACCCCCCAAGTCCTACCTTCTTCATGCTGGGTTAGAACCTCTGACCTTCACCAATATGTTTCCAAGTTGGGAACATAGAGAAGACATTGCTGAAATCACAGAAATGGATGCAGAAGTTTCTAATCAAATAATTCTTGTGGAAGACGTGTTAGCCAAGCTTTGTAAAACCGTTTATCCGTTGGCTGATCTCTTAGCCAGGCCCCTCCCTGAAGGAGTGGATCCTCTGAAGCTTGAAATCTACCTTACTGATGAAGACTTTGAAATTGCACTAGAGATGACCAGAGAAGAATATAGCATGCTGCCATCTTGGAAACAGGTGAACCTGAAGAAAGCGAAAGGGCTCTTCTAAGCATCGATGCTGCCAGTGGAAGATGAGGCTGGAGAAATCTCTGTGGTCACTTTCAATACCGTTGGGCCAGGAAGATTGACATCTATGTGTCCTGGTCTTCAAATTGTTTAAAAGTCAAAGTAGAAATGATTTGAAGTTATTAGATACTGCCTGAGCTGGAGTTGTGTAATTTTGTAAATGTGTAAGAGAACTCTCTGAAAACTTTCTCCTCCCCGACTCAGAGGGTATTTCCTGTTTGTAAACTTGGCTCTCCCGTGCACTTAAAGCAGTAGCACCTCACAGCTGCTGCTCAGCCCTCCTGGCTCCATCCAGCCTTCGCCTATTCATTTTTGAAGATGCTCTCTTTGTAAAGTGTTATTTTGTTAGCTTGTGGATTATTAAAAAAAATTATATTTATATAAACACCATATAGTTCAAGTATGTATTTAACAAAACAAAATATGTATTCACTTAAAAAAAAATTTTTTTTTGGTGTCAAAACAATACCGAGAAGTAGATGGAGTTGCTTCTACTGAATTATCTATTCCACAGTCTATGTATCTTATACACGTTCTGAAACGTTTCCTTTGGCAGTGGGCAAGGGGCTATTCTAAGGAGTACCACCGGTGCTTAAAGGAACAAAACTTTTATACTTAGGGCTGGAGACTCTGGAGAAACTCTGTGACCTTCATACCTTAATATCCAAAAACAAACAAAAACATGTATAGTGCCTTGTTTTGTGTACAGTTTATATACAAAAAAGTTTGGGTCTGCGTTTTTGAAGATGGTTTGGAACAGTATCAACAATTTTACTTTACAATGATCGAGGTTTAAAAAAAAAAAAAAACATCTCAGTTTATAATACTTGTAAACACATCTTTTTGTGATATAAGATTCCAAAGTACGAGCTTCAGAATAAAACTTTGGCAATGA +>XR_003381398.1 PREDICTED: Zonotrichia albicollis uncharacterized LOC113459830 (LOC113459830), ncRNA +TACTATGATGATGAAGATGCTCTAAAAATATACAGAATCTAATCTAGTTTAGATTTGACTGAAATAAACATGGACAAGGATATGTTGGGAGATGATCCTTTTACTTGGAACTTTCACCTTAGTGTGGGACTGTGCAGATTGATCTGGAGGATTTCTATTTTGGATGCCATTAAGCCATCTTGTATCTTCTAGCAGGAAGTCAGAGTAGCATCTCGACTGCATCTTCAAACAAGACTTTTGCAAGCTGATGCTCACAAGGGGCTCTGTTTAGAGGTTTGTTCCTGTGGGGAGGCAGGCAGCTCCTCCTGGTTGCTTCTGAAAGCTTCTCTTCATTGCACTTTCCATCTGCACTGGCTTCTGTTTTAGCCACTAAGGTCAAGTCGGTGTGGTTTTCCCACTCTGCCTGTTGCATTAGTGGCACTCTGGAAGTGAGACTTGCACTGGATGGGAAGTGTTTGGTGAATTTTTAAATACCATTATTGATTTCACATTAATTTTCTTTATGAACCGGGCAAAGCTCTTATGCGAGGGTATAACAGCCAAGAAATATTTGACAAGTTGTTTAAAATCTATTGCCTGGAAGAAGCCTGATAGATCAATTAATTTATTTCCCTGCTATTTCAATATATCCTTTAAACATATTTTCACTGATTGTTATTACCCATCCTGAAGTATACAGCACAAAAGCAATCATATATTACCTGCAGCAGAGGGGGCTGCCTCCTGGATCTCTGTCCACAAGAGATATAGATATTTTGCCCAAAGTTGGTTTTTTCCTTGCCTTCAATGAAACATGATTAGAACATAATGATTTTGCCTCTGCATCAGTCCACACCAACTCTATGGTGTTTTAGGGCATCAAACCTGTAAAAAGGGCAGATTCTTTTACATATGCAAACTCCTCTACCTGTTACATCAGTTTATTTCACATTCCACCAGTGTTCCTTTGGATACAGATTATTGATTGCTCCCTAGTGAATACCTTTTTAGTCATTCTTTGGCCTCAGAAAATTACCTTTGAATGTTTTATGCAAGAGTATTCATTATGAACAATTAATGTACTGAAAATGTCAGCACCTCAAGCAGGCATTTTATAAAAGATGAGTAAATTTATGGTAATGCATCATTCAAACTTCCTGCACTTTTCATTCTTTTAAAATTTATGTCTTACATTGCAGTTCAATAGCCTGTAACAATTTGATGACCTGAGTGGAATAATGTCAAAAATGTCTGTGTATTTTAGAAAAAATTTAGAAATTAAGATTTTTATTTTTGCTATTACTGTTTTTAGGTATGTCACAGCTTTATAGTAACGCGAAGTATTTGCTTTATGACAGCTCTTCACATGCTTTTTAATCAGAAGTGAAAAAAACTTGGTTCAGAGCAAGCTTCAGTCTACATAGATCCATTCATAGAAAGTGAGGAAAGTCTTTTGTATCAAGTGGAGGGTGAAAAGACTACTTGTACCCATTTATATTGATATTTGTTAAGTTTTATAATATAGAACACCCTGAATTTAAACCTCTTAAACTTTTCCCTTTGACATGTGGAAGGATCTCAGATTGTTTTGCTTAATTTAGTAAGCTTTAAGCCTCGAAAATGATGCGTGTTTCACATCGCTGTCCAAACGCTCTAAAAAAGTATTTTTAAGGCACTGCCAGCTAATTACCCAA +>XM_020665074.1 PREDICTED: Amborella trichopoda ABC transporter G family member 11 (LOC18430567), mRNA +TAATCTGTCTCGATCTCTTCAAGAATTGGGTTGATCTCTCTCTCTGTGTCTCAATCTCAATGGCCTCACTCCATTCTGTCCCAAAATGGATGCCGAGCTCGAGCCCAACACAATCCACAAACCCTCTCCTCAGCCACCCTCCCTTCCAACAAGAATCCGAAGACCACATCTCTCTTGATGAAATTACTCCGAAACCATTGCAAAGAAACCCGAGCCTAAAAATCTCTGACATTGATGAAAATGCATCGGGCACCAGCAAGCGCTTCTTCCACCTCCATGCACCAGCTCTCCAACCAGGCAATATTCGCTCCGAGCCCACTTCTGGGAGGAGTGTCGAAATGGGCAGGACCCAGCACAAGTCGGTTCAAGTGGATATGGATCCACTTGGCTCGGCTGGTTCCGGTGTGTCACTAACGTGGACCAACCTATGTGTCATGGCTGATGGGAAAGAGGGTGGAAGCACAATTTTAAGGGGGCTCAATGGGTGCGCCCAACCAGGCGAATTTTTGGCTATCATGGGTCCATCAGGCTGTGGAAAGTCGACCCTTCTCAATGCACTTGCTGGGAGGTTAAATTCTAATGTAGTGCAANNTATCAACGGTCGTAAACAAGCCCTGGCATATGGAACCTCGGCTTATGCGACCCAGGATGATACACTCATGAGCACTCTAACAGTATGGGAAGCGGTGTACTACTCAGCCCAGCTCCGATTGCCAAGCTCCATGTCGAGCTCTCAAAAGATAGAGGGGGCTGAGATAACCATTCAAGAGATGGGTTTACAAGATGCAATACACACAAGGATTGGGGCCTGGGGGGTTAAGGGACTCAGCGGTGGCCAAAAGAGAAGAGTGAGCATTTGCATTGAGATCCTCACGAGACCTAGCCTTCTCTTTCTTGATGAGCCCACTAGTGGGCTCGACAGTGCTGCGTCTTACCATGTCATGACTCGAATTGCCCGTTTGGCCCTGCATGATGATCGAACTGTGGTTGCTTCGATACACCAGCCTAGTGCTGAGGTCTTCGGCCTCTTCAACACACTATGCCTCCTCTCCGGTGGGAAGACACTGCATTTTGGCCGGGCTTCCGAAGCCAATGCCGTTTTTACACTCAATGGCTTCCCTTGCCCTTCATTGAGAAACCCCTCGGATCATTTCCTCCACACCATTAACACCGATTTTGACAAGGATATTGAGCAAGGTTCCGATGCCGAGGCAACAGAAGCTGCTAAGGCGATTGATATCTTAGTCAACTCTTACAATTCCACCATTGCAAACCAAGTCTTTGCTCATGTAGCTGATATCTCCAAGAGGGAGGGAGAAGCATTGACAAAGAAAGGGAGCCAAGCAAGCTTCTTTACACAAGCGTCCGCCTTAACAAGAAGATCTTTTGTGAATATGTATAGGGATTTCGGTTACTACCGGTTGCGCCTAGCAATCTACATTGCGTTGTGCCTGTGCATAGGTACCATCTTCTTTGACATTTGCCACAGCTTTGGCTCTATTCAGGCAAGAGGGTCCATGCTCATGTTTGTTGCAGCATTCTTGACGTTCATGGCGATTGGAGGCTTCCCCTCCTTTGTGGAGGACATGAAGGTCCCTTTTAATTACTATATTTTCATATAG +>XM_457077.1 Debaryomyces hansenii CBS767 DEHA2B02508p (DEHA2B02508g), partial mRNA +ATGTACGATTCGTTCGCTAGTTATCCGCATAATTACTATACTAAAAGTGATGATGAGACAGAAATTCCTCCAACTACTTTTCCTGGTGAAAATTTGTTGACCAAGGACCATTTGCTAGAACAATTGCAGCCAATATTAATCATCAGTGATCCATCCGAATGTAACAATAACTTAAGTCTTTTTATGAAGTTAATCGTTGAGAATATATATGACCAAAATGAAGAAACTACACATAATTATCAAAAATTATCATCTTATGCACTTAAATTGTTGACCCTGAATTTATTTATCAAGAACTACGAATTGTGCCTCGGTAAAATATTAGGATTATTGGCAGCTTTAAGTCGGGACACATTGTGCTCAAGTGAAGGTATCGATGAAGATGTGAAGTTTGAAATCGAGTCATTACGGGAGTTCATTTGCATTATTTTACTTTTACTTTTGAAGTTGACTAATAGCCCAGGAGAGAAGAGCGAAAGATCAAAAATATTGGAAACAGTCGATAGAAATGAGTTGTACGAGATCTTGTCCGACCTTGGAATTATACCTATCATCGCTAATGTTATAACAAATCATATTGTGACCACCGATAAATCTAAATCCCCGTTCTTGTTATTGAAATTTGGTGGGGATATTATATTTGAATATCTCTACAATTGTGAATTATTGTCTGATGTCGAGTTTAATAGTTTGACTAGCGAGACCAACTTAATCCCTACCATTATTAAGCATTTACTAACAAACGACGATTTTGATAATTATGATACTGATGCTGACGATTGGGAGGGTGAAAATAAACTATTTATATATGAGGAGTTTAAGTTATTGTTACTCATCAATGAACAATATTTGATGAAATCATATTCGTCCAAAGAATCAAAAAATAAAGTTTTTGATGGCTTAATGATGGGAGATGCTCATCTATCCTCAGAAAATTCACAACCAAGTAATAAACAGATTAATGGGTTTATCAACTTGTTGATTTATTACATTAATCGTGAGGAGTCTCAAATTATTAAAATCCTTATCTTAAAATTCTTATACCTTATATTTACAACTTCCTACACTGCAAAATTGTTTTATTTGAACGACCTAAAGATTTTGTTGGATATAATCATTCGTGAATTGAACAATCTAGACTATAGTGGGAATGCGAATGGAATATTGATTGTCACATATTTAAAAGTTTTGTATCCTTTGTTGATGTTCTCTCAATTAAGTGAATTGCCCGAAGGTTATAAGAATGAAGGTATATTAGAAATTTTGAGAAACTTGGTTCTTAATTCTGAGTCAGGTAATCGTAAGACAACTGAAATTTCTGAAGCAACCGACGAAAACCAAGCAGATATTATTGCAAAGCTATCATTACGGTGTATGTCTATACCTTGGTTGAGGAAGCCACAATTGAGTAAGAGAAAAAACCAAGACAACCCTAACTTGATAAATAACGTTTATGGAAAGTTATCTGCTGCTTCCTCTTCATCATCCTTGAATTCGAAACTGAGCTTTGTGGGAAAACGTTCTGAATTGTACGAGAGTTCTGATATTTCAAGTGAATCGCTTGGTAAGGCCTTCACCCGAATTGCATCCGTCAGAACTTCAGTAAGAAGCGACTATCATAAGCATGCACTAGTGCATAACGAAAACGACCAAGTGGGCCCAAACGGTCTGAAGAGCTCTTATGTCGAAAATAACCATAATATTTTCTTAGATAATGATTTTAAGTCATTATCAATTAATACCACGGAAGATTTTGCTAATTCTCCTTGGATTCCAATATCAGATGAGTCGAATTTGCTAGATTTACCAAAAGAATATTTAAAAGATGAGCCAGTACAGCCCTTAAAAAGACCAGAGTCTGCATCATCCTCAATTAAGTCAGATTCGAGTCTAGCACAAAAGGCATCAAAGAAGAAGGCACCGCCACCACCTCTTCCACCGAAAAGTTTCCTGCCGAAACCTAATCATATACATTTCGAAAAGAGATCTCAATCACAAACACCACCACCACCACCACCTCCTCCTCCTCCAAGACGCAGGCGTTTGTTACATCTATGTGAGCATTAA +>XM_042466471.1 PREDICTED: Sceloporus undulatus RNA binding motif protein 46 (RBM46), transcript variant X1, mRNA +GGCGCGGGAGAGGCTCAGAGGCGCTGGCCTCTGCGTGGGGCAGTTGTTGTTTGTTTCTCCACGTGGGAGGAAGGAAGAGGGGAGGCATTGCTGCTGCTTCTTCTTCCCTCAAGGCGATATTTTCCCTGTCAGGTTTGTTGGATGTGGATGACTGACCAAGTCGGAATCTAATTGTGCACATTGTGGATTTGAAAACTGTTCAGATTTTATTTCTGAAGGCTACAGAACAGAGTAAATAAATTACAAAAAGTAGAACTCTGTAAGTTTCCATCATAGTTATTTCTTAACGTTTTCTGAAGACGGTAAAGCAATGAATGAAGAACAGACAGATGTTACAAATGGCTGCAGCAAAGTTAGAACGGGTACTCAGAACGAAGCTGCGTTATTGGCTCTTATGGAAAAGACTGGTTACAATATGGTTCAAGAAAACGGTCAAAGAAAATTTGGTGGACCTCCACCAGGTTGGGAAGGTCCACCACCACCACGAGGCTGTGAAGTTTTTGTGGGAAAAATTCCCCGTGATATGTATGAAGATGAACTAGTTCCTGTTTTTGAAAGAGCTGGGAAGATCTATGAATTCAGGCTGATGATGGAATTTAGTGGCGAGAATCGTGGATATGCATTTGTAATGTATACAACCAAAGAAGAAGCTCAGCTCGCTATTCGGATCCTTAATAATTATGAGATTCGTCCTGGGAAGTTTATTGGAGTTTGTGTAAGTTTGGACAACTGCAGACTATTTATTGGAGCTATTCCAAAAGAAAAGAAAAAAGAAGAGATCTTAGATGAAATGAAAAAAGTCACCGAAGGTGTAGTGGATGTTATTGTGTATCCAAGTGCAACCGATAAGACAAAGAATCGTGGGTTTGCTTTTGTTGAATATGAATCCCACAGAGCTGCAGCTATGGCAAGAAGGAAACTCATTCCTGGAACATTCCAGTTATGGGGCCATACTATTCAGGTAGATTGGGCAGACCCAGAAAAAGAAGTGGACGAAGAAACAATGCAGAGGGTTAAAGTATTATATGTTCGAAACCTGATGATCTCAACTACAGAAGAAACAATTAAGGCTGAATTTAACAAATTTAAGCCAGGAGCTGTTGAGCGTGTGAAAAAACTTCGAGATTATGCTTTTGTTCACTTCTTCAATCGAGATGATGCAGTTGCAGCTATGTCAGTTATGAATGGGAAGTGCATTGATGGAGCTAGTATTGAGGTAACACTAGCCAAGCCAGTAAACAAAGAAAGCACTTGGAGACAGCATCTTAATGGTCAAATTAGTCCCAGTTCTGAAAATCTTCTTGTCTTTGCAAACAAAGAAGATGGTCATCAGAAGTCTCTAGCAAAGCCAGCAAATCTTCCAATTCGCCTTAATGGACAGCATAGTCCTAGTCCTCCTGAAATTGAAAGGTGTTCTTACCCATTTTTCCCAGGAACAAAGCTTACTCCAATTAGTATATTCTCATTAAAATCTAGTCATTTTAGTTCTGCAACAATGCAGCTAGATTATTATTGCAATAAAAATAACTGGGCACCTCCAGAATATTACTTGTATTCAACAACAAGTCAAGATGGAAAGGTACTACTAGTATATAAGATTGTTATTCCTACTGTTGCCAATGGATCCCAGAGTTATTTTATGCCAGACAAACTTTGCACTACAGTAGAAGATGCAAAAGAGCTGGCTGCACAGTTTGCTTTGCTGCACTTGGATTACAATTTCCGCCGAAGTTCAATAAATAACATTTCCCCAGTTAGTGCTACTCTTTCTTCTGGAACCACCAGTGTGCTGTCATATACATCAAGACCATACTCTTATCCAAGCTATCCTTTGTCACCATCAATTCCACTTGCTAGTAACAACCATGTTGGGCAGCGTCTGTATATCTCCAATCAGGGCTCATTCTTTTAAGGAAAAGAAAAACATGGATGAAAATAGTATACTCTTATTTTAATATTATGTAGTTTCAGTTTTAATTGTGTCCATGCAATTGGTTTTGATGAGTTCAGTATATCTATATATTTCAAATTACATATAAATTAACTGAATTTGGGTGAAGATAAAAGTTCCAAATGTGTTCTATCTTGGCAAGAAGAAATGCTTCCTAAAATATGGCACAGAATTTTATGATTGTCAAACAAGACAAGAAAACCCATTTAACATTTTTAAAGTAATTACTTTCCTGAATAGTAGCTTTAAAATATTTAAAGTGCATGCAATTGTTGGTTCTAATCTTGTTACCAAGGATCACCTCTGTTTTTTGGAGATGAAAAACAAAATAGTCAAAATGCATGTAATCAAAAAGCAAAGTATTATGTAAGAAAGAAATGATGCTGATGAAAGATTTTTTTAAAGAATACAAACTTTATTTAACTCCAGATTAATAACCTCTATACTACTGTGGTCCTTATAAATCACTTTGCATATTTTAGTTGCATGACAAATATTTGTTTTATGATTAGAATATATTATTTTGTGTTACTTTATCCATGTTAACACTGTTAATCTCTATTTGTTAAAGGTACTGTTCTGTTTACGTGTTGTCATGTTT +>XM_019277554.2 PREDICTED: Larimichthys crocea E3 SUMO-protein ligase RanBP2 (LOC104918663), transcript variant X1, mRNA +TTGACGGTATTGAGACTGCGCAATAGCATCATGGGGAGCTAACGTCAGTCGAGGCTCACATTAATGTCGGTTTGTTTTATAGTTTGTTAAATCCTCCCGCTGTTCGGTTGTGCCCGGAATAATCAGCCGTTTTTAGGGAGCCATGAGGCGGAGTAAGGTTGAAGTGGACCGGTACGTCTCCTCCGTGCAGAGCTCCTCTCCTTCACTCAAAGAGAAGCCAGTCAAAGGGTTTTTATTCGCTAAATTATACTTTGAAGCAAAGGAGTATGAACTTGCAAAAAGACACGTGTCGGAGTATCTGAAAGTCCAGGAGAGAGATCCCAAAGCACACAAATTCCTTGGACAGCTCTACGAGAGAGAGGGAGACCTCAACAAGGCGATAGGATGTTACAAGCGTTCGGTGGATTTGAACCCAGCCCAGAGGGACCTGGTACTGAAGGTGGCTGAGTTACTGGTCAGTAAGGAGGAATGTGACAGCAGAGCAGAGTTTTGGGTGGAGAAAGCTGCCAAGCTCCTGCCAGGAAACCCTGCAATCTTCAACCTGAAGGAGCGTTTGTTGAGTCGTCAGGGTCAGCAGGGTTGGAACCGGTTGTTCGACCTCCTCCAGGCCGAGCTGGCAGCGAGGCCAGCTGACGCTCATGTGAATTTGAAGTTGGTTCAGCTGTTCTGTCAGGACGGGCGGCTAGAGGAAGCCGTTAAGCACTGCCTGGCTGCTGAGAAAAGGGGTGTGCTGAACCACAGTCTGGACTGGTACACCATCGTGCTGCGCACACTGCAGGAGTATCTTGCTCAGCCCAGCGTCTCTAGTAATGAGAAGATGTGTCGACGTCTCCAGAGGGAGCTCCTGTTGGCCCACTGCAGCCTGCTGAGAATCACACTGTCTCAGAGCAGCGTGCAGCCCAGCCTCGATGCCCTCAGAGGTTTTGATGAAGCTATGCAGACGCTGAGCAGCGTTGCTGCTCGCCACATGGACGATCTTTGGGAGGTGTTTGTGGAGATGAGAGGTCACCTCTACATGCATGCTGCCACACTGCTGTTGAAGCTGGCTCAGGATCGCCAACAGACCTGGAGGGCTGTCATTGACCTGGCTGCACTATGCTACCTGTTGGCTTACCAGGTTCCCAGACCAAAGCCTAAAGTGACCAAAAGAGACCAGTCAGCCCCACAGCCACTGGAGCTGCTGGCCAACAGCCGACAGAGTCAGGCCGGCCACATGTTGCTAAACCTGAGCACGGATTCATCCACCTTGATCAGAGAGGTGGTGGAGGCGTTTGGGAACCGTAGTGGTCAGGACTCTCTGTTTGAACTCCTGTTCGGACCACAGGCCTCTGCTGCATCGTCCTTTATTGCAAATGATGACATTCATTCTGTTAACACCACGGCTCCAGAGCTCTCTCAACTGGCCAAATGGGACGCAGGCTCCATCTTGCTGCATGGTGGTAACTTGCAACATCTGAGCTGGCTGGGGCTTCAGTGGACCCTTCTGGCCCAAAGACCGGCCCTGCGAGACTGGCTACAGCAGCTCTTCCCTAGACTTACTCTGGAAACCTCCAAACTGGACACAAACACACCGGAGTCAATCTGCCTGCTGGACCTGGAGGTGTTTTTATACGGCGTGGTGTTCTGCAGCCACTGTCAGCTCCAGGAGACAGCGAAGCTCAGCAGCGGAGTGAACCAGCAGCAACAACAGCAGCTGTATGAACCACGCTGCCTCCCTCTTCCCCTCATTCGCCTCTTGACCACCGACAGACAGAGGGAGTGGTGGGACGCCGTCTACAGCCTCATTCACAAACAAGCAGCTCCTGGTACTTCAGCCAAACTTCGGATGATTGTGCAGCACGGACTGAGCACGCTCAGGGCTGGAGAGAAGAATGGGCTCCAACCAGCACTGGCCATCCACTGGGCTCAGTGTCTCAGCCAGACGGGTGATGGAGTGAACTCGTACTACGACCAGAAGGAATACATCAGCCGCAGTGTCCACTACTGGAAAGTTGTACGTCCTCTGTTGGACAAGATCAAAAACAGACGCAGTATACCAGAACCACTTGAGCCCCTCTTCATGCACTTTCAATCCAAGGATATTCAGATTTCTTCTGTTAGGGGATACGAAGACGAAGCAAACATAGCGTATGCGGCTCTCCTTGACATTGAGGGCAAGACAGAGGAGGCTATCGCTACGTTGGAAACCATCAATAACATGTCATCCATCTGGCATTTGGCACAGATCTACCAGCGGCTATCAGAGGAGGCCAGCAACGGGGTTGAGGAGACCCAAGATAGATGCATAACATTTCTGAGAAAATTCAGGACGTATTTGTCAAAGATCTATAATGCTAATGCAGATGACATCGAGAAGCTGCCTGTTTCTATGGAGGACATTGTGGACCTTCTGAATGATGTGAACCAGCAGCTGGGAGAGAGTGGTGAGGCCATGGATGAAGAAGAAGAGAAGGAGGAACCGGGCCGAAGAGGACCAGCCCACTCCAGCCCTGCTCATCCCACAGAAACCTCTGCCACCATATCCCACATCAAGTTTTCCACTCCCTCCCCGAACAAAAGCCTCATCTCTCCCTCCAAAAGACACCTGATTTCTCCCAAGACACCACCTCACTGGGTCGAGGACCAGAAAAGTCTTCTCCAGATGCTGTGTCAGCAAGTTGAAGCCCTCAAGAATGAGGTCCATGATCTGAGACACAACTCTTCAGGGAACGCAGGTTCCCCTCATCACAAAATGTATGGAGAGAGCTATGGAGCCGAGGGTCTACAGGAGCCTTTTACCCCAGTTCAGTCTTATCATGGGGCCCCCCTAACAGTTGCCACAACAGGCCCCTCTGTGTACTACAACCAATCTCCTGCTTATAACTCTCAGTATCTCCTGCACACAGCAGCAAATGTAACCCCCACCAAGGGCCCAATGTATGGTATGAACCGTATGCCACCTCAGCAGCACATGTATGCCTACCAGCAGCCCACTCATACACCTCCATTGCAAACAGCCCCAGCCTGCATTTACCCTCCTCAAGAACAGGTCTTTGGTGCCCCTCTTCGGTTTGAATCGCCAGCCACAAGCCTACTTTCCCCATATAGTGAGGAATATTATGGCCAGAGTGTAACCCAACAAACGACTAACCCTCCCCTGCCTGAACCTGGCTACTTTACCAAGCCGTCTGTAGTCCCCGTTCAGCCACCAAAGAGCATCGAGGGCAAGCCTGGGAAGCTCTCCTTCAGCCAGCAGGCACCTGCTGAAGTCCCCAAAGTGCCTAGTTTTGGAGCAGGGGCAGTTGCTCAGTCAACACCCTCAAATGCTTTTAAATTCAACTCCAACTTCAAATCCAATGATGGAGATTTCACTTTCTCAGCCTCTCAGGCCAAGCACAGCGAAAGTCTGCTTGGTCTTCTTACATCAGACATTCCCACTAAAACTGACACCGTTCCAGACAAGCCTGCAGCCCACGAGCAGCCCCAAAGCCAAACAGGCATCTTCACCTTTGGCAATAAAAATATTTCTGGCTTTTCTTTTGTTGATTCCACGCAGAACACAGTCAACACTGGAAGTCTATTTGGAAAGGTGGACCAGCCATTTAAATTTGGTGTTGCAAAGTCTGCAGCAGAGGAGGAAAGAGCAGTAGAGAGCGACAATGACAGCACTCATGTTGAGGAGGATGAGGATGGTCCACACTTTGAACCCATTGTACCCCTTCCTGATAAAGTAGATGTGAAAACAGGTGAGGAGGAAGAGGAGGAAATGTTTTGCAACAGGGCAAAGCTATATCGATTTGACACAGAAACAAAAGAGTGGAAGGAGCGGGGCATTGGCAATGTTAAAATCCTAAGACACAGCACAAAAGGGAAGGTCCGCCTCTTAATGAGAAGGGAACAAGTCCTTAAGATTTGTGCCAATCACTACATCACTGCCGATATGCTTCTGAAACCGAATGCCGGCTCAGACAAGTCCTGGGTCTGGAATGCCATTGATTATGCGGATGAAGAACCTAAGCCCGAACAGCTGGCCATCCGCTTCAAAACAGTAGATGAAGCATCACTATTTAAAGCTAAATTCGAGGAAGCCCAGAAAATTGTGCTCAAATCCCCAGAAAAGGACAAACGACAGGAGGAGAAAGAGGAAACTGTAAAAGTTCCTGAATCACTGGCAGCCCAGTTTGCAGCCAAAGCAGGGGAATGGGACTGCACTGTGTGCTATGTAAGAAATAAACCCACGGATATGCAGTGTGCCGCTTGTCAAACTGCCAATCCCAACGCTTCATCCAAGCCAGATATTCAGGCTACTGGTGAAACCAAAGCCAGTCCTTTTACTTTCAAATTTGGAACTGATGCGTCAAAACCCAGTAGTTCTGGCTCTACGTTTACTGGATTTGGTGCTTTTGGAGCTTCTATACCTTCGTCATTTACATTTGGCACCAGTGCCTCAAAGCCTGCTGACACAGTGACCAGTGCATTTGGTTCTGGCTTTGGGGCTCAGTTTGGCAAGAAGCCAGGGCAATGGGACTGTAACACATGTTATACAAGAAATGAGTCCTCTGCAGACAGCTGTATTTCTTGTAACGGTCTTAAAGCAGGCCCTAAAACAACTGTGACGGCACAAACGGCACCAGCTGCTCATGTACCTGATGCACCCTCTGTATCTGCTGTTGATTCTGGGTTTGGTGCCCAGTTTGCCAAGAAGCCGGGGCAGTGGGACTGTGATACATGCGCACTGAGAAATGAAGCCTCTGCTGACAAATGTGTTGCCTGTCAAACCCCCAACCCTGCAGCTAAATCAACAGAGAAGGTTCCCGTGGCATCAAATCAGCCTGCAGTGTCAGGATTTGGGGCAGATTTTGTAAAAAAGGATGGCATGTGGGACTGCAATGCCTGCCTGGTCAGAAATGATGCAACAGCTGTTGAATGTGTTTCCTGTCATGCACAACGTGACACTTTAGGAGCCATGTTTGCCAAGAAGGCTGGAGAATGGGATTGTGACACTTGTCTGGTGAGAAACGATGCCTCTGCCAATCAGTGTGTGTCCTGTCAGACACCAAATCCAAATGCTAAAAGCACAACTAGCACTGCTCCCTCAGCCTCTTCATTTAGCTTTAGCTTTGGAACAAAGAATTCATCAAGCCAGCCTACCGCAACTGGATTCACAATGCCTTTTGAAACTGGAAGCGGTTTTCAGTTTGGTCAAAGCAAAGATAAAAGCTCAGCGGCCTCTTTCAAGTTTGAAGCTCCTCAGTCTGGATCTAATACCACAAGTTCTTCACCCTTCTCTTTCTCAATGCCCATTCCAGCTGGTGGCTTCAAGTTTGGCATTCAGGAGCCTGCAAAAGAAACCCCCTCAACTGATACTCAAGCACCTCCATCAGGGTCAGCTTCCAGTTTTCTGAAAAGCATAGCTGACAAACACAAGGAGAAAGAAAATGTGCCCACACCCTCCGTGGCCCAAACAGAAGAAGATCAAAATCCAATAATTGCTGTTAAACCCAATACATTCAGCTTTGCAGACTTGGCAAAGTCCTCTGGAGGAGATTTCCAGTTTGGCCAGAGTGACCCAAATTTCAAAGGTTTTTCTAGAGCCGGTGAGCAGTTGTTCTCATCATTAGAGGCAACCCCCACCAAGAAGGATGCCTCAAATGAGCCGGAGGACGATGACATGTACAAAACGGAGGAAAATGACGACATTCAGTTTGAACCAGTGGTCCAGATGCCTGAGAAGGTGGACTTAGTAACAGGGGAGGAGGATGAACAAGTGCTTTATTCTCAGCGTGTCAAACTGTTCAGATTTGACTCAGGCACCAGTCAGTGGAAAGAGCGTGGTGTGGGAGTTCTTAAATTCCTGAAGAACAGCACCAATGGCAGGCTAAGGGTGCTGATGAGAAGAGAGCAAGTTCTGAAGGTGTGCGCCAACCACTGGATCACCACCACCATGAATCTGAAGCCCCTGGCAGGCTCAGACAAGGCATGGATATGGTTGGCCAATGACTTCTCTGATGGCGATGCTAAACTTGAACAGCTGGCTGCAAAGTTTAAAAGCCCAGAGCTTGCTGAGGAGTTTAAGCAGAAGTTCGAAGAGTGTCAAAGACTTCTCTTGGACATCCCCCTACAAACCCCCCACAAGCTTGTTGACTCAGGCAGAACAGCACGCCTCATACAGAAAGCAGAGGAAATGAAGTCTGGTTTGAAAGACCTGAAATTCTTTTTGACGGATGAGAAAACTAAGATCAAAGATGATGACAGCCAGGCAGACATTACAAGCAATGTTTCAAGCCTTGTAATCAAGCCACACGGTGAGACCACCGGCCCCACCTTGGAGTGGGATAACTACGACTTAAGAGAAGAGGCTTTAGATGACACTGCCGACTCATCAGTTTATGCATCTCCCATTGCCAGTAGTCCACTGAGGAAAAACCTTTTCCGTTTTGGAGAATCCACTGGCGGCTTCAGCTTCAGCTTCCAACCAGGCATCAGCCCCTCCAAGTCTCCTGCTAAGCTAAACCAGAGTAGGGCCTCAGTGGGCACTGATGATGAGCAGGATGTAACCCAGGATGAGGAGAGGGATGGCCAGTACTTTGAACCTGTAGTCCCCTTGCCTGACCTGGTGGAGATTTCTACAGGAGAGGAGAATGAACAGGTGGTCTTCAGTCACAGGGCCAAATTGTATCGCTATGATAAGGCTCTGGGTCAGTGGAAGGAAAGGGGCATCGGAGACCTCAAGATCTTGCAGAATTATGACACCAAACGAGTCAGGTTGATAATGAGGAGAGACCAGGTCCTTAAGATATGTGCCAACCACTGGATCACATCTGTCATGAAGCTTGAACCTATGAAGGGTGCCGAAAAGGCCTGGGTCTGGAGTGCCTTTGACTTTGCTGAAGCAGGAGAGGGTAATATTGAGCAGCTGGCTGTGAGATTCAAGTTGCAGGACACTGCAAACACATTCAAACAAGTCTTTGAAGAGGCCAAAGTTGCACAAGAAAACAAGAAACTGATGACTCCAGTGACACCTCGGGTCACCACACCCCAAGACAGTGGACCCACAGGATCTGCTCAGACTGCTCCAACTGTATGTGGAAAGGCAGCCATCGCTGTTCTTGAAGAGACCACAAAGGAACGCACAGAGCTTTCCACCGATGGTAAGCCATGTGCAGCTGGGTCTCCGAGTCCAGCCAACCCAACCCAACCCAAGACAGTAGTGTCACCCCCAAAGTTTGTCTTTGGCTCTGATAGCCTTCAGAGGTTTTTTGGTTCTCCAAAATCTCACTCTGAGTCTGAGGAGTCTGCATCCAGCTTGAAAGCCAAAGATTCTGGACGTCCTGCCAAGGCTTCACCTGCAGCGCCTGCATTCAAAATCCCAGAGAGAGGGCTGGATTTTAGGCTTTTCAAAGATAACCCAATGGCTTTTTGGACCAGCACATCAACCACCCAATTTGAACCCCCAGGGCCGCCTCAGACAGAAGGAGGCAGTGCAGGGTCGGATGAGGACTCAGAGGTGGAGGTTGTGTATGTCAGGGAGCCCACTGCTGAACAGGCAGCTTTAGCCAGAAAACTCCTGCTGCCTCTCACATTCTTTTGCTACAAGAATGAACCGGGCTACACAAGCAACGATGAAACTGATGATGAGGACTACGAGTCAGCAGTAAGAGCCTTGAATGGAAAGCTCTACCTTGATCCTCCCGAGAAAAAGGCTGCAGCATGTGGTGGTGATGAGTCAGACTGTCAAGTTGTGTGGGAGAAGAAGCCGACGCCAGAGGAGGAGGAGAAGGCCAAAAGCCTTCAGCTTCCACCCACCTTCTTCTGCGGCCTGAGCACCACAGACAGCGACCCGGATCACGACAAGCCCGAAGACTTTGAGACAGAAGTCCGCAAGGCACAGCAAGACCTGGATGCTCAGTTAAATCAAGCTGACAAGGCCTCCAGCAGCGATGCAACAGCCACAGAGGAGCCAACGTCGAGCCTGGCATCAGGTAGCGCAGACGCTGATGGCAGCGTAGAAGCTGAAGGTAGCACATCTACATCGAAAGAGCAGACCTCAGACCAGCCAGCAGAGACTCCGAGTGAAGCTCCCAGGAGCAGCTCTCCCATTGACCTGTCAACAAAAAAGTGCCCAGAGCCAGAGTCCAACTTTGGGACTGCAGCTGCAGCACCTACTGCTACGACTGCAGCAGGGCTTACTGTTACCACGGCGGCGTCTACTGCCACAACAGCTTTTACAGCTACAGCGCCTTTCACAGCCATGACAGCGGCGTCCACTGCTACAACAGCTTTTACAGCTACAACAGCTTTCACTGCTACTACAACCGCTAGTCAAGACACCTCCAACTTTGGCTTCAACGCATCAGGAGGCTTCTCTTTTGCTGACCTGGCCCAAAACACAGAAGGATTTGCATTTGGATCTAAAGACTCCAACTTTTCATGGGCAAACGCTGGAGCGACAGTGTTTGGGTCGGCTGTGGCCTCTGCACCAAAAAACAACGGCAATGAGGAGGGCAGTGATGAAGAAGACGCTCCTAATAATGTGGACATTCACTTTGAGCCAATAGTGTCCCTACCAGAGGTAGAGACAAAGTCCGGAGAAGAGGACGAGGAGATCCTGTTCAAGGAACGTGCCAAGCTGTACCGATGGGACCGGGACCTCGGCCAGTGGAAGGAGCGTGGCATCGGTGATATTAAGATCCTCTTCCATCCAGTCAAACGTTTCTATAGAATCCTGATGAGAAGAGAGCAGGTGCTGAGGGTTTGCGCCAACCACACAATCTCACCGACGATGGAACTCCAACCCATGAACGCCTCGGCCAACGCACTCATCTGGACGGCCACCGACTACTCAGACGGCACCGGCGTCGTGGAGCAGCTGGCGGCCAAGTTTAAAACCCCAGAGATAGCCGAATCCTTCAAGAAGACTTTCTGCGGGTGTCAGAGCCGAATTGGCAACACTGGTGACGATGCCTCATCTAGTTTCACACAACAGATGTCCAGAGTTCAAGAGCACTCCAGAGACACTAACCCGCGGGTGTTCCTCAAAGTGGCAGCCGATGGCGAAACACTGGGCACGATCACCATCGAGCTTTTCTCCCATATTGTCCCCAAAACTGCAGAGAACTTCAGAGCTCTCTGCACCGGCGAGAAAGGCTTCGGGCTTCTGAACTCCATCTTCCACAGAGTCATACCATCCTTCATGTGTCAGGGTGGTGACATCACCAACAGTGACGGCACAGGAGGCAAGTCCATCTACGGCAGCCAATTTGAGGATGAGAACTTTGACGTTCGTCACACAGGCCCGGGCATCCTGTCTATGGCCAATCGTGGGCGCGACACCAACAACTCGCAGTTCTTCATCACCTTGAAGAAAGCCGAACACCTGGACTTCAAACACGTGGCTTTCGGCTGGGTTCTGAACGGCATGGATGTGGTTCTGCAGATGGGAGAGCTGGGCACAAAGGGAGGACCGCCCACGAAGAAGCTTGTCGTCACAGACTGTGGACAACTCTGACTTTTTTAAATGTTAAGATCAAGATTCACAGCTTGGTTTAGGTTATAAAGACTTTGGATAATGATGCGTTCCCCGTGCAGTGCATACTTTCCTGATTATACTGAGTCCATAGTCATTAGACAGCTGAGAATCAAACACTGATCACACAGGCCTATTGATCAATCATAATAGAAATTGGCTACAGTAGCCTGAGATTAGAAAATATTTTGCTATCCTCTAACAGTCACAGATGGGAAACATGGAGTAGTATGCGGGAGGAGACAAATATAGTACACTTCTTCTGTGTTGCACTTGCATCTTCATCATCGTCTGTCAATAAATTCTGTTTATTTTGTGTACATAATTGTATATGAACTACTTTTTTAATGTTTTTTGTCTTGCATGTGCTCAATTTGAATGTTCTGGTCGTCTTCATAAGCTCCACTCGGGTATTTTTTTTTCTCCCCTTTTTTCTTTTGAAGTCTTAACTATAATTGAAAGGTGAGGCTGTTCTTTGAATGCACTTGTTGGTTTATAACTGTGCCCCTGCCTTCACTCCAAATGCTGCCTCTGTGTACTGTTTACCGTAGGGCTCCCCCAGTGTTTTTTTTTTTTCTTTCTTTCTTTGTGTATGTGGATTTCACAGGTGAATTGGACTTCATACTTTCTCAGAAACTCGAGTCATCTCACTGTGTGGCTAGATGATGACGTTCCATCTGTTTTGAATTTTACCAGGCGATCCTCCAGAATTTGAGATTATTATTACATCGCTGAAGTGAAAAAATAATATGCTGATAAAGGAGAAATAAAGTTTGCTTCACAAGTAA +>XM_051564479.1 Radiomyces spectabilis CAP domain-containing protein (BYT42DRAFT_497200), partial mRNA +ATGGTTTCTCCCACCTTCATTTCGTTGCAAGTGTTATTCATTGTGGCCGCTTTGATTCAATTGGTCTCGGCGACATCGGCCAAGTCAGCTCAGCACATTGTGGAGCTGCATAACCAGTACCGGGCCAAGCATCAAGCGCCTCCTGTCAAATGGGATCCGAAATTAGCAAGATTTGCTCAAAAATGGTCGAATCGTTGCATATTCGAGCATAGTACCAGCCCGTATGGCGAGAACCTGGCAATGGGCCATAAGAACTGGGCTTCCGCCATTGCTGGTTGGTACAACGAAGAGAAAGACTATGATTACAGCAATCCTGGCTTCACTTCGTCTACGGGTCATTTTACCGCCGTAGTCTGGAAAAGTACCACTCGCATCGGTTGCGGTGTCAAGAATTGCAACGGTGCCAAGCTCTACACATGCTCTTACTCTCCTGCCGGTAACGTTGTCACCACTGACAATCTTCGCTTCAAGCAGAACGTCTTGCCCCCTGTATAA +>XM_043120008.1 PREDICTED: Carya illinoinensis HVA22-like protein k (LOC122307253), transcript variant X1, mRNA +ATCCTGAAAATTTCCATGATCGCCACTCTTAGGAACCTGCAAAATTCGGTGGGTTTGCGGTTGCTTCTTTGTCCTCTCGGTTCTAATATTGTAATACGGACAGCTTGCTGTTCTGTTGGGATTGCTTTACCTGTGTACTCTACATTCAAGGCAATTGAAAGGAAAGATCAAAATGAGCAACAAAGGTTGCTTTTATATTGGGCAGCTTATGGATCTTTCAGCATTGTGGAAGTCTTTTCTGACAAGCTTCTTTCTTGGTTTCCTTTGTACTACCACGTGAAGTTTGCATTTCTTGTTTGGCTTCAACTTCCATCCACAGATGGGGCCAAGCAATTATACATGAACCACCTACGACCATTCTTCTTGCGGCATCAAGTTAGAATTGATCAAATTATGGGTATTGCATATGGTGAAATGCTTAAACTTATAAGCGCACATCAAACTGAAATTCAATTCGCTAGGAATGTGTTTGTGAAGATTATGGGGGCAGCGGACCAAATGTTAAGAGGGGCTATGAAGCCCGATCAACCTCGACAGAACACTGCAATTGAAGGCCCGTTAAGATCCCCAGATACCCACTCAGATCATAACGATTGATTCCTCTTGTAAGTTTGCATACAACTGAATCATTTTTCCTTGCCGATGAATATAGTCAGCTTGTAGCTGTTATCACTCTTTTTCATTTCCTTGTAAGATGAAGGACCCTTTGCTGTATCTTATCCAGGGGATAGGTGGTATTAGTCTTTGAATGTAAATATTCGGCCATACATGTGGACCTTTAGCGTACATGCGGTTGATTAAAACTCGTATCTATTTGTTTTACCCTGTAATAACACTTCATTTTGTTTTTGTTTTTA +>XM_007831313.1 Pestalotiopsis fici W106-1 hypothetical protein mRNA +ATGGATTCTCGCTTTCCAGTGTTTCGAGAAGAACTATACAATGTTCAGATGGACGTGAAGCAGCTTGCTCATGTGCAGGTCAGCCACGCTGAAAGATTGGCTCGGCTGGAGAAGCACCAAGCAAATGAGTCGGCTATCAAGTCTGCCTGGAACTCTCCATTCCCCAGCGCTATCGGTGGCACCCCGCAGCATGGCCCTATTCAAATGCCCCCAGTCGATTTATTCGATGACTTTGATGAGGAGCAGGGCCAGAACTTGCTAGGCAGCCTCCATCTCGATGCTGAAGAGGAGCCTGTCCGGCGCGGCGCGGCCTCAAGGGCGAACAGTGTTCGTTTTGACGAGAGCGCCCTTCAGGGCTCTAGCTGGGCTCAGAACGGCCGGCAGTCTGGCGAATTTGTGCCTATCCGACCTGGCAGTGGCATGGGAAACATGATGGAACGCACGTATTCCCACAAATCGGATGGCCGACATAGTTCTGCCGGTTATTCTGTGCACTCTGTGCATTCCCATCATTCTGTAGCTTCTGGTCGTGGCAGTAGTCTTGGTCTAGATACTAACTACGCAACGACTGGTTCCGAGGAGGACTCGCCCATTGATGCACCGGCACCGCCGCCCGGTTTTTTCATTCTGGGCTCTGTTCCGTCCATTGTTCGTTGTTGGCTGACAACAAATTTCGCACACGAGACGCTCTTGTATGCAGATATCTGCTCTGGCTCACAGCAATCAGTGCTGGACTATTCACTGATCAAGGAGCTGGAACTATCAGACGAAGTGCACAAGGACCTGGACGGAGTGTATCGAATTCGCTTGCCAGTCTACCTGACTGAGGCCACTGTCACCCACCCGAGCTCAAGAAATTCAAGCCCAACACCGCAGATGCCGAATTTGATTGTTGGCTTTGAAGTCGTTGGACTAGAGCAAGCAGAGTTTCCTGATTTGAAAAAGGGCATCCGCATTTTCATAGGAAGTGAGACTTTGCGAGAACATTCTGCTGACATCTTCTTCTCCCAAAACCGCATGACGCTGTACGGCAGTGAAAGAGAGAAGCTCTCCGTGCCCTTCGTGCGCCCGGAAGATCACAGTGTGTTCAAGTACATTCGTACAGTGGCTGTCCTGCCCGAGAAGCCGCGGCTGAATGCTACAGCGCGTCCTTTCGTCTTGGGTGAGCCCAAGGCGGCGGAAATCTCCAATGAATCTGTCAACGAGATCCAAGAGAAACACGAGCGAGGCGCGCTCGACAAGGAAATACAGTCTCGTGCGCCTGAGGTATCACAGCAACCGACGACTGACCGTGTTACAAGCAACCTGCCTGAAGCCGCAAACGACCGAGACACCCAGGGCAAAGAGGACACTGATGTCTACGAAGCTTCGAACCAAGACCTGTCCGTCTCTGGTGACAATCGCAGTGAGACCACCAGTGACAGCCAGCGCCGTGAGCCAACTGCTAGTGGCATATGGTCTTCTTGGAGACAAGGCTCTTCAACAAACAGTGGTGACCCGAAGGAAAATGCCCCATTGAGCGGATATCAACCACCTGGTCGAGTTCGAAACATGAAAGTCCTGAAGCCAAGCAAAGCCAGTACGTCTTTGTCTACCCGAGCTGGAGTCACTTCGGAGGCGCTTCCGAAATCCAACGGTGAAAATCGTCGTAAAAGTCAACCTGCGGACACTACTCCCACAGGTGTCCTTCGATGGGGCAAGCTTGATCGGGGTTCTGCTTCAGGATCAGACAAGGACTCCAAACCAGCGGCCATCAATGCGGTGCATCGCGAAACCCGGAGCGTGTCCAGCACACCGCGCACTTCTGCCAACCCCGTCGGCGGAGCCTCGGCTTTCTCATGGATGACGCCGATAACTAAAACAAAGCCTTCTACAACCACTGCAGATTAA +>XM_047249926.1 PREDICTED: Schistocerca piceifrons uncharacterized LOC124775103 (LOC124775103), transcript variant X2, mRNA +ACAGCACACCACAGCGCGCGCGGTCCAGCTGCGACGCAAGCCCGGTGTCCGGAAGCGCCGAGGCCGACGCACACATCCCGGAAACTCACCTCTACGTACCTGCGAACACGCGCACCGTCAGAAGTTGCTTTTTCCAGAGCAGTTCGACCGGATCGGTGTTGCCATTCAGAGACACACCGCATGGTGGCCACCAAAACTGTGAATTGCTCGCCTCACGTGCTCCTTGGACCACGTCAGTGGTCCTTTATGTGCTCTTGGCCACAGTTATTGGGCAAATGTTATCCTATTACGAAGTTACTGCAGGGCTGGCCCAGACAATGGACAGAAATGGTGTTCAAAATCCCTCTAAATTGACTTGGTGCTCCAATGGTGGAAACATTAGGGAATGGATTTAAACAAGAACATAGAATTACCATGATGCTACAAGTTACCAATAACTGATCTTATTTATTTGCTGTTTCAAAATTCCTTATTTTTAGTGCATTGAGAAATAAGTGTATAAACAACCCGCTTCGTTATGGTGACTCCACCATCAGAGGAAACACCTACAGATGCATCACACCAGAAACGGTTGTCAGTGGATTTGTCATTGCCAGCCCGTTGCCATGGTGTAGATATTGCTTTCGATGTGAGAGAAATAATTCCTCGTGACAAACTAAAACAGGAATTTAATGGTAAACTGGCTCAATATGGCAACTTTCCAGATTTCAAAAACGATTTTAGAAATTCTTACCCATCTCAAGTGTCAGATACATCTCCAATCTTGGAGCCCATCTCCACCATTTCATTACACACTGACCAGAAAGCAGTCAGTGACACAGCAAATTGTGCAGTTAAATTTGAAGAAGGTACAAAATCATCAGCAGACAAAAATTCAGAAAAGGATAGCATCTGCAGCAGTAGCCCCTCCAGCAAGGATCATTCAGAGAAGACCAAAGTGCCGGATGGAGGTTGGGGCTGGGTGGTTGTGATTGCATCACTTGTCATCAGCATGATTGCTGATGGTGTAAGTTTCTCCTTTGGGTTATTGTTCATACAGTTGCTGGATCATTTTGGTGAGAGCAAGAGCAAAACATCTTGGATTGGAAGTCTGTTCATGGCAGTCCCACTTTTATCTGGACCGGTTGGAAGTGCTTTGGTAGACAGGTATGGCTGCCGTTGGATGACCATTATAGGAGGCATTGTTTCTGGCATAGGTCTTACATTGAGTGCGTTTGCTGATTCTGTGGAGATGTTGTACATTACATTTGGTCTGATTGCTGGCTTGGGATTAGGACTGTGTTACGTGACAGCAATTGTTAGCATTGCTTACTGGTTTGATAAGAAGAGGACTTTGGCGACTGGTCTGGGCTCATGTGGCACTGGAATTGGTACCTTCATCTATGCACCAATGACGACTTACTTTATTGAAGAGTATGGATGGCGTGGGACGACGTTGCTCCTAGCTGGTACATTCTTCAACATGTGTGTATGTGGAGCACTGATGCGTGATCCAGATTGGTTGGTACTTGAGCAGAGAAAGCAAGCCACAAGCCACTTGTACAAATCTGGACGAGCATCTTCAAGTTGTGCCTCTGTATCTGGCCGATCAGATAATGCTGGTGACTTCCCGGGTGTAGATGGGATCCGCAAAATGCTCTCAAGTGGCCATTCGCCAGAATATGTGCTGACGACATTAGCTGCCAATTTGCAGGACACAGACTTACCCCCAGGAGAATCGGAGGTGGATGGTACAAAAACTCCAGCTTATAGTTCAGTTGTAAATCTCCCCACATTCATTCATAGAAGTGAGAAGGTTCCACTGGAAGTGCTGGAATCACTCTGCACTAAGAGGAGAGTGTTCAGTGTAATAATGGAAAATTATCCAAGCCTACTTTCGTGCAGAAGTATGTCAGATAAAGGTATCAACAAGCTTCCTGTAACATCACACTCAGTTTCTCACCGTATCCCAGTGTCAATGGAGGTCCACATTCCCAAGAAAGAAGAATCAATTCCAGCTTGCGAGTACGAAGGAAACGATGCAGAAAAACCTACTCAGCAGGCTACATCACCACTGCTGCCTAATGGAGGAGTGACACAGCCAATGAATATAATTCCACTGGCTACAGGGCCATCAAACTACCTAAAAGGCATCCGTATGCACAGGAATTCTGTAATGTACAGAGGCGCTATGTTGAAAATACACAAGTATCGGTTGAGAGCGTCATCCTGCCCTGATATCTATCGTAACTCTATGACCACCATAGCAAAGGAAACAGAGGAGAAATGGTATTCTGATATACTGGACCTTTTGAGGGACATTGTGGACTTCTCAATGTTCTTGGAACTGCATTTCCTATTTACATCACTTTCAACTATCCTGCTTTTTACATGGTTTATCGTCCCGTACTTCTATTTGGCTGATTACATGATGCTCTATGGATACACTGAAAATGAAGCATCACTTCTGCTCAGTATTATTGGCCTCACTAACTGCATTGGAATGATTGCTCTTGGATGGGCTGGTGACAAACCCTGGGTGAATGTAACCAAGTCATATGCTTTGTGCTTAGTGATGTGTGGTGTGGCAACTGGATTAATGCCACTAGTCATTACTTCATACTGGATGTTGGCATTACTTTCAGCTCTATTTGGTTTATTTTTTGCATCTTCATTTTCATTTACTCCAGCCATTTTAGTGCAGCTAATACCTCTTGATCGTTTCACAACGGCGTATGGACTGATGCTGCTTTGTGAAGGAATTGGAAATCTTCTTGGCCCACCATTAGGAGGTTTGGTTTTTGATCTGACTGGTTATTGGGATCTTTCCTTCTACTTAGCTGGTGTTTGGATTGTTTTATCAGGCATTCTCATTGCCCTGATACCCATCACGAAGAATCAAGTTATATGTGGCAAAGGAACACTTGAATTGGAAAAAGAACAAGATCAGGACTCTGTTGATGTACCATAAAACTTCTTAAGGAAAAAAATCATTTTCATGGAAAATGAGGCATCTTGATTCATGTTTGAGGCACATAAGAACCTCAGCATCCTGTAATACTCTTATTAGGTTGTGACACCAATCTAAAAAAAGCTGTTGGGTAAATGTTATGTATGTGAAACTTGTTTGTTGCAATTGTAATAAATAGCTTTAATCTCTTCAGTGACTGACGACCTAATGATAAACTGGCTTAATATACACAATTTCCATCAGAGGAACTTCACTTTAATAGATTTTCACAGCCTGATTATCAGTAAGGAAGAATGCTAAATAGGTTATGTTCAATTATTAATTGTATATTTGTGTATAATATTTAATTTTGTCTTATATTAAGCGCAATCAATATGAACAGAGACTGACCATAACTGGAGAGGTTCTTACTGGATTTGATAGTATTTGGTTTCTCTTAAGGATAAGAACACTTACAACCACGTTTATGATTGCAGAGCTCCAGGATAGTCAAAATAGCTATTTTGTAGCCAATAAATTAGTGTCAAGTGTCAGAGGTTGATGTTCACAAGGGGATAACGTGCTAACAGCTCTGATTATAATATGCAGTTATGGTCTAGGCAACACCAAAACACTGACAGTAATTTAGTAGTGACAACACAAATTCTTTTATCATTTTAGTATTTGAAATCATAATCACAGAAATAAAAACAAAATCTTTTGACATACCGTGTCTAGTTGAGTAGAATGTATTGGATATTATTGTGTTCATACAGCATGTGAAACACATTTGACAATTATACAGTGTGTCTTAAACAGATTGAGGCTATGCTCTTATAAATGCAGGTAGCATTAATATTAATCCTTTAAATTGCTTGCCTGTAATTAAAAATTTAATATACTCCTTCTTTTTACAAAGAAAGAATTATAGAAGTTCCTGAACTTTTTGTGAATGTTGTAGTTGCACAATTAAGTGGAAAAAATTCGTAGCAGATCTACTTCTCTCCTACACACATTCTTAGCTTTGCATAGCATAACAGTTATTGCTCCAAGTTTGACAGTTATTTTATTTTCATTGATAAAAAGTTATTGTTATCTAAATTAGTTGCACTTAAGTGTTAGATATGAGCAGTTAAAGTTAAAATGATCTGAGTGAGGAACAATTCCATAAATTCCCCAGAAAATGTGTCCAGACCTTAAATAAAAAGAGTACTCCATTAATTGGTTTAATTACATATACAGTTGTCACACCATAACCTACCGGAATCAGTTTTCTATTCTATGACTACTTATACCACATATATGCGAATAATATAATTCACCAAATAATCTGCGCACCCAAATTTTAAGGGGGGGGGGGGAGACTGGTTTTAATTTGTTTTTGTTTATACATTGTGTATCTTGCTGTTTAAGTGCAGCTTATATATCGAGTTGTTGCAGGATGGATGTTATGCCTCCGGGGGTAATAACAGCTAATTTTCCCTTTTTGTAACTTGTCTCGCACTTCCTCAATTCTGTCTCTAAAAGCTGCCCAGGACTGACATGGTACATAAATTCAGTAACGCTACAGGGTGACATTGCCAAACCATGCCACCCAGTCAACCGCAAGGTCATTGTCCATCCGCCCCTTCACGTTCACTGTCACCAATATGGCTTTCAGTGATCTTTTTGCAATAGTTTCTTTTACATTTTACGTTAGGTGGTAGCTATCATCCATTGCCAGTTACACACATCACTGTACACCTTTGCCACTCATTGCTGCCAGTTCGAATCATGACGCTGCAGTCCCCTTGGATCTGTATTAGCAACTTGCAATAATATAAAGGAATGTTTGCAGTGCAAATTTATCACTTAGTGATGAAAATTCACTACTTTTCCTCCAATCATCTGGCAGCTGTTGAGCAATGGTAGTTTTGCTCTGGAAGCCTAATCCATTGTGATGGAAAAATATTGATAGCCAGCCCTAGCTAACATTGAAACCGGTGATGCTTAGTTCTTTGGCTGAAGCCAATGCTTTGATTTGGCACCTTTCACTTGTCACTGGGCATCCACATTGTCACTTCTTGCCCACGTAATTGCAGAGCCTTTTTTCGAGATCCATATGCTTTGCTTTTTGGCTGTGAAATCGCTGGCGATTACAGTTTGTTTCTTGGAGGCGCATTTTGTTTTTTCACCATTCGCAAATAACACTTGCTCACATCCTACTTTATTCCCACTGCACGGTTTCCAATGTTCTCTGCTCCTTCAGTAATTTCAAGTTTTTTTTAGCTGTGTATGAGCAGTATTGAGAACATCCATAATTAATTAGTGGTTAATGCACTTCTAATGTGCTATTGATGTCACAGACTGAGGCCACGACAACACTATAGTATAATGGGATCTATTGTTGGAGGTGGACAGTACCAACCTTATTACAATTAATCTACACAACCCAGCATTTCATCCTTAAATTCAGGGTAAAAACGAAGCCCAGACTACTCATGTCTATACGGTATTTGAACTCTTCGATTTTGTGCTGAGATTGATTTCTAGATTCCTTATTCTAGTGAACATATAGCAGTAAGAGTACAAAGTGTATTTGGAATGGGATGTTGCATTCATTTGTCGTAGATAATTTTCTGAATGTTTTCCATTTGAGAATCCCTAACACAGTACTTGAAAGTCTGCTACAGTTTTTCTATAATATCTTCTGTTTTCATCAATGTGGAAGCAAACTATTCTTTACCCAAGTCTTTTTCGTTTGTAAGGATGATTTTTATCTTAGAATCATTAAAAGACTCATCCTAGGGCTGTGAAGAAAAATCTGTTAGAACGACTATTACAGTGGTAGAAAATTATTTATTTCATTTGACTGTTGTTGCAATTTGAAATGCAGCAGCTGCTTCTCAATTAGTTGGTTTGGCATTGTTATAGTTTTTCTTTGGTTCTTTTTTACTTCTGGAGAAAATTTTAAATTATCCATAGAAAAATATTTTAAAACATTGTGTTTGGAATATAATGTGACTTGTGGCTCCCAGTTTTGCAATAGAATTGAGAAAGATGTAATAGGATCTGTCTGCTTAATTGATTTTTCCCTCCTCTGCATTTCCTGAAATGGTTGATTGTATTAAAAGTGTGACGTTTAAGACTGTGAGCTATCAGTGAGTTATTGAGTTATCAAGTGAATTATTGAGTTATCAAGACAATGAAAATCTCAAATGCACATACTCATCAGTGGAAATTCACTTGGGAAACTGAATTAGTGGAAATAAGAGGTGAAATGAGCTTCATGTATGATAACAATATCTTAATGTCCATGAGTAAGGCATATGTTGAACAAAAGTAGTAGCTAATTGGTGGCTACTTGTCTCTAAATTACTGATGTAGTAAAATATGACGTTAACAATTGGATGTCGATTGTTAACCATTGTGATTAGAACTTCACAAGTGTATAGTAAATGCTGAAACCATGTCTACAATAAATCCTTTTGGATCTTCTGAATCTGTAACGACATTTTGCTTTCTTTTCTTAAGACACGAAATTTGAAGGATGTAGCAAAGAATTCTGCATCTTCGTCAATCATCCCGTTGAAAATTTACCTCCTGTGTAGGAGGCTTTTAGCAAGCTAGACAGTTCTGGATGTGATGTTTCTGGGTGTCCAGTCATATACTTCATTTAACTCATTTTTGAATGTCCTGTTGTAAGCATAATAAATTTGTTGTTAACTTTTGCATACAATAATTATTACACGCCATGCTGAATGACAGAATAGTGGTTTGCATCCTTGTGGCCTACAACGAACCACACCAGTATATTGATGCCCTTTTTCTGTGCAGTACAGGTGTAACAATTTGTACATACATGATTGTACACGATGACAATGTATTCATTCCAGCTTTTGCTGGAGATAATGAATGTGAATTTCCACACCATTAGAATTTCAAACTTTCCACAGAAAGTTATAATCATGCATGAAGTTTCTGATACAATTGATAAGTACTCCTATTTGACAGGGCAGATTTTTTTAAACATCACATAATTTTGGACTAATGATAAATGGTAGTATTGCACAAAATGATTTTTTTGAAATCTGGAGATGATCAGAATTCATTTAGACTGGTTACTCTCCTTCCTTGTGCTTCAATAATTATTAGTCTGTGGTAGCCTTAATTTCAGTTTATTGTGATCTTAAGAGATTAATATATTAGCATTTATACAAGGAAATTTGTAATTTTGATAGCATAGTTTGTCAAGCTGGTTATTGAAAGTGCATGAAGAAGTTCACAGAGAAAGTTTGATGCTGTATTGAAGAAATAGATCTTGTGCCTTTTCTTGTCTATATAGTGTATTGATTGATCTGTCTTCGCCAGTCATCATTCACATTTCATTGTTAAAATTAAAATTAATGTATTTACATAAGCAAATTGTTGTTTGTAGTATTCTCAGGACCATAATTGTATTCATTAGCTTTTTCATAGTGTCCTCAATTTATATGAAATGAGACATTACTTTTACAAATTTATTCTCAGAACTGTTCTAAAATTATTGCACTCAAATGTAGTGCTTCGTTGAATTTTGTAAAGTCTAAACTAAAGCAATAATGTTTATTCTACTAGCTATAATTATTTTTGTGTGTAATGTCTTTCATATGCTGTTATGGCATGTGATACATAGTGGTATTAATTAGGAAAGCTCAAAAAAAGGTAATTACTTGTGAAGATTTCATTTGATTTCCCAACTCTGTTTGAAATTACACATGACATGTACATAATCTGTGTCTTTCAAGTGAAGTGCTATATCTTTTAATTGTATTTATCTTGCTACAGTTTATCTCACTTTCACATTAAGAGTAGAGGAAGAGAGAAATTGAGACGAGGAAACCTTCATGCATGGAAATAAGATTCTCTCTCCCCTACATTACGGGTTATCAGACTGTTTATTTTTGGTAATCATGCAGTTACATTCTCTGCATTTGTTTAATACTGATCAGATGCTGTAAAGCCAAAGTGATATTATTTTACAGATGACATATTTCTTTATTTGATGAAGAGTCAGTGAAGTATCTATGATCAAACATTATTACGCCTACTTTGAAATGTAAATACATACTGAAATTTTGTTCTGATACAAAATTCAGCGACTGAAAATATTGTGGTTGTAATAATTATATATATCACTGAAATCATTTTTTTTAATTGTTCATATCATCTGCCATGTTCCTCTCACTAAGTGTTAGGCAGACTAGGCTGTGATTGTGAAGTATTGTTTGGTTTGTTGTAGAAAGTTTCTCTTTATTTCTGTCAAAGTACAACTTACATTACCAAAGTCCTGCTCAGTATTTTAAGTAGATTCTATTGAAAGTACTAATGTAAGTACTCACAATTTAAAGACTGTAGTAGTATCATAATTATACATTTATTATTAATTCATTTAGTAAAAAAAGAATTTATCTTGTAATTTGTTAAACACAAATTAAAGGGGGCTGTCAAGTTTATTGGGTGTAATGTAGTGCCTTTCAAAATGAAAATTTTAGAAATACAGGTTTATTGTGAGACTGATCTCTTGTCTTTTTTTGTGAAATAGTATTCATTGGTATTGACTTGTTTAAAATTACAAGAACTCTGATTGTGTATGTCGCATTTTTGCCAAGACATAAATTTCTCAAATGTAAGTAGTTACAGTAAATGATTGGTAAAATTACTAACAACAGGTTTCATTGTCTCAGAGATGATTATAGTTACAAATGAAGCAATAATGTTAAAAATTTATATATAAAAATTTTTTGATGGCCAGTTTGTACATATTTTTCTGTCCTCAGTGGAGCAGATGTGTTGAGTCCACAAGTAAAACAAGCAGCTACTGCAGGCCAGTTGCCTGGCCTCATTGAGTTTAATCGTA +>MW362430.1 Lactobacillus acidophilus strain BCCS A50 16S ribosomal RNA gene, partial sequence +ATTCACTTCGGTGATGACGTTGGGAACGCGAGCGGCGGATGGGTGAGTAACACGTGGGGAACCTGCCCCATAGTCTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAAGAAAGCAGATCGCATGATCAGCTTATAAAAGGCGGCGTAAGCTGTCGCTATGGGATGGCCCCGCGGTGCATTAGCTAGTTGGTAGGGTAACGGCCTACCAAGGCAATGATGCATAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGAAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGTAGTAACTGGCCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAAGAATAAGTCTGATGTGAAAGCCCTCGGCTTAAC +>XR_006102310.1 PREDICTED: Sceloporus undulatus uncharacterized LOC121923102 (LOC121923102), ncRNA +TGGCGAGGAGAAGGAGGAGGGGGAAACAGGAGGAGGAGGAGGTACCAAGTATCAGGTTGTGGCTTGCATCAACAGGTCCCATGCACCTGACCAAGAGAACAGGCTTTCTATTGCTCAGGCTTGTGATATACAGATGAAGGTAATAGACTGGAACCGTGAAATGCAGTTGTGAACTGCTAAAGCCTCATCGAAAGTTTACGCCAACAACTGCAATTTTATAGGCACTTCAGGAAAAGAAGACAGCATTGGCCATTTAACATAGCAGTAATGTTTGTTTTCCTTCTGCCAAGTATACAACATTATGATTAAGAAAGAGAGGAGCCCATAATTTTTCTTGGTTAACATGGGAACGCAAAACAGGAGGGTGTGTTTATCTTGTTTAATGTTTTTTCTCTCCTCTGACCTCTAAAAGGCTTTAAGTAAATTTTGTGGTAAAGCAAAGCACATGAGCAGCGAGGGAGTCTCAGACAGTTATAGTGTCTGAATACACTCTTTGTGGTATTGGCAAAGATGCTGTGATTAAGAATTGGCAAGCTGGTGGCTTCGACTGATAGAACTTTTATTTTCCTTCCAAGAAACCTGCAACATGAGGATGGACAT +>JF772131.1 Bacillus sp. NA-107 16S ribosomal RNA gene, partial sequence +ATACATGCAAGTCGAGCGGACAGATGGGAGCTTGCTCCCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATGGTTGTTTGAACCGCATGGTTCAAACATAAAAGGTGGCTTCGGCTACCACTTACAGATGGACCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTACCGTTCGAATAGGGCGGTACCTTGACGGTACCTAACCAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAGAGTGGAAGGTGTATGGTAACCCTTGTTGTGTGGGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGT +>XM_047969201.1 Xylaria bambusicola uncharacterized protein (F5B22DRAFT_156494), mRNA +CACAGAACGACATCTCAGGTGAAAGAGGTGAACATCATCTAAGACATTATCGGATTGGACGTAACCATGTCACCAGATCGAGTCCCTAGTAATCGAGTTCCGCCTCGCCCGAAGACGCCTACAGACTACGTCCCTACGCCGATTCGTGCAAAAATAACCCCCTCAGAGACTTTCAGCCACCTCGTGAATAAGAAACAGAGATCCGCCAGAGTGCACGCGCTTGCTAAAGAGCGACTCACAAGTTCTAGGCCAACCACGCCTCGGACCCCTACTACCGTAAACTCCATTATCAAGTCCGCAAGAACCAGCCGGTCCGCTCTCAGTTCCGCAGGCAGAAATATAGCGTCCAGCCTTTCAAAGGCAAAGCCGGTGGTGGAAACAGCAGTCGCAGCCAGCAAGAAGGCTGCCGTCACAACTGCAAATCGCTTGACAAGAATGGCAACTGATGTGCCGAAAGTGGCCAAGCAGAAGGGAAAGGAGGTCGATGTATTGTCGACTCCATCTAGCTCATCATCGCAAAAATCACTGTATCATCGACCTAGGCTGCCCAAGCTCAAGATCCCCGAAGTTGATGCTGCAGTAAGAGACGCGTTAAATAGTGCATGTTCAACTGATACACAGAACAGCGAGAACTTTCGAATACTCCAAATTTCGCCCACGAGCCGAGAGCTCGAGTATGAATGGCAGAACGATGATAACCCACCTGACGTTGCTGCAGAGTTTCACAACATGTTAAGCGCACGCCGCAGAGTTCGTAAAGGTAAGTTTGGATCGAGGGTCACAAGATATTGCCGGGAGCGGCCAACCTGGCAAGACAGTTTCGTTGCCAGAGCCCATCTCGATAACCACGAGGATAGGGCGCTGTTGAAAGAGCTTACAGACGCTGTCCAGGAACAAAAGGATTACGCCGCCCGCCTAGTACAGAGAATCCCAGATCGTTTCCCCGGGCTCGAGGCTGTATCTGTGCCGGGGTCAACATTAAAATTATACTGGCAACACAAAAGCACATGGCCTAAGCAGTAAGGGCTCATGGGAATGATGGTCCATTCAGTTAATGATAGAACTGGCCGGTTCCAGGGGTCAAATATGGTCAAGTATGCGTACTCACTACTAATATAGATCTAGACTGTGATTTTGTGTCTA +>AB726205.1 Uncultured fungus gene for 18S rRNA, partial sequence, clone: a70-1 +AGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGATCAATTTATCGGTCGTGCCTATGGTATGAACTGGTACAATTGGTTTCTCCCTTCTGACGAAGCATGATGTCATTAATTTGGTGTCGTGGGGAATCAGGACTGTTACTTTGAAAAAATTAAAGTGTTTAAAGCAAGCATTAGCTTGAATACATTAGCATGGAATAATGTAATAGGACGTTTGATCCTATTTCGTTGGTTTCTAGGATCGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTTAATGACTCA +>KX928124.1 Williamsia sp. strain AC048_ELMA209 16S ribosomal RNA gene, partial sequence +GCTGTGGATTAGTGGCGAACGGGTGAGAACACGTGGGTGATCTGCCCCAAACTTTGGGATAAGCCTGGGAAACTGGGTCTAATACCGAATATGACCACTGGATGCATGTCTGGTGGTGGAAAGCTCCGGCGGTTTGGGATGGGCCCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCACCAGGGACGAAGCGAAAGTGACGGTACCTGGAGAAGAAGCACCGGCCAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTGTCCGGAATTACTGGGCGTAAAGAGTTCGTAGGCGGTTTGTCGCGTCGTTCGTGAAAACTTGGGGCTTAACTCCAAGCGTGCGGGCGATACGGGCAGACTTGAGTACTACAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGTAGTAACTGACGCTGAGGAACGAAAGCGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGGTGGGTACTAGGTGTGGGTTCCTTTTCACGGGATCCGTGCCGTAGCTAACGCATTAAGTACCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGCGGAGCATGTGGATTAATTCGATGCAACGCGAAGAACCTTACCTGGGTTTGACATACACCAGAAAGCCATAGAGATATGGCCCCCCTTGTGGTTGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAAC +>XM_023377893.1 PREDICTED: Centruroides sculpturatus glutamate receptor 2-like (LOC111633339), mRNA +TTATAAATCTATTCATGCCACAACGGAACTTCAAAGGCTAGCTACGAAATACGAAATTACACTGCTTTCTATTCAGAGATTTCCTTTGTCTGACTCAAAATCTCTCGATGTAACACCACAATTAAACGCCATTAAGGAAAAGGACGTGAGAATAATAATTCTTTATTGTGATATAACGATAAGTAAAACTGTTATAAAGCAAGCTGAACGCATGAACATGTTTCGTTCTGGATGGACCTGGCTCGTCATGGATAGCATTACATCGTTCAGTCTTAAATACTTATCGGACGATGACGGATATATACCATCTTCTTTAGTCGGATTAATAGGAACAGCATTTGTAGTTCCTGATACCATTTTGTATTTAAAATTAATGAATCAATTAAAAGCGAATAATTTGGAAAATCATATAGAAAATCAGCAAGCTATCACTCGTGTGTATGATGCAGTGTTAGCAATTGCCAACGGACTTCACAGAATTCTTTACGAAGAGAAAGTATCTTTCGAACTTCCTACTTTCCAAAAAGGAAGTTGCGCAGATTCTGTCAATGACTGGAAATGGGGTAGAAATTTGTTGGAAAGTATTCTTAATTTGAATAACGTTAATGGAAGTTTAGGGCCTATAAAGTTCACGAAATTTGGTTACCATCATCTCACCAGTTTTGACATCGAAAACCTTCAAACGAGAGGTTTCGTTAAAGTAGGAAAATGGTTAGGAAACGAAAAACACTTGACAATTAATTCAGAAATCATATTTCCTGGGCAAACTGTGAAACCTCCTGATGACTCTCATCACAGTCTTCACGGAAAAACTCTTAATATTGGAATAGTTATAGATGAGCCCTTTATAATGAAAATCCCTTATTATAAAGAAGGAGATCCTATACATTCTAAATACGAAGGATTACTTATAGACCTTCTTTTGAAATTACAAGAAATGCTTAACTTTAAATTTAAATTTCACGAAATAAAGGAATATGGAATTGAAAATCCCAAAACAAAAGAATGGAACGGATTAGTTAGACAATTAATGGATAAGAAAATAGATTTGGGCCTAGCTGCCTTCACGGTATCTTGGAAAAGACAAGAAGTTATCACCTTTACAGCTCCTTACTACGATTTAGGTTTGGCTATATTAATGCCAAAATATAATGCAAAAACTAAACAAAATTATTTTGCATTTTTATCACCTTTCGAAACAACAGTGTGGCTTACCATTGCTGTGTCGGTGATTTTTACTTCTCTAGTGCTTGCAATATGTGTAAATTTAACACCAAGTAATTTTAACAATAGAAGAAAGGAGATAAGGAAAACAAGTCAAAGCGTTAGAGATTCTTCTTGGATCACTTTTCCACAAGCACTTTGGTGGAGCTTCTCGTCGCTTGTAGCCCCGGGAACAGAATTTGAACAACAAAAGAATCTTCCGGCAAGAATTGTAATGGTGACATGGTGGCTAACTACGGTTATTCTTATTGCAGCATATACAGCAAAATTGGCAGCATTTATGACAGTCCAGAATATGAAACAAGAAATTAATTCTCTGGAAGATTTGGTGAAATTGAGTTCAATTTCATTTGGAAGTCTGAATGATTCTTATGTTGAGAACTTCTTCGCCAACAGTCACTGCGAAACGCATAAAATAGCTTACAAACTGATGAAAAATTATAATACATTCATAAACGATACTTTCGAAGGCGTAGAGAGAGTTAGAGCATCGTATTATTTGCCAGAGGGCCACAAGGATCGTTTTGCTCTTATTTCTGATTCACCACTTGTGGATTACGCTTCTATGCAGAGGCCATGCAATGTCGAACGAGTTGGAAGACTTTTTGGATTAGTAAATTATTTTTAA +>XR_004836665.1 PREDICTED: Folsomia candida uncharacterized LOC118438235 (LOC118438235), ncRNA +CTGAGAACAAGGCGATGGGGATGAGCAGCATAATACTGGCTTCGTCGGGGGCGAGGGTTTTAATTCTACGGTAAACTTGTACTTTCGTTTCGAGCACAGGGTTTGGAGTGAAGCCAAAACTTTCTTCGGGCTAAGGTCTGTCATGAAACTTTAAGCAACTGTCGGTTGCACCACAGTCGGAGAACAGAACAACAGCAACCATCAACATGATACTGGCTTCATCCGGAGCATTGGTCCGAATTCTTTTGTGAAGTTGCATTTGCATCTCTTTCACCCCGTCGGCACAATTACAGGCACATTCGCCACCCTGCACAGAAAAATACACATATTCAAAAAGTGTACACAGATTTCTGAAATTACATATGTAACTTCTTAGTGGAAAACCAAAATGTGTATAAATTTTGAACCAAATTAAAAATTTTGAGGATATTCATCATGTTATAACATGAAATGTATATATTTCACATTTATCTTGCGAATTAAAAATGGTGTAAAAATTATTAATATGCA +>XM_039871033.1 PREDICTED: Pteropus giganteus Scm like with four mbt domains 2 (SFMBT2), transcript variant X6, mRNA +CATATCTCCTTCTGCAGACTTCGACCAGTTGGTTGGTGTCAAGAGAATAAATACAGAATGGACCCACCTTCAGAAATCTATCCTTTGAAGATGGCCTCTGAATGGAAATGTGCTCTGGAAAAATCCCTTATTGATGCTGCAGAGTTTCCTCTTCCGGTGGAAGTGTTTAAGGATCATGCAGATTTGCGAAGCCACTTCTTCACAGTTGGGATGAAGCTCGAAACAGTGAACTTGAGCGAGCCCTTTTCTATCTGTCCTGCATCAGTGACCAAGGTTTTTAACAATCATTTTTTTCAAGTGACTATTGACGACCTGAGACGAGAACCTAGCAAACTCTCAATGCTCTGCCACGCGGATTCCTTGGGGATTTTGCCCGTGCAATGGTGCCTTAAAAACGGAGTCAATCTCACGCCTCCCAAAGGCTACCCTGGTCCGGACTTTGACTGGGCAGATTATCACAAGCAGCATGGAACAGAAGAAGCACCTCCCTTCTGCTTCAAAAACACGTCATTCAGTCGGGGTTTCACAAAGAACATGAAACTGGAAGCCGTGAACCCCAGGAATCCAGGAGAACTCTGCGTGGCCTCTGTCGTCAGCGTGAAGGGGAGGCTGATGTGGCTTCGCCTGGAAGGCCTGCAGACTCCCGCTCCGGAGTTTATCGTTGACGTCGAATCCATGGACATCTTCCCAGTGGGCTGGTGTGAGGCGAATTCTTACCCGTTGACCACACCGCACAAAACGGTCTCACAAAAGAAGAGAAAGATTGCAGTTGTACAACCAGAAAAACAGTTGCCATCCACAGTGCCTGATGAGAATATACCTCATGATCTTTACTTATTCCCTCACTTGGACAACACAGGTACTGTCAATGGGAAGTACTGCTGCCCTCAGCTGTTCATCAATCACAGGTGTTTCTCAGGGCCCTACCTGAACAAGGGGAGGATCGCAGAGCTGCCTCAGTCGGTGGGGCCAGGCAAATGTGTACTGGTGCTCAAAGAGGTTCTTAGCATGATAATCAATGCAGCTTACAAGCCTGGAAGGGTCTTGAGAGAACTGCAACTGGTGGAAGATCCACACTGGAATTTTCAGGAAGAGACACTGAAGGCAAAGTACAGAGGCAAAACGTACAGGGCCGTGGCCAAGATTGTACGCACGTCTGACCAGGTAGCAGACTTTTGCCGACGGGTTTGTGCCAAGCTGGAGTGCTGTCCAAACTTGTTCAGTCCTGTGCTGGTTTCTGAAAACTGCCCAGAAAACTGCTCCGTTCATACCAAAACCAAATACACCTATTACTACGGGAAGAGAAAGAAGATCATTAAGCCCCCAATCGGGGAAAGCAACGTTGAGAGCGGATGCCCGAAACCAGCCAGGCGTCGGAAACGGCGAAAATCCATTTTTGTGCAGAAGAAACGGAGGGCTTCTGCCGCAGACTTTGCCGCAGGCTCGGGGGAGGAGAGTGAGGAGGAGGAAGCGGATGCCGTGGACGATGACACAGGGAGCGAGGAGACCGGCTCCGAGCTCCGGGATGACCAGACGGACACCTCTTCGGCCGAGGTCCCCTCCGCCCGGCCCCGGAGGGCTGTCACCCTGAGGAGCAGCTCCGAGCCTGAGCGCCGCCCACCTGTGGACAGGGCACGACGGGGCCGTCGCGTGCAGGCCACCTCCTGTGCCGTGGGCGACAAGGGCCCGGCAGCCGGCCAGGACACGGCAGAGGAAATAAAACAGGAGGAGGAGGGGAGACTGGTTCTGGAGAGCAACCCGCTGGAGTGGACGGTGACTGACGTGGTGAGGTTCATTAAACTGACGGACTGCGCCCCCTTGGCCAAAATATTTCAGGAACAGGACATCGACGGGCAGGCGCTCCTACTGCTGACACTTCCCACCGTGCAGGAGTGCATGGAGCTGAAGCTGGGACCCGCCATCAAGCTGTGCCATCAGATCGAGAGAGTTAAAGTGGCTTTCTACGCCCAGTATGCCAACTGATTCTACCTTCAGGGGATGTGGCCCATTGTGTTGGTGATGCCGCGTCTTGGGAAGGTTTTCGGGACTGGAACTTTTATTTTTCTGGGTTATGAGAGATGGTTCATATACTGTTACTGAAAAGCAAGAAGCGTGAAGGACCTCCTTCACTTTCATCCACCAGCCTGTTTCATAGTTTCATGTTTTAAAGCTCATGCCAGGACCACAGCAGTGGCCTCTGGAGAGTGTAAATTAAAGTTCTGTGTCAGA +>XM_028176078.1 PREDICTED: Bombyx mandarina disheveled-associated activator of morphogenesis 1 (LOC114244323), transcript variant X2, mRNA +GGACGCGATGCCTGGGTCGCTCAAACGTACGATTCCGACGAATTGACGATTTTGGGCTGAATACAACGAGGACGCAGTGCTTTAAAAAACAAAACAAAAATTTTGACAGTTAAAATTACGCGCGTTTTTTAATCTGTGGACAGTGCTTTAATGGTATTTGTGGGAAAAGTGTGCATAGTTTTTCGGACAAATACTTCGGTTGTAAAATGATGATTGAAATCGAGTGATAGATGTAAAATGTGATAAAGTGAATAAATAGTTAATTGATAGCAACAAGACAGCAAAATGTGCAGCAAGGATCAGATCAATCACATACTCGGGAAGATCAATGTGGGTCTGCCGTCGTGGTCCCGCGGTGTGGAGGCGGTGGAGGCGGCCCGGACGCGTCTGGTGCGTTGGGCATGTGGCGACCCACCTATCGAGCCTGACCCGCCAAGGAAGAAGATGCCGCATGCGCTAAGACGGAGGTGGCCGCTCTGTCCTTGTTTACAGAATGACGAACCGCCCGAGATCACGTACTGCGTGGTGGGCGGCGAGGGAGGTCTCGCCCTCCAAGCGGTCACCCCCACGCATCCCATGCCCCCGGAAGATGAGCTGGACGCCAAGTTTGCGGAGCTGGTCGAGGAGTTGGACCTGACAGCAGTTAACAAGGCCGCGATGATGGCGCTACCGGCTGCCAAGAAATGGCAGATCTACTGCAGTCGTAGGCCGCCACCGGGCCAGGCGCCTCCACTGGCCACCGCACCACAAGTCGAGGAGTACATCAAGGCTCTTAACGAGATCGCTGATGCATTTGCGTCGTCTGAAGGCGTCCCCCCGACGGAATCCTGCGGCCTACTCGAGGGCCTGAAGACAGCGCTCAGGACGAGGGCTCACAGCTTCGTCCTCCGGTTTATCAAGCAAGGAGGACTCGGTGCCATATTGGACGCGTTGCAGAAGGCGCCCAGGGACGATGCTGTCACGAGACATAACCTTATAGCTGCCATAAAAGCCTTGATGAATAATTCGACTGGTCGTGCTCATGTATTAGCTCATCCCACGAGCATCGATCTGATCGCTCAGTCCTTGGACACGGAGAACGTGAAGACGAAAGTCGCAGCACTTGAGATACTCGGCGCTGTATGTCTTGTCCCCGGGGGACATAAAAAGGTGCTAGAAGCGATGGTCAACTTCCAAAAGTATTCCGGCGAGAGGGCCCGCTTCCAGAGCATCGTCAACGAGCTGGACCGCAGCACCGGCGCCTACAGGGACGACCTCGGCCTGAAAACGGCCATCATGTCGCTCGTCAACGCCGTGCTCAACTACGGGCCCGGCGAGGAGAGCCTCGAGTTCAGGCTCCATCTGAGATACGAGCTGCTCATGCTGGGGCTTCAACCAGTGATCGAAAAACTCCGCAAATACGAAAACGAGACGCTGGACCGGCACATCGAGTTCTTCGAGATGGTCCGCGGCGAGGACGAGCGCGAGCTGGCGCGGCGCTTCGACCGCGAGCACGTGGACACCAAGAGCGCCTCCGCCATGTTCGAGCTGCTGCGCCGCAAGCTGGGCCACTCCGCCGCCTACCCGCACCTGCTGTCCCTGCTGCAACACCTGCTGCTGCTGCCGCTGGAGTACGGCCCGCAGTCCCAGCACTGGCTGTTGCTGGACCGTGTGGTGCAGCAGGTGGTGCTGCAGCAGCCGGCGGCGGGGGCGCGCGCCGACAGCGAGCAGGGCAGCGAGGGCGGCAGCACCAGCGACCAGACCAGGATATACGATCCGGACGTGGCTCCCCTCGAGATAAACGTCGGCGAGATAGTGCATTTGCTCGCCAAGGAGGAAGAGCTCGTCGCCGCCAGGACCAAGGCCGAGAATCTGGAACGGGAGAACATCGACCTGGCCACAGAGCTGGCTAAGAAGTTGACCCAAGAGAGAACCGAGAGAGCGAGATTTGAAAAACTAGTCAGCGAGGGAAGCATACCTGATGATGCTAAGGTGAACAATCTGAAGAACGCGGTGATCGAAACGTCATCGGTACCTCCCCCTCCTCCGCCGCCGTCAATGTTCCCCGCGCCCCCCGCCGTGCCGGCTCCTCCCCCCGCGCCGCTCGCGCCTCTCGCCCCCCTGGCGCCGCTCGCCCCCGCCCCTCCCAAGCCCAAGAAGAACGTCCCCACTCCCGGGAACCCGCTCAAGAGCTTCAACTGGAGTAAATTACCTGATACCAAGCTGCACGGCACGATATGGCAGGAGCTGGACGACACGAAGCTGTACAACGCGATGGATCTGCACACCATCGACAAGATGTTCTGTGCCTACCAGAAGAATGGCGTCCAGAACGAGGGGTCCGTCGAGGACCTCCGCCAGCTCGGGTCGAAGCCCAGGACGAAGATACTGTCCGTGATAGACGGCCGCCGCGCCCAGAACTGCACCATCCTGCTGTCCAAACTTAAAATGACCGATGAGGAGATTTGCAGAGCGATCCTCAAAATGGACAGCGGCGAACAACTGCCCATCGATATGTTGGAGCAACTCCTGAAGTTCACGCCGAGCGCCGAGGAGGCCGCCATGCTAGAAGAGCACCAAGATGAACTGGACAGCATGGCGAGGGCGGATCGCTTCCTCTACGAGATCTCCAAGATCCCGCACTACTCGATGCGGGTGCGCACGCTGCTGTTCAAGAAGCGGTTCGCGGCGGCGAGTGCGGAGGCGAGCGGGCGCGCCACCACCGTGCTGCGCGCCGCGCGGGACATGACGCGCTCGCGCCGCCTGCGCGCGCTGCTCGAGCTGGTGCTGGCGCTCGGGAACTACATGAACAGGGGAGCCCGCGGCAACGCGTCAGGGTTCCGGCTCTCGTCACTGAACAAACTCGCCGACACCAAGTCCAGTGTTACAAGAAACACCACGCTCCTGCATTTCCTGGTCGAAATGTTGGAGACACAGTTCAAAGACATACTGCTGCTCGAGGAGGATTTACCGCACGTCCGAGCCGCGGCTAAGGTTTGCGTGGAACAACTGGAGAAGGATGTGGGTGCTTTGAGGAGTGGCCTCCGTGAAGTCGCGAAGGAGGTGGAGTACCACGCGTCGCTGCCCTCTCCGCAGCCCGGTGACGCCTTCCTACCAGTCATGAGGGAGTTCCATGCGCATGCTGTTTGTACCTTCACACAACTGGAAGATCTTTTCCAGGACATGAAGAGTCGTCTCGAAGCATGCGCCCACGCCTTCGGTGAAGAGACAAGTGCGTCCCCGGAGCAACTGTTCGGCGCCATGGACGCGTTCCTCACGCAGCTCGCGGAGGCGCGCGCCGAGTGCGACGCCATCAGGAGGCGCCGCGACGACGAGCAGCGCCGGACCAGGCACGAGCAAGAGTTGAAAAAGCGTACAATGGAACGTAAGCAATCAAACTCGCTAGGCTCGGTGAGCAAATCCCTAGCGAAATCCAACGGGGATTGCAACGGACACTCCAACGATAGCTCCCGGGACGGCACCATGAGTAACGGACAAAAAGGAGAGTTCGATGACCTTATATCCGCATTACGAACAGGAGATGTCTTCGGAGATGACGTGGCCAAATTCAAAAGATCAAGAAAGACTTCCAAAGTCACTCAGAAGGGTCGCGACTCTCCTCCCAGGGGCGTGTGCAGGGAAGACTCTAGGGAGAGACAGAAGAATTGAGATTGACAGCAGTTATTGATGTGTCAAAGAACGTGAGTACGGCTCTATGCGTGAACGTTGCTTGTAAGTACAGAAATTTGTTACACCAACTTTTCTGTTACTAGAATCGACCACATGTTTGTCAATATTTCGAAATACCCTCAAATAAATAATTAGGCATTAAACTGTAAGTTTTGAAATAGTATACATGTACTTATTCGTCGATGCTAATTAAAGTTTGGGAACGGAGAGCCGATGACCGTCATACGTCGGAATATCGATTAGAATGACTGCTTTAAAATAATCGATTAGTATAATTGTAACAAGTGATATTTTCGAAGTAGATTAGTTTGGACGGTGATGGTGTGTACGTCACAAAATATTTAGAGATTTATACAGAATAAAAGATAGGACGTTTAATGTGCTAAATACCAATTAATTAGCGTGATCGCTTATATATTAAATCGATTAATAAATAATCGATATTAAATCGACTAATAAATAATCGATATTAAATCGATTAATATATAGCAGAGTTAATTTAATTGTTACACAAATGTATTAACTATAGACGATGGAATAATTTTAAACGAAGTCAGCATTAACTATTAATTTAGACCTTAAATTGCAGTGGATAAGGACTGATCTGTGATTTCACAAATTGTTTACCTTGTGTCTGTTTTTAATTATCACAGGTATATGTTTGCGGCTTGGTCTTAATTAATTAATTTCATAATAAGTAGCGTTTTGCCTTTAATACTTTGTAATTTTTGTATGCATTTTACCACGTATTTTAGTGGTGTTTTTTGGTACTAAAATAAAGTATTTTGAAGAGTATTTTTTTTGTAATAATTTTTGCAAAAATTGAAATAATTGTAGATTGAGATACAGTTTCAATGTTTTGTATTTTTTCGTAACGACTGAAGTAGTGAAAAGGCTGCAAATAAATGATTCCGTAAACAATTTTTTTTGATAGTCTTAATCTTACTATAGAGCTATATGTGTTTGTATTATCTATGTACGTAGTATTTAGATACTGTATTTAATGCGTTCGATTTGACACCGTACCCGGTGTTGCCAACACACAAAAACAAACCTAACATATCCCCGTTAGG +>XM_042445786.1 PREDICTED: Sceloporus undulatus transmembrane protein 258 (TMEM258), mRNA +GAGAGAGGAGGCGAGAGGGGACTTTCATTCTGGCCTGGACAGGAAGTTCCCGGATGGATTTCCGGCGTCTCCGCCGAGGAAGAGACGTGTCCCTGCGTGGCCTGGGAGGAGGAAGAGGAGCCTGAGCTGACTAGAGAAGGGGCCAGGGAGCAAGATGGAGCTTGAGACGATGAGCAGATACACCAGCCCAGTGAACCCGGCTGTGTTTCCACATCTGACCGTGGTGCTCTTGGCCATTGGCATGTTCTTCACTGCCTGGTTCTTCGTTTATGAAGTGACCTCTACTAAATATACTCGGGATATTTACAAGGAACTGCTCATTTCCCTGGTGGCTTCACTTTTTATGGGCTTTGGAGTACTCTTCTTACTGCTCTGGGTTGGAATCTATGTTTGACAATAAGCCAAGAGCTGTTTCAGGTTCCAGAAGAATTGCTGAAGTTTCTTTTTTATTTTTGTACTTAATGTAGCTCATCACACCTGTAGTCTGTGTAAATCCTGACACATTGTTACAGCCCAGAATATCGTAACATCAGATGAATAAAGCTGACTGTGATGACATGAA +>XM_024284361.2 PREDICTED: Oryzias melastigma peptide Y (LOC112153899), mRNA +TCTCTCTTCCTGATAATGTAATCAACCGCGCGCGCGCGTCAGGTGTCCGTGGCTCTATAAAAGCCTCAGATCCGCGAGGAGAGGAAGAAGAATCCACGGAGACACCAGTCCAGCTGACGATGGCCAGAATCCTGAGGTCGTGGGCGATGCTCGCCGCGCTCGTGCTCTGCCTGCTCGTGTGTCTGAGCAGCCTGGCGGACGCCTACCCGCCCAAACCGGAGAGTCCCGGGAGCAACGCGTCACCGAAGGACTGGGAGAACTACCAGGCGGCGGTCCGGCATTATGTCAACCTCATCACCAGGCAGAGGTACGGGAAGAGATCCTCCCCTGAGCAGGCCGCGGCTTGGCTGCTGTTTGGGGCGGATTCAAGTCAAGATGCTGAGCCCCGGTCTGACTACGTTGAACCGTGGTAAATGAGCTCAACTCTACCCTGCACTACTGGACAAGTCCTCTAGATTTGATTATTTAATGAGCATGCAAATTTCTTTCTCTCTCATCCTGTTTGTCTGCTGCTGTCAGTAAATGTTTGTCCTTTTCTCAAAATTTGTAAATAAATTCTTGTATGTAAAATAATCTCTTTACAATAAAGATTTAAGTGGA +>XM_004989695.1 Salpingoeca rosetta mitotic checkpoint protein BUB3 (PTSG_08955), mRNA +CGTTAATAACCGCCAGTGCCAAAAAGGAAAGGAAGCACAGAAGACCGTGAGGAAGCACAAGCACACGACACCACACCACACCACACCACCGCACGCACACCGACACACCACACCACTCGCCAACATGACGGACACTGAGCTTGTGTCGCCACCCCAGGATGGCATCTCCTCTGTTGTGTTTTCTCCGACCAGCAACTTGCTTCTCGTTGCTTCCTGGGACAAGACGTGCCGGCTTTACGACGTGGACTCCAACACGCTCAAGTTCACGTTTTCGCACGATGCACCGGTGCTGGACTGCGCCTTCCTCGACGACACAACAGCTTTTGGTGCGGGGATTGACAAACAGCTGCACAAGTACGACTTGACGACTGGCAAGAGCTCCGTTGTCGGGTCGCACAGCGAGGCCATCAAGTGTGTGGAGTGCTCGATCAAGCACGGCGTGGTCATAACCGGCAGCTGGGACAAGACCATCAAGCTGTGGAATCTCGAGTCCCTCGAGTGCGTCGGCGAATACGCCCAGCCAGACAAGGTGTACACGATGGCGTTGGCTGATGACCGCGTGATCGTCGGCATGGCTGGTCGACACGTGTGGGTGTGGAACCTCAACAATATGAGTGCGGTGGAGCAGCGACGAGAGTCGAGTGTGAAATTCCAGACCCGGTGCATCCGTGCAATGCCGGACGCCCAAGGGTATGTGCTCGCGTCGATTGAGGGCCGTGTTGCTGTGGACTATCTCGACCCGTCTGAATCGTCGCAGAAGCGCAAGTTTGCGTTCAAGTGCCACCGCTCGAAGGAGAACGGGCGTGATGTCATCTACCCGGTCAACGCCGTCGCCTTCCACCCAACCTTTGGCACGTTTGCGACGGGCGGGTGCGATGGGCTCGTGAACGTGTGGGACGGCGTCAACAGGAAGCGCGTGTACCAGTTCCACGAGTACCCGACGAGCATTGCGTCGCTGTCGTTCAACCACGACGGGTCGCTGCTCGCCATTGCCGCATCGTACACATATGAGGAGGGCGACAAGCCCCACCCGCCCGACGCCATCTTCATTCGTCGAATCACGGAGGAGAACGTCAAGCCAAAGCCACGCTCATAGACACACACGCGCGCACGCACACACACACGCACACGCACACGCACACGCACACGCACGCACACTCAAATCAACACACGCACCATATGTTCCACGTTTTTTTCTGGTGTTGTTTCTTCACTGACTAACAATACAATCACGTTTCGTTTCAAACAAATGAACAAGAAACAAGCAATAGC +>XM_002366755.1 Toxoplasma gondii ME49 hypothetical protein partial mRNA +ATGTTCCATCTAGCCTGGGTTGTCAGTCGAGAGATCCCCTTCTGTTTCGTCTCAAGCGTCTCAGCTACTTTGCCTCTCGCTCTGTTGCCTGTAAAAACGCTTTGTCAGAAACGATCTCTTCAGATGCAGAAGGAAGTTGAACAGAGAGGCTTGCTCCGTCTTGAGCAGTCACGTCTCATCCAAAAGGTCAAAGAGGAAAGCCAACTCATGGAGGAGTACGTGGTCGAAATCGACCGGCTAAACAACGTCATCAACGTCCTTGAGAAAGAAATGCTCAACACCAAGAGGGTGTATCAAACAGCGATTGAGTCGCGAAATCTCACTGGCATTCAGCTGATTGACAGGCAAGCGCAAGACAAGGACACAGAAAAGAAAAGCCAGCGCGCCCTCCACGAGAAAGAGCAGGATGTCAACACGCTCCGGCTTCAACTGCAAGAAGTCGAAAGGCAACTGCTTTCGAAAAAGAGAAGGGCGAAAGAGGTGCCCATTTTGACGGCGGAAGTCGAGAACTTGAAGACGCAACTTCAGGAAGAAAAACAACTGGCAGAAAACATCAGTCGCAAACTAGAAAACCCAACTGAGGGCAGACAGTGGCAAGAACTTGGAGGGGAAGATCCAGATATGGAAACATTGGAGGCGAAATATCGGGTGATTGAGCAACGTTTCAGAAGTGTAAAGAGCGAGCTCATTGATCAAGACTTGCGCCTTGAAGACTTAACGGAGTTGACAGAAAAACAGAAAGCGAGAGCCGCAGAAGAGCACTCGGACGCGATTCGAATTCGCAGCGAAATTCTTAGACTCCACGGCAAACTGATCGAAATGAACCGGCGCATGAAGGTGACGATGTCTGAGTTGACGCTCTACAAGGAGTATTTGCCGAGACTTAAGCAGCTTCAGGCAGAAATAGCACAGAGCGTGGAGAACGCCCGTGAAAATGTCTTCTTCGGTAGACCTGCTACACCAAACGCAGAGGAAGAACTTGCCGATATGCTCAAGAGAGAGGTGGCTAGAAATCAGATCCTCTACGCAGCTAAATTGCGCACTCTCGAAGAGCAGCGTGAGGTAACAACATTACGGTAA +>MW050496.1 Uncultured Ascomycota clone OTU1949 5.8S ribosomal RNA gene, partial sequence; internal transcribed spacer 2, complete sequence; and large subunit ribosomal RNA gene, partial sequence +GAAATGCGATAAGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCATGGGGCATGCCTGTTCGAGCGTCATTTGTACCCTCAAGCTCTGCTTGGTGTTGGGTGTTTGTCCTCTCCTTTGCGATTGGACTCGCCTTAAAATAATTGGCAGCCAGTGTTTTGGTATTGAAGCGCAGCACAATTTGCGATTCTATCCGGTAATACTGGCGTCCATAAGCCTATTTTACACTTTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAA +>XM_053179842.1 Colletotrichum chrysophilum uncharacterized protein (COL26b_007034), partial mRNA +ATGGAGCCAGAAGGCCCATTGAATGATGAGGACTCGGATGAAGACTGGTTCTGTGGATCACCCGCATTCCCAAACCAGTATGCCTGTATCACTCTTCGCGGTGGCTCTTGGAATGGTCCTCCGGAGTGGGAAATCCCTGACGATGGCGAAGGGCCGGTTTTTGAGGGACCGGGAAGTACTCCCAGTCTCTCCATTCTGGAAAACCCAGCCTCGCCGCCCACAAATATGCAAGAAGGCATCGCGTCTGGCTGCAACCGCTACGTCCAGGCCAACATCACGATTGCCTCATGTTGGAAGATTACCAATGATGGCGGCACCTTGCAAGCACGCTTGTTCGAGGTCGACCTCGTTGTCGGCAAGCCGGGCGAGCGCTGCGATACGCAGGTGTGGCTTGGCTACTAA +>XM_012089747.1 PREDICTED: Cercocebus atys germinal center-associated, signaling and motility-like (GCSAML), mRNA +AGATGCAACGTCCTGCCTCATGCATTTTCCTCTTGGTGCTTTGGTCAGAACTTCCCCAAGTGGAGTGAAACTCAGGAGCTGAGAAACCGAGTCACTGTGAAAAGATGGGAAATTATCTCCTGCGAAAACTCAGTTGCCTGGGAGAGAATCAAAAGAAGTCCAGGAACGGAAACCCAGATGAGGAAAGAAAACGGCAGGAAATGACTACATTTGAAAGAAAACTTCAAGATCAAGATAAGAAAAGCAAAGAAGTTTCATCCATTTCTAATCAGGAAAACGAGAATGGCAGTGGTTCTGAAGAAGTGTGCTACACTGTCATTAATCACATCCCCCATCGGAGATCTTCCCTGAGCTCCAATGATGATGGCTATGAGAACATTGACTCCCTCACAAGGAAAGTGAGAGAATTTAGAGAAAGGTCAGAGACAGAATATGCCCTTCTTAGGACTTCTGTTAGTAGGCCTTATTCCTGCACCCATGAGCATGATTACGAAGTTGTGCTTCCACACTAAAACCCTCAAGCCGCTTTATCACCTTGTAGCAATGAAGATGATGCAGAACAGCAGACTCTGGAGAAGTTCTTCACCCTGAGCAGTGCATGAAACATTCCTTTCTGGCTAAAGTTTAGAAATATTATCTTATTATATATCCTTAGGCAACTCTGAAATGTGGCATCTCTGTGGTTTAGGTGGAATCATAGAAATTGAAACAATGATCTAAAATATTCTATGTGTTTTTGCTTGCAAAGTTTGAGGACATGGAGGTGATAAAAAAACTTTCTTAGGACAATAATGTAAAATGAAAATAAATTCCTAATCCCCCTGACTAACTGAATGGACCACCTTCTGGGCCAAGGAGACCTCAGATGATCTTGAAAGACTGAATTCTGGCCATGATAGGAAGGGAGATGAGACACACCTTGTTATACCCCTTCCCTTTTGGAGTTTAGGCACAAGTGACCAGGATGAGTCATAAGACTGATGAAACAGACTGATTGTGGCAATAAGAGTCCAAATTCCTACCTGACTCTGGTGTAGATCACACGCTGTCTGAGGGGTTCCATCTATGAGACTTTGTCTACATAACAAAGACCTTGGTTTCCACAACCCCTTTATTTTAGCTAAAGCATTCTTCTCTACTGACTTCTTAAGTCTTTAGACAAAGCTTAACTCTTTCAACCAATTGCCAATCAGAAAATATTTGAATCTACCTATGACCTGTAAACTCTCTCCTGCTTCAAGATCTTGCCTCTTTAAGCTGAACCAATGTGCACTTTCCATGTATTGATTTGTGTCTTTGCTTGTAACTCCTGTCTCCCTAAAATGTATAAAACTAAACGGTAACCTGACCACCTCAGGCACACTTTCTCAGGACCTCCTGAGAGTGTACCCCAGGCCATGGTAACTCATATTGGCTCAGAATCAACCTCTTTAAATATTTTACAGAATTTGGCTTTTGGTTACCAATAAATCTCCACAAATAAATGTCCAAGAATCTTCAATTCCAACCCTGCTCACCAAAGTTCAAATGCCAACATCTCCCCATCCAATTACCTATTTCATTTTTGAGGTGTAATCTACTCAATAAACTGTATAAGACCAGTGACCAGACCCTTTGCTAACCTGATATTTACTTCAATTTTTCTTTTTCTGTGTACTGGAGATTTTTGCTTATAAACTTACAGTAATAGTTCAGAAATTAATAGTTTTTGACATTGGCTTTTCTGAGAAGAAAATTGAAAGTGTCACAAAATAAAAAAAAAAGATGAAATGAATCATATATAATTGTCCATTTTTTCAATTTTCTAGCCAGTAGAGGATTGAAGGATTCTGTTTAAAGATTAGTAAAAATTGAAAATAAACTTGTGCTTATACTTTGTGTGCAACACACTAGTTAATTTAACCTGTGACTAGTTATCTCTACTGAAGGTGGATGTATAGTTTCTGGTTTTAAAATTCAAGCAAACTGGAAAATGATCCATCTAATTATACTTTCTTTCCCAAGAAATTTTTAAATGATATGCCAGCTTCCTAATTTGGAGATAAAAGCCTTAATTGACAATGCATTTATGATATATATTTTTTGTATAGTTACAGTATACAAGTTGAATATCCCTTAGATAGATGCTTGAGAGCAGAAGTGTTTTGGATTTAAGATTTATTTTTGGATTTTGGAATATATCCATACACATAATGAGGGAGTTGGAAGATGGGATTCAAGTCTAATCATAAAATTCACTGACAGACTGGATTAAGAAAATATGACACATATACACCATGGAATACTATGCAGCCATAAAAAAGGATGAG +>XM_028615259.1 Sodiomyces alkalinus F11 hypothetical protein (SODALDRAFT_392700), partial mRNA +ATGATGGGAATGCACCCAAGCCACGAACTATCCGCCATCGAGGAAGTTCTCTCAGATGAAGATGAAGATGATAACAACAAGAAGCTGAATGATGTTGACCATGAAGTCTCGGACCAACCGTACCCTGCCCTTGGTTCGGGTCCCATCGCCGAAGAGAGTCAGAATGGCCAACAATTTCCGCCGGAATCTGCTGAACATGACACGAAAGACTCCCACCGCTCGCAACAGGTAGATGCTCAGCATAGCCCTGATGCGAACACGGTTGGCTTGGCCATCTCGGAGCACGAGGACGGCCAAGTTAACCAGTCTGGTTTCTTTGGCTATGTCCAACGGAACGACGAGGGGCACTATGCTAATGCCCATGATACCTCCGATGGGGATTCGTATGATCCGATGGACCTTGCTCCGCTTCAAGACATGGTCCGTAGCGTTCCCAGCTCGGGGGGCTGGGAGCCCGAGGAGCAATATGAAGCCAAGGCTCTTGAGGGTCTTCAACGGGAAGAAGAGGTTGTCCATACTCGAAAACCAGTCCGTTCAGCCTCCCTGGAAGAATTATATAAACTTACTACCGAGGGGTGGCTGGATGCCAACGAAGGATCGAACGGTTGGTATCCTATCAATGGCCGTGATGATCCAGAGGGAGACGAGGTTGTTCATGCGAATCAACCCACCCGTCCAGCCTCCCTGGAAGAGCTATACCGGTTCACCACAGAGCAGTGGCTAGATGCCAATGGAGAAGAGGACGGCTGGTATCCTATCAATGGCAGTGGCCGTTTATCGGACCCTCCGGCGTCCGAGTCTCGTCAAGATGACAGCCCAGTTAACTTCGACCTATTTCACGCGGTGGTTAATTATGTTCCTCCTTACTTCACTACCAATTACCAAGGGAGACAGGCCGGAGACCGTACTGGTCAGCCTGAGGCCACTGGCGGTGCTGTCTATTCCCCGAACACCCGTGACTGGGCCGATTATGGAAGCGCTCTCGTCGACTACGCCCCTGAGACGGCGATTCCCAAGGTTCCTGGTTGCACAGCTGGCCAGCATCATGCCCAGAATTGGACCTTCGGTGCTTCTGCCTTCATAGCATATGCTGCCATGCGTGGTTCGGGCATGGATACGGGCAACCCGCTCCAGACCTGGATGGGGGTTAAGGGTATAGAGCGTCACGGCCATGACCACGACCTCGACTACGACCACAACAACTCCCGGGCCACGGACTCGAAGGCCGACGACTTCAAATTCAAGCAACTAAGAAGTTTCACCGCCGAGGTTGAAGTGGCCCTTTGGGAAAGACCCTTGGTCATTGATGAGAACCGTCAGCAGCGAGTTGAGATCCCCCGACCCAAATACAAGCACCTGAACCCTCCCGAGGGGTTTGAATATCCCCATCACCTCGCGTCGTCGATCAACGGCATCGCCGCGGATAGCTGGGAGAGAGCGAAGACTTTCGAAGAGGAGTACGATATCTCGGATGACGAAGGATCGCCTCCCTCTGGTCGTATATCACCTTGCACATTCCGCGTCCTGGCCGAGGGTTGCAAGCGCTGGGAAGACCCGGCCAAGGACCACAGAGTCGAGATGCCCCCTGAAACGAAACGACTTCGACCTGAGACTCCTCCCCCGACAGACATGCCGACATATCATCGCAACCGTATGGGCCACAAACGCACCTTGCAGCAAGACGTGGAAGACGGTAGCTGGCTCTCTCCCATCTACTCTGTGACTGAAGACCCGAGTATCATCTACACGCCTCCCGGAACCCAACGTCATCCGACAAACTTTGCCATATGTAACTGGCAAGACAACGTCCACGAGGTCATGGACCCTCTTGGCGCCCAACATCTGCGTGAATTCCAGCCCACCAGCCATATCGCCCCTAAAATCACCACGCCCAACGACCTGGCCCCGGCCCGCATAGCCTCAGCACACACCGCCGCGACGCGAAGCTCAGAGAACCGGCCCTACACAGCAGCAGAAGTGCAAGCAGCCCTGCTCTCCCCGCAAGCGCGACCGCTAGTAGACGGCAGCATAGCGCCCGAACACGCAGCGGCGGTGCTCGGAGCCCACTGGCAATGGGCATGCCAGATGCGCGACGCCGCGGCGCAGCAGTCACAGCGCAACGAAGAAGCGCGGCAGCGCATCAATTCTCTGCGCGACGAGCTGCGCGACATGGAACTCTGCGTCGACCACGTCCTGCAGAGGCGCGAGGAGGAGGAAGAAGAGGTGGTGGAGGAGGAGGACCAGCGCCGCGTCGAGCGCCGGAACCGCCGCATCATACGCCAGGTCAGCGCACACCTCCGCGAGGTCGCGTACGAGGTCCACCGTCGTAGGGAGCAGCTCTGCGTTGTCCTCGGCGAGGCGGCGCAGCTGGAGTGCGAGGAGCAGGTCCTTACTGCCGATGTCCGGGCTGAGATTGCGCGGTCTGGTCTTCCCGATGCTGATGCCGTTCGTGCGGAGGCTGGGCGGGAGTTTCTTGAGCTTGCAGGAACTACGTGA +>XM_017399093.1 PREDICTED: Daucus carota subsp. sativus histone deacetylase HDT1-like (LOC108224459), transcript variant X2, mRNA +CGAAATTATAGTGGTCCGCGATACACAGTATCCTCACCCCCTTCCTATATAAACATATGCATTCTTCATCTTCTCCGTTAATTAGCCCTAGCTTTTACTCGAAAAATTACTCGAATTAGCATCAACACAGCTGCAATGGAGTTTTGGGCTGCTGAGGTCAAAGCTGGAGAATCTTTCAAGGTGAAAATTGATGAAAATAAGGCGTTGCATCTCTCACAGGCTTGTATTGGTGATGTCGAGAAGGACATTCCTGTGTCCATTTGTCTCTATGTGAAAGTCGATGAGAAAAAGCTTGCCCTTGGAACACTTAACTCTAAAAAGTTATTTCAGCAGAGCTTTGACTTGGTGTTTGATAAGACATTCGAGATATCCCACAACTGGAAAAATGGAAGTATATTCTTCCTTGGATATACAGCTGATAATGAAAAATCTGATCGAGCTTCAGATGTGGATGATTCTGATGCTGAATCGGATGAAGATATCCCAGTTATTGCTGCAAATGATAAACAAAAGGATAAAGAAAAGGCGAAGATTGTAGAACCCAGAAAAGCTGCGAGTTCAGATACTACTGATGACTCTAGTGAAGATGATGAAACTTCAAGTGAGGATGACCCGAAGGTTAGTGTTAAGAAAGATTCTGCTGCTGGAAAACAGAAGGCGAATATTGTAGAACCCACAAAAGATGTGAGTTCAGATGATACTGATGACTCTAGTGATGATGATGAAACTTCAAGTGAGGATGACACGAAGGTTAGTGCTGAGAAGGTTTCTGCTGCTGGGAAACAGAAGGCGAAGATTGTAGATCCTAAAAATGATGCCGACTCCGGTGATGATGATGCAATGTCTGAGGATTATTCAGAGGAAGCTGATGAGTCAGATGAAGATAGTGACAGTGATGAGGATGAAGAGACACCAGTGCAAGTTAAATCTAGCAAGAAAAGAGCTCTGACGCCTGCTAAAAAAGCTCTCCCCGAAAAGAAAGCTAAATTGATTACTCCTCCAAAAACTGATGGCAAGAAGAGCAGTGTCCATGTGGCTACACCCTATCCTTCAAAACAGACTGGAAAAACTCCTGCTAATAAGCTGAACCAGCAGACTCCCAAGACTGACGGGTCTCATACTTGCAACTCCTGTAAGAGGACATTCAAATCGGAGGTTGCTCTGGAATCTCACAACAAAGCAAAACATACTGGTGGAAAGTAAATAGGATGCGAACATTGATTTTTGGTGATGTACTTTAGAATTGCGATGAACTAGGTATATGGTAGGCTTTTGGTTGTTTGTGGTGAAGTAGTTTGTTTCCTTGTCTCTTCAAGTTGTTTTCAATTGGATGCTGTGCCTCTGTAACTGAAGAAACTTGGAGGGTATGGAATTTGAAAGACTATGTTTGATGTTTCTTGTTTGTCTTTTTA +>XM_009911451.1 PREDICTED: Picoides pubescens F-box only protein 15-like (LOC104310052), mRNA +ATGGACTTGCTCAGAAATCCTCTGCCATGTGAAAACAAAGAAGCCATGAGAGCTGCTGGCTTGAGCTGGATGCTTGTCCTGAAAGAGAAGNNAAAGGAACACCTAAAGGAGAAGAGAAAAGTATCATTTCAGGATGCATTTCTTAACATATTTTGGTATGGTATCAACTGGCCATGTCTGGATGTCCTCGCAACACTCAGGCTCTATGGAGTTGCGCCTTTATTTCCTTAGAGCAGGAAGGGACCTCGCTACCATTCCCTGGTTGCTGAATACCATCTTGCTGATCTGACAGCACCTGGTGCTGACAACATTCTCCAGCTCTTCACTCTGAAGCCAGGACTCTTAGTAGGCCTTTGGAAGGACACAAAGGAGATCGCTTCTGTCTCAGCCAGTCTTCATTATCATCAGTTCATGGAGAGAAGCATCTTGGGTTCTGCTGCTTCTTCTTATGCCCGTCCACTTCATCAGCCTCTACTGGGTGATACTGACCCAGAGTATGGACTGCATGGCTACTGTCTACACTTTGAAATCCACAATGGAACCTGTGCCTACATGTGTGCAACATTCAGGGACCTCTTCTGCAAAAAAGGTGAGATTGCAGATGGGTATGTGAGGCTCACAGCTGTCAGCAGCCTGCAGGACAACATGGACCACTGTCTTTTAGCCACCATGCCTGGCTTGCCCTGTCAGCTGGAAGGCACTGTGAAGGAGTGCTGTGTGCTGGATGTTACTCTCTTGTATGAAGACGGAAAAGCCTTCTGTTGTTTCAGTGGCCCAGTCTCTGTGGGACTGTCTTCCAGGACTTCAAGCTGTTATGACTTGCTGGGTCACAGCTCCAGCAGAGAGTATTGTGAACCTTCAGAAGGCGGAGTCCGTGCTCGGTTCACCTGTGTGAGTGAAAGCAGGCAGCACCTTGGAGTCGTCTTTGCTGTCTGTCCACCTAACTCGTGA +>XM_019704704.3 PREDICTED: Aedes albopictus 60S ribosomal protein L29 (LOC109428867), mRNA +ATGGCCAAGTCCAAGAACCACACTAATACACACAACCAGAACCAAAAGGCCCACAAGAATGGGATCACCAAGCCANAGCGCCAGCGTAACGAATCGACCCGCGGTATGTGCCAGAAGTTCCTGCACAACCTGCGATTCTCCAAGAAGGGAAACCTGTCCCGTGAAGAATCCCTGAAGCGCGCCGAGGAACGCAAGGCCAAGTTTGCCGGACAGCCAGCTCCGGTCAAGCTGTAAACTGCTTCCTTCTCGATTCCGCTTCGGATGATGATGATGATGGTTGGGTGGTGTATCCGTTTTGATCCGTGATCAACATCAATTCCTAATCTGGTACGCGTTACGATATCCAATGATACCGTGCAGTTGATGAGTACAAGTGAGTTCAATGCGGAATGAAAATTCAGTTGGA +>XR_007260822.1 PREDICTED: Pyrus x bretschneideri uncharacterized LOC103942768 (LOC103942768), ncRNA +CAATTATGGAGGCCAGAGAGAGAGGGGGTGCGGCATAGAGAGAGAAGAGATAAATGTGTAATTGTGAGATAGACGGTTCTATGCTCACATAATTTTCTGCTTGGTTCTTCAGATACCTTCCGTGCAACATTTGATGTGGTATGGTTTTCCAATTTCCCCTTTGCAACAATTTCTTTTTGGTTTTTGGAGTATGTATGATTTATTTTTAATTAGAGAAGAAAAATTAATAAAACACAAGAAGCAATTGGAAACATGGCTGCAAGTGATAAGCCAGAGTCTTTTTTTTCAATTAACTATATTACTTTTGTAGTATATGCATGCGCAGGAAAAATCCAAATCGTACTACAAGATCTTAGGGCTCTGTATTTTGTGTCAAACCAATGCATTGAGAGAATATGAACTATTGCGTCTGGTTTGGATATGTGTCTATGGTGGTACCCCTATTTCAAGGCAACTGAGAGCGCTTGACTATGGTAACCCAATGGCTTTCTTTGTTGTTTTTCCTTAAGAGGTTATCGATTCCTTACTTTTTTAACTGAGTTTTTGACTATCAATATTTTGCATTTCTGAGCTTAAAGGCACAAAATGATTATTTGTTATTGGGTAGATGGGTTGCTAAAGGCAAGCAAGACACATAAAAATGACCATTGGGAACGAAAAGTCGCTTCTTCGGTGTATTTATACTTTTTTTAGTTGTATCATGCGAAATTAAGTATCGATTTGCTATGTGTATTTTGTTGAAGTTATGTTTTGATGAGCTTGGATTCCTGAAACGTTTGATACTAAAATGACATGAATAAGCATAATGAATGGTTTGAAAGATGCTATTAATGGTTTTGCGAGTATATCGTTAGTCGTTTGGTTGTATGATTTGTTTTTGTTTTTTCTTTCAAAGCACTTTGCTCTTAATTTTTTGGGGCTGCAGCTTTCGAAGCCCTTTATGCTCAAGGTAAACAATTTTGGATTTCAGCCTTCCAACAATTTTTTTATTTATTTGAATATTGTGAAAGTTGTGTTTTATATGCTATGAAAGTTGAATCTGTGAATTTTTTTTTTTTTAATTCATGGTATATATTCTATTTCATAGTTTTGGATGATGTTGGATTGAAAAGCTTTTCTATAGAACTTATAGTTATTTAAAGTGTTTTATCCATTCTTACATTTACTCTCATAAATTATAGCTGATTTGTTAATCTCTTACCAAAATACGCAAATTATTTTGTAAATTTGTTCTTATTCTAGCAGGAACAACAAATGCAGAAGGGGAACACATATATAATCAGTGTTATTCTAGCCAAAACCTTTATTCTCACAACATTGGGTACGATTGTTATAAGTTTCAATTCATTGTACCTAAATTGAAACAATTTACTATTAGCACAAACTTTTTTATATTTTAAACATGATATTTCATGCATTTTCTAATCCTGCAGCAACGTGCGGGTAGTACTTTCTAATATCTTCTATACATCAAATACATTTCCTTGGCTCCA +>XM_022304284.1 PREDICTED: Myzus persicae uncharacterized LOC111026242 (LOC111026242), transcript variant X2, mRNA +ATTTCAAATTTTTCTATATAGTATGAATACAGAATATATGATAATATTTAGGAATAAAATTACCTATGTCCTATATTAATATAAACATATTTAAGTACAAATCAAAGTATAAACGCATGTCGTTAAGTTAAATAAGGGTTTAATTTGGTTTATCTGCTGATATTATTTTTTTTACTAAGTATTTTATTCTAATTTCTGTGTATCATGTCGTCAGTAAAGGAAGTTTTCAAAATAAGTTTTCAATTTTTGGCTCAACAAACAGATAATGTTATCAAGGATTTCTTGAGGCTCACCAAAGATTTTATGGACAACGGACCTAATTCCAGTCTTTATAACAAAGCTGCAGAAAAAATGCAGGTTGATGAGGACAAAATAATATCAGTTGTAAAAAGCATATGTCTCATGTGTGTGCAAAGCTGTAAGCATAAACTAACTGATTTGGAAATAAAAGAATCACTGACAGAATATGGTTTTAGTGAAACCAAATTAGATATGATTATATTATTTTTGGAAAACCAAAAACCTCATTTACTAGATATTTTGTCATTAAGTGCGTTTGTATTCCCACACTTCAAAGAACTGGAGTGGCGATTTGAAACCGATATGGGATCCAGATCTTTATTACATCAAACCGTGCCAGTTGTTACATTGAAATTAGATTTAGAAAAAAAGGATATTTCCGAATCGTTATTCCTACAAACAAATCCATTAAACTTGGTTCATATCAAAGATACACTAGAGACTGCTTTGAAACAGAACCAATCTCAATGGATAAGGAAAATACGTAGAAAATTGAAATAAAGGTATAACTGTTATAAACAATATAAAT +>KY530257.1 Liriodendron chinense AT4G19003 mRNA, partial sequence +ATGGCTCCTGGGAAAGCCATAGTAGGGGCTGCTGCTGCAGCAATTTCCATGTCTATACTCTCCATCTTCCTCTGCAAATCTCTCTGCAATCTATCAATGAGAAAATTCCAAAGACCCATCTCAAAAACCAAAGCTAGAAAAGGCCTCATCGACGCCATCGGCAATACCCCTTTAATCAGAATCAATAGCCTTTCAGATGCCACTGGCTGTGAAATTCTGGCGAAAGCTGAGTTCTTGAACCCTGGAGGCAGCGTGAAAGATCGAGTAGCGGTTAAAATCATAGAAGAGGCTCTGGAGTCTGGTCATCTTGTTCGAGGCGGTGTAGTGACTGAGGGGAGCGCTGGAAGCACTGCCATTAGCCTTGCTACGGTGGCTCCTGCTTATGGATGCAAATGTCATGTGGTTATACCCGATGATGCTGCTATTGAGAAGTCTCAAATACTCGAAGCTCTTGGAGCTACTGTAGAAAGAGTAAGACCCGTTTCGATTACACACAGAAATCACTTCGTCAATATTGCAAGGAGAAGGGCATCTGAGTTTACCGAATTAGCATCAAGACAGCGAGAAGCCGAACGCTCCGTACATGTCAACGGTCATGTCTCAGAAGAAGGAGACCGCCCATGCGCTTTCGCTAAAGATTGCAAAGGTGGTTTCTTTGCTGATCAGTTTGAAAACCTGGCTAACTTCCGTGCTCACTATGAAGGCACTGGCCCTGAGATCTGGGAACAGACTGGTGGCTACTTGCATGCTTTCGTTGCAGCTGCTGGTACAGGTGGGACCCTTTCCGGCGTTTCGCGTTTTCTTCAGGAACAGGATCCTAATATCAAGTGCTTCCTGATCGATCCACCCGGTTCGGGTCTCTTCAACAAGGTGACAAGAGGGGTGATGTATACACGGGAGGAGGCTGAGGGTCGGAGGTTGAAAAACCCGTTCGACACCATAACTGAGGGGATCGGAATCAACAGGCTAACCAAGAATTTCATGATGGCAGAATTGGATGGAGCTTTCAGGGGTTCAGACATGGAGGCCGTTGAAATGTCTAGGTTTCTTTTGAGGAATGACGGGCTATTCCTCGGGAGTTCTTCAGCCATGAACTGTGTTGGAGCCGTGAGGGTCGCACAGTCGTTGGGCCCCGGGCACACGATTGTGACCATCCTGTGTGACAATGGGATGAGGCATCTGAGTAAGTTCCATGAT +>XM_052888826.1 PREDICTED: Bicyclus anynana jerky protein homolog-like (LOC112047489), transcript variant X2, mRNA +CGCACTGTACGCGACGGCCGTAAACCCGCGCTCCATCTGAGCCCGCGTGCAGAAGGCAGTCAACGTCATAGGGACTTGGTTCCGCCTTTGGCGGATAGAAGTCAACCCAGAGAAGAGCGCAGCTGTGCTCTTCACTGGCAAACCGTTTTGCCAGAACAAACTCAAAGAAGTCTCACTCTACGGAGCTCCCATCCCCTGGCAACGTACTGCCAAATACCTAGGCGTGACCTTTGATAACCGCATGAGCTTCTCCATGCACATTAGGGAAGCTAGAAAAAAGGCTGCATACGTAATGCACCGCCTCTACTCGATGATTAACGTTAAAAGTAAATTGTCCCTCCGCTTAAAACTAACGCTTTATAAAACTACGATCCGTCCGATCCTAACCTACGCTAGTGTAGTGTTCGCCAACCGTCCCAAAGCGACCCTTAAGCCGCTTCAAAACTCTGCAAAATCGATTCCTACGGCAAATCACGGGCGCGCCGTGGTTTGTACGTAATAACGACCTCCATAGAGATTTAGAACTACCTTCAATAGCTAATCACATGAAACAGCTCTCTCAAAACTATTTTGAAAGAGCTGCCATCCATCCCAACCAACTAGTGGTTGAGGCTTGCAACTATACTCTCAACCTTAACGCTAACTCCAAGCAGAGACGTCCCAAAAACATCCTTTACGATCCTGACGATGACATGACAACTGACAATGCTTCTCAGGCAACACAATCACAAGCTACACAGCGTCTTCGCCGGCGAAGACGAGGTCCCCGATATCTAACGTCACCCGGAAGTGGGTTTTCTAACTCACGATCTCGGGGGCGTCCGGACTGATTCACTCAGGTCACGGTCAAACCCTCCCGAATGGCCCTCTAAGCCGAGGCCCGAGTCTCATAGGAGACGACCTTACAGAGCCGTTCCGTCCTCTGTTTTTATTTCAGCCTTCGTGCACAGGCGATGCTTCCGCGCTCGCCCACCCCCTACCGGTGACGTCGTAGTGGTTCCACAGGGAGCTAAACGGCATTTACTCAACAAAAAAAAAAATATTTTCATTTGTGGTCTCGCGCGCAATAGATGATACTTACGCCTTCTCTACAGTACTCGCGAAGTTGAACGTATTTCTCAAAGCAAAACAATGTCGGAAGTAAAAAAGAAGAGACGGCAATACTGTGCGGAATATATTAAATTCGGATTTATTGAAAATCCCACAAACCCATCGTCGCCTTTTTGTCTTCTATGTCTAAAAACATTTTCGAATGAAGCAATGAAGCCTTCAAGGCTGCAAGATCATTTGAATAAAATGCATCCAGATAAGAAAGACAAGAATGTAGCATATTTTCAAGACCTAGAGAAGAAGCATAATACACAGCCAAGTGTAGCAAAACTATTTGTCCAAGCGCAGACGTCGGACGACTACGCGGGTTGCGGGGTGCGGGGACACCGCGCCGGCCCGTCGTGCCAGCGACCGACGCGCGGACACTTCGAAATTGATTCGCACGGACTGTGTGCGCATACACAATACAATATTGTTGTTTGGTCTTTTATATACTTAAATAAAATTCACGAAGAGCACCAGTATTCATATTTACAACCACCAGCTCGTTAACACATCACTATTTTTGGTCTTTCGCCCTTCTAACTTTGTGGATTTGGAAACAAGCCATACGACAAACAAGAAAGGATTTCTGCAAATGGGAATACCTACAACACACAGCTGTGAAGAATTACGAGAAGAACACCACGGAAACAAAGGACGAGGGACACGATACTGAGTGAGTTCGTTCCATTTTCCTTCTTATTTTTCCGTCTTCCTTGCGCCTTCCTTTCGATTTTTCAAAATTAGAATTTCTTCACACGCTTAAGGTAATCATTATTACGTAATAAACTTACATCTAATTCTTATAATAATCATAATCTTCATATGTACTTAAATACTTTTATTGAGAATTATAATAATCATTCATTATGCTCCAAGCTAATTTTTTTAATTAATTGCTTGCTTATTCATTTAATATTACACGTAGTTAACTACCTACACGTATTCAACTCGCTTCGACCGCTCGGCCGCTCGGCCGCTCGGACAAAAAACCGGTTCCTTATCGCTAGCGACGTAGTTCTCATACCTATCTTGCAGTCAATTTGCATCGTAATAATATAATATGAATGCATCAAATAGGTAACTACTCATCACGCGCGGCTTTTTAGCTGTTTTCGGCGGCTGCTAAGCAAGTTGACGACGACCTTCGAGCTTCGTACAATATCTCTTTGTTAATTGCTCAAAAAGGCAAACCACATAACATCGGAGAAGAGTTAATATTGCCAGCAATAAATCAAGTTATAACTACAGTGGACCCCCGGTAATCCGGCCTCTGACTAATCCGGCGCCCCCTGTAATCCGACATGACAGAATTATGTTTGACAATTCTTGCTAATATCACGCAAGTTTGAACAGGTCACAACTCGTACGCGCCACCGCTATTGTGCTCGACGCGTATGCATTGTTTTACTTAGTTTGAATTTGACTACTAGTGATAGCGGTACGGCTTAGCGTACGTTCATTGTTTACTACTTATTTATTCATTGTGTATTAGGTATATGTAGTACCTAGTAATGTCGTCATAAACCCACAAGCGAAAGCACAAAACGTTGACAATTAAAGAAAAATGTGATATTTTAGATCGCTTAAATCGCAATGAAACTTTCAGTAGTTTAGCAAGTGAATACGGCGTAGGCCGATTTACAATTTATGACATTAAAAAAAAACCACGAGAAGAAGTTCGTGTCAACTACTGACTGCGGGCCAGGTAAGAGATAGACACTCAAGGAAGCTGAACATCCAGAAGTGGAAGAAGCTTTGTACATGTGGTTTCTTCAGGAAAGAAACATGCATGCACCAATTTCGGGACCCATGTTGGCGATGAAAGCTAAGTTTTTTTATAAGGAAATAACAAAAAAAGATGATTTTGTGGCCAGCAAAGGATGGCTAGAACGTTTTAAAAGTCGTCATGGCATACGTTTAATGACTATTACAGGAGGGAAACTTTCTAACGATGCCACCTGCATAGAGCCCTTTAAATTAAGATTTTTGCAAAAGGTGAACGATTTAAATCTTGGCCCGTCACAGGTGTATAATGCAGACGAATCAGGGCTTTTTTTGCGTGTGATGCCTAACAAAACTTTCGTTTCTTGTAACGAAAAAGACGTACCTGGACGAAAAGTGAGTAAAGAGCGTGTAACCATACTACCATGTGCTAATGCTGCAGGTACACACGCGCTTACGATGGTGGTCATTGGGAAATCTAATAAACCAAGGGCATTCAAAAACATTGATTTACCTGTACACTATTACGGACAAAAAAGTGCATGGATGACAAAAGACCTTTTCAAAAAGTGGTTTGATGAATGCTTGGCACCTGAAGTTAGAAAATGGTTAAAAGATCATAATTTTCCTCAAAAAGCGTTGTTGCTTCTTGATAACGCTCCCGATCATCCGTCTGAAGAAGAACTGACAACTGAGGATAAATGCATCACTGCGATGTTTCTTCCGCCAAATTGCACTGCACTGATTCAACCAATGGACCAGAACATCATTCAGTTTGTTAAGCAAGACTATAAAAAAAACCTACTTTTAAGAGCCGTATCAAAAGACCAACCAATAGAAAAAACTTTAAAAGAATTTAATATGAAAGACTTGGTTTTTGCTCTTAGTCAGTCGTGGAGTGCGTTACCGTCATCAACTATTAAATCGTCTTGGAAAAAGTTATGGCCAGATATAATCACCACTCCTAGCAACGATCCACAAATCAGTGTAACTTCGGAAGTTATAGAACAAGTCTCTACTGAAACACAGATAAGTCCGGAAGATTTGGAAGTCTGGTGTCGTGGAATGGATAAAGAAGAAAATGTTTTTCTTGAAATGCCTGACGAAGATATTATAAAAGAGGTTTCTAATAATACAACAAACGATCAGGAAGATAACGACGACGTGATTGCAACTGCTCCACAAGTCACAGATCAAGACGCAGTTAACGCTTTTGAGCTAGGTTTTGTGACGGAGTAAAGCGCCATCTGTTGGTATGATGACGAAATCCGTAGAAAACGCGCTCATAAAAGGTGCGAAGAATTGATTATATTATGGGTCGCTAGTGAATGGCCGTCTAAATCATAGATGGCGACAGGATCGTGTCTCTTCGTGTGAAATTGCGTTTCGTTTCAGGGTCGGGGTGTGCAAATTGGCAATTTTCGGGTAAAACAAACTTCGTGGGGGTTCAAAAACATAAAATAAGGCACTAGAATGGTGTTGGCAAGCTTATGATTTGTGAATACAAAAATAAAAGGGATAAAGATTTTCTATTGTTATAGTTAAGATTTGTATGAACGAACGAATTTTTTGATGCGTCGAACGAAAACGTGTGAGCAAAGTTCTCGCCGGGGACAGGGTTTCGGTGATTTTCTGGAAACAGCCACCATGAGCTGAACAAAAATATCCGGGGGGAAGGATTTAATGTAGCAGGTCTGCTGAGACCAAAAACCTTAACTAAAATATTATGTTCAGCTCATTGAAAATATAAGTTTTATTAAGTCTTGGGAAAATCACAGGAGTCTTCCTTCCCGTTGGCAATGAATTCGTATAGCGACTAAATTTAATATTCGGGGGGGTGGGCCAGAGAGAACTGATATTATCAGGTAAGAAATATTTTTCACTTTACGGGACATTGTGCGGGGTCATTGACCACGCCGGTAGAACTTGACAATGACGTGTCATTTTTTTCGTTTCAGTGGGAAAAACAAGAAAGAAATATATAAGAATGAGTTTCGAGAACCTTTGAGAATGTAAAAGGGTAATTTATGAGTTTTTACGAGTTTCGAAGAGGTTGTACGAATCCGTCGTGACGTCGCGGGATTCGTGGAAGGCTTTAAGAAGATAGTCATTTGCCGGTTACAACATCCGGGAACGTCGCAAGCTGAGGCAGACGGAGTAGCCGTACCAGGTCAAGGGAGTCCGGCAGGACATATAACCGGGTAAATACCCAGACAAGGTCAGTCCTAACCTGTTTACCAAGCTTGCGTTGATCTTCGGTGTTATGGACGAGAACATATCTATACAGTGTTAATTTCGGGGGGGGGGGGGGGGGATTTTTGGATATTTGGACATTGGATCTGAACCGTGTTCGGATATAATTTAAAGTTTAGTGCTTAACGATTTATGGTGGTATTTTGTATGTGGAATTTTGTATTTTGTACGCGGTATTTTGGTATATTATGATACTTTGTGTAATTTTGTCCAACAGCAAATATTATGCTGTTTGAGGATTCTATAGTAGTACATGCTTAATTAAAGGTTTGGTTATGCTTTCTCTTACGGAGGTGGGATTGTGGGAAAATAAACAAACTTTCCGTTTGGTTGGTTAGTGACCGGTAGTGTGATTTGGACCCACGGGCTCTCAATTCAACGACTGAGATACCGGGACATTAGAGCCTTTGAGTCCGGTCCAAGTAACCCACATCTTCTTTCCTCCGTGGGACGAGAAAA +>XM_029190890.2 PREDICTED: Osmia bicornis bicornis bromodomain-containing protein 7 (LOC114877834), transcript variant X1, mRNA +CGTTTCTCGTCACTTTTAATTGTCTCGTAACATCATCTTGACATCGCCAGGTCGTCGCGTTATGTGCCGTCTTATATAAATAGTCGTTGTACTTCGTGCTGTACAGTGTGTTCCAAATGAGCTCGCTACGCGCCTTCAATTCAAACGTTTCGATTGTCGCTTTAGTGCGATATTTGTTTTTATGTTCGCTGATCAAATCATATCCGCGATGACAGCTCATTGCTACGTTATCAGGTGTTCTCATTGCATACTGTTTTCACAGCTTTTTGTACTTGAATGCATACATACGTTCATCGAAGCAACGGCAGAAGGGCACTATACAATCACGGATAAACCCCGTACCTTGAAGTTAATTTTAAAGGTGGGGGGTAGTAGTGGCACACCTGAATACGGCAACGAATCTCCAAGTCAAACAACAATGTTGTCTCAACATTTAGGTGTGTACCAGCAACAGTTGGGTCTCAACTGTTCCGTAACGCAGGAGTCTGAATACGATAGGTATTTGGGGCATAAGAAACTCAAGAAGAAAAAGAAAAAGAAGGATAAAAGACACAAGCACCATCATAAAGATAAGAAAAGACGAAGAGAAGAGTCAAGTCAAGAATCCGTAGGAGATGCGGATGAAAGTTTCGCAGAAGTCCCCAAAAAGATTCCTAATCACCAGTTGCTACCTCCTAGACCCCCATCGAGCGGAGAGCACAGAGTTGGCATTACTAGCCATATTAGCTCTCTGTCTCCGCATCGTGAGCCTCGAACTTGTGTGCTTCGAAAAATTGCCGAGCGTACACCCCTTCAACGATTGTTAGAACATCTTCTCAGGTCAATGGAAAAACGTGACCCACAGCAATTTTTTGCTTGGCCAGTCACAGATAGCATTGCGCCTGGTTACTCTCAAATCATTACTAATCCTATGGATTTCAGTACCATAAAACAGAAGATAGATGATAACAATTATCAAAATTTAAACGAATTTATAGACGATTTCAAGTTAATGTGTGATAATGCTACTACTTATAATCACCCAGATACAATTTATTACAAGGCAGCTAAGAAATTGTTACACGTTGGTCTAAAAATGGTTACACCCGAGAAGCTTCGTCAATTAAGACCCGTTTTAACTTATATGCAGGATATTTCAAGAGAGGAACTTGGATTCGAATTAGGTACAGAAGATCCTAACAATCCAGATGTTCCAGTAACGGAAGAGCAAATCGAACGGGAACGAGAACAGGAGGAGCGCAATGAGGAAGCGGAGGAACTTAGAAAGGAGAATCAGAGGAAAATGAGATTAGCGAATTTAGGTAAATTCGAAGCTATCCCGGACGATTTGACTCCTGAAGAGATCTTGAAACAAGCGCGAGGTGCTGCTAAAGCAGCATCCGAAAAGTTAACGTTGAAAAGGTTGAACTCGAAGATGGGTTTCCTTAGACAAAAGAAAGATGGAACTACTAGTTTACAGATAATAGTACCCGGAGATGGAGTGATTCCAGGAACCAATCAAAGACCGGTATCGTTAGGTCAACTGATAGGAAAATTGAATCATGGTACTGGGGCATTAGCAGGATTTCGTGAAGACAGGAGAAATATGTCTAAACCAGTAAAACCTTTATACTACGGTGCCTTTGGCTCATACGCGCCAAGTTATGACTCTACGTTTGCCAATCTTACAAAAGAGGAAACAGACTTGGTGTACCAAACGTATGGCGATGAGACGGCTGTACAATACGCGGAATCTATTTTAGACTTTGCTAAAGACTGTGATTATACTCTGACTATGGTCGACGATTTACTGGATATATTGACAGGAGGTGATCACAGAAAGACCAAGAAGTTCCTCGAGGAAAAACGAAGGCTCAAAGAAGAGGAGGAGAAGATAAAGCATTTACTAGAGAAACCTATGCAAGATATAATTCGAAATATCTCAACTGTTGACAACGTTAAAGTTGATATTGATCAGTTGAAAACACTTTCAGAGCTAGGAATCGATGTCAATTTCTTGGAAAATCTAGATGTTGATTTAAAGACCACTGAGGAACGTACAGCCTTGCAAAGTCGTTTGGACGATACGTCGCAAATGTTGAATCGTTTGAAGCAGGTACAACACGAACGACTCTCGGCTCCACCACCCCCTCATTTGTCGAATGTTCCTAAACCATCAGAAATCGAGGTGGCGATAGCTGACAAAATCACAGACAATTTAACGGAAATAGCTAAGAAGCTTCCTCCTTCGGCTATCGCACCCGTGGAAGGTTTGAGAAAGGCCATGGGTATAGCACCTCTTGGAGGACCAGAGCCTATGGAGGTTGAACCTATCACTCATAACCCGACTATCGTCGCAGAAAGTAATCTATTATCGCAAGCTAACGCTAATCAAGTTCCGCCGAATTTGTTGCCAACTCCCTCACCGATTCCAAACACAAATTTACTCAGTTCAACGACTAGCCAACAAGCTCAACCGATCAGTATCGTGAACGCGAATCAGCCACCTATTCAAATACAGATTGGCATGGCGCACAGTCAGACGCCGCCATCTTTACTTGGTACGACAGAAACATCCGCGGTTCCCGATTTGGAAACCGAACTTCGTGAATTTCTAGAGAGCGATCCTACGTTAGGACACTCCCCTCTTCACGACGATAAAACATTGGAGGACATTTTATCTGAGTCTTAGTGTGTACGATTCGCGATAATATATTTTTCGTTTATATACCTCCCACAGGTTGTACATTTTTCTTACGTATCAACAGCAATAGGTTTAATGCGAAAATGCGTACTGTTTAATAAATATAAGGTCGTGTCCCCATATCGTGTTGTCATGCAATCAACACCGTGCTTATTTTATATAATTATTTATGAAGTTTGCGTAACAAATAATATTAATGGAACACTTGTAAAATTTTTATGAGATACACATGTAATGCGGAATATTGTTTCATTATAAATGTTGAAGAGATTTTAATGAATTATACCCAAAGATAAATCAAATGGAATTTACTTTATTCTTACTTTTGTTTTTAATCCTAAATTTTGATGTTAATCGTTTGTCGAAATGTTACGCAAACGCAAATACGTATTTTAAGAGCAAGGAAAATACTTTGTATTCGAATAAATTCAGACTTTTCTGTTGCACA +>XM_028730195.1 PREDICTED: Podarcis muralis actin binding LIM protein 1 (ABLIM1), transcript variant X39, mRNA +ACAGTTGCCATAGATATGCCATCTTTCCCCAGTCTAAACAGTTTTGGGAAGCTTTGTGGATCAGGGAAAAGCAAGAGGTTGGTGTCTGAGCGGATAAAGTACAAAAACTCTATCAAAAGGATGTCTATTATAGAGGACGGTGATATTGCTGAGGTCTTGTACCTCATCCCCAAGCAGTCTGTGATGAAGCAGCTGCCATACCTGAATCCAGATGACTACTATTTGTGTGAATGGTTGTTTGATTATCCAGAAGGTTCAGTGGCACATCCTCAGGAGCCTCACCATTCCACAGAGAAGCCAGTCATCCACTGCCATAAATGTGGGGAGCCATGCAAAGGAGAAGTTCTTCGGGTCCAGGCCAGGCATTTCCACATCAAATGCTTTACCTGCAAAGTGTGCGGGTGCGACTTAGCTCAAGGTGGCTTTTTCATTAAGAATGGAGATTACCTTTGTACTGTGGATTACCAGCGGATGTACGGGACCCGATGCAATGGCTGTGGGGAGTTTGTGGAAGGAGAAGTTGTAACTGCTCTTGGGAAGACCTATCATCCTAACTGCTTTGCCTGCACTGTATGCAAACGTCCTTTCCCACCAGGAGACCGGGTTACCTTTAATGGAAGAGACTGTCTCTGTCAAATGTGTGCTCAGCCTATGTCATCCAGCCCAAAAGAACTCTCCAGTTCCAGCAATTGTGCAGGCTGTGGAAGAGATATAAAGAATGGACAAGCATTACTAGCACTGGATAAGCAGTGGCATCTGGGATGCTTCAAATGCAAGGCCTGTGCAAAAGTCCTGACTGGAGAATACATCAGCAAAGATGGTGCACCTTACTGTGAAAAGGACTATCAGGTTCTCTTTGGTGTCAAATGTGAAGCATGCCACCAGTTCATCACTGGGAAAGTCCTAGAGGCAGGGGACAAGCATTACCATCCAAGCTGTGCACGATGCAGCAGATGCAATCAGATGTTCACAGAAGGAGAAGAAATGTACCTGCAAGGTTCTACAGTTTGGCACCCTGACTGTAAACAGTCCACAAAGGGTGAAGAAAAGCTAAGGCTGTTTTCACCACCTTGTATAATGAACTCCATCAAAAAACTAAGGCAGCCTACAAGAACATCTTTGGAAAGTATTTATTCCAGGCCTGGATCCAGTATACCTGGCTCACCAGGCCATTCAATCTATGCAAAAGTAGACAATGAGATCCTTGATTATAAGGATTTAGCAGCCATTCCCAAAGTCAAGGCCATTTATGACATTGAGCGTCCAGACCTAATTACTTATGAGCCCTTCTACACTTCCGCCTACGAGGAGAGACAGGAGAGGCAGAGTCTTGGAGAGACTCAGAGTTCAAGATATGGCAGTTCTCCTGTGCACGATGAAAGTTCTCCAAGGACACTCTCTCCAACTCCATCTGCAGAAGGATATCAGGATCTTCGGGATCGGATGATACACCGGTCTACCAGCCAGGGGTCCATTGGTTCTCCTGTGTACAGTCGTCACAGCTACACTCCCACAATGTCACGTTCACCACAACATTTTCACAGACCTGATCAAGGCATCAATATTTATAGAAAACCTCCTATCTACAAACAGCATGTACTGTTGGAAGGCATGTTTTTGTAATTCCCTGAGCAATGAGCCAAGATAGCTGCTCCTTATCCATTAAAGGCAGGGATGGGAAACCTCCGATCTGGGCATCAAATGAGACTTCTCTTCTGGCCCTCAGGACTCTCCGCAAGCTACACACCCTCCTCAGTCACCCACCCCTGCTCCCCAGCCACACCATTCTAGGACTGATCTTGGCTGGCTGGAATGTGTCCCTTGCTTGCCTGGGTGGAGGATAGAAAGGGGTATATTCAGTATGTTTAGAAACTGACCTACTGTAAACAGGTTAAATCTACATTCATTGCTCTGCCCACTTTTGCCTGTGAGCCCCCCCACCCTTGGGAGGCTGCCTAGAAGGGAATGTGCCCTCAGTCTGAAAAAGGTTCTTCACTTCTGCATTAAGACTTCACAGTTTTTCAGGAACTTTTCTTGTTCATAAGCCCCCTTTGAAATGAAAGAGAGCTGCTAGTCTGCACAGGATGAAACTCTTGTGCAGCTTTCATTTGTTTCACTTAAGCCTGTGCACAAGATATTTCCAGTTAGTTACATCTCTTATGAACAATTTTTATTATATTTCAAAATAGTAAGGGGGCTTCTGCAAGTAAACATCTTTTGTTTCTTGTTTGCTCTTCCCTAAAAATTCTACATTTTATTATAACTTGCAAACTTTAAAAAGTTAGTATTCTTTCACTCTGCTTTCTCTTCTTCTGGAGAATGAATCTAGTTAAGGTTTTAACTATGTAGTAGCATCTGATAAAGACTTTCCCTTCCATCATGCATGACTAAATAGTTGCAGGACTTTCATTTAAAAATGTACTTTAAGAAATGTTAAAAAGTCTTAAAATATCATGGAGTTGCAGTCTAAGGCTGAGATGGCCATGGTTTAGGGGAAAGGGTCTTAAGGGTCAAATTGAGAACCGTTCAGGGCCTGATTAGGTCCATTGGCTGGTGGTTTCCCACCTCTCCTCTAAGTGATCACAGGTAAAATGGCCAAATTCATTTGAACGGAGCATTAAAACATTGAAGTATATTTATATAATATGCAGATGGACAATCAATATCTGGATTTACCCTTTCTCTTCTTATGCAAGCATGGCCCTGTATAACTTTCTAACATTTTCTGATACAGGCCTCGGTTTTAGCTAAGTTTGTGACATCTGAAAATACTCTTTGGAGGCTTTCAGAAACACAAACCATAAAATAGTAAAGACACAAAATATATCTTGGGAAATAGTTTTTTCTAGTTCACATTCTTTTCTATCTTTTTTTAGTTGCTTCATACACAGTGGAATCAGCCTAACATTTGGTTATTGAAAACAGCAAAGGGTGAAACTACACTGTCATTTTGTATATGTAAAACTCTGCCCTGAGGTGATGTTTTTTCTTTGTTATTTACTGGCATTAAATCTGCCTTCTTCTTTTCAAATATACATGAATCTTAAGAACAGTTGCATGCATCTCATGGCGATGTTCCCTCATACATAATGATAGTATAATTTCACCCTAAGTGAATTGCCAGGATAAATATTACACTATTACTATACCTTGCTTTGGGATCAATTTCACATGGTGATGACAATGCTCTGAAGTAAACATCAAGGATGCTTAATAAGAGATTTAACCAAAATAAACTGAAGCTAATTATTATGTAGCA +>XM_030853958.1 PREDICTED: Globicephala melas ubinuclein 2 (UBN2), transcript variant X2, mRNA +GAGGAAAAGAGGAAAACTGAGCCACAGCCACGACGGTGGATGTGAGCGTCTCCTGTCTGCGCATGCGCCCGCTCAGCGGCCTGCTTCTATTTATGTGGGGGATCCAACATGGCGGCCGCAACGATCCTGGCGATGGCGGTGGAGCCCATCAGAACATAGTGGCGGGGAAGGGGGGACAGTCCGCACTCACGGTGGCGTCGGCGGCGACGGCTGAGGGTGGTGGAGGGAAGAAAAGCGACGGAGAGCAAAAGGAAGGGCAGGCAGGCAAACAACTCGGCGTAGAACCGAGCGCCGGCTCGAGCGAAGGCAGAGGGCCAGAACAGTGGGGATGGCGGAGCCACGCAGAGTAGCGTTTATTAGCCTGTCACCGGTGAGGCGGCGCGAGGCCGAGTTCCCGGGGGCCGAACGCGAGCCCGACTACCCTCGCGAGCCCCCCCGACTGGAGCCGCAGCCGTACCGCGAGCCGGCCCGGGCGGAGCAGTCGGCCCCGCGGGAGGTTGCCCCCCGGTCGGACGCGCAGCCCCCGCCGCGGGAGAAGCCGCTCCCCCAGCGCGAGGTCAGCCGCGCCGAGCCGCCCATGTCGCTGCAGCGCGAGCCCCCTAGGCCCGAGCCGCCGCCGCCGCCGCCGCTCCCGCAGTTGCACTTGCAGCCGCCTCCGCCACGAGAGTCGGCTTCCCGGGCCGAGCCGCAGCAGAGGCCGTCGAAGGAGACAGTGCGCCTGGAGCTGGTGCTCAAGGATCCCACCGACGAGAGCTGCGTGGAGTTCAGCTACCCGGAGCTGTTGCTGTGCGGAGAACAACGGCAGAAGAAGCCCATTTACATGGAAGACCCGTTCAATGATGATCATCAAGAGAGGCAAGAAGTGGAAATGTTGGCTAAGAAGTTTGAAATGAAATATGGTGGGAAGCCCCGTAAACACCGGAAGGATCGGCTACAAGATTTAATCGATATAGGCTTTGGCTATGATGAGACAGATCCATTTATTGATAATTCAGAGGCTTATGACGAATTAGTTCCTGCTTCTCTAACAACAAAATATGGAGGGTTTTATATCAACACTGGCACTCTCCAGTTTCGCCAAGCTTCAGATACTGAAGAAGAAGATATTACAGACAACCAAAAGCACAAGCCACCCAAAATTCCCAAAATGAAAGAAGATGATATTGAGATGAAGAAGCGGAAGCGGAAAGAGGAAGGGGAAAAGGAGAAGAAGCCAAGGAAAAAAGTACCGAAACAACTGGGAGTTGTGGCTCTAAATTCACACAAATCTGAAAAAAAGAAGAAACGTTATAAAGATTCTCTTTCTCTAGCTGCCATGATAAGAAAATTTCAAAAAGAGAAGGATGCATTAAGGAAGGAGTCTAACCCTAAAGTCCCAGTGAACTTCTCGACCTCCTCTCTGCATAAAACCCCCTCTGCTGCTGTGGCATTGGGGAATGATGTCTCGGACTTAAATCTGAATAGTGCTGATCCGGACCTCCCCATTTTTGTTAGCACAAATGAACATGAACTATTTCAGGAAGCTGAAAATGCCCTAGAGATGCTAGATGATTTTGACTTTGACAGATTACTGGATGCTGCTTCTAATGGTAGCCCCCTGTCTGAGTCAGGAGGAGAGAATGGAAACACCACCCAGCCAACCTATGCCTCTCAAGTTATGCCCAAGGTGGTACCTACACTCCCAGAGGGTCTGCCTGTCCTTCTTGAAAAACGTATCGAAGACCTCCGTGTAGCTGCCAAACTTTTTGATGAAGAAGGAAGGAAAAAATTCTTTACACAGGATATGAATAATATTCTTCTGGACATTGAGTTACAGCTGCAGGAACTAGGCCCTGTCATTCGTAGCAGTGTCTACTCCCACCTTGAAGCTTTTGTGCCATGCAATAAAGAAACACTGGTAAAACGTCTAAAGAAGTTACATCTCAATGTCCAGGATGATCGTTTAAGAGAACCTCTGCAAAAACTGAAACTGGCTGTTAGCAATGTCATGCCTGAACAGCTATTTAAATACCAGGAGGACTGCCAGGCTCGTAATCAAGCTAAGTGTGCCAAGTTTCAAACAGATGAAGAACGAGAAAAAAATGGATCTGAGGAAGATGATGATGAGAAACCAGGGAAACGTGTCATAGGACCAAGGAAGAAATTCCACTGGGATGACACCATTAGAACTTTGTTATGTAACCTTGTTGAGATCAAATTGGGATGCTATGAGTTAGAGCCAAATAAAAGCCAGTCTGCTGAGGATTATCTTAAATCCTTTATGGAGACAGAGGTGAAACCATTGTGGCCTAAGGGCTGGATGCAGGCAAGAATGCTTTTTAAGGAAAGTCGGAGTGTACATAATCATCTTACTTCTGCTCCGGCAAAGAAAAAGGTGATTCCTGCACCTAAACCCAAAGTGAAGGAGTGTAGTCCAAAAAAGGACCAGAAAACTCCTGCATCCTTGGTGGCTTCAGTTGGTGGCCCTTCAACGAGCTCTAGCACATCTGCTGTGGCCTCCACCAGTTCTAGCTCTACACCGGCCCAGGAGACGATCTGCCTTGATGACTCACTAGATGAAGAACTTTCTTTTCATCCACCTGCACTGGATCTTGTTTCTGAAGCTTTAGCTGTTATCAACAACGGGAACAAGGGCCCTCCATCTGGCTCAAGGATAAGTATGCCAACTGCAAAACCTCGTCCAGGACTGAGAGAGGAAAAATTAGCAAGTATCATGAGTAAACTGCCACTGGCTACTCCCAAAAAACTAGATTCTACTCAGACCGCACATTCATCAAGTCTTATTGCTGGCCACACAGGGCCAGTACCAAAGAAACCCCAGGATTTAGCTCATACTGGCATCTCTTCAGGCCTTATTGCTGGTTCTTCAATTCAGAACCCTAAAGTTTCCTTAGAACCTTTGCCAGCCAGGCTACTTCAACAAGGACTACAGAGGTCAAGCCAGATTCATGCTTCTTCCTCTTCGCAGACCCATGTCTCCTCTTCTTCCCAAGCCCAAGTTGCTGCCTCCTCTCACGCTCTGGGAACATCAGAGGCCCAAGATGCTTCTTCGTTAACACAAGTAACAAAGGTGCACCAGCATTCAGCTGTCCAACAGAACTATGTGTCTCCATTACAAGCAACTATTAGTAAATCACAGACCAATCCAGTGGTGAAATTAAGTAATAATCCCCAACTTTCCTGTTCATCCCCACTTATTAAGTCTTCAGATAAGCCACTTATGTACCGCCTTCCCTTATCTACTCCCACACCTGGAAATGGTTCTCAAGGGTCCCACTCCCTGGTTTCTAGGACAGTACCTAGCACCACTACCTCCAGTAACTATTTAGCCAAGGCAATGGTGTCACAAATCTCCACGCAGGGTTTCAAATCTCCCTTCTCAATGGCTGCATCCCCAAAACTTGCCGCATCTCCGAAACCTGCCACGTCTCCTAAACCCTTGCCCTCACCTAAGCCTTCTGCCTCACCCAAGCCCTCTCAGTCAGCTAAGCCTTCAGTATCAACTAAACTTATTTCTAAATCCAACCCAACTCCCAAACCTACTGTATCCCCAAGTTCTTCCAGTCCAAATGCACTAGTGGCCCAGAGTAGCCACTCTAGCAGTAACAACCCAGTCCATAAACAGCCCAGTGGAATAAACATCAGCAGACAGTCTCCCACCTTGAATTTATTGCCCTCTAATCGCACTTCAGGCCTTCCATCTACAAAAAATCTTCAGGCCCCTCCAAAGCTAACAAACTCATCATCCACTGGAACTGTCGGCAAGAATAGCTTGAGTGGAATTGCAATGAATGTACCGGCCAGCAGAGGTAGCAACCTTAACTCAAGCGGAGCTAATAGGACTAGTCTATCTGGGGGAACAGGAAGTGGAACACAGGGTGCTACTAAACCGTTGTCTACTCCACATAGACCATCCTCTGCCTCAGGGTCGTCAGTGGTAACAGCCAGTGTGCAGTCCACAGCAGGAGCATCATTATTGGCTAATGCCTCACCTCTGACTCTCATGACATCACCTTTGTCTGTAACAAATCAAAATGTGACTCCTTTTGGGATGCTGGGTGGCCTTGTTCCAGTGACCATGCCCTTCCAGTTTCCCTTGGAGCTACTTGGCTTTGGAACGGACACAGCTGGAGTGACAGCCACCTCGGGATCTACCTCAGCCGCTTTCCACCATAGCCTAACTCAGAATTTACTAAAGGGTTTACAGCCAGGAGCTCAGCATGCAGCAACACTTTCCCACTCACCTCTGCCTGCACATTTACCGCAAACATTTAATGATGGAGGCCAAAGTAAAGGGGACACTAAATTACCACGGAAATCTCAGTGACTTCCAGCAAGCAAAGGAGATGACACACTTGGCTGGCTGATGGAATCTACCTGATGGAAAAGTACTCATGTGGTCATAGGGCTGCTGTTCTGTCGATGTTTACATTCTCTCGTCCCAAGCACTGTGTTTCACCAGAAACCCCAAAGGCTGAGAACAAAACAGTAGGTGCCAAGTCCATCCACATTCTAAAGGGAAAAGGAGCTAGATCACCTGTGCGCCACATGCTAAGAGATTGTGAACTAGATACTGGGAAGCACTGGCTCAGTGCTGGGAAGGAAGAGCTCGGCACCCACCTTCAGGCTCTGTGAGAGAATGTGAGAAGATTCCTTTGGAAGCAGCTGTCAGTATGCTGGACGTTTCCATTCCGCTCCCCAAGCAGGAGAGGGTGGAGGTGCTTCCTCTTCACCTCATGCCAAATGAGGAGGCTGCTAGAGGACCATTGGGAGAGCGTGACACATCCTGTGGAGTATGAGGGACACAGAAACTGGTGTCTGACTCACTCCTAAAAGTCTAAAGACAAATGAGGAGTAGGTGGCTAGCTCCTGGAGAAGACAGAAAAGGAGAGAAGGCTGCAATGGGAATGGTTTACACTCCCAAAGTTTCCGAGTTCCTGTGGGCCTGATGTGGTTCTCAAGAAAGGGAGCCAGATTTGGTCATTTTAAGAAGGAACCCAGCCAAAGGGAACACCTGGACGGATGGAATGACCTCAGTGGAGGGGAGGCTCCTGGAAACTAAGGGGCCGGGGAAGGAATTCTAAGTAACTAGAGAAGGCATGGCCTACAAGGGAACTACAGCTGAGAGATCCCCAGAGAAGGAGAAACTATTGAGAACCTATAAAAAAAGAAGCAACACTGGAATCTGCTGCTCCCGGAGGACACGGACACCAGCTTATCTCTACCAACAAAGAAAGCTGTGTGAGCCACCCACGATTTCATGCCGGAGAGGAAGAAATCCACAAGCAGCAGTGGAAGGAGGAATAAATTGCTCTCTGCTTGTATCTAGCAAGTCCAGCTTGCTGGGTAATAGTCACCTCTACTTCTGAGTATTATAATGTACTGCAGTCTATATGCTACAGGATGTTATCAGTAAGGTTAATTTGCTTAAGAGTAAGACATTTAAATGGCAGAAACTACTATGTAATGGGAAGTAAACGACATAAAAATCTGTAAACTACACAGATGGAATGATTATCTTGCTGAAAAGTATTTACAAGAGTTGTCAAACTTAAAAATTACCTATTTTTCTTTTGCAAAAGAGGCAAGTGTTTCTCATTTGCTGTCCTCCTCTGTGATGACAAGAGGGTATGAGGAGTATGCTGCTGTGTGGTCTGCAGTCTGGTTTTTGGCAGCCAGCATTCATTCCCATATCCTTATGTATTACAGGGGCTAGATTTATGGAAACATTCCCAAACTCCTTGCCTTCAAGGTTCTGGATGTGATTTCTTTCTGCTAGATGTATTCATGAGGTATTTTGTAGGTGGGAGGAAAAAGTGATATTTTTTCTTCTGGCAGCACCTAGCAAAACGGGCAGGCCATGGGAGACTTAAAGTTCTGCCGTAGCTCCCAAGTAATCTCCTATCAGCCCCTACGTGAGCACTTGGGGACCAGCTCTGATCAGCAGTGGGGGGACCTGTATTTTTCTGACCTAGGTGATAGCAGCAACCTCCCAATACTCTGAACTGCTGAACGTTAGTGGCAGCTTTCCTTAACTCCTGCAGCTCTTCTAATAGTGCCGTCAAGCGTCTACTGAATTGAATGCCCTGCACTCAGTTCCTTTCTGCTTGAAAAGCCTGCAGTGGTTTCTCTTTTTCTGACTGAGCCCTGATGGATACAGGTGCATAGCTGATCTTCTGAAAGAAATGAACATACTTAATGGGTCCTTTTAAGCTAAAAGTGATATTTTAAAGCTAAGTGAGGCACTGACTGCCTTTTTAAAAGAAACTCAAGCAATGAAGAAATTTGAGAATGGATGTTTAGAAATGTTTTATCACTATGTGATTTTGTTGTCCCAAATGATGTGTTAAACCAAGATTTTCAAAATAATAAAACATACTGTATTACATTGCATTTTCAATAAAATAAAGAATAATAATCTTTCTTTACTGAGAGAAATTAGTACTTTTTTACTGTTAATAAATAAAATAAAAATATTTTCAAAA +>XM_011942543.1 PREDICTED: Colobus angolensis palliatus ADP-ribosylation factor-like 2 (ARL2), transcript variant X3, mRNA +CGTCGGCGAGCGTGATAGCCAATAGGAACCGGGAGCGGGGTCCCGGGACTGGGAAGAAACGGCGGCCGGGAGGGGCTCCAGGGACCATGGGGCTCCTGACCATTCTGAAGAAGATGAAGCAGAAAGAGCGGGAGCTGCGACTGCTCATGCTTGGCCTGGACAATGCTGGAAAGACAACCATCCTGAAGAAGTTCAATGGGGAGGATATCGACACCATCTCCCCAACGCTGGGCTTCAACATCAAGACCCTGGAGCACCGAGGATTCAAGCTGAACATCTGGGATGTGGGTGGCCAGAAGTCCCTGCGGTCCTACTGGCGGAACTACTTTGAGAGCACCGATGGCCTCATCTGGGTAGTGGACAGCGCGGACCACCAGCGCATGCAGGACTGCCAGCGGGAGCTCCAGAGCCTGCTGGTGGAGGAGGCCCTGGAGCTGGACTCCATCCGCAGCCACCACTGGTGCATCCAGGGCTGCAGCGCCGTCACCGGGGAGAACCTGCTGCCAGGCATCGACTGGCTCCTGGATGACATTTCCAGCCGCATCTTCACAGCTGACTGAGCCACTCCAGATGTCCCTCCACCTAGCAGTCCAGGTCCCCCAACCCTCACCAAACACTATCCATGGGGGCATGGGAGTCAGCCAGCCAAACTAACACTCCCCCTCCTCCATCCCAACCTGCTGCTGCTACTGCTGCCCGCTGCTGCTCTGTGGCCACCCAGCTCCTGTGGCGGGAGGGCTGTGCCCTGGCTGTTTCCCTGGCTCCTGACCTGGCCTTTGGCTACCATACCAAGAAGAGAGGACTGGGCGGGGAGGAGCTGCTACTGCTGCTACCGAGGCTGTGGGCCTCATCCTTCACTCAGCGGTGAAATAAACCACTCCTTGCCCTGA +>XM_021957819.1 PREDICTED: Prunus avium uncharacterized LOC110756391 (LOC110756391), mRNA +ATGCATTGACTTGGAGTCTTTGATAACATTGACTTCGGGTCTTTGAGTCCATGAAAAACCGTTCGCATTTTCCATGATCTTTCTTTCTGTCTGTGACCCAAACCTGCTTCCCGAGTATATTCCAAAATCGCCATTTCAACCTCGAAGTTATAATCAATTTACGAATCAAACCATCGGTTTCAAAAAGAATCATCAACGCACCGCTCGTTTGTTCATTGTCGCGTTACGATTTTCCATTTCAATTGGACGCTTTGAAACTGCTCATACTCGAAGATTTTCCGGTTTTTGAGCATTTCATTTCATTCCATTGGGTTAAGAGTTGGAATGGGGGTCGTAGGGGCGACGAAGCATTTGGAATCATCGAGAATAATTGCTGCGCTTGATGTAAGTCATTCTGAGGAAAGACTGGGACAATTTACCATGGAAAATGGTGAGTTATTTTTCCATACCAAGTCAACTAAGTTCAAGAGGCAGATAGTATCTGCTGTTCGTGATTTCCCCCCGGGGTGTGGACGATTTGCTCATTTGAACTCTTTGAGACATGCTAAGGATGCCACTTCTGTGGGTACTTCAACAGAAAGTTTGCTTAGTGGGGGTAAAAATGTTGGTGGACATCGTGGGGTTGAAAAGCTGATGCTCTCAAATGGTCAGGGAGACGAGACTGACTTGATGAATGGTAATGATGTGGATTCTGTGGAGACAGTTGAATCAGTAAGCGCCTTAGAGCATGAAAGATCTGATTCTCTGAAGAATCTACTTCAGTTAAACAATTCGAGAACTGTTGAAGAGGCAGCTTCTGTTGGTACTGAGGAGAGTTTGATCAGCAGGGATACTAATGTTCATGGAAAAAGGGTTGAAAACTTAATGCTCTCAACTGATCATGTGCATGAGACTGACTTGATGAATGGTAAGGCTTCTGGTACTGTGGAGACAGTTGAACCTGTGACAGATTTGGAGCATGAAGCATCTGATTTGCTGAAGAGTATGCATCAGTTGTCAAACAATTTGAGACCCGTTGACGAGATAGCTTCTGTTGGTACCGCTGAGTATTTGCTGAGAAGGGGTAAGAATGGTGATGGGCAGGAGATTGATAAGCTGATGGTGTCAACTGGTCAGGTGGATGTGACTGTCTCGATGATTGGTACGGCTTCTAGTACTGTGGAGACGGTTGAATCTTTAATGGCCTTACAGAATGAAGTATCTGATTTGTTGAAGAACCCATATCAGCTTGGTGTGGCTACTCCAAAGGAAGAGATGGTTGCTGTTCTTTCAGATAGAAATTTTTGTTCGCCACGTGATGGATCCATTTCTGTTTCTATTGGAAATGGTCTTGAGAAGACTGCAGCGAAGAAATGTCCTTCTCGAAGACTAGTATCAGCTGTTCGGGACTTCCCTCCTCTCTGTGGAAGAAATGCTTGTAAGTTTGGTCAAGTGAAGTCGTGTATGGGTGATGAACCAACACAATCGAACACAGCGAAGACTAGTGTAAAACAAATAAGAGAGGATTTTCAAGAAGAGTTTCATAAGAATGAATTGGGAGGGAATGTTTCTGAAGTTATTAGAGACAAGGTTCAACCTAAATGCAAGGGGCATGCTGTACAAGAAATGGAGAGACGGGATAAATGTAAACCAAGTTATAAGCTGAAGGCGGTTTGGAAAGATACAAGAGAAAAGTGCATTGAGAAAAGTCCGCAAGAAAGTTCACAGCTTCCGTCGAATAGAGTAATTGTGCTGGCTTTGATGGCTCCGTCAAATTCTCAATTTAGGAAGGGGAGAAGGGTCCGCAAGCATATACCAGATTGCATTTGATGAAAGGAAACGAAAGAAACTTCGTCTTAAATGTTAGCTAGAAAGACCTAAAACTGCTTCCAGGACAGAAAAGGCAGCTAAACTCATCAGAACCATTCATCAACAAATGAGCCTTCAAGTTTTGACGTGGAGGTTGAACGCTGACATTTTTCAATGAGCCGGCTGCCCTGTTTTTGCCTAAAAGCTAAAATGATCTGTTATTGGCACTTTGAAAATTACACGTGGAGGAGCATGATGACTTTTGTGGAGTGCCAATAACAGCTTCCGTTTTTTTTATTTTTGTAAAGTGAAGTATGAATCCTGGAAGCATGCTGTGGAGCATCACAATAGGAGTTGGTTAATTGTTACATCTGTTCTTTTTTACACCATGAAAATTTCCCCAAGCTACGGATTTCTAGCATGAAATTTGGCTTTA +>JF936918.1 Taeniopygia guttata clone F5CD66-14 T cell receptor alpha chain (TCRa) mRNA, partial cds +ATTGCTCGAGTAGAAAACTCAGCAAACACGCAGCTCGCTCTCGGCATGCACCTCGCATGTCTCATCCTCAGCGTCCTGCTGGCCCAGCTCCTGGGCACCTCGGGGCAGGACACGGTCACCCAGAAAGATGGAACCGTCACGGTGAAGAAGGGACACCCCTTCCACACCACCTGCAAATACCAGGCCAGTAATTTTGGGGGATTGCTCTGGTACCAGCTGCAGAAAGGCCAAGCCCCACAGCTGCTCTCCTATCAAACAGGGACCGGCCGCAAGCACAGCGGCCGGATCACCACGTACCTGAACACCACGGGCAAATCCAGTGTCCTGCAGCTGGAGGAAGTGGAGCTCTCTGACAGTGCCTTGTACCTCTGTGCTCTGGTAAATGTGGCAGCCAGAGTCATTTTTGGCAAGGGGACGGTGCTTTCAGTCCTGCCAGAAATTACTCCATCTCCCTCAGTCTACAGGCTGACCTCCAAAGATGACCAGGGTCTGGAAATGTGCCTTATCACAGATTACTCCCCTGAGAAGCTCACTCTGAACTCAGCTGAGCAGCACACATCTGCTGTTGTGGAGGTGGCAACCATGGAGAACAGCGAGGA +>XM_041785118.1 PREDICTED: Cheilinus undulatus N-sulfoglucosamine sulfohydrolase (sulfamidase) (sgsh), transcript variant X2, mRNA +GTTGAGGAACTGCGCTGTGTTTTCTTAGATTTTAATGTCAGCTCTATCAGTCAGTAACTGTTCACCATGCATTGATTTAAACGAATACAATGACTCTATTTAAATGATGTATTTATTATGAGTTAGACGAAATGTTTAAAATCATAACCAGCGCAGTTTTTCAGCCTTTATAGACAGGTTTTAGGGAAGGTCTGAGAGAAAATCATCATGGTCAAGCTGCTTTTTCTCATTTTGGCATCATGTTGCATCGGAGAGTCAAAGAGGAGAAATGTCCTGTTAATAATTGCTGATGATGCAGGCTTTGAGACGGAGGTGTACAACAACTCTGTGGTCCATACTCCACACTTACGATCTCTGGCCCAGCGCAGCCTGGTGTTCAACAACGCATTCACATCTGTCAGCAGCTGCTCCCCCAGCCGCTCCACCATCCTCACAGGACTTCCACAGCACCAGAATGGCATGTATGGGCTTCATCAGGGTGTTCACCACTTTAACTCGTTTGATGGAGTACAGAGTCTACCGCTGCTCCTTGGCCAAGCAAACGTACACACAGGTATAATTGGGAAGAAGCATGTAGGTCCTGGATCTGTTTACCCGTTTGATTTTGCCTACACAGAGGAGAACAACTCTGTGCTACAGGTGGGAAGAAACATCACCCGCATCAAACTTCTGGTCCGCAAGTTTTTCCAAACCCATAAGGAGGAAGACCATATAAAAGATGAAGAGAGGTCGTTTTTCCTCTATGTTGCCTTCCATGACACCCACAGATGTGGACATTCACAGCCTCAGTACGGGGCTTTCTGTGAGAAATTTGGAAATGGTGAAATGGGAATGGGAAGAATACCTGACTGGACTCCAGAGTATTACACCCCAGAACAAGTGAAGGTTCCTCCTTTTGTGCCAGACACGCCTGCAGCACGAGCAGATTTGGCTGCACAGTACACAACAGTTAGTAGGCTGGACCAAGGTATTGGTCTGGTCCTGCAAGAGCTCAGGGACGCTGGATATGAAAACGACACTCTGGTCATCTACAGCTCAGACAATGGCATCCCTTTCCCAAACGGCAGGACTAACCTGTATCACTCTGGGACTGCAGAGCCCATGCTGGTGTCCTCTCCAGAGCACCGGGAGCGATGGGGCGACATTAGCCAGGCCTACGTCAGCCTGCTAGACATAACTCCCACCATTCTGGACTGGTTTTCTGTCCCCTACCCGTCCTACAGCCTCCCCGGCAGCCCTTCAACCCCCGTCCACCTGACTGGGCGCTCCTTACTGCCCGCCCTTGTCTCTGAGCCCAGCAGCTGGCACACGGTCTACGCCAGTCAGTCCCTCCATGAGGTTACCATGTACTATCCAACCCGCTCTGTCCACCAGGGGGCGTACCACCTCCTCCACAACCTTCACTACCGCATGCCCTTCCCCATTGACCAAGATCTGTACGTGTCACCCACCTTCCAAGACCTGCTGAACCGCACCCACCTCAGAGAGCCCACACACTGGTTCAAAAGCCTGCAGCAGTATTACTACAGAGAGCGCTGGGAGCTGTACGACTCCAGGGCAGATCCACTGGAAACAAAGAACCTGGTATCAGACCCCTCCTACAGCACCGTGCTGGAGAGCCTGAGGCAGAGTCTGCAGAAGTGGCAGTGGGAGACAGGAGACCCCTGGGTCTGTGGACCTGACTACGTCCTGGAGGACAAACTGGAGCCGCACTGTAGACCACTCTACAATGGACTCTGATGATATTTGTACATTTCTGACCGACTCAAAGTCTGCTTAAAGTGACACATTCTTCTAATGAAATAAATTACTTTTATAGGCATTTGTATTATATTAAAATGTTGCTGCTTTGTTCAGAAATAAAAAAAACTTGAATTA +>XM_026823756.1 PREDICTED: Diaphorina citri dipeptidase 1 (LOC103509407), partial mRNA +GCACAACGATCTACCGTGGAACATTCGTAAGTTCATTCACAATCATCTGGTCAATTTCAACCTCTCCTCGGATCTCAGTGTGACGGAGCCGTGGTCCAAGAGCAGCTGGTCTCACACCGATCTGCCTAGACTGAGAAAAGGTATGGTAGGAGCCCAATTCTGGTCGGCCTATGTGCCATGTTCGTCACAACATATGGATGCAGTACAGATAACAATGGAACAGGTGGATGTTATACGCAGGTTCACGGAGTTGTACAGCGACGACCTTAAGCTGGTCACCTCAGCACAAGAAATCCGAGCGGTCCATCGGGAGGGTAAAATCGCCAGCATGATAGGCGTGGAAGGTGGCCATTCTTTGGGGAACTCGATGGCCGTTCTGCGCATGTTCTACAAGCTCGGGGTCCGATATTTGACCCTGACCCACGCCTGTCCTACACCATGGGCCGGATGTTGCAGTTCTCTTTTCTCTCCCTCCCCTGGTTCCCAGCTGGTGGTGCGGGAATGCAACCGGCTCGGCATGCTCATAGACCTCTCCCACACCTCCGTGCAGACCATGCGACACGTCCTCAACATCAGTTCCGCCCCTGTGATTTTCTCCCACTCGTCTGCCTTCGCCCTCTGCCCTTCTCCCCGAAACGTGCCCGACCCTGTGCTCAAACTAGTGGCCTTAAACGACGGAATAGTAATGGTTAGCTTCTACTCTCTGTATCTCACCTGCAGTCTGAACTCCAGTATAGATGACGTTATAGCTCATCTGGATCATATCAAGAATGTAGCGGGTGAGGATCATGTAGGTCTAGGTGCTGGATATGATGGAATTAACTAG +>NM_001168050.1 Saccoglossus kowalevskii cripto-like protein (LOC100313583), mRNAGU075970.1 Saccoglossus kowalevskii cripto-like protein mRNA, complete cds +GGCAGAATAAGCTATATAAGACATCTTGGCGTTATCTGGTCACTTGTAGCGTGGACTCACAACTCCGCACACTCTCTATCATAACCTTGGATCTTACACTGTAGTCTTCCCCAGTACCCTAACTTTGAGTTGACCATGAATTGTCACCTTGCCAATTTGTTAGCAGCGATTTTACTGCTCGTGATGGTCACTAACGTTTCGTCAGTAAGTCTAGGAGAATGGACTAACACCCGATCTTCCGCCAACATCTGCCATAACGGAGGGATAATGATCCTTGACAGTTTCTGCATATGTCCCATTGGATATGGTGGTCAATACTGTGAAAGCAAGCCTTGTGGCGCAGTTGCCCACGATGAAAAACTCACCGTACAATGTAATACCTGTCTGTGTCGAGACGGGAAACTCTACTGTGTACCACTGGGATTCCCTGCTTGTGAAACTACAGATGAAGTGATTATTGTGATTACGTCAGCCCCGATCACCACCAGCACCTATGCGCCGACGGAGGCCGAAGACGTCATAATGTTTTCTTACGGTGAATTCGAGGCGTTGTCATCTGTTGCAGCAATCACTCCCCGTTTTATACAGTTAGTTCTGCCCGCATTGGTGTTGCTTATGACACTGTGGACATGAGTTGCATATCTGAGAAAAGGGACAGCGAGGTTTATTGGATCCAGGCAATGATAGTTCTGATAAGACGACCGAAATCCCCGACTTCGCGGATTTACAACCATACAAGATGGTAGTTTACCGTCCAACAGCCCGGATAGGGTGATTGAGAAATAACAGTGGACGCACTCCATGTTTCCTCTGGGCCAAGAGGCAATACAGTATACATTCAATGTATCTTCCTAATTCAGGCATTATGCTGTTTAATTGTGATACAAACCGGGAAATGTACTAGGGCCTGTGCTATTATATTATCATCAGAAATTATGTTTATATATGCAGTATTGTGAGTTGTATTGTAAGTTGTATTGTAAGTTATTTGTAAATAAGCTACATATATTTGTAAATTATGCATTTTTATATGAAAAAAATAACAAAAGACAATACAAATATAGAGGAATGAGATTTTAATAAATAATTTAACATAATTATGTAATTTTATATTTTTAAACTGGGTATCACTAAATAAAATCATAAAATCACAAAAAAAAAAAAAAAAAAAAAAAAAAA +>XM_053452891.1 PREDICTED: Spea bombifrons zinc finger protein 217 (LOC128471049), mRNA +AGAGAGGATGAGAGCCTCACACCCAGGAAGTGCTTTCCCAAAATGACTAGAAGAAGAATAAGAGGCAGCAGGTACAGCGGCCAGAGGTAGCCCCAGCTCCAAGTGATGGACCTTTTGGGTTTCCCATGACGATGCGCAAATTCAGTCCTATTTACATCTGAAGGAAACGTGTGCATTGTTCAGGGGTTCTTCTCTCATCCATTATAACAAAGGATACATACCAATGTCTTCACAGAATTGACAAATGAAGAATTGACAGCTAATCTTCTCTGGAAGGAAACTACGAGCAGTACTTGAGATCTACAGTGGCATTCACATGTATGTGTCTTTAATTGCCCACAGCTTTCCTTATGTTCCTAAGGAACTTCTAACTAAAAAGTTGGCCCGCAGCACTGGAATTCTAAATCTGGCAGCAACCATGCCGGTTCAATCAATTTCCGATGGTTCTGATGTCTTGGGTACTGGCTTTAATTCCCAAATGGAAAGTTCTCATTCATCATTGGCACTCCAGCCTGCAAACACCCTTTCCAATGCAGCATTGCATGAAAAATGTTTAATGCAGACAGAGGGGGACATGCTGTTCGATTGCATGTTTTGTGACAAAACCTATACCTTTCATGAAGAACTTGGGAAACATGTCTTGGTCCAACACAGGCCAATACTGTGTGAGCCAGCCGTTCTTCGTGTGGAGGCAGAGTACCTCAGTCCCCAAGATAAACGCAGGAAAAGTGGAGAGCTTTCAACGAACGATGAACTTGATGAAGCTGAACATAGACTAGGCTTTGACTGCGAAGTATGCGGCCAGACCTTTAATGATTCTTCAGATGTGGAAGGTCACATGAAGAAGCACAAAGATTCGTTCACGTACTCTTGTGATATCTGTGGACGGAGATTCAAGGAGTCGTGGTTTCTGAAGAACCACAAGAGAACACACAGTACAAAGTCTGGAGGCAAAAACAAGCAACTGATAATCAGCGAGATGCCTATGACCATTAATGAAGTGGTATTGGAGCAAGTGGACAAAAATGTCCTGTGTCCTTACAAGCTGTGTGTGGTTTGTGGATTCTTTTTCCCCAATAAAGAATGCTTAATGGAGCACAGTAAGATACACCTTAAGGAATCTACCTCATCCGAAAATGGCTTAAATGAGCTGCCACCTCCAACAAATAATTCTGTACAATCTGAGGCTAGCGAAAATGCAAAAGGAGATGCTTCAAAAGAAGCCTTAATGAGGATGTTAAACTTACAACCTAGATCTGCAGGACCAAAGAACGCTGAAACATCTAGAAGATGGATTGGGGCCTTAGATCCATTCAACACCTACCAAGCCTGGCAACTGGCTACCAAAGGTAAAATTGCACTTGCCCATGGTAGAGTTAAAGAACCTTCGCATGAAGTAAACTTTCATATAGATCCATGTTCGGACAAGGACAAACCCAGTAAACTTTGGAAAACGGGAAAGGTTAGTCGTGCTGGAAGCACCCATCAGACCAAGAGTGAGGTCTGCGAAGGACACACGACTTCCCAGGATGGCCAACATGTACATCTGCAAAACGAAGCCAACGACGTGCCTTACGTAGACGACAAAGACAGGCCAACGTTTTGTGACGATTGTGGGAAAACGTTCAAGACCTACCACCAGCTTGTGTTACATTCACGAGCGCACAGAAAAGAGAGGAGCGATTCCGAATGTTCCGCGATGAGCGGGGAAGTCCTCTTGCCTAAGGTGGCCTCGCCGGATATCGCCAGCAGTTTGGAAGACGCTGATGCTATGAAAATGCACGATGATTCCGAGGATGGGTCAGAAGATCCTGGAGGCGATCCTACACAGATTGATGATAAAAATGAAGACGATCTAGAAAGGGGGAAAGCAAAAGGCCTCTCTGTATCTCGGAACTGCAGTTATTGTGGAAAGAGTTTCCGCTCAAATTATTACCTCAATATTCATCTCAGGACTCACACAGGTGAAAAGCCATACAAATGTCAGTTGTGTGACTATGCCGCAGCACAGAAGACCTCGTTAAGATACCATCTGGAGAGACATCATAAATTTAAACCAGGAGATTCCAACGCCATGGTGAAAAGCATCAGCAAAACCGTACAACTCGCTCAACAATCTGGCGAACATGCGTCTCTTACTTCCAACCTAACAGAAACAAAACCTCTGAAAAAGCTTGAGGCAAACTCTAAAGAGGAGAGCCCACCATTAAAACCGAAACGTGTTTCTTCTTCGCGTAACAAGTTTGTGACCGCAGCTCAGTCTCCAGAAACCGAAGAAGCCGTCGTTGATGGATACCCAATCTTTCCAAACGACTCCAATGTGAAAGAGCTACCTCCTTCCCAATCTGTGACCAAAGACAATGTGCCTGTTGATATGGAAGTTGACCGAGAAAGCCATACCACCATGGATGAAAGCTTTGCCGAGCAGGGTCATTTTGAAATCACTCCTATGCTGGCCGAGGAGTTGGTCCTATTAAACTTGTGTTTAAAATCGGATAATGGCCTTTCAGCACCTCTGGATACCAATGCCTTGCTTTTTAAGACCTGCCCTTATTGTACTTTCAAAACCTTGCACCCAGAAGTGCTGGAAATTCATCAGAAATTGACTCACAAACCTAATCTTGCCGAGAAGAATGGCGGCAAACTCAAATCTGTGCTGAATGCCATTAAAAAGAGGCGTACCGGCTGCCCTCCTGCACTTAACGGAATGGACATTTCTCCTGCACCTTGCAGTGGTCTTAAAGCCAAAGCTCCTCTAACGCAACCAAAAACCCTCAACAATGAAAAGGTGAAACGGGCGGCTTTTTTGCCTGCGAAAGCCGTGCCCTTGGATCAAGAGAATGCAATGCTTGCACATAAACACAATGGGGCTTTGCTGAACAATTACACGTACGTGCAACCTGACTTACAAGGAATTTCTCACCTGCTTGAAAGGATGCAACCGCCTGAACCAAGTAGGGCTTCTTGGAATGCGCCAACTACCAGCAGGGGGAATTCTACCGCTGCAACTACAGAATACGCCTATCAGACATCCCAGGCCTGGCCTGGCGCTCAGAATCTGTTTGCCAGACCCCTGAACTCAAATCACGAGCCGTGCCCAAAGAAGGCCAAGTTCAATATTACGACAAAGGATGACATGTTCAAAAAACCGCTTCCACTTGGGCATACTGGGATGTTTCCACAAGATATGGCAGCGGCAACTGGAAGCTCATTGCTACCTAACAAGGGCTATAACACCTGTGAAGCTGGTTCTTCAAAAGCAATGAAGCCTCCTGCCCAAAGCACTGCTAGATTTGCATGCGTTAATCCGGGATCTACCTCCGCCACCGACGGAAGAAGTCCACCATACCGTCGTGTATCCAAGAGAAGCTTGACACCAAATGATAAACGGGTGTGAAGGATACCCTTTGTTTAAAAAGGGTAAGCAATGATTTGCTGTTCTTTGAGCCACTGTAGCGTGAGTGAGTGTGGGATCGAGTATTGTATAAAAGAGAAGTGGAGCGATTCTATCCAGCTGCGAGAGCCTGTCTC +>XM_039175744.1 PREDICTED: Hibiscus syriacus profilin (LOC120166485), transcript variant X2, mRNA +AAAAGACAGAATTTCATCAACGGAAAAATAATATATTCGAGAGAAGTAGAGGAAGGAGAAAATGTCGTGGCAAACGTATGTAGATGATCACTTGTTGTGTGAAATCGAAGGCAACACTCTCTCTGCCGCCGCCATCATCGGTCAAGACGGCAGCGTTTGGGCCCAGAGCTCCAATTTCCCTCGGTTCAAGCCAGAAGAAATCTCTGCTATTATGAATGACTTTGTTGAACCTGGATCACTTGCCCCCACCGGATTGTACCTTGGTGGCACAAAATATATGGTGATCCAAGGAGAAGCCGGAGCTGTTATTCGAGGGAAAAAGGGGCCTGGAGGAGTTACTGTTAAAAAGACCAATCAAGCCTTGATCATCGGGATCTATGATGAACCAATGACTCCTGGCCAATGCAACATGATTGTTGAAAAGCTCGGTGATTATCTCATTGAACAGGGTCTTTAATTTATTTAGCTTGCCTTAATTGTCGCAGTTCTTCTTGGCTTCTTTTTTCTATACGAAAGTGCACCTGCCACCTCCCGTAATAATGGTTGGATCGAGTTAAAATAACAGTATTAGTAGTATTAAAAGTCAAGGGGAACCTTTTTCCAGAAACAATAAGCTTGATGTTTGTAATAGTGATATGCTTGTGATCCTCTTGCTTTGTTTCTGTTCTTGTTTGATGAATGGTATTGTCAAGATTGTGGAGCGAGGTACTTTTGTCTACATTT +>XR_004882887.1 PREDICTED: Helianthus annuus uncharacterized LOC110916910 (LOC110916910), transcript variant X15, ncRNA +TTGTGTACTCTCCCATGGTTTGTGGCCCATCTTCTCCACTAGGCACGGTTGCTAGGACGTGGGTAGAATGCAGTTGCCCAGTGGTCTTATATAATATAGACCCTTGCATCCAAATATTCACCTCCATACATCTTTCAGTTTGTAGCAGATATGATATATGCACATAAATAAACACACCGTTGGTACCGCGTTCTTCAATCGTGATCTCAAACTTACATTCAATTGTTCTTCATTCAAGATCTGCCCTTCTCCTCTACTCGCCGCCGCTGTTGTTTGAGTCGGACATCGGCGCCGCCTCCGTTCTACACCCTTTTGTCATTTAACACACCCTGGCGCCACAAAATTTCTGAAATCAATCACAAGGTCGTTGATGTTCTTGGATAGGTTACTATCTCAGTTAAGGCTTAGTGGAGATAAATTATTAGTTGCAGAAGATCCTAAAGAGAAAGACATATCAACTTGAAAGTCCCAAGTGAGAGGAGGACAAAGGTCATTACTTGAGGCTAGCAATCTGATTGTTCTCAAGGGATATAAAAAGTAGTTGAGTGGAACCCATACACTAAAATTACTAAGTACTAATTACACTAGATAATGTGAGTTTGGAAGAAGGGGGCAAGGGGCCATGTGTAAGCCACTTAATGCTGGTATCCATGCCTATAGGCGTGTCGATATCAACCCAGACAATAAAGTTTCGATCTTTGGGGATGGACCCATCTCCACTTTTACACGGCAGGCTGAGCTCACGGTACTGGTTGGTTATTTTGGGACACAACAAAGTATGCCATGAATGGTTCAGCAAAACTTGATGCCAATCTTCAAGAGATATTTTTAATGGAAATTTGAAGGCTATTCAGGGATTGGGATAGTTTCAATAGCACCAAACCATGAGGGCTACTAACGGGCCAACCAACCCAACCCTTCTGAACTTGTGCAGAATTCTTGCTTGAAGCAATAAATGGACTTCTTTCGGACACCAGGTTTCAAATATGGCATTCAGAAAAGTGTACCCGTTGTCTGGATGAATACCCACCATTGTCGAATGAATCATTTGTCAATGAATGATGGGTATTACGTTCTTCAAGAAGGCTTTTGTAATGGTGTCAATCTTGATTCTGTTAGCTCTCAAGGTTGCCTATTATTTGAGTATATGGAATGGAATCAGCCTTGGGGTAGAGAACCTTTAGCTGATAAGGTTAAGCCTTGCCACACGCCATCCTATTTACGAGGGTTACGCCTTGCCACATGCCATCCTCCGGTTAGATCTAGCAGGACGTTATCTAACCGTCTGGTTGATGAGATTCTACCAGAACGTAGAACGTGGGTATACATTCACCAGAACCGCAAAACGGGAAATTGTTAGAGACATGAAAGAAAAACGGGCGTACATCGCTCTAGACTATGTTAGAGACATGAGAAGAGTTTCGAACTGCCCGGCGAGCAGGTCATTACCATTGGTCAACAATGTTAATATTCCTAAGAATCAATCCAGATTCTTTGAGCAACAATCAATCCAGATTCATATTTCACTAAAGATGTAAACAACTACTTCCAATTCTTTAATTTGCAAATAGAGTTTGAAATTGTTTATTAGTTTGATTTCATAAACTTGAAACGATACCATCATACAGATTCTAATCATTGTATTT +>XR_007968113.1 PREDICTED: Xyrauchen texanus putative uncharacterized protein FLJ46204 (LOC127624086), transcript variant X2, misc_RNA +CACACACACACACACACACACACTCACACACACTCACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACATGTTGTGTTTCCATGTTTTATGGGGACTTTCCATAGACATAATGGTTTTTATACTGTACAAACTTTATATTCTATCCCCTAAACCTAACCCTACCCCTAAACCTAACCCTCACAGAAAACTTTCTGCATTTTTACATTTTCAAAAAACATAATTTAGTATGATTTATAAGCTGTTTTCCTCATGGGGACCGACAAAATGTCCCCACAAGGTCAAAAATTTCGGGTTTTACTATCCTTATGGGGACATTTGGTCCCCACAAAGTGATAAATACACGCTCACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACACAGGCTGGTGATTCTCAACGGATGGGTCTCAGGTCTCATTTAAGAGCAGACAGCAGGTTAAAACAATTCAATGCAACTAACCATATAATCATTAATAGACAAGATAGAGAAACAAATAGACTTTATCGACTTTTGAAAGGTTGGAGTAATCACTTCCCATATCAG +>XM_026403930.1 PREDICTED: Urocitellus parryii CUGBP Elav-like family member 3 (Celf3), transcript variant X37, mRNA +ATGAAGGAGCCGGATGCCATCAAGCTGTTTGTGGGGCAGATCCCGAGGCATCTGGAGGAAAAGGACCTGAAACCCATCTTCGAGCAGTTTGGTCGGATCTTCGAGCTGACTGTCATCAAGGACAAGTACACCGGGCTGCACAAGGGATGTGCCTTCCTGACATACTGTGCCCGCGATTCAGCCCTGAAGGCCCAGAGTGCCCTGCACGAACAGAAGACGCTTCCAGGGATGAACAGGCCGATCCAGGTCAAGCCCGCCGACAGCGAGAGCCGAGGAGACCGGAAGCTCTTTGTGGGGATGCTAGGGAAGCAGCAGACAGATGAGGACGTCCGGAAGATGTTCGAGCCCTTCGGGACCATAGATGAGTGCACTGTGCTCCGGGGGCCAGATGGCACCAGCAAAGGCTGCGCCTTCGTGAAGTTCCAGACCCATGCTGAGGCCCAGGCCGCCATCAACACCCTCCACAGCAGCCGGACCCTGCCTGGTGCCTCATCCAGCCTGGTGGTGAAGTTCGCTGACACCGAGAAGGAGCGAGGTCTGCGACGCATGCAGCAGGTGGCCACCCAGCTGGGCATGTTCAGCCCCATCGCCCTCCAGTTTGGAGCCTACAGCGCCTACACCCAGCTGATGCAGCAGCAGGCGGCCCTGGTAGCGGCCCACAGTGCCTACCTCAGCCCCATGGCCACCATGGCTGCCGTGCAGATGCAGCACATGGCCGCCATCAATGCCAACGGCCTCATCGCCACCCCCATCACCCCCTCCTCAGGAACCAGCACCCCTCCTGCCATCGCTGCCACGCCCGTCTCTGCCATCCCTGCTGCCCTGGGCGTCAACGGCTACAGCCCGGTGCCCACCCAGCCCACTGGGCAGCCTGCCCCCGATGCTCTGTATCCCAACGGGGTTCACCCCTACCCAGCCCAGAGCCCTGCGGCCCCCGTGGACCCCCTGCAGCAGGCCTACGCAGGGATGCAGCACTACACAGGCCCAGCAGCCTACCCGGCAGCCTACAGCCTGGTTGCGCCCGCGTTCCCGCAGCCTCCTGCCCTAGTGCAGCAGCAGCAGCGAGAAGGCCCTGATGGCTGTAACATCTTCATCTACCACCTGCCCCAGGAGTTCACGGACTCAGAGATCCTCCAGATGTTTGTCCCCTTTGGCTTTGTGAGTTTCGACAATCCGGCCAGTGCCCAGGCGGCCATCCAGGCCATGAATGGTTTCCAGATCGGCATGAAGCGCCTCAAAGTCCAGCTAAAGCGGCCTAAGGATGCCAACCGGCCCTACTGA +>XM_034920330.1 PREDICTED: Acipenser ruthenus E3 ubiquitin-protein ligase TRIM52-like (LOC117972083), transcript variant X1, mRNA +CAAACATCAGAAACAACCATAAATCTAGAGGACCACTGTCACTGTCATTGTGAAATACACAGCGGGAAATGAACTGACTCATACTGAGACTGAGAGAGAGAGAGGAATTGAAATCAGCAATTAAGGTTTGAGAGATTTTCAGCCTGTCCTCAACATAATGATGTCATCGTCTCCGGAGGCGGAGCTGGCGGAGAGCCTGACCAATGAGGTGACGTGTCCCATCTGCCTGGAGCTGTACTGCGACCCTGTGCGGCTGGAGTGCGAGCACAATTTCTGCCGTAGCTGCATCAGTAAGTACTGGCTGCGGGGCGGGGAGGAGGGCAGTGCCCCGGAGGGGCAGAGCCAGGCCTTCACCTGCCCCCAGTGCCGCGAGATCTTCCCCCAGCTCCAGCTCAGGACCAACCGGCTGCTCTGCAACATCGTGGAGCGCGTGCGCAAGCTCCGAGTGGACTCCTGGGGCACGGCTTCGGCCTCTCCACCAGAGGGCAGCGGCGCAGCAGAGAGGGGCACTCCGGCGGGGTTCTGTGCGAAGCATGGCGAGAGACTGAAGGTGTACTGCCAGGATGAGCAGGTGGCAATCTGCGTGGTGTGCGCTGTGTCCAGAGATCATAAAGACCACAGCATGGCACCCATACAAGAAGCACTGCAAGAGTGCAAGGAGAGGTTTGAGTCGGCGCTGACTGAGTTTGAAGAACAGAAGGAAAAAATCCGGACTATGCACTCGAAACACGAGAGAGAGCTGAATGACCTAAAGGACTCTGCTGCCTCTCTTGAGAGGGGGATCTGCTCCCAGGTGGAGGAGCTCCTGCAGTTCCTGGAGGCTGAGAAGAAGGCGCTGTGCTCCCAACTGCAGGCTGACCTGCGCAGGCTGGAGCAGCAGAGAGAGGGGGTGCTCAGCGCAGCACAACAGGAAGTGACCCACCTGCAGCAGGACGTGACCTCACTGCAGGGCAGGCTGGCAAGGGAGGGGCTGGAGAAGGATGGGCAAGAAGTGGGCGACGCCCCAGCGCTAATTAAGGAAAGTGACTTCCTGTTTTTTTTTATTATTATTATTATGGAAGTTTATGTAAGTTTGTTAGCGTGAAGGATTGCGATTCTTTTAACTTTTGAGCAGCTTTTTGGCTGGATTTGAAAGTGTGTATACAGCTTCATACCTGCAGAGGAACTGAACTGCTTGACTCAGTTTCTTCTAGTTTCTGTAACACTGATGAAGGCACTCGCTGAAACGCTTGTCTGC +>XR_007189094.1 PREDICTED: Ursus arctos uncharacterized LOC125282004 (LOC125282004), transcript variant X1, ncRNA +TTTTTTTTTTTTTTTTTTTTAACACAGATAGAGACAGCCAGCGAGAGAGGGAACACAAGCAGGGGGAGTGGGAGAGGAAGAAGCAGGCTCATAGCGGAGGAGCCTGATGCGGGGCTCGATCCCATAACGCTGGGATCACGCCCTGAGCCGAAGGCAGATGCTTAACCGCTGTGCCACCCAGGCGCCCCGGAAATTTAAATACTTTTAACATATTTTTCCAGTTCCTTGGTCCTTCTCTCCCCAGTCATTCAATGGGAAGTAACGTAGATTTTTTTAAAAATATTCAAATTATACGTACATATATATCTATCTGTGTATACGTGTGTGTATTCAAATTAAACATACATATATGTATATATGTATACATATATATGTATATGTGCATATGCATGTATTGTGTGTATATATGTACATGTATGTATGTACACACACGTTTTAAGTAACTCTTGTATTATAGGAGATCCACTGTTTCCCCTTAGGATCAGATTTTGAATGTGTTCAGTTGTTGCTGTTAATTATCTTTCCATCTGTTTATGATGTTTAGTTTTCCTGCTTTTAGTGACCACTCTTATTATCTATAAGATGCATGGAAAGACTGCATCCCAGAAGAGCAGTAGTCAGTATTATAATGGTTTTATTTAATTAACTGAAAAAGGTTTTTTTCCTAAAATAATATCTTTCTAGGAAGTTAAAAAAATGTTCTCCAGAATACCTTCTATCTTAATGGATTGAAGGCTGCAGGTACAGGTAATTTTTTAGATTTCAACCTTTTATGGGGCTTAAGTTGAAAATGTTGTATAGTGTTTCAGCTTATAATTTTGCCTACTTTTCAAATGTAGTACACTAAAGGGCATGACTGTGGGACTGGTAAGTTTTGAGTTGCTTTTTTACATTTGCTCTTGGAGGTGTGCAGAGGCCTTATAAGGAGTTTCAGTTTGGGAATTAGGAACAGACAGACTGTCCTTGAGGTAGGTCAGGATCTGATCTTCTTCTCAGGTCAATTAAGGTCCCTCAGTGGGACAGGCGGAGGCAGGAAGGTGCCCACAGTTCGTGTCCCAGGTGAAATGGATTGCCAGCCGGTTGCTCCTTTTGTCTTGGTTGGGGTGTCTTTTCCAGCACGGCTCCCGACCCGCTCCCCAGTCTTACCTGTTAGCCACTTGTAGACTTTGTGATGCTCTGTGCATTTAGCTGTAAATGTTGCTTCATCTGTACGTGTTTTTCTTCTGTTGACCTCCTCAGGGATTTTAGATTTATAAAAAGTAAAATGCCCGTTGCGTCTTCTGGTTTGGCCACTGTTGATTGTATTAGTTAAAAAAAGATTTGAATTGAGAAAGGTTTGACCTACTCTGAAAGGATAAAGACATACTGAGAATTAAGATTACATAGATTGTCAGCACATTAAAAAAAAGTACTTCCCTTTTGTTGGTTTCAAATAACAGAGTGAATCTGAGATAGGGCTTCAGAAGCCGGTTTAGAACTGGATCTTGGCTTCAGATCCCTGAATCCCTCGTAGTCCGCCCAGGATGAGATAACCCTGTATGAGCAGGGAGGTAACTTCCTTATGGGAGGACGTGTCCAGTCAGGGGTCCCTGCAGCCAGAGAGTCATGGATACATCCGAGTCTCCGTATTGTTTATACTGAGAATCTGTCAGGATAAGTTATGATGAGACCTACCTGCTCACCTCTGCACCAGGGGAGCTGCACCTTTGGTGAATTGTAATCTTGATTCTGGATCCCTTCTCAAGACATTCATGTGAACATTTTTTCCCAGAGTAGCCTGTGCTATAATGTGTGTAATAGAGCAGTTTCCTGGAGCATTGCACGGGTGGGAAATGTTGCTTCTTTCTTCATTTTGGTTCTCTCAGTTGTGGATGGCTTGCCTGGCAGACATGCAGAAAACATCTGTATACTGCTGAAGTTGTTCTGCCCCCACACTTTCCTTTAAAACTCTCTGGATTCTGATTGGCTCTACACGTTAAACATACTGACTTCTGATTACGGGCTTAGGGTGTGTGTGACAACGTTGTATTTACAGTGCTGCTTCATCTTTAACTCAGTTGGGTGTTAGAAAAATAAATGTGTGTGGTAGGTGTTCCCTCAGTTCTTTTAAAAGACTTTTTGTGGAAATTTTGGAAAAATTGGATAATGAACCCTTTTTCAACCTTCTGCCCTTGTTTGTCCTATTTCTTCTCTCCCAGACTTTTGTTTCCTGGGGTATTTTATTACTTTTAAAAATTTTTTTATTTTTTAATATTTATTTATTTGAGAGAGAGAACACAAGTAGGGGGGAGTGGCAGGCAGAGGGAGAGGGAGAAGCAGGCTCCCCACAGAGCAGAGAGCCCCATGCGGGGCTGGATCCCAGGACCCTGGGATCATGACCTGAGCTGAAGGCAGACGTTGAACTGACTGAGCCACCCAGGCACCCCAGATTGACTCCTTTCAATATGATTTATTGCCCAGTTTGAGGTATACTATGTGTGTCAGAACATGCCATCTAAAACATACCTGTCTATATGCAGAAAGTCAAACATAATATAATCATTATGTAAGATAGTGTTGTTCCCCAAGTACTACCATTAATAACAAAGTTCTAGCATTTTTTTCAAATGTTTAAGAATTAAAATATACCAGGATAATTAAGAATAATGTTTGGCTCTTTATTTAATTCAGCCTGAGGATAAACCTGAAAGATTAGGGGCCTTAAGATATTTTTCTTTTTTTTCTTTTTTTTTTTTTTTTTTTTTAAGGATTTTATTTATTTGTCAGAGAGAGTGTGTGCGTGCGTGCTTGAAGGGGGAGTGGCAGGCAGAGGGAGAGCAGGTTCTGTGATGAGCAAGGAGCCCAATGAGGGACTCGATCCCAGGACCCTGAGACCATGACCGGAGCCAAAGGCAGACACTTAACTGACTGAGCCACCCAGGTGCCCCTGTTTCGCTGGAGTATTTTAGAGCTAATCCCAGACATTGTATAAAGTTTCACCCATGAAAGTTCATTGTATGTCCCTAACAGATAAAATATATAACCATAATACCTTTACCATGCCTCACATAGTTAAAAGTAATTTAAAATCTTTTCTCTCAGGGCACCTGGGTGGCTAAGTCGGTTGTGTGTCCAACTCTTGATCTCAGCTTAGCTCTTGATCTCAGGGTTGTGGGTTTGGGCCCTGTGATGGGCTCCACACTAGGTGTGGAGCCTACTTAAATTAAAAAAAGAAAGGAAGAAAGAAGGAAAGAAAAAAGTAATAAAATCTTTTCTCTAATAAAACTCGGTAATGTTTAATTTTCAAATTTCCCCATTTTTTTAAAAAAGTCTTTGACCTATCAGTTGGCATATCTCTAACATTTCCCACTCCTGCCTTGCACCCTTTCCGTTTTATTTTTAAATAACAGCTTTTGTTGATGCTCTGGAAGAAACTGTCATTTATCCTATAGAATCTCCCACATTCTGAATTTGGCTGATTGTATTATGTGATGTCATTTAATTCATAAAGTTTAAAACTGGTTGCTAGAAGTCCAGCTAGAATGAGCTTCAACTCTGGGGGTAAGAATACTTGCTGTTGGCTTCACCTCTTAGGGACGGTGACATTAATCATTTGTTCAGATGGTGGTGTGATCCTTCCACCTTGTGGCTTTTGTGGGTGTTGATGGTGGCTGCCTGGGTACTTTGTATCAGAATTGCAGACACGGTGACGATCTGATTCTGCCTTCTGTATTTGTTTGCTGGAGCCCGTGCAGAAAAGGTGGGATAAATGGATAATTCTTGTATTTACTAGCTTCAGAATGAGTTTGTTCTCTACAAGTGAAAATTATTTTTAGTCTCATAAATGCATAGATGTTAAGATGACCTATATATGTGTATGTGTACACACATACGTAGATGTTAATTTACAGCATTCTTTCTGATGGTCAGATTGCCCTTCAGAGGTATCTTCTGTGTCATATGCAGACAATGAATCATTGCCACTAGATCAAAAACTAATGACGTACTGTATGGTGACTAACGTAACATAAAAAAAAAAAAAAGATATCTTCTGTGTCCTTTGGAAATGGCTCCAGTAATGTTTTTATAGTTTTCTTGTTTATGGGCACTATAAAATAGTTTCAGACTCAGTTTGTACCCTTATTGCCGCAGACCTGAAACCAGCCATCTCTCTAAGGAGCCTTGATTCCTTGTCACGTTTTAGTGGGAAATGGTGTTCAGGGACTAGAATCTGGATACTGTGATAGGTAATGCTGGAATCTTATTTCTTCTGGGCTTTTTTAGGGTATAGAGATAGGAAGTGTGTATTTTTCAGAAAGAAAAAAAGTCATGAGTTTATCTCGATACTTCCAACTTAAATTTAAGATTACAGTGGGGCGCCTGGGTGGCTCAGTCAGTTGGGCACCTGCCTTCTGCTTGGGGTCATGGTCCCAGGGTCCTGGGATCTGCCCTGCGTCGGGCTCCCTGCTCAGCGGGGAGTCTGCTTCTCCCTCACCCTCTGCTGCTCCCCCTGCTCGTGCTCTCTCTCTCTCTCTCTCTCGCTCTCAAATAAATAAAATCTAAAGTAAAAAAATTATAAGATTAAAATGGTTTACTTCTTTGATTTTATGTTTGTATGTCATTTCTCTTTTGCTTAAAATCTTGGTTCTTAACACTAACACGTTTGTGTCATTGCTTCATCATTCATGTCTGTGAAACTTGCGTGTCATTTCAGAATAACAGTGCCAGTGTTGTCACTAACAAGACCTCTGAACGTGTTTGAACGTGGTTTCTCTGTTTCATCTTGGTTTCAGTGATGCTATTACTAAAAGCAGTGTTAGACTTCATTATAGCTCTTGTACGCCATAGGGTGTAGCACACTGGGATGTACGGTCAGATTACAGCTCCGCGCTGAAGTTACACCACGCTTTGAAAGTTAGGCTTATTTCTTTCGTTTTTGAAGGGTAAGGAGCAGTGGGAACTCTCAGACACAACTGATGGGAGTATCGTTTTGTACGTCCACTTTGGACAGTAGTTTGGTGGCACTTACTACAGTGGAACGTGCACACTGGCCTCGTGGTTCCGTTCCAGGTGGACACACAGCAGAGATGCGTGCACGCGTGTACCAAGAAACAAGTGATTTGTACTAGTCCCAGACTGGAACGGAGAGAGAACTGGGGTACATTCATATGATGACGTGCTCTCCAGCAGTGACTGTGAAGCTCCAGGACACAGCGTGGGTGCTTTTCACAGCATACTTTGTAAAGAATGGCTAAGCCCCAAAGGATACATACTGTGTGATTTTCTTGTAAATTAAAAAAAAAAAGGATGTTTTTGAGTCTCCATGTTCTAATGTACACGCGTGCATATTTCTCAGTGTAGCTCATCTTGACCGCTTTATTTCACGCTGCAGCCTGCATTCCCCTGCGCGCCCACTTCCTGTCCCTCCGACCCTGCTGAACTTAGTAATTTTTAAAATAACACCACTTGACAATATACCGTATAATTTAGTTATTTATGATTTTATTGTTGTCTGTCTCGCCTAATAGAATGTAAACTCCATGTGGGCAGAAAAAATGTGTGTGTGTGTGAGAGAGAGAGAGAGAGAGAGAGAGAGAGCTACAGAGTCGGTGGTAGCTGGTTGACGCCATATTGGTAGCTTGAAACCGAACAGGGTGGGTGTATTTATACCACAGAAATCAGCACACACCACAGAGCGGGGCTGCCCCCACTGACTCCGCACAGAGCCAGTTGTTACACACTCACCAGGGCGTCCTGGTGCACATCTCTGTCTTTGCACACACACTGAGGTAGGGATTCATGGTATCGGAACAGTGCCCGGCATGCAGGAGGTGCTCACTAAATTCTGAGGTGAATTTTATTATTGAAGAAATGTTGAGGTGCAAATGGCAGAAACTTACACTAGCTAAAGTGAAAAAAGGGAATATATCATTTTATGTAACTTGGAGTGTATTTAACGAATAAGTTACCGGTTGGTATCTGGAAATAAGTCTCTAGAAAGTCAAATGAGAAAAAGAAGTACCAATAAATCCTAAAGGAACTGTAACTACCGTGGAAAATAAATAAGTCTAATAGTTCTTTGATGTAGCCTTGTTTAAAATTACAAGAAGTTAAACATCAACTCCCAGTCCGCCCAGCGCCGCCAGCCGCACACCCGCTGGTAGTTGCTGCATCCGTCTTTCTCCCCAGCCCTCGGCAGCCGACCACTGAGCTCTCTGACCCACAGATGTGCCTGTTGTGCACATTTCATGTGATCGGAATCCCGCATCCCGTGCTCTTCCGTGTCCAGCATCTCACTTAGGCTTCCATCCACGTGGGAGCACGTGTGGGCACCGTCGCTTTTTGTCGTGAGTGACGTGCAGCCGTGAAGACGCTGCGTTTGCCTCTGGGTGTCCGGCCCGCCGGAGCGTGCGAGCTGCCCTGGCCTCTGGCGGCAGTCGTGTGCGCGGAGCCCGGGTTCCACTCGTTCCCCAAGTTGACAGATACGTGGCAGAGGTGGACGCAGCTGCGGAGGCCCAGCCCAGCTTCTCGGCTCTTCACCCTCTGAAGCTCTCGCGGCCTCTCTTGTCCCCACTGCCTCAGCGGCTCTCTGAACGGTGTATTTTATGTGCTTTTCACCATTTTCTACTGCCAGCTGTTGCATCCGTCTTGGATTCAGAAATCTCACGTCTCTTTTTTTCATTTTACCTGTTAGAGACTAATTTTTTGATTTAAAAGAAGGAGGAAGGAGGAATGTTTTAATAAGTCAGCCATTTACAAATGTCCTTTTGTGTCAGTCTGGCCCTGATGAGGTTCAGCGTGGCTTGCGGAGTGGAGGCATTGCTGCTGTCAGTCAGGCCCTTTGGACCGAAGTAAGAAGGAAAGAACTACGATTTCTGCCATGTCAGGGGACATGGGAATATCCACAATCAAGCATTGATTTTGCTAACAGATTTTTAGGACTTACCTCCTTTATTTAAATTCAGACATTTATAAGTCATCGAGTTTTCTGGTCTAATGTAAAAAATTCATTATAACTGTTTCAAGTAAGATAAGGCTCTGACAGTTGAGTTACTGTAGTTCTGGTCCTTGAAAAAGAAACGTTAAGTACCTTTTTTGTCCTCAGAAGAGAACTTTAAAAATTGAGTGATTGTATTTAAGATGCATTGGGCAGAAATGTTTCTAGTTTTACAGACCCCTTAGGTGATAAGGCCTGGACGTGGGGAGCCTTGGAGTTGAGGTGGACGGAGCCACTGGGAGAGAGTGAAATATGGGGAGGACCAGGATTTTGGGGAGGCATTGGTGGAGCCAGTGAAAACCTCGGTAGTCAAGATAAGTAATAGCTTGATGCAGCGTTTAAAAAAGAAAAAACAAAAAAAAACCTTAATGCAAAAAATCCATGGTGAACAAGATACTAAAATTTTAAATAAAGATAAGAGCAGTATTTTTCATTTTTCCTTTAGCCTTATGTGTTAGCTAATGTGCAGCATTGCTCCTTATTCTGTCTTTATTTCTACTTAGAGTTTAATTTGCTCTTATTTTTCTTACCTCTTTAGACAGTTGATGTTTTTACCTTTTAAATAGAAGCACTTGAAGTTTGAAATGTCCCTCTAAATACTCTCAGCTGTGTCCCAAAGATTTTGATGTTCTAGTTTTATTATCACTGTGTTCTGAACATTTTCTGATTTCTTTTTTGATTTGTTATTTGATGGGCGTGTTACTTAGAAAGGATTGCTTTCTTGGGAAATAGTGGGGACTTCGCTAGGTACTGTATCTTTAAAATAGTTACTTTTTATGTTCACTTATTATTTTGAACAGAAATATAGATGGCACAATATTCAAATGGGCAGGCAGGGAACCCTAACCCTCCCCCTCTTTAACCCGATTTCTGCTGAATTCTGTCTGGAAGAGTCACTGTTCATAATTGTGTAAATGTCTGTGGGTGATCTGTGCATATAACAGGAAGCACATATGTGCATGTATTTTTCCTTTACAATGAAATACCACAGTCTACATACTCTTCTATACCTTTTTATTATTTGAAATATATATCTTGGGGTTCCTGGTGGCTCAGTCCTTTGAGCGTCTGACTCTAGATTTTGGCTCAGGTCATGATCTTAAGGTCGTGCGATCGAGCCTTGTGTAGGGCTCTGCTCTGGGCAAAGAGCGTGCTTGGGATTCTCTCTCTCCCTCTGCCCCCAACCCCTAGCTTGCATGTGCTCTCGCTTGCTCTCAAAAAAATTTTTATATAGACAGGTATATATCTTGAAAATGTATGCATTTTAGGACTGGGAGTTACAGTTTTCTTTTATACTATGTGGACTTTTTTCATTGATGAGTGTTTTCCAGTGTCAGTGAAGAATTTTCAGTGAGTATCTTTTTCCAAACTTTATTTACTCATTTCTTTTCTATTGACATGTAGGCTGTTCCTAGTTTTTTAGTTTTGTGAATGAACCTATGATTCATTTAAGCCTCAAACTGCCTTAAACCTTAAAGGGGATTACTGGAGGTTTCTTGGACCAGTCTGACGGAAGCTGGATCTATGGGTGCAGTGACTTAAGTGCTTGTCTTCTTGTGGGCTCTGAACTCCTTAGGGGCCAGACCTCTGTCCGTATTGTCTTCCAATCCCTGATGCTTAACTCGTTGCACCAACACAGAAGATGTGGAACAGTGCCCTAGGCACGCAGCACTCTCAAAGCCCTTGATGCTTGTAATACTTAATTCTCATAACAACTGTTTGTAACTTTATTTAACTGATGAGAAAACCAAGTTCTAGAGAACAGTTTTTTAAGAAAGTGCCCAGAGTCCTATATCTAGTATGTTGCCACGTGGGGATTCAGGGAGTACTTACCAATAAGCTGAATGGACAACACTGGACTTTCAGGTTGAAGGTGGTGGAAAGATGAATGAGTTTGAGCTTTGGGGTCATTGATTTTACAAGGTCCGATCTTAACTCCAAGTCCTTTATCTCTGTCAGCCTCAGCTCCCTCTTTCTTGAAAATAATGTTGTTAACCTTGAAAATAAAACTGCCAGTCATTTTACCAGCGAAAATGGGTTTATTTGGGAACAGCAAAGAATTGCAAAGGCAGGCAAGCAAGCAGGGAGGCAGCACAAAGGAGAGGACTGCTCTTTTATAGAGGAAAGGTGGGGAGTTGGGAGGGAGGAGGAACCTTCCTCCTGCTGGGTTAGTCAAGTGGTATCCGCCTGCAAGGTGCACCTCTCCTTGTTGGGCCTGCAGTGGGGGAGGAGTGGGGAGGTGAGAGCTACCCCTGCTGGCCTCCAGACTCCATCCTAAGTGGGGCCTCCTGTTATTAATCTTCACGACGTATTGGTAATGACCTCAGAGTTTATTAAGGAGTTAACTTTTCCTCGTAGTATTGGACTAGTGTCCTGTCTTTACTCAAGGACCGGTGGTTGTCATTCCCTTTTGCTGCTGCTTGCGCTTTGGGCAAGTTCCTAGCGTCTCAAGGCTTTTTTCCCTCATCTACAAAAGTAGACATAATTATATTCGCCAGCTTGTTGTAAAATAAGCAAGAGACGCTCCATTAAAGTGGTTTTAGCATTCTTTGAATTTTTATTGTGGTAAACAAAAAACAACATAATTTATCCTCTTAACCATTTTTGTACAGTCGTGTTACATATATTTACATTGTTGGGAACCAGATGGCTGGCACTTTTTATCTTGCACACTGAAGCTCTGTCCCCATTGTTTTCTGAGGTGATAGCACCCTGGGTCACACCATTTTATATTCCCACCCATGGTGCACAAGGGTTCCGGCTTCTCAGTGTCCTGGCTAACGCTTGTTATTTCCTATTTCCCATTTAAAAAAAAAAAGAAGAAGTAATCATCCTGATAGGTGTGAGGTTATTTATAACATTTTTTAATGATAAAAATTTTAGGGAGAATTGGAAAAATGACTTTAAATTTCTTGCTAAATCGGAATAGTATCTGTTGATACCAGTGTGAGAAAACCAAAAGCATAGAGGAGGGCCTTTGAGCAAGAGGACCCACGACTGTGTATCTGTGTTTGGGAAGAAAAGTCGCCTTCTTCAGGGCTCTCCTTAGGATACAGCTGGGGGAGGACTGGACCCCTACGATGCTGCTGATCCTTCCTGAAAATGGGCAGTGTAGGTGGTAGAAGGGACCTGCTCGCCAGCAGGGCCCCCTGCCACCCACGGGCCTTCCCGTGTGGCTGTGTGGGTGTCACCGCACAGCCGATATCCCGCAAGCCACCACTGTTTTCTCAGCCGCAGTCCCAACAGGGCACTCTGCTGTTTGCTCGGTCAGGTGAGCGATCACACTGGGGGTAAACTGGATTTACTGGGTAAAATAAGAATTTACGGTGACAAAATGATAAAGTAAGTTGGCTGTATATTGATGTTCACTAAAACAGGAGTTGCAAAGTTTATTCGAATGGTGTTAACATTCAAATAAATAATGGCTTGTTTTTCAGTATTTGTTACTTGGTCAGTATACGCCAAGAAACCCCACTCTGTTTTATAACACGTACAGTTAGGGTGACAATTTTGGTCAGTTTCTGGCCCCGTGCTGTGTTATGCCTCTACTAGTATATTTGAAAAACTCAAGTGGCGTCGTCTTTGAGATTTCAGGAGCCTTTTTTGGTGGCAAATAACCTCCCAGCAGTTTCTAAACCTAGAATTAGCTTTCATCTCCTCTTTGGCAGAACACATGAGAAATGGCCATTAGTGTCTGTGAAAATACTCTAGTTGAGTATTGTCTAAATTGATAAGAAGTTCAGAATTTTCTGCCTCTTGCGGTTGCAGTTGCCCTTCTATTTTATGTATCTTATTTTGCTTAATTCATTGCTACGTGTATTTCCTGGTGATTGTGGTGCATCTCCCCGGTCCCCGCTCCATGTCCAGCATGTACTGTGTTGGCTTGTATCCGCAGTCGGGGGATCGCGGACTCGGGAGGACTGTCATGGGAGCCGCAGAATTTAGTGAGTTGGAGTGCTGCATGGGGATGAGAGCAGCCTGTCTGTCTCATATTCTTTCTGTGATTCAGTCATCCTTTGTAAGCCGAGGGAGGCCTGTTTCCTGGTTCTCTGGAAGCCTTTGCAGCCTCCGGAGGTGGTGTCGTTACCGGTGGTGGCTTGAGTGTGTGCTCTGGCAGGTGTCCCAGTGCTGGGGCCAGCTCTGCCGCCGACCAGTTAGCTGTGACGTCAGGCACGTTGCTTCATTTCTCGGTTCCTCGGTGTGTCCGCCTGTCAGGTGTGCCTTGTGAACTTGCTGGTTGTTGGAATTATTGATTGAAAAAATAGGTGAAGTCCTGCAGTGGGTTAGCGAAGGAGCACACGCTGGAGGCTGACTGCTGGAGCGCGATGTCCAGCTCGGCTCTGCAGGAGGTCTGTGACCTCAGACAAGTTACCTAGCGCCCCATGCTTCTGTTTGTCATCTCTTACACGGGGGTAGTAGAATCTACCTCATCAAGTTGGTTATTAATACCTGAGTCCATATGTTTAAAGTATCTAGGATAGGGCTTGGCACAGAGTAAGCATTAACTTGGCATCCCCATTGTATCATTATCATTATCTTTTCTTTGTCATTAGTGTTGCTATTATGCTATTTGCTGACTGCCACGTAGTCCCTACTCACGTGATAGGTATTGTCATTGTCCTTGTGGAAGTTCAGGATGGCGAAACGAGTCTTTCCTTGTCTCACAGATGGAACCGGGGTTCCTTTGTATCTTCCAGTTGCAAATTTAGTGCCTTCCTCAACTTCCCCAGAGTTCCTTCAGAGTAACAGAAGGGAGGAGGTATAGTAATTGTTAGAAACTCTGCAAGAACGGCGAATAACACCGTCCCCTTTTGGAGTATGTTGTATTTTGATACCTATTATCTGTTTGTCTTTGGAATATGCTTATATCCATTCTTATGATTAAATTTCTTTAGTCCTTATCAAGTCTTAATTTTTGTTGATAGATTAAAATTTTCAGAAAAGTTACTTCTGTTTTGTGGTGGAAACAGGCACAAAGACATAGGAATGATAACTCTGTGAATCGTAATAGAATTAAGTTTGGGATAGCACACCCAGCTTTTGGAAGTCAGGGTGTATTGTAGTGATCAGCTGCTAATTGGAGCTATCGTAGTCTAATAGTGTTGATTTTACTTAGATCTAGAACTCTTGATTAAAGCAAACATAAAAGAAGTAAGAGAGGTAAATTTTGAATTCTGTATGTGTAATATGAATTCCAGTTTTCTTTCACATTCCTCCTGTTAGCTGACTTGGAAGCATTGACTAGGGCTTTCCTCTTCCCAGAAGTACTGCCCTCAAGTATTAAGGCCAGCAAATAAAAGCATACAACTGTATGAGAAATGTGCGAGTCAGACTTGGATTTGTGTGATTTGCTTTTGGTGATATTTATAAGCAGCTTTTTTTTTTTTTTTTTTTAAAGATTTTATTTATTTGAGGGAGAGAGAGAAAGTAAGCACAAGTTGGGGGCAGGGGCAGAGGGAGAGGGAGAAGCAGGCTCCCCTGACATGGGACTCGATCCCAGGACCCTGAGATCATGACCTGAGCTGAAGGCAGATGCTTAACTGACTGAGCCACCTAGGCGCCCCTCCCCCACCTTTTAAAAGATTTTATTTATTTGCGCGAGAGAAGCAGTTTTTTCCTTAATCATTCTTTCCGGTGACTTTCTCACCTAAGACCAGGTTTCTGTAGGGAAGCTGTAGTGGACAGTACTGCACAGTGTATGAAGGGCTTTGGATTCCCTTTTCTCTCCCTCATCTTGCTCATCACCTTGTTTGCTGGCCTTCTAATGATTTCTGTCTAATCTTGCACAGTATTGTCACTTTTGTCATCCTGAAATTTGAAGTGGAGGTTCTCATGGGAGTACCAGAATACTACAGTTGTGTGATTTATTTTTTATGTGGGATGGGGAGAGGTGGTGTGCATGGTCTTCCTAGATTTTGTGTCAGTTTTTCTTTTCCAATTTTTATATTCTTGAAAAAGCAACATTTTCATATGGTTTACTTCTACTTATTCGGTGAATACTTACCAAGCACCTGAGCTGAGTGGGGTCTCGGAGGTAAAGCCGTGCCCAAGACTGAGGCAGGCCATGCTGCCACTGAGCTTAGTGCCAAGTCCTGACATCTAGAACGTCTAGATGCTTTTTTTGTGACCACGGCCTCTAAAAGAGAAGAGAAATTCCCTCTGTCCTCTCCTTGTTGCCTGTAGGTGACTGATGGATGTGTGGGATGTGGCCTGTACCTCTTCCTGGTCACTTCAGTAAGAAGGCCTGGAAGACAGTATGTGCAGAACAGATCAGATTCTTTCCTATTGTGGAGATGGGGTTGTAGTGGGGGCAGCTGGACAGCAAACGAACGTACTGTGTCAGTCAGTCCCGTGGTATTTGAGAAGGTGTAAGTGCCGTGGGAAATGAAGCAGGGTAAGGGCATGGGGCAGGCAGTATAAAGGTGGGCACGGGCCTGGTGTGGGCAGAGGACAGCAGGGAGGTCAGTGTGCAGTGTGTGGAAGGCCACGAAACAGGAGCCAGGCCGTGGCGAGACAGAGGGTGTAGGTGCGAGGGGAGCCACCTGTACAGGGCCTTGCGGACCATGCTGAGTATGTAGTTTGCACTGCTTCTGGCAGAATTGGGGAGCTGTCGGTGAGTTTTAGCGGAGTGAAATGGTGTGACGGGCGTCACGCAGGGAACTGGTTGGGAACAGAGTATAGGGCAGTGAGGCCTGTAGCCGCGGCCTGGTGGCACATGGCAACAGCTGGGCTGGTGGTGGCAGCGGACGTAGGGGCATGTGCACGGTCCAGATTGGGGTCCAAGCAAATCGTAGTCTCTTTCTTGTAAGTTTTAATGAGTTTACCTGTGAGGGAGGACTTCCCAGAGTTGCTTTTAACTATACTGATACGATAAAGAGTTTTTTAAAGAAACTAGAACTTTTTAAGGAATGATGGCCTTTATGTTAGTGCGTGAGTTTCTTATTCGGAGCGCATAAAGGGACTGCTCACCGTTTTCACTTAGGCCACCATTAATGTAGGCCTTTCCCGCTCTTTTCAAGACCTCACCGGCTCGAGAATCTAAGAGCCTCATTGGTCTTTCCTGTTTATCGAGAAGCAAACAGGAGTGGTGCCGTCCCAGAGTGACGTGTCCTCGTGTAATTTCTCAGCCCTTTGGCCGTAGGCCCGCGCCCCACTGCCTGAACCACACTCTCCTCTTCGCTGCACGCGGGGAACGAGCTGCTGTGTGTCGGGAGTGACGTGCGGCGGTTTTCTCTGTGACAGCGCCCAGCGCCCTAGCTTCTCCTCGGTGTGGCGGAGCCCCGTCCTCTCCTGCCCGCCCGCTCTTCTCAGTGGCCCGAGTGCTTCTCGGCTCTTCCGGGCTGCTGCTTCCGGCGGGGCTCTGCTTGGTGGCCTGGAGGGGTCTTGGCCTCTTTCGTCTTGTCATCTTTTGTATCCTCAGAACTCTGCACATGCGGAGGTGATATTTGGATATTGAGATAAATATAAATTAGCTCGAGGGGTGGGAGAGAAAGCTGCCGCCCACTGGTTACTTTGCAGTCAGAGAGTTGGCTTCTCCTCTCTGTCACCTAAAGAGCTCCCACGTCTGTCCTCTCGTCACCTCCTCTACTGCTGTGGAGGCTCCAGCCGCCGTGCCACTTGCTTGCACCAAGCCCTCTCTCTCCCGTGCAGGTGGTGCCGTGGCATTCATTCAGTCTGGCTCAGAAACCTTTTCTGGGTGTGTGCGTACAGGAAGACCTCTGGCTTCTTGGATGACAGGTGGGCTCTGCGAAGCCGTGTCTCTTCCTAGCTAAACGACTCCATCTTTAACTCCTCTTTCAAAGATGTGACAGCACTGGGGTGCCTTCGGCTCAGGGCGTGATCCTGGCGTTACGGGATCGAGCCCCACATCAGGCTCCTCTGCTATGAGCCTGCTTCTTCCTCTCCCACTCCCCCTGCTTGTGTTCCCCCTCTCGCTGGCTGTCTCTATCTCTGTCAGATAAATAAATAAAATCTTAAAAAAAAAAAAAAAAGATGTGACAGCACCGATGTTCCTCAGAAGACGTGAAAATTGGGTGTGTAAAATATCGTTGGCAACTAGTAAAGGTAGCTTCTGTTTTTTAAAGTCTTGAGTCGTAAGTTCCAAGAGAGACTCCGAGTTTGCCTTTGTGGTTGGCATGTCTGTTACTTGATGGTTCAGATTAAACCCGAAGCCATTCTCAGGGGCCTGGGTCAGATACCAGACTTGCTGCTGTGGCGTGCTTGGATTCCTCCTATGATGAGAGTAGGCCTTTGTGTCCCGAGTGTCCTCAGTAATGGTGATCTTTCTGCTTGTTTCTTCTGTTTCTTTCCTAGCTTGCTTGCCTGTGTTTTTCTGGAGCCCCTTTTCTTCCCAGTGTTGCCTGGGGTCAGAGTTCCTTCTGGTGAATGATATGTTTTCACTGGGGGCATCTAGGAGGTTATTTGAGCTCTGACTGCTATTAGGAGGCTGAATGTAACGCCTGGAGACAAAGCCATCATCGAGAGTAGTATGTCAGAAATGAAACTAGCTGTCCTGGGGCATCACTGGACACAGATAGGCCTCTTGTTCCCCTAGCCTTTTTCAGCTCTTGTTTTCACAAGTTAGTGAATTCATAAAACCCTGGTCGTGGTCACAGTTAAGCAGAGGACTCGATTTTTTCTTCGTTAATGGGATTTGCTACGGACAGAATTACCCGCGTAGTAGGAGAGCTGAACTGTCTATGTCTTGAATGTGTATCACATGTGCTCAGACAACAGAGGCTGTAGGAGCCCAGTTTCTTACTGTCTTACTGCCAGAGTGGAGTGTGTTTAAATAGCTACATTTTAGAGATGACCCAGACTATCTCTCAGTTTGAATGGAAAAAGTGTAAGTAGCTTTACATTTTTTTGAAAAAAACTTACTCGTACAGATTGTTAGAGTGTTTTTCTGTCTTCCTTCTTCAGTATGAGTTTCCTACTCACTCATGTTTTGAAATTAAGAAATTGGGCATCTTGTATTCCTCAATATTCCCTAAGCTAGTTTTAAAAGAATCTCGCAACTTCAAATTCTTGTTCCTGTGTGTTTTCTAAATACTTTTATAAATTTGCAGACTTAAAACTATCGATCTGAAAAAACCTTTACCTTGGAAATATCTGGGTTCCTATAGACATAGTTTCTACAGATTTGTTTTTAATGTTGATCAAGATGTTTTCCCCTGCATTATTCATTTTTCATCAAGACAATTACCTTAAGTCTTAAGGTCAGAATTAGGCTGGAAAAAGGCCAAAGGCATGAGTTTGAAAACAAAAATAGTCGGAGGAGCCATCTACAGACATGATCTGGGTCAGACTTGATTTGCAGCTTACTCAATTTTAGAATCGCCTGTTGGTTTTGTGAGCAGAGGTCTGCCAGATGAATTGAGCAGAAGGGTGGGATTAGCATATTAATCGGGTGCTGGCTACTGGCCTTCTTTTTCTCCTCCCTCTTTCCCCTCCCTCCCTCTCTCCTTCCCTGAATGAATCTAGGAACACAGGCCCCTGGGGTCACATTACTGGCTGGTTTCCTTCTGCTCTGGAGCTTAATCTAGCCAGGATGGTCTGTGTTTCAGATCGCAGAAGCAGAAGATTCTGTAACTGAGAGGCATTCTTCAGGCTGCCGGAAAAAATTACAGAAGGAGCACCTCCCAAATTTTGCTTCAAGCTCTGAGAAAAGGAGCACACAGGGGAAGCTTAGTGTGGCTGTGGATGGAAGCGAACGCTGTGGGAGCGATGAAAGGGGACTTGGTGCGCGGACGCCTGGTCTGATCTTGAGGCCTGAGTTTATGTTGCTGGAACTGGCGGGCCAAGAGGCCCTGAGACCAGCAGGTGCCGTCTGTATGGGGAAGAGCGGCTGTAGTCCCATTTCCGATGTGTTGGGCTAAAGGTATAGGTAACTTAAAAATCTGTTTGGTTTAAATTTTATTCAGATTCATGCTTTTGCATTAAAAAGGTGGATAAGAGTTTTTCAGACCTTATTTCAAATAGATTTACAACGAAATTTAAGGAAAAATGGAAATTGATGTACTACAGGTTTGCAGCTCTTGGCATAAAACCAACTAGATAGCTTTTAGAAGTAAATAAAAATATTTTTATCAAAGTGCATTTTAAGTAAGTTATCTTTTCTGTTCTGTGTCTCTTATAGTTTTATGTTTTATTTCGTGTGTTTTAATTAAGGCACCCATATCCGTTCTGTGATGTGGAAGTACGAGGCTAATTTTAACTTCAATAGGATTGGAGGGAAAAAGTGATGTGGTTTTTCTTTTTTCAAAAGTTGGTTCTCTTTACTCACTGTAAAGATTGTGCATTTAATTTGCAATTCCATATTATCGTAAGGTGGTCTTATCACTAAGGGTCAGTAATACTTGGATAAACATTTTCCAGTTTAATGTTTTTAGGGTTTTTATTTGTATAAAAATATAAAATACAGCATTTTCATTGTAACATTCAAGACAGTATTTGGGAAGCATGTTTAGAAGTTAAAAATGCCATGTAATCCATGTATGAATAAGACCAAATAATTTATCTGCTTCTCTTAAAGTATTAGTGAATATTATTCCCGGGGGATGAAGTCCGTAATAAAGAATTTAATACAGATACTGGTATTTTAAAGAGTATATTCAAGTATCACGTTAACCTACTCAGGAAAGACTTTTACAAGGAAGAAACCTGCGCTGGGTGAAGACCTGAAGTATTATAGTAGACCTTCAGGCTGATTCGGTTCAGTGTTTAGCTTGGAACTTTCAGAGCCGCCAGGATGTGGGGGTGCTCGCGCCCGCCAGACCACGGTTTAGATCGCTGTCAGATCGCGTCTCATTTACCAAGTTGTCGGCATCATCTAGTCATTCTTGTCTAGGCTTTTAAACATTTCCCCTTCCTTCCTTCCCTTCTCTTCCCTTCCCTTCCTTCCCTTCCTTTCCTTCTTTTCCTTCTTTTCCTTCCTTTCTTTGCTTTCTTTCTTGCTTTTTAGGTAATCTCTACACCCATCGTGGGGCTTGAACTCACTAACCCCAAGATCAGGAGAGTCGCCGACTGAGCCAGCGCCACTTTTAAACATTTCTAAAACATGTGACGTCAGACCTCAGATGTCAGACCAAACAAAACGCCTGTCACTTTATTACCTAATTAAGTATTTAGAGTAAAGATTTTGCTGAGTTAAATTCAAATTGTTGAATTTTAAAGGGCTTTGGGTATGGAAACTTCTGAAAACTGTAATTTCTCACCTGAGGACTGCACAGTATAATTGAGCATGACCAGTAACGAGTGCTCAGAGGCAGAGAGCTCTTTACTATTCTTGTTGAAGATTTTGGTCTCTCCCAGACTTGTTGGGACCTGTATGCACAATGCTGCCTCCGTGGTGTGACAGTCCTCTGTTAGCCCTGATCCTTAGCAATAAGGCTCTGATTTCACTAAGTCTAGGCTAGATTCATGTCTATGAATCCAGTAGCAATGGATATTAAATAGTTGGCTACTGGGTTTTTAAGAAATTCAAGGTGACTTTAGAAATATGAGCTTCAGAAGGAAAGAGAGACTGAGGTGCTTTTGCTCATCCCAAAGCAATTGATAGAAGCAGCTTATTTCCCAGTATGTTTACTGACTGGCAGAGCTCGTGAGGAGAGGCGTTTTTCACTGAGACGTCATTTCGATAGCGGTCAGGGTTGGGTAGGAGAGCAGAACCACGTGTATGAAAGAGGGGAAGAGGTAGGGACAGCATCAGGCTTAGATCATTGCATTTGCAGGCTGGAGCAGGCCGTCACCTCTGACGCATGGTCTTGTTTCTGGATTGTGCAAGAGGAGTTTTCTGACAACACTAAGGAGGTTGTCACCCTGTCCCCTTCTCAGGGCTGAGTACACCATCTCCCCAGGGGCACGCAGTGCTTATTGCTGTATTGGGATCAAGTGCCATTTAAAAAGTCCAGTCTCATTAAGTGTATGAGTTTCATGAGTCATTGAGTTTTATGGCTTCACAGGTAGGTGAAGCTGGTTACTCCCACCTAGTGAGATGGCCTTTGTCAGGAGCTAGGGAATTACAAAACAACTAACATGTATATAATGCCGAAAGCACTCTGACAAGCTGATTTTATCCCCACGGGAGTCCTACGCTGTAGGAACCATTGATGGCCCTATTTCTGAGATTGAAATTGAGGCAGAGAGTGCTTAAAAAAAACTTGTCCAAGGCCCTATAGCTTCTAGACTTTAGCCAGGCAGTCTGCTCTGGACGTTTTTGCCCTCAACCTTTGCTATTGCCTTTCAGCTAAATAGGGAGAAATAATTGTCAACAAGAGGTTTTAGCTGGACAAAGGAGAGGGAGAGGGTAGCTTTTGGTGTGGTTTATAGATTATTTTCTGGATAAAATGTAAAAATAATAGGAACGGTTTATTGGCTCTTGCTTGGTGGTAAAGGAGAATGAGAAATTAAAGATTTCTTTAAAAATTCAGGAGTGGGGGAGCCTGGGTGACTAACTCTACTAAGCGTCTGCCTTGGATTCAGGTCATGATCTCAGGGTCCTGGGATCCAGCCCTGCATCAGGCTCCCTGCTCAGCGGGGAGCCTGGTACTCTCTCTCCCTCCTCCTCTCCCCCAGCTTGTGTTCTTTCTCTCTCTCAAGTAAATTAAAAAAAAAAAAAAAAAAATTCAGGAATGACCCCAGCTCTGTAAAGGTATCTGCTGGTTGTTTCTCTGTGGTTAGTTTGAATGTACTTCTCTGGGGTTCGTGATGATAGTAAGGCAGTGTGCTGGTGTGTCTGTGCCCAATGCTGAAAATCACCACCCCAGAGGCAGTTTGAGGCCTGAGCTCGGTTGTTCAGCACTTGTCCCCCGTCTCTACTCACCACGAGTGCTATTTGAGGGAACTGCAATGAGCTCCTTCACAGGAAAATTGGCAGTTTGACGTTCAGTGCCACTCACTCCCATCATTTCTCACCTGACTACTTATCTTCCCACTCTTGCATTCCCAGGGTGATGCTTAGTTTTTTCTGGTTTTGATTTATTCGCCCTTGTCTCTGAGGCCTTTGTGTGGTTCAGATTTGAGTTGGGAGGCCAGATAGGAGTTCTGCCCACATCTCTGACTGACTGTGTTACCTTGGGCAGGTCACGGGAGATCTAGAACCCGTGGTTTCTTTATCTTCATTGCACCTGCGCCATGTACCTCACAGGGTTATGGGTGAGGGCCAAAAAAAAAAAAAGAAATTCCTGAAAGTGTCTTTTGAAGTATAAATGTATAGCATTATTAATGTTCCCAACCTCCCCAAGTTTCTTTGTCTACTCCCTGCTTTGATGCCATGCATAAGCTTTGGTCATGGTACCTTTTGCATTACTTGTTTACCTCTGTACCCTCAAAGGCCCTGTGTCTTACTGTCTTTGAATTTCCTAGCACTTGGCTCAAGGCACGTTGGAATGGGTACTGGCTCAGTAATGTTCAAATGAATGAGTAAAGAATGTCTGTCTAAGGGATGTTTCTGGTCATAGTTGTTTTTGTCGTTGTTCATCGTTTTTTCTGAATGAAGACTTCCTCCTTGTCTCTATGCTTCTTGAAGTTAGCCTTGTTAAAAATCTGCCCTTTCTTACTTTCTTGTGTTCCCTTTTGCAGGATGTTAAATTCCAGTATCTGTGGCCTCCTTCTTCAAGGGCTAGGCTTACTTTTAAATATTCATCTGATGAGTCTTGCTTTTAAACAATCAGATAAACAATCAGATAAATCAGTTCTTCCAGCTATTGACTTAGAGATAGAAAATATTTAATATTTATTGTTTGTGTATTCATTTAACAAATACGCCTTGAGTACCTTTTGGGTACCAAGCTCTGTTCCTGGGGCTAGGAACAGAGCAGTGAACAAATTGGATGAGATTCCTGGCCTTATGCAGCCTCCGGTCTAGTGGCGTGTCAGTCAGTGAAGAAGGAAATGAATACATAAGAGAATTTCAACGAATCTTAAGAGCTGTAGGAGGGAATCACGTGAAGAGGGCTTCTAGACCAGTGAGCAGTCGTCATATTTATAAATAAAACTGAATATGTTACCGATGTCGTGCTCTTAGTTTCCCTTTGTATCGGGTTACCTGAAAGGTATCTAATGGTGTTGATGGTGAGTACTTGAAGCTCTAGCCCATCCATGCCTCATCCACAAGAAAGATACAGAATGGCTGAGGAGGAAGGTGGCTATTCCCTGGACTTTTGGTTTCATGAGAGCACCTCAGTCTGTATGAGTGCTCCTCAACCTTGACTAGAACCCTCTTTGTTCAGGTAGCTCTTTTTGAGTATCTCTGATGGACCAAGGGGGACCCAGGAAAGATAAGGGAGTCATCGATCACCCAGTAACTTCGCTGTGCCATCTTGCTGTGTGTCAGTGCACCCACATCCTCAGTGCCAGGGAAACTGCTTGCTTATGGCATTGTGTGTCCACATTCGTTCTCCACATTGTTTACAATGTGCTCTGGATTATAAAGAAACAGTACAAATAAAATATGCCCAAGCCAACACCAGAGTATTTCATTAAGTACATAAGGACTTCCTAAAAAAATTTACTTTTACATGAGTAATTAAAGAGGAATAGACTTCTTCTGACAAAAATTTTTAACAGAAACTGGTAATAGTGACTTCCCCCCACCAAGAAAGAAACTAGGAGGGTAGGGCACAGAATTTGGGATCACAAATTAGCAAATGTTACAAATATAGCAAATAACAGGAAAATCATTCTCTTCCTGGACTAAGGCCTGTTAGGCCACCTCCTAAGTAAATATGTCTTTAATCTGTTCACTTTCTATTTAGTCCAGGTCACCTCTGCTGTCACCTGCATGGCCAGCATGCCTCCCTCTCCTCTTGATCCCCTTGTCTACTGTCCACGCAGCAACTAGGGTGATCTTTTAAAACACAACCATGCCACCAGCAGCCTCACGTGCTTGAAATTCACACCTGGTGTCACCCTTTGCCTGTTTGCTAAGCTTCGGCCATACTGCCCTTCTTTAACTATCACTGTCCTGAGCACCCCACCCTCCTTCAAAGCTCAGGGCCTTTGCATATGCTGCCCCCTCCACCTAGGACGCTCTCTGCCTCACTGAAGCAGGCTTCTCCTTTAGATCTCAGCTGAAATGTTTCTTCCTTGGAGAGAACTTCCCTGATTCCTCAATCCAAGTCTATCTTTAATTAATTATTCTCTCTCGCAGAACTCTGTTGTTTTCCTTCATGGCATGTATTCCAATTTGGTGTATCTGTATTTATTATCTGTCTTCTGCATTAGATTGTGAGGGCTATGGGGGCAGACGTCTTTACTGTGTTGTTTACAGCTGAAATACCAGAGCCACTTATTAGCACATAATCATTTAGTACATATTTGTTACGTGAATTAATGAATGAACAAACTGCTTGGGAACTTGAGTTCAGGACTTTATATCTGCCTTACGCATACTGTAAACCTGCTATGGTTCCGTTCCTCACTCCATCGGTGAAGATTTTGCTGTATCTCTCCTTAAACATCGCAGTTGGAAAATGCTCCCATTATTCATGTGCTCCACAGATCTTACCAGCATGTTACTGATTTCTATGCCCAAGTAACTGATAAAAACACTGTACCTAACAAAGCCAAAAATGAAACATCAGGTCACAGACTGACGTCTCTCTAGGTTGAGAGCTGAATATCTCACTTCTGATCCCGGAGTTGATACTCCTTTGTGTCTTACTCTTCGCCAAATCAAGAGAACCTATGAAGTTTGTCACACAGCCACATTGTCCACTGTGCCACCACCACGCTCAGCTCTCGATGTTCTCTAAACCTAGAGCCCTCTCACACACCGCATCGTGGCCTTCTGTAGCACGGATTCTCGGGGAGCTCCACTCAAGCTGCTGGAAATCACTGCTGCTCCTGTTAAGTGTACACATCTCCTGTTATCCCTTTACTGCGCTAAGGTAGCTAGTAGTGAAAATGAGCAGGGGAAACTATAGGTTTCACTTTGTTAGGATTTTTATTTGCTCCTGTCTCATCTCTTTTAGATTCACTCTAATATCTTGCAAGTCGTATCATTCAAATAAATATTTACTGAGCATCTGCTGTGGACCATGCACTATTTGAATCCCCATAGATTTAGGGCGATCAACACAAACCCCCTCAGTCCTGTATAGCTACAGTATGATCAGGCGCACAGAGAATTAAAAAAAATCATATCTAAAAACTGATGGAACATTATCTGATTTCAGTATCCTATTTCTTAAGTTGCTTTAAAATACCAATCTCATTAGGGTGCCTGGGTGGCTCAGTTGGCTGGGTGTCTGGTTCAGGTCATGATCTTGAGGTCCTGGGATTGAGCCCCATGTCAGATTCCCTGCTCAGCGGGGAGCCTACTTCTCCCTCTCCCTTTGCTCTTTGCCCCTGCTCGCGCTCTCTCTCTCTCAAATAAATAAAAAATCTTAAAAAAAAAATCAATCTCATCAAAACTTACACATCAGACTGGTTTTGTTCATATAAAGCTTTCATCTCCTCCAAAACTTGCCTGAGTCCATCCTCCTAGAACATACAAAATGATATTGATACACGTCCATTAATTCCACCAAGTCTGTAGCAATGTCTAATCTACTCTATGTTTATCTTTGATTCATATATCTTATCAAAAAGCAGTACCTGTGGGAATGCCTAGAACAAGTGTTGGTGAGGATGAGGAGAAAGTGGAACCCTCATACATTGTAGGGAGGAATATAAAATGGTGCAGCCCTATGAGAAACAGTCTGATGGTTCCTCAAAACGTTTAACATAGAATTACCATATTATCCAGCAATCCCACTTGTAGGTATATACTCAAAAGACTTGAAAACATATGTTCATTCAAAAACTGTGTATAAATGTTCAGAGCAGCATTCTTTATGGCAACCCCGAAGTAAAAACACCCAAACATCCATCAGCTGATGAACTAATAAACCAAATATGGCATATCCGTTCAATGGAATATTATTGGGGCATAAAAAGGAATGTAGTCCTGCATGCGTCAACATGGATGACCTTTGGAAACATTATTCTAAGTGAAATAAGCCAGACACAAAAGGATAACTATTGTGTGATTCCACTTACCCGAAATATCTAAAATAGGCAAATTCGTGAAGACAGAAAGTAGATTAGATGTTACCAGGGGCGGGGGGAAGAGGGAAATGGGGAGCTATTGCTTAATGGTTACAGAGTTTCTGTTTCAGTTGATGAAAAAGTTTTGGACAGAGGAGTGATGGCCGCACAATGATGTGAATGTAATTGAGGGCACTGAAGTGCACACTTAAAATTGGCTAAAATGGCAGCTTTTATGTTATATTTTACCACAATAAAAAATAGAGGAAACAAGCAATAAAAGGAATGAATTACTGACAACGTAAGCAATCAACATACTGATGAAGGATATTCTCAAGTACACTGTACTCAGCAAAAGAAGTCCGATACAAAGGAGTACATACTGTACGATCCCTACTGGCCCTTCCCAGAAAAAGTATGCAACTCCTGGCACCCTGAATCCAGACACCTCCCCGCAAAAAAAGACAACTATAATCTGTAGTCGCGGAGAGTACATCAGGGCTTGCCTACGGCTACAGAGAGTAGGTAGCTACAAAAGGGGAAAAGGGAACCCTTGGGGTGACAGAATCCTTGACTGCGGCACTAGTTATAAGGATGTATAAATTCGTAAAAAACTAAAAAAATCTGCTAAATTTGTATTTTGTTGTATATAAATTATATCTCAATAAAATTAACCAAAAAAACCCACCACTCCTTTAGAAGCAATAAAGCATGACAAAAGTATGTAAATAACTTTAACGAAAACAGATCTTAAAAAATTACTACAAGGGTAGTAGTGATACCTAGTCCTGGGATCAAGTCCCCCATCAGGCTTCTTGCTCAGCGGGTGTCTGTTTCCCCCTCTCCCCCTGCCCCTCCCCCTGCTTCTGTGTATGCTCTCTCTCTCAAATAAATAAATAAAATCTTAAAAAAAATCACTACAAAAAATGAACACTTTGGTTTGCAACAACAGAAGGACCAAAGGTGTTTCTCTACTATCCACCTTGGGGCAAATTTTTTAAAAAATTTCCTTTCGAAGGATAAAAATATTAAAATTCTGAAGTTCATAGATATTACACAGTAGGTCTGTCAGCAATCCAAAGATAAGTGACCCAACTACTTTTAGGGCCAACATACATGTAGCAAAAACATTTTGGCGCTATTGGTATAACTACAAAATCAAGAACTTAACCCTCTTCAAACATAAGAAAATACGTAATTCCCAATGAAAAACGTAAGCATGTCTTCTATCTTCCCTTTCATCAAGTAGTTAAACAGAGATCATGGAAAAGTCTGATTTATTAGAATTCAGTTAAATATTCCTATTATCAGCAAATACTATTTTAAGGAATAGCTGAAACTCCTGTATGATTCATAGATCTGCAGGTATACAAAAGACATGTGTGAAATAATTTTATAAAAATACACACATGGGGGCACCTGGGTGGCTCAGGCGGTGAAGTGTCTGCCTTCAGCTCAGGTCAATCCCGGAGTCCCAGGATTGAGTCCCACACTGGGCTCCCTGCTCAGTGGGGAGTCTGTTTCTCCTTCACCCTCTGCCCCTCCTCCCTACTTGTGTTTTCTTTCTCAAATGAATAAAATCCTAAAAATAAAAACACACACACACACACATATGCTGGGGCCCCTGGGTGTCTCAGTTGGTTAAGTGTCTGCCTTTGGCTCAGGTCATGATATTAGGGTCCTGGGATCAAGCCCCATGTTGGGCTCCCAATTCAGTGGGAGTCTGCTTCTCTCTCTCCCTCTCCCTCTGCCCCTACCCTCTGCTCGTGTTCTCTATCAAATGAATAAAATCTTTTTAAAAAATTAAAAAAAGATAATACACACATGCTTTCAGATTTAGATTTATCTATAGTAAAAATAGTACTGTTTTGTGTTCCCACCTCAGGCTGGGAGCCCAAGATAATTTTTCTAAAACCTCACTTAAACTATTAGCAGTTCTGCATATAGAAAGTGGACAATTATTTCAATTTGCTGAATACAGCACCTAACCTTGAGGTCGTGGAATGAACAAGGCAGAGTCCCTCCTCTAGACCCAGTGACTATCATCTTCCTGGGAACAATGATTCTTGAAAGGTCCTGTGGGTCATGGGCCTATCAGCCCTCACATCAATCAGATAGATTGGCCTGTCCCCGCTTGGCTGTGTCAGAGACTGGCCAACCTCCTCAGGCCGAGTCTTCCAGGCCGCTGAGTCACCTGAGCAGACGGGTTTGTTAGTGGAAGGTGCCTGTGCGGCAAAAAGCTGCAAAAGGTGCTCTGCCAAACTAAAACCTAGAAAAAGGAGTGATTTTATAACTTTTAAGTTTGCCTCTGAACCCCCCAAAAGTGGTAACTTAAGATTTGAGTGAAACAGAGAGCTGCATGGACTGAAGGTCTGAAGAGCCAGTCATAAGGCCGGGGCGGCCAGCTCCTGCTGGACGAGTCTGTGTCTCTTTGGGCTTGTCTCCTCATATGTTACATAACCTCCAAAGTGCCTGGTTGTCTGAGTGCAGCGTGGGGTCGTATTTTAGAGCCTGCGTGCCTTGGCATTCTGGCATCTCTGCTGCCCGTCCCACCACTGTCTCCTAACTTTTTAAATGAAGTAACTGTTCTGAAAGAACAACAGACAGGAAATCTAGGAAATCTGTGTTCAAGGTGAGGCTTTGCTCCAATATGCTGTAAGTTCAGACAAGTCCCTGAAGTTGATCTATAATTTCTTTTGGCTCAGTCTCATTTGCAAAATGACCTAACTGTTCGACCAGCCACTCTCTAATGTTCAAAACAAAACTCACCTTTCCCCAAACACTCTTCCTCCTGATCTCTGATGCTGTATCTGAGAGAGAATCCCCTCAAGATCCTCTGTGATTCCTCCTTCATTCATTACCCATCCCACCTCCACCCCTGTTCTAACAGTTACAAGTCCTGTTTGCCTCATCTCTGAAACCCAGACACTGATTTCTGGGCCCAGCGACCAGACATAGTTTGGACCATACGCAGCTCTCACAGTAGGTCTGTCAAAGAGCGATCATAAGCACCCCTGCCACTGTTCTTTCTTATCTCCAATCTATTCCATGTAGTGCTGCCATCACCACCCTCAAAACGTAAAAAACTGTCCTGTCACTTCCCTGTCTAAAATCCTTTACCAGCTTCCAAATGCCTTATACATGAATACACAACTCTCCTAGGCCTAGAACCCACCTTTGTAGCCTCTGCACACACATCAGTCCCCCCTTCCTATGTGACCATGAGTCTCTGCACGGCTGTATCCTTCAGCTGCATTGCCTATCTTCCTTCTCAGAGTGGGGACCTCATCCTTCCAGGCGTGGCCCCAACGCCCCCTCCTCTACCCCAGCTCCTACCAGCATTTCTCCTTATGCTCCTGTGTACACCTCTCTAGTGTCCTCACACTGCATTCTAATACTCACATTTCGTGCCCCTCTACCAGCAGAACATGCCCGGTATCCACGCAATGGCTGCCCTGTGTTAGGGAAAGTAGTCAAGGATGGAATTTAAAGTGCAAGTTTGAAACCAGACTGCCATGGTTTAAATCCTAGTTTCACTTCCCACTGGCTATGGCCAAGATACTTAATCTCCCCAAGCCTCTGGATACATGGCTGGAAGAAATGGTTTAAATCTCAAAGTGTTCTTATAAGAACAACGGATAACATAGGCCACGTGCTTAGCACCCTTTTGAGGTAGTAAGAGAAAAATAAGAATAATGGTAATAAGTAGTAGTGAGTAAGGGACAGGCAGGGCTAGGTAGGGAGAGAGAGGTAGGGGGCTACGGGATCAAGCTCATACAAATCTCAAAAATTCAGAGATATAAGGAAACCAGAGCTAAGGGAACAAACCAGACCATCCTGTCCCAGGTGTGGGAGCTGGGGTCTTATTATGACAGCTACGTGTGACCAACAAAGAATTACAGGACGCTAAAAAGGAAGCAAGCCACTGACGATGTTATCACTAGTCCTTACTCAAGGGTGCTATCAACAGAGAAGTAAAAAAGATTTAAGTTCCCTGGTTAGCTTTCTATAAAAGACCAACCCTAAAAGCCCACAAGGGTAAACCTGTCAGGACCCCTCCCCCTCCTGAGAGCTTCTTCTGTTTCATCACTTACTGAACCTCTATCGGTTTACTCTCCTTTGTCTGAGAGATTCAGTCTTCGACTAGGTGAGACAAGAACCTCGCTGGTCTCCCACTTCAATAGCAGCGGCAGTGGTAGACAGAAAATTAATAGCGAAGACTGACGTCGCTGCTACTTGTATGTCAGGCATTGTCCAGAGAAGCTGACATATATATATACCACTCCTAGGGCCCTCGCGACAGGAAGAGTTGAGTACTATTATTATACTCTTTCCCATTTCTGCAGAAGAAACGGACAGCACAGAGAGTCTGAGTAACTGCCCCGAGGTCACAAGTAGGCTCCATGCCCAAAATGGGGCTTGAACTCAGGACCCTAAGATCAAGAGTTGCAGGTTCTGACCACTAAGCCAGTCAGGCACCCCAACCACTGAACAGATAACTTATCCAAGGTTACTCAGCTTCTAAAGTGGCAGACTTTGTATGTAAGCTTTCAACCCCACAGAAGCTCCTTTGATTTTAGAAGAGTTATTTTAAAACATTTGGAAAATAGCTCTAATGGTGAAGTCTACAAAGGGGGGAAAATACCCAGATTCACACGAATTCACACAGCCATAATTTACCTATATGATTATGGAAATTTTCATAACCATAGAGAATCAAAGGTGGAAATTACTGCTATAGAAACAATTTGTTTTACTTGGTTACCTTTTAAAAAGCAACATTTCTAAAAAGAAAATAGGACTGCATTCTAGCTAACCCCAGAAACTATGTTCCTCTTTTGCAAATAAAGATACAATAGCTGTGTAATCTGAATTGAGTGACATTTCCTTTTCAGCTCTACAGTCAGGGATAATTTAGCTAAGTTTTATTAAATACACAGATCTATAGTGGACTGTGCTACAGAACTGTATTCCAAAAATCACCAGTATCCACAACCTTCCTCATATACCTTTTTAATTTCAGAATCTCGGCCTGAGCTTCATTTCCTTACCTGTACAATGGGGCCAACAGTACACACTTCTAAGGGGCTGTGGTGATTGATTACTCTTTAAGCAAATATTCATGAAGTGCTTACTCTATACTGCATATTGTTCTAGACACTGAAAATAAAGTAGTGAACAAAGTACTTGTTCTCAAGTCTACGTTCCAGCGTGGGATACAGATATACTGATGATAAATATATTAGTGAAAAGTGCTAAGGAGAATAAGCCAAGGCAGGTCAATAGAGTGATGATGAGAGGACCTGAGGGTTTTGTTGGTGTTCAGAGAAGGCACAGACCTGCAGTGTGGAGCGAGTAAGGCATGTGGAAACGGGGCCATAGGTTGGGTAGAGAATTACGGGCAGCAGGAATGTAAGTACAAAGGCCCCAAGGAGGGGAATGGGTGGCTCACACACGTGCCACCCACACCTCTCCTTGGGGTCCCCGCATCAGCAAGGAGGCAGTGACACTGGAGCAGAGTAAGGGAGGGAGACCCTGGTGGCTGACATCAGAGTGAGGACTGGAGGCCATGTCAGGTAGGACCCTTGTAAGCCCTCTCACAAGTTTTCTGTTTTATTTTCAGTGAGATGGGAAACCATACAGGTGTTTTGAGCAAACAAGTGACAGGATTGGAGCTACGTCTTTAAAAAGAACTTTCCGACGGCTGAGTTAAGTAGACAAAAGTTGGCAATGGTGGAGGCAGGAGACCACTTATGCTATTAAAATAATCCAGATTCTTCAGTGATCTGCACACCCGACCTAGGACTGGCACCTGCAAACCCAGATCAAGAGTCCTGTGCTCCACCAGCCAGGCGCACCTCCACCAGCGACTACTAACTGCTTTACACAAATCTAAAGTCATATACAGATTTTAAGAAGTTTTTTTCCAAGTGGAGATGTTTTGACCTGGAAGTTTCATTGAAGAAAGGTGACTGTGATCTTGCTGCCCTAGGCCAGAGTTTTCTGCACAGCCGTATTTCCTCTGACCCTCTAAGGAGGCATGGAAATCTGCCAGGGAACAAAGCCACACAGACAACCTCCTCACGTTAAACCCAACCCCCTGACAAGGGGTGGTGAAAGGCCAACCAGGCAGAGCAGCCTGAACAGCCGAGCAGCAGGCCCCTCCCCCAGAAGACAGACCGGAAGAACAGGAGCTGTTCAAGAAGCTGCTGCCCCATCAGTGCCTGGACTCCGTCTGGTCCAAGCGCAATAAGCCTGGCAATGAGCACCTGGCACCCACAGTCCGGGCCACTGTCGCCCAGTTCAACGGTGTGGCCAAGTGTGTCATCACCACCTGCCTTGGCAACCCAAGCATGACAGCCCGGGACAGGGCCATGGTGGTGGAGCACTGGATCAAGGTGGCCAAGGCCTGTCAAATCCTGCAGAACTACTACTCCCTGAATGCCATCGTCTCGGCTCTGCAGACTGTCTCAATATACCACCTCAAGAAGACATGGGAGAAAGTTTCCAGGAGCAACCATCTAATAAATCTGCCACCCTGGTGATGGCCCTCCGGAGAGCCTAGAAGAAGAGGCTGCAGAAGAAAGGTGTTGTCCCCTAACTTGGCACTTTCCTCACTGAACTGGTGATGCTGGATATTGCAATGGAGGACTATCTGGAGGTGGGTGAGCCTGAGGATTGTGGGGGAGGGACCAGAATCCGGAGGTTTGGGAGCAGAGCGCCCCTGTACTGAGCCCTGAGCTCTCAGGACTCGGCAAACCTCCCCTCATGACAGCCTCACGGCTACCCTGTGAGCCTGGGGGCTGTTGCCCATCTCAGGGATGAGCGAGGTGAGGCTGCAGTTAGGCCACGGCTCCCGGTGCCGAAGACTGGTGAAGCAGCAGAGCTTCCTGAAGGCAGGGCTGCATTAGGTCTGTCTGACTGGACCTCAGCCTCCCCCGGTGAGTTTGCCCGTGGAGGGAGAATGAAGTCAGGACCCTCCACGTCAGCAAGCACCTCAGTAGCCGCAGCAGCCCCTTCCTGCCTGAGGCTTCGGCCTCCCCCACTGTCTTCCGAGAGGGTGGTGCTGCAGGGTCCCGACCTGTAGCCAGTCCATCTGCCCCATGTCCTCCTTTCTCTGGACCCCAGAGCCTGGCCTACATCCCAGGCCCGCTATCTGTGTATGCACGGCCCCCTCATGGGTCCTGGCCATGGTGCAGCATGAGAAGGGATGGGAATCAAGTGCTCCTAAGAACCAGGGGCCTCATTCTGATGGACTTTGTCTGCTTTCCAGGGGAATGAGATCAACGACCACAAAAGAAATAAGAATGCAGTGCAAGACCCATCCCATTAGGAGATGGGGACAGACGCATGGCATCCAGGAGAACTTCCCGGAGGAGAGGCTACTGATATTCACCTCTGAGAA +>XM_012612283.2 PREDICTED: Gossypium raimondii prefoldin subunit 5 (LOC105786035), transcript variant X1, mRNA +AATAATAGGAACATAAACAAACCACACAATTTGAAAGAATTCAAAACCAAACAAACAAATAAATAAAATAACGAAACTAAACAAATAAAATAACAACCCAACATTGAGCAGGCATCCACTTTCCCTTTCCATGGGCAATCAGCAACACCATGGAATCCAAAACGGCAACCTATGTTCCTAGCCAACATCATACCGTTCATCTCCCCTGATCTCAACCGAAACCCCCCAAACATTGTCGAACACTCAAAGAATTTAGCAACCCATCACCACCTCAAAAGTAACCCACCGGTCTTCGTACCCCCACCCTAGATAGTAGTAGCCCTCAATACCCTTCCCCCCTTCAAACCCCATTAAAGTTTCTTGCGATGCCATCAGAGAACATCTCCACCATTTCTTCCCCCAACTGTCATTCGCGCCGATCGTTGTCCATCGCATCCCTCGCAAAGTCCAACACACACCCTTCCAGATAAGTGCTCCCACCTCTCATCAACCCCTCTGTTGATAGTATATGTGCAACTCTATTCGCATCCCTGGGAACATGTCTAAATGAGCATCTTGTGAAGCCTTCTATTTTTTTCTTTGCATCGTATATATAAGCCCCTATAACCGGCCCATCTTCATTGCAGGACCTCATCTTTTTTATCACTGACAAGGCGTCCCCTTCTACCATCACCTATTGAATCCCTAAATCTATCCCCAAACTTACTGCCTGAAGACATGCAAGGGCCTCTGCTGCAAAACTCGTAGGGAAGAAAATGTCGGTTCCTCTCACTGCTTCCCTTTATGTTCCTGGCACACTCGATGATGCCGACAAAGTTCTTGCCGATATCCGCACCGGATACTTCGTTGAGAAAACAATGGATGAAGGCAGAAATTATTGCGAGCGTAAGATCAACTTAGTGAAATCCAATTTCGATCTACTTAATGAGGTTCTTTCCAGCAACTCGAGCAACCGAATTAAGAAAAGATATTTTCAAAATATGACAAAAGGAGACTGAATATGACTTCTGGGAACGATACAAGAAGTTATGTGCAATCTGCCTACAACACGACCTAACTGAACAATCATTTCTTCAATACTTCTATGACGGGTTACTTTGTATGAAAATGAAGATAATTGATGTCACCAATAGAGGGGCACCTGTTGGCATGACTCCTCAAAGAATAAGGGAATTAAT +>XR_008246896.1 PREDICTED: Vigna angularis uncharacterized LOC128195426 (LOC128195426), ncRNA +TTCAGTGGAATGAAGGTTTCATTCATGCATGATGTTGTTTGTGGATGGTTTTGCTTATGTATGAAATGTCTCCCAAGTGCATTTTGTTGTGTTACTGATTTGTATACTTGTTGTTTGCTTAATCTTACATTGTTGTTGTAATTTTTTTCGATTGGTAGTCATGGACCGCGTTGGCCTTGCTGTGAAAAAAAACAAGCCACCTCAAAATGAGAGTGGTGAACCTAGTTGGCCTTGCTGTGAAAAAACTTGAACCCAATTACCCAGTTCATTCGGCTTTGGTACGAGTTATGTTGGTGAAGCCAGGGTCCTAGAAAATGTATTTTTATGTGACACGAATGTTAAGAAATTGTTCCCAGATTACTTAGAAGTAGCTGAAACGAGGGAAAACAAACAAGGCACCCCAAAATGAGAGTGGTGGACGTAGTTGGCCTTGGTGTGCAAAAATTGGAACCCAGGAAGAACTACAACAAGTTAGGGAGCAATATGTTTGTCAATGGATTTTGGATGTGGACAACGTGCGGAGGAATCAAGTGTTGGAAGATTTAGGCATTTTGTAGAATGTTGGAGATTATTGATGAAAGAAAACTTGTTACTTTTCATATTTATGTATTGGTTGGACATCAAATCTGATTTCAGAAATTGTTGAGAAATATATTTGGCAGTTGAAATTCA +>XM_017185738.1 PREDICTED: Drosophila ficusphila calphotin (LOC108088083), mRNA +CAACGAGTAGTCGGTCGCTGTGAAGAACTATTTTACTGTTCGATGTCTACTGACCATGAAAGGCTGACCATGAAAATTTGCGTTCACTAATCACCGGATAAGTGAAAAGCTCCGCAAAAGGGCAAACGAGTTTAACCGTGAGAGAGGCCTGAAACTAGAAGGACATGGAACCTGCAGCGGCACCAGCACCTGCTTCTGCCCCAGTGGCAACGCCTGTGGCCCATGCAGCAGCAGCTCCTCCTGTGCAAGTTGCTAGCCCCGTGGCAGTGGCTCCTGCAGCACCGTCGCCGGTCGTTGCAACACCAATTCCTGCTGCTCCCCCCACTGCGAGTGTTCAGACAGTTACTGCTCCTCCTGCTGCTGCTCCCCCTCCTGCTGCTCCGGTTGCTGCTGCTCCTGCCCCGGTTGCTGCCACTCCCGTTGCTGCTGCTCCAACCCCGGTTGCTGCCACTGCAGTTCCTGCTGCCCCCGCTCCGGTTGCTGCCACTCCTGTCGCTGCTCCTGCAGCTGCATCTCCTGCTGTTGCAACTCCCGTCGCTCCAGTGGCGCCACCTGTTGTTGCAGCTCCCGTCGCTCCAGTGGCCACTCCTATTGCAGCAACAGCAGCTCCTGCTGCAGTGGCGTCAGAGCCTCCGGCTCCTGTAACTCCTGTGATCGCTGCTCCTCCTGTTGCAGTTGCTCCTGTGATCGCAACACCACCTGCTGCGGTTGCTGCGATTCCGGTGGCAGTTGTTGAGACACCAGTCGCTGTTGCTCCTGTGATCGCAACACTACCCGTTCCTGAGACTCCAGTTGCTGTTGCTCCTGTTATCGCTGCATCACCGGTTCTAGTCGCTGAAACACCAGTTAGTGTTGCTCCCGTGATCGCTACACCACCAGTTGCTGCGACTCCAGTTGCTGTTGCTGCCGAACCTGTTGCTGTCGCAGAGACTCCAGTTCCTGCGACTCCTGTTGCTGTTGCTCCAGTCATAGCTGCATCACCAGTTGCAACCCCGGTGGCAGTTGTCGAAACACCGGTAGCTGTTGCTCCTGTAATCGCTGCGACGCCAGTTGATGTTGCTCCGGTCATCGCTGCGTCACCAGTTGTTGTTGCGGAAGCTACTGTGGCTCCTGCTGCTGCTCCTGAGATCGCAACCCCACCTGTTGCTGTTTCTGAAACTCCGGTTGCTGTTTCACAGTCTGAAGCGCCTCCTGTTGCTGCAACACCGACACCTGCACCAGAAGCCCCTGCCCCGATTGCACCAACTGTGGAATCTCCAGTTATTGCAGCCCCTGCAGCAGATATTGCTCCTGTCGCTGCTCCAGTTATCGTCGACACTCCTGTTGTCGTGGCCGCACCAACACCTGCAGCAGCAGAAGCGGCTGTCATTGCACCACCAGCTGTTGTGGAGATCGCAGTTGCTGCTCCTGTGGCTGTCACACCGGAAGTTGCTGTTCCTGAGACTCCTGCTATCGAAGCTGCCACTGTTGCACCAGAACCAGTTGCTGTTGCACCACCAGAAGCTGAACCAGCTCCCGCTGCACCAGCGGCTGTTGCAATTGAGAGTGCTCAGCCAGCTACAGTTCCAGAACCAGTTCCTCCAGAGCCAGCAGCTGCAACCGTTTCCGAGCCAGTTCCTCCAGAGCCAATTGCTACACCAGTTCCCGAACCAGTTCCTCCAGAGCCAGCTGCCACAACAGTGGAAGCTCCAGCTCCAGTTCCGGAAACTCCTATAGTCTCTGTGCCATCGGTTGAAACACCTGCAGCTATACCAGACACACCATCCCCTGCACCAATTCCACAAGTTTCAGCCGCAGTTCCAGAGCCGATACCCACACCAGAACCAATCGTTGTCACTCCTGTGGATCCTTTACCAGTGGAGACTCCAGCTGCGAGCCAGGACCCACCAATTGCCAAAGAGGAACCACCAGCAGAAGCACCAGTTTCTGTGGCAGCAGAGATCCCACCAGATCCACCAGTTGTTAATGAAGAACCAACAGTTGCTCCTGTGACAGCAGAAGTTCCGCCGGAAACTGTTACAGAGGTTTCCGCTCCGGCCGAGGATGCTGTTCCGATCGCAGCTCCTACAACGACATTGGAAGCAGATACTACTACAATCGCAGAAGCTTCACCTGCGTCTGAACTTGCAACACCTGAAGTTGAAGCCGTTGCTGCGGCCGTCGCCGATCCCGTCGCACCTGCACCAATTCCGGAACCAGCCGCGCCGATCCCCGAACCAACGGTTCCTGAACCAACCGTTGCAGCTGCTGAACCAGAACCAGAAAAAGCGGAAGTCAGTGAGCAAACTGTTCCAGCAGCGGAAGAGATTACTGTATCTGAAGTAACAGAGACGGCTACAAAACCTGTAGAGGATATAGTTCAAGAGAGTACCAATGTAATTGACGAAGCAACTCCAACCACAACTGAGTCCGCAGTTATAGTTTCTGGAGAAGTATTGGAAAAACCTCCAGCAGAAGAAGTGGTTGCAGTAGAGTCTGGTCCTGAGGTTGTGGCCTCAGTAGTAGAAACTATTGAAGCTCCAGCTGCAGTAGAAACCACCGAAACTTCGCCAGAACCAGTGATTTCAGAAACACCTGTTGTTGCAGCTGAAGAGCCAACTGCAGAATCAGTAGAAACTATAACCAGTGGTGCGGCAGGTACTTCTGAAGAAAAACCAACAGAAGAGGTTCCCGCAGATCCTAGTTCCGTTCCCGTGGCAAAGATAACGCCCCTGCTGAGGGACCTTCAGACCACCGATGTTTCGCTGTTGGCCATCGCGGCCACTTTGGATGCAATTGGAGAAAAACTTAAGGACCAAAAGGCCAGAAACCAGCAGGTGATGGACAGACTCTGCGAGATCGAGAAAATTCTTGGACCACCTAAATCAAATTAGCTTAAGCTGAAGGAATAATTCATGGTAATGTTAAACTAAAATATCAGTCGAAAATATAAAAATTAACATTGAAATAAACTTATCAGTTTAAATTTCA +>XM_043518673.1 PREDICTED: Dermochelys coriacea RNA-binding protein 14-like (LOC119858569), transcript variant X5, mRNA +GCTAGGGCGGGTCTCGCGGATTGTGACGGATGCAAAACAAAGGTTACAGGCGGTTGGGGCTCAAGTGCGCCCGCGCAACGACGTTGCTAGGAGAAGAGCGGAGGCGCGGATACAGAGGCAGGAGTGCGCAAGACAACAGTAGCACGCAGGCGCGGCATTAGCCGAGGGTCTCTCTTCGCAGGCGCAGTTGCTCGTAGGCGGTGGCAGGTAGCGCGCTGCGCAGGCGTGTCGACGGCTGGGTGGTTCCTTCCTCTTTCCTTCCTATCTGAGCGTTCGGAGGGTGTGAGGTGCTGCCGCCATTTTGTCAGGAGTCCCGGTGCCAGCTCGGCCGCGGCCATGCGTCCTGGAGTGAAGCTGTTCGTGGGGAACGTGCCCGAGGAGGCCACGGCCGAGGAGCTGGGCGAACTGTTCACGGGCGCGGTAGGCCCGGTGCTCGGCGTGGCCCTCATGAAGCAGTTCGCCTTCGTGCACCTGCGGGATGAGGCGGCCGCTGTCCGCGCCATCTCCCAGCTCAACGGGCACCAGCTGCATGGCCGCCGCATCGTGGTGGAGCCGTCCCGCCCGCGGCCCACCAACACCTGCAAGATCTTCGTGGGTAACGTTTCGGCGGCCTGCACCAGTGGAGAGCTGCGTGCGCTCTTCCAGCAGTACGGGCCCGTGGTGGAGTGCGACGTGGTGAAAGGAGACACAATCATGGAACAGGGGTTGGTACTCCTTTCCATTGCACCTGCAGAGCTGTTTCAGGTGATATGGACCTGCCACCAGATGCAACATGGGTGGTTGATAACAGTCCAATATGGTGTAATCTGCACAGCCAACTCAAGTGTGTTGAGATGTTTGCTGACTTCTTGAGAGACTTTGAGATTTATTCTTCAACTTTTTTTAGCTGCCTAGATCTGAGCAAGTCATTGTGATTCGTATTGCACTACTCTATTTGGACTAGGGATGTGGGAAATTCTTCATCAGTTGGAGTCTCTATGTTGAAATT +>AY571475.1 Uncultured bacterium clone RsaHf359 16S ribosomal RNA gene, partial sequence +ACCTTACCTGGGTTTGACATGGTAGTGAATGGTGCAGAGATGTATCAGTCCCGCAAGGGACGCTATCACAGGTGCTGCATGGCTGTCGTCAGCTCGTGCCGTGAGGTGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTACTGCCAGTTACTAACAGGTAACGCTGAGGACTCTGGCGGAACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTATGTCCAGGGCTACACACGTGCTACAATGGACGGTACAACGTGACGCGAAACCGTGAGGTCATAGCGAAGCACAAAAAGCCGTCCGTAGTTCGGATTGAAGTCTGAAACCCGACTTCATGAAGTTGGAATCGCTAGTAATCGCGCATCAGCATGGCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATCCGAGTTGGAGGTACCCAAAGCCGGTAGCGTAACCGCAAGGAGCGCGCTGTCTAAGGTAAATTTAGTGAGGAGGGTGAAGTCGTAACAAGGTAACCGTA +>XM_017212262.2 PREDICTED: Drosophila eugracilis peripheral-type benzodiazepine receptor-associated protein 1 (LOC108105593), transcript variant X5, mRNA +ATGGGGTTAACAGAGAGAACGGGGCTCTGTTAGTGGTTAACAGGGTAAAGTAATAGTAAATCGTAACTAACAGCCCCAGAGCATGAACTTACCCACTTGCAACCCCAAAGGAGCCCGTGAGCGGGAGAAAATTACCCGTTTTTCAGTGTCATTTCACAGAAAAATCGATTCCCCGCACACTGGGTACTGGGCATTGGGTTCTGGGTTCTCTGGGCCACTCTGCTCTGGCACACTGAGCACCGAGCTCTGGCAGTTGGGTAGAAATCAGAGTACAAACCAGCAGCGCGACCGAGATGACCCACTTTTCGGTTTTCGCACTGAGACCCAACTGCTACCCACAGAAAGTGGACAACTAGGCGGAGTTTTTTTCTATATAAGTAGCAGTTTAAACGATCGCGTTTTTCGGATAATTATGTACAGCCTACGTAGCCTAGTGTAAACTCTATGCATTTATGTGAATTTCCCAGCGCAAACGTGGAAGACGAAAACAGGCGACCTGAAAAAGCAGCAGCAGCAGCAGCAGCAGCGAGCAAGAAGCAGAAGCACAAGCAGCAAAAAAGTCGTCCGAGGGGCAGCCACAGCATGCCGTACGAGTCGATGCACCATCATCAGTCGGCGGCCGCTGCCGTGGCCGCTGGCACAGCCCCCAACGGAATGCTGGACGCCCTCAGTCTGCAGCTGCGCGATGCGGAAATGCGGCGCACAGAGATCGAGCGGGCGCATCAGGAAACCCTGGCACAAATACGAAATCTAAGCGGAAGCGCACGTCCCGATGCCGAGGCGGTTGAGAATCTGCAGTCGAGAGCCCGGGAACTGGAAAAGAAGGTTGCGCTGGAAAATGTGCGCTGCGAGGAGCTGCAAATCGAACTGACCTCGGCTCTGAAGGCCAAACAGGCGTCCCGCTCGGTCTGCTCTGGAATGGTCGGCGTGTCCTCCGGAGGCGGAGCCACCATTCCTACATCAGCCAGCAGCTCCACCGTCACTTGGGCACCGACAATCAGTCACCAGGACCAAGGCTCCGAGATTGATATCATAATGGCAAAGATTGAGCAGGATAATCGCGTGCTGGCCGAGCTGGAGCAGCCTCGCACCTCGGCCAGCGCCAGCATGTCAGCATTGCCGCCCAGTTCCATGTTGAGCACGGTAAATAGCGAATTTAGAACCATATCAAAGAGTGAACTCGAAGAAGAACTGAACCGTTATAAAAGGGCCGTTCTTGGCGGAAGTGGCGGAGGTGGTGGCGTTTCAGCTCTCTCCTCCGGCTATTCAAGCCTGCCGCAGTCGTTGGCCTCTACGCTGCCCAATGGCGGGGCAAGCACCAGCCTAAGCGGTACCAGCCTTGGCTCGCACAGCGTGGCCGCTGCTGCTGCCGTTGCCTCTGCTGGATCGGGGGGTGTGACTGGGGGTGGTGGAACGGGAGGTTTATCATCCATATCGGCCCTGGTGCCCAACTCAATCAGCGGCATATCCTCGAGTCTAAGCAGCCATGCCATACAATCGATGCAGTACGGAACCGGACAAACGTCCGTGGAGAAGCTGCTGAGCGGAACTAGTGGAATCACTGGGATTCCACCTCTGCCGGTAAATATTCACACGATGAAGGCTATGCCAACGGCATTAAGTCAGCGCGGAACAATACAGCTGTACAATTTGCAGAGCACAACCATGCCCCTCCTGTCACTCAACTCGCATAACCTGCCGCCCGCCGGCTCGACCAGCTACTCGGCCCTGGGCGCCGGCGGCGGCACCTCGCTGACGCATCCAACCAATCTGGCCAATCTTGGCCTGCTGGACACTGGCGCCCTCTTGGGTGCCACCGGTCTGAGCGGTTTGGGCGTGGGACCCGGTGCCGGTGGCATTACCGGTGCCACATCACTATACGGTTTGAGCGGCGGCGGAGGTGCCAGTGGTCTGGGCAGCTCCTATGGTCCGCCCTTCCTGGACGTCGCCTCGAGCGCCTCGTATCCATTCACTGCGGCAGCCCTGAGACAGGCTTCCAAAATGAAGATGCTAGACGAGATCGATATACCGTTGACGCGGTATAACCGCAGCTCGCCCTGCTCACCCATACCGCCCAGCAATTGGGGACTGGACGAGTTCACCGACGGCCTCAGTGTCTCCATGATGCACAACCGCGGCGGCCTGGCACTGGGTGCCCTTGACTTGGACACTCGCAATCATGGGTTAAATGGAGCCAGTGAACCGCAGGTGGATATGCTGGATATTCCTGGAAAGGGGCGCTGCTGTGTGTTCATAGCCCGTTTTCCATATGATCCGCCAGATGTTCATAATGAATTCCTTTCCATGCCTTGCAGGGAGGCTGAGGGCGAGCTCTCCCTGTGCGCCGGCGACTATCTGCTGGTGTGGACCAGCGGGGAGCCACAAGGTGGCTACCTGGATGCCGAACTACTGGACGGACGACGCGGCCTTGTTCCGGCCTCTTTTGTGCAGCGTTTAGTAGGCGACGACCTCCTGGAGTTCCATCAGGCGGTGCTGTCGACGCTGCGCGATGCCGAGGACGGATCGATGCAGTGCGACACCACATCGCTACCCTCCTTGCCGCCGCACAACCCATTGCTCACACACACCCACGAGGACCTGGCACGTTTGAGTGAGACGCACACCGATCTGGAGCACGACCAGGACGACATTAGCGACAATGTTCCAGCACCCAAGCACTTGACGCTGGAACGGCAGCTGAACAAGAGCGTGCTCATTGGCTGGTCACCGCCGGAGCCAGTGGGCTACAACCTCATCGACAGCTACCACGTCTACGTGGACGGCGTGCTCAAGGTCACCGTGAAGGCCAACGAACGCACACGAGCGCTTATCGAGGGCGTTGACTCCACGCGGCCGCATCGCATCAGCGTGCGGAGCGTGACTCAAAACCGACAGACCTCGAGGGATGCCGCCTGCACGATGATCATTGGGCGGGATACCGCCCACCTGGGCCCCTCGGCGGTGCGCGCTTCGCACATAACGTGTTCCTCGGCGGTCATCTCATGGCTGCCGGCCAACTCCAATCACCAGCATGTGGTGTGTGTGAACAATGTGGAGGTGCGCACCGTCAAGCCGGGCATGTACAGGCACACGATCACGGGCTTGGCGCCGAGCACCCAATACCGGGTGACCGTGCGTGCCAAGCACCTGCGGGCCGTGGGCCAACATGCCGCGAACGTGGGCCAAACAGGTGTAGCCGGCAGACCTGGTCAGGAAGAGGCGCCCGGAGCGTACGCTGACTTCCGTACCCTGACCAAGGGACTGCCCGATCCGCCACAGGAGATTCAACTAGAGGCCGGCCCGCAGGATGGTACCATTCTGGTGACATGGCAGCCGGTTAACAGGCCCACCTCGACGGGGCCTGTAACCGGCTATGCTGTGTATGCCGATGGTAAAAAGGTCACCGATATCAACTCGCCCACCGGTGACCATGCCCTCATCGACATTGGCAAACTGGGTGTCTTTAATCCACGCGCCGTCACCATTCGCACCAAATCCCGCGACTCCCAGTCGGCAGACAGTGCGCCCATCTTGATACCAAATACCGTGCGAAATGCCGTGGCCCGAAGGGTGCCTAACCAAATGGGCATGGGTCCACAGTTGCCGCAGGGACCGCATGGGATGCAGGTGCAGCAGCAGATGGGTGGAATGCCTGGACTGCCGGGTCAACAAGGTCAGAATATGATGGGTCAGCAGGATCATGGCCAGTACGATCCCAATCAGATGCAGCAGCAGCAGCAGGGCATGCAACCGCAGCCGGGTCAGCCGGGTCATCAGGGCTATCAACCAGGGGCACCAGGAGCGCAGCGGGGCATGGTCCCGATTCCGGGCAGGGCGCAGGGACCACAGCAACAGCAGCAGCAACAGCCCTACGGACCCCAGGGTTCCATGGGTGGGCCACGCTTTCGAGGACCAGTTCCGGGCCAGCTTAATATGCAGGGCCAGCAAATGCAGGGTCAAATGCAGGGTCAGATGCAAGGTCAGATGGCGGGTCAAATGCCTGGACAGATGCCTGGACAGATGTCTGGTCAAATGCCTGGTCAAATGCCTGGACAGATGCCCGGACAAATGCCCGGACAAATGCCCGGACAAATGCCCGGACAAATGCCTGGCCAGATGATGGGACCACGAGGACCGCTCAATCAGCAGCAGCAACAACAGCAGCAGCAGCAGATGCAGCAGGGCCAACAGATGATGCCAGGCCAACAGCCTGGACAACAGCAGACACAACCCGGACAGCCGGGTCAGGCCGGCCAAATGCCCGGGGCCCAGAAGAAACCCCGCTATTTCGTGGCCATGTTTGACTATGACCCATCCACGATGAGTCCCAATCCCGATGGCTGCGACGAAGAGCTGCCCTTCCAGGAGGGCGATACGATCAAGGTATTTGGTGATAAGGATGCCGATGGCTTCTACTGGGGCGAACTGCGTGGTCGCAGGGGATATGTACCGCACAACATGGTCTCGGAGGTGGAGGACACTACTGCCTCTTTGACAGCCGGCGGACAGATGCCCGGCCAGATGGGCCAGGGTCAGGGTGTCGGCGTGGGTGGTACTGCCCAGGTGATGCCCGGCCAGGGAGCTCCGCAGCAGAGCATGCGCAACGTAAGCCGCGACCGCTGGGGCGACATCTATGCCAATATGCCGGTGAAGCGGATGATCGCGCTCTACGACTACGATCCCCAGGAGTTGAGTCCCAATGTGGATGCCGAGCAAGTGGAATTGTGTTTCAAGACGGGCGAAATCATACTCGTTTACGGTGATATGGATGAAGACGGTTTCTACATGGGCGAACTGGACGGCGTGCGCGGCCTGGTGCCGTCGAACTTCCTGGCCGATGCGCCCGATCAGTACAACAACCAGATGGGTCCGGGCGGTGTGGCCGGCAGAGGTGGTCTCAGCCAGCGGGGCAGGGGTCAGGGGCCAGGAGCGAGGGGTCCACCGCCCCCGCCACGTGACAACATGATGCCCGGAATGGGCGGTCGCGGCCAACCGGGCAAAAATGCTCGCCCTGCTTCCCCTACACTGTTAGACAACACGGGCCATCCTGCCCCCGATCACCAAACGCAGGGGATGATCGGTCGCGTTGGTAATGTCGGCCTGCAGCAGCAGCAGCAGCAACAGCAGCAGCAGCAGCAACTCCAACAGCAGCAGCAGCCGTATGGTCAGCAACAGACGCAGATGGGACAGCAGCAGCAGCAACAACAGCAAATGGGACAACCTGGAATGATGGGTCAGCAGATGGGTCAGCCGATGGGTCAGCAGATGGGCCAGCAGATGGGACAGATGGGTCAAATGGGTCAGATGGGTCAACAGCAGCAACAGCAGCAACCGCCGGTAACGACACAGGCGCAAACGGGTGGCCTCTTCTCCGGTGCGACTAGCCTGCTCTCTGGTGCTACCTCGGCTGCCACCGGTGGTCTATTTGGGTCGAAGCAACCGCCCAAGACGGATCCAATGCAACCACAAGGTGGTGTGCAGCCAGCGCAGCAACAAGCAAATGCCTTCGGTGCCCAGCAGCCCGGCATGGGTATGCAGCAGGGGGGAATGCAGCAGGGGATGCAGCAGGGGATGCAGCAGGGTATGCAACAGGGGATGCAACAGGGGATGCAACAACCGGGCATGCAACCCGGTATGCAACAGGGTATGCAACCCGGTATGCAACAGCAGCAGCCACAGCAACAACAAGTGCCACCGCAAGCCCAGGCTCCGCCACAAGGACCGGGCGCCGGTCTGCTGGGCGGCCTTAAGGGTATCGCGGCAGCGGCGCCCGGCGGCGATGTCCTATCGAAAGGCAAAGACCTCTTCGGAAAATTCGGGTTCGGCTTTGGCAAATAACCCCGGTCATTCTATAGGGTCCTGTTATATTATTCGTAGATTAGACTTATTATTACTATTATGATTATGATTATTGCTATTGATTACGGATTACTAAGCTAATATATAAAGAAAAAAAAAAACACAGACGATGATGATTAGATCGAGGAGGACAGACAAACCAATGCTAAAGTTAAAAGAAAAACCCATACTTTTAGGCCCAGGCTGTGGGCCAATGTGTGTATGTTGTTGTTGTTGTTGTTGATATGAATATGATATGATATGACTAATAGTACTAATGGTAATATTTTTTATTAATTAAATTGATAGAAATATTATGAGTGACCGACAGACAACAGCAGCATCGGCCTAACAGCTGGGCCAAAAAAAACCAAAAACAACAAAAAGCCACAAGCCCAGATAAATTGTTGTAAAATTATTTAACAAATTGCCTGCCGGTTTAGGTGACTGCAACTCGATAAAAGATTCCACTAACCCATTTAAAGGATAAAGCTCTATATAATGCATAAACCAACACACACACACACACTGAGACACATACAGATGCAATACACACTCACATAGATACTGAGAACACAGATATATTATACAAAAAAAAAAAAGAAAAACCAATACAAATACAAAAGTAAGGGAGGAGAAATATATTATATACATACATTATATTTACAATTATTTGTTAACGCACATTGTTAAATTTGCTACTGTTGCTGACCAGTTTATAAATAAAAACCAAACCGGATGGTAAGGAGGAGAAGAGAAAAGGAGTATAGAGGAGAGAAGATAAAGCAAACACATAAGGTAAACTAAAACCAAAAAAAAACATAAACATAAACATACATATATTATATGTATATATTTCAAATATATTGAAAACTAAATTGAGATACACTATAAAACTTACATTTATAAATCAAAAAACAAAAACAAAAACACAACCGAATGTTGAGCAATGTCAGGCAGGCGAAATGATGAGGCCGAACCAAAAAACAAAAAACCAAAAAAAAAAAACAAAAATATAAATAATGAAGAAGAAGACGATACATACATTAAAGTAAAATAAATAAATCGATATGGTACATATTTACATATATTCGCATATACTAAATACGATTTCGCATTCAAAAGCCAACCTCCAATCGGGCGCATTTCCAAGACAAGGCGACCTTGACTTCCAGTCCAGCACAAGAAGCTAACTTTAATCCCTTGAACATCCCCACCCCCCATGCCTTCTTTTCAATCCAGTGATAGCCGAAGCCAAAATTTCTATCTCTTAATTCCTAGTAAAAACTTTCCCCCCTTTTCTCACGACTGCTCGACTCAAAAACTTCTCTTTATTCTATGCAACCGAAAGAAATTTTGTTCAGTGTTTGATGTCCATAGAAGCCATATGCGATAAAATATCAGTGTAACTTAAAGCAAACCAAAGACCAAGAGAGAGATCTACTCCTACATACATATATATATATATATATATATATATATATATGGGATACCCAACAAAATGGCAAATACAAAGCAAATATAATGTACTAAGCACAAGATCGTAGCATTAGACCCTGGAGACATGTTCACTAAATTCAGCAAAAAGGAGACTTTTCCACAACCTTCTTTAGCCACTTAAGCCGCCGCCCCTATTGCTTTTCTTACCAACTTTCTATCGCTATCTAACCCTAACTTTTACCTAACCAAAAGTACACATACCTTTTCGATTGTTATTTTAAATACTACCAATTAACAGATAGTTAGTTACTCGCCTATGCCGCATACTTACGACTACTTCTGTTCTCCTCTCGTGGAAACTTTATGCTTTATTATCCGATACGATCCGATCCGAGAGAGAGAATGAAAATTTGCAGATAGTCAAGGTGTTTCCTAATGTTTGAAAATTGCTTTGACTCAGCCCTCATGATACACACTCAGCATAACACAGACAAATACATTGCGTACCTCTTGCTTTACGAAAATACAAAATACATTCAAGAAATGGAAAGTATAAAGATAACAAAAACCAAAAAAAAACAATTATATTAATGACAAAATTTACCAAACAAATATATTAAACAAGGCATATTTAAAGAGCGCATAGAGAGTTGCATATGTACATGTGCTTGGCCGGCAAACAAGACAACATAATTGTGAGCAAATGATTACTTTAGACACACACACTTACCACAACTGATACATAGTTACACTGCAAAATGCAAATTGCAAATTGCAAACTGCAATACCGAACACTGTAAATTGTAAACTGGCAAAAACAAAAAACATATAGTAGAGAAGGGCTGTTATAGCCAGAAAATGTTGATCGAGAATGACTTACCGAAATCGAAACAAGCGTTAACTTTTCCCACGTAAACGATTTAAATCTAACAATCAAATCAAGTCACTGTATTATTCAGCCACATCGGATAGACAATTACAATCTACAAGCCTAACTTCGGCAACCACCGAAGCCGTGATGCCTACGTAAACCGGAAGATATATCATATTCGAATTTACAAGGGCACAGCGGAAATACACACACAAATACAAATACAAACAGCAGACAAACACACTTACACACACACTCTCTCTATAATCATTTACTAGACACCTACCTATACAAGTATACAAGAACAGTTTATTTCCTCGGAAACAAAGCGAACAATATAGAATAAATGAAATTAAATTCCCATTAAACACACACACTGGCAAAAAAAAAAATGATAATGGCAAAAAAACGAGTACTATGCAATATGAAATGGATAAAACAAAAACCAAAAAAACAAAAAAAATACAAATGAAAACCAACTAAATTGTTATACTGTATTATTATACTTTTTCTATAAATTATAATTTCCTTATTGAACGACAAAAAAGCGAAAAAAATAATAATTAAACAACAATTTCAAAGAAAAAAAAATCAAAAACGCAGCATTTCAATTGCCTTAATGAGGCGTTTCTTCAATTTCAGTGATATTACTCATACGACACGTA +>XR_003431942.1 PREDICTED: Lagenorhynchus obliquidens AVL9 cell migration associated (AVL9), transcript variant X2, misc_RNA +CGGAAGCGGATGAGGGAAGCTCGGCTGCGGCCCGGGGGGGGCGGTGCAGAGCTGCAGGAGCCTCGGCCTCCTCCTCGGTCCCTGCGAGGCTCTCATGCGACGCCCTCGCTGACACCTGAAATCCACTGCTCGCCTCCTCCTGGGGGTCACGGGGTTGCTCGGCTTGCCGCCCTCGGCGGTTGCAGTCATCGTCTTGCGGGCCTGCGGCGGTCGCCCATGGAGAAAAACGGGCGCGGCGGCGATAGCGCCCCCCGTGGGCCCGTATTGCACATCGCGGTGGTCGGCTTTCATCACAAGAAGGGCTGCCAGGTTGAATTCTCTTACCCGCCCCTGATTCCAGGAGATGGACATGACAGTCACACTTTACCTGAAGAATGGAAGTATTTGCCCTTCCTTGCCTTACCAGATGGCGCACACAACTACCAAGAAGATACTGTGTTTTTTCACTTGCCACCCAGAAATGGAAATGGAGCCACTGTATATGGTATCTCTTGCTATCGACAAATTGAAGCCAAGGCATTGAAGGTACGGCAAGCAGATATCACCAGAGAGACCGTTCAGAAAAGTGTCTGTGTTCTAAGCAAGCTGCCTCTCTATGGCTTACTTCAAGCAAAACTTCAACTCATTACGCATGCATATTTTGAAGAGAAGGATTTTTCCCAAATTTCCATTCTAAAGGAGCTCTATGAACATATGAATAGTTCCCTGGGAGGAACTTCATTAGAAGGATCCCAGGTATATCTTGGTTTATCTCCTCGAGATCTTGTGCTTCATTTTCGACACAAGGTCCTAATCCTGTTTAAACTAATTCTTCTTGAAAAGAAGGTTCTCTTTTATATTTCTCCAGTGAATAAATTGGTGGGTGCCCTGATGACAGTGTTATCCCTTTTTCCAGGCATGATTGAACATGGTCTCAGTGATAGTTCTCAATATAGACCCCGAAAGAGTATGTCTGAAGATGTTGGGCTTCAAGAAAGTAATCCCACTGAAGATGAGTTTGTTTCTATGCCTGCTCCTGACATTTCAAATACCAACTTGGAAACTGTTGAGAAAATCATGATGAGAAACCATGGAAGAGATGCTGCCATGAAGACTGAAGAGCCTTTTTTCCAGGTAGATGATGACAGCAGTGAAGGACAGGAACCCAATGACAGCAATCAATATTTGAAACCTCCTTCTCGCCCATCTCCAGAGTCTTCAGAAAGTGACTGGGAGACCTTGGATCCTAGTGTCTTAGAGGACTCCTCCTTGAAAGAAAGAGAACAGGTGGGATCAGAACAGACAAACTCATTTCTAAAGGACTCTTTGCCCTCAGACAGTCCTCCGATTACTGTACAACCTCAAGCTAACACAGGCCAGGTAGTCCTGATACCAGGGATAATTTCTGGTTTGGAAGAGGACCAGTATGGCATGCCCCTGGCCATCTTCACAAAGGGATATCTGTGTTTGCCTTATATGGCATTGCAGCAGCACCATCTTCTCTCTGATGTCACCATTCGAGGATTTGTTGCTGGAGCTACTAACATCCTTTTTCGACAACAGAAACACCTCAGTGATGCCATTGTGGAAGTAGAAGAAGCTCTGATCCAGATCCATGATCCAGAACTCAGGAAGCTGCTTAACCCAACCACTGCAGACCTAAGGTTCGCAGATTACCTAGTGAGGCATGTGACCGAGAACCGAGATGATGTCTTCCTGGATGGCACGGGCTGGGAGGGAGGTGACGAATGGATTCGAGCCCAGTTTGCAGTCTACATCCATGCACTGCTGGCCGCCACGCTGCAGTTAGATAATGAAAAGATCTTATCAGACTATGGGACGACCTTTGTTACAGCATGGAAGAACACTCACAACTACAGGGTCTGGAACAGCAACAAGCATCCAGCACTTGCAGAAATAAATCCAAACCATCCTTTCCAAGGCCAGTATTCAGTGTCAGACATGAAGTTAAGATTCTCACATTCTGTTCAAAACAGTGAACGTGGCAAAAAACTTGGAAACGTCATGGTCACAACGAGTCGGAATGTTGTGCAAACAGGAAAAGCTGTTGGCCAGTCAGTTGGAGGAGCTTTTTCCAGTGCAAAGACAGCCATGTCTTCATGGCTTTCTACTTTCACCAGTTCCACTCCACAGAGTCTCACTGAGCTGCCTGACGGGAAACCCTGAGCGGAGCAAGCCACCCAGAAGCTGCTGTCGCTTTCTTAGGTTTAAGCATCCCCTGTCTGTCTGCTGCTCCCAGACTGTTCCTCTTCATCGACCACAGGTCCACAGCAGGGACCAATAGGTCGAACTGTTTACAGGGACGGTTGCCCTCTGTGTAAATGAATGTCACGGGATGCTGAAAAGACGAAACCACAAGCGTAGCAGGGACGGCTTCCCAGTGGACTTGGCCTGTTTTTCTAGAAGTACCCTTCATGTTGTCAGTGTGGTTTCTGGCCTGCTTCACAGTTGGAGAGAAGGGCCAGCTTCGTTTATTAGGAAACCAGCGGAACTAAAGGACTCATTGCTCGTTTTTTTTTTTTTACTCTCTCATTTTGAAAATACTTGTGGTGCTTCAGTTTGTGAGGTGGTGACCCTCGCAGCAAGAATGTTTAGTGCCTGGGGCTGCACAAAGTACCACCAAACGGAGTTTGGTCGTGCAGTAACATCTTGTCACATGCTCACGGACAGAAATCCCCAGGGGACTAGGATATTGCCCCAAGCAACCCATTTTTCCATCCGTACTGGTGAGCTTCAGAATAACCTTGACATTTCCACTGAGGACTCCTAGCACATTTTCACATATGTATTTCCATGTACCATGGTTTCCTTATAGCTGTTTTGCAAAACAGCTTCACAGAAGAAGGAGACAAATTTCTTTGTTCCCAGGAATGTGCGCTGCCTTGAGTACAGGGTTAAATTTAAGGTACCAGTGTTCTTACAACGTGGACTGTTGCTGCCTGGAGCTGACAAGGTGACTCGGGCAGTAGAGCTCGACACCGCCAACATCTCCCTTTTCCGAGGACCTGTTCCAGCTGCACTTCAGGCTCTGCCGTGGTGAGGGGATGGTCCCCCATTGTCTCCCAGGTCAGAGCTGCCTTCTCTTCATTCTGATAGAATGGGAGTTGCAATGATCAAACCTGGCAACATCTGGAAAGAGCAGGATTATAGAGGCAGTTTCTTCCAAGGAACCACACTTTGTGAAGGGCTCATCTCCTCCTGTGGTAATCACAGGCTTAGGGAACCGCTCTGCAGCAGGACTGATCTGTCCAAGTTCACAATCGACAAATCCCCAGCGGAGCTTCCAGTCGCGTGACCGACAGCCAACTCCAGTCGAGGCAGCTAAGGTCTAGTCATCCAGCGCAGGTCCTGTGCAAAACTTTGCCTCAGCATGAGTTTTTGAAGACAGAGGAGGGAACCCAATTTTTTTTTACTTTGAAGGGCTGATGTTCTCCAAGTCTAGCAATCACATAAATGTCCGGTGTGTCCGGAACTGTCCTGGGCAGCCACAAGCCCTAAGGACTTTTAGCACCGAAGCAGAGACTCACACTGGCCTCCAGAGATCCAAGATGTGCACATCTTTGGCTACTTGCCCTGGGAAGTCACTTTCAGAACTAACCCATGTCCCTCACACTGCATTTTAAACCCTACCTTCTTCCCATCAAGTATTTGAGTGCCTACTGTGTACACACACAGTACATGCCACCCACATAGCAGGGGGAGAATGGATGGTTACCATAGTGGGTAAAGAGGCTGGGTCAAAGGTCAGCCCAGTGTGTTTGAGCAGGTGGCCAGCTCCTTTTTGGCAGGGGTGAGTAGATGTTTCTTCCCCTGAAGGCTAAGTGATAGTTTTAGGAGTGAGGTGGGTTTAGATACAAAGGGCTCCAGGACCTAGGAGAACAACATAGGCAAAGACTGGGAAGCAGTGAATGTTCTTTGGTGTGACTGGAACCTAAATGGCAAGGGGGGATGGGCAAGAGATGAGGCTGTAAGATAAGGCCAGGTTTGGAAAAAGAGATACCTGTCAGCCTGGCAGAGGGGGGGTGGACTTGATCTAAAAGGGCAGGGGAGAACCTTAAAGGGCTCTCCAAGGGCAAGTGGCAGGTTGGGTGCTGCATTTGAGAAAGTTCATTCTGGGTTGGGCACCACTGCATTTGCATGGCCATTAGCTCTAGTGATGTCTCTCTGAACTCAGCCATCACCGCCTTCCTTTTCCTCAAGGGCCCAATCTCTTAGCTTTGTACCAACTTTAAATCCCATTTGCCCCAAACAATGGGCCCCAGAACAAAACTCCTATGGACCCAGCCCTCAGTCAAAAACCAGTCACCCTGATGTCACCCTAAGAACTGTTTTCCTTTGATTTCTCCAGCCGTTAGACTAGCGGGGGTGGGGGGGTGGGGGCTTGTGAACGAGGAGCGGCTCTAAAGTGATTGTGGGCGGTGCCGGGAGAGCCCGGAGGACACTTAAGCATCTGCTGAGGTTACTCTTTTTGGCAAAGGGGAGACCCAAGAGACCCGTGCCGCCACCACCATGTTGATAAACCTGGGCGAAACTCACTGTTTCTTCCTAAAGTTTACAAGCAGGAAGGGAATGCTTCGTATGTTCTAAAAGTCCATCTGCAGTTAACATCCGGACTTTCATTTATATTCGATCTAATCCATGGAATTTTTATTCTGATCAGCGTTACCAGATGAGCCATGTGCACTGAGGAATGATTAGCCCAAAGTAGGACAGAAGAGAATCTGAAAAGTAGCCTTTCCACCTGCCCCCTGGCTCTGCCCTAGAAAACAGTCAGTCAGCAGCACTTCCTAGAAACCACGGAGACAGAAGTTACGCTGCACCGTCTTCAGCTGCAGGAATCCTGAATTGGTTCTTTGTACAAGATCATCCATGAAACGCCAAAGCCTCAGTGCCCTCGATAGATCATTCACTCCCACTAAATGCCTTAGAAATGGAAATTCCAGAGGAACTTGACCACCTGCTATATAGATGTCATTATCGGGAGTTACAACGGTTCCAACCTTATGTAAATCAGCTGGTGGGCTGCATAGCTTGTAAACTTTTTCTGCTTGGGGGCTGTAACAGACAGAAGA +>AB179100.1 Macaca fascicularis testis cDNA clone: QtsA-12801, similar to human tetratricopeptide repeat domain 3 (TTC3), mRNA, RefSeq: NM_003316.2 +CAGATGTAAAGTCTACACCAGTGTCAGATTCATCTTCAGCACCAGCTTCTGAAGATGTGAAACCCAAACCTGTGTCTGCAAATTCTCCTGAGCCAGCGTGTGAAGATGTGAGGGCCAAACCAGTAGCCGACAATTCTTCTAGACAAGTTTCTGAGGAAGGGAAACCCAAAGGGGCCTCTTCCAATTCTCCCACACCAGGCTCTGAGGATGCAAATTACAAGCGATTCTCCTCTAATTCCCCCAGACCGGTTCTTGAGGATGTGAAACCAACTTACTGGGCTCAATCCCATTTGTTCACAGGATACTGTACGTATCTTCCTTTCCAGAGATTTGATATCACCCAGACACCGGCAGCATACATAAACGTGTTACCAGGTTGGCCCCAGTACACCAGCATATATACACCCTTGGCCAGCCTTTCTCCTGAATATCAGCTACCAAGATCAGTACCAGTGGTGCCGTCTTTTGTAGCCAATGACAGAGCAGATAAAAATGCCGCTGCCTATTTTGAGGGTCATCATTTGAATGCTGAGAATGCTGTTGGTCACCAGATTGCCTCTGAAACACAGATCCTTGAAGACTCTTCGGGAATATCTGTAAAGTCACACTGCAGCACAGGGGATGCTCATACAGTCCTGAGTGAGTCTAACAGAAATGATGGGCACTGTGGAAATTCTAACAACAAATGTGAAGTAATTCCAGAAAGCATCAGTGCAGTAACAAACATTCCACACGTGCAGATGGTTGCCATACAGGTATCTTGGAACATAATACACCAAGAAGTCAATACTGAGCCATATAATCCTTTTGAGGAACAACAAGGGGAAATTTCACGGATTGAAAAGGAGCACCAGGTATTACAAGAGCAACTTAAAGAAGCATATGAAAATTATGAGCAGATGAAACTTAAGGGCTTAGAAGAGACCAGGGACCTGGAAGAAAAGTTGAAAAGGCACTTAGAAGAAAACAAGATCTCAAAGACGGAATTAGATTGGTTCCTTCAAGATTTGGAAAGAGAAATTAAAAAATGGCAGCAGGAAAAAAAAGAAATCCAAGAAAGACTAAAATCACTGAAGAAGAAAATTAAAAAAGTTTCAAATGCCAGTGAAATGTATACCCAGAAAAATGATGGAAAGGAAAAGGAACATGAATTACATCTGGATCAGTCCCTTGAAATCAGCAACACACTTACAAATGAGAAAATGAAAATAGAAGAGTGTATAAAGAAAGGAAAAGAGGATTATGAAGAGAGTCATCAGAGAGCTGTGGCTGCAGAGGTATCCGTACTTGAAAACTGGAAGGAGAGTGAAGTGTATAAGCTACAGATCATGGAGTCACAAGCAGAAGCCTATCTGAAGAAGCTGGAGCTGATTAGCTGTGATCCTGCAGCATATCCTGACATGGAGTCTGATATATGTTCATGGGAACTGTTTCTTTCTAATGTTACAAAAGAAATTGAGAAAGCAAAGTCTCAGTTTGAAGAACAAATTAAGGCAATTAAAAATGGTTCTCGTCTCAGTGAACTTTCTAAAGTGCAGATTTCCGAGCTTTCATTTCCTGCCTATAACACGATCTTTGCCTGGGCTGTTCCCAGCCTGGAACACCGTCCCCGCTCTGCATCCTGCCTTCCCCTGAAACCCCATCAGAGGCTGCCCTCTTTTGGCCTCCCACTGTGGCCCTTCTCTCACATGCATTAGATCTCAGCCTGGCCTTGAATGTCTCTTTCCCGCCAGTACCTTGCACAGTAAACATCCAAACTTACTGTGAATTCATCTGAAAAAAAAAAAAAAAATTAAGTATGGAAAAAGTGTGACCACCCTGAACTGAGTAAAATATTCTGTTGAGATCCAGTTTTTTTCTCTCCATTGAATGTGCAGTTTTAGTTAGAATTACACTAAAGGGCGGCCGGGCGCAGTGGCTCAAGCCTGTAATCCCAGCACTTTGGGAGGCCGAGACGGGTGGATCACGAGGTCAGGAGATCGAGACCATCCTGGCTAACACAGTGAAACCCCGTCTCTACTAAAAAATACAAAAAAACTAGCCGGGTGAGTTGGCGGGCGCCTGTAGTCCCAGCTATTCGGGGGGCTGAGGCAGGAGAATGGCGTAAACCCGGGAGGCGGAGCTTGTAGTGAACTGAGATCCGGCCACTGCACTCCAGCCCGGGTGACAGAGCGAGACTCCGTCTCAAAAAAAAAAAAAAAAAA +>XM_018370368.1 Pneumocystis carinii B80 hypothetical protein (T552_01802), mRNA +CTTATTTTGCTTAAAACTAAATACATCTGGACACTTTTCTATCTTAATGGATGATATTTTGGATATTACAGTTCAATTTTCAGGAGGGTTACAGACCCTATTTGGTAACAAAAATACTCATCATATTCAAATATTACTATCCGATCCTGCTTTAAAAGGTAACCCTCCTAACATTGCTTATTTGATACAATTTTTATCTGAAAACCTCATGAATGATGCTCGAAAAAACTTTTTCATTAAAGATGATACTGTACGTCCTGGTATTCTTGTTCTTATAAATAATGAAGATTGGGAATTAAATGATGAAAAGTATTATATACTTCAACCTAAAGATGAAATTACTTTTATCAGCACATTACATGGAGGATAATTATAAATAAATAAATAAATATCTCTTGAAAATTATTTTATTA +>XM_028690088.1 Plasmodium gonderi protein phosphatase 2C domain containing protein (PGO_140940), partial mRNA +ATGGGTAATTGTATGTCCATTATTAGTTATTCCAAATTCAAATTAAAAAAAAAAAAATTGGAGGATTCGGATGTGCATTCAAACCCAGATTACGAGAGCGCAACTGATAGCAATATCCGTGATAAAGATGAAAAAAACAGAAAAGGAAAAGACTTAAAGCATAATCCAAATTTAAACAATTCCAATTGCGATAAAAAAAGTTTTAATGTCATCCATGAACATGATACAAATTCCATATATTCAAGCAATCCTGGTAACTTTGATCAAAATGAGAAAGATGAACAAAAGCAGCCTGTTTCCAATGAGGACATTGGTTACCTACGAAGGGAAGAATCGGATCATCATATGATAATCCAGAAAAACAAAAAGAAGAACAAAAATAGTAACAATGTGATAGGAAATGACGAGATGAATCAAAACGAGGGAAACCAAAACGAGGTGAACCAAAACGAGGTGAACCCAAATGAAGTGAACCCAAATGAAGTGAACCCAAATGAAGTGAACCGAAACCAGGTAAACCAAAGCGAAGTAGACAGAACCAAGGTGACAAAAAAAACGAAAAAAGAAAAAAGCGAATCCAAATCTAATATAAATGGAAAAGTAAAACGGAGCACGTCCAAAGACAAAAATACAAAAGACATAATTCCCAATAGTACGCATAACGACAGAGATAATTCAAAATCAAACGAAACACATGATTATAAAGGAGATGTGTTTTCAAATAAGAATTCCTCATTTAATAGCGAATCAGTTAATAGCAAGGATTTGCAAAAAAGAAACAAAAGAGAGAACTTACTGAACATAAAATACAGCAATATGATATTAAATGATATAAGAGATGTAGACATTATTGTCGTTTTTTTATTTAGTCTTTTCCTTTATTTTAATGCCAATAATATAGTAGACATGTTGGATAGAAATAAAAAGGATAGATATTCTCTTAGGAATTCATTGAATATAAATCATGATATCATAAAATTCCCAACGTTTCCCAAAGAAATTATTGACAGTTTTTTGAAAAATGATTTTACTTTATTAAAAAAATATATAAAAAATAAATGTAATAAGTTGAAGAAGAAGTATAAAAGTACATATTTAAAAAAAGTCACAATAAGTAACGAAAAGGGTGAAAAAGTAGAAGCAGGAGAACAGAATCAAATCGGAAAAACAAATCAAAAGGATGAAAAAAACACAAAAAAGAAAAGTTTTAAATACGAATTAAAAGAAAAAAAAGAAAAATGCACTTTTTCAAAAATTATTGAATCTGTTGATAGAAATGAATGGATTCATAGAGACATAACCGAAATACCATGTGATCAAAATTTGCCAGATCTGAAAATTACTTTTATAGTTATGGGGGCATATTGCTTTTACCAAAAAAACATGAAACCATTTCAAGATAAAAATACTTTTTTTTACAAATCCCCATCATATGCTTGTGATGCAGAAATTTCTGTTGCATGTAAAAAAGGAAGAAAATTAGATTTCCCAAATCAGGATGATTTTACAATTATACAAACTAATGAATGGATTTTAATTATGGTATTTGATGGACATGGGCCATCTGGTCATGACATCAGTAATTTTGTACATGTAGTACTCCCTTTACTTTTTTCATACAATATTGAAAGAATATTTGAAAACCCTGTTCGAACAATGAAAACATTATTTTATATGATAAACTGCTACTTAGTTAATTATTCCTACTGTATAAATAATAATATAAATCCAATTAACATAAATTTTATTGATTATAATTTAAGTGGAACAACATGTACAATCATACTCTACAATTTTCTAACAAAAAAAATTTATTCTGCCCACACAGGGGATAGTAGAGCTGTTATGGGAAAACAAAATGAAAAAACAAACACATTTAGAGCTTATAATATTACTGAAGATCACAAACCATCTTTAAAATTAGAAAGAGAACGAATTGTTGCATTTGGTGGAGAAGTGAAAAAATTGCAAGGAGATGTTTCATACCGAGTTTTTGTTAAAAATGAAATGTACCCCGGATTAGCCATGAGTAGAGCTATAGGTGACATTACTTCGTCTTTCATTGGTGTTACTTGTGAACCTACCATAAAAATATTTGACAAATCTGATGAAGACAAGTTCATTATTGTTGCAACAGATGGTATCTGGGAATTTATAAGTAGTGAGGAATGCGTTCAGATGGTTTCTCGAAAGAGGAAGAAGAAGGTGCACGTTGCCATGGAAGAAATTATCAAGGAATCTTGGAGAAGGTGGGAACGAATTGACACCGTCGATGATATGACACTGGTTATTTTATATTTCTAA +>XM_024490585.1 Echinococcus granulosus hypothetical protein (EGR_01336), partial mRNA +ATGCATGGAGCGCTTCAGATGCTGCATCGTGAGGACGATATTTATGGCGGTTTTCCTTCAGCCGTCCTCCTCGCTCCCTCTACTCTTACAAATGGTAGAAAGCTGCCCATTATCGCAACCTCCAGTGAAGGCACACCAATCGGCTACATAATTACGCCTAATCCTACCAATGCTGATTCAAAATTTGTCGCTAATGAGACAACGGTCCAAAAGCAACAAATAGGATCTGATGATGCTTCTTCCAGCTCTACCGGTCACGTAAAATCCACCTGCAATGGTCTTCTGTACCGACTACCTGATGGAGGCTATGCAAAGGTGGAAAAGAATTACATGACAATCAACCCCAAGCTCTATCAGCAAAGCATATATCGAAAGCTCCATGTTCATGAAGAATGGAACGGACCTATCACCCAAGCAAATAATGCTCAGGAGGATAATCACGGCATTAAGAAAAAGGTTGTTGTGGCCCATGAATCGTCGCCTGTTTTGGAGGGAGGAACGGGCCACGAGGAAACTGACGTCGACACACCACAATGA +>XR_004086260.1 PREDICTED: Quercus lobata vacuolar sorting protein 3-like (LOC115966022), transcript variant X5, misc_RNA +ATTTTTGAACTTTGCTCTGTACGTAGGGTCCAAGGAAACTGATGAAAAGGCTGATGAGGTTCTAAAGTAGGATATTTTGGATTGTTGGACGCCAGAAAATCACTATGGATGGACTGAATCTAAGTGTTAAACATTTCTAAATTTAGACCATCTATAGTGATTTTCTAGAGTCCAATAATCCAAGATATCCAACTTTAGAACCTCATCAGCCTTTTCATCAGTTTCCTTAGACCCTACCTCTGAGGTCCACGAAAATGGAGGTGTATCATAAGAAGTCGGGTAGGTGTATTCAATCGATAAGTTTTGGTGGGGAAGGAGTTGGAGCTAGCGTTATTGCTGATGAGGAAGTTGGGAGTGGGAAACTTGTTGCTGTTGGAACACCCAACAAGGTTATTTGCTATCGTAAATTACCTTCTGAAGAACAAATCAAAGACGTTTTGAGAAAGAAGAACTTTAAAGAAGCCATTGCCTTGGTGGAGGAACTTGAGTGTGATGCTGAATTGTCAAAGGATATGCTCTCCTTTGTTCATGCTCAAGTGGGGTTTCTATTGCTGTTTAACCTGCATTTTGAGGAAGCAGTAAATCACTTTTTGCTGTCAGAGACAATGCAGCCTTCTGAAAGATAAAGGTACCTCCAGTGGTTGATTGAAGATCAGGACTGTGATGATACTCAATTCCATACATTATATGCTCTATCACTTGCCAAATCAGCAATTGAAGCCTTTCAAACTGAAAATACTTATCAAAACAGTGACATTGGAAGGGTAGATGAGACAGTAATTTCTGATAATAGAATGAACTCGATCTTTGAAAGTCCTCTTCGAGAAAGACTGCAGATATTTTTGTCGTCTTCAGACTTGTATGATCCAGAGGAAGTTCTTTACTTGATCGAAGGATCGGAGTTATGGTTGGAAAAGATCGTTTACTGCCTAATGATTTGCATCATTTCTTTCAAACTGTTGTTAGGCAATTCTTTACAGTAAACTGGGTCAAGAGGGATTAGTGCTCCAAATTTTGGCATTAATCAGCACTGAAGAAAATGAAGATGAAGTGACTGAAAATGAAGAAAATTCGGGTTCTGCTTCTACTTCTGCCAGTACTGAAGAAAGTATTGAACTTTCACCAGCAAGAGCAAGACCTCAAAGGGTGAACCGTGCACAAACAAGACTCATGTGTTCATTTCTCCAAGCAAGTTGAGGGTGAAGCTCATAGGGCCTCACCATCTTAGAAAGAAGGATGGATCAAACAGTAACTCTTCTAGACACAATTTGGTTTGCTGAGGAAGGTAGTGCATAAGCCATGGTTCTTGACAGCATTCTATCTTCTCCTCATCGTAGGTCACCATCATTCAGGAAGCAATTCTCGCGGGATGATTCATTAAGCTGGCCAACACTCCTTCAAAGGCACCGCTTCCTCTTAATAGCTCTAATTCTCCTAGCTTTCCTATGCACTATGTATCTTTATTTTGCTGTCACTTTAGGTGCTTCTGGATCATGTTCTGATTTAAAGGGTGCTCAGAAAGCGTCAGGTTTGGATGCAAAAGCTTCTGTGGGCAATGGAAAATTGAAATTCCTTTGACATGTAGATGATAATTATAGTTGGAAAGCATTTCCGTCCTTGGTTCTTTTCGATTCTAAGGAGATTGAATTTAACCATACTTTTAAAATTGCAATAGGTTGTTTGCTGTTTTTGAACTCAATTGTCCTGAATCTTATATATGAGAAATGTAACAAAATTTTCATTTGGAGACTATATAGCAAAAATTTGATTTGGA +>XM_033023418.1 PREDICTED: Amblyraja radiata transmembrane protein FAM155A-like (LOC116974698), mRNA +AACTCCCGTGCCGTCTCCTGTTCAGTGCATGCTCCGAATTGATGAAAAGCCGCAGTTTCAGATGTATACTGCAGTAAGGAGACTGCACCGCAGCAGGATTGTGCTCAGCAACGGGCGGCTGTAAAAGGAACTAGTCTGGCACTAAATGCGCACGGCGGCACACGATACAATACTATTACACCTTTCGCCTCTTGTCCCATTGCTTTAGGCAGCGGCCGGGGATACATCTCACGCCAGAATGTGAACTGGACGATCGCCGCGAACACCGAAGACAGGATCCAAAGTGCCACTTTTTGGTGCACGGTTCGAAACTTCGCTCGAGGATTTGTTGTTGTTGTTGTGAAAATAGCGAAGGGCAGCTGATATTTGTGCGTGGCTGTGGCTGTGCCGCCGCAGACACGGCTGGGACGCGCCTGGTGCACAAGTGGATGATGCAGCGCCGGTGTGTGGCAGCGCTGGAGATGTGAGTCTCCCCTTCTCTCCCCTCAGCTCAATGTGCCAGGATGGAGCGATCTCGGTGCTGGGATGACGCAAACCACCGTCCTCAACCGCAACCCTCACCCCCCGCCCAAAAATAATAATAAGAGGTGTTTCTGGGCGAAGATGGCCGCAACTTCCACCCAACATGATGAACGCTGCGTTGCTCCAAACGCCAGGGCCAGCGACGTTTCGTCGGCATCAGGAGAAATAGTTCAACTTTTCTCTGCTTGCATCTGGTGAATTTGTTGGCGCCGATGTTGGCAGGGTCGGATGTGTGAGGCTGGTGTGATGTGAATCTGCAGAGAGTGGGCAGGGGAGAGAGGAGCTCGCTCGCCGTCGCCAGGAGCAGGCTTTCCCCCCGGAGTGCCATGGATAAGTCTGGTGTGACTCTCCTTGCTGCTCCTACGGATTGGATGGCAACAGTTGACCACCCGTACATGCAACCCAAGTGAACGCTCAACAGAATAGCAACGCGGCTGATCTAGCAAGACAAACCCGGTCAATGTATATCGAGGCAAAGGTCCGTTCGCCGCGGAGCCAGCCCGAGCCGCACTTGTCCACAATATGACCAGAGGCGCCTGGATGTGTCGCCGGCAAGACAACGGATTACAAATCTGGTATGTCCCCCGCCAGAACGACAAACCCTGCACGGATTCAGAGCGGGCCCAGAAATGGCGACTGTCTTTAGCATCTCTGTTGTTTTTTACCGTCCTGCTATCTGATTACTTGTGGCTGTGTGCGGATGCGAATCTCACCAGAAGCAGAGACCAGGAGCGGAGCACTTCAGCCGAGCCGACGGGGGGGAACCGCTCACTGTCCCCACTGTTCCTCAGCGCTGATCAGCCTAGGAGCACCGCCAGCAGTGACAAACGTGCTATTTTTCTAGGTAATACCACTAGCAGACCCATCTGCCAACTGGAACCGTGTCGCCCATATTATGTGTGTGAGCAGTGTGTAAGTATTGAAGATGCAGAGACTGTGTGCGGGAGCGCCGGCGAGGATGCGTCCAATGGGTCTCCGCCGCTGTCCTTCAACAATTTCCACCTTTCCTTTTGTGAATCCTACACCCTTTCTGAACTGTTCGCCGGGATGTCGAGACCAGAGGGCTCCAATTGCGATCTGAGCCTTGTGCTGGACGGCGACGCCACCGTCTGCATTCAGTGCGTTGAGATTTATCAACGTTTGGACCAACATGCCCAAGAGAAATACGAGGAGTTCCAGAGCTTGTTTCAGAAGTATTTACAGTGGGGAGATTACTCTGTGAAAAGTTGCATCGATGACTGCAAGGGACAGATGGTGCAAGGTGCCAGCAAGTTCACGAATTGCACATATGAATGTGTTTGCAGAAGTTCGGAGACTGCTGACACTTTTAAGGAACGGTAG +>XM_033152434.1 PREDICTED: Lacerta agilis small nuclear RNA activating complex polypeptide 2 (SNAPC2), transcript variant X3, mRNA +AGCGACGGCTTTTCACTAACTAGGCGGCGTTGCGTTTGAGGTGAGGACTACCGGAAGATAACGAGCAGCGTTGTGTCGCCTTAGAAGCCAGGAACGGGTGGCTAGAGCGCCATGAAGCCGCCTTCCAGGCAGCGTTCAGCCCCTGCTCGCTACAGGATGGCCCCCACGAGCCAGGCTTGGACGGACCCAGAAAAGCGACGCCTTCTTCGGGCCTTGAGAGCTCACGGCCAGGGTCCGTTGCGGCCCGAGCTGTTGAAGGAGTACCTGCCTTCGAGGGATGAAGAAGAGATCATGGCATTTGTGGAGCACCTGAAAGAGCGTGTAGCAAAGGAAGCGGTCAAGGAACAATATCAGTATCGCCAGCGTAAACAGAAGGATGCTCCTATTCCAGCACCTATTGAGGTTTGGACAATTGCATCTACTGAGCCACTCACCTTGCTCCATTCCGTGCCTCCAAAGTCAGTGGTGACAAAGAATTCTCAATGTTCATCCCAAAATCTTCATAGTGAGAGTAGGAAATCCAACGAAGAATCTCATGAACCAACTGTATCATCCAGTGTAGAGGAAATAGCCCCTGCAGAAAACAGTGGGTTCCATGTGGACTTTGAAAAGATCTACAAGTACCTTTCTGTGATCTCACGTGGCTGTAAGGCACCTGAACTCCCACCAGGTGAGTCAGCTGTGGTCCTTGATTTGCTACTGTCACTGCCAGAAGAGCTGGGCTTTCTGGACTATAAGAAGCTGAAGAGTCACATGCACAAATGTTATACAGAGTTGAACACCCACTACACAGGTGAAAGAAGCAGAATGAAAGAGGGCAACCAGCCTGTAAACAATAATGGAGAGCTATTCCTGCATGTGCAGCCAGCTACTAGTGGCTTACCACAACAGGAGAGTAGTAGTTCTCCTACCACTTCCCAAGATGATGCAACTTCTGCCTCTGCCATGGACTGGAAGACTCTGGGTATCTGCCCTTTGAATTCATTCTTGATTCCTTTGGATATCCTTGCACGTAAAGAAGAAATCTTTGACTGAGGGAACTGGATTCTGTGCTGCCCAGTAATGAACTATGTGCTCTCATAACATGTGAGGGAAGACTAAACAAGCTTGCCGAGCCTACCTTAGCCATGCTCCCCCATCATAGCATGGAGTTTAAGCAGCCTGACCTGCTCTTTTACACCTTGGCTCATGAGTATGATACTTGTTTTGTATTAATACTATATGTACACTGATGTCTGGTCTTACTACTCCATGACAGCTGCTAGATCTTATTTAGCCAGTTGCTATGTAGCAGCTCATAGATGGCCTTGAGTGTTAATCTTGACCTTGGTCTACAGATCATTATGGTTAGTAAAATAAGTGATGTTAGATATCATTCCTAAGTCACAGAATAGTCAAATTATTTTGTAATAACTTATTTTTAAATATATATA +>XM_011762108.2 PREDICTED: Macaca nemestrina family with sequence similarity 192 member A (FAM192A), transcript variant X3, mRNA +GGGACTCTATTGTGGCGGTGAGGAACAGGAAGCCCTGAAGGGTCAAAAGGAATACAAAAGCAAAGGCTATTTTCTTTTTTTTTTTTCTTCTTTCATTCGTTCCTTCCTGTTTCTTTCTTTCTTCCTCTCATTTTTGTTTTTCTTTTTTAAGAGCGAGCGGCTCTGCGGTGGCGGTTTGGGGTAGGCGCCGCCGAGGTGAGGGCGTCTCGCCTCCCGCGCGCCGGTAGAATAAACAGCCATTGGACTCTTCAAAGAAATACGCTGTCTGCATCAAGTACTGCTTTTGCAGATTGGTTGTTTCATTATGGATGGAGGGGATGATGGTAACCTTGTTATCAAAAAGAGGTTTGTGTCTGAGGCAGAACTAGATGAACGGCGCAAAAGGAGGCAAGAAGAATGGGAGAAAGTTCGAAAACCTGAAGATCCAGAAGAATGTCCAGAGGAGGTTTATGACCCTCGCTCTCTGTATGAAAGACTACAGGAACAGAAGGACAGGAAGCAGCAGGAGTATGAGGAACAGTTCAAATTCAAAAACATGGTAAGAGGCTTAGATGAAGATGAGACCAACTTCCTTGATGAGGTTTCTCGACAGCAGGAACTAATAGAAAAGCAACGAAGAGAAGAAGAACTGAAAGAACTGAAGGAATACAGAAATAACCTCAAGAAGGTTGGAATTTCTCAAGAGAACAAGAAGGAAGTGGAAAAGAAACTGACTGTGAAGCCCATAGAAACCAAGAACAAGTTCTCCCAGGCAAAGCTGTTGGCAGGAGCTGTGAAGCATAAGAGCTCAGAGAGTGGCCACAGTGTGAAAAGACTGAAACCAGACCCTGAGCCAGATGACAAGAATCAAGAGCCCTCATCCTGCAAGTCTCTCGGAAACACTTCCCTGAGTGGCCCCTCCATCCACTGCCCCTCTGCTGCAGTCTGTATCGGCATCCTCCCGGGCCTGGGCGCCTACTCTGGGAGCAGCGACTCCGAGTCCAGCTCAGACAGCGAAGGCACCATCAATGCCACCGGAAAGATTGTCTCCTCCATCTTCCGAACCAACACTTTCCTCGAGGCCCCCTAGTTTCTCTGTCCTTAACAGGGAGCTCCTCCCCAAGGGTAGATTGGACCGTTCATGCTGCCTTCGGGCATTACGTCTCAAAAAAAAAACTCCTTTGCCTGCATCCTGTGCACAACATGACACTTTTAACCAATCCAATCTAAAAATGTGCCAGAATCCACCTGTGGCCCGAATTGTGTTTGGTTTCTCTTTCTACTGCAGTGCACATGAGCAAACCTATCCCGCTGCCACTTTCCTCACTGATACTGGGAGGAGGGCAAGGCCCAGCTGAAGTTCCACTAAAAATGCCCTAGGAGAATAGGCACCGGCTGGCTTGCCAAAGGGTTTGGGTTTTATTGCTTTCTGTTTTTTTCTTTTCCTGACAGCACAAAGAAGTAAGGGCAGATATAAGTAAGAAGTAAGGTGTTATTTAAACATTCTATTGTAGGTGAACGTGTTGTTTGGTTCTACTGCATTGTGGAGCATGCGGGGGAAGAGAACTGACCCAGGTGATGAAATGGAGCCCTTCCCTGGAACTAACCAGTCCTTGATGTTGTGTGACTAAGTAAAGATGATAAACCCCATCTGCTGGGGGTGTCACTTCACACTCGGCATGCATTGTGAAAGCTTTCCATACCCTTGGCCATTCTCTCTCCCCTCTTTATCCAACCCCGTTTATGCAGGAAGGGACTGCTAACAAGAAAGCTTCCATCTCAGACCTTTTCTCTGCCTGGAAAATTATTTTATGTTTGTTTTTGAAATAAAGGATTTAGTTTAAGATTCTAAA +>XM_030051840.1 PREDICTED: Myripristis murdjan protein DDI1 homolog 2-like (LOC115359395), transcript variant X2, mRNA +ACATGTCGAAAACATCCTGAAATGCGGCACTAGCACTGGTAGTTGATGTTAGTTGTTGAGATAAGAGAGGAAACTGTCCGAGCAGACCTGGACTTAGTGAGTGTAAACCAAGGCGTTGTGTTCAGGGGGGCAACACCAGTTTCCCTTTAATGAGAGTTTCACCAGAGACCGTCTTCACACCGGGTCACACTAGCTGTTTAGCTCAGCGGGAGAAGGAACTCCAGCAACGGCGCTTGTGTTGCAGCGGGCTCGTCAACTGATCCTCCCCGAAAACAGCGATGCTGGTCACCGTGTTCTGCGCGCCGAGGGACCGCCCGGAAACCACTTTCGCCCTCGACGTGTCTCCGGAGCTGGAGCTGAGAGACTTCGTAGCACTTTGTGAACTAGAATCAGGGATCCCGGCGGGAGAGATCCAGATCTCATATGTAGAGCAGCCCCTAAAAGACCCCACTCGTGCCTTGGGGAACTACGGCGTGAAGGATGGAGATGTGGTGGTTCTCAGACAAGCAGACAGAAAGCCACCACCACCAACTCAGCCAGCCTTCCCAGGACTGCCCCATATAGACTTTCGCTCCATCACAGTCCCAGGCACGTCTTCTTCGACCAGTCAGCAAGCTGCCACAAGGCAGCAGCGTCAGGCCCCACAGCAGCAGCAGCAGCAACAGCAGCAGCAGCAGCAGCACACCGCACAACCTTCTACGCCAATGGCCTTCCGTGGCTCTGGCTCCTCTCCACAGGGGCTGGATGACCCTGCCTTACTCCAGCAGATGCTGTTATCCAATCCACATGAGCTTTCACTCCTCAAGGAGCGCAACCCACCACTGGCTGAGGCCCTACTCAGCGGAGACTTAGAGCGTTTCACCAAAGTGTTGCTGGAGCAACAACAGGATCGGGCACGAAGGGAGCAAGAAAGGATCAGACTCCTGACTGCTGATCCGTTTGATTTGGAAGCCCAGGCGAAGATTGAGGAGGACATCAGGCAGCACAATGTGGAAGAAAATATGACCATTGCAATGGAGGAGGCTCCAGAAAGTTTTGGACAGGTGGTTATGCTCTACATCAACTGCAAAGTAAATGGGCACCCTGTGAAAGCTTTTGTTGACTCAGGAGCTCAGATGACAATAATGAGCCAAGCGTGCGCTGAGCGCTGTAACATCATGCGTCTAGTGGACCGACGCTGGGCAGGGATTGCAAAGGGTGTAGGCACCCAGAAGATCATTGGCAGAGTTCATTTGGCTCAGGTCCAGATCGAGGGGGACTTCCTACCTTGTTCTTTCTCCATCTTGGAGGACCAGCCGATGGACATGCTTCTTGGACTTGATATGCTGAAGAGACACCAGTGCTCTATTGACCTGAAGAGGAGTGTGCTGCTGATTGGCACCACAGGCACTGAAACTCGCTTTCTACCTGAGGCAGAGCTGCCAGAGTGTGCCCGGCTGGCATACGGGGCAGAGGGTCGTGAGGATGCCCGCCCAGATGAAATAGCTGACAGAGAACTGGCAGAAGCACTTCAGAGATCCATACAGGAAAGCGGACAGCACTGATGCATTTGGAGACAGCTGGAGAGGGCCCTACCAACCAGACACTGCAGATGGACAAACTACCTCACCAAAATCCCCACCATTCCCATTACCCATACCCTTAGACCAAATGTCTTCATCAACCTCCCCTTCCCAAAGACC +>XM_042461403.1 PREDICTED: Sceloporus undulatus damage specific DNA binding protein 2 (DDB2), transcript variant X4, mRNA +GGAGGCTGATGGTCCTGGCCACTACCCTTGGCTCCCTCCCTCCTCCTCCTCCTCCAGCCGAGAATCAGGGCCCTGGAAATAGCACTGAATTGAAAACCGTTTGAAAGGTTTTAAAACGTAATAGATAAGATGAAAAGTACAGCACCACTCCTCCTCAGTTAAAAAAAAGTTGAAGCAGATGAACCCGGATTCCTAAAGGCAGGCGTGAAACCTCGCAAGAAGACTCATCATAGCACCCTTGAGGCTCTGGGTGGTGCTGTGCAGGCATACCAGATCCAGAGCCCAGAAGACAGGAAGGAAAACGAAAGACAGAGACTTGGCCAAGAGTTTGTGTTGTGTCCTGTTAAGTGTGTAAAAAACAACGAAGACAAGCTCCACATGCTCTAGGATGATAATCTACCAGCTGAAGCCAGTCATTTTTGGTTTTCATTCCAATCGCCATTGTTCAAGATACAGTGTTTTAATATAATGCATCCTGGGAAGGATTCAAAGGACAAGAAACATCTGAGGATATCTGATAGTGCATCACAAAAAGAAGCAAAATCAAATGGAAAAAGAAAGCGAGACTGTGAAGACCTAGAAAATGAGCCACAAGCAAAAAAAATACATCTGAGGAAAGCTCCCAAATGTCTGGACAAAACCGGGCAATCTTTCAATTGCTCCATGATCCGAAACAGAGGGGTATTCGTCCATCAGCTGGAAATGCAGAAAAATATTGTCCATTACATTTATCAGAACATGCTGGGAAGCACAATCAAGACACAGCTCAGAAAGTGTCTACAGGTGCCCTTTGTACGTTCTCTCTATTCATACCGCCTCTTCCGAACAGCAAGTCCTTTCGATAGAAGAATTACATGCTTGGAATGGCATCCAACATACCCTAGCACAGTTGCTGTGGGCTCCAAAGGTGGAGACATCATTCTGTGGGACTATGAAGTGCTAAACAAAACCTGCTTCATAAAAGGAATGGGAGCTGGAGGGGCCATCACAGGAATGAAGTTTAACCCTTTTAATCCTTGTCAGCTGTACACATCATCAATTGCTGGAACTACTGCCCTGCAGGATTTTAATGGAAATACAGTCCAGGTCTTCACCAGTACCAACGACTGGGATTTCTGGTACTGCAGTGTTGATGTATCTCCAACACGTCAGTCGGTGGTGACAGGTGATAATGTGGGCAATGTCATCCTGCTTAGTACTGAGGGTAAAAAGATATGGAACCTGAAACTGCACAAAAAGAAAGTTACTCACGTGGAGTTTAATTCTCACTGTGATTGGCTCCTGGCTACAGCGTCAGTGGATCAGACAGTTAAAATCTGGGATCTAAGAAACATAAAGGACAAATCAAGCTGTCTTCATATACTTCCACATGACAAACCTGTCAATGCAGCTTATTTCAGCCCAACCGATGGTGCTAAGCTACTGACTACTGATCAGCACAGTGAAATCCGGATTTATTCATCTTCTGATTGGTCCAAACCACAGCATTTGATCTCACATCCTCATCGCCAGTTTCAGCACCTTACGCCTATCAAGGCAACATGGCATCCTCGTTATGATCTCATTGTGGCTGGTCGTTACCCAGACCCTCTTTTCCCAGGATACACAGCAGATGAACTGAGAACAATCGACATATTTGATGGAAACAGTGGGGAGATGGTGTGCCAGTTACATGATTCAAATGCATCGGGCATTATCTCGCTCAATAAGTTTAACCCTATGGGAGACACACTGGCCTCTGGAATGGGCTTTAATATTCTTATTTGGAGCCGTGAGGAGATGGTGACCAAAAAGCAGGAGCATCTCATGCAAGCTATGACAGAGGAGGGAATTGGACACAGGAGCTTATCTCGACAAGGAGGTAGAAGGCAGAGACAGTCAAACCCAGGAACAAGCAAATCTAAAGCTAAACTACTCAGTCTTGAATTAGAGAGCTCTAAAACTCAGGCCAAAGAACACAAATTGCAAGAGAAAAAGAAAAGAAAGCATCCAAAGGACTAATCAGGCAAGCTTTTCTGTAATGCTGGTTAAAAACAGCCGGTGCAGACACAGTGGGCTGAAATGGCTTCAGAGGTGGCATGCCCATTACTCTCACCCAGCTTCTCCAGATCATAAAAACTGAGTTGTCAAAACAAGGCATCCTTTATTAAAGGCAATAATGGATAAATGTTCACTTGAATTTAAGTGAGCTGAAAGAAGCACCATATTTGTGCATAGCTGCTGATTTTTAATTGCCTAGGACATTGTACAGAGCAGCGATCTGGAGTATCCTGGCAGTTAAGATTGTATTTTCAGAACATTATTATTATTAAGTTTTATTTATATAGTGCTGTAAATTTACACAGCGCTGTACATACAGTCTTTTTAATTAGACGGTTCCCTGCCCTCAGGCTTACAATCTAAAAAGACATGACACA +>XM_022360255.2 PREDICTED: Drosophila obscura nurim homolog (LOC111069978), mRNA +CCAGCGATATTTTCAATTGCGTCCGTCCAAGCAGTCAAAAAAATATTTATTTTGCAATTAATTTATAGTGTTTTTTTTTTTGTGTAAATCATGGCCAGTTTTGCCAAGGTTTTGCTGCTCCTGAGCTCGCTGGCCACTTTCGTGTATACCTTTTTCGTGGTTGGCAAGCTGGTGCTGTTCCTCTCCACACCTCGCTCGATTTCGAAGGCACACACGTGGATTTTCAATTTGCTGGACAACAAGTCCCGGCTGGAGACCGCCTATGGGCCCATTGTGTTCGACACACTCTACCTGATAGGATTCATCTTCCAGCACAGCTTCCTTAAGTCAGCGCTGGTGAAGAATTTATTGGGCAAATTGGGCTTGGCTGCAGCCGAGCGCACTATTTATAGTTTGACATCATCGCTTTGTTTACATTATCTGCTGAAGAACTGGCTGCCAGCCCAGTCGATTGTCTTGTGGCAAATTGATGTGGACGAGAGTGCTCCACTCTGGTGGACTTTTGTGGTCACACATGGCCTTGGCTGGGCCGTCATCTTTGGCGGCTGCCTTATAATGGATCTGCCCGAGCTGTTGGGCGTCAAGCAGGTCTACTATGACCTTAAAGAGTATGGGGAGCCCATTGCCTACAAGTCGAGCGAGCTGCGTCATCTGTACTCTCATGTGCGTCATCCGTCCTTTGTGGGTCTCTCCTTGATCCTGTTTGCCACGAATGTCATGAGCCTGGATCGCCTGCTGCTGGCCTCGCTGCTCACCGTCTACATGTACGTGGCCTGGTCCACTGACGATAGGGACGTGGCCTACCAGAAGCAACAACTGCAGTGCAAGAAACACGAGCTGAAGGCTCAGTAAATCGAATTCTTCTCATTTAGCTCTAGTTCCTATTTAAGCTGAACGTATAACACATTAAAGACTAACTCATCCTAACAATGGA +>XM_017911197.1 PREDICTED: Eufriesea mexicana RING finger protein nhl-1 (LOC108555529), transcript variant X6, mRNA +AGGCGGAGGAACAGAGCGGCGAAGTAGCTGGCCAGAAATAACTAATAAGACATTCACTCTAAGACGGGCGGCCAACCGGCCCGGACAAACGCGCTGTCACAGCGCCGGATATTGGTGAACGACGAGTGCGACCACTTGGGGCCCCCATAGAGAGGGCCCCCAACCGGAAGAGGCCGCCGCAAGGCGGTCGATCTATCAGGCATGGAGCAGTTCGAGCAACTGCTAACGTGCGCGATATGCCTGGACCGATACAGGAACCCGAAGCTACTGCCATGCCAGCACAGCTTCTGCATGGAACCGTGCATGGATGGCCTCGTTGACTACGTGCGTCGACAAGTGAAATGTCCAGAATGCCGCGCGGAACATCGCATCCCCTACCAGGGTGTGCAGGCCTTCCCGACCAACGTGACCCTGCAGCGATTCCTGGAATTGCACATCGAGATCACCGGGGAGCTGCCGGACCCGACCAGCGGCCAGACAATGGAACGTTGCGGCGTCTGTTCGGAAAAAAGCTACTGCTCCCTCTGCGTCCACTGTGAGAAGAAGTGCTGTCCCGAATGCAAGGACGCTCACATGGACATCCTCAGGCGCGAAATTACGCGTATCAATTCCCAGATTCGCAGGGGACTGCACAGGTTGCAGGACGCGCTGGCTTTGGTGGAGAAAAACACGTTGGGTCTGCAAACAAACTGCGCCTCGGTCGCGGAAGAGGTGGACGAGATTTATCGGAGGCTGAGCAAGGCTTTGAAAGACCGTACGGAACATCTGCGTAACGAGGTCGATCGATACCTGAGCACCGAGCTCAGAGGGTTGATTCAGCTCAAAGAGAATCTCGAATTGGAAATCGCGAATATCCAGAGCAACTGCGATTTGGCGGAGGCTCACATCAATGAAAACGTGCCATGGGACGATTCGGAACTCCTCGACACAAAAGAGCTCTTCCTGCGTACGGTGGAATTCATCAGGAACTTCGAGTACGAGGCCGGGGATTACAGTCGGCGAGTGCGTTTCGTGATGGCACACGATCCGAACCAGCTGGTCCTCCATGTAGCAGGTTACGGCGAACTGAATATTAAGCCAGAAACCGGAAGCGGAGGATTGCTCGGTAGCTCGAGCAGTCTAGCACCTCCCGGAGGATCACCGGGCCTCATGAGAAGCAAAAGCGACCATCGTCTGGCCTCGCAGTACCGGCAGCAAGAGGAAGAGCGACTGGCGAGAAATCGATACGTGCCCGAATACGAGTACGACGCGCCAGAGTACGAAGTACCGAGGAACAAATCGAGGTACAGAAGTCGATTCATGCGACATCGGGACGGAGACGATTCCGATGGCGACTCGAGGTCGACCGTTCGGTTCACGTCCACGCCGCAGGAATCCTCGGGACTTCGTGAACGTGTTCTGGACACAGAAGACGCGGCACGTGGGCCACTTTCCGGGATTTTTCGACTCACCGACTCGCCGCGTATCATGAAGAAGCTTCAAGAATACGAGAGAGCCGGGAAAAGGAAGAAGGAGGAACCGGCGATACACCCTGCTCAACAACCTCAACCACCGAAACAACCTCAGGTACAAGTGAGAAAAGTGCCGACAGCGATGGCGAGGCAGACCAGCGAGGACGACGAGATTTCTAGGATTAAAAAGCAGAACAAAACAGCGGCCACACCTGCGACCGAAACGGTGGAAGAACGACAACCGGCGCCAACACCTGCACCTGTACATCCACCTCCGAGGGAGACACCCTCCGAACGAGAACCGGAGGAACCCGCGCGGAGACCGATGCCCGCGAGGAGAACTTCGACGGATACCCACACTCCTGCGACGAGAAGCGCTTCATCAGACTCGAGCACGGGCTCCGAGAGCTCGGGAGGATCAGGAATCCGCAGCACCGGTGCACCATTCACCGCCGAGGAAATGAAGCAGAAGTACTTGTCGAGGGCACCGGCGTCGAACGCAACATCCACGACCTCGTCGCCGCACAGCGGGACGCCACCGACTGCCAAAGACACCACCGCCAACGCCACCCCCGCGTCCCGATCCTTCCAGAGCCGTTTTTTAGGCACAGGTAACCGCGCAGCCCCACCACCGCCCACGCAACCCCCAGCGGCGCGAGAAGAGACCGCCGTAAAGAAGAAGGAGGAAGAGGAGGAGGAGGACGAGGAAACGAGTAGCTCGTCGGAAGAGACGGAATCCGAGACCGAGGAGGAATCGGAAACCGATGCTCATCCAGCGGGCACGACCACGTCCACGACGCCCTCTACCCCGGCTCAGGATCGTCAGAGGAGCGAGTCCGCGATGGCGAGGACAGACATAGGGCCTCTGCTCGCTAGGAGCGCGGAGGCGAGACGCGGCAGCAAGGAAAACTCACCTACGACCAGGTATTCGTCGCCGAGAGGAAGTCCCGCGCATTCGGTGACGAGCCCGACAGCGACGACGACGACGACGACAACGAGCGGCGCCGCGACGTTGACAACGCCGGCCGGCTACACCAGCAGGTTCCTAAACAAGAGCAGGAGCCAGGCGGCGATGATGGCGAGCCGGGAACGGGAACGGGAGCGCGAAAGAGAACGAGAACGCGAACGGGAGCGAGAAAGGGAACGCGAAAGAGAAAGAGAACGGGAGAGAGAACGCGAGCGAGACATGGACACGGAGGTCGATTCGCCCCTGTCGACGAGGTCACGGTATGCCGCGTTGAAGGAAAGAAGACAACGCCTGGCCCGGTCCAGAAGCTCGCACAACTTCGGCGGCGATGACCTCGACCTAGACGAGGAGCCACCCTCTCCGACTACCCAGTCGCCGAACGCTTACTTGGCAGCCAAGTACGGAGCCGGCTCTGAACTGGCCAGAAGTCGGAGTACTCATGCTCTAAAGTCGAGAGAACCGAGTCCAGAACGAGACAGAGTAGGTACCGAGAAGGATGGCGCCGCCTTGAGTTCCTGGGCGCGGTACTTGAAGAACAAGTACGGCAATCGTACCACCAAAGACAAGGAGCCTTCGTCCTCTGCCTCGACGATTCCGTCATCGAGTGGTAGCGCAACCTCGAGGAGGTTATCCCTCGGACTACCTCTCAGGCACGGTGGTCAAACATCCTTCGAATCCTCTGACGACGACCAAAAAAACCCGTCAGGCTCCCCCACGTCCCCTACAGCAGCTCCCGTTATACCCGCGGCAGCAGGTTCCTCCACTAGTAATGGCCGGAGGAGTCACTACTTGCTGAAGCGGCGGCAGCTGTTTAAGTTCGGGATGCGGGGGAGCGAAGCCGGATGCTTTACCTGGCCGAGAGGCCTCGCGGTTGGCCCTGACAATTTCATCGTCGTGGCTGACAGCTCTAACCATCGTGTTCAAGTATTCGACTGTAATGGGAACTTCCTGAAGGAGTTCGGAACGTATGGCAGCGGTGAGGGTGAATTCGATTGCCTCGCCGGGGTGGCCGTGAACAGGATCGGACAGTACATCATCGCGGATCGTTACAACCACAGAATTCAGGTTCTCGATCCTTCCGGTCGTTTTCTGAGAGCCTTCGGCTCCCAAGGGACCGCCGACGGTCGGTTTAATTATCCTTGGGGAATCACCACGGATGCTCTTGGATTTATTTATGTGTGCGATAAAGAGAACCATCGCGTACAGGTGTTTCAATCGGACGGCACGTTCGTGGGCAAATTCGGTAGCTGCGGAAGCGGACGTGGCCAGCTGGAACATCCTCATTACATCGCGGTGAGCAACACGAACCGCGTGATCGTGAGCGACAGCAACAATCATCGTATCCAGATATTCGACGTGAACGGCCGCGTGCTGACCTTCTTCGGATCCGAGGGCTCCGACGAGGGTCAGTTCAAGTTCCCAAGGGGTGTCGCTGTGGACGATCAAGGCTACATCATCGTCGCCGACTCCGGCAACAACAGGATACAGATATTCAGCCCTGAGGGGACGTTCCTCAAGTGCTTTGGCGGATGGGGTAGCGGTGACGGTGAATTCAAGGGCCTAGAGGGTGTCGCTGTCACGTCGGGCGGTAACATCGTCGTCTGCGATCGCGAGAATCACCGTGTTCAAGTGTTCTGATTTCGTTCCGCTTCGTTTCGTTTTATTCTCTCTTATTCTCCTGTGATTCGTCGACCAAACTCAAACGCGTCGAGCGATCTCAGAGGAGGCTCGCATTTCGACGAAAATCGATGCAGTATTTCTCGCGATGCTTTCGATTCTGGTTTTCTTTTTCTGCCTAATTGGGAGGAGAAATAACTTTCGACGGAGAAGGGTTTCCACGAATCGACGATGGGCGAGACGTCGCGTTAATAACCGCTTGCTTGCGTTAGAAATTAACATGTAGCTGTTTTGTGCTGAGCTAATCTTTTCATTCGGAAGCCCTTTCATGAGAAATGTTAAATAACGTAAGATATTCTGGACGATTGGTTGGAAATTTCGTAACATATATTCTACGTATATACATAGGTTTATATATAACATAGTTACCTTCGCTGTTTATGCATCTCACCGAGACGAATCGATAATGGAACTGAAAAGATACCCTTGGACGTCGGTTAATTGCAGATTGCAGCTTAAAAAATGAAAAAAGAGAGCAAAAATATCGTTTATCTGTTCTTCTCTCTCGTCTTACCCCCTTTCTCTCATTCTACCATCTTCCCCGTACGCACGTCATACTCGCGTAACTTAATTTAATTTATACTCGAAGTGACAACAATACAGTTTGTACCGTTTGTATGCTTTAAATAAATTGTTGCGGAAGTAATAAAGGAGAAACGAAAAAGAAAAAAAAAAAAAAGAAAAGAAAAAAGATATGAAAAAAGGACGACACGCGTTTTATTCGCTTCGACGCACCCCCGAACCCGCGTT +>XM_042027756.1 PREDICTED: Corvus kubaryi hydrocephalus-inducing protein-like (LOC121664448), mRNA +ATGGTCTTCAACCTCCGTATTCCTGAGGACGGCTCGGGAGAGCTCAGTGTTTGCAGCTTCGATCAAGTGACCCTGTGTTCCAACACCGTGATGGAGTGCTACCAGTATATCCTGGTGGACGTGGAGGGTATTGGCGAGGGAGTGTTGGCACTGACCGTCATGGGCAGATGCATCGTTCCTAAGCTGACAGCGTACCCCTACATCCTGTGCTACGATGAGTGCCATCCGAAGGAGCCGTACGAGAGGAAGTTCCTCGTTGTGAATAACAGCCACATTCCTGGCTGCTACGGGCTTATTGCCCAGGTTTGGCATCACATCCGCCTCCTCCTCGCGGAGGAGATTATTAGCGGGGAAAAAAGGGTTTGGTTTGCTGGTTTCTATTCAATCTTAAAGATCTGCTGAGAACAAGATCCTACCGGAATGTAAAGTTTAGGGTGCAGTTTAACCTCCTGAGG +>XM_036088610.1 PREDICTED: Halichoerus grypus CD300 molecule like family member f (CD300LF), mRNA +TTTTTTTTTAGGTTAGGGCTGGAATGGAGGCCCTGCGCCATGCACGGGCACTGCACCATACCCCCTGGTTCCCCAACACCCTGCCTCCACCTTGTGGGAAGTGGCCAAAGGAGGAAGTTCAAGGGTGGGGAAAGCAGAAGGTTGGAAGATGCCGGAGCTAGGTCGGAGTTGACTGGCTCCATCAAGGGGGGCTTGTGTGAAGAGAGAATGAACCTGCTGCTGCTCTTCCTCCTCTTCCAGCGTGCAGGCTCATCTGCCCTCGTAGCAGTGTCCAATGCAGTGAGTGGCCCAGTGCGGGGCTCACTGACCGTGCAGTGTCGCTATGAACCTGGGTGGGAGACCTACAGTAAGTGGTGGTGTCGAGGAGCTGAGTGGAGACGCTGCCGTATCCTCGTTCGAACTGATGGATCAGAGCGGGACAAGAAGGCTGACCGAGTGTCCATCAAGGACAATCACAAATTGCGCACATTCACTGTGACCATGGAGGAGCTCAGGTGGAACAATGCAGACACTTACTGGTGTGGGATTGAGAGAACTGGACCTGACCTTGGGGTTGAAGTTAAAGTGACCATTGACCCAGCACCAGCTACAATATCAACCACCACCACCTCAACCACCATGTCCGCAGCACCAGCAGAGACCAAAGGCCCCCCGACTGTGAGCCACCACTCCAATGGCAGCGCTAACTCCATGAAGCTCAGCATCCTGATTCCCCTCATCTTGGCTGTGTTGCTGCTTCTCCTGGTGACGGCCTCACTCTTGGCCTTGAGAAAGATGAAGCAGCAGAAGAGAGCTGCTGGGATATCCCCAGAGCAGGTGGTCCAGCCCCCAGAGGGGGACCTCTGCTATGCAAACCTGGCTCTGGAGCCAACCAGCACCTCCCACAACTCCTCCCAGAAGAAGGCCTGTACAAAGTCCTCCTCCTCTGCCCTGGATAATCAGCAGGAAGTGGAATATGTCACCATGGCCGCCCTTCCGAAGGAGGACATTTCCTACGTGGCTCTGTCTTGGGAGCCTTTGAATGAGGAGTCAACCTATTACAACATGAACTACCATGTTGCCCACGTTCCCAGCAGGAGCCACGAGGAATCCATGGAATACAGCAGCATTAGGAGATCTTAGCCTGAGCTCCAGGCTCCCCTCTTGAACCCCACATGAGGCCTGTGAGCATGTTCCTGCCCTGTCTGCTTTCTGCCCCCATTCACTTCACGAGGACCAACCAGGGACTGAAGCCTCGGCCTTGTCTCAGGGGGCTTTCGGGAGGTAGATAGGGGTCTCTCTACATCTCTTTTTCTCCCATACAGCTTAAGAGGGGTTGGGGATATGCTCTGGAGTTGCTGAGGGAGTAATAATGATAATGATAATAATAATAATTAACCTTTATTTATTGCTTAACATGTGTGGTGGGCTGAATAATGGCCCCCAAAGTTCTCTGTGTCCCAATCCCCAGAACCTGTGAATATGGCAAAAGGAGCCACGTGGATGTATGAAGTTGAGGGTTTTGAGATGAGGAGAGTATTCTGGATTCTCCATGTGGGCCCTAAATATAATCACAAGGGTCCTTGTAAGAAGGAGGCAAGAAGGTCATAAGAGGAGAAGGCAGCCGATGACAGAGGCAGAGGTTGGAGTGATGTGGCCAGAAAAGGCAAGCAATGGATTGTCCCCTGGAGCCTCTAGAAGGAACCAGCCCTGCCAACACCCTGACTTTAGTCCAGTGAAACAGATTTTGTCCTTCTGGCCTCCAGAATTATAGGAGAATAAATTGATGTTGTGTTAATGAATTCA +>XM_028783841.1 PREDICTED: Grammomys surdaster transmembrane serine protease 13 (Tmprss13), transcript variant X3, mRNA +ATGGACAGAGGCAGCCACCGGAATGCTTCTCCAGCAAGGACACCTCCAGCAAGGACATCTCCAGCAAGGACATCTCCAGCAAGGACACCTCCTCAGGCTTCTCCAGCAAGGACACCTCCTCAGGCTTCTCCAGCAAGGACACCTTCTCAGGCTTCTCCAGCAAGGACACCTCCTCAGACACCTCCTCAGGCTTCTCCAGCCCAAGCGTCTCCAGTCCGGGCATCTGCAACCAGGGCACCACCTTCCAGGTCACTGTCAGGCAGGTCTTCATCTGCCAGGTCAGCCTCCACGACATCCTCCCCAACGAGAGTGTACCTTGTTAGAGCAACACCAGTGGCGGCTGTCCCCATCCGGGCATCTCCTGCCAGGTCAGCACCAGCCACCAGGGCCACCAGGGCCACCAGGGAGAGCCCAGGTCTCAGTTTCCCCAAGTTCTCCTGGCAGGAGACCCAGAGACAGCTGCCACTCATCGGGTGTGTCCTCCTTCTCATCAGCCTGGTGATCTCACTCATCCTTCTCTTCTACTTCTGGCGAGGCCACACCGGGATCAAGTACAAAGAGCCATTGGAGAGTTGCCCTAACCACGCGGTTCGCTGTGACGGAGTGGTAGATTGCAAAATGAAGAGTGATGAGCTGGGCTGTGTCAGGTTCGACTGGGACAAATCCCTCCTGAAAGTCTACTCTGGGTCTTCTGGTGAGTGGCTTCCTGTCTGCAGCAGCAGCTGGAACGACACGGACTCCAAGAGGACCTGCCAGCAGCTGGGCTTTGACAGTGCTTACCGAACGACTGAGGTGGCCCACAGGGACGTCACCAGCAGCTTCTTACTCGCTGAATACAACTCCACCATCCAGGAAAGCCTCTACAGGTCGGAATGTCCTTCCCAGCGGTATGTCTCCCTCCAGTGTTCCCACTGTGGTCTGAGAGCTATGACCGGGCGGATCGTGGGAGGGGCTCTGACCTCAGAGAGCAAGTGGCCCTGGCAAGTTAGCCTACACTTCGGCACCACCCACATCTGCGGGGGCACACTCATCGATGCCCAGTGGGTGCTCACCGCTGCCCACTGTTTCTTTGTGACCCGGGAGAAGATTCTGGAGGGGTGGAAGGTATACGCAGGCACCAGCAACTTGCACCAGCTGCCTGAGGCTGCCTCAATCTCCCAGATCATCATTAACAGCAACTACACGGATGAACAGGATGACTATGACATCGCTCTCATAAGGCTGTCCAAGCCCTTGACCCTGTCAGCTCACATCCACCCTGCCTGCCTCCCTATGCATGGTCAGACCTTCAGCCTCAATGAGACCTGCTGGATCACGGGCTTCGGCAAAACCAAAGAAACAGATGAGAAGACATCTCCCTTCCTCCGAGAGGTTCAGGTCAACCTCATTGACTTCAAGAAATGCAATGACTACTCAGTCTATGACAGTTACCTTACCCCAAGGATGATGTGTGCAGGGGATCTTCGAGGAGGGAGGGACTCCTGCCAGGGAGACAGTGGAGGACCTCTCGTCTGTGAGCAGAACAATCGCTGGTACCTGGCAGGTGTCACCAGCTGGGGCACAGGCTGTGGCCAGAAAAACAAGCCTGGTGTGTACACCAAAGTGACAGAAGTACTTCCCTGGATTTATAGAAAGATGGAGAGTGAGGTACGCTTCCGGAAATCTTAACCATGCCCTTCTCACTTTGGTGATTGCTATGAAGATTCTGGCTAAAGGGACAGGCC +>AY335457.1 Uncultured Sphingomonadaceae bacterium clone B101/6 16S ribosomal RNA gene, partial sequence +CGTAACGCGTGGGAATCTGCCTTTAGGTTCGGAATAACTCCTCGAAAGGGGTGCTAATACCGGATGATGTCTTCGGACCAAAGATTTATCGCCTTTAGATGGGCCCGCGTTGGATTAGCTTGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCATAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGCCTTAGGGTTGTAA +>XR_002992789.1 PREDICTED: Selaginella moellendorffii uncharacterized LOC112347534 (LOC112347534), ncRNA +GTGGCTCATAGGACGATGATTTGGAGTTGGATACAAAGTGACAATCAATGTGTTGGTGGTGGAATGGCTGTTGCTGTTCTTGCAGCTCCACTGTGCTCTGTCGTCTCTCGGAGACACTGCTGCCCTTTCTACTGCTCTGAGAGCCAGCACAGACGAACAAGGACTTCATTCTCCCCGCCCAGCCTGTAAAAGCTAAAGTTTGATCACAAAAACCATGCCACGAGTTTAATCAAAGACGAGTACATTGTGTTGGAGTGCTTCGCTCAAAGAAGATCTACTCGCGGTGTAAGCATAGAAGTGAAAGTACTTTGCGGACAAACTTAAACATCCTTTCAATCCATAGCTTTGCTTCTCAGGTGGAAGAAGTATAGAAGCTATTGGAGATCAAAAGTTCTTTACGGACACACTTAAAAAATTCTAACGAGAAGCTCCTCTCTTTGATTTGTGCTCTA +>FJ727014.1 Uncultured bacterium clone A72h_1235 16S ribosomal RNA gene, partial sequence +TTTGATGGCGACCGGCGCACGGGTGAGTAACACGTATCCAACCTGCCGATGACTCGGGGATAGCCTTTCGAAAGAAAGATTAATACCCGATGGCATAATAGAACCGCATGGTTTGATTATTAAAGAATTTCGGTTATCGATGGGGATGCGTTCCATTAGGCAGTTGGTGGGGTAACGGCCCACCAAACCTTCGATGGATAGGGGTTCTGAGAGGAAGGTCCCCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCATG +>KY281550.1 Uncultured bacterium clone CP_Otu6690 16S ribosomal RNA gene, partial sequence +TACGGAGGATGCAAGCGTTATCCGGATTCATTGGGTTTAAAGGGTGCGTAGGCGGAATGGTAAGTCAGGGGTGAAAGTTTGCGGCTCAACCGTAAAATTGCCTTTGATACTGTCATTCTTGAGTACATACGAGGTAGGCGGAATGTGGCGTGTAGCGGTGAAATGCTTAGATATGCCACAGAACACCGATTGCGAAGGCAGCTTACTAGACTGTAACTGACGCTGATGCACGAAAGCGTGGGGATCGAACAGG +>XM_017287255.2 PREDICTED: Drosophila miranda peripheral plasma membrane protein CASK (LOC108156021), transcript variant X3, mRNA +GTTAAGTCCGCGGTCACACTGGGTTCGTGTTTTTAGCAAAATTAGTGAGAAATAACAAATTAATTAAAGAATTAAGCGTTTCTATGTGTTGACGTCAACCCAGGCGCGATCTATGAATGCCGCTGCTGTGTAAAGTACTCCGTCGCTGAGGGGCAGGGCACACAAAATTTCGGTGCGAGGCTGCGAACAGGGCCACGAAATGTATCTTTAACATCAGCACCAACCAGCGAGGAAACGAAAAACAACAACAACTACCATAAGAAGAACAACCCACAAAGAGCCAAATTTTTAGTTAGTTTTTTTGTGTTTGCTTTTGGAGGGCAGTAGGCGAACAGGGCCAAAAAACATTGGACACGGAGTAACACGTACATCTAGGACCCAAAACCAAACCCGGAGCAGCCAGGGACAGGGGACAGGGGACAGGGGACCGTCCCACTCATCAATATTCGAAAAAGCAATTGAGACGCGAACCATCAGCAGGCATCAGCATCAATTCATCAATTATTCAAAATGACCGAAGACGAAATTCTCTTTGACGATGTCTACGAGCTGTGCGAGGTCATTGGCAAAGGACCCTTCTCCATTGTGCGACGATGTATACATAGGGAGTCCAGCCAGCAGTTTGCTGTTAAAATCGTTGATGTGGCCAAGTTCACAGCGAGTCCAGGACTGAGCACAGCGGATCTGAAGCGCGAGGCCACAATATGTCATATGCTGAAGCATCCACACATTGTCGAGCTGCTGGAGACCTACAGCTCCGAGGGCATGCTCTACATGGTGTTCGAGTTCATGGAAGGCTCCGACCTGTGCTTCGAGGTTGTGCGTCGCGCCGTTGCCGGTTTTGTCTACAGTGAGGCGGTGGCTTGCCATTACATGCGGCAGATACTGGAGGCGCTACGATATTGCCATGAGAACGATATACTGCACAGGGACGTGCGTCCCGCCTGTGCCCTGCTCGCCACCGTGGACAACTCGGCGCCAGTGAAGCTTGGTGGCTTCGGTTCGGCCATCCAGCTGCCGGGCACGAGGGAAACCATAGAAACACACGGACGCGTGGGCTGTCCGCACTATATGGCGCCGGAGGTTGTCACCAGGCGGCTGTACGGCAAGGGCTGCGATGTCTGGGGCGCTGGTGTAATGCTGCATGTCCTACTATCCGGCAGATTGCCCTTTCTGGGCTCCGGGGTGCGACTGCAGCAGTCGATAGCGCGTGGCAGGCTCTCGTTTGAGGCGCCTGAATGGAAATCAATTTCGGCTAATGCTAAGGATCTAGTCATGAAAATGCTGGCGGCCAATCCACATCACAGACTTTCCATCACCGAGGTGCTCGACCATCCGTGGATACGAGATCGGGACAAGCTACAGCGAACACATCTCGCAGAAACGGTGGAGGAATTGAAGCGCTACAATGCTCGGCGCAAGCTCAAGGGTGCCGTTCAGGCCATTGCCGGCGGCACCACCATGGATCCCGTTTATGTCACCGATGCGGACATGCCCATTGCTGGTGCACCCGACGAATGGGCCGACGAGGAGGCGGGCATCGAAGCGGTCCAGCGTATTCTGGACTGCCTGGACGATATCTATTCGCTGCAGGACGCGCATGTGGACGCGGATGTGATGCGGGATATGCTGCGGGACAGTCGCCTGCATCAGTTGCTGCAGCTCTTTGATCGCATCACCTCGACGGTTGTCACCAGCAACGGCCGGGCGCCGGCCGCAGAGGCGGTCACCCGCAGTCGGGATGTCCTGGAGTCGCTCTCGTCGACGGCCGGCAGTTCGGTGGCCAATAAGTATGCCAAGGATGAACTAATGCTGCTGCTGGCCGCCCCACACATGCAGGCCCTGCTCCATAGCCACGATGTGGTGGCCCGCGATGTGTACGGCGAGGAGGCGCTGCGCGTTACCCCGCCACCGATGGTGCCCTACCTCAATGGCGACGAGATGGACAATGTGGAGGGCGGCGAGCTGCAGCATGTGACCCGAGTGCGGCTGGTGCAGTTCCAAAAGAACACGGACGAGCCGATGGGCATAACGCTGAAGATGACCGAGGATGGGCGCTGCATTGTGGCAAGGATTATGCACGGGGGTATGATACATCGACAGGCAACGCTGCATGTGGGCGACGAGATACGGGAGATCAATGGCCAGCCGGTGCAGCATCAGTCGGTGGGCCAATTGCAACGAATGCTGCGCGAGGCACGCGGTTCTGTTACCTTCAAGATAGTTCCTTCGTACCGTAGCGCTCCGCCACCCTGCGAGCTTTTCAGGATCAGACCCGCTCCGGTGCTTATTTTCGTGCGCGCACAATTTGATTATAATCCGCTGGATGATGAGCTTATACCCTGCGCCCAGGCGGGCATATCATTCCAAGTGGGCGACATACTTCAGATCATTAGCAAGGACGATCATCACTGGTGGCAGGCGAGACTGGACACGGTTGGCGGCTCGGCGGGCTTGATACCATCGCCGGAGCTGCAGGAGTGGCGCATTGCCTGCCAGACGGTCGACAAGACCAAGCAGGAGCAGGGAGAACCGGGTGCTGGATGTTCCGCTCACGCAGATGGGTGTGATGGATCAGCAGTAAACTGTTCGATATTCGGGCGCAAGAAGAAGCAGTGTCGCGACAAGTACTTGGCCAAGCATAATGCCATATTCGATAATCTAGATGTGGTCACATACGAGGAGGTTGTCAAGGTGCCAGTTGGTGATCCGAACTTTCAGCGCAAAACGTTGGTGCTACTGGGAGCCCATGGCGTGGGCAGGCGGCATATTAAGAACACCTTGATATCCAAGTATCCCGATAAGTACGCCTATCCCATACCACATACAACGAGACCTGCCAAGCCCGAGGAGGAGAGTGGACGCAGCTATTACTTTGTCTCGCACGACGAAATGATGGCGGATATCGCCGCCAATGAGTACTTGGAATATGGTACGCACGAGGATGCGATGTATGGCACCAAGCTGGACACTATCCGACGCATACACACAGACGGCAAGATGGCCATATTGGATGTGGAGCCGCAGGCACTGAAGATACTACGCACAGCCGAATTCACGCCCTATGTGGTCTTCATAGCGGCCCCCTCGCTGCAGAATATCGCCGATTACGATGGCAGCCTGGAGCGTCTGGCAAAGGAATCGGAAATGCTGCGTCAAATGTATGGCCATTTCTTTGATATGACGATTGTGAACAACGACATTAGCGATACGATTTCCGCGCTGGAAACGGCCATCGACCGGGTGCACACCACTCCCCAATGGGTGCCAGTCTCGTGGCTCTACTGACAAGACAGTGAACTGGAATGCCCCGATTGCCTCGAGGGTTGCGATTGCGAGTGGGATGCATATACACAGGCCTCCAATGTGGCGCTCTACTGAGTGCAATACCACAGTTACATCACACCTACTATACACCACAAACACCATTTAAGTATTACCAAGGCACAAAAATATACAACACAGCAACAGCAATAGTAGCAAAAGCAAAAGCAAAAGCAACCGAAACAGAAACAGAAAGACATGAAGACAGAATGCGCTTGGCGCCGAGATATATGTAGGTATGAGGATACAGGAGAGGGTATTGTGGGTAACTGCGGTCGCAACGTAAACACAAAATGTTAATTGTAAAACGAGCTGTATTTTGCCTTATACTTTGTTAAATCCTAAGTGATTAATTTTACATTGTATTTGCCATTCCAATGGGCTGCCCTCAAACAGGCAGCCTGTGTCATTATGTTTATTGTATTTATGATTGTTTGTTCTGTTAAAGTTTTTGTTTGTACCCGTTCTCGTACTCGTACTAGTATTTATTTTGTTTCTTTCTGTCAGACAGCATTAAACGCTTATGTTAATCTTGCACTTGTTAGTGTCTAAGTTAACTAAAACACAAACCGAAATCGAAACAGAAACAGAAACCGCAACTAAAAAACACTCTAAATTGTTTTAATCAAAGATTATTTCCATAAACACATACGAAAAAAAAAAAAATAAAAAACACACCCAAAAAAATGAAGAAATAGAAATCCGAAGAATGTTTGAAGAAAACGAGTTAGTAAATTATAGCAACAAAAAACTACGTAATTAGTTATAATTAAACATAACAGCAAACCAGAATAAAAACCAACAAGAAGAGAAGTTCAGGAAAACGTTAAAAACAATATGAGATGAGAGCAATTTCAAGTGTTTCAAGCCCAAAAAAAAGTATAAAAAAGCAAATTAATTACATATGGAAGAGCAAATGGGGACAAGCGATCGTAAAGTGTACGTTTTAAATGCAATAAACATTAACAAAAGGACCCGTATAACATCACTTACACACGAAACAAACAAACAAAAAAATACACTAAAATATTACCAAGAAAGAAAACAAAAAAAAACCAAATTGTTGACGTTTAAATAAATTCAATGGGAAATGATTAATAATGCAATCATAAACGAGTTAATAATAATAAGAAGCAGGCGCGTTTAAATCAAGCAAAAGCAATTAAAGGACAAAACATTAAACCAACAAAAAAAACATAGAGTGAGCACAAAAACAACAAAAAGAAAACACATACTAACAGCAATTACAGCAAAGAAGTAAATCAAATAAGAATTAAACTATTTAGAGGCCAATGAGAACTGGTGGAAGAGTGCGCAAGGGGCACAACAGGACACGTATAAATATAGAAAGACACGCAGGAAAAAGAGAATGAATGAATGAAAGAAATGATTAGTACAGAAAATATGTGGTGTATGCAGAACATACAGACATATATAGGTATATTTTTCGAACAACTCAAAACTCAGGTTGGATACATTGAAAATCAGTCAAGTTCAATAAGATAAATATAGCGGAGCGCTTCCTTTTAACCCACAGCCAAAAAAAAAGCAAAACGAAAACCTTAACAAAACCCAATCGAAGTTTACAATGGATTAAACAGAATCGAATCGAAATGAATTGCAGTTTACCCACAAGCCACAAGTTACCACCCTAGCAGCAGCAGCTTCTGCAGAAATCTTTTCTAAATGCTTTACAAGTACAAAACATGTCTTTAGCAATCAGATTTTTAGCCCCAAAAAACCCCAGGCTCGCGCTCATTAGCTTTCTCCTCTTGCTCTCACCGAAGCTTATCCTGCTCCCGTTTGATTGGCAAAATCTTATCCAGGCTTGGGCTTGATTGCGCTTCTCCAGAGCAGGACCTAAGCTGAATCTAGACCTAACACTAAGGAGTGCACATGCAATCACAACAAAGAAACAAAAACTGGTTAGAATTGGAAAATGTGGTTGAACAAGCAAAAACCACTTACGATTAATATTAGACTAAAAAAAAACATTTGACATTTGACTTTGTAATTCCTACCACCTACAACCCTCCAGCCCCACAAGCACCTCACTCCTCACTCCATTTAAGCCAGAGCTTAGTTCAAGCCTAACCACAGAACCCACATCGATTTCCACACACACACACACAAATGAACTACCAGAACAATTCTATGGTTTCAAAACGGTTGAACAATTTTTGCATAGAGAATTATTGTTGAACGCTGGGCTATGACTTTTTGGTTCGGAGCGTATGACAGAACAGACAGGCAGCAGGCAATGCAAATCATAGAAGTATCCCAATGAAAAACCTACCCGAAACTGAAGAACTAAACTACCTACCCACAACCAGATACAAAATAAAAGAAAAAACCGCAAAAAAAACAAGCAGCCGAGTGGCCAAATTAACTAAGTATTTTACCCTAAAAAAAAGAAAAAGTCAAAGAACAACCGGAAGTGGAAGTGTATGTATATGTTGCAGCTATCCCCCTCCCCCCCAACCTAGGCAGGGTGTGCCAGATAAAAAAAAGTCTAAGGAAAATTGCTCAAATCAAAAATCAAGTATTTTATGGTATAAAAACCGTGAGGAATGATCAGGATTAGAATGAAGGGGAAGTCGCGTGTAAGAGTTGGACATTCCAAGAATGAGCTAGAATTTCGAAGGGATTCGTTTCTTATTTTTAACTGATCCTTTTTTCTTAGCTGATGCGAGCAAATTGTAGCTGTACACTAAGAATAATTTCACACTAAGATTAAGCGAAAATTTATTGTTGATATTACATAAAAAAAAGAAAAGAAATGGAAAACGGATATTGGAAAAAAACCAGAAGACTCATTGAAGCAAGCCAAATGGATTAGAATTTTTCTCTAATTTGATAAGTGGTAGACGATGATGAAGGAGCTAAGGATAATGAAGATGGTGACGAGTTGATAATGCTTATGATCTCCAAAAGTCAATATGTGTAGGATTGACACGATTTGAGCAAATTGAGTGAATTGTTATTAAAATAATAAATGAAATGAGTGGCTCAATGGATCGATATCGATCCATTGATGCTGAAATAGGTCAAGACGTTAGAAAATATCATTTAAAGTAAATGATACAAATGTCATAATATATACATAGTTTAAAATGAAAATAATAATAACAAAATCAGAAGAAAAATGGGAAAAAATGGGAATAATGCGAATTAAAAACAGAAACAGAAAAAAAGAAAAACAAAAACAACCAGTAAACACTGAAATACCGAATTTTAAATACATAAGTTTTGAATCATGCATGCCGCAAAGACAAAGAAAACCCAACACAGAAAAAGAAATTAATAAAAAGAA +>XM_006681305.1 Batrachochytrium dendrobatidis JAM81 uncharacterized protein (BATDEDRAFT_27075), partial mRNA +ATGCAAGTTTGCAACACTCGCTTGACTCGTTTGGCTCGGATTCTGGTTGATATTTACGATATCGATGCAAAGTTACATTCCAGAATGAACGTGCATAATCTGATGTGGTCAATCGTTTGGTTTCATTGTTATCGGTCATTGACACCAGTGATTGCATTGATTGCAAATAGTAGTCCAAGACTGACAAGTGTGTCTGAATTGATGACAGATGATACAGTCTATCCAACAAAAAGTAATACATTGATCGTGTCTGTGTGGCCAAGTGTAGATAGGTCAATAGGAGTAAAAGTATTTCCCACTGGGGTTGTAAAAGAGCCGCCAACAGATGCAAGTACCAAAAAAAGTGCCTTGAGTTGGGGCAACAACAGACTTGACTCTTACGACACTGACCAACTCTCACTCTCGTTGACTGATGGTGGAAAAGCTTTGCAACCATACGGCCCAGTTCCAGCATCAGTTAAAGAGAGTAAGATTTGGTCAGTGTCGTAA +>XR_006867874.1 PREDICTED: Ischnura elegans uncharacterized LOC124171616 (LOC124171616), ncRNA +TCCCTAAATCCGCCAATGGTTATTAATCTCCTTTATATTGCCTCAAAATAACTACGAAGTTGAGTCGTTGCAACCCGCCATTTTAATTGCATCATAGGTAAATGGCCGGTTATGTAGTAGCATAGGCGGAACATCAAACGGGTGCCGGTTTTTCCTTTTTGTAATTGATTAATTTGGGATATGTGCGGTTTTTCTGCAACTAACTGTTCTAATAACTGCAGGAATGAGTTCCGTGTTTTTTCCGTAACCTTAAGAAAAAGGCGACATGACTACAAATGTGCCGGAGGAATCATTGGCAACGAACACCATATTCCACAATTTGTGAGATTCATGCCTGTTGCATCATGCTTTGCTGAATTGATGGCCAAATAATGGAACGACTCCTATGACGTCAAGAGACAATTTTTTCATTGCATGTCCAAATAACCTAAGCAGCAGAAGCATCCAGTAATCTTGTACTGCTCTGGTATTTTGGTGTCACCATCTATTTTGCTTGAGGAGAGAATTTATCTGGAGCAGTGTAATTCGGATTATCTACTGATGAGCTTCTCATGAGTGTTTGACGTTCTACACAGCTAGTTATGAGAAAGTCACACCTGTTAGTGTCTACTGTGATTGTTATTTTTATAGAAGAGTAATTTTTTACTTGATTACCTCTGAAATTTCCCATTATTAAATGTAGTAATTCAAAGTTATGGTTACAATGTTGTGTCCTTTCCATCAAATTTTAT +>XM_008649455.4 PREDICTED: Zea mays evolutionarily conserved C-terminal region 5 (LOC100502368), transcript variant X2, mRNA +AGAAATCCCATCGTACGCGACTTCGTATTGGTAAAAGCCTTTGAGTTTGATACCCATGACATCTCTAATCGCTCTCATCAAATCACGATTCACATAAAAAAGGTGTGGGAGCCCGATCCGATCGCCAGATCCGCCGGCCTGTGCGCCGACTCGGGCGTCCTTCCACAGATCCTCTTCCTTCTATCGTAGGCTCGCCCTCGCCGCTCGCTGGAGCGGAGGTCTCTCCCTGCAGCCCATACTCCTTGATTCATTCTATTGCCTCGCCGCCGGCTCTATGGATAAGCAGGAGCCAGTAGCCAATGGTGAACAAACGATAGGTCTTGCTGAGAAGCCGAAGGAGCTGCCTGTTGCCAGTAAGGATGAGAAAGCAACTGTGCCCCCGATTTTAGTTGATTCAAATGCTTTCAATCTACCAAGTGAAGGCCAAACCCAAGCTGGCACATCTAACATGGATGGGGGCCATAATGGTGCACACAACTTTTATGCTTCTCAGGCACAACCATTCTATTACCAAGGCTCCGGTTCTGAAAACCCTACACAAGCATGGGATACATATCCTCCCTACATGAGTGTTGAAGGATTGGAAGTGGGTCCACCAGTTGTATACAATGAGGACCCCTCATTGATGTTCCATGGTGGCTATGGTTACGACCCATATTATTCTCCTATTGCAACACCTGTACCAAATGCTGTTAGTGGAGGTGGTCAGCTCTACTCCCCTCAGCAGTTCTTCTCGGCTCCTTACTACCAGCAGTCAGTACCACCTGACATGCAATATTTAAGCTCTCCTACTCCAATATCACAGGGTGATACAATAATGCCGATTGACCCAACACAAGGAGCTTTTATCGCTGATACCCTGAGTCCAAACAGCTTCCTGTTTGGCCCAAGACCTGAATGGTTCAGATCTTCAGAAGGAACTGGGTCATTTCCATCACCTGCAGCTTCACCTCAACCTTCTAGGGGTGTTCCAGGGTCCTATGACCAAAACAACTTTCCAATGGCTTCAAGAATGTCATCACCTCACCAGAAGCCCTTCTATGGTTTGAGATCCACAACTGACTCCTATGGAAGGGGTTTTTCTCATGGTGGAATGTTCCCACAGGCCAGTAATTATGGGGGATCCGTCACCAGCTTTGGCCTTAATGGTAGAAGTTTGATCTCAACCGAGAAAGGGCGCAGGAGGGGAAGGGGCAATGCACTTATTTGCAGCTGCAATGGTCCTCTTGACTTTCTTAATGAGCAAAGTCGGGGTCCACGTGCAACTAAGCCTAAGAAGCAACCAGAGGTTGACAGTAAGGATGAGGTGCCTACTACAGGAGTTGGTCGTGAGTTATACAACAAGCCTGACTTTGTTATGGAGTACACGAATGCGAGGTTTTTCATCATAAAATCGTACAGCGAAGATAATGTGCACAAGAGTGTCAAATATGGTGTTTGGGCTAGCACCACAAATGGAAACAAGAAACTGGACTCAGCCTATCGCGAAGCTAAGGAGAAAGGAGAGCACTGTCCCATTTTCCTGTTATTTTCGGTGAATGCCAGTGCACAATTCTGTGGTGTTGCTGAGATGATTGGACCAGTGGACTTTGAGAAAAGTGTGGATTACTGGCAGCAAGATAAGTGGACTGGTCAATTCCCTGTGAAGTGGCACATAGTGAAGGATGTTCCCAATAATCTTTTCCGACATATAATTCTTGAAAACAACGACAATAAACCTGTAACAAACAGCAGAGATACACAGGAGGTGAAACTAGAGCAAGGAATGGAGATGCTGAAGATCTTTAAGAACCATGATGATGATGCATCAATCCTTGACGACTTTGAGTTTTACGAGGAGCGTGAGAAAGCGCTGCAGGAAAATAAGGCACGCCTGCATCAGCAACATCTACCCAGTTCTATTGTTATTGAGCCCAAGAAACCCTTGACTGCACCCAGTGACCTCGTGGGCCATATCACCAAGAGTTTTGCTGAGGCTGTGCGGCTTGGTGAGGCCAAGACTGTAAGCCATTTGACTGAGAAGGTTTCTGGGGGTGATCCGTCTATTCCTGTGAAGCATGTTGAAGTTAAGCAGAGTGGTTTATCTTAGGAACTCTTGATCGATGTGAATGAACTGTACCAAAAATTCACCCATACGCTTCCTGATCAAAATGTCGGGAATGCATATGCAGATGGATGATGATGAAACCCAAGACATCGGCAAAAGCATGCATGCACACTAGGGTAGGTCTTTGCCAACCTTGGAAGCATAGTTTCTTGAATAGTTTCTCTCTTTTTTTCTTCTTTCTTCCTAGTATTTTCTCCCCTTCTCTTCGCATCATATGATGATTCCTTAGTGTCTAGCCTCAAGGAGAGTTGCTGTTTTTGTGTAAGCCTCTGTAAGTTTCCTGTTCCATCACATATGAGTAAGGCCTTTTTGTTTCTTTTTATTTAAGTAAAAGATCCATCTTTTATGTACTGTCGTGGCAGTTTTATTATACTATGTCTGAACAAGGCCTATTCACTATGTAAGCAAAACATAAACGCTATCCAGGTGACCTGGTTGTGATGACTACAGTAATAAGTAACTGAATAATTTTTTATGTT +>XM_312219.5 Anopheles gambiae str. PEST AGAP002709-RA (AgaP_AGAP002709), partial mRNA +ATGGATTATAATTATGATACCGACGAAGCGTGGTACGCGGCCAGCCTGGGCGCCGGGCCCTGTACCGACGTGTCAACGCTGAGCGTGGCGCCGCTCTGCTCTAGTCTGAATCGGTACGGCACGCTGCCGAGCACGGTGCCGATGCCGACGCTGTACGCTTCCGAGGGCCAGCGCAAGCCGAAGCTTTCCATCATCGAGCTCGTGCTGTACAACATGGCCTCGATGCTGGCCAGCATTGCTTCCGGGTACGATGTGCGTGTGTCGAACGTAACGCCGCTCCATCCGCGGCTACACCCGGGACCGTTGCAATCGTACGAATCGTACTCCCAGCCCGTGAGTCCGTACCACCACCATCGGCACCAGCTGCCGCCAATGGTAGACCCACATGCGCTGCAGCTCGAAGGTATGGTACGGTTGGACGGGATGCCGCCATCTTTAACAACCGCGCCACACACGGTGGACAACGCTCTGAGCCAGGAGGCGTACGAGGAGGAGCTGGCTCACCAAGCTCAGGATGATAGACTTTACGCACAACACAGCACACCGTACCAGGAGACGCCGGAGAGACAGCGGCCGAGGAAGGTGCATACTCAATCGACCAGCCCAAGACAAGACGAGCGGGCGCTGAAGTACACGGACTCACCGCAACACTATCTACCATCGACGATGTCGACGACGAGCGGGCTCGGCTCGAACTACACGCCCTCGGGACCCAGCTCGTCCTTCAGCGTGGGAGCGGGAACGCAACCGCCAACGCCTTCGCCCCGCCGAAAGTCTAGCGCCGCGTCGTTCATGGATTTTGGCGATCTGCCGGAAGAGCGCGAAAGTAGAGCGGGCCTCTACATACCGGGCGAGTACGACGGGTACACGCAGCACAATCCAATCTTTAACGCGGGTACGCGCGGTGCCACTAGTAGCTACATCGGATCCCATTATTTCCCCTACCGGCCGGCGATAAACTTTGCGTTCGAGCGGGAAACGAAATCGTACGGCGGGGAACCGGTGTACGAAGACCATCACTACGACAGTGCCTCGTACCATGATTACGCGTACGAAGGTCCCGCCGGGGGACCGTCGGGAACGGCCAGCGCTAGAGCAACGGGTACGCGCGTCCCAACGATGGGCATCAGTGCGGCGGGCCATCGCCGGACGCACTCCAGCATTTCCAGCACGCTGCACAGTAGCAACGTTAACCAAGGGTTTCACATGGAGGGCGAAGAGATGGACGGTGCCGGAACACGCCTGATTGATGACGTGACGTACAAGCTGGGCGATCTCTACCTGCCCGGGGGCGGTACGGATGCGGCTAGCCGCTTACCGGCACCGAGCACCGCGAAGCTGCACGAATCTCCCCTGCCTGCTGCCTTTCATGCGTCGAGCCGAATGCATCAGTACGAGAACGTGCCCAACTTCTTCCGGCGGCAATCGAGCCTGCAGCAGGCGCACTACTCCCCCAGCAGTGCGCACAGTGGACATCTGTCCGGCGATTTTATGTCCGGTGGTGCAATCCCGGAGCCGGAGGAGCGTCCGTACACGGTGCTGGGGCTGACGGAGCACGGTGCCGACGGTGGATTGCTGTCCAGCAGCTTAAGACCCCAAACGAAGCTGCGCTCCAGCATGAAGAAGTACACGCACTCACATCCGACGCATCAGCAGGCCACCGCGTCAGCTGGCGGGCAGGGTAAGTACGGGGCGGGCTACGGTATGCACGGGACGACCAGCGCCACGAACCAAACACCGCCCGACAGTCTCACCAGCGACGACAGCTCGTACCTGAGCGCGAAGGACAACTCGTCCTCGATTTCCTCGCAAAGCCGGGTGCGCTTTACGCCGGAAATTGTGCTCGACGTGGACTCGCCGCTCCAGTCGCCGACGTGCTACACGGGCGGAGCTGCTGCGGCGGCTGCCCCGTCCGGCCATGGCTTAAAGGACAGACGCAGCTCCTCCTCCGGCAGCACGATGCTAACGGCAACGCCCGGTTCGGGCACGTCCTCGACGTCGATTTCGGGCCGGCGGTCGAATGCCTGCGACACGAGCCAATCCTAG +>XM_025275219.3 PREDICTED: Bubalus bubalis NPR3 like, GATOR1 complex subunit (NPRL3), transcript variant X9, mRNA +TTGCCTCATACAGTCGCGAAGTCTCGCGAGCCTCTTGCGAGTGTGGGGTGTGGGACGGGCCCGTGGGCTCGGTGGGTCTGGCTCCGCTCGGCCCCCCCGCCTCCAGCCGGTCCTCCTCAGGGCGGTGGGTCCCGGGTCCTCAGCTCTCCCCCGGGCAGCTCCTCCTCAGAGCCCCACCCGCCCCTCGCCCCCGACCCGTCCTCCTCAGGGCGCTGGGTCCCGGGTCCCGGCCCCTCCCCGGCCCGACGTCCTCGGGGCCCCCACCCAGGCCCCGGGCCGACCCCTCCCCGGGCTCCCGGCAGGATGGGGGACAACACCAGCCCCATCAGCGTGATTCTGGTGAGCTCGGGGAGCCGGGGCAATAAGCTGCTGTTCAGGTACCCTTTCCAGAGGAGCCAGGAGCATTCGGCGTCCCAGACGAGTAAGCCTCGTAGCAGATACGCTGTCAACAGTGCCGGAGAGCATGCTGAAGACCAGGATGGGGACCCCAGGTTTTCAGATGTCATTCTGGCAACAATTTTGGCAACCAAGTCTGAAATGTGTGGCCAGAAGTTTGAACTGAAGATCGACAACGTGCGGTTTGTTGGGCACCCGACGCTGCTGCAGCACACGCTGGGCCAGGTCTCCAAAACTGACCCGTCCCCGAAGAGGGAGGCTCCCACCATGATTCTTTTCAATGTGGTGTTTGCACTGAGGGCCCACGCGGACCCGTCGGTGATCAGCTGTCTGCACACCCTCTCCCGCCGCATCGCCACCGTGCTGCAGCATGAGGAGCGCCGCTGCCAGTACCTCACGCGGGAGGCCAAGCTGATCCTGGCGCTGCAGGACGAGGTGTCCGCCACGGCTGACGCAAATGATGGGCCTCAGTCCCCATTCCACCACATCCTGCCCAAGTGCAAGCTGGCCAGGGACCTCAAGGACGCTTATGACAGCTTGTGCACGTCTGGGGTGGTGCGGCTCCACGTCAACAGCTGGCTGGAGGTGAGCTTCTGCCTGCCCCACAAGATCCATTACGCGGCCAGCAGCCTCATCCCGCCAGAGGCCATCGAGCGCAGCCTGAAGGCTATCCGCCCGTACCATGCCCTGCTGCTGCTCAGCGATGAGAAGTCCCTGCTGGGTGAGCTCCCGCTTGACTGCTCCCCAGCCCTGGTACGCGTGATCAAGACCACGTCCGCTGTGAAGAACCTGCAGCAGCTGGCCCAGGACGCAGACCTGGCTTTGCTGCAGGTTTTCCAGCTTGCGGCCCACCTGGTGTACTGGGGCAAGGCCATCATCATCTACCCGCTGTGTGAAAACAACGTCTACATGCTGTCTCCCAACGCCAGCGTGTGTCTGTATTCCCCGCTTGCCGAGCAGTTCTCACGCCAGTTTCCATCTCACGACCTGCCGTCTGTCCTTGCCAAGTTCTCCTTGCCTGTCTCCTTGTCAGAATTCAGGAACCCCCTGGCCCCCCCTGTTCAGGAGACGCAGCTCATCCAGATGGTGGTGTGGATGCTGCAGCGCCGGCTCCTGGTGCAGCTGCACACCTACGTCTGCCTGATGGCCTCGCCCAGCGAGGACGAGCCCCGCACCCGCGAGGACGACGCGCCCCTGGCCACCAGGGTGGGCGGCCGCAGCCTCAGCACGCCCAATGCCCTCAGCTTTGGCTCCCCAAGTAGGACTTCCTGCCCCTGGGCATCTGTCTGGAGGGGGCCAGCAGCGATGACATGACCCTCACCAGCCCCAGCATGGACAACTCCAGCGCTGAGCTGCTCC +>XM_017686507.2 PREDICTED: Pygocentrus nattereri complement C1q-like protein 3 (LOC108413828), transcript variant X2, mRNA +AGCAGGCAGAGAGAAAGCAGCTGACCTCCTCAGTGGTCTCCTGTGACAGCAGACGTTGAAGATGTTTGGGCTGGAGGTGTTTCTCCTGATCTTCCTGTGGAGCACACAGGCTCAGGACGTGCTGACCCCCAGTGTGGACATTATCAGGGAACTGGACAAGCTCAGAGCTCTGGAGCGAAGAATGAAGGCCATGGAGGCTGAAATGGCTGAGCTGAAGATGATGAACGAAGGACTTTCCAGGAGCCTGGGGATCATTACGAAGACCATCACAGATCAGCCCAAAGTGGCGTTCTCCGCTACGCTGTCCAACCTGCAAGATGGTTTTAAGTTCCTGGGCCCGTTCCAGAACACGGTCACCCTGGTGTACGAGAATGCCTTCACAAACATTGGCTATGCCTACGATCCACAAACAGGAATCTTCACGGCTCCCCTGGGGGGAGTGTATTATTTCAGCTTTTCACTCTTCCACCCGGTCGGACCTGGTCCTCAGGCCAAGACCGGGGCGTCCTTGGTGAAAAACGGGGTGCTGGTGGTGGCTGCCACAGATAACGCCCCGGGGGCGGATTCTGAGGACACTTCTGGAAACTCCGCCTCCATCCGGCTGGAGGAAGGAGATCAGGTGTACGTGCAGCTTTGGGAGAAGCACAGGGTCTACACAGACGGAAACAAGCGCAACACCTTCAGTGGGCATCTGCTCTTCCCAGTGTGAATCTCACCTCACTTGGCTGTGGACGCCTTCAGCTGATGCTCTAATGCTGGGCGCCTAAAGTTGTAGCGTTGTAGTTCAGGTTAATTCAAATGTACTATTAGTAGAGCTTCTATGAAATAAAACAGTATGACTTCAGTTTACTTCTTATGTACTACACCGCTTCCAAAAAAGCTGTGACGTTCTGCAGAATGTAAATAAAAACAGGATGGTCTGCAAA +>XM_029369271.1 Trypanosoma conorhini pre-rRNA-processing protein TSR3 (Tco025E_02343), partial mRNA +ATGGGAAAGCCAAAAGGCCACCCCAACAGAGAGGTGGGGCAGCGCAGCAGGAAAAGTGCGCCCCGAGGTGGACCTCGCGGCCATGCGCCGTGCAACAACCCTTGTAGTGTGCCGCTGGCGATGTGGGACTTTGAGCAGTGCGACCCCGACGCCTGCTCGGGTCGGCGCTTGTATCGGCACAATGCATTGCGCCTTTTAAAGCTGCGGGAACCCTTTCATGGGGTCGTTCTCACACCAACAGCCACAGAGGTTGTGAGCCCTGCCGATGCGGACCTCGTTGCCCGCTCCGGTGCCGCAGTGGTGGACTGTTCGTGGAAGCAACTGCATGCGGTGCCGTGGCGGCAGATGAAGATGGGTGCCCCACGTCTGTTGCCGCTTTTAATGGCCGCAAATCCCGTCAACTACGGTCGGCCGTCAAAGCTGAACTGTGCCGAGGCACTGGCAGGGGCTCTCGCCGTTGTTGGCCGCATGGAGGACGCGAGGTCCGTCTTGTCGTACTTTTCCTGGGGAGAAAGTTTTTTTGACGTTAATGCGGAGCTCTTGGAGGGCTACAGCGGGTGCGCCAACGCGGCAGACGTGGTGGCTTTTCAGGAGCAGTACGTGGCAACTGAGGTGAGCAAAAGTGCGGCACGGCGGGAGATTGACTTGAATAGTATGGATCTGATGGATGCGGGTCCGCTAAACCTTAAACGAGGCAAACTAAGGAGTCGGCATACATGGCAGAAAGACGATGACAACGAGGAAGAGGAAGAGGAAGAGGAAGAAGGGGAGGAGGAAGAGGAAGAGGAAGAAGAGGAAGAAATAAAAAAGGATGCTGAAAAAAAGGAGGTTCAGTTAGGGAAATTGGAGACGTCAGGTGATGGGGGGAGTCTGCGTTCTTAG +>XM_037232021.1 PREDICTED: Pollicipes pollicipes tyrosine-protein phosphatase 99A-like (LOC119108450), mRNA +GGCGGGCGCGTGGTGTGTATGCGCGCCGGGCCCAGCGACTGCGGCAGGGGCACGTACACCAGAACCACCCTGCGCGGTTGGTAGATGAGCCGGCTCCAGGAGGTAGACGTGCGGCCGGTCGGGTAGACACGTTTTGAGCGTGTCTGCGGTGTTTAATCACTACTGTGAGTGACGAAGACTTTCTGTGTGACAGTCGTGCCATCTGGTGTCACACCAGTCAGAACCATGTTGAGAAGACGGGCTTTGGCAGTGACAGTCGTGCTCCTCGTTCAAGGCTGCTGCGGGGCGTTCGACACGCTCTTCTCGAGATCTAAAGCGAGCGTCATCCTGCCCTGCGACGGCATGACCGACCTTGACCCAGCCCAGGTCACCGAACTTGCCTGGCTCTGCTACGGCTGCATGGAGAGCATGATCGTGTCGGTGGACGCGGCGATCGAGACGAGGCTGCTGGAGTTCGTGGACGGCACGGCCACCGTGTTCCACAACCACGGCCGCATCAGCCTCCTGCCCGACACGCTCTCGCTCAAGTACGACCCGGTCGAAGTGAAGGACAGCGGCGAGTACCACTGCCAGGTCAACGGCCGCGAGCCCATCTCCGGCCTAATCAAGCTCGTCGTGCAGGATGTTCCTTCGGCACCCGGAAGGCCTCTCATCACCAACTTCACGTCTCGGTCAGTGTTTTTATCCTGGACTCCGGGCAGCAAGCAGAACAACAGCCCCATCAGACACTACATCATCCACGTCAAAACTGGCGAACATGGCGAGTGGAGCCAGCAGCCCATCTCCACGCCAGATAACCAGACATCGTTCGTGGTGGCAGACCTGCAGCCGTTCACCGCCTACAGCTTCAGGGTGACAGCCGTCAACGGCATCGGCGCCTCGCCAGACGGCATCGCCTCCTACCCCATCATCACGCTGAGAGAAGCCCCAGCCGGGAAGCCGGCGATCCTGGCGGCGCATAATACAAGCTCCACTTCGGTCCGGGTCCGCTGGAGGCCGCTGTCCAAGGAGGAGCTGCGTGGAGAGTTTCAGTTCTACAGGATCACTTACCGGGAGCGGAGCAACGTCAGCAGCCGGATTCGAGAGCTTCGGATCAAGGATGAACGTGTTCAGAGCCACACCATCTCCGGGCTCCGTCCGTACACGCAGTACATCATCTCGATACAAGTGGAGAACCCGGCTGGCCTGGGTCCCAGCTCCACGGTCGTGGTCACCACGGACGAAGGAGTTCCCGAAGCGCCACGGCAAGTGTCTGTCGTGAACGTGACAGATACCACGGTCACCATCTCGTGGCTGGCTCCGAATCGCCCCAACGGCCTGATCGAGGGTTACCGTATCTACTTCACTACCGGCAACTTCACCAATGCCACTTGGCTCAAGCTGCCCGTGGATGACATGCAGTACACGCTGAAGAATCTAGAGCCCTTCTCCAACTACTCGATCGCGGTGAAGGCGTTCACGCGGAGCGTGGAGGGCCGCGAGTCGGCGGCGCTGGCCGTCACCACCGACGTGTCGGCGCCGGCCGCACCGCGGCTGACCTCGCTGGCATGTCAGCCGGACGCGGCCCTGCTGCTCGCCTGGCGACCGCCGGGCCGCGTCCGGGGCCGCATCGACTTCTACGTGGTCGGCTACCGGACCGGCCAGGCGACGGCGCTCACGGAGCTGCAGGTCACCGCCGACTCGGCAGAGCAGGAAAGCATGCTGCGCTTTCCTGCTGGCGCTGCTGGCCCTGGCCATCTGGAGGTGAGGTCACTGCTGGCCCTGGCCATCTGGAGGCGGTACTTCCAGTCGTCCTACTACTACAGCCTGGATGAGCCGGTGACGGCACGCGCGCCCGTGACCTCTGACCCGGGCTGGGAGCTGGACGGTCCGAACGGTTCGGCCGGCCCGATCCCTGCCGATGCCTTCCCGGTGCACGTGGCCAGCCTACACGCCGATTCGGACATCGGATTCTGCAAAGAGTATGATGAGGTGCTGGCGCACACAATGAAGTTGGAACTCTCTTCGAACGTGTCACAGACCGAGGAAAACAAGCAGAAAAATAGATACCAGAACATTGATGCCTACGACCACACCCTGGTGCCCCTGAGGCCCCTTCCGGGCCAGCGGCGGGGAGACTACATCAACGCCAACTACATCGACGGCTTTCTCGTGCGCAACCAGTACATCGGCGCCCAGGGCCCGCTGACCGGCACTTTTGCGGCCTTCTGGCGGCTCATCTGGGAGCAACGCATCCAGATCGTGGTCATGATCACTAACCTGGTGGAGCGGAACAGGAAAAAGTGTGACATGTACTGGCCGAAGGAGGGCACTCAAGTGTATGGAGTTATACAAGTGGAGCTTTTGGACCAGAAGGAGCTGTCGACCTATACGATAAGAAAAATGCTCATCAAACATACAAGGCACAAGAAGAAGAAGGGCGTGTGCAGTGAAAGGATCATATACCAGTACCACTACACCAGCTGGCCGGACCACGGCGTACCAGACCACCCGCTTCCGATCCTCAGCTTCGTCAGAAAATCGGCCGCTGCGAACGGCGCCGGCGCGGGACCCATTCTGGTCCACTGCAGTGCCGGGGTCGGAAGGACGGGCACCTACATCGTCCTCGACGCCATGATGCAGATGATGAAGCTCCGGGGCGCCATCAACGTGTTCGGCTTCCTCAAGTACATCCGCACGCAGCGCAACTTCCTGGTGCAGACTGAGGACCAGTACATATTCGTGCACGACGCGCTGTTAGAGGCCCTGGAGGCGGGCGAGACGGATGTGCGAGCCACGCGGCTCACCGAGTACCTGCACCAGCTGCGCTCCTACGACCCGAACCAGTACCCCCGCTACACGCTGGACCGCCAGTACCAGCTGGTGACATCATACCGGCCGACGGAGAATGACCTGGCAGGGGCCTTGGCTCCGTGCAACCAGGCGCGAAACCGGAGCGCCCAGTTTGTGCCGTTGGACCGGTGGCGGGTCCACCTCTCTCCCCGGCCGGGCGTCGAAGGCAGCGACTATATCAACGCCACTCCCCTGATAGGTTACGAGAAGCTGTGCGAGTTCATCATCACTCAGCACCCGCTGCCGCACACGGTGGACGACTTCTGGCGAATGGTGTGGGAGCAGAACGTGCAGACCGTGGTCGTCCTCTCGCCCATCGACGACCAGCATTACCCGCGCTTCTGGCCGTCGCCGGACGATGACATCGACGGCGACAGCTTTCGGGTGCGGTTCGTCGACGAGCCGGCGTCGGCGGCGTACGCCACCGTCGACCTGGTGCTGCAGTCGGCGCAGGACGACTACCAGGTCACGGTGCGCGTCATCTCGTGCGCCGCGTGGCCGCACGGTGCCGCCGCCTCGCCGCACCACCTGGTGGACGCCGTGCAGCAAGCCACGCTCCAGTACCAGAACGGACCGGCGGTGGTGGTGGACAGGTTCGGTGGAACTGAGGCGGCCACCTTCTGCTGCCTGACCACGCTGTCCAAGCAGCTGGTGAACGAGAACTCCCTAGACGTGTACCTGTACTCCAAGCTGTACCACATGAGGCGTCCAGGAGTCTGGCAGACCCAGGACGATTTCACCATGCTGTACCACGCCATGGAGGGATTGGTCCGCCCAATACTGCCCCACTCTCCCAGCAGCCAATCAGAAGCCGAAGCCCTTCTGCGTCCACCCAGCCTGCGCACGAGCACTATGAGGGTACCTCCCGACGGAAGAGAGTGCTATGTGCCTGCAGAGTGTGTCTGACGTTCTGTCAGAGACCGTACGTGACTGTCACAGCAGAGGGTGCTCCGAGCCCGCCGAGTGCCTCTGACTCTGTCAGAAGCCGTGCTCCGTTTTGAACTGCAGGGGGAACCACGCA +>XR_005812777.1 PREDICTED: Oryza brachyantha uncharacterized LOC107305249 (LOC107305249), ncRNA +GGAACTCACTAAAACCGCTCGCCGTTCGCTTCTACACCTGACAACCCCCGCCGTGCCTCTATCGACCCTCCCTCCTCCGCCTCGAGCCTCCGCCGCCGCTCAGCAGTTGCGGACCTCTCTCTCTCTCTCCCCGGTGCGAACCGGCCGTCACCGTCGGGAAGGATGGGGTGCGTGCCATGCCGGCACTCACCATCTCAGCATCCTAAGAACCGCAGTTTTGGGAGCTGGCCGAGTTCTTTCGGTATGTCACCAGAAAATTGGCAGCCAACAACGCTCCTGACATGCACAAGAAAAAGCTTTCAAGGTTACTCAAGGATCCAATGGTCGATGGAAGTGGACCGCTCAAGTTGTTGTAAGATAAGTCCCTGCAGATGATCTTAATAGATTTATCACAACCAAACAAGGTAAAAACTTTCACAGGTAGATTCAGCAACATTAAGGAAGAGTCCATGTTGCAGCTCTTGTTTATAACACTCAAAAGCTTTCTGTAAAATTGACAAACTTGTAGTACATACAGGTACTGTAGTTCTGACAATGACTGTACATCTCCTGAAAGTGACCCAGACAATCCAAAACTTGACAGCCTACTGTAAACCACAAGAAAAAAGACATCATTTAAATGAACATAGAAGAAACAGCATCTTGATTTAATGAAATATGTGTGTGTGTGAGAGAGAGAGAGAGAGTTGATTCAGATAAAATGGTTCTAACATCGAGGTGACACGATTCTGGATGCAGGATACTCCTGGCCATTTTTGTCCACAAGGATCATTTCCAACCCAATCCGATAGCTTGGACATGGCGTTATCCCAGGAAGCTGCTATGCCTTTGAGGGCAGAGGCTGTAAGGCAATGAGAGTGAAGAAACATCATCATGCAACAAAAGCTAGTTTTTACAGCAAATTAACTGGAAAACACAAGGAGGCTGATGAAACACTTACTATCTTGTGGATCTGTATCTGCTGATATGATGAGAGCACGGTGAATAATGATCAGGGAGACTAGCAGATGGATGATCCTCCAAGAAGTTGGAGGATGCGCCATGGTGAACTTTATTTCAGGTTGCTGAGAAGCCCTTTCTTGTGTTACCAACTCTCCACTACTCAATTCTGAGCACTTGCAGTGACATGATGTTATGAAGGCTGAATATGCACATCAATTGTGAACTGGTCAATGGAATCAGTCAAGAATGTGGCTTTCATCTCCTCTCAATGGATTGCCTTTTCAAATTCATCCAATTAATGGTGAAGTCCCAGATTTTAAAAACCAAGAGAGAGCTCACAATGGGAGTCAACGGTGAGCTATTGGTTGGCAGGGAGCATGAAGTTCTCTCCTATGAAATAGGATCCGAATGATTCAAATTATTTTTACCATGTTTGAAGTATCATTCCAATTGAATATAAAATAATTGCTGCTCCTTCTAAGACACTTGAATGTTTATTGCATGCATATTATGTTTTGTTGAATAGTGTAGATTTTAGTTGTCGTATATTCATGGTGGGATTGACTTTAGAAAACTATTGGGACCATTTTGTTGTGTACATGTGCTGAATCTGAGGTTTATTCGAATGATTTGCTAAGAAATGGTCTGGTTTGAACACAAAACATCTGATATTTCTAGACATAT +>XM_034077493.1 PREDICTED: Pseudochaenichthys georgianus non-SMC condensin II complex, subunit G2 (ncapg2), partial mRNA +CGCGGGCTCTTATGGCAGACTGTCGTTCTGCGGCTGTCGGATCACAGCATTATTAATACAAAGGAATATTGGTGTTGTTTCACGTCTTTTGGAGAACCACAAACATGTCGAAGCGAGAGGCTTTTCTAGAGTCCTGCTGTACGGAGAATGTGGACGATTTCCTCCGCTTTATTCAGCTTAATCGGAACAAGACGGAGCCCTTCGATGTGGAGGAAGTTCTGCAGGAGATGAACAGAGACCAGAGGCAGACGCTGTGGGGGAAACTGTCCTCTCTCCTCCAGGACGTCCTGCAGGAGGAAAGGAGAGAGGAAGGGAGTGAGGAAAGGAGAGAGGAGGCCATGGAGGTGGAGGCAGCTGCAGACCCCAGTCACGTGAGGTCTGTCGTGGACGGTGTGACTCTGGTTGCTGCCGAGTCCCTAAAGGTCCTGCAGGACGGAGAAACCTACAGTTCTCTTCTGGAGATCATCCACAGGCTGCATGATATGTTGGAGCTGCAGCCGGTCTCCGAGGCTCCGCTGCAGCTCCAGATCCTCAGACTTTGTGACGCCTGGTGGAAGAAGGATCTGAAGGAGAAGGAAACGTTCGGTCGCAGCGCTATGATCATCGCTCTGACGAGGAGCTTCGACCTGAAGAAACCGGGCACAGAGATCCAGAGGGTGTGGAGTCTCCGGGAGGTTCTCCTGGGTCTGGATTACACGTCGGAAGACAACAAGCAGATGATGGATCTGCTGCTGAAGTGCTTCCAGCGCCCGGCCTTCCTCAGGAACGACGATGGAAAACGCTTCCTGGTGTTTCTCTTCAGCTGGAACATCAACTTCATCTCGGTCATTCACGGCACCATCAAGAACCAGCTGGAGTTCTTTAGCATGATGGTAACGGCTCACATCGCTGAGATCTACTTCAGAGCCTGGAAGAAAGCCGGCGGTGATTTCCTGGAGAAGATCGAGAGCTCCTGCGTTCAGGATCTAATGCAGAACGCCATCTTCCTCCACAGATCCTCTCCTGTGTACGCCAAAGTCCGAAAGATCGTGAGCTACTTCCACTCGAGGAAAGGCTGTGAGAAAGTGGACAAGATGCTCTCCAATCTCTACAAGCCCATTCTGTGGAAAGCTCTAAGTGCGCCAAACTTCGAGGTGCGAGCGAACGCCACGCTGCTTTTCACCGAAGCTTTCCCGGTGCTTGACGTGGAAACCGGCAACAAGAGCACGGACGAGGCCATTCAGAAGCAGCTGGACACGGTCATGGTGCTTCTGGACGATCCTCACCCCACAGTTCGCTCTAACGCCATCTTAGGAGTGTGTAAGATCCTGGCTAAATACTGGGAGGTGCTTCCTGCCGCCATCATCACCGACTTCCTGAAGAAGCTTGTGATGGAGCTGGCGTTCGATTCGAGCTCTCCTGACGTCCGCTGCTCCGTCTTCAAGTGTCTCATCATCGTGCTGGACAACAGCCTCAGCCATCCCATCCTGGAGAAGCTGCTCCCGACTCTGAAATACAGTTTGCACGACAACTCGGAGAAAGTCCGCATCGCTTTCCTCGACATGCTCATTAAAGTGAAGGCTGTGCGAGCTGCTAAGTTCTGGTCCGTGTGCAGCATGGATCATCTTCTCGCTCGCCTCGCCATCGACTCGTTATCCGCGTCGAAGCGCATCGTGGATCTACTTTTCAAGTCCTTCTTCCCCGTGAACGAGTCGGATAAGGAGTGGTGCAGCCGCTGCATCACGCTCATCCAGATGAACCCCGCCGCCGCCAGGAAGTTCTACACACACACACACAAACACACCGCGCCCACCAACATCATAAAGCTGATGTTGGCGATTCGCCGCGTTCTGAACTCTTGCCTCCAGGCCCAAGGTGACCTGTCTGAGATCAACGACACCAACAAGGAGAACAGCGCA +>XM_013920937.2 PREDICTED: Limulus polyphemus tyrosine-protein kinase Abl-like (LOC106461142), mRNA +AGCGGCCCCTATGGACGGCGTAGAGGCTTGCTTTGAGAGTGTTCGGTCATTCGTTTCAGAGGTTTTTCAATATGGCTACTAATGAAATTGTTAGTGATTAAATTATTGATAGTCACAACTTGCTAACATGCTTGTACTTTTTATAATTGGCATATTTACGTAGTTTATCAATAATGCTATTAAAGGTCTCCTAAATAAAAGTTATGTTCTGAAAATATACTGCATAGTAAGGATCCCGAATAGCCTGAAGGTCGTTTTGACGTTAGGCTATGGGAGCCCAGCAGGGCAAGGAAAACCGTGGAAGTGGATCTTCGGTTGGCAGTGGACATGGTGGAAAGACTGGGAAGAGCTTTAAAAATAGATCTAAGGACTCTAGATTATCATCAGTTTCTGGAAATATATTTACAGAACACAATGAAGCCCTGATGCAAAGCAGGCCTTTGCCAGATATTCCTGACTTTGGAGATCATATTAGCAACTTATCCATCCCTAATGATGGGTCATCCCGGTGGATGTCCAAGGAGAATCTCCTGGCTCCTGAAGACTCTGATCCCCAATTGTTTGTAGCACTCTATGATTTCCAATCTGGTGGAGATAACCAACTTTCTCTCAAGAAAGGGGACCAAGTACGAGTGCTATCATACAATAGAACAGGTGAGTGGTGTGAGGCACAGTCACGTTCAGGTCAAGTTGGTTGGGTCCCTAGCAACTACATCACTCCTGTCAACAGTTTGGAGAAACACTCCTGGTACCATGGGCCCATCTCTAGAAATGCAGCAGAGTACCTACTAAGCAGTGGGATCAATGGGAGTTTTTTAGTCAGAGAAAGTGAAAGTATTCCTGGTCAAAGGTCAATATCTCTCCGTCATGATGGACGAGTATACCACTATCGAATTAATGAAGATGGCGAGGGTAAAGTGTATGTGACGTCTGAATGTCGATTCAATACTTTGGCTGAACTTGTCCATCATCACTCCATGCATGCCGATGGTTTGATCACCATGTTACTCTATCCAGCTCCTAAGAGAAACAAGCCTGCTGTATTTGCTCTTAGTCCAGAACCAGATGAATGGGAAGTGGACAGGACTGGTATTGTCATGAAACACAAACTTGGAGGAGGACAGTACGGAGACGTTTATGAAGCTGTCTGGAAGAGGCATAACATGACAGTAGCTGTTAAAACACTGAAAGAAGATACAATGGCCTTAAAGGATTTTCTAGAGGAAGCAGCTATTATGAAAGAAATGAAACATCCAAACTTGGTCCAGCTAATTGGTGTTTGTACAAGAGAACCACCATTTTACATAATCACAGAGTTCATGCCCCATGGAAACTTGCTGGATTTTCTCAGGAACGCCGTTCGCGATGATATCACGGCCGTGGTGCTAATGTACATGGCTACACAGATAGCTTCAGCAATGGCTTATCTAGAATCCCGTAGTTTCATACATAGGGACCTAGCAGCAAGAAATTGTTTGGTGGGAGAAAATCATCTCGTAAAAGTTGCTGATTTTGGTCTAGCTCGACTGATGAGAGATGACACTTATACTGCACATGCTGGGGCCAAGTTTCCAATTAAGTGGACTGCTCCTGAAGGCCTTGCTTATAATAAGTTTTCTACCAAGTCTGATGTTTGGGCTTTTGGCATCTTACTGTGGGAGCTGGCCACATATGGAATGTCTCCTTACCCTGGGGTTGAGCTAACAGACGTTTATCATATGCTGGAGACTGGCTACCGAATGGAGTGCCCACCGGGATGTCCACCAAAGGTTTATGAACTAATGAGACAGTGCTGGTTGTGGGAGCCTCTTGATAGGCCTACTTTTAAAGATGCTCACCACACTTTAGAAACTATGTTCCAGAATTCAAGCATAACAGAAGAAGTGGAGAAGCAGCTAGAAAGGCAGACTCCTGCACCGTACAGGTCCTATGGAGAGAGTTCGCCAAATATTTTTCAGCGTGATGAAGAAGGAGATTATCCACTAACTGAACAAGGTTGTCATAGTGGAGGTTCAACCAAACACCAGACCATTATCTCCACTAGATCTACTTTGGTTCAACTTCGAAGACATGGCCCTCGAAGTAAACAGGCACCTGTACCACCAAAGAGGACCAGCACTTTTCGGGATAGTGTCTATCAAGACAAAATGTATGGAACAATCGGACAGGAAACTAATAAAAATATTCTCAATAATGGTGGTGAGAGAGCCTTTGAGACTAGTAACAGGAAAGCTCAGGAGATGAACAGCAATGAAGAAGGGGAATGTGAAATAAGAGAGAGAACTCCTGATACTGAGGAATCTGATACTCATACAGCAGCTTCAGTTGCTAGTGTTCCAGCAATGTCGCTAAACCAGCAACATTCTCAGCAAAAATTGAAAAAAGCAAGGACCTACCCTCCTAATATTCAGCAACATAATAATACAAAAGAAAACAGTTCTTCAAATAAAGCAAGAGAACCCAAGAAAGTACAAGTTGCAGCTCTAGAAGTTCAAAATGTGAAACGAGCCATTAATCGATATGGGACACTTCCCAAGGGAGCAAGAATTGGTGCATATTTAGATTCACTCAGGGAGCATGGTCTCCATACTGGAGCTAAGTATCCTGAGCCTGTTGTTGAAAGTGAACCACAAGCTTTTAGTGACATAGGATGGGAAAGTGCAGCTTTAGATCCACTTTCCCAGAAACAGAATTTTAGCAACATAAATAATACTCATAAAGGAGAAACTGGAAGCCATTTCTCTTCTAGATATCCTCCTCCAAGTCGGCATAGACACGAATATGATGGGGTTCATCATTCACCTCATGCCTTTCTACAAAGGCAAAAGTCAGATCTCACGTACTCCAAGAACAATGACACATTTGAAACAGGATCTATTCCAGACTCTAGACACCTTAGTTCAAAGCCTATTCCATCTCCTAGACTTCCTAGAAGTCAGAGGGTGGATCGAAAATCCTCTCGTGATGGAAGAATTGAAGGACCACCTTGCATACCCCAGGAGATAAGAAATATTCACGATGTTGGTACTAACAGTGCTTCAAATGCTGGTGGTGAAACCAGTTTTCGAGATTATTCTGGTAGTAGTTACCCCCGGAATAATATTATTTCAGAATCCAGAAATGTTGATTCTCAGTCATTCTCATCTCCTTTTAGTTCTAATGTCTTTCGAAGGACACTCACTAAAAGACCAAAAGAAAGACCTCCAAGTCCTCCAAAGAGCCCACTTGTAAAAAGTGGTTCAATTGATGATCAGTTAGGATGGAAACCTGAGAGGATTTTTGATCAGAGTCCATCAGAAAGTGCACACACTGTGACTCCACTAACTTGGAGTGCTAGTGTAGACAGCCCACTTCCTCCTGGAAAAGTCAAAGTCCCATCGGGGAGTCCAAAGTCATCATGGAATATTGTATCTCCCCCTCCACCACCTCCTTGCCCAGAAGGTTTTCCTCCTCCTCCTGATTTTGTAAAAGATTCTCTGGAATCTTGCTCTGAACAGCAGACTGTGATTGAAGTTAAAGCTCCTTTAGTTGCCAAGGCATCACATAATAATCAAACTGCCAAGAACCCAGCAGCTCAGCTAGTCTCAGAACTCTTTGAGAGTCTTAAAATGAAAGCCAGAAGAAGAGCTGTAGAGATGGGAGATGCTTCTTCTCAAACCACTGAAGAAGTAGGAAGCTCTGCAGAAATATCAAAAGATCAGTCAGCTGTTGCACTGTCTCCTAAAAAGCAAATTCCTTCTGTAGACTTACCTGTAAAATCTGAATCTGTAAATTGCTCTAAGTTAGGCTATCAACAAGGAAATGAGCTTTCCAAAAGAATCAGCTCAATATTTGAAGCCAGCTCAAATAGGGAAAAAACAACTGGAGAATCACAGTCACAGTTTTATGTGCCCAGCAATAGACTCAAAAAGAAGACTCAAGATAATATAGAAAAAAGTGTCAGTGGAGATCTTGGCCAAAAAAATTTAGTTATACCAAAACTCAAAAGCAAACCTCCTGATAGAGATTTGGTAGAAATCTGCCAACCAGATAGATGTGAAGAAGAAGAAAGAAGACATAGTTGTGGAAGTATAACAAGTTTGAAGAAAATCTGGGAGAAAGAGAGCTCAAAACAGGAGTCGGAGCTAAATGCTGATGGTTCATGCATTGACAGTCCAAAAGTTGTGGCACGTCGACCAGAATCACTGAAAATAGAAAGAACACAGACTTTGGAGCTTGGAGATGATACTTTTAAAAGTGGAAACTATGAAACTGAACCTGTACAGAAAGCATCGCCAACCTATGTTAAAGAAAGTACTACGTCAAAAGCATTGTCTCAAGCATCATTAATAGGTGAACAAACAGAAGAACTAACTAATCAAGAAGATCAACAGAGTCATTTAAAAACTTCCCCTCAAAATAAAGAAACAGGAGGACAGTTATCCCCAGCGATTCCTAAACCAGCAGTTCCATTGAAACCACCAGTAAAAGGATCTCGAGCTGTTTTGCCTCCAGGTACCAGACCCTCTAAAACAAGTAATAAGCCCCAGGTTTTTCCTCGAGGAGGTATAGGGGGGTCTCCATCATCGCAGGCTGATGACGAAACACACGATAGCATAAGCAGCAAAGAAACTATATTGGAAATTTCTACAGCACTTGAAAATAGTATTCAGTTACTGAAAACAGCTACATCTCTAAGCAGTGGAAACGTAATGCAGCTGTCGGATAAAGTGCAACTTTTTCGAACTTCTTGTGGCAACTATGCAGAAAGTATCCCTCCACATGGGAGATTTCGCTTTCGAGAATTGTTAACAAAGTTAGAACGACAGGGTGAACAGTTGCGCACATGTAGCAGTAATAACAGTGCGTTCAGTTCCAGACTTTTTGAAGAATTACAAAACACGGTGAGGGACTTGGTAAATATGGTCCAGAGGTGAGCAGTGTGGTCAATATGTATAAAAACGTATATCAACTCTCATTTATATATCATGATATGTGTATGATTAGTTTCTTGATTTACTCATGAATTCCAGCATAAGAAAGTGGGATACATGGTCATCTAGTCGTAACTTTTGCTCATTAGTGAAATGGTGGTGAGAAAAGCTGACAAACTTACTTATAGTTACTACAACTTCAGCTGAGAACTGTCGTATGTACGCTTTAAATTTGTGATTTACACATTGTCCATGAGAACCAGCCTAAAAGATCTCTACTACGTGAATTAGATCCCTTAAAGTGCTTTTGAGAATGGAGTTCAACTAATACTTGTCATGTTAACACAGGTGTCATTTTTATCCTTAGAAAATAGTATTGTAAAGATATATTGATAATCCAGGAGAAGTGTAAGATACAAAATGTCGGGTATTTAATAAAAGTAGAGAGCAAAGCTATACAATTATTCATTCAGGGTTTGGTACAATATTACTCTTTATTCTCAAAGAAAATTAGATGTGTGTGTGTGTGTTGAGTCAGTCATGGTTCCTTTCATCTGTGAACAGTTGTTAACATAGTGTCACAAACAAATATATTTTGTAGTTTAAAAATTGATGTGTGTCGTTGTCCCCCCCCCCCTCCAAGGTAAATTTGTGGTTTGGACACACTTGCCTCGCAATGAGACAGTTAAGTGCATATTTCTAGGCTAAAGCTACATTGAATCCCATTTAACTTTCATTGTGAGTTAATGCTGGTCATAAGGTAAACTCTGTTGTACGTTTTATGGTTAAGAGTATTTAAGAATTGAATGTTTACTAATGTGGCTCTATCAGATCCAGCCCATTGTTGTTTTTGCCCTTATAAACAAATATGTGGATGTATTATATCTGTGTATTTAACTTAACCTTGTGCTACAGTGTCTGTACTAGTTTTTGTGACAGGGGTTAGTGGATGAATTCCTAATATGTATAGCAACATTTGCATTTCCTTTCATAATAAAGAAAATTCAGGTTTCGAAATTTTATCTCACTCAATTCAAATTATCTTAACTTTGTGGGTGGGAATACAAATTCTCATAGGGTTGGCAGTACAGGTGGAGTCGTCCAGTTAGAACTTTGAGCCATATTACTTACTTCCATTGGCTTTACGTAATGATAATAGGACATTGAGGGCACTTTCTATTTGATGCCTATCCTTTACCTTTGTCTTGGGGGGAGATTTCAGCTTATATATGTCATAGCACCTTTTTTATGCACAGTTCGCCCTTTAATTTCTCTTTTGACCTGTATTTGACCTGTACATATTTCGTGGTTTCTTTTACTGCAATATAAAATGTGAAGCCAGAATTAAGTTTAGTGTGAGTATGGTTTTATATGTATATTACAGGAAATATTTTGTGTTTTTTTGTTGGTTCTTTTGTAAGTTTCAAATAATTTTAACTTCAAGCAGTAGACAGGCCCATTTAAGAGAAATTGTACTTAGTATGAGAAGATTTCTTGGGAAAATAGATGAATTTTTTTTTTAATATTTATTGATAGGAACCTGTAGAAAACTGTTTATATGAGCCACTGTTTTGCTCTGAAGACTTCACTGGGACCGAAAACCGTTGTGTGTCTCGGAACTTTACATATCCTTTTAGCCCTGAGCAAAATGATGTTATGACTTTCTCATGTCTGTGTTCTTTATTTAGGCCTAATGAAACTGTAATGGCAAAATGTTGGCTTAAGTAAACTCTATCGTCTGGAGTAATAAGCCCTATTTCATTTATCCTAGAAGTTGGAAATTCGTCAGTCTGCTCCAAAAATCTTCATTGTAATGTTTTCATTAGTGGTAAAAATTTAACTGTTGAACTATCATTCACACCAAAAGTGTTTCAGAAACGCGTGTTATGTAGTTCTGTGTCACAAACACGTGCTATGCAGTACCAATATTTTGAAAATTAAAAGTGCTCTCTATCAGTGAAGTCGTGAACTTTTGATCAGTATATATATATATGTGTGTAAAGAGTGTGTTAAACGTTCATAAGTAACAGTTATGAGGAAATTGGATACAGTGATTATGGCGACTTGTTTATCTGTTCGTTATATTGTTGCTTGCTCATTAAATAATCCCTTTTTTTTAGTTCGCTTTTGTCTGCGACCAGTGTATGCAAACTTGTACACATTATTAATCACCTTGTTAAAACTTTTTCTCTGTTTTTTTTGTATTTTTTTATATCAAGTCTGTTAAAAGCGATTCATCTCTGTAACTTTGGCTAGATGGTGTTGCGTGCGTTTATTATGAGTGAATGTAACATCATCTAACTTTCTCTGTAATATGATAAGACAAACTGCCACAAAAGTATCGTAATTCAAAAATCAAGCCTTGTTTATTGGATGGAAGTTTTGAAAAAATGTCTTTGTCTAAAAACGAACATACGCATTGGACTGTTTGATACGTGAAAATGACGCTGAAGAAACGAGTCGTATTTATGAGTGATTGCCTAAGTTAACATTAAACATGGATTATGTTATAGCAGATATGTAACTAAATTTGTATTTTAATGTCAGAAAGCATGTGAATTTTTGGTGTATTTTAACTGTATATCATGGAAGGTTGTTTGTGAAATGTAGAGATAGGTTTGTTCTCTGTGCCTTGACCTGTAGGCGTGTCTTGTACCGATGTTCAGCACTATAATTATCGGCATTCTTTCCTCTTTCAGTACTTTCCCAAAGCGACTAATCAAGACTCGGTAAAATGGCAATAATCCACACTTGGAATATGTTGTAGGAACGTGAAGGTTAAGCGTGTGATTGTATATAGAGAGAGCAAACTTCCTTCTCAAAACGGTCTTCAATAAACTCTTCTTGAGAACATATCAGTTCTTATGTTGCTTCAACAATCCCTAATGCTAGCGAAAGGTATTTTGCCTACTTAATACATTTCTCCACTGTTAATGTGTTGCCATTATTTTAGTTCACCTTAGTTTCGTTCTATAAGATACCGTTTATAAAGCTTTAGACAGCTTATCCTATTTCTTGCATCGTATACAAGAGAAAGTTTGAGGCCTGGAGCTTTTGTTATTTTACAGGTATTTAATTATATTAATCAAGGACCAATGTTTTAAAAACGTGGTTTTAGGTTGAAATGTTTGTGCTCAGGATTGTACTCTCTTGGTGATCTGAAGGTGTCTTGTTGTAAAGCAGTCTTTGCGTTGAGTTTTTTACATTTAATCCTAACTCGTAATGTTTATAATTGATTAAATTGAAACAGAAAAGGCTATTATTTAATCGTTTTTAGATGAATGAGAATCACTGACTCTATTGATAACAAAGTAGCGGTGTCAATTTCGTATGAAAGATTCGTATTTTTGAAATTAAAATGGGTCATAGTAACACACTTCATAAACCTTACATTTTACCAGTGTGTTTGAGTTAAGAACAAATGACTACTAGACCTAGAATTACCTGTTAAGTGTGTTGCACATTCGCGTATCTAAAACTATTTTATGTGTATTGGAGTTTTCTCTTGTGTTTGTCTGTGTGCATAACAGTATTTCTTTTAACCCTTACTCAAATCCTTGGCAGATTGGTGTTTTTTTTAAGTATTTATTCTGTATGTAAACATAATTGAAACGTTATTTTACGATTTATGATATTCAGGTTCCATAACCCACGCTTTCGGTCGTCTTTTAGAATATTCGTGAAATTTACGATAATTGTAGTGGTTGTACTATTTTATATTTCGTGTAAATATATTGTCTTTTATCTTTTCTTCCTACTTCTCATCTCGCGTGTTTTGATCAGGGGTAGAAACTAATTATACTACTTCTACATTTCATTCTAATGTGTGCTACTGTGTAAACATTTCTTCAAAACACGCTGTCATGACTTGTCACATGTCTATACTTGAAGACCATTTCGTGTATGTAAGAACGCGGTTCCCACCCTACCGGTAGCACTTTTAATCGTGAAACTCCACAAACTGGAAAAAGAAAAATAGTTCTCTGCACCACCAGAGAACTACATAAAACTACAAGTCCAACACGAGTATATCGCAATGGATACTACTAAATAAACAGGAAAAAAAGTTTTTTTTATTGAAAGTACAGTGTGTGAATGATAAATCATAAATCATTAAGACAGTCTAATACTTTTGTTGTAGGTAGCTTAAGTATATAAATAAATAAATATATATATATATATATATATATAGCTATGTAGCTGACTAATTTAATGTAACATACCTTTATGAAACAAATTGAACATTTGTATATAGTTGAAGTGTCTAATATACTAATCAGTAAATGTTTCTTATGGATGCCTAATTTTGACTCGCGCTGTAAATTGTAGATTTTTCTAAGTATTAGTTCCCATCAGCGTAATAATTTAAGATTAAATCAAATGAGAAGTTAAGTTACAACGAATTGATTTTGTTTCAGCACCACGAAAGTGTTTCTTATTTATAAATTTCTTTTGCGTAAAAAAATGAATGGCTTGTATTGGACTTTTTTTAAACGTCTGGTATGGATTTTTTTTTATTTAGTCCTCTTTGAACAGAATAGATAATGCTTGATATAAATACGTCATATCAAAGTAAGAGATTGAACACTTCCGTAATACTTAGGCAGCATAACGTCGACCACCATGTTTGTTTATCTTTCTGAACACAAATGGAATTCCACCGTTATCACAATAGACTGTTTGTTTCAAAGTATGTTCATTTCAAGAAGTAACTGTGATTGTTTTATTTTTATTTTTTTGTTAACTATCGTTGCTCATATTAGACAGCAGATATTAAATAGTTGTGAATAAAATATACGACACCAGTTTG +>HQ716622.1 Uncultured bacterium clone T2WK15F91 16S ribosomal RNA gene, partial sequence +GTTTGATTATGGCTCAGGATGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGAGTTAATAGTGAATGAGGCTTCGGCCAAAGGAGCTATTAACTTAGTGGCGGACGGGTGAGTAACGCGTGAGCAACCTGCCTTTCAGAGGGGGATAACATTTGGAAACAGACGCTAATACCGCATAAGATCACAGTACCGCATGATAGAGTGATCAAAGGAGCAATCCGCTGAAAGATGGGCTCGCGTCCGATTAGATAGTTGGTGAGGTAACGGCTCACCAAGTCGACGATCGGTAGCCGGACTGAGAGGTTGAACGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGGGAAGACGGTTTTCGGATTGTAAACCTCTGTTTTCGGTGACGAACGAAATGACGGTAACCGAGTAGGAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTACTGGGTGTAAAGGGAGCGCAGGCGGGATAGCAAGTCAGCTGTGAAAACTATGGGCTTAACCCATAAACTGCAGTTGAAACTGTTATTCTTGAGTGGAGTAGAGGCAAGCGGAATTCCGAGTGTAGCGGTGAAATGCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCTTGCTGGGCTCTAACTGACGCTGAGGCTCGAAAGTGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACACTGTAAACGATGATTGCTAGGTGTGGGGGGTCTGACCCCCTCCGTGCCGGAGTTAACGCAATAAGCAATCCACCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCAGTGGATTATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCAACTAACGAGATAGAGATATGTTAGGTGCCCTACGGGGAAAGTTGAGAGAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGCCATTAGTTGCTACGCAAGAGCACTCTAATGGGACCGCTACCGACAAGGTGGAGGAAGGTGGGGACGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTAATACAATGGTCATAAACAGAGGGAAGCAAGGCCGCGAGGCGGAGCAAATCCCCAAAAATGATCTCAGTTCGGATCGCAGGCTGCAACCCGCCTGCGTGAAGTTGGAATTGCTAGTAATCGCAGATCAGCATGCTGCGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCATGGGAGTTTGTAACACCCGAAGTCTGTTGTCTAACCGCAAGGAGGGCGCAGCCGAAG +>XM_041020936.1 Aureobasidium melanogenum CBS 110374 alpha/beta-hydrolase (M437DRAFT_44633), partial mRNA +ACTTTGAGACATATATACCATAAAGGCTCTCATCAGTATCCGCATCTCTTACGGAAAGTCGATATCAACAAGGACACACTGCTTGAGTACGAGAACGAAGCTGGGACAACCATTCTTAGACCAGCTTGGGATGCGTTTTCTGTGCAGTCGGATACGTTGATGATACAGCGCCTTGCTGATCGCAGACAACATGTCGTTGACGGCTTATTAGAGCATGGAGCTACCTTCGGTGAAGCCAAAGCTCTCGATGCAGAAGCCTGGACTCTAGACGAGGTCTCCAGCCCTGATGTGACCGATAAGAAGACAGTCCTAAGCTTCGCCCACATGGCGGCAAACGCCTACGTCTCCATCCCTCGTAAAGGCGACTGGATCGACATTGGCGGCGGCTTCAACTATACCGAAGATTTCGGCTGGGAGTCCGATGGGCTCCGCGGCCACATCTTCGCCGACACGCACAACAAAACCGTCGTAGTCGGGTTGAAAGGCACGTCCCTCTGGTTCTTCGATCCTCCAGAGACAACAAACAACGACAGAGTAAACGACAACCTATTTGGAAGTTGTTGTTGCGGGCAAGGAGGCCAATATGCATGGAAAAGAGTTTGCGAATGCCAGACTGATGCAAAGACTTGCAATGCTACTTGTTTGGTGAGTAGTTTGAGGAAAAAGAGTAGTTATTATCATGCTGCGAGGGCGCTATATCATAACGTGACGGCTTTGTATCCGAACGCTGATGTTTGGCTTACTGGACACTCGTTAGGAGGTGTGGTATCCTCTCTTCTTGGTGCTACTTATGGTCTACCAACTCTGACTTTCGAGACTTTTCCTGATGCACTTGCTGCTCATCGATTAGGTCTGCCAACACCACCAGGTCACCAGATTGGTCAATCTGGTAGACAACATTATACCGGCACGTTTCATTTCGGTCATACTGCAGACCCGATATATGTCGGAAACTGCAATTCGTATGACTCGTCTTGCACGCTTGCGGGATATGCTTTCCAGAGCAAATGCCACACAGGGTTCAATTGCACATACGATACAGTTGGTGATAAGGGTTGGAGGGTCTCAATCGGCACACACAGAATCAGCAGCGTCATCAAAGATGTCCTAGAAGCTTATGACACGGTCCCGGTATGCACACAAGATGTTGGTTGCAAGGACTGCTCTGAATGGTCGTTCTTTGAGGGCAATGGGACAAAGACGACGACCAGCTCAACAAAGACTGCTTCTTCGACGGAACTCACTACTACCACGACTACGACTTGCCGCACTCCTGGCTGGTGGGGTTGTCGGGATGAGTCTACTACTACGAAGACAACATCGACGTCGACGAGTGTCTCTAGCTCAACGTGTTTGACGCCAGGCTGGTGGGGCTGCAAAGATGCTTCTACGACAACAAGCTCTTCATCGTCTCATAGCGCTGAGATGAGATCGACTGCCACGCCGATACCATGA +>XM_012484966.2 PREDICTED: Apis florea spindle and kinetochore-associated protein 1 (LOC100864548), transcript variant X2, mRNA +AACTTATTGATAAGAACGCCATTTGTAAACGATATCGAATGAATTAAATTCAAAGTTTACAAACGGCGCCAGGAATGACCGTTATTTGTAATGCTATGTAAAAATGCAATTAAAGAAGAATTCCTTAAAATGCGCATAGTACTTTCACAAATGTGTAATGGTATTGAACAGATAAGGAAAAAATTAGTTGATATGAGAAAACAAAATAATCAATGTAGAGAATTATTGTCATTCATTGAAACTTTGGATAAAAGAATCATTCATATGGAAAAAAATATTCCACATGAATTAATTCGTGACTATAATGAAATTGAAAATTCTTTATCAATGAAAAGTATATGCAAGAAAGAGCTTATACAAAAATCACCTATAATAATAAGAAATAAGAATGTAGAAAAAGAAAAGACTCCAATAAAAGATTGTAAAAAAATATTATTTAACGAACTTGAAGTTTGTCCTACGATATCTTTGATAAGTGAAGATGAGTTCAATAAAGTTCCAAAATATATTATTGGAAGACAATCTTTAGAAACTGTAAATGATTTCATAAATACTATTAATCACATTTTAAAAACAAAATATACATTTTTATCATTGGGAAAAGCTCATGCAAGAAAGCAAGGAGATTTAAATCTTTATTTGCACTATAAAAAACAAGAATTAGATTTATGTAATGATTCTGAATACATATATTTCTTTACTGGTGAAGATTATGAAAAACAAATGAAGTCTAAATTAAATAAAATAAAATTAAATCTAATAACAGTTTTACGACATTGCAAAAGATTAAGAGAACATAGGATAAAAAACGACTTGCGATATGTAATATTAACAAAAAAATAATTGCTTAAGTTTTAAATTAAGTAATAAAATAAAAAGATTGCATAATAAATTGTTTCATTGTACAAAGAAGTTAAACATATAATTTTATATATTTTTTTTATAAGTTTTATAATAATTTAAATGATACATATTTTTATGTGTAATCAATACTATTGTAAAATATATTTCTATTATTCCAT +>XM_047672130.1 PREDICTED: Vanessa atalanta protein claret segregational-like (LOC125064848), mRNA +ATCACGAACAAGCGTAAATATTCGAATTTTAAATTATTGCGTCCGTTTACTAATCTGACAAACGAAACAATTGTTCGTGTTTCAAGTGAATGTTGTTTTAATGTAATATTTAAATAAATAAATAAGATGTCTCGCATTCCGAAATTTCCTTCTACTGCTACAAAAGAGAATAAACCCACATTTACAAATGGGCGTAATACAACGCGAACATTAGGCATTGGGCTCAGTGACGCTGATAAAAAAAGCTTACTATTAAATCATACAAAACCAATGCGAAGTACAACATCCGCCAACACTGTAGCTGCGCCCCGCCTTAAAAGATCAGCTACAGCACCTTCCTCCGCTACGGTACCTAATAAAACAACTAAAGTCGAAAAAAAGACGACTACTGTAGCACCTAGGATTGCTCCTTATGATTACAAAGCCAGATTCAATGACTTGGTGGAAAAACATAAAGCCATGAAAAGTGAATTGAATGATTTAAGGGACAAACATTTGGAAGTATCAGACGAATATGAAAAAGTTAAAGAAACAGTTGAAGGAAGTATTACTGAAAGAGATACATTGAAGGATAAATTATTAAACACTCTCAAAGACTTGAGACAGAAGTCTAATGAATATGAAAGCCTAAAGCTGGATTATGAAATACAGAAACGGGAGAATGAGGAATTAAATAATAAAAGTAAACTTTTAGATGACGTAACTAAAAGCTTGAAGTTAAAAATAATGGAATTTGATAAACTTAAAACAGAATTTGATGATTTGACTCGACGTCATAAAAGTCTTAATGAAGAAACTGAGGCTTTAAGGGTTTTGACTGATCACCTTAAGAAAATATCTGTAGAATATGACAAATTGCAATTAGATTATAAGGATGCAGTTTCCACAATAACAAAAAATAAAACAGACTCTGAGGCTTTGCAAAATATTTTAGCGACTATGTATAGAGATCAAAGAGTTTTACGGAACACAGTGCAAGATTTAAAAGGTAATATTAGGGTCTACTGTAGAGTACGACCTCCACTTGAGTCAGAAGCATCCAAGCCTTTGTACAATCTTAATGTCCTTGATGCATGTTCTATAGAAGTTGAAAAGATTGAACTTCTGAATTCTGCAAGAAAAGGAAAATCACAACATTCTTTCTCATTTGATGGGATATTTACACCACACTCCTCTCAAGAGGATGTCTTTGCTGAAGTGTCTCCAATGGTACAATCTGCACTAGATGGTTATAATGTGTGTATTTTTGCATATGGTCAAACTGGCTCTGGAAAAACTTATACCATGGAAGGTGGTTGTGGAGTTGAACAGTATGGTATTATACCACGAGCAATAAATATGATATTCACATGTATGGAAGATCTTAAAAGAATGGGATGGGAATTGACAATTAAAGCATCCTTTTTAGAAATTTACAATGAAATAATTTATGATTTGTTAAACTCAAGTAAGGAACAAGAAAGTCATGACATAAAGATGGTTAATTCGAAAGGCACAGATTTGTATGTATCCAACTTGAAAGAAGAAGAAGTGAAGAGCTCTCATGATTTCATCAGATTGTTGATATTTGCTCAACGTAACAGACAAACTGCGGCTACATTGAACAACGAGAGGAGCTCCAGATCTCATTCAGTTGCACAAATTAAAATAGCAGCTATTAATGAAAAGCGTAAGGAAAAATTTACTAGTAATTTAAATTTGGTGGACTTAGCTGGATCTGAGAGTGGGAAAACCACTCAAAGAATGGATGAAACAAAACACATTAACAGATCACTTTCGGAACTTTCAAAGGTGATATTATCTCTACAGACTAATCAGTCCCATATCCCATACAGAAATTCTAAGCTTACACATTTACTAATGCCAAGTCTAGGTGGCAATTCAAAAACTCTTATGTTGGTTAATGTTAATCAATTTGATGAAAGTTTCAATGAGACTCTTAACTCCTTAAGATTTGCCACAAAAGTTAACAGCTGCCGAACTGTAAAAGCCAAGAAAAATATAACAATGGTTGACTCATTATAATTTTTACATTGACAATATTTTGCTTTAGAATGTAGTACACATGAACACCTATAGTTATACCATCTACTGTGAATTGAATATTATCAGTATTCTGCTTTAACATACATATTTGTATTGAATACTATTAATAAGTGGTATAACTAAATGTGCTTTACTATTTTGTTTTATAGTTAATTTTTACATGTAGTACTAACTTCCCACTGAATATTCCACCGATAAATGTTTTTACTGTTGTTCTATAGTATTTTGAAATATTGTGGGATTTTAGATAATCAAGAGCTCTTATAGTTTTAATTATTCAAATGACCTTAAATAGCTATTACAAAATAACAAGTCTCATTATTTTTATACAAAAGTTTTAGAAGCATTTTTTTGGATTTGTTACTATAAATGTGGAATTCGATATATTATTAAATAAAATAAATAGTGTGAAAGTTCATATACATTCTAAAGAATGTGAGTTGATATTGAAATATTTTGAAGTATTGTGTTAACTGAACTAAAATAATGACAGATTAATTTACTTACTGTTTATATAAATACTATGGCAATAAAATAATATAATTTTACAAATTGTCATAATTTGAATTTGATCCTTTTAAGGCAGGTCTTTGAGTACCATATACAGGTGAAGTTCTAACAATTGACTCACTTTAAATTCCTACTTATAAAATGCCTAATTGACTTATTTAGGAAATTATTATTGTTATTTTTTTACAAATTGGCAGGTTGAATTTGACATTTTAAAGTTTAATTTATTGGGTAGATCAAAGAATATCATATCTGCTTTTATGAAATATCTATTAGGTATGTTTATTACTACTTTTCATTTATATCCTATTCAATTCAATTGAATTGTATTTCTAAAAACACATTATCTTGAAGTAATCTGTTCAGTAAGGTGTTATTTTTAATTTT +>XM_025561023.1 PREDICTED: Sipha flava GTP-binding protein 2 (LOC112688017), mRNA +GCTAGTTTTTTCGCGTCCGAAACGGTGCCCGATCGTTGCGAACGTCCCGAAATTGAATTTTATGTTTGTTCGCGATCCGTCAGCGTTTGGGGCCATTCGAGTGTTTTTCGTACCGACGCGGAAAAGCGGAAGCGACGGGAAAAACACCTGTTCGACGACCTTGAAAACCAACATCGTTAGTCATCGATTATTATTGTTTCGTTTCCCGTTGCGGGTCTCCGTCCCGCGATAATGCCTTGATAACGCTTGCCGCTATCTTATCCGCCGCTACTACGACGAGACTTCACTGACCTTTGGCTCTCGTTTTGTTTATAAATATAAGCCCGTCGCCGTACGTTGTTGCCGCCGTCGGCACTCCTCCGTGTCGCTTGGCATCGGTCGCCAACAGATCAACAGCTGTGACCCATCTGTCGAATGATCGTTTCAAGAATCCCGACGATTATCACCGCGCATCGTATACGGCCGTCGACGCTCAACGACGATGGATTCGTTCCTGGACCTGTTCGATCCGGGCACCAGCCCTCCGTCTAATTGCGACGTATGGCCAGCGGAGGACAATGACGATGTCACCGCAAGGCTACCGCCGGAGCCTCAGATGGGCAATGTCGAGTACAAACTGAAGCTGATCAATCCGTCCAAGTTGCGCTTTGAACATCTGGTCACGCAGCTGAAATGGCGGCTCAGAGAGGGTCACGGCGAAGCCATTTATGAAATCGGCGTTGAAGACACAGGCATGCTGACCGGCTTGTCTGCTGAGGATATGAAATCTAGTCTAATCACCTTGGATGAAATGGCCCGTAAATTAGGTGCTACTACGTCGGTGCTGCGAGAGAGATCAGTAAAAAAAGACAAAATGGTTGCTGAAGTTCTAGTTCGAAAGGTTCCAGATGACCAAGAATGTATAGAAGTGATGGTTGCTGTATTAGGAGGTGCTGATGCTGGCAAGTCAACTCTTCTTGGTGTATTAGCACATGGTGAATTTGATAATGGTCGTGGTAGTGCTCGATTAAATGTTTTAAGACATTTACATGAACTACGATCTGGTCGAACTTCTTCCATATCTCATGAGATTCTTGGTTTTGATACTGAGGGAGATGTTATCAACTATCAAAAAGCCCGTACAGCCGAAGAAATTCGAGATCGCTCATCAAAGCTGATCACATTCCTCGATTTAGCTGGACATAAAAAATATCTTAAAACTACTGTAGCTGGTTTGAGCGGTTACTGTCCGCATCATGTTATGTTGGTTGTGAGTAGTCCAGCTGTAACTGTTTCTAGTCCTACTCAATTGGATATGACCAAAGAGCATATGGATTTGGCATTAGCACTTAGACTTCCATTTTGCATTGTTGTTACAAAAACTGATATCACTCCAGCAGATAACACAATTAAATGGTTGGAGTCTATATTGAAATCCATTGGATGCAGAAAAGTTCCTTTTGTTGTTAAATCTGATGATGATGTTTTAACAGCGAGCTCTGCACAGCCAACTCAAAATGTTGTGCCTATATTTACCATTTCTAGTGTTACTGGTGAAGATTTAGACTTACTCACAAAATTTTTATATGTTTTACCACCAAGTATTAGTATAAAAGATAAAGAAAGATTGGAGCAGGAGTGCTGTCAGTTTCAAATAGATGAGATTTTTAAAGTACCTGATATTGGTACAATTGTTGGTGGTGTACTTGTCCAAGGTGTTGTTAATATTGGTACAGAACTAGTTATAGGCCCCTTTGATAATGGAACATTTGTTCCAGTAACTGTGCAATCTATACATAGGAATAAAGCTCCACGTCGAGTTGTAAAAGCAACTCAAAGTGCTTCGTTGAGTTTGGAACAAAGTATTCCTGGATTACGTAATGGAATGGTGCTCTTGGGATCGGGTGTGAATCATAGTGCTTGCATATTCTTCCAAGCTAGAATTGTTGTACTATATCATGCAACATCTATTCATAATGGATTCCAAACCACTGTACATATTGGAAACATACGGCAAACTGCGGCTATTGTTGCTATCATGGAATGTGATAAACGAGGTATGCATACTAATGACACAGCATCAGTAATATTTAAATTTGCACGTCATCCAGAATATGTCACTGAAGGTATGCGGTTATTGTTCAGAGAAGGACAGACTAAAGGAATTGGAATTGTTACTCAAGTATTTGCTTTGCAAGTAGTTGCTGGATAGATAACATTGTTTTTATTGACTTACAACTTTTATTTATATAACCAATAGAGGTAAAATGTACACAGTTACATAATTTAAACTTATAAAAATCACTTTATACACATAAGAATATATATATATATAT +>XM_036413688.2 PREDICTED: Pipistrellus kuhlii TATA-box binding protein associated factor 8 (TAF8), transcript variant X2, mRNA +AGAAGCATCACCTGGAGAGGTGAACAACACGTGGTCTCGGCCCCTCCCGCAGACAGCGAGGCACTGATCCTGGGCGGGACCTAGCCAGGTGTTGCTAACAGTCACGTTTGGGGCGCTCCAGGGGGGATGCTCTTTATGAGAAACGATTTCAGGGGGAAAGAGGTGTGCAAGCGAGGACGCATTTCCCGGGCCAATTCCGAGGGTCACAGCAACCCGTCGCTCAGTGTGGGTCACGTGCCCAGGGTCATCAGAACCCCCCATCCCCCGCCTCGGCAGGGCTTTGGAAAACCCAGAGGTGCGAGCGCCGCCTCGCCCCGCCCCTCCCCGCCGGGCGACTACAAATCCCATCCTGCCCTGCGCTCGCGCACGTTACGCCAGAGCAAGATGGCCGACACGACGGCCTCTGCGGGGGCTGGCAGCTCCGGAATGAGATCAGGAAGTAAACAGTCCACTAACCCTGCTGACAATTACCATCTGGCCCGGAGGCGAACCCTGCAAGTGGTTGTGAGCTCCTTGCTGACGGAGGCCGGGTTTGAGAGTGCTGAGAAAGCATCCGTGGAAACACTGACAGAGATGCTTCAGAGCTACATTTCAGAAATTGGGAGGAGTGCCAAGTCTTACTGTGAGCACACAGCCAGGACCCAGCCCACGCTGTCAGACATTGTGGTCACTCTTGTCGAGATGGGTTTCAACGTGGACACTCTCCCTGCTTATGCAAAGCGGTCTCAGAGGATGGTCATTACTGCCCCTCCAGTGACCAATCAGCCGGTGACTCCCAAGGCTCTCACTGCAGGGCAGAATCGACCCCACCCGCCGCACATCCCCAGCCATTTTCCTGAGTTCCCCGACCCGCACACCTACATCAAAACTCCGACGTACCGCGAGCCTGTGTCTGACTACCAGGTCCTGCGGGAGAAGGCTGCATCCCAAAGACGTGACGTGGAGCGGGCGCTCACCCGCTTTATGGCCAAGACGGGCGAGACCCAGAGTCTGTTCAAAGACGACGTCAGCACGTTTCCACTGATTGCTGCCAGACCCTTCACCATCCCCTACCTGACAGCTCTTCTTCCGTCTGAACTGGAGATGCAGCAAATGGAAGAGACGGATTCCTCGGAGCAGGAAGAGCAGACAGACACAGAGAACCTCCCTCTTCATATCAGCACGGATGACTCTGGAGCCGAGAAGGAGAACACCTCTGTCCTGCAGCAGAACTCCTTGTCCGGGAGCCGGAGCGGGGAGGAGAGCCTCATCGATAACCCCTACCTGCGCCCCGTGAAGAAGCCCAAGATCCGCAGGAAGAAGCTGGACTGGGGCATAGGAGCAGCTGGTGACGACCTCATTCATTATCACAGGACCTCATTCCTTTGACCTGAGAGACCAGGGAAGGCAGCAGAAAGAAGGGGCTGTGCCTTCTCTGCTTACTCCAGAAGGACTGTTCACCTCGTTTCTGTTTCAGGCTATCCCGGTCCCTCTTATTGACTCACAGACAATGTGTAGCATCAGTTTATCACTTGCTTTGCCTTGGTGGGAACCTCATTCTTATTTCTCTTCTCACCTGGGCGCCGAGTGCCCTGCTGAGATGACGGAAGGTGACTTTGCCTTCCCACATGGCACTCCTTGACCTGGGCCGGCAGGAGTCGGGAGGGGTGAGCAGGCATGTCACGTGGAGGAGGGTGGTGCATCACAGCACACCAGCTCTCTCATCGCATTTGGTGAACTCTTCCTTCAAGGCAGCGCCCTCTCTGGGGGATTGGTATTTATCGTCCCTCTGTGGAATGTGTGCTTTGGGCCACTGAGTCCTGCCCCGTCCAGGAAAAGAGCTTTCTCTGACAAGAGCCTCTGCAGGATCTATTCTGCTGTGACTTGCTGGAGGAATCCGACCTTAAAGAGCAGGAAAGGGATTGGGGGGGAACGGGGGAGAACTTGAGGGCTGGATGGCCTGTTTGCTGGGAGCCGGGAGCCCGGGGCGTCTGCTGGAAGCCGGCACAGAAGGGCGCCGTGCGTGGAAGCCAGTGGGCCAGGCCACGGAGCTCTCCCAGAAGGTCTGAGTCTGTTCAGCCGCTTTGCATCCTGGGGAGAGATTTCATCCTGCCTGAACCTACAGATCAAAACAAGTGTTTAAGGAAGATGCTGGACAAGCTGATACCCTTTGGCTGGTCTCTGAAAGAAGAGATT +>XM_042281434.1 PREDICTED: Peromyscus maniculatus bairdii phospholipid scramblase 1-like (LOC102915703), transcript variant X4, mRNA +TTTGAAACTGTTAACAAATACAAAATCAAGGACAAGCTTGGTCAGAAAGTTTACTACGCAGTCGAAGAGTCCAATTGCTGTGCACGCAATTGCTGTGGGGACTGCAGGTCTTTCTCTATGAGGATTCTTGATAACTCAGATGGAAGTCCAAGCTCCTCCTGGTGTGACAATAGGTTACGTTGTTCAGAACTGGCACCCATGTGTTCCAAAGTTTACAGTTCAAAATGAGAAGAAGCAGGATGTTCTCAAAATTGTCGGTCCATGTATCATATGCAGCCTTGGAGGAAACATTGATTTTAAGATCAAGTCTCTTGATGAAAAAATTGTGGTTGGTAGGATTTCCAAGCGCTGGTCTGGTTTTCTGAAGGAGTTACTGACAGATGTGGACAATTTTGGGATCCAGTTCCCGATAGACCTTGATGTAAAGATAAAGGCTGTGATGCTTGGAGCTTGCTTCCTCATAGACTTCATGTTTTTTGAAAGCAGGCCAAATCAGAAATGAACACTATTATATTCATGAATTGATGAACGAGTCCTCAGAATATGTGAAGCTGGAACACTGATTGAGAATAAAAGGCAACATAGTGATTTCTTTCATTGAAATCACTCATCTCTCCTTGAATTAAACTAGGATGTACATAA +>XM_019798545.2 PREDICTED: Ailuropoda melanoleuca pleckstrin homology domain containing A6 (PLEKHA6), transcript variant X5, mRNA +TCCCCCCACCCCTGCGGGCGGGCGGACAGTGGGGGCCGCTGGGCAGGAAGCCCTCCCCCCTCCCCCGCGGCCCGGGGGGCCCGGAGCGAGCGGGGCTTCTGGACGCCGAGATGGCCGATGAGATTGACTGGCTCGACTTGCCCGGCCGGTGGGCCTACGGCGTTGACCGCGGTGGGAGAGTCTTCTTCATCAATGATGAGGAAAAGTCAACCAGCTGGGTGCACCCTAGCACGGACTCCCCCATCCAGAGTGGACACTCCTCCAGCCCAGAATTGCCCAATGGCTGGGAGATGGATTCTACCCAGGAAGGAGCTGTGTATTTCATCAACCACAATGAAAGACGGAATACATTTCTACACCCAGTGACTGGCCAGGTCCCAGAAGAAAACAAAAAATTTAACTTGAAAACATCGGCCTTGGACATGTCCAATAAAGCAGGTGGGAAACAACCGGCTATCACCAACAGTGACGTACCCAACCACAACATGGTGTCTGAGGTCCCCCCAGAGCGGCCCAGCGTCCGGGCAACCCGAACGTCCCGCAAGGCCATCGCCTTTGGGAAGCGCTCACACTCCATGAAGCGAAATCTCAATGCACCTGTCACCAAGGCGGGCTGGCTCTTCAAACAGGCCAGCTCCGGGGTTAAGCAGTGGAACAAGCGCTGGTTCGTCCTGGTCGACCGCTGCCTCTTCTACTATAAAGATGAAAAGGAGGAGAGCATCCTGGGTAGCATCCCCCTCCTGAGCTTCCGGGTGGCCGCGGTGCAGCCTTCGGACAACATCAGCCGAAAACACACCTTTAAGGTGACTGCGTGCTGGGTGGATGAGGCCGGGGCCAGTTCCACGCACTGCCTCTCCCCACAGGCCGAGCATGCCGGGGTCCGCACCTACTTCTTCAGCGCCGAGAGCCCCGAGGAGCAGGAGGCCTGGATCCAGGCCATGGGGGAGGCTGCCCGAGTACAGATCCCCCCAGCCCAGAAGTCCGTGCCCCAAGCTGTGCGTCACAGCCACGAGAAGCCAGACTCTGAGAACATCCCACCTAGCAAACACCACCAACAGCCAACCCACAACAGCCTCCCGAAGCCCGAGCCCGAGGCCAAGACTCGAGGGGAGGGTGATGGCCGGGGCTGCGAGAAGGCCGAGAGGAAGCCCGAGAGGCCCGAAGTCAAGAGCGAGCCTCTGGTGAAAGCCAACGGCATTCAAGCTGGACCGGAACCAGCCTCGGAGCCCGGCAGCCCTTACCCCGAGGGCCCAAGGGTCCCAGGGGGGGGCGATCGGCCCGCTCAGCCCAACGGCTGGCAGTGTAGCTCCCCAAGCCGACCAGCAAGCACAGCTTTCCCGCCTCAGGACTCAGAGAGCGGAGGACACCAGCGGAGCTTCCCCCCACGTGCCAACCCCGACAAAATCGCCCAGCGCAAGAGCTCCATGAACCAGCTTCAGCAGTGGGTGAACCTGCGCCGAGGGGTGCCGCCACCTGACGACCTTCGGAGTCCCTCTAGGTTCTACCCCGTGTCCCGCAGGGTCCCTGAGTATTACGGCCCCTACTCCTCCCAGTACCCAGACGATTACCAGTACTACCCCCCAGGGGTGCGGCCCGACAGCGTCTGCTCGATGCCTGCCTATGATCGGATCAGCCCACCCTGGGCGCTGGAGGACAAGCGCCACTCTTTCCGCAATGGAGGCGGCCCTGCCTTCCAGCTGCGGGAGTGGAAGGAGCCCCCAGGCTATGGGCGGCAGGATGGCACCGTCTGGCTCCCCGGCCCCTCCCCCTCCCGGCAGCCAGTCTATTATGATGAGATGGACGCCACCTCCGGCTCCCTGCGCCGCCTGTCCTTGCAGCCCCGCTCCCACTCTGTGCCCCGCTCGCCCAGCCAGGGCTCCTACAGCCGTGCCCGCATTTACTCCCCCGTCCGCTCACCCAGTGCCCGCTTTGAGCGCCTGCCACCTCGCAGCGAGGACATCTATGCCGACCCTGCTGCCTATGTGATGAGGCGATCCATCAGCTCCCCCAAGTATGATTACCTGGGAGACAGGCGACCAGTCCCTGCAGGACTGTTCCCCTACAACTACCCACCATCCCCCACGGTCCACGATAAGATGGATGAACTTTTAGATCTTCAGTTGCAAAGAAACCTAGAGTATTTGGATCAGCAGATGAGTGAGAGCGAGACTCTCATCAGTATGGTGAACCGCATGGTGGAGAACTCCTCCCCCAGGGCCCAGATCTTCATGCAAGTCCCTCCGTACCCAGAAGTGTTCCGGGACGGTCTCCACACCTACAAGTTAAACGAGCAAGACACAGATAAGCTGCTGGGAAAATTGTGTGAGCAGAACAAGGTGGTGAGGGAGCAGGACCGGCTGGTGCAGCAGCTCCGAGCTGAGAAGGAGAGCCTGGAAAGTGCCTTGATGGGGACCCACCAGGAGCTGGAGATGTTTGGAAACCAGCCCGCCTACCCGGAGAAGCTGCTGCACAAGAAAGAGTCCCTACAGAACCAGCTCATCAACATCCGGGTGGAGCTGTCTCAGGCGAGCACGGCCCTGGCGAACAGCACCGTAGAGTATGAGAGCCTTGAGTCAGAGGTGTCTGCCCTGCATGATGACCTCTGGGAGCAGCTCAATTTGGATGTCCAGAATGAGGTGCTCAACCGGCAAATCCAGAAGGAGATCTGGAGGATCCAGGATGTGATGGAGGGGCTGAGGAAGAATAACCCATCCCGGGGCACAGACACGGCCAAGCACAGAGGAGGACTTGGCCCCACGACCACCTACAGCTCCAACAGCCCCGCCAGCCCTCTCAGCTCCGCCAGTCTCACCAGCCCACTAAGCCCCTTTTCACTGGTATCCGGCTCACAGGGGTCCCCCACCAAGCCTGGGTCCAGTGAGGAGCCCGGTCCGCCGCGGCCCCCCCTCCCCAAAGCCTACGTACCCCTGGAGTCTCCTCCAAACGTGCCGCCGCTCCCTAGCGAGAGCCGCTTCTGGCCCTACCCCAGCTCCCCTTCCTGGCACCGCGGGGGCGAGCCAGCCAGGGGTCAGCCCAAGGCAAGCCATGAGCAGAGCAAGAAAGACACCCCCCAGACGTCACCCCTGGACACTGCTAGAGACATCAGCCTTGTGCCCACCAGGCAAGAGGTGGAGGCAGAGAAGCAGGCAGCTCTCAACAAAGTTGGCGTTGTGCCTCCTCGGACAAAGTCGCCCGCTGATGAAGAGCTAACTCCGTCGAGAGTGGTGAGGAGGAGTGCCAATGGGCTTACCAATGGACTGTCCTCCCGGCAGGAGCGCCCCAAGAGTGCCGTGTTCCCCGGCGAGGGCAAGGTCAAGATGAGCGTGGAGGAGCAGATTGACCGCATGCGGAGGCACCAGAGCGGCTCTATGAAGGAGAAGCGGAGGAGCCTGCAGCTCCCGGCCAGTCCGGCCCCCGACCCCGCTACCCGGCCTGCCTACAAAGTGGTGCGCCGGCACCGTAGCATCCACGAGGTGGACATCTCCAACCTGGAGGCAGCCCTGCGGGCAGAGGAGCCCGGGGGGCAGGCCTATGAGACGCCGAGAGAGGAGATTGCCCGGCTCCGCAAAATGGAGCTGGAGCCCCAGCGCTACGACGTGGACATCAATAAGGAGCTCTCCACGCCCGACAAAGTCCTCATCCCCGAACGGTACATTGACCTGGAGCCCGATACCCCCCTGAGCCCCGAGGAGCTGAAGGAGAAGCAGAAGAAGGTGGAGAGGATCAAGACGCTCCTCGCCAAGTCCAGTATGCAGAACGTGGTGCCTGTCGGCGAGGGGGACCTTGTGGACGTGCCCCAGGACTCAGAGAGCCAGCTTCAGGAGCAGGAGAAGCGGATTGAAATCTCCTGTACCCTGGCGACCGAGGCCTCCCGCAGGGGCCGCATGCTGTCTGTGCAAGCCCTGGCCGAGGCCAACGCTGCGAAGCTTCACAGAGCCACGTTCTGAAGGCCTCCTTCGCCCCCTGAGGTCGCAGTTCCCCACCCTGGCCCCCTGCCCCTGCGCTCCCATGGGCATGCTGCAGGGAGCCAGGCTGGGGGCCGGGGGTGCTGCCAGGACGTTACCTCCGTGTCCACATGCCCACCACGCCCGGCCCTGAAGCCCTCGCTGCTCAGATGGCGACCCTAGGCCGGGGCCTTAGATGGTGGGCAGACAGCAGCCCACATCCCAGGGGCTAGGCCTGGCCCTGGCTGGTGGTGTGACGGCCCTACTGGAACATTCCCAGATGAAGAGGATGCCCTGGTGGGGAAGACGCTCTGGGCTCTCTTAGGTTAGGAGGAGGGTGAGGAGAAGATGGACACTCGGCCTCTTCCGGCCCCTCCTGACACCGAGGACGGCACCTGCCATCAGGTCCTTCCCCCATCGACCCCACCCTGCTGCCCCAGCTGCACCCGGGGCTTTGACATGTCTCTGCTTATGGGTGTTCCTTTGGGGTCCAGTGGAGACTGACCACCCTGCTTGAGCCAAAGACAAGATGACAGGAGCTGGGGAGAGGCACCTCAGCTCCCGGAGGGGACAGTGCTGGCTGTGGGTAGAGAGCGGCACGCAGGTCTGCGCAGCGTCTGAGGACAGGTTGAGAAGGGGGAGAAGAGAGAAAGGGAGAGATGCAGGCAAGTGGGAGGACAGGGGAGCGGCAGGACTCCTTTGCAAGTAAGAGGGTGAGGCGGAGGTGGAAAGGGGCTGTGAGAGGGATGGGTTTCCCCGGGAGGGAACCTTAGCTTAGTGCCAAGTACAGTCCAGACTGTCAGCCCTGCTCCTGCACCGGGTACCCCCGATCCGCGGGCCTGCCCACACACTGGCTCCAGGAGGACCCACCAGCGAGCACATGGTGACCGTCGCTGCAGCCATGGGGACGAAGGTGTGGGGATGCGGGTGTGGGCAAGTAGGTGGGAAGGTGGCCCTTTCTGGGTCTGGGCCTGGTGTCTGCCTCCCCCACCTCGGCTCAGGGGCAGAGAGAGGGACCTGTGTCATGTAGGGTGTTGTCAGCCTTGGGGCCTTTCCTAACCATGTTCGGGACATTTTCTTGTCCCCCTTCTCCCTGGAATGTGCTGTGAGCCAGCTGAGAGAGTGCCCCGGAGAGGAAACACAGCCTTAATCTGGGAGGCTAGATTCTAGGGCCCCATCCCGCGTCCCAGGCATCCCCAAGGAGGACCAGGTGAGGCTGTACGGAAGGACCCCCTTCTGGTCTGGCTCTCTCACCATCTGCCTACCCGGGGAGGCCAGTGAAGGAGACACAGAAGCAAAGCTCACTTTTCCTCCTTGCCTCTCATCTGGGGGGGACGGTAGCCAGGGAGGAGGGAGGGGAGAGAGTGAAGCTGGACACACCGGGGCCCCTAGGCCTTCTCTTTGCCAGAGTTGCTGCCGGGAGACTTCAGCCTCCAGTGGCCCCAAGAACAACTACTTTATCTTCCAGCACTTCTCCACTCCTTCACAGCTGGGCCAGTGAGTGGTTCATATGCAAGTAAAGATGGCAGTTCATTCAACAAATATTTATCGAGCACCTTTTACGTACCAGGCACTGTTCTAGGTGCTTAGGGTATTCTCGTGCTTCTGAGGGCTTGCAGACTGGGGAATTCCTCTTCCCTTTTAGCAGACGTTTGGAACATGGCTACACTTCCCGTCTGTAGCATCACTCAAGCACCCTGTCCCTGTTTCCCCCCCCCACCAGACTGGCAGGTGGGATTGGCCCTCTCCCTCTTTCCAACACCTTTCTCCATCCTCGAGAAATGGCTCTTTCGGGGCCTCCATGCCTTTCCCCTTTGTCTCCCCTTTGTTTTAAGTGATGTTTGTAGACGTACGTGGAAAATACCAAGGGTTAAGGTCTGCATCTCTGCCACGTCTCGCTCTCATCTCATAAAGCTGGCTCTTTATGTTGCTTTACATGCCTTAATATATGTTTTATGAAGATTATACATATTATAGATATATACATAATATATATATTTGTTTGGACGTCTGATCCTTTCCCAGAACTCCTGCCCAGGCCCATTTTCCCTCCTTTACTTTCCACACCATTCCTAGCATGTGTCGGCCACACCCCACGCCTTTTGATCCAAAGAAGGGGAGAGGACGGTCTTATTTTAAGACAGATCTATTTTACGCTTTTGTTACAAAAGCAAATCTATTTTCAAAATGTGCAATGTCTGAATGGAATCAGCAAGTAATACGAGGAGATTGGGCGGCTGCCTCTAGGTCCAACCCTGTGTCCTTCCCTCTCCCCGCCCCCCCGCAGCTTCCTCCTCCCATCCCCCAGTCTGCAAAGGGCTGGTCCCCAGAGCTCACCCAGAGAGCATCTTACCAGGGCGGGACGTTCTCTTAGAAGTCCTGGTCTAAGGATTTGATTACACTGTCAACTCTTGACGGCCCTCTAGGGTTACGGGATGTGAATCCTCTCGAAGGAAATGTTTATAGCTGTGTGCACAAAAATACACCCCTGCGGGCAACCCGCCCCCCAAGTGTACTCCTGGACCACCTCCCGTCACCAATCTGCTGGAAAGGGCAAACAATTTAATGACAGCCTATGCCAAGTGGCACCAAGAACTCCACTCCCTGACGGAGCCAGGATACAGTACAAAGGCCAAAGGAAATGGTTTGGGACCACAGGTCCTTCAGCACAGACACATTTGAGTTCCTTGGACTTCTCACACTCCTTGATCCCTTTCTGGTCTGGGTCACATCTACAACATCTGTCTCCCTCTGTTACCCTTCCTCGGGGGGCTGTTGTTAAGGGGGACGGTTGCTCAGTCTGGCATCCAGACTGCACAGTCAGCTTCTGGGCTGAAGCGGGTCCCACGGATGAGGTGACATCTCAGCCTTGCCCAAGAAGCCCCTAGGACTGTCCTCTGGCGGGCTGCCACCGGGACGCTGAACTCCGCCAGCTCAGCCTTGCAAACTGCTTAGCAGCTGACGTAGTAGGCAAGGGGCTCTTGCCTCACAAGGATCTGGGCAGAATGGAAGTCTTTTGTCCAGATCTGAAATCAAGGGTTTGGGACTGTCACAGAGCTCCTGGCCAGCACTTGAAACCTGACCTCCCAACTTTGACATGTACTGGCGTCCTGTTCCCAGCCTAGAGCGTCTTGTTATGAAAGAATGGGGCCCAGATGGAGGCCCAGGGCTAAGTGACCCAGCGGGGACAGCCCTGGTTGCTATTCTGGGGCCTTGCCAATTAGCACATTACCTCCCTGATCAATAACCAAGAGGCTGTAATCAAATACGGCTACTGTCACTTTAAAGATTTTTCTGAGGTCGCAAGCTGTGCTCACTTGCTCTCCTGCCTTGGTGAGAGGCATGTTCTTGGGGCAGGGCTGACCATAGCAAGACGGAATCGATTCCTTTCCCCTTTAGGCACCCCCTACCTGGCAGCTCTTAAAACTAAGGAAAATACAAAATATACATATATATACATATATCTATTTATGCACATACTGGGGCCAATTTGATCTGCTAGTATTAGACAATAAACCATACAAGGAAATGTATGATCTCAGTGTCTTTATTTAGTATAAAAGTGACCTTAAAAGAAAAGTTAAGGTTAGCTGAACAGAGGGCATCTCTATTGGGGGACCAAACATCTGTAGCCACCCCATAGCATCTTTTTAGCCAACAAGCCCCTACCCAGGAGGGGCATCCTGACTGATAGGTGAGCGCCTGCTTCCCCACTCCCCAGCATTCTTTTCAGATATAGTAGGTACTGAAGAACCCCAGTGAGCTCTGCATTTGTATCTTGCAAGTTTGTATAAACCCGATGCAGGAAATAAAATGAA +>XM_053554548.1 PREDICTED: Nycticebus coucang SH3 and cysteine rich domain 3 (LOC128560913), transcript variant X2, mRNA +CCTGTCATTTCAGCTCTGACACCAAGGCAAGAGGCTAGGAGGTCTACAAATATCGTCTAGGTAGCTGGTGTGAGTACAGAGGGTACTGGGGGGGCTTAGCCCCCAAGGAAGAGGACCAATCCTTACCCAGCACCACCATCAAGGCCCCAGGGCCTCCCACTTACTTCCTTCCACAGACTGTGGACTGACTTAGGGAATCCCAAATCTGCAGCGACTGAAGCAGTTATTCAGGAAGGGGTCTACGGGGACAAAGGAGATGGAGATTCCCTCAGAACCCCAGGCCAATGGGGAGGCAGTGGGAGCTGGGGGTGGGCCCATCTATTACATCTATGAGGAAGAGGAGGAAGAAGAAGAGGAAGAGGAACCACCCTCAGAACCTCCTAAGCTTGTCAACGATAAGCCTCACAAATTCAAAGATCACTTCTTCAAAAAGCCAAAGTTCTGTGATGTCTGTGCCCGGATGATTGTTCTCAACAACAAATTTGGGCTTCGCTGTAAGAACTGCAAAACCAACATCCATGAACATTGTCAGTCCTATGTGGAGATGCAGAGATGTTTCGGCAAGATTCCCCCTGGTTTCCGTCGGGCCTATAGCTCGCCACTCTACAGCAATCAGCAGTACGCTTGTGTCAAAGATCTCTCTACTGCCAATCGCAATGACCCTGTGTTTGAAACTCTGCGTACTGGGGTGGTCATGGCAAACAAGGAACGGAAGAAGGGGCAGGCAGATAAAAAAAATCCTCTAGCAGCCATGATGGAGGAGGAGCCAGAATCTGCCAGACCAGAAGGCAGCAAACCCCAGAATGGAAACCCTGAAGGAGATAAGAAGGCTGAGAAGAAGACACTTGATGACAAACACAAGCAGCCTGGCTTCCAGCAGTCTCATTATTTTGTGGCTCTCTATCGCTTCAAAGCCCTGGAGAAGGACGATCTGGATTTTCCGCCCGGAGAGAAGATCACAGTCATTGATGACTCCAATGAGGAGTGGTGGCGGGGGAAAATCGGGGAGAAGGTTGGATTTTTCCCTCCCAATTTTATCATTCGGGTCCGGGCCGGAGAACGCGTGCACCGCGTAACGAGATCCTTCGTGGGGAACCGCGAGATAGGACAGATCACACTCAAGAAAGATCAGATCGTGGTGCAGAAAGGAGACGAAGCCGGCGGCTACGTCAAGGTCTACACCGGCCGCAAGGTGGGGCTGTTCCCCGTGGACTTCCTGGAGGAGATTTAGGCGCTCGCCTGCTGGCGGGAGACACCCACGCCCCCATTCTGGGCGGGCCCAGTGGAGCTTGGGGAGGCAAGGGCAACAGCAACTGGACTGCCGGGTAGGCAGGGGCGGGAAGGCCCGCAAGAGCCTGACGGCTTCTGCGTAGGGGCTGGTTTCCGCCCCTTCCTGACCTAGGGCCTGGGGCCCTGACGCCCAGAGCAGCCGCACAGGCCTCGGACCTAGCCTTCGAGAGCTAGAAAAAGAAAATATCTCACTGGGGGTGGAGGGACGGAGGCACTAACTGTCGAATGTTTCGAATTCACTAAAGTTTTGACAAAAGTTAGAAAAGTTA +>XM_027475688.1 PREDICTED: Abrus precatorius basic 7S globulin (LOC113846927), mRNA +AATAAAAATGGTGACATATCCCCGCCCACACAGATGAAGATAGAAGATAAGCACACACAGTGACACGCTTGCCATAAAAAAAGGTAAAAGACTTAGAAGAGAGTGAGCAAGAACCTAGACGCAATTTCATTCTTCTTCAGCAGCAAAACGTACGACCCTCCCAACAACCCTTCTCTTCTCCCATGGCTTCCTTTCCTCTCCTCTTCTCCTTTCTCTTCCTGTCCCTCGTTCATGCTCAATCTTCACTTTCTTTCCACATCCCAGTCACCAAGGACGGTTCAACCCTCCAATACTTGACCACCCTCTCTTACGGAACCCCTCTTGTACCCACCAAACTCGTGCTTGATCTGGGAGGCCCTTTTCTCTGGCTTCATTGTGCATCGAGAAACACCCCTTCATCTTCCACTCTCACTACTCCTCACCGTTCAATTCAGTGCCTCACTGCAAAAACCCACAAACCCGATGACTCATCCTCCTCCTCTTCGTTTCTCTCTAGCCCCGTGGACGAGGACCAGTACCAACCATGCCAAGTTCTCCCAGAAAACAGCATCACAGGCACAGTGGCCACAGAAGGAGAGCTTGTAGAAGACCTCATGGCAGTACAATCATCTCACTTAGAAATCATTCACCAAGTTAGCTTCACCTGTTCCCCCACCAGCATGCTCTTAAACGGCTTAGCAAAGGGTGCTAGAGGCATGGTTGGTCTTGGTAGGTCTCGCAGTTCCCTTCCCTCTCAGGTTTTCGATTCCTTCAGCACACACAGGAAAATCACTCTCTGCCTCTCATCATCAAAAGGGGTTGTCCTCTTCGGCGACATGGCCTATTACGAGTCTTCTCCAGCCGTAACTGAGAGTCTTAAGTCTCTTACATTCACACCCCTTGTTACCAATTTCCCATCTCAGGAATACTTCATCAACGTTAATTCAATCAAAATCAACGGCAAGAGGTTGTCGTTGGACACGTCATCACAGTCCCTCGAGCAAGAGAACAGTGGTGGGGCTCTTACTTTGTTGAGCTCAATTGTACCCTACACCACCATGCAGAGCTCGATCTATGCTACTTTCAAGGCAACTTTTTTGGACGCTGCTGTGGCTTTGAACATGACCATAGTGGCTTCCGTGGCACCCTTTGAGCTTTGCTTTGAGGGCTCGCACGTGGGGGCAAGTGTGCCGGCGATTGAGCTGGTGCTGCAGAGTGAGATGGTGAAGTGGAGCATACATGGGAGAAACTCCATGGTTAGGGTAAGCAGCGAGGTTGTGTGTTTGGGGTTCTTGGATGGAGGTGTCAACCCAAGAAATCCCATCATCATTGGGGGGTATCAATTGGAGGAAGTAATAGTACAGTTTGATTTAGCTACTTCCATGGTGGGGTTTAGTTCTTCCCTTTACACTAAGAACACTGGCTGTTCCCATTTTAGATTCGGTTCCATGCTTGCAGACTCAGTTTGACTATTCGTTATAACTTCGATTATAGTACTGATTATTAAATTTTCTTCTTCAAACTATGTTTCTGAACTTTCTCAATTTTGTACGAGCTTGATTTTTGTGAAGCTTTTTTTGTTTATTTTTTTGGGGGGGGGGGTTTACTATTTAGCTGTACTAATCGAGGCTGATGAGATATTATGATCTTGTATTTTGATGGGACTTCTGCGTCAATTTGAGTTTTATGATATTGGAATACTAGTCGACTTTCAAGATGCTCGATTGAATTGCGAAACCTGAAAAATATCACTGAAAGATTCGTTTCCTTTCCTCCCTCTGTTTGATAAGAAGTGCATCCCACTGGGGAATTTGGACAGTGCCGAAGGAATAATCCTTTATGTACTGCAAAAGAAAAGGGTATGCTCACATAATTTGTTATGTATTTCTTTTTTTCGTTTATTACATCAAGATCTT +>XM_023724909.1 PREDICTED: Trichechus manatus latirostris CKLF like MARVEL transmembrane domain containing 5 (LOC101347816), transcript variant X5, mRNA +GGTTTCTTGGACCTTCCTGCTTCTGTCTGCTTCCTCATCCTGCCAGGTTTCAGTTTCCCTTCCAGGCTGCTGGTGGTGGTGTGGGGGGCTGTGCCTGGTGGGTCCCATGGAGATGCTTGGTGCTCGGGACCGCCTGGACTGGCCCCCCGAGGAGGGGACGGCTGCAGGGCTCCAGGCCTTCGCTGTGGACAAGAACTTCCTCTCCTCCCTCAGAGGCATCCTACTGGAAACCGAGCTGGACTTCCTCCGCTGTGTCAGTGCTATCGTCATCTTCCTGGTGATCTCCATCGCTGCTGTGACCTCCCGGGATGGAGCTGCCATTGCTGCTTTTGTTTTTGGCATCATCCTGGTTTCTGTCTTTGCCTATGATATCTTCAAGATCTACCAGACTGAGATGGCACCCAGGGCTACCGAGGCTCTTGGCCCGCAGCTTGTTGACCTGGGACTCAGCGATATCTGCCCGCTCCTCTGCCTCATCCAGCTCGTGCTGCACCTTGCGGAACTTGGAAAGGCATTCCTGGATGGCGAGAATGGTTAAGCACTTGGTTGTTAACTGAAAGGTTGGTGGTTTGAGTTCATCCACAGGCACCTTGGAAGAAAGACCTGGTGAACTACTTCCCAAAAACCAGCCATTGAAAACCCTATGGAGCACAGTTCTACTCTGACACACAAGTTGGAATTGATTTGACAGCAACTGGTTTGGTTTGGTATTTCGTTTTTAACAACAAGCTATGCTTTTAGGATATTCTTTGTTTTGCACTTCTTTTCCTTTTTCTATGAAAATGGGTATGTTCTAGACATTGCAGCTAAAATGACTCAGCTTTGAAGAAAGATTCCAAACAGCAAAGTTCTACTCCTGAACTCTTTAGTAACACGTTTATATGGGAACTATTCCGAGGAAAATGGAAACAACTTTTTTTTACTAGGGCAATATTCTTGAAATGATTGTAGTTGTAGAAAGAATGTATGTTGGGTAAGGAAGAGGGGACCAGGTCAGTGGATGGTGTCATCCCACATATATGTGCTAGATTATGGAACAAAACTCCACAGGGTAGTGCAATAGTTGGTCACAAAAACCCATTGCAGAATATAATTGAAGGGACCATGGTCTCAGGGAACATCTAGCTCAACTGGCATAACACAGTTTATAAAGACAATGTTCTACATTCTACCTTGGTGAATAGCATCT +>XM_006974484.3 PREDICTED: Peromyscus maniculatus bairdii ArfGAP with coiled-coil, ankyrin repeat and PH domains 2 (Acap2), transcript variant X7, mRNA +TGGCCGCGGCTGTCACTCCGGGGCGTTTTCCCCGGCCGGCTCTCAGCTGGGGCGGAGGAAGAGGCGGCCTGGGCCTGCCGAGCCGTTGCAGTCTCCGCGGCTGCTATGCCCAGGGTGCGCGGCGCCCTCCGCAGCTCCGCGCAGCGCTAGAGGCGGCCGAGCGCTCGCCGACGCCGCCCGGATCCCCGGTGCCTCCGCTCTCCCGCTCCCGCAGCTCCCGCGGCTCCTCCGGCGTCGCCTGCGAGGCCAGGCAGAGGCAAGATGAAGATGACGGTGGATTTCGAGGAGTGTCTGAAGGACTCGCCCCGCTTCAGGGCTGCCTTGGAAGAAGTAGAGGGAGATGTGGCAGAGCTGGAACTAAAACTCGATAAGCTCGTGAAGCTTTGTATCGCAATGATCGATACCGGCAAAGCCTTTTGTGTGGCAAATAAACAGTTCATGAATGGGATCCGAGACCTGGCACAGTATTCTAGTAATGACGCGGTGGTTGAGACAAGTTTGACCAAGTTTTCTGACAGTCTTCAAGAAATGATAAATTTTCACACAATCCTGTTCGACCAAACGCAGAGATCAATTAAGGCACAGCTTCAGAACTTCGTTAAAGAAGATCTTAGAAAATTCAAAGATGCCAAGAAACAATTTGAAAAAGTCAGCGAAGAAAAGGAAAACGCACTAGTGAAAAACGCCCAAGTTCAAAGGAACAAGCAGCATGAAGTGGAAGAGGCCACAAACATCCTCACGGCCACGAGGAAGTGCTTCCGGCACATAGCCCTGGACTACGTCCTTCAGATTAATGTGCTTCAATCAAAGAGGAGATCAGAAATCCTGAAATCAATGCTGTCCTTCATGTATGCACATCTGGCCTTCTTCCATCAAGGGTATGACCTGTTCAGTGAGCTTGGGCCCTACATGAAAGACCTTGGAGCACAGTTGGATCGACTGGTTGTGGATGCAGCAAAGGAGAAAAGAGAGATGGAGCAGAAACACTCTACTATCCAGCAGAAGGACTTCTCCAGTGATGATTCCAAGCTAGAGTATAATGTAGACGCAGCGAATGGCATTGTCATGGAAGGGTATCTCTTCAAGCGGGCCAGCAATGCCTTCAAAACGTGGAACAGGAAAAAGCCCGATCATATCAGACGCTGGTTCTCCATACAGAACAACCAGTTGGTTTACCAGAAAAAGTTCAAGGACAGCCCCACTGTGGTGGTGGAGGACCTCAGGCTCTGCACCGTGAAGCATTGCGAGGACATAGAGCGGCGCTTCTGCTTCGAGGTCGTCTCTCCAACCAAAAGTTGTATGCTCCAGGCCGATTCGGAAAAGCTTCGCCAGGCCTGGATTAAGGCAGTTCAGACCAGCATTGCCACCGCCTACAGAGAGAAGGGCGATGAGGCCGAGAAGCTGGATAAAAAGTCATCTCCATCAACAGGAAGCCTAGATTCTGGAAATGAGTCAAAAGAGAAGTTACTGAAAGGAGAAAGCGCACTGCAGCGTGTCCAGTGTATCCCTGGCAACAGCAGCTGTTGTGACTGTGGTCTGGCAGACCCACGGTGGGCCAGCATCAACTTGGGCATTACCTTGTGTATTGAGTGCTCTGGGATTCATCGGAGTCTTGGGGTTCATTTTTCGAAAGTACGATCTTTAACTTTAGACACTTGGGAGCCTGAGCTTTTAAAGCTTATGTGTGAATTGGGAAATGATGTTATAAATCGTGTTTATGAAGCTAAACTGGACAAAATGGGAATAAAGAAACCACAGCCAGGACAAAGACAGGAGAAAGAGGCATACATCAGAGCAAAATATGTGGAGAGGAAATTTGTGGATAAATACTCCATGGCATCATCACCTTCTGAGCAGGAGAAAAGGGTTATCTCCAAAAGCTGCGAGGAGCAGAGGCTGAGCCAAGTCAGAGCATCTGTCCACACCGCAGTCAAAAGTAACGACAGTGGGATCCAGCAAGGCTCTGATGATGGACGGGAGTCTCTACCTTCCACCGTGTCAGCCAATAGCTTGTATGAGCCTGAAGGAGAAAGGCAAGAGTCTTCTGTGTTTCTGGACTCGAAACATCTTAATCCAGGACTTCAGCTTTATAGGGCTTCATATGAGAAAAACCTTCCCAAAATGGCTGAGGCTCTGGCTCATGGTGCAGATGTGAACTGGGCTAATTCAGATGAGGACCAAGCGACAGCACTCATCCAGGCTGTTCTGGGGGGCTCTTTGGTGACGTGTGAGTTCCTCTTACAGAATGGTGCTAATGTGAACCAAAGAGACGTCCAAGGGCGGGGCCCGCTGCACCATGCCACTGTCTTAGGACACACAGGGCAGGTATGTTTATTCCTGAAGCGAGGTGCCAATCAACACGCCACTGATGAGGAGGGGAAGGACCCCTTGAGTATTGCTGTGGAAGCAGCCAATGCCGACATAGTGACCTTGTTACGTTTAGCAAGAATGAATGAAGAAATGCGGGAATCAGAAGGACTTTATGGACAGCCAGGTGATGAAACTTACCAGGACATCTTTCGTGATTTTTCTCAAATGGCATCAAATAATCCAGAGAAACTCAATCGTTTCCAGCAAGATTCACAGAAGTTCTGAGCCTTTTAAGAGGGGAAACTATGAAATTTGGTGAATTCCTAATGTGTACAACCAAAATCTCACCCCCCCCCTTTTTTTTTTACTGCTTTAATTCTGCTTGATTTTGGTGGACATTGAATTGTTTGGAAAAAATGGTACCCATTCATTGGTATTTTTGAAAATGAAAACAGATCTTTCATAATTGGGAAAGGGAGAAATCCACTATAGTTCTTCTTTTATTTAAGAAGAAAAAAGCCTATTAATGGGTTGTGCTTTTATATAAAGTTGTATCCAGAGCTGGACCATCCTCTCTTAAGTTCTGAGATGCTACACTGTTAGGCCCCTGCACCCTTTGCCATGGGTGGTACACGGTTCCCCCAGGAACATTGAGTCACTATGCCTGCGTCAGGTGGGAACCAGTTTTCTTACCTGTATCAAGGATGTTTCTTTCCTATAGCTTCCCTGATAGATGCATGTGTGTTTTCTGGTAGCTTCGCTGTGGTACCCACGGTATGTGATGTAATTGCGAGGACTAGTGAGGGTGTTCCTCATTTGCTCGGACAGGCCATCGCACTTGCGGACTTGACAGACATGGCTGCTGCACAGTGGACCACACATTAGTCTTTAGACTCATTTCATCTTACGGTGCAGAGGAGCGCTTCCTTTTTCTTCTGTCAATCTCCACAAGACTCCCAGCTTGCTTTTTATTGTTGGATTGGTTTCCTAAAACCTTGACAGATCATCAGTGCAATAAAACGATTTCAGAGGTTGACTATTACAAAATTGGGCTTTCATCAAAACAGGGTGATTTCAAAGATAATGTAGGGCATTTTTATATTTGGAATTTATCCATTTATATATATATATATATATATAAAATTTATATATATATAAAATTTACTGTTACTCCTGGTGGAAGATGTAAGGAAAAAAAAGCTAATTTTTTTCTGTTTATATTAAAATTTACCAGCAATAAATTCCTTTTATTTTTTTCTACATTTATCTTATTTACTATACAACAGTATACATTCTTTTAAATTGTATCCTGTATATAGCTTTAGAATTAAGTAAAATATGTCATTGACCTTTGAGTTCCAAAATTATGAATATGTGATACAGTTTGGTGAGATTCCATCTCTGATTGACATGTCTTGTCAGAGTATGGAATGAATAAGTAATTACCTTATGGGTCATTTCCAGTACTGTTGATGACGTTCAGTCTTTTAGAAATTATTTGTAAGATACTCAGCTTCACAGAAACATTTTTAAATGTATATAAAATTATAGTTAATTAAATAAAAATTTTTAACATTTTCCCCACAGTATGTAGAGCCTTACTTTGATTGAATATAAAATCAGAATCTAAGCAGAAATCATATGGAAATAAATTCACAGCACAGATAAAGGCCCTGTCGTTCAGTCAGATTGCAAGCATGCAAAGCTTAGTAAGTCCCCACACATTAGGGATACAGAGCTATTGTGATTTGTTTCCAGGGAAGTGCAAACTTCCACAGGATGAGAGGAATTTTGTCTCTCCTGTCTCACCTCAAGCTTGCAGACCATCTGGCCTTGTAGGTATTTTGTTAAAGACAGAAGTCTAACTTTAACTGGCGTGTGTTGTAAAATTTATTGTCCTAAAACATGTTGAGGGAGGACCAGGCTACAGAAGGGCAGAAAGTCCGCCATGTTTCCCTCTGCTGGGCTCATTCTCGGTGACTGCTGGAGCGCCCCCCCCCCCTTGTCTGGAGGTGCTGACGGGCTTCCCTGCGGTCCAGCTGCCAGGAGACTGTCCCCCGGGCCTGCCTGCCTCCCCACCTCGTGTCAGAAGTTCTTGGTGTGGTGGTCAGTAGTGTCTGCTGCCCTTTAATGGCTAGTGTTTTTGAAATAAGCCTTAAAGATTCAGTGTATTTGAAATGCCTTAAAGGTTATTGTGGTTCTGAGTATCGTTAGAAAAAGCTACACCTTTTCGTATTGCATGGAGGCTGGCAATGCAAGAATATATTTCTACAGCTTAATTTCCTCAACGTGCTGAGAAATTGAATAGCAGAAAGGAATGGAATAGAGCAAGGCTTTAAATTCATAGTTACAAAGTAGCTTGGCTTTTAGATGAGTTTTGCTATAATAGCTTATGTGGCCTGTTGTGACGCCTTCTGTGCATTAGGAGAGAGGAGTATACGCAATGCCAGTTGCACACTCAGGCTGCTCTTTCTGATTGCTCTGTTTTCTCTCCAGGACAGACATGCTGAAAATAGTGTGATTCTTTATTATTAGTCTGTTCACTCTTTTTCATGCTCTCAGTAATGTCAAAATTGTATTACTGCCAAGAGAAGAATAGGGGTGCTATGAAGATTCAGAAAATGCAGGCGTAACATGGGCATAGATAAAGGTGATTGAGTAGCCGTTCACCAGGCCTCATTGCAACACTTACATGTTTAAGATTTCCAAGATTTCCAATTTATTTTTATTCATTTTTAAAAGTTTCCAGCATTCCAGTGTGCTTGACTAATTGATGCTGGTGTTTGCTGTAGTGGAGTGAACTTTGGTGTTACTGCCCCCAAAGTAATCCAGCTTGCAACTTGTACTTTAGAACGTCATAGGTGCATTTTTGGGGAAAAAAATTATACATTCACATTTTAGAGAATTTAAGTTTGTGATCATGTTAGCAGTATTTAAAAATAAAAATTCCTGCATATTAGATATGATCATAAACCAAGTTGTTTTATTTAAAACTAAACTCGCTACCCACTTGGAATAATTGAACATTCCTAGACCACTCATTCTCAAATTTTTTTGTGTGGTTGCATTTTGACCATGGCTAGAATTTTTTAAAATGAAATCTTATGTCCATAATAACTTCAGTTTATATCCTTCTTGGATCCAGGGCTCCTCACAAGTGAAAGGATGAAACAAAGGGAAACTCTAAAAGCTCCCCTCGTGTGTGTTTCATGACTTAGAGTGTTCTTCACACTACCTTTCCTCACCTGCTGCTTACAGGACTCCTAGATCCTAACCACGAGCATCAGCCTCGTCCGTCCGTGTCTCCATCCGAGCCCACTCCTCTCGTTTTACAGAGAGCGTCACTTCCTTTGCTAGTTGGAGGCCGAGCTGACCCAGGTCTGCCATAGCTTCGAAGCACTTGTATCATGGAAGGATTTGAAATCGCCGTAATGTAAAGCAGCAGCTTTCCCTGTGTTTGATAAGAAACTCCAAATACTCTGGAGAACCTCATGATGAAGTTTGAGGGACTAGATTGGGATTTGAAAGCATCAAATTGTAGAAAAGTCTCCAGATTTTACAATAGCAAACATTAATAAAAGCAAAGTATTATAAAGTTAAACTCACCATTTATTAACTTTTTGATGTTTTCAAATGAAACATAACCATGGAAGGGACTTGGATTCAGTTTGGCTGAGTCCTAACACCTAGAAGGATGATTTTTGTGGGCGTCTTTTCCTGTTTACATAGAGGGGGATCATGTGGACAAAGAGAGATGGAATGAAATACAAATTTTCTTTGCATTGCTGTTCTCACTATCTTATTTTCTAGATTTTTCTCATTCTCCAGTTTTATTTTGGGTTATTAATTTTTAACAGGGAAAGCTTGCTGCAGTATCAAGGTTGTTAGCACCATTTAATACGAAGGCTAAAGGTTAACTTTTGGAAATGACCAGCTCCTTTTTAAATATCTGTTTACGTGCGCTTTGTGATATTTCTGGATCATTCCGGTCATAAAGACTGATCACGTGTACTATTTCTTGCTACCTGTGAAAAGGGTTTTAAGAATGTATAACCAACACTCCATTAGTTTTTATTAGTGTGTAGAAGATTTGTATCTAATTCATGAATGTAGTTTTACTGTAGTTTGTCATTGTAAATGGAGCAAAGTACATTATCTTTATAGTTCTTCTAAAATGTACATTATGTAAGAATTGTAAATATACTTGATTACTTTGTATGCTGAAAATTTACAATAATAAGTCAATAAAAATATCTCACTTCTGGCACA +>XM_038145225.1 PREDICTED: Motacilla alba alba chromosome 9 C2orf72 homolog (C9H2orf72), transcript variant X3, mRNA +TCTCGCCCCGCTGCCCCGGGGTGTTGCTCTTCGCGGGGCCGGGGCTGGTGCAGGGTGGCGGGGCGGGTGCGGGCCAGTGGGCGGTGCGGAGCCGGGGCCGGGGAACATGCGGATGCAGGCCGGACAGGGAGCACGGCGGGGGATGGCGGCGGCAGACCTGCAGGAGCTCCGGGCGCTGGTGGAGCGGGCGGGCGGGCGGCGGGCGGTACTGCTGGTGGCCGAGGTGGCGGAGGGGGCCCCGGCGGCGCCCGCGCTGGCCGCCTTCGCCCGCGACCTCCTGGACGACGAGGCGCCGCGCGCAGCGTGCCCGGGGCCGGCGCCGGTGCCGGGGTGCCGGGAGAGGCGGTCGCCAGGCGCCGGGCGCCGGGCGCTGGGAGCGCGGCTGCTGCTGGTGCTGTGCGGCGGCGGGGCGGCGCGGGACCGCGGGGCGCGTACTCGCCTGCGGGAGATGGTGCGGGACGTGCGCGGCCGCCTTCCCGCGGGACCGCCGCCCGCCGTCGTGGGCGTCCTGCTGCCCGGCGGGGACGGAGAGGACGCGGCGGTGCTGGACGCCGCGCTGCGGCGGCACTTCCCGGCGCCCGGCACGGTGCAGGCGGCCCGGTACAACCCGGGCAGCCCAGGCGACTGCCGAGCCGCAGCCTGCCGCGCCCTGCGGGCTGCCCTGCAGCACCCCGCAGAAGACATGAAAGACAGGGAGAGGTGGAGGCTGCCATCCTTCCTGCAGTGCATTTCTTGGAACCAGGGGAGCTGGAGAAAAGATTACAAAGTGAAAGCTGAAAACAACATTCATGAAGGTCTGCCTTGACCTCTCTCTGCTCCCTGCAGATGACCTGCAGGACCCTGAGGAAGAAGTGGCTCTGGCCAGCCTTTCCCCCAGTGGAAACTGTGAAGAAGCTGCTGAAGGCACAGGCACCTAGAGCTGCTGGGCATCCAACACAGTCCACATCCCAGACCTGCCCAGTGGATTTGGAGCAATGGGAGGAGGAGCTGGTGCAGGCCCTCTCCTCCAAGGACCCACAGCTCCAGGGAAAAGCTGCTTGGCTGAACTTGTCAGGGTATTTTTAGCTGCCACCAACACAGAGGGTCTGTGCCAGAGAGCCATTCCCTGCTGCCCCGGGGCACTTGGAGCTGCTGCTGGACACTGGGCTTCTGAGAAGCCCTTTGGGGATGTACCCCACATCCCGGGCAATATGACATTGGGACTTTGAGTGTGAAATGCAGCCACCTGTTTGAAGAATGAGAAATGTTTTCAACTTCTGAGCAAAGTTCCCTGCTGAGGTTGCTGGGACCGGCCTCCCTGGCAGACTGATTCTGCTGCCTTGTTTTCCTACTTTATTGGTGCTTGGAATTTCCCACCCTCTTTGCCGTTAAAAACCAAACCAAACCAAACCAGAACAAAACAAAACAAAAAAACAAACAAAAAAACCCCCACAAAAGAACCCACAAAAAACCCCCAACGAAGTAATACAGCAGCTTGGAGACTGCAGTAGGACTAAATGTGAGTGCCGGGATCTACCAGCTACTGAAAAGGCATGAATGTAACAGTGTAACAAGAAGAATGCAGTAACAGCCCAGCTTGAGTGGCAAGAATAACATGAAAGATACTGATAGTACTGGCATCTGGACCAGAGTGGGGTTCGGGAGCGGGATCTGTCCCTCTGGCTTGTCCCGGTGCTCATAGGCTAACTGAGGGATGCCTGGGTTGGAGGGGTGGCGGGTGGGCTCTAAGGTGTGGCTGCTGCTAGATGGGGCTACAGGAGAGAGCCATCTTACCTGGGAGATCTCCACAGGCATGGTGGCACAGTTTGGAGGTGGCCTGCAGCACAACAAGAGGTGGCTGTTTCATAAATAAACATAAAAATATAAAAAAATATATTTAAGTAGTTCCAAAGGGTTGCCGGTAGCCTGTGGGGCAACACAACTAACCAGAAATCATTGGTTTACAAGGAATATTACTTTAATGTTAAAAATATATTTTTAATTCTTTATGCAACATCAAAGAGGTCTAGTTTTATTTTGAGCACAAGCCTGGCTTTCCTTTAGGAGTTTCCTCCAGCTCAGATCAGAAATTTCAACCTGCCTGCCTCTACTTTGGGTGAATTGCCAAAGTGCATCCTCTGTGCATGTCTGTCCTCTCTCTGGCTCCTTCTTCCCCACTGGCAGCAGAAGTGTCTGGAGTCCTGCCAGCTCTGGCCAGCACTCTACCCCAGCAGTTTGCCTTTGGCATCCCTCTAGCTCTTACCTGGAGCAGGGGATGCTGCTCTGCAGAGAGGGCACTGACCCGCTCTCCTTCCAGCCTCCAGGATTTCTGGAGAAATGACCTGTGGAAAACACAAATGTAACCAAGTGGCTCGCTGTGGGTGGCTGTGTCACTGGCCCAAATGTCAGCACTGAGCACTCAGTGCATCTTGGTGAGATTAAGGCTCCCTCCTGCTCCATCCCTGCATGGCCCAGGTGGCTGTGCAGGTCTGTATTTCCCAGCAAAGCCCTTGGTTAGGTGGGTCAAGCAGGACTCACCAGCAGGAATCTTTATTTTCTTGCAGCATTTAGCCTTTGCTGCTAAGCATTCTCCAATGAAGAGGTGATCCAAGAGCACAGACTGGCAGTTAAACCTCCCTTAGTGCTGCAAATCCACTGGATTTATTTACTGGTAATTTTGAGGTAAATCATGCAAGTTTATCCCTGCAAGAGACTGCTGGAAGTGGATGAACTGCCTGGGCCTTAGGCAGTGTGAGTGAGAATATATTTGACCAAAAGTATTGTTTTTCTTTCACTGAGGAATAAAAGTGACTTGAATTACTTTTTTTTTTTCCCTTTTCTCTTTTCACTATCTGTGCACTTGGAGGTGTAAGCAGATAGTTTTACGTGTTTAATTAATTGAATAATTTAAGGGCACTATCACATGCTTGTAAAATAAAGACACTTTCCAAATTGGAATGTGCTTATTTGTTTGCCATGGTGTTATCCTTGAAGCAGCATTATGTATAGCTTAACTCATATTTATCTTGGCTTGAGAAAAATGGATATTGGGATGGAATGGAAGTGACCCCAGTGTTTGAAATGCAGAAGATCAGAACTGAGTGCAGTCCAGGTGGAGCAATGGAGAAGGCTGGACATCTTCCCAGTTGTCCAAGAGCAGGGCAGTCCCTCTTGGCATTGTGGGTCGGAGTTTGATAAGCTTTCATTAGTAACTTTCATTAATAACTTTCACTAACTGATACCATTATGCATCCTCAAGGAATTCAATATATACCCTTCATAGGGTATTTCTTCCTAGTCAGTAGCATCAAGGAGAAATGAATGCTGCCGAGGTCTGGGCACTTCAGTCTCTTGTTGCTCATCGTTGCTCCTGAGCTGGACTTTCCCTGGTGCAAATCCACCACCCTGGGTATCCCATCCGTCTTGTGCCGCAGAGGCGGCCGGCACGTGTTAAACCCATGGGATAAAATCGCTGATCCTTGCCCTGCCCTGGGACACGCTATGCCCCTACAGATGCCCACCCCCTGCGGGCGGCCTGTGCCGGCGGGGGAAGCAGCCGCTTCTCTGGGCACGGCACAAACGCGGGCACCGGCGGGGTCACTCGTGGGGAGCTCACAGCCGCGGTCCCGCTCGCGCCGGCAGCGGTGTGGGGTCTGCGGGCGCGGGAGCCCGCGGGGGCAGCGGGGGAGCCCCGGGAGGCCGCGGGGGAGCCCCGGGAGGCCGCGGGGGAGCCGGGCAG +>XM_030524043.1 PREDICTED: Scaptodrosophila lebanonensis synaptic vesicle glycoprotein 2C-like (LOC115628070), transcript variant X7, mRNA +ATAGTTCAATTATTGAATGTGTTGTACATATTTAAAAGTGCTTAAAAATATAGAAAAACTATGTTCTGAAAAAACACCTCTTTCAAGTAGTAAAAAGTGGAAAGAGAGAAATCATTCTAAATGGGTGTAATATATAGTGTACAACCAGAATTGTGATATAGTGCCTTAATGATAAAAAGCATTGACATTCAACTTGGAAGTTTGCGATGTTTCAAGGCATGCATATGTCTTGACTTTTTGGAGGATTTAGGAAGCGACTATGAAGATGCACTTCTACAAGCTGAATTTGGAAAATTTCATTTTCTTTTACTTACGATATGTGGTCTTATATACCTAAACACAGCAATAGGAATAACTATAATATCATTTGTTCTTCCCACTGCAACTTGCGATTTTGATATGACGTCTAAAGATAAAGGCTGGCTATCTGCTTCTCCAATGCTGGGAATGCTGATAGGATCATATTTTTGGGGATGTCTCGCAGATACAAAAGGTCGACGCATTGTATTAATTGTAACTCTCTTAGCAGACGGTATATGTGGATTGGTATCATCACTTGCACCTTATTACCTCATATTCCTGTTTATTCGTTTTGCGAATGGTTTCAATGTGGCTGGAACAATGGGCATTGTGTTTCCTTACTTGGGAGAGTTTCAACCAACGAAGTACAGAGAAAAAATTTTATGCTGGATGGAGCTTTTTTGGACATTTGGAATCATTTTACTTCCAGGAATCGCGTGGAGTGTAATTCCATTGCAAATAAATCTCCAATTTAGTGTTTTTACTTACCACAGTTGGAATCTCTTTGTTGCAATATGCGCAATACCCAGTATTTTGCTGGGTCTTTGGCTTTTTTCATTTCCGGAAAGCCCAAAATTTCTATTAGAGCATGGGGAAACAGACAAAGCGCTGGATATTCTCGTTTGCATGTTTATACAGAACACTGGACGTAAACGTGATGACTACCCTGTAAGACAAGCAAAAACTCTAAATAAGCTAATGTAAGAGTCTACGTGGCCCAGACCGTTCTAATAAGAAAAATGGCGAAAAGGGAATTCCTAACCTTCGATTTAGAAGACCGAATGAGTTAAAGATATTAATATCGGAAATTTGGACACAAACTAAAACGCTTTCC +>XM_040248511.1 PREDICTED: Oryx dammah pre-mRNA processing factor 18 (PRPF18), transcript variant X3, mRNA +TTGCAAAAAAAGAAGAGGAAGCATATTTTGAAAGATGTGGCTACAAGCCTATAAATGAGAAGCCACCTGGAGAGAGCAAGGATCAAATAACCCTGTAAGATGATTTTCTCAAAGAGGAGAAGCAAGCTGATTGTTTCCAAGAAGAAAGTAAAAATCTTGGAGTCTAGGGAGAAAATACAGCCAAAAGATGAAGACCAGAAACCATTAACTTCATCGAATCCAGTATTAGAACTTGAACTGGCAGAGGAAAAATTACCCATGACTCTTTCTAGGCAAGAGGTTATCAGAAGATTGAGAGAAAGAGGAGAACCAATCAGACTATTTGGAGAAACAGATTATGATGCTTTTCAACGTTTAAGAAAAATAGAGATCCTCACACCGGAGGTTAACAAGGGATTGAGGAATGATCTGAAAGCAGCTTTGGATAAGATTGATCAGCAGTACCTCAATGAACTTGTGGGTGGCCAAGAGCCTGGAGAAGAAGACACCCAGAATGATTTGAAAGTTCACGAAGAGAACACCACAATTGAAGAATTAGAGGCTCTGGGAGAGTCTTTAGGAAAAGGTGATGATCATAAAGACATGGACATCATTACCAAATTCCTTAAGTTTCTTCTTGGTGTTTGGGCTAAAGAGCTGAATGCCAGAGAGGATTATGTGAAGCGCAGTGTGCAGGGTAAACTGAACAGTGCTACTCAGAAACAGACTGAGTCCTATCTCAGACCCCTTTTCAGAAAGCTACGGAAGAGGAATCTTCCTGCTGATATTAAAGAATCCATAACAGATATTATTAAATTCATGTTGCAGAGGGAATACGTGAAGGCTAACGATGCCTATCTTCAGATGGCCATTGGAAACGCCCCTTGGCCCATTGGTGTTACTATGGTTGGCATCCATGCCAGAACTGGCAGGGAAAAGATTTTTTCCAAGCACGTTGCACATGTTTTAAATGATGAGACGCAGCGGAAATATATTCAGGGACTGAAGAGGTTAATGACCATTTGCCAGAAGCACTTTCCTACAGATCCATCAAAATGTGTGGAGTACAATGCACTATGAGATCTGTGTGCGGTGTGTAAATATCAAGAGAAACTTAAGGAAGCCTGTCACGGACTTCTGGAATTACCACCAGTTGCAATGAGGGAAGAAGAAAAAAGGAGTTTGTGGTCTCTGAGTTCTACCTAATGCAGCTCTTGGTTTTAAGAACGTGTGTTGGCTCTCATGTCACATCTGACTACAGAGTGATTTTTGTGTCTTACTTTTTAAGTAGTCAAAAAATTAAGTACTAAAGACTTTCCCCAGTAATTTAAATGTGTAAATTTAAAACAGTCACAGGACACGGTTTAAAATAACTTTTCCCCTCTAGACCTAAAAGTTGAAATGAGAGGATTAAAGAGGAACATTTGAGGATGGACTTAATGATTTCTATAAAATATGGTAATTTTCATGTTGCCTTTTATGTTGTGTTTATAGAGAAATATTTTTATATTTTTCAACAAAAATATGGAACTATTTAGTGAAACTTGATCATCCTTAAATGTTGCTTGACTTTTGCCACCTTGCAATATATTTGAATGTAAATGTTTTTACTATTGTCTATCTTGCATTTTAAAGCTTTTATCCTTTAAAGATA +>XM_027406478.2 PREDICTED: Cricetulus griseus probable global transcription activator SNF2L2 (LOC100770307), transcript variant X12, mRNA +GGGCGGAGCCCGAGTTTAGGAAGAGGAGGGGACGGCTGTCATCAATGAAGTCATATTCATAATCTAGTCCTCGCTCCCTCTGTTGCTGTACTCTGGGTGACTCAGAGAGGGAAGATTCAGCCAGCACACTGCTCGCGAGCAAGTTTAGTGATACTCTGCTGACTGGCAGAGCCAGGAGAAGTAGATGTCCACACCCACAGACCCAGCTGCAATGCCCCATCCTGGGCCTTCCCCGGGGCCTGGACCCTCTCCTGGACCAATTCTGGGGCCCAGTCCAGGACCAGGACCATCCCCAGGTTCGGTCCACAGCATGATGGGGCCCAGTCCTGGACCGCCCAGTGTCTCACATCCTATGTCAACAATGGGCTCTGCAGACTTTCCACAGGAAGCCATACACCAGATGCATAAGCCCATGGACGGGATACATGACAAGGGAATTATAGACGATGCCCACTGTGGATCCATGAAGGGCGCCAGCATGCGCCCACCACACCCGGGAATGGGCCCTCCACAGAGCCCAATGGATCAGCACAGCCAAGGTTATATGTCACCACATCCTTCTCCTTTGGGAGCCCCAGAGCACGTCTCCAGCCCTATATCTGGAGGAGGCCCAACCCCACCCCAGATGCCACCGAGCCAGCCAGGGCCACTCATCCCAGGAGATCTGCAGGCCATGAACCAGCCTAACAGAGGTCCTTCGCCTTTCAGTCCTGTCCAGCTGCATCAGCTTCGAGCTCAGATTTTAGCTTACAAAATGTTGGCCAGGGGCCAGCCCCTCCCTGAAACCCTGCAGCTTGCAGTCCAGGGGAAAAGGACCTTGCCTGGCATGCAACAGCAACAGCAGCAGCAGCAGCAGCAGCAACAGCAACAGCAGCCCCAGCAGCCTCAGCAGCAGCCCCAGCAGCCTCAGCAGCAGGCGCAGCCACAACCGCAGCAGCAGCAGCCTGCCCTTGTTAGCTACAACAGACCATCTGGCCCTGGGCAAGAGATGCTGATGAGTGGCCAAAGCACCCCACAGAAGCTGTCAGCACCGGCACCCAGCGGCCGGCCGTCGCCCGCACCCCCAGCCGCTGCCCAGCCCACCGCCACAGCTGTGCCCGGGCCCTCGGTGCAGCAGCCTGCCCCAGGGCAGCCGTCTCCGGTCCTGCAGCTGCAACAGAAGCAGAGCCGTATCAGCCCAATCCAGAAACCGCAAGGCCTCGACCCCGTGGAGATCCTGCAGGAGCGAGAGTACAGACTGCAGGCTCGCATAGCTCATAGGATACAAGAACTGGAAAGTCTGCCTGGCTCTTTGCCACCAGATTTACGAACCAAAGCAACTGTGGAACTGAAAGCACTTCGGTTACTCAATTTCCAGCGTCAGCTGAGACAGGAGGTGGTGGCCTGCATGCGGAGGGATACCACCCTGGAGACGGCCCTCAACTCCAAAGCATACAAGCGGAGCAAGCGCCAGACCCTTCGAGAGGCGCGCATGACGGAGAAACTGGAGAAGCAGCAGAAGATAGAACAGGAGAGGAAACGGAGGCAGAAGCACCAGGAATACCTGAACAGTATTTTGCAACATGCAAAAGATTTTAAGGAGTATCACCGGTCTGTGGCTGGGAAGATCCAGAAGCTGTCCAAAGCAGTGGCGACTTGGCATGCTAACACTGAAAGGGAGCAAAAGAAGGAAACAGAGCGGATCGAGAAGGAGAGAATGCGGAGGCTGATGGCTGAAGATGAGGAGGGCTACAGGAAACTCATTGACCAAAAGAAAGACAGACGCTTAGCATACCTTTTGCAGCAGACCGATGAGTATGTGGCCAATCTGACCAACCTGGTTTGGGAGCACAAGCAGGCCCAAGCTGCCAAAGAGAAGAAGAAGAGGAGGAGGAGGAGAAAGAAGGCTGAAGAGAATGCAGAGGGAGGGGAGTCTGCCCTGGGACCCGATGGAGAGCCCATTGATGAAAGCAGCCAGATGAGTGACCTGCCCGTCAAAGTGACGCACACAGAAACTGGCAAGGTCCTCTTTGGTCCTGAAGCACCCAAAGCAAGTCAGTTGGATGCCTGGCTGGAGATGAATCCTGGGTATGAAGTTGCTCCCAGATCTGACAGCGAAGAGAGTGACTCTGATTATGAGGAAGAGGATGAAGAAGAAGAGTCCAGTAGGCAGGAAACGGAGGAGAAGATACTGCTGGATCCAAACAGTGAAGAAGTTTCCGAAAAGGACGCCAAGCAGATCATTGAGACTGCGAAACAGGATGTGGACGATGAATACAGCATGCAGTACAGTGCCAGAGGGTCGCAGTCCTACTACACGGTGGCCCATGCCATCTCCGAGAGGGTAGAGAAGCAGTCTGCCCTCCTCATTAATGGGACCCTAAAGCATTACCAGCTCCAGGGCCTGGAATGGATGGTTTCCCTGTATAATAACAATTTGAATGGAATCTTAGCTGATGAAATGGGGCTAGGCAAGACCATCCAGACCATTGCACTCATCACATATCTGATGGAGCACAAAAGACTCAATGGCCCCTATCTCATCATTGTTCCCCTCTCGACTCTGTCTAACTGGACATATGAATTTGACAAATGGGCTCCTTCTGTGGTGAAAATTTCTTACAAGGGTACCCCTGCCATGCGACGCTCCCTTGTTCCCCAGCTACGGAGTGGCAAATTCAATGTCCTCCTGACTACTTATGAATACATTATAAAAGACAAGCACATTCTTGCAAAGATTCGGTGGAAATACATGATTGTGGATGAAGGCCACCGAATGAAGAATCACCATTGCAAGCTGACTCAGGTCTTGAACACACACTATGTCGCCCCCAGAAGGATCCTTTTGACTGGGACCCCGCTACAGAATAAGCTCCCTGAACTCTGGGCCCTCCTCAACTTCCTTCTCCCTACAATCTTCAAGAGTTGCAGCACATTTGAGCAGTGGTTTAATGCTCCATTTGCCATGACTGGCGAAAGGGTGGACTTAAATGAAGAAGAAACTATCTTGATCATCAGGCGTCTGCACAAGGTGTTGAGACCCTTTTTACTGAGGAGACTGAAGAAAGAGGTTGAATCCCAGCTTCCAGAAAAGGTTGAGTATGTGATCAAGTGCGACATGTCAGCTCTGCAGAAGATTCTGTATCGTCATATGCAGGCCAAGGGGATCCTCCTCACTGACGGTTCTGAAAAAGATAAGAAGGGGAAAGGAGGTGCCAAGACGCTTATGAACACTATCATGCAGCTGAGAAAAATTTGCAACCACCCATATATGTTCCAGCACATTGAGGAATCCTTTGCTGAACACCTGGGCTATTCAAATGGGGTCATCAATGGGGCTGAGCTGTATCGGGCCTCAGGAAAGTTTGAGCTACTTGATCGTATTCTGCCCAAATTGAGAGCAACTAACCACCGCGTGCTGCTTTTCTGCCAGATGACGTCTCTCATGACCATCATGGAGGATTACTTTGCTTTTCGGAACTTCCTTTACCTGCGCCTTGATGGCACCACCAAGTCTGAAGATCGGGCTGCTTTGCTGAAGAAATTCAATGAACCTGGGTCCCAGTATTTCATTTTCTTGCTGAGTACACGAGCTGGGGGCCTGGGCTTAAATCTTCAGGCTGCGGACACAGTGGTCATCTTTGACAGCGACTGGAATCCTCATCAGGATCTGCAGGCCCAAGATCGAGCTCACCGCATTGGCCAACAGAATGAAGTCCGGGTTCTGAGGCTCTGCACTGTCAACAGTGTGGAGGAAAAGATTCTCGCAGCTGCAAAGTACAAGCTGAATGTGGACCAGAAGGTTATCCAGGCGGGCATGTTTGATCAGAAGTCCTCCAGCCACGAGCGGAGAGCATTCCTGCAGGCCATATTGGAGCATGAAGAGGAGAATGAGGAAGAAGATGAAGTACCAGACGACGAGACCCTGAACCAGATGATTGCTCGCCGGGAAGAAGAGTTTGATCTTTTTATGCGCATGGACATGGACCGGAGGAGGGAGGATGCCAGAAACCCAAAGCGCAAGCCTCGCCTGATGGAGGAAGATGAGCTGCCCTCCTGGATTATTAAGGATGACGCGGAAGTGGAAAGGCTTACCTGTGAAGAAGAGGAGGAGAAGATATTTGGTAGGGGTTCTCGCCAGCGCCGGGATGTGGACTACAGCGACGCCCTCACCGAGAAGCAGTGGCTCCGGGCCATCGAAGACGGCAATTTGGAAGAAATGGAGGAGGAAGTACGGCTCAAGAAGAGAAAAAGACGAAGAAATGTGGAGAAAGATCCTGTGAAGGAGGATGTGGAAAAGGCGAAGAAAAGAAGAGGCCGCCCTCCAGCTGAGAAACTGTCACCAAACCCCCCCAAACTAACCAAGCAGATGAACGCCATCATCGATACTGTGATAAACTACAAAGATAGTTCAGGGCGACAGCTCAGTGAAGTCTTCATTCAGTTACCTTCCAGGAAAGAGTTACCAGAATACTATGAATTAATTAGGAAGCCAGTGGATTTCAAAAAGATAAAGGAAAGAATTCGTAATCACAAGTACCGGAGCCTGGGTGACCTGGAGAAAGATGTCATGCTTCTCTGTCACAATGCACAGACATTCAACTTGGAGGGATCCCAGATCTATGAAGACTCCATTGTCCTACAGTCAGTATTTAAGAGTGCTCGGCAGAAAATCGCCAAAGAAGAGGAGAGTGAGGAAGAAAGCAATGAAGAGGAGGAGGAAGATGATGAAGAGGAGTCTGAGTCAGAGGGTAAGACCCTGCATCTGGCCCCTTCCACCTATCGGGCTATTTCCACAGCCAAATCTGTGAAGGTGAAAATCAAACTCAATAAAAAAGAAGAGAAAGGCCGGGACACAGGGAAAGGCAAGAAAAGGCCAAACCGAGGCAAAGCCAAACCTGTTGTGAGCGATTTTGACAGTGACGAGGAACAGGATGAGAACGAACAGTCAGAGGCAAGTGGGACTGATGATGAGTGAGCAGTGTGGACTTGATCTGACTGTGGCAGAACTGAACACTTTCTCCCCCTTTCTCCCTTCACCCCCAGTGAGTTCATTTGCCCTTTGGGCACTGGGTTATTCCTCCGTCCTCATTGTCATCTAGAGCTAGCTTTAGGATAGTGCCAGACAAACATATGATATCATGGTGTAAAAAAAACAAAACATGCATCTACACACACACACACACACACACACACACACACACACACGAATATTTGTAACATATTGTGACCAAATGGGCCTCAAAGATTCAAAGATTAAAAACAAACAAAAGCTTTTGATGGAAAAGACGTGGGTGGATAGTATATTTCTACAGGTGGGTCAAATTTGGTAGCCGTTTGATGTGCTTGCTTCCATCATCTATCCTGATGAGGAGATTTTTATCTTCTACAGCGCTGATGACCGGGAGAAGCCATTAAAAGCCACTGGTTATTTTATTTTTCATCAGGCAATTTTCAAAATTTTCATTTGTTCGGTATTGTTTTCTTGTTTGTTTGTTTTTTACACTGTGGTACATATAAGCAACTTTACTAGGTGACAGATGTACAGTAGTTAGAAATCACCTACATATACATTTTTCCATTTTATGCTCTATGATCTGAAGAACAAACAAAAAAAAAGCTTTTTGACTTGTATAAGATTTATGTCTACTGTAAACATTGCGGAATTTTTTTTTCCCTTTGGCTCTTGTTTTATTGACGCTATTGACTATTACAGTGTCTAGAGTGTCCCGATGGCTTCTTTTGTCCACCTGAGCTCCTGTGTTACCAATGGGTATGGTCTCCTTCTCCCTAAAGTGTACTTAATCTTTGCTTTCTTTGCACAATGTCTTTGGTTGCAAGTCATAAGCCTGAGGCAAATAAAATTCCAGTAATTTCGAAGGATGTGGTGTTGGTACTTTCCTAATAAACCGATAACTTACCTTGA +>XM_016163448.2 PREDICTED: Rousettus aegyptiacus junctional sarcoplasmic reticulum protein 1 (JSRP1), transcript variant X3, mRNA +AAATATCGAGCCTCTTACCACATTCATTGTCATTTTCAAGCCTGGCCACTTCTGCTAAGTTATTCTTGGGAACAAAAAGTCTTGAGCCAGCAGCAAGGAAAAAGAGAAGTCAACAAGGGCATGCGTCAAACAGCCCAGGGCAGAAGCAGCCCAGCAAGGGCTTCCAGCCCTGCCGTGAGGCCACAAATCCACGGGCACATCTGCTGGCGGGTGATAAAGTGCCAGTGGCCTTGTGACAGCTCCCCGAAGACTCACAGGCCCCAAGGATGTGAGGGCGTGGCCGGATAAACAGGGCTTATCTCACACCGGAGGCCGTTTTTTTGTTTTTTTTTGTTTTTTTAACCCAACTTATATATTTTTTATCTTTTATGCTTCTCAATAGACTTTTCAATACTTTGTGATAGTTCAAATGCTTTGGCGAAGGTTTCGTTACGGAAAAAAGGGAGGCGTGGCGGGCTGGGTCTGAGCGCTGCGGCCCTGCAATCCGCTTCCTGCCTCACCTCGCCCGCGCCTCTGGGGTCGCCAGGTTTCGTCTTCGTTGCGACAGCATTTCTGTTGCCGGATGGAAGAGTGACGGGTGCTCTTGGAGGACACTAAGTGGATGTGGGTGTATCCTCGCCAGATCTTTTCTCTGTGTATGTCTTTTAGCATCTGTGGTCAGACTCCGTGTGCGTGTGAATAGCCAGACACACAGTGCCCCACGGCGTGCGCCTCCCTCCACATGACAAGTCCAGAACAAGCACGTCCCCAGACAGGAAGTGGGGGCCACCGTCCATCCCGTCCGCCAGGCCCAGCAAGGCGGCTGTGGACCCCGCAGCAGCCCGAGTCTGGACCCAGGCTTCTCAGACATCTCCATGACAACCAGGGCCCTGGAGGAGCTGGATGGAGGCCTGGGCAGCTGCCAAGCGGTGACACCCAGGCTGGCCGACTCCAGCAGCTGGCCCCACATGCTGTTGCTGGCGAGGCAGGTGCCCCTGCACCTGTCCCTGAGCCATGGGCCCCACCTAGTTCATCCCCCCAAAAGCCAGCACCGCACTTGTCGAAGCCCGTGGCCCGGGCACCCCCATCGGTGCCCCCTGCGCCCCAGGTGGAGGCAGAGGAGAGGCCCGAGGTGCCCGCGGCGGCTGCGTGGAAGGACGAAGGGGAGTCTGGGGAGGCCGCCGAGGAGCAGCGCGCACCCCTGGCCCACGGAGGGCCCAAGGAGAGGCCGCGGAAAGAGAGTCCGCGGAAGGAGAAGTCCCGAAAGGAGGAGAGACCGCGGAGGGCGGAGAAACCGCGGAGGGCGGAGAAGCCGGGGGCTGCCAGGGAGCCCCCGGGAGCCCGCCCCCGGCGCTGGGAGGCCCGCGAAGGGGGCCGCCGGCCCTGGGTGCAGGAGTCCCGAGACCCTGAGCACAGGAAAAGGCAGGCCTGGGCCTCTTTGCGGCGCCCCAGCGAGGAAGACCGGCCTCCGGGCCGCCAGAAGCACCGCGCCGGCAAGGGGCGGGACTGAGCCGCGCCAGGGGCTCGCGCTGGAGCCCCAGGCCTTCCCGGCGGGCCCCGGGTCCAGCCAAATAAAGAG +>KR839926.1 Uncultured bacterium clone OTU_8642 16S ribosomal RNA gene, partial sequence +TACGTAGGGGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGCCACACAGGTCCGTTGTGAAAACTCGAGGCTCAACCTCGAGACGCCGATGGAAACCGTGTGGCTAGAGTCCGGAAGAGGAGTGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAAGAACACCTATGGCGAAGGCAGCACTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>XM_032296798.1 PREDICTED: Sapajus apella PTPRF interacting protein alpha 2 (PPFIA2), transcript variant X20, mRNA +TAATTACATTGATATTTATGATGTTCTATAGGAGTTCAGAAAAGTGGAAAATATTTAGTACATTTTGTTTGATAGTACTCCTAGTATATAGAGTCTTACTGAGTTGTATGCAATTGCCTCTCAATGTCCTAGCCAGCTGTAACAGCTGTAATATACTTTGATCTATAAATTATAAAATAACTATCTACTTTAAAAAAAAAAAGGCTTTGTAAAAAAAATCGCATCTTGTTGAAAAGTCTGGGAATGACTAAAAGATTTAGAAAGATGCAGAATCAAGAGCGATAAAACAGCAATTTGTTACTAAATAGAGCTTTAAACAGTATATGAAACATACTTCAGGTTAGTCAGAAGAGGTCCTCTGAATTACACTGTGCATGCTTCCCTGAAATGAAACTGTATGTTATTGGTTAACCAGGATATTTAGCATAATCACTCTGCTAGACTGTGGTGGAGGGAGGTGATTATCACTGAGAACAGATGGGCAGGTCCACAGCACTGCCAGATTCTGCACAAGCTCCATTTATCGTTGGTTCTTGCTTTTTTCCTTCTGTGTTTTAAATTTTTTTAAAAAACATTGTATGTTCTAAAGAACTAGCTTCACAAAAGGCTGGTGGCTGATGATCTTTCAGCTAAGATTTCAAATGTAGAAGAAAGATTTAAAATGCTGTCACTGTGTATCTAAGAAGGATGGGGCAGATTTCATTTTACCCTGTAGTCTCCCTCAATGCATGCACGGATTTATCTGTACGCTAAGCTCTCTGCTCTGCATCTGTAGCTCCTTGTGGATTATATTGTCTCTGTGATCAGAAATGATTTTCTCGGATATGAACACCGTTTCTGGCTCCCCTAAAGTGCATCCTCCTAATGGGACCCGGTTTTACACTTTTCAAGAATTTGCTGCACTGACAAAAGAATTAAATGCCTGCAGGGAACAACTTCTAGAAAAGGAAGAAGAAATCTCTGAACTTAAAGCTGAAAGAAACAACACAAGACTATTACTGGAGCATTTGGAGTGCCTTGTGTCACGACATGAAAGGTCATTAAGAATGACGGTGGTAAAACGGCAAGCCCAGTCTCCCTCAGGAGTATCCAGCGAAGTGGAAGTTCTCAAGGCACTGAAATCTTTGTTTGAGCATCACAAGGCCTTGGATGAAAAGGTAAGGGAGCGACTGAGGGTTTCTTTAGAAAGAGTCTCTGCACTGGAAGAAGAACTAGCTGCTGCTAATCAGGAGATTGTTGCCTTGCGTGAACAAAATGTTCATATACAAAGAAAAATGGCATCAAGCGAGGGATCCACAGAGTCAGAACATCTTGAAGGGATGGAACCTGGCCAGAAAATCCACGAGAAGCGTTTGTCCAATGGTTCTATAGACTCAACTGATGACACTAGTCAAATAGTTGAACTACAAGAATTACTTGAAAAGCAAAACTATGAAATGGCCCAGATGAAAGAACGTTTAGCAGCCCTTTCTTCCCGGGTGGGAGAGGTGGAACAGGAAGCAGAGACAGCAAGAAAGGATCTCATTAAAACAGAAGAAATGAACACCAAGTATCAAAGGGACATTAGGGAGGCCATGGCACAAAAAGAAGATATGGAAGAAAGAATTACAACCCTTGAAAAGCGTTACCTCAGTGCTCAGAGAGAATCTACCTCCATACATGACATGAATGATAAACTAGAAAATGAGTTAGCAAATAAAGAAGCTATCCTACGGCAGATGGAAGAGAAAAACAGACAGTTACAAGAACGTCTTGAGCTAGCTGAACAAAAGTTGCAGCAGACCATGAGAAAGGCTGAAACATTGCCTGAAGTAGAGGCTGAACTGGCTCAGAGAATTGCAGCCTTAACAAAGGCTGAAGAGAGACATGGAAATATTGAAGAACGTATGAGACATCTAGAGGGTCAACTTGAAGAGAAAAATCAAGAACTTCAAAGAGCTAGGCAAAGAGAGAAAATGAATGAGGAGCATAACAAGAGATTATCGGATACTGTTGATAGACTTTTGACTGAATCCAATGAACGCCTACAACTACACTTAAAGGAAAGAATGGCGGCTCTAGAAGAAAAGAATGTTTTAATTCAAGAATCAGAAACTTTCAGAAAAAATCTTGAAGAATCTTTACATGATAAGGAAAGATTGGCAGAAGAAGTTGAAAAGCTGAGATCTGAACTTGACCAACTGAAAATGAGAACTGGCTCTTTAATTGAACCCACAATATCAAGAACTCACCTAGACACCTCAGCTGAGTTGCGGTATTCAGTGGGATCCCTTGTGGACAGCCAGTCTGATTACAGAACAACTAAAGTAATAAGAAGACCAAGGAGAGGCCGCATGGGTGTGCGAAGAGATGAGCCAAAGGTGAAATCTCTTGGGGATCATGAGTGGAATAGAACTCAACAGATTGGAGTACTAAGCAGCCACCCTTTTGAGAGTGACACTGAAATGTCTGATATTGATGATGATGACAGAGAAACAATTTTTAGCTCAATGGATCTTCTGTCTCCAAGTGGTCATTCTGATGCCCAGACTCTAGCCATGATGCTTCAGGAACAATTGGATGCCATTAACAAAGAAATCAGACTAATTCAGGAAGAAAAAGAATCTACAGAGTTGCGTGCTGAAGAAATTGAGAATAGAGTGGCTAGTGTGAGCCTGGAAGGTCTGAATTTGGCGAGGGTCCACCCAGGTACCTCCATCACTGCCTCTGTTACAGCTTCATCGCTGGCCAGTTCATCTCCCCCCAGTGGACACTCAACGCCAAAGCTCACCCCTCGAAGCCCTGCCAGGGAAATGGATCGGATGGGAGTTATGACACTGCCAAGTGATCTAAGGAAACATCGGAGAAAGATTGCAGTTGTGGAAGAAGATGGTCGAGAGGATAAAGCAACAATTAAATGTGAAACTTCTCCTCCTCCTACCCCTAGAGCCATCAGAATGACTCATACTCTCCCTTCTTCCTACCACAATGATGCTCGAAGTAGTTTATCTGTCTCTCTTGAGCCAGAAAGCCTTGGGCTAGGCAGTGCCAATAGCAGTCAAGACTCTCTTCACAAAGCCCCCAAGAAGAAAGGAATCAAGTCTTCAATAGGACGTTTGTTTGGTAAAAAAGAAAAAGCTCGACTTGGGCAGCTCCGAGGCTTTATGGAGACTGAAGCTGCAGCTCAGGAGTCCCTGGGGTTAGGCAAACTCGGAACTCAAGCTGAGAAGGATCGAAGACTGAAGAAAAACACATCTGGGCATGAACTTCTTGAAGAAGCTCGGAGAAAGGGGTTACCTTTTGCCCAGTGGGATGGGCCGACTGTGGTTGCATGGCTAGAGCTTTGGTTGGGAATGCCTGCATGGTACGTGGCAGCCTGCCGAGCCAACGTGAAGAGTGGGGCCATCATGTCTGCTTTATCTGACACTGAGATCCAGAGAGAAATTGGAATCAGCAATCCACTGCATCGCTTAAAGCTCCGATTAGCAATCCAGGAGATGGTTTCCCTAACAAGTCCTTCAGCTCCTCCAACATCTCGAACTCCTTCAGGCAACGTTTGGGTGACTCATGAAGAAATGGAAAATCTTGCAGCTCCAGCAAAAACGAAAGAATCTGAGGAAGGAAGCTGGGCCCAGTGTCCGGTTTTTCTACAGACCCTGGCTTATGGAGATATGAACCACGAATGGATTGGAAATGAATGGCTTCCCAGCCTGGGGTTACCTCAGTACAGAAGTTACTTTATGGAATGCTTGGTAGATGCAAGAATGTTAGATCACCTAACAAAAAAAGATCTCCGTGTCCATTTAAAAATGGTGGATAGTTTCCATCGAACAAGTTTACAATATGGAATTATGTGCTTAAAGAGGTTGAATTATGACAGAAAAGAACTAGAAAGAAGACGGGAAGCAAGCCAACATGAAATAAAAGATGTGTTGGTGTGGAGCAATGACCGAGTTATTCGCTGGATACAAGCAATTGGACTTCGAGAATATGCAAATAATATACTTGAGAGCGGTGTGCATGGCTCACTTATAGCCCTGGACGAAAACTTTGACTACAGCAGCTTAGCTTTATTGTTACAGATTCCAACACAGAATACCCAGGCAAGGCAGATTCTTGAAAGAGAATACAATAACCTCTTGGCCCTGGGAACTGAAAGGCGACTGGATGAAAGTGATGACAAGAACTTCAGACGTGGATCAACCTGGAGAAGGCAGTTTCCTCCTCGTGAAGTACATGGAATCAGCATGATGCCTGGGTCTTCAGAAACATTACCAGCTGGATTTAGGTTAACCACAACATCTGGACAGTCAAGAAAAATGACAACAGATGTTGCTTCATCAAGACTGCAGAGGTTAGACAACTCCACTGTTCGCACATACTCATGTTGACAAGCCACTCAAAGGAGGCAGCACTGACCTGCTATGTCGTCTTTTCAGTCTACTCTACCTAAAGTGCACTACCATCTAAGAAGACAAGCAGTGAAAATATTTGTGAAAACTGAATTCTAAGAAACTAATGATGTCATGATTTATTAAAAGCTGAAAAAAATGTGATTTTGGGGGGAGTCAGATGTTACATTTGATTAGTTTACTACAATTGTAATAAAATGCTTAAGTCATTTGAATAATAAACATCATCTACATCATAAACTCTGTACAACAGATGCTTTTATGAAATGAAGCCACTTGTTTTTCATGTTTTATTGTAATATACTAGGCATTTATGTATTACTGTGCATTTCTTTTTAAATGTGTAAGTCTTATGTAAATGGATATAAATATGATTTTTTAAAAAATAAAATATATGGTTCATGGAGTCTCGAGTACAAACATTTGACAATTCTAAGTACTGTTTGTATTTTACCATTCCACCATTTTTACAGTTTTTGAATTGTTAACAGTCAAATCAATGTTTCCTTGAAGCATGTTCCATGCTTCAACATGTTTCTCCTTCAAGTCTGTCAATACTTACTTACTTACTTAAAGCTGAACAACCTGCCTCTGATCATGTAAAAAAGAATGATTTAACCTGGAACTGGAGCCAAAAAATAGAGCTTTAAAGGCAATCAGGGATGTCCTATATCTTTAGAAATAGCACTGTGATGGCTCGATCTCCTTTTCAATACAAAACAAAGCCAACCTGTTTACAAGGGTCAAAAGCAATTATTTAAAAATTTATATTAAAAAACCATTATCTTCTCTTGTTACCTGTGGACCAAGAAAAAAAAAAAAAAAAAAAAAACTTCTTTACTAGAACCACATGTTCATTTAAGTATCTTGAACTGCCAGCCAGTACTGGACAGCGAAATGTCAACCGCCGCAGAGTCTGAGGCTCATTTCCACGAGAAAACAAAACCCAAGAAACCCTTCCCTTTTGTCAATGGAACAGGGCATTAGCCAAACTCATGTCTAATGTTATAAGCTTTCAGCCAAGATGGCCTTGTTGCGACTTCCCTGAAGTCAGTTTATCAGAGGAAATAAATGAAAGACAGAACAATTAACACATATAGTGTATAAAATTATGGAAGAGTAATCTCTTTCCCTGTGGCTTTATTTGGTGGTGTTACTGTTGTTTATTCTTTGTTTATATGGGAGATTCAAAGTAAAACCTATTTACTAATACCATTTATCTAACTGCGGATTTTCTGCTGCTTGATCTTATTAAGCGCAAGACCTGTCATTAGTAATTTTTTTTGTATTTTAATTTGCTATGTTTGCACGTACATTACATTTGTTTCGATGTCTATTTTTGTTTAACAGATTCAGTCAAAAGGTAATGGTAACAGAAACCCTTTCCATTGTCAATAATAAAAAAAATACTTCCA +>XM_021543360.1 PREDICTED: Lonchura striata domestica calpain 7 (CAPN7), transcript variant X2, mRNA +CGAAAGTTTGTCAGGCTTCGGAGGAGCCGCGTTCTTCGGGGCGAGTTGCGAAACGCCTTTTCCCTGCGTCCTGGTTTTAGGAAGCTGCACAAGCCTTGATTTATGCTGGGATGGCTGGGTCCAACTTGGAAAATATTCAAGAAAAGATAAATGAGTACTTGGAGAGAGTTCAAGCTCTCCATTCAGCAGTTCAATCACAGAAGACAGACCCTCTGAAGTCAAAACAACAGTTGGACTTGGAGCGTGCTCACTTCCTAGTTACACAGGCTTTTGATGAAGATGATAAAGGCAATGCAGAAGAAGCTATAGAGTTGTACACAGAAGCAGTGGAACTCTGTTTGAAAACAGCTACTGAAACCTCAGAAGCCAGCCTCCAGTCCAAACTGAAACAACTGGCTCGACAAGCACTGGATAGAGCAGAAGCACTGAAGGAATCTATGTCAAAGTCATCACAGAAAGAAAAGTCAACTGCAGCCAAACCAAATCAGCCAGTCAGAACGTTCTTTCCACTGGGACCTGATTTTTCTTTAAATGATAAACCACAGACAATCAGAGCAGTACAAGCTAGTGAATCTCAAGGTCAGAGATACACTGCAGAGGAGATTGAAGTACTCAGGAAGACTTCAAAGATTAATGGCATTGAATATGTACCTTTCATGAGTGTTGATCTGAGGGAACGTTTTGCCTTCCCTATGCCTTTTTCTGATAAGTGTGGGAAGCTACCATTATCCCCCAAACAGAAAGCAATGTTTGCCAAGTGGGTGCGACCAGATGACATAACAAATAACCCTACAATGATCTATACTGTATCAAGTTTCAGCATAAAGCAGACAATAGTGTCAGACTGTTCTTTTGTGGCATCACTAGCTATCAGTGCAGCATATGAAAGAAGATACAACAAAAAACTGATCACGAGTATAATTTACCCTCAGAATAAGAAAGGAGAACCAGAATATAATCCATGTGGTAAATACATGGTGAAGCTTCATATCAATGGTGTTCCTAGAAAGGTAATCATAGATGACCAGTTACCTGTTGATCATAGTGGGGAACTTCTCTGCTCTTACTCCAATAATAAGAATGAATTATGGGTGTCACTAATAGAAAAGGCTTACATGAAGGTCATGGGAGGATATGATTTTCCTGGATCAAATTCTAATATTGATCTCCATGCACTGACAGGTTGGATACCTGAAAGAATTGCTATGCACTCTGACAATCAAGCCTTCAATAAAGATAGCACTTTCAGAATGCTTTATCAGAGATTTCACAAGGGAGATGTCCTTATCACAACAGCAACAGGGGTGATGTCTGAAGAGGAAGGAGAGAAGTGGGGTTTAGTTCCAACCCATGCATATGCAGTCTTGGATATAAGAGAATATAAGGGACTTCGATTTCTTCAGCTAAAAAATCCCTGGAGCCACTTGCGTTGGAAGGGACGATACAGTGAAAATGACACAAGAAACTGGACCCCAGATTTACAAAAATACTTGAACTTTGATCCCAGAACAGCTCAGAAAATAGACAATGGCATTTTCTGGATTTCCTGGGAGGACCTGTGCCAGTACTATGATGTTATTTATTTGAGTTGGAACCCAAGTCTTTTTAAAGAATCTACATGTATTCACAGTACGTGGGATGCAAAGCAGGGCCCGGTGAAGGACGCCTACAGCCTGGCCAACAACCCTCAGTACAAGCTGGAGGTGCAGTGTCCACAGGGTGGTGCTGCCGTCTGGGTCCTGCTCAGCAGGCACATCACTGACAAGGATGACTTCGCACACAATCGGGAATTCATTACAATGGTTGTATACAAGACTGATGGTAAAAAAGTTTACTATCCAGCTGATCCTCCTCCTTATATTGATGGTATTCGGATTAACAGTCCTCATTATCTGACCAAGATAAAGCTGACCTCTCCAGGTTCCCATACATTCACCTTAGTGGTGTCCCAGTATGAGAAACAAAACACCATCCATTACACCATCAGGGTGTATTCCTTGTGCAAGTTCACCTTTTCCAAGATTCCTACGCCTTACACCGTTTCCAAACGGGTTAATGGACAGTGGAAAGGTCACAGTGCTGGAGGATGTGGAAACTTCAGAGACACCTACAAAAATAACCCCATTTATCAATTCCAGCTAGACAAGAATGGACCATTGCTAATTGAACTACGGGGGCCAAGGCAATACAGTGTTGGCTTTGAACTTGTCACCGTCTCAACAGTGGGAGATCCTGGTTCCTATGGCTTTCAGAAAAAAAGCAGTGGTGACTACAGGTGTGGATTTTGCTACTTGGAGGTGGAGAACACATTTGCTGGAGTTTACAACATTATCCCCACCACATTCCTGCCTCAACAAGAAGGGCCTTTTTTCTTAGATTTTAACAGTACTACTCCTCTTAAGGTGTCACAGCTGCAGTGAGGAGACAGAACTGTGTAGTGTTGTTTAAGGAGATGGTTTTGATCTGTCCAGCAGCCTGAGAACAGGTGAAGAACCCTTACTACACATGCACAAAAGAAAATTACATCCTGATTTATAGCCAAAAGCATGGAATCACAGATTGCCAGTTAATTATGGCAGGGAGTTGGCTGTGGGTTTGCTGCTGTGGTCTAGGAGTGAGCACTGTTCAACAGGCTTGGGAATAGGCTAAAATGCATATATTCAAATGAACCAGCAGAACTCACTCAATTTATTGCAGTTTTTCCACACTTTGAATCAAAGTCTACTGAGTTACAAGAAAAACTAGCATTGAAATTCTCTCCTCCCCACATACAAGGTATAGGAGCTAAAGATTCTATTCTTAAAAGTAAACATGTAAGAAAAAATATTCTTGTGTATTCTGCTTATTCAGTCTCAGGACCAAATAGCTTTTATTACACATTTGTGCTGCTATCTGTAATGTTTTCAGCACTGAACGGGTTCTCAAATCTAAATGTAAATGTACTACTGCTGAGTCAAGAGTATTCCATGTGTCATCTTATCTGGAATATGTATATAGGAATAAAGGAAAAAGAAGGTTCCAGCTTTAGCTATTTCTAAAAGCAAAGCAAGTGCTTTGCTTATGTTATGTGTACCTTGAGAGCTGTTACTTCATATCTGTATGACTTTAGCACATAATACAGCATGAGGTTCTGTGGCTTTCTTCCTGCTATCTGCCAGACCTAGGTTGATCCTGAGGAGCAGGAAAGACAGGAGATCATCCAGCAGTAGTGATCAGGCAGTGCAGCACAGCCTTCTATGAGCAGCTGTGAAAGGTTTTCATCTGAAGATCCCCTGTATGATTCACTGTATCCACTGAGGGTAGTCTCAGTTACTGGTGCAGGGAGATGGGGAACTGCCCACCATCAGCAGCTCAGCAAAGAAATGTTTTATTTTCATCACTTTTGTAAGTATGTGTCATGTAGGGAAGGATCATTTAAATCTCTCTCCCAATACACCACAGCTTCAAGGAAGGCACTTGCTGATTCAATTATACAAGACATCTTTGAAAATATACTTTTTTCCTTTTAAAATGACACCAGTGAAGGAATTGAGCACAAGGCCAGTGTCATCAATAGAAGCAGGGTCACAGTTCTTAAGAAAATAGTGGAGGTGGGATTAATGCAGAACAAGTTATTTTTTTAGAAGTTCCCCCTGTATGTGTTCTTCCTCTAGATCTGTATAAATTGTATCTGAAGTGAATTCAAGATGAGCAGCTTTTATTTAATACCAACTGCCTGACAGATCCCAAAATTGATTAAATTTTGTCATTTTTACAAAATTTACAGTATTTCACAGCTGAGGGAGAGGGTGTTTTTAAAACAGCCATGGGAATTTTGCTGCCATTCACATTGGTTTGGCAGTTTTCCAAGCAAAAAGGTAGCATTTAAATCTTGCTTTAGATTACAGGTGTCACTTAGCCACTGGGAAACTGAACATACATTCTACAATAGCACCAGAAATAGCTGTGGGCTAAAGTTATTCCCACAGAAATCTGCTATTAGTCCTCTCCTCTCCTTTTGTTTCATTTCCTTCATCAGACAGCTGCTTAACAAGTATCTGGCTCTGAAAGGGCAGGGATAGCTCCTGCCTTGGAAAACACATGCCTTGCTGACTGCAGTTCTCTCAGAGACCATCTGGGCTAGGGAATTCATGACAAGTTTGTCACAGAGTGACTTACCTTCTTTTGCAGGGAAGTCTCTGATGTTTAGTGCAATAAATCAACAGAAGGAACAGCATGGTTGCAAGCTGAGAAGAAAACAGATTAGGTTCTTTGTGGTTATGCTTGGCTTTTGGAGTATGTGCCAAGGACTGCTTCATCCATAAAATATGAAAATTTCATTCAACGCCCATTTTCCCTACAGATTTCTGTTAAGTTTTTAGCCGAGGCTAAACCAGAGTAGCAGGAGAGTCCTCCATCTTATCACCTCTAAAGTTGGAGGTAGTGGGGAAGTATGAACCGAGTATCTTTTTGGCAGTACAAAAGGCAGATGCCAGAAGTGCCAGCTTTCAGCAGCAATTTCTTGCACATTCTCTGCTGTTTGAGATCAAGCTGGTAGACTTGCCTACAGGAAAATCTGTTGTTGTTCTTCAGTAGTTGGTTCCTACTCGGAAGGAAGGAGTTTTCCTTTCTCTTTCCCCCTGAGCACAAGTTAGTGCCAAAGCTTATGCTGCATGAAATGAGCAGAAGGCTCAGCTTCCATACTGTGCTGAACTTAAACTGAACTGAACTAAAAAGTAAGAAATGTACTCACTTTCCTAATGCCAGGCAAAAACATTAAGGCCAAAGGATCCTGTCCCCACCAGGATATGCCAATATTTCTTACGCATTCAGAACAGTCAGTGGATTGGGCTTATCCCCATTAGTGCATAGGACTTAAGCTTACTGTCAATCTTATATATATAAAGCAAATTCTATTCAAATATTGCATCTGGATAGGCTACTAGAATGCCATCACTGTGCACTTCCCTTCAGATACAGGACAGAACACTCAGGTGAAGTATTTCAGAGGTACTACAAAATATCCATATAAATTGCAACCTAGGGATTCTGGTTATGGCAAATTTATTTTACAACGAAATTTTCTTGTCCTTTTTTCTTAAGAAAAAGCATTGATATAAGCATTAGGATTTGCTTTAATATTTTCTGTCAAATATATACTTTTATATATTTTCCACAAGTAAGTCTAGAAAAATTATTGCAAAGTGAACTGATCCTTAGATTTTAACACAAACTCAGACCACTAAGTTAATATTTTCTTTTCCCTGTACTGTTTAGCACTTTTTGAACCATACGAGAGAGAACGTAGTTTGTTCTGTTAGGAAGACACAAGTTAGCCCTTGGTTGATCCAATCTCTCCGTTCTCAAAGATGCAGTGAGACATTGTACCATGGATGAATGGTATCAACACCTGCCCCAGACTGTGAGTCTGAGTTCAGTCCTAGTCTCCTGCTGCAAGCTTCATGTAACTATTTTGTACAGTAATTATGCATTTAACCACACAATGTCTGCAGCCTTTGAACAGCCACCTATTTAGATCTAAGTGTGTGTACATACAGTAGAGGTTTTCATTGCTTTATCTAAAAGGACATTGAAATCGTTTGATAATACCAAAGAGAAGTAGAACTCCTAGGTTAATACTGGCTTTATACATTCTCACATCAGGGCAGATGAAGCAATCATGTATACTTTGATACACCAGAGGCTTATTTTTATACCCATGAAGGCAGCTACCATCATGTTACACTTCAGAATCCACGAAGAGCTTAAGTAAAAACTAACTGGAGAAAGCTTGTTCCCTTACTTGTACTACATAGCAATGTGTGTTCATTTAAGTCTGTCATATTTATGATTATGGCTTTTATGAAGTTTAAAATAAAATGAGTTTTCCATTAATTTATTAGACA +>XM_017957302.2 PREDICTED: Papio anubis enhancer of zeste 2 polycomb repressive complex 2 subunit (EZH2), transcript variant X5, mRNA +TGCTTGATTGGGTTGGGGGGGCCAAATAAAAGCGATGGCGATTGGACTGCCGCGTTTGGCGCTCGGTCCGGTCGCGTCCGACACCCGGTGGGACACAGAAGGCAGTGGAGCCCCGGCGGCGGCGGCGGCGCGCGGGGGCGACGCGCGGGAACAGCGCGAGCCGGCGCGCGGGACGAAGAATAATCATGGGCCAGACTGGGAAGAAATCTGAGAAGGGACCAGTTTGTTGGCGGAAGCGTGTAAAATCAGAGTACATGCGACTGAGACAGCTCAAGAGGTTCAGACGAGCTGATGAAGTAAAGAGTATGTTTAGTTCCAATCGTCAGAAAATTTTGGAAAGAACGGAAATCTTAAACCAAGAATGGAAACAGCGAAGGATACAGCCTGTGCACATCCTGACTTCTGTGAGCTCATTGCGCGGGACTAGGGAGTGTTCGGTGACCAGTGACTTGGATTTTCCAACACAAGTCATCCCATTAAAGACTCTGAATGCAGTTGCTTCAGTACCCATAATGTATTCTTGGTCTCCCCTACAGCAGAATTTTATGGTGGAAGATGAAACTGTTTTACATAACATTCCGTATATGGGAGATGAAGTTTTAGACCAGGATGGTACTTTCATTGAAGAACTAATAAAAAATTATGATGGAAAAGTACACGGGGATAGAGAATGTGGGTTTATAAATGATGAAATTTTTGTGGAGTTGGTCAATGCCCTTGGTCAATATAATGATGATGATGATGATGATGATGGAGACGATCCTGAAGAAAGAGAAGAAAAACAGAAAGATCTGGAGGATCACCGAGATGATAAAGAAAGCCGCCCACCTCGGAAATTTCCTTCTGATAAAATTTTTGAAGCCATTTCCTCGATGTTTCCAGATAAGGGCACAGCAGAAGAACTAAAGGAAAAATATAAAGAACTCACCGAACAGCAGCTCCCAGGCGCACTTCCTCCTGAATGTACCCCCAACATAGATGGACCAAACGCTAAATCTGTTCAGAGAGAGCAAAGCTTACACTCCTTTCATACGCTTTTCTGTAGGCGATGTTTTAAATATGACTGCTTCCTACATCCTTTTCATGCAACACCCAACACTTATAAGCGGAAGAACACAGAAACAGCTTTAGACAACAAACCTTGTGGACCACAGTGTTACCAGCATTTGGAGGGAGCAAAGGAGTTCGCTGCTGCTCTCACTGCTGAGCGGATAAAGACCCCACCAAAACGCCCAGGAGGCCGCAGAAGAGGACGGCTTCCCAATAACAGTAGCAGGCCCAGCACCCCCACCATTAATGTGCTGGAATCAAAGGATACAGACAGTGATAGGGAAGCAGGGACTGAAACGGGGGGAGAGAACAATGATAAAGAAGAAGAAGAGAAGAAAGACGAAACTTCGAGCTCCTCTGAAGCAAATTCTCGGTGTCAAACACCAATAAAGATGAAGCCAAATATTGAACCTCCTGAGAATGTGGAGTGGAGTGGTGCTGAAGCCTCAATGTTTAGAGTCCTCATTGGCACTTACTATGACAATTTCTGTGCCATTGCTAGGTTAATTGGGACCAAAACATGTAGACAGGTGTATGAGTTTAGAGTCAAAGAATCTAGCATCATAGCTCCAGCTCCTGCTGAGGATGTGGACACTCCTCCAAGGAAAAAGAAGAGGAAACACCGGTTGTGGGCTGCACACTGCCGAAAGATACAGCTGAAAAAGGACGGCTCCTCTAACCATGTTTACAACTATCAACCCTGTGATCATCCACGGCAGCCTTGTGACAGTTCGTGCCCTTGTGTGATAGCACAAAATTTTTGTGAAAAGTTTTGTCAATGTAGTTCAGAGTGTCAAAACCGCTTTCCGGGATGCCGCTGCAAAGCACAGTGCAACACCAAGCAGTGCCCGTGCTACCTGGCCGTCCGAGAGTGTGACCCTGACCTCTGTCTTACTTGTGGAGCCGCTGACCATTGGGACAGTAAAAATGTGTCCTGCAAGAACTGCAGTATTCAGCGGGGCTCCAAAAAGCATCTATTGCTGGCACCATCTGATGTGGCAGGCTGGGGGATTTTTATCAAAGATCCTGTGCAGAAAAATGAATTCATCTCAGAATACTGTGGAGAGATTATTTCTCAAGATGAAGCTGACAGAAGAGGCAAAGTATATGATAAATACATGTGCAGCTTTCTGTTCAACTTGAACAATGATTTTGTGGTGGATGCAACCCGCAAGGGTAACAAAATTCGTTTTGCAAATCATTCGGTAAATCCAAACTGCTATGCAAAAGTTATGATGGTTAACGGCGATCACAGGATAGGTATTTTTGCCAAGAGAGCCATCCAGACTGGTGAAGAGCTGTTTTTTGATTACAGATACAGCCAGGCTGATGCCCTGAAGTATGTCGGCATCGAAAGAGAAATGGAAATCCCTTGACATCTGCTACCTCCTCCCCCTCCTCTCTGAAACAGCTGCCTTAGCTTCAGGAACCTCGAGTACTGTGGGCAATTTAGAAAAAGAAAATGCAGTTTGAAATTCTAAATTTGCAAAGTACTGTAAGAATAATTTATAGTAATGAGTTTAAAAATCAACTTTTTATTGCCTTCTCACCAGCTGCAAAGTGTTTTGTACCAGTGAATTTTTGCAATAATGCAGTATGGTACATTTTTCAACTTTGAATAAAGAATACTTGAACTTGTC +>XM_028016850.1 PREDICTED: Xiphophorus couchianus intraflagellar transport 27 (ift27), transcript variant X1, mRNA +ACCACAGGGAACGGTTGCTAGGAAACGAGCTTTGTCCATTTTTGCCGAGGCGAATGGAAGATTAAAGCTGCTAGCAGGAATGCTATTTAATTTATTAACAGACACTTACAATATTTCTCACGAGGTTTCGAATGTACGCCGAATAATGGTGAAGTTGAGGGCAAGATGTCTGCTTCTCGGGGATGCTGCAGTGGGGAAAAGTTCTCTTTTTCACATCTTCTACAATGATGGATCTCTGTTCCAGAAGAACTATAGCTTGACAACGGGAGTGGAGCTGGTGATGAAATGTATCAACATTCCAGAGACCAACGACTCCGTGGAGCTCTATATCTTAGACTCGGCGGGGAAGGAGACGCTAGCGGAGGGCTGCGAGAAAATGGTCAGAAGCTGCTCTGGATTCTTCTGTTTTCATTTGCATGAAACTAATCAGTGGGGGGAGCCATCTTTGCTGTGTCTGGTGTTCGATTTGACCAGTGAGCAGTCTTTTGCTAACTGCGCATGTTGGATGGAAAGAGTCCAAGCACACTGCAAAGGCCTCCGTGTGCCAGGTGTTCTCGTGGGAAACAAGTCGGATCTGTCAGCTAGAAGGGAAGTACAGGCGTCCGTGGCCGAGGAGTGGGCCCAAAGCAAGGGACTGGAGTACCACGAGACATCAGCTAAAGAGATGGTCAACTGTGATGCCCCCCTCCTCAGTTTAGCACAGTCCTTCTATTCTCTCTACCAGGAGCAGCGTGAGATCATGCAGAACCTCGGGCCCGGCTAGACTCCTCTTCCTTCACCACAGAGCTCACAGCCGTTTGAGACGAACCACTGCGAAGGAATTGCTTTAGGAGAATAGGATTTTCTGGCAAGGATACTGAAAGGCTTTCTGATTGTTTTTGTTTTAAATAAAGGACTAAATAAGGAGCAA +>XM_015847342.1 Paracoccidioides lutzii Pb01 hypothetical protein (PAAG_11752), partial mRNA +ATGCAAGGACCAGAATATGTTTTAGATGAGCGGACGGAGCAATTGTTAACCCAGGGGACCAAGGGCGGATATGAGAATGGGTTCACATTTAGAAAGTTGCGGCTGGAAATCTCCTTTATTCGCAATCACCCATGGATGAAACGTCTCACTCCTTTTCCCTTTGGCCCACAACAGATGCTCAAAAATCAATTATGGGGAGTGTCTCCGCTATCATTTTCTCGTCCACAGACAGAGGAGGTCCCTTTGGATCAGAAGGCTCAAAATAATAGTGGATCCCAATCCCGCATCTTGGAACAGCGTGCCCGAAGGGTCAAAGCACTTGCTATCGCTTGTGGCGCTGGAGATGGCTGA +>XM_018786474.1 Plasmodium gaboni hypothetical protein partial mRNA +ATGATTTTTAAAAGGTTCTTCCATAAGTATCCTGGAGGAAGTAAAATAAAATGTTATATAGAAAAACGAAAGAAAAAGAAATTAAATATAAGTTTATTTCATCAACCTCTATATTCTAAGAATTCGAAAAATTTTATTGATTGGAGATATAGTACTCCTAAGTCAGGGTATGAATATATGTATATATATGGAGAGAACACTATTGAAATAACGAATTTACCGAATAACAAAACTAATGAATATATTCAAGAACGTCTAAGAAAAAGTTTAAATAAATATGGAAGATTAAAAATTATCAGATGCTTAAGTCATAGGAATGATCCATATATAAATAATAATATTTGTTATGCTACATTTTATAATAGAAAAGATATGTATAAATGTATACGTAATATTAATATAAGACTTCCAATATCTTTACAGTATAAAATATTAAAATTTAAAAGTTTACTTTCCAATAAATGTAATGATTATAATTATTTTTTTAAACAAGACCATTATAATTACAGTGCTATAAATATAGCTTTGAATTTGTTTAAATATTTAGAATATAATAATTGTAGTATGAATATAAAGGATATCTACAAGCATGTATTTGAATATTCGTTTTATCCTCATAAAATTATTTCTTCAGGAATATCAGTTTATAAAATATTTAAAAACTGGACAAATTTTATATATTTTTTTGATAACTTATTTCATATTGTAAAAAAAGATGATGATATTTTTATTACAGCCAAAATTCTTAATGATCAAAATTTATCTATTTATTTAAACAACAAATTAATTGAATTAAAAAAAAAAACGGAACAGAGTAATTCCGTGTATTGGAGGGAGCACTCTTTACAATTACCCGAAGAAATTGAAAATAGAATAAATAACGATCGTCCAAAAAAGTTAAAAGAGGAACTGCAACTTTTGTCCAAGACAAAAGATTTTTACAAGATTCATGACGAACGACACTTATTTAAACTGAAATTAAACAAGGAGCGAAAAGAAAAAAAAAAGATGTTAAAAAAAAATAAGCAACAAGAAAAGGAAGAAAAGGAAAAGGAAAAACAACTTAAGAAGGAAATGTACTGA +>XM_046923823.1 PREDICTED: Gallus gallus integral membrane protein 2C (ITM2C), transcript variant X1, mRNA +GGCAGTGAATGCGCTCGGCTGCAGATGAGCACTGTAACTTTCCATGGAAACTGCTGCATTGATTCTCTGCCTTTGGCTGCAGGAGGAGCAGGCTCCCGTGGTGCAGGGCCGCAGGTCATCGCTCAGCGGGGTGTGCTACCTGACCATGGGTCTCCTTGTGCTGCTCCTCGGCTTGGTCTTTGCATCAATGTATGTCTACAGATACTTCTTCATCACGCAGCTTCCCCGTGAGAGCGTGTTTCATTGCGGCGTCCTTTATGAAGACTCGCTGTATTCACCGTTCAAAGGGCAGCTGGAACTGCACGAAGATGTCAAGATTTACATCGAGGAGAACTACGAGCAAATCAATGTCCCGGTGCCCCAGTTTGGAGGGAGCGACCCTGCAGATATCATCCATGATTTCCAGCGAGGTCTAACAGCTTATCATGACATAACGCTGGATAAATGCTACGTCATTGAGCTGAACACCACTATCGTGATGCCTCCACGCAACCTCTGGGAGCTGCTGGTTAATGTGAAGAAAGGGACGTACCTGCCTCAGACATACATCATCCAGGAGGAGATGATTGCGACCGAGCACGTCAGCGACATGGAGCAGCTCGGCTCCTTCATCTACCGCCTGTGCAGCGGCAAGGAGACCTACAGGCTGAAGCGGAGGAGCACCAGGAGACGTATCAGTCGACGTGAGGCTGGGGACTGCCACCGTATTCGTCACTTTGAAAACACTTTTGTGGTTGAAACTGTTATCTGCAAAAAATCATGAAGCCCCTGTCCAGCTGTAACCTTCCGTGGCTTTGCTTGCACACACATGCTCTCAGCCCTCTTTTTAGACTTGGTAATCTGTCTTACTTTTTTTACGCCCTCTCCTGCTTGTGCAGCTCTAAAGCCTTGGGTCTGTCGTGGCCTCGCAGTTGATTCTCTTCTCTTTTCTCCTTACTGAGATGTTTTGCTGGGCTTAAATTTATGCAGCGGTCACAGATGGCCTTGGAGTGGATGCAGCCTCTTCCACCCCACAGGGTGGGGATCTGTTTTGGGAGCAGGTTTTGGGTAGAAGGGACGACCAAGAAATAGGATGCTGGAAATGGGCGCTCTTCTCATGTCTGAGCAGTTTCCTGCTGGCGCTGTTGTGAGGCTGGGGCAGAAGGTGTACTACAGGAGGAGAATTACCATTCTGATGCTGATGTAACGACCAGAATATGTCATCAGATGGACTTAGAATTAGATGCGAGGTTACAAACAGGGTGATTTGGAAAGCTCAGCAGGAGAGTTTCTGCCCACGCTGAACTGTGGTGCTCACAGTTTGTTGTCCCAATGAAGGCCAAGTTTTTGAACAGTGAAAGCAGCCCATATGCATTGTTTCTGTGTCTAGCTCCTGGCTGATTTGGAGTGGCATACCTGGAACCAGCCAGGCTACCCTCCCTCAGCCTTCAAAATAACAAGCAAGTGGTATCTGCTTGGGGCTCCTGAGCTCATCTGCTACGGCTTTGCCTGAGTAAATAGAGGTGAGCCGTCAATACATGCTGCCAAAGCTCAGCTGATGTCCCATCCTATGGGCTGCTGATGAAGCTGGATGCTTTATTTCAGCTCACCTCTCCAGGCCAGCTCCTCCTGCCTGGAAGATGAGTTATGTGAGTTATGTTCACATAGATCTGTCTTTCTGAGTTGTCAGGATCCCATCTGTGTGTGGATGGGTGCCATGCCAGCATGCAAAGCGGTATCAGCAGCAGGATCAGTAGTTACTGGCATCTGCAGAAACAGGGTGGTTTTTTTTGTTGTTGTTGTTGTTTGTTTGGGGTTTTTTGAGAGCATATTTCCACAGAACTCCTCTGAAGAAAGCCATTTTGATCATAACTCCTGTAGCCCAGCTGTGTGTTGTGTCATCTGTAGGCACCGCTAGAGAGCAGGTGTCGATGCAAGGCAAGATTCAGTGCATCAATATACTGCAGAGAAATTGTATGAACAAAATTGTGTTTCTATTGATCATCAGAAAGAAAAATTGCAGGGTACTTAAACATTCTTCCCTCTGTTCCATAAATATAGTAAAAACTAATGAGGTTCTTAAAATGCAGGCAGTTTTTTGGCTTGAAAGAACAGCTTGGCACATTCTTGTTAATTGGTTTTCAGCAAATCTGGACTTGTTCATCTGTTGAAATGAGCTTGTTGTTTCGGGAAGAGAAAGGATAAAGTAAATGCAAGAACAATCATTAACTCAGCAGGACCAAAAAAATTAATGTATTTGAGAGTCAAACTTCTATTAGTAATACTGTGAGCTAATTATATGAAAACAAAACAGAACCTTAAAATGATCGCATAACGCAGTAGCAATTAGTATGTCCTTAGAAGCTGAGGTTCTTATTTTTTTATATAAAAATAGAGTCAACCATAAACATTAGATTTTAATAGGTAGAGGAGGAGGTGCTGATCACCTGCTTTTTAAGGTGGATGTGAAATGTGAGATTGCATGTGTTTCGTGCAGACCAGTGAGGAAAGTTTCCCACTGCCAGAGGAGTATTTGCTTTTATAGTACAGCTGTGTTTTTCCACTACAACTTGCTATTAGTCCTAACCTTTCATTGCAAAGTGAATGATGAGAGTCAGAGAATCGGTTTGCTTGGTGGAAGTAGCACAAACTGGTAAATTTATGCCCTGCATTTCTCTCTGTTTCCAGGATCCTAAGCCTGCACTCAGGTGAGCGCTCAGACCTTTCCCCTTCCCTCTGATGCTGCATGAATTAACTGGTCATTGAATATGCTAACTCTGTGCAACCCCGCAGCTGTAAGGACAAGCCCTGATTCTTTAAGGTGAACTAACATGGTCGCTGTTTCATAGGGTGAGAATGCAGTTGTCTAGAAAGAAAACACAAAATGCTTTGTATATTTTGTCTGGTAGAACCTTTACCTCTTAGGAAACATTCATGGGATAATAAAATCTTTTACCTCTGATA +>XM_008488083.3 PREDICTED: Diaphorina citri protein rogdi-like (LOC103523006), mRNA +GCACGATGAAGTTCGAACAGTACCAGGCCGAGAACTCAATACCATGGCTGAATGAGGTGCTCGTGCTGTTCACCGTGGCACTTCAACTGTGCCAGCAACTCAAGGATAAGATCAACGTGTTTGCCCAATACAAGGACTTCATCGTGTCACCTAATCTCTCCACACCTAGTGCTACCTAGTGGTAATTATGTAGATTAAGAAAGTGTGTACAGGGTGGTCCCATTGATGAGAGAGGGTTCACTGCAGATCATGGTTCACACAGTATATTATTATTGCACAA +>XR_001166349.3 PREDICTED: Fundulus heteroclitus uncharacterized LOC105928738 (LOC105928738), ncRNA +CGTGTCTTGCACGTCGTCGCGAACGTTCGCTTGCTTCCGGCTTCCGTAGTCACTTCTGTGGCCACCAGGGGGGAAAATGACGGCGTGGAAGATGTGCGGTAAGCAGATGCATAGCTTTACCCTCGTGGGAACTACAGAAGCCGACGTCACGTAACTGCGCTTCGCTGAACGGCTGTTGTTACGAAGAAGCAGGGGATGATCGTCCGGTAAGGGCCTTCCAACGCCAGAGGAGGAGCAGGACAGATGTGCTTCCGAACGCATTTCAGTTTGACTGGGAGTCGTATGAAAATGCAGCGGAGCTTTTTGTCCCCATTGGTAAGGTTGGTTAACGGAGGTTAAAGAATATTAAATATATTGAGGAATTGAAAAAATAACGGGGATAAAACCTCGCGTCTACCTGAACGCAGCTTTACTTATTTCTCTTTTGTTCAAGCATCAAATGTTAGCTTCAGATGGAAAATAAATGTGACAATATGGGGGAATTCCCCCTAAGTGTGGACACTTTAAAAATGTGTGTGTTTAAAGACACATTTCCTTATTATAAGAGGAGCCGTGTGAAATCCCCAAGTTGTCTTCAGCACGTAGCAAGTCGCTTTCGGTTTTATCTGTTTATGATGACTTCCTTGTCATCGTCTCTTTGATGAAACAGCCATTTACTTTAGCGCTAGCGGCTAGTCCAAGTGGGCCCTAGGTCAGTATGTTCTGGGAAATCAATCCAATATCAGAAATATCCTAATGGTTCATGTGAATTCTACTTCATGAACACAGCTGTCAGATTTACACTAGAGGGTTATTTCTAGAGAACCGTATGGTTACAGCAGATAAAATTAGAAATGGACACAGGAACAATTTTCTCAGTAAATGTATTTCTAATACTTCTATTGAGGCCACCAGTAAATATTAAACCTTGTGATATTTATTTGCACATAATGGCTGGAATATTTTCTAAATACTAACAAGCCTTTGGCTGGTTTCTTGGCTTTCAATGCCTTTTGGTACATCCTTTTCTCATCCACCCTTCCACTTTATTACACATGACTCGAATTTATAGACTAATTTGCTTTGATTTCTGCATATGTGAGGATTACTTTGTGTGTTGCTAATATCCGTTGTGAATTTCATCTCAGTAGAAAGTAGGGGCATCCCGATACTGATTTTTTTTTTTTTCAGACCGAGCACGAGTACTTTAGTTCAGATACTTGCTGATTGCAAGTGCTGATACTGAGTATACTGATATAGCTTTATTTGATCATAATCAACTGGATTTTGGTCTTTTTGGTATAAGCATACAACGTGGCTCTATACCTTTAAAGACAATGTGCATATATATTTGAGAGTGGATATGTTTTAACGTAGTAGAAGACCGTTTTGGAACTTTGGGATTTTAGCGCTTAAGCAGATCAGCTTTAACACTGGAAGAGTTATGTACTACAGGCAAGGCATGTTCATAACCTCTAACAGAACGTGACAAACCTGAGCTACCCCTTTAAGGTCGCTCCATGAATGATAATATTTAAGTTGGTGGAACCTTCACAGGTGTTAGCTAAACGTTTTGCTTTTTAAACCCTTTCCAGAAAATAATCTGTGGATGTTTAAATAGATCCTATGTTACTCCTCCTGAGGAACCTGCCTGCAGCCTACACCCAGCTCCATGCCTTTGAGTTAAGTCCGTGGCAGATATAGTTAAGCCCAAAATGATTTACAGCCCTAGAAGACTTATGTTAGTATTTTTAAAATATTACTTTTAAACGAGTTTCTTCTGGCAGGAAGTAATAGCAACGTTCTTGAGCGACTCGTCCTTAGTGCTGGCTTTAATCTGGTAGAGAATCAGCGGAAGCAGCTAAAGATTAGGGTGATTGCTTGGAGGCCTTTCAACCTTGGAGGCTTGGTGCTAATCACCAACAAAAAAATCTTTGAAATATGAGTGGAAAAATACAAAAAGATGGTCAGCAATTTTAGGACAGGTTGAATTGCTGTGATGCCAATGAAGATTAGACCTTGGGCTATTGAGAAGGATGTGCACATTTGGCATAATATTTTGAATAAAATGTAAAACAAGAATGAATTGAAGCCTTCCATTTACATTTTTCAGTATATTTTGGGAGATGCCGCTCTCATTTTTTATCAGAAACAAATGCAAATGATTTAAAATCAAAATCGTCCAGGGGTCGGAATAATTTAGGTTTAACTCTTATTGTCTGTAAAAGTGCTGAAAGCCTGAGTTCTTTTAAATCAAGATTAAAAACACATTTGTTTAGGATTGCCTTCGACTGTTCTAGTTAAACTGTTTCACTGAAATATAATT +>XM_024809453.1 [Candida] sorbophila hypothetical protein (B9G98_02896), partial mRNA +ATGGATCAACCATCTTTTACTATGGCCGAGCGGCTGTATAAAAAGGCGTACTCTGCTTCGTTCTGGAGCCAGAACGATTCTAAACACGGGTTTGACTCAGAGACCACGACTATTGTGCCGCATCTTGCCGATGCGCCCTTGTCTTTGAGACAGAAGGCACACATTTTGCTAGGGGTTTGCAAAATCATCTCGTCAAATGGGCGAATACTGAGTATAGAGGTTATACGGACCTGGAAATCGATGAACATTGTCAAATCTAAACCTAAAACAGACCCGCTACTGCTACCTGCTCGAAGGTCTCGCTCCCACACTCTCCCAGAGAACCCGCTCATCAACTTAGAGCTGGAAAAGGACTGGCCACCTTATAAACTGCCCAAACTCGCCTACACCCAGACACCGTCGCATTCCATCAGCGATTCTATTCGGTTAACAGACTTCCCCTTGGACCAAACCGAGTCCGACTACTCTTCTGTCACAGAAAGTATGCTTTCATACCAGAGTGATTTATTTGGTAACGCGAATCAGGTCTTGTTTGATCTGACGGAACATTCCGATACTCCTTTCAACCAAGTAACGCCAATTGCTTCGCCAGTTACGTTCAGTGAACCAGTCTACCCCGATGAACCGATCGAGCCTTTAGATTTCAGCGAACCGGATGAAACAGAGGACCCTACAGAAGCAAGACAAGATCCCTCAAGGAAATCTAAAGTGACTATTCAAAAAGAGATATTTTATTCCCAAGATAAACTAAATGAGTGGTTTGATGGCTATGATGAGTTCTGCAAAAATGCCTCTCGGCCATCGAAGAAAATAACATTTGAACGATTGTTTTGGGGTCGAGAAACTTGGTCTGCTAGGCATAATCGAAAACGCAGAGAGGCTGAGCTGCTGAAGAAAAACAAAGCAGCACCACCGGCCATGCCGACACCAGACCTGATAACACCAGACCAGAGCTCTGATGCGGATGAATCCCCTCATCTAGACGCTTTCGACAACCAATTTGATATAATGGATGATGCAGACAACAGTGATATTGAATTTGATGAGACACCGGGAAGTCCAATGCTGGAACTTCGAAAGGGGGAGTTTGAACACACCCTGGATACAGTGGGTCTTCTTCCTGAATCGTGGGATGAATTACCGCCACACCCACGTATCTCTGGGAGCTTTCAAAGAGACCAAAACGAACTTCAGGGTTTCTTACAACAGTTGACTGGCCAAGATGCGTTGATGGCTGGCCGAGTCACAGAAGAGGACGATGTGGCAATATTGGAAAAAGTAAACACCCTTGGTGGGAAATGTCTGTTTGATCAAGTCCACACAGCAACTCGTCTGAGTAAAGGGCATGCGTTTTTCTCGGTTTTGCGACTCGCTCAACAAGGCAAACTATCGCTGAACCAACCAGACGTGTTCGGAAAAATAACGATCCAGTCCTCATTTAGACCGCATTAA +>XM_044046427.1 PREDICTED: Solea senegalensis ret proto-oncogene receptor tyrosine kinase (ret), transcript variant X1, mRNA +TGATACTGAGGAGGACTTCATCTCTCTGTGTCTGCCCAGACAGAGAACCGCGCACTCGGGACGCACACTGGTTTATACATCGCCCTTTTTTGACTCTTGTGGCTTGATTTTTTTTTTTTAACTATTTAAAGATTTTTTGTATTCTTTTTGCCAAAGGAACTTTTTTGAAGTCACGTTTCATTCACAAACCTTTACTTATGGTGCGCGAAAATGGGGTTAAGTTCTGGTTTCTCTCGTGGAAACATCGCCGTGTTGATGCTGCTGCTGCTGCTGCTTGAAGGAGTGACAGGGTTGTACTTTCCTCAGAAGGAGTACATTGAGACGGTATACGTGGGCCAGCCTGCAGGTACACCGATCCTCCAGGTCCACGCTATGCTGGACAACGACTCCGAGCGGCCGCATTTCTACCTGTGCTGGAGCGCGCTCAAACGTCCACCCCACAACTCCTGGTTCCACATGGACATTAACACTGGAATATTGTCCTTAAACAAAACCCTTGAGGAGAGCGACTTCACCTTCCCAAATCAACATTCGTGGTCAGTGAAGAAGTTGGTCCTTCATGCCACAGTCTTACCCAACGTCTCCAGGAAACCTCACTGCATGAACAAAAACGCCCCTCGGATCACTCTGGACTTTGTCAACGCCACATTGCCACAGTGTGCTCAGACAGATATGAAGGAACTGTGCTTCCCCCACAGAGACACCGCCAACCCTCACATAATGGAGAACAGGTTCCCCGGGGCCATCAGGCAACTCCGACGTCTTACCAGACTCAACGTTTGTCCTAACTACACCATCTCTTATAATGTGGAATCAGAGACCCCAGCGCCATTTGCTGTGAACGACAACTCCACAGAGTTGGTGGTGACCGCTCCATTAGACCGCGAGGAGAGCGAATGCTACAGACTCCTGCTGGTCTGTACAGTCCGAACAGAAACAGTCATCACCAAGGTGGAGACTTCCCTGGACGTGTTTGTTATGGACGAGGATGATAACGCACCATATGTAAATGGAACAGACGCAACAGATATTATCATCAGCTTCAATCGTACAAAGGGTGGCTCCTTTGGAACCTTGTTTGTCTTTGACAGGGATTTAACCCCCATTTTTCACATTGACAAGAGTCACAGTAAGTACAGGGGGACCTTGCTCAACAGTGATGCATGGATAAATAAAACGTTTGACATAAAAGGCACCTTCAGTGAAAAGAAAGCTGCTCATGGAGGCATTCGAGAGACCATTCACGACTACCAGCTTGTCCTGAAGAGGAACCTGTATGTGAATGAGAATCGCTCCGTGCAGCTGGACTACCTGGTCAATGACACAACCTACCCTGGTGTGGAGGGAACAGTGTTGCTGCACTTCAACATCACCATCTTACCAGTGCACATCCGCTTCGCAAACGTCACACACACGTTCACACTGACACGTAGAGCTTCCGTTTATGCTCAGGTTGGCAGAGTGTGCGTGGAAAACTGCCAGCAGTTTGATGGCTTCAGTGTCACGTACCGCCTCGAGGTGCCAGATAGGAACGCATCTGCTGACTTGCAGTTCTGCTATGGAGCCATTAGCATTACCCAGTCTCCTGGCGAGATGTGGGGACTGCTCTATGTGAACGACTCGGAGGCTTTGCGCAAGCCCGAGTGCCAGGACCTGCAGTACTTTGTTGTCGCCCAGGAGGAGCACACAAAGCAGGAGGCCACCACACAGATCCACATCCAACTGGATAGTGAAGTAAACAAAGGCAGCCAGGAGAGCCAGCAGTTCCTGTCCTGTGCCGAAAACAGGCGACGGGGAGACTGTGAGTCTGTCCGAGGCCTGGGGGCAACCACAGGGAGCTGTCAGTGGAGGCAAGGCACAGAGAAAGGAATATCTGAATATTACTCAACCTGCTCGCCTGATCTGCGGACGTGCCCAGATAGCTTTTGTGATGCAGTGGAAAGCAAAGACCCATTAATATGCCCACAAGACTGTACAAAGGAGACCGTAATTGGAGGTCATGAACGAGGTTTAGGGAACGGGATTAAAGCTGGATATGGAACCTGCTACTGCTACTCTGAGAGATGCTTCTGTGAGAAGGAAGATATTGAGGAGGCGATATGTGATGACATGTGCAAGACCATCATCGCCACGTCTCTGCTGCTCTCCTTTGTCGCCTCCATCCTCCTGTCCTCATACTTCATTCACCGGTATCACAAGAACTCGCCGAAACCACCGATAGCCTCTGCAGAAATGACGTTCCGTCGGCCAGCTCAGGCTTATCCCATCAGCTTCCCTGCAAACAACTTACGCCGGGGCTCACAGGACTCTATTGAGCCTGATACCTTTAAAATCCCTGAAGATCCAAAGTGGGAGTTTCCTCGTAAAAACCTTGTACTTGGCAAGACTTTAGGAGAAGGAGAGTTTGGAAAAGTTGTCAAGGCTACAGCTTTCCGGCTGAAAGGAAAAGCAGGTTACACCACTGTGGCTGTGAAAATGCTTAAAGAGAACGCCTCACACAGTGAGCTGCGTGACCTGCTGTCGGAATTCACTTTACTGAAGCAAGTCAACCATCCGCATGTTATAAAGATGTATGGAGCATGCAGCCAGGAAGGACCATTGTATCTGATTGTGGAGTACGCCAAATATGGGTCGCTCCGCAACTTCCTGCGCGAGAGTCGGAAAGTTGGCCCGAGCTACATGGGCAGGGACGCCAACCGAAACTCCAGCTACCTGGAGAACCCAGATGACAGGGCGCTCACCATGGGCGACCTGATCTCCTTTGCATGGCAGATCTCCAGAGGCATGCAGTACCTGGCTGAAATGAAGCTCGTTCACAGGGACCTTGCAGCACGAAACGTCCTCGTCGCTGAGGGAAGGAAGATGAAGATCTCAGACTTTGGCCTCTCCAGAGACGTGTATGAAGAGGACTCGTATGTTAAGAGGAGCAAGGGCCGTATTCCTGTTAAATGGATGGCAATAGAGTCCTTGTTTGATCACATATACACAACCCAAAGTGATGTCTGGTCCTTTGGTGTGCTGCTGTGGGAAATAGTGACACTGGGAGGAAATCCATACCCAGGCATCGCTCCTGAACGCCTCTTTAACCTCCTCAAAACTGGCTACAGAATGGAAAGACCAGAGAACTGCTCAGAGGAAATGTATAACCTCATGCTTCGGTGCTGGAAACAAGAACCAGACAAGAGGCAGACATTCTCAGACATCAGCAAAGAGCTCGAAAAGATGATGGTGAAAAGTCGGGATTACCTGGACCTTGCAGCTTCCACGCCTGCCGATGCTCTGCTGTACGATGACGCCCTCTCTGAAGAGGACACTCCACTAGTGGACTGTAATAACGCCCCTCTCCCTCGAACCCTCCCTTCCACATGGATTGAAAACAAGCTCTATGGCATGTCATACCCGAACTGGCCTGAGAAGAGCCCGGTACCGCTCAACAGACATGATGCCACTAATCCAGTCTTTACAAGATATGCCAATGATAGTGTTTATGCAAACTGGATGGCTTTGCCTTCACCCGCAAAAGCTGTGGACAAGCTTGATAGCTAAAGACAAACCGACACTGTAGAAAAGATGACTAATTGGTAGATGTATATATTTCTATAAGACTGTATATATATACGATCTGATGCTAAAGTTGGTTCCCTTTTATTTCTGTTGCATGGGTTGCATTCAAGGTTTAAAGCTGAGGTGTTTTGGCTACTAAAACTGGCTGGATCAACGTAGACCATGCTTCATTCTGCTCTTCAGTATGTTAATTATTACCTCATGGGTCATGTTGGCCAAGTTGTATCACTGCATGACTAGTGTACCAGATTGTATGTCAGTGTCAATGTCTTTAAGTGCCTGTGCCGCTTCTACAATACCCTCCAATTGTTAATGTGCGACCGTGAAGATCTTGTTCCAGCCCAGGAATTAAAGGGGACGTCTTTACCATCACTGTTGTAGACAGCTGGGATTGAGTGGACAGAAAATGCTGAACTTGTTCTGCAAATGTAAAGTTTCTACTGTGGAGAATCCAGCTCCTCGAAATGTCAAAGGCCCATTTTGTGTTTCTCCCACAAGATTTTTCAAAGCTGTTGTTGCCAAAGAAAAAAGTAACACAGACATGTTCAGTGAACGAGTTCATATTCTTTTTTTTCTGTTTTCTGTTGCTTTTTTTTACATGACAAATATCAACTAGAGAGTGTTACTGCAGTGTGAGGACATGAGATTTAATGTAGATCGTGACAATGTTCTTTCGTCAGACTATGGTTCACTTTTTTTTGATTCACTGTAATTGCAATCTTTGTGGAAAAACCGTACGGTGATGTAAAGTAAGGAGTGTTATCATTGTCCTGTTATTATTTGATTATGTTACCATTAATAATAAACATTCAAAATGTGCAGTTTGTCTAAAGACGGATAAGTTTCTGTATGATAGCTTTTTTCACAATTGAAA +>XM_029888545.1 Pyricularia pennisetigena uncharacterized protein (PpBr36_01358), partial mRNA +ATGGAATCGTCGCTGAAGTGCAACACGCTTCTGTGCAGGACAGAGCTGAAGGACGAAGCTGTCGTCACCAGCTGCCTTCATGTTTTCTGTATTGATTGCGCTTCTCGCGCCAACTTGATCACTCCAGGCGCGGAGCATCTTCGCCAGTGTCCCGCATGCCGTTCGCCCTTGCCGGGTCCAGATCACGCAGTCCATGTCAATCTAAGACCTTCTGATGACTACAAAGGCAGCATTTTACGTGGATTAAGTCCGGTCGCTGTGATTGACTGTGCCAGTGCTGCCTTGAACTTTTGGGAGTATCAGATGGCCCAGGAGATCGTCTATCATGCCTACTTTGAGCAAACATTGACAGACAAATACTCACAATCGAGAGCCGAGCTGGACAAGATTACAGGAGAAGCAAATGGCCAGATAGGAATGCTGTCTGACAAGCTATCCGCGGTCACACTAGAACGTGACTCTGTGCGCCGAAAGAACGATGAGCTGATCGTCATGCTAAAAGAAAAGAACAAAAAGCTCATGCAAGTCCAGGAGCTATACGACAAGCTGAAACGCAAGGCTATGCTAGGTTCACTGCAAGACGGTGCCTCAGAGGCGGTTGATACAACCTTGGATCGAGTTGCAGCTGTTGGTGCCACGCCTGTAGCCGCAGATCGATACCAGCGGCTGGGGTTTTACCAACAACAGGCCGGCGACGTTAGACCTCATGGAGGTTTACAACCAAGAACAGGAAACACGTGGGACCAGCAGTTTAGACGCGATCGCATTGCAGCAACGCCAGAGCACAGAAACCATTCAAACAACACCGCTGGAATTAGACTTTCGAATATACCGGGCTTAGTTGTTGGCGGCGCGCCTCTGCTCAACCAGGACCGCCGTCACGGCTTGAGGTCAGAGCATCAGCACCTAAACGGTGTCCACGGTAACTCTGGGTATGGCGGTGCCAGTACCAACAACGGCCTTGGGCTGAACACAAGTGGTACAACTGGTGCTCTCCCGGGCGGAGCTGTTGGACTCTCATCCGCACAGAAACCAAGCTGTATGGACTCTCAGGATCCTTTTTCGATCATACTTAGAGCTGACTTTGGATATCTTCTCCAGTAA +>XM_033983629.1 PREDICTED: Periophthalmus magnuspinnatus butyrophilin subfamily 2 member A1-like (LOC117386288), mRNA +GAGGCGCTGTCAGAGTCTGATCCTGAGATCCGTGGACTTTGCACTGCACTTAACTGAAGGAATTTGACCTCAAACAAAACAGAGTTTCACTATGGGTGTGGAGATGCTCTCTGTGTTTTTACTCATGCAGACTCACTTTTGCTGGGGTCAGAACACACTGGTCGTTCCCTCTCAGCCAATCATAGCGCCCGTTGGTAGTGATGTCACTCTGCCCTGTCAGTTGGACCCTGTTAAAGACCTCAGGGACATGGTGGTGGAGTGGTCACGGCACGACCTGACGCCGCGCTACATCCACATCCGCCGGGACGGTCTGGACTTCCTCATAGACCAGAACTCCCTGTACCTGGGCCGCACCTCTGTGTCCGAGAGCCGACTGCAGCAGGGGGACATGTCCCTGAGTCTGACCCGAGTCAGGGCCAGTGACAGGGGCAAGTACAGATGCTACATCCCCCTGGTTAACGTCAAAGCAGAGGTCACTCTGATGGTCGTGTCCGTGGCCCCTCCCTCGATGAGCCTGATCAAAGAGCGCTCGGGGTCTCCCGTGCTGAGGTGTGAGTCCAGGGGCTGGTACCCGGAGCCGGAGCTGGAGTGGCTGGACTCAGAGGGGACGGTTCTGCTCAGGACTGAGGCTCAGAGAGGAGCGAGCGAGGAGCTGTTCAGTGTGAGCAGCAGACTGAGTGTGGAGCAGAGGCTCGGCAACACGTTCACCTGCAGAGTGAGTCAACAGGAGAGCGGCCAGAGCAGAGAGGCCCAGCTCAGCATCACAGATGAATTCCTGGAGGCCTGTCCCTCGTGCTCTGTGGCCTGGGTCCTCTTTAGTTTGCTGCTGTGTCTCGTTGCTGCTGCTGTTGCCTTTGCCGTGTGGAAGTTTCAAATCAACAAAACCAAGACTATGGAGAACAAACTTAAAGACTGTGAAGAAGGTGTGCCAATGATGAGGGAAAAAGAAGATGAGAAAATCCACAGAGGAGACGACAAACACAGAGGAGACGACAAACTGACTGAATACAAGGAGCAATTAGAGAAGATTAAAGAAGAGCAGACGTCTGCTGCACAGTTGAGTGAGGAACTAACAGGAACAAAGATGTTTCTAATGAAACTAAAAGAAAAACTAAACCAATGTAAGTATCAACTCAGCACTGACATGAAGGAGAAGGAGAAGACAAAGTATGACTCTAAGAAAGAGGAGAAAATTAAGAAAATGCAGCAGCAAATGGAGGAGTTTAAGAGCATTATTAAAGATGTTGACACAGAAATGTCTAAAATTGAGAAGCTTCTTTCAAAAACCAGTGAGAAGAAAGGGAAGCTGGATGAAGACGTCAGGCGTTTCACAAAACTGGTGCAACAACAGGAGGCAACAGAAAAGAAGAAACAGGAGGAGAAGAAACAGGAAACCAGGAATGAGGCTCATGATGACACCAGTGGAGGAGAGAATATGAACCCCAGTCCTCAAAAACCAGTAAACCCTCAGGAGCAGACAGAGGAGCTGCAGGCACAGGGGACGGAACCGGAACAAACAGACACAAATACAGAGCACTACTGAGAGAGAAGAAAAGTAAGTGGTACAGCATACCAAACAAAAAATGTAAAAATCAATAATCCATCAAAATAACTAAGTTTATTATTGACTACACGCACACGCACACACACACATTCATAATAGACAAGTGTCTTGCCTAAGGACACAACATTCTGTCACTTCTGTCCCGCTGTGGCTCCTGGTATCACACGTCGTCTCATCCAAACACTGACCAGGCCCCTGTTTATCTTCTGACGTCTGAGGAGATCAGGTTTTGACAAAGAGGTTTGGTCAAGTCAATAAACTTCATTATAATTTACAATATAAATAATATCTGAATAAAACACTGAAATACAGGTTTGAAGTCAGTGATAAATATTTACATTTGTCAGACTAATTGTGCTGTTTTCATCTCAGTGAAAATGTGTCTGAATGTGACAGTTCTGTTCATCAGTGTTTTACTCTGTTTATGTGGTGTCTATGACTGTGACATTATCCTCAAAGTTTGAACTGAACACAAAAATACAAACGTGACAGAGCGGATGAAGAGAAGTAATATTTTTTGTAGGACATGGCAAATAAGCAACTTTTATATCTTATTTTGTAACACTAATCCAAGAAATATGACTAGTTTTATACACTTAAGTTTGTGTTTGTTTACTGCTTGTTACTGTGGATAAAGTTTAATGGTTTGGTTCTTGTCATTCCATTCAACTAAACTAAACTTTTTAAAACGAAAAACTATGAATTATTTTTTTTATGTATTTGAAATGACTGTTTAACTGTGAAAAAATGTGCAATTGTGCCATCTGTTGGTGTTGAAAAGTAACTACATGTCTAAATAC +>KJ347058.1 Uncultured bacterium clone Evans.12.9_05674 16S ribosomal RNA gene, partial sequence +TACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGGCGGCCATGTAAGTCAGAAGTGAAAGCCCGGGGCTCAACCCCGGGACTGCTCTTGAGACTGTGTGGCTGGAGTGTCGGAGGGGTAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACGATCACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGG +>XM_027695588.1 PREDICTED: Neopelma chrysocephalum KIAA1217 ortholog (KIAA1217), transcript variant X7, mRNA +CTCCTAAATCGCCTTTATCTAGAAAAGAAGATTTTAACAGCCGATCACGAAAAATTAGGCTAGGTGAAAAGATTTTGAGAGCTGGCAGCGAAGGAAATCTGGTTAAACAGCATCAGCAGGAGCAGGTGGAAATCACAGAAGGGCTTGTGCCACGGAGGGCTCCTTTCCTGAAAGACCAGGCAAAAACCAGTTTGCATGTAACATCACTAGACGATGCAGAATGTCTCCGATCTAAAGAGCTCCTTTCGACCCCGAACAGTCACACCTCTTCTAATTCAAAGTCCACCCGCAACATCCCTCGAAGACATACAGTAGGTGGCCCTCGCAGTTCCAAAGAAATACTGGGAATGCAAACCTCAGAAATGGACAGGAAGAGAGAGGCTTTTCTTGAGCATCTGAAACAGAAATATCCCCACCATGCTACAGCAATAATGGGACACCAGGAGAGACTGAGAGATCAGACAAGAAGCCCAAAGCTGTCCCAGAGCCCACAGCCCAATTTGGGTGACCAGACAGAACACCTCTCTGAAGCATCTGCGGATTCCTTAGAGGCCATGTCTGAGGGTGATTCTCCAACCCCCTTTTCGAGGGGCAGCCGCACGCGGGCAAGTCTTCCAGTTGTGCGGTCAGCAAACCAGACAAAGGAAAGATCACTGGGTGTATTATATCTTCAGTATGGAGATGAAACAAAGCAGTTGCGGATGCCGAATGAAATCACAAGCACAGACACAATTCGTGCCCTTTTTGTAAGTGCCTTCCCCCAGCAGCTGACAATGAAAATGCTGGAATCGCCGAGTGTCGCCATTTACATCAAGGATGAGAGCAGAAACATATACTATGAATTGTGCGATGTGAGGAATATTCAAGACCGATCTTTCCTTAAAGTTTACAACAAAGATCCTGCACACGCATTTAATCACACTTCCAGAGCTGTAAATGGAGATATAAGGATGCAGAGGGAAATTGCTTATACAGGACGAGATGGCCCAAGTGGTTCCCGCCCTGGATCTGCCACGCACCCTCTGCATGCGATGCCCAGCTCTCCACCCTCCACCCCAGTGCCCCACTCCATGCCTCCCTCTCCGTCCAGGATTCCCTATGGTGGGGGCCGGCCCATGGGTGTGCCAGGCAATGCCACCATCCCCAGGGACCGTCTCTCCAGCATGCCAGCCTCGCGCTCCATATCGCCCAGCCCAAGCGCCATTTTGGAGAGACGGGACGTGAAGCCAGATGAGGACATGAGCAGCAAAAACCTTACCCTGATCCGAAATGAAGGTCTGTACGGTGACCCCTACTTGTTTCACGAGGGGAGGATGAGTGTGGCTGCACCGCACTCCGGACACCCCCTCGATGTCCCCGATCACATTGTAGCCTACCATCGCAGTGCCATGAGGTCATCAAGCACTTACTGCAACCCTTCAATGCAGCCTGAAATGCTGGAGCAGTCCTTGTACAGACAAAAGTCACGGAGGTACACGGAGAGCCATTTGCCCACTCTCGGCTCTAAAACACCTCCTGCCTCGCCCCACAGGGTGGCTGACATGAGAATGGTCGATATTCATCCTCACCATGGGACTCACATTCCCCACCACACCATCCAGCCTGACAGGTCTTCCCCCAGCCGCCAGTCCTTCAAAAAGGAGCCAGGACCGCCTGTGTTTGTGGATGCGAAAGCACGGAGTGCTGTTGGCCTCCCGGGCATGGCCGAGGCAATGCCCTCTCCAGCTGACAAGCAGGCTTTTGGCTATGGGTCACCTACCATGCCCAAGGACAAGGAGACAAGTGAGAAGATGATGTTGAAAATTGTGTCCAGCAAGAGCAGCGTTGACACTGCAGGTGTTTCTAACATGTCTGGGGGGAAGAATGCACTGGCAACTGTGGAGTCAGCTGTCGTCCATCACCCTGCTGGAGCCCTATCAATGCAAGTCAGCCTGCATGGTATGAAACGCAACGTGTCAGACCTGCGGCTGCAGCTGCATCAGATGAAGCAGCTACAGCTGCAGAACCAGGAGATGCTGAGGGCAATGGTGAAGAAAGCAGAGCTGGAGATCAATGGCAAAATGATTGAAACAGTAAAGAGGCTTGAAGATCCTGTGCAGCGACAGCGCAACCTGGTGGAACAAGAAAGGCAGAAATACCTCAACGAGGAAGAAAAGATTGTAAAGAAGTTATGTGAGCTGGAGGCATTTGTTGAAGACCTGAAGAAGGATTCTGCTGCTTCCAACAAGACAGTTACACTGAAAGATGTTGAAGATGGAGCCTTTCTTTTACGTCAAGTGGGAGAAGCTGTTGCTACTCTAAAAGGAGAGTTCCCAACACTGCAGAATAAAATGCGTGCGATCCTCCGAATTGAGGTAGAAGCTGTGAGGTTCCTAAAGGAAGAGCCACACAAGCTAGACAGCTTGCTGAAACGTGTGCGCAGCATGACCGATATCCTTACCATACTCAGGAGACATGTTACAGAAGGACTGCTGAGGGGTGTGGATCCATCCCAAGCCGTGCAATCCTCAGCTATGGAAAAGTCCACTGCAGCTGACACTCTGAAAAACCAGGAGGAGCACAAGTCTGCCCAAGGACATGCACAGCAGAATCTCACAGCAGTCACATCAGAATCCCAGGTGTCATCAGTGAAGTCAGAAGTCATCCCCTTCTCAACAATGACTGTCCATCACGTGCAGAGCTCGCCAGTTGTCATCCATCAGTCTCAGCACTCATCAGCCCTGGTCAACCATGCCCAGGGCTCACCCACTGCAGGCACTCACAGCGAAGGTGTGCCAGGTCATCTCTCAGCCACCCCGCCAGCCCCCCTGCAAGAGCCCACAACAGGATCCCAGCCCACACAAGCCACACCAGCACCACAGGTCTCTGTCAATGGCACCACCATGCAAAGTCTTTTCATTGAGGAAATTCACAGTGCAAGTACCAGAAACCGAGCTGTATCAATTGAGAAAGCTGAAAAGAAGTGGGAAGAAAAAAGACAGAACCTTGATCACTATAATGGAAAGGAATTTGAAAAGCTCTTGGAAGAGGCCCAGGCCAATATAATGAAGTCAATTCCTAACCTGGAGATGCCTCCCCAGCCAGCAGCCCTGCCTAAAGGGGATGCAGCAGAAAAGCTAGAAGTCTCAGAAGAACTTCCTGATGGAGAACAGGATAATGACAAGCTGACCAAGTCTCCACCTCCTCCACCTCCACGGCGCAGTTACCTGCCAGGGTCAGGACTAACCACGACGAGATCGGGAGATGTTGTCTATACAGCCAGAAAAGAGGCTGCTGCTGTCAAGGAATGCAGTGAGGATGCTGGGCAAATAGCACAATCCAAAGCCCCTAAAGAGGATCAGGCATTGTCTCGGAGCACAGGACATGCTATAGCATCAGCTGCAAAAGATGAAGAGGAAGAGGAAGGGGATAAAATAATGGCTGAATTACAGGCTTTCCAGAAGTGCTCTTTTATGGATGTAAACTCAAACAGTCATGCTGAACAGTCCAGAAATGATACACATGTTAAAGACATAAGGCCTGGGACTTTAATGCATCACAAGGAAAAGAAGGTGTATGGGGCTACAACAGGATCTCCCACAGATAGTGATCATCCTAAAGAGAAGAGGGAAGGGAAAACTGAAGAAGAATTGGGTTCTGATTCATCCAGTACAGCTGACAGTAAAATTGGCTTTTCAATGAATGACAGTCCTACATTTAGCAAGGGTTTGTTTGTAGACAGTACAGACTATTCTAACAAAAACCTTCAGAATAAGAGCACAAACCTGTCTGGTGTCAGTTTGCCAGAGGATGACAGACGAAGAGGGGCTCAAGATATTTTAGGATCCCATATTCCAGCTGTTGAAACTGGAAAACAAAAGCCAAACTACAAACTCTCAAGAGATGCTCACCAGGGCCTGCCACAGGGTGAAGTCTTGCAGAGCACAGGCAAGCACATCCCTATCAGCAGCGTTGCCCCTCTCGTGAGGCAAAGCCAGGAGGCCACAGGGCCTCAACCTGCCTTGCAGGAGCAAGAAGGTTCTGCAGTGAACTACAATCAGGTTGTGCTAAGACCCAAAGTGTCCAGAAGTAATAGTGTGAACAGCATTGAAGAGACAGACTCTCCAGCCACCTCTCCAAGTGAAGATGGCCCACCCACAGAAAACATCGCCTTCATGATTACCAAAACAGCTGTGCAGGTCCTCTCAAGTGGAGAAGTTCACGATATAGTCAGCCGGAAAGGAGGAGATGTGCAAACAGTGAACATCGATGCGAGGAAGGACGTAGCATCAGAAAAGGGTATCCCAGAGAACACAGACAGCGAAGAGCCAGTGGTGTGTCTGGACAAAAAACCTGTCATCATCATTTTTGATGAACCAATGGATATCAGGTCAGCATATAAGCGGCTTTCTACAATTTTTGAGGAATGTGATGAGGAGTTGGAAAAAATGATGACAGATGAAAAGATAGAAGAGGAAGAGGAGGAGGAAGACAATGAAGCACATGATGTCTCTGAGAGCCAGAAGGAAGAGTCACCAGTAGTTAATGACAGAAAAGCAACTGCAGAGCATTCAGCAGCTCACAGTCTCCAGGAGCCGTACCTGTTTAACCTTCAGTCTGACTCTGCAGAAAGCAGACCTCCTGCAGAAGAGGAAAGCACAAAGACAAATTTGAACAAATACCGTCAGATCTATGGGCTAAACACAGAAGCAAACTCAGACTCTGCCGATCAGTTTGGAAGCAGGCAGGATTCTAAGAAAAAATTTAAGTTTAAATTCCCTAAAAAGCAGCTGGCTGCTCTGACGCAGGCGATACGGACAGGGACCAAGACTGGGAAGAAGACCTTACAGGTTGTGGTCTATGAAGAAGAGGAGGAAGATGGGACCCTGAAGCAGCACAAGGAAGCGAAGAGATTTGAAATCACTAGGTCTCAGCCTGAGGAGAGTGACAAAAGTCCTTCTGGGAAGCAAGAGGGACCCTCCGGAGCTGCAGCGCCCCTATCTAGGACTGATGAAATTCGACAGAGCACATACAGGACACTAGACAGCCTTGAGCAGACTATAAAGCAGCTGGAAAACACCATCAGTGAAATGAGTCCAAAACCTATCCCTGAAAACACATACACCTCTGAGGGAAGTACTGTCCCCTTCTCTGCCCAGATAGTAGCAGAGACCCCATCCCGAGAGCGTGTAGTGCTGGATGAGAACCTTGCTGGTGTAGAGCCCCCTGCGTCCATCCCAGCCACTTCACGTAAGGGCTCCAGCGCTGCCTCCCAGACAAGCCGGATGCCAGTCCCCATGACTTCAAAAACTAGACAAGGAAGCATGGAGAAATCCGGCAAACAGCACAAGCTGCAGGATCCACGCCAATACAGACAGGCTAATGGAAGTGCTAAGAAAGCTGGTGGGGACTGTAAGGCTACTTCCCCTACCCTACCTGCTTCTAAGATCCCAGCCTTTTCTCCCACTTCTGGGAAAAGCAGCTCAGCACCTGCTTCTAGCGGTGACAGCTCTAACTCTCTTAATCCACCTACTAAAACCTCCATTCCTTCCTCCAACCTTCTTGGTCCTCAGTCAGGTCGCATAACTTACTCTACCTCCCTCATCCCCTCTGTCTCTAACGGCTCCTCCAAGTTTCAGAGCCCCACTTACCCAGGGAAAGGTCACCATCTCTCCTTCTCACTACAGACTCAAAATGGCCGGCCACCCCCTCCTTCCTCCTCTACCTCCCCCCCCTCCTCTCTGTCCCCCCCTTCACTGAACCAAGGTATGAAGAGCATCAGGACAATCCACACACCTAGTTTCAACAGCTACAAGGCACAGAATGGAAATGCCAGCAAGTCCACCCCATCCACGGTCAAGGAGCCATCCTAAAGGCTAAGCACGGCACACCTGCCAGGTCACCAAGGCTTTTTGTTCATTTTCTGCAGCCAATATTTTAACCAGGGAATGTAACCATTTAACTGTATTGCTGGAGGCTTAATACTAATCACGTGCTAAATACTGAATTACTACACTAGATTAGAGTGAAGCTTTTTGGAAAACTGTTGCTGTTGTACTGATAAAAGAGCATTTTCTTCCTATAGGCAGCACCTCTTACAAAAAGTGTGAAGGTGTGTGAGTGAACTTGACTGCGCGTGCACAGCGGTGTACTGAGCATGGGGAATTGTATGGTTAAAAATTTAGTAAGTTGTTTTGTATAAAGCTATTTTTCATTATGGGGTCTAGAAGTGAACAGAGATATACTAAAGTGTGATTATATTCAATTGTAAAACTGAAACTAAAATATTTTTCTTTTATTTTGGTGTTATTTAGCTTTGTTACAGATTTCTATTTTTGTCAACAAATGTCATGGTTCCTTTCGAGATCTTTTTGCCAAAACATTTTGATACTATTGTAATGTACATTTGAAAGTAGTATGCTGGACAGTAAACCTCTACACAAGAAACAAAACAAGACTGGTCTTATGTGTGTATGAGGCAACTCAAACTATTGCACTGCCATTCAGATTATATTTAAGAATTTGCCAGCCAAGAAAAAAATAAATTGTTTTACACATATAGATAGTTGCTGATTACTTTTTTTCTTAGCTAAATCCACCCTTTTTCCTTCAGTTTTATTTTACTGAGACCTGGTAGCCCATTAATGCATTGCATTGTGGATTTTAAAATGTACACTTCAGTACTGTTCTGTATACTGGCAAACTTTTGTACATATCTATAAATATCTATAAATAAAGAAATACTGTATGTGGCTGGGCA +>XM_001989357.2 PREDICTED: Drosophila grimshawi DNA-directed RNA polymerase II subunit RPB11 (LOC6562570), mRNA +CCATGAAATTGCTTGTGAACACAAGCCAAATATAGAAGAAATATTTCGCAAACAGTTTTAAACTTTTTATATTGACTTTTTCATTATCGATATGTAAAGAGGGCTTCATAACTAGACAGCACATTGATATAAATACCACAAACATCGCGTACATGCGATAGATCGACTGTGCAGTGTTGTTAAGCATGTGCGCACTTCAAGCGTTTAACAGCACATACTCAGCGCATTATTTTCGTGTCTGCAGTTGATTTTCACAAACAATTGCAATTTTATAAAACATAAATAAATAAGTAAATTAAAACAGCAAAATGAATGCACCGCCCACATTTGAATCGTTTCTGCTGTATGAGGGCGAGAAAAAAATAATCAAGGAATTGGATACGAAGGTGACAAATGCGGCGATATTCACCATCAACAAGGAAGATCACACGCTGGGCAACATGATTCGCAACCAATTGTTAAAAGATCCAAATGTTCTGTTTGCCGGCTACAAAGTGCCGCATCCGCTGGAACATAAATTCGTGATTCGCATTCAGACAACGGCCGATTATTCACCACAGGAAGCATTCATGAATGCCATCACTGATCTGCTGGCGGAACTATCGCTCTTCGAGGAGCGATTTAAGGATGCTATTAAGGAGAAAAAGGAGGGCGGCGATTAGTTTTACACATTTTTATTTTCGACAAGAAATTTACGAAACAATAGAAATATATATATTTTCACTAATTTGTATAAATAAATAAAAGTAATATATGCTATTAGTGAAATGTAATAGTTTCTCAGCTGAGGTAAAAGAAAAAAACAGA +>XM_027211675.1 PREDICTED: Coffea arabica probable tocopherol O-methyltransferase, chloroplastic (LOC113693095), mRNA +AGTGCCACATTGTTCCCTCTCCCTCTCTCTCGTTCTTCTCACAAGTTGTCTTGCGTGCTGCTTTGCTTCTCAGGACACGTTGAAGCTTTTGTTCTTTGCTAGCTAGGATTGTGCGGTACAACCAACAATAATGGAGGGGGAGAAGACGGATACCGAGGGAAAGGTGGAGACAGAGAAGATGAACAAGGAATTTGCGATGACATATGATGTCCACTCTAAAATGTTAGAGGATCTAGTTGGGGATCACTTCCATTTGGGCTTCTATGACTCTAGCTCCGTTATCCCTGGTTCTGATGTCAATTCTGCTCAGACTCGCATGATCGAGGCGGCCCTCCGTTTTGCCTCTGTATCAGAGGATCCATCTAAGAAACCAAGAAACATACTTGATGTTGGATGCGGTATTGGTGGCAGCACCAGGTACCTAGCAAGCAAATATGGTTCTCAATGTAAAGGCATCACCCTTAGCCCTTTTGAGGCTGAAAGAGCTCGTGTTCTAACTGCTGCCCAAGGATTAGAAAGCCAGGTCTGTATTGAAAGATTTGCAAGAAGTTATCAATTGTTAAATCACCCTTTATGCAAGTGCACAATGAGTAAAAATTTTCATTCTTCCATTTCTTAA +>XM_018222954.1 Mollisia scopiformis ARM repeat-containing protein (LY89DRAFT_786121), mRNA +CTCTAAACTGCGACCAAGGAGCCCACGAACGCGAAATAAGGCGCCAGGACTGCTTGGTCATGACAATATTCTCGATTCTACAATATGACTGAGGTGGAGGTCAACGGGATAGCGGCGGGCGTGGTGGACCTAGATCTCAAAACATCACTCTCTTCTTCATCAACTTCAAGGCGGATCAATACCCTCGCAATCTTGCAGGAGAGGCTCTCAAAGAATGAAATCAGCCCGAAATTATTCCCCCCTCTTCTACAGCTGTTATTTGACACGCATGCATACTATCGCGACCGCCCCTCTCGTCGAGCTGTTGAGCAATGTCTAAGACTTGCTTTTCGCTCAGGCTGTGCTCCTCCAGCATTAGCGGGCTTCATCAAGAATCTAGAGGCCGAGTCTTTGAAGCTAGGGATCGCCCCCAGCAATGCTTTTGTTCTGGTAGAATGGTGTAGCATGCTTCTGCAGGTGCTGACTGGAACCGACTACTGGGATATCTGGGGCTTCCAAGTTCTCGAGAGCCATGCTCGATTGCTGGAATTGTGTGTTGGAGAGTCTCCGCGGGACAACATTAGACAAACCGCACTGCGCGTCACATGGCGAGGACTCCGGGAGGCATTCTCTATACCCGAGAAGAGGCAAAATGTGATGAAAGGAGCTATCCAGAAACTTGCGTCAAAAGGTGCTCAGTCATCTGCGAAGAATGCTATCATGCTTGGAGCTATCGCTGGAACATGTGCGAGGAATTTCCAGAAAGAGTCCACGAAATCGTCAGAGATGAAAGAATGTCTCACGAACAAGAAATCCGAATACTACGCATTCTACATTCGAGAAATCATTGGTTCGCGGACTCTTGTACCAAGCCACATATCGAATGCTTTACATGACTTCTTTGCTTCGTTCGCAACAAAGGAGGACATAGAGAGGGAGATTGTTCCTGCTCTGGAAAAAGCTCTGCTTCGTGCACCGGAGATAGTGCTCAATGATCTCGTTACGCCACTGTTTCGTTCCCTTCCTGATACGATAGATCTTACAAGTATTCTTAAGAACAACCTTCTCAAACCTCTGCTTTCCAATATCAAGTCAAGCAATGCTACTATTCGCTTAGGAGCGCTTTCGGCACTTCGTGCTGCGGCTCCCAAGTGTCACGAGGTGAATGTTATTGCTGAGGTTGCAGAAGAGATTGTTACCCCTCTCAAAGCTGGAAAATTGCCTTCCGCTGATCAGAGAGCTAACCATGCCGAGATGCTTGCTCTACTCCCTGTCACAGAGACAACAGCTACCAAGATTGGTTCAGCTATTACCGCCGTTGTCGGCAAAGAAGCAAACGAGGCAGCGCTTACATCGGAGACATCAGCCCTCCTGCATTATGTAAGTTGGGCAATACAGCATGGAATGGATCTGGATAAGCAAATGACAGATGCTTTCACCAAAGGGATCTCGGATAAAAAGGTACCTTTCAAGAGTCTTTGGACCGGACGACTGGGTGAACTGTTCTGGGCCACGGATGATCATGAGATTTTGCGAGGCAAATTAGCTAAACTCGCTGAATGCACAATCTCACCTCTTATGGATATCTGGCAGGAAGTCACGGCGAACCCTTTGGCTGCAGCACAGTCTGGTCTCGTCGCCAGCGCTTTTGTGCTTACTGCTATTGCCTTTACGAAGCTACCACATGTTTCGAATAGCAAGGTTGATACGGCTCTGAAGAAAGCTCAGATAGGAAGACAAGCCTTGGTTATGGAGCCAAAACCTTCCTTCCTGTTGAACCCACGCATTTATGGGAAGCTTACAAGTGAGGAGGATTTCATCTGGCTTCTTCGAGCTCTTGCATCCACTGCACAAGATGTCGTTACGTCTGATACAGTTTCACCTAGCTCTATTGCCTGGTCTCAAGCCGTAATATTCTGCATATGCTCTTCAACCGTCAAGCCGAGTGTTAGAAAGAATGCTTCCGAAACCTTGACTAAGCTCTACCTCAATTATCCTTTAGCAATTGTCAAAGTTATCGTGTCGGGACTTTGGAGGTGGCGAGACTCCATCGAATCAGGCGACAAGGATAGTGCTGCTGTGTTGTCTAAAACAGAGAACAGCAATATTCACCATGTTATTCGAGCCATCTGTCTATCCCCAGCAGAAGTCACTCAGCTTGGTGGTCAAGTCGAAATGTCTGTCCGGATGGAGCAGATGATTTTACTGTTGGTTCTATCTCGACAGGAATTGTTACCGCGAGTGAGCTGGATCCAGCTGTGTCTCAAAGTTGAGGTAGATCCTGGCAACCTTGCCAGGAAATCTGGAGATGCTCTGGTTCAGCAGATACTTGATTGCACTAGATTTGACGAAAAAGCGACCTTCCAAAGATCCGACAATGTCAAGATCGCTGCTTTCCAAGCAGCAGCAGAACTTGCCTTTGTGGCCCCCGATGCAATGACCCCTAGAATTGTAGAGCTTCTTGAAAATGATCTGGACTCAACTCAATTGACTAACATCGGCCCAACAGAGGCGGCTATCTTCAGAACAGAAGAAGGCACGGCTTTTGTCGATGTGCTCGCGTCCAAGTCCCAAAGCTATGTTCCCAACAAAAATACAAAAGATTACGACACTTTGAAGTGGGAAGAAGAGTTACGAGCTCAGCTCGCACAGAAGAAAGGACAACAGAAGAAACTCACTTCCGAAGAAACTGCCAAGGTTAATGCTCAGTTGAAAAAGGAGTCTGCTATTCGTCTGCAGATTCGCCACCTTCAAGCAAAGCTCCTCCGTGGGTTTGGTATCATCAACAGCCTAGCCACAGGACCGCCTACTGAAGCAGGTCTTTGGATGGGGCCGGCTGTCAAGGCATTAGTGGAGGTAATTAAGGCTGGTGCTGGGCTCATCACAGGCAATGCAGCTCCCGATGCGTACATTGCCTGCGCAGAACGACTTCCGAGCCGCGTTGGTGCTCTGAGGCCATTCATAGGTATCGCGACATTGAGAGCTTTAAATGTACCACACCTTCCAGAGCATCTAGAGGAAGAGCCTCTAGGTGCGTTGATTACCAGAGTCCTTTATCGACTTCGCTTCTCTGGAGAACAACGACCTTTCGATACAGTCTCCTTGATCTACATTCTCCCTCTTGTCTTTCTCGTCCTGCGCGAGAAAGGCTTTGGAGAGTCTGATGACGCTGAAGCTCAGATTGTCTTAGCTTTAGAATTCTTATCTTACCATACAGATGCCTGCTCTGACGAGCTGGTACCACGCGAGGAGATCTTGTCTGTGCTAATATCATCGATGCAAAACTATAATCAGCATTACAAGATGATCAAAGATTGTCTGGCAGATCTTTGCCGTTGTATTGCGCCGAACATAACTGAGATCGAGCTGTCAATCCTTGCCCGCGGAGCAATTGTCCCGCAAGTTTCGGTTCGTTCCTCAGTCCTACAATCAATTAGTGCTGAGATCGATATGAGTGATGTAGACTTCTCTGACGAGATATGGCTCGCTTGTCATGACGACGTGGAAGAGAATGTCGAGCTTGGAAAAGAAATTTGGGAAGAGAGCGAATTTACAGTCTCCGAAGATGCTCCCTTCAGGATGCTGCCTTATCTCGAGATTGTGGACAAGCAATTGAGACGAGCGGCGGCAAGATCGTTAGCGGCAGCTGTGAAATTACGGCCATCAACATTTCAAGATGTGTTAGAACGCTTGAAGTCGACATATCAAGAGCTTGCAAAGCCCCGTGTGCCCCAGCTCGACGAATACGGCATGCCCAAAAAGATGGATCTGTCGGATCCCTGGGAGGCTAGAAACGGTATAGCTCTTGCGTTCAAAGAGCTAGCTCCCATTTTCGAGATTAGCCTACTTATTGCATTCTTGCAATTTCTGATTGAAGCTGGTCCTCTTGGCGACAGAAACCCAAATGTGAGAGAAGAAATGGTAGAAGCAGCTACCAGTATTATCGCACTTCACGGCAAAGACAAGGTGGAGGAACTAATGAAAACCTTCGAACAAACTCTTGAAGCTCCAGACAAAGGCTCCGAATTCGCGGATCGAGTCAATGAAGCTGTCATCATCATGTACGGAGCTCTCGCTCGACATTTGAAGGCGGGAGATCCACGAGTTCCTAAGGTAGTGGAGAGGCTGCTAGAGACTCTGAGTACACCTTCTGAAGCAGTGCAATACGCTGTTGCTGAATGCTTGCCGCCACTGGTACGTGCGTCGAAAGAGCAGAATCCAGAGTACATCAGGCATGTTCTCGATCGCTTGTTCAATTCCAAGAAATACGCTGCTCGTCGCGGTGCCGCCTATGGACTTGCAGGTATTGTTCATGGCATTGGTATACTAGCTCTGAGAGAATATCGTATCATGTCAACGTTGAAAGGTGGGATTGAGAACAAGAAGGATGTCAATCATCGTGAGGGTGCATTGTTGGCATATGAATTATTCTCAACGATTCTAGGGCGAAACTTTGAGCCTTACGTTATTTTAATCGTACCCCAGCTCCTTTCCAGCTTTGGAGACGCCAGTGCGGATGTACGTGAGGGTTGCTTAGCAGCCGCAAAGGCCTGTTTTGCAAGTTTGAGCTCATACGGTGTCAAGCGAATATTGCCTACGCTCTTGGAGGGCCTTGATGACCAACAATGGAGAAGTAAGAAGGGAGCATGCGACCTTCTGGGTGCTATGGCCTACCTTGATCCTCAACAATTAGCCCAGAGCTTACCTGAGATCATTCCACCATTGACTGGGGTACTCAACGACAGTCACAAAGAAGTTCGACTTGGCGCAAATCGAAGTCTGAAACGCTTTGGTGAAGTCATCAGCAATCCCGAGATCAAAGGCCTTGTGGACGTACTGCTTAAGGCTCTTAGCGATCCTACAAAGTACACAGACGATGCTTTGGACTCTCTCATAAAGGTACAATTCGTTCACTACCTGGATGCACCATCACTTGCACTTGTAGTTCGCATTCTAGAACGTGGACTAGGGGATCGCTCGGCGACCAAGAGGAAATCATCTCAGGTCATTGGCAGTCTGGCCCATTTGACGGAGCGAAAGGATTTGATCTCGCATCTGCCAATTTTGGTCGCTGGTCTCAAAGTTGCTGTGGTTGATCCTGTGCCCACCACACGTGCAACTGCCTCGAAAGCCCTTGGCTCACTGATCGAGAAGCTTGGCGAAGATGCTCTACCTGATCTTATCCCAGGATTGATGCAAACACTGAAATCAGATACTGGTGCTGGTGACCGACTCGGATCTGCTCAAGCTCTGAGCGAGGTCCTTGCTGGTCTCGGTACCAGTCGCTTGGAAGAAACACTGCCCACAATCTTGCAAAATGTTGCTTCCTCAAAGCCTTCTGTCCGAGAAGGTTTCATGTCACTCTTCATCTTCTTGCCTGTTTGCTTCGGCAACAGCTTCGCAAACTATCTCAGCAAAATCATTCCACCAATTCTAAGTGGTCTGGCTGATGAGATCGAGTCCATTCGTGACACCTCCCTCCGAGCTGGACGTCTTCTTGTCAAGAACTTCGCAACTAGAGCTATCGATCTCTTGTTACCCGAGCTGGAACGAGGTCTTGCTGATGACAGCTACAGAATTCGTCTTAGCTCTGTGGAATTGGTGGGCGATTTGTTGTTCAACCTCACAGGCATCAACGCCGGTACCGAGCAAGATGAGGTAGAAGAAGGTGCCCAGGAAGCAGGAGCCTCGTTACTGGAAGTCCTTGGAGAAGAGAAGAGAAACAAGGTCCTCTCGTCTCTTTACATTTGTCGTTGCGATACGTCTGGCTTGGTTCGTACCGCCGCAGTCAATGTTTGGAAGGCTCTTGTGGCCAGCCCAAGAACTCTTAAGGAGCTTATCCCAACATTGACCCAACTTATCATTCGCAGACTAGGAAGTTCCAATATGGAGCAGAAAGTTATTGCGGGCAACGCACTCGGCGAGTTGATTCGAAAAGCTGGCGACGGAGTCCTATCCAGCTTGCTTCCTACACTAGAGGAAGGTCTGCAAACATCGACAGATACCGATGCCAAGCAAGGTATCTGCATTGCTCTTCGAGAACTAATCTCATCTGCTTCTCCTGAAGCTCTGGAGGATCACGAGAAGACTTTGATATCAGTAGTCCGAACCGCTCTTATCGATTCCGACGAGGAAGTCCGAGAAGCTGCCGCAGAAGCTTTTGACTCTTTGCAGCAGATTCTTGGCAAGAGAGCTGTCGATCAAGTGCTACCCTATCTTCTTAACCTGTTACGCACAGATGAAGACGCAGACAACGCTCTATCTGCCCTCTTAACGCTACTTACCGAGACAACAAGATCAAACATCATCTTGCCTAACTTGATCCCAACCCTCACGACCTCTCCAATTTCGTCTTTCAACGCCAAAGCTTTAGCATCCCTATCCACTGTCGCTGGCTCTGCCATGACCCGAAGATTGCCTACGATATTGAATGCGTTAATGTCCAACATCATCTCCTGCAATGACGAGGGCTTACTCGAAGATCTCAACACATCATTCGACACCGTGATCCTTTCGATTGATGAATTTGATGGTCTGAACACGGCTATGAGTGTATTGCTTGGGCTCTCGAAGCACGATGACCACCGCATAAGAGCAGCTACTGATCATCATCTCGCAAAGTTCTTCGCTGCGGCCACTGTGGACTACTCTCGCTATAACCAAGATATCGTAAGAGCTTTACTTATATCTTTCGATGACCGGGATCCGGACGTAGTTCTAGCCGCCTGGACCGCGTTGAGCGAATTCACTAAACACATAAAGAAAGAAGAGATGGAAGCTCTTGTGTACTCCACACGACAAATCTTACAACATGTTGGAGTTGCTGGATCAAATCTGCCAGGCTTCAATTTGCCTAAGGGCATCAATGCCATCCTACCTATATTTTTACAAGGTCTCATGAATGGCACCGCAGAGCAGAGAACACAAAGTGCTCTTGCCATCTCGGACATTGTAGATCGTACAAGTGGGGATGCTTTGAAGCCATTTGTCACTCAGATAACTGGACCGTTGATCAGAGTGGTATCCGAACGCTCAGTCGACGTAAAAGCAGCGATTCTGTTGACTTTGAACAATCTCCTCGAGAAGATTCCTACATTCTTGAAACCCTTCTTACCTCAACTTCAGAGGACTTTCGCCAAATCCCTGGCAGATACATCAAGTGAAGTTTTGAGAACTCGAGCAGCCAAGGCACTAGGCACGTTGATCACACTCACTCCTCGAATAGATCCACTCATTGCTGAGTTGGTCACTGGATCAAGGACTTCTGATTCAGGTGTTCGTAACGCCATGCTGAAGGCCCTCTACGAAGTCATCAGTAAGGCAGGAGCGAACATGAGTGAGGCATCTCGAAGCGCTGTTCTTACTCTTATCGACACTGACCCAGAGGATAATGATGTTTCTATGGCAATCACAAATGCTAAGTTACTTGGAGCTCTGATTAAGGTTGTCCCCTCGGAGAGTGCTGTTGCCCTCATCAAGAACAGAGTCTTACCAAGTCACTTCACTCAGTCCTCTGTACTGGCTCTGAACGCTGTGCTGCTAGAATCCCCAGCGACTTTAACGGAGACTGCCTTCGCCGATAGCTTACCACAAAGCATCTGTGAAGGCATGCAAAACAAGAACAACTTCATTTCTGACAACTGCGTCCTCGCGGCCGGAAAATACCTTCTATCCGACTCACGCAGCAGTGACTATGAGACGATCAAGCCAATATTCGAGACACTTGCCACATTGATAGGACCTGGACAGTCGGCTGACACTCGACGTCTAGCTTTGGTGGTGGTGCGAACTGTGTGCAGACATCACATGGAGCTCGCTCGTCCTCATCTTCCACTACTCGCACTTCCCGTCTTTGCTAGTGTTCGAGATACCATCATTCCTATCAAGCTGGCGGCAGAAGCAGCATTTATGGCGCTATTCAATGTCGTAGATGAGGAGAGCAAAGTATTCGACAAGTATCTTGCATCTCAAGATCTAGCTGCCAACCAAAAGCGGAGCATGCAGGATTACTTTAAGCGTGTTGCATTGAGGCTGGGAAATACTGCACGAGAGAGGAAAGAGGCAGAAGGTGGACAGGGCGGCTTGGGACTCTCTCAAGATGAAGTTGATGATGAAAAGGAGATAGCTTCGGTAGGAAGAGTCGACCTTGGAGAGGGAGCTTTTGATGAGTGATGAGTTACGAAAAGGCATGGGAGGTGGTCAAAAAGCGTGCATTGTATTTGGAGGGATCGTTTTTAGACGAATGAATTCTTGCG +>XM_047966548.1 Annulohypoxylon maeteangense uncharacterized protein (GGS22DRAFT_23129), mRNA +CCTGAATCACGGTCATTTTACATCATCTACATAGTCTACAAATCGTAACCATATTCCGCAGACTCAGTCAATTGTTTTCTTAACGAAATAAATATGGCCGATCAACCTCGTCGGCGTCGGAACCGCCCCGATAGCAAACAGATGTGGGATGAATCCGACCGTCGCAACCGCAACGAGCCCAACGCGCGCGACAAACGAGACGACCGCGGCCGGGATCGAGACGAACCACCCCGCGAACGAGAACGAGACCGCCGCTATAGATCCAGATCCCGATCTCCTCGACGAGACCGACGGGACAAGAACCGCGACCGTCGAGACAGGGACCGCAACCTTGATAGGGGTAGACCACGTGAGAACGACGAAGCGCGGCCTAGAGCAGACGAGCGTCGCGAGAAGAATAAGAATAAAGGAGATCGTCATCGCGATAGAGATGAGCCTGCTCCAAAGGGTCCGGCTCGAGATCGAAGTCCCCGACGCTCTGCATCGCCAGCTCGAAGCCCGGCTGGGAAGGTAGATCGCAACACGCACAACAACTCACCACTCCCAACGCGACCAAGACCCGGCGGAAAAGCTGAATCAGGGTTGGGATCCTCGCTTCAGTTTAAGGTTGGAGGAAAACATGACGACGATGCGAACCGTGGAGGGAAGAGTGCGGCGGGAGGCAAATTCTACGATGCCAGAGGTTCTACTGATGAGGCTGAGGACCGAAGACGACGAACCGAGACGCCAAATTCCGACCGCGGGGATGCCATGGACGAGGATGTCGACGAAGAGGATGTTGTTGTCGAGGATGACGGACTAAGTGCCATGCAAGCAATGATGGGATTCGGCGGTTTCGGTACCACAAAGGGAGCCCATATACCAGGCAATAATGCCGGCGCAGTGAGGAAGGAGAAGAAGACCGAGTACCGACAGTACATGAACCGTATCGGTGGTTTTAATCGCCCGCTGAGTCCATCGCGGTAATCGTAATACCTACCTACTGTTTTTTTATTGCTTTTTTTGATACACTACGAATCAGACTATGGAGAAGATGAGTTTCCTTGAAAGGGGCGTAGGGAATACACGGACCAGAGGTTAGGTGCTCTTAATTTGATGATCATTATAATCCTTGTTG +>KF726604.1 Pseudopachylus alticola voucher MZUSP:59952 16S ribosomal RNA gene, partial sequence; mitochondrial +GCATAATCATTAGTTTTTTAATTGGGAGCTGGAATGAAAGATAGAGACTGAAAAGATAGTTTTTTTTAATTAGTTTGAATTTAAATTTAAAGTAAAAATGCTTTATTTATTTCTTGGGACGAGAAGACCCTAGAAGCTATAAATTATAAAATAATTTTTTATTGGGGCAATAGTTAAAGAAATTAATTTTTAATTTTGGTTTATGGAAAAAAAAAGTTACTCTAGGGATAACAGCGTTATATAATTAGTGAGTTCTTATTGAGAATTATGGTTGCGACC +>XM_033398930.1 PREDICTED: Drosophila miranda uncharacterized LOC117194359 (LOC117194359), transcript variant X1, mRNA +CCAACGCATGAGCAACATCTCGCTGTCCTCCGGCACGGACTCCGTGGGCCACATGGATCGCGGCAGCAGCTCCAGTCTCGCTAGCAGCGCCACCGTAGGCACCAACACCATCACCAGCGGCATTTCCAAGGAGTGCGCCAATTACCCCGTCGGCAGTCAGTCGGCCCGTCCATACGTCCAACTGCCGGGCATACACATTTCCAACCCTCCCCAGTACGGGCCAGGGAATATGCAGGAAATAGACGCTGGCAAAATGGCGCACAACGGCAAGGCACTCACAGGGCGCTACAATGCCACGCCCACCTATGGCTTCGACAACGAGCAGAACTACTGCCTGAATTCCCAACAGTTGCACAACTTCGAGCTCGAGAACCACACACCGCCGGCATGTCCCGGCTCTGGACCCATTGCCATGACGAACGGCACCATCCAGTTGCGCCTCCGCGATGGCGTGCGCATTGACATGACTCTGGACAAGGCGGTGCGCGTGCTCAATCAGCGCAGCATGGTGGCAAATGCTCTATCACGCAACTGCAGCAACTCGGCTTTGATCCACCCCAATGGACGCATCTTGCAGAGCGGCGCTAAAGTCGAAATAGTCACCTACGACGGCATGAAGGGCAATAACTTTGTTCGCTATGCCAAGATGTGGTACAAGGTGTGAGCAGTGTTCTATGA +>JF368683.1 Uncultured soil bacterium clone GO0VNXF07IAPWG 16S ribosomal RNA gene, partial sequence +AGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGCAGCACGGGTACTTGTACCTGGTGGCGAGCGGCGGACGGGTGAGTAATGCCTAGGAATCTGCCTGGTAGTGGGGGATAACGCTCGGAAACGGACGCTAATACCGCATACGTCCTACGGGAGAAAGCAGGGGACCTTCGGGCCTTGCGCGTATCGAGATGAGTCCTAGGTCGGATTAGCTTAGGTTGGTGAGGTAATGGCTCGACCGAAGGCGACGATCCGTAA +>XM_052578998.1 PREDICTED: Carassius gibelio triosephosphate isomerase 1b (LOC127975165), transcript variant X1, mRNA +CCTCGCTGTCTCTTCAACCGGGGGCTGTCTGTCATTTCTACTGTTTTTTTTTTCTCTGTATTTTCTGGTGAACGCAACACGTTTCAGTCATGACTGGCAGGAAATTTTTCGTCGGAGGCAACTGGAAAATGAACGGAGACAAAAAGAGCATAGAAGAGCTCGCCAATACACTGAATAACGCCAAACTCAACGCAGACACCGATGTTGTGTGTGGTGCTCCATCCATCTATCTGGACTACGCCAGGTCCAAGCTGAATCCTAACATTGATGTGGCTGCACAGAACTGCTACAAGGTTGCAAAGGGAGCGTTTACTGGAGAGATCAGCCCTGCGATGATTAAGGACTGTGGAGTTAAATGGGTTATTCTGGGACACTCTGAGAGACGCCATGTTTTTGGAGAGAGTGATGAGTTGATTGGGCAGAAGGTCGCTCATGCTCTTGAGAACGGTTTGGGTGTGATCGCCTGCATCGGTGAGAAGCTGGATGAGAGGGAGGCCGGAATCACAGAGAAAGTTGTTTTTGGCCAGACAAAGTTCATCGCAGATAACGTGAAGGACTGGAGCAAAGTGGTCCTTGCTTATGAGCCTGTGTGGGCCATTGGCACTGGTAAAACCGCATCACCCCAGCAGGCTCAGGAGGTGCATGACAAGCTCAGGCAGTGGATGAAGGCCAATGTCTCAGAAGCTGTTGCCAACTCGGTCAGGATCATTTATGGAGGATCCGTCACTGGAGGGACCTGCAAGGAGCTTGCTTCTCAGAAAGATGTGGATGGCTTCCTGGTCGGTGGCGCTTCCTTGAAAGCAGAGTTTATTGACATTATTAATGCAAAAGCATAAGGAGATAAAGCCACCATCTACCTAAAGCCTAAGGCTTAGGTCTGTTCCCAAACACTGCTCTTCTTTAGAAAGTGTTGTTGTGGTTTTGTTGCTGTCGCTTCATTTTTTTTTATATTACAAAGGGACAGATTGCCACACACTGAACACTCAGCTGAGTGTGTTATTGGCCCTCCAACTAGTTTAGTGAACTACATGACTGTAATGAGAACCATCACGGGGCTTAGAGCCCACACCTTTACTTGAATAATATTAACCAACATTCTCATGTATACAGTGTCAAAAATCTAGGATTAAGTCAATCAACCTCAGTGTCGTTTTAATTCAAGCGAAAGTACTTTCCATGAATGTGGTTGTCCTGATGTTTTCCTGTCCCTCAAAGAGTGTTTCTCTGAGTGACCTATCCTGAAGGTGCTCACATGAAACCAATATGTTTTGGTATAAAGGATAAGACAAAAAATATTCTAATAAATGTTTCAGAATCATAGACTTAA +>XM_007110546.3 PREDICTED: Physeter catodon golgi transport 1A (GOLT1A), transcript variant X1, mRNA +TGTGAGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGAGCGTGTGTGTGTCTGTCTAGGGGGAGTTAATGATTTACCAGAGGCTCATTTCACAGCTTACCAAGGGTCAGCTTCCCTTGGGCATGTACAAGTTCGACCTTCTGGGCTCCTCACCCCTTGCCAGCTTCCACCTGGAAGGTCCCCCAGGCAGCCCGCAGCATGATCTCCATCACCGAATGGCAGAAGATTGGTGTGGGCACCACCGGCTTCGGCATCTTCTTTATCCTCTTTGGAATGCTCCTGTACTTTGATTCGGTGCTCCTGGCCTTCGGAAACCTGCTGTTCCTCACCGGCCTCTCCCTCATCATCGGCCTGAGGAAGACGTTGTCCTTCTTCTTCCAGAGGCACAAGCTCAAGGGGACCAGCTTCTTCCTGGGGGGCGTGGTCATTGTGCTCCTGCGCTGGCCCCTCCTGGGCATGTTCCTGGAAACCTATGGCTTCTTTAACCTCTTCAAGGACTTTTTCTCTGTCGCCTTTGGCTTCTTGGGCAATACCTCCAACATCCCCTTCCTGAGCATGCTGTTCCGGAGGCTTCAAGGCACCAGCTCAATGGTCTGAACAGCAGAGATAAGCTGCTTGAACTTGGATCATTGGTTGAAGGGGCTGGAAAGGAAATGGGGGCCACCCCCTTAGGCCCCCACCCCACACTGACTCATCTCCCCATCATACCCGGACCTCTCCAAGTCCAGAAGGAAGGATGGAGCCGAGTGACTGACCTCAAATCCCCAAGTCAACGCAAGAAGCTATCAGGACAGTTGGGAGCAGAGATCCAGGTCCCACGGATATTGAACGGGGATCACACCCCACCCTGTATTTATCAGAGGAAAAGCAAAGATTAAATCCCCAAGCTGGGGCTTCCCTGGTGGCGCAGTGGTTGAGAATCCACCTGCCAATGCGGGGGACATGGGTTCGAGCCC +>XM_009871050.1 PREDICTED: Apaloderma vittatum myosin VC (MYO5C), partial mRNA +TACAATAGGGTTTGGATCCCTGATAATGATGAAGTTTGGCAGTCTGCGGAAATCACGAAAAACTACAAGGCTGGAGACCGTTTTCTCCATGTGCAATTAGAAGATGGAACTGAACTGAATTACCCTGTTGATCCAGCTGCCTTGCCACCCCTACGAAATCCTGACATACTCGTTGGCGAAAATGATCTCACCGCGCTTAGTTATCTCCATGAACCAGCTGTTCTACACAATCTTAAAGTTCGTTTTATGGAATCTAAGCTTATCTACACCTATAGTGGAATAATTTTGGTTGCAATAAACCCCTATAAACAGTTGCCGATATATGGAGATGCTATTATCCATGCATATAGTGGGCAAAACATGGGGGACATGGATCCACATATATTTGCTGTGGCGGAAGAAGCATACAAGCAAATGGCAAGAAATAACAAAAATCAGTCTATTATAGTCAGTGGAGAATCAGGAGCTGGAAAGACTGTGTCTGCAAGATACACTATGAGGTACTTTGCCACTGTGAGTAAGTCAAGCAGCAATGCACATGTGGAGGATAAAGTGTTGGCATCCAATCCAATAACTGAGGCTGTCGGCAACGCAAAAACCACACGGAATGATAATAGCAGTCGATTTGGAAAATACACTGAGATCAGTTTTGATCGGAGTTACCAAATCATTGGAGCTAATATGAGAACATACCTGCTTGAAAAATCCAGAGTTGTCTTTCAGTCAGAGAATGAGAGAAACTATCATATATTTTATCAGTTGTGTGCATCTGCTATGCAACCTGAATTTAAGCATCTTAAATTAGGAAGTGCAGAAGAATTTAACTACACAAGAATGGGTGGCAGCCCAGTAATAGAAGGAGTTGATGACAGAGCAAATATGGTGGAGACTCAGAAGACATTTGCCTTGCTGGGTCTGAAGGGGGATTTTCAGATGGATGTTTTCAAAATGCTGGCAGCAATCTTACACTTGGGCAATGTGGAAATAACAGCTGTTGGAGATGAAAGATCATCCATCAGTCTGGAAGATAAACATCTCAATATATTCTGTGAACTCCTGGATTTAAAACGTGACAAAATGGCACAGTGGTTGTGCCACCGAAAGATTGTCACTACCTCCGAGACTGTAATAAAGCCAATGACAAGAGCTCAGGCTGTTAATGCAAGGGATGCCCTGGCGAAGAAGATCTATTCACATTTATTTGACTTCATTGTGGAAAGAATTAACCAAGCTTTGCAGTTCCCTGGCAAACAACATACTTTCATTGGTGTTTTGGACATTTATGGCTTTGAAACATTTGATGTGAACAGTTTTGAACAGTTTTGCATCAATTATGCCAATGAAAAGCTGCAGCAGCAGTTCAACCTGCATGTCTTTAAACTTGAACAAGAGGAATACATGAAGGAAGATATCCCATGGACTTTAATAGACTTTTATGACAACCAGCCTGTCATTGACCTTATTGAAGCTAAAATGGGAATTTTAGAACTTCTGGATGAAGAGTGCTTGTTACCTCATGGAACAGATGAAAACTGGCTTCAGAAGCTCTATAATAATTTTGTGAATAAAAACACACTCTTTGAAAAGCCGAGGATGTCGAACATGTCTTTCATCATTCAACACTTTGCTGATAAGGTGGAATATAAAAGTGAAGGATTTCTGGAAAAAAACAGAGATACAGTACATGAAGTATTGATTGAAATCTTGAAGGAGAGCAAGTTTCATCTGTGTGCAAATTTTTTTCAAGACAATCCAGTGTCCGTTTCACCTTTCAGTTCAACTATAAACATCAAATCTGCAAGACCTGTTCTCAAGCCACCCAACAAACACCTCCGGATGACAGTTGGCAGTAAGTTCCGGAGCTCTTTGTCTTTGCTTATGGTGACTCTTAATGCAACAACCCCTCACTACGTACGATGCATAAAGCCGAATGATGAGAAGTTGCCTTTTGAGTTTGATTCGAGAAGAGTTGTTCAGCAACTGCGAGCGTGTGGTGTTCTGGAAACTATTCGAATTAGTGCACAGAGCTACCCATCCAGGTGGACTTACATTGAGTTTTTCAGCCGTTACAGCATTCTTATGACACAGCAGGAGCTCTCCATAAATGATAAGAAGCAGATTTGCAAGACTGTTTTGCAGCGGCTAATCCAGGATCATAACCAGTATCAGTTTGGGAGAACAAAAATTTTCTTCCGAGCAGGGCAGGTTGCTTACTTAGAAAAACTGCGATCAGACAAACTGAGATACGCATGCATCACGATCCAAAAGAGCATTCGAGGCTGGCTGCAGCGGAAGAAATTTCTTCGCATAAAACAAGCAGCTGTTATAATCCAGCAGTATTTCCGAGGGCAGCGGACTGTGCGGCAAGCTATAACTGCAAGAACTCTGAAGCAAACGTGGGCAGCTATAATTATTCAGAAATACTGTCGAGGTTACTTGGTCCGTAGACTTTGCCAGCTCATCCATGTGGCTGCTGTAACAATTCAAGCTTATACAAGAGGATTTCTAGCAAGAAAAAAATACCGGAAGATGCTTGAAGAACACAAGGCTGTGATCCTCCAGAAATACGCCCGTGCATGGCTTGCCAGGCGCAGATTTCAGAATATTCGTCGGTTTGTATTGAATATCCAGCTTTCATACAGAGTTCAGCAGCTGCAGAAGAAGATAGAAGAGCAGAGTAGAGAAAATCATGGTTTGCTGGAACGATTGACCAGCCTGGCTTCGACTCACGTGAATGACATGGAAATAATACAGAAACTCGAATTAGATCTTGAAAAGGCAACTGCTCAAAAGAGAACGTATGAAGAGAAAGGGAAAAAATATAAAGAGGACAGTGAACAGAAAATCCTAAAACTCGAGAATGAGAATAAAGAATTACAACAACAGAAAGAGACCTTGGAAATAAAGCTCCAAGAGAAAACTGAGGAAATGAAAGAGAAAATGGATGATCTCACAAGGCAACTGTTCAGTGATGTACAAAAAGAAGAAAACCAGAGAATGATACTTGAGAAAAATTTCCAAAATCAGAAGCAGGACTATGAAAAGGAAATCGAAATGCTCAAGGGAGAAATTAAAATTCTGAAAGAAGAAAAAACTCGGCTACAACATCAAATTCAGCAAGAAATTGTCATTCAGGACAGCTTGAAAATGGAAGTAGGACAACTTACAAAACAAGCACAGAAAATACCTGAGTTGCAAAAGGAAATTGAACTGCTGCAGACACAAAAATTGGATATTGAAAAGCAGGCCCAGTCACAGAAGCGAGAACTGAGGGAAAAGATGTCAGAAGTTACAAAACAGCTTCTTGAAAGTTATGATTTTGAAGATGTAAGAAGCAGACTCTCCACAGAGGATTTGGAACACTTAAATGAGGATGGGGAACTGTGGTTTGCTTATGAGGGCTTGAAAAAAGCTACAAGAGTATTGGAAAGTCATTTTCAGTCTCAGAAAGAAATATATGAAAATGAGATCGAAGGCTTGAACTTAAAAGTTGAACATCTTAGCCAAGAAATTAATCATCTACAGAAGTTATTTCGAGAGGAAAATGACATAAAGGATGGCATTCGATTGGAAGTTAGCAGGCTAACTTCAGAAAACCTGGTGATCCCAGATCTTAAGCAGCAAGTTTCTGAACTTGAAAATCAAAAATTAGATCTTGAAAACCGTCTTCAAGAGCAAACTGTAAAGTTGAAAGGTAAAGTAACAAATGATGTAGATATAAAAGAAAAAGAGAGACTGAAAGTCACAACCCAAGAAATTAAGGGGCTGAGCAATGGTCTAATGCAAGATGAAACCCAGGATGAAGTACAAAGCAAGATGAAGCAAGAGACAACTCGACTTACTGTGGAAAACATGGATCTTGAAGAAAAACTAGACATGAAAGACAGAATAATAAAAAAATTGGAGGATCAAATCAAAACTCTTACCAAGACTATTGAAAAAGGAAATGAAGCTCATATGCCACCTTTGTCCAGAGAGTACATTGGAATGATGGAGTACAAAAAAGAGGATGAAGAAAGGATCATCCAAAATCTGATCCTCGATTTAAAGCCACGTGGAGTTGTAGTTAATATGATACCTGGCCTTCCAGCTCACATCCTCTTCATGTGTGTGAGGTATGCAGATTATCTGAACGATGCTGACATGCTGAAATCTTTCATGAATGTAACCATTGATGGTATCAAACAAGTTGTTAAGGAACATTCAGAAGACTTTGAGATGTTGTCCTTTTGGCTTTCCAATACATTTTATTTTCTTAACTGTTTGAAGCAGTACAGTGGGGAAGAGGAATTTATGAAGTGTAACACGCCACGTCAGAATAAGAACTGTTTGAAGCATTTTGATCTCTCAGAATACAGACAAATTCTTAGTGATTTGGCCATTCATATCTATCACCAGTTCATTACTGTAATGGAGAACAACATTCAGCCCATGATCGTACCAGGCATGCTGGAATATGAAAGTCTTCAGGGAATTTCTGGCTTGAAACCTACAGGGTTCCGTAAACGGTCTTCTAGCATAGATGACACGGACACCTATACAATGACCTCTATCCTGCAACAGCTCAGCTATTTTTATAGCACCATGTGCCAGAATGGCTTGGACTCTGAGCTGCTGAAGCAGACAGTGAAGCAGCTTTTCTTTCTGATTGGAGCTGTCACCCTCAATAGCCTCTTCCTCCGCAAGGACATGTGCTCATGTAGAAAAGGAATGCAGATAAGATGTAATATCAGCTACTTGGAGGAATGGCTTAAGGACAAGAATCTTCAAAGTAGTAATGCCAAAGAAACTTTGGAGCCGCTATCTCAAGCAGCCTGGCTTCTGCAGGTCAAAAAGATCACAGATGAGGATGCCAAGGAAATATGTGAACACTGCACGTCTCTTTCTGCTGTGCAGATAGTTAAGATCCTCAACTCGTACACTCCAATAGACGATTTTGAGAAAAGAGTGACTCCATCGTTTGTTCGTAAAGTCCAGGCTATGCTAAACAATCGTGAGGATGTTCCACAGCTGATGCTTGATACCAAATATGTCTTTCAAGTGACGTTTCCTTTCACCCCCTCTCCACATGCCTTGGAAATGATACAAGTCCCCAGCAGCTTCAAACTTGGCTTTCTCACAAGGATTTAA +>XM_020048109.3 PREDICTED: Esox lucius basic helix-loop-helix and HMG box domain-containing protein 1 (LOC105026992), transcript variant X2, mRNA +CCGCAGCTTGGTAATAGACTGGTTGTTAGTTATTGCACACATGTAGCATTTCTATGTAGCTAGCTAGTACTCTTAGCTAATTTATATTTTGCTGGCTTATCTGCTCGCTCTCGCTGTCACAATTGGCTACTAAGCGGTTTTACAGGTGTGGGTGAATTTTGAAGTGGTCTATTGTCCAGCCTAACTGCATGTTTGATCCCGATGAAAGATTTGAGCCATGGCACCTGGATCCAAAGGCAGAGACGGAACTCGAAAGAAAAGAAGGAGACTCTGGTCCACATGCTGCGCTATTTTGACTTCCTTCAGAGTAAAATACAGACCTTGCAGAGGTGCTTGCCCCCTGAAAGCATCCCCAAGCAGGAACCTGACACAGGATCTGAGAGTGAAGAGAACACCCCCTCTGAGCCCTGTACACCCTCTCATATTCTAAAGGCTAAGCGCAAGTATGTCTGCAACCGTTCCCATAAGAGACTACCTGCCTCCAGCTCAGAGGTGAAAGCAGAGCTTCAGGGGAAAAGAAGAAGATTGTGCACTGCAGATGTCAGTAGACAGAAAGCTGACCCAAAGGAGGAGGATGTGCCTGTCCCTATGTGGGGTGTGCATTTTGATTGGTCAGAGTGCCATTCCAGTGATAGTTATGGGGATTGGCATGTGCGTGAAAGTGACTCCCAACCAAGCTCCCTGGATTCGGGCTTCAGCTTCAATCAGTTGCTTCCCCTGAGCACCCCTTTGGAGGGGTGCAGTGGGACTCTGAGGACTCCATCCACTCTTCAGGGAGGCCACTGCTCTGCCTGTGAGGACGGCAGTGAAAGCAGCCCAAGGAGCGGTGTCCTCCATACCCCAACTACTCCAGTTACTGGGCCAGGGTCACTTTTCCTGAAGGATCACATGGTTGGGGTCATCCCGTCCACAGGAGGCCGATGGAAACCCTTCCTGAGCCCTGCTGCTACACCAAAACGGCCCATCTTTCTGCCGTTTGGAACTGAGGACAGTCTGAACTTGGGCGAGAGTCTGAACCTTAGTCCGTCTCTCCTCACATCACCTGGCCGGGGCCTCAGCCAGTGCCTGCTACCTGAGGGACCGGAGGAGCTCCATGTGCTGTTTGAGGATGTTTGGGTCACCCCTAAAATGACCCAGGCCAAAGTGTCCCACCTATCCTACCATGACCCCACTGACACGCTGTCAGATGGAGAAGCTGTGGTGAGGCATAGCGGTGGAGGGTGGTTGTCCTCCCACAGTGAGGGGGAGGAGGAGGACGTCACCTGGACCCCCAAGCAACAACAAGTCTCTCTGAAGTCCAAGACCAGTGGGACAAGACGCCACCGCAGAACCAACGCCTCCACCAGGGGGCACCCTCTCCTCCCTCCCAACCTGAAGAAGAAGTGTATTAACGGCTTCATCATGTTCTGCCGCATCAACAGGAAGACCTACCTACGCACCCACCCAGGCACGCCATCCACCGTGGTCACCAAGGAGCTGGCCAGCCTGTGGCACGACATGCCCAAGCAGGAGAGGCGTGTGTACTGTCTGAAGGCTCGTCGCTTCAGCCGTCAGCAGAACCGTAACGTGAAGCCTCAGCCGGCGGAGGGGGAGGAAGAGGACTTTGTGCCCAGTCCACTCCACATGCTGCTGGCGCAGAGAGACCTGAGGGCTTCAGCCAGAGGAGACTCCTAGAGCAGTTCCCTTCACACACACTGGCCCTTCGCCAACCATATGCATGGGATGGATATTGATATAGATGTCCATATTAAAATCAACAACTTCTCTTTTTAAGTCACTTACTGTACTAGTTAATTATGGAGTTGTTTAGAGATTTATCTGAAATGCAGACACACTTTGTGTGTGTGTCTGGCACGTCACATTTTAACTGTTACTGTTTACTGCTTCAAGTTGTTTCTAGACAATGTTCAGACTTGGTTTTACAGATATCATTGAGGAGCCTTTTAGACAGGGTTTATTGACAGAAGTCTTTCTGTGGGTTATAATGCCAAGGCATTGTTTTGCTATTCATGTCAACCTGACGTTGAATTCACCAGTCTATTTATGATCATAATGCAAAGGACCAAATAAATGACAGTATGTGGCTGACAGCTTTATTTATTACCTATTTATACTCAGAATATATTCATATGTGGGGAATGTTAATGTGTCTGTGTGAAGTCCTTCTGTACAGGACAGATGAGAACCAAAGTCTTACCGTTTGGAGTTATTCACACTGGTTGGTTGATGTTTTTATGCGGTGTGAAAATGTTTTGATGTTTCGTGAATAAAAGTTATTACTACTTAGTAGTGGGTTATTTGAGACACATCAAATAGTTTGTTTA +>XM_034078853.1 PREDICTED: Pseudochaenichthys georgianus glutamate receptor interacting protein 1 (grip1), partial mRNA +GACGGGCGCGATCCACGTTGGGGATCGCATCCTGGCGATCAACAGCAGCAGCCTGAAGGGGAAGCCTCTGAGCGAAGCCATCAGTCTGCTGCAGCAGGCCGGAGAGACGGTCACGCTGAAGATCAAGAAGCAGGGCGACCTGGCGAGCCCTAAGTCCTGTTTGATTGGTTCAGGCATGGGGGCGGGGCTTGTGAGGGAACACCAGGACGGCGTTGACGATCCGGTCATCGTGGTTACGCCGCTGTCGGGTCAGCGAGCGTTCAGCACCCTGCCGTCGGTGGACAGCGCCGTGGAGTCCTGGGACGGATCCAACGTGGACAGCTTCACCCCCCCGGCTCCTCCCTTTCAGTCGTCTCCGTACAATTTCCACGACTGGCGCAACGCAAAGACGACAAACAGCCAATCATCTTCCTGCGCTCGCCAGAGAGCCAATCAGCTGTCAGACCTCGGCCTCAGCGACGACGAGTGGGACCGCCCACCAATGGGAGGAGCCTATAATCTGCCCAGCGGTTTGATCACCGACTGCAGGTTCAGCGTGGGTCATGATGGGACGGAACCGGATCAGGAAGAGAACTTCTGGTCTCAGGCTTTAGAGGATCTGGAGACATGCGGACAGAGCGGCATCCTCCGAGAGCTGGAGGCTACCATCATGTCCGGTTCCACGCTCAGTCTGAACCACGACCCGACCCCTCTGCGCAGCACTCTGGGACGCCAGGCCAGCTTCCAGGAGCGAAGCAACTCCAAGCCATCGGTAAACTCTCGGTCCAACACCTTGCCCTCTGACCCCACGCGCCGAGCCTTCGCCATGAGGAAGATGAGGCAGGAAGTCAACGAGATCCTAAACCAGAACCCCGTGGAGCTCCACAAGCTGACTCTAGAAAAAGCCACAGATCTGGAAGATTTTGGGTTCAGTGTTTCTGACGGCATGTTGGACCGCGGCGTCTACGTGAACAACATCCGACCGGGAGGACCAGCAGAGGGCGGCGGCCTCCGAGCTTACGATCGGATACTACAGATTAACCACGTTCGGACTCGGGACTTCGACTGCTGCCTCGTGGTTCCTCTGATCGCCGAGTCTCCGAACCACCTGGAGCTCGTCATCAGCCGAAACCCGACTTCCTCGTCCACCACGCTGTTGACCAATCACACTGACGGCATCTACAACAGCGGCCACTCCCCTCAGCCAATCGGCAGCGACCTCGGACCTTTGGAGCTCTCCATTGGCCAGTTGGAGGACGGCGGTCCAATCAAGTGGAGCCAACCGGGGGACATGTTGGTGGCGGGCCTTGGGATGGGTCAGGTCAATAATAATTCCGTATAGCAGACAAACAATGGATTCAATTAACCAGATTGGACTGGAGAGGCCGACCAAACAGCAAAATGACTGGTTTTGACCAGTCCAAACTGGTTTAGAGTACCCTATGGTGCTACACACACCCTCTGGATGACCTTTGAACTGTTGAGGCAGCCTGAAAGCACACTGATGGACCGGAGCAACTCCTCACCTTTTCACAAGAACCAGTTCTGCATACTGGTCCTTTATTACTGGAGTCACTGGAACTATAACTACTGATCCTACTGGAACCACTATGAGAGAGCTACTGGTCTGACTGGTCCGACATTAATGGGTACTCGAGTCATGGATGCTGATTCTTCTAAAGCCAATGGTTTTACTGGTTTTAGATTAATGGTTACTGGTCCAACTGAAGCCAGAGCCACAGCCAATTAATGGTCCTACTGGCCAAGACACATCGGCTCTGGTCTTATGGTGAGTTCACACCAAATGCAGAGCTGATGCACTTTGGGTAAACTGGCAAAAGATGGGAAGGCAATTGGTTTGAACTCGGCATAAGTGGGAACAAAACCAATCTGAAGCCAAATTGATTGGTCTTTTTGGTCTAGAAGACTCGGGTTCTGGTCTGAGTGGTGACAGCATCACGAGTACTGGTTCAACTGGTCCAAGACATGGTTGTTATGGTCAAAGAATCATGTGTACCACCAAGCAAGATCCATGACTACTGTGGAACTGGGTCTTCTGGGCCATCTGGTCTTACTAGAATCAGAACCATGGCTCTAATGGCTGTACTGGCCAAGGACCACAGCAGCACAAAGACTGATGGGAACCAGAACCTGCTGACGGACACACGGGTTGCCATGTAGACGAGGGACGCCCCGATCTAGAGCCAATCCAAACCATACTGATTACTGACTGGTTTCTGGTCTTACAGGTTCATTTATGTCGACGGTATAGGTATACATATCTATATTCGGCGCAGTGTGTTGGGTTTAGGCGCACAATTAAAACTAGTGATGGTTAAATACAAGTCTGAAAATGGTCAAATGCAAGTATAATATTGACAAAGTTGGTTTAAAGATAAGGACTAAGGACGTGGATGGTGTTAGGTGGGGTTTAGGTGTAGTTCAGTTTGTTCTAATACAGGGCTGTCAAACTCAATTTCATCACGGGCCACATCAGCATTATGGTTGAACTCAAAGGGCCGGTTGTAACTTTAAGACTATATAAAAATACATATATAAATATTTTATATATTTAAAATAATGTATTATATTACTTTATTGCCTCTGCTTTGGATTATTAAAAAGCTTCATAGATAACTACGTCTGAAAGAAGAAGTCTAGGGCAAATAAGTGCAAGTCTCTTCA +>XM_046869510.1 PREDICTED: Silurus meridionalis nucleolar protein 9 (nol9), transcript variant X4, mRNA +GTATATTAAGAACATGAAATAATTCGTTTTAAACCCCGGGATATTTCGTATTGTCCATCCCCTTGTTCGTTCCATACCGCTTTTGGAGCATACGCTAGACAACGGGCTGTGTTTAGATTTTTTATAATATTTTAACAACATGGTCGTTTTTGTCTCACTTTAGTGTAGGAGCGTTTGCAAAGCATAAAAGGGGGTTAACGTTTGTCTTCGTTTGAGGGTTAATATTATTGTTAACGTTGACGTTAAAGAACTGCAGGACTGCTCACATGGAGAGATCCTAGCTGTGAATTCCTGTTTATGGCTGCAGATTCTTGAATATTTTTATCAGCTAGCCATTTAAAGAGGTGGTTTTTCACACCATGAGCCAGTGCCAATGAAAGTTCACAAGCCACAACCATGAAGGTGCATAAAGTCTCCTCTCGCTCCAAACATGAGAATCGAAATGCTACGAAACGCCACTCCAAAAACAAGTGGCGCACTCACGGGAAGAAGAACCAGCACGTGGACCCTTCTGGCCAGAATCCCAGGCCTTCGACGGCAAAGTTTGAGAATGAGCTGGTTAACAGACAGAAGCCCAAGGTGAAGCGCTTACAGAAGGCTTACACCAAGGCTGCAACTGTGACGTCCAAAGACAAATGTTCATCTCAGGCTAAAGGCAAGGCTCTGTCTGCACCCTGTCCTCACGTCCACACCAACGGGGGTACTGAGCTGGAGACGGAGAGCGACTCGGAGGACTCCCAGGTCTGGAGGTCTTACGCCAAGAGCGTTCTTCAGAACGGTGCCGAGAAAGAAGGAGAAGGGAACTCGGTTTTAAATCAGTCTGAGGAAGTGGAGGTGTTGGAATACCACGCGCAGTATGAACGCTCCCAGAACCACACAGTGTTAGTACTGAAGCAAGGCCAGTCCCTATGTTTCCGAGGAACGTGCCTGCTGATGTGCCTGAGCGGTCGTGTGGAAGTGATGGGCTTTACAATCGAGCAAGGCCAGCAGCCGTATCCGCTCTTCTCCCCATCGTCCCACTGTCCGCTCACCATCAAGGCCATGGTCGAGTGCACATCCTCAGCCAAAAGCAGGAGGGAAACTCGATTAGAGGCCAAAGCCATCGTCCGCAAGTACCTCCTGCCAGGCGGCGCCGTTGCCGAGGCTCGTACGAGACTGCTGAGCGAGGTGGATGCAGATTCATGCGTGGTGCTGCTTCAGCCGCTGGACACGCCCCTCACACGCTTCCTCTCCAGCTTCGGCAGCTCCTTCAGCCATCTCTTCGACCTCAGCTCGAAGGAGCTGCACTCCCAGGCTGCCGTGTATAACCCAGCTCTCTCTGCCGTGGGCGTGACGGCGCTGCAGGGCCCCTGTGCACGTGGTCTGGTGGCATCAAACAGCTATAAAGAGGCGCTCAGTCGCCTGCTCAGTGCATGGGAAGGGGATTTTGATCGCTGTCCCATTATTCTCGTCTGCGGGGCCAAAAACTCTGGCAAGTCGACTTTCAACAGGCATCTCATCAACAGCCTGCTTAACCACACTGCAAGCGTGGAGTATCTGGAGTGTGATCTTGGCCAGACGGAGTTCACGCCTCCCGGGTGTCTCTCTTTAATCACTGTGACCGAGCCACTGTTAGGCCCTCCATTCACACACCAACGAGAGCCAGAGCACATGGTGTTTTACGGCCAAGCAGAATGCCAGTCCGATCTAGACCGCTACCTGGACTCACTCAAGACCCTGTGGAGACACTACAGCGGAGAAAACCCGGTCATTATTAACACCATGGGATGGGTTAAAGGGCATGGCTTCCAGGTGCTGGTCGACCTCATTCGCTTATTCTCCGTCACCCATGTGGTGCAGCTGAGCTACGGTGACACGCCCCAGTGCCATACTCTCAACCCCGACTTCCTGCGCTCTGCCCAAGGCTGGCACACTCATCCACCGGCGCAGTCTGCCCTCGCGGAGGAACCGGCCAATCAGCTCTCGGCACGGGGTCACCTCCTCCTCAGCATCCACTCGGAGTTCGAAGGAGCCGGGACATCCGGGGAAATGCGTCATCAGCGCAGTAACGAGCTGCGTGAGCTGGCATTGCTGGGATACTTCAGCCAGCTACAGTCTGCAGAACCCGGCCCTATCTGCCCCCTGCACTGCTTCACCCCCTACCAGGTGCCCCACTCGGCTATCGCTCTCGGAGTCACTCACTGTGACGTGGCACCCAACCACATCCTGTACGCCGCTAACGCCGGTTTAGTGGCTCTCTGCTGTCTGAGTGAAAAAGTGGCAGGAAGAGGTGGACCTGTGCTACTGCCTCAAACGCCCATCTGTCAGTGCGTAGGCTTAGGTGTCCTCCGAGGGGTGGATATGGCCCGAGGGCTCTACTTTCTAGTCACCCCAGTGCCTCCGGCGACCCTGAGGCAGGTCAACTGCCTGCTGCTCGGGGAGATCACACTGCCGAAAATCCTGCTCACTGTCCAGCATGGTGTTGAGACGGAGCTTCCTTACGTCACCACAGATTACAGCTTTGAGATCACGGGCGCAGGAAAAGTCCACGTTTTCAAAGGGCTCGCGAGGTCCGGTTTCGTCAAAACTAAAACAAATAACTAAGCTCTCTTATACGGATTTCACTTTCAGCGAACGATGTTTGTATCCCTGTACTTGTTTTTTAGACCAAATAAAGAGGCTTCAGCTGCCACCGAATGTA +>XR_003057350.2 PREDICTED: Ziziphus jujuba var. spinosa uncharacterized LOC107427618 (LOC107427618), transcript variant X2, misc_RNA +GTAACTTGCAAGCAAAATAGGGCTGGTTATATATATTACACTTTGCTTACCTCTCTTTGAGATGGTCTTAGGCTTGAAGCGAGACCATTTCTAAGCAAATTAAAACTACGTCATCCCTTGGCGTGTTTGTAGTTTGAATGTTCATTTTTTAGTGTTTTTTGGCTTCCAAGAATTCTCACATACCCATATGAAAAAGCACATAAAACCCCCTTCATAAATAGATGAATAAGAAACTATATATAATTCCAGAGATCAAATTTTCTTGGCTTAACATTATTATTTATATTTTTTTCTTATTGGTGAATTCAAGAAATTAAAGATCAATTATGTGGCAGATACGATCTTGGGCTTCTTACAAATTCCGAAGTATGCTTGAGTTAATTCGTCCCGGTATATCTGCTTTCTCATCCTCCATGAATACTGTCTATCACAGAAACTCTAATTCATCAGGTATGCCGATGGCTAAGTTTGGATATGGTTTTCCAAAGCACCAAGGACTGCAGTTGTTCGGCAACACCACCGGTAGCAAAACTTTGACAACATTTGGTACCAACATGGTAAAGGATGGCAATAAGGAGCAAGTTCCACCACCAGTGCCTCCTAAGAACAACATTCTTTATTGGGCAAGATGGGTTTTGGGCTCTATATTAACATTGCTGCTGCCATTTTGGAAGCAATATTGGGGAAAACTACAAAGAATAGAAGGAAAGGTAGAAATGGTTGCTGAAGAGGTGGAAAGTGTGGCAGAGGTGGTGGAAAAGGTAGCAATTAAAGCAGAGAAAGTGTCATCAGAGGCTGCAAATGTACTTCCAGATAATGGAAAACTGAAGGAAACAGCTTTGATTGTAGAACACATTTCAAAAAAAGCAGCCCAAGATGCTCAACTAACTCTGGATATCATTCACAAGGTTTATATATATTTTCCAAACCAATTAATTCTAATTAATTTTGACAAGTAATTCTATGGTATTCCAGGAATACATACCCTCAAACTCATAATAGAATGGACTCCACGTATGTTTACGAGTGTGGATGCATTAAAGCATGACTTCGAAGAATTGGAGACTTTAGTTGAGCCTGTTGTCGATAAGATTGTGGTAAATCATGAATCTGATGGAAAGTAATTAATTTGGGTATTGATCATAATATCATTTTTTTCCTTGTAATGTATTTTCATAATTTGGGCAACCGCATTTTGCCCATGTGAATCGTACAACTTTTGCGCTTTGTTCTTTCTA +>XM_010349232.1 PREDICTED: Saimiri boliviensis boliviensis guanylyl cyclase domain containing 1 (GUCD1), transcript variant X2, mRNA +GGATTGGGCGAGGGGGCGGGGCCACCCGACGCAGAAGCGGCAAATGGCCAGGGCGGGCTTAAATTGGGAGGCTGGGGGCATCTAGAATCAAAGTTTGGGGCGGGGCTTCTAGAAGGGGCGGGGCCTCCAGATTCGAGACCTGGAACGACCGGGGCGGGTCTCGGGGCGGCCCAGCCGCCGCCTCCAGTTCTCCCCACCGCAGCGGCGCCGGCGGCGGTGGCGGCGGAGGAACTCGATACGCACCGACCGTCCTCCCGTCCTAGCCGAAGCGGAAGCTGTAGCCCGCTCTGGGCCGGGGCCATGGGCGCCCCGCGCCGCCCGGGTCATGAGGACGGAGGCGGAGGCAGCGGGGCCGCCGCTCGAGCCCGGGGACTTTGTGCAACTGCCTGTGCCCATCATCCAGCAGCTCTACCACTGGGACTGTGGCCTGGCCTGCTCCAGGATGGTTCTTCGGTACCTGGGCCAGCTGGACGACAGTGAGTTTGAGAGAGCCCTGCAGGAGCTGCAGCTGACCAGGAGCATCTGGACCATTGACCTGGCCTACCTGATGCACCACTTTGGCGTGAGGCACCGCTTCTGTACCCAGACCCTGGGCGTCGACAAGGGCTACAAGAACCAGTCCTTCTACAGGAAGCACTTTGACACAGAGGAGACCCGGGTCAATCAGCTGTTTGCACAAGCCAAGGCCTGCAAGGTGCTGGTGGAGAAATGCACGGTGAGCGTGCAGGACATCCAGGCGCACCTGGCTCAGGGCCATGTAGCCATCGTGCTGGTGAACTCGGGGGTGCTGCACTGTGACCTGTGCTCCAGCCCTGTCAAGTACTGCTGCTTCGCCCCTAGTGGCCACCGCTGCTTCTGCCGCACTCCTGACTACCAGGGCCACTTCATCGTTCTGCGTGGCTATAACCGAGCCACTGGCTGCATCTTCTACAACAATCCAGCCTACGCCGACCGAATGTGCAGCACCAGCATCAGTAACTTTGAGGAGGCCAGAACCAGCTATGGCACAGATGAGGACATCCTCTTTGTCTACTTGGACAGCTGACACCAGGAGCCTGGTGTGCCCAGGCCCTCGGACCCCATCCCCACCCCAGCTGGGCCCACTCAGGATGCCCTGGCCCAGGCCTGGGGCTGCTGGGGCTGGAATGTGGAACTGCAGCCTCAGCCCATCTGGCAGGGCCCCGGGAACTCTGGGAGACTGTGGCACAGCTGCTTTGTCTGCCAGTGCCCTGTGTTGTCATGTCGGTCACCCCAAGCACTTGCTGGCTGCTGGAAGCATCCCCCAAGACCCCAAGCCTGACTCCAGCTGTACCCACAGAAAGTCCAGCTCCAACAGTGCCCTTGTTGCCTTTGAGCCAGACCCAAGGCAAGGGAGAGGCTTTGTCTCCCCACAGACCGCAGGACTGGGCCTGGAGAGAGAAGTCGCTTGACAGATGCCACTTGTCAGGATAGTATGTGAGTGTCTGGAGACAGCATAGCTGACCCCAACCCCCCCAGCACTGAGGACCCCTCCAGGCTCTTCTCTCCTGGAAGTGCTGAAGATGCCTCTGTGCCCCATGGTTGATGACACCACCACTTCCTGCCTACCCATGGGCCCAAGTTTCTGTGGCTGGTTTCAGAGCATCTGGTCCCTGCCACCCAGCATAGACACACCTCACAGCTGCTTTGCCATGCAGAGCCCTGGCCCCTGGGGACTCTTAAGCCCCCCACAGTCCTCCAGGTCCTCCAGCTCTGTCAGATGGAGGGGTCTCGGGTGTGACCTGGGCCTGGATCCCACTGGTAGGCCTGATGGCTGGCAGCAGTGTGTGCTCTGGAAATAAACAGCAGCTCTAACCCCAGAGGGATCCCTGCACCCAGGAGGCCTCCCAACAGCAGCCTAAATCCTCACAGTGGGGTCTGCCCTGAGATGGGGACCCCCTAGTACTTTAAGGTTGCCTGCTAGGGCCTGTGCTCCAAAGCAACGGGCAGGGGCAGCCTGCAGCTGCCCACCCAGCCTGGTCTTCACACCAGGTTGCACAGGATACTGGGTCTCTTCTATCTTGATGGAGAAGAGGGGTTCCTGCCCAGGATCATACAACACAGCAAATAGCATAGAGCTCTTCCTTCGGTTTTGGTTTTTTTCTTTTTTTTTTTTTTTCCTGGTTGGGATCAGGGGTTGTTTCTTTGAGATTTAAGTTTTCATTTTTGAGGGGTAATGACCTTTAAGTAAAACAGTAATAGCAAGAGTGAAGGTACTTTGGAACCACCAATACCTCTGCACAGGGCAGTTAGCCAGCTCAAGTTCTTTTTTAAAGAAAGGGACTTGGCTGGTGGTTTGAGTACCCACCCCTTCACTTCACAGACAAGGCAGTTGGCCCAGTCTGGGGAGTCTGCCCAGGACAGTGGTGGGGCTGGGCCTTAAACCCCAGTCTATACCTAAAAAACTAAGGGAAATGGATCATTCTCAAAGGGGCAACAGTGACACCATCCCTGCACTCCTGGGTCCTGGTCTTACAGTGCCCAAGGCATGGCATGGTGGCAGCTGGACCCTCCCCCATCAGGTGGCTCTGGTGGTAGAGGTGGGCTCTTTTTAGGAGGGTGCTCGGACCACACAGCCAAATTGCTCCTCAACCCTAGACAAAGCCTTGACCAAGAGGGAGGTGCTGTTAGCTGGGCAGCCCTTCTGGGTTTCAGAGACTCGTGTGGGCTCCAGTCTGGTCTCATCTCCATTGCCTTAATGACAGGTGGCCCAGGAGTACCCATGCACAGCAGCTGTGGGGTGTGGGCATCTTCAGATGTTCTGGTAAAATTGTGAGATTAGCTGTATGAAGGAAACCAGTGGGAGGAAAGGAAGTTTTCAGGATGGCAAGATTTGATTCAGACACAGTGCACATGCTACTAGGGCTGTCACTGGGCAGTGGCCTTCATGGAGAGTGGTACCAGCACCTCAGTCCATCCAGGATATTTAGAAACACTCAGTCTCTGGTCCCAGAGGATGGCTTCTCAGGGCATGCCACAAGTTAAAGTCACCTGCCTGGAAGATGAATGAGAAAGCTGTCCATTCTCAAGACCCATCTGCCTAGGGAGGGTCACAGAGGCAGGATGTAAGCCACACTGTATTGCATTCTTGCATAAGTCATGAAAATGGGGCCAGAGAGGGAGCCTGGACATCAGGGACTTCTGCCCACAGCACATGGCACCCACAGCTGCCCAGCCTGTCTACATGCTGGGGCCCAGCACAGCCCCTGAAGCCACATGGGACAGTGGGCTTTGTTCACTATAGCCACAGGGGGATGAAAGGGATCTTTTACATTGCAGAGATTTTATATATATTTTGTTTGTAATGAGCCATTCTCAATAAATTCTCGCTGCAAAA +>XM_053281253.1 PREDICTED: Hemicordylus capensis transmembrane and coiled-coil domains 4 (LOC128338576), mRNA +TCCCTCCCGCGGCTGCCGGCCTAGTCGCCTTTTTCTGAGCCTCGGACTGGAGTGAGCGCTGAGCCGGCCCAGAGTGAAGGCAAGGCGGGGGCCGGTCGGAGCCTCGATGCGGCCCCTTTCTCCCTCGAGGACGGGCAGAGGCCGGTGAAGATGGCTGCCGGTCACCACCAGCGCTGGAGGCCTTGGAGAAGGGGGCCGATAGGAGAGCCGGAAACGGAGGAGCCGTCTGCACACGTCGGCCGGCAGCTGGGCGAACCGGGGAAGTTTGCCTACGCCGCTCTTTGTGCTGTATCCTTGGCATCGCTGTTTCCAGAGCAAGCCGAAAGCTCGTATCGGACGGGATTCGTCGAGAGCCTGGTGCGGTGGCTAGACCTCCCGGAAGGCGTCTTGCCTGCGATGCAGGCCTTTGCCGGCGGCTTGGGAGGCGAAGGGACAGACACCTTTGCTCAGATCCTCTTGAAGGACCCCGTCCTGAAAGACAACTCTGACATCATCACCCAAGATCTCGTGGCCTTTTCCCTCAAAGATGGCTACTATGATGCCCGAGCAAGAGTGCTCCTCTCTCACGTCACCTGGCTTTTAAGAATCCCGTTGACTGAGCTGGAGGCCTCGGAGGAACGACTTCTTGAATGCTTGAAAGATGAAGAAGAAGAAGAATCTGCAACGGCGGAGGCATCGCGGAAGAGGAAAGAGAAGAAGAAGAAGCTAAAGCGGTACTTGCTGATCGGTTTGGCGACTATTGGAGGAGGGACGGTGATCGGTCTGACGGGAGGCCTCGCCGCCCCTCTGGTGGCGGCCGGAGCCGCGACCGTCATCGGAAGTGCCGGAGCGGCCGCCCTGGGCTCGACAGCTGGGATCGCTGTCATGGCGTCGCTCTTTGGAGCAGCGGGAGCCGGTCTCACCGGTTACAAGATGAAGAAGCGTGTGGGAGCCATTGAAGAGTTTGAGTTTCTCCCGCTAACTGAGGGGAAGCAACTCCACATCACCATCGCGATCACTGGTTGGCTTTCTACGGGCAAATATGGGAGTTTCACGGCCCCGTGGAATAGCCTGCTGCAGTCGAAAGAGCAGTACTGCTTAGCCTGGGAGTCCAAGTACCTGGTGGAGCTTGGAAACACCCTCGACGCCTTGCTGAACGGGCTGGTGAATGTGGTGGCCCAGGAGGCCCTGAAGTACACGGTATTGTCGGGGATCGTCACCGCCCTGACCTGGCCTGCTTCACTGCTCACAGTCGCCAGCGTGATCGATAACCCCTGGGGTGTGTGTCTTCATCGCTCGGCCGAAGTCGGGAAGCACTTGGCGCAGATTCTGCTCAAGCGGCAACAGGGCAAACGGCCTGTTACGCTGGTTGGATTTAGTCTTGGTGCCAGGGTCATCTACTTCTGCCTCCAGGAAATGGCCAAGGAAGAAGATTGCAAAGGGATCATTGAAGATGTGGTTCTGTTGGGGGCACCCGTGGAAGGAGAAGCCAAGCACTGGAAACCGTTTACCAAGGTCGTTTCGGGCAAGATCATCAACGGCTACTGTAGGGGAGACTGGCTGCTGGGCTTTGTGTACCGGACGTCCTCCGTCCAACTCCACGTTGCCGGACTTCAGCCAGTTGACCTGGACGACCGGAGGATGATCAACGTGGATCTCTCCTCTGTCGTCAGCGGCCACCTGGACTACATGAAGCAGATGGACACGATCCTGAAGGCCGTGGGCCTCAAAACCAAGCAGTGCCGTCTGGAAGAGAGGGGAGATCTCACCCTCCTCTCCGCTGAGCCCAAGGAAAGCCAGGAGGAGGCCCCATGTGTAGACACTCGGGAAGAGCAAAACCTGCTGGGAGGAGGAGAAAGTGGCAGCCATGACGGCGGCAGTGATGACTGCTGGTCATGGGAGCCAGTGCCCAGCCGCGGATCGTGCCCAAGGGAACCTCCAGAGGGGGCAGATTCTGAGCCGAGCAGTCTCCTCGATGCCGAAAGGGACCCACAACTTCCTGGCTTGGAAGACCCCTTCCCCACCAGCTCCTCAGGAATAACTGGCCACTGCGACCGCTCTGCAAGCCCTCTTTCTCCAACCGTCCGATAATGCACGAGGTGGCAGGGCATGATGGTGGTTGTAGTACTTGCACAGAGTCTGCCATAAATCTCCCACGGGGCTGGCGCCTCTTAGTGCTTGATGGTGGCGAGACCGATCGTGCAGGATTGGGCCAAAGGACTTATTTTTGTAAAAAAAGTATTTCTCCCCCCACAAAACCATGAATTGGGTACCACTGAAAATCTCGCGAGCATGACGGAGGTGCCCGTCCCTTTTATTCTTTTCTGTGGCTTCTGTTAATAGGAGATGCTAGTCCTGGAAGCCAGCAGTTAGTAACTACTGTTCTTCCTCCATGAGCATATCTGGGCCTTTAAAAAGGCCGTCTAAGTTACTTGTATATTGCATTAATTCCTTCTTATGTGATTTCCTCAGTTGATTTCCCCTTAAGTTCTGATATAAACAGAGAGGGGAGAAGGGTATCCTGCTTCCGAATATGGAGGTTCTGTTCTATACTGTCAGTTTTTCAGAACTGTTAGTTACCTAACTAACATATTGACTGTTTTATGTCAGTGTATGTAGCCTAGGGCTGTCTGCTCTGGCTGGCAGACAGGGTCAGATCATTGGCCCATCTAGTTCAGTGTAGCCTACCCTGACGGGCAGACCCTCTTGAGGGTCAGGGGCCTCTTTGAACTGGAGAGGGAACCTGGGAGCTTCTGCATGCAAAGTGTGTGCTCTCCCCACACTCACAGATCTATTACCCATCGCCATATCTTGTGGCAAAGAGTTCCTAAGATTTCCTAAGAACTCTTGTGGCAAAGAGTTCCTAAGATTTAAGTTCAGAGTGAGAAGGGAGAGAGCTTGCAGGAGACTTAACAAGGTCTGTGTAACCGAAAAAGACACACCCCTATTTATTTACAAATTCACAGGGTTCTGTACGTGGCAGAAAGGTGGGATATAAAATGCAACAAAGCTTTGCTTGGCTTATGGGGCCAAACCAAATAATGCATGTGAAGTATCCTTGCGTACTAAGGAAAGTCCTGTAGTCCTGATCCAGAACTTGATTCCGATCCATCGGTAGATCTCGTAGCTAGACCTCCAATCAGAACTCTGTTTCCCCAGCCCCCCGTATGGCAGATCTAGCCTTGCCATTGGACCCAATTTCCATTTGCAACCCACTTGTTGTCATTTCATCCTTCGGGTCTACCTGGAATGCAAGGCGGGACCATGGCAGCTTGGGCAGGATTCCTGTGAAGCTTTGTTAAAAGCAATTCCAGTTTCTGTGAACTGCGAGCGGAAGGTGGGCTTCCGGTCCGCTACTGTTTAAGAAAAATATTTATTTTGTCAGGAACACTGAAAGGTTGGGCATTAAGAGGATTTGCAGGAGAGATGTGTGGGTGTGCCTGCTGGGAAATAAAGCAATTGTATTAAT +>XM_029611915.1 PREDICTED: Rhinatrema bivittatum neurofibromin 1 (NF1), transcript variant X2, mRNA +ACTTCCGGTGTGGTGTCATGGCGTCTTCGCTGTGATGGCTGAGGAGAGGCTGCGATAACAGGGGAGGGGGGGAAGCGAGAAGAAGGGGAAGAGGGAATTAAAATAATAAGAATAACCACCCCCTCCTCCAAGCAAGCCAAAAAATAAGAGCCCTTCCAAAAACAGCAAAATAAAAAGCAACGTAGTCGCGGAGGTGGGGGGTGAAAACCTCCCACCCCTTTCTTCCCCTCCCCCGAGGGAAAGAAGGTACTTTTAAACAATATCTAAACATATATATTATATATATATGTAATATAGGAAGGTCGAATCCAGGCGGCCCCGGGGGTGTTTCCACTCCCCTGCCCGGGCTCTCCCCGGGCTGAGATGGCGGCGCACAAACCGGTGGAATGGATCCAGGCCGTCGTGAATCGGTTCGATGAGCAGCTTCCAATAAAAGCGGGACAGCAGACCACGCACACCAAAGTCAGCATGGAGCACAATAAGGAATGCCTCATTAACATTTCCAAGTACAAGTTTTCTCTGGTCATAAGTGGACTCACAAATATCTTAAAAAATGTAAACAACATGAGAATATTTGGAGAAACTGCTGAGAAGAATCTCTACCTGTCCCAGCTGATTATATTGGATACTCTGGAAAAATGTCTTGCAGGGCAACCGAAGGACAGCATGCGGCTAGATGAGACGATGCTGGTGAAACAGCTTCTCCCCGAGATCTGCCACTTTATCTACACCTACCGTGAGGGAAACCAGCACGCAGCCGAACTCCGCAACTCCGCCTCTGGCGTCCTTTTCTCTCTCAGCTCCAATAACTTCAATGCTGTCTTCAGCCGCATTTCTACCAGATTACAGGAACTGACCGTGTGCTCGGAAGAGAACGTTGACATTCATGATATTGAACTGATGCAGTATATCAACGTGGACTGTGCAAAGTTAAAACGATTGTTACAGGAGGCAGCGTTTAAATTTAAATCTCTCAAGAAAGTTGCTCAGCTGGGAGTTATAAACAGTCTGGAAAAAGCATTTTGGAACTGGGTAGAAAATTATCCAGATGAATTTACAAAGCTGTATCAGAGACCACAGGCTGATATGGCGGATTGCTCAGAGAAGTTGTTTGACCAGGTGGACAGCTTTGCTGAAAGCACGAAACGCAAAGCGGCGGTTTGGCCCCTTCAGATCATTCTCCTCGTCTTGTGTCCTGAAATCATACAAGAAATCTCCAAAGATGTGGTGGAGGACAGCAAAATGAACAAGAAGTTGTTTCTGGAAAACCTTAGAAAGGCATTAGCTGTGCATGGTGGAAGCAGACAGCTGACTGACAGTGCTGTCATTGCCAGTGTTAAGCTCTGCAAAGCATCCACCTACATCAACTGGGAAGATCACTCCGTCATTTTCCACCTTGTACAGTCCGTTGTGATAGATCTAAAGAATTTGCTATTCAATCCAAGCAAACCTTTTTCCAGAGGTGCCAGCAATCAGAATGCCGATGTGGATCTAATGATCGACTGTTTGGTTTCCTGCTTTCGCATTAATCCTCACAATAACCAGCATTTTAAGATCTGCTTAGCACAGAACTCCCCATCACCATTTCATTATGTGCTTGTGAATTCTCTACACAGAATCATTACAAATTCGGCCCTGGACTGGTGGCCCAAGATCGATACTGTGTACTGTCACTCAGGAGAGCTCCGCAGCATGTTTGCAGAAACCCTTAAAAGTGCCATGCAAGTCTGTGGCACGCATACCACCACCCGCCTGACTCAGAGTCTTCCATTCAAAGACAAAAGAACAAATCGTAAATTTAAAGACAAACCTACAGACTTGGAAACCAGACTTGGAAACCAGAAGTACCTGTTGCTGTCCATGGTGAAGTTGATTCATGGAGATCCAAAGCTTTTGCTTTATAACCCAGGCAAGGTAGGACATGACACCCAAAACAGCACTACTGAGTTAATTACCGGACTTATGCAGCTTGTACCACAGTCCAACATGCCAGAAATAGCACAAGAAGCCATGGAGGCCTTGTTAGTCCTTCATCAGCCAGAAAGCATTGAGCTGTGGAATCCAGAGGCACCAGTAGAAACGTTTTGGGAAATTAGTTCAAAAATGCTTTATTATATCTGCAAGACATTAATTGGTGCCAACATGCTGAACAGCACAGAAATTCTCAAGTGGCTGCGAGAGATTTTTATTTGCAGAAACAAATTTCTGCTCAAGAACAAGAGCGCCACAGCGGGCAGCAGCATTCCAATCTGTCGCCAGGCACAGGCCAAGTTAGAGGTTGCTCTCTACATGTTCCTGTGGAGTCCTGACATCGAGGCTGTCCTTGTTGCCATGTCCTGCTTCCGTCACCTCTGCGAAGAAGCGGATATCCGGTGTGGGGTCGACGAAGTGTCTGTGCATAATTTTTTGCCAAACTACAACACTTTCATGGAGTTTGCATCTGTCAGCAACATGATGTCAACAGGGCGAGCAGCTCTTCAGAAGAGAGTGATGGCATTATTGAGGCGCATAGAACATCCAACAGCTGGAAACACAGAGGCTTGGGAAGATACACATACGAAATGGGAGGTGGCTACCAAACACATTCTTAACTACCCGAAAACAAAATTGGAGGATGGCCAATGCACTGAAAGTCTTCACAAAACCATCGTGAAGAGGCGAATGTCTCATGTTAGCGGAGGTGGGTCAATAGATTTGTCTGACACGGACTCTCTGCAGGAATGGATCAACATGACAGGCTTCCTATGTGCTCTGGGCGGTGTCTGCCTGCAACATCGCAGCAGCGCAGGCTTGGCCACGTACAGCCCGCCCATGGGACCCATCAGCGAACGCAAGGGCTCCATGATCTCCATGGTGTCCACCGAAGGCAACACAGAGACACCCGTCAGCAAATTTTTGGATAGGCTGCTTTCCTTGATGGTGTGCAACCATGAAAAAGTGGGAATTCAGATTCGGTCGAACATTAAAGATCTGGTGGGCTTGGAACTGAGCCCTGCGCTTTATCCCATGCTATTTAACAAAATGAAGAATAATATCAGCAAATTCTTTGACTTACAAGGACAGGTTTTGCTGACTGACACCAATACGCAGTTTGTAGAGCAGACCATAGCTATATTGAAGAATTTGCTTGATAATCCTACAGAGGGCAGTTCTGAGCACCTGGGACAAGCTAGCATTGAGACCATGATGCTGAATCTAGTTCGATATGTTCGTGTGCTTGGAAATTTAGTGCATGCCATCCAGATAAAGACAAAACTCTGCCAGCTCGTAGAAGTGATGATGGAAAGGCGAGACGATCTTTCCTTCTGCCAAGAAATGAAATTTCGGAATAAGATGGTGGAATATTTAACAGACTGGGTTATGGGAACGTCTAACCAAGCAGCGGATGAGGATGTAAAATGCCTAACCAGAGACTTGGACCAGGCCAGCATGGAAGCAGTAGTCTCTCTCCTTGCTGGTTTACCTCTGCAACCTGAAGAAGGAGATGGAGTAGAGCTGATGGAAGCCAAGTCCCAGTTATTCCTCAAGTATTTTACTCTCTTTATGAATCTTCTAAATGACTGCAGCGAAGTTGAAGATGATGGTACTCAGACTGGTGGAAGGAAACGAGGGATGTCTCGGAGGCTAGCTTCCCTGCGACACTGTACTGTTCTTGCTATGTCAAATTTACTGAATGCTAATGTGGACAGTGGTCTCATGCACTCAATAGGTTTGGGCTATCACAAGGATTTGCAGACAAGAGCCACATTTATGGAAGTCCTTACCAAAATCCTCCAGCAGGGGACTGAGTTTGACACCCTGGCAGAAACTGTGCTTGCGGATCGTTTTGAGAGATTGGTAGAATTGGTCACTATGATGGGCGACCAAGGAGAACTGCCCATCGCCATGGCTCTAGCCAATGTGGTGCCTTGTTCACAGTGGGATGAGCTAGCCCGTGTCCTTGTGACCCTTTTTGATTCACGACATCTGCTTTACCAGCTTCTCTGGAACATGTTTTCAAAGGAGGTTGAACTGGCAGACTCCATGCAGACCCTTTTCCGGGGAAACAGCTTGGCCAGTAAAATAATGACTTTCTGCTTTAAGGTGTATGGTGCTACATATCTGCAAAAGTTGCTGGAGCCTCTGCTCAGGGCCATTATCACATCACCTGAGTGGCAGCACGTCAGCTTCGAAGTGGATTCCACAAGGCTGGATGGGATGGAAAGTCTGGATGAAAACCAGCGCTGGCTGCTGCAGATGACAGAGAAATTCTTCCATTCAATAATTACTTCCTCTTCAGAGTTTCCTCCCCAGCTGCGAAGTGTCTGCCACTGTCTGTACCAGGCAACTTGCCACTCTCTTCTGAGTAAAGCTTCCGTAAAAGAAAAAAAGGAAAACAAAAAATCAGTTGTCAGCCAGCGATTCCCCCAGAACAGCATTGGGGCAGTCGGCAGCGCCATGTTCCTCAGGTTCATTAACCCTGCAATCGTCTCTCCATACGAAGCAGGAATCTTGGACAAAAAGCCACCACCTAGAATTGAACGGGGCCTAAAGTTGATGTCAAAGATCCTTCAGAGTATTGCCAATCACGTCCTGTTTACAAAAGAAGAACACATGCGCCCTTTTAATGACTTTGTGAAAAGTAACTTTGATGCAGCTCGAAGGTTTTTCTTTGACATTGCTTCGGATTGCCCAGCTAGTGATACAGTCAATCATAGCCTGTCCTTTATCAGCGATGGTAATGTGCTGGCTTTGCATAGGTTGCTTTGGAACAATCAGGAGAAAATTGGCCAGTATCTCTCTAGCAACAGGGACCATAAAGCAGTGGGCAGGAGACCTTTTGACAAGATGGCAACTCTGCTCGCATACCTGGGACCTCCAGAACACAAACCTGTAGCAGACACACACTGGTCCAGCCTAAATCTCACCAGTTCCAAATTTGAGGAATTCATGACCAGGCACCAGGTACATGAAAAAGAGGAGTTTAAGGCGTTAAAAACTCTCAATATCTTCTATCAAGCAGGGACATCAAAAGCTGGAAATCCGGTATTCTATTATATTGCCAGGCGATTCAAGACTGGCCAGATAAATGGGGACTTGCTAATATACCACGTGTTGCTGACTTTGAAGCCATACTACGCCAAGCCATATGAGATTGTAGTGGACCTCACCCACGCTGGGCCCAGCAATCGCTTTAAGACTGACTTCCTTTCCAAGTGGTTTGTCGTTTTCCCTGGGTTTGCATATGAAAATGTGACAGCAGTTTACATCTACAACTGTAACTCTTGGGTGCGGGAGTACACAAAGTATCACGAGAGACTGCTCACCGGCTTGAAAGGCAGCAAGAGACTAATTTTCATTGACCCCTCGGGGAAGTTGGCAGAGCACATTGAGCATGACAAGCAGAAACTACCAGCTGCCACTCTAGCTTTGGAGGAAGACTTGAAGGTGTTTCATAATGCTCTCAAACTGGCGCACAAAGACACCAAAGTTTCTATTAAGGTTGGTTCCACAGCAGTTCAGGTGACATCTGCTGAGCGGACAAGAGTCCTGGGTCAGTCAGTTTTTCTGAATGATATTTACTATGCCTCCGAGATTGAGGAGATCTGCCTCGTGGATGAGAACCAGTTCACGCTAACCATTGCCAACCAGGGAACACCTCTGACTTTCATGCATCAGGAGTGTGAAGCCATCGTCCAGTCTATCATTCACATAAGGACTCGATGGGAGTTGTCACAGCCCGATTCCATTCCACAACATACTAAAATCCGTCCAAAAGATGTGCCTGGAACATTGCTCAACATTGCATTGCTTAACCTAGGAAGCTCAGATCCAAGTTTAAGGTCTGCTGCCTATAATCTTCTGTGTGCCTTAACATGTACCTTTAATTTAAAGATTGAAGGCCAGTTACTGGAGACTTCAGGTCTGTGTATCCCTGCCAACAACACCTTGTTCATTGTCTCCATAAGTAAGACTTTGGCAGCTAATGAGCCCCATCTCACCTTAGAGTTTTTGGAAGAGTGCATTTCCGGATTCAGCAAATCCAGCATTGAACTAAAGCACCTTTGCCTGGAGTACATGACCCCCTGGTTACTAAATCTGGTGCGCTTCTGTAAACTCACCGATGATGCCAAACGGCAGCGAGTCAGCGCTATTCTGGATAAGCTGATAACCATGACAATCAATGAAAAGCAGATGTATCCTTCCATTCAGGCAAAGATATGGGGAAGTCTTGGACAGATCACAGATTTGCTGGATGTGGTTCTGGACAGTTTCATTAAAACCAGTGCCACAGGTGGTTTGGGATCCATAAAGGCTGAAGTTATGGCAGACACAGCTGTAGCTCTGGCTTCAGGCAATGTGAAATTAGTCTCAAGCAAGGTGATTGGAAGAATGTGCAAAATAATTGATAAGACCTGTCTGTCGCCTACACCTACATTAGAACAGCACCTGATGTGGGATGATATTGCCATCCTGGCCCGGTACATGCTAATGCTGTCCTTCAACAATTCACTGGATGTGGCAGCGCACCTTCCCTACCTCTTCCATGTTGTCACTTTATTGGTGGCCACAGGTCCTCTGTCTCTGAGAGCTTCCACCCATGGCCTGGTCATCAATATAATTCATTCCCTGTGTACCTGCTCACAGTTGAACTTCAGCGAGGAGACCAAGCAAGTTTTGAGACTCAGTCTGACGGAGTTCTCATTGCCCAAATTCTATTTGCTGTTTGGAATTAGTAAAGTGAAGTCAGCCGCTGTCATAGCCTTCCGATCCAGCTACAGGGATAGGTCGTTCTCTCCTGGCTCCTACGAGAGAGAAACGTTTGCTTTGACGTCGCTGGAGACGGTCACAGAAGCTCTGCTGGAGATAATGGAGGCTTGTATGAGAGATATTCCAGCATGCAAGTGGCTAGACCAATGGACAGAGCTAGCACAAAAGTTTGCATTTCAGTATAATCCATCCCTGCAGCCCAGGGCGCTAGTAGTCTTTGGCTGTATCAGTAAACGAGTGTCACATGGGCAGATAAAACAGATCATCCGCATCCTTAGTAAGGGACTGGAGAGCTGTCTTAAAGGCCCTGATAATTATAACAGTCAGGTTTTAATAGAAGCCACAGTTATAGCTTTAACCAAACTACAGCCACTTCTGAATAAGGACTCCTCTATGCACAAAGCCCTCTTCTGGGTGGCTATGGCGGTGCTGCAGCTGGACGAAGTGAATCTGTATTCCGCAGGCACAGCCCTCCTCGAACAAAACCTACACACATTAGATAGCCTTCATGTGTTCAATGACAAGAGCCCTGAAGAAGTATTCATGGAAATCAGGAGGCCCCTGGAATGGCACTGCAAGCAAATGGATCATTTCGTCGGGCTCAATTTCAACTCCAACTTTAATTTTGCACTAGTAGGACACCTTCTGAAAGGTTACAGGCATCCTTCTCCTACCACAGTAGCACGGACGGTCCGCATTCTACACACATTGCTGGCGCTAGTTCACAAACACAGGAATTGTGACAAGTTTGAGGTGAATACCCAGAGTGTGGCTTATTTGGCAGCTTTACTCACAGTGTCTGAAGAGGTCAGAAGTCGCTGCAGCCTAAAGCACAGGAAATCTCTCTTATTGGCAGATGTTTCACTGGAAAATGTTCCTATGGATACATATCCCATGCATCACAGTGACCCAAGCTACAGGACATTGAAGGAAAACCAGCCGTGGTCCTCCCCAAAGGGTTCAGGCATCCATCTTGCTGCAAATTACCCAACAGTGGGGCAGATTAGTCCCCGAACCCGAAAATCTATGAGTCTGGATATGGGGCAGCCATCACAGGCTAACACTAAAAAGCTTCTAGACTGCTGCTGTAACTCTGTTAAGTTTTGGCTAGGCGTGGCTGAAAACGGGATATTTGTTCCAGTCCACTTTCCTGGTACAAGGAAAAGCTTTGATCATTTGATATCGGACACCAAGGCTCCAAAAAGACAAGAGATTGAGTCTGGGATCACTACACCTCCCAAAATGAGAAGAGTTGCAGAGAGTGACTACGAAATGGAAACCCAGAGAATAGCATCGCCCCAACAGCACCCTCACCTGCGCAAAGTCTCAGTGTCCGAGTCCAATGTGCTTCTGGATGAAGAGGTCCTAACAGACCCCAAAATCCAAGCTCTGCTGCTTACCGTCCTTGCTACACTGGTAAAGTACACTACAGACGAATTTGACCAGCGAATTCTTTATGAGTACTTAGCAGAAGCGAGCGTGGTCTTCCCTAAAGTTTTTCCTGTCGTGCACAATCTGTTGGACTCCAAGATTAATACCCTTTTGTCACTGTGCCAAGATCCAAATTTACTGAATCCAATTCATGGGATTGTACAGAGTGTGGTTTACCATGAAGAGTCCCCGCCCCCATACCAGCCATCCTACTTACAAAGTTTTGGTTTTAACGGTTTATGGAGGTTTGCTGGGCCATTTTCAAAGCAAACACAAATTCCAGAAGATGCTGAACTCATTGTAAAGTTTCTGGATGCCTTGATCGACATGTATTTGCCTGGAATAGATGAGGAAACCAGCGAGGAGTCCCTCCTGACTCCCACATCTCCTTACCCTCCTGCCGTGCAGAGCCAGCTCAGTATTACTGCCAACCTGAACCTTTCCAATTCCATGACCTCGCTTGCCACCTCCCAGCATTCCCCAGCTTCTCTGCCTTGCTCTAAATCAGCAGTTTTCATGCAGCCCCTCGCTCATCAAGGAATCGACAAAGAGAACGTGGAACTCTCACCCACGACGGGACACAGTAACAGTGGCAGGACGCGTCATGGATCTGCGAGCCAGGTGCAGAAGCAGCGGAGTGCTGGCAGCTTCAAACGGCATATCATTAAAAAGATTGTGTGATGTTTGCATGGGGGAGAGGGGTTTTAGAGAGAAAAAGCATACAAGAAACCAAGAAAAAGACTTCTGCTTGTGAGCTTCTCACCAGTGACCCCTACCAGTCAGGATGCTGCACTTAACTTTTAATGTCACCGTACAGTCAGCCATGTTGCCAAAAGAACAACTCTTTGATGTATTGCCTGAATTAACATAGTTTAATGCCTCCTTCAGGTTTCTTCTGTTTCTCTTTGTTCTTTTCATTTTAAAGCAGTGTTCCAGAACCATTGTAGAAAAATTGTTCGTAGATCCCAAGGTTCCAGAATGAAGAACTTTGCAGCTAAAGAAAGCACTGAATCTGCTTCAGTACCTAAACTACAGAAGCCATTTTTTTTTTATTTTTTTTTTTTAGAGATGGTTCTCTGGCTTTTTCTTCCTTGCCTTGCTTTTTTAATTTTGTTTTTGTTTATAAAAAGGAAAGTGTTAATGCTGAATTATTTTTGCACACTTTTCAAAATGGAAAAAACAATAGAGGGATAAATCCTGTTCTTAATGGAAACCCCTTTTAGACTTTTTAGTAGTCCTCTTTTATTTCTTTTTTCTTTTTTACCTGGAAATGAATCTGTAAAAGTTGCAATTGTTCAACTGTGGGCCTAACTAACCAGAGATTGTGCACCTTTAAATAATGTAACTACTTTATCATTTATGGTGGAATTCATGGGAATATAAAACTCTGGCATCAACAAAATCAGCATTTACTCCTTGATACCTGTCAGTTTCTCTAGTGTTCATTTATATAAGGCAAAACTGTTTGTCCCCCTGTTTTTATTGTCTGTAACATTTTAATGGAAAATTGCAGGGTTTTTTGAAAGAGTGAGGGGTTCCAATTTTCAGTGTTAGTTGCTGAGCTGTTTCTCTTCCTGAGTTTGTAGATAATGGTTAGGGTTAAGTCTCAACGTACCCTGCTGCCAGAATGGAATGGTTTGTTAATGCAGGTGTAGAGAATTCAAGTAATTTTTTTCCAGCAATTTCTGAAAACTTCTCTGTGAAGACCTGTTATGACAGCCTCCTGAAGGGAGATGGTAGTTTAAATTTTCTATCTGTGTTTTCCTGGGGGTTCCCCTCAAAACAAAAATAACTACTGGGAGAATTTAGTTCAAAATAACTAATCCCCCTAAATTAATTATTTAATAAGCTTGAAAGCAAGGAGCAAAATACTGATTTTATCATGCCTCTGTTCATGTGTTCTGAATGTAGATGCACCTGCCTGAAGCAATGCTGCGCAATCTTGTTTTTTTTTAAGCAAACTAATCTGTTTTAACCAATTTATATCTGCACTAAAACACATTAGAAGGCGAGAACTGACATCTGTGGTGACACTTTGAATAGAAAAGACATTTGAGACTATTTGTTCATCCAATGTCGTCCTGGGTTTTTTTTTTGTTTGTTTTGGTGCCCCTTAAGTTTAATAGATTCTTCCCCCGGGGACATTGCAAGCAGAATAAATACAGGATTAGGCAATGTGGGAGTTAGAAGCATTACGTCCATGCAGCTCAGCCCAAAAATCAACGCATGTATTATGCCCACATAAATGCAAGATGGAACGGTACATGACCGGAGCGGGCTTAACAAAAAATCCGCTTCATGATGTCAAGCTCTCCCAGTCAAGAATTCTGGCAGTACAGTTTGTCTTATCGCCAGACTTTCCAATCAACATCCACTTATGCTGTAGAATAATCAGAAATTCTAAGAATCACTTTAGAAACATTTTGGGGGTTTATAATTAAACTGAAAACCACATTCTATCACTGTGAAAGCCGTGTCAACCTAGCATAGTATAATGGCAGTGGATGACTGTCCTGGTATACTGCTGTTAAGGTTAATATGTACTATGGAATAGGGCAAGTGGTTAAAATGCTATAATGGACGAAAATGTAAACATTCTGATCATGGAGATAAATACACGTTTGACAGCTATGAGTCAAGGTCATGTTATTTAGGTGCTCATTTTTAGATTGACTGTATTTACTGCTTTAACAACATCTATTCATGGCCCCAGTATAGTACTAAAATTACAAAAAGCTTTAAAAAAAAAAAAAAAAAAAAAAAAAGTATATTGTTAGTGTATTTCAGTAAATCAAATTCCACAGCTAAATTACTAGAAAAAAGGTACAATAAAGTGTTCAGATTGTATTTCTATAGCACATAACACACTTATTCAGACACAGTAATCAGTTTAACATTTATGAATGTAAAAAAATGCCTTTATTTTATTGTCACAAACAAATAACTTAATTTCTTTTTAATTTGTTTACAGTCCTGGAAAAACTATGAACAGAAACATAATATGCAAATATAGTTTGCCAAAATAAGTTTTAAAAAACAAACAAAAAACCCCGTAGTATTAGTTGTGGCTATTTTGAAGTAGCTGACATGTTCAAAATATTGAAGGTTTGTGCAATTAACCAAACTTTTTGTTTTTTATTATTATTATTATTATTACTGTTATTGATAATGTAGAAGTTGCAAAATAGAAATAATTAAAATGCTACAAAATGTATGAAGGGTATTAAAAGGTGAATGAAGTTAGGAATAGAGCAGGGACCCAGTGGCAGGTGCTATACCCATTAGTTTATTTTCCCCAGTCCTGAGATTTCACATGTGAAAACCTACTGTACTGTACACGAGATTCTACTGTAGATTGAATCAAAATTTATTGAAAACATGTACCAGTTTAGCTCGTAAGTGATTGCGTACCAAACTGTATTTTCTCTTTTTTAAAATTTTCATTTCAAATTGAGCAGGAAAGAAAGCAGGGGGAGAAAATGTAATAGATGCCTTGATCTGATTTTTCAAAACACTACAATTTTCTGAAACTGTTGCAAGATTGGATTTCTTTAGTAACCTATTCAAATCATTGACTCTTTCCATTGTGATTCTTAGTGTTAAAAGTGCACGTTGCTTAATCATAGGCTGAGTTGCACAAAAAAATGTCAATTTGGAATGTACACCCTCCACCCTTCCTCCCCCCTCTATGAAATTTAAAAAATATCAGACAACTAAAATTGCTTCTCACTATTGGAATCCAAAAAAATGACCAGGAAATGTTTCACTTGTCCTAACAAAACTTGTACAAAACAAAATGCACACAGCATAACTAACATTTACTTAAAAAAAAAAAAAAGCAAATGAACATGTCCATTACTGGTACCTGAGATCT +>XR_005095104.1 PREDICTED: Pollicipes pollicipes uncharacterized LOC119106218 (LOC119106218), ncRNA +AAGAAATGAACTTCAACTGCCTGATCTGTGGAACCAGATGCAAGCTTCACAAGAGCCAGCTTAGTTCCAGGCTGGGAGAGTGGCAACAGGAGTGGTCCTCCAAGGAAGCTGATCAGGGACTCGTTTGGATACTGGATCTGGATCTGAACTGCTTGGACGAGGAGCAGTGCCTGTGTCCAAAGTGCTCACAACTCTTGCGTGATCTTCGGAGCTATGAAGCTAAGGTCACCGAAATCCGAACTGAGCTCATTCAGAGACATGAGGGTTGCATGCATACAGACACTCCAGGATCTGTAGACATCACTGTCACAGAAGCGTCTGTGAGGCATAAGCCGAACTCGGCGAGGCCAGAGCCGGAGCTGGAGCTAGAGCCAGAACCAGATCCAGAGCCGGAGCCAGAGCCAGATCCGGAGCCAGAACCAGAGCCAGAGCCAGCGCCCTGCCTGCGGCGAAGCTCTCGTCGTTGTGGACGACCGCCGGCGCCGGG +>XM_024031699.1 PREDICTED: Quercus suber uncharacterized LOC111999568 (LOC111999568), partial mRNA +AGTGCAGACCTGCGTTGGAAGCCACCTGACTTGGGTGTCTATAAAGTCAACTTTGATGGGGCTTTATTTATGGATCAGAGGTGTGCTGGTTTAGGGGTGGTTGTTAGGGATTCAGCTGGGCTTGTTATTGCTGCTTTAAGCCAGAGAGTGAGGCTGCCAGGATCGGTTGATGTGGTGGAGGCCTTGGCAGCTCGTAGGGCAATGTGTTTTGCTCAGGAACTTAGCCTTCATCATGTGGTGATTGAAGGGGACTCTTTGCGAGTTATTCAAGCCATTAACAACACTAGGCCAGTGCAGACTTTGTATGGACACATTATTGACGAAATTAGACTTTTATCTTCGTCAGCTAATTGTAGTTTTTCGCATTTTAATCGGAATGGCAATAAGTTAGCTCATGCCCTTGCTAGACGAGCAATTTTATCTGCTGATACTGATGTGTGGATAGAAGAACTTCTATAG +>XR_001602060.1 PREDICTED: Miniopterus natalensis uncharacterized LOC107525510 (LOC107525510), ncRNA +TCACGGGCAGCGGGAGTAAAACCGCGGGCGCTGGAAGGGGCAGAGTGGTGAGGGCTTCTGAAGGCGCAGCCGCGCTCCCCGCGGCCCGGCTGAGCGTCCACCAGGAGCTCGCGCCAGGCCTTCCCGGCTGGGCCGGCCGAGGGCAGCCAGAGCTGTGTGATGACCCGGTTCCAGCTCACACCGCCTCGTGCGCCCGGTGTCGGTGACTGAGCAGCTGCCACAGGGCTTCCCAGTTCTGGAGGCTGGAAGTCCAAGATCAAGTGTTGGCAGAGTTGGTCTCTGCTCACTCTAGCGAAGGTTAGCCACCCTGTCATGAGGACATTCAGCACCCCCTTGAGAAGTCCATGTGTGCCAATGTCCATGTGTGCCAACGTCCACGTGGAAAGGAGCTAATTCACCAGCAACAACTTTCCAGCCAGCTGCAGCTCCAATAAAGGCGAAACCACCGGCCACCCTCCCTCTGGATCTGAATGCTTTCAAGGAACTATTTATTGAGACTGAGCAAGGACTACTTTCTCTGGTTTTCAAATATGTTTAACACACCAATCAATGTGGCACCTTGTTAATCATTTCACTCAACCAATCCTCATCGAGCACCGAAATACACAGAGCACAATCCCCAACAGTGAGGTTCAAGGTGGTGAAACCCCATCACTGCCATAGGAGCTTCCTGCCCAGTGGATTCGAATTACAGAATACAATATAATCAGGTAATAATCACCAAAAACATCAGGTCTAGTTTTACTCATTTACCAAAGGCGTGAGAAAGCTGGGTGTGCCCTGGGA +>KP885581.1 Homo sapiens isolate SLS040 tRNA-Pro (trnP) gene and control region, partial sequence; mitochondrial +ATTCTAATTTAAACTATTCTCTGTTCTTTCATGGGGAAGCAGATTTGGGTACCACCCAAGTATTGACTCACCCATCAACAACCGCTATGTATTTCGTACATTACTGCCAGCCACCATGAATATTGTACGGTACCATAAATACTTGACCACCTGTAGTACATAAAAACCCAATCCACATCAAAACCCCCCCCCCATGCTTACAAGCAAGTACAGCAATCAACCTTCAACTATCACACATCAACTGCAACTCCAAAGCCACCCCTCACCCACTAGGATACCAACAAACCTACCCACCCTTAACAGTACATAGCACATAAAGCCATTTACCGTACATAGCACATTACAGTCAAATCCCTTCTCGTCCCCATGGATGACCCCCCTCAGATAGGGGTCCCTTGACCACCATCCTCCGTGAAATCAATATCCCGCACAAGAGTGCTACTCTCCTCGCTCCGGGCCCATAACACTTGGGGGTAGCTAAAGTGAACTGTATCCGACATCTGGTTCCTACTTCAGGGCCATAAAGCCTAAATAGCCCAC +>XR_003958643.2 PREDICTED: Taeniopygia guttata SFT2 domain containing 2 (SFT2D2), transcript variant X1, misc_RNA +GTGGGCGCGGTGGTTGCCGGGGCTGGTAGTCCCTGGGGAGGGCAGGGCATTCCGGCCGGCCGGGCGGGGTGCGGAGCCATGGACAAGCTGAAGCGGGTGCTGAGCGGCCGCGACGCGGAGGAGCCGAGCGGCCTGGCCGAGGTTATCGATGCGACTTCCTTAGGTTGGGGCACCCGAGTGAAAGGTTTCATTGCGTGTTTTGCGATCGGATGTCTGTGCTCGATCTTGGGTAGTTGTCTGCTATGGATACCAAAGAAAGGGCTGGTATTCTTTGCGGTGTTTTATACCCTGGGGAATATTGCATCCATTGGGAGCACCATGTTTCTTATGGGACCAATGAAACAATTGAAGCGGATGTTTGAGCCCACACGTTTGATTGCTACTATTGTTATGCTATTGTGCCTCATACTAACACTGTGTTCTGCTTTCTGGTGGCGTAAGGCAGGACTCGCGCTGCTTTTCTGCATCTTACAGTTTTTTGCCATGGCATGGTACAGCATTTCCTTCATACCATATGCGAGGTTGGAAAGATGGAAAGATGTGTCAGTGGTGAACTCTGCCTTCTGCTACATACAACATAAATTGCTCTTAGGCTGAACTCTTAGAGTTGAAACAACCTTCCCCATGCTGAGAATAGTAATTGGGCTGTTCCCACTAACCAACTACAGCTCCTTCAGTTAGAGTCTGCACCAGCATGAATGCAATTTCCATGCATTGTTTCAGTCTGGAAATGAAACAATTTTCATTAATGG +>KJ543947.1 Bacterium AM0179 16S ribosomal RNA gene, partial sequence +TACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGGTAGAGAAGAACGTTGGTGAGAGTGGAAAGCTCATCAAGTGACGGTAACTACCCAGAAAGGGACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTCCCGAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGTGGTTTATTAAGTCTGGTGTAAAAGGCAGTGGCTCAACCATTGTATGCATTGGAAACTGGTAGACTTGAGTGCAGGAGAGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCCTGTAACTGACACTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGATGTAGGGAGCTATAAGTTCTCTGTATCGCAGCTAACGCAATAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATACTCGTGCTATTCCTAGAGATAGGAAGTTCCTTCGGGACACGGGATACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATTGTTAGTTGCCATCATTAAGTTGGGCACTCTAACGAGACTGCCGGTGATAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGATGGTACAACGAGTCGCGAGACAGTGATGTTTAGCTAATCTCTTAAAACCATTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGAAGTCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGG +>XM_007779277.1 Coniosporium apollinis CBS 100218 hypothetical protein partial mRNA +ATGTCGGGAATCAAATCCGCCGCTGCCGTAGGACTTACTCTCCTTGCCAATCTTGTTTTGGCCCAAGAAGTTATCATCAACGGTGTAGTCCAACAAGATGTCTTCTTCTACGGTCAGAGTCCACCGGTCTATCCATCACCTGATGCTGAGGGTGACGGCCGCTGGGGCGACGCCTTGTCAAGCGCTCGGGCGATCGTTGCTCAAATGACACTTGAGGAAAAGGTGAACATCACCGGAGGGTTCTCTAACACCACGAATGGATGCGGTGGAAACATCCCGGCCATCGAACGCCTGAACTTTCCTGGAATGTGCTTGCAGGATGGCCCGAATGGTGTGAGAGAGACTGATTTCGTCAATGGCTACGCTGTGGGCATTCACGTTGGTGCAAGCTGGAATCGGAATCTGACTTACGCGCGCGGTTCTGCGATCGGTGGCGAATTCAGAAGGAAAGGTGCCACAATCGCCTTAGGCCCTATGGTCGGACCGTTGGGAAGGATTGCTCTTGGTGGTCGCAACTGGGAGGGATTCAGCAACGATCCCTACATCAGCGGTATCCTTGCTGCTGAAACAGTTAGGGGAATCCAAGACAGAGGCGTAATTGCTTCCACCAAGCACTTTGTTGGAAACGAGCAAGAGCTTCTGCGAAACCCCCGCCCAGATCTCAGCAACCGCAACAAGACTATTGAAACTTCGTCTTCGAACATGGACGATGCGACGATGCACGAACTATACATGTGGCCTTTCGCGGACGCTGTACACGCTGGTACAGGCAGCATTATGTGCGCATACCAGCGCCTTAATAACAGTTATAGCTGCCACAATAGCAAAGCTCTGAACGGTCTTCTAAAGACCGAGTTAGGCTTTCCAGGTTTCGTGCTGAGCGACTGGGGTGCTCAACACACTGGCATTGCCAGCGCATTGGGCGGTCTCGACATGGTCATGCCTTTTGGATTCCGCTTCTGGGGCCCCAATCTCACTGAAGCAGTCCGGAATGGCTCGGTTCCAGAGTCCCAAATCAACAACATGGCAACGAGAATCATGGCAGCATGGTACTTTGTGGGCCAGGACAGTCCAGACACGCCTCCTTTAGCAGTTGGCATGGCACGCAGCCACTTGCGTCCTCACACTGTGGTCGATGCCCGAGATCCCGCGGACGACGCCGTCAACCTCCAGGGAGCTATTGAGGGCCATGTCCTTGTCAAGAACATCGACAACGCCCTACCTCTACGAAATCTCAGCATGATGTCAATCTTTGGCTACGATGCCAAGAACCCTAACTACAACAGTCCGGCAGAAGGATTCAGTGCTTGGTCCCTGGGTCTCCAATCCCAGAATTACCGCTCTATAACCGGAGGCGGCTCAGGAGCTATTACCCCTTGGTATATTGACGCACCGTTCGAGGCCCTGTCCCGACGCACACGTGCAGACAGAACCGCCCTGTTTTGGGATTTTGACACCAACGGAGCGAACAGCACGATTGACACCAACAGCGAGGCCTGTCTCGTGTTTATAAATTCAGCCGCTTCTGAAGGTGTTGATCGGCCATCCCTACGCGACGACTTCTCGGATGCATTGGTAGAGAACATTGCCTCCTCTTGCAACAACACAATTGTTGTGATCCATAACGCTGGCGTCCGTCTAGTTGACCGTTGGATCGACCATCCTAACGTCACAGCACTCATCTTCGCTCAACTGCCGGGTCAAAACTCAGGCGAGGCGATCACGCAGATTCTCTATGGCGACGTTTCCCCCAGCGGCAAGCTTACTTACTCTATACCACGGAACGAATCTGACTACGGGTCGCTACTGGCACCCGTCAATTACACTGGCTGGGACCGCTACTTCCCGCAGGACAACTTCACAGAAGGTGTCTACATCGACTATCGCGCTTTTGATGCAGCAGGCATTGAGCCCAGGTATGAGTTTGGCTTTGGCCTCACCTACACAACCTTCGAGTACTCTGATCTCAATATTCAAGTTACAAGCGATGGGAACCTCTCGGAATACCCTGTTGGGCCAGTAATTCCCGGAGGGGAGGCGGACTTATGGGACAACCTAGCCACCGTGACAGCGGAGGTCACCAATACCGGCGATGTAGAGGCGGCCGAGGTGGCCCAGCTGTACCTTGGGATTCCAGTTGCCGGCCAGCCTGTTAGGCAGCTGCGGGGCTTTGACAAGGTGATGATCGCGCCGGGTGAGACGAGACACGTTCAGTTTGATCTGAGACGGCGCGACTTAAGCGTGTGGGATACTGGTGCGCAACAGTGGAGACTTACCCTCGGAACCGAATATCGTGTTTGGGTGGGAGCGAGCTCCAGGATTCTGCCACTGAATGGAACCATGGTCTTGTAA +>XM_034834249.1 PREDICTED: Vitis riparia plasmodesmata-located protein 2 (LOC117917828), transcript variant X2, mRNA +GAAACCCAAAAACAAAAATCACCCAAAAAAAGGTTGGAACCCCACAACGCTCCTGAGCTTTTCTCAACCAGAATCCATCACCCTTGCCTTGATTTCAACCAAAACCCATTTCTAGAGACCACCAAACCCTGCAAAAACCATTCATGCTCTGAACGATTTCATGTTTCCTAGATGGGTTTGCCGCCAAAACCCCTGTCTCTCCTCTCCCTCTCTCTGACTTTCCTCACAATTCTTGGCTTCTTCCCATCTGCCAAACCCTCCACAGATTTCACAAACTTGGTGTATAAAGGCTGTGCCGACCAAAAATTCCAAGACCCATCAGGGGTTTACTCCAAAACCCTCAAACCCCTGTTTGATTCTCTGGTTTCACAGTCCTCCACAAAGAATTTCTCCACAGCCACCTCTGGTGAGGGCCAATCTTCCATCACAGGGCTGTACCAATGTAGAGGTGATCTCTCCAATTCCCAATGCTACACCTGTGTGGGAAAACTCCCAGGCCTCTGCACCAAGCTCTGTGGCAAAGCTATAGCCGCCAGAGTTCAACTCAGTGGGTGCTACATGAGGTATGAGCTTGCTGGGTTCAAGCAGGTCACTGCAACTGAGCTTCTGTACAAGGTGTGTGGATCAACTCAGGCAAGTCAGAGTGGGTTTGAAGAGAAGAGAGACACTACTTTTGGGATGATGGAGAAGGGAGTTGAAGGTGGGGATGGATTCTACACTGGGACATATGAGTCTGTGTATGTGTTGGGGCAGTGTGAGGGGGACATGGGAGGTAGTGATTGTGGAGATTGTGTGAACACTGCAGTTGAGAGAGTCAAAACCGAGTGTGGTGACTCAATTTCCGGGCAGATTTATTTGCACAAATGCTACATCAGCTATAGTTACTATCCAACAGGGGTGCCCAGCCAATCTTCAGCAGAATCAGGTCAGAGTACAGAGAAGACAGTAGCACTTGTTGTGGGAGGGGTAGCAGCTCTAGGGTTTGGAATTGCTTGTTTGATGTTTGTTAGAACAGCTTTCAAGAAACATCATAGTAATTACTGAAAATTTTGAGATATGGGTCTAGAAGATGCCACTGTTTTCTGTAGTGGGTCTCCTCTTTTCTTTGATAAAGAGGGTGGGAAGAGGGTGGTAAAGTTAGGTGAAGTATTCATTGAATCATTGGGAGTGTTGTAAATGGGAAAGGAGAGAGGGTGGGAAGAGATGTTTTTTCTCTCCTTACTTCACACTTAGACTCTACTAGTATTTTGTCATTTTCCATTTTCCTTGTGCATTACATTCCCACACATGAAATTGATACATATGATTCAAAGTATTTTGCTTTCCAATGAAGTTTCCCACTTTATCACTTTATCA +>LN615563.1 Uncultured Glomus partial 18S rRNA gene, isolate ACyCA VTX00247, clone GAMF284 +AGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGGTTAGTAGGTTGGTCATGCCTCTGGTATGTACTGGTCTCACTGATTCCTCCTTCCTGACGAGCCTTAATGCCATTAATTTGGTGTTTCGGGAAATTTGGACCGTTACTTTGAAAAAATTAGAGTGTTTAAAGCAGGCTCACGCTTGAATACATTAGCATGGAATAACGAAATAGGACGTTTGATTTTATTTTGTTGGTTTCTAGGATCGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATTGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTTAATGACTCATTCGGCACCTTA +>XM_026558135.1 PREDICTED: Papaver somniferum 60S acidic ribosomal protein P0-like (LOC113309662), mRNA +TGCTCATCACTTTCTCTCTCAACCAACTCTTTCTCTCTCCTCTCTGAAATAGTGAAAAAAAAATCTTTACAGTTTTTTCGTCATGGAAGAGTAATCTCTAGGCAAACCTTCGGGTGATTAACGGGTCAAGAGCTGCAAGGAGCGGATCTGAATGTTTTCGGATTGAAAAAGTGGTGATGAAATTTTAGGATTTTTTAATCTTGTTTTTCACTTTTCTTGCTTTGTTCTTAATCCTCTCTTCTTTCCGGGTTTGAGAAATACAAGCTATGGTTCCAATTGACACAGGTATTCCCTTGGATTGTTGTTCTTTTTGGGTTTTGTATTGATTCTTCTCACTTCGGGTAAGTGAAATACAAGTTGTGGTTCCAATCGAGGACCGTGGCTCCTTTTTATGATCTTGATTGAATCTTTTCTTCCTTTCTTTGGGTTTTTGGGGGTACTGTTGTATTAGGTACAACAACAACAGGGGATCTAAGATTTCTCTTTCAAATTTCTTTTGTGTTCTGATTAGATTTGCCACTGCATATAATTATCAAGCTGTTTTTCTCATTCCTCCCCTTTTAGGTTGTTCTCGGTATGGTAGTGATAAAAAAAAAACGAGGATATAGAGGGTTGAATCTACCTTTGGTCTGATTCTCTTAAGCTTGCAATTATTCTTTTTTTTTCTTTCATGTGTAACTGGATTGTAGACCAATTAAGTAGTTGTCGGTATCCCAATTGAGATTGGGTATGTGGATTCGAATTTTGCAATCTAATTTCCTTTGCCGTAAATACCAATGTTGATTGGGTCTGTTTATTTTTGTTGCCTCTAAGCTGTTTGGTGAAAGTCCTGAACTGTCTTTCTCCTGTATTTGGCCTCTCTTGCATCCTATCTTGAATGATTCATTCTAAAATTTTAGGTTTCTTACATCAGTTTGGTCAAATTTTCGTTTTGAAAACTACTTTCAATCTTTAACCTTTGCCTTAAAATTAGTATAAATTTATCAGTTAAATTTTCTTTGGTGTTGTTAAACACTTGGGTTGACAATTTTGTCCCAAAAGTGGTAGGTATCTTAAAATAAGTAATTCACAACTATTATTACCTGTTCAGGTGTATGTGCAGATGTTCGTGTTAATTTTTAAAAGTCATCTCCGTTAGGTGTGCTTTATGAACCAAGTGTATGTGCATTGGGTTTTAAAGGAATCGTGTTTAATTTCGAAATTTTCTGATCTTAAAAGTGCTTTCATAGTTCTTAGATGAATAATAGGGCCTAGCACTTCGGAAAAGGCGAAGTCACTTATTAAAAAACAATTTCTTCATTTTTATGCACTTTCACTTATAGTAGTGGTTTCTTTTTAAGATGATTAAGAGTTCTGTTATGTCTTTTATTAGAAAATTTTAGAAAATGGTTTTGATCATTCGTTTGGGTTAATTTTAAAAATCCATGTTGGTCTAAACATATTCAAGAAATCTAAGGAGTTAATATTGGTAGGATCAAAGTCGTTGTTCTTACTAAGTAAATTGTTAAAAGTAAAATTGATAGGTTAATTTTTGGGAGGCTCGTTGATCTGTTTCTGGTTATAAGATGGTTTTAAGGGTATTCACATATAGTTTCTTGGAAGATTAAGGACTAGGATATGATTAATGAGAATTATCTAGCGATAAGGTGTTTCCATCTCTAGTCAATTTTGTTCTATGTATTGTTAAACTTTCGAGGCATGTCTTCGCCTTTGCTTGATTATTTTCCATTAAGAACCAGTGGTAGCCCCATTGTTTTAGTACCCTTATCTCTGCGTCTTTACAAATTAATTTGAGTAAAATCATCATCACTTTTTTGCGAGTCATAAAATCATATCTAAACCTCCGCTCCTCTGTCCCGATAAAACCCAAAGGTAAGCTGACGTCATCTCTTGATTTCTCTCCTTCTTTTATCTCCCGTCTTAACCTTCTTTTATTTCGTCGTATCTTCTTATATTCAAGATATTTTGTGTATGTTTCTGGTAATTCAATTTGAAGTTATTTCTACTGTTTCAACAAACAAGATTTTACAGCAGGAATACAGGTAGCAAAAGCTTGAGGGATTTTTCCACTCAAGCTTTTGACTTACATCTTTTTTTTTAAGATAGTCTTTTGTTTTATCTTGAGTTACGTTTTTACAGAATTCTTATAATCTATTGCATACATGATTAAATCTTAGTTGTTGCTTTAATTCCTAAAACATATTTAGCTTGTTTTTTAGCTTAGGATTATAAGCTGAGGTTTCAATACTTTTTCCTCAACATTCCCTGATGTTTTTAAAACCCCTGGTTATCTTAAAATCAAGCATATCATTAGTTTATATTATGTTTTCACTCATAATTTGTTGTTGTTATATTATATTATTTTGTTTTCTAATACAGAACTTGCTAATGAAAATATTGGCCTGGAACACACAAGGGTGTGGTAAAAAAAAACTAGGCAACAGCTAAACCACTTAGTAAATACTAAAAAAAACAGATGTTCTTTTTTTTATCTGAAACCCAATCTCAAAGGTGCTTAATGAAGCATGTGCTTAATTTTTCCCAAACACCCACATTGTTGACCCAGATGGAATCGCTGGGGGCTAGCAATTGCTTGGGTAGATGGTTTTCATTTTGAAGTGGTTCAATGGAACCTTAACATGATTAATATCATTGTTAAAAACAATTTTCATTCAAATGAATGGCTTCTAACTTGTTTTTATGGTTCTCCGAAGAATGAATTTAAACTAGAAATAATGGGTTACTTAGAGAATATTGCTAATCAAATTAATATGATTTCAGTGTCATGGTTAGTAATAGGAGACCTGAACATTATCTTCAACAGTGATGAAAAAGAAGGATGTCTTCCTTTCAATAGGAAAAAACTGGAACCAATCTTAAATTTAATCCAAAGAACTGGATTAGAGGATATAGGTTTCCGAGGTAATATTTTTACCTGGAATAACAAAAGAGAAGGGCATGCAAACATTAAGCAAAGGCTTGATAGGGGCTTAGCTAATGCAGAGTGGATTCTTGAATTCACAGATGCAACTGCAGAGTGGATTCTTGAATTCACAGATGCAACTCTTGAAAATTTGGTGGAAATAGGATCTGATCATAGTCATATCTGTCTTAATCTCATCTCTTGTAGTTTACATTTAGTTCCAACTTTTAAGTTCTATGACACCTGGCTAAAAGAACCTTCTTGTATAAAGGTTATAAGACAATCCTGGAAATGTTTTTCTGATTCTCCGGCTTTGAAATAATTTGGGAGAAAATTTGAAATTTTGGAAAAAAAAATATGTTTAGAAAGCCAAATAAAAAAATTAAGCATATAATCAAACGAATTGAGAATCTCTCGGCTAAAACATCTCAGGGGAGTATTAGTGAGCTAATAAACTAAAAAACTTTGGAATTAGAGGCTTTGTACGACACTCAAGAAGAAATAGCTAAACAACAATCTAGGAACAACACAATTTCCTAAGGAGAAAGAAACACAAAAATTTCATGTCACAACTTTAAAAAGAAGAAATAGGAACAATATAGATTGCATTCAGGATAGAGATGATAAAGTCGTTACTTCTAGACATGAAATTGAAGATGTTCTCACATCTTACTTTTCTGATCTTTTTTCTGAAAACTCTGTTAATACAGAGGATGAAATTTTTAAACATATTATGTAACACCCCAATTTTCGGGCCCGGATCCTGCTCTGATACCAAACTGTAACACCCCGAATCCTTCCCGGATCCCATGCCTGAAAATCGGGGTGTTACATATTAAGCCTTGCATCTCTTTGGAAGAAAATATAGCTCTAACTGCTATCCTAACTTCAGAAGAAATTTGCGATGTAGTGAAAAAGCTTAAGTCTAATAAAGCACCTGGGCCCAATGGCTTCACAGTGAGCTTCTTCAAACAAAACTGGGAAACTGTAGGAACACAATTGATAACAGTAGTACAAGATTTTTTTCAAAACTAAACAACTACATGTGGATCTAAATAAGACTTTCTTGTTTTTAATTCCAAAAATTAAAAATCCCAAATCCCTTTCAGATTTTAGGTCAATTGGACTTTGTAACACTCTTTACAAAGTCATAGCTAAATTAATGGCTAACAGGTTCAAAATATCTTTAGGAAAAATCATTTCCCCCTTCAATCTGCCTTCCTCTCTTCTAGACAAATCTCAGACAATATTATTGTTGCTCATGAGATTGTCCATTCAATGAAGAAAAGTAAAAAGAAAACAGGAAACATAGGAGCAAAAATTGACATGTCTAATGCATTTGATAGAGTTAATTGAAACTTCTTGATAAAAACTCTAGAGGCCTTTGGTTTCTCTAGCCATTAGAGTGAATTGATTTATCAATGTATCTCTACTTCTTCCATATTTATTTTACTAAATGGGAACCCCTGTAAGGAGTTTAAACCAACTAGGGGAATAAGACAGGGGGATCCTTTATCTCCATATTTATTCATCCTATGTATGGAGGTTCTTTCTAGACTCCTCTGTCATTTGGAATCTGTGAAACAGGTAATAGGTATCAAACTCATCCCAAAATCAACACTTATTTTTCATTTATTCTTTGCAGATGACCTTTTGCTTTTCACTAGAGCTGATTTAGGCAGCTGTAAAAATCTTCTGGAAGCTATTAATCTTTTTAGTAAAGCCTCTAGGCAAGTAATAAATTTTTCAAAATCTGGTCTGTTTTTTTAGTAAAAAAGTTCATAATAAACACCAAGGTATTATTTCTAGGTTAATGAAAATCAAAAAAATAAATATCAAAGACACCCATTTAGGAGTACCTTTATTCATAGATAGATCAAAACTTAAGTTCTTTGATAGCATTATAGAAAAAATGGAACAGAGAGTTAAGAACTGGCTAGCAAAAATCTTATCCCAACCAAGTTAGATTGTTCTAAATAAATCTGTTCTTTCTTGTATGCTAATTTTTAGCATGGGATGTTTTGTTTTGCCTAAAAAAAATACCAAAAGAATGAATGATATTCAGACAGATTTCTGGTGGGGAAAACATACTAATTCCAAAGGTATTTACATAAAATCTTTTGATTTCTTATGTAAACCAATTGACCAAGGGGGTTTAGGTTTTAAAGAGGATAACAAAGTGAATCAGGCTATGATTAGCAGGATATCCTGGAGATTGGTGAGTAATCCTGATAATTTATGGGATCAAATTTTAAAAAGAAAATACTTTAAAAAACAGGAGCTCTTCAATCCAAAAAGAAATCAACAACTTGTTAGATTTGGAAATGCATTTTACAAGGTATTGAGCATATCAAAAAGTATAGTGTTTGGGATGTAGGAAATGGATTCCCTATATATTTGATGATAAATGGTTACCAAACATGGAACAAACTCTAGCTAGTTTTGTCCCTAGAAACTCTAATATAACACTTGTGTCTGATTTGATAAATCATGACACAAAAAAGTGGAATGATTCTTTGTTACTTTCAACTTTTGATAGATCTTTGGTCAGTGAAATAATGAACATAAGATTATACACACAAAGTGATGAAAAACTGAAAAAAGATAAATTGAGATGGTTACTTGCTAGAAACGGTGAATTTTCTGTTAAATCTTTATATGCAAAGTTACTGAATCCATCTAACACCATCCCTGACTAAACAAAGAAGTTTTGGAAAGGATTGTGGAGCATTAATACTTCGCAGAGAATCAAAATGTTTATTTGGAAATGACTGCAAGATGCATTACCTACTAAACAAAAGTTAAAATCAGTGGACAACAAATGCATTTTCTGTAAGACTGAGGTGGAATATACTTTTCATCTGTTCTTTGACTGTGACTATGCTAAAGCTGTGTGGAATCTACAACCAATGGAAGTTCAGAGAGTACCTCACAACTTAGTTTCTCTTAATACTTCTTTCTTGCATAAATATAATGGATGGTTAGCAGGAGATTCGAATTCCATCTCAATGGCACTAGCTGCAACAAAGTGTTGGTTTATTTGGAAAGAAAGGTGTCTGAGGATATTTGAAGATAAATCTATAACACCAATTCAGTTATCACTAGATATATCAAGACACTGTGAGTACTGGCATCCAATGACTTTGAACAGTTTGAATTAAACACAAGACAGAACTATCAAACCAAAACCACAATGGACCTTCCCAATCACAAATACTTTCAAACTAAATTGTGATGCTTCTTGGTTGTCTGAAAAAAAATATAGGCTTTGGTTTTGTTCTTCATAATTGGACAGGAACCTTCAAGGGGGCAGAATCAGGCATCTTCAGGTCTTCCACTGCGGAAGAAGCAGAAGCTATAGTTCTCCTTCAAGCAGCTAAATGGGCTAAAATACATAACATACAACATCTGGTCGTAGAAGGAGATAACAGGGCAACAATTAAGTATTTACAGGGAAAGGAATCAACTATCCAATGGCAAAGCATTGTAATACTAGATGAAGTTAAGAAGCTAGTAGAACAAATGGTATCTTTTTTGGGTTTCCGGTACGTAGACAGGTGAGCAAACAAAGTGGCAGACCAGTTGGCAAAGAAAGGAAGAAAAGGTAACATTGCAATTTCTTGGTTAGACCAAGCTCCCTTTATTTTGATTCCAACAATTTCTTTTGACATGGTCAAAGCTTATGAATCTTGTAATATAAGTACAAACCTTGTATCAATTCAAAAGAAGGTTAATCTTACATATTCAGTCATCAACAAGACAACTCTATCTGAGTTCGCTCCTTATGAGACTGAATCAAATGCTTAGCCTTCTTTGTTTCCAGTAATATATTTCTATTTTCAAAAGAAAGGAAGTCGTTGCTCCTCAGTCTCCCTTCGGGCAGGAGCGGAAGCACAACCATGCTTCCCCTGGCTGGAGCCACCCACAAAGGCCCAAAACACATTTCTTTGTGTCTAATTCATGTTGGACCACAAAAACAGTAGGAACAGTATGGTCAAGCTCAGGGTGAAAATATGGTCAAGCCTGGCTGCCTGGGGTAAGGAAGGTTTCTGGTTCTGCCACTGCCTCCAGCTCTAGTTTAGGTTCATCGGCACATCAAGTTAGATTCATCGGCACATTAAGAAAGGTAACTTAGCTGGTGCCGCGTTGGAATTGGTGCGCCTTTTGTTTTTTGACGCCGCAAAGGAAAGTATTTAGGAATTCTGTTTCTAGAAAGAGGGTATATATGGAAATCGCACAATGAGATATTCAATGCATCTCGCATTATAAATAGAACAATAGAGTAAACCCCGTTACTTGCATAACACACGTAAAGATTATTTTAGGGTTTCATTAGGGTTTCAAAGCAGCAGCTCAAAACATGGCACCCAAACCTTCCAAGGCTGAGAAGAAGATCGCTTATGATAAGAAACTCTGCAAGTTTCTTGATGAATATGGTCAGATCTTAGTTGTTGCTGCAGACAATGTTGGATCGAACCAGTTACAAAACATCAGGAAAGGTTTGCGTGGCGATTCAGTTGTTTTGATGGGAAAAAACACTATGATGAAGAGAACTGTTCGTCTTCATGCTGAGAAAACTGGAAACAATGATTTCCTTAACCTCATTCCTCTTCTTGTGGGAAACGTTGGGTTGATCTTTACTAAAGGAGATTTGAAGGAAGTTAGTGAAGAAGTCAGCAAATATAAGGTTGGAGCCCCTGCTCGTGTTGGACTTGTTGCTCCTATCGATGTTATTGTACCACCAGGCAACACAGGATTGGATCCATCACAAACATCCTTTTTCCAGGTTCTCAACATTCCAACCAAGATTAACAAGGGAACCGTCGAAATTACAATCCCAGTTGAGCTTATCAAGAAAGGTGACAAAGTGGGTTCTTCCGAAGCTGCCTTGCTATCAAAGCTAGGCATAAGGCCGTTTTCTTATGGTCTCGCTGTACTCTCGGTGTATGACAATGGTTCAGTCTTTAACCCAGAGGTGCTTGACCTTACTGATGACGATCTAGTTGAGAAGTTTTATGCCGGTGTATCGATGGTTACTTCACTCTCATTGGCTCTCTCGTACCCTACCCTTGCTGCTGTACCTCACATGTTTGTCAATGGATACAAGAATGTTCTTTCTGTCGCTGTTGCCAGTGAATACTCCTTCTCTTATGCTGATAAAGTGAAAGAATACTTGAAGGATCCAAGCAAGTTTGCAGTTGCAGCTGCTCCAGTTGCTGCGGCTGCTGCTTCTGGTGGTGCACCAGCTGCTGCTTCAAAGGCAGAAGAGAAGAAGCCAGAGCCTGAAGAAGAGTCTGATGAGGATATTGGGGGGCTGTTTGGTGACGACGATTGAGAAACTGTTCCCTGATGATTTTTCCTGCTTGCATTTGCATCTTATTATCTTTAAACTCATCTTTAGTGTTTATACAGTTTGTTAGAACTATCACCCATAATCAGTGTTTTGTTGATATATTGCCATTTTATTGGGTGCGGTTGTTTTTCACTCGTATGGTAGGAGAAATAAAATCATTTTGGAACTCAGAAATCTGTGTGTGTGTTTTGTTCTACCTTTTCTTGTGTTCAATGTGAGTATTATTCGAAGGGAGTACAAGTTTTTACA +>XM_034856521.1 PREDICTED: Etheostoma cragini testis associated actin remodelling kinase 1 (tesk1), transcript variant X2, mRNA +TAATAGGCCGCAGCGTCACTGAGGCAGCTCTGTGCGCACTGGAAACCCGGAATTCAATTGGTGGAACCAGGAGGGAAGCCCCGGCCTTTTCTACTGCAGAAGGAGCAGTTTGAAAGAAACCGTGAGAGAGACGCCGCTGCCAAGACAGCAGCAGGAGCAGTCTGCGCAGTTTAGAAAACGGCACAGCCTAATCTGCTGCACGGCATGATGGACTTTACCAAAACTGCGTACTGACTCTGCAAGATGCAACGCTGCAGCTTCGTAGTTCGTTAGACACAGATAGAAACAAGCCCGTTCCGGACGTGTGCAGGAATTTGACAGAGGAATTAGGCCTAACCGGTCGCTGACCACAGCTGCGACATTTGGTTTTCCCACTGAGAGTTTATCACTCCTCCCCTCCGTAGAGCCCTGCTCTGTGGCCTTGTAGCGGACATGGGAAATGTAAACAGTGGTCGGGCTGGATTTTAAACTACGCACACGTCATACGTCCTCCTCTCGCCTCCACCTCCTTCTCCTCCCGGGGCGCCTGAGATGGAGATGGAGACGGAGAGGGTCGAGCAGGGAGAGGCAGAGCTGCCCATGCACAGCGTCCACGGAACCAACCGGATCAGACCGTCCTCTTACCGGGCACTGCGCAGCGCCGTGTCCAGCCTGGCCCGTCTAGATGACTTCAACTGCGAGAAGATCGGCGCTGGGTTCTTCTCTGAGGTGTTCAAGGTGCAGCATCGAGTGTCGGGCCAGGTAATGGCTCTGAAGATGAACATCCTGGCCAGCAACAGAGCCAACATGCTCAGGGAGGTCCAGCTCATGAACCGACTGGCGCACCCCAACATACTCAGGTTCATAGGAGTGTGTGTCCACGAGGGACAGCTCCACGCCCTCACAGAGTACATTAACGGTGGCAACTTGGAGCAGCTGTTGGGGAGTGACGTGTACCTGTCGTGGAGTGTGCGGATGATCCTGGCCCTGGACATCGCCCGGGGACTGCAGTACCTGCACAGCAAGGGCATCTTCCACAGGGACCTCACCTCCAAGAACTGCCTGGTGCGCTGGGAGGGCTGTGTGTGCTCAGCCGTGGTTGGAGACTTTGGCCTGGCGGAGAAAATACCAGATTACAGTGAGGAGGAACAGGAGCCTCTGGCGGTCGTCGGCTCTCCCTACTGGATGGCCCCGGAGGTGCTCAGAGGAGAGGTGTATAATGAGAAGGTGGATGTGTTTGCATACGGGATTATCTTGTGTGAGATCATTGCGAGGATACAGGCCGACCCCGACATCCTACCACGCACTGAGGACTTTGGTTTGGATGTGGACACCTTTCAACAGATGGTGGGAGATTGTCCTCCTGACTTCCTGGAACTGGCCATTGCCTGCTGTAATATGAATTCAAAGCTCCGTCCATCCTTCTCCCAAATTGTGGTAGAGCTGGAGAGGAGACAGGCTGAAAGGAAACAGAAGGATGAACCATCAGTCAAAGCCGTTTCTCCAGTCATTGGTCCTCTACGAAGACGATCCCTCTGCCTCCTGTCAGATCCTCGACTCTCCCGTAGCAAATCCGACATGCTCCACCCCCCAAACATGTCCCCCTCTGTTACTACGGCAATTCCTGCTCGGGTCAACCCCTTCTCTCAGAGGGAGGACCTTAAGGGAGGCAAGATCAAGCTGTTCGACACTCCCAGCAAGTCTGTCATCTCCCTTACCTTCACCCTGCCTCCTCCACCTGACTGCGATGACCCCTCTGTCTCCGAGTCTGACAGCAGTGAGGTACCAAGGAGACACAGGCGCTGCCACTCGCTGCCTTGTACGCCTCCTCCGCACCTCACATCAGCGCCGAACACAATCCTTACAGAGCAGGAGTCCATGTCCAAGATGGACACTGTAAATGGAGAGACAAACCGAGTGAGTGAAGAGGAGAGATTGTTAGAAGAGATGGCAACTATGGAAGGGAATGGAACTGATTCAGGCCTTCCTCTTTCCATTGAGCCCCTGTCGCTGGACCAAGAGAGGGAGGAGGAGGAGGACAACGAGGAAGAGGAGCCCATGGACTGTACCAGCTCCCCAGACACACAAGACAGCACATCATCTCCTTATTCCAAACTCTCCTTTCCTCCGTCCGACTCCTCAACTCCCATCCAACCCTCCACTCCTCCCTTCTCAAATGGCTGGGGGTCAGCAATCTCCAACGGGCCTCCTTGCCTACCTCCCCTCTCTCATTTGGACAACAACAACGTGGTCATCGGTCGACCCTTGGGATGGAGCGCCGCCACCACCACCACCAGTGCTCCCACAGCAAGAACCACCAACAACAACGGCTACCACTTCCCTTCCAGCGACCCCGCTGGATCGTCCCCATTTGGCTCTGGCAGCGGACATTCTCTGGACCAGGAAGAAGTCATCTCCTGTCCCGGCTGCTGCATTGCCGGCCTTCGCTTTCCTTCGATGTGTCCCCGAGCTCCACCGCGCAGAAACCCCTACAAGAACTTGAACGGGGACCATGCAGCTTCACGTGGGCTGCTTGGTCCGGGACCCAAGGGTCTGCCGCCCTCCCCTACCACCACCACCAACCTGGAGCCAGGACTTGCCTTGCCGGAGGCACAGACATGAACCCCAGCAAACTGAAAAGATTTGTGTAAACTCTGCACCAAAAGCTCATCCCTGGAAATTAAGTGGGTCTTGGAAGAATTTGCACAGATTTTAACTCAGCAATACCCTGATTTTTTTTTTTTTTTTTTTTTCAGACAATCTTTTTGGTGCAAATCAGTTTACTAAAACACACTCCAGGTTGACTTTTTCCGTGAAAGCTGTAGGACAAGGTGCTGGTGACTTGTTGCACGTCGCCCTCTGCTGGGCTGAGGGCGACATGCTACGTCAAGAACTGTTAAGCATGGAAACACTCCAGTTTGGGGTCCATTTGGTTTGATCCTCTAAATGTGCATATGTAAAGATTCTTATGACTGATAATATTGATGATGATGCTCAAATGAGGAATGTTAAGCTTAGTTAAGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTTCTGTTTTTTGTTGCTGTGTGATCTCTAATGGCCCTTCTGGTCGCCTGGTTAAGCACTTCAACTGTATTACTGAAACTATTGATGTTATTATTTTTGGGAATGAATGGTCAAAGACCTGTATAAGAGATGTACAGATTCATATTATTTAAAGGATGCATTGAATAAAAAAGATAGAAT +>XR_001760135.2 PREDICTED: Cynoglossus semilaevis uncharacterized LOC107988670 (LOC107988670), transcript variant X2, ncRNA +AAAACTCCCCCGCTCTTTGGGGGCATGTCCAAAAGGTGCAGCCCACTTCTCCTGTGTGACTGGGGGGTGTTTCAAGAATCTGTTAAATGCAGAGAATGTTTGGAATTTCTCTTACAGAAAAGTAGAGAATTGAAAAATACATTTAAATAGAGACCTGGACTTCTGGCAGGACAGTCAGGCAGATGAACTCCAACATGATTTTGTCATTTGTACAGAATTATGCTGTAAATGATCCGGGTAAAAATCCTAGATCTGGAGTTCTAGAATGAATGTTTTTAAGCCATCGATTGTACATTGTTAACATGATGCAGCCCTACCTCGACACAGATGATTGATCACTCAGTTGATCAACTGTTTTTTGGGCAAAACGGACTGTTATCAACGTCACATTTGTGTGCACTAACGACTGTATTTGTTTTTTGCAGCACTGATGTACGGCTTCCTCGTTGGGTAACGCACACTCTCAGGGAGGCGTTCTCCAGGTAGGCAGACTGCGTTTAAGCAACAATGATTTTCTAAAGTATTCCACACCCTGTGCCTATGAGCTTGAAGGTTATACTCATTCAGCAGCAATGTTTTTCCCTTTTACTACAACAACATAGATTTCCCCAGACTCCCTGGATCGTTTCACAACAATATTAACTCTTGTTGGTGACAGACCTGATTTTTCTCCAACCTTTTTCTAACAAACACTTTTTTTATCTCTAAATAAATTTCTGAAGTCGAACATAAAGTTCCAAAACATTTTTACTTAAGGCCGAGTCTTGAGCAACTAGTCAAACTAATAAGGTGATTACTGAATGTTATTATTATGACATTTTTAATCCCTTAAAACAACTTTTGGGAGTTTGTTGCAGTCTTTTGGTTCTTCATTTGTTTATGTTAAATAGACAGAATTATGATGGTCAGTGGTCAGTTTTTTTGATTTGAGGGTTTCGTGCACTTTAAGAAGTGTACCAACTTTCTGGAAATAGGATTTGTATTGTATTCAACAGTCACACAAACAACCAAATGACTGTCCTCTTCATTTGCACTGTTGGCTGTTGTAGGTTTGGGCTCATGCCACATGAAGAGCTGTTACATCCATGAGCGGTAGAAAAGGGCGAAGTTTCCTCCCAGATCCAATCCAACAAGTGGCCAGGCCTAAATGTCAACCCGGGGGTCCTCAACCTGCGGCTCCACTACCACATAAGATAGAGATCGGCTCCTCTCGTACCTTGCTCTCTGGGACGCCAGCTCCGACAACCAGCACCAGACCACAGCCACTATTACAATCATTCCTATGAAGGGGATGGAGAGAACAGGGTGCTCAGATGGATGGATGAATCTCTGAGGAGGGAAAAAGAACAAACACACGGGACGTGGAGATGAAGGGAACAGATGAACTGATGGATTAAAACTGGAGACTTCACGGACAGTCGGAGAACACGGACATGAGCAGAGGCACGGGCAGACAGTTTGACAAAACGCTGAGAGACATTCACAACAGGGCTGTTGTAGACGAAACACATTCCAGGGCATCACTGTCACACAGAGGCTTGGACACAGACACAGTCAGGCAAGGATTCACCACTTCAGGCCACACAATAATTTCTGATATGTGCTGACAGGTCCTGTCAGTTCATATCAAACACACACACATATATATATATACTGTATATATATTCTCCTCACAATGAGAGACATATAAAGAGGTGCTCGACACACAGGAGATACAGCAGGTGTGATGTCGGGTGTTGTTATGTGTTAGTTGAGGACATGAGCAGAAACAAAGCTGGAAATAGCCAAAAGTTTAGCAAATTTCTTTTTCAGTCCTAATGATTGTAGCTACTTAAAACCTCAGTGGTGTATCTTTTAGATAACTTTTTTTTTTT +>FJ579386.1 Uncultured Methanobacteriaceae archaeon clone KR-H08-A02 16S ribosomal RNA gene, partial sequence +GCTCAGTAACACGTGGATAACCTACCCTTAGGACCGGGATAACCCTGGGAAACTGGGGCTAATACTGGATAGATGATTTTTCCTGGAATGGTTTTTTGTTTAAATGTTTTTTCGCCTAAGGATGGGTCTGCGGCAGATTAGGTAGTTGGTTAGGTAATGGCTTACCAAGCCTATGATCTGTACGGGTTGTGAGAGCAAGAGCCCGGAGATGGAACCTGAGACAAGGTTCCAGGCCCTACGGGGCGCAGCAGGCGCGAAACCTCCGCAATGTGAGAAATCGCGACGGGGGGATCCCAAGTGCCATTCTTAACGGGATGGCTTTTCTTAAGTGTAAAAAGCTTTTGGAATAAGAGCTGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCAGCTCTAGTGGTAGCTGTTTTTATTGGGCCTAAAGCGTTCGTAGCCGGTTTGATAAGTCACTGGTGAAATCCTGTAGCTTAACTGTGGGAATTGCTGGTGATACTGTTGAACTTGAGGTCGGGAGAGGTTAGCGGTACTCCCAGGGTAGAGGTGAAATTCTGTAATCCTGGGAGGACCACCTGTGGCGAAGGCGGCTAACTGGAACGAACCTGACGGTGAGGGACGAAAGCTAGGGGCGCGAACCGGATTAGATACTCGGGTAGTCCTAGCCGTAAACGATGCGGACTTGGTGTTGGGATGGCTTTGAGCCGCTCCGGTGCCGAAGGGAAGCTGTTAAGTCCGCCGCCTGGGAAGTACGGTCGCAAGACTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>XM_007564720.2 PREDICTED: Poecilia formosa hexokinase-2-like (LOC103146708), transcript variant X3, mRNA +AGAAGATGATAAGCGGGCTGTACATGGGGGAGCTGGTGCGTCTCATCTTGGTGAAGATGGCCAGAAAGCAGCTGCTGTTCCAGGGACAGACCACGCCACAGCTTCTTACCTCTGGATGCTTCAGCACCAACTACATCTACGCCATTGAGAGCGACAAAGATGAAGAAGGCCTGGCTAGCGCCGAGAAGGCGCTCCGCAGCCTGGGCCTGGACCCGTCTGCTGAAGACTGCGCCGCCACTAGGAGGATTTGCCAGATCGTTTCAACCCGGGCTGCACATCTGTGCGCCTCTACCCTGGCGGCGGTGATGCGACAGATCCGGGACAACAAAGCGGCCGAAAAGCTGCGCATCACCATCGGAGTGGACGGCTCAGTCTACAAGGGTCATCCAGAATTTTCCAGGAAGCTCAACAAAATGGTGCGGCGCCTCGTGCCAGACTGCGACGTGCGCTTCCTGCAGTCGCAGCACGGCAGCGGGAAAGGCGCGGCCATGGTGACGGCGGTGGCCTACCGACTCGCCACCCAGCACGCCGAGCGGCAGCGCGTCCTCGACACCCTGCGGCTGAGCCGCGAGCAGCTGCTGGAGGTGAAGCGGAGGCTGACGGAGGAGATGGCACGGGGTCTGTCCAAGCAGACGCACGACCAGACCAGCGTCAAGATGCTGCCGACGTACGTCAGGTCCACCCCGGACGGAACAGAACAAGGAGATTTCTTGGCTTTGGATCTTGGTGGGTCCAGTTTCCGTGTTCTTCTCGTTCGGCTGAAAAATGAGAAGAAGCAGAAAGTGGATATGCACCAGAAGATCTACAGTATCGATCAGGACACGCTGCAGGGCACGGGGGAGGAGCTCTTCAACTACATTGTGTACTGCATTGCTGACTTCCTGGACTACAGGGGGATGAGTGGAGCGTCCTTACCTCTGGGGTTCACGTTCTCTTTCCCATGTGATCAAACCAAACTGGAAGAGGGAATCCTTCTGAAGTGGACGAAGGGCTTCAAAGCCAGCGGCTGTGAGGGGAAAGACGTCGTGAAGCTGCTGAAGGAGGCGGTCCAGCGCAAGCAGGACTTCGACACTGACATCATGGCAGTGATCAGCGACACGGTGGGGACCATGATGACCTGCGGCTTTGACGACCGTCACTGTGAAATTGGCCTTATAGTGGGAACGGGCACTAATGCGTGTTACATGGAGCAGATGAGGAACCTCCAGCTGATGGACGGCGATGAGGGGCAGATGTGTGTGAACACAGAGTGGGGAGCGTTTGGAGACGACGGCGCCCTGGAAGACCTGCGCACCGACATCGACCGGGAAATCGACGCTGGCTCGCTGAACCCTGGCAAGCAGCTGTTTGAGAAGATGATAAGCGGGCTGTACATGGGGGAGCTGGTGCGTCTCATCTTGGTGAAGATGGCCAGAAAGCAGCTGCTGTTCCAGGGACAGACCACGCCACAGCTTCTTACCTCTGGATGCTTCAGCACCAACTACATCTACGCCATTGAGAGCGACAAAGATGAAGAAGGCCTGGCTAGCGCCGAGAAGGCGCTCCGCAGCCTGGGCCTGGACCCGTCTGCTGAAGACTGCGCCGCCACTAGGAGGATTTGCCAGATCGTTTCAACCCGGGCTGCACACCTGTGCGCCTCTACCCTGGCGGCGGTGATGCGACAGATCCGGGACAACAAAGCGGCCGAAAAGCTGCGCATCACCATCGGAGTGGACGGCTCAGTCTACAAGGGTCATCCAGAATTTTCCAGGAAGCTCAACAAAATGGTGCGGCGCCTCGTGCCAGACTGCGACGTGCGCTTCCTGCAGTCGCAGCACGGCAGCGGGAAAGGCGCGGCCATGGTGACGGCGGTGGCCTACCGACTCGCCACCCAGCACGCCGAGCGGCAGCGCGTCCTCGACACCCTGCGGCTGAGCCGCGAGCAGCTGCTGGAGGTGAAGCGGAGGCTGACGGAGGAGATGGCACGGGGTCTGTCCAAGCAGACGCACGACCAGACCAGCGTCAAGATGCTGCCGACGTACGTCAGGTCCACCCCGGACGGAACAGAACAAGGAGATTTCTTGGCTTTGGATCTTGGCGGGTCCAGTTTCCGTGTTCTTCTCGTTCGGCTGAAAAATGAGAAGAAGCAGAAAGTGGATATGCACCAGAAGATCTACAGTATCGATCAGGACACGCTGCAGGGCACGGGGGAGGAGCTCTTCAACCACATTGTGTACTGCATTGCTGACTTCCTGGACTACAGGGGGATGAGTGGAGCGTCCTTACCTCTGGGGTTCACGTTCTCTTTCCCATGTGATCAAACCAAGCTGAATGAGGGAATCCTTCTGAAGTGGACGAAGGGCTTCAAAGCCAGCGGCTGTGAGGGGAAAGACGTCGTGAAGCTGCTGAAGGAGGCGGTCCAGCGCAAGCAGAAATTCGACCTAAGCTTTGTGGCGGTGGTGAACGACACAGTGGGCACCATGATGACCTGTGCCTATCAGGACCCCAAATGTGAGCTGGGCCTTATTGTAGGCACAGGGACCAACGCCTGCTACATGGAGGAAATGCACAACATCGAAACGGTGGAGGGAAATGAAGGCCGCATGTGTGTCAACGTGGAGTGGGGAGCATTCGGCGAAAACGGTGAACTGGACGACTTTTGCACAGAGTTTGATTATGCTGTCGACGAAGCCTCCAACTACCCTGGGAAGCAGAGATATGAGAAGATGATCAGTGGGATGTACCTGGGAGAGATAGTGAGGCATGTGCTGATGGATTTCACCACCAAGGGTCTGCTGTTCAGGGGCAAACTGTCGGAGCGCCTGAAGACCAGGGGCATCTTTGAGACCAAGTTCCTGTCACAGATTGAAAGCGACCGGCTGGCCATGCGTCAGGTCCGCTCCATCCTGCAGCACCTGGGCCTCACCGGCTCCACGTGTGACGACAGCGTCCTGGTGAAGGAGGTGTGCAGCGTCGTGGGTCGCCGCGCGGCGCAGCTCTGTGGCGCCGGTTTGGCCGCTCTCGTTGACAAGATCCGGCAGAACCGCAACCTGAACCAAATGTCCATCACTGTGGGAGTGGACGGTACCCTTTATAAGACCCATCCTCATTTCTCGAGGATCATGCAGGAGACCCTGCAGGACCTGGCCCCGCAGTGCGAGGTGACGTTCCTCAAGTCGGAGGACGGCAGCGGGAAAGGAGCGGCGCTCATCACGGCCGTGGCCTGCAGGTTGAAGAGCGAGCAGTCGCTGTGAAACCTGCGAAAACTTCTCCCTGTGGGTCAACACGCGCACTGTGTTCAGTCGGTTGTCATTCTTTTTTCGACGTGAGCGCGTTCACACGAGAGTGTCCGCTTAACGGCGCGAGGCGAAGCTGTGACGGAGGTTCGGTCGGGCGCGAACTGAGCTCAGAAATCACAGTTCTGCTGGTAATGAACCTGCACCTTCAGTGAGACCCGACTGTTACGAGCTCGTTGCTTTTCGTTTTTACACTCTGTCGTTGTCTTTTACTTTTATATTAGTTCTGTTTTTAAGTCAAGTCTGTGAAAAATAAAACTTTTTAGCACATTTACTGTCTGGCAAGTTTAGAAAAGCACATTCCTGAACCAAAGAGAAGCAAACCAGTACATTCAGCAGGTAAATGAAGCAATAGTTTCTTTCCTTTTTTTACATTTTATTTAAGTTTTAAAGCAATTTTACTTTGTTACAGGAAACTTCAGAAAAAATGCAATATTGTGATGAAATGTTTTTAAAATGTAAACACTAGTCCATGCATCAGAAACATAAAGATGTTTTAGAAATTGCAGAGGCTCCGTATAACTGGAGGTATAAATAATTCAAACTGTGTAGTTCTGATTGCAGCAAGCTTATTATGATGTGCTGTGAAAAATATCAACTCCAAATAAAGTGAGAAATCACCAGGGTCTATTTTTTTTATTATTATTTATCAATAAAACCAAGATTACTCCAACTTGGACTCATTTTATTACTGGGGTGTTGAGAATAAAGAGGACAATCTGCACCTCCATAATTGGACCAATCAGTTTAATTTGTAGTTTTTCTCACAAAGCATATTTTCATTGGCTTTTTTTTTTTTTTTTTACAAAATCATTACCTTACAATGGAAAACTACCCTGAATACACATAATCAGACAGCTCTGAAAATACTGTAACATGTGATCTTCATTTTCACTGTTTTTCATCCAACCAAACCCAATAAATCTTACTTGGCTATGTTGTT +>EU380792.1 Rickettsia sp. GDM18 16S ribosomal RNA gene, partial sequence +GCTTAACACATGCAAGTCGAACGGACTAATTGGGGCTTGCTCCAATTAGTTAGTGGCAGACGGGTGAGTAACACGTGGGAATCTACCCATCAGTACGGAATAACTTTTAGAAATAAAAGCTAATACCGTATATTCTCTGCGGAGGAAAGATTTATTGCTGATGGATGAGCCCGCGTCAGATTAGGTAGTTGGTGAGGTAATGGCTCACCAAGCCGACGATCTGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATACCGAGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTAGCAAGGAAGATAATGACGTTACTTGCAGAAAAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAAGACGGAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGAGTGCGTAGGCGGTTTAGTAAGTTGGAAGTGAAAGCCCGGGGCTTAACCTCGGAATTGCTTTCAAAACTACTAATCTAGAGTGTAGTAGGGGATGATGGAATTCCTAGTGTAGAGGTGAAATTCTTAGATATTAGGAGGAACACCGGTGGCGAAGGCGATCATCTGGGCTACAACTGACGCTGATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGATATCGGAAGATTCTCTTTCGGTTTCGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGGCTCGCACAAGCGGTGGAGCATGCGGTTTAATTCGATGTTACGCGAAAAACCTTACCAACCCTTGACATG +>XM_045299987.1 PREDICTED: Echinops telfairi calcium voltage-gated channel subunit alpha1 G (CACNA1G), transcript variant X9, mRNA +TCGAGCGCATCAGCATGCTGGTCATCCTGCTCAACTGTGTGACCCTGGGCATGTTCCGGCCGTGTGAGGACATCGCCTGTGACTCGCAGCGCTGCCAGATCCTGCAGGCCTTTGATGACTTCATCTTCGCCTTCTTCGCTGTGGAGATGGTGGTGAAGATGGTGGCCTTGGGCATCTTTGGGAAAAAGTGTTACCTGGGGGACACTTGGAACCGGCTTGACTTTTTCATTGTCATCGCAGGGATGCTGGAGTACTCACTGGACCTGCAGAACGTCAGCTTCTCCGCTGTCAGGACCGTCCGTGTGCTGCGGCCACTCAGGGCCATTAACCGGGTGCCTAGCATGCGCATTCTGGTCACGCTGCTGCTGGACACGCTGCCCATGCTGGGCAACGTCCTGCTGCTCTGCTTCTTCGTCTTCTTCATCTTCGGCATCGTGGGTGTCCAGCTCTGGGCCGGCCTGCTACGCAACCGGTGCTTCCTGCCCGAGAATTTCAGCCTCCCCCTGAGCGTGGACCTGGAGCGCTATTACCAGACTGAGAATGAAGATGAGAGCCCCTTCATCTGCTCCCAGCCTCGCGAGAACGGCATGCGGTCCTGCCGGAGCGTGCCCACGCTGCGTGGGGAGGGGGGCGGCGGCCCACCATGCGGCCTGGACTACGAGGCCTACAACAGCTCCAGCAATACCACTTGTGTCAACTGGAACCAGTATTACACCAACTGCTCCGCCGGGGAGCACAACCCCTTCAAGGGGGCCATCAACTTCGACAACATCGGCTACGCCTGGATCGCCATCTTCCAGGTCATCACGCTGGAGGGCTGGGTGGACATCATGTACTTTGTGATGGATGCTCACTCCTTCTACAACTTCATCTACTTCATCCTCCTCATCATCGTGGGCTCCTTCTTCATGATCAACCTGTGCCTGGTGGTGATCGCCACGCAGTTCTCAGAGACCAAGCAGCGGGAGAGCCAGCTGATGCGTGAGCAGCGGGTGCGCTTCCTGTCCAATGCCAGCACCCTGGCCAGCTTCTCGGAGCCCGGCAGCTGCTACGAGGAGCTGCTCAAGTACCTGGTGTACATCCTGCGCAAAGGTGCCCGCAGGCTGGCCCAGGTCTCCCGGGCGGCAGGCGTGCGGGCCGGGCTTCTGAGCAGCCCAGTGGCCCACGGGGGTCAGGAAACGCAGGCCAGTGGCAGCTGTTCTCGCTCCCACCGCCGTCCATCAGTCCACCACCTAGTGCACCACCACCACCACCATCACCATCACTACCACCTGGGCAACGGGACGCTGAGGGGCCCCCGGTCCAACCCGGAGATCCAGGACAGGGAAGCCAGCGGGTCCCACCGCCTCATGCTGCCACCGCCCTCCACACCCACCCTGTCTGCGGGCCCTCCGGGGGGCACAGAGTCTGTGCACAGCTTCTACCACGCCGACTGTCACCTGGAGCCGGTGCACTGCCAGGCACCCCCTCCCAGGTCACCATCGGAGGCGTCAGCCAGGACGAGGGGCAGTGGGAAGGTGTACCCCACCGTGCACACCAGCTCGCCGCCAGAGGTGCCAAAGGAGAAGGCGCTGGTCGAGGTGGCTCCCCATGCTGGGCCGGCCACCCTCACCAGCCTCAACATCCCCCCAGGGCCCTACAGCTCCATGCACAAGCTGCTGGAGACGCAGAGCACAGGTGCCTGCCAAAGCTCCTGCAAGATCTCCAGCCCGTGTCTGAAGGCAGACAGCGGGGCCTGTGGCCCAGACAGCTGCCCCTACTGTGCCCGGGCAGGGGAGGTGGAGCTTGCCGACCGAGAGGTGCCGGACTCTGACAGTGAGGCGGTTTATGAGTTCACGCAGGATGCTCAGCATGGTGACCCCCGGGACCCTCGACGCAGCCTGGGGCTGGCTGTAGGGCCCAGCTCTGTGCTGGCCTTCTGGAGACTGATCTGCGACACCTTCCGGAAGATCGTGGACAGCAAGTACTTTGGCAGGGGCATCATGATTGCTATCCTGGTCAACACGCTCAGCATGGGCATTGAGTACCACGAGCAGCCTGAGGAGCTCACCAATGCCCTGGAGATCAGCAACATCGTCTTTACCAGCCTCTTTGCCCTGGAGATGCTGCTGAAGCTGCTGGTGTACGGGCCCTTTGGCTACATCAAGAATCCCTACAACATCTTTGACGGGGTCATTGTTGTCATCAGCGTGTGGGAGATCGTGGGCCAGCAGGGGGGTGGCCTGTCGGTGCTGCGGACCTTCCGCCTTATGCGGGTGCTGAAGCTGGTGCGCTTCCTGCCGGCGCTGCAGCGGCAGCTCGTGGTGCTCATGAAGACCATGGACAACGTGGCCACCTTCTGCATGCTGCTCATGCTCTTCATCTTCATCTTCAGCATCCTGGGCATGCACCTGTTCGGCTGCAAATTTGCTTCTGAGCGGGACGGGGACACGCTGCCAGACCGGAAGAATTTTGACTCCCTGCTCTGGGCCATCGTCACAGTCTTCCAGATCCTGACCCAGGAGGACTGGAACAAGGTCCTCTACAATGGGATGGCCTCCACATCCTCCTGGGCCGCCCTTTACTTCATCGCCCTCATGACCTTTGGCAACTACGTGCTCTTCAACCTGCTGGTGGCCATCCTGGTGGAGGGCTTCCAGGCGGAGGAAATCAGCAAACGGGAAGATGCGAGTGGACAGTTGAGCTGTATTCAGCTGCCTGTCGACTCCCAGGGGGGAGATGCCACCAAGTCCGAGTCCGAGCCTGATTTCTTCTCGCCCAGCCTGGACGGCGATGGGGACAGGAAGAAACGCTGGGCCTTGGTGTCCCTAGGAGAGCACCCGGAGCTGCAGAGGAGCCTACTCCCTCCTCTGATCATCCACACGGCCGCCACCCCCATGTCACTGCCCAAGAGCTCCAGCACGGGCCTGGGGGAGCAACTGGGCCCCGCCTCCCGCCGCACCAGCAGCTGCTGGTCTGCAGAGCCTGGGGCAGCCCATGAGATGAAGTCACCGCCGAGCGCCCGCAGCTCCCCACACAGCCCCTGGAGTGCCGCCAGCAGCTGGGCCAGCAGGCGTTCCAGTCGAAACAGCCTGGGCCGTGCCCCCAGCCTGAAACGCAGGAGCCCTAGTGGGGAGCGGCGGTCCCTGTTGTCTGGCAAGGGCCGGGAGAGCCAGGATGAGGACAGCTCGGAAGAGGAGCGGGCCAGCCGGGTGGGCAGTGCCCGGCACCCTGGGGGCTCCCTGGAGCAGGAAGCCAAGGGATCTTTCGACCTGCCGGATACCCTGCAGGTGCCCGGGCTGCACCGCACGGCCAGCGGCCGCAGCTCGGCCTCGGAGCACCAGGACTGCAATGGCAGGTCGACCCCAGGGCGCCTGGCCCGGGCCTCACACCCAGACGAGCCTCCACTAGATGGGGATGACGCTGATGACGAGGGCAACCTGAGCAAAGGGGAACGGATGCGGGCGTGGATCCGAGCCCGGCTCCCTTCCTGCTGCCGTGAGCGGGACGCCTGGTCAGCCTACATCTTCCCTCCACAGTCAAAATTCCGTCTCCTGTGCCACCGGATCATCACCCACAAGATGTTTGACCATGTCGTCCTCGTCATCATCTTCCTCAACTGCATCACCATCGCCATGGAGCGCCCCAAAATCGACCCCCACAGTGCCGAACGCATCTTCCTGACTCTCTCTAATTACATCTTCACCGCCGTCTTCCTGGCCGAGATGACAGTGAAGGTGGTGGCGCTGGGCTGGTGCTTCGGGGAGCAGGCGTACCTGCGCAGCAGCTGGAACGTGCTGGACGGGCTGCTGGTGCTCATCTCCGTCATCGACATCCTGGTGTCCATGGTCTCCAACAGTGGCACCAAGATCCTGGGCATGCTGCGGGTGCTGCGTCTGCTGCGCACCCTGCGCCCACTCAGGGTTATCAGCCGGGCGCAGGGGCTGAAACTGGTGGTGGAGACGCTGATGTCCTCCCTGAAGCCCATCGGCAACATCGTGGTCATCTGCTGTGCCTTCTTCATCATTTTTGGCATCCTAGGGGTGCAGCTCTTCAAAGGGAAGTTCTTCGTGTGCCAGGGCGAGGACACCAGGAACATCACCAACAAGTCCGACTGTGCCGAGGCCAGTTACCGGTGGGTCCGGCACAAGTACAACTTCGACAACCTCGGCCAGGCCCTGATGTCGCTGTTCGTGCTGGCTTCCAAGGACGGCTGGGTGGACATCATGTATGATGGGCTGGATGCTGTGGGCGTGGACCAGCAGCCCATCATGAACCACAACCCCTGGATGCTGCTCTACTTCATTTCCTTCCTGCTCATCGTGGCCTTCTTTGTGCTGAACATGTTCGTGGGTGTGGTGGTGGAGAACTTCCACAAGTGCCGGCAGCACCAGGAGGTGGAGGAGGCGCGGCGGCGGGAGGAGAAGCGGCTGCGGAGACTGGAGAAGAGGAGAAGGAATCTAATGCTGGACGGGGTAATTGCTTCCGGCCGCTCAGCCAGCGCGGCACCAGAAGCCCAGTGCAAGCCCTACTACTCGGACTACTCCCGCTTCCGGCTGCTCGTCCACCACCTGTGCACCACCCACTACCTGGACCTCTTCATCACAGGCGTCATTGGCCTGAATGTGGTCACCATGGCTATGGAGCACTACCAGCAGCCCCAGGTCCTGGACGAGGCTCTGAAGATCTGCAATTACATCTTCACCGTCGTCTTTGTCTTGGAGTCGGTGTTCAAGCTCGTGGCCTTTGGCTTCCGCCGCTTCTTCCAAGACAGGTGGAACCAGCTGGACCTGGCTATCGTGCTGCTGTCCATCATGGGCATCACGCTGGAGGAGATCGAGGTCAATGCCTCGCTGCCCATCAACCCCACCATCATCCGCATCATGAGGGTCCTGCGTATCGCCCGAGTGCTGAAGCTGCTGAAGATGGCTGTGGGCATGCGGGCGCTGCTGGACACGGTGATGCAGGCCCTGCCCCAGGTGGGGAACCTGGGACTTCTCTTCATGTTGTTGTTTTTCATCTTTGCAGCTCTGGGCGTGGAGCTCTTTGGAGACCTGGAGTGTGATGAGACACACCCGTGTGAGGGTCTGGGCCGGCATGCCACCTTCCGGAACTTCGGCATGGCCTTCCTGACCCTCTTCCGCGTCTCCACTGGCGACAACTGGAACGGCATCATGAAGGACACCCTGCGAGACTGCGACCAGGAGTCCACCTGCTACAACACGGTCATCTCCCCCATCTACTTCGTGTCCTTCGTGCTGACCGCCCAGTTCGTGCTGGTCAACGTGGTGATCGCCGTCCTGATGAAGCACCTGGAGGAGAGCAACAAGGAGGCCAAGGAGGAGGCCGAGCTGGAGGCCGAGCTGGAGCTGAAGACACTCAGCCCACAGCCCCACTCGCCGCTGGGCAGCCCCTTCCTCTGGCCTGGGGTCGAGGGCTCCGACAGCCCCAAGCTGGGGCCCCTGCACCCTGCAGCCCACTCCAGGGCAGCCTCCCGCTTCTCCCTCGATCACCCCACGATGGAGTCCCAGGCTACTGAGGTGCCGGTCACCCTGGGACCAGACCTGCTGACCGTCCGAAAGTCTGGGGTCAGCCGCACGCACTCCCTGCCCAACGACAGCTACATGTGCCGGGATGGGAGCACTACTGCGGAGTCCCCTGGGCGCAGGCCCTGGGGCCTCCCCAAAGCTCAGTCAGGCTCCATCTTGTCTGTGCACTCCCAGCCTGCGGGGTCCAGCTACATCCTGCAGCTGTCGAGAGATGGGGCCCATCTGCTACATCCCCATAGCGTACCCCCCTGGGGCGCCATCCCCAAACTTCCCCCACCGGCCCGCTCCCCGTTGGCTCAACGGCCACTCAGGCGCCAGGCAGCAATAAGGACTGACTCCCTGGATGTGCAGGGCCTGGGCAGCAGGGAAGACCTGCTGTCAGAGGTGAGTGGGCCCTCCCCGCCGCTGGCCCGGGCCGCCTCTTTCTGGGGCCAGACAAGCATCCTGTTGCAGCAGCAAGCCCAAGCCTGCAGCCAGATCTCGAAGCACACACCACCTCTAGTCCCCCATCCAGGCCCAGAGCCCACCCGGGCCAGGGTCCCCCGAGAAACCAGCAGCAGCTTGGAGCTGGACACGGAGCTGAGCTGGCTTTCCGGGGACCTCCTGCCAGCGGGCAGCCAGGAGGAGCCCCCCTCACTTCGGGACCTGAAGAAGTGCTACAGCGTGGAGACCCAGAGCTGCCGCCACCTGCCGGCCTCCTGGTTGGACGAGCAGAGGAGGCACTCTATAGCCGTCAGCTGTCTGGACAGCGGCTCCCAGCCCCACCTGGGCCCCAGCCCCACCAGCTTTGGGGCCCAGCCTCTTGGGGCACCAGGGAGCCGGCCCAAGAAAAAACTCAGCCCACCCAGTATCTCCATAGACCCTCCAGAGGGCCAGGGCTCTCGGCCCCCACCCAGCCCTGGCGTCTGTCTCCGGCGTAGGGCTCCGTCCACCGACCCCAAGGACCCCTCGGCCTCGGGCCCCCCCGACAGCATGGCTGCCTCGCCCCCCACAAAGAAAGACGTGCTGAGTCTCTCTGGTTTAGCCTCTGACCCAACAGACCCGGACCCCTGAGTCCTGCGCCCACTCTCCCTTCCTCCACTGGGGGCCAAGTCCTAGCTCCCCCTCCTGGGCTGGTGCCCTGAAAATGTCCACACAGACACGGAGGCGCCCCTCCTCGCCTCAGTGATGCTGGGCCACGCCACACAGGAGTTCCACCCTGGGCCGCCGAGCCAGGGCACAGAGAGGCCCCATGCCGCCGAGGTTCCCGACACCAGGACTTGCTGGGAGAAAGCAATACGTTTGTGCAGAATCTCTATGTATATTCTATTTTATTAAATTAATTGAATCTA +>XM_020899216.1 PREDICTED: Odocoileus virginianus texanus LCA5, lebercilin (LCA5), transcript variant X2, mRNA +GCGGAGAGAAGGCAAGGCGGCGGGCGCCGCGTCGGCGCTGAGGAGGGGCCGGAGCGGGTTGGAGAGGAAAAAAGTGTATCTTCTGGTTGCTATTGTGAATTGTGGACTAAAGGTACATAGAGAAAACGGATTGCACAGACTTGAATATTATCCCCAGGATCTGAAGACTCAAAATTGCTCTTCAGGCTTATTTTGGATTTTTCTGAGAAGACTCTGTGAAATTATGTGAATAGAGACTATTTTTCAAAGCCATGGGGGAAAGAGAAAGAAGTCCAGTTACTGATCGAGAAAGTAAGACAAGCAGACCCTATTACTCTTACTGTTCATCTGAATTTGGAACTACTCCACAGTCTTCTGGCCGGTCGTCGCTGGTGCATCCCTCCCCACCTGCAAGTGTTAAGGAAAAACATCCTAAGAAACAAATTTCAGATAGCCAAGTGCATCATCACGCCCCTAGGAAACCAAGCCCTAAGGGTTCACCAAACAGAAAGAGAGTCAGAGCAGGATTTCGCTCCCAGAGCCTCAATAGGGAGCCCCTTCGGAAAGATCCTGATCTTGTTACAAAACGGGTTCTTTCTGCAAGACTGCTAAAAATCAATGAATTGCAGAATGAAGTAACTGAACTCCAGGTCAAGATAGCCGAGCTGCTAAAAGAAAATAAGGCTTTGAAAAGGCTTCAGTACAGGCAGGAGAAAGCCCTGAATAAGTTTGAAGACACAGAAAATGAAATCTCACAACTTATTGCTCGTCATAACAATGAGATTACAGCACTCAAAGACCGCTTAAGAAAATCTCAAGAGAAAGAACGGGCAACTGAAAAAAGGGTGAGAGAGACAGAAGGTGAACTGCTTAGGACAAAAGTTTCCTTACAGAAACTGAAAACGATCTCTGAAGCTAAACACCTACCTGAACGAGATGATTTAGCAAAGAAACTCTCTTCTGCAGAGTTAAAATTAGATGACACTGAGAGAAGAATTAAGGAATTATCAAGAAACCTTGAGCTAAGTAGTAACAGTTTCCAACGACAGTTGCTTGCTGAAAGGAAAAGGACATGTGAGGCTCATGATGAAAATAAACTTCTTCAAAAAGAACTACAAGGACTATATGACAAATTAAAGGAAAAGGAGAGAGAACTGGACATAAAAAACATATATTCTAATCGTCTGCCAAAGACTTCTCCAAAGAAAGAAAAAGAATTTACATCAAGAAAAAATGCTGCATGCCAGAGTGATTTTACAAACCAGTGTACAAAAGGAGTACAAACCAGTGAAGACTTCAAGCTGGAGGACTATCCTATAACACCACAGACAGTTATGTGTTATGAAAACAAAAGGGAAGAACCCGAACGTCTTTCTTTGGATCTGGAATCTCAAAAGAGAGATAATCTTGGAGAAGCTGGGATTCTAAACCCAACTGTGGAAAGAGAAGACAAATTTGCTAAAGATCAAGGACTCCATGTTGTGAAACAGGATGTTGAGAAGCTGGATAATGGGTGGGAAAGAGAAGAACTTGCTAAAAAGCCAAAGGAAAAGACATCTTTGTTGGAGAGAGAAGGAAAGCCAGTGTTGGAAACTGGAAGATATCAAGTGGAAATGCACCAAGTTCAGAAAATTGATAAACTGGAAGAAGAGGAAGAAGAAAGGCTAAAAGAAATGCTACTTGCTAAACTGAATGAAATCAACAGAGAACAAGACTCTCAGAATGTAAAATATCCTTCTCTGCCATTGCTTCCTGACGTGAAGCCAAAACTGCATTCCCCAGAGAGAAACCCCAGAACACACACGTCCTCTGGATCCTCAGAGAGATTATTTAACGGGCATTATTTGCAAGACCTCAGTCTTTCAACAACGAAAGGAGATGGTCAGAATCCAGGCCATACTCGAAGCCCAGCCTCTCCAGATGAGCTTGTGTTTGGTAGCTATGTGCCTTCATTTGCAAAAACATCAGCGAGGTCAAATCCACTTAGCCAAAAAAGTGACCTTTTGGGTTTCTCAGGAAATAATACAGAGAAATTTAGTAAAGACAGTGTAGATTCAATTACCAGACAAGAAAGAAAAGCCACCCTGATGGAACAGCTGTTTGGTACCAGTGGTGGCAGCAGCCTTTCCTCTAAAAGCAGTGACCCAAATTCTCTGGCTGTCACTAAAGAAGACTGTGACCCTCTAAATTATCTCCCTGGGGATAAAAACAGCTGGGGTAGGGAACATAGTGATGATGATGACTTTTTCCTCAGCGAAGGAAGAAGTTTTAATCCAAGTAGACACCGATTAAGACATGCAAACAGTAAACCAGCAGTAAAAGTAGTTGATTCTGTAGAAGATGAAATTGAAGAAGTAGTGCTGAGATGACTGACTAGAATGTTTTTTTCCAATTGTAATTATTAGGATATTTTAATACAGTATTTATTATGAACATTTAGACTTTCTAATATTAAAAAGTCATCATTAACGGATAATTTTTAGTATATAAATACAGTGAAAAGTAGCTGATACCACTAGTAGCTACACACATGTAGCTAGTTTGCTAATAAGGAAGGAGGCTCTTTTGAATGAAACCAGAAATAGAGATGTATCTTACTTTCTTTGTGCAAATAAAGATGTATCTCACTTCCTTTTTGCAAATAGGTTTTACCTCTTGAATCAACTCTATGAGGAGTTTTACTCCATTGGCATACACATTCATTTTCTGTGTTATCCCTATTATTTTTGGTCTTATCCTCACTGAGCTAAGTACAGTTTTCCCGCTGATGGTTGTGTGGAAATGGAGAGATGCTGTAGGGAGCTGGTGCTACTAGGAACCTCTCCACTGTGACTAGGAGTGAAGGGGGTCCCTTTCTTATATGCCAAGACTGAGCTACTCTTAAGTGGAAACAGTGACAACGTGAGAATTTCCCATTCTTCTGGAAGTAACCACAGTTAAATGGTACTGATTTCGCAGTGACAGAGTCTGATTATATCACTTACCTACAGCTGTGCTAACTCATTAGGCTGAATTCCGAAGACGTCTTTCTGTTGGCATGAACAGTGCCCTCCCTGTCCTGGCTTCCAGAGGTTCCAGTGCAGTGTAATCGGTAATTCCTCTCCTTGAACTCCTAATGCTATCTGTATCTCAGTGACTGGTTGTGAGAGGTCATACCAAATGCACAGAATGGAAGAAATTTCACCCCACTAGAGCAGGATTTTCAACTCAATTATGATTCCAGAGTAACATAACTTGGAAATTTTAATATGTACTTTAAGATTTGAACTTACTGTCAAACCAAAGAGACAATGATCACATGATACCATTGGACTTAAGCGGACTAGTTTTAAAGCAGCCTTGGTGAAAAGTGTTTTACAGATGGAGCTCCTCCCTTGCTGAGTAGGGTGGAAGATGTTCTGTTGAAAAGTGTTAGTTTTTTTGCTGTTTCATAGCTCACTTCAGCTCCAGAGAGGAGTCAGGGACCTTGGATTATGCTGGGCATGAGTGGTCTCTAAGAAGCAGAAATATGCCAGTGGCCTAGGAGAAAACTCAGTGCAAATGAAGAGTGGTGGGAACAGTGTATCAGGGCAAGAATAAGTGGTGATTGGCACTTGTTCTGAAATGAACTGTTGTTTTCTAGAATTTGCTACATATTTGTTCATAGTAGGATTTCTGATGCCAGGCATACATACTGATCAGGGGATTCGAGTTACTATCTTGAGTTCTTATAAATGCTAATTATTGAATATAATTTCATAATTATCTGACAAGACTTACTGGTTAGGTCTCTAATTACAAGATGTACTACCTACATCTTCTAAATTGTGTTCCTGTTACCTACTAGGAACCGAATCTCTCAAAAGTGCTAAACTATATCAAATTTTTTTATAAAGAGATTTTTGGATTGATATAAATAAGCATTTACTATGTTGTAAGTCATTCTAATATATGTAAACCACAATATTTTTGTAATGCAGTTCTTGATAAAATATTATATATTAATTTTTTTCATAGCTGCTAATTTTTCAGCCAAAAGTATTCTCATTTTTAGGCTGTTTTTGTATTAAAGGTTTTTTTCTTTCAAAAGTCCTTTAGTAAAGTTTTAAATTCAGATCATTTTAATTAGTCTCTTTTTTCTACTTGATGTTTTCCAATCTTTTTAAACAGATGTAATAACACAGAATTGTTAAAATTAAATCTAAAATTAAGTTATAGACTTGAAGCATTATGGAGTTAAGCATTAAAATTGGAGACTAAAATGTACAGAACAAGTTATTCTTTATGAACAAACCTTAATGGATAACTTTTTTTTCTAAATGTCAAGTTAAATTTATCTGTACTCCAAACTATTACTAATAAAAATTTAAAATA +>XM_045922658.1 PREDICTED: Maniola jurtina cleavage and polyadenylation specificity factor subunit 6 (LOC123876410), transcript variant X5, mRNA +GGTCACACTGGTACTACACTTTTCTTCAATTCGCAAAATGGCGGATGGAGGCGTGGATATAGATTTGTACGCCGACGATATTGAATCTGATTTTAATAGACAGGATGACTTTGGAGGTGAAAATGTCGATTTGTACGACGACGTGATCGCAGCCCCGTCGAAGCCCGAAGACGGCGACGGGCCACCCAACTCCGGACCGCCGCAGCATCAGCATCCACCGGAGGAAACCAACGGTTCAGTTCCGTACCACCACAACACCGTATCAAGCCACGGCCATCATGGCCGCCGCTTCCAACTTTACATCGGCAACCTCACCTGGTGGGCGACTGATCAAGACATAGCTAACGCGGTCGCCGATATCGGCGTAACGGACTTTCAAGACGTGAAGTTCTTCGAGAACAGGGCAAATGGACAGTCGAAAGGATTCTGCGTCATATCGCTGGGTTCCGACCAATCCACCAGGATGGTCCTCGATCGACTGTCCAAGAAGGAGATTCACGGTCAGCATCCCGTTGTGACGCTGCCAACTAAACAGGCGTTGAATCAGTTTGAGAGTCAGTCGAAGACAAGGTCAACACCGCCCGGACCCAACAACCCCGGTATGAGAGGTCCTCACCCTGGGGGCATGCCTGGCCCACACCCTGGAGAATTCTTTGGTGGCGGACCAAATGGACCGGGACCAAATGGCCCACGCATGATGATGCCTGGGCCAGGCCCCCATCATCAGCTTCGTGGGCCCCCACCCGGACCCCATGGCCCCCCACCGCACCACATGCAGCAGCACCAAGGCCCCCCACCGCACCATATGCCGCCTCATCAGGGCCCGCCCCCGCACCAGGGGCCCCCACAACACAGGCCACCGATGCAGTTCCAAGGGCCGCCGCAGATGCAACGCGCCCCCGGAGGCCCTCCAGGAGGCCCGCGAGGGGGCCCTGACTGGCCCAGGCCCCACCACATGCAGGCCCCAGCTCCACAATACGGACCCCCGCAACACCAAATGCCGCACCAAATGCCCCCGCCGTCACCGCATGGGCCGCCCGGGCAAGGCATGCCGCCGCCTCACCATCAGATGCCGCCGCACCAGCAGGGCCCGCCCAGGGGACCCGCGCCGATGCCGCAACATCCAGGCGGGGCTCCAGCGCCGCACGTGAACCCGGCGTTCTTCAACCAGCAGCCGCCCGTGCAGCCCGCGCCCGCAGTGCAGCCGCCGCCGCAGCCCGCGCCGCCCGGACCAGGCGCGCCCTACGGCCACCCGGCGCACGGAGGCCCGCCGCCCGCACAGGGCCCGCCGCCCGGCGCGCGCCAGCCGTACGGAAGACCACCTGCAAGCTACCCCGGCGGTGCCGAGGCGCGGCCCGCGCACCACCCTTCGCCGCTGGGCCCGCACGCGCCCCCGCACGCGGCGCACCCCACGCACCCCGCGCACCCGCCGCACCCCGTCATCAGTGAGGCGGAGTTCGAGGAGGTGATGGGCCGCAACCGCACCGTGTCGTCCAGCGCCATCGCGCGCGCCGTCAGCGACGCGGCCGCGGGCGAGTACGCGTCCGCTATCGAGACGCTGGTCACCGCCATCTCGCTCATCAAGCAGAGCAAGGTGGCACATGATGACAGATGCAAGATTCTCATCTCCTCACTCCAAGACACATTGCACGGCGTAGAGACCAAGTCGTACGGGGGAGAGAGACGGCGGTCGCGGTCGAGGGAGAGGGATGCGCGCGTGCACCACCGCGCGCCGCGTCGCAGGGAGCGTTCCGCGTCGCGCTACAGGGACAGGTCGCGTGACAGGGAAGAGCGAGACAGGTATTACAGGGACTATCGTGAGAGGGAACGCGACCGCTCAAGGTCCAGGGACCGCGAGCGTGCAGAGCACTACAACAGGGGACACAGCCGGACGGAAGAGAGGCCTCGCAAGTCGCCCGTAGAGCCAGCGGTGGAGAGTGGCGCCGGAGATACAAGCACGAGCAAAAGTCGTACAGCGGCGACGCCCTACTACGACGAGCGGTACCGCGAACGCCGCGAACGCGACCCTCCCACCGCGGACCGCGAGCGCGACCGCGAACGCGACCACCGCCGGGACGCTAGGCATTAAATGACTAATAAACTAAAACTAGACCATACCATAGTCTAAATAAAGTACAGTACTACCACTTTCAGAAGTAACGCTGATGTACATTCAAAGGCCGTAATTTGTTTAGCACCTTAATGATCATATTCGCGTGGCAAGGTTATGCACATGCGTTAGGTGTGTGTAGCGTGTTTATAGAAAAAAGCCATAAGTGCGACAGGTTTTTGATGCAATAGTTTCGCGGAATTGCTACTCGAATTCTGAGGCCGACCGTACCTACGCAGATATTATATTATATATTATGTATGTGACATTGCCATTACGGGATAGTGGGAGCAAAATTCTATTTTGTTATTCTGGGACTTTGAACTTTCTCTCTTCTGATTGGTCCACAAACATTCGTATGTCTTGTTTTTGCTCATAGGTAGTGATGTAAAATAGTGCCACTCGGGGCCAAAATTTTATGTTTAAGGGCGACGTATATCAATTCCTCTCTCATAACCCCATGTTGATTCCACAGTTTGTATGTGCGTGGAAAAAAGGATCTGGCACAACGGGCGGTCGAAGTCACCAGGCACCCAGGTGGTTAGGGTGAA +>XM_034343108.1 PREDICTED: Prunus dulcis protein DECREASED SIZE EXCLUSION LIMIT 1 (LOC117614330), transcript variant X3, mRNA +CACCCTCACACCACTAGTACTCTGATACAAGTCTGTCTACATCTACATCCTCTCTCTGTGTGTCTGATGAGAGAGCACAAAAAGTTGAAAATTATTCTTCTATCTGACTATTTTCCCCTTGCACGGGTTATCATCGTCTTCCGCGAAAAACAGGGTTTCTCCAAACTCTTTCAGTCTCTCGCCGTCTCTGAATCGGTTTGTGTGTTGACCAGAGGACGAAGTCAATTTTAAGTTCGTTCTTCTGTCTTGACTAGTCCAATGGAACGTTGGTTTAGTACAATCTGTAATAGCACCTCCTCTTGAATAAGTCGTAAGAATAACACGAAGAAACCCCTTTCAACCCCGTCGGGTCGTGTACTCAGCACCTCCCTCTAGTGCTATAGCGGCAGTCTGTGACTCTGTCTGTGACTGCCGCATTGCTTATTGAAGAAGCAGGTCCAATGAGCAAACAGAGACTGCCACCGGACCCAGTGGCTGTGCTGAGAGGTCACCGCGCCTCTGTCATGGACCTCTGTTTTCATCCATCCCAACCTCTCCTATGCACCGGTTCCGCAGACGGCGAGTTGCGGATTTGGGACACTATCCAGCATCGGACTATATTATCAGCAGGGGTGCATAATGCTGCACAGGGGATTGCTTCTGTTGCTTGTAGTTCTTCAATTGGAGCCAATAAAGTGATCAGCCAGGGTAGGGATGGAACAGTGAAGTGTTGGGATATTGAAGATGGAGGTCTGTCCAGGACACCTTCTGTTACAATCAAGACAAACTCTTACCACTTTTGTAAACTTTCCTTGGTGAAGAGACCTCATTCTAGTTCTAAGCGAGTTTACGGGACTACGCATAATGACAGTGATGAAACAAGGGTTACGGAGAATGCTGATACGGATGCTCTAGACAATAGCAGAGAAAAGTTTCAAGAGTATCTGCCTGAGCAGTCCAGCACCTTTGAAGAAAATACTCAAGTTGAGGGATCTAAATGTGTCGCTGTAGCAGGGGAGCAGCCTTCTGAGGTTGAGATTTGGGATCTTAATACTGCAGAAAGGTTTGCACGGCTACCTCAAAGCTGCGTTGCTGGTTTCTCAGGTATATCTACCACAGAGAGAGGAATGTGCATGGCGGTTCAAGCATTCTCACCATCCGAATCACAGGGATTCCTAAATGTCTTGGTGGGTTATGAGGATGGTTCCATGCTTTGGTGGGATATTAGAAATCCTGGGGTTCCATTGACCTCTGTCAAGTTTCATTCAGAGCCAGTTCTAAGTCTATGCGTTGATGGGTCATGCAATGGTGGTGTCTCAGGAGCCGCAGATGACAAAGTTGTGCTGTACAGTTTGGATCATTCCATGGGTACATGTGTGATCAAGAAAGAAATTAGTTTGGAACGACCTGGCATATCGAGCACTTCTATTCGACCTGATGGTAAAATTTTTGCAACAGCTGGCTGGGACCACAGAGTGAGAGTATATAACTATTGCAAAGGCAATGCTCTGGCGATATTGAAGTATCACCATGCAACGTGTAATGCTGTTTCTTATTCACCCGATTGCAAGCTAATGGCATCTGCATCAGAAGATACGACAGTGGCACTGTGGGAACTTTATCCTCCTCGAACTTGAAATGATATGGTAGTCCTGAAGTGGAAATGAGTTTGTGTTCCCTATAATGTAATAAAAGAGCATCAATAATCAATATCATTACCGTTTGTGTGCATAAGGTTAGATTAAATTCATTTAAATTATGGATTATTGCTTCTTTAGGAAAAAGATAAGATGTTAGACCTTCAATTTAGCAATAAGAGAAGATGTTACTCGCCTACAAGAACCGTGTGCTGGGATGAAATATGTGTTCTCCTTGTGTAATTTTCAGTTGTTTCAGACAAAGCCTAAGAAAAAATCGACATTTTGGACTGTTATGTAATTTGATGGCTGCCTGCAGGTTTGTAATTGAAAAACAGAACCAAACTCGCAGGCTTTCAGACGCAAAAGAGAGGGCCAAGTCGCGTTGATTTGATTTGGACATTTAGTTTGGTGGCCAGCCTCCAATCCAATGGTATCGAATAGAGGTGCCACATTCTTAGCCTCTGATCTACAAAGCAATGATTGGCTTGGCTATGCCGGGGATTATTGCTTCAAAGCTCCCAATTTGATCTCTCTTACTTTGCACTAGAAAAAGATGACCCGTTGTTGACTTTATCAATTACTCTTGAAATATTTTTCAATATAGCAGCCGGGGAAAGAAGTTGCACCTA +>XM_035481792.1 Colletotrichum scovillei uncharacterized protein (HER10_EVM0012396), partial mRNA +CGGAAATTTAGATCATTGTAAAAACTGTTCGTTGAGTTGTTCTCGGGCGTTTTTTTCTTTTCTTTAAATAGCGTACAAGTCTCGCAACTCAAAGCGTCGGGCGCTCTTCCGTTGATCAATCGGAACGTGGCCAGAGACCAGACGATGTCGAGGGACGGGAACCCCGCAATTAGTTCATAAATCCTGTTCAGCCGCGGGCTAATTCCGATGAGCATTGCACACTCATTCGCAGACGACCCATATCACGATTATCGGGGCCATGGGATTTCGACAGCATGTCAGAGGGGAAGGTTCAAAGAGGTGCTGCTGAGTCTACTGGGGAAGTGCCCGCAAAGCAGCTCAAGGGCTGCGCCAACTGTGAGCGTCGTCGAATTCGCTGCGATCGACGGCGACCCCATTGCGCCAAGTGTGACAAGAAAAGACTTTCATGCCCTGGCTATGACCGCCGACTTCGATGGGTGGAAGGGGTTGCCGCGAGGGGACATCTGCGGGGTCGAACGGTCCCGACGAGGCCGTCTTCTGAAGATAAGGCCGCATTTCGAGAAGAGGACTCGAAAGACATCTTCACCGAAAGTCCACAGCTACACAAAATAAAAGACTTCACGACTTCGGTCGTCATTCTCAATGCGCCAACCGCCCAAGCAAGTCAAGCTTGCGAGTACCCCGACTCCCTGACAAGGGTGTTCATGGACTATTACAGACGGAACTTAGCCGGTCTGATGGTATGGATGGACTCAGACCAAAACCATTACCGTACACAGGTTGTTCCTCTGGCCGCGAATCAACCAGCGATCGGCTTCGCCATCATGGCTTTCGCGGCTCAACACGGCGCCATGGCGTTGCCTGATGAATCTATCGCTGAGACTGCTCGCGATAGGTGCTTGCACCTGATACAAACCCGCGCTCAGGATATGACGGCACGGCTTATCGAGGGCGATGACTTGGACAATCATGGTGACTTGGCTGATGCGGAATGGATGCTGGCCTCGATTCTCATCATGTGCAACTACGAGAATGCCCGTCGCCGCCTTCAAATCGCCGATGATCACAGGCGCGCGGCAAGGACGATTGTCAACCTTTTCAAAAGCCAGAAGTCAATCAACAACCGAGATCTGTTTGCGTTCTTGCGAAACCAACTAGCTATAGATGATGTACTGGCAGCTACGACATCGTGCGACCTGCCTCTCATTCGGAGCGCCGTCACGCCAGCACCTGGCTCAGATTATCTCCTCTTTTCGAGATATCTGACTTTTTTGCACCGTGTCACGCTCATTTCGGCAGATGCTGTTGATTCTTATCCTTCAATCTCGCGCTTACGCAGCGGCCTCACGGTGCCTCTCATCCAATCCGAGTTTGAGCAGGCAAGAGGCGCCACGCTGATGGCAGCCGGACGACTCGGACTGGCAGGATCAAGCATGTCTCGTGACTTCATACGCTTAGTCGAGGTTTATCATAACGCGGGGTTGCTTTACTCGTTAAGATGCCTCGACTACGCCATCGAGCACGCCTCGGAGCGCCTTGTGGCCGCTGCTAGTCTGTTCGACCAACTGACCGAATTGGAAGACCTAGCTGCTTTCGTTCAGAATCTAGCCTGGCCGACGTTCATTGCCGGTACCGAATGCCATGGAGATCGGCATCGACAAGATATCATTGCGGGTTTGCTCACGGCAATTCATGAGGGCACGCGCTTCAGTTATTACTTGGACGCGGTGAACTTTCTCAAGGAGTTTTGGGCCGGAGAAGACAACGACTGGCGTCCTCTCGCTCGCATGAGAGAAGCCATAGGGCAGCGAGTCCTTGTGGTATGA +>XM_006964907.1 Trichoderma reesei QM6a uncharacterized protein (TRIREDRAFT_61223), partial mRNA +ATGGAGACGTACCACGGCTATGTACGGACTCCAGCTGATGCCATCAAACTGTTCGAAGCCTGTCGGCTAGGCCATCTGCCTCGGGTCCAGAGGCGACTCTCTGAAAAGGAGAGGCAGTCTATCAGATCCGGCTCAGTCTTTGTGTGGGACGAGCGCGAAGCAGGCATGCGGCGATGGACGGACGGCAAGTCTTGGAGTGCTAGCAGAGTGTCGGGCAGCTTCCTGACGTACCGCGAAATGGAGGGCAAGCGAGGAGGCGGCTTTGGAGGAAGCAGACGGGGCAACGGCAAGACGCCCGAATCTGGGCGCGGTAGCGACGAGGACCATGACGACGGCGAGCCGGAAGGATACCGATACAAGGCCGACGGCCTTATGAAGCAGTCGTTCAGCATCACCACGTCGACCGGCCAGCACCTCCACCTCATCTCGTACTACTCTCGGCCTCAGCCGGGGCAGCCCGAGCTGCCTCAGCCGACCAACGATCCGATGCTGCGATCCATCATCCCGATGAAGGGCATGTACCCGGAGTCCAGCATGGGCGAGACGAACCAGACGCCTGCACTGACGAGGGCGCCGATGCTGCAGCAGCCGCCTTACATGATTGCTCCTCAGCATCAGCACCACCACCCTCCTCACCCGGCGCATCATCAACCGCCGTTTGCGAGCCATTACCAGCCCGGGTATGGCTGGCCTCCGTCGCCAGTCGCGACCCCTCCGTACAGCCATTACACCTATAGCCATCCTCCTCCCGTCCACCATCTGCCTCATCCGTATGCCCCCCAAGGTCCGCCGCCGCCTCACCACGGCTATGCACCGCCTCCGCCTCCTCCGCCGCATCACTACCAACAACATGGCGCGCCTAGTCCCTACGACCGGCCTTCATTACCGCCTCTGCAAAACACGCCAAAGCCGGCCCCTCTGCCTCCGTACCATGGCCCGCAGCATTCCCAAGGACCGACGCCGCCCCGTGGCCACGAGTCTCCCCACCAGCCAACCTTGCAGGCTGCCGCGCAAGCCGCCATGGGCGATTCACGGACCCCGCCCGAGAAGAAGCCTCAGGGGCCTCTTCCAGCTCTGGGGACTGTTGCCAACGGGCCTCTTGTCTCTGCCCACAGCGGACTGCACACTCCTCCCACACGGACGCTGAGCCCGAGTCCGCCTCAAAGTTCCCATGTGGAGACGCATACTAGCACCAGCACCAGCAACAAAGCAAGCCTGTCCGCGCTGCTGCACCCCACGACGTCTTCCTCCACAGAGGCCGGTGCAAACGGCAGCGCTCACAGCAGCCCAAGGACGGCCAGTATCACCATGGCTGAAAAGGGAGGCGCCAGCGAAGACGCGCGAGCCCTGCGGATGCTTGACCGCAAGTTTTGCATCTAG +>XM_032861574.1 PREDICTED: Lontra canadensis endothelin 1 (EDN1), mRNA +TCAGACGGCGGGCGTCTGCCTCTGAAGTTAGCAGTGATTTCCTTTAGAGCCTGGCCTTATCTCCGGCCGCACGTTGCCTGTTGGTGACTAATAACACAATAACATTGTCTGGGGCTGGAATAAAGTTGGAGCTGTTTACCCCCACTCTATAGGGGTTCAATATAAAAAGGCGGCGGAGAGCTGTCCAAGTCAGACGCGCTTCTGCAGCGGCGCTGGGGCGAGCGCGCACAGGGTCCTCGGTCCGCGCTGCTGTCCCCGCACGCCACCGCCGCGTGCGCCCGCAGACCGCTCCCACTGCCGGCCCTCCTGGCAGAAACTTCTTTTTTCTCTCCGTTAAAGAGCACTTAGGCTGAAGGCTCACTTTGAGATCTGAATAACCAGAAGAGCTTTGAGGGACCCGAAGCTATTATTTTTCTTCGTTTTCCTTTGGGTTCAGTTGGCAGGGGAGGACTTTGATCCCCACTCCCTCCCCCCTTTTTTTTTCAGAATGGATTATTTCCCCATGATTTTCTCTCTGCTGTTTGTGGCTTTCCAAGGAGCTCCAGAAGCAGCGGTCCTGGGCGCGGAGCTCAGCACGGGCTTGGACAGCGGAGGGGAGAAGCCCGCCCCCAGTGCACCCTGGCGGGCCCGCCGGTCCAAGCGCTGCTCCTGCTCCTCCCTGATGGATAAAGAGTGCGTCTACTTCTGCCACCTCGACATCATCTGGGTCAACACTCCCGAGCACATTGTTCCCTATGGACTCGGAAGCCCTTCTAGGTCCAAACGATCCTTAAAGGATTTATTTACCACAAAGGCAACAGACCACAGGAAGAGATGTCAGTGTGCCAGCCAAAAAGACAAGAAGTGCTGGACTTTTTGCCAAGTGGGAAAAGAATTCAGGGACCAAGATGGTATGGAGAAGAGCTGGAATGACCCTAAGAAAGGCAAAGACTGTTTTGGGCTTGGAGAAAAGTGTGTTCATCAGCAGCTGGTGGCAGGAAGAAAAATGAAAAGGTTGGACGCCATCAGCAACCGCATCAAAACAGCTTTTCGTGTTGCAAAGCTGAAGGCGGGGATCTACACAGAGAGGCAAGTGACTCACAACCGAGCACACTGATGGCAGGTCACCAGGGCCCATGGCTGGCCCGCCCGAAAGCCTTCTCCTCCGAGGAGGGAACCCTGTGGCTGATTCTGCACTCTCTCCCCATGGCTGGGATCAGAGCAACAGCATCCTCCCTGCTTTGACCGACCATTTCTTGCTCCAACTGGCAATGGACCAGTGCCCTCGCTCTAAACATTCCAGGGAAGGTTAAGGAGTCCCCCAATCCATCTTCATTTGCCTCCATTGGTGATAACTGCTTTCGTCTCTCCTCGTTTGGGGTGACAAGAGACTACTCAGAAGGCAGAGAGACACACAGTGACTTGTGATTTCGGGTGTCACCATCCAGAGGGAGGACAGGAGATTCCACACATGGTGGAATTTCTGAAGAGGGTCCGAAGGGAGTGTTTGTGTCTCACTCAGGCGCCTGGCACATTTCAGGGAGAAACTCCAAAGTCCATGCAAAGATTTTCTAAGGAATGCACAAATTAAAAACACTCTCGAAGGACACTCAAGTTAAAAAAAAAGAAAGAAAGAAAGAAAGAAAAAGACTTTTTTTTCTTTTTAAATTCACAAAATGCAAAACTAAAAGATACTGCTACTACTGTAAATCAGGATGGGTTTGATGAATCTGAGTCTACCTCACCTCTATTGCACTCTGGTAGAAGTACTCCCCCCCGCCAAAAAAAGAAGTACTTCCCCACCATTAACTATATCCCCCCC +>XM_030076989.1 PREDICTED: Myripristis murdjan Ras and Rab interactor 1 (rin1), mRNA +ATGCAGGAGGTGGGCTGCTCCCAGCAAGGCTCCCAGAGGGCCTTCAGCGTCTTGGACCGTCTGCTCCTCACACACCCCGTCTGGCTGCAGCTGTCACTCAACCAAGACTCCGCCCTCTACATCCTGCTGAGAGAGCCGGTCGGGACGTTCTTGGTGCGTAAATGCAGCTCCACTCAGAGAAAGGTGCTGTGTTTGAGAGTGACAGCGGACCGAAGTGCCTCCTCTGTGAAGGAGTGCTTCATCTGTGAGGAGGACTCCACTTTTGCCTTGGAGAGCTCTGCGCTCAGCTTCCCTGATTTGTGTCGATTGGTGGCCTTCTACTGTATCAGCAGGGATGTGTTGCCGTTCCCGTTGCAGCTACCGGATGCCATCGCTAAAGCCACGTCCCACAGGCAGCTGGAGGCCATCTCACATATGGGACAAGAGTTTTGGAGCCCGCCCACTGCCTCAGAGATGCTGAACGGACCAGTGGACCAGTTGGCATCGACCAGTCAGGACCAGGCGGCGCTGACCCAGGACCTGTGCAACCTGATGGCCCGAGGCAGATACAGCAAACTGTGCTTCATAAACCCCCTCTTCATGCAACTGGAGCAGCCACAACATTCAAACCACGGTGCCTCCAGTAAACGGCACCGCTTAAAACGCAGCATGAGGCTCCGGCTCTCCAACGAATGCTCCATGAATCTGTCTCTGGAGGGCGTCGGCTCCTTCTCGCCTCCCTCCTCCTTGGAGGTGCCCGGCGGTGGAGAGAGGCTGCAGAAGGCCAGTCCTAACCCACAGAGAAGAGTTCATCCCGGGGCAGGGGTCTTGAGGCGAACCCCTGCTGTTTCCCCCGGCTCTGCAGAGGAAGATGACATCATGTCGACCTTTGTACCCCAGGTAAGAACCAAGGCTGGCGTGGACGAACCTACAAGGCCCCAGCATGGTGTCCGAGCGGAGGAGCCGAGCATCGAGGTGGCCGTGCTGGCCTTGGAGAGCCGTCCCGCTCCCTCCCTGGTCGAGCTGGACAGCAACAGCTCCTTCAGCAGCATGGACGACTCGGATTCAGATTCAGAAACTATGAGTCAGCCGCGAACGCAAGCCCACCAGCGCCCGCCCCTCGTGCGCTCGCGATGCCGCGGCGGGCTTCACCGCATGAGCGCGGCGTTTGTGTGCTTCTTCGCGCCGGAGAAGCGCCTGACGCGGCTGGTGGAGGAGCTGTCCCGGGACAGGCGCTCGATGTTTGGGGCCATGGTTCAGGACTTCATCGCGCAGCAGATAGAAGTGCTGAAAAAGCTGGATCCCTCTTCATCCTCTTCCTCTCCATGCGTGACCTCGGTGGAGCTGCTGCAGGGCCTGCGTCTCTTTCTGTCCCAGGCTAAGTGCTGCTTGTTGGACAGCGGAGAGTTGGAGCCTCCCATTGAAACTCTGGTGCCTGAGAATGAGAAAGACCTGGCGCTGGAGCGGGCCATGTTCACCTGTGTGCTCCGGCCGCTCAAGTCCCTGCTGGACCAAGCCCTGGTCATGCTGCACATTCAGGATGGCTCCAACCAGCGCCTCAGCAAGAGCCTGCTGCAGCTGAAGGGGGACAGGGCCATGGAGCATCTGGGGGTGCAGACGGGCGTCCCGGACAGCCGTGACGTGGAGAGGGTGAAGCAGAAGCTGATAATGATGCAGAGGACGTACTCACCTATTGATAAGGTGCTGCTGCTGCTGCAAGTGTGCAAGTGCGTCCAGAAGGCCATGGGGTCCTTACACGGCCAGCCGGTGAGCTGGGAGGACTTCCTGCCTTCGCTGTCGTATGTGATGGTGGAGTGTAACCGGCCCCACATCCTGATAGACGTGGAGTACATGATGGAGCTGCTGGAGCCCTCCTGGCTCTGCGGAGAGGGTGGCTACTACCTGACCAGCGTCTACGCCAGCCTGCGTCTGATCCAGAGCCTGGAGGGAGACCAGCCGCCCCCCGCCGGTCTGACCCAGGAGGCCCAGGAGGCGCTGAGGGAGTGGGGCTGCAGACGGAACCGAGAGGCCCAGAGACACAAGGAGAACCAGCAGACTCAGAGGTACGTTCGGATACTGTTCCAGGACGGGGAGCGAAGTGCGGTGCGGACGTTGCAGTGGAGAGCCGGGGAGACCAGCCAGGCCCTGGCACAGCTGTGTGCCGACACCTTCGGCGTGTCGGACCCCCAGCAATACACCCTGTACTGGCGCAGCGGCGGTGAGATGAGGGCGCTGCCGCCCCAGGCCCAGCCACAGGACCTGGCCAGCCACAGCGAGGGCGGCCCCTCGCTGTCCTACCTGAGGACCGACCACGACTTCAGCAAGATGCGGCGGCTGACCAGAGGCGGCGCTGTGGACCTGAGCGAGTCGGTGTGTGAGGAGTGAGTGGGAGGGATGGAGGAAGGAAGGAAGG +>XM_013321598.1 PREDICTED: Papilio xuthus rab11 family-interacting protein 2 (LOC106124683), mRNA +TGATGCGACTGAACGGTGAACGGACTTAACAAACAAATGGTGACGGGTGACGGTCTATGATTATTGACTGCGACAGCTCATCGTTTGTATAACAGTAGTTTTTTTGTACATTCCATCAACAAAAATATTGCTTTATTATTACTATTTCTTTTAATAAAATGTGGGATCCGACACATGTGCAAGTAACAGTCCAAAGAGCCCGTGGATTATTAATTAAAGGTAAAAACGGTACTAATAACTGTTTTGTTACTATTGCCCTCGGTAAAGAAAAGTTTCAAACTTCCGTGAAACACAAAGCTACTGAGAACGTCGAATGGTTAGAAGAATGTGAACTACGTATTCCATCTCACGGCAACACTGCTGAAATCGTTTTGAAAGTTTACGACGAGGATTTTGTAAAGGATCACTTACTAGGTCAAGTATCGATTCCGTTAAAAGACCTCGATGTCTATGAACGTCCAAGAAATCGCTGGTATACATTGCAAGGTAAAACTGGGAAAGAAAGTGATAAAAAAAGAGGCGAGCTTGAAGTTAAAATAGGTTTTACAGTAAAAGAAGGAAGCCTGACAGATCTTAGCAAAAAGGAAAAACATAAATCATCTTTGTCAAGTATTGCTCAGAATGTAGGCGGAAGCCTTATGAGTATCGGAAGCATTGAAAAACGTAAAGGTATCAAGAAATTCGCTAAGAATCTTGGTTCCAAAATTAATCTGACAAAGAAAGATAAGAAAAGTGATACTTTATCACTTGATGGCAGTGTGGGGAATCTCAAAACTCCGACTTTGCTGACGCCCGACCATTCAACACCAAAAAGATTGTCAGGGGAAGCAGACCCTGGTGTAATTAGTGAAGATGAAGATGAATTTGCTTTTGATGATCTGTCCCATAAAAGTTCTGGGAGTTCACTCAATGTCCACACACTACCAAGAGGGCATAAATATACTCCATCGCCAGTTAATGCTTCCCTTGAAAACCTAGGAGGTGGAGAATTCTTAAGAAGATCAACAAGCAGTAACTTAGCAGTACCTGATAAGTTAGCACCTCAAAAACCTGTCCGCTTGAGTTTAGACACATTCACAGCTCCGCAGCTGCCTGCTCAAGTGATAGATAAAAATGATGAGTGGTCCCAAAAACTTTATTCCCGTCCAAAATCCAATAGCCAGAGTACTATTGACAGAGAAAAGTCATCAAGTCTAGAAAGAAATAAGAAACTGGATAGTCCCAGTTCTCTGAAAGAAAAGCCTAGCCCAAAGTTCTTTAAAAAGTTTGGTAACAATAACAAACCAAAGAAATTGTTAGAGGAGCGAATTATTGTTGGTGAAGAGAACATTGTTGAAGAAGATGCTATCAATCCAGCCTTTAATAACATTCCTAAGACGGTCTTGCAACAGTTTGATGGAAAGACAAGAGAAGATTTAATTGTCATGATCTACAACATGCAAAAAGATGCAGAAGCTGAAAAGAAGAAGAATAAAGATTTAGAAAATTATTTAGATGAATTGTTGCTTCGAGTTATGGAAACAACACCAAGAATCTTACAAAACCCATACACAAGAAACAACAGTATGCATATGAGAAACAAGTGAATTTAAAACTTTCTGAAATCAATATTTACAATGTCAGGAGTGAATTATATTAATATGATAATCACTGTTTTGAAAATTTTACAGAATTGAGTCCATCCAAAGTAAAATTATTAATGCAAAGATTGTGTCATAGTGGATTAGTATGTCTAAATATGGTATAATTTAAAATTAATAAAAATTTAAATGGATGCCTTGAGAACTGTGGCACAGTATTATAAAATAAACTTAGGTAAGTACTTGTCAGTTCAGTTATGAGATTTCTAGTTATAAACATGTTACATTATTTCTCATTATTTATTATGCAGGTGAAATTAAAATGTACTTCCTTATGTTCATTAATTGCTAGTAAGATTTCTTCAACCTAGTGCCTTATAAATTTTACTAAATCTGTGATAAAAGCAAATTTGATTTGATACAGAAATATATTGCTTATTTGATAAATTACTATGAGAATTATGAAACTATTAGCTACTAAATATTTCAAACATACTCAATTTATACATAATATGTCTATGTTATTAACTCATCTATATATCTATATTTTTATATCATTAAAAGCAAACATGCTAACACATCACCTATTGTTATGTGACCACTTTAACCTTGGTGCCAAATTTTGTTGTTTGAAAATTGTGGATAATTTTACTACCAAATCAAGATTTTTATTTTTGTATTATCTGATATGATATGGAATGTATTCATTTGTAAATCTACAATCTACAAGTTTTACAACCCTAAAATATAGTAACTTTTTGCTTCTATGGAAATATTATTAATCCCATGGGTGCGGAGTTATTTGAGAATATATTTGCATGTGGAACGGAATAACTTTTGATTGCTTGGAGTATTATGTAAAGGCAGTACATTTAATTTAAGAATGTTATTTATAAAATATTAAAAGTTTAATTTTTGGTTTGACGTCTTAAACACGTCATCCGTTCTTAGGGGGGAAAAGCAAATGACGTAAATGTAATGAAACAAAAAGAAAAGCAAACTGGAAACCATATGTGTGTCACAATTATTAATATCTAAATATAGAAAACTATTAGTTGATTTGTGAAATACTATTATTGCATTGCATATATTTTATGAATGTATATATACTTTATCATTTTTATAACTACAGTGAACCTTTGCTAAATAAGTTTTGGGCAGTATTGAAGTATTTAGGTGACTCTTTCAATTTGTCTGGGCGAATTACAAACAGACGACATTCACAATCGATCAGTTACATAAATATGAGTGGGTGAATCATGTGTTTAGTGATTCACTTATAATGAAAACTCTTAACGAGTCATGTAATAAACCATAGACATACCGGTTTAAAAGAGTTGACCATTATTATTGTTTATATAACTTTTTTACAAAAAATGTAGCTATTTCATAGACAAAACTGAGTTTCAAATTACTTCATAATATGTGCAATATGAATTAGCTCATAAGTAATTATACATCTCATTTATTAATGAAAGGCAATTTAGGTGTAATACATATCAAGGTCCAAGTTGTTATGTCTGAAACATGGAGAAAAAGTTCATATTACTTTGGTACTAGATGAACAAGCCTTTATTTACTTAAATTTATATTAGTGTTATTATTCTTATGTAGTTGTGTTATTTCAGTGCAGTCAGCAAAAAACATCGATGATTTTTAATCTTCCTTCACTTACACTTATGTTCACCAATACACACAGCTGAGCACTGGGCTCTCTGACCTTTTTAAGACTTGGACTGCAGTGAGAATCACACAACTATTATATTTATGGTTGCATATTGAACAATGTAACCTTGATTATATTCTCCACTGAGTGAGTTGATAAATTGTAATTTTAGAAATAGGATACTATAAGCCTTACTTGTAATTCAAAGATTTGTTTAGTGTTTATTTATTTTTTATTTCATTTAAATACTAAAATTGATTTTATTTACTTCCTTTACCATTTTTCATTAACCATCAATTGTTTGATTTTGAACTTATTTTTTATTAACAATTAAACTACTAACTCTTAAATTATTTAGTTCATGTATCTAATAGTTAAGAGTAAAGTATGTTTATATTCATTGATT +>XM_031377017.1 PREDICTED: Mastomys coucha olfactory receptor 2A12-like (LOC116095757), mRNA +ATGAGGATGTTTTCAGGACAGAACCAAAGTTGGGTTTCTGAGTTCATCCTGCTTGGTTTCTCCAGTGACCCCATGACCAACAGCATCCTCTTCATTGTCTTCCTTCTCATCTACCTGAGCTCAGTCCTGGCCATGAGTCTGCCATATTGTGGGCCCAATAGGGTCAACCATTACTTCTGTGAAGGTCCTTCAGTGCATAGCCTGGCTTGCATAGATACCCACCTCATTGAGATGGTGGATTTTGTATTGAGTGTTTTTGTGGTTGTCATTCCCATTTCCCTCATTGTGGCTTCCTACATTCATATTGCCAAGGCAATTCTCAAGATCAAGTCCACCCAGGGCCGCTGCAAGGCTTTCTCTACCTGTGCCTCCCACCTGACTGTGGTCACATTCTTCTATGCTCCAGCCACTTACATCTACATGAGGCCCAACTCCAGCTACTCTCCTGAGCGAGACAAGCAGATCTCACTCTTTTACAATGCCTTCACAGCCTTGCTCAACCCTGTGGTCTACAGTCTGAGAAACAAGGACATCAAGAGGGCATTTCTCAAGGTGATGGGACATGGTAGGCTGGACCAGTGA +>XM_021109787.1 PREDICTED: Arachis ipaensis putative amidohydrolase YtcJ (LOC107613187), transcript variant X3, mRNA +AACTTATAACAGACATTTAGTTTCCGATCATTGGAGATGCTTTAACTCACCTCTTCTCAACATAGTTCCCCCATTTCTCTTCCACTTCCTCTCCCGCTGTCGTTTGTCAGCGCCGCCAGAAACGACTCTTTAGCCCTCCTCGACGTCGTTCCTCTGGTTGAGCTTCGTGCTGCCGTTTCATTCACTGTGTCTGTTATTTGAAATTTTTTACGTCGTTGATGCTGCTGTTCCGAATAACATTAGCACATCAAGACGTGAATTTCATGATTTGCTGAGGCTATTTTAGGAAATTGCTACAGTACTCCTGGATATTACATTGGGACAGAAGAGTGCCCAATGAACTCTTTTCTGAAGCTGCTCTCCATTCCCATAGCTCTCCTCTCCATTCTTTCTTTCTCCTTTCTTCACCCAACTCATTTCTTGGGTTGGAAGGCACTAATGTCGTCTCAGCAAGTGGCAGATTTGGTTGTGAGGAATGGGGTGATATATACAGGTGATGATTCTCTCCCGTTTGCAGAATCCATGGCAGTGGCCAACGGGAGGGTTGTCCGTGTTGGAAACCATTCCTATGTGCAGGAGTTGGCCAGCTATGGAACTGAAGTGTTGGATCTTGGTGGGAAAGTTGTGGTTCCGGGGTTTATTGATTCCCATGTGCATTTCATACCTGGTGGATTGCAGATGATGCAGGTGGATCTGACAGGTGTGAATAATAAGGATGAGTTTATCAGAAGGATCAAAGATGCAGTACAAAGTACAAAACGAGGTTCTTGGATTTTGGGTGGAGGATGGAACAATGATTTATGGGGAGGAGATCTGCCAGCTGCATCTTGGATTGACGATTTCACTCCTTACAATCCCGTATGGCTATCAAGAACAGATGGTCACATGGGCTTGGCTAACTCAGTGGCACTAATGTTGTGCGGCGTGACAAACTTAACAGCTGATCCGAGTGAAGGGACTATAAAGAGGACTCCAGATGGAGAACCTACTGGATTGCTGATCGAATCTGCAATGTCACTTGTTATGTCGCAGATTCCAGAGGATTCAGTAGATAATAGGAGGGAGGCACTGCTTAGAGCAAGCAATCTTGCCCTGGAAAGGGGTGTGACAACAGTTGTTGATATGGGAAGATATTATTCAGGGACTTCAGCAAATCTTTCTTGGGAGGATTTTACAGATGTTTATCAATGGGCTAATTCTATGTCAAAAATGAAAGTTAGAGTGTGTTTATTTTTTCCAATGGAGACATGGTCACGTTTAGTGGATGTGATCAACAAGATGGGTTATGCCTTGAGCGAATGGGTGTACATTGGTGGTGTCAAAGCTTTTGCTGATGGCTCATTGGGTTCCAATAGTGCATTGTTTTATGAGCCGTATGTTGACGATCCAAACAATTATGGCCAACAACTTATAGAGTCCGAAGCTCTTTTCAACATGGCTTTGGAGTCAGATTTATCTGGTCTGCAGATTGCAATCCATGCTATAGGGGACAAAGCAAATGACCTGATCTTGGACACATATGGCTCAGTTGCCTCTACAAATGGACCGAGAGATCGAAGATTTAGGGTAATATGGTTACTATTGAGCATGCTCAGCATCTGGCTATGGGAACTCCACACCGATTTGGCAAACAATGGGTTATTGCTTCTATGCAGGTATACCATTTCCGCTGCTCGGGCAAGCTTCCTTGACAATGATCTGGGATCCTTATCTCCAGGGAAACTTGCAGATTTTGTCATACTAACCACTCATTCCTGGGAAGAGTTTGCTGAAAGTGCATCTGCATCTATTGCCGCGACATATATTTCCGGTGTGAGAGCATATCCTTGAAGGTATTCCATAATCTATTTCAAGTTTTACAATCAAATTTGCATCAGATGTGCAGAAGGAAAGAAGTGTTGTAGCGCCAGTCCTCTGAAAGGTTTTAAATACAGTCATCTTATTTTTTATTTTTTTAGGAAGATTAATACATACGCATGAGAATGTGAACATTATTTTAATTCCATATTGGTGTATTAATTATTTCATATTTGTTCTTGTCATGTGAGTTTTTCTATATTTCTTTTATACGACTAATACTAGGCGTACACCAAAATCAACTATAAAATCAGCCATTGTATTTTTATACG +>XM_010548157.1 PREDICTED: Tarenaya hassleriana uncharacterized LOC104818540 (LOC104818540), mRNA +ATGGGAAGAAAAAGTTCGAGAGGTGATAGCGTTGCCGAACGGTTCTTCAAATGCGCTGAAGCTTATACGTTGAACGAATTTGAAGACCTGTTTAATGATATAAAGGACAGGTATCCCAAAGTTGCGGAGTATATGCAGAAAGAAGAACTTGATCCCGAGAAATGGGCAAGGTGTAAATTTAAGCGTCAAAGGTACAATTTATTGACAACAAATGCAGAGGAATCAATAAATTCTGTAATGAAGAAGGCCAAAAGGTTTCCGATGCTGGGCCTTCTGGATATGTGTGTCTCCAAGACCGTGGAATGGTTCAATAGATATAGAGTTGAAGCAGGATGTGCCGATGATTCACAAAAAATGACACCGCATGTTGACAAAGTGCGCCATAAGAGGTATGAGACTGCATGTACGTATGAAGTCATTGTGCTAAACACTGTTACAGAGGAGTTTGAAGTGATGGGTGAAAAGGGTAGAAAACACTTTGTTAGCATTGAATGTAGAACGTGCAGTTGTAGGGTGTTTGATATCGATAAGATCCCATGCAGCCATGCAATTGCAGCACTTCATAAGGTTGGTAAAGCGAATGTTATACTAGACTTATGTTCTCCATACTATACACGGGAGGCATGGCGTCTTGCCTATCAGGAAACCGTGTATCCGGTCCCCGATTGCTGTGAATGGATTATCAATGACCCGGATGTTACAAATCTTGTGGAAATGCCTCCTATCATGGATGAGAAACGATAA +>XM_032257218.1 PREDICTED: Sapajus apella replication termination factor 2 (RTF2), mRNA +AGCGGTTTGCGTCACTGCGGTGCGCCGGAAGTGGCTGCAGATTCCGTCAGTAATCCCGGAAGTGGCTTCTTTAGGGTTTTGCTGCTGGCTGTGACTCCTGTTCTGCGATGGGTTGCGACGGGGGAACTATCCCCAAGAGGCATGAACTGGTAAAGGGGCCCAAGAAGGTTGAGAAGGTTGACAAAGATGCTGAATTAGTGGCCCAATGGAACTATTGCACTCTAAGTCAGGAAATATTGAGACGACCAATAGTTGCCTGTGAACTTGGCAGACTTTATAACAAAGATGCCGTCATTGAGTTTCTCTTGGACAAATCTGCAGAAAAGGCTCTTGGGAAGGCAGCATCTCACATTAAAAGTATTAAGAATGTGACAGAGCTGAAGCTTTCTGATAATCCCGCCTGGGAAGGGGATAAAGGAAACACTAAAGGTGACAAGCATGATGACCTCCAGCGGGCACGTTTCATCTGCCCCGTTGTGGGCCTGGAGATGAATGGCCGACACAGGTTCTGCTTCCTTCGGTGCTGTGGCTGTGTGTTTTCTGAGAGAGCCTTGAAAGAGATAAAAGCGGAAGTTTGCCACACGTGTGGGGCTGCCTTTCAGGAGGATGATGTCATCGTGCTCAATGGCACCAAGGAGGATGTGGATGTGCTGAAAACCAGGATGGAGGAGAGAAGGCTGAGAGCGAAGCTGGAAAAGAAAACAAAGAAACCCAAGGCAGCAGAGTCTATTTCAAAACCAGATGTCAGTGAAGAAGTCCCAGGGCCATCAAAAGTTAAGACAGGGAAGCCTGAAGAAGCCAGCCTTGATTCTAGAGAGAAGAAAACCAACTTGGCTCCCAGAAACACAGCAACAAATGAGAGCTCTTCTGGAAAAGCTGGGAAGCCTATGTGTGGAGCCACAAAGAGGTCCATCGCTGACAGTGAAGAATCCGAGGCCTACAAGTCTCTCTTCACCACTCACAGCTCTGCCAAGCGCTCCAAGGAGGAGTCCGCCCACTGGGTCACCCACACGTCCTACTGCTTCTGAAACCCACCCGGCCACTGCTCCTGCCCCAGAAGGCTGTCTGGTTTCCACCTAGGCGGGTCGCTGTGCACGCTGCTGTGTGTTCTTTCTGTACATCATAAAGCTGACCTGGCCAGCCTTGGAACTGGTGTGGCCACTCTTGTTGTGAGGTGCGTGTGTTCCAGGGGGGACATAGGACGGGCTGCACCGTGCCTGAGGTCTTGCTTGCTTCCACCTGCAGGTACGCTTGGTCGTTTCTATGGCCAGGAAGCCCTGCAGGCCGCACTTTTTATGCTTCCAGTAACGAGAGATCCCGGAGTCTTCACGAGAGCAGAGTTGGCACATATTAACTAAAATTATGATTTTGCTACCAGCAATAAATTAAGTAGGCCAAGTGAAACTGGGCTTTAGAAAGGGTGGATTTCAAATACACTGTGCCCACTAGAAGCTTTGAAGGGCCTCATCCCTCTGCTCCATCCCTGGGAGGAGTCCGGATCCTTGTTGGTCTAGCTAAGTACTATTAGGGGAGTCTGCCCCTAGCTCATCATTTGAAGACAGCAGAGTCTCAGTTGGGCACCAGTGATTGGGTTCAGAAATAAAGTTGGTCTGCCTCTTCTC +>MG651402.1 Priestia aryabhattai strain FJAT-46583 16S ribosomal RNA gene, partial sequence +TGCAGTCGAGCGAACTGATTAGAAGCTTGCTTCTATGACGTTAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTGCCTGTAAGACTGGGATAACTTCGGGAAACCGAAGCTAATACCGGATAGGATCTTCTCCTTCATGGGAGATGATTGAAAGATGGTTTCGGCTATCACTTACAGATGGGCCCGCGGTGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTACGAGAGTAACTGCTCGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGAAAAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGGCTTTTTGGTCTGTAACTGACGCTGAGGC +>XR_007238697.1 PREDICTED: Ziziphus jujuba var. spinosa serine/threonine-protein kinase ATG1t-like (LOC125420078), transcript variant X3, misc_RNA +AAAAATAAATGGAACGCGTAAGTCAATCCTGTTGTAACCTGCGAGGTTGTTGATGGAAGAAGGGGAAAATGGAAGAAGATGGAACAACTCTCTGCAACTGCGACGGCATTAGAGTGGGAGACTATATTCTAGAATCAAAGCTTGGAGAAGGCTCTTTCTCTGTAGTTTGGAAGGCCCAGCACAGTCTCACTGGCCAACAAGTGGCTCTGAAGCAGGTCTATCTTTCAAAGCTCAATAGGCACCTCAGAAGCTGCTTGAACTGCGAGCTTACCTTCTTGTCCTCTGTTAACCGCCCCAACATAATTCGTCTCTTCCATGTCTTCCAGGCCAATAGTCCCCATCCTCCGGGAAAAAGTTGCATCTTCCTGGTCCTGGAATTTTGTGCTGGTGGGAACCTAGCTTCTTATATCAATCAGCACGGGAGAGTTCAAGAACAAATCGTTGGAAGATTTATGCAGCAGCTTGGGGCTGCTTTAGAATTACTTCACTCTCACCACATCATTCACAGAGACTTAAAACCAGAGGTAACATCCGTACTATCAGGGGCACTGAGGTTCATTTCTTCAATGCTTTTTGGAAGCTTGTTTTGGGAGTTTTTACAATTAAACAAGTACTTACACCAAGTGCCAACCTTCAGTTTGAAGATTTTAGAGCGCAAAGTTTGGAAAAATCTAAGGATTTTTAACAATTTCATGATGAAGCTTTGGTAAAATTTCGAGCTAAAAAGAAAAAAGCCTACCAAGAAGAAAAGAAGCAAAAGGGTCGTGCAACTTTATTCTAGGCACTAAGGCTAATTTCTTCAATACTTTTTCAAAGATTGTTTTGGGAGTTTTTACAGCTAAACAATTACTTGCATTCAGGGTTGTTGAGCTTCAATGTGTAAAAGATGGAGTAATTTGGGTTTATGGTAAAAGAATTAAACAATCTTTTGAGGAGAAGAGCTTAAGCATCCAATTCTTTCATCACTTAGCTTTATCTAGCGAGAGAGGTAAAACCAAGCTCTTATTAGGATGCAACCCAAATGTCTCTTACAATTTCTCTTTATTTTTAAGTTTAAGTTTTTATTTTTGAAATTTAAAGTTTGAGTTTGATCATTTTAGTTGTTTTCATAATTAGTAGAATTTATATTTTTGAATTCCATCTTGTTTGACTAATTTGGGTTTATGGTAAAAGAATGAAGCAATGTTTTGGAGGAGAAGAGCTTAAGGATCCAACTTTTTCATCATTTGGCTTTGCCTAGCCAGAGAGGTCAAACGAAGCATTTCTTGAGAGGCAACCCAAGTGTTTCTTACCATTTCTCTCTATTTTAAGTTTTTGTTTTTGAAATTTGAAATTTGAGTTTGATCATTTTAGTTGTTTTCATAATTAGTAGCATTTATATTTTTGAATTTCATCTTTTTGGCTAGTAAATTGGGAGTTTAAAACCTCAAATTTAGATGATTAAGTTGGTCAATCAAGAAGTATTCAAGAATGGCACAAAGTTAATGACCAAGGTGATCTAAATGGGGGTCATCTCACTCATCCCCGGAGAAACAACCTGGATGGGGC +>XM_053020070.1 PREDICTED: Gossypium arboreum probable pre-mRNA-splicing factor ATP-dependent RNA helicase DEAH9 (LOC108487114), transcript variant X2, mRNA +TATTTGGGCTTAGAAACCCTAAACCGAAGCGAGAGCGAAGCTAAATAAAAAGCCCGTTTAGTTACATTACTGAATTTTGATTCAATTTCCCTCGAATCGGGAAAAGTAAAACTGAGCTTAAAATTATGGCGCAGTTCTGGAAACCGGGAACCGAGAAGCCCCGCCTCCTCGAGGACGAGGATGGCGGTGTTATTTTCTTGTCATCTTCTTACTCTTCATCTTCTTCTGGATATGGGTATGTGAGCATTGAGAAGCAAAGACAGAGGCTTCCAGTTTATAAGTATAGAACTGCTATTCTTTATTTAGTGGAGTCTCACGCTACTACCATTGTTGTTGGTGAAACGGGTAGTGGTAAAACCACTCAAATTCCACAGTTTTTAAAAGAAGCTGGTTGGGCTGATGGTGGGCGTGTTATAGCTTGCACGCAACCAAGACGACTAGCTGTGCAGGCAGTTGCTTCAAGGGTAGCTGAGGAGATGGGGGTCAAACTTGGAGAAGAAGTTGGTTACACAATCCGGTTTGAAGATATCTCTAGTCCAGATCTTACTAGGATCAAATTTCTCACAGATGGAGTCTTACTTAGAGAAATGATGGATGATCCTCTTTTGACTAAGTACAGTGTCGTTATGGTGGATGAGGCGCATGAAAGATCCATTTCAACAGACATTGTACTTGGTCTTCTGAAAAAGATCCAGAAACGTCGACCGGAGCTGCGACTGATTATATCTTCTGCTACGATTGAAGCGAAATCAATGTCTAATTTCTTCCTGTCCAGTAAAAGGCGCCAAGCATTGGAAGGTGAGGAGCTTAGACCTAGGTTGGAGCCTGCTATCTTATCCGTTGAGGGTAGAGGGTTTAATGTGCAAATTCATTATGTGGAAGACCCTGTACGAGACTATGTTCAGGCTGCTGTTTCAACAGTGCTATTGATTAATGACAAGGAACCACCAGGTGATATTTTAGTATTTCTTACTGGTCAAGATGATATTGATGCTGCTATTAAGTTGCTTACTGAAGAAGCTCGAAGCAATGGGAAAAATTCCTCAGGGTTGATTATTTTGCCTTTATACTCTGGACTTACACGTGCAGAACAGGATTTGATATTTTCTCCAACTCCTAAAGGCAAGAGAAAAGTAGTGATATCAACAAATATAGCAGAGACATCATTGACTTTAGAGGGTATTGTCTATGTTGTTGATAGTGGCTTCTCAAAACAACGATTCTACAATCCGATCTCGGATATAGAAAATCTTGTGGTGGCACCCATATCCAAGGCATCTGCTAGACAAAGGGCTGGTCGAGCTGGTAGACTTAGACCTGGGAAGTGTTACAGATTGTATACAGAAGAGTATTTTCTCAATGAAATGTCTATTCAAGGAATTCCTGAGATCCAAAGGTCAAATCTTGTTTCTTGTGTGATTCAGTTAAAAGCATTAGGCATTGATAACATTCTGGGCTTTGACTGGCCGGCATCTCCATCTCCTGAATCAATGATCCGAGCACTTGAAGTACTTTATTCACTTGGAGTCCTTGATGATGATGCTAAACTTACTTCACCAGTTGGTTTTCAAGTTGCAGAAATTCCACTGGAACCAATGATCGCAAAAATTATTTTATCTTCAAATGAGCTTGGGTGTTCTGATGAAATCATAACTATTGCTGCTGTTCTCTCTATCCAGTCTATCTGGTTTTCTGCTCGAGGAGCACAAAAGGAACTGGATGAAGCCAAATTGAGATTTGCTGCTGCTGAGGGTGACCATGTTACTTTCCTGAATATTTACAAAGGGTTTCTCCAGTCTGGCAAATCTTCAAAGTGGTGTCACAAGAACTTCATAAACTACCATGCCATGGTGTGTATTTTTATTTGGGCATTTTTGAGAATTTAAGATACTGTCCAGTTTCACTCTGTTACCTGTCTTCAAGTACAAGAACATTAAAAAGGTAATGGAAATTCGGGAACTACTCAGAAGAATAGTGCTGAGGTTGGGCATAGTCTTGAAATCTTGCGAAACAGATATGCAG +>XM_020956221.1 PREDICTED: Drosophila serrata CTD nuclear envelope phosphatase 1 homolog (LOC110186899), mRNA +AAGCCCTGGCGATCATTGTCAGTTTTTCAAATTCTGTAAACTTGTAGAAAAATAATTAAACTCTTTTCAAAAAACCTCACTAAATTAGTTTTGAGATTATTTAAGATTCTTAATGGTATTAAGTTAATTGGTTTCAAATTTAATCATAAGCTGGTTGAAATCTTAATAAAACCATGACTGGCGACTCGTTTATGTTTTTCTCATATGGACTGATTACTTTGGCCCTGCTGCTGGCGATCATTTGCCTGTTTTTGCCCAGGGTGGACAGGTTCATCAAGTTGTCAGCGGGCAGGATATACAAGATCTATGCAGAGTACACTCCTATAGGATACATGATCGATGATTCCTTGACTCCTGTTTCCCGACGCCGTCTGCAGCGGGTGGCTAAGAAGACACTGGTGTTGGACATGGACGAGACCCTGATCACGGCCTGGATTCAGCGACAGGACAAACGTCGGCAGTCACCACCCAACGTTCCCCACGACTTTAAGTTCGTGCTTTCGGATTCCAAATATAAGGGCAAGGTCTATGTTTATAAGCGTCCCCATGTAGATCACTTCTTGAACTGCGTATCCAGATGGTATGACCTGGTGGTTTTCACCTGTGGAACGGAGCATTACGCAGCACCTATTCTCGATTTCCTTGATAATGGCCGTGGGATTTTAACCAAGAGGTTTTACCGTCACAACACCATCGATGTCGCTGGCCTAAAGGCCAAATATATATCGCTGTGTTCGCCTGACATGGCAAATGTCCTGCTGCTAGACAATTCCAATACAGAATGCAGCTTCAATGTGGGAAACTGCATCCCAATCCCATCGTATAAGATTGGGAAAAAGGACGAAGCCCTTCTCGACCTCCTGCCATTTCTGGACGCCCTGCGCTTTACAAGAGACGTGAGATCGGTTCTGGGAAAATGCACTCGCTTCGAGTGCCTTACCACGCTTCTGGAGAGTCTCGGCAATTACGATTAA +>XM_046865945.1 PREDICTED: Silurus meridionalis translocase of inner mitochondrial membrane 29 (timm29), mRNA +TGAATGGGACCTGCACCCTACGTAGCGCCCAGTATGTCCACTAGATGGCGATTTGGCTTCCGTCCCGGACGCACGCTGTGACTGAGACGCTAACATGGCGGCCTTGAGGAGGTGCTGCTCCAGTGTAGCTGCTGCTGCTGTCAAGAGCAAGGGGACGAGATGGGAGAGACTGTGGGACAGCCGTGCAGGTGTGTGGTGCCGCAGTCTTCTGAATGATTACAAGGAGGCGTGCCGTGAAATATTTGTTGGAGCATATGAGCGCCCTTTGAAAGCCAGCCTTTACGCGGCTTTGCTCGGAGGCACCTACGCCTGTTGCTACACCAACCCGGATGAAACTTCCTTCCAGGCACGGATACTAGAGACCTCCAACCAGCTCGCCCTCCTCTCTCCGTGGATCCGTAGCGGCACGTCTGACGGGCACGTGCAGAGCTTGGCCAAGCTGCGCAACGAGGGCCGTTTGCGACACATCAGCCTGGGTATCATCTCATTGGCATACGAGGCCGACTACGACCCTGAGTCCAGCCTGTACGAGGCAAGGTGCTCTGCGCTTTACGTACCCTGGGCACAGTTGCGAGAGCGGGTGCTGGACGTAGGCTTTGCAGGCCGTTGGTGGGTGTTGAAAAAAAAAATGGAGAACTATGATATAAATGAGGAGGAGTTCAAGTATCTTCCGCCTGTCCTGCTGGCCACAGCCCCGCCTACGGTACAGGAGACCGAGAGAAACGAAAGACTGCACCAGGAGTCCTTGAAGGCACTGGTGATTGAGGGAGAAGAATAGATGGGGGAGGGTAGCAGGTGAAGGAGAAGAGAGCAGTACACAACAGAACATTTGGTAATGTGAACAGTTCCTGATTGAGACCTGTGGACATGTCCTGTATGGTCAAATAATTTGATGTATAATGGCCTAAGAGGACGTTTCTGAAATATTTATTGTGGTGAAACATAATGCTGTTTATCCGTTTGTCTTGTGAGAAAATGAATCTTTGGAATCTTTGA +>XM_039776918.1 PREDICTED: Perca fluviatilis serine-rich and transmembrane domain-containing protein 1 (LOC120543720), mRNA +AGGGAGGGCAGAGACAGAGGAAGTCACAGAGGGAATGAGATTAGAGCGAGCACTACTCCCTCTCTTCTCTTCTCTCTCTTCTTTTCTCTTCACCACTTCAGTAAAAAAACCCATAATTCATTAGTTACAGCCTCTCAATTAGAGACCTTGTGTATGTGTGTTTCCTTTTGTATGTGAGCCCATTCATAGAGAGAATCCACATCTGACAGTGTCTACTCCAGCTGTAGTGCATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTTTGTGTGTGTGTGTGTGTGTGTCAACCTGAATGACAGAAAGAGAGAGGGAGAGGGAGCGGACAGGCTCATAGGGAAGATCTCAGCAGGGGCAACAGATCTGGATTTGCTCGGCTGAAAACACCAAACACAACAGGATGGATTTCTGCACGACGTGAACGCGACCGAGGAACACCCGCATCACACATTAAAAAAGCCAGGATGTCAGGAATGGACGCGCTGTTGGTGGACCGTAATGAGACTGAAATCTCTCCAATAGACAATGGGACCTTCCTCCGTTTCTCCCCAACCTCTGCTTCCACATCTGCGGCTGCCTCGTCACCAGGACGTCCGGGCAACGTTTATGTTTACGTGTGGCTTTTTTTCGGCCTGCTGGTATTCCTCCTGACGCTGCTCATCATCTCCCTCCACAGGCTGAAAAACATCATCTCCTCCTCCTCGTCTGTTCCCGACTGCAGCAGCGAGGGAGGGAGCTCCTTCACCAACATGGAAATCTGTAGCATCTCGTCCCAGAGGTCCACCATCTCCTCACTGTCCACCTAAGGGAGATGGGATGGAGCACATACAGACACATAGACATACAGTATATGTCCATGTGCTTACATGGTAAGCATGCACACACACAAAGCCCATGGAGGTCCAGTGCCTTCTCACTGTGACATACAAATACAAAAACACTTTTTCAGCCACAAAGAAGCGGACAGCATGGCATTATAGTACATTCCGTGCATGTATATTCTATTTCCGGTGGTCCAGTGAGTCAGGTATGTCCATGCGATTTGCATAGGCACAGGTGAAATATAGCTCACAATGTGATGAAGAGGTATTGAGGGTTGAGACTGACTGAACCCCTTTGAGCCTTATTTCAACGACAAAGACAGATGAACCTGAGAAACTGCTCTTCCTCAGCAGGAAAAAGCATTGGAACTATTGTCTTTCTTCACTGTTTTTGTAAAGGTAATTTATTGTACTGTACTTGTCATATTTACTGTGGAACAAATAATATTGCTTTATAGTGCGTACAGCATGTCTCATAATGTCTGTAGACTACAGTACATTGCCAAATCAGAATTACAATAATATTTAAGACCATACATTGTACAGAAATGCATGCTTGTGTCTCAGTTGTTCAGTAAGGCTTTGGGAACTTTTTTTTTTTTTTTTTACCACTTGGCAAATTTCTGTATGATGCCCCTGGGGAAAGGACAAGACATACTGCTGTGGATGTAAAGGTGAGAAAGAAATGAGGGCTGTCTCTTGGACTCTTGACAGACAGTCTGACTGCAGCTATAGACCAGGTCAAAACTGGCATAAACAACAAGATGAAATTCTGGTCCTGAAAGACAGTTGCAGTCTCCATAGTGACTGATGCTCTGAGAGCTCTGTGCAGCTGTCAGCCTTGTCTGTATTCCAAGTATAACTACAATAATGGTTGTTTTGGCTCAACATACATCATTTTTGTTTTAATACCGTAAAATGTTTCTTTGACATGGCAACAAAAATACACACTCGAAACAAATTATTAGAAAAAGATTCATTCATCTTTGTCACACTTTGCCATAAAATTCAATATGAACTGATGGCTTGTAGAGCAGCGATGACGGCTACGAGGCCACGGACAATACAAGGAGTCATATCTGTCAGTGTTCTTATCAACAAATCCTAATTTTTTTCAGTTGATGGTACTGTGTCAGCCAAACTCTTTGGTTCCCCAATCACAGTGTTGACTATTGGTTCATTATCTCAGCTGTTGACAAACATGTATGGTTATTATGTCTAGAACCTGTTTGGTTTAAAGTACAAAAGATGTTTTAAATAATAGCTAAATGTTGGTTTTCAAGTTAACCAGGAAGTAAACTCTTTGTTTTAGCCTGGTGATGTTAAAAGAATAACCCCCTGATTGAACCCCCTGACTGTGTTTTGTTATATTAAAGCTCACATTTTCAGTTCTAGTCCTGCAAACACAAATCATTCAGTGAAAGTAGATTCAATTATTTTCCTTGCATGATTTACTGTACTGGATGTAACTGCAAAGCTGACTTTTGTCCCTGGATTAAATGAATGCAACTAAGGATTCCATCCTCTCTTACACATTGTACATATTCTCTTTTTTCATGCTTGTAAGGGATGTGTTCCTACTTGTATCTCTATTTGATTACTGGGTCTGCTGCATAAGGTGCTTTAATATCCTGTTAACGGAAACTCCCAGCACCATGAGCCCAACAAGTCTACAGCAACTTGTGACGCATGCAATTAACCAAACTCACACCTGAAACTTTACACAGTTTATCTTTAAGAAGCTCCACAGGAGAGGCTTTGAGTTACATGACTTGCTTAAGGGAACTTGAGTTCTTTCATTGATTCGATTTAAGCAGGAGACAATGCAGGACCAGATCCTACAGATGGAAAAAACATACAGCTAGTGCTGGAAATAGAAACTGGACACGTTGTTAAACTAACGCTGCTCTGTACGTCTTAGGTCTGTGTTCTTAGGAGGTGCTGCAGAGAATGACGGACAGTAACAGACTGAAATGTGTTTCTTGAAATCATCTGAAGAAGACTGGTGTCTAGTGAATGCAACAATAACACACCCTTGTGTGTTAAAAAGGAACCTTTTAGTGAAAAAGCATATTTGACCAATAAAAAGTAAAGTCATCAAA +>XR_006253100.1 PREDICTED: Puntigrus tetrazona uncharacterized LOC122362386 (LOC122362386), transcript variant X1, ncRNA +GTGTGTGAGAGAGAGAGAGTAAGAGTCCTATCATGCCTGTGTGCTGAAGGTAAGGGTTATTCCAGTCAAGCACTGAAGTCACTGAGGGGCTTGTACATGTCGGTTCTTGTCAGACGCAGCAGCTTTTTCTATCTCTCTTTCTCCCTTTCTTCCCCTATTCTTCCTGCCGGCCCGCTTTTCTTTTCTTTCTGTCTTTGTCTCTTTCCATCTTTCCTCTCCCTTTGAGTCCTGCTCCAGTAGACCTGCAGGTTTTAATGGCTCTGTGAAACAGTATAAAAGCAGCGGGTGCATTGAGTCATTTTAGCCTGAGGACTCAGACTGACTCTGTTTGTCTTTCTGTTGCAGCTGTCACTCTGCAGCCCTCCACATTCACAGCTTCACTTAAACGCCAAAATAGAGAGATAAAATGGTCGTGGTCATTTTATTGTGCATGGAATAGCCCTCGCCTGCATCCTCGTATCAATCAGTTAAATGAGGTGCTCAGACAGGAGCACAGCATGGCAGTAATAATGGAGTAGATTCTAGAGTTGATGGCCATAAGACAAGCTGAGAGCTCACTGTGCTATGGTCAGCTACATCATTAAACACACGCATGCACTCAGCTCCGAACGCATCTAATTTGACAAAATTGCTAGAATAATAATGAATGATGTTTGCTAGACACGTCTTATCACATCATATCCTTCCTAGTATACAATTTGGTGAGGTCGGTGCAGTCAGTACTGGACTGGTGAACTTTTCCCCTTCATGAAAGCACACAGAAAGTACTTAAATTGTGAAACTTGTGATTCATTAGCCACTATAGGCCTTAGTCTGAGAATGGCCATATTTAATTTTTGACAGCAATGAACAGGAGGCTGAGGGTTAGTACATCGTGTTCAGTGGATTGTACTGTTTAACAATATACCAACTGTTCGGCTGACAAAACAACTTTCCAAAAGACAGAGACTCCAGTTTTAGTTTTAGTTGTGAACGTAATCTAGGAGCTTTGAACAGATTGTAATCTCCCACATTTCATCCTGGGAAAATTCAATATGGCATCTGCCCTGATTAAAGTGTACATGTAAATAACTAGAAATGCAGTAAATTTGGTAAGCTGGTTAGCTGTTTTGAGCTGGTCAGCAGGCTGGTTTTAGTCGGGTTTTGCCACATTTCCCAAATCATGCCAGGCTGGTCTTAGCTGGGAGACCAGCTTGAACGACCAGCTAAAACCAGCCTAGCCTGCTGGGAGACTAGCTCAAACCAGCCACTTCTAGCTTAAACCAGCTAAGACCGGCCAACCAGCCTTTCTTTTCTTCTTCAGCAGGGCTACCACTTCACAATAACAAGCTGCATAACTGACTGTTTCTTAAACGTTGGCTGTGACCGCCTTGCACAATCAAAATAAAAATGGAAGTGCCCATTCTTACTTTAAAAATAAGGACACACTCAGACATGTTTGGGTCAACTCTGGAATGTAGTGTCGCCTTAAATTGAACATTTAAACATGTTGTTGTTTTTTCAAACCGTGCAGTAGTATGTGACATTTTCTATTTGAAAGGAATGACATTTAAAAGAAATGTGTTGCCACTGGCTTTAGCATTTCAAGAAATATGTTCAAGAAACAAAATAATATTTTAACCATTTATCAGAATTTAAAAAGGAACAAAAGGCGATTTTGTTCTTGTTTTCTCAAACTGTCTAAAGTAGATGTATTAATTAATCGTCAACTCGTGAAAATAATCACGAAAACCACCAGTGACCATTTCGCTATTAAAATGAGTAAAGTGAAATGGCGGCGTCCATAATGCTGGATGGTGTTTTCACGGTTGATCCCACTTCAGTCGAGTCTAATAAGGCTTAAACGCAGGAACGCAGAACTTCGGACACCACATTTTTTTGGAGTAACTCCTCTAGAAGACGGACCGGATCCAAAACCTCCGAATAACACACGGTTCCTATCTCCGTCTATATCCAGCACCCCAGACCAGATGCTTCACAATTACCCACAATTCCCCTGGAATTGTTCCTGCCTCATTGAGTCTTCAGCCAAAGTCAGGCAACTGCAACTAGTCAAAACACACACATACACACACACTACAGGGCACAGCCTGATGTGACCGCCTCTCCCCACCCCATCTGTCAGGATGACGTCAACTCTCTTCCGTCAGACAGGTGGTATCACCTAAGACCCCCCAGCTCTGCCACTCGACACAAAGTCATCCATCACCACAGCAACAGCTCCTGTCATTGCCTGGGAAGCGAGGGACTGCTAGGGCAGATGGGAAGAGAGGCAGCCCAACTGGTCTTCCAGCATCAGGTGGTCTGGGAATGATAAAGAGAGACTGAAAGAGAAAGAGGGCATCTTCCTTTGACACCAAGAAGTTTAAAATGGGGAAAAAATAACTTTCTTTTTGACACACAGACAGTAATGACAGGTGTGTCCGTGACTGGAGCTCCCAGCTGGAAACTCCAGAAAGAAATGTCCAAAGCCTCCTCAAAAATAGTCCGAGCTGACCCTTTTTGTGCAAAACCTCTGGCCCACAACATGGACAACCCGGAGATGAAGGGTAAGAGTTAGATGTGCTTCCTAGGAAGGTTTTGACTGTGCGTGACTGGTGTTGGCTGTAAATGCATGGAAATGTTTCATCACAGGTCAGTGGCATCTTTTCTGCAAGACAGCAGTACCGTATGAATGCAAGTGACCTGAAGGAAAAATTTCAAATCTTTCAGAGTTTCCGTTGACATACTGGAGACATTTAAAGAGAGAACACTTATCAAGCTGTATTCAGGCATAGAGAATGCGTCCCACATCTTAACGACACAATGATGAAACAAAAGAGCATATTCAGTACATGTCTGATTGCACTAAAATGCCATAAAGAGAGACAAGGCATCTTTTGTTCAATTCTGTCAGGCATCAAAATGTCTGGTCCATTGCTTAGCTAAATATAGAATAAAGGAGGGCAGTTATAACACTTCTTACTGCAGTGGATATTTCTAAAGGAAGGTTTATTTTATTGAGTCTTTGTGTTGAATTATGTTGCATTGACACACACAGTCTTTTGAACATTTCCACAATTATCACCCAAATGACAAAAGTTTGTGAATATGTGTAGAGCGAATGAGAGAGAGAGAAAACTATACTATAATTGCAGAACTTTTGTATAATTGCGTACCTTAGTAGTATAAACATATATGGCTAGGTTCGTATATATTTGGACACTATACAATTTTAAACATTTCAGTTCTGTATGCCACCAGAATATAATTATAAAATAAATTAATAATAAAATATTAATAATAAGGAAAACATCAATATGAAACTGAAGTGCAGACATCAAGCTGTGATTGGAGGGGTTAAACAGAAATATAAGATGTTTGGGAATTACAACCATTTTTATACACAGCCCCCCCATTTTCTGGGGCTTAAATGGAATTGGACAAGTAAATAAATAAAATATATAAAATGTTAATTTTTAATATTTTGTTGAGAATCCTTTTCAGGCAATGACTTCCTTAAGCCTTGTTTGTTTGTGGGTCTTTTCTGCCTTTAGTTTTAACTTCATGGAAATGGATGGAAATCAGGAGATTGACTTGACAATTACAGAATACTCCACTTTTTTTTTTTTTTACCTTTAAAAGCTCCTGGGTTGCTTTTGCAGTATGTTTTGGGTCATCATCCGTTTGTACTATGAACTGCTGTCCAATCAGCTTTGCTCCGTTTGACTGAATCCGGGCAGAGAGTATATTCCATGCATGCTCACGCCATCACACTACTCCACCATTAACAGATTATATTTTATGCTTTGAATTGTGAGCTGTATCAGAGTGTATACTACAATTGCACTCCTGTCGGCAACAATACATTTGCATATTCGAGTTTTGTACTATTTAATCTGCTTCATGATTCAGGGTTTGTGTAGCTCAGTTCGTAGTGAGTTGTGCTATAAGATGAGATGCAATCATGCGAACATGGGTTTGAACCAAGAGAATGTGTGGCCTCATAAAAGGTATATGTCCTTAATTTATGGTTTTACACAATTTTTTGTAACTGGTAGGTTTGGGGGTGGGGCCAGGTGTGGTCATTGGAATGAATTACACCTAGTAAAATCTGTTTTAATCACTGTGACTTTGGTGTAAAAAGTTCACACACTGCATTTAAACAAAACAGGCATTTTGACTAGTAAGGACAGTCATATAAGTCATTTCATGATGACAGATACAACACAACACTTTTACTTTTTACGCCTGCTACAAGGACGCTTAACTTTTAAACATTAAAAAAAGGTCTTAATAAGGTACTTCCACAAACAGGCTCGTAATTGAAATATATTTTGGTCAACAGATAAAATAATAAAAACTGTACCTGTGTACAAATATGCATTGACCTAAATGTATAATTAAGAGTGCAGCTTGTTATGAATTTCTATCAAACTTATTACCGTTGTTAATTGAATTTTCTTTCAAATTTGGGATTAAAAATCACTAAGTACACTCCTCAGAAAATAGTCGTCTTTTAATAGGCACAAGAAGTGATAATTACAAATTCTAAAACTTTTTTTTTTTCAGTGTTTGTTTGTTTGTTTTAAGAACTTGAAACCTGCAGCACCAACATGCTTCCCATGAGGTAATAAAAGAATGTTTTATTTGAAGCCTTTTTATGTGTAGATCAAACCACACCATTAAAGCACGGCTTTTTTGCCTGTATGTTTCATCTCGGGTTTACACATCAACAAAGCACTAATTAGCAGATGACAATCACATCAGTCCTGTTGTCACCAGTTTAAATGACACTGACAAACATTAGGGACCAGATTATATGCTTTAAACAAACACCACTTCTGTTATTGTAATGACTTCAGAATATAATAATTGCATGCTCCCAAAAGCTACACCAAATGGCACTTTGCAAATCTGCTGGGACATTTCTATGGGTAAATTCCAGGCTCTCTGATAACCATGTAATGAAATGTCTAATGTAAGATTTACTGTAAGTTCTTATTTCTAACAACAAAAATAATATAAAAATAGCTATATTGTGATTATCAATCTAGTAATTATTCTTAAGAAATGGTGGGGGAAGATGTAA +>XM_001704125.1 Giardia intestinalis Myotubularin-like protein (GL50803_008210), partial mRNA +ATGGTGCTTCTTGACGGGGAATTTATCGTCTTTCAACCGTTCTTAGCTGCTACATCCATACCATCTTACACAGAAGGAAATCTATGGCTTGATCCTTCCGAATACGCAACTGCCACAACCAACTTGCCTCCTTCAAACGGGCACCTTCTGGTTGCAGGACAGCTGTATCTGAATATTGTGCTGACGAACTACCGCATGTTGCTCTTTAGAGCAATTAGTCCAACGGAATTTACTCCCTTTGCAAGTATACCCCATTTTATGGTCGTTTCTATTTCTAAGATTGGAGGAAAGAAGTCACGCGACGCCTATGGTGTGCTAATTAGCCTCATTACACCTCTACAGTTTGCCGTCTTTTTGCCTCGACATAACAAACAGCGCACTATCTTTATCGGTACGCTACTAAAGTACGCATCACCCAGGCTCACTCTGACACACCTGTTTCCTTGCTTTTCTCTTTTCACGTCTCCTAAGGCAGAGAAAGGCTGGTTTATATACGATCCATTTGCAGAGTACTGTAGGCAAGGCGTGGGGACGCCGCGTTTAGATCTAGAGAAATTCATGAAGCCCTTTGATCTATCGGTGGTCAAGCGGCCACTAGGGACGCTTGGAATCAAGGCCTCAGATGTCAAAGACGGCATGTACCGCATTGTGACCGGAAACCCAAAGCTCATGGTGTGTATTCACGAGTATGAAGAAATGAGAAAGGAAAAGGAGCGGGCGCTCCCTTGTAATCCTGGACACGTTCCCTTTTGGTCGCTCACCGACGCAAACTTTGATTACTCAGTTTGTAACACTTATCCTTTCTTACTAGCAGTTCCTAGTCGTTACTCAGGAGAGAACAATCTTGACGCACTTCAGCTCGTTGCTGGGAATCGTTCTCATAGGAGACTCCCAGTGTTGGCGTGGAAGGACAAGGATGACCGCTACGGGGTCATTCTGCGTTCCTCTCAACCCTATAACCCAACAAAGAAAAGCGATAGCAAATTTGTGGCTGATAGAGCATACCTGCAACACATATGGCAACACTACGGCGCCCTGCATAAGAAGGAGAAGCTCTTAGTGATTGATGCTCGGACAAGAGCTAACATGCAGATGAACCAGTTTGTTGGTAGGGGAACGGAGGGGTATCCCTTTGTGCATGTGGAGTTTCTTGATATACCAGGATGTCAATACATTCAACAGAGGCATATTGCAGACTGTGCATTGTTTGCCTCCACACAAGATAATTTTCAATATCATCGCTTGGGGCGCGTCGGTGGCATTACTGAGGTACTCGGAGTTGATCCGCGTAACTACATATTGCAGGACACAGAGTGGATGAAGGTAGATGAAGTACAGACGACAAGGAGTCAGCAAGATTTCGTGGCAGATAATCAGCCACCTGCTGAACTTGTTAGTAGGGATAGAATCAGGGAGGATGGCGTTGATCATGAAAGCTCCGAATGTGATATCTCAGGGGTAGAGCAGCTATCTCCAAGTATAGACTTTAACACGATTGCAGTACCGCAATATGTCGGTAATGAAAATGTTGACCATAGCTGTCAGGCGGGCTCCTCCGTTGTTATGATTAGGACAAAATGGACTAGCACACGTCAGCTTGAAGAAGTACACAGACTTGTCATTGCAGGAGCCGTTTCTATATGCGAAAACATCATTCGAGGAACTGTGGTTCTTGTTCACTGTTCGGATGGCTGGGACAGGACCGCCCAGTTAGTCGCTCTTGCGATGCTTATGCTTGACCCCTATTATCGATCTATGAATGGCTTCTTTGTCTTAATAGAAAAGGAGTGGTGCTCGTTTGGACACAGGTTTTCTTCACGGTGCGGAATTCTACAAGTTAGCAATCAGGACCAGGAATCTCTTGAAGACGCTGATAGAGGAGACCTCTCATCGAGTCTATGCAGCCCTGTCTTCCTCCAATTTCTGGAGCTCGTCTACTACCTTTTGAGCGCATATCCGTCAGAGTTTGAGTTCACCGAAGAGGTTCTCAAGTACCTTGCCTATCACACCTATAGTGCTCGATTTGGGACCTTTATCGGCGACTGTGAGCTAGATAGGCTCTTGTGCCAGCTTCCTATACGGACCGCCAGCATATGGGATCATCTGTTGGCATGTAAAGATCACTATACAAACAAAGGGTACTCGCCAGAGTCTATTCTGAAGAAAAATGGATGGGTGTATCTCAAGCTCAATTGCAACAGACAGCTTCCTGCTTGGCCAGGCTATTGGGAGCAGCACATACCTAAGCCTTAA +>XM_022698119.2 PREDICTED: Brassica napus long chain acyl-CoA synthetase 1-like (LOC106386204), transcript variant X3, mRNA +GGTTTGTACTTTGGTATTGTTAGGTTGACCGGGCTGGTCGCAATAAATGCCATTGTACCAATTACTCATAATAACAAAACTATGCAACTTATGTGTATATATAACAAAATTCAAGTACGGAGTACGCAGTCAGATTAATCAATGAAACTTTAGTATCTGTTTTCGCAACGATTATATATATTGTTCACAAATAATTCAATTTTATGAACATGCAAAATACGATAAAGACCCTCATTTTTAAACCAAGTTATTTCCTTTAATGATCTTTACCTATTTCACGTTTTTGTACCTAAAATTTTGAACCATTCGTCAGCTACGTCGGCGTTGGCTTCATTGTATATCTATCTCATTTATCCATCATTTCCGGTTTTTCTATCTAATACATTTCTTTAACATAAAGAAAATAGCTTCAGAGAGTTTCTCTTCAAAAAACGGAAAACAAAGAGAGAATGAAGTTTTTCGCGGCGAAGCTGGAAGAAGGAGTTAAAGGAGGAAACGGGAAGCCGTCGGTAGGTCCGGTGTACCGGAATCTTTTGTCGGAAAAAGGTTTTCCGCCTATGGATTCTGATATCACCACTGCTTGGGACGTTTTCAGTAAATCAGTGGAAAAATTCCCTTACAACAAGGTGCTTGGATGGCGTCGAATCGTCGATGAGAAGGTTGGACCGTATATGTGGAAAACTTACAAGGAAGCATACGGAGAAGTTCTGCAGATTGGTTCTGCAATACGTGCTCTGGGAGCTGAGCCTGGGTGTCGAGTGGGGATCTATGGAGTTAATTGTCCTCAGTGGATAATAGCAATGGAGATGACACATGAAGATGTGTATCTTTCCTTCTTGCCGTTGGCTCATATTCTTGACCGTATGAATGAGGAATACTTCTTTCGCAAAGGGGCTTCGGTTGGCTATTACCATGGAGATTTGAATGTGTTACGCGATGACATTCAAGAATTGAAACCAACTTATTTAGCTGGAGTTCCAAGAGTGTTTGAGAGAATTCACGAGGGAATTCAAAAGGCTCTTCAGGAACTTAATCCTAGAAGGAGATTTATCTTCAATGCTCTCTACCAACACAAGCTTTCATGGTTGAATCGTGGATACTCTCATAGTAAAGCTTCGCCCATGGCTGATTTCATAGCTTTCAGAAAGATTAGAGACAAATTGGGAGGTCGAATCAGGTTGCTAGTATCTGGAGGAGCACCATTGAGCTGTGAGATTGAAGAGTTCCTTAGAGTTACTTGTTGTTGCTTTGTCGTCCAAGGGTACGGTCTAACGGAGACTCTTGGAGGAACGGCTTTGGGTTTCCCGGACGAGATGTGTATGCTAGGGACAGTTGGTATTCCGGCCGTTTACAACGAGATACGACTTGAGGAGGTGGCTGAAATGGGCTACGACCCACTCGGGGAAATTCAGGCAGGCGAGATCTGTATAAGAGGAACATGTTTATTTTCTGGTTATTACAAGAACCCTGAACTTACTCAAGAAGTCATGAAAAACGGATGGTTCCATACAGGAGATATAGGTGAGATTCACCCAAATAGAGTACTCAAGATAATTGATCGCAAAAAGAATCTTATCAAACTCTCTCAAGGAGAGTACGTTGCTCTTGAGAACTTGGAAAACATCTACGGTCAAAACTCTGTTGTCCAAGATATATGGGTTTATGGAGATAGCTTCAAATCAATGCTTGTAGCAGTGATTGTTCCAAATCCTGAAACCGTGAACCGGTGGGCTAAAGATCTCGGCTTTACTAAGCCATTCGAAGAACTATGCTCTCTCTCGGAATTACATGATGAACACATCATTTTAGAACTGAAGTCCACGGCAGAGAAAAACAAGCTAAGAAAGTTCGAGTATATAAAAGCAGTGACAGTGGAGACAAAACCTTTTGACGTTGAGAGAGACTTAGTGACTGCGACCCTCAAGAATCGAAGGAACAATCTTCTCAAGTATTATCAGTCCGCCAACGTTCCGTTATACAGGTACAAGTCGACGAAATGTACCGAAAATTGTCGTTGAAGAAAATGTGAAAGTGTTGCATGACCATCGATGTGTGTGTTATTATTGGTAACTATGTTATGTACGTATGTGTCAATCATTGATTAAAAAAGCCTTATGCGTTCTGTAATGTTTTAATTCTAAGCTATGTTGAATAACCATTGACATCATTAATTATTATTTTTTCTTTTGTTAA +>XM_040148298.1 PREDICTED: Xiphias gladius tensin 1b (tns1b), transcript variant X3, mRNA +GAGGCAGAGTGAGCACAGAGGAGAGGCTGTCAGGATCCAATTTAGGTTTAGAGGAGAGACACAGGAGGAGAAAGCAAGTCAGACAGTGAGGAAAAGGGAGAAACAGGAGCCCGAGGTGAAAGAAAGTGTTTATGTTCAGGATAGTCATGGCTCTGCAACGTTGGGAAACTCTTCTCCTGCCTGGATTAGACTTAAGGAAGACCAGTGGTCTGTAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCATCATCACCAACACTCCTGTCCGTCAACATGCCGTCTGTCTCTCTCAGCCTGCCAGCAGCTCTGGCTGGACCTGCACGCACCTGGGTCTGCCTGTCCTGCATGTTCTGGCCAGAGGAGTTGGAGGCTCTTCATTCCCATACGTTCCGGGTGAAGACTTTCAAGAAGGCCAAGCACTGCAGCGTTTGTAAACAGACCATCATCCAGGACGGACTCGTCTGCCGAGTGTGCCGAATACCTTGCCACAAGAAATGTGAAGTCAAGGTGTCTTCATCTTGTGTTCCAGCAACAAACTATGAGCTGGCCCCAAGCGGTGACCTCCCTCTCAAACATGTAGACACCATGGGCTCAACAAAATCGTCAAAGAGCATGGAGTCACGGCGCAGACCATCAAGGAGTGTGAGTTTGCTGCAGGCTCTGGAAGAGAGCTACGAGTTGGACCTGATCTATATCACAGAGAGAATCATCTCCGTCTCCTTCCCCAGCAGTGTGGATGAGCAGAGTTATGCTGCTAACCTGCAGGAGGTCGCCTCCATGCTGCGCTCCAAACACGGTCACAACTACCTGCTCTTCAACCTCAGTGAGAAGCGTTATGACATCAGCCAACTTAATCCAAAGGTCTTGGACTTTGGCTGGCCTGACCACCATGCTCCAGCCCTGGACAAAATCTGCAGCATCTGCAAGGCCATGGACACTTGGCTGAGTGCGGACAGCCACAATGTGGTGGTTATACACAACAAGGGCAACCGGGGCAGAACGGGAGTGGTGGTGGCGGCCTACATGCATTACAGCAATATATCTGCCAGCGCTGACCAGGCTCTGGACAGGTTTGCCATGAAGCGCTTCTATGAAGACAAAGTGCTTCCTGTGGGCCAGCCATCACAGAAAAGATATGTAGAGTACTTCAGTGGCTTGCTCTCTGGACACATCAAGATCAACAACAAACCCTTGTTCCTTCATCATGTTATCATGCATGGCATCCCAAACTTCGAGTCTAAAGGGGGTTGTCGTCCTTTTCTCAAAATCTACCAGGCCATGCAGCCCGTCTACACATCTGGGATCTATAATGTTCAGGGCGACAGCCAGACGAGCATCTGCATAACCATTGAACCTGGTCTTCTTCTGAAAGGGGACATCCTGCTGAAGTGCTACCACAAGCGCTACCGTAGCCCGTGCCGAGATGTGATATTCCGGGTGCAGTTTCACACCTGTGCCGTTCATGACCTGGGGATCATCTTCGGGAAGGATGAGCTTGATGAGACATTCAAAGATGAAAGGTTTCCAGAATATGGAAAAGTAGAGTTTATTTTCTCGTTTGGGCCAGAGAAAATACATGGTCAAGGTGTGGACCACCTGGAAAACGGGCCGAGCGTCTCGGTTGACTACAACACACAGGATCCCCTGATCCGCTGGGACTCGTATGAAAACTTCAATCAGAACTGTGAGGACACCACAGATGAAGTCATCCATACCCAAGGACCCCTGGACGGCAGCCTCTACGCCAAAGTTCGCAAAAAGGAGTCTGTTGAAGGAACAGTCACAGCAAATGGCCTGCCACCCACTGCTGTTGAACATGCCCTACCTGCGGTTGACCATGCCTTATCAGTAAGCAGCGACTCAGGAAACTCTACTGCCTCCATCAAAACTGACCGAACTGATGAAGCAGCAGCAGTCCCTCAGGTTTCCAGAGTGAGCCAGACACACGTTCCTGTGGTTGAGGAGTCACCATCAGTCCATCACCAAGCCCCACCTGCGCAACAACCAATTAGTCCCCAAGAGAAACAGGAGCTGGAGCAGCTGCTGAGTGGCTTGGAGGGGCCCATGCACCAACAGGGCTACCTGTCCACCCCAACATCAGCTGTTGGAGGGATGCTTCACCTGGTGCCTGCTCAGGTCCATGTCAATGGGCACACTAGCATTGACCGTGAAACAGACATTTTAGACGATGAGCTACCTACCAGTCAAGAGGGCAATAGTGTGGACAGTCTAGGAACATTCTCCTCCACAGATGGTAGGGCTACACCAGCTGATCTGTACTACCAGACTGAGTCCCTTGTCAATGGCCAGGACCATGTGCCATATCTAGAGCGCAGCGTCCCCGAAAAGCCTCTGGAAACCGTCCAGCCACATGTTGGCATATCTGACAAACCTGTCACTTTGACCCAAAGTGATTTAGCCAAATCATCTGGTACTTACATGGCCACCCAGAATGGCAGTCTGTACCGTTCTCAGTCATTTGGTGCAGAACCAAAATCTATGCCACAAGCTCCAACCCGCACCACCAGTAGCAGGGATGCCGTCCAGCGTGGTCTTAACGTTTGGCAGCAGTTTGGTGTACCTGATGAGCCAGTAACTGAAGGGTTCACTTTTAGTCCACCTCCTTCTGTAGCAGTGATGCCCAGCCACCACAGTCTCCCACAGTTCCCTCATCGCCACAGCACCTCCCAGCAAGAAATTGAGCAATCTATTGAAACCCTTAATCTCCTCATGTTGGACCTGGAACCAGGGTGTTCGCTGGTGCCAAAGTCCCAAAGTGCTCCACTGCGGGAAAACAGTGTTGTAGTGACCACCCAGCCGTCCTTTTCCCAGAGCCAAACCAGGCCCACCTACCAGGGTGATGCCGCCATTCATACCCACTTTTCGGGTCCCATGTCCAGCCTGGCAAGCCACTCGTCAACAGCTCAGATGTCACCTGGGAAGCCTAGAACACCAGAGCCTGCACCTGCCCAGGGATCTCTGAGTTACAGCTCTGAAACCTCTGGAACTAGTCCTCCCTCACAAGACTCCCTTCCTGTAGCAGGCCACGTCCAGCTGAAGCCCATCAACACCTACCCTCCAAGCACACTGTCCCATTCTGCAGACATCTCTGAGGCCCAGAGAAGCCCTAGTGCTGCGTCAGCATCACTCCAGCCAAGGGACAGTGAGCCCGATGAAGTCTTCAATGTTGAAGGTCTGGTGGCTCAAAGAGTGGCTGAATACTCGGCTCGTGCCCAAAGTGTCATCCCCAGCATGACCTCTTCTCAGTCTGAGCACCGCCGTTCTCACTCCCTCCCGGGTGTCCAGGCCCGTGCAGTGTCCTTGGATGAGCCTGCAACTCTGCCTCGCCATCGCATCGTCAGTGACGGCCATTATCAAAATGGCCCTGACGACAGTCCCTCACCTGATATCCTAGTTCGTTCCCCCATTCGATGCGTTTCTCCAGAGTTTGCCAATGCCATAGCGATGAACCCCGGAGGACGGCCTAAGGAGAGAAATATGCACAGCTACCGGGAGGCCTTTGAGGAAATGGAAGGAGTCCCCATTAATCCTACACCCACAGTTGGTGGTGAGGTGTTTCCCCAAACCCCTGCCTTCCCCATCTCGCCGCAAACCCCTTACTTCAACCTGTGTCGGTCCCCTCCTGGTCTTGCCAAGACTCCGCTGTCAGCCCTGGGATTGAAGCCCCACAACCCAGCAGAAATCCTCCTGAATCAAACAGGCTCAGATGATGAGAGCAGTGAGGGTGAGGAAGCACCAAGAAGCTATGTTGAGTCTGTGGCGAGGTCGGCAGTAGCAGGTGGAGAGCAGCCCACATCACCTCTGAGCCTTAGCCCACTGGGAGAGACTACAAGCCAGCAGAGAGGTCCAAGTCAATCGACCCACACACTGAACCCACCTTTGTCCAGCAGCAGTCCCTTCCAGAGCTCACAGGGTGAACACCCCTCAGCACACTGCAATGTTAGCACTCCGTCCCAACCCACTACTGATTCGAGCTTCCGCTCCCAGGCTACAGAGAGTGCCTACCCCACTCCAACCCCCTCATGTCCAGCCGTGAATACTCCCACCTCTTCCTACCTGGATTCCAGCTCTCCAGCCTCTTCCTACCTTGGCACTACTACCCCCACACTGTCCTACCTTGGCCCCAACAACCTCCTGGGAAACTATGTTGCCTCAGATCCAAGCCTGTCCACCTCAGAACCCTCCCAGACCACACTCAGCCATGGAAGTCCCCATGCACAGCACTGGACCAACACCCTTAGCTCCACTCATAGTCCTGTCCTCCAGCAGCGCTCGAGTGCTAATCAGGATGGCTCCATCATGGGTCAACAAACATCAACAGCTAATGGCTTTGATGTGGGCATGCCAGGCCTCATGACAGGTGGCAGTCCCATCCTCGGTCATCGTCTGTCTCAGGGAGCTCAGAATAGCCCAGTCCTCAGCAGACAGGCCTCTTTGGGACAGGGGTCTCAGCGGAGCCCTGTCTTCAGCAGACAGCCGTCCCTGGGTCAGCCCATACAGAGCAGCCCTGTGCTCAGCCGACAGCCATCTATCACACACCCCCAAGGAAGTCCGGTTTTGGGCCGTCACCCATCTGTGTCACAGGTGTCCCAGAGAAGCCCCAGTTTGGACCGTCACCCCATGCACAGCGGTTACACCACCCCAGATGAGAGACATGGGAACCTGTCGAGACAGAGCAGCTCTTCGGGCTACCAGGGGCCACCCACTCCCTCCTTCCCCATCTCGCCTGCAGGCTACCAGGATGGGGGGATGATGGGGACGGGTGTAGGGTTCAGGCAGGGTAGCCCAGCCCCTGGTCTCCAGCCCCAGCTTCCAGAGAAGAGGCGCATGTCTAGCGACGACAGACCAAACGGAGCTCTGTCCTATGGCACGCTAAACGGAAAAATAATGTCCCCAGTGAGTGGAGGAAGCACTCCCAGCTACTTCCACACCCTCTCAGACTTCTCCAAGTTCAATATGCCCGACGAAAGCCCTGAGAGCAGGCTGAATGTCAAGTTCGTCCAAGACACGTCCAAGTTCTGGTACAAGCCAGACATTTCCAGGGAACAAGCTATTAGCCTGCTGAGAGAGAGGGAACCTGGAGCCTTTGTTATTCGGGACAGTCACTCGTTCAGGGGGGCGTACGGCTTGGCTATGAAGGTGGCCTCTCCCCCGCCCTCCGTGCATCAGAACAAGAAAGGTGACATCGCCAATGAGCTGGTGAGGCACTTCCTGATCGAGAGCAGCCCGAAAGGAGTGAAGCTGAAGGGTTGTCCAAACGAGCCTTACTTTGGCTGCCTGTCTGCTTTGGTCTACCAACATGCTATCACACCATTGGCCCTGCCCTGCAAGCTGCTCATCCCTACCACAGATCTCATTGAGGAAGCACCAGAGGTCGCAACAACAAATCCACTGGCTGAGAGGCTGAAACAAGGAGCAGTGCAGAGGGCCCCTGCTGATTCCCATGCATGCAACGTGCTCTACATCAACTCAGTAGAGATGGAGTCCCTGACGGGCCCTCAGGCTGTTGCCAAGGCCATATCTGAGACACTGGCTGCCGCCTCTCCACCTACAGCCACCATTGTGCACTTCAAGGTGTCTTCACAAGGCATCACGCTGACTGACAACCAGAGGAAGCTTTTCTTCCGACGCCACTACCCCGGCAACACTGTCACGTTCTGCGATATTGACCCTCAGGACAGAAAGTGGAACAAGCCTGAGGGAGGCACAGCCAAGCTGTTTGGGTTTGTGGCGCGTAAGCAGGGAAGCACAACCGACAACGTCAGCCACCTCTTCGCTGAGATGGATCCCGACCAGCCTGCCAGCGCCATCGTCAACTTCGTCTTGAAGATGATCGCCTCGCAGAAACAATGAGAGCTGTCAGCAAACCCTGGCGCTTTTTTTTAATGCCTTTGGTTATTTTCTTTCCTTTTAACCACAGACACTTTCTGTTTTGGAAAATTTGCGTTTGACGCACCACCTTGTTTTTCCTGCTCTTTTACATTTAGGCAATTGTGTAGCTGTGTGTGTTTGTGTATGTAAGCGAATGAAAGAGAGCAAGACAGAGTGTGTGTGTGCGTGTGTGGTGTGTTCGTGCGTATGCGGCTTGCATTCATGTGCTTTTCTTCTTGGATGGACTCCAGAATGGACCAGAGGAAGTGCAGGATGGGGAAGTGGCTGTGTGTGACAATGGGATGGGAGGTGATTTTAATCTCCCTGGCAGGGTAACTCATGGACAGGAAGAGGGAATGAAATTGTGTGTGCAAATGTTATTTTTTTAGCAATTGTTTCATTTTTATTTTTTTAAAGAAGAAGTGAAGTTGTGTGATGTAAAAGTGGGTTGTATATCTATCAGGCTTTTGACTGGTCAACCAAAGATTTTAAAAAAGTTGTCAGGGCGTGTATAGTGTGCCATTGTCAGAGGGTCAGAAGTATTTTGTAAAACAAATATGGCTGCTTAATCAAAAATACTGAACTGTTTCTTTCTGTATGTACTGGTCAATTCTGCATCTTGCAAACAATGTTTTCGGACATTTTTGCAGCTGGTGAGGTCTATGTAAATATTCTAGATTGCTTTATGAGTAGGACTGTTCTAGATGACATTTGGTGCCTGACTTTTTTTCTAATGCAGAGCTTTTTAAGAAAAAAGAAGAAGATCAATCTCACCCAGGCTGTCTTAAATATGCAAATAGCCAAACTTTGAAATAAGGTTGTTCTCCCAAATTCCACAGGTCCTTCCCTGTTCGACGTAGTAGCGTAGCTAAAGATGCAACTGATGTAATTCCTCTGAAGTGCAGCTAGAGTCTGACAAAATCGGCTAAACCTGTTTTTCGTGAATTTGCTGTATCCAAGTGAGCATCAGTAAGAAGGCCACTGAATCCTCAACAATCACGTCTCGGGATTCTGTTGGTCAGACAAGCTTCCTGTCTGCCACCATCCTCTGTTCAGTCTGCACAGCACATAGCCACACTATTTTGCTCATGATTGAAGGGCCAAGGGTTGTTTTATGGGGACAATCTTAATAGAGAAGTGTTGTCCTGCTATACTGCTCTTCAGTTTTCTGTGTTGAAAGTTTCCGTCAATAGAAAGAAGCTCTTTGCGTCAGCCGGCCAAAACTGTTAACACTCACACCCTACCCAAAAGTAAGCTATACATATAAATAAACATATATAGATATATATAAAAACTTCCAAACAGTGACTTAAGATATTTATTTTTTTGCTTTGTTGCTGTATCTTATCTTGTATACATGTATTATAAAGCATACACCAAGATTACTGAACGCGTGAAGAAAAAAAATGCTTTTTATTTTGGCTAAAGTCAAGAGCATTGACATATATAAGGTGTAAAGTGTGTGCATTTAAAAGTGTATCACTGTTGTTTTTGAATGTTTTTATTTCACATTATTACTTCCTTTTGTTAACCTTTTGTTTTCTTGGGGAGGCTTTTTGTTGTTTTTTTGTTGTTTTTTTTTTTTAAGAGAGGGGAAATATTTTGTATGACAGATTGTTGTTACTGAAGTCCAAATTGGAGTTATCCTAAAGTGATGCCAACAAAATTGTTTTATTAACTTAAACCTGCCTAGAAAATACGTTGTCCAATTTAAGCACTTAAATGTTGAGCTATTCTCATTGTGTTTCTACAGAAAGACGAGATATGGACGTTGACAGACCCATTTCATATCATCACTGCATGTGTGGGGGGAAGACTTGCTAGTTCCTCAATCCCCACAGCCTGGGACTGATCCTTGTACATGGAACATTATTAAGTTCAGTCAGTAGCTGCTGCCCTCATGTGGTGTGGAACGCTCATTACAAAGGAACCACTTTTATTCTAATACAGTGTTTTAGCTGTGATTACGGCAGGTCAAAGGGTAAATGTTTGAGTTAAATTTGATCACTGAGAAAATGAACTAAAACTACGTTAATTTAAATGCTGATTCTTATGCTAACTTTCTTAGAAAATTTGTTTTTTGTTTGCATTTCAAAGTCCCATTCAAGGATTGAGTGTGTCGAGATCACATCTCCTTTCTTTACGCCTGATACACTAGGATCAGTTGGCAGCATGATGTAAAATAATTAGATAAGGGTTAGTTTTTTGGGCCTACATTGACTCAAATGTACTCCTTCAAAAATATAAAAAAAATAAGAAATACAGCACTTACAGGACTTTTATATCTGACTAGAATATTCCATTATTTATTAGCAGGCTCCTGCACGCTCAAGTCAGCTTGCCACCTTAGTGCTGCTGACTGTAATGTGTACACAGTATCCTCAAGTCTTACACGACCAGTCTTTTCAGAAAGATGCCCATAGTTAGTTATCATCAGGTTTTGATTATCATGTGACGACTGTGTCTTGACTCTGCTTATGAGACAAAACAATCTATATTTTTGCCTACAAAATGCTTGTTGAGAGGACTCCCTCTTCTTCAAACTGAATGTTAGCCATTTGTTTGCCAAGATGGAAACTCCAGTGGCATCTGCCCACTTTGACAGATCAGTCTGGACTGTAGAATGTGTGTGAATGAGCTACTATGTCTGTACAGAGCTTTGTCATTTTTGATTTGCTACATTGTATGGCTTTTACTATTTCTGATGGAAAAAAAACACATTAAAAAGCAGTACAAATCAAAA +>XM_044234934.1 PREDICTED: Neovison vison P2Y receptor family member 8 (P2RY8), mRNA +GCCAGGATGGATATGAACATGACCCGGCCGGACAACGCCACCATCGTGATGCTGCGCGACCCGACCATCGCGGTGGTCCTGCCCGTCGTGTACTCGCTGGTGGCGCTGGTCAGCATCCCGGGCAACCTCTTCTCCCTGTGGGTCCTGTGCTGCCACATCGGGCCCAAGTCCCCGTCGGTCATCTTCATGATCAACCTGAGCGTCACGGACCTGATGCTGGCCAGCGTGCTCCCTTTCCAGATCTACTACCACTGCAACGGGAACCACTGGGTGTTCGGGGAGCTGCTGTGCAACGTGGTCACCGTGGCCTTCTACGCCAACATGTACTCGTCCATCCTCACCATGACGTGCATCAGCGTGGAGCGCTTTCTGGGCGTCGTGTACCCGCTGGCCTCGGCGCGCTGGCGCCGGCGCCGCTACGCCGTGGCCGCCTGCGCCTGCGTCTGGCTGCTGCTGCTGGCCGCGCTGTCCCCGCTGGCGCGCACCGACCTCACCTACACCGTGGAGGCGCTGGGCATCGTCACCTGCTTCGACGTGCTCAAGTCCACCATGCTGCCCAGCGTGGCCATGTGGGCCATCTTCCTCTTCACGCTGTTCATTGTGCTGTTCTTCATCCCCTTCGTGGTCACCGTGGCCTGCTACACGGCCACCATCCTGACGCTGCTGCGCGCCTCGGACCCGCACGGCCGCGGCCAGCGGCGCCGCGCCGTGAGCCTGGCCGTCGTGGTGCTGCTGGCCTTCGTCACCTGCTTCGCGCCCAACAACTTCGTCCTGCTGGTGCACATGGTCAGCCGCCTGTTCCTGGGCCGCAGCTACTACCACGTGTACAAGCTCACGCTCTGCCTCAGCTGCGTGAACAACTGCCTGGACCCCTTCGTGTACTATTTCGCGTCCCGCGAGTTCCAGCTGCGGCTGCGGCGCTATCTGGGCTACGGGCGGCTGCAGGCCTGCGGCCGGGACGCGCGCAGGGATCCCCTGTTCTCTGCCCGGACGCTGTCGGCGCGCTCCATGTCCAGCGGCCACGGCGACGGGCTGGACGGCCCCAGCCGGCCCTGCCTGCAGAGGCAGGAGAGCGTGTTCTGA +>XM_006814478.1 PREDICTED: Saccoglossus kowalevskii uncharacterized LOC102803486 (LOC102803486), mRNA +ATGATATCAGATAACGCGTCTACATATCTGTCTGCTGCTAATGAAATTAAACGATTATTGGATTCCCCTGAAATTCAAACCTATCTTACGAACAGACGCGTGCAATGGTCATTCATACCCAAACGAGCACCGTGGTTCGAGGGTTTTTGGGAGCGTTTGATTGGCCTCGCCAAAACTGCTATAAAGAAAGTCTTGGGTCGTTCATTCGTAACATACGACGAACTCAATACTATCATAACTGAAATCGAATCTACTCTAAACGACCGTCCCCTGACGTATGTGTCTACGGACATTGACGACGCAACCCCGCTCACTCCGTCACATTTATTAATTGGTCGCTTGGTTACGCCACTTCCGCATTTCGTCGTGGACGACGATGAATTATCTGACCCGACATTTGGAAACCGACTAGATCTCGAGAAACGCCACGCTCATATATGTAAATTACTAGAACAATTTTGGAAACGTTGGACTAGCGAATACCTCACGTCTTTGCGAGAACGACACAACAATACGGTTGGTGCAACGGACAATACAATTAAGGTCGGTGATGTTGTGTTAATGCATAGTGATATCGCTCGTCGTGTAAATTGGCGTTTAGCCACCGTTCAAAGATTAAATGTCGGAAATGATGGACTTGCACGTTCTGCTGAACTCAAGACTACCAGTGGATTTACAAACAGACCGATTACGAAACTATATCCCTTAGAAGCATGTGGGAACAACGCGCCCACGCTATCTATCGAAAAATCTCTTGCTGTGAAGTCTGTTCTACCCGGAATTAATGAAACTGTTACTCGCTGTCCACCCAGAACAGCCGCGACTATAGCCCGACTACGCATTCAGGACATGAACGATATGTGA +>XM_026561538.1 PREDICTED: Papaver somniferum uncharacterized LOC113312801 (LOC113312801), mRNA +ATGTTACACCATAAGTGTACTAATGGGTTGAGTAACAAAGCTTTTGACGAGTATTGTACTATATTACAGTCCACGAAAGCTTTTCTAGATAGCAGTATCCCTAAGAATTACTATGAAGCAAAAAAACAAATTCGAGATCTTGGTGTGGAATGTATTAAAATAGATGTATGCCCAAATGATTGTATGTTATATTGGAAGGATAATCGTGATAAGGAAAGGTGCGACGCCTGTGGTGAGTCTAGATGGATATCAGGTACTTGTCAATCTGGAGAAAAAGAAGCAAGTGGAAAACAGAAAGTCAAGAGAAAAGTTGCCAGGGTTTTGAGATGGTTTCCGTTAATACCACGGCTTCAAAGGTATTATATGGACCCTAAAACCGCAGAGGATATGATATGGCATGATAAAGAGCGTACCAAAGATGGTGTTTTAAGGCATCCGGCAGACTCGCAATGTTGGAAAACCTTGGACGAAAAGCATCGGGTATTTGGTTCAGAACGTCGCAATGTTAGACTCGGGTTGGCAAGTGATGGGTTCAATTCTTTTGGTGTTATGGGTACTGGTCACAGTACATGGCCAGTCTTTGTTACTTCTTATAATTTGTCACCAGAGAAGTGTATGAAGCAACCCTATTTTATCATGTTTCTGCTTATTCCTGGGCCTAAGGGTCCTGGGAATAATATTGATGTATACTTACAGCCACTAATCGGAGAGCTAAAGGAATTGTGGGAAATGGGAATTGAGACGTATGATGCTTATTCCAAGCAGAACTTCCAAATGCGTGCAACTCTCTTATGGACTATTAATGACTTTCCAGCATATACCAACCTGTCAGGATGGAGGCACCGGAGATTCTTACCTATTGGTCATCCGTTACGAAGAAACCTGAGCTCTTTTAATGGCCGCAGAGAACATGATAGTGCACCAAAACCTTTAAGCGGTGAGGATGTTCTTCGGCAGTTCCGTGGTTATCATCAAATCACTTTTGGCAAGGAAGAACATGCTGTGTGTGGGGAGAAAAGAAGGAGGGATGACAATGAGCTGCCTTATAATTGGAAGAAGATAAGCATTTTCTTCGAACTACCTTACTGGAAAGATCTTCTCTTACGACACAATATTGATGTGATGCATACCGAGAAGAACAACAGTGAGAGTTGGATAGGGACACTGTTGAACATAGAAGGTAAGACAAAAGATAACTTGAACGCTCGGGAAGATTTGAAAGTAGTGGGTATACGTGGACCACTTCACCCTGAAGCTTTGGGGAACAACAAATTCTACCTTCCTCCAGCAAAGTATACCTTGTCTTTGGCGGAGAGGAGGAAGATTTGTCAATTCTTGCGTGACATAAAGGTACCCGATAGTTATTCATCGAATATTTCGCGGCACGTTCAGGTACAAGAATGCAAGATTCCCGGGCTAAAGAGTCATGACTGGCATGTTCTCATGCAACAACTTTTTCTTGTTGCGGTGCGTGGTATCTTACACGATGACGTGACTAGAGTTTTAGTTGAGTTTTCTGATTTTTATACTCAATTATGCTCCAAGACATTGAGAATCGAAGATTTGGAGGCGCTTAAAAAAATGTATCTCACTTTGTGCAAAATGGAGATGATATTCCCTCCTTCGTTTTTCGATATTATGACACACTTGCCTGTTCATATAGCAAGAGAAGCTATAATTGCTGGACCTGTTCATTACCGGTGGATGTATCCAATCGAACGGTACTTGTACACCTTGAAAAAGTATGTGCGAAATAAAAGTCAACCTGAGGGATCGATTGCACAAGGGTATCTTGCTGATGAATGTCTGACATTTTTCTCCAGATACTTGAGTGCTGAGATTAATACAAAGTTCAACCAGATAGGGAGAAATAGTGATGGTGATGGTGCGACGACATCTAGTCATGAATCGCCTATCTTTGAAGACGCATGTCGTTCTTTAGGGAAACCAATTTTCCGAACTTTATCTGACAATGAGTGGGAGGAAGCCCGAATGTATGTGTTGAGTAATTGTGATGAAATTCTTCCGTTCATCGAGTAA +>LC340153.1 Symphorichthys spilurus mitochondrial gene for 12S rRNA, partial sequence, specimen_voucher: KAUM:I:93808 +CACCGCGGTTATACGAGAGACCCAAGTTGTTTAACAACGGCGTAAAGAGTGGTTAAGATCTAAACTTATATTAAAGCCGAACGCCTTCAGAGCTGTTATACGCATCCGAAGGTATGAAGTCCAACCACGAAAGTGGCTTTATAACATCTGAACCCACGAAAGCTACGGCA +>MF223903.1 Uncultured bacterium clone denovo5551_560_46813 16S ribosomal RNA gene, partial sequence +TTTTTCCTACGGGGCGCAGCAGTGAGGAATATTGGTCAATGGGCGGGAGCCTGAACCAGCCACGCCGCGTGAGGGAAGAAGGTACAGCGTATCGTAAACCTCTTTTGTCAGGGAACAAAGGCGGGGACTAGTCCCCGGATGAGGGTACCTGAAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGCAGGCGGCCTGGTAAGTCAGCGGTAAAAGCCCGGGGCGCAACCCCGGCTAGCCGTTGAAACTGG +>XM_024271454.2 PREDICTED: Oryzias melastigma visual system homeobox 2 (vsx2), transcript variant X2, mRNA +TCCAAGCATGCTGAATATCCTCCTCATCCTCGTTCCCTGCAAAATGCAATAGGAGAGGGAGTAACTGCATCCATGATCCACTGGAATCCTGAATCCTTGCAGCTGATTGGCTGCTGCGGGCTGCCTCTTGTTGGGATGGACCTGTTGGATAAAAGGAGAATTTTCTAAAGGACTATGTGATACAGAGGATGTTGTGCGGGGGACAGTCCAGTTAGACGCTTTTTTTTCAGAAGAAAAACAAACAAACCATAACGTCATGACGGGGAAACAGGGCGCCGCGCTGTCGGAAAGTTTAGAGAAAACCTCTCTGGTCGTGAACGGCGGGAGCCTCCAGCCCAAAAGCAGCAACCCTCCACCCAGATGCACCGGCTTTGGCATCCAGGAGATTCTGGGGCTGAACAAGGAGCCGGCCAGCGCGCCGAGGAGCCCTCTGAGCGCGCTGCCGGCCGGGGCGCACCTGATCGCGGCGCGGTCGGTGCTGGGACCCGCCGGCGTGGGTGTCGGGATGGGATTAATCGGCCCCGCCGGGATTCCGTCGTTCTACAGCCAACCCGCCTTTCTGGAGACGGTGCTGGCGGACGGACACGACATGCGCCTGCAGCCGCACAACAGGTCTGCGAGGCCGCTGGACGCCAGCCAGTCCGTCAGCTCAGATTCCGAAGATTTATCTTCCAGTGAACGGAAACTTTCCAAATCATCAGTAAATCAAAGCAAGAAACGCAAGAAAAGACGCCATCGAACCATTTTTACATCATACCAACTGGAGGAACTGGAAAAGGCCTTTAACGAAGCGCACTACCCGGATGTTTACGCGCGAGAGATGCTGGCTATGAAAACAGAGCTGCCTGAAGACAGAATACAGGTCTGGTTTCAGAACCGCAGAGCCAAGTGGAGGAAGAGGGAGAAGTGCTGGGGCCGCAGCACAGTCATGGCGGAGTACGGCCTGTACGGAGCCATGGTGAGGCATTCCATCCCTCTGCCAGAGTCCATCCTCAAGTCTGCCAAGGATGGCATCATGGAGTCCTGTGCTCCCTGGCTGCTCGGGATGCATAAAAAGTCCATGGAAGCAGCAACTCTCCCGGCAACAGCAAAGTGCGATGCCCCCCAGCAAGCAAGCACACAAAGGCCGGAGGACGTTGAGGCAGAGGAGAAGAGGTCGGACGGCAAGTCCAGCATATCTAAAGAGGAAATGAGGGAGAACAGCATCGCTGCACTCAGGGCCAAAGCACAGGAGCACAGTGCCAAAGTGCTGGGGACAGTTTCTCATGACAAACTGCTGGAAGGCAAACAGGAGAAACAGGCGGTTGGGGAGAAGGTCAGTGACCCACCGAGCCCGTCAGAGGAGCAGAAAAGTCCCTAAAGAAACACATTTTGTGAATACTGTGGACCGACAGCTGTCGAAGCAAAAACAGACTCAATGATCTCCACTAAAGATATATAGCCCGCATCCAGACCGCTCTGAAGGAGAACTTTGATGATTCTTCTGCTGCACAGAAGTTGAAATTCGCACTTTTTCTGGTTTGCTTCTGAAACCCACTCTTGTCTGCAGTAGAGGAGACTGAATAAAAGTAGGAAATGATGTACAGAAATGAGACAATTAAAGGTTGAATCAATGGATCAGCTTAAGCACATACAGGAGGAGGAATTAGAAATTAAAGTGTGCAAAAATATGTTCCATTTCACATTTATTCTAAACCTGCTTGTACAATAAATGTGACATTTTAGAGGAGACCCATCCCACTGACAGTAAGAAAGTCAATGTTGTCTTACATGCCGCTGTATAAAAGTGATTTACAACGAAGGCACAACTTTTAAAGAACATTTTCTTCTTGTCTTAAAATGTCTGTGTTTTAATTTTAAATATGTAGAGGTCAAATTTCAAAGCATA +>XM_039993337.1 PREDICTED: Panicum virgatum casein kinase 1-like protein HD16 (LOC120708211), mRNA +ACGGGAAGGCTTCAAAAAGCCAGCACTCCTCCTCTCCCTTCCAGACAGCCAGCCAGCCAGCCACAGCGCAGCGGTGTGTGTCTGCGGGAGAGACCAAACACCAACCTCCCACCATCCCGACCCATCCCTCCCCGCATCCCCACCTCGCCGCCGCCGCCGCTGCCGCCCGCACGGTCTCTTCTCCCGAGATTCGTTGGCGATTGGAAGTGCATGGGGAGAAAGGATGCCAGAGTTGCGTAGTGGAGTCCGGCAATCTCGGTTGAGGGCAAAGAAGGTTCAGGATCTCGTGGCACAGGACCCTACGGACAACTTGGTTGCTGCAGCACCTACGGTGGCAGGAAGGCGTGGTAGAGGAAGGGGTGGTAGGGGTGGAGGGAGAGGAGCAGCACGGGGAAGGGGAGGAAGAGGGCGAGGTGTTCCGGTGATTGACTTGGACCCCGACCAACCTTGTGGGGTTTTTCCAGGAGCTGCTCTGGGTGGTCGTGCTGCAGGTAGGGCACAGCCCATTGAGGAATTTGCTGATAGGGCTTTGAAGATGGATGGTGGGAGTGCTGAGAAGATTGCTGGCGGTGAAGATGATGGGACTGTAACCCCTGTCCCAGAGAAGGTTCAAGTAGGTCATTCTCCGCAATACAAGGTAGAGCGGAAGTTGGGCAAAGGTGGTTTTGGTCAAGTTTATGTTGGCAGAAGGATTTCTGGAGGAACAGAGCGTACCGGACCTGAAGCTTACGAGGTTGCTTTGAAATTTGAGCACCGCAACAGTAAGGGTTGCAATTATGGCCCTCCATATGAGTGGCAAGTTTATAGTGCTCTGAACGGTTGCTATGGTGTACCTTGGGTTCATTACAAAGGCCGGCAAGGGGATTACTATGTTCTGGTGATGGATATTCTAGGACCTAGCCTTTGGGATGTCTGGAATTCATTTGGGCAGACGATGACAGCTAATATGGTCGCTTGCATAGCTGTAGAAGCAATTTCTATACTTGAGAAACTCCATGCAAAAGGGTTTGTTCATGGAGATGTTAAACCTGAGAATTTTCTACTTGGCCAACCTGGATCACCTGATGAGAAAAAACTTTTTTTAATTGATCTTGGATTAGCATCTAGATGGAAGGAAGGAGGACCATCTGGGCAACATGTTGAATATGATCAGAAGCCAGATATTTTCAGAGGTACAATAAGATATGCTAGTGTCCATGCCCATTTAGGACGTACTGGTAGCAGAAGGGATGATCTGGAATCATTAGCATATACGTTGATATTTCTTCTCAGAGGGAGGTTACCGTGGCAAGGCTATCAGGGTGAGAACAAGAGTTTTCTTGTTTGCAAGAAGAAAATGGCTACGTCTCCAGATCTACTATGCTGTTTTTGCCCACCTCCATTCAAACTCTTCCTGGAGTCCGTGACAAATATGAGATTTGATGAAGAACCAAATTACTCGAAGCTTATTTCCCTTTTCGATGAATTGATTGAGCCCCAGCATTTGAGGCCTATTAGAATTGATGGTGCATTAAAGGCTGGACAAAAACGTGGAAGATTGCTTGTAAATCTAGAAGAAGATGAGCAACCGAAGAAGAAAGTTAGACTTGGGAGCCCAGCAAACCAGTGGATTTCAGTTTATAACGCTAGAAGGCCCATGAAGCAGAGATACCATTACAATGTAGCAGATGCCAGACTTCATCAACACGTAGAGAAGGGTAATGAAGATGGATTGTTCATTAGTTCAGTCGCATCTTCAGCAAACCTTTGGGCCCTCATTATGGACGCAGGAACTGGTTTCACATCTCAGGTTTATGAACTTTCACCCATATTCCTTCATAAGGATTGGATTATGGAGCAGTGGGAAAATAACTACTACATCAGTGCCATAGCCGGTGCAACGAACGGTAGTTCCTTGGTGGTCATGTCAAAAGGAACTCCATACACTCAACAGTCTTACAAAGTTAGTGAATCATTCCCCTACAAATGGATCAACAAGAAATGGAAAGAAGGTTTTCATGTTACATCAATGACAACTGCAGGAAGCCGCTGGGGTGTAGTTATGTCGAGGAACTCTGGATATTCTGAACAGGTAGTAGAATTGGATTTTCTTTATCCTAGTGAAGGTATCCACCGACGATGGGAAAACGGGTATAGAATAACTTCTACAGCAGCCACTGGTGATCAAGCTGCTTTTATATTGAGTATACCCAAAAGAAAGTTGATGGACGAGACACAAGAAACCCTTAGAACATCAGCTTTTCCAAGCAACCATGTGAAGGAGAAATGGGCCAAAAATCTTTACATTGCTTCAATATGCTATGGCCGGACAGTGTCATGAGGCTTGCTCGGCACTTCATCCCAAATCGGGAGAGAACATATTCAGATGAGTAGATATCAGAAAAATCAGCAATTTTTGTTGCTGGTCTCTGTTACTCTGTATGTGTAGGTAAACTGGTCAAGATGAACCACCTTACCATGGCCAGAGTAGGAGCTCAAGAAAGAAAAGGAAGGTAGGTGGAAAGCAAGCAGCCAATAAGCAGGCGTGGAGGATGTACCCGGCTAGTGGCGGTGCAGACGCCGATGGTGTCAACTGTTTTGCATCAGCGTGTTTTGCACTTTTGCTTCGCTCCTGACTGCTGTGCAAGAGTAGACAGCTTGTAGCCTCCGTTCGGAGGCAAGTCAATCTGAGAACCCATTGTGTATAGCGTATCATGTCATTGCATTTTGTTTAGTGGAAGCCAAGTTCCACGTTTCTGGAACTCAGGAAATGCTAAGTTATTGTGTGAGGAGAACAAGTGTACTGATAAAATTCGGTGTATCGATTCCATTATTTGATAATTCTCATTGCAGTAATTAATGCAATAATGTTGCATGACT +>XM_003142805.1 Loa loa hypothetical protein partial mRNA +ATGCTGAATGATACAGAAAATGAAGAAATTAAGGAAGATGGAAATGTTGAATTAATCATAGAGATTGATGAGAAGAAAATTGATTACTGTAGATATGATGTCGTAAATGTGATATACTATTTATCAGTGGCAGATTCCAATAATTATACAATTATTTGCATCAACCTGCTTAGTTACGGTAAAAGTCGTTCTCTAGACCGACAACACGAAGTAAATCGATGTATGAGGAATGTATCTTTTTGTGTGGAGCTTATGCAGGGGGAAGATCCTCGAACAGCAATACATATTGCTAGACAAGGAAAACAGCTCGTCAACGGTGTGATTTTGTTGGCCATAGCTGCTTTCATTGATCTACGTGGAACACGCGTTTTCCGTGGTGTAACTTTGATCAAAACATTGAATTTCTCGGAAATTGGAAACAAATTAGTGGGAAGACTAGATTGGCATTTGCCGATAAAAATGCGTACATAA +>XM_050796503.1 PREDICTED: Macaca thibetana thibetana RPGR interacting protein 1 (LOC126958262), transcript variant X8, mRNA +AGTAGGACTCAAAAGTTCCAAGGCAGTTGGTAAATGACAGTTATGAATAAAGCAAGGGGCAGAAAAAAACATGTAGGGGAATGAATGAGGAACTAGGTCCAGGAGATGCTGAACCTGGATAATAAAGACGTCATATCACACACCTTGGGGTATCCATCTGAGAGCTTGCTTTCTGTTGTCAGCATGCTGGACAGCAGTAGTCAGCCCCACTGGAGCAACGAGCTCATAGCAGAACAGCTGCAGCAGCAAGTCTCTCAGCTGCAGGATCAGCTGGATGCTGAGCTGGAGGAGAAAAGAAAAGTTTTACTTGATCTGTCCAGGGAGAAAGCCCAAAATGAGGATCTGAAGCTTGAAGTCACCAACATACTTCAGAAGCATAAACAGGAAGTAGAGCTCCTCCAAAAGGCAGCCACAATTTCCCAACCTCCTGACAGCCAATCTGAAGCAGCCACTCACCCAGCTGTGTTCCAAGACAATACTCAGATCCAGCCAAGTGAACCCAACAACGAAGAAGAAAAGAAACTGTCCCAGGTGCTAAATGAGTTGCAAGTATCACATGCAGAGACCACATTGGAACTAGAAAAGACCAGGGACATGCTTATTCTGCAGCGCAAAATCAACGTGTGTTATCAGGAGGAACTGGAGGCAATGATGACAAAAGCTGACAATGATAATAGAGATCACAAAGAAAAGCTGGAGAGGTTGACTCGATTACTAGACCTCAAGAATAACCGTATCAAGCAGCTGGAAGGTATTTTAAGAAGCCATGACCTTCCAACATCTGAACAGCTCAAAGATGTTGCTTATGGTACCCGACAGTTGTCATTATGTTTGGAAACACTGCCAGCCCATGGAGATGAGGATAAAGTGGATATTTCTCTGCTGCATCAGGGTGAGAATCTTTTTGAACTGCACATCCACCAGGCCTTCCTGACATCTGCCGCCCTAGCTCAAGCTGGAGATACCCAACCTACCACTTTCTGCACCTATTCCTTCTATGACTTTGAAACCCACTGTACCCCGTTATCTGTGGGGCCACAGCCCCTCTATGACTTCACCTCTCAGTATGTGATGGAGACAGATTCCCTTTTCTTACACTACCTTCAAGAGGCTTCAGCCCGGCTTGATCTACACCAGGCTGTGGCCAGTGAACACAACACTCTTGCTGCAGGATGGATTTGCTTTGACAGGGTGCTAGAGACTGTGGAGAAAGTCCATGGCTTGGCCACACTGATTGGAGCTGGTGGAGAAGAGTTCGGGGTTCTAGAGTACTGGATGAGGCTGCGTTTCCCCATAAAACCCAGCCTACAGGCATGCAATAAACGAAAGAAAGCCCAGGTCTACCTGTCAACCAATGTGCTTGGAGGCCGGAAGGCCCAGGAAGATGAGTTCAGATTGGAGTCTTGGGAACCTCAGAACGAGCTGCAGATTGAAATCACCAAGTGCTGTGGCCTCCGGAGTCGATGGCTGGGAACTCAACCCAGTCCATATGCTGTGTACCGCTTCTTCACCTTTTCTGACCATGACACTGCCATCATTCCAGCTAGTAACAACCCCTACTTTAGAGACCAGGCTCGATTCCCGGTGCTTGTGACCTCTGACCTGGACCAATATCTGAGACGGGAGGCCCTGTCTATACATGTTTTTGATGATGAAGACTTAGAGCCTGGCTCATATCTTGGCCGAGCCCAAGTGCCTTTACTGCCTCTTGCAAAAAATGAATCTATCAAAGGTGATTTTAACCTCACTGACCCTGCAGAGAAACCCAACGGGTCTATTCAAGTGCAACTGGATTGGAAGTTTCCCTACATACCCCCTGAGAGTTTCCTGAAACCAGAAGCTCAGACTAAGGGGAAGGATACCAAGGACAGTTCAAAGATCTCATCTGAAGAGGAAAAGGCTTCATTTCCTTCCCAGGACCAGATGGTACCTCCTGGGGTTCCCGTTGAAGCTGGTCAGTATCAAGCAAGGAGAAAATCTCCTCATAGGGGAGAAAGAAAGGAAAAGGAGCACCAGGTTGTGAGCTACTCAAGAAGAAAACATGGCAAAAGAATAGGCGTTCAAGGGAAGAATAGAATGGAGTATCTTAGCCTTAACGTCTTAAATGGAAATACACCAGAGCAGGTGAATTACACTGAGTGGAAGTTCTCAGAGGCTTACAGCTCCATAGGTGATGGCTTTAAAAATGAGCCAGAGGAAGAGGAAATGACATTATCCCATTCAGCACTGAAACAGAAGGAACCTCTACATCCTGTAAATGATAAAGAATCCTCTGAACAAGGTTCAGAAGTCAGTGAAGCACAAACTACAGATAGTGATGACGTCATAGTGCCACCCATGTCTCAGAAATATAAGGCAGATTCAGAGAAGATGTGCATTGAAATTGTCTCCCTGGCCTTCTACCCAGAGGCAGAAGTAATGTCTGATGAGAACATAAAACAGGTGTACGTGGAGTACAAATTCTACGACCTACCCTTGTCGGAGACAGAGACTCCAGTATCCCTAAGGAAGCCTAGGGCAGGAGAAGAAATCTACTTTCACTTTAGCAAGGTAATAGACCTGAACCCACAGGAGCAGCAAGACCGAAGGCAGTTTCTGTTCGACGTGCTGACTGGACAAGATCCTGATCAAGGACATTTAAAGTTTACAGTGGTAAGTGATCCTCTGGATGAAGAAAAGAAAGAATGTGAAGAAGTAGGATATGCGTATCTTAAACTGTGGCAGATCCTGGAGTCAGGAAGAGATATTCTAGAGCAAGAGCTAGACATTGTTAGCCCTGAAGATCTGGCTACCCCAATAGGAAGGCTGAAGGTTTCCCTTCAAGCAGCTGCTGTCCTCCATGCTATTTACAAGGAGATGACTGAAGATTTGTTTTCATGAAGGAACAAGTGCTATTCCAATCTAAAAGTCTCTGAGGGAACCACAGTAAAAAGTCTTATAAAGTTAACTTGCTATAACATGAA +>XM_032861595.1 PREDICTED: Lontra canadensis mitochondrial calcium uniporter regulator 1 (MCUR1), transcript variant X2, mRNA +CGCAGCTGCTGGTGTGGACTCGGGCCGGCGCGCCGCGCGAGCGGGATGAGCGCGCGCCCGGGCCTGTGACCGCCGTGGCGATGGACTGCGGCTTCGTCGCGGGCGGGAGATCGAAGCGCCCGCCGGGCCGCCGGCGGCTTGTGCTCTTCCTGCCTTCAGGCGGCTGCGGAAGCCCGGGCGGCCGCGGCGTCCCGGCGCGCTACTGCCTGTCAGCGCTGTCCGTGGGTCTGGGGGCGCTGAAGCCTCGCGCCCCGGCGGCCCCCCGCGGCGCGTCACGTGCCTCCCCGCTGCTCCTCCTCCTGCTTGTGCCCTCCCCGCGCCTGGCCACCGTCGCCCAGCGCCGGCCCCTAGCGGACCGGGAGCGCTCGCGCCTGGGGCCCTCTGTCCCCGCGGCTAGCCGCGGCGGCGCGGGAAGGTGCCTGCGGGGCCTCGCCCCGGGCGTCGCCTGGGCCGCCGGCGCCCTCCACCTGTGCCGCGGCCGAGTGGCCGCCATCACTTCGTCCAGGAGAGAGCTAAGCCTCTCGGCTGGGAGCCTGCAGTTGGAGCACAGGAGAGATCTGGAGCACAAAAGGCGAGATTTCACCTCTTGTGGGAACAAGAAGCTCTACTTTGACACCCACGCCTTAGTGTGTTTACTGGAAGAAAATGGCTTCACCACCCAGCAAGCAGAAATCACTATCTCTGCATTGGTCAAGATCACGGACGCCAACATGGATATCGTCTACAAGGATATGGTCACCAAAATGCAGCAGGAGATCACTGTTCAGCAAATAATGTCTCAGATTGCCAATGTGAAAAAGGATATGATTATTTTGGAGAAGAGCGAATTTTCGGCTCTCAGAGCAGAAAATGAGAAGATAAACGTGGAGCTACATCGATTAAAACAACAAATAATGGATGAAGTGGTCAAAGTCCGAACAGATACCAAGTTAGACTTCAATCTAGAAAAGAGCAGAGTGAAGGAATTGTACTCGTTGAATGAAAGGAAGCTGCTGGAAATGAGGACAGAAATGGTGGCATTGCATGCCCAGCAAGATCGGGCTGTCACCCAGACAGACAGGAAGATAGACACTGAGGTCGCTGGCCTCAAAACCATGCTGGAGTCACACAAGCTTGATAATATTAAATATTTAGCAGGATCTGTATTTACGTGCCTAACAGTAGCTCTGGGATTTTATCGCCTATGGATATAATAAAGTGTCTATTTAAAGA +>XM_032539735.1 PREDICTED: Etheostoma spectabile DNL-type zinc finger (dnlz), mRNA +CACGAGATTTGACGTCATCGGTCCGCGACACACACCATGTTGATGAAATCGTTAGTAACGTATACATCTACGCGTGTATGTCCTTCAAAACCTCACCTGTCGTGTTGGTTTTACAGACGTGTTTTGATATTTTACCTCCGGCCGATTCTTTGAGGACGATGTTGGCGGTTAACCGGTTGTTTCGCTGTTCTCGCGGTCGTTCAGCGCCGTCTGGACTCTGCGTTGTGCTCCACTGCCGTCGTCCAGGACCACCGACGACCACAGCCAGGTCGGGGCTTCTCTCCTCACAGGACCAGCGTGGTTGTCATACTTTGTTACCTGCAGACAGACGTGAAGCTCATCTTAGCGGTTATAGGGAGTTCTCAACCTGCCAGAGTATCAGAAGTGACGCTATTGGACAGATCCAGTCAAAACATTATCGACTCGTTTACACATGCAAGGTTTGCTCTACCAGGTCCACACAGAAAATATCCAAGCTGGCTTATCACAAAGGTGTTGTGATTGTGACATGTCCAGGGTGTAAGAATCACCATATCATCGCTGATAACCTCAACTGGTTTTCGGACCTGGAAGGGAAGAGAAATATTGAGGAAATCCTTGCTGCCAAAGGAGAGACTGTAAAGAGGATTGAAGGAAGTTCCGCTTTGGAGATTGTGGTGGATGAATCTATCAAAGAAAAGTCACAACATGGTGAAGACACAGAGAAATCAGACAATGAGCCAGAAAAACAGTAATGCTGTGTTCATACTGTATATGTATTTTGTAAGATGTTTATATTGAAATCCATAATAAAAACAAATATTTATATATAAATAAATGTCTTTATGAATTCTAAGCAAGGAAAAAGGGAACTGATCAAGATAGCTTTTAATATCAGGAATAGAATAGATGGAACTATAAATCCAGCTAACTGATAAA +>XM_027304875.1 PREDICTED: Coffea eugenioides probable LRR receptor-like serine/threonine-protein kinase At4g37250 (LOC113761756), mRNA +CCTTTTAGCCTTGTCTTCGTCCCCCGTCTCTCCTTACCATCTCTCAAACTGACTCCATTTACAATATCTCCTTAGTTTTGGTCCTTATATTTTTGGTCACCAAAACAACATCTGTGAAGTTGGTTACCGTCTCAATCGTTCTTATTTTCTCCACTTCTTCTTGCTTATGAATAGCAATGACCATCTCGGACTTCTATGAGCGCCTAATACCAAGAAACCAATGAGCAGCTGGTTTAGAATGAGAAGTTTTTTTCACATACTTTGGTGCTTTTCCACCCTGTTTTTGCGTCTTTTGCTTCCTTCTCTGGCTCTGAACGTAGATGGAACGCTCTTGCTTTCCTTCAAATACTCCATTCTCAATGACCCTTTGTCAGTGCTTGATAACTGGAACTATGATGACGAGACGCCGTGTTTATGGACTGGTGTGACGTGCGCGCAAGTTGAAACGCCCTTTGGCACGCCGGCTATGTTTCGAGTCATAAGCTTAGTTCTTCCGAACTCTAAGCTCTTGGGTTCAATTCCTGAAGATTTGGGATACATCCAACACCTCCGTACTCTTGATCTCTCTGGCAATTTCTTGAATGGGACCCTTCCCAATTCGCTGTTCAATGCTTCAGAGCTCCAAGTGCTGTCGCTGTCCAGCAATGCAATAACTGGCGGGCTACCGGGGTTCAGCGGAGGAGGACTGAAGAATCTCAAGCTCCTCAATCTCTCTGACAATGCTTTAGCTGGAAATCTCCCTCCGAATTTACCGTCTCTGCAGGAGTTAACTGTGGTTTCTCTGAAAAGAAACTTCTTTTCGGGTACTATTCCAAATGGGTTTCTGTACGTTGAAGTACTAGATTTGTCTTCGAATTTGCTGACTGGATCACTACCACTTGAATTTGGTGGAGAAAGATTAAGGTACTTAAATCTTTCTACCAACAAGCTCTCTGGCCCGGTATCTCCAGAATTTGCGAAGAAAATCCCAGCAAATGCAACTATTAATCTCTCATTCAACAACCTCACTGGAGAAATCCCTGAATCAATGGCATTATCTAACCAGCAAACAGAGTCCTTCAGGGGAAACATGGACCTCTGTGGCAAACCGCTCAAGAAACTTTGTACTGTTCCTTCAAGTTTATCGGCACCACCCAATATATCCACAACAAATTCCTCTGCTCCGGCAATTGCGGCCATACCACAGACAATCGACTCGACCCCCCTGCCAAGCTCACCGGGAGCAGCAGCAAATGCAGCCCAAAATCAAGGACAACACAGGCTAAAACCAGGAACGATAGCTGGAATTGCAATTGGAGATTTAGCTGGCATTGGAGTCCTTGCAATTATCTGTTTGTATGTCTACCAACTAAGGAAGCGAAGAGCAGATGAAGGAAGCAAAGAGATTCCACTTCCAGTAGCAGTAGATAAACAGCAGAAAGATAACGTCAAAGATTCACAGCTCTCAACAGCGAAGGAGACAACTTCAAGAAGCCTGCCCTCTTGGTCGTGCCTAACTATAAGAAATGGTGAAGAAACATCAGAGGCTACCGCCTCGGACTGCGATGATGAAAACAAGAACATGGACATTGGACATCAAATAGATCAGTATCATGAGAAGGAGCGGAGCACTAAGTACAAGAGCGAAAGGTCACTTGTGATGGTTGATGGAGAAACTGAACTTGATATCGAGACTTTATTGAAGGCTTCTGCATATATACTGGGGTCTAGTGCTGCTGCAAGCATAGTTTACAAAGCTGTACTTGAGGACGGTTCTGCATTTGCTGTTAGAAGGATTGGAGAGAGCGGTTTTGAGAGGTTCAAAGACTTTGAGAGTCAAGTTAAAGCTATCGCAAAGCTGCGCCATCCAAACTTGGTTCTGCTCAGAGGGTTCTACTGGGGAGACGATGAGAAGCTTGTCATCTATGATTACATCTCCAACGGCAGTTTAGCTAATGCCGGTTACAGAAAGGTTGGCTCATCACCTTACCATATGCCCTTTCAAGTCCGGCTAAAGGTAGCAAAAGGAGTTGCTAGAGGACTAGCATACGTCCATGAAAAGAGACATGTGCATGGCAACATCAAGCCTAGCAACATTCTTTTGACGCCAGAAATGGAGCCAATAATCAGCGATTTTGGGCTTCATTCGCTTCTACATGGCAAAAATAGCTACAAAACAGATGCCTTTTCATCTCGGCATTTCGGTAGCATGAGAAGCAGTACTAGTACTGCTACTGCTGCTACATCATCTTCTCGCGATGGGCTGCACGACCACTCTATCAATGGCAGCCCTTGCATTGCACCTGCAGGCTTCATGGGTTGCACATCACCTTATCACGCCCCAGAGTCGCTCAATAACCTGAAGCCTAATCCCAAGTGGGACGTTTACTCCTTTGGAATTCTACTGCTCGAGCTTTTAACGGGCAAAGTGTTTTCAGACCGGGAATTGGGCCAGTGGACCGCCGGCCTGCTGATGGAAGACAAGAACCGGGTGTTACGGTTGGCTGATGTGGCAATTAGAGGAGACGTGGCAAACAGGGAGGATGCCATGCTGGAATGCTTTAAGCTAGGCTTTAGTTGTGCTTCATTAAACCCGCAAAAGAGACCTTCCATGAAAGATGCGCTTCAAGTTCTTGATAGAATCCAGACTTCTCCTTCGTACTAATCATGGTGCTGGGCAAAAGCTTAAATATAGTGGAGAAAAAAGAGAAAGAGAAAGAGAAAAAGGGGCGATCGCCTTTGGTCTTTTTGACTTGGAAGAATGTCTGGCGGGAGGAATGCTTTTGTTGATAACTCGTACAAGTGTTGCAAAGTTTGACTGATGATGAATGAAATTGGTATTTGTGTAAGACAGAATTCCGACGGTCTATCATATGATATGGTGCATTTTATCTTTACTTTGTTGTTAAGAAAGTGAGCACCATAATGAGAACTTGCTTGTCTTGATAAGCGTTTGACATGCTCAGAGAAGCAGAGTAATTGCTCACTAAAGGAAAGGAGATTACAAGGAAGAATCAAGGAGCTGCAATATGAA +>XM_019217988.1 PREDICTED: Vitis vinifera uncharacterized LOC104878060 (LOC104878060), transcript variant X2, mRNA +CTTTAGTCTTGAGACTTTCCTCTCTTTCACCACTTTTTCTTCTCCTCTTCTCTTTTATGTACCTTATTGTCGTCACAATCTCACCTTCTCGTTCCAAACAAATTTTTTCCCCTGCTAGCTTAGAAAGTGAAAGAAACTGGAGGTAGGAAGACGAGGCTTATGGTGGCGTCTCCCCGAAGTGGAATCTAGGGCGCGGCGGAAGCCATAGGCTTGAAAGAAGGGGAAGTGAAAGGCGGAGGACTTTCGAGTTTTATTGGCCGAGAGGCTAGGGCACGGTGTGATTTGGTTCGATCTCGGTGTGGAAGCTCGGGGAATCAGCTTATTGCGTAGTGGTTTTGTGGTTGTGGGATTTTGGAAACCTTAGATTTGGGTCAGGGTTGTGTGGTTGGCTGATTAAGCTAGGGGCGGGGCTGCCCTTGCGATTGACTGGGTTTTCATGCTGTCAAAACCACTGCCTTGGGATCGGAAGGACTTCTTCAAGGAGAGGAGAGGAAGCACGAGAGGTTGGAGTCTTTAAGTTTGCTGCAAGATAGAGGACTCGCATCAGGGTTCTTGGGAGTTTGCTCGCCGGAATCGGCAGACTTGCGCCGTCCTACAGAAGCACGAGAGGTCTGAGTCTTTAGGTTTGCTGCAAGATAGAGGGACTCGCATCAGGTTCTTGGGAGTTTGCTCGCCGGGATCGGTAGACTTTCGCCCCCCTACAGGGACACTTTTCTTTGCCATGAGCAATGTTGGTGAGGTGGGTAAATATCAATACACTTGAATATGATTGTCACATCATTTGGGGGCTTTTGACTCTGGAAGATTTCTGATTAATGTCATTAAATTTTTTCTTTTTCTTTTGAAACAATATGCCCCTTGAAGACTTGCTTTGAATAAATAAGATTTTAACTTGTTTAGCATTGTCTATTGTTGTCTTATTGTATTAGAGAGAAGAAAAAATTACACCTTGATTCCATTATTCTCCTTTTCAATTCTATCTAGTTTATCATCTTTGAAAACTTGAAGACCTTCTACTTCTAGCTTTATCTTGCAGAAGGACAATGATTCCTGATCTATCTGAATGAGGTTTAACACCAAGAACCAGATCAGGCCTTGGACAACTCAGATGGAAATTAAATCTTGGATAAAGCGTCCCTGTGAGTGTACCATTGCCCATGATATATCACTGGAAAATGTTTCAAGAATGCATGAGCTTTCAGAAGCCTTCCATGCTATTTCCTTAAGACACACATGCCTCTTGTCTATCTTGGAGCAGTTTAGTAAACTGAGTTCTAGGGCCGGTGAACTCAACTTACAGGTGGAAGCTGAGAGATCTTATCATCAAACTGTACTTGCTACTTTAGAGAAACTATTCGATGAGATGATTATGGAGAAGAAACGAAATGAGTCTTCATCTCAGCCAATAACTATGGAGAAAGATGTTTGCGTTCCTACCACATCCAAGGATGCAAATTCAAATGGATTTGACGATCATGGACATGCAAATCAAAATGGTTCATACTTTATTGCAAAAGTTATACACCCATTTGATGCTTAAGCAGATGGAGAGCTCGGTCTTTCTGTTGATGATTATGTTGTCGTTCGCCAGGTACCACCTGCCTCTATTGCAAATCCATCTAGCAATAAGAGGAATGTTTGAGACCTTTTAACAGCTTATTGGAACTTTCAATGTTTTGTATTTC +>XM_024297971.1 PREDICTED: Oryzias melastigma barrier-to-autointegration factor (LOC112162223), mRNA +TGACTCCTCTTTCATACAAACGATCTCAACGCTCTGCCTCGTGACGTCACAAGAGGAGCGTCAACCGCCCCAGCAGCGTCCGGGTTCGGTTTAAAGTGTCCGGGGCAGAGAGCAGCGCTGACGCCTCTCAGGTGGTCACGTTCCAGTCGCCATGTCGACCACGTCGCAGAAGCACCGGGACTTTGTCGGCGAGCCTATGGGAGACAAACCTGTGATGGCGCTGTCGGGTATCGGAGACACGCTGGGGAAGAAGCTGGAGGAGCAAGGCTTTGATAAGGCCTCCGTGGTTCTGGGTCAGTTCTTGCTGCTGAAGAAGGACACAGAGATGTTCACTGACTGGCTGAAGGACGCCACCGGCGCCAACTCTCGCCAGGCCGGATCGTGCGCTCAGTGCCTGAAGGAGTGGTGCGACGCCTTCCTCTGAGACCCCGCCCCCTTTCCTGCTCCACCTGGTTCTGCTTCTGTTCTGCTCTCCGTCAGAACTGGTGTTCTCTGGATTTCTGTGAGAGAGCTCGCGGCGGCGACGCGTGTTTTATACCAATGTTTGCAGTTCACATGAATAAAAGGTTTGAATGTTTGAA +>XM_006985027.3 PREDICTED: Peromyscus maniculatus bairdii WT1 interacting protein (LOC102927739), partial mRNA +GCAGAGCGGCGGCTGGAGGCGCTCACGCGGGAGCTGGAGCGCGCGCTCGAGGCGCGCACGGCGCGAGACTACTTCGGCATTTGTATCAAGTGTGGGCTTGGCATCTACGGAGCGAGGCAGGCGTGCCAGGCCATGGGGAGCCTGTATCACACCGACTGCTTCGTCTGTGACTCCTGCGGGAGACGACTCCGCGGGAAGGCCTTCTATAACGTGGGTGAGAAAGTGTACTGCCAGGAGGACTTCCTGTACTCCGGGTTCCAGCAAACAGCTGACAAGTGTAGCGTGTGTGGACACCTTATCATGGAGATGATCCTGCAGGCCCTTGGCAAGTCCTACCACCCCGGTTGCTTCCGCTGCTCAGTGTGCAACGAGTGCCTGGATGGGGTCCCCTTCACCGTGGACGTGGAGAGCAACATCTACTGCGTTAGAGACTACCACACGGTGTTTGCACCAAAATGTGCTTCCTGTGCCCGCCCCATCCTCCCTGCGCAGGGCTGTGAGACAACCATTCGCGTGGTGTCCATGGACAGAGACTACCATGTGGAGTGTTACCACTGTGAGGACTGCGGGCTCCAGCTGAGCGGGGAGGAGGGACGCCGCTGCTACCCCCTGGAGGGGCATCTGCTCTGCCGCCGGTGCCACCTGAGGCGCCTGGGACCCGGCCCGCTCCCCTCGCCGGCTGTGCACGTGACTGAGCTCTGAGAAGCAGCCATCAGGAGAGACGGGGTGACCCACACCCCCCTCTCACCCCCTCCACCGAGCTGCTGTCCCTTACGCAGGGGCCGGACCCCTGCGACAAATAATCGATTTCTATTTATTCACCGTCCGTGCCTCAAGCTACTCCCCTGCTGGGTTCCAGGACACCCGCACCCTGCAGCCTCGGGACAGGCCCAGCTCCTCTGCCCAGCTCCTCTGCCTGACCTCGGCTCCCAGAGGGGCAGGGCTTGGAGGGCCTTGGTGCCATGGGGGAAGGGTGCCTTGTTTGTGTGTGATCACAGCCAGGGGGCAGTGACAACCTGGGAACACCGCGGTTTGGCCTTGATGGGTGTTTTCAGCCACAGTCCTCCACCTCTCGGGATCCAGTCTGGGCCGGTGCTTTTCCAGCATCAGTCTCAGAAGACCCTGAGCGAATTCAAAGGCAGAGAGAAAGCCCACGAGAGCTCCCAGCAGACCCCGGGAGCATCTGCGCGCACTGTATCAGGCTCCACCACAAAACTATGTGATTTGACTTAAATTAAGTTCCCCCCAAGGAGGATGTTGACATTTTCTTGAAAAGAATATAGTTTTCTTCTAAAAACTTGGA +>XR_005799689.1 PREDICTED: Rosa chinensis OVARIAN TUMOR DOMAIN-containing deubiquitinating enzyme 12-like (LOC112165159), transcript variant X19, misc_RNA +TAATTGTGTCCCATAGACCGAGTCACATCTCGACCTAATTGCAAAGTGGAAGACAAAACCTCTCGACCCTCTCAGTCATCTTCTTCACCACTTTCTCTTCCCCTTCTTATCCAAAATGAAAATCTTGTGCCCTCCTCACTGCTAATCCAAACCACTAATTCAATTCCTCAAGTTCCTTTCAATTTTTCGAAATCCATACCAAATCCGAGCGTCCTGACCTTGAGAAGCAGCAGCAGCGTGACGGAGGCGCCGAGGCGGTTACCTTAATTCCTAATTCTTCTTGCGTTGAGACAGGGGTTGAGTCTAGCCATCTGCGTTTCGACTTGTTCTGGGGAATCTCGAGCCTCTCATCGTCACTGTCGAAGACCTCGATGTATAGCAACAGATTTATTCCATGCCAATCGTCGTCCAGGCTCCACCAGTTTGGGCTGAACGACAAGGCGTTGCCGGTGAAATATAGTGGATTCAGAGAAGGCCAGTAGTCCTCTCCAGTCATTGTGTTTCTTCGCTCTCTTTCTCTCTCTAAATTTCCAAATTTGATTCTCACACTCTCTCTCTCAAAACCCTAACCCCCATTCTCTAGACCACAAGACTTCCGCTTCTCATTGCCGCTCGCCGTCGACCTGCCACGGCGTCGTTTCGGCTTCGTGTCGCATTATCGGTATTTCTCGGCGTTGTCGGTGATAGCCGGACGGAAGAAGGAGGGAGAGTGGGGGTTTTGGCTTTATGGGACTTGTACGACGGCGTTGGTGATTGGTCTTTGTTTTGATCAACATTCTGGCGTTTTGGCTCTCCGGAGAAGAGCTATTGGGGTATCGAAGGCTCTGTGGGAAAAGAGGTTTGTTGAGTGAAACTGCGAAGATGCTTCAAGGCTTTCCAAAGAGCAAAACATGAGCATGAGGCATTAAAGAGGCAGCTTGAAACTTATTTCCAGCTCAAGAAAGCAACCACAATCTCCTAAAAGCTGAGCTGAGAGGTACACACCAAGATTGAAATGGGGGAAAGGAATTGTATTAAAGATTTCATCTTTAGTAATTTTACTAATATCCCATCAGCTAAACTGAGTTTCAGGGATGTGTGAGCTGTTTTTTTAGTTGGGTAGTATGAATGGAAGCTATAGCAATGCAAATGTGAGCTCAAGCTCGAGTTTGAATAGCAGCTCTCATGATACCGAGGATGACCTGACCATTGCAACTGTTTTGGCAGAAGAGGAAAAGCAGAAAAATGATGGCAAGCTGGGGAAAAGACTCTCCCACTTAGATTTGATTCCGCACACTCTCAGGGTGAATGGGGAGATACCTGACGTGAATGATGCTACTCAAGACCATAAGAGGCTTTCAGAAAGTGTAAAAGTTGGAGCAGCTCAAGTCAAGTACGCTCAAAGAGATCATTCTGAAAAAGAAGTTAAAACTGGAGGACAAGCTGCTGGATGCTCCACCCGACACATTAGGTGCTGCTGTCTTGGCACTACACTATGCAAGTATGAGAGAACTTTAGTGGCAAAATTTCTCTCAATCACATTTGATTGTATCAACTTTTGCTATCTTTCAATGTAATTAGGTAGAATGCAGTAGTCATTAAACTAGCTAGAATGCCTTTTGTACGGTATGGATACAAGAATGTATATATGATTGACAAATGCTAGCTCCTTTGGTACATTAGATGGTTGAATTAGAATATTTCAATGCCTAAATCTTATATTAAGCATTATTTTTGTGCAAA +>XM_031791253.1 PREDICTED: Oncorhynchus kisutch protein-tyrosine sulfotransferase 1-like (LOC109884214), transcript variant X2, mRNA +AGACTCTAGTAAAGTAAGGGTGACGCGTTTGCAGCGATACAATTGAAAAGAAAGCAGTAACAAGTAATCTTGTGTGTCGGATCAGTGGAACAACAAGGGAGCAAATTGAACGGATGGAATTTACGAGTAACGGTGTTCACCTATGAGATAAGCAGCTTGATCAACTCTCTCCCGCGGTGGATCCTCTACATTTAGGCCTGATGGAGCTGGGCACGCGACAAGCGTTGACCACCGGGGAACACACAACACGCTCTGCCCCCCATCGCCGACCTTGAAAGGAGGGACACTCCGCTACTCCCAACCTTCCCTCCTCTTCCACTACCTCCTCTGGTACAACTCCCCCCTTCCTCCCTCCCTCCCTCCTCCCCGGTTCTGAAATGGTGATGGTGATGATGATGAAGCTGAAGCAGAACCTGCTGGTGGCCTGTCTGGTCATCAGCTCAGTCACAGTCTTCTACTTGGGTCGTCACGCCATGGAGTGTCACCACCGCATCGAGGAGCGCAGCAGCCAGCCTGGGGACCAAGGGGTTCTGGGGGGCCTTCAGGGGTCAAGAGGGTTGCTCCTGGGGGGTTCTTTGAGCTCCTCCACCATCCTGCGGGGCTCTGGTCCCGGGGGCCATAACCTCTCCGCTCCATTCGTCTACAACAAAGACATGCCTCTAGTATTCATTGGAGGGGTTCCCAGGAGTGGGACCACATTGATGAGAGCCATGCTGGACGCTCACCCCGAGGTTCGTTGTGGAGAGGAGACCAGGGTTATTCCACGTATCCTGGCCATGAAACAGATGTGGTCGCGGTCTGGGAGGGAGAAGATGCGTCTGGACGAGGCCGGGGTGACAGACGAGGTCCTGGACGCCGCCATGCAGGCCTTCCTCCTGGAGATCATCGTGAAGCACGGCGAGCCCGCCAACTTCCTCTGTAACAAGGACCCCTTCGCTCTGAAGTCCCTCTCCTACCTGGCTAAGATCTTCCCGCACGCCAAGTTCGTGCTCATGATCCGGGACGGACGCGCCTCGGTCCATTCGATGATCTCGCGTAAGGTGACGATCGCTGGCTTTGACCTGGGCAGCTACAGAGACTGCCTGACCAAGTGGAACAGGGCCATAGAGACCATGTACACTCAGTGCCTGGATGCCTCAGACAAGTGCCTGCCAGTGCATTATGAACAGCTGGTGCTCCATCCAGAGAAGTGGATGAGGACGCTGCTCAAATTCCTGGACATTCCCTGGAACGAGGCGGTGCTTCACCATGAAGAACTCATAGGGAAAGCAGGAGGTGTTTCCCTCTCCAAGGTGGAGAGGTCTACAGACCAGGTGATCAAGCCGGTCAACGTGGAGGCCTTATCCAAGTGGGTGGGCAAGATCCCTGTGGACGTACTGCGGGACATGCCCGTCATCGCCCCCATGTTGTCCCGTCTGGGGTACGACCCCCACGCCAACCCTCCCAACTACGGCCGGCCAGACCCCAAGGTCCTTGACAACACCAGGAGGCTTCAGAAGACTCCAGAGAAAACAAACCCCAGTTAGGAGGAGCAACCAACATGCCACACAGACAAGACGGGGCACCGATGGACAAACATCCAATACAACACCACTTTTTGGGGACCTCAGTACTCTTCCATGGACACACACACACAAACACATACGCTATATATACAAAAGTATGTGGACATTACTTCCAATTAGTGGATTCGGCTATTTCAGCCACACCCGTTGCTGACAGATGTATAAAATCGAGCACACTGCCGTGCAATCTCCATAGACAAACATTTGCAGTAGAATGGCCCCGAACTGAAGAGCTCAGTGACTTACAACGTGGCACTGTTATAGGATGCCACCTTTCTGCCCTGCTAGAGCTGCCCCGGTCAACTGTAAGTGCTGTTATTATGAAGTGGAAACGTCTTGGAGGAATCAACGTCAAAGCCACGAAATGGTAGGCCACACGAAGTCACAGAACTGGACCGCCGAGTGCTGAAGCGCGTAGAAATCGTTGCAAACACTCACTCACGAGCCCCTGGAAGTAACTTCAGCACAATAACTGTTCGTCAGGGGAGCTACATGAAACGGGTTTCCGTGGCAGAGCAGCCGCACACAAGCCTAAGATCACCATGCGTAATGCCAAGCGTCGGCTGTAGTGGTGTAAAGGTTGCCGCCATTGGACTCTGGAGCAGTGGACCAACTCCATATTAATGCCCGTGATTTTGGAATGAGATGTTCTACGAGCAGGTGTCCACATACTTTTGGTCATAGTGTATAACATCATGACTGGATATAACCGTATTCCACACTGGCTTTGTGGAGAAACTCTCTTGGCCTTTTGATGTTCGTACTGTAAACAAATGATGCATTTGTCACAAAATGGTGACCAGAGAATGTCTATGTTACTATCTTTCTTGTCGAGGGTTGCAACATTTCCCCAATTTCCTAGATTTTCCAAAAAAATCCCAGTTGGGAGATTCCTGAGATCCTACAACCAGGATTTCTGGAAAAACATGGAAATATTTAGAAAGTTACCAGAATTTTTAAAAACAATTCTCGTGACACCAAATGTTTTTTTCTTCTTTTAAATGATTTCTCCTGTAAATATAAATATATAAATCTGTGATTCTGTTGTAAGAAAATACAGTGGACTTAAACATCAAAAAAAGTGAATAATGTATTTATGGATGACATTTTGCTTTTTGAAGATGCAATATCTATTTTAATGTTTGTTTTTCATGCCTTTCTATAGTGCGATTCCATGGGTACGGATGTACAAGATCTGTTTTTAAGTATTGACAGTGATAAAAGATGGCATTTTGTAAA +>XM_031379489.1 PREDICTED: Mastomys coucha kinesin family member 1B (Kif1b), transcript variant X9, mRNA +ATGTCGGGAGCCTCAGTGAAGGTAGCTGTCCGAGTGAGGCCCTTCAATTCTCGAGAGACCAGCAAGGAGTCCAAGTGCATCATTCAGATGCAAGGCAACTCGACCAGTATTATTAATCCAAAGAACCCAAAGGAAGCACCAAAGTCCTTCAGCTTTGACTACTCCTACTGGTCGCACACCTCGCCTGAAGATCCCTGTTTTGCATCACAGAATCGTGTGTACAATGACATTGGAAAGGAAATGCTCTTACATGCCTTCGAAGGATATAATGTCTGTATCTTTGCCTATGGGCAGACTGGTGCTGGGAAATCCTACACGATGATGGGGAAACAAGAAGAGAGCCAAGCTGGAATCATCCCACAGTTGTGTGAAGAACTTTTTGAGAAGATCAATGACAACTGTAATGAAGAGATGTCTTACTCTGTAGAGGTGAGCTACATGGAAATTTACTGTGAGAGAGTACGAGATTTACTGAATCCCAAAAACAAGGGTAATTTGCGTGTGCGTGAACACCCGCTGCTTGGACCCTATGTGGAGGATCTGTCCAAGCTGGCAGTCACTTCCTACACTGACATTGCTGACCTCATGGATGCTGGGAACAAAGCCAGGACGGTGGCAGCTACCAACATGAACGAGACAAGCAGCCGTTCCCACGCCGTGTTCACCATTGTCTTTACCCAGAAGAAGCAGGATCCTGAGACGAACCTTTCTACTGAGAAGGTCAGTAAAATCAGCTTGGTGGATCTAGCAGGAAGTGAACGAGCTGATTCAACTGGTGCCAAAGGAACAAGATTAAAGGAAGGTGCAAATATTAATAAGTCTCTTACAACTTTGGGCAAAGTCATTTCGGCCTTGGCAGAGGTGGATAACTGCACAAGCAAGAGTAAGAAGAAGAAGAAGACTGACTTTATTCCCTACAGGGACTCTGTGCTCACTTGGCTCCTTCGAGAAAACCTAGGTGGCAACTCCCGAACTGCAATGGTTGCTGCTCTGAGCCCAGCAGACATCAACTACGATGAAACGCTGAGCACGCTGAGATATGCAGATCGTGCAAAACAAATTAAATGCAATGCTGTTATCAACGAGGACCCGAATGCCAAGCTGGTTCGTGAGCTGAAGGAGGAAGTGACCCGACTGAAGGACCTTCTTCGTGCTCAGGGGCTGGGAGATATTATTGATACATCCATGGGGTCCCTTACTTCATCTCCATCTTCATGCTCACTTAATAGTCAGGTGGGCTTAACATCTGTGACCAGTATTCAAGAGAGGATCATGTCTACACCTGGAGGGGAGGAAGCCATTGAACGTCTGAAGGAGTCAGAGAAGATCATTGCTGAGTTGAATGAAACCTGGGAAGAGAAACTTCGTAAAACAGAGGCCATCAGAATGGAGAGAGAAGCCTTGTTGGCTGAGATGGGAGTTGCCATACGGGAAGATGGGGGAACACTTGGTGTTTTCTCCCCTAAAAAGACTCCACATCTTGTTAACCTCAATGAAGACCCACTGATGTCGGAGTGTTTGCTTTATTATATCAAGGATGGAATTACAAGGGTTGGCCAAGCAGATGCTGAGCGGCGCCAGGACATAGTGCTGAGTGGGGCCCACATTAAAGAAGAGCATTGTATCTTTCGGAGTGAGAGGAACAACACTGGTGAAGTTATTGTGACCTTAGAGCCCTGTGAACGCTCGGAAACATATGTGAATGGCAAGAGGGTGGCCCATCCTGTTCAGCTGCGCTCAGGGAACCGTATCATCATGGGTAAAAACCATGTTTTTCGTTTTAACCACCCTGAACAAGCACGAGCAGAGCGGGAGAAGACTCCCTCTGCCGAGACCCCCTCTGAGCCCGTGGACTGGACATTTGCTCAGAGAGAGCTTCTCGAGAAACAGGGAATTGATATGAAACAGGAGATGGAAAAGAGGCTTCAGGAAATGGAGATCCTTTACAAAAAGGAGAAGGAGGAAGCTGACCTTCTTCTGGAGCAGCAGAGACTGGACTATGAGAGTAAATTGGAGGCCCTGCAGAGGCAGGTTGAGACTCGATCTCTCGCTGCAGAGACAACGGAAGAAGAGGAGGAGGAGGAGGAAGTTCCTTGGACACAGCATGAATTTGAGTTGGCCCAGTGGGCGTTCCGGAAATGGAAGTCTCACCAGTTTACTTCATTAAGGGACTTACTCTGGGGCAATGCCGTGTACCTGAAGGAAGCCAATGCCATCAGTGTGGAACTAAAGAAAAAGGTGCAGTTCCAGTTTGTTCTGCTGACTGACACACTGTACTCCCCTTTGCCTCCTGAATTACTTCCCACGGAGATGGAGAAAACTCACGAGGACAGACCTTTCCCTCGGACAGTGGTGGCGGTGGAAGTCCAGGATCTGAAGAATGGAGCAACACATTATTGGTCTTTGGACAAACTCAAACAGAGACTGGATCTGATGCGAGAGATGTATGACAGAGCAGGAGAGGTGACCTCCAGTGCCCAAGATGACAGTGAGACGACCATGACCGGCAGCGATCCGTTCTATGATCGGTTCCATTGGTTCAAACTTGTGGGAAGGGCATTCGTGTACTTGAGCAACCTGCTGTATCCGGTGCCCCTGATTCACAGGGTGGCCATTGTCAGTGAGAAGGGGGAAGTCCGGGGATTCCTTCGTGTGGCTGTGCAGGCCATTGCAGCCGATGAAGAAGCTCCTGATTATGGCTCTGGAATTCGACAGTCGGGAACAGCTAAAATATCTTTTGATAATGAATACTTTAATCAGAGTGATTTCTCTTCAGCTGCAATGACTCGTTCTGGTCTGTCCTTGGAGGAGCTGAGGATTGTGGAAGGTCAGGGCCAGAGTTCTGAAGTCATCAGTCCTCCAGAAGAAGTCAGTCGAATGAATGACTTGGATTTGAAGTCAGGCACTTTGCTGGATGGGAAGATGGTGATGGAAGGGTTTTCTGAAGAGATTGGTAACCACCTGAAACTGGGCAGTGCCTTCACCTTCCGGGTCACGGTGCTGCAGGCCAACGGAATCCTCCCAGAGTATGCAGACATCTTCTGTCAGTTCAACTTTTTGCATCGACATGATGAAGCATTCTCCACTGAACCCCTCAAGAACAATGGAAGAGGAAGTCCCCTGGGCTTTTACCATGTACAGAATATTGCGGTGGAGGTCACCGAGTCATTTGTGGACTACATCAAAACCAAGCCCATCGTATTCGAGGTCTTTGGACATTACCAGCAGCACCCACTTCATCTGCAAGGACAAGATCTTAATAGTCCACCTCAGCCATCTCGAAGATTCTTCCCCCCACCCATGCCACTCTCCAAACCAGTTCCAGCTACTAAGTTAAACACCATGAACAAAACCACCCTTGGGCAAAGCATGAGCAAGTACGACCTTCTGGTTTGGTTTGAGATCAGTGAACTGGAGCCTACTGGAGAATATATTCCAGCTGTGGTTGACCATACAGCAGGCTTGCCCTGCCAGGGGACATTTTTGCTGCACCAGGGCATCCAGCGACGGATCACAGTGACTATCATCCATGAGAAGGGCAGTGAGCTCCACTGGAAAGATGTTCGTGAACTGGTGGTAGGTCGGATTAGGAACAAGCCTGAGGTAGATGAAGCTGCAGCTGATGCGATCCTTTCCCTAAACATCATCTCCGCTAAGTCCCTCAAGTCTTCCCACAGCTCCAGCAGGACCTTCTACCGTTTCGAGGCTGTATGGGACAGCTCCCTACATAACTCCCTCCTCCTCAACCGAGTGACCCCCTATGGAGAAAAGATCTACATGACCTTATCTGCTTATCTGGAGTTGGATCATTGCATCCAGCCAGCCGTCATCACTAAGGATGTGTGCATGGTCTTCTATTCTCGAGATGCCAAGATCTCACCACCACGTTCTCTGCGAAACCTCTTTGGTAGTGGCTACTCAAAGTCGCCAGACTCCAACCGAGTAACTGGAATCTATGAGCTGAGCTTATGCAAAATGGCAGACACTGGGAGCCCAGGCATGCAGAGGCGGAGGAGAAAGGTCTTGGATACCTCCGTGGCGTACGTGCGGGGGGAGGAGAACCTAGCGGGCTGGAGGCCTCGTGGAGATAGCCTCATTTTGGAACACCAGTGGGAGCTGGAGAAGCTGGAGCAGCTGCACGAGGTGGAAAAAACTCGCCACTTCTTGCTGCTTCGGGAGAGACTTGGTGATAGCATACCCAAGTCTCTGAGTGACTCGTTGTCTCCCAGCCTCAGCAGTGGGACCCTTAGCACCTCAACCAGCATCTCTTCTCAGATCTCAACCACCACCTTTGAAAGCGCCATCACACCGAGCGAGAGCAGTGGCTATGACTCAGCTGATGTTGAAAGCCTGGTAGACCGAGAGAAAGAGCTGGCTACAAAGTGCCTGCAGCTTCTCACCCACACTTTCAACAGAGAATTCAGCCAGGTACACGGCAGCATCAGTGACTGTAAGTTGTCTGACATCTCTCCAATTGGACGGGACCCATCTGTGTCCAGTTTCAGCAGTTCCACCCTCACACCCTCCTCCACATGCCCCTCTCTGGTGGACTCCAGGAGCAGTTCTGTGGATCAGAAGACCCCAGAAGCCAACTCTCGGGCCTCCAGTCCTTGCCAAGAATTTGAACAGTTTCAGATTGTCCCAACTATGGAGACACCCTATTTGGCCCGAGCAGGAAAGAATGAATTTCTCAATCTTGTTCCAGACATTGAAGAAGTCAGAGCAGGCTCAGTGGTATCTAAGAAAGGATACCTGCATTTCAAAGAGCCGCTTTCCTGTAACTGGGCTAAACATTTCGTTGTGGTTCGTCGCCCTTACGTCTTCATCTATAACAGTGACAAAGACCCAGTAGAGCGTGGCATTATTAACCTGTCTACAGCACAGGTGGAGTACAGCGAGGACCAGCAGGCCATGGTGAAGACACCTAATACTTTTGCTGTATGCACAAAGCACCGTGGGGTCCTTCTGCAAGCTCTCAATGACAAAGACGTGAATGACTGGTTATATGCCTTTAACCCACTTCTGGCTGGCACAATAAGGTCAAAACTCTCTCGAAGATGCCCGAGCCAGCCAAAGTACTAAGCGGTTCTTCTGAGCCTTGCTCACCTGTGACAGATAAAGAAAGTGTTACCTCTCATTCTCTCTCTTTGTGATTCTTGACGGTTATTCTTGTATGTAATCCTGTGGCTTAATGACTTTTCCCTCCCTCGTCATCCCGCACTTCTCTAGTTCTCCTGTTCCCTCTCTCCATGGCTCTGTACTCTTCTTATTCTTGTGCTAAGACTTGTAGCATGTGGCCTAACAAAGGGGAACAAAACCACTACACATTCATATACACTCACACCCACGCACCCTGAGGGGATCCAGCACATCTCCAAATGATTTTCCTGTGTACGTTAGCTTCCTTTTGGATGATGGGTCCCCTTCATGGTCACTGTCCCCCTGTTGTTTCTGTATGGCTCTGGTTTTCAGGGTAACTTCTCTGTCTCTCTTTTTTCCCTCCTTTGTTTATGATAATCTACTTTTTTCTGGGTGGTTTAGATACTAAGGGAGGAGACGTTTGGTATTGTCAGCCAGGAGAAAAAAACTTGCTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTGTCTCTCTTTGTGTGTGTGTGTGTGTCTGTGTCCATGTTTCTCTCTCTGTCTCCGTCTCTCTCAATGTCTCTGTCTTTGTCTCTCTCTTTGGTTGCTAATCCATGTATTTCCATTCAGGGAAAGCACTGTGGGAAGCTCAGAATTGGGATTTTAAATTCTCTGTCTAAATCAGGGCGCAGAGCATGGGCTTATAGAGAGGAAGATGCAGAAGGGCCTTTGTGATCAGCCTGCAGCAGAGGCTGCTGCAGTAGACTGCTGGAGCTCCTCACAGCCGGGTCCTGCAAATGTCTCCTCCCTGGGAAGGAAGCTTTTGTCTAGGAGTTCCCCAGCCCTATTCTCAGCATTACTGTTTAGAATTACGAGATGTCATGAACAGATTTCCCACAAGAGGGATTGGGGAATGTTTGACTTTCTAGTGATAGACTGGACCATTGTTGCTTTGAGAGTGCTGAGTGCAGCTTGTGATTGTTGTAGCTCCCTTTGATCAAAGACTTGTAGCTTCAGCATAAATCTTGAGGTCTCCATCTAAATCCAGTGGCCATTTTCAATGTATGAAATATGAGCAAACATGGCATTGTTTTTTAGATGCCAGAACTGGCCGGTCCTTACCACCACTCCAAACAAATCACAAGATATTTAGGGTTGAAAAAGATTGTGGATTGTGACATGCCTCCTGTGTGACATGCCCCTGACCCCACTATCCCCATGTGGTTTGGAAATACTCCCTTAGGAAGAATTCACTGCTCCCAGTTTCTGTGGCTTCTAACAAACCAGGTCTCTGGATTCAAGAAGTTATCATAGAAAATAACACTCTCCCTCCACCAGCTAGTCAGTGTTGGGGACTGAGTAGGGCACAGAATGCCCGCTGGAGCTACTTGAGTTGTGTGCCAGCGACTTGAGGCTCATTCACACTGCTGTGTCCTGGCTTCGCCAGCCTGCTTCAGTGCCACTCATGCACCCAGGAAGGCATCTGCTCACCTCCACTCTACAAAGGCTCCTGGCTACCTGAGGGTAGAGAAGGAATGGATTGCCTTCTGTTGGGAGCTCATCTCCACTGCAGAGCAGCCACCAGGGAGGCGAGCGAGCATGCAGCCCCTTGCTGCTGACCTCTCGGCAGGGCTTCTCTCGGAAGAACTGGTCTCCAGCTCCTTTTGTTACAGCTGCCTTGCAAAGAAAGGGAAAGTGGACATGGAGAAAAGAAAGGGCAGAAATCAGACTGTTCTTATCTAAAAGATGATCAACTCCAGTAGACTTGTAAAACTTTCTTTCTCTCCTTAAAGTATAGGTTACTAACTGTAATGTTACTTGTTTTCTAAGCATATATATGAGATTTTTAATGTAGTTAGAAGTCTCTGTTGTCTGATGGACACAACATGTCCTTCTGGTGTATACTCAAATTCAGCAGGCTCTGTCTATGCTTGTAGACAGTTTCCTGGACCGGAACTAAATATAATTTCAGGGAAACAAAGATCAAAGGTCGCTTTTAAACTGAGTCACTGATGTTGCTGCTGTTAGAAAGGTAGATGGAAGGATCCGCGTCTGTGCGAGGTGAGAAGCCTGAGGGAGGGTGAAGTGTGCGGTACACTAAACCCTGCGATGACTTGTGTTTTCTTTTAACTCAAACAAAACTGGTTTAGAAAGTCTTTGCTTTGCAAATATCAAATATTAGCATGAGCCAAACTGGACTGCCCCTTCATCAGAGGCGCCCCCCCATAAGGAGGCCTCATTAGGAAGCCAGGGAAAGGAAGGTTGGAGCTTGGGCACGTGTGCTGCTACCTGCCATCATTGGGGCCCCCCCTGACTGTAAGGCCCATGGTCAGATCAGAATCAGAGCATTTGGGGGCTTTACTTTCTGTTTCCAGACAAGGTCACCTCTGCTTCGAAGCTCTGCAAGAGAAAAGGTTTTATGGCAGGACCTGTTCATGAGATTTTTGTGGTTGCCATAGTAGCAGGAAAGTTAAGACAACTAACCTTAAAGAAACTTTTTTTTGGGGGGTGGGGGGTCTGAGACAGGGTTTCTCTGTGTAGCCCTGGCTGTCCTGGAACTCACTCTGTAGACCAGGCTGGCCTTGATCTCAGAAATCCGCCTGCCTCTGCCTCCCAAGCGCTGGGATTAAAGGTATGTGTCACCACCACCTGGCAAGAAACTATTTTTAAGGTAATTTTAAAAAAAATTTCAAAGCACTCCTTTAAACAAAAAACCTACAAGGAAAACATACAGATTACAGAAAAGTGAGTGCTGGTTGAAATGAATTAGCCTCCCCCTTCCTTCTTTATCCTCCTTCCTCCCAAGCAGATATCACTCCTAACTGTCCCCCACGCCAGTGCTCAGGCCCAGCCTGCTTCTGGGGCTCTACCCTGGGAGTCAGCCAGCTCTCAGCCCCAGACTGTCAGGGACCAGGCAGTCCCTGCACAAGGCTAGGCAGGAGCACAGGCCAGACTGCTTCTGAGCAGGCCCCTGATCTCCATCCATAAATGAGGCGAGCTAAAGCTTCCTCAGCTAGGAAACCTTTCCTCCCCTTCAGCTATATGGAATGTATATATCTATTAAATTTTTATCTTGTTTTGATGAAAGGATGAATGGTTGTGAAAGGTATTTGGGGTCTAAAACCATGATTTTTTCCTGGCACATATTTCAAAGCATAGACTTTGTTACCTGCTGCTTCTTGTCTAATTTACAGGGATATTTAATTTTGTAAGGTATTTGTATATTTATACAGCTGTAATGAATTGCACATTGGACTGGAAGGGGAAGGCTCTGCCCTGTGTGGCTCCTACTGGAACTCTTGCATTTTCCTCTTGGGCGCTGTGCTTTGGCCCATCTGAACAAAATCAGGGGTGTGTGGTTTGTTTAGCGTGGGTCCATCATTTTCATTTGGGTTCCTTTTGGAAAATGTAATCTTTAACTTGCTCTGTGAGAAGAAAAGAATAATTGTGTTGCTGCTCTTGGAAGGTCTGCTGAGTGCATTTGAGTGAACTCTGGCGCTGTGTACTGCAGCCATCCACCATGACCTGTGATCCACCAAGAGTGAGTAAGACCACGACCATGGAGCAAGTCAGAGATTGTCAGGCGAGAGATTATTGCTGTTACTGTTCAAAAGGCCATTTATGAAGTAGATATTTGAGCTCTTTAAAAAAAAAATCTTAAGAGAGCCCCTAATTACTTAAAGAAAAAAAGAAATTTAAAGAGTTAATACAGAACTGGTATTAAAAACTTGCAGGCAGAGGTTAGAGCACTTGGCAATTTTACGTGATGCCTTTGGTTCAATCCCGGTGCTGCAGATCAGACAGAAAGCCAGGAGGCAGAGAGCTGCGCAGACAGAAAGTCTGTTATATGTTGTCATGTCTTTAATTGATTCTTTTCATGCTGTGTATTCTGGCATCAGTTCACCTAAGGGACCCACCAGCCTCCTCATGTTTAAGCATTGTCGTAGACTTTGTGGCTCTAACATACTTGTCTGTTGAGAGTGGCGTCTCTTGTCACCATCCCCATGCTATAACAGAACCCATGAAGCATAAGTGGCCTTTTTGAACCAAGACTTTGCAAACTGATCTCTCCCCAGGGAAGGAGTTGAGCACAAGCAACAATGTACATTATTAATTTTGGATTTCATTTTCATGTTTTATTTTGTAAATATCTAATGTTTGGAGCTTGAGTATACAAAATGTAAATACAGTTCTCGTATTTGTACTAATCCTGATTCTTTTGCTGTATAGCCCTAGCTGTGTAATGCAGACATTATCTGACTGTGTATGGTAACCTTGCATCACAGAACTGCTAGTGAACGAGCTAAAACAATAAAGGTACAACCAGTGCA +>XM_039680831.1 PREDICTED: Pimephales promelas family with sequence similarity 49 member A, like (fam49al), transcript variant X3, mRNA +AGATGAGCAGCTGCTAGGCAGGACTGTCTTGAAAGCAGAGAGACAGTGAGAGAGACCATTTGGTGCCTGAACGCGAGCGAGGGAGGGGGCGAGAGAGACGCACACACTCAGCGTGAGCCTCTGGTTTAAGTAGACACTAACCGTGCGTTTAGGGAAACCCACAGTCTCAGCTCCCTGGGATACAGGAGTTTCTGGCCCTGCTCTTTTTCCCCTTTTCATTCTTTTATTTTACTCCCTCCATCTTTTCTCTTCTTCCCTTTGCCTACGGAAAGCGCTGGACCACTGTTTTCTCCCTGAAACACGCCAAGCCGGTAGTGGAGGCTGATGCTGTGATACACTGCAGGAGAAACATACAGGCTCTCATTTGATGCAGTGAAGTGCTCTGTGAGGAAAATCGCAAGCAAAGGTTTGCCGGCCATGGGGAACCTCATTAAAGTCCTTGGCAAGGATTTAGAGAACTGTCCTCATTTTTTCCTGGATTTTGAAAATGCTCAGCCCACAGAGGCCGAGACAGCCGTGTATAACCAGGTTAGTGCTGTTCTGGAAGAGGCCCATGGGATACTGGCAGAACTACAGTCTTACAATGGAGCAGGACAAGAAATAAGAGAGGCCATTCAGAACCCCAATGACCTCCAGTTGCAGGAGAAAGCCTGGAATGCAGTCTGCCCTCTGGTGGCCAAGCTCAAGAGATTTTATGAATTTTCTCTCAGGCTAGAGAACGCCCTGCGGAGTCTATTGGAGGCCCTAACAAGCCCACCCTACGCTCCCATGCAGCATCTGGAGAGAGAGCAGGCCCTCGCCAAACAGTTCGCAGAAATCCTGCACTTCACTCTCAGCTTTGATGAGCTTAAAATGACAAATCCAGCCATACAGAATGACTTCAGCTACTATAGGAGGACCATCAGCAGGAATCGTCTGAACAACCAGCAGTTAGAAGCTGAGAATGAAGTAAATAATGAAATGGCCAATCGGATGTCGCTCTTCTACGCTGAAGCCACACCCATGCTCAAAACCCTGAGCAATGCCACGACTAAGTTTGTGTCGGAGAATAAGACTTTGCCAATCGAGGACACCACAGATTGCCTGAGCACTATGGCCTGTGTGTGCCGTGTCATGCTGGAGACTCCGGAGTACCGGTGCCGTTTCACTAACACAGACACCATGCTGTTCTGCATGCGTGTGATGGTGGGCGTCATCATCCTTTATGACCACGTTCATCCAGTGGGTGCCTTTGCCAAGACCTCCAAGATTGATATGAAGGGCTGCATCAAGGTGTTGAAAGAGCAGCCTTCAAACAGCGTGGAGGGACTGTTGAATGCACTGAGGTATACCACAAGACATTTAAATGATGACAGCACCTCAAAACAAATCAGGGCTCTGCTTCAATGAGAGCAGGAGGAGAGGGAGGAGGACCCACAGAGACAGGGACTGTCAGAGAACAAGCGATGGTGGCTGGCAGTCCTCTGAAACCTGTTTGTTTACAAGAGCAACTTGATCTCAAATGAAATAAGATATTCTAGAAAAGAAAAAGGAATACGAAAATAAATATATATATAGAGAGAGAGATTGTTGATGGTTCATCACCGTGTGTCATTTTATAAAAGCAGGAAAAATAGAGATATATATGTATATTAAAATTCATTACTTAAAACTACCTGGGTGTGGATATAAAAGTCTTTCAAAAACATATTAAATATTTAAGAATTGAATTTAAAAGCGGTAGTTAAAACCACCAACAAAACTGGTTCATATTCCAAGTTCCGCCTGAGAGTATTTTTGCACACTTGAAAAGGAATCCCACCTCACAGGAAAGACATTAACATGGCTTGAAACTGTATAATTCAGATCCCTTTTCACGCGTTTTTAGACTTGATTTGATTTGCAACGCCTCGTTATTCCCGTATGTGCTTCGTCCAATGCATTCTGGGAATTAAAACCGGAGTCCTTGGCATTTCAAGTCTGTTGAAGGATAAATGTAAAGATCACATACTTGAGACGCATCTCTGCTGACATCGCCAGAAATCAAACTATAATCCTCTAGCTGTATATACTCGGAAAGCACAGGATAGTTTTGTAAAGAAATGAAGCGTTTTGTTAGACTTCTTCACTAGTGCTGTACAGCAATACTCTATACCACCAATGTGACAAACCCGTTCATTTGAAATGCCTTCATACCAATGTATGAGACGCCGGATAATGCTAACAGTTCATCTGTGGAGTTGTACATATCATCAGACGAACAATCCTTTAAAAGTTACGTTTTTGCTCTTGTAAAGTTGACGTTCAAACGGAGCGAGTAAGCCATGAAACTGTAATTCAGACGCAAACACACATTCTGCCCTGTGCCATAGCTGCTTCCTGTACCACTGCGTCAGAGTGACGTATAACAAACATCATTCGTAGAAACCAAAACACACCATTGAGAACAACACAGCGATGTGGATTTGCTTTCCTCTGTATCCAAAAGCAAATCATTGCCAAATGGGACTGCAACTTTGCCTTTCAGATAAATAGAAGTGAGACGTTTGGTCATGAACACAATCTCAAAACAACAGGCTTGAAGGTGCAAAACACTTGACTTGGTGTAAATAAGAGGATTTTTACTAAACAAACGTTCCATCGAGACTCTTTGTTAGAATTACAGATGCATATTAAAAAAAAAAAA +>KC305230.1 Stachybotrys sp. HGUP 0107 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene and internal transcribed spacer 2, complete sequence; and 28S ribosomal RNA gene, partial sequence +TCGTTGCTTCGGCGGGAACGCCCCGGCGCCCTGCGCCCGGATCCAGGCGCCCGCCGGAGACCCCAAACTCTTGTGTTTTTTTCAGTATTCTCTGAGTGGCAAACGCAAAAATAAATCAAAACTTTTAACAACGGATCTCTTGGCTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGTTAGCATTCTAGCGGGCATGCCTGTCCGAGCGTCATTTCAACCCTCAGGGTCCCCGTTCCGGCGGGGAACCTGGTGTTGGGGATCGGCCCGCCCCGTGCGGCGCCGTCCCCCAAATTCAGTGGCGGTCTCGCTGCAGCCTCCCCTGCGTAGTAGTTACAACCTCGCATCGGAGCTCAGCGCGGCCACGCCGTAAAACCCCCGACTTTCTGAACGTTGACCTCGGATCAGGTAGGAATACCCGCTGAACTTAAGCATATCAAT +>XM_052206935.1 PREDICTED: Mytilus californianus uncharacterized LOC127702642 (LOC127702642), transcript variant X2, mRNA +AGGTTAATAGATGTAGTATTTAAGCGTATATCAGAGCAACGTTACCCAACATACCACATACGAAAAAAAAAAAAAAAAAGGGATAGCATGCTTAACAAATTACAAGTATTCGTATGTTTTCTGATTGTCAATTATATATTTTGCGAAGACACCGATGATTGCAAGGATGAAATATGTAGGAAGTCGTTAGCAATGCCACTATTGAACAATCTGAAAGCACCTCTTGTTGCCAATTTGGATATAACTCAGTTTAACAAGCAGCTACGAGGGTACATTACAGAACAGATCAAGCAATGAGTAGAGCAGGCAAAGAAAGAAATAAGGGGCGAAATGGTAGAACTCGTCGACACATTCGAAGACGCTCATGTAAACGTTACACAAGACCTTAGCAAAGATTTGAACGAAATCAGGCGTCAACAAATGCAAATGGAAGATCGTGCAACTAAAGAAAATGAAATATCGGGTAATTTTACGTTTGAAATTATCGATGGAATGAAGAATATAGAACGACATCAGAAAGATATTCTGACAGATGTGGAGCAGTTGAAACGTTATAAAGAATCAGTAATTACAGCAAATGAAGAAAAAAACAATTTCACAGCAGAAGTCAAAGATACACTAAAGAATTTAAATCAACAACTGAATGAAACTCATGATGAAATTCATCACTTGAAAAGTTTTCATGCATCTTTAAACTCCAAAATTAATTCAGCCGACAAGAGGATATCTGCAAATGAAGAAAAAGTACCAATTGTCAACGAAAAATTACGTAATTTAAAAGGAGAGCTAACTTCAATTCGATCGGACATTAATAGTGTAGAAAGTCGTCAGAAATCATTGTCCTCTGACATCAGCAGTGCTTTCAGTCGTCTTACAGCAAATGAGAAAAGAGTTGGTTTTACTGCTTGCGTTAGTAAAGATGATGGATCAACCATATCAGCAGGTCATCCAATACCATTTACCACTGTTACATCTAGTTATAATGTTGATATGTCAAGCGTTAAAAGCAATGGAAAGTTCACCGTTAAAATAAGTGGTTTATATTTTATATCGGCATCAATAAGAAGTAAAACAGACCATGGATTCTTTGCAATATATGATGATTCGTACTTTTTAGCTTATGGATACACAGCTGAGCATGACGGTAAAGATACATATGATCACAGTGGTACAGTAGATGCGGTGCGATATTTTAATTACGGTGATATCCTAGCAGTAAAGCCGTGGAAAACTATGGACATTGGTGCTTGGTCTTGTCTGACTTTTGTCAAAATAAAATAGAAACAAATTATAATTAATATCTGACATTTTGTATTTTTGCGCAATAAGATATCACAATTGAACATTATATTTTGAAACAATACTATAAAGGAACTGTTCTAATTATTGGAAGTACTAAGTACGTACAACAAAAGGTGTTTCTACTCACAACTTGACATTCTGTATTGTCACCAATTGGAAGTTTTCATGTTTTGTTTTAACAATTATCGCTTTCAAATAGTCAATTAGCTTATAGTAATTCTAATGTTCAATTATTTATTATTTCTTCATTTATGAATAACAAAATAATAAACTGATATGATATTTCAAAAA +>XM_050245764.1 PREDICTED: Anopheles aquasalis tyrosine-protein kinase Fer (LOC126581837), transcript variant X1, mRNA +GCGCGTGGTTGTGTGAAGCTGCGGTGCGTGAGCTTTCTTTTGCTTGTTTGTTCTGTGTTGTGTTGTTCTCCGTGCATCGCGGTGATCGTGCAGCGTGATTTGTGTGCGTGTGCACGTGTGTTCAGTGCGCCTCCTCCACGCCGTGATTACAGAGGTACGCCTTTACCTGCGCTACGTGTTTGCTCCTTGCTAGTTTACAACAGGAAGGAGAAAGAAAAGATCAAAGTGTCGGTGCGTTGTGCGTATGCTTATGCTTGAAATACGAAGATAAATACAACCGCCTGCTGCGTGTGTGCTTTTTCGGTGTGGCGGTTTGTTGGTGGCACCTGCAATAATCGCACGTTTTATCAATTCGATAGTGTTGGGTTAAGGATAAGATACAACATATCGCGCAAATCATCAATATCAATCCCTACCTACTGACTTGGTGGATAGTGTCGTTCCTCCATTTTCCAAAATGTAACGGATATTACTACATAAGACCGGAACGAAACGGCTACGAATTAACGCATTGAAAAAGTGAAATCCTAGTGCTAGAAACGGATTCAAAATTGCTTCAACAAATTAGAATATCCCTTTTGCATTTGTATCGCTTAATTGCTGTGTTTTTGTGTTACTAAAGTAGTGTTAGTAGTGTATGGCGATTCGCCAGGGGATGGCTGCGTGTAGTGTCGTGTAGTGTCTAACGCGCGAAGCGTTAGAAGTGGAGTGAACAATAGAGCCAAGAGAAGAGGTCAATCAAGTGCATAGTGCCTTTTTTGTTTTTTTGGTTGATTTTTTTTTCCTGCGCGAGAGGAAACCAATTCTCTCAGTAGGCAGTGGCAAAGCAACGGGGGGAAACCATCATGGGCTTCTCGTCTGCGCTGCAAGGCCGAGCGGCACACGACGCGCTGCTCAACCGGCAGGAAGCGGAGCTGAAGCTGCTGGAAACCATGAAACGGTGTCTGGCACAGAAGGCAAAGTGTGACCGGGAGTATGCCGTCTCGTTGGCGGCCGTCACCCAGCAAGGATTGAAAATCGATCGCACCGATGATCTGCAAGGAAGCCACATTATGCGTGCTTGGCGGGGTTTTATGGAAGAACTCGAGCACACTGCCAAACAGATTCGCTCCAATGCCGAGCAGCTGGAAACGGTTTGTCACGAGAAGCTGGCCAGCCTCTACCAGGAGAAACGCCGGGTCCGCAAGCAGTACCAGGAAGAGCACACCAAAATTGCCACTCAGTTCAGTCATCTCACAGAAGACGTCGCACGGAAGAAAAGCGAATATCAGAAGCATTTAGACTACTACAAACTGCTGCGAGGTCGATTCGAGGAACATATCAAATCTGGTCGGTCTGGGCGAAAGCTGGACGATGTCATCGACAAGTATCAAAAAGCCTGCCGGAAGCTGCACCAGGCCCACAACGAGTACGTTCTGCTCATCAGCGAGGCGGTCGAGGTGGAGAAAGATTTTCGAACAACGCTACTGCCCGGCCTTCTCGAACACCAGCAGACGCTCCAGGAAGGATTCATCCAGGCATGGAGCAATCTGCTGTCAGAAATTGCAAAACTCAGTGACACCACATCGGAAAAGTACGTGGAAATACAGCGACGCATTGATACGAGTATATCGAGCATCAACTCGACGGAGGAGTATCGCGAGTTTACGGATAAGCACAAAACATCACCGACCACGCCGGTCGTCTTCCAGTTCGACGAAAGCCTCGTCGAAGACAGTCTCGGTAAACTCCAAGCGAACACGTTGACCGTCGACAACCTGACGGTGGATTGGTTACGCGGTCGCCAGGTGGAACTCGAAGGTACGATTAAGGATCTGCAAGAACGACAAGCCAAGCTGCTCGCCGAACCGAACGGAACCGGTACACTGGCCACTAGCAGCTCACCCGCTTCCAGCAGCCCGGTCAGTACACCGGGAACAAAGCCATCCACACCGATTCTCAACGGTACCGGAAACAGCAACGGGGCATCAGGCAAGGACTCTCAGCAGATTGCGGCCAATAAATCATCAAAGGAGTTGAACAACCTGCGGTGCCAGGAACGCCAAACCATGAAGCTGGTCGAGATGATACGAACAGCACTGAACGAGGTCGGATGCGAAGAGCTACCTTCCGGATGTGACGACATCGCGGTAGAGCACCTTATCGAGAACAAAAAGTCTGTCAGTCAGGATCTATCGCTGGACTCGCAACATAACAATCCATCGCAGGCGGGAGGATTTTTCACACTGCGCACGGGTAACGGTGGCAGTGGTGGTGGTGGTGGTGGTGGTGGAGGTGGTGGTGTGATGTCAATGTTAATAGATCAGTTGCGACGCAAATCAGGGCCTCCGGGAGCGGCGACTAGTGGTGGTACTGGTGGTAAGGCGGCACCCCGATCGGTGGGTACCACTCCAGCTCAAACACCCAAACCAGGACATCGCGCGACAGCAGCGAGCACGGTAAATAGTGTTTCTAGTCCCGCTACTATTACGTGTGAGCGTGTGCAAGCTTCTTTGGATGGCTTTCCGCCGCACGCTACTAACCACTACCAGCAACAACAGCAGGAACAGCCGCAGCTGCGACCGTTAGCTCCCTGTTCATCAGCAAGCTTGTACGCTGAGCTCCGTTCCGTTAATCCAGAGATCGATGATGAGCAATCCTTTCCATACCCCGAAAACCGCATTTCAAACGTTTACGTAGACATGGAAGCGTATCTTGGGATGCGGGAGCTCAGCCCCGATGAGAACAGCAGCGAACATGCATGTGCATCGTACACTAATATCAACAGCGACCATCTTCCTTCCCTCCGCCATGAACAAAGTTCAACCGCACACAACTCGCAAAGCAGTCCAATGGGCGATCTCCCTAATTCACGCACCCCCATGCTAGGGGACGATGATGGCGAAAGGCGAAAGTATCGTCGACTACGAACCATGGGCGATCGTATCGATGATGAGGATGATGATGCCGATACTGCTGAGGAGTTGAACGATTCGAAAAACAATTTACTACGCGAAGAGAGCTACGATGGTGGGGATCAACTAGATGAAGGGCCGACGGAATCGGAAACAAAGTATCTGACGATGAGGAAACGTTCATCGCCCCGCGCTGATACGACGACCCGCTGGAAGTCCTCCATCGAGCAGCACCTGGATGTGATAGATGCGCTGAACATCAAGCTGGACGAACATCAACGCCTCTCGGCCCGCCTTTCTGAGGATTACGAATACATACGGGTGCAGACACTGCGCCGTGAAGCGGAGCTGATAGCAGCAGCAGCAGCGGCAACAGCAGCATCTTCAACATCCTCTACCGCTGTACCGCAGCGTGCAGCAGCAGGAGGGACACCGTTCGAAAAAGCAAATAGCTTCCGCGAGAAGATCAAACGGCGCATCCGAGGAGCAAAGAGCTCGCAACTTAGTGAACCGGTAGAACCGGAAACACCGGATAAGGTGGCGAATGTGGTTGAAAGTTTTTCCGGCCGATTGCGCACACGCATTGCTTCACAGCGGCAGTTTCGGTTGATGAAGGAAACGGACTCGGCCAGTCCTTCCACCGATCGTGGTTCGATCACCACAAATGGCGGCGCCTCTAACTCGGCGGGTGGACGCCAGAAGAAAAAGAAGCGTAAGTCGTCCAAAGCGCACCGTGCCTTCAAGCAGCAGCAGCAGCAGCAGCAGCAACGAAGTGGTCTAAAACGGGATACCGAGAGTGAGCAAGAGGTGTATGACCAACCGCAGCAGCTGCTCCACCCGGCAAATACCTTCTCCGAGGATGAGCTGTTAGTAGACGAGCCACCAAGAGTCGGTTCACCGGAGCAGATGGTTAAACCGAGTGGCCAAAAGTTCTCGCAAACCGTACGCGCCACGTGGCGGGAACTGTTGCACTCGACGAACAAGGTCAAGGATTCGTCAATTAATCTCACCAACCAGCAGCAGCAGCACGATCGTATGGAAGAAAAGTTAGATCTTATCCCCAATCAGGACCGTCCCGGGTTGCTAGCAATACGGTTTACCTTTTCGGACACTGAGACACCCGAACATCACGGAAGCCGCCAGCTCGATGCAACATCATCAACAACAGGCGAAGGAGGAGAGTATTGTGTACCATTGCTTTTATCGCAATCGAGTGACGATACGAAGGCTCCTCAAATTCTCTCTTCCGGCGATAGCAGCCACCCGGCTGGTAGTAACAGCACCACCAGCAAGCTGGCTATGAACCTGAAAATCAATCTGAAGGAAAGGCTCACCAAATTGGTACACAAAAGGGCACTGATGATGGGTGGTGGAGGGACAGTGCCAGGTAAAAGCAATCTTCTGCCGCTCCATCAACCATCGGGCGAAATATGTAGGTCCTGCTCCAAACGTATCGTTCGCCCGGGAACCATACACCCGAGCCAGACGGTGTTGGATTTTGTAAAAGAATTTCCTGGCCTCGATATCTGCAACGGTGGCCACGATGAGGACGACGAAAACGACGATTGCGATGGCGACGGTGACAACAAGAAGGCAGACACCGCCCGTCCAGGCCGTGCAACCGAATCGGAAATGATCAATCTCGAGTATGAGGATATCGATGTGATAACGATTAAGTCCCACAAACTAACTGACCATTGTGAGGGTGGTGATGATGATAATGATGATGATGGTATGACGCTGTCCACAAACCGGCCACTGCATGAGGAAGAATGGTTCCACGGTGTGCTGCCGCGGGAAGAGGTGGTGCGGTTGCTAAGAAACGAAGGTGACTTCCTGGTGCGCGAGACGACGCGAAACGATGAAAGCCAAACCGTACTCAGTGTCTGTTGGAACGGTCACAAACACTTTATCGTGCAGACGACGGCGGAAGGCCACTACCGTTTCGAAGGACCGGCATTCCCCAGCATACAGGAGCTGATCGTGCACCAGTACCAGTCGGAGCTGCCGGTGACGGGCCGGTCAGGTGCGGTGCTGCGTAAGCCAGTGTTGCGCGAACGCTGGGAGCTGAGCAACGATGACGTGATACTGCTGGACAAGATTGGCCGGGGCAATTTCGGCGATGTGTACAAGGCGAAGCTGAAATCCTCCAAAAACACGCTGGTCGCGGTGAAAACCTGCCGCATGACGCTACCGGAGGAGCAGAAGCGCAAGTTTCTGCAGGAGGGACGCATCTTGAAGCAGTACGATCATCCCAACATCGTCAAGCTGATCGGTATCTGCGTGCAGAAGCAACCGATCATGATCGTGATGGAGCTGGTGGCCGGCGGATCGTTGCTGATGTTTTTGCGCAAAAATGCAACCACCTTGGGCCAGCGCCAGATGATGGGTATGTGCCGAGATGCGGCCGCCGGGATGCGCTACCTGGAGTCGAAAAACTGCATCCACCGTGATCTCGCGGCTCGAAACTGTTTAATCGGGAGCGAGAACATCGTGAAGATTTCTGACTTTGGAATGTCCAGGGAGGAGGAAGAGTATATCGTATCTGGCGGTATGAAGCAGATTCCAATCAAGTGGACTGCCCCGGAGGCGCTTAACTTTGGAAAGTACACCTCGCTGTGTGACGTCTGGTCGTACGGGATCCTGGTGTGGGAGATCTTTAGCCGTGGCGATACGCCCTACTCAGGAATGAGCAACTCGATGGCTCGCGAGCGAATAGACGAAGGCTACCGGATGCCATCGCCGGAGGGTGCTCCACCGGAGATGTACCGGCTCATGCTCAAGTGCTGGTCGTACGAGCCCGAAAGCCGGCCACACTTTGACGAAATCTATACCGTGGTCGATGCCCTGATTCTATGCACCAAGGACTGACCGGAT +>XM_009229646.1 Gaeumannomyces tritici R3-111a-1 hypothetical protein partial mRNA +ATGGAATGGAAAACTCAATATCTTGACGACACCGGAGGAAACTCTGAGATGAGGGGGTCGGGCTGCGACATTTACAGCCTGGCCGAGGGTGAGGGAAGAAGAGGGGAGGGGGGGGACGTGACGGGATACCAGAAGCGGCTCGCACCATGCACAGCACCCCGCCGCCGGCCTCGAGGACAGCACAGTCTGACCAGAGTGCCGAAAGCGATTACTGTAGATGGAAATGCAACAGAGGCGGACATGAGACGTGTCGCCGTCGGACAAGAGTTCAGACGAAGTCGCCTCAACATCATGGAGAGCCGACATAAGTATCTGCACGTGAGCATTAGCCATGGGAGGCGCTCCGGCTGA +>XM_014964222.1 PREDICTED: Calidris pugnax CCR4-NOT transcription complex subunit 4 (CNOT4), transcript variant X8, mRNA +ACCTTCAAGTGCTGACCTTCTTGGTCTATTAAGTTATTATAAACTTTTGCTGCTCTGCGAACATATAAAGATGTCTCGCAGCCCTGATGCTAAGGAAGACCCTGTGGAATGTCCCCTTTGCATGGAGCCTCTGGAAATTGATGACATCAACTTCTTCCCTTGCACCTGTGGCTACCAAATCTGCCGTTTCTGTTGGCATCGTATCCGTACTGATGAGAATGGACTTTGTCCTGCTTGCAGAAAGCCATATCCAGAAGATCCAGCAGTGTACAAACCACTCTCCCAGGAAGAGCTGCAAAGGATAAAAAATGAAAAGAAACAGAAACAAAATGAGAGGAAACAGAAGATATCAGAGAATCGCAAACATTTGGCCAGTGTACGGGTTGTACAGAAGAACCTTGTCTTCGTGGTAGGACTGTCTCAGCGCTTAGCAGATCCAGAGGTTTTGAAACGACCAGAATATTTTGGGAAGTTTGGTAAAATACATAAAGTTGTCATTAATAACAGCACATCATATGCAGGCTCACAGGGTCCAAGTGCCAGTGCATATGTAACCTACATCCGGTCAGAAGATGCTCTTAGAGCCATACAGTGCGTCAATAATGTGGTGGTAGACGGCAGAACACTTAAGGCATCGTTAGGTACAACAAAATACTGCAGTTATTTTCTAAAAAATATGCAGTGTCCAAAACCAGACTGCATGTATCTACATGAACTGGGAGATGAAGCAGCCAGTTTCACAAAAGAAGAAATGCAGGCGGGCAAGCACCAGGAATACGAACAGAAACTACTGCAAGAATTATACAAACTAAACCCCAATTTTCTCCAATTATCTACGGGTACAGTTGACAAGAACAAGAACAAAGTGACAGCACTGCAGAGCCCTATCGACAAACCTTCAGATTCCCTCAGTATAGGAAATGGTGACAGCTCCCAGCAGATAACAAACAGTGACACACCTTCACCACCGCCTGGTTTAACAAAACCCAATCCAGTCATACCCATCAGTTCATCTAATCACAGTGCACGGTCTCCTTTTGAAGGGGCTGTAACAGAATCACAGTCGCTCTTTTCTGACAACTTTCGGCACCCTAACCCCATCCCTAGTGGGCTTCCTCCATTCCCCAGCTCTCCACAGACTTCAAATGACTGGCCCACAGCACCAGAACCACAGAGCCTCTTCACATCAGAAACTATACCAGTATCCTCCTCCACAGACTGGCAAGCGGCTTTTGGGTTTGGTTCCTCCAAACAGCAAGAGGACGACTTAGGGTTTGACCCCTTTGACATCACCCGCAAAGCCTTAGCAGACCTGATTGAGAAGGAACTGTCAGTCCAAGACCAACCTTCCCTCTCGCCCACATCTCTTCAGAACCCTACCCCACACACTACAGCTGCCAAAGGGCCAGGCTCTGGATTCCTGCATCCTGCTGCACCCGCAAATGCCAACTCTCTCAGTAGCACCTTTCCAGTCATGCCACAGAGGTTCCCACAGTTTCAACAACATCGAGCAGTTTACAACTCCTTCAGTTTTCCAGGCCAAGCAGCTCGCTATCCTTGGATGGCCTTCCCACGCAATAGCATCATGCACTTGAACCACACAGCAAATCCCACCTCAAATAGTAATTTCTTGGACTTGAATCTTCCACCACAACACAGCACAGGTCTTGGAGGGATCCCTATATCAGGTATCCCAGCCTCCACAGGAAACAGTTTAGACACCCTTCAAGATGACAATCCTCCACATTGGCTAAAATCTCTTCAGGCCCTCACAGAGGTGGACGGCCCCAGTGCAGCACCATCACAGACGCACCACAGTAACCCCTTCGGCACACAGATCCCTCTGCACAGAGCCAGTTGGAATCCCTACTCTCCTCCTTCAAACCCCACCAGCTTCCATTCCCCACCCCCAGGCTTTCAGACAGCCTTCAGACCCCCCAGTAAAACCCCCACAGATCTACTACAGAGCTCAGCGCTGGATCGTCATTAGGAAAGGAGGAAAAAGAAGAGGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGAAAAAAAAGAAAAAGAAAACCCAAAACGTTAGAAATGCAGGAAGTGTCCCACCCTGACTCCTCCCCATGCCCACCTACTGTTCCCTGTCATATCTTTCTTTCTGAAGAATCCAGTTCCTGATCAAACCTCCCCCCCAAATGCAATGCCATCACAGGGTCGTGACCGTATCTTTTTGTTAAGTTTCTGCTGAGCCAGTGTTTGAAATACACTGTTTGAAATATTTTCTAACCGTTCTAAGGAAAAAAAAAAAGAGAGAGAGAAATCAAAATGCAGTCTCAATGCTTAAGGAGAATATTACTGTCTTATGTCTTTTGCACATGAGTATTTCTGCCTAGTGGAAAAGTGTCAATCTGCAGTAGGGGAAAAATTGCAATGCAGAATCAAATGCAGAAACATGAAAAAGGTATTTAATTTAAATGAATTTACTGAACATGTGGGGCAAGCAGTGGCCTAGCATTTATTTTGCATTCAGTGTGGCACTACACAGGGAAATTGCTATGTTTTTTTTTTTTAAGGGGGATTTTGTGTCAGAGTTTGACATGAAGTGTGTTGAAAGACAAAAAACACTTATAGCTACGAGTAAGTGGCATGTTGCTAAAGAGTGATTTAAAGAGGGGAGAATAAGATTTTTCTTTAATTTTGGCTTTAGATTTAAAGTAAACTTTAATGTTTTAAAAGTATTCACAGATTTAATACCTAGCGTATACATAATATAATTATAAGCAGCTGAAACACGAGTGATATTTACTTCAGTCTTTCTGTCTCCTCTGTCAGTCTCTCTTTCTTTTTTTTTAAAAAAACAAAGATTCACCTGATTAGGGCACTCTGGGATAGCACTGCATTGGGGCCACATGATCACCATCAGGAGCAACCTCTGACCTCCTCTGCCTGCAGCTTTTACTTAACCCTGTAGTTTCTGGACGTTTGTGCAGTATTGAAAAGACAGGAAAAAAGAAACAGATAAATAAACATGGTTATAACCTGACTCTAAAACTAAAACCAAGGAAATGTACCTCTTTCTTCAGAATTAAAACTAAAATCTTAAATAAAACAGAAAACTTGATGATGA +>XR_005915111.1 PREDICTED: Gossypium hirsutum xylose isomerase-like (LOC107963207), transcript variant X1, misc_RNA +ATTTTGCAGGGTTTAGTTTGATACTTTGAGTGATATCAGTAAAGAAGAGTATGGCAAGGAAGATTTCATATATATTTCTTTGTATGAATGTGATCCCCCTTTTAGCGGCTGCTGCATCACAAGCTTGCTCTGCTCAATCTGATGCAAAATGTTCTCAAACCGGTGAATGGAATGGGGAATTTTTCCCTGGAATTCCCAAAATCAAGTATGAGGGTCCTTATACCAAGAATAAATTTGCATATAAATGGTATAATGCAGAAGAGGTGATTCTTGGGAAGAAAATGAAGGACTGGTTGAGATTCAGTGTGGCATTTTGGCATACATTCCGTGGAACTGGTGTTGATCCTTTCGGTGCACCTACGAAATTTTGGCCATGGGAAGATGGTACCAATTCCATTGCTATGGCAAAAAGAAGAATGAGAGCCAACTTTGAATTCATAAACAAGCTTGGTGTTGACAGGTGGTGTTTCCATGACCGGGACATTGCTCCCGAGGGCAAAACACTTCAGGAAACTAATTCAAACTTGGATGAAGTGGTGAAACTTGCTAAAACACTTCAGGGAAACAATATCCGTCCACTGTGGGGTACGGCTCAACTATTTATGCATCCTCGTTACATGCATGGTGCTGCTACAAGCTCTGAATTGGGTGTATATGTATATGCTGCAGCTCAAGTCAAGAAAGCCATGGAGGTGACACACTATCTAGGGGGAGAAAACTATGTGTTTTGGGGTGGTCGTGAAGGTTATCAAACACTATTGAACACAGACATGGAATTTGAACTTGATCATATGGCAAAATTTCTTGAAGCTGCGGCTGCCTACAAGAGGAAGATTGGATTCACCGGAACTCTACTGATTGAACCTAAGCCTCAAGAACCTACAAAACATCAATATGATTGGGATGCTGCAACAACAACTAATTTCTTGCGAAAATATGGGTTGATCGGGGATTTCAAACTTAACATTGAGTGCAACCATGCCACACTCTCTGGTCACAGTTGCCATCATGATGTTGAGACTGCAAGAATCAATGGATTGCTAGGAAATATTGATGCAAACTCTGGCGATGCTCAGACAGGTTGGGATACAGATCAGTTCTTGACAGATACTCGAGAGGCAACTATGATCATGCTAAGTGTGATTAAAAATGGACACTGAGCTTCTTATCGTTTGACCCAACAGACCTTTGGTGTTCGATGAGAATTTATTTATCATATTTGGTTCACTTTTGTTTATGACAGGGATGCAAAATTACGGAGAGAGAGCACAGATGTTGAGGACTTGTTCATTGCTCATATTGTTGGTGTTGACACCATTTTTTTTGATGAAAAACGGTGGCGACTTCCGTTTTTTTCGAAATCATTTATTAAAAACAACCACTTTTGGAGGTGATCCGATCACACCTCATCAAAAAGGATCGGTGGCGACTCCCGTTTTCGTTTTCATTTTTCAAAACCCAAGTTGATCCCGTTTTTCATCCAAAAAAAATGGTATCAACAGTTGGAATGGACACCTTAGCCCGTGGACTCCGATATGCTGCCAAGTTGATTCAGGTAATACCAATACGAACATAAAACAAATACATATATGTAAAATACTTTAAACATGATTATGACACGATAAATTACATGAATACGATATAGATACATGATATTAATGAACTTGATGATTATATAGGATGGTTCTTTGGCTAAGCTTAGTCATAAACGATATTCAAGCTTCTATAATGAACTCGGTGCCCTCATTGAGGCTGGTAAAGCTGATTTTGAAATGCTTGAGAAGAAAGCAATGGAATGGGGCGAACCTACGGTTGCTTCAGCCAAGCAGGAACTTGCGGAAATGATCTTCAACTCTGTGCTATAAGAGGGACCTTGGCTAGCAATGTCTTTTGCAATTTAGCATTAGGAGTAATTGATGATGTTCAATAAGTACAGTTTATGTAATTTTCATTTTTTTTTTTAGAAATCTTTTGTACCTAAATTTCACTCTCTCTTTTTTAATTTGGTATTTAATTTTTTTATGTCCAATTTGGTAGA +>XM_033267273.1 PREDICTED: Anneissia japonica uncharacterized LOC117121888 (LOC117121888), transcript variant X1, mRNA +CAGGCGCTGACATTGTTATTAACAAACCTACTTGGTACTTTGTAGATTTTTTATTTATTTGTGCTCGGAAAATTACGAGAACCTGGGATGCAATTTTTTTGTTATGACCCACCCTTTCTACTGAAAATGAATTCCCTAAGATTATTTTACACCATCATTATGTTTGTGGCAGTCAAAGAAGTAGAGTGTGAGGTGAAAACAATATATTTTTGTCCTGAACAGAGTGCAACAATATATTGCAATGTTACCAGTGATTTCACCAAATTATATTGGAAAAACTCTACAGATTATGTTGTAGCATCACAGACTGTTAATAATTGCAAAATTACCAAAAAAAGTCCAAATAAAACATACTCCTCATCTGACCGATTTGAAGTCCAAGGATTATCATTGAAAATAGCATTTCCAAAGGATGGTGAACAATTCTATTGTGATGTTGTATCGAGGAAAAAAGAAATAAAACAGCATTTTACTCTAGACGAGTACAGTGAACCTTATCCTGATGATGTGTGCAGTTCACCAAAAGACACTAACAAAACAAAAAGCAGGCAGTTAAGAAGCGGTGGAACCAACAAAATTACCCGGGAAATCAATGAAACAAACTTTGTATGCATAAATGGAAGAACTGTTTTAAAATGTGATAACGGGCAACACGATAGGCCTATCGCAGAGTACTGGGAAGATAGATATGGCAAATTGATTGTGTCTAATGTGGATGGGAGACTATCAAATACGTCCGATGCCAGATATGTATTTAACCATATGAATTCCACATTGTTAGTCCAAAATCTATCAGAATGGGATCATCTATTTGTTTGCAAAACTGTCTACAAAAATGAAGATATCATAAAATGTTTCAATTTACAGGAATATGGTACACCAAAAGACAGCTTTTTTGAGGGATTTGAAAACAATAAATGTGAAGTAGATGCAAATGAAAATGGCCAGGTCATTGTACCATTCACGGTGGCTTGTTTCAGTCCAGTGAATGCAGTAACTGTAGTTTGTGAACTGAATGGAGAGTGTAATGATACAAACCCGCAGTATAATGTAACCGATGACGGGAAATTTAATTCACAAATTTGTATAGATAGGAAAATCGAAGTGAATAAAAATTTGACATGCACATTGACTGGTCCTGCTATGTGTAACCATTCTCAAGAATTTGTTTGTCACTTCAAGTTCAAGGAAAACAGTTCAAGCAGTATCAGAAATTTAGTTATTGCTATTTTGTGTCCTATTGTGGGTCTTCTTGTGATTGTATTTGTGTACTTACGTTGTTGTCAAAAAGAGGAAGAGGAACATAGCAAATCACAAGTTAAGATGCCATCTGAGATTCCCCCCATCCAATACATCACAAGCTCCGACCAAGTAACAATAACTGCACCTCAGGAGGTCACTTAATTGAGGCATGTCGTGGTGAAATGGTTAAGTTGTCGCACAGACCAGTACTGAGTAAATGAGCTATAAAAAATGGGAGCTCAAAAAATTTCCTGAAAATCCAAATTTGTTTTCCACTATTATGGATCAACAGTTTAATGTCTTATTAATCATGTCCCAAAGTATTAGTTCTGGAAAAGTTCATCAAATTGTTTATTTAACGTTATTTTGATATTTAATTGTATTTAACAATGCACAAATAACTTCAGAAGGCAATACTGTACTCAAAATTATGTTTATCTTGGCTATAAGAGTGCTGTACATTCACTTACCAATAACTTGGGCTTGAAATTTCCAATTTTAATGAATGACCCCCCGTTTTAAAGATTCCTCTTTTGTCTTTCATCTTTTGTGATCTGTTGGGCTTTGTCCCCTCCCTTGTCGTTATTTTAAGGACGTGACCCTAGAGAGTTTCATTTATATTTTCCTTTTATTATTTTTGTAACATGTTCTTGTTGGTTCTGAATAAAACTGATTATATATATATACTCAGGTATCTTAAAATATGGATATTTTAGAGGAGTCTTGAATTGGTGGGTGCATTGTACTATCTTCACTCCTTTAATCCCGACATGTCTTCAACATGGGGATTTCTAATTGTCAACATGGTCTTGTCAAATTGATCCTGCATAACTTCTCCTTGGCTGTGTTCTCCACCACAGGACACAGAATCTTGATGAGAGGGAACCAGCTCCTCATATTGATGTCATTTTCATTGATTGGAGAGGTGTATTTTATCTAATTTGATATGCTTCTTTCTAAAATGTGCAATTCAATGCTATTAACTTTTCGTTTTATATTTAATCTAACTTTTAGTAGATTTTTAACTGTTAACTTAATTCAATCTTATATATATTTTATCTACACTTTTTAATGTTTTAAAACCATTAAAAAGTAATCGTTTAATGTGCAATGTATAAATGCCAAGGTCAACTTTTTAATTATGATGCAATATATTATTACTATTACTAAAACTCTATACGGCTATGTTTGCTCTATGCTCTATGTTATAATGTAACAATACCTTAGAATAACTCTGTACAATATTTATATTCTTCTAACTTTTATGAGCTTTGTCAGTTGTGGAGACTGCATACACTTTTTAATGTTACATATTCTTCATCAATACCTCCACACCAAAGTTCATCGTCGTAATTTTGTTACCGTCAATCCCGCGTTTCCGATCTCTGTATTTGTTATGATATCACTAAGATTGATATAATCAAATTTTCTCCATTTCTATCATATTGATAGTGGACTAGAATTACTGTTGTTGGTTTTACTAACATGTTTAAGGGCAAATTTAGACAACACTGGGTTGAAATTTTTCATATTTAGTGTTATTATTGTACTTTGTATACTAGGCTCCTAAGCCTCAACTAGTGGAGTAAATATGCTCAAACAAACTGACACCATTCAAATAATTTAATTCTCGAACTCTAAATAATATGGTAATAAAGAGGGCTTAATTCCCACGTTTGCCATCATTACTATGTTTGCCATTCATCACTACAACTGAAATCAACAATAAATTCACCACAAATAGATGAGATAGTAAAAAATGATTATGTCTGATTCTATTTAATTTGTTATTAATAATAAGCCTGAAAAAATGAAAAGAGAGAAAGTATATATTGTAGTTTAAAATGTCAACTGTTCATAGTAGGGCCTATCAAATAGGGCCTAGGCTTAAATTAAATGACCAATCAGAACGTGTTATTTTTTTTTTCTTGTATTGCATTTTACGAGAAGTACCAATACTGAGTATGATGGTATGGCTACATGATGAATATGTAACATTAAAAAGTGTATGCAGTCTCCACAACCAAGTTCGTCATCGTAATTTTTGTTACCGTCAATCCCACGTTTCCAATCTTTGTATTTGTTATAATATCACTACGATAGAAATAATCAAATTTTCTCCATTTCTATCATATTTACAGTGGACTAGAATTACTGTCGTTGGTTTTACTAACATGTTTA +>XM_004993437.1 Salpingoeca rosetta uncharacterized protein (PTSG_12341), partial mRNA +ATGTCGCGGTTTGTGGTGGCGCTGCGGCCGTGTGGACAGCTGCGTGAGCGGCTCACAGAGCCCTTGGAGCTGAGTGCTGGAGTGCACATCCTGGGGCGAAGCCCACAAACCAAAGTGAAGCAGCAGTTGTGCAGCCGACGCCAGATTGAGCTGGATGTCGACACCGCCCGCGGCACCGTCACCCTCAAGCAGCAGCTTGGCCCAAACGCATGCTCTGTGAATGGACAAACCATCAGCCGAGGGAACAGTGTGGCGGTTTCGCGAGGCGCCCGCATCTCCATGTTGGCAGACAGTCCAGACGAGACCACGTTCACCCTGGACATCCACGAGTACGCGCCCTGTGGCATGACAACGCCCGAATCAACGCCGCTAACCCAGTTTGACACGTCAGCGTCCAGCACCGCGTCTTCTGTACGACCTGACGCGACTAGTTTTGACACAAAGCCAAGCGCACATGCCCCAGCCATCACCATCAATCTCACAAGCAACACTGGCGCCGCCACAATCACCATCACCAACAATATCACTGCTGCAGACGATGCTGATTCATCGCGCTTGACGACACCAGGCGGTGACGCCGTTACTGAAGAAGACACTGGACAGCCCAAGCAGCGCAGCGACAAGCAGCAGCGACGTGTCACCAGCGAGTGTGTGGACCACTGGGCAAATGCGCTGACGGAGTTGGTGCGTCACCCGGAGCGCCATGCTGATGACATTGTCTACGAGACCGTCGACACGCTCGTCATCAACGACAAGTACCCAAAGGCGCGGTACCACTTTCTTGTGCTGCCCAAACGCGTGATCACGGATCTGACGTGCCTCACCCGACATGACCGCCACCTCATCCAGAGACTGCAGGAGACAGCCATGACCTTTGGCAAGATGATTCAGGAGGACAAGCCAGGCGTCAAGTTTCATACGGGGTTTCACGCCGTTCCCAGCATGAATCAAGTGCACCTTCACTTGATTTCGCAGGATTTCGACTCTGTGTCCCTCAAGAACAAGAAGCACTGGAACTCGTTCAACACGCCGTATTTCGTTCCTGCTCGCAAGGTGTATGAGATGCTGAAGAATGAGGGCCGAATCCACTTTGATGAAGCAAAGTACAAGGAGTATTTGAAGAAGCCGCTGGTGTGCCACCGGTGTCGCCAGGAGATGCGCAACATGCCCACCCTCAAGCGGCACCTTAAGGAGCACCTCACCAACCCCTAG +>XM_046397594.1 PREDICTED: Scatophagus argus UbiA prenyltransferase domain containing 1 (ubiad1), transcript variant X2, mRNA +TGCACGATGTTGCACTTCTGGAAGAGGAAATGGCGCCCGTCAGGTGCAGCAGGATTTACAGTGGCCAACCAGTCAAGTCCCCTCGTAGTTGACACGTAAGCCACCTAACTGCCTCTCGCTGCATCAGGCTCATCGGACACAGAAGTATGATTTTAAGTAGTGAGAAACCCAGTTTGTGTCGGATGGTGAAGACGTAACGGAGCGCTGCTGGTACTGCAGACCCCTTGCATCGGAATGGCCAAAGAGCAGAAACAAAGCAGGGCAGAAACATTTGTGCTGGCTGGATCTAATGGTCACAATGGCCAGCAGTGGCAGACTGGTATGAATAACTTGGTCACTCACTCTCCTGGCACTAACCACAAGTCGAGGATGGCTCGCGTTGCCTCGGACATGAGGCAAAAGTGTGCGGCCTATGTGCTAGCACTGAGACCGTGGAGCTTCAGTACCTCGCTGACGCCGGTGGCCCTTGGCAGCGCTTTGGCATACAAACTGGATGGCTCTGTGGACTTGGTCATCCTGATGGTGTGCGCTGTGGCTGTTCTTGTTGTCCATGGGGCAGGAAACCTTGTAAACACGTACTATGACTTCTCCAAAGGGATAGACCACAAGAAGAGTGACGATAGGACTCTTGTGGATGAAATCTTGGCACCGCAGGATGTTGTTATGTTCGGAGCATTGTTATATTCTTTAGGCTGCTTGTGTGCCACTCTGCTCTACTTCCTGTCAACACTTAGACTGGAACACCTAGCCCTTATTTACTTTGGGGGACTCTCCAGCTCTTTTTTATACACTGGAGGCATCGGCCTCAAGTATGTGGCCCTAGGAGACTTGGTAATCCTCATTACCTTCGGTCCTCTGGCAGTCATGTTTGCCCACGCTGTGCAGGTTGGCTACCTGTCAGTGCTGCCGCTGGTCTATGCCGTCCCACTGGCCCTCAACACGGAAGCCATCCTCCATAGCAACAACACCAGAGACATGGACTCTGACAAGCAGGCAGGGATTGTCACCCTGGCCATCCTCATAGGCCCCACACTGTCCTACGTCCTCTATAACCTCCTGCTTTTCGTCCCCTACGTGCTCTTCTGCATCCTCGCCACACGTTACACCATCAGCATGGCGCTCCCTCTGCTCACGCTGCCCATGGCCTTCCCACTGGAGAAGCAGTTCCGCAGCCGACGCTATGCCAAGATACCCCAAAAGACGGCCAAGCTCAACCTCCTTATGGGACTTTTCTACGTGTTTGGGATCATTCTGGCACCTCCTGGCAGCTTGCCGTTACTGTGATTAATTAGCTTTGATATTTCAAATTTTGTTGTTTTAATACAGACTAGTTTATGCACCTCTTTGTATTTGTACAACGCTGAGGGCTTTTCAAAGGCTTTAATTTATTGTCTAATTTATACATTGAACAGAGATCTAGTTTAGGTCCTGCTCTGTCACACTGAAGGCATAATCAGATGTATTTTTTCAGTATTAAGCCTGCTGTAATGTGTTGGTGCAAGTAAGAAGTGTTGGTGTCATTTTGTAGAGGTAGGCAGCATTTTTATCATACAAGGACAGACAGTAAACCTACAGTTGCCATATTTGCTGTTCTTAAAAACACAATACTACAATGT +>XM_045050371.1 PREDICTED: Felis catus zinc finger protein X-linked (ZFX), transcript variant X5, mRNA +CTCGGGTTGTTCCGCTTCCAACTACCACATTCAGAGTTGGCTATCAAGTGGACGGATTGCTAGACTCTTACGTTGATATTCACACTTACGTATCTTTTTGTCCTGTATCTTTTTGGCCTCCATTGGTTAAGGGGAGCACATTCTTATTCCCTTCGTTAAAAACCTGGTTCCCTCATAACCAACACTCCTATTCTTGTCTTTGACAGCAGCGGTCTCAAAACGTCAGTGTCCTCTTCAGTTAATCTCTTGCCCATTTCCAGCACTGAGTCCTATTATTTCTCCCTTGCTTACATCTCTTCCTTCTACTTTCTGCCACATGGACAGGCTCCGTCATCTCATTCTTAGTTTGCGGTAACTTTTATTTTCCTTACCCTTAGTCTCTTTTGTCTAGCCCAGCAGTTAAAACACTCATCATAAGATAACATGTGGATTGTGTCATTTCTCCATTTTCCGTTCATGACCCAGCAGTTTTTCAGAACACTTCCCATACATTCCCATTTGATCATCACAACAGTCCTGTGAGGAGCTGATGCTACACACATGGATGGTGATCAAATTGTTGTGGAAGTACAAGAGACTGTTTTTGTTTCAGATGTTGTGGATTCAGACATAACTGTGCATAACTTTGTTCCTGATGACCCAGACTCTGTTGTTATCCAAGATGTTATTGAGGATGTTGTTATAGAAGATGTTCACTGCCCCGATATCATGGAAGAAGCAGATGTATCTGAAACGGTCATCATTCCAGAGCAAGTGCTGGACTCAGATGTAACCGAAGAAGTTTCTTTAGCACATTGCACGGTCCCAGATGATGTTTTGGCTTCCGACATTACTTCAGCCTCAATGTCTATGCCAGAACATGTCTTGACGAGTGAATCCATACATGTGTCTGATGTTGGACATGTTGAACATGTCGTTCATGACAGTGTAGTAGAAGCAGAAATTGTCACCGATCCTCTGACAACGGATGTCGTTTCAGAAGAAGTACTGGTAGCAGATTGTGGCTCTGAAGCAGTCATAGATGCCAATGGGATCCCTGTGGACCAGCAAGATGATGACAAAAGCAACTGTGAGGACTACCTTATGATTTCCTTGGATGATGCTGGCAAAATAGAACACGATGGTTCCTCTGGAATGACCATGGATGCAGAGTCGGAAATCGATCCTTGTAAAGTGGATGGCACTTGCCCTGAAGTCATCAAGGTGTACATTTTTAAAGCCGACCCTGGAGAGGATGACTTAGGTGGCACCGTAGACATTGTGGAGAGTGAACCTGAGAATGACCACGGAGTTGAATTACTTGATCAGAATAGCAGTATTCGTGTGCCAAGGGAAAAGATGGTTTATATGACTGTCAACGACTCTCAGCAAGAAGACGAAGATTTAAATGTTGCTGAAATCGCTGATGAAGTTTATATGGAGGTGATCGTGGGAGAGGAGGACGCTGCTGCCGCGGCGGCCGCCGCCGTGCACGAGCAGCAGATGGACGACAACGAAATCAAGACCTTCATGCCAATAGCGTGGGCGGCAGCTTACGGTAATAATTCTGATGGAATTGAAACCCGGAATGGCACTGCAAGTGCCCTCTTGCACATAGATGAGTCTGCTGGGCTCGGCAGACTGGCTAAACAAAAACCAAAGAAAAGGAGAAGACCTGATTCCAGGCAGTACCAAACAGCAATAATTATTGGCCCTGATGGACATCCCTTGACTGTCTATCCCTGCATGATTTGTGGGAAAAAATTTAAGTCCAGAGGTTTTTTGAAAAGGCACATGAAAAACCATCCCGAACACCTTACCAAGAAGAAGTACCGCTGTACTGACTGTGATTACACTACCAACAAGAAGATAAGTTTACACAACCACCTGGAGAGCCACAAGCTGACCAGCAAGGCCGAGAAGGCCATCGAATGCGATGAGTGTGGGAAGCATTTCTCTCACGCTGGGGCTTTGTTTACTCACAAAATGGTGCATAAGGAGAAAGGAGCCAACAAAATGCACAAGTGTAAATTCTGTGAATACGAGACAGCTGAACAAGGCTTATTGAATCGCCACCTTTTGGCGGTCCACAGCAAGAACTTTCCTCATATTTGTGTGGAGTGCGGTAAAGGTTTTCGTCACCCGTCAGAGCTCAAGAAGCACATGCGAATCCATACTGGGGAGAAGCCGTACCAGTGCCAGTACTGCGAGTATAGGTCTGCAGACTCTTCTAACTTGAAAACGCATGTAAAAACTAAGCATAGTAAAGAGATGCCATTCAAGTGTGACATCTGTCTTCTGACTTTCTCAGATACCAAAGAGGTGCAGCAACATGCTCTTATCCACCAAGAAAGCAAAACACACCAGTGTTTGCACTGTGACCACAAGAGTTCGAACTCGAGCGACTTGAAACGACACATAATTTCAGTCCATACGAAGGACTACCCCCACAAGTGTGACATGTGTGATAAAGGCTTTCACAGGCCTTCTGAACTCAAGAAACACGTGGCTGCCCACAAGGGTAAAAAAATGCACCAGTGTAGACATTGTGACTTTAAGATTGCAGATCCGTTTGTTCTAAGTCGCCATATTCTCTCAGTTCACACAAAAGATCTTCCGTTTCGGTGTAAGAGATGTAGAAAGGGATTTAGGCAACAGAACGAGCTTAAAAAGCATATGAAGACACACAGTGGCAGGAAAGTGTACCAGTGTGAGTACTGTGAGTATAGCACTACAGACGCCTCGGGCTTTAAACGGCACGTTATCTCCATTCATACGAAAGACTATCCTCACCGTTGTGAGTACTGCAAGAAGGGGTTCCGACGACCTTCAGAAAAGAACCAGCACATAATGCGACATCATAAGGAGGTTGGCCTGCCCTGATAGTCCTTCTACAGACATTTATGGAGATGTTGGCCTTGAAGCAGAAATCTCATTTTAAAGCCAGTCAGTCTCGTTCACATACAATACTGTATATTGATTTATGCTGTGTACAAATAGAATTATTGCTTCTAGTTGAGTTTTGTTGTTTTTTTTTTTTTTTTTTTTTTTTACATTTTGTTTAATAGTGTGTTCTGAATTCTATTCAGTTTGTTTAATAAATGGGGGAAAGCAGCAACAAATAAGTTGCTTTTAATAAAGTAATCCTTGATGCTATACTGGATTTTTCTATCTTACAAGTTTTATATTTATTTAAATATTTACCTTGCTTACCTTGATGGTACTCTTCTAAGACCATTTAACTTAAAGTTAAGGTAACTTTAGATTGGTAACTCTGAAAGTATTCGTGTTGACTCATTTTTTTTTTTTTTTTCCCCATGAATTTCTCACAATAAAATTGTCAGAGACATCTACTAACATAAACGGGAGATTTTACAGTCAGGTCTAATTATCCTAACATGGAAGTCCTTGACTTGTCTTGCTTGCTCTTCTCAGACCACATGACAGTGAAAGTTTCCATTTGAGCTTTTGCCACCCGGGCATCGCTGAGGAAAGAACAGTGGCTGGGTTCGTCTTTACTTTTCATTTCGTTGAGCAGACAAGCTGTACTTTTTGCAGGGAGGGGGGGGTGGGGGGGGGGCTTTCTTTGGTGTATTTACATCTTTTGTCAGCATAGCAGACTTCTAGAAAACTTCCTTGACAAATTTTGCTTGGTCATGTTGTATTTTGATTATTCCGTCTGTGCTGCTTTGTCTCGGAATGGTTGTGTGTTACAAATGAGATTATCGAGGACTGCATTTTGGAATCTCCTTGAGGTAATTCGTGGCTCGTAGGATCTTTTGCGACTTTATATATGTAAATGTACCCTGAATTATATATATGCACATATATAGAGAACATGTATCTGTGTGTATTGTTTATTTTACATATTTATACACACAACCCCAGTAGTAGTTGTTTAAGATCTATAATGAAAAGTATTAAATTTACAATAACACGAAAGATGCAGGGATGCATGAGAGAGCATTTTGTAAATCATGCTCTTCAGAGAGACTACTCAGGTGAAGAATTAGAAGGAAAATAAGGACACTAGTATTTTTAAAGAGTTAAAGGTATTTTCTTTTAAATATCTTTGGTAATTGAAAAATAGACGTTACGATGTTTCTAGATAGAATGTTTTCATACAACTTCAGCTCCATGCCTTTATATTTTTCTGAAAAGCTAATGAGCATCCAGGCAGAACTCCCTCCGTTCTCTCAGAGAAACTCTTGAGGGAACTCTGTGTCTGTCACCCAGTGAAGGGGGATTAAGGAAGCCACAGCTCCGTGTCCCAGAGATTGGGTGCTAATGATGACTTCCGCTTGGCAGGTCCAGCCTGCTCTGTTATGTCTTAGTTACAGTTAGCAAACTTTAAAAACCTGAACACCCAAATTGGCTTTGGTTAGAAGATAAAGGTGTGTTTAAGTGCATGAGGAAAATCTGAGGCCTTATTTGGAACATCCCCAAGTCTTTCACGGTTTCGTTTTTCTTTGAGAGTTGGTATTTTTTAAACAGTTCTGAATCAGTTCAGAAACGCATACACTGAAGTCAGTTACTTAGAATTGGATCATGCGAAGATGGGTCTTGGAAAATGGAAAACAGTTTTTGGGGTCCTTTAGATGGGATGTCAGCATGTGAGTATCCGGCACGTTGTAGGAGATTTAGTAAGGACTTTTCTTCCCACCTGATAGCTGCCTTGCCACTTCATGATGGTGCTCCTTCCCCTTTGTGCTGTTCGGGTTTAACCTTTCATCTTTCTCTTTGCCATTGATACTTGTATTCAAGAATTCTATTTATAGGGTTAGAAATCTAAATATTTGGTGTTTGGCAAGCCTCTGAAGTGCTAGATTGATTTCATCCACTTGGAAATCAAGTGCTTTAGGCTGGTATGAACTCCAGCCTGAATGCCAGTTAAAGCCAAGGCATGGGCCTATCCCAGCGGGAGCTCCTGTGCTCTCTTGGCCCCATAAACATTCTTTTTTTTTTTTTTTTTTTTTTTTTAAGCGTAACTTACAATTGTGTGATTCATTGCCCTGCAGTACTATTCTTGAAAGCTCTGTCTGTTTTTTTGTGAGAACCTTTAAAATCTCCCTTAATTTCTTTTTCCCAGAAGTCATGTAAAAGAAAACACTTAAGTGAAAGTGGAAAGTTATTAACTTTAAAACATGCTGTAAAATTAGTACAGAAAATATAAAGAATTGGTCATTTAACTATATTTTTTTAAATAAACTGAAAGATAAAGAACACAACACTGTACACACTTTATATTTCTCTTACATAGTCTGGAATCATACACAGCTATTTTCTTTTTAAAGCACAATATTGAAACCTTTAAAAGGTATTTAAGGGTTTGGTCAAGTGAATATGATAAGATGTATTTGTCTGTATAAAGAGAAAATGAACTTGTAGTCACTGTTATGTACTGACATTAGTTACAACCTAGTTTTAATTCTTAAAACAATTTTGATTAGCAAAGCTAAAAAAAATGGATGTTTCAGTTAAATGTTTTAAAGAGGTACAGATTTTTACAAGGACATAATATAAGTTATTGTTCTGTAGAAATATCCTATTAAATATTGTATGTCCCTCCCTCTGTACACTTTGTAAAAAAAGTAAAATACATAAAAAGAAAATCATATAGGGATGTGTGACATTATTGTAATTGTGTACTTGAGAATAACGTGCAAAAATAAAAATCAGAATATTTTCCTGTTAATGGATGTTTAGTCTATTTGATACCAGTACTAAGTTAATGCTTTTTCTTAAGGAAAAAAATGTACAGTTTTTGTAAACCTAATAAACATCAAAAGCAGTGGATTA +>XM_008507523.1 PREDICTED: Equus przewalskii developmentally-regulated GTP-binding protein 1-like (LOC103540855), partial mRNA +ATGAAAGATGAAGAGTCATGGACTCTGACAGGCATGACATGGAGAACGGCCCAAGGTGTGGTCCCACCAAGCACTAGGGGTCTTCAGGTCCCCTCCCCGAGAAGCCTGATGACCTACCTCAAGGGCATGACTGGACCTGGCCACCAATCTAGGGCAGGGTGGGGAGACAGAAGCTGTTCTGTCCACCTAAGCTCCTCTCAGCCCACCCTTCGTGGCCCCCAGCTCTGTCAGCTGCACCCTGGCAATCGGATAAAACTGGCTTCCCTCCAGGATGGGGACGGAGGGTGGTTGGCTGAGAGGGAGAGGACTACTCCGCTCTGTCTCTTGCGAGGAGTAGGACGTACGCACCTGCGCACTGCAGTAGCGCCTGGTGGTCGTTGGCCGGTCCACTGGTGGGTGAGCCTCCAGGGACTCACCGCTGTCAGCAGCACCTTAGCCAAGATCCTGAAGATCGAAGCCAAGATGGCTCGGACTCAAAAGAACAAAGCCACAGCACATTACCTCGGGNCGGTTAAGGCTAGCTTTGCTAAGCTTGGCAGAGAACTCATTACTCCAAAAGGTGGTTGTGGTGGTGGGCCAGGAGAGGGTTTTGATATGGCCAAGACAGGTGACACTAGAACTGGGTTTGTGGCTTTTCCATTTATGGGGAAGGCAACACTGTTCAGTAAGCTGGCAAGGGTATATTCCGAGATGGCAGCCTATGAGTTCACTACTCTGACATCTGTGCCTGGCATCATCAGATACAAAGGTGCCAAGATCCAACTCCTGGATCTCCCAGGTACCGTAAAGGGTGCCAAGGATGGGAAAGGTAGAGGCCATCAAGTCATTACAGTGCTGCAAACGTATAACTTGATCCTGATTGTTTTGGATGTCCTGAAACCCTTGAGACATAAAAAAGTAATTGAAAATGAGTTGGAAGTCTTCGGCATTTGCTTGAACAGCAAACTCCCTAACACTGGCTTTAAGAAGAAAGATAAGGGAGGGGCTGGCCCCGGAGGCATTTATCTCATGGCCACTTGCCCTCAGAGTGAGGTGGATGCTGAAACCGTGAGGAGCATTCTGACTGAATACAAAATTCATAATGCTGATGTCACTCTGCTTAGCAATGCCACAGCGGATGACTTCACTGATGTGGTAGGAAGAAGCAGAGTTTATATCCCCTGTATCTATGTGTTAAATAAGATTGATGAGATTTCCGTTAAGGAATTGGATATCATTTATAAGGTGCCTCACTGTGTAGCCATCTCTGCCCATCACTGCTGGAATTTTGATGACTTGTTGGAAAAGATCTGGGCCTATCTGAAACTAGTGAGGATTTACATTAGACCCAAAGGCCAGCTGCCAGATCACAGATCCCCAGTGGTGGTGCATTACCCCAGGACCATGGTGGAGGATTTCTGCTTGAAGATTCACAAAAACCTTATCAAAGAGTTTAAATACACTCCAGTCTGGGGGCTTGCTGTGAAACACAATCCTCAAAAAGTGGGTAAAGACCATACGCTGGAGGACGTCATTCAGGTTGTGAAGTGGAACCTTTCCATTTCCCCATCTGCCAGGCCAAGCACAGCAGCTTTCCCGGTGATCACCCTACTCCAATCCCCTTCTGGCTTTGGCAGCCTCTTGATCAAGATTCAGGGGAGGGAGATGGAGACACTCAAAGTGGAACTTCACTTGTATTATCTTGGTGTCATCTTGTATATTGAACTGCATAAAGGACATGACAGGAAAAAAAGAAAAAATAATGACCACATTCGCTTAGTTGCTCTGCGATTCTCCATGACTACACCAACAGTTGGGACTATGAAAATACAGGGCCCACAGCTGATGCTCCATAAGAGAGATCTTGGATACCTGATGCTTCAAGCCCA +>XM_052662140.1 PREDICTED: Budorcas taxicolor EH domain binding protein 1 like 1 (LOC128068878), transcript variant X12, mRNA +AAACGGCGCGCTCGCCGCTCAGCGCTCCAGCGACCCGACGCGCCCCAGACGACCCCGCCGAGGCGGCCAGATCATCGGCGGGCCCTGCGGCGGCCGCGGCGGAAAGAGCGGCCCCGGATCCCGCGCCTCGGACCCCTCCGCACGGACGGGGCGGGCGGCGCGGATAGGATCCTGGAGGCCATGGGGACCTGGGCCGGGCCAGCGGTCGCGGACTAGCGGGAGTCCCGGGTCTGAGGAGCGGGCGGCGGAGGCGGCGGGGCCATGACCTCAGTGTGGAAGCGCTTGCAGCGCGTGGGCAAGCGGGCCGCCAAATTCCAGTTTGTGGCCTGTTACCACGAGCTGGTGGTGGAGTGCACCAAGAAATGGCAACCGGATAAGCTGGTGGTAGTGTGGACCCGGCGGAACCGACGCATCTGCTCCAAGGCCCATAGCTGGCAGCCGGGCATCCAGAACCCATACCGGGGCACCGTGGTGTGGATGGTACCTGAGAATGTGGACATCTCTGTAACCCTGTACCGGGACCCCCATGTGGATCAGTATGAGGCCAAAGAGTGGACGTTCATCATTGAGAATGAGTCCAAGGGGCAGCGGAAGGTGCTGGCCACGGCCGAGGTGGACCTGGCCCGCCACGCAGGGCCCGTGCCAACCCAGGTCCCGCTGCGGCTGCGGCTGAAGCCCAAGTCAGTGAAGGTGGTACAGGCCGAGCTAAGCCTCACTCTGTCCGGGGTGCTGCTGCGGGAGGGCCGTGCCACGGATGATGACATGCAGAGCCTTGCGAGCCTCATGAGCATGAAACCTAGTGACGTGGGCAACTTGGATGACTTTGCCGAGAGCGACGAGGAGGAGGCCAATGGTCCAGGAGCCCTGGAGGCACGGGCACGTGTCCCCCAGCCAGGCCCAGGCAGTGCCCTGAGGCTGGGGCATTTCCCAGAGACCCCTCGGGAGCTGAAGACACTTTGTGAGGAGGAGGAAGAGGGCCGACTGCGGCCTTGGCAGGCAGCTGCCAGCCCTTCTAGTGCTGAGGATACCAGCCCAGCCCCTGTGAGTGCCCCTGCACCCCCAGCTAGGGCCTCCCGGGGCCAGGGCTCAGAACCAGCTACTGTAGCAGGGGGCCAGGTAGGGCTCAAGGCCCCAAGGCCCCCTGGAACCCTGCCAGAGACAAGGTCCCCAAGACAGCCAGGCCAGGACGTGGCCCCCACTCCAGCCCCTCGGCTCCAGAAAGGCTCTGATGCCCCCTGGCCCCCAGTCCACCAAGGAGAGGATGAGGCCCCCAAAGCCTCCAGGGCTCCCCCAGCAGGAGTGGATTCTGCTGTGGAGACCCAGGCTCGGGCAAGCCCTCAGGAAGGGACAGAGGCCCAGGGAGCTGGGCTGGGCCCAGGCATTGAGAACAGAGACTCCAGCAACTCTTTGGAAGGGCAGAAACCCAAGGTTGAGGAGGGGCCCGCTGGAGACAGGGCAGAGGCTAGTGGGGTGGATACTGGGCATGGGCCAGGAGTCAGAGAGGTGAACAGTCAGAGGTCAGTGGTCAGACCTGGGGAGGTTGAAGAGAGTTTAGAGATCGGTCACGTGGATGCGGAGCAGAGGTCAAAGGTGAAACCTGTGGACACTAAGGGACCAGAGGCCACAGAAGTGACATCTGAGGCAAGATTCAAGGGGACTCCCGAGGCTCCTCCAAGGGGCTCTCAGGGGAGAATAGGGGTCAAGACCAGGGATGAAGCTCCCACAGTCTTGAGCCCAACGCCAGCAGAGCCTGCGGGGCATTCCAGGCATCTTGGTGACCAGGCGGCCAGGGCTGCTGCAGGCCAGGAGAGAGAGTGTGCAGAGGTGAGGGGCAGAGCCCCTGGTGTTGGGGGGACAGGCCTGGAACAGGGGCCCTCTGCTGGAGCACCAAGCGCTGGGCCCCAGGTGAGCTGGTACGAGGGGCCCCCAACAGCAGCTGAACAAGGGGTGATGTCCAGGGATCTGAGGACCTGGGAAGTAGAAACTGGGGATTCGAGGGTCCTGGGGACAGAGCCTGGGGTGGCAGAGTCAGAGTTATCGGGGACCCAGGAGATCTCAGGGTCCCCAGAGATAGTGTCTGAGGCAGCAGAAGCGAAGACCTTGGGGACCCAGGAGACAGAGGCAGTGAGATCGGGGGTCCTGGAGTCAGAGACTGCTGAGATGGCAGAGTCTGAGGATCTAGGGATCCAGAAAACAGGGACAAGCATTTCAGGGGCCTCAGGGACAGAGGGTGGGACGGCAGAGTGTAAGGCACTGGGGATCCAGGAAACAGAGGCTGGGGGCTCAGGAGTTCTGGGGACAGAGACTGGGGTGTCGGAAACTGAGATGTTAGGGACCCAGGAGATATCTGGGTGCTCAGGGATACAGAGAAAGGAAGCTGAGACAGCAGAGTCTGAAATACTTGGGGCCCAGGACACAGAAGTGGGGTGTTCAGGGGTCTCAGAGATAGAATCCAAGATAACAGGGAGCCAGGAGACAGAGGTAGGGAGTTCAGGGGTCCCAGGGACAGAGACTGAGGTAGCAGAAGCTGAGATACTGGAGATCCAGGAGATTGAAGCTGGGGGTTCAGGGCCCCCAGAGATGGACACTGAGACCCTGAGGACCCGGGAGACAGAGGTGGGGGGCTCAGGGGCCCCACAGATGGACACTGAGACCCTGAGGACCCGGGAGACAGAGGTGGGGGGCTCAGGGGCCCCAGAGATGGACACTGAGACCCTGAGGACCCGGGAGACAGAGGTGGGGGGCTCAGGGGCCCCACAGATGGACACTGAGACCCTGAGGACCCGGGAGACAGAGGTGGGGGGCTCAGGGGCCCCACAGATGGACACTGAGACCCTGAGGACCTGGGAGACAGAGGTGAGGAGCTCAGGGTTCTCAGGGTCAGAGGCTGGAATGGCAGAGGGTGAGGGACTAGGGAATCAACAGACAGAAACTACAGTTTTAGAGGCGGAGAAGGGAAAGGCTCGGACTTCCGGGGTCCAGGAGGCAGAGACTGGACTTGGGGAGACCCTCAAGTATGAGGCTTTAGGGGTCCCAGTCGTAAAGCATGAAGTTTCAGAATCCCAGGGAACAGAGGCAGAAACTACAGTTTCAAGGGGCCAGGAGGCGGAGATTGGGATTTGGGGGGTTTCAGAGGCCAAGTCTGGGGTTTGGGGGGCCAAGGAAGCAGAGGTGGAAGTTTCAGGGGCTTCAGAAAACCCATCTGGTATTTTTGAGGCCCAGGAAGCAGAGGCTGGGGTCTCAGGAGCCGAGAAGGGAAAAGAAGCTGAGGGAAACCTCCCAGAGGCCAGCCTGATGGAGGTGCAGGTGGCCAGTGGGGCAGGGGCTGAGGTGTCCAGGCCCTCCGGGGCCTCTTCCCCAGAGGAGCCTGAAGAGGACAGGAGGCTGCCGGGCAGCCAGGCACCACCTGCCCAGGTCAGCTTCAGCCAGTCCCTGTTGGAGTGGTGCCAGGAAGTCACTGCAGGCTACCGCGGTGTGCGCATCACCAACTTCACCACGTCCTGGCGCAATGGTTTGGCCTTCTGTGCCATCCTGCACCGATTCTACCCAGACAAGATAGACTTTGCCTCCCTTGACCCCCTGAACATCAAACAGAACAACAAGCAGGCCTTCGATGGCTTCGCGGCCCTGGGCGTGTCGCGGCTGCTGGAGCCGGCGGACATGGTGCTGCTGTCGGTGCCCGACAAGCTGATCGTCATGACCTACCTGTGCCAGATCCGCGCCTTCTGCACGGGGCAGGAGCTGCAGCTGGTGCAGCTGGAGGGCGGTGGCGGCGCGGGCACGTACCGCGTGGCCAGCGCCCAGCCGAGCCCCCCCGACGACCTGGACACCGGGGGCCTGGCGCAGCGGCTGCGTGAGCACCGGGCCGAGGCGCCCCAGCAGCCCCAGGAGGCCGCGACCCGCGTGGACGCGGCGGCCCCCGAGGCGGCCTCCAAGGACCGCGGGGCCGCAGCCGCCCAGGAGGCGCGCTCCGCCGAGGCCCCGGCCGACGGTCCCGGAGCCCGGGCGTCCGTGCCCCCAGCAGAGGGGCTGGTGAACGGGGTGGGGGCGCCGGGCGCCGCGGGCGGCGTGAGGCTGCGGCGGCCGTCGGTTAACGCGGAGGCCGGGCCGGTGCCCCCGCCCCGCGCGCACGGCTCCTTCTCGCACGTGCGCGACGCAGACCTGTTGAAGAAGAGGCGCTCGCGACTCCGGAACAGCAGCTCCTTCTCCGGGGACGAGCCCGACTCCGGAGCGGCGGGAGCGGCGGCGGAAGGCACGAGCCCTGACCCCAGCCCTGCCCCTGGCCTTCCCGCAGCCTCAGCCCCACAGCAGCCCGCTGGTGGGACTCCTCCGGCGGAAGAACCGCCCCCAAGCCCAGGGGAGGATGCTGGGCTGCAACGGTTCCAGGACACAAGTCAGTACGTGTGCGCGGAGCTTCAGGCCTTGGAACAGGAACAGAGGCAGATAGATGGGCGGGCAGCCGAGGTGGAGAAGCAGCTAAGGACCCTCATGGAGTCAGGTACCGACAGGCTGCAGGAGGAGGTACTGATCCAGGAGTGGTTCACTCTGGTCAACAAGAAGAACGCTCTCATCCGGAGGCAGGACCAGCTGCAGCTGCTCATCGAAGAGCAGGACTTGGAGCGGAGATTTGAGCTGCTGAGCCGGGAGCTACGGGCGATGCTGGCCATTGAAGACTGGCTGAAAACGGCTGCGCAGCAGCGCCGAGAGCAACTCCTGCTGGAGGAGCTGGTGTCGCTGGTGAACCAGAGAGACGAGCTGGTCCGGAACCTGGACCAGAAGGAGCGGACCGCCCTGGAGGAGGATGAGCGCCTGGAGCGCGGCCTGGAGCAGCGGCGCCGCAAGCTGAGCCGGCAGCTGAGCCGGCGTGAACGCTGCGTGCTGAGCTGAGGCCACGCGGGCCCAGAAGCCTTCGCCCCTCCCGGTCCGCAGCCTTTCTCGCCGCCGCGCCGGATCGCCGCTTTGGCCCTGCGCTCGGGAGGACCGGACCCTCCCTGGTGCCGCGCGCGACCAGTAGGGGCCGCCGTGACCCTTTACCGGGAAAGGAAGCGCAGCCTTTCGGGCCCCGACGGACGAGGGCGGCTGGCTGGGCGGCCGCGCCGTCCGGGCCGTATTTATTAGTCCGTGTGAGTGAGTGTGCGTGTGTGTTCGTGGTGGACTGAGGGTCCCAACCGTGCCCACCCAGAGCCCGTACCCAATGGCCGGACCCCGCTGGCGAGCTCCAGGGGTGGGAGGGACGGATGGTGAACTGCCGCGCTCAACACCCCGCCCCCTTCCTGTTCCTAGCGAGCAATAAAGTTGGAAAAGGCCACGCCAACGCGCCTGGGCTTTCTCAGGGTGACCCGGGCTTTCAATAGACGGAAGGGGGTGGGGCCTTGGCCGATACGGCGGTCTGCGATCCTCACGGGGACTGTGCAGGAATGGGGAGGTTTTCAGATGCCAGCCGAGGCAGGACCAGAGGCCTGACCTCTGCCTTTAAAGGATGATGGGGTTTGGGTTGTTGATGGCTGTAGGGAAGTCCCGTTTCGAAAGAAGAGACGAGAACA +>AY338304.1 Uncultured bacterium clone BREC_93 16S ribosomal RNA gene, partial sequence +TGAGCGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCTCATACAGGGGAATAACAGTTAGAAATGGCTGCTAATGCCGCATAAGCGCACAGGACCGCATGGTCTGGTGTGAAAAACTGAGGTGGTATGAGATGGGCCCGCGTCTGATTAGGTAGTTGGCGGGGTAACGGCCCACCAAGCCGACGATCAGTAGCCGACCTGAGAGGGTGACCGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGAGGAAACTCTGATGCAGCGACGCCGCGTGAAGGAAGAAGTATCTCGGTATGTAAACTTCTATCAGCAGGGAAGAAAATGACGGTACCTGATTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGACGGGCAAGTCTGATGTGAAAGCCCGGGGCTTAACCCCGGGACTGCATTGGAAACTGTCCATCTTGAGTGCCGGAGAGGTAAGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACGGTAACTGACGTTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATACTA +>XM_053628787.1 PREDICTED: Ictalurus furcatus calcium/calmodulin-dependent protein kinase (CaM kinase) II delta 1 (LOC128609903), transcript variant X2, mRNA +GAAGAGGCGAAAGCGGATCATTTACGTCTGAGCAGCCGCAGGAGCAGATCGACGCTCTCAACTTCACTCAAGCGCGAGCCATCTGCAGAACACAGACACAACACACCTGCGCGAGCGGAGAGCTGACAGACTGGACTTTTTCTTCTCTCCGCAGCATTTAGGCGTTTACTTTCATTCTGTGAAGCACAGCTGAGGAAGCGAGGCATTAGACTTGATTGCTGTTCAGATTTGTCCTGGCTGTCTTTCTCGGCATGGCTGCGACCACCTGTACCAGGTTCACCGACGAATATCAGCTCTATGAAGAACTGGGCAAAGGAGCCTTCTCAGTGGTGAGACGATGTATGAAAATCTCCACTGGACAGGAGTACGCTGCCAAAATTATCAACACCAAGAAGCTGTCTGCCAGGGATCACCAGAAGCTGGAACGTGAAGCTCGCATTTGCCGTCTGCTTAAACACCCCAACATTGTGAGACTCCATGACAGCATATCTGAAGAGGGATTCCACTACCTCGTCTTTGATTTAGTCACAGGAGGGGAGCTGTTTGAAGATATTGTGGCCAGAGAGTATTATAGTGAAGCTGATGCCAGTCATTGCATTCAGCAGATCCTTGAGGCCGTTCTCCACTGCCACCAGATGGGAGTGGTCCATCGCGACCTGAAGCCTGAGAACCTGCTTTTAGCCAGCAAACTTAAGGGAGCTGCAGTGAAACTGGCTGACTTTGGCTTGGCCATTGAAGTGCAGGGAGACCAGCAAGCATGGTTCGGATTTGCTGGCACTCCTGGTTACTTGTCTCCTGAGGTGTTAAGGAAGGAACCCTATGGGAAGCCAGTTGATATGTGGGCTTGTGGTGTGATTCTCTACATCTTGCTGGTGGGCTATCCTCCATTCTGGGATGAGGATCAACATAGACTTTATCAGCAGATTAAGGCTGGTGCCTACGATTTTCCTTCTCCTGAGTGGGACACAGTGACCCCAGAGGCCAAAGATCTGATCAATAAGATGCTGACAATCAACCCTGCCAAACGCATTACTGCTGCAGAGGCCCTCAAACACCCATGGATCTGTCAACGCTCTACAGTGGCCTCTATGATGCACAGACAGGAGACTGTGGAATGCCTGAAGAAGTTTAACGCCAGGAGAAAGCTAAAGGGAGCAATCCTGACCACGATGCTTGCCACAAAGACCTTCTCAAAAGGGAATCCATATAAGAAGCCTGATAGTGTTAAGATCAACAACAAAGGCAACGTAGTCACCAGCCCTAAAGAGGCAGTCCCCTCTCCTGCTCTGGAGCCTCAAACTACTGTTATCCACAATCCGACTGACGGAAGCAAGGTAGAATCCTCCGAGAGTGCCAACACCACCATCGAAGATGAGGATGTGAAAGCACGGAAGCAGGAGATTATAAAAGTGACCGAGCAGCTGATCGAGGCCATCAACAATGGAGATTTTGAAGCTTATACCAAGATCTGTGACCCTGGACTGACCTCTTTTGAACCTGAGGCTTTGGGGAACCTGGTGGAGGGAACAGACTTCCACAGGTTCTACTTTGAAAACTCTCTCTCAAAGAGCCACAGGCGTACCGTCCACACCATCTTGCTGAATCCTCACGTGCACCTGCTGGGAGAAGACGCTGCCTGCATAGCTTACATCAGACTCACCCAGTACATCGATGCTAACAGCATGCCTCGCACCATGCAGTCAGAGGAGACTCGGGTGTGGCATCGCCGTGACGGCAAGTGGCAGAATATTCATTTCCACCGCTCAGGCTCGCCAACCGTGCCCACCAATTAACGTGGTGTCCTGACCAGCGCAGTTCAGTGTAAAGGACTTAATGTCAGATGGCCACTGAGTGTCTGCTTTATTCAAACCCCACCTTTACAACTTCTCCACCCTGTCAGTCTTGTTTACATATCGTCACTGCTGGACTTTAGCCTACACACAGGTGGGGAATTAATATCATTTTGTATTAGGATGTGTGTATGCGTGCGACTTGCACGCTCTCCTCATAAACCATTGATGTTAAAGACTTATGTATACATATTTTTTTTTTCCCTTTTTATAATTTAATGTTCTATTTTCTATGGTGTGAAAGTAGGGCGTCACACTTGCTGATATATCTTTGGGTGTGTGGGTACATCAGGAAAAGAAATGCTTGATCTCTGTACACAGTCAGATACAAAGTCAAACAGTACATAGACGAATCTGGGCGCACGTGTGACATGTTCATATTAGAGTGATTAGTAATCTAGGCACAATATCCGTCACTGATCTTGAGGATATGATTAGCAGCAAATCAAAGCCAATTCAGTCTTGTTTCAGTGCTTTTCTATTTTAAGTGCAATACAGCTGAAAAAAATTCATTATGAATCTGACAAATGAGCTCGCTTTTGTTTTTTTGGTGAAGTTTTTGTGAAGTTGTGTGAAGTGCTATTCCTGCTTTATCTTTTAGAGAATTGACAGTTGACCGTGATCTTAGTTCTGCGAGCTTTGTTCGGTTTTAGGTTGCTATGGCCTAATGGGTTTAGCAACACTAATGTGCAAAACTGACAAAGGAAGCACATTTAGCCTACAGTTCGCTATTTTATTCTGATGTTTTCCACAGCATCACATGAACACAGTAGAAAAAGTGTAAAAATTTCAATTAAAGAATGTACTTTATCAATCAACACGAATAATTGGTAAACCAAACTATTTTATTTTATTCAGTTGTTGTGAGAGTTTTATGCTTCTGTTTTCATTTTTATATTGTTTACTAACATTTGATGGGGGTATTCTTTGGAAAGAAAAAAAAACGAGTTTTCTCTATTTTTCACACCTTCCTTAATTAATTAGCATTAGCTGTTATGTATTGCATGAAACATCTTTTATCAACTTTTATGTACTTTTATGTACTTCATGTTTATGATCTTGTGATGGTTCCCTTCTCAAGGGTGAAGTAGAATAAATGGTTTATGCTTTGTATTCCATACTGTCCATTTAAACCGAAAAAGAGATGAGTAGTTAGTGCAGTTTGAAAATGATTTATATTTGCAAAAACTATTACGATTATCAATGCAAAATCCAAAAAAAAAAAAAAAAAAGAAAAATAGGAAAATTTGAAATGGGAAACATTTGACAGATTAATATAAAAGATGATTTATTTGTAGCACAGTTGATATTTGATTTAAATAAAGCTTGCCTTTGTTTACTCAAACTTTGTTTAAGATCGACTGTAATGCTTCATAACATCAGTTTGTGGAAAGCATTGGGAGGAAACCTGAATTTGGGACTGATTATTAATCAGTCTGATTATTAATGATTGTTTAATTTGGATTCAGTGTCTGAAATGCTATCAGCGGTTTGAGACTTAAAGATTATCAGTTGTTATCTAGTTCCATTTTATTTGCTTTGCATTTAAAATTTTTTGTTATTTTTGTTACTTTTTTTTTATTCTAGTCCAGTTCCCTTTGTACTTTTTATTGCTGTAACTAGATGAAAATCCCCAATCCCACAAACCTGTACACTAAACAGAAGTACAAATACTCGAGCAGTTAAAAAGGACACGATAAAGCAAATAAATAAACTGTGAAAACATCCTCTTTTTTTCTCGGTTAATACATATTCATTTTGAGATTAAGAAAATTAAGGAATTTAAATAGTTTGTATATGTGGATACAGAGAACAACATATTACTGTGCACAGAAAAACATATTACCAACCCAATGCATGAATAAAATATTTCTGCCTATTTTTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTAATCTTAAATTGGGTTTAAAAGTTAAGTTTAATGGAAAACTATTAGCCATTTTGTGGTTTCTGTACATAAAAAAGGTTGGGGTTTTTTCCTCCTTTGTTTTTTTGTAAAAACTTTTTACAAAGAAAGTGTCCCATGTTAAATAAAAAAGCCCCAGGCACCAGCA +>XR_003317481.3 PREDICTED: Ursus arctos uncharacterized LOC113259124 (LOC113259124), transcript variant X3, ncRNA +GGGCCATCTGCAGAGCCCTCTATTGGACGAGCCATGCTGAGGGATCCCTCTGGGAACCAACCAAAGGCGTCAATCTGGAGCCGAAGAGGCGTTATCGCCCGGCGGACCAGTTTTGGAGGTCAAAGCTCCGCGGGGCGCAGCTAGTGGCGGAGCGAGCTGTGAAGGGAGGGTCTTCCACTTGTCGCCAGCGTGAACTCTGGTGCCCCGTGAGTGTTCGGAATGAACCCCCAACTCCGGACCCTCAAATCCGCCCACGCCCAGGCGTGCTTGTCTCTGCTTCGACTTTGTCATGTAACACTTTCTCCTTTTTTCCCCTGGGATCCTTTTGGTCCCTCCCCGTCTCTTCGCGCTCGGAAAGCCGAATTTCGCTGATGCTCTCAGCTTAGAGGAAAAAATTTTGTGCGGAATTCAGTCCTTCCTTCTGTTAGGCAGCAGTCGTTGGATGGGAGGGACTAAAAATCACTTGGTGCCCTGACAAGATTTGTTACTGTTGCTAAAATCGTCAACTCTAATGCTTTAAGGGAGATAACTTCCTGCAAATCCAGAACTTTCGGATTACTTCCGAGCTTAAAGAGCACGCCACATGAAGATGAAGGCAGAGATTGGGTTGATGCTTCTCCAAGCCAAGGAAGTCCAAGATGGCCAGCATACTCTCAGAAGCTATGGGAAAAGCCTGAAACAGATCTTTCCCTCACAGCCATCAGAAGAAACCATTCATGCTGATACCACGATCATGGATTCTAGGCTCCAAAACTGAGCTGCTTACAGAGTGTTATTAAATATGTGGATACATTTCGGGCACCTGACTGGCTGTTGGAATAGCATGAGACTCTTGATCTTGGGGTCATGAATTCAAGCCCCACACCAGAGGGAAAATACAGACGTCCATTAACTTCAATCCCTGGAGTCAGAATTCAACTTGAGACATATGGATGGGAGCTATGCTCCATTTGTGGGATGGGAAGAAACCAGTTCCCCTTTTCTAGCCTCACATCTGTTTGGATTGTATCTTAGTAGGCAATAATGAGAAGGCTGCCTAGGGCTGACTCAACCATAAATATTAGAATTAGGAGAAGTATTAGAATTGCGAAGCCATGTTTTTTTGTGAATGGTGCTCCCTATTCTTTGATTAAGAGCTTAAACCTCATTCACACTCATGACTTACAGGCTGAGCCAGCAGGAAGGTGGACACTAACTCTAATCTCCTAGGAATGAGGAATGAAAAACCAAGACAAGCAGACACTGTAAAATTGTTTTTGTTTTTTTAATGCAGGTCAAATATCCTGAAACATACATGTATTTTGATAGTCTTCTAATGCCACTTTAGTTCAAATATTAAAGTAACACACACGAGCTAAGAGAATTCAATATTGTTCCAAGGCACTTACTGAATCTCCATGACTAGATGAAAACAAGGACAATTAAGATGAACAATTAGTATATAATATAAAAATAACTTTTTGCTTACAATTTACAAAATGTATTATTATTACAATCTTTGATCTCTGATAACCTGCAATGCTGGCTGCATGAATCCAGCAATTTTAAAATTCAGAAACTATTTTCTAAAACTTCAGGGCAAATAATTTACAAATAAGGTACACAAAGATTTAGACCATGCAGAAATTTCTTACATCTTCTGTTAATAATATTTTATGACTGCAACTTTATCAAATTATATACCTACTTGCCCTGTACATATACAAAATAATGCATACATGATAAAACATTAGCAAAAGAGTAGTCCTTAAATTCAATTTATCATAAAAGTATTACTATATTAACATGTCTACAAGCAGCGTGTAACAGGTTAAGAGACATTAAGGCAATAATACTTGAAGTTACAAAATAAACCAATGTAATACTTTCCTAAGTGTAGTATAAGGCAGGTAGATGGTCCAAGCAAAAAAATACTAAGGTAACAATCTACACTGCTGTTAGTCCCACATTTTTAAGATGGAATACTATAAATCTGGCTTTCAGTGGCACTTGAATTTTCCAGTATAATTTAAAGTGTCTTTTAGCTCCCTGAATCATGTCCATTCTGAAGGTGGATCTCTTGGTCCTTTGGGTTTTCCACAGCGATTACGAAAACCTGTAATCAAAAGACCAGAGTAATTGGTCAGTGTTCAGAAATGTATTTTAATGTACTAGAAACTCTTAATTTGCTTTGGGTAGTTCATTTAAGAACCTAAATAAATCAGCACAAAGTATGGTAAACTCTGCCTTCAGGAAAGCCTGAAATGATGGCAAATAACCGTTTCTCATTCTTGCCAGCACTAACTACATAACTAAAGTTTTAAAATTATTTAGTAAACAAATTACCAATATCTGTGGCCTCTGTTGGACTTTCTGATATTTGATCTTTCTTGTTACTGAAAAGAGGCGGACATTCTGTACAAGTCTCTGTGTGAATACCTCCTGCTGGATGATCTAAAATGCAAAATAAAGCCATTGTTAACCACC +>XM_011504069.1 PREDICTED: Ceratosolen solmsi marchali transmembrane protease serine 3-like (LOC105365808), mRNA +TTTTCAATTTAAATTTTTGCTCTTCAGATACTATGAAAATTATTTTCAAAACATTAATTGCACTTCTACTGGTGCAAGTCAGTTATGTAAATTCGTGGGATCATCTCAGGCACGCCAGTCCTGGTCAGTTTCCACATCAAGCAGTATTGGTATGGATCGGAGCATTACCATTTCCTCCATTTCACTTATGTGGTGGTGCAATCTTGAACGAATTCTGGATTTTAAGTTCAGCGTACTGCGTTGTTGATATATTACATTTAAATAACGTACGTATCAAGGTTGGTAGTCACAATATTTCTTTAGATGACGAGCACGTACGAAACGTTGAGGTGGCAAAGATTATCGTTCATGAAAAATATACTAGGTGA +>XM_048344465.1 PREDICTED: Perognathus longimembris pacificus LRR binding FLII interacting protein 1 (Lrrfip1), transcript variant X23, mRNA +GACGGCCCCGCGGCGGCGGCGGCGGACGGCGGCGGACATGGGCACCCAGGGCTCGGGGCGCAGGCGGCTCCCCAACCGGGAGCGGCTCACGGCCGAGGACGACGCGCTCAATCAGATCGCGCGCGAGGCGGAGGCCAGGCTCGCAGCGAAGCGTGCGGCGCGGGCGGAGGCGCGGGAGATCCGCATGAGGGAGCTGGAGCGGCAGCAGAAGGAGGTTGAAGAGAGACCAGAAAAGGATTTTACGGAGAAGGGGTCTCGCAACATGCCGGGCTTGTCTGCGGCCACGCTGGCCTCGCTGGGCGGGACTTCCTCCCGGAGGGGAAGCGGAGACACCTCCATCTCCATGGACACCGAGGCTTCTATTAGGGAGATTAAGGACTCCCTAGCAGAAGTGGAAGAGAAGTATAAGAAGGCCATGGTGTCCAACGCCCAGCTAGACAACGAGAAGACCAACTTCATGTACCAGGTGGACACGCTGAAAGACACGCTGCTGGAGCTCGAGGAGCAGCTGGCCGAGTCCCAGCGGCTCTACGAGGAGAAAAGCAAGGAGTTGGAGCGGGAGAAGCACGCGCACAGTGTCCTGCAGTTCCAGTTCGCCGAGGTGAAGGAGGCGCTGAGGCAGAGGGAGGACATGCTGGAGAAACACGGAATAATCCTAAATTCAGAAACAGCTACCAATGGAGAGACTTCGGACACACTAAATAACGTCGGATACCAAGGCCCGACTAAGATGACAAAAGAAGAGTTAAACGCCCTCCAGTCAGCCGGCGACGGGACACTGGATATTAGGTTGAAAAAGCTCGTGGATGAGAGAGAGTACTTATTGGAACAGATTAAGAAACTCAAAGCGCAGCTGGAGGGGAAACAGAAGAACAACAAGCTAGACAATCTGCGATCTGAAGATGAGGTCTTGGAAAACGGGACAGATGTGCACGTCATGGATCTACAAAGGGATGCCAACAGACAGATCAGCGACCTCAAATTTAAACTTGCAAAGTCAGAGCAAGAGATAACTGCATTAGAACAAAACGTAATAAGGTTAGAGAGCCAGGTATCGCGTTATAAGACAGCTGCTGAAAGTGCAGAAAAAATAGAAGACGAACTTAAGGCAGAAAAGCGGAAACTCCAAAGAGAGCTTCGCTCCGCATTGGATAAAACGGAAGAGCTTGAGGTGAGCAATGGCCACCTAGTGAAGCGTCTGGAAAAGATGAAAGCGAACAGGAGTGCACTTTTGTCCCAGCAGTAAGCACCAGCCTGCGGGGCAGCTGCGCGTGTGTGTGTGGCCCCTGGGCTTTTCCCTGTCCTATGAGAGCGCCGCTTCCCCTATGCCTCCGCAATGCCTCCGCGGAACGCTAGGGGGAGCCCCTGGCCCTTCCCACCCGGGCCACATCCACTCCAGAGAAGCCCGCAGCCGCCGGGGCGGCCTGGTCTGCAGCCGCCTTCTCCAGGCTGGGCCGGCTCTCAGAACCTCCAGGTTTCTTTGTAAGCACACTGGGCCTCGTGGAAGCTCGGCGTCTCCGTGGCACAGCTCGGGCCGACCGAGGCCAAGATGAACGTGGAACATGAGTTGTCTTTTCATGTGTCTTGCTGAAGGTTAAGGGGAAATGTTACCGTGTGGGGACTCCTCCAGGGCAGAACTACAATTTGAGTGACTTCCGTAGTATCTCTTAGTCTATGCTTTTCATACACGAAACACTGTGGAACCACAAGCCATTACCAAGCGAAACTCTCACTGCGAACAAGAGGATGGTCTAGGCGTAAAAGTGACCTTAAGAAAACTCTTTACAGGCAACAAATGAAGCTTTTCTAAGGGATTTTTTGCATCTGTTCAGTCATGAGAATACTTTTTTCCAGGGTAATTAGGCAATAGCTTCTCTGAAAAATGACAGCTTTTCATTTGCATTATATTTGGAATTGAAGTTGTTAACTTCTTTTAAAGAATGTACTATTAGGAAAATAAAATATGAAATGTTAAAAGACTTGAGCAATGTGGTTTTTATTTTTTTC +>XM_005356914.2 PREDICTED: Microtus ochrogaster leucine rich repeat containing 71 (Lrrc71), transcript variant X2, mRNA +CAGTTGCTGGCCAACTGGGTCTGGTGAGTGGCGATCCTCAGGGCGAGGCCCACAGAGTCCTGTCTCATCTTGCCTCTCACTCAAGGAGTCCAGAGCCACCAGAATGTCAAATGAGCCGAGTGCCACGGGGACCTCACCTAGGACACCTCGTCCTGGGGCCCAAAAGTCATCCGGTGCGGTAACCAAGAAGGGGGAGCGGGCTGCTAAGGAGAAGCCAGCAACTGCCCTGCCTCCAGTGGGTGAGGAGGAGCCAAAAAATCCCGAGGAATACCAGTGCTCGGGGATCCTGGAGACAGACTTCGCAGAGCTCTGCGCACGGTCAGGCTACACGGACTTTCCCAAAGTCGTCACCCGGCCACGGCCCCATCAGAACTTTGTCCCTTCTGCCTCCATGTCAGAAAAACCCACCCAAGACGACCAGCGGCTGTCGGCATCCTGTAGCCAGAACAGCCTGGAGAGCAAATACGTGTTCTTTCGGCCCACCATTCAGGTGGAGATGGAGCCAGAGGACAGCAAGGCAGTGAAAGAGATCTACATCCGAGGTTGGAAAGTTGAGGATCGGATTCTGGGTATCCTCTCCAAATGTCTACCCTCCCTCAGCCAGCTGCAAGCCATCAACTTGTGGAAGGTGGGGCTGACGGATAAGACCCTGACCACGTTCATCGCCCTTTTGCCTCTCTGTTCCTCCACACTCAGGAAGGTATCTCTGGAAGGGAACCCACTGCCGGAGCAGTCCTATTACAAGCTCATGGGACTGGACAGCACGATCGCTCACTTGTCTCTGAGGAACAACAACATCGATGACCATGGGGCGCAGCTCCTAGGCCAGGCACTGTCCACACTGCACAACAGCAACAGGACCCTTGTTTCACTGAATCTGGGATTCAACCACATTGGAGATGAGGGCGCAGGCTACATTGCGGATGGCCTGAGGCTGAATCGCTCTCTCCTCTGGTTGTCCCTGGCACACAATCGTATTCAAGACAAAGGAGCACTGAAGCTGGCCGAGGTCCTGCGCCCCTTTGAGCTGACCCACAGGGAGGTGGTGGAGAGGAGGCGCCTGCTGCTGGAGAAAGGATCGCAGGAGCGGTCACGATCGCCTTCCTCCTCCCGACATGGGGACTCCAAAACAGAGCGTGAGAAGTCTCAGACAATGGGGATCAGCAGTGTTGCTTTGGCAGACAAGCCAGAAAAGATGCAGACAGTGAAAACACCCAAGGGCCTGGGCAAGAAAAAGGAGAAGTCAGGGGAAGTTGTAAAGAAGGAGGAGAAGTCAGGCTCCGGGCAGTCACCCACACAAGGAACCCCTAAGAAAGAAGATGCCACAAAGGCAGGCAAGGGGAAGGTCACCATCCCCGAGCAGAAGATGAGCAAGGGAAAAGGGCCCAAGACGGGGAGCAAAGAGAAGCGCAGCATCCTCCTGGAGTCTGAGCTGGTTGTCGAAGCTACAGAGATGGTCAACCCTCTCCTGGAGCCTGTGGAGCACCGAGATGGGAAAGTTTTCATGCCTGGGAACAAGGTCCTTTTGCACCTCAACCTCCTCCGAAACCGAATTACAGAAGTGGGGTTGGAAGGTTTCCTTACTGCCGTGCAATACCAGGTTCAGGTCTCCAAGCCCAAGAGTTCATCCAAGGGTCCCTTGGGGCTGCTGTGGCTATCCCTGGCGAAAAACTGCTTTGACCCACAGTGTCCAACATACACCATGATTCAGGAACTGATGCTGCCAAGGGACCCTGTGAAGGCCAAGGTCAGGGAGGAGGAGGCCACAGCTACCTAGGCTTCCCATGGGAGACACCTTGGACCATTATCAGCCTATTGCTGTGCTATTCTTTGAAAATCACTTCAGAACTGTTGGGAACATTTGGGCTCCTGAGTCTGTTCATATTGCCTGGTTAGGCATGGCAGAGTGGTGGCCTGAATCACACGGTATCTGTTGGGGGGATGAACTGAGCTCCTGGCTCCACCTCCCGAGTGCCCCAGCAGCATCCCCCAGCCCCTCTCTGCCAGCATGCACACAGCTGATGATGGAACTAGGACCCATCCCCCAGCATCCTTGCTGCTTATCTCCAACCCATGTGTTTGCCTGGCTTGTGAGACAAATGCACTCTGGAGAGGGTACTGTAGCCATATTTGCATAGCAAAGGCCAAACATTAGACATGGCAGGTGAGCAACCTGAAATCATGGACATCCAGAGTTGGGACTGCCAGGCTGCCTCTAAATTCTGGAGAGCCCATGCTAACCTACAGGGAATCTCCAACCTCTTTCATCTCTTGGCCCTCCGCACTGGCTGCTGAGTGGCTCCAGGGACATCTTTCTCCATTGCTCTGAGTCC +>XM_030788246.1 PREDICTED: Chanos chanos meiotic nuclear divisions 1 (mnd1), mRNA +ATGGGCGGACAGTCTAAGAAGAAAGGATTGAGTTTGGAGGAGAAGAGGAGTCGCATGATGGAGATATTTTTTGAGACTAAGGACGTGTTTCAGCTGAAGGACATTGAGAAAATTGCCCCCAAAGCCAAAGGGATCACGCCCATGTCGGTGAAGGACGTCCTCCAGAGTCTAGTGGACGACAACATGGTGGACTCAGAAAGAGTGGGAACCTCCAACTATTACTGGGCATTTCCCAGTAAAGCTCTCCATGCCCGTAAACGCAGACTGGAAGAACTGGAGAAGCAGCATTTGGAAGGGAAGCAGAAGAAAGCCAGTCTACAGCAGGCCGTGGACAAAGCCAAAGTGGGACGCCAAGAAACGGAGGAGAGGAGTGCTCTGAGGCAGGAGTTGCAGACCCTGAGGGAGCAGCGGGACCAGCTCAGGGAGGAGGTGGAGAAATACAGGGAGTGTGACCCTGAGGTGGTGGAGGAGATCCGCAGAGCCAATGTGACTGCCAAGGAGGCTGTCTCACGGTGGACAGACAACGTCTTTGCCATCAAGTCTTGGGCCAAGAGAAAGTTTGGATTTGAGGACGCACGGCTGGACAAGGCCTTCGGAATACCGGAGGACTTTGACTACATGGACTGA +>XM_051990939.1 PREDICTED: Antechinus flavipes zinc finger protein 665-like (LOC127557627), mRNA +ATGAAGTACTACCCACCTGCCCCTCCCATCGCCTTGCCCACCAGACGCCCCTTCCCTCTCCGAGAACACCCGCCCTCTCCGAAAACACCCGCCCTCCCTGGGCACACCCGCCTTCTCCGCATCCCCCTCTTAGGCGCCATCATGCTTGCAGTAACCAACGACACAAGAGTCAGCCGCTGGGAGAGGGCAATCATATGCCCACCCACCTCCCCCGGCACGCTCACCCTCCTCTGCTCTCCTGGTCTCCTGCAGCTTTTCTCCCCCTCTTCTGGCGAACCCGTCTCTTCTGTTGCCCTTGGTTACGACCCTGGTGCCCACACACTGCCCCTCACCCACATTCCCCCTCCGCGCCATACCTGGGCAGCCCCTCGACCAAGCAGCGAAGGAGTCGAGCTCCACGCCCGCTCGCTGTCCGTGTCTCTGGGATCAGGGGCTGCGAAAGCTTCCGGTCTAGCCAAGGAGGACAACATAGGGGGAGATAGGTACAAGGAGTGCGGTGACACTTATGGACTCTGGAAGGGCAAGGTGGCCCGCCTGAGCAGTGGGGATGATCAGGGGGACATGAGGGAAGGTGAAGTTGTGGAGGGCACAGGGCAGTGGAGCAGGAGAGTTCCTCGTGACCAACTAGTGAGGCCCCGCCTTTGCAAGCGCAGCCCTGGCCACCTCCTGGAAGAATCCTTTGTGGCTCGCAGTGGGATCGCATCTCTGGCTGGCCCAGCCCGGGGCCCAGCCAAGAGCGAGCCTACGTCCTGCCTCGCCTCCCTTCCCGTAGCCCCAGGGGCCGCCCGCCTCCCCCAGCCCACTCCTCTGTCTTCCTCCTCTCTGCTCTCCAGTTTAGCCTTTAGGATGTCCAAGCCTGGCCCAAGAGAGAAGCTTGGAGCCAAGGGAATGGCCCCTGAGACTCAGAGGACTCCATCCCAGAAATGTGTGACATTCAAGGATGTTGCTGTGTTCTTCAGCCGGGAGGAATGGTGCTCCCTGAACTCTTCACAGCAGAAGCTGTACAAGGAGGTCATGCTGGAGATCTCTCAGAACCTGCTCTCTCTGGATGGAAAGAATAGACCTAAAACCCAGAAGTCTACTCCAAAGCTGAATAGTTCCTGTGACTTTCATTTGAGAAAAATCAAGGGTAGTGAAAATAACTCAGAGAAGAAGCAAGGCAACTTGAAGAGTCATTCCAAAAAATTAAATATTATCATCAGGAAAACTCCTCAAGAAAAAAAAGATGATGACCATAATAAGTCTGAGAGTAGTTTTACTCCACAGTCGACCAATGAGGGTAATCAACTTGAGGGGAAGCCAGATCTTACTAAAGATCAGAAAAATCCAAGTGTCAAAAAGCCTTACAAATGTAATGAATGTGGGAAGACTTTCAGTCGAATCTCATACTTTAATGGACACAAGAGGATTCATAATCCAGATAGATTTTACGTTTGTAATCATTGTGGGAAAAAGTTCTCAAGACCCTACAAACTTGCCGTACACCAAAGGGTACATACTGGAGAGAAGCCTTATAAGTGTAACAAATGTGGGAAGTCCTTCTCCCAGACCTCATCCCTTACTCTGCATCAGAAGATTCATAGTGGGGAGAAGCCTCATAAATGTAACGAATGTGGGAATACCTTCAGCCAGCGCTCAACACTCACTGCACATCAGAAAAGACATACTGGAGAGAAGCCCTATGAGTGTGGTCAGTGTGGGAAGGCTTTCAGCCGGAGCTCGAGTCTTAGTGTCCATAAAAGGAGCCACACCGGGGAGAAGCCCTATGAATGTACCGAGTGTGGAAAGGCCTTCAGCCAAACCTCATCCCTTATTGTGCACAAGAAGATTCATACTGGAGAGAAGCCCTATAAATGCAACGAATGTCAGATGGCCTTCAGGGAAAGCTCAGCCCTTCATGTACACAAGAGGTTACATACTGGCGAGAAGCCCTATCAGTGTAATTACTGTGGAAAAGCCTTCAGTCAATCCTGCAGCCTTGCTGTACATAAGAGAATACACACAGGAGAAAAGCCTTATAAATGCAATGAGTGTGGGAAGGCCTTCTGTGAGAGCTCATCTCTCAGTACACATCGGAAAATTCACACCGGAGAAAAACCCTACAAATGCAAGGAATGTGGGAAGTCTTATTGCCAAAGCTCGACGCTCAGTGCTCATCAGAAGACTCACACCGGGGAGAAATCTCACAAATGTCATCAGTGTACAAAAACTTTTGTAAAGCCCTCCCAACTTGTAGCCCATCAGAGAATTCATACTGGAGAGAGACCCTATAAATGTGACGAGTGTGGCAAGACCTTCGGCCACACTAAAACCCTTCATGCCCACCGGAAGATTCATGCTGAGGAAAAACTTTATAAATGTGATCAGTGTGAAAAGTCCTTCCAGTGCAGTTCCTACCTGGCTGTGCACAAGAAGATTCATACTGGGGAGAAACCTCATCAGTGCAACGAGTGTGGAAAAACTTTTAGACAAAACATATCTCTTATAGTACATCAGAGGATTCATACTGGAGAGAAACCCTATAAATGTAATCAGTGTGAAAAGTCCTTTCACGGCAGCTCGTATCTGGCTATCCACAAGAAGATTCATACTGGAGAGAGACCTCACTCGTGTAATCAGTGTGGAAAGGCTTTCAGAACCCACTTGAACCTCGTTGTGCACCAGAGGATTCATACTGGAGAGAAACCTTATCAGTGTAATGAATGTGGGAAGTTCTTCACCCAGAGCTCCAATCTTGCCGTACATCAGAAAAGCCACACTGGAACCAAATCTTCTAAATCTAATTAACGTATGAATCACGGACTTGATGACACAGAAAATTCATGTGAATGTAATTTTTTTCTCCTCTTCTATCAGTGAAGAAAGGAGGAAAAAGCAGATGGGACTTTATATTTCCTGTAATTTTATGTAAAGATATATAGGAAGGGACAAGGGGAGAGAGCACAAGATGATCTGTACTTTTAACAGGACAAAGGAGGGTTGAACACATGCACACACACACAACTTTATCGTAGGAATAAATCAGACTCAAATCAATAAGCAGGGATGAGGAGTAGGGTTAATGTGGAGAATAATGGGGAGGGAATTATCAAAAGCACAATGAATGTTCACTTGAGGGAAGTGAACACTGAAGGGGATATTAAAAGTTAAAAAAGAAATCAAAGAAATGATACAAAGAGGACCCCATTATTTGGATAATGAGTAGGTAATGCAGTGGAGACAGTGTGAAGTCTGGAGCTGGAAAGATCTGAGTTAAAAAATGGCCTTAGATACTTAATAGCTGGATTACTCAGAGCAAATCACTGAATTACTTACCATCTGCCTCTATTTCCTCATATGTAAAATGGGATTAATAATAACACCTCTTTTTCAGGGTCGTTTTGAAGATCAAATGAGTTAATATTTGAAGTGATTTCTAGATCTTAAAGTATTTTATAAATGCTAGCTCTTAAGAATATCTGATAGGATAGTATTGTATCATAAGAACTGATGACAAGGACAGGTTCAGAGAAACTTGGGAAAACTTGTAACTGAGGCAGAGTAGTGAGCAGTACCAGGAAAACAATTTATGCAATAGCAGTATTATTTTTTTAAAATTTTAATAGCTTTTTATTTACAAGTTATATTCATGGCTAATTTTACAGCATCGACAATTGCCAACCTTTTGTTCCAATTTTTCCCTTCCTTCCCCCACCCCTTCCCCTAGATGATAGGATGACCAATACATGTTAAATATATTAAAGTATAAATTAAATACAAAATAAGTA +>XR_004154822.1 PREDICTED: Punica granatum luc7-like protein 3 (LOC116196428), transcript variant X3, misc_RNA +CAGTAAGTACAGTTGATCGCCCCTCCACCTCCACCGTCGTCAAAGGGATTTCTTGCTTCCCCCTCCCACTCCGAACCCTAGAAAGTAGAGGAGCTCTTCCCCTCACCCACCATCGCAGCTTCCTGCTATTCCATTTGAGGGAAAAACCTATTGTTCCCAGCTGAATTATCCATCTGTTCCGAGCTCTTACACTACGCGATAGCGAAATCTTATCCATAAGCCATGGACGCGCAGCGAGCTTTGTTGGACGAGCTCATGGGCTCAGCTCGTAACTTGACGGAGGAAGAGAAGAGGGGATACAAGGAAATCAGATGGGACGATAAGGAGGTCTGTGCATTCTATATGGTCCGGTTTTGCCCTCACGATCTCTTCATCAATACTCGAAGCGACCTCGGTCCGTGCCCAAGAATCCATGATTTGAAGCTGAAAGAAAGTTTTGAGAACTCTCCAAAGCATGACGCCTATGTGCCAAAATTTGAAGCTGAACTCGCGCAGTTCTGTGAGAAACTGGTGATGGACTTGGATAGAAGAGTTAGGCGCGGGCGGGAGCGTCTTGCGCAAGATGCTGAACCTGTGCCACCTCCTCCTCTTTCTGCTGAAAAATCTGAACAACTATCAGTGCTCGAGGAGAAAATCAAAAACCTGCTGGAGCAGGTGGAAGCCCTTGGTGAATCTGGAAAAGTAGATGAAGCTGAAGCACTCATGAGAAAGGTGGAGATGCTTAATACTGAAAAGACTGCTTTGACACAACCTACCCAAAATGAGAAGGTTCTGATGCTTACACAGGAGAAGAAGATGGCTCTTTGTGAGATATGTGGCTCGTTTCTGGTGGCTAATGATGCAGCAGAGCGGGTTCAGTCTCATATCACAGGGAAGCAGCATGTAGGTTATGGCATGGTTAGGGATTTCATAGCAGAGTACAAGGAAGCTAAGGAGAAGAGAAGGGAGGAGGAAAGACAAGCAAGGGAAAAAGAAGCTGAGGAGCGGAGGAAGCAGAGAGACAAGGAACATGATAATCAGAGAAGAAGTGAATCAAGAGACAAGGATAGATCCCATGATAAGGAGACAGACAGGGACAGGGAGCGAGACCGCTACCGGGAACATGATCGCTACCGTGAAAGGTCACGAGATCTCAATGGTAGAAGTGGTCGGGATGGAGGGAGGGGGATGGATTGGAGATCTAGGAATGGAAGAGATGGAGGCAGGGACAGGTACCGGGACAGGAGCAGGTCTCGATCCCCTGGTAGACATGGATACTGAAGGTCATCACAAAGTCCAGTTCACTAATATTATGGATCTTGTAGACAGATGAAGATCTGGACTTGTTGAGATTTCTTGAAAATATGTGATCTTCAAGGGTTGAGGTAGGTATTACCTTGGCGCTAGTCTGTTAATTTTACTATGCGGGTTTGGATTTTGTTTTTGGACCAGATTCATTGTCTCTGAAAGGCCCCTTTCAGAGTCTTAGCCTTTGCCTGAGCATGAATCTCAGCTGCTCTGATGTCCCAAGCATATTAGAGTTAATATTCTTGGAAGAAACATGCCTGGGCTTCAAGGAGATGCATTTGGAGTTGGGTTTTATGATGATCATTCTTAAGGCAAAAGACAGAGCACTGCCCTTATTCACGTTCAGTGTCTGGGGATCTGGTTATTGGGCTGGTTTAGCATGGATGAGAAAGAGTGATATATTTTGCTGGCTTTTTGCTGTCGGCTTAGAAACAGAACTTTATTTAGCTGATGTGCCATTCCATGATCAAGAAAAGTGGTAGCATTTCCACTAATGTCAAGGTATAAACTCGTGTCTCTATTACGCAGTGTTTTCAACTATGCAGGAAGAGAATGGTATCGTGGTGTATTATAGACTCGTAGATGGTGGAAGGGGAGTGAGGAGTAGTTCTTGCTGGGCGTTGGCAGACTTAATTTACTCTTCGGTTCCTAGCTGTCTGTAATGAATGAAACTGTAGGAGGGTGATTAAATCTAGAAAAGTCTCCATTTATGGTGGTGGCTTTTACAATCTGTTCTGCCCATTGGCTTGAGACTTGTTCGGTTGTTCCTGAACTTTCTAATGATTGTACTTGTGGTGTGAATGGTCCAACAAGCAGGCAATTCTGGACATTATACACTTTACCGGCTTTGAAGGGTATTCCGAACTCAA +>KX758048.1 Babesia microti Trx1 mRNA, complete cds +AAAAAGTATTGACAATGGTGAAAGAAGTACAAACTACTGCTGAATTCAAGACTCTAATTTCTGAAAATGCCATCGTTGTTGTGGATTTTTACGCAACATGGTGTGGACCTTGCATGAGTTTTGCCCCCAAATTTGAAGCCCTTAGTGCTGAGTTCCCCAACATCTTATTCATAAAAGTGAATGTGGATCAAAATTCGGAACTACAAGCACTATATTCCATCACTAGTATTCCGTCATTCAAAATTTTCAAAGACGGGGCTGTTGTAGATTCGTGCACTGGAGCTAATGATGCGATTTTGAGGAGCACTATCAAGAAGCACGTCTAGCAGTTATATGCAATGGGGACTAATACCTCTGGGTATCACCTAGCCCTGGGACTTCTGGGTTTGTCCATAATTTTATTCAATTTAAAAAAAAAAAAAAAAAAAAAAA +>XM_027775713.1 PREDICTED: Tupaia chinensis melanoma-associated antigen B4 (LOC102498282), mRNA +CGTTGGGGGTGAGGTGTCTGTGGAGGAGGTGCAGCCTCAGGCCGTTGCCGGAGGCGTCTGATCCGTGTCTTATCAGTTCTGAAGACTGTACACAAGTGGAGCCGAATAAGGACAAGCTGAATTGTTCTGCTTGGCTTTTAGGTGCCTGCCTTGTCAGCCCTCCAGCTGTCCCTGGAAAGACACCATGCCTCGCGGTCAGAAGAGTAAGATCCGTGCCCGGGAGAAACGCCAACAGGCCCGTGGCATGACCCAGAGCCCCAGGGTCCCTCAGATCACCGCAGAAGGGGAAGAAGAGTCTTCCCCGTCCGCCTCTCCTGCCTGTGGAGGACGCAGCTCTCCTTGCAGCTCTCCTGCTGCCTGCTCTCCCCCAGAGTCTCAGGGAGACCCACCCACTAGCTCCCCTGATGCAGGTGCCTCAGGCACAAAATCTGATGTAGGGGCCCAGAGCCTGGAGGAGGCAAGTCCAATAACCTCTCAGGCAGCANTTTGCTGCCCTATGGTCATGCAGAATAAGCAGCACTTCCCTGAGATTTTGAGGAGAGCCTCAGAGCGCATGGAGCTGATCTTTGGCCTAGAGTTGAAGGAAGTTGACCCTGTCAGTCACTCCTATGCTCTTGTGAGCAAGCTAGGCCTCTCCAACGAGGGAAGCGTGAGTGGTGACAAGGGGCTACCCAAGACCGGTCTCCTGATGACGCTCCTGGGTGTGATTTTCATGAGGGGTAATCGTGCCACTGAGGAGGAGATGTGGGAATTCCTGAATATGTTGGGCTTATATGCTGGGAGGAGCCACTTAATATTTGGGGAACCCCACAAGCTCATCACCGAAGATTTAGTGCGGGAAAAGTACCTGGTGTACCAGCAGGTGCCCAACAGTGACCCTCCATGCCATGTGTTCCTGTGGGGTCCCCGGGCCTATGCTGAAACCAGTAAGATGAAAGTCCTGGAGGTTTTGGCTAAGATCAGTGACACAGTCCCTAGTTCCTTCCCTTATCTGTATGAAGAGGCTCTGAGAGAGGAGGCAGTGAGGGCAGGAGGGAGATTTGCAGGCAGGATTGGCACTGTGGTCCAGGTCAGGCCAGGTCCTAGGGCCATGTCCCACTGCTCTACCCACATCTAG +>XM_046141267.1 Boeremia exigua Molybdopterin synthase sulfur carrier subunit (C7974DRAFT_388246), mRNA +CAGACACACACAATTGATGGTAAGCATCAACCATTTTCTTCGCACTCAACCCCCCTGTCTTGTGATGTTTTCCAATAGCATGTATTATCCGACTGTCGCTTCGGTGACGGCCTGCGGAACACCTTTTTTGGCTGATCAGAAAATTTGCTCACCCTTGTTGCACACTGTTCCTAGGACACAAAAGCTAACAAGGTCCAGTCATTGTTGCTGTCATGGTAGCCTCAAACCCTCCAGCGGGGCACTTTACCATCTTGTACTTTGCGGCCGCCTCGACCTATACAGGCAAGACCACGGAGCATCTGCCCGCACCCCTCCGGGTGCGCAACCTGTTTGCACAGCTCGATGCCGCATATCCTGGCTTCGGACTGAAGGTGTTGAGCAGCTGTGCTGTGACTGTTAATCTCGAGTATGTTGATCTAGACGATAGTGATGCTCTCGATGTGGATGCCGAGATAAAAGCAGGCGACGAGGTTGCTATCATACCGCCTGTAAGCTCAGGCTAGGGCCAGCAGTGCTGCAACGGAGTGGGTGCAATGTGGACCGAGGATCGCATGCCTGCTGTCTGGTTGAATGGGTCACGTGAGGAGGCCGGCCGCGGCTGCTGTTGACCTCACCGCACGAGGACTACGATTAGCGAGTAGCGACCGAGGACGGACGGTGGCTGGACAGTAGAGAATGTTAGCTCGCGTGTTAATTGTGATTGTGCCTCAACGTTCTCGCGTCACGCGTCACGCATCACGTAGCACGCTCTCACGTTGCAAAGTAAATGGCGGACTATGAATGAGCCGGACATCCTACTACGCGACAGTAACGTGGGGAGAATGCACAAAAACTCTACAGAATATTTTTTTGTCTACAATATAAGTAGTTCTTATACAAAGTTTAGCTTTTAGTATTGTGATAGCTACAAGTTCTATATGAAAGTTAGTGAGCTCTGCTTATCCACCGTTTTTTCTGAAACTTG +>JX990552.1 Uncultured thaumarchaeote clone H7_Parch519F_24 m 16S ribosomal RNA gene, partial sequence +CAGCCGCCGCGGTAATACCAGCACCCCGAGTGGTCGGGACGATTATTGGGCCTAAAGCATCCGTAGCCGGTCCTGCAAGTCCTCCGTTAAATCCACCCGCTCAACGGTTGGGCCGCGGGGGATACTACAGGGCTAGGAGGCGGGAGAGGCAAGCGGTACTCGACGGGTAGGGGTAAAATCCACTGATCCATTGAAGACCACCAGTGGCGAAGGCGGCTTGCCAGAACGCGCTCGACGGTGAGGGATGAAAGCTGGGGGAGCAAACCGGATTAGATACCCGGGTAGTCCCAGCTGTAAACGATGCAGACTCGGTGATGGGCTGGCCTTGTGCCAACCCAGTGCCGCAGGGAAGCCGTTAAGTCTGCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>XM_020038344.1 PREDICTED: Musca domestica GATA zinc finger domain-containing protein 4-like (LOC109613490), partial mRNA +GTGGAGACACGTGCCTATCCCGAATTAAGCGGTCAGCAGCGTGACACAGCCACACCCCTGTGGATTATCATATTGGCCATAATTGGAGGCCTGCTGCTGCTGGCGCTCTTCACCTATGCCATGTGGAAGTGTGGTTTCTTCAAGCGCCGAAGACCGGATCCAACGCTTAGCGGAAATTTGGAGAAAATGAACGAAGAGAAGCCATTCTTAAATTCATCACAGAAAAATAATCCTCGCGGTTTCTAACAAGAAGGAACAGTTGGGTGGGATTTAATGCAGCAACAGAAATTGAGACCGGAAACGGTTGAGCCACCCAAAAATTGCTGTAGCAAAACAACAAAGAAGGATAGCGATACTTATGATTTTTGGCAAACATTTCAACAAGAGAATAATAACAATAACAACAACAACCACAATACATCTAACAATATCTATCAGCAATTGGGTGCCCATAATAGTAAATCAATAAATGAAATTAATTTGGCCGAGGTACGTAATGCCCTGGACCGGCGAACAATTGCAATGGCGAGCAATAATCAAACAACAACAACAACGGGCAATAATCATAATCACAATAGCAATAACTCAGGAATACAACCGATGGGCGGTAGTGCTGAAATAATATTCACCTCCAATTTTCAATCATCCCCCTCGCCCAACAATCCTCATGGTGGCAATACATCAATGTCCACCGGCAATAATGTGGGTAGCAGCAATGAAAATCTTCTAGATATCTATAATGGAAATGGGAAATTTGCAAACTCCCCCAGTGATCTATATAAACAAGCGCCAGCCATATCGGCTAATGGTGCTTTGGTACCACCACCCTACAGAGATCCACCGCCACCACGTAATAGTCCTTTACAACAGCCAGCAATTAATGCGAATGCTTCAAATGCCCTCTATTCAAATCAACCACCACCACAACAACAACAG +>XM_019441788.1 PREDICTED: Panthera pardus solute carrier family 51 beta subunit (SLC51B), transcript variant X2, mRNA +CTACTCTGTGGAATTCCTCCTCTCTGGGTCACTTGCCTTGCCTCCCCCAACACTTAGCCCTCCAAAGGTCTTGTTTTACTGCTTCTTGTAGGGAATTTACATAAGACCATGACCTTCACTGTGAGAAAGCACAGGCTATAAAAGGCCAGGCTTGGCTCCCAGCTCTGTGGTTAAATATTGATAATAGCAGGAAACAGAGGCCTGGGGCGGGTATACCACATATCCCCCTGCAGTAATGGAACACCCAGACTGAGGGTCTTCCCCAGCCCATTGCCTGGGCTGGAAAGACAGTCCACATGTTTTCTCTTTACTTCAGATCAACATATAGGAAGGAAAGTATGGAGCTGCTGGCTCTTGCAGATCGTGAAAGCCAGGCGGAGCCTGTTTGTCATCTAAGGCCACTCATTCAAGAGGTCATTCACCCTGGAGTGACAGAGGAGGTTCCAGGCCTGGGCGTGTGCTAAGGGCAGAGCTACCAGCTGGGCCCCACTGCCACAGGCTCTACAGCACTGTTCCCCCAGGTGACGGCTGTGACGGGTGCTCAGGCACAGAGACCATCCAGTGCTCCGGTAAGGGGAGGACATAGAAACCAACGCTGCTCCCAGCAGCAGATCAAGGCAGGCCCAGGAAGTCAGATCCCAGGTCTTTAATTTTGGTGTCTCAGTTTGCTGTTTGTTAGATGTGCACCTCGTCTTCCTTTTCTTCATCAGTAGCTAGTTTCCCTGACATCATCCACTGAACAATTCCTCCTTTACCTACTGGGGTCTTCAGGGCTTTGCTCAAGGGCCAGAACCTAGGAGCCCAGGCGGGCAGCTCGGGAGCAAAGGGGCCTAAGGATTTCATTGTCAGAAACGTATCCCAACCGTGAACAGGGGCATGGACCACAATGACGGTGTCATCCAAGCTCCAGCTGGCACCGTGGTGCCTCAGGAACTGCTGGAAGAAATGCTTTGGTTTTTTCGGGTAGAAGATGCATCTCCTTGGAATTATTCCATCTTTGCCCTGGTGGGTGTGGTGATTGTGATAAGCATCGTCCTCCTGAGAAAGAGCATCCAGGCAAACAGAAATCAAAAGACACTGAGGAAAAACAAACTGGAAACAACAACTCTGGAAGTCCAAGACTTGGCTGAGGCCGGAGCCAGAGAGGACAACAATCTGAACATGCTAAGAGAGACTTTGCTCTCAGAAAAGCAAAATTTGGCCCAGGTGGAAACTGAGTTAAAAGGGAGAAAGGTGCCACTGGTTCTCCTTCCAGACCCACAAGAATCCGAGAGCTAGAAGGGGTCCAGAGCACCGCCCCATGTTGTCAGCAGATTCAGTGAATGAACTGCAATCAAAATATTGTTATGAAAAAAAAAACCCTCCCTTTTTATTAAAATGCATCTGAAGTGGGCATTTGGAAATGCAGTTTGTTCCAATGGGGGTGGTTCAACACAAGGGGCTTGGAGCAAAA +>AY749834.1 Labidiosticta vallisi 16S ribosomal RNA gene, partial sequence; mitochondrial +TGCAAAGGTAGCATAATCATTAGTCTTTTAATAGGAGGCTGGAATGAAAGGTTTAACGAAGTACTAACTGTCTCATTTTTATATTAGAATTTAATTTTTAAGTGAAAAAGCTTAAATTTTGTTGGAAGACGAGAAGACCCTATAGAGCTTTATAACCAGTTTTCAAAATATTTTTAGTTAAATATTTTATTTTTATTAAATGGGTTATTTTGTTGGGGTGACAAAAATATATAATTAACTCTTATTATTCTATTGACCATAAATTTATGATTATTGGATCCAATAATATTGATCGTTAGTCTAAGTTACCTTAGGGATAACAGCGTAATCTTCCCTCAGAGTTCAAATTTACGGGANGGCTTGCGACCTCGATGTTGGATTAAGATAATAGTTGGGTGTAGAAGCTTGATTAATAGGTCTGTTCGACCTTTAAATTCTTA +>KR841045.1 Uncultured Stella sp. clone OTU_9761 16S ribosomal RNA gene, partial sequence +TACGAAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCGCGCAGGCGGCCTTTGAAGTCGGGCGTGAAAGCCCCGGGCTCAACCCGGGAATGGCGCTCGATACTCTTGGGCTCGAGTTCGGGAGAGGAGGGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCGGTGGCGAAGGCGGCTCTCTGGACCGATACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGG +>XM_050429574.1 PREDICTED: Quercus robur uncharacterized LOC126725075 (LOC126725075), transcript variant X1, mRNA +AAAAAAAAAAAAATCCCTTACGCCGTTGCCATTGTCTCCACACTGCAAAGTTTCAACACTTTGTCTCCACAAGTTGCTGTTTTGTGACCTCAATTGTGGCTGAGCCATAGCTGGACTTGACAAGCATGCCCAATGGTAGTATCTCTCTCTGTTGGTCTGTTTTGGCCCTTTTGGGTTTCCCGTTTCTGTGGTTAGTTTAGGATTTTATGTTTATTTGTTTATTGACTACTTTATTGATATTTGTGATATATTGATATATTTTATTATGTTTATTATATTTACAAGTGGTTAGTAGCTATCATCATTTATAATTTACAATTTGTATTTTATTTTTTAAATTTCATAATGGTGGCGCCGGCTTGTTATGGTTTATTTGATAAAATTGTTTGAGTATTTGTATATATATAATTATATTTGAACAAGTAGCAGTCTAATTATTTTATAGATACGAATTTACACCTTAGTTGCTTGGTTTTGTCTGACTGCACATAATGAAAGTACTAAAAAAACACTTTAGAATCAATTATAAATTGTCAGAAAGTCTTATAGTTCAGTAAATATTTGTTGGTGTTTTCAATACAGTCTAAAGCTCAAATCTTTCGTCCCCAACTATTGAATTGCCAAATTATAAAGAATTAATTATTAATTATTTTGGTATAGCACCCAAAAACATAAGCCAAAACTTTAGAGTTAATTTAATTTCTGAAATAAAACTTTTTTTTAGTTATGAAACTTTTTTCATACTTAGCTTGGCCCTCCCCAGGAAAAATTTATGGCTCAGCCATTGCCTAGTTGACTACATCCCAACAAGACTTAGGATTATTGAAGGGGTAGCAGATCATCACTTAGATGATCTCTGCTTTCCAATTAGACTATGCAACAAAAACACACTAGGAGCCCCTATTGTAGTCCCATTGCAACAATCTGTCCCAGGTAGACAAACTATTGTTGAACACAAGCCAGCCAATAACCGCATGCTTGCACACAACTAAAGGAAACTAGACTATTTCCCAATATGGAGTTTCTTGCTTCTTCAATCTAACTGCATTCCAGTCTTCAGTAGAATCAAATTTTCTTGATTAGGATGGCAACCACAGAAGCCGAAGAACTTTACCACCAACTTCAACCAAGCTTATCAGGCCTTGATGTACATTTTCAGATTTTAATTTAAAAAAAAATAATAAAAAAATAAAAAAATAAAAACTGTGAAATAGACTCTTTCTATTTCAAATGAAACCAAGAGAATCTTGTGATGATGTGGGTGTGTTTTTAGTAAGTGATGTTCATAACAGAATGGAATGGAGTCCATAAGGAAAGTGGTATTATGTACTCAACCAGGGACAAACAAGGACGTGTGAGTAAAATTGGTACAAGAGCACATTTCTAGGAGGAGAGAAATTTGAGTAAAGCTTCAAAGCTATCACTGAATCAAAAATGGGATAAACAAATATTTAATATTGATTTAAGCTAAAAATGGGATTGAGATAAAATAGATAATTTTTAAGCAGCTGGGGTTTTTTTTCAACAGGTTTTCTTAATGTATGGGGTTAATTTTACATTTCAGAGAACTCAAATGGCCTATTCATAAACCCACAAAAATTCCTAACCTTTATCTAAAACTTGGTCTGGAGTTTGAAATTGCTATTAAATATTTGTCTTTTTAACTAATTTGTCAAGTTTTTGGAAATTGCAGTTTGTGTTCTACTTTAGCTTATTATCCATTTTTCATCGCATTATGGCCTTTGTTATTGCAAGGGATTGTTCTAATTGCTCTGTTATAATTTCCAACTACTGAGTGGGTCAAGGGGAAGCAATTGGAAGAAGCTATAACCATTAAGAACACTTGCAGAAATGGCCAAAAAGGGCAAAGACACTCATAATAAAATAATGAAATATGAGATGGAAAGAGCACAAAGAATCAAGCAAAATCAAGAGAAAATAAATGCTTTGGGATTGAAGCATCTGTCAACTTTTTTGCCTAAATATGCAAATGTGGGAAGAAAGAGAGTAAGTGCTCAGGTAGATGACGACGATTGTGTACCAACTATTGGTGATGATGAGTTATCTAGTTCTTTACATAATGAGATGGCACCAAGATGTAGCACTCATTCACGCCGTGAGGAATTTACCCCAACAGTCCAGCATAAGGGCCCATTATTGAGACTACTTTGCAATGGAGATTCTGAGATGGCTCATTATAGGCGTGAGGAATCTACCCCAGCAGTCTAGCATATCGGCCCATCATCGAGCACACATCTTGGTAGAGATTCTCTTGTCGAAATTTCTACTAATGTAGAGGCACAGCTTGTGGGCACACCGTCTACCACAGATACATCGACTAGTAGACGTGCCCGTGGCATGACTCGTGGATTAAGGGTACGAGGACTTGTTGAGAAACATAGGAAGCTACCGGTCCTCATTGCCCCAGAGTTTTGTGCTCCTGTTGGTGAACATGCAGGGAAATTTGCTAGCCAAATTGGTGTACAAGTGCGTACGAACTTGTCCACTATGAATGCTTATAGTTGGAAGAATATTGATAGCGGTGAAAAAGAGGCGATCATTCAAAATGTGGCGGATCAATTTGATATACAAGGAGAATCTGTACTTGTCAACAAATCTCTAAATACAAAGTGTGGTAAATTATTGAGCAGCCACTACTACAAGTTGTTTACAAAATATAAAAAACTTGTAAAGGATGAAGGAAGCACATATGCAAGAAACCACCCACCAAAAAATGTCACACGAGAAAAATGGATTGAACTAATTGATGGAAAGTGGAGTGATGAAGATTGGCCGGCAATTAATACTTCGAAAATTTTAATTACAAGTGAAAAAGTCTCAACAAGAAATGCTAGAAACAGAAATAAAGAGGGAATGCTTGACAAACACATTCATAGATGTGGAAACAAGTCACTTGCAATTAGAGTGGATGAGGCAAGACGGAAAAATGGAGGTCATATTCCTAAGCTGGCACAAGTCTACTATGATACTCACTTCAATTTAAAGACAAAACAGTGGGTACACCATGATTGCGAACATACATATCAAGAGATGTTGAGAGTACAAGATGAGCATTGTAGCACTCTTGAAGCACAACCTTTGACCGAAGAGGAGATATCTATGATGGTTCTTAAGTCGAGATCTGGCTATGTAAAGGGACTTGGCATGAGGCCTTCCTCGTCTCTTAGGACTCTTGCCTCATCTTCCTCAACTCCGTATACTCAACAACTCGAAGGTCGAGTAGAAGAGTTCCAGGATGCAAACTACAAGCTGGAGGGCCGAGTAGAAGAGCTCCAAGATGCAAACTTCAGGCCAGAGGAGAAGATGGATTGCATCATACAATATTTGAGGAGCAAGGGCGACAATGACATTTGTGGTAGTGGGGGGAGCTCATCTACTAACTAGAACACACCTTGATATGGGATTGGTGACAGAAAGATAGCTTTTGTGGGACTACTTGAACTCAAATAATTTTTTGTAAAATTTGGAAGTTAAGACATCATTTGTATATAAATGGTTGTAACTTTGTGAACATCTTTATTACGTTTTTAGATTGTATGGATGTATTTTTTATGGATTTGGTTAGAAATGAATGGATTTTTATTTATTTTTTT +>XM_035972485.1 PREDICTED: Aplysia californica uncharacterized LOC101852208 (LOC101852208), transcript variant X5, mRNA +GCATGAGGAGTGAATTTTACTTTTAGTTTTAGTGAATTTAGTCGCTATTCCTCTTGACAAACTTGTTTTACAGTGATATAGTTCAATAAACATTAGGTCGTGCACTTGACTGTATGTTACATGAAAGGATAAAAAAGTAACTAGAAATCTTCCCCCTTTCTGTCCTGAAAAAAAAAAGCTCTTCACTCCCATTCTATTTTCCCTTTAACAACAATTAATTAATAAACTCAAGCCAGCCCAAGCGGATTTCTTGTTTCGTAAAATTATACTAACCCTAATCATACATTTTTAGAGAATTAACAAATAGTTACTTCCATTTCTAAAGAGCAGTTTGGGTATTAATGCGCTCTCTTGGATACCAACAAAACAAGTGACTTAAAATAAGAAAAATAGATATGGTGTCAACGTTTTAAATATTGATATCGACTTATTTTATTACTAATAAGATCCATTTTGGATCGAGAAATGAACATATTATATTGTATTTTATTAAATTTCTTGGAACTATTTATGTCCTTCTGAAAGGCGCAGTACCACATTGTTTATGATGAAGTAAAGTGGCGCCTTTCATTTTTTTTCCTATTGACTAAACGGTGAAAGCAATATCGAGTTTTTATAATGTATAGGGTCTTTTGATAGTCAAACAAATGTGCCAAGGATGTCTTCGAACGAAGTTGTAAAGACCGTTGCCAAAAAGTTGAAATACTACTTTGAGATCAAGCGTCTAGAGGATGGCTTTGATTTATCAGATGTGCACCAACCCCAACTGGATCACCCTCCTTTGAAAGCGCGTCCAGCACTTCAGTATGAGGGCCTCCATGACCGTGCCCTCAAGCACTACTTCAGCCAGCCTGAGGTGCGCGTGCAGCTCACACAGATGCACGGGCCAAATGGAAGGGGCACATTGCATGGGCGGAGGGAGCAACAAGTTCGCAAGATGCTGGACAACTACATGAAACATTACTCCTTCCAGGAAGAGTTTCTGAATGCCTCCCCAAGAAAACGTCCGGCCAGCCCAAAGAAGAACACACTGCCCAGCTGCTACTACTACCACACACCCAAGGGCTGTAAGATGAACACCAAAGCCACTGGAGTCCTCCATAGAGCCAAAAAACCGAAAAATCTGATTGGAGGCTGGCCTACCCTGAGGTCTGTCCCAGACCAGCACATCTCCAGAGGGGAGGCCACCAGGCTGGTCAACTCAGCCACCAAGATTCTTGTGGCCTCAGCCTATGATGACTCCTACATCGATAAACCCAGAGCCACTTCAGCCCAATCTCGGCCAAGATCACCAACTCCATCCCAGAGCACAGCAACAACCACGTCAGCGACAACTGCCACAAGCACGTCCACCGATGATCACCCACCCGTGCGGCCGCAGTCAGCCAAGTACCGATCACGCACAGTCATCAATGTGCCACAGCGCAGGGCCCAGGAGGAAGTGGCTGTGATCAGGGCTACTCAGACGGCGGCTGATTTTGACGTGGGAACCAAGCATGATCGGCAGCTGCTGGAGAAATATGACAAGCTGGAGGAGGAGGTCGATGATGGAGCATGGTGTGAGTACCAGGTCTATGTCTGCACGGGCACGCGTATTGGCTCCAGCACAAAGGCACCCATCAAGCTGACAATGTACGGGGAGAAGGGCAGAACAAAGGAGTTCATTCTCAATGACTCCAAACGCCACAAAATCCCATTCCAGAAAGGGAAGGAAGATCTTTTCATGCTGGCGGCGCATCACATTGGTAGGATCAGGAGAATACAGATTGGCCACGACAGGCCTGAGCTAAGCTATGCATGGTATCTGGAAGGGGTCACTGTCTACGACATGCATGCAAGGAGGATTTTCCAGTTCCCCTGTGAACAGTGGCTTTCTGGACAGGCCGGGGATAAGAAGACATACCGTATGCTTCAAGTTGATCGTGAGAGAGAGTTTATTGATGCACTGGGGGATGAAGCTGGCTTGGAGAAGTCCACGAGAAAACACAGATACTCTGCAGAGCCAGAATCATCGACACCCAGTGAGGCGTTCCGGTACCAGCCGAAAGGAGAGGACAATGTGAGCACACGGGTGCGACCGGGCGATGACTACAGCGACACCGACAGCTCTGACAGCTCTAGCTCCGGCCGCTCACAGGACGCCGAAGTTCCTGTCAATGAGCATGGCTCTACGCCACGGCAGAAGAAAAAGGTGGCTAAGGACGACTACGAGGAGAAGACACGGGCTGGGACTGTGATAACGCTCCATTCTGCCACTGACTCCCAGCAAGTGGACGAGATCTTCATGGAGCCCAAGGGACGAGCCGCTAATGCCAAGTCTGGCTCTGATTTTCTAGAGGGATATAAGACAGCACTATCTGCATCAGAAGCTGAGAAGAAGAGAGGGCTTGAGCGAGAAAGAGAGATGGAGCGAGCATTGCTCCAGGGCAAGAGTATTCACGAGGCAGTGCGGGATGGGGATGTGGACAGAGTCAAGGATCTGCTGCACCATTTCCCTGAGATGAGAGATTTTAAAGACGAGAGCAGCTGGACACCTTTGCACCTCGCAGCTGCCAGAGGAAACATCGAACTTTTGAGATGGCTACTGACCAGTGAGGCGGACATCAATGCAGAGACGTCCACAGGCTACAACGCTATGCACATTGCTGCCATGAATGGCCATGTCAGCTCCATGATGTTGCTTCAGGCGATGGGATCCTCCATATTTGGCTTGACAGCAGAGAAACAGTCGGCTCTGCACTTGTCTGCTAAGAGTGGTCATCTGGAGTGTGTCAAGTGGCTTGTGGCCAACCGTGCCTCTCTGCCAGCTGAGGATGCCTTCGGTCGCACGGCTCTCAAGTTGGCCGAGGAGTTCCGTCACGATGCCTGTGCTGACTTCCTGCGCATCTGCCTCCGGGAGCTTGCCAACCCCCGCAGCACGTTTGCCATGATGCAGGGACAGAGGTTGAGCCAGAGTGGCCTCCCTCCTATTGAAGAGGACACAGGCTCTGCCTCCAGCAGCTCACAGTGGAAGGACGATGTGAAGGGACACTCAGCCTCAGAGGATAGTGAGAATGAAAAGAAGAGCCAGAGAAAGTCCAAGGCTGAAGAAAAAGAGCTGGAGGAAAAACGGAAACTGTACAAGGAGCAGCACGAGCTGATGGAGGACAGAGGGTTGTCTTTCCTTGATAGCATCAGACAGGACGCAAGCAAGGCATAAAGCAGGAAAGCAGGAGTGAAGGAATGGAGGAGAGAAGGA +>XM_048336008.1 PREDICTED: Perognathus longimembris pacificus SH3 domain containing kinase binding protein 1 (Sh3kbp1), transcript variant X4, mRNA +TTTCGTAATTTCCACTCACGGAGAGCAGGAAACCCGGTGCAACCGGGCGCAGCGGGCCGCGATGCAGCAGCAGCAGCAGGAGTCGCCCCAGGGCAGCAGCGGTAGCAGCAGCAGCAGCAGCAGCAGCAGCAACAGCAGCAGCGGGCGGCGCTGAACCCCCCACCGCCGCCACTGAGGAAGAAGCCCGCCCAGTCGCCGCCGCGTCCTGACGCCCGCACCCGGATCCCCGCGCCCCGATCCCGGCGCCCAGAACCTCACGCCCGCCTCCGCCAACTTTCAAGCTGCCTCGGCGGCCCGACCCGGCTCGGCGCCAATGGTGGAGGCTATAGTGGAGTTTGATTACCAGGCCCAGCACGATGATGAGCTGACAATCAGCGTGGGTGAGGTCATCACCAACATCAGGAAAGAGGATGGAGGCTGGTGGGAGGGACAGATCAACGGCAGGAGAGGTTTGTTCCCTGACAACTTTGTAAGAGAAATAAAGAAGGATGTGAAGAAAGACCCTCTCACCAGCAAAGCTCCGGAAAAGCCCATACACGATGTGTCCAGTGGAAATCCTTTGCTGTCTTCTGAAACAGTTCTAAGAACCAATAAGCGAGGTGAACGACGGAGGCGCCGATGCCAGGTGGCATTCAGCTACCTGCCCCAGAATGATGATGAGCTTGAGCTGAAAGTCGGGGACATCATAGAGGTGGTAGGAGAGGTAGAGGAAGGATGGTGGGAAGGTGTTCTGAATGGGAAGACTGGAATGTTTCCTTCCAACTTCATCAAGGAGCTGTCAGGGGAGTCGGATGAGCTCGGCATTTCCCAGGATGAGCAGCTTTCCAAGTCAAGCTTAAGGGAAACAACTGGCTCCGAGAGTGATGGGGGTGATTCGAGCAGTACCAAGTCCGAAGGTGCCAACGGATCAATGGCAACTGCAGCCATCCAGCCCAAAAAAGTGAAGGGAGTGGGCTTTGGAGATATTTTCAAAGACAAGCCAATCAAACTGAGACCAAGATCAATTGAAGTAGAAAATGACTTTCTGCCAGTGGAAAAGACTATTGGGAAGAAGTTACCTCCACCTGTGGCAACTCTAGACCCATCAAAATCAGAGATGGATAGCAAGACTAAGACCAAGGATTACTGCAAAGTAATATTTCCATATGAGGCCCAGAATGATGATGAATTGACAATCAAAGAAGGAGATATACTGACTCTCATCAATAAGGACTGCATTGATGCAGGCTGGTGGGAAGGAGAGCTCAATGGTAGACGAGGCGTGTTTCCTGATAACTTCGTGAAGTTGCTTCCAGCAGACTTTGACAAGGAGGGGAGTAGGCCCAAGAAACCACCTCCTCCATCCGCTCCTGTCATCAAACAAGGGGCAGGTACCACTGAAAGAAAACATGAAATGAAAAAGATACCTCCTGAAAGACCAGAAACCCTTCCAAATAGAACAGAAGACAAAGAAAGACCAGAGAGAGAGCCAAAACTGGATTTGCAGAAGCCCTCGGTTCCTGCCATCCCACCAAAAAAACCTCGACCACCTAAGAGCAATTCCCTTAGCAGACCGAGCGCGCTGCCTCCGAAAAGGCCGGAGCGACCAGTGGGTCCGCTGACCCACACCAGGGGTGACTGTCCCAAGATTGATTTGGTGGGAAGTACTCTGTCTGGAATTCTGGACAAGGATCTCTCTGACCGCGGCAATGACATTGACCTAGAAGGTTTTGACTCTGTAGTGTCATCTACTGAGAAACTGAGTCACCCTACCACAAGCCGACCAAAAGCTACCGGAAGACGCCCTCCATCTCAGTCGCTCACCTCTCCAGGAACCATGGCAGCAGGCAGTGGCCCAGCCTCGCTGACTTCACTGGCTTCAGTCCCCCTGTCATCTTCTATGGGAGCACCCGGACACCGAGCCAATTCCCCATCTCTGTTCAGCATGGAAGGAAAACCAAAGATGGAGCCGATAGCCAGCAGCCAGGCGGCTGTGGAGGAACTCCGGACACAGGTCCGCGAGCTGAGGAGCATCATTGAGACCATGAAGGATCAGCAGAAACGGGAGATTAAGCAGCTACTGTCCGAGTTGGATGAAGAGAAGAAAATCCGCCTTCGTTTGCAGATGGAAGTGAATGACATAAAGAAAGCTCTTCAATTCAAAGTGAATACTTGATAATTGAGATTTTGCATTTTTCATCATGAGTCCAAGACTCAAAATTTTCTGCCCCAGCCAAAATGAATCCTGTGCCAAAAGGTTACAGATTTGCCATCACATGTCCCTGTTTAAAAGATTAGCACAAAAAGTCTTGATAGCACAACACAAATTCCATCCAAGAGGAGAATCTTCCCCATGGTTTAGGCCTGGGTCTGGCACTGGTTGTGACTTAGAGCAAATTGTGCTAAAAAGGCTTTTCTACCTTGAGATCTCATGTGAAACGAAAACTCAGGCAGTTTAGTCCATAGTGGTACTATTTTGATGATCTTTTCCATTAATGAAATGTAATTTCAGATTATTCTTTACAAGCTTTATAATTTTATGATTTTTTTAACCGTGTTTTGTCACAGAAGCCCCTAGCGTTTGTATTACACCTAGTCAGAAGCGAGAGTCTTGGTCTTTTTGCTTCAGGCAGAAAGCTGCCTGGCTTTATGTTCCCTTTAGGATTCTATTTACATATGCAATTTTAGGTCCAACCCTCCCTTCCCCTGCCAGCAGACCCACCCCCTAAGAGAAATTTAGCTTATATATGATGGTATATTTACAAAAAGAGAGAGAGAGAAAAAAAAATCTGGTATTTGCAATGATCTGTGCCTTCTTTTTACCACCCTCTTGATTGGAGTTTTTGTGATGCAGCTACCATGATTCAACAAATCAAAAAGAAAGAAATGAAAATCTACCACTTCTCCAAGTCCACTAGAGGCCGCTGTGTTCGCAGTTTCTCTCACCCTAGCCAAAGGTCCTAAGAGGAGACAACTGAGATGTCAGGCGTGTGCTGGATCAGACCACCTGTGACTTCTCAGTTTCTCCTACTTTGAGGTTGTTCATGAAATGAAAAATGGCATCCCTGCTTGATTTTTTTTTTTCATCAGCCAAGTGAAATCCCTGCTTCCTGTCCTTTGGCGCCTTTTTTTTTTTTTTTCCGTGAACAGCATATGCATTATTAAAGCAAAGCTAAATAAAAGTTCAAATGCAAATGAAAACAAGGGGGGGAAAGTTGTATTATTTCCTGCACTGGGTAATCCATGTGTGTTATTGTTTAAAACTGTATTCACACAATGTCATTTTGCCTTGCTCACTTGTAACCCCCCTTCCTCGGGTCCAAACGAATGGGACGAGGGTCTTGTTGAAGTGCAGCCAATGGATCTTTCTTGCATTCATGGAATTGCTTTTTTTTTTTTTTTCCTTTCTGAGGGAATTGATGTTTGCTTGTCTGATTTAATCTTTGTAGCACTTGGAACAGTTCAGCCTTAGATTATGTAACTGTTTTTCCTCATCCTCTGCTGAAAAACTATGGGGCATACCTTACTGCAAGATTGTTCAGGGGTTAGAGGTGGAGGGGCTGGTCCCTTAATGGCCCCAACAATGTCTGATGTGTTTCTAAGCAGCTGCTTTGTCTATTTCTTGCATTTTATAGTGAAAACTACTCAAAAAAATGTCATAGATTTGCACAACTATGAAGAATGAGAAATGATGTCACTAAAGGAATGATGCAAAAAAAAATCACATTATTCATCCTTGAAAATAGAACAAGTGTCTCTTTCCTTTCTCTTCCTCTCTCCCTCCCCTTTGCCTTGCTCTTGCCTGCATACTCCTTTCTTTCCTGAGAGTATTTACAGAGCCCAACGCCCTAGTCTTCCTTGGTGGGGACACAGTTAAGGGAAGGGAGTGTGTAAGGAGCCAGGCACCTTTTGCTCCGAGTGTGGCTATATGTACGGCTTGTGCAGCAGCCTTGGCCTCAGTGTGCATGGGGCTGGGAACAGCAAGTTTCTAAGGGCAGCACAAAACATTCCTGTCCCCCTTGAACTGTTCTAAGCATTTCTGCATTACACTTGAAGCCTTCAGAGATTTCCCACCACCTAATAGAACAATGAAGATTGGATTCTTTGGTGTTTGAATTTCTCATTTCTACATCAAGAAAATCCCAACTGATATAGCTTTATCAAAAGTGCATACAGAGTAAGATTGTGGACAAGGAAACGGCAAGGTGGAGGTATCCTCGGTGGGGCATTGGCAACCTGGAATGTGTAGGGCTGATGTCAGCGCCTCAATAGAGGCCATTGGCTTTCTTCATTTAAAGAGGGGAGAAGTAAGTGATTGTAAAAAGAAGTTGCCATTTTCCAGCCTCCTTATTGTCCCTCGGGCTAATCAGCAAAGAGGATTCTGCATCATGGGACTGGGTGAGCCTCTGCTTGAACGGCTACCATCTTTACTCTTGTCCATATGAATCCATCAAGGAAAGCTTG +>XM_001582328.2 Trichomonas vaginalis G3 uncharacterized protein (TVAG_2v0998720), partial mRNA +ATGAGTGAACTCGCTGTAGACGCACCAAAGGTTGTTGAAGCTTTCAATGGCGGCCTCACATGGCTCAACAGAAAATCAAACTCCCTCCAGAAGTTCCAACTTGACAAGATTTTAAGCGCTAAGGAAGAAGCAAACGGCGAGCTTATTATCGAGAGCAACCTCAAGATGTTCAACAAGGATCACCACTTCAGATTCGTTATCGATACATCCTTGGCACCAACAAGCCCAGAATACTTGAAGGACTTCAAGCAATTATCTCCATAA +>XM_018438955.1 Phycomyces blakesleeanus NRRL 1555(-) hypothetical protein partial mRNA +GCAAAAACTCCCCCCCTCTTTTTTTTTTTTTTTCTTCGTACTATTTTTTTTTTTCATTTATTATTTTTTATTTATTTTTAAATACTAAATGAATGTACCAGAACAACAGCTCCATGATGACCTTGTCAAGGACTGGATTCTTTCAAGTCGTAATGAAATCGATGCGTCCTTCATGGCTCACGTTTTATTAATGACAACAAAAAGCTCGACAGGGTTATCAGATCTTGTCAAGTTTCTCTCAAATTATTGGAAGGATGAAATTCACCGAGGAAAATGTGTCGAATTACTTACCCAGGTCACAACTCATAGTCGTTCCTCTCTTGATTATGAGACAGTCGAGGTGTTGATGTCATTCTCATGCGACCGTTTAAATGACTCTACATCAGTTCTCCGTCTTCTTGATCTAGTTGATGTCCTATGCTCAACACCTCATTTCGATGGCCATTACGCTGTCATGTTATGTCAATCAATCTTTCGACACATTGGCCAGAAAAAACAACCTCAGGGAACTCGCCACAAGATATTCTCACTACTCAACAAGCTTCTTCAGACTTACACTTCCGATCTACAACGTGCAAGAGTGAACTTTATTGGTAGCTTCGTAGCTTTTATGGATGGTGAAAAGGATCCACGTAATCTTGTGATTGCATTTGAAATTGTTCGATTCATCATTGAAAAATTTGACATTTCACAGCATGTTGAAGATTTATTTGACGTGCTCTTTTGCTATTTCCCAATAAGTTTTAACGCCCCGATTAATGACCCGTTCAGTATCACCACCGAAGACCTGAAGGACAGCCTCAGACGTTGCTTGGCTGCCACACCTTATTTTGCAAACTATGCTACTCCTTTACTAGCAGAAAAACTATTGAATACGACTGGAAGTGCCAAGAAAGATGCCATGGAAACAATTGGCCTTTGCGCTCCCGCGTACGGTGCACACGCTCTCTTACCACACGCAAAAGATATATTCGATGCCCTCGTAAACGAAGTCTATCATGCAACCGAGACCTCAATGGAGGCCACAGCTCTCAAGACCATTCATAATGTTGTGGCTACTCTAGGAACTGGTGTCAGCATAGCCAACATCAGAGATCCTGTAGAGAAAACCATTGATGCCTTACTATCCCAATGCGTCGAGAAACTTAACGAACCCGAACTCAAATATGCAAAAGCTGCAGCATTGATTCTACGTTCTGCCGCCTCTGCATCAGATCCTGCTTGTACATCTGTAGTACATACGACCTTCCCTATCCTTCACAATATGTTTAAAGATGCCAATTCTCTCAGTCGACAGCTCGCTGTTCTTGATATCTTTATCGAGATTCTATTTGCAAGTAAGAGTCTTTATGGCTCAATCGAGGATATTGGATTTGATCGAGATTTCCAGACCCCTTTGCTTTCTTACAAGAAACCGCTGTTGGATATCTTTATCACATCTTTGAATATTCGTTCTGATGAAGGACGTGTCTGTCGAATGTCTGCCTTGAAAGGAATTCGCCAAATGGTTGTTATGAAGCAATTCTTGTCGGCAGAAGAGATGGAGAAACTTGTATTGCATCTCACCCAGTTGATTCCAGACACAGACGGTGAATTAAGAGCGCTTGTTCTCTCTTCCCTTTCTGTATTAGCAAAGTTGAGTCTCCCTGCACTCTCCAAATACACCTTCCCACTCCTGTGGAGACTACTTCCAGGACACCAGAAACCAGACAACAGCAACTACCATAGTACCCTTGAAGCCGTCGAATACTTGACGATCAACCCCACCATTTTCAACACCATCGTTGCCTCTTCTCTATTGGACAAATTTGATAAGTCCTGCCGTCTATCTGACCAGTCGCGAGACTACGTTTCCGCGTTGGCTAAAACTATGCTCAATTTATTTCAAACTATGGCCCCAAAAGACCCAAAAACTATGCAACTAGGACAACGTATTTTTTTCCCTCACATTATGTCAGAGTGTATCAAATCTACTCTTCACTATCCAGGTTCATGGCTACTCGATACCCAACTTGTCGATATATTGTCGCTCTTTGTGGCTGGAGTCGTAAAGAACTCCAATTCAAGTCATCAAACAGCACTGACTGCAATTGCGTTCCGTCTTTTTGTTAATGGTGATCTGACAGCTGTTAACCTTCAATCTACAAGTGATCCTACCCTTCGTCTCTTTCCTTTATCAACCGTTGTTCTTCCTATCCCATCTTATAGTGAATTCATCCAAGGACTTGTCCAGGCTGCGTTAAATACTCCATGTAGTGCCAAGAGTCTAGCGTTGACAAAATCCTTTGCCTCAATTGTAAACAAGTGGGGAAATGAAAGTGTAATGTCTTGTGTGGACAATATTATTCCTACCTATCTTATTCCTGCCTTGGAATCCTCGGATATCAAAGTAAAGAAGGCTGGGTTATTGCTTCTAACATGGTTGGCCAAGGCACTCGTTATTCAAGGACATGCTTTGGGTTTCCAGATACTTGACATTATTGCAAACCAATGCCAATTACCTGATGTGGGGCGCGAGGCTGCAAATCATTTTTCTACTATCCTTCAAGACGACGAACTTATGCTCAACAAAAAATCCTATGCAAATGTTTCTATTCTTTACAGACAACGCGTCTTCAACTACTTGGCCCCAAAACTCATCGAGACAGCAAATATATCTTCTGCAGACTCCAAAATCAATTACTTTACCGCACTCTCTTGTTTGCTCGTGAACGTACCTGATTCTGTAGTTGCTAGTGAATCATCAAAGCTTATTACCTCTATCAATGCCTCCCTTTTATTGTCTGACTCCAACCTCTCCTTGTCTATGATCAAAGTAACACGCGTCATTATTGCCACTTCTCCAGAAAAGATCGAACACGCCACATCACCCACTATCGATGGACTGCTACACTCGGCTGATCCTGCTCACAACCTCTCCTTGCCCGTTCGAATCGAATCTATCCAATGTCTAAAGGATATCCCAGATAAATTTAAGCCAACAACCCTATCGCCACATGCACCCATTGTAGTCAAGCGACTTTGCAGATCCTTGGATGACAAGAAGCGGCTTGTTCGTAAATATGCCGTTGACTGCAGAGAAAGATGCTCGCTTTTACGGTATCTTCTCGGAGCATTTTCTCAGCCACTTTGCATTAAAAGATATATCAATAATAGAATGACAAGCCTTCTGTTTTACGATTGTATTACCTTAAAACTCGAGATTTTATGTGTCGGTGATCCTACATAA +>XM_023978471.2 PREDICTED: Salvelinus alpinus phosphatidylinositol glycan anchor biosynthesis class Q (pigq), mRNA +CTGTCTGTCTGTCTGTCTGTGTGTCTGTGTCTAGCTCCGCCTTGTGGTAGTGATGGTCCAGGGAGTGGTCCATCTCAGTGTTGACTTCATCAACTCCTTCCCTCTGTTCGCCATGGGCCTCCGACTCTTCAGATCCTACAGACTGGCAGAGGGGGTGAAGTTCAGAGTGCTCTGTGAGGAACCAGGAACACCTCTACACCTCATGATGGATATTAACCCTCTGAAGGTGAGCAGTGTGGTTCAGACCTACAGGACCCCCACCTACAGCTGCTACCCTAAAGACTCCTGGCTGGCCCTCTGCAAGAAGCTGTTCCTGGGAGAACTCATCTACCCCTGGAGACACAAGACTACCAAGATAGACTAGGACCAGGGGGGAGAGACAAAGGGGA +>XR_002711448.1 PREDICTED: Cucurbita moschata uncharacterized LOC111448527 (LOC111448527), ncRNA +ACCAAATACATTGATCGAATGGCGCCTTCTTCCTCTAGTGCCGCCGAAGCATCGTGAAATTCTCCCCTCCTTCCTCCTGTAATGCCGCAGGATCGTGAATTCATTCTCTGTCTCCTTCACTGACTCTTCGACGAGCTGACGATTCGAGTTGTAAGAAATCCGCTTCGAGCCGTAGTCCTAGTCCTTTACGAATTTGGAAATCATTGAAACTTATCATTCAGACTAGCATTGTTGATTGAAAATCCGAGTCGCAGAGGATAATCCAAAAGCCTTGTTTAGTGCACCGATGAACAAATGTTCGACGCATTAAGGCTATTACAGACAGGATTTTAGTAAATAGACAGGATTGTATTAAGCACTGTCTTTTTTCTATGACGGAGATGTGATGATCTTTACTCCAAATGGACTTCCACAAGTATACAACGTTCTTCGGACATCGTTACGAGCGTTAATTGAGATTGTTCGTTATGAAGGATTAGGAAAGGAGGGAAAGAAGATGCAGGAGAAGAAGATGGAAGTAAGAGGAATGGTGAGTTACAACCCGAATGAGCGAGAGTTGACCAGGCTGAGAATCATCATTTATTATTGATGTGACTCGAAAGTCGAAGACTGAATTATAAGGAAATTCACTCGATGATTATTACTCAGTAAGCAGGTAAGTCTTCTATTCTTTTGTTATATAATCTGTTGCATCCGCTACCATCTACATTTCTCGTTATGATTAATCATCATTACTCAGTTTTTGTTGGATGAAATTTGTTGTTTGCTGT +>XM_041901937.2 PREDICTED: Coregonus clupeaformis protein lin-28 homolog A-like (LOC121585613), mRNA +GGAAAATACACTATTTTCCAAAGAGGGATTACCGAAAAACGTGCACCGATAAACCAGAGTTTATTGCCTGATTCTTCTGGAGTTGTATGAGGCCCAGGAACCCCCCAAACCATGGCAGAAGGGGGCTGTGCAAAGACCGAAGAGGAGGAAACCACGGGCTCCGAGGAGGATCTGGGTTCGTCTCGTGGCAGCGGCGTGTGTAAATGGTTCAACGTCCGGATGGGTTTCGGGTTCCTGTCCATGACCAACCGAGATATGACACCGCTGGAGGAGACTGTCGATGTATTCGTTCATCAGAGCAAGCTGCACATGGAGGGCTTCCGTAGCCTGAAGGAGGGCGAGGCGGTGGAGTTTACCTTCAAGAAGTCGTCTAAAGGCCTAGAGTCTGTTATGGTGACGGGGCCAGGGGGAGCACAGTGTGTGGGCTGTGAGAAGACACCCAAGGGGCAACAGAAACGACGCTCCAAGGGGGACAGATGCTACAACTGTGGAGGACCTGACCACCATGCCAAAGAATGCCAGCTACCTCCTCAGCCCAAGAAGTGTCATTTCTGCCAGAGCATCAGCCACATGGTGGCCAACTGTCCAATCAAAGCACAGCAGTCCTTCCCTGGCTCTCAGGGAATAGCATCATCATTGAGGGATGAGAAAGAGGAGCAGAGCCACGCCCCCTTGCTCCAGAGGGAGAGCACTGAATGATCCATTCAGGGATTCAGCCAATCACAAGGTTTCATTGTAATGCTGCTTTTGGAACTACATCAGGCTGTCTTTATTCATCGAACTAACAGCAAGAAAATGGTAAATTTATTGATGCGATAGTTGAGATTGAGAGTTAGCTCTGTGTTTTAATGCACAGAGAGACACATCTATCCACCTTCTTTGCAACTCAAATACTTTAAAGTAATTCCTTTTCTGTCTATGAAGTTATTATTTCTGCATTAGATACTGAAATAATCTAAACTCACTGTGTTTACAAACTGCAATAAGCCTTGTATTGTCAGTTTTTACCACTGTACGTAT +>JN498124.1 Uncultured organism clone SBYZ_7200 16S ribosomal RNA gene, partial sequence +GTTAGCTTTGGCTATATGGATCAAAGGTGGCCTCTGCATGCAAGCTACTGTNTGGGGATGAGCCCGCGTACCATTAGCTTGTTGGTGGGGTAAAGGCCCACCAAGGCGACGATGGTTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGGAACACGGTCCAGACTCCTACTGGAGGCAGCAGTGAGGAATTTTGCGCAATGGGGGTAACCCTGACGCAGCAACGCCGCGTGAGTGATGAAGGCCTTCGGGTCGTAAAGCTCTGTCAAGTGGGAAGAACCCATTCCGGCACAACAAGCCGGGGTGCTGACGGTACCAATGAAGGAAGCACCGGATAACTCCGTGCCAGCAGACGCGGTAATACGGAGGGTGCGAGCGTTATTCGGAATTACTGGGCGTAAAGGGCGCGTAGGCGGCCGATTAAGTCAGATGTGAAATCCCGGGGCTTACCCCCGGGAAGTGCATTTGATACTGAACGGCTTGAGTATGGGAGAGGGAAGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGACCTCCTGGACCAAATACTGACGCTGAGGCGCGAAGGCGTGGGGATCAAGCAGGATTAGATACCCTGGTAGTCCACGCAGTAAACGGTGATCACTAGGTGTAGCGGGTATTGACCCCTGCTGTTCCGGAGTTAACGCATTAAGTGATCCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGACGCAACGCGAAGAACCTTACCTGGATTTGACATCTCGGGAATCCCGCGGAAACGCGGGAGTGCCCTTCGGGGAGCCCGAAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATCTTCAGTTACCAGCGAGTAAAGTCGGGGACTCTGGAGATACTGCCCCGGTCAACGGGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCTTTATGTCCAGGGCTACACACGTGCTACAATGGGCTGTACAGAGGGAAGCGATCTCGCGAGGGTGAGCCAATCCCAAAAAGCAGTCCTCAGTTCGGATTGGAGTCTGCAACTCGACTCCATGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGCGCTACGTTCCCGGGCCTCGACACACCGCCCGTCACACCATGAGAGTTGGCTGTACCAGAAGTCGTCGG +>GU967443.1 Rosa rugosa putative MYB transcription factor (MYB4) mRNA, complete cds +ACTTTGTATAACCAGCCTCTTTCTTTCTTTCATTCACTCTCCCTTCCTCACAAACACATAACACACTACGGGAGCAGCCATGGCTGGTGTTGCAGACAGTGAGTACACAAGTCCTAATGAAGAAGAGAATGAGATGAGAAAAGGGCCATGGACGCTTGACGAAGACACCCTGCTCATACATTACATTGCCAACCACGGCGAAGGACATTGGAATGCCTTAGCAAAATGTGCAGGATTGAAGAGGACAGGAAAAAGCTGCAGATTAAGATGGTTGAATTATTTGAAACCTGACATCAAGCGTGGGAACCTCACTCCACAAGAACAACTCTTGATCCTTGAACTCCATGCCAAGTGGGGTAACAGGTGGTCGAAAATAGCACAACATTTGCCAGGAAGAACAGACAATGAGATTAAGAACTACTGGAGAACAAGGGTGCAAAAACAAGCGCGCCAACTTAATATTGAGTCTAATAGCAAGAGGTTTCTTGATGCGGTTCGATGTTTCTGGATGCCGACTTTGCGTCAGAAGATGGAGCAAACTTCTTCACTTAGTTTAGACCCACCTTCTTCTTCTTCTTCTCATTCTAATTACTTGACTTCTCAGATCTCTATAGCTCCTTCTCTGTCGACGTCTCCTCAAACTTGCTCGGTTCCTTCTTCTCCACCAAGCAAAGTGGTCTCACACGTATCTGATTATTCCCCAATTGGAACTTCAAGCCCAAGTCATAATAGTCTTTCCTCGGATTCTCTTATTTCACAGCTGCCTCAAATTACAGAACAACCAGCAAGTTCATCCTATGCCTTTGAAGCTCTAAATGACAATTATTATGTGGACTATGACATGGAGGGTTTTAGCCTTGACCCTGTTTCAGAAATGGCAACTTTTGACACTTCACAGTTTGATTGCCAGATGGCAGAAAGCGATTGGATACCAAGCAATTACATGACTGACACTTTATGGAACATGCAGGGGATGTGACAATTTGGGGAAAGATACAAGATCAGATGGGGCATCAACGACTAGAATTCATAATTCATATTAGGAGTCTAAGGGTGTGTTGTAATCTGAGTGACCCTTTCATCTATAGGAACCTTTAGTTATATA +>XR_007259806.1 PREDICTED: Pyrus x bretschneideri uncharacterized LOC103929507 (LOC103929507), transcript variant X5, ncRNA +CATTCTTTTCCCTCATTGGTACCCATCCTTTTCGATCTCTATCTCGCAGAAGCCTTTCTTCCTTGTGAAAGTGTTGCTCATCGTGGAAGGAGAGAAGGATGAAAAATGGGGCTCTTCCATTTGCTTCCAGAACAGATTTCTCAAGCTCTCTCACTTAAGCCGCGAACTCCTGGCCTCCGTAAGAAGAAAAGCTTGGCTCCCGTTCTGATTTGAGGAGATTTTAAACCCATAAAAGCTTGGGTTTCCAGCTTTGAAGAAGAAGATAACTTCTTTCACTGCAAGGACTTTAGACCTCTGATCTTCTGGCCTTCACGCAATCTAGATCTTCACCGTCAATCTCACTTGGGCTCTGCATTTTGTGAAGACAACTTCGTCGCTAAGATTAAAATAGAGATTGTAGTGAGCAAAGACCGGGAACCCAGAAGAGTCCCGAATTCAGTTTCCACTCTGACTGAAGATGGAACTTGGTGCTATTAAGCTATCATCCTCAGCTTCAGAATTCAGGCCTTGTCCATGTAAGGAGTTGCAAAACACCAACCAATGATATGAACATGGTAGGGTCTTGAAGCAATTCACCATTGTAAGGAGCAAGTTTAGAAGCACATGAAGGCGATGCACATGGTTTGGAATCTAGCATGTTGGCTTTTGTTAGGAGATCCTCGACATACTTGGTTTGAACCAAGAAGAGCGTGTCTGCCGATGAGCTTGAATACCAAGAAAAAAGTGCAATGGACCAAGATTCTTCATAGCAAACTGAGTACTGAGCTTGTTGATAAAAAATTCACAATGAGAAGAAGAGTTACCTATAATCAGAATATCATCAGCATAAACAAGTATAAAAGTGAGTGAGTGATCAACCTTGATAAAGAGTGAAGGATCTGCTATAGAGGAACGGAATCTGAGAGCTACAAGACTACGATAGAGCTCCTCATACCAAGCTTGCGGGGTTGTTTGAAACCATATATAGACTTGTGAAGCTTGCACACAAAATGAGGTCTGGGAGGATCTATGAAGTGTGCCATGAAGGAAGGCATTGGAGACATCCAATCGAGTAATCTGCCAATTGAATTGGATAGCTAGAGATAAAACGAGTCTAATAGTTGTTGATTTAGCGACTGGACTGAATGTTTCATGGTAGTCAATACCATGTTGTTGAAGAAACCCTTTAGCAACAAGTCGTGCTTTATATCGA +>XM_014803901.1 Moesziomyces antarcticus ANTH-domain-containing protein partial mRNA +ATGGCGCGCTTCGACGACCACATGCCCACGCGGCCCGTCGACCGCGACAAGGCCGAGTCCGAGCTCTCGATCCACATCAAGAAGGCCACCAGCACCGAAGAGACCGCTCCCAAGCAGAAGCACGTCCGCAAGTGCATCGTCTACACCTGGGACTACCGCACCTCCCAATCCATCTGGACCGGCCTCCGCGTCCAGCCCATCCTCAGCGATGAGGTGCAGACCTTCAAGGCGCTTATCCTCGTCCACAAGGTCCTCCAGGAGGGTCACCAAGTCGTGCTCAAGGAGGCCCAGGCTCAGATCGGATGGTTCGAGACTTGCGCCCGCACCGTCGGCGCCGACAGCATGCGCGGCTACGGAGCCCTCATCCGCGCCTACGTCAACTTCATCCTCGCCAAGCTCCGCTTCCACCGCCACCACAAGGAGTTCAACGGCCTCTTCGAATACGAAGAGTACATCTCCCTCAAGAACATCGACAACCCCGACGAAGGCTACGAGACCATCATGGACCTCATGAACCTCCAGGACCAGATCGACCAGTTCCAGAAGCTCGTCTTTGCCCACTTCCGCGGCTCCGCCAACAACGAGTGCCGCATCTCCGCTCTCGTCCCCCTCGTCAAGGAGAGCTACGGCATCTACAAATTCCTCACCTCCATGCTTCGCGCCATGCACCGTCGCACCGACGCCAGCGACGCTCTTCAACCCCTTCGCGAGCGCTACGACTCGCAGCACCATTCACTCCGCAAGTTCTACTACGAATGCGCCAACCTCAAATACCTCACCTCCCTCATCAACGTCCCCAAGCTCAACCACGAGCCCCCCAACCTCTTTGAACTCCCCGAAGAGGGTCCCTACCTCCCGCCTCGACAGACGCCCAAGGCGCCAACGCCGGACCCCGGTCCATCCCAGGCAGAGATCGACGAGCAGGCGCGCTTGCTCAAGCAGTACGAAGACAAGCAGGCCTCACTCAAGGCGCAGGAGGAAGCAGAGAGGCAACGACAAGCCGACCTCGCCGCAAAGCAGCAGCGCGACTTTGAGGAACAGCAGCGTCAGCAGGCCGAACAGCAGCGCCTCGCACAAGAGCAGCTCATGCGTGCACAGATGGACCAGATGCAGGGCGGTCGTCTCGCCGAGCTCGAGCGCGAGGTCTTAGCCATGCGCGGACAGTACGAGCGCGACCAGCTCATGCTCGAGCAGTACGACCGTCGTGTAAAGGCGCTCGAAACCGAGCTCGCCAACATCGGCCAGAACTTTGGCGCCCAGATGCAGGGCAAGGACGACCTCATCAAGCAGCTCCAGGATCAGGTCACTCTCTGGCGCAACAAGTACGAGGCGCTCGCCAAGCTCTACTCTCAGCTGCGTACCGAGCATCTCGAGATGCTCGGCAAGTACAAGCAGATGCAGATCAAGGCTGGAAGCGCGCAGGAGGCCGTCGACAAGATGGAGCGTATGGAGCGCGACGTCAAGGCCAAGAACCTCGAACTCGCCGACATGATCCGCGAGCGCGACCGCGCCCGCTTCGACCTCGACCGCATCAAGGCCAGTCAGAAGGAGGAGTTCGACCGACTCAAGCGCGACCTCATGTTTGCCAACGAGCGTGCAGAGGATGCGACGCGCGCCAAGAGCTCCGAGCTCTCGGGCATGATGTCCACGCTCAACCGCCAGATCGCCGAGCTCGAGGACTCGCTGCGCGAGAAGCGCATGGAGCTCGACGCTCGCGACGCCGAGCTGGCACGCATCCGCGACGAGAAGGATGCCGAGCTCGCCATCATGCAGGAGGGTATGGACGCCACCATCAAGCAGCTCACCGACATGCAGCTCAACCAGGGCGAGAGCGACCAGGCGGTCAATGCACAGATCGACACGCTCATCCTCGACAACTCCAAGAAGCTCAACGCCATCATCGACTCCATCCTCCAGGCGTGCGTCGACAAGGTGGACGATGCGCTCTACGAGCTCGAGTCGCCCTCGGCCTCGGGCAACACCACCGCCACGCCCGAGTACGTGCTCTCGATGATCGAAAAGGGCACCACCTCCACCAACGAGTTTGCCACCGTCTTTTCGCTCTACCTCTCCGGCGAGGTGGGCGGCGAGCACGTCGAGGTCATCAAACGCGCCAATCAGCTCGCCCAGACCATCAGCGACACGCTCACCAGCACCAAGGGCATCACAAGGTTGGCGCAGAACGACGATGCTGCCGACAAGCTCATCGGCACCGGTCGCGAGACGGGCAACGTGCTGCTGCGATTCTTCAGCAACCTGCAGTCGTACCGTCTGGCCGGCGTCGCACCTGCCCAGCGCCGCGATGTGGTGGCACGCCAGAACATGGAGGCGCGCGCCGCGTTTGGCAACCTCAACAGCGTGGTCGAGACCATGGTCAAAGCGGGCAACACCATGCTTGCCAACGCCAACGGCGACATTGGCGACATTGTGGAGCGCGAGATGATGAATGCTGCGAGCGCCATCGATGCTGCGACGGCCAAGCTGCAGGCGCTGCTGTCGAGGCCGAGGGACCACAACAAGTACTCGGCGGTGGATCTGCAGGTGCACGACGCCATCCTCGAGGCTTCGCTCGCCATCACACGCGCGATCGCCGGCCTCATCAAGGCGGCGACCGAGTCGCAGCAGGAGATCGTGGCCAAGGGACGAGGCTCGTCGACCAACCAGCAATTCTACAAGAAGAACAACCGCTGGACCGAGGGCCTCATCTCGGCGGCACGTGCGGTGGCGTTTGCGACGACCATGCTCATCGAGGCGGCCGACGGCGTCATCATGGGCACGCACTCGCTCGAGCAGCTCATTGTCGCATCCAACGAGGTGTCGGCTGCGACGGCGCAGGTGGTGGCCGCGTCGCGTGTCAAGGCCGAGTTCATGTCCAAGACGCAGGACCGGCTCGAGCGGGCGGCCAAGGCGGTCACGGACGCGTGCCGTGCGCTCGTCAAGCAGGTCAAGACCATCACCGACAGGCAGAGCAACGGTGCAGCCGACTTTGACTACTCGCAGATGGCCGTGCACGAGTTTAAGGTCAAGGAGATGGAGCAGCAGGTCGAGGTGCTCAAGCTCGAGAAGGAGCTCACCCAGGCACGCCGCGTGCTCGGTGCGATGCGCAGGGCGGGCTACCACGCGACCGAAGACGACTAG +>XR_001875487.1 PREDICTED: Lepidothrix coronata uncharacterized LOC108499283 (LOC108499283), transcript variant X2, ncRNA +TATGGGCTTTCTGAAAAGGTAACTGTTGTAGAACTGCTCCGCTTCTATCCGGGTAAATCCGGGGCAATGATGGTCCTCGATGACGGCTGGAGAGTGAAATAAGGGCGAACATTCTGTGTTGTTACTTGAACTAAGATGGAACAAGAAAAGTTGAGCCCTGTGAAATGCTGTTTGCAGTTTGTCTTGGAACCTACAGAAAAAGGTATGTAATTCAGCATCCTGGACATAAGCAGGAAGGTAAGTCATCCAATGAAAAACACTCCTTAAAATGTATCAAAACATCAGGTAAAGGAAAAACAGTGATGTGGCTTTTGTCACATGAGGTGTGTCTGTACAGCAGTGACCACAGCTCAGCAATGCTACCTTGTTTATGTTTGACCTAGGTAGCTGGCAAGAGATCTCTACAAGCAAATATTTTAGTAGAAGTAAAAAGTTAAGAGTGTTTTTCAGCTGTTTTTGACCTGGCTCTGTCTTAAACTGTGAGGCTTCCCCCGTGATCAGCACGGTGACTGTGCTGCCTGGGCTAATGAGCCTGTTTGTGGAGGGGTAAAGCAATGCCAAGCTGCAGTCAGAGACATACATGTCATATGCTGTGTCCTGGCCAGGTGTGGACCTCAAAGCTCTGAGCTGTGCAGGCACTGGACTTATACTGCAGTTTCAATTACAAAAATCTGTGAGTGGACACTTGGTAACTGGTGAACTACCTAATAAATAATAGAAGAGTTTAAGGATCACTTTGATAAAACTGTATGAAAACCAGCATTAATCTTAGATGGGTTTCTGAACTTCAGAAAATGCAGTCTGTATCTTGCCAGTTGCTAGTAGGTGCTGGAAGTTTTTTCCTGTCTGGCTCAACAACTGTATGAACTGTTTAGCCAAAATCACCGTAGAAGTCTCTGTTATAGATAGTGGCAAGATGATGAATCTGCAAGATTTCCAAAGACATTGCCTGAAATTTTGTTTTACTGTTGTTGCCTTGGACCTGACCCAGTTAACCACGAGCATTGGGAAATGCTCATCCCATACACTCAACTATTTAGACACGAGAAAGAGGTTTATATGAATTAGAAGTATGACAGAGTTTTGATTAAGTCAGATATTTGTGGAAGTCTCAGGTTTTTTTCATAGTGTGAGTTGGTGGCCTGTAAAAGTTCAGCCTTTAAGGATTTTCCTTTTAATTACCTTTTCAGAATGAAAGATGGAAGAATTTTCACTTTTCTGGCCTTTTCCTGATGACAGTGGCTTTGACTGGGGGCCCTGATCTCCCAAACACTGATTGTCTTATGTTTCTCAATTCTGAAAACCTTCAAGCATACAGTCAGGTATCCTGCCAGCAGCTCTGCAGCAGTCAATGCTTTTGCAATACCGGGCTCTGCTCATTTCAAAACTGTGAAGCAATCCAGCTTAGCAGTCAGCAGAGTGTAAAACTGAATAGTAGGAAGCATCGGAGAGCACCTACTCCAGTTTCAAGCAGAAGAAAGCCTTAAAACTTCAAGGATCAGAATGCTGGGGCATCTCCACTGACAGGTATCTTTCAGGAGCTGCCTTATCCTGTACCTGTCATAAAGCCAAAGTAGGAGCAACTGTTCATTCTAAGATGCATAAATCAGCTTTCCGAGATGATGCTCTAAGGAGAGCGCTGAAGAGCTCTGAAGAGCTTGAAGCTGGCAGGTACTGGGTGGCACACCTGAACTGCTCCTGGCTGCCCTGGAACATCCCACTGAAGATAACATTTATGGAAATGCAAGGAAAAGAATTGCTCCACCTTGCAGGTACAAAACAAGATGCCACGTTCCTCACAGCGGCCAGAGTTGGCATGGATGAACAGCTCTCCCAGAGGGACCTGCTTCCCTGTGGGAAGATGCTGCCCAGGACAGTAACATTTCTGCTACTAGAGCTGAGGGGAAAGGTCATATTTGGGACCTGATGTTAGGTCAGAATTGGAGCTGGAACTTTGCATACATTTTTTTTTCCCCCAAAATGGTCCTGTACTCTACTCTCTCAGCCTTGTCCTCAGCTAACGTGTTGCAGTATTGCTTAGGGGTGAGCTGTGCTGATGCCACTGCTGTACTCTTGCTGGTTTGGAGCATGGGGTCTGCCTGGCCAGGTCTGGGAGGAGCTGGGAAGATGGACTGGCTTGCAGTGCTGTTTGAAAGCAGCACAGACCCCTTTCCTAGCAGAATGTTTAATGGAATCTGCTTCCTTGAAACCAAAATGAGGCAACAGCTGTGATTGCAGCAAGCTGTAACATCTCATTACTGGATGGAGGCACGTCCTGTTACAAGTGGTGGTGCTGCAAAACCTCAGCAAAAGAACCTACTGAGACCTGCCTGGCTGGGGGCTGTGAACTCCCCTGAGGCCTCAAGAAGAAGCTTGGAATGTGGTGCCAGCACAACAGCAGACAGTGAGAGAAACTGAGGCAAGCACCTCGAAGATAAGTAATAAATGATAATTGTTATTTCCTATTATTCATCTGAATCTCTACTCCTGAGAATTTGAGTTAAATCCTAAATTTTCCTTTATTTTTAAGCAGATCATCCAGCAAGTTAAAAAACAGCAACACAAGGAGGTCCTAAGATAGGGTTTGCTCCAGTTTTCCTGCTGAGCATCTGTTTAGGAATTGCTGCTAAAAAAAGTCAGAGGGGATGGTAGTTGCTGTGCTGTCACATGGGCTGATACAGAGCAGAATCTGCTTAGCATTCTTGAAGGGAAATTATCCAGTGCTGTAACTCACAATTTATAATTGGTTGCATATTAATATCTAAAAAAGGCAATAAAATCCACTGTGTGTTTAAAAAAAATAGTAAGTAGGAGTATTACAAGCTGAGCAGTGAAAATCTGGAAGACTTCTTGGCTAGAGCAAGGCTGTGTGCAGTGCTGTTTCTCCCTTAATTACAAGCAATTTTAAATCATCTCCTTCCTTCAAAGAGGGATTTTGTTCAGGGTGTGTGTTAATTTTAATCTTGCTAACGTGATACTCTCTTGGAACCTCTCCCTTGTGTCATAACAGTGAGATGTGCTGCCTCTTTTGTCCCTGCCCTTTGGGAAATGCAGTTACTGCTGCTCATTGCCTCAACCCTGCCGTCGTGACTATCAGTGTACCTCCCTTGAAAGGAGAAGAAAACAAAACCCAACAGCAGCATTGCTTTTTCCCCCCCAGAGGTTCACTTTTATTTGTACTATTTAAGCTAGACTGTGCAAGTACTTCATGAAAATCAGGGATTTAAAATGTATGGTACTGTATTATGCTGTATTATTGTGGAAAGCTTGTTATTCAGCACACTAATTATTTCTGAGTCACTATATTTATGAAATGGCATGTAATAACTACTTCACCACCACGCAAAGTAAACAGTATAAAAGCAGGCATTTTATGATTTTGACATTTTAGTGTATAAACATATTCCTGAATCTCCTGGGGGGCTACTGGAAATCAGATAATGTTTTTATGACTTTTAAAAAATGACATTGAATTTCACAGTCTGTAACGCTCCATATATATGGTTAATGTTGCATATTTTATTACAGCCTCAGTGGCTTATGTTACAAGTGTCAGCTGCAAAGAGAAAATGTACAAAGGCGGGTTTGTGGAACTGTGGGGGAAACAACATCGTAAAACCTTGCAATGCACACATCAAAGCCCTTGGACAAGCTGTAATGGCAGGTCCTGGGCCATGCTGGGACACCAGAATACACCCTCTGCTTTTTTTCGTGTCAGGATGGATTACAAAGCCCTCGCTGAAGGAGGGTTTCTGCCCACACTTGTCACTAGAGGATAACTAAGTTTGGGGTTTTGTCAAGCCCTGTGTGAATGACCCGTTAACTCCAGAGGAACTGGGACGCCTTGAGTGACACTCTGCGAGCTGGACTGCACTGAGACTTCTGCATTTCAGGAATGTGACTCCTGTCCTTGACCTCGTCTGCAGATAAATACAACATGCCCCGTAGTGCTGAGTGGTTTGGGAAGAATGTCAGCCAGACAAGAGAGGGGAGATAATGGAAAGACAGGCTAGGATAGGAACTGGGCTGTCTGATTCTGCAATGTGGGAATCGCCTTTTCTCAGCTGCCAGTGTCAAAGTCAAGCTTGCATTGCACAAATAAAATGGGGTATTCCACACACACACCTGCACCCTTTCAATTCTCACTGATATTTAGCAGAGGGAATATTCAAAACATTATTCCCTCCAATACAGAATGGCTGTTGGGTGTTACCAGATCACGTAAAAAGACATCTGAGTGGAGTTTTTCCAGCAACAAACAAGAAACAAAGGGAGGATTAAAAAAATGTTTTGCTACGTATACTGTTATGATTTTTTTTGGTGAATATATATAAAAAATTAATGTTGGGATGTGAAGAAACAAAGAAAAAGAGCAGGCAAGTGTGCTACCATAAAATGTAGCATGACTTGGTACAGAACTGAATGTTACAGGGTCAAGCATCAGGTAGGGACATGTGTTGGGGACTAGGATGGTACTTACACTTATTACTGAGGTCAGTGCATATTTTCCACTACCTTATTTATGGGATCAAAGGTTTGATGGGATCTAGAAATCCAAACACATTTAAAACGTGGCAGATGTGGGTAACCTCAAGTACACAGCCCATCGCCTCAGAAAGAGGAATGTTCTTGCAAATTTGACATAATCCAATTAGTTGATTCCCTCAGTGACATTTCTGCAGGCTCATGTACAGAGGGACAAGGAAAGGGAGATTTATGACAGCTATTCCTAGCAAAGGTCATTTCTTTATTAGTGAACAACCTGTCCTTAGTCATGCTGATGATGAGGCGTTGAAGGATAAGGGAGAGGCTGTGTAGCTTTAAAACTTGACAGGGAATAACAGCAATAGAGCATAGATCATCTCTCTACTTGGACCAGGAGGACTGAAATCTCCCACCATCAGGCCAAAGCCAGAGAGCAGGAGGCAAAATCCAGGAAAAAAATAATACATGGGGATTTCTGTGGAGATTGTGAAGGAGTTTGGATGGTTCAGTGTCAGCACAGCAGGGGGGAAAGAGGAGCCACAGAGCATGAGTATGTTTTTGGATAGGATAAGTGTCCTTGGTGGAACCAGCTGCTTATAAAGAACCTGGTCTGGTTGCTCTGGGGAATCCCTGGTCAGCACTGCCAACTTCCCAGTTTGAGCAGCTCTCAGCATCCTGTTCCATGCCATTTCCAGAACAACACAGATGAGAGCATGCTCAAATATCTACAAATACACTTCCTTGGCTGTCCTTCCATAGGCAAGGAAAGCACCAGATTTGACAGGAATATGGTTTCAGTAGATTGTGACATACACATTATGTATTTTTAAACAATAAACCAGTATCTACCTATTCAAGTGACTATTTTTCCTGCTTGCAGAAGAGAAGGTATTTGACACTGTACATA +>XM_039434265.1 PREDICTED: Nilaparvata lugens aminopeptidase N (LOC111044204), transcript variant X4, mRNA +GTCTCTGCTATTTTTAACCGTATTCAGCTGAATTAGTCGCTAGCTTGGAATCAATTAAACATGGGTGCTCAAACTTTTGTCCCTCGTTCAAATTTCTTCAAATCCTGACTATAATTATTAGATTGTCACGTGTGACAACTTACAGTTTAAATTTTAATTTGATTTAATTTTGATAAGTTCAATTTCCAGAATTGTTGTTATTATTGGGATTCATTTTTAATCAAGTAAGCGTTCAGTCATAATAGTTCCTAAAATGGGGTATTTTATGACGTCATTGATAGTATCTCTCTTGCCCTACACAATGAATTTGGCTGATTCGAAAATGCTAACTGGATCTCCTATAGCATTTCAAAGATCGACTCATTTCAATAACCAAAGACTACCTCTTACCATCTTTCCAATACATTATAGATTAAATTTGTCAGTGCCATTGATAGATAACAATTTCACCGTAACTGGGGACGAATGGGTTTTTTTGAATTGTACAGTAACTACAAGGGAAGTTGTATTCAATGTGAAAAACATTGACATCGATAAGGCTAAGACCAGGCTTTATGATTCTTTTGGTGGATCGTTCGTTCGAATTATAGAACAAAGATATGAAAGTAGCCGAGAAATGTTTGTGATAAGAACGGCAACTCCATTGATTTCTAGACGTCAGTATGAGTTGGGACTTCAGTTCTCCTATGTTCTCAATGATGAGCTGATGGGATTCTATCGAAGCAGCTATATTGATCATGCTACTGGAGAGAAACACTGGATAGCAACCACCCAATTCTCTCCCACGGCAGCCAGGCGGGCTTTTCCTTGTTGGGACGAACCATCATTCAAAGCCTACTTTTCCATAAGTATTGCTCATCACAACAAATACCATACTTTATCCAATATGCCTATCAGCAATTCAATACCGGCCCCTGGAATGAACAATGATTGGATCCAAGATGTTTTCAAAACGACATTACCGATGTCAACATACCTTGTGGCTTTCATTGTTTCTGACTTTGTTCCTTACAAAACAGTCATCGATAACAGCTCAGGTTGGAAGTTCACACTATGGTCAAGAAAAGACATTCTATCACAGACTGAGTATGCCGCCGAAATGGGACCCAAATTGCTTAGTTTTCTGGAAGAATATTTCTCCATAAAATTCCCTCTTCCGAAACAAGATGTGGTTGCCATTCCCGATTTCGGTTTCAGCGCGATGGAGAATTGGGGACTTATCACATTCAGGGAAACATCCCTTCTATATAAGCCCGGTAAGACAAGTGAGAAGAGCAAACTGGACATAGCGTTTGTGTTCGGTCACGAGTTGGCTCACCAGTGGTTTGGCAACCTGGTCACCCCTGCCTGGTGGAACGATCTCTGGCTAAAAGAAGGATTCGCTACTTTCATTGGATACACGGCGATAAATCATATGGAGCCATCATGGAAAGTGCTGGATCAATTTCTTCTGCAACAAGTGCTGGGATCGATGAAAATCGACTCACTCAACGCAACACATGAAATTGAAGTTGAAGTGGAGGAGCCCAAAGACATTGTGCAGATCTTCGACAACATTTCATACATGAAAGGCGCCTCGATAATCAACATGATGAGCCAGTTTCTGGGTGAGCGGGTGTTCCGCGCGGGTCTCAAGCGCTACCTGACCGAGCACGCCTACTCGAATGCATGCCAGGACCAGCTATGGCGAGCGGTCACGGTCGAGGCTGCCTCGAGTCTGCCTCAGGGTGTCGACGTCAAGCAGATCATGGACACTTGGACCCTGCTGCCTGGCTTCCCTGTCGTCACGGTGCACAGGGATTATGAACAGGGAACGGCTAGTGTCACACAGGAGCGATATTTCGTGCTGAATGAATTCACCAGTGAAGATAAGTGGTGGGTACCTGTTTCATACACCACACAAAGTGAAATGGACTTCAACAACACCCAGCCAAAAATTTGGTTAGAACCATCCAAACCGACTAAGAAAATTACAAATATTGATCCTGATGACTGGCTGCTGATAAATTTAAAACACACTGGCTACTATAAGGTGAACTACGATGAAGAAAACTGGCGTAGATTGCAGGAATCGTATCTGAAAATGCCAGAAACGATTAGAGCTCAGCTGTTGTCAGATGTGTTTAGTTTGGCAGCCACCGGAAGGACCAACTACTCGACTGCCCTGGGCTTCAGTCTGCATTTGCCCCGAGATAATTCCTATTTTCCCTGGTCGATTGCTTCCGAAAAATTGTCGTTTATCGGAAAACTCATGCGGGATACGGATGCTTCTGACGATTTGAAGAAATACATGTTGCATTTGGTGGTGAATACCAACAAAGAGCTCACTTTCTTCCCAAAAACTCCAATTACTGGTTATTTGAACCTATTGCTTCAATTGAATTTAGTTGGAGTGGCGGCGGACAGTGATCACCAAAAATTGGTTCATGAAGCGAAACAATTTTTAAATGATGAGATTCTCGGTAAAAACGTCAGTATAATGGCGGATTTCAAAACCAAGGCATATTGTACGGCAATCAAACATGGTGGCTATGAAGAGTGGAATTTTCTATGGAAAAAATATCATGAGACAAATATTGCCTCAGATAGAGTGGTCATTCTCATGGCATTGGGATGTAGTAAAAATAGCACCATCCTTTCAAGGTATTTGAACAGAATCCTAGATCCAGACAGTGAGATAAGAAAACAAGACGGGGCGTTTTTATTTGAAGTTGTAGCCAATAAGAATCCAGTCCTGGCTTTCGATTTTCTCAAAAAGCGGTGGGAGAATCTCCAGTCATATTTTGGACTGGGATTCAGACAAATGGCAAAAATAATTGAGTCTCTTGGCACGCACTTGAATATGGAGCAGCAACTGATAGAGCTGGAAAAACTGCGATCAGACCACATGCAAAGCCTTGGGTCCACAAGCAACAGTTTCAAACAAACCATCGAAAGAGTGAAGTTCAACATACAATGGATGAACAACCATTACGAGTCTGTTACAACTTGGCTGAAAGAAATGCTACCAAAATTGAAAAAGACGTGATAAAGTGTTCCTTCCTCTCAGCTATGATCAATACTGGAGTATTATTAGTTTAAGGGAATAAATGTGTCGAAAACTTGAAGATTCAAATCGTTGAAGGCTTATCTAGCTTTTAACATTATCAAGACTATCTCCTATCAGACATTTTTCATGTCAAATAATAATATTTCAAATTTAGAACTTTTAAGCTAGTACACTCTTGAGGAGAATGTTAACAAGTTTTTTATTTTTTCAACAATAATCTACGTTTTCACTTATTGACGTTTCACTTATACACGAATTAATGAAAAGTTTGCATTGGAACAGCATGAGAAACTCCAATTTCTCCAGCAGTTTCAGTACAAAAATTTTATTGAACCGAGTGCTTTGAATATTTTCTGTAAAATTTAAAAGTTTAACTTGTATGTAAGAAATCTACAAAGCTCTAGTGAAGAAGTGCCATTGTTTGAAAGGTGCTATTATTATAGTCAATATTATTGCAAAGTCAGTTCTGACTTAATTGTGCTAAAGTAAGATTAAAAGTTGTGTGTTCTCATAAGTTATTGAGGAAATCTTTTTTTTCTGAATAGAGTATGCAAAAATATAGTCATTATTCGA +>XM_028248081.1 PREDICTED: Camellia sinensis pentatricopeptide repeat-containing protein At2g13600-like (LOC114302958), mRNA +ATGGGGTGTGCTAGCAGGTCCGATGTGAAAGAAATAGCCGATTACATGACACTTCTTGAGGGATGGATTTATGAGCACTTTCGTGGATTCCAACCACACTTGAATATGAATTACACTCGAGACATGCCACATGTTTACCGTTGGACTTCTCGGAGAGAGTCTGGTGAAGAGAGACAGTTGCAGGCTTTTCGAGAGGAGCTTGATAGGTTAGGGTATTTGGAACCCATACTAGAGTTGCAGAGATGTCCATCCGTGTCACCCAGCTATGTTCTATCACGGTTGCCTAAAGTGTTTGGAAGAAATCTTGTCCCAGATGATGCAGTTGATTATATTGCTTCTGAGAATAACATTGCAGAATTTTTTAAAGTGGATAGCACTATGTTTGTGCCTCTTTTGACTGTATGCACAGAGCTCTTTTTGCTCAAAGTCGGAAGACAAGTCCATGGCTTTCTTATTGCTTTCTCTAGCTGTCATTGTAATAATTATTCATTGGATGATGGCGATGCAATTATTGGAAGCGCTTTGATCAATATGTACAGCAAGTGCGGTAGCATTGGTGAAGCTCGAAAAGTTTTTGATGCTTGGCTGCCTGCCCAACTTGTGGCTCTTTGGAATTCGATGATATCAGGTTATATGTATAATGGTTTAGTTGAAGATGCTAGGACACTGTGGGAAGAAATGTCAGAGAAAAATGTCATTTCATGGACGAGCATGTTATCTGGGTATGTACAGAACGATATGCCACGAGAAAGTTTAGATTTACTAGCTAAAATGTATTCTAACGGGGATGGATCTAGAGTAGAAGGGAACTGCTTCACTTTTGTAGCGGGTCTTGAAGCATGTAGCTATTTAACAAACTTAGAAATGGGAAAACAAATCCATGCAAAGCTCATGAGGACATTAACTAGAGCTGATACCAATAATGTGGTTGTTGGAACGGCTTTGGTGGATATGTATTCTAAAGCCGGCTATTTGTCCTATGCACAAACTGTTTTTGATTTGATGGTGGAGAGAAATGTAGTTGCATGGACATCTATCATTATGGGGTATGCAGTTCATGGGTTTGGTTTTCGAGCCCTTGATTATTTCCAGCAGATGATGGAAATGGGCGTGGAACCAAATGAGGTGACATTTGTGTCTGTCTTAACTGTTTGCAGCCATTGTGGTTTGGTGGTTGAGGGGTTACAATACTTTAAACTGATGAAGGAGAAGTATAGATTAATTCCAAGGGAAGATCATTACACATGTTTGGTTGATATGTTGGGACGCGCTGGAAGGCTTGAGGAAGCATGGAATTTGCTGGAAGAAATTGATGTTGGAGAAATGAGTTCTAGAGGTACCATTTGGGCCGCAATGCTTGGGGCATGTCAATTGCATGGGAATGTGGAAATGGGAAGGAGGGCAGCTAAGAAGATGTTAGAGACAAAGAAACAAATTTTGACGACTCATATTGCACTTTCTAATGTTTATGCCGGGGCAGGGATGTGGAATGAAGCGTATAGAGTGAGAGAAAATTGGAGCAAAGAAGGTGATGTTAATGGGGAGCCAGGTCTTAGCCACATCTGCACAAACCTTGTGGTTTCTTGA +>JX292766.1 Haloferax sp. SSIN2 16S ribosomal RNA gene, partial sequence +CGCAAGTGCGATAAGGGGACCCCAAGTGCGAGGGCATATAGTCCTCGCTTTTCACGACTGTAAGGCGGTCGTGGAATAAGAGCTGGGCAAGACCGGTGCCAGCCGCCGCGGTAATACCGGCAGCTCAAGTGATGACCGATATTATTGGGCCTAAAGCGTCCGTAGCCGGCCACGAAGGTTCATCGGGAAATCCGCCAGCTCAACTGGCGGGCGTCCGGTGAAAACCACGTGGCTTGGGACCGGAAGGCTCGAGGGGTACGTCCGGGGTAGGAGTGAAATCCCGTAATCCTGGACGGACCACCGATGGCGAAAGCACCTCGAGAAGACGGATCCGACGGTGAGGGACGAAAGCTAGGGTCTCGAACCGGATTAGATACCCGGGTAGTCCTAGCTGTAAACAATGCTCGCTAGGTGTGACACAGGCTACGAGCCTGTGTTGTGCCGTAGGGAAGCCGAGAAGCGAGCCGCCTGGGAAGTACGCCCGC +>XR_004551154.1 PREDICTED: Pseudochaenichthys georgianus uncharacterized LOC117439437 (LOC117439437), transcript variant X1, ncRNA +GTTTGGTGATGTTGTGTGTGAATTCCAAAAACAATGTGACAACAATAATGGAGTTTCCATGCACTAATGGATACTGATTCAACAAGCTCCGTCCATATAAACTGATGGTGAACAGAAAGTCTGCAGTCAGCTCCTTCACCACAAGAGGAGAGAGACAACAATGATTTCCATGCAGCCGGCGGAAGAGAGAGAGGGAGAGAAGAAAGCCACCAGCGGGTTCCCGGTCCAGAAGATCCAAAAGGTCCAGAAGATCCAGAAGAGCCAGAAAGCCACCAGCGGGTTCCCGGTCCAGAAGATCCAGAAGATCCAGAAGAGCCAGTGTGCTGGACCGACTTGTTTGACTGTGACAATCCCAGTGGCTCAGGGGACTGGGAGCTTTTGAAGGACCTGAGGAAAGAAAACCCAGGAAAGATCTGTGAAAACCCTCTGTACATAAAGGTTGTTATCACTGACACGATGACCCCAGCCATCTCCACAGGGCAGACCTTCTATATCTTCAATCCGACTCAGGGATTTGTTTTCCGCAACAAGGACCAGAGTGAGGGCATGTGCCGTGACTACAAAGTTCGCTTTGGGTGCCCGTGCAAGAATTAAGCTGCAACTCCACAGCAAACATCCAACAAGAATATGAAGCTTTGATTGCTTTAAAATGTTGTCCTTTTCACTTTACCTTTCTATTTTATATCTTACTTTGCCTGATGGAAGAAGTTCAATGGACCTTTTTTACGGCAGACATGTTGACTTGTAGCAGGAACAGGACCATGAAGCCTCATCAGTTGATTAAAACTGAGCTTTATATCGGAGTATGTTTTACGCCTGTACGTTTACCAACATGTCTTCCGAGTTAAGATGCATCATGTCATGTGCTTTCTCAAAAAAACCTTTTTCTAGTGATCATGAAATCATTGTCTAATGTAGGAAATA +>NR_045871.1 Mus musculus RIKEN cDNA 4930428O21 gene (4930428O21Rik), long non-coding RNA +ACAGCAAGAGCTTCACTGCTGCAAACCAAGTATGGCTCCCACTGTCACCCAGCACTTGGGAGGCTGAGGAGAGCCCACGGATTTGGCAAGTCTGGATAGCCAGCTTGTCCCTGGGATCCTCTGCTCCTCCCGCCTGAGATCTAGCACGGCAAGTGGACTGCCACATCTGCCTGTGGACCTCCACCACATCTGCCTGTGGACCACCACCACATCTGCCTGTGGACCACCACATCTGCCTGTGGACTACTACATCTTCCTATGGACCTCCACCACATCTGCCTGTGGACCACCACATCTGCCTGTGGACCACCACCACATCTGCCTGTGGACCACTACATCTGCCTATGGACCTCCACCACATCTGCCTGTGGACCACTACATCTGTCTGGATTTTATTGCATGGTGATGCTCTCGGCTTGGGAGTGAATCACAGCAAGAAAGCCCTGCATCGTAGGTAGCTCTCCTCGGTACATTCCTGACTCTCTTTGGCCAAAGGATGGAAATCTCTGAAGATAATGACTCTTCTGTGACTTCTCTCTTCCTACTTACTTCTGTTGGGTTGAGTTCCCTTGTGGCCTGCTGATTGGCCCTGGCAATGTACCTGTTAGTGGTGGAGGGCAGTTTGGAGAGTTACTTCCACTAAGTTGATAAATGCCCTCCCCCACAACGGTTTTCTAGACTCCAGTCACAATCAACACCTTCTTTCCAAATTCCCCAACCACATTGTTCAGGAAGCAGAAGCATCTAGAAGCCACAGGGAACTGTTGGACTCAACCTGTAGAAAACTGGATGGAGGTTAGCTAGCCCTCCCTCCCGGGAGCTCCGACCTACTCCAGGGTGAAGAAAGCGAACTTGTATTGTGTAAATTGTACCCAGCACTGTCTCAGGAAGTACCGTAGCTTCCTGATTGTGAATGCAGATAATAAAGTGTAAGGCCGTAGCGGCTAAGGACGAAAGCCACCAACCCACCAAAATGTAGAAAATGACATTTCTAAGCCTCAGGTGCAGGAGAGTCACTATAATGGTTAGGAGGCCTCAGGCAAGGAATTGGTTTCCTGTCTTAAGCAAAGATCACTGGGAGCTTTGAGAATGGCAGGGAAGGGTTGGGAGACCTCTCCGCTGGTCTCACACAACCGTTGGGTTTCCAGGGAGTCAGGACTGCTACTTGCCACTTCCGCTCCCCTATTTTCTAAGAGAAATTATGAAACAGAACTTGATAAAGAAAAAGTAAATTTATTTACAGCTGGAAAAAACTGGGGAGAAAGAACCTAGTTTCTTTCCTCAGTGTCTATGGTTAGGATTTTTCAAAACCCCTAAGACACAGGCCAGAATATTGCAGATTTACCTCTGACAGTTAGGCTGGTCTTGATCTAGGGGCAGAGTGACTCAGCCCTGGGTTGCCCGTACTCCCGGCAGGCTGCCTGGTGCTGCTTCTGCCTCCTTCATACACACAAGCATACATGCACATGTATGTATTATATACACAAACACATATGAACATATATGTATTATACATATAAGCATACATGCACATGTATGTATTATACACACCAACATATATTAACATATATGTATTATACACACACGCACACATATGTATTATACACACAAACATACATGCGCATATTTGTATTACACATACATGGTTATTAGACATTTGAAATATGAAGAGTGTGAGGAGCTGGTTTTAAAATTTTAAAATGAAAATTTATCATTTTAAAATAAAAAAATTATTTTGAG +>XR_004558147.1 PREDICTED: Thalassophryne amazonica uncharacterized LOC117501971 (LOC117501971), ncRNA +CCCTGAGCCTGGTTCTGCTGGAGGTTTCTTCCTCATAGACAGTTTTTCCTTACCACTGTCGCCTGTGTGCTTGTGCCAGGTGTTGGTAAGGTTAGACCTTTTTTGTGTAAATCGCCTTGAGGAAATTTTGTTGTGATTTGGTGCTATAAAAATGAAA +>XM_018405618.1 Kwoniella dejecticola CBS 10117 hypothetical protein partial mRNA +ATGGCACCTGTAAAACCGGTGAATGGCAGTGACAAGCAAGTGAAGAAGAAGCGGACTTTCTTCGCGTCGAAATTAGCCATACCAATCCCTCCAGCAAGTGCGACGGAAAAGGGCAAACAAAAGGCAGTAGTGGTGTCTACAAAGACGGTACTTAGTGCTTTGGATGGATTGGAATCTGTGTCTAGATCAACACCTATCAGTAACGGTAACAGGAGGGATCAAGAGAAACGCCCCACTGCAACTCACACTCCATCTCGCGCGCAGACCGTAACATCGAAGCTAGTACAAGATCCCAAGATCTACACGAGGAGAAACAAACCGAAGGTTCAAGCCACAATCACCCGGAGCTCAGAGGTCGGTGGGAATGTCAAGAATGGCGTAGATGGTAAAATCAAAGTGAAGAGTGAGCCTTCAAGCTCGGTATCAGCTTCGTCTAGTAGGCTCGTGAACCGGAAGAAGGATGTCATCAATGACACGGGAAGGGTTGCGAGTGCTATTGAGCCGCAATCGAGTTCATCGTCCTCGTTTGTTGTGGGGAAGCATAAACACCTCAACGTGAAAACGAAAACCAAGTCGAACTCAAAAGTGGGTCCCAGTGCTAAAGCCAAGATCATTACCATCAAATCATCTTCGTCTCGCAGAATACCACATACCACCCTCAAATCCTCTTCCAAAACCAAGAGCGCAAAGACGACCACGCGTTCATCTGGCTCTGCGAAGACTTCAAATAAAGCTACACAGGTGCGGGCGATCCTGTCGAGGCGAATCATCAGAACTTATGAAGCCAAGTCTCAAACCAAAAGCGAACCCAGTCAAATAAAAGGAGGAATCTCTAGTGGGAGTCCAGAAAAGCAGGAGAAAGGGAAAGAGAAAGAGAAAGAGGGCAAACCGTTGAAAAAGGATTACATGTCAGCTGGATTCTATTGCCAAGATCCCCATCCTTCGTCTTCAAAGCAATTACACAACAAGATCTTAGCTATCCGTTCGGCGGAGAACAAAGCCTCAAAGTTGTTAGATGCAAAGGCAAAGGCAAAAGCAAAGGCTACTCCGACCATAGTGCGCCAAACGAGAAATAACGTCAAATCACATTCGAGCGAAAGTCAGAGTGCGAGTGCGAGTACGAGTACGTATACGAGTACAGCTCAATCCAGTAAGAAGTCAGTCGATCAGGAGAGACCGAGTTTCCCGCCGTTACCGTACGATCATGGCTACGACCTGTTCTTCAAGCAGGAGCACGAGTTCGTGTTGCCGTACCATATCATGAAGGAGAAAGAGGATGGAAAGCTGGTGGCGAAGAAGAAACCTACTCAATTTACGAAGATACGAGGGAACATATACCCCGAACGACCAAAAGTCATGACTGATTTCCATGCGATATGCAAATGCTCGCCGGAATCGAAATGCGCCGATCAATGTATAAATAAGTTGATGAGTTATTTATGTGGGAAAGAATGTCCTGCAGGAGATGAGTGCACGAATAAGACTTTGACTAAGAGGAAGGCGGCGGCCTATAAAGTGGCTGATACCGGGACAAGGGGTTTCGGGATCATACTGCTGGAAGACGTCAAAGAAGGGGATTTCGTAATGGATTACAGAGGAGAGGTGATATCGATAGACCTTTTCATGGACCGCATACAGGATGAGTATAAGGGCACGAAGAATTTCTATGCGCTAGCGTATGATCAAGATGAAGTGATTGATGCGGGGATGAAAGGGAATGATGCTAGATTCATCAATCACGGCTGCGCGCCCAATTTGGAAGTACGGAAATATCAGACCGCCGGGGATGGGTGGGACGAATTTGAGGTGGGCATGTGGGCTATTAAGGATATCAAAGCGGGAGAAGAGCTGTTTTACGACTACAACTTCGAGTCATTCGGAGTTGCCGCTCAGTCCGACGAACTACGCACGAAATGTCATTGTGGAGCGCCCAATTGCGTCGGGTTCTTAGGTAGAAAGGCAGGAGAGAAGTCGGCGAAAGAACTTGCAGCGGAATTAGCTAGGAATGCCAAGATCCTGCAAGGAAAGAAGGCGTCCATCAAGAAGCTTAAAAGTAAATTAGCGGAAAAAGCTCAAGCTGAATCTCGAAACGCGGCGAAGCTGGGTACGACGGTATTGGGTTTGGAAGATACCCCATCTATCATTTCTAATGCCGATACAATCACTACCACTTCTATCAAGACGCCTTCTCAAATATCGCCTTCTCGACCGCAGATTAATGCAAGGATGCCTTCGTCTTCCCCACTTTCCGAGCTGGATCCCGTCGAAGCCGAAAGCCAAACCAAAGGTTTGCCTAAGGACAAAAAGAGGAAGAACGAGATTTTAGCCACAACGGAAGCGGAGACTAAGAAGAAAAGAAGGAAATCTGAACCTTTACCAATACCCAAGAAAGCGACTAGCAAACCGCGCAAATCTGAGCCTTCCGCAACAAGTGCATCGACATTGAATTCGGCAGTGCGAATCAAGAGTGTGGGTAAAAAGGCAAGGAAGTCAGAACCGATCCCTACGTCTACCGTGAAGAGAGATGAGGATGAGAGCGAGGATGAGGCAGAGAAGAAACCATTCAATAATCCTCGAATCTGTATGGATGCCGTCCGAGAGGCTGCTCGAATCAAGAAGGCCGAAGTCGTGAAAGCTAGGAGGGGGGCGCCTAAGGGATGGACAATCGTTTTACCGGGACATGAACCGCCACCTAGGGCCGCACCGCTCGTCGTGTCGACTAGGAAACCGCCCAGAGATAGGTCGAGCTTGGGGTGA +>GU637646.1 Uncultured bacterium clone RW2302 16S ribosomal RNA gene, partial sequence +ATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGTAACAGGCCGCAAGGTGCTGACGAGTGGCGAACGGGTGAGTAATACATCGGAACGTGCCCGATCGTGGGGGATAACGGAGCGAAAGCTGCGCTAATACCGCATACGATCTGAGGATGAAAGCGGGGGACCGTAAGGCCTCGCGCGATCGGAGCGGCCGATGTCAGATTAGGTAGTTGGTGGGGTAAAGGCTCACCAAGCCGACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGAATTTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGCAGGAAGAAGG +>XM_023804680.1 PREDICTED: Paramormyrops kingsleyae potassium voltage-gated channel subfamily H member 2-like (LOC111840147), transcript variant X3, mRNA +AAGGCCAGAGTCGCAAGTTCATCATCGCCAATGCGCGTGTGGAAAACTGCGCCATCATCTTCTGCAGCGATGGTTTCTGTGCCCTGTGCGGCTACACGCGCTCGGAGGTCATGCAGAAGCCGTGCACCTGCGACTTCCTGTACGGCCCACACACCAAGCGGCTGGCCGTCGCACAGATGGCCCAGGCGCTGCTTGGCTCAGAGGAGCGGAAGGTGGAGATCGCCCTCTACAGGAAAGACGGCGTGTGCTTCCTCTGCACGGTGGATGTGGTCCCGGTGAAGAACGAGGATGGCATGGTGATCATGTTCATCCTGAATTTCGAGGTCATGAGCGAGGAGAAGCGCAGCGAGTCCAGCCGAGAGCTCAACCACAAGCTGTCCATCCCTTGGCTCTCCGCAGGCCGCTCTCGTGGCTTCAGGGTACGCCTCCCGCTCCTGCGCTCCCTGGCCAACAGCAGGCAGTCCCTCCAGGACGACCCCGAGGCAGCTTGTGTGCCAAGGGCCTCCCACCCCAGCCGGGACTCCCTGATGCTGGACGAGCTCATCTCCCTGCCCGAGCCGGCGGGCCGGAGGGCACTGCTGGAGAGCCAGCCCCCAACACCACCACCGCCACCGGCTGCCGACTTCCCCGTGCATCCACACCACCTCGACCCAGACGCTTCCGTGTCCAACTGCAGCCTGACTCAAAGCCGCTCGCGGGAGAGCTTCCACAGCATGCGGCGCGCCTCCTCCGTTGACGACATCGAGGCCATGAGGCCCGAGTGGGAGCGCAAGGTCCGCTCTGGTAGCACAGGCGCAGTGAACAACAAATCAAACATCCTCAACTCTACCTCGGACTCGGACCTCATGCGCTACCGGACCATCAGCAAGATTCCACAGATCACCCTCAACTTTGTGGAGTGCAAGCCGGACCCCCTTATTGCCCTACCTCCTGGGGACAAGGACATCATCGCTCCCTGCAAGCTAATCGACCGCACGCACCACGTCACAGAGAAGGTTACCCAGGTGCTATCACTGGGTGCCGATGTCCTCCCTGAGTACAAACTCCAGGCTCCCCGCATCCACAAGTGGACCGTCCTGCACTATAGCCCCTTCAAGGCGGTGTGGGACTGGTTAATCCTGCTGCTGGTGATTTACACGGCCATCCTGACTCCCTACTCTGCCGCTTTCCTGCTGAGCGACCAGGATAACGTGGCCATGGAGAGCTGCATCTACACCTGCACTCCGCTTAGCATGGTGGACCTCATCGTAGACATCATGTTCATCATCGACATCCTCATCAACTTCCGCACCACCTACGTCAACATTAATGACGAGGTGGTGAGCCACCCCGTCCGCATCGCAGTGCACTACTTCAAGGGCTGGTTCCTCATCGACATGGTGGCGGCCATTCCCTTTGACCTTCTCATATACCGCAATGGGGAGGAGACGACCACTCTGATTGGCCTGCTGAAGACTGCCCGCCTACTGCGGCTGGTGCGGGTGGCTCGCAAACTGGACCGGTACTCGGAGTATGGTGCGGCGGTGCTCTTCCTGCTCATGTGCACCTTTGCCCTTATCGCCCATTGGCTGGCCTGCATCTGGTACGCCATCGGCAGCGTGGAGCGCAACGGCTCCATTGGCTGGCTGCACTCTCTGGCCGACCAGCTGGGGAAGCCCTACAATGAGACCATCCAGGGCTCGGGCCCGTCCATCAAGGATAAGTACGTCACAGCACTCTACTTCACCTTCAGCAGTCTCACCAGCGTGGGCTTCGGCAACGTGTCGCCCAACACCAACTCGGAGAAGATCTTCTCCATCTGCGTCATGCTCATCGGCTCCCTGATGTACGCCAGCATCTTCGGCAACGTGTCGGCCATCATCCAGCGGCTGTACTCGGGCACGGCGCGCTACCACACGCAGATGCTGCGGGTTCGGGAGTTCATCCGCTTCCACCAGATCCCCAACCCCCTGCGCCAGCGCCTGGAGGAGTACTTTCAGCACGCCTGGTCCTACACCAACGGCATCGACATGAACGCGGTGCTGAAGGGCTTCCCCGAGTGCCTGCAGGCCGACATCTGCCTGCACCTGAACCGCACACTGCTGCAGAACTGCAAGGCCTTCAAGGGCTCCTCCAAGGGCTGCCTGCGCGCCCTGGCCATGCGCTTCAAGACCACGCACGCCCCGCCCGGCGACACATTGGTGCATGCCGGCGACGTGCTCACCGCCCTCTACTTCATCTCCCGCGGCTCCATCGAGATCCTGCGCGAGGACGTGGTGGTGGCCATCTTGGGTAAAAATGATATCTTTGGTGAACCCATCAACCTCTACGCACGTCCTGGGAAGTCAAAGGCAGATGTGAGGGCACTGACCTACTGCGACCTGCACAAGATCCACCGTGAGGACGTTCTGGAGGTGCTGGACATGTACCCTGAGTTCTCTGATCACTTCTGGAGTAATCTGGAGATCACCTTTGACCTGCGCGACACTAACATGATTCCCGGCTCTCCGAGCAGCGACGAGTCGGACTGCATCGGCTTCAACCGGCTGCGCAGACGGAAGCTGTCCTTCCGGCGCAGGACCGAAAAAGATGACGAGAAAGCAGGTGAGATAAAGAAGTCTCAGAGGCCAGTCCGCCGGGCAAGAAAGCAGACTGTCAGCAACCAGACAGAGGGCTGTAAGGTAGAGTGGGAGGGGCCACGCAGTTCCGTGTCTTCTCACTCCAGTGGGGAAGAGGGGGAGGAGTTACTTCTCACCTGCCCCGCCCCTCCCTCCGCCCTCCTGGAGTTGCCAAGGGAACTGGGGACACACGTCAACGTGAGCAACGCTCCGGAGGTGGACGGGGATCCTAAGACTGGCAGCACCTGCAATGCGCTCTCTGGTGCGTTTTCCGGAGTGTCAAACATCTTCAGCTTCTGGGGTGACAGTCGCGGCCGGCAGTACCAGGAACTGCCCCGGTCCGGTCCGGCCTCCTCTCCCACATCGGCCACGCCGACCCACGGCATGGCCCGCTGGCAGCGGAGCCAGGTGGAGAACCGTCTAGAGCTGCTGCAGAAACAGCTGCACAGGCTAGAGATACGCATGTCCACCGACATCAGCACCATCATGCAGCTGCTGCAAAGGCAAATGGTCCTGGTGCCCCCTGCCTACAGTACGGTGACGTCCCCCCCTCAGCCCTCGCCCTGCTCCGGCCCCGGGGAGAGGCTGGTCCAGCCGGTCCCCCCACTGGAGCCCGACACCCTGCAGTCGCTCTCACAGATCCTGGTCTCCCAGAGCTCTGAGGGACCCTCTGCCAGGTTATGCGAGTCCCAGAATAGTACGGTGGAGCCTCAACCCCCGGGTTCCCTAGGAACCAGGAACCAGGAGGCAGGGCTCTCTGGCCTGGCCGGTCCCCAGTACTGGCTGGACGGGGTGACGGGGACCTCCGCGATGGACCCCGAGGCACAGCGGAGGCTGTCGCTGCCGGGGCAGCAGGTGGTTCTGGATTCACGGACGCCGCAGAGGCACATCTCTGACCCGGGGAGCTAGGTCCTCCTTGGAGCATCTCATCCAGGTCTTCCCTGTAGTCCCTCCACGCCGAGGAGGAGACCACCAGTGCTCACCACTTCCTACTCGTATTTCCATCAGCTGTGGGAGTTTCCTAGGGTGCTTCCCACCTACCTTGCACAACACTACCCCACTTACCCCTCTTCTTGGCTGACTTGAGGAACCACTGGAGATTAGAGTTTAGACCCATCCATCTCCAGCTCATTGTCCTTCACAGCAGGTCAAGACACTGCAAAGCGTGTAGTGAAGCGAAAGGCTACACTGGATGGACTTTCCCTTTACTGCTGAGACTGGCGTTGGAACAGTGAGACAAACGTGCACAGCGTAGGCACTCAGCCCACCTCTCGTCCACGTTGCTTCCTGACATTGTTAGTGAACTTCTGCGTTAGCTGGCCTAACAGATGTGTGGCTGCTGCCCCCTGGAGTCCATTTCCCAAAGCGCATCCACCAGATGGAATGTGGTTTCTAACTGTTGCTGTAGGGGAGTGGGGTGTTCAAAGCCATTAATTACTGGTGAACATATCACATTCTTAAAATAAACCTTGTACAGATTTTGAATGACAGAATCCTCGAACCATATGCAAACTCAGCAAGAGAAATGTTAAATTATTACAGGAGTGTGTCGATTTTCAGTCCAAAGGTTTGCTGAAGTTTGCTAAGGCCTGTGGATCGCAATTCGTCCGCGTGGTGATCTGCTGGATCCTACTACAGCAATATAATATATAGAGAAAGAGTTCTTGCTCATGAAGACTGTAGTTTTCTGTTAATCACCTTCCATGTCTTCTTGATCCATTCTCTTGGGCGGGTGGTCCTTCTCCCTACCTCCTTCTGGAGATAGTCTTCAGAGTGGCATAGAAGAACTCCTCTGGTGTTCATCTTGGTGAGTGGATGGCAGGTTGTACTTTGAAAGATGGTTGATTGTAATGTACTGCGTTGCACAATGAAATGAAGGTATGTATTGTATGTTTTTTATTTCTTGGGTGTTGTATCTTCTTCAGTAATCAACACGTATTCTTCTGTCGCAAAGAAAAATATCAGAATTTCTCTTCTGATGGAAGAATATGCACTGGATTTTTGACAGTCTTGTGGATCCTTTCCCAAATCCATTTCTGTGTAGTGAAAACATGGCAAAGCAGCTTTTAATTGGACTTAATCCTCACCAGAGATTCCATTTGGTCGAGTTACACACCTCAGTTTGTAATGAACTGTAACAAGGTAAAATTTGAGCTGTCAATCTACTGTATGACCACATATTTGCCAAACCCCAAAATCTATTGGAATTATGAATATTTTTTCCTGTGTATTAGTATGTATTTTTACAAAGTTCCTTACCCAGACTGAACATGAGTCTGAAAATTCACAGCTTGTCCATTATAAAAATAAGCATTGATTTGCATTACTAGTCCTGGGCATTGATATTAACATTCAGTCCAAAGCTGGGCTGTCGAATTCCAGTCCTGACAGGCAGCAGGTTTTTGTTACAGAAGAGATTTTATTAATTAACAATTCATCGATCCTCCCCATCTATGCCAGGCAGCATAGGGCAGATGCCAGGGGTACAGCCTCGATGGATAATCACACTCTGTGGGTGATGTGAAGGTGACACAGAAGTATCAGGTGACAGGGCTGCCTAATAATTTTACAGCAACTGATTTCCTAATTTAGAAAAAATAAAATAAACACGGTTCAAAAACCAGCATCTTGGTTTACAAACTAAACACATTGCTTGTAGACCCACTGCAGTTTAATTTGAATGTGTCTGTGATTTCATTTGACCCTTTGGTCAACAGTAAAGTTGATTATAGTAAATTTACGGTAAAGTAGTTTACACAATTGAAACTGAACAGTAAACCTCTATTGGAACTTAAACCAGAGTACCCTGCAATTCCGTCCAGGACTTAAGTTTCACAGCCCCTTGCAGCAATTCCAAATGCCTTGCCAGTCCCAAAGTAGAGTTTAACTGTTTATTTTCAAATGAGCATATTTTGTGTTTTTAAAGACTTTAACCAGACCTTTACAGCCATTATTAGCATAACCTGTTAATCCCATGAAGCTGATTCAGTTATTCTTGGCAGGTATGAATTTTAGTGTTGAAAGACGATGGGGGTGAGGTATTAGTGACCCCCAGTGATATAGTATTGCACAGTGGACATGTGTAAAGTGTAAGCCAAGTGTTTCTCCCATGTCTGAGGGTCACATGGACTTCTGAGGCACTGTATAACATGATTTACCAATTAACAGAAACCTCAGTCCTCAAATTGTGTTTTAACCTGTGTATATGTACTTAATGTAAAGACATTAATACTGCTTTAGTCTGTAAGAAAAAAAAACATTTAAGCACATGACAGTAACACCACTGGAGTTTTCTATCCCTGATGCCAAACTGAGGGATGATTTCACTTTCCACTTCAACCTTCACGCAGTACTGTAAGATGTCCACTGTTATCCTGTGAATCAGATTGTCTTGTTTCCTCTGATTCAGGTCCATTTCCTTTCTGTACTGCTCTGATACTTGCCCTATTGTTGGCAAACCGCTTACAACTGTAAGTCTCAGCTTAATTTCTGTCATAACCTCGGACCTGTATCATAAAACAGGATTTCTTGGTTAGCTCGATGACTTGTCAGATTTAAGGTAGTCTGGGCTAAATGTATGTGAACAAAGATAAAGTCCATTTAAACTGGGCTACCTCAAATCTGACAGGCTATCCAGTTCAGCAAGAAATCCACCTTCATACAGGCCCCTGCTGTAAAAGTAGCTTTGTTCTGAAGTATCCTCACACGAGGATGTTTTGCTTCCTCAATTCATTCAACTGGTTCGCTCAGGCATTTGAAAACCGTACTGGCTGTCACCTTAACAAACAAAACCTAGGAGCTGTAACGCAAAAAGCAGGATTTCTTGCTTAGCTAGATGACTTGTCGGATGTACCCCGGTTTAAATCGACTTTATCTGTGTTCACTTACATTTAGCCCAGACCACCTTAAATCTGACAAGTTGTCCGGCTAAGCAAGAAATCCAGCTTCGTGATACCAGCCCGCAGTCTTCATCTTAGTACAGGTATCTGCAACAAATCACCTGTAACATAATTCTTACACTGCCTCCTACAAAGGCACACTGCACCCTTTAACGTCTGGAAGATTGTCATTTAAACCTGATGCCTCTCAGTAGACGAGACTGTTTTCATATCGACGGATGTTTCTGATATAGGTCTGGCATTTGTAGATACTCTGACAAATATTTTTCCCTAAAGTAAGTCTACACTAGATTTTTTATTGCCTCTTCCCTGTATATGAGAATCTTGTAATTGAATCAGCCTTGGCACTCTTGTAGCCAGCACTATGCAGAAACTGTCATATCCGTGGCATGCTCCAGAATGCAAACTGTAGAAGCGTTTGTCCAGTTTTTAATAATCATATTCATGATTATATTAATATTAATAATAACGGTGATGGTGCCGATCAAAATAATGAAGATGAAAAAAAATAAATAAACGTTGTGCACATTTTATTTGCATGCTGCACTGAAAATGGAGGGACGAGATTAGCTCTGGGCCACTGGTTTCTGGATCGCCTGATCGGCACGCGTTAAGATGCTGTGTCAGAAAGCAGTAAATGCATACTAACATGCCAGAAGGAGACCTGAAGAAGAACAGTGAGCCCAACACCTCAAGGAGAATTAATTCTATAGCCATGTTTATATCAAGCACCAGTGAATTGGAGGAAATAAGCTATGGGGTCTTGACTGTGTGATGGTACCATAAACGGATGAAATGTCCAACTTTTCCTTCAATAAACCTCTTTGAAAGCAA +>XM_035091360.1 PREDICTED: Chelonus insularis ras-related protein Rab6 (LOC118071888), transcript variant X2, mRNA +CGTCACTTCCCAGTCAAACGTGGCGGCCGCGACAGGAGAACGAAGGAGTGGCTGTACGATCTGTCAAGTTGCTCAGTTTTCATTGTGTATTTAATGTTTTTTTTCGTAACTGGATTAATAATTGTGTAATTACAAGTAGATCCAGTAGTATTATTAATAAAACTCATTAGAAACATGTCGTCGTCGGGTGATTTTGGTAACCCGTTGAGAAAATTCAAGCTTGTGTTCCTAGGTGAACAAAGTGTTGGGAAGACTTCTCTTATTACACGTTTTATGTATGACAGCTTCGACAATACTTATCAGGCTACAATAGGGATAGATTTCCTGAGTAAAACCATGTATCTGGAAGATAGAACTGTTAGACTGCAGTTATGGGATACAGCTGGTCAAGAGAGATTCCGTTCTCTAATTCCAAGTTATATTAGAGATTCTACCGTTGCTGTCGTTGTTTACGATATTACTAATGCTAATTCATTTCACCAAACATCAAAATGGATTGATGATGTACGAACGGAGAGAGGCAGTGATGTTATTATTATGCTTGTTGGTAATAAGACGGATTTGAGTGATAAACGACAAGTTTCAACTGAAGATGGAGAGCGTAAAGCTAAAGAATTAAATGTGATGTTTATTGAGACTAGTGCTAAGGCAGGATACAATGTCAAACAGCTATTCAGAAGAGTTGCTGCAGCATTGCCTGGTATGGACTCCACAGAAAATAAACCTCCAGAAGACATGCAAGAAGTAGTTCTCAAGGATACACCAATTGAACTCAAAGCGTCGGAGAGCAATTGTTTATGCTAAATCAAGATAAGTCATAATAGACAGACTTACATTTCTACACTCCATAGACACGAATTAAACAAAATTATAAACAAGATTCGTCGTCAATTGGTGCGCTAACGATCTTGACAGATCACAATTGTAACAATAATTTTTACCCACATATTAAACAGTGCGATTTTTTAAGAGTGGTGCACATATCCAATATTTTGTATAAATTGCTCATTAATTTTTATTTCCGGGAATCATTCGTTTTTATCAGCATTTACAAATGATGAGATCAATTCTTTGTACTCATTTTTATCGCTTTATCCATGCTATTCATCGTGACAGCCACGGCACTAATAATTATACATTAATCATTTATACAAAAGCAACGATTAACTATTTTCAAATTATAAAATTCTTATTGATCACTTTCGTTATCAATTTATATACATTTTCATATTTACAACAAAA +>XR_006035448.1 PREDICTED: Aricia agestis torso-like protein (LOC121725853), transcript variant X2, misc_RNA +GTCAGTTGTGCCGCGGGGCGCGTGTTGTCGCGATGTTTCTGTCGCGTCGTGCTGTCGTGTTGCTGTCGCTGTGTTGTGTTTGTTGTGACGAGGACCTGGGATACACTCTGACCATCGGCAATGCTATTGACGTGTTTGCCAACTACGGTGACCTGTCCCAGGTGACGCAGGTGGTGTCAGCAGACTACGATGACAACGAGGGCTCGGAACCCTTCAGGGAGAAGAACATCAGACTGTTTGAGAACATCAGCAGCCGCCAGACGCCGGGGGATTCCCACTTCGACATGAACATACAGCTGTGCGAGACCTTCGATGACTTATTGGCAGTGTACTTCAAGAACTTCAAAATAGAAGGTACAGACAAACCATGGAAGGCTTTCTTAGGAGATTGGATACTGGACGAGATCATGCGGACTTTCGGTATCGAGTACGACGCGCGGCCTGACAACTGCTGCTACGTGCTCGTGAAGTTGACCAAGGTCCACACTGCGGTGCAGGTAGAGTCAATGGAACGAGTCCGCGTGCGGGAGTACGTACAGCGCGCGGTGAACAGCCTCAACGTGAGCGACGGCGTCGCGATCAGACAGTTCATGAAGAGCTACGGCACGCACTACATCGAGTCCTTCGCGACCGGCAACTTTATATACCAGGTGTTTAAGTACAAGCGGTCTGGGTACAACCGTCTGAAGGCGTACATCAGGCTGCGGGAGAAACACCAGATCAACTCCGACAGTCTCAGGTTCTACTTCTCCTCGTACTTCCTCAAGCAAGTCGGAGATATCCGAATAGCAAGCGGCAACAAAGTAATAGAGGAGTGGGCGCGAGACAATCTCAGAGACAGCCAGTATCTTTTCTCACGACCGAGTCTACTCCGACTGCACTTCAACCCAATACTGGCGTTCAAACTCAACGAAATGCTGGACAACGGAGCGCTCCTATCGTTGAGTTTGAGAACACTCAAACCGCTATTCAAAGACGAATACAAAGGAAGGGTATTTGCGGAGTACGTGGAAAACGATATGAGGCTATGGGAAATCAATGCTTAGATTTGAAATTTTGTAGAAAGAATGACATGGAGTTAATTTTCAAGATGCAGGTACGGTTAAATAGTCAATACTTATGACGAGAGTATGAAAGAAATACAATGGTGAGAATTATAATAATAGATTTTAAATTTTTAATGTTGGTGAAATATTTACTTAAGTTCACCAATAGATGGCGTAACGTTCATATAGAATTAAAAAGT +>XM_009873997.1 PREDICTED: Apaloderma vittatum cytoskeleton-associated protein 4 (CKAP4), mRNA +ATGGGGGTTGCGGTCAGTTCGGTGCGTTCCCTTCAAGCAACTTTTGGAGAATTTGAATCCATGATGAAAATTGCTCAGCAGAAGCAGGAGGTTACTGAGAGGGCTGTTAAACAAGGGGAGAGTGAAATAAACCGGATCAGTGAAGTGCTTCAGAAGCTGCAAAATGAAATTTTGAAAGACTTGTCTGATGGCATCCACATGGTGAAGGATGCAAGGGAACGAGATTTCACGTCTCTGGAAAATACAGTGGAAGAGAGACTAACAGAACTAACCAAGTCTATAAATGATAACATTGCTGTATTCACAGAAGTCCAGCAGAGGAGCCAAGATGAAATCAACAATATGAAAGCAAAGGTTGATTCACTAGAAGAAGCAGATGTGTATAAACAGGAAATTAAGGTGCTAAAAGATGCTTTTGCTGAGATGCAAGCATCCATGAAAACCAAAGAAAAGGACATAGAGACCTTGAAGAGTACAATAGACTCCATGGAGTCTGATGTGTACACTGAAGTGAAAGAGCTAGTCAACCTCAAACAAGAACACGAGAAATTCAAAGAGGCGGCGGACACTGAACACCTTTCGTTGAAAGCTTTACAAGAGAAAGTTCTGAGAGCTGAGGATTCTATCATGCAGCTCCCTGGTGACATTAAAAGACTTGATGAAGACTTACTGCAAGTTAAAGCTGACCTTAACAAATGGGAGGAAAATGAACTCTTCAGAAAAGCACTAGAAACTTTCGGAAAGAGCAGTGAAGGGCTGGAATCTCGATTGAGGCACATAGAAGACAGCTTGGAATCTCTAACATCTGTTGCTGCTCAAAACAGTGAAAAGATGCAATCCTTCCTTTCTAAGGAGGCAGAGTACGAGAATAAGCTCACTACCTTAGAACAAAGCGTTACTGCTCTTCAGGGAGTCTTCAATATGGACGTAACTTCAGTCACAGACACTTTGAAAAATCTCGGTGAATCGCAGACCTCACTGTACAATGACGTGGAAAACTTGAGGAAAAGCATCAGTGACCTGCCATCCTCTGGTGTTCTTCAGGATGTCCAGAAGCAAATTAGTACTTTGCTGGATCAAGGAAATCTTCAGACAGATCAAGCACATTCTCAAGGTTATCTTGACAAATTTTCTTCTGTGGAGGGCTCTGTAGATGAACTGAGATCTTCTGTCAGCCAGGTTGATTCCGATTTGAAAATGATAAGAACTGCAGTGGATAGTTTAGTCTCCTACTCGGTGAAAATTGAAAATAACGAGAACAACTTGGAGTCTGTGAAGAGCTCAGTAGACGACTTGAGGAATGATCTGGAAAGGTTGTTTGTGAAAGTAGAAAAAATACATGAAAAAGTTTAG +>XM_014296803.1 Sphaeroforma arctica JP610 hypothetical protein partial mRNA +ATGGGTCAGAGAACGTCAACGCAGGTAGATAAGCTAGCTAAAGCATTCAAGAAAGGGTTAAATAGTAAGTTACCTGAAGCTCAGAATACAACCCTCGAGGCGTTATTGAAGGACATGCCAGAAGTTCACGATAGACTTATGACATTGTTTAGTGAAAGTAATGCTGTATCAGCAGCATCAGCAAAACGCACTTCGACGGGCGAACAAGAGTTCAATGATGATGAGCAAGGTCAAGAGACTGATATTGAGGGAGAAGACGAATCTCCCTTACAACGTGACATGGATACAGAAGAACTGATAAGGAGAAGTGTTAACGATGGGTCAGAGAACGTCAACGCAGCATCAGCAAAACGCACTTCGACGGGCGAACAAGAGTTCAATGATGATGAGCAAGGTCAAGAGACTGATATTGAGGGAGAAGACGAATCTCCCTTACAACGTGACATGGATACAGAAGAACTTGAAGTTCACTATTGGGTTGTACAAGATCACAATCTAAAACATGTTAGTGAACGACCTACTCTACGAGATGCCCAAGAAGAAGGGATTGATCATCCCAGACTCAGGGCGATAATACGTAAAAACTACAACTCCTGTAGGATTGCGAATATAATCAGATCAAGCGTTATGGATTCGCGCCACTAA +>XM_018329607.1 Xylona heveae TC161 zf-DHHC-domain-containing protein partial mRNA +TCAAAAAGGCACACTTGGTCTCAAACATCACGCTTTGCATCAAAGGCCAACACTTCTTTGGGGGGTGTCACCACCGGAAGCGAGATAGGGACAGAGTCAAGGAGACCTCAAAGTTCGGCGAGTAAAACGCATGTGCCATCGCTTGCTTCACATGCTTTCTTCCGTCCACTGAGCTCGCAGAGGCTTCAAGCTCAGCGAGGGCGTCCTTCGCCAGCCACCTTCGTTCCAGCTAAAGAAAATGTGCCTTTAAAAGACGCAGACTCTGAGATAGCGCATGAATTGGATTCAAAGATTAATCAGAAAAGGAACTCCGCTGTCCTTCTTGATAGTGAAAAAGCGCAGCCACCGTCAAGGGGTACTGAGTGCACCGAGTTCCATGGGCAGGAAATGATCACAGGCGAAGTTAGCCCTGCTGCTAATCGCACAGGCACAAGCACTGCCGGCAGTGCGCATCCTTTGACCCAAGCTTCTCTGGCACCCAATGAGCCGACCGGGACGGTCTTTCGAAGAGGCTCCGCCTTTTCGTCACCTCTCGAGAAAGATCAAGGCTCGTTTCGCTCAAATTTCCTTTTACCAAGTCAGAATTTAGAGCTTCGAGATAATCAAATCATCGGTCGAGAAAAGCTAGCTTCTGCAGATTCTTCGCCACAACTTGGGCCCTACGAGACAAATAATCACGTGAGGAGAGATTCGGAGCGCAATTATCAATATTTTCCTGGAAACACTGTCTTCTGCTTTGGCGGGAGGCTTCAAAATACCAAAGATCGACCAGTTAACATCGTCACTTTCGTCTTGGTCATTCTGCCCTCGGCTCTTTTCTTTGGTTTCTCTGCTCCATGGCTCTGGCTGCATGTCTCGCCCGCGATACCAATTTTGTTTGCGTACCTCTTCCTCATATGTGTTTCCTCCTTCACTCATGCCTCTGTTACCGACCCTGGGATACTACCGCGAAAAACCCAACCATTTCCTCCTGCGAATGATGCAGACGATCCTCTTACCCTTGGGTCGCCAACGACTGACTGGACTCTGATTAAGTCAGCTGCGTCGCCCACCTCTGCCATGGAGGTTCCAACAAAATACTGCAAGACTTGCAACATTTGGAGACCTCCTCGGGGACATCATTGTCGAGTTTGCGACAACTGCGTGGAAACGCAAGATCATCATTGCGTGTGGCTCAATAACTGCATTGGTCGCCGAAACTACCGATTTTTTATATCCTTTGTGGCTTCCTGCACGTGTTTAGGTCTCTTTTTACTCGGCGCCAGCCTTGCTCATATTCTTCTATACGAATCCAGAGAGAGCATCTCATTTCGGGACTCAATCAGTCATCTGCGAGTCCCCTTTGCTATGGTTCTATACGGAGCCCTAGCGACGCCTTATCCCGCATCTCTTTGGGGTTATCACTTATTCCTGATGGCACGAGGCGAGACAACAAGAGAATATTTGAATTCTCACAAATTTTTGAAGAAGGACAGGCATCGTCCATTTACGCAGGGCAATATTCTGAGAAACTGGTTAGCGGTCGTCAATCGGCCGAGGCCCCCAACCTACATACGATTCAAGGAAAAACACGAGGCCGGTGACCAAAGGTTTAATCTTCGGAGA +>AB364225.1 Uncultured bacterium DNA, ribosomal RNA intergenic spacer, clone: Amplicon22-5 +CCGGAAGGTGCGGCTGGATCACCTCCTTTCTAAGGACGAAAAGCGGAAGCGCCGCGTTCGGCTCTCGAAGCCAAATGTTCTTCACCCGGAGGGGTGCTGGCACCCCGAGGGGGAAGGTTATTTGGCAGAAGAGAGCCAGGCGCTGGAGCTAGACAAGACGAAAAGTGGAGGCCGCAATGGCCAACTGTCGATACACAGCGCTTCTGTTTCGTTCAGTTTTGAGGGAACGAGTCATGTTCTCTCAATGACAAAAATCGTTCCTTGAAAACTAGATAACCGGAAAAGCGGAGGCGAGTGTTTCGCCGCGATGGGCAAATGTTCTTCGCCTGCAAGGGTGCTTGCACCCGGAAGGCGAAGGTTATTTGCCCCCGAGCGGCGGCGAGCCGACGCTAGACAATAAGGAAGAAGCCGAGAGCGCTGTAGGTTAAGCTAGAAAGGGCGCAC +>XR_002421788.1 PREDICTED: Columba livia uncharacterized LOC110363588 (LOC110363588), transcript variant X2, ncRNA +CTGCTCTGGGGATGTTCTTTGTGCCCTTCGTGATGTGCTGCTGGGAGATTGTGATGTCAGTGGATGTCGAGATGATTTTCCCAGCTATCATCCCACTGCACATTGGACTTCTTCCCCAGGATCTGCAGCACCTTTCTGTGAGACATCACGCTTGATGAATATTGACATGGAAATAATGACTGCCCATTGCTACAGTGCCACTTGTGTTATCTGTTGGAACTAAAGCCTTCACTTCTTAATAAAAATAAACTTATAAAATC +>XM_031706046.1 PREDICTED: Actinia tenebrosa lysosome membrane protein 2-like (LOC116297758), mRNA +CACCTGATTGAGTTTGAAGGCCATTCAAGGTTCGGCATCTGGTGAAGTAAAAACTGAAGGACTGGAATCTTAGCTAGCAAGCTTCATTCAGCCATATTTTAAACTTTMCACCACATAAAAGCTGCATTTCTCCATCAATAATGGAAGAGAAATCAGAAAAACAAACAAGCTGTATTTACGGGGGAAAGAAGATTGCAGTTCTTTTGACTATTGGAGTGCTGCTAATATTGGTTGCCGTCACTTGTTATCCTCTGATCGATTCTTTGATTCAGAACAAGATCGATTCAACTCTGGCGTTGAAGCCTGGCTCAGATAGCTTCAAACAGTGGAGGGCACCAAAAGTTTCGATTTAYCTTCAGTTTTTTATTTTCCATGTTGTTAATTATGAAGAAGCATCGCTTGGTTTACCTCCTTATGTTGTGCAAAAAGGACCTTACTCGTACAAGGAGTACAGACGAAAGGACAACATTACTTGGCACGATGAGAACTCTACTGTGTCTTACAATGAGAGGCAGTGGTTTGTGTTCGACCCAGATACCTCTTGTGCAAAATGTGATCCTGTTAGAGATGTTATAGTAAACGTGAATATTCCCTTAATCGCGATTGCTAATCTAGTGAAGAACTTCCCAGATTTCTTASGCTGGAAAGAGCTGTTATCTTTGATATTGGGCAATTTCAATGAAACGCTTTTCGAAAATAGAACAGTACAGGAACTTTTGTGGGGATACGATGATCCTTTTCTTGCAGAATACGCTAAGTTGAGGAAAAAGCTCMATCTCACTAGTATTCTTCCAGATGTCGATCCTCTCATAGCTTTGCAAAAGAATGATACTTATTCAGGATTCACAAMAGTCCACACTGGAGTGAAAGATATAAACTTGATAACTAAATGGACGGAATGGAAGGGAAAACCAGATGTGGGTGTATGGAACACGACCTACGCCAACATGCTAAATGGCAGCGATGGTACTCAGTTTCCTCCGCAACAGTCAACTGATAGTACACTCTATGTTTTCGTAACTCAGCTTTGCCGTTCATTATACTTGACATATAATAAACAAATAGCAATTCACGGAATTGATACTTTGCAGTTCACGACTCCAAAAGAGCTTTACTTAAATGCCTCAATGAATCCAAAAAACAAGGCATTTTGTACAAAGGAGTGTTACCCAACTGGAATATTAGACATTGGTGTGTGTCAGGATGCACCCATAACAATCCCATTGTTTGTGTCTGCACCACATTTTTATCTTGGAGATAAGTCTCTCACAAATAATGTGAAAGGTCTCTCTCCGAATGAAAAAGACCATGGAACATTCCTGGACGTTGAGCCACACCTTGGTGTACCGCTTAAAAGCAGCAAGCGACTCCAGATCAATGCTCTCATTGAACCAGTCGACGACATTAAACAAACTCAGAACCTTCACAAGTTATTCCTTCCTGTCATGTTTATTAATGAGACAGCCACCATTGATAATAGTCAGGCGCAAATGATCAAAGACAAAGTGTTGATGCCATTCACAGTTGTTCATGGTGTGGAGATAGGACTGGTTGTTCTTGGGGGCGTGCTTTGTTTGGCAGGATTGATTTTATTGGTGCTTTTGATTGACAGAAATAGGAAACTCAAACAGGTGAAAAACATACTATCAAACCCTGATGAAAACTCACCTCTTGTAGTCAGCACTTAGTAACATCATCTAGATTATGATCTTTTAGTTTAATATTATTAAAAGATCATWTCTATATTTAAAAAATGTCAAAAAGGCTAAGCTGAG +>XM_028718607.1 PREDICTED: Podarcis muralis ubiquitin specific peptidase 4 (USP4), transcript variant X3, mRNAXM_028718608.1 PREDICTED: Podarcis muralis ubiquitin specific peptidase 4 (USP4), transcript variant X4, mRNA +AGAAGGAGGGATTCCCTGCCTCCCTGCCCTTTCACTTCAGCGGAAAGCGGCCCCTTCTTCCTCAGCGTCAAAACACCGCGCTCGGCCCGGCGCTCCCTGCCCTCCGAACGCCCGGAGGCGTCGCCGCGCCTGCGCAGTGCCGTTCTGTGCGCGCGGCGGCGGCGGCGGCTGGGCGAGGAAGGATATCCGCAGTTGGGGACGGCCGGCCGGGCGAAAGCGCTTGCAGTACTGTCATGGCGGCAGCCGAAGTAGGGTTAGACGGCGGGGGAGGCGGCGGCGCCGGCCTGAGGCCGGACGCCGGGACGCAGCGGGCGGAACTTATGCCGCTGCTGGGGACGGCGCTGCGGCCGGGAGAGTCGTGGTTCCTAATTGACAGCCGGTGGTTCAAGCAGTGGAAGAAATACGTGGGCTTTGACAGTTGGGACTTGTACAACGTTGGAGAACCTAATCTCTTCCCGGGACCCATTGATAACTCGGGGCTTTTTGCAGACTCAGAAGCTCAGACTTTGAAAGAACATCTCATTGATGAGTTGGATTATGTGTTGGTTCCTACTGAAGCCTGGAACAAATTAGTAAATTGGTATGGTTGTATAGAGGGACAGAAACCAATAGTGAGGAAGGTTGTGGAGTATGGCCTGTTTGTGAAGCACTGTAAAGTAGAAGTTTATCTTTTGGAGCTGAAGCTGTGTCAGAACAGTGATCCTGCTAATCTTACGAGCTCTTATTTCAGCAAAGCAGACACTGTTGCTACTATTGAAAATGAAATGCGAAAGCAATTTAATATTCCTGACGGAAAAGAAATTAGACTGTGGAGCAGATACATGAGTAATACTTATGAGCAGCTAAGCAAACTCGACAGTACTATACAAGATGCGGGGCTCTATCAGGGACAGGTAGTGTTAATAGAAGTGAAGAATGAAGATGGTACGTGGCCCAGGCAATCTCAGACAAAAGGTTCTAGCTTTTCCTGCAACTCCTACAACAACAGGGAGAGCCCTCCTCAGTCACAGCCTGGTCTCTGTGGGCTCAGTAACCTAGGAAATACATGCTTCATGAATTCAGCTTTACAGTGTTTGAGTAACACCCCTCCACTGACTGACTATTTCTTGGAAGATGAGTATGAACCTGAAATAAATCAGGAGAATCCTCTGGGAATGAGAGGAGAAATTGCAGAAGCATATGCAGAACTCATCAAACAGATGTGGTCTGGGAGAAATTCTCACGTGGCCCCCCGCATGTTCAAAACCCAGGTTGGCCGCTTTGCTCCTCAGTTTTCAGGGTACCAGCAACAAGATTCCCAAGAGCTCCTGGCCTTTCTTTTAGATGGTTTACATGAGGATCTAAACAGAGTAAAAAAGAAACCTTACTTGGAGTTGAAGGATGCTAATGGCAGGCCTGATTCGGTGGTAGCAAAAGAAGCTTGGGAGAATCATCGATTGCGTAATAACTCTATAATTGTAGATATTTTCCATGGTCTCTTCAAATCCACATTGGTCTGCCCCAAATGTTCTAAAGTTTCCGTGACTTTTGACCCTTTTTGCTACTTAACCCTTCCATTGCCCTTGAAGAAAGATCGAACCATGGAGGTTTTCTTGGTTTTTGCAGATCCACAGCGCAAACCTACTCAGTACAAGGTAATTGTGCCAATGATGGGGGCTGTATCTGACCTGTGTGATGCACTCTCAAAATTCTCCGGGGTTCCTGCAGAAAACATGGTGGTGACAGATGTTTATAATCACCGATTCCACAAAATTTTCCAGATGGATGAAGGCTTAAGTCAGATTATGCCAAAGGACAACATCTTTGTATACGAAGTTTGTAAGTCAACGGAAGATGGTGCTGAATGCATCACTCTTTCAGTTTACTTCAGAGAAAAGAAAGCAAGACAATCCAGTGCTGCTCCGGGGACTGTTCTCTATGGGCAACCACTACTCATAGCTATACCCAAACACAAGCTTACTCTAGATCACTTGTACAATGTTATATTGGAGCGGATTAGTCGCTATGTTAAAGTTTCCTTAAAAGAAGAATGTTCTGAAGGATGTCCAGATAGTGAGAATTGCAATGGCTCCAGTAATGTGTCTGAAGGTGATGTTGAAGAAATGGAACATCAGAATGGAGAGGAAGACAGTAAGGAGAAAATATCAGAAACAGATGCCTGCAAATCAGAGGACTGCATCCAGGATGACCTGGAAAAGGAAGGCCTGCATCACAGAAGGCATCTCTTTAGCTTCAGTCTTGTGAACTCTTATGGAACATCAGAAATAAACTCCCTTAATACAGATGGGAAAATCCTCAAGTTGAGTTCTCATGCAACTCTTGCTATTGATTGGGATTCTGACACCCGAAAGTTGCTTTTTGATGAACATGAGGCACAGGCATTTGAAAAACACAACAGTATGTTTCAGCCACAGAAGAAGAAAACTACCGTAGCTCTGAAAGACTGCATAGAACTGTTCACTACTATGGAAACACTTGGTGAACATGATCCATGGTACTGTCCCAATTGCAAGAAACATCAACAAGCCACTAAGAAATTTGATCTCTGGTCACTTCCACGTATTTTAGTAGTACATTTAAAACGCTTCTCATATAACAGATACTGGAGGGATAAGCTTGACACTGTGGTTGAATTCCCTATCAGGGATTTGAACATGTCTGAGTTCGTTTGTGACCCAGCAGCAAGCCCATATGTGTATGACCTCATTGCTGTTTCCAATCACTATGGAGGCATGGGTGTTGGCCACTATACTGCATATGCTAAGAATAAAGTGAATGGCAAATGGTACTACTTTGATGATAGCAGTGTGTCTCCAGCATCCGAAGAGCAAATAGTGACAAAAGCGGCATATGTCCTCTTCTACCAACGTAGAGATGGCATGCTCAAGGGAAACCCCGCTCCTTGCATAAGCACTGAGCTGAAATCTGAGGAATGTGATGGCATGGATACCAACTGAACCTATGTGGTGGGGTTTAAACAAGTCATATTGCTAATTTTAAAAAGCATCCAAGAACTGATTTTTGTAAGAATCAAACAGGAGTTTCAGTACAGAAGGACTCAATGAGCAGTAACTATGGATAGCATAGGGAAGCAATAAGATGTCAAGGACTTGGGTATATCATAGCCAAAGAGCTTTTAAACAAATAGTTATTCAATAAAGTGTTATCTAAATCTGACTGTGTAGTCTGGCAGAAACTGTGTGGAAGCAGGAGCTTATGCTGTATGACTGGAGCAATGCATGAAAGTGCGAAACAACATTTGACTGTAAGTAGAATTCTGGTTTGAGCTCTATGCATTGCAGAAGATGCCTGAGTGCTTGTGTTTCCAGAGTAAAAGAGAAGTGAACATTTGGCACAAGTTCCAATCTCGCACAGCACATTTTGGCACTATGTTGCTGTCAGTCCCTTGCTGACATGGCATGGTGAGCTTGTGTGTGCTTTTAAGAAAAAGAGAAAATTGCATATTTGTTCTGGCTCATTGTGTCCCATACAGGAGTCACAATCCCCACATTTTCTTGTTCCGTTCTAATAAAACAATTATTTAGGATCCGTCCCAAAGATTAACTTTCCCCCACCCCCAGCCTTTCCAGCAGCAGTATTCATGGGGCCTATTCTTCACACCAACTCACATGGAGCCTTATATGCTCCTGATCTAGTTGGTAACTTACATATTGTGCAATCACAAGGCTTCTTTATTCAAGTGTCTCATTGGGGAGCTAAAATAACTTTCCCTGGTAGTTTTTTTAAATTCCGCTGTCAACTGTCTTCTATTTCTGTGCACTTTCAGCCACACCAGGAAAAGTTCAGAGTCCATCTCTTGAAGGCTGCATAGGAATCAGTGTCCAGTGGAATATGTCCTTTTGGGTGGTCTCAGACACGACACACTATTTTTCTTTTTAGCCATTTTATTTCTCTTTTTGTAATCTTTTGCTATCCTCATACCTCCTTAGTATTTTTTCCTCATTGGCTGAGAGATGGCAAGAGTAAATGTTGTTTGACTTCTTCCTACCCACAGCCTCCTCCTCCACGGAGGATGATAGACAAGAACCTTCTAGGAAAGGAGCTTTCAGGTAACACCGTGGAATTCCCATGCACACTGCTATGACACCTTAAGACATTTCCCATTTAGTGTCATGGCTTTGAAACTATCTTGGCACCTGTGTAAAGGTGTTTCACTTTTGTGCTCTGAACACATTCCCACGGATTCCCTTCAGCAAACTAAGAAGTATTCCTCTCCCAGACTGCTTCTGTGCTGATCTTTATCGGCATGACGTCAGGCAAGTGGTAGCCAGTGGTATCGTCAGGCCACACCATTTTAGCAGAACTGATTAAAAGTGATCGTGTTCTTTTTAACTTACAGAGCAGAAGAGTCCTCATTGCTGTCAGCTGCATTTTCCTCACTATTTTCCAGTGATTACTATTGCGTTCTCCAGGATAGTCCTTTTAAACACTGAAATTTGAGCTGTTTGGTTCAGTTGCTAATGCTTCCAGGTTCTTTAATTGATTTGAGGTCTTGTCTCAACTGGATATTATTTTCCTGCACACTTGGGTTGGTGGGTGGGGTTAGGGCTGGAATTATTTAAAGGCTAAGTTCAAACTGTAGCATTGCACTGTTTTGTTTTTTCCTGTTTTTCTGGGTTATATTTTCTTTGGAATGTAACATTTGGACCGATAAGGAAACAGATATTTAAAAGCAAAGAGCAATTTAATGTAACCATATGTATTTCTGTTCCATACTGTTGCAGCAAACTTTTCACTGCTCTGTATGGTCAGATAGTGTGCACATTTGTGTTTGGGTGATTTTTGGGCTCCTGAACTAAATTTCTTCTAAATGCTGTAAAGATGGTATTAGGAACCTGGATTTGCCTCTGACCAGGCTGGATCCTAGCTGGTGTGTACATTCTGTATAGTGTCAAAATCTGTTTTTAGACTAGCACTTTGTAAGTGACTGGCTTTACTGTATAAAAGGAAAAAAAATTAAAAAGAAGTGGATTGCA +>XM_029695648.1 PREDICTED: Salmo trutta inaD-like protein (LOC115151590), transcript variant X3, mRNA +CCTCCCTTCTCTCTCCTCTCTACGTTTGTTCTCTGTAGATTCTCACCATATTTCAGTATGCCTGCTCAGCCTTGCTCAAGGCAGCGCTGCCAACCAACACCACGAGGTTGACAACGGACAAACACACACACAAACACACACACTGGCGCATGGGGATGTTAAACTCAGGATTGCTGGGAGAGTGAAGCATGGACCATGCTGCCAGAGCGGATCAGGTTGCGTTACGGGGAGCTGCGCGGGGAGCTGCTGTGTGTGGAGCTGGACAGGGAGCGCCAGGGCCTGGGTCTGAGCCTGGCGGGGAACAAGGACCGCTCCTGCCTCAGCATCTTCGTGGTAGGCATCAGCCCTGGGGGCCCCGCCGCCAAGGACGGACGCATCCGCATAGGGGACGAGCTGCTGGAGATCAACAACCAGGTCCTGTATGGCCGCAGCCACCTGAATGCCTCGGCCATCATCAAGAGCACCTCGTCCAAGGTCAAGATCACCCTGATCAGGAATGAAGATGCTATCAACCAGATGGCCGTTCCCCCCTTTCCAAACCCTCCTGCTGTCCTCTCCTCCACTGAAACCCATCCCCCCAAACCAGCAGCAGTAGCATCCCCGGGCCCCACAGAGAAGTCTCAAACCCCAGAGAGCCTGGCCCTCAGCAGGGGACCCCTGGAGGCCTCCATCTCCATCAGCGAGGTGAAGTCCAGTGTTGGGTCCAGTGGGAGCACAGCTACAGAGCTTGTTTCCAGAGAAGCAACACTCAAGATCCTCCGAGAGACTTCCTCAAAGAAGGCCTCAGAGAACGAGGCTGAGTCTTCAGAGAGCGTGACTGTGCCGGCTGCCAAGGCCCCCCTGGAGCAGACTGCTCTCCTGTCCAAAACCTGTCGGCTGTCCTGTAAGCTGCCTGTGGTGAGCTCTGTGAAAGGGGGGCTGGTGCCCACCCCTGCCTCTTCCCTGCCTTCCTCCTGCACCAGCCCAGACTTTGAGTACTGCAACAAAGACCCAGCCACGTGCCCTATCGTTCCAGGCCAGGAGATAATCATAGAGATCGCCAAGGGTCGCTCTGGCCTGGGTCTCAGCATCGTAGGGGGAAAAGACACCCAGCTGGATGCCATAGTGATCCATGAGGTATATGAGGAGGGGGCGGCGGCACGCGATGGACGACTCTGGGCTGGAGATCAGATCCTGGAGGTAAATGGTGTGGACCTGCGTAACGTGGCCCATGAGGACGCCATCACAGCCCTAAGGCAGACCCCGGCCAAGGTGTGTCTTAAGGTTCTGCGGGACGAGGCGAGGTACCGCGACCAGGAGAACCTAGATGTGTTCAGTGTGGAACTGCAGAAAAAGGCCGGCCGTGGCCTGGGCCTCAGTATCGTCGGCAAGAGGAACGGCACAGGGGTGTTCATCTCGGACGTGGTGAAAGGAGGCGCCGCCGAGCTGGATGGCCGGCTGATGCAGGGGGACCAGATTATCTCTGTCAACGGAGATGACATGAGGTCTGCCTCGCAAGAGACGGTAGCTGCCATTCTCAAGTGTGCCAGGGGGGTGGTACTCCTAGAGCTGGGCCGACTGAAGGCTGCCTCCTGGATCTCTTCCAGACGTACCTCCCAGGAAAGCCAGCAGATGAGTCACGTGAGTGCCAACAGCACTATCGTCACGCCCCACCCCCCGCTAAACTCCACCCCTTCCACCTCTCAGCTCCTCAATAACGTCAGGAAGCCAATGACGGTGGGCATGACATCATCACAGAGCGCAGAAACAGGGATGCGCACTGTGGAGATCACAAGGGGTCCTACTGATGCGCTGGGGATCAGTATAGCTGGGGGGAAGGACAGTCCTCTGGGGGATATCCCCATCTTCCTGGCCATGATACAGGCCAACGGGGTGGCAGCCAAGACGCACCGGCTCAAGGTGGGTGATAGGATCGTGAGTATCAACTCCCAGTCTCTGGAAGGCCTGTCCCATGGGGATGTAGTCACCATGCTGAAGAATGCCTACGGCAGCATCATTCTGAAGGTGATTGCTGACACTAACATCAGTGCTATAGCCAGTCAGGTGGAGAGTATGTCGACTAGCAGCAGCCCCGAGACACAGCCAGGGGAACCAGAAGCCCCCAAGCCCAAGAGTATCTGCCTGGAGAAGGGTTCTGACGGCCTGGGCTTCAGCATCGTAGGAGGCTTCGGAAGCCCTCATGGAGACCTGCCAATCTACATCAAGACTGTCTTCAGCAAGGGGGCAGCAGCGGTGGACGGGCGTCTGAAGAGGGGTGACCAGATCTTGTCTGTGAATGGAGAGAGTCTGGAAGGGACCACACACGAGCTGGCTGTGGCCATACTGAAGAGACAGAAAGGGGCCGTCACCCTGGATGTGCTGTCCTAGCTCACACACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAACTCTCTACCCCTTCAA +>XM_046072427.1 PREDICTED: Micropterus dolomieu transcription factor ETV6-like (LOC123985072), transcript variant X4, mRNA +TAACAGCATAGGTTTCAGGTTTGCAGCCAGTGTTTTGGAGCAGGGAGGACGTGGCCCAGTGGCTGCGATGGGCCGAGAAGGAGTTTGCCCTGCGGCCAATCACCAGCGGCTCCTTCCAGATGAACGGCAAAGCTCTGCTGCTGCTCACCAAAGAGGACTTCCGCTACCGATCCCCTCACTCCGGGGACGTCTTGTATGAGCTGCTGCAGCACATCCTGAAGCAGAGGAAGCCCCATGTGTTTTACCCGTCTGCCTACTTCCCTGGGAACTCCTTCCACTCGCTGCCTGAAAGCGCTGTGCAGCACCTGAAGCTTGAAGAAACGGTACGGCGGGCACCACGTGGTACGGAGCCACTCCCCCAGCATCCACCAACCATTGAGCTGCGGCACCGCTCCCGCTCCCCCCATCATCCAACCACCAGACGATCCCCTCCGGAGCCAAACCACCCCCGCCAAGCCAATGAGGACCCCCTCCAGACCTTCTCCCAGCTGCCCGACAGCAACCACCACCTGCCCGAGGAAATGTACCCTCTGTCGGTGTCTCCGGCTGCACCCAACGGCCGCTGTGCGACGCCCCGGGAAGCCCCATGTCCGGGCAGCCCTGGGGGCCAGGAGGCGGGCCCTCCTCGCGTCATCCAGCTCATGCCCAGCGCCATCATGAACCCCCTGCTCCTCAGCCCGAGCAGGAGCGGCGGGGGTGCCGCCATGGACTTCAGGCACAGCCGTGGCGGACCCCCCTCTCAGGTGACGCTCGAGAACGGGCGCGAGGGGAAGGTCCACGCCCACCACCATCAAATATCACTCTCCCAGCAGCAGCAGCAGCAGCAGCAGCACCACCTACTGCAGCAGCAGGAGGAGGTGCTTTACCGGAACCAGGTCATCATGCCCGTGTCTCCTCCAGAGGAGCAACAAATACCCATCGGACGGATAGCAGACTGCAGGCTGCTCTGGGACTATGTCTACCAACTCCTGTCAGACAGCAGGTACGAAAACTACATCCGCTGGGAGGATCCAGAGAGCAAAGTCTTCCGCATCATGGACCCCAATGGCCTGGCCAGGTTGTGGGGAAACCACAAGAACAGGACCAATATGACCTACGAGAAGATGTCACGAGCACTGAGACACTACTACAAACTGAACATTATCCGGAAAGAGCCTGGACAAAGACTTCTATTCAGGTTTATGAAAACTCCCGATGAGATAATGAACGGGCAGACGGACCGGCTGGAGCACCTGGAGTCCGACACAGACGAACAAATCTACATCAAAGAGGAATGCTGAGGAAATCTTGGGGGAGGGGATGAGTCCATGAACTACTTACTACTTACTACTACTACAGCCGCTGATGCCTTTCAGAAGCAGCCTGAACAATCGTTGTTGAATCTGGAGCACGTGGATGTGCGCTTGTATCAGTCCCACACAGATGGATGTGAAATGTGGTCTCCCGTAAGATTGCCTTAGGATGACGTTTTCCTGAAGTAAACAGATTTTCCTGATGGAGCGAGCTGAGAGCACTTTCTAAGTGTTCCCTTTTTATTTCTGAATGAACTGCAAAAAAAAAATCACTTTGTGCTTAAGTCACTTTTATGATTTTTATTATTTTTTTGTCCCCTCACATGCATTATACAATGGAATTTTGCTGTTTGTAAAAAGAAAATCGCGTGTGTGTGTGCGTGTGTGTGACAGGAATGTTTTCACCATGGAATAAACATTTTTTGATCAAACTGTA +>MG257935.1 Paenisporosarcina sp. strain SC-Apr-C3 16S ribosomal RNA gene, partial sequence +GCCTAATACATGCAAGTCGAGCGGAATGAAGAAGAAGCTTGCTTCTTCTGATTTTAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTACCTTGTAGATTGGGATAACTCCGGGAAACCGGGGCTAATACCGAATAATCCATTTTGCTTCATGGCGAAATGTTAAAAGGCGGCTTCGGCTGTCACTGCAAGATGGGCCCGCGGCGTATTAGCTAGTTGGTAGGGTAACGGCCTACCAAGGCGACGATACGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGAAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGTAAGGGAAGAACACGTACGAGAGTAACTGCTCGTACCTTGACGGTACCTTATTAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTCCTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGAGGACTTGAGTACAGAAGAGGAAAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGG +>XR_003604399.1 PREDICTED: Vigna unguiculata uncharacterized LOC114183599 (LOC114183599), transcript variant X4, ncRNA +GTAATACCTTTTCACACATTTTTCCAAAATTTTCCTATTCTAACTTTTTTTACTTAAAATTGAAAACCTAAACACCTTCTCCCTCATAGAAAACCTAAACACCTTCTCCCTCAATCAGTCGCATCTCTAGCTTTGTCGCTCACTCTTTCACTCATGATTCTAGCTCAGTTGCCCACTCCGTCACGTGTCACTCTATTACTCCGTCGTAGGCAGCCCTATCATTCGTCGGAGTTGTTCGCAACTTTTAGGAGCTTCCACTTCCGATTGTTTTCCTAACATTTCACTTTCGATTTGCTTGCACTCATGATCATGGCAGGAAACATGTCTGATCCAAGTGGGAGCAAGGGTGCAAATATTTTCATTGTATCTTCTTCCTTGTTTTGAAAAAATTATGGAAAACGCCCTTACATTACCATGATTTTTCTACAAAACTTCTGTTAATAAGGATAGTTCTGAGAAGTTAGAAGGGACATTCTCATTGTCAATTATGCCTGATCGGTTTGTATTTTACTTGGAAGGACATGCTCCTAGAGTTGACCTGCCCATAAGATCAGTAGAGATAAGCTGGTCCACTCCAAATAATAATGTTATAAAAGACTCCAATGGTGGCAACCTTGTTGATATGGAGCCTAGGATGCACAGTTTTGGAAATGGCTACAACTAAACCTCATTGGAGTCAGCATGAAAGGGTTAGTAATTTATGTATGTCAATATATTGGAAGTTTTAGCTAGCTTTTTTATATTTTGTTTCCC +>XM_043838092.1 PREDICTED: Telopea speciosissima uncharacterized LOC122644689 (LOC122644689), transcript variant X2, mRNA +TCTTCTTAGCTCTTTTTGGAGTCTGTAAAGTTGAGGCATGGGAGTAAAGGTTGCCGCGACCTGTTTACAATGGTCGCAGCCAGTAGCTTCACACTCTCCTTCATCGGCTCAGACGCTAGCCTCTGCAATTTCATCTCCTTCGACGAAAAAACAGAGAGGAGGCGATCGAGTTCTTGTATGCCGATTCGTCCATAAATTGGCTTTCTTGGGAACGTCATCGACGAAGCTTTTGAGATCTCGATCTTGCGATAATCTGAAGTCTAGAGGCCAATTCCTCAGGCGAGCTTGCAGCGCCAACTTAGATGGATACCCTGACGAAGAGTTCACGGAAAATACTCGGGAATTAGCACAGAGGTTCGATCTTTTAAGCGATGGTGATGAAGAACAGAACAATAATTACGACGCGGAGGATGTAGAATTGGATAATTCTGCTGTTGATTCCGGGGAAAAACAAGGCGAGAGCAGCAGCAGGAACATCGACAATTGCAGCACAAATTCGGTACGAATATCCAGTTCTTTTCAGCCACCGAAGCTGGAGTGTGTGCAGCCTCCATGGCTTCATGTCAAGCCGGAACCACCAGACTGGCCAGGAAGGGATGAGATTGATCAGGCGAGTATAGAACGAAAGGCAAATAGCGTGGACCTTCCCTTATCTCTTAGAATGATAAAGAAGAAGATGCAATGGCAAGAAGGTTTCAGACAAGCAGGGGAATCTGCCTACTGCTCGATGAAGAAGGCCTTCTCGTCGATGGTGTTTATCATTCGTGAGCTTCAATGCTACACGTTGCATATGCGAGAGATTCTCTTCTACGAAGACCTCCAAGGTATCCTGGCACGAGTACAGATGGAGATGCACGCCTCATTTGTTTGGCTTTTCCAACAGGTCTTCTCACACACGCCCACTCTAATGGTCTACGTGATGATCCTTCTTGCCAATTTCACCGTGTATTCGATGGGAAACAACGCAGCAATCGCAGCTCCGCCACCGGCGTCGGCTGCCACGGAGATCGTATCGGTGAATGAAAACCAACCCAAGAGTTTTGATTCTTCTTCGGTAATGAACACGTTTTCAGTTTCGTCTTCGACCGGGAAAACGGCCTTCGTGGGAGGACACAATGGCGGCGGCGGTGGAAAGTTCCGGCGTGTGATGAGTGGGACTGAGGGAGATGGACCTTCCGATAGTTCGTCATCGTCATGGAACTATCAGTCTCTGTCTCATCAGGTATCGTCGTTTGGGAACCCCAACCCCACGACGACGGAGGGAGCAGAGTCGGAGTCGGCATCGGTGGTAGAGGCAAATCCGGATGGTTTTGTTGGAGGAGTAAGGAGCGAGGAAGAAATGAAACTGTGGAATTCGATGGTGGATGAAGCTATGAGAATGCAATCGGAGGTGAGGGACGAGTCTCTCGATATCCACACGATAACAAATTTCGTTTCTCCGATAAAGGCAAACATTGAAGAGGAGGACCAATCTGATTACTTGAGGACGGAGCTTCTGTATAAGACGGCCGTGTCTCAAGAGCCCAACAACCCTTTGCTACTTGCGAATTACGCGCAGTTCCTATACGTCGTCTTACACGATCATGACAGAGCGGAGGATTACTTCAAGAGGGCAATAGAGGTGGGGAAGAAAGGAGGAGGAGGAGGAGATGCAGAGGCGTGGAGTAAATATGCAACATTCCTGTGGCTGGTGAAGAAGGATATAGAGGCGGCTGAGGAGACATATTTAGAGGCGCTAGCGGCGGAGCCAGGGAACACGTACTACGCCGCTACCTACGCTCATTTCTTGTGGAACACTGGTGGAGAGGACACTTGTTATCCTCTCGACTCCCCCGACAACGACTTCGACAATATGGTTTAACAAGAAATAGG +>AY015863.1 Lepidium latifolium chloroplast tRNA-Leu (trnL) gene, intron sequence +TTKAKCCTTGGTATGGAAACCTACTAAGTKATAACTTTYAAATTCAGAGAAACCCTGGAATTAACAATGGGCAATCCTGAGCCAAATCCTGGTTTACGCGAACAAACCGGAGTTTAAAAACGAGAAAAAAGGGATAGGTGCAGAGACTCAATGGAAGCTATTCTAACAAATGGAGTTCACTACCTTGTGTTGATATTGTGTTGATAAAGGAATCCTTCGATCGAAACTTCAAATCAAAAAGGATGAAGGAGAAAAACCTATATTTAGACAATATAGGTAACACAAAAGATCTCAAAAATGACGACCTGAATCTCGATTTCTATTTATTTATAAACAAAATAGGAATGTTGTGAATCAATTCGAAGTTTAAGAAAAAATCAACTATTCAGTGATCAAATGATTCACTTCATAGTCTGATAGATCCTTGGTGGAACTTATTAATTGGACGAGAATAAAGATAGAGTCCCATTCTACATGTCAATACTGACAACAATGAAATTTATAGTAAGATVAAAATCCG +>XM_014048373.1 Monoraphidium neglectum hypothetical protein mRNA +ATGGAGGCAGCCTTGCGACAGCTGCTGTCATGCGTCGACAGCGGCCGCCGCGACGCCGCCAGCGCGGCGCTCGTGAGGCTGCAGCACGCGTGCCGCGCAGCCGCAGAAACTGGCTGCGCCGCGGCGGTTGAGGTGCCCGGCGAGCGCTCCTTGGACCGACTGCTGCGGCACCTGTCCTTGGCCGGCGGCAGCGCGCGGGCGACCAAAGCGGACTTCAACACATCCCTGACCGCCAACCGGGCGCTCCTGATCCTGCTGAACGTGCGAGCAGTGGCGGACGCCTTTCTGACGGAGGGTCGCGTGGCCGCCCTGGTCGACACACTCGAGGCGCTCGATGGCGGCGAGGAGGGCGGCAGCGGCGGCCGCGAGGGCATCTCGGAATTGCGGCTGTGGCTGCTGACCGCGAATCTGGCAGCCGCGGCGCTGCACTTAGGTCTTCAACGCAACGGGCCCACGGGTGGCGACGTCGACGGCGGCGGCGGCCCCATCAACCCCGCGCAGCTCGCCCTGGCTGGAGTCATTGCGCGGCCGGCTGCCGTGCGCGTGCTTGTGCGGGCGGCGCACACGCAGCTGTCATCAGAGCTGTCTGCAGGGGACCTTCTATCGCCGCTTGAGCAGGCATTCTTGGCTGCAGCTTTCTTGCGAGAGCGGGCTACGCCAGCCCCCCACGACACGCCGTCAGGGCCCTCGTCCTGCGCCGCTGACCTGTTTGCCGCAGCGCGCGCGGCGTGGCAGGGCGCCGACGCCAATTGGCTCTGCGAGGCGCTGCCGCCGCTGCTGGCGATGCGACTGGAGGAGGCCAGGCAGCGGCAAGGGACAGGGCCCGGCGGAGAGGCGCTTGAGCCGCACGCTGCTCTGTTCGTGGCCTTGCACTTGTGCGCCGTGGTCGGTCCCCTGAGCAGGGCCCTGTCTTTGCACGCGGCCGCCATGCGCGCGGTCGCAGCGTGCATTTGTCGGAGCGGAGACATCCGCCTGGCCAGGTCATCGTTGGTCATCCTGACCGGCGCGCTCGACGCCTGGCCCTGGGGCCACGAGGGCGCCGGCACAGCGCTCGCGGCTTGCTGCCAACCCGACACTCTCGGGGAGCTGCTGCGCACAGCCGCCCTTCGCGGCACCCGCGGCGGCAGCGGGGTGGCGGCCGGCACGCCGGCGAACCAGGAGATGTTTCCGACTGTAACGGATGGTGGTTGTGCAGCGCAGCTGCTGGCATCGATCGCGGCCCACGAGGCGCTGTCCACGCGGCCATCCAGCATTGCTGCAGTGCCAGCGACCGCGGCTGCGGCGGTGGCGAGCCTGCGCAATTGGCTAGAAGTGGACGGCGCGCAGATGGCTTATGGCAACATGCCGCGACTCCATCAAGTCTGTGTGATGGTGCTCAGCGTTGTTGCTGGCGGCGGCGCCGATGGCGACGCATGGGCGGCCACGTTGTTGCGCCTCGGAGCGCGGCAGCTGCTGATGCGCGCCGCGGCCGAGCTAGGGCCAAGGGCACCCGAGTGGTCGGCGGCCGCATCAGCAGCACTTTACGCCGTCACACACGCAGCGCACGCATCACATCAGCAGCAGCAGCAGCAGCCTGCACAAGGCGGCACCACCAGCGGGCTTGAGGAAGGTGAGGAGGAGCAGGGCGCTGTCGCCGCCTTGGTGGATGCTGGGGTTTACGCGGTCCCGCAACTGCTCTTGCTGGCGGCCCTGCGTCCCGGCTGGCGGTCCTGGCTGATCCAGGAGCCAGACATACTGGAGCTGCTGTCGGCCGTGGCGGCTGCCCCTGACCAGGGCGAGTACAGCCACAAGGCCCTCCGCACCCTCTGCCTGCTGGCTGCGGGCGCGGCGCCGTCGGAGCGCCTGCCAAACTTTGCGCGGGCTGTGCTGGAGGTGTGCAATGAGCGGCCGGCGGACGTGTGGGCCGGAGTCCCTGAGCTGGACAGCGATGGCGGGGCCGTGGAGGAGGTGTTGGGGTGCCTTGCGGGCTGCCATGAGGCAGGCAGCAGTGTGGGTGAGCGCGCTGCCCTGGCTCTGACCCAGCTGAGGATCGGCAAGCTTGGGTTGGTGCAGCCCCCATCGCAACAGCAGCAGCAGCAGCAGGAGGAGGAGGAGCAAGACGTGCAGCAGCAACAGCAGCAGCACCAGCCGCGGCCACAGCCGCAACAGCACCAGCAGGAGGACAAGCCAAGCATGCAGCAGGCGCCAAACACAGGACATGCAGGGGCTATGAGAACGGCGCGCCCACATAGTGCATGCGCTGTCTGCGGCAGGACGGCGCGAGAAGGCGCCAAACTGCGGCGCTGTGCCGGCTGTGGCCGTGTCACGGGGACGCGGTACTGCAGCCAGGAGTGCTGCAGGACGGACTGGGTGGTGAGGGGGCACCGCGCGGTGTGCGAGGCGGCGCGGCGGGGCCAGGAGCCGTGA +>XM_031652239.1 PREDICTED: Papio anubis mab-21 like 3 (MAB21L3), transcript variant X1, mRNA +TGCAGATATTCTTTAGTATTTAAAAATGAGCAAATAAACAAAATGAGGCAAATAAATGAAGAAAATGAGTTTCTGAGGCACTGCTTAAGTGACCATAAATCAGACACATATTTTTATGGTGGGCAAATTGATGAAGATACTTTTAGTAGGCGATTTATATTCATAACAAATACATATTGAAATAATGTCACTACTGTATCAGAATTAAGAAACAGCCTCGCATTAGGACTTCTCCGTACAAATTCTTTATCATTGGTTCTTAAATTGGAAAAGTACCTATAAATGATTACATTTTTTAACTAAATAAAATGCAGATATTTTGGCTTCTTGTGAATTTAATAAAGAATCATAAAACATAGGCCTTTTTTTTGTTCTCCCAGAATGTCTCAAAAGCTACAGTAGTAGCTTTGACAAGTTGGGCAAATGCAGAACCTGCTAATGAGTTAAGTAATATGTGGACAGGGGTTGTAGCAAAGTTGTAGACTGATGGACACAAAAGTTAACTATCCAAATACTTCTAGAATGAGGAAAATGCAAAGACAGTGCATTGTGGAAAATCCATCAATGTAGAATATCAAAGGAGAAAGAGCTTATGATTACCTCAATAGAAAAATAAACATTATTTGACAACATTCAACATACATTCAAAATAAAAGCTATTAGTAGAGTAGGAATAAAAGGATGCTTCCTTAATAAAATAAGAGATACTATAGTAGATATGGTAAATTGGCACACAGCATCTCTTCACCTTCCTGGTACCTTGGCCTTTAGCCTTTTTTTTTTTATCATAACCCACAGTAAGAAATGTGTTTTATATATTCATCCTGTCATACTTCCCCACTTACAAATATATATGTACATATAAAATATCTATGAATCATAAAAATGTGTATATTTTATGCAATAATACTTAATCTTGCTAGGTACACTAATAACTTATGTTCTATTTCACTTTTTAAAATGCCATTTATGACTCAATAAATGGATATCATGACCCGCTAATAGGTTCCAACCCATAGTTTGAAATCCACTGTTCTACTCTATCTTCTTGTACTACAGAAGCTTTGAAGCTAAAATGTACATTTTCTGAATTTCTTGCAGATAAGTTTACCCTTTGCAGCCAGGTGAAGTTTTGTTTCCTTCAATCAGATACAAATGGAACTTGGAAGGTAGAAGCAAGGTGGAGGCCATACTTTTGATGAGTCTGCATTTTTCTTCACAGTGGTGGAGCCATTTGGTTTTTTTGAGGCAGTATCAGCCAGAGATGTTGTCAGTTGAGCAATAAGATCTTAAGATGTTTTGATAAACCTGGAGTAATACTTCTAGTATTCAAATGGAAAAGCAAAGATCCAAAAATATTCAAGACAACTCTGATAAAGAAGAGCACACAGAAGCTCTGAAGTCAGACTACGAAATGAGTCCTAAGGGGCCTGAATGAAGATGTCAGCAGAGCTGGTTTCTGGATTCCTTTTCTGCAATAAAAGAGGAATGCCTGTAATCTGCCTTCTCCTCCCACTTTTCTGAAGAATCCCTGGAGCAAAATTGGGGAGGAGGCCGTAGCCTCCTTGTGGGAGGAGTTGGAGAGACTACATGATAAAACAACTTTCTGACCCTAGACAAAAGACCTTCTCTCTTCTGTTTTTGGAATCGTTTTGGAAGGATGACAGATGGATTTTCACAATTTGGAAATAAAAACATGAGTGAAGGGTTCAGAAGGCAAGTCTCTGGTCCATTACACACTTCCAGAAAAATTTAGTACCCAGAGACTCACATTACTGGGAGTGCTGTTTACTCACAAGTGTTGCACTCCATTGAGAAAAAAAAAAAAAACCAGGAAGTTGCTGTTCTACTCAGGACTGACCAAGAAGCCATGAAATCCCTTACTGTGGGAGGCTTAGAAGATTGCCTACTGAATAAGGTGGACTTGAGGCGCCAGCAGATTTCCCAGGCTATGGAGGAGGTGCAGAAAGTCGTTCATCATTTGACCACAAACATCAGCAACCAAGACATTAGATTTCAAACTGTGCCTTACTCTGACACATACAATGAAAATATTAAGGTTTTGGCCCCCAGTCAGTTCCTTGTCACAGTCCCAATAAAAGGCCTGGCTGGCTACAGGGAGGCCAGGGAGCAGCGCTGGAGGTACTACACCCTGCAGGGCACCAGGCTGCCCTGCCCGTTGCGGGACCCTGAGGGTCTGCAGCAGTGGCTGGAGGTGGAACAGTTTATGAAGAGCCTGTGGCAGTGGCATGAGACAGACGTGAACATCGACGGAGACATTGTGCCCGCTAAGGTCCTCCTGGTGTTCCGGAAGCTGGTGGAAAACGCAATTAGAACCTGTCACCTCTCAGGTAAGGTCAGCATGCTAGGAAACCGCTCTGCAGTTTGGATTGCTGTGGAAACATCTGCATATCAGGTGGAATTGGAGCTGGCCCCCGCGGTGGAGATCCCCACCACCTGGTCCGAGAAAGCCCGGTGGCCTCGATGTCTGCAGCGCTGGCCTTCCCAAGAGAGAGTGGAGTGCATCAAGTCGTTTGGGTTTAACTTGTTGCCCTGTTCAAATTATCACTGGCAGCTGAGCTTCCTCCGTGCTGAGCAGGTGTTGCTAGAACAGCTGGATGAGGATGGGGGCTGCCGTAGGAAGTGTTTTCAGGTCATGAGGCAGCTGAAGGAGGACGTGTGGTGCCCAGGGAACAGGCCGGTCATCACGTCCCACCATCTGCAGACGGTGCTCTTTTGGACCTGCGAGAAATATCCCCACTTTAAAGACTGGAAGGTCTTCAGCAAAGCGTTTCTGCGCCTGGTGAGGAAATTGCACAAGTGTGTGAGCCAGCACTTCCTGAAACACTATTTCGTCCGGAACAGCAACCTCTTTCAGTGCACCAACCCGATCGAACTGGACGCTGTGGCCCAAAAACTGGCCACCTTCCTGAAGAAGCCCCAGATCAGCCCGCCCTGATGGCTGCCCCAGCCTGGGAGGCTCTTGGACATTTTATTCTGGCTTAACCTTGTTCTTTGGATGGTTCCTAAGTCAGGTGCCAGGATCCTGCCTAGGAGAAAGGCCATGAATGGCAGCGGAAATTACATCAAACCAGTAACACTTCAGCAGGGAGGGAGGAAACTGTGCCCCAGGCTGTCTGGCCCAGGCCTCCCTGGAGCCCAGCAAGCATTTCCACCCTAGCTACCTCTCCTGGAGACGGCTCTCATCAGGCTGCCTCAGGCACAGATTTGGAACTGGTGACAGTTCTGAACTTAGTTTCCCTTGTTCAGGCTCTGATCGCCTCACAGTGAAGATGGAGACGGAACCCCTGGAAGACATGAGCCTGCTGGCCAATACTGTGCCCAGCCCACCGATCATGGGTGCATTCTCCTGCCATTTGTAAAATGGGAATGTTAACGTGCCTACCTCTGAGCAGGGCTGTGTGTCTATGAGACTGTGCTGGCGCCTTTTCAAGGGGAAGACATTGGATCAACACAAAGTGTTCCTGGTTGGTTGAGCAGCTGGTGTTTGCATCCTGGATCGGTACCCACAGCACTGACGCAAAATTGCACCTGTTGAGTTAGCGAGCCTGTGCTTCCTTGCTGCCCTCCAGCTTCCTTAGCATGTGGGTCAGTGGCTCCTGAGGTTCTGTCTGCTTCTCTGGTATTCTCTAAGCAGGGACGGGAGTGGTTTTGATGACAAGTTTAAGTCAAAGATGAAAGCACAGCTGTTGGCCTGATCCCAACCGCAGCCCTCTCTTTGCTTCCCAGGCCATAGGCCATGGATGGAACTTCCTTATATATTTATGTAAATAACCTAGTACCATGATCTGCATGGAGTGACCTTAGGTGTCTGTCACCACTCATTGTGTTCCTTTGCTCACTTCATTCACTCACTCACTCATTGACAAATAATGCTCATTAGGCACCGGGAACACAGCAAAGAGCAAAGTGGATGAGGACCTCCCCCTGGGGATGCCGCCTAATGGTGGAGACAAGAAATGAACAACGGATAAACATGCACAGTTATTACAGATGGAAGCAAATGCTCCGAAGGAAATAAACAGAATGTTGAAGTAGAGTCCACAGAAGGGTCCCCAAAGGATGAAAATGCAAATAGCTGAAGGGGAAGGAAAAGTGACCAAAGGCAGGCCTGGCAGAGCTGGCATGAGTCAGAGCACCTGGCCTTGTAAAGCCAGGAAGGAATCAGTATTTTATTCTAAGATCAAAGGTGTGACATTTGGCCTCTGCAGAAGCGGAGGAGTATCACCATCTGACTGCATTTTAAACAATTGTTCTGGTAACTGCATGAAGAAGGTCTGGGGACTCACACGTGAGCCAGGAGCTCTTGAGCCACCCATTTGGAATTTCACAGAGGCCCACAAGGCAGCATATTCTGTGTAGCACAACTGATCAGGATTTCTAGGAGTTCTCGGTGAGATCAATGGTTTTTTTCTGGCGTTTACGTAATGCTTCTCAACTCAAGGGGCTCCTTTATTACTTTGGAATGTTTTTGCCCAAATATCTATACCAAAGATAAATTTCTAAAACATGAGCTACTGGTTTTGTTTTGATGAAAATTCACATTTGAAAATAAAAATGATTATTTTTCAAAAGTACTGTAACCAAATGGTGGGGTCCCTAGGCTATCGCATAACAAATAATGATTTTTAAAATATTGAAAACAAGTATTTCCAAACCAACAATGAGTTTACAATTTTTGAAAACATAAAGGCCTGGTGCAGTGGCTCATGCCTGTAACCCCAGCTCTGTGGGAGGCTGAGACAGGAGGGTCACTTGAGACCA +>XM_033668712.1 Dothidotthia symphoricarpi CBS 119687 RTA1-domain-containing protein (P153DRAFT_369234), mRNA +GATATCGACCATGAACATGAGACTCCGGAAAAGGTAAGATAGACGAATGCGAATGTAGAAACAACCAATGCGAGATTGTCAGACTTTGTCTACTCCATCGTTGGAATGTATTTAAGATGCTTTCTCACCTCCTTACTTTCCATGCACAGCTTCTCTTCCTGACGACGTACTGTATCCACTACTTCTACACTTGATCTTTAGTGTTTCATACACTCTCCACCGTTCCTAGTCTTTGGTACTATTCAAGCTGCAAGATGGCCAATCCTCCCAGCAGCAAATATTTTGACTGGAAGATGTACCGTTACGTCCCGTCCCTTGTCGGCGCAATAATTGCTATGATCATCTTCCTTATAATGGCTCTATTGCATTTCTGGCAGTTCCTAAAGCTTCGGAACTATATTGTCATCTTTGTGGTCATAGGAGCTATGTGCGAGGTTGGAGGGTTTGCAGCTCGAATTGGATCCCACTACGACAACGAAGAATGGGCAGCATACATCATTCAGGGTGTTCTACTCCTCGTTGGACCCCTATTCTATGCCGCGACAACTTATATGATGCTCGGAAGAACCATCCTACTCGCTGGGGGAGAAGATGTCTCTCTCATCAAACCAAAATGGTACACTCGCATCTTTGTCGCAGCAGATGTTAGCACTCTCATCATTCAAGGCCTTGGTGCCAGCATCATGGGCACCATGAAATTGAATCTCGCAATCGCAGGCGAGAAAGTAGTCATCGCTGGTCTCGCTCTCCAAGTCTTCACCTTCGTTGTCTTCCTCGTCGCGTCCGTCGATTTCCAGATCCGCATGAATCGCAAAGTCAACAACTACACGGCCACCGAAGATCTCTCGAACAACTGGAGAAAGATGCTTTGGATTTTGTATAGCGTCAGCACGCTCATTCTCTTCCGCTGTACTCTTCGCTTGATCGAGTATGCTATGGGTAACTCCGGCTATCTGATCGCGCATGAGTGGGCGCTGTATGCATTTGATGCTGTACCGATGTTCTTGGTGTTGATGCTGCTGCTGGTTCTGCAGCCGTCAAAGTATGTCCCGCAAAGTGACAGCAAGAAAGAGCACGGGAGTGATGAGGAGGTGGGAGTCGCGCAGAGTCAGTGACAGATCTATGCATGTTATGCTTATGCAAACTTTTAATATTGCTAGGGAAAAGGGTATTCTCATATTTCCTCAGTAGGAGTT +>XR_003329731.1 PREDICTED: Papaver somniferum uncharacterized LOC113287130 (LOC113287130), transcript variant X3, ncRNA +GCGAGAAGATAAAACCAGACATTCTCCCTCAAACCCCAAAAAGGAGGTTCCCCTACTACCAAAATCACCAGAGACTAATCTCTTCTTCTCGTCGTCTCTTGGATTGTGTATGCATTCATACTTATAAAGATGCTATTGAGGAGCATCAAACATTTATAGTAAGCAAGATTAATTTTGAAGAACACCGCCTACCTGCAGGTGGTTAAGGATCACAGTAATCATTGTTTGAGTCGTCAATTCGTGTTTGACGATGAGAGTGAAAAAGCTAATGCTGGCGCATTTACCAATTTGGAAGCGCTCAACTTTTTACGAGCTAGAGGAGCCTCAACAGATCCTACGAGTAGTTTCTCCTGTTTCTCCTTTTGAGTACCAGGTTTATGATTATTTGGTCAAAATTGCTGCTTATAGTCAAAGTACAAACACAAGAGAGTATCAATGAGTTCTTGAAGAGCTGTGAGAAATACAAACTTGCAAAAGCGGAGAAGCTCAACATCATTAAAACATTAGGCCGTCAACTCAAGAGGAAATTGACCCGGTATGTTTACTTTCAAAATCCCCTTTCAGTTCTTATTATATGTTTATTATTAATCATTGTTAGACACTCTTCTTTACGTATTAGCGTCCATAAATGACATCGTGCTTGTTTTGGTTTTCCTTTGTATTGACTAAATAAGGCATTTCAGAATTCTCTTGTGCATGCTGTAATTGTCAGGCTTAGTATAGACAGGAATAAATGAATAGAAATTCTTATGATCTGTCTACAGTTTTAACTGTTTCAAGATTCACTATCTCAGGAATTGGTGTGCAGACACTTCCACGCCTCCCAAATGTGTTTAAAATCTTGTTCCTTTATGCTTTAAAGTTAGTGTATCATCTAAATCTTTGTTAACCAATTTTAGATTTATGAACTCTTCTTGACGACCTCACCAGTCCCTGGGGTCTATATATTGTTTGAAATATGACCTAGTAGGCATGATTGTCTGAACCCTTACTTTTATCAAAATTGGCAATAAACGAGAGATCTTAAGATTCATCAATCTGGTAGCGAGACAACATAGATGATTGCCTCTCAATTGCGGAATCATAATTGTTCAGCATGTGTAGGCTAAATATGTTATACCTTCTGATTATATTAGATACCTTAAAACTTCCCACTTCCTAGATTCTTCTGCTTTTTAGCGTCTTTGAATTTATAGGCTCTGGCAAGATGTTTTCCATTGAGCAGATTATTGAAGAGTGTCAGAAATGCTTGGGAGATGAAGAAGTTGAAGAGTTGGTGGAGCTGATATCAAATTTATTTTGTCCACCACTCTGAAGGTACAGATGAGGGTAAAGGAATTCTTGATGGTTTCTGAATGGAAGGTAAAGATGATGTCAAAGGAGCTCCAGATGAGGAAGATACAGAAGGATTTTTTGACGGCTTTCTACTGAAAGATATAGATGCGGGTATAGAACTATAAATCTCTATCAACTTTATGGGAACTCTAAACGATCAACCAACTGCTATCTTTCTCAACCTTTTCATGTCATCTGTCTTGGTATTAAGAGGCAGAAATCTTTGTGAATTGAGACCTGAATTAACTGAACTTGTGCAAAAATATTCTATTCTTCATGTGAGCAGTTTCAGTCCAATTATGAGACCTGAATTAACTTGTGCAAAAATATTCTATTCTTCATAGGGAGGAATGTTTACATTCTGACGACAATGGATCAGAATGGTCAAGGACGCAAGAGCGGTGAACAGGATAAACTTTGGGAATTTGTTGATCCCATTGATAATCTTTTTCAAATCCCATCCGGAGTCATTCAGGTGTTACCTGACTTGCCCATGATTTGGGAGAATAATGTTCTTGTTCAAGGCATGTGGAGCAGCGAATGAAACCTAGAATGGATGCATGCAATTCATGATTTCCTTAAACCCTACAAACCCCTTCTCAACTCTCACGTCATCTATTTCTTCACTGATAAACTTTGGAAATGCATGTTGATCAACAACGTCTTCATCATGACCCCATTGCAAATGTTTCTTCAAATTTTGAATCTGAGCTTGGGGTATGGATGCAGTTGAATTCAATCTTGTGTAGG +>XM_053220790.1 PREDICTED: Acinonyx jubatus zona pellucida like domain containing 1 (LOC106972235), transcript variant X3, mRNA +GAGACAGAGAGACAGAGAGAGCGTGAGCCGGGGAGGGGCAGAGAGAGAGGGAAACAGAATCCAAAGCAGGCTCCAGGGTCCCAGCTGTCAGCACAGAACCCGATGCATGGCTTGAACTCACAGACGAGATCGTGACCTGAGTGGAAGTCGGACGCTTAACAGACTGAGCCACTCAGATGCCCCTTATATTTCATTTTCTTAATGATGTCTTTTTTTTTTTTATAGTGAATGGTGTCTTTTGAAGTGCAAAGCTTTTAAGGTTTTATGAAGTCCAATTTATCAATATTTTCTTTTATGGATAGTGCTTTTGATATCATACTAAGAAATCTTTGTTTTCCTTAACCCAGGTCATAAAGATTCTCTCCTATGTTTTCTTCTACAAGTTGTATAGTTTTAATTCTTTACTATTTTGAAGGAGAGATAGAGAGACAGAGTGTGAGCAGGGGAGGGGCAGAGAGGGGGCAGAGATAGAGAGGGAGATACAGAATCCGAAGCAGGCTCCACACTCTGAGCTGTCAGCACAAAGCCTGGCCCCAGGCTCGAACTCATGGGCTGCAAGATCATGACCTGAGCCGAAGTCAGACACTTAACAGACTGAGCCACCCAAGCACCCCTTAATGCTTACATTTGGTAAGGGATTTTTGGTCTATGATTCACGTGGAGTTAATTTTTGTGTATGGTGTAAAGTAAGCGTCTAAATCCTTTTCCTTATGGGTATCTAGTTGTCTCAGCAGCATATGTTGAAAAGATGGCTCGTGTAATTGTTGACTCTGCTTTTACTACATTTGTGTCTTTAAAGAAAAGCTGAAGTAAGTAGGGCATAGAGAATTAATGTATTAATGAAGATGAAGAGATTCTTCTGTGTTGAGGTTTTAAGCACTTACATTAGATAAGGAACATCTGGTTGATGTTTTAAAGAATAACTCGAACCATAATTTCATTTCGTTTCCTTCGTCTCCCCCATTCCCTCCCCAGCTCTCCACTGAACATCTGCTTCTCTTATGTGAGGGGAAGTGAAAGATTTAGGTCAGGCATAAACACAAACTATCTTTACTGTATTGTTCCCTTTTAAGACCAAAATACCCACCCTGCCGGGCCAGTTTAGCACTACATTACCCTATATCAACAGATCTACTGCAATTTTTGGAAGCTGGCTTTCCCCAGGAAACAGAACTGCTATTGTTACTTCTCGGTGTTATGTAATAAATCTGGTGGGTCACTTTCAAGGATGTGAACAGGAATCGAGAAACACTGTCCTTCAAATATCACTTTTCTTTATGTTAGCTTTATTGATGAATTTCTCACAAGAAGTATCTTAAGAGACATCACTAGTGTTGTGAGCCCTCCGCATCCAGATCTCACATGTATCTATGGTGCTGGCTAGAGGTAACCCCAAATAAAAACAGTTTCCGTTGACTTCTGGCTTCACTGATGCAAGATAGCAAGACCTTGGGGAAGTCTATCTCCCCAAAATACCATCCATTTTGCTATCTTAAATCTTTGCAAAGAACAGGATGATTACATTTTCCTCTCTGGGAATTTACTGAGTTCCTCTGTTTTATGGCACTGACCTAGCAGCTCTAATTGGGGCACTCTTCTACCCGTGGCTTTGCTAAAAATCCCTCACAATCAGGACTGCAGTGTAATAATAATAATAATAATAATATAATGCAATAGCTCATATGTGTATAGCACTTATTATGCACCAGACCTTCTTTTCTTGCCTTACATATATTAACTCATTTAACTGTTCCCTGGAGGCGTACATTAAAGCTGGCATTGCTGGAGGGTAATGAGTATAGAAGCAATTTAGTGTTTGGAGTATGATAAACTTCCATAAAATAGAAGGAAAGCCTTGAGATGATGCCTCAGGGATAAAATTGAACAGCCTGGTCCTTTTTGGGGTCTCATAATTTTTTCAGCTGTAGAACTCATTTGAGGGAAAAGTAACAGGTAGGAAACATTGGTTTTCATCACCTCGCTTTGGTTAGACATATGCTTTGGATATTCTTCCTCAAGCACCTTCAGAATCCCCATCCACTTCCATGTCTAGGCACTCACTTCAGTAGCCTGGCTCTGGGCCACTCTAGGGCTATCCAGCCTTCTCATTGTGAGGCTGGGTCCCTGTTGGTGCTTTCCTGTCCTGTGTTTCATTGTGGGAGCCGTTTGCTGGGAAGGGGCAGTTTCACCAACAAGGAGGAGGTCTTTTAAAATTCTAGCTCACTGTTGATCAGAACCAGGAATTTCCCTTAGTTTAAGATTTAGTTAGTAGACAGGGGCTCCTGGGTGGCTCTGTTGGCTGAGTGTTCGACTCTTGATCTCAGCTCAGGTCTTAATCTCACAATTTAGTTAGTACACAAACATTCTGGCTTTCTCTAAGTTTTTAGCCAGTTTTTTACATTTTAGTAGAAGATTCAGGAACACGTTTCTTGGGAGGAAAGAAAAGAAGAGGAGAGATTCTGGGGGCATAGCAAGGGGGAACAAAGAAGGGAAGAAAAGTTGGAGAGCCTCTGTGTACCTCAAAATTTTGCCGAGGGCCTTGCCTTGACAGTGGGGTGCAGATAGGTCCTTCATTGCTGTCCCCCAAATCTCACCAGCACTGTAACAGTGGCCTTCTATGAGTTGTGCACTCACCTTTGTCATCTGACACAGGGGAATGACTCAAATGGTTGGAACGTTCAGACAGGTAAGAAAGGAGACAGGTTATTACAGATGGGGGTGGGGAACTTGTTTTGGACAGGTAGTTCCTGGTGGCATCAGGGAAAACATGCCTTAGGTGGCTCTCTCTGACTGATACATTGACTGATCCTGCTAAGTCAGGAACATGACCAAGATGGCCTTATTTTCCTCAGCTTGACTAAACTTTAGACAGGTTTCTTAGTGACAATAGGTCACTGACCTCCCTTGTCTTAGAGCATTTACTTTAGAAAACTTACAATTGTAAATTCTTTATTTGCCCATCTGAGATGTAAATCTTTTCCTAGCCTCTTGCCCCTTTTACAACTGAGAACCATCTGTTTCAGAGACCTGGGAGACATCTTTTGAAATATTATCATCAAGAAAGGTAGCATCCAGGTCTCCCAGTTTCTGTAGGAGGGTAGGAACCTAGACTGGTGTCAGCAAACACAGATGGCCTAATCACATTGACCAAACTAATGTCCTCCAGTACTTTTCAACTAGCTAACCTCGGCCCTTAGAAACCTTCCTGCTTTTTTTTGTTTCTAGGGAAGTTAAGTTCTCTCTCCCCTTGAAGAAGACTTGAATTATGTCTTCTTCTTTTTCAGCCAAACTCTGTTCTGTGAAATTTTTCTTTGACATACAGACACTTGTGCAATATTTTATCTAAACTGACTCTCAGTGTGTTTGGAAAGCCATTAACCAAGAAGACAGGATAACTTTATCATGGTGCACTGTTTTCTGGACTCATTATTGGGGGTCTGACACCCACAGCATTTCATATGCTATTAATCACCTCCTCCAATAAACCCAAAACCCAAACCAGAATGCTTCTCATATTTCTTTGCCATAAGATACCTTATATATACACACGTATGAAAAGTATACATGCACAATGTTATATAGACAGACACACACAATTAGTAATAGCTATCATTTTTTTGTAGGTCTACTGTGTACTTTGTATACATACACATAGTACTTCATACATATTTCCTCATTTGATCCTTACATCATTTCTATGAATCAGGTATCATTTATCTCAAGATGAGGAAGCCAAGGCTGAGAGAGTGAAGTGACTACTTCAAATTGCTGTCAGAAGTGGGATTTGAACCCAGTCAATCAGTCTACAAATCATGATATCAGGTTTCCAATTGTCTTTCAAAGATTCACTGAGCTACCTTGTTAGGATTCTGGTCCAGAGGGAAACCTGTATTTCCAGAAGGAATTAAGGAAGAACTTCTGTCACTGTCCCTTCATCCCTCCTCCCAGAAGCATTATAGAAGATTTTACTATTCCTTAGAGAACTTCATCTCAAAGTGTGTCCCAACTCTCACCTGTCACCTGTAATTTCTGCTTTGGGGTCTAGCCCCAAATCTTGAGGAAGACATTTTTTTTTCCAGTTAATTCATTTTTGAGAGAGAGACAGAGTGTGAGCAGGGGAGGGGCAGAGAGAGAGGAAGACACGGAATCGGAAGCAGGCTCCAGGCTCTGAGCTGTCAGCACAGAGCCCCACATGGGGCTCAAACCCAAGAACCACGAGATCATGCTCTGAGCCCAAGTCATCCGCTTAACTGACTGAGGCACCCATATGCCCCTTGAGGCAGCCATTCTGATCTTCATTTCAGGGTTGCTCTGACAAGGATAGTTGGGGATCTGCCCTGGTGCTTCCAGCACAGAGGATATATTCCTTCAGTGGACAGAGAAGATGGTAGCAACTTCCTCTCTGAGTCACGCATATTGTCTGTCATTCTGTCAACCATCTGTCCTATTAGCCACGCTTGGGTGATGAATAGAAAGAACTCAACGTACTGTGAGGTTACTAGGTTACAGCTTGTGACATCAGAATGCACAATGAACAGAGCATTAGAAAGTAGACAGCAATGGTTTCTACTTATTTCAAAATATCCATGATGCCAGAGAAATACATCCCTGTTAAAAAAACCTAGGTCTTTGTAGCTCCCTTTCCTTCTTTGACATGGAATGAAAGAGATGTTTCCAGAACTGGTCAACTTCAGTAACTTTTATATCAGAGTCTGTGCTTAAAAGTATCACAAACAAAACTTCAGAACAATCACACTACCTAGAAAAAGTATTTCTAGGACTCTGAGATGGTCCTTGCCCTGAGGAAGGTGGCAAGTCTTGTGTTTACTATGGGGCCTACCCCCTCTCCTATGGAACACAGTGAGGTTTTATTCTGTGAAAGCTGTGGGAAGCTCACCGTAGGTTGTGTACCTGAGCCACTTAGATTCAAGGCAGCAGTGGTGAGGTCACTAAAGTGACCTTCTCCTTTCTCCCAGATGGAGGGGCTCCTTCTCATGAGGACTCTAACACATACAGCTCTACACATACATAAAAACTTCACTTCCATTTATTACTGGATAGATTTTTTTCAGTGTTGATGAGATGTTTTGTAGAAATCAACATATACTGTCCACATAAGGAAAGTTTAAATGATTTAAAATATGTTTCCTAATTATAAGCACTTGTGGGAAATTTGGAAAGTACAGAAAAGAAAAAAAAATTACAATTGCATCAACCCGGAAGCAACCATCACTAACAGGTTTTTTTGTTTTCCTTTTGGTCTTTAATTTTGTAGCTCTGTTTTTGTTTGTTTTTTTCTTTTTCTTTATTATTATTTATTTTTGAGAGAGAGAGAGAGAGAGAGAGAGACAGACAGACTGTGTGTGTTTGGGGGGCGGGGGGAGAGGGAGACACAGAATCGAAGCAGGCTCCAGGATCCCAGCTGTCAGCACAGAGCCCCATGTGAGGCTCAAACTCACCAATCGCGAGACCATGACCTGAACCGCGAGATCATGATCTGAGCCGAAGTCTGCGGCGCTTAACAGACTGAGCCACTCAGGCGCCCGTTGGTTTGTTGTTTTCAAGTGAAGACGCTCCTGCCCAAAAGGAACTTACAACTTTAAGGGCAACACAAATGAGAAAAATGAAGACAAAATAAGACTGAAAACCAGAGAACATGATGATAATGATGATGGGCTCACTGATTTCTCCAAAGTGTCTCTGAGACACATACTGCCTGGAATCAGTCACTTCCTGCCTTGTCTGCCACCCATTGTGTAGCCACAAAGAATGTGTGTTCTGTCAGCAGCTATAAAAGTACAGATCTGGGTGCTGATCAAGAATGTGAAGTGAGGCCTGAGAAAATGCAGAACTGAGTTGAAAGAAATGCAGAGTCATTAGCGTCTTAAGCCAATCATCACCCTAAAATGGTTTGAAGGGAGATATGGTAAACCCAAATCACTGTTTTAACTATAATGAAAGGTCAACCCAGCAATGGAAAGCAATGGACACATTTTATTTCCAAATGGTGATGCTGATCCATTTCAGTGTCTTCCTTCTGGGACAATGCAGTGAGAGCCAGTTGTCACTCAACACAAAGGTGTCTGTATTGTAGCTGCAAAAGAGGGTTATGGGATGGAGTGCCTGATAAGTTCCTCTAGATTGAGCTGTCAGCTGTGACCTCTCTGAGGAGGTGATCTAAGCTGCAATCTGAAAGGCAAGAAGGAGTCAGTGTGTGAAAATCTGTGAAAAAGTAACATCTGGCATAGAGATCTTAAGATTACATGGAGTATTTGCTTCCTGATCCTTCTTAATCTCTCTAGCCTGCATTTCTGAAAACTTGGGGAAGGCATACAAGCTTTGAAAAGACGGAAAATTTCTTAGCATAAATATCAGTAAAACAACTCTTTCCTATGGGATTTTGATGTCTCACTGAAGTAGCAATTAAAACTGGACTCTTTTGAAGTTGTTTATTCCAAGAATGCACCTTCTTGATTTTAAGGATGAAAAGATAGGAGCTGGAAGCAAACTGGATTCTGCTTCTCCAAACCTGAGCATATGTAAAAGAAAGCCTTTGCCCAGCAGAATTAGCAGATGGTCTAAATCCCCTTGGAGTACATGGGCTCAGTTCAACACTGATTTGGGATTATTCATTCAAAGTCCTTGGTCTTCTGGAACTTTAATAAGGCTTTCCCTCATCAGGCTGACGATGGCTCACTTCACACATAACCACTCAAGACTTCTGTGCAGCATAAAATAGAAGATCAAAAGCAGGGTTGAATCTTTTTTGAAAGAGTTTGGTAACACCAGGCATTTGAACACTCAGTCACATGCAGCAGAACCAGGCACATGGAGAACAGCTGATTCCACGAAACCAAGGGCTTGGGTTTTGCAATGGAACGAATATGGTTGCTGTTGCTTCTAACAAGTAGAGTGCTTCTGGGGTCTGCTCAGTTTAATGGCTACAACTGTGACGCCAACCTCCACAGTAGATTTCCTGCTGAAAGAGACATCAATGTCTATTGTGGGGTGCAGGCCATTACAATGAAGATTAATTTTTGCACAGTACTTTTCTCGGGTTATTCTGAAACAGATCTGGCACTGAACGGAAGGCATGGGGATTCCCACTGCAGGGGGTTCATCAATAACAACACCTTTCCCGCGGTGGTCATTTTCATCATCAATCTCAGCACCTTGGAGGGCTGTGGAAACAACTTAGTGGTATCCACAATTCCTGGAGTCAGTGCTTATGGGAATTCAACTTCAGTACAAATAGGAAATATTTCGGGATACATTGATACTCCAGACCCACCAACAATCATCAGCTATCTACCTGGGCTTCTTTACAAATTTAGTTGTAGTTATCCATTGGAATACCTGGTTAATAATACCCAGCTTGCCTCATCCTCAGCTGCTATTTCTGTGAGAGAGAACAATGGTACATTTGTCAGCACTTTGAACCTGCTCCTTTATAATGATTCAACCTACAGTCAGCAGTTAATTATCCCAAGTATAGGATTACCTTTGAAAACCAAAGTGTTTGCAGCTGTACAAGCCACTAATCTGGATGGCAGATGGAATGTCTTAATGGATTATTGCTACACAACCCCATCAGGGAACCCAAATGATGACGTTAGATATGATCTCTTCCTTAGCTGCGACAAAGATCCTCAGACCACTGTCATTGAAAATGGCAGAAGCCAGCAAGGCCGGTTTTCCTTTGAAGTGTTCCGATTTGTGAAACACAAGAATCAGAAAATGTCCACCGTCTTCCTGCACTGTGTTACCAAGCTCTGCAGAGCTGATGACTGCCCCTTCCTTATGCCAATTTGCGGCCACAGAGAAAGGAGGGATGCAGGGAAGAGGACCACTTGGAGCCCCCAGAGCACGTCTGGAAATGCAGTCCTCTCTGCTGGTCCCATCATTACTCGGAGTGATGAGACTCCAACCAACAATTCACAGCTTGGTTCTCCAAGGGAACCTCCCTTCCAGCTGAATGCCATCACCAGTGCACTGATATCAGGAATGGTCATCCTGGGAGTGATGAGCTTTTCCCTTCTCCTGTGCTCACTGGCCCTTCTATACAGGAAGGCACCCACCAGTTTGGTGTTGAATGGCATAAGAAACCCAGTCTTTGACTGACTTTAACAGGTCCCTTCTCTCAGGAGGACTCACTGACTATACCCTGTGTTACTGCAGTCAGTGTTTTCATCCAAATTGAATGCCAGCCAGCATTTGATATTTGTAGGTTTGATAGATTTCACAGTGTAGTTCGTCAGCATGATGATAGTGAAAGAATTTGGGTGGTATTGTTCTCGTCGCGTAAGTATGTGGTCAGCCCTATTTGTATGGCACCAATGGGTAGAATGACAACAAGCCAACCATATTCAGGACTCAGATCTTACAAGATCAGTCATATTTCATTTTATTTCAATTTTCTTTTGATAATTGGTTGTTATAGAGATAAAAGGTGGGCATAGAAAAAATATACATTTGTTGCATTTTTCCCCCTAAGCATTTATATCCAATGTGCTGGCATTTAGATTGTTTATGTGGTCCTAAATTGAAAGTTACTTTTTTATTTGT +>XM_019449735.1 PREDICTED: Panthera pardus microtubule associated protein RP/EB family member 3 (MAPRE3), transcript variant X4, mRNA +TTGCAGATTTTCCAGACAGCTGGGGTATGGCCGTCAATGTGTACTCCACGTCCGTGACCAGTGAAAATCTGAGTCGCCATGATATGCTGGCATGGGTCAATGACTCCCTGCACCTCAACTATACCAAGATAGAACAGCTCTGTTCAGGGGCAGCCTATTGCCAGTTCATGGACATGCTCTTCCCCGGCTGTGTGCACTTGAGGAAGGTGAAGTTCCAGGCCAAACTAGAGCACGAATACATCCACAACTTCAAGGTGCTGCAAGCAGCTTTCAAGAAGATGGGTGTTGACAAAATAATTCCCGTAGAGAAATTAGTGAAAGGAAAATTCCAAGATAATTTTGAGTTTATTCAGTGGTTTAAGAAATTCTTTGACGCAAACTATGACGGAAAGGATTACAACCCTCTGCTGGCGCGGCAGGGCCAGGACGTAGCGCCCCCTCCTAACCCAGGTGATCAGATCTTCAACAAATCCAAGAAACTCATTGGCACAGCAGTTCCACAGAGGACGTCCCCCACAGGCCCCAAAAACATGCAGACCTCTGGCCGGCTGAGCAATGTGGCCCCACCCTGCATCCTCCGGAAGAACCCCCCATCAGCCCGGAATGGCGGCCATGAGACCGATGCCCAGATTCTCGAACTCAATCAGCAGCTATTGGATTTGAAGCTGACGGTGGATGGGCTGGAGAAGGAGCGTGACTTCTACTTCAGCAAACTTCGAGACATCGAGCTCATCTGCCAGGAACACGAAAGTGAGAACAGCCCTGTTATCTCAGGCATCATAGGCATTCTCTATGCCACCGAGGAAGGATTTGCACCCCCTGAGGACGATGAGATTGAGGAACACCAACAGGAAGACCAAGACGAGTACTGAGGGCGGCCCCAGCCCTGGCTGACTGCACGGCTGCCGTGCCTCCCCGCCCTGCTCCTGCCCCACATTATAATCCTTTCCTTACAGC +>XM_044229603.1 PREDICTED: Neovison vison NOVA alternative splicing regulator 1 (NOVA1), transcript variant X2, mRNA +GAAAAGAAAAGAAAGAAAGAAAGAAAGAAAAGAAAAAAAAAGAAAGAAAAGAAAGAAAAAAAAAAGCCAAAACAAAAGGGAGAACCTTCTCCCCGTAGCAGCGGCAGGAACTGCAAACATGATGGCGGCAGCTCCCATCCAGCAGAACGGGACCCACACTGGGGTTCCCATAGACCTGGACCCGCCGGACTCGCGGAAAAGGCCGCTGGAAGCCCCCCCTGAAGCCGGCAGCACCAAGAGGACCAATACGGGCGAAGACGGCCAGTATTTTCTAAAGGTTCTCATACCTAGTTATGCTGCTGGATCTATAATTGGGAAGGGAGGACAGACAATTGTTCAGTTGCAAAAAGAAACTGGAGCCACCATCAAGCTGTCTAAGTCCAAAGATTTTTACCCAGGTACTACTGAAAGAGTATGCTTGATCCAGGGAACAGTTGAAGCACTGAATGCAGTTCATGGATTCATTGCAGAAAAAATTCGAGAAATGCCCCAAAATGTGGCCAAGACAGAACCAGTCAGTATTCTACAACCCCAAACCACCGTTAATCCAGATCGCATCAAACAAACATTGCCATCTTCCCCAACTACCACCAAGTCCTCTCCATCTGATCCCATGACCACCTCCAGAGCTAATCAGGTTAGACTATTTCCACAGGTCAGAGTGGCAGACTGTAACTACAGTAGTGGGTCTATAATAATTTCCCCCTGAAAATTGAAGGACAGTCGCAAAGAGAAGTC +>XR_007719743.1 PREDICTED: Macaca thibetana thibetana uncharacterized LOC126937484 (LOC126937484), transcript variant X3, ncRNA +CCCTGCTTGCAGTTCCCCCTTCTGTAGGGCCCCCATGCTCCTGTCCCACCCCCTCTACTCGGCGTCCGGGTGCTGGGTCGAGACGTGTGTGGGTGTTGGGAGGTGGATATCTCTTTTCCGAGCCGTAGGCGTCACCCCTACGCCCAGGCCCAGGCCCAGTGCTGGATCCTGCACTTTCCCAACCTCCCCCTCCCAAGTTACAAGGTTGCCCTCTGTTCCCCTCCCGAGCGCAGGTGACGAGCTGCTGAGACAGTGTCTGATTCACCGACAGCTGAACCAGCTACTGGTACTTGGGGAGACAGAGTCTTGCTATGTTTCCCAAGCAAATTTCAAACTCTGACCTGAAGTCGTCTTCCCACCTCAGCCTCCCAAAGTGTTGGGATTATAGGTGTGAGCCACTGCAACTGGCCCAGAACTGGAGTATTTATCCACCCAATCCTTGAACAAACCAGCAGACCAATTCAGAGTCCATTTCAGTGGTGCAGGTGAGAGGTATTAGAGACCTGGACAAGGTGGTGGCAGATGAAGATGGAGAGAACAGAGATAGGATCTCACTGTGTTGCCCAGGCTGACCTCCTGCCTTATACACCACCTCACCAAGCTTAACAGGGTGAAAATATAGGAGATGACGATCCATTCCTGGGTGGACGGCCAGCGTTCCATCTTCACTAACACGATATAGTTGAAGAGCATCAGGTATCCGATATACGCCAGCTGTAAGGAAATACAATACAGTGGTCTGGCTGTTCAGGCCCAGGAGCCTCAGCGTCAGCCACGGCCACTGCACAGCAGCACAAAACAAGGCCCAGTGACATGCACATTCTTCCAGAACCTCTGCATTTTAGTACCCACTTCACACCTTGAATTTGAATCCTCTCCAGCCGGATACCTGAAATAGGCTCTCAACACAAGCAGGGTCGAGGAGCCAGCTGGACCCCTGCCTGCTTTCTTCTCGGACCAGAAGAGGACCCAACCTACTCCTAGAGAAACTTGCTACAATGCAGAAGTGAGGTTACATGGAAATGAGGTGTGTCCTACCTTTCAGAAACTTGGGAGAGTAGGACACACCATTTTTGGAAATCTGGTGAGAAATACTCTTACAGAGAAAAACACAGCCCCAAGTAAAGTACATGGGACCTTCAATCTGAAACTGAATTGTATTGTTAGGCATGTCTGGTGATTCAAAAGACTGGCATACCTCATTTCCGATCACTTCCTCGAGGCCTGGGCTTTGTCGATACGTGAAGATGAATTTTGGAGAATCATGAAAACACAACTGAACGGATCTGGGGGATCCAGTCTGATGGGTTTACTGAGGCCAACTCAGCCATGCAGAAGAGTGCTGGACACACAGGCCCCACCCCCCAAAGAGGCAGCCTCCCAACAAGCTGCCAATGACATAAGCAAAGCAGCGTGTCTCAAGCATCTCTAATCACAAGTTTCGCCTGGGAAGCTAGTTAAACTAACACAGCCTCTTAGGCTCCTTCATGAAGATTTGATTCCATGGGTCTATGATGGGGCTAGAAATTCGCATTTCTAACAAAACGCCCTTGTCATCATGGAAGTTTTAGAAATGTTGATACTATTACGTCTACTGATTTCTGCTCTCAGCAGTCTGTAAACTTTTTCTGCAAATGGCCAACTGGTTAACAACTTTTAAGGCTTTGTAGACCTGATAGTCTCTCTCTGTCTCTCACTACTCATTAACTCGATGTGGTAGTACAAAAGCAGGCAGCCTACTGGTAATGTTAAATGAGGTTTAGCCTAAAGCTGCCTCCTTACATATTTTAAGTTCGGCCTAAAGTTTTCTCTGTACATTGTGAACTATAACAAATGAAGGTGTAACAAGACCAATCACTGAATTTCAGTCAATCAAATGTAGCCAACTGCTCAAAATGTGTTCAAATAAGGTAAATGCTGAGCTGTAACCAATCCAGCTGTTTGTGTACGTCACTTCCGTTTTCTGTCCATAATTCTTCCACCACGTGGCCCTGCTGGAGTCTCTGAGCCTCCTCTGGCTTGGAAGGCTGTCCCATTCACGAATTGTTCATTGCTCAGTTAAATTCCTTTAACAGAAATTAAGAGTCTGCCTGTGCTCCAATTCTTTATGGACACTACAATTTGAATATATGTCTCAAGTATTCCTTTTTAAATTTTATTTTGACCCTTTAAAAATGTAAAAACCATTCTTAGTTTGCAGGCCACAGTCATAGGCCATGGGTTGAATTTGGCCCGAGAGCTGTAGTTTGCCAAGCGTTGTTCTAAGCTAACAGTTGGGGTATCATAATATTAAAGGAAGGACAGACCTGGGTGTAAAATAGCTCCAAAAATATTATCTTAGGCTGGGTGCAGTGGCTATTGCCTATAATCCCAGTACTTTGGGAGGCTGACGCAGGCCCATAGATC +>XM_032774723.1 PREDICTED: Chelonoidis abingdonii docking protein 5 (DOK5), transcript variant X4, mRNA +GTCAGCTGATGCAGAAGGGTCCTCTAGCCTCTTCCCCCCTCTCCTGAGTGGATTAAAACTCTGGCCGCTGAGTTTCTGGGTCAGGAGGATTATTCCAAGTGATGTGAATCATTTCAGCTACCGACTGGATTCAACTTGGGCTAGCGGCTCCTCCCCACAAAAAGGATGGCTGCCAATTTTAATGACATAGTGAAGCAAGGGTATGTAAAGATTAGGAGCAGACGTTTAGGTATTTATCAGAGATGCTGGTTAGTTTTCAAGAAAGCTTCAAGCAAAGGGCCAAAACGACTGGAGAAGTTTTCAGATGAGCGTGCTGCCTATTTTAGGTGCTATCACAAGGTCACGGAACTCAATAATGTGAAGAATATATTACGACTGCCAAAAAACACGAAGAAACATGCTGTAGGCATTTATTTTAATGATGACACATCCAAAACCTTTGCTTGTGAATCAGAACTCGAGGCGGATGAGTGGTGCAAAGTGCTGCAGATGGAATGCCTAGGAACTCAGATTAATGACATAAGCCTTGGAGAGCCTGACTTGTTGGCATCTGGTGTAGAAAGGGAGCAGAGTGAGAGATTCAATGTGTATTTAATGCCATCCCCTAATTTAGAGGTGCATGGGGAATGTACCTTGCAGATAACATTTGAGCATATCTGTCTTTGGGATATCCAGAATCCCAGAGTAAAACTCATCTCTTGGCCATTAAGTGCCCTCCGGCGATATGGACGAGACCCAGCTTGGTTTACATTTGAAGCAGGGAGGATGTGTGACACTGGGGAAGGACTATTCATCTTTCAGACAAGAGATGGGGAGGCGATCTATCAGAAGGTTCACTCAGCTGCTTTGGCCATAGCAGAACAACATGAGCGCTTATTGCAGAGTGTGAAAAATTCAGTGCTTCAAATGAAAATGAGCGAGCGAGCCGTCTCCCTCAACACCATAGTGCCCCTGCCTCGGAGTGCCTACTGGCAGCACATTACACGGCAACACAGTATGGGCCAGCTCTATGGCCTACAAGATGTTTCAAGCCCCCTGAAGCTTCATCGAACAGACACTTTCCCCACTTACAGATCAGAGCATTGATAAGACTGTAAAGGATTTGAAAACTCTCTCTGTCTTGTGACAGCTTGGCCCAGCGGATAATAATGATGACAGCAAGCAAACAAAGTTGGAAATGCAGAAAAAGTCGGCTTGGATTGAATTAAGTCCTTGAATATATATATTTTTTTTTAACCTTGGCAAGAAAGGAATGTATTCTGTAGGTATTTAAAAAAATGCCAAACCAACTATCACACAGTTATTTAATATTTTACACCGGGAGGGGACAGAAATCAGCCCCTAAATGTTACTGAATGTTTTTATATGATAGATATATGTTGCAAATATATGAATTTGTCTTATGATGTGGGGTACTGTGATACCACTTAGTCTGTTTCAGCAGTGTTTGTGTTGACGTCAGCTGTGCCAGCAATCTCATGGTTCCTGTTTGCTGTAACTCATACCCTTTAGTTGTTAACATTATTGATTAAGACTAATCTTTGACTATAGTACTGATGGCCAGTTTTAAGCAGGAATTGTATCTGTTTTTCTTGTGTGAAGTCTCCTTGAGTCCTGATAGACTTTTAAAAGG +>KF434600.1 Uncultured bacterium clone SNGUT_M7 16S ribosomal RNA gene, partial sequence +CCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGAAGGCGGTGAGGTTAATAACCTCATCGATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTCGAAACTGGCAGGCTAGAGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTTAGATAACCCTGGTAGTCCACGCCGTAAACGGATGTCGATTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAATCGACCGCCTGGGGAGTACGGCCGCAAGGGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACAGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAACTGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTTCAGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCATATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCA +>XM_052950715.1 PREDICTED: Mya arenaria nephrin-like (LOC128235928), mRNA +ATGAGGGAACAACAGATTGTTGGTATCACCACGGTGACGTTATCTCCCGGCACCGATCCTATCAACGTGATAGAGAATACACAAACGACACTGCAGTGCCGAACATCGGGCGGGTTACCGGCAGCCTCGGTCAGATGGTTCATCCAGGGGTCAGGGCAGGTGCAAGACGTAACGTCGCTCTCCGCGAACACGTACCAAGAGGAGGACAACCTTAACGTGACGCTTAGCACACTTAACTACACCCCGTTAACAGCTGACCAGAATGGCCAGATATACTGTTCAGCAAACAATATGGGAGTGAGGAGAAATTCCACAAAGCTTTATATAAATGTATTTTACGGACCTGATAGACCGCTGTGCAAAACAAACAACTTCAACATAACTTCAGTATTGAAGGTCATTATTAGTACCACATTCACCATCTCCTGCACAGTTGACAGTAATCCAGCGCCATATTCGTGGCAGTGGTCACCTTCTGGAGGGAGCAGTCAACAGTTAGGCTTCACAAACATACAGAGGATACAGGGCGGAGAGTACACACTTCAGGTTTTGAACAGAATGGCTGTCACTGGGAGTAACAGTTTAGTCGATGGCAGTAACGCGACGTCTTTTACAGTGGATGTTTTGTTTCCCCCTGCTGTGCCAACATTACGCATGAGCGGTAAAGAGGTTATGGGTACGGTCAAGGTCATCGAAGGTAACAGCAAGACGTTCAACTGCAGCACAGAGAGTAACCCGACCAGTAGCTACAGCTGGACGTACCCACGAGGCTCAAGTTCTAACAACATCTTGCAAGTGAGCGACTTCCAGCCAGGCTCCTACGACGGCGATTACACGTGTCAAGTTCAGAACAGAATGGAGCCATCGTTTGGCAATTCAAAGGAGAATGTATCCCTGAAAACTATATCTGTCGATGTTTTGTATGGCCCGAAAACGGGGAATTTGCCGAACGCAAGTAAAGTTCGCGGGGAAAACCTTGTTTACCAGTGTTTGTACATACCTGGCAACCCTCCAACTGTTGACTTTGAGTGGACGAAATCCGGAACAGAGGTCTCCTGGGTCAAACAGAACACACAGAATTTGACCATTCTAAACCTGCAGCGCTCTGACGAGGCCAGTTACACGTGCAAGGTGTCCAGTGTTCTCCAGCCGACGTTGACATTAGCGACGACCACACAGTATGATACTGCAACATTTTTTCTAGATATTCTTTATGGGGCGGAAAATTTGCTGTTGCAACTCAACAACGTTTCCCAATCGTCTGTACAAATTGATGAACATTCATCAAACCATATGCGATGTTCGCTAGAAAGTGATCCCGGCTCGAATATGGCCCTTACAAAAGACGGTAAAACGATAATTGCACGATCTGGAGTACATCAACTCACACATGGAATACAGGCTGAATGTTCGGACGCAGGAGTGTATACGTGCTCAGGATACAACCAGTACGGAGCAGCAGATAACGCGTCAGTGCAGTTATTTGTAAAATGTTCCGCGAGGCGACCCACTGGGGTGGAGGTACAGCTTAATTTCACCGCACGCAAACATGAAAATGCAACATTAGTCTACAAAATAGTCGCCTACCCTGTGCCCAAGCCCCAAGAGTTTGTTTGGACGCGCTGTACGAATCGCACTTCTTGTGAACTTGTGCCGGATGAAATGAACAAATTTGAAATTTACACAGAGGGTCTATCAAGTAAATTAACGATTCTGGACGTTCAGATTGAAGATTACAGACTATACCAATTGTTAGTGTATAATGGAGTTGGTGATACACTAGTCGAATGGTTACACCTCAGACCCATCGGAAAATCGGATTCGCCAATGGACTTCCACGTTATTCAAGATACAATACGCGAAACAAGTGCTGTATTGACCTGGATTGCCGGATTTGACAACGGGTCTCCTCAGGAATTTCACATCTCCTATGGAAAGGTTGCTGATGACACTGGATATATTACACAAAATGTAAAACATGACAACAGAGTCGAGATGAATTACACAGTTGTAAATTTAAAACCTGGAACCGAATACTTTGTCTCACTAATTTCGGCAAACGAGGAGGGTTCTTCTGCACCGGTGAACGTTACATTTTTAACTCTAAAACGTATTAATGATCAAACTCAGACTAGTCCAAATACTGGTCCTGTTTTTGGAGGGGCAGTTGGCGGAACTGTTGGTGCAATAGTGGCAATAGTTGTCGTCGTTATCATTCTCAGGCGGAACTACGCACTAAATTGCAACGTAACCTGGACAAAGAGAGGTGAACCTTCCGAGCATTCCATATCCGGAAAAGACAACCCCGGATATAACGCAGCCGAGACGTACGAGGTCGTTTCCAGGACAACGGATACATCGGCATACAATGATCTAAAAAATGATGACAGCGGAGCCGATAACTCGCACGTGTATACGTCGTTGGAGGAGTCAAAGGCACCTGTTTACTACGAAAATGTAAAGAAAGATGATCCCATATACAACAATACTGCGCTGCAGAATCCGGTGCAAACAGTGCTTTAAATGTACACATCCATACAACAATGTGAAGATATGGCATTTTACAATGTCATTTACTTACCCAGTGAAATATCGAATACTAAACCAGCACTATATCAACGAAGTATGGATTGCATAATATTTGTTATCAAAATGTTTCATACTTCATAAAATTATATTGATT +>XR_003276401.1 PREDICTED: Carassius auratus uncharacterized LOC113048120 (LOC113048120), ncRNA +TTTTGAACAATTCTTGAGAGAGAAAAAAAACAGTGATTCTTTTACGTCCTGACGCAATAACGTCCGTACGTCTTTGCCTTGCGTGCTTTAAAATATTCCGATAAAGCCATATTAGGTTTTTGTAAAACCATGTCATTTAGGATACGCGTTAATAAAATTATCAAACAATCGTCGTAAATACATTTATTTTGTAACATTACTGCTCTTTGGCCACTAATGTAACTTTTAGCGCGGTAAAAATAAATAAATAAATAACAATAATAATTGTAAGCACGAGCTTTTGATTCGGGAACAGCTTGGACCGATTAGTGGAGCCAGGAAATGATCAGACTGGTTTTGGGAACCGCGTTAAGTGATTCAATGAGAAGATTAACCTCAAAAGAAACCACGCTTTCAATCGCGGGAATTTCTACAAACGCTGGAATCTCCCCCTTCACACGGAGGGATTTTATATGATGTCATGACGCGGGAAGGCAAAACGCACACATCCACTGACACAGCTGTAATACATTCCCACGCAAGCGAGACCACCATCCCGCCTGAAAAGCCTGGACATCCGTAGTGAAACATGTCTGGAATCGGCTTTCTGAAGATCTACTTCATTGGAACCGCGGTTTCTTTTCTGGTGGCTCTGTTTGGACTGGTTGATTCAGTCGGGGGTCTGATGTATCCTCAAGCCCCAGACTGGGCAGACGACAGCTGGACAGAGAAGCATCCGACCGTGTCTCCATCACAGACTGCTGCTGCCAGCAACACCAAGCGCAACGGATCGACATGATCTTCTCCGCTACCGTGGCTCGAGAGTCTAGCCTCGGGAATAATAGCCTCGGTTTACTGACCTACTAAAGCCTACTGTGGAACTACAATCTTCTACAATTTTCACTACTGCGGTCTGTGTCGTGTGAAATATGAGACATGAACACAATGGCTTGTGAGGTGCCAGCTCTTCACACTCGTTACGTTTTTACTTTGTTATTCTGGTTTCTGCAAAAACTTTAAATGAAAAAAGGGAAAAATTCTTCCGGAGAGGTTGAAAGCATAAAAATACTACAAATATGCAACATGAATTTGCTGGGCTGCCTTGGAATATTGAAATCCCTCTGTGGTCGATTGTTTTTGTAATGGGTTTTAAGTAGTTTTTGTAATGTTTGTTCCTTTTTTATATGCCGTTTATATGAAGATAAATGTAACACTCAGAATGTAAACATATGTGTAAGATGCTGTTTACCATGAGCAACTGTGGCATTAGGCAGCAAAAAGTGCACTCCCAATATGGCTAAAGGGTGTCTAAAAGATATCAGCTAGATATCTTTCAAATAGATAAGTTGGGTTATGTTACTGAAATTCACTGTTTTGTATTGAACTGAATACAATGTATACAGTTGCATTGTACATCACTAAAGCAGCCTGTTTTTGTGCTCTAAAAAGTTGTCAATTTTAATTAGAAAAATTTCCATTTGCTAAACTTTCAAATTACTTATTTCTAGTCATATTTTTGCTAAACTTTGTGTGTTGTGAACTTGTGATCATAACTGTTTATTGTGAAATGTTGTTAATGGTGTGGATTTTCCATTGAAATACTCTCGTCTTTACCTTTTACATGTCTTTGAAAAGCTGTAAATTGCAAATTGGCAGCTTTGGAAAAAAAAAAAACCTGTCATAGATGATTAAACAACATTACTATA +>XM_017265421.2 PREDICTED: Drosophila elegans E3 ubiquitin-protein ligase Ufd4 (LOC108141837), mRNA +ATAATCAATTTTCGAGCTGCTGGACTGGATATTTGTGTGAATAAAAATAGTGTGGTGTATTGAGTAATTGTAGAAAAGCTTTAAAAAAGCAGCTTTAAAAAAGCAAGCACCAGCAAAATATTCAATATAATGCAAAAAAGATTTGGTTAAGCATAAATCAAATTTCGATTTGCGATGGGCGATGTCGATCCCGAGACGCTGCTGGAATGGTTGTCCATGGGACAAGGAGATGAGCGGGATATGCAACTGATTGCGCTGGAGCAGCTTTGTATGCTGCTCCTGATGTCTGATAATGTAGATCGTTGCTTCGAAAGCTGTCCTCCTCGAACATTTTTGCCGGCGCTATGCAAGATATTCCTAGACGAACTGGCACCTGAAAATGTACTCGAGGTCACTGCGCGAGCCATCACCTATTACCTGGATGTGTCGGCGGAGTGCACCAGGCGCATCGTTTCGATTGATGGAGCCATCAAAGCCATATGCAACCATCTTGTGGTTACGGATTTGTCATCGCGAACATCTCGCGATCTGGCCGAGCAATGTATCAAAGTGCTTGAACTGATTTGCACCCGAGAAGCGGGCGCCGTCTTTGAGGGCGGTGGCCTCAACTGCGTCCTGTCCTTTATTAGGGACTGCGGATCGCAAGTTCACAAGGACACCCTACATTCGGCCATGTCCGTTGTATCCAGGCTCTGCACCAAGGTGGAGCCCAACACGCCGTGCATTCAGAACTGCGTCGAGAGTCTGAGCACTCTGCTGCAACACGAGGATGCCATGGTATCCGATGGCGCTTTGAAGTGCTTTGCCTCCGTGGCCGACCGATTCACACGAAAGTGGGTTGATCCAGCGCCGCTGGCAGAGTACGGTTTGACCACTGAGTTGCTCAAGCGCCTCAAGAGTGTCGGCGGAAACACACACTCTTCGCTGTCTGCGGCAGGAGCCCAGCCGACTAGCTCTAGCCAACCCGCTGCGGCCACAAACTCGGATGCAATCAATGAAAACGTAGCGGGCAATGCAACCATTTCCAGCAGCACCAAGGTCAAGGCATCCGATGTGGCCGCATCGCCACAGTCGATATCGACTACAATTTCCTTGCTGTCGACACTTTGCCGCGGATCTCCTTCCATCACCCATGATATTCTGCGTTCCCAGTTGGCTGACGCCCTCGAAAGAGCCTTGCAGGGCGATGAGCGATGCGTGCTGGACTGCATGCGATTCGCAGATCTCTTGCTTTTACTTTTGTTCGAGGGGCGCCAGGCCTTGAACCGAGGAAGTAACAATCCCAATCAGGGACAATTGGCGCCACGACCCAGGCGCAACAACACCAACACCGATCGCACGCATCGCCAGCTTATCGACTGCATACGATCGAAGGACTCGGAGGCGCTTCGCGAGGCCATCGAATCTGGGGGCATAGACGTCAACTGTATGGACGATGTGGGTCAAACCCTTCTCAACTGGGCTTCAGCCTTTGGCACACTGGAAATGGTGGAATATTTGTGTGAGAAGGGAGCGGATGTCAACAAGGGCCAGCGGAGTTCTTCCCTTCACTACGCCGCATGCTTTGGTCGACCGGCCATTGCGAAAATCCTGCTTAAATTCGGAGCCTATCCGGACCTGCGCGATGAGGATGGTAAAACACCATTAGATAAGGCACGCGAAAGATTGGACGATGGACATCGGGAAGTGGCAGCTATTTTGCAGTCACCGGGAGAGTGGATGTCTCCCGATCACTCGCTGCTCAACAAGGACGGAAAAAAGTATACGTTGATGGAGCCCAGGGGTGATCCTGAAATGGCGCCCATTTACCTCAAGGTACTGCTGCCCATATTCTGTCGGACCTTCTTGGGCTCCATGTTGGGCAGTGTGCGACGGGCCAGTTTGGCCCTGATAAAGAAGATTGTACAATATGCGTACCCAACGGTGCTCCAAAGTCTCAGTGAAACCAGTTTTAGCGAAGATGAGCCGTCAACATCGAGCCAAAATGGTGGTAACCTACTTATCGAAGTGGTCGCTAGTGTCCTAGACAACGAGGATGACGACGACGGGCACTTAATTGTTTTAAATATTATTGAGGAAATTATGTGTAAGACACAAGAGGAATTTCTCGACCACTTTGCAAGACTAGGAGTGTTTGCTAAAGTTCAAAACCTGATGGACAATGATGCAGAGGAATTGTATGTGCAATTATCAGGAAACCCCGATGAACCAGCTGTCGTGCAGAGATCATCGACCAGTGTTGTAGTCTCCCCAAGATCAACTTCAGATGATCCTATGGAGGACGCAAAGGAGATATTGCAAGGAAAGCCTTATCACTGGCGAGAGTGGAGCATTTGCAGGGGTCGAGATTGCTTGTACGTCTGGTCGGACTCGGTGGCTCTAGAGCTTTCCAACGGCTCTAACGGGTGGTTCCGTTTCATAATCGATGGAAAGCTAGCAACGATGTACTCCAGTGGAAGTCCAGAAAACGGAAATGACAGTTCTGAAAATCGAGGAGAGTTTCTTGAGAAGCTTATGCGTGCACGTTCCTGCGTAATTCCAGGAGTTGTATCCCAGCCCATTTTGCCCACTGCAAGTGCTCTACGATTGGTTGTTGGTAACTGGGTCCTGCAGTCGCATAAAACAAATCAACTTCAAATTCACAACACCGAAGGCCATCAGGTAACCGTGTTACAGGACGATTTGCCTGGCTTTATCTTTGAAAGCAACCGTGGAACGAAGCATACCTTCACGGCTGAAACTGTCTTGGGTCCCGATTTTGCCTCCGGTTGGTCAACGGCTAAAAAGAAACGCAACAAGTCCAAGACCGAGGGTCAAAAGTCTCAAGTTCGCAACTTATCCCGCGAAATTTACAACAAGTACTTCAAGTCTGCCCAAACGATTCCTCGCGGAGCGGTGGCAATACTTACGGACATTGTGAAGCAAATTGAATTATCCTTTGAGGAGCAGCACATGGCACCAAATGGAAACTGGGAGACAACACTCTCGGACGCCCTAATGAAGCTGTCTCAATTGATCCATGAAGATGGTGTCGTGAGCGCCTACGAAATGCACTCGTCGGGATTGGTGCAAGCGTTAGTGGCCGTTTTGTCGGTTAACCATTGGGAAAATAATTCACCTCGATGCAAACGAAATAAAATGCAAAAACAACGAGTTTCCGTATTCAAGAAATGCATACTGGAGGATAACGTTGAATCCGCAACGAATAAGCCGCGAACTAAGAGCACTGCAAGTATTTTAATACAGAAACTTGTATCGGTTCTGGAGAGCACAGAGAAGCTACCAGTGTACTTGTATGACACTCCATGCACTGGTTACAGCTTGCAAATTCTGCAGAAACGACTTCGCTTCCGTTTGGAGCGAGCAGAATGCGAGAGCACTTTATTCGACCGATCCGGTCGAACTCTAAAAATGGAACCTTTGGCCACAATTGGACAACTATCCAAGTATCTGCTGAAAATGGTGGCCAAACAATGGTACGACCTCGATCGGTCCACATATTTTTATTTGAAAAAAATACGCGAACATCGGACCGGCACTGTGTTTACGCACTTATTTGACTTTGACGAAGAGGGTTTGTTGTTCTACATTGGCTCTAATGCAAAGACTTGCGATTGGGTCAACCCAGCGCAATATGGACTTGTGCAAGTGACCAGCTCGGAGGGGAAGACCTTGCCATATGGCAAACTGGAGGATATTCTGTCTCGCGACAGCATCTCACTCAATTGTCACACCAAGGACAACAAGAAGGCCTGGTTTGCCATCGACTTGGGCGTGTATATAATACCCACTGCGTACACGCTTCGTCATGCGCGCGGTTATGGAAGGTCGGCTCTGAGGAACTGGCTTCTCCAGGGATCAAAGGATGGCCTAAGTTGGACAACCCTCAGCTCACACGTGGATGACAAGAGTCTCGTGGAGCCCGGTAGCACAGCGACTTGGCCCATAACGTGTGCAGCTGACGACTCGGTTAGATATAGGCACATCAGAATCCAGCAAAATGGACGCAATGCATCTGGCCAGACCCATTATTTGAGTTTGAGTGGATTCGAGATCTATGGTCGCGTCGTCGGAGTTGCCGACGACATTGGCAAGAGCGTCAAGGAGGCTGAGGCAAAAATTAGGCGCGAGAGGCGACAAATAAGAGCTCAGCTCAAGCATATGACTACCGGTGCTCGAGTAATTCGAGGCGTCGACTGGCGGTGGGAGGATCAGGATGGTTGTGCCGAGGGCACAATAACCGGTGAAATTCACAACGGCTGGATCGATGTGAAGTGGGACCACGGCGTACGCAACTCGTATCGCATGGGAGCCGAAGGGAAGTACGACTTAAAGATGGCCGATTGCGAATATCTTTCCGTATTCGAAGGAAACCAGTCGATGGTTACTGTGAACGCGGCTGCAAAAATAAACGATAAATCAAACACGCTCACCTCGCGCAAATCAAGTTCAACTCCATCCCTGCCCGAAGCCACTGAAAAGAATCAAAACGCTGAAGGTGCGTCCAATCAAACCGTTTCGGCTGATAACTTGGCCTGGAAACAGGCGGTGGAGACGATTGCAGAGAACGTGTTTGCTTCGGCAAAGACACAGATTATCTCAAATCAACTGGCTATGAACACGTCATCCTCTCGGGAAGTTCGAACCAAGCACAAGGAGTCGGCTGCCAACCAAATGCATAAGGATAACATAAGTGGACCGTCGCCATTGAGTCGCGAGCTGGAGCACATATCGGACTTGTCGGCCATCAACAACTCGATGCCGGCAATTAACTCAAATATTGTTTCCGATCTAGCTACCATTTCGGAGAACCTATCCCTAGCTGAATTGTCCAAAGAAAACATATGCAGTGTCCTTTCGCCTTCATATAAGCCCGCTGAGGCTGTTGCTGCGAGTCAAAGCTCAAGCCTTCCCGATGTACAGAGTTCGTCTCCGTCTCCGCGAGAGAGTGATATAAAGAACATATCCAACATTGAAGAGAACAATAAGATGAATGCAAACAACACGGTGAATAAGATATCAAAGGATCTGCTTGTGAATCTCCGAACATCGAACATTGCAGGCTGTCAACCGGTGACACAACTTTCGACCGAAGCCCTCGAAATGATCGACAAGATGCGTGATGGCGTGGATATGATACGGAATAACTCCAACAACATTCTTTCCACAGACACTTTCCCCATGCCGCCATGCACAAACATGGGAGTCGGAGTTAAAAAGACACCCAAGGCTCAGGCGCTGATAAATCCCGAAAATGCGAATCAAAAACAAATCATAGTTGCAACAGAAGAATATCCCAGCAAGAGTTCAAAGAAACCCAGTGTAACGTTGAAGCCAACACAGCAGCCAAATGCCGTGCTTTCGATCGTGGACATCAAAGATCCGCAAATTTCATCCGAAAGCGTTTCGGTGCCCAGCCAGATGAGTATAAGTGTTCCTAATCTGACAACAACTTCAGCATCTGAGGTTCCCTCCACCTCAGAGGTGGCTACCCACACGGGTCTGCTGGAGACATTTGCGGCAATCGCTCGTCGACGCACCTCGCAGGGCACCAACATACAGGATAATCAGATCATGAATGCGGAAGTGAATGTGAACGAGCACGGGGATCAGAACGCATCGGGCTCATTCCTCGGCCACTCGGTAACCAGTTTGGTTAAGCTGGCATTGTCCAGTAATTTCCATTCTGGACTGCTCAGCACCGCCCAGAGTTATCCGAGTTTATCGTCGAATAATAGTGAAAACATAGCCCCATCAAACCCGTCAAATACGTCGACGGGACAGCAATCGGCATCCACCATAAATCATACACTTACAATGAGTCTTACATCCACGTCGAGTGACAGCGAACAAGTGTCACTGGAAGACTTTTTAGAGAGTTGCCGAGCTCCGGCTTTGCTGGGCGACTTGGACGATGAGGACGACATGGATGAGGACAACGACGAGGAGGAGAACGAAGACGAGTACGAAGAGGTGGGCAACACTCTGCTCCAAGTGATGGTCTCCCGGAACTTGCTCACCTTCATGGACGATGAGGGTTTGGAGAACAGACTGGTGGGTGTTACGAAGCGCAAGTCCTGGGACGATGAGTTCGTCCTAAAGAGACAGTTCTCCGCGTTGATACCTGCATTCGATCCGCGACCGGGTCGCACGAATGTTAACCAGACTTCGGATTTGGAAATTTCCCCCATTGGCGTTGAGTTACCCAAGCCCCAACAGAGCGGCCAGGAGACTATTGAACAGCCGATGCTGGGTCTAAAACTACGTGGTCCGGGAATTGGCGGAATTCCCGAAGTTGAAATTGACCTGAACAACACAGACTGGACCATATTCAGAGCCGTGCAGGAATTGCTGCAGTGCAGTCAGTTGAACAAGCTGGACAAGTTCCGAAAGATATGGGAGCCCACATACACGATTGTGTACAGGGAGGTGCCGCCTGAAGCGCCAGAAAGCACTGGCGTGGACTCGGAGGAGTTTGCCCAAACACCGGATGTGTCGTCAAAGAGTGGCGCCTCCACTTTGTCCCCCAACTCACCCATGCACATCGGATTTAACGTAGCCGATAATAACCTGTGCTCCGTGGACGATGTGCTTGAGCTGCTCACTCAAATCAATGGTCTCAATCAATCGGAAATCGATTCGGATGGCAAGGAACTTGGTGTTTCCGTGTTGTCCGAAGATCTCTTTATCAGCAAGAAAATAACTAACAAACTGCAGCAGCAAATCCAGGATCCACTAGTGCTGTCCAGCAACGCGCTGCCCAATTGGTGCGAAAACCTAAACCAATCTTGCCCCTTCCTGTTCCCATTCGAGACCAGGCAGTTGTACTTCAACTGCACATCCTTTGGAGCCTCTCGCAGCATAGTATGTCTGCAATCGCAGAGAGATGTGACTGTGGAAAGGCAGAGGATTCCCATCATGAGTCCGCGCCGGGATGATCACGAATTCCGCATCGGTCGTCTTAAGCACGAACGCGTTAAGGTGCCTCGAAACGAGAATCTACTTCAGTGGGCAATGCAGGTTATGAAGACGCACTGCAACCGAAAGTCCGTGTTGGAGGTGGAGTTCTTGGACGAGGAGGGAACTGGTTTGGGTCCTACACTGGAGTTTTACGCCTTGGTGGCTGCCGAAATTCAACGCGCCGACCTGTGTATGTGGCTGTGTGACGACGATTTGGGCGAGGACATCGACAACTCATCGGAGAATACGCAAGGCAATTCGAAACCCGTAGGGTATTACGTAAATCGCAGAGAACACGGAATTTTCCCAGCACCTCTGCCGCAAAATACCGAAACATGTGAGAAAGTACTAAAATACTTCTGGTTTTTCGGTGTTTTTGTGGCAAAAGTATTGCAGGATATGCGTTTAGTGGACATACCCTTATCAACATCATTTCTTCAATTGCTTTGCCACAACAAGGTGCTGTCACGTAATCTCCAAAAAGTTATTTCGGATAGACGAAATGGCGATCTCTCTGTCGTGTCAGAAGAATCGGACATAGTAGAAACCTGCACTAAGCTATTGCGCACTGATTGCAATAAGACCAATGCATTTGGGGGAATTCTTTCCTTAGAAAACTTAAAAGAAATAGATCCAACTCGTTATCAATTCCTACAAGAAATGCAAAACCTCTTATTGCGAAAGCAGTCAATTGAGTTTGACGACACCATAGACGCCGAGAAGAAAGAAGAACTAATAAACGAGCTTAAGCTGCACACCCAAAACGGCTTAGAGGTATCCCTTGAAGACTTGGCCCTTACGTTCACGTATCTGCCAAGTTCCTCGGTCTATGGATACACCCAGGCCGAACTGCTGCCAAATGGGGCGTCAGTGAATGTCACCATCAACAACCTGGAAGCGTATTGTGAACTGCTTATGAACTTCATCCTGCAGGACGGAATCGCTCAACAAATGAAGGCTTTCAGTGATGGGTTCAACGAAGTGTTCCCCCTCAAAAAGTTGGCTGCCTTTACGCCCTCAGAGGCCCGAATGATGATTTGTGGCGAGCAGTTCCCCCATTGGAGCCGAGAAGACATTATTTCATATACTGAACCAAAACTTGGTTACAACAAAGACAGTCCTGGGTTCCAACGCTTTGTAAATGTTTTACTAAGCATGTCGGGCGACGAAAGGAAAGCCTTCCTTCAATTCACAACTGGTTGCAGTAGCCTGCCGCCGGGAGGACTTGCAAACTTACATCCCCGACTGACAGTTGTTCGAAAGGTAGATGCTGGCGTCGGAAGCTATCCATCCGTGAACACGTGCGTTCACTACTTAAAGCTTCCGGACTATCCAACTGAAGAGATCATGAAGGAGCGCTTGTTAACAGCAACTAAAGAAAAGGGGTTTCATTTAAATTAAACAATTTATTGTACTCGATATTCAAGTTAATAAAATTTGAACCTTTTGTTATTTAAAGCGTACTTGTTGTGTAACGTAATAAGCGATACTGTAAATATTTCAACTGTTCAAACCCAATCTTTATATATAAGTTTAGATTTATTGCTTACACCTAAAGTCTCGGCCTATTGTTTCAAATTTAATTTAACCATTAAAATGGTAGCCACTGCAAA +>XM_004521695.3 PREDICTED: Ceratitis capitata heat shock factor-binding protein 1 (LOC101452289), mRNA +ATTGTCATTTTCTGTTAAAATTTTGTTGTGTCTGGTTTCCAAAAGCGGAAAGTGTGCAAGATATATTATTTTTATACTTTTATAAAAAAGTTAACACAAACAATTTAGAACTAATTTTAATCGAAAATAAACCACAAACATGGCGGATATAAAGAATGATATTGATAGCGATTTGGATCAGAACTATTCGCTAAGTAGTAATGCGGATCCAAAAAATATGCAGGAATTGACAATTTATGTACAAAACCTGCTACAAAATGTTCAAGATAAATTCCAGACAATGTCGGACCAAATTATCACACGTATTGATGACATGGGCAACAGAATAGATGATTTGGAAAAAAGTATTGCAGATCTGATGAATCAAGCAGGTGTTGAAGGGCCAGAGAAGTAAAACGAAGCGGTTCGCGTAAAAACCTCATATTTTCCCATGAAGCATACTTATAAATATCGCTCATAAATGCAATAATCTTAACAAAATTAAGACATTTATTTAAATTCCTAAACAAAAATACATAATATGTAAGTGCACACATACACACAGCGACATGTACGTCATGTTAAACACAAAAGCGCACGAAAATGCAACCTTAAATGCTGATAAGAAGAATAATTGGCTCAAATGTGACACAAAATGTTTAATTAAGTTACAAACAATACTTATTTTAATTAAGTGAATTTTAAATATATAATGATTAAGGAATCATTTTTGAACATATTTTAAAGTTTTTTTTTTTTTTGTTATTTATATGTAAACAATAACCAAATGTGGGAGAAAAAGAAGTTCTTTGATATATGTGAATTTCTTATTAATTATTGTAATAATTATTAAATATTAATTATTTTTCTTAGTTTCCATACACTATGCATAATTCGGTATAATAAATGAATTAGTAATTTTAAATCAAAACATGAAAAA +>XR_004389653.1 PREDICTED: Rattus rattus uncharacterized LOC116914019 (LOC116914019), transcript variant X1, ncRNA +TTTTCTCTCCTGGGAGCGGGCCGAGGGGCGGGGGAGGGGCCACCGCTCCGCCTTCTTCTTTTCGCAATGTTGACGCAATCTATAAATAGTGGAACAAAAGGACCAACTTCCTCGGAGCTTTGCTGAAACTGCACAAAAAATCGAGCTGGGGGGTTCCCTGGTCCCCGATGTTGGGGCGGGGAGCTCGGCGCCGAAGGAGGGGGCGGCGCAGACCGGCCTAGGGGGACACCTGGCCGAGCGCAGTCGCCGCTCCGCTCGAGCCCTGCGCTCCAGTGCCCCCACTGGCTGGAGAGCTCGCCCAGACCCGGGGTCTTCCACCGTCTCTGACAGATTTTAACCTTTAGAAGAGAGCCAGTTGTGGAAAACAACCAGTTTTTTGATCGAATACCCACGTAATACATTGGAATATGATAGGAGATTAAGGTTTAACAATGATAAAATGAAGATATTACTAAAACAGCCCTCTAAGTAGCCCAACAATTATTATTTTTGCTAGAGATGAGAACCAGAACCATACAAGGTCCAAGACGAGCACTTTCTCTGTGCATATGGATGTCCTAGAAGTTGTGGCATAATGGTATTAATATGCTAGACGTACTGAATTGAA +>XR_003957782.3 PREDICTED: Taeniopygia guttata uncharacterized LOC115492501 (LOC115492501), ncRNA +CGTGTCCGCCCCCAGCCCCGTGTCCGCCCCCAGCCCCGTGTCCGCCATCCGTCTGTCCGTGCGCTCAGACTGAGCCCGCAGCGCCCGGGGGAAAGCAGCGGCCGCCTCCCCGCTCCTCCCGCGCGTCCGCCGGCGCCCGCTCGGACTGGCCACGCACGGCAACACGAGATGGTGGGAGGAGAAGCTCCTTACTTCAAGGAAACGAGGCCATGGTCAGAGGCAAATTCTCCAGGGGCTGCAGAGCCCTGTGAGCACAGGGTGACCCCGCACTGGGAGCAGCAGCTGGGGGTTTCTGCACATGGGGAAGGGAATTCCCAGAGCACTCGAGCCTCAACACGGACAAATATTCTGCAGTCTCCAGCAACAATTGGCTTTGGGATTTACGCTGTTGCAGCTCTTCTGGCTGTGAGGATGACCTGAAAATGTGAAGCAAGTGCATCAGCTCTTTCCAATGGCTGTGGCAGCACCAGGGTTTGGGTTTTTTGGTTGGCACAGGAAAATGAGCTGTGAGCAGCATCTGTGCCAGGGAGGAAAGTGCCCCTGGAGCTGGGGCTGAGAACCCGGGGTCGATGTGAGCACCTGTGGGTGGGAAGGAAGCTGGCAGAGCGCTGAGTTTGCTTTTCCTGCAGGCTCGCGCTCTGATGCGGCACAACGGGCCCCCGCAGCTGCAGGAGCCCGGGCGCCTGTCGGCTCTGCTGCGGGACTGCCTCGAGTGCAGCCTGGAGCCGGACGAGGAGCGGCGCTGCTCTGCCCAGGAGCTGCTGCAGCACCCATTTTTATCATCAGCCAAGCCTCTCTCCAGCCTGACCCCTCTGATCACCGCAGCAAAGCAACTGAGGGAGCAGCGGAGGAGATGAAGCACTTGAAAACAGCTGTTAGTTACAGTAGTTAGTGAGGACAACTAGTTAGTGATGGTAGTTGGCAGTGCTAGTTGGTTATGTTGGTTAGGACACCCTGTTTGTTACAGTTCTTATGACAGCCTGTTTGGCATGGCAGTTTTTTGAATAAAAACTCTGTTAAACCACAACTCCCTTGGCGTGTCCCTTCCTCCTCCCTCTGTGACTCAGCTGCCCGGAGCAATGTGAGGGGAGAGCGGGCCCAGCCTCGCCCAGAGCTGAGCCCCAGCAGAGCCCTGGCAGAGCCCAGAGCAGCCGGGGCATCTGCAGAGTCAGCCTGGGAGGAGGCGCTCGGAGCCTTCTCGGCTGCACCGACTCTTGGGTACAAACTGCGTGTGCTGGAAAATGCCCCCGGCTCGGCCAGAGGGCAGAAGGGGCCCGGGGAAGGCCCCAGTGCTCCCTGCAAGGGAAACACCTGCCCTGGGTTTGTTATAAAGGACTATGTAGTTGTGGCTTTTGCTGTGATGTCTTGGCTTCTGCAACTTATTCTTAATCGCAACGATTTAGATACAGTACAGCTTGTAATCACTTTTAACTGCTTTTGCTGTAGTATAATTTGTCAGCTTTTTGTGGTCAATGCCCTGGCCCCTGTGTAGCTCATATCCTCAGAACATCATTCATGGATGATAGTTTAGTTTGTGCACAGTGTGAAAAACATACATGATAGTTTTGGCTTTTACAAAATATTGAAGTGGATGCCATGTGTTGTGCATTAGAATGTTAACTTTTGCAGAAGTAGCTGTAGTTGTGAAATAATAACTAATGCTTTTCTTTTTGTAACTAACTGACAATAATAACTCAGAGATATTTGTGAAACAGCCAATGTTGATTTAAAGTACTTGTGGAAGTAGCTAAGACCGTCTGCATGGCCAGATAACGTTTAAGGAACGGGTGTGATGAGGACCCTGCCGCTGACCCTTCGACTGTCAGTAACTGTCGCCTGCTGATGTGGAAACCCAGGGCACCGGGAATATTTCTCTGTCTGCTCTGGGGTGTCCTGACCCCCAGGGGAGCACTGACTTTGACCCTCATTCATGGAGAAAACTTCCAAAGCTTCAAAGTAAGCTAGAAACCACAAAAGTGTGAAATAGATTGTAGAGATTGCAGAGAGTAGTGGAGTATGTCATATGGGTGAAAAATTTAGGTTTTAGAATTTTTAGTATGTTATAGATGGGTTCAAGATGGAGGATATAGGGTGTTGTCTTGAGTTCCCTTCTTCTTTCTTCTTCTTCTTCTCTTTCTTTTTGGGTTTATGTGGTATCCTGTAATTGGGTAGAATAATCTGCATTGTGGGTCTTTAGGGGTCAGTTACTGGGTTAGAAAGAAAACTAATTTAGGTGTCACTTCTTAATTGGGTAGCTTAGTTTTTGATTAGACTTACAAGGCCTTGTAACAAGAGATTGTTGGCCATTTTTGTGCTGTTTTCCTGCACGCAGAGTCTGGTGCAGACAGTGTGCTGAAGTTTTGATAAGAATAAACAGAAGCTGAAGACCGAAAAAGTCCAATGCAGCTCTGGTTCCTGACACAGAACTGCTCCAGGAGGGTCCCCCTGCCAGGGGAGCCGCCAGGGAGTTGCCCAACTTGGGGCCTGCAAACTCCCAGCTGAATCGGGGATCAGGGGGCTGTTGTGAGGAAGTGACACACAACCCTCAAAACAACAATCCATGATTCCTGCACGGACTCTAGAAAGGCGGGTTGGGGGTCAAACCAAAAGAGTTCCTGGAAGAAGTAAATGAGTTCAAAGAAATGTTTGAATGTGTATAATCTTTATGAATATGTTTTTGGACAATACAATGGAAAAAGTAGATAAGAAGAGTTGCTATGGCTAACCAGTGTGCCTCTGGCCATTGCCAAGCACCCAGCGCTGTTATTGATTTGTCTCTAATTATCCCTTCTTAAAGTTTTAAAAATCGTCTTGCTCATTTTGCCCCTCTTTGGCTTCTTCTCCAGGAGCAGAGGGAGCCGGGGCAGAGACCGCTGTTCCTTCTGCCATCTGCGGCAAGAGAGAAGCATGAGGGACAGGCCGTTACCTCTCATTTATAACCTCGTTCCTCCTCGGATCCACAAATACCACTTCCAAGGAGAAATCAGCAACTCTGTTAGCGATGGGATTCTAAGTGACTCTGACCAGATTAAAGTGGGTTAACTCAACAGAACTCTATTTGATGAACTCTATGAATTTGATAGTCCTCCCTGGCTGCTATCAGCAAGCAGCGGTGCCTCTGCACAATGCAGCTTTTAGCTCTTGAAAACTCTGAAATGGAAAAGTCAGAGATAGCCAGCACGGACTTTGTTATTGCTGCAGCAGACAAGGAAAACTCAAACTGGATCAGAATCCCATGCAGTGCACGAAAAGGGCAGGAAAGGTTGCGCAGACGCCTCTTTGCTTGCTGGAAAGAGAGAAAATGAGCGGGGCTTCTCCTCCTAGCAAACCAACAAACCACAAGTCGGAAGTGTCCCCTCCTCAGGTGGCTAAAGCACTTGGATGCAGTGAGGGCATGTCTGGCAGGGAAACAGCCCTGGTGGTGAGCACTGCCATGTATGGATCCATGGATCTGAAGGTCCCTCACAAGCCTCCCGTTGTCCAGGCTAAAGCTCCCTCAGCACCTCCTCCTTGGCCTTGCGCTCCACAGCCTTCCCCAGCTCCCGTGTCCTTCTCTGCACACGCTCCAGCCCCTCGAGGACTTTCTGCTTCAGAGGGGCCCACAAGTGGACACAGCACTCCCAGCCATGGCCGCAGCGCTGCCCAGCCCAGGGGGACGGTCACTGCCCTGCTCCTGCTGCCCCACTGCTGCTGACACAGGCCAGGGCATCCTTGGCCTTCTTGGCCACCTGGCCACACACTGGCCCACCTTCAGCTGCTCTTGACCGGCACCCCTGCGTCCTTTTGGCCCACGCAGCTCCCCCACCACAAAGTTGCCCGCTTGACTTCAAATAGAGCATCCCCAGTTCCAAGATGTCCTTCCTCTTCTCAGCAACACAAGACAGCAGTCAAGGACTTGCAGCTTCCCCCCCACCCTAGGCACTAATGCCATTCCCAAAGCTGCAGGCTGTGTGCAGCTGTCCCTGCAGGATGGCCCCAGGGCAGAGCCCAGCCGGGCTCCCCCTGCAGCCCCTGAAGCTTGGGGCAGGCAGTGGTCCCAGAGCTGAGGTTCACGGGGAGCACCCGCAGCTGTGCCTCGCACTCTGTTGCCGTGTCACCGTGCAGGCTGGCTTGTACGGGGTGAATGTACCAGCCCTGGTTTGACTGACAGGGGCCTGGCCCATCACAGCTCTCCCAAGGCTGCAGGCATTCCCCAGGCCAGAATCTGAAGGGGCACAGAGATCAGACCAGTGAAATCATCCAGACTGGGTTTTTCAAAGGCCCTTTAGAAGGAAGGGCTTGAGAATAAACGTGCTCTGTTTGCCACAGGAA +>KP156844.1 Uncultured bacterium clone garden_soil_51834 16S ribosomal RNA gene, partial sequence +AGTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGCAGCGCGGGGGCAACCCTGGCGGCGAGCGGCGGACGGGTGAGGAATACATCGGAATCTACCCAGTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTGAGGGTGAAAGCAGGGGACCGCAAGGCCTTGCGCGATTGGATGAGCCGATGTCCGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTTGGGTTGTAAAGCACTTTTGTTCGGGAAGAAATCTTCCGACCTAATACGTCGGGAGGATGACGGTACCGAAAGAATAAGCACCGGCTAACTTCGTGCCAGCAGCCGAC +>XM_050191817.1 PREDICTED: Dermacentor andersoni protein FAM136A-like (LOC126544480), mRNA +AAGCTGCCGGGCGCTGGCGGCTGCATGGGCGGCTGGCGCAAACACGAGGCGATTGTTGGTCTGCTTGGTTTCCTTCCTGTAAAAGGAGGTATTATACTAGTACTGGGAATACTACTGTAAGTGTTGAGCCGAACAACGCGATACAATGGCCGAAGGAGCTGCTCTGCGTGTACAAACTGCCGTAGACAACATGGTCAAGGAACTCGACAACTCTTATCTCCGCAAAATATTGGGCAATGTGCACAGGTGTGCAGTTAAGTGTTGTGACAATTCCAGCTTGTCAATGGATGGTGCTCGCACGTGCATCATGAACTGCTCTGAACCTCTTAACAAAGCCCAGAGTAAAGTCGAAGGTGAACTTGGAAACTTTCAGGAACGCATACGAATGTGTGTTATGCAGTGCGAGAATGACGTGCGGGACCAGATGAGCTCAACGTTAACAGAAGCAGAAGCCTCCAAGTTGAAAGGCCAATATGAGTCGTGTGTTGTGACGTGTGCGGACAAACATATTGCTCTTTTGCCACAGATGCAGCGAAGAATGAAAGAGTTGTTAAGTCAACTTTAGAGGCCAGTGTACACTGTTGTGTACATAGTTCGTACCGATCCTTGTATTTCTAGGATGAGTTAACATGCCATGTAGCTCCGCTCGTTGCCTTCTACCATAAATGTTTGATGAAAGGAC +>XM_014783154.1 PREDICTED: Ceratotherium simum simum ATPase, class VI, type 11B (LOC101400597), transcript variant X4, mRNA +GTGGGCGACATTGTTCGAGTAGCCAAAGATGAAATTTTCCCTGCAGATTTGGTGCTTCTGTCCTCAGATCGACTTGATGGTTCTTGTCACGTTACAACTGCTAGTTTGGATGGAGAAACTAACCTGAAGACACATGTGGCCGTTCCAGAAACAGCAGTATTACAAACAGTTGCCAGTTTGGACACTCTTGAAGCTGTGATAGAATGTCACCAACCAGAAGCAGATTTGTACAGATTCACAGGTCAGATGATGATAACTCAACAATTGGAAGAAATTTTAAGTTATTCCTTCTCGTTTTATATCTCCTTAATGGAGAGAAATTCAAACACCAAGAAGACCTGTGCTCCAAGAAGTGTACAATACCTCTGGGGCCAGAGAGTCTCTTGCTTCGTGGAGCCAGATTAAAAAATACAAAAGAAATTTTTGGTGTTGCTGTATACACTGGAATGGAAACTAAGATGGCATTAAATTATAAGAGCAAGTCACAGAAACGATCTGCGGTAGAAAAGTCAATGAACACATTTTTGATCATTTACCTCATAATCCTTATTGCTGAAGCCATCATCAGTACTATCTTGAAATATTCATGGCAAGCTGAAGAAAAATGGGATGAACCTTGGTATAACCAAAAAACAGAACATCAAAGAAATAGTAGTAAGATTCTGAGATTTATTTCAGACTTCCTTGCTTTTTTGGTACTCTACAATTTCATCATTCCAATTTCATTATATGTGACAGTAGAAATGCAGAAATTTCTTGGATCATTTTTTATTGGCTGGGATCTTGATCTCTATCATGAAGAATCAGATCAGAAAGCACAAGTCAATACTTCTGATCTGAATGAAGAGCTTGGACAGGTGGAGTATGTGTTTACAGATAAAACTGGTACACTGACGGAAAATGAGATGCAGTTTCGGGAATGTTCAATTAATGGCATAAAGTACCAAGAAAGCAATGGTAGACTTGTATCTGAAGGACCAACACCAGACTCTTCAGAAGGACCCTTTTATCGTAATAGTTTATCCCATCTTAACAACTTATCCCATCTTACAACCAGTTCCTCTTTTGGAACCAGTCTTGAAAATGAAATTGAACTAATTAAAAAACATGATCTCTTCTTTAAAGCAGTCAGTCTCTGTCACACTGTACAGATTAGCAATGTTCAGACTGATGGCATTGGTGATGGTCCCTGGCAATCCAGCCTTGCACCCTCCCAGTTAGAGTACTACGCATCTTCACCAGATGAAAAGGCTCTAGTGGAAGCTGCTGCAAGAATTGGCATCGTGTTTATTGGCAATTCTGAAGACACTATGGAAGTTAAAACACTTGGAAAACTGGAACGGTACAAACTGCTTCATGTTCTGGAATTTGATTCAGATCGTAGGAGAATGAGTGTTATTGTTCAGGCACCTTCAGGTGAGAAGTTTTTATTTGCTAAAGGAGCTGAATCATCAGTTCTCCCTAAATGTATAGGTGGGGAAATAGAAACAACCAGAATTCACGTAGATGAATTTGCTTTGAAAGGGCTAAGAACTCTATGTATAGCCTATAGACAATTGACATCTAAAGAGTATGAGGACATAGACAGACGCCTCTTTGAAGCCAGGACTGCCTTGCAGCAACGGGAAGAGAAATTGGCAGATGTCTTCCAGTTCATAGAGAAAGATCTGGTATTACTTGGAGCTACAGCAGTAGAAGACAGACTACAAGATAAAGTTCCAGAAACTATCGAAGCATTGAGAATGGCTGGTATCAAAGTATGGGTACTTACTGGCGATAAACACGAAACAGCTGTTAGTGTGAGTTTATCATGTGGACATTTTCACAGAACCATGAACATTCTTGAACTTACAAACCAGAAATCAGACAGCGAATGTGCTGAACAATTGAGGCAGCTTGCCAGAAGAATTGAAGAGGATCATGTGATTCAGCATGGGCTGGTGGTGGATGGAACCAGCCTGTCTCTTGCACTCAGGGAGCATGAAAAACTATTTATGGATGTTTGCAGAAATTGTTCAGCTGTATTGTGCTGTCGTATGGCACCGCTGCAGAAAGCCAAAGTAATAAGACTGATAAAAATCTCACCTGAGAAACCTATAACATTGGCTGTTGGTGATGGTGCTAATGATGTAAGCATGATACAAGAAGCACATGTTGGCATAGGAATCATGGGTAAAGAAGGAAGACAAGCTGCAAGAAACAGTGACTATGCAATAGCTAGATTTAAATTCCTCTCAAAATTGCTTTTTGTTCATGGTCATTTTTATTATATTAGAATAGCTACCCTTGTACAGTATTTTTTTTATAAGAATGTGTGCTTTATCACACCCCAATTTTTATATCAGTTCTACTGTTTGTTTTCTCAACAAACACTGTATGACAGCGTGTACCTGACTTTATACAATATTTGTTTTACTTCCCTACCTATTCTGGTATATAGTCTATTGGAACAGCATATTGACCCTCACATATTACAGAACAAGCCCACCCTTTATCGAGACATTAGTAAAAACCGTCAACTAAGCATTAAAACATTTCTTTATTGGACCATCCTGGGTTTCAGTCATGCCTTTATTTTCTTTTTTGGATCCTGTTTTCTGATGGGGAAAGATATATCTCTGCTTGGAAATGGCCAGATGTTTGGAAACTGGACATTTGGCACCTTGGTCTTCACAGTCATGGTTATTACAGTCACAGTAAAGATGGCTTTGGAAACTCATTTTTGGACTTGGATCAACCATTTTGTTACCTGGGGATCTATTATATTCTATTTTGTATTTTCTTTCTTTTATGGGGGGATTCTCTGGCCATTTTTGGGCTCCCAGAATATGTACTTTGTATTTATCCAGCTCCTATCAAGTGGTTCTGCTTGGTTTGCCATAATCCTCATGGTTGTGACATGTCTGTTTCTTGATATTGTGAAGAAAGTATTTGACCGACAACTCCATCCTACAAATACTGAAAAGGCCCAGCTTATTAAAACAAATTCAAGTGTCAAGTGCTTGGACTCCATGTGCTGTTTCTCAGAAGGAGAAGCAACGTGCGCATCTGTTGGAAGAATGCTGGAACGAGTAATAGGAAGATGTAGTCCAACCCATGTCAGCAGATTATGGAGTGCATCGGATCCTTTCTATACCAACGACAGGAGCATCTTGACTCTCTCCACAATGGAATCATCCACTTGTTAAAGTGGCAGTAGTACTTTGTGGGAGCCATTTCAACTCCTTTCCTAAAATTCAGTGTGATCATCCTGGTAATGGCCATACTGGCTCTTCAGATTTACTTTCTGAAATCTCTGGAGTAGTTCATACCCACTCAGAGTTATAATGGCAAACAAACAAAAAGCATTAACGGGAACCCCTCTCAACTCCCTTATGTTAAACTTTGTGAATAAAGAGACATTTTGCATCT +>XM_027489590.1 PREDICTED: Abrus precatorius vicilin-like seed storage protein At2g28490 (LOC113857560), mRNA +ATGGGAAACATAGCTACCCTTTTGCTCTTGCTCTTTGTTTTTTGCCATGGAGTGGCCATAGCAGAAAGTCCTTCAAGTTCATCAACCAAATTGTTCTTGATGCAAAACTCCAAGAGAGTGGTTAAGACTGATGCAGGGGAAATGCGAGTTATGAAAAGCTATGGTGGTAGGATTTTGGATAGGCACATGCAAATTGGTTTCATCTCTATGGAACCAATGTCCTTGTTCATTCCTCAGTACCTTGACTCCAATTTGATCATCTTCATCCGAAGAGGGGAAGCAAAATTGGGATTCATATATGATGATAAACTAGCGGAAAGGAGATTGAAGACAGGAGATGTGTATATAATTCCAGCAGGTTCAGCATTCTATTTGGTGAATTTAGGGGCGGGTCAGAGACTTCACATCATTTGCAGCATTAACCCCTCTTCAAACTTAGGAGTAGATACCTTTCAGTCCTTCTATATTGGCGGAGGAGCCAATGCACCCTCAGTGCTTTATGGATTCGAGTCTGTGATCCTTGAAGCTGCATTTAATGAATCAAGAACCGTGCTAAGGAAAATCTTCACCAAGGAACTAGATGGGCCAATTGTGTACGTGACTGATACACATGCACCTAGATTATGGACTAAATTCCTTCAACTGAAAAAAGAAGACAAAGTGCAACACCTGAAGAAAATTGTGCAAGACCAAGAAGAAGAAGAAGAGGAGGAAGAGAAGGAAACAAGTTGGTCATGGAGGAAGTTCATGGAAACTATACTTGGTAATGTGAATGAGAAGATAGAGAACAAACACACTGCTGGTTCTCCTGACTCTTACAACCTCCATGACAAAAAACCTGATTTCAGAAATGCTTATGGTTGGAGCAAGACACTTGATGGAGCCGAGTATCCTCCACTCAGAAAAGCTGACATTGGCATTTTTCACGTCAACCTCACCGCGGGATCCATGATGGCACCCCATTTGAATCCAAGAGCAACAGAGTATGGCATAGTGCTGAGGGGTTATGGTAGAATTCAAATACTATTTCCAAATGGAAGCAACGCGATGAACACCGAAATCAAAGTAGGGGACGTGTTTGTTGTACCAAGATACTTCCCCTTCTGCCAAATAGCATCAAGGAATGGACCCTTAGAGTTCTTTGGGTTCTCAACCTCTGCCAGGAAGAACAAGCCACAGTTTCTAGCTGGAGCTGTGTCCCTTGTTACGACCATGATGGGGCCTGAGCTCGCAGCTGCTTTCGGGGTGAGCGAGGACACGATGCGGCGCACTGTCGACGCTCAACACGAGGCTGTAATACTGCCATCAACATGGGCTGCACCACCGGAAGATCCAGGGAAAATGGAAGAAGAGAAGGTACACATGCAGCCAAAGGCTATTAGAAGCTTTGCTAAGGATATAGTTATGGATGTTTTTTAA +>XM_036746150.1 PREDICTED: Trichosurus vulpecula N-6 adenine-specific DNA methyltransferase 1 (N6AMT1), mRNA +ATGGCCCAGGGGGGCTGGGCCCCGCCACGTTTTGCCACTCCATTGCACCGACACGTGGGACGGGGTGCTTTCCGGGAGGTATACGAACCTGCCGAAGACACGTTCTTGTTGCTGGATGCACTGGAGGCAGGGGCCGCGGAGCTCGCGGGAGTAGAGATATGCCTTGAAATAGGATCAGGATCTGGCATCGTATCTGCATTCCTGGCTTCAGTTATTGGCCCTCGGGCTTTGTATATGTGTACTGATATCAACCCCAAAGCAGCCGACTGTACCTTGGAGACAGCACTGTGTAACAAAGTTGACATTCAGCCAGTAATTACAGATTTGGCCGAGGGCTTGCTACCGAGGTTACTCAGCAAAGTCGATCTTCTGATATTTAACCCACCCTATGTAGTAACACCTTCTGAAGAGGTAGGAAGTCATGGAATAGAGGCAGCTTGGGCTGGTGGCAGAAATGGCCGAGAAGTCATGGACAGATTCTTCCCTTTGGTTGCAGATCTACTATCACCAGGAGGATTTTTCTATTTAGTTACCATTAAAGAAAACAATCCAGATGAAATTATGGAAACAATGAAGAAATATGGTTTACAAGGCAAAATTGTACTTTCCAGACAAGCAGGACAAGAAATTCTTTCAGTCCTAAAATTCACCAAGTTCTAATATACGTAATGTGAAATGTTCAGTCACTAGTATACTTTTAAAGCCAAAGCTATTCCAAGAGCCAGGTAAAAATGTGAATTGTAATTTTTTAAGTGTTGAGAACAATTTAGGCAAACTAAGTTAAAAATCAGTGCTTTTCAAAATGTAATCTGTGGCTTTTCAAGAAAAGTCTCTCTGGGCTTTAAGCTAAGTCAGAGTGGTTTATTGAACAGTGTTCATAAACATTAATAAAAATGTTATGTCATAGCAAATGTCACTGTCACTAAGTAATGAGAGAAGGGTTTGACCTATATGTTTATTGTTCAGTCATGTTCAGCTCTTTATGTCCCCATGGACCATAGCACGCCAGACCCTTCTATCCATTATCTCCTGAAGTCTGTCCATGCTCTTTCTTTTTTTTGCTTCCATTACAATATCTATCCATCTCATCCTCTGCTATCCCCTTTACCTTTTGCTTTCAGTCTTTCTCAATATCAGCCTTTCTTCCAATGAGTCCTGTCTTCTCATTATGTAGCCAAGGTATTTCAGCTTCAGCTTCAGTATTTGACCTTCCAATGAGTAGTCTGAATTAATTTCTTTAAGTACTGACTGATTTGATCTCCTTGCTGTCCAAGGGACTCTCAGAAGTCTTCTCCAGCAGAATTTGAAAGTGTCGATTCTGCAGTGCTTAGCTTTACATATAGTACACTCTCACAGCCATATATTGCTAGTGGAAAACCTGTAGCTTTGATTATATGGACCTCTGTCAGCAAGGTCATGTTTCTTTTTTTTAGTATGCCATCCATGCTTGCCATAGCTTTCCTTCCCAGGAGCAAATCTCTTTTAATTTAATAGCTGCAATGATCTTTGAACCCAAGAATATAATCTGACATTTTCCATTTCTTCTCCTCCTATTTGCCAGGAGGTGATGAGACCAATTGCCAAGATCTTCATAGTTTGGGTTTGGTTTTTTGATGTTTTTAAGCTTCAAGCCAGTTTTTACATTCTCTTCTGTTTTCACCCTCATCAAGAGGCCTCCTTATTCCTCTTCACTTTCTGCCATCAGAGTGATATCATCTGCATGTCGAGATTGTTGGTATGTCTCCCAGAAACTTTACTCCTGGCTTTTGATTCATCCAGCCTGGCATTTCATATGCTATTCTCTGCATACGTTAAATAAATAAGATGACAATATATAGCTTTGTCATACTCATTTTCCTTTCTTAAGCCAATCAGTTGTTCCATGTTCAGTTCTAACTGTTGCTTCTTGGCCCACATTCAAGTTCCTCAGGAAACAAGGAAGGTGATCTGATGCTTCCGTCTCTTTGAAGACTTGTCCCATTTTGTTGTGATCCACACAGTGACAGACTTTAGTGTAGTCGGTGAAGCAGAAATAGATGCTTTTCTGGAACTCCCTTGCTTTCTCCATAATACAGCAAGTGTTGGTAATTTGGTCCCTGGTTCCCTGCCTCTCTGAAAACCAGCCTGCTCTTTCAGTAATTGTCAGTTTACATATTGTTGAAGCCCAGCTTGAAGAATCTTAACTTGTAACATTGCTGAAGGGTGAAATGAGCACAGTTGTTCAGTTGCTGGAACATTCTTTGATCTCGTTCTTCAGGATTTGTATGTGAACTGATCTTTTCCAATCCAGTGGCCACTATTGAGTTTTCCAAATTTGCTGCCATATTGAGTACAGCACTTTTAACATCATAATTAGGATTTTAAATAGCTCAGATAGAATTTCCTCCCCTCCACGAGCCTTCTTGTTAGTAATGCTTCCTAAGGCCCACTTGACTTTATTCTCCAGGATGTGTGACTCTAGATCAGCAACCACACCATTGTAGTTATTGGTGATATTAAGATCTTTCATATATAGTTCTTCTGAATGTTCTTGCCAGATCTTCTCAAGTCCCTACCATTTTTTGTTTTTTATCATGCCTATTTTTGAAGGAAACATTCCTTTGATATCTCTAATTTTCTTGAAGAGATCTCTTTGTCATTCTAGTGTATTCTTCTGTTTCTTTACATTGCTCATTTAAAAAAAAAACCTTTCAGGGCAGCTAGGTGGCGCAGTGAGCAGAGCACCAGCCCTGGAATCAGGAGGACCTGAATTCAAATGCAGCCTCAGACACTTGACACATGTACTAGGTGTGTGACCTTAGGCAAGTCATTTAACCCCAATTGCCCTGCCCCCCCCAAAACACCTTTCTCCCTGTTATCCTCTGGAATAATGCATTCAGTTGGATATATCTTTACCTTTCTCCTTTATACCTTTCACTTTCCCTCTTTCCTCAGCTATTTGTAAAGTCTCATCAGACATTTTGCTTTCTTGTTCTTTTTCTTTGGATTATTTTTTATTGCTCCTTCCTGTACAGTATTGCAAACCTCTATCCATAGTTCTTCAGGTACTCTATTCACCAGATCTAATCCTTTAAATTTATTCATCACTTGTATTTCATATTCATAAGGGATGTTATTTAGGGCATATACCTATACAGTCTGATGGTTTTCCCTACTTTCTTTAATTTACATGGGAATTTTTCAGTAAGAAGCTCATGATCTGAGCCACAGTCAGCTCTGGCTCATTTTAACTAACTGGATGGGACTTCTCCACCTTTGGCTGCAAAAAGTATGTAACCAGTCTGATTTTGATATTGACCATCTTATCTTGTGATGTCCATGTGCAGAATCACTTTGTGAGTTGTTGGGAGTTTTTGCTATGACCAGTGAGTTATTTTGACAACTCTATTAGTCTCTACCTTGCTTCATTTTGTACTCCAAGGCCAAACTTACCTGTTATACCAGTTATCTTTTGATTTCCTGCTTTAGCATTCCAGTCCCCTGTGATGAATGTGATATGGTTTTTTGGTGTTACTTCTAGATGTTGTAGTTCTTCATAGAACTGATAACTTTGGCCTCTTCAACATTAGTGGTTGGAGCATAGACTTCTATTGCTGTTCAGTCACACATACAAATGTACTTTCATTAGAAAAATAATTTTTAAATCTCAGCAGAAAATATTTTCTCTCTCCTGAAAGAAATCACTTCCTTTTAGAATTTTATTGTGGGTTTTCCTACATGGTTCTTTTAAGGGATGAGTGATAGGGTAGGGATAGGGATAGGGTCTAGACCTTTGATTTCAATGTAATAGAGAACTCCAGAATGAGGAAATTCTGTGAATGCAGGGTAGCACCATCTTCTTAAGTTTAGAAATCTTAAGAGAGTTGCCTAGAGCATTGAAAGGTTAAGTGATTTTTCCAGGATCACAGAGCCAGTATATCCAGCTGGATTTGAATCCAGTTCACTGTACTACACTGGCTCTCATTTGATCAATATGAATTATAAAAAAATGTTTTGTGAATGCCAAATCATGATTTCAGAGGACCAAAAAGAAAGCACATTACCACCCATATCCTGCCAGAAAGGTGATGGACTTAAAAGGGGTTTTTTGTTGTTGGTTTTTTATTATTTTTATCATTAGCAATTTGTTGGGGACTGGGGGGTGGTAGCTAATTGGAAAAAATACTAAAATTTAGTTTTAAAAAATATTTTGCAACAAGCATGTATACTTTCTAAAATGGGCAGCATAAGATTGATGGCATTTCATGCCACCGATATGACAAAAGGGGACCTAATATCCACATATCGTATTGAAAGTAATTTGTTCCCACACCAAGAACATTTGGGTTTTAGTTCTTTGGACTTTGGTTAATAGACTTTTAGTATCATGAGATTTAAATGTTCTTGTATTTATTGTTGAAACTTTTGGGTTATTTGTATAAACCCTTTAACACAATTATACAAATGTTATTCTTGACCAGAAAAATACTTTTTGTCTTTACAGAATGAGAGGATACACTATCAAATGTTGGTCTAAAAATAAAACTGCTATATTGCTATTAAAGCCTTGAAAAGTAGGTATTCCATTCATTACATAAATGAACTGTGAAAAGTGAATCCCAGAAAGTTATTTTAAAAATTCCTTTGACTTCTGAGGTCAAACACAAAATTAGTAAAGATTCTGGGAGAATTCTTCCCCTAAATATAATTTTCAAACTACTATAAAGTTGTGGTTGTAAAAGTGCTATATGTTATATATGGTTTATTACCAGTGTATGACATTTTTGATCTTGAACTTAAGTAACTATGACAAGGTGAGACTGATTTATGCCATTGTACAAAGTAGTACTTCACTAACACCTGAAGACTGCTTATGCACTTTGATTTTTTTTTTAAGTTTTAGCTAATTTATGCTGCTATAAGTTGACAAAATTATTAGGCTCTTAAATTTTATTTTTCCTACCTTGATCCCAGTTTTTGGTAGGTAAGAGAAAACTTGACAATAAAATTGGAGGTCACATTGTA +>XM_015642795.3 PREDICTED: Parus major Rho GTPase activating protein 17 (ARHGAP17), transcript variant X8, mRNA +CGGGGGCGGCCGGGGCACAGCGGCGGGGCCCGGGCAGGCCGGGGCAGCGGCCGCCGCCATGAAGAAGCAGTTCAACCGCATGAAGCAGCTGGCCAACCAGACCGTGGGCAGGGCTGAGAGAACAGAGGTACTCAGTGAAGACCTGTTGCAGATCGAGAGGCGCCTGGACACGGTGAGGTCCGTGTGCCACCTGGCCCAGAAGAGACTGATCTCCTGTCTGCAGGGCCAGCATGGCACAGACCCTGACAAGAGACACAAAAAACTTCCTCTAACAGCTCTGGCTCAAAACATGCAGGAAGGATCCATCCAGCTGAGTGATGAAACTCTGCTGGGGAAAATGCTGGATACCTGTGGGGATGCAGAGAGTAAACTGGCAATGGAGCTCTCCCAGCATGAAGTACAGATTGAGAGAGAAGTTATAGACCCACTGTGCCTGCTGACAGAGACAGAGATCCCAAATATCCAGAAGCAGAGGAAGCAGCTTGCAAAGCTAGTGCTGGACTGGGATTCTGCAAGGGGAAGATACAACCAAGCCCACAAGACTTCAGGAACAAATTTCCAAGTGCACCCTTCAAAAATAGAATCTCTTAAGGAGGAGATGGATGAAGCTGGAAATAAAGTAGAGCAGTGCAAGGATCAGCTGGCTGCAGACATGTACAGCTTTGTGTCCAAGGAGGGGGAGTACGCCCGCTGCTTTGTCACGTTATTAGAAGCACAAGCAGATTACCATAGAAAAGCATTAGCAGTCATAGAAAAGGTCCTACCCGAAATTCAAGCCCATCAAGACAAATGGACTGAAAAACCAGCTTTTGGAACTGCCCTGGAAGAGCATCTGAAGCGCAGCGGGCGGGAAATCGCAGTTCCTATCGAAGCCTGTGTCATGATGCTCCTGGAAACGGGGATGAGAGAGGAGGGCTTGTTCAGAATTGCTGCTGGAGCCTCCAAGTTAAAAAAGCTGAAAGCTGCCCTGGACTGTTCCACCTCCCAGCTGGATGAGTTTTACTCAGATCCCCACGCTGTCGCAGGTGCCTTGAAATCCTATTTGCGGGAGCTGCCAGAGCCTCTCATGACCTACAGCCTGTATGAGGAGTGGACACAAGCTGCAAATATTCAGGACCAGGATAAGAAGCTGCAAGAGTTATGGAGGATTTGTAACAGATTACCTGAGCATTACCGTGTTAACTTCAGGTATTTAATCAAATTTTTAGCCAAGCTTGCCCAGAACAGTGACGTTAACAAAATGACACCGAGCAACATCGCCATAGTCTTGGGCCCCAACCTGTTGTGGGCAAAGAATGAAGGATCCCTGGCTGAAATGGCAGCAGCCACTTCAGTGCACGTGGTAGCAGTTATTGAGCCCATTATTCAGCATGCAGACTGGTTCTTCCCTGGAGATGAAGATTTCAACGTGTCTGGGGCGTTTGTGGCAGTTCCTGCTGTTAATTCCAATCACTTGTCACACACTGGGAATGACTATGAATGTGGGACCCTGGAGAGGAAGAGGCCTCTGAGCATGACTGTGATGGAAGGGGATTTGCTGAAGAAGGAGAGTACCTCAAAATCCAAGGACAGCACATCTTCAGCCACTCCTCCACCGGTGAGGAACGGCAGCCAGGCAGGCCCTGCCCCGGGCCAGGCAGTGCCCAGCACGTCCCAGCTCTCTGTCACCCAGCCCCAGAACGCTGCTGGTCCCAGTCCCCACGCCCTGAGGAGAGCTGTCAAGAAGCCAGCACCAGCCCCCCCCAAACCAGCCAACCCCCCTCCGGGGCAGCCAGGAAGCCAAAGCTCTTCCCCAGCTGCTCAGCCACCTTCTGTCTCTCCCAAACCACCAGCCAGAAGCTCCTCTCCTCCTGCTCAACACGCAAACCAAGGAGCAGCCCAGACCTCCTCCCCTTGCCAGGTTTCTGCACCTCGGAGATACTCCAGCAGCGTGTCCCCAATCCAAGCCCCCAGCCACCCACCCCCGCAGCCCCCAGCACAGGCAACTCCTCCCCTGCAGCCCAAGGGCAGCAGCCAGGGCTCTGTGGAGCAGGGGGCAGAGCAGAGCCCCTCGCTGTCCCAGCCGCAGACCCCCACTCCCCCGGGCAGCCCCCCGGCCGTGCCCCCCGAGCCCTGCCAGGCTCCCTGCGGACCTCAGAGCGGCTCCCTGCCCCGGCCACGGCCCGTGCCCAAGCCCAGGAACAGACCCAGTGTCCCCCCTCCTCCTCACCCTCCCTCGCAGCTGCCTGCAGACGGGACGGCTGCAAACCCTGCTCAAACGGCGTCCAAAATAGTCACAGACTCTAATTCCAGTATTCCAGAGCCACCTCCAAACCCTCCTCCAGAGCTTCCTGCAGAGCCGGCGGGCAGAGAGCTGCACAACCACGTCCTGCTGGCCATCGACAATGACACGGAGAGCACGGCGCTGTGAGCGCTCCCTCCCCGCGCTCCTCTCCTCAGACCTCACAGGGAAAAGCTTCTTCTGGCAACGTGGCACAACGGTGTGGAGCTGGGGCTGCAGCCTGCTGGGCACAGGGATCTCCAGGATGGCCGAGGTTGGAGAAGACCTCGCAGAAAATCCAGCCCAGCCTTTGGCCCAGCTCCGGTTTCGCCCTCAGAAGAAGTTTAATGATCTGGGTCTGGACAACGGTTTTCAAACTCTTGGATGGAAGGAATGAATTCCTGCAGGAACTCGCCTAGGAAGCGTGGTCAGTGCTGATACAGGTGGTATTAGCAGAGATTCCAGAAGAATAAGAAGCAGAACATTAGTTATTTAAAGTGCATGTCTGTATTAGGGGAATAATCCTTCCCATGGCACGGTTAGAGGTTATTTGTAGTTCTTAGCCCGTACCAGGAGCTGCCTCCCAAGGGCCATTCCCTCTCGGATTTGCTGCAGATTCCCCCCAAGCCATGAAGCAAACCCTGCCCCAGTGCTGGTGGTGACTGCTGGTTCTCAGTCACCCTGTGGAACTGTGGATGCATCCCGTGCCTTGAAGGACTGTCGTGCTGTAGGAGGATCTTCCTGTCTCTTTAATCATTTCATTGCTACTTAGGATCAGTACTTACCCTGATTTCATAGTTATTTGTATTAACCTGCTTTGTTCATGTGCAACTGGCAACTGTTTCACGAGGAAACCGTGGAAATGGGGTTTGTGCTTTTGTTGAAAACGGTTGAATTTTGAAAGAACTTTGAAACAGCTGTTAGGATTCAGCAGTTGAGTGAACATTTATAAAATTAAAGATTGGTTTTTGTCAACTTAA +>XM_039807938.1 PREDICTED: Perca fluviatilis tubulin, gamma complex associated protein 6 (tubgcp6), mRNA +TTTTGTCGAAGCCCCGCGGTAGATTGTGAATCAAGCGACTAGAGAGCAATTAGCTAGCTAGCGACAACATCTAATATGCTGGAACAAGAAACCTTTCAATAATAAAAATACATTTTGAAGCAGTGTAGGGGACCCATCTACTGGGTTTCACATGCTTGGTACACACAAGCTAGTTAAGCAGGACAGCTAACGTTAGCGTTAGCTGGCTAGGTGATCCGTGGGGGCTTGCTAATAACAAACGTTAGCATGCACTGGAAGGAACCTTTTGGGGTGGATGCAAGATTGAAACTGTCTGAATCAACGAAAAATACACCATCTCGAAGGCTGAGGTAACAGTGCCACCATGTACTCGAGCCTAAACAACCCAATGAAGTCCAGCTGCAACAGCAGCAGCATCACTGAGCTGCTGGGTGCCCTGTGTGACTGCAGCCTGTCTGGGGTGTCATGGAAACGCCGTGCCCTGGGTGGAGTTTCAAGAGAAGGTTTCCGCAGAGCTCTCAAAAAACGTGCCTACGGTGCCCTGCTGTCTAAGCTATTTCAAGATGACACCAAAGGGTCTGCCTCAGGACTGAGTGCCACAGCCAATACACCGCCCAAAAACAAAGTTTTGATGATATGTTTTGACTTGCGGGTGGCAGGGTGCCGAGAGGAAGCAGAGCGTTTGGAGGAGCAGCTGGGGATGCTGTTGGATGGAGCATCCTCTGGCCTAAAGGAAGTAGACGCTGTCCTTGAGCTCTTGGTACATCTAGCTGGTTCGGCACCTCCACCCCCTACCTCTTTCATTAGGGACTATATGAGACGAGAGAGGCCTGTACTGCGGAGGCCTCAACCCTGGGGCTACCAGAGCGAGGAGCTTCAGAGGCTAGAGGCCCGGGCATGGAGTCTAGTGTGTGGGGAGGAATGGGGGACTTTAGAGAGTTTGTGTGGAACTCAGAAGTTGATGGATGCTCCTCCAGGCACAGGACTGCTGGCTCTGAGAACTAAATTAGAAGTGGAAGAAAGATTTGAGAGGGAGACCAGGATGACACTGTTTGGAGCACTGCAGCACACTCGCACCTCAGACATAGACATAAGACTGGACCTGCCTCCTGTTCCCAGTAATATTGATGTAACTGGGCTGGCTATACGGGTCCCCCCATGTATAGATCAGTCTGAGGATGAAGGTTTCCAGTCAGCTTCCAACATGACCCCAGACTCTCAGTCAGAGACCAGCCCCATACCAGACGTTGATATATGGGAGGCTCTTCGCACATTTGAGCCTGGAAGACGTCGCTGCTGGGAGTCTGTTGGCTGCCCACCAGGGAAAAGCGAGTCACTCTATCTAACAGAGGGAGGCAGGGAGGCCTTTGACCAGCTCTATCGTCTGTGGGAGGGGGAGATGAGGGTGGTCAGCACTGCTACACCTTCTCCTCTCCTCCCGCTGCCCCTGGACTCTCAGGCACTACTGGTATTTGACCTCCTCAACGTCTTGATCGGGGTGGCATCCACGACCTTCCCTCTCAACCAGAGTGTTCAGTTTGATGTCAGACCTGGTGTGTGCGTGTCCGGAGCCTCTCCAGAGAGTGTGTCTCGTCTCTTGGGGGAGCTGGCCCAGTACGGCACCCACTACTTGAGGCTTAGTCGCTTTTCTCTGCCGAGTGCTGGAAAAAAAGGCCTAGTCTTTCAGGCTTTTACAGGTGGTCTGCGGAAGTATCTGCATTACTACAGGGCTTGCGTTCTCAGCACTCCACCCACCCTCAGCCTGTTGACTATTGGCTTCCTCTTCCGCAAAGTGGGCCGCCAACTAAGGTACCTGTCAGAACTGTGCTGCGTAGATGGGCCTTTGGGTGCAGGCCAGGCTACCTTCCCTGTGGGTGTTAAACTGCTGTCCTACCTGTACAATGAAGCACAGAATAACTGCAGCAACGAGAACTGCGCGGTCCTCCTGTCGCTGCTGAAGAGCAGCTGTGAACCTTATACACGGTTTGTGTCTGACTGGGTGTATAGCGGCGTGTTTCGGGATGTTTATGGAGAATTCATGATCCAGGTTAATGAGGACTATCTCGTCTTCAGAGACAAACACTTCTGGGTCCAAGGCTACACTCTGATCTCAAAGGATGTGGAGGATTGTGTGCCCATCTTCCTGAGAGACATTGCCAACGACGTGTATGTCTGTGGAAAGACCATCAACCTCCTTAAGATCTGCTGCCCGCAGCACTACATCTGCTGGTCGGAGCTGCCGGTGCCTCGCATTGCTGTCACCTTCTCCCTCCGGGAGGTGGAGGACATCGAGAGGGACTGTGCTGTGTACCGCGGACGCATGGAGCGGGTTGCTAAGCACAGCGCCATCAGCAGGGAGGAGCAAGCCCAGCGAGCAGAGCAGGCACGCCAGGAGCTGATCAATCAGGTCAGAGAGTCAGCGGCCAAAACCCTGGAGAGCATCCGCGGGCGCCAGGTGTCACAACGTCTGGCTGAGGAGGCCAAGAAGAAGGAGCGTTTTGAGGAGCTGAAACAGCACCTGGAGCAGGAGCAAGAGTGGCGAAGCGTAGCCACAAAGAAGCAGGAGGAGGATGACTTCAGCTTTGCCAGAGAGCTGAGGGACAGAGAAAAAAGACTACAAGCCCTCGAGGAGCAACTGGAGCAGAGAGCCAGGAAGGAGCTGATAGCTCAGTACAGCCGTCTGTCAGAGGATGCAGCTCGCAGAGAGAGACGGGCCATGTGGCGGGTGCAGCGAATGAGACTTGATGAACCCCGGGCTCAGTTCTTCATGCATGACAGGCAGCAGACTCAGGCAATGCTAGAGAAATATCCTTTAGGCCAGAAGAGACCTCCCATCAAAGTGTTTCCACCTGTTACCTCAGCACAACAGACTGCACTACAACCAACACTGGAATCTCCCACTCAGCATCTGTCTGAGCAGCAGCCAGCGGAGACTCAAGAATCTGATGGTGTATCACCTGACCCATCTTCACCTACCCTCACCCACCTTACAGTTAACCTCGCACTCATCTCTGAGAACGTTGACGTCAATGATTTTCTTCCTAAGTCACCAAATCCTAACAGTCAGCAGGTAGACATCGCCCTACAGGAGATTGGCTCTGACCTACCTGAAGTGTGTCCTACAGCACAGCTAGTAGACTATGACTTCAGTGCCCCCTTTAGTCCACTTGAAGGTATCACAGGTCAAGCCTCAGTCCAGCCCCAACCTCGCTGGGGACCTGCAATCCAGCCTGACTTGATCCAAAACCATCCCTCTTTTTCTCACATCCTCATAGGAGAGAACATGTCTCAAGTCCAGGATTGTCTCCCCAAAGCTAGCCCCTTTGGCCAACCCTCCAAATCCAGCTTTACGCTAGGCCAGTACACCCCAGAGGAGCTTCAGAATACATCTAAAGCAAGCATTTATGGACATCCCTCTCAAGCCTCAGTGCAGTTAGTAGATGGGAGTGGCTCTATGACTGACAACAAGCAGGCGGAAATTGCATCTGTGATCATTGAAATGGGGAATTTAGAAAGTAAAGAGGCAAATAAAGACAATGATGTGCTTGATGCAGCTTTGTCCACCACACCAGAAGAAAGTGGCAAGGGTAATTGTCGTTACAAAGCAGTGACAAGTCTTTCTGACTGTGGTGGGATTGAGCCACCTGATGCAAATCCTAACCCAAGCACTCAAGACCGCAGCTCAGATGCTCAAGATAAAGCTGGTGATAATAATTATTTGCCAAATGTTCATCTCCCCAGTGCTCGCCTTAAAGCTGGAGAGCTGGTTTTAGATGTCGTTGCCCAGCATTCTTTACCTAGAGTCCATGGGCATTCCTCTGATGCTCGCGTAAAGGTTGGACAACTTGTATCAGAGGTAACTGCTCCTCTTCCATCCCCTAACGTCCACGGTTATGCCTCAGATTCCCATATCAAAATTGGAGAACATATTTTGGAAGTTGATGCTTCTCTACCTTCCTCCAGTCTTCACAGTCAATCTTCTGATGCTCACATTAAAGTTGGGGAAAATGTTTCAGATATAGTTGCCCCTCTGCCCTTTCCAAACGTTCATGGTCACAGTTCAGATGCCCACATTAAAGTTGGAGAAAATATCTCAGATGTTGTCGTGCCACTTCCTGCTCCCAACATCCACGGTCACTCCTCTGATGCTAATATAAAAGTGGGCGAGTTTCTGTCTAACATACCTGAAGCAAGGCCTCGTGAGAGTAAACATGGGCATGCCTCAGACTGCATGCTTCAATCAGGCTGTGTGGTGTCTGGAACTGAACCCGCCTTGTCTGTTCTACCTGGAAGCTCTTATGGTCACTCCTCAGACTCAGGGTTAGGTGGTGGATGTGTAGTTTCAGGAGAAGAACCCAAACGTTCTCCTCTACCTGGCAGTGCTTATGGTCATTCTTCAGACTCAGGGTTAGGTGGTGGATGTGTAGTTTCAGGAGATGAACCCAAACGTTGTCCTCTACCTGGCAGTGCTTATGGTCATTCTTCAGACTCAGGATTGGGAGGTGGATGTGTAGTTTCAGGAGACGGACCCAAACGTTGTCCTCTACCTGGCAGTGCCTATGGTCATTCTTCAGACTCAAATTTAGGCGTTGGATGTGTTGTGTCCAAAACTGAACCACTTCCATCACAACTACCCGGCAGCACCTACGGCCACTCCTCTGATTCAACCCTGGGGGTGGGTTGTGTGGTGTTGGGGACAGAGCCACAAGCCTCTGCACTACCAGGCAGCACCTATGGCCACTCATCAGATTCTTCACTCGCAGTTGGGTGTGTGGTGAAGGGCAAAGGCAGCTTAAATCAGCAGAAGACAGACGACAATGAAGATGGCAGAGGTTCTAAGTCGGACAGCCCTGGTGAGCAGCTGGTTGAGTTCATGGGGTCCTGGGCAGCAGGCTTCGGTTTGTCCCCTGGAGAAAAGTCTGAGCAGGAATATCTCTTGGCTTTGTGTGCTCAGTACGAGGTGGAAAAATACGAAGACTGCTACAACCTAATGGCTTCGTCCCCAGAGTGTCAGCTGCTGAAGCAGGTAACTCGGGGACCCTGGGGCCTTCCTATGGACCACACACTCCGCAGAGCCACAGACACCACTGTTGTCCAACTCAGCGAGATGGTTTCTCTGCCAGTTCTGATAAAACAGGCCGTCACTACCCCACTGATCACACATGTGTCATTGGTGAACAAGGCGGTGGTGGACTACTTCTTTGTGGAGTTGGGGGTGGAGAGACACTTTGAGGCACTGCGCCACTTCCTGCTGATGGAGGATGGCGAGTTTGCACAGTCCCTCAGCGATCTGCTCTTTGAAAAGCTGGGCAGTGGCCAGACTCCCGGTGAGCTGCTGACCCCCCTGGTCCTGAACTCCATCCTCAGTAAGGCCCTGCAGTACAGCTTGCATGGGGACACCCCCTTAGCAGGTAACTTTACCTTCGCCCTGCGCTTCCTCCCGGAGACCTTCCACCCACACGCCCCCGATTCTCTCAACTGTCTGGAGCTCCGCTACAAGCATGAGTGGCAGCTTAATCGCATCATCACGTACTGCGCCGAAAACAAGTACAACCGTCTGTTCTCGTTCCTGCTGCAGCTCAAACACATGGTGTGGAGCCTCCGTGAGGTCTGGTTCCACCTCAAGAGAACAGCGCTGGTGAAAGGTGCAGGTCGCTCGGTGCAGTTTCGGCAGCTGCAGCTATACAGACACGAAATGCAGCATTTTGTCAAGGTGATCCAGGGATACATCGCCAACCAGATCCTGCAAGTGTCCTGGAGCGAGTTCACAGCCAAGCTGGCCACTGCCAACGACCTGGACGCCATTCACCGTACACATGCAGACTACCTCAACAGAGCCATCTTCAGGGGTTTGCTGACAGAGAAGGCAGCTCCGGTCATGAACATCATCCACAGCATCTTCAGCCTGATCCTCAAGTTTCGGGCCCAGCTGATCGCACAGCCCTGGGGCAGCCAGCAGGGGGAGGCAGTGCACCCAAGCTTTATTGCCATGCAGCAGTCGTACAACACCTTCAAGTATTACTCTCACTTCCTTTTCAAAGTGGTGACCAAGCTGGTGAACCGAGGCTACCAGCCTCATCTAGAGGATTTCCTTCTTCGCATCAACTTCAACAACTACTACAAAGACTCCTGAGCTGTGTACTGGTGTGTATGTTGTACATGAGCTTAGTGTGAGTACTTGACATAATACAGGCCATTTGTTAGATACTTGCAATGCACTGTTTACATCTTAGAGTCCCCTGTATCTGTCTATAAGACAGATAATCAGAAATATATAATACAATAAATGTTAGTGTCGAAAATACATTAAGAAACCCACCTGTACTTTATATTAGGCCATGAATTTGAAATTTAAATTGTATGCAATTATGCAAAGTTTATGCAATCCATGTGCAGGATTTAATTAATGGCTAAAACTGTATGCTGCCAAAGTTTGTAATTAAGGTGAAGCTGATGCCTACTGTAATGTCTCACGATTACGTGTGCCTCCAGCTATGTAGATTTTAAGTGCATATAAATGAAGTGTCAATTGCATGTAAATACAATTGTTAAATAAATGCGCTATGTTCCTGTGT +>XM_050218304.1 PREDICTED: Anopheles maculipalpis sensory neuron membrane protein 2 (LOC126561926), transcript variant X2, mRNA +GAGTGTGGGTGAGTGGGTGCAGTGAACGGTGTCACGGTGCTGCCAGGCGACGGCGATCCTCCAAACCACCAAGATGGTGCAATGCACTCTGATCTGGGCCGGCATCGGTGTGATGATGGCCGTATCCGGCGCACTGCTCGGTTGGGTCGTTTTTCCTCGCGCCGTGCACGAGAAAGTGATAGAGGCTACGGAACTACGTCAAGGGACGGATCAATACAAGCGATGGGAAGCATTGCCACAGCCGTTAGATTTTAAAGTGTACATATTCAACGTCACTAATCCGTACGAAGTGATGCAAGGACGACGGCCGAAGGTGGTTGAAGTTGGACCATACGTTTATTTCCAATATCGCCAGAAGGATAATATACGGTTTAGTCGAGATCGGTCCAAGGTGCATTACAGTCAGCAGCAGATGTATGTCTTCGATCCCGAATCGTCCTATCCACTGACGGAAAACGATGATCTTACAGTGTTAAACATGCACATGAATTCCATACTGCAAATAGCCGAGGATGAAACGTACGACAGTTTGCGACTGATCAATGCCGAGCTGAACCGTATCTTTGGCCGACCGGACACAATGTTCCTGCGGACGACACCGAAACAGTTTCTCTTCGACGGTGTACCGTTCTGCGTGAATGTGATCGGCATTGCGAAAGCAATCTGCAAGGAGATCGAGAAGCGTAACACCAAAACCATTCGCACCATGCCGGATGGAAGTTTACGGTTTTCGTTCTTTAGCCACAAAAACATGACAGATGATGGTATGTTTACGATCAACACGGGAATTAAGGATCCGTCGCGGACGCAAATGATTGAACAGTGGAATGGCCGAACAACGCTCGAGGTGTGGAACAATCGGAGCAGTGGATTGCCCTCTGCCTGCAACAAGATCCGGGGTACTGATGGGTCCGGCTATCCACCGTTCCGAACCGGTGTCGAACGAATGACGATCTTCAGCACCGATATCTGCCGCACGGTGGACATTAAGCTAACCGGGGCATCATCGTACGAAGGCATCCCCGCACTGCGGTACGAGATCGACGGTAACTTCCTGCATGAAATAGGACCCGAGTACGGCAACGAGTGTTACTGCGTGAACAAGATCCCGAAGTCGATCGTTAAAAGCAATGGCTGCCTGTACAAGGGCGCACTGGATCTTTCCAACTGTTTCGATGCACCGGTGGTTCTGACGCTTCCTCATATGCTGGGTGTAGCCGAGGAATATACAGCACTGATTGACGGCATGGACCCTGAGCCGGACCGGCACCAGATCTTTGTGGATGTAGAACCGTACACCGGCACACCCTTGACCGGTGGGAAAAGGGTACAGTTCAACATGTTCCTGCGACGGATCGACGCCATCAAGCTGACCGATCGGTTGCAGCCGACCCTCTTCCCGGTCATCTGGATCGACGAAGGTATCGCACTGAACGAGGACATGGTGAAACTGATCGATGACAGCCTAATGAAAGTGCTCAGCCTGCTAGACATTGTGCAGTGGGTACTGATCGGTGTAGGGCTCCTGCTAGCCATCCTGATGCCGATCGTCTTCTTCGTCAAACGCTGTCGTGGCAACGATAGCCGTACGGTTAGTCCTGCCGTAACGGCTACCACGAGTGCGGCCAGCCTATCGATGGCGACGGGCGTTACCGGCGAGCGGAACAAATGACCTTCGCTGACAATGCTAAGTCTGGACTGATGAACTGCTAGCACCAACTAGCGATCAACATTTAGAAGGTGCCAATGAG +>MK538674.1 Uncultured bacterium clone OTU_1300 16S ribosomal RNA gene, partial sequence +GGGCCCGCACAAGCGGTGGAGCATGTGGTTCAATTCGAAGCAACGCGAAGAACCTTACCAGCCCTTGACATCCCGGTCGCGAGCACCAGAGATGGAGCTCTTCAGTTCGGCTGGACCGGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGCCCTTAGTTGCCATCATTTAGTTGGGCACTCTAAGGGGACTGCCGGTGATAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACGGGCTGGGCTACACACGTGCTACAATGGCGGTGACAGAGGGATGCAAAGGAGCAATCCTTCGCAAATCTCAAAAAGCCGTCTCAGTTCGGATTGTGCTCTGCAACTCGAGCACATGAAGTTGGAATCGCTAGTAATCGCAGATCAGCACGCTGCGGTGAATACGTTCCCGGGCCTT +>XM_023646352.1 PREDICTED: Equus caballus chromosome 7 C19orf24 homolog (C7H19orf24), transcript variant X1, mRNA +GCACTCGTCCCTGCCGGGCCCTGGCCGTCTCGGCGGAGTGACCGGGCAGCCTCATCGGTGTTGCGGGGCCGAGCCTGCTTCCCGGGCGGGCTGGTGGCCTCCTCGCTGGTCTTGGGGTGCAGCTGTCTTGGGGCCGAGCGGGTCCCCTCAACTCCCCCGGGGTGGGGGCGGCGCAGCGGGCGCAGGGCCCTGTCGGTGTGGTCAGCGCGGTCAGGACGGCGAGGGCCCCGCGTCTGCCGGCGGTCCGGTCTGCTGGTCCTGGCTCTGCGGGCGCCGATGCCGTGGCCTCGTGGACGGCGCGGGCCACGGCACGGCCGCCCTGCTGGCCCACCGGCCCCCGGGCTGCACGGGCTGCGGGAGGGCCCACCGGCCGAGAACAGCGAGTCGGGGCCCGGACCGGAGGGAGCCCAGGCTCGGCCCCAGCCGTCCTGCGTGGCGTGGCCTCGTCCGTGCGGGTCCTTGGGCGGCGACCCTGTGGCGCGCCCAGCTGCCGTGACCCGGTCTGGCCCAGGGCAACTGAGGCCTGGCGCGGCGGGCCCGCGGGGCCGGGGCGCGGGGAGACGCCCCGGGAGCGGCCGGGGGCGGGCGTTTCCGGAGTCGGGCCCCGCCCCCGCGGGCCATTGGCTGGCGCCGGTGAGTGACAGCGCGGCGAGGGCGGGGCAGCCTCCGCTTCCGGCGGGCCATGGGGCCGCGCGTGCTGCCGCCGCCGCTGCTGCTGCTGTTGCTGCCGGCGATTCTGCTGCCGGCGTTGCTGTGCGGGGCCCAGGGGACCACGCCCAGGTCGTCGCACCCCGCGTACGCCACGCTCTTGCCGTCGCCCGCCGTGACGAACGGGAGCCAGCCGGGCGCGCCGCACAACGGCACGCACCCGCGCTCGCCGGCCGCGCCGGGCTCGCCGCTGCTGCGCTCCTTCTACGTGCTCACGGGCCTCAGCGGCCTGGTCGCGCTCTACTTCCTCATCCGGGCGTTCAGGTTGAAGAAGCCGCAGCGGCGGAGGTATGGCCTGCTGGCCAACACCGAGGAGTCCGCGGAGATGGCCTCGCTGGACAGCGACGAGGAGACGGTGTTTGAAAGCAGGAATCTGACATGGTGGCGTTTCCAGCGGCCCTGGGGGAAGGACAAGACGCGGGGTCACCCCCAGTGCCTGGCGCAGTCGCTGATTCTTTTGTTGGCCTGGCTGCACCGCGACAGCTCGTGTGGGACCTGCCCAGCCTCCCTGAAGACGCTTCAGCCCCCGCCTGCACAGGACCACCCGAGATGGCCGGTAGAAGCCAGAGAGGCTCTGGCAGCCCCTCCCAGGACTCAGGCCGCCTGGCCGGACTGTGGCTTGTGCTGCTTGCTCTTTGCTGTGGGGACGTGGCTGGCCTGAGCCGAGGCCTGGGGGGCAGGGGGGCTGAAGGCCTGTCTGGGAGCACCTTCCCCCTGGGCTGGGGACAATAAAGGAGTGGTGGCTCTGTC +>XM_035641279.2 PREDICTED: Scophthalmus maximus zinc-binding protein A33-like (LOC118314697), mRNA +TGGAGCTGGAATATTTTTCCTATAACCTCACTTTACAGGAACACTTCAACCTCACCATGGCAGCAATGAATTCGCCCCGGGAGGAGGACTTACTTTGTCCCCAGTGCTGCGAGATCTACCGACTCCCTGTTCTTTTGAAATGTGGCCACAATGTTTGCAGAGTTTGTTTACAGAAATTCTGGGAATTGAAAGGATGTCGAGAATGCCCAGTGTGTCGCACTGTGGCTGAGCCCGGGAGGCCTCCTATCAATCTGCCACTAAAGATAGCTGCAGATGAATATCAACTGCGACGGAGCAGCAGGAATCGAGACCTTTGTTTTCTTCACGGTGAGAAGCTGACACTTTTTTGTCAGAACGACGAAGAGCCCGTCTGTGTCGTCTGCCACACATCCAAACAGCATAAGGTGCACGAGTGCTGCCCAGTAGAGGAGGCTGCCCAACAGAAGAAGACAGAGATTTCAACCATGCTGGAGTCCCTGAGGAAAAAGCTCAGAACCCTGAACAAGACCGAGGAGCACTGGAAGGAAACAAAAACCTATTTACAGACCCAAGCTCGTCAAAATGAAGAAGGGATAAAGGAGGAGTTTCGGAAGCTGCACCTGTTCCTCCAGGAGGAGGAGAACGCGAGACTAGAGGTTCTCAAACAGGAAGAGGAAATCAAGACCCAGGTGATGTGTGAGAAGCTGGACAACATCCAGGAGCAGATCACAACCCTCTCCTCCACCGTCAGTGATACGGTGGCCACGCTCACAGCGAAGGATTTGACCTTTTTACAGGACTACAAGAAGACAAAGAAAAGGGTCAAATGCAACGTTCGAGAACCGGAGTGCATCAGAGACATCCTGATAAACCCTGCAAAGCATCTGGGATCGCTTAAGTTTGGAATTTGGAAGAGTATGGCCAAAATGGTCAAATATGTCCCCATCACTCTGGATCCAAACACAGCCCACTCCAACCTGGAGTTCTCTGAAGAGCTGACCTGCGTGCAGTACAGCAGGAAGCAGCTCCTGCCCGACAACCCCGAGCGCTGCACCAGCCGTCTGTGTGCGCTGGGAGCGACCGGCTTCACATCTGGAAAGCACAGCTGGACAGTACACGTGGGCCAAAGCAGAGACTGGTACATCGGAGCGGTCCGAGAGTCTATCAAGAGGAAGAGCGCCGTCTTCCTCAACCCTGCCGAGGGCTTCTGGGTGATCGGCCTGTGCGGCGGAGACTCGTTCTGGGCTCAGACGTCGCCTCGCACCAAGCTGGTGTTGAAGCAGAAGCCCGAGAGGATCACTGTGGAGCTGGACTGTGACAAGGGAAAGGTGGTGTTCACCAACGCTCAGGATTCGACGACAATACACACATTCAGAGACAGATTCACAGAGAGGATCTTCCCCTACGTCTCCACCGGATTGTACGGGGAGGGGAAACTCTCCAGCCCATTGACGATCTGCCCTCTGACCGTAACACTGGAAGTAAAATAGACTCACACAGCAGATGAAGAGACACCGTTTTAAATTAGATGTGCGCGTTTTAACTTTTGACTGACATAAAAAATAATGATAAAGCCATGATTCACACATGAAATTCAGCAGCCAACTGAACGATACCATACTTTATTGTATGACTTATGTACAATTTATTAAACAAGACTATAAACACTTTCAA +>XM_041090641.1 PREDICTED: Gossypium hirsutum uncharacterized protein At4g17910-like (LOC107939771), transcript variant X6, mRNA +ATAAAAAAAAAGAGTAAAGCCCATCAAAATCCCTAAAAGCTCGTTCCCATGTCTTGCCACAACAATGGTAAAGCCTAACCCATTTATAATCGTCGAGTCCACCAGGTTTTCGGCTTTTGACCCATCCAAGGTGAAAAATATTGTTTGGCTAAAAGCTCTGATCTCCTGTAATAAATTCACAACTGCGTTTTCAAACTCTTCGTCAATGGATTCCTTCCCAAGATCTTTGAATCCCAACAAGCACCTCAGAGAACAATTCGTGAGCAATTTGCCTGGATCTTCCATGCTTGAAGTCTCTGCGCTTTTGAATAATGTAGCTCTTCTAATGCTTTTGCGGCACACTTTCTGCTCTCAAACAGTGAATGATGCTTGTAGGAGTTTAAAGTCTTACCTAGCCTCAGTAGCTTTGGATTATGTCTTCCTTGTTCTACCCACACTTTTAATTTTCACTGTTCTAGCAGAGTGGGTATACATATGCTTGATTGGGTTATTGTTATTGCTGGTCTTCTTTACTGCAGTCAAAAGAACTTACTCTTTGCCTTACATGGAAGGACCTAATGCTTCAAGGGCAAGCATATCATCTTATAGGGTTGTTACGATGTTTATCACATGCTTGTGTATCTTGGCTGTTGACTTCAGAATATATCCTAGAGAATATGCTAAGACAGAGACTTACGGGGCTAGCTTGATGGACCTTGGAGTTGGCTCCTTTGTGCTAATGAATGCTGTTACTTCACGGCAAGCACGAAACATCAAATCATCAATGAGTTGGTGGAAGGCAGCCTTTAAATCTACAACTCCGCTACTACTGTTAGGATTTGCTAGACTTGCTTCTACATTGAGTCTAGACTATCAGGTACATGTGGGGGAATATGGAGTCAACTGGAATTTCTTTTTCACACTTGCTGGTGTATCTATCCTTACATCCATTTTAAATGTTCCCGCAGAATATTCTGGAATTCTTGGTTCAGTAATTTTAGTTGGGTACCAAAGTTGGTTGACTAATGGGCTAAATGTTTATCTTCTTTCTAATGAAAGGGGTACGGATGTCATAAGCAGAAACAAGGAGGGAATTTTTAGCTTATTTGGATACTGGGGTATGTATCTTGTTGGTGTTCAGGTCAGCTACTATCTCTTCTTTGAAAATCATACTACCAAGCAGAGAAGCAAGCATGAAACACGAATCAGAATCTGCCTTCTTACTATTATGTTTTGTGCAACCTGGCTTATGTTACTTGGGTGGTGGCTCAAAATCTACAGGTATCTGAAGATTGACTATCAACCATGACACTGCTAGGAATTTTTGGGTTCGAATTACCATGTTTGTTCTCTATTAGCCTCTCAAGAAAAGTTCACTCAGAAACTTTGTTATACAAATTGAACCCTTGCCTGTGTACCTTGTTTGGTTGTCTTTGGTTATTTTGCTTGTATTTGGATATTAAGAGACGGAGCAACATAGGTTTTTGGTATACTTGATGAACATAGATGCAATTACTTACACAAGATAATCGAAATGCTTGTTGGTGTTTCAA +>XM_015948335.1 PREDICTED: Nothobranchius furzeri homeobox containing 1 (hmbox1), transcript variant X1, mRNA +TGTAGATCCATCGGCTCCCTGTCGCTCTCGTTGCTGGGATTTGTAGTCTTTGTGTCGAAGAGCGCCGCCGCGTGTCGGGGGCTTCGGTGGGAGTGAAACTACAGTTCCCTCTGAGCTGCTCGGAGGTGTTAGTTGTCAGTATGGCTGTTGTCAGACAGACAAAGCAGAGAGGCAAATAATTCGCCTCTGATTAGAAATCCTTGGAAGAGGGTCGCGCGGGGCACCGCCATCAGATTCGCGTCGTTGCTCGGCTGCGGCAGACCGCGCAGCTGCTCTCCGCTCTAGTTTTAAAGTTAGATGGTTACGTGGACGTCTGGAGCCGAGCAGGATGTCTGACTTCAGCGAGGAGCCGCGCTTCACCATCGAGCAGATTGATCTGCTGCAGCGGCTGCGGCGCACCGGCATGACCAAGCAGGAGATCCTGCATGCGCTCGACACTCTGGACCGGCTGGACCGGGAGCACGGCGACAAGTTTGGCCGCCGCACCTCTTCTTCCTCCTCCTCCTCCTCCTACCTAGTAGGCGGGGCAAACAGCTGCACCAACAACTCTGCCTCCAACACAACCGCCACGTTCAACAATAACACCGCTGCCTCGGCAACCACCACCTCTTCTGCATCGTGTAACGGTAGCAACAGCGGCGAAGGCGGCACCGCGGATCAGTCCGTTGCCGCCGCCGCCTCTTCCACGGCCTCTAAAATCTCTACAGCCACGCAAACTCAGTTTAGTACTGGAGGGGGACTTTCTCCGTCTCCCAGCTATGACACCTCCCCCCCTCCAGGGCCGCCGCCGCCCTCCGCCATCCTGCCGTCACCGGTGTCTCTGGTGGCGCTGTCTCAGAACGGCCGTGACAGCCTGGCTGCCACGCCCAACGGGAAGCTGTCCCCTCCTCGGTATCCGGTGAACAGCGCCGCAGCGTCCCGAGCGTTCGGGTTTGAAGCTGCAGAAGAAGACCTGGACATCGACGATAAGGTGGAGGAGCTGATGAGAAGGGACAGCAGTCTGGTGAAAGAAGAGATCAAAGCTTTCTTGGGGAACAGGAGGATTTCTCAGGCTGTGGTGGCACAAGTGACTGGCATCAGTCAGAGCAGGATCTCCCACTGGCTGCTGCAGCACGGCTCCGACCTGAGCGAGCAGAAGAAGAGAGCCTTCTACCGCTGGTACATCCTGGAGAAAACCACCCCAGGTGCGACTCTGAACATGCGTCCGGCTCCGCTGCCTCTGGAGGAGATGGAGTGGAGGCAAACCCCGCCGCCCCTCAGCACGGCTCCCGGAACCTTCCGGCTGCGGCGCGGGAGCCGCTTCACGTGGAGGAAGGAGTGTCTGGCTGTGATGGAGAGCTACTTTAATGACAACCAGTACCCAGATGAGGCCAAAAGGGAGGAGATAGCAAACGCCTGCAACGCCGTTATCCAGAAACCAGGGAAGAAGCTGTCGGACCTGGAGCGGGTCACCTCTCTGAAGGTCTACAACTGGTTTGCTAACCGGCGCAAAGAGATCAAGAGACGGGCCAACATTGAAGCCACAATCCTGGAAAGTCATGGGATTGACGTCCAGAGTCCGGGGGCACACTCCAACAGCGATGACATCGACGGGAACGACTTCTCAGAGCAGGCCTGTGACCTGCCGTACTTTGACAAGAGACCTCTGAGCCGACCGTTTGGCCTTTACCGCCTGGAGCCCACCTCACCCACACAGGATGACGGCGCCGCTCACAGCGAGCACCAGGACCCCATCTCTCTGGCTGTGGAGATGGCTGCAGTCAACCACACCATCCTGGCCCTGTCCAGGACCGGGGGGGTCCCCAACGACATCAAGACCGAGTCCCTGGAGGACGAATGAACTGGAGCAGGATGCAGCCGGGGACAGAGGAGACGACGGTGGATTTAAAAAAGAGACCAAAATAATCCTACTTAGTAAAGCTGC +>XM_031476826.1 PREDICTED: Photinus pyralis uncharacterized LOC116163007 (LOC116163007), mRNA +ATGGATGAATTTTGTTCAGCAGAGAAAATACTCACTGCAGAACAGCAATACTGTGAGGATTATTTCAATCAAACTACTAAACGTGATTCTTCTGGAAGGTTTATTGTTAAAATACCTTTCAAACCTACTTTAAACAAATTGGGCGACTCTTATGACACTGCTTTAAATAGATTTTATGCCTTGGAGAGAAGGTTAAACAACAATCTGGAATTAAAACTTTCATATTCTAACTTTCTTAATGAATACATTACCTTAAATCACATGACAAAAATTGAGAGAGATAATCAGGTAGCCTTCTACATGCCACACCATTGCGTTCTCCGAGAAACAAGTGAAACAACTCGTCTCAGAGTGGTGTTCGATGGGTCATGCAAGCTTACGAATGGACTGTCCATTAACGATGTTCAATGGGTAGGCCCAAAGTTGCAAAATGAAGTAGTTTCAATTATTGCTCGATTTAGACTTTATTCTTATGTTTTAACTGGGGACATTACAAAAATGTATCGCCAGATTCAAATACATCCTGAACACAAAAAATATCAAAGAATTTTATGGAGGGAAAATGAAAGTGACGAATTATCAGTATATCAGTTAAACACTGTTACATACGGTACGGCGGCGTCTGCGCCATATTTGGCCATTAGATGTTTGATTCAAACTGCACTAGACAATGAAAAAGAATTTGGTTTAGAAGCTCAAATAATTAAGGAAGACTTTTACGTCGATGGCCTTATAACAGGGTCCGACAATCTACAGACATTAATGAGAATGACTATTAAACGAAATATACAACAAATTCTATTTACTGCAGGGTTTTCTTTGCAAAAATTTAAAAGTAATGTCAAGGAACTTAGGGATGATACTGATAATAAATCATTAAAACTGTCTGATAATCAAAATAAAGCATTAGGGGTAGGCTGGAACCCGAAACAAGATTCATTTTTTTACTGTTTTAATTCTTCTGAAATACCAGGACAAATTACCAAACGCACAATTTTGGCAACTACTGCACAAATGTATGATCCTCTTGGTTTACTGGCTCCAATAATCATTACTGCAAAATTGATGGTCCAAGAATTATGGCAAATTAAATTAACATGGGACGAATCAGTTCCTGCTTATTTGCATACAAAATGGTTGACGTTCAAAAACAAATTACATTATATCAATGAAATAATCATTCCGAGACAAGTTCTCATATCCGATTATAAGGTAGTTGAATTACATGCATTTTCGGACGCATCTCAAAGGGCATTTGGAGCGTGTCTTTATCTAAGGTCTATCGATGGTTATGGTAGAGTAAAGGTAGCACTTTTAGCCGCAAAATGTAGGGTAGCGCCATTAATAAATGTCAAATTACCGCGACTTGAGTTGAGTGGAGCAGTTTTGGCAGCTCAATTAACCGATAAATTTAAAAATATATTACGAATAGACATAAACAAACAATATTATTGGTGTGATTCCATGATTGTACTGGCGTGGCTAAAAAATAATCCAAATAAATGGCAAACCTATGTTGCCAATCGTGTTGCTGAAATACAGAGATTTAGTAACCCGGAAAATTGA +>XR_005729805.1 PREDICTED: Ictidomys tridecemlineatus uncharacterized LOC120886716 (LOC120886716), transcript variant X8, ncRNA +GACTGGGCTGGATAGCCTGGAGGAGGGCCAGCTGGGAAAGGCATGATTACTGTCCTCAAACACCTAGAAGAGCATCGCATGCGGCCCCGGGGGAAGGGGCTGTTAGGGGGAAGCAGACGACTGCTCCTATAAAAAAGGGACTTTGAAGAGGTGGAGCTGGCCAAAGATGGAAGAGGGGCCTAGAAGACGGCCAGCAAGGCAGGACACAAGCACAGTGGATGCTGGAAGGGGACTCAAGCCCCCACAGACAACTGCTGCCAACAAGCAGAAAAGGAGAATGTTTATGCAGCCTAGTCACAAGGGAAATGACATGAGGACATGAGGACCTCAGACGGCAAAATCAAGGCTTCAACACCTTTGGGGAATCCACAGCACAAGAGCCCCTATTTAAGTTCAACCCCAGAATGAGATCAGCTGACACTTGTTCACTCCTCCCTGCGCCCAGGAAATACTTGGTTATGTGTTACTGACTGAAGATTTGGAGTCCCTGTTTCCCATGTTCACTCAGCATCTGACTTGGGCTCCCTGGGCCTCAATTCCTCCATCTATAAAATGAAAGTGATAAAGTGATACTGGCTTACCACGAGAACTATCTAAAGCTCCTGTGAGAGTTCCTGAACAGTCAGGTCTGTGCCAGCATCACTCCTCCAAAAAGCCTTCCTACAGTCTCCCCAGGACCCTCTGTGGCTCCTCACTGGGCTAGCACCCGTGTTTAGGTGACCCACAGCTCCCTGTCCATCACTGTGTGTTTATACCTATTTAATGTTCCTGCATCTGCCTTTAGACCCTGAGCTTCCTGAAGGCAGGGACCATGTGGTTCACATTTCTAACTCCATCCCCGGACCAGAAGAGGCACCAGGTTCAACAATGCAGGAGCTTCTCAGGCAATGTTTTAAATACAATAATGATGGGAAAGCAACCTCTAAAAAGTCTACTGTTCTTTGAAAGACTGACCAGCAAGGAATACTAAACCTACTGAGGACTCCAAGCTGGATGGAAATCAATCTTATTCTCTACTCTCACTGGCTCCCGGAACAGCACCTGGTACTCTAGGAAACTGCCCACACGAGTGATGACCCTCTAGAGACAAACCCCAGCTCTCGGTGCCCAGCAGACCGGCCTTGGACGATCCTCTCCAGCTGATCTTGCTTATCTTGACTCCTGGACAGCCTGCCCCTTGTCTCCCCTTAAAATTTCTGTCTACTTGAGCCTGCTCTGCTTGGATATCCTGAAGGTCATCTCGTCCCTAAAGTCTGCCTTGACTCCCTCCATATTCCCATCACAGTCCTATCCTCTAAACAGCCCATCTAGTCCACCTACATCTTTCCAGGCACGGGATGCAGGCAGGCTTTAGCTACTTTTAAGTCTTCTCTCCCCAGGATGTCAGTAATAGCAGCAGCTGACCCTTAATGCCTCCTCCCTACCATGTACACCTTTCTTCCTGCTAAGACTATAGTCAGGATATCACCACTTCTGTTTGCAAGTGAGGAAACCGAGAGGTTAGCACCTAGTCCAGTCTCACAGCTCTAGTGGCAGCCTGGGGTCTGAACCCCAGCATTCTGACCCTGAACTATGCTCTAACTACAGGTCTGTATGACTTCTGGGGTGTGGGCTTCTCATTGTGCCTAGCTCAGCCACACCCATGTAGGCTTAATAAACGCTATTCTTTTGCATTCCAAGGAA +>XM_021191354.2 PREDICTED: Mus pahari transmembrane protein 140 (Tmem140), mRNA +ACGCCAGTGTGGGTCATGTGTTCCCGTGAGCAACAAGAAGTTGTTTACACTCTTCATTTCTGAAAAGTCATAAGACACAGGCAAGTTAAAGAACGAAAGTGAAATCAGCTGGTAGTGACATCAGTCAGCACAAATGTACCAAAGTTCAGAGAGCTGTTTACTTGAACGCGGCTGCCTGCGAGTGCGGACAGAGCCCAGGAGCTCTGAGCTGTCTGCTTGCAGCTTCTCTCCTCTGCCCTGCTTGCTGGAGCCTGACTTTAAAAAGCAGCTCAGGAGAGGATCGACTCCCGGACAGACAGACGCTGATTTCCTGTGTCACCTTTTGATGAGTGTTCCTGGGCTCTGGCGCTGGTTTTCGCCTCCCTGCAACAGCAGAAGATATGGCTCTCTCCAGGCTGTGGCGGAACAACCACCTGCCCTTCGTGGGCATCATGATCCTCTTGGCCGCCGCCCTGTCCCTGATGTTCTACGCCCTCCTCTGGAAGGCTGGCAACCTCGCTGACCTACCTAACCTGAGAATCGGCTTCTACAACTTCTGTCTGTGGAAGGAGGACATTGGCTCCCTAGAGTGTTACAACTTCCCTGAGCTGGAGATGCTGGGCATTCCTCAGGTTGGCCTAGCCCTGGCCAGGCTTGGCGTGTATGGAGCCCTGGTCCTCACAATCTTCGTCCCTCTGCCTCTCCTCCTTGCCCAGTACAACAGAGATGAGGGAGAGTGGCGGCTGGCCATGGGCTTCCTGGCGGCATCCTCGCTTCTGTTGGCCTGCGGACTGAGCCTCTTCCTCTCCTTCGTGTGGAAGTGGCTCAGGCTCTCCTTCCTGGGGCCTGCCTTGCCAGCTCTGTGCCTAGCCCAGCTGTTACTCATCTTCTTACTTGTGGCCACGGTTAGGTTCCCGCCACGGGACAAGGAGGACAAGAACCAGTGGGAGAGGTGTTAGTCCGGTCTTACACAGGCTTATTATGGGATTGCAAGGGTTTGGTTCCAACTGTGCTCCAAGAAGGGGCCAGAGGACCTGTGGCTGGGTGGGTCCTCTCAACCACCCTGTATCATAACCAATGTTGATCTCCAGCACAGCAGCGGGAACCACCCACTGTGCAGACGGCTGTGGTGTCAAGGAAGCCAGAGGCGGCTTGGAGGGCTAGGGTACCTGCAGTTTCTTAGGGTACCACGTAGCTCATTAGCAGAGGGGTTCCTATAGCCCCAGGCAGGTGGGAGTCGTCAGAGGCCAAACTTCCAAGCTATCTTGGCAAAGTGTCAAACTAGAACTCTGTGACGGTTATGGCAACAAATGGAACAGTTAGGGAAAAAACAAAACAAAACAAAAACTGCTTTAACACCGAGTCCTGACAGCACAAAGAGAAGCCTCACTGACTTTTCAGGGTCCCCTGAATGGGTCCCTGGACCTGACAGCAAACGGTAATCAGCTGTTAAACCATTCTTGTGACCCAGGGGATGCAGACACAAAATGTGTCAAAGCCTGGAAGGTGAACAGGACTGAATAGTCGTCACAAACACACAACGCGTCCCCTCACCTTACCCAGAACTGGAAAGGCAGAAGCATGGTCTTTATTATGCATTGTGGCATCCTTATATATTTTGTTCAGTGTCTATGTATCAGAAAACCTACGTGCCAACGAGTTCTTCATTCTGTGCTCATCAGAAGCCAAAGTGAGTATAAAGA +>XM_051505439.1 Emericellopsis cladophorae uncharacterized protein (J7T54_008404), partial mRNA +ATGCCTTCTGCCCCTGCTCTCGGCGCCCTGGGCGTGACCTTTACGGCCATGCGCGTCATGGAGGGCATTGCGCTCCTCACCATCATCGGCCTGTCTGCCAACTTTATCAGTGACGCCGTCAACGCCGGCTACGTTGCGCCTCCTCCGCTGGTCGGCACTCTTGTCGTGTCCTGTCTGGCCACCCTGTACATTGCCATCAGCTACATCCTGTACTACGACTCGATGCTGCCCATGCTCATCGCCACGGGCGCCGACGCGGCGGTCCTCATCATGGTGATTGTCGTGGCGGTGCTGCTCGGCAAGCCCGTCAGCTACCTCCAGTGCGAGTCGTACCCGTCCAAGGGCAACACGGCCAACTTTATCCACTCTGTCTACAGCAACGTCAAAAAGACCAACTCCAACGTCTTCCTCTGGGTGGACCCGGACAAGACGGCCTGCTACGAGGTCAAGGCCGTCTGGGGCCTGAGCACCGCCCTGTGCATCATGTTTGCCATGTCTGCCATTGTCTCCGGCGTGGGGGGACAGGCTTCTGGTCCGAACGTGCTGCGAAAGGGCCGGAGTCTGGGCACCACGGCGGTGACGGGGCCACAGGAGCGCAAGCTCGCATCGCAGGGATCCGTGGCGTCGTCGTCGTCGTCTTCTGGCGGGTCCAACGTCCACGAGTCCTTGCCCCTGCCTGTTCCTGTTCCCGTTCACCGGGCCTCCCCGCCTCCCACGGCTTCTGAGCGACCGTCACGGTTTGGAGAGGTGGCCCGCCCCGTGGAGAGCCTGCCTCGGCTTCAGATCCCACCGCCACCGCCCATCCCGGAGGATCCTTCTCCTTCTCCTTCTCCCCAGCCGCCGCCAAAGAGTCCGCTGAGCCCGCTGCTGGCGAGGGCTCGGTCGAAGAGAAGGACCATCATGTCTAGGGTGGAGGGCTGGTGGGATCTGGGGTTGCTGGACAGACGGCAAACACTGTTTGGCAAGAGGGGTTGA +>GQ040491.1 Uncultured bacterium clone nbw955c02c1 16S ribosomal RNA gene, partial sequence +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTTTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGAAAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTGTCTGGTCTGTAACTGACGCTGATGTGCGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAAATCTTGACATCCTCTGACCCCTCTAGAGATAGAGTTTTCCCCTTCGGGGGACAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTAAGCTTAGTTGCCATCATTAAGTTGGGCACTCTAAGTTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGATTTGGGCTACACACGTGCTACAATGGACAATACAAAGGGCAGCGAAACCGCGAGGTCAAGCAAATCCCATAAAGTTGTTCTCAGTTCGGATTGTAGTCTGCAACTCGACTATATGAAGCTGGAATCGCTAGTAATCGTAGATCAGCATGCTACGGTGAATACGTTCCCGGGTCT +>FJ241711.1 Uncultured bacterium clone E53LV6Q02JNG4U 16S ribosomal RNA gene, partial sequence +TGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCCCTCGGCTCAACCGAGGAACTGCGCCCAAAACTACCGTGCTCGAGGAAGATAGAGGTGAGCGGAACTTAGGGTGGAGCGGTGAAATGCGTTGATATCCTAAGGAACACCGGTGGCGAAAGCGGCTCACTGGATCTTTTCTGACGCTGAGGCACGAAAGCTAGGGTAGCGAACG +>XM_033909212.1 Saccharomyces paradoxus Par32 (SPAR_D00700), partial mRNA +ATGGCTACGTTCAACCCCCATAACGAGATGGAGAACCAGGCACGTGTACAGGAGTACAAGGTTTCCACCGGCAGAGGCGGAGCCGGCAACATCCATAAGTCTATGTCCAAGCCGTCTCCCGTACTTCTTCCTTTGAAATCCAACTCAAAGCCAGCAGCAAACAACAACAACAATGGGAGCACACAGGAAAAGGTTCCGCGTTTTGCAATTGGCAGGGGCGGTGCTGGCAATATCTTTCATGATCCGCACCTGACGAGATCCGCCCAACAACTAGACTCCAACGATAATATCAACTATAACGATGTGATTGATGACATTGACGATTATATCTCCCCTATAACTTCAGATATGGTCGATGAAGATGGGCCAAACGCGGTGACAAACACCAGGTCTCGTATCAGCGCGACAAGGAGCCACCAATCTTTGCACGCTTCCACTTCGTCTCCCAACAACAAGGCCCCAATTGTCGTTGGTAGAGGCGGGGCAGGAAACATTTTCTTTAACAAAAAGAAGGTATCCAGCAATGGTGGAAACGAAGAGGACGAGATACGAGGCGGTAATGTTGAGGATGAGGATACGATCAATGCAAACGAGGACAATTTGTTCGTGGTGACTTCGAACGGCAATGCATTGGCGGCAATAAAGTCTACATCCAAGAAACCCAAAAATAAGCACAAGGGCAAAAGCGTGCCGGAAAAATTTGCCATTGGAAGAGGCGGCGCTGGGAACATAATTTCGCCCAAGTCGAGCAGGAACACTATAAACCACAACTCAAACGATGATGATGAGGATGAAGTTAATCTGAAAGACGACAATAGTAAAGAAAAGAAGAAGAAGAAGAAGAAAAAGAAATCGGGGTTTTTCAATTCTTTGAAAACTATGTTTAATTGA +>XM_008090460.1 Glarea lozoyensis ATCC 20868 hypothetical protein mRNA +ATGACCGGCACTCGATTGTTTGACAGTTCCTTACCCGTTGGGAACAGGTCTGTCGTGGTCAGAGAGCACTACACACTTGAACGCTGCAATGGCTGCTTTGACTCTGATGTACACCGCTGGGGTCAATTCGAGCATTCAGCCCGTGGTGGACAACTCCTTTGA +>XR_006437666.1 PREDICTED: Triticum aestivum uncharacterized LOC123078769 (LOC123078769), transcript variant X30, ncRNA +AAGGACCAGCGATGGAAACCCTAGACTATCGTTTCCCCAGTCCCGCCGCCGCACGCTCTCCCTCTCGCGTGCTCATTCTCCCACCTCTCCACCTCCAAGCCCCTGCTTCCGCACGTCATTCTTCTCCCATCCTCGCGTCGCCGGTCTGGAGGCTAGAGCTTGTGGCCGACGCCTCCGCTCGCCATTTGCCACGCCTCCGGATCTGAACTCGCCCGCGGTGGCAGCGATTGGTGGATGAGAGCCGAGTCCTGAACGGGAAGCAGCGCCTGTCCCTGTCCCACTGCCGTTGGAGAGGCAAGGATGGTATCGGCCGTGCCGCAGCAGCTCGGCGGCTGCCACTTCTTCACATCCCCATCGAGTCGGCGAGTCGCCCTCTGTCGGGCCCACGGAATCGGCTCCCATGACTACACGTTCTTCCTCGGCCTGTTGTAAACCATGGTTCTTCTCAAGCGCGGGCTAAGGTGGCACCATGGCTCGTGCCAAGGAGGCAGCAGCGACCTGCAAACCCTGCAACCAGCAGTAACACGACATGCTGATATTTCTTCAGGGCGTGGCTGGACTCCCCTCCCAGGATCTCACTCCACCACGGGGCCTTCCTGCTGTGAGCCTCTCTGGACGGGAGCTACAACGCCCGTCCCCATCTCACCTTAGGCAAGATATGTGTAGAATTTGGAAAGGACTTGCGAGCTAGGAAAATTTGGGAAAGGACGTTGGGAAGATAACTAGGTTTTCAGTGTGGAGGAACATGACAATTTGAACCAACTAAGATGCAAGGGCATGCTTCACATGGATTCAGACACAATTTTTTTTGGGAATAGATGGTTTTACTAGCCGATGGCATCAGAGGAGCAGCTGCAAGCGCCGAGTGAGGAATTTTCCTTTTGCTCGCATGTGTCTTGTGGTCACTTGAAACAGAGCACTACCTCTGCTTGCAAGTGTCAGAACTACAGGTTTTTGGCTGAACATTCAATTGTGGCAAAATTTTATTGATCCTCATGATTTTGAGATCTAGTGTGCCTTGTTAGTTTGGAATCAGAAGATGCATGCATGCTGCAACCTTCCTGCTTATCAATTAAGTTCTCTGCATCCTAAACTCGCTGACCTGGTATGATCCGTGTGATTAAGAGATGTTTCACCTTTTCTCCATAACAATTCTACAATGCCCCACAAGAGGGATCCACCACGCCGGTGGACTTCACTTGCCACTCCGGGAAGGGTTTTCACATTCCATTTCCATCCATCAGCTTTTCAGTTCTTGTTAGTTTTCACATTTACATTTCACCATATCGGGGATTTAGAGGGCAGCACTTCTTTCTTGGTTATATTAATCAGCCGCATTGTTTTGTGATTACAGAGAAGAAATGACTTCAACCAGGGCAAATTGATAGGGAGGATAGATTACGGCGAACTGTCTATGTCCCAAACATTGATCAACATGATGCTAAATAGAAGCTTGCTCAGGTTTTCTCAACTTGTGGCCAAACCCTACTCAAGCATCTACACCCTCTTCAGCGACCGACGCCCTGTCTGATGGAAACGAGAGACGGGCGGTCGCTCTGCTTGAAAAGAGAGACAAACGGTCTCTGAGCGAGGGAGGGGCGGAGGTTCGTCTTTGCCGGCCGTATGACATTCCTGGTTGCTGGTGGAGGTGCAGGGCGCTCACCTGATTTAGGGAAGGCACCGTGGCTGTTCGGTGAAGCGGGTTGATGAAGCTGATGTGCTTTGTTCCTAAAAACAATGCATCATCAGTTCCTGGAAGAGTTCAGTACATGCACGTGTATATGTTTCTCTGATGCTCTCCTGTCGCGTTCTTACTCCGGCAGCAGAATCTCAAGCAACTATGGTTCTCGGACTAGGTGGCCCCTCTATCTTCATTTTTATTCTCCAGTACGATCACTTCTTTGACCCAACAATTCCGTTGTGCTATTTTCTTTCCAATCTCAGAATTGTACAGTTGGTTTTCATCCTAGTTCTTCAGGCAAAATTTGAAGTTTTGCTCCCATTTTTGGTTTGAGGAAATTTAACTTGCAAAGCTACCGCCAGGTGAATTAATTAGGTCCCATGGGTTTGGATACCTCATCTCTTCACTGACTGCATCTCTTCATGTTTCCAGATTGTGCATTGGTCTAGAAATACATACTTAACTCGGTAATGTGGACTTCACTACTGTGGTACACTGTAAATGGCAAGCTTTTACATGAAGCACTTTTGGTGATCCTAAGGATTTGCTACAGAAAAGTATAATATGATATTGAGTTTCATTCTCTTCCTTTCTGCATTTCCTTGAATATTGTGCGTTCAATTAGCTCAACCGGATAGCAAGAAATGTCAAGGGTTAGCTCTTCTGAACATATTCCTCATGGTAGAAATGGCTGGTATACATGCCGACACGCCCATCCGTGTGTTCAAGACTGGCTGATTCACACCATGGCTGATGTGTACACACAAGCTAACCAAAAGGAGCAGAAAAGGGGTGCACACAACATGTCTGCTCGTTAATAACAAGTCAGGAGGGGGCTATCCAAGGACGAGAAAGCTGGGAAGCTCGCATTGCAGCTTTGGCTTAAGCTGTGAGCACTTTTTCGTCAGAGAAGCTGTAGTTTGATGTTTTGGCCAAGCAATGGGCTGTTGTACCACAATGGTGTTCCTAATTGTTGGCTCTTCCATATAGAAGCTCTGAAACAAAATGAGATGGCCTCAAATTAAGGACAGTTAAACCAGCTGCTCCGAGAGGGGATGTTGAGGATAACGACAATGACGAGCAAGTCGGTGTTTGTGAAGCTTCGCCTGAGCCATTCCAGCTCTTCCAGAGGCACAAGGAGAGCCTAAAGTCAGGGTACGTTCAATCGAGGACACTTGATTCTCCAAGAATTTGTTGAGGATAACAATGGCAACGAGCAAGTCGGCATTTGCGAAGCTTCATCAGAGCCATTCCAGCTCTTCCAGAGGCACAAGGAGAGCCTAAAGTCAGGGTACGTTCAATCGAGTACACTTGCTTCTCCAAGAATTTGTATAATCATTAGAAGTCCAAAGAATGAGTCAAGCCAAAGATATGAAAATGGAACACATTTGCGCTCCTACGAGAAGAAGGTCGCGCAACTGAGGATTCAGGACGCCAACAGTGCGGAGCTGTTCGCCATTGAGAGGACCAGGGCTGCCATCAGGGACATCTGGACCAAGTTCAACATCTCCCTTGCCTCCGTCAACGCCGGCGACCGACTCTACAAGCGTCTAGCTGTGCTTTATGACATGATGAATGCTGCCATCGCTTGCTTTTGAGCACCTACAAGTTACCCTGTTGCATGTAATCTCTAAGACTGCCACTCATCAGGCTTGCATGCGCCTGTTAATACCAGGGCTATAACAACACTTTTATGTGTATATACTCAGTTCTGCTTCC +>LN810097.1 Uncultured bacterium partial 16S rRNA gene, clone HWB-4 +CGGACGGGTGAGTAATGCGTAGGAAGCTACCCGATAGAGGGGGATACCAGTTGGAAACGACTGTTAATACCGCATAATGTCTACGGACCAAAGTGTGGGACCTTCGGGCCACATGCTATCGGATGCGCCTACGTGGGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCCCTAGCTGGTTTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGTAGGGAGGAAGCGTTGAGTGTTAATAGTACTCAGCGTTGACGTTACCTACAGAAGAAGCACCGGCTAACTCTGTGCCA +>XM_029018326.1 Cryptosporidium ubiquitum uncharacterized protein (cubi_01314), partial mRNA +ATGGAAAACGAAGCAGAAGAAAATTTCTCAAAAATGATTAAAGCTGTAAATCCACTTTCTAATGATCAAAAGGTATTTTTGGATTTGGGACAAGAAGGTAAGGCCATTCCAATTGATGCTACAAACACAGGTATTTATGAGTATAATATTACAAAACCAATTACAATCACCAAAAGTGGTTCTTATGTTGAGGATGACGATTCATGTTTAACAACTACTATAACTACTAACGAACTTTGTGATTCAAATAGTGTTCTCTCTGTTGCTGGAGCGAATAACTCAGAAGATATACAAACAGAAGACTCAAAAACAGATGTTCTGGCAAATAAAGATTCTAAAGAAAAACTAGAAGAGCAATCTGCTTTTGATATTCATCCTATTAATATTGACACAGGAGCTGAGGAATTGGTACAATCCGCACAAAGTACCTCTAAATCAGGTCGTCGTTCATCAGCAAATCATGAAGTTGGTTCAAGGCAACTGAAATACAATCAAATTGGAGTATATTGGAAAGATAAAGAAAGCAGAGTTTATGCTAGGTTTACATGGGCCACTAGAAAGTATTCTAAAAGCTTTTATGTGGGCCCCAATAAGCCATATGCTACTGTTAGGGATGCAGAAAAGGCTGCTATCAGATTTTTGTTGATTAATAGTCCATTACATAGAAGAAGCCACTTAAAACATTTTAGATTTTCAGAAAGTGATGAAGAAGGAGAAGAGCCTTATGTTGGTTCTCAAGCACTTAAGGAGGCAAGAAGGACCAAAGGAATCATGTTACATTTCCCTGCTCCTGAAAGTGATGATGAGGTTTGGTCTCATTATAACACTTCCAATATCAATCCTGCAACCTTGTATGGTGAGATTATTAAGAAAATGGATAATAGTGAAGGAAATGCCGCTGGAATAACTAGCCCAATTACATCTGCCAGAGAGTATGTTACAGCTAAGCATAAGCAGAATACCAATACAAACCAAAATGAATCCAAATTTTCCGCTTCCCTTCCAGTAAATTCTACAATTGGAGAAAATGTCTCTTCTGATGACTTATTTTTGGCATTAATGGCAAACCAAATTGAATCCGATAGACTAGTAGAGAGGCAGACTACGGGAACATATATGAACCCATCAGCCAGTTCAACTACTGTTTCCTCTAAGAGATTTAAACCAAATTCCAAAACAGAAACTCTTGATTCTTCTGAATTAAACTTTTTCCCCACGAATTCGAATCAACTTGGATCGGCATTTATGGATCAAAGCTCTTCAACTACCTCCACTAATCCTTTTGTTGGTATGGATTATAATACTTTGGTCGCTTTACAACATGCTCAAATGGCAAATTATTATTTGCAACAGCAAGTGGCATATGCAGCTGCTGCTAATCTTGCAATATCATCAAATACTAGTGGGAACTATGCTAATGCTGCAATACGTACAAACCCATTCATAATTCCACAATATTGCTTGGCACCTGTTACTGGATTAGAATCCAATAAATCTGAAGAATCAGAAGTTGATAAACTCCAAGGTGTTACTTTAAATGTTGGTGGTCTTAAAGGTTCTACTCAGTCTAATGCTTCTAACTCTGTTAAAAACATTGCAGAATCTACACTAGATCAGTATGGTGCAATAATGCCAGGACAAGAAACAAAGGCAATGCCTTCTTCGAATATTACTATTTGTGGTACAAACATTCCAAGTAATTACCATACGGATTATATGGCTGTTATGGCTGCTGCATATTCAGGTTGGTATTCGCCTTATGGATACACTATGCCTTTTATGGGATCATACACCCCAATGATGCCTTCGATTATTCCGAATCCAAATGTATTGGGAAGTCAATTTCATAATAATATAAGTCTATCTACAAATACAACTAATGCAGGTCAGGTTCAATCAAGCAGTGTTAATAATGCTGTTCGATTGCAAAAACAGGTAAATAATAATGTTAATTCCATTGAATCTCTGGTGAACACTCGGGTAGAAAAGGAATTACAATCACAAGGTACTTCAGAACAGGAAAATAAACAAGTACCCTAA +>XM_027495983.1 PREDICTED: Abrus precatorius uncharacterized LOC113862782 (LOC113862782), transcript variant X4, mRNA +TGCAATTGTACCTTCCCTATGTGAACAGTGATTTCTCCACAACAACCCTTTTTCTCATTCTTCCCAGTGTTTAGCTTTCTCAATTCAGTTGGTGCTGAATGGAAGGTATATTCTTTCTAGTTTGGAATCCTTTCAACTTTGTCTGAAGAATGTTTCAGAATCCTTCTCCAGATTAACATTTTGAGATGGTGTTATATGAGCATTCAGATGTTTTTCAATGGGGTCTTAATATTCTTGACGGTGACCCTGCTTATAGTCCTGGATACTATGGCAACATAATTCAACATGATAATGGTGACATCTATAATGGACACTACTTTCATAGCCATTATGGTAATGAATGTAACCATGTAGAGAATGATGAGATCATTGCCCGCACACTTCAAGAAGAGTTTTCACAGCTGGAGATTGCTGAATCTTCAGGATATTTACAGGCAGGTGAAGAGCAGTTCCATGTTTCTGAGACTGAGCCTGCATATGATTGGCATAACTCTTCAATGGTGAACTATTGTTCAGGAGGAGTTGGTGATGAAGAACCATCTAGCTCATGTTCAAGTCCTTGTGAAAAAGAGGAATATTCATTAGAGCTAACTGACAGTTATCCACTTGATGATGAAGTAGGGAGGAGATTGAGTCAAATGATACCAATTCCTCATGTTCCAAAAATTAATGGAGAAATTCCTTCAATCGATGAAGCAACTTCAGATCATCAAAGGCTTCTGGATAGATTGCAGTTATATGACTTTGTGGAGCACAAGGTACAAGGTGATGGTAATTGTCAGTTCCGTGCTTTATCTGATCAATTGTATCATGCACCTGATCACCACAAGTTTGTGAGACGACAAATTGTCAATCAGCTCCAATCGAATCCAGACATATATGATGGATATGTTCCCATGGAATATGATGACTACTTGGAGAAGATGTCTAAGAGTGGAGAATGGGGTGATCACGTCACTCTTCAAGCAGCTGCAGATTCATATGGTGTGAGAATATTTGTGATGACTTCTTTCAAGGACACCTGTTGCATAGAGATTCTTCCTCATTTTGAGAAGCCAAAAGGAGTAATTTTCTTGAGTTTTTGGGCAGAGGTGCATTACAACTCCATTTATCCCCAAGGAGATATACCTTCAAGTGAGTCGAGAAAGAAGAAAAGGTGGTGGAACTTTGGGAGCAAACATTAACTACACCCCTTTTTAACACATTTTTCCATGTTCAGGAATGAATTTATATCCCCATGTTTTTAGCCGGTCA +>XM_035510062.1 Lasiodiplodia theobromae Gaba permease (LTHEOB_1369), partial mRNA +ATGGCGCGCTCCTCTACCGAGCTAGATGTGCTGCCCGCCGTCTCTTCCGGGAAAGAGTATCACAACATGTCCTCACGCGAGCTGTCTGCCGGCACCGACGATGATCTCCATGAACAGAAGGGCATTACTCGCCATGACCAAGCCGATATGTCGAGAATGGGCAAGGTTCAGGAGCTGAGGAGAAATTATCGCCCGCTGTCCGCCATTGCTTTCACAGTAATTCTCCAGGGCACGTGGGAAGTGCTGATGACTGCGACAACCCAAGGTTTGGTTGATGGCGGTTTGGCTGGCCTGATCTGGAGCTATGTGTGGACCTTTGCTGGCTTTAGCTTTGTTATGGCTTCACTGGCTGAGATGGCTTCCATGGCCCCTACTTCCGGAGGTCAATACCATTGGGTCTCTGAATTTGCGCCTGCAAAGTATCAGCGCTTCCTGAGCTATTTTACGGGATGGATGTCGACCATGTCATGGCAGGCCGGAACCGCGTCCGGCCCATTCCTTGTCGGCACGCTGATTCAGGGCTGTGCTATCGTTGCTTATCCTGACTACTCTCCGACGAATTACCAAGGCACGCTCATGGTTATTGCCGTGGCCATAATCGTCTGGATATTCAACGTCTACGGTGCTCACGCCATGCCCATTCTTCAAAACCTGATGCTCATCGTCCACGTCCTTGGATTCCTCACCATCATTATCGTGCTGTGGGTTTTGTCGCCGCGCAACACTGCTGAGACAGTCTTCACCGTCTTCACCAACGATGGCGGCTGGAACTCCATGGGCCTGAGTTTGATGGTTGGCCAGATTTCAGCCATATATGCTTGTATCTGCTCCGACGCTGCCGCTCATATGTCCGAGGAGATTAAGGATGCCGGTGTCGTCGTTCCCCGTGCCATGGTTTGGTCATACGTCATCAACGGCGGCCTCGGCTTCATCTTCCTCGTGACATACTTGTTTATGATTACCGACGTGGAGGCTGCACTTGAGGACTGGTATCCCCACATCTGGGTCTTCCGCCAGGCCGTCAATGATGCTGGCGTCGTGGGTTTGAACGTGATTCCCACCGTGCTCATCTTCGCCGGCACCGTCTCCTACAACCTGTCCACCTCGCGCCAAACCTGGTCCTTCGCCCGCGACAAGGGCGTCCCGTTCTCCAACTGGATCGCTAAGGTCGACCCGAAGCTGGAAGTCCCCATCAACTCCGTCACCGTCACGACGCTGATCACCATCGCACTGTCGCTCATCAACATCGGCTCCGACGTCGCCTTCAACGCCATCATCTCCCTCAACGTCGTCTCGCTGATGATCACCTACATGACCTCCATCGGTTGCGTCTTGTGGCGCCGCATCTACCACCCGGAGACGCTGCCGACCTGCCGCTGGAGCTTGGGCAAGTGGGGCGTGCCCGTCAACATCTGCGGCTTTCTGTACTCGACTCACGCTTTCTTTTGGTGCTTCTGGCCGAATGCTACGCCCACGGATGCCGAAAACTTCAACTGGGCGTCGGTCATGTTCGTGGCTGTGTTCATTTTGAGCAGTATTTATTATGTCTTTAAGGGCAGGAAGGCGTACGAAGGCCCAGTTGTGTTGACCGAGGGCTGGAAGGGCGAGTGA +>XM_020885145.1 PREDICTED: Odocoileus virginianus texanus zinc finger protein 300 (ZNF300), transcript variant X2, mRNA +GGTCAGGTGCAGGCCTGTTCGTATGCTGCTGCCGCCATCTTGGGTTGCAGGGCCTGTGCAGGCTTCTGCTCACCACAGGCGGAATTGGGGTTCAGCATAGCGGTTCTGCACCGGGAGCTGTAATGTGATGGGTTAGGTGCAAGGCCTCTGCAGAGTGTCCTATACAGATAAGCAAGTTGCAAGTTGGAGAGTCCTACATGGCAAGATATTGAGGGTGGCTTCCTTGCAACAATCAGCAAGGACATGAATGCCCTTAGTCCAGCAATCTTTGAGGCATTAAATTCTACCAACAATCATATAATTGAGCTTGGAAATGAATCTTACCCCATTTGAGTCTTCAGATGAGAGACCCCAGCCTGGATCAATACCTTGATTATAGATTTGTAGAACACCTCAAAGCAGAGGATTCAGATAATCCATGTCCAGATTCCTGACCCACAGAAACTGTGAAACAATAGATGTGTGTTGTTTAAAACCACTAAGTTTGGGGCCCAGACAAAAGCTCTGAGTAAACTGAATTCCTCTGCTTGTACGGAACTGACCAATCTAACAAGATGGCGGCTCCCACTGAGCCACATAGCACGGGAGTGGCCATATTGCCTCCTGAACAAAGCCGCCCAGGGTGCAGAGTGGGTAAAACTCCGCTGTACGGAACAGTGCACGCCGGGGAGCCCCGCGCTTTGCTCACCCAGACAGGAAGCGGGAGAATTCACCACTATGGATGTGACAGCTGTCTTGGATTGAGCCGTGATGGGCGTTTCTGGAACTGCAGGAAACATTTATTGAACACCTGCTGGGTGCCTGGAGACTGGTGAATATAGAAACTGCATTTTGCAGCCCATCTGTGAAAATACCCTTCTGATCACCAATTTTGCCTTTTCAAGCATCTGCCATTTTAGAGGAGAGCAGAAAAAGATGAAGTCCCAGGGATTAGTATCTTTCAAGGATGTAGCTGTGGATTTCACCCAGGAGGAGTGGCAGCAACTAGACCCTGCTCAGAAGACCCTGTACAGGGATGTGATGCTGGAGAACTATAGCCACCTGGTCTCAATGGGGCATCCAGTTTCCAAACCAGATGTCATTTCCAAGTTGGAGCAAGGAGAAGATCCATGGATCATTAAAAGAGACATACCAAATTGGATCTGTCCATATGAAGACCAGACAGATGGGCGACTAGACAGGAAGAGTAACCTTGACAACCCCCAATCATGTATTTTGGGGTCTGTTTCCTTACATAATAAGATATTGAAAGGATTCACAAAGGATGGTTCATTATACTCCATTTTAAAAGTCTGTCAAAGTGATGGCCAGTTACAGAGATGTCAGAAAAACAGACTTTCCACAAAAGTAACAGTCATCAACAACAAAACAATGACTGTAGAGTCAGACTACAAATATGAGGCACTGAGGAAAATATTTCAAGAGTGCATAGAGTCAGATGCTTCAAGACAAAGACCCTATAACTATGATGCCTTTAAAAAGAACTTGAAATCTAATATTGACCTACCTAGTTGTAATAAGAACAATTCAAGAAGAAACCTTGAGGAGAGTTCTGGATGTGGAAAATCATTCATCCACAGTGTGGCAAATTCTAACCTTGAGAAGATTCACAATGGAGTAATTCCCTGTAATGATATTGAGCATGGAAACATTTTCGGCAAGAAGCAATCCATTATTCATTATCAGAATGTTGAAACCAAGGAGAAAACCTGTGTGTGTGTTACATGTGGAAAAGCCTTTGCTAAGAAGTCACAGCTCATTGTACATCAACGGATTCATACTGGGAAAAAACCATATGATTGTGGTGCATGTGGGAAAGCCTTCAGTGAGAAGTTTCACCTCATTGTACATCAGAGAACTCATACTGGGGAGAAACCTTATGAATGCTCTGAATGTGGAAAAGCCTTCTCTCAAAAATCATCTCTTATTATACATCAGAGAGTTCATACTGGAGAAAAACCATATGAATGTAGTGAATGTGGAAAAGCCTTCTCCCAGAAATCACCGCTCATTATACATCAGAGAATTCACACTGGAGAGAAACCTTATGAATGTAGAGAGTGTGGTAAGGCCTTCTCCCAGAAGTCACAACTGATTATACATCATAGAGCTCATACTGGAGAGAAGCCCTATGAGTGTACTGAATGCGGGAAAGCCTTCTGTGAGAAGTCCCACCTCATTATACATAAAAGAATTCACACCGGGGAGAAACCCTACAAATGTGCTCAGTGTGAGGAAGCCTTCAGCAGAAAGACAGAACTCATTACACACCAGTTAATTCATACTGGGGAGAAACCTTATGAATGTACTGCTTGTGGGAAGACCTTCTCCCGAAAGTCACAGCTCATTATACATCAGAGAACACATACTGGAGAAAAACCCTATAAATGCAATGAATGTGGAAAAGCCTTCTGTCAGAAATCACATCTCATTGGACATCAGAGGATACACACAGGAGAAAAACCTTATGTTTGTACTGAATGTGGGAAAGCCTTCTCTCAAAAGTCTCACCTCCCAGGTCATCAGAGGATTCATACAGGAGAGAAACCATACATATGTGCTGAATGTGGAAAGGCGTTTTCTCAGAAGTCAGATCTTGTTTTACATCGGAGAATTCACACTGGGGAAAGACCCTATCGATGTGCTGTATGTGGGAAAGCTTTCATCCAGAAATCACAACTCACTGTACATCAGAGAATTCATAGCAGTGGTAAAAATCATAGTGAACTAAAAACACAGACAAGCTTTCAGTATTAGCTCAATGCTTAATACGTAACAGGAACTTGATTAATTTGATAACTTTGTTGAAGCATCTTTATAGAGAAAATTTTACAAGAGAATACATATCTGTAGTGTGGTGATACCTAACTCAGCAGACATGATGGAAAATAATTACATAAATGAAGGCCATTTTCACCATAGCATGTAGAGCTTTTAAAGTTATGAATTGAATGGTTAGTAGAACAAATTATGTATATAGAATGTTGTCAAAGTACATATTCCTTATTATGCCCCATAACAATAAACATTGTGAAATTGCTAATATTAACTTGGCATCATTTTGGTCATATACATTAATTGCCTATAAAGGACATGAAGAATGCTTGATTTAAAAAAATCAATTCCAAGAAACTGCATTAACAAGGAAAGGCTTGGGAGTTCCCTAATAATAGGACTCAACAATTTCACAGC +>HQ038014.1 Uncultured Syntrophus sp. clone F2M5Y2A01B2QEH 16S ribosomal RNA gene, partial sequence +GAGGAGGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCGCAACGAGCGCAACCCTTGTCTTTAATTGCCATCATTCAGTTGGGCACTTTAAAGAGACTGCCGGTGTTAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCTTTATGCCCAGGGCTACACACGTGCTACAATGGGTGGTACAAAGAGATGCAATCTCGCAAGAGCAAGCAAACCTCAAAAAGCCATCCTCAGTTCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTT +>XM_048223246.1 PREDICTED: Ursus arctos SEC16 homolog A, endoplasmic reticulum export factor (SEC16A), transcript variant X12, mRNA +GGCGGCCGGAGCCGGATGTGCCAAGATGGCTGCTGCGGCTGTCGTGTCTGCGCTCGTCGCCGCAGCCGGGCCGGCTTCCGCCGGCGGCTCCTGAGGGGCTGGCCCAGGGGTCGCGGAGGGGCCGGGCGGGAGTCTCGGCCGCCCTGTGGCGCGCCGTTCAACTTAAGGAACCTATATCCTGCTTCTATCCGTAAGGAGCATCTAATTGTGCAGAAGATCAATCATGCAGCCACCACCCCAGGCAGCCCCATCAGGCGTGGTTGGGCCACCTCCAGCTGGGACTCCTCAGAGCATGTTCTGGTCCAACAGACCGTATAGAAGACAGGCAAATAACAACGCACCGGTGACTCCAATAACTTGCCCACTGCAGCCAGTGACCGATCCGTTTGCTTTTAGTAGACAGGCGCTACAAAATACATCGTTAGGCGGTTCGTCCAAAAGCAGCCCGCCCATTCTGCAAGGCCCGGCCCCACCAGCGTTCCTTCAGCGCCCTGGTCTGCCTGTGCCTCACACAGATGCTGGGGATACCCCCCAAGGACCAGTGTCGCAGCCCAGAGCAGATGGCAGTCTGTTTTCCAGTGTGTTGACCCCTTCAGCACCATCGGAGCCCGAGGTGAACAGGAGTGCTGAGGTTGCTCCCAGCTCAGAACCCGAAGTTCAGACTCTGCCATATTCTCAGTACATTCCAGGAGCGGGTGCTGACAGTTCTCACGGGGGCCATCCGCACACAAATATGCTTGGGCCTGATAGGCTCCTGAGTAGCCAGAACCCGCACGACAGTGCTGCGGCGTTAGCACCATCCCCTTTCTTCCCTCAGCCTCGTCAGCAAATGCCAGGGCAGTGGGGACCCGGGCAGGGAGGCCCACAACCCTCAGGTCAACATTATTGGCCCCGCCCAGAAGGACCTGTTCAGAACGCGGTGCCTCATACCTCCATCGTTTCTCAGTTCCCTGCTCCATCCAACCCGCATCTTGGTCCTGGCCACGAGCAGCTCAGCTCACTGGTGTCTTTGCCAGGACCCTTAGCCAGTGATGGAAGCAATGAGGTGGCCTACCTGCAAAGTGGAAACCATTCAACAAATAATTTTGATCCTGAAAATGCATTCAGGCAAAATTCTAGGGCTGGGAATACTTGGGCGAGCCAGGAGCTCAGGCCAAGTCCAGGAGTGAATAAAGAGCAGTTGCCAGACCTTGCTCTCGTTAATCCCCTCGCTCAGGGAAATAGCCCAGAAAGCCATTTGCACTACCCCCCAGGGGCTGGGACCAGCCGAGCCCTGTCAGAAGTGGACTCGGGGGCTCTCTCCATGTTTTTTCAAGGTGGGGAGACAGAAAATGAGGAGAACCTCTCATCTGAAAAAACAGGCTCTGCTGGTCAGTCTGACTTCGACGGCTTCTCCCCCAGCCCCGCGCTTGGTCATCCTCCTGTACATGTGGGAGCAGGCGGCATTTACCAGGCCCTTCCCAAAGGTTCCAACAGTGAGGCCATGCAGCAGGGAGGACACCCGCAACCTTATTTTTCTCAGTCTGCAGGCCCCCAGCCTGATCGACCCACCACGGCCAGTGCTGCCATTGCTGCGTGGGGCAGTGCAGCAAGTGCGGGGGCGCACGCAGCCAGCAGCTCGCAGTCTGAGAATGTGGAAGACCTAGAATTCATTCAGAATCAAGAAGTTCTGCCAAGTGAGCCCCTGAGTTTGGACCCTTCCTCCCCAAGCGATCAGGTCAGATACGGGCCCCTTCCTGGGCCAGCCGTCCCCAGGCTCGGTGTTGTGGGCCACGCTGGAGGTGGGGGTCCAAATCTCGAGGCCCCGGATTCAACGCCACACCCTGTGCGGTCTGATAGCGTGTCATCCGGTTACAGCAGCAAGAGCCACAGGAATCTTTCGAGTGCAGCCAGGCCCCAAGACGTAGGCACTTTCATTCAGCAAGAAGTTGGAAAACCTGAAGATGAGTCTTCGGGGAGTTTTTTTAAGCAAATTGATTCTTCCCCTGTGGGAGGAGAGGCAAACGAGACCACCGTGAGCCAGAATCACCGCAGCAGCCTGTCCCAGACCTCAACCCCAAGCCCCCCAAAACCCACTGGAATATTTCAGACAAGTGCAAATAGTTCTTTTGAACCAGTGAAATCCCACTTAGTTGGAGTAAAACTCGTCGAGGCCGATCGCGCCAACGTGGTGGGTGAGGTGAGAGGGACCATTGCCCACCAGAAGCAGCGCAGACCCGCTGCTGCCCCACCCGACACTTCCCCCGGCAACCTGGAGCAGCCACCGGACAACATGGAGACCCTGTTCACACTCCAGGCCTGCTCTCCGCCCTTTTCCATACCTGTGGAGCCCGGGTACGGGCTCGTACATGCTGGGGGGCCGCCCTTGGAAACTGTGCCCCTGGCAGCTGAGAAAAGGCCTTTGGCCAGAGCCCAGGGAGCCGTGAAGTGTGAGAGCCCAGTGACAACGTTGTGGGCACAGAACGAGTTGCCAGATTTTGGAGGCAACGTCCTTCTAGCCCCAGCTGCTCCTGCGTTGCACGTGCCTGTGAAACCACAGCCATCCGAAGTGATCCAGCCGCCAGATGAGGGCGCGTCCGCTCTGCAGTCCCAGCAGCCAGGCTCTGGCCTCCCTCTGCACAGTGGGGACAGCATTGGTGCTTCTGAGAACCTCGAGAACCCTCCCAAGATGGGAGAAGAGGAGGCCCTCCCGTCACAGGTGACAAAAGACGCTCAGGAACAGCGTGGCCCAGAGAGAGCCCAGCAGGAGCCAGCACCACCTCCCCCACAAGGGCCCAAAGCAACATGTACAGATCCTTCAAACCCAGGAGGTCCACCCGTGCAGGGACAGCCCCAGAACTCGGTCCCACCACCCACAAGCCCAGCTCCAGCTGACGCAGGTCAGCCACTGCCGCCTCGGCCACCTCGGTCTTCCAGCGCGTCGGTCGTGTCTACCAGCTCGAGCCAGGCAGCCGTGCGGTCAGACCAGCACTGGCTGCAGCCGCCTCCTCCAGACCTGGCATCTTACTACTATTACAGACCCTTGTATGATGGCTACCAGTCCCATTACCCCTCGCCATACCCACCGGAGCCTGGCACGGCCCCCCTCTATTATCAGGACGTCTATGGCCTGTACGAGCCCAGGTACAGGCCCTATGACAGTGCGGCGTCTGCCTATGCTGAGAGCTACCGCTATTCCGAGCCTGAGCGACCCAGCTCCCGAGCAAGTCACTGCTCAGACCGGCCGCCTGCCAGGCAAAGGTACCCTGAAGGTTACTACAGTTCCAGAAGTGGGTGGAGCAGCCAGAGCGACCACTATGCGGATTATTACCCCGGCCAGTACGATTACGCAGACCCAGGTCACTGGGACCAGTACCACTATGGTTCCAGATTCAGGGACCCCCGCGCCTGTGACCGGAGGCATTGGTATGATGCTGAGTACGACGCGTGCAGGAAGGACAGCTGTGCGTACGGTGACAGGCCCGAGAGGTACGACGACCCCTGGAGGTACGACCCTCGCTTCACCGGCAGTTTTGACGATGACCCCGAGCCCCACAGGGACCCGTACGGGGAAGAGGCGGACAGGCGCAGCGTGCACAGCGAGCGCTCGGCCCAGAGCCTGCGCAGCAGCTTCAGCTCCCACTCACGTCAGAGTCAGATTTACAGAAATCACGGCGTGACTGCTGCTCCCTATGAGGCCCCACATCCCCCAGGCTCCTTGCCTGGAGATTACGCCTACGGGGCCTATGGCAGCAATTTTGGCAGTGCCCAGGGCTTCCCAGAGTACGGCTACCCTGCCGAAGCTGGCTGGCCCTCCACGGAGCAAGCTCCGTCAAGACCAACTTCTCCTGAGAAGTTCTCAGTGCCTCACGTCTGTGCCAGGTTCGGGCCTGGGGGTCAGCTCATTAAAGTGATTCCGAACCTGCCTTCGGAAGGACAGCCGGCGCTGGTGGAGATGCACAGCATGGAGACTTTGCTGCAGCACACGCCGGAGCAGGAGGAGCTGCGCTCGTTCCCAGGACCGCTCGGCAAAGATGACACCCATAAAGTGGATGTTATTAATTTTGCACAGAACAAAGCTACAAAATGTTTGCAGAACGAAAATTTAATTGACAAAGAGTCTGCAAGTCTCCTTTGGAATTTCATTGTTCTCTTGTGCAGACAGAATGGGACCGTGGTGGGAACAGACCTCGCAGAGCTTTTGTTACGAGACCACAAAACCGCGTGGCTTCCTGGGAAGTCACCCAACGAGGCCAACCTGATTGATTTTACTAACGAGGCTGTGGAGCAAGTGGAGGAAGAGGAGTCCGGGGAAGCCCAGCTCTCATTTCTGACTGACAGCCAAGCAGCTAGCAGCAGTGCTCTTGAAAAGGAGACGGAGAGGTTCCGGGAGCTGCTGCTGTACGGCCGCAAGAAGGATGCTTTAGAGTCTGCGATGAAAAACGCCTTATGGGGTCATGCTCTGTTACTTGCAAGTAAGATGGACAGCCGGACACACGCCCGCGTCATGACCAGGTTCGCCAACAGTCTTCCGATCAACGACCCTTTGCAGACAGTGTACCAGCTGATGTCGGGGCGGATGCCTGCTGCGTCCACGTGTTGCGGAGATGAGAAGTGGGGAGATTGGAGGCCACATCTTGCTATGGTTTTGTCCAACCTGAGCAGCAACGTGGATGTGGAGTCCAGGGCAATGGCCACCATGGGTGACACTCTGGCTTCGAAAGGTCTCCTAGATGCTGCGCACTTCTGCTACCTCATGGCCCAGGTCGGACTGGGGGTTTATACAAAGAAAACCACAAAACTTGTCTTAATTGGATCAAACCACAGTTTGCCGTTTTTAAAGTTTGCCACCAATGAAGCTATTCAGAGGACAGAAGCCTACGAGTATGCCCAGTCTCTCGGGGCACAGACCTGCTCCTTCCCCAGTTTCCAGGTGTTCAAGTTCATCTACTCCTGCCGCCTGGCCGAAATGGGGCTGGCCACGCAGGCCTTCCACTACTGCGAGGTGATTGCCAAGAGCATCCTGCTGCAGCCCCACAAGTACTCGCCCGTGCTCATCAGCCAGCTGGTGCAGATCGCGTCCCAGCTGCGCCTCTTCGACCCGCAGCTGAGAGAGAAGCCGGAGGAGGAGGCCTTTGTGGAGCCTGCCTGGTTGGTCCAGCTGCAGAGTGTGGACAAGCAGGTCAAGGAGGGCGCCGCGGTGTGGAGTCGGGGCGGGACCTTCCCCCAGCGCTGTCCCAGCACCCCGAGCTCAGAGGCGGGTCAGTATGACGGGCCAGCACTCTCCCAGCCGGGGGGCCCGGGCACCGGCAATCCGCTGCTGGCACCGCCTGTGCCCAGCGCTGAGCACTTTGGCCAGGGGGTGCGGCTGCTGCCTTCAGCTCCGCCGACGCTCCCCGACAGCCATCCGGCCCTGCCCGCCAGGGTGCCCTTGTTCCCGGTGCCCTCGCCCCCGGGCCCTGTTGAGCTGGGGCCTGGCTGTGGACCCTCGGGGGCTGCCCTCGGCTTTCCGGAGCCCTCTGGGCCTGACCCCGTGGCTCCGTACGCGGCTCCTGGCCTGCCACCTGGCGCACCATCTCCGCAAGAAAGTGAGCACGCGCCCCAGGAGGCCCGGAGCCAGGACCCAGGGGTGATGCCACCGGAGGTGCTTGGTAGAAACTCGCTTCTGGAGCTGAGAGAAGAGGGTCTTGGCGGAAAATTTGCTGATCTGGGCTCCTCCATGATGTCACAGGACTCCGAGGTCCCCCCGGGGTGGGAATGTGCTGGCTCCAGTGTTCTGCAGCCACCGACGTCCACTCCCGAAGCGAAGAGACCTGCACCAGCAGCCAGGAAAGAGGCCAAGGAGCCCAAGAAGAGTGGCGAGTCCTGGTTCTCTCGTTGGCTCCCTGGGAAGAAAAGGACGGAAGCTTATTTGCCAGACGACAAGAACAAATCGATCGTCTGGGATGAGAAGAAGAACCGATGGGTGGATGTGAACGAGCCAGAGGAGGAGAAGAAGGCTCCGCCCCCACCACCAACCTCGCTCCCCAAGGCTCCACTCACTGCACCCCCCGGTCCTGGAGGGCCCCCGAGGGCCTCTGTGAACATGTTTTCTAGGAAAGCAGCTGGAGCCAGAGCACGCTACGTGGATGTTTTCAACCCGGGGGGGCCCCAGCGGAGTGAGCCGGCTCTCGCTCCAGCAGAGTTCTTTGCTCCTCTTGCCCCGCTCCCGATTCCTGCTCACTTGTTCGGACCAAACACAGACGCAGAGGAAGCTCCGCCTGCAGAGGGGGCTGGCAGGGAAGGGCAGGCGCCCGTGGGGGGTCCGGCCAACCCAGAGCCGGCCTCGGAGCCCCAGGTGTTCAGCTCGGCGGTGGCGCTCCCTGGCCCTGAGCTCCCACCCGCCCGCGAGGACGGCTCCCAGGGCGGAGAGCTGTCGCGCTGTAGCTCAGTGAGCTCGTTATCACGCGAAGTAAGCCGGCACTTTTATCAGGTACCTGTGGCCGGCGGCTCTCACCGGACGCGAGTTGAACTGGGTCGCCTTTGTGTTCCTTCTGAGAGCGCTGTGCTGGCTGGCCGTCGTGCCCTTGTCACTCACGCGGCCCGCTGCCTCCCCGTCCCCCTCACGCCAGAGGATGCAGTGTTCCTTTCTCCCAGGGTCCTCGGGGGGTCGGGAGCCGTCCACGTGCACTGATGCGCACGTGGACCCCAAAAGGTTCCTAGTGAACGAATGCAGTTTGTAATTGTGTTCTTTCCAGATTGGTTTGTCCACACGGCAGCCGTGGGCGTAGCCTCACCGTGTGTGAGTGGGCTTCAGAAGCCCGCCAGGGGCAGGAGGGACTTGTGTTCTCTGACCGAGCGCGAGACGGCGTCGCGTAGGCCCGGCAGAGAGCGGCGGGCGGCTGTCCTTTGGCCAGTCTGGGCGGGAGAAAAAGGAATGCGTCATCTTTTATGTGTATCGTGGCACAGCGTTTCCGTTGGCTCAGTAGAAGGCTTTACGTGACCTTTTTATTTGCGTACTAAAACGCTGGATTTTGTAGCTGGATACTGGAGTCTGAAGTAATCAAAAATGTCTACTAACTGCTTCAAGCCGACGCTAACGGGCCGTCTTGGTGCCGTGCACTCCGCGTTCCTGCATGTTCTGGTTTTAAGGCATTTCTCTCTGCATGCTGCTTCATGTTTTCCCATTTTCCTGTGAACCTTGGCGTAATTAAATCCAGTGTTGCGAGAAGTGTCTGCCAGCTGCTTCCGTGGCTTACTTAGAAGCGCTGTAAACGGTTCCCGGAGACCAGTGTCTGTTCACAAGGGGAGCAAAGCGCTGGGATGGCGCTGTGTTGACGCGTGCTCTCTGTGGT +>XM_012078672.1 PREDICTED: Cercocebus atys galectin-7 (LOC105594508), transcript variant X1, mRNA +GTTGCCCTGTCTGGCACTATCGCTGTGGTTGTAGCCGCTGTTGCTTTAGAGACATAGAAGCAGGGATTTCAGCGCAGACATTTCCAGTCCAGGCAGGAGGTTCTTAGCTGGAGAGAAGGGTCTAGAGTTCCCGCTGGGCTTGGCTTCTCAGGACCCAACATGTCTGTGTATAAAATAAGCATGAGACACTCTCCGTGCGCCAGGCAGTGGGAAGGCAGGGCTGGAGGGGCGGTGGCACGAGGAGCCTTCTCTGCTAACGTCCCCCACAAGTCCTTGCTGCCCGAGGGCATCCGCCCTGGCACGGTGCTGAGAATTCGTGGCTTGGTTCCTCCCAATGCCGGCAGGTTCCACGTAAACCTGCTTTGCGGGGAGGAGCAGGACTCCGATGCCGCCCTGCATTTCAACCCCCGGCTGGACACGTCAGAGGTGGTCTTCAACAGCAAGGAGCAAGGCTCCTGGGGCCGCGAGGAGCGCGGGCCTGGCGTTCCTTTCCAGCGCGGGCAGCCCTTCGAGGTGCTCATCATCGCGTCGGACGACGGCTTCAAGGCCGTGGTTGGGGACGCCCAGTACCACCACTTCCGCCACCGCCTGCCGCTGGCGCGCGTGCGCCTGGTGGAGGTGGGCGGGGACGTGCAGCTGGACTCCGTGAAGATCTTCTGAGCAGAAGCCCAGGCGGGCCCGGGGCCTTGGGTGGCAAATAAAGCGTTATCCCGCAGCG +>EU356148.1 Uncultured bacterium clone 053.F4 16S ribosomal RNA gene, partial sequence +GAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCATAGGTGGTGAGTTAAGTCTGTCGTGAAAGCCCCGGGCTCAACCTGGGAATGGCGATGGATACTGGCTCGCTAGAGTGCGGTAGAGGGTGGTGGAATTCCCGGTGTAGCAGTGAAATGCGTAGAGATCGGGAGGAACATCAGTTGCGAAGGCGGCCACCTGGACCAGCACTGACACTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGCGAACTGGACGTTGGGAGCAACTAGGCTCTCAGTGTCGAAGCTAACGCGTTAAGTTCGCCGCCTGGGGAGTACGGTCGCAAGACTG +>XM_036526509.1 PREDICTED: Megalops cyprinoides Janus kinase and microtubule interacting protein 3 (jakmip3), transcript variant X3, mRNA +AATGGTAAAATGCCTGTGTGTGAGGAGACGCGCAGACGGATTCTTTTTAGGATGTGCGCTTTAGCCCACAGCAAATGGTTCTTCACCGGATGCTAGGGGAGCTACACAGCTAAAGCAAGCAGACAGCATTCAGCCTAACTGGATCATGGCTTTAAGGTGGGAGAGAAGATGTAGGTGAGGATTCGCAGGGGGGAAGAGAAGCCTGACACCTCCCATCCTCAGGTTCTTCCTGTGGGGGCGGGCCGGCCCGAGCCGGGATCAGTGCCTCACCATGTCCAAGAGGGGGTCCGGCGGCCGAGCCAAGGGGGAGCGGCCCGATGCTCTAGCCGCCCTGCAGGCGGCGAATGAGGAGCTGAGGGCCAAACTCACAGACATCCAAATCGAATTGCAGCAAGAGAAGACTAAGGTCAGCAAGTTAGAGCGGGAGAAGTCCCAGGAGGTGAGGCAGGAGCAGCACAAGTCGACGGTGGTGGTGACGGAGCTGAAGGCCAAGCTGCACGAGGAGAAGGTGAAGGCCCTGCACTGCGTGCGTGAGACGCTGCTGCGGCAGCACGAGTCCGAGCTGCTGCGGGTCATCAAGATCAAGGACAACGAGATCCAGCGGCTGCAGGCGCTGGTCAACGCCCTCCGCGACGGCTCCACCGACAAGGTCAAGACGGCGCTCTTCGCCGAGGCCAAGGAGGAGGCCAAGCGCGGGTTCGAGAGCGAGAAGAGCAAGATGCAGCAGGAGATCTCCGAGCTGAAGGGCGTCAAGCGGCAGATGGAGGAGGCGCTGACTCTGGCCGTGCAGGCCGACAAGATCAAGGCGGCCGAGATCCGCAGCGTCTACCACCTGCACCAGGAGGAGATCACCCGAATCAAGAGGGAGTGCGAGAGGGAGATCCGCAGACTGATGGATGAGATTAAGGTAAAAGACAGAGCAGTCTGCCTGCTGGAAAAGGAGCTGGGCGTCCAAGCAGGGCACACTCAGAGGCTCCAGCTCCAAAAAGAGGCTCTAGATGAGCAGCTTGTCCAGTTCAGGGAGGCTGAGCGACATCTGGCCAGCCCCAAACGAGAGGCCCCTTATGCAAGTGGTGCAGGAGACGCCTCTGATCATTCAGGAAGCCCTGAACAGCAGCTGGACGAAAAGGACGCGCGGCGCTTCCAACTTAAAATCGCTGAACTGAGCGCCATCATCCGCAAACTGGAGGACCGCAACGCGCTTCTTTCCGAGGAACGCAACGAGCTGCTGAAGCGTCTCCGTGAGGCCGAGAGTCAGTACAAACCTCTGCTGGACAAGAACAAGCGTCTGAGCCGTAAAAACGAGGAGCTGGCCCATGCCTTCAGACGCATGGAGAACAAGCTGAGATTCGTCACCCAGGAGAACATCGAAATGAGAGAGAAGGCGGGAAGCATTCGCCGGCCCAGCTCCCTGAACGACCTGGACCAAACTCAAGAGGAGAGAGAGATCGAGTTCCTCAGGCTGCAGGTGCTCGAACAGCAGAACATCATTGACGATCTGTCAAAGGCGCTTGAGACAGCTGGATATGTGAAGAGTGTAATAGAGCGGGACATGTTGCTGAGGTACCGGCGGCAGAGAAAGAGAGTCATCAAGCCCTGTAAGCCGGTTGTGGAGACGTTCTTCGGGTATGACGAAGAGGCGTCTTTGGATTCAGACGGGTCCTCCATATCCTACCACACGGACAGAACACCCTGCACGCCGGACGACGACCTAGAAGATGGCCTGATCAAAGAGGAGACGGAGCTGAGGTTTCGTCAGCTGACCATGGAATACCAGGCTCTCCAGCGCGCCTACGCACTCCTACAGGAACAAGTCGGGGGGACGTTTGATGCAGAGAGAGAAGTAAAGACAAGAGAACAACTACAGGCAGAACTCATCCGGTACCAAACAAGAATAGAAGACCTCGAGTGCGCTTTGACCCAGCAAGGCCTGGACGTGAAGTGGATCGAGGAGAAGCAGGCCTTGTATCGCCGAAACCAGGAACTTGTGGAAAAGATCAAACAGATGGAGATGGAAGAATCCCGCCTGAAACATGACATTCAGGACGTCAAAGACCAAAACGAGCTTTTAGAATTCCGTATACTAGAACTAGAAGAGCGGGAAAGGAGGTCCCCAGCCGTCAACTTCCACAACATCCAATTCACGGAGGGCATGAGCCCCCTGCAGGTATACTGTGAGGCAGAGGGCGTCACGGACATCATCATCACCGAGCTCATGAAAAAACTGGATATTCTGGGGGATAACGCCAATCTCACCAACGAGGAGCAGGTGGTTGTCATTCACGCGCGGACCGTTTTAACTTTAGCAGAAAAGTGGCTGGAGCAAATAGAGGTCACCAAATCAGCTTTACAGCAGAAAATGCTGGACATTGAGAACGAGAAGGACCTGTTCAGTAAACAGAAGGGGTATTTGGATGAAGAGCTGGACTATAGGAAACAGTCAATGGATCAAGCACATAAGAGGATCCTGGAGCTGGAGGCCATGCTGTTCGACGCGCTGCGGCAGGAGGCCGGGGCCAAGATGTCGGAGCTGCTGTCCGAGGAGGAGCGGGAGACGCTGCGGCGGGCCGTGGAGCAGTGGAAGCGGCAGGTGATGAGCGAGCTGCGAGAGAGGGACGCCCAGATCCTGCGGGAGAGGATGGAGCTGGTCCATCATGCACAGCAGGTTACATCACTGAGATGGCAATCAAGCGGACACCATTGCTTGGAGGGAAAAATGAACACATTTTTGTTACACAGTGCAGTTACACAAATGTTAATGTATTGCAACCTCCTTGTTAGGTTACAAGTTATATGCTGTTTCCCAGCTGAAATGTGTTCAAATATTTACTCACTCTGAACTGAATTCAATAAGGTAGCTGCAAATCACCACCCCCTAGACTGAGATAGAGTGTAGAGCACTCGTGATATATTTGCTGATATTTATGACTCATTTCAGTAGTA +>XM_041210960.1 PREDICTED: Carcharodon carcharias tbl1x receptor 1a (tbl1xr1a), transcript variant X1, mRNA +GGGGGGGAAGGGAAGGAACAACAAGAGGAGGCCGCCCAGCAGCCAGGCGGAGGAGGCCAAGTGTGTGCAGATCCCGGTTCTGCAGTGTTGTTAAGTACTGACATCATTACACCCTTTGCTGGACCTGAGATTTCGCACAGTCAGTGTTTGAAGCTACTATACCACATGCCCAGTGATCTAAGGTGACGTGATACAACCATCCTTAATTGGTCCTGAGGGTTCAAAATGTGTTAATAGCCTATTCATGAAAGGCTTACCCTGTAATGACCTCATGGTTTAAGTGGGACTGAAGATGAGTATTAGCAGTGATGAGGTCAACTTTCTGGTATATAGATATTTACAGGAGTCTGGTTTTTCCCATTCAGCGTTCACATTTGGTATAGAGAGTCACATCAGTCAGTCCAATATTAATGGTGCCCTGGTGCCACCAGCAGCTCTCATCTCGATCATACAGAAAGGTTTGCAGTATGTGGAGGCTGAAGTCAGTATCAATGAGGATGGCACACTATTTGATGGGAGGCCCATTGAGTCCCTTTCTTTAATTGACGCTGTAATGCCTGACGTGGTGCAGACAAGACAACAAGCTTATAGAGACAAGTTGCAGCAACAACAAGCAGCAGCAGCTGCTGCTGCTGCTGCAGTTAGTCAACAAGGGTCTACAAAGAATGGGGAGAATACTGCAAATGGAGAGGAGAATGGCGGACACGCAGTTACGAATAATCATACAGATATGATGGAAGTTGATGTAGATGTGGATATTCCATCCAATAAAGCTATGGTATTGCGTGGCCATGAATCAGAGGTTTTCATATGTGCCTGGAATCCAGTCAGTGACCTCTTGGCATCTGGATCGGGAGACTCAACAGCACGGATATGGAATCTTAGTGAAAATAGTAGTGGTGGCCCCACCCAGCTAGTACTTAGACACTGCATAAGGGAAGGAGGACAAGATGTACCAAGCAACAAAGATGTTACATCTTTAGACTGGAATAGTGAAGGCACACTTCTAGCAACAGGTTCGTATGATGGATTTGCAAGAATATGGACAAAAGATGGTAACCTTGCTAGTACGTTGGGTCAACATAAAGGACCGATATTTGCATTAAAATGGAACAAGAAAGGAAATTTTATCCTTAGTGCAGGAGTGGACAAGACAACAATTATTTGGGACGCGCATACCGGAGAGGCCAAACAGCAGTTCCCTTTCCACTCTGCTCCAGCACTAGATGTTGACTGGCAAAGCAACAACACGTTTGCCTCTTGCAGCACAGACATGTGCATCCATGTGTGTAAACTAGGTGCAGATAGGCCCATCAAGACATTCCAGGGACATACGAACGAAGTGAATGCAATCAAGTGGGATCCAACTGGGAATCTACTCGCATCTTGTTCCGATGACATGACCCTAAAGATCTGGAGCATGAAACAAGATACATGTGTTCATGATTTACAAGCGCACAACAAAGAAATCTATACCATCAAGTGGAGTCCAACAGGACCTGGTACTAACAATCCAACCGCCAATCTTATGTTAGCAAGTGCATCATTTGATTCTACTGTACGACTATGGGATGTGGACCGAGGTATCTGTATCCACACTTTGACCAAACACCAGGAACCTGTATACAGTGTAGCGTTCAGCCCAGATGGCAGGTACCTGGCTAGCGGCTCTTTTGACAAGTGTGTTCACATCTGGAATACTCAGACAGGTGCTCTTGTCCATAGCTACAGGGGAACAGGAGGAATCTTTGAAGTGTGTTGGAATGCAGCTGGGGATAAAGTGGGTGCAAGTGCATCAGATGGTTCAGTTTGTGTGTTAGACCTCCGGAAATAGCGCTGCTAGCTGGAAGCCATGGACCGACAATGAATGTGTACATAGCCAAAACGACTGTCCCTGCCCCATGCACTGCTACAGTCTCACTTGAACCATGGCCAGTCCACTACAGCCAAAACAAGTCAGAATGCAAAACCCAGGACAACTGAGCCCTGATGTGAAGAGTACCCTGACTGCTTAATGCTGGAAGCTCCACCCACAAAGAAAAGTCAACCTTTCTTGAAGGTTTAAAACAACTTGAAATAAGACTTGACATGAGACCATATGTGTACCAAAATGGAAAGATAATATCAGAGGACAAAAATATCTTTTATTTTTTTGGTCCAGAGTCTATGTAGAATGAGTTATCTTGTCAGCAGTTCAGCAGATCTGTGTGCAGACATATCAGCTTCTTTCAATCAGCAGCAAATAGTTTGTTCCCTTGTTTTAAACATTGTTTTATCACTTTAGTTTACAGTTGCATGATGTAGGAGAGTGACTGTATCTTGTTTATCTTGTTTTTTTTCCTACTGACACTTAACACACAACTAGAAAAAAACTTTTTTATGGATACTATAAGCAAAATAACAGTGTATTTGGTATGTTTTTGGTACATTTTGTGGCTCAACAAACTAATATGTGGGGAAACATGAAACCGCTCCAAAATTCAACATAAAATTAGTTTCATTATACATCAGTCATAGGTAACAAGCTGTGGTTTACAGGTGATGTGGCTAAAATGTAGTAGTTTCTTAATGGGGACATGATTCTGCCGATTTATGAGAATTAAACAAATGGGCACAAAGAAAGAGAATCGATGCAGGGATGCATCCCATTGCTTTAAGACCATAGTTTGCATATGGTTGGATTGTGCACTATTGATAGAGCAGCTTATAGAATTTTGAAAGATAACTTTTCTGGACAGAGAATTATTACTGTTACTCTACTTATTCTTTGGTAGACCTACAGGCATAAATTTCACAGCAAGGTTCCAGTATTAAGGACTGATGTCTCGTAAGCAATGTTTTTAAAAACCTATCCAGTGCAATGAGATAAACCTCCCTCCCCCTCCCTCTGCCATTGGGCAGAAATCATGCAGGCATATGTTTTATGTTAATGCTAAGATAAGGGTTGACTTTGCTTTAATTTTCTTTCCTTGGTGCTCGTGTATTACACATGGGTTCATCTTGGCTCAGCCCTCTAAAGTACTTGCACTTGCTGTATTGTTCAGTAAAGTACAGGTAGTATAATTGCAATAGCTTTTTTTAGAATAAAAGTATATTCTATAAAGTATAGCATATCTGAGCTTTTAAACCTCAGGGGACCCTTCTTCAGATGATGAAGTGGTTAAACAAATATTTCTGCTACAAGATGCTCAATTACTTTTTCACACGAAGAAATGACGTTTGAGGTTTCAAATCCTTAGATTTAATGCATTGTAAAATGTTAGTCTAAAAAAGGTATTCTTCTATTTCCCATATCCCATGCAACAACAGATCAATGAAATGAAGTTACTGTTGCAAAGGCTTTATACCACCACTTCAAACTTGATCTGTTTTCCAACTCATTAAAAATGCAAGGTTAGTTGCTTTTTTGTTTAAATAGAAACATGAGTAAGAATAATTTCTGCACAAATGTTGGATTTTTTGTCCTTGGAGTAAAGTCTGTTGTTAATCTGAATCTAATCTAATCATTTAGAACTGATTATAGGTAACGTGGTATAATCAAATAGCTGCTATTCCAGATATTCCAGTGTCTGCATCACTGAAGTTGACCAACAAGTTCAGAACAGCTCCTAGATGTTCATTATGGGCTATTTGTCAAGTAGAGTAACAGTTATTAGGCAGCTTTATCACATTTCTAAGAAAAAAAACCATTGGTTATGTTATTTACTAGCCTTTTGTTAAATTGCGTCATATTAAGGTGATGAATGAGATTGGTTTTATCATTCTTCCAAGCTCTGCCCTTTGCAAGTTTGTTGCGAAGTCCAAGTTAAATTAAAAACCCTTGCATTCCCCTCCAATTAAAAAGGACTCATAAAGCATCTGCTACTATATGTTGACCTAAAGAACTAATGCTTGGAAAGGTGAGCCCTAGCCAGTTTTTAAATGAGCAGTTAAAACTTTTCATTTAAATCTTTTAAAAAGTATACATCGATGGCACAACATTTGAGAGCTCACAAATACAGTGGTAAATTTTTAAGAAGCAATTTTTTAAAAAATGAAAACAAGATATAAGTAGCTTTCCAACTGCTGTTTTTTGACCCTGCCAAGGGTAGAGGTGTAAGAGCAATTTTGATTACCTAATTTAATTATCTAACTTCACATTTTGGATTGGAAAATTAAAAAAAAGTTGGCAGTTACCTACACTGGACTTAAGTGACAGTCCAAAAATGGGGTAGCAGTAGAGCCTCTCACCTGAAGGTGAAGATTTATTTGAATGGGAATTTACAGCAGCCAGATATTGTATGGATGGCAACACTTACTTTTCAAAAATAGGTCTGTTCTTACCAATTGTTCTAAGGGCATCCATACTTTAATGATCTGAGGCTCTTATTCACATCTGCTAGAACTTTGGGAAACTCATAACAGCAAGATCATCACAATAAATTATACACACAACATTGTTTGAACTAACTAAAGTCAGACATTATTACACATAACACATTGAGCAAATGCATAACCATTTCCAATAATATGAATTAAAAGCTGCTTCCCTTGCTCAAGTCAATATTGATTGAAGACTCTGATAAAACTGTTGCTCATTTGTTCCATTGCAAGTGCTGTTTTAGGAAGGGCTGCAAATGAAACTAGATAGTTGAAGCAAGTGAAGTATTTAGGTTGGTGAAGACAGCATTAGGTGCATTCAGTGCTCAAGAATGAATAGCATAAAAGGATGATTTCAGGGGCTAGCATTACAGCTCTAGCACTGGATTTACATGTCTGCATCATTTCTACAGTTCTCACAAATTAAGATTTTAAAAATTGTGAACCTGTAAACCAGGCCATGAAAGTTTTTTTCTACTCTTTGAACTCTTTATTGTTCTGTTTTTATTTGTACCTGTTAAAAAGACTGATTTTTGATGTACCATACTGTCCTGGACCATGTAAATATCACCTGATAATGTATTTAGGTTCCACATTACATTAATAATTTTCCCTTTTCCACTCTCCCAACCCTCCTTCCACCACCTCACCTTACAAGTATCACCACCAAGGCACATCTTCTGTTGCAGCTTCCCTTTGCATCGTATTGATCTGACAACCATAATTTGCATCAGATCTGAAAGAGGTCCAGAATAAAATATATTTTGATATTA +>XR_005699604.1 PREDICTED: Hirundo rustica beta 3-glucosyltransferase (B3GLCT), transcript variant X7, misc_RNA +GGGGAGGATCATGATGGAGGAGGAACCTTGGGGAGCATGAAGGAGGGTCTCATGAAGCAGGATTTCTGGGGAGAGAATCACTGCTGTGAGCTTTTGCTGTAACTGTAATTTCTGAAGGTGCAGAAGATGAGACTGAACTACCAGTGCTGCAGAAGCCTGGAAAAAGTAATACAATTAGTAAAATAGGCAGAGAATTAAAAGGAATTGTATTTGTCATCCAGAGTCAAAGTAATTCTTTTCATTCCAAGAGAGCAGAAGATCTAAAAAGAGATATTTTGAAACAGGCTGTAGATCTTGGAAAGGAATTGCCTACAGTTCTACTTATTCATCAGATCGACAGGCATGAAGGTGCATGGACAATATTGCCGTTAATGACAGACTTCTCTGTTACCTATGGTAGGAACACCTCATGGATTTTCTTCTGTGAAGAAGATACAAGAATACAAGTAGTAAAACTGCTAGAAACACTCAGAAGATTTGACAAGTCTAAGGAGTGGTTTTTAGGTAAAGCATTATATGATGAAGAATCTACAATAATTCACCATTATGCCTTTGCTGAAAATCCTACAGTCTTTAAATTTCCAGATTTTGCTGCTGGTTGGGCACTTAGCATTCCACTTGTTAACAAGCTTGCAAAGAAGCTGAAGAGTGAACCACTCAAATCAGACTTCACAATAGATTTAAAGCATGAGATTGCCCTGTACATTTGGCAGAAAGGGGAAGGACCACATCTTACTCCAGTGCCTGAGTTCTGTACAGATGATGTGAATTTGTATAAGGTTGATCACTGTGCAACAACATTCAGTAATTTTCTGCCACTTTGTGGAGAGCCAGTGAATAAGGAAGATGTTTTTGTTGCTGTAAAAACGTGTCGAAAATTTCATGGTGACAGAACTTCCAGTGTTGTGCAATAGAGGATAATCTTACTCCAGATTTTGAAAGATTAATGGATGGCAGCTTCAGAGAGCTCTTTTTACCTGTACCAGTTGTAAAGCAGACTTGGGAGAGAGAAGCCGCCCTTATTGAATACTACAGTGATTATGCAGACATCTCCATTCCTACTATAGACTTAGGCATCCCTAACACTGACAGAGGTCACTGTGGCAAAACTTTTGCCATTTTGGAAAGGTTTTTGAATCATACTTCTGCCAGAACACCTTGGTTAGTTGTAGTGGATGATGACACACTGATAAGTATATTCAGACTCCGACAATTGCTCAGCTGCTATGACCCAAACGAACCAGTTTTCCTTGGAGAGCGTTACGGCTATGGCTTGGGAACAGGAGGATACAGCTATATCACTGGTGGAGGAGGGATGGTTTTCAGCAGAACAGCTGTTCAGAAACTACTTGCTAGCAAATGCCGGTGTTACAGCACGGATGCACCCGATGATATGGTCCTTGGGATGTGTTTCAGTGGCTTGGGAATCCCTATAACACACAGTCCACTTTTTCATCAGGCGAGGCCAATGGACTACCCAAAAGACTACCTTTCTCACCAAATTCCAATATCATTTCACAAGCATTGGAATATCGATCCAGTGAAGGTGTATTTCACATGGCTGGCACCAAACACAAAAGAGTCACATAACGACAAAAAAGTTGGATACAGCAGAGAGGATTTATAAGCAGTAGAAGAATGTAAGTGTTAATTACGATTTTACAGCTGAGAGACAGACACTACTGACAATTTTGTTTTCACATTGTTCCTCTGTTCATGACATAAAAAGACAGTGTTTTGTTCCTGTTGGTGGAATCCCTTCAGAGCAACGGAAGAAGGCACTTAATGACTTTTGGATTCTTTTCCTCTGCTTGGTTTCTTTTTAGAATGCTTTTGGGTTTTGTATACCAATGAACTTGACTCACATTTAAGAGTCTTGTACAACCTCACCTGTGTTCTGCTTTGGACTTGGTTCAAAAAGCATCGCTCTCTCAAAAGCTGAATTTATGCATTTGGGAGCTTAATACTGAATAAGTGTAGAACATCTATTAAACATCATCTCTCACTGACTTACAGAAAGTAGTTCTCTAAGAGGCTCTAGAACAGGTTCTTGATAAATCAGAGGACACTTGACTTTTTTTCCGCGTCCAGGAGCTAGATTGTCGGAAGGCTGTGCTCCTTTATGCTCATTTCAGATAGAAATACTGTAGTTTCCTGGAGTAGCAGGACCAGGCATGAAACCACTGTTGTACCTTTTAAGTTTGTTGGCATTTGTGTGGAATGTCGTGTACAAAATGGAAAAAAAGGTTAAGGACGGGGATTTCTTAGGTGGCCACGGGAGGTCACTGTGGCTCCTTCAGAAACCGGAGTCGGTGTACATCAATTTGGCAAATATAAAAGTGACTCTTAAGGATTTTGGAGAACTAACATTTCAGTATTTCTGATGTGTGCATTTCAATAGCATATGAATGCCAGCTTTAAAAAGTTTTGTAGTATCCCTAATTTGTATCATCAAAATAAGTAAATTGATGCCTACAGCATGTGAAGTGTGATTCTTATTTAAAACGTTCTTGAATTTTTTTTTAGTAATTCAGTTTTGTAAAAATGTTTGTACAAAACCTGGCTTTTAGTATGTTCTAAACTAATTTTTATATTGTAAAACTACTTCTTTTAAAATGATGTTGTATGGCACTTGTATGCTGTTATTTAACTTGGCTTGCTATATTGTAACCAAATACAGGGTCTTAAAGCCATACTGCTGAATTAATTTGTGTTTTGGTTTCTTTCAGTAGGTTAAAAATTGATTCCACTCCAAAGAAAAGCAATATTTCCTCTAGAGTTGAAGTAGGGGGAGCCACTGATTCCTGTCTCTGTAATTACCAAACTTGTATAAACATTTGTTTGCAAATGTAGCTTGTGGGTTTCTAAGCATTGAATAGCAAGCACATATTCATAATAGATTCAAATTCTGATTAATCAAGAGCAATCCATGTTATGTCTCTTTTCTTCCCACTACCAGTGCCTTAAACAGTAGACATTTTACTGATACCAGGACTATGTTCTCTGACACCATTGGTGAACTGTTAATTATGTTTACTGTTTAGAACTGTGAAAGCTGAATAAAAGCCTTCTTTAACCTGT +>XM_020777834.1 PREDICTED: Pogona vitticeps XK related 6 (XKR6), mRNA +ATCCGAACCATGTACCTGGGGATCCAGAGCCAGAGACAAAAGGAACACCAGCGGCGCTTTTACTGGGCTATGATGTACGAATATGCAGACGTCAACATGCTGCGTCTCTTGGAAACTTTCCTCGAGAGCGCCCCCCAATTGGTGCTACAGCTCTGCATAATGATCCAAAAGAACCGTGCAGAAACCTTACCTTGTGTGTCCTCTGTGGCCTCCCTGATGTCCCTGGCTTGGGTGCTAGCGTCCTATCACAAGCTCCTTCGGGACTCTAGGGATGACAAGAAGAGCATGAGCTACAGAGGGGCCCTTATCCATCTCTTCTGGCGCCTCTTCACCATCTCATCCAGAGTTATCTCTTTTGCCCTCTTTGCTTCCATCTTCCAGCTCTACTTTGGGATTTTTGTCGTGGTCCACTGGTGCGCCATGGCCTTCTGGATCATTCATGGCGGGACGGACTTCTGCATGTCCAAATGGGAGGAGATCCTCTTCAACATGGTGGTAGGGATCGTGTACATCTTCTGCTGGTTTAATGTCAAGGAAGGCAGGACCCGATACCGAATGTTTGCCTATTACACCGTAGTCTTGACAGAGAACGCGGCCTTGACTCTCCTCTGGTATTTTTACAGAGATCCCGACACCACTGACTCCTACGCTGTGCCAGCACTTTGTTGCGTCTTTCTTAGCTTCGCCGCCGGGATCGCGCTGATGCTCTTGTATTACGGCATCCTGCATCCCATGGGCCCGAGAGCTAAGATTTTTGCCAGCTCCTGTTGCGCCGAATTGCTCTGGGGCATACCTTTGCCCCCTGACGTTGAACCTATGGATCCTCAAACGCCCGGGTACAGGGCGGACCAAGTAACGCCCACCAGAGTGGTCACGGAGCAACAGGAGGAACTTACTGCTGACACTTGCTTGCCCGTTTTCCAAGTGAGGGCCATGGTGCCATCGACTCCGTTGGGGAGACCTTACCACCCAGAAGGCCCTCTCATTAAAATAGACATCCCAAGAAAGAGGTACCCGGCTTGGGATGCCCATTTTGTAGACAGGAGGTTGAGAAGGACTATAAACATTCTCCAGTACGTCACCCCCACTGCTGTAGGAATTAGATATAGAGACGGACCTCTCTTGTACGAATTGCTACAGTACGAATCTTCACTTTAAAAGCTCCTTTAAACACAAACCCACATACACAGGAAACAAACACACACACATACACACACACACACACACAAAACTCAACACACGGTCACAGGCAAACAAGCAGCAACAACAAAAAAATTAAGAGAGGGGATTTGGGGTGGGGGGTG +>XM_018564101.1 PREDICTED: Nanorana parkeri transmembrane protein 72 (TMEM72), mRNA +CTGGAGTCATGGAATGTACTGAGGAGGTGAGAACAGCAGCATTAACTGGATGTTTGTGGACAGAGCCTGTTGCTTCACGGTCACATACACTTTGGGATTCTTGTTTTCAAAACACTCAGAAGCACAGCTTTCCACCGCGTGAAAGCTTGTGATGTCTGTGATGCTGAAGGTGGTGTCAGTACAGTGTCATTAGCCAGTAGTTACAATGCAGTGCCAGGCAAGCTGGGTGGTATTAGAAGGCATCTGTAGATTCCTGGGGGTGTGTACAGCTGCAGTGCTAATTGGTGTTGGGATTGAAACTCTGCAAAAGGGACAATTTCCAAGTCTGGCCTATTATTTACTGTTTTCATCAGCAGCCGTGTCATTCTGTGAAGGTGTTTTCTTCATACACATGTTTCTCATGCACTGTATAAGATGGCAGTCAGAACCCCGTCTGTATGTATGCTTACGGAAAACAGCACGAATGGGAGGATTTCAGAAGTTCCTTGGGTATGGCATACTGTCAGTGGCCTGCTTCCTTCACCCAGTACTGGTCTGGCATGTCACAATTCCAGGAACCATGTTAATTGTTACTGGGATTGCCTATCTTTTTTTGAGTAAACGAAAGAAGACTAAGAGCAAGGATTGCGTTTTGCAGGCTGAATATTACACAGACCCATCTACCACAGCCATTGCTATGACCAGAGCTGGAGACACAGAGCAAACTTACACTTTCAATGACTCCCTGCGCCAGAAGAGAGAATCTCTACTCACCCATATGAGAAGCATCCTCAAAGTAAAGAAGGACCGCCAACCATCTAAGAAAGACCAAGGTCGCATGGATGCTTCTATAGACTTATGTGCTAAAAAGAAACAGGTTCACTTTGAGGAAAAGGTTATTAAAATCATCCCCTTGGAGGAAGGCATTCTTGAAGACCAGGACAGTGAGTTGGAGGTGACAATTTCAGATACTATTCCCATCATACCCAGTGAGCCCAAACAGGTTTTGAACACCACACCCATGACATCTGGCATTTTTTAAAGG +>XM_025751866.1 PREDICTED: Arachis hypogaea uncharacterized LOC112701064 (LOC112701064), mRNA +ATGGCAGATTTTCTAGTAGAAGTAACGGGGAATCCGACCGAAGAAACAAGCACACGGTGGAAGCTCCACGTGGACGGAGCCTCCAACCAGACGTCCGGGGGTGCCGGGATCATCCTGGAAAGCCCGGTTGGAGTCGTATACGAGCAGTCGATCAGGTTCAAATTCCCCATTTCAAACAACCAGGCAGAATATGAAACCCTTATAGGGGGCTTAACCATAGCAGCGGAAGTCGGAGCAACAAGGCTGAAAATATGCAGCGATTCCCAGGTCGTCACCTCCCAGGTCACGGTCCACCACGTGCCAAGAGAAAGGAACACACGGGCAGACCTTCTATCAAAATTGGCCAGCACTAAACCGGGAGAAGGCAACCGATCTCTCATCCAAGGTATGATGAAGGAGCCGGCGGTCACCTTGCATTTGTCAAGGCTGGGCTCTTCATGGCTAGACCCCATCACCAGCTTCCTAGAAAATGGCAAACTCCCTGACAATGAAAAGGACTCCGTGAAACTGAGAAGGGAAGCAGCTAAATATGCAGTCATTCAAGGACAGCTATTCAAGAAAGGGTTCAACCAGCCCCTACTGAAGTGCTTACACCCCGACCAAACGGACTACGTCCTCAGGGAAGTCCATGAAGGCTGCTGCGGACACCACATAGGAGGCAAAGCCCTAGCAAGAAAATTAATTCGAGCCGGATACTATTGGCCGTCAATGATGGCAGACTCCAAGGAGTTCGTCAAAAAATGTGTCAAGTGTCAAGAGAACGCCAATTTCCACAGGGCGCCGGCCTCCGAGTTAAGCCTGTTAACGTCCTCCCGACCATTCTCCCAATGGGGAGTCAATCTCTTGGGGCCCTTCCCAGTGATAACGCGATTCGCGATTCCAGAAGTTGTCATCTCGGACAACGGCACACAGTTTACCGACAAGAAGTTCACGGAATTCCTCACCGGCCTAGGCATAAGACAGAAGTTCTCCTCGGTAGAGCACCCCCAAACAAACGGACAAGTGGAGTCCGCGAACAAGATTATCCTGATAGGGCTCAAGAAGCGATTGGATAATAAAAAGGGTGCTTGGGCCGACGAGCTAGCCTCGGTGCTCTGGTCTTATCGAACAACTGAACAGTCCTCCACCAAGGAAATTCCTTTCCGACTAACATACGGATTAGACGCGGTAATACCCGTGGAAATTGGGGAACCGAGCCCCCGGCTACTTTTGAAAGGAGTAGAGGAAGCCGTGGAGAAGGACCTAATAGATGAAGCCAGAGAAATGGCCCATTTGACGGAGACATCGCTAAAACAAAGAATGGCCCTACGCTACAACACCAAAGTGCTCAAAATAGAATTCGAGCCGAACGATCTCGTCCTAAGGCGTAACGACATCGGCCCACCGACCCCAGGAACAGGCAAGATGGCGGCAAACTGGGAAGGCCCCTATAGAATAAAAAAAGTGATGGGCAAAGGCGCTTTTAAGTTAGAAAGGCTCGATGGCAAGGAAGTCCCAAGAACATGGAACGCGAACAACTTGAGAAGATTCTACTCCTAG +>EU583709.1 Uncultured Tulasnellaceae isolate S2.12h internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +AACGTCTTGTAATAAATAACGTACAACTATCAACAACGGATCTCTTGGCATCCCACTCGATGAAGGACGCAGCGAATTGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACCTTGCACCTTTTGGTATTCCGAAAGGTATGCCCGGTTGAGTATTATGAACATCTCAATCCTCTGGCTTCTGATCGCAAAGGTCGCACGTTCGGCGAAGTCGTCTGTCGGGACGACGGTAGCTGAAGTGCGACTTGGAAGCCTGTTGGACTTGGACTTGAGCGACACGTCGGTCCTCCACGATCGACCCGCTTGAAATGTATTAGCTGGCGACCCGCCTTACGGTTCCACTCGGCGTAGTAAGTTCTATTCGTCGAGGACGCCTCTTTCGAGGTGGCCGAAAAGCGCGCGATTGAAGCCGCTTCCAGTCGTCTTTGGATGCTTTGAATCTTTAATCTCCACCC +>KC809930.1 Bacillus sp. EK-CH-I9 16S ribosomal RNA gene, partial sequence +AGCGGACAGATGGGAGCTTGCTCCCTGAAGTCAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATAATTCTTTCCCTCACATGAGGGAAAGCTGAAAGATGGTTTCGGCTATCACTTACAGATGGGCCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGANACNCGGCCCANACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCANCGCCGCGNGAGTGATGAAGGTTTTCGGATCGTAAAACTCTGTTGTTAGGGAAGAACAAGTACCGGAGTAACTGCCGGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCANCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTCCTTAAGTCTGATGTGAAAGCCCCCGGCTCANCCGGGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAANAGAAGAGTGGAATTCCACG +>XM_041467909.1 PREDICTED: Pyrgilauda ruficollis lysosomal associated membrane protein 3 (LAMP3), mRNA +CTCGGCTCGCTCCGCAGCGGCTCCCGGGGAGAAGCAGAGCCCGCAGCCCGCTGGCCATGGGGAGGAGCGCACGGCAGCTCATCTCGCTGACCCTCGCCTGTGCATTTTCCTCCTGCTTTGCTGAAGTGGCCCTGGGGGTCGAACTGTCTCCAGAAACCACATCCTTCCACCAAATGGCTACTTCTGCTCAGCCACTTTCCCTTTATCATTCTTCACCCCATCAAAGCACTGCAGTTCATTTTACCAGCACAGGCTCTCTTCAAACAACACCCATGGGCCACAGAACAGCTGAGCAGACAACGGAGCAGCTCAAGACAACATCAGCCGCAGGCCAGCACACGGCAGCCCAGGCAGGAGCAGGCACTGTACCCACAGCCCCTGCAGACAGCCCCAGCCCCGGCCGGGCCACCACCCCGGCGATGCCCTCGCTTACAGCGGTGGTCAAGAACACAACCACTGCCCCTGTGTCCTCCACCAGGCATGGCAAGGGACCACGTGTGACCACAGGAACTGTGGCAGTGGCCACCAACACCTCCCTGAAGCACGAGACAGCGAGTACCCCGGGGGCAGCTGCCACCTCCGCCTCGGCAGCCCCCAGCACGCCGAGGGCCGGGCCCAGCACGCGGTCACGGAGACAAACAGCAGCCACTGGTGCTCCAACAGCCACGGCCGTGACCAACACAACAGGCACCCATGCAGGGACACAAACAGCCCCCACATCCCCTGCCAGCACAGTGAGACCCCGTCCCACCCCACAGCCCTCTGCCATCCCCACAGGCACCTACACCGTTTCTGATGGCAACAGGACCTGCGTCAAAGCCGTCATGGGTCTGCAGCTGATGGCCCGAAATACCCAACAGGAGCAGATGGAATATGTGACTGTTAACCCAAATGCGACAAAGATATCTGGAAGCTGTGGGATGGTGCAGTCTGAGCTGAACTTAACTTTTAGTGGAGGATTTGTAAACATCAACTTTGTAAAGCAAGCTCCAAGTTACTCTGTGACTAAAATTGAGAGCAGAATACTGTTATCTTCTGAAGGTATGCTTTACTATGCAGCCCTAAATGAGAAGCTGTTCACAACAAAGCTGGGGAATTCCTTTAAGTGTGCCAGCAGGCAAACCTTCCCCTTGGAGAAGAACTTCCAGATCCTCTTTGTTCATATGCAGCTGCAGGCGTTTGACATTGTGGGTAACCAGTTTGGAAAAGAAGAAGAATGTTTTCTTGATAGAAACGGCAGAGTAGCTCCCATTGCAGTGTGCCTGTGTATCCTGGGATTGTTTGTCATTGTGTTTGCCACCTTCCTGATCTCCAGGAGGAAGCCACAGAGAGGATATGAACGCATCTGAGGTGCCCCTATGCTTCCAAGTGTGTGCAGCAAGCAGAGAAGTCACAGGAGTTTTTGCTTCTGCCTGGCAATCTCTCTGCCCTGAAGCCACATTTTTAAGTGAGATGACACTGTGTGTTTACAGCTAATGAATGTTTCTGGAAGGAGTTCTTTTAAGGTGGGAAGGAGAGAACTCACACCTTCTGCTTTAAGCTATTCTTAGCATCTAATTTAGATGTAGTCCAGAATGAGGAGCCTAAATTCTCTCTGTTGTCAACAAAGGAGGTCATTCAGATCACTTAAGCCAGATTCCTAAAAATAGCTTAAAGCAAGCAGTATCACTATCTCCCAGAAAATGCATCAGGTTTGTTAATGATGGTGTTCAGATTTATCAAAAGACATAAGTCTGACCTTCAGGTGAAAAAACCTCAGGCCCACAGCTACAGACAACCCTGCTAAGTGAGAGCTCACTGAAAGCTTTT +>XM_023176141.1 PREDICTED: Drosophila willistoni uncharacterized LOC6643128 (LOC6643128), transcript variant X4, mRNA +TTCATTCACTATGTCCAAGGGACTTTTGGGCCTTTGGCTTCTGCTGGCAGTGCTAAATAGGCTACAGTGTTCGAATGCTTATCAATCTGGTGGCAGCTATTATGATGCTGGCCAGTCCGGGTTATCAGCATCAACGCAATCATCTTATGGCGGCAGTGCCAGAATTCAAGAGCAGCCCATCTATGAGCGCGAATCGGCTTGTCCAGCGGGTTTTACGGGTCTAAAGCCATATCCTCATGATTGCCATCGATTCGTCAATTGTTTCAATGGACGTCCAACCATTCAGACCTGTGCACCGGGCACTCTATTCGACGCCAGAAACTTGCAATGTGATTCACCCAGCAAGGTATCCTGTAACGGAGACATTGCTGAAGCAGCTGCAGCAGCAGTGAATTCCAATCAATCCAGTCGTTCGGCTCGTTTGAGACAAATCAACACTGAACCCAAGTGTCCAGCTGGTGTTAATGGATTGCATCCGCATCCTTTTGATTGCACCAAGTTCCTCAATTGTGCCAATGGTCAAACTTTTGTGCAGAGTTGCGGACCAGGCACAGCATTTAGTGCATCTCTTCTGATCTGTGACTACAAGAACAAGGTGGATTGTGGAGCTGGTATCAGTGGTGGTGTTGCTGCATCAGAGGCCTACGAGAGTCGTCAATCGAAAGCCTACAATGAAGGCAGGGGGGAAAGTGCCGGTGGTAATCGTTGGAGCTCCATGAATATGCAGCGTCCAGCTGGCATTGGCTTCACAAATTACCATCAGCAGCAGCAGCAGCAGCAGGTTGGACAAGTGAATCAGCAATATGGCGGCGAAGCAGGAGGCTGGTCTGGTCATGGCACCTCTTTTACCCATCGTATACCCACACAGAGTGTGCTCTATGTGGAAGGATCCCTACAGCCGAATCGTAATTATCCCAGTTATAAGACTCCATTGGCACCCATGGCTCCTGCCTCTACAGATCATGTGTATTACGCTAATCCAGTTGTGGAAGAGGTCGAAGAGGAGGAGGAGGATCAGCAGCAGCAGCACCATAACCACCACCACCACCAACAACCACAACCACATCAGTCACACTACTCACCCAATAGTTTGTCACGTCAAGACTTTAGTAGAGATTTGGTTGGAGCTGGCCAACAATATCCCAATCATGACTTGCCACCATTGGCTCCTTTAGGCGGACAGCAACCTCTTGATTTAGATTATACACCAGATGCTGGACAGCAATCAGTTGACCTAGACCAAAATCTCACGCCACACAGTCCATCACATGACCAGTTTCCCAGTGAAACACATCAGGAACCTGTAGATTTATATGACCCGCCCGTTAAGGGTTTCCCTACGCCATCCTCTCCGTTGCCTCACCAACCAGTTATAGACGAGTCAAATTTGTATGGAGGCTTGCAACCTCCACCACCACCAGCACCAACTCCAGCAGCACAACCTTCTACCCCATCCACAACACGTTTGCCTACAAATCTTCGTACATTTCCCATCTATCCACCCATGGCCAATGTTAGCTCACCGAAAGAGGTCAGGCCACCACATTATAGTCCTGGCTATGCAGCTGTAGCTCATTCCCATAATACATCTTGGCAAAAGATTCCGCCGCCAACTACTACACCAAAAGCTCATGATCCTTTCATTCCTTCCGAGGATATCGATGATAATTTGGATGAGTTTGGAGAGAGCACAACTAAGAGGCATGATCTTAGTCCGCCTCCTTTTGATCATAAATTTTACAATCCCACATTAAATTCTAGAGCTGCTAAAGCAGATTCCAATTCCGATCCTTCAAATGATCAACGGATTTTCGGTGAGGCTTTGCGTCTAATGCTGCGTCCCTATTTCAATCACAGTGGCAATGCCCCGGAGATTTTAGCCAAACAAACTGAATCAGCCATAGCTACGGTGATAAGCAAGCCACCTACCTCTAGAACTATTGCATCCACATCCACAACAACCACTCCCAGAAATTCCATACGACCCGACGATGATGTTGAACTCATTGTGGCCGGCGAGCAGGAAAGCCTGGACATTGAAACGAACGAATCTGACAGCGACTCTGACTCTGTTGTTCCAGATGCTGAGGAAACGACACACACTGAGCAGACCATAAATCCTACAACCTATGCTTTTGGTGATACACAAAATGATTTTCATCGTGGCACACGCAAGGTGGACATCGATTCAATGACGACCACAACCACCACATCCAGCACAACTACCGCCACAAACAACAAAAACAACAACAACAACAATTGGCATACGCCGCACAATCGTGATTTTCATAGGCGTCATCCAAATTTGCCCGATCCATTTGAGAAGCCGCATTCTCACCATCAGCATCAGCACCACAACAATCACCATTACCATAGTCCCCTCTATCATAGCCAGCATCCCGAATTGCTCAATCCCTTTCGGCAAAATCCCGAACAGAATAGTCCTGACACGACGACTCCTGACATAGTTCATCATCAGCATCATCACCCCGATCAACGTTTGCCCAAATCTTTTGACTCGCCAAAAGATCAAGATGAGGATGAGGATGAGGAATATCTACCCAATCCTAACGCTGAGGAAACAACACCTAAATCTCAATATCAGATATCCATGCGTAGTAATTTCCAGGATAATGACTGCGAATTCGATTGCGGCAATGGCAAGTGCATTAAACAAAAGGAAGTGTGCAACGGAGTGAATAACTGTGGCCCGAATCGCCGGGACGAGAGCCAGTGTCAACATTTGGGCTATCAGGTGCGGTTAACTGGCGGCGAGAACTCTCACATGGGACGCGTTGAAGTTAAGGTCAACGGTCAATGGGGTTACGTGTGTGATGACAAGTTTGGTTTACGGGATGCCGATGTTGTTTGCCGCGAATTGGGCTATAAAATGGGCGCACAAGAAGTGCGTGGCAATTCGTATTATGCCCCACCTGATCGCAACTTCAACTATATGATGGACAAAGTGGAGTGCCAGGGTAATGAGACAATGCTCAAGGATTGCCAATTCAAGGGCTGGGGCATTCACAATTGCGGTGTCGATGAAGTCGTAGGAGTAGTCTGCAAAGTTCCCGTGCTCAAGTGCCCGAACAACTATTGGCTGTGTCACACCTCTAAGGAATGCATCCCACCAGCCTTTGTATGCGATCATACAGAGGATTGTGCCGATAAATCGGACGAGAGTGAAGCAGTTTGTAAGGCTCCCATTGAGTATCGTTTGGAGGGTGGACGCAATCCAAGTGAAGGTCGCCTGGAGGTGAAGTACCATGGTGTCTGGGGTAGTGTTTGTGATGACGATTTCAGTGCAAAGTCAGCGCAAATTGCCTGCAATTCTTTGGGATACTATGGATCAGCCAAAATCGAGAAAAATATCTTTGGTCCTGCAAGTGGACCCATTTGGCTGGATGAGGTCATGTGTCATGGCAATGAAAGTAGCATCGATAAATGCAGTCACTGGAATTGGGGCGAACATAATTGCAATCATACTGAAGATGTAAGTTTACGTTGTACAGCTGGGCCACCACCAACCCGGCAGCAGCGTCAGCAGAGTGTTCGCCTTCACTCAGTGGGTGGTGGCAGCCACAACATCAAGGGAAGCCCATCCGGGCAAATTAGTCATCCCGCCTTTACTTTATCGGACATTGGACTGTGGGAACGTTCCAGCAAGGCTCTACATACGCCACGCCGTTGCGGCATCTTCAAAGATGATCTAACCGATGAGTATGCCCATCCTGAGGAGCGTGTGATTAAGGGTAATATAGCGCGTCGCGGCCGACATCCTTGGCAGGCCACCATACGTACCCGTGGTCGTGGCGGCATCTCAAGTCATTGGTGCGGCGCTGTTGTCATCTCTAAGCGTCATCTTCTGACTGCTGCCCATTGCCTGTACGGTCATCCAAAGGGATCCTACTTTGTGCGTGTCGGTGATCATTATGCCAATATTGCTGAATCCTCTGAAGTGGATTCGTTCATTGAGAACTGGTATACACATGAGAAATTCCGCGATGGTTCACACATGAACAATGACATTGCAGTGATTGTGCTTAAAACTCCGCTTAAATTTAGTGACTATGTCCAGCCAATTTGCTTACCAGAAAAGAATGTGCCTCTTGGCGAGAATCGAACCTGCACCATATCAGGTTGGGGCTCCATTAAGTCCGGTTTGTCCACTCCATCCCAGATTCTTAGATCAGCTCAGTTGCCCATTTTATCTGATGCCACTTGCAAACGCTCAAATGTCTATGGCGATGCAATGACCGATGGAATGTTCTGTGCCGGCTCCATGGATGAGAGTGTAGACGCATGTGAGGGCGATTCTGGTGGTCCACTTGTCTGCTCTGATGAAGATGGCGAAACTCTATATGGCATTATATCATGGGGACAGCATTGCGGTTATCAGAATAGACCGGGAGTTTATGTACGGGTTTGTCACTATATTGACTGGATCTATGAGAAAATCAATCACAGCTTGACGAAATTCTAAAAATCACATTTCGGATTTTTCAAAAAACATTTAGAATTTAGGACTATGAACAAGAATAAAGTCAATTTGCTTAAAATATA +>XM_044890485.1 PREDICTED: Coccinella septempunctata spastin (LOC123307970), transcript variant X2, mRNA +CCAGAAGAGGTCCTGTTACAAGTGTTCTGTGCTTGTTACTCTTTGGTCCTACGCTGACATAACACGTCGTTTTCCATTATTTTTTTAAGGATGAATACGAGTTCAATAAACTGAACATTGACTTAAAATGTATATTTGAATTTAGCTCCTTAATGGTTCGAAAAACACAAAGTGGAAAATCCCCTAAAAAATCTAGAAAAGTTGACCCTGAATCAGATAAAGATGTTATGTATATGACTTATGGGGACTCGTCTGTTCATAAAAGGAATCTGTGTATTGTTTCGTTTCCCATTATTTTTCTTTTCAGTATATTGAGAGCATTATTGTACCAAATTTTCGTTATACTTCGATTTCTCTACTGTCGTTCGTCGAGCTATTTAATTAAGCCACGTAAATTGCAGAATGGAAATATAGAAAGTAGTTGTGCTATTGAAGAAATTCAAATGTCACATAATATACAAAAAAATTCAGGTCCTGGTCCAGGGGACCCTCTGCTAGCCAAGCAGAAACATCATCATAGAAGAGCATTTGAGTATATTTCTAGAGCCCTTAAAATAGATGAAGAAAATGAAGGTCAAAAAGAAACTGCCATCGAATTATATAAGAAAGGAATTACAGAACTCGAATTGGGTATTGCGGTACACTGCTGGGGAGGAAGAGGTGAAGTTTGGGAAAGGGCTCAAAGACTCCATGAAAAAATGAAAACTAATTTGTCCATGGCAAAAGATAGACTCCAATTTTTAGCATCTGGGAAGAAATTAACTGTAGCTACTAGAAGACCTGGTAATTCACCTTTGTCTAAAAGCCAGACATTGCCAAGATCAATGGGTTCCCGCACAACACCTGTACAGCCAGTTCGTCCTTTTAATAAGCCAACACAGACTCCACCTGCAATTAAGAAGCAGTTATCTGTTCCTGGAAGTGGATCTCCAGCCAGAAAATTCTTAGCTAGTCAAGGTACCAGTAAGCAAACTTGTCGAGGCAAGTCTCCATCTCAACTGAAAGGAGTAGATCCAAAATTGGCTCAAAGTATTTTGGATGAAATAGTGGAAGGAGGTCCAGCTGTTCAATGGGATGACATAGTGGGTCAAGAAACTGCCAAGCAAGCTCTTCAGGAAATGGTTATTTTACCCTCCCTTCGTCCAGAACTCTTTACAGGACTGAGAACACCCGCAAGGGGGTTACTTCTGTTTGGGCCCCCTGGAAATGGCAAGACTTTATTAGCAAGAGCGGTAGCAACAGAATGTCAAGCAACATTCTTCTCAATAAGTGCCGCAAGTTTAACATCAAAATATGTTGGTGATGGAGAAAAAATGGTTAGAGCGTTATTTGTTATTGCAAGGGAGTTGCAGCCTTCAATAATTTTCATTGATGAAGTTGATTCTTTGCTTTCTGAACGCACCAATAATGAACATGAAGCAAGCAGAAGGTTGAAAACAGAATTCCTTGTTGAGTTTGATGGATTACCATCTAACCAAGAAAGTGAGAAGGTTCTTGTGATGGCCGCAACTAATCGACCTCAAGAACTAGATGAAGCAGCTCTTCGTCGATTTCCCAAAAGGGTTTACGTTACACTACCTGACATGGAAACTAGAATGGAGCTATTAAGAAAATTATTGGCTAAACAAGGTTGTTCTTTTACTCAACAAGAGTTGAAAAGGTTGGCTACACTAACAGAAGGATACTCTGGAAGTGATCTCACTGCACTTGCTAAAGATGCTGCTCTGGGACCTATACGAGAATTGCAACCTGAACAAGTGAAACAGATGGATCCAAGTGCAGTCAGAAGTCTTACGATGAACGACTTCCTGGAATCTTTGAAGCGTATAAGAAAAAGTGTTTCACCTCATAGTTTAGTGGCTTATGAAAAATGGTCATTGCAGTATGGAGATGTCTCTATTTAGAAGTAATACTTTGGTACATTTCAAACTTGTCTTTTATATTATTTGGTCTTGTTTTTTATACTTTGTCTGTGATAATTGATGTAATTGTAAGTGTTTATCATTGCTGCCAAGGATGAGTTTTGAAGGTTATATGGTTTATTCGATACTAAATTATATTCATAGCGATACAACTATGCAAACTGGATATTTTATGTTTGTTAGCTTCTTTAACTATTGAAGCAATACTTGCTATTAATAATTGAATTTCATTACGCTTTTTATTGCTATTATGTAGACTTAGTATCATGGACATTAATATATTCACTTATAACTTACAAAA +>XM_040825979.1 Metarhizium album ARSEF 1941 uncharacterized protein (MAM_07181), partial mRNA +ATGTCGCCACGGCCGGCCCGGACGGAACATCATTTAAACGTCGACAAGCCCAGCATCCGAGCTTCGCCTCTTCCGCTTCACACCAAACCCCTCTTCCAACGAGAGGTTCGAGCACAGCCCAGCATGGCACTCCCCAAAGTCCCGACCGCGACCGGCTTGCTGCGGCACAGCACACGCCCGGCGGCCTCGCGGGCCAGCCTGCCTCAGCTTCGACGCAAGGTGACACGAGGTGACGGCGATCTCGGCGGCCCGGGCGGACAGCAGCCCCCGCCGCCCAATCCAGGCGGTCCCGAAGCCGTCAAGAGAAACTGGGTGCCCATCGGCGGCGCGGCTCTCGCTGCTGTCGCAGCGTACGCGTATCTCACCACCCCCAAGGTGGATGTGGACAGGGCCAAGCAGACAGACGCCAGGAACCCGAGCCAGGCGGAATTGCGCGACCTGGCGGCCGGTAGCCAGGCGGCGGAGGAGGTTGTCCAGCAAGTTGCCGACCAGGCGACCAAGACGATGAAGGAGATGAGCGGCAGACGCAAGACGGACCAGGGCAGTTTCCGACACGATTGA +>XM_034374830.1 PREDICTED: Thrips palmi deubiquitinase DESI2 (LOC117639294), mRNA +ACACACCGTACAGTGCAGTGCGTCTGCGCGCGCGCTCGAGGGGTGGTGTTGTGTTGAATGAATGTTGACCTGTGTCCAAAATCTTTTGTTGTCGTCAGCATTTTAACTTTTCGCTTTGTTCAAAGAACCGTTTAGGCTTTAGTTTAGGACTTTGGACATCTAAGCCTGTATCTGACTCTTCGTTTGTCGCATGTGTTATCAGCAGGGTTTTCAGCAAGAAGATGTCGTCAGAGCCAGTTATTCTCAATGTTTATGATATGTACTGGACCAATGAGTATACTACTCCTATAGGATTAGGAGTATTCCACTCTGGTATACAAATATATGGCATGGAATATGCTTACGGAGGCCATCCCTATACCTTTTCCGGTGTGTTTGCAATTGCTCCACGTGATGCAGAAGAATTAGGAGACCAATTCCAGTACAGGCAATCAGTTCATGTTGGGTACACAGACTTTACTGAAAAAGAAGTAAAAAAAATAATTCAAGAACTGGGAAAAGACTTCCGTGGGGATCGTTATCATCTTATGAATAAAAACTGTAATCATTTCTCTGGGGCATTAAGTCAGATTCTCTGTGGCCGCGACATTCCCTCATGGGTCAATAGACTGGCATACTTTAGTTCTTGTGTGCCTTTTCTTCAACGGTGCTTGCCGAGAGAATGGCTGACTCCGGCAGCCTTCCAGCAATATAGCACACCAAATGCCCTGCAGCACACACTTAGTGCACGTGATAACAGTCCTGATGGTCCTTCCTCATAACATGAGGCTGCTGGGGCGGATCATGAAACACATCCTCTCTATGAAGATGACACTCAGTCCGTCTCCCAGCTTCCCTTGCTGTACACCCATGATCAGCCAAGTTCATGGCTGGGCAACCCCAAAGAACCACTGCCGTCCAGCTCTAACGTCAGTGATGAAGATTGAATGTACTTCTGTGTTATGCTTAAGTGGGTAACAGGAATGTTCAACATATATTTCTGTGTTATATTAAGTGAAGATGTGATTGGGTTATGAAAAGAGTGCTTCCAGAGGAGTACAAGAAGCACAACATTAAAAACTTTCAAAAACTTGAATCAAAACTTTCCTGTAAGTCATTTGTATAGTATTAAGCCTGTTGTCTCACATTTTTATTCTATTTTCCTGTTTGGTTTGAATGTTTTTAAAGCTTGTGTGGGACTCCTTCGGAAAAAGTGTTTGTGCATGAAGTCTACTATGACCTGATTCCCTTTTTTCTCTGAACCCTGAAATATTATTGGTTAATGGTGAAGCAAGTATTTCCCTGCAAAAATAAAAATTACTTGTTATCTTGTTGTAAGAAATTCTGCACTCTTGTGCAGTTAAGTTTTAAGAAACGATCATTCATCTTATATGGCCCTGTTTTATCATACCTTTGTTGATAACTCCCCCTTTATTACATAACAAAACAATTTTCCTTATGGTTTCTTTCATAAAAAGTGATCAATTTTTTTTTTATAATGTTATACCATGGTGCTTTTTGAAACTGTTGGGAAGATATCTTTGGGATTTTTCCAGACTCTAGGTATCTGATGTCATCATAACTCTTGTTTGACATTCTGTAGAAATATTTCAATTGATGTATCAGCATGTTGTCACTATTTGTATTTGTCAGGAGATGTGTTAATGCTTACTACGTATGAAATTTAGTGTTGTTGAGTCTTTGCTGGCCGCTTTTTATGTGCCACTGTAAAATTATTGCCTTATCCTAGGAATTAAAATTTGCTCTTCAAATTTGACCTCAGATCTCAATTTTTCTTGCCACTTCCTTTTTTAAAAAATTCAAAGTTCACATTTACTATGTCAGTGATTCCTCCCTGTGAAGAGGAATGCTTTGGTTTGAGTCTGTAGTTCTCTCAAATATTTGTATGTATTTAAGTTATTCATGAATCATCATAGCGTGACAGGTGACATTTTGAGACAAGCATTACTGTAGACTCCTTTGAGAGAACCGACTGCTTTTTTATTATTCAATAATCTGAGTGCGAATGAAATAAACCTTGCCTCTGTCTATGAATGAACAAACAGTTATAATTCCACATTACTTGAAGTTTTTGTGATTCTGTATATTTGGTGCTTTATAATCACTAGTTACTTACTGTACAATTGGATTTGATACGGAGGTGGCTATGCCTTGCCTAACTTTGTGTTTCAACATTTTTTGTAAAAAAAATTTGCAATATCAGCACAGTACGTTTGTATTTACTTTACAGGTACAATGTACATAATGTGAATTGTTCTTGTCATGGATCCTTGTATAACTAGTGGCAACCTGAATGTAGAAGGCATAACTGAAGGCAGAGTTCAAGTTTCCAGAATTAAAGTGTTGTATTCAGAGCCAAAAA +>KC066956.1 Uncultured bacterium clone G4RKN2Y13H4BNZ 16S ribosomal RNA gene, partial sequence +TACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGTCGTGAGGAAGGTGTTAAGGTTAATAACCTTAGCAATTGACGTTAGCGACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGGGCACGCAGGCGGTTAATTAGTTGGATGTGAAATCCCCGGGCTTAACCTGGGAATGGCATTCAAGACTGGTTAGCTAGAGTCTTGTAGAGGGGGTAGAATTCCATGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAATACCGGTGGCGAAGGCGGCCCCTGGACAAAGCTGACGCTCATGTGCGAAAGCGTGGGGAGCAAACGAGGGATTAGATA +>HQ143338.1 Uncultured bacterium clone 19-239BM 16S ribosomal RNA gene, partial sequence +GCCGTGAAAGTCCGAGGCTCAACCTCGGATCTGCGGTGGGTACGGGCAGACTAGAGTGATGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGGTCTCTGGGCATTTACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGTTGGGCACTAGGTGTGGGGGACATTCCACGTTTTCCGCGCCGTAGCTAACGCATTAAGTGCCCCCCCTGGGGAGTACGCCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGAAGAACCTTACCAAGGCTTGACATGTGCCAGACCGCCTCAGAGATGGGGTTTCCCTTCGGGGCTGGTTCACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTTCCATGTTGCCAGCACGTAGTGGTGGGGACTCATGGGAGACTGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGTCTTGGGCTTCACGCATGCTACAATGGCCGGTACAATGGGTTGCGATACTGTGAGGTGGAGCTAATCCCTAAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCCCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCAAGTCACGAAAGTTGGTAACACCCAAAGCCGATGGCCTAACCACCTTGTGTGGGGGGAGTCGTCGAAGGTGGGACTGGCGATTGGGACTAAGTCGTAACAAGGTAGCCGTA +>KT815871.1 Uncultured eukaryote clone 41c_79369 18S ribosomal RNA gene, partial sequence +CAATAGCGTATATTAAAGTTGTTGCGGTTAAAAAGCTCGTAGTTGGATTTCTGTTGAGAGCAGCCGGTCCACCTTTTGGGTGAGTATCTGGATTGGTCTCGGCATCCTCACAACGAATGTTTCTGCGCTTGATTGCGTGGTATAGGCGTTGTGACTTTTACTTTGAGGAAATTAGAGTGTTTCAAGCAGGCGCACGCCTTGAATACATTAGCATGGAATAATAAGATAGGACCTCGGTTCTATTTTGTTGGTTTCTAGAGCTGAGGTAATGATTAATAGGGATAGTTGGGGGCATTCGTATTTAACTGTCAGAGGTGAAATTCTTGGATTTGTTAAGACGGACGTACTGCGAAAGACATTTGTCCAACGGAAGTGTTTTCTATTGTATCAAGAACGAAAGTTAAGGGGTAGTCGAAGATGATTAG +>XM_033019624.1 PREDICTED: Amblyraja radiata GREB1 like retinoic acid receptor coactivator (greb1l), transcript variant X1, mRNA +GCGGAATCTAACGCCACATGCGTGAAGGGAAAATACTGCAGGCGGGAGCTGCGACACCGTGCCTTTGATCGTGCTGGTTGCTAATGGGGTCGCTCGCTACATTTGTATTGAGCGCGGTCGATGTCATTTTCTTTCCTCCAATTTCTTTGTGCTTGGACCTTGAGTGGAAGCTAGGTTACTGCAGGACAAGCGTTGAATGTGGAGAGATTTGTGTTTCTTCCATGGCCGGAATAAACTGATTTATACCGACGCCAAATTTAATGTCCTTAATTTGAGTGTGGACCAGTTTATTTTTCATCTTTGGTTATTGCACGTCTGCGAGACAATTGAGCCATTGTTTCTATCATTGAGAGGATTGCTGACCACACAAACTCCGGCATCATTTTACCTCTTGTCAGATAAAAATGAATGCATTTCCAGAAGGGTAACTGACAGAAAGGAGACCATGGGAAATTCATATGCTGGGCAATTGAAATCTGCGCGTTTTGAAGAGGCTCTTCACAATTCAATCGAAGCATCACTTCGTTCCAACAGTATTTCTCCTCAACCAATTTTCTCTCAGCTTTACCTTGAATCCGATAAACCACCTCTGTCCCCTCAAGATGTCAAACCAAAGATAGAGGAACTTAATAAAGAAATTGAAGTGCATCGTTATACGCAGAGTAGCTCTTCTGGATTCCCAGCTATACAAGTTGGCAATGGACTGGATAATGAGGAGGAGGAGGAAGAAGAGGAAATGTCTGAGTCAAACAGCCCACCTATTGCCTACATGCAGAAACATGTTCCAGAGGGATCCTGCACTACTGATGGTTATTGCCAGGCTGGCAAGGACTTGCGCTTGGTATCACTCTCTGCAGAACAAATTGACATTCCACCAGGCTTTGTGTTGGTGGGAGCCAAATCTCCAAATCTTCCTGAGCACATTCTGATCTGTGCAGTTGATAAGCGGTTCCTGCCAGATGACAATGGAAAGAATGCACTTTTAGGTTTCTCGGGAAACTGCATAGGCTGCGGGGAGAAAGGATTTCGGTACTTCACTGAGTTTTCCAATCACATCAACTTAAAGCTGACAACCCAGCCGAAGAAGCAGAAGCACTTAAAATATTACCTCGTCAAAAACTCGCAAGGTGTTTTCTCAAAGGGACCTTTAATTTGCTGGAAAGAATGCCGGACTCGTCAATTGCCCAGCAGTTACTCGTCTGCAGTAACTTCAACCAAGACAGTTACCACAGTCGTTGGATCCACCACATCTTCTCCGAATATTGACACCGTCTCATCTAGTGTTTGCAGTACCACCATTGCCAGCTGTCAGACAGAATCAACATTCAGCCATGGTTCAGCAGCATCTTCTGCCGGCTATTCTGGATGTCAGGACCTGTCCAGGAGTGGAAATGTAGCAAAACCTGTTACAATAGCTGCACAACAACTTGTGAAGCCTCCAACTTCAGCTCCCTGTGCAAATAACCAGCCACCTGGGTCTATGCGAGTTAATGGTAATCCCAATAGTAACGGCAATAGTGGAAAATCCAATGTTTTCAATGCTGCTCGACCTCAACCTCTCTCAACATCATCAAGTCCTGGCTTGGCATCAGGAGAAAATAGCATCATGACAAGCTCTGGACCACCTAAGAAGCGTCATCGTGGCTGGTCACCTGGTTCCCCCATTGCTGCGCCTACAGTAGTCCCTGTTCCAGCTGTGAGACCAGTGATGCGACCTGATGTTATGGCACCCATGCCTGTTCTTCAGACAATGTCACCTGGAGTCTTGCAGCCTCAGGCAATACCTGCAGGGGAGACTGTTATCATCCCAGACAATTTATTAAACAATTCTGGAGTGAGACCTGTTATTCTGATGGGTTATGGTTCTTTGCCATATTTTTATGGCAACGTTGGTGATATTGTAGTGAGTCCCCTACTTGTGAATTGTTACAAATTTCCACAGCCGACATCAGCTGAGCTGGAACAACTGGGAATTTCCAACAGCCAGATACTGTCAGTGGAAAACATGATCCTCTTAACAATACAATATCTGATTCATCTTGGTCCAGACCAAATGCCGCTCAGGGAAGAATTTGAACAGATTATGCTGAAAGCTATACAGGACTCGAGCCTCAAAGACCGATACCTGCAGCTGGGAGCCCCTTGTTCCACTGTGTCTCCAGGGCAGTTACCCTGGCTGGCCCGCCTTGCCGCCAGTGTGTCGAGAGATCTGGTGCAAGTTGTTTTTTCTCAGAATTCTCTAGCAGAGGGCATCTCGGAGACGTTAAGAACATTTGGTGATGTGCATCTTCAACAGAAAGTACCAAACTATGTGGTCGTCATTTGTACGTCAAAGATCAGAGGCAATGAATTTTGTGTGGTGGTTTTAGGTCACTATCAATCCAGAGTTTTAGCCGAGAGTATGCTCACCACCACTGAGTTTCTGAAGGAAATCAGCTACGAACTAATTACAGGAAAAGTCAGTATTTTGGCATCCCATTTCAAAACCTCCCCCTTTGGAGATAACGTAGACAAATTCCTGGATAAATTTCAGCAAAACAGAAACAACAGTGTTGCCATTCCATTCAATGGAAATGTTTCGGAATACATTCCGTCAAATGAAGCGGCAGCAATGACATCAAAGCAAGGAATTGATTCACTTACGGAAGTGTTCCAGATTCATCTACCTCAGCTCACTGTCGCTCGGAATCTGTTGTCTCAGGTTTGCGCCATAGCCGACTCTGGAATGCAAAACCTAGATTTGGGCCGTTTTGCAAACGTTGACTTCATCATTTTAGTTCCTGCATCGGAGGTTCTTTTCCACCAGACTCTGCAACGTATTAGACATTCAGGAGTACTTGTAGATTTGGGGCTTGAGGAAAATAATACAGCCGACCAAAAGGCTGAGAAATATATTATCCGACTAGACCATGACATTCAGAACAAATTTGAGGCTTTCATGAAGAAGGTCAAACAGAATCCATACACACTCTTTGTTCTTATTCATGACAATTCTCATGTTGATCTCACAAGTCTTGTTCCAGGCTCTACAACTCACGGGGAAGCCAGCCAAGGTCTGTCAGATAAGTTTATTAATTCACGTGAGGCACTTGAAGCGTGCAACTTACTTATGTTGCAGGTCAGCTCCTTTCCTTTCACTCTACAGACACAGCAATCCCGTGTTAGCTCAGACAATGAAGTACATTGGCTATTATCCAGCAATCCTGAGGAACTCAGCAACGAAGAGTTGGTATATTTTGGTTTGTCCGATTACAGCAAGTCTTTGCAATGGGGCATAACAAGCCCAATACTGAGATGTGATGAGGCTTTCGAAAGAATGGTGAATACATTGATGGAAAGGTATCCTAGGTTGCACAGTATGGTGATCAGATGCTACCTGCTGATTCAGCAGTATGCTGAAGCCATGATGGCTGTCACATCGATGAACCTGTTGAGGGAGCACACCACCCCCGAGACCCTGAGCATCGTGGATGACTTGATCAGCTGCCCCGGGAAAGACGAGATTGGCCGCGGACACATGCTCCTGATACGGGTCCCATCAGTACAGCTGGCGATGCTTGCCAAGGAGCGGCTCCAGGATGTCCGAGACAAGCTCGGCCTGCAGTATCGGTTTGAAGTCCTTCTGGGCAATCCAGCCGGGGAGCTCAGCGTTGCCAAGCACTTTGTCGCACGGATGAAGGGATGGAGAGGGTGTGAGCAGGATGACTGGACACCACTCACCTATCAGGATCTGGAGGGTCTACCATGTATTGTCATTTTAACTGGTAAAGATCCACTTGGGGAATCATTTCCACGGTCCATGAAGTACTGTGATCTTAGGCTAATTGACTCCAGCTACCTTACACGAACAACCCTTGAGCAAGAGATTGGCCTTGCTTGTGGCTATGTTTCTAAAAGTGCTGTCAGAGAAACCATGGCAATTTTCGAAGGAACGGAGAAGGAGCATGAGAAGTTTCTTACCAGTGAGAATGAATCTGATGAATTACAGATCGATCTAGAGAGACCACAAAGTAACAGCAGTGCAGTCACTGGAACTTCAGGGTCCTTGGCAGAGAATGGTGTGAGCTCATCCAGTGTGCTTGACTCATCACAGAGGCCTGCTTCATCTCTTAGCTTCCAGAATATTGTGAACAGTTCAATTGATGAAGGCACGTCAACACACACTTCACACATCTCGACCACTGTGGGCAGTGAGGGCTGCAAGCAGGAAAATGACTTGGAAGGAAAGGAAACAGCAAGCAGCACAGTTTCAAAATCTTCCTCATCCTCTGGGAATTCTCGGCAATCCATACTGGTCAACAAGGACCTGAGGACTCCACGTCTCATCTTTCCAAGAACTGTAATTTTATCAAAACCAGTGTATCATCTCCTTGGTTCAGCAAGAAATGAGCACCTGTGTTCTGCCTCTTTGTTGCCCCATGCTGATGTGACTTGGACAAGCCCACTGAGATCACTTTTCCACAAGGAATTGAGCAGTGAAGAGCAGTCACTCTACTACAGACAGTGGACATTTCCCAGGCAACATCATGCGGACTATAGCAATAAAAGCGAGGGAAGTTCTGGAAATTTCCACCGACGCCGATTGTTATTGACTGGACCTCCACAGGTTGGAAAGACTGGTGCTTACTTGCAGTTCCTTAGAATTCTTTTTCGCATGCTAATAAGGCTCTTAGAGGTTGATGTATACAATGAAGAAGAAATTAACGAAGACACGAAAGATTCAAATGAGTATGCACAGGGTATTAATGCACAGTGGCCTGATATTGAACTCTTCAGTAAAATGACCTTTGATTACACGGTACATGATCCAAAGTATCGCCATATCAGTGCTGTCTACTCAGCCAAGCTGCCAAAGATTAAGCTAGAAGGTGGTAAAAAACGCAGCCTGATCGAAGGATCAACAAAACGAGAGACAGTCTCGATAATGCTAACTAAATATGCTGCATACAACACATTCCATCATTGTGAGCACTGCCACAACTACATTGACTTCAACCCAGCCACACAGGTGTCTGATTCCACACTACATGCATTTACATTTTCTTCCTCCATGCTGGGAGAGGAAGTTCAGCTTCACTTTATTATTCCAAAGTCAAAGGAGCAGTATTTTATCTTCAGCCAGCAGGGTAAACATCTGGAGAGCATGCGTCTACCTCTTGTCACAGATAAGAATCCAAAATTAGTGAAGAGTCCCATCTTTACACCAACTACAGGACGGCATGAGCATGGTCTTCTGAATCTCTACCATGCCATAGAGGGTGCAAATCACCTTCATATCCTTGTGGTTAAAGAGTTTGAAATGCCACTCTATCGAAAGTACTGGCCCAACTACATTATGTTGGTATTACCAAGCATGTTCAATGGAGCAGGGGTCGGTGCTGCCCACTTTCTAATCAAAGAACTTTCATATCACAACTTGGAGTTGGAAAGAAATCGCCAGGAAGAGATAGGGGTGAAGCGGCAGTGTGTGTGGCCATTTATACTTGTCATGGACGATTCTTGTGTCCTGTGGAATGTCCACAATGTGCAGGAATTGAGCAGTGAAACAAAAGATTCTGCAGTTTCCACAAAGAATGTTTCCTTGAAGTTCGTAATGCAGCACATTGAAGCCACACCAAAGATCACTCATTATGCACTCTGTGGGATTCGAAAGTGGAACAGCAAACTGAACACTAGCAAACTGAGGACAGCATTCTCTCATTGTCACATGCATGACTTTATATTCCTCAATGTCGACCTGACACAAAATGTACAGTATGATCTGAGCAGATATATCTGTGAAGACATTGATTTCAACTTACGGACAAATAGCAGTGGTTTGCTCCTTTGTCGATTCAATCACTTCAGTTTCATGAAGAAATGCATTCAGGTTGGAGGGCACAAAGATTTTGTTATAAAGCCTAAGATTATGGTGATTGAAAGCCTGAATATTATTTCAGCCTCGCAGTACGTCTGTGCTCCAGACAGTGAAAGCACAATGCTGGCTGCACCTGCCCAGTTTCTCCTGGAGAAGTTTCTGCAACACACTAGTTACAAACTCTTTCCTAAAGCTATACACAACAGTAAGAATCCGGTGTTGTCCATTGACTGTTACATGAACCTGGGTCCTGAGATTTCTGTATGCTACGTAAGCTCACGGCCTCACTCAGTTAACATAAAATCCGAGGAGGTATTGTTCAGTGGACTCCTTCTCTACCTCTGCGACTCGTTTGTTGTTGCTGACTTTCTCAAGAAATTCACGTTTCTTAAAGCTGCCACACTCTGTGTGATTTGCCAAGATCGAAGTTCATTACGTCAAACTATCGTACGTCTAGAATTGGAAGACGAATGGCAGTTTCGGCTACGTGACGAGTTTCAGACGGCCAACAGCAGTGACGATAAACCACTTTATTTTTTGACCGGACGACATATTTAAGTTCAGTTCACAAGACAAGAAATAGCAGGTGAGGGTTAACGGGTGCCATAAGTGAGAGCCTGACGGAGCACAATTTATAATTCCAAGCGAAAGGTGAAGTGGCACATGCGCAGAAACAAATATCGGATTTTTTGTTTGGTTACCTGACCACCGTCACTTCATCGAACATCTACATCAGAACAGAGACAGCGTGATCAGTGCATAAGAAGGGTCTATGACCTGCACTCTGTTACTTCTGTAACTCCGGGAGAGAGTTTAGTGTGCGACTTGCAGGGAAACTGGCATTGCACATGGTATGATATATCAACCCTTTCAATGTGGGGAAAAAAAGGCAGTGCGAGCTGCAGAATGTATTTTTTTTTCAGAACCGGTCAAACCTATGATTATTCCAGAATATGTCCAAAATAGACCTGGATCCAAAAAAAAAGGAACTACTGTCAACAAAAAGACTTCACTGAAGGAATGGAACCAAAGCAGTGGAGCATAAAACAATTGATTGTATGTTGAGGTTCTTCAATGTCACCATTCTGACTGTATGTAATTGCAGTTCAGCTCAGGGTTTTGCAAATAGGTGGCAATGGAGAAAGAGTTGTCTGTATTCGTACTAACTATTACCTTATTTTTTGGTGGGTTTTGTAGTGTATGGTTTCATGCTTATTTGGAGTAGTTCTTAACCTGGCATTTTTTTTAAAGCATGTTCTCATATTTTATGGACATTTAAATCTAAACATGATACATGGGGAAATGCAAAATACATGATGCTTTCAGTGGGACTATTGTTGAAATTTTTAATGGCACGCAACTTATCCAGAATCTTTTTCCTACCGTTGACAATACAGGCTTTTGTTAATTTTTAATTTCACATAATCTAATTGTTTGACTTCTCTCTTGCATTGTCTATAAAACCATTTATCACACGCAGTTACATGCTTGTACTTACACTTCTTATTTTCATACAAATGATTACCATAGTGCATTGAATCAGATTTTGAAAAGTAAAATGCGCAGCCTTGATTCTCAAAGACATCAATATCTTTTCAATGTTAACATGGTAAAGATTAATAATGGACGATGGAGACCATATGATTTTTGGTTTCCTTTTTTGTATGATATATGAAAAGAGTAAATGTGCACAAATATCACACATCCAATGGTTCCCTGCTTTGTGCCTGTAATGTTATTTTTTTATTTACTTGTTTTAAGGAGATAATCTGAGGGGGATAAACAAATGTCACATTTGTTTCAGTTATTATTCTTTATTACTGTGCCATTTCATAACATTTTTGGCCAGTTTTGTATACATCTACAGCTATCCGCTTGCAAGGGATGGATTGATATACTCTCATGGGCAACTAAATAAAAATGTAGAAAGATAGCAATTGTATAATGATGTGAAATTTCAGCTGCTCTTTTGCTACCACTCTTCCCCGGTCAACAGCAATATTAAAATCACAACGTAAATTGGTCTAGCGATCTTTCCAAAACAAAAGTGATGATTTGGCCTGCAAGTACAAGTTAGAAATTCCATATTGACAAATAGGGAAGGAACAAAATAAATCATCCAGTTTTGATGACAGTTTTCAGTTGTAATTTAAGTGTAAACGTAATGTTAAGCAGGCAGCAGCAATGTGGGGGTGCTCTGGTATCAAATGTAATCATGGGAATTGCAAATGAATGAGCAAGTGTTTGTTTGCCTTCTCACTAATAATCACTTATCAACGATAACTATTACTGTAAATATTGCTAATTAAAAATGAACAAGATTTA +>XM_053163347.1 Puccinia triticina uncharacterized protein (PtA15_15A169), partial mRNA +ATGCCTTTTACACCGAAAATCGAAAAGGACGCTGGAAGACTTCAAGAGTGGAACTTCCACCATCGACGATCAGGTTCGATGGATTCTTCAAAAATCGCGCAAAAAACTTTCGAGCTTGAAAACCATATTCAGCCTTTGGAACAGGATAAGATATTCAAATACAACGCGGAGGAACAAAAGACGATCCAGAAAGAAGCGAAATGGAGGAAAGATCCTCACTACTTTAAGAAAGTGAAAGTCTCTGGTGTCGCTTTGATCAAGATGGTTATGCATGCTCGATCAGGAGGGCAATACGAAATCATGGGGCTCATGCAGGGCAAGATCGATGGAGACACTTTCGTCGTAATGGACTCATTTGCTTTGCCTGTTCAAGGGACAGAGACTCGAGTCAATGCGGCTAGTGAAGCCAACGAGTACATGGTCGATTTCCTCGAAAGTTCAAAAAATGTTGGCCGACTGGAGAATGTCGTGGGATGGTATCACTCTCACCCGGGTTATGGTTGTTGGCTATCGGGAATCGATGTCAGCACTCAGCTGACAAACCAAACTTACACAGACCCATTTGTCGCGATCGTCATCGACCCCAATCGCACAATTTCAGCCGGGAGAGTCGACATTGGCGCCTTCCGCACCTTCCCTGAAGGATATACCCCTCCATCACTGGGAAAGAGCAAGGACGACGAATACCAATCGATTCCATTGTCGAAGATTGAAGACTTCGGCGCCCATGCCAACTCTTATTACGCCTTGGAAATCGAACACTTCAAATCTAGTTCAGACTCGAAAATATTGGACCTCTTGTGGGAGAAGTATTGGGTCATGACTCTGAGTCAAAACACATGGCTTTCAAATCGAGTATACACGACAAGCCAAATTCAAGAAATGACCGACAAACTCACCAAATCAAGTAGCTCGCTAACAAACAGCAAGCGAAACACGCTAAAAACGTTGATACCCACTCACTTGCGAACTGCGATCGAGAATGAGAACGGTCATATCGGCAGTAACAACCATCCGGAAAACTCGACTCAAAATAACAATAACAATCAGCTGTTCCATGACGTCTTGAAAGATGTCGAGAAGTTAGAATGCGAGAACCTATGCGGCATGTTTGGTCAGATTATCAAAAATGTCTTGTTTAATAACAATTCTCATAACTGCCAACTTGAGTTCCCCATGTAA +>HQ319463.1 Uncultured bacterium clone RMAM0533 16S ribosomal RNA gene, partial sequence +GAGTTTGATCCTGGCTCAGGATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGGAGGTTTAAAGCGGAAGTTTTCGGATGGAAGCAATAAACCTTAGCGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCTCATACAGGGGGATAACAGTTAGAAATGACTGCTAAAACCGCATAAGCGCACATTGTCGAGTGACAGAGTGTGAAAAACTCCGGTGGTATGAGATGGACCCGCGTCTGATTAGCTAGTTGGTGAGGTAACGGCCCACCAAGGCGACGATCAGTAGCCGGCCTGAGAGGGCGACCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGAAGAAAGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATC +>XM_029801181.1 PREDICTED: Octopus sinensis homeobox protein rough-like (LOC115231097), partial mRNA +TTCAAAGACGGAAAAGGAAAGAGAACCGTCCCCGACGTCAGCGTACGACATTCACCAGTGAGCAGACACTGAAGTTAGAACTGGAGTATAACCGAACTGAATATATCACACGACCTCGGCGATTCGAATTGGCTGAGATGTTGAACTTGACAGAAACCCAGATCAAGATCTGGTTCCAGAACCGAAGAGCGAAAGACAAACGGATCGAAAAGGCACAAATGGATCAGCAGATGAGCCTATCTAATTTCCAAAGAAGACAAGTTGTTGGAGTTCGGCCCGATCTCTACAGCGCTGCTATTAATTTTGTTCTCTGTCCAGAATTGTGTTGTGGACAAGGGTTAGAATGCTTAGAATACTGGAACTGCCGCATTGCTGTGCCCGCACCTGCAATTCTAGCATTCCGTTCAGCCTTCTGCTTCCCATCACAAGAGAACGG +>XM_043204581.1 Ogataea angusta uncharacterized protein (KL928_003939), partial mRNA +ATGGTCCAAATCCCCAGATCGTACGCGGAACTGAAGCAGAAGGTTCCAAACATTGGAATCATTTTTGCCGCAATAGCTTCGTGGTTTTCGTTTAGTTTACTTATCTCGCTTTACAACAAATGGATGTTTTCAGATCCTACTTTGAACTTCAAGTTCCCCGTGATAATTACAGCCTGTCACCAATTCGTGTTATTTTGGCTCAGCTGTTTGACGCTCACCTTTTGGCCCAAGTTCAGACTGAACTATGTCGATCCTTCCAAAGGCATTGCGTCCTCCGAAAATCTCAGCTACTTTATCAACCCTAAAGTGTACATTACCAAGATCTTGCCGTGTGCGCTGGCTTCCGCCGGTGATATTGGCTTGGGCAACTCTTCTTTGAAGTATATCACCATCTCGCTATACACCATGCTCAAGTCCTCTGCAGTGCTCATCTTCACGCTCTTCTGGGGTTTCCTTCTCAGACTGGAGAAAGTTACGTTGAAGCTTTGTCTGATTACGTTCATCATGACTGGTTCGGTCATGATGATGGTGTACGGACAGGGAGAGACCTCGGCTGAGACCAGTCCTTCCGCTGTTGAGGAGGAGGCTGGAGAAATGAAGCTCAGATTCGTCAAGCACCTCGTGAAAAGAGCAGCTTCTCTGTACCTCGGTGTCAGAGACGAGGAGCAGGAATCCGACGACTTGGTTTCCTCGTCCTCCTTCACAGGTTCTACGGCCAAAGCTTCTGCTGCCCTGGACACACTCACCGCATCCTCCATCATCATTGGCTGCATCCTGGTTCTGCTTGCATCTTGCATGTCTGGGCTTAGATGGGCTTTGACTCAAATTGTCTTGCGTGGCAACAGATACACCAAAAACCCAATTTTGACCATCTTCTATCTGAGTCCCGCCATGTGCGTCTCGCTGATTGTCATGGGCTCGCAGGTCGAAGGCTTAGGCAACTTTCTAGGATCGCAGGTCTGGGAGACGTATGGTATTTTGGGAACCTGTTTGCTGCTTTTGTTCCCAGGTTTCCTGGCCTTTTGCATGACCCTGTCTCAATTCATCATTCTGCAGTACGCTCCGTTGCTCACGCTCTCTATTGCCGGTATTGTCAGAGAGCTCATTACTATATTCCTCGGATGGCTGATCTTCGGCGACCACCTGAACGCGATCAATATGCTGGGTATATTGATCACCTTGGGAGACATTGCATGGTACAATCTCTACAGACTGGAGCAATCTTCGGCCAAGCCGGCTTCTGCTGCGTCTTCTGAGGACACAGAGAGGTTTGTCACCGAGGAGCACGAGCTTGAGTCTATCGACAGACGCAAGTGA +>XM_004287821.2 PREDICTED: Fragaria vesca subsp. vesca putative F-box protein PP2-B12 (LOC101291663), transcript variant X1, mRNA +AAATATTTTGTGAATTTCTGAGATTCATCAGAAAAGTTAGGATGCTTTCTCACCAAGAAAGTGAAAAGAAGTATATATACACAGCTTCATGATTGATTCCTCTACAGAAGGCTGAAGCAGTGTTGTTCTTTCACAAGGACCTCTAGAATTGTGTATATTCTTGTCTGATACTTTAGGTTTTTCTCATCATTCAAGTTGTCTTGTAGAGGTGTATAACTATATATACAGTAAGATGAATGCAAGAGAAATGTTTGTCAAAATAGCAGAAGCATTTGTGGAGTTGTACAATTATGTTAGAGGGCCTATGGTGCCGCAAGCAATTCAGTTAAGGGATGCAGTAGTGAAGATTCATGAAAGCTTGGCTGGTCAAATTGCAGACTCAGAATTGATAAGTAGTGTTATCGAATGGTTTAATACGTTTCATAACATTTATGTCGCACTAGGATTGGTTGGTTTGGTGATCTCCTTTGTTCTAGGATTGCTTTGGAAAGTTTTAGCTGTGGTAGTTTCTGCTTTAGGTGTATGGATTTCCTATTTGATTTGGAGAGACCATAATTGGCACAAGCTGTTCCTGACAGACGAAAAAGGATTAGCATTTTTTGCAAGTACTTGGCTTGGGTTATTGCTACTCTACCGAGCACAAGGTCTGCTTGGCAAAGTTTGTCTTTTGGGAATAGAAACCCTAGTAATATGGGTGATGCAGTATTCCATGTCGACGACGACGAATATGGAAATCCCTTGGGATGATTCTAATATCCATGAAATTATCTCCCGAGCTGTTCCACCGGTGCCCCATTATTCTTCTCCGCATGACCTCTACCGCAGTCTCTGCGCTTCCCCCATCTTCCTTGACGATGGCTACTTGAGTTTGGCGTATGATCGGGCGACTGGTAAGAAATGCTGGATGATGGGAGCCAGGCTTTTACTTATTGATTTGGCAGAAATTCCAGACTACTGGAACTGGATATCTCTGCCTGAATCCAGGTTTTCCCAAGTGGCTGAGCTCAGATTTGTACGTCGTCTTAAGATCAAGGGATCCATTTCTACCTATATGTTGTCACCAAGAACAACCTATGTAGCTTACTTTGTATACAAGTTTTCAAATACATCTCGATCTGGTTTTCATGAAAGGCCTGTTAGCTTGCGTGTAGTTCGTGTTGTTAATACTCAACGCCAAGTTGTGGCGCATCATAATCGTGTGTTCCTGATAGGAGAGATGGCTTCACAAGCTCGAACGAGAAGTGATGGATGGATGGAGATTGAGTTCGGTGAAATCTCCTACATTGATGATAGTGCTACTATAGAGTGTATACTAGAGGGATCTGAAAGTTTTGAGGGAAAAAGAAGTCTCATTGTGGAAGGTATTGAGCTCAGGCCTAGATAGAGGAAATTTATCTCTCTGTATATATATAATGGATCTTTGATCTTTAGCAAATCTTCTTGATGGCATGGTTGATGGAGATCCAAGCTCACAGTTTACTATATATATTGGTTATGGACGTGGTTTATGGACGTGATCTTGCTAGCTTCCAGCCTTCCAGGCTGGTTTACCT +>XR_008327014.1 PREDICTED: Panonychus citri uncharacterized LOC128397849 (LOC128397849), ncRNA +AATTACTGGATCATCTTTGATTTGTCATCTAATAGTCAATGGAATTGTAACTTTGTTAATTGTTAGTTCTTAGAATAGATTCAATTAAAATCGATGACATCAATCAGCAACAATTTATCAATCGTTGTAACAATTAACCTTAATGCGAAAAGTGAAAAACAAATCTAATCAAAGTAAATTGTTTACAATTAGAAAAAGAAATCAAATTAATTGTAAACATACCTACGTGATGAGATGCAAATCTAATTGTTAACAATTAGTCTGGGAAAATTACTTATCATTAGAAATTAAATTTGTCTGATCAACAATTAGTCAAATATGATAACAAGGATCACAATTAAACTTAATTGTTACGGAAAAACCTTCAACAGATTCTAATTATAATGTAACTATATTTACTCATTATAAAGAAAGTTAATTATAATGTCGATACATTTGCAATTAAATTTGACAAATCAATCAATTAATTACACATTTATGATGATTATGATTAATAATTAATGAGAAAATGATTAACTTTTGATTAGATTAACAAGAAGGAAATTATTTTAATTGTGTTTACCAGAAACGGTATCAATAGTAATTAGAATTACTTTGTTTACCATTTAGCTTTAACATAGAGAGAAATTGATTAGTAGTTTATCAACAATTAATTTAATCGTAATAATCAATTGATTAGTAGAAGAGAAATCAACGAAAATAGACAGAGAAATAGACAGAGAACAAGAAAAAGAGAGACGATCAAGTGAGTGAGAGAAAAATATAAAAATCATTTTCTCTTCAACGAATCAAGTGAATGTCACATTTTCCTTGGAGACTTTGAGTTTGCTAATTGATTTGATTTTTTGATTAATTGTCTTCATCTTTAAGAATTAATTACTCTTTGATTGTTGTTCTTTGAAGGTGTTGAGTTAATTTGGATTCGTTTTAATTGTGATAATCAATGACAACCATTAAAGATCAACATCAAATGCCTAATCCCAAATGGATCATCTTTTGTTGCTAATCTGTAAAGTGGTCAACACATTTTGTGACTATAAGTGTCTTAATTGTTCAAGTGATTTATTGTTAATAAGAACGTTTAAATTGACTAAAAGATGCCAGTTTACGCTGCTATCAGTCGATCAAGGAAACGAAGTCAGGAACGGAAACTGTCCCTTAGTTCCTGTTCCTCTGAGTCTTCATCTATTTCCTCAAGTGAAATTGATATAAAGGTGGATCAGAATGTGATCTTTGTGGATTATCACTTAAATCGGTCAAACAACATTACATTTGTGGACATAATTTTCACATCGATTGTATTTGGAGATACAAAAGATTAGCCCCCAGTAACCATGAGTATTGTCCAGTTTGTGGTATTCATCATCCACCAAAAACAATTAGAAATTACTAATTATCATCCTCATCACCATCATCATCGTTGGGTCATCAATATTTATCCACATCTCATACTTGCGACAATTTAAATCTAATTGTTTGCCTCTTGCTCTCTGTCTCTCATTATCCATCAAAAATCATTGTAATTATTTAATCGATCATAACAAAGTCACAGATCATGATTAATACCAATCAATACGAATATAAAATACAACTAAATCAATCAAAACAGCTCAAAACAATTAAATTGTAATCGAAACAAAAAACACGCTGATTAAACAAGTGTATCTTTGTATTATAATCATCACAATCAAAAATCAAA +>NM_001096323.1 Xenopus laevis zinc finger DHHC-type containing 1 L homeolog (zdhhc1.L), mRNABC106577.1 Xenopus laevis hypothetical protein MGC131347, mRNA (cDNA clone MGC:131347 IMAGE:7766144), complete cds +CAGCAGATTCCGTAAGGATCATCCCTTCCCTTCCTCTCTGATTTCTACTCTGCTTCTTAGTTCAGACTGCGCCCGTTGTATATTCATAGCCTCATTCCATCAACCGCAAAGAGACATGGGCATTTGGAAAAAGCTACTTTGTATACAGGGTTGGAAGCAAACAACATGAGCTGACTTTCCTGTCAAGGTTCAAGACAAAGTCTTCCTATGCTGAACACATTTAGAAGCCATCTTAAAATACATGAATTATTAGTTCTGGTACTGTCAGATGGGCATTCAAAAAGATGTCAGTCTGCAAGAAGCAGTCTGCTATGAATGTGCCCGATAAAGAGAGAGGGGAAGTCATTTCAGATCCACCTCAACATTCAAGAAAAAATGGCTGGAGTTGGCCCCTGCACCTGCTGCAGCTTGTTGCCTGGTCCACTTTTCTCTTCTTTGCTGTTATAGGACTTGGGATCTTGGTCCCTCTTTTACCACAGCATTGGTTGGCAGCTGGTTACATTTGTACTGGAGTCATGTTTACTTTCCACTGTGTTGTCCACTTTCTGGCTGTTACCATTGATCCTGCTGATGACAATGTGCAGGCCAAAGGTTCTCTTGGGCCTCTACCAGCATTTGATCGCAACAAGCACACTCATGTAATTGAAAACATGCATTGTTATATCTGTGAGGTGGATGTGTAAGTAAAAGATGACCCTTCATGTTGTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA +>XM_051729581.1 Alternaria postmessia uncharacterized protein (J4E82_003292), partial mRNA +ATGGATGAGGAAAATGTTGCCAACTTCTGCGGCATCACGTCCTGCAGCCCAGAGCAGGCTGCTCAGTACTTGCGCCTAACAGATGGCAACTTGGAGCAGGCCATACAACTCTTCTTCGACTCTCCTGGACTTGCCGATGCTCCTGCTGCGCCATCACAGCCCTCAGCAGCCGCCTCCGCACAGAATCCCATCAATATCGACTCCGATGATGACATGGACTTTGATCCCGCACCACAAGGCAACGCGCCGTCCACACGGGCACAACCAGGCGTGGAAGACGATGAAGCCATGGCACGGAGGTTACAAGAAGAGATGTATGGCGGCGGCGGCGGCGCCGCCGGTGGCGCTGGCAATGATGAGATTCGCGCGCCCATAGAACGAAGAGTGGAAACACTTGTTGGCCCAGGCTCAAACTGGGGGCCTGCCGATGACGAAGAAGATCTTGATGCTATGGTCCAGGAGCAGCTTGCTCGTCGGCGGACAGGCCGCGCCGGTATCTTCAACCAGCACACAACCCATACCAATGTCTGGGATAACACGACCGATTCGAGCACCCGGCGACGCGAGCTTGCGACCGCGACTGGCGGTGCTTCAGAGCAGTCTTCTAAGATGAACATGCTCGCAGAGCTATTCCGACCACCGTTTGAGATCATGTACCAAGGATCGTGGGAAAAGGCGCGAGATATGGGCAAGGACGAAGAAAAGTGGCTGCTTGTCAACATCCAAGACCCGGCAATCTTCGACTGCCAGCGCCTTAACAGGGATATCTGGAAGAATGACGATATCAAGGCAACTGTGCGAGAGAACTTCATCTTCATGCAGTATGCAAAGGATGATCAGCGTGGACAGCAGTACATGAACTACTACTTCCACGCCCGTGACAGTTCTGACGCCTACCCCCACATCGCCATCGTTGACCCACGAACAGGCGAGCAAGTCAAGGTCTGGTCGGGACCACCGATACCCGAACCAGTTGAGTTCCATGCTCAGCTTCATGAGTTCCTCGACCGTTACAGCCTCAATGTCAATGCGAAGAACCCTGTAGCGAAGCGGAAGTCTGAGTCTAAGAAGAAGGATGTCGGTCGCATGACAGAAGAGGAGATGCTGGAGATGGCGCTACAAAACAGCATGGATAACGGCAAGGGGCCGAAGGACGATGACCCAGATGCTCTCACCAAGTCTACAGACAACATCAAGGGCAAGGGCAAGGCCGAAGAAGTCGCTTCTGAGCCGCCAGCTGAGCCCGAGGCAGCTCCTTCGAATCCTGTCTTCGCTGCCATCTCCGCACATGCTCCTCATACCGAGCCTACCGTTACTGATCCCAAGGTCACGACTCGCATCCAGTTCCGTGGCCCGTCAGGCCGTCCGATTGTGCGCCGCTTCAACCTTACAGACCCTGTTCGCCGTGTCTACGAATGGATCAAGTCCGACGTGCCCTGGGAAGGCAAGCAAGGAGCTGAGTTCGATCTGGCGTTCATGGGCAAGAACCTCCTCGACCACGTCGACGACACGGTCGAAGCCGCCGGACTCAAGGGTGCCAGTGTTATGGTAGAGTTCTTGGATAATGAGTAG +>XM_006724281.5 PREDICTED: Homo sapiens eukaryotic translation initiation factor 4E nuclear import factor 1 (EIF4ENIF1), transcript variant X2, mRNA +AGGGGCGCGAGGCCCGCAAGGCGGCCGGCGGGTAGCCGGCGGGCTGGCTGGCGGGGACCGAGCCGCCGGGCCGGGGAGGACGGCTGCGGGCCTGCGCTAGCTCCAGCTTGAAGCGCCCGGGCCGGGAGATTCGGCCTCCCTCCTCCCTGCGGCCGGCCGCCCCTCAGTGAGTACGGTCTCCGCCCTTCCTCCGAAGGAGGCCGCTGGGCCCGGGCCTGCGTGAGGGGCTGCGGGTTGGGGTCGCGGCCCGGGGAAGCCAAGTTTCGGAGCTGAAGCCGGTGCTCGCCCTTTCCTTGCCATCGGCGCCCCTGACATGGCCACAGGTGCGGCTGGCCTGGCGAGGGGCGCTCGGGCCCCGTCCCCAGTCCCTGATCGCCGGATAACAAGGGGCAGCTGGCGCCGTCCATTGGTGCAGAGCATTGTAGACCAAGGAGCCATGGATAGGAGAAGTATGGGTGAAACAGAAAGTGGAGATGCTTTCCTTGACCTGAAGAAGCCTCCTGCCTCCAAATGCCCCCATCGCTATACAAAAGAAGAACTCTTGGATATAAAAGAACTCCCCCATTCCAAACAGAGGCCTTCATGCCTTTCTGAAAAATATGACAGTGATGGTGTCTGGGACCCTGAGAAGTGGCATGCCTCTCTCTACCCAGCTTCAGGGCGGAGCTCACCAGTGGAAAGTCTGAAGAAAGAGTTGGATACAGACCGGCCTTCCCTGGTGCGCAGGATAGTAGATCCACGAGAGCGTGTGAAAGAAGATGACTTAGATGTTGTTCTCAGCCCTCAGAGACGGAGCTTTGGAGGGGGCTGCCACGTGACAGCCGCTGTTAGCTCCCGGCGCTCAGGAAGTCCATTAGAGAAAGATAGTGATGGGCTTCGTCTGCTTGGTGGACGTAGGATTGGCAGTGGGAGGATAATCTCTGCCCGGACCTTTGAGAAGGATCACCGTCTTAGCGATAAGGACCTGCGGGACTTGAGAGACAGAGACCGAGAGAGGGACTTCAAGGACAAGCGTTTCAGGAGAGAGTTTGGAGATAGTAAGCGTGTCTTTGGTGAGCGTAGAAGAAATGATTCTTACACAGAAGAAGAACCAGAGTGGTTCTCTGCTGGACCCACAAGTCAGTCTGAAACCATCGAACTGACTGGCTTTGATGATAAGATACTAGAAGAAGATCACAAAGGGAGAAAAAGAACAAGGCGACGGACAGCCTCTGTGAAGGAAGGTATAGTAGAGTGCAATGGAGGAGTGGCCGAAGAGGATGAAGTGGAGGTCATCCTTGCACAGGAGCCTGCGGCTGATCAGGAAGTGCCAAGGGATGCTGTCTTGCCTGAGCAGTCCCCAGGAGACTTTGACTTTAATGAGTTCTTTAACCTTGATAAGGTGCCATGCTTGGCTTCGATGATAGAAGATGTTTTGGGAGAAGGGTCAGTCTCTGCCAGTCGGTTCAGTAGGTGGTTCTCTAACCCGAGCAGATCAGGAAGCCGATCCAGCAGTCTTGGGTCAACACCACATGAAGAGCTAGAGAGACTTGCAGGTCTGGAGCAAGCCATCCTCTCTCCTGGACAGAACTCGGGGAATTACTTTGCTCCTATACCATTGGAAGACCATGCTGAAAATAAAGTGGATATTTTAGAAATGCTACAGAAAGCCAAAGTGGATTTGAAACCTCTTCTTTCCAGCCTTTCTGCAAATAAAGAAAAACTTAAAGAAAGCTCACATTCAGGGGTTGTGCTTTCAGTGGAGGAGGTAGAAGCAGGTCTGAAGGGCTTGAAGGTTGACCAGCAAGTGAAGAATTCAACTCCCTTCATGGCAGAACACCTAGAAGAGACCTTGAGTGCCGTAACCAACAATCGACAACTGAAGAAAGACGGAGACATGACTGCGTTCAACAAGCTAGTGAGCACAATGAAGGCAAGTGGGACTTTGCCTTCTCAGCCCAAAGTCAGCCGAAACCTTGAAAGCCATTTGATGTCCCCTGCTGAGATTCCAGGCCAGCCTGTCCCTAAGAACATCCTGCAGGAACTTCTGGGTCAACCAGTTCAGAGACCTGCTTCTTCCAATCTTCTGAGTGGCCTTATGGGGAGCTTGGAGCCTACAACATCTTTACTGGGCCAAAGAGCACCCTCTCCTCCCTTGTCACAGGTGTTTCAAACTCGAGCAGCCTCAGCTGACTACCTTCGCCCAAGAATACCATCACCAATTGGTTTCACACCAGGACCACAGCAGCTACTCGGAGATCCATTCCAAGGCATGCGCAAACCCATGAGCCCCATCACAGCCCAGCAGATGAGCCAGCTGGAGTTGCAACAGGCAGCTTTAGAAGGGCTGGCCTTGCCACATGACCTTGCTGTACAGGCAGCAAACTTCTACCAGCCTGGTTTTGGCAAACCACAGGTGGACAGAACCAGAGATGGATTCAGAAACAGGCAACAGCGAGTGACCAAGTCACCAGCACCCGTGCATCGAGGGAATTCCTCTTCCCCTGCCCCTGCTGCCTCCATCACAAGCATGCTTTCTCCTTCCTTTACCCCTACCTCAGTGATTCGTAAGATGTACGAGAGCAAAGAGAAAAGCAAGGAGGAGCCAGCATCTGGAAAAGCAGCTCTTGGTGACAGTAAAGAGGATACTCAGAAGGCCAGTGAAGAAAACCTCCTGTCATCCAGCTCTGTACCCAGTGCCGATCGAGACTCTTCTCCCACTACAAATTCCAAACTGTCAGCATTACAGAGGTCTTCGTGTTCCACCCCACTGTCCCAGGCCAACCGTTACACCAAAGAACAAGATTATCGACCTAAAGCAACTGGGAGAAAAACACCCACCTTGGCATCCCCAGTTCCTACAACACCTTTTCTCCGCCCTGTCCACCAAGTTCCCCTTGTCCCCCATGTCCCTATGGTTAGGCCTGCTCACCAGCTTCACCCAGGGTTGGTACAGAGGATGCTGGCCCAGGGAGTACATCCACAGCATCTTCCAAGTTTGCTCCAAACTGGTGTGCTTCCTCCTGGGATGGACTTGAGTCATTTACAGGGAATATCTGGCCCCATCCTGGGTCAGCCCTTTTACCCTTTACCTGCTGCTAGTCACCCTCTCTTAAACCCTCGTCCTGGAACACCTCTGCATCTGGCAATGGTGCAACAGCAGCTACAGCGCTCAGTTCTGCATCCTCCAGGCTCTGGTTCCCATGCAGCAGCTGTCAGCGTTCAGACAACCCCTCAGAACGTGCCCAGCCGGTCAGGCCTGCCCCACATGCACTCCCAGCTGGAGCATCGCCCCAGCCAGAGGAGCAGCTCCCCTGTGGGCCTTGCCAAATGGTTTGGCTCAGATGTGCTACAGCAACCCCTGCCCTCCATGCCCGCCAAAGTTATCAGTGTAGATGAATTGGAATACCGACAGTGAGCAGGGCAGGCAGACTCAACTAAGCCCGGACCTGTGGTGGCACACTGGGCAGGACCCTGCTTCATCTCGGGTTGGTTTATGGGCTTTTACTTTGGAGCACTCTGTGTGAAGCTGTTTGGTGGAACCCATGCATCTGGTGTGGTCCGCATTATGATGGAAGGATCTTAACCAGTCGAGTGGAGTGTACATTGTCTGAATACAGGATGCACAATGTTGTCAATCCTGGAAATGGTCTTTCTTTTTTGTAAGATATGTGAATGAAGTGTTGGTGTCCTCACCAAGAGGTGGCACCTAAGGGTTCTGAGGAAATAAATGTATAGACCCTTATGTACAGACCTGTGTATAAACAACTTTTGTATATACATATAGGATAGCTTTTTTGAACTATACAGCTGTACATAAAAGTAGCTGATATTAGTTAGGCCTGTGTCAACAGTTTGGATTTTTTTCACTTGTACATTTGGGATTTTCTTTTGGTTGATTAAAATTGCATATGCTAAGTGTGTGAATGAA +>XM_003017089.1 Trichophyton benhamiae CBS 112371 phosphotransferase enzyme family protein (ARB_04011), partial mRNA +ATGGTTTCCGTGAGACCGCGACTATTTCTAAGGGGTCTCAAGCACAGAATCCCGGAAGAGCATAGTACAACAGACCTTTTCAACTATACCACGGGGCGATGGCTTTGGAGAGAGAAGGAGCAGCTACTTGAACGATACCGGAGATTCAATGTACGAGAGCTACAGGCCATAACTGCACATACACTGGGCTCTCAAGCATGTGTTTCAATGTCCAAAATTGGAGAAGGCAATTTCAACAAAGTCTTCCGACTTGTAATGGATGACGGAGCAGTGGCAATAGCTCGAATCCCCCATCCAAATGCTGGTCCGCCTCGGTATACGACTATGTCGGAGGTTGCTACTATGGAATTTGCAAGATCAATGCTTAAAATACCAGTTCCTAAAGTGTTAGCATGGTCTTCATCTTCTGATAACTCTATAGGTGCAGAGTATATCATTATGGAAGAGGCTAAAGGCACCCAGCTCTCTCAAACATGGGATGAAATGAAATTACATGATAGGAGTGAAATAATCAATGATATTGTTTCCATAGAGCAGAAACTTCTCTCCGTGACCTTTGGCTTGTATGGGTCACTATATTTTTCCAAAGACGCTTTCCCTGGCTGTCAGCCGGCAGATATCAGTGGTGACGTCGCACAAGGGATTGAGGATGAGGTTAGAAAGCAATTCGTCATCGGCCCTACGACTCGCCGGGAGTTTTGGGAAAAGGAGCGAGCACTGATGGATCTGGACCGAGGACCTTGGAAATCTGCTAGTGGATATGTGGAGTCCATAGCCCATCGCGAGACCGCTTGGATTTCCCAGTATGCACGGAGGGATTCCATCATATCTGGCTACCCCAGGGGCAAAGGAAGTCAAAAATCACCCCAGGACCACCTCGGCTTATTGGAGAAATACCTATCTGTTGTTTCGAGGCTCCTTCCCGATGATACCGAGCTTGTTCGCCCAGCACTCTGGCATCCTGACATCCACGATGGCAATATATTTGTCCAGGATGGGAGGATTTCCAGCATTATTGACTGGCAGTCTGTCTGGATTGCACCTTTGCTTCTCCAGGCCAGAACCCCTCGACTGATCGATTACCATGGAGAGATCCAGTTGAGACTTCCCGAAGACTTTAAAACGCTGCCCGAAGAAGAGAGGGATCGCGTCAGAGACCAGGTCCAACGGTCTATCCAGGTATACCTTTATGAGGACCGGACGGCAAGAGTCAACCCTCTTCTTGACAGGGCAATTAGGAAACCCCATGGGAAAACATTGGCTCAGCTCGTGAGCTTTGCTGGAAACTCATGGGATGACCACATCGTACCCCTGAGGGACACTCTGATTGACGTTGAAAGGTATATAGCAAATTGGTCATGA +>XR_008008321.1 PREDICTED: Arachis duranensis uncharacterized LOC127746577 (LOC127746577), ncRNA +TCTTATACGTAATCCTTTTCGTGAGCGATTGTCTCTACTCTCTCTCTCTCTCTGGAATAAAGTAAATACGGTATGTTATACAAAAACTGTCAACACTATATATAGATTATAACTAACTTGTCTCACAAAACTTCCAATAATTTCTCTCTCTCTTTCTCTCTAAAGCTCTCTCCCTCTCTGAATGTTTGAGTTGCAGGTGCTTATTAAAAACATGGCTTGGTGTTTAAAACAACGCGTGTTGCTCCCTGTTATGGTGGTGTTATTGTTGTTGGGAACAAGTCCTTCCATAGCAGAGCTTCAGAAGCTGAAACACACTCCAACAAAAGCAGATCAACCTCTGAACATTCTGGTGGTCGGAGACTGGGGAAGAAAAGGAACCTATAACCAGTCCTTGGTCGCTTATCAGCCCAGAATAGGCTGAGCTAATAGGTCCAAGAGGCAGTTCTAATTGGGTTGGTTGGCTATCATGCTGTCCCAAGGTATGGATTTTATTTTTTGGAATAAAAAAAATTGTTGGGACACATTTCTCAAGAAACGTAAGGTTTACTA +>XR_003114846.1 PREDICTED: Melanaphis sacchari uncharacterized LOC112597600 (LOC112597600), ncRNA +ATTTCTCGGGCTTGTTCCACGGCGTCATCTTTCTGACTCTTCGTCTGTCACAAACAAATTTGTTCCTGAATAGAGCTGAACTCTCTGTTCCGCTCCGAATTTCTCGCCTTTGATTTGTCGTTAGCCCGATTATGAGGGCTAAGTGGCGTAAGAAGCGTATGCGTAGGTTGAAGCGCAAGAGGAGGAAGATGCGTGCAAGGTCCAAGTAAACCTCGTGGCCTGCACAAGACAATATTATCATGTTTTGGTAAACATTAAACGATATTGAAACTTTTATATTAAATCATCTAAACAGTAATAAACTCTTTCTGTTCAACTTATAAAA +>JX816942.1 Uncultured bacterium clone HC1::G9RA0RH03HINL4 16S ribosomal RNA gene, partial sequence +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGGTAAGGCCCTTTCGGGGGTACACGAGCGGCGAACGGGTGAGTAACACGTGGGCGACCTACCTTCAGCTCTGGGATAAGCCTGGGAAACTGGGTCTAATACCGGATAGGACCGCATGTCGCATGGTGTGTGGTGGAAAGTTTGTTCTTAATTGGACACTTCGGCTGGGGATGGGCCCGCGGCCTATCAGCTTGTCGGTGGGGTGATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGGAAGCCTGACGCAGCGACGCCGCGTGGGGA +>XM_053359157.1 PREDICTED: Podarcis raffonei calpain 7 (LOC128398277), transcript variant X5, mRNA +AAGATTGCGCTCCTATCTCTCTCCAGCGAGAGGTGGAGGGGAGGGAGGAGCGTTCTCCCGTATTGCGCAGGCGCATCGCGACGGCGACGCCTCCGCCACAGGGGCTGCCGGGAAGTCCCTTCCTGAGCGGGAGGCCATAGGCGGAGACGTCGGGGGGCTGCCGTGACGTCAGCGAATAAGGAAAGGAGCGCGCTGAGGCGTCTGCTGCCCGGACCCGGCCATGGAAGCGGCGGAGCTGGAGCAGGAGGCGGTGAAGTTCGCGCAGATGGCGGTGCAGCGGGACCAGCGGGGCCACTATCACGAAGCGGCCTTTTACTACAAGGAAGCTGCACAGTCTTTGATTTATGCTGCAATGGCAGGATCAGTCTTGGAAAATATTCCAGAGAAAATAAGTGAATATTTGGAAAGAGTTCAAGCCTTGTACTCAGCAGTGCAAAGAGTCGACCCCTTGAAGTCGAAGCAGCAGCTGGACTTGGAGCGGGCCCGTTTCCTGGTTACGCAGGCTTTTGACGAAGACGAGAAAGGCAACAGCGAGGAAGCGATAGAGCTGTACACGGAAGCCGTGGAACTCTGCCTGAAAACGGCCAATGAAACTTCAGAAACAGCTCTCCAGGCAAAACTGAAGCAGCTGGCTCGGCAGGCACTGGACAGAGCTGAAGCGCTGAAGGATTCAAAGCCATCTCAGAAAGACAAGCCGGTCCCAGCGAAACCAAATCAGCAAGCCCGGACTTACTTTCCATTAGGGCCTGATTTTTCCTTGAACGATAAGCCACAGGCAGTCAGAGCTGTGCAGGCCAGTGAACCTCAAGGTCAGCGATACACCGCAGAGGAGATTGAGGTGCTCAGGAAGACGTCAAAGATCAATGGCATTGAGTACGTCCCTTTCATGAGCGTTGACCTCAGAGAGCGTTTCGCTTTTCCAGTACCTTTCTCAGATAGATGTGGCAAGCTGCCGTTGTCTCCCAAGCAGAAAGCAATGTTTTCCCGCTGGGTGCGTCCCGATGAGATAACAAACAGCCCCACCATGATCTACACAGTGTCGAGCTTCAGCATAAAACAGACAATCGTGTCAGATTGTTCCTTCGTAGCTTCTCTTGCTATCAGTGCGGCATACGAAAGACGATACAACAAGAAGCTGATTACCAGCATTATTTATCCGCAGAATAAAAAAGGAGAGCCGGAATATAATCCGTGTGGAAAATACATGGTTAAGCTGCATATCAATGGGGTTCCTCGGAAGGTGATAATCGATGACTTCCTACCAGTGGATCACAGCGGAGAACTTCTCTGCTCTTACTCCAACAATAAAAGCGAACTCTGGGTTTCCTTGATAGAGAAAGCTTACATGAAGGTCATGGGAGGTTATGATTTTCCAGGATCAAATTCTAATATTGATCTCCATGCGTTGACTGGCTGGATACCTGAAAGGATTGCCATGCACTCAGGCAACCAATCGTTCGACAAAGACAGTTCCTTCAGGATGCTTTACCAAAGATTTCGCAAAGGGGACGTGCTCATTACAACGGCGACGGGAGTGATGACTGAGGAGGAAGGAGAAAGGTGGGGTTTAGTACCAACCCATGCCTACGCTGTTTTGGATATCAGAGAATACAAGGGGCTTCGATTCCTCCAGCTGAAAAATCCCTGGAGCCACCTCCGCTGGAAGGGAAGATACAGTGAAAATGATATGAAGAACTGGACCCCGGAACTTCAGAAATACTTGAATTTTGATCCCAGAACGGCCCAGAAAATAGACAACGGGATTTTCTGGATTGCCTGGGAAGATCTGTGCAAGTATTACGATGTTATATACTTGAGCTGGAACCCAAGTCTTTTTAAAGAATCAACATGCATTCACAGTACCTGGGATGCAAAGCAGGGTCCTGTGAAAGATGCATACAGCCTAGCTAACAACCCACAGTACAAACTGGAGGTTCAGTGCCCACAAGGTGGGGCTGCCGTTTGGATCCTGCTCAGCAGACACATTACGGACAAGGATGACTTTGCTCACAACCGGGAGTTCATCACAATGGTGGTATACAAAACAGATGGGAAAAAGGTTTACTATCCTGCCGACCCTCCTCCGTATATCGACGGGATTCGAATCAACAGCCCCCACTATCTCACCAAGATCAAGCTGACCTCTCCGGGAACCCATACGTTTACTCTGGTGGTTTCTCAGTACGAAAAGCAGAACACAATTCACTACACGCTCAGGGTGTATTCAGTGTGCAAGTTTAATTTCTGCAAGATCCCGACACCGTATACCATATCCAAACGGGTAAATGGGCAGTGGAAAGGTCAAAGCGCTGGCGGGTGTGGGAATTTCAGAGAGACCGCCAAGAACAATCCTATTTACCAGTTCCAGTTGGACAAGACCGGCCCCCTCCTCATTGAGCTACGAGGACCAAGGCAATACAGTGTTGGCTTTGAAGTGGTGACCGTCTCTACAGTGGGAGAGCAAGGCTTTCAGAAGAAAAACAGCGGCGATTACAGTGAGCCTGAGGCCAGGGACTGTCTGGGAGAAATATATATTTAAATGGCTGAAATGCTTTTTAATTCTGCAACTTGGATGCTCAAGGGAAGAGTCTACGGTGCACACAATAATATTAAATCCAGAGCTTTGGGTGGTTTTCTTTTTACTATTTATCACTGTGCCACAAATGGGACAAACAATTGTACCCCTTCGCTCTGACTTCCAAGCTTGAATCTTGCCATGTATCAGAGAAAAAAAGAAAACACACACGACAACTGTTTAGTTTT +>AY736006.1 Aedes aegypti inositol-1 monophosphatase mRNA, complete cds +GGGGAGTATTATTCAACTCGTAAAGTCATTCAGTCCAGTTTTTCTAATCATTATTTGAAACATCCGAAGCTCCCTCGATAATTGAAAGCAAATAGCCGAAATGTCGCTCGATTTGGACGAATGTTACGAGCATGTCCTCGGATTGGTAGAACAAGCTGGACAGATTATCGCATCGAGGAATTATGGGGAGAAAACGGTGGTGGAAAAGTCCAGCAACATTGATTTGTTAACCGAAACAGATCAGCAAGTCGAGCGACTTCTGATGGATGGTATAACTGAGAAATATCCCGATCACAAGTTCATTGGTGAGGAAGAAACCAGTGCCGGGAAGAAGGCAGAGCTGTCCGATAACCCTACCTGGATTATCGATCCAGTGGATGGCACCATGAATTTCGTTCACAGTTTTCCCCATTCATGCATTTCGATTGCGTTGCTGGTCAATAAGCAAGCCGAAATTGGAATCATCTACAATCCGATGCTGAACCAGAAATTTACGGCTCGCCGAGGCAAGGGCGCATTCATGAATGAGAAAGCGATTCGGGTTTCGGGAGAAACTCGACTGGAGCATGCTTTGGCAACGACCGAGTTCGGCACTAGTCGTGACGAGGAGAGGACGGCTATCGTTTTGGAGAACATTGGGAAACTGATTCGAGTTGTTCACGGGATGCGAAGCTTGGGATCTGCTGCCCTAAACATGGCCATGGTTTGCCCTGGGGTGGAGCTGATTTTCAACTATGAAGTGCGGGTATCCACGCCCTGGGGATATTGCCTGCGGGGGGAATTTGATTTGTCCCGGGAAAGCAGGCCGGGTGTCTGTCTGGATCCAGCTTGGAGGACCTCCTGGATCTGATGTTCTCCCCCCCGGGTGGCTGTGTGCCAGTTTCGCCAGAGCTTTGGCCGGAATAAAGGTGGTTCCATTTGGGTTGAACGCCAGTACTTTTCCGCCAGCCCAGAAGACTTAGGAAAAAGTTCCCCCGAATGGGTTGGGATAAAGGATTT +>BC169882.1 Xenopus laevis signal transduction regulatory protein SAP-2, mRNA (cDNA clone MGC:196609 IMAGE:9041516), complete cdsBC170158.1 Xenopus laevis signal transduction regulatory protein SAP-2, mRNA (cDNA clone MGC:196885 IMAGE:9093539), complete cds +TCTGCGGTGTTGCCTGTTTTAGATTTCATGACTCAAATGCTTTAGATAATCATGATGGAAATTATTTCCACTTTATTTTTTCCTATTATTGTTGTAGTCCTGGCAAGAGTCATTTCACTTCAGCCTACGAGTGTCTATTCGTGTGCTTGTGGGATGGTTTAGTAATTAACACGTTTATGTCTCCACCTGTGGGATCCTGTCTCGTCTTTGCTGCATTTACTTTTGAAGAGTTTAAAGGCAGCTTCTTCCTCTCCAGCTTGTCTAGAGGTGCATCTGCCATTGCCACTCTTTCATCACACTGTTCTGCCCGCAATGGAGAAGGTATCCGTTTATCATGGGAACATAAGCCGTGAGATGGGCGAGAAGCTCCTGAGTGATGCCGGGAAAGATGGGAGTTACTTGCTACGGGATAGCGAGACCATGCCGGGAATGTATTGCCTCTGTGTTCTGCACAAAAATTTGGTCTATACATACAGAGTTCATCAGACATCAACTGGTTCCTGGACTGCTGAGGCTGCACCTGGCGTTACAAGAAGGCTGTTCCGGAAGGTGCAAAATTTGATTTCTGCATATGAAAAACCAAACCAGGGAATTGCAACACATCTGCAGCACCCAGTGGAGAGGACGGTGACAAAAATTGTTTAAGGGTGATTAATGGATGGATGCTTAAACAAATGAGTCATTTGCAGATCAATTCATTCGACGCTGCCTTGAAGAGAG +>XM_040760640.1 Sporothrix brasiliensis 5110 uncharacterized protein (SPBR_02337), partial mRNA +ATGACTCCTCGCCAACCACAGAGCGACAGTGGTCGTGCCTGTACGTCAATTGTCACAGAGTACCACCGCAAAAAGCCGAATCAGGAAGCGCCGTTTTTGATCGAGGTCGAATACTTGAACTCTGCCGGCATAAAGGCCCACTTACAAGAGCTGCTTTGGAACTATCGCCGCATCTACCGTCCGGATATTGACCCAGAGGCATTGGGTGATGCCGAATACAAGCGACTCGAGGCTACATCCAGCACGGCGTGGTCGACTCTACAGACAGCGTTCCGCCATGAACGTGGCTTTAGTTCCTCGTTTGCCCTGAACATGGACGACGGTTCCGACGAGCGCATCCTGGAACAGCTTGTCACATGGGCGGGCCGCATTGAATGGCCACGCGGAAGTGACGAGGGCTTCTGGACAACTACGGCCCTCTCCGTGGACGAGTGTTGTGATGCTACGCGGCCATTCATGGAGGATAAGTTCTGGCCGTTTACCAATCTTATCAGGATATTTCTCAGTGCACGTGTGCTCGACTCCGGTATCATCCTAGCCGACCTCCCCGGACTCCAGGACGTCAACCTGGCTCGAGTCCGTGCGGCCCACGAATACGTTCTGCAATGTGACAGCATTCTTGTCGTGGGCCGCATTGCGCGGGCAATCTCTGATCAGTCTTTGCGGTCATCACTCTACACGTCCCTTGCAAGTCACGCCCCAAACGAGTGGCAGGAACAAGGCGCAGCCCGCCTAAACATCGCCGTTGCACTTTCGCATGCGGAAGACATTAATGTTCGATCTGCACGGCGTGAGATCCAAGACCCAGAAATCAAGGCCAAACTGGATCGCCTCGACATCGAGATAAACAATGCACAAGCCGCAGGTTCCCTTCGAACGGAACAAAATATGAAACTCATGCGAAAGCGACTGTTGGTCGAGGAGAGAAACAAGAACGTCACGAAAGGCTTGCAGGATGCTTATGCCTCCAAGATGATCAACCAAAACAGGCAGTTGCCCGTTTTCTGTATTTCCAACAAGTGGTACGAAAAGTTTACGGCCATTGGAAACACAGAGCTCGTGCGGGAAAGTCAGATTCCCGCCCTCCGACGACACTGCCAAGCCATCGCAGCGGATGCCCTACTGGGCGAAGCAAGGCACTACTTACGAACAAGTCTTCCCTCTCTCGTCACCTCGCTCGACCTCTGGGTCACAAATTCCATTGCCACGCAGGCTCTGCAGGGAGACGGCCGACACGACCGATCTGATCCCTCCGTAGATCGCGTCCGCCAAGTGGTCCGCGGAATCGACGACGAAAATTTGCTAGGCCCGGAAAGTGACTGGGTCGACAACGTCGAAAGTTGTTTCAACGAGGAAATAATGGAATTTTTCGCCAATAGGGGTGACATATGGAAGGATCAAGCTGTCAACGAAAGCAACAAGTGGACTGTAAAGTCAGGTCCTAACTACTGGCATCAAACCCATTACAATTCATGGTGTCTTCATGATGGCGATTGGAGCACACCAAAGAAGCCACATGTCAACTGGAATGCCGAGTTGATCTGGAAGATGCGGACCGAGCTCGAGCTGCAGTGGGACATTTTCGAAGAGCAAACGCATGACGAGTTCAAGGCCGTACACGAGAACCTTGGTGCAAGCCTCGTTGAGCTGAAGGACGCTATTGGGTCTGCAACTAGCGTCCCAGGGCGTGAAGGACTGGTGCGCTTGATCAACTTCAGCTTGCACGAGTTCAAGCACTCCCTGGACCAAAGAGAGCGACGCTTCCTCGTGACGCTGAGGGCTACGCGCAGCAAGACCAGTGAAGCCACATGCGCGTCGTATATTGTCGAGCACATGCTTCCGGCATACCGCGACGCGTCGCTGGAGTTTGGGACCGGACGGCGTATCAGGCAGGAGACGATCATCGGCTCAAAGGTAAGCAGAGGTGACATATTTCTCAGCATGGGCAGTGCATTGGCGCGTGATATCCAAAGTCTTCTCCGACACACAGAGGAGGAGATCGAGCGCGCCATAGAATCGATGGCTGAACACATTCTGCGGAATGTCAAAATGGCATTTGGGGCCGATGAGACTCCTCACACGTCTGTGCCATCAGCTGCCCTGCGGAATGCCGAATACAACGAGCGCCTGCAGCACTTTTCGAGTATGGTCTCTGTCTGGAGAGAACAGTACTCGCTTTTGTTTGCGAGCGAAGATGGGGCGTTGGACTCTCTGTTGTGA +>XM_027854401.1 PREDICTED: Vombatus ursinus myo-inositol oxygenase (MIOX), transcript variant X2, mRNA +CTCAGACAGATCACACACAAGCCACGGGTGACACTCTACACACCCCCTTCCCATCCTGTTCACTGCTAGGCCTGTGGTCAAGATGAAGGTTTTAATGGGTCCAGATCCTTCTCAGATTTATCGGCCTGATGGGGGCAAAAATAAAGAGGACTTCCGAAACTACACTTCAGGACCCCTCCTGGATCGAGTCTACACCACCTACAAGCTCATGCACACGCACCAGACCGTGGACTTTGTCAGGAGGAAGCACGAGGAGTTTGGTGCATTCTCCTACAAAAAGATGAGTGTGATGGAGGCCGTGGAGCTGCTGGACGGGCTGGTGGATGAGTCTGACCCCGACGTGGACTTTCCCAATTCATTCCATGCATTTCAGACGGCTGAGGGCATCCGGAAGGCTCACCCTGACAAGGACTGGTTCCACCTCGTGGGGTTGCTGCATGATCTGGGGAAGATCCTTGTCATGGCTGGGGAGCCTCAGGATAATCCTGACACCAAGGACCCTCGATACTGCACTGATTATGGAATGTATGAGCCCCACTGTGGCCTGGAGAACGTACTGATGTCCTGGGGCCATGATGAGTACATGTATCGAATGATGAAGTTCAACAAATTCTCCCTGCCTCCGGAGGCCTTCTACATGATCCGTTTCCATTCCTTCTACCCTTGGCACACCGGTGGCGACTATCGGCACCTCTGCTGCCCCCATGACCTCAGCATGCTGCCCTGGGTGCAAGAATTCAACAAGTTTGATCTCTACACCAAGTCAGAGGACCTGCCAGATGTGTCCATGCTTCGGCCATACTACCAGGGCCTCATTGACAAGTATTGCCCCGGGGTCCTTTGCTGGTAACGGCCTCTGCTCTGGTCTGAGCCAGCTTCTTGGCCCTCATACAGCCGGTCAGACTCACTTGCCTCACCAGGGGCAGCCAGCCCCCTCCCTTGTACACACCAACCTGTCCACAGGCCCCTTTCTCCCCCTTCCTATGAGCTGGGGATTATCAGCCCAGAGACCACCCCGAGCCACTGGCCACCCCCTTAGCTGACCTCTCCATCCCACTAGCAGCAGCATCCATGTCTTCATTATCTCCATACCTCATTGCCAACTCCATCCCCGTTACATCATCATTGCCAGTCAGCAGGTGCCCATCACTTTCCTGCTTACCATTCTCACCATCATTTGCAGCCGTCTGCACCACATGCTCTGGGGGTCCCTGGGCACTGCTCATCTCTCCAACCACACCCGCAGATTCTTAACACTCCTGCCGAGAAATAAAGACCGTACAGAACCCTG +>XM_044147674.1 PREDICTED: Aphidius gifuensis vesicular integral-membrane protein VIP36 (LOC122849090), transcript variant X1, mRNA +TAGGTTGCTTACGCAGCTCACTTTTTTATCATTATCATGTCATAAATATTAAATATCCATTATATCATTTACCTATTGTGATGTGTCGTTTTACACGAGCTAATCAGCGCTCATTTTTCCATTCGTGACTTGGCAAGATAATTATCGACCTGTGGCCCAATAAATTTGATTAAAAAAATCTTCAAAAATTCATTCAGATCTATAAACAACTAATTTGATTGCGTTTGAGTGGTTTGAAATAAAATTTTGATCACAACCGGTCAAACCATCAAGAGGTGCTTGTTAAATTGATATCAAGATGCATTCATGGTTGTTGTGTGTTGTGATTATTGGATCTGTCAATGCAGAATGGAACACCAAAGATTTTATGAAAAGAGAACACTCTCTTGGCAAGCCATATCAAGGTATGGGAATGTCAGTACCATACTGGGATTTTATGGGCACCACAGTGGTCACAAATGACTACATAAGGCTAACAAGCGATATTCAAAGTCAACAAGGATCACTCTGGAACTCTGTGCCATGTAACCTCAGAAATTGGGAAGCCCATATACATTTTAAAACTCACGGTAAAGGACGTGATTTATTTGGTGATGGTTTTGCAATATGGTATGCATCGGAAAAAATGATGCCAGGTCCTGTTTTTGGTTATAAAGATTATTTTAAAGGTCTTGCTATTATTCTTGATACATATAGTAATCACAATGGCCCACACAATCATCAACATCCATACATATCGGCCATGATTAACAACGGCACATTACATTATGATCATGACAGAGATGGTACACATACTCAGTTGGATGGTTGTGAAGCCAAATTCAGAAATCTTGATCATGATACGTATCTGTCCATCAGATACGAGGGAGACACCTTGACCGTTTCAACTGATATTGAAAATAAAAAGGCTTTCAAAGAATGCTTTTCAGTAAAAGGAATTCAACTACCAACACATTACTACTTTGGTATTACTGCCACAACTGGTGATTTATCGGATAATCATGATATTTTGTCATTTAGATTATATGAACTGGACACACCAGTCGATCCGAATGATATCCAGGATCGTTCCGCAATCGTTCCATCAGCAACATACTTTGATTCTCCACGAGAACACATCGATGATCCAAAGCCATCGTCTATGAGTGGATTTAAGATATTCTTCTTAATGCTTGTTAGTGCAATTGCACTCGTCGCCCTGGTCGTCGTAAGCATTATGGTTTATCAAAAACACCAAGAAAACAGTCGGAAACGTTTCTACTAATAGAAAAAAAATAATAATAGATATTAAGAATCTTCCAAGACGTTATTAGAATAATTCAAGAATCAAAACATTGTACACAATTACATATTTCATAATTTTTTT +>XM_025922904.1 PREDICTED: Puma concolor solute carrier family 30 member 8 (SLC30A8), transcript variant X2, mRNA +ATGGAGTTTCTTGAAAGAACTTATCTTGTGAATGACAAAGCCACTAAGATGTATGCCTTCACCCTAGACAGCGTGGAACTCCAGCAGAAATCCTTGAATAAAAATCAATGTCCTGGAGAGAAGCCAGAGGAGCTGGACTCAGGAGCCATCTATCACTGCCACAGCAACTCCAAGGCCACAGAGAACAGAGCAAACGAGCAAGTCTATGCCAAGTGGAAACTCTGTGCTGCTTCAGGAATATGCTTCGTTTTCATGATTGCAGAGGCCGTGGGTGGGCACATTGCTGGGAGTCTTGCTGTCGTCACAGATGCTGCCCACCTCTTAATTGACCTGACCAGTTTCCTGCTCAGTCTCTTCTCCTTGTGGTTGTCATCAAAGCCCCCTTCGAAGCAGCTGACGTTTGGATGGCACCGGGCAGAGATCCTTGGTGCCCTGCTGTCCATCCTGTGCGTCTGGGTGGTGACGGCTGTGTTGGTGTACCTGGCATGTGAGCGCCTGCTGTACCCTGATTACCAGATCCAGGCGACTGTGATGATCATCATTTCAGGCTGTGCGGTGGCAGCCAATATTATACTAAGTGTGATTCTGCACCAGAGACATGCTGGACACAATCACAAGGAAGTGCAAGCCAATGCCAGTGTCAGAGCAGCCTTTGTGCATGCCCTCGGAGATCTATTTCAGAGCATCAGTGTGTTAACCAGTGCACTTATTATCTACTTTAAGCCAGACTATAAAATGGCTGACCCAATCTGCACATTCGTCTTTTCCATCCTGGTTTTGGCCAGCACCATCACTGTCTTAAAGGACTTCTCCATCTTACTCATGGAAGGTGTGCCAAAGAACCTGAACTACGATGATGTGAAAGAGCTCATCTTAGCGGTGGATGGAGTGGTGTCTGTGCACAGCTTGCACATCTGGTCTCTAGCAATGAACCAAGTGATTCTCTCGGCTCATGTTGCTGCAGCAGCCAGCCGGGACAGCCAGGTTGTTCGAAGAGATATTGTAAAAGTCCTCAACGATAGCTTTACTGTGCACTCACTCACCATTCAGATGGAATCTCCAGCTGACCAGGACCCTGACTGTTTTTTCTGTGAAGAACCCCGGGACTAG +>XM_025582792.1 Aspergillus brunneoviolaceus CBS 621.78 hypothetical protein (BO95DRAFT_367563), partial mRNA +ATGCTCGGTCGACTATTGAATACTGCAGCGGCCACTCTCAATCCGACGGCATACTCCGCGAAGAACCCCCAGCCACTGGAATCGGTCACAGAGGAGGAACATACATCGGGCTTGCTTTATCCTGACGTTAGCCTTCTTCGCCGCTCCAACTCACACGCGTACCCCCTTCATACCGCTTTCAATTCCCCGAATACCTCGACGGCCGGTGGATATGATGATCGTGGTGGCGGCGTCGAATTGGACCACCTGAAGGATTTCCGTGTGATAATCGCCCAGAACGCGCTGGGAGACCGGGATGCCTGCGTGTTACTGGATACCCGGGCCACGCCGCAGGGACAAGGCTCACATGGTCTGGGCTTGGAGCCACAGGTGTTTGAAAATACTGGTACCCGCCATGCCCGCACGCTCTCCACGTTGACTCGCGGCCCGCGGCGGGGTTATCTGCCTCAGTCATCGGTCGTGGAATCAAGCCCGCTGTCTGCGGCCGCAGAGACACGGCGATCCCCGCCCATGTCTTCTGGCGCGTTCATGAGGGCACGGGTTCGTAGCTCTACGCTGGCGCCAGGTGGGAACTTCACCGAAGGTGGCCATTCCCGGGGCACGACGGATGCGAACGATTCCGGGTTGCTGAACTGCATCTTCGGGAGCAGTGCTTTCAGCTACAAGGGTTCCTCCACCAAGATGCATATCATTTCCGCCGATGATGAACCGAGTCAAACCTCGCCAGCCTCGCCGGCGGCACGTAGCTCTCTATCACGAGCATATACTACAGGAAGTTCTACGACGTTTGGCGGTTCTGATCGTGGTAATGAGTCTAAACCGCCTGCCAAGGTCACTATCCTGTTGACAAGGATGTTCAGTGTGCATCTGCCCGAAGGCGGAGATGATGACTCCTCTCCGGACAGGCCTGACTTGTCATCTTCAGTCTCCCACGACGCTCTCCCGAGCCCAGGGTTTCCCTTCCCGGATGTCTCGAAGCGCAAGAAGATCAAGGAGAAGAAAACTCCCATGTATGCGGTCGCTATCACAATCCAGATCCCGCTCTTATCCCGAAATGGTGGGCGGCCGGTTTCTCGGTTTGCGCAAGGTCCAGACTCTCCCAAGCCAGGGCTTTCGTGCTCATTGGACTCGGACTACCGTTGGCGTGGAGGCTTCTTCGAGGACAGTCTGTCCCATGCATCCCCTCCTGCAAGTTTGGATGAGCGTATTGATCTGCTGGTTGATCATTGGGACATCATCAACCGGACGTTGTCCCATTTGGAGAGGCTGTCTCGGAACGAGATCCTGTTCTTACTCAAGAAAGTAGACGCCTCGGCAGGGCCGCATCCGAAACCCGCCAAACCTCCAAACATGCAAAGGACGAATCAGACTTTTGTTCATCTGCCGGTCAATGTTTTGTCCATCAATTCCAAACTCCGCGACGAAGCCATCCGCAGCACTCGTCGCATTAGCACGGCTCTGCAGATGCCGTACGTTGTCACAGGCCAGAGCCGCTGGGGCGTCTGGCGTGAAGAAGGGCGGTCGATAATCCGTAGCCTCGGAGACAAAGACCACAGTTTCTTTTTCCTGGTCTTGGTTACTGCCTTCTTGGGAAACCATACGGAGTGGCTCAATGCTGTGGGCCCGGAGTGGTACCGTCGGCGGCACTACCTACAACAGAAGGCTCAGCAAGACGCCGACCCGATGCTGGCGAATCGCACCGTGATCATCTCACCGGATAAGATGACTGCCAGAAGACTGATTTTCTTGCTGGCGGCGTTTTTGCCGCCCAAACAGCGCTTCGAGCCCCTGCCGTCTCCGATTCGCCCTGGCACTGCGGCGTCGACTCGTGCTGTCTCCCAGAGCCCGCCTAATGTTCCTATCCTACGACAGGAGGCATTGCGGAGGGTGATGGAACGACGGTCTCGTGCGCAGCGCCTCAACCTCAATGAGAGAGAGCAGCACCAGCGTTCTGTGAGTGCTTCATCGAATGAGACGGCCCATCGTTCGGCGGAAGAACCCGAGCCCATGATTCCGCCTGATTTTGGTGCGAAGCGCAGGGGCTCAGATGCCCGCTCGATCCGAGCCTTAGGGGTTCCTATCCATACTAGAGACATGCGTCCGAGGAATACCAGTGCAGCCACCACCTCGACCACTACTCCGAGTAGTACCGTCCCCGTCCCGCACTTCGCCTCGCAGAGCCGGTCTGAGCGGATGGGATCGGATCCAAGTGTGGCTGAAGGACGTGACAGCCTGGCGTCGGAAACTCTTCTAAAGAATTTGCGGCGGTCCGAAACCTCGGCAACCTGTGCCAATGGCCAGATGCCTCCCGCGAGTGGCCGCTGGGGCACATTGTTCTCTGGCTTATGGAGCTCTCGTCAGGAGTCATCAGACGCTGGTGACGCCCCTGCGCCATCTGAAGCGCGCAAGCGATCGGTATCTGCTTATACGAACCCAGCCAGAAGGAACCCTCCGACACTTGCCCAGATGGTCAAAGAAGCATCAGAGGAACCCATGCCGGCGGCACCCAAAGCTACTACGAGCGGCAACATCTCTATCCCTCCGGCGACAAACAGTCATATCTCATTCGAGGAGGACGCACCGGATTTCTCGTCGACCACGGACCAGACCAGGGAGTCATCCTTGAGGATGGCCGTTCGTGGAGATGACGGCGTGGTGGATGTGGACCTGCCGCTCCCAGGGTTCCTGTCGCTTTCGTCGTCTGGGGACTCCACGCTGGCTTCTCCCAAGAAGACCCGCACCTCGGTTACTAGTATGGATGCAATGGCATCTACGCAGAGCAGTGTCTCCGGGTTCCACGGCAGTCTCAAGGACAATGATGGACCTAACACCAACGTCGCTGGCTGGCTGCGAACTTTCCATGACGATTTTCTCCTGCAGGCCGTGAGACCATACGCTTCGCTGGAAGCCGATATCAAGCGCGCCATGCAAGCCGAGCCTACACCAAGCCAAGCTCTGTGTCTCAACGCTGATGGTTCCGAACGATGGGTGGATGTTGCGACCACCGTGATTGCGGATGTCCGGAACTTCACCGTGAAGCGACTGCGACTGAGACGTAAACTTGTGGGACATGGGTCGTCGCGCAAGGCGTATACGCCGTCTTTCCCGTCGCAGCCCGGCACTCCGCGGTACGTGTCCAACGGGTCTGTCTCGGCCTCGCAGCTCACCAGCTTCTTCTCGCACGCCACTGGGTCGAGCAAGACATCGAACAATTCCTCCATGGACGATTTCTATCCTACCGAGGTTGAAGAACGGTTCGTGGAAGAGCCCGTGATGGATCTGGATGGCACTCTTGTCGATGCTCTTGAACGGGTGCTTGCACAGAGTGGACCGTCGTCCATGGTGCACTCTCGCGCGCCGTCGCCATCCCGTGGTCGTCGCGGAGAGGATAAGCAGGCATCGGATGCCCCCGTGCCCACACGGGAAGAAATCCGACCTGTCGAGGTGCCTCGGACTGAGTGTCGCAAGCTGGTCCTCGGGGCGCTGGAAGAGGTGGTGCGCAGTGTGACGGCGGAGCATTGCCGCGAGGATGTTGACGGGGAGCTCGGCCTAGCAGATCGCGAGCGCAAGCGTACGTTGGCCGGGGCGGATAATACGCTGCGCGAGGGAGTTCGCAAGTGGCTTCTCGATGTTGAGGAGGCGTGGTAG +>XM_046049963.1 PREDICTED: Micropterus dolomieu ArfGAP with GTPase domain, ankyrin repeat and PH domain 1 (agap1), transcript variant X1, mRNA +GCGGAGGAGGGAATGGGACCGAGCCCAGCGTCGCTGTCAGGGAGGGTAAAGCTATCGGAGCAGAGGAGGGGAGGGCAGGCCCGGGTCCAGGGCTGTAAATCCAGGGACATTTGAATCACAATTGAATCCGGTCTGAGGTGAAAGAGGCTCGGCTGGCTGGCTGGCTGCGCTGCGCTGCGGGGGATGTGCGCACACAATGGGAGACGACGCGCTGGCTCCGTCCGGGACGCGGCGGCAGAATAAAATTCACCTCTCTGTTTGTTTGTAATGGAGACGCGGACACCGGAGCAGGATCCAGAGACGTCAGCGGGACACACGGCGGAGGACTCCCGGGGGTAAGGACTTGTGTGAAAGTGTTTCTTCATGCCGGGACGGAGCGCTGCTGCGAGCCCGGAGAGAGGAGCTTGGGACGCGCCTGCTGCCTGTTTGTCTCGTTTGCTGCCAGTTTAAATTCCGCTGGGATGAACACGGAATGTATTTCCTGCGTCAAAGTCCGCGCTGTTTGCACATCTGGATAAGGGGAGAGTCGGTTATTGCCCCGTAGCGTCCCCCCCCCGGTGCGGTTGAACCCGTTTGTGGAGAAACGTTTCAAGTCAATTGACCACTTCCATGTTTTAGACCCTCAGACTGCAGAGCTCAGTGTGAGCAAAACAACAGAAACCCTCTTTTTAGTTTAATAAAGACATCATAAAGGAGACGACAGGATCATTTGAGTGATTTTTCTAATGCAATAAAGCCTCGTTAGAGTTTCTGTTGGCTGCTGCAGACTTTAGATCAGAGCTGAAGAGGAGCTCTTTCATCAGGGATGTACCTTCTGGACAGTAACTGCACTGAAAGGATGGAGAGGGGCACGCCTCAGAGGAAAACTGTCTACCGCATCTCGCTCACCTTGGTGAAGAGGGAGAGTTTAGATGGTGAGGATGAAGGCTCAGGCCCCCGGCGGGCGGAGAACCCCAAGGTGGGCACCATCCGGCGGGAGAGCTCGGTGGAGATCCAGCGTGGCGGCCTGCTGGAGCAGCTGAAGGAGGTGGAGGACGAGTCGGACGACTTGTCGTCGTCCCGGGGCTACATGAGGAACTTCAGGACGTTCAGCACGGGGCAGCTGGAGCTGGGGAGGCTGAAAATCTCCAGGAAACAGCAGCTACAGAAAGAGCCGAAGCAGAAGGCCTCCAGCCCGGTGGCAGAGCACGCCGCGGAGGCCCCTGAGAAGATGTCGGCACAGAGTCAGGAGCACACTCGGGGGGAGAGCAGAGAGCAGGAAGCGGAGGACTCAGACAGACTTAAAGAGGAAATCTGCTCTGAAACTCACAAACAAACAGACGCTGCCGTGGAGACGAGCGGCGTGAAGAAGAAGAAGAGGCTGGTGAAGGCTCAGAGCATGGAGGAGAGGAGCTCCGACCCTCCTCTGAACGGTGATGGGTCTCACTCCAAGAGCAACGGCAAAGCAGCCAAAGCTCCCTCCCCTGAGACGCCCCCTCTGAAGCGGCCGCCCGGCCTGCTGCGCCGCAGCTTCAGCTTCAGACACTGGAGCGGCGGCGAGCTGCTGCGTCTGCGAGCGCTCTCCAAAGACAAACACCACAGCAGCTCCAGCTGCATCGGGCGTGACGCCGGGCCGGGCGGCGGCGAGAAGGAAGCGGAGGCTCCTGTCGCGCTCCCGGCTTCCCGCCTCGCCGACCCCACCAGAGTGAAGAGCAGGACTCTGGAGGTCGGCGCCGTCCTGAACAAGACGGACTCCATGTCTGAGCTGAGCCGCTGGGAGAGAGCGCGGGGCAACAAGAACCGGACGCTGGACAACAGCGACCTGCAGCGGCTGGCGGCTGAGAGGGACGGGTCAGGAGGGGGGTTCCTGCTGAGGGGAGGGGGAGGTCGCTCCAGCGAGAGGCGTCTGGTTCGCTTCTTCAGCGGGATCTTCTCCAGGAGGGACGGGGCAGCCACCTCGACCCCGGTGGGAAGCCCCAGCAGCCTCCCGCGGAGCAAGAGGAGGGTTCTGTCCCAGTCCAGCACCGAGAGCATGAACGGAGGAAGCTCTGAAGATGCGTTTGTGAACAGTCAGGAGTGGACGCTGAGTCGATCGGTACCAGAGCTGAAAGTGGGCATTGTGGGTAACCTGGCCAGTGGTAAGTCGGCGCTGGTCCACAGGTACCTGACAGGAACGTACGTCCAGGAAGAGTCCCCTGAAGGCGGACGCTTTAAGAAGGAGATCGTGGTCGACGGTCAGAGTCACCTGCTGCTCATCAGGGATGAAGGGGGCCCCCCGGAGGCTCAGTTTGCGTTGTGGGTCGACGCCGTGATCTTCGTCTTCAGTCTGGAGGATGAGATCAGCTTCCAGACCGTTTATCACTACTTCAGCCGCCTCGCCAACTACAGGAACACCGCCGACCTGCCGCTGGTCCTGGTCGGCACGCAAGACGCCATCAGCTCAGCCAACCCGAGGGTGATCGACGACAGCCGAGCCAGAAAGCTCTCCAACGACCTCAAACGCTGCACCTACTACGAAACCTGCGCCACCTACGGCCTCAACGTGGAGCGGGTCTTCCAGGACGTCGCCCAGAAGATCGTGGCTACCAGGAAGAAGCAGCAGTTGTCCATCGGGCCGTGCAAGTCGCTCCCCAACTCGCCGAGTCACACGTCCGTCTGCGCCACACAAGTGTCAGCCGTCCACATCAGCCAGACGAGTAACGGCGGCGGCAGTTTGAGCGACTACTCGTCGTCGGTGCCGTCCACGCCCAGCACTAGCCAGAAGGAGCTCCGCATCGACGTGCCGCAGACCACCAACACGCCAACGCCCGTCCGAAAGCAGTCCAAACGCCGCTCCAACCTCTTCACCTCGAGGAAGGCGAGCGAGTCGGACAAGGACAAGAAAGGCCTGGAGGCTCGAGCCGACAGCATCGGCAGCGGGCGAGCCATCCCCATCAAACAGGGCATGCTGCTGAAGAGAAGCGGTAAATCCCTCAACAAGGAGTGGAAGAAGAAGTACGTGACGCTGTGTGACAACGGACTGCTCACCTACCACCCCAGCCTGCATGACTACATGCAGAACGTCCACGGTAAGGAGATCGACCTGCTGAGGACCACGGTGAAGGTCCCGGGGAAGAGGCCGCCTCGCGCCGTGTCCACCTGCGCGCCCGTGCAGAGTCCCAAAACCAACGGCCTGACGAAGGACATGAGCAGCATGCAGCTCGGACAGACTCCAGGTTCGGTGAGCAGCAGCTCGTCGGTGTCTCAGATGGCGAGCGGCGTCAGCTTGGTGTCCTTTAACAGCCGAGGTCTGGAGGGGATGCACCAGCGCTCCTACTCCGTCTCCAGCGCCGACCAGTGGACCGACGCCACCGTCATCGCCAACTCCGGAGTCAGCACGGATACCGGCCTCGGAGACTCGGTCTGCTCCAGTCCCAGTATCTCCAGCACCACCAGTCCGAAGATGGAGCCGCCGCCATCGCCGCACGCCAACCGCAAGAAGCACCGGCGGAAGAAGAGCACCAGCAACTTCAAAGCCGACGGCCTCTCTGGTACTGCGGAAGAACAAGAGGAGAACTTTGAGTTCACCATCGTGTCGTTGACGGGGCAGACGTGGCATTTCGAAGCCACTTCGTACGAGGAGCGAGACGCCTGGGTGCAGGTCATCGAGAGCCAGATCCTGGCCAGCCTGCAGTCCTGTGAGAGCAGCAAGAACAAGTCTCGTCTGACCAGCCAGACGGAGGCCATGGCTCTGCAGTCCATCAGGAGTATTCGAGGAAACGGCCGCTGTGCCGACTGTGAAGCCCAGAACCCGGACTGGGCGAGTCTGAACCTCGGGGCCCTGATCTGCATCGAGTGCTCGGGCATCCACAGGAACCTGGGCACCCACCTCTCCAGGGTTCGCTCTCTGGACCTGGACGAGTGGCCGCTGGAGCTCATCAAGGTCATGTCGGCCATCGGCAACGAGCTCGCCAACAGCGTGTGGGAGGCCAACGCGCAGGGACGCCTCAAACCTGGGCCGGACGCCAGCAGGGAGGAGAGGGAGCGCTGGATCCGGGCGAAATACGAGCAGCGTCTGTTCCTGGCGTCGCTGCCCGGCACCGACCTGTCTCTGGGCCAGCAGCTGCTGAGGGCGACGGCCGAGGAGGACCTTCGCTCCGTCGTCCTGCTGCTCGCCCACGGGTCACGACAGCAGGTCAACGAGACCTGCGGAGAAGGAGACGGACGCAACTCGCTGCACCTGGCCAGCCGCAAGGGCAACGTGGTCATCACGCAGCTCCTCATCTGGTACGGCGTGGATCTGATGGCGAGGGACACCCACGGCAACAGTGCGATGGCATACGCTCGGCAGGCCAACAGTCAGGAGTGCGTGGACACGCTGACTCAGTACGGCTGCCCCGACGAGCGGTTCCCGCTCATGGCCACGCCCAACCTGTCGCGCCGCAACATCAACCGCAACAACAGCTGCAGCAGCGCCGGGAGCGCCGCGCTCATATGACGAGGGCATGTCACCGTCTGACTCTTTATGACAAACAAACAAACAAACGCCGATTTGGGAGAATCCTGACCGTTTATTTTGGGAACCACTACCTGTTGCGACTCTAAGCCCCGCCCACCTCACCTGAGAGCCACCACTGCCGCTGTCGGCTCGTTAAGACTGATTAGAGCTTATCACGGGTCAGTGGTGGCGCTGTTTGTTTGGGAGAACCCTCAACGGGTGGGGAAACCCTAAAACACGGTGGGAAATGTGGTCCACAGTCGCCGATGGCTCATCAGAGCTCTTTGGGAAATAATCACGTGACTTATGACAGCCAATGACGGCCAGTCTGAAAGCTCTAGGGAAATCATACCTCATCACACAGCTATACTTTAACGCTACGCGACCAGCTCCCGCGCAACCTCGCCACGCATCATCCGGCCAATCAAAATCTGTCTAGCCAAAACATATGGTCACAACATAAGGAAGCAAACTGTGAGACAAAAATATCAGGAGGGGGGGGGGGCGGTCTTCATAGCATGCTCACACACAGGAAGCCATCTGAACTGCACATCATCTTCATCATCTTCACCAGTCGAGGACTCCTCTCTGTTGGATCCCTGCAGCTTTTCTCCTCCTCCCACCTGTACTTTTTATTATTTTATGAATTATGTGAACCCTCCTGCCTTTACACCTTCTTTTTTTTTTAAATGTGAACAATATCTCGATGTAAAACTTTAAGAGGAAAAAAAAAGATATCAGATCTTAGAGGTGAAAAAGAAGTGTGGTAGATCGCATGTCCTAGACACTTTTTGCTATTTTAATTTAAGGATTTTTTTTTTCCTTCTCCTGGATTGTGTATATTGTATCTCGATGTGCATTGCTGGACCAATCGTTTAATAATGTCAACACGGTAAGGGGATTTATTTAGTTTGTTTCCGGGTGTATAAAGTCGTTAAGTGTACAGAAGCTCTTGCCAGGCTCAGGGACCGGAGACTCTTGATCATGAACACCCCATCGTCTTTTCCCAGAGTCCTTAACCCAGCGTTCAGAGCGTTTCATTTGTTTTCACTTCACTCAGCTCAGAATCTAACAAAATTTATACTAACGTTATAAGGGAATAATACTTTCTAGATCGTTCCTCAGCTATTCTTGAGCTGGACGATATGATTTAAGATCCATGTCATGATGTATTGTCACATTTCTTCCTTGAACAATAATAAATATAACGATTTGTATGTTTTGGGGTTACAAATAATAATGTTTTTCAGTCATCAAACAATCTGCTGATTATTTTCTTTAGTTTTCCCCATAAAATGTCGGAAGATCTTCTAGTTCGTCTTTTTGTTAGACCGCCAGCCCAAAACCCAAGACCCCAGAAACTAAATATGTACTAAACTGTTCTTGTTCTTCTTCACATGTTGGATTTTTAATACTTTTCTGAACTGAGTGAACTGTGAGCATCTTAAACCCGAGCCTGATTTTACATCCTGGTCAAATAACATTTCATTTAAAGTGTCCCTGAAGTGAATTTAATTGTTTTAACTTGTAAAAAAGAAAAAATGGAATAGACAAGGAAGCAGCTAAGAAACTAACGGAGCGAAAAGGGAATTGATCTGCTTCTCCTTGTTCAGGTGTTTTTGTTAAATCTGTGAGTTCAGTTCACAGAATCTGCTGTCAGCTCAGACACATCACGGTGGTGATGAGAGGGAGGAAACTTTTTTCTTTGTTTCATTTCAGCTGGTAGAAAACTTTTCCTTTTAACAGGCGTAAACGCTCAGTAGAATGAAAAGAGTCAGTGAACGTAACACAAGTTCAAAGTTTCATGGCCACAAAATAGTGTTTCTGTGTATAAAAATCCGTTTGTAATGCTAGAGAGCCAACGCCCTCCAGTCCTGTCCCGTCCAATCAAACAGTCTCCCCGATCTGCTCAGCGAATCACTAAGAAGGGCTTCTTCTTCTCTGGTCTTGTTGTAAATAAACTTCTCTTTCTCTGTCACTCTCTCTCTTTTAACGGTGACGCCATGTAAATTAGAGAGCACAGGAAGTACTTACTGGATGTCGGGTTGCAGAGTGGAAGTGAAATATTAGAATGTGTGTTTGTTTGGGGGGGAAAAACGATATCAGCATGGACTGAATGTTGCGTGTTTTGGCTCAGTGTTGCGCTGATCCATCCAAGGCAGGAAGTTAAACTTTTGCGGCTCACTAGGCGTCTGAACCAATGGTTCCCAACCTGGAAATGTTTGCAGAACTACGATTCCAGTCCGAAGGGTCGCAAGAAGGTTTACAGGATGAGAAATAAAAAAATTTAACATTTACATGGTACAAAGAGGGCTAGAGTCAAGGCGACTAAAGGCCAGTCCAAGACTATTCCAAGTCTGCGCAGTTTTCAGAACGAATCAAGACCGTGTCCAAATGCAAAAAGTGTTCTGTTGAGACAAAGTCCTAGTGTGGTCAAGGTTGAGTCCAGATGTCTGAAATGTGGTCAAGACAAAGAATAAATGGACTTCAGTCCAAATGCGGTCTATTGTTCTGTCGAGACCAAGTCCCAATGTGGTCAAGGTTGGGTCCAGACGGCCGACATGTGGTCAAGAATGAGTCGACCCGACACCAAATATGGTCACGGTTTGAGACGAGACCAAGTCCCAATGTAGTCAAATTTGGGTCCAGGCGGCAGACATGTCGTCAAGAAAAGATCAACTTGAGTCCAAATTAATCAAGTTTGGGTCAATACCATGAGGCCTAAGAAAGCAAACTATTGAAACCAAAACAGTGCCAACTGGGTATTCGCCATACTGTTGTCTCACTTACAGTACAGTCATTTGGAAAATAAGCTTTACCTGGACTTTATTGGCCGAAGCTGGTGGCTGTGCCTGAGACAGAAGTCCACGATGAAACTGGACTCTAGTAAAGTCCACAAACATGCCTACAGTCTTTGCTTGCTTTCCTTTTGCTTAGTCATCCTAGTCATAACTCCTGCAATGATGAGCGGGGATGAAGTCAGTGGCGTGGACTACTGATGCAAACACGGTTCTGTTTACATCGGGTGTTGGCGTACGTAGATGTGAGAACTCGCGTAGTCGGTGGATACAGTCCACATGGTCATAGCTTTTGGACTAAACCCTTGGAATTTAAGTCGTTGGACATTCAAAGCTACTTAGATGCATAAAGGATGGTAAGGTTGGGATCCACTGGTCTAAAGATGCGCTGGTAATTTTAAGCCGTCACACAAGATTGTAAAGAAACACACCTTTCTCACCCTGATGACGACGACGTAGATTTGACTGAGCGTTGATTTCTTTCGTCGACTGAACGCTAATCGATCGTCGGGATAAAAAGCTGCTTAACCTCGACATTTGTGTGTGATGATTTTCACCTTCAACACTATGCTGAGCATCACCTGCTCGTCTCTTAGTCTTTGCTCTCTCTGCTGTTTTCGTGCTCAAATTGTAACGTAAAGGTTGAGAAGCAGCTCTCAAACCGACTGTGTATCCAAGCAATATTCATAAACTCATCAGTCACCGTCACATGGTGACTTCACACGCTGACGTTGCTGCAATATTCCCGTTAAACCACAAACACACTCATGTTTGTAGACTTGTAAGAAACAGTGAAAAGATGAAGTCATCATGAACTGAAAATATTTTCTCCTTCTGCCTTTTTGTTTTAAACGTCTGCCTTTACGTTCCTAATTTCGTCCGACCTTGTAATTGTACGTGCCACGCCCGTTTGCCCTCCCAGTCATCTCAAAGATGGCATTTTATCTTGCATAAATACTAAACCAAGGGGTTTGACCGCAACTTGTGTTTTCAAACTGTTTATTTTATGTTTATATCCGACTCTGTCCTAACTCTACCCATGACAGCAGGACAGGGCAAAGACGTCCTTTTATTTATGACAGAAATGCACTAAATCTGATTCAGTCTGTCTTAAGCTCAACACTTGCCACTACAGCTTTCTTTTATTCTCATATTGGCACTAACTGACGTTTGCTTATTTCTCTAAGCGGTGGCGGCTTCTGGCGGTGTCCTCTGACCTGATTGGTGCTCTCATTTTAACGGCATCTAAATTCTGAGCAACTTGGGAATCCAGAATCCATTTATTTAAGTTCACATGAGGGGAGAAAGCTCAGTAAAATCTGCTTTTAAATGACTATAGGCACCAAAATAATCCGTTGCAGGGTCAATGATAGCGCTGACCGCTAGCGGTGAACAAGCTAGCAACAAGTGTTTTCATTCTAAGGCTAAACCAAGCATGAAAAGTTGGGAAATGTCTAGATTATAGAAACATTGTGTTGGACAAGTCCGCAAAGTCAGTTTATTTAAGTTGTATGGCGCAGGAGAAGTTCTGTAAGGTTCTAACGTTAACCCTTGTTGCAGCTAGTGGTGAGCACTTTAGCATGGCAGCATTGTTTCAGCTTGCAAGCAGTTTCTACTACTACCAGTAAAAATCAAAATCAAGCTGCAGTTATCTAAACACGGCTAATGGAGAGAAGCAGGGCTGTGTACGGCCCAAGTCTGTTTATTTAATCTCAGAATAAACTCTGTAATGGCTGCTTTTAACTGTTTGAATCATCTATCGCTGAAGCTAACTGTAGCTAGCGGTAAACAAACCAGCATGGGCAGCATTGTTTCGGCTTGCAAGCAAACTATAAATGACTTAAAATTGGAAAATGTTTAGAGAATGGAAATGTCTTGTGAATCTCCAGCCCCAGCTAATGATCAGTTAGCTAAACCCAGCTAATGAAAACTGCTTGACACCGACTCTTTTCAGAACAGTTTTGTTTGTTTGTTAATGCATTAGCTGACACTTGAATCCAAAATCTGATGATTTAATCCCATTGCAGCAAAGAAAGCTCAGTAATATCTATTTGTAGTCACAGAAACTGCTGAGTCTGATCTGAAGCTAATTGCCGCTAGCGCTGAATACGTTAGCATGGTTATTTTCAACTTTATCTAAGCGAACTTTACTACCCGTCTTTCTTATTCTTAAAACTAAACATGAACAGTTGGAACATGTTTAGAGACTAGAAACATCCTGTGAATCTCCAGTTGCAGCTAGCAATCAGCTAGTTAATCTCCGCTAACGGAGCGAGGCGAGGCGCAATATATTCTCTAGTGGCGTTAGCACAGATATAACAAGATTCACGCTGCAAACAAGTGAAGCTGCCTGCTTGTAAATGAATCACGTCTGCTTTGAAAGATCCGGTGAACGAAGAAACCGCGCTAATATTGCAGCTCTGCGCCACCTCACCTGTACATAGACTTCAAACTAAAAAACGACTCAGTATGATCAACGTTTGGTTTGTCTGGTTGTGTTATCTCTTGTAGCCTTTACCCCTAAGCTCCACCCACCAGGGCTGTCCTCCACATTATTTATAAACGAACCCCGTGAGGAAGACTCCGCCCCCTCAAACCTACGTTTTTGTATATTTTTCTCCGACTTCTCCACTTTTATTATAATTGTTATAATTTCATCCAGATGCATTATTGTTCTTATTGTCATTGTTATTCTAATTATTATTATTATTGTTATTGACTTTTTGTTGGCTGTACAGTACCGTTGTTGAAAAATTTTACTTAATACAGAGTCTTCTACTGTAATGTGTCTCTTTTCAATAAAGACAAGAATAATGCTTCTTAATATAA +>XR_002412069.1 PREDICTED: Columba livia uncharacterized LOC110358026 (LOC110358026), transcript variant X1, ncRNA +GGAGGTGTAGGGGCTTACCATACTGTTCATGACAAGATTGAAAAGTATCTGAATGAGATCCAGAACAGCCAGCACACTGCACTGAGTTGCCAAAACTGAGTATATATATATCACAGAACCACGTTGAATTAGTCAGTGGGAACACTGAGGACTTGAGTGCTGAGAGCGACCTCCAGGCACCTTTGCCTGTGACAGATCAGGACTGTGGCCACATATTCCTCCTTGCCACGCTGGTCTGGCTGACTCAGGGAGACATTTACACCAATAGTTGATCCACTCACCTGTGATATTTTCAGCTGATTGACTCAACTGACATGCAGCATATTGTCCTCGAGGAATGACAGCTCAGGAATGCACGAGCCTTGTTCTCCTCCTGCAGCACATCTTCCCCGGTCAGCTGTGTCCCACCTCCAGCCTCACCTCTGCAGCAGCTCCTCTGGTGAGTCCAGCGTGATGGGGACTGACTGTATCATGGGCACATAATGGAAAATTAAGGCAGAAATAAGACTACGAGCACAGGATTACGAGCTCCCTAAGGTGGACACGAAGATTTACAAAGACAATATGTCATTTGGATTTTTCTGATAGAAACGTTTAACAAAAGAATATTCTTTCTAATGGCAATTTTCAATGAGATCCCACTTTCCTGTGGGGGTCTTGTGTGTAAAATTTTTACTATTTCCTTGATATTATTTAGCTTTGCAGCTAATCCATTATACAAAAGGAAATAAGAAAAGAGGGTAAGAAATGCCTTCTTCTGCAATGACATGGTTCTATGTTGATTTTTACATTCCAGGTAGGATAGCTACATAAGGACAGACAGG +>XM_006834443.1 PREDICTED: Chrysochloris asiatica PDZ and LIM domain 3 (PDLIM3), transcript variant X3, mRNA +ATGCCCCAGAACGTGATCCTGCCGGGTCCAGCGCCCTGGGGATTTAGACTCTCAGGAGGTATAGACTTCAACCAGCCGTTGATCATCACCAGGATTACTCCAGGAAGCAAGGCTGAGGCTGCCCACCTGTGTCCTGGAGATGTCATCCTGGCAATTGACGGCTATGATACAGAATCCATGACTCATGCAGACGCGCAGGACAGGATTAAAGCAGCGGCACACCAGCTGTGTCTCAAAATTGACAGGGCGGAAACTCGCTTATGGTCACCACAGGTATCTGAAGATGGGAAAGCTCATCCTTTCAAAGTCAACTTAGAGTCAGAACCACAGGATGTGAACTACTTTGAACACAAGCACAATATTCGGCCCAAACCTTTCATAATCCCAAGCCGAAGCAGTGACCCGGTAGCCTCGGTGCCCCCACAGTCAGATGTGTACCGGATGCTCCACGACAGTCGGGATGAGCCTACTCAGCCTCGCCAATCAGGCTCCTTTCGAGTGCTCCAGGAGTTAGTTAACGATGGCCCTGATGACCGTCCTGCTGGAACTCGCAGTGTGAGGGCTCCAGTTACAAAAGTCCATGGCAGTGCTGGTGGCGCACCAAAGATGCCGTTCTGTGACAAATGTGGCAGTGGCATTGTTGGTGCTGTTGTGAAGGCACGGGATAAGTTCCGGCACCCGGAATGCTTCGTGTGTGCTGACTGCAACCTCAACCTCAAACAAAAGGGCTACTTCTTCTTAGAGGGAGAGCTGTACTGCGAAACTCACGCACGAGCCCGCACGAGGCCTCCAGAGGGCTATGACACAGTTACTCTCTATCCTAAAGCTTAA +>XM_020957015.1 PREDICTED: Drosophila serrata uncharacterized LOC110187620 (LOC110187620), transcript variant X4, mRNA +CTATTCAAAAGTGAAATTCTAACATTTTTATTCAAACAAAATTTTAAGTTGAAAATAGCAAAAAATGCGTGGTATTCTTGGCTGCTTGCTAACTTACCGCATGGAACCGCGTCTTTTGCAGATATCACGTTGTTTCAGCTACCATGCTCCGCATTTCCGTCCGCGTAGTGTGCTCGGTGCCAACAAGCTTTTCGAGCTAGCCAGCTCCACTTCCCCCGGTTGCCAGGCGACAAAGATTACAATATCGACGAGTTCCGGTCAAATTCGGGTACAGAGGTACTCGCAGACGACCTCCAATGTCTTTAACATCACCGAAAATGTGGACATGCTGCGCAAGCGGATTAGCTTTACTGGTGCACCCAACACTACTGCTCAGATCCTGCCCATTGGATTAATCACACCAGAAGCTGGTGGCGAGAAGGACCTTAAGATCGTGATTGTTCCTTTAAACTTGGCTGGCATGGATGCCAACGCCCTGAAGGAGACGCTTGAGGCCATTAACCAACTGCGCATGTACGCGCACCATATCGAGGCCTTTTCCAGCAGTATGGTCGACGACTACAATGCCTTGAATGAGGCCTTCCAGGAGGTTGAAGCGAAGAAGGAACAAGAAGCAAAACCGGAGGTTACCGCCGAAGATAATGCAGTCTGGGAGGACTTTGCCACACCCGATGCCACAGCCGATGCCGTGGCCACTCCAGCGGTCGATCTGCCCCTTCAGACCGACACGCCATTGCAGCGCCAGGAGGCGGTTAGCTTCCTAATTGATACCTTGACTAATGCCACTCCAGCAGCTGCCCCCCCGCCGCTGAAGACCACCAAAACTATATCGGCCGTGGCTCAGCCCAATCCGGAACCACCTAGCCCAGCCTCGACCATGGAAACCGACCTTCAAGCAGCTATTCAGGGGGGCGATGCCATTGATGAGGTTCAAGTGGATGTTCCACAGGACCTAAGTGATCGCCTCAACTGTATGGCCGTCTCCTCCATGGAGCTCTCATTCGAGATGGACATGACCAACCTGCGCGAAGCCCTGTCCAACAAAGACGCCAATGCTGTTAGCAACCAAGATCCCATGATTTGCATGCATACCAAAGTGGAAATGGAGAAGCCTACAGAGGGAAAACAAACTGTTCCGCTCAGGTTCAATGGCTTGATTTCGGGACTTGTGGAGCTCGATGCCCAAAAGCTGAATTTGACGGACGAGCAGATGACCGGCTTTAACGATAGCCTCACCGCGTTGGCGGCCAACCTGTGCAGCACAGCCTTGGATAAAGGCTTCTCCAAGGACATCAATCTAACGTTAAAAGCGGATGACACCACCATGAGCCTAGCGCCTAGTGCCGAACTGAAGATTGCTGATCAGCCTCAGGCGAATTTTGCGCTTCCTTTGGAAGTGCCGGTGCCGACTGATAAAGATGGGTGCAAGCATCCACCTGTAAAGCCGAAGCGGAAGTGTCCTGGCAAGTGTCCTCTAATTGATGATCCCTGCAAGGAGAATCCCTGCAAGCGACCCGCCGAAAAGCAGAAGCCGCCTAAGAAAGCTGAGAGTACCACGGAGATCATAGCTTTTGCCAAGGACCCCTGTGAGAAAAAGGATCCATGTGCCAAGGACGACAAGGATGCCAAGAAGGACCCATGTGCCAAGGAAGGAGGCAAGGATGGCAAAGATGGCAAAGATGGCAAAGATGGCAAAGACGGCAAGGGTGGCAAAGATGGCAAAGACGGTAAGGGTGGAAAAAATGGAAAGAATGGGAAGGGTGGCAAAAATGGCAAGAACGGCAAGAAAGACCCTTGTGCCAAGTTCAAGAAGGATGGCAAAAGTGGCAGCAAGTTTTCGACTTTCGCCGCACATCATAAACCCAACAAGCGCTACCTATCCACGGCACTGAATCAGGTTTTTAAAGAGACTGGATCACATTCAAGTCCTAAGGGTCCACGTTTCCTTGTCCACTCGACACTTCTGCGTCGTCACTATCGTGGCACCGTTCCAAAGGCCCCAGAATCTGACCTCAAACAACGAATGGTGCACAAGGCTAGTCCTCCTGCCCGCTTTACCATACACTCGACCATTCTGCGTCGAACCTATTCAAAAAAAAAGAAGTCTGGTAGCGGCAAGTGCTCTAAATTGCAGACCAAGTTTCCTACAAGTAGGGGCAAGGATATCAAGGAGCGCACGGGTATTCGCGACGACTGCTTCAAAGATGACGCTGACAGCTGCCCCTTAAAGACCTGTAGCGGCAAGTGCTCCAAGGTCAAGTTCCCCAAGAAGAAGTGTGACCGCAGTAACAAGGACAAAAAAGAGTAGACAGGCTGTTGGGCCAGGGTGCTCCAGTTCAGCTGCCATCGCAGCAACGATCATTCAGCAC +>XM_019302128.1 PREDICTED: Ipomoea nil putative late blight resistance protein homolog R1C-3 (LOC109154305), transcript variant X2, mRNA +GTTTCATTAAGCTACAAGTACTTACCTTGTGATTTGAAGGATTGCTTTCGTTATTTTGGTGTGTTTCCAGAAGACAATGACATACCTGTTAAGAAATTAATCAACTTATGGGTTGCAGAGGGATTTATAAAGCCACATGACAATATGAGTTTGGAAGAAGTGGGAGAGAGTTACTTGCATGATCTCATTAATAGAAGTCTTGTTCAAAGTAATGAGCTAAGTATTGACGGCAAAGTTAAATCATGTAGCATTCATGATCAAGTGCACAAGGTTTGTGTGAGAGAAGCAATAGAGTGGAATGATTTGTGCATTATCAATGACAATCATGCTCCAAACGCTTGTTGTTGGTTAAGCTGTCAAACAAGTCATTGGCCAATCACTCGAGCGAGTTACGAGAATTGCGGTCCTGATGAAATCCATTCTGTTCTCTGCTTTGGTAAAGATGTAAACCATTCAAAATGCAGGTTTGTATACCCATCTTTGAAATTGCTAAGAGTATTGGATTTATCATTAGTTAAATGGTCAAGAGGCATGCCTAGAGAAATAACAGACTTGGTTCATTTGAGATACTTGGCTTTAAGTACCATTGGTTCTCTTTACCAGTTTCGATTTTTCAAGCTTAAGAATTTGGTAACTCTCATAGTTACTTCATGGATGGAAAAATGTCCTTTGCAACTGCCATGTGATATTTTGGATTTGCCACAATTGAGGCATTTGCATGTTGACAAGAGATGTTCACAATATCTCCGTAGCTTAGTAAAAAAAAAACTACAAACTCTTTATTGGTTGAAGGTTGCTAACTCTGATCAAAGCCCAAACTTCGAAATGGTTCCAAACCTAAGGGAACTTGGGATTTACATTGAAGGCCAACTGGCGCCTAGATATCTAGGGAGCCTTGTGCATTTACATCTACTTGAGAAGTTGAAGTTTGAAGTAGGAAGAGTTGAGCGCTTTTATCTACCAATTGGTTTTCCGCCAAACCTAAAGAAGTTGACACTTCGTTATACTTATCTTCCATGGAAAGAGATGGACACAATTGGCAAGTTGCCACACCTTGAGGTGCTTAAACTAAAAGATTTCGCATTCTATGGCTCAAAGTGGGAACCATCAAAGCAGGGCTTTTTGGAATTAAAGGCACTTCTCATTTCACGTTCAAATCTCAAATATTGGAATGCAAATTCTAATCATTTCCCAGTTTTGGAGCGCTTGGTCTTAAGATATTGTTGGGAATTGAAACAAGTTCCAATTAATTTTGCAAATATTGGAACACTGAAGTTAATTGTGTTAGAAAGTTGTTATTCTTCTCTTGTGAGTTCTGCAATGCAGATTTCCTCTGCAAAGAAGTTATTGTTTGAGGGAACGACAAATTGTCCACTTCGTGTTCGTGAAGTTAGAACTAAGGTTGAATTGCCAAATAATGAAAGCTCTGAAGAAGAAAGTTGTGGAAAACTTTGAAGAAGAAAGTGTGAA +>EU813087.1 Uncultured bacterium clone DP1_95 16S ribosomal RNA gene, partial sequenceEU813284.1 Uncultured bacterium clone DP3_43 16S ribosomal RNA gene, partial sequence +ATTAGATACCCTGGTAGTCCGCACGGTAAACGATGGATGCCCGCCGTCGGCATATGATGTCGGCGGCCAAGCGAAAGCGTTAAGCATCCCACCTGGGGAGTACGCCGGCAACGGTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGAGGAACATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCCGGGCTTGAACTGCAGGAGAACGATTCAGAGATGATGAGGCCCTTCGGGGCTCCTGTGGAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCGGCTTAAGTGCCATAACGAGCGCAACCCCTCTCGCCAGTTGCCATCGGGTGATGCCGGGCACTCTGGCGACACTGCCGCCGCAAGGTGTGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTACGTCCGGGGCTACACACGTGTTACAATGGGGCATACAGAGAGTTGGCCATGCGCAAGTATGGCCGGATCAAGAAAGTGCCCCTCAGTTCGGACTGGGGTCTGCAACCCGACCCCACGAAGCTGGATTCGCTAGTAATCGCGCATCAGCCATGGCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCAAGCCATGAAAGCCGGGGGCGCCTGAAGTCCGTGACCGCGAGGGTCGGCCTAGGGTGAAACCGGTGATTGGGGCTAAGTCGTAACAAGGTAAC +>XM_043073989.1 Brugia malayi Uncharacterized protein (Bma-cdh-5), partial mRNA +ATGATGATAACAACATTTGCGCTACAAACGATTCAAAACAATATCAAAATCTCTTCTTTACATTCGCCAACATTAAAGGCTTCATCGCATGAAGGTTATATACCGGAGTCAGCACAAATGGGTACCGCGGTTCGAGTTTCTCCTTCTGCATTTTCAGATTCACTTCAAATAGACATTTATGATGATGACCTGAAACCTGGAATGTCTCCAGTCAGTTATGAATATATATTAACAGGACTAGGCTCGTCCATATTTGCTGTTGACCAGAGAGGTTATGTCTACTTAAATGTACCATATATTGATGCTGATCCTCCGAATCCATCAACATATCAGCTTCATATAGAAGCTCGAGAAGTAAACACGACCCCAACTCGTAGTAGTGAACCAATATCAGTAATAATACACGTTATGGATATCAACGATAATCCACCCCGCTTCAGTTCCTCTATTTATACTGCCAATGTCAGTGCTAATGGTACTATTGATCGCCCTGTCATAAAGATTCATGCAACGGACAATGATACTGGCAAAAATGCACAAATAAGTTACCATTTGGTGTCAATAAGTGATGGAGCGTACAATAATTTTTGGTATGACAGTAAAGCGCATCAATTAAATGCTGTTGGAAACTTGAAAGCTGGTGAACGATATGAAGTTATACTGAGAGCAACTGATGGTGGCGGCCTCTCAAATCAAGCATTAATAATTGTTTATTCTGTACCTGATAATTTTCCAAAAGTAACAATGCTTGACCAGAAAAAGGAATCATTCGGACGGAACCAGATAGCCGGTCTATCTAATTTTTTAGTGGCCAAGTCATCGATTACATCTACATCTGAAAGTATTGATTCACCTGAAATGATCCAAACTTACGTTATTGAAATAAGCGAAGCAATTCCACCTTACTCCATTATCATTACACTTGGGGATGATTCAACGAAGGAACAAGTATATCACACGATCACCGGTGGTAACGAAGATAACAAATTTGCTGTCAGAAACGAAATTGGGGCTTTAATTACGGTGAAGTCGTTTGATAGAGAAGAAACGTCACTTTACACTTTAGAAATCGAAACACGCTCTTTAAAGCTAAATCAACACTTGCATTGGACGATTGTCCAGGTTGTTATAGCGGATATCAACGATAATGCACCAATATTCACTGATCCGCAGCCAGTGAGGTTGCGTGTTAATAAAAGTGGTGTAGTCAATTTTGCCCCAAATACGTATTTGGGGCAAGTGAACGTAGAAGATCCAGATGACGGTGATAACGGACATGTGGGACTCAGAATAGCATCTCCTATGAATAAATTGTTTTCAATAAATGACAGCGGTGCTGTTATGGTAAATGGTGATATGTTAAGTGGACATTTTGGTGAGCATCGAATGACTGTTATTGCCACTGATCACGGTGATCCACCTCTTGAAACTCGAGTCAATCTAATCATCAATATTGAAAATACCGCACAAAGTGTGCTATCAAATTCCATTCAGTTATCAAAAGAATCGAATAGTTTGGAACGTACGAATTTGATGCTGAATAGTACTGGTTCTGTGCAAAATGTACAATTCACATTCGATTCCTTTATACCAGCAACCATGCAAACAGCAGCAGAAAATCCAACACTGCGACTTGCGCCTGTGTTCGAGCTGTCTGAGATTGAAGTTATTGTAGAAGAAAATCAAGCAGACATTGAACTCGTCAAGCTTCATGCTTATTATATGGATGGTAAACCTGGAAGCATCACATATATCATGCTTGCAGGAGATTCATCTCTTTTTAATGTAAACAGTTTCACCGGATCGCTCCTTTTGCTGCGCCCGTTAGATGTGGAAAAAGAAATGTCTTATGAAATTCAAGTTGGTACTGCCGAGGCGACTGTTTTGTTCACCGAGCAAAATTTCCCATATACGGCCTTGGTTCATGTGAATGTTGTAGATGTCAATGACTGGATACCAAACTTTGAGCTTGATAGCTACCAATTTAAAGTGAATGCAGATGCCAAACTCGGCACAGCTATTGGCCAGATTGTGGCATACGATCAAGATAGAACCGCACCGAATAACGAGATTCGTTATCGGATCAAAGAAAGGGACACTAATGAATCATACGTCAATGTAGATCCCAAAAGCGGTTTACTAACTGTCGAGAAAAACCTTCGTCTACTTGCAAATAAAAAAATTTCGTTAAATATAGAAGCAGCAGATGACGGTACGCCGAAACGGTCTAACGAAACGCTTGTTTCAATTGATGTTGAACCTGTAGAAACTATCACTACCATTTTAACAAGAATGCCATCAACGTCTGATGCAATGTTTTCTAACAATAAATTGCAGTTCTCGCAACGGAATTACTTCACTTCTATATCGGAATCGATTCGTTCGCCACATCTGTTACTTGTTTTACCAGTACTGAACAAGTCAGCAAATGAGCGTTTCACAACTTGTTCAATCATTTCTGGTGATTACGGAGGAATCTTTAGCATTTCGACTAACTCCGAAGGTAACTGCGACCTTCGAATGCATGCGTTACTGGACCGAGAAACAGTGGACTCCTATCAATTAAACGTAAGCGTAAAAACAGAACAACAAGTAGACCATGCAATTGTCCATGTAACTGTTCTTGATACATACGATAATGGTCCGAAATTCATTTATAATAACGATGAATACAATGGATATTTTGCAGCTTTGTCCACTGATGCCTCTTCATTTGCATTTCTCACCACCGTGCAGACTAAGAATGTCGGTTTAAAAAACAACAGTGTTATTGTATATTCGTTGGATTCGTTTTCAATGGACTCGAAATACTTTATGGTTGATTTGAGCGGAAAAATCCAGACAAAAATGAGTGCATCACAAATGATGAAAGATAGTCAGAAAAATTATTTTAATTTCCGAGTGATCGCTTGTGACTCTTCTTATACTGTAAAGAAACTGTGTTCCAAAGCGGAGATATTCGTGAATATAATCAGTAATTCAAACCGATTCATTCTATCAGTTCTCAATACCGAACCACATCATCTCATAATTGCTAAAAGGGAGATTGCAAAAATATTGCGAGAATTCACTGGTCCTTGTAAACTACTTCTCTTGGAAAGTATAGAAGGCCGAACTAATATAAAGAAGCAGAAACACGTCGACATGCGCTGGTATGCTATAAATCCAACAACAAAAAGGAGTTGCGAATTTGATGAGTACAGCAAACTTTTCGATAATTCAACGATAAGAATGGTTGCTGAAAAACTAAAACAACGACTTATTATTGGTGAAATCCGTATTAACTTAAAAAATGTGTTTAGCGAAAATGCGTTGTTTTTAACAAATTTCAAAACGGTTTCTGCTGCAATAATTGTACTAGCAGTGGCCATAACAGTTGGAGCACTCCTTGGGATATGCGTAATATGTTTGTACTACATGCGTCATCGGGTGAAACGACATTCAAAACATGAATATCCAAACATTAATCAAATTCCAAAATTTGATGCCATATTTCTACCCAATCCACCAACCGGAAACACCCATGATATGCTTTATGAATCTCAAATGCTCGAAATGCCAATGGGAGAGGAAAACAGTATGCTCAAACCAGTAGGAAAGATAAACGGAATATCCGCTGCTGCATACGGTTCCAACAGCTACGATTTGGATCTAAAGCAGAGTTATCAGAATTATGCTCAAAACGCATTGTCTGATAAAAAAATTTTCGTTGAAGAAAAAATGTTTTCGGTCAGTGAACGAAGCGGGCTACATCCGCAAAAGAACAAGAATTGTGCATTCACAGCAACAAGATTCCCAGTGCAAAACTTTTTCTAA +>XM_040515260.1 PREDICTED: Rosa chinensis uncharacterized LOC121051827 (LOC121051827), transcript variant X7, mRNA +GTTATGAGTCATCTAATTCTTTCTCAATCTCAGGTGCTATGCCTCCTAGACGCCGGACTCGTGGGGAGACCCCTCCCATTCCAGGAGATGAGAATACTCCTGGAGGAATAGCGGAAGCTTTGGGACGTATTGTGCAGCAGTTGACTGCAGCGCTTCCGGGCTCCAGAACCGACTTTACCATGGAGCGAGCGAAGAGGCATGGAGCTTATAGCTTCTCCCATGCTCCTGATGCTATGGATGCCCAGAATTGGTTGAACAAAATGGAGAAGGTCTTCACTCAAATCCATTGCCCAGAGGATCGAAAAGTGGGTTTAGCAGTGGATTTTCTTGATGGTGTGGCTTTTGATTGGTGGGCTTTTACTAGCAGGGATTTAGAGAATGATGGCCCAATCACTTGGGAACAGTTCAAAGAACATTTTACTGAGAGATATTATGGTACAGCTATCCGTGACAGGATGAAGTATGAGTTCTTGCATCTACAGAAAGGGGACATGACCGTGACAGAGTTTGAGCAGCGGTTCACCCAGCTAGCCCAGTTTGTGCCTGATCTGGTTGCCACTGAGAGGGAGCGGATCTATAGGTTTGTTGATGGATTGGGGGGTAAGTATTGTGAGCAGTTGACAGGAGTGCCATTTAGTGATTATGCTGAGGTAGTTAATGCTGCTCTGCGACTTGAGACTATGTATATGTCTGGTGTCCGACCTCGAGATGTGGGTGGCCCCAGTCAGGGTCCATCCAAGAAGGCTGCTTCTACCTCTAGGACAGGATCTTCAGCAGGTTTAGGGTTGTCCACTTTTAGGGGAGATTCTGACGAATTTTTCCGAAAAGTGGGCCCCGCAGGTCCATTTTGGAGTTAGGAGGGTAATTCCGGGGTGGGTCCTGACAATATGTTACTTTATGCAATGGAGATCATCTCTTCTATATATGCTGAACCTGCATCTGGAAATACCAAACTTGGCACTGTCATGGACAAAAGCATTTGCGAAGATGTGTCAACTTTAAATGTTTGGGGGCATAACTAAGTTCTTTCCTCTTTAAGTATGCTGCAGTCTGCATGCACTATACTAGGATAGACCAGGTGTACCCTCAATCCCCGGAATAGAACGATCCCTACTTACTTAT +>XM_048494676.1 PREDICTED: Sphaerodactylus townsendi CD200 receptor 1 (CD200R1), transcript variant X3, mRNA +GGAAAGTTAGGGATGTGAACAGGAAAACTGAGATGCCAACTGGACAGAAGTAGACTGGTTGAAAAGATGTTCATCATAAGAGTGGCTAGATGTCTGCCATAATGGATGTAATGGTGAGAGAACTATGTGAGCCATGAAATCTGACGTTCATTTTGTTATGAAAGCCACAAGTGCCAGAATTCTGCTTGCTGTCATAGTAATTATGATACCAGTTGGGTCATTCCCAGCAACAGGCTCCATTCAAAACAGGTCTGCACAGTATCTTTCCAACCATTCAGCTAGCACAGTGACAGTGACCAAGACTGCAACTCAGCTGGCAGAAGAAAAATCGAGTCTATCTGCAGTGGTTGGTTCATCACTCACACTGAAGTGTCCCTGGCAATGGCAAAGAACCTTGTTAACTGTATGGAATGTGAAATTTATAAATGGGACAAATTGTCATTTATCCTACAAAAGTGACCGAAACCTGTCTGTTACAAACTGCAATGAGAACGTTAACTGGTTATCGAGACCCGATCAAGAATATGCTCTTCTTATAAAGCCTGTGCAGATTTTCAATGAAGGATTTTATAAGTGTTCTAGTTCAATTGATAAGGGCACTTTCATTCATGAATATGCTCTAACTGTGCTAGTGCCTCCTCAGGTGCACCTGACCCATGACTACAATGGAACTGCTGTGTGTACGGCAGCTGCAGGAAAACCAGCTGCCCAGATCTCATGGGGCCAGAAAGGGGATTTTATCACAGTGAATGAAACTTTGCCTAATGGCACCAAGACCGTCATAAGCAAATATAAGATCACCAGTGCTGAAGAGAACAATTTAACTTGCTACATTTCCCATCCAGCTTGGACGAACTCACAAGTCTTAAGTTTCCTGTCAGGCACAAGAAAGTCAATACATCTAAAAGTCCAGAAACAATTTCAAGAGGCAGCATTCAGGAGAATGAGATGGAACCCTATGCCACCTTTGTGCAAATGGAAAATGTGATCTACGATACAACGTTTGACACCTCAATGGGCAAACACTTCCCACCCGGGCTTTCACCTTCCACATAAGTTTCAATATGACTCTAGCTTTCTGTGCAAAGGAGACAGAGAAACACAGCATAATAGGAAGAGGAAAGACAGCTGTTGCCTTTTAAAAATGACCTACCAAAAAACGTGGTCAAATGTT +>XM_046460927.1 PREDICTED: Marmota monax MIA SH3 domain ER export factor 2 (Mia2), transcript variant X18, mRNA +AAGGGTACAGGATGTATTAGAATCTGAAATCTTTCTCCAGGATATGAGGTGCTTAGAAGAACTTTATTTACATCTAAGGTTATCTTAACATGAGCCATTTAAGGAATGGAATTGAATGATCTGGAGGAAGAGGTTGTGGAAGCATTGCCTGAAGATATGAGACCAGGCCCTAATCCTTATGGCCTTCCGTGGGAGTTGGTGATTTGTGCAGCTATTGGATTTTTAGCTATTTTCTTGTTTTTGTGGAGAAGTTTTAAATCTGTTAGAAGCCGGCTTTACATGGGAAGAGAAAAAAAGCTTGCTCTAAAACTTTCTGGACTAATTAAAGAAAAATGTGAACTACTTGAAAAAATTAGCCTTGTTCAAAAAGAGTATGAAGGCTTAGAGTCATCTTTAAAGGATACCAGTTTTGAGAAGGAGTCAACAGAAGCACAAAGTTTGGAGGCAACATATGAAAAGCTGGATAGGTCCAAGTCTAAACTTGAGGATGAAATACTCTTTCTAGAAAAAGAGCTAAAAGAAGAGAAATCTAAACATTCTGAACAGGATGAATTGATGGCAGATATATCAAAAAGGATACAGTCCCTAGAAGATGAATCAAAATCTCTCAAATCACAAATAGCTGAAGCTAAAACAACCTTGAAAATATTTCAAATGAATGAAGAACGACTTAAGGTAGCAATGAAAGAGGCTTTGAATGAAAATTCCCAACTTCAGGAAGGTCAGAAACAGCTTTTGCAAGAAGCTGAAGTGTGGAAAGAACAAGTGAGTGACCTTAATAAACAGAAAATTACATTTGAAGAATCTAAAGTACATGCAGAACAAGTTCTAAATGATAAAGAAAATCACATTAAGTCTCTGATTGAATGCTTGCTAAAGATGGAAGACTGGGGTGCTGTGCTTGGAGAAGACCTAACAGATGATGGTAACTTGGAATTGGAAATGAACAGTGAATCAGAAGTTGGTGCTTACTTAGATAATCAGCCAAAAGGAGCTTTGAAGAAAGTGGTTTATGCTGCTAAGTTAAATGCCTCCTTAAAAACCTTAGAAGTAGAAAGAAATCAAATTTATACTCAATTATCTGAAGTAGATAAAACAAAGGAAGACCTTACAGAACATATTAAAAATCTTCAGACTGAGCAAGCATCTTTGCAGTCAGAATATACACAGTTTGAAAGTGAGAATCAGAAGCTTCAGCAGAAACTTAAAGTAATGACTGAACTATATCAAGAACATGAAATGAAACTCCACAGGAAATTAACAGTAGAGGAAAATTACCGGTTAGAGAAAGAGGAGAAGCTTTCCAAAGTGGATGAAAAGATCAGCCGTGCAGCTGAAGAACTGGAGACCTATAGAAAGCGAGCCAAAGATCTTGAGGAAGAATTGGAGAGAACCATTCATTCTTATCAGGGGCAGATTATTTCCCATGAGAAAAAAGCACATGATAATTGGTTGGCAGCTCGGGCAGCTGAAAGAAACCTTAATGATTTAAGGAAAGAAAATGCTCACAACAGACAAAAATTAACTGAAACAGAGTTTAAGTTTGAACTTTTAGAAAAAGATCCTTATGCACTTGATGTTCCAAATACAACATTTGGCAGAGGCTCAAGAGGCCCAAAGAATCCTCTGGATCATCAGATTAGCAATGAAAGGGGAGAATCAAGCCATGATAGGTTAACTGATCCTCATAGAGCACCTTCTGACACTGGGTCCTTGTCACCTCCATGGGAACAGGATCGTAGGATGATGATCCCTCCACCAGGTCAACCATATTCTGATCCACCTCTTCCTCCACAAAGGCAAGATAGATATTATTCTAATTCTGGTAGATTATCTGGACCAGCAGAACTCAGAAGTTTTAATATGCCTTCTTTGGGTAAAGTGGATGGGCCTATGTCTTTAGAAATGGAATCCAGTACAAATGATACCAAAGATGATCTTGATAATTCAAATGTGCCTGATTCATCTCTGCCTGCTGAAAACCAAGCAACTGGCTCTCGCTTTGGTTTTTCACCTCTTCCTCCAATCCGAGGTCCATTGTTTCCAGTGGACCCAAGGAGTCACTTCATGAGAAGAGGACCTTCTTTTCCTCCACCTCCTCCACCTCCAGGAAACATGTATGGAGCATCTAGAGATTATTTTCTACCTGGCCCACCACCCCCTCCATTCCCAATGAGAAATGCTTATTCACCGAGGGGTTTTCCTCATTATCTTCCCCCAAGAGCTGGATATTTCCCCTCACCCCCACATTCTGAAAGTAGAAGTGAGTTCCCTTCAGGGTTGATTCCGCCTTCAAATGAGCCTGCTACTGAACATCCAGAACCACAACAAGAAACCTGACAATATTTTTGATCTCTCTTCAAAATGGCAAAAGACAGAAGATTAAATATTCTTGAACCACAGCAGTGATGCTTTTATAATTGGAACACTTCATGCTAGCATTTCCCAGACGTTATTTGGAACCCTGGTCTTGTGAAGTATTTCTTTTCTTCTTCCATTACCATCCCCACCTTAGAGAAAAAGGGTAGAAAGAAAGATTGGGTAAATCTTGGGTAAAATAAATGCTTTGCGTAAAATATTAAGTGAAATGAGAACTGTAGAAACATGATTACATTAAAGTTTGTTTGCTGTGGTCTAAA +>XM_053649385.1 PREDICTED: Ictalurus furcatus tubulin cofactor a (LOC128622690), mRNA +TCCATTACACGTTGGGCAGTCGGGCATTTTGGAAGTTTAGGGAAGCTTGTATTTCAGCTGCTGTGTTTGTGCGTACTTACGACTCTGCACTTACCACACTTCTCAGAAATCATCTTTATTATGGCGGATCCAAGAATACGCCAGATAAAAATAAAGACTGGAGTCGTGAAACGGCTCGCTAAGGAAGAGGTGTTATACATAAAGGAGGCAAAACAGCAAGAGGAGAAAATTGAACGCCTGAAAGCAGAGGCAGGGGACGAGTATGTCATCAGGAAACAGATGGAGGTGTTGCAGGAGTCAAGAATGATGATTCCAGACTGTCACCGCCGTTTAGCCATGGCTCATGCTGATCTGCAGCAGCTGTTGGAAATGGAGGTGGATGTTGAAGAATCGGAGGAATACAAGGAGGCCAGAAGTGTTTTAGACTCTGTCAAACTGGAGGGATGATGTAAACACACATGCGCAACAAGTGTCCATTCCATTATTCAGGACTTCTTAAAAATGTTGATTCGGAAATAAGTCTGGTCATCGTCTCATTGTTGTATTGATTTGTAACACTACGAATAGTGTGCCTCTGCGTTCTCTGTTGATTGTTCACAAAACTAAATAAACAATCTTATTATTCAA +>MT512057.1 Pythium aphanidermatum strain Sala1 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene and internal transcribed spacer 2, complete sequence; and large subunit ribosomal RNA gene, partial sequence +ACCATAAAAACTTTCCACGTGAACCGTTGAAATCATGTTCTGTGCTCTCTTTCGGGAGGGCTGAACGAAGGTGGGCTGCTTAATTGTAGTCTGCCGATGTATTTTTCAAACCCATTTACCTAATACTGATCTATACTCCAAAAACGAAAGTTTATGGTTTTAATCTATAACAACTTTCAGCAGTGGATGTCTAGGCTCGCACATCGATGAAGAACGCTGCGAACTGCGATACGTAATGCGAATTGCAGAATTCAGTGAGTCATCGAAATTTTGAACGCACATTGCACTTTCGGGTTATGCCTGGAAGTATGCCTGTATCAGTGTCCGTACATCAAACTTGCCTTTCTTTTTCTGTGTAGTCAGGGAGAGAGATGGCAGAATGTGAGGTGTCTCGCTGGCTCCCTTTTCGGAGGAGAAGACGCGAGTCCCTTTAAATGTACGTTCGCTCTTTCTTGTGTCTAAGATGAAGTGTGATTCTCGAATCGCGGTGATCTGTTTGGATCGCTTTGCGCATTTGGGCGACTTCGGTTAGGACATTAAAGGAAGCAACCTCTATTGGCGGTATGTTAGGCTTCGGCCCGACGTTGCAGCTGACAGAGTGTGGTTTTCTGTTCTTTCCTTGAGGTGTACCTGAATTGTGTGAGGCAATGGTCTGGGCAAATGGTTGCTGTGTAGTAGGGTTTTGCTGCTCTTGGACGCCCTGTTTTCGGATAGGGTAAAGGAGGCAACACCAATTTGGGACTGTTTGCAATTTATTGTGAACAACTTTCTAATTGGACCTGATATCAGGTAAGATTACCCGCTGAACTT +>XR_007174521.1 PREDICTED: Salvia hispanica uncharacterized LOC125211483 (LOC125211483), ncRNA +AGGCTGCACAACACACAAGTATCATCAACAGTTAGTCAGGCGGGAGAATTACATATATGTTCCATCAAGAGAGTTTGACAAAATGAAATACTGGGGGAAGAAGGAGCATTTCAAACCAGCTGTGACTATGAAGCCATACATTGTTGGACGATATACTCAAATCACAAGAACACAGAAATATCTAGGATATCTTATAGCTACCCATATCATATCATATTTTGTACAGATATCTAATAAGATTAGGATTATGTCGCACTTGTAACCCCAAATATCCATCAGCACCCAAATATCTAGGCTTAATGCGTCTGTCAATTGTTCATCATCAATATATAGTCCATGTCCCAAAAAAGGAGAAAATATACGTTAGCAGAATTGCAGAGATAGAGTTGTTTGTCACATCTATAACACACAATCACATATTCACATAAAAAATCTAAAACAAACTCAGAAAACCTACTTCAAAATGGAACTACACATACTTAACAATTCAACATAAACTTCACCAGAGAATAATCCTATACATTTTCTCACAAGTACTACTTGATAGAAAA +>XM_021335350.2 PREDICTED: Helicoverpa armigera UTP--glucose-1-phosphate uridylyltransferase (LOC110376763), transcript variant X1, mRNA +TCATGCGAGCGTGACGTGTGCGCGGAATTTTAAAACAACATTTTTAAAAGACGTTTTTTTTAAATAATTTTAAGTGTTTTTTTTTGGTTAAATAATGGATAGTGAGGCTGAACAGTGTCGGTCATGGGTACGTGATATGTTAAGAAATAAAAATGGGAGTATCCGCAGTCACCAGAGAACTCCCTCAGGTTCAAGGGACTTCAAAGAGGCGACCAAGCGCGATGCTCTCACCCGGCTGGAGGTCGAACTGGAGAGACTCCTGGCTTCAGTCCACGAGACCAGAAGACCACTCGTTGAAAAGGAGTTCAGGGGTTTCAAGAACTTGTTCAGCAGATTTTTGGCGGAACAGGGTCCATCAGTAACATGGGAGAAAATCCAGAAACTCCCAGAGGGTGCTGTCATAGACTACTCGTCACTCACCACCCCCACCACAGACAATGTTCACCACATGCTAGACAAGCTTGTGGTGGTCAAGCTCAATGGTGGTCTGGGAACCTCTATGGGTTGTAAGGGTCCTAAGTCTGTGATACAAGTCAGAAATGATTTGACCTTCTTGGATCTTACTGTACAGCAGATTGAGCACCTAAACAAAACGTACAAATGCAACGTGCCCCTAGTTCTAATGAACTCGTTCAATACCGACGAGGACACGCAGAAGGTCATCCGCAAGTACCAGGGCCTGAAGCTGGAGATCCACACCTTCAACCAGTCCTGCCACCCGAGGGTCAATAGGGAGTCACTGCTGCCGGTGCCCAGGCATGCTGACGTACAGGCTGACATTGAGTCATGGTACCCACCCGGTCACGGAGACTTCTACGAATCATTCTACAACTCAGGTCTTCTACAGAAATTCATCAAAGAAGGCAGGACTTATTGCTTCATCAGCAACATTGACAACTTAGGAGCCACCGTTGACCTGAACATTTTGAACCTACTCCTCAATCCTGATCCCGTGAAGACCGTCTCCGAATTCGTTATGGAAGTCACTGATAAGACCAGGGCCGACGTTAAGGGAGGTACCTTAATACAATACGAGGATAAACTAAGATTGCTTGAAATTGCTCAAGTACCAAAAGAGCATGTTGATGACTTCAAATCTGTTAGCCAGTTCAAATTCTTCAACACAAATAACTTATGGGCGAAATTGGATGCTATTCAGAGGGTGGTCGAACAAGGTTCTTTAAATATGGAGATTATTGTGAACAACAAGCATTTAGCTGATGGTCTCAACGTTATACAGTTAGAGACAGCAGTCGGAGCCGCAATGAAGTGCTTTGAAGGAGGCATAGGAGTAAACGTGCCTAGATCTCGATTCTTACCTGTTAAAAAGACCTCGGATCTTTTACTAGTGATGTCCAACTTGTATAGTTTGTCCCACGGATCTCTAGTGATGTCTCCACAAAGGATGTTCCCATCGACACCTTTAGTGAAGTTAGGGGATAACCACTTTGCGAAGGTTAAGGAGTTCCTGAACAGATTTGCTACGATACCTGACCTGATTGAGTTGGATCATTTGACGGTGTCCGGAGATGTGACTTTCGGCAGAGGAGTGTCTTTGAAGGGAACAGTAATAATAATAGCCAACCACGGAGACAGGATCGACATACCTTCAGGAGCTCTGCTTGAGAACAAGATCGTCTCCGGCAACCTTCGTATCCTCGACCATTAAGCAACAACTATTTAGCTAATATACCTTTACTAAAGGTGGATTTCAATACCCTTATCCATCCGTTGATTTTATGACGGATACGTTATTGGAATTTAAAGTAAATTGTAATACTTTTAGGTCTAGATTTGTTGAAATGGAACTTCTTTGAACATGGTGAGGAGTAAATTTGTACTACGTTTTTGTTTGTATAATAACATGATATGGTTATGCTCCGAAGTGTTATAAGTTTTTTTGTTACTAAAAGTTGTTATAAATTAAAATATATTTTTTGTGGATACTATAAAAATGAAGATTGAGTGAAAAGTTAGGGTTTAAAAGAATGAAGTTGAAAACTTTGTGGTTTTTAAAGAAGTTCCATTTCATTTGCGTCTAAAGAGGTGCGCGTTCTTTTTTATACGTCTATGTATTTGTCTATTACATGTGCATTAGTTGCCCATAGACTAAGTAGTTCCATATTCAAACAAAACAAGAGTTAAACTTACGAAATTGCTTAAATTGAGGATTACCTATGTATCATGAATTATATGGTTGTTTTTTGGTTTTAATTGGTATAATTATTGAAATTGAGATTTAAAGCGTTTGAAAACTTATTATAAACATATTTATTAGGTCGATTTTTAATATAATTGTAAAGTTTTCTATTTATTCACTTTTTATATTTAAACTTTTGCTATAAAAGTAGAGATAATAGCACAATTATATAGCATTGAAATTTTAGAATTTAATATTATGTAATTGCTAATATTGTGTTGTACTAAGATATTTCTTAGTAACAATTTATTTATAAACCAGAATACTTTTTTTTACAAGAAATATGTTTTATGATCACAAAAAAATTTAAGATTTGAGTATCTAATCTTTATTTATTGATTTATATTTAATAAAACGTATTTTTCTACACTTTTAATATGGGTTTTTAAAACCTTTGATTTTTTTATGAGCCAAGTTGCCAATTGTTGTTGCTTTATTAATTATTTATTGCCAAAGTGAAAAATTAATATATTGGGTTTATTGTCTGCTAAAAATTGTTTTTAGGTATATTACTCTTTTATTACTTTTATACTACTTACCAGTTAATATCATAAATATGGTTTGAAGAATATGAAAAAGAAAAAATATTTTTCATCATATTATTATACTTAAATATGGCCGATTTATTACACTTATTTCCAAAATATGCGACTTGTATTTGTAAAATAGATTTTTATAATTACTCCTAATAGTGATTAAGTTCATTACATTCATAGATTTCAGTCAAATATGTATTTTAGAAGAGAAATCATAATTCATACAATAAAATTGTTCTTTAAAAAAAATGAGCAATTTTATTACTCTGTTAATGAGTGTAAAGTGGCACCTTACAAAAAAATACTTATCGAATCGTAAAAAATATGATTCAGTTATATCGATAAAATATCTGTCGAGAGTGACATCACTAGGAAGGTTACTCAGTGAAGAATAAATACTGTACTATTAAGTAGTTTTAATCTAAGCAAGTTAGTGCCATTAGCTAAGTAGGTAAAACTGTTGTAATAAATATTATTATGTTTTCATTTCAA +>XM_021074111.1 PREDICTED: Sus scrofa fibrosin like 1 (FBRSL1), transcript variant X15, mRNA +TGCCGCCGCCACCGTCGCCTCACGAGCCCAGGCTCCTCAGCTCCGGTCCGCGCCGCGCCCGCCCGCTCGCTGGGCCTCTTCCCAGCCTTTGCCCGCCGCCAGTCGCCCATGGGGCGTGCCCGCGGGTCCGCGGCCGAGAGCCGCTGAGCGCTGGCCGTCACGCTGATGTGCGCGGCTGCTCGCGCCCGGGAGCCCAGGCCGCGCCGGGCCCGGGGCTGAGGCCACCCTCGCGGCATGTCCGGCCCGGCCCGCCGCCCGCCGCCGCCCAGGGCCCGAGTCCGCGCGGTCCGCACCGAGCCCGGCGGTGCCGCGTAGCACAGCGGCAGCGGAGCGGGAGCCCGACGGCACGGCCGCAAGGTCACCGCGCGCCATGGAGGCCAAGGTCCGTCAGAGCCGGCGCTCACGCGCGCAGCGGGACCGCGGCCGGCGCCGGGAGGCGGCCCGCGAAGCCCGCGACCAGAGCGCGTCGTCGGGTGACGAGCCAGAGCCCGGGCCGGGCAAGGAGAACACGGGCCTGCCCCGCGCACCCCCACCCCGCGCCGCCGCCGCGCGCCCCCCGCGCCGCCGCCGTCGTGAGTCCAGCTCGCAGGAGGAAGAGGTCATCGACGGCTTCGCCATCGCCAGCTTCAGCACGCTAGAGGCCTTGGAGAAGGACATGGCCCTGAAGCCACATGAGCGGAAGGAGAAGTGGGAACGTCGCCTCGTCAAGAAACCTCGCGAGTCAGAAAACTGCCCGACTGCAGAGCCGAGTGAGAACGGGCGGCCCCTGGAGGCAGGCAGCTCTGAGCAGGACCTGGAGCCCACCTGTGACCGAGGGAAGAAGAAGGTCCCATTGCAGCCCACCAAGCAGATGAAGGTCGCGGTGTCCAGAGGGGGCGACCACAACAGTGACGGCGACAGCTTCCGAGAAGCCAGCAGCTCCCGGAGGAGCAGTTCCCGGGACCAGCTCAGTGACAGCTCGGCGCAGGCGGTCTCAGGCAGAGGTTACTCCTGCGACAGCGAGAGCGACGGGGATGACAAGGCATCTGTGGGCTCTGAGAAGCTTTTTGCCCCAGCAGCGGATAAAGGGCCCACGTTGGGCGAGAAGTCCGAGGCCAAGGCCGGGGCAGCACCCAAGGTCTCCGGTCTGGAGCGCAGCCGCGAGCTGAGCACCGAGCCGCCCTTCCTGCCCCCTGTGCGCAGTCCTGTGCCCGCCCTGCCCTCCGGTGCCCCGGCCAGCCCACTGGTTAAGAAGGAAGCCCCGGCCCTGCCCCGCCTCGCCCCACAGCCGCCTCCTGCGCCCCCGCAGCCCCGGGCCCCGCTCCCGACGCACGTGCCTCTACCCCCGGGCGCCTTCCCCGGCCACGGCCACGGCCACGGCCCAGCAGCGCACAACGGCCTGCACAGCCTCAGCAGGAGCAGCAGCGCCAGCAGCGGCGCCAGCCTGGGGCTCGCGAAGCACGCGTCCCTGTCGCCTCACGGGCCGGGCCCCCACCTCTCTACCTCACACTTGGCGCTCCGCTCGCAGGCCCAGCACCAGCACCACGCGGCGGCCATGTTCGCCGCGCCCCCGACACTGCCCCCGCCCCCGGCGCTGCCGGCCAACAGCCTGGTCATCCCAGGACACCCCGCCGATCACGAGCTGCTCAGTTTGACAAGTTCACACCCAAGCTGGACAGCCCCTACTTCCGACATTCCAACAAACCCCCGGACTGAGGATGTGGTGGGAGGCCAGGCCTCCCGCCCAGGAGGCGGTGTGCAGGGCCCCACAGGCAGGGTGAGGCGGGCACAGGCGCCTGGGGTCTCACGCCCTGTCTCTCTCTCCCCTCAGACTTCAAACCCACTCGAGGTAACGGGCCGGGCCAGCGCTGTTCACACCCTCCTGCAGAAAGCCCCAGGGGTGTCCGACACGTACCGGACAACAGTCAGGAAGCCCGGGAAGTGGTGTGCGGTACACGTGCAAATTGCCTGGCAGATATTCCACCATCAGCAGAAGATCAAGATGCAGCTGGACCCCCACAAGCTGGACGTGGGCACCAAGCTGGACTTGTTCAGCAGACCCCCTGCCCCAGGCATATTCGCTGGCTTCCACTACCCGCAGGACCTGGCCCGGCCCCTCTTCTCCAGCTCGGGTGCCGCCCATCCCACTACCAACCCGTTTGGACCCTCAGCCCATCCTGGCAGCTTCCTGCCCACTGGTCACTTGACAGACCCCTTCAGCAGATCAAGCACCTTCGGGGGCCTGGGGAGCTTGGGCAGCAACGCCTTTGGAGGCCTGGGCAGCCATGCGCTGACTCCCACAGGCGGTATCTTTGCCCCCAAGGAGGGCCCCACGCTGCACGGCCTGACCAGCCCCCATGAGGCCTGGAACCGGCTGCACCGGGCGCCTCCCTCCTTCCCCACGCCACCCCCGTGGCCCAAGCCCATAGACACGGAGCGGGTCTCAGCCCTGACCAACCACGACCGAGAGCCGGACAAGGGCAAGGAGGAGCGGGAGCGGTGTCTTATCGCTCCCAGGGACCTCCTGGAGAAGACGCGCCTGCTGAGCCGGGCCTCGCCCGCAGCCCCCTTAGGCCACCCGGGCGGCAGCCTCCTGCTCCGCGGCCAGGGCGAACCGGGCCGGCCCGGAGTCCCCGCCGAGCGCGAGGCCGAGCCCCGCGTCAAGGAGAGCCGCTCCCCAGCCAAGGAGGAGGGCGCCAAGCTGGCCGTGCGCCCGCCATCTCCTCTCAGCAAGGCGGCCCTGGGGGACAGTCTGCGCCTGGCTGGCCTCCTGGGGAAGCCGCCCGAGGCGCCGGCCGAGCGGCCCCAGAGCGACGTGAAGGTCAAGGAGGAGCGCGGGGAGGACGGCGACGCGCCCCCACAGCTCGCTCCGGGCCCCGCGAGCCGCGAGCGCCTGGCCTTCGCGTGGGAGCCGCTGCGCGACGCATACCGCGGCCTGGAGCCGCCCCGCCGCGGCCCGCCCGGCCCCGGCGCCCTCTTCGAGCCCCCCGAGCGCCCCTACCGCGACCGCGAGCCGCACGACTACAGCCCCGAGCGCCTGCGGGAGGCGCGCCGCGACGAGCTGGAGCGCGCGCGGCCCCCGCACCTGCCCGCCGGCCCTGCCCTGGACGGCGCGGCGCTTCTGCCCGCGCTGGGCGCCCTGCACTACCCGCGCCTCGCTCCCGCCGCCGCCGCCGCGCTGCACAACGGGCTCCTGGCGAGGCCCCCGCCCGCCGCCGCCGCCGCCGCCCTTGGCGCACCGCCCCCGCTGGTGGCCGCGGGCGGGCCCCCCACGCCTCCCGGGCCGCCGCGGAGCAGGACTACGCCGCTCGGGGCCCGCGCGCCCGGGGAGGCCCGCGACTACTCCCCGTCCCGCAACCCCCAGGAGGTGGAGGCGCGGTAGTCCCCGCGGGGCCGCGCCCGCCGCATGTACAGAGGCCCCTCCACGAAAGCACTGCTGTCAACTTTTTTAACTGTACGTTGTTTCTAGAACCTAAGCACAGTTCCATCGGTCCTGGGGTGACGCCCGCTCCTCCACCTGCAGCCTGCGGAGCCAGGGATTTCAGACACGGTTTTGCCAGGAGTGATCTTTTGCTTTCCAAGCTCGACATTAGGCAATTGGAGAAAAACTTCAAGTTTGTACCTTTTTTCCCACAGGTGATAAGCGTTTTTAACAGATTTGTATTTTTTTCAATTTTGTGCTCTTTGGACGTTTAAAAGAAAGACTTTTGCTTTTTTATTTTTAGTTTGGATTTGCAATTTAATGGCCTCAGATCCCTCTCCAGAGCCCCAGGGGTTTTTTTTGTCTTATTTATGAAGAAAAAACAAAAAACAAAAAAACGGTCATTTTGTCCAACGCACTGTGAGGCCCCCACTCAGGCCCGGCCCTGGCCCTCCCTTGGTACTTGGAACAGAAGTTACAGATATATATTAAGATAATTAATAATGTACAAAACTTTTTTTGCCTTATTATGCAGAAGTGTAAAAGGGTTTCCTTTTTGGTTTGTTTTTTTTAAAAAAACAAATGAAACCGTGTACATAGTCTGTTAATATAAATATATGATGTTATTAAATTCTTAACCTAGGTAGACTTTATAAAAATCGTTTCTAGAAATTCCTCTGGTTATTTGTTTAACACGGTCACAAAAAAAAAAAATTCACTGGCTGTCAGTTGGAAACGCCCTCAGATGGTTGACTGCAGCAGCATCCTTCAACTATGCAAGCGCTCGGGACGGCCCGGGCCTGGGGGACCACGGCGCGCTCCCTGGAGTGTCTGCCCTGGTGCTTTCTGTGCAGTGTTCACAGAATCACACCAGACAAGACTGGGGAGGTGAGGAGTCCAAAGGCTGATTACAAGGGGAAGAGTAGCTGTCTCCTCCGCGGAGCCACCGGCAGACATGGTCTCATGTTCTCCCACCGGCCAAGGCCTTGGCGTTACTTCCTTTGGGTTCTGGTTTGCTTTCATGACCCCGTGAACGTCACTGTGCCCTGTCATCAGTGTTCCCTGTTTCCTGACGTCCATACCTGTGTCCTCAGCGTTTGAACCTCAGTTCACCCATCTCTAGCCATTTGCTTTGTTTGGTTCTGTATTTCCAACCCCACGTTTCCACTGTAGGCTCCGGTTATTTTAAATATTTTCACATCAACCAATGAAGATAAATACAGCCTTGATTTTGGATGAAAA +>XM_006877835.1 PREDICTED: Chrysochloris asiatica histone-lysine N-methyltransferase PRDM9-like (LOC102837583), partial mRNA +GCACTGTGCTCTTGGGCTGGAACTGTCAGAACCTGTGGGTGATGCTGACAGCATGAAGCTCACCAAGAGCCATGGAGGAGAGTATGGGGAGGACACCCACGATTGTGAGGAGTGTCAGAACTTTTTCACCGACACCTGTGCAACTCATGGGGCCACAGCGCTTTTAAAGGGCAGTGCCATGGATACAGAGCACCCCCGTCACTCAGCTCTCACACTGAATCCCGGGCTAAGGACTGGACTTGGAGTACACAGTGAGGCATCTGAGCCGCTGCTGGGCCTAGACTTTGGCCCCTACGATGGTCAGCTGACAGAAGATGAGGAGGCAGCCAATAGTGGCTACTCTAGGCTGAAATTCCTCCATCAACAAGTGCAGCACACCCATCCCTCTCAGTCCTCTCCAAGAACTCCTGCGGAAAAACACCTTCACCTAGAGCACCGCCATCCAGGGGATGGGAAGGAGCCGCATTCTGAGCAACTCGCCAGGAATGACAGAGCAGAAGGTCTAGAGATGGGAGATGGGCCCAAAGCCATGTTTGAAAGGACAAGACAGGGGGGCATTTTAAAGACCTTCTCTAGTCTACCCAAAGACCAAATGGGGAGTTCTAGGGAGGCTAACAGAATGACGCAGACAGACCCATGCTCAGGCCAGAGAGTGAATGCTGCGGACACAGGCAAATTATTGCCGGGGAAAGGAATCCCAAGAATTGCAAAAGTTACATGTAGAGAGTGTGGGCAAGGCTTTAGTGCTAAGTCAAGCCTTATCACACACCTGAGGACTCACACAGGGGAGAAGCCCTATGTCTGCAGGGAGTGTGGGCAAGGCTTTAGCCAGAAATCAATCCTCATTAGACACCAGAGGACACACACAGGGGAGAAGCCCTATGACTGCAAGGAGTGTGGACGAAGCTTTAGCCGGAAATCACACCTAATAAAACACCAAAGGGCACACACAGGGGAGAAGCCCTATGTCTGTAGAGAGTGTGGACGAGGCTTTAGCCAGAAATCAGTGCTTATCACACATCACAGGACACACTCTGGGGAGAAGCCCTATGTCTGCAAGGAGTGTGGGCGAGGCTTTAGCCAGAAATCAAACCTTATTAAACACCAGAGGACACACTCAGGAGAAAAGCCCTATGTCTGCAGGGAGTGTGGACGAGGCTTTAGCCAGAAATCAGACCTCATTAAACACCAGAGGACACACTCAGGAGAGAAGCCCTATGTCTGCAGGGAGTGTGGGCGAGGCTTTAGTCAGAAGTCAGACCTCATTACACACCAGAGGACACACTCAGGGGAGAAGCCCTATGTCTGCAGGGAGTGTGGGCGAGGCTTTAGCCGGAAGTCACACCTTGTCACACACCAGAGGACACACTCAGGGGAGAAGCCCTATGTCTGCAAGGAGTGTGGGCGAAGCTTTAGCCGTAAGTCAGACCTCATTAAACACCAGAGGACACACTCAGGGGAGAAGCCCTATGTCTGCAGGGAGTGTGAGCGAAGCTTTATTCAGAAGTCACACCTCATTAGACACCAGAAGACACACTCAGGAGACAAACCCTATGTCTGCAAAGAGTGTGGGCGAGGCGTTAGCCAAAAGTCAGACCTCATTACACACCAGAGGACACACTCAGGGGAGAAGCCCTTTGTCTGCATAGAGTGTAAACGAGGCTTTAGCCAAAAGTCAGATCTTATGAAACACCAGAGGACACACTCAGGGGAGAAACCCTATGTCTGCAAGGAATGCGGGCGAGGCTTTAGCCAGAAGTCAGACCTCATTAGACACCAAAGGACACATTCTGGAATGAAACCCCATGTCTGCAAGGAGTGTGGGAGAGGATTTAGCCAGAAGTCAGACCTCGTTAAACACCAGAAGACACACTCAGGGGAGAAGTCCTATATCTGCAGGGAATGTGGGCGAGACTTTGGTGATAAGTCACACCTCATTGGACACAGGAGAAGAAAATACTGCCAACACACACTGCCATCTCCCCAGCTTTGA +>XR_001644210.1 PREDICTED: Nicotiana tabacum uncharacterized LOC107768680 (LOC107768680), transcript variant X6, ncRNA +CCGGCAAAAAAAATGACTGGCCACTAAAAGCAGCTAATTCAAAAGAAATTTTAGTATTTTATCTTACCCTCACCTAATATTCCCTCCAATTTCTCAAAATAACAAAATGAAATTTGAAAAATTTGGGAATACATCACAAAGACTCAACCTATCTAACCGCTGCTGAAACCATTACCGCCACTGCAATTGATTTCTATCTCATCGCCGGCAACCAATTCCAGTTGCTAAGGTGATTTTCTTATATCTAGGGTTGGAGTAGTTCCCCTTCATTATTTTTTGAGAAAATCAAATGGCCGCTCCACCTGCTCTAGCCCATCACGACTACAGATTAGCTCATCAAGCTCCTTTTGATTAGCAATAGCAGTATACTTTTTATCCAGGACATTAGTTAACGTTGTTGGTTTAATATCGTTGTGATATTATTGACTACCTCTACTATTTGATTGAACAAGGAAGGAAGATTACAATAAAATAAGACCCTTGAGGCTTGAGCTATCATGGGCAGATGTATCTAGAATTTCAGACAGAAAGATTTCTCGCTAGCAAGCACAATTACAAAAATGTCTCCAAAAAAAGGTGATATATTGTGATGTTCAGAGATATAGCATGTGAAAGTTCATGTGATCAAGAGTTGGGAGAATCTGTCCGATGTAATTTATTATCGAGCTTATAGCTACTTGATAAAATAACTAATTAGATGCGAAATATTATTGGATTCAAATAATTTAGCATTTTTATGTTGTTTGCACTCTCAAATTATGGATTTAATGAAGTGCATTGAGCTGTTTGAAGTGAATTAATATTATTA +>XM_026966869.1 PREDICTED: Rhopalosiphum maidis uncharacterized protein PF13_0277-like (LOC113560796), transcript variant X2, mRNA +TTAGTGTTCGTATTGCTTTTCCATCACCGATATTATACCGATCGTTTGTGCGTAAACCGGGTTTTTTATCGGTGACAAATCAGTTTCGTTGTCAATACGGCCATGTATATGCACTTTTTCCGGACAGGTCGCCTTGCAATTGTGTCGTATTAGATACGTCCGTCGTGCATATTATTATTAGTATATGAATGTGCTTAAAGTTTAAACGTGACATAATATTATATAATATGTAGTATTATTGTCAATCAGTGACCGATATGATAATGTGCTTGTGACCCGTCTTGGTTATCGGTACGGTAATATCGTCTTGGTACGGTTTTATTTTTAGTGGTTGCGACCCCCCTTCAATTCGTTTTTCAACTACTTAAGTAAATCTGAATATTATGTTTTTTTATATAATTGCCGGTGAAGTAGATTATTCTTGTATTTATATTTCTAAGAGAAATTTATTTTTCAATTATTAATAAGACATATTGAACTAATATTTGACAAAACACAACGAAAAATATATTATTAACTCGTATCGGTGTTAGCCGGATAGATGGAATTGTAAACGACAAAAAAATAACTATCGATGTGTATATATTAAATATTAAAAAATATAATAGACATTATGTAAAGGACGATCGAAAAAACATGAATAAATACCAACAACCAGCAATGAATATGGATATAAAAAAATAATATATGATATCATATTAACCATGTCAGTGAGCAATATAATTCAAATTATTCTTGCAATTAAAATGGAAAACTGTCGGGCACATTGAATACTGCTCGATGAAATGAGGACGGATAAAAATGGATATCTATTATACAGAAGAAGACAAAACTACCAAATTAATGACAACACGGCCAATCCAAGTCAGATCGATGATGAAAATAATAACCCAGATGAAGATATTCAAGGCGACCGCAATCTTATTACATCAAATGTTAATAACCCAACAGGAAATAACAGATTAATAAAAAATGATCTTATAAAAAACGTTTTTAATAGGATGAATTCGAATGGAAAAAAACCTTCTCAAATAGAATCAAGTAGAGCAGATGCTGTTGAAGATCAACAACTAGAAGAAGAAATAGAAAACGATCCAACTAAAATGTCACTCGGTTTAGATTCTGAACTAGAAATCGCTGAAGACACTGACCTAGAAGAAGCAGACGATAAAAATATTGAAAAACCAAAACCAAAACCAAAAAAAAAAAAAAAGAAGAAGAAGAAGTCGAATTCGAAGAAGAAAAGTAAGAAACAAAAACAAAAAAAAACTGAAGATGATGAAACTAAATTAATTGAAATTGATAATAATGGAAATCAATTTAATTATTTTGACCATGAAGAAAAAGATATACGTGAATCAGATAATATTAAAGATCAGCAACAAGAACTTGATAAAGAAAACGATCCAACTAAAATTCTACTCGGCTTAAGCACTGAAAGAGAAGCTGAACTAGATAAGGAAAAAACAGAAAAAAATTTACAAAAAGAAGAAACTAATTTAAAATCAGCTGAATCCAAAGTCACTGGAAGTGATAATATAGAGTCAACGATAGAACAAACATCCAAATCATCCGATCCTGAGAATATTAAAGATCAGCAACAAGAACTTGATAAAGAAAACGATCCAACTAAAATTCTACTCGGCTTAAGTACTGAAAGAGAAGCTGAACTAGATAAGGAAAAAACAGAAAAAAATTTACAAAAAGAAGAAACTAATTTAAAATCAGCTGAATCCAAAGTCACTGGAAGTGATAATATAGAGTCAACGATAGAACAAACATCCAAATCATCCGATCCTGAGAAAAATCCCATCGAAAATATTAAAGAAGATACAACAAAAAATACAATTACGGAAGTTGATCAAAAAGACTTAACAGTATCTTCACTGGAGAATGTTGAAATCGTAAAAATTAAAAAAAAGGATAATGCAACCAGCGAAGCAATAAGAAAAGAAAAGAAAAAAACGACATTTAGAGAATTCACACATTCAGAAGGAAATGCACGCATATATTGTACATTTTTGGGAGACTTGTTAAAAATGTACAACAAAGTAAAAAAACGTTTTGTTGGACACTTTTGTCATGCAATTGTTGTTGGCACTCCAATTATCTTAAAACAAAATCAAGTACACTTAAGCAGTAACATGAAAAGTCACCTGAATAAAATAGAACCACATAAACAAGAAAGTCTTCTTATCGTCATCATGAAATATTCAAGCTATAAAGATTGGAAACATGCGTTAAAAAAATCTAACATCAAACACTTAATTACAAATATAATGCATACGGTCAAAACTTATAAAATCGATGGAATACAATTTTCAAATTTACAACCAATAGCGGGGAAAGATCCAGACAATTCAGTGGATACACACACGATGAATAATCTATTAAAATTCTTTGAAAAACTACTAAATACTGCAAAACATAATCATAATTATGATTTAAAAATTGGCATAACCATTCATTTGAACAGTCAGTGGATCACATCAAGTTTTACTTCATTCGCTGAATTAAATAAACTAGTCACTTGGTATACATACGAAACAATTTCCATGGTAACATGTTCACCAGAATACAAAGATACAGGCACTTCTCCATTAGAAGGAGACGTGAGCTTGATGAATGCATATAATACATTAACGGATACCAATATTGAAATGTCAAAAGTAGTAGTTGGCATACAATTATTTCCAAATAAAGTTAATAAATTAGAACCATTTACATATGAAGAGTTATGTTCAACACCAAAGAACACTTGGAACGAATGGTGTGCTGCATACCCTGAAAAACTTCGGTTAAAGGGTATATTTTTACGGAACAATGAAATCGGAGGCGTCCAACTATTTTACATGCACTCAGACGATTACAGGTCAACATGCGGCTGTTATTCTTTCCCGTTGACTCGAGCACTTCTTCGTGGCTTGATTAACACTCAGACGGAAGAACAGTGTAATTTTATTACGGCACACAACTAAATAGAAAATACCCGCAATAAAATCAAGAACCATTATAATAATATTAGTATCGTTTTCCTCATTAGTGCATTATTAGTAATTATTTTTTAGGCACTTGGAGTATGAACATTTTAATATTTTATATATCATTACTAAATGAATGTATTCTATAACAAACGCGGGTTCGTATACGACACATTCGTTCATTTTAATTAGCTAAACATATTGTTGTATAATTATTTTTTTAACACGCATAAAATACTGAATATATTTTATTAATTTAGTTTTTTTTTTATTATTCTTGCATTTTATTTTATCTTATAACACAGAACAAGATACTTAACTCCTATAAGTTGTATGAGTATAGACTGTAAGTATTTACTATATTTATTCGTACCCATAGTAACTATGTTAATATCACGACCTCGAGAGTTTATAATCATCATATTCACTCCTTTATTTTAATAAACCAAAATTTAAATAGTATAAAGTACAGTGGACGCCGCTTATAAGACTTACTTTGGGACCAACACAAAGTGAGTCTTATAACCGAATGAATCTAAC +>XM_048102724.1 PREDICTED: Salvia hispanica GDSL esterase/lipase 6 (LOC125204156), transcript variant X2, mRNA +AAGTTTTATTTAATAAATAGGAGTTTCAAATGAAGAAGAAAACTACAAATTGGTGTTGAACAGTTGAAGAAGAGTTGGCATAAAACAATATGGTGATCGAAGCCATGCATGCATTTAGTTAGTGTTGCTATGTCGTCTTCCTCGTTTTCCCGACATAACACCTCTCTCTCTATATATGTGCAAAATTCACAACAACTTTACTCAACTAATTGATTAATTTAATTTCTACAAAATCACTGGTAAAAATGGAGACACGGTTGCTGCTCGTCTCCGTCATTCTATTTCTTCTAGCAGCTTCCGCCATCGGATCTAAAATTCCGGCAATTTTCATATTTGGGGACTCGCTCTTGGACGCCGGAAACAACCCCTACATCCCAAATTGCACCGTTCAGGCGGATTTCCCGCCCTATGGATCCAGCTTCTTCGGCCGCCCCACCGGAAGATTCACCAACGGCAGAACCGTCGCCGACTTCATCTCTGAGTATTTAGGCATTCCACTGCAAAAGCCATACATGGAGGTGATGAACGGAACGGAAAAGAAATTTCCGGCCAACGGAATCAATTTCGCCAGCGCCGGCAGCGGAGTTCTTCCGTCCACCAATACAATTTCTGGAGTGACAGCAATCCAAGTCCAATTGCAACAATTCAAATCACTAGTCCAAAAAAATCAAATAGACAGAAAAGTCGTAAAAGATTCCTTGTTCTTGATAGAATCAGGATCGAACGACATATTCAGCTACTTTGATCCATCAACCTCAACACCCGAGGCCTATATACAAACCATGCTCGGACAAATCCACAACTTCGTCGATAACATCGTTAGCCTAGGGGCCCGCTGTGTCGCCTTGTTCGGACTAGGCCCGGTCGGCTGCGCCCCGGCTAGGTCCAATCTGCCCGGTGCCCCCCTCGGAAAATGCTACGACAAGTTGAATAAAATGGTCATGAAATACAACATGGGGTTGCAGAATTTGGTGAACGTTTTGCCTCGCACCCATCCCGGCACCATCGCTGTTTTTGGACGTGTTTATGAAACTATCCAAACCTATCGAGCACATCCTACGCGTTATGGGTTTGTGGATGTGGAGAACGCTTGTTGTGGATCTGGGAAACTAGGAGGACAGGTGCAATGCGGGAAGGTGGGCTACAAATTGTGTAAGAATCCAAATGAATACTTGTTTTGGGATTACTTTCATCCATCGGAACGGACTTGTGAGCTCATTAGCAAGGCCTTGTGGGCGGGCGGCCCGACTTCTATTATGCCCTTCAATCTCAAGCGGCTTGCCAATATGCCTGTCGCCTAATTGTTTAGGGTTCATATTTCATTGTTATCGTCATCTAAACGGTTTATGTTATACCGAAATGTTATTGGATTTTAGTTAA +>XM_042583618.1 PREDICTED: Zingiber officinale exportin-4-like (LOC122024892), transcript variant X3, mRNA +CCTTACTCAGGTGTTCTTTTCATTTCCAGGAAGGCGCACACACAGGGGGAAGGCGGCTTGAAGGGCTACCAGGCCCTCCGATCGCTTCCCTTTTCCGCACAATTTTATCTGCCGACTTTGAGAAAGCTCGCAGCTCACTCCCGTTCCTGCATCCCCATCTCCTTTTGATCGTCTCTTCCTCGTCGCTCCTAATCCGACACACACAGTACCCTAGAGAATAGAATCGGACGAGATTGAGTTGAAAAACAAGAGGCAATGCAGGGGTTCCCAGGATCAGTTCCGGATTTGTCCCAGCTTCGGTCCACCATGATTGCAGTTGAACAGGCTTGCTCCATGATCCAGATGCACATGAATCCAACTGAAGCAGAGAAAATTATTGTTTCACTGCGGCAATCCTCAATGCCATTCCAGGCATGCCGATTCATACTTGAAAATTCTGAATTGCCAGCTGCAAAATTTCAAGCTGCTGGAGCAATTGGTGATGCTGCAATTAGAGAGTGGGGAATGCTTACAGATGAGAATAAGAAAAACTTAATAGTATTCTGTCTACACTATGTTATGGAGCATGCAAGTGCTTCTGATGCTTACGTCCGATTAAAGGTGTCTGCAGTTGCAGCTCAACTGTTAAAACGAGGATGGTTTGATTTTGTTGATGCTGAAAAGATTTGTATTCTCTTAGAGGTGAAGCAAGCCATTCTAGGACCTCATACATCAGATGTGCAATTTGCAGGGATTAATTTCCTTGAGTCCTTGGTATCTGAATTTTCACCTGCAACTTTGACTCCGATGGGCCTTCCTAAAGATTTTCACACCCAATGTCATTTGTCAATGGAATCTAATTATCTGAAGGAGTTCTATTGTTGGGTTCAATCTGCTGCGTTTAATGTGACTGAAAAGATAGTGAGCTCATATGCAAGCATATCTGATGAGAAAGCATGCTCTGCAGCACTGCGGTTTATGTTTCAGGTTTTGAACTGGAACTTCCAAAATAGTTCCATTTCATGGGATACCTCCAGAAATAAATCAAATTTAGTAACATACGGTATCAGACATGATGTGGTTCAGTTGAAAAAGTTTGAACGGTCATTGGTTGAGCCAGGACCCTCATGGCATGGTGCTATATTATCAAGCGGACAAACTCTTTGGCTTTTGAACTTGTATGCAACAGTTCGCCAGCAGCATTTATCTGATATTTTGTGGTTTGATTCTCCCTTATCAGTCTCTGCCAGGCAGCTAGTAGTGCAGTTATGCTCTTTGTCAGGGACTATATTTCCTTCCGACAATGGGGAAACACATATTAAGCACCTAGTGCAGATTCTGTCAGCTGTTATTGATTGGATTGAGCCGCCTAACATAGTCTCAGGAGCATTACGTGGGGGGCGAAGTGAAAGTGAGATGATTGATGGTTTTCATGTATTACTTTCCATGGCAACCATGACTACAACTGTGCTTTTTGATAATCTTCTTAGGTCTTTAAGACCTTTTGGTACAATTCAATTATTGTCTGCCTTGACTAGTGAAATTGTTAAAACTCATGTGAGAAGAACTGATGTTGATCAAACATGGACATCAGAGGCTCTTGATATTCTCTTGGAGATATGGACCCTCATTCTTGGGAGAAATGACAATGAAAGAAAGGTTTCACCTGAAAACATATCATCATTATCGAATTTATTCAAAGCTATTGTGGAGTCGCATCTTAATGCTGCTGCCCAATCTGCATTTGAAGATGATAGTGATGCTGAGTATTTTCATGTCTCTGTATCAAAACGAGATGAAACTTTGTATGCATATGCTCTTATTGCACGAGCTGCAGTTGAAACCAATATTTCCTTTCTTATGAAACTGTTTGCAGAACGTTGTGCTCTTCTCAGTCAGAATAATGAAAGTTGTGATCCTACACAAACCTTAGAAGAACTCTACTGGCTTCTATTGATTACTGGTCACGTGCTCACTGATTCAGATTCCAGAAGCAATACAAGACGGGTTTGCTGATGTATCAGATGAATCACAGCATCCAGTGGTTGTTTTTTCCTGGTCAATACTAAGTTTTGCTAGGCAAAG +>KM122633.1 Uncultured bacterium clone LNH_9_9_11_Pumice.146514 16S ribosomal RNA gene, partial sequence +CCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGCGACCGCCTGGGGATACGGCCGCAAGGTTAAAACNCAAATGAAATTGACGG +>KF304776.1 Cystobacter minus strain Cbm6 small RNA Pxr-2, complete sequence +AAGTGAGGCTGAAGGAGGTTCCCCCCCACCGCCTTCAGCACTTCCGGTGAGCTTCCTAAGAAGAACCCGAGGCCCGGTCCCTTTCTGAGGTGACCGGGCCTCCTTCTTTT +>XR_007867290.1 PREDICTED: Lolium perenne uncharacterized LOC127325588 (LOC127325588), transcript variant X4, ncRNA +TCCGGATCCCGTCCCCTCTCCGCGTCCAGACCTCGATTAATTTCGTCATGCGCATGGTCCTGCCCCGTACGTGCAGGTAAGCGGAAGCAGATCAGGGACGGCCTGTCCCCGCTCGACGACCACGCAAAAGGGCTCGTCCACTCCGGCCTCGACCAGGAGGAGCTCTTCCGCCCACCAAATTAAAGGTCACTTTATCCTTTATATGGAGCTCATGACTACAGCCATCAAATGTCTCAGTCTGCTCCTCAAGCGGAACCTTATGGTGACAATCTTCCACACATCGATCCCTGGGGCCTACCGAAGCTGAGAAGAAAGAGATGGCGCCACGGTGGCTCTTGGCGACTTCTGGTGACATTGGCCGGCTTGGAGGCTTGATGGGAGAGCTGCAGGTCTAGCTGCTCTGTCCCAAGTTTCACCTCGGTGAGCTCGACTCATAAAGATCGATGGGTTTAAGCTGGATAGACGGTGGTGGTTATTGTTGCAAGAAATAGAAAAGAAGACCTTATCAGTGCACCCCATGCCCATGATTATTCATTGCTGCTGCTTCACCACACACCCAAGAGGAGCAGGTTCGGGAGAAAGAAAGGGACCCAAAATAGAAACAAGAAAGGGAAAAGAGAAGAGATGGGGATTCTGCGAAACTTCCTCGAGCTCGCCATCAATTCATGTCTCGTGCTGCCATGGTAACCTTATAGTTAGTCCTTTGATTACAGATTGGTGGATGTGTTGGTAGAATTTACCCGGTTGGTTTAGCTTTACGACAGTATATTGTTTACCCGATTCCGGCGAATGGTTTGGAAAGGGGAGCAAAAACAGTACAGTTGAACATGCAGTTTTCTGTATAGTGAGTTATCATCTTTTTTTATATTAAATCAAATACGTTTTCAACATAACAATCGAAGAAGTTGTCTTGTAGGTACCAAAACTTATATTGGTTTACAGATTTAGTTTTCTCTATTAATTTGTACTAAATGACTTAATAGTTTGCCCAGTGTGGACATATTTGCCATCAAAGCTGAGATTTGGTGCTTATGTGTGCTTTTTGAAACATGTGCTTTTGAAGTTCTAGGCTTCCAGCTGCAACTTTCAGAGTACACCTGGGTAAATCATTAACGATACATCACTCATTTTGCATCAGCTTTCACAAAAAATAAACTTATTTGGATTCTTAGAAACATGATACTGTTTTCTGAAGTGTAAGCCACCACCAGGTTTCTTTATGTCTCGCTTCAGAGTTCGGGCTTGAAGGTTTAGCTAGTGACTGCAATCTGGTTATATACTCTCTTATGACGAGTTAACGTCAGTTTTGAAGGTCAAACTGTGTTGATCTGAAGCTTTCTGGATGTATACATATTAGCTTGAGCACGCTGATTTTGAGGAGTAGCCTGCTTTTGCTATGTTTGTAGTCTTCTAGTGAGAATTGACTTGAGCTTCTCTCGTGTGCTTTTTTGTGTCTAGGAGTGCTATTCTGTACATCCAGAATTGTCATTGATATATAGTTTCTTTGCAAATACCTTATGTGTTGGATTTCTCTTGAGGATCTTCTCCTATGCTTTTTAAAAAAAAAATTATTTGTTGTTCATTCATCTGGGAGTTATCTTAGGTATTGATGAGGATGGGTTGGAATGTGGGATCATGGAACATTATTTTCCATTGGTTTTGACTTTTTTCTCATTGATGAAAAGGTTTATTACACAAATGCATGGTCTTGTTGCTGTCGTCTTAGAGCTTATACTCATGTTCCTGATTCTTGTATATACCCAATTTGGGTCTTTCACTGTTAATTATATGATAGTATTGATCTGGCATTTTAGTTGATAAACATGTAATTGCCACCACTTATGCTTATTAGGACAGCAGCTAGATTTAGTGGTTTTGGTTAAAATATTTACTTGCTCTGCTTTAGTGGTTATGGCTAAATATTGACTTGCTCTGTTTGAGTGACGAAAAAGTTCGGACAAACTCCGTTTTGTTTTTATAATCTGCTTGGTGTTACTTGGGAGGGAAACGGGAAGGAAGCCGTTGAGCACCTTACCAAGGCGATCCTAGTGAACCTCAACAACCATGTATGGTACAAAGAGGTCAGTCACAATAGCAGCAATGCTTGCAGAGCTTACTGACTTGAAAATGTCGCTACTCTTTGTATGTGGAGCTGTCCCCCGAGGAGCTGGATGCAGAGTGAATGAACTTCTCGATCTCGACATGTGGAAGAAGGCAGTAGTTGATAGAGGATATGTACAATGTCACCCATGATCCTCGCAGAGGATCCATCCATGGTGGCATGATCAGGATGGTGTGAGTGAAGCTTTGAAGGCCAGTTCTCTACCGATGTGCGTAGCATATGTGCTATCCCTTGTGACTTCCTTTTTTTGTAATTGCTTCACAGACCTGGAGTTGTAATAGTGTCACATCTGTCTTTGTTGCTTATTTACGTTTGGACTTGTGATCTGAGTTGGATGATGTGGGGTTTTGGATGTCAATCTGTGCTGTTGTGATACATATGAAATTTGGACTGTTGATTATTTCA +>XM_025161730.1 PREDICTED: Tetranychus urticae CXXC-type zinc finger protein 1-like (LOC107366317), mRNA +AAAAGTAAAAAACTTTGTTAGTGAAAAGTTTTTACCATTTTTTTAATATCACTCTCAATGTGATCAATTAATAGATGTCCTATCAAGCCCTGGTGGACAAGCTAGTTTCAATGGTCAAATTTTTGGCCTTGGTTTGGACTTAGTGCTAGTATTGGTGCCCGAACTACTAGCACCGGATCATCTGGTGCCTCAGCCTCTGGTAGAGCTGCAGTTAAGGCCGTTGTCTAAGTGAAGACTCAAAGGGCTTAAAATGGTTTTCTGTGGTGAAAAATATCTGTGATCGTCAAGTTTCAAGGGAAAAGGGTAGAGGAGAATCACTGGACTGTATTAATCGTTTAAGCTGTAAAATAATGATTTGCTTGTATCAAAATTTAAATATCTCAATGTTTTTTCACTATGAAATCAGGTTCAAGCGTATGAGCAAATAGTGATGAATTATTAACAGCTAAAGTAATTTTACCATATTAATTATCGAAATATAATTACTGTCATAGGTTTAAAATTTTCTGGTTTACCTAACAGACCTACCTTTAGCTAAGAAACACCTACTTAACCGTGAAATAGACCATTGGTTACTCTCACTACGTCTAACTTACAAGAAACTAATTACTTGTTAACGAGATGTTAACTTGTTGACTGTGTTTAAAATAAACAATAAACTTTTATTAAAATGAGTGAAGACATTGCTTATTGTATTTGTCGCTCTTCAGATATAAGTCGATTTATGATTTGTTGTGATAATTGCGATGAATGGTATCATGGAGATTGTATTTCTATGACTAAGGAACGCGCTTTTACCTTTTTAAAATTTTACTGCAGTAAGTGTCGTGATCGTGATCCATCCTTGAAAAATCAACTTGTTAAAGAATCTAAAAAATATGTGGTATACACAATATCCTCTTCTGAAGTGACCAGCAAATAGGGAACAGTTCGGAAAAAGAGCCCATCACCTCAGAGGTCTAATAAAGTGGCTCGTTATGAAGATGATGCAGCACCTGAGAAGAGGAATTATGAAGATAAAGACGACGATGATAAAGATGAAACTTCAATAGATAAGAATAATTCATGTGAAAAAAATAATGAAAAAAGTGAACTCAAATCTAGATCAAGCCGAAAAGAAGCAAACACAACACCAGCTGACAACGAACGGACCAATGAAAAAACACATAAAGACAGAGAGGAAGAAATCTCCGAGATTGATGATGGTTTGGGTCAATTTTTTCAATGGATGTTTGAATATGAATTTTTATCGTGGCGTAGTCTTGTACTTTAAGTATAGAAGATCTTAATTGCCCGTGTTGGATAATCTGGTGTTTTTAAACCAGGTAAAACTGAAGGCGAATCCTAAATCTTCACCACTACTATTACAGTATTTCCTTGAATTTTTTGCTTTTTTCAAGTGCTGACATCTATGTCAACTACAGGGGGGAATAATTCAATTTTACAGTTAGTCTATTCTAACGATTCCCCCTTAAGGGAAAAGGGTAGAGGGGAATCACTGGACTGCATAAATTGTTTAAATTGTAAAATAATGATTTGCTTGAATCAAAATATAAATATCAATCAATGTTTTTTCACTATAAAATTAGGTTCAGGCGTAAGAGCAAATGTTGATGAATTATTAACAGCTAAAGTAATTTTATCATATTAATTATCGAAATATAAATACTGTCAGAGGTTTACCTAATAGACTCTTAAAATAGAATAGAATGATCTTTAGCTAAGAAACACCTTCTTGACCGTGAAATAGACCATAAGTTACTCTCACTACGTCGAACTTATAAGATACAAATTACTTGTTGACTGTGTTTAAAATAAACAATAAACTTTTATTAAAATGAGTGAAGACAATGCTTATTGTATTTGTCGCTCTTCAGATATTAGTCGATTTATGATTTGTTGTGATAATTGCGATGAATGGTATCATGGAGATTGTATTTCTATTACTGAACAACTTGCTAAGACGATGACCAAATTCTACTGCCTTATATGTCGTGATCGTAATCCATCTTTAAAAATTCAATATCACAGTGTAGTCCTAAATACTGTAGCATCTAGTCCTAAACCCACCAGCAAACATGGAACTGTTCGGAAAAAGAGCCCATCACCTCTGAGGTCCAATAAAGTGGCTCGTCATGAAGATGTCACTCCATCTGAGGAAAGGGATTGTAAAGATAAAGACGACGATCATCAAGATGAAACTTTAAGAAATAAGACTGATTCATGTGAAAAAAATAACCAAAAAAGTGAAATCAAATCTAGATCAAGCCGAAGAGAAGCAAACACAACACCAGCTGACAACGAACGGACGAATGAAAAAACACATAGAGAAAGAAAGGAAGAAATCTCCGAGATTGATGATGGTTTGGGTCAATGTTTGCGATGGATGTTTGAATATGAATTTTTATCGTGGCGCAGGCTTATACTTTAAGTATAGAAGATCTTAATTGCCCGTGTTGGATAATCTGGTGTTTTGGAACTGAAGGCGAAACCTGAATCTTCACCACTACTATAAGGACAAGTTAAAATGTTTTGTTGTACTGACTAAATCAACTATTTGCAATTCCCTAACATTAAAATAAAAAAAATTAAATTGTAAGTGAAATTTTGATATCAATAAGAATCAGCTTTAATTGTTCATTTTTGCTGTGAGATGACATGCAATTTAAGTTAAGACCTCAAGAAAAAATATCCAAAAGTAAAATTTTAACAATTTCTGAGAGTTTTATCATAAATGTTCCGAGTTAGATTATGCTCAACTTGAAAAGTGAAAAACCTTTGTCAGTAGAAAGTTTTACCATTTTTTGAATCTCCCTCTCTATGTTATCGAAAAGTAACTGAGTAACCAGTTTTTAAAGTCTGTTTGACTGGTTTCGGTAATTTTACATTTGTTTACAAACTCTGTTTATCTTCAATTTCGGCAGTTTTTATCCTTACGTCAAAGTTTTATTATTTAAATGTTTTTCTTATTAACTTAAGTGATATCAACATGGGTGAAGACACTTCTTACTGTATTTGTCGCTCTTCAGATACAAGTCGTTTTATGATTGGTTGTGATTCTTGTAATGAATGGTATCATGGAGATTGTATTTCTATTACTGAACAGCTTGCTAAGACGATAACCAAGTTCTATTGCCTCATGTGTCGTGATGCTAATCCATCCTTAAAAATTCAATATCACAAAGATTCTGGCTCTAAATCAACTAGCAAACAGGGGACTGTTCGAAAAAAGAAACAACCAACTTCTAAGTCCAATAAAACGGCTCGTTTTGAAGATGATGCCTCACCAGAGAAGATGGATTTTGAGGATGAAAACGATGAAGAGTTTGATGACGATGATGATGGAGATGAAACTTTCAGAATTGAGAATGAATTATCTGAAAAAAATAATCGAAAAAGTAAACCAAAATCTAGACCTAGCCGAAAGAAAACAAATACAACATCATCTGACAACAAACGTGGAAGTAAAAAAACACATAGACAAAGAGAAAGAGAAAGAGATGTCTACGAAGTTGATGATGGTTTAAGGCAATGTTATGGTCCTGGATGTATCAATATAGCTCGTCGAGGCTCCAAATACTGCAGTGATAATTGTGGTATCAAATTAGCAACCAACAGGATAATAGAAATTTTACCTGAACGTATAAGGTTTTGGCAAAGTACACCATCAAGTGCTGATGTTTTCAGTAATCGAGAATTAGATGCAATTCGAACAGAAGGAGAAACAGCCAAAAGGCTTCTTGAAGAACTGGACGGTAAACAAAAAGAACTAGAAGCTATGATTGCCGAGGCCAAGAAACTACCACCAATCTCAGAAGATGAAGTAGACGAAGAGACTGGAGATGAGCTGATGACTTACTGTGTAACCTGTGGACATGAAGTTGCATCGAGAACTGCTTTGAGACACATGGAAAGATGTTTT +>XM_043408227.1 PREDICTED: Colletes gigas uncharacterized LOC122404294 (LOC122404294), mRNA +ATGCATATGATAACAAGACAAAGGCTTGGTCGCCCGAGAGGACCAAATGCTAACCGCCCTAGGGAAGTGGTTCATGATTCCGCTTCTCCGACATCAGAAGTGAGATATCCTCGGCTACAAAGCGAGTCAGATGCAAATTGCGAACATCAGCCGCATGAAAATGTGCCCATTCAAGACAGCGCGTATACGATGCCGCAGTCGGCTGCATATGCAGCGCGGCTTATGGCCATGCTCACCTTGCGATGGCAGAGTTTCTCTACAGAGCAGATTGCTGTAGCAATGGTTCTGGCGCACACGGCTCAATTTGATAGACGACTCCAGAGATTAGCCTTTACCACAGAAATCAATTCAAGGGACAAGCTACACCGTGCAACTGGTCACTATGCTTCCAAGTGTCACCAAGTAGCTGGCAAGGGTAGCGGCGGTGCTAGCAGCAGCAGAGATTTTAACAATGCAGTTACGTCAAATACGGTTCAGCGACGGGTTGATGTTTGTCAGATAGGTAACCCTAGTGGAAAACTGGTCTGCAATGATCAGATAGCTAGATTAGGAGGTGCTCGGTGGTACTCCAGTTTTGATATGTTGAGCGATTATCACCAGATCCCTGAGGAAGCCAATTCTATTGAGAAAACGGCCTTCGTTACTCCTGAAGGTCAATGGGAATATTTGACCATGCCATTTGGGTTAAAGAATGCTAGTTCGGTCTACCAGCGAGCTATTGTAAAAGCCCTCAGAGATATGGCATTTAGCTTCGTTTTATGA +>MZ269370.1 Colletotrichum fructicola isolate 25640 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene and internal transcribed spacer 2, complete sequence; and large subunit ribosomal RNA gene, partial sequence +GAGTTTACGCTCTATAACCCTTTGTGAACATACCTATAACTGTTGCTTCGGCGGGTAGGGTCTCCGCGACCCTCCCGGCCTCCCGCCTCCGGGCGGGTCGGCGCCCGCCGGAGGATAACCAAACTCTGATTTAACGACGTTTCTTCTGAGTGGTACAAGCAAATAATCAAAACTTTTAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGCATTCTGGCGGGCATGCCTGTTCGAGCGTCATTTCAACCCTCAAGCTCTGCTTGGTGTTGGGGCCCTACAGCTGATGTAGGCCCTCAAAGGTAGTGGCGGACCCTCCCGGAGCCTCCTTTGCGTAGTAACTTTACGTCTCGCACTGGGATCCGGAGGGACTCTTGCCGTAAAACCCCCCAATTTTCCAAAGGTTGACCTCGGATCAGGTAGGAATACCCGCTGAA +>XM_036071201.1 PREDICTED: Halichoerus grypus sequestosome 1 (SQSTM1), transcript variant X2, mRNA +CCCGCCGCCGCCGCGGCCCGGCTCCGTCTCCTGCTCTCCGACCGGTAGCGATGGCGTCGCTCACCGTGAAGGCCTATCTTCTGGGCAAGGAGGACGCGGCCCGCGAGATCCGCCGCTTCAGCTTCTGCTTCAGCCCCGAGGCCGAGGCGGAGGCCGAGGCGGAGGCCGCGGCCGGGCCCGGGCCCTGCGAGCGGCTGCTGAGCCGGGTGGCCGCCCTGTTCCCGGTGCTGCGGCCCGGCGGCTTCCAGACGTACTACCGCGATGAGGATGGAGACTTGGTGGCCTTTTCCAGTGACGAGGAACTGACCATGGCAATGTCCTATGTGAAGGATGACCTCGTCCGTATTTACATTAAAGGTCTGGAGGGCAGGGCCAGGGGCCCGCTGACTGAAAGCCCCCCAGTCGTGACGAGCGGTTCGTGTGGGGTCCCACCTGCAGAGAAGAAGGAGTGTCGGCGGGACCACCGCCCCCCGTGTGCTCAGGAGGTGCCCCGCGGCCTGGTGCACCCCGGCGTGATCTGTGACGGGTGCAATGGGCCCGTGGTGGGGACCCGCTACAAGTGCAGCGTGTGCCCGGACTACGACCTGTGCTCCGCCTGCGAGGGGAAGGGCCTGCACCGTGAGCACAGCAAGCTCGTGTTCCCCGGCCCCTTCGGGCCCTTCTCCGAGGGCGTCGCTCACAGCCGCTGGCTCCGGAAGCTGAAACACGGGCACTTCGTGTGGCCCGGCTGGGAGATGGGCCCCCCAGGGCACTGGAGCCCGCGTCCTCCCCGGGCAGGGGACGCCCGCCCCGGCTCCGCAGCCGAATCAGCTGCTGGTCCGTCGGAGGATCCCAGTGTGAATTTCCTCAAGAACGTAGGGGAGAGTGTGGCGGCCGCCCTGAGCCCTCTGGGCATCGAGGTGGATATCGACGTGGAGCACGGCGGGAAGAGGAGCCGCCTCGCCCCTGTCTCTCCAGGCAGCTCCGGCACCGAGGAGAAGTGCGGCTCCCAGCCGAGCAGCTGCTCTTCGGACCCCGGCAAGCCGGACGCGGACCCGGAGGGCGCGGCGCGGTCCCTGGCGGAGCAGATGGACAAGGTGGCCCTGGAGTCGGTGCCACCGGAGGAGCAGATGGAGTCGGATAACTGCTCGGGGGCAGACGAAGACTGGACTCACTTGTCTTCCAAAGAAGTGGACCCGTCCACGGGGGAACTCCAGTCTCTACAGATGCCCGAATCCGAAGGGCCGGGCTCTCTCGACTCTTCTCAGGAAGGGCCCACGGGACTGAAGGAAGCTGCGTTGTACCCCCATCTGCCACCAGAAGCTGACCCCCGGCTCATCGAGTCCCTCTCCCAGATGCTGTCCATGGGCTTCTCTGACGAAGGCGGCTGGCTCACCAGGCTCCTGCAGACCAAGAACTACGACATCGGGGCGGCGCTGGACACCATCCAGTATTCGAAGCACCCGTTGTGACGGCTTCTGCCCCCTTGTCCCACCCCCTTCTTGTCTCCTAGTTGTGTTGAGCTAGTGTAGAACAGCAGGGCCTCTCTAAGGGCCAGTTTCTCTGCATTCTTCTTCCAGAATCTGGGGGGCGGGGATGCACCAAGCCATCCAGGGCAGTGGAACAAGTGACGGGGGGGGGGCCCCGTGTGTGGCTGCCCATGTCGGAGAAGCGTCTGCTGGCTTCCAGGGGCGGACGCGGGGCCCAGTGGTGTTCTCCTGCCCTCCCCCCACCAGGATCACACCAGCAGTCCAGAATGTCTTGCCTAATGGCCTTTTTTTTTTTTAATGACTAATAGTAGGCTGACA +>XM_050309850.1 PREDICTED: Myiozetetes cayanensis ring finger protein 111 (LOC126636998), transcript variant X10, mRNA +GCAGGCTCACCCGTGTCTAGGCCTTCCTTAAATCTTTCCATGTCTGAATGGACTCCTGAATGTAATATAGTCTATACTCCAGAAGCGGATATGAAGAGTGAAGTTCCTTCTGATGCACCAAAGAGCCAGGAGAGTCTGAAGGGGATCCTCTTGAACCCTGAGCCTATTGGGGCGGCCAAAAGCTTCAGTGCAGAAGTTGAGATGATTGCCAGTAAAGTAGGGAATGAGTTCTCCCACTTATGTGGTGACTCTCAAAAGCAGAAGGACATGAATGGCAACCATACAGACCAAGAAAAAAGTATTGTGCGAAAAAAACGCAAGAGCCAGCAGGCTGGTCCTTCCTACGCTCAGAACTGTCCTGATAAGGAAAACAAAGGAATCTTGGGATTGAGGCAGCATCTAGGAACACAGAGTGAGGACAATGACTCTTCTTTTAGTGACTGTATCTCTTCACCTTCTTCTAGCTTACACTTTGGAGACTCTGACACAGTAACATCTGATGAAGAGAAGGATGCTCCTGTCAGACACCCTCAGGCAGTGCTGAATCCTGTGAGCAGAACTCACAGTGCCCGGTCACACAAGTGGCCTCGCACTGAGGCAGACTCTGTGCCCGGATTACTCATGAAAAGGCCCTGTTTTCACAACAGCTCTTTAAGAAGGCTCCCATATAGGAAAAGAGTTGTGAAAACAGGCTCATCCCAGCGGACACAGAACCAAAAAGAGCGGATTTTAATGCAGAGGAAAAAGCGGGAGGTGCTGGCTCGCAGGAAGTACGCACTGCTGCCCAGCTCCAGCAGCTCCAGCGAGAACGATCTCAGTAGTGAATCTTCCTCCAGTTCATCTACTGAAGGGGAGGAAGACTTATTTGTGTCACCTGGTGAAAACCACCAGAACACTACAGCTGTTCCTTCAGGAAGCATTGATGAAGATGTTGTGGTGATTGAAGCATCCTCCACTCCCCAGGTCACTGCTAATGAAGAAATAAATGTTACCTCAACAGACAGTGAAGTGGAGATTGTCACAGTTGGTGAAAACTACAGGTCTCGTTCTGCACTTGGACACACAAGATCCCACTGGGGCCAGAGCTCTGGCTCTCACGCTCCACGACCTCCGGAGCAGCGGAACCGCAGCAGGATCTCCACGGTCATCCAGCCCCTGAGGCAGAATGCGGCTGAAGTTGTGGACCTCACGGTGGATGAGGATGAGCCAACAGTTGTGCCAAGCACATCAGCTCGAGTGGAGCCGCAGGTCGTGAGTTCTGCTTCCAGTAACAGTTCCAGTACCTCTACCTCAGAGCAGGCCTCTGATGCAGCTCCCACCATCTCCACCAGCCAGCCCTCTGCAGCTCCAGAGACGACTCCCAGTCTTCCCAGTGGCAGCACTGCTGGTACTTCAGCTGGAGATGACATAAGAAGAACTTCATCTAATACAACACTGGAAACTGGCCCTCCGGCCATGCCAAGGTTACCGTCGTGCTGCCCTCAGCATTCTCCTTGTGGAGGACCTTCACAGACTCATCATGCCTTGGGGCACCCACATACGAGCTGCTTTCAGCAGCATGGCCACCACTTCCAGCATCACCACCACCACCACCACAACCCTCACCCGGCTGTCCCGCTCTCCCCTTCGTTCAGTGACTCCAGCTGCCCTGTGGAAAGGCCTCCCCCGGTGCCTGCCCCGTGTGGAGCAAGCAGCAGTTCTGGCACCACTTACCATGATCAGCAGGCACTGCCAGTAGACTTAAGCAGCAGTGGTATAAGAAGTCATGGAAGTGGTGCTTTTCATGGAACATCTGCCTTTGATCCTTGCTGTCCTGGTTCTTCATCCCGAGCGACGATCTATGGGCACCAGGCTGGGGCTGGGCCGAGCCAGTCCCTGACAATAGATGGATACGGATCAAGCATCGTTGCTCAGCCACAGCCCCAACCTCCTCCTCAGGCATCGCTCTCCTCCTGTCGCCATTACATGCATTCTCCTTTACCTGATGTTTTCATTGCAGATGCTTCCTTGACCAGACCACTTCACCATCAAGCTTCTGCATGCCCTCACTCTCATGGAAATCCCCCTCCACAGCCACAACCTCCACCTCAAGTAGATTATGTTATCCCTCATCCAGTGCATCCCTTCCATCCTTCAATCTCCTCTCATGCATCTTCTCATCCTGTTCCACCTCCACCACCGACTCATCCTTTAGCCAGTGCAGCTGCTCCAATCCCACAGCATCTTCCTGCAACACACCAGCCTATATCCCATCACATCCCTGCAACAGCACCTCCAGCACAGAGGCTACATCCTCATGAAGTGATCCAGAGGATGGAGGTCCAGAGAAGAAGGATGATGCAACACCCAACACGTGCTCATGAGCGACCTCCTCCACATCCTCACAGAATGCATCCCAATTATGGGCATGGGCATCACATTCATGTGCCTCAGACTATGTCTTCCCATCCTCGACAAGCTCCAGAGAGATCTGCCTGGGAACTAGGAATTGAAGCTGGTGTGACTGCAGCTACTTACCCTCCAGGGCCTTTGCATCCTCACTTGGCCCACTACCACGCACCTCCTCGACTGCATCATTTGCAAATAGGGGCACTCCCTCTAATGGAGCTGATTCACTTGGAGGAACGATTAGGCAACGTGAATCGTGGAGCAACACAGGGAACTATAGAAAGATGCACATATCCACATAAATACAAAAAGAGGAAACTGCACTGCAAACAAGATGCGGAGGAAGGAACAGAAGAAGACACAGAGGAAAAGTGTACCATCTGTTTGTCTATCTTGGAGGAAGGTGAAGATGTCAGGCGCCTTCCGTGTATGCACCTTTTCCACCAAGTCTGTGTAGATCAGTGGTTGATTACTAACAAGAAGTGCCCCATTTGCAGAGTGGACATTGAGGCTCAGCTGCCCAGTGAAAGTTGACACTGCTTTCCAGAACTCTTGTCCTCCCGCTCGCTCCCTCTCATCCCTCCTGGTACTGCAGTCAACCAAAGATGGCATGACTTACCTGCGCAGATGTGGAACATTGAACCTTAGAGTGCTGGCTCTGCTACATGGTACAACTAATGCTAGACCTACAGTTTATTGTAGAAGACAGTTGAGTTTCAGTGTATTTATAATTTTTTTAAAATTTTTTTAGGTTTTACTTTTTTTTCTTTAAATTCATTACTGTATTTTTGCATGGTTCCTTGTATTGCATTTGTTTGCACATATTATGGGCTTTGTGACCCCAAACTTGCAGGCAAGATTAGCTGCTTTAGTAAGTAGAATTGTGTGGTCTCTTTTTTTTTGGTTTGTTTTATGTAGTATCAAGCTTTGAAAGTATGATTTCACTCATTACTAACCTCGAATTCCTTAATTTAATCAATCATATTTTAGTTTAAATGTATAAAGATCATCTAGAAAAGGATAATATTATGTATTGAGACATTCCTTAATTAGGAAAAAATGGCTGCTGTATATTTACAATATCAGTTCTGAGTCAAATAACATCCTTAATACTGGGAACAGAATATGGACTATATTCAGTTTGACTGATACATATAGCATACTCATCACCAGAGTTTTTGTCTGATCAGATTTTTGTGTTTGTTTTAAAAATTTCAGCACAATGCAGATATATTTGAATGTCAATATTAAACATTTAGACTGCTGTTCAGATTGTATTTATCATTTTCTTCTATGTCTAGAAATTTGAATCCCTAACTTAAATATATGCTGCTGTGAAACAGCTCTAGTGAACACTAAATGTTGATTTCAGTTAGCTGGATTGTAGATACTTGCAGATTGAAAGACTTATTAGGGAAATGGAAAAAGAGCTTAGAATCTGTTTGGTCTTCTGCTAACTTAAGTTGAAGTATCTGCGCACATTGAGAGTTGGTTTGTTTTTTTTTTTGTTGTTTTGGTTTGGTTTTGGGTTGGGTTTTTTTGGTGGGTTTTTTTTGAGGGGAGGGGTTGTTTGTTTTTTTTTTTCTTTTTGTTGTTGTTGCTGTTTGGGTTTTGTTGTTGGTTTGTGGGTTTTTTTTTAATATAAAACCATTCAGTAAGGACTTTAAGCTACAGGGTTTTTGTTTGGGTTTATATACATGCATTCATAGAATTTCTAAGGATTCCAGGCGTGTCTTGGGATTTTTATTAGATTTAAAGTTAATAAAGTTAGCTAAATCCACTTGTCTCTTGTTTTTATTTTTCATTAGTAAATTAAAAGCCTGTAAATTTCTGTAGAAACTGAGACACAAATTATGTGGTTACCTAGTTTTTGCCTTGATCATAGGTTCCCTCTTTATAAATTACCAACAGTCCATCACTGATTGAAGTATTTTCTATAGTTAAGATTTGCTGCATAATATAGTATATAGAATTAATAATGTACTAACATTTTGCCTTTGGAGGAGGTTTTAATCCACATCAGGATTCAAGTTGCTTCAACATTCTTTCACATATAATAGATTATAGTTTATTTAAATGTGCTCAACATTGCAAAATGCAAATGTGCAAAAACATTGGGACAGTATTACTGTCACTTTGGAAAAGATGTTCCTCGGGGATCATAGATAAATATGTCAATTAGCTTGCATTAAGCCACCTGCTTTGTAAGTGAATTGAATAATAAATACCTTCAGTTTCTCTTGTCTTTGTCTTTCATAATCAGATGATATGTACAATGGTTTACAGTAAATCTAGAAGATGAACTGTTATGTTTACACTAAAAAATGATCCATTTATAAATATTACCTTATCTAATTTGATGCCTGTTTCTGTCTGGTTCAAGCAGCTTCCTTTTTATTATTTTTTTTTTTTTTTTTGTCAACAAACTTAACACCTCTGGCACTGAGGCTTTTAGTGGAGAGAATTTTTATTCCAGTATGTATGTGATAAATGGACCTTCTCAAGCTTCCTTGTGTTGCTAGAACTGAACTTAAAACCACTTTGTGCTTGTAAATGGGGGATGAGGGAGAGAGGCAGCCCAGGATCTGACTGCTCCTGTGGGTTTCTGCTAAAGCTTTTGGACATGGTGGCTGTAGGAAATTCAAAGACTGGAGTTGGAGCTTCATTGCTAAAAATGAATAAAAGTAGCTGGAAGGACTGACCAGACACTTTGCTTTCCCATGACTGAAAAGAAGGGAAGTTAGTTGACTGCTAATGTTTGAAGACTGATATTCACTGCTAAAAGGTTCCAAGAAGGTACTTGAGAGACATGGGACAAAAAAACCCAGGGCCTCTAAAATAATAGACCCTGGGGTAGAATCTCTTTTGGCTTTGTTACTGGACAAAGAAGCACAGATTTGGGGGATTTTTTTTTTTAATTTTTTATTTTGTTTTTAGGAAATATTTTATGGGTCTGATTTGAGTGCGTGGTACTAGAGGTATTTTAGTGGTCCATGATTTGATTTATTAGAGCTACTGATACTGTCTTGCTTTTAAATGTATGCATAACATTGTAATGTGATGTTGAACACTTTTGTCAGGAATCACGGTATTCTGATCTTAATGCTATTGCAGGGGCTAAAAAGCTGCAGCTTACTTCTGTTCCGGAAGGTTGTGACTTAACCGTAATTTAAGAGAAGGAGAAAGATTAGGCTTTTCATTTTGAAAATTTCCACCACTTACTGTGCTTTATATGCTTAGATGCATTGCCTTAAGTTTTCTGCAGCATCTTTGACTTTGAAGATAAGATTCTCAACAGTATGCATCAAATTACTTTTCATATGAAACTCCATTGTCAAAAGAAATCCTTTTGTATGCAATAAATAAAATGTTAGACTGGTATCATTCAAAA +>XM_033409705.2 PREDICTED: Orcinus orca olfactory receptor 2J3-like (LOC105748649), mRNA +TTCAACATTCCCTATCCAGTTCCTCTGTTGCATGTAAGTTCATGAACCAGCATTAAGTTCTAAGCAAAGGATAATCAGGCTTCAAAATTCTGACTGTGGTGTTTCCAGCAAGTAGTGTTAAGCAATGAGAAAATTCAGTAACACTTTTCATCACTCTGATGGCTTTGTTCTGGTGGGCTTCTCTGAATGGCCCAAACTAGAAATGGTTCTTTTTCTGGCCATCTCTGTTTTCTACATAATGACCCTCCTTGGGAATTTAGCCATCATTATCTTGTCATGCCTTGATGCCAGGCTCCACACCCCCATGTATTTCTTTCTGTCTAATCTCTCTTTTTTGGACCTTTGCTGTACTACTTCCCCTGTCCCCCAAATGCTGGTCAACATCCAAAGCCACTGGAGAAATATCAGCTACCTAGGATGCATAGCTTAACTTTTCATATTCCTTAGTTTAGGATCCACTGAATGTGTACTTCTTTCAGTAATGGCCTTTGGTCGTTATGTAGCTATCTGCCAGCCTCTCCATTACACAGTTATCATGCACTCTTGGCTATGCCAACAACTGGCAGCAGTGGCTTGGGTAACAGGTTTCAGCAACTCTTTGGTGCAAATAGTGTTGACCTTCTTGTTACCTCACTGTGGTCCATATCAGGTGGAGAATTTCTTCTGTGAGGTACCTGCCATGCTTCAATTATCATGTGTTGATACATGGATCAATGAAGTGGAGATGTATGCTGCTGTAGTGGTCATAAAAGTCTCTTAAAATTTTGATTATAAGGAATTTCACTTATTCAACAAATATTTGAGTGCCTAATTGTGTGCCAGGCACTGTTCTAGGCACTTTGGATTTATCAGTGGACCAACAAAGAACTTTGCACCATGGAACTTACATTTTGGTTTGGGAGAAATCAATGATAAGCAATAGATACTAAATATCATGTTAGAAGATGGTAAGTGCTCTGGAAAGGAAAAATGTGGAGTATGGTAAGAAGATGGGGATTGTGGGGCAGGAGGCATACATTGCAAGTTTAAATAGAGTGGTAAGAGTAGGACTCACCGTAGCTGTGGCATTTGAGCGAAGACTTGAAGGTGAGAGGAGACAATGCAGATATTTGGGGTAAAAATGTTCCAGGCAGAGGGATCAGCCAGTGCAAAGGCCCAGGGATAGGAGTGTGTTTGGCTTGTCCGAGAGATAGGAAAGAGGCCAATGAGAATGGAATGGAGTGTGTGAGAAGAGAATATCAGAGAGATTACACAGGGACCTGATTGGTTAGGGCAGGGGTTGGCAATTTTTTTCTATACAGGGCCAGATAGTAAATATTTTAGGCTTTGCAGGCCATATGGTCTCTGTCACGACTACTCAATTCTGCCTTTGTAGCACAAAGGTGGCCATAGACGATACTTAAAGCTTTACTGGAATATAGCCATGCTCATTTGCTTATTTATGGACTCTAAATTTATTTTATATGTCATAAAATATTCTTTTTCTTTTGTTTTCCACCATTTAAAAAATGTAAAAACCATTTTTAGCTCCCATTCTTAGCTCATGGGCCACATAAAAACAGGTATCTGGCTGCATTTGGTCTGTGGGCCATAGTTTGCAAGCCCATGGTGAAGGGTTTCCAGGGCCCTTATAAGATCTTTTGTTTTGGGACTTCCCTGGCGGTCCAGTGGTTAAAACTCCGCGCTTCCAATGCAGAGGGCACTGGTTCGATCCCTGGTCAGAGAACTAAGATCCCAGATGCCACGTGGCGTGGCCAAAAGATTTTTTTTTTAAAAAAAGATCTTTTGTTTTTACTCAGAGTTTAAAGGGGGAGCCATTAGCAGGTTTTGAGCAGATAAGTAAAATGATTTGATTTATATTTTTAAGGGATCACTCTATGGAATGATGTCTAAGATTTGCTTCAAAATAATCTGGAGGGCAGGGTACTATGGGGGTTAAAGATGAATCAAGATGGGTCATACATTAATAATTATTGAGTCTGTATAATGGGTATATAGGGTTTAATATAGTATTCTCTATGCTATTATGTAGGGTTTTCCATACTAGAAGGTTAAAACAAAAATAGGCACTCTGGCTGCTTATTTGGAGCAGACTGTGAGGAGGGAAGGTTAGGAATGAGAAAAGCAATTAGGAGGCTATTACGGTAATCCTTGAGAGATGGCAGTGGTGGCTTTGTCTGGAGTGGTAGCCCTGGAGGTGGTGAAAAGTGGTTGGGTTCCAGGGCTTCCCTGGTGGCGCAGTGGTTGAGAGTCCGCCTGCCGATGCAGGGGACACGGGTTCGTGGCCCGGTCCGGGAAGATCCCACATGCCGCGGAGCGGCTGGGCCCGTGAGCCATGGCCGCTGAGCCTGCGCGTCCGGAGCCTGTGCTCCGCGGCGGGAGAGGCCACAGCGGTGAGAGGCCCGCGTACCGAAAAAAAAAAAAAAAAAAAAAAGTGGTTGGGTTCTGGATGAATATTGAAAGTAGAGCCAAGAGGATTAACTGTGTATCGGGTATGAGGTGTGAGAGAAAGATAGGAGTTGGGGAGGCTTCCAGGTTTTGGCCTGAACAGGGAGAAGGGTAAAGTTGCCATAAACTGAATGGAAAAATCTGCAAGTAGAAGAGATGTGGGCGGAAAGATCATCATGAGTTCAGTTTTAAACATTTAAGTTTGAGATGTCTACCAGATATCCTAGTGGAAATATTAAACCGACAGTTGTCTATGCGAGTTTGGAGTTTGGGAGGAAGTTTTGGACTGAAGACATAAATTTGGGAGTCATTGTCATGTAGGTATCTTTAGCTTGGACTGGGTAAGATCACTGAGTGAGGGAGTGTAGATAGAGAGGAGAACAGTACCAAGCACTGGGCCTTGCAGCATTCCAGTGTTAAGTAGTCAGGAGAGTAGGGAGAGATAGCAGAGGAGACTGAGAAGTCACCAGGGAGACAGGAGGAAAACCAAGAGAGCATAGTAGCCTAGAAATCAAGGAAAGAAAGCGTTTCAAGGAGAGGGGAAAGATCAGTGATGTAAAAATACTGCTTGAGTAAGACGAGGACAACAAATTGACCCCTGAATTTAGCAATGTGATTATTGGTAATCTGGATGAGCAGTTTAGGTGGAGTGATGATGGCAAAAGCTACATTGCCAAGGGTCAGGGCAAAGAAATGGAGTAAGAACAGTCCGGAAAAGTGAGGGAAAGAAGTCCGCTCTTTAAGATGGAAGAAATAACAAGTATGTACAGTCAGCCCTCTGTATCCGCAGGTTCTGCATCTGAAGATTCAACCAATTGCAGATTGAAAATATTTGGAAAAAAATTCCAGAAAGTTCCCAAAAGCAAAACTTGAATTTGCCTTGCACAGGCAACTATTACATAGCATTTGCGTTGTATTAGGTTTTATAAATAATCTAGAGATGATTTAAAGTACGGGAGGATGCACGAAGGTTACATGCAAATACTATGCCATTTTATATAAGGGATTTGAGCATCTGTGGATTTTGGTATCCACAGGAAGTCTGGAGCCAATCCCCTGAGGATACTGAGAGACTATTGTATGTATACTTGTTAACATATAGAACATAACAGTATGCATGCAAAGAGAGTGACCCATGAAGAGGAAA +>XM_042525726.1 PREDICTED: Zingiber officinale uncharacterized LOC121974587 (LOC121974587), transcript variant X1, mRNA +TTGATCAACGTTTGACGAATTAGAGAGTTGAGGCCTCTTTTGTTTTGAATTTAAAGGAAATGGCGTCGTCTTCCAAGAGATCTGGCAGACCGGTGCTCCCTTTTCGGAGATCTGTCTCTCCGGCTGGCGGCTTCGCCTCCTCGTCAGCCAGCCTCTCTGCTCCCTTCTTGCATCACCGATCGGCCTCCCCTACCCGCGTCCACCTGGCCGGTGCTGGGTCTTCCGGATCTTCCTCCGTTCGCTTCTCCCTCAACCGATCTGCCTCCCCCGGACGCTCCATCGCTGCGTCCGACAGCCGATCATCTCCCGCCCCGGCCCGGCGCACCTGCCTCTGCTCTCCTTCCACTCACCCTGGATCCTTCCGCTGCCACCTCCACAAGGGCCTCAACGGCGGCGGATCCGCGGCCGCTTCCTCGCCGTCGAACAGGCTCAATGCGCGGAGGTCCGCGATGGCGAACTCGCTGGTCCGGATCGGGGCCGTGGAGGGCGAGTGGGTGAAGCGCGCGCTCTCGGCGCTCATCCGTCCCTCCTCCCACCAACAGCGTCGGCGGGGAGCCTTCCAACCCCGCCCTAGCCGCCTCTCTCGGATGTCCAACGCTGCCGATCCTAAATCTCCGTCGTCCGATCCACCGATCTAGAATCAGTAATGGGAGTAACGTTCCCTCGCTCCGTTACGTTCCCGTTGGGCTTCAAGTTTGGATTGCGTCGCCGTCAAGTTCTCATCGTTCGCCGGTACGTTCCGTCATCTGCGAGGGAATTGCCTCAGGAAGCTACTTGATTCAGTGACTCGGCCACTGGTGAGATGAATCGTAAGAATTATTTATTTAAATCATTTCGATAAATAGATAAAGGACATAAAATATGATGACTAGGTCTCAATTAAAACTATAATATTAAATCACTTTAGTATTAGAACCATTCACTTAACACAATAATCATGTAATGATTTTGAAATTCTATCAACGAATTTTAGAAAATAGAATAACTTCAAAGTTCAGAAGATAAAGTGAAAGTTTGGTAGAGGAAAACATTAGGTGAGGACAATGGACAAGTCCATGTGGAAGCCATAATTGTGGTGGGAAAATTGTTAGTGGAACTGAACCACCAAGAACCTAATTCACCTTCAAATTATTTCAACATCAAACGCATATTTAAAAACTACAAAAGTGAAACAAATAAAGAAACGTTGGGTGGGTTAGTTGGATTAGCTAAGCATCACCATTTAATATAGCACGCATATTTTACCATTACATTATTTTATTTATCATTTTAAATTTTAGTCTATAAAGGTGACGCAACAAAATTTAACATGTTATTTTTTTATCCTTTTAATTAAGAATAATGTACCTAAAAGTAACATATTGGATGTTATATTAATAAATATATCATTTTATTGTTTTCAAAGGGTCATCCCTTAGTGACAAGTGGGAATAATCACAATAGTTGAAATCATAAGGAGAACTTGTGATGGTGGAGATTGGATCTAGATGGTGAGGAAGAAGCTCCACCAGATTTTGTGATGACAAAAAGGACAGTTTGGATAATGTCTATCAACATAATATAAGCATTCCCTTTCAAATTAATTAATTATAGATATTGTTCTTATTAAAGAGTCACGGAACCAAGGTTATCATCTTGAAATATTGGTTAGTGGCTAGCAGGATCTTGTGTATCCCATGGGCTTTGACTGGAACAGTTGGCCACAGTTTATTATTAAAATTTGGGAAACCTAAAGATTTTTTCTTTTTTTTGTAAAATTTTACAAAAGAAGTATTAGAGGGAGATATAATTAATTACAATGATGAATTTATAAATTATTAAAACAATTAGAAAATGTATACCGGCCAAATTAATTAACACAACATTATGTGTATTCATCTGTTCCTTGTTTATCAAAGACAAAATTAATACAAAAGTGCGATTTGAAATAGTATTTTAGTTGGGTAAGTGTGTAGTGGGAATTGTCCCGCTTGCTATGGGTATTCAGATTATGGGGAGATCGTAGAGAAAAGAAAGAGAGAAAGGGAAGATGAGAAGTAAAACAATTTTAAAAGAAAGCGAAAATAATGATAATTCTTGCTTTTGTTCTCTTTGTCAACTCATTTTTCCATCCCATGGGCATTGCAGTTGGAAAATTTGCTACAAAGGAGGTTTATATTATATATTTCTGTGAAAGTCTCATTTATAGATAGTTATTGGATCAAAGTATAGTTAAAGAAAAAAAAACTTAATTACTAATTAATTAATATCCAAGATCTATTCTGCTCATATAAAAGAGTTATTCAAAAGATCGTACTGTAAAAGTTTCTTCCAGACTATTTGTTTCCCGATCCACTGATTACAATCATATCAAGTAGTAGCTGTGGGCAACTATAGCAATGGTTAGTGGTCGTTTTTTTTCCTGGTTTTTGATGGATGAATTTTAGAAAAAAGAAGAAATGTTGACCAATGTAACTGATGAACGAGCCACTCTCTAGAAGAGTGACAGATAAGAATCAAGCGAGGTTGAAAGGAAAATTTTGACCGGAACAAAAGAGGCTGCAATTGTCAAATTTACTTCTAAGAAGTCCTTTTAAAGTGGTCATTAATCCGAGCATCAAGTTTAAGACATTGTTTTTAGAGAAAGATGTTGGGCGTGGAAGCAAAGGCGACGGCACTGACATGGAAGATGATAGAAGTCAATTATGGCACAGGACTTTGTAAGAATCCATCTTCTCATTCTAGAAGAAAAAGGATATTTTTCACCGGCGCCTGTTTGATTTCCCGTACAGATAGTTAGGCGTAGGGTCGATCGTATGGGATAGTTATGACCGTTTGCAGAAAAAGAAAAAAGAACATTTTTCCTATTTATAAAGTGGTATTTCGAAATAGATGATAAACAATCGAAGATGATAAGAAGGATTTTAGGCAA +>XM_039010113.1 PREDICTED: Salvelinus namaycush gamma-aminobutyric acid receptor subunit delta-like (LOC120060710), mRNA +ATGGACATGATAACTTTCATGTTGGCGAGCCTTGCCCTCCTGAATATCAGGGACAACATTTTCACCAGGGCCATGCTGAGTGACATTGGGGACTATATAGGTTCAGACATACAAATTTCCTGGTTGCCTAATCTGGATGAGTTAATGAAGGGCTATGCGCGAAATTTTCGCCCTGGGATAGGAGGCTCACCCGTGAATGTTGCCATGGCTATTGAAGTAGCCAGTATTGACCACATCTCTGAAGCCAACATGGAGTACACCATGACCATTTTCCTGCGTCAGAGCTGGCGGGACGACCGCCTGTCCTACAACCACACCAACAAGACCCTGGGACTTGATAGCCGCTTCGTGGATAAACTCTGGCTGCCCGACACCTTCATTGTCAACGCCAAGTCTGCCTGGTTCCATGACGTCACCGTGGAGAACAAGCTGATTCGCCTGCAGCCTGATGGGGTCATCCTTTACAGCAGCCGGATCACCTCGACTGTGGCGTGTGACATGGACCTGACCAAATACCCCATGGATGAGCAGGAGTGTATGCTGGACCTAGAAAGCTATGGCTACTCCTCAGAGGACATTGTGTACCACTGGTCTGAGAGTCAGATACATATCCACGGACTGGACAAACTGGAGCTCTCCCAGTTCACCATCATCGACTACAAATTTGTCACGGAGACGATGAACTTCAAATCCGCCGGACGTTTCCCGCGGCTCAGCCTTCGCTTCCAGCTGAGACGAAACCGAGGCGTCTACATCATCCAGTCCTACATGCCCTCCATCCTACTGGTTGCCATGTCCTGGGTGTCCTTCTGGATCAGCCAAACAGCAGTCCCGGCTCGGGTATCCCTGGGGATCACCACTGTGCTCACCATGACGACTCTGATGGTGAGCGCCCGCTCATCTCTCCCTCGAGCCTCAGCCATCAAAGCGCTGGATGTCTATTTCTGGATCTGCTACGTGTTTGTGTTCGCCGCGCTCATCGAGTATGCCTTTGCTCACTACAACGCCGACTACAGGCTCAAAGAGAAGGCCAAGAGCAAGGCCAACAAGATGAGCTCCGAGTCAGTCGTAAAGAATGGGAAACAGGCCATGGTGCTCTTCTCCCTGTCCGTGGCTGGAATGAACCAGGGCCTGATGGTGTCCAGCCGCCGTCCGCAGCGCTCCGGCGCCGAGACCGCCGAGGAGGAGGACGTGGAGCACAGGAGGGGGCGGGGGACCACAGCGTCAGAGGAGAGAGAAGAGGATAAGAAGTGCTGTAGTTGTTGTTCCAAGTGTTGTTGCGCTTGCAAGCCCCTCCAAGCTGATACCATAGATGTCTACGCCAGGGCCGTGTTCCCTGCCACCTTCGCCATCGTCAATGTGATCTACTGGGTGGCGTACACCATGTGA +>XM_010916034.2 PREDICTED: Elaeis guineensis potassium transporter 7 (LOC105039769), transcript variant X2, mRNA +TTCTCCCTGCTTCGCCATCTATGGGCTTTCGAGAAAACTGTCCTAAAATCTCACGGTTTTTCTCAGCTTTCTCCATCAGGTCGATCTCTCCTCGATCTAAGCTTCGTCGGTTTGCGGCCGATTCCTTTCCACTTTCCATCGGAAGTTCCTTTGTTCTTCATCTATGTCGTAAAAAGTTCCAATTTTAGATCAATTCTGGTTGAGTTCTCCATGGCGGAAAGCTCGGGGAGGGCGAATGGGTGGTTGGCGAAGATGGATTCCTCCGAATCGAGGTGGGTCTCTCAAGGTGAGGAATATTCTAGCGAGGAAGAGGAAGAAGAGGAAGAGTTGGTTCGCCGGGCTGTTTTCGAGTCGGAGGAAGAGGACAGCGGGACCCGGAGGTTGATTAGGACCGCCCCCCGGCTCGATTCCTTCGATGTCGAGGCGCTCGACGTCCCCGGAGTTCAGAGGAATGAGGTCGAGGAACTTGACTTGCGCAAGAACTTCATACTTGCTCTTCAGACTCTTGGTATTGTGTTTGGGGATGTGGGAACGAGTCCATTGTATACTTTTGATGTTATGCTTCATCAATCACCAGTTCGTGTGAAGGAGGATGTCATCGGAGCGCTGTCTTTAGTTCTATATACTTTGATTCTGATACCGCTGGTGAAGTATGTGTTGGTGGTCATTTGGGGCAATGACGATGGTGAAGGTGGCACATTTGCTTTGTATTCATTGATATGTAGACATGCAAAGGTAAGTCTTCTACCAAACCAATTGCGTTCTGATACCCACATATCAAGTTTCCGCCTCAAGGTTCCATCACCGGAGCTAGAGAGGTCTCTAAAAGTTAAGGAGCATCTTGAGTCTTCATTGATGCTGAAGAAACTGCTTCTTATTTTGGTGCTTTTTGGCACTTCCATGGTCATAGCGGATGGAGTTGTCACCCCAGCAATGTCAGTATTGTCAGCTGTGGGTGGTCTGAAGGTTGGAATAGCTAGCTTTGAAAAAGATGAAGCGGTGATGATTTCAGTTGCATTTCTTGTAATCTTGTTCAGTGTACAGAAGTATGGAACCAGCAAAGTGGGGCTTGCAGTTGGCCCTGCTTTACTTGTATGGCTTTGCTCCCTAGGGGGCATTGGAGTTTACAACCTTATAAAATATGGTGTAACAGTTTTGAGGGCATTCAATCCTGTCCACATCTATTATTATTTTGAGAGGAATTTAACTCAGGCTTGGTTATCTCTTGGTGGTTGTCTTCTGTGTGCAACAGGTTCTGAGGCAATGTTTGCAGATCTTTGCTATTTCTCTGTAAGATCTGTTCAGCTAACTTTTGTGTTTTTGGTTCTGCCCTGCCTTCTGTTGGGATACCTTGGCCAAGCTGCTTTCCTCATGGAAAATGTAACTACATCTGAGCAGGTCTTCTTTTCGTCTATCCCAAGCACTGCAGAGCTTGGAATAATGATGATGACAACAATTCTAGTAACCATCATTATGCTTCTAATATGGCAGATTAACATTTTCATCGTGCTTTTCTTTGTCATATTCTTTTTGGGGGTGGAATTAGTTTTCTTCACTTCTGTTTTGGGTAGTGTGGAGGCTGGAAGCTGGGTTTTATTGATTTTTGCAGCAATATTGTTTATGATAATGTACATATGGAATTATGGGAGCAAGCTAAAGTATGAATCTGAAGTTAAACAGAAGCTTTCAATGAATCTGATGATGGAGTTGGGCTGCAACCTTGGGACCATTAGAGCCCCTGGTGTTGGCTTAGTTTACAATGAGTTAGTGAAAGGAATTCCAGCAATATTTGGACACTTTCTGACCACCCTTCCAGCAATCCACTCTATGATCATATTAGTGTGCATAAAATATGTGCCGGTTCCTGTAGTTCCTCAGAGTGAAAGGTTTCTTTTCCGGCGTGTCTGCCCAAAGAGCTATCACATGTTCCGTTGCATTGCTAGGTACGGCTACAAGGATGTAAGGAAAGAGCAGCACCAAATATTTGAACAGCTACTTCTTGAGAGTCTTGAAAAGTTCATACATCGAGAAGCCCAAGAACGCTTATTAGAGAGTGATGGAGATAGTGATTCAGATGCGGAAGAAGCGGCATCACGTTCAAGAATTCTTATAGCACCAAATGGCAGTATGTATTCCTTTGATGTCCCTCTCTTGGCTGCTTACAACAGTACTGAGAAGCCAAGCCCGGAAGCAAGCACTTCATCTCATGAGGCTCGAGATGAAGCCATGCCAGATGCTAGGCAGAGTCTTGAGCAGGAGCTTTCATTCATAAACAAGGCTAAAGAGTCAGGAGTTGTCTACCTCCTTGGCCATGGTGATATTAGGGCCCGAAAGGACTCTTGGTTTTTCAAGAAACTGGTCATAAATTACTTCTATGCTTTTTTGAAAAAGAACTGCAGGAGAGCGATAACAACATTGACTGTTCCCCACACAAATTTAATGCAAGTTGGCATGACTTACATGGTTTAG +>XM_035180460.2 PREDICTED: Hippoglossus stenolepis sperm associated antigen 9a (spag9a), transcript variant X14, mRNA +CCAGGCGCCTGTGAACGCAGCATTTGACGAGGAAGAGGAGGAAATCCACGTAGCTCGTCTCGCGTCGCGGGGTCCGGTCGTGTTGTGTCCTCGATGTGTCGGCCCGTGTAAAGAAACGCTGCTTTTCTACTCGGCGGATAAAGGCGTCCATAGTGGCGGGGTGACGCGGGGCTGCCCACACCGGTGCTGTTTGCTGAAAGCGGGGGAGAGGACAGCGGGGAAAATGGAGCTGGAAGACGGAGTCGTGTACCAGGACGACCCGGGGACGTCCGCGATGATGTCGGAGCGGGTGTCGGGCCTGGCCAACTCCATCTACCGCGAGTTCGAGCGGCTCATCGGGAAGTACGACGAGGACGTGGTGAAGGAGCTGATGCCGCTGGTGGTGGCCGTGCTGGAGAACCTGGACTCGGTGTTCGCGGAGAACCAGGAGCACGAAGTGGAGCTGGAGCTGCTGAAGGAGGACAACGAGCAGCTCATCACCCAGTACGAGCGGGAGAAGGCGCTGAGGAAGCACGCGGAGGAGAAGTTCATTGAGTTTGAGGACACTCACGAACAGGAGAAGAAGGACCTGCAGAACCATGTGGACAGAATGGAATCGCACTCCCGACAACTGGAGCTCAAGATCAAGAACTATGCAGACCAGATCGGCAGGTTGGAAGAACGAGAGCTGGAGATCAAGAAGGAATACAACTCCCTCTATCAGAGACACTCAGAGATGATCCATAATTATATGGAGCATGTAGAGAGGATCAAAATGCAGCAGATTAACGAGACTTTGGAATCGAGCGCGGTCGGCCGAGTCAGGAGAGAACGGCCTCTTTCTTTGGGGATTTTCCCCTCGCCTGGTGGGGCATCTCTACTCATCCCAGACCCGCAGGCCAAAGCGGAGACGCCGGGCACAGACCGCTGGAGGTTCACTGACTCAACACAACCACGGTCCAACACTAGCCTCAAGCAGTTGGACTATGTCGACCCCCCAAGGGACAGGGAGGGTAAGAGTGCGCAGGACTCTACTTGGGGAAATTCACTGGCAGACGACTGCAAGGATGAGCTGTCGGACTTCACCGGCTCCAAGTCGGCCACACCAATGTCCACGACCGCCTCTGACATGGAGAGGGAAAATGGGAACAGTAAGAGCACTGAGGTGCAGGCGGCTCCAGGGACCAGATCCATATCAGTGGGTTTGCCTGAAAACAAAGACAGCTCAGACGTGCAGGACATCATTGAGTCCACCCCTGAACTGGACATGGATCTCGCTGGATACAAGCTCTGCAGTACTCCTACCAAAGGCATTGAGAACATGGCCTTCGACCGCAATACAGACTCTCTGTTTGAGGAGCTGTCATCTGCGGGCACTGGGATAATAGGGGATGTGGATGAAGGGGCAGATCTGCTGGTGGAGTACTCTGACCTTAGTTTGATTGGTATGGGCCGGGAAGTTGAAAATCTCATTCAGGAGAATTCACAACTGCTTGAGACAAAGAACGCCCTGAACGTGGTGAATAAAGACTTAATATTGAAGGTGGACGAGTTGACCTGTGAGAAGGAGATGTTGCAGGGAGAAATGGATGCTGTGATGCAGGCCAAGGCCAAGCTGGAGGACAAGAACAAAGACCTGGAGGAGGAACTCAAAAAAGTGCGAGTGGAGATGGAGGAAGTGAAACACAAAACTAAAGATGAAGAAGATAATGATGTACCTACAGCCCAGAGGAAGCGTTTCACCAGAGTGGAAATGGCCCGAGTGCTGATGGAGAGAAACCAGTACAAGGAGAGACTGATGGAGCTACAGGAAGCGGTGCGGTGGACAGAGATGATCAGGGCCTCGAGGGAAAATCCAACACTAACAGAAAAGAAGAAGTCCAGCATCTGGCAGTTCATTGGCTTCAGCAGACTGTTTAGCTCCTCCTCCAGTCCCCCCGCTGGGAAGAAGGTGGAGTCCCAGTCCAACGTGAAGTACAACGCCCCGGGCGGCATGGTGAAGAGGAGCAGCACCTTCTCCCAGTTCCCCACAGAGAAGTCCAAGACCTTTGACTTCCTCAATGAAGAAAAGGACCAGTGTAGTTCACCATCGCGTAAAGAGCAGAAACGAGCCCAGTACAGACAGGTCAAGGCCCACATGCAGAAGGAGGATGGACGAGTCACTGCGCACGGCTGGAGCCTGCCCAGCAAATACAAGGTGGCAAATGGTGGACAGGTGGAGAACAAAGTGAACTTACCTGTACCGGTGTACTTGAGACCTCTCGATCAGAAAGATGCTTCTATGAAGCTGTGGTGTGCTGCAGGGGTCAACCTGTGTGGGGGGGGGATATCAGAGCTCACGAAGCAGACGAAGGGTTCTCAGAGTAGCCTGGACCAGCTGGAGCAAGAGAATAAGGATCAGGAGAAAGTGGAGCAGGAGAAGGAGCTGATACTTCAGGATGAGACGTCCAGTCGGGTGTGGGTGTGTACCAGCACCCACTCCTCCACCAAGGTTATGGTGCTGGATGCAAGTCAGCCATCTGACCTACTTGACAGCTTCTATGCCTGCAACACCCACGTCGTCTGCATTGCCAGTGTGCCTGGGGTGTTGGAGTCAGATTTTTCGACAGGTGAGGAGGTACCACAGGACGTGGACGCTAACCAGGGTGATGTGGTGTCACTGGCCGGCAGTGTGGCCAGTGTGGGGTCTACAGGCAGCGATGGAGCCATGGCAGCAGAAGGGACCACCGCAATCCCACAGATAGCCAGCTCAGTTGAGCTGTCCAGAGAGTCGAGTCCAGCAGAAGATGGGATTCCTCCGGCGGAGGAGGCAACAGAAGCAACAGAAGCTAACGCTGGTGTGGGTGAAGAGGGAGAGGAGGACCAGGGGGCAGAACACAACCAGCCGGGAATCTACACAGAGCATGTGTTCACCGACCCGCTGGGGGTGGGACCCACTGACTCCTCGCCTACTGACGCACAGAGGGGCACCGGGCAGGATGGAGTGGATTCCTTGCCTCCAGACTCGGACCCGTCGGAGGGGGATGTCCTGAGGATGAGCAGCGCCCTCCCCACCATGTGGCTCGGAGCTCAGAATGGATGTCTGTATGTCCACTCGTCCGTGGCACGATGGAGGAAGTGTCTGCACGCCATCAAGCTCAAAGACTCCATCCTCAGCATAGTGCATGTTAAAGGGAGAGTCCTGGTAGCGTTGGCTGATGGGACATTAGCAATTTTCCACAGAAGCATTACAGACGGACAGTGGGACCTAACCAACTATCACCTGTTGGATCTGGGCCGGCCCCACCACTCTATCCGCTGTATGACCGTAGTCCATGACAAGGTGTGGTGCGGCTACAGGAACAAGATCTACATTGTCCAGCCCAAGGCCATGAGGATAGAGCAGAAGTCCTTTGACGCTCATCCTCGCAAGGAGAGCCAGGTGCGGCAGCTGGCCTGGGTTGGAGACGGTATCTGGGTGTCCATCCGACTGGATTCCACCCTTCGCTTGTTCCACGCCCACACCTACCAGCACCTCCAGGATGTGGACATCGAGCCCTACGTCAGCAAAATGCTTGGTACTGGTAAACTGGGCTTCTCCTTCGTGAGAATCACAGCTCTTGTGGTGTCCTGCAGTCGTCTGTGGGTGGGGACAGGAAACGGTGTCATCATCTCCATCCCGTTGTCTGAAGCCAACAAGACAACGGGAATAGTGCCAAATCGGCCCGGCAGCGCTGTACGGGTTTACGGTGATGACGGTTTAGACTGTGCCATGCCAGGCAGCTTTGTGCCATACTGCTCCATGGCCCACGCCCAGCTGTGTTTCCATGGACACCGAGATGCTGTCAAGTTTTTTGTCACCGTGCCAGGTCAGGCAATGCCTCCTCCATGTAGCGCAGATTCAGGCTCCGATGAGCCCCCGTCTGAATCCTCTGACACAGCGACCTCCGAGCCCAAAACACACCTGGTCATGAGTGGAGGTGAAGGCTACATCGACTTCAGAATGGGTGATGAAGGTGGCGAGTCGGACGGTTTATCAGAGCCGACAGCCGACCAGCAGTCGGCACCAACCAAGGCTGAGCAGAGCCACCTCATCGTCTGGCAGGTCACAACTTCTAATGATTGAAAAAAAAACAACTGACATACTGTTGTCAGGGCCTCCCTCCAATCCTTGCATGTCCTCCTCTAAGTTTTACATTTGATATTACTGATTGTTCTTAATGCCTGAGTAGTTGACTACTTTGTAAAAAAACAAAAACAATTATTTTTAGTCCATGTTTTGTACAGTTTATTGTTTATGAATTTGAAAAAAGTGAGGATTATGTCGGTTTAAGGAAAACGTCCACGGTCCGAGTGTTTCCTTCTGCCGGGGCGCATGTTGGAAAAGCAGGTGCACGCAGGAAAAAGTTCAAGTCAGTTCAGGAGAAGGTGCGAGATACTGTAAGTGTGATCGTTTGTTTCTAAAACGTCAAAAACGGGTTTAGATGTGAAGGACAAAAAGGAAAAAGTACTTGAAGGATTCAGGAGAAGTCGTTGAAAAGGGACCAGGGAGTTTTCATTTGAATGAAATATATTTTATGTTACACACATAAGACTTTTACATTTGTAAACCACATGTGAGAATGGAGTCATGAATTCTATCCTGTGTTAAGCATTTTTTTTTATTATCCATACTATTCGGGCTGGGTGTGTAAATGTGACACCTACAGGTCAGAATACATTCATGCAGACAGGCTGATACTGGTCGGTCTGCTAAGTAGAAAACCAGTTTTCACAAACAAGCAATCCACAAACAAACATTTCCTCTAAACTAAATGTACTTTTATTGAGTAAAAGCTGTACGATAAAACATTATCTTAGAGGTCTTATTTAATTAAAGGAAACCGAGCCGCAGGATTATGTTTAGGAATGTTAATCATATCAAAGCAGTTAGGGTACTGTAAGGTTTCCTGTGAATAGAGGACCCAGCTTACTGTACTGTAGGTTAGCATTAACCGGAATGAAGGGAATCCTGTATCCTTGTGTGTGTGTGTGTGTGTTCGCCTTCTCGGCCATTTTACGGCTCAACCCTCATCTATTTGCGCGAGAAGAATCCACCCGTGCTTCCTGTTTGCTTCCGCTCATCGGCACTTTAAGATGTTAGATGTTATTCGCGTGACATTTGGAAGAACACTCGTGGTGATGCACACTGCACTGCCATGTGCTACATTTATTTATTTATTCGGTTTAAAATAACAGGAACAATGCTCATTAATAAACATTTTTGTAAAAGGGAACATAACGGACAAATCTTTATAGGGAGGTGACACCCCAGTAACCAAAGGACGAAAGAAGATGCACCGTGAAACTATTTGTTTTTTGGTTTTTTTCCATCTTTTAAACGTCTCATGAGTAATAATTTGAAGGTTTTAAATGTATGTTTTGTTGAAAAATAGGCTTGAATAAGGGAATTGGACTAAAAGTAACATTTCCGTGTGGCACCTTCTAACGGACATGCACACAGCACTAAAGAGTGTCTCTCCTGATTGCCTCATCATTCCTTGTTTTGTTGTTAAAAATACATTTTGAGGCCTGGAAGGCAAATTTTGTCATTATTTTTCTGTTGCTTTGGGCATCGTGCGTGTTTTGTATTCATCTGTGAGACACTTTCATTAAGTGAAGACTATTTTGTTGAAATAACCGAAGGATTCCAATATTGAGCAAGTGTTTTAATTTGTTTTTATATCTGAAAACTTGGACCACTGTTGGTCTTCAGTCTATTTCAAAATATTAACTTTATATTGTGCTTTATTTTTCTGCCATTCCAGTATTTATTTCCTTTGTTATGGAGCCTATCTGGGTTCAGAATGTAACTTTCTACATAAGTATAATAGGAGGCTATTGTAAACGGAATAGTCCAATGCGTTTACACGATTGTTAATAATGGCTAAATAAAAGAAATCAATGTTA +>XM_041364600.1 Suillus fuscotomentosus uncharacterized protein (F5891DRAFT_1130999), partial mRNA +ATGCACCCCTCAGAATTAGATGCTAGGATTAGAGTGCTCCCACCCTGCTTTGAGGTTTGCCATTTCCAGAATGGTTGGACTGTGCTCTCTCAGATCTCTGGTAGAGAGAGGAAAGAGATGGTGTGCATCTTATTGGGATGCTTAGTGGGAAAAGTTCCTCGACAGGTCATACTTGCATACCGCTCCTTACTGGACTTCATCTATTTAGCTCAGTACCCCACTCACGATGATCAAACCCTAAGCTATCTTCAAGATGCTTTGGACATGTTTCACAAGCATAAGGGGGTGCTTATTGAACTGGGCGTAAGGGACCACTTCAATATTCCAAAAATACACAGCCTCACCCACTATATCAACTCTATACGCCTATTTGGTGCCATGGACAATTACAATACAGAGGCATTTGAGCGCCTTCACATTGATTTTGCTAAGGACGCCTGGAGGGCAACTAATAAAAGGGAGGAGTGCCCTCAAATGACTTCATTGGAGATGACTCAGCTTCCATTTGACAAGCTTGACATATACCATGGTTTCAAGTTTGTTTTGGAGGAACTAGGGGAGGATGAAGTTGACAGTAGTAGACAAACTGACTGGATAAAGGCCTGTCCAAAGACTCATGGTTCCCATGGTCAGAAACACTTTGATACAGTTGTGGCCATGAGGACGGATGAGTGCCAAGCTACTGGGGTTCAAGGCAAAATCGGGCGACTTAGGTTATTGTTCAAGCTACCCCAACAATGGTATACTATGCTCAAAAATGTGCCAGAGAAAGAACACTGTATGTATGAGGTGAAGAAGATGCCACTAAGGAGCGGTAATGTAGTACCAGCAGATATCATTCCTATCAGCACCATATGTCAGACTTGTCAGCTAATTCCTTGTTTTGGTACTGCTGATGTTTCCAGAGAATGGAGATCAGAAAATGTACTGGATCTCTGTGACAGGTTCTTATTAAATAATTGGTCCACCAAGTATGCATACAAAACACTGTATTAG +>XM_041096011.1 PREDICTED: Gossypium hirsutum uncharacterized LOC107900440 (LOC107900440), transcript variant X1, mRNA +ATCTTCAATTGTCATCAGTTCCGTCACACCCCAATTCTCACAGTCAAACACTTGGAACCTTCTTTCATACCCCACTGCCATTTTCCCTTTCATTTTTAACCGTAATTTTTCCATTTCCTCCTCACTCAACTTTCAATCCTTCTTCTTTGTACATAAAAGAATTCGCAAAATCAAAAAAAAAAAATTGAAGAAAGAAAGGAGATGGGTTTTTCAAAGGAAGAGAAATCGAGAAGAATTTGGAGGGTATTGAAAACAGTGTTTTTCTTGATAACAATGGCGATTTCGTTCCTCGTATTTTCTGCGCCGGTTTTTCTCGTTCTAGCCGATGCTCTTTTGCCTTCCGCTTTGCTCTCTGCTTCGCTTTCTCCTTCTTATTTATCACTCCAATCCCTTTCTTCCCATTTCGATAACTATGATTTTAGATCTTCTCTCATAGATATTCCCCTCATATCCATCATCAGATCAGCTGTTATAATCGTTGTTTACAGTTTTTGTGATGGGCCAAAACTTTCGAGGGGACCATACCTGGGAATCACAATGATTTGTTCGATTTCATCGTTGGTTTTTGTTTCGATAAAAGCTTCGTTTGTGTTCGGTTCGAGAATTCCTAAAGAAGGGACATATGTTACAGCCATGGAAACCGCTCTTTTCATTTCTTCATTGGCTTTGGCAATTGCACACATGACTGTGGCTTATAGGACAAGTTGCAGAGAAAGAAGAAAGCTCCTTGTCTACAAAATTGACATTGAAGCTATTTCAGCTTGCAAGAATGGGTTTCCAAGGTATCATAAGATTCTCCAACAAGAAAGGGTGAAGTAAATGCAATATTACCAACACTGAACGATTTTCCTCTCCAAGAAACCTACCCTGTTCTTGGCTCATCACATTCTTCTTTCTCACATTTCAGATTTAACCAAAACCAATCAGTCACTTGAAAATCAAAGTGTTAACAAGCAGATCACAGCCAGCAGATACAGACATACATACATACATACATACATACATACATACATATATATATTATATTTCGAGGAAATGATCGAACATGCAATGATTTTGAGTGTACAGTTTGTATTACATCTGTAAATATTAATTTAAAAACAAAGGAAGAAATGGGCCAAAGGTCTTTTCCATACCCCAATTTTTTTTTGAAATATTTGAAAAATATTTATTTTAGTTATTATTTTGGCCGAACGATTTAGGTTAATTATTTTTGGTTCGAATAAAAATATTAAGGTTAAAATATGTTTTAACTCTATATGCTCTATTTTTAAGAATTTCGTCTATCTGTCCCTTGCCGATTTCAATTTAATTAGTCTAACCAACTGATTTGATCCAGTTCAAGTTTTTATGTTTTTTTTTATAATCTTTATAAGATTATATTAATTTTAGTACTTTTTATGATTTTTATAGAATTTTAATATGTTTTTTAATTTCAAATATTTTAAATTTGTTTTATTAATTTTATAAAAATATTTTAGAATTTATTAGAATTTTATATTTTTATATTTTTTATATCAATTTTCATAATTTTTATTTTTTATATTTAATATTTTTTAATTATTTTTATTGGAAAAATATTAGATTAAACTAGAAGCTGCCATCTGTCAACATCTAATTAGTCCGCCAATTTATTTTGACAGTCAACATGGTTAATGATAAAAATTGTTAATGTAGGAGCTTAATTGATTATTTTAGTTAATGATAGAGGCTAAATTGAATATGAATTTAATACATGGGCTTAATTTATCTTTTTTGCAGCTTTTTAAATATATAAGTCACATAATTTAAAAACAACAAAGGTTGTGACATAAATCCTATATATAAACATAGTAACTTGAATTTGACTATTTTTTTTGGACTAAAATAATATAAACCTAGACTTGCTTAAGATATTAGAGTATAGGAGGAAGGGTTGTATGAAACTGTGATTCCATGTCATTCTTTATCTCTTTCCATTCTCTTATTATAAAGAGATAAAAATGATATGAAATTACAGTTTCATACAATCCCACCAAATTAAAGAAAAAAAATGAATAAATAAATAAAATTCATTTTTTTATGATTCGATAAAGGAATCAAAATTCAAAGTTTTTGTGTGTTTGTTCTTCAGCTTTGTGCAATGAGAAATTTGGTGAATTTCATTTAAATAAATAGAATTTAGATGCCAACATTTGGGGAATTTTTACAAGTTGGAAATAAGGATCAAAACAATGCCCACTGCATCTCTATTACCTGAACAACATTTTTATCCCTCACTTTCAAATCCAGGTAAAATAGTGATCGTAACCCCAACTTTGGAAATGATTACACCTCCACTCCATCTTCTTTACAATGGCTAAGATGCCCAGATTTAACGCCGACGCTGCAGATTGATCGGAAATCGCTTTTGGGTTCGGGTTGTGGGGAAGAAAACTAGCTTATCTTCTTCAGCAGGTACCCAACTGTATCAGAAATATAAACTCAGAATGCAACAAGCTTCTATTTTTTAACTCAAGTTCTAAATAAAACTCGGTTTGATTACCTGAACTGAGTTACAAGGTGGTGTAAGAAGACTGAGATTTCTACTCTAGCAAGCTCATATCCAGGGCACAATCGAGGCCCTCCTCCGAACGGCGTGTAAAAATTCCCGGAACAGCTCGTCCCCAAGTTATTATTCTGTTCAATTTCATCCAACACTTCTTTGTAACTTTCGTCGTGTACCATGAACTATAATGTTGCGTTACATCTTATACTTAAATTTACCTTCCATCTCCATGGATTGAAAGTGCGAGCATCTTTAAAGTGATCATGATCAAGATGTACAGCACGAAACGATGCAAAAACCTTCCAACCCTTTGGAATTGTGTAACCTGGTCGAGTTGAGTTACCAGTAAGCACACAAAAAATGAGTCTAACAGGTTTCGGATTCGAATTCTAACA +>XR_004848542.1 PREDICTED: Amphiprion ocellaris uncharacterized LOC111577915 (LOC111577915), ncRNA +ATGGCTGCACAGTAAATGTGTTTGATGCTGCCAGCTGAGCTGCAGATGGATGTTCATTTTTGTTTCTGTCTTGTGTTTCAGTAACAGCTGTAGCTATTGCAGCAGGCGCTGGTGGAGCAGTGGTCTCTGCTCCGTTTGTTCTGGGAGCCATAGGTTTCACCTCAGCTGGAATAGCAGCAGGTTCCTACGCTGCAGGCATGATGTCCACTGCTGCTATTGCTAATGGAGGAGGAGTTGCAGCAGGGAGTCTGGTGGCTGTTTTGCAGTCAGCAGGAATGGCTGGTCTGTCTGGGACTGCTACTGCAGCCGTGGCCAGTGCTGGAGGAACGGTGGGATTTTTGGCTACTCTCATCTGAGATGAAGCTGGAAATCATGAAGGAATAATACATACGAGACAATGTATTTGCTTTTGTAAATTAGAAACAAATGCCAACAATATCAGTGAAGTCGAACTTTATCTGTCAGTAAAGTAAAACTTGACTGAAATCTGTGGGCAAAAAATGTTTCTGTGTTTTTACAAAGCACATTTATATTGTCAAATTGTCCAAAATAAAGAATAACAATGAAGGAA +>XM_034416225.1 PREDICTED: Pantherophis guttatus spondin 2 (SPON2), mRNA +AAAACCAACCACTGCCCCGCTTGGACTAAAGGGACTTTTGCAGGCATAAATAGCAAGATTTCCTCTCTTCCCCTTGCAGATTTTCCAGCTGGGAGACAAAGCAAGTTCTTCTCCTAACAACCTCACAGCCACCGGAACACCCGAAATGGGAAACTCACTACCTGTGTCTGGTTCTGACAAGACAATCGCAGCACTGCTGGTTGCACTCTTGAGTTGCGTGGATTGTGTTCCCCTCGAGGGAGAGACCCTGTGTGGTGCAGAGGAACCAACCACCTACAGCATTGTCTTCACGGGGAAATGGAGCCAAACAGCTTTTCCAAAGCAGTACCCGCTCTACAGACCCCCAGCGCAGTGGTCCTCCCTCCTAGGTGTGGCCCACAACTCGGACTACGTCATGTGGAAGGCCAGCGGCTATGCCAGCAACGGCATGCGTGAGTTGGTGGAGAAGGGGGAGCCCTGGATGCTGATGAAGGAAATTGAAGCAGCTGGAGAGAAAATGCAAAGCGTTTATGGAATCTTCTCCGCTTCTCCTGTGGTTACCGGAACAGGACAGACCTCAACTCTCTTTGAAGTTGACCCGGGTCATCCCTTAGTATCCCTTGCAGTACGAATCGTGCCCAGCCCTGACTGGTTTGTGGGGATTGAGAATTTTAATTTGTGCGACAAAAATGGCTGGAAGCGCCACGTCTCCATAGATTTATTTCCATATGATGCTGGAACGGATAGCGGCTTTACGTTTTCCGCACCCAACTTCGCCACGATCCCTCGCGATACGATCACGGAAATCACCTGTTCCTCCCCAAGTCATCCTGCCAACTCATTTTATTACCCCAAGCTTAAGACTCTGCCGCCGATTGCCCGGGTGACCATGGCAAAACTCAAAAGAAAGAAATTGGGCTTTCTCATCTCTCAACCAAACGTCACAACCACCCATAACGAAGTGGAGGATTCAGTCTCGGAAACACCTTTGGATTGTGAGACCTCTCTGTGGTCTTCGTGGGGCCTTTGCCGTGGCACCTGTGGAAATTTAGGAACGAAAAGACGGACTCGGTACATACTACTTCAGCCAGCCAATCATGGGACCCCCTGTCCAGATCTGAGCGAAGAAACACACTGCGAACCAGATAATTGTGTCTGAGATAATTTCTTTGGACCATCGTTTACCTCGTGTAATTTGGGGGATATTTAAGGTATCTCTGCGTTGATATTTTTTATAGCTCATGAGCTGTCCATCTATCCATCTATCCATCCATCCATCCACCAATCCAATAGATAGATCTACTTAAGGGATCTGAGCTTTCTACACGTTTATTGTGAACTCCTACAGTGCCACCTAGCGGTCAGAAATAGTAGTAATAGTAGTAAACTCGAATAGTAAACTTAGTGTTACCAACATCTGCACGGAGAAAAGAGGCAGGCGAGAATCTTTTCATTTCTGCTACTTCTGGAATGTATTTAATGCATCTGAGGAATAATGAGCTAGTTTCTACTGACTTACGAAATGCTGGAGAATTAAATGTATAAGTTTTGAGGGAGAATCAACTTGAAGGAAAAAGAAAACCAAGTTTTTCTCAAGAGTACGAGAAAAAAGCCGAGATTTATTTGGGTGTGTGTGTGTAATTCTAAAAATTTTAAGCTGTTGTTTGAAAACTCTTGGGCTGGCTATGGTGAAAGTTGGCAAGTTTTATCTTTTATGCAGATTTCTATGAATTTTGTCCTGTTCTGTAAAGAGCTAAGAAGGCCTAAAAGGAGAACTGTAATAATAATTTGCTAAAAAGTTTGTGTACCAAGGCGTAGAGTATATACGTCCTTTACTTACAGTGTTCTATATTTCTGGATTTTTTTTTTCTAATTAAAAACAAACATTTTCCCTCCGGTTAAATAATA +>XM_047217565.1 PREDICTED: Lolium rigidum uncharacterized LOC124682972 (LOC124682972), mRNA +CACACGCCTAAGTGCCATTGATGGCCACGAAAGCCTGGAGCGGCTCCACCCGCTTCAGATCTCCGGCCAGCGCCGTCTGGTTCCTAGCGGCCGCCATCCTCATCCTCATCTTCCTCCTTCAGCGCCGCCCGCCCATGGACCCTTACGCTACCCCAACCCCTCGGACCTCCGTGTCGTCCCGGCGCGCCGAGCTGTACGGCAGGATGGCGCGGGATCTCGACGAGCGCGGCGCCGCGTTCTTGGAGGGCGGCGAGACGTCGCAGTCGCTCACGCTCTCGGACCTCTTCGACGTCAGAGACAGCGCCGTCGTGCCCAGACTCAAGGCCGCCGACCCACCGGTGCGCGCGAACGTGCTCTACCTGGACCCAGAGTTCGCGGCCGTCATATCGAAGGCTGTGAAGGAAGTATTTCTTCCTTATTTTGACAAAGTTATCTGGTTCCAAAATTCCAGTATGTATCACTTCAGTATGTTTCATGCCTCCCATCACCTGGAGCCAATCTTAGCATCCAAGGCCGAGATTGAAGCCGAAGTCGATGCTGTAAAAAGAGTTACTAAGGCTATTTGTCCCATTCAAATTGTCTTGGATCAAGTGGTCTTGACATCAACTGGAGTTCTTCTTGGCCTGTGGCAGGTTGAATCTGGTACTGATCCTGCCGACATCCGCTCAAAATTGAGAGAGGCTCTCCCTCGAGCACCTCAAAAGCAATTGTATGACCCTGTTCTGCTTCACACCTCCTTTGCACGAATTTTGGGACCTCCTAAGCTTCCACAAGAGGAGAATACGACATCTTTTGATCACATCAAATTCTTCCATGACCTCGTTGCACAAGTTAACGGGAAGATCCGTGGGTTCCAGGCGAAGGTAGCGGAGCTGTGGTATGTAGAAGAGTACGACGTCCTCGCACTAGCGCTGAATGGAAAGATGAAAGTTCGGAGGCTCAACCTTGGCTGCAATGAAGAATAGAGCAACTGACGGAGGACAAAGAGAACACCACGGGGATATTAATCCATCGCGTCCAAGCATTATTATGCAACGCTTGGAATGCTTTCGTGATTCGAACATCACATCCATGGCAACCTTTTGTTCTGCGAAGATTGGGACCAGGCAGCGCCGAGGAAATAGCAGCTGGGTGCCCCCAATAGAGAAGTAGAGATCGAATGTAATTGCTTTCACACCACAGTATTTGAGTACTGGTGATTCGTGAATATGTGGATGAAAATCAAACCTGTATTTGTAACACCTCTCCTGTTACTCAGAAAAACTTCCAACTTA +>XM_017403287.1 PREDICTED: Daucus carota subsp. sativus GBF-interacting protein 1-like (LOC108227900), transcript variant X2, mRNA +AATAACAGTGAATGGGCTGGTCTAGTGAGCATCAGGAGGTAATTTGGTTTTCAAAACCCTTGTTTGCGTCCCATAACTCTTTTTGAGCCGTTCTCAACTATTATATATAAACACACACAATCACTCAAAACCCATTTGAAATCGAATGCAACTCGCTCTTCTATTGGCTCTGTTAAACCCTGTTTTGATATTGGATTACTATCCCAACTGGGTTGTTTTCAAGTATCTCAAAGATGGTGTCTTCTTCCTCAACTTCAAGAATTGATGGGGGCCCTCAAATACTGTCTGCTGGCGTGAGAAAAACAATCCAATCCATAAAAGAAATCGTGGGTAATCACTCTGATGCTGAAATTTATTCCACCCTTAAAGAGACTAATATGGATCCTAATGAAACTGCCCAGAAATTGCTCAATCAAGGTCCCCTTTTTTTTCTTGATCCATTTCACGAGGTCAAAAGAAAAAGAGACAAGAGGAAAGAGGTTACAATGAACGTGGGGCATACTGCATCACAACAGAAAAAGCACAGTGAATCATTAAATCAAGGGAGCAAACACACTGCACATTCTGATCACAGTGTCAGTGGCAAAGGAATTATCCGGAATTCTTTGCCGGATGCAAAGGCTAGCAGAGAGTTCCGTGTTGTGAGGGACAATAGGACTAATCATAAGCCAAGCAGCAAGATAAAGCCTCCCTTGCAAAGCCAAATATCTTCAAATGAACTAGAAGTCCCGAAGTTTGCCAATAAGAGCTTGAACGTGACTTCTAATGAGCAGAAACAGACAGTTGTGCGTCATCTAACTAAATCTTCAAATGGAACGACTGAGACACAGCCTAGGCAGCCAAGGGTTGTTCAGATTAATAATAAGAAAGAATCATTGGAGGATAATCGATCCGCAGTTATAAAGCCTGTTACACAGATTCAAACTAAGAGCACAAATGATTCCCATCTATCTGCAACTTTATCTAACAACTCTGTGGCAGGGGTATACTCTTCATCTTCTGATCCTGTACATGTACCTTCTCCTGATTCCAGACCAGCTGCTAACATTGGAGCAATTAAGCGTGAAGTTGGGGCTGTTGGTGTACGTCGTCTGTCTACAGAAGTTTCTCCCAAAGGTTCATCACCACAATCTAATTCTTTTCCTAATACACATTTGGGACGTGATGGTCCGTCAAGAGATTCATATCGATCTTCTGCTTCCCTGTCTAAAAGCAGCCATCCTAGTCAAGCTCCTGTTAATGACTCGACTTTGAAGAATATTCCAGTCAATAGGCCATCTGTTAATAATCAGCAGGTTAACAGACAGCATCAATCTGGTGGTCATCAAAAAGTTTCTTCACATTCTAACAAGGAGTGGAAACCTAAATCAACCCAAAAACAAAGCACCGGTCCTGGAGTTATTGGAACACCATCAAAATCTGCTTCCCCTCCTGCTGATGCCTTAAAGAATTTGGAAACAGAATCAACTCAGTTGCCATCACATGTAGACATCTCGGACAATGAGAATGTAATTATAGCTCCACATATACGAGTCTCCGCAACTGACAGGTTTCGAGTGACTTTTGGCAGTGTGGGTACAGAGTTTGAACCTTCCAGAAACCCGGGGTTCGAAGCAGTAAAAGTTGCAGAGGAGCCTTTGATTGATCCTTCAGGAAGTGTATCAGTTGCTACTCCTGACTCTTCTGGTGATGAATCTTCTGGAAGTAAGCAAGAAGACTTGAGAGATGAAAATGTTCGCAATTCTGGTAGCAGTTCCCCTGCGTCTGCAGCAGTATCTGAACAGCAATTGACCAGTAGGATAGAATCATCAGGTCCTCAGGATATAGACAAGGGGGCAGAGGTTGAATTGGTGCGTAATAACAGTCAGTCTCACACTCCATCTCAGTCACAACCACACCAGGATCCTTCCCAGTTACCAATATTTTCTTCATATGATCCCCAGAGTATGTATGACATTCCGTATTTTCGATCATCAGTCGATGAAACTGCAAGGGTGCAAAGTCTGCAGTTTCCTCAGGAGGCTATAAGCTCACATACAGTAAATAACATCCCATCATCTACGGTAGCCATGGTGCAACAGCCGCAGTTGGCGCAGATGTACCCGCAAGTTCATCTTTCTCATTATGCTAATATGATGCCATATCGTCAATTCCTCTCTCCAGTTTATGTTCCACCAATGGCTGTGCCAGCAGGCTATACTAGTAACCCTTCCTATCCTCATCCATCAAGCGGCAACAGTTACTTGCTGATGCCCGGAGGTAGCTCCCATCTGCCTGGAAGTGGGGTCAAGTATGGAATCCAGCAGTTCAAACCAGTCCCCACCGGCAGTCCAACTGGGTTTGGCAACTTCACTAATCCAAATGGTTATCCTATCAATGCTCCTACTGTTAGTGCGACAGGACTTGAAGACTCGTCTAGGCTGAAGTACAAAGATGTGAATCTTTATGTTCCAAATCCACAGGCTGAGACCTCTGAGATATGGATGAATCCGAGGGACCTACCTACTATGCAATCAGGTTCATACTACAATATGACTGGACAAACACCTCATGCTGCATACTTGCCATCCCATACCAGTCACGCCTCGTTTAATGCAGCAGCACAATCTTCTCACATTCAATTTCCAGGCATGTACCATACTCCACAACCTGCTGGAATCCCCAGTCAGCATCATCCTGCTGTGGGCGGTAATGTTGGAGTTGGATTGGCTGCAGGCGGGCCAGCAGCCCAAGTTAATGCCTTTCAGCAACCTCAGCTGGGCCACATGAATTGGACAGGGAACTTCTGAAGGCCTTTCTAATCCTTGAGAATTTTATTAAAAGGGATTGGAGCTGATTATCTGTGGAAGTCCTCTCCTCTCTTTGCCCCTTTTCTCCTCAAAACAAAACTTAATCTACAAATCAATACATTGAGTTGTGTTCAGTCCTTGCTGGTTTATATCTGTGATTCAGGGGACGGTATGTCAACCTTTATATGGTTGTATGCAAGTTTATTAGGATTAGAGCAGGCTTTCGTTTATAAGTTCGGCCCTATGTTTTTATAGCCCGACTGAAAATATATCTCCAAATGGTTTAATTGTTTTGGAGGTTTATCAGGTCAGGGCAGGCTCTTGGTTTATAAGTCTGCCCTCATTTTTTCAGCAGTCTGTTTTTTCTGATAAATAATCTCAAAATATATCAGTCAGCCCAAATTGGGACATGTAGTTCTAGCATTTACATAACAATGCATTATTTTTTTTGTGTGAACCAAAGTGTCTGTGCAGGAATTCTGTAGTGTAGTATGACTTATGTTTTGAGATAAATGAATCATACTTTGTAATCCCAGTTTCTGAATTATTGGAAAAATAACACTTTTGATGACA +>XM_006679287.1 Batrachochytrium dendrobatidis JAM81 uncharacterized protein (BATDEDRAFT_11902), partial mRNA +AGACATTTGACTGGAAAAACACATGTTGCCGGCAGTGATGGTGATAATCAGTTTGCTACTTACATCAAGGAGAGATGGGAAGCTGCTGGTCTTCCCATGACCCATATCGATTCGTACTATCCATTGCTCAACTACCCCATCTCTCGCTCGCTTACTTTATTGGAGCCATTTCGATACGATGCAGTGCTGAGAGAACCAGCTATTGCCGAGGACACTACAAGTGGGGATCCAGATGCTGTTCCTACCTTTCTAGGCTACTCTCCTTCTGGAAACGTCACTGCAGAGCTAGTGTATGCCAATTTTGGTGGTATAGAAGACTTTGCTATGCTAGCTAAAAACGGCATTGATGTCAAGGGGAAAATTGTTTTGGTCAGATATGGTGGTGCGTTTCGTGGTTTAAAGGTTCGAGCTGCTGAGCTCTCTGGAGCTGCTGCTGTTTTGATCTTTTCGGATCCTGCCCAGGATGGTTACAAAATGGGTGCTACGTATCCTGACGGACCGTGGAGACCACCTCATGGTGTACAAAGAGGTTCTATCCAGTATCCAACATTTTACCCTGGTGACCCACTTACGCCTTTTATTGCTGCGACAAAAGATGCTCCTCGTATTCCAATTGAGGAAGCACCCATTCCCAAGATTCCTGCAATTCCAATTAGCTACGCTGATGCTGCCCCTTTTTTGAAAGCTCTTGTCGGTCACGGAATTCTTGCCAGAACCTTATCTCTCAATTGGCAAGGAGGTCTTGACATGGATTATTGGACAGGACCTGCTGCAAAAGTAAATATGTATGTCAACAATGATTTCAAAATCAAACCTATTTGGAATGTTTTGTCCATCATTGAGGGTAAACACGAACCCGACCAAGCCATTATTCTTGGCGGACATAGTGATGCATGGGTATATGGCTCAGTTGATCCATCTTCATCCAATTCCGTGATTGTTGAAACTGGTGTTGCACTTGGTAAAATGTACAAGTCTGGCTGGCGACCCGATCGCACCATCATTCTTGCAAGCTGGGATGGTGAAGAATACGGTTTATTAGGCTCTACCGAATGGGTTGAGGATCATGTCGAAGTACTAAATAGAACTGCGATCGCGTACATTAATCTTGATATGGGTGCTTATGGACCACACTTTCATGCTGCTGCTAGTCCTTCTCTCGCTAATCTTATCCGTGATGTAACCAAGGGCGTAAAAGATCCCAACTCGGGAAAAATGGATACACCTCAAGGTCGTGTTCCACGTATTAGCCCACTTGGATTTGGATCTGATTATGTTGCATTTTTGCAATTTGTTGGTGTTGCTGCTATGGATATTAAATTTGAAGGCGACTATGGTGTGTATCACTCCAACTATGATAGTTTTCATTGGATGGAAAAGTTTGGAGATCCCACTTGGGAATATCACAAGACACTTGCTAGTATTGTTGGTCGCATTGTTCTTTCGCTTGCACACGATGAAATTCTTCCATTTGACTATGCCCCTTATAGTTATGAGTTGACTCGATATGCTACAGATGTAAGCACTGCGCTCCAGACTGCTGAATTTCCTATCGAATGGGCAAGTAGTTTGCACGAAGCCATCCAACTTTTTTCAAAAGCAGTAAATAAGTTGAACAAGGCTATTGACGGATTGTCTGATATTGAAACCAAGACGAATGCTGAGCAAATGGATGAGCCCAAGCTTGTTGTTCAAGGAAACGACAACAACGAAATAATGATGATTACATCTTTTGATGCAGACTTGTCAGCATCCAAGAAACACAAAAAACGACCCAATGCCAAGAAGCTTAACAAGATTCTTGGATTTGGGGAGCGCGCCTTTATCAATAAGGATGGCATTCCTGGTCGACCATGGTACAAACATGTTGTTTATGCACCAGGAGAGTGGTCTGGATATGGTGCAGAGATGTTTCCTGCAATTCATGAAGCCATTCGTGCGCATAATGAAACTCGAGTGCTAAATGCGATCGCAGTTGCTTCGCATCAAATTCAACAAGCTGCAGAGATGCTTTCTCCTTGA +>XM_023773343.1 Ramularia collo-cygni uncharacterized protein (RCC_08091), partial mRNA +ATGGCGCAAGGTCCAGCCAAGAAGCCAAAGGCACCAGCCGTAAAAACCACGCAGCGCAAGCAGACCGGAAACCGTGTAATCAAACCGAAAAAGGCCGTCCTGATCAAGCAGAATACGATGAAGAAGGCGCATTCCAGTGGTCTGGCAGCCCTGACCGAGAAGTCTCTGGCCAATAAAGCGGGACATTTGGAGCTTTTGAAGGGCGGCAAGAGGGAGAAGCGGGTCGCGATGAAGGAGGCGGCAGAGAAACTAGCGAAGAAGAAGTGA +>XM_001417720.1 Ostreococcus lucimarinus CCE9901 predicted protein partial mRNA +ATGCTGGACGTGTCGTGCGGACCGGGGCTGATACTCGACCTCTTGGCGCGCCATTCGGCGCGCTCGGGGAAGTGGGAGCGCGTGGTTGGTTTAGATTTTTCTCGAGAGATGGTGACACTGGCGCGCGAGGCGTGCGGCGAGCGCGCGACGGTGGTGGTGGCGGACGCGTGCGATTTGCCGTTCGCCGATGGCGCATTCGACGTCTTGCATTCGAGCGCGGGGGCGCATTGTTGGGGCGATTTGAACAGCCGTGGCGTTCCCGAGTCGGCTTTTCGCGAAATGTATCGAGTTTTAAAACCGACGGGGGAGATACTGGTATCGACTGTCGTCCTGCTGAAGCCGACGACGGTTGAGGAGGAGTACTCGCGAACGCCGAACACGCCATTTTTCGACGAACGCGCGGTGTGCCGGATGATTCAAGACGCTGGGTTTCGCGATGTTGAAGTTATAGCAAAGGATAAGTGTTTCGTGGCCGTCAAGGCTGTTAAGTGA +>XM_048826826.1 PREDICTED: Caretta caretta laminin subunit beta 3 (LAMB3), mRNA +GCACCCACCCCACAGGAACTTCCTTCCTCAGGTGAGGCTGCATTTAAAAGCAGAGAGTGAAAGGAGACAGCCCATGAGGACTCAGGTGAGAATTCGTATCAGCTGCTCAATAACGGAGGAAGAGGAAAGAAAAGTCTAGCCCCTGAACCAGGTGAGTCCTCAGAAGTATGGAATCTCCCCCCCGGCCCATTGTATGGACATGTTTCATTCTCCTGGCTTTGCCACGACTCCTGGATGCACAGGGCTCCTGTTCCTATGGTGCCTGCTACCCACCTGCGGGAGACCTGCTGGTAGGAAGAATCCATCACTTGAAAGCCTCGTCGACATGTGGCCTTGTGAAGCCTGAGACCTACTGCACATCGTATGAGGAATGGAGGATGAAATGCTGCCGATGCGATTCCCGACTGCCTCATGCTTACAACAGTCACCGGGCGGAGAACATGCTTTCCTCCAAAGGACACATGCGCTGGTGGCAGTCCCAGAATGATGTGAACCAGGTCTCCTTGCAGCTGGATCTCGACAAAAAGTTCCAGCTCAGCAGCATCTTGCTGGACTTCAGGGCGCCTCTGCCCGTGGGGATGCTTATTGAGCGCTCCACCGACTTTGGCGAGACCTGGACGATCTATCAGTACCTGGCCTCTGACTGCGCCGCTACCTTTCCACGGATCCCCCAAGGCTCCCCCCAGAGCTGGCAGGACGTGCGCTGTCAGGAACTGCAGAGCCACCAGGGGCACCCTCTGCACGGGGGGAAGGTCAAATTCAACCCCCTTGACCTGGCATCCGGCATCACCACATCTCACAGCCAAAGCATCAGTCACCTGGGAGAATTCACCAACCTGAGAGTTAACTTTACCCAGCTACCTCGCCTCCCACAGCAGGGCTACCGCTCACCCAGTGCCTTCTATGCTGTGACCGAAATGCAAGTGCAGGGAAGCTGCTTCTGCCATGGACACGCAGACCGCTGTACTCCCTCCAGAGACCCCAATGCCGTGATGCAGGTTCACGGACACTGTGTGTGTCAGCACAACACGGCCGGCCCACACTGTGATCGCTGTGCAGCTTTCTACAATGACCAGCCTTGGAGGCCGGCAGAGGACCGCAACCCCAATGAATGCCGGAGGTGCAATTGCAACGGTCACTCGGAGACGTGCCATTTTGACCCAGCTGCGTACCAAGCCAGCGGTGGGGTGAGTGGAGGTGTGTGCGACGACTGTCAGCACAACACAGCGGGGAGGAACTGCGAAAGCTGCCAGGCCTACTTTTTCCGCAACCAGCGGCAAGATGTCACCCATCCGGAAGCCTGTCTGCCTTGTGAGTGTGACCCGGACGGCACGGTGCCTGGGTCCAGCTGTGACCCTCTGACCGGACGCTGCGTTTGCAAGGAGAACGTGCAAGGGGACCGCTGCCATCTCTGCAAGCCTGGGTTCACCCAGCTCACCAATGCCAACCCTCTGGGATGCCACAAATGTGCCTGCAGCATCCTGGGGACCCGCCAGGACGCACCCTGCGACGACGAAACAGGGAGGTGCTTCTGCCTGCCCAACGTGATGGGAGCCAATTGCGATCAGTGCTCTGCCAATCACTGGAAGATTGCCAGCGGCCAAGGCTGTCAGCCGTGCAACTGCGACCCTCGCAACTCCTTCAGCCCACAGTGTAACCAGTTCACAGGGCAGTGTCAGTGCCGGGAAGGCTTCGTGGGGCGTACCTGCTCCGCTGCCCAGCTGCGGGTTTGTCCAGATGGGTCCTATGGTGACGTCAGGACAGGATGCAGAGAGTGTGACTGCAATTTCCAGGGCACGGAGGGGATGGGGTGTGACAAGACCACAGGCAGCTGTCTCTGCCGCCCTGGCTTTACCGGGCCTCGCTGCGACCAGTGCCAGCGGGGTTTCTGCAGCAACTACCCCCATTGCGAGACGTGCCACCCCTGCTTCCAGGCCTACGACAGCGACATTCGCCGGTTCGGCCTGCGCCAAGTCAGCCTGAGAAACTCCACCTCACGACTGCAGCTGGGAACAGGGGGCGCTGGCTTCAGCACTCGTGTCTTGGAAGCAGAAGGCAATGTTCAGCAGATTCAGGGGATCCTCGGCAACCCCCTAGTGACGCAGCAGGGCCTGGGTCAGGTGTCCAGCATGCTCACTGCAATCAGACAGCAGGTCCAGGGCATAAATCCTGACCTACCCTTTGTGAATGACACCTTCTCTCTAGCCAATGATCTTGAAGCCCTGGACAAGAGCCTGCTTTTCGTTAATGGGCAGTACCAGATTAAGAAGACCCAGTTTGAAGCCAGCCGCCACACAGACCTTTCAGGAGCCTTCAAGACTGTCAGCTCTGCGTACCAGAGCTCCACCAACGCCAGCTACCGCATAACGGGCACTTCCAGCCTGCTGGCTCAATCCAGAGAGAACCGGAGAATGACTGAGGGGCTGGAAAGCAGCTTTACAGACCACCCCTCCAGGCTGGAGGCCCTCCAGGGCGAGATGGCCTCCTCCCCCAACTTGACACCAACTATAAATAAGATTTGCAGTGGCGTCAGATCCAAGGCCTGCACCCCTGGGCACTGTGACGGGGAGCTGTGTCCACAGGACAGCACAACGGGGTGCGGAACGGGCCTCAGCTGCAGAGGGATCATTCCACTGTCAAGTGGCGCAGTCAGAACTGCTGAGAAGACCACCAGAGAGCTCGATGGCATAAAGACTCAGCTCCAGCGGACCATGCAGATGATCAGGGCAGCAGAAACGGCTGCAAACCAAATCCAAAGCAATGCACGACGTCTCGGGGACCAAGTGAGTGTAACCAGGACCCAGATAGAAGGAGACGTCCGACGCATCCAGCAATTCATCCAGCAAGTCCGCAACTTCCTGTCAGACCCAGCCACCGACCCTGCCACCATCCAGGAGGTCAGCGACTATGTGCTCTCGCTCCGCCTCCCAACGGACACTGCTGCCGTCCTGAGGAAAATGACTGAGATCCGAAACCTGGCTGCTAAGCTGCAGTGTCCTGAGAGCATCCTCACCCAAACAGCTGGTGATATCGCTAAGGCCAAGAGGCTTCAGCAAGAGGCTGAACAGGCAAGGAACCGAGCAAATGCTGTAGAGGGCAACGTGGAAGAAGTGGTGGAGAATTTGAGACAAGCAAACACAGTGCTCCAGGAAGCCCAGGATGCTATTAGTGGCTCCAGCTATTCCCTTCGGCTCATCCAACTCCGCATTGATGAGATCCAGGCTGTCCTTGGTCCAACGGAGAAGAGTATGAGAGACATTACTGATCAGCTGGACAACTTCACCGAGAGAATCAGCCAACTGCGGCACAGGGCGGAGCAGAATCAGTTGCAGGCCACCGATGCTCAGCAGAGAGCAAAAGAAGCCATTGAGCAAGCAAGGAGCACTCAGCAGGGATTTGAACGGGTAAAACAAAAATACGATGAGCTAAAGAGGCGGATGGGACAGAGTTCGACACTGGGAGTGCAGGGCAGCAGGATCCAAAGTATCGACAGGGAGGCAAAAGCGCTCTTTGAAGAAACCTGGGCTATGATGCTCAGGATGGAAAGTATAGAAATGGAAATTCAGAAAAGCAACAATGCATTAATCATCAAGTCAGCCAGCCTTGCAGGCCTGGAGGAGCAAGTGGAAAAGATCAGCAGTCATATCCATGAAAGAATCGCCTACTACACCGGTTGCTAATCAATCAATGAGCTGCTGGGACTCCATCTTGCCCTGTAATTGCAGAGTCTGCCTTCTGTTCAAACACTGACTGGGGTAGTTAGCCCCCTCTCATAGAATTTTCTTGTTCTCACACTTAGTGTCTTTGGTAACAGAACTGCTGTAGCTTTAGAAAATGCTAGCATGGAGCCCAAAAGGACAAAAATGCCTCTGGAGAGAATGAATGTTATATGGCCTGGCTGAAGCAACCCTGGGAGGCTCTAGGAAAGGGGGAAGATATAACTAATGAAAAAAGCCTTTTGGAAGGAGTTATTTCTGTATGAGGTTTGTTAATGTGACCGGGGATGTTTGTTTTAGCACCTGGATTTTACCTTTTGAATGACAAAGACCAGAGTTGAGGTTTAACTTTTCTGGTACAGTGCATTTAGTTCTTCTAAGGGAGTCATAAGAGGAGTAGAACTAAGGCTACAGATAAATATAGGACCAGATAACTGAATAAGCCCTATTTATACAAACGTAAGAGCAGTTGTGCTCTCAGGTGGAGTTAGATACTATCCAGTTGGACTTAGACAATATGTTGCAAACTGAAGCCTGTAGGGAAC +>XM_019557682.1 PREDICTED: Lupinus angustifolius nucleolin 1-like (LOC109325361), transcript variant X10, mRNA +GTCGCATATAAAATCATTGTTATCAGCCGTAGCCTCATTCTCTTCCTAGCTTCTCAAAACCCTAAACCCCTTTCTTTCGTTGATTCATTCCTCTCTATTCGATGGCCAAGTCCAGCAAGAAATCCGCTTCCAAAGCTGATGCTGCTCCAGCTGCAGCAGTTCCACCTTCCAAGTCTGCCAAAAAGAGCAAGAGGCAGCCAGAAGATGAAATTGAGAAGCAGGTGAGTGCTAAGAAGCAGAAGGTAGAGGTGGTTGCCCAGAAGCAAAAGAAGGAAGCAAAGCTGCAAAAGGTTAAGAAGGAAAGTAGTTCAGATGATTCATCATCAGAATCTGAAGATGAGAAACCTGCTGCAAAGGTTGTTGTTCCTTCAAAAAAGCAACCAGCTGCTGAGAAACCAAAGGTGCAGAAGAAGGAAAGTAGTTCTGATGATTCCTCTTCAGAGTCAGAAGATGAGAAACCTGCAGCAAAGAAAAGCAAGCCAGCACCCCCTTCTAGCTCTTCTGATGAATCATCTGATGAGGATGAAGCTCCAAAATCCAAGGTGGCTGCTGTTAAGAAGGGCTCTGCTCCCGCAAAGAAGAATGTGCAGCCTAGTGAGAGCTCTGAGTCATCTGAGTCTGACTCCGACGACAGTTCTGATGAGGACAATGCAACTAAACCTTCCAAGAAATTGCCTGCCGCTGCTGCTAAGAAATTGCCTGCCGCTGCTGATAAGAAATTGCCTGCTAAGAAGGCTGAATCAGACTCATCCTCTGACAGTAGTTCAGATGAAGATGATAAAAATGCTGGCAAGTCGGTGCCTGTTTCTAAGCAGCCCACAAAGAAGTCAAAAAGTAGTTCTGATGAGAGTGATTCAGATGATGAAGAGAAGAATGCTAAAGCTTCTAATGGTAACAAGAAACCCACACCTGTTGTGAAGGTGGTGAAAACTGAGTCCAGTGATAGCTCATCAGACGATGAGGTAAAGATGGATGTTGATGAGGATGATAGTAGCTCTGATGAAAGTGATGAGAAGCCTCGAAAGAAAAAGCCTGTAAAAGACTCAAAAGAAAGCTCTGATGATAGTTCAGAGAGTTCAGATGATTCAGAGGATGAAGATGACAAGAACAATTCCAAAACTCCCCAGAAAAGTGTTAAGGATGTGGAGATGGTTGATGCCTCATCTGGAAAGAAAACTCCTAATACCCCGGTAACACCGAAAGGAGAATATGGTGGATCAAAGACACTATATGTAGGCAACCTGTCATATAGTGTGCAGCGGTCTGATGTGGAAAATTTCTTCCAAGATTGTGGAGAAGTTGTCGATGTTCGCCTTGCAATAGATGATGATGGGAGATTTAAGGGCTTTGGACATGTTGAATTTGCAACATCAGAGGCAGCCCAAAAGGCGCTTGAGTTGCGTGACCAAGAACTGTTGAACCGTCCTGTCCGGCTTGATTTAGCTCGTGAAAGGGGTGCATATACTCCCAACAGTGGGCCTAACAGCGGTAACTGGAACAACTCATCCCAGACTGGTGGAAGAGGCCAGTCTCAGACATTATTTGTGAGGGGTTTTGATAGATCCCTTGGAGAAGATGAGTTAAGGTCTAGCCTGGAGGAGCATTTTGGTACATGCGGGCAGGTTACAAGGATATCTGTGCCAAAAGATTATGATTCTGGTGAAATTAAGGGGTTTGCTTACTTGGACTTCAAAGATGGTGAAGGCTTTAGCAAAGCTCTAGAACTCCATGAATCTGAACTCGGAGGTTATACATTATCAGTTGATGAAGCCAAACCTAGAGACAGTCAAAGCTCTGGTGGTAGAGGTGCAGGTAGGAGTGGTGGTGGCCGCTTTGGTGGTGGAAGAGGTGGTCGATTTGATGGAAGAGGCAGTGGTGGACGATTCGGCAGCGGTGGTGGTGGTCGATTTGGTGGTGGTGGCCGATTTGGTGGTGGGCGTGGTCGTGGAGGACCAAGCAGACCAAGCTTTGCCCCAGAAGGGAAGAAGACCACTTTTGCTGATGAGGATTAGAGTGTCTGGAATCTGAAGTTTACTATTTTATTATGTGCTTTTAATTTCAGTTTTTTGCTCCAGTTTTGGTATTTGTTTGTATGAATTGGTAGAAATCAAGTGTATTTGGGATTTTCAGACAATGTCTTATGGATTTGTAGTTCTGCTACCTATCCAAACCATGTATGCAGTTTGTTAGGTAAAGACATATTCAGAAATATATATTTATTATATATTTAA +>XM_039356821.1 PREDICTED: Crotalus tigris PTPRF interacting protein alpha 1 (PPFIA1), transcript variant X7, mRNA +GAGTTTGCAGCACTTACTAAAGAGCTCAATGTATGCAGAGAGCAACTCCTTGAAAGGGAAGAGGAAATTGCAGAATTGAAAGCAGAAAGAAACAATACAAGAGTCAGTTCATCTTCTGTTACTACTAGAACATTTGGAATGCCTTGTCTCCCGGCATGAAAGATCTTTAAGAATGACCGTAGTAAAAAGACAAGCTCAATCGCCAGCTGGTGTTTCTAGTGAAGTTGAAGTTCTCAAAGCACTAAAGTCTCTATTTGAACATCACAAAGCCCTTGATGAAAAGGTAAGAGAAAGGTTACGAGTAGCACTTGAACGATGTAGTTTGTTGGAGGAAGAACTAGGTACTACACATAAAGAGTTAATGATTTTAAAAGAACAAAACAATCAGAAAAGAACACAAGCTGATGGAATGCCTGATATTAATCATGATCAGGAGAATATACCTAGCACTAATGGGAAGAGATCTTCCATTGGCTCTTTGAATCATGATGAAGATCTTGCTAAAGTAATAGAACTTCAAGATATCATAGAAAAGCAAACTAAAGAACAGTCACAAATGAAAGAAAGAATTACTGCCCTTTCTAATAGAGTAGCAGAACTGGAAGAAGATCTTGATACTGCTAGAAAAGATCTAATCAAATCTGAGGAAATGAACACCAAGTTGCAAAGAGACGTACGAGAGGCAATGGCTCAGAAGGAAGATATGGAAGAAAGAATTACAACTCTTGAAAAACGCTACCTCGCTGCACAACGTGAAGCTACATCTGTGCATGATCTTAATGATAAACTTGAAAATGAAATTGCTAACAAAGATTCATTGCATCGACAGAGTGAAGACAAGAATAGGCAGTTACAAGAACGATTGGAACTGGCTGAACAAAAATTGCAGCAAACTCTGAGAAAAGCTGAAACTCTGCCAGAAGTAGAGGCTGAATTGGCTCAGAGAGTTGCTGCACTTAGTAAGGCTGAAGAAAGACACGGAAACATTGAAGAACGATTGAGACAAATGGAAACACAGCTAGAAGAAAAAAATCAAGAACTATTAAGGGCCCGTCAAAGAGAAAAGATGAATGAAGAACATAATAAACGTTTATCTGATACAGTTGATAAACTTTTATCTGAATCTAATGAAAGACTTCAGCTTCACCTTAAAGAAAGAATGGCAGCTCTGGAAGATAAAAATTCCCTTCTCCGTGAAATTGAAAGTACCAAGAAACAAGTGGAGGAGCTTCAAAATGAAAAGGATCAGTTGGTAGTAAACGTTGAAGCAATAAGGGCTGAAAATGACCAGTTGAGGATCAGAGGCCCTGCTCTTCATCATAGTAGGCCACATTTAGGTAGTGTACCAGATTTTAGATATCCACTGGCACCTTCAGTTATAGCAGACAATCAGACAGATTCCTACAGCACCTCAGTTCTACGACGTCCACAGAAAGGACGCTTAGCAGCTCTGCGAGATGAGCCTTCAAGGGTTCAGACTCTTAATGAGCAAGATTGGGAACGTGCACAACAAGCAAGTGTATTGGCAAATGTTGCACAAGCCTTTGAGAGTGATGCTGATATCTCAGATGGTGAAGAGGACAGAGAAACTATATTCAGCTCAGTTGATCTCTTGTCACCTAGTGGTCAGGCAGATGCCCAGACCTTAGCCATGATGCTTCAGGAGCAATTGGATGCCATCAATAAAGAAATTAGATTGATCCAAGAAGAAAAGGAAAACACTGAGCAAAGAGCAGAGGAGATAGAAAGTCGTGTTGATAGTGGGAATTTAGACAATCCTGGTCGATTCCGATCAATGAACTCTATCCCACCTCCCTTTCCTAGTGGAAACCTTTCTGGTTCCTCTCCACCAGGAAGTGGGCTTTCTACTCCTCGAAGAATGCCACACAGTCCTGCTCGAGAAGTGGACAGACTAGGAATTATGACATTACCTAGTGATTTAAGGAAACACCATAGAAAGTCTCCAGTTTCTAGAGAAGAAGTTAGAGATGACAAGGCTACAATAAAATGTGAGACCTCACCACCTTCTTCACCTCGATCACTGCATTTGGATAAATCTTATAAAGGAGCTTTGCATACAATGAGCCAGGAAGATATAAGAGATCTTCGAAATTCTACAGGCTCTCAAGATGGACAGATAAGCAATCCCAGTAGCAGTAATAGCAGTCAAGATTCTCTCCACAAAGCTCCTAAAAAGAAGGGGATCAAATCCTCAATTGGCCGCCTATTTGGTAAGAAAGAAAAAGGTCGATCTGGACAGATGAATAAAGAGATCCTGGGACAAGTTAGTGTATTAGAAGCAGAAAGTTCAACTCAAGATGGTTTGGGGCTTGGAAAACTTGGAGGACAAGCAGAAAAGAATAGAAAACTGCAAAAAAAGCATGAACTTCTTGAAGAAGCTCGGAGGCAGGGTCTGCCTTTTGCTCAATGGGATGGCCCCACAGTGGTTGTCTGGCTAGAGTTATGGGTTGGGATGCCAGCTTGGTATGTGGCTGCTTGCCGTGCAAATGTGAAAAGTGGTGCTATAATGTCAGCCTTATCGGATACTGAAATACAGCGTGAAATTGGAATCAGTAATCCTTTACATAGGTTAAAACTGAGACTTGCCATACAAGAAATTATGTCACTAACGAGTCCATCGGCTCCTCCTACATCAAGAACGACTACAGGAAATGTCTGGGTAACGCACGAAGAAATGGAAAATCTTACATCTACACCACAAACGGAAGATGAGGAAGGAAGCTGGGCTCAGACTTTAGCCTATGGTGATATGAACCACGAATGGATTGGCAATGAATGGCTTCCTAGTTTGGGGCTTCCTCAGTATCGCAGTTATTTTATGGAATGTTTAGTTGATGCTAGAATGTTGGACCATTTAACTAAAAAAGATCTTCGTGGTCAACTTAAAATGGTAGACAGTTTTCACAGAAATAGCTTCCAGTGTGGCATTATGTCTCTCCGAAGATTAAATTATGACCGAAAAGAACTTGAAAGAAGAAGAGAAGGAAGCCTGAATGAAATTAAAGATGTCCTTGTTTGGAGCAATGACAGGATGATTCACTGGGTGGTATCAATTGGCCTTAAAGAATATGCAAATAATCTTATAGAAAGTGGAGTTCATGGTGCACTTCTGGCCTTAGATGAAACTTTTGATCACAATGCATTAGCTCTGTCTTTACAAATACCCACTCAGAATACACAGGCTCGTGCTGTCTTGGAAAGGGAATTTAATAATCTTCTTGTGATGGGTACAGACAGAAAGTTTGAAGAGGATGATGATAAAAGCTTTAGACGTGCACCGTCATGGAGGAAGAAGTTCAGACCAAAGGACATAAGGGGTTTAGCTGCTGGATCAGCAGAGACCCTCCCTGCAAATTTTAGAGTTACCACTTCAATGTCTTCACCTTCTATGCAACCAAAGAAGATGCAGATTGATGGCAATGTATCAGCAACACAAAGATTGGATTCTGCTACAGTAAGAACTTATTCATGTTAAAGACTTTCGTTGTTTATCCCCACTATTTCTACAGATGAACTGAACCATTTTGAACCCAATGACCACATTTTGGAAACAGCTGAAATCTTTAATCTGTTAATACTTGTTAAATCAACACTTTGAAATATTTTATTACAGAGTTTTTAATTAGCAGGTGAATTTGTGAGTACTATAAAAAGTATTTTAGATTAAATGTTTCTTATGTGGGTGTATGTGTGTCCCATTACTTAATTTTCTATTAAAATTGTCAATCAAGTTATTACTTTATGTTAATTTTAGTATTTTCATCTGAATGTACTGTAATGCTTGTATGTATCTGTCCCTGTAAGCAATATAGGGCTTTATTGTAAATTATGCAGTTATTGTAATTACCAATAATGAATTTAATAAAGTGAAGGTGAATTTTTTTTTACAATCTTTGTAAAGACATCATGACACCAAGCAATATCAATATATATATATTGCTGTTTGAAAAATGCTAGCTAGCTCTAAAAATTGAAATAATTCCTTTTTTTCAGAGAGGCATATGTTTATTAACAAAACAGGCATGGTACCTGATTCCATTTCCGTTAGAAACTGTACCTTTTAAACTTTTAACATTTGATTATTTAGTGTGTATTCTTATTTAAGGCTTTTGTTTAGTATAATTTGCTTTATATTCATAAATGTGGGAATTTGTAGAACATTATGAAACATATGAGACCTAATGAGGTCATTTATAACTACTTTTTGTGGCTGTATTTGTACAGTCTATGTTCATTGATTGAGCATAAGCAAGCCATAAGCGGAAATATTTTCTGTTAAGCAAGAATAGTTACTACATATTTTCTGTTAAGCAAGAATAGTTACTACATAAGAGTACTTGACAGGCAACATGGAGTGCTCCCTTTCTGGGTTTTGATGTGAAAATGTTTGTGAAAAGATATCAATGCAGTTCTTTTAATGGACCAATCATGATGCACTGCTGCCTCATGACAAAGATGTTAAGAGCATAACATATGGAGGCATGTGGTAGTGCAACTATTAAAAAGGCCTTACTTTTCTTATGTCATCTTTTAGATATATTTATAAGCTTGTTTTTAAATCCAGGCAGATTTTTTAGTTGTTAATAGTTTGAGTCATTGCAAACAGTATAAGTAGAAAATGCATCATTCATTTTTAAATAGCATCTTATGAAGCCAGCAAGGAGGAGATTCAGATCATGGTGCATTATTTATTATACAATAATATACATGGCATGTCTTTTTTCTGTATTTGGTTTTGGCTCTTTTTAAATTGTACAACTTGAATTCATTGTTACTATTTTTTCTATTAACCTTATGTGTACTTTGAATAATGTAACAAATTATGTACAGTCTAAGTACTTTGAACTATTTTTATCACAGTATTATTTATTGCTTTCAATAAATTTCTGAAGCATTTTTCCACTGCCAATAAAATGTTACTATCTTGTGATGAGGCTTGAGATGTTTTAAAATGGTAATTCAGATATTAATGCAAATGAAATATCTTGTGACGTATTAATGCTTCCTTTGGCAAAGACAGTTTTATAAGATCCTTTTCACTTTAGAAATCACACTCTGTATATTATATGTAAGATATACTATTACTATATAAACTTATCAAAATGATTTGTGCAAAAAATTTAAATTCTGAATGTTAATACATTCAAAGAAGATATATTCCAAGGAATGATTGTATGCATTAAATCTACCAGATCTCAGGTCCATAAATCCAGATAAGACTATCAGATAGCAGCAAAGAAATGTGGAAGACTCAATTTTTTTTACTGCTCAGTATTGATTATATGCATGCATATCTTAATCTGAATTTTAGATACTAAGACTAAGGAATTTAATCTTCATTGTGATTATACTGAAGCTATATATAAAATGATCAAACAGA +>XR_002477788.1 PREDICTED: Aotus nancymaae transcription initiation factor TFIID subunit 9-like (LOC110567331), misc_RNA +ATTACGGTTCTTCTTTTTCCAAGTGAATATCTTTTTCCTTCTGTTCTTTAAATTATAATGTAATACATGATCACAAGAGACAAATCAGAAAATACAAGGAAGCAGAAATAAAGAAATCAACTTCATTTGCACTCAAGGAAAAGAAACTGTCATCTCTCAATGCAGGTCCTTCAGTATCCCTTTATTCTGTTCATTCATTGATGTAAAAAGGATTTGTGAGTTACCGATGTGCCAGGTGCTATGCAGGTGTTACACATAAACTCATCAAAATACAGTTCCTTCCCTAAAACAGATCAACCAAGTGGAGGCAGAGAACTGAATAAACAATTATACCTAAAGTTTTCCTACATATACAGCTATCTATATATGTAGATACAGTCTTTGCAAAAATTAGAATATATCATGAATGCTATTAACCTAATTTTGGGCCTAATACATCAGAAAAAAATTTTCCTGTCAATAGATTCAATCCTTGCTCATAGCCATTACTGGAGGTAATAAAGAGAAAAAAAAAATAGATTCAATCCAGAACAACAAAACAAACTCTAGAGCTAAACCTAATAAGAATCATAGTCGGGGGAGCAGTTGCAGCGAGGACCATGTTGCTTCCGGACATCCTGCTCACCGGTACACCAGGGGGTTGTAAAAACCACACTAGGCAAAGAACTTGCGTCAAAATCAGGACTGAAATACATTAATGTGGGTGATTTAGCTCGAGAAGTCTGATCATAGGATATCATGGAGTCTGGCAAGATGGCTTCTCCCAAGAGCATGCCGAAAGATGCACAGATGATGGCACAAATCCTGAAGGATATGGGGATTACAGAGTATGAGCCAAGAGTTATAAATCAGATGTTGGAGTTTGCCTTCCGATATGTGACCACAATTCTAGATGATGCAAAAATTTATTCAAGCCATGCTAAGAAAGCTACCGTTGATGCAGATGATGTGCGATTGGCAATCCAGTGCCGCGCTGACCAGTCTTTTACCTCTCCTCCCCCAAAGAGATTTTTTTATTAGATATCGCAAGGCAAAGAAATCAAACGCCTTTGCCATTAATCAAGCCATATTCAGGTCCTAGGTTGCCACCTGATAGGTATTGCTTAACAGCTCCAAACTATAGGCTGAAATCTTTACAGAAAAAGGCATCAACTTCTGCGGGAAGAATAACAGTCCCGGGGTTAAGTGTTGGTTCAGTTACTAGCAGACCAAGTACTCCCACACTAGGCTCACCAACCCCACAGACCATGTCTGTTTCAACTAAAGGTGGGGACTCCCATGTCCCTCACGGGACAAAAGGTTTACAGTACAGATGCCCACTTCGCAGTCTCCGCTGTAAAAGCTTCAATTCCTGCAACTTCAGCAGTTCAGAATGTTCTCATTAAATCCATCATTAATTGGGTCCAAAAACAATTCTTATTACCACTAATATGGTGTCATCACAAAGTACTGCCAATGAATCATCAAATGCATTGAAAAGAAAACATGAAGAAGATGATGATGACGACGACTATGATAATTTGTAATCTAGCTTTGCTGCATGTAACGTGTACTTGATCTTGAATTTATTATACTGATATTAAACATGCATGCTGGATGTTTTCAAGTTGTGTTTTAGAAAACTTTAATAATATTTAATGAGTAAATACAATTACCATACTTTTCAATTTAAATGAAGGTTCAGCCTTAAAAGTGTAAGAAAAATAAAGTTGTCATTCATTAAAAAAAAAAAAAAAAAA +>XM_035574191.2 PREDICTED: Spodoptera frugiperda proline-rich protein 36-like (LOC118262654), mRNA +GTTGGACAGGCAGCGGCGCGCCACCAACATCCGCGCCGTGTCGAGGCGAGAGAGCAGCCACAGTCAGTCCGGCGCCGACAACCGCCACGCGAACACGTATTCTCCAAATAATGGCCGCCGCCCACACGCACCCGGCCCCCGCGCCCTCAGACCGTCGCTCAGAGGGCCGTGCCGGTTCCCGCCGTATATTCCCACCACAATTTAAGCTGCAAGTTCTCGAAGCGTACAGGCGTGACGCTCAATGTCGCGGAAATCAACGAGCTACAGCAAGAAAATTCGGAATACATCGTCGTCAAATCCAAAAGTGGCTTCAAGCGGAACCTGCACTTCGAGCAGCACTTCTGAGGCGAGCGCCGCAACCAGCGCCGTCGCCACCGCCTTACGCAGCTGGATCTCCAGAGAGCGCACGGCTGCCTTCGCCGCCACCAGTGACAGTAGCCACACCGGTGCAAGTGCCCACACCTTTACCAGTACCAGTGCCCGTTCCTGTGCCTATGCAAATTTCTGAGCCCATCGACCTGTCAGTACGTCGACCTACACCACCACCTGCGCCTCAACCGGCCTATGTGCCACCTACGGCACCTTGTCCGACACGCAAGCCTTTCAAACTATTCCGGCCGTATCTACTTGAAGACGAAGAAGAAAAGCGACCATCGCTGGCATCGCTGCCTGTGTCTAGCGGCGTTCATGTGTCAGCGTTTGTACCGGTGCAAAGCGCGGCGGGTTGCGCGCTCGCTGCGTGCTCCGCCCCGCGATGGTGCTCACCTATTCCCTCCTTCCCGGCTCCACTCAGATGAGAGTGTGCCGTCGGAGCCCTGCTCCGTAACTCCTGTGATCTAGTCGCTGACGCCCGCCTGGCGCCGCCTGGGGCGTAGCCCTTTATCATCGTGCCTTAATGTTCACGCCGCCATAGTGCATTATGCCGTCATCACCCGATGACAGATATTTTGTGTATAAAGTTTAAGATTGTATTTTTATATGTGGGGTTTATGAAGCTTACCTACATTTATAAAGAATATAAATATTATAACGTCTATTATTATTATTATTGAATAAATAAAGAGGATTGTTTACTAAAA +>HQ100547.1 Uncultured Brachymonas sp. clone F5OHPNU07HZVCK 16S ribosomal RNA gene, partial sequence +TGGATGATGTGGTTAATTCGATGCAACGCGAAAACTTACCACCTTGACATGGCAGGAATCCCGAGGAGATTTGGGAGTGCTCGAAAGAGAACCTGCACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGCCATTAGTTGCTACGAAAGGGCACTCTAATGGGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACATCCCGGGCTACACACGTGCTACAATGGCAGGTACAGAGGGCTGCGAAGCCGCGAGGTGGAGCGAATCCCAGAAAACCTGTCTCAGTCCGGATTGAAGTCTGCAACTCGACTTCATGAAGGCGGAATCGCTAGTAACCGCGAATCAGCAGGTCGCGGTGAATACGTTCCCGGGCCTT +>XM_030296100.1 PREDICTED: Lynx canadensis ADP-ribosylation factor 2 (LOC115501167), transcript variant X3, mRNA +GCCCCCGCGCCAGTCGCCATTTTGCAGAGGGGAGCCGAAATCCGAAAGGCAGTGGTGTGGGTAACGGTGCCCTGTGCGGCGGCAGGTAACAGAATTCAGTCACAATGGGGAACGTTTTTGAAAAACTGTTTAAAAGTCTATTTGGGAAAAAAGAGATGCGGATTCTTATGGTGGGTTTGGATGCGGCTGGAAAAACCACCATCTTGTATAAATTGAAACTGGGAGAGATTGTGACTACCATCCCTACAATAGGTTTCAATGTGGAAACGGTAGAATATAAAAATATCAGCTTCACAGTCTGGGATGTTGGTGGCCAGGACAAAATCAGACCTTTGTGGCGACATTATTTCCAGAACACCCAAGGTCTGATTTTCGTGGTTGACAGTAATGACAGAGAGCGGGTCAATGAGGCCCGAGAAGAACTAACCAGAATGTTGGCAGAAGATGAGCTCAGAGATGCAGTTTTATTGGTGTTTGTAAATAAACAGGATCTTCCGAATGCTATGAACGCAGCGGAGATAACAGACAAGCTCGGCTTACATTCCCTCCGCCAGAGAAACTGGTACATTCAGGCCACTTGTGCCACCAGTGGAGATGGGCTTTACGAAGGCCTGGACTGGCTCTCCAACCAGCTCAAAAACCAGAAGTGATCGGAAGCGATCCCTTCCCCGTGTGATGGAGGTCGTCAGATAGTACACACAAACTGATGATACGCCGTGGAGATGAATTTTTTTTTCCCTTTGAAAGTTTCGATATTCTTCTCACCTTTTTTGGTAGCAGCTTTATTGAGACAT +>XM_052553176.1 PREDICTED: Carassius gibelio lipopolysaccharide-induced TNF factor (LOC127953842), transcript variant X2, mRNA +TCAGATTGTCTCAGATAAAAGCACCCATCAAGGCCATGGCAAGCGCACCCCCGCTGGAGTCATCCACTCTTGTGGGACACCCTCCTCCTCCCTCGTATGAGGAGGCACTGGGATCAAACCCGCAGTACCCACCAATGCCCTACGCTCCTGCTCCTGCTCCAGACATGAAGACATCTGTGCCTCCGTATCCAGCACAACCCTACTGTCCCATGTATCCACCACCACCAGCTCAACAAGGTCAACCCATCACCAGTCCTGTTGTATCTGTGCAGACCGTGTATGTTCAGCCTGGGCTGGTGTTTGGGAGTGTCCCGGTGCAGGCACATTGCCCAGTGTGCTCACTGAATGTGATAACTCGCCTGGAGTATACATCAGGAGCATTAGCTTGGCTCTCTTGTGCAGGCCTGGCCATCTTCGGTTGTATCTACGGCTGCTGCCTGATTCCCTTCTGCGTGGACAGCCTGAAGGATGTGATACACCACTGTCCGAACTGCAGCAGCGTTTTAGGAGTCCACAAGAGAATCTGAAGCAGCTGCAGAACATATGAATGAGTTGTGTAACATACCACTCTGTGTTTATAATGGGGAAACGTTACAGTCAATTCATCTTTTTAGCAAGAGTTAATTCAATATCTGTTGCACCGACACACACATATTCAAATGTATGCGCGCACGCGCGCACACGCACACACACACACACACATATCTTAACATACTTGTCTATTCAATTTAAAAACTGTTATTTGACCAAAAACGAACTCTTTTTTTTTTTTATAATTGTATCACAATTGTGAAGGAATCTTTATAACATTAGATTTACGTATAAACAGTGCAATTATTCTCAATTATATTTTCTGTAATCAAACTGATGTAGGGAAATATTATACAAATAAATATGTATATGCTTTTCACACTTAAA +>XM_030451652.1 PREDICTED: Calypte anna neurexin 3 (NRXN3), transcript variant X4, mRNA +ATGGGCTTCACTCTGCACTCCATTTACTTCACCTTGAAGGTGAGTTTGCTGCTGGGCTCATTGCTGGGTCTCTGTTTGGGTCTGGAGTTCATGGGAATTCCCAATCAGTGGGCCCGCTACCTCCGCTGGGATGCCAGCAGTAGGAGTGAACTCAGCTTCCAATTCAAGACCAACGTCTCTGCTGGGCTGCTCCTCTACTTTGATGATGGTGGTGTCTGTGACTTCCTCTGTCTGTCCCTTGTTGATGGGCGCATCCAGCTCCAGTTCAGCGTGGACTGTGCAGAGACTACAGTTATCACAGACAAGCAGGTCAACGACAGCAACTGGCACTTCCTGATGGTCAGCCGCAATCACCTTCGGACAGTGCTGGTACTGGATGGTGAAGCCAAGCCAGGTGAGGTGCGTCCACAACGCCAGTATATGAACATTGTCAGTGACCTTTTTGTTGGTGGAGTCCCACTGGACATCCGTCCTGCTGCCTTGACTCTTGATGGTGTTCTGAGTGAGCCTCCATTTCAAGGATTTATCCTGGATCTGAAATATGGCAACTCTGAGCCGCAGCTCCTGGGCAGTCAAGGGGTGCGACTGGAAATGGAAGGGCGATGCTCAGAAAACCCCTGTGAAAATGGTGGCACATGCTTCCTCCTGGATGGTGAGCCACACTGCGACTGCTCAGCCACTGGATATGCTGGCAAACTGTGTTCTGAAGATGTCAATCTTATTCCAGGACTCTCACACCTGATGATGGGTGAACAAGGTAGAAGTAAAGCACGAGATGAGAACATGGCCACTTTCCGTGGTTCCGAATACCTTTGCTACGACTTGTCACAAAACCCCATCCAGAGCAGCAGCGATGAGATCACTCTCTCCTTCAAGACCTGGCAGCGCAACGGGCTCATTCTGCACACCGGCAAGTCGGCCGATTATGTCAACCTGGCCCTGAAGGATGGCGCCGTCTCGTTGGTCATTAACCTGGGATCTGGGGCCTTCGAGGCCATCGTGGAGCCAGTCAATGGCAAGTTCAATGACAACGCATGGCATGACGTTAAGGTGACACGCAACCTGCGGCAGGTGACAATCTCTGTGGATGGCATCCTTACCACCACGGGCTACACGCAAGAGGACTACACCATGCTGGGCTCAGATGACTTCTTTTACGTGGGAGGGAGCCCCAGTACAGCTGATTTACCTGGCTCTCCAGTAAGCAACAACTTCATGGGCTGCCTCAAAGAGGTTGTTTATAAGAATAATGACATTCGTCTGGAGCTGTCTCGCTTGGCACGGATTGGCGATACTAAGATGAAGATCTACGGGGAAGTGAAGTTTGTATGTGAGAATGTGGCTACACTGGATCCCATCAGCTTTGAGACACCTGAGGCATATATTAGTCTTCCTAAATGGAATACCAAACGGATGGGTTCCATCTCATTTGATTTCCGAACCACTGAACCCAATGGACTGATCCTTTTCACCCATGGCAAGCCTCAGGAGAGGAAAGATGCCAGGAGCCAGAAAAATACCAAGGTAGACTTCTTTGCAGTTGAGCTTCTAGATGGGAACCTCTACTTGCTGCTGGACATGGGCTCAGGGACGATTAAGGTTAAGGCCACTCAGAAGAAAGCCAATGATGGGGAGTGGTATCATGTGGATATTCAACGAGATGGAAGATCAGGTACTATATCTGTGAACAGCAGGCGCACCCCGTTCACCGCTAGTGGGGAGAGCGAGATCCTTGATCTGGAAGGTGATATGTACCTTGGGGGGCTGCCTGAGAACCGGGCAGGACTCATCCTTCCCACCGAGCTCTGGACAGCAATGCTGAACTATGGCTACGTCGGCTGTATCCGAGACTTGTTCATTGATGGCCGAAGCAAGAACATCCGCCAGCTGGCAGAGGCACAGAACGCTGCAGGAGTCAAATCCTCCTGCTCCCGCCTGAGCACCAAGCAGTGCGACAGCTACCCCTGTAAGAACAACGCCGTCTGCAAGGACGGGTGGAACCGCTTCATCTGTGACTGCACGGGCACCGGCTATTGGGGCAGGACATGTGAGCGAGAGGCTTCTATCTTGAGCTATGATGGCAGCATGTACATGAAGATCATCATGCCTATGGTCATGCATACAGAAGCAGAAGATGTGTCCTTTCGTTTCATGTCCCAGCGTGCTTATGGTCTGTTGATGGCAACCACCTCGCGAGACTCTGCTGACACCCTGCGCCTGGAGCTGGATGGAGGCCGTGTCAAACTTATGGTCAATTTAGACTGTATCAGGATAAACTGTAACGCCAGCAAGGGACCTGAAACACTTTATGCTGGGCAGAAACTCAACGACAACGAGTGGCACACTGTGCGGGTGGTACGGCGAGGAAAGAGCCTCAAGCTTATGGTGGATGATGATGTTGCTGAGGGTACGATGGTTGGTGATCACACTCGCTTGGAGTTCCACAACATCGAGACAGGGATAATGACAGAGAAACGATACATCTCTGTCATCCCCTCCAGCTTCATTGGCCACCTCCAGAGCCTCATGTTCAATGGGATGCTCTACATTGACCTCTGCAAGAATGGTGACATTGACTATTGTGAGCTGAAGGCACGCTTCGGTCTCCGCAACATCATAGCTGATCCTGTGACGTTCAAGACCAAGAGCAGCTACCTGAGCTTGGCCACTTTGCAGGCTTATACATCCATGCATCTCTTCTTTCAGTTCAAGACCACCTCAGCTGATGGTTTCATCCTCTTTAACAGTGGTGATGGCAATGACTTTATTGCAGTTGAACTAGTCAAGGGGTATATACACTATGTGTTTGACCTTGGAAATGGACCTAATGTTATCAAAGGCAACAGTGATCGTCCTCTTCATGACAACCAATGGCACAATGTTGTCATCACCAGAGACAACAGTAACACCCACAGTCTAAAAGTGGACACTAAGGTGGTCACTCAGGTTATCAATGGTGCCAAAAATCTGGATCTTAAAGGTGATCTCTACATTGCTGGTCTAGCTCAAGGCATGTATACCAACCTCCCAAAGCTAGTGGCCTCACGTGATGGATTTCAGGGCTGTTTAGCATCTGTGGACTTGAATGGGCGTCTTCCTGATCTGATCAACGACGCTCTGCACCGCAGTGGGCAGATTGAACGTGGATGTGAAGGACCAAGCACTACCTGCCAAGAAGATTCCTGTGCAAATCAGGGCATCTGTAATCAGCAATGGGAAGGCTTCACCTGTGACTGCTCCATGACTTCATATTCTGGGAGCCAGTGTAATGACCCTGGTGCCACATATATATTTGGGAAGAGTGGAGGTCTCATCCTGTACACCTGGCCAGCTAATGACAGACCGAGCACAAGGACAGACCGGCTTGCTGTGGGCTTCAGCACTACAGTGAAGGATGGCATCCTGGTTCGGATTGACAGTGCCCCTGGGCTTGGTGATTTTCTGCAGCTGCACATAGAGCAAGGCAAGATTGGTGTAGTCTTCAATATTGGCACAGTGGACATCTCTATTAAAGAGGAAAGCACACCTGTAAATGATGGCAAATACCACGTGGTACGTTTTACCAGGAATGGTGGCAATGCCACACTGCAGGTTGACAGCTGGCCAGTGAATGAACATTACCCAACAGGCAACACTGATAGTGAACGGTTCCAAATGGTTAAACAGAAAATCCCCTTCAAATATAACCGGCCCGTAGAGGAGTGGCTGCAGGAAAAAGGACGACAGCTAACGATCTTCAACACCCAGGCCCAAATTGCCATAGGAGGAAAGGACAGAGGGCGTCTCTTCCAAGGCCAACTCTCCGGTCTCTATTACAATGGCTTGAAAGTGCTGAACATGGCAGCGGAGAACAACCCCAACATTAAAATCAACGGCAGCGTCCGACTCGTTGGGGAAGTCCCTTCCATCTTGGGAACAACACCCACGACCTCTGTACCACCAGAAATGTCTACTACGGTCATGGAAACCACAACTACGATGGCCACGACTACAACCCGAAAAAATCGTTCACCACCCAGCATCCAGCCTACAACAGATGACATAGTTTCATCAGCTGAATGTTCCAGTGATGATGAAGATTTCATTGACTGTGAGCCCAGTACAGCAAACCCCACAGAGCCGGGAATCAGACGGGTTCCGGGGGCCTCAGAGGTGGTCCGCGAGTCGAGCAGCACAACGGGGATGGTCGTCGGCATTGTGGCTGCTGCCGCCCTCTGCATCCTCATCCTCCTGTATGCCATGTACAAGTACAGGAACAGGGACGAGGGGTCCTATCAGGTGGACGAGACACGGAACTACATCAGCAACTCAGCCCAGAGCAACGGCACACTCGTGAAGGAGAAGCAGCAGAGCTCAAAGAGCGGCCACAAGAAGCAGAAAAACAAGGACAAAGAGTATTATGTGTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGAATATTTATATATAAATATATAAATACTTAATGAGATTTAACTGAAATAGCAGAAACATTGCAGCGAACAAGATTGGGAGATCTATCGTTTGTGGGAAAAAGTATTGGGAAAAAAAAATTCAGCAGTGACTGTTAATGTCTCAGTCATCGCTTGGAGTCAGCAAACTGCCCTAATGTATTATAAAGCACACTTAGAGTTCTGGAGATGGCGCGCACAGCTCTGCCCTGATAGTGAACTTGGACGTCTCCAAATCTCCTCCTCCGCTGAACTTTCTGCAAAGGTAGAAGACATCATGGCTTACTTGTTTCATACCTCCAAGTGAGTCTTTAACAATGTTCGTGATCCCTGACTGTATCAATAATTTTTCGGTTTACTTATTTAAAAAAAAAAAAAAA +>LR784286.1 Phallusia mammillata mRNA for cytochrome P450 10-like (Cyp11b1-001 gene) +GAGCAGATGAAATACCCACCATCAAGAAAGTGGCACCACAACCATTTAATTCAATTCCCACCCCAAGCACCTCTGCTCAAGTGAAGACCCTCCTAAAACTGTTAAGAAAAGATTTTAACATGGTAGAGCACATGTCCAAAAGACACCAGGAACTTGGACCAGTATACAAGGAGAACATTTTACCTGGAATTGCCGATGTAACTGTGTCTTGTTGTTCACCTGCTGACACAGAGGCTATGTTACGCTGTGATGGTAAATATCCTGTCCGTCCCCAACTTGGGCCACTGGAAAGTATTAGAAAAGAATTAAAATTGTACAAAGGCATTTCTGAGGCCAGTGGTGAAGAGTGGTACAAAGTGAGAAGTGTAGTGAACAACCATTTTCTACGAAATCGATCAGTGTGGTCATATGGAGAAAAGCATTTAAAGGTTTCTCGGGACTTTATGGAGTACATTGCCAAAAATTTGGATTCCAATAATGAGGTGCCTGATTTTGAAAATGCCCTAAAATATTGGTCTTTGGAAGCAGCAGGTGTATTCAGCCTAGACACAAGACTTGGTTTGTTTGACGATGAAGTGAATGAGACATCACTGGAATTAATTAAGGCAATGGATTTGTTTTTTGAAAACCTTTGCAAGCTAGTGTTTGGTGTTCAATTTTGGAAAACTTTTGAAACATTTACATACAAGGATTTAAAGAATTGTCAAAAGGAAATTTACAATGCGGTTTCTCTTCATCGGCAAGCAGTACAGCACAGCAGTAATGGAAAGGAAACAAATCAGCTCCAATCCTTTCTCAACAGCAGCCTGCTCACTGACAAATATGGTGATGGTAGACTTTCTATCTGGTGGAATAGAAACCACAGCAATGAGTTCAATTTTTCCTTTGTATCTCCTTGCAATACACCCTGAAAAACAGGATATTTTACGTCAAGAAATCAAAAAATACATTGGTGATTTTAGTATTGACAGTGGAAAGGTGCTTGCTGAAATGCCATACCTAAATGCTGTACTCAGGGAAACTCAACGTATTTTTCCTTTTGCACCTTTCTACAGTCGAAAATTCAAGAATGGCATTGTTCTTTCAAACTATCAAGTTCCCCCAGACCAACTGGTTATTAGCTCAGCAAATGTTGTCAACAACAAAGACCCTGCATACTTTCACGAACCAGATTTATTTAAACCTGAACGATGGCTTGATCCTGCACAAAGAAAAAAGGCAGCATTTGCTACTGTAGGGTCGTTCGGGGCCGGTGCCAGAAAATGTCCTGGTAGGAAGTTTGCACTCCAAGAAATCCATTCTCTTATTCCACTCATATTAAGTCAGTACCGTATTGAATACCACTATAAACCAATTAGAGCCAAATTGCGACTTTTGAGCTATCCATCTGAGAAGCCAAGATTTACTTTTATACCCTTGGATGAGTAAGATCGA +>XM_047789995.1 PREDICTED: Phacochoerus africanus uncharacterized LOC125132573 (LOC125132573), transcript variant X1, mRNA +GGGATTGAACCCGGGCCATACCAGTGACCCAGGCCGCTGTGGTGACAGTGCCGGATCCTTAACCCACACGCCACAAGGGAACTCCCCGACTCTTCTCTACCACCTCCTTTTCTGTCTCCATTCCCATCTTCCCATCATCTCTGGGTCAGTAGCTCTCTTTCTGTCCCTGTCTCTCACTCACTGTCTCTCACCCCTTCTTTTATCTATTTCTTTCTCATTCATCAACGTTCTTTCCACACCCCTGTCCTTTTTGCTAAGTATTTCCCTGTGGGTCCCTCCTCCGCCCACCCCCATACCCAGGTGGAAGTTTTCAGCCAAATCAAAGGCAGGCAGGCCAGAAGAAGCCGAAAGGGACTCCTTCAGCACATACCGGGAGGGAGGCCGAGCGGGGGGATGTCTGGAAATCGTTACCCACCCCCTCACCACCCCCATCCGCCGCCGCCGAGGTGGGCTGAACTGGCAGAGGGAGGAGGTGGCCCAGAGCACTGGGACCCTATAGAAAAGGGGGATGTTTCTGGTGGATTCCCTGATGTTCTGGGTGACTCCGCCCTTCCTCACACTCTCTTCCTTTATTTCTGGGTCTCTGTCTCCCCTATCCTTGGGGGGGGGGGGTTCTCTGTATCTCAAACTCTCTATACTCTGAGTTTCTATTTTTCCCTGCCCTCCCCCCTTCCTGCTGTCCTCTTCCTCTAGCCACCCCCCCCCACCCCGTCTCGCTTTTTCTCTGAGTTTTTGTGCCTCTTTTGAGGTCTCTACTCATTCGTCTCTCAAAGTCCCAGTCCCTCAGTGCCTGGATCTCTTTCTCACTAGAGTGAGATCTAGCCATCCACATGCCTGCAGGCCCTGCAATTGGCTAGGCTCCGTGTGGGCGGGTTCTGTCACCCCGGGCAACGGCAACAACAAGCCGGCTTGTCCTAGGCTCTGGGGCGGGGCTGGGACCATGGCGGGTCGGACCCTAGCTCTGCGCTATGGTCCTCCGCAGTCCCCCGTCTCCGAGACCGAGGTGTCTGGATCCTGGCCCAACTGGCATCTCACCAGCAGTGGCGTCGCCCACCACTTCATCCCGCCTGTGCCCTTTCCCCCGCCCACTGTGCAGTGCACGGTCACAGAGCCCCTGCCCCCGGCCCCAAAACAGGATTTGCATATCTGGGCTTTCGACGAGGTCATCAGCAGATGGGAGACAACCTCGGGCTCAGCTTACACGCCCAAGACCCTCGGCGGGCCATACGCGCAGCCGAAGGCCCCAGAACCTGCGGACCCCACGCGGGCTGTGGGGATCAAGGATTTGGGGGAAAAACTCAGACACCAGGGCTGGCGCCTCCCTCGGATCACAAAGCACCAGTGCAGTGAGGCCAGGGCGCAGTACACCGGCTGGCCCGGCCTGGACGGGCCTACAACCTTCCATATCGGGCCCCAGCCCCCAGAGCTTGCGGACCACCACCGCGGGGGCCCTTCCCAGGCTCTCATCCCCTGGACGAAGAACCCCGAGCTGAGCGGCCGGCCTTTCGCAGCATCTGATCAGGGCATCCTGGACTGCCATCAGCTCTATATGACCACTTCCGCTCGGGACTTCCGAACCTACTCGAAGAAGGAGTTGTCAGGATACCCTCGCAAGGACTCGCTGACCTACTGGAGCTTCAAGGAGACGCCCCAGGCCTGGGGCCACGGCCCAAAGCAGCCGTCCTATCCGTATTCCTCTTGGCCACCCGGGCCGCCGAAAACCCGCGTGCCCCGCGCCCGCCCAGTGATGCCCGCCGTGCCGCACCGCGGGGCGCAGTCTCTGGCTCAGGAATCCTACGGCCCCCCGCTGCACCCACTCCGCCGGCTCGACCGTTTCTGCCCGCTGAAGCTCCCTTGGGGAGGCCCCCACTGCAAGCCCGTGTCAGGCATTTACACCGTGCCGCAAGCCTACGGCACCGAGAACTCCAACTACGGCAGCTTGAAGCCGGCGCTCGTCTGAGCGGGCGGGGCCGGC +>XM_035987257.1 PREDICTED: Helianthus annuus cysteine protease RD19A-like (LOC110876098), mRNA +TTTCTCACCACGTTAATGGCAGTTTGCAGATTACGAGTCTCTCATACGCTCCGACTTTCCTCTCACACAATCGTTGCAGCGGTTGTGTCTTTCTCTCTCATACGCTCCCCTAACTTCTCCCACTATAAAACTATCACCAATAACATCCTCTCCATTATACACCTTCATCTTCTCGAATTTTCTCTGATCTTCTCTCCCCTAATAAACCCAAATCAATAAACGGGTTTGTGTTTTCATGGTTCGCATTGCTGAAATTGGGATTCTAGGATTGAGATCTCGTCTCCGGTTTCCGGACGATGCTAGAAAAGCTCCGATTCTTCCAACGACTGATCTGCCGGAGGATTTTGATTGGAGAGATCATGGTGCAGTTACTGATGTCAAGGATCAGGGTTCGTATGGGTCGTGTTGGTCATTTAGTACGACTGCGGCGTTAGAAGGTGCAAATTTCATTGCTACAGGGAAGCTTCAAAGCCTTAGTGAACAACAACTTGATGATTGTGTCCATGAGGATTTCGGTGAAGGGTATAGGGGGAAACAGGTGGTGTTGGAGAATTTGAGGCAGCTTTGTGTTCACAGATTTGCTAATGAGACCAACAGGTGGTGTTAAAACACTACTACCCCAACTTGGGGATCGGAGTTGTTGTTACCTTTGTGGGATTTGTTTTTAAAGGGCATGATGGTCTTTTCAGCATTTATGTTCATAGTTCCGGTTTGTCTTCCAATTGGACAGAGCCAGAAGAGTCGGTTTTTTTTATGGCCGGAGAATTCCCAGCAAGGATGTCGAATGGGGGAAAGTAACCATGGTTGAAGCGGAGCGTCGGCTACTAGCTAACGCGCTACTCGATTTTTGAAACCAACGATTCGTTCTCCTCTCGGAGTCATGCATTCCGCTATTTAATTTCTCGACGATATACTCTTATTTAATCAACTCTAAACATAGTTATTTCGAGTCCTATGATTTGGCAGGACCAGTTGGCCGAGGGCGGTACAACTGGAAAATGCACCCGACGGTTAAATTTCATGAATGGCGAAAAGGGTCACAATGGTTTGAAATGAGCCGTGAGCTAGCAATTGAGGTGATATCTGACAAGACTTATTTTCCGGTCTTTATAGACTATTACAATGGTTCATGTTATGCAGACGAGCACTACTTGCCTACGTTTGGTACACTTAAATATGGGGAAATGAATTCAAACCAGACTTTGACTGACGATGTTCTCCTACAAACATGCAAAGTTCAACTTGGTGATTCATAAATAACCCCCCCCCCCCCCCCCGCCCAATAAATATAATCTACGTTTGGTTGTCATTGATAGTTTTTTTTAAATACTTTTGTAAACATGTAACATTGATAGATCTCATTTATCTTCATTTAATGGTTTTAGCAATT +>XM_040865634.1 Pseudomassariella vexata uncharacterized protein (BCR38DRAFT_77744), mRNA +CTGGGGCCCTTGGCAAGGGCTGGAGTGCCACTCGGAGATTTCCATGAGGCTGGGAGAGACCCTGAAAAACGCGAACGCGCTCGAGAACCTGGCCAATCATGGCAGACTGTCCCACCAAAAAAGCTATTCCCTTTTCGATTTGCCATCTGAATCGCACTTTTACATGCTCAACTATCTCCCACATCACGCCCCGGTGAGCTGAACAGCATGGCAACCCAAGACGCTGCGGGTATTCCTCTCACGCATGCCGCGGATGGAGTGGGCTACAAGCTGTTGGAGCTACCCTCGGAACTGCTGGCTCTTCTCGAATCCGAAAACCCCCCTGTGTTGACCTTAGAGTCGTCCACAACCTCAGCTGTCCTCAAACACGGTAGCCAGACTTGGTCTCTTCGGCAGAAGAACACATCCAATGCCCTCATGCTCCTGTCCCCTTGTGAGACTGCGGCGTCGTCTTCAGATATTCCTCAAGCCGGACTCAAGATTATATCCACAGTCCATGACATGGTGGAGCTTACCACCGAAGGCGCGTCCGGCGCTGCTCCTGTTGCCAGGGGAAAGTGGCATGAGATGTTTGCTCGAGGCAGGTGACAGACAAGAGAGAATATGGGCAAGTCAAGTACCGGTTTTTTCTTCAAATGGTAATTTGAATAAGTCTTGGTGCTGGTGTGCTTAATGGCAATGATCTTTTGCTGCTCAAGATTGTTCATGGATGAGCATGGATGG +>XM_013015936.1 PREDICTED: Dipodomys ordii single-stranded DNA binding protein 2 (Ssbp2), transcript variant X1, mRNA +TGTTCCCGGGGAGGCTGTGATGGGTTGACAGGTGCGTGACAGTGGGAGCTGCTCTCGGCACAAGCATGTACGGCAAAGGCAAGAGTAACAGCAGCGCCGTCCCGTCCGACAGCCAGGCCCGGGAGAAGTTAGCACTCTATGTATATGAATATCTGCTCCATGTAGGAGCTCAGAAATCGGCCCAAACATTTTTGTCAGAGATAAGATGGGAAAAAAACATCACATTGGGGGAACCACCGGGATTCTTACATTCTTGGTGGTGTGTATTTTGGGATCTCTACTGTGCAGCTCCAGAGAGACGGGAAACATGTGAACACTCAAGCGAAGCAAAAGCCTTCCATGATTATAGTGCTGCAGCAGCTCCCAGTCCAGTGCTAGGAAACATTCCCCCAGGAGATGGCATGCCAGTAGGTCCTGTACCACCAGGGTTCTTTCAGCCTTTTATGTCACCTCGTTACCCTGGAGGTCCACGGCCCCCACTGAGGATACCTAATCAGGCACTTGGAGGTGTCCCAGGAAGTCAGCCATTACTCCCCAGTGGAATGGACCCAACACGACAACAAGGACATCCAAATATGGGTGGCCCAATGCAGAGAATGACTCCTCCAAGAGGAATGGTGCCCTTAGGACCACAGAACTATGGAGGTGCAATGAGACCCCCACTGAATGCTTTAGGTGGCCCTGGAATGCCTGGAATGAACATGGGTCCAGGTGGCGGTAGACCCTGGCCAAACCCAACAAATGCCAATTCAATACCATACTCTTCAGCATCTCCTGGGAATTATGTAGGTCCTCCAGGAGGTGGAGGGCCACCAGGAACACCTATCATGCCTAGTCCAGCAGATTCAACCAACTCTGGAGACAACATGTATACTTTAATGAATGCAGTACCTCCTGGACCGAACAGACCTAATTTTCCAATGGGTCCTGGGTCAGATGGCCCCATGGGTGGCTTAGGAGGAATGGAGTCACATCACATGAATGGCTCTTTAGGCTCAGGAGATATGGACAGTATTTCCAAGAATTCTCCCAATAATATGAGCCTGAGTAATCAACCTGGCACTCCAAGGGATGATGGCGAAATGGGGGGAAATTTCTTAAATCCTTTTCAGAGTGAGAGTTACTCCCCTAGCATGACAATGAGTGTGTGATCCTTTACGCGTCTCCTCATGAAAACCACAGTGAGTCAGCCCTTCACAGAACTACTACGGAAGAAAATTATTCATCACAGTGTACAGTAAAGGAATCTCAGTCACACCAAACCAACCTTTTTATTTCCTGCTCTCTCCCCTATTTTGTGAAGAAAGCGGGTCCAAACGTGATTCAAACAACTGTACGGAGTGGCACATTAGAATTGCCCTAATCTGAACTGCAAATAATTATCTGTGTATGTATATGTGTGGGAAGGAGATTGTATCGTATATGTGGATGTTATATGGACATATACGCATACATGCATTGACCCACAGGACATTGTAAAATATTATCACATGACATCTTAAGTAGAAATAGGTAGGGACTTTTATTCCATCCTTTTTTTCACGTTTACATTTTAATTATTAAAAGTTGCTCCTGTCCCCTCCCTGAACTATTTTGTGCTGTGTATATCACTGCTTTATATAAGTTATTTTTTAAGGTGAACTCAGATGTTATGGTTTTGTAAATGTCTGCAATCATGGATAGGAATAAAATCGCTTATTTGAGAGCTTTCATTAAATTGTGTCTGATGCAAGTTATCCTGTGAATCCTAAAGTGTACTGTCTCAAGTAATGGAAGAAAGTATGCCTTTATCCTTATGTCAAATCAAACAATTTCTTGGTTACCTTGAGTGAAAAGTATTTTTGTATTTTTTTTTGTTTGAGAAAAACACTTCAGATCAACAAAAGCTTAACTGGGGCTTCAACAGTATATTTCTGCAATAACTACTTTAAATGGAATTCTTGATTTGTTTGTCTTAGATGATACAAAAATCATTAATTAGCTCAAATTACCTAGATCACAGCAATAAAGTGACAGGGGTTGTCAT +>XR_006051903.1 PREDICTED: Salvia splendens uncharacterized LOC121807657 (LOC121807657), transcript variant X48, ncRNA +AATTAAAATTGCCTAGAAACCCTAAATTAAATTAAAAATATCCCTCTCCATCTCCCTTCCCAACGGCATCTCCATCTCCATATCTCAATTGGCAGAAATGACTCGTGTTTTCCCCACACCAAGAGTCATAGCCCTCGCAGATTTCACGCCGCCGGCCTGCTTGCCCGGAGAAGAAAGCCGAGGACTTGGCTGTCTCGGAGTTTGGTCCCCGCCGCGGCTGCTACTCGCCATCATCAGACGCCGTCGTCTCCTGCAGCAGGTCGCTGGTCCGGATTCGTGGGCAGCGTCACGTGGCTGCTGACTCGCGGCCTTGCCGCCGCTGCCAACTGCGCGAACCCATCGCCGTCCGCCCTCCCATCGTTTGATCCAGCTGAGCAAAGTGGTGACTTATCAAGATCCATGGGCATCCCAACTTTCAATCGAACTATGGCCTTCCTGAAATCCACACATATAGACTACAATGCCACGGGCTTATACTGGTGTTGGGAAATGAAGCTTTGGAAATCATAGAATATGCTTTTTCAAAAGATAGGTTGTGAAGACTTTTGACTTCAGCCTCACTGGTGCCTCTTCAAGATCTTGTAAATATGTCATGGATACTATGATGCAGACTTTTAAGAACAAGAGGCTTGCTTATGCAGTTAAAGAGAGTACTCTTGATAGTCTCATCATGGAACTATTGCTCCGGCTTTTGGATGATAGTAATCCCCAATGGATGATGGAAGTCAACTTTTAAGAGCTTTGAATGTTCTGATGTTAAAGATTCTGGATAACGTAGAATGTATTTCATCATTTCCTGTGCTTATATATCTGTCAAGACCTGGATCCATCAAGATGGCCATCTCCATCAAATGATCTCTTGAAATCAGGAACCAGAAGTTCTCTGATTTGGTTGTTAAATGTTTGATCATGCTCACAAAGGTTAAGGAGCCAAAACCAGAAGCTGTTCCTTAGGCTGTGGGTTCAGTACCCACTTAAGAGTGTAGCTGATGCACCTCAGGACCTTATCGATCCAGTTGATATATTAAAGCCTTTGGAGAAGTCTGGATTTTAGGAAGCGGTTAAAGCTTCAAAATGGTGGGAGAGGAAAGAGGCTGTTGCTGAACTAGCCGAACTTGCTTCAACCAAAAAGATTTCTCTTGGAGATTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTTATCACGAATGTAAAGGTTACTGAAGGAAGGAAAAAAAGGAAAAAAAAAAGAAAACACATTGTTGTTGCAGCTGAAGCTATTCAAGCTCTGGGCAACCTTGGCATGAGAACCCTTCCTAAAAAAAGAAAAAAAAAAGAAAAAAAAGGAAAAAAAATGAAAAAAATAATTGCTGATGTATTTAAAGCTATTCAAGCACTGGGCAACTGTGCTAGAGATCCGAGAGCCCATTTTTCGGCCAATTGTTGCTTCTTATTTGCCTGTAAACCGCACCTCAGGACCTTATCGATCCAGTTGATATATTAAAGCCTCCTTTTTATAAGTTTGGATTTTGGGAAGCGGTGAAAGCTTCAAAATGGCATGAGAGGAAAGAAGCTGTTGCTGAACTAACCGAACTTGCTTCCACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTAATACATTAAAGAAGGTTATCACGAATGTAAAGGTTACTGAAGGAAGGAAAAAAAGGAAAAAAAAAAGAAAAAAACATTGTTGTTGCAGCTGAAGCTATTCCAGCGCTCGGCAACCTTCCTAAGGGCATGAGAACCCTTCCTAAAAAAAGAAAAAAAAAGAAAAAAAGGAAAGTAAATGAAAAAAAGCAAAAAAAGGAAAAAAAGGAAAAAATAATTGCTGATGCATTTAAAGCTATTCAAGCACTGGGCAACTTTGCTGGGGATCCGAGAGCCCATTTTTCGGCCAGTTGTCGCTTCTTATTTGCCTGTAAACCGCACCTCAGGACCTTGTCGATCCAGTTGATATATTAAAGCCTCCTTAGGAGAAGTCTGGATTTTGGGAAGCGGTGATAGCTTCAAAATTGCGTGAGAGGAAAGAAGCTGTTGCTGAACTAACCGAACTTGCTTCCACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTTATCAGGAATGTAAATGTTACTGAAGGAAGGAAAAAAAGGAAAAAACATTGTTGTCGCAGCTGAAGCTATTCAAGCGCTGGGCAACCTTCCTAAGGGACTGAGAACCCTTCTAAAAAAAAGAGAAAAAAGGAAAAAAAGGAAAAAAAGAAAAAAAGTAAAAAAAGGGAAAAAGAGAAAAAAAATAATTGCTACTGCGTATAAAGCTATTCAAGCATTGGGCAACGTTGCTAGACTTTTCAGAACAAGAGCCTTGCTTATGCAGTTAAGGAGTGTACTCTGATAGTCTCATCAATGAACTGTTTCTCTGGCTTTTGCATGATAGGCTTCCGGAGATGGATGATAGACGTCAAATTTTAACTGCTTTGAATGTTCTGATGTTAAAGATTCTGGATAACGCATAATATACGTCATCATTTCCTGTGCCTATAAATCTGTTAAGTCCTCTGGATCAATCAAGATGTCCATCTTCAGATCAGAAACTTAAAACCTAAAGTTCTCTGATTTGGTTTTTAACTGTTTGATCATGCTCTAAAGGAATCTGCAACTCCAAAGAAGGTTGTTAAAGTAACTTAACTGGTGGCATAGATGGACTTCCACGTGAAGATATAAGTGAAAAGGTCACCCCCACTTTGTTAAAAGGCTTATAGAGTTCTGATTGGAAGGTCCACTTGGAATCTATTGAAAATGTAACCAAAATTCTGGAAGAGGAGAACTGGAATTGGAAATCTATTTGGAGCTCTATAAGGGCGTCTACACGACAGTTCTAAAATTTGATAATTGCTACTTTGTCCACAGTTGGTGCTCTTCGGACTACAATGGGACATCCGGTTGAGAAGTCAAGCTAGCTCCTGTGAAGGCTTGATCATTTACACGAATGTAGCTCGTGCAAGGGATTCTTTCAGATTTTTCTGATGTCTTGAAATGCCTTGGTGACAACAAAAAGCATATGCATGAGTGTACATCTAGTACCTTAGATACTTGGCTTGAGTGTATATCTGGCCAATGTTGTCAAGTCACCACGTAGCCAAAGGTCGAGGTTCTAGGTTTTGTGGGAACCCAATTTATGTGCATCACTGATTCTGACCAACCATCTTAAGCTTTAATGAATTGAAGCTGCCTTTGTAAATGCTCCTCAGGACCTTATCGATCCAGTTTATATATTAAAGCCTTTGGAGAAGGCTGGATATTGGGAAGCGGTGAAAGCTTCAAAATGGTGGGAGAGGAAAGAGGCTGAACTAGCCGAACTTGCTTCAACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTAATCACGAATGTAAATGTTACAGATGGAAAAAAAAGAAAAAAAACATTGTTGTTGCAGCTGAAGCTATTCAAGCGCTGGGCAACCTTGGCATGAGAACCCTTCCTTAAAAAAGAAAAAAAAAAGAAAAAAATGAAAAAAATAATTGCTGACGTATTTAAACCTATTCAAGCACTGGGCAACTGTGCTAGGGATCCGAGAGCCCATTTTTCGGCCAGTTGCTGCTTCTTATTTGCCTGTAAACCGCACCTCAAGACCTTATCGATCCAGTTGATATATTAAAGCCTCCTTAGGATAAGTCTGTATTTTGGGAAGCGGTGAAAGCTTCAAAATGGCATGAGAGGAAAGAAGCTGTTGCTGAACTAACCGAACTTGCTTCCACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTTATCACGAATGTAAAGGTTGCTGAAGGAAGGAAAAAAAGGAAAAAAAAAGAAAAATACATTGTTGTTGCAGCTGTAGCTATTCAAGCGCAGGGCAACCTTCCTAAGGGTTGAGAACCCTTCCTAAAAAAAGAAAAAAAAAAGAAAAAAGGAAAGAAAATGAAAAAAACAAAAAAGGAAAAAAAGGAAAAAATAATTGCTGATGCATTTAAAGCTATTCAAGCACTGGGCAACTTTGCTGGGGATCCGAGAGCCCATTTTTCGGCCAGTTGTCGCTTCTTATTTGCCTGTAAACCGATGTCTTCCCTATCAGCACCTCAGGACCTTGTCGATCCAGTTGATATATTAAAGCCTCCTTAGGAGAAGTCTGGATTTTGGTAAGCGGTGATAGCTTCAAAATGGCGTGAGAGAAAAGAAGCTGTTGCTGAACTAACCGAACTTGCTTCCACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTTATCACCAATGTAAAGGTTACTGAAGGAAGGAAAAAAAGGAAAAAAAAAAGAAAAATACATTGTTGTTGCAGCTGAAGCTATTCAAGCGCAGGGCAACCTTCCTAAGGGTTGAGAACCCTTCCTAAAAAAAGAAAAAAAAAAAAAAAAAGGAAAGAAAATGAAAAAAACAAAAAAGGAAAAAAAGGAAAAAATAATTGCTGATGCATTTAAAGCTATTCAAGCACTGGGCAACTTTGCTGGGGATCCGAGAGCCCATTTTTCGGCCAGTTGTCGCTTCTTATTTGCCTGTAAACCGATGTCTTCCCTATCAGCACCTCAGGACCTTGTCGATCCAGTTGATATATTAAAGCCTCCTTGGGAGAAGTCTGGATTTTGGGAAGCGGTGATAGCTTCAAAATGGCGTGAGAGAAAAGAAGCTGTTGCTGAACTAACCGAACTTGCTTCCACCAAAAAGATTTCTCTTGGAGATTTTTTCAGAAAGTTTGTCATACATTAAAGAAGGTTATCAGGAATGTAAATGTTACTGAAAGAAGGAAAAAAAAGGAAAAAAAACATTGTTGTCGCAGCTGAAGCTATTCAAGCGCTGGGAAACCTTCCTAAGGGCCTGAGAAACCTTCTAAAAAAAGAGAAAAAAGGAATAAAAGGATAAAAAGAAAAAAAGTAAAAAAAGGGAAAAAGAGAAAAAAAATAATTGCTACAGCGTATAAAGCTATTCAAGCATTGGGCAACGTTGCTAGACTTTTCAGAACAAGAGCCTTGCTTATGCAGTTAAGGAGTGTACTCTGATAGTCTCATCAATGAACTATTTCTCTGGCTTTTGGATGATAGGCTTCCGGAGATGGATGATGGACGTCAAATTTTAACTGCTTTGAATGTTCTGATGTTAAAGATTCTGGATAACGCATAATATACGTCATCATTTCCTGTGTCTATAAATATGTTAAGACCTCTGGATCCATCAAGATGTCCATCTTCAGATCAGAAACCTAAAACCTAAAGTTCTCTGATTTGGTTTTTAACTGTTTGATCATGCTCTAAAGGAATCTGCAACTCCAAAGAAGGTTGTTAAAGTAACTTAACTGGTGGCATAGATGGACTTCCACGTGAAGATATAAGTGAAAAGGTCACCCCCACTTTGTTAAAAGGCTTATAGAGTTCTGATTGGAAGGTCCACTTGGAATCTATTGAAAATGTAACCAAAATTCTGGAAGAGGAGAACTGGAATTGGAAATCTATTTGGAGCTCTATAAGGGCGTCTACACGACAGTTCTAAAATTTGATAATTGCTACTTTGTCCACAGTTGGTGCTCTTCGGACTACAATGGGACATCCGGTTGAGAAGTCAAGCTAGGGGATTTTTTCAGATTTTTCAAATGTCTTGAAAAGCCTTGGTGACAACAAAAAGCATATGCATGAGTGTACATTGAGTACCTTAGATAATTGGCTTGAGTGTACATCTGGCCAATG +>XM_013088457.2 PREDICTED: Aplysia californica ubiquitin carboxyl-terminal hydrolase 5 (LOC101848919), mRNA +GAAGTAATTCTGTTGTACCGCTTCTCTCAGTTTCAACATGGAGTCCGGTCTGTCCGAACTAGCTAAGCGATTGCCCGGTATCAAAGCCCCTATAGGGGGTGAGAAAGTCTACAAGGATGAGTGTGCATACTCATTTGACAATCCGGAGAGCCCTGATGGTTTGTATGTTTGCATGAATTCCTTTCTTGGAATTGGAAAACGTCACCTACAGCAATACTATGAGAAAACTGGGAATGGGGTATTCTTGCACATCAGACGTTTAAGAAAAGAGGTGCCCAAAGATGAGACGGCTGAGGAGGAAAAGCCAACCAAGATGGCCATCGGAGTGGAAGGTGGCTTCCAAACAGATGAGAAAAGATTTGAGTTTGAGGAGAAAACGTCCATCACCATCTTGCCCCAGTGGCACGAGATCGCCTTCCCCAACCCACAGATCCCTGATCAGGCCCAGCTGTCAGCCACCATGATTATGATGGCAGAGGATGCAGCCAAACAGGAGGAGGCCGCGGCCATGGCGGGAACGTGGGAGGGGGAAAAACTGAGGGTGTCGAAACACGCGGAGAACCTGCTTCAGCTGCCAGTGGAGAAGAAGATCCCCCCGTCGGGCTGGAAGTGTGAAAAGTGTGATCTGACCTGTAACCTCTGGCTCAACCTGACGGACGGCTCCATCCTATGTGGCCGGAAGTTCTTCGATGGTTCGGGGGGCAACAACCACGCGCTGGAACATTACCGGGAGGTGGGCTACCCTCTGGCCGTCAAACTGGGCACCATCACGGGCACAACTGCAGATGTGTTCTCCTATGAAGAGGACGATATGGTGGAGGACCCATACCTGGCCAAACACTTGGCGCACTTCGGTATCAACATGGCCGCGCTGGAGAAGACAGACAAGACCATGACGGAACTGGAGATTGACATCAACCAGAAGATCGGGGAGTGGGATGTGATTCAGGAGGCCGGCAGCGTGCTCACCCCAGTCTACGGGCCTGGCTACACGGGCATGCGTAACCTAGGCAACAGCTGTTACATGAACTCGGTCATGCAGGTCCTCTTTACGCTGCCAGACTTTCAGAAACGGTACTTCAGTAACTGTGGACAGATTGTGTCCAACGCCCCCCAGAATCCTGTCTCTGACTTCAACACACAGATGACCAAGCTGGCAGATGGTCTCCTCTCTGGTGTATATTCCCAATCAGTAGATACCAAAGAGGCTTCAGAAGGGGATGCCAAGTACATTCCACCCCCCAGCGGAATCCGCCCTCAGATGTTCAAGACGTTGGTGGGCAAAGGTCACCCGGAGTTCTCCACCAAGAGACAGCAAGACGCGCAAGAGTACTTCCTACACATGGTCTCCGTTATACAGAAAAACAGCCGGGGCGGCGCGAATCCTTGTGAGTCGTTCCGGTTTGAGGTGGAAGAACGCGTTGCTTGTTCCTCCTCCCAGAGGGTTCGCTACACTCGCAGAGAGGACTTCTGTCTATCCCTGCCCGTGCCCATGGAGGCTGTGTCCAATAAAGAGGAAGTAAGGAAATACAACGAGTCCAAAGCTGCTGGGGCAACCATTGTTGACCCAAAGAGCATTGTGCGTCCAGTGATCGCGTTCTCCGAGTGTGTTCGAGCGTTCACAGAGGCAGAGACGGTGGAAGATTTCTACAGTTCTGCCATACAGGGCAAGACCACAGCTCTCAAAACGACGCGTCTTTCATCGTTTCCTGATTACCTGATGGTGCAGTTGAGGAAGTACACCGTCGGCGATGATTGGGTGCCGCGGAAACTGGATGTGTCGATCCAGGCTCCAGATGTACTTGACCTTTCCTCCCTGAGAGGTCGCGGTCTGCAGGCTGGGGAGGAAGAGCTGCCCCCAGGGGATTCCCCGCCAGAAGCCCCGGTGGAGATCCAGGAAGGCACGGTGACCCAGCTGGTGGACATGGGGTTCCCACGCGAGGCGTGTCGCAAAGCCGTGTACTTCACCAACAACACAGGCGTGGAGGCAGCCATGAACTGGGTCATGGAACATATGGACGACCCAGATTTTGCTGCTCCCTTTAACCCTGCCCCTGCGGGCGGAGGTGTGAAGGGAGGCGCGTTCGAGCCCAATCCAGAGGGACTGGCCATCCTCGTGTCCATGGGCTTCTCCTCAGAGCAGGCAACAGTGGCCCTCAAAGCAACCAGCAACAATGCGGAGCGAGCCGTAGACTGGATCTTCAGCCACCCGGACGAGCTGAGTCAGCCCATGGAGACGGAGGAGGCCAGCGCCCCGGTCACTGCCGCTAACTTTAAAGATGGGTCAGAGAAGTACCGACTGGTGGCCTTCATCAGCCACATGGGCACGTGCACCAGCGTGGGTCACTACGTGTGTCACATCCTGAAGGAAGGTCGCTGGGTCATCTACAACGACGAGAAGGTGGCACTGTCGGAGCAGCCGCCCAAGGACCTGGCCTATCTCTACCTGTACCAGCGCATGTAGGACATTGAGGGGGGGAGGTGAGAGTGTGTGAGGGAGGAGGACATTGAGGGGGAGAGGTGAGAGTGTGAGGGAG +>EF220307.1 Uncultured alpha proteobacterium clone FB-2_C04 16S ribosomal RNA gene, partial sequence +AGGGTACGGGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGTTACCGACGCTCAGGCGCGACAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGATGCTAGCCGCTGGTAAGCATGCTTATCAGTGGCGCAGCTAACGCATTAAGCGTCCCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGACGCAACGCGCAGAACCTTACCAGGGTTTGACATCCCGCGCTAAACTCAGAGATGGGTGGTCCCCGCAAGGGGCGCGGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCTCCTTTAGTTGCCATCATTTAGTTGGGCACTCTAAAGGGACCGCCGGCGACAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACACCCTGGGCTACACACGTGCTACAATGGCGGTGACAGTGGGCAGCGACCACGCGAGTGGATGCGAATCCCAAAAAACCGTCCCAGTTCAGATTGCACTCTGCAACTCGAGTGCATGAAGGTGGAATCGCTAGTAATCGCAGAACAGCAGGCTGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGTTCTACCTGAAGACGGTGCGCTAACCGCAAGGAGGCAGCCGGCCACGGTAGGGTCAGCGACTGGGGTGAAGTCGTAACAAGGTACCAATCCCGCGG +>KU308505.1 Uncultured Alphaproteobacteria bacterium clone 0107 16S ribosomal RNA gene, partial sequence +AATGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGATCTTCGGATCTAGTGGCGCACGGGTGAGTAACGCGTGGGAACCTACCTTTTAGTACGGGACAACGTTTGGAAACGAACGCTAATACCGTATACGCCCTCCGGGGAAAGGCTTGCCGCTAAAAGAGGGGCCCGCGTCTGATTAGCTTGTTGGTAAGGTAATGGCTTACCAAGG +>FQ227369.1 Rattus norvegicus TL0AEA13YJ12 mRNA sequence +CAAAATAGTTAAGATGTAGATCTCCTCTTTTACTGAAGTAATTTATAATTTCTGGCTTTTGGACTGACTGTCAGCCATCAAAGGTTTGAAATTAGACTTAGTTAAATGGTTCTTACCGTTGGAGCTCCCTGGCCTCCTAACCCAATTAATGAGCTCCGTGTTCACATAGATGATAGAGGACCAGTTGCTGAGGACACTGCTGTAGCGCATGCAGCAGCACCACATTAAGAGTCACATGGAGACAACATCACTAAATAGATACGAATCTTACGTAGAAATAAAGGGCAAGTGAGTCGAGCCCAGTGTCTGTTTTAACAGAAATGATCTGCTCTGCAGTAGTGGTATAGGTCTTTAATCTTAGCACTTGAGAGGCGGATTCAGGTGGACAGCCATGGCTACACAGAGAAACCCTGTCTCAGGAATGGAAAAAGTCAAACATCAAGGATGTTTCATGTGATTTTGGTATGTATTCAATTTTGGAACTCTCTTCTGGTGGTGTAACATACAGAGTTGACTTGGTTTTTTATTTTTGTTTTCTTGAAGAAAACAGGGTTTATCTGTGTAGCTCTGGCTGGCTTCTATCTATTGGATTAAAGGTGTTTCCACCTCTGTTCGACATCAGTTTGGTTTTAGGATGAGGCATATTAACATAATGTTTCACTGGGCTTTTTCGTTCCAATGGGAAATTAATAAAAACCTGTGGATAAGGGTTGGGGATTTAGCTCAGTGGTAGAGCGCTTGCCTAGGAAGTGCAAGGCCCTGGGTTCGGTCCCCAGCTTTGAAAAAAAAAAAAAAAACCTGTGGATAAGCAGCACAAGTCAGATTTGAGTAGTTTAAATATGACAAAAAGGACGCAAGACGGGTTGGACATAGTTAGGAATGAGAGATGGATATTTTAAAATGTTAGGAAATTCTCAAGGAATAAAATTACTTTAAAATTACTGATAACAATCAGACATTCTTTAGTATGATTCTCCTTTGATACTGTAAGCAAGCACAGAAGTTTAAGAAATAACATAAGGGGCTGGAGAGATGGCTCAGCAGTTAAGAGCACCCGACTGCTCTTCCAGAGGTCCTGAGTTCAAGTCCCAGCAACCGCATGGTGGCTCAACAACCATCTGTAAAGAGATCCAATGTCCTCTTCTGGTGTATCTGAAGATAGCTACAGTGTACTTATATATAATAAATGAATAAATCTTTTAAAAAAAAAAAAAAAAAAA +>JX483172.1 Uncultured prokaryote clone Cluster11712 16S ribosomal RNA gene, partial sequence +CGTCAAATCATCATGCCCTTTATGACCTGGGCTACACACGTAATACAATGGCGCTTAACAACGGGAGGCAAAATCGCGAGATGGAGCAAAACCCCAAAAAGCGTCTCAGTTCGGATCGCAGGCTGCAACCCGCCTGCGTGAAGTCGGAATTGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTT +>XM_030995465.1 PREDICTED: Strongylocentrotus purpuratus uncharacterized LOC105441690 (LOC105441690), transcript variant X2, mRNA +ATAGCAATGGCTGTCGACGGCCTGGCGATTCAAACTATTTGGATGAACGTAGCTGCATTTTGTTCCCTGAGTGATCTTGGAAGATTACAGTCAACATGCAAATATCTCAACGCGATTCTTTCATGCAATTCAGTTTGCTGTGGCGCAGGGCCGAGTCCTCGCGGCACATCCGTTTGCGCTCGGCGTTGTCTACAGTAGTTCCTCTTCGCAGACTGAAGGCGTGTGATGCAAGGTTCCTGGATGCTGCAACAGATCACATGCTGCTTGGTGGCATAGCTCAGAAAGATAACAGTTTTGCTGAACTCTGGCCTTTCCTGGAGTCTGAGAAGAAGGCCTTCTACAACCATCGAATCGCGATGCTACTGAGGAAGGGGCGGAAGGGGAGAGAGAAATGCTTCTCACAGGTCTCAGGGTTGGAGTGTGGCATGCCGCTGCAGTTCTGCTCTCTGAACCTGCTGGGAAGCGGATGGAAAGTGCGGAAGAGGGTTCTGCAAGCCCTTGAGGACACCACCAATGCTGCCATCAAGATCGGTGGAATCAAGAACTCTGAGCTGAGGTGTAGCCTGCAGGAGTTATTCCGTCCAGGATTGATCAGAGACTTCTCTCAAGAAGCGGAGCCGATCTGTCTCCGAACCCCCATCAATATGATTCCAAAAGACCTGGAAATAGTCAAGGACCTCTTCTTTCGTGTCCTGGGATACACTTGCATCTTACCGTTCAACGTAGCATCCCATGTCAGCGACAACGCCAGAGCAGAGACATGCCTCATTATAGAGAGCTACGTCCATCACACTGTCATCACACCCATCATCGATGGCATTCTGTGCTCAGACCTGGTGAGATGCAAACCCATCGGCTTTGCTCATGTCCTGGATTATCTGGTTCTAAGTTTGGTAGTGAAGAACCCAAACCTCAGTAAGATCAGAGCGCCATCCCTCATGCTGAACACGAATCCTGAACGCATGACCCTTGCCCTTTCACCTGCTCGTGACCTAATGGCTGCCGTCCGTCCAGAAAACCCTTCAGAGTATGCCTACAATTCACAGCTTGGTGTTTTGCAGTCAGGTACTGCACTTCAGCTCAAAGAGAGCATCCTATGCGTCTTCCAAGGAATCGACTCGTGTAAGCGCTCAGAGTTCCTAGTCCTTCTGGCAACCGAGTACATGTACAAGTGCCTTGACCTTGTCTCCATGGTAACCGAACTCCTCGGCCAGTTTGACCTTCTCAACGTGCGGCGATTGGTGAGTCGCATCTTCTTCGTCGGGGAGAACACGCGGATCGGTAGCTTCCGGGAGAGGTTCGAGAGGGACCTGCGGGTGAGTCTCAACCGGTTGGGGGCGGTGTTCGGAGGAGAGTTTGCCAGGCAGCAGCGATGGCCGATACACTGCGTACACGCAGAGGTGGAGGACAGACCAAACTGTCTGTTTTCTGATACCTTCACCACCATGGACTATATCCTTCAAGGCCCTGATTTCTTCTGAATCTCCCTTTATTTCTTTTTTAATTATTTATTTGGTACTTTCAAGAAATATAACAATAAAACAATATAATCATGGTGTTTACAAAATTAGAATGACAACAATTATACAAATACAACTGTTTGTAGCAATATTCTAAGTGCAAAAGATGGCAGCCAGGGAAAAACAGAGCAAACTTAATTACTGTAACCGTAATGGTCTCTTTGCCAAACCAACTGATGCACTCAGATGGTGCCTCCTCCCCAATGAACACCCTATACAAAGGGTAGTTAATATGAGGATATGCAATTGACAACCATGAACAATACTTTCCAAATCACAATTTCTGCAGGATCTTCCTTTCAATGCACCCATTTGAGGCTTGCCTCTAAGGAACATGCATGTCTACATCCTATATAAAGAAAAGTCAGCAGAATCTGCAGTTTTACAAAATAGCACATATCTTTCAGGACCCTAATTTCTTTTAGGTCTCAAGGAACATGGATGTTTTGTCCTATCCAGCTGATAGAAGGGCTAATGTGCAATTTACCGTCATCAATATATTCAAGGCCCAAATTTCTTTTGAATCTCTCTTTCAGTTCATTCATTTGAGCCTTGTTCCATAGGAACATGGAACATTTTTTTTATTATCTAAAATCCAAAGGATAGTTGAATAATTCAATTTACCTTCATGGGCTATATCTTTTAAGGTCCTAAACCTTTCCCAGCATTCATTCACCTATTCATCCACCCTTCCTTCCATCCATCTGTTAGTATCATATCCTTAATACCGGAGTTACATACTAGTTATATTTAAGAGGCCTAAATAACAAGATGTTACACAAAGGTTCTTCATTTACTGCATGTATTTCACTTTTACAAGTCTGCCACAAGGTAGCGCCATTTCACTATCAATATTGGGATATATTAATAATCTCATTACACCTTTCCTTCTTTAAAGAAGCATGTCATTATATAAACTAAAATAATACCAACAATGTTGCTCAGAATTAAGCAGTACTGAAACATTTGAGTATCTTATATAAACTTTCAAAACCTGTTCTTTGTATTGTAAATATGTACATGTATGTGTGTATTCCTAAAAAACCAGCTCACACATTTTGGATATAATAACAAGTGATTCAATTATCACTGAGGTATAAAGCTACTGAAGCGACTTCAACAAACTTATATTTAAAACTTAATATACACAGCAACTCCACAGATGAACTTCCTTAATTCTTACTTACTATTAAGCTGTTCTTTGTTCAGTTGAGTTTCTAATCTTTTAGATATGCTGGCTGTTTTGTCTGCCACTGACTTCTGCAGAATTGATCCGAGTTCTGCCCGGAGTTGTCACTACTCGATGTCGTGTTTGTTGGTGATGTGGTTGGAGATGTGTTTTGAGGATAGTCCGTTACGGAAGATTGTTGATCCACAACCAAGTCACTATTATCGTTGAACTGTTCATTTGATTTTCGATGTTCAGTTCTGATGGAGTACGACCGAATACCGACTTTCTTGAGTACAATGGCACTTTCCCAGGCCCTGGCATCCTTTTTCGGCTTGACTATTACGGTATCTCCAACTTTGAGTTCAAGCAGATCTTTGGCACTGCGGTTATAGTATTGTGCCTGCTTTTCGCGATTCTTCTCTTTTCGTTCATCAATGTCTGTTTGCAGCTATACGAGGGTCCATTGTCAGCTAGGACCGTTTCCGGGATTCGTCAAATTCCTCTGCAATCTAGTTATCACAGCTGGCGCATCCTTCTTCCCGGTCCCAGTAATCCGAAAAATAGTCCACTGTACATAGATAGTCATGGCCATCTAGCGCGAAAATGTCACATCCATTTTCTGCCATGGACGCGTTGGTAATTCATGGTGTATGAGGGTTTCCTTCCTTTGTGATGAAGCATATATGTTGCATGCTTCACACCACGATAAGTAGTCTTTCATGTCGGATGTCATATTCGGCCAATAGACACATTCCCTCGCTCTTTGTAGTGTGTTCTCGAGGCCTGTGTGACTGGCATGTAGTTTCTTGCGAATTTCACCTCTCATGTCCGTGAGGATGACACATCTCAGTACTTTGAACATGATACCGTTCGCGCTTGTTCGTGACGAATGCTGAAGAACGGTTTTGCCTCTGACGTACAAGCCTGGCTAGTGCTCGGCCATCCTGAAGCAATATAGTCCATCACTGCTTTCAGGGCTGTATCGCGTGCGGTAGATTGGCAGATCTCTTGTTGCGATATCTGAGATACGGGAATTGCATCAATAAGGTGAATACACTCGACCTCTTCTTCAATGCCTGATCTTTGAGGTCACTAGTTTTATTTCTGAAAAACTTGTTTTAATCGATTTAAAGATATTGGGTATTGTCGTAGTACGTGATGAGACAGTAAAGGAAGCCCAAGAGACATTTGTTAGTGTAACTGGTGCTTTATTTAAAAAACGTTAATTCTCGGTGTCCACACACAGAAATGAAATGTCTACAGCAAATAACCCACTGAAGCCCCCAACTACAGTCCGGCATCCTCAAGGAAAGAAGGAAGACACCATGCAGCCATCAATCTACTCAGCAACACAAACTGCAAGTCCTCTTGCCCTCATAAAGACTGCCAAACAGTTGAACTAAAACGTTCACCAAAAGTAACTGCAAGTTTCTCTAGCACAGGCACAGCCAAAACATGCACTCTACCCTTGAACGTGACAAAATGTGCTTCAATACAAACATGTGTGTTAAGACATTAACGTGGGCGGTGTATTACAAAATCAATTACCCATCCGCGAAACCATGTGTAACATGTGTAGTGAACTAATTTGCATAATCCACCTGATCTTGATAGCAACTTCCACACAATCCTCAATTGGTACTTCAATGTCACGAACACCTCTTGGTACGCTCGAAAAAGGAAGACCGGGCTAGATTTCCGCTTTGTTGTATAAACCCAACAATATGCCAGTTGAGTAAATTTATTCAACCTGTAAGTAGAATAAAGATAAACATCTTCAGTATACATCACGCAAAATATATATGTATGCATTTACTCTGTTCATGCATAATTAAAAGCGTTAAATTGCAATCATTGGCGGATGCTGATCTGGGCCCCTGAATCTAGGAGCACATTTCCTTCTCTCTTTAGCTGGTCTGTTCAAGTAAACCTAGCATGGCTTCCATCCCTCTTACATGGGCTACTCCCACTGCATTGTTGTCCATACTGGGGTGTAAAAGCGGATGATGGAAGAACTTGCACGGTTGCCCTTTTTATGTCTCTGGACACTGTCTCCTTTTCTTACAAGTAGCCATCCGATGCTCTGTACCGGCTTGCCTTAAACAGCTATAACAAGCTCGGCTGCTCTTCACCAACTCCAATCTCTCTGCTGTAGACTTATCAAGGAAAGTTTTGCATTGATCAGTCCAGTGCCATCCTTACTCTTGCAGATCCAGCAGCGATAATCTTGCTGTCTTTCCTCAACTGTTGTGACCTGATTAACAGCGGATCTGGACTTGGAGGTTGAATCATTCCTCACTGGAGCAGATGATCCTTGAGGATTCTCTCCTCCCTGCATAAGACTTTCTCCTTGGCCACTCCTCCCAAATGATCGACTAAGGACGGGCCTTTGCAGCATCTTTCAGCTGGTAGTGCCGACAATAACTATCGAAGTTGTCCAGCCACCCCTGCAGAGACAGATCACCAGCAACCTGTGGAGAACCCTTAAACTTGCCCACCTTAACTGGTGGTGGCGCCTTCTGTACATTAAGTCCTTGCAGAACACTGATTAGTGTCTCTAATATCTGCACCACTGATACGGCCATCGTTACAAAGGCTGTAAAGGTACTAGTGGGACAAAACAGATAAGTTACAAGTTACTATACTAAAAGTACATAATAATAATACAAAACAAACAAAATACAATGATAAACAATTACATATCAGACATAACAAAAATTACAAATAAACCTACAAATTA +>AK346643.1 Sus scrofa mRNA, clone:MLN010029B10, expressed in mesenteric lymph nodes +TAGCTGAGACACTGCCATGTTTCTCATGTACTTAGAGAAAATTCACAAGGTTTTATTTTATTTCTTAGGTTTTGCAAATATACATATAGGGAAAAATGAAAATATAGAAAAATGTGAAACGTAACCAATTCTGTCTATATGGTGGGATGGGTTTTTTTTTTTTTTTTCAGAAACTAAGTTTACTGACAGGATTTTACTTTAATTTTAGTAAATATGACTAATTTAGAGGCGTTAATCCCTTATGAGGTCTTGGGATTCCTAAGTCATTGTGTTGGAAACTGTCTGGGAAAGACAAATAGTTAAGATACGTAACTAGGATCTCATGTTTTGGATTTGTACTGAATGACGTCAGAAGGAATGTGGTAACTGTAGTCTCTCCATATTTGAAGCCTGTCAGAAAAAGGAGAAATTATAGAATTTTGTTCATTCGTTTTAAATTTCAGGAGGCAGTGTCGGTCACTGGAACGGAGGACAGTGGTGAAGGCAGGTGTAAGTGAGGGAAGGAGGATGAGGAATGCCGTGAGTGGAAGGAGGCAGCCTGGCGTGGAGGTAGATTTTAGCTCATGTGAAGCGAGATTGCTTGCTGACCGGTACAGAATTATCCAAGGATTAAACTACTTGATGAAGTCATGAGCCTTTCCATCTCTACAATGGTTTTCTCTTTAAAATATAGGTTGCCGAAGGATCTAAAAATGTACGGCTAGGTTCCCTCATTGGGTTGCTAGTTGAAGAAGGAGAAGATTGGAAACATGTTGAAATTCCCAAAGACGTAGGTCCTCCGTCACCAGTTTCAAAACCATCAGTGCCTCCTCCCCCCTCACCACAACCACAGATTTCTACCCCTGTCAAAAAGGAACACACACCGGGAAAACTGCAGTGAGTATACTTACTTGAATGATGTTAAAAAAAAAAAAAAAAAAA +>XM_010884186.4 PREDICTED: Esox lucius IQ motif and ubiquitin domain containing (iqub), transcript variant X3, mRNA +GGGTGGGGGCGTATGAAAACGTTACGCCAGTGCTTCTTAGATCACATGGATGTTACCATGGGAGCGCCCAAACACTTGCAGCATTGAATCAAGTGAATGGTACTGTATGCATGCGGCACCAAAGACACGAGCTAACGTTAACGTTAGCCAGTTACCCATGTCCGAACATGATGCAGAAACTTCGGGGATCAAAACTGATGAGCAAAATGAAAAAGAAGACCCTTTGTACCACAGATTAACCGAAATAAGTGAGTCTCAGTTAGAAAGCAACGCGACAGAAGAACCACCTACAGATGTAAGTCTTACGTTACATTTACAAGATAGCGATGCTGGGGGAAAGATTGAAACACAAAATGTGATGATGGAGGAAGAGGTATGCAAGTCAACCTTTTTGACTGAGAATGGGAACTCGGTGGAGGCTACAGCTCCAGCAGACCCTCTGGAGGATAACAGGCAACAAGGAGCATTACCAAAGAAAGAGTCCTTCCCAAATGCTGTTGGGAACTCAACAGCCACTGTGAAGATCATGCTGATGCCAGAGGGACACATGATGACAATGGCCTTTGCCATTGGGCTCTCCATCAAAGAGTTGAAGTGTAACTTCTCAAATGAGCTAAAAGTACCAACAGAAGTCATACAAATATCTCTGAGTGGCAGAGTGATAGAGGACCACAGAAACCTGATAGAGCTGGGAGTGCAGCCTCATAGCACCGTCCAGTTGGAGATGACCTCCTCTGACCCTGACAACCACCCCATCCGTCCTATGAAGCCCCGGCAGGACTACAACATGCCTGACGTCCTCACTGTCCGAGTCCAGACAGACTCGGAGACAGACACATTCCAGGACGTTGTGGTCGAGGTTGAGAGGGTCACCCACAGGAAGGCTTTTCTGGGGGGCTACAGGCACAAGGCCACAGGGACGGAGTACCACCACGCTGCTGTACAGACTATAGCCAAGAAAAAACCAGACGGGGGGGTGGAGACTTTCAGCCGCGACACACAGACTGTGACGGTGAAGAGCCAGTCCCAGCAGTGCACCAACAGCACATCCACCCAGATGACCAGGATCGGCTGCTACGTATCCAACATGGAGGACAAGCTCATCTCCCCTGGGGCCTACGTCACCGCCGCCCAGTACCACGCCAAGAGACTGAGAGCTGTGATCACTCTGCAGACGCACACGCGGCGCTGGCAGGCAAAGCGGATGACTGACCAGCTGAGGGCCGACAGGGATCTGCGTCTGGCCTGGATGGAGCGAGATGGGTGTAGGAAGAGGAGGGAGAAAGAGGAGCAGATCAAGGCTGAGTACAACAGGAGGATGAACCCAGAGAGCAGGGATGACTTTGCACTGCTCTACAGCGCCCTGGAAAAGTGGAAGAAAGAGGAGTTGGAGCGAATCAATGCCACACTGGAAGGTGCTGAGAGGAAGGCTGCTCTGTGTGCGCTACTGGAACAGGAAACGCAGCTAATTGCATCCATTGGACGCCACCGAATAGCTGCTGGGGAGAGGAATTACCACAAGGCCGTTCAGGCCTTCCTTGAAAAGTGTGCTGCCCCTAAGAGGTGGTGTGCATTTGATGGGAAGATGACCCAAATGGAAACCCAGTACACCATCAGAGCCAAGAAGCTGAAAGAGCTGTACACCAGCATCAACCTGCACTACTTCAACCACGAGGAGAGGCTGGACGTGCTGCTAACACTTAAACACACCGTCAAGGAGCATGACTGCAAACTTACCCAGGACATTGTGGAGTTGATTGACAGAGAAGCAGACCTGCTGTTGAGGGGGGTGAAGAAGTCCAATCTGGAGGGGCTAAGGAAGAGAATTTCCACCCTCTTCCTCCAGTACATCAAAAGCCCTACCTTTAACCCTGAGGCGGCCAAACTACTGAAGGTCCCCCAGGACCCAGCTCAGCTGAGGAAAAACATCTACTTCTGCCGTAGCTGTTGCCGCCATTTGCAGTCCACTGACTTTACCCTGACGGTCAATGCCCGCCTAGTGGGCCAGTGCCAAAGCTGTTCGGAGCTGGACAGCGAGGCCCGCGGCCGCGAGAACCTCTCCCACTACAAAACCATCCTCAGCAGGCTCCGCAAGTCAGAGGCCCAGAGGGACAAGGAGGCCAAGATTACCTTCCTGCTTCAGGAGCAGGATCTGAAGTACCTGGTAGATGTAGTGTGGGGGGCCCAGTCAGCACTCAGTGCGTGGAACGACATGCACGACCTGGTGATGGTGAGATGGGAGCGCATGTGGGAGTGGAGTCCCTGGAACTGCATTCTGCTCACCAAGGAAGAAGCTCCTGTTCATGACAAAGTGGAGGACAATGAGAAGGCCTACGGAGTGGTGTTTATTCAGAATGTCAAACAAAAACACACGCTGGCAAAGAAGTACTTCTCCCAGATTCCAGTCATGGCCAAATACCTCCAGGACGTGCACTCACAACAGGCCGCCCACGGAAACTTCTTGGTCGCCAAGCCCATCAACACGTTGACAGCCAAGGCCCTGCCTACAATTCCACAAGCCACTGGTGGAGAGGCTACCCAGTGAAGGCCTCCTTATCCACCTGCCTGCCTAACTGTCTGTCTCCCTCTTTCTCTATTCCTCATACTCTGTTGAATGTCAAATAAAAATAGTATTCTTGAGAGGTATTGAACTGGGTAGAAATGCAATTTTGAAATGGATGTGTAATAATTTTGTGATAAACGTGAAGATATTAAATGTAAAATA +>XM_003665021.1 Thermothelomyces thermophilus ATCC 42464 uncharacterized protein (MYCTH_54167), partial mRNA +ATGGCCTCATCAGCTGCCGCTCATGGCTCCCGGCGTCCACCCACGAGACCAATAATCTCCGCAGACCGGAACCACCACCGCATCATCCAACTCGACGACTTCTCCTCTCACATCGCAAGTGCAGAACAACAACCACCGCCAGCAGGACCAGTATCGGCAGCAGCCAAATCCTCCTTCAAACACCTCTTCACATTCACCCCCGCACGGCACATACCCTTGGTCGCCCTCTCGTTCACCACCGCCGCCCTCGTCGCCGCCGGCCGCACTGCCTACGCCGTCCTCCTCGGCCGCATCTTCGACGTCGTCACCCGCTTCGGCACCGGCCTGCTCTCGCCCGCCGACTTCCTCGCCCAGATCTCCCAGTGGGCCGTCTGGTTGTGCGTCCTAGGCGCCGGCATGTGGGTCGTTTCGACCGTCGACGCCGCCGCCTGGGTCGTCGGCGGGGAGCTCAGGGCGCGGACGGCGAGGCGGGAGGTGTTTTGGCGGTTCCTGATGGGCAAGGAGGTGGGTTGGTTCGAGGCGCGGGAGGAAGGGGTTGGCGGGTTGACGGCCAGTGTTGCGACGCAAACGAGGGAACTGCAGACGGCCACATCCCAGACGCTTGGCTACATTGTCTGCGACGTGTTTGTGTTCGCCGCCTGCCTCGTCGTCGCGTTCGTCTACTCGTACAAGCTGACGCTTGTCATGCTGGCGACTGGTGTCCCCTCGGCCCTGATACTCTGGCGCATCAGCAGGTTCCTCGACCCGGCGATCGAGGCGCAGAAGAGAGAGCTCGCGCAGGCCGCTAAGTACGTCACCGCCGCCTCCACCGCCATAGACCTCGTCAAGGTGTACAACGCGGCCGACCACGAGGCGTTCAACTTCACTTCGGCAATCCGGAGGTCGGCGAGGTATTACTCGCGCCAAGCGATGTGCAACTGCGGGCAGATGGGCTACGTCAAGTTATGGATGATCACGTTGTTCGTGCTGGGCTTTTCATTTGCCGTCGTTCAAGTCAAAAATGGCGAGCTTAGTCCGGGCGATGCGTTGACCACCTTCTATGCCGCCCTTATCGCGTTCCAGTCGATCGAGATGCTCGGACCGCACTGGCTCGTATTGGCGAAGGGCATGGCCGCAGGACAGCTGCTTCGAGGACTGGTGGATGAGAGCGGCAGTGGTCAACTCGAGAGAACTGCTGGCTGTCTAAAGCCCTCTGGGTGTCGGGGAATCATCGAGATGAACAATGTTAGCTTTGCGTATCCGTCAAACTTTGCCAGGGCAGTCATACGGCCATCGAATCTTCGTTTCGAGCCTGGACGGCTCACCTTTGTCATTGGCAGAAGCGGCTCTGGTAAGAGCACCCTCGGCAGTCTCCTCGTGCGGTTCTACGAACCCCTCACCGGACAGATCATGCTGGATGACAACCCCATCACGGCATTCGATCTCAACTGGCTTCGACAAAACGTTACGCTTATCCAGCAATCCAGTTCGATCTTTGGTGACAGCTTCTTCAAAAACGTCGCCCTTGGCGCCATGGAACCAGACAATGTCCCCCTCGACGCCGTGCAAAGCGCTTGCTCCATGGCCCTCCTCCAGTCCACCATTTCCAGCCTACCCAACGGACTCGACACCACGATCGGTCCAGGCGGCTACGGCTTGAGTGGTGGACAGAGGCAGCGTCTAGCTCTTGCCCGAGCCAAATTACGCGATCCACCCGTTTTGATTCTTGACGAGATCACCAGCGGACTCGACCCCGTGAGCCGAAATCTGATCATGGAAGGCATTCGCGCGTGGAGAAAGGACAAGACAACAATCATCGTCACTCACGAGGTCGGCGACATTAAGGACGATGAGTATGTCTATGTCCTTGCAGATGGATCGGTGGCTCAAGAGGGTCTCAAGCGTGAGGTTGCCAAGGATGAGAGCGGCCTCTTTGCCTCGTTCGTTGCCTCTGCCGAGACTGCCTGTTCCGGCACTGACAGCGAGACTGAGAGCGAGACTGAGAGTGAATCCGATTCCTCTGACGACGGTCCTCTCCAGGAGTCCCAATATGCTAGGTCGCCCCGAGGTGCGCTCATCAGCAACCAAAGAATGCCTGTGGGCCTGTTCCAGCGCATCTCGCTAGGACCCCGAGCAACCATCGCACAGGAGTCCATCTGCCGATCCATCACTCACAAGATGGCCACGGATGATGAGCCTGTGACTGTCAACATCAGCCGCCCCTCTAGTATCCGGATCATAGCGCAGCAAGGATTAGCAGCTCAAAGAAGTAGGACTCTGAATGCACGCCAGGCTTTGCGGACCGATCTGGACCCGGAGCTCCAAGTGTCTCTCGACTCACTAGACCGTTTCTTTCTCGAGCACCTTGCCAAGCCCAGGGGCCGCGAGAGCCCATCTAAGGGGACCCAACTACCTTCACTCGCGGCCATTTTGAAGACTGTCTGGCCGACGCTGGACAGGACGGGCAAGGCTCAACTGATCGCTGGTATTGCTCTGTGTCTGGTTGTCGCAGGCAGCAACCCCGTCTTCTCCTTCTTCTTTGCCAATCTTATCGGACAATTCTGGAACATGGAGGGCCAAGAGAGCTCAGTCCCCAAGTGGGCTGGCCTCCTTGCCGCCATTGCTGCTATCGATGCGAGCGCTACCTTCTTTGGCTACTTCCTCATGGAACAAGTGGCCCAGAAATGGGTCAATAATCTGCGCGCAGAGGCGATCAAGCGCATCCTTAGACAGCCCAAATCGTGGTTCGACAGGGCAAACCATTCCCCGGCTCGCATCACCCAGTGCCTCGACCGCAACGCCGAGGAGATGCGCAAGCTTGCCGGCATGTTCGTGCCCCTCCTTTTGACCATCTCCACCATGATGCTCTCCTCGCTCATTTGGGCGCTGGTTGTCCGGTGGGACTTGACATTGGTGACGCTCGCCGGCGTGCCCGTGGTCATCGCAGCGGCGCGCGCCAACTCGCTGACGAGCGACAAGTGGGAGGCCGCCTGCGATCAAGCTGCTGCCGCGACCAACGCCATCTTCAGTGAGGCCTTGGCCAACATCAGAGTCGTGCGCGCCCTGACACTGGAGCGCTACTTTAGCAACAAATTCAGCCGCTCCGCAGCTGCCACCTACCATCTCGGGGTGAAGCGTGCAGGCTTCATCGGGTTCTTCTACGGCTTGCACCAGTCCATCGTCTTCTTCCTGACCGCTCTCGTCTTCTTCTACGGTGCCAAGATACTCGGCGAAGAGGGTACCACCGTGACCGACGTCGTCAGGGTCATCAACCTCTTGCTCTTCTCGCTCGGCACCGCGGTTGCCATGCTGGGCAACGTCCCGCAGATCGCCGCCGCCAAGGCCACGGCGGTGCAGATGCTCTACTACGCCAACCTATCGCACGCCGCGAGCCACGAGTCTCGAGGCGAAAGGCGGCTCTTCACCCCGCTCCCCGTCCGCATGACGAACCTGCGATTCGCCTACCCCAGCGCGCCCCAGACCCAGGTCCTGCGCAACATCAACCTGCAGTTCGACGCCGGTACGTGCACAGCCATCGTGGGCGCCTCGGGCTGCGGCAAATCCACCATCGTGAGTCTACTCTTGCGGCTATACGACCCGCTGCAAGAAGAGACGGACCCGGCACGCGCAGCGCACCGAAGCGAATCCGGAGCCCCCATCTCCCCGACCCCGGAATCCCCTAGCACTCCCCGATGCCAACGCTCCTCCCCCTTCCCCTCTGCCACCGCCACCACCAACACCACCACCAACACCCCACCCCTGACCTACGCCTCTGTCCCCTCCTCCCACGTCCACACCCCTTCTCTGCGCGCCCGCATCGCCTACGTGCCGCAGACCCCGGTCCTCTTCCCAGGCACGGTGCGCGCCAACCTGACCTACGGGCTGCACGAGGGGTCGCCGCTGCGGGCGGAGGCCAACGTCGTCCTCGCCGCGCAGCAGGCCGGCATCCACCCGTTCGTCGCCTCGCTGCCGCAGGGGTACGACACGCCCCTCGGCGGCGACGGCGGCGGCGGCATTGGCGGCGGCATTGGCGGCGGGGGGCCGGCCGCCGTGTCGGGCGGGCAGGCGCAGCGGCTGTGCATCGCGCGCGCCCTCGCCCGCCGCCCGCGCCTGCTCGTGCTCGACGAGCCCACCAGCGCGCTGGACGCCGAGGCGGCCGCCGAGGTGAGGCGGCTCCTGCGCCGCCTGGTGGAGGGCGGGGGCATGGCGGTCGTCGTGGTGACGCACAGCAAGGAGATGATGCGGATGGCGGACCGGGTGGTGATGATTGAGGGAGGGGTCGTGGCGGAGCAGGGCGGGTACGACGAGCTGATGACGGCCCCGGGAGGCAAGTTCCGGGCGCTGGTCGAGGGCGGGGTCTGGACTGCCGGCGAGGGCGGTTATGCTGAGGAGATGGAAGGGAAGGGGAAGGGGAAGGGGAAGAGAAAGAAGAAGAAGGAGAAGAAGGAGAAGAGGGGTGCTGCCGGGTGGAGGGACGTGGAGAGGTCGAGGGAGGAAGCGCTTAGGCGACTGGAGGGTAAGTCGGACTAA +>HM739632.1 Uncultured bacterium clone GB7N87002DK33B small subunit ribosomal RNA gene, partial sequence +AGAATCAACGCTGGCGGCGTGCCTAACACATGCAAGTCGCACGAGAAAGGGGCTTCGGCCCTGAGTAAAGTGGCGCACGGGTGAGTAACACGTGACTAACCTACCCTCGAGTGGGGAATAACCTAGAGAAATCTGGGCTAATACCGCATAACACTTACGAGTCAAAGCAGCAATGCGCTTGAGGAGGGGGTCGCGGCAGATTAGTTAGTTGGCAGGGTAATGGCCTACCAAGACAATGATCTGTATCCGGCCTGAGAGGGCGCACGGACACACTGGAACTGAAACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGCGCAATGGGGGAAACCCTGACGCAGCAACGCCGCGTGGAGGATGAAGTCCCTTGGGACGTAAACTCCTTTCGATCGGGACGATAATGACGGTACCGGAAGAAGAAGTCCCGGCTAACTTCGACGCCAGCAGCCGC +>XM_026799137.1 PREDICTED: Zonotrichia albicollis erythroblast NAD(P)(+)--arginine ADP-ribosyltransferase-like (LOC106630292), mRNA +ATGGCCATCAAGGTGGTGCCCCTGGACGTGGCCTGGGACTCCTTTGATGACCAGTACCAGGGCTGTGGCCCTGCCCTGAATGCAAAGTGGTCATCCCTCTACAACTCCAAGTCCCAGAAGAATCGTCCCTTTGCCTGGGGCCGTGGCTCTCATGGCCTACACATCCTGTACATGTACGGGGACTTCAATGCAGTCGTGTGCGCTGCCGGGCGCTCCCGCCAGGAATACCAGAACAACTTGTGCTTCAAAACGCTGCATTTCCTACTGACCCAGGCCCTGGTGACGCTGAGGCAGGGTCAGAACAGGCAGTGTCACCATGTGTTCTGGGGCATGCGTGATGTTCATTTCCAGGCATGGCAAGGCCAGAGCATCCGGTTTGGTCAATTCACATCGATGTGGCTGCGTAAAGAGATTGCTCTGCACTTTGGGACAGACACAATTTTCGAGGTGCACACGTGCCATGGCGTGGACATCCAGTGGTTCTCCATGTATCCAGGGGAGGAGGAGGTGCTGATCCCACCATATGAGACCTTTGAGGTCACCAAAGTCACCCAGAATGGGAAGAGGACATGGATCAGTCTCCGTTCTGCTGGGACTTTCAGCAAATATAACTGCGAGTGGCACTGA +>XM_047886733.1 Psilocybe cubensis uncharacterized protein (JR316_0000919), partial mRNA +ATGTCGCTCGCTCGTCTCATTCCAAGGGCTACCACCGTCTCTCGCATTGTCCGAACTGCCCCAACTCTCCAAACCAGATGGGTGCCCCGCGCCATGTACTCTGCTGGCGGTCCCTTGTCCAAGGACGTCATCACATCCCGCGTTCTCGAGACATTGAAGGGATACGAGAAAATTGACCCGGCCAAGTTGACCACGTCCGCATCTTTCCACAAAGACTTGGGGCTCGACAGCTTGGATGCAGTGGAAGTGATGATGGCAGTTGAAGAGGAGTTCTCAATCGAGATCCCTGACGCTGAGGCTGACGAAATTACAACGGTCCAACAAGCCATCGACTATATCGCAAAATCTCCTGACGCTATTCTGGAGTCTCTTGACTTGAGAGATGATCGATGTGACGCGAGTTCCGTCAAATCATCTGCTTTAGCGGTCGCATGA +>XM_023773741.1 Ramularia collo-cygni uncharacterized protein (RCC_08491), partial mRNA +ATGGCGGCCCCCGAAAAGACTCCCACATCCCCAGATGCCCACCGCGCGCTTCCAGACAAGAAAGCCGTGGAAGCGGCTGGCGAGCTTCTAATCAAAGACGAAAAGGGCAACGAGATTGCCTTTAAATCGCTCTACTCCGACAAGCCTGCCGATGAGAGACAACTCATTGTTTTCGTTCGACACTTTTTCTGCGGCTCCTGTGAACTCTACGCCCAAGCACTCGCACGGGATCTCCCCGTAGAGGCACTGGCAGCCAACAAAATCACACTCACAATCATCGGATGCGGAGAGCCCATTTGCATCGCTGATTGGCGAAAGCGAACGGGATGTCCTTATCCCCCCCACACGGAGCCCAAGCACCGACTACAAGACACATTGGGCCCCCCCAACCCCCCCAGAGCCATGCCCGATAAATTCCCCGAGTACCACTCCAAAAGCCTGTTCCAAGTAATCAAAGATTCCACATGGCATGCACTCTCCTCCGGACCTAAAAAGGCCTTGTCAGGCGGTCCCGCATCGCAGCAAGGAGGCGAGTGGCTTTTCCAGAATGGAGAGGTTAAATTCGTGCACCGTATGAGGAACTCGGCCGATCACGTCGACACCAAAGAGCTGAAAATGGTTCTTGAAATCAACGAGTAA +>XM_048709217.1 PREDICTED: Triticum urartu serine/threonine-protein kinase Nek3-like (LOC125545316), mRNA +TTACGAAAAAAGACCTACAACAAAAAATCACACGACTCGCACGCACGAGCGAGTGCCCTCCAGAGTGCGCTCGAGCGAGGCCTCCAGATCGCTTCGCCGCCGCCCTCGCACTCCCATCAGGCGACTCGCAATCCAGTCCTTCGTTACAACCCTCGCGCTCGCATCAAGGATCGAGGCCTCCAATGGCCGCCGCCGATCCCTTCGACGGCGCCGAACCACTTGAGGAGCCGCCGCCGATCCCCTTGAGGAGCCGTTCACCGATCCCCTTCAGGAGCTGGCGCTGATCCACGCCGCTGCCACCTATGCAGAACCCCAGGGCAGGGCGCTAGGAACCACCGACAAGAGCATACTCGCCCTCGTGGCCAGGGTCTCCGCGGTCGGCATCGGCGTCGGCGTCGTCTACGGCTCCATCAGGCTCGACATCCTCAAGGCTTGCTCAGAGGATAGTGCAAGGAGATGTCCCACAAGCACTGACAAATTGTCGACTAATTACCAATTGACATGGGTGCTTTGATTGCCGGTGCAAAATATCGAGGAGAATTTGAGGATAGGCTTAAAGAAGACGCAGATTCTGATGGACAGCTTGTCAGAGATGGCAAAGCTGTTCTATGCAGGGTACGCCTCTGAGCTAGCCGATGCGTACTGTATCCAGTGTTCTGTTGCATCCGGTGCGACCTCAAAGAATACCTTCTTCTACCTGGGCGTTGAGCGCCTCAGGGACGACGAGGTGCAGCGCCTGGGGCGGAAGCAGTTCAACTACACGATGATGAATTTTTGCAGAGAAGTTCAGTTGCTTTGCGTATGGATTTACCAACAGTTCTTTTGTGCAGTTGACACAATGGGCCATATGATTCTTGGCAGGGAAGAAGCTATTTGGGCTGAATCAGACGAGGTGCTGGAGCAGATTGGGAAGGGCTCCTTTGGCTCTGCGCTCCTAGTGAGGCACAAGGTTGAGAGGAAGAGGTATGTCTTGAAGAAGATCCGGCTCGCCTGTCAGACCGTCAGGTGCCGGCGATCTGCGCACCAAGAGATGGAGCTCATCGTCGCAAAAGTAAGGAGCCCTTACATCGTGGAATACAAAGATTCTTGGGTGGAGAAGGTGGGGTGCTATGTGTGCATCATGATTGGTTACTGCGGGGGAGGGGACATGCTAGAGGCCATTAAGAAGGCTAACGGCAACCATTTCTCGGAGGAGAAACTCTGTGTGTGGCTTGTGCAGCTCCTGATGGCGCTTGATTACTTGCATGCCAATCATATCCTTCATCGAGATGTCAAGTGTTCAAATATATTTCTTCCAAAGGACCAAAATATACGGATCGGCGATTTTGGGCTGGCTAAAGTGTTTACTTCTGATGATTTAGCTTTGTCGGTTGTAGGAACTCCCAGTTACATGTGCCCTGAACTTCTTCCTGACATTCCATATGGCTCCAAGTCCGACGTATGGTCGTTAGGATGCTGCATCTATGAGATGACTGCGCTGAAGCATGCATTCAAAGCATTTGATATGCAGACACTGATAAACAAGATTAACAAGTCTGTTGTCGCCCCTCTACCGACTATATATTCTGGCGCATTGTAA +>XM_027425389.2 PREDICTED: Cricetulus griseus phosphate cytidylyltransferase 2, ethanolamine (Pcyt2), transcript variant X10, mRNA +GCGTCGGGGGCGGGGCCGAGGCAGTGCGAGTCGCGGGAGCAGCCCCGGGCTTGCGGGGCCTGTGGTGCCATGATCCGGAACGGGCACGGGGAGGCCGGCGCGGCTGGGCGCAGGGGCCCGGTGGGCCAGCGCGCCGTGCGGGTGTGGTGCGATGGCTGCTATGACATGGTGCATTATGGTCACTCCAATCAGCTTCGCCAGGCACGTGCCATGGGGGACTACCTCATCGTGGGTGTGCACACTGATGATGACATCACGTTGACAGTAGATGGCCGAGATACCTACGAGGAAGTGAAGCAGGCTGGGAGGTACAGAGAGTGCAAACGCACCCAGGGTGTGTCCACCACAGACCTCGTGGGTCGAATGCTGCTAGTGACCAAGGCCCACCATAGCAGCCAGGAGATGTCCTCGGAGTATCGGGAATATGCTGACAGTTTTGGCAAGTGCCCCGGGGGGCAGAACCCCTGGACAGGGGTGTCCCAGTTTCTACAGACATCCCAGAAGATCATCCAGTTTGCTTCTGGGAAGGAGCCCCAGCCTGGGGAGACAGTCATCTACGTGGCCGGTGCCTTTGACCTGTTCCACATTGGGCACGTGGACTTCCTAGAGGAGGTGTACAAGCTGGCCAAGAGGCCCTACATCATCGCCGGCCTACACTTTGACCAGGAAGTAAACCGATACAAGGGCAAGAACTACCCCATCATGAACCTGCATGAGCGGACTCTGAGCGTGCTGGCTTGCCGGTATGTTTCAGAAGTGGTGATTGGGGCGCCATACTCGGTCACAGCAGAGCTCCTGGGTCACTTCAAGGTGGACCTCGTATGTCATGGGAAGACAGAAATTGTACCTGACAGGGATGGCTCTGACCCTTACCAGGAGCCCAAGAGGAGAGGAATCTTCCGGCAGATCGACAGTGGCAGCAACCTCACTACAGACCTGATCGTGCAAAGGATCATCAAGAACAGGTTGGAGTATGAAGCTCGGAATCAGAAGAAAGAAGCCAAGGAATTGGCCTTTCTGGAGGCCATGAGGCAGCAGGAGGCACAGCCTGCAGGGGACACTGCCTAGCTTCTGACCTGGAGGATGTTACTCAAGCCCTCGCCCTGTGCCCACCTCTTCTCGCCCCGCCCTGCCCTGCTGCTGTGTCTTGGTGTCAGCTCACACAATTCCAGAGGAAGCTGCCTTGCTGGAGGGTGAGCTGCCCAGAGAGGGTGGCTCACACAGTGAAGCAGCCCAGTGGACAGGATAAGCAGAGGGCACCTGTGACTGGAGGAGTATTGCTATGTGTCCTTGGCATCCACAGTTCCAACTGCCACTGCCCTAGTCTTGTCTGGGACACACCCCTCCCGCCTGACTGGAAGCTGCCCACCCAGCTTTGGTGAAAAGGTTCAGAGGTTCAGAGGGATGACTTTGGGGACCTCTTGTCCTGGGTCACCCTGCAAGTGGGTACCCTCTACTTTGGGGCACGTTCTAGCACCCCATTCCTGATTCCTAGAAGACGCACTTGCCCCGGTGGCTGGGCCAGCTTGACTGTTCTCTGCACAGACTTCTGGTCCTCATTTTGTACCTCAGTGGCTGCTGTAAATCTTTTTGGCACAACTGAATAAATCCTGGTGGGAAGTGCTCTGTGGGCTCCAAGCCCCCGAAGAAGCAGGAAA +>XR_002678113.1 PREDICTED: Setaria italica uncharacterized LOC111257591 (LOC111257591), transcript variant X4, ncRNA +CCGCACGCCCCCCGCCGTCTGGACGCCTCCCGTCGCTCTCGCTTGGGCCACCGCCGCCGCCAGCTCTTTCATGTCCGCCGCCGCCTCGTCCTAGTCCTCGTCCTCCTCCCTCCTTTCCAGTTCGCTGCCACCACCGCCGCCGCCGCTAGCCCTTTCCAGTCCGCCACCTCCTCCTCCTTGTCCTCCTCCTCCTCCCTCCTTTCCAGTTTGTGCCGAGCGGACTCTGCACCGCGGTGAGCTGTGCCGGATCCTCGCGGAGCTCTTCCCAAAGTACCCGATTCAGACGAGCGCAGACGGTGAGGACCAGGAGGAAATAGGTGCTGTTCTAGACCTGTAGGGCAGTTGGTGTGTCCTGACAAAAGTTAAACTACCTTGAGGTATATGATATGTTCCTATTAACATCTAAACTAGGGATCTGCACATAGAAATGAAAATAACTTGATTGGTTTGGAATACTCGATCATCATAGATAATGAAGTGAAACACGGAAATAATGGAATGTAATCTATTTTTCATTGTCTTGCTTCGTGTATGTCTCCTCGGCATCGGTAGCTTTGTATCCTGGACTTCCCTTCACTTTGTTCCAGGCATAGTTAACCAATGTGACAGCTAGCTTGAGCCTGAAATTAGTCATATCCTTCTGCACATAACAAATACAAATGCCTGTTAGCCTTAATGTAAGATGGGCATAGATTGGGTTGCTGAATTTATGTTGTTCAACTTACCTGTGTGAATAAGGAAGATAATTTGTTTCCGGTCCAAAGCTCCATGAATTTAACCGTGAATAGTCCACACGATGCACTGCGAGTTTATTTGTATTTACACAAGTTAGGAAGAACTAATTATGGGAACCCGAGTATATTGACAGGTGTTGATGTGCTTGTACTTGTCAGTCTGGATTGTCTTTTTGATGCATTCAATGACTGGCCATTCTTTGACTTGGGTGTCCTTCCACCTATGTTCTTTGATCAATTGCAGGTCTACAAGGCGTGTCATACGGTTCTGCAACCCTTGCAACTGAGTTCAATAGAATCATCAGTGGTTGAGGCTTGCCTATATGTGTCTCCATCGCCTGAAGCACGACATTTCTAGGTTCTACCACTGCCCTTGATTCCTGCAAGTTAGCAACGGCTGCAAATTATGGTAGTCGAGCTCGGAACTGAATGAAGGCAAGTGGTGGTATATGGAGCATTTCTCTTATTGATCCAAACAATGAGAATATCCAATAACACTTGGAACAATTCTCAGCTTGCAGAATACAATTGATCGCTACCTGAACCACACCAAAGGCACACCTACAAATGAAAAAGTTCACGAACCAGGTGTAGAGATGAGATTGAACTTACTGGATTGAATGGGAGAGATGTAATTGGATCAATTAGCGCAGGTGGTGCATGCTCCTTCTGTTGCGCAGGTGGTGTATGGTCCTGCTCTTGTGTGTCAGGATTGATGGGTGGCACCGAAGAAGTAGCTCCGTCCACATCCATGGTGGCTGAGTTGTCTGATGTGAAGCAAGATGGTAAACTGCCGCTGCCTGCTGCCTTCCTGCCGCTGCAGCTGCCAAGTTTGTTGTTCATGTGAGTCCGTGTGAAGCAAGATTGTTTTTATTATCTAACGTCAAGTGTTAGTTTAAATTAGGTGCTATGATATCCAAACGTGTAGAGTTTGTTTAAATTAGGCCTCACGTGAAGAGTTTGTTTAAATTAGGCCTCACGTGAAGAGTTTGTAAGCTAATACATGCCTCCAACGACGGGATAGCACAGTTTCCAACTAACGTTTTTCTGTCAATGCTTTCCAAGCAAATTACTGATACCTTGTCAATGCGACGGGATACTCTAA +>XM_050703260.1 PREDICTED: Spodoptera frugiperda RNA binding protein fox-1 homolog 3 (LOC118266813), transcript variant X21, mRNA +TCTAACCAATGCCCAGCATTGACTACTATTCTTAAATAAAAAATGTTGTTATTATGGCTTGGTTAGGTTGTGACCGAAAAGTTAAAATCATCTGTAATTTTGTGTAAAAGCAACGGCAACATTGTTTGTCACGTTTCGTCCGCCGAATCATGCCGACTGTATCTCCTATCCTTGTCTTTCTCACGGTGATCCGCACGGGCGAGGCGACTCGGTGAGTAGCCACGCGTGCTCGTACCCGTCCGTTGTTGCACATCGACATTAACCGCTTTCAGTGCTAGAGCGCGTTCCTCCGCGCTATACTCACATAACCTAAAAGTTAAACAATCCTGATAATTTTAGTACTATTCATTGTAAAACCATTAAATACTCATGATTACCTCGAATTTATAAGTTAGTGTTGTGGAAGTTTACGCCCAGCGAAAGGGCGTACGTGGAGTGTATTTTTGTGCAACACAAAGTAAATACAAACGGCAAGCTGTGGGGTTCAGGGGCCTTTTTTTTGCCGCCGCAGGGGATGTACTATCCTGTGAGTAACGGCAATGTCATCGATACAGGAACACCAACCTTGCTGCATATGGTGGGGACGGGTATGGCGACCCCGTTCCCGGCGGCGGCGGCGGCTGCGGCAGCCGCGGCACAGTTCGCAGCTAACGGCGACGCACTCGCCGGCGTGAAGGCTGAGGCTGCCGGTCCGACAGCTCCACCTCAACCCCCGCTCGTTAAGAGCGAAGGCCCGCCACCGCCCGCGCCTCTACCGCCCGCCAATTTCTCCCCTCAACCGCCTCCTCAACAAACACACACACAAAATTCAGTAGAAAATCAAAACAACAATAACAATACGCAAAGCGAAGGCGAAGCAAATGAAGAGAGCACACCAGTAAGTGTGGCGGCGGCGGTGGTGGCGCAGCAAGCCGCGGCCGTAGTGGCGCAGCAAGCGGCGGCGGCGCACGCGGCGGCCGCGGCCGTCAGCGCTGCCGTCGCTGCCGGCAATGTTAACGCTACCGGCACTCCTGAAAAACCGACACTCGTACCCGTCTCACAAGCGTCACAACCTAAACGATTACACGTCTCCAATATACCCTTCAGATTTAGGGACCCAGATCTTAGAAATATGTTTGGGCAATATGGCACGATTCTCGATGTAGAAATTATCTTCAACGAACGTGGTTCCAAGGGATTCGGTTTTGTAACATTCGCAAATAGTGGTGATGCGGAGCGAGCACGAGAGCGTCTTCACGGCACCGTGGTTGAGGGCAGAAAGATAGAGGTTAATAATGCGACAGCGAGAGTGCAGACAAAGAAACCTCCGACAGTTCCCAACGTGTGTGTCCAGTGGCCGGAAGGTGAGAACCTTCATTACGATTTTGCGCTGCGCCGCGAGCCGCGCGCCGCGCCGCACGCCGCCGCCGCCCCCGCCCCGCACGCCCCGCCCCAGCACGCGCTGTCGCACGCCGTGCTCAACCGCGCCGCCGCCTACGCCTCGCAGATGCACGCCTACGCGCCTGTATATTACGACCCGTTCTTAGCAGCCGCGGCGACGGCTGACTCCAACTACAGACTCCAGGCGGCAGCTGCAGCAGCAGCGGCAGCGGCGCCCCTGCTGAAGTCTCCGCTTACTTCGCCGCCGTCAGCGCCGCGCCCGCGCCCGCGCTCGCGCCGCTCGCTGCCACGTACGGCAGAGAATATGCAGATCCATATTTAGGCCATGGAATCGGACCAGTATCAGGATATGGGACTGCAGTGTACAGAAGTGGCTACAACAGATTTGCGCCATACTAGAAAGCCAGTGGATGGATACGATTGAACTCGAATACCTTCGTCACCTTCACCTTAACATGACAATGAACTCTCTTTGTAAACGTACAAACATAAATCATAAATTTAAGGATCAATAATAAACGCTAGCAGACTACCGTGTAAGTATCTAAGCTTGGGTAGCAAACTAACGAAGTAACGAGCGAGCGTGGAGTCGTGCAGTCGTCGAGTCGTCGAGTCGTCGGCGTCCACAACTTATGAAATACCAAAGTCATTAAAATTTCTAACAGAATACTTTATAAGTTGAACTTAATGTAAATTATTGTGTACCTAATGCTATACAAGTGCGAGCAGCTAAAGTGATTGCTTTCGTTCTATTTAGATATTCTAGGAGTTACTATAATTTTAACAGAAGTGAATTCATCTTACGATCATACGTACCGTACTGTCTAGTGTAGATGTTACACTTTGTTCATCGTGGACAATAGAAGAAATATTTACTATATTGTAATGATATATTTAGTGAGCTTTGCACTTGCATATCATAAAATTGTAAATACTTGTTTGGAAACATTTAATTCGGTCTTGATATTTTATTTTTAAATTCAAAATTGCCAAATGGTGTTTCCTGAATACATTTTCAGCGATCTTATTCTAAATAATAATATACTCGTTAACGTTAAATGGTCTCCATTTTTAATTATTAAATAGAATAAATTCGATTTGTAAACGCGAATTAGTTGGCGTTGCGGTTTATACCTAATATATCAATTTTAGTAAAATCGCCGTTATTATCTTGTAGACATGTATGTACGCAGAGACAATAGAAATCTCAAATCAACTATTTTGGAGTAAATACGTTATTTGGTGCGATATCAATGTGGTGCCATTTATTTGGTTGTTATTTTTACATCGTATTATATATTTTCTAAAGTTACCTTGTACTCTATACAGTTTATGTGACCTAGTTGTAGGCTGTCCCTCGGAGAACGCGACCAACGTCTCGGGTGTGCAATGCTCTGCCTCGCGTCGCTCCGCTTGAAGCGTGTCTCTTGAACTTTTGGCAGTGAACGCGAGGAGAGCACTTGTATACGTGTGTTGTTAGTCGGTAGAACTAATATGGCGTCGTTTCGGTTTGTACATTTCGCTTGAAGCTTACGTTGTCGACAGTCCCCGTTCCTTCCGTCAGCGCTGTGTCGCAGTCTGAGCCAGGCGTTTTCTCGTGTTCCTGGTTACTTGTAAATCGGTTGCTAGTTTATAAATAAGCTAATGTTTTACAGAGTGTAGGCGAAACGCTTTAGCTGTAGTCTATAAGGAAGAAGGGAACTCCGTCGAGTTCTTACATATCATTGAGATTTTCTCCTTGTATGTAGTTACGTTTATTCAATAATTATTCTATTGTCTTTTAACGATGTCTTATTTTTACAATGCTATTTAATATTTTTGTCTGGCGTACGGACTTTCATTTTTATAGAACAAACACGCATACGGGTCCAACCCTTTTAGAAGTTGTAAATTTTAGATCTAACATTTGCATTAGGATTTTAAAGTATTGTAACATCTATGAATTCGCTCAACGTTTATACCAAAGCACAAAAACCCATCGATTCATACGTATTCGGAGAAGTGTTTCATGACATTAACCCCTTTTCGATAGATTTAATAGTCTTTCAATGAGAAAAACTTGGGAAATCTATAAGTCGTGGTGTAGATAGATGATAACTAGAACAAAACTACAGACTTTATTTTTTACTTCATTTGTTGAAAGTTTTCATTAATCCTAAGTAATTTTTTTCTAAGGACATATCTACATGTTTGCCATCTAGAGTAGTTTAATCTTAACGTAGTTCAATGACTATATACATACATAAAATATAGATCTGAATTAAATCATAGTTGATTGTCAATCTTCTCATGTTATTGTAAATTCCTAAGGAATATAGTACACATTGTGTTACAGATGTGTCTGTATGAGAGGTTGCGTCGACGTCGACGTATTAGAGCTTTGTCAGTTTATTTTTCAAACCTTTACGTAGCAAGTAGAGATAGAGTACCGAATACGTTGGGCTGGTGCAGGGGCGCATGGCTCTCGTCACTGCTCGGTGTCGTCTGATGATGATAGCTTTAATTAATTAAAGGTGTTAAGGTGATGTTCTCACCCAGTTGTGTCATCTTGTAACCACAATTAGAATAACTAACTCAAGTAGCATTTCCATGACATTATTATTATTATTTGTCTTGCAGAATTCTAGTCTTCGCGCACAATCTTTTATTAAAATAATAAATAAATAGTAAAGGTGCTTACTCGTAAAGGTTTCATGTGATATTTACGGAATTAGTTGTCGAATCTTTGTCTCGATTTTTATTCTATTATTTCCGTACGATATGTAATAAGCAGTTCGTGTCATATTTTCCTTTTACTGATTATTTTTATAATTATTACTCTCGCCTTTTAGTGCCACTGGCTTTTATATAATAAGTTATATTTACTTTATCGTACGTTATTGTAGTCTCGTTGCAGCTTCGAACAATATTTTGTGCTTTACTGCTGAATACTCATGCGTGGATGCGTTATTTTAAGTAATTCTTAGGTTTGTAGGAATTGTCTGATTAATGCAAGATTTTGTATCTGAGTACAGAAACAAGTACATGTGATTCTATTTGATGATTTTATTGTTTAGTTTTAGTATTTTGTATCAATTAAAGTCACAAATATTTGTGAGTGTTATATTTTTAAATCATCATATTTTATAACAAGTTAACAGGACTTTATTTGGAAATACAATAATTACTTACGAACTTTGATATTAAAAATTCGATCAAATTCTGACCAAATCTCGTCTTGTTTACTTGGAATTTTAAAATGTACCTACATAATTTTTGATTATGTTATCTTTATAGTCTTTATGTATGATTTTAATGATAATTAAATAAATCACAAAAGCAAAATACCTAAGTTTTGTATAAAGTTACATAATATAAGCCAAATTGTTGTTACTTGGAGAATAATCAGAATTTAAATTACATATCTGACAAAATGGTTAGTGTGCTACAATAAGATTGAAAAAAAAATAACATCAAGAACAATGTATTATAAATATTATAATCATTAAATTAAGGATATGTATTTTGTAACGCAGTTTGTTTCTCAGTTTTTATGAGATGTTAAATTAAAGTTTCATACTACTCTTGTTTCATGCTGTGCACAACTTATACGATCGTCGGCTTCGATATTGTATTCATTAGATAAAGCGAATTGTTATATTGTGCATAATAAATCATATCAGTAGTGGTGTTAGCTAGTTGCGAGCCGGCGGCAGCGTCCACTGTACATAGGTATACTTAGTGTTACCGGCGGCCGTATTACTGTGCCCTCGGGTCATATTGTTAAAGTAGCCAGAGTTGATAAGTATCACTTGTTCGTCAATTGCACTCGTCAAAGCTGTTCAGTTGGTGTTGTAGGTTATTCAGATATTAGCGGGGTTATTGTTAGCTCCTGCGTGGCAAACTCGCAACTTGTGGCCGTGCATGACACTCATTTTATTGCACGACATCGCCACACGGCACGTCTACAAATTGCTGGTTTGTTTGCGATTAACCCCAAAACATTTAGATGGTGTAACGCATACTGACTATGGGATCGATTAGTTGCTGGTCTACTATCCGGAACGTAAATAAGTTTAACGTTCTAAGATCCATATTATCACTGTTAACTTAATTATAGCTATCGTTTGTAATTACTATTTGTTATGCATTACTTTTGAAGTTGCTTGTAGTGATCAAAGCAGTCAGTATGCGTTGCAGCTGCATTGTGGGCTAGTATGCGCGTGCGCATAGTTTCCGAGCTAGTCTCGAGCACACTTGCAGCCGGCCAGTATTTGAAATACTATTACAATACCGTGCTCAATTCCTGTATCTGTACATTGTAAGTATAATGTTGACAAAATGTTTTTGAAGTTTAATGTAAACTACATACAATAGGTTTGTTACATAATGAATGTCTTCCGTTTGGCACATTTTATAGATATACCTACTTTGCACATTTTATTAAAGCACGGATCTACATAGGAATACTAGTTCAATATTATTTAACAGAGATATTTTCAAGCCAAGTGCACAGCGAGCCCCTCATATACAATTTGTGATACCTAAAGTGAAATACGATTTTCCTTTTTTTTTGTGTGGCAATTTTTAATGGATTGCAAAGCTGATTTTCTCTTTTGAATTGTAAATATTTTTTTCTAATGAAAAATATTAAATGAAGTGAATCATTTTAAAGCCTTTGGCATTGTGTACTCATTTACGTTATAAATAAATTATAGTATAAAA +>XM_050906876.1 PREDICTED: Gymnogyps californianus immunoglobulin lambda-1 light chain-like (LOC127022987), mRNA +ATCGCGCCATGGCCTGGGCCCCTCTCCTCCTCGCGGTGCTCGCCCACAGCTCAGGTTCCCTGGTCCAGGCAGCGGTGACTCAGCCGGCCTCGGTGTCAGCGAACCCGGGACAAACCGTCCAGATCACCTGCTCCGGAAGCAGCTATGGTGTTGGCTGGTACCAGCAGAAGGTTCCTGGCAGTGCCCCTGTCACTGTGATCTACAACAACGACAAGAGACCCTCGGGCATCCCTTCACGATTCTCCGGGTCCAAGTCCGGCTCCACTGGCACATTAACCATCACTGGAGTCCAAGCCGAGGACGAGGCTGTCTATTTCTGTGGTGGCTACGACAGCAGCATGTGTGGTGTATTCGGGGCCGGGACCATGTTGACCGTCCTAGATCAGCCCAAGGTCTCCCCCACCGTCCACCTCTTCCCACCATCCTCCGATGAGCTCTCGGCACAGGGCAAAGCCACCCTGGTGTGTCTGCTGGGAGACTTCTACCCCGGCGCCGTGCAGGTGGCCTGGACGGCCGATGGCCGTACCCTCAGCAGTGGCATCGAGACTGGCCAGCCCCAGCGGCAGACCAACAGCAAGTACATGGCCAGCAGCTACCTGACGCTGAGTGCCGCCGAATGGAAGAGCCACGAGACCTACACCTGCAAGGTCACGCACGAGGCCGGCAACGTGGATAAGAGCCTGAATAGATCCCAGTGTTCCTAACCCTGCTGGGACCTCCCCGCACCCGGCAGCCCCTTGCCGGCCCCTTGCCGGCGCCCTCCCTCTTCCCCGCTGCTGGGGGCAGCGGCTCCCCCCCCACCGCAGATGTCTCTCCCCATGTCCCCCTGTCCCCTGCTCCTGTCCCCCCGCCCTGAGTGTCACACGAATAAACACCGACACTGAACTAG +>JF646645.1 Uncultured bacterium clone GDIC2IK01BM6IP 16S ribosomal RNA gene, partial sequence +GATCCTGGCTCAGGATGAACGCTAGCTACAGGCTAACACATGCAAGTCGAGGGGCATCATGTTGGTGCTGCAACCAATGATGGCGACCGGCGCACGGGTGAGTAACGCGTATCCAACCTTCCCCTTAGTAGGGGATAGCCCGGCGAAAGTCGGATTAATACTCTATGTTCTTCAATGCGGACATCTAAGTTGAAGCAAAGATTTATCGCTAAGGGATGGGGATGCGTCTGATTAGGTTGCAGGCGGGGTAACGGCCCACCTGGCCTACGATCAGTAGGGGTTCTGAGAGGAAGGTCCCCCACACTGGTACTGAGACACGGACCAGACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGCGAGCCTGAACCAGCCAAGTAGCGTGCAAGGACGACTGCCCTATGGGTTGTAAACTGCTTTTATCAGGGAATAAAGTGAGGCACGCGTGCCTTTTTGTATGTACCTGATGAATAAGGACCGGCTAATTCCGTGCCAGCAGCGGC +>GU634984.1 Uncultured bacterium clone HF9475 16S ribosomal RNA gene, partial sequence +ATTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGCAGCACAGGGAGCTTGCTCCCGGGTGGCGAGTGGCGCACGGGGTGAGTAATACATCGGAACGTGTCCTGTTGTGGGGGATAACTGCTCGAAAGGGTGGCTAATACCGCATGAGACCTGAGGGTGAAAGCGGGGGATCGCAAGACCTCGCGCAATTGGAGCGGCCGATGCCCGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGGACAATGGGGGCAACCCTGATCCAGCCATGCCGCGTCGCAGGGATGAAGGCC +>MG192940.1 Homo sapiens isolate HD19_NN14_F4 T cell receptor beta mRNA, partial cds +GTTGTCTCCAGATCCAAGACAGAGAATTTCCCCCTCACTCTGGAGTCAGCTACCCGCTCCCAGACATCTGTGTATTTCTGCGCCAGTGGGAGAGGACAGGGGATCTACGAGCAGTACTTCGGGCCGGGCACCAGGCTCACGGTCACAG +>NM_001252006.1 Homo sapiens poly(A) polymerase alpha (PAPOLA), transcript variant 2, mRNA +AGTTCTAGAACGTTGCTGTGGTAGCGCTCGGGCGCCATGTTAGGACGAAGGGGAAGGAGGAGAAGCGCTTAAAGCGGCGGGAGCGGTGCGGGAGAGGGGTTGGACCCAGGGCTGAGGCAGGCCCCCCCCTCCCTCCCGCCTCAGTGGATCATGCCCAGGGCGGCAGCGGCGGCGGTTGCGGGGGGGAAGTGACTGGGCGGTGCCGGCGCCGGAGACGATGCCGTTTCCAGTTACAACACAGGGATCACAACAAACACAACCGCCACAGAAGCACTATGGCATTACTTCTCCTATCAGCTTAGCAGCCCCCAAGGAGACTGACTGCGTACTTACACAGAAACTAATTGAGACATTGAAACCCTTTGGGGTTTTTGAAGAGGAAGAGGAACTGCAGCGCAGGATTTTAATTTTGGGAAAACTAAATAACCTGGTAAAAGAGTGGATACGAGAAATCAGTGAAAGCAAGAATCTTCCACAATCTGTAATTGAAAATGTTGGAGGAAAAATTTTTACATTTGGATCTTACAGATTAGGAGTGCATACAAAAGGTGCTGATATTGATGCGTTGTGTGTTGCACCAAGACATGTTGATCGAAGTGACTTTTTCACCTCATTCTATGATAAGTTGAAATTACAGGAAGAAGTAAAAGATTTAAGAGCTGTTGAAGAGGCATTCGTACCAGTTATTAAACTCTGTTTTGATGGGATAGAGATTGATATTTTGTTTGCAAGATTAGCACTGCAGACAATTCCTGAAGATTTGGATCTACGAGATGACAGTCTGCTAAAAAATTTAGATATAAGATGTATAAGAAGTCTTAACGGTTGCAGGGTAACCGATGAAATTTTACATCTAGTACCAAACATTGACAACTTCAGGTTAACTCTGAGAGCTATCAAACTATGGGCCAAACGCCACAACATCTATTCCAATATATTAGGTTTCCTCGGTGGTGTTTCCTGGGCTATGCTAGTAGCAAGAACTTGCCAGCTTTATCCAAATGCAATAGCATCAACTCTTGTACATAAATTTTTCTTGGTATTTTCTAAATGGTATGTGTTTAGATTATATTAAAATAAAATTGATTGTAGACACTGAAGTTTAGTCTTATTTCTATGACATTTCTCAGCTTGGTTTCAGATTCAAATTTTAGTTCATGATGTAGTCATGTAGGCAGCCTTGGAGATCACATTGTGTATAAAATGGCAAACTGAAACTATTTTTTTTCCCTAGTTTGGCCAGGATAGTAAGGCAGATTCTATTTGTACTTCCTTGCATAAACTTACCCTCTGAATAAACTCTGAATTTTAGCAGCTAAGATCCAATTTATTGATAGGTTGGGAAATCAGTTACTATACTTTTGGATAAAACTTGTACACACTACCTCTTTCACTCTTTTAATTCTCTATCTATAGGCCATTAGTTTCTTGTGATTGTTTTTTTTTTCTTTTTGCTTTCAGCATTTATTTGGCCTAATATTAAAGATACGAATTTTCATAAGAAGCTTTTAAAGAATAAATTAACATTAAGTGCTTCGGGACAAAAAAGGAATTTGAGATTAGTCATTAACCCAGATTTTTTTAAGTTTCTTCGTTTCATTTCCACATATGTCAACTATGATTTAAGAAAAAGTAGAATAAAAGATTACTGCCATTTTATATTAATTGCCTTGGCCCAAAAGGTGAGGGTTCTTGGTTTTTAATCAAATTAAGATAAATCGTCCATTCCTGTTCTTATGAACTCCTGCTCCTCCCTCTGCAAAAGAGATGTTCTTTTCTAGTAATTTTATAAAAATTAGTTATTTGAGACAATTTAGAGCTGTGTTCAACTGGAGGAAAAATAAAAAAAATTTAGAACCATGCCACACTTTTCAGTACACATTCTGGCTGTTTTGGGATTTAGTAGCACTTATAATCAGGTGTGATAAGATTAAAGAATGTCAGAATTTCTTTTTTTTTTTTTTTTTTTTTTGTTTGAGACGGAGTCTCACTCTGTCACCCAGGCTGGAGTGCAGTGGCACGATCTTGGCTCACTGCAAGCTCTGCCTCCTGGATTCATGCTATTCTCCTGCCTTAGTCTCCTGAGTAGCTGGGACTACAAGCGCCTGCCACCACGCCTGGCTAATTTTTGTATTTTTAGTAGAGACGAGGTTTCACTGTGTTAGCCAGGATGGTCTCGATCTCCTGACCTCATAATCCGCCCGCCTCGGCCTCCCATAGTGCTGGGATTACAGGCGTGAGCCACCGCGTCCGGCTGTCAGAATTTCTTTTAATGCTACACATATATAAGCAAATAATGTTTTTAAGAAGCTAACCTTGATGTTAAGAGTGGCAGGTGTTCTCCAGTTTTTACCTCTTTCATATGGGACCAAAGTAGCTAGTTTATGGAACACATATGAAAATGTGGTTATGCCACCAAGTTTTACTACTACACTTGTCTTACCACTTTTAAGTCATGAATTCTATAATTATTCATACCCCTTTGCCTGTGATCAGAAGTAACTTTTAAAATTATCACTTGACTTTGGATGGAACTAGTATAAAGGCAGGAATTTTGTCTTTCAGTGGAGATTTATTCTGTTCAAGGTTGAAGTGGACACATCATTATCTTGGGATGGTACTTCTTTATTTAAATAGTCCTTTAAAGTTCTTTGAGTGGCAGAGAACGTTTTTGGTTTCAGTCTGAGAAGGCTACCAAATGGTTTAAGTTCATTTCATAGTTAGGAGAAAAAGATTTTGAGTAGTCTAATGTCGTCAGAAAGGATTAAAACGTTGTATGTACCAAGAAGGCAGAATGAAGAAGGATCACGTTCACAAATGCTGTATGTTTAACAAAATACGTTTAGATGGTAATATCCAATAGTCTTATCAAGTGCTACAATCTTTTTAAACAGGGAATGGCCAAATCCAGTGCTATTGAAACAGCCTGAAGAATGCAATCTTAATTTGCCTGTATGGGACCCAAGGGTTAGTGTATTATTTTTTCCCCTACCAATTCACACTGTGCAATAACAAGTAAAAATCATCTGCATAAACTCCAGGGAGACTTCCAGCCTTTTACTTATGAATGGTCATGTCCGTATTACACTTTCTTTTAGATAACCTCAACTATAATTGTCCTCAACTATAATTGATGTGAGAAGCATAATTATGTACCCTGTAAACCACATTTAATTGTACATAGTTTTTAATACAGATTTTACTAACATTTTAATTTATTCTATATAGAACTACCTTGTAAGTCAAAGTTGTGTGGGCATTTGTGCTTTAAAAAAAATAAAAGGATACTAAAAATCCCTGTATTTTTTATTTTATCTAAGTATTATGCTAAAGTTGGGTTGTTATAGGAAAGCTGTTACTTAATGTTTACATGTGGCATATAACTTCTAAGCATTTTCACTTTAATTACCATGATGTAATTGTAAAAAAAATTGGTTTAGATATTTTAGAGATTATAAAAACATGGTTGGGCTAAAGAAGACCTTCCATTCTGTTTCTTGGGAAGTTACAACATTTACCGCTTACTCATTTTAAATGTTAACAACATGCACTTTATAAACTGATAAAAGAAATTTAGGTTTGAATAAGATTTCCTAAGTTTATGAAATCCTTTTTTTCTAAATTATTACAATATCAAAAATTTTAAATTCTGTTGAATTACATCAAGCTATGCATTTTCAGGTTTTCCGAACCTCAAGGCATTTACTTTTAGAGGATGTGAATTTACAACTTACTTTGTGGAAATGTGCCACTTACTGATATACAGATTTAAAATTAACAGTATATCATTTCATTATCTCCTAACATATCAACATGGATAATGTAGTTTCACCGCGTGTTAATAAGCTTGAACTCCTTAATAGTTTCAGGGTATATTAAGAACTTAAGTTTCTATCTTGTTGAAAATTAGCTTACAAAACATTGTAGCATGACATGTCTCTAAAGGTAATTGTATGTGCATCCCCATTTCTGTTGTTGAATAAAGAAAAACTAAACATCAAAAAAAAAAAAAA +>XM_018797717.1 Schistosoma mansoni hypothetical protein partial mRNA +ATGGGTTGTGGTGCAAGTGGATTGAAAGATTGTAAATCAGAAGTAGCTCAATCGACAGATGACAGTCATTCCAATAATGCAGAAATAGAAGTTGAAGAACATAAAGAAACAGACACAAATCATACAGTTCCTGAATTATCAAGTGAACAATTGGATCCTGTATCGAACGATAGACTACATGATGAATCTAAAGAAGAAATTCCACAAAATCAAGAAATTCCAGAAGTTTCAGTGATTACTGAAGAAAAACCAGATGTAGATTTGGCAAATGATGCGGGACAACCTGAAGAATCCAATACAAATGAAGGAAATACATCAGAAAGCTAA +>XM_040902855.1 Laetiporus sulphureus 93-53 uncharacterized protein (LAESUDRAFT_536661), mRNA +GCAATCGGAAGATCACGCCTCACGAATGACCCGACCGTCTCATCGACGGTACTTGACTGACCTCTCCGCGCTGAGTGCGTCAATGCCGAATCATCGAACGCGCCGCCTCGTACCGAAACCAGACCGCGCGTCGGGGCCACGCCGCTGCGATAGAAGACGAAGACGTGCCTTGCGCTCACCGCTGATGCAAACGGACCGCGGCGTGGACCGTGATTTGACGCGATGCACAGCAGATGCTGGGAAACGGTTGACACGGTGAGCATTGCACTTCCCTACACACCTGCTACTAGATTCTTCGCGCGTACATGTCGACTAGGGCGGTCTCTACGCTCAATCGCCCTGTTCGCGTTGAGAATGCTGTCGACCTCGTTAGATGTGTGGATGACCAGAGCGTACCGAGACGCAGGCGAGATGTTGACTACGCGGATACTACAAATGACGAGGCGCACGACGAGAGACGGCCAAGACCGATTGCAACCGTCATTCGCGCTCACCCGCATCGCACTCGGGCTGGACATGCCCTCGTGCGCTCGTCGCCGTCCTGCTGTCCGTGGCTTTGGACTGCGAAGCAAGACAGCATGATCAAACAAGTGCGCAAGAGAAACGGGGGGATGGCCTACCGCATGCCAAAGCCATCATTTCACGCAGTCTCCTTCGCCAGAACACGCGCAGGACTGGCGCTTTCACGACAGGGCTTGAGGCTCGTGCCACTATCCAGCGACCGGTCGGAGATCACACCTGACGTCTCAGAAATACCCGCATCCGATGCTGTCTGATGCAACTGGGCTATTCCGGCGCACTTCAAGCGATATTCGAGCAACAGAAGCTGCGACGGTTGACTCGCAGGCCGCAGAGGCCGACCATGACCTGCCGCAGACGGTAGACCGACCTAGGAGAGCATCTCGCGTTTCGCGTGTGGTATAGAGG +>XR_002312254.1 PREDICTED: Odocoileus virginianus texanus uncharacterized LOC110131716 (LOC110131716), transcript variant X2, ncRNA +GGACGGCCCACCGCGGCCCTGCCCAGCTTCCAGCCACAAGGTCTCTGGCTGATGAGTAGGCGGTGGTGACACCCTGATGGCCCAGAGGCCGGAGCCCACTCAGTCACCCGGTCTGTGCACGGGCCTGTGTGTGTCCCTCCCCACAGGAGGGCTCGCAAATTAAGGGACTCCGGCTGGAGGAGGGCTGAAGGGGAGCCCTGTGCTTCTGTTTGTCGAGACTTTGCCCATACCATCGCAGCTCCAGCCCAGCTCTGTGGGAACAGCCTGTAATAAAAATAGAAATTATTGCTAATCAGGAAAATCCTCCCAGCCCAGCCATGCTCTTCAGCTACAAAACACCTCTGTTTTCTGGTATTAACCTTCTCTACTGCTACCCTCCAGTGTTTGCAGCCTCTATTCTGTAAGCAGGGAAACTGAGGTCCAGAGAGGCGAAGCAACGAGCTGAAAGCTACTGTGAGGGGCAGAGATGAAGCCAAGGTAAGGTCATTGCCAGATCTGTTCTAGTGGGAGGTTGCAGAGAAGTCACTGAGGGCTTCCTGGAGGAGGTGGCAAGAAATCTAAAGGAAGGAGGACTCAGATCAGGAGATAAAAAAGGTGAGGACAATTCTGGCAGAGAGAAACATGTGAAGCTTGAAGTTGGGGATATTTCAGCCACATTCGTTCGTTCCACAAACGCATTGACATCTGCTGTGTGCCATGTCCTCTGCAGGAGGCTGGGGACACACAGAGGACAAGCCAGATCGGGCTCCTCCCTAGTGGGGAGCCCACCTACATAATCGTCCCAAGGGACCGGCAGCAGTGGGAGCTCCAAGAGGGTGCCTGACTCAGCTTGGGGCATCAGGGGGAGTCTGGGGAGGGTTCTTAGAAGAGGAGGGAACACAGAGCTATGACCAGGAAGGTGAAGAGACCACAGTCAGATAAAGGCATTCTAGCTAGAGAAACAGGATGTGCAAAGGCCCTGAGACAAAAGTGTGTCTGGTCTGCTGGACAGATTGATCTCAGGGTAGAGAGATCTTGGGGCTCAGGAGAACGGGTACCAGGTGGTCCAGGGCTTGGGCTGTCTCCTGAGGGCAATGGGGAACCGCAGAGCATGCGTGAGGAGTGGTGGGTCTAGAGGGGGCGCTGAACAGAAGGAGCCAATCCCAACCTGGGCACTTCTAGTGAAGCCTGTCCCCTGATGCCTGTGGCAGGGCCGTGAGCTCACCTCCTGTTTCCCTTGGCATTCGGCACCCCTGGGGGCCGCTCCTGGCTGGTGCTGGGGTTCTTGGGAAAACCACGGCTCCAGGAGGGCCTCTGGGCTTGCGTGTGCCTCATGCAGCTAGGACAAGGGCACATGGAAGCCAAGCCCCTGCCACAGGCTTGGCATGGGGCTAGAAGTGTGGACACACATGGCCTTGTTCATGGCTGGGCCATGAGGAGTTGTGAAGAAGAACATTCTAGGCAGAGGGAATGGCGAAGGCGGCAGTCCTGAGGATGTCCCAGTCTGCGGATCAGACAACAGAGGCCTGGAGCCAGGCACTCTGGTTTCATGTTCCTGCTTTCTGGATCCCATTAGCTCTGAAATCCCACTTCTAGGCAGCAGCCCCCTCCACCCTTGCACACCTTGGCAGCCTCTCATTACACACTTACTCACTCTGGGTGAACTTCCAGCCCTTGTACCTGCTGTTCCCCACCATCCCAAATACCTTCCTCCTTCCTCCAAGATCTGGCTCTGATGCCCCCTCCTTCAGGAAGCCCTCCCTGCTCTTCTTGGGCAGGGCTTAGGGGCTGTGCGACATTCCCCTAAGATGCCAGAATATTTCTGGCAGAGACAGGATGACCTCACCCGGGGGACTGGGGATGTCTGTGTTTTGTTCTGTTCCCCTTTCCCGGGTCCCCCCTGGGCCTGCAGAGAGCCCTGCCCCGATGAGTGTCACATGGTTCTTAGTTCTTATAATTCATGTACCATCGTTACTATTAATAATAGTAACCCCTGCTACCGCTGTGCTTTATGACAGACTCAGGAGCCGCATGGCCTGGGTTCAAGTGTCAGCTGGGCATAGCCTCACTGTGTGACCTAAGGCAAGTTGCTTGACCTCTCTGTGTCTCAATCGCCTCACCTAGAAAGTGGGAGTGATCACTGCTGAGAGGACTGGATGAGCTCAGCGTCTACCTCCAGTGTTAGCCTCATTATACAATATGGAACTTATACACGATGTCGGTTATACCTCAGGCCGTTTTTACTCACATTTTCCTCAGAGAGGGAATGAGACAGCTCAAGGTCACACAGCCAGGATTAGACCTGGAGAAGGCAGGACCCCTGAGGCCTTCACACCACCCCTCTCTGCCCTTGGCCACAGATTGCAGGGGAGAAACGCTAACCCAGGCCCCTCATTAGCTGTGAAGACTGCTGCCTGGGACCTCCTGGCCTGAGCCCTTGGCTGGCGCCCCAGCCAGCCCCCCTTCCCACCACGCTAGACCCAGCGGTTCCAGGAGCCTGGCCAGACTCGGGCAGAGGGGCTGGTGCCTGTGTGATGAGGCCTCGGAGCCCTCCCTGGCAGAGTTCTGCTGGGCCAGGAGACATGTGGGCGCCCCCCGCTTGCCCAGCCGCCTCTCCTGTGAATCCAGAGGGAAAGTATGTCGGGAAGGCAGCCGCCCTGCCCTGGGCGGGCCCAGCCACAGGCTCAGGGTCTGGGGAATTCATTAGAGCAGCGAGGGAGGCCACTTAGCCACTGCTGGATCTGCGGCTGAGGAGCCTGACCCAGCCTGCCTTGGACGGCCCGGCTGGACCCTGCTCTCCAGAAGGACCAAGCAGTGGGGTGAGGGGCAGTGGGGCAGAAAGGGTGCCATCCGGGCACTGGAATCTGGCAGAACCCCCCGACTTGCTCTGTGAGTTCTGGCAAGCCCTGACTCTTTCCCCATCCTTCATTTGCTCTGACTGTGTCGTCATTTGCCTCAGGCTCTCCAAAAGGTATGATAAAGAAGAAAATAACAATAAATATAATGGCTACAATTTTATTGAGCAAGTGCCAAATGCTCGAAAACTTGCCACATCACTTTTGTGGGTTTTCCCTTTTTGTCCCCTCTCCTCACGGCGCCACGGGGCAGGAACTGACCATCATGGGAGACAGCAGGAGACTGCCAGGAAGTCTTGGTCTCTGGCACCAGGAGCCTGAGTTTCATATCCCACCTCTGCTGTGCAGCTTCAGACAAGTTGCTTAACATCTCTGTGCCTCTTTTCTTTTTTTCTTTTTTATGGGGTAGGGGAGGGTACCTTCAAAGGTAGATTTACTTTTAATAATAATGTAGATTTTTGCTTCTCCAGTTTAGAGAATGGACTGCAGAGTTGCCTCAGGGGAGAAAGGACTTCACTAGGAACCAGCTGGAATTTAATGATGTGGCATTCAATGGGCATTGACTTCTGAGAATGGTTTTACATCACTATTATCTTCAGAATTTTCCAGGGATAACTGTGGCTGGACAAATGACCACTTTACTTTTTCCTCCTCTCCTCTCACATTTAATGAGAGTTTTGTAGGTAACAGTAAAACAAACCAGTGTCTGTGTTGCAATAAGAGAGACTGCCTACGGGCTCACTATAGAAGTTTTCTTCTCTCCCTCAGTCTGTCTGTGTTTCTCTCTGTCTAATGAAGTGAAACATGAAAACGTCTAAAGTTGTTTGCAGTTTATCAGCAGCACTAAAAACCCAAGTGAAACGAGGACGATGAGAGCCCCAACCTCTGAGGCTCATCATAAAGCCCGAATACATTAATTCGTGAAAACTACACTCGGCACTTTTTTTTTAGAGATGGGACGATGGTGGTCTGAGCCTCTGCGCCTGGCGGTAGGTGACCTTGGAGGTGGACAAGTGCATACCAGCTGCGGCAGGAGCCCCGGAGTCAGGGAGACCACTCTGCCAGGGAATGTTAGTGTTGAGACCTGAACAGACAGGAAGTTCCCGTGAATCCAGGCATCCCAGGACCACAGAACAGGACGTACAGAACAGGGGGTCACAGAACCAAGGTCACAGCGCTGCGTCACGGCACTGTGAGTTAATGGAACCGTGGAACCGCAGCATGCTCCAGCCGTGGCACTGTGGGATCCTAGGGCCACGGGACCACAGTGCCAGAAGCCCACAGACTCAGGGGATGTGGCCACTATCAACAGGAGCTCAGAACCGTGGGATGGCAGAAGCCACAGAATCCTAGGGGGCCTGAGACACAGCACCCAGAAATCCCACTTGGGAGGTGCCATAAGATGGAGTCTCAGAACTGAGCCCATCAGAAACACCGTCTCAGCTCCACCTTCACCTGTTGGCTGGCCAGCGAGTCTCTCAGAGGCCACGGGAGCTCGGAGGCACTCTCTCTCCATCCCTGGGGCAGCCACCGGAGAGAAGGACCATGCTGTCATCAAGGCCTGGAGCCAGCCAGCCGCCAAACACTCAGCGAGTCCCCTGTTGCCAGGGCCAAGTGAGGCTGTCCGGGTGCCGAGAAACAGTGCCAGCCTCCGGCCAGGCGCGCCGGGACGCCGAGTGCTCAGCAGCAAGTGGAAAAAGAATCAACGGGTTCCTTCTACATCCACATCCTCTTAAAAGCCAACAGAAACATGACTCGGAGGGGAGGTTGTACCCTGGCTGCATTGCCTCCGGATGGCGGCAACGGGAAGCAGCCCCCCAGCACTGCCTCCGCCCACGCCAGGAGTCACAGCCCGGCTCAGGTTGCACCAGACACATCCGCGTACTAATGAACTCTCCAGGGACTGTTCACCCAGCAGACCTGACACCTGATGCTCAGAATAACCAATCTGTTTTGGAGAGGGGAGACTGAGGCCCAGAAGTGAAGACTCCTGGCCCAGATCACGAGGGTGAGAGCTGAGACCCAAACCCAAGCATGATGGATGCTAAGAGTGAGCTTGCCACCACCCAAACGGGCTTGCTCTCGGGCTTCCCCAGCCCCATCCTGTTTCTAAATGTGATCCAGCATGGAAGGTGGGAGGCTGGGCTTCGGCAATTCCTTCCCTTTGCCGAACCCAGATCCTCTTGTTCACGGGGCTGCCATGGGGACGAAACATGATCGTGGTGAGTGCTCACTGGAACCTGGTATTGCTGTCATGAAAGGACTT +>XR_005956344.1 PREDICTED: Pyrgilauda ruficollis uncharacterized LOC121361499 (LOC121361499), ncRNA +CGCCTCAGGCCGGGATATGCCTGGATGGGGCAGTCCTGGGATGTTGGGGGCTTATCCTGGAGATCGTCTGGTCACAGCGCCCGCTGCCAGGGGAGTAGTTCTGCTGGTTGCTGCCATGCTCCACAGGAGGAACTCAAAGCTCTGGCTAGGATTTTTTTGCAGAATTCTACAGTCATTGCATCCTGGTGGAGAACGCAGGGATTCCTGTTACACTGCTAGCACATAGAAAAATTCCTGGAGGAATGCCACAGGTTGCTGCTCTGCATCTGCTCAGAGAATCAACTGTGCCCAAAGCCATCAATTTCCCCCAGCAGTTCAATGCACAGGAAAACTACCTGGAACTTGTATGTTGCAGTAAGTCATTGAGAACTTGGGGGTTTGTGTTCATCCTAACACAGACATGTGATGGCAGCTGTGAAAATAAGTGCAGTTCCCCGGAGGCAAAGCAGTGCTATGTTTGTGCTGCAGCAGCCTGGGCCAGAGGAAGGTGAGAGAAACCACAGTGGGACAGGTGAGGCACCAAAAATGCCTTTATCTTACCTGTGGCCTTTTGGACAAACTCCAGTTGTATCAACCCACAGCATCAGACAAAGCTGCTTTTAAGAACACTGATGCAAAAATGAGATCTTGGGTGATCATTTCTGGTTCAAGTAGCGGTTTATATATTTATTATAATTATACACAACCTTGACAATCTGTATTGCCATTCAAAAATAAATCCAAGTCTTGTCAA +>XM_003890613.1 Puccinia graminis f. sp. tritici CRL 75-36-700-3 hypothetical protein (PGTG_20695), mRNA +ATGGCGCAGCCATCAAGTCCGTTGCTCCACATGCGGCCTCCAAACAGCATATCTCTGCCCACATCTTTCTTAAACATTTTTCTTTCTTTAAGCAGTGACGCCACCTCCCTCAACAACACAAGCAAACTTGCTCTTGGAGCAAGCTCCCACTCTAGTCACCATGATGATTCTGGCGAAACCGTCCTACCTCAGCCCGTGATTTATATCATCATCGCAGGGATCGCTTTAGCAGTGATATTGGCGGGATTTGCGATGTGGTCATGTGTTCAAAAGCGCAACAGACGTCGTAGCCGAAAGGCATCATTCTCGATGTCCCAAGCTTCTGAAAAAGAATGGGGCACCACTCGCGAGATGGCTGGCGGCATGGAGAGCGTTTACCGGCACTCCGTCATCACCTATGACGCCAAGGCTCAACCCAAGCTGCTCTATGAAGACTTGGATTTCGGTCCAATGGTCACCTCGCAACTTCCAAGTCAAAAAGAACTGAATCAATACAAGAAAGATACCATCGTGTGTCTAACCGACGTCTATGGAAGTACCAAAGGATGGGACGGCTCAGAATTTGACTATATGTTAAACTCGCCAAATCAATTCCCACCTGCGAGAAGCAGTCCCGATCTCTTATCCTCGCTTCCCAAAGCACTTTTAACTGGGAACCATACGGGTCGACAACCGGCTGTCCCGGGGTTTCGCCCATACCGGTCACCATCCGGCCAATTGATGGTCAAGCCGTTCTCTTCGACCAAAATGAGCCCCGCTGAAGCCTCTAACGAGCTGCAAAAGATCATCAACGCGCATGCCAACCTTGAGAACTTCGATGACTTGTTCGACCACGGCGAAAGCTTCGATTCTTCCAACCTCACAAACTCCTTTGATGGCACTCCAATCCATTCAAACCCTGAACATTTCCCTATCCTCTTAGGTAGCTTCCCTGCTGCCCGTAAACTCTCCTCTTCCTTCTTACCCGGCGCTGATAAAAGCTTGCCCAAAGAAATCGTCCAACTTCCCCTTCCCCGGTATAACTTCAAGCAAACCACTGCTTGA +>XM_051686607.1 PREDICTED: Myxocyprinus asiaticus autophagy related 9B (LOC127434116), transcript variant X2, mRNA +CGTCGAGCGATGTTTGTTGTGATTTCTGTTATTGTTGTGAAGCGCAAAGGCGAAGATCATCGTTAGTCGGATGGATCTATGGTGAACATCATAGAGAGGTAGAATGTAAAACACGATGGCTGATTTTGAAACGTATCAGGAGTATCAGCGTATAGAAGACTATGATGAAGACTCACCCCAAGGAGAGGAAGACTTACTTATTCATGTGCCAGAGGGTAGAGGAGACCCATGGCATCATATCAAGAACCTCGACAATTTCTTCACAAGAATCTATCATTTCCATCAGAAGAATGGATTTGCCTGCATGGTGTTGTCAGAGTTTTTTGAACTTGTGCAATTCCTGTTTGTGGTCACGTTTACAACTTTCCTCTTCAACTGTGTGGAATATGATGTTCTCTTTGCCAACCGAGCGGTCAACCACACGGGCCAGAGTCTCGGTCCCCTTGACAGAAACAAGGTCACCCTTCCTGATGCTATTTTACCCAGGGAGCAGTGTACTGAGAGGATTGAAGGCAACAGCTGGATCATATTTCTCTTGATAATGGCAGCCATTTTTTGGGTCTATCGGCTCGTGAAGGTGATCTGCAATGTCCTCAGCTACTGGGAGATCCGGCAGTTTTATATTAAAGCACTCAAAATACAGATGGACGAGTTGTGTAACTTCTCATGGCAAGAAGTTCAAGGCCGTTTGATTCACCTGCAGCGTGAGCAGCCCATGTGCGTCCAAAAAAGGGAACTCTCCGAACTGGACATCTACCACCGCATCCTACGCTTTAAAAACTACACCGTCGCCATGATCAACAAGTCTCTGCTGCCCGTCAGACTGCGCGTGCCCTTTTTCGGAGACATGATTTTCCTCACGCAGGGCCTAAAGTACAACTTTGAACTTATTCTTTTTTGGGGCCCCCTCTCGCTTTTTCAGAACAAATGGAGTTTACATCCCAAGTACAAACGAGCTGCGAACCGCCAAGAGCTTTCGAAACAGCTCAGCCGTGTTATATTGCTAACTGGCATGGTCAATCTTCTGCTTTGCCCATTCGTGGTGGTGTGGCAGGTGTTGTATGCGTTTTTTAGCTATGCCGAAGTCATCAAACGGGAGCCAGGCAGTTTGGGTGCGCGCCGCTGGTCGCTGTACGGCCGTCTTTACCTGCGACACTTTAATGAGCTGGATCATGAGTTGCAAGGCAGGCTGGGTCGCGGATACAAGCCGGCCGCTAAGTACATGAACGCCTTTGTTTCTCCCCTGTTGACGGTGCTGGCGAAGAATGTGGCTTTCTTCTCCGGCTCAGTGCTGGCTGTGCTGATTTTGTTGACAGTGTATGACGAGGACGTATTGACGGTGCAACACATCCTGACGGCCATCACTGTGCTGGGCGTGGTCATCACGGTCTCCAGGTCATTTATTCCAGATGAACATATGGTGTGGTATCCTGAACAGCTGCTGCAGTGTGTCCTGGCCCATATTCACTACATGCCGGATCACTGGAAGGGCAATGGCAACAAGAGCGAGACTCGCGACGAGATGGCACAGCTTTTCCAGTACAAAGCGGTCTTTATCTTGGAGGAGCTCCTCAGCCCCATAATTACCCCGTTCATCCTCATCTTCTCCCTAAGGAACAAGTCTCTAGAAATCATCGACTTCTTCCGTAACTTCACAGTAGACGTTGCAGGAGTAGGTGACATATGCTCATTCGCTCAGATGGACATCAGACGGCATGGCAACCCACAGTGGATGTCCGAGGGTCAGACGGAAGCTTCGGTGTACCAACAGGCTGAAAACGGCAAGACAGAGCTGTCTCTGATGCATTTCACCATCAAAAACCCTCACTGGCAGCCGCCGCAGGAGAGCTCTGTGTTCATCAGTCACCTGAAGGAGAAGGTTCAACAGGATGCACAGACAGGACCATCTCCTCAGCTGCTGCTGTCTGAAGCACCTCTTTGTACCTCACTACTGTCTAATGAGTCTGCCACTGGTCCTGATAACCTGTTAGCCAGCGTGTTGGCTCACCCCGTACTGACTGCATCCGGACTGCCTGGATGGAATCATCGTTTTATCCCACAGAACAGCGCAGCCTCAGCAGCCGCCAGCGTTCTGGCGTCCCTGTCTTCATCCCAGCAGCCCCATGCTGGGCGTTCACGTTCACACACTCTCCTACCCTCCAGACAGCATCAAGATGGCCCTATGTACTACAGTGAGCACACTGTGGGCGACAGGCCTGCACCCCTGAGTCTTCTCTTTACTGTTGCACATGAAACTGGTGTTGAGCGGGTAGAATTCAATGAAGCTGTCAGCTGAGGACATCATGTCCGCAAGTGACTCCAAGATGCTCAGCCAGTCCAAATCAGCCCTTGCATCAGAGTTTGCATCTGCTGAGATGAGCCTGCATGCTATATACATGCACGAG +>XM_028933362.1 PREDICTED: Prosopis alba uncharacterized LOC114745209 (LOC114745209), transcript variant X1, mRNA +ATCAACGGCCAAGTTCAGGACCTCAATTTCAATTCTCCTCCCACCAATTCCCACTAATTGAAGCCCAACTAAGGCCAATATGGGCGCGGCGGCCGGCGTCGGAGGCTACCCTGTCGGACTGGACGAGTCGTACCGGCCACTTCCGGGGCTTTACTTCGCCTTCTTGTCCATCTGGCTTCTCTCTGCTTGCTCTTGGACTCTTAATACCTACAAAAAGCGCCAGTTTCAGTCAAATAATTTGCAGTGGGCACTAACCTCAGTTCCCTTTATAAAAGTATTGCAGCTCCTGCTGTCCTTTCTCTTCTGGTATTCATGCTTCTATTTTCAGGCATGTTCCTTGTGGATGTCATTTGGGGTGTATGTAACTGGGGTGCTCTTTCAGACTGCTGCCTTTGTCTCCTTCTTGCTCATTGCTCATGGCTACTGTATCATGTGTGAGCATCTTTCTTTAAGTGAACGCCGTACAACTGCTGCACTTGGATGTGTCTTTTACTTAACGCTAGTGGGTTACAAAGCTTGCGTACCATACTTCACGGTTCTTCTGCTACTGAATTATTTCATTTCATTCTATGTTATTTTCCGGCATATATCACAAAACCTATTGTTGTTGCGGGAACAACTGAGTATTGTTGAAAATGAAGATGTTCGGACAATGCATGATGCTCTGTATACGAAGTACATGATGTTCAAGAAATTCCAGGTTGCAATGCAGATAGTAGCTATGGCAGAAACTATGATATACATGAACATGGATGACTCTTCAGAGAATTACTGCCTTCGGTTACTAGTCAGAGAATGGGCACAATTCTGCATTTTTTCATACATTGGGTGGACTTTCAGGTCACAGGACTTGGCGCCACGCTTCTCTGTTATGCCTGCCACCAAGTGTAAAGGCGATACTTTGGTGCCTCCCATCTACAGTATTGAAATGGATGCCGCTACTTTTAAAGATTTCAGTAGTCATGAATGGCACATTGGGGTGCCAACTTCTGCTTGCCGTGATGAAAACTCAGAAGGTGCAGTTCTAGTGATCATTGAACATCCCCACTCACAGAGGCTAAGAACGCCTGATACTTCCTCTTCTCCTATTGTGTCAAATCTCATTTCACAGACATCTTCATACCGAATATAATCAATCAACATTAGCTCTACCATCTAGTCATCTATTGGTTGCCCATGCCTTTTCTCCTGCAATCTGGCATGGGCATGCCAGTACACTCACTGCTTCCGGGTTTAGAAGGTAATTTGAACGTTTCAAGCTGAGAGGAAACAAGAAGAGTAGAAGTATATATTGGGTATAGTCTCCCCTCTTTTTCTTTTTCTTACCAACTCTTTCTTTCTTTGTTTCTTTCCTTTTTTTTTTGCCCTCTTCTTTTTTAAATACTTTACAAACTTTTGCTTTAGAAAATGCCATGAGTTAGTCATGAGCTGAGGGTAGAATAATGAGTGTTATCTTGTTTAGAGGCAACCACAAATATGTATTCTGTACACCATCGAAGCAAATGGTAACTGTATATTGTTCTTCCTTGTACTGTTGTTCTCTCATTGATTATTTCCGACTT +>XM_003035727.3 Schizophyllum commune H4-8 uncharacterized protein (SCHCODRAFT_02607625), mRNA +ACCACCATGAGCTCCAGCGACACCCAAGAGCGACGCTGCTGTGCGATCTGCTCCTATCCTGCGCCCAGCCAATGCTCTGGCTGCGGACAGGCGTTTTACTGCTCGAAAGAGCATCAGACACTGGCGTGGTCTAAACACAAGCGTCTATGCAAGATCTATCAGCGCCAGGCTCGAGGGGAGCCCGTCCCTTCCCCAGATTCCTACTGCGGTCTGTGCGGGAAGGAGAACGGGCCGCTCCGTCGGACAGAATGCTGCAACAGAACTATCTGCGACGACTACGGGAACTACACGATGTTCTCGTTCAGCGCCAACAGCTGCTCCCGAAACCATGATCGATATACGCGCTGCTGCTACCATTTCAACGAAGGTCACCCCGGCAGCGACCCTCTGCAGTGCACTAAGTGCTCTACTAGCCACGACGCGGAGAAGGAAGCGTGGTACATGACGAACAATTACAACTTCCAGGAGGACATACTACGGGCCAATCCGGCATCCTTCGCACCAAAGCACTGCACCGGGTGCGGCAGGCAGGTCAAGCAGAATGCCGAAGCCGTTTCGTATGGGCCAAGTGGTCTGCAGTGTGGCCGATGCACGGAGAGGATGGCTCCTTCTGTGCTGCCTCAAGATACTTACCAGTTTGACTCTTGAAAGGTAGCGACGTACGCGCCAATGTAATACCCTGATCTATGTTTGTGACCAAGAGGTTCATATCATCAGAGTCGACGCAACGAAGTGCGCTCGTTGTAAGTAATCATTTCAAGAATGTTGCAGCGCATACTGTATATTCGCGAGCGCGGGAACAGGTAGAGTTCATGAAAATCCTATCTCAAGTACTGGAAACATGTACTACGGCGCTGGATCTCCTTGTCGTCATCACAGTCCGATGTACTTATGTGTGTAATGGGCCCTTTCCCTTCAC +>XM_019346602.2 PREDICTED: Oreochromis niloticus filamin-C (LOC100698591), transcript variant X4, mRNA +CTTTTTAATCGACTCAACCCACTAGAATCATCACTGTGGACATTTTTTGTGTATAAAGACTATTTATATGTGTTTCTGTACAGCCAGGCTGATGTTCAACACAGCTGGGATAAAACCAGCAGCTCTTATAAAGCTCTAACTGCACACATCTGTATGTGATTATTGCAGAGCTGATCTTGGGCTTCACTCTGGGTCAAGTTCAGCTTGTTTCACGTAGAAGCAGACCGTGCTCAGCAGGGGGCGCTGCTGTTTACGTCAGTAAATCTCTTCAGTTTGTTTTATTCTTCAAAAAACTTGTATTAAACGCAGCATGAAATTTTTCTTCCTCTCTCGCTTGCTCCAGTTTGCCGCGCCTCCATTTGCCTCCATTTGGCAGCCAATGGAATTGCAGGAAGCAGCAGCACCTCATTCAGTTAACTGTAAACACCCAACCTCCATTGTAGTTACCATTAATTGTCATTAATCATTATCACAGAGTCTATTGTATTTTCAGATCTGATATGTATTTCCAAACTGAAGTAAACTTCGATGTTGTTTATTTCTGCTTTGTTATTTAAATGTCACGCAGTGATTTGATTGGCTGCCTGATGGTGATGTCATGTCCCTCCTCAGGGTGTCTCTCCAGGTTTGAGGACTAAAAATACCCGGAGGTGTCAGAGCGGCTGTGGAGCCCCGGGTCCGGCTGTCGGGGTGGGGTAGGTGGGGGTGTCCTGGTTGGGGTATCCAGCGTGTCTCCACCCCCTGCTCCGCGCCCGACCAATGATCTGCGGTCTCGGTGTCCTGCGGCTCGGAGGATGCCCGGGTCGCAGTAGTATATGGTCATGGCAGGGGCATTCCTGGAAGTCCTGCGCAGTGACGCCGAGCCTTTAAACCTCGCTTCACGCTCCCGCAGCTGCACAGCCCCACTCTGTCCACGCCGCCGCCCGTGCGTGACCACAGCCAAGCCAGCCGGAGGACAAAAGCAGACTATTCTTCACTCTTCCTCCTGAGCCTCCTCTTTCTCTGAGAGTGTGAGTCCGCAGGAGTGCCCGCGGGTCTGCATGCGCGCCTCTTTACGCACAGCTCCGTGAAGCTCCCTCCCCGCGCGCTGGGCACTGCCCCTCCGCTTCCACTGCCCCGTTTCTCTTTTTTTTCTGCCTTTCCTTCTCTTCCCACTGCGCTCGGTGCTATAAAAGGCATGTCCATGATGAGCAACAACAGCTACTTGGAGCCCCAGCAGTTCTACCAGAGCACCGCGGACATCGGCGAGGAGGAGGAGGAGGAGGAGATGCCGGCCACCGAGAAGGACCTGGCCGAGGACGCCCCGTGGAAGAAGATCCAGCAGAACACCTTCACCAGGTGGTGCAACGAGCACCTGAAGGTGATCAACAAACGCATCAACGACCTGCAGAAGGACCTGAGCGATGGGCTAAAGTTAATAGGGCTGCTGGAGGTGCTGAGCCAGAAAAAGATGTACCGGAAGTACCACAGCAGACCCAACTTCAGGCAGATGAAGCTGGAGAACGTTTCCGTGGCGCTGGAGTTCCTGGAAAGGGAGCACATCAAGCTGGTCTCCATCGACTCCAAAGCCATCGTGGATGGGAATCTGAAGCTGATCCTGGGTCTGATCTGGACCCTGATCCTCCACTACTCCATCTCCATGCCCATGTGGGAGGATGAGGATGACGAAGACGCCAAGAAACTGACTCCTAAACAGCGTCTGCTGGGCTGGATCCAGAACAAGGTGCCCCAGCTCCCCATCACTAACTTTCACCGAGACTGGAGGGACGGCAAGGCGCTGGGAGCTCTGGTGGACAACTGTGCCCCCGGTCTGTGTCCCGACTGGGAAACATGGGATCCCAGCCAGCCGGTGGAGAACGCCCGGGAAGCCATGCAACAGGCTGACGATTGGCTGGGAGTGCCACAGGTGATTGCTCCTGAGGAGATCGTCGATCCTAACGTGGATGAGCACTCTGTCATGACCTACCTGTCTCAGTTCCCTAAAGCCAAACTGAAGCCCGGTGCCCCCTTGAGGGCCAAATCGCTACACCCCAAGAGGGCTAAGGCCTACGGACCAGGTATCGAGCCTCGAGGTAACATGGTTCTGAAACCAGCAGAGTTCCTGGTGGAGACAGTGGAGGCTGGACTGGGAGAAGTTCTAGTTTATGTGGAGGATCCAGAGGGACACACAGAAGAGGCCCGAGTCATCCCCAACAATGACAAGAACCGAACCTACTCTGTGGTCTACCTGCCCAAAGTGGAGGGGCTTCATAAAGTAAAGGTGTTGTTTGCTGGTCAGGACATCGACAGAAGTCCCTTCATTGTAAATGTTTCAAAAGCCATGGGCGACCCAACCAGAGTCCAGGCCCGCGGGCTGGGACTGCAGCCAATGGGAAATGTGGCCAACAAACCTACATACTTTGATATTTACACTGCAGGAGCGGGTGCTGGAGATGTGGGCGTCATCATTGTGGACTCAAATGGCCGCAGGGATACAGTGGAGATTGTCCTGGAGAACAGAGGCGACAGTGTATTTCGGTGCACCTATGTCCCTGTCCTGGAGGGGCCTCACGTCGTCTGTGTGACTTTTGCTGGGCAGCAGATTCCCAGGAGTCCTTTCACTGTCCACATCTCCGAAGCCTGTAACCCAAACGCCTGCAGAGCATCTGGCAGAGGTTTGCAGCCGAAGGGTCTGAGAGTGAAAGAAGTGGCAGATTTCAGAGTTTACACCAAAGGAGCCGGCAGCGGGGAGCTCAAAGTCACCGTTAAAGGACCAAAGGGCCTGGAGGAGCCGGTGAAGGTGCTTGAGATGGAAAATGGCCTGTATGAGTGTAATTATTACCCCATCATGGCAGGAAAGTACATCGTAACCGTCACTTGGGGCGGACACAGCATCCCTCGCAGCCCATTTGAGGTTTATGTCAGTGAGGAGGCAGGGCTTCAGAAAGTGAGAGCCTGGGGTCCAGGTCTGGAGACCGGTATGGTCGGGAAGAGTGCTGACTTTGTGGTGGAGGCCATTGGAACTGAAGTGGGAACTCTCGGTTTCTCTATCGAGGGGCCCTCCCAGGCTAAGATTGAGTGTGATGATAAAGGCGATGGATCATGTGATGTTCGATACTGGCCGACTGAACCAGGCGACTACGCCGTCCATGTTGTTTGTGATGACGAGGACATCAAGGACAGTCCCTTCATGGCCCACATTCTCCCTGCTGCCAGTGACGTCTTCCCTGAGAAGGTGAAATGTTACGGTCCAGGTCTGGAGCCTTTGGGCTGCATTGTTAACAAACCTGCTGATTTCACCATTGATACCCGTGGAGCTGGCATCGGAGAGCTGAAGCTCTATGCTCAGGATTCAGATGGTTTCCCCATCGACATCCAGATCACAGATAATGGAGACAGCACCTACTTCTGTGTTTACATTCCCACAAAACCCATCAAACACACCATTATCATCACCTGGGGTGAAGTCAACGTCCCTAACAGCCCGTTCAGGGTGACTATTGGAGAGGGCAGCCATCCAGAGAATGTGAAAGTTTATGGTCCAGGTGTGGAGAAGACAGGACTGAAGGCCAACGAGCCGACTTACTTCACTGTGGACTGCAGTGAAGCCGGACAGGGTGATGTCAGCATTGGCATCAAGTGCGCTCCAGGTGTAGTTGGACCTGCCGAGGCCGACATCGACTTTGACATCATCAAGAACGACAATGACACATTCACAGTGAAGTACATGCCTCCAGGTCCCGGACAGTACACCATCATGGTGCTGTTCGCTGATCAGGAAATCCCTATTAGCCCCTTCAGAATAAAGGTGGATCCTTCCCATGATGCAGCCAAAGTCAGGGCAGAGGGACCTGGACTCAACAGGACAGGGGTGGAGGTGGGTAAGCCCACCCACTTCACCATTTATACAAAGGGAGCTGGTAAAGCCAAACCCGAGGTCCACTTCACCGGAGCAGCTAAAGGTGATGCCGTCCGAGACTTTGAGATCATCGACAACCATGACTACTCATACACTGTCCGCTACACGGCGGTGCAGCAGGGGAGCATGTCCATCATTGTGTGTCACGGAGGAGACCCCATCCCAAAAAGCCCATTCACCATCGTTGTGGCCCCCCCACTGGACCTCAACAAGGTCAAAGTTCAGGGACTGAACAACAAAGTAGACGTTGGGAAGGATCAGGAGTTCTCCGTCTGTACTCGAGGTGCTGGAGGTCAGGGCAAACTAGACGTGAAGATCACCTCCCCTTCGCGTCGACCAATCCCCTGCAAGGTGGAGTCGGGGACAGCCAATGAGGTTCATACAGTGAAGTACATTCCTCCCGAGGAAGGACCATACAGAGTGGACATCAGCTACGACGGGAATCCTGTCCCAGGGAGTCCATTCACTATGGAGGGTATCATGCCCCCTGACCCTTCAAAGGTGCGAGCCTATGGTCCAGGCCTTCAGGGTGGTGTGGTAGGCAAACCAGCCCCCTTTGCCATTGACACAAAGGGTGCTGGTACTGGTGGTCTGGGTCTGACAGTGGAGGGGCCGTGTGAGGCCAAGATTGAATGCCAGGACAATGGTGATGGATCCTGCTCTGTGTCCTACCTGCCGACTGAGCCTGGTGAATACGCCATCAACATCCTGTTTGCAGACCAGCACATCCCCGGTTCTCCCTTCAAGGCTGTGGTCCAGTCAGTGTTTGACCCCAGCAAGGTGACAGCCAGCGGCCCCGGGCTGGAGCGAGGCAAGGTCAACGAGGCTGGAACCTTCACGGTGGACTGCTCCAAAGCCGGGGAGGATGAGCTCACCATCGAGATCATCTCTGACTCTGGGGCCAAAGCTGAAGTTCACATTCAGAACAACAGTGATGGGACCTACTCCATCACATATATCCCCCAGTGCCACGGGATGTACACCATCACCATTAAATATGGAGAACACATGGTGCCAAAGTTCCCCATTCGCTTGCAGGTGGACCCAGCTGTTGACACCAGCGGGGTAAAGATCTATGGACCGGGAGTGGAACCCAGAGGCGTCCTGAGGGAAGTAACCACTCATTTCATCGTGGACGCTCGAGCTCACTACAAGAGCGGTGGCAGCCATATCAAAACCTCGATCTCAAATCCGTCGGGCACCAACACAGACGCCTACATCACCGACAAGGGAGATGGGACATACAAAGTCGAGTACACACCCTACGAGGACGGTTTGCATCTGATTGAAGTTCTTTTGGATGACGTCTCGGTGCCGAAGAGTCCGTTCAGGGTGTCCGTGAGCGAGGGTTGTGATCCCAGTCGAGTCCGAGCCTACGGTCCAGGTCTGGAGGAAGGACTGGTGAACAAACCAAACCGATTCACTGTTGAGACCAGAGGTGCTGGCACTGGGGGACTTGGCCTGGCCATTGAGGGTCCATCAGAGGCAAAAATGTCATGTAAGGACAACAAAGATGGCAGCTGCAGTGTGGAGTATATCCCCTTCACGCCTGGAGAATATGATGTCAATATCACCTTTGGAGGCTTACCGATCCCAGGGAGCCCGTTCCGGGTCCCAGTGCGAGAGCTGGTTGATCCCAGTATGGTGAGGTGTTCAGGTCCTGGCCTTGGAAGTGGAGTCCGGGCTCATGTTCCTCAGACTTTTACTGTAGACAGCAGCAAGGCAGGGGTGGCTCCCCTGGCAGTTCAGCTATATGGACCAACAGGTGTAGCTGAGCCCCTCAACATCACAGATAATGGTGATGGCACTCACACGGTCAACTATACTCCTGCAAACGATGGCCCATATACAGTGTGCGTGAAGTATGCCGACCAGGAAGTGCCCCGGAGTCCTTTTAAAATCAAGACATTACCGGCTCATGATGCTAGCAAAGTTCGAGCCAGCGGTCCCGGACTGAATGCATCCGGGGTTCCAGCCAGCCTGCCAGTGGAGTTCACCATTGATGCCAGAGATGCTGGAGAAGGACTGCTCACCGTCCAGATTCTGGGTCCGGACGGCTGCAGTCGCGAGGCTTCATTGTTTGTGGAAGACTGGGGCAGGAGGGTGTGGGAGACTCACATAGTAAAGAAAACCATCCCCTTCAGTATTCTTAGGAGAGGCTCTGATCCAGAGGGAAAACCCAAGAAGGCGACCATTCGAGACAACAGAGATGGGACGTACACAGTGTCCTACGTGCCGGACATGACGGGGCGCTACACCATCACCATCAAATACGGAGGAGATGAGATCCCGTACTCACCTTACCGGATCCACGCCCTGCCCACCGGAGACGCCAGCAAGTGTCTGGTCACAGTGTCAATCGGAGGACACGGACTCGGTTCAGGAATTGGACCAACCATCCAGATCGGAGAGGAAACTGTCATCACCGTGGATGCAAAGGCTGCAGGGAAAGGTAAAGTCACCTGTAAGGTGTCAACGCCGGACGGAGCGGAGCTGGATGTGGATGTAGTGGAGAACGCAGATGGGACGTTCGATATTTATTACACGGCTCCAGAGCCAGGGAAGTACGTCATCACCATCCGCTTCGGAGGGGAACACATTCCCAACAGCCCCTTCCATGTCGTGGCAAGTGATACCATCCCAATAATAGAGGAACCATGTGACAAGCTTCAGTTACAGCAGCCCTACTCTCCCTATGCGGCCTTCTCCCCTCAATGGGCCACCGATGATCCCATCAGCCCTGTGGACGGGCTGGAGCCGATGCTGCGTCCCTTCAGTCTGGTCATTCCCTTTACGGTGCAGAAAGGAGAGATCACAGGTGAAGTCCGCATGCCTTCCGGCCGAACAGCCCAACCTAACATCACCGACAACAAGGACGGGACAGTTACTGTGAAGTACTCGCCAACTGAACGAGGCCTCCATGAGATGGACATCAAATACGATGGCAACCACATCCCAGGAAGTCCACTCCAGTTCTATGTTGATGCTATTAACAGTGGTCATGTGACAGCATACGGTCCCGGCCTGAGCCACGGCACCATGAACCGACCAGCCACTTTCACTATAGTTACAAAAGATGCTGGAGAAGGAGGTTTGTCTCTGGCGGTTGAAGGTCCATCCAAAGCTGAGATCAGCTGTAAAGACAACAAGGACGGGACGTGCACAGTGTCCTACCTGCCCACGGCACCTGGAGACTACAACATCATCGTCAAGTTTGATGACAAACACATCCCTGGCAGCCCCTTTACCGCCAAGATTACCGGTGACGACTCTATGAGAACATCCCAGCTTAACGTTGGCACGGCAACAGATGTTTCCTTAAAGATTATGGAGACAGACCTGAGCAGCCTGACCGCGACGATCAGAGCTCCGTCAGGAAACGAGGAGCCCTGCCTGCTGAAGAGGCTGCCCAACAGACATATCGGAATATCCTTCACACCAAAGGAAGTTGGTGAACACGTGGTCAGCGTGAAGAAGAACGGGAAGCATGTGACCAATAGTCCGTTTAAGATCATGGTGGGTCAGTCGGAGATTGGAGATGCCAGCAAGGTGAAGGTTTACGGTCAGGGGCTGGTGGAGGGACACACGTTCGAGGTGGCCGAGTTCATTGTGGACACGAGGAATGCAGGTTATGGAGGTCTGGGTCTGTCCATCGAGGGTCCCAGTAAGGTGGACATCAACTGTGAGGACGTGGAGGACGGGACATGTAAAGTCACCTACTGTCCCACAGAACCAGGAAACTACATCATCAACATCAAGTTCGCCGACCAGCATGTGCCAGGAAGTCCGTTCACGGTGAAGGTGTTTGGTGAAGGTCGGATGAAAGAGAGCATCACCCGGAAACGTCAGGCACCCTCCATTGCCACCGTGGGCAGCACGTGTGACCTCAACCTCAAAATACCAGGAAACTGGTTTCAGATGGTTTCAGCTCAGGAGCGTTTGACCCGGACATTCACCCGCAGCAGCCACACCTACACCCGGACCGAGCGGACAGAGATCAGCAAAACCCGAGCCGGAGAGACCAAGAGGGAGGTGCGGGTGGAGGAGAGCACGCAGGTCGGAGGAGATCCCTTTAGAGACGTATTCGGAGATTTTCTAGGGCGAGAGAGTCTTAGCGGCTTCGGCGGGATGCCGACTGGCAGCCGACAGCCGCTGCAGAACGGTGAGGCAGCTAACCAGGAGATGACGGCTCAAGTGACGAGTCCTGGAGGAAAGACAGAGGACGCAGAGATCATTAAAGGAGAGGACAGCACCTACAGCGTCCGCTTCATCCCTCAGGAGATGGGACCTCACACTGTCAACGTCAAATACCGGGGCCAGCACGTCCCTGGGAGCCCCTTCCAGTTCACTGTGGGGCCCCTGGGAGAGGGAGGGGCCCACAAGGTCAGAGCAGGAGGCACTGGACTGGACCGCGGAGTGGCAGGAATCCCAGCGGAGTTCAGTATCTGGACCAGAGAGGCTGGTGCTGGAGGTCTCTCAATTGCTGTAGAAGGACCCAGCAAGGCTGAGATAACATTTGAAGACAGGAAAGACGGATCCTGTGGAGTCACCTACGTAGTGCAGGAACCTGGTGATTATGAGGTCTCCATTAAATTCAATGATGAACATATCCCAGACTCCCCCTTTACCGTCCCCATCGCCTCACTGTCAGACGACGCTCGCCGCCTCACCATCACCAGCCTGCAGGAGATGGGTCTGAAGGTGGGTCAGGAGGCCTCCTTTGCAGTGCAGCTCAATGGAGCAAGAGGGCTGATTGATGCCAAGATCCACACGCCATCAGGAGCCACAGAAGAGTGTTACATCACTGAGCTGGACAGTGATCAGCATGCTATCAGGTTCATCCCAAAGGAGAATGGAGTTCATTCTATAGATGTTCGTTTTAACGGCAGCCATGTGCCCGGCAGTCCCTTCAAGATCCGAGTAGGAGAACCGGGTCAGGTCGGAGATCCAGGAATGGTGTCTGCATTTGGACCAGGTCTCGAGGGAGGAACCACAGGCGTGGCATCAGAGTTTATTGTCAATACTTGTAACGCCGGCTCAGGAGCACTGTCCGTGACAATTGATGGCCCATCAAAGGTTAAGATGGACTGTCAGGAGTCTCCTGAGGGGTATAAGGTCTCCTACACACCTATGGCTCCTGGAAGCTACCTGATCTCCATCAAGTATGGAGGACCCCAGCACATTGTAGGCAGCCCCTTCAAGGCCAAAGTATCAGGACCTCGTCTGTCAGGTGGCCACAGTTTGCATGAGACGTCGTCTGTTCTCGTGGAGACCGTCAGCAAGTCGGTAGCAATGGGCAGCCCCTTTGCCTCTTTGCCTAAATTTTCCTCAGATGCCAGTAAAGTCATCTCCAGAGGCGCTGGCCTTTCGAAGGCCTTCATTGGTCAGAAGAACACCTTCACAGTCGACTGCAGTAAAGCAGGCACAAACATGTTGATGGTCGGTGTCCACGGGCCGAAGACACCCTGCGAGGAAGTGTACGTCAAACACATGGGCAACAGGATGTACAATGTCACGTATACTGTTAAAGAGCAGGGCAGCTACATCCTCATTGTGAAGTGGGGAGATGAGAACGTCCCTGGCAGTCCGTTCCATGTCACCGTCCCTTAAAACTGAACTCTTCACTGTCTCCAGCCTCTTCAACATCTGCAATGCACTGACGATTTTTCACTTACTGTTTTCTGCTAAATACGAACATCAGAGCACAGCTTCAGTAACCACAGGTTGTTCGTCGAGGCTTTTCTTCTGTCAGTTGCTCTTTTAAACATCGTCCCATTTAACTTCAAGAAAAGAGAATTTAAAGAGTTCAAACTGACAACAGCCCACACGCCTCAGAATTTGACCTGTTTTCATGCGTCCTTTATTTGAGAAGATTTGTTTCCTGCCAACATGTGGATAACTATGCAGGTGTAAACATCTGGTTCATAGCAGCTAAAAACAAACGTGCAGGATGCAAACATTAAGACTGGATTTAAATGTGATCTGCAATATCTGGACTAGTTTATTTTCTTGATGACAGGTTTTCTGTTAGTATTTCTGAAGATATGCAGCACTCAAAGAGGTCCAGAGGTGTCTGAGAAGGTCACCATGAAGGGGAGACTGCATACATTTCCATCTTTTTTGTGTGTGTCCAGTTCCCTGAAATTTTTCATCACATCTCATATTGTGTACAGTATGTGCATTAATTCACAAACACAATCTCATATTTAGTGAAAAATTCAAGCCGCAAGTTGCTCTTTTGCTCCCACAAACCAAACAATTCAGACAACTTAGCTTAAACAGAAGAAACAGTTTTATCTTCAGTGAGGAAAAAAGTGCTTCAGAGTCCCTTGTTTCTTATCTCCATCTGTAAAAACCGGAAACGATAAACTTTCTCTAAGAATCCTTATTTCTTACTGATGCTCATCCAATAAACACTAACACTTCTGACCCTCGGACTGTCTGCACTCCAGCCGTGGTGACTATCATCCAAAAATCTGATTGGTCAGTAGATGGTGATCTCTTATCTGCAACATAACCTGGAGCAGCTTTGATCTGTAGCATCAGTTACCATGGTGACATACCACCTTCATAACCCTGAAAAGACAGAGTTAAACCCGAAGTTAGCTTGATAACTACAGATCCCTAAAAGCATTCATGTTTTCTCATGGATGAGTTAAATGTCTTTCAAAGATATTAGTGTCACATAGTTGGAATAAATCTCTGAGTGAAAGATGGTGTTTAGTTAGCCTCAGCAGGTCTCCCTTTCCTCAGGATTCAGTTTCAGGTGAGCGAGAGACTATCTTCCCTCCAGGTTGAATCAGATGCACTCGGCAGGTCTCTGTATGTCAGGGTTTGTCCCAATTGCTCATGTGGTGTGGGCCCAGCTGTGGGATGTGGAATGATCAAGATGAGCTGTGCTGTGAGATTAACAAACTTTTCTGTTTTTATTTATTCTGCAGCATTTTTCTCTCCTTTGATTTTCTTTGACAGAAAATGGTCTTACTGTTGAGAGAAGCAGGTGATAATGGATTTTTTTTTTTTTACCACAGGAAGGAAGTGCAGTGGAGTTTCCTTTGTGAATGTTGGAAAAACAGCAGCAGATATTAGAGTGACATTTTATAGTGATTTTATATGTATGAGTGAAGCAAAGTTTAAGTGTTTGATATGTTAACCTTCTGTATTGCAACACTGTGCAGGCATAATAAAAGTTTATCTGTGAAATCTCCA +>XM_002992450.2 PREDICTED: Selaginella moellendorffii UV-stimulated scaffold protein A homolog (LOC9662154), mRNA +ATGGCGGGGCGATTGAGCGATCTCATCCTCGCGGCCACGAATTCCCCGGGCAAGGAGCTGGAGGAGCCGCTGCTCAAGGCGATCAAGGCGCTGGTGCGCGCCTCAGATGACAATGTCAAGGCGGCGGCAGACCTTCTCATGGACCGGCTAGGGAAGAATCACTCCCAGGTCAGGCTTCTCGCTCTGCTGCTCATCGATCAGCTCTTTACGCGATCGAAGCTGTTTCGCGGCCAGATCGTGGCGGTGCTCGAGAAATTTATGGTTCTCTGCCTAGGGCACCGCACCGACCAGCCGCTCCCAGCTCCCGCGGATCGAGCGGCGCTGCTCAAGGCTAAGGCGCTGGAAATCGTGGAGAGATGGAACGAGACGTTTGGGCCTCACTACAAGGAGCTCCAGCTTGGCTACGAATACTTGAAGTTCACGCTACGTCTCGACTTTCCGGGTGTTCGAGAGGCCGCGAATCGAGCCGAGGAAGAAAAGAATGCCAGGGACAGGCGCACGCAAGATCTTCTCCGGTGCCGGCTGCTCCAACTCACGGAGAATTTCCCTGGCTTGAGGAGAGATCTCGAGTCGACGATGAGTCAGCTGGAAGAATGCTTTGCCATCTTGAGCGAGGAGGAGGAGGTGGTCCAGGACGAGGATGGATTTTTGGAGGTGGACAAAGATGAAGAGGACAGTAATGAGGTGTTTGGGATCCAAAGCTTGCGGTCCATGCGTGATCAAGAGGAATTGATGGTCACGGAATCTCGCGACAACGGGGCCATTTTCGACATGGCCCGGGATTTGCTCAAGTTGGTGACAACAAGACATCTTCCAGCAGCGCAGGAATGGCTGTCGGTTTTGATGCGAGTCGACCCGGAAGATCGACAAAGCCGGGATGCTCTCATGAAGGAGGTGATCGACTTGAGGAACCGCCTGGTGGTCTTAAAGGATAAGTGTCAGGAGCTCGGGATTGTCGAGGTGGCCAAATCCAAAACCACCACTGACGACGATGTGGAATGGGAAGAAGAAGAGATATTTGACAGGAGCAAGCTGGATGGTCCACGACACAAACTAGAGCAAGAACGAGAACGAGAACGAGAACGGGAACAAGGTGGCGAAATAAAAAAGAGTTCCTCACCTCAGGCTACAGCAACAGGAACGGCTTCGTCATCTAACGCAACCATGTCCGAGCTTAAGCAGAAGCTGTTTGAGGAGGCTCCCGTGCTGCCGTGGGGATCGTTTCTCGACGCCTGGGGCTCCGACGCTGCGGTTCCTGCAAACAACAGGGGACTGGTTCTCGACAACCACTGGGGAAGAGTGGATCCGGACGCTCTCATCTCTACCGAGAAGATGGCGGAGATGCAAGTGAGAGCATCGTACTACCAGCCTTTAAAGTCGGAGTTACGTCCTTGCTCGGCACCGCTGAGGAATGGAGGCCTTTGCCAGAGACGAGATCTCCGAAAGTGCCCGCTTCATGGCACAATAATTCCGCGGGACGATAGAGGCAATCCTCTCGAGGAGAAAAGGGCTGTCGAAGCCAAGGGGAAGGAGAAGGCGGCGGTCAGTCCGGCAGCTTTGGCTGCTCAAGCCGTAAGGAACGTGAGAGGCAGGGATGAAGCCAAAAGGAAACAGAATAAACGTTTGCGACAGTCTCAAGCCAGGACAGACAGACAACACAACGAGGCCGTGCTGAGAACTGCCGCGCTTGCTCACGACACGCAGACGATTGAAGCAGGCCTAGAGAGGAAAAGCCTGGATGAAGAAACGCCAAAGAAACGAAAAGGTGGTCTCAGCGCTATGCTCCGTAAGAAGGAGACTCCAAAAGACAGAATTGCCAGGAGACTGCTGCGCGGCCGGGCAGTGGACGCTATGGTCGGCAGCATAGCTCGAGACGAGGATGCCAAGTACAGGGAGTCTTTCCCAAATCAGTGGTGATTCCACTCGGAAGCTGGCGCCGCTGATTCCCGCTTTAAGCAGTCCTTTTGCTGGCAGTCTGGGACGAGCTTTACAACTGGACATCATCAAAGCAAAGCCGAGCCGAGGAAAAGAAAAGAACGAGTCATCCGCAGCTCGAAAAGAGAGTTAAATTGTTCGAAGGAAGAAGACGAAAATCGAAGCAGCCTGTCTTTATAGA +>MF497935.1 Uncultured bacterium clone Ant5 16S ribosomal RNA gene, partial sequence +AGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCAGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAG +>XM_053485329.1 PREDICTED: Clarias gariepinus hook microtubule-tethering protein 3 (LOC128512176), transcript variant X3, mRNA +GCTGTAGCTGTGGCTTCGCCGGTGGAGCGGGTTGCGTGTGTCTCCACGTATTTGTTCATCAGAAGACGGATTTTATTGTTTTATATTGAAAGGTGCGATAAGGGAACATAACCGGAACGTGTTAAAACGTGTTTAAATTACTCGGGGATATATTGTGATATTTGTTTCGTTTGATCAAATCGTTCCTAGTGATTTTTTAGAGGTGCTCTCTCTGTTTGTTTGTGTGTGTGTGTGTGTGTGTGTGTGTGTCTGGGTAAAGTCACGGGCGGATTAAAAGCGAGCTGCGATGAGCACTTTGGACGCAGTGGATCGGGTCGAGCTGTGTGAGAGTCTCCTAACATGGATCCAGACGTTTGGCGTGGAGGCGCCGTGCAAAACCGTGGAGGACCTGACGAGTGGCGTGGTCATGGCGCAGGTTCTGCAGAAAATAGACGTGGTGTACTTCAGCGACAGCTGGCTGAGCCGTATCAAGCCCGAAGTGGGGGATAACTGGAGGTTAAAGATCAGTAACCTGAAGAAAATATTAAAAGGCATCCTGGATTACAACCATGAGATCCTGGGGCAGCAGATTAACGACTTCACTCTGCCCGATGTGAATCTGATCGGGGAGCACGCAGACGCAGCAGAGCTCGGCCGCATGCTGCAGCTCATCCTCGGCTGCGCGGTCAACTGCGAACAGAAACAAGAGTACATCCAGACCATCATGATGATGGAGGAGTCCGTGCAGCACGTCGTCATGACGGCCATTCAGGAGCTCATGAGCAAAGAGACGCCAGTTTCAGCCGGGAGCGACTCCTACGCCGACCTGGACAGACAGCTGAAGAAGACGGCGGAGGACCTGAACGATGCTCTGGCTTCCAAAGAGGAGATCGCTCAGCGCTGCCACGAGCTGGACATGCAGGTGGCGGCCCTGCAGGAGGAGAAGAGCAGCCTGCTTGCCGAGAACCAGGTCCTGATGGAGCGCCTTAACCAGTCCGACTCCATCGAGGACCTGAACAGCCCGGCAGGAAGGAGGCACCTCCAGCTCCAGGCACAGCTGGAGCAGCTGCAGGAGGAGACGTTCAGGCTCGAAGCGGCCAAAGACGACTACCGCATCCGCTGTGAGGAGCTGGAGAAGGAGCTCCTAGAGGTCAAAGGTCAGAACGAGGAGCTAACGTCTCTGGCTGACGAAGCCCAGTCACTCAAAGACGAAATGGACGTCCTGAGACACTCGTCTGATAAGGTGGCGAAATTGGAGGCGCAGGTGGAGTCGTATAAGAAGAAGCTGGAGGATCTGGGGGATCTGCGGCGGCAGGTGAAGCTGCTGGAGGAGAAGAACACCAGCTACATGCAGAACACCGTCAGCCTGGAGGAGGAGCTACGCAAAGCTAACACGGCCCGCGCACAGCTGGAGACCTACAAGAGACAGGTGGTCGAGCTCCAGAACCGTTTGTCCGAGGAATCCAAGAAGGCCGACAAGCTGGAGTTTGAGAGCAAGCGACTGAAGGAGAAGGTGGATTCACTCCAGAAGGAGAAAGACCGGATGAGGACGGAGCGCGACTCTCTGAAGGAGACGATCGAGGAGCTGCGGTGTGTTCAGGCCCAGGAGGGTCAGCTCACCTCAGGTCTGGTTCCACTGGGCAGCAGCGAGGCTGGTTCACTAGCGGCACAAATTGTGACCCCAGAGATCAGGGAGAGGTTTATTCGACTGCAGCACGAGAACAAGATGCTGAAGCTGAATCAGGAAGGATCTGACAACGAGCAGATCGCACTCCTGAAGAGTCTGCTGGAGGACGCAAACGCCAGGAAGAACGAGCTGGAGTCGGAGAACAGGTTGGCGAATCAGAGGCTCATGGCCGGTCAGAGTCAGGTGGAGGAGCTGCAGAAGAGTTTACAGGAGCAGGACTCGAAAGCAGACGACTCGGTTCTGCTGAAGAGGAAGTGCGAGGAACACTTAGAGAAATTGAGAGACGCGTCCAACGAGCTGCAGAAGAAGAGCGCCATCATCGAGGAACTGGAGCCCAAATATCACGCTGGTACTCAGAGGATTGAGGAACTGGAGGAGGCTCTGAAGAAGAAAGACGACGAGATGAAGCAGATGGAGGAGAGATATAAGAAATATCTGGAGAAAGCAAAGAGTGTCATTCGGACTTTGGACCCGAAACAGAACCAGGGTTCAGCTCCTGAGGTTCAGGCCCTGAAAAACCAGCTACAGGAGAAGGAGAGAATGCTGCACTCTTTAGAGAAAGAGTACGACAAGGCGAAGTCTCAGCGAGACCACGAGGAGAAGCTGATTGTATCCGCCTGGTACAACATGGGCATGGCTCTCCAGAAGAAAGCAGCGGAGGAGCGTTTAGCCAGCACGGGTTCGGGTCAGTCGTTTCTGGCGCGTCAGAGGCAGGCCACCAGCACACGGCGCTCGTATCCGGGCCACGTGCAGCCCGCCACAGCCAGTGATGTAAAGGCATGAGGTCGAGGCGGCGCGGCTGCATGACGGCGCTCCTTGCATGACCGATTTTGCTCTTGAATAACACCTCAACCAACACTAACACCTCTCGCTTTCTTCCGTCCCCCGGTCCCGCCGTTCCGTCTGCATGCATACGCTGCGTGTGTGAACGTCCGCTGTGTCCCAGCATGCAGCAGTCTGTGGGCGGGGCTTGAAGGTTACCGGAGAGTGACGTAATAATGATGATAATAATAAGTGTTGCGCTGTATTAATACGACAGTCTCTTAGGTCAGCATTTTGTTATTAACTCTTGTCTTCTTTTTCATATTTATTATCACTTTTTTGTTTCCTTTTTTATTTGAATGCAGTGTTATTTTAATTTCATGACCCGCGTGAGCAAACGGTGAGCCTCTGCACGGCACGGCTTCACTTTATTTATTAAATGTTTATTTTCCCAGAGCTCACAGCGCCACCGCTTGGCGGAAACCACGCACGAGAATTACGTTACATTACGTTTCTGTTTTTTCTTTCTGACAGGGAACAGTATTAGGAGGTCGAAAAGAACAGAAAAAAAAGAAACAAGGTCAATAAGGAGCTTAGAAGTAAAATATAAAGTATTTAAGTCCTGGGTGTGCGTATCAGAGACCTGGCAACAGGACAGAAACCACACCTCGTACCAGGGCTCTTTGTTTTTGTTTTTTTTCATAAATGATTCTATAATATTCGTTTATTAAACATTTATTAACCATCAGATCTGATTGAACAAAATGTTTTGTTAAAAAAGTTAACTATGCCAGGGTTTAGGCTGCTTTCACAGGGTTTTATTTCCCTCCCAAAGAATTATGGTTTAAAATAAGGTGATTTTTTTTTTTTTTTTATCATTATTTTTTTTTTTTTTATAAAAAGAAAAAAAAAGTCCTTTCAAAAGTATGTTTAAATTAAAATAAATGAATGAATGAATAAATAAATAAATACATATATATTGTTTTTTTGACCAATCTGATTGCAGTTGAGCAACTAAATCACGCACAAATTGTTGGTTTCAAATGAGCTTTATTAATAAAATATAGTGTAGTAATATTTAGAGATTTGTCACATTTTAAATGTATTTTTATTATTATTATTATTATTATTATTTATTTTGAGTAATTAGATGCAAATCAGAGGTCCAGACAAGAAAGAAAAATTACACGAGTGTGGGAAAAAATGCATAAGTGAAAATAATGTGAACTATATGAAGCTTTATGATGCTAAAAATAATGAAAATATATAACTCTTTTTTTTTTTATAATTATTATTATTATTGAGCCAATTAGCGGAAATCTGGGACGTCCCACTTCTTTCTCCCACCAAAAAAAAAAAATACTACAAAAGCAAATAACTTGTTTGTTTTTTTTACAAATAATTACTGCTTATCATGTTCAATCTAAATGAATCTTTCGTCGATTACTAGTTACCATGCGTTTATATAAATTAGCTAGCTGATACTAGCAGAGGTTTATAAAATCGTTGTTATGGTTAACGTAATATGACCAGCCTGAAAAAACAAAACAAAAATGAAAGCAGCCTAAAATATCTAGGCATAAAAACCAGTAAGCTGAACCACAGTTGGCTCGATCACAAACCATCGAGTGCTTTTGCGTTGTTACATTTTACACAAGGACACAGAGAGACGACCGAATGACATCATCAGGTCTCTAGGTCTCTAACATGTGCGTCTGCGATACTAAAATATCGTTTCCGCATCCGCTAAGAGGCGTGTCCTGTTTTATTATTATCTATTTACTTTTTTTTTTTACCTCGGATTGATTGATTGATTGATTGATGACTCTGTGGACTAACACACTAAACCGTGTGCTGTTTATTAGCCCTTAAACTTCAAAGTCTTCTGCTGCTTCTTTTCTTCATCACGTCATGACGTCCATTCTTACGCGCCATTTTGTACTGTTTAACGACTTTTTGTTTGAATCTATATTTAGCTTAAGTACATTTGTAAGGGTGTTTGTAAGTCGAGGAACGCACAACGCGTGGACTAGACAACAGTGTTAGCCTATTTAATATGAAATTTACAAAGAAACGTTCACGATAAGAACCGTCCATTAGGAGAGGACCTGCTCTGATCGGACACCTCAAAAGAAAAAAGAAAAAAAAAGAAAAATGACAATGACATTTTGGTTTTTCGAGTATTATTATGGTTGATGTGTTTTTTATGCATAGAAAGATGTTACGTTTAAGTCAAAGTAGCAAATAATCTTTCCATTTGCCAAGTTTTATATTGCTTGTGTACAGTATGTACAGACGCTCTGTGTAAGGAAGAGAAGGAAATTCCTGCTCATTAGTTTGTATAATTATATATATTACCAAAAAAAGAAATTCATCAAGAAGGTGATTGATTTTAGTTTAATTATGTGTTGCGACTCGACGGGAAAATGTGCTTCCTTTGCTGCAAAACTGTACAGTTGGTAATCAAGTTGTAAATAAAGCTTGTATAAAATTCTGA +>XM_052168617.1 PREDICTED: Apodemus sylvaticus canopy FGF signaling regulator 4 (LOC127673070), mRNA +TTTTAAAGCTTGCTGCCCGCTGCACCTAAATTTAAAGGGCCCGCTGACTTCCAGAAGTTGGTCTGAAGGCAAACGGTGGTTGTATGGGTGGACTGCGTTTTGTCATGGGACCTGTGCGGCTGGAAATACTGCTTTTCATCCTGGCAGCGTACGGTGCTTGGACTGGGGCGACGAAAGAGGAGGAAGATGACACAGAACGTTTGCCCAGCAAATGTGAAGTGTGTAAGCTGCTGAGCATGGAGCTACAGGAAGAGTTGAGTCGAACTGGTCGATCCCGGGAGGTGCTGGAGCTGGGTCAGGTGCTAGACACGGGCAAGAGGAAGAGACACGTGCCTTACAGCCTCTCTGAGACAAGGCTGGAGGAGGCTTTGGAGAATTTGTGTGAGCGGATCCTGGATTACAATGTTCATGCTGAACGCAAGGGCTCACTGAGATACGCCAAGGGTCAAAGTCAGACTATGGCCACCCTGAAAGGCCTGGTACAGAAGGGAGTGAAAGTGGATCTGGGAATCCCTTTGGAGCTCTGGGACGAACCCAGTGTGGAGGTCACGTTCCTCAAGAAGCAGTGTGAGACGATGCTGGAGGAGTTTGAAGATGTTGTAGGAGACTGGTACTTCCACCATCAGGAGCAGCCGCTCCAGCATTTTCTCTGCGAACGTCACGTGCTTCCAGCCTCTGAAACTGCTTGTCTACAGGAAACTTGGACTGGAAAGGAGAAGATCAGTGATGAGCAGGAGGAAGCAGATGAAGAGGAGGAGGAGGAGGAAGAAGAAGAGATAACCAAGACTCCAGGCAGTCCCAAGCATGACCCAGAAGATCTTTGACCCTTACTTTTGAACCCCAAGGATGGGTCATGGAGAGTTGTCTAAAGTCTTCAGCTCTCCCTTCCCCATCCGTAGGCTGTAACTGTCCTTCTCGTATGATCCTGGGGACCCAGAATGGCCACAGGAAAGGAGGAGAAGGGGGGAGAAGCGGAAGCAAGTTTTGCCTTCAGAGATGAGTCACGTGCGGCCACTCAGTGGACCAAGTGTGTGGTGACAGCACTGAAACCTTTCTCTCCCTTTTACTGGCCCTCGCCTGCACCAATTGGTCAGTGGTGTTATGACCTGTGGGAAGGTCACTTTGCTTTTTAAAGGCTCTATTTTAAACCCTTTCAAGAGGTCAGAGAAGAGCTAGAGCTCAGTTGGTAGAGTGCTTGCCTCTTCCGGGCAACGATGGGAGTTGGACCTGATGTGGTGGCACACCCCTGTAATCTGCAGCGCTTGAGAAGTGAAGGCTGGAATATCAGAATACCATCCAGCTACATGGCAGGCAGCTCAGGACCAACCAGAGCTACGTGAGACCCTGTCTCAAAGTAAGAAGCCAAGAAGGGACCCTCAACCAATACGCACTGCGAACACGAGGCTGTGTACCATTAATCTGTCAACAAGAGCAGGACTCTGGGAGCGAGTGCAGTAATACTGGGGTTAGGTGGGGTAGACATGTGGCCTATTTCCTATTTCACAGGTGCCATATTTTCTATATTGCTATTAAACCTTTTATATGTACATCA +>XM_024925133.1 Trichoderma harzianum CBS 226.95 glycoside hydrolase family 78 protein (M431DRAFT_99295), partial mRNA +ATGGGTCATTCGGTGTCTCCAGTCTTGGTTCTTCCACCGACTTTTGAGCAGCATCACAATGGGTTTGGAGTTCAATGTGTGCACCCAAGGCTTTCATGGAGGTTTTCATGCTCGAAAGAGCAAATACGCAATTGGAAACAGACTGCATACGATATCGCAATTTCCTCCAATAGCACAGAGCCTGGCCAAGTCTTTCACGTAGAGAGCGAAGACAACGTTCTAGTACCGTGGCCGAACTCAGAGCCACTCAACTCACGAGCGCGCCGGTTTGTGCGCGTCAGGTGCTATGGCAAATACTCTCTATTCGATGGGCGCGATAATGATTCCGACCATGAGTCCGTGACCGAATGGTCTGCATCGTCTCTTTTGGAAATTGCATTGCTGAGAAACAGCGATTGGAAGGGGAGTATGATCACAGTGTCGGAGCCGTGGCCTCTGGGTCCGGACCTTTCAGCCCGCCCCCTGTGCTTTCACAAGCGGTTTCATCTTTCCCTAAAAGACGGGATGATTGACAGGGGCCGGCTATATGCCACGAGCTATGGCGTGTACAGCGTGCGGATCAATGGCAGAAAAGTCGGCGACCACTGTTTGGCCCCGGGTTTCCAAAGCTACCATAAGAGACTGCATTACCAGATTTACGATATTAAAGATCTTTTGGTAACGCCTGGGTGGAACAAGATCGAGATAGACGTGGCCGCCGGCTGGTTTGCCTCTGCCACCAGTTGGGCCAGGAAACGATTCACCTACGGCCAGAAACTCGGTGTCCTACTTCAGCTAGAGATTTGGGCTGCAGACTCTTCCTTGCCGATTTTGGTGAACACCGACGCGAGCTGGAGCGTCTCCAACACGCCTTTGGTTAGCAGTGAAATACTGGATGGTGAAATCTTTGACCAAAGTCTGAGTGTGGGCTCAAAGCTGGACGACGCTTTCTCGGTCCGAGAGTCGCCTCTTGCAGTGAGCCGGCTCATCTCTCCGGAAGCCCCGCCAGTAAGGGTGGTGGAGAGGCTGGAAGCAAAAGACATATTCAAGTCGCGGTCCGGAAGCGCTGTCATTGTGGACTTTGGACAAAATATCGCCGGTCGTATTTGCGTTAAACAAGTGCAGAAACCTGCTGGCTCTAGAATCACGTTTCGCCATGCCGAAGTCATCCAAGACGGGGAGATTATGTGTCGTCCCTTGCGAACAGCAAAAGCCAGGGACATTATAATATGCGATGGCCGAGAACTCCTTGACTGGCATCCGCAACACACGTTCCACGGCTTTAGATATGTCGAGATTGCGGGATGGAGCCCTGATGACAAGAACTGCCCTCTCACCAAAGCATGCATTGTCGCCGAGGTGATGCATACTGACATGCTGCGTACGGGTTGGTTTTCATGCTCCAACGATGATGTCAATCGACTACATGAGAATGCTCTCTGTAGCATCAAGAGCAACTTTTTGAGTGTGCCCACAGAGTGCCCATCAAGAGATGAGCGCTTTGGTTGGACGGGAGACCTGAACATCATTGCACCTACTGCCAACTTCTTGTATGACACGGCTGGCATGTTGGGAAACTGGTTGCAGGATCTGTACCTCGATCAGATGGAGGGGACCGAATACTGGCGCCAAGGCGTGGTGCCCTTGTTCATTCCCAATTTTTTACTAAGAAATGGCGACGGGGGCCACGGGTGGGATCCGATGCCAAATGGCGTTTGGGGTGACGCTGCAGTTATGGTTCCCTGGGGCCTGTATCGTATGTCTTGTGATGTTAGTTTCCTCTCGAGGCAGTATGATAGCATGGTTAAGTACCTGGAAAATGGCGTGACTCGAGGTCAGGATGGACTCTGGGATCCTGAGCAGTGGCAGTTTGGCGACTGGTTAGACCCAAGAGCGCCCCAGAACGATTCCGGCAGAGGGACCACGGATGGCACATTTGTCGCCGATTGTTTCCTCATTGCTTCCACTCAGATCGCTGGGAAGGTAGCCGCGAAGCTAGCCAAACCGGTTGACTCCTCTCGCTTCAGAGACGCTGCACTGCGCCTAGTTCATGCGTGGCGGGACAAGTATTTGACCGCGGCTGGTCTCGTGGTTCCAGATACTGCAACGGCTCTTTCGCTCGCCTTGTCGTTTGATCTTTTGCCAGAATGTGGAGACAACTCAATAAAGGCACAGGCGGCCGCTCGTCTGTTCCGACTGGTACGTCTTAATGACTTTAAGCTTACCACAGGATTTGTGGGCAGTGCATTTCTTTCTCGGGCACTCACCCAGTCCGGTGGCGTCGAACTAGCCTACGCTATGCTGTTCCAGAAGAAATGTCCTTCGTATCTGTATCCCATTACGATGGGAGCCACCACGACGTGGGAGCGCTGGGACAGCATGCTCCCTGATGGGACTGTTAATCCCGGTTCAATGACAAGCTTCAATCATCATGCTCTCGGGAGCATCGCAAATTGGATGCACGCTGATGTAGGCGGACTCGAGGCGATTGAGCCCGGCTGGAAAGTATTCAGAGTGAAGCCGCAGCCCAATAAGGAGCTGAGCTGGGCGGATACCGCATTCGAATCAAGGTACGGCCGGATTGAGCTGAGATGGACCTTAAAGGGAGACCTTTTCCGCATGAGATTACGGGTGCCTCCAAACTCTACCGCCGTCGTCAGCCTTCCCAGTGACGGCCGAGAATCTGAGGTGGGGAAGCGGGAAGCTAAAGAGCAAAGATTTGGGTCGGGAGAATACGACTTAAGGTGTCAATTTGTACAAACACAGTGGCCACCAAAGGCACTGCTTCCACCATGGGGAAGAGCAGAGTTCTAG +>XM_036290224.1 PREDICTED: Monomorium pharaonis uncharacterized LOC118646716 (LOC118646716), transcript variant X3, mRNA +TGGACATTTTCATATAAGAAGTAATCTCGCAGTTGCGCTGCGTCCGACTACAGCTATCGAACGTATCGGATACGTTCCGTGTAATCGTGTAACAGAGTGAAGATAACGAAAGGGAAAGCGGAGAAAACAAAGAGGATTTTGCACGATATCGCCGCGCCGTTTTTATCCGACCAGTAAAGTGAGCGGATCGAATTGTTCACAAGACCGTTTAAGATCATTTGGGATCTAGCGTGATATATGCGCCGATAACTAGGATTCGATAACGAGCATTTTACGCTCGTGTATAAAGAAAGAAAGAAAAAATAATCGTTCTTTTATCATCGAGGTGTGGCAAAGAGTCGCGTGCTGGGCAGAATTATACCCGTTCGATTCCCTGTGCCGGCGATTTGAAACAAAGTTTAGATCTGTTACTGCCTCTGTTGTAAGGAACAAAATAAGCAACATCCGCTCGATCTCCCGGAGATAAAAGGCATCGGGCGAACAGGAAAGGCAAGGGGAGAAAAAAATGGCAGAAAACGAGAAAATCGTGTCGGACGAACGATTGTATGATTATTTGCGTACGTATGCGAAAAGCATCCAATTGAGATCCCCGAAATTTCACGTAATCGAAAGCAATAAAGGCGATAGTTACATTAGTGTCGTTTATCGCGTCACGATCGAGGGAATCGAGGAATGGAACGAGGCCAAGAAACTCGAGCTCGTTCTCAAAACCACGCGGAACTACGGCATCGACAATATTTTGACCAGCGGCAGGGTCACAGAGCTATTCCAACGCGAGGCATCTTTCTATCAGGACGTGTTGCCTATTTTCAAAGAGACTATGAAGGACCACGGCGGAATGCACGACCGCTTCCCCATTTTATACGACGTCAACGATGAATCCGGAAAAGAGATACTGCTGTTAGAAAATCTAACGCCCCAAGGTTTCGTGATGTCAAAGTCAAAAATTATGGATTACCCGCATCTCAAGTTAGTGATGCGATGTCTAGGTGAATTTCATGCGTATAGCTTCATTACGAAAGCGGCAAATCCGACGGCTTTTGAGAAAATGAGGCAAATGAAAGAACACATATTTCTAGAAGTAGTAAATAGTGGCGAACAATTAGAGGCTAACGAGAGAATGAAAAAATTGGGAAAAATGCTTTTTTACATCGTGCTTAAAGCTTTAGCAAACGAAGACAAACATTATTCCGAAAGGTACCAACGATTCATGGAGAATATGCCGCAAAATATGTTTGCCGCAACTAATGGAAAAGAAGCTGAACCATACGCCGTTGTAAACCACGGTGATTGTTGGACTAACAACATGCTCTTCAAATACGACCAAGAGAAAAATCCGTGCGACTTGCGTTTCTTAGATTTTCAGTTATGCCGTTATGCATCTCCCGTTTTAGATCTAGTTCATATACTCTTCTGCTGCTGCACGCAAGAAACAAGGAGTAAATGTTTTGATCAGATAATTAAAGACGTATATTACAAAACACTATCTGACACTATAAAGAAGGCCGGTTACGATCCTAATGTACTCTTTTCTTACGAGATATTATTACAACATTTTACCAAATTCGGGAAACACGCAGCGGGAATTGCTACTTTCACTGTACATTATTATACTACTAATGACGTAGACTTCACAAGTGTATATGACACTAATAGGCTCGAAGAAAGAATAGAAAAAGATAGCTTTTACAGAAATATGTTAATAGAGACCTTTAAAGATATTATTGATAGAAATTATATTTAAATTACTACTTTCACAATAACATCGACATATTGTGATACCAAAAGAAAAAAAAGGACTCTTGTAGTTAAAACAAAATGCTTTATATTAAACTTAGACACCAATGTAGCTAATTACATATATTCATACAAGCCTACCGCATCAGGTTAAGAGAATTTCGTTATGACTTATCGTGAATGACTTATTCACATAAATATAATTTATAAAAATTGTATATTTTATGTTTCTGAACAGTTAGAAATATCGGACATTTTATTGTCACTTTTATCAAATAAAAATTTATTAAAATTACTAAATTTTTCTTTATAAATACTTCATTTTGGTCACTAAAAACAATAAGGTGCAATAATTCTTTACACTAAAGTGCCTAAAAATTAACGATGAACAATTTCATTCGGAGAAAGACAAAAATTGTATAAGAGATATATTTTTAAAAAAATGTACAGTCTCAAATATACAAAATAAAGGTAATCTATTACATTGTTTGATAATGAAAGGAATACTAGTTTAATAGTAATGTATCTTAGCTCTTAGTAATAAAGTCTTCTTGGATTATTTTGAAAGAAATTTGTAATAATAAACCAGATAATATTTTCTACTTAA +>XM_017386452.1 PREDICTED: Daucus carota subsp. sativus histone acetyltransferase MCC1-like (LOC108214453), transcript variant X4, mRNA +GAAGGTTTGTTGGTTATTTTTTAATTTTCTTAAAAATTCTTTATAGTACTCCCGAGAAGAAAAAGAAGCCCGGTTGCTTTGTTTTGGCGAGGGAAGATTGAAGAACCAAAAAACAAGAGCTGCATCGAATTCTGCATATACACAACAGATTCATCTACTCGACATCTTTCAAGTTGTTAGATCAAACATCAATCGGATTCATGAGCAATCCTTACATTTCCCCCAAATTCAGGTTACTAATTAGTACAAATTCACTTCATCTCTGAATTTCAATCGCATCGATGGTGAACCTGTATAAACCGCCTTGTGCTAGTATCTTTTATAGGCCTATTAGGCCCTCTGATTTGCAGCTTCTCGAGAAACTCCATGCCGATCTTTTTCCTATCAGATATGAGTCGGAATTCTACTTGAATGTTGTTCATGGTCGTGATATTGTCTCCTGGGGCGCTGTTGATCGGAATCGCTCGGATGGTCTAAGTGATCAGCTTATTGGATTTGTCACTGCCAGACTTGTTATGGCAAAAGGAAGTGATGTGGAAGATATACTCAGATTCGAAACGTCAGAAGCAAACCAGACTCTAGTTTATATTTTGACACTTGGAGTGGTGGAATCTTATAGAAATTTTGGCATTGCCACTTCATTAATCAAAGAGGTTATCAAGTATGCTTCAAACATTACAATGTGCCAAGCAGTTTACCTACATGTGATTTCCTACAATAATTCTGCCATCCATCTTTACGAGAAAATGTCCTTTCAGTGTGTACGGAGATTGCACGCTTTCTATTTCATCAACGGGCAGCATTATGATTCATACCTGTTCATATATTATGTAAATGGTGGTCGATCTCCTTGCTCGCCATTAGAACTTGCGACGATTTTCATTGCTTACATAAGGTGTGGATTTAAAGCAGCTGCATCAAAGTTATGGAGGAAGAAAGATAAGAAGGTACCTGTGTGGATGAAGTGTAAAGAAAGCAGTGGCCTACTACCAACAACGCAAAACAAGAGAATCCTCACAAGTCACAACTGAGGTTATTGTGTCAGATTGTTTTAACTTATAATGATCTTTTCACTGCTGTAACACAAGATCAAATCCCGATAGTCAATTGTATCTTGTTCTTGGAAGTTTGTTTCTTTTATTTATTTGATCAACTTCATAGTAGCCTTGACCATGCTCTTATGTTGCAAGTGTATGTAGTTGTTCCTCCTTTTCCCAGAGTTGGACACTTAAATTTCTATCTAGACAGCAAAGCTCAACAGTAGATTTTTATTCTTCAGTTCCATTGTCTCCGCCACCCTCTTTGCAATCCCTAGTGAGTGAACTAAGAAAATGGTATTTAGTGTTGCCCCCCCTTCTTTCTGTGCTCCACTTTCTTTAATAATCACAGCAAGGTAGATAAATATATCAGATCGGTAAAATAATTTCATATATTTGGCCCTATGGTACAATAGTGAAGCATTTTTTCTTGACTCGTTCCATAAGCATGACTATACCATTGTGCATTATGTTTGTATTAGTAAAGATATCTTTATCTGACTGATTCTGCATAGATTTCTGTATATAGAATATAGAATGCGAGAGGTTGATTCCATATGAAGTACGCTTGTTTTCATATTTCCTGGAATGTTAAATTGAATAAATCAATTTTGGATACTTTATGCCCACAACTAAACAGGAACACCCGTGAAAAAAAAAAGGATTTTGTGAAATTCATTTATGAAAGAAAATTGAAAAAATGGACAGATTTAGTTCTTTTCAGTTGGTACTTGTTCTCTCCCTTAAACCGAGCCTTGATCGTTTGTCTTTGAGCGCATTTGTTGGTAATATTGAAAAGCCTGTCCTACCACAATTGTCCTATACTTGCTGGTAAAATTAATTTGTCAATCCTATGGTTTGGAAATATGAATGAGCAGCAAAAGTCTTGCCTGAAGTTCTTTATTAGGGTATTCTGTTAGAGCCATGAGTGGCTGATTGGTGGCTTATGTAGAGACTAGAGAGAGATACTAGCTCGTGGTGACCAAGAAGTTAAAGAGCATTCCAATTTTCAATGGATGAAAGTGACCGTGCTCAAGGAAACAAAAGAGGCCGCTCAAACAACTCTTTGGAATATTCATTTTGAAAGATACGGCAAGGCAAAGCTGCCTGTGCTGAAAGCAAAAGTGTGGCTGTAATTGCTATGGACGAAGGAACAGAATGGAAGAAAGCATGAAATGCTTTGTGCATAATTTTGATGGTGAGCAGCTGGTAATTGTGGAGGTTGACTTATTGGATGAGTTTTAAAGGGACTGTGCACGCCTTTTTCTTCAGGAGGAGTAGGTAATGTCCGGATTATTAGTACCTTTACCACCAAAGAAGATAGTTGAGAACTTGAGATTATATGGTGATTCATTTTGTGGCAGCATTAGCCGAGACTGTAACAGATCCACAACGTTTAGGATTTTCTTTTAGACTGATGATCAATGCGGGGAAGTTCTGACTTGAAACTCGGGCACAGGCTTCCATGCTCGTGATATTTATGAATGATATCATTATTCATTTTTGATTTACAACTGTTGTTATTATA +>XM_052334290.1 PREDICTED: Diospyros lotus succinate dehydrogenase assembly factor 1, mitochondrial (LOC127799971), transcript variant X1, mRNA +ATGCCCACGGAGAGAACACACGAGAGTGAAGATTTGGAGGGAAGAAGAGTCCTGCACCGCCCGGTGAGCCCCTCCGTCGCTGCCGCTCACCTCCGTCGCCGGTCTCATCTCCATCGCCGGCGAACAGTTTAGTACCGCCACTGCCGACTGCCACCGCCACCGCCCCTGCAAACAGCCAAACACAGGATTGCTTTATTTTGTGGAGTTGCGGAGAAATTATCTTCAGTATTTGTGCTGTGTTAGGGTTCACAGAAGAAGCAAAATAGATACGCAGTATTCCCCAAGCTGCATACAAGCAGAACCGTTCATCTACAACAATACAATACACTGTGCACCATCATATGGTTAAGCAAACATCAGGGGCATTATTTGAAGGGAATTCAGGCTGCGGAACACCAGGGGACAAATCAACTTCTGCCCTAATTTCCAGATCCCCGTTTCCTTCTTTTGGCTGAGCAAACAGCAGGGGAAAAATCGAGAATGGCTCGAAGGGAATTCAGGCCGCTGAATACCATCTCTGAATTCCAATGGTTTGTGTCGTTCTTCGCATTCTGCAGTGGCATTGATTTATTCTGGTTGGTGGCTCCTTGATCTCCTGTGAACTCCAGAGCTTTCAGTGGAAGGCAAAGAAATACAAGAGAGATTGCAATCAGGAGTCAAGAAGTGAACAAGATGCAATGGGAGGTTCTAGTGGGCCAAAGCTTTCTGGAATGCAGAAGCAAGTGCTTGGTCTATACAGAGGGTTTTTGCGAGCAGCGCGTGCCAAATCCCCTGAAGATCGATCCCGAATTGAATCAATCGTGTCAGCTGAGTTCCGTCGCAATTCGAAAATAGTAGACCGCAAGAATTTCACCTACATCGAGTACTTGCTTCGGCTTGGTAAGAAACAGCTTGAGCAGCTTCAGAGCCCGGATACCATTGGATTGTCACACTTGAATGTAGAACTCTCCCACACTAAGAAGTCCTAATCCCACACTAAGAACTCTTGTACCTTACCTTAGGATGTATCCTAAAGTTTTGTCATCCTCTGGTCTCTGACCGAATGTTTTTTTGATTACTCAAAACTCATGCTTCTCCAACTCCAAAATTCAAAATAAATGTTTTATATGAGAGCTGCAA +>XM_028897914.1 PREDICTED: Prosopis alba SWR1-complex protein 4 (LOC114713302), transcript variant X2, mRNA +CCAAAAAAAAAAAAAATCCCCACCCGGTGTTTTGTTTCACCATTTCCGACGTTCTTCGTCGTCTCTTCCTCCCTCCTCTTCCTCTTCGTCGGCAGCTGTCCCACGTCGGCCGTCTTCGTTGAACTTCGCTGGCTTTCATTACTCTCCTCTCTTCCGCTGCTCCGTCTAAGTGCCTCCCGTTGATATACTCCAAGTTCACCAGCTAGGAAAAATATTGAGAAGACCTCAGTTCCTGAAACTGAAGACTGAATTCTTGAATCGAAGTATTGGAAAAAGCCAAAATTTTGACAAGATTTAGAAACCCTGTTTTACATTTATGAGATGTGCTTTTTTAATTTATGTTTTTTTGGTTGTACATAAATAAGGTGGATTAGCTTGGCCCTAGATTTCCTCTGAAACTCCCATGGATGCCAAGGACATCCTTGGTTTGCCCAAAACCTCCTTGCCAATTCAAGAGAAAAAGTCTAGGCCCCAAAAAGATTCACAGAGAAAACCAGATGGCATTTCACGGGAGGTATATGCACTCACTGGTGGTTTGGCGCCTCTTATGCCTGCAATTGATTCGTCTCAATTAAAGAAAAGGCCTCCATCTGACGAGAAGATCACTTGGCAGTGGCTTCCTTTCGCCAATTCTGCTCGTAAAGATAATCTTCAACTATACCATTGGGTCCGAGTTGTGAATGGTCTTCCACCCACTGGGGACTATTCTTTTGCCAAGTATAACAAGTCTGTAGACATTATCAAATACACAGATGAGGAGTATGAGAAGTATCTGACGAATCCAATGTGGACCAAGGAGGAGACGGATCAACTCTTTGACTTGTGCGAGAGGTTTGATCTTCGGTTCATTGTGATAGCTGACAGGTTCCCATCATCACGAACTGTAGAGGAATTGAAAGACCGATACTACAGTGTATCTCGGACTCTGTTAATTGCTAGGGCTCAATCTTCCGGGGATGTTGCAATGCATCCTTTAGTTAAGGAACCATACAATGTTTCACAAGAGGTTGAGCGGAAACGAGCACTGTCTATGTACCTCTCTCAAACAAAGCAACAAGAGCGAAAAGATCAAGAGGTTCTTGCTGAGGCAAAAAGAATAACTGAATCACGCATGCCTGCTAAGGTTGCTGAAGAGTCTGAGGCTGCTGCTGCATCAAATGCTGGTGCGGAAGAGAGAGCTGTCTCCGGTGATCCTCCATCAAGTGTTCAGCTTCCATCAACGGTTGTTCCATCCACAACAGCAGATAATGCAGCCACTCTTGCTTCCCTTCGCATGCTTCGTGTGTATCTAAGAACATATGCACTTGAGCAAATGGTCCAAGCTGCAAGCTCATCTGCTGGACTACGGACCATCAAACGGGTGGAACAAACACTACAAGAACTTGGGGTTAATTTAAAACCAAGGGTTCCAACCAAAGCTGTTTGTGCAGAACATCTTGAATTAAGAAAAGAAATACTAACTCTGCTCAATCTTCAGAAGCAGCTGCAGTATAAGGAGGCAGAAGGTCGTGATGGTTCATACACTGAAACACCTGGCACACCGAAGGATAGGACATTTATTCCAGATTCTATGAGTTTTGGAGGTGAGAGGATTGGTAAGAGGGACCAGAAACGCAAGGCGCCTGGGAGGATATCAGAAGCTCCATCATCACCGGCTCAGTCTAAAAGGCCTAGAAAACTGAAGGCATCTGATCTATAGTCCGGTGGTGTAATGGGAGAATATAGAGTTACAGAATTCTGCTAACGAGGATGAGGAATGCAGGGTAAAGTAGGTGTAAGCTCATGGCCCAGAAATTCAGAATTTCCAACTGAAGTACTTTGTTTCCTTTTGGGCTGTTGCCGGTCACAGTATCTAGCGTAAGATGGAGCACAAATAGTGATGGAAATTCTGGGTTCTTCTAACTTTTAGGTACCTCGTGAGCTTAACTTTATTTTTATGCTGGCAAAGCTTTGTACGGTTGTTAGGTTTTTCTGACCAAATTGTCATTGAGAATTTTTATGTAAATAAGCATTCAGGTGAGGATTGTTCGAACAAATATAGGGCCTCTAAAAAACATGTATTTGTGCCTCGTGAATGGATTCATATCCTAAACTTCTTCAACTAATCGAAGGCTGATATTTGAATGAAA +>XM_012572725.4 PREDICTED: Taeniopygia guttata EPH receptor A7 (EPHA7), transcript variant X1, mRNA +CGGGCTGCAGTCGGGGCTGGCGGGCGGCCGGCCCGGTGCGGGAGCCGGGCAGCGGCGCGGAGGCGGAGGAGAAGGAGGCGAAAGAGAAAGGCAGCCTGGAGGGAGGGAGCGCCGAGCCACAGACTAGCACAGCAAATTCTCCACCGTCCTCTAGCACCCACCAAGCGGCGGCAGTGGCAGTATCTAGGAATAGAGAGCTAGAAATATAAAATCACCCCGCTCCTGCACCATGGCTTTCCAAAGTAGGCTCCCTTCTTGGATTATTTTGTGCTCCGTCTGGCTGTTCCGCTTTGCACACACGGGGGAGGCACAGGCTGCAAAAGAAGTAATACTGCTGGACTCTAAAGCACAACAGACAGAGTTGGAATGGATTTCCTCTCCTCCCAATGGGTGGGAAGAAATTAGTGGACTGGATGAAAACTACACTCCTATACGAACATACCAGGTATGCCAGGTGATGGAATCAAACCAAAACAACTGGCTTCGGACTAACTGGATTGCAAAAAGCAATGCACAAAGGATTTTTGTAGAACTGAAATTCACTCTGAGGGATTGTAACAGTCTTCCTGGAGTTCTGGGGACTTGTAAAGAAACCTTTAACTTGTATTATTATGAAACAGACTACGACACTGGCAGGAATATCCGAGAAAACCAATATGTAAAAATAGACACTATTGCAGCAGATGAAAGCTTTACCCAGGGTGATCTTGGGGAGAGAAAAATGAAACTTAACACAGAGGTGAGAGAAATTGGACCTTTGTCCAAAAAAGGATTCTATCTTGCGTTTCAGGACGTAGGGGCCTGCATTGCTTTGGTCTCTGTCAAAGTCTACTACAAGAAGTGCTGGTCCATCATTGAGAACTTAGCTATTTTTCCTGACACAGTGACTGGCTCAGAGTTTTCCTCTTTAGTTGAAGTGCGAGGAACTTGTGTCAGCAGCGCGGAGGAGGAGGCGGAGAACTCGCCAAAGATGCACTGTAGCGCGGAGGGAGAATGGTTAGTGCCTATTGGAAAATGTATCTGCAAAGCAGGATACCAGCAGAAAGGAGACACGTGTGAACCTTGTGGCCGTGGGTTCTACAAATCCTCCTCACAAGATCTGCAGTGCTCCCGCTGCCCTACTCACAGCTTCTCTGACAAGGAAGGATCTTCCAGATGCGACTGTGAAGATAGCTATTATAGAGCACCTTCTGATCCACCATATGTCGCGTGCACAAGACCTCCATCTGCACCACAGAACCTAATTTTCAATATCAACCAGACTACCGTGAGTTTGGAGTGGAGTCCTCCTGCTGACAATGGGGGAAGAAGTGATGTGACCTACCGCATTTTGTGCAAGAGGTGCAGCTGGGAGCAGGGCGAGTGTGTTCCCTGTGGGAGTAACATTGGATATATGCCCCAGCAAACTGGATTAGTAGATAACTATGTCACTGTCATGGACCTGCTAGCTCACGCTAACTACACGTTTGAAGTTGAAGCTGTGAATGGGGTTTCTGACTTGAGTCGTTCCCAGAGGCTTTTTGCAGCTGTCAGTATTACCACTGGCCAAGCAGCTCCCTCGCAAGTTAGTGGCGTAATGAAAGAAAGAGTGCTGCAGAGGAGCGTGGAGCTTTCCTGGCAGGAACCAGAACATCCCAATGGAGTCATTACTGAATATGAAATCAAATATTATGAGAAAGATCAAAGGGAGAGGACCTATTCAACAGTGAAAACCAAGTCCACTTCAGCTTCTATTAATAACCTAAAGCCGGGAACAGTGTATGTTTTCCAGATTCGTGCTTTTACTGCTGCTGGTTATGGAAATTACAGCCCCAGACTGGATGTTGCCACACTGGAAGAAGCCACAGCCACAGCTGTTTCCAGTGAACAGAATCCTGTTATTATCATAGCTGTGGTTGCTGTGGCAGGAACTATCATCCTGGTCTTCATGGTGTTTGGATTCATCATCGGACGAAGGCATTGTGGCTATAGCAAGGCAGATCAAGAAGGGGATGAAGAACTTTACTTTCATTTTAAATTTCCAGGCACCAAAACCTACATTGACCCTGAAACCTACGAGGACCCAAATAGAGCTGTCCATCAATTCGCCAAGGAGCTAGATGCCTCTTGTATTAAAATTGAGCGTGTGATTGGCGCAGGAGAGTTTGGTGAAGTGTGCAGTGGGCGTCTAAAGCTTCCTGGCAAGAGAGATGTTGCAGTAGCCATAAAAACTCTGAAAGTTGGCTACACTGAAAAGCAGAGGAGAGATTTTCTGTGTGAAGCAAGCATCATGGGGCAGTTTGACCATCCCAATGTGGTTCACCTAGAAGGAGTTGTTACCAGAGGGAAACCAGTCATGATCGTAATAGAATACATGGAGAATGGGGCCTTAGATGCATTTCTTAGGAAACATGATGGGCAATTTACTGTCATTCAGCTAGTGGGGATGTTGAGAGGAATTGCTGCTGGAATGAGATATTTGGCCGATATGGGATATGTACACAGGGATCTTGCAGCACGCAATATTCTTGTCAACAGCAACCTTGTTTGTAAAGTATCAGACTTTGGCCTTTCCAGAGTTATAGAAGATGATCCAGAGGCTGTCTACACTACAACCGGTGGAAAAATTCCAGTGAGATGGACAGCTCCAGAGGCCATTCAGTACCGCAAATTTACCTCAGCCAGTGATGTGTGGAGTTACGGAATAGTTATGTGGGAAGTAATGTCTTATGGAGAACGGCCTTACTGGGACATGTCAAATCAAGATGTTATAAAAGCAATTGAAGAAGGCTATCGTTTGCCAGCGCCCATGGATTGCCCAGCAGGACTGCACCAGCTGATGCTGGATTGTTGGCAGAAGGAACGCGGTGAAAGGCCAAAGTTTGAACAGATAGTTGGCATTCTGGACAAAATGATTAGAAATCCAAACAGCTTGAAAACCCCACTGGGAACCTGTAGCAGACCAATTAGCCCTCTTCTGGACCAGAACACTCCCGATTTTACCACTTTCTGCTCCGTAGGCGAATGGTTACAAGCTATTAAGATGGAAAGATATAAGGATAATTTCACAGCAGCAGGCTACAACTCTCTTGAATCAGTTGCCAGGATGACTATTGAAATCAAAAACATGCCAGGTGCTTTGCAAAACAGAGAACAAGAAAAATCCCTTTCCAGAAGAGATGACAGCCTGAATAGAAATGGCATAATGGCAGGAGACAAAGGAAGCAGAAAGGGGAAGCAAAACAAGAGTTATAACCATAAGATCATGAGATTGGTTTGGAGGCACAGTGAACGCTATGAGGCATTTTTTTAAAGCCCATAAGGACTGTAGTTGGGATTAGAGAATGGAAATATAGAAAAGAAGCATGGAAAGGAATGGAGAAGAAGGGAGGAACAGACTGGCAACAGGAGGAAGAGTAAACAGAGGTGTATGGGAGAGGCCAGAACACACATCTGACAAACTGAGGATTATGACTAATGACAAGAATGAAAGACCACATCTGAAGAGCATGATGATTTCAGGAGGATGGCGAAGCAGGACATGGCGATGCTGCTAGGGAGAGAAGAGCCAGCAAAGCTGCCCTGGAAGCCTGCCCTGGAAGCTCCTCACACTAACATAACCCTGCTTCCCCATCTTCTTTCTCGCTCCCCTCTTATACATAAAATATGTATATAGAAGAGCAAAGGAGAAGGAGAAGCAGCTAAATAAACTTTTCCAAAGATCGTGCTGGGGAAGAAGTTTAAGCTGGGATGATACAGATTTGCTCCTCCTGATTATGCTCATGGTAGCGAGAGGAAGAGAGCATTCTGTTAGTCATATTCCTGCAGATGAATCTATATGAGTCTTTGCCTCTGGTTACAAATAGGCCTTGTTGAGAAATAGTCAACAAAATTATAATACTCCAGCCAATCTGGGACATTTTAAAATGTCCTTTCATTCTAGAACAGAAATAAATTACACCACTGACAGTGAAATGGAAAGAGGAAAGAAGAATATTTTAACAGTTTTGGTTTTTTTTTTAATGCTGAAAATAATCATTTTAGTATTATGGAAAAAAAATATAAGGGGGATTTTTCTCATTGTGAAAAAAATAAAGCTTTTAATGAAATTTCTGATAAAATTGGGAATTATTTTAATTATGTAGGACTGGTTTTTCTGTTGGGTTTTTTTTTTTTAGAAAATTGGTATTTTTAGAAGGAAACAGGAAAATTGCTGTGTTCATTCTGTCAGACATTTTAAAATACCCTGATTTCCAAGGTAAGAATTCTTCAGGAGTAAGAAAGCTGAAAAGTGGCCAGTCTAATCTCTTCCTCACTTCCTTCTCCTCTGCTTCTGTGATCAGACGTGTCTAATGATAGTCTGCAGATAGCAAAACCAGTTTCTATGTCTCCCTGAGAAAAGGCATTTTGCCAACTTTAAGAATCTTTAACTGGATCTACTTACAGGAAGTCACTGTTTTGCTGCAGACTATGTGTCCACTTAAATCCCCCTCAAAGCTCTTCCATTTTGCCTGGAAAGGTTTATCAGAAAGCATGCTGGAAAGGCTCAGATCTTTCCATCTCCAGTGAAACTGTTTCTGAACATACTTATAGCTTAGCAGATGTACTGGTATGACAGTTGAGAGACTACTGCTGTTAATGAAGTATTCTATTACCTTGGCATATATAGACACTTTTCACTTGGTACTTCTAACTGCAAAGTATTGATGTTTAGGCTATTATAAGTACTTGTGCGTTATATTTTTTTGGTAAGTTTTAGAGGACAGAACTGCGTAAATATTTCTTCTCTTCAGGGTAAAACAGTTTTCATGAGTCTTGAAATGTTTACATTCATCTTGAATGTACACCAGAGTGATATCAAGTTTGTTGTTGTGACACCTTATCAATATGATGCCCATTTTTAGTTTCTTCTAGCAGTGGAATGATTTAAGTATTGTCTCATGGAGACAACGGCCTTGTTTAAGAATGGTGACTCTGGATAAGATTCAAATAATTTGTCTGAGTGAAGAGGAGGCAACTGAAAGTCATCGCTGAAATATTACCAAAAATCCTTAACTGGTTGGATTTGTCCATCACTTGCTTGAAGATTTTGGTAAATGGTGGTTTACTAGGTTCCCAAATGCCAGCAATGGCCAAGCACTTTCTTTTAATTTTCTTCAATTTGGACTTTGCTTAAGTTAATTAAGCTTTTGTCATCTCAGGGTTCCATTTTAGCAATGAGGTTTACAAGACCTTCTCTGTCAATGTAAAATCTTCCTATACTTAAGAACATATGACATACGGAGAGTAAACTCAATGCTCAGCAGTGCTTGAAGAATGATTCCCACCTCAGTAATTTCTCTCCATTTTTATCAAAATAATACTGGATTTAAATCCTATAGCCATGGTATCAATTTACCAAAATCTTCTCTGCCTAAATTATTCTTCAATTAAATGTAGCTCAAAGTTTTATTACAATCCACCTATCATTTAAAAAATGGGATTGCAAAGTAGTTTCATAGTATCACCCCATAATACAGATTTTTTGCATATTATTTTTACATATTTGAAAGAACTCCATTACTCAGTTGCATATAACTTTTTGCAATAAGAGGCACAACGTAAAGCAATATCAAAACACAGGTAGTATTTCTACTAATTTTATTTAGCCAAGCTCCAGATTTTGCATAATTTTGCCACTGCTTCTGGCATGATAGCAGATATGGAGGTTATCCATGCCTGCCTACCTTTTGGTGCTGAGATAGGATTCATCTGTGTGGCACCTTACCACCCTCCGCTACCAAAAAAAAAAAAAAAAAAACCAACCAAAAAAACCAACAAAAAACAAAAATTCCACTGGGAAATTTGGCATAACCTCTGGGAAATTCAGTTTGACCTACCTTCTGGGTTCAGCAACTGAACCGGATGCATGATTTGGGAAGGGATTTAATACCAGCTACCTCAGTAGCCACAAGGTGTTACGGGAAAACGACTGAAAAAATCCAAACTATTATAATGTATCCTGAGACGGAAGGACAGCATGGTCATTTGCCTATATATTTATTTCTAACCTTGCCTACACTTTTCCTCAGAATCCTTCCCTGATATTGTCTGTCAGCTCTTTCAAGAAGACACTTGGTTGTGCATAAAGTAGGAATGGCTGCACTGACTCAAGCCACGAGCCCACATAGTTGTGTGTACCTGACTGTGTGCCTTGGTAGGGGTACAGTCTTGTTATAAGGCCTCCACTGATCCCTACAGATTAGGGAAACCTTCAGCTGTTGACTTCCAGACATCTTCAGGGCTCTATATCCAATATGTACAGTTCAAATGCTTCCCAAATCAGGGTGGTGCACTATGATGAGTAGTCTGAATTTGTCCTATATTCTGTGAATTTACTTCTTTCTTCTGTCAATCTTCTCTCTCTGTCTTGCCCTTCTTTCTCCTGAAGTAGAATGACCAGGGTTGCATGAATTATTCAAAATAAGAGTGTATGATGTATTTATACAGTGATATAGCGATACAGTGTATTTATACTGTGATATATATATATATATATATATATGTTTTCTATTTTGTTTACCGTTTCTTTCTTAATCATCCAAATATCCTGTTTCACATTTTTACTTGATACTGGGTGCTTGACTTGATGTTTTCAGAGAGATGTCTGATGTTATTCCTTATTTTTCCTTCTCAAGCAATAGTTACTTTGTAGTCCCTGCCTGTGTGTGTATAGTTAGACTTATTTACCCCTTGTTCAGTTCTTTCTGTTTTATCAGATTTCATCACTCCTTCATGGCCAAGGGCATTGAAAATTGTGAAATCATTTTGCAGTCCTTTCCAGACAGTTCCTTACTGATTTAACTTACAAAAAACATTTTGTATCAAACTTTCTCATCTGACAGTTCTTAGATATCACGTTTCCCTTTACTACTAATAAAAGTACTTTTGCTTAAA +>XM_033125297.1 PREDICTED: Rhinolophus ferrumequinum 5'-nucleotidase, cytosolic IB (LOC117033240), transcript variant X2, mRNA +ATGAGTCAAACATCTCTGAAACAGAAGAAGAAGAATGAATCTGGAACAAAATACCCAAGAGACAGTCTAGAAGCAGAGAAAAAAAGGGAGTCTGAGAAATCAGGAGTTCGTCTGAACACTCAGATGACGCATGCAGTCACACCGAATCACTCGCTGAGACGTTGCCCCATGCATGGTCACCCGCCGTGTAGAAACTGCCTTAGTGCAGCTGAGGGAACAGTCCTTCTTGGTCCCTGCCGCATAATACACATTTATATTCACATGTGCCTGTTGTGGGAGCAGGGCCGGCAGAACAGCATGATCAGGGGATCACAAGAATTATCATTGCCAAAGACAGATTCTCGTGGGTACATCGTGCGAAGTGAGTGGTCCCGAACTTCACGGAGCCCATCCAACAAAGCCCCATCAGTAGACGAGAACAGAAGCAAGTCTGCCAATCTTAAGGTCCCCAGTAGCTCCACCACGTCCCGCACTTCATCTGCCTCCCCCAGCCAGCAGGACTCTCAGCAGGAACTGTCCACGCAGCCCTTCCCGCCCACCCCACCCGTGCCACCCACACCACCAGCGCCTACAGACTCCTTCCCTCCCACACCCCCGGAGCCCCAGCCCCAGTCCGTGTCCCAGCACAGCAGCAAGATGCATGAGAACACTGACACCTGGCCACATGGCATTCCGCGGGAGATGCGGGACCCCCGGGACCCCAGGGACCCCCGGGATCCCCGGGAGATGCAGCAGCGAGAATATCCCCGTACACCCCCCACTGAATGGAAGCCCTATGCCCAGCGCAAGGCGCACTACTCCTCCCAGCTGGACCGCGACTGTATGTCTGACCTGCCCCGGCAGCGGGAGGAAGAGGACGACAATGAAGAAGCCTATTGGTCATCCGTGAGGACACTGTATGAGAAGACCCCAAGCTGCTCGCGACCCCGGCCGCCCAAACCCAAGCACGCCATCACCATCTCTGTGTCATCCCGAATTCTCTTCAACATGATGGACGGCAGGAAAATCTACGAGGAAGAGGGTCTGGAAAAGTACATGGAGTATCAGCTCACCAACGAGAACGTTATCCTGACTCCAGGACCCGCATTCCGCTTTGTCAAGGCTCTGCAGCATGTCAATGCTAGACTCCGAGATCTGTATCCTGAAGAACAGGACTTATTTGATATTGTACTGATGACTAATAACCATGCCCAAGTGGGAGTGCGGCTTATAAACAGCGTCAATCACTATGGCTTACTAATTGACCGCTTCTGTATGACTGGTGGAAAAAGCCCTGTTGGCTATTTGAAGACCTATCTTACCAACTTGTATCTTTCGGCGGATTCTGAAAAAGTCCACGAAGCAATTCAAGAAGGGATCGCCTCTGCAACAATGTTTGATGGAGGCAAAGACATGGCTTACTGTGACACACAGCTCCGTTTGGCTTTTGATGGAGACGCTGCCATCTTCTCAGAAGACTGCGAACATCCTACCAAAGACCACGGGATGGACAAATTCTTTCAACAGGAAACACAACATGAGAATAAATGCACGGCTCAGGGTGCCTTGAAAGGCTTTCTGGAAGAATTAGGCAGACTGCAAAAGAAGTTCTATGCCAAAGACCAACGGTTATGTTGCCCCATCAGAACTTACCTGGTTACAGCCAGGAGTGCAGCCAGTTCAGGTGCCCGAGTGCTGAAAACCCTTCGCTGCTGGGGTCTAGAGATAGACGAAGCTCTTTTCCTTGCTGGAGCCCCCAAAGGGCCCATCTTAGTGAAAATACGGCCCCACATCTTCTTTGATGACCGCATGTTCCAAAGTGAAGGCGCACAGAAATTTGGCACAGTCGCAGCTTATGTACCTTATGGCGTTAATCAAAAAATGAACAATTAG +>XM_037725972.2 PREDICTED: Dermacentor silvarum acetylcholinesterase (LOC119465175), mRNA +TGCTGGTGAAACACGCAGTGTCGCAGGAATCCCGGCTACCACTAGCGCATTGTCGGTTGTACTGGCCCAGAGCGTTTTTTATCTGGATAGCCGCTCGGGTCCCGGAATCGATATTAGAGGACGAGGCTAAATCCTCAACGACCATAGAAATGGCGACCAGAGCAGCCCTCCTGGCGGCCATTTTTCTCGCCGTCATGCTCATTGCCATGGCCGACGATGCATTCGTCAAGAAGCAGACCACGGAAGGCATGGTTCGCGGCAACGTGATCCGCGCCCTGGGCAAGACTGTCGAAGAGTACCGCGGCATTCCGTTCGCCGAGCCACCTGTAGGAAAGCTCCGGTTTCGGCCTCCAGTTCCAAAAAGACCTTGGGAGGGCACCATGGATGCAACCGCTGGAAACACAGCCTGTCCTCAGGTGCTGGTGGAAGGAATCCCGCTAGGCAACCTGAGCTTCACAGAGGACTGCCTCCAGCTGAACGTATGGGTCCCAGAGGTCGCGATTACCCCAGGTTCGCGTCGGCCTGTACTTGTGTGGATCCACGGAGGAGCCTTCACCTTAGGCAGCGCGAATATGGCGAACAGTAGCGGCGTCTTCCTCGCCGCGCTGGGCGATGTAGTCGTCGTGTCCGTGAATTACCGTCTTGGCATCCTGGGCTTCATGAACGCGAACTCTCCTGAGGCGCCAGGCAATGTTGGCCTCCTGGATCAGAACATGGCTCTGAAGTGGGTGCAGCGGAACATCGGACATTTCGGAGGTGACCCCGAGCGAGTGACGTTGCTCGGGGAGAGCGCAGGCTCAATGAGCGTGCACGCGCAAATTATGTCGCCATTAAGCGAAGGCCTCTTCAAGAGGGCAGTTTTGATGAGCGGTACCATGTATAGCTTAGACACGTGGGACACAGTTCCGGAAAGCATGGTCAAGGCAGACAAGGTCGCTAACGCTGTTGGCTGCTCCAACGGTAGAACCATCGAGCTGTCATCTAATGCGGAAGAAATCGTGGACTGCATGAGAAACAAATCCGCTGATGAGCTCGTCATGGCTTCTAAGGAGGTGACGGTACCAAAGCTGGCCCCATTTGCGCCTACTTATCACAACGAGTTCCTTCCCCGAAATCCATTCTTGGCCCTGAAGCGTGGTTTCTTCTCATCTGTGGACGTCTTAGCTGGCGTAACTTCAGACGAAGGAGCTGCGTTTCTCCTGTTCCCGTTGGTTCACGAGCTTTTGGTGGAAGACATTCGAGGTTCGCCACCAGAGGAGCTTATTAGGTCTCTTCGCAGCGCATTATGGCGAGTGCTTAAAGATGACATACCGAATACATTAGAAATGTACACCGAGGAAGCACCAAAGGACGATAACAACGCACTGAGACGCCAATACATCGACTACGTGTCCGACAGATTGTTCAACTGCCCTCTGCAGTTCTTCGCGGAAAATCACAGCCGAAGGGGCAACAAGGTTTTCACGTATGTGTTCGCCGACAAGCCGGAGATGTTTCCACTGCCTGGGTGGATGGGAATGCCCCACGGCATCGACGTAGCCTTCATGTTTGGTCACCTCTACGCAGCAAATCCTGATTCGCCAGATGGTCGCATCTCTGAGGTCTTTATTAGACTGCTGGCCAGCTTCAGCGAAAACGGGATTCCCGAACTTCCCAACAATGAGACGTGGCCACAATACAGCAAGGACTTGCCAAGCACAATCGTTATGAAGAACGGCCTATTTAACGAGACACAGGGATTCCGCTCAAGCTACTGTGAACGCTGGAGGCCTTTGTATTAAATGTGTCACTCCACAA +>HQ089085.1 Uncultured Arthrobacter sp. clone F5OHPNU07H9DXX 16S ribosomal RNA gene, partial sequence +GCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTCCTATGTTGCCAGCGGGTCATGCCGGGGACTCATGGGAGACTGCCGGGGTCAACTCGGAGGAAGGTGGGATGACGTCAAATCATCATGCCCCTTATGTCTTGGGCTTCACGCATGCTACAATGGTCGGTACAGAGGGTTGCCAACCCGCGAGGGGAAGCTAATCCCACAAAGCCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGGATCAGCATGTCACGGTGAATACGTTCCCGGGTCTT +>XM_026579881.1 PREDICTED: Papaver somniferum tRNA-specific adenosine deaminase TAD3-like (LOC113333371), transcript variant X2, mRNA +CCAAAATATTGCGATGAAGAAGTGGGAAATCCTTCACATCCCAGACAAGATTCCGTTTAAACTTGATGAACAACCCACGATCGACGTCTTTGCTTCAGTTATAGAGCCAAAGCTTACCGATACTCTTGAAGTTAAATAAAGTTGCACCAATGGAGATTTATCGACATATTAAGAGGGTGTGGAAGAAGAAATCCGCGGAAGGAGGGGATTTTCAGTTAATACTGATTTTATGTCTTGTTGGTGAGAATAGGAATGAGTTGGAGAGTATACCTGATGATGTACTTGAGTTGATAAATGCCCACCAGTTGAATCCATATATTACAAAGGTCCATAGGTATGCCGCGATATCAAAAGAAGAATGGAGAGAACAATGCAGACTTTGGCCAACATCTTATCATCCGCCAACCTACAATATTGAGGGCATTACAGGATTTAATGAGGAGGATTCAGAATCAATATTCCACTTCATGAAGATGGCTCTTGAACTAGCGAAAGTGGGCCATTGCACCGATGAGGTAGTCAATGCAGCAGTTATAGTAGATCCTTCAACTAGGCAGGTGATTGTTAGGGGCAATGATCAAACATGTCAGCCAAGTACATCCACAGTGAGTAATACCAGCTTCGAATGTGGTTCCGTTGAACAAAAGGGTTTTGCTACTTCCCATCAATCCGATGCAGATGCTGTAGCAATCAAGGAGACTCTGTTTTCCATCTCCAGTTTTGCAGTTGCTGAAAATAAAGAATCATATACTGGCGTTTCTTGTCTATATCCTTGGAATTGGACTGAGCAAAACTCTATTGCTGGAAACACATATTCCTGGCATCCTCTGCAGCATGCAGCTCTTGTTGCCATTGAACATGCTTCCTCTAGGGATAGGCGCCTATTTCCTGGGCCGGTGGATCCTGAAGATCAATCTATCAATCAAGTGGATCACACAATCTCTTCTCCCAATAGCTCACCAGCCAAAAGACAGAAATTTGATTTGACAAAAGATGTCAAGGTTCTGAAAGCTTGCTCTAATGGTGATTCTCATTCTGAAAGGGGTGAAAGGCCTTACTTGTGCACTGGTTGTGACATTTTTGTCGCTTGGGAGCCCTGTACGATGTGTGCAATGGCACTTGTTCATCAAAGAATTCGGCGAATATTTTATGCTTTTCCGAACCCTAACTGTGGTGCACTAGGCAGTGTTTACAGACTACAAGGAGAGAAAAGCTTGAATCATCACTATGCTGTTTTTAGGGTTCTATTACCGGAGGAATCCTTGGAAACATGACATGGAAACCACATCTCGATGATGTCCAACAAATGTTAATCTAATGTTGTTCTACCATACAGTTTTTCCAAACGAAGGATGGTAAAGCTGAAGTTTATTGGAACACCCTTATGTCTGCAAGTGAAGGTTTTGATAGAGAGGTGCTTGGAACTTGCCATTATTTATTTTTCTTTGTTTTGATGTAAACTTATGTTGTGTTGTGCTATTATATAAACATCAATGTTCATAGTTTTTCAGAATACACCGTTGTAACTGTGACCGTTAATGCTTA +>XM_020573339.1 Polysphondylium pallidum PN500 hypothetical protein partial mRNA +ATGAATAAATCTATAATATTGTTTTTATCTTTTCTAATAAATATAATTGTTGTTGTTAATGGCCAATGGCATATTGAATTCGAATATTCAGCTGCTGGATGTGGTGGAGTTCTGAATAGAGCCTCATCATTTTTGAATAATATGTGTTATAATTACGATAATGGTGGTCCATATTCACATAGATACATTGTATCTGGATCTACAACACTCCGTCAAATATTCAGTAGTACTGACTGTTCAGGAGCTCCAACTACACAAGCTACTTTCGCTGGAAATACATGTTATGATAATTTAATGAAATATGCAATAGTAAATGAACCTGCTATTTCGCCAGGTGGTTGGATTTCATTAGAACGTACTCCTGGAAATGCTTTATCTGGTTGTGGAGTTTATGAAAGTGAAAGACATATTTTTAGATTGGCTACTTGTGTCAAGACCTATGATCTTCCTAATTTTCCTTTCAATACTTATTTTAGTAGTGGTTCGGTTGGCCATGTTTACAATTTAGTGTGTCCCAATACTCTTTTCAACTTCCAACCGTGTAGTAGTGATCCCCAAAGAATTACATCAATATTAACACCAACCATTTCCTATTCAATAACCAATCCAACTCTTATCAATTCCAATACAATTCTTTTAAATCCTTTTACCAGCAACTTTAAATATACATACAAATTCCTTACTGAATATTTTAACCCCAACACCGGAAGTTTTGTCGTTGCATGCAATCAATATTCATCACTGGCATGTCAATTCTCTGTTCCAGCTGGAATTCCTTACACCTATGTTAGAGTTAGAGCTAACGGTGATGAATCATTAACTGCTGCTCCTATTTATACATCACCTAATTTTAATTTACCAATGCCACCTGTTATGAATGCAATTAATTCAATCATTACCACTACAAAATCTGTACAATTTTCATATTCTGCTACCAATTCCCCAACTTCCTATACTGTCAATGTGAATAGTGTTCCTCGTCCTGAATGTTCTGGTTTAACTACTTGTAAAATAAGTGGATTGACACCAGGTTCTCCCTATTCTATTTCTGTCTCTGCTACAAATGGTTATGGAACATCAACTCCTGTTTCTGCACCCGCTGGTAATCTTTATGCCAGTATCAAAATTCAAACGATAACTGCAACTCCATCTGCTGGTCAAATAGTGGTAGACTATACTTCTTTAAATGGTATCCCAGGTCAAACCACTTACACAACCACATTAAATAATTATCCAGGTGGTTGCACAGGTATTTACACACTCCGATGTATAATTAGTAATCTACCAGCACAATTTTCTACAACTGTAACTGTAGTTGCTACTAACGATGGTGATTCAAATAGCGATGTAAGAAGTATTGACTTTTTGGCACCAGCCATGAATCCAATTGTAATGTCCTCAGTCAAAACAAAATCTATTACTTTCACATACTCAGCATCGAGAACACCTACTTCTTATACTGTTTTGGTTAATAATATTGCACACCCAGAATGCTCGGCAACCACTACTTGTATAGTCAGTGGCTTAACATCTGGTTCCCTCTTTTCAATTTCCATAACTGCTACCAATGTAGCCGGTACCTCTCCTGCCACACAAACTAGTGGAACTTTATATCCAGATGTTGTTGCTCCAACTGTAACATTAACTCCATCAACTAGTACCATAGTTGTTGACTATGAGTCTTTGGGTGGTATAACTGGTCAAACTCTATACACTACAAAACTTGATAATACACCAGTATCTACTTGTACCAATATTGCTGCTTTAAGATGTACTATTACCGGACTTCCAGGTCAATTTGCAAATGACGTGACTGTTGTAGCAATTAATGATGGTCTTTCACAACAAACCACTCAAAGAGTTGAGTTCTTAGCACCTGTTGTTAATCCAATTACAATAGTTGAAAAGAAAACCAAGTCTATTACCTTCTCCTATTCTGCTTCTCGTTCACCAACTTCATATGATGTCAGTGTAAATGGACTTTCCAATCCACAATGCTCTTCGAAAACCACCTGCACATTTACTGGTTTAACAGCAGGTTCATCATATACTATTCAAGTAACTGCTACTAATGGTGCTGGTATTTCTCTACCAATTACATCAACAGGAATTCTTTATCCATCAGTTGATAATTTATTCTTGATGTCTACACCAACTTGGAATAGAATGTTAGTGGAATACAATTCAACAGGTGGTTTCCCAAATAACACTGTTTATACTACACAAATCGATGGAGTCAATGTACCTGGTTGTATTCAAATTGCTTCATTGGAATGCCAAATCAATGGTTTAAAGGCACAATATTCACATAATATTACCGTTTTGGCTTTCAATGATGGTGATACCATTCAATCATCTTTAAATGTTACTTTTAATGATATGGTTCCTATTACATCATCTCAATTTATTCATGTTGAATCAACTCAAAATACAATCAATGTCAAATGGAGTGCTTCAACTGGAGGTGTACCTGGTTTAACTGTCTATGATTTGTCTTTATCAATTGATAATTCATCATGGATAGTAGAGTTTAAAAATATTACCATCACTGAAGCTACCATTTCAGACTTAATTCCATCGGTCAACTATTACTTAAGAGTATCAGTGAAGAATTCAGATAATCCACCAATTCATACCTATACTAATACTCAAACCTTGGGACTTGGAGCAGAGGATTGTAAATGTACCAATGGTATCTGTGATGCCAGTTTTAAATTCTGTTTATGCAATGCTGGCTGGACAGGTTCACGATGCGAATTTAAGCACGATGTCGTTGAAGGTGAGATGAAACCACCAACTATAACACCAAACCCCACTAGACCTGAGGTAATTATCGACAATGGTGATTCCCAATACACTTTCAAAATAAGTACAATCATTGAAAGAAGTGAACTATTAGAAGAGATCTCTAGAATGGACCTTTCAAGCTTGAACTGGGATCTCCAATCAAATCTTAGTACTATTATTAAACATCCCAATAGTTTAATGAATGTTTCAATGAACCAATGGATTTACTCGGCTAAAATCCAGAAAGCCGAAGATTTAATTATCAAGTTCACTCAAATCAACCCGATATCCAATGAATCAACTCCTACCTTCCCAATGGAATTTGCTGGTGAATCGTTCAATTTGACAATTGGTTCACTTAAATATCAAATTGAAGTTAAGAAATGGGATTTTACAACCAAACTTAACCACTTGGAAATTCAATCGACTGTTGAATCTAAACTTGATGACTGTGTTAACCCAGAATCTCAATTTTCAGATGGTACCGGAATTTCAGATATTGCAATTCGTCAACCTTCTGGTTATTTCTTATTTGGCAGAGTCTCCAAGAGAATTCTTCTTGATAAAATCCCTAGAATGTCTACCATTAAATATAATCAAGTAAATGTTTCAACTGCCACTATTTCAACATTGGTTAGCCATTTCCAAGATAGTTTGGTTGTAGATCCAGATTTCTCTGTACTTTTAGATCTAGATAGAAAATCAGATGTTAAGTGTGGTGGAGAAAAGAAAACCAATGCTGCTGTTATTGCAGGATCCGTCGTTGGTGCAGTTGTTGGAGTAAGTTTAATCACAGCCAGTGTAATCTTAATCAAGAAAAAGAAGATTGCACAGAGATACAATAATTATTTGACTCAAAAGTTGAAACCAAAGATGATGGCAGACAAAAACAACAATTTGATGTACCTCTTAACCGATCTAGGTGTCTCTAATTCACTATAG +>XM_030616062.1 PREDICTED: Syzygium oleosum uncharacterized protein At1g24485-like (LOC115689878), mRNA +ATGGCAGTCCAGATGTTCTTGTTGATGCTTCTCTTCATTGAAGTATCTCTTTCTCAAGCATCACTGTTGAGAATTGATTGTGGGTCTCAAACTGGGTATGAGGCCAAAGATGGCAGCTACTGGAGCACCGACGATGAATTTGTCAAGGTCGGCAACGACATGCCGATCTCAGCCGGTAGTTTCTCCAAGTGGACCCAACTCAACACTCTTCGAGTCTTCACAAAAGAGAAAAAAGTTTGCTACAAATTGCCTGCGCAACCGTCGGTCCGATACATGAGCAGAGCGACATTTTATTACGGCAACTACGACGGCCTTTCGAAACCACCAACTTTTGACTTGGAGTTTGACGAGAATAATAGGAAAACTGTTGTCACCTCAAATACAGATCCGCAAATTTATGAATTGATTTACACATCGGGTGCGGACGACATTAAGGTGTGCTTGATTCGAACATCGGATGCTCAGTTCCCATTCATCAATGCGCTGGAATTGTGGCCATTAGATGATAATATGTACGATGGTATGACCCGAGACATGGCTTGGCTCAGCAATTACCGCTACGACTATGGTGCAGTGGCGGACACTGTCGATGATTGGATTTTAGGGTACCCTACTGATTCGGCCAACAGAATATGGGTGCCAACAACTCCATCCGACCTGAATCAGACGAAAGCCTCCGCAACTTACTTCTACGACAACGGCGATAACAACGTGCCCAACGTTGTCATGTCCCAAATGGTCGAGGCGCCAAATTTAACGTACCCAATCAGCTTAAGCTTCAGCATCAACGACGGGATCAATCTAGTTCACTACGTGACCGCGTATTTCACCGAGACCCATTCACTAAACGAGAACGAAAGCAGGTCGTTCGAATTCAACGCGAACAACAAGTTCGTCTCGACCATGAACCCGAGGTACGAGTACTGCACGTCGGTGTGGGCATTCGTGCAGTCGAACGGTACTCTAAATGTTCAGCTGCGCGCAAGCGGGAATTCGACGCTGCCTCCTTTGATCAGCGCCATTGAAGTGTACACGGGCCAAGCCGTACATTATCCTAAGACAAGTAAGTGGAAGGAAGTCGGCGGCGGCGGCGGCGGCGTGCTCTTTCTCATTTTGATTGGCTGTGGGTACTATTTGTGCTCTAAATCGAGGAACGACGGTAGACCAAACGGCGGTGGACCAAACAACGGTGTTATAGAAGAAGCCCCACCTCGGCGCCGTTTTTGGTGGAGAAGAACTCGCTACGTTGAGGAGGAGGTTGTTGAAGCTCACGCGTAG +>XM_031145784.1 Lachnellula hyalina Eukaryotic translation initiation factor (SPBC4B4.04), partial mRNA +ATGGCAGAGCCTACGCAGTTTGCATACAGGACACAGAAGACGGTGGGCATCGTGGATGCAGCGCCCGTCTATGAGCCCTTGAGCGGGTTCCAGAGACCGGATGTTGCCTCTCGCTGCTGCACGTACTCGCCGTGCGGGCGGTACTTTGCCTGGGTCAGTAACGAGGCAGTCACTGTAGTCGATGCCTCCGTCGGACACGTCATCACCACTCTCTCCATACCCAACGTGTACGAATTGGGTTTCTCGCCGCGGGGCTCATATCTCATCACATGGGAGCGGCCGTCCAAGGATGAGAATGGGGATGCCGTGAAGAATCTAAAGGTCTGGCGCACGGTGGAGGACATTGCAGAGGGCGCGGAGAAGCAGGTTGTAGGGCGGTTCGTGCAGAAGTCGCAAACGGGGTGGAACTTGCAGTACACTTTCGATGAGAAGTACTGCGCCCGCGCTGTCACCAATGAGGTGCAGTTCTACGAGAGTGACAACTTGGGGTCGGTCTGGAACAAGCTGCGCGCCGAGGGCGTTACAGATTTTGCTATTTCACCTGGCAACAACCAAGCTGTTGCCGTCTTCATCCCAGAGCGCAAAGGTCAACCTGCTACCGTCAAGGTTTTCAACGTCCCTCAATTCGCCAGCCCGGTTTCACAAAAGAATTTCTTTAAGGGCGACAAGGTCACGTTGAAGTGGAACCAGCTGGGTACAACCCTTATTGTTCTTGCACAAACCGAAGTCGACAAGACGGGCAAGAGTTATTACGGAGAAACTACACTATATGTGCTGAGTGCAAATGGTGGATTTGATTCGAGAATTACTCTGGACAAGGAAGGCCCAATTCATGATGTATCGTGGTCCCCTAATTCGAAAGAGTTTGGAGTGGTCTACGGATACATGCCAGCCAAGACAACCATCTTCAACCAAAGAGCTGTTGCAACGCATACGTTCGATCTCAGGCCCAGAAACACAATCTTGTTTTCCCCCACCGGTCGATTTGTTTTGGTTGCTGGTTTTGGTAACCTTGCAGGGCAGATGGATATCTATGATCTCGAAAAGGATTACAAGAAGATCTGCACTATCGAGGGTGGCAATCCAAGTGTCTGCGAGTGGAGTCCAGACAGCAAATTCATCCTGACTGCCACTACTAGTCCCCGTCTTCGTGTTGAAAATGGAGTTCGGTTGTGGCATGTTGGAGGAGGTATTATGTACAATGAAGATATGGTGGAGTTGTATCACGTTACCTGGAGACCTCAATCACTGGACAAGCTTACGGCTGGGGATCCTTTGCATCCAGTCCCGACTCCTCATGCATCGGCTCTAGCGTATCTAGGTACTGTCAAGACGCCTTCCAAGCCTGCGGGCGCTTACCGGCCACCTGGAGCTCGCGGAACCTTAACACCATCGCATTACAAGCGTGAAGACGAAGGAGGGGCCGCACATGTTGTTAGTAACGGCACTCAGCTGGTAGGATCCAACGGATTTGGCAGAGGTAAACGACAAATCCCGGGAGCGGAAGCAGTGGAAAATCTGCCACCTGGAGCGGATCCTAGCAAACCAGTCCCAGGAGGTGCCGAGGGAGATGAGAATCTCTCCAAAGCAGCTTTAAAGAATAAGAAGAAGCGAGAAGCAAAGAAAGCCAAGGAGGCAGAAGCCAAGGCCCAGGGCCTAGTCCCTTCGCCCGATGGAGGAAATGCCGCTCCCCCCGATGTCCGCAGCCCTGAACGCAGAGATAGGCGCGACCATCAACGTAGCCGATCCAAGGGAAACCAAGACATACGCACCCCATCTCAGCAACGATTCCGCAGCAATACCCAGCAAGGCAAACAGCCACAGTATCGTCAGCAGAACGGCGGAGCTCCCACGGGAAATATGAACAACCTCTCTATCAATTCCACCCCACAGCCGCCAAAGCCGGTGCCTGCGCCTGAGCTCTCTGTCACATCACCTAATGGTGGCAGCCCAGATGCGAAGAAATTACGAGGACTGCAGAAGAAGATCCGCGCGATTGAGGATTTGGAAATGAGGCTCGCAGGAGGTGAGAAGTTGGAAGATACTCAGCTTAAAAAGATTGGCACGAAGTCTCAGGTGCAGGGAGAGCTTTTTGCTTTGGACCGTGAAAGTTAG +>XR_007275131.1 PREDICTED: Beta vulgaris subsp. vulgaris uncharacterized LOC125498264 (LOC125498264), ncRNA +AAGATGATCTCGGGGGTCGTCCTGGGAGCATTGTGCAGAATTATGCAACAAAGGGTGGTTCCGAATTTTTTTTCATAGTGAACATACAGGTCCCTGGATAAAAAACGTACAATTTAGCACTGTACTATATGACGAGTAATCTGGAAGATGCACCTCTGCTGCAGAATTTCGTTGACAGAGACGATGCTTACAGAAATTCAAGGTTCAAACTTATTCTATACATATCTAAGGTCGGTAACATTCTGGTCTGAGGCTTGGGAATTATGCTATCTTGTCCCTCTTATGAAATCGATAGCTCGTATTGAGCATGCATTGGAATGCTTTAAAGGATTATTTCCTGGACATACAATATGTTTTCCAACTGCCTTCTCATATTTGAAGTTGCAATCACACAAATTTATTGGCCAACATTAAA +>XM_022542561.1 Aspergillus glaucus CBS 516.65 hypothetical protein (ASPGLDRAFT_163897), mRNA +CCGAGCTACATGCTGGGAAGTTTGGAGCAACTCCCTCTGGAACTCATTAACATGGTGCTTATACAGCTCGAAATACAGTCACTGACAGACTTCCAACGCGTCAATAAACGAGCTATGCAAGTAGTAGACTCGATTCCACAATACAAAAAGATCATCCTCCATGCCCCTGCCTCAATCCGGGGGAGCCTCAGCATCAGCACTGGCAGTTTGTTTTCTTGTCAGGAACTGTACGAGAAGCTCTGTACGGCGGAGTGCGACAGCTGCGGTGACTTGGGTGGATACCTGTACTTGGTTACATGCCGCCGCATTTGTTTTCTCTGCTTCACCAAGAAGACCGAGTACCTCCCACTACTACAGGCGGACACGATACGGAAGTTTAGACTTCGCCGTGAGGATATAGCAACTTTACCTTCTATGAATAGTGTCCCCGGCCGCTATTCACCACGAGAGATCAAATGCCGTACTCAGCTTACCTTAATCGATCATGACGCTGCGCGACAAGCTGGAATTACTGTGCACGGGAACATCAATGCAATGGAGCAATATGCCTTGGAAATGACATCTAAAAAACTGGAGCAATACCAGTCTCGAAAATCAATACACATAGCAGATTGCCCGAATCTGCGTCGACCCAGATCTGAAGACATTTTTGATGGGCATTCACCTAATCTCAAACGCTTCTTGGGAATTATCCGTGCGCCATTTCTTAATGCTCGTACAGGGTCTCTGGAATGGGTCTTCCATTGTGCCGCATGCAAACCCCATCATTATAACAGACCGCTCCATTGGCGCCGAAGGTATACAAGGAAGAGTTTCGAAGATCATATTAGGGAGTGTGGAGAGATTATACATGGGAAGCACAACCAACGCGTGAGATGAAAAGAATAAGCAATGAGGATACGAAATATAATGGAAGGCAATTGCCCTGTGTCAGGTGATAGAAGATAACCGTCGGTAGAAATAAAAGAAACCAAC +>XM_031654791.1 PREDICTED: Papio anubis FA complementation group C (FANCC), transcript variant X2, mRNA +GCACCGCTCACACGTGTGCGCGCGCAGCCCCGCCGCCGAGCCACCGCGGGAAAATTCCAAAACCCTCAAAACAAAAAGCCAATCCGAGGCAAAGCCAAATTTTCAAGCCACAGGTCCCGGGCGGTGGCTTCCTTTCCGCCGCTGCCCAAACTGCTGAAGCAGCTCCCGCGAGGACCACCCGATTTAATGTGTGCCCAGCATTTCCTTCAGTGCTGGACAGGCTGCTGTGAAGGGACATCACCTTTTCCCTTTTTCCAAGATGGCTCAAGAGTCAGTAGATCTTTCTTGTGATTATCAGTTTTGGATGCAGAAGCTTTCTGTGTGGGATCAGGCTTCCACTTTGGGAACCCAGCAAGACACCTGTGTTCACCTGGCTCGGTTCCAGGAGTTCCTGAGGAAGATGTATGAAGCCTTGAAAGAGATGGATTCTAATACAATTTTTGAAAGATTCCCCACAATTGATCAACTGTTGGCAAAAGCTTGTTGGAATCCTTTTATTTTAGCATACGATGAAAGCCAAAAAATTCTAATATGGTGCTTATGTTGTCTAATTAACAAAGAACCACAGAATTCTAGACAATCAAAACTTAACTCCTGGGTACAGGGTGTATTATCTCATATACTTTCAGCACTCAGATTTGATAAAGAAGTTGCTCTTTTCACTCAGGGTCTTGGATATGCCCCTATAGATTACTATCCCGGTCTGCTTAAAAATATGGTTTTATCATTAGCGTCTGAACTCAGAGAGAATCATCTTAATGGATTTAACACTCAAAGGCGTGCTTTATCATCATTCTCTTACCACCAAGATGGTTTTAGATCTAAAATTCATGTGTTTTTGAGTCCATCATCTAAGTTGTTAACAAAAAGACACATTTACCGTGAGTTAATGACTCCCGAGCGATTGGCGTCCCTGTCACGAGTCTGTGTCCCACTTATTACCCTGCCAGATGTTGACCCCCTGGTGGAGGCTTTGCTCGTCTGTCACGGACATGAACCTCAGGAAATCCTCCAGCCAGAGTTCTTTGAGGCTGTAAACGAGGCCATTTTGCTGAAGAAGATTTCTCTCCCCATGTCGGCTGTAGTCTGCCTCTGGCTTCGGCACCTTCCCAGCCTTGAAAAAGCAATGCTGCATCTTTTTGAAAAGCTAATCTCCAGTGAGAGAAATTGTCTGCGAAGGATCGAATGCTTTATAAAAGATTCATCGCTGCCTCAAGCAGCCTGCCACCCTGCCATATTCCGGGTTGTTGATGAGATGTTCAGGTGTGCACTCCTGGAAACCGATGGGGCCCCGGAAATCATAGCCACTATTCAAGTGTTTATGCAGTGCTTCCTAGAAGCTCTGGAGAAAGAAAACAAGCAGCTGCGGTTTGCACTCAAGACCTACTTTCCTTATACTTCTCCATCTCTTGCCATGGTGCTGCTGCAAGACCCTCAAGATGTCCCTCGGGGATGCTGGCTGCAGACACTGAAGCACATTTCCGAACTGCTCAGAGAAGCGGTTGAAGACCAGACTCATGGGTCCCGCGGAGGTCCCTTGGAGAGCTGGTTCCTGTTCATTCACTTCGGAGGATGGGCTGAGATGGTGGCTGAGCAGCTCCTGAGGTCCGCAGCCGAACCCCCCGCAGCCCTGCTGTGGCTCTTGGCCTTTTACTACAGCCCCCATGATGGGAGGCAGCAGAGAGCACAGACCATGGTCCAGGTGAAGGCTGTGCTGGGCCACCTCCTGGCGATGTCCAGAAGCAGCAGCCTCTCAGCCCGGGACCTGCAGACAGCAGCAGGACAGGACACAGAAACAGACCCCAGAGCTCCTGCACAACAGCTCATCAGGCACCTTCTCCTCAACTTCGTGCTCTGGGCTCCTGGAGGCCACACGATCGCCCGGGATGTCATCACCCTGATGGCTCACACTGCCGAGATAACTCACGAGATCATTGGCTTTCTTGACCAGACCTTGTACAGATGGGATCGTCTCGGCATTGAAAGCCCTAGATCAGGAAAACTGGCCCGAGAGCTCCTTAAAGAGCTGCGAACTCAAGTCTAGAAGGCACGCAGGCCGTGTGGGTGCCCAGCATGAGGGATCAGGCTCGCCAGGGTCACAGGACAGATGATGACCTATGGCCACGCATTTGTGGAGTAAGTAAGTGCCCTCTTTGGGCTGTGAGAATGAGCCATACACGTCTTGGGAAGATCTGCTAGTATCTATTTTAAAAAATGCAGAGCCAGGTCCCTCAGCCCAGACTCAGTTGGACATGTTCACCAATGACTTGAGTGAGCCTTCAGCGCTCCTGGTGCCCGCCCGGCCAGACTGTCAGCTAGAGAATTACTAAAGCAAAGGCTTGGGTGGGAGAACAGGTTTCTAGTTTTTACCCAAGTCTAGATGCACATCTATTATTTAAAGATTCAAAGCCTTAGAACCAAGAATTTGGTGATGAACCATTGAAGAATTTAGAGAGAACTCAGCTCTTTTTAGACTCTCTTCAGGAGTCAGGGATCTGGGATACAGCCACGCTGTCGTGCTGTACGGAGAAATCTCCACGGGGAGTCAGCGTCCCTCAGGCTTCCCTTGCGTCTCCCTGGACCTGCCCGATAGACCACAGGAGCAGACAGAGCACACCCAAGCCTGCGTCTCCTGCACACGCTTTCCACTCTATTTGCTAAACGCTGACTGCCACCAAAGAGCTCCTGGGACATGAGAGGGGCCGGCAGGTGAAGGTGGAGGACGTGTTGCAGAAACATTCAAAGGCAGGATTCGTATCAGTTAGTTCTCTTGTTAAACGGAGATGGGAATTGGAAATTCCTGATAAAGAACTGACGTGGCTGGGCGCGGTGGCTCACACCTGTGATCCCAGCACTTTGGGAGGCCGAGGCAGGGGGATCCCTCCAGCCCAGGAGCTCCAGACTGGCCTGGACAACATGGCGAAACTCCATCTCTACTAAAAATACAAAAATTATTGGGGTGCCGTGGTGGGCACCTATAATCCCAGCTATTGGGGAGGCTGAGGCATGAGGATCCCTTGAACCCGGGAGGCAGGAGTTGTAGTGAGCCGAGATCATGCCATTGCACTCCAGCCTGGGCAACAGAGTGAGACCTGTCTTTAAAAAAAAAAAAGGCATTGTTGGTGTAATCTCAAAGTTAACGTTTATTTCACGTCAGCAGAGGATGCTTTTTCCTGTCAGAGACATTCTGGAATTGTACCGATTGTACATTCTTTTGTGCCTATTCTGTTTGTCAAGTGAGTCAAGACTTGCTTTTGTCCATTTTGATGTACGTGTGTTAGTCGGAGTCTTGGCTCCGTTTTGAGGCATGAGCAAAGTTTCACTGGATTAGAGGTTAACCTTTAGGGAAATTCCTTTTCTTGGTATGTGGCAATGCTAATAAAGCCACCTGAAGATCTGGAAAATTCCAGGAACTTTTCACCTGAGCTTTTCTTCTGAGAAATGCTGCAGTCAGAAGGGTGTGCTGGTAAAATATTTTGGTGGCAGCTGCCATCGTGATCATTGCTTTCATATAAGACGCTCTGTGCCATCATGATCCTTACCCTCATAAAACAAACACACTTCGTCAGAGGCGTCGGGGTTGAAAAAGGAGCTGCTTCACTGGAGTTGAGGGCCTCTCTCCTGTTCTGACTTTGAGCCAGAACTTGTGGCTGGCCCTGGAAGCTGACTCCACTGTGGACACGGTGGCAGCAGGGAGCCCCTAGAGGGAGGGTCACTGGGACCAGGCCTTCTGTCATCAAGGGGATTCTGGGACAGTCCCTCACCCTGTCCTGTGGTCCTGTTCACGGGGCTGGCCTTTCCCTCCTCCCCGGCCAGGCCTCTGACCATGCCCCTTCCGTCTTCTCCACTGGGGACTGGTGAAGCTGGGCGTCTGGAAGACTTCCTGGCCTGGAAGCCCTGAGCTCGGCCTGTCTGTAGAATCTCCCAGTTCCTTCACAGCTGCCGAGTCCTCTTGTGGGCGCGGTGGAAGCGGCTTTCCGGGCAGCCAGGGGTTCCCGGATAGGACTGTCCCTCTGGGGATGTGGCACCGAAGTGCCTGCTGGCTTCATGTGGCCCTTTGCCCTTTCCCGGCCTGAGAGACGCTCAAAGGTGGAGAGCCAGGGGAGCCACCCCTCGGCTGGTCCCTCCACCTCTGGGACAGGTGGCAGCCGGGCAGGTGAGGGCATGTGAGGGCCGCGGCTTCGCTCCTAAGCCCACGTCCTCCTCCTGTTGCCATCGATTTTTGGCAAAGTCTGGGCAGGTGCCACCGGGAAGGAATGGCGTCCGAGATGCTGGGCACGGCATGGTGCGGCCGAGGGGGCCTTGACATCGCTGGCGGGGCCTGGGCACAGGGGCAGCCACAGGGAGGCAGGGATGCCAAGGCCTGGAGCCACCGTGGAAGGAACTGCTCGAGGTCTGCAGAGGTGCCACAGGGCCCAGAATCTGACCTTACCTGACCTCTTCTAGACTCTCCCTGATAGTTTTTGATGAAGCATGTTGGTAAAACCACTACCCTCAGAGAAAGCCAAAAATACAGATGAGGCGGAGCTCGCCCCTCCAACCTGGCTGTTACTCACCTGGACTCCACGACATCTGTGGAATTCGTAAGCTCTTTAAAATCTGTAACTTGTTGTCTATTTTTTCATTCTAAATAAAACTTCAATTTGCACCTAA +>XM_047252959.1 PREDICTED: Schistocerca piceifrons cuticle protein 79-like (LOC124777512), mRNA +CGTTTCGCTTGGTGAGAATCTGGATGGTATATAAGGAAACGGCTGCGCTAAGAACTCTGTCAGTCATTCGTTGCCCATCTACCACCATCGCAAGAGCAACAATGAGGATCACGGTGTGCGCAGTTTTGCTGGCGGTGTGCTGCCTTTCTGCCGCGGAAGAGAAAGCGCGTGCCAAGACGGAGAAGCGAGGCCTGCTGGGGCTCGGCTATGGTGGCTTCGGCGGCGGCTACGGGGGCGGGTACGGCTACGGAGGCGGCTACGGGGGCGGGTACGGCTACGGTGGCGGGTACGGCTTTGGGGGCGGCTATGGGGAGGTCAAGGCCGTCACCATCACCAAGGAGGTGCCGGTGCCGGTACCGCAGCCGTACCCGGTGCCGGTGGAGAGGAGCGTGCCGTACCCGGTCAGCGTGCCCGTGAAGGTGCCCGTGGACAGGCCGTACCCCGTGCACGTGCCGCAGCCGTACCCCGTGCCCGTGGAGAAGCCGGTGCCGTTCCCCGTGAGCGTGCCCGAGGCCGTGCCCGTGGCCGTACCTCACCCCGTGCTCGTCAAGCAGCCCGTGCCCGTCGTCGTCAAGGACGTCGGCTTCGGCGGAGGCTACGGGGGATTCGGAGGCGGGTACTCCAGCTTCGGTGGCTTCGGGGGTTACCACCACTAAACGTCATCCGTGCCGTCGCAGCCACTCATCTGACAGCCATCTTCACAGCAGGACTGCCCAACCACCTATTTCCATTCGTATGTTTCCATTTTGTTAGATCGAGATCTCTATGTACCAAAAATTTGCAGATTACTGTTGATTTCAATAAAATATTGCAATAAAATT +>XM_046236555.1 Lentinula edodes uncharacterized protein (C8R40DRAFT_884233), mRNA +GGAACTTTCAAGTTATCAGACCTTCGATCTCGGTCCGTGATTACAGACAGATACATTCCAACCCCAATTTTCACTGCTTTTGTCTTATCACAACATTCATGAGTGGTGTTCAAAAGACTGCCATCGTCACTGGTGCCTCTTCAGGCATTGGACGATACACTGCTATTGCCCTCCTGAATGAGGGATGGAACGTTGTTGTCACTGCTCGGAGATTAGAGGCCCTTCAAGAAACACAGGAAATGTCTTCAAATGCTGAAAGCTGTCTTTGCGTGGCTGGTGATATTACCGATGAAACCTTTGCGATAAATCTCTTCGAGCAGGCAATTGCTAAATTTGGGCGACTGGATCTTTTGTTCAATAATGCTGGAATATCGTCCGCCCAGGTTCCAATTGAAGATGTCTCCTTCGACACGTTCCAAAATGTTCTGAACATCAACTTGGTAGCGCCTTTTATCTGCACTCGGGAAGCAGTCAAAAAATTTAAAGCTCAAACTCCCCCTGGAGGTCGCATCATCAATAATGGTTCCTTGTCAGCCCATGTACCGCGTCCGCACTCTTATGCATATACGATGTCAAAGCATGCGATGAACGGTCTCACCAAGTGTACTTCTCTCGACGGACGCGCATTTAACATTGCCTGTACCCAAATCGATATAGGAAATGCGGCTACAGATATGGGAGGACGGCATGGATTAGGTGCATTACAGCCAGACGGACGCATAATTCAAGAAGGCGTGCTTAATGTCCAACATGTCGCCAGCACGATCGTGCATATAGCCAGTCTTCCGCCTGATGTTACTGTTCTCCACGTCAACATCATGCCCACCAACGTCCCATATGTTGGACGAGGTTAATAGAGTCGAAGCGTAGGATTCAATATCATTCCGACTTATACAGAGTTTTCCTTCTATTTCCCCTTACAAGGTTCATATAAGTACATAGGCCTCGTGAAATAATTTGTCCGTATCCGACAAGCCTCTGATTA +>XM_053458426.1 PREDICTED: Spea bombifrons corin, serine peptidase (LOC128482252), mRNA +TGTTCATCTTCAGCACGTGGAAGCTGAGTGGAGCCGCGATCCCTGCGAGGGGAGAATGTGAGCGAGGAATCGCGCAGGGAAAGTGTTTGGGAGAGAGCCGGGCATGTCAGCCCACTGAGCATGCTATCAATGCAACAGTTTGCTTCCCTGCCTCCGGAAGACAGCTACCGGCCGGTCATCTGCGCTGACAGGGTCTTTGGAGCAGATGAAGATAATATGGGGGATGGCTGTTCTCAGAAGCCGGCATCTGCCAAGTACCTCCGTCTCTTGCTGCTAATACTCATCCCATGCATCTGCGCTTTCATTCTTTTGCTGGTTGTTCTGCTCACATTTGTTGGTGTGATAGACAGACACTGTTTTGACTTTAATAGGAGTGATCCGCTAACCAGCAGTATTGGAATCGGATCTCCTGACATTCCATTCATAAAGATGGATGACAATGCATCAGAAGGGACATTAATGAAAGGCTGGGAACCCCATCCCGCACTCTGGAATACTTCTGCTGTTGTAGCTGACCAAAGCTCTACCAACTTTAGTGAAATAAAAGACACTCCCCAGCAGGATCCCTTATACCCCTTTCCTTATACCACAGTAGATTATAAACGCTCAAGAAATAACGTGACACTGACCAAAGAGCATGACGCCAACCTATTGGAAAGCACGGGCGTTTGGACCACGCCATTGCTGAGTGACGCCACCATGTCTCCGACTGTGGAACCAATTGGGCCTCAATTTGTAGTCAGGGAAGATGCCTGTGTGAACATCTCATACAGCCAATGCCAAATGCTGCCATACAATAACACCGTCTCAAAATCAGTGTATTCGTTCGTCAAGAGCATTGAAATGGAAATGTTTCTCAAGTTCTTCAGCTATCTCAACCGCCTCAGCTGCTATCAGCACATCATGCTTTTTGGCTGCAGCCTGGCTCTCCCGGAATGCATCAGTCATGGCGATGACAGTTATACTCTCCTGCCGTGCAGATCATTCTGTGAGGCTGCGCAAGAAGGTTGTGAACCAGTGCTTGAGATGGTGAATTCTTCCTGGCCAGAGTTCCTGAGATGCTCCCAGTTTCGGAACAAAACAGACAATAACAACACAAGCCGAGTGTGTTATTCTCCGCAGCAAGAGAAAGGAAAGCAATCGCTTTGTGGAGAACATGACAGCTTTCTGTGTAACAATGGAATCTGCATACCTAGACAGTTGATGTGCAATGGATACAATGACTGTGATGACTGGAGCGACGAGGTACATTGCAACTGCAGTGATCATCAGTTCCGGTGCAATACAGGGAAATGCCTTAACCACAGCCTTGTATGTGATGGGTACGATGACTGTGGAGATCTAAGTGACGAGCAGAGTTGTGATTGTAATCCATTACATAGCTACCAGTGTGGAGATGGACGATGCATAACTTTAAGATGGGTCTGTGATGGTGACCATGACTGTGTAGACAAGTCTGATGAAGTCAACTGCTCATGTCATAGTCAGGGTCTCACCGAGTGCAGGAATGGGCAGTGCATTCCTAGTGCCTTCCGCTGTGATGGAGACAGTGATTGTAAAGATGGCAGCGATGAGGAGAACTGCACTGTAAGTAAGGGACAGGTATGCCAAGAAGGAGATCCAAAGTGTATTTCTCAAGCCTGTTCAGGAGCATGTGCCAATGATCCCAACTGTGGAACGCCTCACAACAAGACAAACTGCAGTCAGTGTGAACCAATAACCTTAGAGCTGTGTATGAACCTACCCTACAACTATACCCATTTCCCAAACTATCTTGGTCACAGAACTCAGAAAGAGGCTTCCATAAGCTGGGAATCATCTCTGTTCCCAGCCCTTGTTCAAACAAATTGTTACAAATATCTCATGTATTTTGCATGTACCATTCTAGTACCAAAGTGCGAACCGGAGACCAGTCAGCGGATACCACCATGCAGGTCACTTTGTAAACATGCCAAAGAGCGATGTGAATCTGTGCTTGGTATTGTGGGATTACAGTGGCCAGAGGATACAGACTGTACCCAGTTCCCAGATGAAAAATTAGACAACCAAACATGCCTTATGCCTGATGAGGATGTAGAAGAATGCTCCCCTAGCCATTTCAAGTGCCGTTCTGGACGCTGCATCTTGGCTTCCAGAAGATGTGATGGAGAAGCAGATTGTGAAGATGATAGTGATGAGGAAAATTGTGGATGTACTGAGAGAGGTCTTTGGGAATGCCCAGTGAACAAGATGTGCATCAAACATTCAATGATATGTGATGGATTCCCAGATTGTCCTGATGAACTGGAAGAGAAGAATTGCTCATCCTGCACAAACGATGAGTTAGAATGTGCCAACCATGAGTGTGTATCTCGTGATCGCTGGTGTGATGGCGTGGTGGATTGCAAAGACAGCTCAGATGAATGGAACTGCGTTACTCTGTCTAAAGGTGTGAGGTCCCTCCTAACCATTCACAGGTCTGCATCTGACCATCACGTATGTGCCGATGCTTGGGATGATGAGCTTACTCACTGGGTCTGCAAGCAGATGGGTTTAGGCGGCCCATCAGTGGCAGAATTTGCCCAAGAAGCTGATCATTTGGAACATAATAAAATGCTGCATCTAATTAAAGACTGGAAAAAGAAAAATGGATCTACATTTCACGAGCTGCTCATGAAAGGGCAGACTTGTGAAAGCAGAGCTAAAGTATCTCTGACATGTACCAGAGAAGATTGTGGACATCGTCCAGCCGCCCGAATGAGCAAGAGAATTCTTGGTGGCAGGACGAGCCGACCAGGACGTTGGCCTTGGCAGTGTTCTCTCCAGAGTGATCCCAGTGGACACATCTGCGGCTGTGTTCTCATTGGGAAAAAATGGGTGTTAACGGTAGCTCACTGCTTCGAAGGAAGAGAAAATGCTGCCGTATGGAAGGTTGTATTTGGTATAAACAACTTGGATCACCCATCTGATTTCATGCAGACTCGCCTTGTGAAGACTATTATTCTCCATCCACGGTATAACAGAGCAGTGGTGGACTACGACATTAGTATTGTGGAACTGGATGAGGACATTGTGGAGACTAGCTATGTGAGGCCAGTTTGCCTCCCAACTAAGGGCCAGTTGGTCGAACCAGATACGTATTGTTACATCACTGGATGGGGACATATGGGCAACAAAATGCCATTTAAGTTGCAAGAGGGAGAAGTTCGGATTATTTCCTTGGAACGCTGTCAGTCTTATTTTGACTTGAAAACCATAACATCCAGGATGCTGTGTGCTGGGTATGAGTCCGGGACAATAGATTCCTGCATGGGAGATAGTGGCGGTCCCCTTGTCTGTGAACAAGAAGGAGGACAGTGGACGTTATATGGACTGACTTCTTGGGGATCTGTATGTTTTTCCAAAGTTATGGGACCTGGAGTTTATAGCAATGTTTCCCACTTTATTGACTGGATTGAAAGACAGATATACATTCACAGCTTCTTAATCAACTAAAGACGTATATATATATGAATAAAATACACATATTTAAAGGCAAACAGCAAAAATTGCCTTAACCACCAAGGAGGTTTTAATGAGTGGAAATCCTTGCCCTGGGTATTAATGAAAATGATATCTATATATTTTTGTTCTAAACGTTAGGTGTTTTAGTCTAAAGCTTTTTGACTTTTTGTACATATCTGTTCACGGTTATGTTTTGCTGTGTAATCATTTCTTAATGAACACAGACTTTCAAAAAAATGTAACATTTGTTGTTTGTTTTATATGCGGGCATTGAGTGGGTGATACCGGGCTTGGGTTTGCCAGGAGTCATTTACAGGGACTGACAATTGTAAATTACCACACATGGGACAGGTTACATTTGTAGCATAATACACTAAATTCTGATTTCAGCTACCGAGACAGGTAGGTAAAGCTCACGTTAGCTTTGAGATGTCTTAAATACCAATAGAGATGCCAGTTCATTAACTTTACTGGATATTAAGCTTACGGACTACAATGGTCCCTGTAATGTTTCCATAGACTTCAAAACATCACAGTCTGACCGCCTAGTTTATTCACCCATGTTTGATTGCTCAGGTTTAGAGGGGTTACACATGCATTTACTATAATGAACATGTAATTTGGTAACAACAGACCCCACAATGCAGTCTACAGATCAACTGTTACTACTACATGATGATTGTTTCTTTAATAAAA +>XM_051514774.1 Durotheca rogersii uncharacterized protein (GGS23DRAFT_536457), mRNA +CAGCTAGGCACGTGAAGTCTGCCTCTCTTTTAAACCCACGACGAAACGCCAATTCTCCCTTCGCACCCGCCGTCTTGGCTCCTCGGGCCCCGCAGTGCAGCGTCAACGAACACTCAGCCAAATCGTTCCTCCCACCCCGCCATCGCCATGGGTGAGCCAGTCAAGACCCCCGTGGTCGCGGAGGCCCATCTGGTCGACACCTACCATCCCCCCCACAAGATGCTTGAGAAGCATCCAAGCAAACCTCATCTGAATGGCCTCGAAGATTACCAGCGGCTGTACAAGGAGTCCATCACCGAGCCGGAGAAGTTCTTTGCGAGAAATGCTAGGGAGCTGTTAACTTGGCAGCGGGACTTCCAGACCGTCCGAACCGGGACTCTGACCGACGGGAATGTTGCATGGTTCGTTGAGGGCCAGCTCAATGCCTCCTACAATCTCGTCGACCGGCACGCCTTCAAGGACCCGAACAAGGTCGCCGTTATCTACGAGGGCGACGAGCCTAACCAAGGCCGAAATCTGACCTACGGCGAGCTCCTTCGCGAGGTAAGCCGGGTCGCCTATGTCTTGAAGAAGATGGGCGTCCGAAAGGGCGATACCGTCGCGATTTACCTACCCATGATTCCGGAGGCCATTGTCGCTCTCCTGGCCATTAGCCGTATCGGCGCTATCCACTCCGTCGTCTTCGCCGGCTTCTCCGCCGATTCCCTGCGCGACCGTGTCATCGATGCTCAATCCAAGGTCGTCATCACCACGGACGAGGGGAAGCGAGGTGGCAAGTTGATCGGCACCAAGAAGATCGTGGACGACGCGCTCAAGCAATGCCCCGATGTCACCGGCGTGCTCGTCTTCAAGCGCACTGGCGCCGACATCCCCTGGACGCCGGGTCGCGACCTGTGGTGGCACGAGGAGGTCGAGAAGTGGCCGACATACATTGCGCCCGAAGTCATGAACTCCGAGGATCCCCTCTTCCTGCTGTATACCTCGGGCTCGACCGGGAAACCCAAGGGCGTTATGCACACTACCGGCGGATACCTGCTCGGCGCCGCGCTAACCGGTAAATACGTGTTCGACATTCACGACGGAGATCGGTACTTCTGCGGCGGCGATGTCGGCTGGATTACCGGCCACACGTACGTCGTCTACGCGCCCCTTCTCCTAGGCATATCCACGGTGGTCTTTGAGGGCACTCCGGCCTACCCGAACTTTTCACGTTACTGGGAGATCATTGCGAAGCACGAGGTCACGCAGTTCTACGTGGCGCCGACGGCGTTACGGTTGTTGAAACGCGCCGGCGACGACTTCGTCAATGCCGACATGCCGAAGCTGAGGGTTTTGGGATCGGTGGGTGAGCCTATCGCCGCCGAGGTTTGGAAGTGGTATTTTGAAGTTGTTGGCAAGGAGGAATCGCAGATTGTCGACACGTACTGGCAAACCGAGACTGGCTCGAACGTAATAACGCCCCTGGCCGGCGTAACCCCCACGAAGCCGGGCAGTGCCTCGCTGCCTTTCTTCGGAATAGAACCAGCCATCATCGACCCCATTTCCGGCGAGGAAATCTACGGAAATGACGTTGAAGGTGTGCTGGCGTTTAAGCAGCCGTGGCCTAGCATGGCTCGGACTGTCTGGGGTGCCCACAGGAGATATTTAGATACATACCTGAATGTGTATCCGGGCTACTACTTTACCGGCGACGGAGCTGGCCGTGATCACGAAGGATTCTATTGGATCCGAGGGCGAGTCGATGATGTCGTCAACGTTAGCGGGCATCGTCTGTCGACTGCCGAGATTGAGGCGGCCCTCATCGAGCACCATTCGGTAGCCGAAGCCGCCGTCGTCGGCGTCACCGACGAGTTGACCGGCCAAGCCGTCAACGCGTTCGTGGCCATCAAGAACGGGAACGAAGCCTCGGACGCCTTGAGGAAGGAATTCATTCTGCAAGTGCGGAAGAGCATCGGACCGTTTGCCGCCCCCAAGGCGGTGTACATCGTACCCGACTTGCCAAAGACCCGGAGCGGAAAGATTATGCGCCGTATCTTGAGGAAGATTCTGGCCGGCGAGGAGGACCAGCTCGGTGACGTATCAACGTTATCGGACCCGTCGGTGGTTGAGAAGATTATTGCTACCGTTCACGAAGCTCGGAAGAAGTAATGGTTGGATACGGATATAAGTGGGTAGGTAGGCGGCTCGATTGGAGAACACCTGACAGGGCCTTGGATCGCAAATGCGGGGAAGGGTCCCAAGACATCGGATAAGTTGGAGAATTATGAGTATAGTATGCTATTTGACGGCAACATTGTGGTTTGGCACAGCCACAGAGCGGAGGAAGACGGTACGCCACCGGCTCAGCAGCTAGTGGCGCGCGCCCTTTGGTGTGGAGGCTTTGAGGAATCGCTCGGCCAAGGGTGGGATAGTTGCGCTGATATGGACGGCGTGTTTTTTATTGATTTGTCAGCTTTAGAGCCACCTTATATCAGCTTGATTGTACATTCCTATAACGCGGCGGCTTTAACGCCGAGGGTGATCAAACAGGTCGTGGTTTGCCGTTGGT +>XM_037547025.1 PREDICTED: Pygocentrus nattereri leucine rich repeat transmembrane neuronal 4 like 1 (lrrtm4l1), transcript variant X2, mRNA +AAAGGAGCCAGTGCATCCTGGTGGTGCATGGTGCAATCATTGCATTGCTGTCCCAAACCCTTGGAGGAGAACGACAGGCTCTCTGAAGCTCAGGTGTGGGTGGCAGGAAATTTAAGGTGCTATGGTTTGTGCTACGAGATTAGCATGCCTCCTCCCTCTCCTTGTCTCCACTCTTCTGTTGCTCTGCTCTGGGGAGAAAACATGTCCCTACAACTGCCGCTGTGAGGGTAAAATCGTCCATTGCGATTCAGCGTCTTTCATGGATGTGCCAGAGAACATTTCAGTAACTTGCCAAGGTTTGTCCCTGCGCAACAATGACCTGCACACAATGCTCCCATACCAGTTTGCCCACCTTAACCAGCTCCTCTGGCTGTATCTGGATCACAATCAGATCTCATTTGTAGACAGTCGTGCTTTCCAGGGCATACGACGGCTTAAGGAGTTGATCCTGAGCACCAACAGGATTTCACAACTCCATAATTCCACCTTTCATGGAGTGCCTAATCTCCGCAGCCTGGACCTCTCCTACAACAAACTTCAGGAACTGCAACCGGGTCAGTTCCATGGTCTTCGCAAACTCCAGAATCTGCACCTACGCTCCAACGGGCTCACAACAATTCCTGTCCGGGCATTTATTGAGTGCAGAAGCTTGGAGTTTCTTGACCTAGGGTATAACCGACTACGTGTCCTCACACGCACTGCATTTCTGGGTTTGTCTAGGCTGATGGAGCTGCATCTGGAACACAATCAGTTCTCTCGGATCAACTTCTTTCTCTTTCCACGCCTCGCAAACCTGCGTGGTCTGTATCTCCAGTGGAATCGTATTCGGGCAGTGAACCAAGGCCTCCCATGGATTTGGTATACCCTGCAGAAGCTTGACCTGTCTGGCAATGAGATCCAGACTCTGGATCCTGTTGTATTTCAATGCCTACCAAACCTACAGGTTCTTAACTTGGAGTCTAACAAGTTAGCCAATGTATCTCATGAGACTGTAGCAGCCTGGATTTCCCTGACTACAATCAGCCTTGCAGGAAACATGTGGGACTGTGGGCCAGGCATTTGCCCTCTTGTTGCCTGGCTAAGGAATTTCCGAGGAACTAAAGATACAAGCATCATTTGCAGCAGCCCCAAAAATCTTCAAGGGGAAAAGGTTATGGAGGCAACAAGAAATTACATAGACTGTGAAGATTTCGAAATCATTCCACAAACACCATTTCCTCACCACACTCTGGAACCAACTATGGAAACTACTTCTGCACCACCCTTACCTCCCACTACTCCCCCACCACCCCTGCCTCCACCTGCCTCTGAGGCACCCATCCCACCACCCCTAGCTCAACCCCTTCCTCATCCTACTATCTACAACCTTGCTGAGACTCATCCTAGAAACAGCCCTCCACAGACACCTCCACCTTCCAACAGCCTGCTCGTCACTCCATCCCCAGAACAAGAGAACTTGGCATTCCATAAAGTTGTGGTGGGGGCTGTGGTGCTTTTCTTCTCAACATCACTCGTCTTGACAGTGATCTATGTGTCCTGCAGACGGTACCCTGGTGCCACCAGGTTGTTGCAACAGCGTTCAGTCATGGGACGAAAGCGCCGGAAAAAGAGTCCCGAGCCAGAGCAGAACCTGAGCTCCCAACTGCAGGAATATTACATGAGCTACAATCCTGCCGCCACACCAGAAGCCATGGATGTGCTGGCCAATGGGACTGGTACTTGCACCTGTACCATTTCCGGCTCCAGGGAATGCGAGAATGAATACACGTGTCCCAGGCCACTCCCTGGAGCCTGGATCGGCGACATCCCCACCATTCACTAGGAATGTTTTCTCCACCAATGAGATTTCAATAGGCAACAGGGTTCCAGCCTACAGCCTCTGCATCCATCACTCTACGGCCTACGCTGCCATTTTTTTTCTTTTCCCTGTCATTTATGGAACGTTATCCACCATGGACATGTGAAGGGACATCTAAAAAGACAGCAGGAACGCCTCCATCACGCATTTTACTAACACGCACGTCACACTTCTTCAAGACGCCTCACTTTATCCACTCTCTTTTTTGCCTAGACAGCTCTTTCTCTAGATCTAAGCCTGACTAGGCCTTTGGTCGAGTTGAACATACAGGAACAGGATGAACTATTCTATTCTACGAACAAAGCCACTGTAACAGCAATGAGAGTGCATGGGAAGATATCTCCTGGACTTTAAGGAATATCCTCAGCATCAGAGCGTATGGATTTTCCATATGACAAAACATCATCCATCAGACAACCATTGACTGCCAGTCAACTGATACATTAAGCCTATTGCTGGACTTAACTTATTTGGTCACACTTTATGTGAGGGCTACCTACATATGGACCTTATAACACACTGATAAGCATTGAATAACATGTTTATAAAGTAATGTTTGAGTATTTATAAACAGCTGATATGAGTAATCACAGAATGTGTAGGCACTGTGTTGACATAAGAGGTCTTAAACCAATATAATGGATGTTTTTTTTTCATTTGTATCATTCCCACATAATGGATCTTAAATGCCAAGACCACTGTTTATGAGTTTTAAATATTTCTTCTTGAAGTCCAATTGTACAATTTCTATAAAGGAAAACCAGTATGGCTGCAGATACTAACTCCTTAAAGTAGAATTTTTCATTCAAATAAAATAGCATAATAAATCAAAGTGCTTTTACTCATAGTAAACTGCATTTAAGCAAGCAAGCAAAGTTTATTTATATAAAGCTTTTTACAACAGATGTTGTCACAAAGCAGCTTTACAGAGCAATCAGTATTATAGAAAGAAAAGAAAAGAAAATCCGGGACCAAGCCCCCATGAG +>XM_023033177.1 PREDICTED: Olea europaea var. sylvestris ferredoxin, root R-B2 (LOC111404360), mRNA +ATGAACATAGGATTTGAGAGAGATTTGTGTTTGCTGTTTGAGATTTGGATCAACGATGGTGGTGGTTCGCGGTGGCGGCGAGTGGTGATGGAAAGGAACGGATCCTACATCCATGCTTACAAGGTACTAATTGAATATGAAGGTAAAACAACTGAACTAGAGGTTGAGCCAGACGAGACAATTCTGTCGAAGACACTGGAAAGTGATTTGCCAGTGCCATATGACTGTNAATGCATGACATGCCCGGCTCAANGAATGGACGACCAAAGTGATGGGATGCTTAGTGAGGATGTTGAGGAGAGAGGTTATGCTTTATTGTGTNATTGTCACATTAGAATCATACCCGAGGAAGAATTGCTCTCTCTGCAGCTAGTTACTTCCAATGACTAATAAATCTGTTGGTTGTTAAAATTTTCAGTTTTGAGGCACTGCTAATTGTTACTGTTTTTCTGCATTAAATCTATAAGAGGAATGTGCAAAGTGAGATTCTGAAGGCAAAGGTTAACGATACCTTGTATTTACTTGCTGGAATTTCTATTGTTTGAAGAATATTTAGGCTTCCACGTTTAGATTTCTCTAAAAGCGTTCTCTCTGACAACCAAGAATGATAAAATCATTCGCATTCAGTCTAAAATTTAAGCACAAGAAGATTTAGTTGGAAACACCTGCTACCATTAAACAAAGTTCTTCATAGATAAAAGTAGCAAAATAGGACATGTATTGAATAAATGCATTGTGCGTGGCTGGTATCTATCTATTATTACGGGTTCAATACTACTTCTCAGAGTTGAATGTAGACATATAAGGTCATATAACAAATTTTGGAAGTATGGTCAAATGTTAATGAACAGTAATTCATCCATGCGTGTATAACAGTAATTGGACACAATGTGAGTTCAGAGGTGACTAACAATTAAAAAGTAGACACTTCTCCATATCCATGTGGAAGTATGCTAACAAAGCATTCAACACTTATGTTCAGTGAATAAATATGATCGTATCAAAAATGTACTCACTGACTCCATTTGATGTTGATGCAGACAGCAAGCACTTCAGAGTAGCTCCCGCAAGTGATAAATAAACTCGGTCTTCTTCAAAATTTAGATCCTAGGACATTATCAGAGCCCATAAATCCAGTATAGCATATGGCTAACCACATTTTGTATCTCAATGAAGGCCATAACACGCAGTATTACTGCTGAGTTCTCAGGGCAAGGCTCTGGATTTTCTCTGCTCAAGTTTCAACTTCACATCAATTCCATTTATCAATTATGGACTTGAGTACAATCTGAAGCTTCCCTTCCAATTTCTCCCCTTTCCTTGGAGTATAAACCACATTATGGATATCATCAGCCAAGGCCCTCTGAGCCAACAATTCCCCAACCGCAGCACAAGCATTTCTATTCTTAGTCGAACCCATGGCCTTGGAAATAGAATGCACCACAACCAGAGGTTTGCTAGAATTTCAGATCAAAAGAATGCTCTTTCATTCAATATTCATTGAGACTCGTTTGTTGACAGCCTATTGCACAGCATTGTGTTTGAACCTTGTGAAAAGCGAGGAAACTCATCTAATCCTTACTTCCCCATCTGTTTCTCTGGATCTTGAACAGGTTTCCTAGGTAATCCCCAGCTCCGTAGATTGTTCTTTTGCACAGGGCCAATTCTTGGTATTCCTTCACTTTCCCCTTCATATAAAAAATTACAGTATCCGAAACCAAAAGTTCATGATGCATATTTCTCTTAACTGGTGGTTTTCTGGTCACGACGGTTACAGTTAAAGTTCCATTAAAGAGCATTTCCACATGGTAGAACCTTCTCAAGGAATATAAGGTTTTCAATAGGCTGATCTTGAAGCTGCCCAGTCAACACAATTAAAAGCAGAGTACACAGCACGTGCAACAAACCCAGCCGTTCTTTGCTTACAATGGTAAGTACCTCATTATAGATTCTTTGGTCGACTATAAATGCTTCACAGCCTTGTTAAATATTTGGATTTTTATACTTGGTTCTAGCTACCAGAAAAAGGACTTCGAAACGAAGACTTTAATATTATTGGTCGCATCATAATACGCATAATATGAGTTTACAATCTCCACCTGAATGTAAATGATTGAAAGGAGAATGCTACCAATCAGGACAAATTTGACCTTAAAGAGGATAAACAAAACTTCTACTTCAGATTCTTTCATA +>XM_017942333.1 PREDICTED: Habropoda laboriosa cyclin-T (LOC108578915), transcript variant X2, mRNA +ACAAGTATGAGTTTGGAGTGGAGTTTCCGGTTAGCGTAGTGACGTGAAGTTTTCAACGTGTTGCTGTTGTGCGTTGTGCGCCCGCCGCCACTATCGCGACCGCCGTGAAGTGCGCATCGTTAGTACCGAGTTGTGTGTACATATAAATGGCGGCTGACGAAAAATGGTACTTTACGAAAGAACAGCTTATAAACACGCCGAGCAGAAGATGCGGCATCGACGCGGATAAGGAACTGAGCTACCGACAGCAGGCAGCGAATTTCATTCAGGATATGGGACAGCGGCTCGTGGTGACACAATTATGTATCAACACAGCAATAGTGTACATGCACAGGTTCTATGTATTCCACTCGCTGTCACATTTCCACAGGAACGCAATTGCAGCAGCAGCACTATTTTTAGCAGCAAAAGTAGAAGAACAACCGCGCAAGTTAGAACATGTTATCAAAATGGCACATATGTGTCTCCACAGAGATCAGCCCCCACCTGATGTCAGGTCTGAGCAATACCTTGAACAAGCTCAGGATCTGGTTTTCAATGAAAATGTCCTACTACAAACTTTGGGGTTTGATGTCGCCATTGATCATCCCCACACACATGTTGTTAGGTGTTGTCAACTGGTTAAAGCGAGCAAGGACTTAGCCCAGACTTCATACTTCATGGCATCTAACAGTTTGCATTTGACAACCATGTGTCTGCAGTACAAGCCAACCGTAGTTGCCTGTTTTTGCATACATCTTGCGTGCAAATGGTCCAACTGGGAGATACCACAAAGTACTGAAGGGAAGCACTGGTTCTGGTACGTCGATAAAAGCGTAACGTCTGAACTTTTACAAGAGCTTACAGCAGAATTCCTCCATATATTTGATAAGTGCCCGTCAAGATTGAAACGAAAAATAATGAGCATATCCGCCAATCAAAGTCCAAGCATTAATCATCCTAGTTTACCGAATTCACCCTTTGATGCGGAACCTCGCAAGGTACAATCTCCTGCGACGACGGCCGACGGTGGACCTACATTCCATTCGAATCGACCTCATCAGATGGAGAAGCAAGAAGAGAAGAAGCAAATTGCACCAGCATCCTCAAGACCCCCTGTCGATTATCGGGAGTATAGAGAGAAGAAGGAACGCGAGCGTTTGGAAAGGGAAAAGGCGTCGGTTACAACGACAGTTGCCCAGAGTCATGTGTCAGATATTAATAAGCATCATTCGCATCACCACAAACTCGTATCTAGTACAAATGTGCTAAACAAACATCCACTGCCCCCTGGACAGAAGGCGCTTCACCACAATCATCACCACAGACCAGATATAAAGGTTGGACAACCAGTACCTCAGAGGCACTCAAGTAGCGCTCAAGCTAGGGAACCAAATCGCGATCCCAATAGGCAGAGGTTACAAAGAGAGTACAATTCGAATACTGGTACAAGTAGCAGTAGTAGTAGTAGTGCTCTTCATTCTCATAGTCACGCGGTATCGAAGGAGTCAAGTTTGGATAATTCATTGACGGATTCCGCCACTCACAGATCGGATGTCGGAGCATTGCAAGAGCCAACGTCCCATGGAAGTATACAGGAGAAACTTAGTAATAATAACCATAGTGTGCACAGATTAAGTGCAGTAGAAAGCAAATACCAGGGTCATGACAAACGAATGTATGATCCGAGGCATAAACCTGTTGAACATAGGAAAGATAGTGAACAAAAGCCATACAAATATCCCGATCCAACAAGAGAATATCGACAAAAAAAGTCTGATACGTTAGAGCAGAGGTGTGAAGAGGTGAGGAAGCTTATCGAGAAGCCATTACCTCCGCCCAAGCCTCCACTCGACGTACCGTACGCTTCGAATACACAGAAGCCACCACATCATACGAAATACAATCAATCGGAGAAACTACAGGCTAGCAGTGGCGCAGTTTCTACCGACGTGAAACTTCCCACTGGCCAGAGTTCGTTTTCACAGGAAAAATCACCAACCAGTTCCAGTTCGACCTCGTTGCTTACACAGAAGTCGTTAACCTCGAAGACGGTGTCCAGTCAGCACACAGCTCACGGTGTGTCCCAAATAATAAAGGATACGATTAAAAATGGTAGTTCTCAGTCGTCGAGTTTGTCATCTTTGAACAATCTCGACGATCAAAAAACTGAAAAGCGACCACGGCACGATGACATAGAGAAAAATTCGTCTGACATGCAGCAAAGTGTGTTACAGACACCTCCTAACAAGCCGAAATCGCTATTCAGTCCAGAGAAAGTACCAACGCCTCGCGAATCTCATTCGCAGAGGCCTAAGACTAAGCAAAAGACGCCGCCTTCGGCTGCAAAAGTTCCTAAACAAGAACGCGTACCAGATACGTCGATAGGCTTTAATTTAGTATCGCCGTTCGCGAGCCCGCCAGGCTTGCAACAGCAAGAAACACAAACAGTTAAACGATTGGCCAGTGATGTTTCCACAACATCCTCTCACAAAAGGCATCGTACAGGCAGCACCACCACCGAAGTAGGACAACAGGTTCAAAAAGTGAAAATAGACGATACTTCGAGTTTCGAGGCTGCTAAGATGCTCGGTAGGGTACCAGAACTGATACAACCTATCAGAGATAATCCATCGGCAAATGGTAGAGCCACTCAGATCGCGAACGACATGAAACCACCGGAACTCATCAGACCGTTCGACTCTGAGCCAACGATATCACGCTTCGGTACAGTGTCTACACAGCAACAAGTTTCGTCGAATCAACAAGGTCTGACCAATGGTCTGGACAACAATTTAGTGAAGCAAGATTCTCAGGAGTTTCTAATTAAGAAGGAGCCTACGTACAAGACGGACTTGTCAATGAAAGTAGAACACTCCCAAGCTAAAGGCGAATATTTGTCGCCAATGAAATCCGCTCAAAGTATAAGTGCTCTGCTTCAAGAGCCTTTAGCACCAATGCCATCGTTGTTGCAGAACATGCAGCAATTTAGTCAAATACCGTCGCAGCAAGTTCACCAGGATCAATTCCAGCAACAGCAGTTACAACAGCTTCAGCAACAGCAATCATCGCAACAACAACACCAGCCATCTATATCACACTCGATGCTACTCACACATCAAGAACCCGTTCAAACTCAATGCATGTCTTTGTCATCGGTCAGCGAGCCTGTTATAGCGTCGACCGTTGACATAAGCGCTCTCTCTATTCCCATACAGACCAGTACAGAATCCATACTATCTGTACCAACGTCGACAACCATAACCGTTCCACCTCCCGCAGAAGAAAAGAGATCGGAGCATCACAAGAGCGAGAAGAAGAAGAAGAAAGAGAAGCATAAACACAAGGACAAGGATAAGAGCAAAGAGAAGCACAAGCACAAGCATAAAGACAAGGACAAGGAGAAGCACCGGGAAAAGGACAAAGAGAAGGGCGATGAGACTGTACCTGCGGTACCTATTAAAATCACTATTCCTAAGGACAAATTGAATCTGAGCACAGAATCGACAAGTAGCACCGGCGGAAGTACAATTCCACCGGATAAGAACAAATCACCCCAGAATACAAGCATCAAGATCATTATCCCGAAGGAACGGTTAAAAGGTACCGACAGTGTGTCAAGTTCACCGGCTCAGTCGATGGTCCAGGCACCGTTGAAGATCAAAATCCGTACGGATGGAATCTCAAGGAGTTCAGGTGCTCCGTCGACGACGAGCAGTACGAGCAGTAGCATCGTGCCGGAGTTCACGAACGAGAGTCGTAAACGTGACCGTTCGGAGATAAAGGAGAGCCCAACTACCAGTGTTCCACCAACGAAGAAGCAATCGCAGGTCTCGTCGGCGGGTTACGGACAGCATCGGCCTGGAGAACGGCAGAACGGCAGACACTATAGTTCAGGCAGCAATAACAAGGAGAAACACACGTCTAGCCACCACAAAAGTTCCAGCAAGCTATCGCAGTCACAGCAGTCTCACACGTCGTAG +>XR_004353595.1 PREDICTED: Danaus plexippus plexippus uncharacterized LOC116771400 (LOC116771400), transcript variant X1, ncRNA +TCCTCAATACCCTCACCGGGTAATGCACGGCTCTCAATTAAACTCTAATTTGTTAATAATTAATACATAATGTTTATTGGGCATACTAAAATCTGCTCTAGACATGCAATATAGACAATTATAGGGGAGCGGTAGACTGGCCACATCTCAAATTCTGAACGTACTCCGCTCACATGGACTGCATCGTAATATTGACCCGCGTTACACGCACTGGAATTCGTCCTCATTTACCGCCCACTTGGAATTATTGAGGCGAGAAATGGATGATGTCTCTAACTTGAAAATATCAAAGTTAGAAGAGTCAAAAGACGGGTTGCCGAAACCAGAAACGATTGAAGATTTTGAAAGAACGAGCAATTGGAGTCCTGAAATAATTAATTTATAAAAGAAAAATTTTGCTTCCTTCGAATATTTTTGATTACTTTTAAGAACTTGATGAAATACACACAGAGATGGAATTCATAACGAATTTCCTTATTATAAGAGCTTTTATTTAGTTTCCAAAGCAAAATACACTTTTCAACATACTATGCAGATAACTGGCTATTGAAATAAACATTCAGTTCGCGAGCATACATTGTAGTTCAAACAAGCGACATATGG +>XM_004253934.1 Entamoeba invadens IP1 hypothetical protein (EIN_093680) mRNA, complete cds +ATGATGAGAATCAAAGATGCATTGATCAATACTGGAGGAAACACATCAAATATAAATAAAATGATTGAAGATGTTAATATTGCTCTTCAAGCAATATCCATTGAATTAACAATTCAACAACCTGCAATAAATGAGCCACACTTTGTTTCACAACAAATCTGTGAACAAAATCCAAACATCATGATAAACACTTACAACGATAATGGTATCAATGATGAGCACAACGATTCATCTTATCCAGATAGAACAGCACAACCCAACACTGCTACGCCCCCTATGATAGACACAACACAAACACCAATAGGTGTTGTTGATCAAACACCATTTGATCTTGAAACAAACTTAGATAAGAAACAGACCACTTTTGGTGATATCATGGGTCATTATGACCTTGTTTATGGAAACGATCCAATTGATGGCAGCCTGGAAACTGAGCACAGTGGAGGCGAAGATGAAGCTCATGAAAATGAAGAATATGAAGGAAGTGAATGCAATGAATGTAACGAAATAGAAGACACACGAGTCCATGAAATAATGAGTCAAGCATCCGGGATATGGCAACAGTTGTCTTCTTCGCTTATTAAGTCACACGCATCAAAAAAACCTCCCGGAAAATATCGAGGTTGCAGATGA +>XM_004439747.2 PREDICTED: Ceratotherium simum simum succinate dehydrogenase complex assembly factor 1 (LOC101397205), mRNA +CGGATAGCCGGAGGCGGGAGGCGGGAGGCGGGAGGCGGAGGCGGGGGCGCGCGGGGCGGAAGTGCCTGCTGCCTGGCTGCTGGCGTCTGGCGCCGGGCGGCCGCGCCGCGGTTGGTGGGGCCTGCGCTGCGTGCGACCGCGGCCCCGCCGGCACCATGAGCCGGCCCAGCCGGCTGCAGAGGCAGGTCCTGAGCCTGTACCGCGAGCTGCTGCGCGCCGGGCGCGGGAAGCCGGGCGCCGAGGCGCGGGTGCGGGCCGAGTTCCGGCAGCACGCCTGCCTGCCGCGCTCCGACGTCCTGCGCATCGAGTACCTGTACCGCCGCGGGCGGCGCCAGCTCCAGCTGCTGCGCTCCGGCCACGCCACGGCCCTGGGTGCCTTCGTGCGCCCGCGGGGCCCGACCGAGGAGCCCCGCGGCGCGGGGGCCCCGGGGACCCCGCCTGAAGATGGTGACGGCCCGAGAAGCCCGCCCGACGGCATGGGGTCACCAGAGACCTCGCGCGATGGACGGTGACAGGCAGAAGAGCTCACTCGATGGTGCAGGGAAGACGGGGGGCCAGCCTAACTGCGTGGGGGGACCAGGGAGCCCGCCTGATGAAAGGCGAGAGGTCTTGAGAGACTAGCTCGATGG +>XM_013238176.1 PREDICTED: Biomphalaria glabrata uncharacterized LOC106077421 (LOC106077421), partial mRNA +AGAAATTCTATATTTGGTCAACATGCTTCTAATTAATTCTTCAATATGCTTATTATTGATACTTCTTCTGCTTATGTTTTTGTACAATTCCTAAGGAAGAAAGAAACTGATACAAGGCTTCAGAATGGATACGCTTCATTTGACAACAGTGGGAAGACAACTGACAGTGTCAAACTATCAACTGGAGAAAAAACACCCTTACTGAACAGAAGATCCAATGTAAGGACATCATTAGCCGACGAAACTGCCAGAACTAGTGCTAGTGAGAAAGAAAAGGATAATGAGGACCATCTAGTTCAAGCTTCATTATTTAAGGTGTTGGTGAAGACTTATGGGATAGAATTACTTAATGCTCAAGTCTGCAAGTTTGTTTATGACTTGCTTCAATTTGTTAGCCCTCTGTTACTTAG +>XM_016498712.1 PREDICTED: Sinocyclocheilus anshuiensis protein FAM150B-like (LOC107697862), transcript variant X1, mRNA +GTCTGAGAGCCCCAATAAATTGACGAGAATCGACGGCGAATGTCTCGAGGCGTTGAAGACGCGCGCGCACAGCGTCCTCAGGAGCTTTGACTGGAGTTTTCTCAAGTCTCGGAAACATCAGAAGGAAGTCTGACCACTATAACTTCCCACGCTTGAGCACATTAAAGAACGATTCGCTTTAAAGGGTAGCGCTCTCTCTCTTTCCCAGCGCGTTCTGCGAGCCTCGCGTGGGGTTAAATAGGCACCGGACGCTCAGTCGCCTCAGGCTGTGTCGACTGAGGGAAAGAAACGCGGCGACACAAGCGCCCTCAGACTGCGTGATCCAGGACTTGGGCAGTTCGGGAGCGATGCGCGCGCTGCGGGCTCCGGTTCTAGTAATGGGGCTCGTCATGTTAATCTGCACTACTGCACAAAGCGACGCCAGCGCGAACAAGGTCGAGAAAACGTTCAGACGGATAACGGACATCATGAGACTGGCGGAAAACAGCGTTGACGACGCGAGCGTGCCAAAGGACACTCATCGTCTCAAAACGGAAACCGGGGAAACAATTTTAAAAATCTTTCCCAGAGACCTCAGAAAGAAAGAGAAGGTTATCAAAGTCTTAACAGGTCCTCTTTATTTCAGTCCAAAATGCAGGAAGGACGTCTACAGGCTTTATCATAACACCAGAGACTGCACCATCCCTGCATACTACAAAAGGTGCGCACGACTCTTGACGCGACTGGCAGGGAGTCCGAGATGTCAAGAGGGTTAACTGTACCAGATTCAGAGAGGACACATGCACTTAAAGCTTTTATGACTGAGAACACATTCTAGGATTAGATAACTTATCCAAGCTATTACAGATAAACCTGCGTGTCTTAGCAAATAGGATGTGATTTAAGCATGTAAACAAACTTAAGTCAGTGCTTTACATTTCATGGTGGGTTTTTCCCCCCCCAAAGACCACTTCAGAGGAAGCACATGTAACAAAACCTGTTTCCCAATTTTTCACAGATGCATCCAAGTGCACACATGTATGCGAACACAGCCAAGTCTGAAACAGCACTAAACTTCACTTCCTTTATCAAGCAGGTTGAAGCCAAACCAGAGTGACCCAAGGAAAAAAAAAAACAGCAGTCAAAGTGCCTTTGGACAAGAGAAGAGAATTTAAACCAACACACAACAATCCACATAATCAGCACATCTCGTCCAGAACACTGCTCTGCCTCTCTGGAGAATAGATGTGGGAAAGTATTGACAGAGAAGTAAACGGACACGGAATAATGGGATGCACTTGCCCAAGGACAGTCTGATGGACTCAACATGGAGCCAATGTTAAAACACAGGACGACAGAGAAAGAAAACAGAAAACGTATCTGGCATAGTGCGTTCTGAACCTGTCTGCCAAAAAAGAAAACCATTTTTCCATCGTTTCATCATGAAAAAGGGATAGCCATGGTTTTGCGTTTCGATATCAGATTATCGAGACTCGTCATTGCTGATGTTTCGCACGACATGCCTCGATGGGGTTACAATTCAGAGCCACGATGACAAATTGAGTTAGTTCGCGGCAACGAGAGAGCTTTGCTTTTCTCGGTGCTAGAACTGAAAATCATTAATTGCATGAACGTTTCCTTTTGCTTCTGTTTGCCAGCAGACAGGTAGATTTTTGCAGTAAATCTGTGACCAAAAGCTTTTAGTTTTTGTGTGAGACTATGAGTGTATGACTGTGGAATATATTCAATATATTTTGATATGTAAATGTTGTACAAATGAGACTTAAAAATCCCTATAACAAAACATATAAGCA +>XM_010619662.2 PREDICTED: Fukomys damarensis sorting nexin 31 (Snx31), partial mRNA +GCGCTGGGGGGTCGCTACGTGCTGTACTCCGTGTACTTGGACGGGCTCCTCTTCTGCAGGGTGCGCTACAGCCAGCTGCACCGTTGGAACCAGCAGCTCAGGCGGGTCTTTGGAAGCTGCCTGCCGCCCTTCCCACCGAAGTACTATCTGGCAATGACCACATCTATGGCAGAGGAGAGGAGGGCCCAGTTGGAACAGTATTTGCAAAACGTAACTGCAGACCCAAATGCCTTGAGGAGTGATGTCTTCATTGAGTTTCTACAGCTGGCACAGCTGAACACGTTTAACATCTCTGCTGAAAAAGCTTCTCTAGATATATTTCTGCCCAATGGAAGAAGTGTTAATATAGAAATTCTGACATCAGATACTGCTGAAAGAGTCCTAGAGGTGGTGTCACGCAAACTCGGACTGAGTTGGGAGCTCTTGGGCTACTTCGGCCTCTTTCTCATTCGGTTTTACAAGGAGGGCAGCCTGTCTGTTGTGAAAAAGTTGGCAGATTTTGAACTCCCTTATGTTAGCCTTCGAAGTTCTGAAGAGGAAAACTGTAAGGTTGGACTCCGGAAGTGGTACATGGACCCAGCCCTCGACTCTGTGCTGATGGGCTGCAGAGCGGCCGTGGAATTGCTCTACATGCAGGCAATGCAGGACATTGAGAAAGAATGGATCAAGCCCACACAGGGACAGAGGCAGGAATTAGAGGCTCTTCAGAAAGAAAACAATCAAACCAAGTTCCTGGAGCTGTGCCGGGAGGTGCAGTGCTATGGATACATGCAGCTGGATCCTTGCCGCTGTGATTCCCCAGAGCCAGGCTGTGGGGCTGTGCTCTCTGTTGGCAAAGATGAGATCTGCTGCTGCGTGACCCTGCCTGACAGCCGGACACAGGATGTCATCCTCCAGATGAGCAGCGTGAAGTGCTGGCAGGTCACTTTCCTTGGGACTCTGCTGGATATGGATGGGCCCCAGCGAACTCTCAACCAGAACTTAGAACTCAGATTTCAATACAGTGAAGATAATCACTGGCAGTGGTTTATCATTTACACCAAACAGGCATTTTTGCTGAGTAGCTGCTTGAAAAAGATGATCTCAGAAAAGATGGCAAAGCAAGCTGCTGAGAATACAGAAATGCAGATGGAAGTTCCGGGAACAAGAAAAAGTAAAACATGGCACATTCAGCAAAGCAAGCAAAAGAAGCATTCTAGTTTTCTATCAAGAAAACACAAGATCAAGAGAGCTGAAGGTGTCTGTGTGTTTGGAACCATAAAGGAAGAAGATCTTTGAAGAAAAGTCTCACCTTTGAAATGTCCCCTAAGACATCTCAAGATGGTGAAAGAGCTCGGTGGTGGGGGGTGGGCTTCCTGCTGTCAGGAAATAATTGACTTCTTCCTGTGTCTTCTAATGTTAAGATAGACTCTAGTCGTCAGGACTACCACAGCATTCTATGTACATTTCAAGAGTAAAAAATGTAAGAACTAAAGTTATAGAATTTGTTTTTACCAGCTCATCAATCACAAATTGCTGAATCAATTAAACAAATACGAACTTCACTCTCTTCCCCCCAAGAATCCATTCTTCTCTGGCTTCATGAAGTCCTCTGAATGGTCCCGTATTACGTAATGAAAGTCTTGCTCCAAAATGTTACCAGCGTTTTGGGCTCAAGTTCTAAAGACATGATTCATTAGCTAAGGAAAGCTGGGCTCTATCTAGGAAGTGGAATCACTGGGGAAGAAACCCAGACTTCTCCGACCTGTCCGCAGAGCTGCGTCAAGGAGGCGTGCAGTGCCGACTTGTTTCCTTACCTAGGTCGGAGGTACCATATGGGCAACCTCAGGGTCATATGCTGTTTTGAACATTTCTATTTGGGAAAGCAACACTGCCTTGTACTTGACATAAAATGCCTTTTAGGTCC +>XM_017738153.1 PREDICTED: Corvus brachyrhynchos solute carrier family 23 member 1 (SLC23A1), partial mRNA +GCCACCGCCCGGCCGGTGACTAAAGTCCTTCCCACGGCCATAAAACCCCCCCGAGCAGGGCCATCGCCGCCGGGGACGCGTCGCCGGAACATGGGGACCCGCTCAGGAGACCTGGCTCAGCCCCAGAATGGGAACGTGGCTCTGGCCCCCGCTGGCTCCCCGCAGACCCCTGGGAAGGAGCTGCCTGCGGCGGGCAGGCAGGACCACGGGGCGGGCACCAGGCCCCCCCGGCCGGAGATGGACATGCTCTACAGGATCGAGGATGTGCCCCCCTGGTACCTCTGCATCCTGCTCGGCTTCCAGCACTACCTGACCTGCTTCAGCGGCACCATCGCCGTCCCCTTCCTGCTGGCCGAGAGCCTGTGCGTGGGCAAGGACCAGCTCACCGTCAGCTACCTCATCGGCACCATCTTCACCTGCGTGGGCATCACCACCCTCATCCACACCACCGTGGGCATCAGGCTGCCCCTCTTCCAGGCGAGCGCGCTGGCTTTCCTTGTCCCCGCCAAGTCCATCCTGGCCCTGGAGAAGTGGCGATGCCCATCTGAAGAGCAGATCTACGGCAACTGGTCACTGCCCCTCAACACGTCCCACATCTGGCAGCCCCGCATGCGAGAGATCCAGGGGGCCATCATAGTGTCCAGCCTGGTGGAAGTGGTCATCGGGCTGCTGGGGCTCCCCGGGGCACTGCTCAGCTACATCGGGCCGCTGACCGTCACCCCCACCGTGTCCCTCATCGGACTCTCCGTCTTCCAGGCGGCTGGAGACCGGGCTGGCTCCCACTGGGGCATCTCTGTGCTAACCATCTTCCTGATTGTCCTGTTTGCCCAGTACCTGCGGCAGGTCGCCATCTGCCTGCCCGGCTACCGGCGGGGCCACGGCTTTGTCCTGCTCCGCATTCAGATCTTCAAGATGTTCCCGATCATCCTGGCCATCATGGTGGTGTGGCTCATCTGCTACGTGCTGACCCGCACCGGAGTCTTCCCCAGCCAGCCCGGGGAGTACGGGTACAAGGCCAGGACGGACGCCCGGGGCGAGATCCTGTCCGTGGCGCCCTGGTTCCGCGTCCCCTACCCCTGCCAGTGGGGGTTGCCCACGGTGACCTCAGCAGCCGTGCTGGGCATGTTCAGTGCCACACTGGCGGGCATCATCGAGTCCATCGGGGACTATTACTCCTGTGCCCGGCTGGCAGGAGCGCCCCCGCCCCCTGTGCACGCCATCAACAGGGGCATTTTCACCGAGGGCATCTCCTGCATCATCGCGGGGCTGTTGGGAACCGGCAACGGCTCCACGTCCTCCAGCCCCAACATCGGCGTCCTGGGCATCACCAAGGTACCGGGGCCGGGGAGGGTCCCGGCTCGGCCG +>XM_007330897.1 Agaricus bisporus var. burnettii JB137-S8 hypothetical protein (AGABI1DRAFT_85928), mRNA +CAACGATCGATTTGCTCATCGACACTGACATCCTCAAGACATGGCCCCCGCGAACACCAAGAAAAAGACTGGCGGCAAGACTCGCTCTGCGCTGCAAGACGTCGTCACCCGCGAATACACTGTCCACCTCCATAAACGCGTGCATGGCCGTTCCTTCAAAAAGCGTGCTCCTTGGGCCGTCAAATCCGTTGTCGACTTTGCTCAAAAAGCTATGGGCACGGCCGACGTTCGTCTCGACCCGAAGCTCAACCAGGCTGTTTGGGCCCAGGGAATCAAGTCTGTTCCTCACCGGATACGTGTAAAGCTCGAGCGAAAACGTAATGATGATGAAAACGCAAAGGAGAAACTCTACACCTACGTCTCCCATGTTCCCGTGGAATCTTTCAAGGGTCTTCAAACGACGGTCGTCGATGCAGAGTAAAAGCTTAGTTATATAGGTTCTGCCGGTCTTCTATTCGTGTTGTCGCCTTGCACCTCATGCCAGTCACATATGCATGTTCTACGTCCCCCATATGCCATGCCACCCAGGTTTTTAAAATCAAGGAACAAAAACAAAACAAACCTTTTCACATGGGTGCTTCGTGTCAATGTCATAATTCTGCGTGCAACACGCTGCCTACTTCTTTCCGGCCGTAATTCAGAAAAA +>XM_027301384.1 PREDICTED: Coffea eugenioides uncharacterized LOC113758607 (LOC113758607), mRNA +ATGGCCATCAGGCAGAGGCCCGACGAGTCCCTAAGGAATTTCATGACCCGTTTCAATACGGAGAGCTTGCAGATCAGAGACAAGGACGAAAAAGTGGTCATGGCTGCCTTCATGAATGGGCTCAGGGTGGAAGACCTCTTCTACAAGTTGGCCGAGCAGCCTCCTGAAAATCTGGAGGAGCTCCTGAAGAGGGCGCACGCGGCCGCCAATGCTGAGGAGGCGGCCTGCCTGAAGAAGGAATCAGATCGGGAGCTCGGCGATCGGAGAGGACGGACAAACCCCCCCGAGAACAAAAAGGGTCTGGCCAAGACGAACGTATTTGACCGGCTCTCAAAGGAAAAGGCCCCTGCTCCGACACCGCTCCCAGAGAAAAGCTACACCCCCCTGACTCGGCCCAGGGCCCAGATCCTGGCCGTCATGGAGGCAGAGGGCCTGGGAGGTCGGCCACCTAAGATGGGAACACCTCGGAACAAAAGAAATCAGGACCGGTACTGTGCCTTCCACCGTGATGTCGGGTATAATACGGAGGGGTGCTGGGCCCTGCAAAGGGAGATTGAGGATTTGATCCAGCGCGGCTTCCTGGGACGTTTCGTTCAGCAAGGTCGGCTAGGTCGGGAGCTAGGTCGGACCTACCGTGGAGACAGGGACGAGGGCTAG +>XM_036118028.1 PREDICTED: Halichoerus grypus purine nucleoside phosphorylase (LOC118551879), mRNA +GATTAAGTTGTTAGCCCAGCCTTGGGCAGTTGAATCTGGGTGTGTCACCATGGAGATAGGGGCCGGCTTGCGTGTTCGGCTGCCATTGGCTGGGGACGCCGGGCTGGGATAGAAGCCAGCCGCGAGTAACTGTGCAGACACTGTGCACAGCGCTCCCGGCGAGTACAGCTCAGCGCGGCGCTGCTCAGCGGACCGGATCCCAGAGGCCAAGGGCGGGCTCCTCGAGAGGGCGGAGGCGGCACCATGGAGAAGAGATTTGCGTATGATGATTATCAGAAAACGAGTGAATGGCTTCTGTGCCACACCAAGCACCGACCTCAAGTGGCAATCATCTGTGGCTCTGGGTTAGGAAATCTGGCCGATAAATTAACTGACAGCCAGAGCTTTGACTACAGCGAGATTCCAAACTTTCCCCGAAGTACAGTGCCTGGTCATGCTGGTCGACTGGTGTTTGGGTTCCTGAATGGCAGGGCCTGTGTGATGATGCAGGGCAGGTTCCACATGTATGAAGGCTACTCGATCTGGAAGGTGACATTCCCGGTGAGGGTTTTCTTCCTTATGGGCGTGGACACCCTAGTGGTCACCAATGCTGCTGGAGGACTCAACCCTGAGTTTGAGGTCGGAGATATCATGCTCATCCGTGATCACATCAACTTACCTGGCTTCAGTGGTGTGAACCCTCTCATAGGGCTCAATGACGAAAGGTTTGGACTTCGTTTTCCTGCCATGTCCGATGCCTATGACCGGGATATGCGGCAGAAGGCTCACAGGGCCTGGAAAGAGATGGGGGAGCAGAGGGAGCTGAAGGAAGGCACCTATGTGATGGTGGCAGGCCCGTCTTTTGAGACTGTGGCTGAATCTTGGCTGCTTCAGAAGCTGGGGGCAGATGCTGTTGGCATGAGCACAGTACCAGAAGTTATAGTTGCGAGGCACTGTGGCCTTCGAGTCTTTGGCTTCTCCCTCATCACTAACAAGGTCGTCTTGGATTATGAAGCCCAGGAGAAGGCCAATCATGAGGAAGTACTAGAGGCTGGGAGACAAGCAGCAAAAAAACTGGAACGCTTTGTCTCTATTCTTATGACCAGTATTCCACCCCCTGCCAAAGCCAGCTAACCAGCCCTGGAGCGGTCTGGCCTCTCCATAATGGGATCCAAGTAGCTAGCTACTACATACTTCGGCCCCTTGCTGGTGTCACGTGCCTCTGCCCTTCAGTAGGAGGAGAAGAGAGAGGAAGATCCCTATCCTTCACCTCCCCCATTTCTCCCACCAGACCCTTCTGCACTGGCTCTTTTGCTCAGTTATCTCAAAGCAGTTATCATCTCCTTCCCCCTCTCCCCGCCCCCTCCCCCGGCCAAGAGCTGGAACCCAAGCCCTGCTGTGTCTATGCCCTGGGTGTGACTTGGCTGTTGAACTTGGCACGGTAGCTACTGCTGTCCTTTTGCTGTAACGCTTTCACATTCCTGGGGACTCGGTTCTGCCTCCTCCAAAGCACTAGAGCCCACACGGGGGCTGGCCCAGTCCAATACCCCTTGGAGTTTTGTATTACCCTATTTTAAGAATAAAAAGAAAGATGAAATAATATATTTTTTGTGCAGTTTGGGATGAGGGTAGGGGCACAGGCCGAGTTTGGCATGAAAGACTGAGATCCCATGTCTTGTGTGACTATCTGCTTCTGAGACAAGCAGCTAAGAACTGATGAGGTGGTGTGTGAATGCACGGAAGGAGGAAAGATACAGATGTTAGAAGATAAAGAAAGAAGGGCTAACGACTGGCACAAGAGGGCCCCTTTCCTCAGACCAGTCTTGCCTCGGTCCTTTGCCTTCCGATTGTTTCACGCCCTGTCTGTACTCTCATGAGTATCTGAACTGCTTCGCTGGTCTCGGCTGTCCCACAGTTGCTATTTTCTTCCTAAGGCCTGATGATATTTCCTGTTGGTTTCTTTCTTCTCCCCTACTCTAACTTCTGCCGTAATTAACGGCACCCCTACATTCCTTCTCTGCATTCTGGCAATGCAGTGGCGAATACCTCTTTCTCTACTACAGTCACCCCGCTGCAGATTAGAGTCCTGCCAGGCCCAGGCAGACCTGTGAAGTTGGCTCATGCTTCGCTTCTCTTTGAGCCCCTCCTTCCGTCCTATTGCTTCATTTCTGGGTTCTAATCTTTCTCTTCACTTTTGCTTGATCAGAACCCGTCTGTGACACAGCATCCAGGCATTGCCCTTTGCTGGCTTGCTGCACTGTTCTATGCACTTATCAATTTGCATGCAGCTGGCCCGTGTGTCGCAAAACCACGCTACTCTCCCAGACCCCTTTGCCTTTTGAGAAAAGATCAAGTTGGATGAGCCACTAATAGTAGTGATATGTCAGTTGTCCATTGAAAACTTTTAAAAACCTCTGAAATCATCTTTTGTTTGATAACTGACCTACCTACCTGAGTCCAGCACAAAGAAAAAGCGTTCTGGAGTGGCCCTGTCCCCACTCTCTATCTCGTCAGTTCTTTGTACCTCCAGCAGCTCTAAAACCCTCCCTGGATCTTTAGGCGCTCTGCTAGCATTTGCCATGTGTCCATGAGAGCTGGTTTAGAGGGAAGTACTGTGTGTCCTTCAGATTATATGGACTCCAACTTGTTCGTTTAA +>XR_007407767.1 PREDICTED: Canis lupus dingo uncharacterized LOC112644623 (LOC112644623), transcript variant X13, ncRNA +ATTATGACACACTGTTACCATGGAGACCAGAAGCTACTCAGCTCCTGCGTGGGTTGATTTTCCCCCTTTCTAACCAGCTGTTATTCCATCAGAGTAAAAGATTTTTACCAGGGTTTTTATGTTCATTGACCAATTTGGTCCTGTAAGACAAGCAGTCTTGGCCTTACTATTCCAGCAGCAAAAAGAGCACTGAGGCACAGAGGGATTTGTTCAAGGTCATACAAATAATGTTCTAAAAATGATATACTGAGAAGCACTTCCAGAAAGATGCAGTAAGGATCTCAAAAAATGCATTCCTCCAGAAAAACAAGAACACTGGCAAAAATTATAGAAATCAACTTTTTCAGAACTCTGAAAATCAACTAACAGCTTGTCACAATTTAAAGAGCATTTATTCAATAGAAACTTGTTGCAAGATAGCTGGAGGTTGCTCACTATCTGGGCTCCATGAAGGAAAGATGTGGGGAGAAGAGACCTTGATCCTAACACTTGGAACTGCCAGCAATCACTCACTTATACATCTCTTGCTGTTTGTGAAAGGTCACGATCTCGGGGTCATGAAATTAAGGATTAGTAACCTTAATTCCATTTGCAACTTTAATTCACATTTGCCATGTTACATAATATATTCACAGATTCTGGGACTTAGAACTTGGACATCTTAGAGTGGCGGACACAGAGTGGCCAGAGCTAGAGTAGCCATCTTGGACAATCAGGTGAATTTGACAATGGAAATCATGCCAAGTGAGCCACAAAAAAGAAGAATCTTATTGTATTTTCCTTGAGAGAGAAATAAACTTCTATTTATTTTTAAAGATGAAGAAAATGCCTTTCTGGGATACATTTCGGCAATCTTCTGAAGAAATAAAAACTAGATGACATAATGATCAAAACAAGGAAACAAACATGGCCCAGATGCTGTGATAAATGTGTGGGATTCATCCTATATTCTTGTAGGAACATTTGTCATGGCCAACTCTAATTTAAGACCAAGAAATGCTTTCAGCTGCTTTTATCCAGTTGCTAAATCAAATAACAGTATCAGAAAGAAATTCGAGGAATTTTGAGATGACTGCAGAGCTGTTATGTAATAAAAATCCCAGTAACGA +>XM_029005051.1 Plasmodium malariae 40S ribosomal protein S18, putative (PmUG01_09035500), partial mRNA +ATGTCTTTACAAATAATCGATAACAACGATTTTCAGCATATTTTAAGAATTTTGAATACGAATGTTGATGGTAAAGAAAAAGTAACCATTGCCTTAACTGCTATTAAAGGTATTGGAAAGAGAATGGCTAGCGTAATATGCAGGCAGGCAAATGTTAACCCAACAAAAAGAGCAGGGGAATTAACAGCAGAAGAAATTAACAACATTGTTCACATTATGAATGCCCCCTCTCAATTCAAAATTCCAGACTGGTTTTTGAATAGAAGGAAAGATGTAAAAGACGGAAAGAATTTACATGTTATAGCAAATCAGCTAGATTCCTATTTACGTGAAGATTTAGAAAGAATGAAAAAAATTAGATTACACAGAGGTTTACGTCACCACTGGGGATTAAGAGTGCGCGGTCAGCACACCAAAACAACGGGAAGAAGGGGAAGAACTGTTGGTGTATCCAAAAAGAAAGGAGCGTAA +>XM_007952246.2 PREDICTED: Orycteropus afer afer chromodomain helicase DNA binding protein 3 (CHD3), mRNA +ATGGAGTGGGGGGACATCAAGGAAGAACCAAACCCAGGCCTTCTGACAGAGACATCTGAGGAGAAAGCCAGGGACCTAACCCTGCTGAAAGCAGGTCAGAGTGTGCTGAAGGAGCCACACACTATGATCTTGCAGGCAAGAAGTGAAAATGACCAGCTCAGGCTTTCTTTTCCTCTAAGGCTATGTTGCGATGACAGGAGGCTTGATAAGGATGACATTCGGCTGCTGCCTTCAGCTTTGGGTGTGAAGAAGAGAAAACGAGGACCCAAGAAACAGAAGGAGAATAAGCCAGGAAAACCCAGAAAACGCAAGAAGCTTGATAGTGAGGAAGAATTTGGCTCTGAGCGGGATGAGTATCGGGAGAAGTCAGAGAGTGGTGGCAGTGAGTATGGAACTGGACCAGGTCGGAAACGGAGACGGAAGCACCGAGAAAAAAAGGAGAAGAAGACAAAGCGGCGGAAAAAAGGGGAGGGAGATGGGGGACAAAAGCAGGTAGAACAGAAGTCATCAGCAACTCTACTTCTGACCTGGGGCCTTGAGGACGTGGAGCATGTATTCTCTGAGGAGGATTACCACACACTCACCAACTACAAAGCCTTTAGCCAGTTCATGAGGCCCCTAATTGCTAAGAAAAATCCTAAGATCCCAATGTCTAAGATGATGACCATCCTTGGGGCCAAGTGGAGAGAGTTCAGCGCCAACAACCCCTTCAAGGGGTCAGCAGCTGCTGTGGCAGCGGCCGCAGCAGCGGCAGCAGCAGCTGTAGCTGAGCAGGTGTCAGCTGCCGTCTCATCAGCCACCCCCATGGCACCTTCCGGACCCCCCACCCTTCCACCACCCCCTACTGCTGATATCCAGCCCCCACCTATCCGAAGAGCCAAAACCAAAGAGGGCAAAGGTCCAGGCCATAAGAGGCGGAGTAAGAGCCCCCGCGTGCCTGATGGACGTAAGAAGCTCCGGGGAAAGAAGATGGCACCTCTCAAAATTAAACTAGGGCTGCTGGGTGGCAAGAGGAAGAAGGGAGGCTCGTATGTCTTACAGAGTGATGAGGGCCCCGAGCCAGAGGCTGAGGAATCAGACCTGGACAGTGGCAGTGTCCATAGTGCCTCAGGTCGACCTGATGGGCCTGTCCGCACCAAGAAACTAAAGAGAGGGCGGCCAGGAAGGAAGAAGAAGAAGGTCCTGGGCTGCCCCGCAGTGGCCGGGGAGGAGGAGGTTGATGGCTACGAGACGGATCATCAGGATTACTGTGAGGTGTGCCAGCAGGGTGGGGAAATTATTCTGTGCGACACCTGCCCTCGTGCCTACCACCTCGTCTGCCTTGATCCTGAGCTTGACCGGGCTCCTGAGGGCAAATGGAGCTGCCCTCACTGTGAGAAGGAGGGGGTACAGTGGGAGGCCAAGGAGGAGGAAGAAGAATATGAAGAGGAAGGAGAGGAAGAAGGGGAAAAGGAGGAGGAAGATGATCACATGGAGTACTGCCGTGTTTGCAAAGATGGGGGGGAGCTCCTCTGCTGTGACGCTTGCATCTCTTCTTATCATATACATTGTCTAAACCCTCCCCTGCCTGACATCCCCAATGGGGAATGGCTGTGTCCCCGTTGCACATGCCCTGTGCTGAAGGGCCGTGTGCAGAAGATCCTGCATTGGCGGTGGGGGGAGCCACCTGTGACAGTGCTAGCCCCCCAGCAGGCAGATGGAAATCCAGATGTCCCAGCCCCTCGCCCTCTTCAGGGCAGATCGGAGCGAGAATTCTTTGTCAAGTGGGTAGGCCTGTCCTACTGGCACTGCTCCTGGGCCAAGGAGCTTCAGCTGGAAATCTTCCACTTGGTAATGTATCGAAACTACCAACGGAAGAATGACATGGATGAGCCCCCACCCCTGGATTATGGCTCTGGTGAGGATGATGGGAAGAGTGACAAGCGCAAGGTGAAAGATCCCCACTATGCTGAGATGGAGGAGAAGTACTATCGCTTTGGTATCAAGCCAGAGTGGATGACAGTCCACCGCATCATCAACCACAGTGTGGACAAAAAGGGGAATTACCACTATTTAGTGAAATGGAGGGACTTACCATATGACCAGTCCACATGGGAGGAAGATGAAATGAACATCCCTGAATATGAAGACCATAAGCAGAGCTACTGGAGACATCGAGAACTAATTATGGGGGAGGATCCCGCCCAGCCCCGCAAGTATAAGAAGAAGAAGAAGGAACTACAGACCGATGGGCCTCCCAGTTCTCCTACTAATGATCCTACAGTGAAATATGAGACTCAGCCACGGTTTATCACAGCCACTGGTGGTACACTGCATATGTATCAGCTGGAAGGATTGAACTGGCTACGCTTCTCATGGGCCCAGGGCACGGACACCATTCTGGCTGATGAGATGGGGCTGGGCAAGACCATACAAACCATCGTCTTCCTCTACTCACTCTATAAGGAGGGCCACACGAAAGGTCCCTTCCTGGTGAGTGCCCCACTCTCCACCATCATTAACTGGGAGCGGGAGTTCCAAATGTGGGCACCCAAATTCTATGTGGTGACATACACGGGTGACAAGGACAGCCGGGCCATCATTCGTGAGAATGAGTTTTCCTTTGAGGATAATGCCATTAAAGGTGGCAAGAAAGCTTTTAAGATGAAGAGGGAGGCACAGGTGAAGTTCCATGTTCTCCTGACTTCATATGAGCTGATCACCATTGATCAGGCAGCGCTGGGCTCCATCCGCTGGGCCTGCCTTGTGGTGGATGAGGCCCATCGGCTCAAGAACAACCAATCCAAGTTTTTCAGGGTCCTCAATGGCTATAAGATAGATCATAAGTTACTGCTCACAGGAACCCCATTGCAGAATAATCTGGAGGAGCTCTTCCATCTGCTGAACTTCCTCACCCCTGAAAGGTTTAACAACCTGGAGGGCTTCTTGGAGGAGTTTGCTGACATATCCAAAGAAGACCAAATTAAGAAGCTGCATGATTTGCTGGGGCCACACATGCTGCGGAGGCTTAAGGCTGATGTCTTTAAGAACATGCCAGCCAAGACGGAGCTCATTGTTCGAGTCGAGCTGAGTCCCATGCAGAAGAAATACTACAAGTACATCCTGACTCGAAATTTTGAGGCCTTGAATTCACGAGGTGGTGGGAACCAAGTGTCGCTGCTTAACATCATGATGGATCTCAAGAAGTGCTGCAACCATCCATACCTCTTTCCTGTGGCTGCTATGGAGTCTCCAAAACTCCCTAGTGGGGCTTATGAGGGTGGAGCACTTATTAAGGCATCTGGGAAGCTTATGCTACTGCAGAAGATGTTGCGGAAACTGAAGGAGCAAGGACACAGAGTGCTTATCTTCTCACAGATGACCAAAATGTTAGACTTGCTAGAGGACTTCTTAGACTATGAAGGCTACAAGTATGAGCGCATTGATGGTGGCATCACTGGTGCATTGAGACAGGAGGCCATTGATCGGTTCAATGCTCCTGGAGCCCAACAATTCTGCTTCCTCCTGTCCACCCGCGCTGGGGGCCTGGGCATCAATCTGGCCACTGCTGACACTGTCATCATCTTTGATTCTGACTGGAATCCTCATAATGACATCCAGGCCTTCAGCCGGGCCCATCGGATTGGCCAAGCCAACAAAGTGATGATTTACCGGTTTGTGACTCGTGCATCAGTGGAAGAGCGAATCACACAAGTGGCCAAGAGGAAGATGATGCTGACACATCTGGTGGTGCGGCCTGGACTAGGCTCCAAGGCAGGCTCCATGTCCAAGCAGGAGCTGGATGACATCCTTAAATTTGGCACTGAGGAACTGTTCAAGGATGAAAATGAGGGAGAGAACAAGGAGGAGGACAGCAGTGTGATCCACTATGACAATGAGGCAATTGCTCGGCTCTTGGACCGGAACCAAGATGCAACTGAGGACACTGATGTGCAGAACATGAATGAGTATCTCAGCTCCTTTAAGGTGGCACAGTATGTTGTGCGGGAAGAAGACAAGATTGAGGAAATCGAGCGGGAGATCATCAAGCAGGAGGAGAATGTGGATCCTGACTACTGGGAGAAGTTGCTGAGGCATCACTATGAACAGCAGCAAGAGGACCTGGCCAGGAACCTCGGCAAGGGCAAGCGTGTTCGGAAGCAAGTTAATTACAATGATGCTGCTCAGGAGGATCAAGATAACCAGTCAGAATACTCAGTAGGATCAGAGGAAGAAGATGAAGACTTTGATGAACGTCCTGAAGGGCGTCGTCAGTCAAAGAGGCAACTCCGGAATGAAAAGGATAAGCCACTGCCTCCACTGCTGGCTCGAGTTGGGGGCAATATTGAGGTGTTGGGGTTCAATACTCGTCAGCGGAAGGCTTTCCTGAATGCTGTGATGCGCTGGGGGATGCCACCTCAGGATGCCTTCACCACTCAGTGGCTGGTGCGGGACCTGAGGGGCAAGACTGAAAAAGAGTTTAAGGCCTATGTGTCTTTGTTCATGCGCCATCTCTGTGAACCTGGGGCTGATGGCTCTGAAACTTTTGCCGATGGGGTCCCTCGAGAGGGACTGAGTCGCCAGCAAGTGTTGACCCGCATTGGAGTCATGTCTCTTGTGAAGAAAAAGGTACAGGAATTTGAGCACATCAATGGGCGCTGGTCAATGCCTGAGCTGATGCCTGATCCCAGTGCCGACTCGAAACGCTCATCTAGAGCCTCCTCTCCTACCAAAACATCTCCCACCACTCCTGAGGCTTCCACTACAAACAGTCCTTGCACCTCTAAACCTGCTACTCCAGCTCCAAGTGAGAAAGGAGATGGAATAAGGACACCTCTTGAGAAGGATGAAGCTGAAAACCAGGAGGAGAAGCCAGAAAAGGATAGCAAAATTGGAGAAAAGATGGAGACAGAGCCCGACGCCCCCAGCCCAGTCCCTTCACTTGGGGAGCGGCTGGAGCCAAGGAAAATTGCTCTAGAGGATGAGGTGCCAGGGGTACCTGGAGAGATGGAGACTGAACCTGGGTACCGGGGGGACAGAGAGAAGTCAGCCACAGAGTCGACGCCAGGAGAGAGGGGGGAGGAGAAGCCATTGGATGGACAGGAGCACAGGGAGAGGCCGGAGGGGGAAACGGGGGATTTGGGCAAGAGAGAAGATATAAAGGGGGACCGGGAGCTTCGACCAGGGCCACCTCGAGATGAGCCACGATCCAATGGGCGACGTGAGGAGAAAGCAGAGAAGCCACGGTTCATGTTTAATATTGCAGATGGTGGTTTCACAGAGCTTCACACACTGTGGCAGAATGAGGAACGAGCAGCTATCTCCTCTGGGAAACTCAATGAGATCTGGCATAGAAGACATGACTATTGGCTTCTGGCTGGGATTGTCCTCCATGGTTATGCACGGTGGCAGGACATCCAGAATGATGCTCAGTTTGCCATTATCAATGAGCCATTTAAAACTGAAGCCAATAAAGGAAACTTTCTGGAGATGAAAAATAAATTTCTAGCCCGAAGGTTCAAGCTCCTGGAGCAGGCGCTGGTGATCGAGGAGCAGCTGCGGCGGGCGGCCTACCTGAACCTGTCACAGGAGCCGGCGCACCCCGCCATGGCCCTCCACGCCCGCTTCGCCGAGGCCGAGTGCCTGGCCGAGAGCCACCAGCACCTCTCCAAGGAGTCGCTGGCGGGGAACAAGCCGGCCAACGCCGTCCTGCACAAGGTTCTGAACCAGCTGGAGGAGTTGCTGAGCGACATGAAGGCAGACGTGACCCGCCTGCCAGCCACGCTGTCCCGAATACCTCCCATCGCAGCCCGCCTTCAGATGTCCGAGCGCAGCATCCTCAGCCGGCTGGCCAGCAAGGGCACAGAGCCTCACCCCACACCGGCCTTCCCTCCGGGTCCGTATGCCACACCTCCGGGGTACGGGGCAGCCTTCAGCGCCGCACCCGTAGGGGCCCTGGCCGTCGCAGGCGCCAATTACAGTCAGATGCCAGCAGGGTCCTTCATCACAGCCACCACCAACGGCCCTCCAGTGCTGGTGAAGAAGGAGAAGGAAATGGTGGGGGCAGTGGTGTCAGACGGGCTGGATCGGAAGGAGCCCCGAGCCGGGGAGGTGATCTGTATAGACGACTGA +>XM_031808598.1 PREDICTED: Oncorhynchus kisutch rap1 GTPase-activating protein 1-like (LOC109896808), transcript variant X3, mRNA +ATGAGGATCTTTACAGTCAGGCACATGCTCACACAGATATAGTACATACAGACCTATACAAACCCATGCATTCTAATGGGCATGCAGACCTGTTAAGAGACCTGAGACGCAGCAGTTCTTGTCTTGTATTTAGGGGCAGTAGAATACAGAGTGTAAAGTGACAGTAGTAGTTAGACCTCTGACACTCCTCTGGTCAATATACACACAGAAACAAATATACCCATACTCTGTTTTTGGAGTCGGAGTTTTGGAGTTATGAGTGACTTCAGGATGACTAAGAGTGGCCATGTGTTCCTCAGTCCTTCGGTTATTACATGGGGCCAGAGGAGACGACACAGTGATACATCAGACCTATTTGCAAAGATCGAGAGGATGCAGGGCAGCAGAATGGACGAGCAGAGATGCACCTTCCCTCCACCCCTCAAAACAGAGGAGGACTATATCCCTTACCCCAGCGTTCACGAGGTCCTGGGTCGTAGGAGCCCCTTCCCCCTAATCCTGCTGCCTCAGTTCGGAGGCTACTGGATCGAGGGGACCAATCACAAACCCAGTGCCACACCTGAGCCTGAGCAGAGGCCCTGTGCGTCCTCCCACATCAAGCTGGAGACCAACAGCATGGCCAAGATCTACAGGAAACAGTTCATGGGCAAGGAACACTTTAATTACTACTCCATGGACATCGGCCTGGGCCACCTGGTCTTCTCCATGAAGTATGATGTCATCGGGGACCAGGAGCATCTCTGCTTGCTGCTAAGGACCAAATTAAAAACTCACCATGATGTGATTCCTATCTCCTGCCTGACTGAGTTCCCCAACGTGGTCCAGATGGCCAAGCTGGTGTTTGAAGAGGTAAATGTGGACAGATTTTACCCAGTCCTCTACCCAAAGGCTTCAAGGCTCATTGTCACCTTTGATGAGCATGTCATCAGCAACAATTTCAAGTTTGGAGTCATTTATCAGAAGTTTGGCCAGACCACCGAGGAGGAGCTATTTGGGAACAGCGACGAGAGTCCTGCTTTTGTAGAGTTCTTGGAGTTTCTGGGGGACAAGATTGAGCTCCATGACTTTAAAGGGTTCAGAGGAGGACTGGACGTCACCCACGGCCAGACAGGAACAGAGTCTGTCTACACGAACTTTCACAACAAGGAGATCATGTTCCACGTGTCCACCAAGCTGCCATATACAGAGGGAGACTCTCAGCAGTTGCAGAGGAAGAGGCACATAGGCAACGACATCGTGGCCATCTTGTTTCAGGAGGAAAACACACCCTTTGTGCCAGACATGATAGCCTCCAACTTCCTGCATGCCTATGTGGTGGTGCAAGTGGAGAATGCCTGCTCAGACAATGTCACATACAAGGTGTCTGTGACAGCGAGAGATGATGTGCCTTTCTTTGGACCCGCTCTACCGGACCCGGCCATCTTTAAAAAGGGGCATGAGTTCCATGAGTTCCTGTTCACTAAGCTGATCAATGCGGAATATGCCTGTTACAAGGCTGAGAAGTTTGCAAAACTGGAGGAGCGCACGCGGTCGGCCCTGTTGGAGACCCTGTATGAGGAGCTACACATTAACAGCCAGTCCATGATGGGCCTGGGAGGGGACGAGGACAAACTGGAGAATGGGGCTGGGGGGGGAGGGGGCTTCTTTGAGTCCTTTAAGCGGGTGATCCGCAGCAGAAGCCAGTCTATGGATGCCATGGGCCTCAGTAACAAGAAGCCACACACTGTCTCCACTAGTCTCAGTAGCAGCTTTACCGAGACCCCCAAAACCCCAGGGATATCTCTGATCATTCCTGGGAAGAGCCCCACCAGGAAGAAGTCTGGGCCCTTCAGTGCCAGACGGAGCAGCGCCATCGGGATCGAGAACATCCAGGAGGTGCAGGAGAGGAGTCGGGAAGTGTCCCCCAGCACACAGAGGACTCCAGACAGTGGACACATCTCCCAGGACCCCAAATCAGAGAACTCATCTAATCAGAGCTCACCAGAGATGCCCACAACAAAGAACAGTTTGGCCATGTGTTGCAGGGCCCCTTCTATCCCTGAGGCCCAGGATCTGTCCCGCTCCTCGTCCAATGCCAGCAGCTTCGCCAGCGTGGTGGAGGAACACGATAACGAGGGCATCGAAGAGTACGACACGGGACTGGAGAGCCTGTCCTTTTCTGGAACACCACACAAGAGAGACTCATTTGCGTACGTGTCCTGGGTAGAGGATAGTTTGAGCAGTACTAGTGCCACCAGCCAGGGCAGCTCTCCAGCACCTGCACGGTCCCGGCAGCCTGAGGGGGGCAAAGGGGAAGAGCTCAAAAAGGCGGAGAGCCGAGACAAGACAGAGCGGTCACAGGATAAGTCATCATCGAACTGTTAGCCTCACCTCATTGATCAGTACATGGATGTCCATTAGCAGCATTCCCATAAGAGGCACCCCCTGCAGGAGATGAAGCAAGCGCACGTGTGTTCCACCACAGATGCAGAGGAGGAGCAGAGCTAGTCGCTGGGACAGACAGCTAGACCTGGTGTAAACTAGTCCAGTCTGAACAGCCAGGTCCATGGACATGCACTTACAGCCTTCCCTCATCCCAACTCTTTGTGGCTGACTCCCAGCATGCTTAGAGGGGTGAAGGAGAGGATCAGCCCACACCCATTCCCAAAATGAGTGCCACTCACACAGTATCGCTTCTGGCTGTTGTCTGTTGGCTCGCTTAGCCTGCATATATTTCTGCTCCATGAGCTCTGTGAAGCCTAAATCTGTTCATGTGGTAACTCATAGTATACTCTCCCTTGTCCTCTCTATGGCATTGTTTTTGTTTTGGTTCGAAGGTGGAGGGAGGGGAGGATCTTAAGCATTAGACAGATTGGTGTTGCAGGAGATCCGTTGATCATGCATTAGGGGAAGTTTTCTGTTAGGCTAAAGAGGAATGCATGAGGAGGATAAGAGGGTGTTGTCCTGTTGTCATTGTTGGAAGAACTGACATTATTGCTCCCATCAACCTCACGTCCCACCATGATACTGTACATTTGTTATTCTTGGTGTCCCGGATCCTTTGATGTCACACCAAGCCTTGTGTTTTATTAATGGTCAATTAAGAGTGTAATGGTGGATGTTGACTAGAAACTTTTAGTAAAATGTTACATGTTTTTGGTAGAAGGTACTTTTATCATCATGCTGCTGCTGGTTTTGATTCCATTATTCATTTCCCCTGACAAACTGTACAATTACAGTTCACAGTTTATGAATGGACAATACTTTACTGACTCCATAATTATAGTCAACGTATTTCAGGCCATTTAAAGGGGTAATTTGCAGTTCAAACAACAACAAAGTCTTTACCCCGCCACTTTTTCGATAACCAGCTGAGTGATGGGGTTGGCGAAAAGTAACCACTCTCAAATTCCTAGACAGAGCTATGGATGCAAGGACTGACCATCCAGGATAGCAAAATTATACTTTTAACCATGTTGAGGCTATATAGTGTTTGTTTACAGTTACCTTGTTTACTAACTAATGAGTAAAACACATTTTGGGTTTTGATGGGGTACGACAGTTGAACTAAGCGCATGAAGCATTTATAAGTAATATTCTTCAAGAATCAATGGGTATATATAATTAATTTAAATGTAAAAAAAAGCTATGTAGCAATCGTAGATTGCCCCTATAAACTGAGGAAAAAAACATGAAGTATTGAATTACCGATAAGGTCTAGTGTTCAAACTAAATTACTCATCAGTCTTCACTGTCCCATACTGTAGATAGTACCACACAGTCAGACATTCCTCCAAGGTGACCTAACCAAAGCACACAGCCTCCAAAGCCAAGCTATTGTCCAGTGACTACTGTCTTCAGTTTATTTTTTAAAACCTCTAGTTTGTTTTAAAGTATGTGTTTGGATGTGTATGCATGGTGAATGGTGTAAATCTGCTTGCAAAACCATGTCAACTGTACAGTACCATACTGGAAAAAGATTGTTTCTTCAAACCAGTCCAACTTCTCTAGAAAAGCAGACAGTCATTATTTCTATAAATCAGTTTCGATAGAGAAATATGGCGATACAAGTGTAGATGTGGAAACTGGCACTACATTTTCAATTAATTGTTTTTTTTATTTTTATTTTTTTTAATCTGACTTGGTTTTTAAAAATAATTACACTGTGACAAGTTTTGAAGTGGCCTTTTTAATGATTGTGTTAATTAAGCTGCTTTGTAGGAGGGTATCCCCCTTCATATAAGGAATCTATCCCATGGTGGATATCGCCACTGGATTGAATGTAAAACTAAACAGATATATGTATTCATTTGTAGACATCTGCTCTCAATGAATGGAACCTTTGTATCTTGTTGTAATGTTTTACATTTTCCCTCATCTCAGATTTATATAATGAAAAGACCTGATATGAAGGCATAGTTTCCATTACTTTTTATTTAAATTAAATGAACAAAAGCTAACATGGAATTTAGTTGCACTTTGTCAGTTGTGGCATTAATGCATAAACCTTTTACACTCCTTTGGAAATCTTTCAGTTGAATCTAAAGGATCTCTGTAAGTAAGGAACACTACATCAAAATACAGTAAGTTTGACAAGTATTTATTATTAAACACCATTCTAAAGATTATGATTCAACAAAAAACTATTAATTGAAATTGTGATTGGAAAGATGAGAAAGTAACCTTTCATCAGCTTAAGAGAGCCTTTGGAGTCCGTGTGTATTCCAGGCACTGAAACTCTAAATATATCAAACACAATTTTCATCTCAAAGCTTAAAATAAATGTATTAAAACTCACGAGTCTTCAGAAATGCTTGAATAGTTGGATCACACCCTCTGGTGGCTCTAGATTATACTTACACATTTCTCTGTGGTCCTGTTCATCTGTACCTGTGTTTGTACATGTAAATGCAAGACACTTGGATTGAGCACCCAGCCAATCCAAACAACAGATTCTGCCTACAATGTGCTTAATTCAGATGATTGTATTTCTGTTCTCGTTGATATTCCGCTCAAGCCCTTGTTTAAGTTGGAAAGTCTTGTATATAAATATAGCTTTTCATCCTTTTGTAAAAAAAAAAAAAGGCAAATACATGTTTAATAAAGACAAAGGGGTAA +>DQ727116.1 Mus musculus piRNA piR-142438, complete sequence +TGGCAACAGTATTGCTCTGGCTCCA +>XR_005158834.1 PREDICTED: Triticum dicoccoides uncharacterized LOC119328068 (LOC119328068), transcript variant X2, ncRNA +CTGCGTTCAGCGCTGCCATCCTGTCTAGTGCGCTCCCCTGACCGGCGCCATGAGAGCGGCTGCGCCGGTGGCTCTCGTGGACAGCGCGTGCATCAGTAACGTCGCAAAGTTCTTCCTCGCGAACAGCATCGCAGCACCGGTCGGAGCGGCGGCCATCCGTCGTCCCCCTCTGCGTTGTGCTACGCCGTCTCCGCTGAAGCTGCAATCTCCTCGGACGACCGCGTTATTGAGCGGATTTTCCTCATCCAGCAGCGCTGGCGACTCGTATCCATCTACCAAAGAAATGAGCAGCATCTTATCCATTCACTATGCTTCTTTTTTTCCTTTTACCCAGCGTTTGTACGAACAGGGAAACCCTCAAACGACAAAGACCAGCAGGATAGGAAGGGTGACAATGAGATGGCAGGCGCTGGAAATGTTTCTGATGTGGATCTTGCTAGGAAAATGTTAGATACTGCAAGAGGTAATAATGGAAAAGAGCAAAGGCAACACTGCGGAGATATCAAGAATCCTTTCCGCGGAAAAGAGAAAGAGTGGAATTAATTTGACAAGTCACTCAGTGAAATGTTTAACCATCTTGGAGCATTTACCTAGCTGTGCTTGACACCAGGGGCAAAGGCTGCCCCTTTTTCTTGTTCAAGGGTGGCGCGGCGAACACAGATGCAACATCGGCGAGAGTCGTTGGGGACACTGATATTTACCCAGGTTTGGGCCGCATGGTAACGGCTTGGATGTTCGCGACTTGTTCATGGGAGCCCACGACTTGGGCGTTCCTGGGAAGAATGCGGATGTCTTGATATCTCCTTATACCTTATTGTTGGTGCGGAAGCCGAGGGTCACGAAGGTAGCACCTCTCGATGACCTGCCTGGATGTCTGTGCTTCACTTGTATCTCCAGGGAGGAGCCTTGGATGATTCTTGGATATGCTGATGCCTAGGTGATCTCCCGGCAAGGAGCCACTGTGTGCCGCACGCATGAGGGTTTGTGGGTACCCGATACCCGCGACACCGACAACCTAACTGCATTCTGTTTTGGGTATGAAACTGTCAATCGTCTGTCATATAGCAGTAGTATTTGCATCCTTCTGAGGTGGGTCTCTGTGGTTTTAGGAGTACTAAATTTTTAGTTAGATACGTGCTGGTATCTTGTAGATTTGGCTGGTCTTCCTGTTGCTTAATTATCCCCCTTAATTCAGTCCCGGGACTCCCTGCACCGGCTTGGTCTTGGAGCTGCCTCCATTATGTAAATTGTGTATACAGAACCATGAAAGTGCCAAGGAGACTCGGAAATTCCACTTGAGAAGATGAGATAA +>XM_024744316.1 PREDICTED: Neophocaena asiaeorientalis asiaeorientalis ataxin 2 like (ATXN2L), transcript variant X4, mRNA +ATGTTGAAGCCTCAGCCGCCACAACAGACCTCCCAGCCCCAGCAGCCGCCCCCCACGCAACAGGCCGTGGCCCGCCGGCCTCCCGGGGGCACCAGCCCTCCCAACGGCGGCCTCCCGGGGCCCCTGGCCTCCACCTCGGCTCCCCCAGGGCCTCCCGCCGCTGCCTCCCCCTGCTTGGGGCCTGCAGCCGCTGCCGGGAGCGGGCTCCGCCGGGGAGCTGAGAGCATCTTGGCGCCGCCGCCGCAGCAGCAACATCAGGAGAGGCCAGGGGCAGCGGCCATCGGCAGCGCCAGGGGACAAAGCACAGGAAAGGGACCCCCACAGTCACCGGTGTTTGAGGGTGTCTACAACAATTCCAGAATGCTGCATTTCCTTACAGCTGTTGTGGGCTCCACTTGTGATGTAAAGGTAAAGAATGGTACCACCTATGAAGGTATCTTCAAGACACTGAGCTCAAAGTTTGAACTGGCAGTAGACGCTGTGCACCGGAAAGCATCGGAGCCAGCAGGTGGTCCTCGTCGGGAAGACATTGTGGACACCATGGTGTTTAAGCCAAGTGATGTCATGCTTGTCCACTTCCGAAATGTTGACTTCAATTATGCTACTAAAGACAAGTTCACTGATTCAGCCATTGCCATGAACTCGAAAGTGAATGGGGAGCACAAGGAGAAGGTGCTTCAGCGCTGGGAGGGGGGCGACAGCAACAGCGATGACTACGACCTGGAGTCTGACATGTCCAATGGATGGGACCCCAATGAAATGTTCAAGTTCAATGAGGAGAACTACGGCATAAAGACCACCTATGACAGCAGTCTCTCTTCTTACACGGTGCCCTTAGAGAAGGACAACTCAGAAGAATTTCGTCAGCGGGAGCTGCGTGCAGCCCAGTTGGCTCGAGAGATTGAATCGAGCCCCCAGTACCGCCTGCGGATCGCCATGGAGAACGATGACGGGCGCACCGAGGAGGAGAAGCACAGTGCAGTTCAGCGACAGGGTTCAGGGCGAGAGAGCCCCAGCTTGGCATCTAGGGAGGGAAAGTATATCCCTCTACCCCAACGAGTTCGGGAAGGTCCCCGGGGAGGAGTTCGATGCAGTAGTTCTCGGGGTGGCCGGCCTGGCCTTAGCTCTTTGCCACCTCGTGGCCCTCACCATCTTGACAATAGCAGCCCTGGCCCAGGTTCTGAGACACGCGGTATCAATGGAGGCCCTTCCCGCATGTCCCCTAAGGCACAGCGGCCTCTGAGAGGTGCCAAGACTCTGTCTTCCCCCAGCAGCAGGCCTTCTGGAGAAGCTTCTGTTCCACCTCCTCCTGCAGTAGGCCGGATGTACCCCCCGCGCTCTCCCAAGTCAGCTGCCCCTGCCCCAATCTCAGCTTCCTGTCCTGAGCCTCCCATCGGCTCAGCAGTACCGACCTCTTCAGCTTCCATCCCCGTGACATCATCAGTTGGGGATCCTGGAGTAGGCTCCATTTCCCCAGCTTCTCCAAAGATCTCACTGGCACCCACAGATGTAAAAGAACTCCCAGCCAAGGAACCTGGGAGAACGCTGGAGTCCCAGGAGCTGTCCCGGATAGCAGGGAAAGTCCCTGGCCTTCAGAATGAGCAGAAACGCTTTCAACTGGAAGAACTGAGAAAATTTGGGGCCCAGTTTAAGCTTCAGCCCAGTAGCTCCCCTGAGACCAGCCTGGATCCTTTTCCTCCCCGGATCCTAAAGGAGGAGGCCAAAGGGAAGGAGAAGGAGGTTGATGGTCTTTTGGCTTCAGAGCCCATGGGGTCCCCTGTTTCCTCCAAGACAGAATCCATATCGGATAAGGAGGACAAACCACCCCTGCCACCAGCAGGAGGCGCCGAAGGGCCGGATCAGCCCCCACCACCTTGCCCAAGCCAAACCAGTAGCCCCCCAGTGGGCCTCATCAAGGGAGATGACAAGGATGAGGGCCCTGTTGCTGAACAAGTGAAGAAGTCAACATTGAACCCTAATGCCAAGGAGTTCAATCCCACTAAGCCGCTGCTGTCTGTGAATAAATCCACCAGTACTCCAACTTCTCCTGGGCCCCGGACTCATTCAACTCCCTCCATCCCGGTGCTGACAGCAGGCCAGAGTGGGCTATATAGCCCCCAGTACATTTCCTACATACCTCAGATCCACATGGGACCAGCTGTTCAGGCACCTCAGATGTATCCATATCCTGTGTCCAACTCAGTGCCTGGACAGCAGGGCAAGTACCGGGGAGCAAAAGGCTCCCTGCCCCCCCAGCGCTCGGACCAACACCAGCCAGCCTCAGCCCCTCCGATGATGCAGGCCGCCGCCGCCGCTGGCCCCCCTCTGGTGGCTGCCACACCTTATTCTTCCTACATCCCCTACAATCCACAGCAGTTCCCAGGCCAGCCCGCCATGATGCAGCCCATGGCCCACTACCCCTCGCAGCCGGTGTTTGCCCCCATGCTTCAAAGCAACCCACGCATGCTGACGTCGGGGAGCCATCCCCAGGCCATTGTGTCATCCTCCACCCCTCAGTACCCTTCTGCAGAGCAGCCCACCCCCCAAGCCCTTTATGCCACTGTTCACCAGTCCTATCCACACCATGCCACGCAGCTCCATGCCCACCAGCCGCAGCCGGCCACCACGCCTACTGGGAGCCAGCCGCAGTCCCAGCATGCAGCCCCCAGTCCCGTCCAGCACCAGGCGGGGCAGGCCCCACACCTGGGCAGTGGACAGCCACAGCAGAACCTGTACCACCCAGGGGCCCTGACAGGCACGCCGCCTTCTCTGCCGCCGGGACCTTCTGCGCAGTCCCCTCAGAGCAGCTTCCCCCAGCCAGCCGCTGTGTATGCTATCCATGCCCACCAGCAGCTGCCCCACGGCTTCACCAACATGGCCCATGTTACCCAGGCCCATGTCCAAACTGGAATCACAGCAGCCCCGCCCCCTCACCCTGGGGCTCCCCACCCGCCCCAGGTGATGCTGCTGCACCCACCCCAGAGCCATGGGGGCCCCCCCCAAGGCGCGGTGCCCCAGAGTGGGGTGCCTGCACTCTCAGCTTCCACACCCTCACCCTATCCCTACATCGGACACCCCCAAGGTGAGCAGCCTGGCCAGGCGCCTGGATTTCCAGGAGGAGCCGATGACAGGATTCCTCCCCTTCCACCCCCCGGGGAACTGAAGATTGTCCTGGCCGCGACCTGAGACCTCCATGAGTGGAGGGAAGAGTGACCTATGTCTCTTCCCCCAGCAGCTCGGACCAGTCCCAGCCCCCCAATCCCCCTTTCCCCCCGGGGGCGGGGGGAGCTGGGGAATTCCTGCCAAGCACCTTGAATGGGAAGGGGGGCCTCAAAGTGGGCAGGGCCGGGGTCCAGC +>XM_034818856.1 PREDICTED: Vitis riparia uncharacterized LOC117905960 (LOC117905960), mRNA +GAGGGGAGAGGGAGAAGAGGTTAAATAATGAATGGGTTCTGAGGAATTGCTACCTTCTTCACCACTTTACTGTTTCTTTCAACCACGCTCTCCTGCCTTTCTTGAACCAGTCTTTGGTCCACGCATGCCTCTCTCTGCAGCCGTCTCTCTTCTCCTTATTTAGCTTTCCTTCTTAATTCCTTCTTTCCTTATATTGGATTTTTTTTTTTGTTGACATAGAGAAATCCAAAAGGAAAAACAGAAAAGCATCGGGTCATTTGGGGAGAAGGGATGTTGGGATGGAAGCATATCACGGTGGCTGCGGTGGCGGCCGGAATACTGACTGTGCTTCTGATCGTGTTATTTTGGCGATGGTGTTGTAGTAAAGGACATAAGGATTTTGTTGATGCTTCCAGGAATAAACATCAGAGCTTGCAAGCTGGGATTGCGAAACTCCACCATGTTAGCCTTCCTCCATATCACCATGATCTAGACAGCAAGAGAAAGGCGAATTACTATGTTTTTCGACGTGGGGTTTCATCCAGACCTTTGTTTAATTGGGCGCATCATCCATCGCTCGTCACGGATGCGGTTGAAAATGGGTGGTCTCGATTCGGTTTCACGAGCTACATGTCGTCTCCCTCGATGAGATCATCGCTGTTGGGATTATGCGCAGTGGGGGAACATGGGAAAGAAACGGGGGCGGAGATTAGCTGGGAAGTGTCTCAGGGATCGGCTGATTTCATGCAGAAGATCAGATTGAATTCTGGGTTAAAGAAGATGAATATGAGCAGTCCTTCCATGGCTGCTGCATCTGTAATTAGAACAGCTTTGCCACTGCCAGGCCCTCCCTTGGGGAATTCCTCGTTCCCGCAAGAAGCCTACTTCGAAATCACAATATTGTTTTCCGGTGAAGGTGATCCTGAGTCTGTTGGCCGGGTTAAGGAAGGTGAGAGAACGAAGCTCATCCATGAGAATTCCAATGCTAAAGCCAATTCAGAATCTATAATCCATCTTGAAGAAATGAAACTCGGCTCTAAGGACGACGGCAAAGGTGAAGTCGTAATGCTATCGGTGGGGCTCACCGCCGGAGGCTCTCTTCCTTTGAAACTTCCTGGCAGCTACCCGGGATCAATTGGATTTAACTCCAATGGCTCTGTCTATCTTGACGGAATTAAACTTGTATTCGAATCGGAGAAGGAAGAATGGGAAAGGGCAGACAAGGTTATTGGTTGCGGATTTGATCCTAGCCAGAAGAAGGTGTTCTTCACAATAGATTCAGAACTAGTTCATGTAGTCCATTGCAAGTCAGAGGAATTTGGGAGTCCCCTTTATCCAACCCTCGGGGCAAACACAGACGTGGAAGTTCTGGTTAATTTTGGACAAAGTATGTTCAGCTACGCACCCGCCAATGCACAAAGAACTCCGAACCCTTGCTTTATCGGCCCCCTTGTGAATTCCCCCGCTGCTGCTCTGGGGTATGAAGACAGCAGGGAGCTTTTCTCAATGGGGAGAATAGACTCCCAGTGGCTCAACAGATGCACAACCAAAAGCAGCCACAACAATGGCAGTAAAGCATTAGATTTCGATGAGGATTCTGAAGCTGATTTATTTGAAATAGTCTTGGACAGAAGTGGCCGATCACCACACGCAGTATTGTAGAAACAAACTATAAATATCACTAGGATTTGTTGCATATATGCCGCCCACATGCATTTGCTGAATGCAAAATTTTCATACATTCACAAGCCTCTTTTAGGGTTTCACCTTCGCTTCTCCTATTACATATACCAACAGGTTCTTCAGGAACTGCTGATACATTTTTTTCATCACCCCTGTAACTAGAATTTTCATTTATTTTCCCTCTGTATATATCATGACTAATGTTCCTCCTCCTGGTTGAGTGATACCAATGTTCTTTCAGTTC +>MF368550.1 Uncultured bacterium clone New.OTU5316_1 16S ribosomal RNA gene, partial sequence +TACAGAGGTGGCGAGCGTTGTTCGGATTTACTGGGCGTAAAGGGCGCGTAGGCGGCGAAGTGTGTGAGGTGTGAAATCCATGGGCTCAACCCATGAAGTGCGCCTCAAACTGCTTCGCTCGAGTTCGGGAGGGGAGATCGGAATTCAGGGTGTAGCGGTGAAATGCGTTGATATCCTGTGGAACACCGGTGGCGAAGGCGGATCTCTGGACCGATCCCGACGCTGAGGCGCGAAAGTGGGGGGAGCAAACAGG +>XM_050853872.1 PREDICTED: Eriocheir sinensis uncharacterized LOC126994540 (LOC126994540), transcript variant X10, mRNA +ACACACACACACACACACACACACACACACACACACACACACACACACACACACAACACAGATGCTATGAAGTTCGTACCAAAATACAGACCGAGGGAGAGGGCTAAAAAGGACTGGTTTAATACAAGATGTACAGAGGCAAAAGAAAAGATACAAAGCTTGGTCAAGATTGAAAAGAAACAGAAATCAATGAAACAAAGAAGAGGAGAAACGATACGAAAAGGATATCGTGGAAAAGTATAAAGAACAACCTAAATTATTTCATAGATTTATAAGTGGAAGAATTAAACCAAGAGAAACAATTGAAAGACTGACTGAAGAGAATGAAGAGATTGACGCTCCCAAAGGCAGGGCGGAAGTACTTAACAAAAAACTCCAGGAAGTGTTTACCAAAGAATCAATATTTAATGAACCACAAGAAAACAACTTAGATGTATATATGGAAGAGCTCAAAATAGATAGAGAGGAGATAATAAAACTATTTGGGGAATTGGGAGAAGGGAAGGCCATGGGACCAAATGGAGTTTCAGGTTTTATGCTTAAAGAATGCAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTAGGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATCATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTAGGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATCATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTAGGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATCATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCTCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATAATTACGTGCCCAATTAAAAGAAATGAGCTAGTTAGCCTGATATATGACATCATTACGTGCCCAATTAAAACGGGCACAGTGCCTAGGGAGTGGAAGAGGCCAGGAGTGGAACTTATATACAAAAGTGGAAGAGAGGATGAACCCCTTAATTTACAGACCAGTGTCTCTGACCAGTGCGCAAAATATGTGAGAAATTAATAAAAGAACAATGTGTGAGATTTCTAGAAGAACATAATCTAATCACAAACAATCACTATGGGCTTAGGAGAGGCCGCTCATGTGTGACAAACTTGCCGAGCCTTTACTCAAGAGTGACGGACAAATTACAGGAAAGAGACGGATGGGTGGATTGCATTTACCTAGACTTAATGAAGGCATTTGACGAAGTTCTGTGGAAACTAGAAAATAGAGGAGGATTGAGAGGGAAGATGACGTGCTGGATGGAAAGCTACTTAAGAGGATGAGAGATGAGACCCGTGGTTAAGGGCGCTAGATCGGAATGGAGGGCTGTGGACAGTGGAGTGCCCCAGGGGTCGGTTTTGGCCTAGTCCTAGTCTATATTACTGACATGCCGGAGGGAATAAACAGCTACATGAGCCTGTTTGCAGATGAAGCCAAACTGCAAAGACAGACAAGAAACAGTGAAGCCTGCAAGAAGACCTAGACAAGATTTGGAAATGCAGTCAGAAATGGGAGATGAAATTCAACGTGAGGAAATGTCATGTTATGGAAATGGACATGGACTTATAAAATGGGAGATGGGGAGATATTAAAGAAAGTATATGAAGAGAGAGAGAGACCTGGGGGTAACAGTGAAAGATTATATGCAACCAGAAAGTCATATAAATCAGATCTTTGGTGATACGTTTAACATGGTGAGGAATATAGGCATAGCATTCCACTACATGGACAAAGAACACGGGAGCTTAGGGTCAAAGGAGCTGCCTCGTATAGGCCTACCGACCTCTTGCAGACTCCTGCGTTCGTATGTTCTTAAGAAATGATGGAAAACTTAATAACTACTATGATCAGACCTAAGCTAGAATGCGCGGAAACAGTGTTGTCTCCACATACGAAGAAACACAAATATATATGCTATTGAGTAGAATGGAAGTAGATAACGAGAAATTCCCACTAAGAGACGAACCTTCCAGCAGGAATAGTAGAGGACACAGTAAAAGGTTGAGGAAGGGAAGATGCTTGAGAGACATAAAGAAATATAGCTTCCCACAAAGAAATATAGAGGCTTGGAACAGACTAAGTGAGGATGTAGTATCAGCGAACTACTACTACTACTACTACTACTACTACTA +>XR_005515939.1 PREDICTED: Hibiscus syriacus uncharacterized LOC120120851 (LOC120120851), ncRNA +GATCTAATAGGTAAGAGAGAGCTTTCTTCAGTCCACCCATGGGTAGCGATGGGATTTAATTAGCTGCCGACTCATTCACCCAAATACTGAGTTAAAATGGACCGGCCTGCAAATAGTTACTCAGTAAATGAGTGAATGATGCGGGAGACAAATTGAATCCTAATCTTCCTGTGCTTGGACTGAAGGGAGCTCCTTCTGCTGTTATTTTATCAACACCTAAACTACTTTCATCCATGTTTTTCACGACGACCACTACCTTTATATATAGTAATAATTTGTGGCTGAGATATCAATGTAGGAATAATGATCGCTTTATTAGCTTGTTTGTTTGTTCTTCATTGACATTTATATAGATTATCTCAACTTCTTAATGGCGGTGCGTTCTCATTGTTTGACTACTACGAAAGGAAAGTTTCGTTTTTCGCTCCAGGAGGAAAATTTTGCAGCTGTTTCTGGAGTCTAGGGCTGAGGGTTTTACTGTGAAGCTGCTGTTGCAGTTTCTTGTTTAAAGCTCCACC +>XM_049955181.1 PREDICTED: Schistocerca nitens uncharacterized LOC126253663 (LOC126253663), mRNA +GTTTTGTTGAAGTATAATAATGAGTAAAAGTAAAGTTATTAGAAACCCTCTGAAGGCTTTTAAGAAAAGGAGAAATGTTGGAAAGCCAAAGGTATGTGTTATTACTGTAAACAATAAAGACGATGAAAATGCCCAACATAGCTTGTGTCCCAAAGAAGAAGACAGTTGGTGTAAATATAACAAAGGATTGCTAACTGGTGAAGTGTACACTCATAAGCATAGTCTGCCTCATGCAATAATGGAGGTGATAAAACCTATTTTCAGAGACTTAGCAGCACCTGAACTGTTGAAAAAGTGTATTCACGGAAAAACTCAAAACCCCAATGAAAGTGTAAATAGTGTTATATGGTCGAGAATCCCCAAGACTGTATTTGTTGGAATAGAAACACTTCACTTTGGTGTGTATGATGCTGTTGCGACTTTCAATGATGGCAACATTGTAAGGTGCAAGGTATTTAGAAATATGGGAATGAAGATAGGTTCTAACATGGTACGAGCAATGCTTGCTTTAGACAAGGAACGCCTTCGGGCTGCAGACAGGGCTGTAAAGAGTCTAGAAATACAAGCAAGAGTAAACAGGAGGAGGAACAAGAGGAAGCTGGAGGAGGAGTTTGCAGAGGATGAAGATAATCCATCCTATGGACCTGGAATGCACTAAAAAGTTAATCCAATCTTTGTCGCTCGATTCCCAAAACTTTTATTTTCTCATACTAATTACATGTTTTCTAAGGATCTTCCAAACATATT +>XM_028358397.1 PREDICTED: Glycine soja membrane-anchored ubiquitin-fold protein 2-like (LOC114396422), transcript variant X3, mRNA +ATTATTATTGCTTTGCAAAACACTAACCAACCAAAACAAAGGGAAAAAAAAAGTATCCACTTTCCCTTCTTCTTCTTCCATTTGGGTTTTCTCAAAAGTGAAAAGCAAATTCCGTGACTTCCACAATCACCACTCGGATCAAACTCTTGAGTGATAGACTTTGAATGAAATCTTGTTTTTCATTAACGAGATTCAATTGAAGTGAAGTGATTATTCACTGGAAAACTTATTTTTCATAGTATTGGAGGTACAACTGAAGCTGTTAGATTTGTTTTAACTACACGAGTTCGTTGGATATTTGAGCATGGCTGGGAATCAAGATCAGTTTGAGATCAAGTTTCGGTTGACTGATGGTTCTGATATTGGCCCCAAAAGTTTTCCTGCAGCTACTAGTATTGCAACATTAAAAGAGAGTGTTCTCGCTCAGTGGCCAAAAGACAAGGAGAATGGCCCAAAGACCATAAAAGATGTGAAGTTAATTAACGCAGGAAAAATTTTGGAGAACAACAGAACAGTTGGGGAATGCCAGAGTCCGTTATGTGATACCCCTGATACTGTTACAACAATGCATGTGGTTGTGCAACATCCTGCTACGGAGAAAGAGAAGAAAGCGGCAAACAAAGCAACACAGAACAAATGCATGTGCGTTATTTTATAGCATCCAGATTGAATAGCAGATGTCATCTGTCTTAGTTGATTAGGGACAGTTCATTTTACATAACCTGCGTCGTCAAATATTTCAACATACACAAATTATTTGGTTGCATGCCCCATTCATACTACAGTCAAGGAGTACTGGACTATTTTCTTTATAAAAATGGAGTACTTGACTTGGTGAAGATTGTGAAGCTTGTAGTTCCCTGATTCCTCTGCGGCACTAAATTTCTTGCACAATTTCATAGGAGATGTTCTTCTTCTGGTTTCAACATGTATTAGGTGTTGCCTCATCAGACACTTGGTATAATTGTTGATTGAAATGAACTCTACTAGTTTGCCATCTTACCCCCTCATATATTTTACAATTCTTCTCTTTCGTGTATCTGATTCAACATACTTAATCCAGACATGTATGCGTTGAGTATTTGAATGTGTTTCAATTTTCTGGTTGTTTATATGGTACCATTGCTACCCACTCTTGTATAGCAGCTATGGCAATAGTGATTTAACAACATCTCTCACAAAATGGAGATTTGATGCTTGAA +>XM_017886251.1 PREDICTED: Rhinopithecus bieti MAS related GPR family member E (MRGPRE), mRNA +AAGGCTGCAGGGAGGGTCGGGGTTTCTCTTGCTGTCCACACCTGGGCAAGAGCTGAGCGGAAGAGAAGGGGTCCTCAGAGAGACGCCTTCCTCACCAGCCCCATTCCAGCCGGACACCATGTGACTCGGAGGAGCTGGTGGACACTGAACAGGAGCGGCCCAGAGGCTCTGGGGACTGGAGCCCGCGGCTGCAGCCAGGACAGATCCAAGGCCCAGGGTCAGAGCAGGCAGGGCTCGGTCGCGCCTCTGCCCCAAACGGGGCATCAGCAGAAAGAGCGAGCAGCAGCAGCACCCTCTGGCCCCCCACCCTACGATGGAGTCCAGAGAAGCTGGAGAGCAGGCAGGGGCTGCCGACGGCGCCCGGGAGGATGTGGCCTTCAACCTCATCATCCTGTCCCTCACTGAGGGGCTCGGCCTCGGTGGGCTGCTGGGGAACGGGGCGGTCCTCTGGCTGCTCAGCTCCAATGTCTACAGAAACCCCTTCGCCATCTACCTCCTGGACGTGGCCTGCGCAGACCTCATCTTCCTTGGCTGCCACATGGTGGCCATCATCCCCGACTTGCTGCAAGGCCGGCTGGACTTCCCGGGCTTCGTGCAGACCAGCCTGGCAACTCTGCGCTTCTTCTGCTACATCGTGGGCCTGAGTCTCCTGGTGGCCGTCAGCGTGGAGCAGTGCCTGGCCGCCCTCTTCCCGGCCTGGTACTCGTGCCGCCGCCCACGCCACCTGACCACCTGCGTGTGTGCCCTCACCTGGGCCTGTTGCCTGCTGCTGCACCTGCTGCTCAGCGGTGCCTGCACCCAGTTCTTCGGGGAGCCCAGCCGCCACCTGTGCCGGACACTGTGGCTGGTAGCAGCGGTGCTGCTGGCTGTGCTGTGTTGCACCATGTGTGGGGCCAGCCTTATGCTGCTGCTGCAAGTGGAGCGAGGCCCCCAGCGGCCCCCACCCCGGGGCTTCCCCACGCTCATCCTCCTGGCCGTCCTCCTCTTCCTCTTCTGCGGCCTGCCCTTCGGCATCTACTGGCTGTCCCGGAACCTGCTCTGGCACATCCCCCACTACTTCTACCACTTCAGCTTCCTCATGGCCGCCGTGTACTGCGCAGCTAAGCCCGTCGTCTATTTCTGCCTGGGCAGTGCCCAGGGCCGCAGGCTGCCCCTCCAGCTGGTCCTCCAGCGAGCACTGGGAGACGAGGCTGAGCTGGGGGCCGTCAGGGAGACCTCCCGCCGGGGCCTGGTGGACATAGCAGCCTGAGACCTGGGGGCCTCGACCCCAGCTGCAGCCCCCATGAGGCAGGAGGGTGACTTGGGGAAGGTGGTGGGGTCAGAGGCTGGGGCCAGCTGGACCTGGAGGAGGCCTTGATGGGTGGCCCAGTCATGTGCTGCCAAATCTGTGACCATCAGTCCGGAGCACGAGGCTCCCCTGGGAGGCAGCTGGAAAGGCGAGGTCTCCACATGCCCAGTCAGGTGGGCTGGGTCTCTGGGGAGAAGGCCCAGGAATGTGCATTTTTGGGAAACCTCCCCAATGGTTCATGCACTGGCACCCAAGCGCTGCTGCTGCTACCCATTCCGTGCTCAGCTGCAGTGAGGAGACCCCGGAAAGGAAGGAAGCAAGGCCAGACGCCAGGTGAGGGGCAGGTCCAGGCCCTCCCGCAGCCCACCTCCCCTCCCACTCCAGCTTCCCCAGTGCTGCAGGGGCACCCACAGAGAACACAGCCATTCCCTCAGCTCGCCATGTCCGCTCTGTGGAAGCTAAATTGACCCTAAAATTGAAGACTGCCCAAAACTTGACCCCCTCCCCCGACGAACTGTGTCCAAAGCAGCCAGCAGCCTTTTTGTCCTGGGTCCGTTACGTTGTCGTGAGTTTTCAGCAGGAAAATGTGGTGATACCGCAAAGCCACTCATTCTATCGGCATAAGGGTGTGCATTGATCAAAAGCTGTACCCCCAACCCCAGCACAGATGCTGTGAGGAAAAGCAGGGGCTGAGGCTTCTAGAAGGCTGTGGAGCTGTCCTTGGTCATCAGGCCGTTGCTCAAGGCCATGCCACCCAGACCTGGACGATGCAACCCTCACTCGGAGCTTCAGAAAAGCCGGCCCCGTGGGTGACCCTGGATATTACAGGATGCTCCCTGGGCAGGTGGAGAGGCTCCTTACAGCCCTACCCAGCAGCCTGTGGCCCTGTCTCCCCACAGGACCCAGGCCTTCAGCAACCGGAAAGCTTCTTCCCACCGGCCCTATCTAAGGCAGTTCACCCGCCTCTGTCCTGAGCAGTCCCGCTCCAGAGGATCCCTCTAAGGAAGGAACCCAGGCTTCACCCCTCAACAGGTTTCGCGCTTCCCCTGAGTGCCGGGCCTGGCTGCCATCCAGGAGCATGTGCCAGGGGGTGCCAGAGCGGGGGCTTTGGAGCCCACAGCCTGGGCTGAGCCCTGCTAGCCACCCCACTGTGCTGCCAAGGCCATCTCTGAACATCCCTGTGCCTCTGCTTGCTCGTCTGTAAAATATGAGAACCCAGTTCTTTGAGTCTTTGAGGCCTGTCCAGCCTGTTGTGAGCCCGAGAGAAATGTCTGTCGATTCTACTGCCACCAATGCCGCCATCCAAGTCCACAGTACAATTCTTAGCCACAGACTAAGG +>XM_051693489.1 PREDICTED: Myxocyprinus asiaticus WW domain-containing transcription regulator protein 1-like (LOC127438147), transcript variant X3, mRNA +AAAGTCCGTCAGTGGACGCAGGAAAGTTGGGGAGCGGAGGAGGAATATTTCTGGAGAAATTCATATGAGGAACATTATGACATCAACTTTTTAAGCTTTATGACAACTTTTTAAAGACTTTAAAAAAAACTTTTTAGAAGGCCAAAACAACTTTTACCAAAGAAAGAAAAAACAGGCCTAACCAAAGAGGTTCAGGATTTTCATCGCCTATTTTTAATCGAATCTTTTTATTAGTAGGATTTGTTTTATTTGTTTGTATATCTAACAATATGAGCGGTAACCCTCTCCAGCCGTTGCCGGGCCAGCAGGTGATCCATGTCGCCAAAGACCTTGACACGGATCTGGAGGCTCTTTTTAACTCGGTCATGAACCCAAAGCCTAGCTCCTGGAGGAACAAACATCTGCCCGAGTCGTTCTTTAAGGAGCCGGACTCGGGCTCTCACTCCCGGCAGTCTAGCACGGACTCGGGCAGCCACCCGCCGCGGCTCCAGGCGCAGCACGTCCGTTCGCACTCGTCTCCGGCGTCCCTGCAGCTGTCGTCGGGCGCGCTGAGCGCTGCGACCCCCGGGCGTCATCACACTCATATCCGACACCAGTCGTTCGATGTGGCCGAAGAGCTGCCGCTGCCGCCGGGCTGGGAGATGGCCTGCACTCCCAACGGACAGAAGTACTTTCTCAACCACCTTGAGAAGATCACCACATGGCATGACCCCAGGAAGAGCATGACCCCGTCGGTGACCCAAATGAGTCTGCACAATCAAGCGTCTAACAGTGCTAACATACAGCAGCGCTCCATGGCCCTGTCTCAACCCAATCTCGTGTTAAATCAGCAGGCGCATCCACAGCACCTGCAGCAGCAGCATCAACAGCAGCAGGTGCAGGCGCAGACGCTTGGCTCGCAGCAGCAGCAGAACTCTCAGGCCAGCATGTTGAACATGAGCGCACAGCAGCACCAGCAGAAGATGCGACTGCAGCGCATACAGATGGAACGAGAGCGCATTCAGAGGAGACAGGAAGAGCTCATAAGACAGGAGGTGGCGCTCCGGCAGCTGCCCATGGACTCTGATAATATGGCATCTGTGGCACCAGCCATCAGCTCTCCGGCCATGACACAGGGCAACATGCCCAACAACAGCACAGATCCCTTCCTCAACAGTGGGCCATACCACTCTCGAGAGCAGAGCACAGACAGTGGACTCGGACTGGGCTGCTACAGCATCCCCACCACCCCTGAAGACTTCCTTAACAACATGGAGGAGATGGACACAGGTGAGAACATGGTGCCGGTCAGTGTGAATGTACCGCAACAGAGTCGTTTCCCAGACTTTCTGGATTCCATGCCCGGCACCAATGTGGACCTGGGCACCCTGGAGGGCGCTGACCTCATGCCCATCCTGAACGACGTGGAGTCAGTCCTGAACAAGAGCGAACCCTTCCTCACCTGGCTCTAGACTCAAACAGGACACTATAGACTTTTATATATACGTACATATATATATTATATATACACAATCAGCCTCCTCCTGTAGTTTCACTTTGTAGACATCAGTTTTGTTTCCACACACTACTCTGAATTTCCTTTTCTTTTGCTGAGTCAAAGAACAATATTTACCAAAGTGTTTAGCCTGCGAACAAATATGCGAGTACGCGTCAGTAATAGCCGTAGTGTAGAAAGACTAATGTGTTTGTTTTGTAACTGAAATTGGATAGATTTGATTATGTTCAAAATTATCACATGAACACATCCTTTCCACAGCAGACATGCCTGGATAGTGTCCTAACAGTGGCTGTCAATCAATCTGCCCAATCATGTTTAACAGTGAAACATTCAAGAAAATGTTCAGGTAACATTTTACTCCAAAATCAAAAGAAACAAATAAGAAATGTTATTTTGCATAAAGAAAATGAAGGACATTTTAGGACCATCAAGTTTTTTTTTTTGTTTTTTTTTGCATTGTGACATTTTCATGACAATTAAGCATATTTCCCCCCCCCCCAAATTATTTTTAACCGCAATGCGAAAAATCTCATTCTAATTACCGTAATGTGAAAACATAATGAGGTATTAAACTTGTAAAGTATTTTTGTACATTATGGTAGCATTTGGTCTACTGCCTTTATGCTGATTTTTTTTTTTTGTTTGTTTAAATAATTTTATTTAGGGCTTTCAATTTAATGCACTAATTCAGTGCGATTAATTATATAAATAATAATGTGTTAAAGTAATATGGACACTGGCTACCACCAGTTCGCTAGTTCGAATCCAGGGCATGCTGAGTGACTCCAGCCAGGTCTCCTGAGCAACCAAACTGGCCCGGTTGCTAGGGAGGGTAGAGTCACATGGGGTAACCTCCTCGTGGTCACTATATTGTGGTTCGCTCTCGGTGAGGCGCGTGGTGAGTTGAGCGTGGATGCCGCGGTGGATGGCGTGAAGCCTCCACACACGCTATGTCTCCGTGGCAACGCACTCAACAAGCCACGTGATAAGATGTGTGGGTTGATGGTCTCAGACGCAGAGGCAGCTGGGATTCATTCTCCGCCACCAGATTGAGGCCACTACGCGACCATGAGGACTTAAGGCACATTGGGAATTGGGCATTCCAAATTGGGAGAAAAAAAAAAGAAAAAAGTAATGCAATTAATCATGTCTTGAGAAATTCAAGCTTGAAGTACCACCTGTTTTCTCCAGAGGGCAGTAAACGAAACTTCAGCTGTATAGGTAACACGAAGCTTATACAGACAACAAACCAACCCTTCAGCAGACAGCACAACACGAGGACACATTCTTGCATTCAAAACACAACTTGATGGAGTGCAAATCTGAACTTGGGGATCTCAAGAAGTGTTTTTCTAAGTATTAAACTACTTTTAACTTGACACAGTGACCTAAAAACGGTATGATTATGATGCGACGGAACCAAAGTGAGACGCTCCAAAAGCGTCCATCTGACGCAGGTGAACATTGATGCGTTCTTAGACAAGCCCTCATAATAAATCTCGGACTAATTGAAAAATTCAATTACAAAATGAATTGCTGTGAACTGTAGGACAATGATAGGCTTATATTCAATAATATGCAAATAAACAATACACACATTCTAAAGCCATATATATATATA +>KU122020.1 Uncultured bacterium clone 26372 16S ribosomal RNA gene, partial sequence +TACAGAGGGTGCAAGCGTCAATCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGATACCTAAGTCGAATGTGAAATCCCCGGGCTTAACCTGGGATCTGCATCCGATACTGGGTATCTGGAGTATGGTAGAGGAAAGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAGGAACATCAGTGGCGAAGGCGACTTTCTGGACCAATACTGACACTGAGGCACGAAAGCGTGGGGAGCAAACAGG +>XM_050382592.1 PREDICTED: Mercurialis annua probable xyloglucan galactosyltransferase GT14 (LOC126688031), mRNA +GGAAAGTTGACAAGATTCCTTGAAATGTCACAAAACCTTCCATTTTTATTTTTTCTCTCAGATTTATTTCCACCATTCACTAACTTAATTATACACTCTCTTTCACCAACTACTTAACCCTATTACTTCTCTCAAATACTACTCCATTAGCAGCCACCATTTTTGTTCATTATTTCCACTAAACTAAGCTACTATACACAATGCTAGAGAAACAATCCACAAAACGGCAGATGGAAAAATCTGGTTTAGAGCATAATAGATCAGTCTGGTTTGTCGTTTTGATCATTCTGATACCTTTCTTCTTCTTCTTTCTTTATGCTTTTGATTATTTATCTTTATTTGCTAACATATCCAATCAAAAATACGAGAAAAATTCTGATGAATCTTGTTCGGGTCGTTATATATATGTTCACGATCTTCCTCCACGGTTCAACGATGATATTCTTGAAAATTGCAGTACCATTAACAGATTTGTTAACATGTGTCCTTTTCTGAAAAACTCAGGTTTTGGTGTTCAGGTTGTTGGAGACTATCCTGACGGGGTCGATTTAGGACAGAACTGGTTTGCAACTAATCAATTTTCTTTAGAGGTTATATTCCGTACTAGAATGAATTATTATGATTGTCTGACGAATGATTCTTCTTTAGCTTCTGCCATTTTTGTACCGTATTATGGCGGACTCGACGTGGTTCGATACCTGTGGGATTATAATGCTACAAGAGATTATTTAGGTGTTGATCTTGTCAATTGGCTAACTCAAAAGCCTGAATGGAATAAAATGTTTGGTAGAGACCATTTTTTTGTTGCCGGAAGAATTTCTTGGGATTTTCGACGCCTGAACGATCAGAATGACGGTTGGGGAAGTAAACTCATGTCGTTACCTGAATCTATGAATATGACAATGTTGTCAATAGAATCAACTGCGTGGAGTAACGAGTTTTCAATACCATATCCGACTCATTTCCACCCGTCAAGCGACGCTGAAGTGATCGAATGGCAAAACCGAATGAGAAAGCAGAAGCGGAACTATTTGTTTAGTTTTGCAGGCGCTCCAAGGCCTGATCAGAAAGATTCTATCCGTGGACAGATAATCGAGCAATGTTTAGCTTCAACAGGGTTATGCAAGTTGCTCAATTGCAGTTCGGGGAACACATGTGATAATCCTGTCGAGGTGATTAAGGTATTTCAGGATTCTGTTTTCTGTCTGCAGCCTCCAGGGGATTCATACACAAGACGATCAACTTTCGACTCGATTGTTGCAGGATGTATTCCAGTTTTCTCCCATCCGGGATCCGCTTACGCACAATACGAATGGTATTTACCGAATAACTATTCTAAATATTCCGTGTTCATACCGGTGGATTTAGTAATAAATGGAAGTGTCAGCATTAACGAGACTCTGATCAAGGTTTCTGATGATGAAATTGTGCAAATGAGAGAAGAGGTCATAAAGCTGATACCAAAGATTATATATGCAAATCCTAAGTCAAAATTAGAGAGTACTGAAGATGCATTTGACATTGCAATTAAAGGAGTTCTTGAAAGAGTTGAAAAAGTGAGAAGCAAGATTGATGAGGGAAAGGATCCAGCCGTTGGATTTGCAGAACCAAATTGGAAGCTCAGATTTTCAAGAATGGGTCTACAACAAAATTGGACTCATTTCTTCACGTAAATGAAAATGTTGAAACAGAAAATGGTAAAATTAGTACAGTTTTATAAATATAAATTTTGGAAAGTTATTTTGAAATCATAAATGCAAAAATGTAGGACTTAATAAATTTTTGTGAAATTATAGCTTCTGAAAAGTAATGTATATTAGTGTGGTTAATTAGAGGTTCTAGCATTTGCATAATAGCATTTCTTCTGTTCACAATTCTCTATGTGATTAGATGATATAAGTTTTGGTGGAAATTTTGCAGTCCACCAATTTATA +>XM_022914722.1 PREDICTED: Durio zibethinus uncharacterized LOC111313871 (LOC111313871), transcript variant X2, mRNA +TCCATTTAAGATGCAGATAGTATGTTTTCCAATTTTCAGAGTGATACCTTACTGTATTGATGATTCGAAGCCAAAAATTTGCAGTCCAAGAATCTCAACTCACCATTTCACATTTCACTGTAATGAATTTTTACAGGCAGACTCCAAGCTTGGTCTCTTCAGCATCAAGATTCCCTTTCAACCAACTTTGTTAGAAGACTAATTCCTCAAATGGTCACTATCCATTCATGAATTTTAAATTCCAAGGTGACGTTTGCTCTATAATTGAATTCATTTCCTGGGTTGTTTTCATTTCGGAAAATCATATGAGATTTCAACTACATTTCAGTCCATCCTTGGGCCGGTTGATTAAGGTAAAAAACTTGAGCCAGAGTCCCAAACTCGACTAATCATAGCACAACACGTGTTAGTATTGAAGAATTTTTAATAAAAAAATAACAATTGAATTAAGTTTCAGGTTCATTATTGCGGTTCTGCAGATAAAAATTTTGGCAACTCTTCTACCTCTGGAGTTTCCCTGTTATCCAGCATTGCTGTTGTCATAGTCGGCATATCTTTATTAATTACAAGTGCTTTTAATTTCTTATCAGCCAAGATTTGGACTTGCAACTGCAACAAGAAATATTCTAGTTTGGCTTGACAAATCTTTGAATGCGGAAGAGTGGAGATGAGACAAGTTACTATGGGTTGTAGCAACAAAGACCAGGTGGTTTCACATGCAGGATTTAAGGACATGATGGAAAGTGAAATCAATGAATCCCCTTTTGCATCCATACCGAAACCACCTATACAAAGTAGCAGACCAAGTAGCATGGTTGTTAAGAAAGCACATACTGTGATTCCAGCTCATATTGTTGCTGAGGCTATATCAACACTCCTTGGTCTTGATCTCAGATGGTCAGGACCCATCACACAAACAGAAAGAGAATATGTTGAACAGTATGTATTGGCAAAATACCCAGAGTATGCAGGGCAAGTTGAAATAGAACATATTGACCTCTCTAGTCTTTGTATCAATGAAGAGTCGTGTGAGCCTGCAATTGATGATAAAAAGAAATCACCTAGAAGAGAGTCCTCCACACCTTCCTTTGGAAGCAATCTTCCCGACCTGGACAGGATTCAATTGGAGGCATCGAGACTGCTCGACATCCTCACCAAGAAATCTTCCTTTCCTGGAAGTTTCATTTCAATTCCTGAAATTCAAGCTCGAAACAAAGTTTTGAAGCATTGCGGATTACCAGATAATGACTATCTTGTTCTGTTCACTCCAAACTACAAGGATGCGATGATGCTAGTTGGAGAAAGCTACCCTTTTTTCCGAGGGAACTTCTACATGACCATCATTGGTGAAGAAATGGATTACGTACGAGAGTTTGCCAGTTACAAGGAAGCAAAAGTGATCTTGGCCCGTGAATCTTGGTTGGATTTGAGAATCAAGGGATCACAACTTAGCCAGTACTTCAGGAGGAAGTGTAAGCACAGTCCAAAGGGTTTGTTCTCTTATCCAGCTGATGTAAAGGGGATGCGTTATTCCATGCATTGGATTTCAGAAGCTCACAGGAATTCATGGCACGTTCTGCTTGATGCAACTGCCTTGGTTGTTGGACAGGATCGATTGAACCTTGCACTTCATCGACCCGACTTTGTTCTTTGTAGTCTGGAGAATACGCACGCTGATCAACCATCAAGGATAACTTGCCTTCTGGTCAGGAAGAAATCCTTTGAAACTACAACATCTTCATCTCATGTCACCGAGTGAAAAGTGGGATTAGCTTTTGTGAATACGCTATATGTTTAAATTATTGAACCCAAATTTATGCCAATATATTTTGGAAGTAGGAAACTTCGAACAAATATAATTAGTTACATTTATACAATTGTGGCAAGTTTCTAAAGTTGTTTACAAGGATTCTTAAATCTTAACCTCAGCTGGTTCCTTTAAAGCTGGGGTTTCGTTGCTTCAAGCTACCAATTCGAAAAAAGAAAGCCTTTCAAGCCAACAGAAAAGGAAAAATTACATAAAGAGTTGAGTTTCTTTTTAACTTGGAAATTTGGTATACTTGAAAATTCTATTACTTGGAGAAGGCATGTTTCCACTTTATCAGGTCAAGGTGTATTTTCATACATTAATCAAGTTATTTAGGTGAAAAACTAGAAAAATTCAATGTCCAACGCATTAAAAGCATGGAGTCCAAGTGTCAGAACTAAGGACAATCATCTTTAGGGTAATGAAAAATTCATGGTTTTTTCAAAGTGGACCATGACATTTTTCATGCAAGTCTGGTAGGGTGGAGATGGTTTAAGGTTTAGGCCCATCACTGTTTCAAAAAGCCATGTCAAAAGTCTTCGCTCCCATCCTCCATGTTTTTCAAGTTTACTTGTTTCTGGATTTGCAAGTCACAATCTTCAAGCGATCAATTCAATCAAACAATTCCTCCATTGTTACTCGGTTTCTGGCTTAGCAATTTGTCACCTTTACCTTCATGTTAAATAGTCATAGTGAGCTCCAGCCTTTGGTGAAACTTACTATGGATATTTGGTTTGTGATTTTGGGTTCTGGGCTGGCAAGGCAAAATGATTTTCCATTTGGTTCCTTCAAAGAAA +>XM_005089107.3 PREDICTED: Aplysia californica serine/threonine-protein phosphatase 6 regulatory ankyrin repeat subunit A (LOC101861246), mRNA +GCGCAAGTTCACCGTCAAAGTGATAATTTTTTTTATTGGATCTGCCATTTTCTCCATTATAGATTTTTTTCTTCAGGGTAAGTTATGTGTGTAGATTATTGCTATATCCATAAGTGGCGACCTCTTACAGCCTGGCTGGTGTATTAAAATGGAGCCCAAACATTGGGCCCGGTAACCCGGCCTGGCACCCGCCACGACTGGACGCACAATAAGGCACACAATATACCCTCTAGATTGTAAGGCGAGCCGGGCGATCACGGGAGTTGGGGGTGTCAATACTGCCACAGAGGCGGCGTGCACACACCGCTACACCACAACGACCCCAGAACGAAACCCTGACCAGGTGAACAAAGGCGGACATAAAAAGATCGCCCGGTTTGCTTCTCAACTCGATCGATTTCAGGCTGACTGAAAAAAAAATTCCGATACGTTCAGTTGTAATTCTACATGCAAATCTTTGTGTGGTGGGATCAAATCAGAGCGGAGAGGCTCTTCGGATACTCGGCTTTGTTGTGTATTTGCTGGTTGACTGAATTCTGATAGCCATTAGCTTTGAGCGATCGAGTCGCCCCACTCCTGGTAGCTGTGTGTAGTGCAGTCTAAGCAACACAGTGCTCGCCTGGACGTACGTAAGCCTACAGTGAGAACACCGGTCCAAAGACAGGATTATTTGATCTGTGCAGACGGATAGTGCCGGATTAGTGAGATTGCACTCCTGCAGGATTGCTCCAGCCAGCGACTGTGCCCTCTTGTGGCTATGGAGATCTAAAGAGGACAAGCCTTACAGTGCCGGACCGTACAATACAATAGTGAGACAAACCCTTGCTGAGTTGGATACTTTTGGATTCTGTGTTGGTTGAATTTAGGTGGTCTCACATTCTTTTGATATACTACAAAACCCAGGAATCTTGAACTTACCAAAGATGTTGGTCTCATCTTTGATTTGCGACACCACACGACGATGAAAGACAGAGTCGCTGGTCAGACCTGTGTCCACATCATCTAGGCAGCCCCACAAGACGACTTTGCGCTGGCCACCACAGCCCGTGGGTTTGTAAGAAAACTTTAGGATAACATAATGGAGAAAATAGCCCTGCCACCCCCGCCGTCCAAGAGACTGGTGAAGACAGCGCTACATCAAGCAGTGTTAGATGAGCGCTTACATCAGGTTCGGCTTCTTGTGGACAAACATGGAGTTGGCATTGACACCAAGGACGTCCATGGCAGAACGCCTTTGATGCTTTCCTGTATCATAGACAACCATGAGTTAGGATACAGAATGGCGTACATATTACTAAAAGCAGGAGCGTACTTGAACCTTCGGGACGGAATGGGTCGGACAGCGCTCAGTTATGCCTGCATGAACGGCAGGGAAAGCTGTGTGGCTGTGTTGCTGAAGGAAGACGTGCTGGACATTAATGAACCAGATAATGACGGCAACACGCCACTACACCACGCCTCTACCTGCGGCAATCCTCGCATTGTGGACATGTTGGCCAAGGCATTTCATAAGTTCGGCCTGAACGCTGACAAGAGAAATAACTTGGGCTACACAGCTCTACTGCTGGCCTGTAAGAGCGGCCACTACGTGAGCGCACATCTGCTGTTGACCGTGGCCAAGGCATCCCCCGCTCTGAGAGATGGAGAATTTCACCTCAACGCCACTGAATGGGCACAGAGAAGTCATCAGATCCAGGCAAGGTTAACAGATCGGTCATTCTTAGCCTCAGCCCCTGCCGCCACTCCGCGGCCCCTCGCTGCGCTGTCGTTTGAGCGTGAAGACAGCATGTACCAGAGACCCTGGGTGCCCATCTGTCGCCTGTACCGAGTGCCCAACCCTCACTTCTCGGCGGACAACTTCAAGCTGCCAGACATCCTTCTTCCTCCACCGGGCATCAGGAGTGAGCTCTTCTTGGATGGGCTGGATGCCCGCCAGATATTGCTGAACGAGATCGAGCTGTCAGAAAGTAAGACCCGACCTGTCTCCACGAAGGCGACATTGTCGAAGTGGAGCCATCCTCCAACAGCCAAGCTAAGGAACATCTCTCAGAGGAATGCCCCGTCCTCTGCTTCCGTGCCCGACATGGTGACGATGTTCAAGATGTACTGCGAGCAGTACCAGCCAGACTGGCGCACGATGAACAAACAGAGGCGGAAGACGATGGCCGTGGGTGGGCAAGGCATGACGTCCAACAACAGCAACCACTCCTTCTCCGACATAGCCGGGGCCGCCCATGGAGAGGGCGTGGAGATGCCTAGTTGATTACGTGTTGACTGATTTATTGAGGGCTGTGTCGTTGTGAACTGTGACATCTTTTTTTTTTTCAATCTTAGTCTCTGATGAGACGATTGATTATAACTATCGGACAAAACGTTGGTCAGCTGTTCAGAAATACTAAGCTCAAATTTCGTTTGCTTTTGTATAAAAATTTTATTTTTTTTAAAGTAAAGTACAGCAGCTTTACTGGAACTGATTGCATGAGCTCAAGAAGCACAATTTTGTCGAAATTCAAATTCTGTATGTCAGAAAGCAAAATTTAAAAAAAAGAAATGAAAAA +>XR_006395823.1 PREDICTED: Acropora millepora uncharacterized LOC114972299 (LOC114972299), ncRNA +TCTAAGAAGTGCATATTCTTTATAAAAAAATCAATGAAAGGAATATAACATAGTTCAAGTGCGCTTTCCGTTTCCGTACGTAAATTGTCAAGATTGCAAAGGACCGAGAGTAACTTGAAAACTGTACACGGCAAAGTCTCTGTATAGAAGTCTTAACCAAGTTGAACTCATGATTAAATTGGAACCAGCGCCTCTGAGAATACCCGATTGTTTGGATCTGCGAAGTCGATTCATCCGCAAATTGTCCTCTGTTTCAGGGGAGAGGAAGCCTAGCCAATGAGTAATTGATAACATTGCCGACTACACGATCGTACAAACGCTTCTCTTATGGCCAGACCAGCTTTATGGAAGTCGCCCGCTCTATGGAATGTTTGTTCGACATATAGCGTTCAGTCGAACAATTTCATCATTGACTCGGTTTTCCTTACCGATCGAGTTTAATTTGCAGCATATCAACGATGAGTCACGTTCACATGACGTAGTAGACATTGCATAATACGGCCTCATATGGACTCACGAGTTGGCAGGCGTCCACTCACCCACCCATAATCCTATTCTTGAGGTTTGTTTGTATTTTGACACAACTTTAGTCCTCTCTGACAAGCATGAAATCAAGACACAAGATACTGAAATAGATATTGAACTCATTTCAAGCTGACATCTTTTATTTGCTTAGGCTGTTATATAAATTAAAAGTTTACTGGTTTTATTCTTATAACATTATATAAAGATCAGCATAGTAGATCATGA +>XM_002951530.1 Volvox carteri f. nagariensis hypothetical protein, mRNA +ATGCCCGCAACTGACGATCGCGCGGCGGACACCTCCTGGCTCCACGTCAGCAACACCATCGTGTACTTCCTCGCGTTCTGTATCAACGTCCTTGTCAACTCGGGTGCCGTATTTCGTACTGTACGTTCAGTTGACCGGCAGTTCGGACCCGTACTCACACCTGCCGGATGGTCGTACTACATCCGAGATCTGACGCTTTTCTTATGGGGTCTAGGAGTGACGTGTCAGAGCTTGGTGGAGCACAAGGGCTGGAAAGACGGACTCGTGGCGTGCATTGGCTACTCCTGTTTTCCCCCCCCCCCAACTCCCCGCCCGCGCCACCCCCGCCGCCTACTGACCCGGGTGGCAGTGCTGGTTCCGGAGCTGCAGAGGGAACTGCTGGCGGCGGGGTTTCGGGGTGTGCCCCCCCTGGCCTACCTAATCTACGTGTACCCAACTTCCCTGGCGTGTGGCTGGCTGCTGGTGCACCAATGCCATGTCACCGCGCTGGCAACTGGCCTGGTGACGAGCTCGCATCAGGCGGCGCTCAACGTTGGTTGTGTGACGTTGGTGCTGGCGACTGCATTGGCGCTCCTGCTGCTGGTTCGCCTCCGCGACGTGGTGTTTGGACTTGCCTTTACCTGGGGCTGCGTGGCGGTGTGGGTGGCTGGGTTCACCACCCAGGAGGATTACCGCCCGGACCAGCTGGTGGCCTTCTTCTGCGGCCTGGTCATGGGAATGTTGACGTACTGCGTAGCGGCAGGGCCGCAGGTCAGGATGGCGTGGGGGGGATGGACGGCGGCGGTGACGGCGCCGGCAGCGGCTCTGCCGCCGCCACCGCCGCCGCCGGCACCGGCAGCGGCTCCGCCGTCGCCTTTGGCTGCTACTGGTGGTATGACATCCGGAGCAATACCAGCAACGAACAACTAA +>XM_041800643.1 PREDICTED: Cheilinus undulatus beta,beta-carotene 9',10'-oxygenase-like (LOC121518372), mRNA +TTGCTGGTTAAATTATGGTCCATCTGGAAGCAGATGCAGACAGAAGAAGCTGTGTCCATCCATTACGACGTCGTCCATGGCTCCGGTGAAGTTCGACAGCTCAGATGCCGCCGTTCCTATTGAAAATGGGCCAGCCAAGGCATGTATCACCTCTGTACTGAAGGGTCTGGAAATGATCGCCCCTCTGGTCCGCTCTATGGAGGAGACCCCTGTGCCCATCCCCACTGAAGTACATGGGACCATCCCCTCCTGGATCAATGGAAACCTTCTCCGCAACGGCCCTGGGAAGTTTGAGTTTGGGAACACACACTACAACCACTGGTTTGATGGCATGGCCATGCTGCACAAGTTCAAGATCGAAGAAGGCCAGGTGACGTACATGAGTCGATTTTTACAAAGTGATGCCTATAAGAAGAACAGTGAGAGGGACCGCATTGTGATGTCAGAGTTTGGCACCCTCGCCATGCCAGACCCCTGCAAGAACTTCTTCCAGCGCTTTCTATCTCGTTTTGAGATGATTGAGGCCACTGACAATGCAAGTGTGAGCTTTGTGAAATACAAAGGTGACTACTATGTCAGCACAGAGACCAATTTCATGCACAGAGTGAATCCTGAGAACCTGGAAACATTGGAAAAGGTAGACTGGAGCAAGTTCATTGCGGTAAATGGAGCCACTGCCCACCCACATGTTGATCCTGACGGTACCACCTACAACATGGGAAACTCGTACGGAAGCAAAGGGGCCTTATACAACATCATCAGAGTACCCCCAGAGAAGAAAGAGTCCACAGACACCCTGCAGGGAGCCAAAGTACTCTGCTCTATTGTGCCTGCAGACAAGGCGCACCCCTCCTATTACCACAGCTTTGCCATGTCTGAGAACTATGTGGTGTTCATCGAGCAGCCGATAAAGATGGACCTGCTGAAAATAGTCACATGCAAGCTGAGAGGGAAGGCCTTGAGTGAGGGCATCTACTGGGATCCAAAGCTGCAGACTGTCTTCCATCTTGTTGACAAGCGCACTGGCGAGGTCAGCTCAGTGAAGTACCACACCAAAGCCATCTCAGTCTTCCACCAAATCAACGCCCACGAGGAAGGTGGGTTCTTGTTGCTCGATATGTGCTGCTCTGACGATGGTCAAGCAATCAACAACTACCTGATCCAGAACCTACGCAAGTCAGGAGATGCTTTGGATGAGGTGTACAACACTCTGTGCCGGGCTTTCCCTCGCCGTTTCGTTCTTCCTCTTAATGTGACCAATGAAACCCCATTAGACCAAAACCTGAACACTCGACCCATGAGCATGGCAACCTGTGTCAAAATCGGCAAAGACAAGGTGTTCTGTCAACATGAGGATCTACATGGAGAGGACCTGCAGGAGTATGGTGGACTTGAGTTCCCACAGATCAACTACAGCAACTACAACACAAAGCCATACCGCTATTTCTACGGTTGTGGCTTCAGACACCTGGTGGGCGATTCTCTGCTCAAGATGGACCTGAAGGACAAGTCGCTCAAGGTGTGGTATCAGAAGGGTTTCTACCCATCAGAGCCGGTGTTTGTCCCATCACCAGATGCTGTGGAGGAGGACGAGGGTGTTATCCTGTCTGTGGTTCTCACCCCCTCACAGGATAAAGGAACATTCCTCCTGGTTTTGGATGCTAAAACATTTGAAGAGCTGGGCAGAGCCAATGTGCCGGTGAACATGGCTTATGGCTTCCACGGCACATTTAACGCCTGTGAATGAATGATGTGATGTGTTACTGATGTTGACTATAACATGAAGAATACCAGTGCAGTGTCAACCATTATAACCACTATAATCCAGATGGTACTGACTCACAGCTCTACATGTTAAAGACAGATCTTCTGTTACTGAACAAATGCTCTTTTTCATTGGTTTCTGGTTTGAAATCAGACCCAAATGTGATGGTATTGATCAGTCCAATCATATTCAGGCAAACTGAAGATGAGTATTATAAATACATTCCTTTGGCATTAATTGTGCTGTCGTTATTCGCAACAGAGTGTTATGACCTCTTATTCTGCTGCCTTAATCCTGGTCATTGCAGGTTGTAGCATGTTTCAACCTTTAGGTCACTGAAGTGCCAAATGCTTTTCTTTTGTACTTCTTTTTTAATTGAGCAATACATTTTTGAGCTTGCATGAAATTTTGAACTTTTGTAAACTCTTCTTGGCATTAAATTTACTATTATATGAA +>XM_003028818.1 Schizophyllum commune H4-8 Mg2+ transporter protein (SCHCODRAFT_01102597), partial mRNA +ATGCCAGGAAACGTCGAGACCGTGTCCGGTCATTTCAAGAAGTCCGATCTAAGCGCCGAGCATGGCCTCAATATACGAGATCTCCGCAAGATTGATTCTCGAATACCCAACCTCGTCCCCACTATCCTGGTCCGCAAAGAGTCCATTCTAGTCAACATCCTCCACCTCCGTGCCCTCATCAAAGCCGATGCCGTCGTCCTCTTCGATACGTATGGCTCTGTCGACTCCAGGCTACACTCCACTTTCCTCTACCACTTGCAGCACAACCTCCGCAGCAAGGCCACCGGCCTCCCCTACGAATTCCGCGCCCTTGAGTCCATCCTGCTCTCCTGTCTGAGCGCCCTCGAAGTCGAGATGGTCTTCATTCGCAACCTCGTCGGCACCCTACTCGCCGAGCTCGAGGACGACATCGATCACGACCGGTTCAAGCGCTTGCTGTACTACTCGCGTCGGCTGGACAGCTTCCAGAATCGGGCGAAGTTGGTGCAAGACTGTTTAGACGAGCTGCTCGACACGGACGAGGACCTGGCGGCCATGTACCTGACGGACAAGAAAAACAATGCGGAGCGGCCGGATGAGGACCACGAGGAGATCGAGTTCATCCTGGAGTCCTTCTCGAAGCAGGTGGAGGAGATCGTGAATGAGGCGCAGAGTATGCAGAGCAACGTCCAATCCACCCAAGAGATTGTCGAGCTCATCCTGGATTCCAATCGGAACGCGCTCTTGACGCTTGACCTCAAGGTCTCCATCGCCACCCTCGGCATCGGCATCGGCACGCTCATTGCAGGCCTCTTCGGCATGAACCTGCGCACAGGCTGGGAAGACGACGCGCACGCCTTCTGGGTCATGTCGGGCGTCTCGGGCGTTGTCGCGATCATGGTGGCGTGGAGGGGATTCAGAATACTTCGCAAGATCAGGAAAGTCGGCCTGTCGAGCACGCATAGCCCACGGCAAAGGAGGCGACCCTTTTTGCCTCTGCCTTTAGGGCGCGAGCGAATCGGCGACGGCTGGCCATAG +>XR_007359457.1 PREDICTED: Ostrea edulis uncharacterized LOC125645827 (LOC125645827), ncRNA +ACACCCGCTGTGAGTCCTGTATCTTGATCATTTAAACAGAGTTAAATGGTTAAGTAATATAGATAGTGGCAAAATAACAGGTGTTCTTTTCATTGATCTTAGTAAAGCCTTTGACACTGTAAACCACCAGGTATTGTTACACAAGCTTTTATCATTTAGTATTTGTCAAAATTCTTTTAAATGGTTTCAGTCTTATCTTAGCGGAAGATCACAATGTGTTAGATGGAAAGGTGTTTTGTCAGATGAAAAAGATGTTACAATAGGAGTGTCTCAGGGGTCCATATTAAGTCCATTGTTCTTCATTTTATTTGTTAACGATTATCCTAAATGCCTAAAGCACTCAAATGTCTCTATATATGCAGATGATACATCTCAGGATGTTTCACATCAATCTATTGATGTTATTGAGCAAAGGTTACATGATGATCTTTTAAACTCTATGAAATGGGTGAAAAGTAATAAACTTACGATGAATTTAGAGAAAACACAATGTATGTTGATTGGCACTGCACAAAAACGCTCAAAGTGTAGAAAAATGTGTATTAAATTAGGAAATATTGTTTTAGATACTGTTAAAAGGGCCAAACTTCTTGGTGTACAAATAGATGAATGTCTAACCTGAAAAGGGCAGCCAGAATTATATTGAAGGTGAAAGTAACTCAGACTTCTACAGCTGATATTTTTAGTGTTCTTGAATGGATGCCTGTTCATGATTATGTTGTATATAGAAAACTAGTGCTTGATTTTAAGGTTCTTAATGACATGACACCAGAATATATGAGAGTTTTTAGTTTTGTCAGCCAAGTTAGTTTCAGAACAACAAGAAGTAGCGATAGTGGCATTTTATATTTACCAAAAGTTTGAACTGAATATTATAAATGGTCTTTTAAGGTATCCTCCACAATTTTATGGAATGAGTTGCCCGAGTCTGTCAGAAGCTGTGGTTCTATTACATCTTTTAAATCAGCATATTTGCAGCATTATTACTCAAATAAGTGATATATAGATATGATGTATATGTTTATTTTTCCCCAGTGATATGGTGTGTATATTGTATGTATATATTTCATATTATGTTATCTATTTTTCTATTCTTTCATTTATCTGTCTGTCAATATGTCTTATACAGGACCACAATGCAAACTAGTCATTTGTACTAATTGTGCTATCCTGTCTAAATAAAAGAATTTATTTAT +>XM_011701982.1 PREDICTED: Wasmannia auropunctata histone demethylase UTY-like (LOC105457365), transcript variant X2, mRNA +AGACAATAAGAAAAATTACTATTATCTTCTTTACTTTTCTTACTGAGGAAATAATCCTCCTCATTTATCCGATTTTTTGGGGTGTTCCGCGCTAAAAATAGTTTCAAATCTTGTCATACGTGAAATCTGCATAAAATTTTGTAAGAATTTTATTTCATATCTCCGTTTCGTATTTGCATAGTCATGTCTTAGATAGGGAATTATTTCGAGCATTTATGGCATAATAATAATATAAAAATATTGCCGGGCAAGTGATATGATTATTTGGGGAATAAGGAACGACGCTATGTCCGATGATTATTGTTTATCTGTAGTAGCAAAAAATTTCTAACAGGATATTTAAACCAAATAGCTTTAGTGTGTGTGGGGGGGGGGAGGCCGTTTATATTATTGAACCTATGTCCTTTGTATCCGCATCACTTTACCTTCAAATCCAATATCAAATGTGTTAGCAAGAACAGTCGCAGTTCGTTAGTGGTTGTGAGAACAATAGAGAATTTTAACTAGTATACACGTATTTCTTATCTTGCAAAGAGTCTGTATTTCCTGCTTTTTATAATTTTAATTTAATTATCCATCCAGACGGCAGTTGAAAGAGAAAATAAATCTCAATGAACGCCTCAGAGATTATCAAGCTGTGCAAAGAGCCGATCAACCAACGATTAACGGAAGAGCAATTGTCGCCGCCGGTACCGAGCTATCACGTGAACAGCAGAACGGATGCATTCCATCCGAAGCTGCAGAGAACCTGCCTGGATTGTCCCGTTGCCGTGATACGCAATCTCACGGCAACGCTCGAGATCAATCTGGACCTTTATTCGACTAAGACTCTGGTTGAGACACGGCCAAATACGAAAATCGACATACGCGAGCAGAGAAGATACGCTTTTGATGAGAATTGGGACGAGGAGAGGAGAAAGAAGAACTGGGCGTGCACCAGTAAAATGAGTTACATGACGATCAGCAAGTACGCGAAATATCAAACCGACAGGCTTCTCGAGGAAGATCAAACTCTACTCGAGGAAAATCGAAATCCCAACTTGTCTACTTTCGACGGGCCCGACAAAGTGACCGAACGCAACAAGACGGTGAAATTCGCTACGAATGTGGACCTATCGAAGCCATGCTGGAAACCGCAGTTGAACGAATTAACGAAGTTACCATCCTTGTTCAAGGTGGAATGTGCCGACAATATGCTTAGCTACATGTGCCGCGATCTCCTAGGGATGAATACCGTACAGTTATACATGAAGGTACCCGGCTGCAGAACGACCGGTCATCAAGAGAATAACAATTTCTGCTCCGTCAACATTAACATCGGACCGGGTGACTGCGAATGGTTCGCGGCGCCGCACGAGTACTGGGGCGTGATAAATTCACTCTGCGAGCGAAACGGCGTCGATTATCTGCGTGATCCCTGGTGGCCGCCGAACCTGGATGTTCTGCGCGAGAATAACGTCCCGGTGTACCGATTCGTTCAGAAACCGGGCGATATCGTGTGGGTGAACGTCGGCTGCGTGCATTGGGTGCACGCGATCGGCTGCTGCAATAACATCGCGTGGAACGTCGGCCCGTTCACCGTCAAACAATATCAGACAGCGATAGAACGTTACGAGTGGAACAAGCTGCGGCAGTACCTGTCGATCGTGCCGATGGTGGAGCTTTCGTGGAACCTGGCGCGCAAAGCTAAAGTGTCGAATCAGCTGTTGTATCAGCTGATCAAAAACTGCCTGTCGAACACGATGAAACAAAATTATTTGACGCTGGAGTTAATAGAGAGCAAGGGTCTGACAGTGAAAAAATACGCTGACGAGTGCGAAAACGATGAGACGGCTTATTGTGAAGACTGCGCTGCTGAGATATTCAATATAATAATCTGCAAGCGCAAGAGCAAGAAGACGAAGACACATCTGGTATATTGCCTGGACTGCGCGCTGAAGCAGTCTACTTCGCTGGAAAATTTTGTCTTTTTGGAGAAATGTTGTATGGAAAATTTGATGAACATTTACGATAAATTCGTATGCTACTAATTATCGGTGCTATCATCACCATTTCCTTATTATCAGCGTTGATACTTTGATGTCGCAGGTCGCAGACACAAACAGCTAATCTTATTGGTATAGCGATATTAGATATATGAGCATCTCCTTCCTACGAATATTCTTGTCGAAACATATTACAGTAGCGAGAATAAGCATCTTTTTTTGTGGAATTATCGAATTTCATTCTTCTTTTATACACTTAATTTTAAGACTGAAAAACTCATCGAACGTCTGTATTGTGAATTTAGAGTCAAACAAGGTTCCTAATCATGAACATTAAAATTATGTGCACTCTAT +>XR_007367990.1 PREDICTED: Ostrea edulis endochitinase-like (LOC125669718), transcript variant X4, misc_RNA +TACGTGTGTTTAAGTAGCACAGTCGAGCAGCACAAAGCGGAGTCCCGAGTAATGTGTGGCGTGCTCCTCTGCTTAGAAGAAGGAACTGTTATATTCACATTTGATGTCAATACACTAATCTGTCGAACTTACAAAGAGGAAGATTTTATCGGATGCCTCTTTCAAGCTTGTTCGACCTGTAAAACATACGGATATAATGAGTTGGAAACCACCACCGCCGCCAATGCTGGTACCACAACAGTACAAACAACCCAAGATACAGGACAACAAGGTTCTATAACAACAGTACAGACGACCCAAGACCCAGGACAAGAAGAGTGTCTCAGTCATTGTGAATTTCGTTGAAAAACAAAATATTTTATCTTTTATTCGAATCAACTGTATCCTGCACAGGTCTTCATGGAGCACTCCTTCCTCATCCTACCGACTGTTCTAAATTCTTCGAATGTGTGTACACGAATGCCGTACCACGTGTTTGTGCCGTCAGCCTTCATTTCGATGTCAACCGCAATTTGTGTGACTACCCAGCTAATGTTGACTGTCAGTCGTAAAGCAGATTTCAAAATTAATTCTCCACGCAGGACAATATCATTGTTATGCTATTAGCACATGTAGAGTTATAAGTGAATCTTCGCATTTCAAGATAATTAATATCATGGTGTTTGGCGTGTAACAAATAATTAATGATTAATTAAAACGGAGAGGATTTATATAGGCAGTGCCTGCTGCCCAATCCTATTATGAATTATCATAATAAAACAATATTTAAATCAAATTAATTATTTGTT +>XM_024808092.1 [Candida] sorbophila hypothetical protein (B9G98_01534), partial mRNA +ATGAAGCTTTCACTCTGGACTTTGGCCGTCGCACTCCCCCTTGCTTGTGCCCAAAACAACAACAACAATGAAGATCACAATAATCACCATTCGGAAGTGAATGGTAATAACAACGACCAAAGCCAAGACCATAACCGCACCCGTGACTATAACAACTCACATGATCACAGTCACACTAACGATAACGACCAGGGTCATAACCGTACTCGTGATTACAACAACTCACATGACAATAACCACACCGACAATGACCAGGATCACGACCAGGACCATAATCGTACCCGTGACTACAACAACTCGCACCATAACGAGCACACCCGAACCAATAGTGCAGTATCTACAGGCACTTCGGCCAACGGAGGTAAGCCCTCTCCTATCGGTGCTGGTGTTGGTAGTGCTGCTGAGAGTACCAAAACTGATATCAAAACATCTACCGTGACTACAAGTTCTACTAAGATCGCTTCCACCACTGCCTCTGCCAGTCACAGTAGTACTACCAGTTCCGCTAGCTCTTCCAGTGTGTTATCCACTTCCAGCTCGACCAGCTCCACCTCTTCGTCTTCTAATGCTGGAATGGCCGTGGTCGTAGGCGGGTCTACTATTTTCGGTGCCGCCCTTTGTGCTATAGCTATTTTGTAG +>XM_028677370.1 Plasmodium relictum conserved Plasmodium protein, unknown function (PRELSG_1111000), partial mRNA +ATGGATAACAGATATAAAGATGGAGAAAGTAATACTAATAATTTGGAAGAAAATGATGTGAATAATTTTGTTTTAAAAAATAAAAATGACATAGAAAGCAAATCAGAAAAGCAATTAAATGTGAATGAAAATTTAAGTATGTATAATTCTTATTATCAAAATGTACTGAATATTAATTATAAAACAATAAATAATGAAAAAAGGGATATAAAAAACGAGCAGAATGTGCAAATTAAAAAGTTAAATGATATTAATATAGAAAGTAACTATAATATGAATTCTGCTACTATTGGTAGTAAAAATACATTAAGTAAAAATAATAATAACATTAATGGTTTGTTTAATGATTTTAGAAAGAATAAAAATAATTTTTTCAATTCAGAATCTAATTATCTTGAGGAAAAAACAGATACAAATAATTTTGATGAAGAAATTAAAACTAATTCAAAGGATAATATGGAATGTATGTTATTTAATAAACTTAATCATAACACAAATAATAAAATTAGTTCTGATGAAAATAAAAATTTAAATAATATTTATTCAAATACGAACTTCTTAAGTGATACTTATAATAATGATTCTAATAATGATGTAAATAATTGTAACTATAATTATATTAATAACGATAACAGCAATAATATGAGTTGTAACATAAATAATATGAATAAAAATAGAAATAATATATATGATAACTTAAATAAATCAATTAATGTTAATGTTTCAAATAAAAACATTAATAAGTTTTGTAGCACAAATAATAACAATAACAATTATAATAATAATAATAATAGTATTTATAATAATGCAAATATTGTAAGTAATTCAAATAATAACTCTTTTAAAACTTATAATCCAAAAAAAAAGACGAAAAATATAAATAATTTTTTAAATATTGATGTAAATGCAAATTCAGAAAAAAATTCTTCCATTATTAAAAAAAATTGCTATATAAAAAATTATCTAAATCTAGAAGGTAATATAAAAGGTAGAACTGATATTGAGAATTTTAATTATATTAAAGAAAATAAGAAAAGTGTAACAAATAGCATAAGATATAATGATAAAGAAAATAATAATTCTATTTTAGAAAATAAGAATAGTACGAATGTAATTTTAAACACATGTATGAACAAAGTTAATAATTATAATGAAGAAAATATATTACAACTGAATATTAGCAATGAAGATTGCTTTAAATCATCGAAAAATTCAAAAAATAATGATTTAAATAATGATGTAGGTAAAACTTATATTACTATAAAAGAAAATTGCAATAAATCAGAAAAAAAAGAAAATTGTTTTAGTAAGGTAAATAGCAATAACTTTCATAATAATGATATATATGGAAATGACTATTATAATAATTGTAATAGTAACATTTTTACTTCTCCACATGAAAAAAATGAAAAACTACATAATAATTTAAGTTATGAAAAAAAGTATATGAATAATAATTTTTTGAACGATAGATATTTAAATTATATGGAAAGCGATTATAATGATAATTCATTTGATATATGTGAAATGAAGAATATAAAAAAGAATGACGAAACTAAAATTGAAAATAAGGAAGAATTAAAAGATTTTTCAAATGACTATTTATTATTTAAAAATAATGAAAATTCTTTTAATTATGATATCAACGATTATGTTTTACTGAATAAAAATTTTAAAAATTATAATGCATCAGGTGAAAGTAATGCAAAAGAAATGAAGACAGATTGTATGACAACTGATAGTACTATATATACGAATAATATTCTTAATCTACATAAAAATATAGAAGAAGAGAATGATGAAATCTATCAGAATTATAATTATTATGAAAATGATAATATTAATATAATGCAAAAAGAAATTGATGAGGAAAGTTTAAATAAAAAAATAAATATAGGTAGTAGGGAGAGTATTTTAAATGTAAATAGTTTTGAGAAAAATTATGATTTTGAAGAAAATTCACATATGTACAAGCATTTAAATTTTTCTGATAATTTAAATATGAACAAAAATTTATCATTTTTAAATTTTGATGATACACTTAATGAATGGAGGCGTAAGCAAAATAATGATAATTTTTTGAAAAAGGAAAATAATAACATGAACACATGTTCATTTTTTGAGAAATTAACTTTAAATGAAAATGAAAGCTTGGAAAATGGAAGAGAAAATAATGTTTCTATTTCAATGTATGATATGCAAGAAAATATAAATGAAAAAAATTGTTTTAAATGCACTATTGAAAACAGTGATCAATGCGATGATCGTATGAAGAAAAACATGCATAATATTATTATGCATAAGAATAACCTCAATAGGAATATAAATTTTGATGTTAGTGATTTTTGTAGAAATGCTAATAATATAAGCAATGATAATATAAATGCCAGCAATAATGATAATAGTTTATGTGATAAAAATATAAATAAATATGTTGATAATAATTATTTGAATAACCATGAATATAATAATAATAACAATAATTATAATCATGATAACGATGTAAATATCTCAAATAACGAAAATTCAATTAAAAATAATTCAAGTAATGCTAACAGTAATAATAATTTAAATAATAATACAGATAACATAAATTCAAATGGAAATGATCGTAATTCCTTTTTTATGAAAGAAAATGATTTTCCATATTTAAAATATAAAAATGAATATACCAAAAAATATATAGATGAAAATAATTTAATGTTTCACAATGAATTTGACACTTTCGATATAAAAGATAAGAAAAAGGGTTGTGAAAAAATGAAAAAGAATAATTATGATATGAAATGGATTAATAGTAATTTATCACCTAATAATAAAAATGAAATAAACAATGAAGTTATTTCCAATGTTAATAGTGGAGATTGTAATAATTATTATTTGATTTTAAATAATAAAGGGATATGTTATGATACTAATAGAAGTGATTTTCCAAATGATTGTGAGGAAAAGTTTGATGATAAAAAGAAGAAAAATAAACATAATTTAAATTATTGTAATATGAATAATAATAGTAGTAACAATAACATCAATGATAATAATAAGAATATTAATAATAACAATAACAACCAAAATAATAATAATATTAACAATAACAATAATAATAATAATAGCAATAATAATAATAATAGTAATAATAACGATAATAACAATAATAGTAATGATAATAATAATAATAAAAATGTTAATAATAACAATAACAACAATAATAATAGCAGTAATAATGATAATAGTAATAATAACGATAATAACAATAATAATAATGATAACGTTAATATGAGTAATAATAATAATATTAATATGAGTAATAGTAATAACAATGATAATAGTAACAATAACATTAATATAAATAATAATAATAATAATGATAATAGCATTAATAATAATAGTAGAAAAAAAAATGTAGAAATTGAAAATAATTTATATATGAATGACTTTAATATTGATCTACTGAGTTATAAAAATATTAAATTTGACAATTTTTCATATAAGGGTGATCTTATAAGTAATGAAAAATCTCCAAACAACTATTTAAAATTTTCTTCTAGTAATTTATTTAACAATGATTATAATGATTGTGAGAAAAATGCTTTTGGAAATGATGTATTTAATATTAAGGATAAGGAAAATAACAATTATGTTAATTATTCGAAACTAATGAATAAAGATAATAATTCAATTAGTAGATACTGTGATAACTCAAAGGAAGAAAATAATTTAAATATATGTTCTAGTGTGCTTAATGGAAATAATAATGATAAAATTAATTTGAAGTCTTCTAGATTTTTAAAAAGTAGCATTAATAATAATTCTTATTATTCAAATAACGAAAAAAAGGAAACTTATTGTTTGCCAATAACAAATAATATATTAGAACTTAATAAAAACATAAATTTAATAACAAATGAAAAAGAAAAAGAAATCATTGATCCAGTTTTTTGTTTAAGTAAAAAAAGTTTTAAAAATAATTATTCTATGAATACAGAAAAATGTAGCAGCATTCATAATAATTTGAATGATATAAAGAATGATGAAATAATGTTTAATATTAATAACAAATACAATATGTATAACATAAATAATGAAAATAATATATACCATATAGATAATGAAGATAATATGTATAACTTGAATGATGAAAATGATATATATGATATGGATAATGAACAAAACATGTATGACAATATAGAAAATATGCACCCTACAGAAAATAACTGTGCGTATAATAAACTTAATAACTTAGAAAAAAATAATAAGAATTTATATCTTATGGAAAATGATTATATGTATAATAACATAGATAATGATATATACAATGATATGAATAACTTACAAAGTAATGAAAATATATGTGATAATAGAAATAACATAGAAAATAATTCAGATGTGTGTGGTAATATCGGAGAACATGGCAATGCATGTAACATGAATAGTATTGAAAACAATATGGATTTTATATTAGGTGAAAATGAGGAAGTGGAAAAAGAATCAAAAGGAAACGTGAATAATGATAAAATAAATGAACTTCAAAACATTATAAATAGTTTAAAATTTAAAAATAGACAATTGGAAAAGGAATTAACTGATATAAAGAATATGTATTTAAAAAAGAAGCAGTGTTTAATATTAAATAGTCTAAGTAATAAAAATGATGATATTAACAGTTATTCAACTTTTAAGGACGATACCAATAATTCTGACTGTGAAAGTGCAGTTCAATCAAGTAAATATATACAGAATTTTTTAAATGATAAAGAGAAGTATAATTATGATACAAAAATATCTATTCAAAAATTTCATTTAGCTTATACTAATAATTCAATTGGAAAATTAAAAATAGCAGCGCAAAGAGATATTAGTGGATCTTTTATGGGACCTAAAGGAATACATGTAAAAACAATAAAATCTTCTTTACATATTTCTGTTTATAAAAGTGCAAAAGATGTATGGTTTCCTGGATTTGCTGATAGTCATGTTTTTTTATTAAAAGGAAATATATTTGGAATTTTAAGAGCATGCCAGTTATTATATCATTATGTAAAATCGAAAATGTCTTCTTCGAAATGCTGCATTTACCTAGTTGCTCCATTTGAATGCGTGCAAAAATTATTAGCTGATGGTTGTAAGAGAATGGCTATTATAAAAGAAGAATGTGGAGCTGATGTAAGATTAGGAAATTTATATGTACAAGTTCATGAAGGTTTTACTGAAAGATTAATGGAAATAAGAGGAAACGAAGTTAGTGTTGATTGTGCTTTGGAAAAACTAGTTATTTTTATGCAATCATGTTTTTCTGTACAGTCATATGATTATGAACTGTTAAAATATCCATGTCGCTCAGTATTAAATTTACAATAA +>HM928366.1 Uncultured Pseudomonas sp. clone GG5QJA201B0DXG 16S ribosomal RNA gene, partial sequence +AGAGATGGATTGGTGCCTTCCGGGGACGTCTGACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCGTAACGAGCGCAACCCTTGTCCTTAGTTACCAGCACGTTATGGTGGGCACTCTAAGGAGACTGCCGGTGCAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGGCCTGGGCTACACACGTGCTACAATGGTCGGTACAAAGGGTTGCCAAGCCGCGAGGTGGAGCTAATCCCATAAAACCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGAATCAGAATGTCACGGTGAATACGTTCCCGGGCCTT +>XM_012845165.1 PREDICTED: Setaria italica wall-associated receptor kinase 5 (LOC105914170), mRNA +ATGGGAAGCTACAAATGCACGAACCAGCAGCACCAGCATCAAGCCATAGAAAGTATCATAACAAATTATACGCTTTCAGGTTTAAGCATCATTATAGGAGTTGGTAGCGCAGCAGGCTTTATACTTTTGGTTGTCATTATTGTCTTTATCACTCAAAGGTTTAAGCAGATGAGGGCAATGAAGCTAAAACAAAGAAACTTTGAGCAAAATCGTGGACAACTGTTACAACAGTTGATATCCCAAAGGACAGACATTGCGGAAAGGATGATCATAACATTGGATGAGCTTGCAAAGGCAACAAATAACTTTGACCCAGCCCGTGAGCTTGGTGGTGGAGGGCATGGTACTGTCTGCAAAGGGATTTTGTCGGACCTACATGTCGTAGCTATCAAGAAGTCAAATATAACAGTCCAAAAAGAAATAGATGAGTTCATAAATGAGGTCGCCATCCTCTCACAAATAAACCATAGGAATGTGGTAAAACTGTTTGGATGTTGCCTAGAAACTGAGGTGCCATTGTTGGTTTACGAGTTTATTTCCAATGGAACCCTTTATCACCATCTTCATATTTCAAGATCACTAGCATGGAACAACAGGTTAAGAATCGCAACTGAAACTGCTAATGCAATTGCCTATCTTCACTCATCAGTTTCAATCCCAATCATCCATAGAGATATCAAATCCAGTAACGTGCTCCTTGATGATACGTTGACATCAAAGGTGTCGGACTTTGGAGCTTCAAGGTACATTCCACTTGATAGAAGAGGGTTAACCACAGTTGTTCAGGGGATTATAGGATACTTGGATCCTATGTACTTTTACACAGGCCGCCTTACAGATAAAAGTGATGTTTATAGCTTTGGTGTTCTTCTTGTGGAATTGCTCGCTATAAAGAAACCATCATATTTGTCCTCTAACGGTGATGGTCTTATTGCCCATTTTTCTCGCATTAACTTACATGATGATGGCAACCTGGACCAAATACTAGATCCTCAAGTTATGGATGAGGGAGGCAAAGAAGTCGAAGAAGTGATTAAACTTGCAGTGTCATGCGTACGATTAAGGGCTGAGGACCGGCCAACCATGAGACAAGTGGACCTTACACTAGAAGGCCTTTTGTCATCTGAGAATCATGAGGAGAATAATACATTGGCAGAGGGATTTGAGGATATTGGTAATATGCAGATGGATTTTCCGTCGATTGATGAGGGGCAAAGCACGGGGGAGTCTAGTAAATGGCACAGTTTGGGACAGGATCCCTTGATGTTTTCTGGTTCTCGGTAG +>XM_031547130.1 PREDICTED: Punica granatum sister chromatid cohesion protein SCC4 (LOC116212494), transcript variant X1, mRNA +TTCCCCGAGTCCCCCATACACAAGAAGGAAGGGGGAAAAGAAGACGAGAGAAGAGAAGAGAAAAGAAAAGAAACTCTGGTCCTTGTTGCTGTTCTCAGTCTTCGCTCCTCAGGGTTGAGGGAGACGGTCGGTAAGGGACAACAAATCCGGTAAAGGACCTCCCCAGCAGTTGCAGAAAAGAGGTGAGACTTGCGGCAAGATAGTCCGGAGCACGAGGGCGTTGATCTGATTTAGAGTAGTCAGTGCAGCAGTTGGAGTAGGCTTGGTGCGGTGGGAGAGAGAGAGAGGAGAAATGAGAAGCTAAGCAGAAAATGGAAGAGGTGGCGGAGGGACTTTGGTCACTGGCGGATCACGAAGAGAAGAAGGGGGAAATCGGCAGGGCCATTAAGTGTTTGGAGGCGATATGCCAGAGCACGGTGTCGTTCCTGCCCATCATAGAGGTGAAGACGCGACTCCGCATCGCAACCCTGCTCCTCAAGCACACCCACAACGTGAATCAGGCCAAGTCTCACCTGGAGCGCTCCCACCTCCTCCTCAAGTCCATCCCTTCCTGCTTCGACCTCAAGTGTAGGGCCTTCAGCCTCCTCAGCCAGTGTTACCATCTCGTGGGCGCCATTTCTTCGCAGAAGCACATCCTGACCCGCGCACTCGACCTCATTGCTTCTGCTGCTGCCGCTGCCGCCGACCAGCTGGAAGTGAAGCTATGGGCTTGCAACTTCTACTCGCAGCTTGCCAATGCTCTCATAATTGAGGGCGACTATCAGAGCTCGATATCTGCGCTAGAGCATGGACGACTCTCTGCCACTGAGCTGCGCTATCCGGAGCTGGAGATGTTCTTCGTGACATCCACTCTTCATGTGCACCTGATGCAATGGGAGGACGAGAATGTGATTGCAAGTGCTGTCAGTAAATGCGATGAGGCCTGGGCCTCCATTCATCCTGAGAGAAGACCACAATGCCTTGGTTTGTTTTTCTACAATGAGCTGCTGCACATCTTCTATCGCCTGCGCATCTGTGACTACAAGAATGCTGCCCAGCATATCGACAGATTGGATGCGTCAATGAAGAATGAGTTGCAGCAGAGGCAGGAGCTTATGGAGGAACTCCAAGCTTTGAACCAGAGTCTCTCTAGCTCTGATCTGAGCCCCAGAGATAAATTGGCTCTGTCTGGAAAACAATCTCAGCTTCTAGAGCAGTTGAGAACAATGGCTGGTCAAGATTCTTTTGCACCAGGTAATAGTGGAACTGTCAAACAAGCATGGGGTGAGGGGCTTGAGTTGGCGCCATCCCCTATAAATGGAGAGTGGCTCCCTAGGAATGCTGTGTATGCACTTGTTGATCTTATGGTTGCCACTTTGGGACGTCCAAAAGGACTTTTTAAAGAATGCAGCAAAAGGATTCAATCTGGAATGCTTATCGTCCAAGAGGAGCTGATGAAGCTCGGTATAACAGACAATCTCAAAGAGGTGGATTTGCAACACTCTGCTATCTGGATGGCTGGTGTTTATCTAATGCTTCTTATGCAGTTCCTAGAAAACAAAGTGGCGGTGGAGCTTACACGATCTGAATTTGTTGGAGCACAAGAGGCTTTGGTGGAAATGAGAAAATGGTTCACTCGCTTTCCAACTATATTGCAGGCTTGTGAGAGCATTATTGAGATGCTTAGAGGTCAATATGCGCATTCTGTTGGCTGTTATAGTGAAGCTGCCTTTCATTACATTGAAGCAGCAAAGCTAACAGAGAGCAAATCTACGCGAGCAATCAGCCAGGTTTATGCAGCCATCTCTTACATTTGTATTGGTGATGCTGACTCATCTTCACTGGCACTTGATTTAATTGGGCCTATCTATAGAACAATAGATTCCTTTGTTGGAGTTCGCGAGAAGACTTGCATCCTTTTTGCTTATGGACTTTTGTTGATGAAACAACATGATCTACAGGAAGCAAGGAATCGGTTGGCCAGGGGCCTGCAGATGACACATGCACATCTGGGGAATCTTCAACTTGTTGCACAATATTTGACTATTCTGGGAAGTTTAGCACTTGCCTTGCATGATACAGTGCAAGCCAGAGAAATCTTAAGATCTGCCCTTACCTTAGCAAAGAAGTTGTATGATATTCCAACACAGATTTGGGTATTGTCTGTCCTAACAGCCCTGTATCAAGAAGTAGGGGAAAAAGGAAATGAAATGGAGAATGCTGAATACCATAGGAAAAAGGCGGGTGATCTGCAGAAGAGACTTGCTGATGCTCATTCATCTATCCACCATATTGAACTGGTCGACAAAGTGAAAGTTGAAGCTATGCAATTCCAAGACCTTGATATGAAGCGTCTTCTTGGTGGTCCATCCATGAGGGCAAATCTTGACATTCCTGAATCTGTTGGTCTATCGGCTCCAGCCCCTAATACATATACTTCGAGGCTGGTGGACTTGGACTTGGATACAGGAAGACGCACAAAAAGAAAATATTAGTTGGAACTCTACTTTCTTTTCCTTCCACCTATATGGTGGAATGTTCATGGTCAAACTACATACGATATCAGCACTATCAACAACAATTTACCATGTTGTAATTCATGTAGGTATAGATAGATGTAATATCTAATTTGTGTATATGTAAATCTGCGAAACATGTTACTGGAATAGGCATTACAAGGTTCTTGGTTTCCGGTGCTAGGCTCTGCTAGCCGTATTGTTTTCAGTAACCTGACACGATTAGCGATCACAGTAAGTAGTTCAGTTTGA +>XM_051656078.1 PREDICTED: Myxocyprinus asiaticus protein unc-13 homolog C-like (LOC127416634), mRNA +TCCTCCAAGGGCTTCTCGTACTCTCTCTCAGCACACACACTTCCTGTGCATCCAGACAAGGAGCTTTCACCCGTTCCAGACACACTGTCTGCTGCCCAGCGTAGTGCTACGAATTTTGTCTGGAAGAGACAGGCAAAGAGGAGGGATATTACCCAGGATCTCTCCATGATTTGCAACAGCATGTGCCTGCCGAACAAGACTTCAGCCCAAGGTTGATCCGAGCACAACCGCTGCAGCACGAAACTAGGGAGAGATGGATCATATAGAGGGGAGGACATGGAACTGAGTCTGACATCTAGAGGCTTGTGAAAGGATGCTCGGTGCTCCACAACAGGACATTTAAGAGTTTAGTTGACTGTTCTGGAGCTCCGGTGCTGTAGTAAATGGATTTGGTGTGCTGTAGGAGTAGGCTGTGATTGAGAGATATGAAATTTCTTCAGAAGTGCGCATAGCATGTGCAATGATTTTTGCTTGGCACAATTGTCTCTGAGGACATCAACTCTTCTCTAGACCCTCTTATACCACAGAGTTAACTTTCAAAACTAGTAAGCTTTTGCGTGCTTCCTGTTAAGCACCTCTGGATCAAAGACCAGTTTTGCTTTGCCGCATCTAGAGTGCAAAACTGCTGAAATATCGCCATCCATGGTTTCTGCTCATTTCAAGAAGCTATCGTCTTACATTGTAAAGATTTGCAAAGGAATGTTTACAAAGAAACTGGCAAATACCTCAAAGAAGAAAGAAAGCAGCGACAACAAAAAAGAGCCGAAAACCTTCCCAGAACTGCATGCACGGAACCCAACGTTCTCAACTACATTGAAAAGCACAGTCAAAAAAATATCCAAATGCTCATCAACACGCAATATATCTCTTGAAGAGGAGGATGGAAAAAACGACTGTTCCTCTCTCTCTCCGACATTTAGTTATCGTGTAGCAATTGCCAATGGACTACTCAAAAATGACCTCTTACTAAACAATAATGAATTTCATGAGGTCTTGTCAGTTGACAGCGATTACTCAGACTGTCTAAACGAGACCAAACTTGTCCATAGATTCGATGAACAAAAAGCTTATACAATGCCAGTAAGAAGGAATAGGAAGAGCTTGATTAGTCTAGCACCCTCAGACGGCAGCTCAGAGGGAGAGCGGGGAGAGCGCAGCAGTCTCCACACCCTTCGATTAGGTGCTCTGAAAAAGTTGAGGAAATGGAAGAAGAGCCAAGAATGTGTGTCCTCAGATTCAGAGGCAAGCAACTGGAGAAAGACTCTTGGCATCAGGAGCAAATCTCTGGACAGGGCTGGACGGCAACAGAAAACCACTACCCTGGAGCCAGGGTCCAGCTCAACAGGGTGTATCAGTCAGACTCAGGATGTGATGGAGATGATCTTCAAAGAACTTCAGGGAATCAGTCAGATTGAGTCTGAGCTCTCAGAACTGCGAGGGCATGTTAACGCCCTCAAAAGCTCCATCGACGAGATCTCCAGCAGTGTAGAGGTGGTACAGAGTGAAATCGAGCAGCTGCGTTCGGGATTCGTACAGTCCAGACGTGAGACTCGAGACATCCACGATTACATCAGACAGATTAGCCAACATACCAACAAAGCTACTCTAAGATTTCTAAATGTGCCTGAGGAGAAGTTTGAAAAAACCGAAGAGCTTATTTATCAGATTCTGAAAGAGAAAATGGGTTTCACTGATGCACGCAAGACATTTAAAATTGAACTTGCCCATCGACTAGGGCAACAAAGAGAATGTTACAATGCTAAACCTCGACCAATTGTAGTTATATTTTCAAGCCCACAAGATAGAAATTTAGTTTTGAAAAAATGTTATAAGCTAAAAGGGACTGGCATATCAATATCAACTGATAGTCTAGCACATGATTCAAAAGAAAGGAAGGACAAGGCAATGGCCTCCTCGCAGACATATGAAAGCATGGATATCAAGGTTTCAGCCAAAGATAAGGCTGAAAGTGATGAATGGGACTCCATGGAAAGTGACAAAGAGCTAGATGAATTAAATAAGAACAAATATGCAATTGTGTCCAAACCACCTCAAAAAAGTAAATCGGACAAGAAAAAGTCTCACAATCACCGACGGTTGGCTGATGACACTGCATATTCTGTGCACTATGCAGATAATATAGCCTACGATGACCCTGACAAGCAAAGCAAGTCTTACTACTCTGACCTAACACCTGGGTGGCAGTCTCAGAGTGATTATTCTACTCCCAAACTCAGTCGGTCTGAATCGGACTGTTCTAAACTTTGCCAGTCTTATTCAGAGGACTTCTCAGAGAGTCAGTACTTCAACAGAGTCAACGGCTGCTCCCTGCTCTCCTCCTCGGATCAGGAGCTTTGGCAAAGGAAGCAAGAAGACATGGCATCCTCCTGGTATGCTAGTCCTCCCAGTCAAACTCTGAGCCAAGAACGACCTTATGTGGAACATAATGAAGTTGACACCACAGAGACTATTGACAGTGGTGTAAGTAATGGTATTGTTTGCATATCAGGGGACAGGAGCCATTACAGTGGCTCTCAGCTGTCTCTACAGGGTGACCTCTCACCATGGAAAGATTGGCATCACCTCGAACAAGGTGCTGATTCAGGTTTGGATGCTTCAATTGAACAGAACATAATCTCAGAGATCACTAGCCCCTTCGACCCTGCAGCTAACCCAGGTTTCCCTGAGAAAATTACAAAATGCCTTGAGGTTGATTTACAGTTTGAAGGTGAGACCTTCTTGACACTAGATAGCACTCCTGAGACAGGCCAAGACCAAGATATAGATACAGAACCTGAACTTGTTCTAGAACCCGATCCAGAGCCAGAGCTAGAGCCAGAACAAGTACCCAGGCCAGGACCTGAACCAGAGCCAGAGGTTGTAATTGAACCCATATCAAAACCAGTACCAACACCTGTGGCCGAACCACAACCAGAAAAGAAGCCGAAAACCAAGAAAGCCCGTACTAAGCCTGAATCAGCTCCTCAAACTCTGCAACGACAAGATGTCAATGTGAACCACCTCCAACAGAACCAGAAATCTTCATCCATGTACCGCAGTCAGAGTGAGATCGGTAATGAGAAAGTGGAGGAAGTCCCTAAATCCTGGAGTAGTAGGCTCAGCATAGACCTCAGCGAGAAAACCTTCAGCTTTGGATTCGGATCCACCCTGCAAAGAGCCAAGTCAGCTTTGGATTTTGTCTGGAATAAAGGTTCCCAGAGCACTAGTGCTCCAGTCGAAGAAACAAGCAACACCTCATTCATGGGCAGGCTCAGAACCTCGTCCCAGTCCACTGAAAATAGTTCCAGCACAACCATTGACTCTGATGTTTACACAGAACCTTTCTATTACAAGGCAGAGGAGGAAGAACAAGCCAGTGAACAACCTGTGGACAATGAGACACATTATGTTGAGGTAATGGAACAAGTGCTGGCGAATCTCGAGAACCGAACGAATACCAACGAGGCTGAGGAACAGTACCAAGAAGAGGAATATGATGTCTCGCAAGAATACGACATCTCACAAGAGGGTAATCCTGTCCTAGAATACGACTGCAGCCTTGATGAGCAAGATGATGAGGAATACAGTGAGGCGTATGACGACAATCCCATGACTGAAGACACGGCGGAGTATGAAGGGAGTTTGGTGGAGTATGTTGAAGTAACTGAGGAACAGGAAGAAGAATCTGAGGAACAGGAAGAGGAAATAGAGCAGACAAAGGAAGGTCAAGATACAACGGGAACAAAGGTAGCAGCTGAGGTAAAAAAGACAGTAGAACAAGAGGATGAGAATAAAAATGTTACAGAGGTTCCTGTGGAGCCAGCACCACCCAAAAAAAGGATACGGCCCACCTTCAAAGAGGCAGCTCTGAGAGCTTACAGGAAGCAGATGGCAGAGCTAGAACAGCAAATCCTGGCGGGAGACAGCACAGCTCTGGATACAGAGGGTTGTGCAAATATTCTGGATCAAGCCAAACTGGGGCTGAACGGTGGTGGAGTTGGCAGTATACTTTATGGCATTGACAGCATGCCAGATTTACGCCGCAAGAGGACCATGCCTATTGTCCGAGACCTGGCTTTGACCTTGGCTGCTCGAAAGGCAGGCATTGCGTTTGGCCTCGTGAACAGATCAACTCTAAACAATGAGGAGCTGAAACTGCATGTGCTGAGAAAGACCCTGCAGGCCTTGATCTATCCCATCTCCTCCACGACACCCCATAATTTTGAGGTGTGGACGGCAACTGCGCCCACCTACTGTCACGAGTGTGAAGGGCTGCTGTGGGGCATCGCCCGGCAGGGCATGCGCTGCACGGAATGTGGGGTGAAATGCCACGAGAAATGCCAAGACCTTCTGAATGCAGACTGTCTTCAACGTGCGGTGGAGAAGAGCTCAAAACACGGAGCAGAGGACAAAACCCAAAACATCATTATGGCAATGAAGGAACGGATGAAGATCAGAGAAAAGAACCGACCTGAGGTGTTCGAGTTGATCCAGGAGATGTTTCAGCTCTCAAAGGAAGATTTGACCACCCATCTGAAAACAGCCAAACAGGCAGTGTTGGAGGGGACATCCAAATGGTCTGCCAAGATTACCATCACAGTGTTGTGCGCTCAAGGTTTACAAGCCAAGGACAAGACAGGCTCCAGTGACCCTTATGTCACAGTACAAGTTGGAAAGACTAAACGCAGGACCAAAACTGTTTTTGGCAATCTCAACCCCATCTGGGATGAAAAGTTCTTCTTCGAGTGCCATAATGCCACAGATCGTATAAAGGTCCGCGTATGGGATGAAGATGATGACATAAAATCTAGAGTGAAGCAGCACTTTAAGAAGGAATCTGATGACTTCCTGGGTCAAACCATCATCGAGGTGCGGATGCTAAGTGGAGAGATGGACGTTTGGTACAATCTTGAGAAAAGAACAGATAAGTCGATGGTGTCGGGGGCCATCCGACTAAAGATCAGCGTTGAGATGAAAGGAGAGGAGAAGGTGGCTCCACCACACGGGCAGTACACATGTTTACACGAGAATCTCTTCCATTATCTGACGGAGGTGAAAAACAATGGAGTGGTTAAGATTCCAGAGGTCAAAGGTGACGATGCGTGGAAGGTTTATTTTGATGACGTGTCTCAGGAGATCGTAGATGAGTTTGCGATGCGTTTTGGTGTGGAGTCCATCTACCAGGCCATGACTCATTTCTCATGTCTCTCATCGAAGTACATGTGTCCCGGTGTTCCCGCAGTGATGAGTAACCTGCTTGCCAACATAAATGCTTATTTCGCTCACACTACCACGGCAACCACCAACATCTCCGCCTCCGATCGATTCGCTGCATCCAACTTTGGGAGAGAGAAGTTTGTTAAACTCTTGGATCAGCTGCACAACTCTTTGAGGATCGATCTCTCCAAGTATCGAGATAACTTCCCAGCAGGAAATCCAGAGAGACTCCAAGACCTGAAATCAACCGTCGACCTGCTAACGAGCATCACCTTTTTCAGGATGAAGGTGCAGGAGCTGCAGAATCCTCCCAGAGCCAGTATGGTTGTAAAAGACTGCGTGAAAGCATGTCTGGACTCCACTTACAAGTACATCTTTGACAACTGCCATGAGCTTTACAACCAACTTCTGGACCAGGCTAAGAAGCAGGATTTACCACGAGAGGAACAGGGCCCGTCCATCAAGAACCTGGATTTCTGGCCCAAACTGATCACGCTGATGGTGTCTGTTATAGATGAGGACAGAACAGCTTACACACCCATTATTAACCAGTTCCCTCAAGAATTGAACATGGGTAAAATTAGTGCTGAAATCATGTGGAACCTCTTCGCTATGGATATGAAGTACGCAATGGAGGAACACAACAAGCATTGTCTATGCAAGAGCACAGAATATATGAATTTGCACTTCAAAGTCAAATGGTTCCACAACGAGTATGTTCGAGACCTGCCAGCCTTTAAAGGAATTCCTCCGGAATATTCCCTGTGGTTTGAGCCGTTTGTTATTCAGTGGTTGGATGAAAATGAAGATGTAGCCATGGATTTCCTTAATGGAGCTCTGGAGAGAGATAAAAAAGATGGGTTCCAGCAAACATCAGAACATGCTCTCTTCTCCTGCTCGGTGGTGGATGTTTTCACACAGTTGAATCAAAGCTTTGAGATCATAAAGAAGCTAGAATGTCCAAATCCACAAGCCCTCGCTCACTTCATGCACAGATTCGCAAAGACCATAAATAAAGTCCTTCTCCAGTATGCGGCGATCATCTCGAAAGACTTCACCAACCATCTGAGCAAGGAGAAAGTGGCCTGTATCCTCCTGAACAACATTCAACAGCTCAGAGTCCAACTGGAGAAGATGTTTGAGTCTATGGGCGGAAAACAGCTGGACGCTGAAGCCAGTGATCTACTGAAAGAACTGCAGAATAAACTGAACACAGTGCTGGACGAGCTCAGCGGGGTCTTCGGCTCCAGTTTTAAGCCGGTCATTGAGGACTGCATCAAACAAATGAACCAGGAGCTTGTGCAGATAAAAGGAAATGCTGGAAACAAGAGCAACGCAGCCATGGACGCAGAAATTGCCCTGCGACCACTCATGGACCTCCTGGACAAGAACTTGATTCTGTTTGCTAAGATCTGCGAGAAGACGGTTCTCAAACGTGTTCTGAAGGAGCTGTGGAAAATCGTCCTCAACACCATTGAGCGACAGATCGTTCTGCCTCCGCTGTCAGATCAGACACAAGGAGCTCAGATGATCTTCAGTGCTGCCAAGGACTTGGGTCAACTCTCCAAGCTTAAGGAGCATGTGATTAGGGAGGAAGCTCGGAGTCTGAGCCCTCGGCAGTGTGCTGCCATGGATTTAGTGCTGCCAACCATCAAGCAATATTTCCATGCGGGGGGAAACGGTTTGAAGAAGAATTTCCTGGAAAAGAGTCCTGATCTGAAGTCCCTGAAATACGCCCTCAGCCTTTACACTCAACCCACAGATGCCTTGATCAAGAAATATATATGCACCCAGACCTCTCAAGGTCTGTCAACGTCTGGATCCATTGGTGAGGTCACTGTCCAGGTGGACCTGATCTCACACCCTGGTACTGGAGAACACAAAGTCAGTGTGAAAGTTGTAGGTGTGAACAACATAAACTGGCAGACGAATGTCATGTTCCGGCCATTTGTGGAGATCAACGCCATCGGACCACACCTAGCTGACAAGAAACGCAAGTTTAGCACCAAAACCAGGAATAACAACTGGTCTCCAAAATACAACGAATCATTCCAGTACGTGCTGAGTAACGAGCATGGCCCAGAGGCCTACGAGCTTCACATCTCCGTGAAGGACTACTGCTTCGCCCGAGAGGACCGTATCATCGGAATGACGGTTCTGCAGCTCAGAGAACTGGCTGAAAAAGGCAGTTTGAATGCAAGCTATCCACTCGTCAAGAACATAACCATGGACGAAACCGGTCTGACCATCATGAGAATACTCTCACAAAGGACCAACGACGAAGTGGCCAAAGAGTTTGTACGTCTTAAATCGGACACACGGTCAGCCGAGGAGGTGTCGTAAAAATAATCGCAGGGGGAAAAGAGCGGGGAAAAAAGCGGCAAGAAACAGAGTGAAATCCCAACAGCGCAAGATGGTTGTGTTTGTTTTTGTGCATGTGTGTGTAAAACATCTGTTGGAATGTTCATTTTAAACTACAAGTACGTACAAAAGTGTTTACCTACCGTATGCTCTATCAAATATTATATGCTACGAAGTTATGTTCAAGAGACGTTGAATACAGTTTTGTATGACGATTAGTCTTTTTGAACAGATAGTTAATTTGTTCAGATAAAGTGCCAAAACAGATGACAGAAAACAGAGGGAAAAAAAAACAATAGACACATAAACCCATATGAATTCTCGACGAAGTCTTTCTAAATTTGCTCGATCTTTTGTCCAGTGTTTATCATCCTCTCTTTAAGTGTGTAGCGGTTTTGTTTGTCTTTTCATTCTCACCCTACTTTTTCCGTTTTTGTTGCCTCGCCCTTTCCATCTTTCACAAAGGCACTTGGTGGTGCATGTGTTGTTTCCTTGGTGACGTCTCTCCCATGTGTTCACAGTGACTGTGGGCGTCAGGTCGAACCCTTTCCCCTCTAATGTTTTGTATTTTGAGCCGACTTTAAAAAGAGACCATTTTTTTAAATGGCGATGACTGCTACGAATCTCTTCATAAGTGTTTGTAATTTTATAGCTGTTGACAACGATGAAACCCACCTTCCGTCTTGCCGGTATAGGCAGAATGGGTGGAATTTTTTTTTTTTTTTTTTTTTCATATTTCTTGTTCATTTACATACTTTTTTTTTTTTTTTTTTTTTTTTTAAACATAGGCTTCCAGCCTTTCTGAATAATCACTGTGAACATGGGCTCTGGAAGGCAAGCGTACATCAGTTTTGCTGACTGTTTGATATCATCTTTTAATTTTTTCAAACAACTTTGATTCAAAAAATAAATAAATAAAAAAATGGCAGTTATATATAAAAAAAACTTTCATACAAAAGCAATCCATGATCTGTATGAAAATCAGTATATACTATGTACACGTGTTACATATGTACATGAATTATGTTTTTAGTTTTGCTAAATCATATCTGATTGTTTATGGGCCGGTTCTGAATTTAATTTGGGATGATCTTTGTGAAGTTGTTTTATCTGATATGAAATTTGTAAATGTTGCTTTACAAAAAAAGGTAAATCAATCGCCGTCATTTCATTTATTTTTGTTTACAGAGGAAAAAGTTTAACATTTGGTATTTATGCAACATTCCTATGTATTGCACTGATGGCAAATTGTATGTCATGTAAATATATTTAGTGAGATATTGTAATGAAAGTCTCGTTGTATTGCATTTTAATCAAGGAAAGCAACCTTTTCACACATTACACTTTTATAGTATGTATTAGTGTTGGATGTAATGCAATTACAAAATAATTAGTTACTATAATCTAATTACATTTTTAGTCAAAAAAGTTATGTAACATTACATTTAAAATTGTTTTAATCATATTACAGTTGCTAAATTTCAATTAAGTTCTAAAGACATTACTTAGGTAACACATATTGCTAAAAACATTTACACGGAATGAATTTAAAGGAATATTCTGGGTTCACTACAAGTGAAAGGTGCACTTAGTAACCTTTGTCTTTGTGTCTTTGTCTTGGACTTACACTGACACCTAGTGGTGTGGATGCAGCATCGTTTAAAATCAGTAGTTTTCAGTTTCAGATGCCATTGTAGAAATTTAGTATTCACAGTCAGCCATGATTACTTTAATCAATGAGTGAAAGTGTCATATTACAGGATGGTTACTGAGATTAAGCGAGTAGCATTCGGCTGGTCATGTGATACTAACATGGCAGCCCCCATGTGCGGACCCTCTCCATGTAGAATAAAACAGCTTTTATAAGCTTACTGATATAACTTGAGTCTCCATTTTAATGTGAGTGGTCATGATTTCCTACATATATTGCACAATTACAATTCATGTCTTTAGGAATTAAACTTTTTAATGAGGAAAAAATTACTGAGTGCACCTTTAAGCTCAATCAACAGCATTTGTAGCATA +>XR_003260173.1 PREDICTED: Dromaius novaehollandiae ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X8, misc_RNA +CGAGGCTGCCAAGGCTCCCTGCTGCCGCCGCGCTCGGCTTGGCCGGGGGCCGGCAGCGAGAGGAGGTCTGGGGCTACTTCAACCAAACTTTCCTGAGTCCTTCCTGCTCTGCCTGCCTGTCTTCCCTTTCCCCCTTTCTCTCGCTCGCTCGCTCTCTCTCTCGCTCCCCCCCCTTCCTCCCCCCCAACTCAGATGATATTCACATGGTATTTTGCACAGAGGAGGCTGTTCAAGAGGAGGGCACCCACCCCCACCCCAATATAAGCCTGTTTTTCCTTCCTTCCTTCCCCCCCTTTTTTGTTGGAAAGACAAAATGTGCAGGGTGATAGGTTGGGTGAATTGATGGCATCCCTCCTCCTGCCAAGTCAGTCCGTTTTCTAAAACCCCCTTTTAGGAAGGCTAGAGAATTTTATTCTGTTGGAGAATATAACCCTGATGGTTGCTTGCACAGAGGGGAAAAGCAGAGAGGAATACGGGAATCGTCCTGTGCAATCTCTATTGTTTGAAACTTACTTTATATCAGAAATTGAAGATGAAAACGGGAAAGAAATGGAGAAAATTCACTAACTGCCAAGTCTAACGTCTTACAGATAACTTAAGGAATTTTACAAATGCTTATTTTTGCGTTGAGAAAATGACTGCTGATATAGAAGAAAGTATAGGTTGTTGGAAAAGAATACCTGTCAAAAAGTGGAACGTCCAATAGTTAATTTGGGAGTAATATAAATGTACTTGTTATGGTGCGATTCTGGAGTGGAGTTAACTCTATAGCACACAGGTAGCCCTCCAAGGAGAAGAAAAAAAAGCTTTCAGTTTTTCTAAATTATGGAAGTTTTTTGGAAGACGTGGACATGGATTTTGAGCCTAGTCGTTGTTTCATCGGAATTTCACAGTGACAGCAGGCTTTTGTATAGTTCTCAAGAGGAATTCCTGTCTTACCTTGAACACTACCAGCTAACAATCCCAATAAGGGTTGATCAGAATGGAGCCTTCCTCAGCTTTACTGTGAAAAATGCTAAACCCTCAAGGAGGAGGAGGAGCACAGACCCTTATGATCAAGAACTGGCAGCATCTAAATTATTTTTTAAACTTTCTGCCTATGGCAAGCACTTTCATTTAAACCTGACTCTCAACACAGATTTGGTATCCAGACATTTTACAGTAGAATACTGGGGGAAAGATGGACCTCAATGGAAGCACGATTTTTTAGACCACTGTCATTACACAGGATATTTGCAAGACCAACATAGTACAACTAAAGTGGCCTTAAGCAACTGCAATGGTCTGCATGGAGTTATTGCTACAGAAGATGAAGATTATTTTATAGAGCCTTTGAGGAATGTAACAAAAAATTCCAGTAACTTCAGTTATGAAAATGGTCATCCTCACGTTATTTACAAAAAGTCTACCATGCGCCAGCAGCATCTCTATGATCATGGTCGCTGTGGAGTCTCAGAAGACCTCACAAGAAGCAGTAAGCCTTGGTGGATGAGTGATGCATCTGCTTTTCCAACTTCACTTCCAGTCAATGACACATTAAGTAGTCACAGTCGGCAGAAGAGATCAGTAAGCCTTGAACGGTTTGTGGAGACGCTGGTAGTAGCAGACAAAATGATGGTGGGATACCACGGTCGCAAAGACATTGAGCATTACATTTTGAGTGTAATGAATATTGTTGCCAAACTTTATCGTGATTCCAGTCTAGGAAACGTTGTGAATATTATAGTGACTCGTTTAATTGTCCTCACTGAAGATCAGCCAAACTTGGAGATAAACCACCATGCAGACAAGTCCCTCGATAGCTTCTGTAAGTGGCAGAAATCCATTCTCTCCCACCAAAGTGATGGAAACACCATTCCAGAAAATGGGATTGCCCACCATGATAATGCGGTTCTTATTACTAGGTACGATATCTGCACTTACAAAAACAAGCCTTGCGGAACACTGGGCTTGGCCTCTGTGGCTGGAATGTGTGAGCCTGAAAGGAGCTGCAGCATTAATGAAGACATTGGCCTAGGTTCAGCTTTTACCATTGCACATGAGATTGGTCACAATTTTGGTATGAATCATGATGGAATTGGAAATTCCTGTGGGACCAAAGGTCATGAAGCAGCAAAGCTAATGGCAGCTCATATTACAGCAAACACCAACCCTTTCTCTTGGTCAGCCTGCAGTCGGGATTACATCACCAGTTTTTTGGATTCAGGCCGTGGTACTTGCCTTGATAATGAGCCTCCCAAGCGTGACTTTCTTTATCCAGCTGTGGCCCCAGGTCAGGTGTATGATGCTGATGAACAGTGTCGCTTCCAGTATGGAGCAACATCCCGCCAATGTAAATATGGGGAAGTGTGTAGAGAGCTCTGGTGCCTCAGCAAAAGTAACCGCTGTGTTACCAACAGCATTCCAGCAGCTGAAGGTACTCTTTGCCAAACAGGGAGCATAGAAAAGGGGTGGTGTTATCAGGGAGAGTGCGTACCTTTTGGCACTTGGCCCCAGAGCATAGATGGGGGTTGGGGTCCATGGTCAATATGGGGAGAGTGCAGCAGGACCTGCGGGGGAGGAGTCTCCTCGTCTATAAGACACTGTGACAGTCCAGCGCCTTCAGGAGGAGGAAAATATTGCCTTGGAGAAAGGAAACGGTATCGCTCCTGTAATACTGATCCGTGTCCTTCAGGGGCCCGCGATTTTCGAGAAAAACAATGTGCAGACTTTGATAATATGCCTTTCCGAGGAAAGTACTATAACTGGAAACCCTACACTGGAGGTGGGGTTAAACCATGTGCATTAAACTGCTTGGCTGAAGGTTATAATTTTTACACTGAACGTGCTCCTGCAGTAATAGATGGGACTCAGTGCAATGCTGATTCACTGGATATCTGTATAAATGGAGAATGCAAGCATGTAGGTTGTGATAACATTTTGGGGTCTGATGCAAAGGAAGATAGATGTCGTGTTTGTGGAGGAGATGGGAGTACATGTGAAGCCATTGAAGGTTTCTTCAATGATTCATTGCCCAGAGGAGGCTATATGGAAGTGATTCAAATTCCAAGAGGTTCTGTGCACATTGAAATAAAAGAAGTGGCAATGTCGAAGAACTACATTGCTTTAAAATCTGAAGAGGATGACTACTATATTAATGGTGCCTGGACTATTGACTGGCCAAGAAAGTTTGATGTTGCTGGAACAGCTTTCCATTACAAGAGACCAACAGATGAACCTGAGTCTTTGGAAGCCCTAGGCCCTACATCAGAAAATCTCATAGTCATGATTCTGCTACAGGAACAAAATTTGGGTATAAGGTATAAATTCAATGTTCCCATCTCTCGCACTGGCAGTGGAGACAATGAAGTTGGCTTTGCATGGAATCATCTGCCTTGGTCAGAATGTTCTGCCACTTGTGCTGGAGTGGCCACCAATGCAATTCTTTACCTCTGGCTGGGAGAGCAGGACAGTTGGCTTCCTTCAAAGCCAACACCATTGCTGCTGCATGGACTGGTGTGCAGAAACAAGAGGTGGTGTGTAAAAGGCTGGATGACAACTCCATTGTGCAGAACAATTACTGTGATCCAGACAGTAAGCCTCCAGAAAACCAAAGAGCCTGCAACACTGAGCCTTGTCCACCTGAATGGTTTATAGGAGATTGGTCAGAATGCAGTAAGACCTGTGATGGAGGAGTGCGTTCACGAACAGTTCTCTGTATCAGAAAGATTGGACCTTCTGAGGAAGAGACACTGGAAAATACCAACTGTCTAACGCACCGGCCTATTGAAAAGGAGCCCTGTAACAATCAGTCCTGTCCCCCCCAGTGGGTTGCTTTGGACTGGTCAGAATGCACGCCAAAGTGTGGTCCAGGATTTAAGCACCGAATTGTTCTGTGCAAAAGCAGCGATCTTCTAAAAACTTTTCCAGCTGCTCAATGCCAAGAAGAAAGCAAACCTCCAGTCCGCATCCGCTGTAGTTTAGGTCGATGTCCTCCTCCTCGCTGGGTTACTGGAGACTGGGGACAGTGTTCTGCACAGTGTGGTCTTGGGCAACAGATGCGAACAGTACAGTGCCTCTCATATACCGGACAAGCATCCAGTGAGTGTCCAGAAACACTTAGACCTCCATCAATGCAACAGTGTGAAAGCAAATGTGACAGTACTCCCATTTCCAACACAGAAG +>XM_009065832.1 Lottia gigantea hypothetical protein partial mRNA +TTTCACCAATGGTTTTCTAATTTCCATGGTTATGCCAGTATTATAGTGTGTATATTTGGCATCAGCACCAATATATTCAATATATCTGTTTTAACACGAAAAGATATGAGAACTCCTACCAACATCTTGCTGACGTGGTTAGCTGTGGCTGACATTTTAACGATGGTGCCATACATTCCGTTTGCCATTCACTTTTATTGTCCGAATACATCACCATTCGAGACTCCTGAGAAATACACGTATAATTGGATACTTTATATGATCTTCGTAGTCAATAGTGCCGCTACAACTCACACTATTTCTAATTGGTTGGGTGTTTCATTATCAGTGTTCCGCTTTATGCAGATGAGATCAACGAGTCGAGGCGTTCTAGCCAAACAACGTCGCTTAAAACATGTGAAGGTAATAACCGTGGTTGTGTACATTTTCTCAATCATTGTTCTAATTCCCAACTATCTGACTAACAAAATCCAATCAGTTCAAGGCCCGCGTAATACGACCATATATGGATTAAAAGACATGACACCGAAAGATCCCAGCACCGACAAAATGGCTTTGATAAATACTTTACTTTATGCAGTGGTGGCTAAAATTGTACCGTGCCTTTTAATGTCTATATTTAGTGTGTCTTTAGTATATACAATACATTACAAAAATCGACATCGCATGCGCAGGCTTGTGGCTGCTGGGAAAAAATCGAGGGCCATCTCTAAACAAACAACTACAACCCGAATGTTACTAGTTGTTATAGTCTTGTTTCTTATTACCGAACTTCCACAAGGCATTCTTATTCTCGTTACAGCTGCCATCCCTCAGTTTCATAACAACGTATATAACCTTCTGGGTGATCTAATGGATTTTATTGCCTTATTAAATAACGCAATCAATTTTGTGCTTTATTGTAGTATGAGCCAGCAATTTCGCTCCCGGTTCATTGAAATGTAC +>KU027247.1 Uncultured microorganism clone SZY.L801.1_Tag26405 16S ribosomal RNA gene, partial sequence +CAGCCGCCGCGGTAATACGTAGGGGGCGAGCGTTACCCGGATTCACTGGGCGTAAAGCGGGTGTAGGCGGCTCGGTAAGTCGGGTGTGAAATCCCACAGCTCAACTGTGGAATTGCGCCCGAAACTGCTGAGCTTGGGGCCGGTAGAGGGAGACGGAACTGCCGGTGTAGGGGTGAAATCCGGAGATATCGGCAGGAACGCCGGTGGGGAAGCCGGTCTCCTGGGCCGCGCCCGACGCTGAGACCCGAAAGCTAGGGGAGCAAACCGGATTAGATACCCGGGTAGTCCTAGCCGTAAACGATGCCCACTAGGTGTGGGGGATTAATTCCTCCGTGCTGGAGCTAACGCGTTAAGTGGGCCGCCTGGGGAGTACGCCCGCAAGGGTGAAACTTAAAGGAATTGGCGGG +>XM_042244958.1 PREDICTED: Ovis aries caspase 8 (CASP8), transcript variant X4, mRNA +AAAAGTAAACTTCTTCCTGGAGGCGTTTCCAACCCCACCTCCTGTCTCCCCCTCCCGCTTGCCTCATTTCCAGGGATTTATCTCCAGCTGGGTTTTAAGAACGAGCCTCAGTAATACGAAGTGTGAAGTTAGGCAGTGTGGGGTCTTGTCGTCGAGAGTTTGGTGGCTGGGATGTTGCCAGGACTGTGTGGAGCAGGTCCCAGTCCATGGTGAGGGCCCTGGGATTTTATTTTTCCTTTGATGTACTGAGAGAAGAGGCCCGTGAAGTGGCTGCTGCTGTGAAGGTTCCAGGATTCGCCTCTGGTAACAACTACATTCTCCTAACACTTGAAAAGCATGGATCTCACCCAATGTCTCTATAAAATTGGAGAGCAGCTGGGCAGTGACGACCTGGCTGCCCTCAAGTTCCTAAGCCGGGACCACATCCCATATAGGAAGCAGGAACCCATTAAGGATGCCTTGATGCTATTCCAGAGGCTCCAAGAAAAGAGAATGTTGGAGGAAAGCAATCTGTCCTTCTTGAAGGAGCTGCTTTTCCAAGTGAATAGACTGGATCTGCTGCTTAACTACTTGGACACCAGCGAGGAAGAGATGAAGAGGGAGCTTCAGATACCTGGCAGGGCCCAGATCTCTGCCTACAGGATCCTGCTTTTCCAGATTTCAGAAGATGTGAACAAAGTGGAATTGAAGGACTTTAAGTTTTTTTTGAGCCAGGAGATTGCCAAATGTAAGCTGGATGATGACATGACTTTGCTTGATATTTTCGTGGAGATGGAGAAGAGGACCATCCTAGGGGAAAATAACTTGGACACCCTGAAAAGAATCTGTGAGCAGGTCAACAAGAGCTTGCTGAAGAAAATCTATGATTATGAAGAATTAAGAAAAGATATGTCACAATCGCTTCCAGAGGAGGGCTCCTCTGAGATGCTGGCCATGTCAGACTCTCCAGGAGAACAGGGCAGTGAGTTGCAGACATCCGACACAGTTTACCGAATGACAAGCAAACCTCGGGGATACTGTTTGATCTTTAACAATTATGATTTTAGCATAGCACGGGAGCAGGTGCCCGAACTTCACAGCCTTAAGGATAGGAATGGAACACACTTGGATGCAGAGGCTTTGGACAAGACCTTTCGTGAACTTCATTTTGAGATAGTGCACTACAGAGACCAAACAGCAAAGGGAATCTGTGAGGTTCTGAAATCCTACCAGAAGAAGGACCACAAAACCAAAGACTGCTTCATCTGCTGCATCCTTACCCATGGAAACAAGGGCACCATCTATGGCTCCGATGGGCAAGAAGCCCCCATCTATGAGCTGACCTCCTACTTCACTGGATCAAAATGCCCTTCCCTTGTCGGCAAACCCAAAATCTTTTTTATTCAGGCTTGTCAAGGGGATAAGTACCAGAGAGGAATAGCTGTTGAGACCGACTCAGAACAGAGGGAAGCCTATTTAGAAGCGGATTCGTCACCTCAGAAGAGATATATCCCAGATGAGGCTGACTTTCTGCTGGGGATGGCCACTGTGAACAACTGTGTTTCCTACCGAAGCATCGTGAAGGGGACCTGGTATATCCAATCGCTTTGTCAGAACCTGAGAGAAAGATGTCCTAGGGGTGAAGACATTCTGACCATCCTAACCAAGGTGAACTTCGAAGTAAGCAAAAAGGATGACAAGCAAAACATGGGCAAACAGATGCCGCAACCTACTTTCACACTGCGAAAAAAACTCTTCTTTCCTCTTAATTGATGCTATTGTTTAGTTGTATAACTAGACAATAGTTATGCAACTGAACAATAGTTAAAATGCTGCTACTTTATTCTCTTTCTTCTTCTTTTTATTTTCAAATAGCTGGCATATCATGAGAGTCAGGACAACATAATTTTTATGCAAATTCAAGCCTAAATCTCTGGCTTTGTAGACAATAACAGTCATAGCTGTGGTCTTGATTTCAATTGTATTTTTAATTTGATGAAAAGGTTTAAAAATGAACTAAAATAAACACAAAAAACACAGTAAGTTTAAAAGAAATATCAAAGATCATGGAGGGAGATTTTTGTGATCTGACCTAGCTGAAAAATCCCCTCGACTATTGAGGTTCAGGGTATAAAGTTCCCACATCCAGCCTGATTGCTACTGATGTGTATGATAAGCTGTCCTGGAAACATGTGACCCTCCTCTCCTTAGCCATGAGCAGACTCTGATTTTCAGTGGTGAAAACCACCACTCTTTAGACTTCAGTTTCAAAAGCTTAGAGATTATTTTCCTTTTTTAAAAGAATTATTCATAAATGCGGCATTCAACATACTTTTAAGAGAAATGATGTTAATATTAACTCGTTTTATACTTCCAGTAGATCTTTTCCCAAGCTGTCCTTTATACTAATTTGCAATATTTTGTAAAATAAAAAAATTTTAAAATTCATATATTAAAGATTTTAAAAATACCAAATGATTTTGTTTTTTAAAGACTCTTTCCAAACTGAAAAGTTTTTATATACATGCTTCTGCAGTGCTGAACATGATTTGCTTTTTTACTAAAAATGCAGTATGCCTTTTATATGTTTGCTCTTTCTTTATATGTTCAATTCACTTTAAATCTTTAGTAATTAATAATTAGTAATGTAATAAATATTTTTAACAGAATAAAATATAATTTTATCATA +>XM_012896071.1 Acytostelium subglobosum LB1 hypothetical protein partial mRNA +ATGGACCCTCAACAACCTACACAACAACAACAACAACAGAATGGTGGTGGCGGTGGTGATACATTGTCAGCAGCAGTGGCAGAGTTGGATAAGCTAGAGTCATTGTTGGCCAGTGGTTATCTGTCACGTCCATTCTCTGTGGATGTGTCAAAACAACAGCAACAGACGAACAAGTCGACGACGAACGAACCAGCAGCAAAGCAGACACCTGCACCTACACAAGCAGCTCCTTCAAAGCAACAACAGCAGACTTCATTGCAGACTGCACAGCTTACACAATTGCTTCAATCACAAGTGCAGGCACATCAACATCAACAAGCAGCAGCAGCAGCAGCAGCAACAGCACAGGTACCACCTGCAGCAGCAGTAGCAGCAGCAGCACAAGCTCCACCTGCTGCTGTGACTCAGCCACAACCTCAAGCGCCACAGCCACAGGCTACAATTCAGATTGCAACTCAGGCTCAGGTGGCCCCAACACAATCGCAACAACCTCAGACGCCACAGCCACAGGCAGCCAAGCCACAGGCCACTCAGGTTCAGGTGGCCCCAACACAAGAGTCACAGCCACAGGCAGCCAAGCCACATCCCACCCAGACACCAGCACCCCAGACACAGGCTCCTAAGCCACAGGCCATCCAACCTCAGGCTTCACAAACACAAGCACCTCAGCCTCAGGTGCCACAACCACAGGCTGCACCGGCACAGGTGACTCAGTCGTCTGTGACACCTAAGCCTCAGGCTGCTCCTGCTACACAACCCCAGCCACAACAAACTAAACAGGCAGCTCAGCAACAGAAGAAACAGGCGCAACCAAAACAGAATGATGTCAAGGACACATCACAGGTTCCGAAGACACAGCCTCAACCTCAACCTCAGGCGCAAGCTACTCCACAGGTAGCACAGCCTCAGACACAACCTCAGTCACAGCCCCAAACAAAGCCTCAGACTAAGCCTCAGAATAAGACTCAGACCAAGCCTCAAGCACAAACAAAGCCACAATCTCAAACTCAGCCACAGACGACACAGCCTCAGCCACAGGCTCAGGCTCAGCCACAGACAACACAACCCCAACCTCAGGCTCAGCAACAGACGACACCACCTCAAACACCACCTCAGGACAATTTGGAAGAAGATGTACAACGATATGATGATGACGATAACAACAACAACAACAACAATAGCAAGGAGTTGGAACTTTTGCAAGAGTTGGAAGAGATGGAAGCAGAAGTAATGATGCTGAGGCGAAAGGAATATCTCTCAATGTCAGGCGACATGAAACGCAACGAATCACTGCTGTTCCTCGAGCGCAAGGGTTTGGTCAAGGAGATCAGTGCCAAGTTCCAGACACCCGACACAGCCTCCTTCACCAAGTTCAATCCCAACACACATCTCTCCATCAAGGAGAGAATCCTGCACTTGAAGCGAGAGAATGAGCGCAGGAGCAAAGAGGTCGAGGCCATCAGACGAGAGACTGTCATCCAGCTCGCAGACGAGGACGAGACATCGACGATGGACTCGCCAACAAGCAGTCTTAGGGAGAGAATATACAAGTCTGTGTCCGAGCCACTCGCGCCACAGGACCCAAAGAAGACATCGCCAGCCGATGGCCACAAGTCGACACAGGTGGCCACCTCAAAGTCCCGCGCTGCTGACCCCGTGTCACCATTGCTGTTGTCAACAACATCAACACCAGTCACCAAGCCCAGCGGCAAGGGTAGCAAGATCATCATTCGTAGACGAAGGAATGCTGCGGCAGCAGCGTCCCATGATCAGATGAGCATGATGGCGCTCACACATTATCTCAACATCCCGCCCAACCCTGCCAAGCCACCAATCACATCCAACACAGCCAGCCTAACACAGCCGACCAAGGACTTTATCAAGACGCTAGTGTCGCTGTCCGACACTGGCAATGATATCATCCTGGACACTTCGCTGCCCACGCCCAACAGCTCACCGGACGCAGGCACCGCTCCCGATATTCAGTACACGCAACTGCGTACCCGCGCCATGAAGGCAGCTTTCAACGTGCTCTTCACACTGCCCAATCAAACATCGGTGATCATGCCATGTCAGAACACTGACACTATCGAGGCCATCAAGGAAAGGCTTGTGCAGTACATGTTGAAGGCATTTTGTACTACTACTACTACCACCCCGGCCACATCAGATGCGGCCAATGGCGAATCATCAGAGACAGACGAGTCGGCCTCCAATCCCGCCACACCACCCTCCCCTCCCATCAAGATCATGCCCGAGAACTATGTAATTGTTGACTACTTCAACAAGCCTCTCGAGAAGTCAATGACCTTGACCAAGAGCGAATATATAATGCACAGGAGATCACGTGGATTGCAGCCAAAGCTGAAGTTGGTTGAGAAGGTCAACTTCTACGACGCCGATCCTTCAACGGAACTCAGTGAACAGTCATACGAGATCATCAAACAGATTATACCCAATGTCAAGAGTTGGCATGGAGAAGAAGTGGACTACTTCAGACGCATCGCTGCACGTCTGCGTTACGAACTGTTGCCACACATCAAGGGAACTGTTCACTCATCGCTCACTGAACGTCTGTCCCCACTGCCACTTCCAACGCCTCCCAACAACAACAAGTTCCTCGTCTCCATCTTCCTTCCCATCCTCCAAGTCACCAGAACTGTTGAGATTGAGATTAACGAGATAGCAGATGATGTAATCGCAAGGATATTCAATAGGAACTATGCCAAGCATTTGCCACCACAGGTTAGTGCAGGAGACTTCATTCTCAAGGTGATGGGACGATCAGAGTACATTCATGGCACACACAAGATAACTGTCTACGAGTACATCCGATCATGTCTGGTACAGAGCAAGAAGATACAACTCGTCTACGTTCAAAGACCAACCATTGAGATGGACATTGCACCATTCAAGCCAAGATTCAATCTATCCAAAGAGTTGCCAATCAAACATGAGGTTGGAGCACTGTCTCATCGCGCACTGCCTTGGGATCATATGAATCACATCTCTGTTCGAGACATCAAGCGACCATTTAGGATCAAGGTGGGCGGCGCCTACAACATCCCAACGAGCTATCTGAGCAAGGAGGACGAGAGCATATCGGTGATCGTGTCAATCTCTTTGTATCATGGTGTCGAGTGCATATCGACCTCGTCCACCAAGCTTCAGAACATACTCCCGCCATCATTCTATGCCACGCCACCCGCATCGCTCAACGCCACGTGGAATGAGAACGTGACCTTCTCCAACTTGGACTATGCCAACCTGCCAATGGAAACACGTCTCTGCATTAGTCTTTACGCGAGCACTTCGTTCAAGACTCCCACATCGCCCACTGCCGCCTCATCCAACACCGAGCTCGACCAACAGCGCAAGGAGTCCTTCCCGATCGGATGGGTCAACGTCATGCTCTGTGACTACAAGTCGCAACTGCGCACGGGCCCAATGACCCTGCATCTGTGGCCGGATGATGTGGCCAATCCCCTGGCGCCCTGCTCCAGCAATCGCCAGAGCGGTGTCGCGCTGTTCATCGAGTTTGAGCAGTTTGCGCTGCCGGTGGTGTTCCCCTCGTGCAACAACCGCGTTACAAGCACCCGTCCCCACACCATCAACCCCAAGGACATGGTTGAGTTCTTTGAATCGATCATCAAGCTCGACCCGCTCAGCGACCTACCCAAGGAGAAGTACCAGCATCTGTGGGCGTTGCGACACTACGCCACCCAGTATCCTCAGCTACTACCGCGTCTCATGCTCAGTGTACCCTGGACACAGCCATCGGCTGTGGACGAGATCCACGCACTGATCGACAAGTGGGCCATCCTGAATCCCTACGATGCACTGGAACTCCTGGATGCCAAACACGTCGATCGCAAGGTGCGCGAGTACGCCGTGCGCTGTCTCGAGTCGCTCTCTGAGGAGGGCCTGCAAGATATCCTGTTGCAGTTGGTCCAGGTGCTCAAATGCGAACCCTACCACGACTCCCCATTGGCACGCTTCCTCCTTCGTCGCTCTATACTCAACCGCACGACAGGACATCACTTCTTCTGGTATCTCAAGTCCGACTTGCACGTCACCAACATTGCCGAGCGCTTTGGACTCTTGCTAGAGTCCTACCTCCTCGCTTGTGGCACGCACCGCAATGAGATACAGCGACAGATACAGGTCATCGACAGCCTGACCGAGGTGGCCAGGAAGATCAAGTCGCTGAAGGATCAAGATCGTCGCGAGACACTAATGCGCGACCTCGAGCGCATCGAGTGGCCCAAGCGCTTCCAGATCACACTGAATCCTAAGTTCGAGTCGAATGGTCTCATCATCCAAAAGTCCAAGTACATGGACTCCAAGAAGCTGCCGCTGCGGCTCTCATTCACAAACATCGACATGGATGCCGAGCCAATCGATGTGATATTCAAGGTGGGCGATGATCTGCGCCAGGACATGCTCACACTCCAGATGATCCGTCTGATGGACAAGCTCTGGCAGAAGGAGGGTCTGGATCTCAAGCTGTCGCCATACGGTTGCATTGCCACGGGTGATATGATTGGAATGATCGAGGTGGTGCTCAACTCTGAGACCACGGCCAAGATCCAAAAGAGTGCTGGTGGTGCCACTGCCGCCTTCAAGCTGGATCCACTCGCCAACTGGCTACTCAATCACAACAAGACCGAACAAGAGTATCAAAAGGCTGTGGACACATTCATTCTCTCCTGCGCTGGCTACTGTGTTGCCACCTATGTATTGGGCATTGGAGATCGTCACAATGACAATCTGATGTGCACAAAGCTTGGTAGACTATTCCACATTGACTTTGGACACTTCTTGGGCAACTACAAGAAGAAGTTTGGATTCAAACGAGAGAGAGCACCATTTGTATTCACGCCAGACTTTTGTTATGTGATGGGAGGCAAGGAGAGCCCCAAGTTTGCCCAGTTTGTAAACTACTGCTGCACGGCCTACAACATATTGCGTCGTCACGCCAAGTTGTTCATGAACCTCTTTGCAATGATGGTGTCCACTGGCATACCAGAGTTGCAATCGATGGAGGATCTCAACTACCTTCGCGAATCATTCTCACTGGAGCTCACAGACGACAAGGCCAGGGAGAAGTTCACATCACTCATACATGAGTCATTGACAACAAAGACCACACAGCTAAACAACGCAATACACATTCTGGCGCATTAA +>XM_013042216.1 Blastocystis hominis mRNA +GGAGAACACCGCTCCTCAGACACGCGAAGAAATGTTGGCCGCTCTGAAGAAACAGATTGAATATTACTTCTCTAAAGAAAATCTATCGAAAGACTCTTATCTCCTTTCCCTCATGGATGATTCTGGCTATGTTCCTTTAAAGACAATTTCGCGTTTTCACAAGGTCCTTTCTCTTAGCAGCAATATTGACGATATTATGGAAGCCCTAAAGAGCTCTGAGAACGTCGTGGTGGACGAAGTTAGCAAACAAATCAAGCCTGCGATTACTTTTGAACGTAAAACAGTCATTCTGCGTGACGTCCCGGCCGAGGTTACCGAGGAAGAGGTCCGCGCCTTGTTCGACGGAATGGGCGTTGTCGAAAGTGCCACTAAAGAGTTTGAAGGCACGTGGTTCGTCGTGATGGAGTCGGAGGCGGCCGCCGTCGCGGCGCTGGAGCTGCTTCGCCAGCGTTCTCTCCACGACCAGCCCGTGAAAGCTCGTCTGAAGAACGAGTCGTACCTGAAGAACCTCGTGAAGATGCTGACGACCTCCGAGGACGGCATTCCCGCCGAATATCTCCCGGTGGACCAGTCGTACTTCATGAACTTCGGCGGCCAGCCCCTTCTGGACTTCCAGCAGAGCCAAATGTTCGGCCAGAACTTCGCCGTCCAGGCGCCGGCGACCGGCGTGCCCGCCGAGAAGCGCGGCCGGAAGGGCCGGAAGGAGTTCAAGCATCGCGAGCGTCGTCCGCGAGCCGTTTCGAAGCCGAAAGTGGTGCCTGCGCTGCAGAGCGCGGAGATTTTCCCGCCGCTGGTGCCGACGACCGCTCCGGTGGTGGGGTCGATCGACGTGAAGTACTCGTACAAGGAGATCTGCGACATCGTGAAGGGCGTGAAGGATCTGTCGTGCCCGCCGATCGCGTCGGCAGGCGTGGAGTCGGCGCTGGTGGAGACGGCCAACCAGGAGTTGGTGCAGAAGGGACGAACGTTCAGTATCGACCAGGCGCTGCAGCGAGGATGTCCGCGAACGATGTCGGTGGACAGCATCGACTACACGTCCATGCTGCAGGGAGAGATGGACGAGGCGGTCGCGGAGTCGGCTCGCAAGGCGCGGCGCGAGAAGAAGCGCGCGATGAAGATGGGCGAGCGAGGCGAGGCGCATGCTCGCAGCTACCGCAACATTCTCAAGAATTCCCCGCCCGTGGGTGAGGCGGTCGCTCCTTCGACGAAGCCTGCCGCTGTGCAGACAGTGAGTGGAGCCAATGCGGCTAATGCGGCTAATGCGGCTAATGTGGCTAATGCGACTAATGCTGCCAGCACTACCACTGGTGCCAATGCTGTGAGTCCTGTAAGTGGCACGAACGGAGCGGAGGGAAAGAAGGAAGGGAAGCAGCATACAAAGAAGTCGCAGAAAAAGGCGGCAGAAAAGAAGGCAGCGGAGAAGAAAGCAGCGGAGAAGGTGAAGAATGAGGAGGACGGATGGAAGACGATTACGGAGAAGAAGCATTAGAGACACTCATTGTTTATTCTTTTAATGTGTGGAAGAGTT +>XM_001589778.1 Sclerotinia sclerotiorum 1980 UF-70 hypothetical protein partial mRNA +ATGAGTAATCTCCTCTGGAAATATTACCTCGAAGATGACGTCGATAAATTTCGACGCCTACTGGCAAATACTGCCTATTCATCGCAGCATACACTGAAAAGTCATGGTGGAGGAGGGCCGGCATTCTCCAGCAGCTTTGGGAACAAAATAGGGAGTTCAGGCGGATTTGGAACATCACCAAAGACTTTCGGCAAGAACCGCAAAACACCCGGTCCAGCTGGAAACTCAAATGGGAATAAAGGACAGGGAAATGCGATCAGCAAGGCAGAATTGAATAGCAGAGATTATGCTGGGTTAACTGTCTTACACCGAGCTGCATCTTCGACATCTACGAATGCAATAATCTTTGCGACCTCTCTTATCGAACATCCTTCCATCGACCTCTATATACAAGATACGGAAAGTGGGTGGACAGCGTTGCATAGGGCTTTATATTTCGGCAACGTCACAATTGCTCGAGCAATTATCGAGCGAGACTCGAAGGATCGCGCCGCTGGAAATACAGGAGCTAAGCCGGACTCTTCGGTTATCAAGGTCAAGGATAGGGAGGGAAACACCCCATTTGATGTATACAATGCAACTATCGCAAGGCGATCTCTGCTAGACCGAGGAGAGCAGGGAGTACCTCACCGTTCAGATGATGATTCTGATGAGGAGTTATTCGATTCACCGTCGAGCGAATCGTCAAAGTTCAAAAGTATCGATGGTGACGAACTTTATGCATTTGGTAGTAACAAGAACTTTTCATTGGGTTTCGGTGATCAGGATGATCGTCAGTATCCGGAGAAGATAACGCTTAAACGTCCTGACCATTTACTCTTTCGATTTTATCAAGAATACTTGGACTCTGTCTATGATCATAACCCTATTGGAAACCCAAAAATGCCCAAGACAGTATCTGAACTTCCTTCCATGATTCAAAATAAGCCCATCATCATACAAGATGTTGCTCTGTCCAAACTTAGTAGCGCTGTATTAACTACGGATCCGGAATCAAACCTTTACATGTGTGGCTTTGGCCCTGGAGGTAGATTAGGCATGGGGGATGAAACCACTCGTTTCAATTACGTGCCAGTAGATCAAGGCGGTTTGGCAGGAAAGAAGGTCGTAACTGTTGCTTTAGGTCAAAATCATACGCTTGCAGTCTCGTCGGAAGGAGAGATTTTCAGTTGGGGTACAAATACTTGGGGTCAATTAGGCTACAATCTACCTCGACCTGCGCTGAAGGATGAAGAACCACTTTGTACAACCCCGCGCCAGATATTTGGACCTCTGAAAAGAGAAATCATTATTGGCATAGCTGCATCTGCTATTCATTCAGTGGCCCACACGTCTACCTCATTGTTTTGCTGGGGAAAGAATGAGGGACAATTGGGTCTTATGGACTCTGACTCACGATCTTTGGAAGCTCAACCAATACCTCGCAGAGTTGCCGCATCTTTATTCAAGTCATCAATTGTAAAAGTTTCGGCCATTAGTGGTGCAACTATATGCCTCTTGGCAAACCATACAGTCTGTGTTTTCACGAATTATGGTTACAACATGGTCAAGTTTCCGTTGTATGAGGGCTTCACAAACTATCATTTACAAAGTACCTCGCTCACGACTCGATATGACTCAGAGTCAAATAATATCACTACTATTGAGTCTGGCGGAGATACAATTGCGGCTATATCTGGTAGAGGTGACTTGTTTACCTTCAATGTAAGGAAAATTGATACAAAAGTTGCGGCGGCTTCTACAACGAATCCCTCCAAAATTAAAGATGCTTTATCACAGCCGCAGCGAGTCTGGTCACTTCGCAAGGGTAATTGGGATGGAATAAAATCTGTTGGTGTCGCCGAGAATGGGTCCGTGATAGTTTGTACTCAGGCTGGAGCGGTTTGGCGACGCATCAAAAGAGCTAAGAATAAGGATGCTTTCACTGGGATCAGTGGTTACGACCGGAAGGATTTCAAATTTCAGCGGATCCCGGGACTTACTAAAGTAGCTGCTGTCAGAAGCAATCCTTTTGGTGTGTTTGCGGCCATCCGTAAGGACTGTGATGTGACCAGGACTCAAGTTGCAGTTGAAGATAAGACATTGTGGGATGATATTGCACCTTTGCTAAGTATCCGAGATCTTGTAGCTTCGGAGCATCCAGTAGAACAGGCGGGAAGTCTAGTAAACCCTCGCCTGGCAAATTTGGACATCGAATATGGCCCTGTCCTCGCGGCACTGATCATGTCTCCGGACATCGAGGAAGATGTCCAAGGCTTGCTCATGGGAGTGGATTCTGAGAGTGGTGGTTATGATGTTGAGATATGTTCCAGTACATCTGACATCGCAATACCTGTCCATGGCTTTATGCTGGCAGCTAGATCATCTGTCTTGAGATCACTTCTTGCCGACTCTCATGCCAACGGAACCACTTCACTGTCTAATATCCTCAACATTGAAAATAGTACGGGTGGTAAAAAGAGAATTATCTTTAACGGCATAGATTTTATCACCCTTGTCAATTTCGCTATCTTTCTCTACATTGACAAAATTGCTGATGTTTGGGCCTTCGCGAATTATCTCCCGAATATGGCCTTCAGACTGAGGCAGGTTAGGATTGAAATCATGAAGCTTGGTTCTCATTTAAATATTCCCTACCTAACTCAACCTGGACTTGTCAGAAGGCCCTCAGACAAATTGAACTCTGACATGGACAACGCTATTACAGACGAGAAATTCTTCGATAATTGTGATGCTATTGTTGAGTTGGATGGAGGAGAGATGCCTATTCACAGTGTGCTTGCATGTCAAAGATGTCCTTTCTTCGATGGTCTATTTAATGGTCGATCGGGAGGTCAATGGCTTGCTGGTAGACGCGCAAAAATCACAGATCCGATCAGCATCGATTTGAAGCATATTTCGCCTGATACCTTCGAACTGGTATTGCGTTATATATATGCGGATGTTGGACCTGAGCTTTTTGATGATATCGTCTCCACTAATATTGATGAGTTCTCGGAAATAGTTATGGACGTCATGAGTGTTGCGAATGAGTTGATGATTGATAGATTGTCTCAGATCTGTCAACAAGTGTTGGGTCGTTTTGTCAATACTCGAAACGTATGCAATATCATCAATGCCGTGGCACCTTGCTCAATCACCGAACTTAAAGACGCCGGCCTTGAGTATATGTGCTTGCAGCTGGAGTCAATGCTTGAGAATCGTTTACTTGATGATCTTGATGAGGACCTTCTCCTTGAATTAGATGAAGTCGTGCGTGACAATCAATTGAATTGTCTTCCATTCGCCAAAAGTGGACGAGCTGATCTAGATTTGCACGAGAAATATCCTGAATTGGCGGGGGACATTGATGAGGAAAGACGTCGCAGACTTGGAGATATGATCTTCCGTGCTCATCTAAGAGATGATGATAATCGAATATCTTCATCTTTCAAGGCACGTATGGGGAGTCTTGATGATTATTTACCCTCTCCAAGTAATGATAAAGCTAGGAGGAAATCAAGGGTGGTCAAGAACGAACCATTTAGCCCAAGTGTACGTCCTAAGGATGCAGCGGCTGATTTCATGTTTGATATGGATGACGATGAAGAGCCTGGTAGTCCACCTGAACTGAACTTGACTAACGACCTAACTTCTGCTTCCCCTGGTGGTCCAGTAACTCCAAGGTTCCCTACAACTGGTTCGACGCCTAAGGTTTTCGAGTCAGGATCTCCTACGGACTTTCGAAATTCTGTCGGATTAGGAATCAATCACAATCCAGACACCCCTCAAACTGGAAATAAAACTTGGTCTTCTCCTAATCTTTTAGTCAAGCTGGACATGAAAGATATTATGGCCCAAGCATCAACGAACCGTACTTCGAATTTATCAATGAGTCTCTCAGCTCAAAAGGCCAAGGATGAAGCGAATGCCAAATCATCTACCCCAAAACTTTCACAGAAAGAACGTAAGAAGCAACAGGCAGCTCTTCAACAAGCAATTGCACAAACTCCTGTGAACAAGGGTAAAGACAAGGCATCTTCTCCTTGGCAAATTGCAGGTGTGGGTTCAAAAACGAACCTCAAGGATATTCTTGATAAGGATAACAAATCTTCACCATCATCCTTAGCACCAAACCCAACAACCTCACCAGCTATCTCACCTTCAAGTACTACTTCAACTATACGTCGAGTCACGGCGCCAGATACTCGATTTGCTGGTCAAAAAAGGAATGATAATAACAGCATCACGAAAGCACAAAGATCTTCACCTGGTCCATCAAGGCCAAGCTTGTTAACACCAAGCAAATCGTCTCCACTTATTCCTCATTCGAAATCATATACAGCGCCAGCAGCGAAAGCCGAACCGTCACTACAGTTATCCATGGCTGATATCATAGGAATGCAACAAAGAGAGCAAGAAGTGATTAAAGAAGCAGTTGCAAAGCGAAGTCTTCAAGAAATTCAAGAAGAACAAGCATTCCAAGAATGGTGGGATCAAGAGAGTAAAAGGGCTCAAGAGGAAGAAGCTTTGAGGGCAAAGGCTTCTACTGGAGTTAGTAGAGGTGGTGGTAAGTCTGGTGGTGGTAGAGGAAAGGGTGGACCGAGAGGGAGAGGTGGAAGGGGAAGAGGTGGTGGGGAATCTGTTAGGGGTGGTGGTGGCGGAGGAAGGGGAAGAGGAAAATCTCAGGAAAAAAGTACTGGCGCGAATTAA +>XM_051905607.1 PREDICTED: Ctenopharyngodon idella intraflagellar transport 88 homolog (LOC127518647), transcript variant X2, mRNA +ATAATTCGTTGGATTTTATCCCAGACGTTTATACGTATATTTAGAAATGTAATGTTAAAAGACAATATATAAAGACACGAACATAATCAATGTAATATCGAAACATTGTAAAATCTCTCTTGTGTGCCTAATGGCAACCCCTCTTTGTATCCTAGCAACCGATGTGTTGCTCAGCTTAGTTAGCGAGCTGTAGGTGCTGCTAGGCTACAGACACTATTTTTCGGAATATTTCAGCTTAATACGGCCATTAATTTGCATTTTTCTTAGATGGAGAACGTGCATCTTGTTCCAGAGGAAGAGGAGGATGATTTGTATACAGGCTACAATGATTACAATCCGACTTTTGACTCAGAGGACCTTCACAACGATGTGGGCTTTCAGCAGGCTGTCAGGACAAGTCATGGCAGAAGACCACCAATGACTGCAAAATATCCTGGCACTGCTATTGGAGGGCGACCGATTGGAACAGCTTATGGGTCTCGGATTCCTGTTGGCACTGCAATGGGAAGGCCTATGACTGGAGCTGTTCAGGACGGTGCGGCTCGTCCCATGACTGCAGTGCGGGCAGCAGGATACTCTTCATCTATAGCTAGAGGCTCGGTGTTTGATCCACTGGGACAAGCAAAAGGACCAGCCCCTCCATTAGAGAGACAGAACGAAGACACGCCAGAGGAAAAGATAAAGATCCTGGAAAAGAAGGTGAATGATTTGATAGAGGAGAGCTGTCTCGCTCATGCTCGTGGGGATCTTCAGCTGTCTCTAGAGAAAGCCAAAGAGGCGGGCAGGAAGGAAAGGGCTCTGGTGAGACAGAGAGAACAAACAGGCACTGCAGACCACATCAATCTGGATCTGACCTACTCTGTGTTGTTTAATTTAGCAAACCAATATGCCAATAATGACATGTACACTGAGGCCTTGAACACATACCAAGTCATTGTGAAGAACAAAATGTTCAATAATGCTGGACGATTGAAAGTTAACATGGCAAATATCTATTTCAAGCAAAAGAATTACACAAAAGCAATCAAATTTTACCGCATGGCTTTGGATCAGATCTCAAATGCCCACAATGCAATGAGGATCAAGATCATGCAGAACATTGGTGTTGTGTTCATACATATGGGCCAGTACTCAGATGCCATCACATCCTTTGAGTACATCATGAGTGAGAGTCCCAACATAAAGACAGGCTTCAACCTCATCCTGTGCTACTATGCCATCGGAGACCGTGAAAGGATGAAGAAAGCTTTTCAGAAGCTCATTTGTGTGCCCCTCGATATTGATGATGAAGACAAGTATATCCCTGCAAATGATGACTCTCATGCAAACATGGTGATTGAGGCTATAAAGAATGATAAGCTTCACCAAATGGAAAGGGAGAGGAAAGCATTAGCAGAAAAATACATTATGACCTCAGCCAAGCTTATTGCTCCAGCCATTGAGTCGTCATTTGCAGCTGGGTTTGACTGGTGTGTGGACATGGTGAAGGGTTCACAATATGTGGAGCTTGCAAATGACTTGGAGATCAATAAAGCTATTACATACTTAAGACAGAGGGACTTCAAACAGGCAGTGGAGACGCTAAAGATGTTTGAGAAGAAGGACAGTCGGGTAAAAAGTGCCGCTGCCACTAATCTATCTTTTCTCTACTTTTTGGAAAAAGATTATGACCAGGCTGACCGCTATGCTGAGCTGGCCATGAGCGCTGACCGCTATAACCCTGCTGCCCTCATTAACAAAGGCAACACAGTGTTTGTGAAAGAGGACTATGAGAAAGCAGCAGAGTTTTACAAGGAGGCTCTTCGTAATGACTCGTCCTGTACTGAAGCCCTCTATAACTTAGGTTTGACCTATAAGAGGCTGGGTAGGCTGGAGGAAGCCCTGGACTGCTTCCTCAAACTGCACGCTATCCTCAGAAACAGTGCTCAGGTCATGTACCAGCTGGCTAATCTATATGAGATGTTGGAAGACCCTCATCAGGCCATTGAGTGGCTGATGCAGCTCACCAGTGTGACCCCCACAGATGCCCAGGTGCTGGCCAAACTGGGAGACCTCTATGACAATGAAGGAGACAAATCTCAGGCCTTCCAGTACTATTATGAGTCGTACAGGTATTTTCCCTCAAACATTAGTGTGATTGAATGGTTGGGAGCATATTACATTGACACCCAGTTCTGTGAGAAAGCTATTCAGTACTTTGAGAGAGCTACCCTCATTCAACCAACACAGGTCAAGTGGCAGCTGATGGTGGCTAGCTGTTACAGGAGAAGTGGGAATTATCAGAAGGCACTTGAGACCTATAAGGACATTCATCGGAAATTTCCTGAAAATGTTGAATGTCTACGCTTCCTGGTCAGGCTGTGCACTGATATGGGACTAAAAGAGGTGCAGGATTATGCCACCAAACTGAAGAAAGTTGAAAAAATGAAGGAGATCAGAGAGCAGAGGGTGAGATCTGGGAGAGAGAGCAGTGCTCGAGGTCGCAGGGAAGGCAGCGCTGGCAGTGACAGTGGACAAAGCAACCATGGCACCAGCGCCAAGGGTGAGAGGCTTAGCGTTAAACTGAAAACTCTTCCCGGGTCCAATGAACCGTATGAGGCCAGCACTCAGCAGGAAATAGATGCTTCTTATGTCGATCCATTGGGGCCTCAAATGCAGAGACCAAAAACAGCAGCGAGGAAACGCACAGAGGAAGATGAGTTTGCTGATGAAGAGCTGGGAGATGACTTACTGCCTGAGTGACGTGTGCAACAGAGATCAGTTCAGAGGAAAGTCTGATATATGTCCAGACACTACATTTCTTTGAATTTCAAGCTCAACCAATAGCACTGTAGATTAAAAATACTTCATTGTTACTTCATTAAATTCTTCATTATGCTTTACTATATTTTATAATAGCAATGTATTGTACTTGCATTTAGGGAAAAATGAATTCTGTGCAATAATTTTTTCTTTCTTTCTGTATGACAGCATAAGACCTAGATAACATAAAGCTGAAATATAGTTGTTTTGTGTGAAATATTAAAGCCCAGTTTTATAGA +>XM_045586159.1 PREDICTED: Pipistrellus kuhlii protein SLFN14 (LOC118726237), transcript variant X2, mRNA +AAAAATAGAGCTTTGAAATGAAATTGACCAGGATAGGAGGTGCTTGTATGATGTATGGAAATGACACGCAATCCCTTAGAGGTGAGCAGTGTAACTGGCTCTCATTTGAAAACGCCTGAATCTTCCCTTACTACCTAATTCACTCCAGAAGCCAAACTGCAGCCTTCGAATCTGCCCTGTCATAGGCTTTTCTTGAGTCCTTATCAGTCTTCCTCAGTGGGTCAATGTTATGAAGTCTGGGAGAGTCTGGCAGGGCTCCTGCTCCTCCCAGGCTGATATCAAAGAGCCACAGGACTGTGACAGAAAGCAAACATTCAGACCAAAGCCAGATGTGGAACTGAAACAACAAGAAGAGAAGCAAACGTATCAGCACACAGGGGCTGCTGAGATGGAAAGTCTCCAGACCAGTACGGAAATGCTCTATCCTGAGATAATTGTGGACGTGGGCACAGTGACTTTTGGAGAAGAGAACAGGAAGAACATGACCAATAATCAGTTGAAAAGGAATGAGAATTCTAAAATCATCCAAGCCGCCTGTGCACTGCTAAATTCTGGAGGGGGTGTGATCAAAGCGAAGATTGATGATAAAACCTACAGCTACCGGTGCCACGGGCTGGGTCAGGATCTGGAGACTTCTTTTCAAAAGCTCCTTCCTTCAGGTTCACAGAAATACCTTGACTACATGCAGCAGGGGCACAATCTCTTGATTTTCGTGAAGTCATGGAGCCCAGATGTTTTCAGCCTCCCCTTAAGGATCTGTAGCTTGCGTTCCAATTTATATCAGAGAGATGTGACTTCTGCTATAAACCTGAGTGCTAGCAGTGCCCTAGAACTTCTCAGACAGAAGCAGTATAGAGCCCAGAGAGGAAGACCCAGGGTGAAGGAGCGGCATCCTCAGAAGGTTCTTGACAGACACATTCAGGAAGAGGAAGATATGAGGCTGTCTGCTTCGGAATTTCTTAAAAAGGACAAACTCATGTATAAAGAGAAACTCAACTTTACTGAGTCGACACATGTTGAGTTGAAAAGGTTCACCACCAAAAAGATTGTCCCTAGGATTAAAGAAATGTTGCCCCATTACATTTCTGCGTTTGCCAACACTCAGGGGGGATACTTAATTATCGGGGTAGATGATAAGAGCAAAGAAGTGTTTGGATGTAAGAGAGAAAAAGTGAACCCCGACTTATTAAAAAAGGAAATAGAAAACTGCATAGAAAAACTGCCTACATTCCACTTCTGCCATGAAAAGCCGAAGGTGAATTTCACTACCAAAATCTTGGATGTATACCAAAAGGATGTCCTGTATGGTTATGTCTGTATTGTTCAGGTGGAGCCTTTCTGCTGTGTGGTATTCACAGAGGCCCCAGATTCGTGGATCATGAGGGACAATTTGGTCACAAGGCTGACAGCAGAGGACTGGGTGGCTATGATGCTGGATATTCCATCAGTGACACAGGAAGAGATACTATTTAAACCAGAATCCCTCTGTAAGACATTGTTCTCAGATCATAAAGAACTGGAGGAATTCATGAAGATGCAGATACGTCCTATCTCGCAGGGGATTGTGGTATTTTCTCGAAGCTGGGCTAATGATATTGGCTTAAGGAAAGAACAGAACGTCTTGTGTGATGCTCTCCTGATAGCGGTGAACAGCCCCCTGGTACTTTATACAATCTTGATACACCCCGGTGGGACCGAAGGGCCTGAATATGCCCGGAACACTGCTCGTCAGTTAAAGCAGAAACTGGGAACTGTTGGTGGTTACACAGGGAGAGTGTGTGTCATTCCGAGACTGCTGCACCTGCCCGGCACACAGTCTAGACCCTGTGGGACCCCTGTGCACTACCCTCAATCCTACCTGCTTGCTAACGAGGAGGAAATGGAAGACTTGTTGCAGGCCCTTGTCGTGGTGGTCTTGCTGTGCTCTCGTTCCCTTCTGAGTGACCGGCTGGGCTGTGAATTTTTCAACTTGCTCATAGAGGAGCAATGTGAGTTGCTGTCAGAGAGCCTTCAGGAGACGCGAGAATTGTTCATCCACTGCTTCCCAGGAAGCAGGAAGACAGCCCTAGCCATAAAGATCATGGAGAAAATCAAGGACCTATTCCACTGCAAACCAAGAGAGATCCTCTACGTTTGCGAACATGACTCCTTAAAGGATTATGTGGCCCAACAAACCACCTGCCAGGCCGTGACCCGGAAAACCTTCATGCAAGGGGAGTTCCTAAAGATTAAACACATAGTGATGGATGAGACCGAGAATTTCTGCAGTGTGTATGGTGATTGGTACAAGAAGGCTAAGGGTATCACCCATCCAGAGGGGAGGGGAGCTGGAAGGAAAAACCTTCACCATGGGGTTCTCTGGCTCTTTCTGGACCCCTTCCAAGTCCGTCATGCTGATGTCAACGGCCTCCCCCCTCCATCTGCTCAGTTTCCTCGGAAAACAATCACTAAAGGGATCCACTGTTCTCTGGAAATAGCAATGGTCATGAAACAAGAAATGAGGAAGATCAAAGAAAATCCTCCCTCCAACATGTTTCTGGACACACTGGCACTCTTCAGGGAAGCTGCCTACGAGGCAGCAATGTGTGCCCAGGCTCTTCCTGGGGTGTGTGAAACGGAGACCAACCTGACAATAGAACAAATCGCAAAGTACGTGGCAGAAAGATGTCACCACCTGTTCCAGTGTGGCTATCTGCCCAAAGATATAGCAATTCTGTGCAGGAGAGGGGAGGACAGAGGACGCTACGAGCTTGCACTGCTAAAAGCAATGGAATTAATTGAGACCCGCAGAGCCGCAGAAGTTGTGTTCAGCCAGGCCTCTGGTGTTTTGGGCAGTCACATCATTTTAGACAGCATTCAGCAGTTTTCAGGCCTAGAGAGGAATATTGTGTTTGGGCTTAGTCCAGAATGCACTCCTTCAGAGGAAACGCATAAGCTCTCCTTCGCCTCAAGAGCCATTAAACACCTCTACCTGCTTTATGAAAAGAGAACAGCCTTCTGAAAACCATTTCAAACAAAACAGGAAGCCAAAGGAGCAGAGTCCCTTCTCCTAGGCAGGCTGCAGGTACTCCTTTTCACATATTACAAATGGGAAGATCAAGGCACAATCAGTATGGCA +>XM_047948956.1 Puccinia striiformis f. sp. tritici uncharacterized protein (Pst134EA_017638), partial mRNA +ATGTACCCTACAGCCGAAGATGCGGTGCCGTCAGCGATCAGCCGCGGGTCTATTAATTGTGTGTCGACTGACATGCGAGTATCAGAAGATGTTCGCCCGGGTCGGCTAGCCGAAGCTCAACGGGAGATCAGCGGCTTTCCCGAATCAGTTCCACTGCCACGGCCAGCCAACCAAGATGCGATTGATTGGTCCAGGAACATTGACCCAAGGATCACAGGGCTCAAGGAACTCAGGAGAGAAGAGCTGAACAGTGTTACTGCACATTTAGAACAGCTCGATCAATATGTCCAGGCTCAAGCTGAAGCCACGACGGATGCTATCACCAGAGACCCTCAAACTCTGGTTGGCCCTTGGTTTCAAGTCACGCCTGCTCGTCCAGGTCCACAAAGATCGAGTAGACTTGCAGAATTATTCACCAGAAGATCCAGTAAAAAAGCTGAACTAGATGATGGGTTAAGAGAGATCATCATGACCGACGTGATCCCGGTTTGA +>XM_046909055.1 PREDICTED: Gallus gallus pleckstrin homology like domain family B member 2 (PHLDB2), transcript variant X26, mRNA +AGAGAGACTGACTTCTCTGGCTACTCATTCACAGAAAAGTTGTGCAGCTCAACAGCAATGGGCTTGAATTAAAAGCCTCAGGGAAATTCATAATGCACAGCCTGATAGTTTTCCCCCTCGCATGCATTTCAGAATGGTGCTTGCTTCTAATCTGGAGAATGCCCTTTCAGTACCTGCTGGCAAGTCACGCCACTTTAATTTCAGATTCCAGTAAGATTATGGCAGAGTATAACCACACACAAAACCAGATGGAATTACAAAATGCTAGTTTGGGAAAGGGTTCTGTGGTGAATTCCCTTGAAAACGGTCTCCAGGATATTATGGAAAACCTCAACACGAAGAAATATTCATCAAGTCTCAAATTTAAAACAAACGGGGACTGCGCCGGTTCTTACTTAACCCTTTCACAGCCTATGATGGCTAAACCCAGTCCTTCCACTAGTGTTAAAAATATACACTCTGTTACCAAAATTCAAGGAGGCAAGCTTTTCCCTTGTGAAAGTCCGTATCTTCCAGATAAAAGCTTCTCTGTAAAGCATTTGAGTTCCCTGTCGGGCACATCTCCATCCCTCAGTGGGTACAACTTAGGAAGGACAGACTTTGATATTCATGCCAACAGAGAAAATGAAAAAGCTCTTGGACACGCAGATAAGTTTTACTACTCTAAGTATAGCCAGAAAAACAAATCGTATGACAATGTCTACTTGCCAGGAATGCTGGACACAAAGAAGATCTCAGGCTCTCTTCTTACAATGTGGAACGGCAGCTCAGGGAGCGAGCTGATGCTTTCCCCTGTTAGCAATTCAGGGGCAGCCAGCATGCCTTCTAGTCCAAAGCAAGGTCGGAGGATGAATATTGAAGATGGCCTGGCCCTTCATGCAAAGCCAGTTAAACACAAGGATGTGATGATGGAGACTCTGGCCTCACGCCCTAGGAAATACTCTGGTGGATCTCTGAGTCATATGGGAATGTACAGTCGTTCCCTACCCAGGCTTCATAAATCAACAGAAAGCCAGTTGATGCCATTAAGTTTGCCCCCAAGAAACTCCTTGGGTAATACTAAAAGGAAAAAACTTGGAGAAAAGGATCTACCTCAGAATGCTTTAGATGCTGATAATTACCTGAATTTTTCTTCGTGCAGCTCAGGGGTTTTACCACATGCAAATTCGTTCTCTGGGAATAATCCCTATGTTAGTTCAACTCTTAGCGTTCCTGCAAGCCCTCGAATTGCTAAAAAAATGCTTCTAGCATCTTCTTCCTCGTATATTCCTGATGATTTTGATAGACTTGGACTCTCAGGAACGAGTCCCAGTAGTTCGTTCTCCCCTGTGGATTTTGACAGATCATTCTCTATCAGAAGAAACCTCTCCACCAGTTCCATGGAATTCGATGATACAGACTTGGAAAGTTACAGGCAGACACCAAACTCACTGCAGACCTCTGTGAGAGAGCGTAAGAACAGCATCAGCTCCATTTCAGGGAGAGAAGACCTCATGGACTATCACAGGAGGCAGAGGGAAGAGCGGCTGCGGGAGCAGGAGATGGAACGCTTGGAGCGACAGCGGCTGGAGACGATCCTCAATCTGTGTGCAGAATACTCCAAGTCTGACAGTGACCCTGCCGCAACTACAACAGTTGCTGATGTTCAAAAGATTAACAAAGAACTTGAAAAACTTCAGCTATCAGATGAGGACTCAGTGTTTGAAGACTCGCAGATGAATCTAGAAACGAGGTTTAGGAACCACCTGAAATCGTCTGCGAGTGATTCGGATTTCTCAGAGCCAAGTAACCACAGTCGGAGCACTGCTTCTTTCCTTTCCTCCCGGGGGCTGAGAGCCGACGAGCACTTCACTGACAACATGAAGCCTGCACCTTTAGCTGCCCCTGGCTTCCTGAAGGATTCCACTGAGTCTTCGTATCTAAGCATCACGCCAAAGATACCAGAATGCACAAGTGATGATCAAAGAGGACAGGAGCTCACTCGGCTAGAAGAGGAACGCATAGTAATATTAAATAACTTGGAAGAGCTTGAACAGAAGATCAAAGATTTAAATGACCAGATGGATGAATCCTCAAGAGAGCTGGATATGGAATGTGCCCTTTTGGATGGGGAACAGAAATCTGAAACAACAGAGCTGCTGAAAGAGAAGGAAATACTGGATCATCTAAACAGAAAAATAGCTGAGCTGGAGAGGAATGTTATTGGTGAAAAGGCAAAGGATGCTGATCTACTGGACATAGAAAGCAAACACTTTGAAGACTTGGAGTTTCAGCAGCTTGAACATGAAAGCAGGTTAGATGAAGAGAAAGAAAATCTGACACAACAGCTCCTGCGTGAAGTAGCTGAATATCAGCGCAGCATTGTCAGTAGAAAGGAAAAGATTTCTGCTCTGAAAAAGCAAGCTAATCATATTGTCCAACAAGCACAAAGAGAACAAGATCATTTTGTAAAAGAGAAAAATAACCTAATAATGATGCTGCAGAGGGAAAAAGAGAATCTCTGTAATCTGGAGAAGAAATATTCCTCACTCTCTGGAGGAAAGGGATTTCCTGTCAGTCCCAATAGTCTAAAAGAGGGCTATATCAGTGTAAGTGAAATTAGTGAGCTGTATGGCAATTCCACGAATATATCCCCTTCCACTCAGCCCCCCACAGATGCTGACGCAGGTACCACTGAGCCTTCCACGGCTGTGCTGACGAGCCAGCCACAAAATAAAGAGCATTTCAGAAATCTGGAAGAGCGAAAGAAACAGCACAGGGAATGCATGTACATGAGTGATACTTTGCCTCGCAAGAAAACAACTCCAACTGTGTCACCACACTTCAATAGTTCTACTCTTGGACGAAGCATTACATCTAAAGGGCATTTACCATTAGGACAGAGCAACAGCTGTGGCAGTGTACTTCCTCACTGCCTGGCAACCATGACCAAAGAGTCAGAATCAAGAAGGATGCACAAAGGGTATAACCATCAACGTATATGTGAAAACCAAAGGCAGAAATCTCCTGAATTCTACAGCAGAACAGCATCCGAATCCAACGTGTATTTGAATAGCTTCCATTACCCAGATCGTAGCTACAAGGACCATGCCTTTGATACATTAAGCTTAGACAGTTCTGACAGTATGGAGACAAGCATATCAGCATGCTCACCAGATAACATTTCCAGCGCTAGCACATCAAATGTCGCAAGAATAGAAGAGATGGAGAGACTTCTGAAACAAGCACATGCTGAAAAGACTAGGCTGCTTGAGTCCAGGGAACGGGAGATGGAAGCTAAAAAGCGAGCTCTGGAAGAAGAGAAACGCCGTAGAGAACAACTGGAAAAAAGACTGGAAGAAGAAACTAGCCAAAGGCAAAAACTAATTGAAAAGGAAGTGAAGATACGAGAGAAACAAAGAGCACAGGCTCGTCCATTGACTCGCTATTTGCCCATTAGAAAGGAAGACTTTGATCTACGAAGTCATATTGAAACAGCTGGTCACAACATAGAGACCTGTTACCACGTCTCCCTCACAGAGAAGACCTGCCGAGGCTTTCTGATTAAGATGGGAGGAAAAATTAAAACATGGAAAAAACGATGGTTTGTTTTTGACAGAAACAAGAGAACTTTTACGTATTACGCAGACAAACACGAAACTAAATTAAAAGGTGTAATTTATTTTCAAGCTATTGAGGAAGTCTATTACGATCATCTGAAGAATGCATACAAGAGTCCCAACCCACTACTTACTTTCAGTGTTAAGACACACGACCGAATATACTATATGGTCGCTCCTACACCGGAAGCCATGAGGATATGGATGGATGTTATTGTTACAGGCGCGGAAGGCTACACCCACTTCATGTTATAACAAAATGGGCCAATAGGGCATACTGCAATAATGTTAACATATGAAGTTAGCCATATATAGTAAAATCTGAAAAGCCACATAAAATACCAGTGAACACTCTGAAATATCCTCCTTATGATGTGCAGCCAAAGCCTCAGAACGGAAGGGTTTTCTAAATGCATTGAAAAGGGGGACTTGCTACTTATTTTAGTTGATCTTTGTAGAGACAAAAGAGCTAAAGCTGTTGAGAAAGTCATAGTGCTCCAAAACAAATCAACTGGCCACTTATGTGACAACATCTGGATTCAACAATAATTTTGTACCAGTTCTCTTAAACAGAGAATGTCTTCATCACCAGTTTATGAATGCGTGTGCTCTCATCAGTATGCAAAAATTCTAGTAGAGGAACAAAAAGGTGTAATAGCATATATTTTAATATGCAGCATTTGACATTTATAGACGATTAGGTGACTTTTAAAAACTTTTAGTCGAGTATTTTATAAAACTATGAATTAAAAAGCTGCCCTAAGGTACACACAGTTCTTGCCTTAGTAAAGTATTACAACAGAGCCAAAGAGTTATGTGACTCCCTTATTGTAATATTTCAGATTGTTAGCTGTATTTAACTTCCTGTAAGGGGACAGTGCCAAAACTCTTCATGACTTGTAAAGTAATTAAGTTTTTACAAAACTATGTTAAACCACCCAGTGATACTGACTGTCAGTTTAAAGTCTGTATCTATGAAGCTCAACAAGAAAAGGACAGCTTTATAAAGACGGATTTATCCACAAGGATATGAAATGGAAGCGTGGGTTAACTTTGTCATTAGGAGGGCTTTTGCAGTCTTCCATGCTGAATGGATTGAGCTGATTCTGGACCCTGCAGCGATTTTATGTAGTCAGGTCCCACCTGATGTGGTTCTGATCTTTCTCTGTGCCAAACGAACACTTTGCTGAAACCTCAGATGTTGGTCTCCATGAAGCAAGCACTGAAGTATCTACCTATCTAAATTCTTTGAAGCAATGTTTTTAGCCAAGGAGACTTTTTAAAAGTGTATCTACTCAGAATAATGCTATCAGAATAAAAATAGAAAAGCAAGCGCTAAGGGTTTACACTGAGCAGTGTATGGATAAAAAGCGTGAAAACTTTAAGTATCAGGGATTGAGATTCCTAAAACAACAAAAATAAGGAGGATACAGTGGTCTCCTATTTAAAAATCACTTACAAATTCCAAATCCTTGAGAAATATTGCAAAGCTTAAGTGAATTGAACTTCAAGAAAGTCTCTTATTCTTTGACTTTAATGAGGTTCTATTTCAGTCATCAATACTTGTGCTATGTAATTTGTTTGTGTAATAAGAGAAAGCACATTAGACATTTTTCTCGATGAAAAGCTAATGGCTTTTGATGAAGCAAGTGAAAAACTGAAAGCAAAACAAGTTTGCTGGCAAAATAATTTTGTTGTACTGTTTCAACCCTGTATCTGTTAAGAAGGGGATGCGTTCTTCCTTGTGTGGTATACACAGGCGATATGGTTGCTCTAGCATGACATTTGTCAGTTTTGACTTGAATCATGAAAGAAGGGACAGTTATCACAAGGTAACTGTTATCATCATGTGCAGATCACAGCTTATAATCCAACGATTTAAAAACACTATCAGAATAAATTGCTTTGGTATATGTAATTATTATTTTTTCCCTGACGTATCTTGATTTTACTTCTTAGCATAGTTATAAAGGTTTTCTAATCATGATTTTTGTATCCTGCATGATGCAATGAAGGCATTTCAATAAACGTTTTTAAAAACA +>XM_010693631.3 PREDICTED: Beta vulgaris subsp. vulgaris 110 kDa U5 small nuclear ribonucleoprotein component CLO (LOC104905180), transcript variant X2, mRNA +AAATAATTAAATAAAACAATATTGAAGAGAAAAGGCAAAAAAAAAAAAAAAAAAACTCTCCACCAAAAACAAATATTTGTACCACCTTAACCTTAACAGCTTAACTTGAGTGTTGAGTCCATCTAAAACCCCAAATAACCCCATTTCACTTTACTCCCAAAATTCTCTCTCCTCCATTTCATCTTTCTCTCCTCTTTCCGCCATGGATGATAGCTTATATGACGAGTTCGGCAACTACATAGGTCCCGAGATCGACTCCGACCAAGACAATAATTCAGACACCGACATTCCTTCCGACGATGACGCCGACAAACGTCCTTCCGACGACGACAACACTCCTTCCGCCGCCGCCGGTCCCACCAACGGTTGGATGACAACCTTAAACGACAACAACGATGACGACATCGAAATGTTCGACAACCAGGTTGTTCTCGCCGAAGACAAGAAGTACTATCCTACTGCTGATGAAGTGTACGGTGAAGATGTTGAAACCCTAGTTGAAGATGAAGATGAACTTCATCTTGAACAAGCTATTATTAAGCCTGTTAAAACCCTAAAATTTGAAGTTGGTGTTAAAGATTCGTCTACTTATGTTTCTACTCAGTTTATGCTTGGTCTTATGTCTAACCCTAATTTAGTAAGGAATGTTGCACTTGTTGGGAATCTTCATCATGGGAAGACGCTTTTTATGGATATGCTTGTTGAACAGACTCATCATATTTCTACTTTTGATCCTAAGAACGAGAGGCATATGAGGTACACGGATACAAGAGTTGATGAGCAGGAGAGGAGAATTTCTATCAAATCAGTGCCAATGTCACTTGTTCTTGAGGACAGTAACTCCAAATCATATTTGATTAATATTATGGATTCACCGGGTCACGTAAATTTCTCGGATGAGATGAGTGCTGCTCTTCGGCTTGCTGATGGGGCTGTCCTGGTTGTTGATGCGGCTGAAGGTGTCATGGTTAACACTGAAAGGGCCATTCGACATGCAATTCAAGAACGCCTTCCTATTGTTGTTGTTATTAATAAGGTGGATAGACTGATTACAGAACTAAAACTGCCTCCTAAAGATGCTTATCATAAGTTGCGCCACACCTTAGAAATCATCAACAACCTTGTAAGTGCTGCCTCTTCAACTGCTGGCAATGTTCAGAGTATTGATCCGGCAGCTGGTAACGTTTGTTTTGCCAGTGCAACAGCTGGATGGTCATTCACTTTGCAATCATTTGCAAAACTCTATGTTAAACTGCATGGGGTAGCATTTGATGCAAATAAGTTTGCTTCTCGTCTTTGGGGGGACATGTATTACCATCCAGACAGCAGAACTTTTAAGAGGAAACCTCCTGTGTCTGGTGGGGAAAGATCTTTTGTTCAATTTATCTTAGAACCTCTGTATAAGATATACAGTCAAGTCATTGGTGAGCACAGAAAGAGTGTCGAGGGCACACTGGCAGAACTTGGGGTTACACTTCCGAATGCAGCTTACAGGTTAAATGTTCGGCCCCTGTTAAGACTTGCTTGCAGCTCAGTTTTTGGTACAGCAACAGGCTTCACTGATATGCTAGTTCATCACGTTCCTTGTGGCAAAGAAGCTGCATCAAGGAAGGTTGATCACATATATACTGGTCCAAAAGACTCGGAGATCTACAAGTCCATGGAAATTTGTGATTCATCGGGGCCAGTTATGGTTAATATCACCAAACTCTATCCAAAAGCAGATTGCAGTGTTTTTGATGCTTTTGGTAGAGTTTACAGTGGTGTGCTCCAAACGGGACAAACTGTTCGTGTGTTGGGAGAAGGATACTCACCTGAAGACGAGGAAGATATGACAGTGAAAGAGGTCACGAAGTTGTGGGTCTATCAAGCTCGTTATAGGATACCTATAAGCAAAGCTCCACCAGGTTCATGGGTTCTCATTGAAGGTGTCGATGCCTCTATCATGAAGACTGCTACACTTTGTAATGCTGATTTTGATGAGGATGTCTATATATTGCGTCCTCTCCAGTTCAATACACTTTCAGTGGTGAAAACTGCTACTGAGCCTCTTAATCCTAGTGAATTACCAAAAATGGTTGAGGGGCTTAGAAAAATCAGCAAGAGCTATCCTCTTGCTATCACCAAAGTTGAAGAATCTGGGGAGCACACAATCTTGGGCACTGGGGAATTATACCTTGATTCTATCATGAAGGACCTGAGAGAGCTTTATTCCGAAGTAGAAGTGAAGGTAGCAGATCCAGTTGTCTCATTTTGTGAAACGGTGGTAGAATCTTCATCAATGAAGTGTTTCGCTGAAACTCCAAACAAGAAGAATAAGATAACTATGATTGCAGAGCCATTGGAGAGAGGTCTTGCAGAGGACATCGAGAATGGTGTTGTGAGCATTGATTGGCCTCGAAAGAAACTGGGAGATTTCTTCCAAACAAAGTATGATTGGGATTTGCTTGCTGCACGTTCTATATGGGCTTTTGGTCCTGATAAGCAGGGACCTAATATACTGTTAGATGACACACTTCCCAGTGAAGTTGACAAGAACTTACTGAATGCTGTGAAAGATTCTATTGTTCAAGGCTTTCAATGGGGTGCTCGGGAAGGTCCCCTCTGTGATGAACCAATCAGAAACGTGAAGTTTAAGATAGTTGATGCTAGGATTGCTCCTGAGCCACTACATCGGGGAACTGGACAAATCATCCCCACTGCCCGACGTGTGGCTTATTCAGCTTTCCTTATGGCTACCCCTCGTCTTATGGAGCCAGTCTATTATGTGGAGATACAAACACCAATTGATTGTGTTTCCGCCATCTACACGGTTTTATCTCGGAGACGTGGCCATGTGACTGCTGATGTTCCACAACCAGGGACCCCGGCGTATATAGTGAAGGCATTTTTACCTGTGATAGAGTCGTTTGGATTTGAGACAGATTTAAGGTATCACACTCAAGGGCAGGCCTTCTGCCTCTCTGTATTTGATCATTGGGCTATCGTCCCAGGAGATCCACTGGACAAGAGCATAGTCCTACGGCCTCTTGAACCTGCCCCAATACAGCACCTGGCACGGGAGTTTATGGTGAAAACAAGGCGTAGAAAGGGTATGAGTGAGGACGTGAGCATCAATAAATTCTTTGATGAGGCCATGGTTGTCGAGTTGGCTCAACAGGCCGCAGATCTTCATCTACAAATGATATGAAGGATGTAGATAGATACTTTTGGGGGTTTTGAGATATACACCTGACCGTTCTGAATGTAGTTTCAATCAGTTACCCCAAATTCTTTATCACTTCATTGAAGCTGAGATGCTGCCATCAATTATATCATTCTTTCGCGAGTTTCAAAATTCA +>XM_037769526.1 PREDICTED: Sebastes umbrosus plectin-like (LOC119488165), transcript variant X1, mRNA +GTCTGGGAGGAACCGGGACCGAGAGGTGGACGGAGAGAGACTGCCTGCTTGCTGTAGTCTCAGAGTCGCTTTGGCTGCAGCCGAGTCGGTGTCACAATGAGTATGTACGGGTCTCAGAAGGCCCTGAACATGGGCCGCAGGAACGGGTCCAAAGGAGACTTGAGCGGGATGCAGCAGTACGCACGGAGCGAGGTGGTGCACATGGGAGGCGGTAACGGATACGAACCTTACCTGGACGGATACAACACCTACAACTTCTCAAAGTCCTCTGGAGGCGGCATGGGAGAAATGTCGAGCAGCATGATGAGACAAATGTCGAGCGGTATGGGAGGCGGCATGATGAGACAAATGTCGAGCGGCGGCATGATGAGAGAAATGTCGAGCGGCATGGGAGGCGGCGGAACGATGACCAGGATGTCGAGCGGTGGAGGAGGCGGCGGAATGGGAGAAATGTCCAGCAGCATGATGAGAGAAGTGTCGAGCGGCATGGGAGGCGGCATGATGACCAGTGTGGATGGCGGCATGATGAGCGGCATGGGAGGCGGCATGAGTGGCTCCAGCACCATCCACCAGAGGGCTATGATCCTGCAGGCCCAGTGCCAGGAGTACCTGAAGAAAGCCGAATACGCCCTTCAGTCTGGCGGCGCCTCCGGTGACGCGGAGCGCTACATGTCAATGGCTAAAGAGACCATTGAGCAGCTGAAGGGCTACGCGATGGACCTGAGACAAATGGGACAGCCCAATGACAACGTAGTCAGGACTTTGGAGATATGTAAAGACCAGCTGAAGGGGGTCCACATGGTCATGACCGGCAGCCTGAACAGGAGGAGGAGCACCAGAGGGAGCTCCGGAGGCTGGGAGGAGCCTCCGAGGAGCTTCCAAGACGCTATGGGCTGGATTGCACAGCAAAAGCGTCTGATTGAAACTGCTTCATGGGGAGACGATCCTGCTGCCATCGAGCAGCAGCTCATCAACCACTCGAACTTTCACAGCTCCATCCAGAGGAGCGTCGAGGTGGAGCGAGCCAGAGATGAGCTGATGAAGAAAGGAGACAAGGGAAATCTTCACGCTCTGGATCAGGAGTGGGACAGTCTGCAGCAAATGTCATTTGGTCGGACCGAGCAGCTGCAGAACCTCAAGCGGATCATTCAGGATATGTCCAAAGAGATCATGTGGGTGAACGACAGGGAGGAGGAGGAGCTGATGTTTGACTGGGGAGACAAGAACATTGACCAGTACATCCCACGGAAACAGGAGAGCTACTCGAAACTGATGAGTGCCCTGGAGGAAAAAGAGAAGGACCTGAATAAACTGAAAGCCAGAGTGGACGGCCTCCTGAAGCTCAACCACCCAGCTTCAGACAAGATCGAGGCTTACAGGGACACTCTGCAGACTCAGTGGAGTTGGCTCCTTCAAATCACCAAGTGCATTGATGTTCATCTGAAGGAGAATGCAGCTTACAACCAGTTCTTCAAAGAGGCCAATGAGACGTACAGCGGCCTGCAGAAGGAACATGAGACGGTCCGGATGAAATTCGCTTGTGACAAGAACACTTCACTGGAGGACCTGATGGAGCTCCTTCAGGGACTAGAGAGGGAGAAGGAGAATATAATGGAAAACAAGAGGCAGGTTCATCATCTGGTCAACAAGTCCAGGACCATTGTGAGACTGAAACCCAGAAACCCTGAAGAGAAGAGCAGCACCCCCGTCATCGTCAAAGCTCTGTGTGACTACAAACAAGACCAGAAGGTGATCTGTAAGGAGAATGAGGCGATCCTAAAGGACAACAGTCAACGCAGTAAGTGGGACGTTACCGGCCCGGGAGGACTGGATATGTTGGTGCCCTCCGTGTGCCTGATCGTACCACCTCCCAACCCACTCGGCATCAGTATGGCCAACAAGAACGAGCAGTACTATGAGGCCATCCTGTCAATCTGGAGTCAGTTGTACATCAATGTTAAGAGTCTCATCGCCTGGCAGTACTGCCTCATTGATATCAGGAAAATCAACTCCCTCACCGTGACCATGCTGTCCCGCATGCGTCCCGAGGAATACCGCCAACTCATCAAGAGCCTGGAGTCTCGCTACGAGGAGTTCAAAATGACCAGCCACGGCTCCCAGATGTTTGCTGACGAGGACAAGAAGATGATTGAGAACCAGGTCACCGGAGCCCAGACCCACTATGACCAGATCGTGGTGGAGCTGCCTACTTACATTGCTCAACAGGAACACATAGAAGTACAGCAAGCGTCCGGCCAGCAATACCAACAGCAGCTGATCCTAGTACAGCAAGCGTCCAACCAGCAACACCAACAGCAGCTGATTCTATTACAGCAGCAGCAGCAACAACAAGCTGCCGCCGAAGCCGAGGCCAGGAGGCTCGAAGAGGAGGCCAGGTGGCGCGAAGAGGAGGCCAGGAGGCTCGAAGAGGAGACCAGGAGGCGCGAAGCGGAGGCCAGGAGGCTCGAAGAAGAGACCAGGAGGCGCGAAGCGGAGACCAGGAGGCTCGAAGAAGAAAGACGAAGAGCGGAGCTGAAAAGAGCAAAGAAAACGGAAGTGAAGTTGGTGAAGAAGGTGAAGGTGGTCACTTCTTCTGCTGCCCCTCCTGTCTCCTCCCACTCCTTCTCCTCCTCCTCCACCTCCACCTCCTCATCCTCATCCTCCCGCAGCTTAACTGAGCTGCATGCGCTCAGACTCAGGCTGGAGGCCTCCGAGGGCACGCTGAGTCAGCACGTTCACATCTGCCTCGGAGACGACTGGATGCACGACTGTGGCCTCAAGATATCTGAGCTAGAGATGCTTCTGCGTAATGTCGACTCGATGCGTGAGGAGCACTTGCGTCTGAGGGAGCATATCTTGAAGGAGCTGGAGGGCATGAATGATTCAGATAAAGCCCAGTTCCTCCGCAACGAGGTTGAAGTCATCAACCAGAGGCTGGGTAGTCTGGAGAGCAGCTCATCAGCTTACCTGGACCGGCTGAAGGCTCTAAGGGACATGCTGGAGAGTGTGGAACAAGCCGAAGACATAGTGAAAGTCCACGAGGCGAGACTGGTGGAGAAAGAGACCACCTCTCTGTCGCCCAACGAAGTGGAGGAATACATGTTGACCCTGAAGAATGTTAAAGCGGAGCTGGATCTGAAGAGGGGTATTCTGGCCACCATGGAGACGGAGCTAGCCAAGGCCAACCACTGGAGCGGCCAGCTGGGCGGGCCCTTCCAGAGGTGTGACATGATGCTGTCCAAATACTCTGAGCAGGTGGTTCTGCTGTCAGACCGCTGGAGACGACTCCTAGGGCAGATTGACACCAGAGTCCAGGATTTGCAGTCGTACCAGCCTCAGCTGGAGCACTACAAGCAAACCAGCACCTCCCTTATTGACTGGATTGATGCCACACGGACAAAACAAGACACCCTGCAGGCCACCAAGATAGAGAGCATCCAAACACTGATGGACCAAATTAACAACCAGAAGGCCCTGAACTCTGAAATCAAATCGAGGAGGGAGACAGTAGAGAGCGTGCTGAGGGACAATGAGGCCTGTGTGATTTCTATCAAGGATTATGAAACGGACCTGGCCTCTTACACCTCTGGTTTAGAGACGTTGCTCAACATCCCCATCAAAAGGACAATGCTGAAGTCGCCGTCGATGGACCTAAATTTGGAAGCTACACAACTGCAAACCCGTTACATGGAGTTGCTCACACATTCTGGTGACTACTACAAATTCCTGGGAGAGCTGCTAAAAAACATGGAGGAGCTCAAGATTCGTAACACCAGGATTGACCTGTTAGAGGAAGAACTTCGCCTGCTGAGGGAGGGCATGCGAGACCGCGACTCCAAGAATAAATCTCTAGAAGAGTCTGTTTCCCGTTATGAGCTGGAGTTGTCCGACTCGCGGGACAAGCTGCTGTCGATTGAGGAGGTGAAGCAAACCGCTACGCTGCAGTGCAGTGCCACTATGGACAGCCTGGACAGCACTCAGAGCCAGCTGGCAGACCTCAACGATGAGGTGACACGTCTCAACTACTTGCTTGAGGAAGAGAAGAGGAAGAGGAGGCTGGCAGAGGAGCGCTACACTACGCAGCAGGAGGAGTACGAGCTGGTGCTGAGGAAGAGGCAGAAGGAGCTGGACACGGTCAGCTGGTCCAAGGTGGAGATTGAGAAGAGTGTGACAAACAAGGATCACGAGATTGAACAGCTGCGGCGGCAGCTGGCTGAGGAGGCGGCGAGGATCAGGGAGCTACAGAAGGAGATGTCAAAGGTAAGGAGCCAATGCAGTATGGAGATCAATAACTTAAAGCTCAGCTACGAATCCCAGATCCACGTCAGCTGCACAGACATGCAGAGGCTGGCAGCCCAGAGGGAGGAGGATACCGTTGATGTCCAGCTGCGGTATGACAGGATGGAGGCAGAGAGGAGGAATCTGGAGGAGGAGCTCAGGAAGCTCAGGATGTCTCTGAGCCAGGCTGAGGAACAAAGGAACAGGGCAGAAGAAGAAGCTCACAGTCAGCGTGCTGTCATCACAGAGGAAGGGCGCAGGAGGAGAGAACTGGAGAGTCAGGTGGAGGTGCTGATTAGGCAGAGAGACGAGGAACGCAGCCAGTATGCAGAGGAGCTGGCTGAAGTCATGAAGAGGCTGCAGGAGAAGAGTGACGAGCTGGCCTACATTACACACAGCCTGGAGGAAGAGACCCGCAGGAGGAGAACTATAGAGGAAGGGCAGGATGTGTTCGAACAGACTCTGGCCCAGCTGCAGGTGAAGCTAACCAGTTCATCAGTGGCTGCAACCCAGCTGGGGGAGTGCGAGGAAGAGCTCCAGAAGATACGTATGGAGCTTGAGAGGGAGAGCAGGGAGCGAAGCAGAGTAGAGCAGAACATGAGCAGGCTACAGAGTCGCATGAAGGACCTTCAGGATGTGAGAGGTGGGCTGGAGAGCCAAGTGGAGAATCTGAGGAGGGCCAACCAAGAGGAAGTGTCCAGAAGAAGGCAGGTAGAAACAGAGCTGGAAAACACCACCAAGGCCATGACTGAGTACATCAGCACCGTTACCACTCTAAGCCAGAGCCAAGAGCACGCCAGCATGTCAGAAAAGAGAGGTGAAGAAGAGCGCCTTAGGTTGCAGGAGGAGCTGGAGAGAAGCTCGAGACAAAACAAGACCTCTGCAGAGCGCATGACTCAGCTGAGCGCCGAGCTGAAGGCCCTGCAGCAACAGCTCCTCCAGGAGCAGGCAGGAGGCAAAGAGGCAAACCTCAGGAATGAGGGCCTTTACAGAACTATAGAGGAGAAGAGTAAGGCCCTGAATGAGCGCTCTGGTGAGCTTCAAAGGCTGAAGGAGATGGCAGAAAGCCAGACCAAAGAAAGGCTGAGGCTGGAGGAGGAACTAAGCGCAGCACGACATGATAAAGCGGAACTCCTGAGATCCAAACAGGGAAGTGATGATGAGCTCTCCTCCCAGATTACAGCCCTGCAACTGCAGCTTCAAGCCAGTGAGCGCAGCAATGTAGATTACCGCAACCTGGCCTCAGAGCTCTCCTCGGAGAGGGAGAAACTCAAGCTGGAGACTGAGAAAATACAAAAGCAGGCCACCGAGACAACCACCATGATGCAATCCATTCAGTCCCAGTACAATGAGATTGTGAATGAGAGAGATGCTCTTTTGCTGAGACTGCAATTGTCAGATAAGGACAAAGATCGCTACCAAAGGCTAGAGGACGAACTCAGTCGCATTAAATTGTCCCAAGACTCTGAGCTTCGCAGTAAGCAACGTATACAGGATGAGAACGAGAGGGCGAAGAGGGATTCAGATTACTGGAAGGACCAGTTTGATAGTAAGCAGGTCCTGATCAGGCAATATGAAACAGACAAGGAACGTCTGGAGAGGGAAAAGAACTCTCTGAAAAGTGAGCTAGAGAGGCTGATGAGGGATCTGAGGGAGCTTGATGAGACATATAAAATCAGGCTGTCAGATATGCAGAAAGAACTGCGAGAGGTGGCTGTTGTCAGAAAAACCATGGAAACTGAGCTGATGAGAGTTAGAGAGCCCCCAACCTTGGATCCTTCCACTTTGGTCTTTGATGGAGTCCGTAAGCCAGTCACAGCAAACCAGTTGGTTGACTGTGGTGTTTTGGACAAACCAACACTTAGCCAGCTTGTGAAGGGGCATAAGACTGTGCCTGATGTCTCTGTCGACAAAAAAGTCAGTCTCAAAGGGACAGGCCCAATAGCCGGGGTGGTAATTCAAGGTCCGAAAGGTCCAGGGTCTTTTACAGGCCCCTTATGCAAAATGACTTTCACCGAAGCAAAGAAAGAGAATCTGCTACCACCAGATAGCGTAGACCTACTACTGGATGCTCAGGCTGCCACAGGCCACATAATTGACCCAAGAACTAATAGGAAGTTGACAGTTGAAGAGGCATGTGATCAAGGTGTGGTTGATGAAGAGGACAGAGAGAGGTTGTTGGCAGCAGAAGCTGCAGCTGTAGGATATTGTGGTCCTGGCACAAACAAACCCCTTTCAGTATTTCAGGCTATGACGAAAGGACTGATTGACAAGAACACAACACTGCGTCTGCTACAAGCCCAGGAGTCTGTGGGGGGCATCCTAGATCCCATACTCAGTGTGTTCCTTCCTAAAGACACAGCCATTGAGCGTAACCTAATTAATGATGACATATATCATGCTCTGAGTCGGAGGCCTGAGCTCTACCTGGACCCCGAAAGTGAAGATGGTGTAACCTATATGTCAATGAAGAGGAAATGTAAGGTAGAGCCACACACAGGCCTTCTGCTTCTTCCGATCCCTGAGAAGGTAGACCCCTCCAAAATTGTCTTTGATGGTGTTCGGAAACCTGTCACAGCCAAGCAGCTCCTTGATTGTGGTGTCCTGGACAAGCCAACATTTAAAGATCTAGAAAAGGGGAAGAAAAATGTCCCAGAGGTGTCTGTAGACAAACATGTTAATCTGAAGGGGACTGGACCCATTGCTGGGGTGGTAGTCGGACGTGAAGGAAAAATGTCTTTCTCAGAAGCCAAGAAACGGATGCTCTTGCCCCCAGATAGTGCAGATTTGCTACTGGAAGCCCAGGCTGCCACAGGTCACATCATTGACCCCAGAAACAATCAGAAGCTGACAGTAGATGAGGCATGTGACAGAGGAGTGGTGGATATTAAGGATCGAGACAGATTATTGGAAGCTGAAGCTGCTGCTGTGGGATACAAGGATTTTAGTGCAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGAACTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTTCCCAAAAATACAGCTATTAAGCGCAACCTTTTGGATGAAAACCTCCGTCAAGCTCTAAACCAGAGTCCTGAGTGTTACTGTGACCCAGAAACTGAGCGTGATGCCAGCTATGGAGCATTGAAGAAAAGATGCAAGACAGAGCCTCACACAGGTCTGCTACTTTTGCCAATCACTGAGAAGCTAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGCTTGATTGTGGGGTCCTGGACAAACCAACATTTAACCAACTAATGAAGGGAGAGAAAACTGTCCCACAGGTGTCTGTGGATAAGAAGGTCTTTCTAAAGGGGACAGGATCGATTTCTGGCGTGGCAGCTGGACCTTTAGGGAAAATGTCTTTCTCAGAGGCCAAAAAACAGATGCTCATGCCTGCGGAAAGTGCCGATTTGCTACTGGATGCTCAGGCTGCCACAGGACACATCATTGACCCCACAACCAATCAGAAGCTAACAGTAGAGGAGGCATGTGCCAGAAGAGTGGTGGAAAATAGGGATCGAGATAGACTCCTGGCAGCAGAAGCCGCTGCTGTGGGTTACCGGGACCCAAGCACAGCTAAGCCTCTTTCAGTGTTTGAGGCAATGAAAAAGGGATTAATTGACAGGAAGACTGGGCTACGGCTGCTGCAGGCCCAGGAGTCTGCCGGGGGCATTCTAGATCCCAATCTCAGTGTTTTCCTCCCCAAAGACACAGCTATAAAGCGCAACCTTTTGGATGAGGACCTCCGTCAAGCTCTAAACCAGAGTCCTGGGTGCTACATTGACCCAGACACTGAACGTGATACCAGCTATGGGGCTTTAAAGAAGAGAAGCAAAACAGAGTCTCACACAGGCCTGATACTTCTGCCAATCAATGAGAGGAAAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGTTTGAATGTGGAGTCCTTGACAAGCCAACATTTGACCAATTAGTGAAAGGCGAGAAAACTGTCCCAGCAGTGTCTACGGAAAAGACAGTCTATCTAAAGGGGACTGGACCCATTGCTGGGGTAGTAGTCGGACGTGAAGGAAAAATGTCTTTCTCAGAAGCCAAGAAACGGATGCTCTTGCCCCCAGATAGTGCAGATTTGCTACTAGAAGCCCAGGCTGCCACAGGCCACATCCTTGACCCTGAAGCTAATCAGAAGCTGACAGTAGAGGACGCATGTGCCAAAGGAGTAGTGGACATTAGGGATCGAGACAGATTATTGGCAGCAGAGGCTGCTGCTGTTGGCTTCAAGGATCCTAGCGGAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGGACTCATTGAAAGGAAGACTGGGCTACGCCTGCTGCAGGCTCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTCCCCAAAGACACAGCTGTAAAGCGCAACCTTTTGGATGAGGAACTTTGTCATGCTCTAAACCAGAGTCCTGAGTGTTACGTTGATCCAGACACCGAGCGTGATACCAGCTATGTGACTTTAAAGAGGAGAAGTAAAACTGAGTCTCACACAGGCCTCATACTTCTTCCAATCCCTGAGAAGGTAGACCCCTCCAAACTTGTCTTTGATGGTGTTCGGAAACCTGTCACAGCCAAGCAGCTCCTTGATTGTGGTGTCCTGGACAAGCCAACATTTAAAGATCTAGAAAAGGGGAAGAAAAATGTCCCAGAGGTGTCTGTAGACAAAAATGTTAATCTGAAGGGAACTGGGCCTATTGCTGGGGTTGTAGCTGGGAGTCAAGGCAAGATGTCTTTGTCAGAAGCCAAGAAAAAGGCACTCCTACCTGAAGATATTGCAGATTTGCTACTGGAAGCCCAGGCTGCCACAGGTCACATCATCGACCCCAAAAACAATCAGAAGCTGACAGTAGATGAGGCATGTGCCAGAGGAGTGGTGGATATTAAGGATCGAGACAGATTATTGGAAGCTGAAGCTGCTGCTGTGGGATACAAGGATTTTAGTGCAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGAACTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTTCCCAAAGATACAGCTATTAAGCGCAACCTTTTGGATGAAAACCTCCGTCAAGCTCTAAACCAGAGTCCTGAGTGTTATCGTGACCCAGAAACTGAGCGTGATGCCAGCTATGGGGCATTGAAGAAAAGATGCAAGACAGAGCCTCACACAGGTCTGCTACTTTTGCCAATCACTGAGAAGCTAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGCTTGATTGTGGGGTCCTGGACAAACCAACATTTAACCAACTAATGAAGGGAGAGAAAACTGTCCCACAGGTGTCTGTGGATAAGAAGGTCTTTCTAAAGGGGACAGGATCGATTTCTGGCGTGGCAGCTGGACCTTTAGGGAAAATGTCTTTATCAGAGGCCAAGAAACAGATGCTCATGCCTGCGGAAAGTGCCGATTTGCTACTGGATGCTCAGGCTGCCACAGGACACATCATTGACCCCACAACCAATCAGAAGCTAACAGTAGAGGAGGCATGTGCCAAAAGAGTGGTGGAAAATAGGGATCGAGATAGACTACTGGCAGCAGAAGCCGCTGCTGTGGGTTACCGGGACCCAAGCACAGCTAAGCCTCTTTCAGTGTTTGAGGCAATGAAAAAGGGATTAATTGACAGGAAGACTGGGCTACGGCTGCTGCAGGCCCAGGAGTCTGCCGGGGGCATTCTAGATCCCAATCTCAGTGTTTTCCTCCCCAAAGACACAGCTATAAAGCGCAACCTTTTGGATGAGGACCTCCGTCAAGCTCTAAACCAGAGTCCTGGGTGCTACATTGACCCAGACACTGAACGTGATACCAGCTATGGGGCTTTAAAGAAGAGAAGCAAAACAGAGTCTCACACAGGCCTGATACTTCTGCCAATCAATGAGAGGAAAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGTTTGAATGTGGAGTCCTTGACAAGCCAACATTTGACCAATTAGTGAAAGGCGAGAAAACTGTCCCAGCAGTGTCTACGGAAAAGACAGTCTATCTAAAGGGGACTGGACCCATTGCTGGGGTAGTAGTCGGACGTGAAGGAAAAATGTCTTTCTCAGAAGCCAAGAAACGGATGCTCTTGCCCCCGGATAGTGTAGATTTGCTACTAGAAGCCCAGGCTGCCACAGGCCACATCGTTGACCCTGAAGCTAATCAGAAGCTGACAGTAGAGGACGCATGTGCCAGAGGAGTAGTGGACATTAGGGATCGAGACAGATTATTGGCAGCAGAGGCTGCTGCTGTTGGCTTCAAGGATCCTAGCGGAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGGACTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCTCAGGAGTCTATGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTCCCCAAAGACACAGCTGTAAAGCGCAACCTTTTGGATGAGGAACTTTGTCATGCTCTAAACCAGAGTCCTGAGTGTTACATTGACCCAGACACCGAGCGTGATACCAGCTATGGGACTTTAAAGAGGAGAAGTAAAACTGAATCTCACACAGGCCTCATACTTCTGCCAATCACTGAGAAGAAAGACCCCTCCAAACTGATGTTTGATGGAATCCGCAAGCCAGTCTCAGCACAGCAGTTGTTTGAATGTGGAGTCCTTGACAAGCCAACATTTGAAGATCTAGAAAAGGGGAAGAAAAATGTCCCAGAGGTGTCTGTAGACAAAAATGTTAATCTGAAGGGAACTGGGCCTATTGCTGGGGTCGTAGCTGGGAGTCAAGGCAAAATGTCTTTGTCAGAAGCCAAGAAAAAGGCACTCCTGCCTGAAGATATTGCAGATTTGCTACTGGAAGCCCAGGCTGCCACAGGTCACATCATTGACCCCAGAAACAATCAGAAGCTGACAGTAGATGAGGCATGTGCCAGAGGAGTGGTGGATATTAAGGATCGAGACAGATTATTGGAAGCTGAAGCTGCTGCTGTGGGATACAAGGATCCTAGCGGAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGAACTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTTCCCAAAGATACAGCTATTAAGCGCAACCTTTTGGATGAAAACCTCCGTCAAGCTCTAAACCAGAGTCCTGAGTGTTACCGTGACCCAGAAACTGAGCGTGATGCCAGCTATGGGGCATTGAAGAAAAGATGCAAGACAGAGCCTCACACAGGTCTGCTACTTTTGCCAATCACTGAGAAGCTAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGCTTGATTGTGGGGTCCTGGACAAACCAACATTTAACCAACTAATGAAGGGAGAGAAAACTGTCCCACAGGTGTCTGTGGATAAGAAGGTCTTTCTAAAGGGGACAGGATTGATTTCTGGCGTGGCAGCTGGACCTTTAGGGAAAATGTCTTTATCAGAGGCCAAGAAACAGATGCTCATGCCTGCGGAAAGTGCCGATTTGCTACTGGATGCTCAGGCTGCCACAGGACACATCATTGACCCTACAACCAATCAGAAGCTAACAGTAGAGGAGGCATGTGCCAGAAGAGTGGTGGAAAATAGGGATCGAGATAGACTCCTGGCAGCAGAAGCCGCTGCTGTGGGTTACCGGGACCCAAGCACAGCTAAGCCTCTTTCAGTGTTTGAGGCAATGAAAAAGGGATTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGCCGGGGGCATTCTAGATCCCAATCTCAGTGTTTTCCTCCCCAAAGACACGGCTATAAAGCGTAACCTTTTGGATGAGGACCTCCGTCAAGCTCTAAACCAGAGTCCTGGGTGCTACATTGACCCAGACACTGAGCGTGATACCAGCTATGGGGCTTTAAAGAAGAGAAGCAAAACAGAGTCTCACACAGGCCTGATACTTCTGCCAATCACTGAGAAGGAAGACCCTTCCAATCTGATGTTTGATGGAATCCGTAAGCCAGTCTCAGCACAGCAGCTGTTTGAATGTGGAGTCCTTGACAAGCCAACATTTAAAGATCTAGAAAAGGGGAAGAAAAATGTCCCAGAGGTGTCTGTAGACAAAAATGTTAATCTGAAGGGAACTGGGCCTATTGCTGGGATCGTAGCTGGGAGTCAAGGCAAAATGTCTTTGTCAGAAGCCAAGAAAAAGGCACTCCTGCCTGAAGATATTGCAGATTTGCTACTGGAAGCCCAGGCTGCCACAGGTCACATCATTGACCCCAGAAACAATCAGAAGCTGACAGTAGATGAGGCATGTGCCAGAGGAGTGGTGGATATTAAGGATCGAGACAGATTATTGGAAGCTGAAGCTGCTGCTGTGGGATACAAGGATCCTAGCGGAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAGAAGGAACTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTTCCCAAAGATACAGCTATTAAGCGCAACCTTTTGGATGAAAACCTCCGTCAAGCTCTAAACCAGAGTCCTGAGTGTTATCGTGACCCAGAAACTGAGCGTGATGCCAGCTATGGGGCATTGAAGAAAAGATGCAAGACAGAGCCTCACACAGGTCTGCTACTTTTGCCAATCACTGAGAAGCTAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGCTTGATTGTGGGGTCCTGGACAAACCAACATTTAACCAACTAATGAAGGGAGAGAAAACTGTCCCACAGGTGTCTGTGGATAAGAAGGTCTTTCTAAAGGGGACAGGATTGATTTCTGGCGTGGCAGCTGGACCTTTAGGGAAAATGTCTTTATCAGAGGCCAAGAAACAGATGCTCATGCCTGCGGAAAGTGCCGATTTGCTACTGGATGCTCAGGCTGCCACAGGACACATCATTGATCCCACAACCAATCAGAAGCTAACAGTAGAGGAGGCATGTGCCAGAAGAATGGTGGAAAATAGGGATCGAGATAGACTCCTGGCAGCAGAAGCCGCTGCTGTGGGTTACCGGGACCCAAGCACAGCTAAGCCTCTTTCAGTGTTTGAGGCAATGAAAAAGGGATTAATTGACAGGAAGACTGGGCTACGCCTGCTGCAGGCCCAGGAGTCTGCCGGGGGCATTCTAGATCCCAATCTCAGTGTTTTCCTCCCCAAAGACACGGCTATAAAGCGCAACCTTTTGGATGAGGACCTCCGTCAAGCTCTAAACCAGAGTCCTGGGTGCTACATTGACCCAGACACTGAACGTGATACCAGCTATGGGGCTTTAAAGAAGAGAAGCAAAACAGAGTCTCACACAGGCCTGATACTTCTGCCAATCAATGAGAGGAAAGACCCTTCCAAACTGATCTTTGATGGTGTTCGTAAGCCAGTAACAGCACAGCAGTTGTTTGAATGTGGAGTCCTTGACAAGCCAACATTTGACCAACTAATGAAGGGAGAGAAAACTGTCCCACAGGTGTCTGTGGATAAGAAGGTCTTTCTAAAGGGGACAGGATCAATTTCTGGCGTGGCAGCTGGACCTTTAGGGAAAATGTCTTTATCAGAGGCCAAGAAACAGATGCTCATGCCTGCGGAAAGTGCCGATTTGCTACTGGATGCTCAGGCTGCCACAGGACACATCATTGACCCCACAACCAATCAGAAGCTAACAATAGAGGAGGCATGTGCCAGAGGAGTAGTGGACATTAGGGATCGAGACAGATTATTGGCAGCAGAGGCTGCTGCTGTTGGCTTTAAGGATCCTAGCGGAGCCAAGCCTCTCTCAGTGTTTGAGGCCATGAAAAAGGGACTAATTGACAGGAAGACTGGGCTACGCTTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTCTAGATCCCAATCTCAGTGTGTTCCTCCCCAAAGACACAGCTGTAAAGCGCAACCTTTTGGATGAGGAACTTTGTCATGCTCTAAACCAGAGTCCTGAGTGTTACATTGACCCAGACACCGAGCGTGATACCAGCTATGTGACTTTAAAGAAAAGAGGTAAAACTGAGTCTCAAACAGGCCTGATACTTCTGCCAATCACTGAGAAGAAAGACCCTTCCAGACTGATGTTTGATGGAATCCGCAAGCCAGTCTCAGCACTGCAGTTGTTTGAATGCGGAGTGCTTGATAAGCCAACACTTAATCAGCTAGTGAAAGGGGAGAAAACTGTCCCAGCCGTGTCTATGGAAAAGATGGTATATCTACAGGGGACTGGACCCATTGCTGGGGTGGTAGCTGGACGTGAAGGAAAAATGTCTTTCTCAGAAGCCAAGAAACAGATGCTCCTGCCCTCAAATAGCGCATATTTGCTACTAGAAGCCCAGGCTGCCACAGGCTACATCATTGACCCTAAAACTAATCAGAAGCTGACCGTAGAGGAGGCATGTGCCAGAGGAGTGGTGGACATTAGGGATCGAGACAGATTGTTGGTAGCAGAGGCTGCTGCTGTTGGCTTTAAGGATCCTCGCGGAGCCAAGCCTCTGTCAGTGTTTGAGGCCATGAAAAAGGGACTAATCGACAGGAAGACTGTGCTACGCCTGCTGCAGGCCCAGGAGTCTGTGGGAGGTATTGTAGATCCCAATCTTAGCGTGTTCCTCCCCAAAGATACAGCTATAAAGCGCAACCTTTTGGATGAGGACCTCCGTCAAGCTCTTAACCAGGGTCCTGAGTGTTACGTTGACCCAGAAACTGAAAATGATGCCAGCTATGGGGCTTTGCAGGAAAGATGCAAGACAGAGCCTCAAGCAAGCCTGAAACTTTTGCCAGTCTCTGAGAAGAAAGACCCTTCCAAACTACTCTTTGATGGTGTCCGTAAGACTGTCACAGCACAACAGTTGCTTGATTGTGGGGTCCTGGACAAACCAACATTTAACAAACTAATGAAGGGAGAGAAAACGGTCCCAGATGTGTCCGTGGATAAAAAGGTCTTTCTGAAGGGGACAGGGTCAATTGCTGGTGTTGCAGCTGGACCTTTAGGGAAAATGTCTTTTACAGAAGCCAAGAAACAGAAAATTATGTCCTCGGACAGCGCTGACATGCTACTGGAAGCTCAGGCAGCCACTGGCAACATCATTGACCCCAGAACTAATGAGAGATTGACTGTAAAGGCAGCATGTGCCAAAGGAGTAGTGGATAAGGAGGATGAATCAAAGTTGTTCGCAGCTGAAGCTGCTGCTATAGGTTACAGAGACCCAAATACAGGCAAGCTCCTGTCGGCAGGCCAGGCCATGAAGAAGGGATTGATTGACAAGGACACAGCTCTACGTATACTTCAGGCTCAAGAGTCTGTAGGGGGTATTTTAGACCCTGCCCTCAGTGTATTCCTACCCAAAGACATTGCAAAGGATAGGGATCTCATAGATGAGGACCTATACCGGGGCCTGAATCAATATCCTGAGTGTTATTTGGACCCAGACACCCAACAAGCAACTACCTATGTATCTCTGAAGAAAAAATGCAAAGCAGATCCAAAAACAGGTCTTTTGCTTCTCCCTGAACCTAAAAAGCCAATAACTGTACAGGGGCTCAGGGGTCAGGTGCCAGTCAGAGATCTAGTGGATGCAAACCTATTAGACCGGTCAGATATGGACCAACTGAGAGAGGGCAGATTGACGAGCCAGGACATTGAAGACCGCCTGCACTCCTACCTGAGAGGTTCCACCTGCATAGCAGGAGTTTATGATGAGGCCAGTGATAAGGTGATGCCCATCTATCAGGCCATGAAAGATGGACTGCTGCAATCTGGGACCACACTGGAACTGCTTGAGGCCCAGGCTGCCTCAGGTTTTATAGTTGATCCTGTCAACAACCATTACCTGACAGTTAGTGATGCTTACAATAAAAGACTGTTTGGGCCAGAGTTTAAGGACCATCTGCTATCAGCAGAGAGGGCTGTGACTGGTTACAAACTGCCTGGTACAGACAAGATTATTTCCCTCTTTCAGGCCATAGAGAGAGGTCTAGTGGAGAAAGGTCATGGCATCCGTCTACTCGAGGCTCAGATTGCCAGCGGTGGTATCATTGATCCTGAACACAGCCATCGGATTGACGTGAACGTAGCCTACAAGAGAGGTTACTTTGATGAAGAAATGAACAAGGCCCTGACTGATCAGAATGTTGATACCAAGGGTTTCTTTGACCCCAACACAGAGGAAACCCTAGCTTATCTGGAGCTTAAGAATCGCTGTATCACAGATAAGAAGACTGGCCTCATCCTGTTGCCTATCACTGACAAGAAAAGTCAAGAATCGACTTCGAAGAACACTCTGAGAAAGAGGAGAGTGGTAATTGTAGACCCGGAGACTAATAAAGAGATGACAGTACGTGTAGCATATGACAAGGGGTATATTGACTACGACACCTTTGTGGAGCTGTCCGAGCAGGAGTGTGAGTGGGAAGAGATCACTATCACTGCTCCAGATGGTTCCATCCGCTTTGTTATCATTGACAGGAAGACTGGAAGACAGTATGACATTAGCGAGCTGCTTGAAATGCGAGTAATCAACCAATCAGATGTAGATAATTACCGATCACGTACCATCACCCTTACTCAATTTGCAGATATCATCAGCAACAAGACCAAATATGGGTCATCCTCATTATCATCATCATCATCAGCTTCAAGATCATCAGCAGCCGGAGGTACATCTTCAGTGACATCATCATCAACTTCAAGAACATCAGCATCCCCGGGTACATCTTCAGTGATATCATCATCAACTTCAAGAACATCAGCATCACCGGGTACATCTTCAGTGACATCTTCATCAACTTTAAGAACATCAGCAGCCTCAGTTCCATCGTCAGTGACATCATCATTGTCATCATCAGTCCTGTCAAGACCCTTATCATCTTCTCTCTCAAAGATGACCACAACAAGAACTTCCACTGTCACAGAGCGAAGCACCTCAACCTGCAGTGTACCTCGAGACTCAACTGACTCCCGTAGGAATATATCCAGCATATCTGTCACTCTGTCCTCTCCTATTGAAGTAATAGATGAACAGGAACCTGTGGGTGCCGTCTTTGACACAGACTGTATCGAGAAGATATCCATCACAGAGGCTCTAGATCGTGGTCTGGTGGATTCCATCACTGCCCAGAGACTGCTGGAGGCTCAGGCTTGCACTGGAGGAATAATCAATCCCACAAATGGCCATAGGCTCAGCATCCATGAGGCCACCCGCCTGGGCATAATAAGTGACAACATGGGCCCAAAGCTCAAGCCTGCCCAGAAAGCCTTCTTTGGCTTTGAGGATGTAAAAAACAAGAAGAAGTTATCTGTTCCTCAGGCCATGAAGGAGAGGTGGCTGCCATATGAGGCAGGGCAGAGGTTCCTAGAGTTCCAGTATGTAACAGGAGGGATTTATGACCCAGAAATGTGCTGTAGAAGAACCATAGATGAGGCTGTGGAAATGAAGTGGCTGGATTCGAGAGACGCCGAGAGGCTCCAAAACGTCAGAGACCACACAAAGAACCTGACGTGCCCCAAGAGCAAACTTAGGATCTCTTACAAGCAGGCTCTGGATAATTGTCTGGTGGAGGAAAGCAATGGGTTGAAAATGCTCCAGGCATCATCTGTGTCTTCCAGAGGGATCAGCAGTCCTTACAATGTCTCCTCTGCCCCAGGGTCCACCACCGGCTCCAGGAGTGGCTCACGACGAAGCTCCCGCAGGAGCAGTGTGGACCTTGGATCCCCCTCCTCCTCAGGAACTTATCACCACAGTGTTTCTAGCTTCACCACCTACTCTGCATCCTCCAAATAAATCAAGAAAATGATCTGCACATTCATGCTCTTTTCTTGCAAATGATTCCTTTTGTTAAAAATATACCGATTGTTCAGAAAATAACTTGTGTGTGTCGTATATGAGGAGAAAAAAAAAATTAAGATAATGTTCTTAAACTTTTTGCATAGTTTTAGATTTCTGCTTTGGTGTTGCTATGCTTTTAAAATGCTATAGTTCAAATGTTCGAGAAAATTAACACTTCCAAGATATTTTTTGTGGAAATGAACTAAAGTATTAATGGCAGCCATCTTATGGTATTTGGAATGAAAATAATGAGGATGTTAATATAATTTTTGGTGCCCCTAAAATAGGCTTAGAAATGATTACCATATTTTTGCATACAAAAAATAAGTTTTTCAAAATCTTCATGAAATGTAATTTCTTTTTAAGCTTTGCATTGGTCACATAAGGGTGCTATGTTTACATTTATTTGTCATCTGAAATACATGTTTTGTGAGGGGAGGGATACAAGGTTTGGTTACATATATTGGTTTAACTATTTGTTTTCTACTGAATCAGTTGTTAACTGTTGTTCTTTTGCTCTTTAGTGCTTCCGGTTTTGTAACAGTTTCTCAATATCTCCAAATAAAAGCGGTTGAGTCTTTAGCTCA +>KJ343209.1 Uncultured bacterium clone Evans.12.9_01824 16S ribosomal RNA gene, partial sequence +TACGTAGGTGGCAAGCGTTATCCGGATTTATTGGGCGTAAAGAGAACGCAGGCGGTCTTTTAAGTCTGATGTGAAAGCCTTCGGCTTAACCGGAGTAGTGCATTGGAAACTGGGAGACTTGAGTGCAGAAGAGGAGAGTGGAACTCCATGTGTAGCGGTGAAATGCGTAGATATAAGGAAGAACACCAGTGGCGAAAGCGGCTCTCTGGTCTGTAACTGACGCTGAGGTTCGAAAGCGTGGGTAGCAAACAGG +>XM_018460662.1 PREDICTED: Trachymyrmex zeteki zinc finger protein 830 (LOC108730757), mRNA +GTTGCGTTCAGAATCATCATCCGAGTGTGCACCAAGATGTTGTTTTATCCTTATGTAAGGTAGATAACAAGGGTAAAACGACATCTGAGTGCATCTGGACGACAATTCTGAACACTGCCCAGCACTGCACTGTAGCCAATAGCTTCGATGGTACGAAGCACGGAGCATAGAAGCGCGATCAAAACATAAGTAACTGAACATAACCTACAAATCATTCGTTGTACGTAGTGATTTAACGAGTGAAAATTGGTGAAAATGTCCTTAAAAAGGAAACTGACGCAGGACGATCTGCGTAAAGCAATGAGTGAACACAAGAAGAAGTTCGGAACCATTAAAAAGATCGACTCACCGTTGGCAAAATATACAGATTCAGGACAGCTTATGTGCATTTTATGTAAGTCAGTGGTACGGAGTGAAACAATTTGGCCTGTTCATTTAAATTCCAAGGTGCACAAGGATAATGTTGCGTTAGCGAAAAAGACTAAACTAGAAACAGAAAGTACTATAAATGTATCTAATGTTCAAACATTCAAAAGGCCTCCGTCTCCATCAAACAATTCCCCAAATAAAAAGATAAAAGGAATATTGAAAAACTCTAGCCAGCCAGTGGTACAGGTCAAGTCAAATTTACCAGCAGATTTTTTTGATGATAATTCAGAGCAAGTTAACAATCCGTCTGTTCTAACGCAAAAATTAGAGAGCAAAGAGAAAGATCCCATAGTCAATACTACAGATGTACAACATGCCAAAGAAGAAGAAAAAGAGAAAGAAAAAGAAAAAGTAAAGGATATGAATCAAGCTGTTCTTCCAGAAGGATTTTTTGATGACCCAGTGATGGATGCTAAGGTTCGTAATGTTGAATACAAAGATCCTATTGAAGAAGAATGGGAGAAATTTCAAAAAGAAATTAAGGAAGAAACTGCGCAATCTGCACAAATTATAGCTGACGATCAGGAGGAAGCAACAACGGAAAGACAATTAGATGAAATTGAGGAACAAATTAGGCATTGGTCTAGGGTAATGGATCTCGCAAAACGTATGGAACAAGTGCAGGGTACCGATAGAAAACAGGAAAATATCGATAATGATGTATCAAGTGGTGACGAAGCCGAGTTCGACGAGTTTCTTGACTGGCGAGCAAAGAATTCGTATAAATGAAAGATTTTATATATCTAACAATTTTGTAA +>XM_003538860.4 PREDICTED: Glycine max probable serine/threonine-protein kinase PIX13 (LOC100777578), mRNA +CGAAAACGACCCATGTTATGTAGCTAGCACTTGTGTTGTGTCTTTTCTCATTCCTCATCCTCAACCTTACGCAGCAGCCATTCTTGTAGAATTCATTTTCTCGAAATTGGTTAATTAAGTTAATTAACACTAAACACTAAACATGGGTCTTTGCTTTGCTTCCCTCGCTACCCACCAAACACCCTCCAATAATTCCCCTCACTATTCAGGTTCAGCGCGTGAGATGGGAATTACTGAAAGCACTAGTGTTAATGGAGGAAGCAGTAGCATTAATAGCAATAACATGGTGTTTCCGAGTGTGGAAACGCGGAACTTGAAGCAGTTCAATTTCGCGGATCTGAAAGCAGCAACCAAGAGTTTCAAGTCGGATGCATTGCTTGGTGAAGGAGGTTTTGGCAAAGTTTACAAAGGATGGTTGCATGAGAAGACACTGACACCCACCAAAGCTGGATCTGGAATGGTGGTTGCTGTTAAGAAGTTGAACTCAGAAAGTTTGCAGGGCTTTCGTGAGTGGCAGTCAGAAATCAATTTCTTAGGAAGGATTTCTCACCCAAACCTGGTCAAGCTATTGGGTTACTGTTGTGACGATATCGAATTTCTCCTTGTGTACGAGTTCATGCCAAAGGGAAGCTTGGAGAATCATCTCTTTAGAAGAAATACTAACAGTGAACCACTCTCTTGGGACACCCGAATCAAAATAGCTATTGGTGCTGCACGGGGCTTGGCTTTCTTACACACCTCAGAAAAGCAAATCATATACAGAGATTTCAAAGCCTCCAATATACTACTTGATGAGGATTATAATGCAAAAATTTCAGATTTTGGCTTGGCAAAATTAGGCCCTTCTGGGGAAGATTCACACGTGAGTACCAGGATCATGGGAACATATGGCTATGCTGCTCCAGAATACATTGCAACAGGTCACCTTTATGTAAAGAGTGATGTTTATGGTTTTGGTGTAGTGCTGCTTGAAATGCTGACAGGGTTAAGGGCACTTGACAAAAACCGCCCCATAGAGCAGCAGAATCTGATTGAATGGGCTAAGCCTTCTCTCTCTGATAAAAGAAAGTTGAAAAGCATCATGGATGAGAGGATAGAGGGTCAGTATTCAACCAAGGCAGCATTAAAATCAGCACATCTTATTCTAAAATGCCTTCAATGTGACCGTAAGAAACGTCCTCACATGAAAGATGTTCTTGACACATTGGAACACATCGAAGCTATCAAGGACAGAACGAAGTAATCCAAGAAACATTGTACTAAGTTTGCAACTATGTGCAATTTCCAATAGCCAATTTATCATCCTTATGTGTTGAATATGACAAGGAGCTCCAACATGTGTAGGCTGTAGCTAGCATACTAGTCACAGTTCAAGTTCAGTGTAACTACTAACTAACTTGGCTTACAGTTATTATAGGTAGTTAGACCTGTTACTGCATGAGTGTGTTTGTGGCTGTATTTGAGTAGTCGTACCTCTCTCATTCTAGCTTTGTTCCCTTGTCAATAAAAATGTGTAGCTCCTACTTGTATCATCATCTTTTCATTTAATTCAATAAAATGAGTTACTTGAA +>XM_039254146.1 PREDICTED: Hyaena hyaena mitogen-activated protein kinase 15 (MAPK15), transcript variant X3, mRNA +GTGCTGCGGGCGTCTGGAGGCCCCCGGGCGCCCACTCGCCGGCATGTGCGCTGCAGACGTGGACCATCACGTAGCCCAGCGATACTTGCTCAAGCGGCGGCTGGGGAAGGGGGCCTACGGCATTGTGTGGAAGGCAGTGGATAGGAGGACCGGCGAGGTCGTGGCCATCAAGAAAATCTTCGATGCCTTTAGGGATAAGACGGACGCCCAGAGAACCTTCCGGGAGATCATGTTGCTCCAGGAACTTGGGGACCATCCCAACATCATCCGCCTCCTGGAGGTGATCCGGGCGGAGAACGACAGGGACATTTACCTGGTGTTTGAGTCTATGGACACTGACCTGAACGCCGTCATCCGTAAGGGCAGGCTGCTGAAGGACATCCACAAGCGCTTCATCATCTACCAGCTCCTGCGGGCCACCAAGTTCATCCACTCGGGAGGCGTCATCCATCGGGACCAGAAGCCGTCCAACATTCTCCTGGATGCCAGCTGCTTGGTGAAGCTCTGTGACTTTGGTCTCGCCCGCTCCCTCGGCGGCATCCCTGAGGGGCCTGAGGGCCCGGCCCTGACAGATTACGTGGCCACACGCTGGTACCGGGCTCCAGAGGTGCTGCTGTCCTCGAGCTGGTACACCCCTGGGGTGGACATGTGGAGTCTGGGCTGCGTCCTGGGGGAAATGCTTCGGGGGAGGCCCCTGTTCCCGGGCACATCCACACTGCACCAGCTGGAGCTGATCCTGGACACCATCCCGCCTCCATCCAAGGAGGACCTCCTGGCTCTTGGCTCAAGCTACAGCGCCTCAGTCCTGCCCCGCCCGGGGCCCCGGCCACGGCAGACGCTGGACGCCCTCCTGCCGCCAGACACCCCCCCGGAGGCCCTGGATCTCCTCAAGGGACTCCTGGTATTTGCCCCGGACAAGCGGCTTAGCGCCGCGCAGGCGCTGCAGCACCCCTACGTGCAGAGGTTCCACTGCCCCGCCCGCGAGTGGACAATGGATTCGGCCGTGCGGATCCCGGTGCTGGAAGGAGCTCAGCTCTCAGCCCCTGAGTACCGCAGCCGCGTCTATCAGGTGAAGTCCAGCGTGAAGGGGGCGGCGCCCTCCCTGGCCTCGCAGGCTGCCGCCCTGGGGGCCGTCCAGGCCCTGATCCGGAGCGACTGGAACCCGGGCCGTGGGGCGACGGCGGCCGGAACGCGACAGGTCCCTCGCGGGCTTCCGGCGGATGCCCGGCCCGAGCCCCGGCCCGGCCGGCGGATGTTCGGCGCCCCGGCCTGGCAGGGGGCCCAGGGCGCCGCGAGGGCCGCGCTGGGGGGCTATTCTCAAGCTTACGGAACCATCTGCCATTCGGCGCTCGGCCGCCTGCCCCTGCTCCCCGGGCCCCGCGCGTGAGCCGCCCGCCAGCCTCCAGTCCGGCTCCTGTACTCAGCCCGCGCCCCTCGCCCAGCTCTGGATTC +>XM_016250992.1 PREDICTED: Sinocyclocheilus grahami solute carrier family 7 member 2 (slc7a2), transcript variant X3, mRNA +GGTTGAATAGGAAAATTAGCATTGCCTCCCTCTGTGTGAAGTGTCTCTCCTCCTCTTTGGCCAGACCAGCCCTCCTCGTGGGGGGCAGGGCAAGTTAAAGCAAACCAGAACAGAGTAAAGTAGGCAGTAAAACTAATGCGGTTGTGGGCTGACATGTCATTTGAGCTTGAGGAAGGAAGGGGCAAACTTTGGAAGGACTGAGCCTGTGAGCTTTTTAAAGAAATCAGTGGAGATCCCTGAGAGGTGTGTGTGTGTGTGTGTGTGTGTTTGCATGAAACCGTAAGACATTACGTCCATAAGGCAATTCTACAGCTGCCAGTCTCTCATCAGGTGTTTGTGGTAACAGGAAGAATGCTGGAACATTGCCTCGCATTTGGTCGCTCCCTTGTGAGGAGGAAGAATGTGGACCAGGACTGTCTGGAAGAGTCCAAGCTGTGCCGCTGCCTCTCCACTGTTGATCTGATTGCCCTCGGGGTGGGAAGTACACTTGGGGCTGGTGTCTATGTGCTCGCTGGGGAGGTGGCCAAAGGCAGTTCTGGCCCCAGCATTGTGGTGTCCTTCCTCATCGCTGCTCTGGCATCTGTGATGGCTGGCCTGTGTTATGCCGAGTTTGGTGCACGGGTACCCAAGACGGGCTCAGCCTATCTGTACAGCTATGTGACCGTGGGGGAGCTCTGGGCCTTCATCACAGGGTGGAACCTAATTCTGTCATACGTCATAGGGACGTCTAGTGTGGCGCGTGCCTGGAGTGGGACGTTTGATGAGCTTATAGGGGGCCACATTGAAAAGTTCTGCAAAATGTACTTCAAAATGAGTTTGCCTGGCCTAGCAGAGTACCCTGATTTTTTTGCTGTCTGCCTGATCTTACTACTGGCAGGCCTTCTCTCCTTTGGGGTGAAAGAATCAGCTTGGGTCAACAAAATCTTCACAGCTGTAAACGTGCTTGTGCTGATGTTTGTTATCATCTCTGGGTTCGTCAAAGGAGACTCGCTCAATTGGAATATATCTGAGGAATCTCTCATAAACGTTACCATTTGCAAAAGGAATCTCTCACACACTGCTAATGTCACTAGTGATTACGGAGCAGGGGGATTTTTGCCTTATGGCTTTAGTGGGACACTGGCTGGTGCCGCCACCTGCTTTTATGCCTTTGTGGGATTTGACTGCATTGCAACCACAGGTGAGGAGGTGAAAAATCCCCAGAGGGCCATTCCCATTGGGATAGTTATTTCCCTGCTGGTCTGCTTTCTCGCCTACTTTGGTGTTTCAGCGGCCCTCACCCTCATGATGCCCTACTACCTGCTGGATGAGAGGAGTCCCCTGCCTTTGGCTTTTGAATATGTGGGCTGGGGGCCTGCGAAATATGTTGTAGCAGCAGGATCGCTCTGTGCTTTATCAACCAGCCTGTTGGGTTCTATGTTCCCTCTTCCACGCATTCTGTTTGCCATGGCACGAGATGGCGTGCTATTCAGATTTCTTTCCAAAGTGAGTAAGCGTCAGTCGCCAGTGGCTGCCACTATGGCAGCGGGCACTACTGCGGCTATCATGGCTTTCCTGTTTGACTTGAAAGCGCTGGTGGACATGATGTCTATTGGAACCTTGCTGGCATACTCTTTGGTGGCTGCTTGTGTTCTAATCCTTAGGTATCAGCCGGATGCTGCGTTTGAGAGGTCTAGGATCAATGAAGGCAAGGAAGAGGTTGGTGAGTCTGAACTGACGGAGTCTGAGTCTCACCTGAACATGCTGAAGGATGGAAGAGTAACCCTGCGCTCTCTGCTCAACCCTCCACTGCTGCCCACTGAACAGACCTCCACTGCCGTCAACATGTCTGTTATAATCATGGTGTTTGCTGTGTGTGTTATTGGCGCACTCAACACATATTACGGACAGGCCATTATTGCTATGGAGCCTTGGGCCCTGGGGGTCTTAGGTGCATCTTTGTTCATCTTCATCATGTGCATCCTTCTGGTTTGCAGACAACCTCAGACGAGGAAGAAAGTTTCCTTCATGGTTCCTCTGTTGCCCTTTCTACCCATCTTGAGTATATTTGTCAACGTGTATCTCATGGTTCAGCTCAGCGGCGACACGTGGATCCGTTTCTCCATCTGGATGGCTATAGGATTCTTCATCTATTTTGGATATGGAATGTGGCATAGTGATGAACGTAAGAGACATCTACAGAACTGTGGTGTTGCGATGGAGAAAAAGACACTGACAGGAAATGAAGGCACTGTGGAATATGTGACGCACATAGAGAAGACTAGCCCATGTTAAAGAACAGCAGATAAAACTA +>CU677742.1 Synthetic construct Homo sapiens gateway clone IMAGE:100017471 3' read PBXIP1 mRNA +GTACAAGAAAGTTGGGCAGCCCCGGTGGTGGTGGTGGTGGCTATGGCTGTGCCCCTCCCTGGGCCCCGCAGCTCTTGGGCTCTGTGAGTGCTTGTCCTTCTTCCCTGACCTCTTCTTCAGTGCTTTGTCTCCAAAGAAGTGGCTGAAGATGAAGTCCTCAAAGTCATCTACTTCATCATCATCACCTGTCTGTTGCACAGCCACCTCCTCCAAGCTGTCCTCCAGGGCATCCACAAAATCCCGGAAGCGGAGGCGGTCATGACGGAAGATGCCATCCTCACCAAAGAAAGCAGGTGAGAGGGGTAGCTCCTTGGTCAGCTGCCCAGCCCAGGGCAGCCGTGCCAAGTATGTTCTTAGCAGAGAGGCCAGCTCCTGTTGCCGCACTGGGGCTAGCTCTGTGCCAAAGAAAGTCAGGCCCTCCTGCCGGGCACACTCGTCCACACCTGAGCAGCCCTGGGGTGCCCGGTACTTGGGCCTCAACAGCTCTGCCCAGGATGGCAGGGGGTCATGGCTGTCCTTAGTCCCTTCCCTCCACCGAGGTTGCTTCTGCTTTTCTCCAGAGGAGTGGAAGCTACCACTTTTTCCTTGGGGGGTCCCTTCGGGCCCTGTCGCTTGCCCTCTTTCTTGCTCCCCCGACTCCTCCACCCTTGGCCTGCCCCTCCTTCCACCTTCCTGCTGGCCTCCTGTCCTTCTGGACCTCCCCCAGTCTTCTTTCTTTTCCCGGCCAAATTCTTCTTTTTTATGTTTCCGGTTTTAACCTTTCGGGTTTTTTGGCCCTCCCCCCATTTTTCTTTCCCCTCCCTCCCTAAAATTCGGAAGGGGAATTTTGGGGCCAGCCTTTAGGGTTTTGGAAAAAACCCGGGGTCTCGGCCCCGTTTCCCCGAGCCTGAATTATTGGGGCAAATTTGGGGCCCACTCTACACACCCAAAAAAAATGGGGCCCCCGGGGGGGATCTCGAAATCCCTTCCAAAATCTGGTGAAAACCCACGGCGGCTGCGGCCCTTTAATATTTGCATAAAGCGGGGCCCACCCACCAGGGTTCTTCTCTTTAGAAAGGAATG +>XR_001314002.1 PREDICTED: Thamnophis sirtalis uncharacterized LOC106555578 (LOC106555578), ncRNA +GGACCTGCTGGGGGAGAAGGAGAATCTGGACAAAGAGGCGACCTTGGTGAAGCAGGTTTGCCAGGCCCTAAAGGATCTGATGGCAATCTTGGTGAACCTGGCTCACGTGGGCCCGAGGGAATCCGTGGCATGCCTGGCATAGAAGGATTCCGTGGGCCTCCTGGCCCCCGTGGTTTGCAAGGGGAAC +>XM_050835981.1 PREDICTED: Eriocheir sinensis PEST proteolytic signal-containing nuclear protein-like (LOC126983306), transcript variant X5, mRNA +GCCCCCTGGGTCCCCATGGAGACGTCACTGGAGGACCAGAGGCTGCCTGCCCCCAAGCGGCCAGTGGAGGAGGAGGGGGAAGGGGAGGGGGAGGAGGAGCCTAAGAAAAAGATTAGTTTTGGGCTGAGCAGCAAACCTCAGGGCAAAAGTGGCCTCCCTGTCAAGAAGCCAATTGGTGGCATCTCCATCAAGCTGGGCCAGTCACAGGCAGCTGCACAGGCAGCTGGTGGTGCCTCCATCCTGAAGCCCAAGGTGGGTGCAGCAGCAGCAGTGTTCAGCACTGGAGATGAGGACGATGAAGATGAAGAAGAGGAGATGCCACCTGAGGCAAAGATGAGGATGAAGAACATTGGGAGGGACACCCCAACCTCAGCTGGCCCTAACAGTTTTGGCAAGACTAGGATGGGCTTCTGTGACTCAAAAAAGATCTACGAAAAGCAACTTAAGGAGGTGCAGGACAAAACTAACAAAGTAGTGCCAGACAGCGTGTAGGCAAGGTGACAGCCACTGCTGGCTGAAGCCCTGCACCTCACTTGGCCTGTAGCAGGGCAGGAGTGTGCCTGGCCTAGGCTGGCCTGTGCTAGGCTGGAGACTTGTTGGTTATTTGGACATCCCTCCTTTAGGCCTTAAGGTGTAGTAGTGCAGCCTGTCATCATCAGTTGTGTGTATAAATTGTAGCATAAAGCTCCAGGCTCGGGGTTGTAGCTGACTCACAGCACTGGTTGACATCTCGGGGGTTTGAGTGTGTGTGTGTGTGTGTAAACATTTGCTTGTATGTGTGTGTGGTGCATGCATGGTGGTTTTGGCTCTGCACCGGGAGAGTTTGGTTGTGTTAGAATGGGCTGTGTTTGCCAAGCAAGGAGTAGTGCTTTCCTCAGACAGGGACACACTGGTGTGGCCAGCAGTGTAGTGCTCCCCTCACTACTATGTACTGAGGCAGGACACACGGGAAACACCGGTGTTTATTTCAGCTTCTCGCAAGTACTGTGGTGTGCATAGAGTATTTCAGTTTCAACTGTTTCAGGCATGTACTTCATATTTCTTTGAGCGAACTTGTGGATGTTACTGACAGGGATTAACTCTATTAAACTCGACCATAGGCAGTGGTATGTGTCTAGAAGGAGTGAGGGATTGCCGACTTTTATAATTTGCCTGTGTACTTCAGGACATATACCAGTGATTAGGATTCAGGTTTTAGATTTTATCATGCATGCAAGCCAAGGAAAACTTGAGACTACATCTTCAACATCTTATAAAGGAGTATTGTGTCGACCTGTATGGATACTTTAGAAGCAGAGCAACGAGTAAGTGAAGATTTCAGCAGTTTATGTGATGAATGACTTTTATCATTATTACTATTCTGTGTGATAGTGCAGTTTGTGTATCTAACAACCTCATCCTACTGAGGGTCTCTGCGTACCCTCAGCAGCTGCATCACTGCAGAATTTATTGCCTGTCAGTCATTCCCTTGCCGTAGCGAAGGATGATGGCTGACTGGCTTGCCATCCATCTGGGGGCAGCATGGCTGAGTAATACATAGCATTTGTCTGCTTCATTTAGAAATTCTGTATAATGTTCTACATAGATGCATTTTCTGCTATCACCCAGAATGAGCCATTGTGACATTGATATCGAAACTGTAATATGTGTATAAAATATGTAGGGTGTTCTTAAGACTTTTGCACTCACAATGCATTTGGCTATGTTTATAACTACACATTTTGAGGATGTCCAGCTATAGACACAAACATGAGGCATCCACAGGAATCCTTGTAGGTGTGAATGATGTCTTGATTAAGGGAAGGCCAGAAAGGTAAGGTTCAAAAGTTATATTACAATTCATTACAGTAACATCAAAAAATATAAATACAGATTAGTCCTTGACTATACATCTGTCTAGTTTGGCAGTAAAGAAAAAGGCATTGGAAGCAGAGGACATCAACAACCCTCATACGGTATCAATCTTCAGTATTGTTTAAAATTGTAATACAAACATTAATTCCTCTTGCCTACTTTGTGGGTGCCTCATTGCTGGTTACAAGTAATCCTTCAGAGGTCTCATTTAATCCCTCAAAGGTGCCCTCCCAGCCAGTGTTTGCCGGCAGCACACAGAGCAGGGTGGCGGACACTTGGCCCCTCTTGGTGTTGCTGGCACTTGTAAATGTCCCAGCAGCAGTATTTCTAAATTGTTTGGGTTTGTTGTGTTGTAGCTGAAGTGTCCTCTGTTGGATGATACCACATATTCTTGCCATTCAGTTTTGTTTGTCTCTGCTATATGTGGCTGTTATTCATTTTATTTAGTCTGTCTGTGTAATTTAATTTGAAGTATGTGTGGTTGAGAGGTCATTCTACAATGTATCCATTTGTAATTTGTCATTCATCTCTACGGTCTGATGGATGGTTTTACGACTGTACAGAACCATGCAGTATTTCAAGGTTTCTTTCTGTTCAGTATTTGCCATTACTGTTGATTGTTTCTATTTGACCAAATCTGAAGTGGAAGTGGTGTACAAGATTTTAATTGACATACAGGTTGTCCACTTTCTTGAGCAAGTTGCATTTGTTCAGGACACCACCTGAGCTTTTTGTGTATTTTTACCTGAATGTTATTTAAGGGAAGTTACTCTCTGTATTCCTGGTGTTTCGGCTTCTTTGCCAACATCCACAGTCCATTCCTCTCAAGGTGACTTTGAATGTTTATCCTTATTGTTCTCATTAAGATTCACTAAACTGCCAGATGTAGGCTATCTGAGGCATCTGCTAAGTCCATGTATCATTATTACAAACTAACAGGGAGCATACGCCAGGGGGTGCATTTGCTTCACCCCGGCGGTCCCTCTGAGTGAACCCTCATGCAGTTACCTTTCCCATTCTAAGCCACTCCTGGCAGGATTGATCAAATTGCCCCACCCATGAGTTATGAGGATATAGGTTTTTTTTTATATAAAAGTTTGGTGTTCATTCAGAACAACATTGTTGTTCAGTTTTCTTCTGTCATAGCACTAGTGTTAATAATTGTGCCCATATTTTCTGTATTTTCTTATGGCTGTTCTGCTGTACCATTCCATGAAAGACAGCAGCTGCCAAGGAACAAGAGACTACCAAACAAATGAGCTGCACTAGATCACAGTAACAGCAGCACAGAGTAGCTGGCCAATGCAGGGTGCACCATCGCAGCTTCGCCAGGACCCCTTGGGGTCTTCATGACTCAGGTGACGGAAGCAGTGCATCCTGCCTGTGCTGCCCTGCGTCTTGTGTCCTGTGGTCTATACTCCAAACAACAACGTTCAGTCACTTGCGATGCCATACCAAACCTCTTCTTTCAACAAATAAAATTTCCCAAGATTTGTTAAAA +>KP395388.1 Uncultured bacterium clone MISEQ01_89_000000000-A647M_1_1111_13864_15148 16S ribosomal RNA gene, partial sequence +AAGGAATATTGGTCAATGGACGCAAGTCTGAACCAGCCATGCCGCGTGAAGGATGAAGGTCCTCTGGATTGTAAACTTCTTTTATCTTGGACGAAAACGGGATTTTTATCTCAATTGACGGTACCAGAGGAATAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAAGACAGAGGGTGCAAACGTTGTTCGGAATTACTGGGCGTAAAGCGCGTGTAGGCGGTCGTGCAAGTCGGGTGTGAAAGCCCAGGGCTCAACCCTGGAAGTGCATTCGATACTGCATGGCTAGAGTCCCGGAGAGGATGGTGGAACTCTAGGTGTAGAGGTGAAATTCGTAGATATCGAGAAGAACACCGGTGGCGAAGGCGGCCATCTGGACGGTGACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACA +>XM_013051197.2 PREDICTED: Mustela putorius furo actin binding LIM protein family member 3 (ABLIM3), transcript variant X7, mRNA +GTGGCGGCAGCGAGCGGCCGCGCCCCCCGCGCTGCCACCCCGCGAGCCCGCATCATGGATGTCGAGCTCTCCTATTTCGCTTTGCTCGCCTTGGAATTCGAGACTCCAGACGAGGACCAGGATTCATGAGCCGGTCGCAGGGGCCCAGGCAGGGGCCTCTGGCTCCCGACGCCGGCCGAAAGGTGATGAGTGAGGTCGGAAGATCGCAAGATTTAAAAAGCAACCGGGTCCTCCGTATCGAATGAAAGACCCAGTGCAAAGGCATCACCATGAACACGAGCATTCCTTATCAACAGAATCCTTACAATCCCCGAGGCAGCTCCAATGTCATCCAGTGCTACCGCTGTGGAGACACCTGCAAAGGAGAAGTGGTCCGTGTCCACAACAACCACTTTCACATCAGATGCTTCACCTGCCAAGTATGTGGCTGCGGCCTGGCCCAGTCGGGCTTCTTCTTCAAGAACCAGGAGTACATCTGCACCCAGGACTACCAGCAGCTCTACGGCACCCGCTGCGACAGCTGTAGGGACTTCATCACCGGCGAGGTCATCTCCGCCCTGGGCCGCACCTACCATCCCAAGTGCTTCGTGTGCAGCTTGTGCAGGAAGCCTTTCCCCATTGGAGACAAGGTGACCTTCAGCGGGAAGGAATGCGTGTGTCAAACATGCTCCCAGTCCATGACCAGCAGTAAGCCCATCAAGATCCGTGGACCAAGCCACTGCGCTGGGTGCAAAGAGGAGATCAAGCATGGCCAGTCACTCCTGGCGCTGGACAAGCAATGGCACGTCAGCTGCTTCAAGTGCCAGACCTGCGGCGTGATCCTTACCGGGGAGTACATCAGCAAGGATGGCGTTCCGTACTGCGAGTCCGACTACCATTCCCAGTTTGGCATCAAATGCGAGACTTGTGACCGGTACATCAGCGGCAGGGTCTTGGAGGCAGGAGGGAAGCACTACCACCCTACGTGTGCCCGGTGTGTCCGCTGCCACCAGATGTTCACGGAAGGCGAGGAGATGTACCTCACAGGTTCTGAGGTTTGGCACCCCATCTGCAAACAGGCAGCCCGGGCAGAGAAGAAGTTAAAGCATAGGCGGACGTCCGAAACTTCCATCTCACCCCCCGGATCCAGCATTGGGTCACCCAACCGAGTCATCTGCGACATCTACGAGAACCTGGACCTCCGACAGAGAAGGGCCTCCAGCCCAGGATACATCGACTCTCCCACCTACAGCCGGCAGGGCATGTCCCCCACCTTTTCCCGCTCGCCTCACCACTACTACCGCTCCGGTGATCTGTCAATAGCAACCAAGAGCAAAACGAGTGAAGACGTCAGCCAGGCCTCCAAGTACAGTCCAGCCTACTCCCCGGACCCCTACTATGCTGCAGAGTCCGAGTACTGGACCTACCATGGGTCCCCCAAAGCGGCCCGAGCCAGAAGGTTCTCATCTGGAGGAGAGGAGGAGGACTTTGACCGCAGCATGCACAAGCTCCAGAGCGGAATCGGCCGCCTCATTCTGAAGGAGGAAATGAAGGCCCGGTCCAGCTCCTACGCGGATCCCTGGACCCCACCCCGGAGCTCCACCAGCAGCCGGGAGGCCCTGCACACGGCTGGCTATGAGATGTCCCTCAATGGCTCCCCTCGATCCCACTACCTTGCTGACAGCGACCCCCTCATCTCCAAATCCGCCTCCCTGCCTGCCTACCGAAGGAACGGGCTGCACAGGACACCCAGCGCAGACCTCTTCCATTATGACAGCATGAACGCCGTCAACTGGGGCATGCGAGAGTACAAGATCTACCCTTATGAACTGCTGCTGGTGACCACGAGAGGAAGAAATCGGCTGCCCAAGGATGTGGACCGGACGCGTTTAGAGCGCCACCTGTCGCAGGAGGAGTTCTACCAGGTCTTCGGCATGACCATCTCGGAGTTTGACCGGCTGGCCCTCTGGAAGAGGAATGAACTGAAGAAGCAAGCCCGGCTGTTCTAGGCAGAGGCTCTATAAATATATATGCATTTATATAAAGATACATGTAAAATCTCTATACTGAAGCTCGGTATAATCCTCTCTTGTGTAATGGGACACACTGCCAGCCATGAGACTTGCTTTTCTGTACTGTCAGGCAAGCCCACGTCATCGAGATATTTTTATGCTCCTTACTTTCTCTTTTCTAAGTGCTCTGGGGTTCGGGAAGGGATTTGAGGAGACTCCCATCCTTTTACTGGGGATCCTTTTTATACTGAAACATCTGTCCTAACCTGAGTCCCCCAAGGTCCAACTCTCTTTCCTAAAGGAGGTGCCTGAAGAAGTCTCTCTTCTCTCTGCTTCTCGGCTCTCTCCCCAGTCTCCAGGGTGGATGCTGACCAGGCAGTTTCCACACCTTACTGGCCCCAGAGGGGCCCTCCCACGGGAAGATCCACAGTGATCTCCCAAAGTCACCGAGCACCATGGAGAGCCCGTGAAGAATTCTCCCATCTCCCCCATTTAGGAGTTCGGTGCCCTCTGGGGGTGATGCCCTTAGCTGTGTGGGCCTTGGATCTACTCACTACAGCAGCAAATGAAGTGGTTCGGGCCTGGGCCTCTCTGCAGCTTCTCAGTCCTCCTCCTCCTGCCCTTGGCCCTAACTTCAACCCAAGTCACATGGTAGGAGGAGAAAAGTCATTTCCCTTCCCTCCAACACCTCCAACTGGTCCCTTTGCCTGGCCCCGATGTGGAGATGAGAGGGAAAGCGTGGGAGCCGGCCACAGGAGCCGGAGCAGGGCACCTGTTGGAACTGGAGCTGCAGGACCTTTTGCAACCCTCCTCTCACCCTCACTGCCCCCAGCACCTCCTAACCCTTCCCCCCTTCAGAGGAGAGGCCCATTATTACGCCTTACTACGATCTATGTGCCTGACAACTCAACACACCACAGGGCTAACTTTCCCATCACAGTTCCAACAGAACAGCTAGACAACCTCTAACTCCCCTCCAAACATAATACAGGCCATGTCCCAAAGAAAGCCGCCTGGTCTACATCTGCAGGCCCCTGGGCTAGAAGGGCAACCGAAGCTGTCCCTCACCAGTCAGTCATTGGCTCCCACTGCAAAGTTGGCCATGTTTCCTAGGGGAAGCCTTTGGAAGAATGGCTGCTTATGGAATTCCAAAATGAAGCATTTGCCAACAGTGCGCATGACCACCCTGGATTTCCCCAGCGGCTGCCTTTCCTGCCCTCTGGCCTTCTTGAACAGCGATGAAAGCTTGACTTTAACTTCTCTCCTCCCTTCCCCCAAACCTTTGAACCCCGGCCCCCAGTTGGCTATGTGTGGTGGGGTCTGTTCCTCCCTGGAGATGCCTTGATGTAGATCATGTTGAGGTCACGGAGGGAAGACGAAGAAGTGGAAATAACCATTATGACTCTCAAGAGGCTGGTGTCGTGACCTGGCAAATAGAGAACTGACTCCAATCCAGCGAACCCTCACTGAGCCCCTGCTAACGCTGAGCACCTGCTGTATCCTGAGCACCGAGGGGGGAGGGAGGTGGGGACACTGAGATGATCAGCACGGGATCTGGACTGGGGGGCACGCCTGCTAGCACTGGGTGTCGTCGGACATGGACTCGCATGTGATGGACGTAAGGCAGGAAGTGATGGAGATGGCATGAGAACGTGTTTGTGGGATTACCGAGAGGGCAGATGCAAGTTGGTGCAGACCAAGGAACTTTCTGGAAGAGATTGCATTTGAGCGACATTCAGGAAGGATCTCTGTAAACTGAGAGGAGACTGTAACTTGAAAGGGTGACAGGGTGAGGGGTCAGAAGGGGGTCTAATATTCTCTCACTTAAAACATCAACCCTCTCTGCAACTCTCCTTTTGGCCAGTGTCTTTCAACTGTCCTGACCCTTTAGAAATGTCCCCAGCCAGACGCAATCATTGAAACTGCCTCATTATCACCGGTTGAGAACTTGGCAAGATGAAGGGCTTTTGTTATTGTTGTTGGGTATTTTTGTTTCCCATAAAAGCACATAATTCCAACCCA +>XM_039549112.1 PREDICTED: Corvus cornix cornix chromosome 2 C8orf34 homolog (C2H8orf34), transcript variant X3, mRNA +TCAACGGGCGCCGGCGGCCGTGGAGCTGACAGGAGCCCGCGGCTATCGGCCTCGGCAGCGGCGCTGTGGCGAGCACGGCAGCGCCCGTCACCACGGCGCTGCTTGGCACAGAAACACAGACAGAGACGGACTGACAGACACACGCAGCGCGGAGCGGCGCGGGCTCGGGGGCCGCCTTTGCAGCTCCTCTCCTCCCTGCACCATGCTCCGCTCTAGGCAGCGCCCGCCCGCTGCTCCCTAAGGGCAGCCAGCCCCGCGCCCAGCTAAGCGGGCGACTGGCACCCGGCTCTCTCCCCCCCGCCCCCAGTTACCTGAGTTAGCTCCGTCCCGGGGACTTTCGCAGCGCCTCCGCCCTCTCCCGCTGTGGCAGCCCTTGTGCGGCGGGGGAGTGAGCCGCCCGCAGCCGGAGGGACTGCAGCCGCCGCCGGGGGAGACGAGCTCAAGCCCCCGCCCCCGGAGCTCTTCATGGCGTCTCATCAGCAGACAAGGATCCAAGCCTACCTGGAGAAGAATAAGATCGGTCCCCTCTTCGAGGAGTTGATGACCAAGCTGATAACAGAGACACCTGACCAGCCAATCCCATTTCTAATTGATCATCTTCAGTCCAAGCAGGGGAACCGCAGTCAGCTTCAGAGAACATTGTCTGGCTCTGCTGCCCTGTGGGCAGAGAGTGAAACATCAGAAAATAAAGGAACAAGAAGAGATTTTAGAAGTTATGATAAGCCTTGGCAGGTAAATGCAAAAAAGCCTAAAAAGTCAAAGAGCGACCTTGCTGTGTCCAACATTTCTCCACCATCACCGGAGTCCAAGTCATTGCCAAGGTCAATAGAGCATCCTAAATGGGATTGGAAGACAAAACCGGAGAACCATGATTTTGATGAACTAAATCATATTCTTCAAGAGAGCAAAAAGCTTGGAAAAGCCCTTGAGAATCTGTCTCGCAGCATTGCTATTTCTGATGAACTTGATAAGGACACAGCAGGTTTCAACACCCCCCTTCTCAGACCTCGTGTGATTGGAGAATGGATTGGCCGTGAAGAGAATGATGCAGATCCTCTGGCTGCTGAGATGTTGCAGCCACCAATACCAAGAAATAAAAATGAGCAGTGGGACAGTGAGGATAGCAGCAGTCCTGGAGGAAGCTTAAAAATGGAGCCAAAGACCAAAGGATTAAAACATCAACAGCAGCAACATAAGAAACTGCTGGCTGCCATGCTTTCTCAGGACTCCTTTGATTCTGCTCAAAGCACAGCTCCATCTGTAACCGAAGAAGACATTGACAATGAAGATGATGCAATGGAACTACTGGAGGATCTTGATGATCTCAGAATGGAAGGAGTAACAAGTGTGGTATCCTCTGGGAGCAAATTCAATCAAACTCGAAGTGCTCATATGGCTGAGCCTCAAGCAAAGGTCACATTGAATATATGTGCAAGATGTGCCAGATTGCAAGGGGATAATTTGGCAGAAAGGCCAGAAGATGTCTCCATGGTATCTCAGACATCTGAGCCAGCAGTGTCAGACTCTGATGCTCAAGTACCTGGGGTTGAAACACTCACAGAAGATATTGATGAATTTCAGAGTGCCTCTCAAGTGGCAGCATCTTCTCAGACAGTTTGGACCTTGGATGCCATGACTGTCAGACCTGGAGGTTCCCCAAGGCAGAAACTCCTAAAGGACTCCTTAGCAGCAAAAGAACTTCAGACCATGGAAAAACACCTAGCTGACATTGAGAAGGACCTCGCACTGTGGGAAGAAGCAAGGCTTTCAAGAAGCCCTGGTGTCCAGCATCCCAGTGTGGTTACCTCTGACCATCCAGGCACTCTTCAGGCTGCGCAGGGCCAAACCCCCAGGCCTCAGGTGCCAACTCCGATGGGGAAGAACATTCAGCTCCAAGGAAGCAAATCACCACCGCTGCCCACTAACAGCAGAACACAGGTCTCCAGTGTCACAAGCAGTAGACCTTCAACGCCTGCTGCACAAACCAACAGGCCATCAACTCCAGGGAGCAGACCTATGACCCCAAATAGCTTGTTGTCACGGCCTCTTACCCCTAGCAACCAAGGAAATAGGGAAGGCATTATTAGTATTCAAAGAAGCAGATCTTTGTCATCTAAGAGCCAAATGGGGAGGACCCTCAGTGCCGCTTCAGGGCTTTCTGTGCAAGATGAATTCTTACAACAGTTTCAACTTGCTCATCAACCTTGGATATTGCCAAGTGACACAGAAAGTGAAGGAGTGGAAGCTGACCAAGACAAATGTAAGTATATATGTAAGGACCAGATAATACATCAAAAACCGTCAACTTAACTTCTATTTTCCATATATTCAAATACTGTGGAGATGTCATGCCTGCTCACAGGAGCTTTTCTCACAAGTACCAATTACTTATTTGTCTGAGGGCTAGACCTTACAGGATTGATTTGCAGAAGCTTTCCTGCAGTCACTGAGCAATGACAAAATGATCACAGACCACACTTTACTTAATCTAAGTGAAACAATTTGTCCTGATGTGTTAAAGTAGCTATTCCAGAGAAGTAACCTGAACTTGAAATAGGCAGTCTGTTTAATAAATCTGTATTCACCAGCAAAAAAAAAAACAAACCCTAAAAAACTTCAGATCTGAAAAGCAGAGCCTCCCTTCTTAGGCCTGTCACTCTATTGTCTCTGTTTTGCTTGCATTCTTTTTAATTCATCTGTATTAATAAAAAAGTTCTTAATCATACAAGTAATCCTTAATATCCTACACTCTTTGAAGTATTTTTGTAATCATGGAAGTGAAGGTCAGCAGGATCAGAGCCTAAATGACAGAACAAGTAACTACAAGTAACAGGCTATAAATTGCAGTTCTTTCAAACTGTAGCAAGTTCCCCCTGCCTACAACATACCTGTAAATGATCTTACTGTTTCACATTTTCTTTAATTCACAGTAATTTTGTGATCTGCAAGGGTGAATATGCAAACTGTTTCCTAACAGATTTTAGGTGATACACTTGAAAAGAACAGATTATTTAATCAGCATGTTTAGAAAATTCAGTACTGGTTTAAACATGAAGAGTTAACATATGAAAAACACATTTTCTTTACAGAAGGGAACAATTCTATAAGGGATTAAGGATTCATAATAAACATGCCAGATAAACAGAATGTATTTTTACATTATGCTAGTTAAAAGAATTGTTTTCTACTCATACATCAGTTTCACAAATTCATACATAGCCCAGAGTTTGACTGAAATTTAAATTTATGCAGTGAGGTTCTGAAGAGCATGTGCCAGGTCTTTTTGAGCACTAGTAAAATGTTAAAATGAGATTGTGTGCATCCAGCTGATTTTAGTCCAAAGCCAGTAATATGACTTCCACCAGAGCCTTTCAGTTATCTTTGGACTGAAGCTCCCCTTAGGAGGCTCAAGAGATACCCTGTCACCTGCCTTTTATGTGCATGCAATTTTTCCTCTGTATTTTCTGTAATGAATTTACAGTCCTACAAACATTGGTTGGATTGGCTGTGCACACACAGACTGATGCCAATTATGTGACCAGGGAGACTGATGCTCCGGGACATATCAGGTACACAGCATGGTTTCTTATAGCTGCTGTACTTGAATTGTGTGGGTGTGAGGACTTGTGAGCACCTAAAATCCTGTACTGTAGTATTCCAAGAATCCTGGTAGGTCACTGTCACTGCCCAGAAAACAAAGTGTTAAGTTAAAAAAGTATGTTGTTAAGGTCAATGTCCAAATCCCTCTTGAACAGTGACAGACTTGAGGTAGTGACCATCTCCCTCAGATGCCTGTTCCAGTCTTTCATCCTCTCAGTAAAGGAATGCTCCCTAATGTCTAGTCTGAATCTCCCCTGGCACAGCTTTGAGCCATTGCCATATGTTCTGTCACTGAATACCAGGGAGAAGATATCAGTGCCTCTCTCTCCACATGCCCTCCTCTGGAAGCTGTGGACAGCAAGGTTGCTCCTCAGCTTCATTTTCTGCAAACTAGACAAGCCCAAAGTCCTTAGCTGCCCCTCACAGGTCATTCCTTCCAGCCCTCTCACCAGCTTTGTTGCCCTTATCTGGACACATTCAAGGACCTTCACATCCTTTTTAAATTATGGTGCCCAGAAGTGCACACAGTGCTCCAGGTGAGGCTGCACCAATGCTGAATACAGTGGGATAATCACCTTCTTGAGGAGCTGGTGGTGCTGCGTTTGATGTACCCCAGCATGGGGTTTGCCCTGTTGGCTTCCAGGACACGCTGCTGACTCTTGCTGTGCCTGCTGCCAGCCAGCACCCCCAGATCCCTTTCTGCAGAGAGGCTCTCCAGCCACT +>XR_008192058.1 PREDICTED: Gossypium raimondii uncharacterized LOC128035582 (LOC128035582), ncRNA +TACATAATAGATATATATACAGTTTTTCCCTACCCTACCCGTCATCCTCTTTTCTCTTTATCCTCTCCCTCAATTTTCCTTCTTTTCCCTTCACCGTGTCTCCCATCTACCCTTTCTTCTTGCCACCCTATTGTTTAAGCTTTGATTTTTGTTTTTCCACCTACCTTGCTGATCGTTTTACCCTCCTTAATTAGCCTTATTTGCTACCCTAAGTCACCTTAAAGCCGCCCCTATCAGTCTCTTTTATTGCTCAATTGTCGCCCCTCTCCATTGTTGAAGTAGTGCCACTCTAAGAATTCATCTTTATGGCTGACAAAGATTCCCTCTTGTCTCGCCCTGTTCTGCATTTTTCTGTCGCCGTTTGTGGTGTTGCCGCCCTTTAAGACACCACCAGTTTGGACAGTCGTTCCCTTTTCAGTTACCACCCTTATATCAGTGTGCTTTTCGAGTTATTCTTTATTTATATCTGGTCTAAACGTTCTAAGTTGGCAAAGTAACCTAGGTGATCAATGGCTAACTCAGATCTCGGTAACGAGTAGTGCAAAATGTAGATTTGTGTGAGATCTCGCACTGTTTCGTTTTGTTGTTAAGTGATGCTATGGTCGAATACCCTAAGGCTTGGATATGGAATTTCGTTGCGGATTTTTGGGTATTTAATGTGATTTAGGTGCTGATTTGAACATCCCGGATCAACAATAAAACCAGATTTCATCCATGCCCTCGTTTCGTAGCAAATCAGTGCAAGTTGTTCAATCGAATTGAACCTAAAATTTTTGGCATGTAGCACTGATTTGGCCGATCCATTAAAGGGTGTTTCAAGGCTGGTTTTAATGGTAGTTAATGTGGTAGTTATTGTTATTTGGTGTTAGGTTCGATTAAGGAGTTAAATTTGGAACACAAACTTTTTCAGCTTAGTGCTGCGGATTTTTGATAATAAGGTGGGTTCTAACTTGTTAAAAAGTGCTAAAATTATGCTTTTAATGATTAAA +>XR_004466254.1 PREDICTED: Bombus vancouverensis nearcticus uncharacterized LOC117166512 (LOC117166512), ncRNA +CCGTTTTTCATTATAATTACGATTATAATATATTCGTTTTAATTATAATTATGCTGTATTGTTGCGATATCAACGTACTACGTTGCGCTTTAAATTAAAACTTCTTTCTGTTAAAAAAAAGCATCGTTCCAAGTCGACTTCTTTTGTTCTTTCGCGGGATTCTTAGGCAAGCCGTCGCAGCCACGCTGCAGTTTACTAACCGAGCGTATATGCATGGATTTACCGACATAATCCAATAATATCGTAGGTTGCAGACACAAGATCGCGCTGCGTAATAAGTCTGGAAATTCTCATGGTACTCCGTATGAAAGCCCAGCGACTGTGGCCGTAATCTGCAACATTGCAGAATGCACAACTGCAGTGGAATAGCCTACAATTATAGAAAATCAAGCCGTAGGATTTATCAACACAGCCTTCACCAAATTATATCTGATTTATGCAGATTCGCAGAACATTTTACAGAGTCTAAAAATCTACTCCCTTAAAGCCGCGATAAATCAACACAATTTAAACAT +>XM_049312721.1 Wardomyces moseri uncharacterized protein (JN550_001527), partial mRNA +ATGTCTAAAAATGGAGACATCAGAGGGTTCTTCGCCAAGGGAGCGCCGTCCAGGGCTCCTCCCCCGAAGGCATCGTCTGCTAGCAGCGTATTGCCTGCCTCCCCGCCGGCGGCCGAGCGGGCCCATCAGCCAACACCTACACCTTCGTCACAGCTGTCGATAGATCTCCCGTCGTCGCCTTTCACACCACAGAAGCAGCCCGTCAAGACACCTCTGACAAGGGATGACGAGATCAGGGGCTCAGACGACGAAGACGATGACTCGGATAGTTCTCTCGAGTCGCTCGGGGAGCTCCTGGGACGTAGATCTGGCCCGGCCACATACCAGAGGCCTACGGCGTTGACGACTACTCCCAAGGCCAAGAGGATTGCACCCAACAGCTTTCACCGGTCTCCTCTGACGCTGCAGCAGCAGCCTACTCACAAGTTCGACCTCAAGTCTCTCATCAAGCATGCGAGACAGGACGATGCTACCGAGCAGAGTGCTCGACGAGCTGACGAGCTCAGGGTGAAGGCGGACCAAGAGGAGCTCGAAGCTGGGCGTGATATGGCCGACAAAGCCAGGGACGTTTTTGGCGGCGAGGATGGGGAGAAGGGCGACAAGCTGGCCAGGGCTATTGACCGCACAGTAGGCGACGAGTCTAGACCGCGCTGCTATTTCTTCGCTCTGGAGGATGAAGCAGCCGCCGCAGGCGCTGGTCCCAGGCGGCCGTTCCCCAAAAAGGCAGCCAAGGTCAAACCGTGGACCTTGTTGCAGGATAGCAAGACCCGAGACCAGATGTTCATACGCGGGATGGTCAGCGCTGTGGCTGCAAAAGGGAAGGAGCTGCCAGACGAAATCTACCGGTGGATCCTCGACGAGATATGTATCGAGGAGAACCTTCAGCTGCGGAACCAGTATATCAGGTCGGCCGCGCTGTGTTGTGATGACACACGGCGTCTGGTTGACGAGAGGCAGCTCTATAAGATGCTGGAGAAGATAGGGGGCCAGAAGCATGAAACCTCGAAGCAGAAGTTCGAGCTATCGCCTGGGCTGCAGGACCCCTATTCGAGGAGAGACTGGTCTCCTCTTCGTCATTTCTTGCAACTACTGGCGGAGATGGCGCCCAATCTGACATCAAAAAATGCAACGAGCGCAGTGCAACTGCTTTTACGCTTAAGCCTCGACCCTGTGGTCGACAGGGCGCCGGGCGTTCGTGCCGAATACGCCAAAGCCATGGTCGCTCTAGAGTCGGCTCTACCTGCTCCAGAGGACCAGTGGGATACATGTTGCAAGAAGATATGCAATTATCTCCATCAAGGTGTAGACCAAGTGACGCAACGCCACATTGCCACCGTGATGCTGCCGACCTCTACGCCTCGACTGGCTGACTTGCAGCGTAGGCTGGCGACAGTAGCCCTCTTCGACGACCCGGGCCTGGGCGCCATACATCCCGACGAGTCCGTCACCATGCAGGACCTCTTCGCCCGCCTCGGGGCCAAGAATTTCCGCGTAAGACACTCGACCGACTTTGACGAGCTCAACGCGCTCCTCTCGCTGTTCGACATGGTGCTGGACCGCGGCTCGCAGTTCGGCCGGGCCTACCTGTCGACGACGCCTCTGCCGGCCCCCACGCCTCAGCCCAGGCTCGCACCGGCGCTGCCAACCCCGGCCTCGTCCACGTCAACCACGACGGCGGCGAGCACGGCCACGACGCCGTCGCCGCGGTCGGAGGCCGAGGCGGCGGCCCTGTTCGACGCCGACGTCGACCGGCTGCGCGCCCACCTCAAGGCGCTGCACGACAAGATCGCCGACAACAGCCTCGTGTCCAGCAAGGTGGCCAAGGCGTCGCTCGACGGCATGATGAAGCGGCTGGCGTTCACGGTGCGCAGCCGGCCGCCGCCCAAGAGCAGCATCTTCGACGAGGCCATCTACGGGAGGGAGAAGGAGGACGCGCATCTGCCGCGGCAGCGGGATTTCATGAAGAAGTGGAGCGCGGCGTCGAAGGGTGGCGGCGTAAAGAAGGATGAAGCTGACGATAACGAGGGCGCCGCCTGA +>KY685464.1 Uncultured Glomus clone M01338:4:000000000-A3V74:1:1101:10809:13957 18S ribosomal RNA gene, partial sequence +CTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGATCAATACGTCGGTCGTGCTTCGGTACGTACTGGCGTCATTGATTTCTCCCTTCTGACGAACCATGATGTCATTAACTTGGTGTCATGGGAAATCAGGACTGTTACTTTGAAAAAATTAGAGTGTTTAAAGCAGGCTCGCGCTTGAATACATTAGCATGGAATAATGAAATAGGACGTTCGATCCTATTTTGTTGGTTTCTAGGATTGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACC +>XM_032084393.1 Aspergillus pseudonomiae uncharacterized protein (BDV37DRAFT_269601), partial mRNA +ATGTCAAGCCTTGTCATCGGGACTGCGCCGGAGGGTCTGGACTTGTCCGAGGATAGAATCGCTCAGAATGACGCCACTGTTGGTGTTGTCATGGGAATTGCCACAATTTTTGTGGGTTTGCGATTCTGGGCGCGAACGACTAATAAGAGTGCCAATTTAGCATATGATGACTGGTTTGTCTTGGTAGCATTGATCATCTTCGCTTATGTTATTCTGTATGCCACGACAGTGCCTATGGTCAAATTGTCCGTGCTTCTTCTCTATCGCCGGATTTTCCGCCTCACCTGGACGTTGTATTTCTGTGCATTTCTCTCCATCGGATATACTATCTCAGTTGTTACTACCATCTCGCTGGCTTGCGTCCCCTCATCTTTCTTCTGGACTCAATGGGTATATCCTTTGAGTGGAGGCCACTGTCGGATCAACCTCTATCAATTCTATTTGTGGAACGGTGTGGCCAACTTGTTCACCGATGTCATCATTTTATGCCTGCCCATGCCGATCGTCTGGGGCCTGCAGATGCCCAAGGCGCAGAAATGGGCCATTAGCGGTATCTTCCTGCTCGGTGGATTTGTCTGCGTGGCCACGATTGTCCGCATCTCCGCCATCACGAAAATGAAAGATTCCGTCGACATCACCTGGGTAATCGGCGACGCCATGATCTGGTCCAACGTCGAGCCCTGCATCGGTATTGTCAGCGCGTGCCTACCGACTCTGCGGCCCCTCCTGCGCCAAATTCCCCAGCTAAGAGTCTGGGGGCTTTTCGGCAGCAGTGGACTCTCGGGCAATTACAAGATGACCGGCGACGGCACTTCCGGCACGGGACAGCAGGATACCGGCAACCGATCGGCATATCGGTCCTCGACTGGTAAGAAGCAGCGATTCTGGCCAGAAGATGACGAAATCTACCTGACTACCGACGTAGGACGTGCTGCCAGAGAGGAAGGCGTCATCCCGTCCAACGGCTCCGCTGCCTCCAGCCAGGAACCCATCGCTATGCAGATCAGGGTGAAGCAGAACTTCGATTGGAGGGAGGACCACCCATGA +>XM_048215029.1 PREDICTED: Ursus arctos zinc finger and BTB domain containing 20 (ZBTB20), transcript variant X11, mRNA +GCACCCAATGTGGGCCTTCTGCCGAAGAAGTAGGGGCGGGGGGAAGTTTAGGAGTTGAGGAAAGAAGATTAAAGAGCGCGAGGAGGAATCTTTTGGAGGATGTGCTACATCCAAATGAGGAGAAACTGAGAAGGAAAGAGGAAGACAGAGGATTCAGGAAATAGATGATGATAATGAGTCACACAAAAAGAAGTATTAAGGATTGCCTTTTAAGACTCTGAAGACTGAAGAGTGCCTGATAAATTGCACGTCTGTCTGTGCCCCCTAGCTGCACAGACTGCCTGAAGTTACATTTAGAGACTGAAATCACTGCACCTTAAAAACAAAAGATTGAGCTGCACTGCATTCCTAATGTATCGCCATCACTAACTGGATATTCCTCACAACTTTGCTGTCCGAGGTAAGGAAAAAGAGTCCAGAGAGCCCATGCCCCCTGGGTCTCATCCTGTGAGGCACTGTCGAAACCAGAGTAGAACTCAGGCCTCAGCTGCCGTTCCAGAGCTCTTTCTATAAGTTCCGTGACCATCAGTCTGTGGCCTGACCCTTCTCTTTATATGCAGCCGCTCTCTGTCCCCTGCCCCAATGAACATCTGCACTGCGCCCAAGCCTTGGAGTGATTTACCTGAAGAGTGACACCATTTCTTTGGAAACTACTATGAGGAAACTGAAGCCCAGAGAGGTGAAGTGAGGTGCCCAAGGCCACACAGCAAGTTAGAGGCACAGCTAGTACCATAGCTCAAGTCTCCTGACTCCCAGTCCAGTGCTCCTCCCATTACTCCACGGGTCCTGTGTCTAAGCTTCCTGACAAATGCTAGAACGGAAGAAACCCAAGACAGCTGAAAACCAGAAGGCATCTGAGGAGAATGAGATTACTCAGCCGGGTGGATCCAGCGCCAAGCCGGGCCTTCCCTGCCTGAACTTTGAAGCTGTTTTGTCTCCAGACCCAGCCCTCATCCACTCAACACATTCACTGACAAACTCTCACGCTCACACCGGGTCATCTGATTGTGACATCAGTTGCAAGGGGATGACCGAGCGCATTCACAGCATCAACCTTCACAACTTCAGCAATTCCGTGCTCGAGACCCTCAACGAGCAGCGCAACCGTGGCCACTTCTGTGACGTGACGGTGCGCATCCACGGGAGCATGCTGCGCGCACACCGCTGCGTGCTGGCGGCCGGCAGCCCCTTCTTCCAGGACAAGCTGCTGCTGGGCTACAGCGACATCGAGATCCCGTCCGTGGTGTCGGTGCAGTCGGTGCAAAAGCTCATTGACTTCATGTACAGCGGCGTGCTGCGCGTCTCGCAGTCGGAAGCCCTGCAGATCCTCACGGCCGCCAGCATCCTGCAGATCAAAACAGTCATCGATGAGTGCACGCGCATTGTGTCGCAGAACGTGGGCGATGTGTTCCCGGGGATCCAGGACTCGGGCCAGGACACGCCACGGGGCACTCCCGAGTCAGGCACATCGGGCCAGAGCAGCGACACCGAGTCGGGCTACCTGCAGAGCCACCCGCAGCACAGCGTGGACAGGATCTACTCGGCGCTCTACGCATGCTCCATGCAGAACGGCAGCGGGGAGCGCTCCTTCTACAGCGGTGCGGTGGTCAGCCACCACGAGACTGCACTCGGCCTGCCCCGTGACCACCACATGGAAGACCCCAGCTGGATCACGCGCATCCACGAGCGCTCGCAGCAGATGGAGCGCTACCTGTCCACCACCCCCGAGACCACGCACTGCCGCAAGCAGCCCCGGCCTGTGCGCATCCAGACCCTGGTGGGCAACATCCACATTAAGCAGGAGATGGAGGACGATTACGACTACTATGGGCAGCAAAGGGTGCAGATCCTGGAGCGCAACGAATCCGAGGAGTGCACGGAAGACACCGACCAGGCGGAGGGCACTGAGAGTGAGCCCAAGGGCGAAAGCTTCGACTCGGGCGTCAGTTCCTCCATAGGCACCGAGCCTGACTCGGTGGAGCAGCAGTTCGGGCCCGGGGCGGCGCGGGATGGCCAGGCCGAACCTGCCCAAGCCGAGCAGACCGCAGAAGCGCCTGCCGAGGGCGGCCCACAGCCGCACCAGCTAGAGACAGGTGCCTCCTCCCCGGAAAGAAGCAACGAGGTGGAGATGGACAACACGGTCATCACTGTCAGCAACAGCTCCGACAAGAGCGTCCTGCAGCAGCCTTCGGTGAACACGTCCATCGGGCAGCCATTGCCAAGTACCCAGCTCTACTTACGCCAGACAGAAACCCTCACCAGCAACTTGAGGATGCCTCTGACCTTGACCAGCAACACACAGGTCATTGGCACAGCCGGCAACACCTACCTGCCGGCCCTCTTCACCACCCAGCCCGCGGGCAGTGGCCCCAAGCCTTTCCTCTTCAGCCTGCCACAGCCCCTGGCAGGCCAGCAGACCCAGTTTGTGACAGTGTCCCAGCCTGGCCTGTCAACCTTTACTGCACAGCTGCCAGCGCCACAGCCCCTGGCCCCATCCGCAGGCCACAGCACAGCCAGTGGGCAGGGCGAAAAAAAGCCTTACGAGTGCACTCTCTGCAACAAGACTTTCACCGCCAAACAGAACTACGTCAAGCACATGTTCGTACACACAGGTGAGAAGCCCCACCAATGCAGCATCTGTTGGCGCTCCTTCTCCTTGAAAGATTACCTTATCAAGCACATGGTGACGCACACGGGAGTGAGGGCGTACCAGTGCAGCATCTGCAACAAGCGCTTCACCCAGAAGAGCTCGCTCAACGTGCACATGCGCCTCCACCGCGGGGAGAAGTCCTACGAGTGCTACATCTGCAAAAAGAAGTTCTCCCACAAGACCCTCCTGGAGCGGCACGTGGCCCTGCACAGTGCCAGCAACGGGACCCCTCCCGCGGGTACACCCCCAGGTGCCCGCGCTGGCCCCCCAGGGGTGGTGGCCTGCACGGAGGGGACCACTTACGTCTGCTCCGTCTGTCCAGCAAAGTTTGACCAAATCGAGCAGTTCAACGACCACATGAGGATGCATGTGTCTGACGGATAAGTAGTACCTTTCTCTCTTTCTTATGAACAAAAACGACAGAAAAGAAACAAACAAACAAAAGCTATGGCACTAGAATTTAAGAAATGTTTTGGTTTCGTTTTTACTTTGTTTTTGTTTTTGTTTCGTTTCATTTTGTACTACATGAAGAACTGTTTTTGCCTGCTGGTACATTACATTTCCGGAGGCTCGGGTGAATGATAGTTTTCCCAGCCTCCCTCGGATGGTGGCCTTAAGGCCTGGTAGTGCTTCAAGAGGTCCACTGGTTGGATCTCTAGCTACTGGCCTCTAAATACAACCCTTCTTTACAAAAAACAAAAAACAAAAAAAAACAAAAAAAAAAATCTTAAAAAAAAGTAAAAAAAAAAATTTTTTTTTCACTTGTGAAGAGCACTACAAAAATATATAACAAAATCTAAAAGGCCTACTGTCTTTAAGTACACCGCTTGCAGTGTTTCAGTGGACATTTTCACAATTCTGGCCGCTTGGACTTCACAGTAACCAGTTAAAACTGTGGAATATCACTTCTGGTTGAAAACCCAGAGGAAAGGCCCTGCTGTTTTCCACCTACCACATTTTCTGATTTCATAAAAGGGCTGGGGGGGTTGGGAAGGGGCAGTGGGTCCGGTGGTGTGGGGAAGGCGAATGGCAGGCTTCTCCCCCAGATTTCTGCTCGCGTCCACACACCCTGGCCCACCTCCTCCGTGTCTCCCCCTTTCAGCAGAAGCCAGGAAGACTTGGACAAGCATCAAGCAACAGTGGCTATCGTATTTATTCAGTGTCTTCGCTGAGCCACAGCCTCAGCACAATCAAGAGGGACTTTCATGAAGGGCAGGAATGCAGATAAAACAAAGATATCAGAGGTTTGCACCTACGTTTCTAGGTACAAGAGAAGGATTATTTCCCACAATCTTTGCAAAAAACAAAAACAAAAAAAAAGTGTCAGGATATATTCTTGTGGAAGAGAAAAAGAAAGAGAAATGGAGGGTGGGGGGTATAATAAAAAGTTCTTGAGGCTTTTTTAATTCAAAATTTTATAGAGGGGCAAAAGTGACGTTTACCAGATAGAATGCTGATTTTTTTAATATATTTACAACAGTATTTGTGTAAAAAAAAAACAAAAAAAAGTGAGATTGTTAAAAGTAATTTTCTTTCGTTTTGATTTTGCGTACACTGCCACCAATCCCTTCTCTTATTTTATTTCACACACATATATATATTTTTTGGTAAGTCAAGACTGTTAAGGTTAGCGATACTGCTTCCAGATAGAAAGAATAAAAGGCAATTAAAGTTATATTTGAAAGAGAGGAAGGATATTTTCTTCATATTTTTTTTATTTTTTCTTAATTTTTATTATTTTAAGTATTGCCTGGGTTGATGAGGGCCTCTGTGGCCAGCCCATCCCTGCTGTAATTTGAACTGCTGCTTTGTATTTTGATATGTAGTTCTTTGACTTTTAGCAAGCTTAAGTTGCTCCACTGACTTTTTTTTTTCTTCCAACTGATCCATCTAGAATTCTGTTCTTTTTCATGGGAGGACTTTATCTTTCAGAAACAGATTTCCTGCTTCTCTAAAAGTTCACTGAGGTCTTATGATTCTAGAATGTCTCTTGACTTGACTTCTTTTCTTGAATGAAACACTAGTAGTCTAGAGGTCGTGACAAATGGGTTTTCCTTCTGTGGTCAGCCAGGAGGAGGAGTTCATGCCTCCTCACCCTTCACAGCTGCAGAGAGCAGAAGCCTGGTACAGATCAGGATGCTTGATGCCAAAATTACTCTCCTCCTTTCAGATATCACCTTCTGACTATTTCCACCGTGGTTGAGAGGGCTAATGAGATGATCCTCCTTCAGAGGATGTAGTAACCCTTGCTTTTTGGAAAGATTTTAAGGAAATTAACAAAAATTTCTCAGATACCAACATCCATCATTCAAAAGGCCACCAGTTCATTGCATCATCCTGGATGCCACTCTCTCTTCCTAGTTGGGATTTCTCTCCTCGGTCCTGATCAAAGTATTGTAATAGGGATTTTTCCATTATAGACAGTGTCCTGAAGGGATTCCGACTCAATTATGAGAATTCTTACACTTAACAAAAACTCCAAAGGTGATTTTATTGCTGGGCATATTTTAACACTCTTAAAGGGGAAGAGTAAATCTTTAAACAAAGCAGAAACACCAAACTGTAATTTTAAAAAAGAAGCAAAGACAGAATTTTAGTTTCAAAATTACTTTGCATTTTAATTTTCCTGTCAGCAACTTATTTGCAAAAACTGTGCATCAAATGAGGAGACATCTTCCAAGGGAAGAAACTCTATAATGACTAAATTGGTTTTACTCATATATTTTAGATATTGGTTAACTTGGATCTTTTCCATACGTTCTTGGTGATGTTTAGTAGGGTTAGTGCAACTGGAGTACATGTGGGTTTTATTTGGTCCTCCGGTCCTCAATTCGGTAAATATTTTACTAGAAGTTTAATGTAGACTTGGATGGTTAACTGATTATTGGGTGTCACTCATCGTGATTTCTAAAAGGAGTCATATCAAGAACGGTGTGTCCAAAATTGACCTGTTTTAGAAGTTAGTGGGAAACAGCTTCAAAACTAAGAAAAAGTCCATTTTTCTCTTGCTGATTTTGCTTTTTAAAATAGCAGTGTGGAAGACTTTAATATTTCCACTTACTACCAACAGAGGGAGCGTTACTTAATTAACCACGTCCTGGGATTGTTTTGATATCTTGAAAAACAAGTCATTCAACCCAATATATAAAAAAGAAAAAATTAACATTAAGGAAAAAAGTTGTTCAATCTAGAGGGATAAATGACATAAACTCTCTCAGCATACTATACAAATGAGCTAAAAGACACTTAAAAATATTTTCAATTATTTGACAGTAGCTGATTTAAGATAGTGTCCTTATTCCAACCTTCGCAAAGTAAGCAGAATTTATAGTACCTCTAAAAAAATTGATCTTGGGTGCCATTTTGGGCCCCATTTAGCTATCTGCTTCTCAAATCAGAGGGAAACCCGTTTGCCTTAATGTTGATTTGCCATGTGAAAAGTGAAGCAGTTGGGTTAAAACGAAATCCATATTTTGTTATAGAACATACAGAGGGAAAAAATTCCAGTTGGGTTTGAAGCACTAATATTCATCCTTTCCCTTCAAATGAAGTATCTCTTTTTAAAAAATGTTGGAGAACTCCCAGAGAATTCGTGGTGAGGTGATGCAGTCATTATAACCACATGGACTCTCCAGGTTTGCATAGCAGTAGACTTTTTCCTACCGTATGTCTATTCCTCTCAAACACTCATAGTCTAAAATAGTTGACAGACTTGTACTCTGGAGAGAGGGAGAAGCTAGACTGCAGTGGAAGGTCTAATCTGGGGAGCAGTGAACTTGCTGTGGGGTTATTACAATATGTTCTGACCTCCTTAAAGGGCAACTTTCCCCACGGATCTAAACCAGACTGGACCGATTTCTAAAGGATAGAGATGCTTTTAGATTGCCAATCCTTACTTTTAAATTAAATAATTACCAACATCTTAGGAAATGGGGAAACATATTTTGCTTCAGGAATAGAGGATGAACATGAATCCTTTTATTTTTTAGTTTCAAATCCAACAATCTTCTTACATTTAGAACTTCATGCTAGGATGCTATGAGTGCTAAAAAAAATTTTTTTTTCAGTAGTCAGAGGAAAAAATAGATAAAATGGAAGCAAATGTTCCAGATTTAAGACCTCTTAGGATGAATACAGGGAACAAGAACTAGTTTGGAAAAGAACTTTTTTTTAGTAATTTATGATTTAAAAGTGGATTAGCTGAACAAGGGAAAGGAAAAAAGTCAAAGGGGAATATTTATGTCCAGACATTTAGATACAGTGTAAGAAAAATGAAATTTCCCAGCTCTGAAAACATTGGTAGCATCTCAGCATGGAAGGTAACTTTCCCCCTATTACTATAATAAATGCAAATATTTATACTAAAAAAACAAAAAAACAGAACCCAAGTGGTAAAATATGGCCCTCAAAAAGAAAGGAATTGGAACAGATGGATCTGATACAAATCTACACATGGGAAAAGATTAAGAAACAAGCCAGGCAAAGATAATTTGAAATGAAAGTCTTGATAGCAAAACGGTTTTTACTATATATTTTAATTGAGTTGTAAACTTCAGCTCCTGACAATAGTTTATAGACTTTTTCCTGCCCAAACTCCTAACTCTCTGAAACTGTTTGTGCCATGAGTAAGTGTGGTGGATAACTTCCTTCTCGTGTTCCAGCTTTAGTCCGTTCCTTCTTCATAGGCATTTTGGAGGTCACGGTAGCTCCCAGCCTTAGAAGAAAAGACTTGGATTTGCTTTGTTGAAAAGTCATGGGTTTTATTTTGTATCATCCCAATATTCTTTAAGGACCAAGAAAACCCTTTAACCCATGAATAGTTAGAATTTGTGCATTCTGATAGGAGAAGAACAAGATTTCCTCTGGGCGTGTGTGTTGCAAGTAAGTCCTAATGCCTTGACCTACGTGTACCTCCATCATATAAGCACGCCAACAGTGTGTGGCCAGCCCATACGTACCCCAAATCTGTTTTCCCTCAGCAGTTCCATCAAATGAATCGTGCCCCTTATAAAATCCCTCAGGTCCCTGACAGAACATAATAAAGGTTCATGTCGCTTCCTCCATGTGCTTCCTCCATAATGCTCCCAACACCTGTTGCCCCTAGGAAAGGGGGCAGTGAGCTAGATCTGGCTGGGATTCACACCCAACATGCCCATTCAGGAGCCCTCCTCTGCTGTTATGGAAGATGTTATTTAATTAGCTGAGGCTGGGAGCAGAGGGTACGTGATTCTGCAGCAAAGTTATCAGATAACCAAATCAGATCTGCCTCTGCTATGCAGAAAGAAACAAAATGAAGGTACAATGTAAGAGCAGACACAACCTGAGATGCCCTTGGGATTTGGGAGAAGGGAGGGTGCCCTTTCTGTTGTGACCTGACTCTTAAAAGAAATCTCCTGAAAGAATTCTTTAATTTAGTAATGAGTTGAAGTCCAGGGTAATGGAAGCCCTGGGGAAGAGAACAAAAGGACTGCAAAGTGTATTCAGCACCCAATAATGCGAAACCAAAAAACATCCAATCACAACACTAGGAAGTTTGGCAAAAAGTATTTAGAGAAATCTCTGGGCTTTCCATGGGTAGTAGGGTCGACAGACTTTCTTTTGAGTGATTTCTGGCTCTGAGAAACCTCTTTACTCACTAGAAAAGAACTTTCTTTAAATGGCCAATTTTATCCCCCAGAAAAAGAAATTTAAAAAAAATAAAATAAAAATAGGACACTAAAGACAGAACCATGTGACCCGGTAACAAACAAAAGGAAGGGTGCACTAGAATTTCAATAGAGTCCCTAATTCCATAGAAAAAGCAAGGCAACCCAACGCCTCTCCATCTGCAGTGCTTGAAGAGAGTGCTTGCGCCGACCCCGCCCCCCGGGGCTTTCTGGGGCTCCACATAACTTCCCCATTGGGTTGGCGGCAGCCCCTTTCTCTTCTTGTTGACATGAAGGAAAGGACTGTTCTCTTAGGTGCCCAGGAAATAGATTGCATGGGGCAAACTTTCAAAAGCTATCTCTACCCTGGTGCTCCGGCAGCATATGGTGAGAAGAAAAGGGACACAGAAGAGCCCTTGCTCTTGAGTGAGAATATTCTCGTATCCCCAAGGGCTCTCCGTGTGGAGTTGCCATTTCTAAGACCGTTTAAACCTCCACAAGAGGAAAAGTTGTGGTGACTCAGTGTTCATATAAACACAAAACGTGGAAATTGCTAACCCAAAGCATCGTTTCTAGCGCTAGGGATTAAGCTGATTAACCTAACCAAAATTCCCCCAAAGATTTGTCTAAGTCTCCGAATACATTTTTTCCCCTTGAACCCCGAATCCACAGTGGTCAGCGGTGTACATTGACAGATCCCAGACAATGGTTTGGAACACCAGGGTTTATTTCCAGTTCTTTTCAGGATGAAGACGTAGAGGATGAGGGTTGTACCACACGGGTTCTTTTTCAGAACTGTGTATTTCACTGAAAAAGCGGTACAAATGCCCCGGGTTGAAGCAAGTGACTGCAACCCCTGGATTCTGGTGGTTCCTCAGGCCCAGCCTAGTGCTCCATAAACTGAAACCCTTCGGACTAAAATCTGATCTGAAGTGACCTCAGTTGAGGGATTTTCACCAGACACCACTTACAGTGTAGAATTATTGCCTTAAATCAGAAAGCCCAGGGAAGAGAACAGAGGACAGAGGGGTCGGAAGGGTGTGAAGACATAGACATTTCTTGTTTTTAATGGTTGCATCGTCATCAGAATGAGCGCTCTTCATGATTGAAGATGATGGAAACAGTGGCTTTGCAGGGACGCATCACACTTGTCCGGAACTGATGGTTCTTGGGAAGTGGTTGCTCTTTTTTCATATCCTATTTCAGTGACAGAGGTCTGGGCTGGGTGTAAAATAGGCATCATCTTAGTCAAAGAGCAAATCCCATAAGACATGGTCACAGGTGCCTGGGATGTCAGTTTTCTTCATTTCCTTCATAGGGAGAACAGTCTCTACAAAAGCTTTCTTTCTCTGTACGGTATATATTTCTAAACTCGGTTTTCCTCACTTTTCATAAGCATCTGCTTTATCTGGTGGTTCTTTGTTTAAGTGCAAACTCACGACTTTCAAATCTTCAAGGAAGGAGCATAATCTGCAGATCATAGAGGAAATCTAGCCACGTTTGCAGGAGTCCTGGCTTTTGAGATACTTAATTAGGGTAGAAAAAGTTGCTACTAGCCCTCTTTCAAATTCAGGGCTTTCCTTGGTTCAGATGCCTCCATGAGATTCTGATACACCTAGAATAGAAAAAAAAAAAAAATTAACCCCATCAGAGACATCTGTTTCTACTCCTGTTACAACAGAAGTTTGTTATTGCCCAGCAAAATCATTGTAATTTATATGTAGATTCCAGCAATGAAAAGGACCTAACCCAGCTACTATGTCACAGCTGCTGTGCAGAATGTCCGTAAATGAGCACACGTTCTGCACGTACACACGCAGGGTGAGGTGCTCTCAGTACAGAGCTGTTCCACGCTCGTATTGCCCAGGGACAAGATAGATTCTGGAACTTGAAATAGTCCGGGCTCTCACAGATCTCCTCTCTGCTTCTGCTCTGCCTTCTTTGGGTGCACCGGTGCCGTCCGTTCTCTGTGATGAGGTTCTGGGGCATTCTGAAGGAGCTCAACCAGCAGTAATTTCTATGTACCTGTTTCATGAGAAACTTGACTATGCCATGTGGAGGAGGGCGCTCTTAATGAACTCCGCACTTGCACTGGATTGACTGGCGTGCGTGGACGTGTGGTTTGCGTGTGTACGTGTAGTCTGGGAGTGTGTGTGCCTGTCAGAGGAAGCACACACAGGCCCAGGTCCTGGTGCGTAGATGCAGTTGCCTCTGCCTACCGTTGTGCTCCAGACTTGTGGCTCCCTTCCCGGGAAGCAGTCACCTGCCCACTCTGTTGCTTTTCAGAGTGTTTCAGAGTTGGGAGAAACAAAGGCAGCTTGTTGGATCCACAGCAATCCTACGGTGACAGGCTGTTTTCCTCCAGAAGAAGGTAGAACAGAAGTACTCAAGTGGCGAGCAGACACAGAGAGCAGCAGTCTGGGGCACCTCTCCGGGTCTTCTGGGAGGGAGGAACACCGAGGCCAGGGAGGCAAGACCCGCACAAACTGTGATCTGAGCCGTCCATGGCTGAAAGGCCTCCATTGCTCTCCTCTGTGCAGCCCAGCGTGTGCCCACAAACACTGCTCGGCTGTTAAGTCTCACTCCCAAACGGAAGCTTCCTGACCCTGCCTGTATCTGCAGGACGTCATCCTAATTCCAAACTGTGTCTCCGGAAACCAACGTGGCCTTTGCCCAAGTCTTTCCAGGAGTGGGTTGTTTACCATGTCTAGCAAACCAGTAGACTCTCGGGGGAATCATTTTTGGTAATCTCTAAGAGTTGATGGCTCTGGCCCATCTCACACATTAAAGTAGAACGCCATTCTTGCACACTATTCTGAACAAATGGACCTGGCTCTCGTAGCTGACCTTAGAGAACGGCCTGGAAACAGTCGGATTCAGTTTGCTCCCTCCCATGCCCTTCTTTTAGTAGGTGGCTTATTATTTTTTTTGTGACATGTAGATGATTTCTGCTAATTTACAGAATTCAGAGGACGTTTTCTTTCCTCTTCTACTTTGGTGACTTTTCCCCTACCCCATTAAGTAAGGCTACTTACAGTTAGAATCTTTTCATTGTTATTATTTTTTAAAATGTATATTGTCTTTCTATATCCAAAAGAAGTCTGTGACTGTAACCATAGGTATTTCTTTTTACTGGAAAAAAAAAATGAGGTTTTTTTTGTTGTTTTTAATTCACAGTACTAGTGACTCTGTGAAAGAACGTGAGTTACATTTAGGTATGCTTACTTAAGTACAGTACACTACGTTGCAGTATTTCTGAAAGCTAGAACATACACATTATATATAACAACTCTATATTGAAATATATATTACATTATATTCATTTTAACTTTTGAATCCGCCTATGATCATGAGTTGATTGACATATTATTTCTTCGCATTTATCACCCATCACCAACCTGCTGCAGTTAATCTGGTGCATTTAATAATAATCACGACTGCTCTAGTTTGCTTTTTATATTATCAGCTTCAGTATTGTCTTTACAGGATTTTAGAATTTTTTTAAGCTCAGACTTAGCAAATGTAGGAAAGTGAAAACATTTTTTTAAGAAAACTTTGTTTTTTTCAGTGTGGCCGATACAAAGAGGTTCATATTCGAAGTGGTCTTGTTTAGCTGACCCTCTCAATATCTGAAGAACAAAAGAAGTGCATATGAATGTATCTGTGATTTTCCCTTTGAGGACTGTCACTGTCTATATTTGCTTTAGAAAATATGACCAAGGGGCTGCTTAACCTCCGTATGATCTGACCAACAGTTACAGGCTGCCGTTCAAAGGGCTGCTCATAAGGGAATGAAATGCCTAGCGTCCCAACTGGATTTCCAAACCTTGATTTCCATACTGCTTCTTTACGGACTACTGTTTGTTTTCAGTGTGCTTTACGATTATTTTACCTAGTCTTCAATGCTCCCCTGGAGGCAGCTTGACAATATAACATTCATTTTCCTAGGAGATTTTCTTTCTTAAATAAAACCAGAATTTGAGGAACGTTTTCATGACAGAGGCCGATAGAAATAGAACCGAGAAATAGCTCATTTTTTAGCCCACAGAATCCATAAAATGGTGGCTCTTGGGTGTCTGGCCCTCCGTATCGCCATTCGTCTGTGAAAGTGGGGATTTGGTGCCTTTCTTCTCCAGCCAGGTCATCATGGAAACTTCAGGAATGAGGCATCCTGTCTTCCTAGCAAGAAATATTTTCTAAGTAGTATTTTCAGATAAAGAGCTTCTTCGGCTTCTCTTAGCTACTCAACCCAGTGCCTGGAAAACTCCACTGTTGGGTAAACTTTACATCCATCCTGGAGACCTAGAGCCGGATTCATTCTCTCAGTTCTCCATTCAGGACAAAATGACAGCAGTTTTTGATACTCAGTATGAAAGCCCTTCCCATACTGGACCAATAGTAAAGCCTCTCAGTATGACTATAACACCAATTCCTTCCTTTCGTCTCTCCTAATAGATTTTTATTTCCAAATCCCATCCCATTCTGCTGTGCTCCCCCAACCGCAGCCCTGAAACAAGTCTTTCCCAACCTCCCCTTATTCAAGCTCCCAGCAGTGCCCCCCACTTGTGAAGCCTGGCAGACCTACTTCAGCCTACTTCAAAAGGGCAACATTGAGTCTAGTAGCAAAATTATGAATCTGTTTCTCCATGGTTTTCAACTAAATATATTTCTACAGGACGGACATAATTGTGATTTGGGAGTCAGTGAGGCTGCTCCTTTTCCGGTGATCACATAATACCCAAACTGTATCAGTTTCATTATTTTCCTCTTTCCTTTTCCTAACCACGTTCTTTTATTTCTTGTTTCTCTTTAGGACTACTTTAAATTACCTTTTCTTCTCCTCATCACCTGAGGAACTCGAGTAATTATGACCCCTGAGTGCTCATTTCCCTCCTTTCCCCCCACCCCCTTCCCGAATGTCCTTCTCTAAGTTTTATGCAGTTAAAGAGCATTGACAGGAGTCAGCTCATCAACTTGAGACTCGTAGGCAGAGTGAAGAAGAAGAATGTCTTCACTGTACCTTCAAATTTTAGAAGTTATCAATATTCTTTTGAGAGTGGGAGGACCTGAGTCACAGTTTTAAATGTCAGCTGTACTAGTGAGGTCATTAATTCCTTTCACCTTCACATTTGGCCAAAGGTAAAGAAAAAAAATATACTTTCTGGGTTTTTTTTCTTTAAATATCACAGCGTTCAAATTTCTGATATGAGTAGACCATTTCTGAGAGGAAAAAAAAATCATCAATGTTGGCTGTTTCAAGTCCTGCTAATATTTAGCCAGATGACATATTTACCCCATACTAGATTTACAGAAATCTGAAGAAAGAGGTAACATTGTAAGATAATTTTGATAACTGCTCAAGCCTTAGTAAACTCTTTCAAAACAAGTAAAGCCACTTCCACTGAAGTAGGAGGAAACAATTAGGAAGAATTTTTTCATTTGTTATCTTTTTGAAAAACAAATAATTGTTGATTGATTTGGAACTTCAAGCAGTAATTTACTGAGGGATGAAAAGATCCGTAAAGTGTCTAAAGTGTCTATTTTACAAACAGTTTTTTTTAGATATATATATATATATATATATACATATATATATGTATATATATATATATATCTGACTGGATACTTGAAGGGCCATGTAATGTACTCCCCAGTACCTAAACACTCAGCATATAATTTAGTCATCATGCTAGATCTCCTTTCAGTGAGTCATAATTGTCTGGTTGGCAAAATGTTGCCCAAAAGACTGATACTGTTCTGGATCTGTCCGTTACAGAATGTTCATAATGTAATACCCGCTTTCCTCACTTCCAGTCCATGACTCTTGCCATGCTCCTACAGTGCCTCTTGGCTCTCAGGAAGACAAATTCTGCGGCATTTAGAGTACTACCTGGTTCTGAGTGCACAGACATGCGCTGTTTTATTTCTTGCTTTACCCACTGACAAACAGAATCAACATGTAGTATCAGAAATGTATTCCTAACGTGACGAGAGGCTTGACCCATCTCTCCTGCCTTAATTAAACCAATTTATAACATCAACTCACACCACAGAAAGCAATGAAATAAAGAGAGAGTTCAGAACCTTCCTGAGTTACACATCTAGTAGGACCCCAGCGTTTCTTCAAGCCAGTATTTATGTTGCCTACGGTGGCGATCTTCACTTGGCACGTTTTCCCCGTCAATCCCATCTTCCTCTCCTCCTTTGTCCGTTCTCCCTCTATCTCTTCTGTAGAAGGACTCTTCATCTAAAGTACTCTTCTCCCCAGGCTTTGGCTTCTGAAACAGTAGAAGACTCTCTTTTAAATCCTAATGACTAATGTTTAAGGTGTAATGTGGCGTAGGAGAGGATTCAGTTCTGCCACGTCCCGTTTGGTCCAGTTAATCGCAAGGATTTCTCCAGGATGCCTCTTTGACATTGTTCCTTCTGGTTCCCCGAGAAGAGCTCTAACCCTGAGACCAGGATTTCTCCCCACAACCTCTGCATTAGTCTAGGTTAATGTGCAAATCCTGCTAGCATTCTAGAGACTCCAGGATGTGACTCTCTTATTGCTTAGGAGCCCCCTGCTTTTCGAAACTGACATCTGTCAGGAGCAGCAAGAGCCCTACCAGTCACTAATGCAGCAACACGATGGTCAGAAACATTATAGTACATAATAGGGAGGATAGGAAGAGATTTCATTCTTCTTTTCCCCCATAAAAAACTTGCTTCCCCGCCCCACCACCACCATGCATTTCAGAAAGCCTGCATCTCATTTTACAGATATGTAGTTTTAGGATTCGCAAATATAGCTTAGGAAATGTTCTGAGATTGAAGCTGGTAGCGAACCAGTTTATTTTCTGCACTGGACTTTAGGACAAGTGTGCACAGATACAATTCCTTCAAAGAAAGTGAAACTGATATAGTAAAGCAAAGGGATAATACTTTGACACATTAAAACAGTTGTTTGCTCTCTGTAAACCTTGACTTAGGCATAATTATTATTTTTAGAAACCTGAAACTGGAGGAATGTGTATTTTAGTAAAGTTTGTTGTCAGTTTATTTGTTTCCCTTTATCTCTTTCTTCTCGAGATAGTGAAAGATTTTGATTCTTTAATTTGATACTGTCCCTGGCCATAGGTATCAGTCAAATAATGCCCACCCTTACCATACGCTTTTCCTTTTAGAATGAGAGCCTTCCTTCCTGCCATTAAAGAGTCTTTTCTCCTTGAAAACCTTATCTTCCTTTACAGTTAGCATGAGAGAGCTTTGAGGAGAGGGATTCTCTCTGCACTTTGAGGGTAGAATCGTTAAAATAAAAACTATTTCTTGAGATAAACCCCATTTACCCAAACTAACAGGTCTGAGGCCAAAGAATGGGAATTGATTGCAGATGAAGGTCTTGTATTTTACACTACAAATCTTTATTGCCTCCTCCAGTTTTTGGAGTAAGGCTGGGAATAACTGAATGAAAATCTGCTTTGGATGTTTCTTACTAATATCTAATGCAGAATACCCAGAAAAGACAAAGAAAGGGTGCTGCTTAAATGCACAATCAGTCCATAGATTTCTATAATTATTCAGATTTCTCTTCTACTCATTTCAAAAATATGTGTCCATGAGGTCTTCACTAGAGAAACATCCGCTTCTCCATTGTTCCTCATCTCCCCCACCTGGCACTGGAGGGGAGAGTCACAAGGGAGACCGGTGCCGCATCGCCAGCCCTCCACCCATCTGTACCCCACCACCACCACAAGATAAGGAAAAACCAAATTAGAAACTTTTTTTGAAAAAAAAAAAAAGGGAAATTGTAGTGCTTCATTTGAAAGAATACTGTTTTTAACTCAATTTACAGATAGCCTGACAACCTTTTTATAACCTGTCTTTTGTGCTATAATTTGCATTTTTAGCTCAATCTTTAAAATAATTGCAATTTCAATTAAGTGAACAGAGGAAAAGCAAAGAGGGGAGACAGGGCAATGTGATGGGGCTAAATCTGATACAGTTCTGGATTCATAAGGCCAGTTCTCAGGGTTACCAGGGAAAGCTAACACCACTCACCCTTACCATTCTTGCCCATCCTTACTATTAGAGTCTTAAAAGTTGGTCAGAAAACCTCACTTCCTTATGATTGAAGACTTTTCTTATTACTGTCAAACCCACATTGAGAGAAATGGTACAAACCCCTGACGGCACCTCTGCCTGAGCTTCCTCCAGGGCGCGTGCGGAGAGATGCCGGGAACCGAAGTGTGGGCTCAAATTTGATACAAGACTCAGACATGGTCTCAAGTGCTTTGTGTATGTTCACTGCCAAGGGGTTCGTTGAAAAATAAGGCCAGTTTCTCTGCTCCTGCTGTCCTTGGGACAAACTTTGACTTGGAACCCTCTCTACAATAGATTCGTAGGAGAAAATTCTCAAAAGCATCGTCAGCAGTTCAGCTCCTTCCTTAATCCCATTGAGTTGAACCTCAGTTTTCCTGAGGAGCCCTACTGAGGTAGAAATCAAAGGTAACTTCCGTATATTGAATGAAAATTGGCTTTTTGCCCTATTTGTTGAAAGGATTGTGGTTTTCAGGAAAAATGAAAGCAGAATTTCTTAGTAATCCTCATCATGGCACACAAAGGCAAGAAGCTGATAGGCTAGAGAAAAACCTATGATGAACTTTTATGTTTTTAAGCAATCTGACTGTGCTGACCCCACTATGCCAAACGCCTTTGTTTCTACAATCTGTTCTCAACTATGGATTGATTCTCCTGAGACTTCCAGCACGCGTGTGTCGTTTGAGCAGACACACAGGTTTCCATTTGGAGAATGGAGACCCAGACAAGCCAAAAGCATCAACTCTCACGAGTATCAAATACAAATCATTTCTCCAGAATCACTCAGTTCTGCCGTATCCCAAACCAATTCCAGACTAATCTTAAGTGAGAAGTAAGCTCCATAAGATATCCTACTATGAATGTTTTTTCTTACAGAATAATACAAGAAGAGGTACAAAGCAGATTCTTAATTTGGGTGTAATTATAATTCACTTTTATATTTAATAGTTGTACTGTTTGTGTGAGTGTGTCGTTGAGCTATTAGTACCAATTTTCAATCTGTCATCCTGAGAGGGGCCTTGAGAATTTCTGCAATTTCTGCATATGTGTGTGTAGATCTGTATTTATGTGTTGTCAGAAAAACAAAATGAACGGGGGAAGAACGAGGGGAGGGAGAAGGTGGTCAATGTGAAGAAGGGACTGCTCCTAGTGTCCCTATTTCTGTTAGGTCAGGTGGCTGCTGCCAGAAGCCCTCCAGGAAGAGTTGATTGCACTATTCTAAAATAAGAGCCCAGCACTGTTAAATTTAGAACCATGTTTTGGGAAACAGGAAAGTTTTATCTTTTTCTGTACCCATTCTCTTTAGCATCAGAGCCGTTTGACATGATGAAAACCATTCAGTAAAAACCACTACTGACCTTTGCATTAAATAGCTGTTTTCCTCTTCTAAATACTAGCCCTGGTTTCAACTCATCTACTTCCCTTTATTTTCTGCCTATTGATTTTAACATTTTACAGAAGAATACAGAGGCGCATGCTAGTTGTTCCTCTCCTTTGAGCTGAAACAAACAGGGGCAACAAGAAATGACTCACTGAAGAGTGAGGTCAAGACTGAATTTCCCACTTGTGTGGCACTGGTAACCTTTAGCAAGAACTGTTTAGGGTTGACCTTGGGTCTATATTAGGGCTTTTTTTGGGGGGGGGTTGTTTTGTTTTTTTGTTTTGGGTTTTGTTTTGGTTTTTTTTTTTTGCACTAAATATGACTGCACTGCATTGCACTACTGAAATGTATTTACTTGTGCTGGGAGAGAGTGTGTGAGGTATGGGGGAGAAAGAGGCAGTTATGAAACAGGAAGCATCACAAAAACGGAGAATTCTTTCCGCCGTGCTTGGTCTTAGCAGGGTTGGTGAGAATCTGTGGAATCTGCTAACTCTTGATCAGGCCCAGAAACTGCCATGCTGATAGGATCTGTTGTCTTATGGTCAAAAAGCTGGGCTGGTACAGTAAATTGGAGATGTTTAAGGAAAAGTTTGCCCAGTGTTGTCTCCAACTATGCTTCTGGTAAGAGTTGCAATGGGTGAGGGAGCCAGCCGAGGTGAGGTTGAAGCCTTCACCTTGGCCTCCACCACAAAACCCCTTGCTGACCCACATTCCAGTGTGGCAGAGGGCGGTGGCGTGTCCTGCTTTCAAAACAAAACAAAACAAAAAACAAAAAGACAGCCTTGTCTGTATTGGAGACATCCTTTCAGCCTGCGCATGCTTTTCTATCCCTGGGTGAGACCTAGATGAGCCTAACCAAAGAGGAAGGCCGTGCACGGGGTTAAATCCTTTAAGATGGCAGTAAGGGAACAGTGCAATAAACACTGAAAACCAGTGAGGTGAAGGGTTTATTTTGAAACAAGGTAGGCCAACTTTGAAACTGAAGGAAGGGTTGGAGAATTGATCAGAACCTACTTACTAGCTGCTCCATCGTAGACTATCCTTTATTAAGCAGAAGACCTTAACAGTGCCTAAAAGTTTAGTTTGGAAGTTGCTGAACTTTTTCAATTTTTTATTGGATTTCTTTTTATTGCCTTTTCAAACCTGAGAAGTAATTAGCGTGTGACAGCTCTTCAGTGACTATTAATAAAAGAATCTTGCACCACAGGAAAAACAATCAATTGTGTAGGGCACAATAACACCAGAGTGGAGATGCTGAAGAGCTCTCCCAGAATCCAAGGCGACAGCTTGGAAGATTCTGGTTCTGTGAGAAAGGGTCACAACACATATACATGGGTAATGTTGAATTTCTCTGAACACTATCACATGTGGGGACATCAATTTGGAAAACTGTCAGTTGAGGTCTCTTTCCTAAGATTACAATATTGATACTTCTCTCTCTCTCCTTCTCTCTCTCTCTCTCCTCCTTAGCATCCATCCAAGTCTACTATTACAAGGTAAAAAATTTGTAAGGGAACTGTCAGCCTTGTGAGTCAGAAAAAAACACCACTTAGGGCTTTCAGAACTAACGTAAGCAATCCCTTAAGCACTCAAAGCATTATCTCAGTTTTAAATAGGAAACTCTAAATTCAGAGCTATTAACAGGTACTTAGAGATGTGTATTGCGTAAGCACTAAGACGGTATTGACTGCACCAAACCAAAGGTATAGAAAGAAATAATTGACCTTTTAAGATACATTCACATTAACTGTCCTAGGATACTTCTCTTGAGGCTTTGGGGAAACAACTTCTTTTGTGAAACTTGCATACCCATTCCAGTTTTGTCACCAAAGATTTTAATCACCAGAGCCTAATCTCCTCTCTCCCAGATAAAAATAATATGACAGGCTCAAGGGGTATGCTTTGGTGGTCAAGGGATGACACTTTGGTTTTCACTGTATTCACGGTGATATTTACAGGACACTCGTTATTAGAGGAGCTACCGAACTGTCTTCATGACTTAGGGTTTGGCCAGAGGTTTAAAGAGATAGGTGAAAAATAAACAATAGTACCTTGACACTGTAAACTAGTCTTTAATAGAGTCATGACCTGAAGACTGATGGAGAGAAAGAAACTTCCAGGGAAGAGAGTGAGCTAAATCACATAGAACTAAACAAGGATCGTTGGTGAAATGTGGGGCAGTGTAAACAACAGAGCGGATCGCTGCTCTTTGTGGCCAGACCCACAGCAACGGCCGGGGGCGAGTCAGACAACTGGCAAGTGAATTCAAGTATTGAAACAGCCGCGCTCTGGGTTTCGCTGTGGTTGGCGGAGCCCATGGCAAGGACAGTGCTGAGGCTGCCCTGTTGTGATAGTGCCTTTCTTGTAGCAAGTACTCGGTGAATAATTTGTTCAGTTAGGCTTTTCTGGACCATTACCCCCAGTCTTCTGAGGAGGTCTGAAGGGATAGTGTTCACTTAGGATGAAGGGACAGGATATTGCTCCTGGGATGATGTGATTTGATGATATTTGCACTAGATTCTAAACTCTACTTTAAACTGGAGCAACTGAATAGAGAAAAACCAAGGATGGTTCAATGTTAAAAGAAACCAAAAGCAGTATTTTCTAACTGATGCCTCTTCTTTTTCTTCTCCTTACTCTTGTTCTTCTCCTTCTTCTTCTTTTCCCTGGAAGGGAACTTCATACCTGCTGATTACCAAGCTCAACTCGAACCAATTCTTTTCCTTCCTATTTTTTCCCCACACTGAACCTTCAGTGTGAATTCGCCATCAGGTAGGCATGGTTAGTGTAAAGGGCGTCTGTCATTACAACTTTGCACCCGTCCTCTGCGTCATCAAGGGCATGAGGCAGTGGGGGGGGGGGGGGACGGCGAGGCTCCTCCAGAGCCACCAGCCCTTAGGACGGGTGAAAAGCAGAGATTTCCTATGGAGAGCTGAGCTGACACATATTTGTCCAGAGGACATTGGAGCCTGTAATTAATCCCAACGAATGCTTAGAAAGAGAAGGAAACCCACGTGTTGAAGAAAAACAAGGAAGGTGGTGCCCACAGTTTGCCTGTTTCCCCTCTCTCTCCTCTTTCCCACCTCACCCCCCTGTCCTCTCTCAGAATTGTATTTCATCTTTGTATTTATGTTACCAGAAGAATTATTTGGTTCCTTGGTTTTTCTCTTTATCAGTGGTCTGGGAACTCTTCCAAAATCAGAAACAGGTACCATCAGTGGCTCCCCTGTAGCCTACCAGTTTCTCAAATGCTGTCCACCTGGTCTTGACCCAGTCAACTAAGATAACTCGGAAGCTTTGGCTGGCTCAACCACCTGTCACTTTATTTTCATTTTGTTTTCATTTCCATTTGAATTCTGAGTGATCTTATGGGAAGGTGGAAATCACAGAAAAGGTTTAGAGGCTGCAATTCTAGGGCATAGCTTGTCAAGAGTTTGTATTATCCAAAATATAGCTTTCTACGCCTGTTTTTCTGTTGAATCTGTTGCCCTGATTATAATTTCTATTATATTTGCGGTTATTTTTATAAGAATAGAGTCCATTTGCTATGTCTATTTGAGTACTTTTTTTCTATTTTCCCCACATGGATGCAGTACCAACCTGTTAATGAAATATCTTTTTATTATATTATTAATATGTAATTCTACTGTAGACCAAAAATATAAAAACAAATTTGCTCATTTTAAAGATATAAAGAACTAGTGAGTTAAAGATGAAGAGTTGAAGGAAAGACAGAAGAGCAGTGGTTAACTATGTTGAGTTAGAAATCTAAGAGTAGCCTTACCTATTTTTAACCAGTGCTTGCCAGTCATACCATAGTTGGGATTATATAGTCTTGGCTCCTTCATGCTTATGTTCTATAATTTTTGTTTGTCTGTTTTTCTTTGATGTAATTGAGGTTGCACATCATGCTATTTTTGGCGATGCCTGATTTTATTATATTGTACTTTTATCAGTCATTTCCTTTAGAAGGATGGGGGGAAAAGTTTTATTTCTTTTTTTTTTTAATTTAAAATTTGTTTAATGCACTGGAAATAAAATTGGACACATTTCACTGTTCAAAAATTCAAAACCAAAACAGAACAAAAACCACAAAGAAAAAACCAGCAACCAAATAAGCAACAGAAAAAAAAAAAAGCTATGAAAAAACCACCTATTCCTACCGAATACACATATAAAATCTATCTCACACAAAAGAGAAATATCATCAAACAAGAAATATAAGTCCTAGAAGTTACAATGCTGGAAAGAAGACAGCTGGGCTCAGTGGGGATGGGAGACATGGGGCATTCCTTTGAGATCTGAGATCTCGCCCTGGTTCCAGTGACTGCCAAAGGGGTTAAATGTGGGAGAGGCAACTATGGAGGAAATAAACCCAGCATTTCTGGAACTATCACCGTTTTATCCTATGCTTGGGCTCCATTGGGGGTGCGGGGGGAAGATGTGCTATGGTTGAGAAGGTGGCTTGTATGGAGGTATGGGTACAGTCCACAGCCGCACGCAGTTCAGGTCTCTGTCCACCAACTACCTCACGTGTTTCTTTTCTCCGTGAGGATTTCAGCGGACGGGCCCGAAACATGGGAGAGACCGTTCATGACTCGTTAGAACATCAGCCAATGCTAAAGAACCTCTTGACTGCAAGCTCACCCCCTTCTTCAGCATTCCCGGTACCAGCAGAGCCAGTCAACCCGTACAAACGCACAGTGAGAGGGAGACAGAATTTGCGTAGCGGAGCGGCTGTATCATTTGTTTAACGTTTGCTGGGTTTTTCTGGTTTGGTTCTGTTTTGGAGTCGGGGTGGGAGTGGATGTAAGTACACAATCCTAATACAGTAATTGTTTTGCATCTTCCATGTTTTATGCAAAAACAGACATTTAAATCAATAACTAATTGTGCCCTAGACTGAAAGTTAATGTTTAGGAGAGGAAAAAAATTGTTGGAATTTTTTCTACATTTTTTTGTGAAGAATCTTTTTTGGAAAGGAAGGATACATATTTTTGTTGTGTAATATTTTCTATTTTTGAATGCATTTTATTGGTACAAGACTGTTTTTTTGGTGAAGACATTATTTAAAAAAAAAAAGAAAAAAACTAATCGAAAAGTTTGCCCTTAAGGATATGCTGCAGTTTTGAGGTTAAAAAAAAAAAAATAACTGATTCAAGATGCGTGTTAAAAGTTGGGATTATATTGTTGTTTTTTGTAATTGTTACAAGAAGAAGTTTGTACCCACTGCTGTTTATTTTGTTTCAGATGAGTAAGTAAAGGGATTGTTCTTGTTTTATTCTTTTTTTAGAGAAAAAAAGCTATTTATGAAATGTCAAAAACACTGGACTGTGAGTTTAAGTGTGGAAGCATTTTACCACCCTGTGTCTTCGACCAATTATGGGAAACCCCTTTTCTCTTCCCCCCCGCCTTAGCCTTGCCAAATGAGAAAAAAATAGAACAGCTCTCAGATGATGCACACCACTGAAGCCCTGCTTTAATTTTTACGGTTCAAAAAGTCAGAAAACCAAAGTTCAATTTGTTTCTGAAACCCCACTGTCCGTGGCCCTTTTTTGTAGGACACAGCCAGTCGGCTCTGCCTCTCCGTCTTGGATCATTGCCTTCTTCAGGACAGGGGGCCAGCTGTGACACAAAGAGAAGCAGAAAGGTGGTGAGCCTGAGGGTTGAGGTCTCCTGGAGCAGATGTGAGTGGGACTTCAGCCTCTCAGCGGGCAACCAGGCTTCCCCGGCCTGTGGCCAGGCTGCCCCACTGCCGGAGGAGGAGAGAGGCTGCCCACGCCTCCACCCTCCGCTTCTAAGGCCCTTCTGTTACCGTCGCTCTCCAGAATGGCTTTGCCTTTCTCAGCAGCCCGCATTCCACGGACGGGCTGGGGGGAGGAAGGATCCAGTTGAAAGAAATGGGGAAGGTAGGACAAGGGACCCTCTAGCATGAGGGATCTTGTCCGCCTCAGCTTTGATTCTGTGGATCGTCCACCCATCTGCTCACTGTGAAGACGGAGAGGCAGAGTGCCCTACGGCTGTTCAATAGCTTTCTGTATTTTTTCAACATTGAAAAAATAATTTTTAAAAACTGTGATTTTTTTTTTAAATCATTTGGCTGGAGGGAAGGGAAAAGGGAAACACCAAAAGCTGTAACATGATTAACTGGAGATATTTAACTGGGGGCACTTTCTAGACCAAGACAAACGAATTCCGTTCTGGACCCTAAAGCAGCCAAATCTTGAGACTGTCAATGACAGAAAGCTGAAGAGAGGCCTCCATTTCCTCCTTTCTCCTTTCTTCTCTCTGTCTCAAAATTCTCTCTCGTTCTCCTTTTCCAACTTCCCTTGGACTACTGACCCAATGGCCCTTGGACTCCCATTTCATGCGTGTGTGCACACGTGCGCGCACACACACACACTTGCAAAATACCATTTTTCTTAAGGATTGTGGGACCGAATAAAATCATGTGCCTTCATTTTTTCCTTTTATAGTTAGATGAACCTCTTCCTTTTTACAGTGCTTAAAAAAAATAGGGGAGGTTGAAGTGTTAGTGGGACTTGGGCATCGCTTGCGAAGTAATTTTCATTTAACACATTCCCCCTAAATATGAACACAGACACGTCAGCCCCTTCAGGATGCTCTTTGGCCATTTAGAGCATTACCTAACCAGATATGTGACAGCCTGAACCCATTTGACTTTAGAGCAATTCCTGACAATTCTCTTTCATACACTTCTTTCATTTTTACCACAAATGAGGTGAGCAATGGCAAGCAGCCTTGTTCTCCGGATCTGGTGCTTTTGCGTGTGGCATGGGGTGGGCCTGGGGGTGGGGGAGTGGGTGTGTTTCGATAAAGGGTGCATTCCTATAGATCTCTGGTGCTGAAGGGCCTCGAGTTCCTTCCAGAGACTGCATTTGACACACTTTAAGTACACACAAGTGAATGGTATCACATGCAATATTTTAATGGAGCAATGGGAGAGGCTCTTTGAAACGGGGTTTTGCATCTTTTTGTAACATTTTGATTTCTCTGGTGCCTTATTCCTACTTGATGCTGGCACTCACATACCCACAGGGAACGGACACAGAAGTCAGCCTGGGGAGTGGGGACCCTCGAGCAGAGCGATGCTCGAGTGTGTGGGCGCGGGGGGCGTTGGGAGGTTGGTGTCAGTTGGCTGGGAAGGGACTAGATGGCATCTCTTAGCCGAAGCCAAGCAGGAACTGCACAAACCCACACAAAGTGAACAATTCCGACCTGCAAACACACCGCAAACCCACCCTTCCTCATCTGAGCTTTCCTTCCTTCTTCCTCTTTGATCTCCGCCTTCTCGCAAAGGTGCTGCTGCTGCTGCTGCTAGGTGCCCGGAGTCCAGAATGCCCAGTAATCACTCAGGCACAAGCCTGGCACTGCCACGTCAGCCCCCGGCACGACCAAACCCAGGTTTCTCTTGCTCGGGGCTGAGAACTGTCAGATTTTTCTCATCAAAAATGTTTTCCAAGGAATCAGTGGATTACAGTCATTCTGCATTGAAAATGCACTTTAAAAAATAAATAAAAGCTCCAGACTGTTTAAAATGTACAGAGGGAGCAGGGGAAAGATAAACATGTGCTAGTGTCTGAACCCAGTTCAGTTTATCTCCAGTTGAAACAATATACACTATATTATGTATAAATGTATACACACTTCCTATATATATCCACATATATATAGTGTATATATTATACATGTATAGGTGTGTATATGTGCATATATACACACATGCACATAACAAATCCAGATGCTCATTACAGATGCTACACAAACAGCAGCAGAGGAAACAAGGTTGGACTCTTGCAACAGATCACAAAAAATAAAAACAGCCACTTGCAGTGATTTTGGTTACTTCTGTATGTTCACAA +>XM_008328421.3 PREDICTED: Cynoglossus semilaevis SLAIN motif family member 1 (slain1), mRNA +AGTGTTTTTTCCGTGTTTTCACCCAGAATATTCTTTTTAAATTGTCTCAGTACCATATAAATGTTCTTTTGTAAGGTTTTTACAAATACTTTATCACTGTATATATTATGGTTCAACGAGTGGTCGCTCAAATCTTAAAGTAGTCTTTTTTTTGTCTATCTCAAAGACAAATCTCATTTTAACGTCACTTTTACGAACATTATATTCATAATAATATTAATGTTGTGGCTGAATACAAAGACCAGCCTTTAAATGGTCGACCAGTACACTGGATTATTTTTGGTGTTTTTCTCCAAAAGAGGAGGTGCACACAGTCTTCTTTGTCACTTCGGTACGCGTGTGCATTTGGAGCGTAAACACTTCCTCAGCAGAGGAATGATGGGAAGTTCGGCTGACCAATCAGAGAGAGGCTGAGCAGTCACACCAGCAGCAGCAGCGGCGGCAGCATCAGTGTGTGAGTGTGTGTTAGGGTGAGTGTGTGTCGGTGAGGGGGGGGTAAAATCTGGACAGCCGCTCTGTTGTTGTGAATAGTTCCCTCTGCAGGCGGACACACACAGGGCCGCCGTGCGTCCTCCTCTGTTTGTGAGCCTCCCGTCGTCTCCATGTGCTTGTTACCTGATGGAAGCGGAGGTGCTGAGTCCCAGGCCGATGATGGCAGATGTCAACGGCAACAATAAGATGACCAACGCGGAGTTGGAGGTGCTGAAGCTGCAGGAGCTGGTGCGAAAATTGGAGAAGCAAAATGAACAATTGCGCACCAGGGCCAACGCTGTAAACAATTGCTCTTCCGGCGGCCCTCACCCTCACCCTCTCCCTCACCATCTCCACAATCAGCAGCAGCAGCATCTCCATCACATACATCCAGATGATGACTGTCTGAGTGGCACTTTCCCCAGTAAATATAACATATCCAGTCCTATTCGGTCCCTTTCGTCTGCGCTCGAAACCCGGAGTCCGTCAGAGGAGCCGTTCTCTTATTTCCAGCCGAGCTCCGCGTCTCCTGATGCCGCTGAGGAGCAGAGAGGAGCTGCTGCTGTAGGAGCTGCGGACACCACTGTTCTGGATGAGGTTGATATTCTGGACCTGAACGTCGTGCTCCCAGTTGGAGAACCTGATAGCTGGTTGTACGTGAGTAACAAATCCAAACAGCGCTGTGAGAGCATCCTCACTCCTCTGCAGTGGTGCAGGAAGGTTCTGGACCACCCAGGACCAGAGGTGGAGCTGGCCAGGATGACCCTCGGTCACAGACTGGACCAAGCTAAGCGTAGGCGAGGACTCTCCTCCATCCGTCCCTTCAGCTGTATTGAAGGTCTCTCCACCCTCAGCTGTCCTGTCCTGCCTTACACTAAATCTGCTTCACTAACAGAGTCTCCAGCTCCGGTGGCATCACCAGATCAGCCCAGTGCTCCAATCAGAACCAGCAACAGTCTGAGTGAGAGAGCTTCAACCTTCCTATCCAACACCGCCCTCCACAGCTCTGCTCGCAGACATGCAGCCCTCAGCCCTCAGTCTTCCCTGGACAGTGACGCTGGTGTGTCAGACCTGGACAACGAAACCATCTCTATGGGCTACAAACTGCAGGACATGACAGATGTGGAGGTCATGGCTCGACTTCAGGAGGAGAGTCTCAGGCAGGAGTACAATGCCTCTACCTCAAACACAGCCAGCCGTCGCAGCTCCACTCATCTCCAGGCTTTCNNCCGACATTCCCTGAGACGCAGTGCATTAGATCTGGAGGAAGAAGAGGAGGAGGATGAGGGGTACGACCAGCTCCCCCCTCCTCAGCCTGAACTCTTTCCAGCGGGCTCCATGCAGAGGACAGGACTGTCCCACTCTCACACCTTCTCCAGTATCAGAGACTGTAGACGCAGCTTGACCACCTCTCAGTTTTCACTCAGTGGACTCTCCCAGTTCTCTGGTCTCCTCACAGAATCACAGGCTTCTTACAGAAACAGCACAGACAAGCTACGGAAGAGCATGCCCAACCTGCTCCGAACTCCCAGCATGCCCAGTGTTCCCAGTATGCCCTGCCTGGTTTCCCCTGTCAACCCACCCTCCCACGGCCCCTCCTCCCTGCCAACAATACCCTCCCTCCGCAGCAGCCAGAGCTTTGACTCCTCCAGTGGACTTGCACGACTCCAGTCCTCCTCCATTCCTTCTCCAGGAAGCCTCAGCCAGCGAGTCCACAGCGTGACCAACTTCTCTACCGCACCTCGTCACCCTCTGAAAGCAACAGCCTATGTGAGCCCCACGGTGCAGCAGGGTCCCACCAACACTTCTCTGTCCACTTCCACCAGCCTACACTCCATCCCCAGCAGCACTGCACTGCCTCAGCCCCTGAAACCCAGCAGCATTTTGGCTCCGCAGACATTAAAGTCCAACTCTAACCAGCAGCCCTGTGTCCCTCGCAGCTCCCTCCCTCGTCCTGCCTCCTTCGTGGGAACAGGTGGAGCTCTACGTCCAAGCAAACTCACTCCACCAACACGCAGTTTGCTGACCCCTCCAAAGAGCCTGTCTACACTGAGTGCCCTGAGGGACGGCAGCTGGAAAGATGGCTGCTACTAAGTCTTCAGGTTACATATGTAGCCCTGGTTCACTAAGTGGCACGAGTGAGAAATAAATGCTATGAGAGAACCAAATTTAAAGAAGTTCCAGTGGTGCACAGGGTAATGCTGCACAGCAGGAGAGAGAGAGAGTGACTGGTACTGTTTCTTCAAAGCACTTCTTGTTGATTAAGGACTAAGCAAAGACTGTGAAGAGTATGGTTCCAGCAGGCTGGATCTGTACCGACTATCTGCTGAAGAGACCTGGCAATACGTATTCTGTTAATAAGTTGTTTGATGTGAACTGAATCTTATTTGATGTGTATTTTTATTCATTTATAAAAGTTTAATTTGAAATTAAAACTTTTTTCCAGTTGAAATCTTACCATTAATAATCCACAGCTTTTGCACGCGCCTCAATCAGTTTCAATGCAATTTAATTTGACAACATTTATTTTCCCGCCATTTCAGAGCATCTTGTCAGATTTTAAGTCATTTCCTGTGCCTGTGAATTTGCAGTAAACTCCTGTCACTTTGGTTGCTGGACCTCATAGCACTTTTGTTGGAGGATTATAAACAATGTATTAAGAGGAAAAATTATCAGCTTGACTTTAAATTTAGGTAAGATATGACTTAAGTTCAAGTAAGTGTGATTTATAAGTGTGTGGCTTATTTTTCTTTTTCTTTTTATTAATGTTTACAAAAAAATGCTGTGATTTTCAATGTTCTTTATTAATAACATAATCGCTGCAATCATATTGCACACTGAGCCCAGAGGCTCTTGGTGGATGATAAGAAAATAAAGAGGAGGTGAATTTTTAACCAAATAAACACCTTTAAAAA +>XM_048024951.1 Epithele typhae kinase-like protein (BXZ73DRAFT_88453), partial mRNA +ATGTTTGACGACAGCGGACCCCCGTCCCCCTCAAACAACCCCCTAGCTCTCGCCCCCGTCGATCACGAATGGCAGCCCATCCTCCATGTCTCTAACCAAACCGTAGCTCGCAACGCTCGATGTCCCTATTGTCACCGTGCTTTTTCTCCCACGCATTCGCGAGGTTTCCACCCCCACGACCAAGACCTGGACGCGGAATACGAGGGGGATGACATAGAGAGGGCAAGTAACCGGGCAGCCAACTACTTCCAGCTCCTCGAGATTGCGAACGAATCCTCGAGACCACCTAGTCCCACGCAAGATTCCTCGCGTAGATCGTCGCCACAGCCGAATGCATTCCGTGCAGAGAACATGGCCGAGGGATACTTTAAGGCCTTCTTCCAGGAGGTGTGTAGGCTCGGCATGGGCGCAAACGGCAGCGTCTACTTGTGTCAGCATGTCCTGGATGAGAACCCTCTGGGGTTGTTTGCCGTCAAGAAGGTTGCTGTTGGACAGTCACATTCTTACCTCTTGAACACACTCAAAGAGGTCCGACTTCTTGAGAAACTTCACCATCCAAACATCGTCACGTATCATCACGCTTGGCTCGAGTCGTCACAGTTCTCGTCCTTTGGACCACGGATTCCAACCTTGCACATCCTTATGCAGTGGGCTGAGGGCGGAAGTCTCGACGACCTCATCGACACGCGCCTTGGACGCCGTGCCCCGAACCTTCCTCACATTAGGACCACCGCTGATGGATCCACTGAACAATATACCAGTCCCCAGCCGACTTCTCCGATAGAGCAAGAAGCCAGCCAACCATACTCACGGAATGCCCGTATACGGGCCTTCAGAGCATTACAGCGAGCCCCTCCTGAAGAACGGGAACGATTACGTCACGAAATGGGTCTCAATGATAGCGGGCAAGCCAAGTCGACGGTAAACCTGAAGCCGGTGCATCTGCTCAGCGCAGAAGAGATACATGAACTATTTAAGGATGTTGTGGGAGGACTCGCGTTCTTACATGAACGATCTATTCTGCACTTAGACCTTAAACCAGGAAACGTTCTGTTGACTTGGGACGAGGGAAAGCTTGTGCCACGAGCGATGTTGTCCGACTTCGGCACTCACAAGACATGCAATACCGGAACCTTGGAGTATTCTGCACCTGAGTCTCTGCCCGAGCCCTCGACAGGGCGGCTTCTCCAGGTGGACTCGAAGGCAGACATGTGGTCTCTCGGCATGATCTTGCACAAGTTGCTATTCTTCCGTCTTCCCTTCCGGCACACCTCCGACAATGATGATCCTAGTCGGCCAAAGGACGGCCAAGAGTATTCGGATGAGCTCGAGGCTGAGATCCTCGCATACAAGGGGTTCAAGTCTTCCGCTTCGCATATGAACACATTCGAGCCCAGACGAATACCCAAAGCTTACCTCCTGTTGCTGGAGACTCTTCTGAACGTCAAACCTTCCGGACGACCTACTTCAGACCGCGTGCTCAGCGTTATCCAAGAGGGTGGGCTTCGCCCGACGAGCCGTCCTCCGCGTAGAAATGGGCAGGCCCCTCCGGGTACACTTGCGCTAGCACGTCCAAGCGCGGCTCTCAACCCAAACCGCCTTCGAGTCAGCCCCGACCGGACCCGTCGGTCGCGCTCGCCGTCGCGCGTCCCTTCCGCCGACAGTCGCTTTGAAGCCAGCTCCGCCAATGTCGAAGAAATCCAAGAACACGACGGCGATTCGGAAGCTCCGACGGACGAGAAGGACAGGCTCCTGCCCATCCCGAAGGGCTACGCATGGACTCTGCCTTGCATCGGCAGCCTGCGCATTCCCCCCGCACTCGCCGCTCAGGCGCAAGCCATCCACCGCTGGCAGCGGCGTGCACGAATACCTGCGCTCGGATGGCGCACGCTGAAGTCCTCTATTCTTGTTGCCAAGGTCGTTTCCCTCACAGGGCCGCACCTGCATCCTAGCACGAGCGTCCATCCCATTCTAGCGGGAGCAGCGCTAATGCTTGCGGTGGTGGATACGTGGTTCGAGAGTATGGAGGCAACACTGGCGTTTGGTGCAGCGCATTTGGCGGTGCTTGCCCTTGGACAATTCACGTCGTGA +>XM_020597508.1 PREDICTED: Monopterus albus apolipoprotein Eb-like (LOC109958668), mRNA +ATTTTATCTATGATATTCCAGGTGTGTGATTTCTGGTTATGATGAGAGTGTTTGCAGTAATCCTTGCACTGGCAGTCCTCTCAGGCTGCCATGCAAGAAGTGTGCCTCAGGATGATGGGAGTGACTTTGAAGATACCGTCCAGAAGTTCAAGGATTATTTAACATATCTGAACTCCAAGGTCGATGAGGTGGTGAAAGACATCCAGAGCTCCGAGACCGTCAGAGAACTGGACACCCTGGTCCAGGACAGCATGTCTGAGCTGGCCATGTACAGGGACGACCTGCAGAACAAGCTGGCTCCCTATGCCCAGGAAACTGCAGAGCGCCTGGGCAAAGACCTGCAACTGCTGGCTGGCAGACTCCACAACCAGATGGCTGAGACCCGGGAGCAGCTGGTGCAGTACACCCAGGAGGCGCAGACCATGATGGAGCAGGATGCTGATGACAGCAAGCTCCGGGTCTCCACCTACAGCCAAAAGCTAAACAAACGCCTCAACAAGGACATGGAGGAGATAAAGAAGCATGTTTCTGAGTACCTTGAGGAGCTTCAATCCCGGACCTCAGACAACATGGAGGACGCGAAGTCTCGTTTGCAACCTTATTTTGCTCAGGTGCAAGACAACGCCCAGGCGAAGGTCACCACCCTGAGTGATCTGCTGACGAAGCAGGTAGAGAACATGAAGGAGGAGATTCAGGGGGTGGCTGCGGGCATCAAGGACCAAATTCAGAAAACTGCTGAGGACATGAAGGAACAATTTCTTGAAACTGCTCAGAATATGCAATTCAGCCTGGGGGAGAAGGTGGAGGAGATGCGCATCTGGTTTCAGCCTCTGGTCTCCACGATCAGGGACAACATGTGA +>XM_009083577.1 PREDICTED: Acanthisitta chloris achaete-scute family bHLH transcription factor 3 (ASCL3), mRNA +ATGCAGAACCTGATGGATGACAAAAGCTACTGTAACCTCATCTGTGCTGAGACTCAGCGTGTGCAGGTGGCCAGGCCTTTCTGTGCTGACCCACTGGTCACCTTTCACGTGTACCCAGAAACCCCAAACCAGGCCACTTGCTCTGAAGATTTCTCATTCCTTCCTTTCATGTCTGAGCACCTCCTCGCAAAGAACTTCTACAGTGAGCCCTGCAGCTTTCCTTACCAAATGCCCCATGCCAGTTTCCACAGAAATGACTACTCCTATGGGCCAGCTTTCATCAGAAAGAGGAATGAGAGGGAGAGGCAGAGAGTTAAGTGTGTCAATGAAGGCTATGCTAAGCTGAGGCATCACCTGCCGAAGGAATACTTAGAGAAACGGCTCAGCAAAGTAGAGACACTCCGTGCTGCAATAAAATACATTAGGTACCTACAGTCTGTTCTGTACAGTGATTCTGTGATGGCAGGAAAAAGTGTTGTGGAGCCAAGCCAAGCACCCAAAGCAATTAACAAACAAAACCAGTTTTTGAAGACCATCTAA +>XM_017239098.2 PREDICTED: Drosophila bipectinata uncharacterized LOC108123788 (LOC108123788), mRNA +CGCCAAAACCAAAACAAAAGCAAAAAACAAATAGAAATACAGCCAAAAAATAAAATATAAGAAAAAAATTAAATAAATGGCTACCGAAGTGGAGCCCGCAAATACGGCGGACAAGTTTTCGGCCAATGCCGAGGAGCTGGAGAGCTATTATCTGATGCTGGAAAACGGCAGCATTCCGGAATTGCAGTGGCAGTTTCCCGGACGGAGACCGCCATCTCCGGACGTTGGCGGCGGCGTCGGATCTGGCGCCACCAACAAGGAACTGGAGCAGACTGTTGGCGAACCTATAGAACAGGAGCCCCAAAAGGCTCAGAACGACTTTGATTTCAGCGACGATGTGGCGCCCACACAGATGCGAGTCAGAAGCCAGACATCTACGCCCAAGTCGGCCAAGAAGAAGACGGCCAACTTTGCTGGCGTTATGGAAACGCTGAAGAAGAAGAATGCCGAGAGCTCCTAGCATATGCTGAAGTTCTGATGTAATCCTAGCAAGGGTACATGGGAGTATATACGATTCTAGGCGAAGTTTCACCTTAAATAGGAAGGGGAATTTTCAAATTTTTAAAGAAATATTTAAAGAAAGATTTAAATATTATTCTATAAAATCAAAGGTCCGATTTTTGAGGGCTTTTTGATGAAGATTATGTTTTAAAGTTTTAAAGTAGATGTTAGTTGTCAAGTTAGGACTATTAACAAATTCTATAATCATTACATTTACAATTTTAAATTTTAAACAAAATAATAGCTAAGTTGTGCAATTTATAATTCTTTTATAAGATTTTGATTGAAATTATAAAACCAAAAATTTAA +>XM_021934158.2 PREDICTED: Papio anubis ZXD family zinc finger C (ZXDC), transcript variant X4, mRNA +TCCGAGCCGGACTCTGCGACGGGTCTTGGCGCGGATCGCGTCCCGGGGCAGTGCACGCACACTTGGGCGGGGCGCGGGCCGCGCTGCGTCCGAAGCGGGTCCGACGCCGTCGCTGGGCCCAAGATGGACCTCCCGGCGCTGCTCCCCGCCCCGACCGCGCGCGGAGGGCAACATGGCGGCGGCCCCGGCCCGCTCCGCCGAGCCCCAGCGCCGCCCGGCCCGAGCCCCGCGCGCCGCCGCCTGCTATTGGTGCGGGGCCCCGAAGATGGCGGGCCCGGGGCGCGGCCCGAGGAGGCCTCCGGGCCGAGCCCGCCGCCCGCCGAGGACGACAGCGACGGCGACTCGTTCTTGGTGCTGCTGGAAGTGCCCCACGGCGGCGCCGCCGCCGAGGCTGCCGGATCACAGGAGGCCGAGCCTGGCTCCCGTGCCAACCCGGCGAGCCGCCCGGAGCAGGGCCCCAGCGGCCCGGCAGTCGCCGCCGGCCCTGGCGTAGCCCCGGCGGGCGCCGTCACCATCAGCAGCCAGGATCTGCTGGTGCGCCTCGACCGCGGCGTCCTCGCGCTGTCTGCGCCGCCCGGCCCCGCAGGCGCGGGCACCGCCGCGCCCCGTCGCGCGCCCCAGGCCTCCGGCCCCAGCACGCCCAGCTACCGCTGCCCCGAGCCGCAGTGCGCGCTGGCCTTCGCCAAGAAGCACCAGCTCAAGGTGCACCTGCTCACGCACGGCGGCGGTCAAGGCCGGCGGCCCTTCAAGTGCCCGCTGGAGGGCTGCGGCTGGGCCTTCACAACGTCCTACAAGCTTAAGCGGCACCTGCAGTCGCACGACAAGCTGCGGCCCTTCGGCTGTCCGGTGGGCGGCTGTGGCAAGAAGTTCACTACGGTCTATAACCTCAAGGCGCACATGAAGGGCCACGAGCAGGAGAGCCTGTTCAAGTGCGAGGTGTGCGCCGAGCGCTTCCCCACGCACGCCAAGCTCAGCTCCCACCAGCGCAGCCACTTCGAGCCCGAGCGCCCTTACAAGTGTGACTTTCCCGGCTGTGAGAAGACATTTATCACGGTGAGTGCCCTGTTTTCCCATAACCGAGCCCACTTCAGGGAACAAGAGCTCTTTTCCTGCTCCTTTCCTGGGTGCAGCAAGCAGTATGATAAAGCCTGTCGGCTGAAAATTCACCTGCGGAGCCATACAGGTGAAAGACCATTTATTTGTGACTCTGACAGTTGTGGCTGGACCTTCACCAGCATGTCCAAACTTCTAAGGCACAGAAGGAAACATGATGATGACCGGAGGTTTACCTGCCCTGTCGAAGGCTGTGGGAAATCGTTCACGAGAGCAGAGCATCTGAAAGGCCACAGCATAACCCACCTAGGCACAAAGCCATTCGAGTGTCCTGTGGAAGGATGTTGCGCAAGGTTCTCCGCTCGTAGCAGTCTGTACATTCACTCTAAGAAACACGTGCAGGATGTGGGTGCTCCGAAAAGCCGTTGCCCGGTCTCTACCTGCAACAGACTCTTCACCTCCAAGCACAGCATGAAGGCACACATGGTCAGACAGCACAGCCGGCGCCAAGATCTCTTACCTCAGCTAGAAGCTCCGAGTTCTCTTACTCCTAGCAGTGAACTCAGCAGCCCAGGCCAAAGCGAGCTCACTAACATGGATCTTGCTGCGCTCTTCTCTGACACACCTGCCAATGCTAGTGGTTCTGCAGGTGGGTCGGACGAGGCTCTGAACTCCGGAATCCTGACTATTGACGTCACTTCTGTGAGCTCCTCTCTGGGAGGGAACCTCCCTGCTAGTAATAGCTCCCTAGGGCCAATGGAACCCCTGGTACTGGTGGCCCACAGTGATATTCCCCCGAGCCTGGACAGCCCTCTGGTTCTCGGGACAGCAGCCACGGTTCTGCAGCAGAGCAGCTTCAGTGTGGATGACGTGCAGACTGTGAGTGCAGGAGCATTAGGCTGTCTGGTGGCTCTGCCCATGAAGAACTTGAGTGACGACCCACTGGCTTTGACCTCCAATAGTAACTTAGCAGCACACATCACCACACCGACCTCTTCAAGCACCCCCCAAGAAAATGCCAGTGTCCCGGAACTGCTGGCTCCAATCAAGGTGGAGCCGGACTCGCCTTCTCGCCCAGGAGCAGTTGGGCAGCAGGAAGGAAGCCATGGGCTGCCCCAGTCCACGTTGTCCAGCCCAGCAGAGCAGCACGGTGCCCAGGACACAGAGCTCAGTGCAGGCACTGGCAACTTCTATTTGCTGTGTGGCGTTGGGCTACCTCGCTTCTCTGAGTACAAATGGTGTGTGGTGAATGGGTCCCAGGAAAGTGGGGGCTCAGCAAGAACTGATTACCGAGCCATTCAACTAGCCAAGGAAAAAAAGCAGAGAGGAGCGGGGAGCAATGCAGGATGACCCCTCCGGCGAAGGTGTCCTGCCCTCAACCCGCGGCCCAGCCGCCTTCCTCCCCTTCCTCACTGTGGACCTGCCCGTCTACGTCCTCCAG +>HE815016.2 Uncultured endophytic bacterium partial 16S rRNA gene, clone Dkk4A12.M13-F +AACCGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGGCACTAGGTGTGGGAGGTGTCGACTCCTCCCGTGCCGTCGCTAACGCACTAAGTGCCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCAGCGGAGCATGTGGTTTAATTCGACGCAACGCGAAGGACCTTACCTGGGCTTGACATGTAGGTGACCGCCATAGAAATATGGCCTTCCTTCGGGACACCTTCACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCCGTTCCATGTTGCCATCATTCAGTTGGGGACTCATGGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTACACACGTGCTACATTGGCGCATACAAAGGGCAGCAATACCGTGAGGTGGAGCGAATCCCAGAAAGTGCGCCTCGGTTCGGATTGGAGGCTGAAACTCGCCTCCATGAAGGTGGAGTTGCTAGTAATCGCGGATCAGCAATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAAAGCAGGCAACACCCGAAGCCGGTGGCCTAACCTTTTGGAGGGAGCCGTCGAAGGTGGGGCTCGTGATTGGGGTGAAGTCGTAACAAGGTAACCGTA +>JQ912969.1 Uncultured archaeon clone B22pf 16S ribosomal RNA gene, partial sequence +TTCCGGTTGATCCTGCCAGAGGTCACTGCTATCGGGGTTCGATTAAGCCATGCGAGTCGAGGGGGTTCAGACCCTCGGCGGACTGCTCAGTAACACGTGGATAATCTGCCCTATGGTGGAGGATAACCCCGGGAAACTGGGGATAATACTCCACAAGTCAGGAGTACTGGAATGTCTCCTAACTGAAAGTTGCGGCGCCATAGGATGAATCTGCGGCCGATTAGGTAGTTGTTGGGGTAACGGCCCAACAAGCCCGTAATCGGTACGGGTTGTGGGAGCAAGAGCCCGGAGATGGAATCTGAGACACGATTCCAGGCCCTACGGGGCGCAGCAGGCGCGAAAACTTTACAATGCAGGAAACTGTGATAAGGGAACCCCGAGTGCCCGTAAACGCGGGCTGTCCCGGTGTTTAAAACACATCGGAAGAAAGGGCCGGGCAAGACCGGTGCCAGCCGCCGCGGTAATACCGGCGGCTCGAGTGGTGACCACTTTTATTGGGCTTAAAGCGTTCGTAGCTTGATTTTTAAGTCTCTTGGGAAATCTCACGGCTTAACTGTGAGGCGTCTAAGAGATACTGGGAATCTAGGGACCGGGAGAGGTAAGAGGTACTTCAGGGGTAGAAGTGAAATTCTGTAATCCTTGA +>XM_036570612.1 PREDICTED: Colossoma macropomum myosin-10 (LOC118808147), transcript variant X1, mRNA +TCCGCTGGGTTCGGTTGAGTAGAAGCGGCTGCAGCAGCGCGGAGGGAGACGAGACTGAGTTTAATATATTTGAAGAACAAAAACTGGATTCTTGTAAAACTGGAAGGCCTGGATTAGAGGTTTATTTCAGCTGCTCACAGTCAAAGGTTTTGCCCTTCGTGGCCTGTCTGTAGTTCCTAATGCCGGAGATGGCTCAGCGGAGCGGTCAGGAGGACCCCGAGCGGTACCTCTTTGTGGACCGGGCGGTGGTCTACAACCCAGCCACCCAGGCTGACTGGACCGCCAAGAGGCTGGTGTGGGTTCCCTCGGAACGACACGGGTTTGAGGCGGCCAGCGTCCGCGAGGAGAGAGGAGAGGAGGTGGTGGTGGAGCTGGCGGAGAATGGCAAAAAGGCTCTGGTCAACAAAGACGACATCCAGAAGATGAACCCACCAAAGTTCAGCAAAGTGGAGGACATGGCGGAGCTGACCTGCCTGAACGAAGCCTCTGTACTGCACAACCTTAAGGACCGATACTACTCCGGCCTCATCTACACTTATTCCGGACTCTTCTGTGTGGTGATAAACCCATACAAAAACCTTCCCATTTACTCGGAGAACATCATTGAGATGTACAGAGGGAAGAAGAGGCACGAAATGCCGCCACACATCTACGCCATTTCCGAATCCGCCTACAGATGCATGCTTCAGGATCGTGAGGACCAGTCTATTCTGTGCACAGGTGAATCCGGAGCTGGAAAAACAGAAAACACCAAAAAAGTGATCCAGTACCTGGCACACGTTGCTTCCTCTCACAAAGGAAGGAAAGATCACAACATTCCACCAGAATCTCCTAAAGCAGTGAAGCTCCAGAGTGGACTCCTGGTCTATGGGGAGCTGGAGAGGCAGCTGCTGCAGGCTAACCCCATTCTGGAGTCCTTCGGAAACGCCAAGACGGTGAAAAATGACAACTCGTCTCGCTTCGGCAAGTTCATCCGCATCAACTTTGATGTCACGGGTTACATTGTGGGGGCCAACATCGAGACCTATCTGCTGGAGAAGTCCAGAGCGATCCGACAGGCCAAAGACGAGAGAACCTTCCACGTCTTCTACCAGCTGCTGGCTGGAGCAGGAGAACATCTGCGCTCCGATCTCCTCCTGGAGGGCTTCAATAACTACCGTTTCCTCTCCAACGGCAACATTCCTATTCCCGGCCAACAGGACAAGGACAACTTCCAGGAGACCATGGAGGCAATGCACATCATGAGCTTCTCACACGATGAGATTTTGTCGATGCTGAAGGTGGTATCAGCTGTGTTGCAGTTTGGAAACATTGTGTTCAAGAAGGAGAGAAATACAGACCAGGCCTCCATGCCTGAGAACACAGCTGCGCAAAAGCTCTGCCATCTGCTGGGGATGAGTGTGATGGAGTTCACCCGCGCCATTCTGACCCCCAGGATCAAAGTGGGCAGAGATTATGTCCAGAAAGCCCAGACGAAAGAGCAGGCTGATTTTGCAGTGGAAGCTCTGGCCAAAGCCACGTACGAGCGGCTCTTCCGCTGGCTCGTCCACCGCATCAACAAAGCTCTGGACCGGACCAAACGGCAGGGAGCGTCCTTCATCGGCATCCTTGACATCGCTGGCTTCGAGATCTTCCAGCTGAACTCGTTCGAGCAGCTATGCATCAACTACACCAACGAGAAGCTCCAGCAGCTCTTCAACCACACCATGTTCATCCTGGAGCAGGAGGAGTACCAGCGCGAGGGCATCGAGTGGAGCTTCATCGATTTCGGCCTCGACCTGCAGCCCTGCATCGACCTCATCGAGAGGCCGGCAAACCCTCCAGGTGTGCTGGCCCTGCTGGACGAGGAGTGCTGGTTCCCCAAAGCTACAGACAAAACGTTTGTGGATAAGCTGGTGCAGGAGCAGGGCTCGCACGCCAAGTTCCAGAAACCGCGGCAACTAAAGGACAAGGCTGACTTCTGCATCATCCACTACGCAGGCAGGGTGGATTATAAAGCGGATGAATGGCTGATGAAGAACATGGATCCTCTGAACGATAACGTGGCCACTCTGCTCCATCAGTCCACTGACAAGTTTGTGGCCGAGCTGTGGAAGGATGTGGACCGCATCGTGGGTTTGGACCAGGTGGCCGGTATGAACGAAACGGCGTTTGGAGCGACGTACAAGACCAAGAAGGGTATGTTCCGGACGGTGGGACAGCTCTACAAGGAATCTCTGACCAAACTGATGGCCACTCTCCGGAACACCAACCCCAACTTTGTCCGCTGCATCATCCCCAACCACGAGAAGAGGGCTGGTAAACTGGAGCCCCATTTGGTTCTGGACCAGCTGAGGTGTAACGGGGTTCTGGAGGGAATCCGTATTTGCAGGCAGGGCTTCCCCAACCGCATCGTCTTCCAGGAGTTCAGACAGAGATATGAGATCCTCACCCCTAACGCCATCCCAAAGGGCTTCATGGATGGGAAGCAGGCCTGTGAGAGGATGATCCAGGCCCTGGAGCTGGACGCTAACCTGTACCGGATTGGTCAGAGTAAGATATTTTTCCGTACCGGAGTTTTGGCACATCTGGAAGAGGAGCGGGACCTGAAGATTACTGACATCATTATCTACTTCCAGGCCGTATGCCGAGGATACCTGGCACGCAAGGCGTTTGCTAAGAAGCAGCAGCAGCTGAGTGCTCTGAAGGTTCTCCAGAGGAACTGTGCGGCGTACCTGAAGCTGCGGCACTGGCAGTGGTGGAGACTTTTCACCAAGGTGAAGCCTCTGCTACAGGTGACCCGTCAAGAGGAGGAGATGCAGGCTAAAGATGAGGAGCTGGTGAAAGTGAAGGAGAGGCAGGTGAAGGTGGAGAACGAACTGGTGGAGATGGAGAGGAAACACCAGCAGCTCCTGGAGGAGAAAAACATCCTGGCGGAGCAGCTTCAGGCTGAGACAGAGCTGTTTGCAGAAGCTGAGGAGATGAGAGCTCGTCTCGTGGCTAAAAAGCAGGAGCTGGAGGAGATTCTGCATGACCTGGAGTCCCGAGTGGAGGAGGAGGAGGAGCGGAACCAGACGCTGCAGAACGAGAAGAAGAAGATGCAGTCACACATACAGGACCTCGAGGAGCAGCTGGATGAGGAAGAAGCCGCGAGGCAAAAGCTCCAGCTGGAGAAAGTGACCGCAGAGGCCAAAATAAAGAAAATGGAGGAAGATCTGCTGCTGCTGGAGGACCAAAACTCCAAATTCCTGAAGGAGAAGAAGCTGCTGGATGAGAGGATCGGCGAGATGACCTCTATGCTGGCCGAAGAAGAGGAGAAGGCCAAGAACCTCGGCAAAGTGAAAAACAAGCAAGAGATGATGATGGTGGACCTTGAAGAGCGTCTGAAGAAGGAGGAGAAGACCAGGCAGGAGTTGGAGAAAGCCAAGCGTAAACTGGACGCCGAAACCACAGACCTGCAAGAGCAGATCGCTGAGCTTCAGGCTCAGATCGACGAGCTGAAAATCCAACTGGCTAAAAAAGAGGAGGAGCTTCAGGCTGTTCTGGCCAGGGGCGATGAGGAAGTGGCCCAGAAGAACAATGCTCTGAAGCAGGTCCGGGAGCTGCAGGCCCAGCTGGCCGAGCTGCAGGAGGATCTGGAGTCGGAGAAGGCTGCTCGGAACAAAGCGGAGAAGCTCAAACGGGACCTCAGCGAGGAGCTGGAGGCGCTGAAGACTGAGCTGGAGGACACACTGGACACCACGGCCGCTCAGCAGGAGCTCAGGACGAAGAGAGAGCAGGAAGTGGCTGAACTGAAGAAGGCGATCGACGAAGAGGCTCGAAACCACGAGTCCCAGATTCAGGAGATGAGGCAGAGACACGGGATGGCGCTGGAGGAGATCTCAGAACAGCTGGAGCAGGCCAAACGGTTTAAGTCTAATCTGGAGAAGAGTAAACAGACTCTGGAGGGCGATAATAAGGAGCTGGCGAGTGAGGTGAAGGTTCTGCAGCAGGCAAAACTGGACTCTGAGCACAAGAGGAAGAAGCTGGAGGCTCAGCTGCAGGAGGTTCTGGCCCGCGTTACTGAAGGAGAGCGGACCAAGGGCGAGCTCGCTGACCGCACTCACAAACTACAGACGGAGCTGGAGAATGTATCTACTCTGCTGGAGGATGCGGAGAAGAAGGGAATAAAGCTGGCTAAGGACGCCTCCAGCCTGGAGAGCCAGCTGCAGGACACACAGGAGCTCCTGCAGGAGGAAACGCGTCAGAAGCTGAACCTGAGCAGCCGAATCCGTCAGCTGGAGGAAGAGAAGAGCGCCCTGCAGGAGCAGCAGGAGGAGGAAGAGGAGGCACGTAGAAACCTGGAGAAACAACTGGCAACCTTGCAGTCTCAGCTGTGCGAGACGAAGAAGAAGCTAGAGGATGACGTCGGAGTTGTGGACGCTCTGGAGGAGGTGAAGCGGAAGCTGCAGAAGGACATGGAGGCCACCAACCAGAGACTGGAGGAAAAGGCCATGGCCTACGATAAGCTGGAGAAGACCAAAACCCGGCTTCAGCAGGAACTGGACGACCTCATGGTGGATCTGGACCACCAGAGACAGATAGTCTCCAACCTGGAGAAGAAGCAGAAGAAATTTGACCAGATGCTGGCGGAGGAGAAGAGCGTATCGGCGCGTTACGCTGAGGAGCGAGACCGAGCAGAGGCCGAAGCGCGGGAGAAAGAGACGAAGGCACTATCGATGGCCCGAGCGCTGGACGAAGCACTGGAGGCTAAAGAGGAGTTCGAGAGGCTGAATAAGCAGCTGAGGGCCGAGATGGAGGATCTGATGAGCTCCAAGGACGACGTGGGAAAAAACGTTCATGAGCTGGAGAAGTCCAAACGTACGCTGGAGCAGCAGGTGGAGGAGATGCGCACTCAGTTGGAGGAACTGGAGGATGAGCTGCAGGCCACAGAGGACGCCAAACTGCGCCTGGAGGTTAACATGCAGGCCATGAAGGCCCAGTTTGAGCGTGACCTGCAGGCCAGAGATGAACAGAATGATGAGAAGAAAAGAATGCTGGTCAAACAGGTGCGTGAGATGGAGGCGGAGCTAGAGGATGAGAGGAAGCAGCGTGCGCTGGCTGTGGCGGCTAAGAAAAAGCTGGAAATGGACCTGAAGGATGTTGAGGCTCAGATTGAGGCAGCTAACAAGGCTCGGGATGAGGCCATCAAACAGCTGCGCAAACTCCAGGCTCAGATGAAGGACTATCAGAGGGAACTGGAGGAGGCTCGAGCCTCTCGAGATGAAATCTTTGCCCAGTCAAAAGAAAACGAGAAGAAGCTCAAGAGTCTTGAGGCAGAGATATTACAGCTGCAGGAGGACCTGGCTGCATCTGAGAGAGCACGGCGTCATGCAGAGCAGGAGAGGGACGAGCTGGCAGACGAAATCTCAAACAGTGCCTCTGGGAAGTCTGCTCTGCTGGATGAGAAGCGCAGGCTGGAGGCTCGAATTGCTCAGCTGGAGGAGGAACTGGAGGAGGAACAGAGCAACATGGAGCTCCTCAATGACCGCTTCCGCAAGACTGCCATGCAGGTGGATACTCTGACCACAGAGCTGACCGGAGAGCGCAGCGCAGCCCAGAAGAGCGAGAACGCCCGGCAGCAGCTGGAGAGACAGAACAAGGAGCTGAAGGCCAAACTGCAGGAGCTAGAGGGATCCATCAAATCTAAATTTAAAGCCAATATCACCGCCCTGGAGGCCAAAATCCTGCAGCTGGAGGAGCAGCTGGAGCAGGAGGCCAAGGAGCGGGCAGCGGCCAATAAGATTGTCCGGCGCACAGAGAAGAAGCTGAAAGAAGTGTTCATGCAGGTGGAGGATGAGCGTCGCCATGCTGACCAGTACAAGGAGCAGATGGAGAAGGCGAACTCTCGCATGAAGCAGCTGAAGCGTCAGCTGGAGGAGGCGGAGGAGGAAGCTCAGCGCGCTAACGCCTCCCGCAGGAAGCTGCAGAGAGAGCTGGATGACGCTACAGAGGCGAGCGAGGGGCTGAGCAGAGAGGTTAACACCCTCAAAAACCGTCTCAGACGCGGAGGCCCGGTCAGTTTCCCCTCGGGTCGCTCTGGCCGCAGGCAGCTGCAGATGGAGGGCGAGTGTTCCGATGACGACGCCGAAAGCAAAGCCAGCGATGTGAACGAGACCCAGCCTGCCCAGCCTGAGTAGTTATAGTGTCCCCCTGTGGTCCTGCAGTGCTATTACACCTTCTACCCCAAAACAGTCAGCACGCCAGAAACCGTAACATGTAACCCAGTTCGTTCTGCTGCTCGCGTGGTGGAGAGCAGGACTGAGGGTCCACACACACACCTCTCTAAACACATTTATACACACATGACTCCTCCACACACCTGCGTTCTGTCTACAAGCCTAAGCTGCAACGAGCATGAGAACGATTCAGTACATACGGTCATTCCCTTCATATTCAGGGAACCTCAACTCTGCCTTACTCAATGCAGCAAAGCTTCAAGGTTGAGTGGAGTTTTGTTCTAATTAGCAATCTGTTGTAATGTTAGCCTTCAGAATAATTGCTTAAGGTGAAAACACTATAGGTACAAGTGCATTTTATATGTTCAGTTTTTTTGTGCACACAGTCATACATGAGCAGCAACTCGAGTCTAGTATAAATAAATAACGATAAAGCCACTGCTTAGCTAAAGCAAGACAGGTCTGGCGTTAGAGTACGATGTGAAATTCCAACGAAGCACAGGTTCTGAGTGTTTTTGGCTGGCGGAAGTATGTGTTAGAGATGCATGGACTTCTGTTTTCTACAAGTAATAGAGAAAAAACACAAAAATGTACATGTAACCGGCCGAACCTGTGGCTGCTTCGAATTGGATTGAAAAGTGAAGAAAAAAACTGTGAAAAAGCTACTGCTTAAGCTTCTGCCCACATTAGACAAACAAAAACACTAAGATGAAAGTACCTTCAGTCATTTCCGTTCATCCTCATTCTATTTGGGACACTTGATTGTTGAAGTATTGGGAGAGATTCCGATAAGTGATGGTATTAGACGTTGACGAAACTGGATGTAAATGCAAGATGCGAAATGCTTTGTAACTGCACATTTACTACAAGCCATACGAGGCAAAACTGGAAAGAAATCCGTACATTTTGGGAGAATGTGCACATCCACAAAAAAAAGAATAATTTTTTTGTGAAGGTTTCTTCGGAAAATATCTCATCAAATGTGTGAACTATTAGCTGCTTTATTAGACACTCCGAGAAGTGCTTTAGTACATGAAGGGAAACCGACAGAAGTGAAGGAATCATTTCGTTCAGTGGGATCATCTCGTTCACTGCTGATTTTGACTGGAACACTAACATCAAAACACATTGATGATTCACAGGCACTTAGTTCGATTTGAATCATAAACCTGAGCCCTTGAGCTTCAGCCCAAAATGTATAGAAGAGCCACTACAGTTCTCAAACACACTATTATTTCTCAGTATCAGTATTATAAAGATGATGGATTAGAAACGATACTCACCTGCTCCAATATTAGTATTTAATAATGTTTCTTTAAAAAGTGCCTTAGTCACTAATTAAGAAAATATCCATGAGTTAAATGCATTGTACATCTATAATGGTGTGTATACAAGTGCAACACTAACATGAAGGCAAAACTGGCAAAACAATATAAGAATAATAAAAAAAACACTACGTAACCCTTTCTGTTTTGTATTTTACTGTGCTTTGAATCATATCCGTTATCTAAGTCTCTCTTCCCTAGTCTTCTAGGTAAGCCATGGGCCAGCTTCAGTGTTATCTGTAGGAGTTGGAACCCTCTGCCTTGGCTGCAGAGGGAGTTGCAGGATTTTATTTGGTTAAAAGCTTTACCCCTCCACGATCTAGTTACTATTATTACAATTATCATTATTATTGCTATTGTTATCACTCTTATTATTGGGCTGGCTGTTGACAACCAGACATTCAACTGCAAATATATCTCTCCTTTTTTTCTTGTATACTGTTACTGTATTTCTAGACAACAGTGATTTTTGTAAAGGAAAAAAAAATAAAACCTTCATTATAG +>XM_017906153.1 PREDICTED: Eufriesea mexicana enoyl-CoA hydratase, mitochondrial (LOC108551834), transcript variant X1, mRNA +CATATTGAAAAGAAAATAGCTTTCTCCACTTCATAAACATGCATTGTACTGCTCTGCTAACCTTCACAGCTTTCTTCTCTCTCTCTCTCCCTATATACATTCACCTCTCCCCGCTCTTTTTTAATCGTGTAGTCTGCTAGAATCCAGTCTGGATGATATGAGTCGGAACGAACTCGTTTTATCGTCACTCATCTCATCATTCGTTCTGTTGATTCCATAAGAAAAGTGTTTTTATTGCTATTAAAATCATAAGTTTAAACAGCATTATGGTAACTACACGTATTGGACATATTCTCCTAAACAAGAGTTTACAGATCGATCGAAAATTACCATATTGTGCGTCCAACGTAAAACATTATTGTTGCCAAGTTCAAAATTATGAATTCATCAAAGTCGAATATACTGGCGAAAACAAAAATGTGGCTTTAGTAACACTAAACAGGCCGAAAGCTTTAAATGCTCTATGTGATAAATTAATGATTGAATTGAATGATGCTATATCAAAATTTGATAGAAATGATTCTATCGGTGCCATAGTCGTTACTGGTAGCGAAAAAGCATTTGCAGCCGGAGCTGATATTAAAGAAATGCAGAATAATACTTATGCACAGAATGTGAGAGGAAACTTCCTTGCCGACTGGGACGGTGTTTCCCGAGCATCGAAACCAGTAATTGCTGCTGTAAATGGATATGCTTTAGGTGGAGGTTGCGAATTAGCAATGATGTGTGACATCATCTATGCTGGGGATAAAGCGAAATTTGGTCAACCGGAAATCGCCCTTGGTACCATACCTGGTGCGGGTGGCACACAAAGATTAACGAGGGTAGTTGGTAAGAGCAAAGCGATGGAAATGGTACTAACAGGAAATCAGATCACTGCTGAGGAGGCGGAAAAAAGCGGTCTTGTTAGTAAAGTCTTCCCAGCAGATAGACTTATTGCTGAGGCAATTAAGTCAGCTGAAAAAATTGCCTCCCATTCTCAATTAATCGTTGCCATGGCAAAAGAATCTGTTAATACTGCTTATGAAACTACTTTGAAGGAAGGACTTCACTTTGAAAAAAAGATGTTCCATGGCACATTTGCAACGGATGATAGGAAAGAAGGAATGACAGCGTTTGTTGAAAAAAGACCACCTAAATTCAACAACCACTGAGACCATTAATTCCATTATAGGAGAAGAATAAAAATGATGTAACATTTGTAAAGAAATTTTATTTAATTTTATTTAATTATTTCTTTACGTCTAATATCATAATCCATGATTATGATACATTTACAATTAACGGCTCATACCAGGTAAATATTTCTTAATAATAGCAATTCTAATGCTCTCGTAGAAGCATAGAAATGCCGTTGACATCGTAAAAGGTATCCAAGAATGGTAGGAACAATGGAATTTCACACCGACATCGTTATATAATAAATATCAAACTTTATAATAATGTGTATCTTGCTTGCTATTTGGAAATTTTTTTAATCCTGTTTTCAGATATTCTCGGAGAA +>MH775349.1 Uncultured bacterium clone 2932 16S ribosomal RNA gene, partial sequence +TGGGGAATTTTGGACAATGGACGCAAGTCTGATCCAGCCATGCCGCGTGCGGGAAGAAGGCCTTCGGGTTGTAAACCGCTTTTGTCAGGGAAGAAACGAGTTTCTCTAATACAGAGACTTAATGACGGTACCTGAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTGATGTAAGACAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCGTTTGTGACTGCATAGCTAGAGTACGGTAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGACCTGTACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACA +>XR_003646050.1 PREDICTED: Camellia sinensis protein TPR1-like (LOC114310240), transcript variant X10, misc_RNA +TAATCTCTCTGAATCGATCGAATCAACCTTCTTCAGCCCCATTTGATCTAATCTCAGAGCGATTGGTGATTCATCTCCGATCCAATCTCAGAGCGATTGGCAATTTCGATTTTGAGATTTTGAAGCTCCACCGCCTCCACCATCTGCACTGGCGAGGGGAGCGAGCACCATCATCTACTAAGAGCCATGTGCGGCAATTCTGTTTGGCGTTCACTTCAATGTAATTGTAATTTAAAGCTTCAATTTGTTGCTCTCTCTTTCTCTCTCTATCTGTACCCATTTGGCGTTGTCTGTTGCGTCCAAGTCACAGCAACCTCTTGATTTGCCTTTTGGTCTGAAGTTTATTTTGGACGCATTCTTGTGATTTCAACATTTCATTTTATCAAATTTGTCACAATTTCATCCAAAATTATAATCAATATCCTTAAAACAAATATGATCATATAATTGTGGTGATGATCTGACAGAGGTGCGAGTGGATTATGCTCTTCTATGGTCTGTGGATTCGGCTGCATTCAAGGTTCCAAATGCATAAGAACCACGCACTGTGACAAAGGTACTAAGGTAAACCATCCAATCATGCTCCGTAGAACTACTTTTGTGGCTCTGATCTTTGGGACCATAGCCATCTTCTTCATCAGCTCGAGTCTTGTCTTCTAGTATAAGTGGCTCCCTTATCTCTTCTTGCAAGCTGTTCTCACCTTGCTCCAAAAATTAGAGAATTCAAATTTATGGTCAAGAATTTAATGGAGAATGCTAACAAAAGGATTTTGTTCTGTGATGAAAGCCAGGATGCACCACACTATGAAGTCCTTGCCAAGAATATTGTAGATGCTATGCTGGTGGACTGTTTGTTGTGTACTTTGCTCTGCTGCAACAGGTAGCAGCATAAGAGATATTCAGTTGATTGCATGACCTTTCATCCTCTATATTTGATCCTCGCTGTCAACTTTTGCTTATGCATATCTCAGTGACTATTTTTTTGAAGTGATTCACTTATTCTTTTGAACAGGTTCCTCTTACTAATGAATTCATTACTAATGGTGCTCCTCTTGCCAGGTTACATATCCAACATCTCGTCAACATGCCACTTGGTCCTTGGATGACTTGCCAAGAACAGTAGCTTGTACCATGCATCAAGGATCTGCTGTTAACAGCATGGATTTTCATCCTTCTCATCACACATTGCTTCTTGTTGGTTTTGCTACTGGTGAAATAACGCTCTGGGAAGTGGGGATGCGATATAAATTGGTTTCAAAGCCATTCAAGATATGGGACATGGCAAATTGTTATATGCTGCTTCAGGTTCCTTTTCTTCCTTTTCTTTCCTTGTTGCTTGTTATCTTAGCATTCTATGATGTGATATATACCTATGATATGAGATATCTATGGAGGTTGTAAACAGCATGTACAAATTAATTGTGACCAGATTATTTCTTGTTTGATTTGGGGACATTTATAATACTAATCTTCAACTA +>XM_016745472.1 Penicillium expansum Zinc finger, DPH-type (PEX2_082020), partial mRNA +ATGGCCGACGACGGACTGAACATCTACGACGAGATCGAGATCGAGGATATGACCTTCGACCCGAATATCCAGATCTATACATACCCTTGCCCATGTGGCGACCGATTCGAGATCGCAATCGACGATCTGCGCGACGGAGAAGAGATCGCCGTGTGTCCGAGTTGCAGTCTGATGATCCGGGTTATCTTCGACTTGGTATGTTTCCCTATCGTCCAACCAGACGCCGATCTTCCTAAAGCCGATGCGCAGAGTACGAGTGGCGTGGCTGTTCAGGCTTGA +>XM_047872644.1 PREDICTED: Prionailurus viverrinus adenylate kinase 4 (LOC125173463), transcript variant X6, mRNA +TGGTGCGGCTTAACCGCGCCCCAGGAGGGTGCCGAGGCTCGCCGGGAGGAGGGTGGGAGGTGCATGCTTCTCCTCTCCTCGCCTGGACTCCTCTTGCCTTGGGGAAAAGCCTGTAACCACCCAGCTGAGGGAGAACCAGACAGCTGAAAACCCCGAGCTTCCCTCTCGCCCTGCTTCCTTAAGGATAAGCCCTCCCAGCCCACGCGTCCCCGGGGAACTGGGGCGTCCCCCCGCTCTCGCCGCCCACCTGTGGGAGTCCGGTCCCGCTGCGCTCTGGGGAACCTGTGGCGCCGCGGGGCCCCCAGCCGCGCACTGTTCCTGCCCCTCTGCGTCACCCTGGGCCTCCGGGCAGAGCCCTGGTGGCTTTGAAAGGCCTGTCTGTCCGCTGCCGCCTTCTAAGAAGTTGGTGATATGGCAAAGCAGTACATAGAGAAAGGTCTTTTGGTTCCAGATCATGTGATCACACGCCTAATGATGTCGGAGTTGGAGAATAGGCGCGGCCAGCACTGGCTACTAGATGGTTTTCCTAGGACATTAGTACAGGCTGAAGCCCTGGACAGAATCTGCGAGCTGGATCTAGTGATCACTTTGAACATTCCATTTGAAACACTCAAAGACCGTCTCAGCCGACGTTGGATTCACCCTCCCAGTGGAAGGGTGTATAACCTGGACTTCAATCCACCTCATGTGCATGGGATTGATGACATTACTGGTGAACCATTAGTCCAGCAGGAGGATGATAAACCTGAAGCAGTTGCTGCCCGGCTAAGACAGTACAAGGATGTGGCAAAGCCAGTCATTGAATTATACAAGAGCCGAGGAGTGCTTCACCAATTTTCTGGGACGGAGACTAACAAAATCTGGCCCTATGTTTACACGCTTTTCTCAAACAAGATCACACCTATTCAGTCCAAAGAAGCATACTGAGCCCGCCCAATGAAGAACCAGGAAGATGTCATTCATTCAGTTGTATGTGTAGTATTGGTGCCGTGTCCAAATTAGAAGCTAGCGGGGATAGCTTGCAGCGTCTTTTCTAGTCTAAATGGTGAACTGAAATGAAAACAAATGAGGAGAAAGAGTTAATGAAGAGGCTCTTCTCTGCCTTTCTGATGAAGGGTCACCCACACATGTCTAGGATGTCTCTGCATGTCTCAAGCCCTTCACAAGAAAGCAAGTACAGGCTGGATTTCAAAGGGTGTATAACCCAAACTCTAGCTGATTTCTGACCATCACATTGTTGCCATAGTAGCCTTTTAACATGTGATGGTGTTGGCCTCTGGTTCTCCCTGCCCCCCAAAGGCTATTGAACCACAGCACCAGGTGGCCTGAGAATGCCAAGGGCAGTAGCCCCGGCCTTGTCCCAAGTTCTCTGGTATGTGCCCTTCCTGGTGACCGTGCGATTGAAGCCAGTTGCTCTGTGGTCACTTCTCTGGCCTTGAGTGACTGTCCACAATTAGCTTTTCTGTTCAGAGTGATACCTTTTTCTGCCTCCATGCTCTGTAGAGTCTCTCCTTTTTCAGACATCCTGGAATGAAAGGATTTCGCTTCTAGTATTTTTATTAGACTGTATTTTGGTACATCTGTTTTCTCTCTTCCTAGACTATGAAGTAATAGATAGTTACTGCTTTTATCTCTCTCAGATTCCTTTCTAAGAGCCGAGAGTGAGGGGAGGGTGTCCAGATGCTTCTTGCAGCAGGAACTGAGCTCTGCAGAGGGTCTACTTATGCTGCTGGGCTGACCCTCATGGGTTGACACTGCTCTTTTCTTTTATCATGAAAAAATAAAATCCTCAAAGTCTTTGGGAGTCTTCAGAAAAATGGGAGATACTACATACATGTTAAAGAATCATATCTTGTGTATAGAAGTAATAAGACCATATGGAATTACTGCACTAAAAGAATAGTTTAGCTTTTTATTCAAGACAAAAAAAATGTATTTTGAAATGCTGCTAAATATTGATGCTGACAGTGTTTTTCTCCTGGGAGTGACCCAAACATATTATAAATAGTTGGTAAAGGGAATGGAGCCTGTGTGTTGAGGAAAATGTTGCACTAGCTGTGCCCAGACTGAGTATGACAGCTTTGTGATTATGGGAAAACAAATTCTTAATTTTTTTTTCTTTCTATTCCAAAGATGCTTTCTGTGGGGTGGCCATTAAGTCTAGAAATATAGATGATACAATTTTGTCATTCTTTGTAATGTAATATCAATAAACCATTTATTAAAGATTTGCCTGGTTTCCAGACTTGGTGGCCACCTAATGTAATTCTGGCTCTCCTCTGGGAAGGACAATGAAATTTATTCCTGTTGCCTTAAAAATAAATACCCCTCTTCATGCATCGTGATTGTCCCCAAGGAGGGTTCTTTGCTATTCCTGAGAGTGACTTCTAACTCCTCATACTGAAGAGAAGGGGGGGGGGGGGGGCGGGGAGCCTATTTCAGCACGCCTCTGGTGTTGCAATGCATTGTTTATTTTCTGAAGATGTCCTGGAGAATCTCCAGTCAATTCCCTGGCAGATGTGTTCTGTATGGTAATCGTTGCATCTTCCTTACAAATACTGCCCCACTCTTGACAGTTCCTCTCCTCTATACCTTCGTGAGAATGTTCTTTGACTACCTTAGTGGAAACATAGACTGGTCTCCTCCTCATTCTCTGAATCACCATGTTACTTTTTGGGTGTATGCAATGGAGGTGCCCAGTTCAGGTCTGTGAAACATCAGTGCATGATATGGACTTCTAGTGCTTTAGAAGAGCCGTGTTTGAATGCCGGTTGGTGGGGACAGGGTGAAAATCAGACCTGTAGGTAAAGCTCAGGTTTCCTGGGGAACCAGGTACGGAGAAAACAAACCTGATATGAAGAAAGTTGCACAATTTAGACTAGTACTGCCATGGAGACAATTTCTAAAAACTAGGAAAAGTAGAGAGTTAAGGTTGTTTTATGGGTAATTCAAGAGAGGAATGTGTGTGTCCTTTTGTAAGTGGAAAAATCTACATGACTCTTCCTTTACTTCTCTTTTTGTTTAACAGACTCCCTTTGGAGTTTTTGAGAGAGTTATGGGAAATGGCTGGTCCCTGGTGCCATACTCTAGTTCTCAATCCTTCCCTCCTCTCCTCCAGCAGAATAGATAGTTATAGTCAGTGTGGGAGCCTCTCAGTGTCTCAACAGCATTTGCTGTTTCTGTGCTTGGTGAGGGCCCTGTGCTTGGTGAGACCAATAAAAAAGACAAACACCTTTTCCATGCGTCTTTGAAAGATGATACTTATTTCATGTTCAGTGGCCTAAAAAGTCTATTTCAGATTTTCTTCAACAAGCTCTCTAGCATTTTCTCCAGTAATTTTGTAAAAAATTAAAATTCTCTTGAAAATATTTTGATAAAAGCTAAAGGGACATCTTTTCTTGGTTTTTCTTCTACTGCCACAGATACGGTTCCTTCACAGTTCTGCAAAGAGAGTAATTTGGGTGTCTATAAGATTCCTACCGGTCCACATATTCTGTGATTTAGCCAGTTGTGAATTAATTTTGCTTTTCATTGTCTGAACAGGCTTCCCACTTACTTAGAACTTGGAGACATTGCTGTGTTTAATATCCTTTAACACTAAGGCAGACATAAAATAAGTATCATTTACTGAAGGCCTTTGGGCGATAGGTAAAGTTCTAGGACCTTAGCAAACACTCATTTAATCTTTCAAGCATCCTTTGAGATAGGCATGAAGCCATGTTTATGAACAAGGAAGACAAGGGTCAGAGATGTGAAGCATCTTGCCCAGGCTCTTGCTGCCAACAGACAGTCCAGCCAGGACTCACACCCAGGTTTTCCTGATTCTGCAGCCTGAGTTTGCTCCTGGATGTTAACTATCTGTGTCCTGTCCCAACCAACCTAGGGTGCTGAGCCTGCTTGATTTTGCTCGTATTTCCAAGTGGCCTCATCAAAAGTAGCAGAAGTGACATTCAGCTCTATATGGGACTGTTCTCCCCCTCCCCGCTTTGCTTAAGCAAAGGGAGCTGCTAGAGGAAGATCTGAGCCTTTGATCTTCTTTCCTAACTTCTCACTTATAAAATGAAAGGCTGTTGAAATAGGCTGGGCTTGGGTCCAGGCTAATCTGTGGAGGGGTCAGGTTCCTTCATGTTCCTCACCTACCTAGGCTTTTGGTATCCATGGTATTGTACCCCTAAGAGACCTTAACACTTCAGCCGCCTTCAACTATAGGGCTCCCTGTAGATCTGGGCTTCTGGGAGTTAGATGCTACTCACTTTTCTTCCCTGATACCAGGAGAAATTACTCCCTTACTCCCACCCCCAAATAAGGCCCTGATGATAAACATCCTTCCTGAAGTGCTGGCAGGTGATGGAGCCCCCAGCATACCATCTTGCCTATGTCACATTGCGTATTAACATGATCCTGAATGCTACATTCACACCTTTGCGTGCCATCTGATGTGGCACTGCTTGTCATGCACAATTCTGGTGGAAACCAGGGGAGATTGGTTTCCTGTGTTATCCGCCCTGCCCAGGGTCACTCCCCACCACCCTCCAGCAGCCAAGCTCAGATGAGCTCCAGCTTTACCCAGGGTGTGCCCCTCCCTTTGGTAGGGAAGGAAAAAGGTAATAACAGCCAATGGATAAAAGGGATTCTTGGAAAGAGCTACTGCTGTGGCTTCGCCCACCTACCACTTAAAAATGTTGAGACAGGATGGTTTTAGATAGATGGGTGCCTGTGCAAAACCATAAATAGGACTGTTAGAAAATTTAGTTCACTAAACTGATTTCAGTATTTGACTTTAGCTGTTTAGCAGTTTAAACAGCTTACCAGCCTGCTGGGGGTCCTGCTTAGGTCATAAAGACCACAAATTTCAAATATGTTAAGACATATGCATTCCTAGTAGTTCCTGTTTATTGGTACTTAATGCTAAGTGCATTATGTGCATTGTCTAATTAAATCTGCAGTAGTTACCCTAACGTAATAGATGTTTTAGTTATCTAGCCTCTGTGTAAAAACTGCAATCATTCTGTTCACTTAAGTTTGTATTTTCATGTATCTATAGGGATTAATCAAGAAATCCAAAAGGGCCTTTTTTTGTACCTTTTCCTCCTTTGAGTTCCCCATTCTAATTAATAGGTAAAGCAGTGTTATTTGATTGTACTTGGAATCTTTGCTTTTGGCACTCTGGTGCTGAGGCAAGAAGTGGGCACTCAGTGGGTCTTGGTGGTAGTTGCACACTGTATATACAGAGAGCATATATCTCATCTGCACTCTGCTGAGTTACAGGATCTCGGGAGACATTCATATCTACCTGATGAATTTCATTTATTACCTTTCATTTAAAACACAGTATCTTTTTTTGCTGCATTTAATTTTGCCAGAGAGGCAATTCATAAGGCCAAGTTGTGTTCTTAGTATGAATTGCTTTCTATTTCCCTTGCATTTTTAGTAACTCCCTGGTCTATTTGGTGTCTCAAAAGGAGAACCTAGCAATGCAGCCTGTTTTTTTTGTTTGTTTGTTTCGTTTTGTTTTGTTTTTTTTTTTTAATACGGGAGTGTGGTCTAGTCATAAGTTATCATCCCTTTCCACATATAACTGATCCAGTCTGGTTTCTAGATGAAGAGTGTGCAAGAGCCAGATGTTGGGAAACCCATGAAGCCGTATTTCAACTATGAAGAAAAATATACTTCCTGCATCTGTTGAGATATACTATAATTACAGTTGTTCATAAATGCCATACCTTATCTTTCTTTTAACAAATTGCACAATTCTTGCCAAAATAAATGCCATTATTCTGTATGCTTCAGGGAAATTCCCCCAATTTGATCAGTGAGCATATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTAGGGAGAGGGAGGGAGAGATGGTGAAACATTTCCAAGGGGACAAGAGCCCTTGGATGGCATGGATGTGCATTCCTTCCGGGTAATAATTACGCTATTCCAGGAAACAGCATGTGTCTTCCTGGAAATAAAGATTTCCTGTCTGTAACTTTTGTAAGTTACACCAAGTGCACCTTGTGATTCTCCCTGGGGTTGGTGTGTGTCTAATTCCATTTCATAAAACCTTTCTTCATTTTAAAGCTTTGGCTGTGAAGTCAGAAATGTGCTAAATAAAAACAAACTGTTTTGTATTTAATTTAGAGAAGGGTAAAGGGAAGAAAAAAAAAAAAACTCAGTCTTTATGTAAGCTCCAAGGTGTTAGGGCTTAGAGGGTTTTTCTAGTTTTATGAGAATTTGTACTACTGATTTTTATATATTCCTGTTTTTGAGATGAACAGATCTCTGGGGAAATTGTTGCATTACAATGGCGTTTCACTGTGACCCCTCTCAAGCTCAAATCTGTTCTCTTAAGCCAATGACAACTTGTCACTTCGGTTTACTGTCCTGTGAAAAGTCAGCTCCAGTTTCCCAGAAGTTGTGTGTTTATGATGAGTCAGTGCTTTTCTTCAGTGAAAGTTGTCAGCCTTCTTGATTTGGGTGTATGTGCTTAATTCAGAGTATCTAAACCTGTAGTCTAATCTGTACATGCTCTCCTAACTGTTAATTGTTATTGACTATTTTGATTATCTTGCTTGAAGATTGATTCCTACTTTTTAATTTGATAGAAATAAAGTTTTTTTTTCCTGCTTATAACTA +>XM_032280742.1 PREDICTED: Sapajus apella ubiquitin specific peptidase 32 (USP32), transcript variant X1, mRNA +GGCTGGCGGGAGGGGGCGGGGGAGGGAAGAGGGCGTGAGGAGGGAGGAGAGAGAAGGGCGGAGTAGGAGGGAGGGAAAGGGGGGCGGGGTGGAAGCGGGTCACGTGATCCACCATGGAGGCGGTGGCGGCGACCGGGAGGAGCCGCCGGGGCAGAAGCCGCACTTGTTAGTGTGGGGGGAGGTGGGGGTGGGGGACGCCGACACCGTCACCCAGGGACGCCGAGGAGAAGGCGGGAGGGGGGTGGGGGCGAGATCAGGCTCCGACCCCCGGCCGAGGGGATGTGGGGAGCATGGGCGCCAAGGAGTCACGGATCGGATTCCTCAGCTACGAGGAGGCGCTGAGGAGAGTTACAGATGTAGAGCTAAAACGACTGAAGGATGCCTTCAAGAGGACCTGTGGACTCTCATATTACATGGGCCAGCACTGCTTCATCCGAGAAGTGCTTGGGGATGGAGTGCCTCCAAAAGTCGCTGAGGTGATTTACTGTTCTTTTGGTGGAACATCCAAAGGGCTGCACTTCAATAATTTAATAGTTGGACTTGTCCTCCTTACAAGAGGCAAAGATGAAGAGAAAGCAAAATACATTTTTAGTCTTTTTTCAAGTGAATCTGGGAACTATGTTATACGGGAAGAAATGGAAAGAATGCTCCATGTGGTGGATGGTAAAGTCCCAGATACGCTCAGGAAGTGTTTCTCAGAGGGTGAAAAGGTAAACTATGAAAAGTTTAGAAATTGGCTTTTTCTAAACAAAGATGCTTTTACCTTCTCTCGATGGCTTCTATCTGGAGGTGTGTATGTTACCCTCACTGATGATAGTGATACTCCTACTTTCTACCAAACTCTGGCTGGAGTCACACATTTGGAGGAATCAGACATCATTGATCTGGAGAAACGCTATTGGTTATTGAAGGCTCAATCCCGGACTGGACGATTTGATTTAGAGACATTTGGCCCATTGGTTTCACCACCTATTCGTCCATCTCTAAGTGAAGGTTTGTTTAATGCTTTTGATGAAAATCGTGACAATCACATAGATTTTAAGGAGATATCCTGTGGCTTATCAGCCTGTTGCAGGGGACCCCTGGCTGAAAGACAAAAATTTTGCTTCAAGGTATTTGATGTTGACCGTGATGGAGTTCTCTCCAGGGCTGAACTGAGAGACATGGTGGTTGCACTTTTAGAAGTCTGGAAGGACAACCGTACTGATGATATTCCTGAATTGCATATGGATCTCTCTGAAATTGTAGAAGGCATATTGAATACGCATGACACCACAAAGATGGGCCATCTTACTCTGGAAGACTATCAGATCTGGAGTGTGAAAAATGTTCTTGCCAATGAATTTTTGAACCTCCTTTTCCAGGTGTGTCACATAGTTTTGGGGCTAAGACCAGCTACTCCAGAAGAAGAAGGACAAATTATTAGAGGATGGTTAGAACGAGAGAGCAGGTATGGTCTGCAACCAGGACACAACTGGTTTATCATCTCTATGCAGTGGTGGCAACAGTGGAAAGAATATGTCAAATACGATGCCAACCCTGTGGTAATTGAGCCATCATCTGTTTTGAACGGAGGAAAATATTCATTTGGAACAGCAGTACATCCTATGGAGCAGGTTGAAGATAGAATTGGAGGCAACCTCAGTTATGTGAATTCTACAGAAGAGAAGTTTTCAGACAACATTTCTACTGCATCTGAAGCCTCAGAAACTGCTGGCAGCGGCTTTCTGTATTCTGCCACACCAGGGGCAGATGTTTGCTTTGCTCGACAACATAACACTTCTGACAATAACAACCAGTGTTTACTGGGAGCCAATGGAAATATTTTGTTGCACCTTAACCCTCAGAAACCAGGGGCTATTGATAACCAGCCATTAGTAACTCAAGAACCAGTAAAGGCTACATCATTAACACTAGAAGGAGGACGCTTAAAACGAACTCCACAGCTGATTCATGGAAGAGATTATGAAATGGTTCCAGAACCTGTGTGGAGAGCACTTTATCATTGGTACGGAGCAAACCTGGCTCTACCTAGACCAGTAATCAAGAACAGCAAGACAGACATCCCAGAGCTGGAATTATTTCCCCGCTATCTTCTCTTCCTGAGACAGCAGCCTGCCACTCGGACACAGCAGTCTAACATCTGGGTGAATATGGGTATGATGAGCCTGAGAATGTTTCCTCAGCATTTACCGAGAGGAAATGTACCTTCTCCGAATGCACCTTTAAAGCGAGTATTAGCCTATACAGGCTGTTTTAGTCGAATGCAGACCATCAAGGAAATTCACGAATATCTGTCTCAAAGACTGCGCATTAAAGAGGAAGATATGCGCCTGTGGCTGTACAACAGTGAGAACTACCTTACTCTTCTGGATGATGAGGATCATAGATTGGAATATTTGAAAATCCAGGATGAACAACACTTGGTAATTGAAGTTCGCAACAAAGATATGAGTTGGCCTGAGGAGATGTCTTTTATAGCAAATAGTAGTAAAATAGATAGACACAAGGTTCCCACAGAAAAGGGAGCCACAGGTCTAAGCAACCTGGGAAACACATGCTTCATGAACTCAAGCATCCAGTGTGTTAGTAACACACAGCCACTGACACAGTATTTTATCTCAGGGAGACATCTTTATGAACTCAACAGGACAAATCCCATTGGTATGAAGGGGCATATGGCTAAATGCTATGGTGATTTAGTACAGGAACTTTGGAGTGGAACTCAGAAGAATGTTGCCCCATTAAAGCTTCGGTGGACCATAGCAAAATATGCACCCAGGTTTAATGGGTTCCAGCAACAAGACTCCCAAGAACTTCTGGCTTTTCTCTTGGATGGTCTTCATGAAGATCTCAACCGAGTCCATGAAAAGCCATATGTGGAACTAAAGGACAGTGATGGCCGACCAGACTGGGAAGTAGCTGCAGAGGCCTGGGACAACCATCTAAGAAGAAATAGATCAATTGTTGTGGATTTGTTCCATGGGCAGCTAAGATCTCAAGTCAAATGCAAGACGTGTGGGCACATAAGTGTCCGATTTGACCCTTTCAATTTTTTGTCTTTGCCACTACCAATGGACAGTTATATGCACTTAGAAATAACAGTAATTAAGTTAGATGGTACTACTCCTGTACGGTATGGACTAAGACTGAATATGGATGAAAAGTACACAGGTTTAAAAAAACAGCTGAGCGATCTCTGTGGACTTAATTCAGAGCAAATCCTTCTAGCAGAAGTACATGGTTCCAACATAAAGAACTTTCCTCAGGACAACCAAAAAGTGCGACTCTCAGTGAGTGGATTTTTGTGTGCATTTGAAATTCCTGTCCCTGCATCTCCAATTTCAGCTTCTAGTCCAACACAGACAGATTTCTCCTCTTCGCCATCTACAAATGGAATGTTCACCCTAACTACCAACGGGGACCTGCCCCGACCACTATTCATCCCCAATGGAATGCCAAACACTGTTGTGCCATGTGGAACTGAGAAGAACTTTACAAACGGGATGGTTAATGGTCATATGCCATCTCTTCCTGACAGCCCCTTTGCAGGATACATCATTGCAGTCCACCGAAAAATGATGAGGACAGAACTGTATTTCCTGTCGTCTCAGAAGAACCGCCCCAGCCTCTTTGGAATGCCATTGATTGTTCCATGTACTGTGCATACCCGGAAGAAAGACCTATATGATGCGGTTTGGATTCAAGTATCCCGGTTAGCCAGCCCACTCCCACCTCAGGAAGCTAGTAATCATGCCCAGGATTGTGATGACAGTATGGGCTATCAGTATCCATTTACTCTACGAGTCGTGCAGAAAGATGGGAACTCCTGTGCTTGGTGCCCATGGTATAGATTTTGCAGAGGCTGTAAAATTGATTGTGGGGAAGACAGAGCTTTCATTGGAAATGCCTATATTGCTGTGGATTGGGACCCCACAGCCCTTCACCTTCGCTATCAAACGTCCCAGGAAAGGGTTGTAGATGAGCATGAGAGTGTGGAGCAGAGTCGGAGAGCACAAGCCGAGCCCATCAATCTGGACAGCTGTCTCCGTGCTTTCACCAATGAGGAAGAGCTAGGGGAAAATGAAATGTACTACTGTTCCAAGTGTAAGACCCACTGTTTGGCAACCAAGAAGCTGGATCTCTGGAGGCTTCCACCCATCCTGATAATTCATCTTAAGCGATTTCAATTTGTAAATGGTCGATGGATAAAATCACAGAAAATTGTCAAATTTCCTCGGGAAAGTTTTGACCCGAGTGCTTTTTTGGTACCAAGAGATCCAGCGCTCTGCCAGCGTAAACCACTCACACCCCAGGGAGACGAGCTCTCCGAGACCAGGGTTCTGGCAAGAGAGGTGAAGAAAGTGGAAGCGCAGAGTTCGGCCGGGGAAGAGGATGTGCTCCTGAGCAAAAGCCCATCCTCACTTAGCGCCAACATTATCAGCAGCCCAAAAGGTTCTCCTTCTTCAACAAGAAAAAGTGGAACCAGCTGTCCCTCCAGCAAAAACAGCAGCCCTAATAGCAGCCCACGGACTCTGGGGAGGAGCAAAGGGAGGCTCCGGCTGCCCCAGATTGGCAGCAAAAATAAACTGTCAAGTAGTAAGGAGAACTTGGATGCCAGCAAAGAGAATGGGGCTGGGCAGATCTGTGAGCTGGCTGACGCCTTGAGCCGAGGGCATATGCTGGGGGGCAGCCAACCAGAGCTGGTCACTCCTCAGGACCATGAGGTAGCTTTGGCCAATGGATTCCTTTATGAGCATGAAGCATGTGGCAACGGCTACAGCAATGGTCAGCTTGGAAACCACAGTGAAGAAGACAGCACTGATGACCAAAGAGAAGACACTCGTATTAAACCTATTTATAATCTATATGCAATTTCGTGCCATTCAGGAATTCTGGGTGGGGGCCATTATGTCACTTATGCCAAAAACCCAAACTGCAAGTGGTACTGTTACAATGACAGCAGCTGTAAGGAACTTCACCCTGATGAAATTGACACCGACTCTGCCTACATTCTTTTCTATGAGCAGCAGGGGATAGACTATGCACAATTTCTGCCAAAGATTGATGGCAAAAAGATGGCAGACACAAGCAGTATGGATGAAGACTTTGAGTCTGATTATAAAAAGTACTGTGTGTTACAGTAAAGCTACCACTCTGGCTGCTAGACAGCTTGGTGGTGAGGGAGATGACTCCTTGTAGCTGACATTTGGCAGAAGCGTCACTGAAAGGCAAGCTAAATGTAGTTATTTTATCCTGTGACCCTGAAGCACAAAATAAAAATTCTAATTAAAATAGTTAACTTTAAGAGTAGTAATAATTTTATTTTGAAGTCTCATACAAGCTCTCCGACAGAGAACTTTCAGGCAGATCCCACCATTAGCCTGTAAACAAAGGGTTTGGCACCAGCCACCTGGGACCAAATAAGAATTCAACTGTGCTTGTCCAGATGTGAACAAATATGTAGTGAGTATAGAGTTTACCAGTAATCATAACAAATATTAAAGATTTCCTTGGAGTCAAAGTAAAAAACAAAAAATTATAATGTTGTCTAGGGACGACATGATATGCTACCTCCTTTTTCCTGAAGTTTTATTCCATTATATTGACAAGATGGAGAAAGCAAGATCATGAAGGTGTGCAAATGATTCTTATGGCATGGATGATGATTTTTTGATTTATTTTTTAAATTGTTTCCCTACTCTGTCTTTCTTGTTTTTTGTTTTTGTCATTGTGTTTGAGTTTGAGACACAACCAGTCATTGGTGGCAGGGGCATATAGTGGTTAGTCTGAAAGGGAGGCTTTCTTAAGAGCTATGTGCCTTCCACCCAGAGCCTTGTGGGAGACCCAGTAAAAAGGAAAAGCATCCTGGGAAATCCAGCTACCATGGCCCTCCCAATGGAGGCATCTTACATTTAGGATACTTCAAGTATCCTCAGAAATGTATTCTGCACCCCCGGCCCCACCCATGCTGAGGGAGGGGATGTTTGCCAATATTTGCATCATCTTCACATGCACATGTTGCAACAAGAGCTTCTGGGAAGGTAAGCAGCATTGGAGCTAGATCAAGTTTCACAATTAGTGGTTCTTTTCCGTGTTTGTTTTGCACTTTAAAAAGGAGAGAACACATGCAAATGAATCTGCTTGTGTGTATTTGATGGCTCTAAGGGCTATAAATTAAAACAAAACACATCCCAGACATTGGGATTTCATAGATTTATTTAAGGAAGTTGGTAGTTTTAGGAAGTCAACTTTAGTTTTGCTTTATTTGCATGTCCACTAATTTTTTTATTTTGATATTTGTCTTTTTAAAAAAATTTGCAGTAGTTATTAAAAGTTATGTTTCTTTGCTTACTTCATTTTTTTCTCCAATTATTCAAGACTGGAACAAACATAAATATTATTTATTTCAGGTAGCATTTTTTTTCTGTGTAGTTTTTTAATATATATTTGAAGGAAATGTTTCATCTTGTTTTTGGTCTTTGTTTATTCATTTAGACCCTGCAAGTTGATTCTCATTAATTGTCAGATTCCACTACCCTTTCTTCCTCAGAGGTAGTAATTACCAATGTAACTAAGCATTTGTATTCTGATATCTGAGGCCAGTAACTATTAATATCTAGTTCTTTTCAGAGCATTTGGAATGGTTACCTTAAATGACTACCTAAATTGAAATCCTTTTCAGAAAAAATATAATTACAAGTAGAAAGGAGTGGCCTAAATTGTATAATGTAATAAAGTCAGACAAAATGCATACTTTATAGTTTCAGATTTTCAGTATATAAAATGTGTCCATTCCTACCTGGACATGTCCCATTAAAAAGTGGAAGATTTTAAATAATTTCTTTACAGATGTTTTATTTAAGCAGGTAGCACAATCTACTAATGTTGTTTGATCTGTGTTTGTTATACTGGTTGTAATTAATTTTTTTAATTCACGAACTAGCAGAAAGTTTATTAAATTAACTATTAACTACATTCACCTTGTAAATTACTGTATAAAACTTGTTGACAATGCACTGACTTTAGAAAGATGTTAATGTACATAAATAGAGTGTAAATAAAATAGTGTTGATGTACTGAAATATGAACTGTATAAAAAGTATTGGTAATTGTATATGGGGTGTACCTGTTTATCTGTAACTATTATCCAAACAAATTAAATACTGTGGATGCCTCTATGTGCTGTTTTGCCTCATACAAGTAAACACAGAAAGTCAAATTCTTCAA +>HQ846933.1 Monilinia fructicola isolate HAG7 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +CCTCCCACCCTTGGGTATTATTACTTTGTTGCTTTGGCGAGCTGCCTTCGGGCCTTGTATGCTCGCCAGAGGATAATTAAACTCTTTTTATTAATGTCGTCTGAGTACTATATAATAGTTAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCGGGGGGCATGCCTGTTCGAGCGTCATTTCAACCCTCAAGCACAGCTTGGTATTGAGTCTATGTCAGTAATGGCAGGCTCTAAAATCAGTGGCGGCGCCGCTGGGTCCTGAACGTAGTAATATCTCTCGTTACAGGTTCTCAGTGTGCTTCTGCCAAAACCCAAATTTTCT +>XM_035415524.1 PREDICTED: Anguilla anguilla abl interactor 1-like (LOC118226150), transcript variant X7, mRNA +TCAGTTTTTTTGTATGTAGCTGGTGAAAGGTCGCTGTGGTGAAATCGAGGCCAGGAATCCCACAATACTAGGCGAAGGAGCTCCTTTTCGGGGCTGAGCTTGTGGTTTTAATCAAAGGGAAGGCGAAGAAGCGATGCAGAGACATGTAAGATGGCAGAGTTACAAATGTTGTTAGAAGAGGAAATTCCAGCCGGCAAAAGAGCCCTGGTAGAGAGCTACCAGAACCTCACGAGGGTTGCGGACTATTGTGAAAGCAATTATGTTCAGGCCCAGGACAAGCGGAAAGCTCTGGAAGAGACCAAAGCCTACACCACCCAGTCTCTGGCTAGCGTGGCCTACCAGATCAATGCCTTAGCCAACAACGTGCTACAGCTGCTGGACATCCAGGCATCCCAGCTGAGGAGAATGGAGTCCTCCATCAACCACATCTCCCAGACTGTGGACATCCACAAGGAGAAGGTTGCCAGGCGAGAGATTGGAATTCTGACCACAAACAAGAACACCTCGAGGACCCATAAAATCATCGCCCCCGCCAACATGGAGAGGCCGGTGAGGTACATCCGGAAGCCCGTAGACTACACGGTGCTGGACGACGTGGGCCACGGAGTCAAGTGGCTGAAAGCTAAGCAGGGGAACAACCAGCCGGCCAGAGGAGGGACGCTATCGAGGACCAATCCGCCGACGCAGAAGCCCCCCAGCCCGCCCATGTCCGGGCGTGGCACTCTCGGACGCAACACACCATACAAAACCCTGGAACCCGTTAAGCCTCCTGTCCTGCCCAACGACTACATGACCAGCCCCGCCCGCCTGGGCAGCCAGCACAGCCCTGGGCGCACAGCCTCCCTCAGCCAGAGGCCCAGAACTCACAGTGGAAGCAGCGGGGGCAGCGGCAGTCGTGAGAACAGCGGCAGCAGCAGCGGCGTTGGCATTCCACTAGCGGTGCCTACGCCTTCTCCACCCACTATGGCACCAGCAGTGGCCCCAGGGCCCGGTCCAGGCCCGATTCCCATGTCCCAGTTTGGCACGCTGTCTCGGCAGATCTCCAGGCACAATTCCACCACCTCCTCAGTCTCCACGGTTTCGGCCACGGGGACGTACAGGCGGGCCCCCTCCGTCACGTCCCAGTTCTCAGTCCAGCAGCCGCACATTAACGGCGGCCCCCAGGTGTACCCCCAGAACTCAATCGCCGACACCCCCAGCCTCCCGCCCCCTCCTCCCCCGGACGATGTCCCGATGTTCGACGAATCCCCGCCGCCACCCCCTCCACCGCCGGTGGACTACGAGGACGAGGATGCGGCCGTCGTGCACTACAACGACCCCTATGCGGACGGCGACCCTCAATGGGCCCCCAAGACGTACACTGAAAAAGTGGTGGCCATATACGACTACAGCAAGGACAAGGACGATGAGCTGTCTTTTATGGAGGGGGCAATCATCTACATCATCAAGAAGAACGACGACGGCTGGTTCGAGGGGGTCTGCAACGGCGTTACTGGCCTCTTCCCTGGAAACTACGTGGAGTCCATCATGCACTATGCTGACTAAAGACACCCCTTTTTTCTTCAGTCATCCCAAGACCATTATAAAAAAAGCATAACACTGGTCTACAAAAGCATATGTATAAGTGCATTAGAAAATGACCGAATGTTTGTTCCTTATTGAATTGCAAATAAAATAAATTCTATTTAGTTTTTTTGGTGGGAAGATTGTGGGATATAATGTATTACTTTGATGAGGTCCAATGGCTTGGTTGATCACATGCTCATGTCTGTCAGTTGTCCTGTCAGTTAATTGTATATAATGTTGAGGGCTGCAATTGGGTTGTTGGTAGTGTTACTGTTAATATTGATAAATGTCCTGAGCAGTGGATGCCACAAGTGAACATGTTAAAGTAGGGATTATGTTTTATAATGAGTCCGGTTATAAATTGTGCCATTTTCCCCCCTACCTTATCTTCCTCAGAAGACACAAGACCAATTTAATGCATTTTGGATCCTGAATGCAAACTTAACTGCTTGCCAGAATTGCAGACTTTTTTTTAGAACAGTGTTTCCTGGCTACTCGTAATTCCTGAAATGTACTTATCTTGCCGTGAAGCATGCACACAAAAGAACTGTAACATATACTTTATTTCCATTATGCTTCCAGTATGGTGTAATATTTACAGTGAGCACTCAAAATTAGTTTTTTTAAATGAAATGTCTGAAGCGGTTGTTTAAAGTCGTATTCTTTTTTCTGAAATGCTCTAATTTGTATTTAAAACATTTGATATGATTACATTTACATTAATAATTTCTACATTGAGTTATATATGTAAAACAAGGCTGTTTTGTTGGTAAGGTGTCTCAGAAGTCTGGAACCCTTGCCATTTGCTTGATACAGGTGTTGAAATGGTTTAAATTTCCAATCATTTATAGTTACAAAAGCAAAACCTCAAGTCATTAAAATTTCTGTGGAGAAAATACATGGTTCTAAAAACTTCAGTTAATTGGATGTTCTGTGTTTTAGTGTTAATGAGCTCTATCAAACATGGATATTTTAGATGTGGCCAAAATGTGCTCAGTTGGGTTATAACTGTTTCTCATCTGTCACCTAAAAAGCCATATGAATATTCCATTTTTAAAAATTGTAATGAAAACCAATACAACATATTCCTCTTCCTGAGAGGAAAAACAAGGGAGTTGCCATCCTGTCAAAGTATTGGTTTACTATTTTTAAAAATTTAATTACTCCATTAATTGTCTAGGTTCATAACTCAGGTCTAGTAATCTCCTTTGTTATTAAACAATCACTACAACAGAGCAAGGCAATGCCATCTTTTCATCTCTTAGTTTTGTACATTTTCTGTATTTTATAATGTATGAACATAAGTTTGAACCTTACCACTAAACCTGCTTTAAAAGGAAGTCACTCCTTCAAGTTTCACCTCTTCTTGAAAAATCCATTAGGTTGAAACTGACTGCTTACAGTATATTAATCACCAATGTGTGTTTCAGGATATTATCGCCAATTCCTTGATTCTTCAGTGTACGCTTTGGTATATTAAATGTGGAAAATTGCTAAATTCTTGCTTTCCTTTGGGAAGAACCCAAAACTTCTCTTCCAACCATAATTTGTATATATAAAAATGTTAATGAAATTTATGTACAGCTTTTTTATATAATAAATCATTCTCCTATATA +>XM_017904422.1 PREDICTED: Eufriesea mexicana facilitated trehalose transporter Tret1 (LOC108550645), transcript variant X4, mRNA +ATTAAAAATCGAAGCAAGAAAAAATGGCGACATCCAAAACTCAGATAAATCATCTTTAGTGGAGTCAACATTACTTCCAAAAACCCAGTCAGTTAACCAGTTGGAAGATGGAAGACCTGAGCTTGCAACCAACAGTGGATACAGCGATGATGGAAATGGTCGAAATGTTAGTGGAAGTGTCATCAAACAAGTTCTGGCAGCAATAGTAGCGCAACTTGGGACCATTAACACTGGTATGACTTTTGGTTTTTCTGCCATTGCACTACCACAACTTCAGGAACAAAATAGCACCATTCCTATCGTCGAGGGATCATCCGAAGAATCATGGATCGCGAGTATGTCTTCCATTGGAACTCCCATTGGTTGTTTAGTGTCTGGATATATGATGGACGTACTTGGAAGAAAACGATCTCTCATTATTACTGAGATTCCAGCATTACTTGGATGGATATTAATTGCATTAGCAACTGATATTCGTATGATATATGCTGGAAGATTCTTCGTTGGACTTGGATCGGGTATGGTAGGCGCTCCAGCACGCGTCTATACTGGAGAAGTAACACAACCCCATCTACGAGGAATGTTGACTGCTTTTGCAAGTATTGGAGTCAGCACTGGTGTTCTGATCGAGTATGCATTAGGAAGCGCACTTACATGGAACGTCTGCGCAGCTATTAGTGGAATTATACCTCTTGCCGCTCTGCTGTTAATGTTTCTCTTTCCTGAGACACCTTCATACCTCATATCTCGTAGTAGACCTGAAAAGGCACGAAAAGCGTTACGACAATTTCGCGGTAGTACATATAATATTAATCAGGAAATGGAAACACTTATTAATTTTTCAAATAAGAATAATATTAAGCGTTTAACAGGATTCCGTGAGATAATTAGCGCCCTTTTAAAGCCTAATGCTGTCAAACCTTTTACTGTCCTATTCTTGTACTTCTTAATATACCAATGGTCAGGTACAAATGTCATAACTTTTTATGCTGTTGAAATTTTTAAAGATTCAGGAGCAACGTTAAATAAGTACTTAGCTGCAGTAATTCTCGGAATAGTAAGATTAATATCAACGGTTGCCGCTTGTATCTTGTGTAGAAAGTGTGGCCGAAGGCCCCTTACAATGATTTCTTCCATCGGTTGTGGACTTTCCATGGTAGGATTAGGTGGATATATGTGGCTGAAAAATAACTGGGATGCAAATAATTTTACACCTGTTGCTACTTGGTTCCCTGTCTTTTGTATATTTGCATATACTGTAACTTGCACACTTGGTTTTCTTGTTATTCCTTGGGTAATGATAGGCGAGGTATATCCAATACAAGTACGCGGTATTATTGGAGGTTTAACTACAATGGCAGCCCACTCTTTTATTTTTACAGTAGTTAAAACGTATCCGTTCCTAGCTAACGCACTTACTCGGCACGGTACTTTCATCCTTTATGGTTGTATATCTTTATTCGGCACGATATATTTTTATCTATGTCTTCCCGAAACTAAGGGTAAAACTCTTCAAGAAATAGAAGATTACTTTTCTGGTAGAAACAATAACTTAAGAACCGGAAGTATAGGTAAACATAAGCCAAAGGTATTAGAAGTAAAAAAGGGTCACATATTGCCTTGAATAACTCATACAGTGAACATCTTAATAAAATTAAATTAATAAATCTGTCTTCCATTGAACAAAT +>XM_001378120.4 PREDICTED: Monodelphis domestica inhibin beta C (INHBC), mRNA +ACCCTGCTTTGTACTTTAGCTACTTATCAGTTGGCAGAGTCTGCCAAGTTCTAGTGTTGGTCTTGTCCTTCTCAAGCCAGATGTGCGGCCACCATCTCTCCCAAGGTAAAGAATCATGCCAGCTGGACACACACCTTTGGTGTGGACTCTAGCATTTAAAACTCAAGTGGCATAGTGGCTGAAGCCCTGAGCCCCAGATTTAAGGTGTTTCTTCTTCCAGAGGAAGACCCAGCTGAAAATGGTCTCTACTCTGCTCCTGAGTCTCCTGCTCTTGATTCCAGCTGCAGCAGGGACCGAATGGATTGATGGTCAATGTCCAGCATGTGGGGTGCCTGGTTCAGATCCTGAGAGACAGAGGGAAATACTGCTCAATCTGGCAAAGCAAAATATCCTGGATAAACTGCACTTAACTCAACGCCCGACACTGATCCAGCCTGTGTCCAAAGCCACCCTGAGAACTGCACTTCGACGCCTCCACGGTCTCCAAGGAGGAAGGATTGTGCCTGGTAGCACTTTAGGGGGTTCTGGGACTGGAGTTGAGGAACAGGAGTATGAGATCATCAGTTTTGCTGAGACAGGCTACTCTACCACCAACAGGACGGTGCTGGATTTCCAACTCTCCCCAGATCAAAGCAGTGGTAGCTTGGAGGTCCTCCAAGCCAGGCTGGGTTTTTTCTTGAAGATTCCTCCCAATGGCACATGGACTATGCACGTGAGGGTCCTGGGGCCTGGGCCCCGGGACACCAACCTCACTTTGACCACCCAACACCAGCTAGAGGTAGATGCCAGTGGCTGGCACCAGTTCCTCCTGGGGCCAGAGGCCCAGGCTGCTTATGGTCAAGGGCATCTGACCCTAGAATTGGAGGCCAAAGGCTGGGGAGCCCAGGGCCCAGTTTTCTTGGAAAAGGATGCCCATCAGCCCTTTATAGTAGCTCAGGTGAGAATAGGAGAAAAGCACCGGATTCATCGTCGAGGCATCGAGTGCCAAGGTGGGTCTCAGATGTGTTGTCGACAAGAGTTCTTTGTAGATTTCCGGGAGATTGGCTGGAATGACTGGATCATTCAACCTGAAGGTTATGCTATGAACTTCTGTACAGGGCAGTGCCCACTACATGTGGCAGGCATGCCAGGAATCGCTGCCTCTTTCCACACTGCTGTGCTTAACTTGCTCAAGGCTAATGGGGCCCCAGGAACAACTGGAGGAGGCTCCTGCTGTGTGCCTACTGCCCGCCGCCCTTTGTCCCTTCTCTACTATGACCGCGACAGCAACATTGTCAAGACTGACATCCCAGATATGGTGGTGGAGGCCTGTGGCTGCAGTTAATGTGTATAAAAGGGAAGGAGGACACGCAGAAGAGGACATTCACTTAGAGATTCCCTTCTCATCTCAGGCAGGTTGTTCACAAATTCTTCCACAACCCATAATGGGGAACCAAGGCATTTCTGGAAATCCTTCCACTCTCCCTCTGGACATTCTATTGAAGCATCTGGTAGCAGGGTAGACAGAGAGCACTGGACCTCAGCAAGACCGAGTTCAAAGTTGGCTTCAGTATGACCTGGAGCAAATCACTTGTCTTTATAGTCTCCTCAGCTATAAAATGGGAACAATAATAGTACCTATCTCACAGGATGGTTGCATGAATGAAATGAGATGTTTGTAAAAAAGTACCATAGTACTTGGTGCATAGCA +>XM_017900195.1 PREDICTED: Eufriesea mexicana UPF0769 protein C21orf59 homolog (LOC108547609), mRNA +ATGGTCCGGATGCACGTGAAGAGAGGCGAGGAGAGCCAGTTTCTGTACGACACACACGTGGAGGCTCGGGTTGAAGACATTATATACGGCATTACTATTATTTACAACGGCCGGCTGAAGATCTCGAGAATATGTTATGAAATCGAGGAGCTGGCCAAGCACGGCACCATGCTGCCCCATAACATCATGGGCCTCACCGACGAGCAGGTAGAGGAGCTGAAGCTCAAGGACGAGTGGGGCGAGAAGTGCGTACCGATGGGCGGATGGACCTTTAACAAGGACGTTATCGGCCGCAGAAACGGCAGACAGCCTAACGCGAAGATGCAGGAGGTCTTGAACAAAACGATCGGGGAGGCACGAGCTATGGTTTCAAAGAAATTGATACAAGAGGAAAAACTGGTGACGCAGAAAACTGTGCAAGATGCACTGGATATACTGAGGGGGGCCGTAACGATTGTGTATCCGATGGGACTTCCGCCTCACGATACGATCCGACAGGAATTCGAAAACACCGAGGATCTGAGTGGCACTCAGGCATCTCTCGAAGTTATCGACGTACAACTGGCGCAACTTTGGTTCTCGGGAAAGGAAATGTTACCGGGAAGAAAATTAAAAGATTATTTGGGGATGAACGAGAAAACCAAGATTATCGTGAAGCTGCAGAAAAGAGGAGCCGGAAGACCTGCTCGTGAACCTCTGATGTCAGAGGACGAAAGGAAAGAACTAATGCTGCATGCATATAAACGACAAGAACAACTCAAGATTTCTATCGTGGATAGTGATATTATGTTAACACAAGCGGGTAAAATCAGTTTTCTGATAATTCTCTCAATTTTTCTTCGGTTATGCAGTGCCATGTGGAGAATATTGTGGTGCCTGGGTAAACCATATAAAGCTTAG +>XM_007934287.1 Pseudocercospora fijiensis CIRAD86 uncharacterized protein (MYCFIDRAFT_46883), partial mRNA +ATGGCCGCGCCTGCACAAAATGGCCCTGTGCCCGCGGGCGCCCCTGCAAAAGCGACAGAAGCGCAACTCATCACTGCCTTTGACAACTCAATATGGTATCTACTTGACCTATGGCAACCGCTATCCATCGCAGTGGATAATGGCTGGGGCGGAGGGAATTCTTCAGACAAGCGCGACTGGTTCGCCGGCGCAGTTTCCGATTTCTTGAATCAACCGCAGTATATCAATCCTGCTCCGGGTGCTGTGCTCACCTTCGCCGACATGCAAGAAGATCTCGAAGTTTTCCTCCTACAAATCATGCAGGACGAGTTTGACTGCAACATCGAAGACGAATCGGAAGTGGAGCTTGCGAACGGCATCCTCAGAGTGCGAAAAGCCATGACTGAGACCTTAAGCACGGCTGCGGCGGACGAGGTGAAACAGAGATGGGAGAATCGAGGAAGCAAAAAGCATGAAAAGATTGTGGTTCAGGAAACGAACCAGGAAGTTGGCGACGACGAAGAGTGGGATGGTTTTGATGAGGACGAGGATATGGACGAGGCGCCACAGCTCCTGCAAGCGCCTGCACAGCCGCGAGAAAAGCCTATACCTGAGGTTGACGAGGACGGATTCACAAAAGTCCCGAGCAAGAAAAAGAGATGA +>XM_007491848.2 PREDICTED: Monodelphis domestica cytochrome c oxidase subunit 6B1 (LOC100013297), transcript variant X1, mRNA +CGTTCCAGGCCTACGCTTCCGCTTCCGGTCTCGGACCCTTAGTGCTGAGGGTCACATTGAATCTGCGGTGCCCGCGGGATTAGCAGCGGAGACAACTACAGTGACAGCGGTAGGAGCGGCCTCAGTCCAGGAGCCACCATGTCTGATGATATCAAGGCCAAGATCCGAAACTACCGCACTGCGCCCTTTGACAGCCGCTTCCCCAATCAGAACCAGACCCGCAACTGCTGGCAGAACTACCTGGACTTTCACCGTTGTGAGAAGGCCATGACTGAGAGAGGCGGTGATGTGTCTGTCTGCCAGTGGTACAAACGTGTCTACAAGTCCCTCTGTCCCTTGTCCTGGGTCAGTAATTGGGATGATCGCAGAGCAGAAGAAACCTTCCCTGGAAAGATCTGAGCGACTTCCTTTTCCTCCCTTCTCCCCGACCCCAATGTCTGGGGCTGGATCCCTTCTTCCCTCAGCGTGGGGGGAATGTGATCTGTGGCTACCCCTGCCCTGAGGGGCCTGAATCATGTTAAAATAAACTGTTGGAATC +>XM_024666474.1 PREDICTED: Selaginella moellendorffii aquaporin NIP1-1-like (LOC112343293), mRNA +CCCTGCGCCGCGCGCCTCTATACTCTCCCAAAGTCTCCACAATTTATGGCCGCTTATAAAAGCTTGCACGACTTCTCTGCCTCCTCGCGCACAACCATCTCTCCTCTCCCCAATTCCTCGCCTGATCGAATGTGATCGCTTCTTGGGCTGTGCTGCGACGACCTTCCTGACCCGATCCATGGCAGCAGCGGCGGCAGGGATGAGCGATTTCCAGCTCAACGAGATCCGGGTCACGCCAGCGCCCTCCATCGCTCTCCCCGCGAATGGCCACCAGATTCATCACCAGGCCTCGCCTCCCGCGGCCTCTAGGGGATGCATTCCAGTCGCCATCGTGCCCAAATCCACGCTCTTCCAGAAGATTGGCGCGGAAGTGATCAGCACATTCATCCTCGTCTTCGCGGGATGTGGCGCCGCGATGGTGGACGCCAAGTACAAGGATTCGATCACCCACTTGGGCGTCTCGGCGGCGTTTGGGCTCGTGGTGATGATCATGGTCTACGCCGTCGGCCACATCTCTGGAGCTCACATGAATCCGGCCGTGACTCTGGCGTTTGCGACCGTGCGCCATTTCCCCTGGAAGCAAGTTCCTGCCTACATCGGCGCACAGGTCACTGCCGCGATCACTGCCGCGTTTGCGCTGCGGCTGATCATCAGCCCCGTGGCTAACATCGGTGCCACAATTCCCGCTGGAAGCGATCTCCAGTCCTTCTATCTGGAAGCGATCATCACCTACATTCTCATGTTCGTCGTCTCCGCCGTCGCCACCGACACTCGAGCGATTGGAGAATTGGCAGGCCTCGCAATCGGTGCTACAGTGGGCTTGAATGCCATCTTCGCCGGGCCGATTTCGGGCGCGTCAATGAATCCAGCACGAAGCTTGGGCCCCGCGATCGCCGCGAACAACTACAGTGGATTGTGGGTTTACATTGTCGGCCCGACAGTCGGCGCGCTGGCGGGTGCGTGTTCTTACAACATGATCCGGTTGCCCGTGAAGCCGGACGAGCTCCCCAGGGCCGCTAGCTTCAAGAGATAGAACAAGGCTGTAAAAAGAATAGCAGCTTTTAGGTGACCACCTAAGTGATAACTCAAGTAAAAAAATAACTAGTTAGCCGTGTCTCGGTTA +>FQ756522.1 16S rRNA amplicon fragment from a soil sample (ferralsol, Madagascar) resulting from a 16 days laboratory incubation experiment in the presence of 13C-enriched wheat-straw and a tropical peregrine endogeic earthworm, Pontoscolex corethrurus: Light-DNA fraction (DNA-SIP technique) +TAGCCTTGCGGCCGTACTCCCCAGGCGGGGCACTTAATGCGTTAGCTACGGCACGGAACCCGTCGATAAGGCCCCACACCTAGTGCCCAACGTTTACGGCGTGGACTACCAGGGTATCTAATCCTGTTCGCTCCCCACGCTTTCGCTCATCAGCGTCAGTACCGGCCCAGACCACCGCCTTCGCCACCGGTGTTCCTCCTGATATCTGCGCATTTCACCGCTACACCAGGAATTCCGTGGTCCCCTACCGGACTCCAGCCATAGAAGTATCGAGTGGCCGCTCCAGGTTGAGCCTGGAGGTTTCACACCCGACTTTCCAAGCCGCCTACGAGCTCTTTACGCCCAATGAATCCGGACAACGCTC +>XM_047971315.1 Xylaria bambusicola Gar1/Naf1 RNA binding region-domain-containing protein (F5B22DRAFT_384725), mRNA +TCTTTTTGCGATACTCGAAGAGACAACTTGACATTGAAATACTACAAAGCTATATATACACCCCATGATCTTCTCAATTGTTCTCACCAGGTTTCTATGGTAGCTGCATCTCGCCCTGTCTACTTACTTAGGTTGGTATTCGGTGAGTTTGCTGTCTGGTATCAGTACCAGATCTACAAGAATCCATCGCCACAAGCAGCCTATCCGTGAAAGCAATAATCCCAGAATCAACACCTACATCACCAACACCGTCATGTCTGACGTCAAAATTCCTGGACTTGGCAACTTGCAACCCGCCGCGGATACAGAGAGTGGCAATGTCCAGCCTACTGCGGTGCCTGCGGTGCCGGCAGACGAAATGGCGGTTGATAATCCACCAAGTCCACCATCACTCACGTCGGGACTCGAAGCCCTCCTTGGTGGCCTAGACCCTCTACCAGAGCCAGTGCCCGCTTCATCAGAACAAAGTAAAGATACCACTGGTGCTCTACCGGAAACAAACAACACAGCTGTATCAGAGACTGAAAATCCAGCGCAAGCCAGCGCCTCCCAAGAAGCTGGTAATGATAACGTGCAAGAAGAGCATCCAGAGTGGGAAGTGGACTCATCTCCCTACGAGTCATCTTCCGACTCTAGCAGCTCGGATGACTCTGATGAGGACTCTGACGATGAGAAAGACTATAAGATTCTTGGGCCCGAGGAGACCGCCCGTATACTCATGGAAATGGATGGTGGGTCTGACGACGAAGGTGATGGCAAGGGAAAAGGTAGCAGTTCTGGTATGGTACGAACCAAAAATGAGCTCCCTGAAGCCATCGTCCCGCGACCCGAAGTTGAGATCAAACCTGAGATGGAGATAGTTGAGCTGGGTTCGATTGAGCATTTCGTTGGCAACACCGCTGTCATCAAAGCAAATACCGACGGAGAGTACCAAGTCCTCGACACAGGATCTGTGCTTTGTCTTGCAGACCGAACCGTGATAGCTGCCGTGGCGGATGTCATCGCGGCGGTGCGGGAGCCTCGGTATACCGCTGGCTTCCAAAACGAAGAAGAGATCAAGTCTTTCGGATTAGAGACTGGAACCAAGATCTTCTACCCACCTGCACTAGCAAGTCTTGGGTTCACAGAGATGCTCAAAGCCAACAAGGGCACAGATGCAAGTAACTGGCACGACGAGGAGGTCGCTGAAGACGAAATCGAATTCTCGGATGATGAGAAGGAGGCAGAGCACAAGCGCCAATTGAAAGCCAAAAAGCGAGGGGCACGTGGTGGTCGAGAGGGTGCGGCGAGTCGAGGAGGACGTAACGATGCTATTCCTGCGGGTGCCTCCATGGCCTCGGCTGAATTGAAGTACGATGATAATGACGATGATGACGGCCCTTACCGACCGCTAGCTCGTCCAGTAGGATTTGGGCAAAACCAAGCCTCCCATGGAAGCAGTGAGCCTCCGAGTGGCTTCTCTGGCCATTCCGGTGGTCATTGGGGAAATCGAGGCGACTTTAGAGGCAGAGGGAGCCGTGGCCGGGGCGGACGTGGCAATCGTGGTGGCAATGTGCGTGGCGGATATTCACTACCACCAAGACCACAAGGTCAAGACGGCCAGGGAGCGCAAAGTTACCACCAACAACAACCACCTGCGCAACAGTACAGTCTACCTCCTATGGTGATGGGTGGTCAACCCTTTACAAGCTTAAGTCCTCCTCAACCCAACGCTCAGCAACCACATGGACCTGCCAACCAGCAGTTTCCCTTCCCCTGGCCACAAAATGCTCAACCAGGCTTTTATCCTCCTCCACCACCTCAATTCACAGGCCAGTCTGGTGCAAATGGGATGTATTTACCGCCCAATTTCTTGACAGCTCTACAAAATCAGATGCAAGCCCAACAAAATCAACAAAACAACCAGTGGCCCGGTCCACATGGCCAACACAACACTAACTCATGGCCTGGACAAGGAGGCCACGGGTAAAAATTTAGCATGTCGTTTGCTTGTGCTGGGGAAATCGGCACGTGGATTATAGGCAATAGGTTGTGGCATGGATCTAACATTTTAGGCGCATATACTCTGGCCAGCTGTGATGGCGAAAGTAAGGACAGGGCTGCCCAGCATGGACCTTGTTCAAAATAACGATGATGACTACCGTACTCTTGGTAGCACGTACGGCTCATTTGCTCGCTAACTGGCTATTGGCCTGAACTGACAGAGAAGAGAACGTCCCTCGGCTGAACTGTCGATCGCGCCTTATCTACATACTTTGTACGTGTGGTTGTGACTAAAAGTCGAGTCGCCCCGTTTCCGTACGATAATATATATTATATGCTCCCTAAAATATGATTATATTTGATGCCACTCTTGTTCTCAGGGAGGCTGACATGCTGTTATTTTGCTGCGTCTTGATGCGACTGGTG +>XM_014964001.1 PREDICTED: Calidris pugnax family with sequence similarity 19 (chemokine (C-C motif)-like), member A2 (FAM19A2), transcript variant X1, mRNA +TTTTTTTTTTTTTTTTTCCCCCACTCAAATACTCTGAGACCGTGCACGAGAAACACTTCAAGTGGTCCCTCCCTTCCTACTTCCTTCACCCTTCCTCCAGCGTCTCTTTACCGGATTCCTGGTGTATTCCAAGGGAGAGGCGGGGGGAGAGGCGGCGGAGGGCTGCCTGCCCCAGCCCGGCCCAGCCGAGGGGAGCCGAGCCGAGGCGGGCGCGGTGCCGCTCCATGCCCCCGGGCGCTGGCGGGGCGCGGGCCGTCTGCCGGCGATGCCCGGGCGGTGAGGCTGGAGCTGGAGCCGGAGCTCCCTCCCGACGGGAGGCGGCCGATCCCTAGGTGTTTCCAGGAGGAAGCGGGGCTGCAGGATGAATAAGAGATACTTACAGAAAGCAACAAAAGGAAAACTGCTAATAATAATATTTGTTGTAACTTTGTGGGGGAAATTAGCATCTGGGGCAAATCATCATAAAGCTCACCATGTTAAAACTGGGACCTGTGAAGTGGTGGCACTCCACAGATGTTGCAATAAGAACAAGATAGAAGAAAGATCACAAACAGTGAAGTGCTCCTGTTTCCCTGGGCAGGTGGCGGGTACCACCCGGGCAGCTCCTTCTTGTGTTGATGCTTCAATAGTGGAGCAGAAATGGTGGTGCCACATGCAACCATGTCTTGAAGGAGAGGAATGTAAAGTTCTTCCAGATCGTAAGGGATGGAGCTGTTCCTCTGGGAATAAAGTAAAAACAACGAGGGTAGGTATAATACCAACTTTACATGTTACCAACAGGTAA +>XM_012986102.1 PREDICTED: Erythranthe guttatus probable polyamine oxidase 4 (LOC105961838), mRNA +AAAAATCCCGAATTTACCCCTAGCCGAACAGAAAAATATCATGCACAAACAACAAACCGCGTACCCCTACGTCTCCTCTTTAAGTTAATCCGGACAACCAGCCTTTTTTCTTCTGCCTAACAAACAAATTTCTAGAGAGAGAGAGAGAGACAGACGGTGGTAGAGAGAGAGAGAGAGAGAAAGTAGGGGGAGAGCCAATCTATGCAACCGAGGACGAAGAATTCATCGGTTGGTGTAATTGAATCTTCTGGTTGTTGCCGTGAATGCAGCTCCTGCAATTGTTGCTATTATGATTATTATGAGCTTGTTTGACGATAACCTCCGCTGCGCTTCCAGTCTCAGCCGCCTCATTGCCGGACTTTTGCTTTTCCTCCTCTTTCATTCTTCCCAATTGATTTCTAATTTTCCGATTCCTATACACCCGTAATTTTTCGTTTTTTTTTTTTTGAAAAATTGTTGTTGGTAAGATCAGATTTGGTTCTCCATCAATTTTCATTCCCAGTTAGGGTTCTCTGAATTTGTTTGTGAGAGAGAGAGGTAGAGATAGAGAGAGAGATAGGTATTTTCAGTTGTCGATTAATGGAAGTCAAATATGGCGACGATTCGATCTCCGGCGAGTTTTTTGATGGCATTTACGGCTCCCTTGTAGAGAGGCCACACAATGCACTGCCTTCTGTCATCGTCATCGGTGGAGGAATATCAGGGATTGCAGCTGCACGCATGCTGCGTAATGCATCTTTTAAGGTGATCGTGATGGAGTCGCAAGATAGAATTGGTGGGCGCATTCACACCGATTACTCATTTGGTTGCCCAGTTGACATGGGAGCTTCCTGGTTGCATGGTGTCTGCAATGAGAATCCTTTGTCTCACGTGATACGTCGTTTGGGGCTCACGTTGTATCGTACAAGTGGTGATGACTCCATTCTGTATGACCACGACTTGGAAAGTTATGCACTCTTTGACATAAATGGACATCAAGTTCCCAAGAAAATGGTTATTGAAGTTGGAGTTGCATTTCAGAAAATCCTTGACGAGACGGATAAAGTGAGGGATGAACAAACCGACGACATATCTGTGAAGGAAGCAATATCAATCGTGCTGGATAGATATCCAGATTTAAGACAAGAAGGCGTCGCATGTGAAGTGTTGCAGTGGTACATTTGTAGAATGGAGGCTTGGTTTGCTGCTGATGCAGACATGATATCTCTGAAAGCGTGGGACCAGGAGAGAGTTCTTTCTGGTGGTCATGGGCTTATGGTGCAAGGGTACGATCCAGTCATAAAGGCCCTCTCAAGAGATATTGATATTCGCTTAAATCACCGAGTTGTAAAAATTGTGAACGGGTATAAGAAGGTGGTAGTAACACTTGAAGATGGGAGAAACTTCGTTGCAGATGCTGCTATTGTCACAGTGCCATTGGGAATTCTAAAATCCAACTTGATTGAGTTCGAGCCTAAGTTGCCAGAGTGGAAGCAGTCTGCAATATCAGATCTTGGTGTGGGAAATGAGAATAAAATTGCCTTAAAATTTGATAATGTTTTTTGGCCAAATGTGGAATATTTGGGCGTGGTTGCGAAAACGTCTTATTCGTGTGGCTATTTTCTTAATCTCCACAAGGCTACAGGCAATCCCGTCCTTGTCTATATGGCAGCTGGAGCACTTGCGGATGACCTTGAGAAGCTATCAGATGAAGCTGCTGTCGGTTTTGTAATGTCACAGCTTAAGCAAATGTTTCCTGATGCAACTAACCCTGTGCAGTACCTTGTATCACATTGGGGAACAGATCCAAACATTTTGGGATGCTATTCGTACGATGCTGTGGGGAATACAGAGGATATATACGACAGGCTTCGTGCACCAGTGGGGAATCTTTTCTTTGGAGGTGAAGCTGTAAGCGTTGATCATCAAGGATCGGTACACGGCGCGTATTCTGCTGGAATAATGGCTGCTGAAAACTGTCAAATGCATCTTATGCAGAGGCTCGGGGGTCTGGAAAGAGTTTCTGTCGTTGCCTGTCGGGAGGATCTTGTCGAGGCTAACGTTCCTCTTCAGATATCGAGATTATAAGTTATTTGTAATGCCAAGGAAATAAAGATAGTGCAACTTGGTTTTAGGACCGGCAAATGTGTGAACAAAGTTTTCCTTTTTTTTTTTTTTTTTGCCTTTTCTTCAAGCAGTGTGGAAACTACATTGTTCCTTTTAACTTTTGTTAGAAGTGATGCTTTGGTAGTTGATGAGTGGTAGCGCCTTTTTAAGAACTCAATTACTACAAGCAGAACAATGTTATTGGTACTTTGTTTTCAGACCA +>XM_030648245.1 PREDICTED: Cannabis sativa haloacid dehalogenase-like hydrolase domain-containing protein 3 (LOC115719273), mRNA +GCATGAAAAAGGGGTTAAAAAAAAGAATCAAAAGGGTACGTTAGAGCGGTTTTAGGCCATAGTTTTTCTCCGCCTTTGTTTTGGTGTTCTTTAAAGACTTAGGTTCAGCTGCCCTCTACAATCTACATCTACTTCCTTCCTCCGAAGCCAAACTCGGTTAATGTGGGGAATAACACCATTGCTCTTACCCATATACCAAAGCTATTCAACCACCACACACACACACAAAGAGAGATATCATTGGAGCTGTTGAAGGAGGTTGTTAGAATTAAAGTGTGTCACTTTATGATTTGACCATTTCTTCATAACAAGAGTTAGATAGTCTCATCAATTATCATACTTATAGAAAACTTATTACAGTAATTCTATAATGTCAATTTTGTCAAAATTACGATGTATTACGGTGGATGTAACTGGTACATTGATGGCTTACAAGGGAGAGTTAGGAGACTACTATTGCATGGCAGCCAAATCTGTTGGTCTGCCTTGCCCTGACTATAAACGGGTACATGAGGGCTTCAAACATGCATATAAAGACATGGCTCAAAAGTATCCATGTTTTGGATATGCTGCCAAAATGCCCAACATTGTGTGGTGGAAAACTTGTGTAAGAGACTCATTTATCAGGGCCGGTTATGACTACGATGAAGAGACATTTGAAAAGGTGTTTAGACGCATATATGCTTCATTTGGTTCTTCCGCCCCTTACACCATCTTTCCAGACTCCCAACCATTTTTAAGATGGGTCCGTGAGCAGGGTCTTCAGGTTGGCATTATTAGCAATGCAGAATACCGGTATAAAGAAGTGATTCTTCCAGCATTGGGCCTGAACGAGGGATCTGACTGGGACTTTGGTGTATTTTCTGGTCTCGAAGGCGTTGAGAAACCGGATCCAAGGATTTACGAAATTGCCCTTGAGAGGGCTGGAAATCTTCCTCCAGAACAAGTACTGCATATCGGTGACAGTATGCGGAAAGATTATGTGCCAGCAAAGAGTGTAGGAATGCATGCATTATTGTTGGATCGATTTAAGACAACTGATGCCGAAGAATGGAGGAAATCTGGCGCAATTGTGCTCCCTGATTTGATGGGAGCAAAAGAATGGCTTCTTTCAGACAAGTCATGAAGAAGAAGCATGATTGGATTTTTCTCTCCCCCTTGAAAGGAAAGATTGGTTAGTGGCTAGCAGAGATTGTTTTCTCACAAAGTGAGGCTTCACTCTAATCTATATGTACACAAGTTAGAAAAGTTTGATGAATGAGAAAATGAAACCTGCTAGATTATGAAAATGACTCTAATAATTAAATAGAAATAAAATACAGGATAGGGGAAGAGTTGCACCATTTGCGTTTTTATTTTATTGAGTAATTTTTAAATATAAATATAGTTGAACAATGATGGGTCAAATTATAAACAAAAGTGTGAAGCAGACACTTTTATTAA +>XM_012066938.1 PREDICTED: Cercocebus atys POU class 3 homeobox 2 (POU3F2), mRNA +GGGGGGAGCGCCGAGCTAGTCAGAGAGTGAGCGAGAGCGAGAAGGAGGGAGAGGAGGAGAAAGAGAGCGAGGGCGGGCAGGCGGGAGGCGGCGGCGGCGGCAGCAGCAGCAGTAATAGCAGGAGCAGCAACAGAAGGCGTCGGAGCGGGCGTCGGAGCTGCCCGCTGTGGGAGAGAGAGGAGAAAGAGCTAGCGAGGAGAGGGAGCCCGAGGCGAAAAAGTAACTGTCAAATGCGCGGCTCCTTTAACCGGAGCGCTCAGTCCGGCTCCGAGAGTCATGGCGACCGCAGCGTCTAACCACTACAGCCTGCTCACCTCCAGCGCCTCCATCGTGCACGCCGAGCCGCCCGGCGGCATGCAGCAGGGCGCGGGGGGCTACCGCGAAGCGCAGAGCCTGGTGCAGGGCGACTACGGCGCGCTGCAGAGCAACGGACACCCGCTCAGCCACGCTCACCAGTGGATCACCGCGCTGTCCCACGGCGGCGGCGGCGGGGGCGGCGGCGGCGGCGGGGGGGGCGGGGGCGGCGGCGGGGGCGGTGGCGACGGCTCCCCGTGGTCCACCAGCCCCCTGGGCCAGCCGGACATCAAGCCCTCGGTGGTGGTGCAGCAGGGCGGCCGCGGCGACGAGCTGCACGGGCCAGGCGCCCTGCAGCAGCAGCACCAGCAGCAGCAACAGCAACAGCAGCAGCAACAGCAGCAACAGCAGCAGCAGCAGCAGCAACAGCGGCCGCCGCATCTGGTGCACCACGCCGCTAACCACCACCCGGGGCCCGGGGCATGGCGGAGCGCGGCGGCTACAGCGCACCTCCCACCCTCCATGGGAGCGTCCAACGGCGGCTTGCTCTACTCGCAGCCCAGCTTCACGGTGAACGGCATGCTGGGTGCCGGCGGGCAGCCGGCTGGGCTGCACCACCACGGCCTGCGGGACGCGCACGATGAGCCACACCATGCCGACCACCACCCCCACCCGCACTCGCACCCGCACCAGCAGCCGCCGCCCCCGCCGCCCCCGCAGGGTCCGCCTGGCCACCCAGGCGCGCACCACGACCCGCACTCGGACGAGGACACGCCGACCTCGGACGACCTGGAGCAGTTCGCCAAGCAGTTCAAGCAGCGGCGGATCAAACTGGGATTTACCCAAGCGGACGTGGGGCTGGCTCTGGGCACTCTGTATGGCAACGTGTTCTCGCAGACCACCATCTGTAGGTTTGAGGCCCTGCAGCTGAGCTTCAAGAATATGTGCAAGCTGAAGCCTTTGTTGAACAAGTGGTTGGAGGAGGCGGACTCGTCCTCGGGCAGCCCCACGAGCATAGACAAGATCGCAGCGCAAGGGCGCAAGCGGAAAAAGCGGACCTCCATCGAGGTGAGCGTCAAGGGGGCTCTGGAGAGCCATTTCCTCAAATGCCCCAAGCCCTCGGCCCAGGAGATCACCTCCCTCGCGGACAGCTTACAGCTGGAGAAGGAGGTGGTGAGAGTTTGGTTTTGTAACAGGAGACAGAAAGAGAAAAGGATGACCCCTCCCGGAGGGACTCTGCCGGGCGCCGAGGATGTGTACGGGGGGAGTAGGGACACGCCACCACACCACGGGGTGCAGACGCCCGTCCAGTGAACTCGAGCGGGGGGAGGGGCAGAGCGCGGGGCTCCCCCTCCCCTTCGGTCCTTGGCCCTTTCCCGGCCCTCTTGTTCCCTCTCTAACTTCTGATTGTTCTTTTATTTTTAATTATTATTTCCCCGTCCCTTAAAAAGAAAAAAAAAATAAGGAAAAAGGAAAGCAACTAAGACACTGGACTATCCTTTAAAGGTAGCAGGTGTAATGATGTGTTTTGACCTTTGCAGACGAGTAACCAGGCAATGGAGTGGAGTGTCTCCTGGAGAGAGTGAGGAGAGTGTGTGATAGATAGAAAGAGAGAGAGAGATAGAGAGATGGCAAGCACTGAGATAAATACCTGGCAAAACTAAATAAATTACCAAAAAGGAAAAAAATATCCACCAAACCATGATAAACACAAGACGCAGCTTCCTGATGCTTGGAGTTGGCACATGCTGCTGTGTTTATTTGATGTGGATTCCCATCAGGAAAGAGGAAAAAATACACACGTTCTTTGATATAGGCAAAATTTAACCACATAAATTTGCACTGCAAGAAAATTGAAGTTTACATGAACAAATTCATGAACATATTTTCTCTTTCTCCCCACCGTTAATTTGGGAATTGCCGTTTTGGGGGATTTTGTTTTGCTTTGCTTTATTCATCGGAGAGAGTTGAAGCCAGCTCTTGGCCTCTCTCCATTTCTAATGTTCTTGTGTTGCCCCTTATTCGTACTGTTTGTGAACTTTGGTTACCTTCAGATTCCCCTTACAAGGGTGTAACATCTATTTGTTCCTCTTACCAAAGCAAAACGATTGGCTTCATACAAAATAGACAATTCTCTGCTTTCAGGAAATGTGCGTGGTCTACCCGCTTTATCCAAGGCAAGAATCCAGTTTGCAATATAAAAATAAGCATTGGTTGTTGTTACGAGCCACAAAGTAAACTTCATTTTCAGGCAGTGTTTCTGGGGGAGGTTATGGAGGGAAGAAAAAGAAAAATCGATAGTGAGTGACTGATTGCTTCATTTTATCAGGCGGGCCCATTGTGAAAGAGCTCAGAGGAAATGTGGAGGTTAAATATATTTCCAGAGTTGTCCAGCAGAAAGAAAGTGGCACTTTGAAGAGAACTAGGGAAGTATATATCTTCAGATATCCCTATATAGTTCTCTACCTTCAGTTTTAGTAACAATTATGAAGAATTCTTTATGCTGACAGCAGCAGTTAAACTTTGTTTCTCTAATAAGCTTTTTTTTTTTTTAACATAAAAAAGGACCCACGAACTTAATAGTGTATGCATAAGGCTGTGTTTTTTAGCACATAAATACCCACAGCATACACAGACGATCTCCACGCAGTAGACAGGTTTTGTCTTCACTAGCTCATTTGTTTATCAAGTCATATTTAGGGTCCCACGCCCTCTTTTCCTGTAATTTATTGCAGAATATACCACTTTGACTTGGACAGCTTTCTCCCCCCTCTTTCACTAAGGAAGGCAAATGAAGGGGGAAAAAAATGCCATTTTCAATCCTTCCTTTCTCCCCTTTGTTAATAGTTTTAAGTGCATTTTTGACCTTATCTTGATGGAAAACGGTTAACTCCAAACACAAAAGACTCTACTGGAAAGTGTAGGTGAAAAAACTTGTAACTGTATTGAAAATAAATACCATTAAACTGTGATCAGTTAAAATTTAAAAGAAAAATCAGCACAAAAGGGCGCTAAAAGGGAAAACACTTTTTATTAATCTTAAAAGTTTGGGGTTTTTTTTTCCAGTTAGGTATTAGATAAATTTTTATTTTAAAAAATGAAAGTCTCACTACCATAAAATTATGGTTCAGCATCAGATTAGCATTGCACTCATTAGTCTTTAAGGTTTTAGGAAATATGCTTTATATTGTCTTTTCAAACACCTGTGATTGTTTCATTTTCAATGTTTTTGCAAGATAAATGGTGACTTATAATGGGCATATTTATTTGCCTGTATTTCATTTCCCCCAATGAATGTCACAAGGAGATGGGCACGGAGCTGCTTCGGGTACATCACGCTGCTCGTTCCTGAGGTATGGGGACTGGCCTTTAGTGAAGCTATCCAGAGCAGGGCAAATAGCCACTGGTGAAGGGAGGAAATGAATTTTCAGATACTTATTACCAAGTAGGTAAGGTCAGAAGCTGGAGTTCAGAGGATGTATCTACAGCTTCTCTGACTCTTATAGGTTTACTAAGATGAAAGTTACCACTGAACCTTACCACTATGTATATATGTTTAATATCTGTCTTTTGAAATGCAGAAATAGTTTAAATGTTTCTTTGTCTATTTTTCTTTTTTTTAATGCTACCCAGGGAAATATTTTCATATCATTTTTAAGTGGCCTGCCTCAATGTATATTTATTTCTTTTGAAGCAAAAAGGTTCTGGAAACTGTTTTTCTGTAGCTTTAAATGAATAGGTGAGCAAAATCTATATGGGATGTAATTTTTTTGTTCAGTCTCTTAAAAAATACTTTGTTTTTGGTACATTTGGTTGTGCTTGTGGGGAAAATAAAAACGCAGAGATCCTTATATATTTATGTTAAAGTAATATTTTATTATCTACATAAAACAGAAATGCACAATACCTTCATAGTTTGTTCTAATTATTGAAATATCTTTATTTTATTTTTAAAGATAGTGCCATCAAGTTTTAAGGGGGGAAAACCCTAGACCTTAAATTGACTGAGTTGAGTTGTGTGTAAAACACTTCCCTTCCTTTATACTTCATAAAGTTTTGGAATAAATTTTATGCATATACCGCCAGATTTCATGTTCATAACTTTCAGAGGCTTTTTTTTTTTAAATGGAGACTACTGGTCTAATTCACTTTTCTTTGCAAAAACTATTAGTCCCAAATCTTTCAGCCACTATGCCTGTAGCATTAAATAGAAATGGTCATTGGGTTTGAGCTTCAATTTGTTGAGATGTTTGTCCCCTTTAAATATGTGCAGATATGCCTGCATCTTCTTTCCAGGTTAACTGTACTTTATTCAATTGTGCAGTTTTGGAGAACATCAGTGGAACTAGGTGGACTTTAATCTCTACCCACAGGTCCTCATATAATTTGGGATCTACAGAAAGGCAGGATTTAGGAGATTATTATTTTTAATAATTTACAAGTATCTCTTAACAAAGAATAACCCTGATAGTATGCTATTGTATGTTTACTAAATAATTAGAAGTAGATCCTATACATTATTCCTGTTTGGTTTGCATAAAAAGATGAATTTTACAATGGTTT +>XM_053552187.1 PREDICTED: Mercenaria mercenaria high affinity cGMP-specific 3',5'-cyclic phosphodiesterase 9A-like (LOC123560979), transcript variant X1, mRNA +GACAGAACGCCAGAAGAGTGTTTCCTAATGCGCATGCGTGTGGTTGCGTGAGAAACGTATGTGTTGTGGAAACGCCACTTTCTCTTAGATTCGCCAGCGCGCTTTAAAGTGGACGACATTAACTTGTGATTTTTTGTGTGTCTGAGATTGACAGTGTTTGGGTTTCAGCTAAGTGCGTCTACATTTATATGAATCCAAACAGATATCAGACATTTTATCGATCAAGCTTTTGTAGCCATCGCTGTTGTCTGACTATTTATATCTTCTCGAGCGCTGATAAAACTGAGGATGCAAAAGTTTTGTTTGCTTATTAATATATCGTAATTTCATTCAGTCATTGTACAATGTGGACTTCATAGTGCTTTCTTTGGAGTGGTTAGACGAGAACTAAGATGGGAAACGCTTCGTCAATAGATTCGTCTGTGGTCGTTTATCTAGAAGTTAGTGGAAAACAAGAAAAGATTGTATTCAGCAAACACTGTAGTTCCAGGGATATACATGACCTCGTGGCACAAGCAGCCGGATGTAGCAAGTATTGTATATTGACCCTTAAAGATCCAAATGGTGCCCATATTTCCATGTCTCCCACGATGCCAAGCAACACGCCCAGTGCGCCTTACAAGGTTCAAGTATCACAACCTACGTCAAATCAAGGCGATAGTGAGGTGCTTACACAACTTATGACGCATGTGGCAGATCAGTTCAACAAAGCTTTCAAAGTGGAGGAAATGAGATCGGAAATTTCAACCAGACTTACAGCACTGGAAAGGAAACTGGAAATGGAGGGACTGAAAGCTGTTGAAATTGAAAAGTGCAAAAAGGACATTTCGGAAATCAAGGATCAGATCTGGACAGCACAAAAGAAGTTTGTGGACTTCAACAGAATGAGACCCTTATTGTACGGTAGTAACACTCACGATCATTTTTATAGTTCGCTGAGTGATGAACGGAAGATCTGCCTTAAAAGGGATATTCCCTCATATCCGAAGTATACTTTGTCTCAGGAAACGATAGATTACTTAAAGCAGCCAACATTTGATATTTGGCATTGGGAACCAAATGAGATGTTGAGTCTACTAGAACATATGTACCACGAGCTTGGCCTTGTGAAGGAATTCAGTATCAATCCGATTACACTGAAAAGATGGCTGCTATGTGTCCAAGAAAATTACCGGAACAATCCGTTTCATAACTTCCGTCATTGCTTCTGTGTCACACAAATGATGTATGGGATGATTCATTTATGCAAACTCTGGGATTACATGACGAGGGAGGAAATCGGGATACTCCTGACAGCAAGCGTTTGTCATGATTTAGACCATCCTGGATACAATAATACCTACCAGATAAACGCACGGACGGAGCTTGCTATTCGGTATAATGACATATCACCCCTAGAAAATCACCACTGTGCTGTGTCTTTTCAAATTCTGTGTAATCCGGAGACAAACATTTTTGCTAACTTAGACAAGGACGGCTTCAAACGTGTGCGAGCAGGTATAACACAACTTATATTAGCAACAGATATGGCAAGACATAGTGAAATCATAGAGTCGTTCAAATCTAAACTGGAAGGCAAATTTGACTTCAAGAGCAAAGAACAGCTAGACACTTTGAAGATGGTTTTAATCAAATGTTGTGATATATCAAATGAGGTCCGTCCTATGGAAGTTTCTGAGCCTTGGGTAGACTGCCTGTTAGAGGAATACTTTAATCAGTCTGATCGTGAAAAAATGGAAGGATTACCAGTGGCGCCTTTTATGGACAGAGATAAAGTAACTAAACCAACAGCACAGATAGGTTTCATCAAATTTGTTCTCATACCAATGTTTGAAACAGTCTCAAAGCTGTTTCCGCAGATAGATGAGACAATGGTACAGCCATTAAGATTAGCACGTGATAGATATGAAGGAATGAAGGAGCAGACAACTCCTCCTAATCCAAAATCTCAAAAAGATCAGGCTGCGAAGAAAGACGGAGAGTGATGCCGTGTTGTATATATATACTGGCACCTGTTGCTAAGTTAACATATCATCTCTGTGTTAAAATGTTACGAAGACCTGTAAAATAGACTCTAGTAGAATAATATCTTAACATTGTGGAAAACTATGTTTGTAGGATTTGAAAGCTTTGATAACATTATAACGGTTGCATATATTCAGGTCAAGTTTACAGGCAACAACAAAAATGTTGGGCCTTTCTCATGAAAAAAAATCTGGTGAAAAAGAAAATACTGGGTGAGTTTTGAAAAAAAAAGACTTACTCTTAAAGTGATATTGTTTTACATAAACAAACATCGAATTAAGGGTAACTTATCGTGTTGATGTATTTAATTCCTGTACATGTATGTGATTACATTGTTCAGTGTCTTGGTAAGGACTTTTAATGTTCAAATTTAAACAGCAAATTGCGTTATGTAGCAATGAGCTTGAAAGTATTTGTTCATACAGTTCAGACAGATACGGAGCTAGTGCTTGGTGACAATAGCTTTAATATAATGTTATTATTTGTGCATACAGTTTAGATAGACAAGGTGGCAATAGTTTGAACAGCATGTATGTACAGTTATAACTCGCTGTCTCGAATTCCAAGGGATCGAGCGTTTTAGCTCGAGATAACCGAAATACGACTTAAAATGATATTTTATACACGCGTTTTACCTCGAGATAACCGAAATACGATTTAAAAGGATATTTGATACACGCGTTTTACCTCGAGATAACCGAAATACAACTTAAAATGATATTTGAAACATGCGTTTTACCTCGAGATAACAGAAATACGACTTAAAATGATATTTTGTACACGCGTTTTACCTCGAGATAACCGGAATACGACTTAAAATGATATTTTGTACACGCGTTTTACCTCGAGATAACCGAAATACGACTCAAAATGATATTTTGCACACGCGTTTTACCTCGAGATAACCGGGATACGACTCAAAATGATATTTTGTACACGCGTTTTACCTCGAGATAACCGAAATACGACTCAAAATGATATTTTATACGGTGACAATAGGTTAAATGTTGTGGACCCGTAATGACATTCGGCAATTTCCGTACGATTACGAAACTTGTATGCTAGTTCGGCACCTTACGGCTGTAACATCAAATTGCTTTTTTCATAATCAAATCCTTGAGACGTCTGGTGGTGGTTGATTTTTAGCAGATTTACTTTCTGTTTTCTTGCAACTATTATGCACCTCAACAGCTAAAATAAAACGGAGAATACCTGAATTTACATTTTCTGTATTACAAATATCATGTCACCTGTACACAAACTAATTTTATACAACAAAAACAGGAAACAAAGAACATTTTTATGCAAATCATTTTCATTACATTTACTTATAAATATCTCACTTATTAGTAATATACTTTTGATCTATTTCTGACACTCTATTTTGTAACAAAACAAATATCCAACTATTAAAATACTTGTATAGGAAACGAACATAAACGTGCTTCGAATCTAAGATGAATTCTACGTGACCTCACATGAATCCAGAATTAACCCGCTTGAATTCAGTGATGTAACCATAGGCTTGAAAACCTTATCATCAATAGATCTTGTATAATCTAGCCGGTCAATGTGAATGGAGACAGGTTAAATTAGACTGCTTGATCATTGATAGTTCATCCGCAATATTCATGAATGGAACTATTTGGTGTAGCGCACGAACATCTTTTTGATGTGATTAGGAATGAAATAAAGATCCTGTGATTGTCAGAAATACACTTATAACTTTGATAGCGGGTAAACCCGCCCCACCCCACAAAAAACGGAGAAAGTCGAAAGTGCTTACGGAAAATACGTAAACGAACTGAAAATGCGATTGTCGTTACGGGTCCACGAAAAAGTAAGAACAGAATCGCTTGCAGCAATGAGTGCAGCAAACGCAACACACGCGGATTACATAAGAATGGACACTGTAGTAAAATTGCAACAGAAGTTTATGTATTTGTATTTACAGTATACAAGGTTCTTAGAGTTTGTTATTGCGTTTGAGTATAATGTAAGTTTTATATCTGCAGTTTAGAAAAAATGAAGTTTTACATTAGAAATCAAGGAAATGTTGTAGATCTATACTAGAAAATATTCACTGAGTATAGCGATAAGCATTTTACTAACATTTGCCTATAAATCGTTTGGTTATACCAAACTTCTCAATGAAACAATACATTACAGTTTCTTCAATCTCTCTCTTTAGTTATTATACAATATGTATTAATAGCGGAAACGTGATATTTTTATATTATTTTTTTTTTACATTTGAGACGCTTTTTAAAAAAAAAATATGTCACAGAGATAATGGTATACGAGCTTTTCTGTTCAAAAAAGCATGTGTTGCAATTACAAAAATTGTGTCACTGTTCACTATACATATTTAATTTCATTAAGGTGTCGGCTATATCAAAAATATTTTTACAGCGTAGGGAGTTCTTAAAATGTTTTATGTGACATTTTTACGAACACACATTATTGATCAATAGCGAGATTTATTTCAAGATTTCATAATAAAAAAACATAATGATAATAAAAAAATATATTTGGGGAAATGTTTTATGATAAATGGCACTGTATATGTTGAACTTACTTGTGTAACAGTTGTTTGATCTGTCGGTTATTTGTTCTGAAATATTGTCTTGCGTCGAAATGTGAATAAACAACGGTTTCTTCATA +>XM_050728021.1 PREDICTED: Bombus affinis sodium-dependent transporter bedraggled (LOC126919204), transcript variant X1, mRNA +TTTTATTGTTTAATAAATAATTGATTAAATAACAAAAATTTACAAGAAGAAGTGAAATCGTTTATCAACGTTTGCAATGTTATATCTTTTGAGAACAGCTATACTGAAAATACTAAGATCTTAATTTTGTGATCCTTTGTGAAAATTTACATAAAATTTACAAGATATGAAAAATATTCAATATTTTACTTTACAAGACTTCAATCATAATTATTTTTAAACTTGATTTATTAAATTATATGTATTTAGTATTTAGTAAATAAAAAAATAGAAAAACAACAAATATGATAAAAAAAACGTTACGTGCTAAATCTTAAAATCATGTAGCTGTTTTTATGAATATGTAGTTGGCCTTCAAACATTGATAGCTATTACACGTTGTTTGTATGTAATAGAGGATATCATTAGTGTACTAGCTTAACCATATTTATAAGAAAAATGAAACTACTCTTACACAAACGACAAAACGAGTAGATCATTTGTCATCATTTTGTCAGTTTATTTATTTTTTATTATTAACTATTGATTGTACACTTTATTATTGATATTTTATCGAGGAGAATCAAATAAATATTGTACAACAAGTATTACAGGCTATATAGATGTATCTATATATAAAAGCAAGTATCACACAAACACACACATAGAAGAACATATTAATTATATGTTTCATGTAAAATAAAATTTCTTCATAGAAAAATAATATTGTGCAAGTACGTGAATAAGGAAAATGAATTAGATTATTTGGCTATAGTATTGTTTTTAGGATATTGATTAGTTTGAAACTCTATAAAAGCATTCTGAAGTTGTTGTCCTGGTTCATGATTCACGAATGAGTTATATAGAGCCGTAGCCAGCTGAGAAGGTCCGGTTACTGGTTACCTGTTACCTGGACAAGTGTGCTGGCAACGGGCTTGTCCTAAAGTATCGACCGTGACAGTCGTTCCAGTCGATTCCAGTCACAGCTTTTAGATCGATAGTTTTCCGACAATATCGATCGATAGCTTCCTTTTGACTTTTCCAATCATGCATCCATTATTAAAATATATAGAAGTGTAAAAATTGTTAAAAACGTTAAAAAGTACAAAAATTGTTACAATTTATTCTTTCTGTTACTAGTATTTCTCTACGAGTTTTGTAAAGGGACATTCGTCGTTCGGAAGAGTAATATTGCAGAAATGTTTCTGTGTTCTTCCCTTCCCGAGTACTAAAGGACATGAATCAATTAATGAATGAATCATATTTTTTACCAACTCTGATATGATGTACGTAATCAAATTTTTAATTTATATCGGTTATCAATTCTTACTTACTTCTTCACCTACTAGGTAATATCAGATAATAATTTGAACTATTATCAGTTGACAATAGATGCTAATGGATGATAATTGATACGACAATCGAATCGTTTTAGATGAAATGTTACTAAATAATAATAAAACTTAATGAATTTGTGTCAATAATACTTTTGATTGATATTGTATGCGTATTTTGGTAGGTATGAGGAATGATTCATATGTTTATTTCTCCATTTTTATCACAATCACGTTAGTATTGTGGTAGTAGGATTAGTTTATAAATAATCGGAGTTCGCAAATTGTCTTTAGCATTACATCGTTAATGATTCCTAATAATATAACACCGTGGTTGAAGCTGCAACTTATTTTCCTTAACGACCCGGCATTCATACGTGTTTCTTTATACCGTAAGGTTAAACATCCATTTCAATCAGTTATTGTTTTAAATCATGTCAGCTATATGGATATTTCATAACGTTGTTCAATATTTCCAAAATAGTGAGTCTGTCGTAGCATGTTCTACGGTTTACACAAAGAACTAAAGAAAGTAATTTGTGTGATAAATTTCTACGTGAAAGAGCGGTTTTAGAATCAGTTTTCACCGCATCGAGATAAGATGACGATATATATGTACTTAGTTTCCAAGTGAAGCGAACGTAGGAGAGGTTTAGACATTTCAAACGAAAAAGTATCGGTCTACTTTGTTCAAGGGATTAAGTTAGCCTGATCGTAGAAATTTAAACATTTAAAACAATGCATAGGATTGTTACCCTACTACAGATAAACGTTCATTTTCTCGTTGCAGTAGTTAACCATTACAGAATGACTTCGAGCGAAGATGGTGATTTGATCGATCTTGGAAACGATAGTTGTGTACCACGAGTATCGATTCAAGAATCATCGCCTGACGAGCAAGAACATCTTCTCGATGTGTGCCTACCGAAGTTAGAACAAGCATTGTCATTAACCAGGAAGCAAGAACAAGTACAATGCATAAATGACAACGGTGATGTATTAGTCACGTTAGGTCACGATCAAGTGGTACCGATTCGTAAAAGAATCGATGTCGTTTCATCCGATACGATAAAAAGGGTTCGTGACATTACCAGGAACTTAGAACCAGTTATAAGAAAGACTTGTTCCGACATTAATGAGGAGCATCAAGACACGGTTGATTATGGAAGTTCATCGGATAACAAAGACGGACATTATTCTAGTGAAAAGCTCGAAGACGATACGTTCGAGGCACAGGAGATCAATGATGCTTTCAATTTTCTCACAGAACACGATGACAACGATGATCCAGCCGAAGCGAAATGTAACCGTTATGACCAAGTTATAAATTCACATGGACTGATCCTATTAACCTCTCGTACCATAAAAAACGAAGATTTATTGAATTACCATGGTAAAAGTGCTTCACAAGCGCTAAACTGCTGGAAAGCAGACACAGATTTAAATGATTCAGGTTTTGAATTATGTTCGGGCAACCCGTCTGAAAGTATTTCGAGGAAACCTAGATCTGATCCTGTTGATTATGAACTTGGAGCGAGTAGCATTAATGTGGTTGAAAATCATTCCGAAGAACAAACGTTTGTACGAACAGCTAAAAGAAGATCATTTCAGCATATACATCGTAAATCTTGGACGGAAGGAACTACACTCAAAAATGCAACACAGGATACATTCTCTCGGTTCGATAGGTCAACTAGTTTAAGAGGATATAATTACGCGTCATCAACTTCCAATGGCATTCATCGGCAATCCAGTTTTATTTCGAGTTGTTCAACGGAGGAAGGATTGGAAACGAATGGAGAGGATCAAGAGGACGGATGTTCAGAATGTTCGGAAGTAGATTGGTCGTGGTTAGAGGAAGTAGAATGTCCGCGGGCTACGGAGTCGTTAGCACCCGGTGTGGTTGACGCGGTTCAGGAGAACCCCGAAGGAGGGAATGTATCCCCCACCAGTGAAAACGCAAGACGCAGGCGCGGTCGCGAGCATCGTGCTACCGAGGCGGGCTGCAGTGCCGCGATGTCTGTCTCCGGGACAGTAAAGTCCCTAGTGGTCGGTGGTTCGCGATGGTTAACTTCCGATCCGCCGTCCGACTGTAACGGCAATAATCAAGATGAAAATATACGTTGCAACGCGAGCAACGAAACCATCGATCGCGAAACACGTGACAATCCTACGCTTGTCAATTCTTGGGTACGGGCTTCGATGAGACGTTTGCGTCACCTGAGATTACCGGAAGAAACTGAACGACAACGAAACATTGATTTGAATAGTTGCCACGGAACTGTCGTATCCGCGCCAAATTCTTTGCCAGATATCGCTTTAATCGCTCCAGAGATATTAGCTGCCCAAACAAACGGTACTTCCGGCACCCTCCTTAGGCCATCCAGCGCTCCTGTAAGAAACTCGAATAATTCAAATGTAGTGCCATCGCGGAGAGGCGGAAGACAATTTAGAGCAAGTCGATCGCAAAGAACGCGAAGTCGCGACATTACTTCCAGGCAAAGCAGCGTTTTATCGTCGACTACGGGCAGTGATACAACTGCTTCAGGAATCACGACATGCTCCAGCTCTTTTGGCGGTGTTTCTACGAGTCCACCTTCTAGCACGGCGACAAGTCCGCAACGCATCGCTTCCAGACGAATATGTGACAGACAGAGAGACGTTGATAGAGATGAGGATAGAGGAGAGGATGAGGATGAGGATGCTAATCCATTGGGAAAATGGCCACATGCTCTTAGTCCAGCCTTGGCGTGTCTTAGTTGCACCCTTGGTCTTTTTAATATAAGTAGATTTTCTATTCTTAGTGTACAATTCGGAGCAAATTTCATTGTACAGTTCCTGATTTTATCTTTGGTATTGGGTATTCCACTTTTGACGTTGCACGTGTGTCTCGGTCAAAGATTGGCGGCTGGATCCGTGGATATGTGGAAGATTTCACCCCTCTTTCAGGGCGTTGGTATAGCTCTCCTAATTGCACAAGCATTCATCGGTATCTACAGTATCGTTGGTGTATCCTGGATGTTCGTCTACTTTAGAGATTCGTTTATAACGAAGCAGGATAAGTACCGATGGGCAGAACCGTTTTCCTTGTACAGAGAAGATAAACCTACACAGAATAATAGTAATTTGCATAAATTATATGAGACAGTACCAGATTATTTTAGCGGAGTTGTCTTGCAAAGAAATCATTTAAATGAATCAGATCCCGGTATCGTAACGTTAAAGTTTCAAGTGGCTTTCAATTTAGCTGTTGTATGGATGATCGTGTTCGTATCATTAAGCAAAGGTTTGAGATCTTATGGCAAAGTAGTATATGTTTTTACGTTGGTGCCTGTATTTGGTACACTAGTTCTTTGTACGAAATTACTTGGCCTCACGCCACCAGGCTCTGTACATCAACTTTTTCCTGCCACTGTGTGGACTGAGTTTTTCATTAATGGCAAATCGTGGGTAGCAGCATCCATCGAGGTTTTCCTCACTTGGGGATTACTTGGTGCAGCTGCTATGCAGATAGCTGCTCATAATAAGCACAAACATCTATTACAACGAGACACGAGTCTAGTAATCGTGTTAACCCTCGCAGTTCTACTTCTCGCAGCTTTTCTGGCAAATACTTGCGTGCAAGTTTTGCGACATCATGGATATATTTACATACCTAGCTCATTTGAAAGAATATCATCGTATATGTTTATGCGACCTGTGAACCAGCCGGCACCACCGGGATATAGCAGTACACCAGAAAGATTTATGGCACATGCGTCGTTTATTGTTGGAGAACGTGTAACTCGACCCGGTGCAGACTTTAGTGTTGAATCTGGTTATCAAGCCTTGAGATTTTCGACTGAATTGGTTCCTGCAACGTTAGCGTTACTAGGCACTGAACAAGTGTCACCATTCTGGGCAGTTCTTTTCTATTTTATTCTTATCCTATTTGGAATAGCTCAACAGCTAGCAATATGGCATTGTGTAATAACTGGTATTATGGCAATTAATGCAAAAATGATGAAGTTATGGGAAACTACTATTACATTCTTCAGTTGTGCTTGTGCTTATATACTAGGCTTACCCATGGCTACCGAGTTGGGCATACACGTCGTATATTATCTAGACTACACAATTGGTGGTACGTGGTGGATAATGATCTTATACTTGGTGCAAGTTGGTGCTGTATTCGCAGTGCGCGGACGTCCACATAGTGGTGAAGCGGTAGTAGCCGAATTGTTTCCTCCAACTGGTCGATGTCTCAGACACTGGGCTGGTCCTCTTCTTTCATTCACGTGGAACGTTATACTGCCTGTTATTCTTATGGTACTTAGCATTACGGTATTTAAAAATGCTGGATTTCGAGAACTTTATTCTTACCGACGTACCGCTAGAGAGTACTGGACAGTTTGGGCAAAACAACTCGGAGCTACGATTCAATTAGTACCAATATTGACGATACCGGCAGTGGCGATTATACAAACATGTCGATACTTGAACAACGGTCCACCCGATATTTTTGATAACAATCAAGTGGAAGTTAATATAAATCACTGCGAACAATGTAATGGTAGAATTCAATTATTGTATCGACCATCTTTGGAGCCTGATGACCCACGAGATGCACAAACACATACTGGAAACGATATGAGTACCAGCATTCACGGCAATGGTATCGTACATACAACGACAGAAGTACCATTTGAAGATCCACCACCAAAATATACACCTCCTCCGAGTTACACTACAGCAACGGGAGCGAGAATAGCAAAGATGTTGCGGCAAAGTTTTCGAAGAAGTGTTCGTCGAATAGCGAATGTGCTCGGTGAGAGCAGTACTCCGAGACAGAGACCGGCGCTACAACCTCCACCTCCTGATTACGCCACTGTACTTGTAGAAATGAATCAAAGTAGGCAAACCCCAGATGTAACAATTCATATAACTGAAGCAAGAAACGAAAACATCAATTCAAACACTCAAAGTAATGCTACCGAAAGACATAGACCTAATACGATAGATAGATCAACAAGAATTGGTGTGGTAGAACGCTCGATAGAAAGAACGCATTCGACGCTCGAAAGACCTCGTCGACCTTGTATGACTTCATCGAGCAGTTCGAATTTAACTGCAGCCGATGTGGCTAATTTACTTCGTAGTAGCATTAGGAGAGGGACTTCGCGAACTCAACAGTCCCTGCGTAGGAGTTTCTGCCACGACGAATCAACGGTAGCAGCGTCCGTTGAAAATCTAGTCGAGGCTGCAGCGCCGATAGGTGAAGAATCCTTGGTCCTTCCAAAGGACGTGTCTCTAGTCTCTAATGAACAGGCTAACAATAATAGCGACGATAAAAAGACTGCCGAAGAAACGGATGATTCCGTTTCTGTGATATAGACTATATCTTTCTTTTGAGCATATAAGAAGAATAATCTGATGGTTATTTAATTTCTGCTGCATAGTGTTACGGTGATTTATTCCTTGTTTAACTTGTATTCAATATTCATTTTCACAAGCTATTCTACGAAAGATAAACAAGTTGCTGATGATTTCATCGATCAATGATCGAAAAAATAATTTTATCTCTCAGACTGAATTCAGTATTTTCTAATCTTGTCACACTTGACAAATAAGTGCATAATCTCATCACTTTAATTACCGTGACAATTGTATAACGCGCAAATGAAAATTGGATAGCTATAAGCAGTGAAACATATAATAAACTCCTTTTCTTACTTACTACGATAGACATCGATTTTATATTGTATATGTTGAACTTTATTGAGGTTCAATTTGCTTTCAATCAGTCTATTTTAGCATTTTGGCATTTTCAATCGAGACTGTGTAACTAAAATATTTATGTAATATATACTACTGTAACATTTTAGTAGTTTTATGATATTAGTGTACATACTATTTTAACGAATCATAAATTCGCTTATTAAGCATTTTCTTCATTAA +>XM_027781123.1 PREDICTED: Falco peregrinus polycystin 1, transient receptor potential channel interacting (PKD1), mRNA +ATGAATATTTTTGTCAAAGGATACATCAAACTTAGTAATACATTTGTCATGTCTGTAATTACTCTAGATACACTGCAGAATGTTGAACGAAAACTGAAAATTGTGTTTTCTTTCTCTAGGGATCTTTCCAATAACAAGATCAGTGGTTTAGATGTTCAGATATTCAAAAGCCTGACTTCTCTGGCAAAACTAGATATAAGCCACAACAAGATTTCTACATTAGAAGATGGAATATTTGATAATTTATTTAATTTAAGTGAAATAAACTTAAGTTGGAATCCATTTGTTTGTGACTGCAAACTTTCCTGGTTGCCCCATTGGGTGGAAGACAGACAAGTGAAAGTTATTCAGGCATCAGATACGAGATGCGCCCACCCCCCTGAGGTGGCAAACCTTTCCCTCTTTGATGTCTTGTTCGTCAATGCTACTTGCGGAGCTCAATACATAACGTGTCTGACAAGCAACCACACAGAAGGGACTGAATTTGTCATCCTCTTCACATCTGTTCACCCTGGGAACCTCACTGAGGAGACTTGCAGTGCCCTCTGTTATGCTGAAGATCAGGAATATGGAGGTTTCAGCACCCAGGAGCAGTGTTTGTGTGGTACTGCCCATGAAACAAACTCTTCCTACGGTTGTTTGCCATTTTGCACTGAGCATTTGTCCGGGCAGGCCTGTGGTGGCCCATCACTCGTCCCCTCTCCCTTCCAGGCACAGCTATCTGTGTCTTTCACAGGACTCCAGCCCCGGTACAGCCTACGCCAGGCCGTGCTCTTCAATGTCAGTATTCCCATTGCTGTCAGCACTTTACTGTGGGAATTTGGGGACCAGACAGAGGTTCTCAACACCACTGGAAATACAGCTGTCCACATGTATGCCTTACCTGGCCAGTACAATGTCACTGCCACCATCTCTGTGGGCACCAAGGTCTTATACGTGCAGGCAGAAATTGAGGTGGTGGCTTCACCCCAACAGTTAGAACTGCAGTGTCCTTCCTTGGTCAAGACTAATGAGAGCCTGGACATACGGATCCGCAACAGAGGTGGCACAGGCCTTGCAGTGTCGTACAGTATCACCGCAGAGGCTGGGGAGCTGGGCAGAGCCGTTCACCCCCTGTGTCCCCCTGATGGCTTGGTTTTCCCGGGCAATAACCACTGCTATCAGCTGGTGGTGGAGAAGGCTGAGTGGCTGGAGGCCCAGCAGCACTGCCAGGAGCATGGCAATGGAGAGCTGGCTTTTGTGAGCAGCCCTGAGATCCAGAGCTTCTTGGTTGCTCATGTCATCAGGAGCCTCGATGTCTGGATTGGGTTCAATGATTTTGCAAGCACTGGAGCACAGCAAAGAGGTGAAGGATTTAACCTGGAGAGCTGTCAGAACTGGCTGCCAGGAGAACCACATCCATCAAATGCTGACCACTGTGTCCGGATGGGCCCAACAGGCCAGTGTAACACAGACCTGTGCATGGCCAAGCATAGCTACGTCTGCGAGTACAAGCCAAAAGGAGTTCTCTTAAATGCCAAAAACTTCTTTGTGGGAGACCCTGTGTCAGACACACATGAGGCTGTGAAAAATGTGACAGAAGATGCGCTGTCAGCTCCATGGCAAGCTGTGGAGGTGATGGTGTTCCCTGAGCTGGCATTCAGGCACGAGGGATATTTGACTGCCCTGGAGTTTGTAACACAGGAACTGCATCAGCCCGTTCAAGTGAGGTTCCAGGTGCATAGACCGATAGATGGAGAAGACTACCAGGAGGAAAAAAATGCTACAGAACCATTCTACACTTCTCAGGATGATGGGAACTGGACACTATTTGAATGTCCTCCTGGTTTCCAGTGGTGTCATTTGACTAATTTGTGCTCATCGCTAAACAACTGCTGCAACGCAACTGAGTGTGCCAACAGTTCTCTTGCCAGCAGCTCTACCCCCGTTTCCCTTCAGCACAGTGAAAGCCAGCTCAGCTATGAACTCATCGAGGAGTTTCTCTTTACAATACCAGCTGGCCCTTCTTCCCGGTATCTGGTCACGTTCAGAAAAGAAAATATATTTGTCAGGTCTGAGGATGTCTTCAGTATCCAGCACAATGCAGGCTTGGGCTTACTCCTCCAGTGCCAACCAAGTACCACATCCCCTTACAGAACCAACGTCTTAAGCATAAACTCTTCGGAGTCGGCACTTGGCTTGTCTGACGGCTTCATCGGTGCCACCTGGATGAACAACACTGTTTGTTCTCTCCGAGTTTGGTACGCTGAGGAGCAGCTGGTCCCGGTGATCAGCTCCCACAACACGGGGCTGGAGCATCCAGGTCGCTACACGGTCAGAGCCAGCGTGGACAACGGGGTCTTCAGCACCAATCTGTCCTGCAGTTTCTGGGTGGCTTCCCAGGTGTCAGGCCTGCGTGTCATCCACCCCGCTCCTCAGGGCGGCAGGGTCTACCTACCATCCAACCACACTACCCTGGTCATCAAACTCTCCTCAGGGGTGAATGCAACAGCTAGCTGGCTGGGAGACAACCGCACCTTCCCCTTCGAGGGGTCCTGCCCAGCGGCTGTGGCCCTGCTGACAGCAGACTGTGCCAGGGAGACCAATGACACCTGGTTTGCAGTGGTCAGCCTGAGCGGCCTCAGGGAGGGGATGAGCACCCACACGCTGGTTGCAGAGAACACTGTGAGCTCGCAGAACATCACTGTCACAGTGAAAGTGGAGGAGCCTATCCGTGGGCTGCGGGCCACCCCTGACCCTGAGAGCAGAGTCCTGCTAAATACACGAGTGAGCTACATCCCTGTGATGGAAGCTGGGTCAGATGTGACTTTCCGATGGACAGTAGATGATAAGCCATCTTTCACTTTTTACAATGTTGTCTTCAATGTTATCTACCAAAGCCCAGCTGTGTACAAGCTTTCGCTCACCGCCTCCAACCACGTCAGTAACTTTACGGTCAATTACAATGTCACGGTGGAGATGATGAATAAGATGAAGAACCTGACTGTGTTGGGTGTCCTGCCGGTCCTCCCGCAGAACAGCACCGTGGAGCTTACAGCAAGAGTTCAGGTTGATTCAGCTGTGGATGCTCTTTTCCTGTGGGATTTTGGAGATGGTGTCCAGAAGACATACCTGTTCCAACCTCCCTACAACAAGTCTTTCCTTGTTCCTGATCCCAGTGTGCATGAGGTTGTAATTGAGCACAATGTTTCACACGTCTATCAAGACCCAGGAGAGTATGCCTTGGTGGTTGTCGTGTCAAACCAGTTTGAGAACCTCACCCACTTGACCCCAGTTCACATCCACAGTTACCTGACTGATGTGAAGATGGAAGCAGAGGAGGATGTTTTAGTTGTGAACTGTCCGGTCACCTTCAGAGCTGATCCATTGCCATCTCCTTATGGCGTCGTGTACACCTGGGACTTCGGGGATGGGTCCTTGCTGTTCACAGAGAGCCAGTCTACAGTGACATACAGCTACCCCAGAAGAGGGGTGTACAACATCACTGTGACTGCCAACAATACCATAAGCAGCGTGGAGACAGTTGAGCACTACCAAGTGTTTGAAGAGATAACTGGGCTTCATGTTTCTGCAGATGAGGCAGCAGAGCTGGGAGCATCTGTGACCCTTAATGCTTCCGTGCAGACGGGGGACAGCATCACCTGGATATTCGATATGGGGGACGGGACGGTGCTGAGGACTCAAGTGCCAGTGGTAGAACACGTGTATGTAAAGGACATCAACTGCACTGTGAATGTGACAGCTGTGAATCCTGTGAACTCTGTCTCCCAAACTGTGCCCGTTAGGATATTTGTCCTGGAAGTACTCAAAATAGAGCCTACTTCTTGCATCCTTGAGCACCCGGACGTGCAGCTGACTGCATATGTGACAGGAAATCCTGATGAATACATCTTTGATTGGACTTTTGGAGATGGCTCGTCCAATGTCACAATCAGTGGGGACCCTGTGGTGATGCACAACTTCACCCGCAGTGGGACATTCCCCCTCTCCCTGACTCTCTCAAGCAGGTTTAACAAGGCTCACTATTTCACCAGCGTCTGTGTGGAGCCAGAGATTGTCAATGTCACACTTCTCCCTTCCAAGCAGTTTGTGAGGCTTGGTGAAGAGAGCAGCTTCCAGGTCAGTGCCGTGCCTCTCTACCAGTACCGCTACCGCTGGGATTTCGGGACCAATGAGTCCACTAGATCGAGTGGGACTGAAGTGACCTACACCTACAAGAACACAGGGGTCTTCCTGGTCACAGTGACTGTCTCCAACAATGTCTCTTTCAACAACGACACAGCGTTTGTGGAAGTCCAGGAACCGGTTGGGGTAGCAAAGATTGAATATAACGGGACAAGTGTTTTGGAGCTGAACCAGATCTACCTGTTCTCTGCCAGCATGAATGGAACCAAAGTGAGTTACTGTTGGGACTTTGGAGATGGCACTACCCAGCCCGGGCAAATCGCTGCCCACTCCTACAACAACACGGGCCATTACACTATTAGTGTGGTGGGCCGGAATGATGTGAGCTTTAATGAGACCGTCATTGATGTCACAGTGAAACGGCGGCTCCAGGGGCTGACCATCAATGCCAGCAGGACAGTGGTGCCGTTAAATGGTTCAGTGAGTTTTGTAGCCACACTTGTAGCTGGCAGTGCCATCCGCTACTCGTGGATCCTCTGTGATCGGTGCACTCCTATCCAAGGCTCGTCCACAATTTCCTACACTTTCCGGTCCGTGGGCACATTCAATGTCATTGTGACAGCAGAGAACAAGATCAGTTCGTTGCAGGACAGCATCTATGTCTACGTCCTGGAACAGATTGAGGGCCTGCAGGTGGCTAGCAGTGACCTGGTAGAGGACATCTATTTCCCAACGAACAAAACACTCCATTTGCAGGCAGTGGTGAGAGAGGGAACAAACATCTCTTACAGCTGGGTAGCCCAAAGGGATGGCAATGCTGTGCAGACCTTCACTGGGAAAACCTTCTCCTTGGTTGTCCTAGAAGCTGGAAACTACACTGTCTATCTGAAAGCCACTAATATGCTGGGATGTGCAACTGCTAACAGGACACTGGAGTTCATTGAAAGCATTGGTCTTTTAAAGCCTTGTGCCTTCCCCAACCCAGTTGCTATTAATGCCTCTGTTAACATAAGTACCACCATAACCAGTGGCACTGGCATCACATACATTTGGTACCTAGAGGATGGCTTCTCTCCTGTTACTTCTGAACCCTTTATTATACACTCCTTCCAAAGCCCTGGAGTGATAGAGGTCATCGTTGAAGCAGAAAACAAGCTGAATTCAACCAATGCAACAATTCCTATCTGTGTAGAGGAGGTCATAGAGGGGCTGAGTATAGGGACTGCAGAACTGGACTGTAGATACGTCTCATCCGGCTCCACAGTGGTCTTTGAGGGGGAGCTGCAGAAAGGGACTGAAGTGACATGGCTTTGGGAGGTGCCAAATGGAACGCTGACTGGCCAGTCTGTGGCAGTCATGTTCCCCACAGCAGGGTTTTATACAGTCTATCTGAATGCATCAAATGACATCAGCTGGGCTCTGGCCAGCAGGAANNNNNNNNNNNNNNNNNNNNNNATCTCAGTGCTGGACAGGATTCAAGGACTGGAAGTTCTTGCTAGCAAGAAGGTGGTGGAGCCAGGGGAACAGGTCACCTTTGTGATCAGGATGTTGTCAGGTACCTCTGTGAGTTACTTGGTGAGCATAAGTGGGGACTACTCTGTGGTGCTCAATGGGTCCAGGTACACGCATGAGTTCACCAAGAGTGGTGATTACTTGGTAACTGTGACAGTGCAGAACCAAATCAGCATCGCACATGCCCAAGTGCTCATCTCTGTCCTGGAGGCCATCCGTGATGTCAGGCTCCTGAACTGCTGTGAGGAAGGCATACCCACAGGCACGGAGAAGAGCTTCCATGCCCAGGTGGGGAGTGGCTCCCGTGTGGCATTCTCATGGCAGTTCTCCCTGTGGAAAGAGAAAGGACGATCTGTGGTCACTGTGGCAGGAGAGAGTGTTTCCTACACTCCAGAAGCTGCAGGGCTGCTTGAGATTCACCTCAATGCCTTCAATGACTTGGGAGGTATCAATATCACCAGAACCATCCAAGTCCAAGACCCAATAGTCCAAGTCTCCCTCACTGCCTCCAATGCCTTTGTCAACAGGACAGCACTGTTTGAAGCAGCACTGGTGCCCAGCAGCAGGAGTGTTGAGTTCTTGTGGACCTTTGGGGATGGCTCTTCCACTCAAATGACCAGGGTTGCAGTGGCCAACTATTCTTACGTGAGCCCTGGGGATTACCTGGTGGAGGTGAATGCCACCAATCTCATCAGCTTCTTCATAGCCCACCTCACTGTCACTGTCAAAGTCCTGGAGTGTGAGGAGCCAGAGGTGGAGTTAGCCTTGCCCCCTCAAGTAGTCATGAAGCGGTCCCAGAGGAACTACCTAGAGGCACAGATTGACCTCCGAGGATGCATCAAGTACCAGACAGAGCACCTGTGGGAGATCTACCAAGCACCCAGCTGCATGAACTTGGATGACTCCAGCAGGATCCGTCTGCCAAATGTTGATGTGAACAGGCCCCAGCTAGTTATACCAAAGCTTGCCCTGGAAGTTGGGAATTACTGCTTCATTTTTATTGTCTCCTTTGGAGACACCCCACTGTCCAAAAGCATCTTTGCCAATGTGACTGTGATACCGAGTAAGCTGGTCCCAATCATTGATGGGGGGTCATACCGTGTATGGTCCAACACTCAGGACTTAATCTTGGATGGGGAGAAGTCCTATGACCCAAACTTGGATGACGGTGAACAGACTCCGTTGTTATACGATTGGTCTTGTACATTCTCCTCCAAGAGCTCGGCTGCAGGGTGCTCTCTGAATTTCAGTGCCAAGGAAGGAATTGTCACAATTTCCAAAGCTCTGTTAGAAGCAGATGTGGAGTATACGTTCGACCTCACCGTCAGGAAGGAGGGTATGAGTCCTGAGGCAACAAATCAAACCGTATTCATCAAGAGGGGAGGAGTCCCTATCGTTTCCCTGGAGTGCGTTTCCTGCAAGGCTCAGTCTGTCTATGAAGTTAGCAAGAGCTCCTACGTCTACCTGGAGGGGACCTGCCAGAACTGTCACAATGACTCCAAGCTTGGGAGATGGGCAGCACACAGCTTTAAAAACAAGTCTCTCATCCTGGACAAAAAAACTACCTCCACTGGCGACACAGGCATGAACCTGGTCTTGAGGCAAGGGGCACTGAAGGATGGGGAGGGATATACTTTTACCCTTCACATCACAGACCTCACAACCGGGGAGGAAGGATTCGCCTCAATCGATCTGCTCCCCAACCAGCCACCTGTTGGAGGGTCCTGCCAGCTGTCTCCGGAAGGACCCCTCAGGGCACTGATGGCAAAGGTGCACTTTGAGTGTGCAGGCTGGCGAGACACAGAGGACGCGGAGGGCCCGCTGGTGTACATCCTGCTGGCGTCTCGCCACAGGGCTGGGCACTACCACGAGTTCTGCGTGTACAAGGGCAGCCGTGCAGAGCACAGCGCCTTCCTGCCCCCGGGCTTCCATGAGAGCGGCTTTATGGTGTCTGTGGCGGTCCTTGTTCAGGACCAGCTGGGAGCCACCGTGGTAGCCGTTAACAGCTCCATGGAAATCGGCTTACCTGAGGGGTTCCCCAGCCTCTCCCACTGGCTGTACAATCAAACTGACACGGTGCTCCAGGGCTTAGTGAAACAAGGGGATCCTCAGCAGGTCATTGAGTACTCTCTGGCCCTCATCACCATCTTAAATGAGTACGAGAGGTCCATGCTTCTGGAATCTGAGGCTGGAAATGAATTTGAACTCCGGACCTGGACTCGCAATAACATCACAGAAACCCTGAACTCGTTGAATGTGAACACAGTTGATGACATCCAGCAGATCTCAGCTGCCTTGGCGCAGTGCACGGTGGTGAGCAAGGAACTGGTTTGCAAGTCATGCCTGACAAGGACCTTGAACAAGCTGGAGACCATGATGACCATTCTACAGGGAGAAACGACCCAGGGCACTGTGACACCAACTGGCATCGCTGACAACATCCTCAATATCACAGGTGACCTAATTCACCTTGTCAATACAGTTTCACAAGAGTCCAAGCCCCAGGAGCTGCTTGCTGATTCCCACAATTTGCTGCTAGCTCCCAAAGCCTACAACCTGTCTTCCAGCCTGATGCGCATCCTCATGAAGTCTCGGGTGCTGAATGAAGAGCCTCTTGAGCTGGTGGGAGGAGAAATTAAGGCCACAGGCAAGCGGTCTGATCCCTTTAACTTGCTTTGCTACGAAAACACACCAAACTGCCAGTTCTCCATCCCCCAGGCATTCAACACCACCCTTTCCAACCTGACGGATGTCATTCAAGTCATGTTCCAAGTGGACTCCAATCCTTTCCCTTTTGGTTACATCAGCAACTACACTGTGTCCACAAAGGTCGCCTCCATGGAGTTTCAGACACACAACGGGGTGCAGATCCCCATTGGGAGCCTGGACTCAGAGAAAGCCATCACTGTTATGGTGTCAAACAACACAGATGCTGACAATCTCTCTGCTGGCACTGAAGTCATCGAGGCAAGAACATCTGTGAACTTAATTGTGATTATGGAAAGCAACAACAGAGAAGCAGGGCTGCACTTCCAGCTCACTTACAGAGTCCTGAACGATCGCTACATCGCAAGCGAGCCTGAGCCATTCATTATGGCTTATCTCCATCACGAACCAGAGCCCAACGAGCACAACTGTAGTGCCTCTAAGAAAATCGGCCTGGATGCCCTGGCTGGAAGGGACCACAAGCTCTATACCTTCTTCACTTCACCCAGAACGGATGACACCATCCAGAAATACTACTTCAACATCACGAACCATTTCAGCTGGTCCCCAGTGGAGGTGACTCTGGGGCTGTACACCTCCCTCTGCCAGTACTTCAGTGAGCAGGAGAAACGGTGGAAGACAGAAGGGATCATCCCACTGGAAGAGACCAGGCCAGACCAGGCTGTGTGCTTAACCCAGCACCTCACTGCCTTTGGAGCCAGTCTATTTGTCCCCCCAAACTCTGTCCAGTTCATCTTTCCTGCTCCAGGTCCAGGTCTCAACTACATCGTTCTGCTGACATGTGCCGTCTGCTTTGTGACCTACTCGGTGGCTGCACTGATAGTGCACAAGTTGGACATGATTGACATTAACCGAGTAGGGGTGATACCCTTCTGTGGGAAGAACGGGCTGTACAAATACGAGATCCTGGTGAAAACTGGCTGGGGCAGAGGATCAGGTACCACGGCCCATGTGGGGATCGCCCTGTACGGTGTAGACAGTAAAAGTGGTCACAGACACCTGGATGGAGAAAACGCCTTCCACCGCAACAGCCTCGATGTGTTTCAGATCGCAACAGAACGAAGTCTGGGGAGCATCTGGCGCATCCGCATTTGGCACGACAATAAAGGACTCAGCCCCTCTTGGTACCTGCAGCACGTCATAGTCCGGGACCTGCAGAGCAGCAAGAGCTACTTCTTCCTGGTGAATGACTGGCTGTCGGTGGAGAGTGAAGAGAACGATGGCATGGTGGAGAAGGAGGTTTATGCTGCCAGTGAGACAGAGCTGAGGAGCTTCTCCCGGATCTTCATAGCAGAGCTGCAGCGAGGTTTCTTTGAGAAGCATGTCTGGCTCTCCATGTGGGACCGCCCGCCCCGCAGCCGCTTCACCCGTGTCCAGAGAGCCACCTGCTGCTCCCTCCTCATCTTCCTCTTCCTCTGTGCCAATGCTGTGTGGTACGGCGTGGTGGGGAACGTACACCTCAGCAATGGGGCAGTTTCTAACCTGATCCCTGTTAACGTGGACACAGTGGCTGTTGGTCTGGTGTCCAGCGTGGTGGTCTACCCTCTCTACCTGGTCATTTTATTTCTCTTCCGGATGGCTCGTGGCAAGGTCTCCATCAACCACACCCTGACTCACTCAGACCAGCAGTCCTTGGAGATCGACAACTACCTGGACTCCTCAATCCTTGACAGCTCCTTCCCCACCTTCCCTGGGCTCCAGGCAGAGGCCTTCTCTGAGCAAACCAAAACAGATCTCTTCTTGGAGGACTCCAAAAGCCTCGTGCGGTGGCCCTCTAGCGAGGCCCTGCTCAGCTGGCCAGACCTCCTCAGCGACCCCTCCATCATGGGCAACACCATCCAGAAGCTGAAGAGGGGCCGGGCCAGCCGCCACCTTGGACTCGAGGCCCCATTGGCAACTGAGGAGGACAGCTTGTCGCTTGGTGTTCACCAGGGACAACCTCGATATTTCTCTGCCTCAGATGAGGATCTGATCCGGCAGATCCTGGCAGATGGAGCTAGTGGCATCTCCCACTCCCAGGACCTAGGGCCGTACATGAGGGCTGAAACAGATCTGATCTCAGGCCTGTCCAGCATGTTCGGGGAGAAGGTGGAGACTGTCATGATGCAGAAGCTGAACGACAAAGGCCAGGGCATGGCAGCTCCTCCCAGGGAAGTGAACAGATCCGCCAAGTCGACGTGGACAGTTGCAGATCAAACATTCAGAAAGCGCCTGCTGCCACCCTGGTGCTCCTACCTGGCTCATGGTATCAGTCTCCTCCTCTTTGCCACCTCCACGGGGGTCTCTGTGTGGATCGGGGTGGGCTTTTCCTCCAGCGTAGCCCTCATGTGGCTCATCTCAGGGATATTCAGCTTTCTGGCATCCTTCTTGGTCTGGGAGCCCCTGAAGGTTCTGCTGGAAGCCCTCTATTTCTCACTGGTTGCCAAGCGCTTGCACCCAGAGGAAGATGATACCTTGGTGGAGCATCCGTTTGTTGAGCATGTTTCCGAGAAGATCAGCAAAGTCCGACCACCACAGGGGTTTGCCCTTTTCCAGGCCAAGGAGGAGGCCAGGAAGGTCAAACTGCTACACAGGATGCTGAAGAATTTCCTCATCTACATGATGTTCTTGCTGGTGATCCTGCTCACCAACTACGGAGACGCCTCCCGCAACAGCAGGGCCTACCTTCTGCAGAGCTCCATCAAGCAGCAGTTGGGCAGCAACGAATTCCTCCTCATCAAGAGGTCAGATCAGTTCTGGGTCTGGATGTCGCAGGTCTTCCTCCCTTACCTCTACAACAACCAGTCAGGCCAGGAGAGCTACAGCACCACACTGGGAGCAGCCCGGCTGCGCCAGCTCCGGCTGCAGGAAGCTGAGTGCCAGCACAGTGCCCGGGACATCCTCCATAGCATGGGCCCAGCTGCCAGGAGCAACTGCACCAACTCGCACAGCTTTTCTACTGCTGACTATGCAGCTGGCTGGGAAAGGGCGGCCGTGAATGTGTCAGCTGCGTGGTCCTACTCACCACCTGACCTGACGGGGGTCTGGTACTGGGGTTACATCTCTTTCTACGATAGCAGCGGTTACGTCCAGGAGCTGGGGGCTTCGCTAGAGGAAAGCAGGGCTCAGCTGAATTTCCTTCAGCAGCACACTTGGATCGACAACATGAGTCGGGCAGTCTTTGTGGAGCTGATGCAGTATAACCCTAGCGTGGACCTGCATGCTGCCATCACCCTCCAGCTGGAGTTCCTGGGGGCCGGCCAGGCCATCGCCACGGTCACCATCAGCCCCTTCCCACTGCTGCGGCTCAGCAGGGGTGTCACGCTGCAGCTTCTCATGATGGTCTTCCTCATGATGTTTGTGGTCTACTTTGTGGTGTCTGAGTCGCTGTCCATCAAGAAGGAAGGCAGAGCCTACTTCACCCTGTGGGGCAACTATGGCCAGTGGGTCTTCATCCTCCTCACCACGTGCACCGTGGTGGTGCACCTCAGCCAAGCCACCCTTGCCGACCAGCAGTGGCTCAAGTACCTCAACAACCGCAAGGGTTTCACCAACTTCTACCAGGTGGCCTTTCTCAACACCATCTTCAGCACTTTGGCTGCATCCCTCCTCTTCCTTCTGACTGTGCAGGCTGCCCAGCAGCTGCGTTTTGTCAGGCAGTGGTCTGTGTTTGGGAAAACCCTGCGGAAGTCGGCGAAGGAGCTGGCTGCTGCAGGGCTGGCCTTCGCCGTCCTCATCCTGGCCTACGCTCAGCTCGGCTTCCTGCTCTTCTCCTCCTCCTCGGAGTCCTTCCGCAGCGTTGGCAGCAGCCTCCTGCTGCTGTTTGCCATGCTGCGGGGCAGCGGGACCCTCCGCCCCTGCCTGCCCGAGTCCTCGGGCCTCTACTGCCTGTTCTGCACCAGCTACATCGTCCTGGAGGCGTGGATTGTGCTGAGGCTGTTCACCGTGGTGCTTATCTACAGCTACCGGGAAATGCACTTTGAGCTGTACCGCCCCGCCTTCGAGCCCCAGGACTACGAGATGGTGGAGCTCTTCATGCGCAGGCTGAAAATGTGGATGGGCTTCAGCAAAGCCAAGGAGTTTCGGCACAAGGTGAGGTTCGAAGGGATGGAGCCGCTGCCTTCCCGAGACTCCAGTGACTCCAAATCCTTTCGGGGCCCCACTCCCAGCGCTGCATCTGACAGCTCCTGGGCTTCCACCTCCTCCAGCCAGCTGGACGGGCTGAGCCTCGTGCTGAGCACCCGGGACAGCCTGGAAGTGGACGCTGACATCCAGCGCCTCCTTTCCCTCTTTGAGATGCTGCTTGCCCAATTTGACCGGGTCAACCAGGTGACAGAGGACGTGTACCGCATCGAGCACCAGCTGGAGGGCTCTCAGAGCCGCCGCTCCAGGAGGAGGGGTACCCAGGTGTCCGAGGATGTCCCGAGCAGGTACTGTGCGGGCAGCACAGAGCAGGGGCCCTCGCCTGAGACCCCCTCCAACACGGACCTGCAGCCCCTGCGGGACGCCCCATTGTCCCCCCACTCTGCTGCCGCCCCACCAGGCACCAGGGGCTCTGTGCCCAGCCGGCTCCTTCGAGCTAGCAGAGGCATCGGCATGGCGGCTTCTGTGCTGCCCCCGCACAAACCCTACGCCGCCGTGGCTCCGGCGGTGAAGAAGAAACGGCCTCTCCGGGCCAAGAACAGGGTGCACCCCACTGTCAAGTAACAGGTGGCCTGCTGGGTATCGCGGGGAGCAGTGCCTCGGAGAGCCGGCAGCGCCTGGAAGTGGTTTGCATAGGGCGGGCTGTGCCTGCCCTGCAGACCTGGAGCCTCAGGAGCTGCCGCTTCTGATGGCTCCCGCCGCGGCGGCTGTGCCTGCCGGGGCGCACGGGGCTGCTGCCTGCACCGGGGTGGCACCGCTGCCATCCTCCACGGGCCTGACGTCCCCATCGGGTGTGCTGACCTCTCCGCTGGTGGTGCCCAGCACTGTGGGGGAGGCTGTGCAGGGCACGGTCAGTGTGCAGGAAATGCGTTAGCGTAGGGCAGTATTAAAAAGTTGTCTCTGAAATGGCTCCATCTGCAGACAGCCTGCACATGGTGACTGTCACAAGGACACTTTACTGGGGACTGGCACAGGGTGACCGGTACAAAGCTCACCTCCCTTCCCCACTGGCTGTGCCGGAGGGAAAGGGGGAGAGGAGAGCCCCAGGCCTTGAAGGTTTGAATTGAGTCTTGGATTTTTGTCGACCAGGCACACTGTGGAGGAAAGCTACAGCTTTCGAGAAGATATTTAACCCTTTTTTTTTTTTTTTAAAGCATAAATATATATAGATATAGATAAATGATATCTACACCCAGATCAGTTAATTTCCAGTATTGGCTACTTTTATCCTCCAGAAATTGGTACTATTATTTGTATTTAAAGAAATCCAATATTTAAGACCAATGACATTGGAAGCTGCAGCGAGCTGCCAGCCCTGCTGCCCGGCCAGGTCGGAGGGGATAACAAGCA +>XM_024348560.1 PREDICTED: Pan troglodytes SGT1 homolog, MIS12 kinetochore complex assembly cochaperone (SUGT1), transcript variant X4, mRNA +AAAAAGTAATGTATTTCTGTATTTTGTACCTTCTGAATAGGGAAAAACTGAATACCTTGAGTAAAATTACATAGAAAATGTTAATGAGACAAGGAGGTGAATTTTGTGACACAGCTGTATTCATTGAAGAGCTTTAAGAAGGAAGCTAAATGTTAAGCCAAAAGGAAGTTGCTGTTGCTGATGCAAAGAAGTCTCTAGAACTCAATCCAAATAATTCCACTGCTATGCTGAGAAAAGGAATATGTGAATACCATGAAAAAAACTATGCTGCTGCCCTAGAAACTTTTACAGAAGGACAAAAATTAGATAGTGCAGATGCTAATTTCAGTGTCTGGATTAAAAGGTGTCAAGAAGCTCAGAATGGCTCAGAATCTGAGGTGTGGACTCATCAGTCAAAAATCAAGTATGACTGGTATCAAACAGAATCTCAAGTAGTCATTACACTTATGATCAAGAATGTTCAGAAGAATGATGTAAATGTGGAATTTTCAGAAAAAGAGTTGTCTGCTTTGGTTAAACTTCCTTCTGGAGAGGATTACAATTTGAAACTGGAACTTCTTCATCCTATAATACCAGAACAGAGCACGTTTAAAGTACTTTCAACAAAGATTGAAATTAAACTGAAAAAGCCAGAGGCTGTGAGATGGGAAAAGCTAGAGGGGCAAGGAGATGTGCCTACGCCAAAACAATTCGTAGCAGATGTAAAGAACCTATATCCATCATCATCTCCTTATACAAGAAATTGGGATAAATTGGTTGGTGAGATCAAAGAAGAAGAAAAGAATGAGAAGTTGGAGGGAGATGCAGCTTTAAACAGATTATTTCAGCAGATCTATTCAGATGGTTCTGATGAAGTGAAACGTGCCATGAACAAATCCTTTATGGAGTCGGGTGGTACAGTTTTGAGTACCAACTGGTCTGATGTAGGTAAAAGGAAAGTTGAAATCAATCCTCCTGATGATATGGAATGGAAAAAGTACTAAATAAATTAATTTGCTCTCATTGTATTGTGTATATTCACCTAATGCCCATTGTGTATTGATATTGCATTCTTGAATTTTGAACACTGAATATCTTTTTGAAAGATTATACTTCTTTACCTCTTTGTGCTTTAGAAATTATTTTCCTTCAAGTGTTCAAGTCTAATGAAGAATGAAGATAACATTTTATCACTTCTGTCCTTAAAGATTTCAGACATGGTGAAACTGAATAAAGCGTGTCATTTGCTCCTAGATAGATTCATTCTATCTAGTTGTGGGGATGGAGAAATCTTTAATGGTATATTTTTGGTTATTGCCTTATTTTTGATGCAGTATTCTGTCAGTAATTTATTAGACCTGGCAGCTTTGGGTGAGCTTAGATTTTTCACCTTCAGTGTTACATTGTGTTTGCTTTTAAAAACTGCTTTTGAATGGAGTTGTAAATACAATTTTTCTATGAA +>XM_028429604.1 PREDICTED: Parambassis ranga ventral anterior homeobox 2 (vax2), mRNA +ATGTTTGATCAGGCCACGACTATGGGCGATGGGAGCCACCGCTGTGGACCCAACCCGCTGTGCCCGGACAGGATGGAGACAAAGTGTCGCGCCGAGATAGGGAGCCGGTCCCCGGTGCAGAGCTCCACCGACACCCCGGGGACATCAGCGTCCACGCCGACGTCCTCCAGCGAAGACGGGCATGACAAACTTTTGGGAGTGGACCCAGACTACTGTCGGAGGATATTAGTAAGAGACGCCAAAGGCACCATCCGAGAGATTGTCCTGCCGAAGGGCCTCGACCTGGACCGGCCCAAGCGCACCCGGACCTCCTTCACGGCGGAGCAGCTGTACCGGCTGGAGCTGGAGTTCCAGCGGTGCCAGTATGTGGTGGGGCGGGAGCGGACGGAGCTGGCCCGGCAGCTGAACCTGTCCGAAACACAGGTCAAGGTGTGGTTCCAAAACCGCCGGACCAAGCAGAAGAAAGACACCACCAAGGACTCAGACAAGCGCTCCTCTTCCACGTCCGAGTCTTTGGCCACCTGCAACATCCTGCGCCTCCTGGAGCAGGGCCGCCTCCTCTCGGGCTCCGCTCCACCTCCCAACCCCCTTCTAGGGCCCCCAGCTCACCCAGCAAATGGTTCGCTTTTGAGTAGCCCGGGCGGGGGCTCCTCCACCTCCCCTGGGATGAGCAGCAGCACTCCTCCCAGCTCTCTACCTGGAGGGACATTCGGGCTGTCGCTGCCCTCACTGGGCGGCACCCCGCCTTCGCCGCGGCTGGGCGTCCCGCCGCCGCACTCCCTCTGCTTCTCCATGCCACTGCTAGGTGGCGCTCATCACGAACTGACATCCGCCTACGGCTGCGGGTCCTCAGCTTTTGAGCCGTACATGCGGCTGGACAGGAAGGACGCAGATCTGGGAGGGAAGAAGACAGTTTCTTAA +>XM_039793275.1 PREDICTED: Perca fluviatilis Rho GTPase activating protein 1 (arhgap1), transcript variant X5, mRNA +GGTGTCGACGCAGATTGTTGCTGTTGCTGTCAACCGCACGTCTTGCTAATCAAGTCTACGGCGACTTCAGACGCCACAAAGCCCACTGGGTGACTACAAAGCAACTTTGCAATTACGGACTCTGGCTGCTACTCTGTGAAAGTCCCAGCTTTAAGAGTGTGTGGTAAACATCACTGTGCAGTGTGTCAGTGGGTGTGTGTAGCACCGTTTTGCAGAGTGAGTGATGTCTTCAGAGCTGCTGGTAGATTTGGGTGAAGACCCTGCGACTGCACAGTTAGGACAGCTGAAGCTGACCACGGTAGATGACCAGCAGTGGCCCGCTGATGAGTCTACTCTCAGCAAGTCAGAGACAGATATCTCCCAGTGCTTTGACGCTGGCTCTCCACACCTGCCCTGGGACCATCCGTTCTATGACATCGCCAGGCATCAGATCATTGAAGTGGCGGGTGATGATAACTTTGGAAGGAAGGTGATAGTGTTTAATGCATGCAGGATGCCTCCACAGCACCAACTGGACCATCACAAGCTGCTGATGTATCTTAAAGGAACACTGGATCAGTATGTTGAAAGTGACTACACTCTGATCTATTTCCATCATGGGCTGACCAGTGAAAACAAACCCTCTCTCAGCTGGCTACGAGATGCATACAGAGAGTTTGACAGAAAGTATAAGAAGAACATCAAGGCTCTGTATATCGTCCATCCAACCATGTTCATCAAGACTCTGCTGATCCTCTTCAAACCAATCATCAGTTTTAAGTTTGGCAGGAAGATTAACTATGTGAGTTATCTGAGTGAGCTGGAAGATGTGGTGAAGTGTGAGCAGTTGCTAATTCCTGCCCGTGTCAAAGAGTATGACAACAAGTTAAGAGCTTCCGTTAAACCAACCGTCCAGCCTCCCATGTCTCCTCCTCACAGCCCCCCCCTCCACAGCCAGGTGTTTGGGGTGCCACTTGCATTGCTCAGGCAGAGGAATCCAGATGGTGATCCTGTTCCCGTGGTGATGAGAGATACCATTAGCTTCCTTTGCGAGCAAGGTTTGGAGATTGAAGGGATCTTCAGACGGTCTGCCAATGTGACTCTGGTGAAGGAGGTCCAGCTCAGATACAACTCAGGTGCAACGGTGAATTTCAGGGAGATGGAAGACGTCCACTTGGCTGCTGTGATTCTGAAGACATTCCTGAGGGAACTTCCAGAGCCTCTGCTGACCTACCAGCTCTACAACGACATTGTCAACTTCACTTTATCCAGTGAAAGGCAGGTGGCACTTATGAAGACACTGATAGAGTCGCTGCCAGAAGAAAACTATGCACCACTGCGACACCTCATCACATTCCTGGCAAAGGTATCAGCCAACAATGAAGTGAATAAGATGACCAACAGTAACCTGGCTGTGGTGTTTGGTCCTAACCTGCTCTGGGGACGGGACAACGCCATGTCACTCAGCGCCATTGGGCCAATCAACAACTTCACTAGAATCCTGCTGGACCACCAGCATCTGGTCTTTACCTAAACCCTGCCCCTTTACCCTGCAGTCTCTCTTCCAGTCGGAAACACCCTTTTCCATTAAAACACCATACACTTTAAAAGGATCCCGTGGACCAATTGCATTTAATTTTGTCTCCCACCAGTCTTTACATTCTGATTGGCACATATTGTTGATGACAACAGCAGTGTGGACTGCTACTAGCTTCTGGCCAGCATTTCCATTTGCATGTGACTCTAGTAAAATGGCACATACATTAGACTGCAGACAAATAACCCTCAATAAACAATGTAGGCAGAGAGATTTAACTTTAAAGTGCCAGTTATTCTTGAAAGTCGTGTATTTTTGCAGCTTTGCTTTTTGTCATTTTGATAAGTCAACAGAGCTGCCTCAGTATCCAGTTTTGCAACCAGTGAGTTGGAGGAAATCACAGAATTTGGGGACAGTTTTGTGAAATCAAAATCAGGGAGTGGATCTTCACAATTACTACTACATAACAAAAAACTAGATGATATGAGGTGAAGATCTGTGCCTGTGCAGGTTATTCCAACTTGCAGAAATAGTTAACTCCAGTGATTGTCCTTAAAAAAGTCTGCCGACTCACAGAAGTGAGAATGTAAAAAAAATATACAGAATCGAAGAAGGTGGAGATAACCTGAAATTCAGTCTAGCTCCAAAAACACTGGAACCTTCATTTCCCATAATGCAGCTTATTAGAGTATTTCATCAGACCCTAGCTGCCTGGTTAACTAAGTCTTGTAACGTAAGGCTTTCTGTTATAGATTTGTAGTCCAAACATTACTTTCTCACATTTGACACAGCTCCCCCAGACACAACTGTCAGACTGAATAATGAAGTGAAAGGAAATGGTAGATCAATGTCCTATAATAATAATGCTATAATAAACATAATCAGGGAGTGTATATTTAAGGACATAATTGCACTCAAGTACAATTGATTATGTTGGTTCCAGTGTGAATGCCACTGGCTGAAGTGCAGGCAACCTACAGTTATTTCACATAGTACATTTCATCACCCTATTACACCCAACAACCCTTCAAAAAATCCTGTCCTAATTGCATATATATATATATATATATACACACATACATGTGCTGTGCTGTTGTCAGACTGTCTCTCTGCTGTTTTTTTATGTAGTGACAAAAAAAATAATAAAACTGGCCTCCAGCATTCACATGAATTATCACCCTGCTCTGCATGGTAATACATGATCAGTAATAAGTACAGATAATGAAGCAGTGCAGTTACTGTACAAAACGTATAGGATTCTGATCCCAAACTTAAAGAGGAGCGATAGTGGCCCTGTTCAGACCTGGCATTATAAGTGAACAGCTCTGAGGTTGTTAACTTAGATCATGCGGCAAAAACTGCAGTTCATTTTGAATGGTGATAGTGTGATCACCCGATACGCAACTTAATGCCAGTTCAGAACAGGGCATAAGAGAATGAAGGTCGGATTTTCCATGTCCTTGAAAGTCTCAGGATCATTTACAGTAGTAGTAAACTTGGTACCAAATGTTGTTGACAATCTTTTAAATGCTGTAATTATAGTAACCAGTAGAAAAGGAGCTGTGTGATTCTACCAGCAGATGAGTAAGTGTTTAGAACCCAAAAACAGCTGTGCATGTAGATGAAATAAGTGCTGGTCTAATATACTCTGTAATATCA +>XM_035125527.1 PREDICTED: Zootoca vivipara cadherin 20 (CDH20), mRNA +TCTACCTGTAACCTCAGCTGCAGCAGTAAGTGACAGGAGCTCAGAGGAAAGGCCAACATAGTGACATCAGTAAAAGAAAAAGGAAGGAAACTACTGTCCTTAATCTGGCTGGCTTCATATCACTGAAAGACTGCCCTTGGGAGTTTCAGAGGCCTTTCTGTTGGGTGTTTTAAAGGACCCGGCTACAACTTTTGGAAACAATCCTGGTATGGCAACGCGAACTTCGTGTGAAATGGATAGAGCCAGGAAGTGGCTCGGACTCAGTATATCTTTAAGTTGTTGCTTAATGATGAACCTCGTTACGGCTGTGTTATCTGGGAGCAGCAGACCACCCAGCAAAGGCCAAGAAGGCAGCCTCTCGGACAACTTGCTTCTGCATCTGCGAATGAAGAGGAGCTGGGTGTGGAACCAATTCTTCGTTTTGGAAGAATACACTGGAACGGATCCTTTGTATGTGGGAAAGTTGCATTCTGATATGGACAGAGGAGATGGATCCATCAGATATATACTGTCGGGAGAAGGAGCAGGCATTGTTTTTACCATTGATGATGCAACTGGAGATATCCATGCCATTCAGAGGCTGGACCGAGAAGAGAGATCCCAGTATACTCTAAGGGCTCAAGCTTTGGATAGACTGACTGGCAGGCCGATGGAGCCGGAATCTGAATTTATAATCAAAATCCAAGATATCAATGACAATGAGCCCAAGTTCCTGGATGGGCCATATGTTGCTTCGGTACCAGAAATGTCACCAATAGGTACCTCCGTTATCCAAGTGACAGCAACAGATGCTGATGATCCTACCTATGGGAACAGTGCCAGGGTAGTCTACAGCATTCTCCAAGGACAGCCATATTTCTCTGTGGACTCCAGAACAGGCTTGATTAGGACAGCGCTAATGAACATGGATAGAGAAGCAAAAGAATATTATGAAGTGATTATCCAGGCCAAAGATATGGGCGGACAGTTGGGAGGATTAGCTGGGACGACCACAGTCAATATCTCCCTGTCTGATGTCAATGACAACCCACCCAGATTTCCACAGAAACATTATCAGATGAGCGTTCTGGAGTCTGCTCCAGTTAGCTCTACTGTGGGCCGTGTCCTTGCTAAAGATTTGGATGAAGGCATTAATGCTGAAATGAAATACAGTTTTGTGGATGGGGATGGACTGGATGTTTTTGATATTGCCACCGAGTCTAATCGCCAAGTTGGTGTCATTACAGTGAGAAAGCCCTTGAACTTTGAGAGTAAGAAGAGCTACACTTTGAAGGTAGAGGGTGCCAATCCCCACTTAGAAATGCGCTTCCTGAACCTGGGCCCCTTCCGTGACACTGCTACTGTACACATCACCGTTGAGGATGTAGAAGAGCCCCCACTCTTTGAGCCTAGCTTTTATTTTGTGGAAGTCCCTGAAGATGTGGACATTGGGACCACCATACAAATGATTCATGCCAAGGACCCGGATGTGACCAACAACTCCATCAGGTATTCCATTGATCGAAGCAGTGATCCCGGACGCTTCTTTTATGTCGACATTGCAACAGGTGCTCTGATGACTGCAAGACCTCTGGATCGGGAGGACATTCCATGGCACAATATCACCATCCTGGCCGTGGAGCTGAACAACCCCTCGCAGGTTGGCAGTGTTTCTGTCACGATAAGAGTGCTGGATGTGAATGACAACGCTCCAGAATTCTCCAGATTCTACGAGGCTTTTGTATGTGAAAATGCCAAAGCTGGACAGCTGATTCAGACAGTGAGCGCGATTGACCAGGACGACCCACAAGAGGGACAGCACTTCTACTATAGCTTGGCTCCTGAGGCAGCTAACAACCCCAACTTTACTCTAAGGGACAATCAAGACAACACAGCTTGGATTTTAACCAGGAGATCAGGCTTCCGGCAGCATGAGCAGAATATATTTTACCTTCCTATCCTGATAGTTGATAATGGACGTCCCATGCTGAGTAGCACCGGGACAGTAACCATTCACGTTTGCAGCTGCGACGACAAGGGTCTTGTGATGTCCTGCAATGCAGAGGCCTATGTGCTCCCTGTCAGCCTGAGTAGAGGAGCTCTTATTGCCATTCTAGCCTGCATCTTTGTCTTGCTAGTGCTGGTACTGCTGATCTTGTCCATGAGAAGGCACAGGAAGCAGCCGTATATCATTGACGAAGACGAGAACATCCATGAGAACATCGTGCGGTACGACGACGAGGGAGGTGGGGAGGAAGACACAGAGGCCTTTGACATCGCAGCCCTGTGGAACCCGAGGGAGGCTCAAGTGGTGCTGAAGAGCAGGCAGGACATGATGCCGGAAATCGAAAGCCTCTCCAGATACGTTCCTCAAGCCTGCACGATGGACAGCAGTGTTCATAGTTATGTGTTGGCCAAGCTCTACGAAGCCGACATGGACCTCTGGGCACCTCCCTTTGACTCTCTCCAGACGTACATGTTTGAGGGCAACGGCTCCGTGGCAGAGTCGCTCAGTTCCTTGCAGTCTGCGTCTACGGACTCAGAGCAGAGCTACGACTATCTGACGGACTGGGGGCCTCGCTTCAAAAAGCTGGCCGAAATGTACGGTGCCACAGAAGGGAACGGGGCCCTTTGGTAACAAAGAGGCGAAGGCAGAGTACTACTCGGGTACTCGGCACAGCCATCCGAATTTGTACTCAATCAGATATTGAGGACACAGGCGAGGTGGCCTCCTACAAATAGCAATATGGTGCTTGAGGGAGAATGCAGAAGAGGAGTGGAAATAAATAAGAGCTCTCTCTGGATCAGCTTTACTCAGTTACATTAAGCTACATTTGTAAACG +>XR_003975245.1 PREDICTED: Gadus morhua 5S ribosomal RNA (LOC115538338), rRNA +GCTTACGGCCATACCACCTTAGGCACGCCCGATCTCGTCTGATCTCGGAAGCTAAGCAGGGTTGGGGCTGGTTAGTACTTGGATGGGTGACCGCCTGGGAATACCAGGTGCTGTAAGCA +>XR_008382064.1 PREDICTED: Nycticebus coucang U6 spliceosomal RNA (LOC128592852), ncRNA +GTGCTTGCTTCGGCAGCACATATACTAAAATTGGAATGATACAGAGAAGATTAGCATGGACCCTGTGCAAGGATGACACGCAAATTTGTGAAGCGTTCAGTATTTTT +>XM_035287433.1 PREDICTED: Callithrix jacchus URI1 prefoldin like chaperone (URI1), transcript variant X4, mRNA +TCTTTATCAATGTGTCTGTCTCTTTACTGATGCCACTCTGTTTTGATTATGTAGCATTATAGTGTTCCTTAAACTTGGTGGTACAAATGCTCTAATTTGTTCTTTCCAAATTGTTTTGGCTGTTCTACCCCCTTTGCCTTTCCATTTTAGAAACCACTTGTTTATGTTTACAAAAACTCCTGGTGGGATTTTGATTGGAATTACGCTAAATCAATACATCAATTTGGGGAGAATTGACGTCTTAACTAATGTAAGAAAAACAATAGAGGATTTAAGAAAAGTGGTGAAAAATTTTGAATCAAGAGTTGAATTCACAGAAGATTTGCAGAAAATGAGTGATGCTGCAGGTGATATTGTTGATATAAGAGAAGAAATTAAATGTGACTTTGAATTTAAAGCAAAACACCGAGTTGCTCATAAACCACATTCCAAACCAAAAACTTCAGATATTTTTGAAGCAGGTATTGCAAATGATATGAAATCTAAGGATTTGCTTGCTGATAAAGAACTGTGGGCTCGTCTTGAAGAACTAGAGAGACAAGAAGAATTGCTGGGTGAACTTGATAGTAAACCTGATACTGTGACTGTAAATGGAGAAGATACGACATCTTCTGAAGAAGAAAAGGAAGATCACAACACAAATGTGAATGTGATGCATCAAGTAACAGACTCTCATACTCCGGACAGTTGTCATAAGCATGTGGCAAGTTCAGAACCATTTAGTGATCAGTTGAATAGTCAGTTGAACTGTTCAGTGAATGGTTCCAGTTCTTACCACAGTGATGATGATAATGATGACAATGATGACGATGATGATGACGACGACGATGGTGATGATGAGCATGAGGCTTTAGGAGTTGGATATAATTCTATACCAACAATATATTTTTCTCATACTGTTGAACCTAAGAGGGTCCGAATAAATACTGGAAAGAATACCACTTTAAAATTCAGTGAAAAGAAAGAAGAAGCCAAACGTAAACGAAAGAACAGCACTGGCAGCGGCCACTCTGCCCAGGAGCTGCCCACCATCCGGACACCTGCTGACATTTACAGAGCCTTTGTTGATGTTGTGAATGGAGAATACATCCCTCGCAAATCCATCCTGAAGTCTCGAAGTAGAGAGAACAGTGTGTGTAGTGACACCAGTGAAAGCAGCGCTGCTGAATTTGACGATAGGCGGGGCGTTCTGAGGAGTATCAGCTGCGAAGAAGCCACTTGCAGTGACACCAGTGAGAGCATTTTGGAAGAGGAACCACAGGAAAATCATCAAAAGAAACTTTTGCCCTTATCGGGAACACCTGAGGCTTTTTCTGGAACTGTTATAGAAAAAGAATTTGTATCACCTTCCTTAACACCACACCCAGCCATTGCTCATCCTGCGCTACCCACTATTCCAGAACGAAAGGAAGTTCTGTCGGAAGCCTCAGAAGAAACTGGAAAGAGGGTTTCAAAGTTTAAAGCTTCCAGATTGCAGCAGAGAAACTAGGCCCTGTGTAGGAAATGGGAATTTACATCTTAAAACCTAGTTGTTCATTTGTTTAGAATATCGATAGCAAAATAGGTTACGTGTAGTTTGACATAAGGTATCCCGAGTTACTTTGGCAACAAGTTCTTTTACCCTTACCAGCGGTATTTGAAAAAAATCACAGTAACTGTCTGAATACTTTAATATTCGCCTTGTTTTGTTAGTTCTCTGAATACTGTCAACACTTGTCTGAGTTTGCCTTTATGATGCAGTGGCAGCATTTTGAATTACTTTTCGAAGAATACTGTTCATACGCATTGTTTTTGTGTTTCAGACGAAATACAGGCAGTTTTGTGCCAGCTGTGATATTGTGCATACCATATGGACCCTTTTAAAGAAAATTTTTAAATTTCAAAGAGATTCAACAATTATATTACTTGCTTTTACATTTTAAAGGCACTTTAAAAAAGATCTACTTCGCCTGTAGGTTTTGCAGCTAGTGGGCTATTTAAGAAACCTCTCCCCTCTAAATGTCATACTGTAATCTATCAGAAAACTACATGAGTTAATTGTACTCTATGGAAAATTTCTTTGGAAAGATATTTTGTAAAACTTTTTTTTTTTTCCAAGTAAAAATTTTATGAAACTTGGTCTCAAAAATGTTGTGAACTTTATGATTCAAAATTAAGTCTAGATATGTCCTCGATTCATGATATATGCTACATGTATCACACAACAGATCTGCAATTCTTTCACTTCCCTGGACGCTTCTCCCTTAGTTTCTGCAGTTTCATTGGGGTTATGTTTTGGGAGACGAGGAAACGTCTAGATGCTTAAAAACGATTTTAAATAAAAATTCCTTACAGTTGAAA +>XM_003139612.1 Loa loa hypothetical protein partial mRNA +ATGCGGTCTTCGACTGTTCCGTTATCAATAGTATTGGTGTGGTGCATCTACTACAAACTGAGTTGTGCAAAACAGTCAGAACTTGCGAATAATATGCAAATTTCTAATGTATTGAGTGAAAACGACGCTCAAAGCACCGAATTTGTTCGCACAGCTTGGAGCGCTGCAACTTATTCGAAACTCAGAATTTACAGAGAGTTTTTAATTATCTTCCTTGATAAAAAATCCATGAGGGTTCTGAGAACGAGTTGCTTCTTGCTGGAATTTTTCAAATTACATGTATGGAAACGTGCTTTCGGTAAAATCGCACTAGACATTACTTTTGGTCGAAATGCACAAATATCTATTTGGTTTGAAATGAAAATTTCTAAGCTTTCCAGTCTGCAATTAATTCTTAGAAAATTGCAAGAAGAATAA +>LC592336.1 Uncultured archaeon gene for 16S rRNA, partial sequence, clone: m5-3 +GCGAGAAACCTCCGCAATACACGAAAGTGTGACGGGGTTACCCAAAGTGTTCATTAGAACTGTGGTAGGTGAGTAATGTTCCCCACTAGAAAGGAGAGGGCAAGGCTGGTGCCAGCCGCCGCGGTAAAACCAGCTCTTCAAGTGGTCGGGATAATTATTGGGCTTAAAGTGTCCGTAGCCGGTTTAGTAAGTTCCTGGTAAAATCGGGTAGCTTAACTATCTATATGCTAGGAATACTACTATACTAGAGGGCGGGAGAGGTCTGAGGTACTACAGGGGTAGGG +>XR_004309533.1 PREDICTED: Coturnix japonica uncharacterized LOC116654348 (LOC116654348), ncRNA +CTTGCTTTTTGCCTTTAGCCTTTCTATGAGTCAGGAGACAGCAGGCTGCTTGCAAGTATAGGCTGGGGCTGGTTTTTTCCCATTTATTTATTTATTTTCCTAGGAAGAATGAAGAGCAAATAATGAGGAGGAAGAATAGATGATGAACCCAAAGATGAGCACGAGTTCCTGGGCTGGTTCTGACCCATCTAAGGGGTCCTGACTCTTAGGATCCTTTGGGGTTGGAGCTCACACATCCTGCTGCTTGTTGATGGAGGAACGATGACCCCATGTGAGTACTGCAGTGCCATACAGCCCTATTTGGGTGCATGGAGAGGCCAATTCGGCTGCAGCAGCAGTGAGAAAGCTGCAAGGTGCTGAGCTCTCTCCTGCCCTGGAGCAGCCCAGGGGATGTGGGGGCAGTCAGTGGCTGTTTTGGGGCTGTGCTGGGTGTGTTTTGGGGCTGTGCTGGCTACAAGCCTCGCTTCTATCTGCAGGCCAGCAGGCAGCATGTGATGCTGTGATGCTCACCAGCTCCAGCCAAGGGGAAAAGCCCCTTCAGCACAGGAGCTGCTGGCAGGGTGCCTGGCTGCACCGTGCCTGGCACCAGCAGTTCGGTGCCCCTCAGTGCAAAGCCTCCATCTGCTCCCCATCCTTCCCCCCCACCATGGGATGGGACTGAAGGTGGCACAGCCCCTGAGCGCTGTGCCTGCCCAGTCCCAAAACGCAATGTCACCAGGGCTCTGGGACAACCCTGCCGTGTTTAAATCCTCTTCCTAGGGGCAGCCGGGGCTGCAGACCCCTCAGGACGGCTACAGAGGCAGCAGCGTATCGCACCTTCAGCCCTCGGGGCTGCGAGCAGTCGGGTTGGAGCTGGAGCTGGCGAGCTCTCAGCACCCTCTGCCGGCTCTGCTGCCCGGCCCCGGCCCCTCCTGCTTGGGATGGAGCCTCTGTGAGCTCTAAGCTGCTGCTCTGCTTTGCTCTGCTCCCATTCTACAGCCCTGAGCCCAATAGGGGCCGTCACCCTCTGCCCTCGCACTGAGTGCTTTGCGCCCTGGGTTGAGCTGATGACTGCAGTGCTTGTGCTGAGGGTACGGGAAGGGGCCCAGCAGCCTCTCGATGTGGCTTTTCTCTGCTGTGAATGATCCCAAATAGCATCTCTGTGCTGTAAGGCAGCCCTGGGCTGACAGCAGTCTGTGCTGATGTACACGTATGGGGTATTCATGGGGCGGAAAAAGGCTGCTGCTCAAACAAGCAAACATTGACTGTCTGGTTTCCCAGCGCTGCCCCCAGCAGCAGCTTTCACATACCCTGCAGACATTCCTGCTGCTGGGCTCCCATCACCGGGCAGGGAGGAACCCCCACACTGCCTGCAGCAGCCCCTCTGACCCAGGAAAGCAAAGGGAAACCAGTTGACGTCGGGATTCTTTTAATGCAACAGCTCTTAAAATGCAACCTTCAAATGATTTTTATAATGGTCAACAATGAGAAACATCTGAGCTTTTCTACCTATGCACCCCAAACCCTTTGGGTGGAGGACTCCCTTGGGCAAAAAGGGTGAGGACAGTGTTCACATGGAGGCCCCCAACAAATGGCAGCACAACCTGGACCTTCCTCTCTCACACTTTACACTCAGGCACAAACCTACAAAGGCATCCAGCCCATCAGCTCCCCTCTTGTAGCACTTCAGACAACAGCTTCAGGCTCCTGGTTCTCTCTGCAGGTTTGTGCCTTCATGCTACGTAAAGCGATTTGAGAATGAATATCTGACTGTTTTCTGCCTTGATAGGATGGTGGTGGAGGAAGCTGATTTCCCATCACCTTGCTTTGTATGATATAATGCTACTTTATGCCTTTGTTCTGCAGAGCAGCAGGTGTTACAGGCTGCCACAGCTCGCCAATTCAAGTAACGTGGGAAATTCTGCTCCAGCCTAAACATCTGTGTAAGAATATCCCCCCACCGCCCCCTCCGCATCGTGCAGTGTTTATATGCTGTAACAGGAGAGCAGGCAATACTTGCTGAAACACATTTAATACCTTCCAGTTGTTAGTCTCAGTTTCTGGTTCTGTGCAGTCAGCACACAGCCCTCGGGCTGCGCGTGCTGCAGAATAGCAATGCTGTTAGAGCTGTGAGTGCCTTTCTCCCATCTAAAATGCTCAGTGGTTTTCTTGTACCATTTACTGGCTCTGCCCTTCCAAGAGGGGAATGGTGAGACTACACACAACGTCCTGTTGGAGGAAGGTGATGCTGTGTCTGCTTTCATCAATGCTGTGAAGAGAAACAGCAGAAAGAACCACGAGGGTCTCCTGAATCTCAGTGCTGTGTGATGCTTTCCTCCCCTTCGTGTCAAGCCTGTATTTTACTACTACCAACTACAGAAAGCTACTTTGGTCTACAGAAATGCTATGCACTTATCTCCAAGTGAATTCTAACCAACCCTTCTTAAGGACAGCAGTTAACAGTAAGTCAGTGGGTTCTTTTGCCTTAGTCTCCAATACGAGTTATAAAACCTGGATTCAGGTTTGGACAGACTGGAGCTCTTTTAGAGTCTGAGCAGCAGCTCTTGCACAACCAAAGGTCACAATTAGAAACTGAGTGTAGAAAGAGTTCCCAGGGGG +>XM_006448447.2 PREDICTED: Citrus clementina protease Do-like 10, mitochondrial (LOC18050602), transcript variant X1, mRNA +TCATCAAAAGATTCAAAACCTAACAAAAGCGTTTTCCTTCTGATATTTTTGCCTGCAGCTTTGGATTAAGGCAAAAACCCAAAGCCGAAGGCAAAAAGAAGAAATGCAAATGCTGCTGGGTCCGTCACTGCGTAGTCTACGAAGGCAGCTATGGTCCTCTTCATCCTCTATTTTCTCCAATTACAGTAGTATTAATAGCAGTGGCTTATTAGAAACCTTCTCCAATACATTAAGATTAATTATTTTGCCTTCTACCTCTTCACTCTCCACTATTAGTACTAAAAATTGTAATTTTCACTATTTTTCAACATCAGCAGCAGTAGCTGCTAATTTGAGTACCAAGGAAATTGTTTCTAAAGTTACGCGACGGCGACAACGACGTCGTTTAGCTAAAACCTGCGGAAAGACTACTAATGCTTACGCAGCAATAGAGCTTGCTTTGGATTCTGTTGTGAAAATATTCACAGTTTCAAGCAGCCCTAACTATGGACTTCCCTGGCAGAACAAGTCCCAACGAGAAACCACCGGTTCAGGATTCATTATCCCTGGAAAAAAGATTCTTACAAATGCTCATGTGGTGGCTGATAGTACATTTGTGCTTGTAAGAAAGCATGGTTCTCCAACCAAATACAGAGCCCAAGTTGAAGCTGTGGGTCATGAATGTGACTTGGCTATTCTGATTGTCGAGAGTGATGAATTTTGGGAGGGAATGCATTTCTTAGAGTTAGGAGACATTCCGTTTCTTCAACAAGCTGTCGCTGTTGTTGGATATCCTCAAGGTGGAGACAACATTTCCGTTACGAAAGGTGTTGTTTCGAGGGTTGAACCTACACAATACGTACACGGTGCTACTCAGCTCATGGCAATACAGATTGATGCTGCTATTAATCCTGGCAACAGTGGTGGTCCAGCCATCATGGGCAATAAGGTTGCAGGTGTAGCTTTTCAGAATCTTTCCGGTGCTGAAAATATAGGTTACATTATCCCTGTTCCTGTAATAAAGCATTTTATAACTGGTGTGGTGGAACATGGAAAATATGTTGGATTTTGCTCGCTGGGACTATCATGCCAGACCACTGAGAATGTTCAACTTCGTAACAACTTTGGAATGCGGTCTGAAGTGACTGGGGTACTTGTGAACAAAATTAATCCTCTGTCAGATGCTCACGAAATATTGAAAAAGGATGATATTATTCTTGCATTTGATGGTGTGCCTATAGCAAATGATGGAACAGTTGCTTTTCGTAACAGAGAACGTATAACATTTGATCACTTGGTGTCTATGAAGAAACCCAACGAGAAGTCTTTGGTTAGAGTTTTGAGGGATGGCAAGGAGCATGAATTCAGTATTACACTACGACCTCTGCAATCACTAGTTCCCGTACATCAATTCGATAAGCTTCCTAGCTATTACATATTTGCTGGCCTGGTGTTTACTCCACTTACACAGCCATATCTTCATGAATATGGAGAAGACTGGTATAATACTTCGCCACGTCGTTTGTGCGAACGTGCATTAAGGGAGCTGCCTAAAAAGGCTGGTGAACAACTCGTTATCCTTTCGCAGGTGCTGATGGATGATATAAATGCCGGGTACGAGCGTTTTGCAGACCTACAGGTTAAGAAGGTCAATGGGGTGGAAATTGAAAATTTGAAGCATTTATGTCAGCTAGTGGAAAACTGTAGCACTGAGAACTTGAGGTTTGATTTAGATGATGATAGGGTTGTTGTATTGAACTATGATGTGGCAAAAATTGCCACATCTAAAATTTTGAAGCGTCACAGAATACCTTCTGCTCTGTCCGGTGATCTTAACGGTGAACAGATCTCCGAAATTGAGTTAGCTTCCAGACATAAAGAATGGTCACAAAGTTGAGGGCCCTGAGCCGGCTAATATTAAAATTTTGGTTTCCTAATCCACTTAGCTGCTTTTATTATTTGTCATTTATAATCGGATGTTGAGGTGCAAACACATTTTTGGCCTTTGTGTATTGTAAGCGATTCAGAGTATTAAAACCAAAAAGCGTTCTGTTGTTTGGTAAA +>XM_037730203.1 PREDICTED: Cebus imitator glycosylphosphatidylinositol specific phospholipase D1 (GPLD1), transcript variant X3, mRNA +GAGACTTGGTTTCCTGGGTCAGTGACCTGCTTAGAGGGAAGCAGCGGGTCTGCGCCTGGATTTCGGAGTCACGGTGCTGCTGCAGCTCTGAGCATTCCCACGTCGCCAGAGAGCCCGTGGGGAAGGAGAGCATGTCTGCTTTCAGGTTGTGGCCGGGCCTGCTGATCGTGCTGGGTTCTCTCTGCCGTAGAGGTTCATCCTGTGGCATTTCAACGCACGTAGAAATAGGACACAGAGCGCTGGAGTTTCTTCAGCTTCATAAAGGGCGTGTTAACTACAAAGAGCTGTTGCTAGAACACCAGGATGCATATCAGGCTGGAACCGTGTTTCCTGACTGCTTTTACCCTGGCATCTGCAAAGGAGGAAAATTCCATGATGTGTCTGAGAGTACTCACTGGACTCCGTTTCTTAATGCAAGCATTCATTACATCCGAGAGAACTATCCTCTTCCCTGGGAGAAGGACACAGAGAAATTGGTAGCTTTCTTGTTTGGAATTACCTCTCACATGGTGGCAGATGTCAGCTGGCATAGCCTGGGCATTGAACAAGGATTCCTTAGGACCATGGGAGCTATTGATTTTCACGGCTCCTATTCTGAGGCTCACTCGGCTGGTGATTTTGGAGGAGATGTGTTGAGCCAGTTTGAATTTAATTTTAATTACCTTGCACGACGCTGGTATGTGCCAGTCAAAGACTTACTGGGAATTTATGAGAAACTCTATGGTCAGAAAGTCATCACCGAACGTGTAATTGTTGACTGTTCACATATCCAGTTCTTAGAAATGTACGGTGAGATGCTAGCTGTTTCCAAGCTGTATCCCAGTTACTCTACAAAGTCCCCGTTTTTGGTGGAACAATTCCAAGAGTATTTTCTTGGAGGACTGGATGATATGGCGTTTTGGTCCACGAATATTTACAATCTAACAAGCTTCATGTTGGAGAATGGGACCAGTGACTGCAGTCTACCTGAGAACCCTCTATTCATTGCATGTGGCGGCCAGCAAAACCACACCCAAGGCTCGAAAATGCAGAAAAATGATTTTCACAGGAATTTCACTACATCCCTAACTAAGAATACTGAGAGGAATATAAACTATACTGAAAGAGGAGTGTTCTTTAGTGTAGATTCCTGGACCCCGGATTCTGTGTCCTTTATGTACAAGGCGTTGGAAAGGAACATCAGGACCATGTTCGCAGGTGACTCTGAGCTGTCACAGAAGCACGTCTCCAGCCCCTTGGCCTCTTACTACTTGTCGCTTCCTTATGCAAGGCTTGGCTGGGCAATGACCTCAGCTGACCTCAACCAGGATGGGCATGGCGACCTCGTGGTGGGCGCACCAGGGTACAGCCGCCCCGGCCACGTCCATGTCGGGCGCGTGTACCTCCTCTACGGCAGTGGCCTGGGCCTGCCCCCCATCGACCTGGACCTGGACCAGGAGGCGCACGGGATCCTTGAAGGCTTCCAGCCCTCAGGTCGGTTTGGCTCGGCCTTGGCGGTGTTGGACTTTAACCAAGATGGCGTGCCTGACCTGGCTGTGGGCGCTCCCTCCGTGGGCTCCAACCAGCTCACCTACAAAGGTGCCGTGTATGTCTACTTTGGTTCCAAGCAAGGAAGAATGTCTTCTGCCCCTAACATCACCATCTCTTGCCAGGACGTCTACTGTAACTTGGGCTGGACTCTGCTGGCTGCAGATGTGAATGGAGACAGTGAGCCTGATCTGGTGATTGGCTCCCCCTTTGCCCCAGGCAGAGGGAAGCAGAAGGGAATGGTGGCTGCGTTTTATTCCGGCCCCAGCCACAGCGACACAGAAAAACTGAACGTGGAGGCGGCCAACTGGACGGTAAGAGGCGAGGAAGACTTTGCCTGGTTGGGATACTCCCTTCACAGCGTCACCGTGGACAACAGAACCTTGCTGCTGGTGGGGAGCCCCACCTGGAGGAATGCCAGCAGGCTGGGCCATTTGTTACGCATCCGAGATGAGAAAAAGAGCCTTGGGAGGGTGTATGGCTACTTCCCACCAAACAGCGAGAGCTCGTTTACCATTTCTGGAGACAAGGCAATGGGGAAACTGGGTACTTCCCTGTCCAGTGGCCGTGTGCTGATGAACGGGACTCTGACGCAGGTGCTGCTGGTTGGGGCCCCAACACACGATGACGTGTCTAAGATGGCATTCCTGACCATGACCCTGCACCAGGGCGGAGCCACTCGGATGTATGCGCTCACACCCGCTGCACAGCCCCCGCTGCTCAGCACCTTCAGTGGAGACCGCCGCTTCTCTCGATTTGGTGGCGTTCTGCACTTGAGCGACCTGGATAACGATGGCTTAGATGAAATCATCATGGCAGCCCCCCTGAGGATAGCAGATGTAACCTCTGGACTGCTTGGGGGAGAAGATGGCCGAGTTTATGTATATAATGGCAAAGAGACCACCCTTGGTGACGTGACAGGCAAATGCAAATCATGGATAACTCCATGTCCAGAAGAAAAGGCCCAATATGTATTGATTTCTCCCGAAAACCAAGTCGTCATTGCTGCTGGAAGGAGTTCTTTGGGAGCCCGACTCTCTGGGGCACTTCATGTCTACAGCCTTGGCTCAGATTGAAGATTTCCCTGCACCTCTCCACTCTGCCCCCTTCTCTCAAGCTGAATCACATCCATGGTGAGCATTTTGGTGGACAGAGTGGCATATCCAGTGGAGCTATGGTAGATCCT +>XM_003291721.1 Dictyostelium purpureum hypothetical protein, mRNA +ATGAATGAGCTATTATCATCTCTAATTAACTTTAGTGTAAAAGAAGAATTAAAAAACAGTAGTAATATTAGTGATAGATTATTATATATAGTTTGGAATAATATATTTTTAAGAAATGAAATTCATAAACATATTTTAAAGTTTATTGAATATAGTGTTGTAGATTTTGAAATATCACAATATGACCAGTTTAAAGATAAATCATATATAACAACACTTAATTGGTTTGGTGATACACTACCTGATAAAAATGAATTTCCACCATTTTTGACAAGTTTATATTTGCCCCATTTTTCTGAAAAGTTAACTCCAACAACTTTACCAAATACAATAACTACACTCACGCTCGGTCATTATTTTAACCAAGTAGTTCTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTGATGATTTTAACCAAGTAATTCTACCTGACACATTACCAAATAGTCTCACAACACTCACATTCGGTTATAATTTTAACCAAGTAATTCTACCTGACACATTACCAAATAGTCTCACAACACTCACATTTGGTTATAATTTTAACCAAGTAGTTCCACCTGGTACATTACCAAATAGTCTCACAACAATCACATTCGGTCATTTTTTTAACCATATAGTTCCACCTGGCACATTACCAAATAGTCTCACAACACTCACATTCCGTAGTAAATTTAACCAAGTAGTTTTACCCGGCACATTACCAAATAGTCTCACACAACTCACATTCGGTTATTATTTTGACCAAGTAGTTCTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTCATCGTTTTGACCAAGTAGTTCTACCCGGCACATTACCAAATAATCTCACAACACTCACATTCGATAAAGCTTTTAACCAAGTAGTTCCACCTGGCACATTACCAAATAGTCTCACAACACTCACATTCAGTTATTTTTTTAGACAAGTAGTTTTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTCATCATTTTAACCAAGTAGTTCTTCCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTAATTGTTTTGACCAAGTAGTTCTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGATCATCATTTTAACCAAGTAGTTCCACCTGGCGCATTACCAAATAGTCTCACAACACTCACATTCGGTTTTTTTTTTAACCAAGTAGTTTTACCCGGCACATTACCAAATCGTCTCACAACACTCACATTCGGTGGTAAATTTAACCAAGTAGTTCTACCCGACACATTACCAAATAGTCTCACAACACTCAGATTCGGTTATGAATTTAACCAAGTAGTTCCACCCGACACATTTCCAAATAGTCTCACAACACTCACATTCGGTCATCGTTTTAACCAAGTAGTTCTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTTATGATTTTAACCAAGTAGTTCTACCCGGCACATTTCCAAATAGTCTCACAACACTCACATTCGGTAATGATTTTAACCAAGTAGTTTTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTTATGATTTTAACCAAGTAGTTCCACCTGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTCATCGTTTTAACCAAGTAGTTCTACCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTGATGATTTTAACCAAGTAATTCTACCTGACACATTACCAAATAGTCTCACAACACTCACATTCGATAATGAATTTAACCAAGTAGTTCTTCCCGGCACATTACCAAATAGTCTCACAACACTCACATTCGGTTATTGTTTTAACCAAGTAGTTTTACCCGGCACATTACCAAATAATCTCACAACACTCACATTCGGAACTAAATTTAACCAAGTAGTTCCACCGGGCTCATTACCAAATAGTCTCACAACACTCACATTCGGTCGTGATTTTAACCAAGTAATTCTACCTGGTACATTACCAAATAATCTCACATCAAAACTCTCAAAGATTGTTTAA +>HQ115669.1 Trichoderma koningiopsis isolate NG_05 18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, 5.8S ribosomal RNA gene, and internal transcribed spacer 2, complete sequence; and 28S ribosomal RNA gene, partial sequence +AGGGATCATTACCGAGTTTACAACTCCCAAACCCAATGTGAACCATACCAAACTGTTGCCTCGGCGGGGTCACGCCCCGGGTGCGTCGCAGCCCCGGAACCAGGCGCCCGCCGGAGGGACCAACCAAACTCTTTCTGTAGTCCCCTCGCGGACGTTATTTCTTACAGCTCTGAGCAAAAATTCAAAATGAATCAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTCTGAACGCACATTGCGCCCGCCAGTATTCTGGCGGGCATGCCTGTCCGAGCGTCATTTCAACCCTCGAACCCCTCCGGGGGGTCGGCGTTGGGGATCGGGAACCCCTAAGACGGGATCCCGGCCCCGAAATACAGTGGCGGTCTCGCCGCAGCCTCTCCTGCGCAGTAGTTTGCACAACTCGCACCGGGAGCGCGGCGCGTCCACGTCCGTAAAACACCCAACTTCTGAAATGTTGACCTCGGATCAGGTAGGAATACCCGCTGAACTTAA +>XM_026575105.1 PREDICTED: Papaver somniferum aspartic proteinase CDR1-like (LOC113328005), mRNA +ATGAGTCGGAAAAATGTTGTTTCTTCTTCCATCAATTTTGTAACAGCAGTTGTTTATGTTTCATTTCTACTAAACTTGGCCACTGCAGTTAAACCAAGAGGGTTTAGCATGAAGATGATTCGCAGCGACTCTAAAAAATCACCTATGCATCTAAGGTATGCTAATTTAACTCAAGAAGAAAGATTTCAAAGACTCGTCGAACAATCCAAAGCTCGAGCGCGTTACTTTGCATCCGCAAGAGCTGCTGCTTATAATAGAAGCATCTCCATGAATCCCGATATTGCACGTATACGTCTAAAATACATGGAGAACAGACACTATTACATCGGTGAGGTAGGTATAGACGGGCTCTGTACGTACAAAGAAGGATACATTTCCGGACCAAAAATATCTGGTCATCTTGCTTATGAAACACTCACTATGAAGTCAAACACCGGTGCCCTTGGAAGTGTTGAAAAAATAGTCATGGGCTGCGGTATTGATCAAAGGAATTTCGGACCATTATTTGGTGTTCCTGAGATTCGTGAAGGCATTGCGGATTCACACACGTATTTAAGATTTGGTTTCGACACAATAATTGAAGAAGGACCTCCTAATGAAATACTTACAACTCCAATAATTCAAGACCCGAACTTCGGGACGCCTTACCATTTGATTCTTAAGGATATCAGTATAGGTAACAGAAGCGTAGGGTTTCAACAAAGTGATTTCGAGCTAAAGCCGGATGGAACTGGTGGGACTATCATAGATTCAGGGGCTCCATTTACCACCATGAGGATGCGCCATTTTGAAAGAGTTGAGCAAGTGCTGGTAGAATATTTTACAGATTCTGGTATTCGTCCTGCTGATCCTGAACCTGGCAGAGATTTCGATACTTGTTTTGATATACCGGTCGATTTCACTGCGTTTCCGGTGATGACATTTCATTTTCAGGATGCGGATTTTGTTATTCAACACTGGTCTGCCTATTACATACAAGAGCGCTTGCTATGTTTTGGTATCATTGGCTTGAATGACGACGATCCAAATGATGTTACTCTTGGAGCTATGCAACAAGCTAATAAAAGGATTTTACACGATCTTCATGCCAAGGTACTCAAGTTTACTGATGAGAGATGCGATGATGATGGTTCGTGA +>XM_050131643.1 PREDICTED: Microtus fortis GEM interacting protein (LOC126494357), transcript variant X3, mRNA +ACCGCTCCTTAGCTCTTAACCCAGGGAAGTCCCACTTACTCCTGAGCTACCTGACAGCCGGGGAAGAAATCCTGGCAAGGGAAGGACAGGAAAGGTCTGTGCACCTTGGAGACTCCTGAAGCGCACAGGGCGCACGACTCCTGCCCCAACCCTCCGATTGCCCTGCAGAGCCGGCACCCCGGATGCCTGGGGGGAAGGGGCCCAGGAACGGGAAGTGGCCGCTTCTGCTTATTATACTATGGATGGGGGCAGGGTGTCAGGGCCAGGATCCCTGCAGGGCACCCCGGGCGGGGGTGGGGGCATAAAGCTAGAAAGTGGCGGCAGCAGAATTGTGACTAGGTCTAGGTTATGTTTCCAGCTGTCTTTGTGTGTGTGTGTGTCATTCAGTCCGGTTCCTCATGGTTTCAGCTGTACTCGCGTGTGTTTATGCCGCAGGCTAAGTGCCTGTGCGTCCCACGTGCGGTCCCATCTGTCTGCCCTGGGGTCCATGTGGCTCCATTGTCAAGCCAGGCCTCTACTCCATCACTCATGTGGCAGCTGCATCTGTATTCTTGCTTTGCCTATGGGTCCCTGCCTGTGTGGGTGTCTCTGTGACTGTGAGCAACCGCTTCTCTGATTTTGCCGGGGCCCATCTGTCTGGTCTGAAACAACCCCTCTGAAGCTCACTGTCCCGTCCCACACTAGTCTTAGATCAAAACTCACTTAGGTCTCTGTTTCTATCTCGCTTTCTCCCTCTTCCTTCCATCTCTGCTTGAGAGTGGTTGAGGTGCTTTGCTGCCTCCAAGGGTAGAGGGAGGGAGACAGTGAGTGGTTGGTTCATGTTTTCTTGCACTTCTCTCCCCCCAGAGCTGACCCCAGCTCCTGAGGGCAGGAAGAGGTACAGTGACATCTTCCAGAGCCTGGACAACCTGGAGATATCGTTGGGGAACGTGGCTTTCGACCCCTTGGCTGGAGACCTTGTACTCAGACAGGACCTGGAGCCTGACAAGACTGCCACAGCCGCGGTGAGCAGTGAAGCCAGATGGAGTGATCCCTCCCCAGAGGGTCCCGTACCCCTCACAGAGGAAGAACTAGATTTGCGACTCACTCGGACGAACGGTGGTGTGGATGCTGCCCTGGAGTATGCCAAGGCATGGAGCCGCTATGCCAAGGAGTTGCTGGCCTGGACAGACAAGAGGGCCAACTACGAGCTGGAGTTTGCTAAGAGTGTCATGAAGATCGCTGAGGCCGGCAAGGTGTCCATTCTCCAGCAGAGCCAAATGCCACTCCAGTACATCTACACCTTGTTTCTGGAGCATGACCTCAGCCTGGGAGCCCTGGCCGTGGAAACGCTGGCCCAGCAGAAGAGAGACTACTACCAGCCTTTAGCAGCCAAAAGGATGGAGATTGAGAAGTGGAGAAAGGAATTCAAGGAGCAGTGGCTGAAGGAGCAGAAACGCATGAATGAGGCGGTGCAGGCACTACGGCGCACCCGGCTCCAGTACATTCAACGCAGAGAGGACCTTTGGGCACGTTCCCAGGGGTCCCCTGAGGATCCTCCTCCCCAGGCATCTCCCGGATCCAGCAAGCAGCAGGAGCGCAGACGACGCTCCCGAGAGGAGGCACAGGCCAAGGCACAGGAGGCAGAGGCTTTGTACCAGGCCTGCATCCGAGAGGCCAATACGCGTCAGCAGGATCTGGAAACCACCAAGCGGCGGATAGTGTCACATGTACGCAAACTGGTGTTGCAAGGAGACGAAGTACTTAGGCGGGTGACGCTGGGCCTGTTTGAGCTGCGAGGGGCACAGGCAGAGAGAGGACCTCGAGCCTTCTCAGCTCTGGCTGAGTGCTGTGCGCCCTTTGAGCCTGGCCAGCGCTACCAGGAGTTTGTGCGGGCACTGCAGCCTGAGGCCCCGCCACCGCCGTCTCCCGCCTTCTGCTTCCAGGAGTTCACGCCTGTGCTACACAGTTCCCCTCAGGACACAAAAAAGAAGTTTTTGGGGCCTCCACATGCCAGGCTGGAGGAGGGTTACTCTGAGCCTGGCCCTTGGGAGGATACCAGCTCAGGCAGCCAGGGCCCCACTCCAGTCAGTGATGTGGACAGTGTAGGTGGTGGCAATGAATCCCAGTCCCTGGATTCCCCTACTTCCAGCCCAGGTGCTGCTACTCGGCGGCTTGTGAAGGTGTCGTCTATAAGCACTGAGTCCTCTGATGACTTTGAGGAACGAGACCCTGATCTGGGGGATGGGATGGAGAATGGACTAGGCAGCCCCTTCAGGAAGTGGACACTGTCCACAGCTGCTCAGACCCACCGGCTACGGCGGCTGCGTGGTCCAGCCAAGTGCAGAGAATGTGAAGCCTTCATGGTCAGCGGGACAGAGTGTGAAGAGTGCTTTTTGACCTGTCACAAGCGCTGTCTGGAGACCCTCCTCATCCTTTGTGGACACCGACGGCTTCCAGCCCGGATGCCTCTCTTTGGAGTTGACTTCCTACAACTCCCCAGAGACTTCCCTGAGGAGGTGCCCTTTGTGGTTACCCGGTGCACAGCTGAGATAGAACATCGCGCCCTGGGCCTGCAGGGTATCTATCGGGTCAGTGGGTCTCGAGTGCGTGTGGAACGACTGTGCCAGGCCTTTGAGAATGGCCGAGTGCTGGTTGAACTGTCGGGAAACTCTCCTCATGATATCACCAGTGTCCTCAAGCGATTTCTTCAAGAGCTCACTGATCCCGTGGTCCCCTTCCACCTCTACGACGCCTTCATCTCTCTGGCAAAGACCCTGCATGCAGACCCCGGGGACGACCCTGGAACCCCCAGCCCCAGCCCTGAGATTATCCGCTCGCTGAGGACCCTCTTGGTGCAGCTGCCTCCCTCTAACTACAGCACTGTGCGGCACCTGGTAGCCCATCTGTTCAGGGTGGCTGCTCGTTTTGAAGAAAACAAGATGTCTGCCAACAACTTGGGAATTGTATTTGGGCCTACGCTGCTGCGGCCACCAGATGGACCCAGGGCCCCCGGAGTCAGCCCTGTGGCCTGTCTGCTGGACTCTAGTCACCAGGCTCAGCTTGTTGAATTCCTCATTGTGCACTATGAGCAGATCTTTGGAATGGATGAGCTCCCTCTGGCCTCTGAGCCCCTGACCCAAGATCCTGGCCTGGCTCCCACACTCCTCGAATCCAGTCCTCAGCACCCAGCCCCACTTCTTGCCCAAGACATACAACCCCTGACCATAGCCTCAGACTGCAGCCCAGATCCCAAACTCCACAGTGCCCCGGAGAAGTGTCTGGAGGTCACACCTTCTGAGGTAATTGCAACTCTGCAGAGGGACCAAAGGGAGGAGAAGGAGGTGGAAAACACCAGAGATGGGGCAGGGGAAGGGTCCGGCCACAACCCTGAGGACTTGCTCCTGGGAACACAATCCCGGGGCCACTTCAGTCGCCAGCCAGTGAAGTATTCACGGGGAGGTGTACGGCCAGTCACTCATCAACTGTCCAGCTTGGCTCTGGTAGCTTCCAAACTGTGTGAGGAGACTCCTGTTACTGTTTCAACAGTGCACCGAGGTAGTTTGAGGGGACGAAGCCTGGGCCCTGCTGCTGCCTCCCCTGAAGGCAGTCCCCTGCGCCGAAACCCTCTGCCCAAGCACTTTGAGATCACCCAGGAGACAGCCCGGCTACTCTCCAAGCTGGACACTGAGGCTATGTCCAGTGCTACCTGCTGTGCTGACACTGAGCCTGAGGGGTCTGAGGAACATCTCTGACCACCCACCATCCCAGGAGACTCAGGACTGAGCTGATGACCCCATATGTCTCTCTTCTTGCCCCACCTGGTAACCAGACCAATTTAGTGGGGTGTGGGGAGAGACAGGTTACCAGAGAGTTGGGTAAGGAAGACCACCCATCTTGGGAAGTCCTCACCATCTCCCTGCCAGAGGAGGTTAAAACGGCCAGACAACACAGGTGCACAGGCAAATCAGGATCAATGACTCAGTTGAATCAGTATTCAATGGTCAGTACAGGTCCGAAGATCCTTGGGTTACCCCAGTCACAGCTGTCTGACTACTCTGATCATAAGAGCTCCTGGTTCTACCTGAGTAGGTGGGTGTGGTTTAGCCCTCACCTGCTTTTATATCTTCCTGGGTTTGGTTTGTTTGTTTGTTTGTTTTGAGATGGGCTCTATTGTAGCTCTGGCTGATCTGGAACTCCCTATGTAAACCAGGTTGTCATAGAACTCACAGAAATTCCCTCCTTTTAAGTGCTGGCCAAATCTGGATTCTTATAACCTCTGAATAAAGCCATGTCCTGATTGAATACAA +>MH278833.1 Uncultured bacterium clone DEN-OTU-710745 16S ribosomal RNA gene, partial sequence +ACGGAGGATCCAAGCGTTATCCGGAATCATTGGGTTTAAAGGGTCCGTAGGCGGTCTTATAAGTCAGTGGTGAAATCTCCCCGCTCAACGGGGAAACGGCCATTGATACTGTAGGACTTGAATTATTAGGAAGTAACTAGAATATGTAGTGTAGCGGTGAAATGCTTAGAGATTACATGGAATACCAATTGCGAAGGCAGGTTACTACTAATGGATTGACGCTGATGGACGAAAGCGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGATACTAGCTGTTGGGCGCAAGTTCAGTGGCTAAGCGAAAGTGATAAGTATCCCACCTGGGGAGTACGTTCGCAAGAATG +>XM_020557668.1 PREDICTED: Prunus persica putative disease resistance protein RGA3 (LOC18785927), transcript variant X4, mRNA +TCTCTTCAATTATTATATCTTTTTACGCCAGCCATATGCGCACCTTCTTGTCTACAAATCCCTCACAACCTTCTCAAAGATACATTGCGTCCTCAATTTTGCTCTACTTTTCTAACCCAAACTAAGCATTCTGCTCTCTGTCTTGAGCAACACTGAAAGAAAATATGGCTGCAGAGTTTCTTACTTTTGGTGCTGAGGGAATTCTGACGAGGGTGGCTTCACTTGCAGAGCAAGAACTCAGTCTTCTCTGGGGATTCAAAGGAGAGCTAACAACTCTACGAGACTCATTATTCAAGTTGGAAGCTATGCTCAGAGATGCACAACATTTACAAGTTCGGGGTGAGAGGGTGGAGATGTGGGTGAAGGATCTGGAAGGCATAGCTCATGAAGCAGATGATGTGTTGGATGAATATGAATATGAACTTCTCCGGCGGAAAGTGGAGATCCAAAATCAGATCAAGAACAAGGTGCTCAACTTCTTTTCACGCCACAATCCCATTGCATTTCGTCGCAAAATGGCACATAAAATTAAAAACATCAATGCATCTTTGGCAAACCTGAAGAATGAGGCAGCTAGTATTGGACTGGTTGATAGGTCAACACTGGTCAATGCAACATCTCATGATATTGGAGGACTTGACAGGGAAACCGTCTCAAACTTTGATCAAGATGAAAAGTACATTGTTGGAAGGAAGGAGGTTGCGTCGGACATAGTTACAACCCTGATCAACTCTGGCAAGAACCAAGACAATTGTCTTTCTGTTATGGCCATTGTGGCGATGGGAGGCTTGGGCAAGACAACTTTGGCTAAATCTGTATATAATGATCCTGAGATAGGTAGACACTTCGATCAAAAAATATGGGTATGTGTATCTACTCCTTTTGAAGTCAAAAAGATTTTAAGCGAGATCTTGGAATGTCTTAAACCAGAGAAAGCTGGGATAAAGGGTAAAGCAACAATATGTGAAAACCTGCAAGAAGATTTGAAAGGGAAGACATATCTTCTCGTGCTTGACGATGTTTGGAACGACGATCGTAGCAAATGGGACGATTTGATGAGTTGCTTGTTGAATGCTACAAGCACTAAAGCAAGCAAAATCCTTGTCACTACTCGCAATGTGAGTGTTTCATCAATTGTACAAACACTTCCTACATGTGTTCTGGGAAAATTATCGGAGGATCAATGCTGGTGCATATTGAAGTATAAAGCGTTTCTAGATGCGAGTGTTGTTTTGACTGAAGATCAAGAGAGAATCGGAAGGGAGATTGCCAAAAAGTGTGCAGGTGTACCATTAGTGGCAAAGGTTTTGGGAAATATGATGCGTTCTCAAGATATTGATGGATGTCGGTCAATTCTAGAAAGTAGAATATGGGATTTACCAGAAGGAGAAGAAAGAATCTTGTCGGTTTTGAAGTTGAGTTTTGATAAATTGAAATCACCATATTTGAAACAATGTTTTGCATATTGCTCAATGTTTGTCAAAGATTTCGAAATTGAAAAGGATGACTTGATCCAACTTTGGATGGCTCAAGGATTGCTTTACCCTTCTCCTCCCAACAGACGTAATCTAGAGATGGAGGATATAGGAAATGAATATTTTAATATTCTATTGAACAACTCTTTCTTTCAAGACGTTGAAAAGGATTGGTATGGTAATATTACAAGTTGCAAAATGCACGACCTTGTGCATGATCTCGCAGAACTTGTGTCAAAAACGAAGAGTAATGACTCCAATGAGACTCGACATATGGCACATATTCCTACCTCAGTGCTACATGGAGTTCCAGAAAGAGGTGCTCATAAATTGCGCTCACTTTTCTTGAATGTTGAAGTTCTTGGTGATATCTTACCAAACTTTAGAGGTTTGCGTGTCTTAAATTTATATCAAACTTATATGAAGGAGTTGCCAATTGCAATTGGAAAGTTGAAACACTTGAGGTATCTGGATGTTTCCTATACAAAGATCAAAGCACTCCCCAAATCCATTGGAAAGCTTTATAATCTACAAACATTAAGAATGAAAGAGGTCGAGCTTGAAGAGTTTCCAAAAGAACTGCAAAATTTGATAAACTTGAGACATATTTATTTTTATCCGTATGGTATGAAATTTCCAGCAAGGATAGGGCGATTGACTAATCTCCGAACATTAAAATATTTCATCGTGGGTAAGGAGACAGGTCGTGGAATAGAGGAGCTGGCTGGCTTAAACTTGTTAAAAGGCAGATTAACTATCTATAATCTAGAGCACGTGAGAGATGGAGAAGAAGCCAAGAAAGCAAAATTAGTGAAGAAGACAAACATAAGCAAGTTAAAGTTTCAGTGGGCAGAGGATAGGTCAAGCATCACCAATGATGAAGAGGTACTAGAAGGCCTTCAACCACACCCTAGTAAACTGGAATTTTTACAATTTTTCAACTTCATGGGTGATAAATGTCCATCATGGATCATGAGTAGTTCGTTTCCTGTATTGAAAAGGTTAAAGATTTACAATGCTAGGAACCTAACTGAATGGCCAGAAAGTGGGATCGTGGTCTTTCCTTGTCTCGAGGAGCTGGTTTTGAGGAATTGTGATAAATTGAGAAGTGCTCCTAGCCATTTCCCATCTCTCAAGACGTTGGAGATAGATTCCATGGGTAGCGGCATGCCAATAGCAAACATAAGCAATAAGCTGACCACTCTTACTTCGCTCGCAATAAGGAACATAAGCGGACTTGTTTCTCTGCCAGAAGGGATGCTTAAAAACAACAAGAATCTTGCATACTTGGAGATAAAAGATTGTCAGGAGCTAACTTGTATTGCTCTTGATGTAGTTGGCTCTTGCGCACTTCTTGAGTCAGTGCGTATTTCCAAGTGTCCTATTCTTGCTTATTTTCCTGATGGGCTACTCACAACATCTCTTAAGAACCTGATTGTGGAAGATTGCGGTAGTCTAGAGTTGATTCCAGTTACACAGCCCCTCTCATCCCTCTGTGAATTAAAGATTACAGGCTGTCAGGAGTTGTCAAGTCTACCGAGTGGGTTAGATTATTATACCTCTCTTCAGGAGTTGGCAATATCAAATTGTGATATGCTAACATCCGCTTTGATTCACAGCCTCCCATCCCTCCGGAAGTTGTCTATATTTCGTTGCAACAGGAGACCAAAGTTTGTTCCAAGTTTACTCGGCTTCACATGCCTTCGTGAATTGAGAATTAAAGATTCCCATGGATTGACAAGTCTGCCAATAGGGCTAGAATCATGTTCTTCTCTTGAGGTGTTGATAATAAGCAAGTTGCCGAATGTAGAATCTATTACAAGTTTAGACAACCTCACAAACCTCCATGAATTGGGGATATTTTCTTGCGATGGATTGAAAAGTCTACCCAATGGGTTAGCAATAACATCCTGCCTCACCCACTTGAAGACATTGGAAATCGGTGGCTTTTGGAAGGAGCTTGATTCATTCCCTGCTTTTCAGGTTACATCACAACTTGAAACATTGAAGTTATGGGGTTGGCCTAAGCTCAAGTCTCTGCCCGAGCAAATTCAACACTTGACTTCTCTAACATGTCTTGAAGTGCAATGCTTTGACGGAATGGAGGCTCTTCCAGAGTGGTTGAGAAACCTTACATCTCTTGAGTACCTGTATATACATCTTTGCAAGAATATGATGTATCTACCTACACTAGAAGCTATGCAATGTCTCACCAAATTAAAACGCATATTCATTTTGGATTGTCCCCTTCTAAAAGAGAGATGCAACAAGGAGAGCGGCTCAGAGTGGCCCAAGATTTCTCATATTCCACAAATATATGTTGACTGGGTACGGTGGCAGCTGCCAAATTCAATATAGTCTGAGAAAGTATCATCTTGAAATGAGAAATAGTTGAAAGTGGGCGAATTGTGGTCGAGAAAATGATTAAACTCAATTGCGTTTTTCCTTGAGACTGGTGTTGGTGTGGAGAGTTGATTGAAGCTATATATGCTACACATCATCACCATTGAAGAAAAGGTGTCCATTCCCTACAGCCTACAGCCTACAGCCTACAGCCTACAGGGTCTGTTGTTATTTGGGCATAATTTGGAGGTGGGTGGCTTTGCCTTACCTGAAGGAACATTTTTTGTAATGGGAGCAAACAGAGTCCAGGTATTCAAAAGCACTCCAATTTCTACAGTGACTGATGGGGGTAAATCCAACACAAGCCACCAACTCAAATGATCACAAAATCAAGACAGAAGTCACAGGCTGCTCAAATTTTGTGTGCCGATCCGAAGCGATTGTAGTTGGAATATTTTGGTAATATCCTTCTATTGATGTCCAGAGAAAACTATAAATTTATTCAAATTTTAGCATGGGTGTCCAAAGATGGATTTTGGGTGCAAGCGTGAGCTCACCAACATTTGAAGCACGAAGCCCAACAGCCCAAGAACCAGCAACTAAGTCCAACTTAGCCTATTGCTCCACTCTACCCCAACACCCCACTTTCTCTTTCCTTTTTTTTTTTTTATAATTTTTTTTAACTGTTGTAAAAGTGGAGTCCCCAAAATGCCCCCAAAATGCCTATAAATAAGGCTCCCTCCCATACTTGTAAATACACAATGAGATTGAGAAAACACACAGAAATAATGTGAAGAACAAACTCTCAATGAATGAGAAATCAGTTTTCTCCAATTTCTCTCTATCCCAATTCTCTCTCCATTTTCTTACTAGATTTATAACACATTATCAGCATGATTTCTCTATCTCTAAATTCAGAGACCCAACCCATCTCACCTTCCTCTGCTCTCTCATCCACACCGCAGCAGAGCTTTTCTTGAAAACCCAGAAACAACATAAATCCTGTCCGTACAGCAACCGAGCCATCTATGGGACACGGTGCTCCAGCTCACCAAGTCCGCTTAGGACAAGAACAGCGACCCGCTCCTCTGGGCGGTTCAGCACAGCAACAGCCTCAACTCGGCCGGCGTGGCCTTGCCCTCCGTCGAGCTCGCGCACCTCCTCGTCTCTCACATCTGCTGGGCCAATCACGTGCCCATCACATGGAAGTTCCTCGAGAAGGCCTTGACCGTCAAGATCGTATTGTGAACCAGCAAAAGAAAATCTTGAGAACCCAGTAAAGTGCGATGGGGGAGCTGGCAAGTCAGAAACATGTTCAGTTCATTGTATTAGTCGAAAAGAAGAAGGATTCTTTTGAGTCCGTGGTGATGGAGCATATAAGAATGAATGGGGCATATTGGGGTTTGACTGCTCTTGATCTTCTTGGGAAGCTGCACGTCAAGATGACTCAGGTGGGTTTGGTGGTAACATTGGGCATGACCCACATGTACTATATACCTTAAGTGCTGTGCAGGTTTTGGCCTTGTTCGACAAGCTTGATGTTCTGGATATTGAAAAGGTTGCGAGTTATACCACACACCAGCCTTCACATGTTTTGGATCAGCGGATGATGATGAGGTTTTCTCCAGTCGGCAAGGACAGAGAATAAAACAGTGTAAATGCAGAGGCAACTTTGACAGACCCCTGATGACGGCCACAATGATGAGCAGCACCCACCGATAAAGAAAAGCAAACCCACCGAAAAAAAAAAAAAATGCTAAAGTGCTGAAGCATCTTTCAATAAGAAAAGCAAACCCACCGAAAGAAAGAATAATAAATAAATATATTTTTAAAATTAAAAAAAAAAAAAAAAAAAAGATCACTCAGCCAAGGGCACTGACCCTAAAGTAAGCGATAAGGTCTCTGCTCCCTTATCTTCTC +>AY964845.1 Eptatretus stoutii clone Es2VLRA.33 variable lymphocyte receptor A (VLRA) mRNA, complete cds +TGGTGATAACCTCAAGGTGCTCTTTCAGAGATGATGGGTCCGGTCTTGGCCGCGTGTCTGCTCATCATTTTGTCCACTGCATGGATTTCCCAAGCGAACGGGGCAACCTGCAAAAAAGATGGTGGTGTTTGTACCTGCAACGACCAAACGAAGAACGTTGACTGCTCCAGCAAAGGGCTCACAGCCATTCCCAGCAATATCCCCTTGGAAACTACGCAACTGCATCTAAACCTCAACTCCCTGAGCAAGCTCTCACCCAAGGCGTTTCACAGCCTGAGCAGTTTAACATTCCTCGATTTGAGTTATAATCAACTGCAAGCTCTCCCTGCTGGGGTGTTTGACCAATTGAAGAATCTTGAAACACTATACCTGCTTCAAAACCAGCTCAAGTCTCTCCCACAAGGGATATTTGATAAACTCACCAAGATCACCTACTTGGACCTGGAAGGCAACAAGCTGCAGAGCCTATCACATGGAGTGTTTGACCACCTCACCAAACTCACAATTTTATGGCTGAATACCAACCAGCTGAAGAGTGTTCCTGAAGGAGCTTTTAACTTTCTGGAGAAACTGACACGGCTACAGCTGCAAAGCAACCCCTGGGACTGCACGTGCAACGACATTCTCTACATGGCCAAATGGCTAAAGAAAAAGCAAGACGGGGGTCTTGGGGGTGTCGACACGGCAGGCTGTGAGGAAGGAGGCAAAGCCGTCTTAGAAATCACGGAAGAGGAAGCGGCAGAAGATTGCGTCTATCCAAATACCACAACAGCGATACCGACAACAATTATTACGACACTGGCATCAAGTAATGACGATGATATACCCGAGCTGCCAGTGCCGCAAGAAAACTTTCAGAAATTCTTGGGATACCAAGAGCCAGACCATCTGCCCACCCAACCACAGTGCTTGATGTCCATTTCTGGATACCTCGGCCTCATGATGTTTTTCGTGCTCATTTCTGCTGCCATTTTGTACGTCATCCACTTTCTCAAGAAGGCCTGAACCAGTGTCTCACTTGCC +>XM_028621987.1 Apiotrichum porosum hypothetical protein (EHS24_006566), partial mRNA +ATGGCGACCGCTGCCCCGCTTGTCAAGCATGCAGCCTCGCTGCTTCGCCCTGGCCACTCAAACTGTGTGGCCTTTCCTGACATTCACCAACCGGGACTGTCTTTCAGCCTTGTGCCGAGGGCCGCGACTCAGTGGCACGACGAGGACTGGTTCATGGGCGGGCTGAACTACCACCTTGCTGTCACTTTTGATGATGGGGTTTGCTGGCTCGCTCGAATTCGCCAGAAGAATGGCAACCCGCGCAAGCTCCAGTCCCTCGTCTCAGAGTTTGTCACCCTCAAAGCCTTGAACCGCGCCTGCCCCGAGTTTGTTCCCAATGTCTGGATGCCACAGGCGTCACCCTTGGGTCCCCCATTCTTCTTCATGGAGCACTTCAAGGGGTCCAACAGTCGCCACCTGTTCCCCCGATCCGGTGCTCGCCCTGTCGAGTCCCAGACCATCGTTTCCGACATGGCCACCTTTCTCATCCAGCTGAGCTCGCTGGAAATCCGCGGCGACATTGGATCTCTTACTGCCAGCAGCGCGGTCGTCGACGCCGCAACCGACCTCGAGCCAGAGCCAGTTGTTGGGCCCTTTGAACATTGGGACTATTGCATTTCGAACGGACTGACGACGTTGGGGCCGTTCCGCACCAGCCGTGATGCGTGGGTGGCAAAGATCGACGCCGTCGTGCTTGCACTCGAAAGGGGGCTGTTTGCGATCAATGGCGGGCACCTACTGCATGTGTATCTCGTCCATCTGGAAATGCGTGCTCTGGTCAACGCGTGCGAGGAGATGGCTGTGCCGTGCGGTCCCGGCGACGGCGAGCAGCCGACGTTCATCACACATGCCGATTCCAAAAACCACCTGCTTGTCACAGACGACGGCCATCTGCGCGCAGTCATTGATTGGGAAGGTGCGTACACCGCTCCATTTGCCGAGGCGTTCGCTGCTCCGATGGGGTTTTACGATCAGCGCGGCTTCGTTCGGGGCAGTAACGAGCTCTCCACCGAAGAAGTCCTCCTCGCCGACATATTCCAGTCTCGCGGACGCAAAGACATGGCGCAGGCGGTACGCGGTGGGCGCAAGTACCACCGACTTGCGTTTCACCTCGGAACCCTTCAGCCGACTCTGGAGATGGTCAACGCACTCTATGACGCCTTTCTGGGTGAAGAATCGGCAAGTTGTATCAGGTTTGACTCGCTCTTCGAGTGGGAGGCCGCGGCGTTGCACAAGTTCTCACATGTCCCGGGCCTTGAACAGTTGGCAATTCCGCCGGGAGAGGGGGATGTCGCCTACTTGCGCTTCGCAGAGGTCGAGCCAGACGCAAATTGGTGCAAGGTCGTCACTGTGAAGGACGCCTCGTAG +>XM_035908051.1 PREDICTED: Neolamprologus brichardi nuclear GTPase SLIP-GC-like (LOC102787354), mRNA +TCTGTGCTAGAGTCCGCTCGTTCACCTCGACAGGATCAGCAATTAAAATTTATCTTTCAGTTTCTATTCTTGGTCATGGATGATTTTGTGCGAAACAAACTGACTGAATGGAAACTAAGTGACTGGATTGATGCATTTGAAGCTCAAGAAATTGATGAGGAAAGTCTGTATCATCTCAATGATCAGGAAATTGATCAATTGATCACAAAAGCTGGACCTAGAGTAAAATTCAAGGAAAAACTAAAGATGTTAAAGGAAGAGCAAAATACAACCCAACCACAAAAAGAAGCAGTCAATACTTCTGGTCAAGATTTTCCATCCATAAGTGAAAGAGGAAAGAGAAAGTCAGATCATCTTCAGAGTGAGACCAGAAAATGGCAACCACCTCTTAAAAAACAATACAACTGTGCAGCAAGATCACAGTCAGAAACAGAAATACTGTCTGATGTCAAAAACATAATGAGATGTGTCAGTGAAGGACTACATGGCCGTGACAAGCTCAGTGCTTTCCTAAAAGATAAAATCAAGAATTTAGAGACAGAAAGGAGACACCTGGTTGGTGTCTTTGGTAAAACTGGGGCTGGAAAGAGCTCTTTAATCAATGCCATCATAAATAAGGAGGGCCTGTTGCCTTCTGGAAGTGTCAGTGCATGTACCTCAGTGATGATAAAGGTGGAGGCTACCAATGGATCAAAGTATGAGGCACACATCGAGTTCATTACAAAAGAGGATTGGGAAGATGAGGTGCAGTCACTAAAACAGGCTCTTGAAGACAATGACGACAACGATGATGATGATGGTGGTAATGATGATTTACTTGATCCTGACGGAAAGTTATCAGCGCTGTATGGAGAAGAGTGGAAAGAAAGATCCACTCACAGCCTCATGGACAACAAATATTTCATAGATATTCCAGAGTTTCGAACATCCAAGATAAAAATTTTGAAAAGTGACTCAGTGGGAGAGGTAGAGGTGAAGTGCAGTGAAAAGAGCATCCTTGGTCGTTCTGTTCGGCCAGTATGCAAACTGCAGTGGGTCCAAAAGAAAATCAAGAATGCAGTGAAGAATGAATTCAAAAAGCGGAAAACGATTACGAATCACTTCAGTGAGCATTGTTTCAAAGTCTTCACAGTGAGCTCCAAAGAGTTCCTCAAAGGGGAGAATGTAAATTCAGATGTCAATGAAATACTGAAACTCAAGGAAATTTTGAAAAATCTGAATGATGCTCATTCAGAGACATTAAACTATGTGTCTGGAGCTCACGGGATTCTGTCTTTGATTCAAGGGGCCAGAAGTGGAGAAGTGGTTGAACAAAAAAATGATGTGTTTGCAATCCTTGAGGGAAACTTGAGCATCCAACTTAATCAAGTCAAAAAAGCAATTGAAGACATTATAAAAGCTTTTGAACAATGCCTAAGTGAGGGAGTTGAAAAATCCAAAAAAGCATGTGAAAAAAAACTGAAGTCCTTCTTATACCCTAGTAAAAAAACAAACAGAGCTTTTCACATGACACTAAAGTCTGCAGTTAGGAATGATGGCATCCAGAAACCAAAAAAAGGAAAACCTAAAAACCTCAACATGATATTAGCGTCTTATTTGACTGAAAGCATTGATGAAAAATTCAGAGATACCTTCCCAAACAACATAAAATGTGGACATTTCAATGGAGCCATCGATGCGTTTTCACTCAGCACTGATTCACTGATTGAAAAGTACAAAGATGTCAAACTGCAACTGACATTTCTCCAGACAGAGGGGGAAAAAATGAAGACAAAGCTCAACAAAACCATCCTCACACAAAAGAAATTAATCTACAACAGTTTGACAGAGACAATCAAGGACAACATGAAAGAATGCTATAAAGAAGCAGCAGCATTTACAGGAAAAGGCACCCTGAAGAACATGAGGGACACTATTGAGAGACATGTGCACTCAAAGATGGACATGTTTGAGGAAGCAAAAAATGTCATGTTGGAGCTCTTGAACGATTTGAAGGAAACTGTCCTGAGGACACTGGAGAAAACCATGAAGGATTCCATTGAACACTCACTTAAGTCGGAGGCCTGCTCACTGCCAGGTAAACAGAATATATAA +>XR_005829514.1 PREDICTED: Falco naumanni ATP binding cassette subfamily B member 11 (ABCB11), transcript variant X13, misc_RNA +ATGAAAACATGATGGGAGATGGTTGGGTACTTCACTGCCTAATTGAATAGATCCTTACAATTTGTTCTATAATACATAATTTTTCGCAGCGCAGCCACGGGACTTCCGATTTAAGTAACTAAACATCATGTCTGACCCTGTTGTTCTGCGTAGCATCAAGAGATTGGGAGAGGATAACAATGCTTTTGACTTGGATGGCAAATGTAACAGCTTCAAGAAATCAGAGAATTTCTATACGTATGAAGAACCTTTTGTAGAGAAGAAAACTGAAAAGTCACCAGAAAAGAAAGAAAATACTATTCGTATTGGCTTCTTTCAGCTGTTTCGATTTTCTTCATCTATGGAAATTTTAATGATGGCTGTTGGCAGTTTCTGTGCTATTGTTCATGGAGCAGCCCAGCCAGCTGTGCTACTTGTGTTTGGTGCAATGGCAGACACATTCATTGAATATGACATTGAAATGCAAGAGCTTAAAGACCCACTCAAGATATGTGTAAATAACACCATAGTGTGGATTAATGGTACTATTCATCAGAATGAAAAGAATGCCACAATAAGATGTGGGCTGCTGGACATTGAGCAAGAAATGACCAAGTTTGCAGGTTACTATGCAGGAATTGGTTGTGCTGTACTGGTGTTAGGATACATCCAAATCTGCTTTTGGGTTATGGCTGCAGCTCGTCAGATACAGAAAATGAGGAAAGCTTATTTCAGGAAAGTAATGCGAATGGATATAGGCTGGTTTGACTGTACATCTGTAGGAGAACTGAACACCCGCATTTCTGATGATGTTAACAAAATTAATGAGGCTATTGCTGACCAAGTAGCAATCTTTATCCAGCGCTTAACCACTTTTGTGTGTGGATTCTTACTGGGATTTGTCAGTGGCTGGAAATTGACCTTGGTTATCATTGCAGTCAGCCCTCTGCTTGGGGTTGGAGCAGCTGTCTATGGCTTGGCTGTGGCAAAACTAACAGGCCGAGAACTAAAGGCTTATGCAAAAGCTGGAGCTGTGGCTGATGAAGTGCTCTCATCCATCAGAACAGTGGCTGCTTTTGGTGGGGAGAAGAAAGAAGCTGAAAGATACGATAAGAATCTGGTGTTTGCTCAGCACTGGGGAATTCGAAAAGGAATAATAATGGGATTGTTCACAGGTTATATGTGGCTTATAATTTTCCTGTGTTATGCATTAGCCTTTTGGTATGGTTCTAAACTTGTCCTTGAAGAAGAAGAGTATTCACCTGGAACTCTTCTGCAGGTTTTCTTTGGTGTTTTAGTAGGAGCTTTAAATCTTGGCCAGGCATCTCCCTGTCTGGAAGCCTTTGCCACTGGCCGTGGGGCTGCAGCAAACATATTTGAGACAATAGATAAAAAACCCGCCATTGATTGCATGTCAGAAGATGGCTACAAACTGGATAAAGTACGAGGTGAAATTCAATTTCATAATGTAACATTTCATTACCCCTCCAGACCAGACGTAAAGATTTTGGATAACCTTAATATGGTTATTAAAGCAGGGGAAACAACAGCTTTTGTTGGAGCTAGCGGAGCTGGAAAAAGTACAACAATGCAGCTCATCCAGCGTTTCTATGACCCCACTGATGGCATGATTACCCTGGATGGCCATGACATTCGTTCCCTTAATATCCAGTGGCTACGCTCACAGATTGGTATTGTTGAACAAGAGCCAGTCCTGTTTGCCACCACGATTGCAGAGAACATTCGCTATGGTCGGGATGAGGCTACCATGGAAGACATAATCAAAGCAGCCAAACAGGCCAATGCTTACAATTTCATCATGGACTTGCCACAGCAATTTGACACTCACGTTGGAGAGGGTGGAAGCCAGATGAGTGGAGGTCAAAAACAGAGGATAGCTATTGCTCGAGCTCTTGTACGAAACCCGAAAATCCTGCTGCTGGATATGGCTACATCAGCACTTGATAATGAAAGTGAAGCTACTGTCCAGGAAGCACTTCATAAGGCTCGCCTTGACCGCACCGTAATCTCAATAGCTCACCGCCTGTCAGCCATCAAAGCTGCTGATGTCATCATTGGGTTTGAGCATGGAAGGGCTGTGGAGAGAGGAACTCATGAGGAACTCTTGCAGAGGAAAGGGGTTTATTTCATGTTGGTGACCTTGCAAAGCAAAGGAGACAAAGCACTTAACAGGGAAGACACAGAAACAGCAGAAAATAACATCGTTGAGCCAAATCTTGAGAAAGTCCAGTCATTCGTCAGAGGAAGCTATCGGGCCAGTTTGCGAGCTTCACTTCGACAGCGCTCCAGATCTCAGCTCTCTAACATGGTCCCTGACCCTCCATTATCCATTGCAAGAGATCATGCAGAGTCTATGTATGTTGTGCCTTCTTATGGAGAAGATGATGGACAAGCAAAAAAGGAATCTGTTGCAGTGGAGGAAGATGTCAAACCTGTACCATTTACCAGAATTTTGAAATACAATGCCTCGGAATGGCCGTACATGGTGCTGGGATCTCTGGCGGCAGCTGTGAATGGAGCAGTCAGTCCACTCTATGCTTTGTTATTCAGTCAGATTCTTGGGGAGCTGTTGGGTGTGGGTTTCTGTATTCGCATACAGTGTATTTTAGATGAGACAAGAGGTACCTCACGTGCAGACCTTCTCCATTCTTGACGAGGAAGAACGAAGAACCCAGATCAATGGTGTCTGCCTGCTCTTTGTCTTTGTCGGAATTCTTTCATTTTTCACACAGTTCCTACAGGGATACACCTTTGCCAAGTCTGGAGAGCTGCTTACAAGACGGTTAAGGAAAATTGGTTTCCAGGCTATGCTAGGGCAAGACATTGGTTGGTT +>XM_001628387.3 PREDICTED: Nematostella vectensis peptidyl-prolyl cis-trans isomerase NIMA-interacting 4 (LOC5507809), mRNA +GGGGAGTGGAGATTGCCAGCCGTTGCCTGTTGTGTGTGGAACAAGTAAAAGGGTCGTGTGAGGGAAAAGAAACGATGCCCAAAGGCAAGAAATCTGGCGGAGCTGATGGCGGAGGAGGAGGGAAGCAGGATAACAAAGGGAAAGGTGCCAAGGGAGGCAAAGATGATGATGGTGCTAGTAAGGCAAAAAAAGGAGGAACTTCAGTCAAGGTGCGCCATATCCTTTGTGAGAAGCACTCAAAGGCAATGGAAGCCATGGAAAAACTGAAAGCAGGGCAGAAATTCAATGAAGTGGCCACAGCTTATAGTGAAGATAAAGCTCGACAAGGGGGTGACCTCGGTTGGATGACACGCGGTTCCATGGTAGGTCCATTTCAAGAGGCTGCATTTGAGCTACAGACCAGCACTGTTGACAGGCCTGTCTACACAGATCCCCCAGTCAAAACTAAGTTTGGCTATCATATTATTATGGTAGAGGGGAAAAAGTGACCCATGTTGATGGTAATCCCTTTTTTCAAGAAAAGCCAGTTTAACAGAATGCATTGCATTTTTTTATGAAAGTGGTATAGGATGATACTGTTTCTGCGTGCAAGCAATTAATAGCTGTGTCATTTATGCAAATGCAATACACTATGGGGTAGGTCAATGCCTTATGGGGAAGGTTGAGATAGACCAAGTTACCTTACACATTTTCCATTCATTTTGCATTTAGTCTGTGATTGTTTGGAATGAGGACTGTGGGGTTTTTCTTGAACAAAACACAGCTCTTAAAAAGCACTATAATACGCACTGGGAATCAACATAATTCAACACACAGTTTTGGCAACTAACATAAGATTTTAAATCTCATGTTTTCAAATTGATTTTTGATTATTGTTGACAAATGATTTCCATCATCGCATATCTTCCCTATTCTTTAAACACTTTTAGTTGTGCTGAAATATTTTGTGTATATTTAGAACTACGAAACAAAAGAAGGAAATGTAGCACAAACAGCAATGTGTATTTGAATTGCATTATGATTTAATAATAATTTATTGTTAGATAATAATTAATAATAATTTTTTTGTGTAGAAATTCCTTCGTTATAACATTTCTGGAAGTCTGTGCCCTCTGGTGCTTGCACTTCCTACAAAAAACAGGAGGGCAACTGTGATTATTAACTTTCTCTAAAATAGTGTCTGAGTATTTACAGACTCAAAAAAGGGTCCAAGTTCACCATAGTTCTCGCAAAAAACGGGGCATTTTCCCTCTCCCCCCCGGGTTCCTCCCCCTCCGCTTCCCCTACTGCTATCTCAGCTATATCTACAGTTTGCCAACGATTCGCCGCAGGATTTTCCAGCACCTGCGGGTTGTTCAGATGATGTTTGCACGGGCTTGTTAGCCGCAAATGTCACCAGTTCACTTCCGGAGGTACGACGGAAACCTCAACCGTTAAGACAAAAGAATCTACTAGAATCCGATATATTTGACAGGCCATCCGCTCTAAATTACCAATCACACCCTCAAAGAAACTTCCAATAGACACACTGCTTCCAATATTTTGAAATAATTTTCGAGTGTTCCGTTAAAAATCATCGGATATTGTTAGGTAATCGACCGGAAGTAAACTGGTGACAATGCGGCTTTAATACGCACCCTCGCGCGCCAGGGTCCAACTCTCATAACCCGAGGCCAAGGAGGGTCTTATGGTATCAGAGGGGTAGAGCATGGTGCGCAAAATGGTGAATAAGTTCGCCAATAGTTCCTTTATCTTGTTGTCAACCGAAAGATGCCAGCTAAAGTCTGATGTTGGCGCTTTGTGCAAGGGGCTTGGTATAGCAATGATTGTCGTAATAATAGATTAACAAAAGACTTAAATAAAAAAAGAAGAACATCCCAA +>XM_031545768.1 PREDICTED: Punica granatum exocyst complex component EXO84C (LOC116211402), mRNA +GCCCTGTCTCCGCCCTTCTTCGCCGGCTCCTGCTCTTCTCGGCCTCCTGGCCGTCGCCGCCTCCTGGCTGAGACCGGCTCCTGCCCCTCTCCTACTCCTCTGCCCATTTGGGTACGGGTCCTCTTTCTTCTTCCCTCTGTGGTTTCGTGATAATTCCCGCCGAGCAAGAAAATTGAGTGAAAAAAAGGCCATCTACTGGGTTTTGAGCTATTAGATGTTCTGCGAGTTGAGCTTTCGCAATCTGGGCTGAGCTGAAATCCATAAATGGGTCCTCTGATCTGAGCAATCAGTAATTGTTGAGTTGAGATTCAGTAGAAACTGACTATACTGAGATCAACTCAGGTTCCCTTCCTCAATGTAGAAGTCAGTCTGTGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGGAGATTTGAATTGGGAAGTAAAGAAGGGGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAGATGGAGAGCAGTGAAGAAGACGAGGAGTTCCCTTCAATTGAAACCATCACTCCCCAGCCGAAAGTCAATTCCCTGTTCCAATCTCACACCGAAAAGGGGATTAGGCAGCTTTGTTGTGAGCTATTGGATCTGAAAGATGCAGTGGAAAATTTATGTGGCAACACACAAACTAAGTACTTAGCTTTTTTAAGAATATCAGAAGAAGTGGCGGAGACGAAGCACGAGCTAAGCGAGCTGCAGAAACATATTTCCTCCCAAGGGATACTCGTGCAGGATCTGATGATTGGTGTGTGCTCCCAATTGGACGAATGGAACAAATGCAATCGCAGGGAGCATGAAGGTGAGAAAAAACAGGAGAGCTCTGAAGATAGAGATTCTGTACCTAATGAAACTGAAGACAGCAAGATGATGGTATTAGAGACCATCGATATTCTTTTAGCGGAGCACAGAGTTGAGGAAGCCGTGGAGGCTATAATTGCTGAAGAGAAAAACTCATCAGAACTAAAAGGTTCTTCTGAAGCTTTATCTGCTGAAGCAAATTCATACAGATCGATGTTTCTGGAGAGGAAAGCCATGGTTGAGGAGCAGTTGGTAGAGATTGCAAAGCAACCTCTGATTAGCATGGTGGAACTGAAGAAGGCATTATTGGGTTTGATTAAGATTGGGAAAGGCTCTCCTGCTCATCAATACTTGCTTAAGTGGTATGGGTCCCGCCTCCAGAAGAGCATTGAGGTTTTCCTTCCTTCGTGCTCTCTTTGGCCGAGGACATTTGCCGCCACACTAGCTAAACTCATGTTTTCTGCTATCTTAACGACAACCAGAGAATCTGGTTTGATTTTCGGGGATAATCCGGTTTATACAAACAGAGTTGTTCAGTGGGCAGAGTGGGAGATTGAGTATTTTGTTAGATTGGTTAAGGAAAATGCTCCATCTTCTGAGACTATAAGTGCTTTACATGCAGCAGGCATCTGTGTCCAGGCGAGTCTTAGTTACTGTTCAATGTTGGAATCACAAGGGCTAAAATTGTCCAAGTTGCTTCTTGTGCTCTTAAGGCCTTATATTGAGGAAGTTTTGGAATTGAACTTTAGAAGGGCTCGAAGAACAGTTCTTGATTTGGAAGAAGGCGATGATAACTTGTCTGTGGCACCCCGATTTGTCTCCCCATTGTCTGCTTTTGCTACATCTGACAATGCTCTTATTGACAGTGGACTGAAATTCATGTACATTATCGATGAGATATTGGAACAGCTAACTCCTCTTGCCATTTTTCATTTTGGAGGGAATGTATTGAGTAGAATCTCACAGCTGTTTGATAAGTATGTGGATGCTCTTATCAAGGCCCTTCCGGGTCCCTCTGACGATGACAATCTCACAGAGCTTAAAGAAGTTTTACCCTTCAGAGCTGAAACAGACTCTGAGCAACTTGCATTGTTGGGAATGGCTTATACCATTGCCGATGAACTCTTGCCTGATGCCATTTGGAGCCTGTGGAATACGCACAATGAAACCCAAGAACCAAGAAGTGAACCCAGTGAGAGTACTCCTACTCAAGCTAAGCCGGCAGAGCTAAAAGAGTGGAAGCGCCATCTTCATCACTCATTTGATAAGCTCCGAGATCACTTTTGCCGGCAGTATGTCTTGAGTTTCATCTACTCGAGAGAAGGCAAGACACGACTGAATGCACAGATTTATTTAAGCGGAAACAGGGAGGATTGGGATCCTGATCCCTTGCCATCGCTTCCATTCCAGGCATTGTTTGCAAAGCTACAGCAATTCATGACTGTAGCTGGAGATGTCTTACTAGGCAAAGAAAAAATACAGAAAAATCTGCTTGCAAGGCTGACAGAAACAGTCGTGATGTGGTTGTCTGATGAACAAGAGTTTTGGGGTGTCTTCGAGGATGAATCTTCGGCTATTCAAGCGATGGGTTTGCAGCAGTTGATTCTTGACATGCACTTCACTGTTGAAATAGCCCGGTATGCAGGCTATCCATCCCGGCATGTGCACCAGATTGCATCTGCTATTATTGCTCGTGCTATTAGGACCTTCTCTGCCCGAGGGATAGACCCTCAGAGTTCGCTTCCTGCGGACGAGTGGTTTGTTGAAACTGCAAAATCGGCGATACACATCCTTCTGGGGCCTGGGTCAGATACATCTGAGATAGATGAAGGGCATATCATGCACGATGAGATTCTATCTGATTCAGAAGACTCTGCTTCGTCCCTCTCAACTGAAGAATCCGTCGAATCTTTTGCTTCTGCTAGCATGGGAGAACTTGAGAGTCCAATGTTCACCGATCCCGAGAACTGAGGTACTAATTCGAGTCTTCTGTTATGGTGAGGCCCTTTGGCTGCGGATTGCATTGGGTTCTCTTTTCGGAACGTCGGATGGGCATTTTGTTGGTAGGGAATCTTATTAGCTTCGGCAGAACAGATGATGGATAGCTTAGGTTTTAATGTGCGATGATGGATATGGAAATCAAGAAAGTGTATTTGATTATGAAAACTAGTGTAATTTATGATGTTAAATAAATTAGATAATACTTTCTAACAGGCAGTACACAATTTTTTA +>XM_006508279.3 PREDICTED: Mus musculus anaphase promoting complex C subunit 15 (Anapc15), transcript variant X2, mRNA +AGTATATAAAATCTGTCAGTGCTTTCGGGATCGTGGTGGACGCGCCTTTTTTTTTTTCCCCCATCACACGGACCTGGGGGGGCTTTGGTCTAGGGAATGACAGCGTCTAGTTCTGCTGCTGGGCCAGGATCCCTGCCTTGCGTAGGATTTAAGCCCCCATCGAGTGTGTGGCCAAAGTCAAGCTCTACATGTCACTGGGTTTGTGAGCCAGGGCGTTTTAGTTCAGCTTCTTGGTGACCTTCCTGGTCAGCAGCTTCAGCCCACAGAGTTGATTTTGTTCTCTTCCATATGAGGAAACTGAGGCCCAGAGAGGTTAAGTGTATTGGCCAAAATCAAAGAGCTAGTAAGTGATGGAGCCAGGACTCAAACTCAGCTTAGGAGCCATGTCCACCTTGTTCCCGTCACTCTTCCCTCGTGTGACTGAGACACTGTGGTTTAATCTGGACCGACCCTGTGTGGAGGAGACAGAGCTGCAGCAGCAGGAGCAGCAGCATCAGGCCTGGCTCCAAAGCATCGCAGAGAAAGACAACAACCTGGTACCAATTGGCAAGCCGGCCTCAGAGCACTACGATGATGAGGAAGAAGAGGATGATGAAGATGATGAGGACAGTGAAGAGGATTCCGAAGATGATGAGGACATGCAAGACATGGATGAGATGAATGACTATAATGAGTCACCTGATGATGGAGAGGTCAATGAGGAAGTAAGTGCAAAAGACTCGGGATTGTGGGTAGGAGCAGCATGCCCTCCAGGATGCCAGCTGCCTGAGTGGAGCTGCTTCCTTGAATGGGAGTCCCTCATGAAAGAGGCCTGGTCTGAGCAATTCCTGGGATAGCTGAAGAGATCAGCGTTGGGGCGATAGGGGCTGACCATTTGCTCATCGAAGCCTGCCAGCCGGATGACTTTTTCAGCCACTGCTGCTGTACGTGAGTCCCGCTCCACAGTGAGAAGGCGACTTCCAGGGGGCAAGGCTCGCGCAATAAGCAGTGTAGAGTATCCACAGTATGTGCCCAGCTCCAGCACACAAGCAGGGGCCTTCTCTTCCACCAGCCGCATCAGAATCTGACCTATGGGTCAAGATGGCTATTTTAGAAGACATTGAAAACAGGTGTGCCCAGAATCAAACCTGCTGTGCTTTTCTGAATGTGGTGTTTATGTGTGAGGCTGACAGGCTGCTTTCCCCTTTCCCACACCTGTCTCCATCCACCTGGCCAACTTGAAGAGAAGCCTTCCAGTCTCAGTTTAGATGTTTCTTCCTCCAGGAGGACCCAGGCGAAATATCCACCCTACCTTCCAGGTTCCCGAGACATTTTCAGTTTCATGCTCAAATGCACTTCCCCATTGCTGATTGTCTTTGATTTTGGAATTGAATAAATCTCTTAATACTTAGAAGTACTTGTGCTATCTCAGCAGACAGCTATCCTGAGTTGGTTGTGGAAGCCTCTTTGGTAGGGAAGAAAGTCTAGAACAGATAATTACAAACCTCTGAGTTATGGCTATTCCCCTATGTTATGATCTCTTTGAGGCCAGCATTTGTGGCTGGTTACCCTCTGTGATCTCTGCCTCCCTCAGCACCTGGCACAAAAGAGTGGCAATAAATGTCTGCTGGATAACTGAA +>XR_006907879.1 PREDICTED: Neodiprion virginiana uncharacterized LOC124303282 (LOC124303282), transcript variant X1, ncRNA +CGATGATTGATAGGAAAATAACCGGAGTGGCCAACCAGCGCAGTAATATTATGTAGATCAGACTTATGGCGGCACTGATACCAAGGATCGATGCAATGGTCCATCTATAAATGACAAAGTCAGCTACAGTCATTGTATAATTGACAAACAGTTCCGGAATTCCGTTTGGAATACAACGACCAGTTACAGAAGTACTGGTCAGATACCACTGAGCACACACGTCGTTTGAAACGTAGGTAGCAAGCTGGTCTGCCGTCGCTGTATCCACTTCAATTCCAGTCTTGCATATCATTGCGGTTCTTAATGCGGTCAAGTTATTTGCCAAAATTGACGAATTCAACTGCCACACAAAATTATCTGTCGGACACTCCGGCACGCATACCTGCGGCGTATCGCATCCTTGGGTCACAGACGTGACCGCTACACATTTTGTCAGATCAAAAAATACCAAATATGGTCTGTCCTCGACATCTTTATGCCTACCGCATATCCTTCCTTCACTATCAGTTGGGTATACTAACGTATCTATATCTCCATAAGTATAAGCTGAAATTATAAAGAATTTTATCAGTGTGTTTCAAAGCTGTCTTTAAACATATATGATCAGGGTGATGTAAAAAAGATGTACTGGTTCCTTGTAGTATACTCGTATTCAAAATTGCGTACCGTAATATCCAATTACCGCCCATCCTACCACAAATGCTGAGAAGATAATCAAGCAAAAGCAATCTGTACATGATCTGCCCTTTAGAGGTCCTCGATATTTTGGATCGAACTGCATCCTATCACCTAAAATTGGTAATTTACATACTTAAATCAATAATAGGCCTTTTATAGTTTAAACATTTATCCAGTTCACAAATTCATTTCAATAGTTTTGGCACTAAGCCATTTTGACAATGTGTTGTGACATTCAAATAATCTTATCAACCACTTATCTCAATAACGAAGTATACATATTATATTGGTAGTGATCTATATTGATCTCTTACCTGGAATGGGAAAGTATCGATAGAGACGGTACTGCTTACATTTTACAATAGAAATTAAAGAAGTTTTTGAGTTACAAGCATAGTGCTCAAAACTATCGCAGAAGTTGCTTGTTGAAAAATTTGAAAACAGTTGTGGATCGTTCGGTTTGGCATAATCCTTTTTTGGTAACTCACACAAAACTCTCTACAGGTACAAGACATTTTTGACACGAGAATTCAAAGCAGTCTGTGACGTGACTCACGTTTCTATACAATGAGACAATAAGCATACGTACCATGTTTGTCGACCATTGTTTGCACTTTGGTTCTTTAAATAGACGTTATCACTCTGACTTTAAGTACTTATATAAAGCCAGTCAACGTTCTAAGAATTTTTTTTACTTGTCCAGTGTTACTTATTAACTTGTTAGGTCTGCATATTATTTTGCCCACTCCGGTTTCATGCTCTTGGTTCAAATTATTAACGAATACTTGGATAGCATATGCTTTCAGTAACACTTCTACTGATAACACATTAATCTGATAAGATGAGATTTGGCAGCGAAGTATGAATCACCGGAAGTAAACAATCTTATCAATTTTTAATTGAGTCTGATAAATTGCAAATTCTTTACAGGATATGCTAACCATATATTGATTGAAAATATGCACAGCAGTAACTTGAATCATACGAAATCTCAGAATTATGTGAGTCGTCGAAATTCTCATTATTTGCACGTTATCGGTTCTAGCTATCCCGAGTTTATAGTTTCCAACTCTGGTCAAGAAACATTTATTTACTGAAAAAGTAGCGCTCGGTGATTTGGAATAGAGTATAAAATAACAAAATAATGGAATCGTTGTTAAGACTATTGAACAGTTCGTTGCGAAATCCAAACATATCAACATCTACACTATCTAGAAGAGTTAATTCATATTTCATGAAACAGGGAATGGGTCGTTTTTTGTTAGACTTATGTACACCTTCAGTGCCGACAGATTTGTTAATTGATTAAAGAAAGATACGCAAACAAAAACAATATGATTGATAGCACTATATGACTTGATAAGAATCAATTTATGTGTACAAGATATGAAGCATAAAAAAAATTCTCCCAAGAGAACATTTCGTGTAATGGCTGTGCCGGAATATCGGTAAGGTCGTCTTAAACTACCGGGTTATTGAATTGATGCAATGACAATATTGCTCTTGCCTGGTATTCATCCCAGATCAAAAACCATTGTGTTTCTAGGATAAAATAAGAATTTACTTGATATCATAACATAGAAACTAAAATCACTAAATATCGAATGATTGGATTTGTAGGGTGGTTCATGGTGTGTTGGCATTCATAAAATAAGGTAAAAACCTGTCCAGAACTCCATGGCTTTTTCCTGGCAATAGCTTATTTGCTGTGCACCTAACTGCTCGATCTTCGTGCATCGTCTTGATTGTCTCCTAAGGGGAAGGAGAGTGAGTAAATTATTAATGAAGTTTCTTCTTTGCTTCGAACTGGTCTCTCATAGTAGGAAGATCAACCTCAGCAACTGCGGATGGCTCAAGGGTGATCAATTCAGGTTGAATTTTGTCCAGAAGTGCTTTCACTTCAGCCTCGCGGCGTTGGCTCTTTGTCTGGAATGGATTACTCTCAAGAGCATCAAAATTGGCTTCGGCACTCCCAGGAACAAGTAGAGATTGAAATCCTTTGGCTGTTGCGATGCCCAACACATCTT +>XM_023859745.2 PREDICTED: Cryptotermes secundus sodium/potassium/calcium exchanger 4 (LOC111868780), transcript variant X2, mRNA +TCATCCCTTCCAAAAGTGAAGACACTAAACGGGTTTGACATTGAAGTTGAATTACGAGTTGTCACACCAACAATTTTAATTGTTTGGTTTTGTAATTACTACTGGTTTATGTTGAACGGTTAGATAGACTGCCTGCGCTCTATTATTTAAATTACATGTTGTTTATATATATATATTGTAAGCAATACACGATTACTCCATAAAGTACTTAAAATATCAGCTGATGTGTAAGTTTTAGATAAGGGCTGACTGTATTTACTTCGATTTTCTGATAGCACGTGTGAGTAGTTCTCATGTAGCATCAGGCCGAATAGGATCCCTGAAGGCCTTTCCTCTTGCTAGGCTGCCTATACCAGTTGCCACGATAACCTGCTTGTGTATATAAATAATTATTTCTTCCAGTCAGAGTATGTAGTGGCAAAGTACGTTTAGAGAAGTTGAACGCAGCAAATATAACTATCATTAAAGTTAAAGGAACGAGCTCTAAAGCAAGAAATCGTAACTACTACGTGAAACAGTTTTGTTACTTCTTCGTAAGTGTGATACTAATTTATTCATTTAGGATACGTCACTTTTTAAGTCTGAGTTTTTTTTTTTGTGAATGTTTTAATTTTCTAAAATAGTGACAGTCAGTTCAGTTCCATAAACAGTTTGACAGAATTGTAAGTTCAGAAACAGCATACAGTGTCCTGATGCCAACAAGAATGACAGAACTGAGGTTGATTATAATAGTTGTGTCCATAATTTTGACTGTACAATTTGTGTCAGTGAAATGTACGAATAATACAACCGCTGAAGATGACAGGTCCCATGTGCAAGATTGCATGAACAGTTCTGTCTCAGATTTCCCTGATGATTTGTTTGATTTCAAAGAGAGGAAAAATGGAGCAATCATCGTTCATTTCTTCTTAGCACTCTACTGTTTCACAATAATTGCAGTAGTTTGCAATGACTATTTTCTGCCATCTGTGGACTGCATCTGTACAGAGCTGAACCTTACACAGGATGTGGCTGGAGCAACTTTCATGGCAGTTGCTACATCATCACCAGAACTTTTTGTCAATATCATTGGAACTTTCATTACGGAATCAGATCTTGGAGTGGGGACAGTGGTGGGTTCAGCAGTGTTTAATACACTGGGGGTTGCAGCATGTATTGGTCTTGCAGCTTCTAAGACTATTATTCTTGAATGGTGGCCACTGACACGTGACTGTAGCCTCTACATTGTTACCATTGGAGTTCTGACTGCAGTGACTCTTGATGAGAAAGTAGAGTGGTATGAAGCTCTCATACTATTCCTTATGTATATTACATACTTCCTCATAATGTGGGGAAATGGACACCTTATGAAGTTGGCTAAGAAAATTGAAGTCAAAATTATTGGCAGTAAAACTGTTCTAAATGATCCAGAGAGCTCTACATCAGAGGTTTATTCAAATGTTGGCCCTGGAATATACCGCTGGTATCTTCATGGTGATTTTACTGTCAGTAACAAGATGACTTCAGATGATACAGAAAAATCTCCCAAAAAAGGAAGTCGTCTGATGTGCCCACCAGTAGGGGGCCTACTGGACAAAGTGTGGAATATATTCTTATGGCCAATTTCACTCTTGGTCTTCATCAGTATACCAGACTGTCGAAAAAATCACTTTCGCCATTTATATCCTCTCACATTCATTATGTGCATCGTATGGATAGCTACAGCATCATACTTGAATGCTTGGATGATGACAATTATAGGTAATACATTGGGAGTTCCTGATTCTGTCATGGGCCTTACTATGCTTGCAGCAGGTGGAAGTTTACCTGAAGCATTTTCATCTATCATCATGGCACGGAAGGGTGTGGGAGCCATGGGGATCAGTTCCTCTGTTGGAGCCAATACTCTCAACATTCTTCTCTGTCTTGGTACGCCTTGGTTTATCAAATGCATTGTACAAATCATCCAAACTGGTAATACAAACAGTAGTGCAGTCAACATCATTTCAGAAGGTGTCACCTACAATTGTTTTGCTCTCCTCTCCAGTGTCCTGCTACTTTATGTTGTCATAGCTGTTTTCAAATTCCATCTTGGAAAGCTTCTTGGATTCACATGTCTCGTCACATATTTCATTTTCATCACAGTTTCTGTTCTCATTGAAATGAATGTATTCTTTTATGTTAATAGGCCTTTATGTGCTGAAATATGAAAATAATTACTTTCACA +>XM_002627964.2 Blastomyces gilchristii SLH14081 U3 small nucleolar ribonucleoprotein IMP4 (BDBG_00918), partial mRNA +ATGGTCCTTCAGTCAGCAGCCTTGCGTCCTTCAGCAACTAAACCACGGGTCAAAATGATTCGCCGTCAAGCTCGTGAACGGAGAGACTATCTCTACCGAAAAGCTCTCCTCCTCCGCGATGCTTCTATAGCAGAGAAGCGCGCGAAGCTGAAAGCTGCCCTTGCGTCAGGGAAACCGTTAGATCCCTCTGTGGCCAATGATAAAATATTGCGAGAAGATTTCAAATACGATGAATCCTTACCCACATCCTCGAAACCGGGAGACCCTAACTCCAAAGATTCTGACATGCTTGACCTCGATGACGAGTATGCTCTCACATCCGGCATCGTTGACCCTCGACCCCTCATTACAACGTCCCGTTCTCCCTCTGCGCGCCTTAGTACTTTCGCCAAAGAGATGCGTTTACTCATCCCAACTTCGATTCGGATAAATCGGGGAAATCTAGTCATTCCTGATCTTCTAGCAAGCGCCAAGGCGTCCGCACTCTCTGATATGATCCTGCTACACGAGCATCGCGGTACACCCACTGCGATAACCGTGTCTCACCTCCCCTATGGCCCAACGGCCAGTTTCTCGCTACATAATGTCATGCTACGAGCAGATATTCCGAACTCTGCACGAGGAACCGTCTCGGAAAGCTATCCTCACCTAATATTTGAAGGGTTTACCACCAAGCTGGGTGCTCGTGTCGTCCAAATCCTAAAACATATTTTCCCGCCGCGGGAAGCAAATGGGAAGCTCGGGAGTAGGGTTGTCACCTTTAAAAATATAGAAGACAGTATAGAAGTGCGACATCATGTATTCGTTAAGACTGGATACCAATCAGTTGAACTAGCTGAAGTCGGGCCGCGGATGACGATGAGACTATTCCAAATCCGAGGAGGAACGTTGGAGAAGGACTCCGGAGGCGAGGTTGAATGGGCACTCAGTCAATATACCAGGACGAGTAGGAAGAAGGACTATTTGTGA +>XM_031798635.1 PREDICTED: Oncorhynchus kisutch protein FAM180A-like (LOC109879465), transcript variant X1, mRNA +CAGACAGAGAGAGAGGGGGGAGGCAGAGATAGGGAAGGGGAGGAGAGAGAAACAGACAGACAGAGTGGTGGAGAGGAAAGGATGAAGCAGTTGCATGTGAAGTGGTTTAGCAGTGCTCCAGTCAGCGTTCTTACCTCATTCTCCTGAGGGTTGTTTGTACACAGCTCTCTCCAGCTGGGGCCTGGCCGGTGACTGATCCACATTCAGATCCCATTGAGACAGACAGACGACAGGGCAGTGTCAGTGTGTGTGCGCTGGGCCGAGAGTCAGCATGATGCATCGGTGGGGTCTACTCATCACTGTGTTCTACTGCCAGCTGTTCCTGGCTGCTGCTCAACACTGGAGGAAAGCCCTTTACCCATCAGCCTTTAGAGTGAAGCGTGGCACACACTCATTGGTCAACCCCACCTTCCAGAACTCTGTGGAAGATGTTAACCTGCTGTTTGAGATCCTGCTGGCAGGCCTGCAGATCGAGGGTGAGGACAAGCCCTTCGTGATCCCAGACAAGGAGCTGGCGTCTCTGAGGAGGGTCCAAAAGCTGGAGGTTATCTGTGAGGACGTCCTGCCCAAGAGACTATCCGAGATCAGACGTCTGACCTCCCACCTGTCCCAGCGCAGAGGTGCCCTAAGCAGGGAGGAATTTGAGCGCACAGTGCTCACTATGGTGTACACTGCCCAGACTCTGGCTCATACCACCTCCCAACACCAGAAGGCGCTGTGGGGAGACGCCCTACTGCAGCTGTTCAGGGCCATTCAAGAAGATCTGACGCCCCTACCCAGAACACCTCAGCACAACTAGTGTTATGGACACGTGGACACATTTTTTTAGATACTGTAATATACTGAACATTTTATACTGTAACACAAGTCACTTTTTGGCAGAAAATTTAAAGGATGTTTTCTATTGAGTTGTATTGTATAATCAAAATGACTGTTCTAATAATGTAATGTGTTTGGTTATGATCAAATGATGATATGATCTAATCATATTGAAAGGAGGATGTGGGAAAAGGAGGGATGTGAACAATATCCTGTTCATGTTCTATCTATCGGATTCCGCCTTGTTCCAAGACTTCAGATGTAAACAAACAAATATTTTATCAGTCACTCTGTCATGATTCATTACAGGTCTTTATCAAATCTTCTGTCATAATCTTCTCAGCTGTTTATCACAATTACATAATCTTTTCCCAGCACAGTCCTGTTGCGAAAAGGTGCTTCATGAAAAAAAGAGTCCCATGAGGTGCAGAAATATTGTATTGAACTGTAACATTGAAGACAGGGGTATCAATTTGCTCAGCTTATTTCTCTGCAATTGATATTATAATAAAATAATGATCAATATATATATATATATATATATAGGTTATGGCCATGTTATGAACCAAGCTAAACACTGAAGAAGATGGTTCAGCTGAAAAGTATGTGTATGCTATCCTGATGCAGTAAAAACATGATTTATATATAATGAAGTAAGCTTTATGCAGCATCTTTTAGACTGCAGACCCATTACAATTTTTTGAGGGCTTATCTGGATTCACAGGTTTTACGCACCAACAATACTTTTTGGAGAGCACTATGGTCCTCTTTTGATATGGCCTTGTTATGATTATGTGCAAATGATTGATATGACTTGAGGATGTTCATTCACATTTGCAAAAACGTGGGTAGGGTTTTGCCTCAGTCCCAAACTGTTTTCATTTTGGAATTAGAGGATTTTAGCTGCTCTAGCCTGCAGGGAGGATGTCAGACTAGATGTGAGACATGGGGCCTCAGGCTTTCTACACATCCCCCAGGTCTACACATTCCCCAGCTCTTCAATGGCTACAAAGAAAGACGAGTGCCTAATGTGTGTCCTGTTGGCGACATAGTCCACCGCTGCTAGAACAGACTTTCCATTGACATACTGTTGCCTACAATGTTTCTCCCTCATCTACAGATGACAGGTTCAGGGTGGCGGCCATTTTGCATGGAAAACTCCTCTCCTTCTCTGTGTCCAGTTGCTATTGTTTCCGGATGGTGATAGAACTGGTCTAGCTCTCCTGGTGGTCACACATCAAGGCACGGGTGAGTCCATGCCCCATGCTCCCGGTAGAGCCCACTAGAGCCCTCATTGATGAGGAACTGCAGATTGTGGTGAAGAACGTTTTTCCCCAAAAAAGAAGATCACCCTTCGTTCACCCTTCGTTCCTGGGAGGCGTTCGGCCATTATGCCAGTGATAAAACGGGGATGGTCAAAGAGTCCAATGGGCTTACTGTGGATCATGAGGCCTGTGTATGGCAGTGAAACATGACCCAGGTTGAGGAAGAAGGATATCCGTACTCCACTGCTGGTTCAGATCTCTGTGTACAGTGGCCACATCAGCCAGGACTACAGTGAGCAGGCTGCTGTAGCCTGTACAGTCGTAGAGCGCTGGTGTTTGGCCCCCGTAGTCCAAAAGATAGACATCTACAAGAACGGAATCCAGGGAACCCTTTTTATACCAGCAGGTCCTGGACCTTTCCCTGCTGAGCTGGAGCTATCTGGGGGAGGAGGGGGTCTGTTTGAGCATCGCTCCTACCTGTTAGCATCCCAAAGCTACGTCTCCTTAGTGCTGCAGTACCCCACGGACGTCTCTACAATGGTTGCCATAGGATGCAAGTACTTTGAGGAATTTGCACAGTTCATTGTGGAAACAGATGCAAGAGGCCTGAAGTGTGTGTGCTCTGGAGTTTGTTGTGAACCTGCCGCCCCTACTTCAGACAGCCTTCACTATGCTGAGACCATCCTCAGGTGGCCAGTGATAGAGGCTATGTTTGGCTTCTCACTGGGATTCCTTATCCCTGACCGTTTACACTGATGTCATTAACATGATTATTCCACACCTTCCTCTTTGAAATTGACTTGTTTGATTGATAACCAGTTAATTAGTGAACGCAAATACTGTAAACAATTATTTTACAGGTGCTCTGTAGGCACACCTCTCTCCTATTTCCCAACATATTTGTTGATAATCCCCCTCTCTTCCAGCCCAGATGTATGGTGAGTATACGTGGCAGCCATGTTTTCCCTTTCAGATTGTCGCTTGTGTCAATAGCTGACAGGTACAACACGTGAGTGTGTTTTAACCTATTCTAAAGCAATGGGAAATGACCTCATTTGGAATGCACTGAAATTATAGTTGTATTTTGCTCAAATTTCTAGAAATATGCACTTTGATGAGAACAATCATTTGATCTGGAGAGACACAATCCAGCCCATCACTGAGAGTGGCCCTAAAGTAGAGGTGATGGTATCTTTCAGACTGCATTGTATGCACACTATACTGTATGTATTTGTACAGTGAGGAACTGACATGTGTGTGAACCTATTTTTTGGCACCATAGGTCAGGAGGTTAAAGTGTCCATTACTGATGGTCATTGGAGAAGCTTACCAGAACTGTGCCACTACAGAATCTGTCCAGGATATGCGCAGTACAGTATGTTGGAGAGGGCAGGGAACCTGTGTCTTACCCTGGGGCTGGTCACCTAATCAAACCTTTCTACACTCCTCACTTCCGCTCCAGCACCTCCAGGGGCAAAGTGATCATGTTGTGGGGAGGGGAGTCCAAATGGAGGAGGATCCTGGAGTTCCTTCAGAAGAACCTGTACCAAAGACAGGACCCCTCTGTCCCCTCAGAGCTGTCAGATCCTCCTGGACTATCTCCATTATTATAGTCATCGCTTCTCCAGCTTCATTATCTGTCAGGGCCCTATTCTTGAAATTAAGTAGAGACAATATTGGTTGGATTTTTTTTTACTCACCAGGTGGCAGCATTGCACAGTCTCTTAAATGACTGGTCTGCTGCTTGTAGTTGTCATAGTAGTCAATGTCCTGACAATTACAAGGAGGAAGAAGAGGAGATGGTCGACATCGGCCTTTCATCAAAGTCCTTATAGGGAAGCCTTTCTGTTTAAAGACCATGGATCAGACCTTGGCTGCTCGGTCACGGTTGAGTTGCGGTCTTCTAGCCAACCTGGTTTGGATTCCAAACTCCTGTGAGGTGACATGAAGTGTTATTGATCTCAGAGTTGAAGAGAATGAACACCGCTGCCTTTAACTCTCATCAACTGCATACTTTTTTCTTTTTTACATGTCACCCATATATTCTCACTCCAGATTCCATTCTGGCAAAGGGGACCGATGGCCTAAACATCTCCATGTGTTGCACATATATTAAACCAATAGCCTGGTCTGGA +>XM_017410869.3 PREDICTED: Kryptolebias marmoratus Yip1 domain family, member 1 (yipf1), mRNA +GAAAATATACAGAAACAGGAACGTGGCTTGTTTACATGCTGTCACTTCCTGCTCAAAGCTAACGTAGCTAACTGCAATTATTATAGGTTTTCTCGAAGAATTTGAGCTTGAACTGTTCCCTTTATTTGGCATTAAATTGCCTGCAAGTTTCCTAAAGATCAGTAACATTGTCGTGAGAGTGAATGGCGTCAAACAATGATCCATTTCAGTTTCAAGAATTTGAAGAAGCTGAAAATCTTTTGGAGACCAACAGAGATGCAGTCACCGTAAGCATTGAGGAAGAAGATCAGAAGTCCAAGAGCCAAAGATCTGCTGGTGGCTTTTCTCCAGATTTCACTGATGAGGATCCACTCCGCACCGATGACAAGGCAGAGCTTCTTGGTGGCCAAAAGAAAAGTGCCCCTTTCTGGACGTTTGAATACTACCAAACATTCTTTGATGTTGAGACACACCATGTAAAAGAGAGGATCATCGGGTCGATGCTGCCATGGCCTGGAAAGAACTTCATTCAAGTTTACCTTCGTAAAAATCCTGATCTTTATGGACCATTTTGGATTTGCACCACTCTTGTGTTTGCCATTGCCATCAGTGGAAACTTATCCAGATTCCTCCAGTACTCTGGCAGTTCAAACTACAAATATACCCCAGAGTTTGGAAAAGTGACCATAGCTGCTACAGTAATCTTCAGCTATGCCTGGCTCGTGCCTCTTGGCCTTTGGGGGTTCCTGCTGTGGAGAAACAATAAGATTTTGAACCTGGTCTCATATTCCTTCATGGAAATCGTCTGTGTGTACGGATATTCTCTGTCAATTTACATACCAGCTGTGGTCCTGTGTATTATCTCATACGAGTGGCTCAGGTGGTGCTCCATCGTGGTGGCCCTCTGCCTCTCTGGCTCAGTCTTGGTGATGACTTTCTGGCCCGCGCTCAGAGACGACCACCCCAGAGTCGTCATGGCTGTCGTTTCAGCCATCGTGTTGCTCAATGTGCTGCTGGCTGTTGGTTGCAAGACCTACTTCTTCAGCAGTCCAGAGATTGACTCACAAGTAAAAAGTTCTCCTAAAACAGAGGTTGTCAAACCAACGTCATCGACATGAACGCCTCCTGTTTGAAGCTTCTCCTGTTGCCTTATTGGAGAGAATCGGGTTCCTGTACCAATGAAGTCATGGGCTGACTGGATTTCACCGCACTTGGACATTCCAGCTCGATGCCTCTGAAAAGCCAAGACTGTAAACTTGGTGCGGCAGCATGACGATGAAAATGAAAACTGGTTGCAAGTATGTTACTTCTAACGGGATGGGTTCTAAACAAACTTAAAGTTAATTGGGGTATAGTATTACACAACGCACAATATCTGTTGTGGTGTTGTAGTTTTCAGCTTTCTGTCGCTCATGTAAAATGTTTGGAAAAAAACAACTTTGTGCAATAATAATAGCAGCACCAATGCTTTTTATATGCACATTTGTTTTGCAGTATATTTCTTTAATAGGTAATGGTAAGTCGATTTTATTTACAAACTTAATGTATGATCAATTATAGGCATTGGTAAGAATTTCCAGGATTATTTATCAAGCACCCTGTAAAGGTGATGTGGTGGTATTTTCTTATAGTTAAGTTGCCTCAACTAATGCCAAGAGCTGGTTTAAATAATTTTTCGAATGACTTTGTAAATATTTCATAAATAATTTGTTGTCATTATAACAAACATCTTTAAATAAAGTCTACTGAATTTCATCTCTA +>XM_007381610.1 Punctularia strigosozonata HHB-11173 SS5 hypothetical protein (PUNSTDRAFT_132265), partial mRNA +ATGGCTGACGACTCGAAATCGGAGCCTTGCCACTGCATCGAAAAACCCAGACAACGTGGACCTGATGGACGTAAGCTCGGCTTGGATCAGATGATCTTGCTGATGGATCCATGCTTGGGGGCGCACTGGCAAGCAATCAAGGACCGCATTCGCAAGCTGGCGTTCGAAAGGTTGGCTATCGGCCGCGTTTACAATGACCAGCCGTCATTTGCCCATTCGTTATTGGTCTGCCAGGTTGCCGACCAATGGCAATTCCTGTGGGACTACGTGGACCTCTGGCCGCTTCGTCTATACCTTCGGTTTCTTCTCTCTGCGTACGCGGATCCTGATACGCCTACCGGCATCGCCTTGAGGCTCAGGAAAAGTCTTGACGATCATTCTGTGAAGCATGAGACTGCCTCTGCATCTACTGCCTCCACACAAAGTATCAACGATGATGATACTCTTGAGTGGGATGACCCGGAAGAACAACTTAACGATACAACTACACGAACCTCTTCGTAA +>XM_032672596.1 PREDICTED: Danaus plexippus plexippus SAP30-binding protein (LOC116778559), mRNA +GTGCAGCGATACATAGTTTCACAGTTGTTGTATTTACACCAAAAACATTAAACAAGAATAACCTTAAATAAGTTATTCTTGTGAGTGAAACATTACAAAAACTGTGCTAGAAAAGTGTAATTTATTCTTATAGTGCGTAAAATAAGCAACATGACTTCGCAAGCGTTAGCCACATTGACCGCGACGTACACAGACTCCGAAGGTGAGGAGGAAATGGAAGATGGAGATCCTACACCTGAGAAATCGGTCACTCATCACACACAGTCAGCTCCAACCAGTCCCAAGAACATCGACGACACCAAACAATCTGCTTCCGCACCAGTTTCTCCAAAACGAAGTTTGGTCTCGTACGTAGACGACACTATCGTATCCGATGACGAACAATTGTCTCCTAACGCGGAAACTCAGGACGATATGAGAAGATTATCGATGGAAACCGACACAGATGAAGCTGTCCCACGATCAGATCCCGACGACTCAGAGGATAGTGTCCTTATACCTCCGGAACCAACAGCCAAATGTCCCAAGGAATTACAAGACAAAATAACAAAATTCTACACAAGAATGGTCAACGAAGGTTACGACATGAACAAAATAATTCAGGATAAAAAGAATTTCAGAAATCCAAGCATATACGAGAAGTTGATACAATTCTGCGACATCAACGAGCTAGACACGAACTACCCACCAGAAATATACGATCCTCTAAAATGGGGCAAGGAATCCTACTACGATGAGCTCGCTAAAGTCCAAAAACTAGAGATGGAGAAACGGGAAAAGGATCGCAAAGAGAAGTCCAAAATAGATTTCATCACCGGAGTGGCAAAGAAGTCGGACAGCGACGATGACAAGAAACGGAAGTCCAAGTGGGACCAAGCGGCGCCCAACGTAGCCAACAAACCCAGCATCAAACAACCGGGGCTCCTCCAGCAACCGCTGACGAGCAACGTCACCGGCACCAAGGGCACTGTGATATCAGCATTCGGTTCCATTGCCAAGAAGCCAAAACTATGAGTTACAGCACAGACGGACATGTTAGTGATGCAAAGAACGACAACAATATAAAGTGTACAATATTAGTTGCAGACATTTTAATACAAAGTTTTGGCTTTTTATAAGTTGTTAAGACTGGTAGATAGTGTATGACAAAGTTAGACTAAAGCATCCATATCATCCTCAACGTGCTCCTCTCCGAACTCTCCCACACTTATGTATATATTAAAACCGTTAAATAATTCTTGTAAAATAAATTATTTGC +>XM_030796770.1 PREDICTED: Nomascus leucogenys intraflagellar transport 22 (IFT22), transcript variant X3, mRNA +CAGGCCAACCCTGCAGAACCGCGTCTGCAGCCCGGGCTTTGTGGCTTCTCTCCGACCCCCTCCCAGTAGCAAACGCGCCCGCTTTCCGCCCTGCGCGCCGGAAGTGGCCGAGTCCCGTCGGCCCCTGCGGGCCGCTCGCCGTCGCCATGGAAACGAAAGTGGCCAAGTAGCGCTCCGCCCTGACACGCTGGCTCTGGTGGGCTGCGGCCGGCTACGCCGCGGCGGACAACGATGCTGAAGGCCAAGATCCTCTTCGTGGGGCCTTGCGAGGATCCTAGAATTTGAGAACCCGCACGTTACCAGCAACAACAAAGGCACGAGCTGTGAATTCGAGCTGTGGGACTGTGGTGGCGATGCTAAGTTCGAGTCCTGCTGGCCGGCCCTGATGAAGGATGCTCATGGAGTGGTGATCGTCTTCAATGCTGACATCCCAAGCCACCAGAAGGAAATGGAGATGTGGTATTCCTGCTTTGTCCAACAGCAGTCCTTACAGGACACACAGTGTATGCTAATTGCACACCACAAACCAGGCTCTGGAGATGACAAAGGAAGCCTGTCTTTGTTGCCACCCTTGAACAAGCTGAAGCTGGTGCACTCGAACCTGGAAGATGACCCTGAGGAGATCCGGATGGAATTCATAAAGTATTTAAAAAGCATAATCAACTCCATGTCTGAGAGCAGAGACAGGGAGGAGATGTCAATTATGACCTAGACAGCCTTCACGTGGGACTGCCACAGCCCCAGTGAAATCAGCATGTTTCTCAGTGCAGATCTGAAATCACATCCAGCTCCTGATGTTTTCTTCTCCCTGTGACTGCAGAGGAAGTGTTCCTACGTGCAGGAAGGCACCTGTCACACAGGGCGTTCACTCAGACCATCTGTGCTCTGTCCTGAGTTCAGCTGAGAAAATCCGATTATCGAATTTGGATTTCCTGGCCCCAGAACTTCCCAAAGACCTGTAAAATGGAGGGATTTACCACCTCACATATGTCCAGTTATACAATTTGTGGAGTTGTAACTGTTGCAGCCCAATGATACAACAGTAGTTTAATCCTGTGTATTGGCTTGAATGTGATTTTCATTCCTTGATTCACCCAACGAATACCGACTGGCTGAGCACCTGCTGTGTGTGCACTGCTGTTCTAGCTGCTGACCGTAGACAGCATAAATGAAAAAGACAGAA +>XM_046808004.1 PREDICTED: Homalodisca vitripennis neuropeptide F receptor-like (LOC124356796), mRNA +CTACAAGTTGCGCGTCCCGCTCCACCTTCCCGCAGTCGTCCCGCACCCACATCGCGCGTGAACTTTATACTGCTGGAGTATGTGATGTTGTGTATGTGCTGACGTGTCGATCAAACATACTGTGTCCTGAATTGAATGCCTCAAGTTGGTAAAGTATATTCTGAACGCACTAAACCTTCTCGACTCCAGAGTGACGGTGAAACTCCTACGTGGCCGTACAATCTGATGACGCCCTCTGTACATGAGCTGTCCCATGTTCGAATCATGTCTGATGATGGAACTGAACGCCTCAGGCACATTTAACTTCAGCATCCACGAGGCGTTCCAGATCCTGCAAGAACACAAGAGTCGTGACCGCAATGTTGACGGACTTACGGAGGTGATCCTGATCTGCATCTACGGGTTCCTGATGGTATCCGGACTGTCAGCCAACCTGATTGTCAGTTTCGTGGTGGCGCGTCGACCGCAGATGCACACACCGAGGAATCTCTACATCGTGAATTTGACTGTCTCGGATATGACTTTGTGCCTCATCTGCATGCCTTTCACCTTGGTCTCCATCTTGAGCCGCCAGTGGACTCTTGGACTCGCATTGTGCAAGCTGGTGCCGGTCATTCAGGGCACCAACATCATGGTCTCCGTTGGCACCATTACCGTCATAGCCTTGGACAGGTACTTGACGATAGTGCGTGGACAAGAAGGTACCAACAGTAGACGACGGGTAATCACATCCATAGTGATGGTTTGGTTGGTGTCAGCACTAGCCACCCTCCCTGTTGCCTTTTATCAGGTGGTGGAGCCTCTGATGTTCCACCGGGTGGTGCTGTACGAGACGTGTCTGGAGCGATGGCCCTCTCAGCAACTAAAGATATCGTACGCTGCAGCTGTGCTGCTCGTACAGGCCGTCATCCCAGCCCTCGTAGTGTGCGTGGTGCACGCGCGGATTGCATCCTACCTGCACGCACACGCACGCACACAGAAGGATAGGCGGAGAGCCCTGCGGGAAATAAAGAGGAACCGAAGAACTACGCTTCTCCTCTCAGGTGTTGCGATCTTGTTCGCCCTGAGCTGGCTGCCTCTAGGTATCTTCTCTCTGACGGCCGACGTCCTCTACTCAGAGGAGTCCTTCAGCCGTGTGTCCTCACAGGACCTGTACGTGACCTTGGCCGTATGTCACGTGACCGCCATGACCTCCGCTGTGTCCAACCCCGTGGTGTACGGCTGGCTGAACTCCAACATACGCCAGGAGTTGCTGCAGCTGCTGCCCTCGAAGTGTGCCACTGTGTCCGGGATAGAGGAAGCCACCACCAAGACCGCTCTGCCAACCACCACCCACCGGCGGGAAAGTTTCACCATCCTGCTGCAGAACGGGGACCGGCCAGTGCTCACTCAATCGCCCCACACATTGGTCACTGTCTTATAACGGTCCGTGAGGTCCTCATCGCGACTCTGAGATACATCTTCTAAACACCATTCTCTAGATAAACACTATTTTATGTGACAAGGTATGAATGCAATGGGTAGAAAATTGTAAAACAATTACATATCACATAGTAAGACGGATAAATTCCTGGTTTAAATAATATAAGTTTCTTGACCCGTTCCTTACTTCCTAAAATTGTTTACCAGGATTACGATTGTAGATTGTCAATACAATAAATATCCAATTTTTTATACTAAACTCTCGAACACATAGCCTCTAATCGCCCTCAGTATATAAAGCTTCTGGCTTTGGAGATGAGGTCAGTCTTTCTGTCAATAAAAATAAAATTCATAAAACATGGTTTACTAATATTATTATATTCAATTTTATAATGAAAGGAATTTTTCATCGCAACATATATAACTTTTCAAATAAGCTAGATCTAAGTAGAGATACTTTCACACTTTCTGTTTATGGTGGTGTTGACAAACACATGATGAGCGAGTGCCAAGAGAAGATAGGTAACTACTGTCTGTGTTATGTTTGCTTTGCTTAGTGTCAACCTTGACGTATGCTGCATAAATATCTCTTGTGACAGATACCATATAACTAGTTTTAGAAAAGTCTATTTAAACGATTTAATTTTGTAGTAAGAAATGAATTGTTGAAATTATTTGTTGTTTTGATTGGTTTTAAAAATACAAATTGACAAAAATTATTCAAAACCTTGAAGATTTATAATGCTTGTAATATTTATGATCCGGTTTTATTTAATTTGAAAAGTAAGACACCTGTATTGTTTGGTTTTTCGAGAACATACTTAAAGTCCGTTCCTAACGATAAATATTTAAATTCTTGCTCAAACACATTTACAACAGAATTTTGAAGTTCAACTGACTCACATTCAAATGTTATTCCACCCCAAGTACTACGTTATCATAGACATGATACGCGCTTCTTTCCTTATAGAAGTATTGAAAAAAGAGTTTGTTTGGAAGAGTAACATAAACTTTCAAATATAAGTAAGAGTAAAGAGTAGCATGGACATAACTTGATGCTAGATTTACTTGGCGTATTTATAATAAATACGTATAAAGACATAACATCATGATCAGTATCAGTAAGTTCAGCTCTTTGTTTACTTTACTATAATTTTACAAGTATGGGTATGCCACAACACGTGTTGCATAACAAGCTTGACTGAGGTTGTGTGCAAAACTAAGTTTATAACACATGTTCTTCTGGTAGTTATAAAATACGTTAAAATTTATTATGATTTGATCCATTTTGTTTACAAGTTGATTTAGTCTTTGATTTTCTCGTTACTATCACGGTGAGACATAAAACCAATGTATAAGTAATTTTAGTAAGTACCGCTGTGGATTGAAATGCAGCCTCCTTAAAATCGATGTTGCATTTATAAAAATGAAGCTGCTTGCAAAATTCCAAGTTTATAGATTAATTCGTTTTTGAGGCATCGTGCGGACAGAAGGGCCTACATAGATGAAATTTTTCCAGTCCCTCGAGGGATGGTCTTCTCTAACGCTCAGCCATCAACGGACGATTGAAAATATGTATAGACAAACTTGTACGTACGAAAGGACAAAATACTTAAACACACACAAAATCTGTGATTGGATCTACGAGTTAAGAGTATCGAGAGTTATCGAGAACGATGAAACATATCAACACGAATGAGAGAGAACGATGAAATGTATCGATTTGTGGCACATCACGAACATCTCTCTGTATGCTGCAGTACCAAAGTGGGCGTCGAGTTTACTTATCGGTTTGGCAAAATCGTTTAGTTTAGTCAACAACGATGTATTTTCGTAGACTCTGATCACCCACCAAACCGTTCATAGGTTACAAACTGGATGTGATATTTAAAACCTTTTTAAATCTCTTAATATAAACCACTACCGAATTGGGTCACATTATTGGTGCTCAAATATGATTCCTTTGAACTGTGACTATAAAGTAAATGTGGGCGTAGTAGGTGGTTACATATTAGGGCGGTTCTATAGTATTTGTTTTATAAAGCCAGCATTAATACAATTATTTTTTTAGTCTCAGAGATAAAAACTGTAATACATTTTAAAAGTTTTTTCTTATTCCATATATTCCGAAAGTAGCATAAAAATTATATTTAACTACATACCATTGTATAACTATTTAAAGTTCTACTTTCATTACCATTGAGATTTGAAGATGCAACTATATGATCTTACTTAAAATGTGGCAAAATGTGTTATATGACAAGTAAGTATTATTTCATTATTTGTTTATCATTTCAAAAAACGAATGGTCGTTATCTTGTATCGTTTTCTTCAATCGCCTATCGAGCTGGAATCGCCTATCTTACCAGAATTACTATACAGCCGCTTTTATACCTTGAGGGGCATAAATGTTTAGTGCTGTGAGACAAGGGTCAATAAAAGATAATAGCGATATCGTGTTCCTTTTAAGTTCAGTATCATTAAGTAGTTCTTTCGCTAAAAATATCACAATCTGCTCTATCTAGCTTAAATTAAGGAATTAAAAAAATAATTCAGGATAATGCAATAGTATAGTTTTCTTTGTAATAGAATCAAATAATTCGTATAATGACGTCAAAAATAAACAGTTTGGATTCCTGTGATTAAAATTAAATTCTAGTTTTTTCGGTTAAATAATTTCAAAATGTTATTTTTATTTACAGTGGCATTATTTAAAAAAGTATAATTGGTAAAATTCATAATGTAATTTAATAAACAAATTGTATAATGTGTTAATTACTAGTATTAACAATTCGGAGTTTAATAAAGAAAGACTGTTTTAAAGAATAATTGTAAACTTTTTCAAGAAATATTCGTAATACATTTTATTTACATAGTTTCTCGTAGTTCTAGAGTAATATAAATTTTATCCGATGACATCTTAGAGTGGAATTCAGGACTTGGTACGCTACATAAGTTAACAGAGATTGTTACGGATAACTCCTACAGGTGAAATGTAAATGTCACTACCCACTTCTCAAGCAACACCTCTTTGCATCTCATTACTTCTCCGTACACATCTATTTTCGTATGGAATATTAGTATTTTCTGAATAATATTTTCCTGTTCTAATATTCGCTCTTGTTGTTGGCGTGACAGTGCACCCAACCACATTTAAAATTTGATATTTTTATATGTACATTTTATGACTGTACCACTACTTGAGTGTATTGTTAATATGATAAATTAATATAACAATTATAACTTAATATAATGTGCGTATTTATCTTGTAATTTGTTGTAAATACTAAACAACATAAGTGTAATTTAGTTTTAGTGTTGTTCTATGGTTCCTATACAGATTGATTACAAATTGTAACTAACATAATTGTCAAAGGTAAATTATTTCACAGGATAAATGTTTTTTTTACAATGGGTTCGCCAATATAATACTTGTAACGTGAAGCTCTTTTTTACTAATGCTAGCTGTAATCTCATATATTTACATCACAAATTGTATATATATTTAAATATATATATATATATATATATATATATATATATATATATATATAATATATTTTAAATATATGAACATTAATGTAAAATTAGATACAATATAAGTAATACAAAAGATACTTTAACGTATATTTTACAACACATTTTTTAAATAATAACAAACAAAATGAATAAGTCTAGATAGGTTTCCTAAAGGATTTTAACTGGTATCTCATGAATACTGGAACTATTACTACAGACAAAAATTGAAAAACTGTCATATATATACAATTTCACTTATTTGTTAATTTGAAATTATTGCTTGCAAATGTCAGAAATTGTATCTAAAACCATTTATATAAATTGCCAAAATAACAAAACGTTTCTATCATTATAACATAATTTTCTCTTTAAATTGGCAATTATTGAACAGCAACGCCACCTGCTTTTTTGTGATGAATACCAATTGGAATTTACAATTTTAAATTATTGATACAATTTCCCAGTATCTTGTAAATCTTAAAATTCCTTAAGGAAAACTCAATGTTTTCTTTTAATGTTGATTGTAGTATAAGATGATTTTATAATTTATAAACTTTTATTTACTCACTCGCTTAAGAGCTATAGCATATTAATGCTTTAAAAATTGCATATTTTTCCAGATGTAAGCACTATTGTGTAATTAATTTCAAATGAAGCAATAAGGAACACTGCTTTTAGTGAATTAGTAGTGTTGAACGAAAAAAATACACAGCATGACATGCGTATGGTGGATATGAGTATAAATATTAAAAATACAATAAAAATGTGCAATTGTTCGTCGTCTATGACGATAATCAATTATCCTTGGTGTTCCACTAATTTTGGCGATGTATTGATTACACTAAAGTTTTATAACTGATCTTGGCATCATACAGTGATTTAAATTAAGGTGTTAAAATTAGTGAATTTAATTAATAGTTTCTTCCATCGCATATATGCAAAATGTTTTACTCATAATACCAATAAAAAGTGTATTTATTTTTTTAAACTAGTATTGAAGGATCTAATTTAAATAATATATCAATTGAAAATAATTTTATTACGTATGGGGGGCTTCACGCTTTACATGTGTACGTTACCTATGTTTCTTGTGTTGTTTATGGTGATCTATGAATAACCACAACTATTGAGTTATAGCAATCCAAATGTTTGTACACGTGCTGTTGTGAGTAGTGAGCCCAACTCCAACACATGATTACAAACATGATCATGTATACATCAACATTATGCAGCCTCTGTGATTTGTTTGTACGCTTATTGATTAAACTATACCTTTGACACAA +>XM_021555190.2 PREDICTED: Lonchura striata domestica interferon regulatory factor 7 (IRF7), mRNA +ATAAAGGATCGGGAAGGAGACGGCCGCCCCCGCGCCAAGGGACGGCACGGCACGGCACGGCACGGCACGGCACGGCACGGCACGGCACGGCACGGCGCGGCGGCTCTGCGGACCGGCACCATGGCAGCACCGGAGAAGGAGGGGGAAGCGCAGAGGCTGCGGTTCGGACAGTGGCTGCTGGACGCCATCAACAGCGGGAGCTACCGGGGGCTGCGCTGGATGGACGCTGCCCACACCACCTTCCGCGTCCCCTGGAAGCACAACGCCAGGAAGGACATCACCAGCACTGACCTGGAGGTCTTCAAGGCCTGGGCAAAGGTCAGTGGGCGGTACGAGGAAGGCTCCGAGGATCCAGCCAAGTGGAAGACCAACTTCCGCTGTGCCCTGAGCAGCACCCACTTGTTCAAGCTGGAACAGGACCATTCCAAGCGTGGTGATGACCCCCACAAGGTTTTCTCCATTGTCTCAGCCACCCTCCAGGACAGCAAGGAGGGACATTCCTGCATCCCCAACCCTGTGGTGGACCAGCAGGCAGCACAACAGCAGCTGCAGCCGGAGATCCACCCCCAAGACATGGCCTCAGCCATTGCTGTCCCAGGAAACACCGACCCCACAGAGCTTCTGGAGCAGCTGCTGCAGCAGTGTGACATCTCTCCCAGCGACCTTGACTCGCTGGCCCCATCCTGGGTGCCTGCAGGTGGTTTCCCTGCCAGAGACACTCCCCACCAGGACATCGTACAACAGCCTCACCAGGACACCCTGCTCCAGCCTCACCAGGACACCCTGCTCCAGCCTTACTCAGACACCAGCCAAAACAGCTGCTTCCCTCCCACATTTCCACAATGGGTGCCCTCGGTGGAGCAGCCCACCTTGGGCACCTACCAACCAATCGGCCTCATGCCACCAGAGGAGACAGGGGCCATGCCACCGCCGTGCCAGCTGACGGAGGGCACGGTCCCCATGCAGTATGTGCCGGGTCGGACGTTGTTCGTGCCCGCCGCCAGCCCCGTGCCACAGCCACGGCTGCTGCTGGATCACACAGATGGCATTGTCTCCATCCTGGATGTCACCATCTACTACCGGGGGAAGGAGTTCCACCACGAGGTGGTTGGGGGCAGCCACTGCCTGCTGACGTACCAGCGCCCCAGCCTGCCGGGGGCCCCGTGCCCCGGGCACGTGGTGAGCTTCCCCAGCCCCGCCAGCCTGGCCGACGGCAAGCAGCGGCGCATCACCGAGGATCTGCTGGGCATCGCGAGGCTGCGGCTGGAGCAACGCGCCTACAAGGTCTTTGCCACCCGCCAGGAGAAGTGCAAGGTGTTCTGGGCCTTGTCCCAGCAGCTCGAGGGGGTTGAGGAGCCCCCATCCAACCTGCTCTGCCGAGACCAGGAAACACCCATCTTTGACTTCCATGAGTTTTGCACAGAGCTGAGGGACTTCCGCAACGGCCAAAGGCGGCGATCTCCCGACTTCACCATCTATCTCTGCTTTGGGCAGGCCTTCTCCAAGGCCAAGCCTAAGGAGTCCAAGCTCATCTTGGTGAAGCTGGTGCCCAAGTTCTGTGAGTACTACTACGAGCAGGTGCTGCAGGAGGGAGCCTCCTCCCTGGACAGCCGCACCATCAGCCTGCAGCTCTCCAACTCCTTCGACCTCATGGAGCTCATTGAGCAGTACAACATGCAGCTGGGCTGAGCCCACCTGCCCCGCTCCCCATGGCCCTGGCACAGGCAGCAGCACCAGTGGGCATCCAGGCTCTGCAAACCAGCACCCCCCAACCCAAGGACAACTTCAGTGACCAGTCCTGGAGCTCACACATTGCTTTTCCTCTCTGTCAGCTTCTAGTGTTGTGTTTTTGTGGAGGGTGGTAATTTACAGATTTATTTTCTTAACTTTTTCAAGCTAAAATACATATATATATGGGATCGTAGTTCTCTCTTGCCTGGAGATGTGCCTCTTCTATCAGTCTGAAATCTTCACCACCCCTTTCTACCCCCAAAACCACGGGGGTCCATGCCCAGCCTTGTCTCAGCAAAGTCCCTGCTGGCAGGGGTGGGCTGGTATCAGAGAGCTTTATTAGCACCTTCTTCTCCTTAAATTTGAGTGGATGAGGTGACTTCCCAGTGTGAAGGGATACATTTATCCATGCATTTATTTCCATGCATTAAGGCTGCAAACATGACTCGCAAGCAGAATGTGTTGAGGACAGCTTGGCTTGGGCTAAACAAAAGTAATTCTTCATTGAGCACTGCCCAGAGTTACTCACTGGAGATGTTCTGGAAAAATAAGGCAGTAAGTACAACACGAAACACCCAGACCACCAGCTCAGAGGTGCAGAGGGGGGTGGTATCTCAGGGAGGAGTGTGGAGACCAGAGGGCTGACTGAAGATGGGGTGTGCCCTCCCCAGGCTGCAAGCAACTGCACCCCCTCCTTTCAGGAGCCTGACCATCACTGTTGGTCCCTGGGCAAGGGGAGGAAGCAGTGTCCTTACCTGCCGAGTGACCTGGATGCTGCTGGGCCCAAAGGTGGTGGTCCCGTAGCTTGTCACGTAATAGTGAGCAGAGGGCTGTGCTGGGGGCTCCTCCAGTGGCCTGGGTACTGTGGGAATGGGACACCCTTAACCCCTCTGCTCCATGAAACCCTCAGCCCTCCTTCCTCTGAGCACAGCTGTGGCACAGACTCGGGACACCGGGCTCACCTTTGGGCAGGAGCAGCTCTGCACCAAAACAATGCCCACACGTCCCGCAAGTTTTAACGTCTTCCTTTGTCCTGTGGAGGAAAAAGCCCAGGAAAGAAGGAGCAGGAGCTGCTCTCAGCGCTCCCCATGGAATATGATGCCGAGGCCATGGAAGAGGCTTGCTCTTCCCACCCTGACCTGAGGGGCAGCTGTTGGTGGACAGCCGCTGCCCTCCCAGGTGCCTGAGCACCTTCAGCTCTTCATGAAACAGGGACATGTGGGCACATGTCCAGAGTGAACATTCTGTGCCTGAGCCCCAGAGTCTCAGCTTCTTCACTTTTCCCTCCATGCTCCAGTTTCCCACACCAGTAAGTGTTAACACCACTTGGGACAAGAGCTGCTATGGTTGGGAGAAGGGCACCGTAGTGCCTGGTGAGTTTCACAACTGATTTCACATGGCTTTTAAAAGCTAACCAGCTGCACCAGCATTGCAGTAGTGGCCACCCAGGTCCCACCCTCACTTGGAGGGCACAGTGTACGTACGTGGCACCTGTGCCATCCATGTCTGGCCAGAGGAACTCTGCGGGACAGCCGGACGTTCGGCAGGGAGCCTTCACACACACATGCAGCCCCGGCCACTCCTCAGCGAGCTTCTGGATGATGAGCACAACTGCCACAAGGAAGTCCCAGGCAAACTGGAACCCTTCCAGGCAAAAGGAGAATGTCTCTTTCTTACAGCCTCCAGCCACAGCAGCCCAGGAGATTCTGTTGTGACCCACACATAATTTCCAGCCCACAGCCTCAGCTGTCAGACCAGCTCCATCCCCAGTTAACCAAACTTCCATACGGAATTTAATGGTATGTTGGAAGAGCTCCCCAATTTGGGTGGCCCTTTTACTTATCAGTGGAAGACCCAGCCTTAGACTGTTCTCTGCTGGAGCCTTCTGGGGAAGGACGACCCATTTGCTTCATGACGAGAATGAAAACTTGGCTTTCCACTTTCATGTGATACCTCTAGAGGAGTCCTGACCAGAATTCGATGGAGAAAGGGAAAACCTTTAAGTGGACTGCTGGTGGACCCAGGCCAGACTAGGACATGTGGCAAAGGCTTCCTGGGACACTTCCCATAGGGCTGGAAGTGGCAGGAGCAGAGCTAAGGCAAGACATGGGGTTGGGAGTAATGAAATATGGATCAGGGATCTTACCTGTCCTTTCTGATGGCTTTCTGCTGCGGAGCTCCAGGTAGCTGTAGGCCCTCTGGTTATTCTCTTTGATCAGCAGGGGTTTGCCATTGCATACAAGCAGGCAGGTCACCTTGGCCACCCAGTGCGTGGAATAGAAGGAGCAAGCTTTCACCAGCAACCTGCAAGGAGATTGTCCATGGCTTTCATCACTTTTCTCCTAGCTTATCCCTAATGCTGGAGAAACTGGATGGACTTGAAAATATGAACCAAGTTGCAGTAAGAACAGACACAAAATGAGGACCTTCCCCTGCTGAAAGCTCAAGTAGCAGGAGCAGCCTCTTAAACCAAGAGATCTTTCCAGAGTTGGCCATTTTGTCCTGGTTTTGTCTGGGATGGAGTTAATTTTCTTCCTAGTAGCTGGTACAATGCTGTGCTTTGGATTTAGGATGCGAATGATGTGGATAACACATCACTGATGTGTTAATTGCTGCTGAGCAGGGCTTACCTCAAGTCAAGGATTTTTCAGGTTCTTAGGCTGCCCTGCCAGTGAGGGGAATGGGAAGGGACAGCTGACCCCAAATGACCAAAGTGTTATCCCATACACAGTAGCATCATGCTCAGCACATAAACCTTGGGGACCATTGCTTGGGAACAGGCTGGGCATGAGTTGGTTAGTGCTGAGCAATTGGTTTTTATTTGTATCACCTGTTCTTCGGTTGTATTTCTCTCTTTGCTGATTTCCTTTTCATTACAATATTATTATTGCTATTACTGTTATTATTATAATTTATTTCAACTATTAAACTGTCCTTATCTCAACCCA +>XM_037981260.1 PREDICTED: Kryptolebias marmoratus origin recognition complex, subunit 1 (orc1), transcript variant X4, mRNA +CCCCCACACACACACACACACTGTCTGGTTTTGTTATTTCCTGCTTTGTTGGCGTTCCTGTTTGGTTCTCGATACGTAACACGTCAGAAAGAGCACAGGAACTGATGAAGAGACCCTGGTAGATTTTTCAATCTTTTATTATTAATTTTAAATTAGTGCAAATTCTTTACTCTGACTTTGAAAACAAGCTCCTTTTGTGACTTTATTTTGATTCCTGTTGACTTCAAAACACTTTTTGTTTCACCTTTAATCACTTGCACCATGTTCCCTGAAAGTTTAATAAAGACAGACAGACGGATAAAGAACTACTAACCTGGTTAAAAACCTGTTTTGCTGTGACGCTGTTGCGCTTCACCTTCCGGCCTGCAGGTGGCGCCAGACGCACCAATTAGCAAACCGGAAGTAATCAGCACAAGCAGAAGAAGAAATTTTCCCGCGAAACGCCGTCCCTCTGCCGTCTTCAAACGGCTCCAGTTAGTTTTCTGCGGGTTCTGGTTTGGAAATAAACGCGGATTTTCGATCAGAAGAAGACATTTTTTTTTTAATTTTCCGGGTCAGGTTAGCGAGGACCGGGATGAAATCTTTCGGCAGATTGAGAGTCAGGAGGTTTTATACATGGAGAGGAAATCCTCTGAGTTCCAACAGGAAGCTGCGGACACACGAATATGAGTCTTTGGCCATCAGGGTGGACGGGCTCCCGAGGACCACGGTCATCAGAACGGGTCAGCACATCCTCATTGAGGGCGACGACGACGACAACCCGTTCGCGGCCAAAGTCGTCCGGCTGTTTGGAGACGAGAGCGGGCAGCAGAAGAAGGCCGTGGTTCAGTGGTACGTTCGAGTTTCTGAAGTTCCTCCGAGCAAACTGAAGCTGCTGGGCAGAGACCCTCACCCCCGGGAGATCTTCTTCTACCAGGGAGGCAACTGCGACGACGAGGTCAACGCCGAGTCCATCATCAGACCCGTGCAGGTGAAACACCTGGATGCTGACGCTTCATTCCCCCCCTCTGATGATGGTGATGATGATGAGACGCTCTATGTGAAACTCGCCTGGGACTCGAAGGTCTTCAGGATCCTGGACTCGGCTCTGGTGGCGTCTCCTCCTCGCCATCCCAACCCCTCCCTCCCCCCGTCCCCCCCACGCTCCCCGCCTGCTGCCACCCCGGCCTCCAGGACCTCGAGTCGATGCACCCTGCCCACGCCAGACCCCACTGTGCTGCGCCGAGCCGCGCTGGGGGAAGTGAGACGCAGCCGAGCCGCAGCAAGCGCCGGTAAAAACCCCGCCGCCATGGAGGCGCTTCACTCAGAGACCAAACTGTCTGCGTCAAAATGCCTCAGCGCCAAGAGGAGGCATGGCACGGAGAGGACGCCAGGCGTCCGCAAGAAGCTGCAGCTCTGCAGTCCTGAGAAGACGGTGATGGTCAGAGAGGACGCCCTGACCCAGCTGCTGGACGAGGAGCTGGAGAAGGAGAGGACACTGGCTAAAAGGGTGCCATCCTCCCCCGCTCGGTCCCCCACCCTCACCCACAGACTCACCCCCCTCAGGAGGACCAACAAGAGCCTTGCCGCTCAGGACGCCGTGTCCCTGAAACCGTTCGTCATCACCTGCCGCAAAGTGCCCCTGAGTGAGGTGGAGTCTCCAACACCGACCAGAGACAACTCGAGCAGAGCTGCGACAACTCCTTGCACGAAAGAACCAAAACCTGTCAGAGAACCAGCTCTGGGTGATCTAGCTGAGGAAGAGGCCAAGAACTCCTCGCCGCCCAGGAGCTCCAAGAGGAAGTCGGCTCTGAAGGTGTCGTATCGCATCAGGAAGCAGCTGAACCTCATGGACGGCCAGCAGGACCTGAACTCTGACGAAGATGATGAAGACGAGTTTGTTCCGTCAAAGGAGCTGCAGAGCAGCAGCGAGGAAGAGGAGGCAGAGGTGGTGGTGAAGAAGAGCCGGGTGTCCTCAGCGGGGTCCCGCACGCCTCGTTCCTCGACCCGAACGCCGAGGAAGACTCCGAGGAAGAACGCACCAGGAACGCCGCGGACCCCCCGGAATGCCACGCCCAGCATCCCCAGCAGGTCCCTGCCGGCCAGACGGCCTGCCAACGTTCTGGAAGAGGCCAGAACCAGGCTCCACGTGTCCTCGGTGCCCGAGTCTCTGCCCTGCAGGGAGCAGGAGTTCCAGGACATCTACAGCTTCGTGGAGAGCAAGATCACCGACGGCACCGGGGGGTGCATGTACATCTCAGGTGTGCCGGGAACAGGTAAGACGGCCACGGTGCACGAGGTGATGCGCTGCCTGCAGCACGCCGCCGACACGGACGAGATCCCGCCGTTCCACTTCATAGAGATCAACGGGATGAAGATGACGGATCCTCATCAGGCCTACGTTCAGATCCTGCAGAAACTGACGGGTCAGAAAGCGACGGCCGATCACGCCGCGGCGCTGCTGGAGAAACGATTCAGTAACCCGGCACCAAGGAAGGAAACCACCGTGCTGCTGGTGGACGAACTGGACCTGCTGTGGACGAGGAAGCAGAACGTGATGTACAACCTGTTCAACTGGCCCACATGCCGCCACGCCCGCCTGGTGGTTCTGACCATCGCCAACACCATGGACCTGCCCGAGAGGGTCATGATCAACAGGGTGGCCAGCAGGCTGGGTCTGACCCGGATGTCCTTCCAGCCCTACACCTTCAGGCAGCTGCAGCAGATCATCACGTCACGGCTGAACAAGGTGAAGGCCTTCGAGGAGGACGCGCTACAGCTAGTGTCCAGAAAGGTGAAGCCCGCCCCCTCACCCGTCCCACAGCTCTTGCCCTGTGTCGGATCGCTCAGTTCTCTCCTCCGACAGGTGGCGGCTCTGTCGGGCGACGCTCGGCGGTGTTTGGACATCTGTCGGCGAGCGACAGAGATCTGCGAGCTGTCTGCTGCAGGGCTGGTGGGGATGAGTCACGTGATGGAGGCGCTGGATGAGATGTTCTCCTCAGCTTACATCACTGCCATCAAGTGTGCGTCGACGCAGGAGCAGCTCTTCCTGCGAGCCGTCATCGCTGAGTTTAGACGGCTGGGGTTGGAGGAGGCCACCTTCCAGCAGGTGTTTGTGCAGCACCAGGCTCTGTGTCGGGTGGAGGGTCTGCAGCCCGTCGGCGTGTCGGAGGGCCTGGCCATGTGTCAGCGTCTGGGAGGCTGCAGGCTGCTGCTGCTGGAGTCCAGCCGCCTGGGAGTCCTGCAGAGAGTCCGGCTCAACGTCAGCCAGGACGACGTCCTGTACGCCCTGAAGGCCGACTGACGAAGGAGAGTCAGCTCGGGTCCTGACGGAGGCAGAACACTTTACATACTGAGACCTAATGTGTTTACTGCAGATTTTCTTTTTTTGTTTTGTTTTGTGGGAGACTCTGTGACGTCCCCGGTTTTACCTGGACTGTCAGGTTTTACTGCTCTCATGGTTCTTTTATTGTTGACTTTTATATTTTTATGTTTCACTATTTGAATATAGAATAAAACAGTTTTAATATAAAGAAAATTCCTTTTCCCTCATCCATAAGCTGTGAAGCATTCACACGTTCCTAAGA +>XM_018492714.1 PREDICTED: Trachymyrmex septentrionalis FAD synthase-like (LOC108752090), transcript variant X3, mRNA +TGATATTGTCACGAAATTTGAAGATATTACTGAGGATGATAGAAAACTACTAGTAGATCAATATGAATATTTTAGTACAATGGACATTACACTAAAGTATGATAATTGGCGTCGTGATGTGATATTAAAATCAATTCTCCCAGAAGATATTGAAGTTCCTACAGCGTACAGTTTAGTAGGACATATTGTACAGTTGAATTTACGTGATGTACATTTGCCATACAAATCTATTATTGGTCAGATATTTCTCGATAAGACTGCGAATGCACGAACAGTAGTAAATAAAATAGATACAATTAATACATCGTTTCGATATTTTGCTATGGAAATCCTAGCAGGTGAAAGAAATACAATAACATCTGCAAAAGAACATGGTTGTACATATCAGTTTGACTTTGCGCAAGTGTACTGGAATCCACGTTTATCTACTGAACATTCACGAATTATAACATTTATGACCGAAGGTGATATTCTATATGATGTATTTGCAGGAGTAGGACCCTTTGCAATTCCTGCCGCACGTAAAAAAGTCCAAGTATTTGCTAATGACTTAAATCCTGAATCTTACAAATGGCTTCAAAAAAACGCTCTTATTAACAAGAACAATATGTCGCAACAAATACGTCATTTTTATACAGCAAGTTTGATAGTTGTAGGAGATGAAATTTTACGTGGACAAATAATTGATACCAATACATCATATCTGGCACAAAATTTAACTGCTGCTGGAATAAAACTACAGAAAGTTATAATGGTCTCTGATATCGTGGATGATATTGCTAAAGAAATACGCAATACATCAAAGGAGTATTCTGTTGTATTTACATCTGGTGGTGTTGGACCTACTCATGATGATGTAACTTATGAGGCTGTAGCAAAGGCTTTTGAACTAAAACTTGAATTAAATCAGAAATTATTTGATATATACACTCGAATGATTCCTAATCAGGCCGAAATAAAACGACTTGCTATTGTTCCCAATGCATGCAAGATTATCAACATTGATTCAGAGGCTTTTCCAATAATAAATATAAAAAATGTTTACGTGTTACCTGGTTCCCCAAAGTACTTTAAGCCTGCTGCAGATACAATAATTTCTCGTTTGAAAGGAAGCACGCCATTTCACTTTGAACATATAGATATTGCATTGAATGAACTATCAATAGTAAACATTTTAGATAAACAAGCAAAACGATGGGATGGTAAAATAAAAATTGGTAGTTATCCTCAATATGAATTGCAAACATCTTTTACGAGAATCACTTTAGAAGGACCTGAAGAAACAATTGCAGAACGATTGCTAGGATGGAACGTCCCTACTGAGGAACTGATTCATATACCAGAACATTGGCTGATCTATCCTGAACCCAATCCTTCTCTTCACTATTTACTAGCCATTCTATACATAATTTTCACCTTTGTAGCGTTACTCGGAAATGGACTTGTTATCTGGATATTTTGCTCAGCCAAATCGTTAAGAACATCTTCAAATTTGTTTGTGGTGAATTTGGCATTTTGCGATTTCTTCATGATGCTCAAGGCACCGATATTTATATATAATTCCTTTAATACCGGATTTGCTACTGGTCATTTAGGATGTCAAATCTTTGCCTTTATGGGTTCGCTTAGTGGAATTGGAGCTGGTATGACAAATGCTGCTATAGCGTATGACAGATACAGTGTTATAGCTCGACCACTTGATGGGAAACTATCTCGCGGTCAAGTGATACTCTTTATTGTACTTATCTGGGCGTACACAATTCCATGGGCCTTGATGCCAATAATGCATGTCTGGGGTCGATTTGTGCCTGAAGGTTTCTTGACAAGCTGCACTTTCGATTATTTGACAGATAGTCCAGAAATAAAATATTTTGTGGCCACGATATTTACCTTCTCTTATTGTATACCAATGTTACTCATCATATATTATTATAGTCACATTGTCAGCCACGTTATTGATCACGAGAAAGCTCTTCGTGAACAAGCAAAGAAGATGAATGTCGAAAGTTTGAGAAGCAATGTCGGTGCAAATACTCAAACTATGGAAATACGTATAGCTAAGGCTGCAATAACAGTATGCTTCCTCTTTGTTCTCTCGTGGACTCCATACGGAGTTCTCGCGATGATCGGTGCTTTTGGAGATAAGACATTATTAACTCCTGGTATCACAATGATACCGGCATGCACATGTAAATTTGTGGCCTGTTTGGATCCATATGTATATGCCATAAGTCACCCAAGATACAGACTAGAACTGCAAAAACGATTACCATGGTTAGAATTGCAAGAAAAATCTGTGGACACGCAGGGTTCTACATCCGAAGTAGTGAATATGCCATCATCTTAAATCTTGTTTAATTTTATCTTAAACAGTAACTATTTAATTATGAATGATCAATTGCTATAGTCATCATTAAGATTATGTTCTTTATTACTGCAGTAATAAAATGATTGCGTAGTCTATATCAATGTAGTTACAAGTAATTGTAAATATATAAATGTGAATAATGTAAGCTCTTAATAAATACAATATTGTTCAATCTTCCTATTCTTTGTTACGATCATGTTTATTGCTAATGTGTGATACTTCTTATCTGTTACATAAAAGACAATATTGACATCAGGCGTGTAATTGTA +>XR_002250031.1 PREDICTED: Pseudomyrmex gracilis uncharacterized LOC109852741 (LOC109852741), ncRNA +CAAAAACATTTTGAACTATTTCGATTTATCCGCGTCGAAAAGTTCGTTCCACGTCGCGACACGACGTATCTCGTGATAAACTTTCGATCGTAAAGTGTATTTTCGCGAAATCGTGCCTCGGATTGTGTAAATTGTATATTTTGTGCTAGTGATATCGTAGTGACAATTCAGAAATATTGGGCAAAATTTTTATCTTTATCACACAGGTCCTCGTTAGAAAACGGTCAACCGTCGATGCAAGAATATAGAACGAGAATGCCCGCATGGAATTCCCTGAATCTCGCAACTATGCACGCGCAATACTGTGAGTGTCACCTATATGCCGGAGAATGCGATTACATTTGTGAAAAAGGAAAACCTCTATTTTCGAGGCCAATACACGCGAGGGGCGTGTAATTCGTCGTGTAAGCACGTC +>XM_050446992.1 PREDICTED: Anthonomus grandis grandis uncharacterized LOC126740808 (LOC126740808), mRNA +ACTATTGTTGCTATAAGGGGATTCTACAAAGAATTGTTTATTGTTATAAGATTTAAAAAAAAGCGCACTCTTGCGGCGCGAACTTGTAGTACATTAAAACTGTTGACAGCTGTCAATTAATATTGACAGTTTGTTTTTTCAGTAAAATTTAAAAGCAGTTTCACAATTTCTGTGATTAAAAGTGACGTGTTTTGATCAATTATAAGCCGGGACAATGAGTAAGAGCCACAAAACGAAGCATCACGAAGATCCCAGTCTGATCCCCACTTTTATGAGCGATGAAATGCACGCGGGGGCCAGGAAAATGAAAGCGGGTCCTTCGGCTGTAGCTTCGATGTTATATCCACATGCCGCGACTTCTATTACTACCACAACCGGTGTAAGGAAGAAAGAAGAAGATTTAGCGAATAACGACGAGTTGACCGATGACGACATGGAACGTAAAATGGATGGTACATTACGCAAGGGACCCCCGAAAGAAAACATTCAGGTGGATGGGAAAATTAGCATCCTTACAAAAATTGAAGGTAGGAGAGAAGCCCTCTGTTGCAAATACAACGAGGAGTACGACTATATCGCAGTGGGTTACGCTGACGGGGTGATCGTCATGTACCAAAGTTCCACGGGCGAACCAGTTTTCACTTTAACAGACGCGGACGTGAGGGAGAACAGGGCGCCAGTTACCTCGATCAAGCATCGACCTGTATCGAAAATTTACCCCATTACCAACTGTTACACCGGGACCTATGCGAACGGTTGCGTTAAATGCTGGTCCTACAATTTCAACCAGTGCCTCTATACCATCAGGGAGAAGCGACAAACTTTCGGGATCGCGTATCATCCGCGATTCCCGAAATTCGTTACGTTTGGGGACGATATGAAGGTTTATTTTTATGACGAGGAAACGAAGACGCAGGAGAGGGTGCTATCGTCCAGTGATAATCCTGATACGCACGACGGTCACATGTCCAGGGTATTCGCCGCGTGTTTCCACCCGAAAAACAATTACGAACTTTTAACGGGTGGTTGGGACGATGTCGTTCAGTTTTGGGATCTGAGACAACCGCATGCGGCCAGGCACATTTCGGGGGTTCACATGTGCGGAGAGGGCCTCGATATTAGTCAGAAAGGGACTGAGGTGTTGACTTGCTCCTGGCAAAAAGAGGATCCTTTGCAAGTGTTTGATTATAATACGACCAAAAGGATGTACTGTTTAGAACCGGACATTTATAACACTAAGCTGTATTGCGGTAAATATGCCACCAAAGATTTTGTGGTGTGTGCAGGATCCGATCCGAACCTTATACGTGTGGTGGACTTGCAAACGACTGCAACTTCGGCATTTATAAACCAATTACCGGGAGCCATTTACAGTTTGGATATCGGTCCGACGAAAGCGAAAAAAGAAGCAAAGTTGGAAAAGTACAGCGTTAAAAACGACATAACGAACGTACCGAAAATGGTCTTCGTATCTGGTAAGAGACTTTACCAGATCGATTTTTGTTAATTTAACAACGAATAAAACGCATGTGTTGAAACAAGAAAA +>XM_028067949.1 PREDICTED: Vigna unguiculata protein IQ-DOMAIN 14-like (LOC114181480), transcript variant X1, mRNA +CTTATTTATTCATTAAATTTCTTGAAGTTTCGTTGTTCCCTCCTTGCATGTTCCATGGACAAGGTTTTTGTCATATATAGCAGATTTTCACGAGCTTTTGACAGAGTATTTTCTTTTGTTTTGTCTCCTTTCAGATAAAATCATCACATAGTAACATAGTTGAACTGTTTCTTGCAGTGAGGGCAGCAATGGGGAGAGCCACAAGGTGGATGAAGAGTTTGTTTGGGATTTCAAGAGAGAGAGAGAAGAAACAAAACATCATAGAATCTGGTTTTTCTGAGAGTACTAATAATTCAAGAGTTTTGTGTCACAACCCAGGAACTATACCTCCCAACATTTCTCAAGCTGAGGCAGCTTGGTTACAGTCATTCTACACAGAGAAGGACAAAAACAAGCACGCCATTGCGGTTGCTGCGGCCACCGCAGCTGCGGCTGATGCTGCCGTGGCGGCAGCACAGGCCGCCGTGGCAGTTGTTAGACTCACAAGCCAAGGAAGGGGTGGCACCATGTTTGGCGTTGGACCTGAGATATGGGCTGCTATCAAGATTCAAGCAGTGTTCAGAGGATACCTGGCAAGGAAGGCACTGAGGGCATTAAAAGGATTGGTGAAGTTGCAGGCACTTGTCAGAGGGTATTTAGTGAGGAAGCAAGCAACAGCAACACTGCATAGTATGCAGGCTCTTATTAGAGCTCAAGCTAGAGTACGGTCCCACCAATCTCGCAGGCTCATGAGTACGAAGAATGAAGCATTTAGATCTCAAAATAGAGCAAGAAGATCCATGGAGAGGTTTGATGATACTAGGAGTGAGTATGCAGTTCCAATCCACAGTAGACGAGCATCATCGTCTTTTGATGCTACACTTAACATCAACAACAGTGTTGATGGGAGCCCCAAAATAGTGGAAGTAGACACTTTCAGGCCTAAGTCAAGATCAAGAAGGACAATATCAGATTTTGGTGACGAGCCATCACTTCAGGCACTTTCATCTCCCTTCTTTGCAATTTCATATAGAGGTACCCCTACCCCTACCCCTACCCCTACACGTTGGTCCATACCAGATCAAAGGAATTTTCAGGACTCTGAATGGGGGTTAACAGGGGAAGAATGTCGGTTCTCTACAGCACAAAGCACTCCACGCTTCACAAATCCTTGTAGTTGTGACTCAGTTGCACCTATGACACCACAAAGTGGGTGTCCTGATGATAACTTGTTTCTAAGGCAATATGGGAAATTTCCAAACTACATGGCTAGTACTCAGTCTTTTAAGGCCAAGTTGAGGTCTCATAGTGCTCCAAAGCAACGACCTGAACCTAGTCCAAGGAAAAGGCTCTCCCTCAATGAAATGATGGAGTCTAGGAGCAGCTTGAGTGGTGTTAGAATGCAGAGGTCTTGCTCAAAGGCTCAAGAAGTCATTAGTTTCAAGAATGCTGTGATGGGAAAGCTTCAGAAATCCACAGAATCTGTTAGGGAAACAGACAGAAACTATTTCCATCAGAGAGGGTGGTGACATGCTGAACTTGTTAGGACAGATATCTAGCTATCTTTGTTCTTTAAACTGTTAAAGTGTTAATAAAATATATTTCTCCCCCAGTTTGGTAATTTGCAGATACATATAGGTGGTGAGTGTGGGAATGTGAAGACAAAATAGAAGGCAAAGATAGAGAGAGAGAGAGATGCCTCTCATTGTTTTGTGAAAAGTTTGGCTTTGGAATTTTGATATATCATCTCTCTGTAGTCTATTCAAATGCAAGGATTTTAACTT +>XM_043209237.1 PREDICTED: Drosophila ficusphila oxysterol-binding protein-related protein 8 (LOC108093331), transcript variant X2, mRNA +AAAAACAGAAAATAACACGAAAGCTTGTTTCGCCTTTTCACTTCCAGCGTCTTCGGCCGCGTCATGAAAATAATACTCGCCGCCTGTTCGATGGGTGGACGGTCGGTTGGGGGAGGGTGGTGACGTCGCCAGCGCTGGTGGATGAGCTCATACGAAAGCGAAAAGAAACAAGTTTAGCTTTTTGGAATACGGACGACTGCAGCCTCAGTTCATTCGAACGCCGAACGCCAGCGACGCCGGACCGTTAAAACGAGAGAGCAAGAGAGCCGCGAAACAAAAAACGAAAACCGAAAAAAGCTATCTATAAAGTCTTTGCAAAAAGCCCAAAATTGTTGTGCAAAAAAGCGAGGAAGGCTGAGACTCTTGAGCGGCTAAAACAAAATCAATAATTGGCCCTGCGTCCAGCGCTATATGTGTGTGTGTGTGCGTGTGAGAGGGGGAGTGTGTACGTGTATTTGTGAGAACGACAATTGGAGCAATGCCTGCTGATTGATACGAAAAAAAGGGGGAAACCAATTACAAAAGAACCACAGAAGCGAAGGATTATAATAACTATTTTGTGCAATAATTAAGTGATCAAAACCATGCAACCCGCAACGCCCGGAACGCCTGTTAATAATGCTCCCTCGACGACTAATTCATCGGCCACCCCTGCCGCTCCCGCCGCCCCTGCTGGCGGGGGGGTTAGCAGCACTCCAATACGCATAAACAGTGCCAAGCAGCACGGGGCGGGGGGCGGTGACTCGCTGGCCCCCTCCACCCCGCACTCCCATTCGATGCCTGGAACGCCGCAACAACAATCGAGCAGTGTGCCCACGGGAAGTCAACTGCTGCATCTCCAGGCGCCGCTGCCCTCGGCTGGGGGAGGCGGGGGAGGATCAGTGACCCCCTCTGGCCTGTCCATGGGCGCCTCGAATCAATCGCTGGGCGTTAGTGTTGGCGCCGCCAGCAGCGTCAGTGGTATCAGCATAACGCCGCCGAATAGCGCCGGATTGCGTCAGTCGACAGTATTCGATTTCAAATTCAAACGGCGACCTTCGCTAAAAGTGCTCATGACCAAACTTCCGTCCACGGACAGTTTGAGTAACAGTCCGGCGCCGTCATCGCCAGGAATCGCCAATTGGGCCTCAGACAATCGGGATGGCAATCTGGCAGATAAGTCTGCTGCTGATGCCGCCAAACTTAATAGGAAGGAGTCCTACAAGGCGCAAAGGAAAAACTACAGGCGGGAGAAAAAGCGAGTGGCCAGTGAGCTGATGAACTCGCTGCAGGATCCTGCGGTTATTGTGCTGGCCGATTGGCTGAAGGTTCGAGGAACCCTAAAATCCTGGACAAAACTCTGGTGTGTTTTGAAACCGGGCCTGTTGCTTATTTACAAGAGCCAAAAGACAAAGAGCAGTCACTGGGTGGGCACGGTGATGCTCACCTCCTGCCAGGTGATCGAGCGTCCCAGTAAAAAGGATGGCTTCTGCTTCAAGCTTTTCCATCCCCTGGAGCAGTCCATTTGGGCACCGAGGGGTCCAGACAAGGAAACCATTGGTGCCGTTGTCCAACCGCTACCAACCGCCTACCTGATCTTCCGAGCTCCCAGCCAGGCGGCCGGCAAGTGCTGGATGGACGCCTTGGAGCTGTCCCTGAGATGTTCGGCCCTCCTGTTGCGTTCCAATAGCAGCACGGGAGCTGCTCCTTCGTCCAGCTACGTGGGTGAACCGCTGCCCGTCTCCCACGAGACGCAATGGTCGGAGGCGGACTACGAGAAGCACTTCAACGATCACGATCTAGACGCAGACAGCCAGAATGAAGCACCCAATGCCGTCATGTCTGGTCTGGAATCAGAATCGGAATCGGATCCGGCTGAGCCGGCGCAGGAAGATGGCGTCGAGCAGCCTTGTGAGGAGACGTCGTATGTGCCCTTCACCGAGGAGGAGTTTGGCGAGCAAGGGGAGCAGGTAGAGGAGTTGGCAGAGGAGAACAAGAGCCTAATTTGGTGCATTGTCAAGCAGGTGCGACCGGGAATGGATCTGAGCAAGGTAGTGCTGCCCACTTTCATCCTGGAGCCGCGTTCATTCCTGGACAAGCTATCAGACTCGTACTACCACGCGGACTTGCTCTCCAAGGCCGTGCAAGAGGATGATGCTTTTACGCGCATGAAGCTTGTCGTGCAATGGTACCTGTCCAGTTTTTACAAGAAGCCCAAGGGCCTGAAGAAGCCCTACAATCCGATTCTGGGCGAGCGATTCCGCTGCTATTGGCAGCACCCCAGCGGCAGCCGGACCTTCTACATCGCGGAACAGGTCTCGCACCATCCGCCCGTCTCGGCGTTCTACGTGACGAACCGCGAGGACGGCTTCAGTATCACCTGCTCCATCCTGGCGAAATCGAAGTTCTACGGCAACAGCACTTCGGCGGTGCTCGAGGGCGCTGCCACGATGACGTTGCTGCCGCGCGGTGAGTGCTATACGGCGACCACGCCTTATGCCCACTGCAAGGGCATACTGATGGGCACGCTCTCCATGGAGCTGGGCGGCAAGATAAACATCGAGTGCGAGAACACCGGTTACAGGACGGAGCTGGAATTCAAGCTGAAGCCGTTCCTCGGCGGCGCCGATGCCACCAATGTGGTCGTGGGCAAGATCAAGCTGGGCAAGGAGACCCTGGCCACCATCAACGGGCACTGGGACAAGGAGTGCCGCGTGAAGGACTCGAAGACGGGGGAGGAGACGTTGCTATTCAAGGTGGACGCCGAGACGCGTTCCAAGCGGCTCACCAGATACCTGGTGCCGCTGGAAGCGCAGGAGCCCAACGAATCGCAACGTATGTGGCAGCACGTCTCCGAGGCGATTGCGCGCGAGGATCAGGTGGCCGCCACCGAGGAGAAGACCGTGCTGGAGGAGCGACAGCGGGCGGAGGCCAAGACGCGGGCCAGCACCGATTCCATTCACATGCCGGAACTCTTCGAGCTGGACAGCTACGGCCAGTGGCTGTACAAGTACGCCGATCTGCGGCCCTGGGACTCGCGCAACGATGTCCGCCAGTACGAGTGCCAGTTCAAGGTGCTCACCCAGACGCGACACAAGTCGGTGCCCATTGTCCACGGCGCCGAGATGATCCATCCCCTGCGCAGCTCCTTGGAGACGCTCTCCCGCACCCAAAGACAAGCAGGACAGGCCATATCGCCGGGCGGCTCCGCGGTGCCCAAGGCCAAGAACAAGAGCCTGGTGTTGGCACCGCGCGATACCAACTCAGACTCCAGCCAGTCGCCGCAGGGAGCGGTCAAGCGCAGCTCCTCCAGCATTAAGCAACTCGCCTTGGCAGTGGACCAGGTGAACCGCGTGCTGGAGGTCCACACCCGGCAGCTGAACGAGATCAGCCAGCGCCTGGAGCGCATGCAGTATTCGCCTCCGGCTAGCAACATGAGCGTGCAATCGCATCATTTGCTGGGCGGCGGCGTTTCGCAATCGACGGTGATCAAGTCGCTGATCTACGCTCTGATCGGGCTGACCTTTAGCCTGATCCTGCGATGGCTGTTCAAGTAGACAGGCGGAGTCCGTCGTTGTTGATGTCATTTCTTTTAGGCCTAAGAAAACTTTTGGTCAACCTATAGATAACAAACATATATATAAACACCCTAGAGTACAGACAACGTATATGCTTTACTGAATTGTACATTTGGTCCTACTCAAATGCCTTCGCACGCTGCCAGAGATTCAAACCCGACCGAGGCGCGTGACCAGAACATCCGTTGTGAGAAAGTCTAATCACGAACTATGTATAAGATTAAGTGTTTGTCGTATGTAAGTCCCAACAATCCAAGTCTCTCCCGCAGACAACGTCCATGTGCAAGTCTCTTCACCATTGTATCCCTCTAAATTCTTTACTCAAGCTAGACCCGTTGGGTAGGTTAGGATGTCGGATATATATATTTAAATATACACATACGTACGAGTAGATGCACCAGATTTCGTAAAAATTCCAATTAAACCGATTATAGTTCGCTTTTCCGTTTCCTTCTATATACTGTTATTGTTAATGACACGACTTAGGGTGGAAAATGAGGATAATATGCTCGAGAGGCTTCCTGCCCTTTAAATCACCACTTATAGACATACCTTAGAGATTTAACGCGAAAAGTGCTTATAATAACTAATTTTAGTATCTCTTATACACAAATTGTTTTTCCTTTTTTTCCCAATACCTGCAAACCTTAAAACTTAATAAACTTCCCTTTTTCAAATCTA +>XM_007369094.1 Dichomitus squalens LYAD-421 SS1 uncharacterized protein (DICSQDRAFT_149347), partial mRNA +ATGTCGCTCCAGGTCAACCTCTCAGGCAGGGAGCTCGCCCAGGCGTACCAAGATGTCATCAATGCCCGCGGCATAGATTGGGCGATCTTCACCTACGACAAAGGATCCAACGATCTCAAGGTGCAAGCAACCGGAGATGGAGGTCTCGAGGAGCTTCAGGAGGAGTTCTCGGACGGCCGGATGCAGTACGCCTTTGCTCGCGTCAAAGATCCAAACAGTGAACTCCCTAAGTTCGTGCAGATCAACTGGTGCGGTGACGGTGTGCCCGTCGCGAGGAAGGGTCTCTTCCATACCCATTCAAGTGCTGTCGCCAACTTCCTCCGCGGTACCCATGTTGTTATCAGCGCTCGCAATGAGGCCGACGTAGAGCCATCCTTCATCATGTCCCGTGTCAAGGCTGCGTCCGGAGTCAACTATACGGCTCAGAAAGAAGCACCGCGCAAGTTCGAGCCTATCACCCCCGTTGGTACGAACTATGTCCCTGTAGGCAGACCTGACATGGCCGCCATTCGTCAAGGCCCTGCCAAACCACCACCGGCACCCGCCGCAGCGAAGCCAGCTATCCCAACTGCCGCACGTCCTGTCCCAATGGCTCCCTCGCCTGCTGCAGGATTAGGGAAAGCTCCCGTGGCTAGCAAGGCCCCTGCGGACGCATGGCCGGACGAGTCCAATAGCTTCGCGCCGCCCCCACCTCCGCCTGCTGCTTCACGCCCGACTCCTGCGGCGAGCTTCGCCAAACCTGCCCCTGCAGCTTCTCCAGCAGCAGCGCGGTTCTCTCCCACCGTTACAACTCCAGTTGCCGCTTCAAACGTCCCCACGAAGCCTGCTGAAGAGGACAAGATCGGTCCAGTGGGTACCGCGTATACCCCAATCAAGCTTCAGCCCAAGAAGCTCGTCAATCCGTTCGCCGCGATGGAGGCGAAGAACCAAACTGAAACTACTGCGCCAAGGTCTTCGCCTGCTGGTAGTGCCAAGAAGTTGACTTGGAGCGAGCGCCAGGCCCTCGCGAAAAAGCAACAGGAAGAGGAGGAAGCTCGCGCGAAATCTGCATTCGGCTCTCAGCCTACTCCTCCGCCTACCTCCGCGTTCCGTACTGGTGGGAGTATTCCAGAGCCAGAGGAGGAATTCGAGGCGCCTCCTCCGCCCCCGCCACCTCCCGCGATTGCCAGTGCGAGCCGTCCTATTCCTGTTCCGGAGCCCGAATCTCAAGCAGAGGCTCCTCCGCCACCTCCCCCGCCCCTGCCCCCGCCACCGCCACCGCCCCCTGCTCCTACGGTATATCACGAGCCAGAACCTGCGAGGGAGGCCCCTCCACCCCCACCGCCTCCGCCACCACCTCCACCGCCGCCCGGGCCTGCAGCACCAGTCGCTCCGCCGGCTCCCCCTACACCCGAGCCCCAGCCCCAGCCCCAGTCCGAACACGCTCCAGACGCAACTGCGCATTCGGGTCAAGGCATCTGCGCTATTGTGCAGTATTCATATGAGGCTCTCGAGGATAACGAGATGGACCTCGTCGAGGGCGAGCTCATCGAGCAGATCGAGCAGCTAGATGAAGGATGGTGGTCCGGCGTTGGTGCGAACGGGACGAAGCAGGGCCTCTTTCCGGCGAACTATGTCGAGATCATCGAAGCTCAGGAAGCTCAGGCTGCTACCCCCCCTCCGCCGTCGCCTCCCCCTCCCCCGCCCGCTCCTCCTGCCCCGCCTCCACCTCCCGTTGCTGCCCAGCCGGAGCCGGAGCCCGCGCCCGAGGAAGATCTTGGGTCGTGGGCAATCGCGCTCTACGATTACGAAGCGGGCGAGGATAACGAGATTTCGTTCAAGGAGGGTGATAGAATCACGCATATTGAGGCTGTGTCGGATGACTGGTGGCAAGGTACCGAGCCTAACGGCAATGTCGGCTTGTTCCCCGCGAACTACGTCGAACTTCAAGCTTGA +>XM_039761524.1 PREDICTED: Polypterus senegalus RAB, member of RAS oncogene family-like 2 (rabl2), mRNA +TAGAGTGATCTGAATTACGTGCATACATTTTTATACCGCTGAAGATGTGCAATGCTTTTACTGGACATTTTTATATAATTATTTTTTCTTCCCGATTGCTAACATTGGCATATGTGAATGATAAAACAAAAAACGCCGGCTTTTGGTATGGCTATTGCCGGAAGTAGACAGCACAGTGGCGCAGGCAGACGAATAGACAACCTACATTTTCCTGTTGAGGGTCCTTTTTTAGCGTCGGTTGCGTAGAAACTGCTGTTGTAAATTTTTGAAGCACTTTCTCAATAACGAAGTATCGCTCAGGCTACATCGATAATTAACCGAGTCGTGGTTAATAGGAGTCCAGTCAAACGGCGCTGCTTTGTATTTTTGTTCAACTGAACAACTTCTAACTGATAATCTTGTATAAAGAGTCGCGACGGTGGAGCAATTTGGCGAATGATGAATGGAAGGGATTTGGTTATCTCTGATGATTAATTAAAACGGAGCAAAAAGAAAAGCCTAACCGGAGAAGTCGAAGGCGGTAGTGGATGAAGGGGCTGTGTGCCCGTATTTAGTTTACCGTAGATGTTCGCTGCTTGCTCCTAAGGTCGGGATCGCGTTTTTACCTCCGCAAAGCCAAAAGATGGCCGAGAATGCTGCTGGTTTTTCCGATCTGAATCAAGATAAGTATGACAAAGATGAGCTTAAAATCATCTGTTTGGGCGACAGCGCTGTTGGAAAATCAAAGTTGATGGAGAGATTCCTCATGCAAGTGTATCATTCCAAAGACCTGTCTACCTACGCACTCACACTTTACAAATATCCAACAACTGTGGATGGAAAAACTATCTTAGTAGATTTTTGGGATACTGCTGGACAGGAGAAATTTCAGAGTATGCATCCTTCTTACTACCACAAAGCTCATGCCTGCATTATGGTTTTTGACATTCAGAGAAAAATAACCTATAAAAATCTTGGCAACTGGTACAAGGAATTAAGGGAGTATCGCCCAGAAATCCCATGCATATTAGTTGCAAATAAAATCGATGCTGACATGAAGGTAACCCAGAAAAACTTCAGTTTTGCTAAAAAGCACGGACTTCCCTTCTATTTTGTTTCTGCTGCAGATGGCACAAATGTAGTTAAGCTGTTCAGAGATGCAATCAAACTGGCATTATCTTATAAGCTAAATTCCTGTGATTTCATGGATGAAGTCATGCGCGAATTAGAGAACTTTGACATGGACAAGAAAGATGACTACTCAGATAAAGAAGATGACAGTTTAAAGGAAGACAACATCAAAAAGACATGACCTACCCTGGTCTTCATAAAATGATTTGGGTTTTAAGCGGAATAGTATCTTATTTTATTTTCCTGACCGTCTTTGAAAGGAGAATCTGTTTGACTGCTGAAAACACACCAGTGAGAAATATACATTACCTAAAATATCTGACCATGATAAACTCTATTCAAATTCAGATTTGTCCCACCAGAAAAAAAACATTGTACTGTGCAGACTCCTATTGTTCCACTTTATGAATTTGAGTCCTGTCAATTGATTTTGTTGCTTTATTTAAAACTGTGAATATTACTGCCACAGCCAAAAGGT +>XM_051965029.1 PREDICTED: Antechinus flavipes proline rich and Gla domain 4 (LOC127540371), mRNA +TGAGCCCGCCGCCAGCACCCCGCAGCCAGCGCTCGCGTCCGGTGCCGGGGCAGCCGTCGCAGCAGCAGGTTTCTCCCGGGAGCGCGGCTGAGCGGTGCCGGCTGGCTGACCCGGAATCAGGAGCCCAGGCGCTCAGCCTCCGCCGACCCCGCTGACTTAGAAAGAAGTCGGGGCAAAATCCGGGATCCACCCCGGGCCTGGGAGAGACCGGACGGCCGCTCCGGAGCATGTGCCAGCTGCTCCAGATGCCAGACTATGTTTAAACTTTTGGTTCTGCTCAGCACTTTGCCTGCTATTACTGTTGCGTTTCCTCCCTGCCTAAGAAGTCCCCAGGAGTCTACACATGCTGGAAAAGACGTCTTTACATCAAAAAAAGAAGCCAGCATCTTCATCCATAGACGTCTCCTCCACAATAGATTTGACTTGGAACTCTTCACTCCTGGAGATCTAGAAAGAGAGTGTCATGAGGAACTGTGCAACTATGAGGAAGCCAGGGAGATCTTTGGGGATGACGACAAAACGATGGCATTTTGGAAGGATTATTCAGTTCGAGGACCAAGCACAAGATCAGATGGTGAGAGAGAGAAGATCGATGTTATGGGACTTCTGACTGGATTAATTGCAGCTGGAGTGTTCTTGGTTATCACTGGATTACTTGGTTATTATTTCTGCATCACCAAGTGCACAAGAAGAAGACAGCCATGTTCCTCAGCTGTCTATGTAAGAACGGGTCGACACCATCCAACTATTATTTTTAGAAGACATGAGGAATCTGCCTTAACCCCGTCACCTCTTCCCCCAGAGGATTCAGGACTGCCTTCTTACGAACAAGCTGTGGCACTGACTGGAAAATATGATGTTCCGCCTCCTCCATATCCTGGGCCAGCAAGAGGGTTTAAGGTGTTTAAAAAGTCTATGTCACTACCTTCTCACTAAATCCAATGTCAATATGAGAAATGGATGTTTATTCAAAGAAGGAGCCATGATTCAGTTCTCCAGTAGCTTAAAAGGCTGGCCATTCCATTCCTGTAAAGGTATTAAGATGCCTGGTCTTTTGCTCCAGATAGTTGGACTTTTACTCTGACATCAGAATAATGAGGGAATCGGTTTCATTTTGTGTGGGTATGTGTATGTAGGTAGGAGGCGAGCCCTGATTTAAATTTAGGAGTATCCAGATCATTAGCCCTAATCAGCTAAATTAGGCAAAAGATTACTAATTACTGAAGGAAAAGCCACATATCCACTATAGCAGAAAGGGTTCTAGATTGATTATGTTGAGAACTGAATTAATGTTAATACAAGACTTTTTTTGTTTCGAGTCATCTTGAGTCAAGATACTATATTTTATCCCTGTTTATTTTAATTCTCCAGCAAAAGAAACCTTGTGAAAAAATTTTAAATCGCATGATGAATCAGTGGTCTTTAAAACATAAAAGGAATCCTAATGCTTATTGTATATAAAATAGCATATGATATTCCGTACAGGTATTTGTACTTAAAAGATTATGTCCAGTTGTACAATGGTGGGAAAATACCTTCATTTTTCTTTTGATTCAATGGCTGCTGCCATTAGAACTTGGGGGTCAGAGGTACAGTGAGACAAAGTTGCAGATTATAGTTCTAATTCTTTCCTATCACCAAAAGTGTTTCTAGAACCTAGAATCTCTAGATTCTGTATGAATCTGCCCGTCCCATGAGGAAATAGATGAATTCCGTCTGTATAATTATATGTTTGGTTCATATGAGATTACTCAGGTTGGAAGTTTTATTCTAGCTTATAACTAATAGTTTAATCAGGAAAGGATAATTTATTTATTCTCTTATTATCTATGTATAGTGGTTAAAGATGTATATGACCCTTTGCATCTCTGGGATATGTTTTCTCAGACATTAAAGCACACTTAAAATGATCACTCAA +>XM_019516974.1 PREDICTED: Gavialis gangeticus B double prime 1, subunit of RNA polymerase III transcription initiation factor IIIB (BDP1), transcript variant X7, mRNA +ACAAGTTTGTTCTACATGGTATTTCATGACACTTTTTTAATTGTTTGTAGAAATGAAAGGGTGGGTAGTGCAAGTGATGCTGGAGAAGCCATTAAACCTGCAGATGGACCCTTGCAGAGGAGAAAAAGAATATCCACTCTGCCTAACTTGGCAAAACCCAGAGTTACGGCTCTAACTGCACAACGGTTGGTATCAAAGCCTGCTCAAAAACAAGTACCTCAATCTGTCAGTGGCAACACTTCACGGAAGGAATCCTCTGCATCAGATAAGACCAATAGTGAAAGCTCTCCAAAGTCTCCCAATCTGCCTGAAAAGAAAACACCTGTCCCACAAGTGCCACAGTTTTCCCCACTTAAAAAATCAAGAAGCAAAGAGCCAAATGCCAGTATAATTGCTCATAAAAATGATGAAACTCTGCAGAAGAGCACGCTCTCCCCTCTCAAGGAGAGACCTACCCAAGGAAGATCAAAAGAAGATGAAATGTCGCATGCAAAATCTACTCCAGCAAAAGAAAAAAAAAGGTGCTCAGATCGTGAAAGGATCCTTAAAGCCCAGAAGCTGAGAGAGATGCTCAAAGAAGAGCTGAGGAAAGAAAAACTGAAACATGGGAAATCCAGACAGAAGGTGGCTGAAGGTTTCACTGCAGCAGATCGTTCCAAAATGACCATGAGAGACTTGATATACTTCCTGCCACAAAACAATCCCATGAAGTCTTCACTAATAGACGAAAAAACTTCTGCATCAAGCCAAATGAAAGAATCAGAAGAGAAGAGTGCTCCTGTTCATGAAGATGAAGAGGAAGTTGCTCAGGCAGAGGATGAGGAGGAGAATCACGATGATAAGCTTCTAGTTCCTCGAGTGAAAGTGGCAGAAGATGGCTCAATTATTCTGGATGAAGAAAGTTTAACAGTGGAAGTTTTAAGGACTAAAGGGCCAAGTGTTGTAGAAGACAATGATCCTATTTTTGAGCGTGGCTCTACAACTACCTATTCTAGTTTTAGGAAAAGCTTTTACACCAAGCCATGGTCAAATAAAGAAACTGATATGTTCTTCCTGGCCATCAGCATGGTAGGAACAGACTTCTCCCTGATTGGTCAGCTGTTTCCTCACAGAGCAAGATCAGAAATTAAGAACAAGTTTAAACGTGAGGAAAAAACAAATGGATGGAGGATAGACAAAGCCTTCAAGGAAAAGCGGCCATTTGACTTTGAATTCTTTGCACAGCTGCTTGGGAAAGTTCTAGCAGATGAGGAAAAGAGGAAACAAAAGGTGATTAGAAGTCAAAGATCAAAAGAAAAGAAGCCACAAAAAGCTCGGAAAAAGCAAAAAGTAGCTCACGCTGAGAATGAAAAAGCTGCTAATGAACAAGATCAAGAGGATGTCGGAATTTCTGATGCAGAAACTGAAGTGGATGCTGTGACAGCTGAGAAGGAGAATGAAGAATCTTTGAATGTTTCTGAACCAGCAGAAGGGCAGCTCCTGTCAGAGCCAGGGGTAACCAAAAAGAAAAGAAAACAGAAGAAAAGAAATTCTGAAAAGGAACTTCAGAAACTTGCTGATGCAGAAACAGGAGTTGATGCTGTGACAGCTGAGAGAGACAATGAAGAAACTGTAAATATTTCTGAACCAGTGGACGAACAGATTGCATCTGAGCTAGTGGTACCAAAAAAGAAAAGAAAGCAGAAGAAGAAAAATCTTGAAAAGGAACTTGAAAATCTTTCTGATGTGGAAACAGGAGTTAATACTTTGATAGCTGAAAAAGAGAACGAGGATTCTTTGAATCCTTCTGAGCTGACAGAAGAACAGATCACATCGGAGCCTATGGTAAAAAGGAAAAGAAAAGAAAAGAAGAAGAATTCTGATCAGGGCATGGAGACTCTTGCGAAAGAGACAGCAGTTATTTTGAAACCAGCTAAGGGAGAAAAATCCAGCAGGAAACAAAAAAATACATCTGGCACAAACAGTGATGATTCTACTGAATGCAGGGAGGAACTGGGTATTCATAATGAAGAAATGTTTTGTGAGACTCCTGTTCAAGTGGAGCAAGTCTTCGATTCCTCCTTACAACTGAATGATGAAAATGAGGAAGATAGTGATTTTGATTTACACAGCTTTCAAGATAGTAATAATGTAACAGAAGCAGAACCTGTTGAACCAGAAATCACCAGTGAGTCTCAGGAATGGCAGCTTTCAAAATCTCAAGTTTTGGTTAACAGAAACCAAGGAAGTAGTGATCAAACCACTGAATCAAAGAACAATGAAGTATTTGACTTATGTGAGCCAGGTGACAAGGAGAGTGCAGCAGGAAGAGGCTGTGATACAAAGTCCGAAACAATGGAATCTGAAAAAGCTGTTGCTGGGAAATCAGGAGTGAGAGGACGTTTGCAGAGACCTAAGCCCAACTTAGCAAGAGGATCTGGAAAGAGAGAAGGAGCAGTGCAAGAAAAATCAGAGGTCAGGGCTCCCCCTCCAGAGCTTATGGAAGGAGCAGAAAAGGATTCTGTGGACGATAGTGAAGGCAAGATGTTGGAAGTTGCCAGAGATGAAACCACAGGAAGAGAGAACAAAGACTCGGAGACTGAAGCTCAAGAGACTGAGAAAGTTGTTACTGGAAGGACAGCAGTGAGAGGGCGTCAGCAGAGATTTAAACCTAACCTGGTAGGAGCTTCTGGAAAGAAGAATGAGCCTCTTCAGGCAGAAAGAGAAGATAAAACTCTTCATTCAGAGACTGATGGAAAAACAGAAGAAAAGAATAGTAACCAAGGTAACAAATCTGATGTTCCCAGAGTGGAAACAACAAAAAAAGATGGTAGAGTCTCAGGGACTGAATCTCAGTCTGAAGAAACTGCTCAGTCACAAGAAGATGGCAAACAGAGTGTACTCAAACCAGCACCACTAATGAGGAGTCGAATGCAGAGGCCAAAACCAAATGTGGAGAGGGCAGCTGTGAGACAGGGAACACTGATACTGCAGACAGATCTTGGAAAGGCAAAAACTGATTGTGGTGAAGCAGTGGAGAAAGATTTGATACACTGTGAAGACAAAACAGGCGGTTCACTTCTCACTGCATCTGATGCCATCCAGGCACACTTGGAAGTATTAGAGAAGGAAGCTGCTGCAAATCCTGAGAAGTTGGCTTCCACACATGAAAACCCGCATTCCCTGAAAGAGTCCTTAGAATCTGAGAGCTGTGAACAAGTAAAAACAATTCCTGGAGGTGATTTGAAAACTGGTTCCGATTCTGATACAGGAGATTCAGGTTCTCAAAAACAAGAAAGAAAAGATAAGCCAGCACAACTATTAAGGGGTCAATTTCAAAGGCCAAAGCCTAATTTAGGAAGGTCAGCTGGAAAAAGGGAAGTGTCAGGAGCAGATAAAGATGTATCTGATGACAACACTGATAAAGAAGAAAAAAGTTTGCAGTCTGACTGTGAATGCAGCTTGCTTCCTGACCTAGACAAAACAGCGAAATGTGATGTCCTGCCTTTAGGAAAGAACGACCTTGCTGACTCTCGGGAGGTATCTGTAATACCATTAGTTAATCAGTCCCCAAAGAAGCTGTCAGGATCTGAGAGTGATGAACCCAGCAGATCTTCTCCACCTGCAGATAACGAGGAAATTGCTGCACCTGTTGCTGTAGGGCTTTACAATAAAAATATCCCTCAAGAACAAAGTAAACCAAGCTCTCTTCAACCAGCCCAGTTAGTGAGAGGCAGATTCCAGAGGCCCAGGCCAAATATAGGAAGAGGAGTTGGGAGGAAAGAAACACGACCAATGGAAAAAAATGAATCTGAAGTTGAGCAATCAATACAGCATAAACATGAATCTTCCAGTAGCTCATTGACCACAGTAAAGGGTGAAAATGAAGTCATATGTTCTGAACCTTCAGAAAAATTGTTGGATTGTGAAAAACAGACAGAACAAGAAGAATCTCAAGTGCCCAGTATTTTACAAAATGTGTCAAATGAACAAAGCAGCATTAAAAAATCCAGTTCTCTAGAAAATAAACCAGGTGCCATCAGACCAGCACAGCTTATGAGGCATCGGTTCCGGGGGACTAGACCAAGCATAAGAAGGCTGTCTAGCAAGACAGGAGAACTATCAGCAGAAAAGAATACTGCTCCAGTTGAGAGAGAAGCAGGACAAATGGAAGCGAGTCTTCTGGAACATGAAGATTGTAGTGTTAGTTTTTCTACCAAAGCTGAAGTGGAGACACTGACTGTCCTGGAGGATTTGTCCAGAAAAGATGATCCGGATTTCAGTGCTGTCACGTCTTCTCCGAAAAAAATCATTCGATCAGAAGAAGTTTCTTCCTCTGAGAAATCATTGAAATGCAATAGTCAGAGAAATGAAGTGGGCTGTGTGTCAACAGAAGTTGTGGAAAGCCTTCCAGATAATTCTGAAGGGTCGAGTGATAAATTTACTTCTGAAGAAGAAAGCAAGCCAAGTAAGAGAGAACCTTCACAGTTACGGAAAGGCCATCTACAGAGGCCTAAGCCAAATCTAGTGAAAGCAACTAGAAGGAGAGAAGTGCCAGATGAGGGAGAAAGCACAACTGAGGATAAGTGTGATGCCGGAAATGCAGATGAGGATCTCATTCTGTGTGGGAGTAGCAAATCAGAAAAATTAAATGTTTTAGTGCATGGCTCTGCTAAGTTAGCAGATGCAGCGTCACCTTCAGAGGTTTCAAGAAAAAATATTTCTGAGGAATTGACCCATAAAAGAAGCAGGCAATTCAGAAAATTCCAATCTCTGGAGAGATCGTCAGAGAGTGAAAGTCAAATAGAACAAGATGATTCTCAGCCCTCTGCTGCTGAAGAGAAGACTTCAGACAAGCTGACAAGAAGGCGGCGGAGAAGATCATCCAAACAAATAGCCCTGCCGAAACGAATCTCTGAGCTAAGAGCAGCTACTTCATTTTCATCTGAATTTGAGGCGGATCATTCTGAAAAGGGGAAATGGTGTCGGAAGTTCAAACCAAATGTCACCAGAGGCAGAGGCTCAAAACCTGCTCGCAGCAAGAAATCTGGGAAAGACCATAGGAGTTCCAAGGTAACCTTGGTGACTCTCAGGGCTTCACAGGAAGAGGATGAAGATGAGGCAGATGACTTTGAACCGGATGATGAAGATGAGTGTTTTGCTCCAGAAGAAGTAAATAAAGCTCCAGTGTTTGTTCCTGTAGGTCTTCGATCTCCAAAACCTGTTCCTGTCCAGATTGAGGAAACCATGGAAGAGCTTGAAATTTCTGTGAATGTTCCAGATGTGCCATGTGTCACAACTGCTGAATCTGTGTCTCCTGATTTAAATGTACCTGTCCAAGCTGGGATACAAAGTAGTGAAAATTCGAATATCATACAAATTGTGGGAGTGACTACATATGAAAATCCAGAGACAGACACAGGGGCTAATGATGGAAGTACAGAAGCTGCCATGACCTTACTTGCAATGGGAGATCCAATGTTCCAGTTAAAAATAAGCGCTCAAGGACGGACACAAGTATTGCCTGAGCAAGATGAGCGGGATGTGGCTGATAGCTTTGTAAATCAACCTTATGCAGAGCACAGTGCAGTTCTTAGCGAGCATTCACTTCCTTCACCTGCTGCTAATAACAAACTGGTTCCACTGGAGGATGGAAATAAAATCATTCTAGAGGACCAAAGCACTGGAACGGGAATAGGTGGAGAAGACTATGCCAATGAAAATGCTGGACACAGCAGTGATCATTCTGTCCCTAAAGCTTGTAACACAAGATTGACAAGATGCCTTTTGCCAAGGCCTAAACCAAATGTTGGAATATTGGAAAGAAATGGGGATGCTTGTCAGAAATCTTACAGTCCAGAAATAGTTGTGGAACAATTGGTGCAAGTTGAAAGTGAGGACAAAACTCTAAGTGACAGTGCAGAAGAGGAGGTGGTGGAACAGAAGATCCGATCAAGTGAGAATAGTCCTTCCAGTCCAGATGATACTGCAGCCAGAAGCACAGACCTTGTCAAACAAGGAGACAAAGACGAGAGAACAGAAAAAGAGATGAGAGAAACTTGGGAAGCTCTGGGAGAGGTAAAAGCTCTCATCACATCTCCAGAGACAGAGTCTTGTCAACCTGGGCTGGGGAATGATCCTGGTCAAAGTTTTACATTTGGGTTTCGTGAAGGAACTTCCTGTGATGCTGAGAACAACTTATATGCAGTTGAATTACTTCAGACTGAGGCAAGTGCTCACAAACTTGATCATCAGTCCTTAACCAGCTCAAAGGAGACTTCAGCAGTAAGTGGTTGCGACAATGAATATCAACCAGACCTGGAAGAACAAACATTTATTTTAACTCTGGTGGAAATCCCAACTGACTCTAAAGAATACAGTGATGGGTCTGTTTCACTTGGACATACCTCAGAACCATTGCTGCCAGCCCCAATAATACTCAGTCCAGTCAATACAGATGGGGCAAAAACGGTGGGAAAGCAGAGCATTGGATCCCTGACACCCATAGTTGGTGAAGTTCTTGCTCCATCCTTAGACAACTGTACAGAAATTGAAGGACCACAAAGAACTTTAACAGAGCCATTTCTTAATTTGGAGTCAACGCCTCGGAAAAGGCGTGCTACTGATACTGAAGATAGCAATGTTCCTCCTGCCAAGAGGAGTCCAGCAACTTCAACAGAAGATAAGCTGGAATCTTCAGTTAAATCGATACACGCTCCAACAGAAGTTGCTGGAAAACTTTTGGAAAACTTGAGGTCTTTGAAGAAGAAAAATGTATCTACCTCAGCGTCTTTGTCTACATCTGCAGATTGGCAACTAGAACAAGGAGGCCAACATAAATCTTTGCAGAATGTAGAAACTTTACCACTTGAAGATAAATCAGCATGCAAATATTTAAATGAAGGGGGATCTGGAATATGCCCTGAGATAAAAATAGGAGCCAGTGAGCAAGGACTATCTGTGGAGGTTCATGAACCTGAACAGTCAGGACATGCTGGAACTATAGCAGCCCCATCAAAAACCCTATTAGTCAGGCCTGGGCGAAAACCTCTGGGATTTTTATCCTTAATTTGCAAAAAGAGTAGCCCTGATGTTGGAGAAGACAGTAAAGGGAACAAAGAGAAATTCCAAAAACCTCAAATACCTGCCTCAAAGCGAAGCCTGAAAAGGTCTGCTCCATCCACAGAGGACAAGAGGCAGACTCTAGAGCCATGTTCCCTTCCTTCTACAAGCACATCATTTGCTGAAGGAGAGAATACAGCAGCTACTGTAGTAAAGTTCAGTGCATCTTCAAGGGTTTTAGACTTCAGATCCTAGGTTTGATATCTGGGCTGTGGTTTGGCAGTTGTCTGCAAAGATGTGGACCTGATAGACCCTCTGTCTTGCTGCACAGAAGCAGAGAACTACATCCATGCATCACACCCTCAGAATCTCAGC +>XM_006020837.2 PREDICTED: Alligator sinensis neuronal differentiation 6 (NEUROD6), transcript variant X5, mRNA +AGGTTGACAACCCTTAGGACCTTTCATAATATAAATCTTAATACATAAATTCCTATGGAGAGTAATGGGGTTTTAACCTTTGTTCTATTATACGGATTATACTATTCCATATAGAATGTAATAAATGTAATGAATAGTGCAGAACTTGCTCTCTCTAGCATTAGCCTCTTAACTTTTAAAATCTTGGCCACTTCAAAAACGTTTATCTTTAAAAAGAGGCCCAACCTAGATAAAGTACTAATGACCTTCAGCTTCTCATTGCAATAAGAAAATAAAGGTTGTGTGTTAATTGAGCTAAAGTGTCTAAAGTTCATGTACACCTAGACACACACCTGCCCACATGCACACACATGTGCACACACACATGCAATTTTGCTGTCTCCTCCTCTACAAAAAAAAGCCCAACCCGGATTTAAACAAAACTTTGAGAAAACAAAAATAATTGGATTGGGGACGAGAATATTAATGCCAAGCTTGGGCCCAATGTGAATTAAAGCAGATGAGTTATAAACCCTTCAAAAACAGGATTTATAATGGAAATGCTGACAAAGACCCATAACAATAGCAGCTCTGCCAGGGATTACTTTAATACTAAAACCGTATTCAATCTCACTTTTTAAAACAGAGATTACGGAGTCACTAAAAAGCTACAATACGTGACAATAGTAAAAGAAAACTTTAAATATTTTTCTATCTTTGACACTGCATTCTCACTTTAACTCTTGCTAATATATTGCTTGCGCCTGACATTTCACTCCTAAATAAAATAAAAAAGCACAAGGTGGAGTTTACCACAGGCTCCAAAGCAAGGCTTAGCTGAAAGGCTTTGTCAGCTTCATTTAACAGTTTCTTGTCTTGTTGATGAGAGAGACAAAAGGGTTAAGGCAGAAAGAACAGATAGTGCAAGAGAGACAGCTGACCGGGGAAGAGAAAATGACACTAGAAAAACAGAATGAAGAAAGGAGAAGAAAAAGAAGCAGTTGGAAAATGGATATGCAGCTAAATATTTCAAATCTCATCTACATTTTTAAAACAGAAAAGACCTTTTAATTTTTAAGGAAAAGGTTTAAGAGAAGGCAAGACACCTAGAAAGAAAAGTAAGGGGAAATTTTTCCGATTCTCACAAGTTATTAAGAAGGGCTGCACAGGAAGCAATGGGTGAAAAGTGAGTGTATACATCTATCTTGCAAAGCACTCGTTTCTAATGTCAGAACACGTTTATATTCTTGAAGCCTTCTAGTTTTCATCTAATGTCTTTTCTTTTTTTTTCCAGGGATATTACAAAAAGTCACTGATGAAAAGAATTTGAGTTTTTCTTCTATAGACTCCAGCAGGATGCTTTCTTCTATTATTTTGAGATCTGGAATAGCACACAACCCTTTAAACACATGCACACACAAAGATTGCTCACGAAAGTATCACCCAAGTATTATGCCCTCTTACACATAAAGCTAACCCTGTGTAGGTGTGCCCTAGTGCCTTCATTACTTTCTGATTTCTGGTTTCCTTTCACGGCTTTTTTTCTGGGTACCCAGATGCACAGATTGGGACCCTGTTCAATGCAACACAACACTTTAAATAAAGACTGCAATATTAACAACTACGGAGCAGTTGTACCTGCAGGTAGGGATAAAACTGAATGTTGGCATGTCTGACAATATAGACTGACTGCTAAACAGAAGCAGCTCCAGTAGAAATGTACCTACTGTATGTGAAATGCTGGTGCAGATTTTTTTTCTCTCTATCACTCTAACCTTCTGTGTTGATACATGAATGCTGGTACCCACTTACAGGGATGCCAGATGATCAGTGCAGAATGTAGGTCCCAGGAGAAAGGATCACATGGTTTTCTCTGCCTTGTGACGTCACTAGCAGATGGCATGGGTACCAGCTCTGGCAGTTGGCATCAATGTCACTTTTTAGAGATCAATGAGATAGTGCAGATATACACAGATCTAGACTCCAGGAGACGATGCGACATTCAGACTGAAAAGATTTGGAAGGCAAAAAATGAAAACTGATTGTTGAATGAAATAAAAAGCTAAGGTAACGTAAGATTATAGAACCATGTTAACACTACCGTTTGATGAGTCTGTTGTAATGCCAGAATCCCAGATGTGCAGAAAGTTTTCCAGAGAAAGTGAGGACCAAAAGCAAATTAAAAATCCAGAAAGCTTTTCAAAGCAGATTGTACTCCGAGGAAAGAATATCAAAAGGGCCGCTGGTGAAGACACAGAAAAAGAAGAGGAGGAAGAAGACAGAGAGGAGGAGGATGAGAATGGTTTACCTAGAAGGAGGGGCCTTAGGAAAAAAAAGACAAGCAAGATAAGAATGGAGAGGATCAAATTCAGGCGACAAGAAGCCAATGCTAGAGAAAGGAACAGGATGCATGGCCTTAATGATGCTCTGGACAATTTAAGGAAAGTGGTCCCTTGTTATTCTAAAACACAAAAACTGTCTAAAATAGAAACATTGAGATTAGCCAAAAACTATATTTGGGCTCTTTCTGAAATCCTGCGAATTGGCAAGAGACCTGACTTACTCACATTCGTCCAAAACCTGTGCAAAGGTCTGTCCCAGCCAACTACAAACTTGGTGGCGGGGTGCCTGCAGCTGAATGCTAGAAGTTTCTTGATGGGTCAAACCGGTGAAACTGCCCATCACACAAGGTCACCATATTCCAGCTTCTATCCTCCCTACCACAGCCCTGAGCTCAGCACTCCCCCAGGGCATGGAACTCTGGACAACTCCAAGTCTATGAAACCCTACAATTACTGCAGTGCTTATGAGTCCTTCTATGAAAGCACTTCCCCTGAGTGTGCCAGCCCACAGTTTGAAGGTCCCTTAAGTCCTCCCCCAATTAACTATAATGGGATATTTTCCCTGAAGCAAGAAGAAGGCTTGGACTATGGCAAAAATTACAATTATGGCATGCATTACTGTGCAGTGCCACCCAGGGGTCCCCTTGGGCAGAGCTCCATGTTCAGGTTGCCTACAGAGAGTCACTTCCCTTACGACTTACATCTGCGCAGCCAGTCTCTCACCATGCAAGATGAATTAAATGCAGTTTTTCATAATTAATGAGGAAAATGAAAATAAACAGTGGTCATTCACCTCCCCATCTAATTAAGATAAAGCAGATGCTTGTGCACTACGTAATTGGCACAACTCTAGTTAGCGTGTTTACTAGTTTCTAAAGTGTGATTCAACTATTGTGGGAATTTTCTATGTACTAATAAATCTTTTTTCCTATAAGTATTTTTCCTTTTTTTTTTTTGTCTGTAAACACTGTGAGATTCTGTTTCTTACCAGAGAATTTCCCCCACCCCCTGCCTTTTTTTCCCTATTCGCTTGATTTGTTGAACAGTGTGTCTAAACAATATCATTGAAATAAAGGCATACACACTGTATAAAGTCAATGTCTATTTTGATTGTACAATTTGTAATTATACAAATGCATGTTATTACATTCAGATGAATAAAAATAATGTATTTATAATGAGTAGAAATTATATATTATGTATTTAAGAAATGGATTTTAAAAATTCTGAAGAATTTTAAAAATCTATCCCTGAATTGAGATGGGCTTGTGGGTGTAGGGGTTGGGGGACAGCAATATTTAAAGCTATGCAAAAATAAAAAAAATTTTGGAGGATGGGAGGCCTGTAAGATTAAAAAAGAGGTGATCACCACTGACTGTTTGCTGACAGGGGCTAAATAATGTTAGACAATGTTGTCAAAATTTCACATCAGTTATTCTAAACCTAATCATACAACAGTATCAGCACCTTTTTGTATTATTCTGATTTCAGATGTAAAGGTTTGTTATAACAATGTATAACTGTGGTTTCGCACTACATATTTTAAATGCAATTAAACAGAGATGTTTCCACTTTTAAAGTATATCTCTTAGCTGTGA +>KM473888.1 Uncultured bacterium clone 2010ECS-StA#2600 16S ribosomal RNA gene, partial sequence +GGACCCGCACAAGTAGTGGAGCATGTGGTTTAATTCGAAGATACGCGCAGAACCTTACCAACACTTGACATGTTCGTCGCGACTTTAAGAGATTAAAGTTTTCGGTTCGGCCGGACGAAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGTTAAGTCCCGCAACGAGCGCAACCCCTATTACTAGTTGCCAGCACGTTATGGTGGGGACTCTAGTGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTATGTGTAGGGCTACACACGTGCTACAATGGACGGTACAGAGGGTCGCCAACCCGCGAGGGGGAG +>XR_005569779.1 PREDICTED: Styela clava uncharacterized LOC120344705 (LOC120344705), ncRNA +GCAAAAGCACTCTTAAAATAGCCCCGAAAATTTTGTAATGGTAAAGTATAGGAAGAATTTTCTGGGGGTTAAAGGCGGGGAAAGGTCCATAGAGAAATTCTCATTCGGCAAGATAGGCAGGAGCCCAAGGGACCCAAGCCTTATGGGACACGGTAATGGACATAACGATCATTTCAATATTATTTTGTTGAACACGGAGTGGACAAAGCGATGGTTTTGGCGTTATTGGACACGTAGTGGACATAACAATCGTTTTGTTGTTCTTTGACACGTTTTGAAGAAATCGCTTTTCTTTTTGATTACTGGATCAATTGCTTCGGTTGCCAATTTTCAGTGGTTAAAGATAGAATTTTTCTCCAGAAGGCTATTATTTTTATTCATTTCAAAATTTTCTGTGGACTTCAAGAGATTCGTTTTTTTTAAGTAATGGCATACTGCCCCTTGCAGTGCCGATACATGGATGCGCCAGCGAGGTGGATCTTCGTCTTTGGGCTTCTACACTTCATCCGAATTCTGAATCTGATAACGGACAAGACAACAACGACTGGAAGGTTAGATTTATAACAACAACTAACTTCACTGGAAGAATCTTGGAGGAGGTGAAGTGGAGGCTTCGTCCGAGCGCTGAGCATCGGCGGGAGTGAAGGAAGATCCTACTTCGTCTACATGTCACAACCAGATCTGCCTAGTTTCACAGCGATCTATGCTTGGACACCGGACCTCGCGGCTCGTGCGAATTGGTGATCACAAGAAAAATAGCGGCACACGTTTTTTATTTCGAACATTTCAGGAAGGCTTTGCTACGCTTGAGCGCCGAAGGATTCGTCATGGTTTTGCTATTGAAGCAAGGGAACAAGCTTCATTCTTGTGTTTTGGTATAATTTGTGAAGGATTTTATTATCATGAACAATTAAAAAGTCCGTTGAGTTAGGAATTTACCACTTTTAAATTCATTTTGGAATTCAAATATGGAGAATTTGAAGAGCTTTATTTCTACGTAGGAAACATCAAGCAAACAGCAAGAATTGGATTGGATTACTTCGTCATTGCAAAACGTTCCACAACATCACAATAAAACATCTTACATCATTCAATTGTTTTACTTGGGCATAACACAAGTGCATCCTGTAGAATTCATCACCGTCTCTCTAATCCAGCGTCTCTTTTTCCGAAAATATACTTGAACCGGGGCCTTAACTTGGACACTTGCTAGACTTAAATTTTCTTGGCGAGTTGCCGGATCTATGCATCCCTTGCAGAGACATTTTGCGCTTAAAATTACCCTCGGGCGTCTGTAAAATGTAATTTGTTTTAAATAAAATAACATTTGATTGTGACTCCTGTATTTGCTATCGGTGATGTTTCACTAATTTAATAAA +>XM_047271736.1 PREDICTED: Hydra vulgaris uncharacterized LOC124808573 (LOC124808573), mRNA +ATGTTAAAGTTCCAAACTGAAGATGAAGATGATGACCTACCTATAGTTTCGCAAAAGATTGAAGTTAAAGAAAAAGAGATAGTTCCTAGTTTAACACTGAAGTTAAGCAGAGTAAAAAAACCATTTGAATATGATGATGAGGATGACATACCAAAGTTATGCAAATCCTCAAGTAAACTAAAAAGTTTAAACTTAGATTCTGTGGCATTAAATTCAAGTAAAGTAGTTGATGATGACAATAGGGAAAAGTGTAAATGCATTGATAAGTTAAGGAAAATTGGTGATGATGGAGTTTCGTTTCGAGAGATGACAAATAAACAATTTCAATATGCTTTGTTTATGGACTTGCAGAAAAATTTTCGGCAAATCCAAGAATCACAAGCACAAATCCTTGATAAGCTTAAAATAATTAAACAAAGTGGAGATATTGATTTTGATGTGAATGTTGATGATATTGGTAGAGACCCTATTAATTCGATTGAGCAATTTGATGTAATGGAAAATATTTTAAATACAAGTTCTAATGCAAGAAAACGCAAGGTAAACCATAAAATATAGTAACAAGGTCAGTAATCTTTGCAAACCT +>XR_769696.1 PREDICTED: Tarenaya hassleriana uncharacterized LOC104800274 (LOC104800274), ncRNA +GCGGGCGGCGCCTCCTTCTCCTCGCCTTTGCGTCGCCTCGTGGATACCGGAGAATTCAAAGTCCCAGAGAATTTCCGTGTTCCTGGAAAGCCATTGTTGTTTCTCGAGCTTGCGAATCTGATGAATAGAAAAAAGTTCATGTGGATTCGGAATTTCACGGCTCATTCCGAATGTGTTGCACCGAGTGATGGAGGATGTCCCTTGTCCAATTCACCAACTATAATCTACTTGAACTGGACATGTTCATGAAGTGGACTTCGCTGCTGGAGATAGCACGATACCAAGCCCTCTGTTATTGTAATGGATGCTTTAAAATGAATCAAGCACTGAGTGTTTGTGTTTCTGCTCTTTCATCAGATATCCATCTGGTATTGTTGATTTGTTGTTCTTGCAGATTCTTATTTGGACCAGTGTTGTCAAATGGCGGCCATGGCCCCGCCATGGCGGGATGGCCTGGCGGATTTCAAGGTAGACGCCATGGTATTTGTATAGCGTGGCGTGTATGGCGTTTTCGCCATTGCGTGCGCCACATGGGGTTTTCCATTGTGGGTTATGGCGGCCATAGCCCCGCCATGGCGGAATTGCGTATTAAAAGGGAAAGTAAAGTCCAGAAAAAAAAAAAGGAAAACACAAAAATGGGAGATATCGAAGCGTCGGTCGAATAGTTTAAGATTTTGGAAATAGAAAAA +>XM_033481735.1 PREDICTED: Megalopta genalis pericentrin-like (LOC117226934), transcript variant X11, mRNA +GGCCTATAGATACAATACCACACTGTACATAGCTATTCGTATTTTTATAAATCGACAACGGTCAAACGTTTATCGAATCGGTGGACGGTTTGAGACACATGCTTTGAAATGTAATGGATGACGATTCTGCCACTGGATGTTATACAATTAATTATTAACATCGTCTATTGTTGGTCGATTATTAAACGATCGTCGATTTGATTTTATTAATGAAATGAGCAAAGTAACGGACGATGATGAACGTAGAAGACGCTCTTTGGAAGCAGGCAGAGAAATGCTGGAGAAATACAAGGCGGAAAGAATTAATAAAGCCAAAGGCCCGGGTCATAGTCAAACAGACGATGCATCGGACGAGGAATCTTTTCGTATCGACAAATCCATTGGACGCAGAGAATCTTACATGCACGAGGGTGTATCGTCGAGGGATGTCACCCAAAGCAGCGTCAGTATGAGCGAAGGAGAAGCCGACGGCGATTTGGAAGGACTCGCCGGGAGGGTAGCTCAATTGGAAGAGATGCTACAAGGAAAAGAAGCCATAGTCGAAGCTTTGCACGCCGAGATAGACCACTTAAGAGCAGAGGCTTCGTCCCCTAATTCTTCGCAGAGTCAAAACAGTAGCATTCATGGCAAAGATATTATATCGTTGTATCATACGAAGTTGCAGGAATTTGAGAAAGCTATAAATAAACGTGATAATTTGATAGAGGAGTTGACATGGTCCCTGCAACAAGCACTATCTGCCAGAGATAATCTTGTTACTCAGTTAAGTTCTTTAAATGCTGTACAAATTCCGGATAAAGGTCGGGCTGGTACTGTAAATAGCGCAAACATGCAGGACAAGATCGACGCCTTGGAAGCTACTCTAAGCAATCAGAGATCGATAATAGAAAAATTGAACGGTCAGCTGATACAGTCTCAAGAACGTGAACGTACATTGGAAATGGAGAGAGAGACTCGAAATGCCGAGATCAGCGACTACAAACTGCAAATAAACAATCTGAATGAACAGATTCGTTTGGGTGCAACTGACAAGAATTTGAATATCGCTGAGACTTTGGAACAGCAAAAGAAATACGAGGCGCGCGTCGATAAAATCAAGCAGGACATGCAACATATTTTAGAAAAATTCACGACCGAGACAAACATAAATACCGCACGACATCAACAGGAATTAAAAGAGGTGGCTGCGAAACACGAAACGGAAATCATGAATATTCAAGAGATGTACGAGGAACGATTGAAACAGTTTAAAGATGAAAATAAAGTACTAGCCGATCGTTTGAACAAAGACTTGCCCGATCTCGAAACCAGGCACGCCAAAGAACTTTCCATATTCCAAGCACAAATGGGCCATTATAAAAAGACCGTTGAGGCTTTGAAGCTCGAATTAGTAAACAGATCGGAGTCACAGCAAACCGCGCAAACCGAACTGAGCCAGTGCAAAGCAAAAGTGAACGAGCTGAAGGTTCAATATGAGAACGCGCATCAAATACAAGAGTTGGAGCATCAAAAAGAAAGAGAAATGCTAGGTGAACAGATCAAGCTGCACAAGTTACAATTGGAAGATATCACGTCGAAATATGTTGCCGCGACCGCGATTCTGGAATCGAAAGAGAGCATCGAACGTTCGTTGGAACAGGCTCTAACGAATGCCGCGACACTAAAAGATGAGAACGATAGTTTGAAGTTCAAATTGGACGACTTGTCGTCGAGATACACCGCGGCTCAGTCGTTGATTGAAAATACTCAAGTGCACGAGCGAACTTTGAGCAATCGAATTTTCGACCTAGAGAAATCGTTGTCCAGACTCAGCGGTATCAACCTTAGCACGTTCAGTGGCCTAAATGAAACAGCTTATCAAAGTTTGGACGAAGTTGCGATTCAATTTCACCTGACGAAACAGAAACTCGAAGAGAAAGCGGAACTAGAAAAGCTTCTGATCGATAAAATTGAGAATCTCGAGGGCGAGGTTCGGAAAACGACGGAGGAGCTCGAGCAAGCAAATCTGGCTAGAAAATCGTACGAGAAGCAACTGAAGGACACAAGGAACATGTGCGACAAGTACAAGTCCGAGCTTAACTCGTTGAAAACTCTTGATACCGATGGCCAGAGTTGCTCGAGAGATTTGTTCGAAAAGACCGAGAAAGACCAACAGGAGATTAAGCAACTGAAAATAAATTTGGAGCAAAAGGAAGCAGAACTCGCGGATTCTCTGAGGCAGGTACAAGACTTGTCGCAGAAATTTCAAAAATCCGATGAGGAATGTCAGCAGCTGAAAAACGGATTGGCCACTGCGTGGGCCCAATGCGCGGAGGTAGAAGAGAAGTTGAATCAAACGTTGGCGTTGAACGAAAGCAAACTCGACTCGTCTGTCCCGATGTCTAGTCACGATAATACTTCGACGATGCGAATAAAATTCAATAGAACCGTAAACGATACTACGACGTTGTCCATCGATGATACGCACGATCAAAGCAGAGACGACAACAGGCTTTTCTACGGCAGGGACGACGACTCGTCGGACACGACCGGTGTCGTGGCATCGTTGCAGGCAAAGCTGGCATCGACTTTGCAGGAAAACGAAAGATTGGCCAAAGAACTGGAACGCTCGCTAGAGGCACAGCTCGATTACAATCGAGTTAAAGAAAAACCGGAACACTACTCGACATCGATGGACAACTCGATCATGGAGAAACATCGTGTCGAGGAGGAGGAGGAGGAGGAGGAGGATGAGGCTCCGTGGCAAGAGCTAAGGACCGCGCATTCGCTGAAAGAATCTGTGAATCAACTCCGAGCGGAGAAAGAATTGTTGAGAAAGGAGATCGATGCGTTGATTTGTGTTCACGATAAGCAAATAAACGCGATAAAAGTCGAAACTGCCTCGGAAATTAGGAAAGTTCAATCGTTGGTATCGGGCGTGAAAGATGGCACAGCGGAGCTACGTGATCTAAAAACGGAATTGGAGATGCGACACGCCAAGGAGATGGAGGAATTGCGGACCTATTTCGAACAGAAATGTCTGCTGATGGAAAAGCAATATTCGGAGGAAATCTTTAGTCAGCAGTCGAAAAAGATGTCCGACAACGACAGCGAGATAGCAGACTTGACGGAAAGCTTGTATTTCGGCGGTGCCGGGGATTGCATGAACGTTTCGAACAATCTCTCCGAACGTAGCTCCAGGGTTGCTTCGCCGTTGGCGTTGGCGTTGGCGGACGAACAATCGAAACACAATACCAACGGTTTGAATAAGTACGAGCTCGAGACAACCGTTAAAGCGTTGCAACAGGAACTGCAAAATAAAATAATAGAAGTGCAGGAAGTAAAACTGCATTATGAAAAGAAGTTGGAGGAACAAAAGATGACATACGAAGGAGAATTGTATGGCAACAGAAGGGAACCAGAGAAACTGGAATTCTTGCGGAACATGGTGACTCGTCATTGTCAAACAGAGTGGGATGCGGGTGCGTTGGAAAACGGTGAATTAACTCAACTGCGAGCGGCCTACCACCATCAGTTGGAAGAACAGATTGCGCTAGCTAAATTGGACATTGTCAATGCGCTTCAAGAACAAATTCAGGCCCTCCTGTCGGTCGAATCGGAGGTCGATGATATTTGGTCGCCAGAGTTGCTAGAGTTACGCGACAAACTGACCGGCAATGCGAAACGCGAGATGCAGTTGCTGAAAGATGCTCATGCAGCGGAAGTGCAACGGCTCAAGGAGGAATACTCGCGCAACGTAGCCAGAATGATAGACCGTCATCAAGAGGAGCTGAATAAGATTCGAGATGGCGTGCCCGTCACCGATTCGAAGAAAGTCTTGGCCCAGCTTGGAAATTCAAATGTTCTTGAAGAGAGGAATAGTTTGTACAAAATCTGTGCTACCCTGAGAACCTTGGTCGAAGAGCTACTAAAATATTTTCTCGTGTGCGAAGAGGAAGTCAACGATACTCTGATCGGCGAAATTTTCAAGAGACAACCGCGCGACGGTGTCGGTAACGAGAGAACGTTGGAGAACACCGAGGACGTTAAAAAGTTGAAGAACGAAGAACATGCTAGTCCAAGTTCGTCGAGATTAAATTCATCCGGTTCGAGGATTCGACGAGTTCACTTTGCACCGCAAACGACAGAAATAATATCCATAATGAACAGCGATAGCGAGACTTGGCAAACAATATTGGGAGAGAAGAACGACATCGTCGAAAAATTGAAAGAGGAATTGAACAGCTGCGTGCAACGTTTGAAGTCCGAAAACGCCGAGATTCTCGCGATTACGAACAGAAAGGACGGGGATTGTGGTCAAGGTGGTCCTTTCCCGAAAGAGGTCGCCTGGATGAATCAAATGAACGAACAGCTCGCTTCCAAGCTGCAGGAAACGGAATCCATGATTTTGAACTACGAACAGGAAACGGAGCAGCTGAAACTTACTGTTCTTGATCTCCAAAGGAAATTGATCAACGTAGAAAACAAGAAAGAGATCATTACCGAAGGTTACGGAGAGAACGACGACGTCGGCGTAGAAATTACCTTGCAAGATTTCACGCATCTACAGGAGAAAGCGAGGCACGTATTGTCGAACGGAGGAGAAGACTGTACGGTCCTGTTGCAACTGATAGAGGAATTGTGTAGACAGAGCGACAAATTGATGGAGGATGCCAGGAGAGAGAAAGAAGACTTGCAGCAACAGGTGGAGGCTCTCGAGTCACAAATGAGGGAAATGTCATCCCTTATGTCCGACACAGAAGCCAGGAAGATCGAGACCGAGAGCGAACTGAAAGCAGCCATCGACAAGATCTGGGTGTTACGAGACATTATTACAGACTTGGAGCAACAGCTACAATCCAAATCGGAAAAAGAGGAGTCTTTGCAGCTTCAAATCGGTCAACTGGAAACTGTGATCGCCGCACAAACCAAGAACCAGCAAGAGTTGGTACAGGAGCTGGACACGGTTAAAATGGGTAGCGAAAGTAAGCAGCTTAACGAGCACATCAATCACTTACAGGAGGAGTTGAGGAAACACAAACTAAGTTCCGAACAGTTTAACGCGAATTCTACCGCTCTGAAACAAATGAAGTCGGAGCTTCGCGAAATGCAGATTCAGTTGGACAAGAGGATCAAAGAATTGGAATCGATACATATGTGTAGCTCCAATTTAAGTCTGAGTCAACCTAGCGAGGACGTGTCGATCAGAGAGCAAATCGACGCGGCACGTTGCCCTACTCCGGACGATCCCAATTCACCGCCAATGTTGCCGTTGGACCAGTTACTCAAGCTCAAGGAGAAGATGTCGAAACACGCGAGAGCCGAGGAGGTTGCGTTCAAGAGAATCAAGGATCTAGAGATGCAGGTGGCTGCATTGAAGAACCAGAACGAAGAGTTGCAAGCGGAGCAGGAGATCTTGCAACAGACCACCTCCGAACAATTGTATCAAATCGAAGCGATGCGCGGCCGTCTGGAACAGCACAAGCAGAATGCGCCCTTCGCGCAGAGGCAAGCGACGTCGCGGCTCGAGTTGCAGCTTCACGAAGCAAATACCAAATTCCAATCGTTGGAGTCCGCCGTAGCGGAGAAGGACTTGGAATTGAGGGACACGCTGAATCAGTTGGACAGAGTCAGCCAACTGTTGCAGGAGAAAGAATCGGAGATCGCGAATGTCGTGCAGGTGGAAAGGTCTACCATCCAGAAGCTGCGCGAACACTTGGAGATCGTCGAGGAGGAGAATAGAATTTTACAAGCGAAAGTCGGCGTTCAAGAACACTCTCAACTCGAACTGCCGCGGCTGATCGACAGCATGCTGGCCGACAAAAACGAGGAAATCGACCACATGAAGGACCAGTTGTCGAAAAAGGACAAACAACTGCAACTCTATTCCTCGTTGAACCTGGACGAGACGCAACTGAGAGAACTGATTCGACAGACCGAACCAAAGAACAGTGCCCGTACGTTGAGCGACATTCTGTCGATTCACTCGGAATGCGAGGAAACGTCGGAGGCCGTTCGTGGAACGAATTTCACTCAAACGTTGCCAAGCGTATCCACTTTGAGAATTCCCACAGCATTCGTTTCGGCCAAAATCATGGACGACACCGCGGCGCTTTCACCTTTGGACAGCACCGCCACCAGTAACACCGGCAAGATCGGACTGCGTGTACCACCGTTGGACCTGGGCTCTCGTTCTCAGAGTTTATCGGCCGCGTCGAACCAACAGTCCTCGGAAATGGATTTGTTGCAGCCCGCTGAACCGACCTCTAGGAACTCGGAGGAGAACGACGGCACACCGATGAACGACAGCGAGAAGAAGAACGAGTATGTAATCGTCGACGATAAAGTCGACGGCAAAGTCGACGACGAGTCGCTTGTTCGTTCGGTGTGCGTCACTCCGCACGTGAAACATGTGGAAACTTCGATCAACGAGTACATCGAGGAAATGGAAAAGTTGGAACATCAGTTGGAGATCGTTCGAGAAGAGTTGCGAACGAAATCCGAAATTTTGGCGAAACGCGAGGCAGATTTGCTGTCGCTGCAAAAACTGTACAACGAGTTGCAGACGGAAGTTAAAGAAGTCGTGGAGACGCTTACCACGGACAAGTGTTTCTATCAGAATCAGTACGAGTTGTCGAAAACGTCCGAAAATAAAATCAAAAAGGATCTTCTGGAGGTGGAGAACGTTTTGAAATTGAAAACCGCAGAGGTCCAAGAGCAAAAATGTAAAATTCAGGTCAACGAGAAGATCATCATGGAGTTGAGTTCGGAGAATGGTAAGCTGAAGGCGGATATCAAGGAGAAGGAGCAACAACACGCGAACAAGTGTGCCTCGTTGTTGCGAGAGAACGCCCACGAGTTGGAGACTATGAGGGGCAGGGTTCTCCGGCAGGACAAACAATTGAACGAACTCAAGACCAAGAACGAGTTGCTCAAACAAGAAATCGTCGAGTGTCAACGAGAGATGACCGAAGGTTTGAACAACAGAGATCAGACTATCAGGCGACTCGAGGAAATGGTACGACGCGTTAGCTTTTCGGAAGCATCCTCGCCTTCGAACGAAAAGGACGAGGAGATCCATCATCTACAGGAATATTTGAAGGAGAAGGACAAAGTTATACGGCAAATGAACGACGACAGCAAGAGTTTGCACAGAGCTTTGGAGACTATACAGAATAAGATGAAGGAGTCCGGTAACGTGGTCGAGCTCAGAAGGAAGCTGAGAGAAGAGCAAAAACTGAATGCCGAGCTGAGGAACGCGATGGATAAGCTGAACAAGGAATTGTCGGATTTAAAGTTGGCCACGCAGCGGTCACAGGAGGACACCGACATCGAGGACATGGTGCAGAGGGAGCTGAATTTGTCGGCGCATCTCGACAGACGGCTGATGAATGCGATCGAAACCGACCAGGAAGATGGTATCTGTAAAGTGGAGAATCAAGTTCAAACCAGAGGGCCTCGTCGGGAGGGCGTTCAAAGGAGCAGCGAATTAAAGCTACAACTGAGTCAGGCGAATAGGATCAACGACGAATTGAAAAAGTTGAAAGACGACTTGGAAATCGAAAGGGGAATGTTAAAGTGTCAGATCGCTGAGTACGAGGGCCGGATCTTCCAACTTAAGTCTGATCTAGCGATGGAGCGCGAACAGGTTGCGAAGCTCAACGAAGAATTATTCGCCGAGAAAAGCTTGATTCGGAGCTTGAAGATCCAAATCGAGAAGGAGCATAGATCGATGGAGTCCGGTCACGTGCAGGACTCGGAGTTGATCGAGTTTCTTCAGAATAAGCTGAAGACATCTCTGGACAACGAGGCGAGGCTGCGCAACGATCTTTCCTTGTTACGACAAGAACACAAAAGCCTAGAGATACAGCTGAGTTTGATGAAGGAACACGTACAGTCCCAACAGTCCCAGAAGTCCGACGAATTGCCGAAACTAGCGGACCTTTTGGAAACTGAGAGGAAAAAGTATTTGTCGGTGATGGAAAGCTTGGAAAAGGAAGAACGTAATAGCGCGGAACTAAAGGATACTTTGAGGAAGCTACAATCGGAGAAGAATCGATTCGAGAAACAGCTGGAGGTGGAAGTGGAGGAGAAAGAGAAATTGATAAGCAGCCTTGCTCTGGTCGAGGGAATCAGGGACCATTTGCAAACAGATCTCGGTCGCACCAAAGAGGAGTTGAAAGCGCGGGAGGAGGAGTGCGAATGGCTCCAGAAGAGAATCAAGACAACGTCCGACGCGGAAATCAAAAGGCAAGAGCAAAGGACCAGTGAACAGAATCAGCTGAAGGGATTGAGGAGGGAGATCAACAATGCCAGAGAGGTGATGGTGGACTTGGAAGCCGACATGAAACAGTTGCGTGAACGCGAGATGAAACTGACCGAAACGGTGGAGAGTCTTCGGGAGAAAGAAACGTATCTGCTTAAGGAATTGTCCGCTGCCAAAGACGAAGAGACAAAGTTGAGGGACACGATCGCCGAGTTGCAACAGGAATTGAGATCGTTCGCAGAAAGGGAACTGGAGTTAGCTAGAGAATTGAAAAACAGGTACGGTGGCGACAAGACCGCCACGCCTACCAAATTGCTGCAGAAGATCAAGGAACTCGGCGACATCAACAAAAAGTATCTAAACGAGAAAAGCATGCTTCAAGAGAAGCTTGTGAAAGCGCTGGAGGATAAGGAGCAACTCGGTCAACGAGTCAAATCGCTCGAATCTCGTTTGAAGAGAGGCATCGAGTCTCGCGATGCGAACGCGGCGATCGGTGGAGATTGCGCGGACAAGTTGCAACACTTCTATGGGAAATATATACGAGCCGATAGCAGACGCAAGGCTTTGACTTACCAGAAACGTTACCTGCTAACCATCGTAAGTGGTTATCAGATCTCCGAGGAGAACACATTGTCCATTCTGGCGCAATTGACTAGCGAACAACGATCCTATACCACAGCAGGCCGTCATAAAAAGTCTCCGCGAGTACGCTTCAAGAGCGCTGCTCTGGTACTCATCAGTATCCATAGAATGAAGTGGCTGATCGTTAGGTGGAGCATCGGCAGAAGAATAGGTGCCCAGACGTTGCTGTGGAACGTGGACCAGTCGTACGTGCCGGTACAGAAACTTGCCATGGATCATTCTCCCCCTGTTCGAGAAAGACCTGTCGCAAACGAGGATGGTAATTTCGACGGATTCGCGCTTGCACAGTATTATCAACGGTTAAAAAACATTCAACAGACATTAGGTTTAGCGATGGCTGAATCTGTAAATTGTCAGATTCATCCCGAATAGTATTATATATTATAAGAGCGTTCGAGTCTTCGACACGCGGGGTAAGGCAAGCATGATAAACGTACCACGAAATCAAGTTGTGTATAATCGCGCGTGGAATTGATTGTCAAACGGGTATTTCAATCTAGGAATATTTTGTTCGGATTTCATCGTTCGCGGGCATGTATTTTTCTTATGGCATGTAAATAGGATTGCAGCATAGTAACTGCAATTGTTGGACACGCGTCAAGCCTTCTCACCGATTACCGCGTTGTGTGCTTTTTAAAGAGTTGCCACTGCAACATTCGACAACCCGAAAAAGAGACTAGAACGTTTAGTGCTAAATAATTGTGCTCATATACCAAGTTTTACCAAAGGTACGATAGACTTTAGTTATAATTGTACTTTGTTAATCCTTTCAAGAGGATGTGAACCAGTGCCTTGTCAACTATGCTACAATATAATAAGTGTCTAGTATTTATTTATTATCGATTATCGAACTGTAAGTTTTTATAATGTGAATAAACTCTATGCAATGGCTTTTTATGAAA +>XR_006348224.1 PREDICTED: Manihot esculenta vacuolar sorting protein 18 (LOC110629926), transcript variant X10, misc_RNA +AATGAATATAAGATAGGTTTTTATGGTTTGTATAGAGAAGTTCTAGAATCTCCTAAAATAATAGAAAAATACAAAGAAATAGAAGCCATATGAAATATGAGACAACTCTGGAAAGCTGTGGTCCCCACCAAACTTCTCCTCCAGAAGCTGCTTTCGCACCTCCAGCTTTGGCGCTAGACTCCCCCAACAGCTTCTAGATAATCCTCGCAAAGTCCAGCTTTTACTCGGGCTAGCCGCGCGCTGATTTGCTTTCCTCTCGTGCGCTCCGCAGACCAGCCCGACCAAAATACTCATCCAACGCTTGGCTAAGTTTGCTCTCAAAGACTCGGGCGACAGTACCATCCTGGAGGGTTTCCGAGTGTTTCTAGCCTTCCGAGTTTAGGGGCGTTCACCAGCCCTTCCAAGTGTCTGGGTGTTCACCGGCCCTTCCGAGCTCCTGGGCATTCACCAGCCCTCCCGAGCATCTGGGCTTTTACTAGCCTTGCGACCATCCGGGCATCCTCTGGCCCCACCTAGCTCTGCCGAAGTTCCGAGTGTTTCCTCGCAGACTTCGCTCGCTTGCTCAGCAGGTTGCCTCACCAGCGTCAATTGCTAAAAGTCTCAGTCATCCTACCATCTCTCAAATTCACCCGTAGGCCTGTTGGCTCCCGTTAATACTCCGTAGGCCTATCAAAATATCACTCGATAGCTAGTTTCTCCGAGATGACTTAGCCCATCCTTATGCCGCCTACTCGGCACCAAGATTAGCGCCAACTCCTTCCAAAAGAATATGGATATTTCCGGGGAAAACTGTGGGGGTTTGTAAGTGCAAAATCTTAATTGTGGGTATGGACTACCACATCTCATGCCTGTACTTAAGAGGACCAATGGGCTCCCTTCTATGTATTTCCATGTGGCATGCCTTCCATGAACAATGCTTGATTGCCCATTTGACAAGTCATACCAACAAAACTCAGAGAGATTTTTCTGACAAACTGCCAGTATGGTGAAGTTCAATAACATTGCTTTTCTGTGAAGATGGATGAAAAACAAAAACAGTATGCCTATGATAGTTCGGGGCCCAAACATCTAAGACAAATTTCTTCAGCTCTACGGGATTCGAATATGTAATTGGGCAATAATTGTTGAGCAAAACTAAATACAGTTTATTGGCCCAACCAAGTACAGTTCATATTTGAACTGACTAATTTCTGCAATTCTTTATGAGAAAAAAACAGCATGAAATATGCAGCAGCCTGCTGCAGTCAACATTGTACTTCAATTATTGTACGACTATGCTCTCATGTTCTGCAATCTTCTGGTATATGCACCATAAGAAATCCCATGAAGGGCATAACTAAATAATGAAACAATAAATTGAACTGCAAGCTTAGTACAAGCACATTTGCGTGGCCTAAGATTTACGATGACTTTTGTTTAAGTTTTTTTTATTGTCATCTCTAACTGAGTTGGGTTTTGTATTTAGCTTATCATAAAACTATCCTGCACAGCTTCTTACTCTGCTTTATATCAATGAAACATATCTCTGCGCCATCTTTTAGAATGAACTCCAATTCTGGAAACTCTTACCACCAATCAAATTTTCTTCCTTCGGGTATTTGAATGGATGATGCAGGCTGATTATATACTGGATCTGCAGAAGCAACTTACTTTACTGGGTGAGGGAACTAGGAAAGACTTGAATGGTGGAATAACGTAAGATTCCATTGCTAGCAAAACCCCTGTAGATAAGGTCAGTTCTATGTTCTTCTGAAGCAAAATCTATTATGGTAATATGGAGTAGTTTGTTATAACTCGAGGAAAAAATTTCCTGCATTGCTGTACATTAACTACAGTGGCAGTTTATTACGTCTTTTGTAGTTTGTCTGAGCCTCATCTCTTCTCTGGTGTGTATTTTAAATCCCGTTGGAATTTGCAGCTCGGCTCACAGTTGATGATGCAAATAGCCAGCAATTGCCCATTTCACGGTGAGTTGATGATCAAAATGTTCTCCTTGCCACTACTCTCCCTGGGGAAGCACGGTTGGTAGGTTCATGGGATAAAACCACATAACCTGGGAAACCAGAGGACGCCCTATTTATAGGTGTAATAATATTACCTGTGTGTGATTTCAAAAGCCAGTGTGCGTGTGGGGAGCTTCGATGCCTGTAATGTGGCTCTCTCACCGTCTCGTTTTGAATTGGGTTATGAAGGAGAGCATCCCCATTTCCTTGTAAACCTTTTAAGTTCTTCTTAGGCAGCACCATTAGTTCTCAATAATCATGATTTATCCCTTCTGATTGTTCAAGATTTCTGAAAGCACAAGCAAATATATGAACTTTTATCACT +>XM_029702302.1 PREDICTED: Salmo trutta DNA-binding protein SATB2-like (LOC115155576), transcript variant X3, mRNA +TACTCGCTTAGCCTAAGTTGTTTATTTTGCCTAACGTTCTGATCTCCCTCCCCCAGGTCTGATGATCCCAGTATTCTGTGTGGTGGAGCAGGCAGGGCCGGATGGGGGGATGCAGCGTGAGGAGGTGGAGAGGAGCGAGGGCCACAGAGAGGAGCATGCTGAGTTTGTCCTGGTCAGGAAAGACATCCTCTTCAACCAGCTGGTAGAGACGGCCCTGCAGGCCCTGGGGTACTCCCACAACTCTGCTGCTCAGGCCCAGGGCATCATCAAGGTGGGTCATTGGAACCCTCTGCCCATCCACTTCCTATCAGACGCTCCTGAAGCCACGGTGGCTGACATGCTGCTGGACGTCTATCACATGGTCACTCTCCACATACAGCTACAGAGCTTTGCCAAGCTGGAGGATCTTCCGTCAGAGCAGTGGAACCACGCCACGGTGAGGAACGCTCTTAAGGAGCTTCTCAAGGAGATGAACCAAAGCACACTGGCTAAGGAGTGTCCTCTGTCACAGAGTATGATTTCCTCGATAGTAAACAGCTCCTACTATGCCAATGTCTCCACTGCCAAATGCCAGGAGTTTGGACGCTGGTACAAGAAGTATAAGAAAATCAAAGGAGACTATCAGGAGAAGATGTGGCCAGGAAGAGAACATTCTGAAATCAAAGTGGAGAGAGACAGCCTGGCAGACTTCTATGTCCTGGGCCAGCGTCCCCCTCCCCACCTGGCCAGCCTGGTCCAGCTCAGCCACCTCGGAGGGGGTGGAGGTGCTCTCCTCAAGGGTGGGTCCGGGGACCCCCAAAACCCCTCCCAACCCCCCCAACAACAACAACAATCCCAACAACAACACCCCCCCTCGCCCCATGGCCAGCACCACAACAGCCCCCCTCTACGTGGCCAGGTCCCCCCTCCCGGCCCTCCAACCTCCCTCCAACCTCTCCTCGGCCCAGGCGGGCTTCTCTCCCCCCAGCTCAGCCCTCAGCTGGTCCGACAGCAGCTAGCCATGGCTCACCTCATCAACCAGCAGCTAGCTGTTAGCCGCCTGCTAGCCCACCAGCACCCACAGGCCCTCAACCAGCACTTCCTCAACCACCCTCCCATCCCTCGCCCCTCCAAGGCAGGGGCCCCTGGGGACCCTGGGAGCAACCCGTCTGCTGCGGAGGTCTCCATTGATATCTACCAGCACGTCAGGGACGAACTGAAGAGGGCCAGCGTCTCACAGGCTGTGTTCGCCCGCGTGGCCTTCAACAGAACACAGGGCCTGCTGTCGGAGATTCTGCGGAAGGAGGAGGACCCTCGCTCTGCCTCTCAGTCCCTACTGGTCAACCTCAAAGCCATGCAGAACTTCCTCATCCTCCCTGAGGGGGAGAGAGACCGTATTTACCAGGAGGAGCGTGAGCGCAGCATCAACCCCTCTGTCGGCCTGCCCCCTACCCCTACCTCCAGCCCCGGGGGCCCGCGCCTCTCACAGAAGGTGTGGGAGAGAGGTATGGACGAGCAGCTCACTCCTGACGCCTGGGCTGCTATCTGGAAGAACAAGACCAAAGCCACCTCTGTGCCCAAGCCACCAGGCCCCAACCCAGACCTGCCCCTGAAGCTGGAGTCTCTGGTCAACATCACGTCAGGTATCTATGATGAGATCCAGCAGGAGATGAAGAGGGCCAAAGTGTCTCAGGCGCTGTTCGCCAAGGTGGCTGCCAACAAGAGCCAGGGCTGGTTGTGTGAGTTGCTGCGGTGGAAGGAGAACCCTAGCCCAGAGAACCGTACTCTGTGGGAGAACCTGTGTACCATCCGGAGGTTCCTGACCCTGTCCCAGACAGAGAGGGACATGGTGTATGAAGAGGAGTCAAGGCACCACCACAGTGACAGGGTCCACACTGTACTACACCTGCCCCAAGACCCACAGATGTACTGTTTTTCTCACCAGGCGCTGCACAGGCAACCCCCACAGCCCCTGAAGCACCACTCCCCCATGCGCGAGGACCCCGTGCCCGCTCAGGGTAACGACGAAGGGTCACAGAACGTTGAAAGAGGTGGTGGTGGCGGTGGCTGCACGGGCGGTCCAGGAGTCGGTGGTTGCACGGTCGTTAAGAAGCCTCGGTCGCGCACTAAGATCTCTCTAGAAGCCCTGGGCATCCTACAGAGCTTCATCCAGGACGTGGGTCTGTACCCGGACCAGGAAGCCATCCATACCCTGTCAGCCCAGCTGGACCTGCCCAAACACACCATCATCAAGTTCTTCCAGAACCAGCGCTACCATGTCAAGCACCACGGCCGGCTGAAGGAGCTGGGGGAGGGGGCTGGCGGCGTGGACGTCAGCGAATACAGAGACGAGGAGCTCCTCTCCAGCTCAGAGGACCCTGAGTCCAGTGAGGATGGTCACGAGGAGATGTACCCCACTACTGAGAGGGAAGGAGGGGAGAGAGAGGGCAGCACAGCAGGGTCAGCCCCTTCCCTGGCCCTAGCCCCAGGCCAGTCTTCAGGGACCAGCATGGGAGCCATGGAGGAGAGCAAGGACAAGGGGCATTCTCATGGTCTGGGTGAGGGCCGAGCCAGCTCCCTGCCCCCTAGTAGCTCCTCATCCAGTCCCAGAGAACAAGCTGACTTCCAGAGATAGAGACCCAGAGACTAGATGAGACACTGGAAGAGACGGGCGGAGATAGAGAGACACGAGAGACAAAGAGACACGAGAGAGAGAGAGAGAGAGAGACGAGGGGAAGCGAATGGGAACAAGACACTGGGAGAGGGGAAGAGAGGCATAGATGAGACTCACTGACACACAAATATACAGACAGAAGGGATCTTAAGGAGGGCTCGTCAAAGAGGGATTTCAGTGAAAATACAATTTGTTACCTCAGCAACAGGGATATGCCATGAAACAGCAGCCATGTGGAACAGTTAGTATAGTATGTTCACTGAACCAATAGACAGAGAGATAACCAAACATACACATCTCACCCCTGTCCACAAGAAGAACTCGCCACATCAACACCACTCTTGAATTGAGCCAATCCCAAAATTCAGCTTCACTCTGTCCAATGACTACTCTCCCTAATGTCTCAACCGCACCCACATGCTGAGCACTTGTCCTTATTTCGATGCTGGGTCTTGAGTCAGGAACCTAACTGACAGTCATAGACTGAATACTGGGGGCCTGCTCAGACCTCCACCATCCTGTGGTCCCTCAGCTCCAGATCTACAGAACTGGCTGCTGTAGCTGTCCTCCAACTCGTCCCCCTCTCCGCCCCTCCATGACAGGACCATTCTAGTCTTTGGTCTTTGACAGTGTTGGCAGTTTGAGTGGGAGGTTGGATAGTGGATGGGTGTTGGTTGGAGGTAGGAACAGTGGTATGGGGGGAATTCACCAATGATAAACAAATATGGTGTAAGTCCAGAATGGAAGCTTATGGTATTTTTTTGAAGTTGGAATCGCCCCTCCCATCCAGCTCCCGTTGCCAACCCTCAATGGTGCAACAACATCCCTATGCGATGGACCAGACCATCCCTCTAACGCCCTGCCCCCTAACCCCCACTCTAAAGATGGTTCATTCTCTCTGTCACTGTACAGCAGTTATTACACACTAACCTAGTGTGTATGGCCACTGTGGTTTATGAGGACACTGCTAGCTGAACGTATCGTGGTTTAGGACATAAGAGAGGACAGCCTTGTGAGGACAATGAGGACCCAGTGGTGTACAAGGACCCTCAGGATAACAGTTACTCTGGTCTGTCCTCTGTCCCCCCTGCATACCCAACCTCTCCCTGTGTGGAAAGAAACAGGGAGGGGCACAACAGAACGGAGATTCAGCAACCAATCGGGTATCTGCAATCAATCAGTCACTTTATGTGCACTAGCCCACCCCTTCACTCTTCCTCTCTCTGTCCCCATCCCTCGTTCTCTCTCTCTATAATTGGTGCCCACAGTGTCCCCTTCCACCACACCTACCCACATGTAACTTCACCATATTTATTGCTATCTTTATCCATGATTATCATTATCATTATTGTTATGGTTGTTATTGTTGTTATTGCTGTCATAGCTGTTTATTTTTTACTTCTATTTTCATGCTTGTAATATTGGCTTTCCGAGCACCATGGTTGTTTTGGTAACGAGAGACGTTTTTGAGACATGAGGAACACACATTGCCGAACAAAGAGCAGAAGAAAACCAGAAAAGAAGCAGTTACTGTAACGTTTAGCGAGTAGAAATCCTGTCATGCTGTGCTAAGCAACTCACGTGTTCTTCCAAAGAGAGACGGACATTGGCTGAAACGGGAGTGGAATCCAAAAAGTAATGGAAACACAACGAATAAACTGAGCTTTTGCTACAGCTGTTAACAATCTGACATGTTTGGAGCCTTTGGAAAACACAGCAGGCTTGACCTCTGTGTGTTATGTACAAGTGTGTGTACAGTTCAGTACAAATCCTTATCTGAGAGCGGGTACTTATGTCGAAGGATGCATCCCAAAGAGAGCCCTATGAGCCCTGGTCAAAAGAAGTGGACTGTATAAGGTATAGGGTGGCATTTGGGACACAGACAAAGTAACAGAGTAACCATTATTTACCCGTCTGACTCTAGGCAGCTGCTACGTGAATGACCTGTCTTGTACTGTAATTCATGAATTAATCAATCATACAATACATTGTGTTATATCGCTC +>XM_009901592.1 PREDICTED: Picoides pubescens prodynorphin (PDYN), mRNA +ATGGCTCGGCAGGCGCTGGCACTGGCACTTTGCCTCTCTCTGGCCGTGATGGCATCCACTGACTGCGTGACCCAGTGCTCCCTCTGCGTGGCACAGACACCCACCCCCGAGACCAGCAGCTGGCCCCTGATGTGCCTGCGGGAATGCCAGGGCTCCTCACCGCCCGGGCCCGAGTGGGAGACCTGCAGGAAGGCACTGGCGCTGCTGGCCCCGCTGGTGGCCCTGGCCGAAGGGACAGAGCCGGCCCCTCGGGAGGCGGAGGAGGAGAAGGCAGAGCCGGAGCTGGGCGCCGGAGGGCGGGGGGAGGCGGCAGCCCCCGAGGACTCCCCGGGGCCGGAGCCGGCAGGAGATGGAGCCGAGGAGCCCACGGGTGGCGGGGCCGGGGGGCAGGAGCTGGCCGAGCTGCACAAGCGCTACGGGGGCTTCATGCGCCGCATCCGGCCCAAGCTCAAGTGGGACAATCAGAAGCGCTACGGAGGCTTCCTGCGGCGCCAGTTCAAGGTGACCACACGCTCGGACGAGGACCCCAGCGCCTACTCAGGGGAGGTCTTGGACCTATAG +>XR_007834401.1 PREDICTED: Phodopus roborovskii U6 spliceosomal RNA (LOC127220836), ncRNA +GTGCTTACTTCAGTAGCACATATACTAAAATTAGAATTATACAAAGAAGATTAACTTGGTACATTATCAAGGATTACAGGCAAGTTTGAGAATTGTTCCATATTTTT +>XM_029382818.1 Trypanosoma rangeli nuclear RNA export factor 1/2 (TraAM80_05959), partial mRNA +ATGTCGGCACCCTACAAGAAGACGAACACCCACAATGTGCCCTGCTTCTACTTCAAGAGGGGCGCTTGCACGAATCAGCGCTGCCCGTACCTGCATGTGCGTGGGAAGGAGTCAGGCGGTAACGCAGGCGCGGTGAAATTGTCAAGCGTTACCTTGGGCTTACCGGATGCAGCGACAAATTTGCTCTCAACAATGCTGAAGCTGGTCTTTGAGAAACAGCAGCAACGGGTGTATGACGCGTCGTCTGGGATGTTGGACCTGAGCGAGTTGAGGAAGTTTCCAGACCTAAAGGACGTCTCAAACTCCATTAACTTTAATACGCAGAACTTCTGCCGCGCTCTCTGTTCGACGATAAAGTCACTTATTGTCCCACCACCCTCTGCTATGCAGTTAAAGGGAAATGATATCACTTCCCTTTTTCACCTGGCAGGCCAGATGGAAAAGGCGGATTTGCACATGTCGCTTCGGGCTCTTTCGCTAGAGGCAAATAATATTAGGACGATGGATGCACTACAGGAACTTAAAAAGTTCATGAATTTACAGGAGTTGGTGCTTGTGGGTAACCCTGTGGCAAAGCGTGATGACTACCGCATGGAAGTGAAGAAGGCATTGCCGTTTCTCCTTGGACTGGATGGGGAAGGCATCGCGGTTCCGCCACTGTTATTGCCATGGCCACGATTTGCGACTTCCGAGTACACCGACGCGCAGCGGCATGTGCTTCAGTTTGTCCAATGCTCATTGCTGAATCCACTTGAGGCGGGTGAGGTGGAGCGGGTTTCACAGGGCGTGGATGCAGTATCAGATATTTATGCGCAGAAGGCCATTCTCACCATTTCCCTTTCGTCACCGGAGGCTGCAGTAAGTTCGCCGGCGCGAAGCGTAAATGGCTTTTCATTGGCGTCTACGCAGCGCAACGTCATTCGCGAAATTGTTGGTCTCCGGCTAAAACAGACAGAGAGCAATCACAACTTGTTGCATGGCGTGAAGTCAAGTGTTGTGGCGTGCGGGCGTACAAAGGTCTGCTCACAGCTGGAACACTGGTTGTATCCCAAAAATTTTGCGGTTCAACACTTCGTGCACAGCAGTGCAAGCGCCTCGTTTCTGGATAACACGTACCTGTCTGGCCCCGCACCTGTGGCGATGAAGGTGCCGGTGACTGTGGTGACGTTGCATGGCGTGATGACGTGGACCCACCTCAGTCCGCAAAGTCAGAATAACTCTGATCGTGTGGTCATTTATCGCAACTTCACACGAGTACTTACTGTTCAGCAAAACGAGGCGGGCCGTTGGTTGGTGACGAACGATATGGTGTCACTGTACCTATTTTCGGGGAAGACAGCGGGTCTATCCAAGAAGGGAGAAGCTAACGCCGATATTTCAGCTGACGTGAGTGAGTGCCGTATCCTGTTTAGTCCCAGAACCGATCGCAGTCGCGCTGAGTTGCTTGGCAGGAAAAAAGATGTACCAGTGGAAGTGGTTTTAGCACTAAGCCAACATGTGAGCAATGATGCAGAGCTGATGGCGGTGCTCGGCGACATTGGAGGGGTGCCACTGAGCATGTATGAGCACTGCGCTGCACTAACAGGTGAGAATATACTAGAAAGTATTCAAGTTTGCCGCATAGGTAACCGGTTTGGATTGGCCCCACAGGAAGGTTTGGAACTGCTGCGCAGGGTGGGTGGTAATTGGTGTGCTGTAGAGGAGGCAATGGGCACCGCCGTAGGAGTAACAACATCACAGGTAGCATAG +>XM_017771362.2 PREDICTED: Gossypium arboreum uncharacterized LOC108470132 (LOC108470132), transcript variant X1, mRNA +CGTTTTCTTCATCGAGACTATTCGTGTATTAACATCAATCAAAGATTTAAAATCATTTCTAGAGTCTTATCTTGGCGCTCTCTCTCACATCACTTTTGCCTTGCTCCGCAGCACGTAGGAAAACTAGAAATTAAGAGAAATTAATACTAAAAACTAATGAAAAAAAATAGCAAATAGCTCTCAATTCAAACCAACAATTTGGACTTTAGATTAATAGAATCAAGATGGAGGATTCTGGAGCAATTCTTTACCAAATTTCATGCCTCAAGGAAATGCTTGATCAGGTTAATGAAGAAATCGAATCCAATATTGAAGTATCGCGGGAGATTGAATCAGAGATGGTCAAGTGTACGGAGTTCGAAGCTGCTCTTACTACTAGAGAATCCCTGCTTACCAAATCGCTATACATTTCTCACTTCGAAATCGATGGCTTGCTCTCCGTCATCGCCGATTCAAGAAATTCGCTTAAATTTTTGGAGGAGGAGTTGAGTTGTCTAACCACGAAACGAGATGAGATGTTAAAGAGGATTGACGATAAACGAGACGGATTTACCAAACAGTGCTTAGAATTTCAAAGGGAGATTGACAAGGGGGATAACAACGAGCTGGTGAATTTGCTGTCAGAGAAAGAGCTTCTTGAGAATGAAATTCATCTCTTGCATAAGAAAAACAATGCTTTGAGAAATTCAATGTCCGCTTTTGTGGAAGAAATTCTTGAAGACCTTTATTCTTCAAATGCAGATTTTGGGTTCACATTACAAGCTCGGGGATCGTCAGCAAAGTTCTTCACACTATCTACGATTTCGGCATTTAAATATTTGAACTCGAACTATGGCATGTATAGGCTAGAAAGTGTTTTTGAAATGTTTGATTTTGGTTTGTATAATAGCCATGGGAAAATGGCTTGATGTTAAATTCAGTCTTGTTAAATTTGGTTGGTGTTCACCTTGGTTATGTAGTTATGAGCCTGGTATGTGTGATGTTGTGCTAGGTACCATGTGATACACAATTGGTTTGCTTATTATGGTAAAATTTAGTTTTATATGATCTTGATTAAAA +>XM_003676498.1 Naumovozyma castellii CBS 4309 hypothetical protein (NCAS0E01160), partial mRNA +ATGCCATCTTTTGAAAGTGGTTCAGGTGCTGAAGAAGAAGAAGAAGAAGATTATTTTAATGACTTAGAGGTTGATCTTGGAAGTGAATTAGAGGAGAATGAAGAGGAGTACGAAGCTCTGGACATAACTCCTCAAAGTGGATATGACGATGCCTTCAATGATCTAACTAACGACACAGCTTTTCTAAATGAATTAGTTAAAACTTTTAAACCTTCTACTATGCTAAGTTCTGTCGATATGAACATGGAACCAAAGAAACTTTCGATAGTATATAGAGCGATCGAAAAACTTAAGGCAATGTTTCATTCCCAGTCAACATCATTCATTGAAGTTTTGCCTCATCTGAACGAACTTAGCCATCAGATAAGAAGAGAAATAGACATCCTTTATCAATATTCGAAAAACATATATTCGACAAGATTTACTGAACTTGATACCATAGCAGCTACCCCATATCAGTATGCAAAAGTTACATCATTGATAGAGGGAACTTCTGATGATAAGGCCGGCCAACTTCCGATCAACATCGAAATTGAAGCTAAACTTTCAAAAGAACAAGTCTTGGTGCTACGAATGTCCATGCAAACTTCATTCCTTAAGAATAAACCTTTAGAGAAGAAGGTAAAACATTTGCTTTTAGAGGCGTGTTCTATGATCATACAACTTACGGACTTGCAAAATGTTATCCTGCAATACATTTCTTCTAACGTATCTGATATTGCCCCAAATTTGTGCGTCCTAGTGGGTCCAGAGGTTGCATCACTTTTAATCGCACACACAGGAGGAATACTTCAATTAGCAGAAATACCTAGCTGTAATCTAGCGTCTATTGGGAAAAATAGACATTTATCACACGAACTTCATACCACTCTAAGTGGGGTAAGACAAGAAGGTTACATTTATAGTAGCGAACTAGTTCAAAATCAACCGATTCAAAATCACAAACAAATGTTAAGGATGGTCTGCGCCAAAGTGGCCTTAGCAGCCAGGGTTGATGCGGGTCAAAGGGGTGCTGCTAAAAACGATTTATTGGGACAACGGTGGCGAGAAGAATTAGAGACTAAGATTCAAAAAGTTACAGAGTCGCCCAATATTTCCAATGTGAAACCATTACCTATCCCAGAAGATAAGCCAAAGAAGAAAAGGGCTGGGAGAAAATTTAGAAAGTATAAGCAACAGTTCCAATTATCTCACCTCAGACAATTACAAAATCGAATGGAATTTGGGAAACAGGAACAATCTACAATGGATGCTTTTGGTGAAGAAATTGGCATGGGTATGACGAGTTCATCCATTCAACAATCGATAGGAGGTATCAGAGCTAGCTCACAACGTGTAGATAATTCGGCCAAGATTACCAAAGTGATGAAACGTAGACTTAAAGAGGCAGATTCACAATCAAAAGAATTTGCATCGTCTCTGAATTCAAGAGAATTTTAA +>XM_026930086.3 PREDICTED: Pangasianodon hypophthalmus carbohydrate (chondroitin 4) sulfotransferase 12a (chst12a), mRNA +GTGTGTGTGTTGCAGCTTAGATTTTGACGTGTAACTACTATTTAGGACAGCAGACAGGGTTATATATGAATTTAGGACAGTACTTAAACTTCATGGTTATCTGAAGCCGTGTAATGATTACAGCAGTTGCTGAAATCTCGCGAGGTTTCGGAGATCTCGCCTGATCGTGCGAAGAGCGGTCGCACATCATTCCGGAGGAGACGACGACGACGTCTGGGTGGAGGGTCTCGAGATGACTGATGGTGATATGGAGCTTCGGTGAGAATGGAACTCTCCCTGTCCAAACCAGACAAAATGGGCAAGACGAGGCTGTTTCGCATCTTTCTCATTTTAGGCTCTGTCTTCATGATCCTGCTGATCATCATCTACTGGGATGATGTTGGAGCCACCCATTTTTACCTGCACACAACCATATCCGGACCTCATTCTTCCCGCCTCCCACCCGAGAGTCATGCAGCTTCCAAAAACAAAGTTGAGGAGGACAAGGATGGCTCGTTCCTGGCCGACATTGACGCTTTTGTCAACCAGTTCCTGGAAGGCACCTCCGACCCTACGGAGCAAGTGAGAGCTGAAACGCCGCCCGGTGAGACTCACAACCAGTCCTCAGAAAAACCCGAGGAAAGATTCGTCCCCAGGCGCGAGTGGAAGATCCACCTGACCCCGATCGCCACAGAGAAGAAGCAAAGGCAGGACAGCAGGAAGCAGCTGATCCACGATCTTTGCAGCAGCAACAGCAGCTTCGACTTCCCAGGCAAGAACAGGACGTTCGATGACATCCCCAACAAGGAGCTGGACCACTTGATTGTGGACGACCGACACGGGATCATCTACTGCTACGTTCCCAAGGTGGCGTGCACCAACTGGAAGCGCATCATGATCGTGCTGAGCGAGAGCCTGCTGGTGAACGGCGCACCCTACCAGGATCCTCTGGACATCCCCGTCGAGCTCATCCACAACAGCAGCGTGCACTTCACCTTCAACAAGTTCTGGAAGCGCTACGGCAAGTTTTCTCGTCACTTGATGAAAATCAAACTCAAGAAGTATACCAAGTTCCTGTTCATCCGAGACCCTTTCGTGCGGCTCATCTCGGCTTACCGCAACAAGTTTGAGCTGGAGAACGAGGACTTCTACAAAAGATTCGCTGTGATAATGCTGAAAAGATACAGCAACTATGTCGACCCGCCGGCGTCGGTGGTGGACGCTTTCGCTGCTGGAATCCGACCGACTTTTTCAAACTTTATTCAGTATCTGTTAGATCCGAACACCGAGAAAGAAATGCCATTCAACGAGCACTGGAGGCAGATGTACCGCTTGTGCCACCCTTGCCAGATAAATTACGACTTTGTGGGAAAACTGGAGACCTTGGACGAGGACGCTGAGCATTTGTTGCGCATCCTGCGCGTGGACAATGTCGTCCAGTTCCCACCGAGTCGTCACAACAGGACGGTCAGCAGTTGGGAGCAGGACTGGTTCGCCGACATACCTTACGAATCACGCAGACAGTTGTACAAGCTCTACGAGGCTGACTTCAGACTGTTTGGGTATCCTAAACCTGAGAAGCTTTTAAACGAGTGAAATGGGTTTCTGAGTATTTTCTTGCTGTGGGTTATTTAACTGTAGTTCATTTGGTTAATGAGTAAATTTTTTTTTTTTTTGTGGGTCCCCTTTTCTCTGTGAGCATCGCTCCCGTTTGCTTATCACACAAGCATTAGAAAGGGTTGATTAGAGTGAAAACCGATATTACATTCAAATTTTTAAAAGTTTCCTGTATACAGATTTATACTTTTTATCTTCTTTTGAGAACACATCCGTCTGGCACGCAGTACTGTACTGTAAAGTCGGGCGAAGATGTAGGTTTTAATTATTATAGAATATCACAACAACAGTAATAATAATAATAATAATAATAATAATGGCTTATGCCTTTAGTTTTTCATAAAGTATTCTTTTTACTGTCCTCAATTAACCATCATTCATAGTTTCTTTCAATTTGATTTTAAAGAAGTATGCAGCTTGAACATACAACTGCTATGTTCTGCACATTTAGGGCAGTGCACATAGAATATGTAGAATATTTTTGTATATTTGCTATTTTGGAAGAGCGAACTTTTAGCTTTATAAAGGAAAGGATTCACTGCACTCCTGTAGCATTGCAAGATCAAACCATTTTGCTGGCACTCATTAAGCGTAGCTTGTGTGTAGACATCACCTCATTTTTTATTTTTTTTTTCCATAGCATTTGCATTTTTATCACCCACCTCAGGATGCAAACACTTTTTTCAGACCTCATTTAAAATGTATTGAGTGCAAATGGATTTTCAGACGTTTACTTAGGAAAAAAAAGAAGAAAAAACCCGAGCAGTATTGGCTCTAATATGCACTCCACACAAGGTATTTCTGTTATTGCTGTGTGATGAAACAGTGTTTCTGAACATCTTCTGTTTTTTATGAATGTTTAATGTTTAACAGGCGTCAAAAAGACATTTCTTTAAAGCAGGGCAGTGCGGTTGACAGATTGGAGCTCCTGTTAGTTTTCATGGCATCTTTCCTTTCATCATTTGCATTCGTTTCTGCTTTGATTTGAACATCGGTTCCCCTGGCAGCAAGCCGCTCTCGCTTCATTGCTACATCTCTCTTATTGTCAGTGTGCCATGTGTGCCCTTTTTTAAATTTTTATTTATTTTTTTTTTATAAATGTCCATCTCTCAAGAGCTGGTCATGGATTGTGGACAAGTTTTACTTGTTCTGGTAGACTTAGCATTTAGCAAATGATGCCTGGTTTGAGTATTGTTTTGTCTAAATGCAGACTCAGCAGACGTGGAGCGGTCTTAAAGCACAAATATTTGTCCAAGGCCCTTAAACAGTAAACAGTTCACTTTAGGCGCCTGATTTGCTCTCCAGCGTTTCCCAGAATTCTCCATACGTAGTGGACTGTGTTTGCCAGCATCACGTCAGTTGTGCCTTCGTCAGCGGATGTTCGTGGACGTCCGCTTCTCCGTTGGTCCACAACACTTCCAGTCTTTTTGAATTTGTTAATAATGTGCTCGCCGTGTTTCCTTTTAAAGTCCATCTCAACCTTGCGACAGCTTCTGATCCAGCCATGAGAATGATTTCAATACGAGAATGATTTCTCAAGAAGACAATAGTTCTTCTTTTGTCAAAGGCATCTGTAAAGGATATCTGAAAAAAAAAATAATAATATAAACTAAGTATGAAACATTTTGGAAGATATTTTGCAAAAAAAAAACAAAAAAACCTTAATGTACATCCTATGTATGGAGACTTTTGGGATACCATGCAGAGTAAAGTAAGCGTGTCACAAGGACTTGCGAGGGATTTTACGTGGGAAGTTTTCGGTTTTCGGTTGCCGTCACGGTGTTTTTGCGTGTTGCATTTTGCACATGGAACAGTTCTTGTCCTGGATGAGAACGCCGTTTCTGAGAAACAGGAATGTGTTACGGTGAAATGGTGTACAGAGAGCAGGAGCGTTATGAAGCACAGTGTGACTGTAGTAGGTCAGAGGAGGAAGGTTTTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGGAAGCCTAAACCACCATCAGCAGCTGTACTAGAGGAGGCACTGCACCGGGTGCTAGCAGTGCCTTTCTTAAGATAAGATTTAAAAAGTTTACACAAACAAAAATAAATATGTATAATGTACAGGTATTTTTGTAAATGGGTCAAATTTGAGATTTTCTTTCTCACTTGCTAGTTAGATGATGGGAAAACATTTAAAAGTATTAAATTCTGTGTCGTGTAATTTTAATCCTAGGGGTTTTGTTTTAGTTCTGGCTGTATTGGCGAGATCTGTTTAGTTATTTTTCCATCATTTTCACTGTTGTTTATTTTTTTGTCACTCGATTCCCATAGTTTACAAAAAAAAACCAACGTCAATGCAGTTAAATGTCCGCACAGTATTTCCTGATGTTCTTGTGCCACAGTATTCACTGAAACGTTGACATAAATGACAGACACATGCTCGTTCGCTGGCTGATGTGAGATTTATATTAAAAAAAAAATATTCTGAGATGATTCTCCAACATGAAGGTTTTGTGTTTGCATGGAATATGTTCATTTCAAGGGAAATTGCTGTGTTTGCGATTCAAAAGGCGATGTGTATTTCTTAATGTTGCATCAACTGAAAAACATTCTCCAGTGTGCTGATCTGGAATACAGTTTTGTATTTGGCTGGTGTTTTTTGTTTGTTTTTGTTTTTTTAATTTATTACACTTTAAGGACCTTTGTTATGCAACGTCAAAAGAACAAATAAAGCTTAATGCATGGTGCAAAA +>MF557355.1 Uncultured bacterium clone 1686 16S ribosomal RNA gene, partial sequence +GTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTCTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGGGACTTGAGTACTGGAGAGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCAGTGGCGAAGGCGGCTCTCTGGCCAGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCC +>XM_012605072.2 PREDICTED: Gossypium raimondii heat stress transcription factor A-4b (LOC105780637), mRNA +TGTTGTTACTAAGTCATAAGACTCGTATAATTAATAAACCCACTGTTTCCTATCTCTCTCATCTTCTTCTTCCTCTTGCTTTTTCCCCAAGTTTTTATTTTGGATTGGATTAGAAACTTCCACCCACGTGTTTGGTTTTTTTATTTAACTTCATATTTTTTCCTCAATACCCTTTCTAGATTATTTTCCTGGAAAATTTCCCTTTTTTCTTTTCATAATCCAACCCTGTTTGACAATTTTACATGGGATAAAGGAATATCTACTTTCCTCTGGATTGTTCTTCAAAGGTTTTTAGGGTTTAAAGGTTTACGTGCTTTCAGTGGAAGTGATCCTGGTTTCGATTTAGCTTCTGAAAATATCAATTGTTTTGACTTTTTTGATTTAAAAAGAAAAAGGAAAACGCAGGCATATGCTTGAGTTTGAATGAAATGGAAGGATCGCAGGGAAGTTGTAATGGGCCGCCGCCTTTTCTTACAAAGACATACGAGATGGTGGACGATCCAGTGACTGATTCGTTGGTGTCTTGGAGTGAAACTGGTTATAGTTTCGTTGTATGGAACCCCCCAGATTTCTCAAGAGATTTGCTCCCTAGATATTTCAAGCACAACAACTTCTCAAGCTTTGTCCGTCAGCTCAACACCTATGGGTTCAGAAAGATAGATCCTGATCAATGGGAGTTTGCAAACGAGGAGTTCATAAGAGGGCAGAAACATCTTTTAAAGAACATTTATCGACGCAAGCCAATCCATAGCCATTCCTTGAACCGGCAAGGAAGCTCTAGTGTGCCATTGACTGAGAAAGAGAAGAAGGAATTTGAGCAAGTGATCAAGATGTTGAGTGACGATAAGAACCGGCTTCAGTTACAGTTGCAGGGTCATCAAAAAGAGAACGAGGAATATCGGTGTCAAGTAAGGCTGTTATCGGAGCGTTTTCGGAACATGGAAGATCGACAACGACGAGTGATGGTCTCATTGGCTAGGATTATAGACAAACCCCATGTTCTGTCCCAATTTCATGGCAAAAAGAGAAAGTTATTGAACTGTAACGACTTCAATGATGAATGCAACATACAAGATCTTCACAGTTTGGCTTCTCTGAATGCAAACATGGGATTGGACTTGAAACAGATTGAAGAATTGGAATCATCTATAAGATGTTGGGAAACATTGTTTCTCGAAATCGGAGAAACTATAGGTGAAGAAGTGCGCGATTTCGGGACATCCTTACGGCCTTCTCCGGTTGTTGTTACCGAAATACAGACATCTTCAGGGGACTATGACATGGATGGTGAACTTTACTCACCTTCATCACACCATTGCTCCCCTTATTCAACCGATATTAACTCATCACCTGAGCTGGTAGCCCCTGCTTATCGTCCTATCCATACACCATCATTTCACCATGTCGTAAATCTCAACCCAAAGCCTCCTGGAATTGGCCTAAACTCCCAACATGCTAGTCCACTGGAGACCGATCAGGCCTCAAAGAACCAGGCAGAAGCAGTGGCGACCGGTTATACCGTGCCAGGTAGTGTAAACGATGGCTTCTGGGAAAGGTTTCTAACCGAAGTTCCGGATACATCATCGTATGCACAAGAGATCCAGTCAGTTTAGATTACCTGGCATAGCAGCTTTCTCCAGATTAAAGAATTTAGAGTAGGTTAAGTGATAGAAGTGAGCTATGCTATTAACCATGTATTACTTCTGCCACATACTATGATGTAAGGATATTAGGTTAGAGGACTCTGTATTTTTTGGTTTACGTTTATCTATCTTCTTTCTCTTAGTTATTTTAGCAACAATTTTCACTTTGAATTGAAGGTTATTTTTTTA +>XR_002390227.1 PREDICTED: Heterocephalus glaber uncharacterized LOC110346290 (LOC110346290), ncRNA +TTTCAGCTTTCTCCTGCCAGTTACCTCTATCTCAGGCAATATGTTTACACTATTTCTTGGTTTTTTCCATGACTGTTACACTAGGAAATTAGAATTTTCCTCTCTTATGCCCTCTGTACACTCAGCCCCCCCAGGCAGATGTATGATAAGTTGTGGTAAGATCAATATTCAACAGTCACTGTTTCATCTGTGTAAATGTTACTCCATGAGCTGTATTTATCTTCTTGTGCAACTGGGTTGCTGTATGTTAATAATTTTCCTGTGTTTGTTTTGTTTTGAGACAGGGTCTCACTATGTAGTCCTGGCTGGCCTTGAACTCATTATGCTGCTTAGGCTGGCCTTGAACCCTCCGAGATCCTCGTGCCTCGGCCTCCTGAGTGTTGGGATTGCAGGTGTGCACCACCATGTCCGGCCGTCTTGGTTTTCTAAGCATCTCTCTGCTTCATCACTGAGCGCCCATGAGTTGCTTCTCTACTGCTCCAACCCATGCGGGTGTTTCTAAGTCATAAGCCTGAGCTGGAACTTGGGATCCTCCTGCCTCAGCCTCCTAGAGCTGGGATTATAGACCTGCACTACCATGCTAAGCTTTTGGTGCCCTCCCCACCACCACCACCATGGGTCCAACTCAGGACCTTGCACTTGTGAGGTATATCCTGGAAGACTGAAATCACAGAAAATGGGCTGACATTTGCTCTAGGAGCCACGAGTCAGTCTTTCCTGGCGAACAGTTCAGGTGCATTCCACAGCTGGCTGAGTGCAATGTCCGTGTCCACGAGGCTAAGGCAGTTGGCAGTCACTGACACCATCTCATCTCCAAGTCTACTCCATCCTTAGTACAGTTAGTGTTTGCTGTCTCCTCCTGTCCTTTCACTTTGTTTTTAATGTGAATTTAGTATTTCTTTGCTGTTCTTCCTTGAACTGGGGTGTGTGGTGCACTTACCATTAAGTTAATTCAGTGAATATCTTTGGTTTATTCCTGGGAGGGAAAGTGGCTTTTGTTTATATTTGCTCTTGCCATTTGTTCCTACTTCACTTGAGTTTATTAGTTATTCCTTTCTGCCTTCCTTGAGTTAATCAAATATTTTTCACAGTTCCATTTTGATTTTTCTAGCAGCTTGAGCTATACCTCTGCATTATTGCTTCTGGTTACTCTGGGGCATTGGTGGCAACCCTGTGGTATGAGTGCAACAGCGGGCTGTATCATTGAAAGCTCTAAAAGGTTTGTCATCGCTGTTCTAGGGATTACAATATGTATCTTTTTCAAAATCTAATTAGTATTATGCTACTTTACACCAAAATTAGTAACTTTTAACAGTGTAATCCCATTTTCCCAGTCCATATAAAACACAACCCTGGATAGCATGTAGAGTCTCACAGCTAATTAAAAACTAGTTAGTATGCAGATATGGCTGTTTTTAAGTCAGTATGAAACAGTCTGGGACCTCGAGCAAACCCCACCAGTTAGCAATGAAAGAGATTTGGCCAAAGCACCCAGCAGTATTCATTTAAAAGCTTCATTTGGAGACATTCTACATGCAGTCATTCGGTGATGCATCCAGCACAGGGAGGCTGCTAACAGTGCATCCTGCAAACCTTTCAATCCTTTCAGAGTAAGAAAAGCCCAAAGGATGGATGGAACATCTGAATGGTCCCTGAGGTCTGTTTTGTTTCCCTGCTGGCTTAGCAGTCAGTCATCATGGAGACCTCAGTGTTAAATGTCACCCAAACGCCCTCACCCCAGAGACAGGAGGAGGCATACCACATGTCCTCAGGCAGTCACAGCATCCTCCTCCAGTCCATTCTTTAGGACAGCTGAGCTCCCTGACAAGGTGAAAGGAACAAAGTACTAAGATGATGAAAGCTGTATCACCAAGTCCTCCTGAGTGTGAGCATCATGCCCTGGTTCCCGTGCACTTGGTGAGGCTGCAACCAGGAGGCTAGGTACGATGCCCACTTCTGAGCTGAGCAGACAGGAAGGGTGAATTCCCAGAACCTGCTGTCAGGAACAAGCATCAGAGCAAAGACTCTAGCTCCTGGGAGAAACTCTCCAACCTAGTTGTGTGGCTGAAATTAGTAGGGAAAGGTGAGGAAGTTACGTCTATCTAAGAGCAGGAGGATTAAAAGCTGCCAACTAGGAAGGAAACTGAAATGCTTAAAAAGTTAAAAAAAAATTTTCATTGTAGTCTGATGAATATTTCGAAGTATATAGTAAGGTATTTAACAAGGACTGGTTACCTGTGTGTAGGTTAGAGATACTAAAGTGATATGGTGCGCTGTCAGCCATATGGGGTGCAGACTTCCTCCAAAGCAGATCAATAGACTTATTGTTAAAGACAACATGTGTATTGAAAGTAGCAATTTTATTTGAGTTAAAATTATTTACAAAAACCCAAAGACATACTTCATGAAACTGGTACAAACTATTTTTTTCCTGCCGTTGGCTTTTGCTCCAAAGATCACAGCTGAGAAATACTGTATAAAATAAAAATAGGATTGGATTCAGAAAAGTACTCTACTGTTCTAATTTCCAATTGGTAGTATTTACAGAAATATTTACAGTGG +>XM_028898326.1 PREDICTED: Prosopis alba vestitone reductase-like (LOC114713661), transcript variant X1, mRNA +ATGGAAGACAGCAAAGGAAGAGTATGTGTTACTGGTGGTACTGGCTTCATAGGTTCTTGGATCATTAAGAGACTTCTTGAAGATGGCTACTCAGTTAATACTACCGTTAGATCCAACCCAGAACACAAGAAAGATGTGAGCTTCCTCACAGATTTGCCAGGAGCATCTCGGAGGCTACGAATTCTGAAGGCAGACCTAAGCGAGCCAGAAAGTTTCAAGGAAGCCATTGAAGGGTGCATTGGAGTATTCCATGTGGCTACTCCAGTGGATTTTGAGGAAGGGGAACCTGAAGAGATTGTGACCCAAAGATCCATTGATGGGGCATTGGGAATTCTGACGGCATGCCTCACTTCAAAAACTGTGAAGAGAGTCATTTACACTTCCAGTGCCTTTGCTGTTAATTATAGTGCCAAAGAAGAGGAAGTGAAGGATGAGAGCTCATGGACTGACGTGGATTCTCTTAGAACTTCAAAACCATTTGGATGGTCTTATGCAGTTTCTAAGACATTGACAGAGAAAGCAGTGCTTGAATATGGACAACAAAATGGATTAGATGTTGTCACTGTGCTTCCCAGTATTGTTGTTGGATCCTTCATTTGTCCTAAGCTTCCTGGTTCTGTTGGTTCGGCACTCTATTTTTTATTAAGTAAGAACGACCCATTTGCTTATCTGCAGCTACCTATGGTGCATGTGGATGACGTGGCAAGAGCACATGTATTTCTGCTTGAACATCCTAAGCCAAGGGGAAGATATAATTGTTCTTCATGTCTGGCTACTGTTGAAAAACCACTTGAAATTGTGTCTGCTAAATTTCCAGAACTTCAAATTCCAACCATAGAAGAAAGAGCTAGCCTGAAAGTTTCAGATCTGCCATCTAAGAAGCTTATAGATGCTGGATTTGAGTTCAAGTATGGACTTGAGGAAATGTTGGTGGATGCTATTGGATGCTGCAAAGAAAAGGGTTTTTTATAG +>XM_044451096.1 PREDICTED: Varanus komodoensis leucine rich single-pass membrane protein 2 (LSMEM2), mRNA +CCTGAGCAGCTGATGTGACAGGCAGAAGCCTGTGTTTACTTCCCCAACCGCTCCCAAGGGATCTGCATAGGCCCCTCATAACTTCTTCCAGACAGATTTTTTTCCCCTTGAGTTGCCTCCGGAACAGCCCAAGGAAGCGGAGTCTGGCTATTGGGATGTCCAGCGAGATTGCAGAAGGCGCTATGGTGAAGGAGGCCACTTCCTCGGATAGGGAGCTTGTTGAGCCCTGCGACACTGACAGGGCAGAAATCAACCTGCATGCAGTGGAATCCATTAGCGACTTGCACTACGCATCCGGCAGACCGGAGGGCTTCAAGGCTTCGGAAGGGAGCAGCCAATCTCAGCCTAACACCCCCTGGACTCCGCACAGTGCTTCCTCCAAGCATTTCTTCTTCCCGAATGAAGAGGACCCCTCCTTCCTGCCAGTCCAGAATTTGCACATTGCCCCCGATTTCTTCTGCTGCCCCTGCTTCAGCCCCACGTGCTGCCCCACAGGCTTCTTCGCTCTCCTCGGCGTGCTGGTAGTGGCCAGCCTTGGCCTGGCCACGCTGGCGGTCTATCTGAGCGTCCTGCAGCGCGAGTCACTCCGTGTCCTCAGCCAGTGGCTGGAGTCCCAAGAAGAGGCCATCCGGCAGATGAGAGCTGTGAGCGTACAGCTCTGGAGGCAGCTCAACGCCAGCGAGCCCGGGGCTCAAACCTGAGTTGCACTGCTCACCCACAGCCTCCTTTTGGGGGCGCTCAATTCCAGTGCGACAGAAGAGGGGACACCAACTCACTGCTTGGCACCTTTTGGACACTGACCTGTGCTGGTTTGGACTGTGTGATCCCAGAAGCTTAAAAAAAAAGCTCTTTTGAATCACGGGTGGGTCTTGTGAGGTTCGTGTGTCTTATTGGAAGCAAAAGCTGGAGACCTTGAGGCTGCCTCAGGCGGAGAGGGGGCAGGCAGGCAGGCAGATGTCCTACCGAGGAGTAAAGCAATTGGGGGTGGGGGGGGGTCTGCTCAGCAGCCTCCCACCAAGGGCAGCATCTCAGCCACTCTTCCTTTCCTTCCTCCACAGCATTTTAAAAGACATCACCTCCATCTTCTCTGTTTTTTCGCTCTGCTTCACTCTATGATTATTTAATGGTTTGCCAATGGAGCACCTATGCAGAAGTGCCTGACAGCACAAAATAAAACCCTCAAGTTTCTGCTGCCA +>XM_004069731.4 PREDICTED: Oryzias latipes pyruvate dehydrogenase complex component X (pdhx), mRNA +CAAAGCCAGAATTTACGGACTGGACGAGGGAGGACAGCAACATGGCGGTCTCCTTGCGCCTGGGTCGTCAGGGAGCTCTGCTTGGGCTCAGATTCAACCAATTTAAAAAATCAATATGTCCCACACATTATTTCCAGGACCGAGTTCGACAGTTTTTTCATTCACCATGGGCGCTTGGTGTCACTCCACTCAAAGTGCAAATGCCAGCTCTCTCCCCCACCATGGAGGAAGGGAACATTGTTAAATGGCTTAAAAAAGAAGGTGAGACCGTGGAAGCAGGTGATGCTCTCTGTGAGATCGAGACTGATAAGGCTGTGGTTACCATGGAATCCAGCGACGATGGGATCCTGGCAAAGATACTGATGGAAGAGGGCAGTCGCAATGTGCCCCTTGGCACTCTCATTGCCCTTCTGGTGGAGGAAGGACAAGACTGGAAGCAGGTTGAGGTCCCCTCACCAGATTCTCCATCTGCAGCTCCCACGATTCCCCATGAACCCACTGGCTCCTCTGTGACCCCCGCATCTCCTCCTCTTTTACCCAAACCTGCGACGTCAGGGCCGTTACGTTTAAGTCCAGCAGCACGACACATTCTCAACACCCATGGTATTAACCCAAAACTGGCCACACCCTCTGGACCAAGAGGACTCATTACAAAAGAAGATGCATTGAATCTTTTAAAGGCGTCCCCTCCACCCAAAGCAACACCAGTTGTTGCCACGGCAACTGTCCCAACTCCTGTTCAGAGACCCACCCACACCCCCACAGGTCCCCCACCACCTCCAGGCAGCAGACCGAACATCCCCCCTCTGTCTGTACCAGGGAAGCCCGGAGCACCAGGAACCTTCACAGAAGTCCCAGCCACAAACGTGCGGCGTGTGATCGCTCAAAGACTGACCCAATCAAAGACCACCATCCCACATGCATACGCCTCCATAGACTGTGACATGGCTGCCGTCATTAAGCTCCGTAAAGATCTGGCCAAAGAGCAAATCAAAGTGTCTGTCAATGATTTTATTATCAAAGCAGCCGCTGTTACTCTAAAACAAATGCCAGAGGTGAATGTGACTTGGTCTGGTGATGGACCCCATGCGCTCGATTCAGTCCACATCTCGATTGCTGTGGCGACGGACCGAGGCCTCATCACTCCTATTATCAGGGATGCAGCTAACAAAGGGGTGCAGGAGATCTCAGCTCAAGCTAAGGCACTGGCTCAAAAAGCTCGAGATGGCAAACTTCTTCCTGAGGAATACCAAGGAGGCTCGTTCAGCATATCTAACCTGGGCATGTTTGGAATCAGCGGCTTCAGTGCCGTCATCAACCCTCCTCAGGCTTGCATCCTGGCTGTCGGGACCTCCCGGGCTGAGCTGCAGCTGAAGGAAGAGGATCAGACCGTGCACACGCGGCAGCTCATGACAGTAACCATGTCCAGCGACGGACGACTTGTGGATGACGAGTTAGCGTCTCGGTTTCTTGATCAATTTCGTGCCAATCTAGAACAACCACAGCGTATGGCCCTCGCTTAAAAAAAAAACAAAAAAAAACAAAGATGAGGGGAAAGATAAGAGAAAATTTGAAAAGGTCTCAAGCTATGTCTTTTGACAAGCAAGGAGCTGAAACAGTTTGTGTCTGTCCTTTCTTTAAGGCTTTAAATAAGGTTGTGTACATACTGTGAACTTAAGTTTGTGGCCTCTCTGCTTATTGTCCGCAAGTTTTTGGAGTGGAAATGGATTTCTCCCTAAATTTAAAGGGCTTGTGCAGTGGTTCCACATTCTACCATGAAAGATAAGACGGCAAATGTGATCCATCACACGGGTGTTGTGTATATAAAGAAGTAATTCTTCAATTTCCAGGTCAGACTTCATGAAAGTTGTTTCACTAAACGTAAACGTGAAATTGGTGAAGTCTCCTCATGTAAATTTGTGAGATATTTATTATTTAACATAAGTGACACTGCAGGTAAAATCCATGTAAAGCAGCATTTATTGTTGCTCATTATAAAAGTAAACTTAGTATGTGAACAAATTTATAAATTTATTCAGAATCACACATAAAGAAACATCTCCTTCTGGTCCACATGTATACATCAGGTTTGGTTTTGTTGTCTTAAACTCTGTCCAAGCAATAAAAGTCCTGTTCAACCATCTGA +>XR_004159256.1 PREDICTED: Meleagris gallopavo uncharacterized LOC116216471 (LOC116216471), ncRNA +ACCACTGAACAGAGCCTGGCTCTGTCCTCTTTGCATCTCCCATTTTATATATGTTAATGGGACCTCCTTGGGCATTCTCTTTTCTAGCTGATCAGTCTCAGCTCCCTCAGCCTCTCCTCATGGAAGTGCTTGGTATACCCAGGCTAATTTGGAATGACTACCTATTGCTGTCAAAATAGATACCCTACTAACAATTCATTCAATAGGAGCTTACTGCTGTGGAGAAGCTGCCTGCTGCAGTAACAGCATGACATGTTCAGACTTGTTATGTTGCCTGACAGCCTTGACATATTTGCTCTGTTTCCTCTATTTGTATAATGGTCTCTGGCTACAACACACATCCCTGGACATGAATTTTCATTTTAAAGTTCCCAAATGGCCTTCATGAAACTTGTGTGCATATAACCCCAGTATTGCAGAAATAAGTACATCAATCGCAAACTTCAGAAGGGGAGCATGTTTTACACCTGACTGCTCTTCCTAACCCAGAATCCATTTGTTTATTGTATTTTAGTTTGGATTTACACACTAGCGATATGTCTTCTTACTTTATGCAACATTGCAATATTACTGCTTTACATAGAAAAAACATTGGCTGCACTGAGTCTCTGTTTAAAAACTGTTTGGATGTGGTGCTCAGGGACGTGATTTAGCAGAGGGTTGTTGGAGTTAGGGTAGTATGGCTAGGTTGTGGTTGGAATTGATGATCTTTAAGGTTTTTGCAATCTGTAATTCAATGATTTTTGTGATTCTGCAGTGAAAATGCTAAGTCTCGGCTTGGAACAGTGATTGAGCAGCTGGTGGGAAGGCAGGGCCAGCCCAGGAGAACTCAGGTGGATGCACTGTGCTCATTTAAGGGCTGGCAGTGGAGGAAGGTGCATATAAAATGAGAGTTTTCCCTTAAATGAAATATAAGAAATTTCCTAGACTTCTGCTGTGTAACCTACGCTGCTTCCAGCTTCTCCTGATGAGCAACTTGGTAACTGTGCTTTTTGCTCTTTCCTGATGAAGAACTGCTGCCTTCACTGCTCCATTTCCTGCATTGCTCACTCCACCATCCGACACCTTCAGAAAATATTGCCACCTGTTGAGAAATTTTACAATCTTCCTGCCTCTTGATGATGTGTGGGATTTGGAGGAGAGTGGATAAATAGAAGAAGACCTGTAGCCTCTTCATTTGCATCCTTGACCTGCTCAAGGCTTGGGCAGTACCTTGGTGAAGGACTGTTGGTGGTGGTCTCAGAGGAACAACCAGTTAAGAAGTATACTGGAGTTTTGAAAGAACTACATGGACTGAAGTGAAGATCATGTTCCCAAACTTCTGATTCAATGGAAAGCATCCTTTAGCTTGATACAGAGCTATACACTGTCAAAAGGCTTTTTCACATCTCTTTGGGAGACAGATTCAGCCACATGCTCTCGTCATTCACAGTGGAACTTCATGGGTAGGCAGAGGACCTCTCCCTCCGGGCTGATCTGGATGGGGAATGCCCACGGTACCTGGCACCTG +>XM_041282614.1 Brettanomyces bruxellensis uncharacterized protein (BRETT_004118), partial mRNA +ATGCCACCGAGAAAAAGAAGAGGCAGAAAGAAAGCCACTTCTGTATCGAAGAAAGCAACCAGAACTAATTCTTCACATGGTACAAGTGATGCCACGCAAGATACCTTGAAAGATGGTGAGAAGAAGATTGAAGAAGCAGCTAAAACTCCCAAAATCACAAAAGATCTCAAAGAGTTGGAGGAAGAACGGAAAGACGCGAAAAGTGAAAAGCATGGCCAAAGTTTACCTGTTACGACTGATGCAACAATTGAAAGCAATGTTAAATCAATAGATTTGAAAAAAGCAGAGCCCAGTAATGTGCTGTCTAAAGAGAAAGAAAAGGATGCATTTGCAGAAACAGAAGCTGATGACATAATGAAGATAGTGAATGAGACGAACGATAAGAAAAGGAGTATAATGAGTCCAATTAAGAGTTTGCAAATAAGCCCTTTAAAGAATATAATAAAAGGCGATACAAAAGATCTAAAACCTGATGCAGGAAGTCCGATCAAACGCAGAAAACTTGATCCTTCTCCAGAACGAAATGTTGATAGAGACACAAGATCTATGGAAATGCACGTTGGTTTATTGTTTCAGAAGAAAGACTTAAAGGGTCTCACTGCCATTTCTCAGAAGACTTCCAGGAGGTCTGCCCAGACATTTGAAAATTACAAAAAGCTAGTTGATCGACGCGCAAAAACTGCAGAGATTATTATTGCGAACCTTACAAAAGAGAATAAGACTTTAAAGAACACAATCAAGGGACTCAGAACTGAGAATCGACATTCAACGAATGCAGTGGATAGCAAAGAGATAAACAAATGGAAAACAAAGGAAGTAGAAACTAGAAAGAAACTAGACAAGTTGGAAGAAGCCAAGAATAGCATAGAATCAAAACTTTCCGATGCGAACAACGAATTAGTGCTATCAGATTCAAAACAGGAAATGATCGAACTGCTATGTGGAACAGCATGTCTTGATTACGAGGAAAATGAAAAAAGCATTATATTTGCGCTTAGACAAAGTGGTACACTGTGTACATTATACTATCAACTCATCATAAATAAGTCCGAGCCATCAGATTTAATATACTCCCCAGTTCAAAAGAAACCGCAGGAATGGCCTACGGATAGTGCAATTTCATGGAAGGTGAATATGGATCGGTTGCACTCACTTCTTCCAGAATACTTGTTGGACAATCTTACTTTCCCTTCAAGCAACTTGAGAAACTTTTATCGAAAAATATCAAAAGCCGTGAATGGAATGGGAAAGCAGAAAGAGGCAGCATGA +>XM_013019345.1 PREDICTED: Dipodomys ordii tumor protein p63 (Tp63), transcript variant X7, mRNA +AAAACTTTTTTTTATCCCCAGAAGAGTGGACAGATACCATCAAATCAACTCAGTATCCAAACCCAAGGAAATGTAATTTAGCTGGAGGGAGATGGCCATTCCTCAGACTTGTTATAAAAGTCCAGGCTGCTGAAATTAAACTCTGATGCCATTCAAGCCAACATCCAATCAGGAGAGAGATCAGAAGTTCAGAGATGCCTCCAAGTTGCCAGCAAGTGTGGCCACTGTATGTCAAGGACTCTAAAGCCGTGGAAGAAAGGGAAGAACAACTTTAGTGAGGATGCCCAGCTGGTAAGAATCAACTGTTTGTGATGTTTTAGTCACTTGAGGAATCTCATTGGCTAACTTGAAGAAAGGCTCCACCTCTTTGCAAATATGTGGAATGGGAGAGAGGGGGTGAGGAAGGGGAAGTGTCTGAACTTCTATATCTGATGGCATCTGACCCTAATGCTTTAAGCCTCCTGGCCATATATCTACATATACACAGGTATATGTGTATGTTTTATATAATTGCTCTCCATTTGTTGATATCAAAGAGAGTTGAAGGAAATGAATTTTGAAACGTCACGGTGTGCTCCCCTACAGTACTGCCCCGACCCTTACATCCAGCGTTTCATAGAAACCCCAGCGCATTTCTCTTGGAAAGAAAGTTATTACCGATCCACCATGTCCCAGAGCACACAAACAAGTGAATTCCTCAGTCCAGAGGTTTTCCAGCATATCTGGGATTTTCTGGAACAGCCTATATGTTCAGTTCAACCCATTGACTTGAACTTTGTGGATGAGCCATCAGAAAATGGAGCAACAAACAAGATTGAAATTAGCATGGACTGTATCCGCATGCAAGACTCAGACCTCAGTGACCCCATGTGGCCACAGTACACGAACCTGGGGCTCCTGAACAGCATGGACCAGCAGATCCAGAATGGCTCCTCGTCCACCAGCCCCTACAACACAGACCATGCACAGAACAGCGTCACGGCGCCCTCGCCCTATGCGCAGCCCAGCTCCACCTTTGACGCCCTCTCTCCATCACCTGCCATTCCCTCCAACACAGACTACCCAGGCCCGCACAGCTTCGATGTGTCTTTCCAGCAGTCGAGTACCGCCAAGTCGGCCACCTGGACGTATTCCACAGAGCTGAAGAAGCTATACTGCCAAATCGCAAAGACATGCCCCATCCAGATCAAGGTGATGACCCCTCCACCCCAGGGTGCTGTTATCCGTGCCATGCCTGTCTACAAGAAAGCTGAGCATGTCACTGAGGTGGTGAAGCGGTGCCCCAACCATGAGCTGAGCCGAGAATTCAATGAGGGACAGATGGCTCCTCCTAGTCATTTGATCCGAGTAGAAGGGAACAGCCACGCCCAATATGTAGAAGACCCTATCACAGGAAGGCAGAGTGTACTGGTACCTTATGAGCCACCTCAGGTTGGCACGGAATTTACCACTGTCCTGTATAATTTCATGTGCAACAGCAGCTGTGTCGGAGGGATGAACCGTCGTCCAATTTTAATCATCGTTACTCTGGAAACCAGAGATGGGCAAGTCCTGGGCCGCCGTTGCTTTGAGGCCCGGATCTGCGCTTGTCCTGGAAGAGACAGGAAGGCGGATGAAGACAGCATCCGCAAGCAGCAAGTTTCAGACAGTACAAAGAATGGTGATGCTTTTCGTCAGAACACACATGGCATCCAGATGACATCTATCAAGAAACGAAGATCCCCAGATGATGAGCTTCTATACTTACCAGTGAGAGGCCGTGAGACTTATGAGATGCTGTTGAAGATCAAAGAATCCCTGGAGCTCATGCAGTATCTTCCTCAGCACACAATTGAAACCTACAGGCAGCAGCAACAGCAGCAGCACCAGCACTTACTTCAGAAACATCTCCTTTCAGCCTGCTTCAGGAATGAGCTTGTGGAGCCCCGGAGAGAAACTCCGAAACAATCTGACATCTTCTTTAGACATTCCAACCCCCCAAACCAGTCAGTGTACCCATAGAACCCCATTTCTGTATTTGAGTGTGTGAGGTCATTATGTTTCCGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGAGTGTGTTTATACCCAGCTCTCATAAATAGAACTTGAAGACATTTTGGCTCAGAGACCCAACTGCTCAAAGGCACACAGCCACTAGTGAGAAAGAATCTTTTGAAGGGACTCAAAACTTTACAAGAAAGTATGCTTGCTGCAGATTTTGTACCCTTAGATCCAGCATTGGTTGGACAGGAACCACTGTTGTGTATGTTTGTGAGCTTTTTGTTGTTTCCTGGGAGGGAGGGGATCAGGTGGGGAAAGGGTATTACAATGTTTATAAGACTCCTCTTCTGTTGCTTTCTGTTGTATTTCTAAAACTCATAATGAAGCTTTTGAGCAGGTCTCAAA +>XM_044435426.1 PREDICTED: Varanus komodoensis meiosis initiator (MEIOSIN), mRNA +ATGTGGGACCAAATTGGCCGTGTTTGCCCTGAGGAATTACAGCTGAACAGCAAAAAAATCAAACAGAATTCTGATCGAAGAAAACACAGTAACTATACCAGCACTCTTAAAGAACTGGCTCAGATGTTGCCCATCCCTTTGCGGACAAGCTGCAAAAGGTTAACAAAGAAAGAAATGCTTCTCCGAGTCCTCCGTTACATCGAACACCTGCAGGCAAGCATTGATACAGCAAGATCTCTGCTCCAGGTCCACTCTGGGGAGCAAAAAGCAGGAGAATCTGAGCAGATGGTGACAACTGCCCTAAAGAGCGGGCGAAGAGAAACTACACCACGAGTAAAGAAAACGAAGCCACTGGCTGTCTGCAAGAAACCCAGGAAGAGGAGACGCACCCATAAATCAGAGCAACAAGGGGTGAACAAGAAAGTGTGCAAGAGCCTTGCTCTGGAGACCGGAAAGAGCCCTTCCCAAGCCGACGAACAACAGGAGGAGAACCCATCTGCATTGGGAGTTTGGAACTTGAGTGGCAACCATGAAGAAAGCAAGGATTATGCCAATGTGTTTTCTGCGTGTGAAGCTTATGAAGAGCCGCATCGATACACCGAAGTGCCTACGCATTCATTGATGGGGCAGGAGCTGGTGTACTACTATTCCTCTTGTGAGGAAGATGAGGAGGAAGGACCTGAAGCCAGCCCTTGGCTCTCAACCTGGTCCCCTGTGGGCATTTCACATGGTGACCTGCAGCTCTGTTCGCCTGCGATCATCACCCAAAGCAACCGTTGCACAGATCTGGGGTTGAGCCCTTCGCTTTTTTCCTCTCCAGCTCGGTTGCTGCCTACACACATCCTGCAAGGTGGCCAGGAGGAGTTTTCCCCAGTGCTGTTCGAAGATGTATGCCTGTCCCCACAGCCTGGTAGTTTTTCTCAGTCCCTCTCAGGCACCCTGTTAAGAAAGTCAGCATTCACGCTGGATCACTGCTACCTTTCCAACAGCGAAACAGGTAAAAGCAGTTCCAGTCCTGTGTCAAGAGAAAATGAGATCAAGTCATCATGGAACAAGCAGTTCCTTCAAGAGGAAGTTCACACTGCCAGGCCCGAATGCCCTCTGTCCTCCAGTGATGAGAACAGTGACAGCACTTGGACCCCATGCAAGAGGACGAAGCCATCCAGGGCGGCCCGTCGGAAGAAGAAGAAGAAGAAGAAGAGGAAGAAGAAGAAGCGAGCAGGCAGAAGGCAGAGGTGCCGGCCAGTAGCCCGCGAGAAGGGCAGCAACGCCTCCCCTTTGCAGCTGAAGAAGAAGTGTGTGAATGGCTTTATCATGTTTTGCCGCCTGAACCGCAAGCACTTCATCCGCGCTTGTCCAGGCATGGCCTCCACAGCTGCCACAAGAGAGCTGGCCCAGCTGTGGCGTGTGATGACGAAGCAGGAGCGCCACCCATATTGCTTGAAAGCACGGAGATTCAGCCGTCTGAACAATCGCATTGTGAGAGATGACTTCTCTAGCGGGGAAGAGGAACCAGAGCCACCCAAACCTTTCCATCTGCTACTCGCTGAGAAATCCCTCCCTGGCACTGAGAATTTTGGTGACTTCTCTTTACTATAG +>XM_031628525.2 PREDICTED: Nymphaea colorata UPF0548 protein At2g17695 (LOC116253610), transcript variant X2, mRNA +ATCTTATTTTTAAGAAGAATTGAAGATGAGAGAGGGAGAGAGATCTGGCAGCAGGTCTGTCTCCCACAAAATGGTGTTCCTGTTCTGGAATCGACCGTCGCCTCATCAACAGTCCGCCTGCCTCAAGCAGGCGGGAGACTTTAACTACGACTCAAAATATCGTTGCTTGACTTCTTCCCCTTCGGATTGCAACCCAAATTCAGCGTCATCTTCGCCGCCACTACCGTCTTCATCTTTGTCTGAGCTCCGACATGGCTCCAACCGCGATGGTTTCGTCGTTAACCGCGCCCGCGTCCTTCTTGGCTCCGGACTCCAGACATACCAACAAGGAAAGCGAGCTCTTCAAGCTTGGAAGCACTTCGGCTTGGATTGGGCGTTTGTGGATCCCAGCAGTCCCGTCGAGGTTGGGGAGAGGTTCTGCGTGTGCGTGAAAGAGCTTGTCCCTTGGGCTGTTCTGCCTCTTCAGATCGTCTACGTTAACGACCATGATGCTGTCAAAGATGGTTCCCTTAAAAGGGGTTTGACGGCCTCCTTCGCTTTCGGGAGCGGAACCCTTCGAGGCCATTTATTGGCTGGAGAAGAGCGGTTCTCGGTTGAGCTGGACGAGGACAACAAAGTGTGGTACGAAATATTCTCAATTTCCAAGCCCGCCCACCTACTTTCCTTTGTCGGTTATCCTTATGTCCGTTTTCGGCAGAAGTACTTCGCCCAACAATCAATGGATGCACTTGTACGACATGTCCACTCTCAAGAGCGTGCTTAATGCAAAGTTCATATCGAAGTCCTCTTGCTCCTGTTATGGCACCAAGAAATTGTTATGGCACCAAGAAATATTGCACACTTCAAAATACATGAGTACTTAGTATTTTCACTCA +>JN440548.1 Uncultured organism clone SBYB_3744 16S ribosomal RNA gene, partial sequence +AAAGCAGCTAACTACGATAAACTGGACGGTAAGGGACGAAAGCTTGGGTAGCGAACGGGATTTAGATACCCCGGTAGTCCAAGCCGTAAATGATGCTTGCTAGATGTTTTGGACCCTTGTGGTCTGGAGTGTCGTAATCTAACGAGTTAAGCAAGCCGCCTGGGTAGTATATTCGCAAGAATGATACTCAAAGGGATAGGCGGGGGTACACACAAGCAGTGGATTGTCTAGATTAATTGGACAATAAGCCAAGAATCTTACCTAGATTTGACATGTACTATGTCCTATGTGAAAGCATAGTAGTCCGAGCAATCGGACATGGTATACAGGTGGTGCATGGTCGTCGTCAGCTCGTGCCGTAAGGTGTCTAGTTAAGTCTGGAAACGAGCGCAACCCTCATCTTTAGTTAGAATGTCTAAAGAGACTGCTCTGGTAACGGAGAGGAAGGAGAGGATGACCGTCAGATCCTCATGCCCCTTACATCTAGGGCTTCATAGACAATACAATGGGTGATACAACGAGAAGCTAACACGTGAGGTGGAGCAAACCTCTAAAGTTATCCCAAGTTCGGATGCTAGTCTGGNACTCGACTACATGAAGTTGGNATTGCTAGTAATGNCGGGTCAGCTACACCGCCGTGNATATGTNCCTGTCCATGCACTCACCGCCCGTCANACCATGGGAGCTG +>XM_036157752.1 PREDICTED: Mus musculus predicted gene, 38699 (Gm38699), transcript variant X8, mRNA +CGATTGGTGGTCAGGCCTGCGCCCGGCACCGCCGGGCGGTCCTCCGCGCCATCCCCAGCCGGGCCCTCCCCTTTCCGCGGGAGGCTTCCGGGACAGCGGGTTGGTGGCGCGCAGTTCCCCTTGACTGTGCGCGCCCGCGTCTGGGCTCCTTTGCAGAGGACTCGGTAGCTGCAGCTCCCGGAGCACAGCAGACAGAGCTGCAGGCTGCGTGCGCCCCTGCTGCCACCGGACCTGCCGCGGTGGCTCCCGCGCCCCGCGGCGACTTCCGCACCCGCGCTTATCTTTGCTTAAGTCCCCGAGCGGCGGCGGGGTCGGAGCCCGCGCCTTGGGCGACTGAGGCGGCCGCAGTTCGCGGCCCGGCGCCCTGGCGATGCCAGACCAGATCTCCGTGTCGGAATTCGTGGCCGAGACCCTTGAGGACTACAAGGCGCCCACGGCCTCTAGCTTCACCATGCGCACGGCCCAGTGCCGGGACACCGTGGCGGCCATCGAGGAGGCTACACTTGGGAAACCCATCATATTGAAGGACATTGTCAAAGTTCGAGAAGAAATGAAAGCTGCGGGTGGTGTTGGTGTTGGGCTGTGTGTGTGCCTTCCCTTCTTTTGTAGACAGTAAGAGATTATTTACTACCTGTGTTTTCATGTGTATCCTTAACTTCCTCGGTTAGATTCTACCTCTATCTCTTTGTGTTGGTCAGTATGTTTAGAGAGAGGTTGTTTAAATTTGAGTTTATCGTGGACTATCTTAATTTTTTCCATTAACGGTGTAGTCCTTTTTTTACATATTAAAATCCAGGCATCTGTTGTTTTTGCAGCACATGTGTGCAAACCCTTCTGGCGTCTACAAACTCCAAGAAGACATCTGTGATCTTTTTTTTTTTGTTTGGTTTGGTTTGGTTTTTTTTTTTTGTTGTTTGTTTGTTTGTTTGTTTGTTTGTTTTTGAGACAGGGTTTCTCTGTATAGCTCTGGCTATCCTGGAATTCACTTTATAGACCAGGCTGGCCTCGAACTCAGAAATCCGCCTGCCTCTGCCTCCTGAGTGCTGGGATTAAAGGTGTGCGCCACCACGCCCGGCCTGAAGACATCTGTGATCTTAATAGATCTTCCTTTATGTTTTTCCTGGCTTTTTACCTTTGCAGCTTTTAGTATTCTTTCCTTGAACTGTATGTTTTGATTATTACACAGGAAAGAGACTTTATTTTATAGTCCCTTCTGTTTGGTGTTTTGATGATTCTTGTGTTTTCTTTATGTTAGGAAGTTTTTCTTCTAGGATTTGGTTGTCAATACTTTCTGAGACTTTGAGGGAGGATTCTCCTTCCTCTCTTCCTAAGTATTCTTATGTTTAGTCCTTTTACAGTGTCCTGGATTTCCGTGATATTTTATATCAGGAAGATTTAGACTTACCATTTTTTTTTGTTTTTTTTTTTTTTGTCTGATTTACCCATTCCTTCTATTGCTTATTCAATGATTGAGATTTTTCTCCGTATCTCTGTTCTCTGGGTGAACTTTGCCTCTGTAGTTCCTTTTTGCAGTCCTAAATTTTTATTTCCACTATTTCCTAAGATTTAGTTTTCTTTTTTTGCTTCTATTTCCACTTTTATGTATTGAATAGTTTTGTTTACTTCACCCATTGGTGTGTTCTTTCTACGCTTTGTTTATAGGAATTTTGGCTTCCTCTACTTTTTGGTTTGTGTGTTCCTGGCCTTCTTTATGGAATTTATTGATTTCCTCTAATTTTGTTCTGTTTTCCTGGATTTCTCTAAGTGATTTGATCATTTCCTCTTTAAGGAACTCTGTCATCTCCATACATTTGGGGTTAGAGTGTTTTTCTTGTAATTTAGCTTTGTTGGAATATTTAAGACCTTCTTTGACAATATAAATGAGATCAGAGTCATTAGCCAGAGAGTGATAAATGCTGGTCCTTATTACATTATCGAGTACCAATGTCATGGAATGGAATGGCGCTATCTAACCTAAGTATTCAGCTTAGATTTAACCCAATGTTTGATTAATCCCAAGGCTGTCCTTTCCCTTTACACTGGACAGGTAGCCAAGTGAGGCACTTTTTGAAACAGTTACTTTTTGTGAGACACCTGTTTTTAATCACTAACCTTGGGTTAACCATTTAAAAAAAAAAAGACCTGATGTTTACAGGGTGAGTGACTTTGTAATTTTCCAAAATGTATTTATTCATGTCTTGTGAATGAAGACAGACCAGATTGATAGATATGTAAATTGGGGACTTTAGCTTGATTCAAGCAATATTGAATTTCTGACTTTGGAAATATGTCCAATGCACTTTCAGGCTTTATTCAGCTCAGATGATTGTGACACAGGCCATTGGCTGTAGTTATGTGTCATGTTACAGATCACAGCAACTGATATTGCACACAGGAGCCAGGTCAAAGAGTATTGTATTAATGCCATTGTTTTCTGCCAGATAACTTCTCTCTCTCTCTCTCTGTATATATATATATGTATATGCATATATATGTATATATATATAATTATGTTTCATTTTTCCTTTTTTAATTAATTAATTAATTTATGTACATCCTGTTCCTGTTCCACTGTGGATAGAGAGACAAGGCAGTCCTCTGGTACATATGTGCCTGAGGCAATGAGCCAATCCCTGGATGCTCCTTGGTTTTTGCTTGGAGGTCTGAAGTGTCCAGGTCAGCTCAAAGTTTTGTTCTTATCGGGTTGCCATCTTCTTCACCCCCTTAAGTCAGTACAGTGACCTGCCCTTATGTAACATTTCAACCTACAACAATATATCGATATATCGATCTACATATTTCTATATCTATCTATCTATTCATCTATATATCTATATAGCTTTAATCTATACATCTATATATCTATATATCACCTATTAATCTATATATCTACATATCTATATGTATATATCTATACACCTATACATCTATATATCTATCCATATATCAATAAATATATATAATCTCTATATATTATCTATAAATCTACATATCTATAAATCTATATATAAAATCTATATATCTAAAATATATATATACACATATATGTATATTTTTAAATCTATCTATCTATCCATCCATCTATGTATCTATAAGTCTATCCATATGTTTAGCTTGATGTAGCTTTTTTCTTTTTCTGCCAGATAACATATACATATATATTCAATTATGTTTCAATTTTTATTTTTTTAATTAATTTTTTTATTTATTTAAGTACATCCTGTTCCTGTCCCATTGTGGACAGAGAGACAAGGCAGTCCTCTGCTACACATGTGCCTGGGGCAATGAGCCAGCCCCTGGATGCTCCTTGGTTTTTGGCTGGGAGGTCTGAAGTGTTCAGATTGGCTCACGGTTTTGTTTTTCCTATCAGGTTGCCATCCTCTTCACCCCCTGAAGTCAGTACACTGACCTGTCCTTATATAACATTTCAACCTACAACAATATATCAGTATATTGACCTACATATTTCTATATCTACTATCTATTCTTCTATATATCTATTTATCATCTATATATCTTCAATCTATACATATATATATCACCTATAAATCTATATATCTACATATCTATACATATATATTTATATATCTATACATCTATATATCTGTCCATATATCAGTAAATCTAGATAGATAGATATCATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATATAAATCTATATAAAATCTATATATCTATAAATTCTATCTCTATCCATCTGTCTATCTATATGTTTAGCTTGATGTAGCCTTGTCTTAAAGGACTGTTATGTTCTAGGTTTCAGACGTTCAGGCTGAGAGGAAACAGTATGAGTAACATTTGATCTAATACCAGATCCTCGACTCTGGACCCATATTTTATGATAATTTTGGGATTATGATTACATCATTCCTACCTCCTGTGATCAATCAGTAAACACATCTAATGCCAGCAGCTGGCAAGAAGAAAGGTTGATGGCATTTCAGTTCTCGGCCTCGGTGTCTTTGGAAGAGACCATGACGGAGAGGGAAGAAGAAGCAGGAAAAAGGTCCCATGGGTGGATGGATTGGGAGAGCATGTCCAGGAGGGCGAGCCTGAGAGTATGAGCAGCCTGGGCAGAATATGGCAAGTGAGCCGGGCATGGTGGCACTCGCCTTTAATCCCAGCACTTGGGAGGCAGAGGCAGGCAGATTTCTGAGTTCTAAACCAGCTTGGTCTACAAAGTGAGTTCCAGGACAGCCAGGACTATACAGAGAAACCCTGTCTCGAAAAAAATTTTAAAAAAAAGAATATGGCGAGTGATATCTCACAGTTCTTAGTAAAGAAGTAAAGAAATTAGCATAGGGGAATGGTATCTGCCCCATGCTGGTGCTTTAATGCTTATAATTATAATTATTATTATTATTTCTTATTTTATTTTTTCACATTATCATTTACTGCATTATTATATCATATTATTTAATATTATTTCTTTTTATTATTTCATATTATTTATTATTTTATTATTTGATAGCATTGTTTCTTATTCTTATTATTTCTTATTAGTTTATTATCATTTCTTTTTCTCTTCTTCGTATTATTATTATTTCATACCTCTATAATTTATGTGGTGGTAAGAGATCCACAAGTAATATTTACCACAACAAGTTGGATGCAAAAACAGCTTGTACCCAATGAGAAATATGGCCAAAAGTTATTTTCTTGGGATACAGGAAGAAAGTCCTCTGGGGTCTCTGCTAATAAGGTCACACACACACATACCCCATACACATACCCCCACACAAACATGCACACACACACATACTACATACATACA +>XM_012367441.1 PREDICTED: Linepithema humile MAP kinase-activating death domain protein (LOC105672481), transcript variant X6, mRNA +ATTTTTAATTTTCTCGGATAATTATACTTACTACGAATATAAAAATCATGTAACGTTAAAGATTGCATCATGCCAGTATTAGGATTAAAATAATAAATTGTATATTCGAGGCTCTTTGGTCTTCAATATAAATTAGTATAGATTTTTATATATTCAATCTAAACTAAACCTTAGATTTTGCGTCAGTTTTGTATCAGAATCTAAAGAAGTAACTGTAGATTTTTTTAAAGGTATTTTAAAGGTATTAAAGGTATAGATATTTAAAGATACGATATAAAGATTATATGATCGATCTAATCAAATCTATAAATATATAGAATAATATTTACAATATAGTTTACGTTTTACGCACTCTTTAAAGCAAACGTTGTATATTTTATATCCTGCGTAAAAAATCAATATCATCTAATACGGTCTAAAATCATATTTTATTACAAAGAAGCGCAATGTTGAAAACTCTTTGGAACTACAGCGTTCGGTTGTTTTCCACTCATTATTCAACCGCGCTTCAACGAGCGAGAAAACGGAAGGATATCGAGCCGACGACAGGGTGTCCCAATAACGGGAGCGGAAATTCACTTTCGGAAGCGGAATCGGGATTCTAGCGCCGGTACTGGAGGCGCGTCCGTCCAGACGTGCGCCTGCCTGGTTCCGGCGAACGATCAGCGGCGCGACGGCGTCGCGACGACCGCGAAGCTCCGGGGCGCGTCGGCGGATCGCCAGTGTGATATCGCCACTTGGCTGATACGGAATACGGCCTGGCCGTCATTCGTATGGCAGTCGGACGAGAACGCGCGGCAGTCACTCGCGTTAACGCGCATTGCAAAACGTGGAATTAATAAGCGAGATAATGGTACAATCATGATTCAAGCTGGAAACGATCTTGAGGAGAGTTCAGAGGCTTGGCTGTCCTGTATATACTGCATACAACGGTGACACAGCTGTATATACATAAATCACAATTATGGATATACAGAAGAAATTCCTGTGCCCCCGATTGGTGGACTACCTCGCCATCGTTGGAGCCAGGATGCCCGCTGTCTCTCGTCAGCCCGTACAGGTCCCAGAGTTGCTACGCAGATATCCGGTAGAGGATCACAAGGATTTTCCTCTGCCTTTGGATATGGTGTACTTCTGCCAACCAGAAGGTTGCAGTAGCGTGGGACCAAAGCGCACGGCCTTACGAGAGGCAACATCCTTCACTTTTACACTCACCGATAAAGATTCAGGAAGAACGCGTTATGGGATTTGCGTGAATTTTTACCGATCTATGGAAAGGGCGGGGCTTGTGGCTGGCGGGGGAATTGCGCTCAAGAGGGAAAAATACAACACCACGTTTCGAAGGGAAAGCTGGAGGAAGAGTATGGAGAGAAGCACGGATTCCGCTTTTTCTAGCGACTATAGGAGCAGTGCAGTAGGTCCTAGTGATTCTGAGAAAGATTGCTCCAGCAGCAGGCGGGATTCGGACACCCCGCAGGTCAGCTCGGTCACCCCGAGATTGGAATTCATCGCAGCGAGCGGAGACAGCGAGAGCGGCGGCAGTCATTCCCCATCGCCACGCGCTTCTCGAAGACGCCAGAGGGTTCGCAATCATTCCTTGACTTCCCTATGCATCATTTCGCACCATCCGTTCTTCTCAATGTTCCGGGAATGTCTTTTCGTCCTGAAGAAAATCATCGACGCGTGCAACGAGAGTTTCTCGCCGCAGAAGGTGGGAGCCTCTCGGCAGACCAACAGAGACACGGTGTGGAGCGTATTAACGGGTCAGGCTCTAGGGGACACGCCGTCCATCGTGCTTCACGACGTTCGCGAGATCGAGACATGGATACTTCGTTTGCTCAGCAGCCCCGTGCCCGTCCCGACAAAGACGCGCGTCGAAGTCGAGATAATATCGCCCAGTATGCAACCACCGCTATGCTTCGCCCTACCGGATCACACTAGATTCTCCCTGGTCGACTTTCCATTGCATTTACCGTTGGAGCTCCTCGGCGTCGACATATGTCTGAAGGTTCTCACGCTGATTCTCTTGGAGAATAAGATTGTACTTCAATCCCGTGATTACAACGCCTTGTCTATGTCGGTCATGGCGTTTGTCACGATGATCTATCCATTGGAGTACATGTTCCCCGCGATACCCTTGCTGCCCACCTGCATGAGTTGCGCGGAGCAACTGCTGCTCGCGCCGACGCCCTTCGTGATCGGGATCCCCGCGTCCTTCCTTATGTACAAGAAGAACTTCAGAATGCCCGACGATATCTGGCTGGTGGACTTGGATAGCAATAAAATAACTGCGCCGAGCGCTCTGAACGATGACGGTTTGCCGCCGCTACCGGAACCGGAGGGCACCATCCTGAAGAATCACCTGAGGCAGGCAATGCAACTGATGGATCAAGTTGGCTCTAGTGCGATGGCTAGCATGACGGGACCGCCATTGCCGTCGCAAGAAATCTCGCAACGTCTCTCTTTTCAAACACCGAGTAGGAGAGAAAGCATGGCGTCGCATCATTCCACCTTAAGCGTAGCTTCAACGAAGCACAGGCCGAGCATCGACCAGTGCGCGCACATTCAGCACTCCCCGCTTAATTCGCCAAGCGTGAGCTCGTCAGCGAGTCCACCTCGTCGGCCGTCGATGCCACAAACGGTTGGAGGAGCCGGGCTGACCGGTCCGCCAAGAGCGCCCGGACAGAGCCCGGCGCCTTTCAATCCCTTCATCTACGGAAATGACGTGGACTCGGTAGACATAGCCACGCGGGTCGCCATGGTGCGCTTCTTCAACTCGCAGAATCTGCTGGCCAACTTCACCGAGCACACGCGCACCCTGCGGCTGTATCCCCGGCCGGTGGTGGCTTTCCAGATCAATTCGTTCCTCCGTTCGCGGCCACGGAAGAGCAGCTTCCTCAACAGATTCGCGCGCACGCAGGCGGTCGAGTTCCTGGCCGAGTGGTCGCTCACGCCGAGCAACGTGGCCTTTCTCCGGGTGCAGACGGGAGTCTTCGATCCTGCACAGATCGGCGACAAGTCGCGCTGGTACGCGACCAACCTCGAGCCGATCTACTTTCCCGTCTGGGACTCCGGTAGTTCGTTGGCGAACGCCCTGAAGGCGATGAAGGAGCACGAGAGTCAGCCCACGGATGAGAGTGGATCGGATTCCGAGGGTGCCGAGAGCACCAGCTCTTCATATTCCTCTCTGAGCGACTTCGTCTCCGAAATGGCGTCGTCCGATTTGTCACCGGGTTACAATCCTCAAGTGAGCCAGCCCCAACAAACGCTCTCAGTGGATCCGAAGAACGTCTACAATCCGCCGAGCTCCTTGCAATATCCGGGAGTGGAAGAGGATTTACCAGCACGACCCGAGAGCCCACCAAGTACTTCTTCCAGTCACAGCGATCTCAGTAGCCCAAGCTTTAACAGGGACTCCGAGCTCGAATTGAACCCAAGAGTTCAAGAGGGTTCGCAGTCCGCTAACGATAAAGAGGAGGGTGGTAGCTTTGAGTCAGACTCCGCGTCGACAATAACACCGCGCACAATCCTGAGCGCACAAAGTTCGGTAGGACAGTTCACAGGGATAAGCATGGGCGCTTTAGGCACTCAATCTTCGCTCAACGACACTGAACGTCCTACCACCCCTCACAGGATCTCGCGCGTCAGTAGATATGTCACTCCTGTGCCACCCACCGGACCAGGTCTGCAACGTCAGCCGAGCGTAGGCAACGTTCTAGCGAGGGCCTCCAGCTTCAGCACCACCGGCGGGCCTCTTCTGCCGCGGCAGATAAGCGCGGTCACCGCTGCTGATCATCATCACGAAGCGACGCAGCTTCAGCGTCAAGCATCCGCGGGAGCGACGGTCGCGCAAAAGCAGAACGACGGCACGGTGCAACGACAGAACAGCGGCGGTTCCACCGGCGCCGCCACCGGGAACGGCGTTCTTCGACAAGGCTCTCAGGGTTCTCTGTTCGAGCAGATCGCCAGCCAGGCGAAGGATTTGGTGCGCGAAACGACCAGACAGAGCAGTCAGGACGGGCTGCTCGCGCACATGGACAAGCTCAAGCATCAGGCGAAGGAAAGAATTACGGAGGCAGGCGAGGATAGTCTGTTCGCGCCGCTGGAACAATTTACGCAACAAACTAAGAAAGCGGTAGGTGAGGCCACCAAGTCGGTGCAAGAGGTATCAAAGAACGCGTTGGAGGCGAGCAAAACGGCGGCGGGTGTAAGCAAGAATACGCTGGACGATTTGACGTACGTCGGCAAAAGCACATTTGGAGATCTGACAAAAAGTGCCAAAGAAGCTGCTGCGAAAAAAGGCTTCATCAAGAGTCTAGAATCACAATCGCCGGTACACTCTCCCTCCTCTTCTAATATGATGCAGCAGCGAAAGGATTCGATTAGCAATCAGTTAGTCGCATCGGACACACGAAGTGGTGTTGGCCGGGATTTCTTCAGCAATATTAGCAGCGATTTGAATGGCTTCGCTGCGCAAACCAGCAGTATGTTCAGCGATTTATTCGGTGGTAAAAATAATTCTAAAGGCAGTAGCTTCTTCCCGCAGAATCAGAAGTCGAAAGAAAAGACCAATCCGATTCTTCCACCATTTCCCAAAGTTGCAGGCAAAACAGGATTAGTAGAGCGTTCCTCGTTGATAAAACATTCCTCGCACAAAATTAATCAGGAAGATGCGCAGAGAATGCAAAACGCGGAACGTTCTAGTACAAATAGCGACAATCAAGCCTTTTTGAACGACGTGATAACGCAAGTGTTGGCCGGTGAAGGTGTTGGTTGGCTGAAATTGAATAGATTGAAAAAATTAATGGAAGATGAGAATTATCGTGATTTGGTCGTGAGAAAATTGAATAAAGGTCTCAATAGGAAGATTAGTCCTGATGATCACATTGACGATGTGGCCATATCAAAACCCGTGTATAAGGGAATGTTAAAGTGCCTTCAAGCAGTAACGCATGGTCTCGCACACACGTATAATAATTTCGGACTAGGCGGGATGGCTTCTGTCTTCCAACTGATGGAAATCGCTCACACGCATTATTGGAGCAAAGATCTGTCGGCGGAGGGTGGTTTCGACAGCTCTTTGATGTCGCAGGCGTCTAGCCCGTTCGGTAGTAGAGAAAACTTGAAGTCCCCACAATCTCCGAATCAGTCTGAATTTACAGAAAGCGCGCAGAAATCAGAACTGCCGCAAGTGCATTTGGAAATGCCGCAAGCACCGTCAGCGGCGGAAACGACCCAGTCAACAACGGACATGTTCCTGGACATGTTTACGAAGAAAGGAAAATTTCTGAGCAAGCTTACCTCATTCGATTCGGAGAGTGGGCGGGGTGGTGGAACGGGGAGCAGCGAAGCTTTATCCACAGACGGAGGTAGCATTATCACTAATCCTGCTTTTCGGCAAGCGCACCAAGCTTCCTTCCGAAGCACCGTATCTGATAGCGAGGTCGAGCAAGGCAATTTTCCACGGCAAGGCAAGCAGCGCTCCGGCAGCGTTTGGTCCAGCAAGTCGTCCTTGAGTACGGGATTCCGTTATCACGGCGGAAGTTTGATACCCACCACGACGCTACCGAGTCCGGACGCTGCGAGAACATATCTCTTCGAAGGTTTACTGGGGAAGGAGAGATCGGGACTGTGGGACGAAATGCAATTCTGGGAGGACGCTTTCTTGGACGCTGTTTCGCAGGAACGCGATATGATGGGCATGGATCAGGGACCTGGCGAAATGGTGGAGAGATACAAAAGTTTAAGCGACAGCGAAAGGCGGCGGTTGGAGCACGAGGAGGACAGACTGCTGTGCACTTTGCTGCACAATCTCACCGCCATCCTGGTAATGTTGAACGTCGACAAGAACGAATTGAAGCGGAAGGTGCGCAGGTTGCTCGGCAAGAGTCACATCGGCCTCATCTACAGCCAAGAATTGAATCTACTTCTCGACCAGATAAACAATCTCCACGGAAACGACATCGATCTGAAGCCGCTGACGTCACGGCAAATGCACCGGCAGTCGTTCACTGTGCATTCGGGGGTCGACGCTGAGGGTGATCTACGATTTCTCGAAGTTCGCCACGACGGTCTCGTCCTGAGGTCGGTGAACGGCGTGATAGTCGAACGTTGGTGGTACGAGCGCGTAGTCAATATGACGTATAGCCCGAAGAATAAGGTTCTGTGCCTGTGGAGGAGGAGCGGCAGCGATACCGAGTTACATAAATATTACACCAAGAAGTGTAAAGATGTGTATTACTGCATAAAGGAAGCGATGGAGAAGGCGGCGGCTCGCGGGCGAGGCGCCAACGTGGGCTACGAGCTCGGCGGCGAGTTTCCGGTGCAGGACATGCGAACGGGCGAGGGCGGGCTCCTGCAGGTTTGCATGGAGGGCGTCGGTCTTCTCTTCGCGAATAGCAAGATCCTAAAACTAGACAAGTAATTCAACGTAAATATAAGTCACAAATGGCTGAAGAGGCGGTTCGTTGCTTGCATAGAATATTTTCCGTCGCATTTACTCTTCATAAGCTTCCATCGGAGACACAGAATAAACATAAGTGC +>XM_001504059.5 PREDICTED: Equus caballus ALG2, alpha-1,3/1,6-mannosyltransferase (ALG2), mRNA +TGCGCAGAATCCCCTGAGGGGATGGGGCGCAGGCGTGGCTTCCGGGCCATGGCGGAGAAGCAGGATCGGGACGAGGAGCCGGGTCCCAGCCCGTCGGTGCTGTTCCTGCACCCAGACCTGGGCGTGGGCGGCGCCGAGCGGCTGGTGCTCGACGCGGCGCTGGCGCTGCAGGCGCGCGGATGTAGCGTGAGGATCTGGACCGCGCACTACGACCCAGGCCACTGCTTCGCCGAGAGCCGCGAGCTGCCGGTGCGCTGCGCCGGGGACTGGCTGCCGCGCAGCCTGGGCTGGGGCGGCCGCGGCGCCGCCGTCTGTGCCTACGTGCGCATGATCTTCCTGGCGCTCTACGTGCTGTTCCTCGCCGACGAGGAGTTCGACGTGGTCGTGTGCGACCAGGTTTCTGCCTGTATCCCAGTGTTCAAACTGGCCAGACGGCGTAAGAAGATCCTCTTCTACTGTCACTTCCCGGATCTGCTTCTCACCAGAAGAGACTCTTTTCTTAAACGCCTGTACAGGGCCCCGATTGACTGGGTGGAGGAATACACCACAGGTATGGCAGACTGCGTCTTGGTCAATAGCCAGTTCACAGCTGCCGTTTTTAAGCAAACGTTCAAGTCCCTGTCTCACATAAAGCCCGATATCCTCTACCCATCTCTGAATGTCACCAGCTTTGACTCAGCTGTTCCTGAAAAACTTGATGACCTAGTGCCCGAGGGGAAAAAATTCCTGTTCCTCTCCATCAACAGATACGAAAGGAAGAAAAATCTGACTTTGGCACTGGAAGCCCTGGTAAAGCTGCGTGCGAGATTGACGTCCCGAGACTGGGACAAGGTCCATCTGATCGTGGCAGGTGGCTACGACGAGAGAGTCCTGGAGAACGTGGAACACTACCAGGAATTGAAGAAAATGGTCCAGCAGTCTGACCTTGGCCAGTCTGTGACCTTCCTGCGGTCTTTCTCAGACAAACAGAAGATCTCCCTCCTCCACGGCTGCACGTGTGTGCTTTACACACCAAGCAACGAGCACTTTGGCATCGTCCCTTTGGAGGCCATGTACATGCGGTGCCCGGTCATTGCTGTTAATTCCGGCGGGCCCTTGGAGTCCGTTGTCCACAGCGTCACAGGGTTTCTGTGTGAGCCCGACCCAGTGTGCTTCTCGGAAGCAATAGAAAGGTTCATCCGGGAACCTTCCTTAAAAGCCACCATGGGACTGGCTGGGAGAGCCAGGGTGAAGGAGAAATTCTCCTCTGAAGCGTTTACGGAACAGCTCTACCAATGTGTCACCAGGCTGCTGGTGTAATGGGATGTTTTTTAAGGTCTTTATGCTACATTCATTAATACCATCTTTGTAGATCGTGACTCAGTTTTGAAACCAAAAAGAGAAAAAACCTAGAATCTAATGCAGAAGGGATTAAAAAATATGCACTTGAATCTTGAACCTGAGCCACCTTCCTATATACCACAACTCCCTGTCTGCTTTTTCAGAAAAATAGTATCTTTTATGCTGTAATAATCCTGAGTCTCACCAGTGTTGATTAAGATATAAATATGGTACAGTTCCACGTTCAGCAGAATATTTTAATTATATTTTCTCTAGATTATTGTTGCTCTGCCTATGAATTTTGAGTCATATTGTGCCTTAATTGTTTTAATAATTTAAGTATATCATCATCAAAGTTGATTGTTTGGCTTCGTAATGAGAATAGGGTCCCTGTAGTTCCCAGAATCAATCCACCTGGGTGTTGACTGTCCTCTGTTAGGAATTTTGCTTAGTCATACCTTTGCCTGGATCCGTGGCAAGAGTGATCTTTATTTTTTTACAAATGTGATTTATTGTGTTTTCCCACACTAAGACAATAAAAGATGTTTATCATAGGAAGAGACAAAATTTTA +>XM_004371625.3 PREDICTED: Trichechus manatus latirostris chromosome unknown C19orf12 homolog (LOC101348405), mRNA +GTGAGCACAGACTCTGCCAGGCCCGTGTGTCCGGGGATTGCCCAAGCCAGCCAGCAGGCCACGGATGCCAGAGAGGCTAGACTTGCCTCATTTGTGAGGAAGTGTGGACATGTAGCCGGCTCCTCCTTAATCTGGTCAGAAATCAGAAGTGAATCTGAGAGCAAAGAAGACCTTGAATCTCTCTGCTGTTTCTGTTTGCTTGTTAACTAAATGCTGCCCCGGTTTCTCGGTGATAAAGGACTTTCCATAGGATGGAGGCTTTCTGACGTGGCCGTGGCAGGGCTGCTGCTCTCTGCAGAAAATGGGACCCCTCAGAACTTGAGGATGAGTCACATTTGGGTGGAAGGTCTTAAATCCATTAACACTTGCTCTTTGAACTTCTTCCTTTGAGGCCAGCCAAGATGCCTGTCGTGGTAGAGGACATCATGAAGCTGCTCTGCTCCATCTCCGGGGAGAGGAAGATGAGGGCAGCCGTGAAGCACTCTGGGAGGGGCGCCCTGGTCACAGGGGCTGTGGCCTTCGTTGGTGGTTTGGTTGGCGGCCCACCGGGACTAGCCGTCGGAGGGGCCGTCGGGGGCCTGTTAGGTGCCTGGATGACGAGTGGACAGTTTAAGCCAGTTCCTCAGATCATAATGGAGCTGCCCCCTGCCGAGCAGCAGAAGCTCTTCAACGAGGCGGCTGCCATCCTCAGGCACCTGGAGTGGACGGACGCCGTGCAGCTGACCGCGCTGGTCATGGGCAGTGAGGCCCTGCAGCGGCAGCTGCTGGCGATGCTGGTGAGCTACATCAGCAAGGAGCTGCGGGCAGAGATTCAGTACGACGACTAGGCCGCTCCTCCCAGGAAGCGGGGTTCACTCAGAGGATGCGGTAACTCGTCTAGAAGGAGGCCGGCGGCTTGGGGGCAGCTGAGCAGACCCCCCTGAGAATCCTCCACGTCGTCAGTGTATTCCCTTCACCTGGAGCTCAGTTTTCTGTTGGGGGGACTACGGTTGTGCCGTCTCCTGTTCTGGAAGTTACTCCGGAAGAAGATGTGTTCTGTGCTGTCCTGCACGGCATGCACTGATTATCCTGGGACTGGGAGGCTGGCGAGCGGCGGCGGTCAGCAGTGGGCATTGGGGCAGTTTTCCGAATGCTCTGCTGTCGGC +>EU641276.1 Uncultured Burkholderiales bacterium clone GC1m-1-48 16S ribosomal RNA gene, partial sequence +TGCAAGTCGAACGGTAGAGGGGGCAACCCCTTGAGAGTGGCGAACGGGTGAGTAATATATCGGAACGTGCCCAGTCGTGGGGGATAACGTAGTGAAAATTACGCTAATACCGCTTACGATCTAAGGATGAAAGCGGGGGATCGCAAGACCTCGCGCGACTGGAGCGGCCGATATCAGATTAGGTAGTTGGTAGGGTAAAGGCCTACCAAGCCAACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAGCCTGATCCAGCCATTCCGCGTGCAGGATGAAGGCCCTCGGGTTGTAAACTGCTTTTGTACAGAACGAAAAGGTTTCTATTAATACTAGGAGCTCATGACGGTACTGTAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTATATAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTTGAGACTGTATAGCTAGAGTACGGTAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGACCTGTACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTGGTTGTTGGGTCTTAACTGACTCAGTAACGAAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCG +>XM_029869421.1 PREDICTED: Aedes albopictus transcription factor BYE1-like (LOC115265160), mRNA +CGGCATCACTGGTTCACGAACAGGTAGTGAACTCGCCGATACAAAGAAACTAGCTGTCAACGCATAACGACAGAAGGTGTAGGTAGCAAACGTGAAACGTGGTGAAATGACGATTGATCTAATGTTTTGAGATGCTGCAAATGATTATATAATTTGTTATTGGGTGAAGGGAAATTCTTAAAAGTAAGTTTCGTATGTAATACCACAATTGTGAAACCAATTTAGTGTATTTTTCCTCAGAACTTGTAAATTACGCCGTACATATTCCTGCAAGTGAACTGTAGCAGTCTGAATTGTCAGAGTTCGATAGGTAACCTCAACTTAACCCTTATTGGAATACCCATTTGCTAATTCTATATTTATCTAAAAGGACGATAAATCCTCATAAGGGTTTGCTCAGGATAGACCGCGAATTTGAAGATTGTGAGAAGACTATCTTTTGAGCTTCGTTAGACAAAAAAGCTGCAAGGTGCTTCTACAATCCGAACACTCTCAAAAGATACCACTCGAATCGACTCTGATGGCTACAGTGAATCCACCTCACGGAGGCGCCGGTGACCACGACTGCGGGGCGTGCAACCTGCCTAACGATGCCGATCCGCAGATGGTACAGTGTGACGCCTGTCAAGTCTGGTACCATCTGAAGTGCGTCGGAGAGACTCCTGGTGTTGAAAACAGATCGTTCAACTGTCGTGCGTGTCAACCGCCTTCCAATGTCGGTAAGTCGAAGCCTAAGAAGACCAGATCGCAGAAGGGCGTAAGTGAAGGTCAACTGAAGGTTCCCGTCGCGTCTACATCTGGAGTGACACCGATAAAACACCCGGAAGTTCCCAAATGTGTTACGAACAAAGCGACAACAATCAAAACCACTTCGTCGACTTCGCGTTCTCGAGCTCTGACTCTGCAGAGGAGGATTGAAGCGGAGCAGCTTCTGGCGGAAATGAAGCTGGCTGAAGCAGAAAAGCAGCTTGAAGAAGATCGTCTAATGCAGGAAAGACAGCGAGCTCTGCGCGAAGAAAAGATTAGGCTGCAGGAAGATCTATTGCGGAAAATGCAGGAACTAGACGAGGTCGCCGACGCTGAGAGAGCTTCCGAATACACCAGCACCAGTGGAATGCGGAAAGCACGGGAATGGTTAGCGAAGCAACGACAGGAGAACCAACAGCAAGACGACAATGGTTCACACCGGTCAATACCACCGTTTCTACCTTCTAAGAAGTCGGAACGTAGCTCTCAAAAGTCGGTGGGACGCGAAGGATTCAATGCGCAAGGTGGGTCAGATCCCGATACATCCGATGATCCGGAAGGCCCTTCAGAAGAGCCGAATCCGCCGAATATGGACAGAAGAATGTCGTTGGAGAGGTCACCAGCGATGCAGATTACTGGAGAAATGCCGGTCAAGAATACGCTGCAACATCGGAAATTGCCGGGAACGTCATAA +>XM_002072634.3 PREDICTED: Drosophila willistoni nuclear pore complex protein Nup88 (LOC6651485), mRNA +GCAAATATTTGCACTGAGAAATATAAGGTAAATAATTTAAACTAAATTGTGTAAAACAATTTGCTACATATTCAGGTGGCAAGCCAGGTTTTCAGTCATTTTATCACATATATAAAAGGAAAAAGTTCTGAAAATAAACAAAGCTACCCGGTCTGCTTGAATATATTATCAGGCAAAATGGCAACTACTGATGTTTTGGGTCTAAATAAAACTGAGATATTTGCAAAAATCCGGGATGGCTTGCCCATTGTGCAAGAATCACAGAATCTCCTGGACTGCAAGGACGATCTTCTTTTCGCGTGGAACTCCAATGACTGCTCATTGCTGGTGAAAAATTGGCGCGCATCTTTGATGGAAGCAGACACAGTACCTGAATCAACTGCAACAAAGCAGAAGAAAATTACTTACCAGACGTTGATACCTTCTAGTACGCTTAGTCTGGACGTGGATCGTGTAGTGGCTTCCAATGAGTGCTCACTGGTGGCTTTGAGTGCGCCACGTGGTGTTTGTATCCTGGACTTGCCTCGTCGCTGGGGACCAGAAGGTTACTTTGATGGTGGAAAGGCGATTATCACCTGTCGCACATATAATCTGGACGGTCAGCTGTTTCAGAGTAATCCTCACTTGGAGGTGCGTCAGATTCGCTGGCATCCTAACTCCGTCTCCGACTCCATGCTGCTGATTCTGTTTAACAACAACACCATCCGGCTCTACAATCATTACAAGCTGATGCATGTGTGGCAAGTTGGTCCCACCATCGTGAGATCCGGGCTGAGAACCTCCGCCTTGGATTTTGGTGAGGCAGCAGTTGACTTTGATATAGCACCGCCTGTGAAATCCAAAAGAGATTTGACAGAAGAACTAGAAGAAAGTGTAAATTTAACAGATAATTCTCTTAAGCAGGACAAGATTGAGTGGCCTCTTGTACTTTTGCGGGAAAATGGAAACATTTATATACTCATGACTGAAATGAGTTCGGACAGAACCCGCCTCCAGGGACCCATTACGATAACCCCTCAGAAAAGGGACAACTATGGACTGGAGTCGTCGTCAATTATGGTCATCCCCTCTTTGCCACCCACTTTGGTTATTGGCGAGTCGAGTGGCAAACTGCATCATGCTCTTTTGCTAGAAGCAGCCACTCCCGAGCATTCGCTCAATGAAGTTGATGATTTTATCGTCATTGAGCCCTCCGAATATGTGATCCATGTGAGAGAGACTGTGGAATTAGAGTTGGGAATAAAATCCGGTACTTCGAAATCGAATTACAAGTCCCCTGTCTACTTAAAACGAGATGTTATCAATGAACTGCGGTACTTTGCATATCACAATGCTGGTCTTCATGTTGTCACCGTGAACTTCATATCCGAATTGCAGCGTTATCTGGAGAGTGAGGCAGAGGAGGACCAGCTGAATTTTACAACGCCCTCACGAGCTGAGTACATACTGTGCACTAAATTTGATTCTAGCGACCACATCAATGCAGTTTTTGGTATTGCTCTACTCCAAACTCCGGCTGGAGTTGTTGTTTTGCTGGGGAGTGGACAGGTAATTAGCCTCAAGCTGGTCGTCGATGCCCAACTGTTAGTTTCACCAAGTGAGCAAACTCTAACGACATCTTCTGTCGAGCAAGGAGAGGCTGGACAAACATTTCAGGACAAGATTAAAAGTATTTTGCAGCGTAGCGTCAATCAGCCCATATTAGCTGATAAGCCCTCCTCCAACGCCAACGAGGGTTACGAGTTGCTTAGCCAAGCCATTGTCGTGCTGCGTTCACAGTACCTCAAACGTCATGAACTGGTGCTTGTCGAGTTTGCTAAGCACATTAATCAAATTCGCATAAAAAGAGATCAACAATTGCAAGAGATTCAGGACCTAGAGGACGAGCGGGAGGTGATTAGTGAGCGTGCTCACAAACTTGCTGAACGTTTTGAGGAAATAAGCGATAATCAGGATTGGCTTGTCCGCAAATGCCATAGACTCCTACAAAATGCCAATACTGCTCTGCCAAACAGCGTTGTGGCTGAACGTGAATTCGCTCAACAGGTGGCAAACATTAATAAGGCTAACAAAAAAATTGCTGCTGCCTTGGAAGATGCCAAGAAGACCATGAACAAACAGCGTTATTTCATAGCCAAAAACCAAGACGAGGTCCGTCAAAATGCATTCGAGTTGCCGGAGAAACAAAATCGGACCATAACCGAGATTCTAATGCAATTGGCCAGTGAAATAGATCGACAGGTCACTGATGTGAAGCGTATAAATAAGATTATTGGTATTTAAATAAATGGCTCTTGCTCATCTTAATTAGAA +>HQ071684.1 Uncultured Leptolinea sp. clone F5OHPNU07IB2R6 16S ribosomal RNA gene, partial sequence +GCACAAGCAGCGGAGCGTGTGGTTTAATTCGATGCTACACGAAGAACCTTACCAGGGTTTGACATGCAAGTGGTAGGAACCGAAAGGCGACGACCTTCGGGGAGCTTGCACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTCGGTTAAGTCCGCTAACGAGCGCAACCCTCGCTGTGTGTTACAAGTGTCACACGGTACTGCCGGTCTTAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCAGCATGGCCTTTATGTCCTGGGCTACACACACGCTACAATGGCCAACACAATAGGTTGCTAAGCCGCGAGGTGGAGCCAATCCTCAAAGTTGGTCCCAGTTCAGATTGCAGGCTGCAACCCGCCTGCATGAAGTCGGAATCGCTAGTAATCGCAGGTCAGCATACTGCGGTGAATACGTTCCCGGGCCTT +>XM_022591717.2 PREDICTED: Delphinapterus leucas TATA-box binding protein associated factor 6 like (TAF6L), transcript variant X3, mRNA +GTAGAGGGCGGAGTCTGAGCGCCGAGAGAGGGAATTAGTGCGAGCTGAGTGAGAGGGCGCCAGCGCCGCCGCCACCACCGTCGCCGTCACAGATACCGCCGTCCCGGTAACCGCCTTCGCCGTGCCGGAGCCCTCAGGTGGAGAAAGAAGCTTGACAATTATCCGTTGGCGGCTTTCCAACGCCTCGTTTCCTGGCTGGGAATCCAGGCCTTGTTCCCCACACAGCCCGTCGCTCCTCATGATTAGAACGATAGTTGAGTTCTTGCTCCCTACCCAGCAAGTGTTTATTGAGGGCGTGTTATGTGCAGACGCAGTGCCTGACGCGGGGGATGCAAAGTTCCATCGGGGCCATGTCGGAGCGAGAAGAGCGGCGGTTCGTGGAGATCCCTCGGGAGTCTGTCCGGCTCATGGCAGAGAGCACAGGCCTGGAGCTGAGTGATGAGGTGGCGGCCCTGCTCGCAGAGGACGTGTGCTACCGTCTCAGAGAGGCCACCCAGAATAGCTCTCAATTCATGAAACATACCAAACGGCGGAAGCTGACTGTCGAGGATTTCAACCGGGCCCTCAGATGGAGCAGTGTGGAGGCTGTGTGTGGTTATGGGTCCCAGGAGGTGCTGCCCCTGCGCCCTGCCAGGGAGGGTGAGCTCTACTTCCCCGAGGACCGAGAGGTGAACCTGGTGGAGCTGGCCCTGGCCACCAACATCCCCAAAGGCTGCGCCGAGACAGCTGTGAGAGTTCATGTCTCCTACCTAGATGGCAAAGGGAACCTGGCCCCTCAAGGATCGGTGCCCAGTGCTGTGTCTTCACTGACTGATGACCTTCTCAAGTACTACCAGCAAGTGACTCGGGCTGTGCTGGGGGATGATCCACAGCTGATGAAGGTCGCCCTCCAGGACTTGCAGACCAACTCGAAGATTGCAGCGCTCCTGCCGTACTTTGTTTATGTGGTCAGTGGGGTGAAATCTGTAAGCCACGACCTGGAGCAGCTACACCGGCTCTTGCAAGTGGCACGGAGCCTAGTTCGGAACCCACACCTCTGCCTGGGGCCCTATGTCCGCTCCCTGGTAGGCAGTGTCCTCTACTGTGTCCTGGAGCCACTGGCTGCCTCCATCAACCCGCTGAATGACCACTGGACTCTGCGGGATGGAGCTGCCCTCCTGCTCAGTCACATCTTCTGGACTCATGGGGACCTTGTAAGTGGCCTCTATCAGCAGATCCTGCTCTCCCTGCAGAAGGTCTTGGCAGATCCTGTGAGGCCTCTCTGCTCTCACTACGGGGCTGTGGTGGGGCTGCACGCCCTTGGCTGGAAGGCAGTAGAGCGAGTCCTGTACCCACACCTGTCCACTTACTGGACAAATTTGCAGGCTGTGCTAGATGATTATTCAGTATCGAATGCCCAGGTTAAAGCAGATGGGCACAAAGTCTATGGAGCCATTCTGGTGGCCGTAGAACGACTGCTGAAGAGGAAGGCCCAGGCAGCAGAGCCCAACAAGGGTGGGCCAGGCAGCAGGGGCTGCCGCCGCTCAGACGACCTGCCCTGGGACAGCCTTCTCCTGCAGGAGTCTCCCTCCGGGGGCAGCGCAGAGCCCGGCTTTGGGTCTGGTCTCCCGCTGCCGCCAGGAGGCGCGGGGCCGGAGGCTCCTTCCCCTTCGGTGACCCTGGCGGACATCTACCGGGAGCTCTACGCCTTCTTCGGTGACAGCTTGGCCACCCGCTTTGGCACGGGTCAGCCCGCGCCCACGGCCCCGCGGCCGCCTGGGGACAAGAAGGAGCCGGCGGCCGCCCCGGACTCGGTGCGGAAGATGCCGCAGCTGACCGCCAACGCCATGGTCAGCCCGCAGGGCGACGAGAGCCCCCGGGGCGGAGGCCCCCCGTCGGCCTCTGCCCCCACCGCCTCTGAGAGCAGGCCGCTGCCGCGCGTGCACCGGGCGCGGGGGGCGCCCCGGCAGCAGGGCCCGGGCGCCGGCACCCGCGACGTCTTCCAGAAGAGCCGTTTCGCCCCGCGCGGTGCCCCTCACTTCCGTTTCATCATCGCCGGGCGGCAAGCAGGGAGGCGATGCCGCGGGCGCCTCTTCCAGACTGCCTTCCCCGCGCCGTACGGGCCCAGCCCGGCCTCCCGTTACGTGCAGAAGCTGCCCATGATCGGCCGCACCGGCCGCCCGGCCCGCCGCTGGGCGCTCTCGGACTACTCGCTGTACCTGCCGCTGTGAGGCGGCACTGGCCTCTGTGAATAAATCCCGCGCCCGGAAGTGA +>HQ278360.1 Uncultured bacterium clone CB6AA43 16S ribosomal RNA gene, partial sequenceHQ278363.1 Uncultured bacterium clone CB6AA69 16S ribosomal RNA gene, partial sequence +AAGACCTCACGTTATTGGAGTGGCCTACGGCTGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGGGCAACCCTGATCCAGCCATTCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAGCTCTTTCAGCAGGGAAGAAACGGTTACGGCTAATACCTGTGACTAATGACGGTACCTGCAGAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGTCAGATGTGAAAGCCCCGGGCTCAACCTGGGAATT +>XM_798046.1 Trypanosoma cruzi uncharacterized protein (Tc00.1047053503983.29), partial mRNA +ATGTACGCAGGTCTCTTTAAGAAGCGGCCACGTGAAGCCGATGCAGCTTCCCACGGGAACGCACCGGAAGACAGTGGGGATGCATCGAGCAGGGCCGCCGGCATCTCGTCACCCACGCTGTCTCCCCGCACTGTGTACCACTATCCCTCGATGCTGCCATTCCCAACGGTGATAGATTCTGAATTTCCCGCTGAGTCGTATCGTTCCCGCAGCAAAGACGTAAAGGCGGCTATTCATTGGGGCCAGCGGAAACTCTTACTTTCTGAGATTCAGCTCCTCTCCATATATGCTCGGCCGAATGTGTCTTATCACATTGTCTACGCAGGGTCAGCCCCCGGAACTCATCTTGCATTTCTTGACGAACTGTTTCAGAGTCGACACACCTGGGAACTTGTGGATCCGGGAAGATTTGATCGGCCCGTGCTGGAGTCACGACCGAATTTTTCTCTTCGTAACGAATTTTTTACAAACGTGACAGCCTATGGCATTAATGCGCGCCGTCTTTTGGAGGTGCTTCCTGGGCTGGGAACCGTTTACCGTTGTGTTGCCCTGGACGGTGCGTGGTCAACAAAGAAGGAAATCCACCAAAAGCTTCAGAGCATCGTTGGAACGATTGATGTGGCCCGTGGCACGGAAGATATCCCATCCATGTACGAACCGCGGTTGGATCTTCCCTTTGGCTTTGAGCTTCTTTGCTACGTTGGTATGGAGCGAAGCAAGCC +>XM_038047407.1 PREDICTED: Hermetia illucens small conductance calcium-activated potassium channel protein (LOC119646808), transcript variant X7, mRNA +GTTGTTGTTCCTGCTTTTGGAAGGGTATTGTACGTATAGATACTATCAATGCGGCGTCGTCGTCGTAGTTGCCGAAATATCTAAAAGAATGCTTACGGACAACAGTCGGACGTCGGACTCGGATATCGTGTGTGAGTTTCGCTTAGGATAGGACTTCAGAGGAGTGTTGCTTTGGGTCCTTTCACTACTTTCTAGTGTGTTTTCGACCAGAAAGGAACGTATGTGTCGTGTGCGTGGTGATTGCTGTGGCCCTGCTGTTGACTATATATACTTCCTGTCGATTTGCAAGTTCTTACGCCTTTAGTCTATGTCGGGATACCCACCTTGGAGGAAACGTTGTGCTTATTTTTCCTCTCGGTTTCTATAAAAATATATTATTATGTTCACACACGCTACACATGCCAGATCATTATAGCGCACGCAATTTTCTTGATTCAAGTTTCGATTTTGTTTGTCGTTTCGTTTATACCGATGCTCCGACTTTTCATTCTCAAACTGTAACAGAGCTTATCGCGACGTCGTGACATCCATAGGGAACAGCTATTTTCTGAATAGTTTCTTCTTTGATTTTGCCATCATTCCGGTAGAGGCAGAATCGCAATTTAAATAGCTTTCGTTTGGATCCCTTCTATCTTTCAGTGTATTATGCGCGAAACTAAAATTTTCGGTTCGCTTTCTTGATACAGATCCATTCAATTGGGGAGCAGAATTTGAGAGCATCTCCTCGGAGGAGATAGTGATTGAATTATTCGATTCGATTTCGAGACTCGTGTGAGAGGGATAATAAATAGAAAATCTTTAGATATTGTCGTTGCTAAGAAATTGGTATCTGTCGTCGTTACTGTGAATGTGTCGTCGATTTTGGTCTCTTCAAAAGACACAAACTTTGGGGATGTTGTCCGGCAAGTGAATATAAACGAATAACATGCAGTGTGTGGTTTTTCGAAAGATTTTCGAAGTCGTATCCGAAACGTCGGATTCGTAGTCAGCAAATCTTGAGAATACGAAGCAATCAAATCCTTGCCCAAGTCGGTGCCGGATTTTCAGATGGATTTTCGTGCGGTTTGATTTTTCGGGGTGGTTGCTTGGGACTTTTAACCTTTTTATTCCGTACCCAAGTGTCGAGTGTCTTATCAGTGTCCAAACAAAATCTCTTAGTCCTCATTTATTGTGATTTCCCATTCATTTTGTTACATATATATTATATAGGAAGAAAAAGTAATTTTAGGGTGTGTGCGATTACGACGTGTAAAATTTTCAGAAATATACAGTGTTCGTATAATAGCTAGAAATAAAGAAGTCAAAGCAGCGCAGACGGATAAAAACTAAAGTTGAAAATTAAAAATATACCCCCAAAAAGTGTCACGTATCTGTGCCGTATCAGATCGCTACTGTAGTGCGCTTTTAGCAGCCGATTTCTAAAATTATTCGGCAAGAATAAATGCAAAGCAGATTGAATCCTAATCCATCCTTTCATTCCCTTTCCGTGCCGCTTTCAATTCCACTCCGATTCGCACGTATTTGCCGCTCCTAACGCCTTGCTCTTTCCCTGTATCCAACCCTCATCAGTGGTTTGGAATGTGGAGAAGTGCTCTTTTGATTAATTAGCAAGCAAAACTACTCTACGCGCCGTATTCATGACATCCATGATATCCCGCCGTCGACGAGTCAAAAGCCCATGTCCTCTTCATCGTTACCAGGACAAGAAACTATTAGACGAGGGTGTGTTCCATAGAATCACGACACGGCAAGCAAAGGGCATACCCTCAGGATTTCATAGTTGTGAATAAACAAATCGACGTCATAGAAATCACAGATGCGAAAAATATCAAGCCAAATGATAGATTTTGTGCAAAGACGCGAAAGCGTAGCCACAGCAGAAGTACTTCCAAAAAGGAATTCTAGATGAACGGGCGTGCCGAGAAAACAAGGAAAAGTCAGAATGACAGCGGAAGAAAAATCAGCAGCTGCGTCTTTCTAAATGCTTCTTTTGTGTTGTGTGTCCTACACCATAATTTTTCGGTCGTGCATCATTAAAACCCAAGAATACAAATGCCATCTTCGTCAATAAGACTTGGCTTAAATAATTGAGCAGCGTTTACTCAATGAATGACGGCAAAAATGCATTTAGCTTAGCGACTTTCCGTTCACTTTTCCAACTCAGTTCGATTGTACATACTTACGAGTATGAACAGATGGATACAGATAGATACGCAAACTGACAGCCACATAGACTGATTGAAAACATCATGTGAGAGCTTTGTGCCTTCTCTGTGCGAGTCCTGTTCACCCGTATCCGTATATGTACGTATACACGCAATTCAAGCGGACAAATAACGTGGATCAATCGATTTTCTATTCCTTCCGAACAGATATCCTTTTGTCTTTGGCAAAATAAAAATATCAAGGAAAGGAAACCGAAGGGCAGTCAAGGAAAAAATAAGAAGAAAACAGTACCTCGCTTTTCCTTCAACGACAGAAAACCCAACACGCGGTTATAACGGAACTAAGCATACATTGCGTATGTACTATCTTGCTGATAACCCTTCTCAATGCCACAAAAAAATTCTACTTAAAGTTAATCGCCAGCGGGCCTGCATAATACTCAACTTCTATATACATAGTCTGTTCAATTAGTGATAAATCCCGCGATTTGTATTTCTGAATTTCGGTGTTGATACCAAGTAGTATGTGAGTATGAAATCCTCAGAATGAACGCTTAACGACTGACTGGCTTCAACCAGCGTGACTAAGGACATGAAGACGAAGGTCGTCTGCCTTTTTTGTGATATCAGCTAATCCCCCGCAATTCAAACCCAACAAAAACCATTAAAAACGACAACGCGACCAAATCTTAATTTGATTTAATAAAATTGCTTTAATTTCGAGTATTAAATAAAGACCTAATTCGTAAAATTATGGAGTTGACGTCAATAACGAACTATTCAAAATATGACGGGAAAAATGAAATGCGGCAATATCTCAATATAAATACCAAGCAAAGGTTTGGATTTGCTGCCGTGTCTGCTGCTAGTTGTTCCGGACTACGATTCAAAATTCAAATCTCAACGGTCAATGAGCTGACGTAGAGATTGTGAGCGTGAGTGTTTCAATCGCCATCAATCTGTATGTGCAGCTCCGAAAACCGGTGTCCACGTTGTCGATTCCTGGCTCGATGAAAACACCCTGCGCTGGAAATCGAGAACAAATTTCGTCTGCATGCAACGAAGAAGCTGGCGTTGCACTCGTGGGTGTTCACTCAGAATATCCCAGGTACATGGAGGAGCGAGGATTGACCGGCGTCAAAGCACCTGGAGCTGGTTCAACACCGGGAACTCAGAAACATAAGCCGAATGTTGGCTATCGATTAGGTCGAAGAAAAGCTTTATTTGAGAAAAGAAAACGAATAAGTGATTACGCTCTTGTAATGGGTATGTTTGGAATTATCGTAATGGTTATAGAAAACGAATTAAGTAGCGCTGGAGTTTATTTAAAGTCTTCGTTTCATTCGACAGCCTTGAAAACATTAATATCCGTGTCGACTGTGATCCTTTTAGGTCTTATTGTTGCTTACCATGCTCTGGAAGTTCAGTTATTTATGATCGACAATTGTGCAGATGATTGGCGAATCGCTATGACGTGGCAACGAATTAGTCAAATAGGTCTAGAACTTTTAATATGTGCTGTGCATCCAATACCAGGCGAATATTACTTCCTCTGGACAACAAAACTTGCTAATAAAAATAAATCAATGGGCACGGAGTTGGTGCCGTATGATGTTGCATTATCATTGCCAATGTTCCTTCGATTATATCTAATATGTCGTGTTATGTTGCTACATTCAAAATTATTCACAGACGCCTCATCACGTAGCATAGGTGCACTAAATCGTATAAATTTTAATACCAGATTTGTCCTTAAAACACTAATGACAATATGTCCGGGAACAGTTTTATTAGTTTTTATGGTATCTCTATGGATTATCGCCTCATGGACGCTGCGACAGTGTGAAAGGTTTCACGATGAAGAACATGCAAACCTTTTGAATGCCATGTGGCTTATAGCCATAACATTTTTAAGTGTTGGGTTTGGTGATATTGTACCAAATACTTATTGTGGTCGTGGTATTGCGGTCAGCACAGGAATTATGGGAGCTGGATGCACTGCTTTGCTGGTAGCTGTTGTGTCTCGGAAGTTAGAGCTATCCCGGGCTGAAAAACATGTTCATAACTTTATGATGGATACCCAGCTAACAAAAAGGCTAAAAAATGCGGCAGCGAATGTGTTGCGAGAAACATGGCTGATATATAAACACACAAGGCTGGTGAAAAGAGTTAACCCTGGACGAGTGCGGACGCATCAGAGGAAATTCCTTCTAGCAATTTATGCATTACGAAAAGTAAAAATGGATCAACGAAAACTTATGGATAATGCAAATACAATAACCGATATGGCCAAAACACAAAATACGGTGTACGAGATTATCTCGGATATGTCAACAAGGCAGGATGCGATTGAGGAAAGACTATCAAGTTTAGAGGACAAAATGCAGGCGTTGCAGGATCATATGGAGTCATTACCGGAGATAGTCACACGGTGTCTCACTCAACATCAAGAACGGTTGGAACAGCGGAGAAATTTTCTGCATCCGGATGCTGCAGTAACAGCGTCTGCACAACCGTCGCAGCCGCCACCTCTAGTTTCACCTTTACTCTTTCCACATTCCAGGAGTGTACCATCTACAAACAATGCAATTTTCCAATGGCCAACAAGTCCAATTCTGCCACCGGTATCGAGTAGAACGCCTCATTTGGTGCCTGACACATATATTCCATCGACTTTAGCTGCGACGGCGACACCAGCTGCAGCCACAAGTTCAACCTCTCTAACAAATAATAATAACGTTAACACATCTTCCAGTAAATTAAACAGCTGAATCGAACCTGCACAAACTCAACAAACGCATTCTATGGTGTGTCCGGCGTCAACCTCAATCACGACGGCCAGCAACAAATACACGAGACGGAGGGAACGACAACGAAAAGCCCAGTTCAGAGCAATGGCAACAACATCAACAGAAGCAACAGCAACATCAACAGAAACATCAAAATCACATAGTAACTCATTAGAAGACATTTTTACGCAACAAGGCAACTCGTGAGAAAATAATGATAGTAGAAAAATTGAATAGTGACGATTTTACTATGTAATGGGAATAAATTATTATTACTATTATATAAAGACTAGGAAATGAAGCAACTAAGAAATAAGTAAGCAAAAAGACATAGGCCAATTTCTAAGGTTCTAGAAAAGTAATAATCAATTGAGACGGGGGAGAAAATATGAATAAAATTCGTGAATTTAGGGTGTAAATCATTGGAATAAATTTTGATAAGAAGGAACTCGTTTTGTTGTTTGAGTATTACGGTTATTTAGTTTTTAATTATGTCACATTTTCCAGTCCCTTAGAAACTACAGAAAAATTCTCATCTGATATACCAAGTGAAAGAAAATATTGAGTCAAATTCTCCCTTAGAGAACTGACCCGTTGATCAGGGCTGCATGTGCACTTCTTGGCAAACACATTTGACCAAATAAAAGTTTTTCCTCTAGCAAATTGTTTAGTATCCAAGTCACACATCAATAGGAAAAAAGTGATATTTTGCCGTTTTAGTGATTTTAAAATTCAGCCCTTATAATGCGGAGGACCCAACGGAATTTACTTAGTATTTTCTGTTACTGGTCATTCAGTAATATTACTCAAAGTAGAAACGAACCACAAAAGTACGCAAATTAGTAACATAGAGACTAGATTTTAAAAAAACGTACTTTTAATTTTCTTTAAAAATATTCGAAACTATGGGGCCCACTTTAATAGTCATTCGAGCGAATAACGGAAGACAAATAATCGAAATTAAAAACAACCTGATTGCTTGGATTTAGATCTTAACCGGTTTCAATATCATCAAAAAAACAACCACTCAAGAAATCCTCTTCAACCTCCGGATGAAATGAGCAACTGAACATTATGTTGAACAATAAAAGAAAGCTTTACGACAAAATAGAAACATCAATAACTTCATAGACTTCATACCTAAGACGAAACAAGCTTACGATATTAAAGCCACAAATTATAAATGATAAGAAAATCTCGAAACGAAAAAGTGAACCACTACCAAAGTGAAGTTATGTAACGAAGATAGGAAATGACAAAACCCTATAGAAATGTAGAAACAATTATTTCATCTTTAGTATCTCTTAGACCATTCATTTTCTACGAAGTCAAGGACGAAATTGTTTTAAGTGAATTAAGAACCCTTTTAGTGTATTCATTTCGTTCTATGTAATTACTAAAAAGCGTGTTTCGCGAAAAAGCTTTAAGATTTAGGGTGCCTGCATTTGCTAAGAAAAAACTTAGATTTAAAGAGAATATTACTTATTATTATTAAAATTATTATTATCACATGATGGTAGTAAGAACAAGTAACATTAGTAGAAAAATAAACCCTTGCGGAAGTAGGTCATGCATATTATGTAACATATGTTTTGTTTATGTTTGAATCGGTACATTCAAACTCAATTTGTCCAAAAATATAAAAGTTTCGACAGATCGTTTTTACTTTTGTTAGAAAAGGTTTTACGTGTGTTGCTGAATAAAATTGAATAGAATATACGGAAAAGTCTATTGTACAAATTTAGTTTATATAAAGTTGTTGCAATTATACATAAAAGAGCAAGAAAGATAAAAGTCTAAACCAAAATTGATTTTCAAAGTTAAGGACAATTTAAAAGTATTCGCATATTTACCTATATACAAAACATATTACAACAACTATTAAGAAATTATACAAAAACAACAAAAACCTAAAAAACCATCCCTCAAAGAAATTAAAAGGAATTTAAAAAGGATCAAAACGGTATCTAAGCGTAAAATAATTGAAGAAAATCCATACTAGTCTGTTTTATTATGAATTACATAAAATACGGATGAATAATTATGAACATTCTTTGAAATGTATAAATTTCGATCTTAAAAGTAACAAACGAACACACCAATTTGAACGTATCTTGCAATAGTCGTCCATTTCATTCAGCCATTGTATTATATATTTAAAGATATATATATATGTCTAAAACAAATTTATAGATAAAAAAGTGAATTGATAAAACTCAACTAAAATTAAATTTAAACCTGTGAATCATAGAAAACCCGAAAGTATGTGGATTAAATTATGGTCTTATAAAAAATATTTAAAGCAAATATATAAAAATTAAACTTTAAAGAAAATCTGCTCACATGCGCTAAGTACTAATATGATAAAGTTTAAATCTAAAAAATTAATAAATTTTAAATTATCTCAACATTCAATACAGTAAATTTATGGGTACGACATAAGGCTGAAGTGTAGGAATAAATAAAATCGAGAATGGAAGACTATTGCAACTGTATTGTCACCTTGTTATATTTTGGCTCTCCTGATAAAGAAAATAAAAAAGAAATTACGAAATCACTAAAAAGAGAAAGATAAAAACCCTAATCTAGTTATTATTATTATATAGAGAGAGAATCGTTATTTCGCAACATTAATATAAAAATATTTATTGTAAATTGTTCTGTTTTGTATGATATAATCATGTATATTTAGTTTACAATTAAATACGTTTTCTGCA +>XR_007117108.1 PREDICTED: Pieris napi uncharacterized LOC125050190 (LOC125050190), ncRNA +CCCAACCAACATTTTGGCGCTAATTTTCACCACTCTAATCGTTTGTATTGTTTTAACGGGTATATAAAAGTGTCTAGTAAAACTTTTGTTGGTTTAATGGTCATGAATATAACTAAATAACTCATTAAGATGAGTAACAGTAACAATAATTCATAATATAACTTAAGAAGTTATAAAAGAGTTAAGCTGAACCACAGTAACGCTAGGTGTTGTAACCTCAAGTAACAATAAGTACCTCAAGTAGTAATAAGGTTTCTAGTAAGTCTTACTATTCCCAAGTGTTGTTTAAGAGTGCTAAGTAAATGTTTTTTACCACTTAGCTTGCCTAAAAACGTAATATTACTTAAGAAGGTATGAAGGTTATAGTCACAACCATCATAGAACTTACTCTTATATAAATTCAAGTAACGCGAAACACTTAAAGTAATATTATAGTTTCTAATAACTCTTTCTACCGACAAAAGCTCTTGAAAATAGTTGACAAAATATTTTTATCACCTAAATTGCTACAAAAGAAGTAATTGGAACTTATTTACAGCAATTTAATTTAGAAATTAGAAACCACTATATATGATATTAGTTGGTATTATGGAGTTATTTTTAGAGCCCTGTTCTTTACAACGGTGTTCGAATTTACCTTTATGTTATTCTAAGAAATATGAAAATACAATTTAAACGTTGTAACTTTTATTTTCACTTGAAGTTATAAAATATTACCTACTTTATAGCTGTATAATGTCTCTAACCTCAAAATTGTGTATAGTCTGATTTGCTCTGAAGTCTGTTTGCTCTTGCTTGCTTAATTTTTGCTATGAGTTCGTGGAAAAAACGAAAAAGATGTGGAGGAGTCAAAAGAAAAATATCAAACGAATACAAATTAATAATCAGATCAAATCAATCAGTGTCATCCTGCGATAAAACCACCAAACTGCAAACAGTGACCAGTATCAGTGATGCAGTTCAGCATCATAGTTCTTCGTTGAAGAGAAGTATTGATGACGCTAGTCTGGGTTGTAGTAGTTTTTGCAACGAATATTTTCATCCAGCGCAGCTTAAATGTCAACGAAAATGTTCGTACTGTCGTAGAAACTCCATCGAAAATGTCGGTCAAGTGCGGGAATTTCAACAAGGACTAGAAAATCATAATATGTATGTGAGCAGTAAACATGGTGAAACGCAAGATATTGAACAGGGTTCTGTAAGTGAGCATTTTATAATTTCTTGTAAAGAGAGGAATAAATATTTTCTATCATCAACTGATGATATTATTGAAGTCCTAAATATATCAATTATATCGACAATGACAAATAGAGAAACTATTATGATACAAATAGGAGGAGATGCTATCGAATATGTAGATCACTACGTATATTTAGGGCAAATAATATAATTTCATGACCAAAGGGATCTTGAGATAGAAAGAAGAGTGTCTAGCGCCTGGAAGAGATTTTGGTCACTCAAGGAAGTACTTAAAAGTAAAGACTTCCCAATAGTAGCTAAGAAAAAGGTGTTCAATCTATGTATACTACCATGTGTTACATACGGCTGCGAGACTTGGGCTTTATCTCAGAAACATCTTCTAAAGTTGAGAACATGCCAAAGAGGAATGGAAAGAAGCATGGTGGGTGTAACACTGAGACATCGAAAAAGAGCAGAAGAGATCAGATCAACGACCAAAGTAGAAGACATTATAAAGAAAATAAGGCAGTTGAAATGGCGCTGGACTGGGTACATGACGAGAGATAGCAGGTTGAAATGGACAAAAATAATTACAGAATGGCAACCACGTGATG +>XM_017443506.2 PREDICTED: Diaphorina citri phospholipase A2-like (LOC103507865), mRNA +TTTTACTCGTCACCATGAAGTCTATCCGGGCTCTCCCTGTGAGTGTTTTACTCATCTTTGTATTCATCTCCTCTGTTCGTAGCTTTGATCAGTCCTACTATAAAAACGCGTATAATCACAACAAGTACAATTACTTGAAGGGAAATAACAATAACAAGTATAGTAACTTCAATTCCAACCAGGACAGTTACCGATCCGACAAGAGTGACTTGATCTTCCCTGGAACCAAATGGTGCGGTGCAGGAGACATTGCCACCGACTACAATGACCTAGGAACCAATGTAGAGACAGACAAGTGCTGTCGAGACCATGACCATTGCTCGGAATACATCTTGGCGAAGAGTTCTCTCCATGGACTGCGAAACAACGCACCCTTTACCCGAGTTCACTGCAGATGTGACAAGAAGTTCTACGACTGTTTAAAGACGGCGGCTGACACGGGAGATCAACCTTCCCAGATGGTGGGATACATGTATTTCAATTTACTAGAGACCCAGTGCTTCCAGGAAGTGTCACTGCTGTTATTTTAA +>XM_002502056.1 Micromonas commoda predicted protein partial mRNA +ATCCCGGGCCAGGCGGACACCGAGGCCATCACCGCCGTCGCCTTCAGCCAGTGCAAGAGCTACGTGGCCGTCGCGGAACGCGCGGAGAGGGGTGTCATCACCGTTTACGATCTCACCACGACGACGGGCTCGCCCAGGAAGCGCGTGCTCGCGTCCACCGACGTCGGGTCCAAGGAGTACGTGAGCGTCGCCTTCTCCCCCGACGGCAAGTGGGTCATCGCGCAGGGCGGCGCCCCCGAATGGAACGTGACGCTGTGGAACTGGGAGCGGTGCAAGCAGCTCGCGTGCGTGCCTGCCAAGCCGCTCGGATCGGACGCGGGCGCCGTTCGCCAGGTGAGATTCGCCGCGCACGACCCCGGTCTGGCGTCGTGCGCGGGCGAGGGCCTCTTCCGCACGTTCAAGTGCGCGGAATCCGGGGTCAGGGCGCTTCCGGATGTTAAGCTCCCGCCCGCCAAGTCGGGCGCGATTAAGAATTACACGGCGCACTGTTGGCTTCCCGACGACGCCGAGGTGACGGACGGCGGGGAGGAGGGAGCCGAGCGCCGCGAGCGGTGCATCCTGGCGACGGACGGCGGGGAGTTGCTGGTCGTCGAGCTCAACGAGGTCAAGGCGACGATACCGGCTTTGAGCGACTGGAAGGGTGTCGACTGCGTGATTCCCTACGGCGCCGGCGGGTTTGTGTGCGGCGGCGCGGACGGGACCGTGAGCGTCTACGAAAAGACGGACGAGAAGGAGCTCTACAAGCGCGTGAAGCACTTCGTGATCAAGCAGTCGCCCGGCGCGAGGGTGACGGCGCTCGCGCTATCCCCGACGGACGAGACTTTGCTGTGCTCCACCGACGATAACCAGATGTACGAGGTTGACATGTCCAACGTCGACGTCGTGAAGAGCGAGGACATCGAGTGCCAACTGTTCACGCAGGGGCACCACACGCAGGGCGTGACGGGCGTGGATCTGTGCGTGCGTAAGCCGCTGGCGGTGACGTGCTCGAGCGATAAGTCCGTGCGCGTGTGGAATTACTTGGACAAGGCTGACGAGATTTGCAAGTACTTCGCGGAGGAGGCGCACAGCGTCGCGTTCCACCCCAGCGGGCTGCACGTTCTGGTGGGGTTCAGCGACAAGCTCCGGCTGTGTAACCTGCTCATGGACGACATCAGGCCGTACCGCGAGTTCAGCATCAAGGGCTGCCGCGAGTGCTCCTTCAGCAACGGCGGCAAGTATTTCGCCGCCGTGAACGGGCCCGTGATCCAGGTGTATAACATGTACACGTGCGAGAACGTGGGCAACTGCCGCGGCCACGGCGGCAAGGTGACCGGCATCGCCTTCTCCGCCGACGATAAGCGCCTGTTATCTACCGGCCTGGACGGCGCCGTGTACGAGTGGTCCCTGTCCACGTTCCAGCGCGAGAAGGAGAACGTCATCAAGTCCAACGAGTACGCCTCCGTCGCGATCGCTCCCGACGATACTTACGTCTTCGCCGTCGGCTCGGACGCGACGCTCAAGCAGCTCGACGGCGAGGACCTCATGCTCAACGAGGAGTTCGCCCTCACGGGGACCGGCGGTGATGGCGGCCAAACCCAAACCCAAACCTTCACGCGCGTCCGGCTCACCAACGGCGGCAGACGGCTCTTCGCCGCGACGTCCACGGGGGCTGTGAGGGCGTACGAGTTGGACGGCGGCCGGATCGCTGGCGAGGGCAAGGAGTTCAAGGAGCTTCGGTGCCACACGGGTCCAGTGACGGGGATGCGGGTCAACTTCGACGATACCCTGCTCTTCTGCGTCGGCGAGGACGGGGTGTTGTCCGTCTTTGACGTCAAGGAGCGCGCGATGGAGGGCGCGACGAAGGCTGGCGAGGGGATGGTGTTTGCTCAGGAGGTGCTCATGACGAAGGCTGACCTCGAGGATATTCGCAGCAGGATGCACGAGCTCGAGGTTCAGGTCAACGAGCTCACCCTTCAGGGCGAGTACCAGCTTCGCCTTAAGGACCTAAACATGAACGAGAAGATCAAGGATCTCACCGACAAGTTCCAGGGCGAACTCGAAGGCGAGCGGTCCAAGTACGACGCGCTGCTCCAGGAGAAGAACGAGCTCGAGATGGATTTCGCGGACCAGATGAAAACCACCGAGAACAAGCACGCGCAGGCCACGGCCGCAACCGAGTCTTCGTTCCAGAACAAGATCCTGAACGAGATCGAGCGGTACCAAGCGCTCGTGGAGGAGAAGGAGGAGCTCAACCGCGGATGGGACGAGCAGAACACCGCACTCGCCGAGTCGCATGATCGCCTCGTGGCGGATCTCACCGAGGAGTTTGCCGGTAAACTTCAGGAAGAGCAGATGCACTCGGAGACTCTTCGGCTGCAGCTGGAGGAGGCCCGCGCGGCTGCGAATGAGCGCGAGAACCAGCTCGAGGAGGACGCCGACCTCGAGATTGACGAGCTCAAGGAAAAGTACGAATTAAGGCTCAAGGAACAGCGCGACGTGTCGCTGAGGTTGAAGGGCGAGAACGGCATCATGAAGAAGAAGTTCACCACCATGCAGAAGAGCATCGCGGAGCAGAAGGACGAGATTGCCGGTCTCTTCACCGATAAGAAGAACCTGTACGCCACGATCGCAGATCTGGAGAAGGACGTCGCGGGCCTTAAGCGCGAGATCCGGGACAGGGACGAGACGATCGGGGACAAGGAGAAGCGAATCTACGACTTGAAGAAGAAGAACCAGGAGCTGGAGAAGTTCAAGTTTGTCCTCGACTTCAAGATCAAGGAGCTCAAGCGGACTATCGAACCCCGCGAGCAGGACATCTCGGATATGAAGAATCAGATCACTGAGATGGACAAGGAGCTGGAGAGGTACAACAAGAGCAACACCCACCTCGACCTCACCATCAAGGACCTTCGCAACAAGCTCCTCGGGATGGGCCAGGACGTCAAGCGCAAGCAGAAGGCGATTGAGGACCGGGACTCTGCAATTCATTCGTTCCAGAAGGATCTCCACGAGGCCACGAAACACGTCCAGACGCCCAAGCGACTCGCCGAGGAGGTCAAGTCCCTGTACGCGAAGCACATGACGCAGAAGATCGACGACAAGCCCCCCGACAAGGACATCCAGCGCGAGTACAATCGCCAGCGAGAGTACCTGGAGAAGACCATCGATCAGTTCAAGCGCAAGCTCGCGAAGGACGTCGAGACGCACAAGAAGGACAACATGGCGCTGATGA +>EF225152.1 Uncultured bacterium clone Br_008751_0450_0145 16S ribosomal RNA gene, partial sequence +CACCGCCCGTCACATCACGAAAGACCACGTTGTACTAGAAGCCGGCAATTCAACCGCAAGGAGATAGCCGTCCAAGGTATGACTGGTGATTGGGGTG +>XR_004539126.1 PREDICTED: Geotrypetes seraphini TIA1 cytotoxic granule associated RNA binding protein like 1 (TIAL1), transcript variant X6, misc_RNA +CCTCTCCTCTCGCGTAGGGTCCGAGGAGAGCGGAGGTCGGCGCCTGCGCGTTGCGGGGATTCCTGCCTGACTGACTGGCGGCCGCCATTTTGTTATCCCGGATCTGCAGCGGATGAGCCGTGCTGTAGGAGACGTAGTTGTCTGCTCGCTCCCTCCCCGCCCGTCCATCTCTCCCTCGCCCCGGCAGCCATGATGATGATGATGATGGAAGACGACGGGCAGCCACGGACCCTCTATGTCGGTAACCTTTCCAGAGATGTCACAGAAGTTCTTATTCTCCAGTTATTCAGTCAGATTGGCCCCTGCAAAAGCTGTAAAATGATAACTGAGCAACCTGATAGCAGAAGGGTCGGCTCTTCTGTTGGATTTTCTGTTTTGCAGCATCCAAGCAATGACCCGTATTGCTTTGTGGAATTCTATGAACACAGAGATGCAGCTGCTGCATTAGCTGCCATGAATGGGCGAAAAATATTGGGAAAGGAAGTCAAAGTAAACTGGGCAACTACCCCAAGTAGCCAGAAAAAAGACACTTCCAATCATTTCCATGTGTTCGTTGGAGATTTAAGTCCAGAAATCACAACAGAAGACATAAAGTCAGCATTTGCTCCTTTTGGTAAAATCTCGGATGCACGTGTGGTCAAAGACATGGCAACAGGCAAATCAAAAGGCTATGGTTTTGTTTCATTTTATAACAAATTGGATGCAGAAAATGCAATTGTGCACATGGGAGGCCAGTGGTTAGGAGGTCGTCAGATCAGAACCAATTGGGCGACACGCAAACCACCTGCTCCAAAAAGTACACAAGAAAATAACACAAAACAGCTAAGGTTTGACGATGTAGTGAACCAGTCAAGTCCCAAAAATTGTACTGTGTATTGTGGAGGAATTGCTTCCGGACTTACAGATCAACTTATGCGACAAACGTTTTCTCTGTTTGGGCAGATCATGGAAATACGAGTTTTTCCAGAAAAGGGCTATTCCTTTGTCAGGTTTTCAACTCATGAAAGTGCTGCTCATGCTATTGTTTCAGTGAATGGAACTACGATTGAGGGGCATGTTGTTAAATGCTATTGGGGTAAAGAATCCCCTGACATGTCTAAAAACGTACAGCAGGTCTGTGAGATGCCTCTTATGTGTGTATTTCATTGATTGCCATACACACTATCTCTTCAATTTTAATTTTTGGACTTGTGGCATTTGTATATAGACACCTAAAGATGGAGTATGGGCAGTGGGGACAGTGGAGTCAGGTGTATGGAAATCCACAGCAGTATGGACAGTATGTGACCAATGGATGGCAAGTACCTTCATACGGGATGTATGGTCAAGCATGGAATCAGCAAGGATT +>XM_013369717.2 PREDICTED: Columba livia parathyroid hormone like hormone (PTHLH), transcript variant X6, mRNA +GAATCGTTTCACCCGGTTAGAAGATTACACCAGGTCAGACGTGGCTAAGGATTTTCTTATTCCTGACAGCAGCAGGAAGGAGAGGAAGGCAACCTTGATGGGAGCTGGGAACAGAGTGCAACAGGGAGGAAGATTTCGCTTCTGAGCAACTTTTGGGGAGCCTGGTCGCCCACCCATCTGCAGCCCCTGGCTCTATTCACCGCTCAGGAATTACGTGCCAAACCTGGAACAGGGACTTACCTTCCTAGCCAAGCTCTCAGGATAAAATATAGTTTTGGAAGCAATTGCTGAGAAGATCAACCACTGTTGGCCAGGGTGATCTCTGAGAAGCACAGAGGGCTGTAACTCAAGGAAAAGGTTTTAAGACCCGGAGGATACAATGTTCACTAAACTCTTCCAGCAGTGGAGTTTCGCAGTGTTTCTGCTGAGTTATTCCGTGCCTTCTTACGGGAGATCAGTAGAGGGGATCAGCCGCAGACTCAAACGAGCTGTATCAGAGCACCAGCTATTGCATGACAAGGGCAAGTCAATCCAAGACTTACGAAGAAGAATATTCCTTCAAAATTTAATTGAAGGTGTCAACACTGCAGAAATTCGTGCAACTTCAGAGGTTTCACCTAACCCTAAGCCTGCTACCAACACGAAGAACTACCCTGTCCGATTTGGTAGCGAAGATGAGGGCAGATACCTAACTCAGGAGACAAACAAATCACAGACCTACAAGGAGCAACCCCTGAAGGCATCAGGGAAGAAAAAGAAAGCAAAGCCTGGAAAACGTAAGGAACAGGAGAAGAAAAAGAGGCGAGCTCGCTCAGCTTGGCTAAATTCTGACATGTATGGAAGCAGTGTGACCGTGAGCCCACTCTTGGACAACTCCGTTACTACACATAATCACAATTTAAGGAGGCGCTGACATTTTCAGCAAGAAATTTTTGGAAGACATATTGCAGTATTCTGTAATAGTGAACATATGGGAAGTATTAAAATATTTATTACCTGTAAATATTGTAAATGCTCAGAATAAAACTTTTTCCCCCATTGCTCTCTGAAACTGCACATTTGGTTATTGTGAATTTTCTTTGTTTCTTTTTTTTTTTTCCCCTAAGGCTAAGACAATTATTATTATCACATTTAACATAATTTATTTTGTTGACTGGTGTATTTATTTTGTGAACGTATCTTGGTGCTGCTGACTTTCTATATTTTTTGTAACATAATGCACTTTAGATATACATATCGAGTACATTGATAAGTGACATAAAATGTTCCCATTTCGTGGTTGACTTCAATGAATGCCTACATACAATTGTTCAAACTGATTTTCCTTTGTGCATGTATAATAGCAGTATTTTAAAATTTGTAAAGAATGTCTAATAAAATATAATCTAATTAAATCA +>XM_027670495.1 PREDICTED: Neopelma chrysocephalum smoothelin (SMTN), transcript variant X3, mRNA +GGGAGCGCAGCCGAGCCAAGCGCGGGGCCGCGCTGCCCCGGACGCCCTTTGTTGTCTCGGTCGCCGCTGAGCCCCGGCCGCAGCAGCGCGGGCCCGGCGGGCGGGATGTCCCAGGAGAGCCTCCTCGGGATGGACGAGGGAGCGCTGCGGAAGCTGCTCGAGGCCACGCTGGACCTGGCTGAGCGGCGCCGCATCCGTTCGGCCATCCGGGAGCTGCAGCGGCAGGAGCTGGAGCGGGACGAGGAGGCGCTGGCATCCAAGCGCTTCCGCCCAGAGCGCGGCAGCCACAGACAGGACGACAAGGAGAACTGGCCACGGTCTCAGCACCTGGAGGAGGAGCAGCAGGCAGCCCTGGCCGCCTTGTCCCAGGAGCTCGAAACAATCACCAGCGTGGAGGAGCTGACAAAACTGCTGCGGGCAGCGGGTGAGTATGAGGAGCGCAAGGTGATCCGAGCTGCCATCCGTAAGCTGCGGGCTGAGGAGATCAAAGCTGCGACACTGGCTGGGAATGTGCAGAGCAGCCGGAGGGATGGCAACGAGCCCCGCACTGTGCCTGGGGATGCGAAAAGTATCCAGAGGGACAATGCTGAAACACCAGCCCTTACTGGGAGTGGGGAAAGCCTTGGTGAGGGCAGCACCAAGCCCCTGGGCACAGCCAGGAGAGGGGAGAGCAGCCGTCAGGACGATGCAGAACTGCCGGCACTGGCTGAGCTAGAGGAGAGTGGGCACAGGGGGGCTGCGGAGCAGCCCCCTGCCCAGGAGCCTGAAGTTTCGGCGGACCATGAGCGAGAGGACATGGTGGAGCAGGAGCATGTCCCAGCCAGGATGCAGGAGCTGTGCAGCCAGCAGGCGGGAGACCCCCAGAAACCCAGTGTCCAGGAAGTGGTGTCGGGGACCCTTGTGCTTCTGGAGCTGCAGCCGGCCCCAGAGCCCAATCCGGAGCCTGAGGATGGTGTTGAGGAGCTGGAGCAGGGCCAGCCCCAGGGGCAGCAACAGGCAGCCTGGAAGGCAGGGAGCCTGGACAGCCCAGCCACTGCTGCGGAGCCCAGCAGGAGGCAAAGCCCTAGAGGGGAGCAGCCACCCCTGGGCCAGCCTGGTGCTGCCAGCCAGCTCCATGTTGGGGTGCGCTGCCAGGCACTGGGGCCAGATGGGAGACACGGGAGGCCACCAGTGGCGCCAGTGTCCACCCAAGATCTCGTAGGGACCCCAGCTCGCCTGAACACTCACCAGTGGGAGCAGGTGCCCTCCTCTTCGTGCCCAGCTGGCCCCACGGAGGTGACCCTGGGGCTGCGGAGCACCCCCATCCGCATCACCACCATTCCCAGCAGTGTCAGCAGTATCTGCAACATCAGCAGTGTCAGCAGCAATGTCACCAAGATGGAGCCGGAGGTGGTGGAGCAGCCCCAGGTTCTGAGGCTGGAGCCAGAGCTGCCCAACGGCATGGAGAAGGTGCAAGTGAGGGAGGTAGAGAGAAGGAGCAAGCTGAATGTCGAGGAGCTGAGCAGGATTGAGGATGAGGATGTTCTGGATAAGATGCTGGATCGGACAACAGACTTTGAGGAGCGACGGCTGATCCGAAATGCCATGCGGGAGCTGCGCCAGCGCAAGCGAGACCAGCGGGAGAAGGAGCGAGACCAGCGGCTGCAGGAGGCTAGGAGCCAGGCTATGGCAGGAAGGGCTGGCCACGCCACCGAGACCACCACCACGCAGAGCACTCAGTCAGCTGACGGCTCAGCTCGCAGCACCGTCACCAAGACTGAGCGTCTCGTCCAGTCTAGTGATGGCACCAAGACCTCCCGTACCACAACCATGGAGTCAAGTTATGTGAAGAGATCAGACAGTGGCAACAGCACGTTTGTTCAAACCAAATCATCCTACAGCTCCTCGTCCAAGAAGACCGGCAGCGTCTTTGACCGTGAAGATGAGAGTGCCTCCAGGCAGAGCAGCCTGGCTGCACTGGAGCGACGTCAGGCAGAGAAGAAGAAGGAGCTAATGAAGGCTCAGAGCCTGCCCAAGACCTCAACCTCACAGGCACGCAAGGCCATGATGGAGAAGCTGCAGAAGGAAGGCGGGAGCTCACCAAACCCCGCAGCATCACAGACCACTGTGCAGCGCTCCTCCAGCTTCGGCGTGCCCAATGCCAACAGTATCAAGCAGATGTTGCTGGACTGGTGCAGAGCCAAGACCCGGGGCTACGAGCATGTGGACATCCAGAACTTCTCGTCCAGCTGGAGTGACGGCATGGCCTTCTGTGCCTTGGTCCACAACTTCTTCCCTGATGCGTTTGACTACAGTAAGCTGACACCCCAGAACCGCCGCCACAACTTTGAGGTGGCCTTCTCTTCTGCAGAGACGCTGGTGGACTGCGTGCCGCTGGTGGAGGTCGAAGACATGATGATCATGGGGAAGAAGCCAGACGCCAAGTGCGTCTTCACCTACGTGCAGTCCCTCTACAACCACCTGCGTCGCCACGAGTTGCGCATGCGGCAGAAAGAGTGCTAGAGCCTGCCCTGCCCACCCCCCCACTGTCCTTGCTGCCAGGGCTGCCAGTGGGCAGGGGAGCTGTCTGCCCCAGGAGGGTCTGGCAGGGCCACAGGTCTGGCACTGAGGACAGGGGGAACTCTGACACCCAGGCAGTCCCCTGCCTCTGCCTTGCCAGAGCTGCCTCTGCCCCGGCCAGCTGCGGGCTGACCCCATGAGCAGGGCCAGGCAGGCACTGCTGGGGATGCTCCTGGCTTGGCTTGCCCCCTGCGCTCCAGCCTGTTAAGTTATTTGTTCTCCAGGAATTGTGTACCCTGCGGGCAGCACTCCTGTGTCCCTGGGTGGCACAGCTGCGCCCTCAGGCCTGGGGCACAGTGTGGGTCAGTGGCTGAGCAGGACCGTGTAGCCCAGCCAGGCATCCCACAGGCAGCATCTGTCAGTGGTTCCCATGGCTCCCTGTGAGGAAGCCCCTCTGCCCACCGCAGGCCCTGCTTGGTGTCACCTCCCTGGGGACAGCTCCACAGCTGTGCCGACACCCTGCTTCCCACCTTCACGTGCACCTGGGGCACTTCCGCACTAGGGGCTGCAGCACCTGTGGGCTGGGGAGCGGGCAGGGGTGAGAGGTCCCAGGGGAGCACGAGGCTGAAGGAGCCAGCCAGGATGGCAGCCCCTTCTCCCCTCTCCTGCTCAGGGCACCACGCGCTCAGCGCCGCTCGCCCCTCCGTCACGTCTCTACACCTGTAACGACACGTGTACCAACACCAGCCAGATAATAAAGGTTTACCTAGGGTGA +>XM_032185005.1 PREDICTED: Aythya fuligula latent transforming growth factor beta binding protein 1 (LTBP1), transcript variant X5, mRNA +AGGAAATCAATGGATACCAAAGTGTTCTGTTTATTTTTCTTTTTTTCTTTGCCTCCGCTGACAGTGGGAAATCACACTGGTCGCATCAAGGTGGTCTTTACACCCAGCATCTGCAAAGTGACTTGCACCAAGGGCAACTGTCAGAACAACTGTGAGAAGGGAAATACCACCACCCTCATCAGTGAGAATGGCCATGCTGCTGACACTCTGACAGCCACTAACTTCCGAGTAGTTATTTGCCACCTTCCATGCATGAATGGAGGCCAGTGCAGTTCTAGAGATAAATGCCAGTGCCCTCCTAATTACACTGGTAAACTTTGTCAGATCCCTGTGCAGACTGCCAATACTCCAAAACTGTATCATCACCCACAACAGGTGAACAAAGCTGTAGGATCTCAAATTATCCACTCGACTCATACTTTACCACTGACAATGTCTGGACAACAAGGTGTAAAAGTGAAGTTCCCTCCTAACATAGTGAATATCCATGTGAAACATCCCCCTGAAGCCTCAGTTCAGATACATCAAGTTTCAAGAATTGACAGCGCATCAACAGGACAAAAACCGAAAGTACCTCAGCCAGGACATCCACAGGTCTCTTACCAAGGTCTTCCATATCAGAAGACCCAGAAAGGACATACTGCTTACACAAATCAACAACCCATTCCTCATGTGTTTCCTGTTTCAGTTAAAACTCAGCTTGGACGTTGCTTCCAGGAGACTATTGGAACACAGTGTGGCAAAGCACTTCCTGGCCTTTCCAAGCAAGAAGACTGCTGTGGAACCGTGGGTACTTCCTGGGGTTTTAACAAATGCCAGAAATGTCCTAAGAAGCCATCATACCATGGATACAGTCCTATGATGGAATGCCCCCAAGGCTACAAGAGAATCAATGCTACATTTTGTCAAGATATTAATGAATGTCAGTTACAAGGAGTATGCCCTAATGGTGAGTGTTTGAATACCATGGGCAGCTACAGATGTACCTGCAAAATGGGATTTGTGCCAGATCCTACCCTCTCAAGATGCATAGCTGATAGTCCTATGGTTGCTGAAGAGAAAGGACCCTGCTACCGGTTTGTTAGTGCAGGAAAACAATGCATGCATCCTCTTTCTGTTCAGCTCAGCAAGCAGCTTTGCTGTTGCAGTGTTGGCAAAGCCTGGGGCCCACACTGTGAGAAGTGTCCCCTCCCAGGAACAGCAAAGGAAGAGCCAGTGGAGGCACTGACCTTCTCACAGAAAAGTGAGCCTGAGATGGCTGTGCAAGAAGTGGCAACTGCAGCCCCTGATCAGGAATTAGTTTCACTCGATCAAGAAAAGCAAATCGTAGAGCCTGGACAGCCCCAGCTCTCTCCTGGAATTTCAACAATTAACCTGCATCCACAGTTTCCAGTAGTGATTGAGAAAACATCTCCTCCTCTGCCTGTTGAAGTTGCTCCTGAAGTCTCTACTTCAAGTGCAAGTCAAGTAATTGCACCTACTCAAGTTACAGAAATCAACGAGTGCACAGTTAATCCTGATATCTGTGGAGCAGGACACTGCGTTAATTTGCCTGTGGGATACACATGCATCTGCTACGAGGGATACAAACTTAATGATCAGCAGACAAAATGCTCTGATATTAATGAGTGTAATCAGACACCTCATCTCTGTTCCCTTGGACGCTGTGAAAATACAGAAGGAAGTTTCCTATGTATTTGCCAAGCTGGATTCATGGCCAGTGAAGATGGAACTGACTGCGTTGATTTTGATGAATGTTCAAGACCTCATACTTGTGGGGAAGGCTTCTGTATAAATACTGTTGGCTCGTATAGGTGTGAATATTGTGATAATGGCTACCAAATGAACAGGAGAGGGGAATGTGAAGACATTGATGAATGCATGACCCCAACGACTTGTCCAGATGCACAGTGTGTTAATGCTCCTGGCTCTTACCAGTGCATTCCTTGCAGAGTGGGATTCAGAGGCTGGAATGGACAGTGCCATGATATAAATGAATGTCAGTATGGCAATCTCTGTACACATGGACGTTGTGAAAATACTGAGGGGTCTTTCAGATGTATTTGTGGCCAAGGTTTCAAACTCTCTGCATCAGAGGATCAGTGTGAAGATATAGATGAATGCCAGCACAGATCACTTTGTGTGAATGGGCACTGCAGGAACACAGAAGGGTCTTTTAGATGTGTTTGTAACCAAGGTTACACATTATCTTCTACTGGAGATCAGTGTGAAGATATTGATGAATGCCTTCAAGACAGTGATGTATGCCTTCGAGGAAACTGCATGAATACTGATGGGTCTTACAAATGCACTTGTCCAGATGGCTTCCAGCAGATAGCAAATAGGGGATGTCAAGATATCAATGAATGTGAGAGATCTGACCTCTGTTCACCTCACGGGGAGTGTCTGAACACAGATGGGTCCTACCAGTGCATATGTGAGCAGGGCTTTTCTGTGTCTGCAGATGGCCGAACATGTGAAGATGTTGATGAATGTGTGAACGGCACACTGTGCGGCAGTCATGGGTTCTGTGAAAATATGGATGGCTCCTATCGCTGTCTCTGTTACCAAGGGTATCAGGATGCACAAGATGGGCAAGGTTGTACAGATGTGAATGAATGTGAAATGCTGAGTGGGGTATGTGGTGAAGCCCTCTGTGAAAACGTCGATGGTTCTTTCCTCTGCCTGTGTTCTGATGAAAACCAGGAGTATGATCCGATGACCGGACAGTGTCGCTTCCGTACCTCACCAGAATTGCCAATAGAGGCCGATCAACATGAAGATGGAAAGAAGGAGTGCTACTACAATCTGAATGATGCTAATTTCTGTGACAACGTGCTTACATCTAATGTAACCAAACAGGAATGCTGCTGTACTTTGGGTGCTGGCTGGGGTGACAACTGTGAAATCTTCCCATGCCCTGTCTTTGGAACTGCTGAATTTACTGATTTGTGTCCTGAAGGGAAAGGTTTCATTCCCTCTGGAGAATCATCTTACGGGCTTCTTGCTGAGAATTACAAAGATGCTGATGAATGCCAGCTCTTTGGAGAAGAAATCTGTAAAAATGGCTTCTGTTTGAATACGCAGCCAGGTTATGAGTGCTACTGCAAACAGGGCACGTACTATGACCCTGTTAAGCTCCAGTGCTTTGACACGGATGAATGTCAGGACCCAAACAGCTGTATTGATGGCCAGTGCATTAACACAGAAGGATCTTACAACTGTTTCTGTACACACCCAATGATTTTGGACGCAACAGAAAAGCGGTGCATCAGACCAGCAGATTCAAGTGAACAAACTGAAGAAACTGAGGTCTACCAGGATCTTTGCTGGCAGCATCTAAGCGATGATTTTGTTTGTAGTCGACCTCTGGTTGGAAAGCAGACTACGTACACTGAGTGCTGTTGCTTGTATGGTGAAGCCTGGGGCATGCAGTGCGCCTTGTGTCCTATGAAGGAGTCAGAGGATTATGCCCAGCTGTGCAACATTCCTGTTCCAGGATCTCGACGTCCATATGGACAAGATGCTTTGGTTGACTTCGAGGAGCACTACACTCCAGAAACTAATCCATACTTTGTTGAAGACCGTTTCCTGAACAGCTTTGAGGAGTTACAAGCAGAGGAATGTGGTATTCTGAATGGATGTGAAAATGGCCGATGTGTAAGAGTCCAGGAAGGCTACACCTGTGACTGCTTTGATGGTTATCACCTGGACATGGCCAAAATGACTTGTGTTGATGTGAATGAGTGCAATGAGCTGAACAACAGGATGTCTCTCTGCAAGAATGCCAAATGCATTAACACAGAAGGTTCGTACAAGTGTTTGTGTCTCCCCGGGTACGTACCTTCAGACAAGCCAAACTACTGCACACCACTGAACTCAGAACTAGACAGTGAACTGGAGTAGAGGAAAATCTCCATATCCTAAGCCCATATACTCTGCACTGTATAAAGAAAAGGAAGAAAAGTATTTAACTTGAGAAGAGAAGGCACCAGAGTAGTGAACATAAGGGGAAAAACACATTAAAATGTGTCAAAGGTGAGACATGATGGGCTGATTGTATGTCAGCTTCACTGAAGTGACAGACCAAATGGACACATTACTCTGTATGAAAGAAACAATCAAGTATATAGTGTGTTCATAAGAAAAAAAAAAAAA +>XM_038354470.1 Zerene cesonia endocuticle structural glycoprotein SgAbd-5-like (LOC119831184), mRNA +AACACATTGCAAGTGAAGACGATACGGTCACAAAGCTGCGAAGCAAATCCAATCATGAAATTTTTGGTGGTAATTGGTTTCTTGGCATTAGTGTCGGCTGCTCCCGCACCGCAACGTCAGCCAGGTGCCCCAAATCCACAAGAAGTTCAAATTCTTCGCCTCGAAACTGAAAACGACGGCCTCGGCTCGTACAGATATGCTTTGGAACAAAGCGATGGCACGAAGAAGGAAGAGCAAGGGGAACTGAAGAACGCTGGTAAAGATGACGAGGCGATCTCGGTCAGGGGATCTTACGCCTGGGTTGGACCTGACGGTGTGACATACATTGTTACTTATCTTGCTGATGAAAACGGTTTTCAACCAACGATAGAACAGGGCCCAGGTGGTGCTGTGCCTTCTGCTGTCATCGCGTCCCTCGTCGGCTGATCAACAAATAACCCAAAACCTAGTCGCCAAATAAATTACCATATTTTTTTAA +>XM_035478915.1 Colletotrichum scovillei oxidoreductase (HER10_EVM0009428), partial mRNA +ATGGCTTCCGTACCCACGCTTCGAGAGCTTGCAAAGCAAGTCTCTGAATCCATCTCAGACGAACATCTCGCCGGTAGTACGTTTGCTATTGGCGGTGAGATCCCAATTGAGCAGCCCAAAGACGAATCTAGCCCTACGACTCAGGTTGTGTCTTCTTCGGTCGTTCTTCGGTGGGACAATCCGGGGGAACATCCTGGCCCCCAGCGAGTCTCCTTCCCAGTCGCTTCAGATGACGACGCTGTCGCCTTCAATCACCTCCTCAAAGCCTCTGAAAAGGCTACATTCGGTCTCAACGGACGGCACGAATTCGATGAAACGTACCGCAAGGCTCAGAAGCTCGGTGCGGGTGATTTCTGCACCACCTTCTGCCCATATGAAACAGGCATCATCGACGCTGTTTGCCAGGTTCTTCTCCCTAGCTACGATACGGACGAAGACACGCGGGCAATCCGGGCGGAGCTGTACAATATGAATATCTACTCTGGTCCTTCGGGCAAGTTCAAGGCGCACGTCGATACTCCTCGTTCGCCCTACCAGATTGGCTCTTTGGTTGTCTGTCTTCCGATGAAGCATGAGGGTGGCGAGCTGGCAGTGAGACATTTTGGACAGACTCACACCTTTGACTGGGCCAAGAACTCCAACAACTCCGTCATTCAGTGGGCGGCCTTCTACAGCGACTGCGAACATGAAGTGCTCGAGGTCAAGTCCGGTCACAGAGTTACACTCACATACAACTTATATGCCACAGCAGGAAACGGAGAACTCGCAGGTGAAACGTCTGCTTTCAGCCCTACTTCGCTGCCACTCTATAGCCAGATCGTAGACTTGCTCGGCTCCAAGAAATTCCAGTCCAAGGACAGACTTCTGGGAGTCTACAGCACGCACGCGTATCCTCACACCGAAAAGGAACACGGCCTTCCGTTCTGCCTCAAGGGTCTTGACATGGTGCTCTACAACACCTTCAAGAGCCTAGGCTTGAAAGTCAACTTGTGTGCCATTCTCGAAAACCCGAAAGGCTTTTGCAGACGTAAGCTTTACAATGGAGAGTTTTCCGATGAGGATTCAGATACCGAGCCAACGCAGAAGGTGACATTGGCGAAGAACGATAGCGGGGACAAATTTGACTCGGACGGCGACGATAGCGGGGACCAATCTGACTCGGACGACGACGATAGTAATAAGTACTACACCAGAACCGTCGGATACATCAATCAAGCATTCTCCACTGACGAGCTGGTTGAGGACGACGATGATCTGAAAAGCATCATCAGCCGGGCCATGAGAACCAACAAGGTCAAGTTCGACGCCAGCAAGATCATCTGGCTGAACAAGAACAATGGCGAGTCGAATATGCAGGTGTCATATATGGCATACGGCAATGAGCCATCCTCCGAGGAAATCTACTCATACTTTGCGATGGTCATTGAGATCCCTGGTGTTGGAGTGAATGCAAGCGATAACGCGGAAGCGTAG +>XM_041571208.1 PREDICTED: Xenopus laevis lysine-specific demethylase 2A (LOC108697539), transcript variant X12, mRNA +ATGTATAAGTCCATATGGGCAGCACTCCACTCTTGATGTTTAAACTCGGGTGCAAGGTAAAAGAATCAGTTATGTAGACAAATGACCAGCAACACCGAGATATTTCGTGAATAGTTCAAGTGTATTCAGTAAAAGACACCTGGTTACAGAGACCACTAAAAGATGGTTGCTATAAATGCACCAATTGCCTAACGTGCAGGGGAATGTTACAGGGCACACATTTCACCCATCCTAGGACTGGAACTAAATTTCGGATCAACCATAGGGTCACTTGTACCACAGATCACGTCGTATATATGGCCTGGTGTCCGTGTGGATTACACTACATTGGGAAGGCATCCACCACATACCGCGAACGGATGAACAACCATCGTTGTGCCATCAGAAGTGCCCTGACTACTGGGAAAGCAGATCAACCCATTACGAAACATTGGCTGAATAGCAAGCACACCCTCCCACAGTTCCGGCACATGATCATAGACTATGTGCCTGTTCCTAGGAGAGGTGGCAACAGAGGCCTCCTACTACTACAGAAGGAATCCATGTGGATTTACAAACTAGATACCTTGTCACGAGACACTTCCTATGTCCCCCTTTTATTGAGATCGGAACACTGGGTCATAAACTATCCACAGTATAATTACCTCAAATGAAGACTTTGACAGTTGGGTTTGACTAATCTTTATTTTGTTGGTTTTTATTACCGTTTGCATTTTTTGACTCTTTGGCTTCTGGATGTGAATGTCACAACAGTAATAGTATAGAATTGCAAATATGGGCTCTGGCGGCTGAGAGTTGGACTCATCGAGTGTATGAGTCGATATCTCTTTTGCTTTTGGGGTTGATCGTTTCCTCGCATTCCAAGGTGCTGGTGCCGTTCTGATCCAGCTATATAACAATATGTATAAGATTATTCTTGATTGTTGACAGGTGACTTATCAGAGTTTATCACAGGCAACTAATGACATATGTATTGCATATATGATATTTTTACAACAGGCTAGCTTCCATGAGGACGAGGGGGACAACAACAGAACATTTCGGTCGGCCTTTTGGCAGGATGATGGACCAACCAGTCATATGTGACCGTGGACCTCGCTTAGGTTAGCAGTGAGGCGCTGTGCTAAGGAGTCCTACGAGAACATGCTCCCAAACAAACACATCACACTGCACCAGGACTGATAAGAAATGTGGTTTGGCCGTCAGGTACACACAGCCTAAATATGCCCTGAGGGGAGTGAGCGTGGGGCAGGCCTTTCACTTACGTCTAGCTGACACTCCAGGGCATCGCTGTCTGGACGGTGTAACGAATCCACAAACACTTCGGTTCGATCAAGGGACTGCAATATCCCTCTTAGGGATTCCCTTACTGGGCGGTGCGCTAAGAGGTGTGGCTGACAAATACTAACTGTGATAGGAAGGAGCCTCTCGAGACGGACTGAAGGACAGCACGCGCCTCCAGCTTTTGTACGCTGGCGGCGCTTTTACAATACCTGAGAAGGGATTGACCACGTACTCACTTGTGACACAGATGGTTGGCCCGCTGTCTGCAGTATGGGCGAAATCGCTATGATACTTCTCTGTGGAATTGATCCCTCTCGTCGGGCTAGCTGGGTCCTGCTGGTATTGTCTCATGAGTGTTCGTGGATGTTATACAGATTTTCATGTGGACTTTGGTGGCACATCTGTGTGGTACCACATACTAAGGGGAGGCAAGGTGTTTTGGCTAATACCTCCTACAGATCAAAATCTGGAACTCTATGAGAATTGGCTGCTCTCGGGCAAACAAGGTGACGTTTTTCTTGGGGACAGAGCAACAGAGTGTCAGCGAATTGAACTAAAACAAGGCTACACATTTGTTATTCCCTCAGGATGGATTCATGCTGTGTACACACCTCAGGACACACTGGTGTTTGGGGGAAATTTTCTGCACAGCTTCAACATTCCAATGCAACTTCGTATATATAGCATCGAGGACAGGACGAGGGTACCTACAAAATTCCGATATCCTTTTTACTATGAAATGTGTTGGTATGTGCTTGAAAGATATGTCTATTGCATGACTCAACGCTCTCATCTCACAAAGGAGTTCCAAAGGGAGTCTCTGAGTATTGATTTAGAGCTTAACGGTCGCCAGAGACCAGACACTCCATCCTTATCCTCATCCGCTTCATCTGAATTATCGTCTTCCTCTGATAATGATGATTCCTCTGATCAAGATTGGGAGGAAGAAGGAAGTCTTAAGAAGAGGGAAAGAGATAGACTTAGAGTGGAGCATGAACTTCAGAGGAGAAGGAACAGGGATAGGCAACAAAGAGACCAAGAAAGAGATCATCAACATGCTGAGAGAATAATTATCCATACTCTACCTGCGTCACTACGTCCTTTAACTCCACCACCTTCCCTTCCTCTGCCAACACCAGATTCACCTCCCAGCACTTCTCCTTACTTGACATGGTTTGAGATTGAAGGATTACACTGTCTTGTGCTGAAACTTGAATCCTTGCCACCTCATAAAAAGTGCCTACCAGATGGTATCCATGACCCAGAAGCTCTTATCTCTGATATCAAGAGTCTTCTTGAGGACCACTCTCATGATCCACCTGAGCTTGCACTCACTGGCGTTCCAATAGTTCAGTGGCCCAAGAGAAATCAGTATAAGGTCCACCTTCGGCCCAAGATTCAGTTTACAAAACCTCACACTATGCGTCCAGCTTCCCGTCACTCCACAGCTCCTCCTAGGACATTAGGCACTCCATCTGGTACTACAGCTTCTTCGGGTGCTCGAAGGCGTCGTGTCAGGTGTCGCAAATGTCAAGCTTGTGTCCAGCGAGAGTGTGGGACTTGCCACTACTGTAAGGATATGAAGAAGTTTGGAGGGCCAGGCCGTATGAAACAATCTTGTGTACTAAGGCAGTGCCTTGCTCCCAGACTGCCCCATTCTGTAACCTGTGCTTTGTGTGGGGAGGTGGATCAAACAAATGACACACAGGATTTTGAAAGAAAACTCATGGAGTGTTCAGTTTGCAATGAAATTGTTCACCCAGGATGTCTAGAGATGGATGGTGAAGGACTTCTAAGTGATGAACTTCCAAACTACTGGGAGTGCCCCAAATGTTATGAGGGGCAGAAGCACACGATGCAACCAAATCATGATCACATCGAACTGCACAGTAAACGTAAAGCTGCTGACTATGAGAGCAGCCATTTCTACCCTGCCAAAGTTCTGCGGCCTCCACTGGGGCAGAGCCCCCCATCCCCACCTCTTTTGCTCCCACCTTCTCCTTCATCTGCTCCACCTACACCACCCTCTTCGCAGACACAAGTCCCACCTGCAAGCCGAGAAGAGCGAGCAAAGAGGCGCCAACTTACTAGAGAGAAAGAGAACCACCCGACTGGATGTGATCAGTCTGAGGGAGATCGCTTGCGGCTTAGGGGGCCCTACCTCGCGGTCACTCTTCAGCGTTCACCAAAAGAATTAAGCTTCACTTCCATTGTCCCCAAGTTACAAGCCATCACACCAAATCCCCGTCAGCCTATGCATGCAGCTCCACCACAGCATCCTGATGAGGAAGAAGAGGAGGAAGAGACAGAGAACAGTCTCATACTGGGTCAAAGAAAAAACAACATATCAATGCAGAAAGTTGTTTGGCTCTCTGTTTTCCATTACCTCACACATGAAGAGCTTTGCATCTGTATGACAGTGTGCAAATCCTGGTACAAATGGGGCTGTGACAAACGTCTCTGGTCCAAGATTGATGTTAGCCGCTGCAAGTCTCTAGTACCACAGGCTCTCAGTGGCATTAATAAACGTCAACCTGTATATCTTGACTTGAGCTGGACAAATGCATCAAAGAAGCAACTTATATGGCTTATCAACCGGTTGCCAGGTCTGAAGGATTTAATCCTTGCTGGGTGCACTTGGTCTGCTGTCTCTGCCCTTGCTAGCTGCAGATGTCCCCTCCTGCGTACTCTGGACCTGCGCTGGACTGTTGGAATCAAAGATACTCAGATTAGAGAGTTGCTTACACCAGCCTCAGACAAAACAGGACATGACTCTCGCAGCAAGCTACGTCTGCTAACAGATCTGCGCCTTTCTGGCCTTGATATTTCTGATGTTACTTTAAGGTTAATCATGCGCCATTGCCCACTTCTGTCTAAGCTTGACCTCAGCCACTGTCCCCTGCTTTCCGATCAGTCTGTAAACCTCCTTACAGCTGTGGGCTCTTCTACAAGAGGAATACTCACTCACATACACTTAGCAGGTTGTAAAGGGGTGACAGATGAGTCTCTTCTATATCTACGACGTGCCACCAACCTGTCCCTTATTGACTTGCGTGGTTGCAAGCAGGTTACTCGGGGAGCTTGTGAGGGATTTATTTCAGACCTCTCTGTAAGCATCTTGTATTGTCTATCAGATGATAACCTTATCCAGAGGATCACCTAGAGTGGAAGGACCTGTTAATTGTACTGGAAGAGGTTAGAGGAGGAATGTGGAAGAACATAATCTCCCCTGCCTCTCATCTGCTCTCTCCTGCCACTCCATAAGATACAAAGAAGGAGCAATAATTGGAATCTCTGCCTACATCCTCCAGTGAAACCATTGTTTGATCCAAGGAAATGTGCCATTAAAACGTGTATATAACCAACTGTGGTTGGCATAGTGCCCTAATGGTTTATGGGGCCCCTCAACTCATTAGGGCACCCTGCCAACTCTTACTCATTTTTTTGCTTAACTCACTCTATTCTTCAGGCTGGTCAGTGTGCATAGCAAGGGTGAAGGAAGGTTTTGTTTTAAGGGTTTTTTTCTGTTGTTGTTTTGCCTTTTAGGGATTTGAGAGATATGAGAGAGAATGCTCCGCTAAAGTTATATAGGTGTCTGATGAGTTGTGTGTTTAATTATATGTTTGAGAGGGAACAGGCAGGTTTTGTGATAAATAGTTTTTTTTTTTTTTTAATTGGATTGTAGCTGTTTGCCCATTACCTCTCATACAGAGTACAGACATTCATTTACACTTAATAGTACATTTATTTTATGCACCAGTGCAGCCATTTGTGGATATATACATATATAGATATATATTAAATGCCGGTAGGTACACAGAGTGTTATGTATGTCAGTGCCAGTGGCACAATCGGCTGTCCTCGCCTTTGACCTGGCATTAGATTGTATAAAAAAAAGAGCCTGGATAATATTTTTCTCTGTGGAGCGATCTTGCTTTCCCTTTATTTCTTTTGCAATAAAAAAAAGTTTATGATACAA +>KF978784.1 Uncultured bacterium clone 16SOTU48 16S ribosomal RNA gene, partial sequence +TCCTACGGGGGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCAACGCCGCGTGCGGGATGAAGGCCTTCGGGTTGTAAACCGCTTTCAGCAGGGAAGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGTTAGTCACGTCGGATGTGAAAACCCGGAGCTTAACTCCGGGCCTGCATTCGATACGGGCTGACTCGAGTGTTGTAGGGGAGACTGGAACTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCGGTGGCGAAGGCGGGTCTCTGGGCAACTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGGTGGGCGCTAGGTGTGGGGAACATTCCACGTTCTCCGTGCCGCAGCTAACGCATTAAGCGCCCCGCCTGGGGAG +>XR_005054034.1 PREDICTED: Manis javanica uncharacterized LOC118967152 (LOC118967152), ncRNA +GGGTTGAAAAAAAATATGAGTGCTCTCTTTTGTGTGCGGACAAACAGCCGAGCGCGGGGAGGTCGGGGCCGGGGTCAGGCGCTCCGGGCTGCAGCTGCCGCCGTGGGGAGGGGGGCCCCGGGCGGCCCCCCGGAGTCGCGGCCACGGCGGCATCAGCCTTCCGGCGGCGCGGGCGGCCACTGTCCTCGCGCGACCCCGGCCTGTCGGGAGCGAGACCCGCTCCGCCCCTGGGGCGCCCAGCCCCGAGCAAGGAAGTCACAGTAAAAGAATCAAAGCTCATGACGCCCATCCAGAGTACTCCTGGTGACACTTCCTGACATAAAGTCATAAATGCAGCTGGAAAGAAAATGTGGAGGACACAGAAAAGTGGAAATGAAAACTGAAAGGCCCCAGCGGGCCCGCCGGCCCCTCTCCAGGGGAGCCCGAGTCCCTGCCAGCAGCAGTGGCCCAGGAGCCTTCAGATTCTGTGCCCTGTCCCTTCGCTGTTACCCACATGTGGACACCAGGAAGTTAGATTCCTAGAAGCATCAATTCCAACCCAACCCATGTATGCATTTTCAGTCTGGCTGGATTTACACTTCCTTCCACAAGGATGAGGTTCGTCTCCACAGCCCCTGCCAGCCCTGGGCATCACCACGTCTGGGTAGTTTCCATGCGAGGCACGTGCTCAGGGACAGCCTTGTGAGGCCCCACAGGCCACAGTGATGAGGCAGAGAGGCAGAGATGAGAAGTGGGCTCAGGGACTCTCTGGGACCTGGGAGGATGGGCCAGAGCCACAGCCCATGGCCACACCCTCAGGGCCTGGCAGGCCCACCCTGCATTCACCTCCCATGACATCTTACAGAGTGAAGGGCCTGCCTTTGGGCCAAAAAAGGTGACTGGGATGTTACGGGCCAGCTTGCTCCAGGCCGTTTGTGAGACAGCCCTCTGCAGGGGCTGCGGCTGAGACACCTGCCCCGGGGCACTTAACCATCCACCTGCCTCTGCTGTGGTCTCCTTGGCAGATTCAGCTCTGCCCTCAGAGAGCTGGCGACTTGTGGAAACAGTCAGATGCCATTCTGAGCCAAGCCCAGCGGGGCTGCTGCCGGGAGAGACCCAGGCCACTCGGGCAAGAGACCTCCAAACAGTGAAGCCCATGTGCCCCAAACCACCACTGCTTGGATAAAGTTCTGAGAGAGAGGGTGCAAACTTGTTTCCATGGGTGGTGGTGTCGCCAGGTCAGGAGGCAGCCTCCAAGGTGACAAGGGAACTCACAGGGAGAGAGTGAGTTCAGCACGTCAGTTAAAATCTCCATTTGCTGGGCCCATCACCTGCCTCCACGGGGGTCGGGCACCGTCTGCTGAGCTTGGCCACACAGTGCTCTTCCCCCGGCCGCCGCCTCGCCCCCCAGGCCCCCCGGAGCCCCTTGCTCCTCCCACAGCCTACTGAGCTTCCATCTCATTGTGCAGCCACTTCTTGTCACCTTGACCACCCTCCCCATCCCAACACCCAGTCCCTGGAGGCCAAAGATCATGTCTTTCCCCAGCTGTGTCTCCACAGCTCAAAACAGCACATGCTGCATGGTAGGGATGTGGTACATCAGGGGTGGAAGAAGAGAGGCCCTGGGGCAGGGCATCCAGAGACCTGGGACTGGGTCCTGGGCTGGCCGCTGGCACCGGGATCTTGTTCCTCAGTTTCTTCATCTGGGCGAAGGGTAGTTGGGATAACAGGTGCCAGAGGCCTTTCCAATTCCATTGTGTGAGGGCTCTTCAGGCCAGGGCTTGATGGGAGAGGCCAGGGCAAGCTGAGGCGGCCCCACCTCTGCCCCGTGCGTGATGAGGGGCAGCCTCCTCCACGGCCTCCCTCTGTGTGCTCAGTGCCTCCAGGCCAGCTCCAGGCCCGTCGGCATCCCAGGAAGGCAGCAGAGGTGGACGGAGGGCACGAAAGGACACGCTTTCACTGACCACCCAGCCCAGCAAAGCTAGAATCTGTCAAAAAGTAAAAATTCCATTTGTAAACAAGATCAAATTATTTGATTGTGAAACCAGGGTCCATGGAATTTAAAACAATTTAATGTGAAACAATATAATTTGAAATGCTGACCAGCCAAGACCTGGGGGTGGAGGGGCTCAGCCTCCTGTGGCCAGACACATGGAACCCAGCCTCAAGGAATAATAAGTCACTGTTCGACAAGGGTGAATGGGCATCAGCTGCGTGGCAACCCCAGGCCAGACCTGGGGCAGCAGGCCCGGCTCCCGTCCTCCTGGGGCTGGCAGTCCTGATGGGCAAGCAGGACTCTCACAATCAGAAAAGCAGTGCCAGAGAGCGGGAAGGGCTCCGTGGAGTGGCATATGATCCAAGTGACAAGGGAGGCTCAGAGAGAGCCCCGAGGGGCACCCGGTGGGCAGGACAGCAGAGAAGCATATTCAGGGTGGAAAGGGCGGTCAGGTCCCTCCCAGCTGCGGGTGTGCTGCCCTGCGTGATTCTGGGCCAGCAAATCACTCGTTAGCCTCAGTGTTGTTATCCACAGAATGGGAAACATCTCAGTCCCGCTCCCCACCTGCAGTGAGGATGAGAAATCGTTTCCGGGCATCCCACCCCACCAAGCTGACGTCACCAGTGGACAAACAAGCAAGCATGAGTGATGCAGTGGCCTGGTGAGCAGCTGCTGCGGGCATGTGGCAGGCAGGTGCCCGGAGGCGCTGCAGTGCGTTCTGTGTCCAGCACCTGCGGGTGCTTTCCAGAGGGACGGCGGAGGCAGGGCCCGGCAGGTCCTGGTGCAGCAGAGCTCTGCTTCCACGTACCCTGCCTCAACGTAAACACAGCTGGTAATGTTTCAGTACTGTAGGAGCAGGAATAACAGACCCAGAGAAGCCAGACCAAGAGCTCGCGAATGCTGACTTTCATGTCGCACCCAGGCATCGCATGTGCATCTTGGCGCCTGCGGGCCTGTTGCTCGGTGGGGAGGTGGGGGGCTAGTGTGTTTAGGAAACCGAACTACGGGCACAGCAGCGGGAGGATGTCAGGCCTCACCTCCCTTCATCCTCCCAAACGCAGCTCCCACCACAGCAAACCTGGAGGCTACCTGGGATGTGGGGGGGCACCAGGGCCTCTAGGTTTTAAGTGACCTAGGAGACAGTGGGGCAGGGTGGGGACTTCTCATCAGTGAGGTGCCACCTTAGGCACATCCCCTAACCTCTGCATGCAAACAGGCCCTGGAATACACCCAAGGTCAACTGGCCAGTGAGAAGCTGACCTAGAACTCAAGCCAGGCCCCAGTCTCCCCATGTCCCTGCTGCCCGCTGCGGAACCTGACCCACTGCCAGACCCGAACCTGCAAACCAACCACCTGTGGGTTCTGGGTAGCACAGAGCCCTTGGAGACCGTGATGCTGAGAAGCAGTGTTTTTGTTCGCCCCTGAGTCTTGCCAGGTCACATTGTCAAGGCCAGCACTTTGGAGA +>XM_053291376.1 PREDICTED: Hemicordylus capensis complement C4-like (LOC128343033), transcript variant X1, mRNA +GAGAAGGCATCTGCCCTGCACAGACGCAGCCCAGAGATGTTCTCTCAAAAGCTGCTGCTGCTCTGGCTAGCATGGATGGGGACTCTGGTAGCCCTGAGCCACCAAACTCCAAGGTTGCTAATGGTTGCCCCAAGTGTGATACCAGTGGGGGCCGAGGTGGGGATCGTGCTTCAGGTCGAGGGGGCCACATCCAGGTTCTCAGGCACAATCTATTTCCAGAATGAGAATAACATGAAAAAATGTTCCAATGAGGAGTCATTCAACTTTTTGCCCAACACCTTTGTGCAAAAGGTTACTCTGAAGGTGACCCACGAACTCTTTACCGAATGTGTTCTGGCTCGCCAGCGACGGAACCGCTACATCCAACTTGTTGCCCGCAACTCCCTGCTCCCCAATGGCGGCGTTCAAACCCTCAACCTGCGCTGGAGTGCCCGGCAAGGGTACCTGCTGGTGCAGACGGACAAGCCAATTTACACCCCACAGCAAAAGGTGAATTTCCGAGTCTTTGCCCTGGATCACAAATTGCGGCCAAGCACTGAGCCAGTTGTCATCACTGTGCAGAACTCACGAGGTCTTCAGATCCGGAAAGTTGAGCGTGTGCCAGTGAATTTTGTGATAAACGATCACCTGTCTATCCCTGATATCTCTGAGCCAGGCATTTGGCGTATCACAGCCCAGTTTGTCAACACACTGAATTTCAACACAACAACAGAGTTCGAGGTGAAAAAATATGTGCTCCCTCATTTTGATGTGACAATTGTTCCAGAACGTAAATACATCCTCCTTTCAGGACAGCAGGACTCTGAATTGCGAATTGACCTCCAGGCTAAATTTTTCTATGGGAAGGGGGTCAATGGCACAGCCTACGTGCGGTTTGGTGTGAGTGATGACAATAAGGAGAAAGTTTATATCCCAGGACTCGAGCAACAAGTCTCCATAACCGATGGCCGTGGCTCACTAATGCTGAAACGCAGCCTCCTCGCAGAGAAACTGGGGCGCCCTCTGGAGAACCTAATTGGAACAGCACTCTACATTGCAGCCACTGTCATAGAGGCAGCAAGTGGCGAGCTGGAGGAGCAGGAGCTTGCTTCAGTGAAATTTTTGGCATCTCCATATTCAGTTGATCTGTCCAAAACCAAGCGCCATTTTGTCCCTGGTGCACCCTTTGAAGTGCTGGCTACTGTTTCACTCTCAGATGGCACTCCTGCCTCCAACCTCCCAGTCCGTTTCTCAACCCAGATAAGAGGGGGCTCATCCCCCAATGATGAGCGAGTGGACAGCAGTGAGCAAGGGGCTGTGATATACAGGATGAATGTTCCCTCTGGAGCTACCTCCATCACTTTCACGATAACAGCAGGGACAGAGTCTCCAACAGAAGTCACTCTGACTGCCAAAGCAATGAACTCTCCAAGAGGCAACTACTTGATCATTGAAAGCCCAAAATACCAAGGCTTGAACCCCGGAGAAACTCTCTCGCTGGGGCTGAAACACGTTGGATCGGCTGCCTTCTCCCACTTCTACTACCTGGTTTTGAACAAAGGCGACATTGTCTCTGCCAACAGTATCAACCGTGGAACCTTTACGGTCATCTCTATCCCCATCACACCCAGCCTGATGCCAACGTTCCGCTTTGTGGCCTTCTACCGTGTTGGGGATGAAGTTGTGGCAAACTCCATCTGGGTTGACGTCGTGGACCGCTGTGACGGAAGACTGGAGCTCCGCACATTAGGAAACCCTGACCAGCTGCAACCTCAGGACCTCCTGAAACTCGCCATAACCACTGATGTGAAATCCTTTGTGTCGCTTGCTGCTGTTGATACTGCGGTTTACGCCCTCAACCGGAAGAATCGCCTCACACAGGGCAAGGTTTTCCAGGCTATGGGAAGCTATGACCTTGGCTGCACAGCTGGCAGTGGGGAAGATACCCTTGGCGTTTTCACTGATGCTGGACTCTCTCTGCGTACTGGTTCTCTACAGAGTGAGCTCCGGAAAGCACATGGGTGCAGTGAGAGTGTTTCCCGGAAGAAGCGTTCGCCGCAGTTCCAGTTCCAACTCCAAAGCATGCGTTCCAAGTACTCAACCCCTGAATCGCGGAAATGCTGCCAGGATGGCATGGTGCTCCTTCGAAGAGCCATAACATGTGAGGACCGTGCCAGGCGGATATCAACGCGAGAGTCTGAGGAATGTCATCGTGCCTTCCTTGAATGCTGCAAATATGCTGCCCGTCTACGACGCAAATCCTGGGGATCCCACAATCTTGGGCGAACTCTAGATGAGGAAGATGAGGATTTCATTGATGACGATTCCATTCAACTCCGGAGCGTCTTCCCTGAGAGCTGGCTCTGGAAAACTTTCTCCGTAGAAGGAACCCGCACGGAAAACTTGATTCTCCCCGATTCCATCACCACCTGGGAGATCCAGGCTGTTAGCATGTCCTCTGCAAAAGGGATCTGCGTCTCAGAACCTCTTCGAGTTAGAGTCTTCCAAGATTTCCACATCTCTCTCAGGCTGCCGTACTCAGTGAAACGGTTCGAACAGATAGAGCTTCGCCCTGTTCTGTACAACTACCATTCACAACCAGTCAGTGCCTTGGTGTATCTGGAGCCTGCTGAGGGCATCTGCTCTCCAGCAACCGTCGGCCCGGCTCGGAAGCAGAGGGTTGTTGTGCCTGGGAATTCAGCGGTGCCCCTGCCCTTTGTTTTGGTTCCCATGGGAGCAAACGACATTCCCATCACCGTTGTTGCCATTGGCGGCTGGGGGGTGGGCGACAAAGTTTCCAAGAACCTACGGATTGAGAGAGAGGGTGCTGTTCGGGTGGAAGAATACACCATCCCCATATCAAGTGAAGCTGGACAATCCAGATCTGTGGAGATTTTAGGAGATATACCCTCCAACTCCATTCCTGATGGCGACTTCAAGATGAGTGTCCGGTTGACAGGATCGCTGCCAGCTGACACTCTGGAGAGTTCTCTGACACCAGAAGGTCTGTCAACTCTCTTGCGGGTTCCACATGGATGTGGGGAGCAAACCATGTTATTGATGGCCCCTGGGGTCTATGCCATGCGCTACCTGGACAGCACTGAGCAGTGGCTACACCTGAAACCGGAGAGCAAGGAGAAGGCACTGGATAACCTCCGTACAGGCTATGAGCGAATCCTCACTTTTCGGAAGCGTGATGGGTCGTATGGAGCTTGGCTCACCCACCCTAGCAGTACTTGGCTGACGGCTTTTGTGGTGAAAGTTTTATCTCTGGCCCGTGAGTACCAGGGTGTGGATGAGACTAAGGTCCGTGAGTCAGTGCAGTGGCTTCTGGCAAAGCAACAGTCAGATGGTTCCTTCCAAGACCCAGCCCCTGTCTATCACCGGGAAATGCAGGGTGGTGTTGGCGGCCTTCACGCAGGAGTCTCACTCACAGCGTTTGTCACCATCGCACTTCAAGAGGCCTTGGTCATGTATGAAGGAGAGAACCTTGAACCAGAGAAGCAGCAACAGCTGAGCCAAGTGAAACACCGCCTGGCTCAGGCTACCTCCTTCCTTGCCCTCTCCTTGGAAGAGCGATCTCTGGGTGCCTATCCTGTCGCCATTGCTGCTTACGCCCTCTCGATTGCTTCTGCCAACCTGTCGGCCATCACTACTGCTGATTCTCACCTGAGGAGGCTGGCTACAGAGGACAAAAACAACACGATGTTTTGGGCGGTGGAAGAGCGGGACCGACTGAGAGGGGAGAAGAGATCTGGGCAGGTTCCCTCTGCCTCAGCCATCTCGGTGGAGGCCACAAGCTACGCTCTCCTCTACTTGGTGAAAAAAAAGGACATCACAATGGCCCACAAGGTTTATAAGTGGCTGACAGAACAGAGGAACTATGGAGGAGGCTTCAAATCCACCCAGGACACAGTGGTGGCCCTGGAAGCTCTGTCGCAGTACTGGATCAGCACCTACCAGGAGGAAGACAATGAACTGAAAGTGACCCTCAGCGTTGCTGGGAAAAGCTGGCCGATCTCCCTCTCACCTGGGAGATCAAACCATCCAGTCCAGGAAGAACTGCAGTTTTCTTTGGGGAGTAACATCAATGTAAAGGTGGAGGGGAAAGGAAAAGGGACTTTGACAGTCCTGAAGCAATATCTGGTCTTGGCTATGCAAAACACTACCTGCCAAACCCTTGGGTTAGAGGTGAAGGTGAGCGGCTCCATTCAGCGTTCACGTGAAATGCTTGACTACTACTACGAATATGAAGATGAGGATGAGGTTGAGGTTGCCGGTGAAAGAAAGGCACGGTCTCTACCTGCTGACCAGCCATTGTCTCCTATCCACTTGTTTGATGCCCGGCAACGCCGCAGGAGGGAAGTCAAAGCCCCCGGCCAGCCGCAACGGGTTGTCACCTATGAAGTCTGTTTTTGGAGGCAACCTGGAGCACATGTCTCAGGCATGGTCATCGTTGACATCACTATGCTTAGCGGCTTCCAACCCGACAAGGACGACCTTGACAAGCTCAAAGATCTTGCTGATAAGTACATCAGCCACTGGGAGCTCCAAGGACCACGGCTGTTGCTGTACATTGACTCGGTTCCAGCAACAGAACGTGAATGTATAGAATTTGCAGCAAAGCAGTTAGTAGCTGTGGGGAAACTCCAGCCAGCAAGTGCCACTCTGTATGACTTCTATGAACCAGACAAGCGCTGCAGCATCTTCTACGGTGCCCCCAACAAGGACCAGTATGTGTCAGCCTTGTGCTCGGATGATGTCTGCCAATGCGCTGAAGGGGCCTGCCCACGGTTGAAGCGTACCCTGGATGAGGCCATTACAGAAGAAGACCGCATGCAGTTTGCGTGTTACGAACCTCGTGTGCACTATGCATTCCAGGTTCGAGTGGAACGTGAGAGCAAAGAAAGTGCCTTTCGTGTCTACGAAGCTACGATCTTGGAACCCTTGCAATTTACTGCAGACATTGGCATCTCCCAGAACCAGACCCGGCGCTTTGTGGTCCGTGCAGCGTGCCGGACCCGCTTGGCCGCAGGCAGCAAATATCTGCTGATGGGACGTGATGGAGAAACCCGTGACTCTGAAGACCGCCCCCAGTATCTGCTGGATAGGAACTCTTGGGTGGAGGAAATACCAAAGGCCCAGCGCTGCCGAGCCACCCAGCACCGTAACACCTGCCTCCAGTTCAAGTCTTTCACCACTGCTTTTGCTGAGAATGGCTGCCGTGTCTGAGCCAGAGAACTGGACCAGAATGATCACCTGCACTTTCTCCCATCTTCCTGCACCAGAAGGTTCTCTCGGAATGGAATGGAAGATGCCAAAAGGCCTATTCTCTGATCACTGTCTTTTCCCCTTGATGCTTTGTATTTGGACAATTTAAGAATGTAAGAAGAGCCCTGCTTGCTCAAGCCAAAGGCCCATCTGGTCCAGTATTCAGATTCCAACAGGGGCTACCCAGAAGCCTCTTCCACAAGCCCTTCCCTGTTTTTTGTCCCCAGTCCATGGTACTCAGGCTTATTTTAAGCCAAATTTTGGGTTACAGCCCATTTGACCCACGAGTATACCCCCTAGGTTCTGGCATCACTTGGTGATCGTCATTGATGGACCTATCTTCCATGGACAGGTCTAGAAAGTCTACAAGCCTGGTCTTTCAGCCATCTCTCTGGGCACACTAACCAGAGGGAAATTGTGATTCAGAGGTTCTTAAACTCGAGTCCCCAGCTGTTGTTGGACTACAACTTCCATTATCCCCCTCTTATAAGGACAATATTGGACAATATTGTCCCCTTGTTAAGTCTCTTTTTTGTAATTCCTGCACATTGGCTACTATGTTGCAACTACCATTTTTTAGTGCCACTTGGGTTCTCTGATACTTTTTCTTTGTACTGGTCCCCAAAAATGCACATCTTTAAAACTGCATATGATCATAGCAACAGACAAATGCATGACCACAGCCATATTCACACTTTAAACAACAACTTTGGTCTATGAATAAGGACTGTTTGGCTGTGATAATGATCACACTTCAGTGAGCAGCTTTAGCATAATTCTGTAAAGATTTTTTTTTAATGAGGTGTTTGTTTTGTGCCTCTGTCACTAGCTAACATGCCTCACAAAGCTATTTTGTTGAATAAAGAGTATCATTCTATA +>XM_022636737.1 Penicillium arizonense hypothetical protein (PENARI_c034G09255), partial mRNA +ATGAACCCAACCCCCATCAGCATGTCAGTCCGTACAGCGATAACCTTCAGCCGACTGAACCCCGCGGCGCCCTCGCTCGCCGGCGCCCTCCGTCCGCTCAACCAACGCACCTCCGGAACAGTCTCCAAGCAGCTCACACGCCTCAGCTCGACAACAGCTCGCCCAGCCATGGCGGCACCCGTGACCCTGGACACCCGCCCACAGACCCAGACCATCTCCACCCGCCCCATTGGCCTGCGCGCACAGTCGACTGCTTCTGGTAACGGTACCGGCAACGAGGAAGTCAAGCTCGACTGGGACTCCTTCTTCAAGCTCCGCGCTTCCCGTCGCCGTTATTCTCTTGCTTCATCCATTACCACTGCGGCTCTTTCGACTACGGCTGGTGTGCAGATTCTGTCCGCTCAGGATTTGGAGTCCCTTGGCGCGCAGGTTATGGGCCTGGACCCATTCGTTGTTCTCGGATTGGCGACCGCTGCGTGTGGTGCTATTGGATGGTTGCTTGGGCCGATGGTTGGAAACGGTCTCTGGGGATTGGTATACAGGAAATATAAGCCTTCCGTTGCGACGAAAGAGAAAGAGTTCTTCGATCGCATTCGTCGCTTCCGTGTTGACCCATCGACCAACTCGATTGCCAACCCCGTTCCCGATTACTACGGCGAGAAGATTGGTAGTGTGCAGGGATACCGACAGTGGCTGAAGGACCAACGGGCTTACAACCGCAAGCGCCGCAACTTCATTGCTTGA +>XM_039112273.1 PREDICTED: Rattus norvegicus zinc finger and BTB domain containing 1 (Zbtb1), transcript variant X5, mRNA +TCTGGGGTATAGGGTATTTGTATTTGTGTTCGATCATGTTCCTAAATCGAGTGTCGCTGTGACGGTACACGTAGATTCTCCACTGGTTAGAATGTATTTCCGTACAGTATCTATCGCTGCGGCAACATTTTCCCCTTTGACACTGGAATCCACGAAGCGTTCCAAGCATTTTTTTTCCCCTTTTTTGAGACAAGGTCTGACTAGATAGCCCAAGATCGTTTGGATAGAATTCTCCTGCCTCAGGAAATCCTAAATTCTGGGGTGATAGGCATGTTCTGAGACTTTCCAAGACCACTTAGAATTAATTTCTTGAGCCAAAGTTTGAGGCACCACCAAGTCAATTGGTGAGAACGATGTAGTTCTTATGAGAACTTTAAAGCAACCACGGTTTTTTAAAAGGTATAAACTAGATTTTCTGGAATTTTGTCACTTTAAATGGGGAGAATGAAGGTACAAGAGACTGAAGTCCCAGTGATGGATGGCTGGTCATTTGCCCAGAACTGTAAAACTTCCCTTTTGAATCACTGGCTGTTGTTATCTCCCTAAGTCTCAGTAATATTGAGTGGCAGCCACATGGGCTTTCTTCCTCTTAAAGAAATAGACAGACTTAAAGTAGACACGAAGTGAAATGCCTTTCCAAAGGTTAATACTTAGAGTTTTGTAGTGTAATGTTGTGTTATAGCCACTTGCACTCATTTTAACGCCAGGATTTCTTCTCGGACAGCAGAGTTTTACAGGGTGTGGTTGTGCACGCCTGTGATCCCAGCACTTCAAGAGGTTGGATCAGAAGCCTGAGGCCAGCCTGGATCTGGCATACAGAGCAAGACCCTTTACAAAGCTCAGGGCTGGAGAGATGGCTCAATGGTTAAGGGCACTTGCCTTTCTTCCAGAGGGACTAAGTTTGACTCCCAGCACCCCCACACCAGGCAGCTCACAACTACCTGTAACTTCATTTCCAGGGAACTCCACACTCTTCTTCTGGACTCTAGGACATCTGTATTCATGTGCGCACCCCTCCCCCCCCCACTACACATAATCAGAAATTAACATGAAAAACCCCAAAGCCTCATTTTCATGATTCGGAGTAAACCCTGGTTGAGCAGTCCTTCCAGCTGGCTGTGTTCTTCCAGTTCCTAACGTTATGCCTGCTGGTTTCACCACTGTGGCTGCATCCTTGTGAGGAAAGAGAAGCCACTTTTGACCAGGGCATGAGCACAGCTTCCTCACCTTGTTATGTTGGTTTTTGGTGTTTTGAGACAAGTGTTTCTCAGTGTATCCCTGGCTGTCCTGGAACTCACTCAAGACCAGGCTGACCTCAAAGGCTGAAGAAATCCACCTGCCTCTGCCTCCTGGGTGTCAGGATTGAAAGTGTGGACCACTGAAACTGCTGTTTTATGTTTTGTTTTGTTTTGTTTTTTAAAGCTAGGTTCTCACTGTTTGGTCCATGGCCAGCCATAGCTTTCCGTCCTCTGGCTTCGACCTCTCACCTAGTGGTGGGATAACAGGTCTGCACCGCCATACAGGATTCTGACATGGGTTTTTTGTCTTTGTGAAGCAGGGTCTCACTGTGCAGCCCTGGATGACCTCAGACTCTAAGAGATAGGCCTGCCTCTGCACCCACAGTGCTAGCATCAAAGACTCGTGCTGCTACGCCTGCTCATGACCTTGTGTTTTTATTTCATGATAGCTGCCAACTGTTTGTACCTTCTGCTTCCTCATTCCTCCACATTCCCCCACTTTTGTCAGTTTCTGGTACAGTTAGGGCCTTTTCAAAGTGCCCAGTGTCCCTTGCAACACCATTCAGGAGAAAATGTTGCTGCTTTTTTTTTTTTTTAAAGGCCTATTTTTCTCTATACAGGACACAGACTGTCTAGAGAAAAGAGGGGAAAAAAAAACCTTTGTGTTAGAATACAGAAAAAAATAGAGGCTGCAGTCTGATGTCTCGGAGGAGGGTTAAATGTGTAAAACATCTGCTTGACGTTCACTTAGGTCTCTGTAATATTTTTCATAGTTTCTTGTGTTATAAAATAATGAAAATGCTTTGCTATTCATGTTTTTATGTTAGCCTAATTAAGTTATTTATGCCTATTTTTTCTCAAAGTGGAATACCTTTTCAATGATAAAAGCAGATGCCCTTTATAAAAGTTCCAACTATACTAAAGTACATAAAATACAAAACTGAAAGTCGCTCTGACTCCCACTCCCCAGAGATAATCACTGTGAACAATCAATCCCTTGTTTAAAAACATGAAGGCAGCATCAGAGCGTCTTGCTGTGTGTGCCTCACCCCAGCCTGTTCCTGTTCACAGGCTGGTGCTTTCTGCTCCTACCTCAGATTGTTGAGAATTCCCAGGTTGAGGCGGGTGGGGGGTTGCATTGAGCTGATGTCAAATTCTATAACCTAGTGACGTGTGAAAGTTTTCATGTTTAATAGGGCTGCTGTTTTAGGTTAGTCCTCGTTCATTCTCCTTGGTGGGCTTCTTCTCACCCTTAGCAAATGTTGCAATCTGTTATCTGATTGATTTGTGCAGACTACACTCGTTAAAACAAACCCTTCGAGTGGAGAGAGCTTCTTAGCTTATCATTGGGAATGAGTAGGGACACTTGCCACAAAGACCACCGCCAAGATATCCCTGTGCCTTTTGTGATGGTGTGGGTTCCTCATGGTCAGCATCCAAGAAAATCGTGATAGAAAGGAAATTAGAGTAACGGTGGGCATTAATTACTGTTGTTTTAAGTTATGGGAAGGAATGGGAGGGGGTGTGTGCAAAGACTAGCCTGAATTCTACCCACATTAGACATCTTACATATTTAAGGTAATTTCTAAGTATACTGATATTTTGTCCTGCATAGTCATTACAAAGCTACTTAGGCCGGTGTGTTCAAGAAGGATGAGCTGTGGGGTTGATTTCCTAGTAAAGCTCCAAAATAGCAGGCTCAGATTTAATCACAGTAATTCCTGGAAGGTGTTGAGGACATGCTGCTTTTTTGAGAAGGGGGTCTCTGTAGCATTGGCTGTCCTGGAACTCACAGAGATCCATCTGTCACCAACTGCTTTTTTTGGGGGGGGAGTGGGGTGGTAAAAACACTACTATGTGAATATACATTGTTTTCAGAATCACATCTGAAGGCATGGAGGTGTATAACCTAGTATAAGAGTGCTTGCCTATCACACCTGAGGCCCTAGGTTCAGTCCCCAGCACTACAAAATAATGAGTATTAAAACATAAAGAATAGCAGTGTGTAGGGTGCATGACTTTAATCCCAGCATTTGGAAGGTAGAGGCAAGTAGATTTCTGTGGGTTCAAGGCCAGCTTAGTATACATAGTTCCAGCCAGCTACATAGTGAGACCCTGTCACCAAAAATAAATAAATAAATAAATAAATAAATAAATAAAATAAAAAATAAAAAATAATAAATTGCTAATTATATTTTCTATTAGTTTGTTCTGTGAGGTGCATGTTGTCTTTTTAAAAGCTAACTCCTTCCCACTTGAAATTGACAGCAGTGGGGGTGGCCATGGTGGTCAGCAGATGGAAAAGGAGGTGGGGAGAGGGGTGCGTTCTGCTTGCCTATTAGATAAGACAGCAAGAATGATAGGAGCTTTTACAGCGATGGAAAATGTGACTGTGGGAGGCTTAGAATGTTCCAGAGGGGCACTTCACTTAATAATCATACCCAGAAAGTGTTGTCTGGATTACAGAAACTGAAACTGTGCATCTTGAATCAAGAGTTAGGGTTTCAGCCCCAGCTTCTGTTTACAAGATGGGTAGTTAACTACTGCACGTGTTTTCTTCATTCACAAAAAACATAGATAATTAAAGGCCTGTCTCAGTGCACTGATGTGTGAAAGAGGCCCTATAAATCGACAACAGTGTTTCAGTGACGGCCATAAGTAAGAACTGATGAGCAAAACAAGACTTGCCCAGTTCAGCATTTGTTCCTGGAAAAACTCGTTATCATTTAAATGCCAAGCAACTACTAGAATCCAGGGTTGTAATGATGCCTGACACAACACCTTCGTCTTGAGGTACATACAGCCTCCAGTTTAGATGGCCCATCTCCTGTCTCCCTGCGGCTCCCACCATAAAGAGGTGCCTGCCTCATGCTAAGTCAGGAAAGGGTCCCCAAAGATGGCTCTAAGCAAAGGAATGGTGTTTATGAAGTAAGGAAGACTTCCACTTTTCCCGTGTTTGGGGATGGGGGAAGTCTTAAGAGATGTAAGGCTTAGGGATGGAATTGTGTTTAGAATGGATCTTTTTTACTGGTACTTTTAATTGGTTTTATTTCATTTATTTTAATTAGATAAAATTTTGGAGTTTGAATAGCTGTGATAGCTTCCAGCACTCAAGGCAGAGGCAGGCTGACCTCTAGAGGCCAGCCTAATATAGGGAGAGACCCTTTCTCCAAAAAGAAAAGAAGTTTTCTCAGCCTTGGTTAGAACTGACAGGAAGCCCTGGAGCTGCAGAGCTGGAAACGGATACTTCATTCAGCTTACAGGCTCTGCGAGCAGAGGAAGCAAATAATCACGGGGGGAGCTCCCTGGCAGGCCACACAGCAGATTTTACTGAACACTTAAGTTCTAAAACGGCCTGCCTTCAAGTTGTTAACAGTTGTAGCAGACAGTGTGAGCTCACAGAGCCAATACTTTGGAATAAGTAAAAATACTACAAAATAGGGTGGAGGGATGGCTCAGCGGTTAAGAGCACCCGACTGCTCTTCCAGAGGTCATGAGTTCAATTCCCAGCAACCACATGGTGGCTCACAACCATCTGTAAAGAGATCCAATGCCCTCTTCTGGTGTATCAGAAGACAGCTACAGTGTACTTAAATATAATAAATAAATCTTTAAAAAAAAATACTACAAAATAAACTCCAGCAATACAGATGCCATGTGCTGGGAACCAACTTGGTGTAGCTGCTTTTAAAGGTCACAGGTGCACACACCGCCCTCTGGTGTTCAGAACATGGCTGTACAGCCTCTAGTTTAGAGGGTTAAAAATGGATGTGTAAAATACCTTTCCTCTTATACCAGAGAGAAAGCAGAGGCCAGCACTCCATTCTCTTCCCTCTGCCTTCTGTGTGGATGGACTCCATGTGGAGTCCAGTTGAACTACAGAAATGGCTCGTTCCTGTTACTTGGTAACATTTATTATCCGCTGACCTGCCATGAAGCCAAAAGATAATTTGGTTACCTTCTACATAGTACAAAACAAAGGACCTCAAAGAAGTAAATTATGTACTTGTTTCACGGCCTATAGGAGATTAAAATGGTGGACAGCAGATCAGCGTGCCTTTTAGAAGTGACAACTGTTGGCTTGACGAGGGGAAGAACAGAAACAGACAGGCCAAAGAGCAGCAGTCTCGTTTTGAATAGGTGCAAACAGGCTCACCGGCAGGAGATGGCCAAGCCCAGCCACAGCAGCTACGTCCTGCAGCAGCTAAACAACCAGAGAGAGTGGGGCTTTCTGTGCGACTGCTGCATCGCCATTGACGACACTTACTTCCAAGCACACAAGGCCGTGCTAGCTGCCTGTAGCTCCTACTTCAGGATGTTCTTCATGAACCATCAGCATAGCACTGCCCAGCTGAACCTCAGCAACATGAAGATCAGCGCCGAGTGCTTCGATCTCATTTTGCAGTTCATGTATTTAGGGAAGATTCTGACCGCTCCTTCCAGTTTTGAGCAGTTCAAAGTGGCTATGAACTACCTCCAGCTCTACAATGTTCCTGACTGCTTAGAAGATATACAGGACTCAGACTGTTCCAGCTCGAAGTGCTCGTCTTCCGCCTCCAGCAAACACAACAGCAAGATGATCTTTGGGGTGAGGATGTATGAAGACACAGTGGCTAGAAACGGCAGTGAAGCCAACCGGTGGAGTGCGGAGCCCAGTTCAACGGTGAATACGCCACATAACAGAGAGCCTGAGGAGGAGTCTTTACCGTTGGCCAACTTTCCTGAGCCACTGTTTGACGTGTGTAAAAAAAGTTCCGTGTCCAAGTTATCTACTCCAAAAGAACGTGTGTCGCGACGCTTTGGACGGAGTTTTACCTGTGACAGTTGTGGGTTTGGCTTTAGCTGTGAAAAGCTGCTGGACGAACACGTGCTGACCTGCACCAACAGGCACTCCTACCAGAGCACGGCGAGAGCCTACCACCGAGTGGTGGATGCTAGAGATGGGAAAGACAGTGCCATCAAAGCTGAACTCGGTGACAAGGGCTCTCCTACAGCGTTTTCTGCACACACAGACAAATACAGAGAAGACGCCAGCCAGGCGCCCGATGACTCAGCCTCGCCCACTGGGAGCAGAAAAAGCACTGTGGAGTCCGGCACAGCTGGTGAAGAGAAGAGCAGAGCTGCGGAGACAAAAAGAGTTGTCATCAAGATGGAGCCAGAGGACGTCCCTGCAGACGACATGAAGGACTTCACCATCGTCAAGGTCACCGAGAAAGACTGCAACGAGTCCACCGACAACGATGAGCTAGAGGACGAGCCCGAGGAGCCGTTCTACAGATACTACGTCGAGGAAGATGTTGGCATTAAAAAAAGTGGTAGGAAAACCCTAAAACCTCGGATGTCCGTCGGCGTGGATGAAAGGGGTGGTTTGGAGAACATGAGACCCCCAAACAACAGCAGCCCCAGACAGGAGGACGCCGAGAATGCGTCTTGTGAGTTGTGTGGGCTCACGATAACGGAGGAGGACCTGTCCTCTCATTACTTAGCCAAGCACATTGAAAATATCTGCGCATGTGGTAAATGTGGGCAGATACTTGTCAAGGGCAGACAGCTTCAGGAACACGCTCAGAGGTGTGGCGAACCTCAGGACCTGACGATGAACGGGCTGGGGAACACTGACGAGAAGATGGACATGGAAGAGAACCCAGATGAGCAGTCTGAGATAAGAGACATGTTTGTTGAGATGCTGGATGATTTCAGAGACAATCATTACCAAATAAACAGTATCCAGAAAAAACAGTTATTTAAACATTCTGCCTGTCCTTTTCGATGTCCTAATTGTGGCCAGCGTTTTGAAACTGAAAATCTAGTGGTGGAGCATATGTCTAGCTGCCTAGACCAAGACATGTTTAAGGGCGCCGTCATGGAGGAGAATGAACGAGATCACAGACGGAAACATTTCTGTAACCTGTGTGGAAAAGGCTTCTATCAGCGCTGTCATTTGAGAGAGCACTATACTGTTCATACTAAAGAAAAGCAGTTTGTTTGTCAGACATGTGGGAAGCAGTTTTTAAGAGAGCGCCAGTTGCGTCTGCACAATGATATGCACAAAGGCATGGCCAGTCTCTGGCTCATACTGGCCTGGAACTCACTATGCAGTGATCATCCCGCCTCTTGGTCCCGACTGTGGAGATTAGGTATGTGCCACCACTCCCACCTGGGCTGAGCTTTTAATGTGTTCTGAATTATAATTATCAAAAGAAAAAGAGCCTGTTTTAAAACATAATACACAGGAAACATAAAAGGTATTGACACAATGAGTATGTGTTTTTTTGTGTGTGTGTGTGTGTGTGTTTTTTTTTTTTTTTTTTGTTCTTTTTTT +>OL802220.1 Portunus trituberculatus vitellogenin receptor mRNA, partial cds +ATGACCTTCTGCGACTTCCTTCAGCGTCTATTTTTGCTGACGCTTGTGCTAGCGGCCGTAGTTTCTGTTGGCTGCGGTTATCGTGATGGCAATAATATTAAAGATGCTTTGAAACATCTGGAACAGCATCGCAACAAGTCCACTGATGCTGACGCAGTGAATCGTCGGGAAGTGAGGGGACAGGACGTAACTCCCACCACTACCACATCTAGTACCACTAGACGCTCCTTTACTTATAAAGGTATATGCAATACGATGTTCCTGTTCCGCTGTGACAACGGTGAATGTATATCGAGGAATTTCCTTTGTGACGGAGGCAATGATTGCTCAGATGGATCTGATGAGAAAAACTGCCAGAAATCTACAGAAGGAAAATGCAATTCAAACCAATTTACGTGCAAGAACGGGAGGTGCATTCGTCCTGAGGAACGGTGCGACGGATTGGATGACTGCAAGGATAATTCCGATGAAGTTGACTGTAAGAATTGTCACGGAGACGAGTTCCTATGCAAAAGTGGGAAGTGTATAGCCAATGACACTTTATGTGATGGTGACAAGAACTGCGAAGACGGCGACGACGAAGCAAACTGTGAAAAGGCACACTGCCTCTCTATACCAGGCCACTACCAGTGCCAATCAGGGGAGTGCGTGCCGCCCATTAAGGTGTGTGACAATAGGACGGATTGCTTGGACGAATCGGATGAAGGGCAGGCTTGTGCTACAACATGTGCAGCCAGTAACTGCACGCAGGGATGCTTCCGAACGCCAAAAGGTCCTCATTGTTTATGTAGACGAGGGTATTACCTAGAACGTGATCAAGTAACCTGCTCTGATATAAACGAGTGTGCTTGGAGCGACAAATTAGTGTGCGACCATTACTGTGAGAACACCAAGGGCGGGTTTCAGTGCTCCTGTCACCACAAGTATATACTGCAGAGTGATAACGTTACCTGCAAGCACCAGCAGTCCGGAAGTGCATTTCTTTTAATAGCACAGGACGATGGAATCAGGCAGCTGTTCCTGGATGGCTCTCGCAACGTGCAAATTGTTCACTCGGGGAATGCATCGGTCATAGGATTGGGTTATGACCCTGTAACTCGCACGATGTTCTGGAGTACCTTTGGTAATGTGTTAAAAGCGGAAGTGGTACCTAATGCAGTGACTCACAAACTGTTGCGTGATGGCTTCATTGTGGCTGAGGGTTTGGCCGTGGACTGGACTGGTAGGAACCTGTACCTCACAGATCCCAAAATGAAACATATCATGGTGTGTAAAATGGACGGCTCCTCCTGCTACTCGCTATTGAGTGGTCTTGGTCATCCAAGAGCCATCCAGTTGGATATGGTTAATAGGTATATGTATTGGACTGACGTGAAGGACGGCACAATTCGCAAGGCTGGAATGGATGGTACTAATCATGATGTGGTGGCAATGAATGGAGTACTGTGGCCCAACGCCATGGCACTTGACCTGCCTGCTGGTCGTCTCTACTGGCTGGATGCTAACAAGGACCATGCCTTCAGCATCAAGTTGGATGGTACAGACCAGAAGTCGCTCCAACATGCTGTGATCCACCATCCCTTCGCCATGGCACAGTGGGAGGACCGTCTGTATTGGACTGACTGGAGCAAAAAAGTAATCTTCTCCTGCATCAAAAGGGATGGCAGACATGGGAGGACGGTGCTGAAAGGAGGCTACACGATGTACTTTGGCCTCATTCTTTATCACCCAGCCATGATGGAAGACATATCCAACCCATGCCGATATTCAAACTGCAGCCATATGTGTCTTCTGTCTCCTCACTCCCCTGGGTATACCTGTGCCTGTCCCAGTGGCATCATGGAGCTCAGCCGTGACAGTCATACATGTGTTGATACATCGGCTAGAGTTTACTTGATAGTCAGCAGCCTCAAGAAATTGTACATGCTGTCACCACACAAGTTTGGCCGTGCCGACCAGCATGTCTTGGAGCCACAACCAGATATCAAAGGCATAGGTGATATGGAGTATTCCCCAGAGCAAGGC +>XM_036181832.1 PREDICTED: Onychomys torridus olfactory receptor 13-like (LOC118579991), mRNA +ATGGGAAATCAGACCTGGGTTACACAGTTCATTCTCTTGGGATTTCCACTCAGCCCAAGGATGCAGATGTTCCTCTTTGCTCTCTTCTCCCTGTGCTATGCCTTCACCCTGCTGGGGAATGGGATCATCGTGGGGCTTATCTGCCTGGACTCCAGACTCCACACTCCCATGTACTTCTTCCTATCCCACCTGGCCATTGTTGACATTGCCTATGCCTGCAACACAGTGCCTCAGATGCTGGTGAACCTTCTAGATTCAACCAAGCCCATCTCCTTTGCTGGATGCATGATGCAGACCTTTCTCTTTTTGACATTTGCACACACAGAATGTCTGCTCCTAGTGGTGATGTCCTATGATAGGTATGTGGCCATCTGCCACCCTCTCCGATACACTGCCATCATGAGCTGGAGAGTTTGTATTACCCTAGTGGCGACTTCCTGGATTTTAGGAGTCCTCTTGGCCCTGGTCCATCTAGTATTACTATTACCATTGCCCTTCTGTGGATCTCAAAAAGTAAATCACTTTTTCTGTGAAATTATAGCTGTTCTCAAACTTGCCTGTTCAGACACCCATGTCAATGAGATTATGGTTTTGGCTGGGGCTGTGTCTGTGCTTGTGGGACCATTTTCTTCGATTGTGGTCTCTTATGCTCATATTCTGTGTGCCATCCTGAAGATCCAGTCACGCCAGGGGCGCCAGAAAGCCTTCTCCACCTGTTCCTCCCATCTCTGTGTTGTTGGACTCTTTTATGGTACAGCCATTGCCATGTACATTGGGCCTCAACAGGAGAATTCCAATGAGCAGAAGAAATACCTCTTGCTATTCCATAGCCTTTTCAATCCTATGCTCAACCCACTGATCTATAGCTTGAGAAACAAAGATGTCAAAAGTGCTCTGAAGAGGATGCTCATAAAGAAGGATACCTCTCAGGAGCATTAA +>KC494783.1 Ornebius sp. 10 BHW-2013 isolate REU1901 12S ribosomal RNA gene, partial sequence; mitochondrialKC494784.1 Ornebius sp. 10 BHW-2013 isolate REU1902 12S ribosomal RNA gene, partial sequence; mitochondrial +AATAAGTGTAAATATAAAAGGTTTAGGTAGTAGGAGTTAAGATCTTGAAACTTAAAGAATTTGGCGGTGTTTTATTCTGTTCAGAGGAATCTGTTTTGTAATCGATAGAACACGATTGAATAAACTTGAATTTATAATTTGTATATCGCCGTCATCAGATTATTTTGAATGGAGGAATTTAAATATTAAAATATTTATTAGGATAAAATGTCAGGTCAAGGTGCAGTTTATATTTAAGTATATAATGGATTACAATAAATGAAAATTTATTTGGATTATAAATATGATTATTTATACGAAATTGGATTTGAAAGTAAATTGGTTGAAATTAATAAATTGAATAAGCGCTGAAGCATGC +>XM_015123435.2 PREDICTED: Macaca mulatta zinc finger protein 493 (LOC693611), transcript variant X2, mRNA +TGTCCTCAGCGTGTGTGGCTTCATGACCCGAAGGTATTGGGAGATCCATAGCTAAGATGCCAGGACCCCCTGAAAGCCTAGAAATGGGAACTGATTTTCTGCTGTATTTTTCACCTGTGTCCCAAGCAGCGTCTTGGAACCCATCCCCCATTTCTCCAGCCTCACTCTGGCTTGCAGGGCCGTTGACATTTAGGGATGTGGCCATAGAATTCTCTCTGGAGGAGTGGCAATGCCTGGACACTGCTCAGCAAGATTTGTATAGGAAAGTGATGTTAGAGAACTACAGAAACCTGGTCTTGGGTATTGATGTCTCTAAGCCAAATCTGATCACCTGTCTGGAGCAAGGAAAATATCCCTGGAATATGAAGAGACACAGTATGGTAGTGAAACCCCCAGTTATATGTTCTCATTTTGCTGAAGACCTTTGCCCAGGGCCAGGCATTAAAGATTCTTTTCAAAAAGTGATACTGAGAGAATATGTAAAATGTGGACACAAGGATTTACAGTTAAGAAAAGGCTGTAAAAGTGTGAATGAGTGTAATGTGCACAAAGAAGGTTATAATGAACTAAACCTGTGTTTGACAACTACCCAGAGAAAAATACTTCAATGTGATAAATATGTGAAAGTCTTCCACAAATTTTTAAATTCAAATAGACATAACACAAAACATACTAGAAAGAAACCTTTCAAATGTAAAAAATGTGGCAAATCATTTTGCCTGCTTTTACACCTACATCAGCATAAAAGAATTCATATTAGAGAGAATTCTTACCAATGTGAAGAATGTGGCAAAGCGTTTATCTGGTTCTCAACCCTTACTAGACACAGGCGGGTTCATACTGGAAAGAAATCCTACAAATACGAAGAATGTGGCAAAGCTTTTAACCAGGACTCAAACCTTTCTACACATAAGAGAATTCATACTGGACAGAAATCCTACAAATGTGAAGAATGTGGCACAGCTTTCTACCAATTCTCACACCTTACTAGGCATAAGTTAATTCATACTGGAGAGAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAACCGATCTTCAACCCTTACTAGACATAAGATAATTCATACTGGAGAAAAACCCTATAAATGTGAAGAATGTGGCAAAGCCTTTAGTGTTTTCTCAACCCTTACTAAACATAAGATAATTCACACTGGAGAGAAACCCCACAGATGTGAAGAATATGGCAAAGCTTATAAGGAGTCCTCACACCTTACTACACATAAAAGAATTAATACTGGAGAGAAACCATACAAATGTGAAGAATGTGGCAAAACCTTTAGTATATTCTCAATCCTTACTAAACATAAGATAATTCATACAGAAGAGAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAAACGATCTTCAACCCTTACTAACCATAAGATAATTCATACTGAAGAGAAACCCTACAAATGTGAAGAATGTGGTAAAGCTTTTAAACAATCTTCAACCCTTACTATACATAAAATAATTCATACTGGAGAAAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAAGCGATCTTCAACCTTTACTATACATAAAATAATTCATACTGGAGAAAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAATCGGTCCTCACACCTTACTACACATAAGAGAATTCATACTGGACAGAAACCCTACAAATGTAAAGAATGTGGCAAATCCTTTAGTGAATTCTCAACACTTACTAAACATAAGATAATTCATACTGAAGAGAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAACCGATCTTCAATCCTTAGTATACATAAGAAAACTCATACTGGAGAAAAACCCTACAAATGTGAAGAATGTGGCAAAGCTTTTAAGCAGTCCTCACACCTCGCTGGGCATAAGCATGTTCATGGTGGACAGAAACCCTACAAATGTGAATTATGTGGCAAAGCCTTTAGTATATTCTCAACCCTTACTAAACATAAGATAATTCATACTGAAGAGAAACCCTACAAATGTGAAGAATGTGGCAAAACTTTCTACCGATTCTCAAACCTTAATACGCATAAGATAATTCATACTGGAAAGAAACCCTGCAAATGTGAAGAATGTGGCAAAGCTTTCAACCATTCCTCAAACCTTACTAAACATAAGCTAATTCATACTGGAGACAAACCCTACAAATGTGAACAATGTGGCAAAGCTTTTAGGCGGTCTTCACATCTTAGTAGACATAAGATAATTCATATTGGAATTCATACTGAAGAGATTCTACAAATGTGAAGAATGTGGCAAAAGCCTCTTCCCTTACTAAAGAATGTGGCAAAGCTTTTAATCAGAACTTCACCCTTACTACACATAAGATAATTCATGCTGGAGAGAAACCCTACAAATGTGAAGAATGTGGCAAAGATTTCTATT +>XM_036871986.1 PREDICTED: Balaenoptera musculus vestigial like family member 2 (VGLL2), transcript variant X3, mRNA +CTTCTATCTCGGAGCGCGGTGGCAGCTGGAATTGCAGGGGTGGGAAGGGAGCGTGCGAGCGGGATCCCGAGCCGCGGAGCACGCTGCCCCTCGCTCCGCCGCGGATGACTTGGGAGCTCGGGTCCAAGTGCCGCCCATGCAGCATCCCTGCCCTCCGCCGCCCGAGAGTTGATGATAAAACACTTAACCGTCTCCGCTGCGGGAAGCCATGAGCTGTCTGGATGTTATGTACCAAGTCTACGGTCCTCCCCAGCCTTACTTCGCAGCCGCCTACACCCCTTACCACCAGGGTCTGTCGGACTCCAGATTTCTTCCGAGCCCGGTGCTGGCGCGGGAAGATGCGAGCAAAGCTCACGCAGGGAAAACCAAAATTTGGTCCCAAAGAAACTAGCCTATTACTCCAAAATGCAGGAAGCCCAGGAGTGCAACGCCAGCCCCAGCAACAGCAGCGGCAGTGGCAGCTCCTTCTCCAGCCAAACTCCGGCTAGTATAAAAGAAGAAGAAGGCAGCCCGGAGAAAGAGCGCCCACCAGAGGCGGAGTACATCAACTCCCGCTGCGTCCTTTTCACCTATTTCCAGGGAGACATCAGCTCTGTGGTGGACGAGCACTTCAGCCGGGCCCTGAGCCAGCCTAGCAGCTATTCCCCAAGCTGTACAAGCAGCAAAGCCCCGCGGAGCTCTGGGCCCTGGCGGGACGGCTCCTTCCCGATGAGCCAGCGCAGCTTCCCCGCCTCCTTCTGGAACAGCGCTTACCAGACGCCGGTGCCCGCGCCACTGGGCAGCCCTCTGGCCGCCGCTCACTCGGAGCTGCCCTTCGCCGCTGCCGACCCCTACTCGCCGGCCGCGCTGCACGGCCACCTGCACCAGGGCGCGGCAGAGCCCTGGCACCACGCGCATCCCCACCACGCGCATCCGCACCACCCCTACGCGCTGGGCGGCGCCCTCGGCGCCCAGGCCGCCGCCTACCCGCGGCCCGCCGCCGTGCACGAGGTCTACGCGCCGCACTTCGACCCGCGCTACGGGCCGCTGCTGATGCCCGCCGCCTCGGGGCGCCCGGCCCGCCTCGCTCCCGCGCCGGCCCCCGCGCCAGGCAGCCCGCCCTGTGAGCTCTCGGCCAAGGGCGAGCCGGCCGGCGCCACGTGGGCCGCGCCCGGGGGACCTTTCGCGAGCCCCACGGGGGACGTGGCCGGGGGTCTGGGCCTCAGCGTGGACTCAGCTCGTCGTTATTCCCTCTGTGGTGCATCCCTCCTGAGCTGATCTGCTGACCCAGGGTTTCCCCTTCCCTTTCCCTTCTGACCAGCCATGGAGGCTGGCATCTGTGCCTCTCACTTCATGGATGAGGACATGGGGGAATGCAGAGACTTCAAACTTCTCCGTGTATTGGGAAAACCAGAACACACATCGACAGAATTTTCATCTAAAAATAATTCCTTCTGCCAAAAGAGGAAATCCAAAGACTCTGAATGATGCTTAATGACTTTTGGGCAAATCACTGGAAATATCCATGGTGATCACTTAGGTGACATGATTCATAGTTTTCTCGGAAAGAGGGAAAGAAAAAGAGATGTTTTGGTGTGAATATTTTTTATGCTGATGTGAATTATTTCATTAAGTAGTGTGATCATAGCACTGCAATGTCAATATCCTCAGACTGAAATGTATTTGTATTTGCATCAAAGACTGTGGTAGAGAAGTCAAAAGAAGCCAATTCCTTCTTCCTCACCTGTAGCCTCCAGCTCCTTTCCTGCCCACTCCCTCCCTACAACACCCACTCCAGACACAAAGACACACTTTCTTCTTCGGACTGTGAACGTGGAAGCCTCAGCCCGAATGTGAGCGGCAAGTGGCGAATCTGGAGCCACCTGCCCGAGTCTTACTGAAATGCAGCTGTTGTAGGACAACTGTTTAAAACTCCAGAAATACATCGACCAAAGGGGGCACTTCCCAGTGTTTGGCACAGCAATTGCAGTTGCACTGGATATGTTTTATACGTGTGTGTGTGTGTATATATCATATTTTTTACAAAGAACATTTTATGATGAAAGAAGAAGCTCTCTCTGCCTTCTCTCCCACGAATTCTGTCCCTCCCTCTATCCTTCTTTGGGTGAAAAAAAGTAAGCATCAAGAGGCCCCAGTTGTCTCCAAGAAGAAGAACTAGGAGTCACCACAAGGGGAAGAGATGCCCATGGAGTCTCTGGTACCTCGAATATTCTTCTCAGTCTCTGTGGTCATGATTTGGTCACTTTAGTGTTGGGACAGGGGAAGGGGTACACATGTGGGCAAAACTGAAGGGGATGAGGAAGAAGAAACGAACATTAAAGATGTTTGTTTACCACTA +>OV289143.1 uncultured Bacterium partial 16S rRNA gene +GGACTACTGGGGTATCTAATCCTGTTTGCTCCCCACGCTTTCGCGCCTCAGCGTCAGTATCGATCCAGAAAGCCGCCTTCGCCTCTGGTGTTCTTCCTAATATCTACGAATTTCACCTCTACACTAGGAATTCCGCTTTCCTCTATCGATCTCTAGCCACCCAGTATTAAACGCAATTCCTAGGTTGAGCCTAGGGCTTTCACGTCTAACTTAAGTGGCCGCCTACGCGCCCTTTACGCCCAGTAATTCCGAACAACGCTAGCTCCATCCGTCTTACCGCGGCTGCTGGCAC +>KT295441.1 Uncultured Klebsiella sp. clone M01598_122_000000000-ADV8A_1_1102_4097_6649 16S ribosomal RNA gene, partial sequence +CCTACGGGCGGCTGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGAAGGCGTTAAGGTTAATAACCTTGTCGATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTCGAAACTGGCAGGCTAAAGTCTTGTAGAGGGGGGTAGAATTCCGGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTAGTAGTC +>XM_053381890.1 PREDICTED: Podarcis raffonei L3MBTL histone methyl-lysine binding protein 3 (LOC128410530), transcript variant X3, mRNA +GCACAGCCTCTCGCCCAGGGGATGGGACCCGAGGTGGTGGGGGAAAGTGGCCCGGCGCCTGCGAAGTGGCTGGGGAGTGTGGGTCGGCCACGGGGGGTTCCTTCCCTAAAAAAGCCCCTAAGTGCGTGAGAGTGAAAGAGGAACAAAAGAGTGGGCGAGGGAGAGCCAGAGAGAGGTGCCTTCGGCGTCCGCGCCCCCCACCCCGCTCGCTTCTTCCCCAACATATGACGGTATATGCACCATGAATGAACCAACTTCTAGTGGAAGTGGGCAAGACTTTGATGTATTTAGTGTAATGGACTGGAAGGACGGAATTGGTACCTTGCCTGGAAGTGATCTGAAGTTTCGTGTGAATGAGTTTGGTGCCCTAGAAGTAATCACCGATGAAACAGAGATGGAAAGTGTTAAGAAGGCTACAGCTACCACAACCTGGATGGTGCCTACTGCTCAAGAAGCCTTCTCAGAAAATACAGAAGTACCACAAAAACTGAAGGAAGCTAGCAAGGTTGACGGGCCTCATTTCTGTGAACGTTGTTTTCATTCTGGAACCACAGTGGACTTTGTAGCTGGAGAAAGATCTTGCAGCCAAAAATGTGCACATCAGATTAAAAACAAAGAGCAAAGGGAGGACAACGATGTCTCGGAAGTCAATGATGAGGACTGTTCCAAGGGCACTCAAAAAAGAAAAACCAAATCGCCCTCAAAAGGAGAATGTATGGAAGACAATGTCAAGAAGTATGAGGCAATGGAGGAGAAACCTGAAGGGAGGATACTAAGAGTCTCTCAGAGAGCCACACGGAAAAGGAAAAGAGAGATGGCAGTTCTAAAACAGACTTTGATGTCAAAGGCAAAGAAAACATGGAGTTGGTCTTCGTATTTGGAAGAAGAAAAGGCTATAGCAGCACCACCTAAGATTTTTAAAGAGTATCAATCCTTCCCGTACAACAAAAATGGATTCAAAGTTGGAATGAAACTAGAAGGGGTGGACCCTGAGCACCAGTCAATGTATTGTGTGCTTACAGTAGCTGAGACTTGTGGTTACAGAATTAGACTTCACTTTGATGAATACCCAGAGTGTTACGATTTTTGGCGGAATGCTGATTCTTCTGATATTCACCCAGTTGGTTGGTGCGAGAAAACAGGACACAAACTTCATCCACCAAAAGGATATAAAGAAGATGAATTTAATTGGTCCTCGTATCTGAAGAAATGTAAGGCTCAAGCTGCTCCTAAATCCTTGTTTGAAAACCAAAACTCAACGGTGATTCCATCAGGGTTTCGAGTGGGGATGAAGCTTGAAGCAGTAGACAAAAAGAACCCTGCATTCATATGTGTTGCTACAGTAACTGACATTGTGGACAGTCGTTTTCTGGTTCATTTTGACAACTGGGATGAGAGTTATGACTACTGGTGTGAAGCGGCTAGTCCACATATTCATCCAGTTGGCTGGTGTAAAGAGCACAGAAAGACCCTTGTAACCCCTCGAGACTATCCACATGCCAAGCATTTTTCTTGGGAGAAATATTTGGAAGAAACTAGTTCTTTACCAGCACCTGCCAGGGCTTTTAAAGTGAAGTCTCAGCTGGACCAAAGAGCTTTTCAGCAGTGGAAGGACACAATTGCATACAACACAAAGTCATTAACAAAGAAACCTTCTCATGGATTCCAGAAGAATATGAAACTTGAAGTAGTTGACAAGAGAAATCCTGTACTAATCAGGGTCGCAACCGTGGTAGATACTGATGACCACAGAATTAAAGTCCACTTCGATGGCTGGGATAGTATTTATGATTATTGGATCGATGCAGATAGCCCTGATATCCATCCTGCTGGCTGGTGTGGGAAAACTGGACATCCTCTTCAGCCCCCACTTAGTCCTTTGGAATTGGTAGAAGCTTTAGAACAAGGAGGATGTCCTACAGTGGGCTGCAAAGGAGTTGGACACATAAAAAGAGCCAGACATACGGGCCACCACAGTGCTCTCAGCTGCCCATATTCTGAGATAAATCTGAGCAAAGAACATATCCTTTCAGACCGCTTAAGTGGAGAGATGCCTCAGAGTATTCCGCCTCTGCATTGGAACCGGAAGCCAGAAGCAAATGAAAGATCTGCATCTCCTGTAATCAGTAATAGAAAATGTCCCAGTCCCATTGTCCTAAAATCTTCAGCTCATCTCCATTCATCAAAGCAGGAAGACACAGAGGTGAAACCTCTTTGCAAAAAGCCTCTAATGTTTGATGTCAAAGAAAAGAACTACAGGGGATGCCAGGCAACTAAGGATTTTGCAAAGAAAGATGGCTGTGCAGGCAGGAAGATGGAAAATGAAGAGTCATCTCTAAATGAATCCAAAGACACCAAGGAATCCAGTAACAGGAGTTCCCATCCTCAGCCAGTTATTTTGACCTCGAAGTTGACAATCCCAGCCTTTCCATTGCGATGGGAACAGCAGAGTAAACTCCTTCCTACTGTGGCTGGAATCCCTGCCAGTAAAGTTTCCAAGTGGAGCACAGATGAGGTGTCAGAATTCATACGGAGTTTGCCAGGCTGTGAGGAACATGGCAAGGTGTTCAAAGACGAACAAATTGATGGAGAAGCTTTCCTTCTAATGACCCAAACAGATATAGTAAAAATAATGAGCATTAAGCTAGGACCAGCCCTAAAGATCTTCAACTCAATCCTGATGTTCAAGGCTGCCGATAAGAACTCGCACAATGAACTCTGATGGAAAAGTGACTACAGGGCAGCTCTCTCCATTGCAGCTCATGTTTTATTCAAAGCACAAAGACTCCAAAGGATCATCAAGGAGGAACTCTATAAGGCGAAAAATCAGAGTGGATGGAGTGTTGATTTTCTCCAAGAGCCTGAGCAAACTAACACTTCTGGGAAGTGCTTAAGCTTTTTAGTAAGATGCTCTTACAAAAGAGTGGGTACTTGATGTTTACTGGCTGATGGCTCTAATTTTCCCACAACTAGCCATCCTTAATTTTATCGGGGATCCATTAACTAAGTTAACATACTAAAATTATGGAAATAATATCCTTTTCTAAGGATACACAAAATACACACTTCATGAATTTACTTCTTCACCAATGAATTCCTTTGTATCGTTTCATCATTTTCATTAAAAAAAAAATTGTTCGCAGTTTAAAATAAGTGGACTACAGTTAATGAAGACTGTTAACAAGTCGTCTTAGTTTCACACAGCAGCTCAAATTTAACACTTTGCTGTGTACAATGAAGCTGATCGATTTATTCTGTTGTATGAAAACATTGCTGGAGACCAATGCTATGTTTTTTTGTTTTTGTTTTTTTGCATGATTAAAGAAGTTTAATGAATATTTCCACCAGCATA +>XM_027574246.1 PREDICTED: Zalophus californianus family with sequence similarity 71 member F1 (FAM71F1), transcript variant X2, mRNA +GGCAAACTTGCAGCAGGCCCCTGAGCATGTGCGGAAATGTTGTCATCAGTTCCACAGAGAAAGACTCGGTGGAAATCAAAGAAGACAGTAAAAGTCACAAGATCTTTTCCAACCTTCCCTTCCCTGAATGCCTGGGAAGAAGTCAGGGGCCTCTTGCCTGTGGATGGGGAGCCAAACCCTGGAGTGGGCCTGGGTGTGGAGGAGGGACTGCTCTGCCAGATTCTTCATTCTCCAGAATTCAACCTATTTCCTGACTCAGTGGTGTTTGAAAGCAACTTTGTCCAGGTCAGAAAGGGCAGGGACTGGATAGACATCTACAAGGCCTCCAACACCATGGCCCTTGGGGTAACCTCCTCCGTGCCCTGCCTGCCCCTTCCCAATATCCTCCTCATGGCTAATGTCAAATGGCACCAGGGACAGAGCCAGACATGGAACAGACCATCTATGGCCCCAAACATCAAGCTGAAGAGGATCCTCCCATTGAAGTTTGTGGAGTTCCAGGTCTGTGACCGGCTTCAACGCATCCTGCGTTTGAGGACAGTCACTGAGAAGATCTACTACCTAAGGCTCCACCCTGACCATCCTAGGACTGTCTTCCACTTCTGGATCCGACTGGTTCAAATTCTGCATAAGGGCCTGTCCATCACCACCAAGGACCCTAGGATTCTTGTCACTCACTGTCTGGTACCCAAGAACAGCTGCAGCCCCTCGGGAGACTCTAACTCGGTAGAGAAGAAACCCCAAGCCTCCCAGCCCAGCGAGAGCCTCATGCAGCTGATGGCCAAGGGGGAGAGTGAGGCGCTCTCTCAGATTTTTGCCGACCTGCACCAGCACAATGAGTTCAGGAGCAGCAAAAAGACACAGACCAAAAGGGACAGCTCAGAGAAAGATACTCACAGTGAAGACGGCATCCCTTGCACCCGCGACCTCAGTTGGAGAGATTCGCTCACTTATGGAGAGTGGGAAAGAGAGAACCCCTCTGGGCCACAGCCCCTTTCACTCCTCAGCACCCTGGCAGCCTCCACGGGGCCACAGCTGGCCCCACTCATATAGGAAATTCTATTTAAACTACCTTTTCGCACTGGGGAGAATCTATGCAGCCCTCGCCAACGCCACTCTGCAGCATGCAGCTTTCTGAGGGACTCTGTCTGGATGTAGGGGAGAAGAAAGCTACAACTAAGGAAAAACTAGACTCATCTCATGCTGATAGCATAGCCTTTCCTTGGAGAACCACCTGGGAGCATGGCTCCGGGTAAGAGCATTATTCCAGCATCATGCCAGTACGTAACTCCGGATCCGTGCCACTACCCATCACACCTTGCCTCCGTTAACCACCACCAGGGCAGGCACAAGAAGATGTGCTCTCAGAAGGGCCACGGACAAGAGATGGAGAGAAGGAAGGAAAGGGAAGCAGGACCGGAGGAGAGGGGGACGAGAACAAAATGGCGGTGAAGAGCAGGTGGAGGGAGAAAGTCAGAGAAGAAGGGGGATCTTACAGAGAGGTGGTAAGAAAACAGAAGGGACCTGAATGAGAAGCTGAAAAGGACAAGAGAAGAAATACACCACTGAGAGATGCCTCACGAAGCTTCTATTTATCTAATTTAAAACTTGAAAGTAAGGCCATATACCCAAACAAATGTGTTTTCTTCTCTGTGCCAATTATTCTGGATAACTATGAGGGGCTAAAAACTAATTCCAGCCAAGGGCCTCTCCTGAAGT +>KM481143.1 Uncultured bacterium clone 2010ECS-StD#1958 16S ribosomal RNA gene, partial sequence +GGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCAGGGCTTAAATGTAAGTTGCATGGATCAGAGATGGTCCTTTCTTCGGACTACTTACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCAGGTTAAGTCCTATAACGAGCGCAACCCCTATTGTTAGTTGCCAGCGGGTCAAGCCGGGTACTCTAGCGAGACTGCCGGTGCAAACCGAGAGGAAGGTGGGGACGACGTCAAATCATCACGGCCCTTACGTCCTGGCTACACACGTGCTACAATGGCCGGTACAGAGAGCAGCCACCCCGCGAGGGGGCGCG +>KP968504.1 Sarocladium sp. strain LA-MB10 18S ribosomal RNA gene, partial sequence +TCTTTGTTTGTGTGTGTCTGTCCTACTCCAGGTTTCCTCTCTAATTGGGACCACGTGTGTGTCTCCGGGTTATATCTGGGCAAAACCCCCCCCTCCACCAGGGGTTGGGAGGTGGTTATCTATCCAACCCAATCCGGGGCCGTTCGGGGTTGTTTGTGATTCATGAAACTAATAGAATCGCCCGCCCTGGCCCTGCGGTGGATCATTCCACTTACTACCTTATCAACTTTCGATGTTGGCTATTGCCAATCATGGTGCAACGGGTAACGGAGGGTTAGGGCTCGACCCCGGAGAAGGAGCCTGAGAAACGGCTACTACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACTCGGGGAGGTAGTGACAATAAATACTGATACAGGGCCCTTTCGGGCCTTGTAATTGGAATGAGTACAATTTAAATCCCTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGTGGTTAAAAAGCTCGTAGTTGAACCTTGGGCCTGGCTGGCCGGTCCGCCTCACCGCGTGCACTGGTCCGGCCGGGCCTTTCCCTCTGTGGAACCCCATACCCTTCACTGGGCGTGGCGGGGAAACAGGACATTTACTTTGAAAAAATTAGAGTGCTCCAGGCAGGCCTATGCTCGAATACATTAGCATGGAATAATAAAATAGGACGCGCGGTTCTATTTTGTTGGTTTATAGGACCGCCGTAATGATTAATAGGGACAGTCGGGGGCATCAGTATTCAACTGTCAGAGGTGAAATTCTTGGATCAGTTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAGGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGACGGTGTTATTCATGACCCGTTCGGCACCTTACGAGAAATCAAAGTGCTTGGGCTCCAGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGAC +>JF420835.1 Centroptilum triangulifer heat shock protein 70 mRNA, partial cds +TCGAGGCAGACAGATCCTCTTGAGCACATTTCCTCTTTTTCATCTGCAATCATCCGCTAAAGAAATGGCAAAGCCGGGCCCCGCAGTCGGTATCGATCTTGGAACCACCTACTCCTGCGTTGGAGTTTTCCAGCACGGAAAGGTGGAAATTATTGCCAATGACCAGGGCAACAGAACAACCCCTAGCTACGTGGCTTTCACTGACACCGAGCGTCTCATTGGAGATGCCGCCAAGAACCAAGTGGCCATGAATCCTAGCAACACCATCTTTGATGCTAAGCGTTTGATCGGGCGCAAGTTTGAAGATGCTACAGTGCAAGCCGACATGAAGCACTGGCCATTCACAGTCATTAGCGAGGATGGCAAGCCCAAACTGCAGGTGGAATATAAGGGAGAGACCAAGGCCTTTTTCCCTGAGGAAGTCAGTTCGATGGTGCTCATCAAGATGAAAGAGACCGCCGAGGCCTACCTGGGCAAGACTGTCAACAATGCCGTCATCACCGTGCCGGCTTACTTCAACGATAGCCAGCGCCAGGCCACCAAGGACTCGGGCACCATCGCTGGACTGAACGTGCTCAGGATCATCAACGAGCCCACTGCGGCTGCCATCGCCTATGGTCTAGACAAGAAAGGCCAGGGTGAGAGGCATGTCCTCATCTTTGACTTGGGTGGCGGCACCTTTGATGTGTCCATCCTGACCATTGAGGATGGAATCTTCGAGGTCAAGTCCACTGCTGGAGACACCCATCTTGGAGGTGAGGACTTTGACAACCGCATGGTCAACCACTTTGTGCAGGAGTTCAAGCGCAAGTACAAGAAGGACCTGACCACCAACAAGCGTGCCTTGAGGCGTCTCAGGACGGCGTGCGAGAGGGCAAAGAGGACCCTCTCTTCGTCCACTCAGGCCTCCATAGAGATTGACTCTCTCTTTGAGGGCATCGATTTCTACACTTCCATCACCAGGGCTCGTTTTGAGGAGCTCTGCGCTGATCTCTTCAGGTCCACCCTTGAGCCCGTTGAGAAGTCCCTGAGGGATGCTAAGATGGACAAGGCCCAGATCAATGATATTGTTCTTGTCGGAGGTTCTACCCGTATTCCCAAGATCCAGAAGCTCCTGCAGGACTTCTTCAATGGCAAGGAGCTCAACAAGTCCATCAACCCTGATGAGGCTGTTGCCTATGGAGCAGCTGTCCAGGCTGCTATCTTGGCTGGAGACAAGTCTGAGGCTGTCCAGGACCTTCTCCTGTTGGACGTCACTCCCCTTAGCTTGGGTATCGAGACTGCTGGTGGTGTGATGACCACCCTTATCAAGAGAAACACCACCATTCCCACCAAGCAGACCCAGACCTTCACCACCTACTCAGACAATCAACCTGGAGTGCTCATTCAGGTCTATGAGGGCGAGCGTGCCATGACCAAGGACAACAACATTTTGGGCAAGTTCGAGCTTGCGGGCATCCCTCCTGCTCCCCGTGGTGTGCCCCAGATTGAGGTCACCTTTGACATTGACGCCAACGGCATCTTGAACGTCTCTGCAATTGAAAAGTCTACCAACAAAGAAAACAAGATCACCATCACCAATGACAAGGGTCGCTTGTCTAAGGAGGAGATTGAGCGTATGGTCAACGACGCAGAGAAGTACAAGGCCGAGGATGAGAAGCAGCGCACCGTCATTGCTTCCAAGAACAGCCTCGAGTCCTATTGCTTCAACATGAAGTCAACCATGGAAGGTGAGAAGCTGAAGGACAAGATCCCCGAGGAAGACAAGAAAATTATCATGGACAAGTGTAACGAGGTGATCCGTTGGATGGACTCGAACCAGCTGGCTGACAAGGAGGAGTTCGAACATAAGCAAAAGGAGCTTGAAGGCGTCTGCAACCCCATCATCACCAAGCTGTACCAGAGCGGT +>MF207496.1 Uncultured bacterium clone denovo1205_590_10496 16S ribosomal RNA gene, partial sequence +GTTCCTACGGGGCGCAGCAGTGGGGGATATTGGACAATGGGGGGAACCCTGATCCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTGTCAGCAGGGAAGAAAGCAATGACGGTACCTGACCAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGACAGTCAAGTCAGCGGTAAAAATGCGGTGCTCAACGCCGTACAGCCGTTGAAACTGGCAGTCTTGGGTGGGCGAGA +>XM_015122060.2 PREDICTED: Macaca mulatta SMG7 nonsense mediated mRNA decay factor (SMG7), transcript variant X2, mRNA +AACTTGGAGGTCTGCCTTTAATAATCAAGCAGGATCCCCACTGCGGGTGCCTATCAGAGTTATGGCGATAGTCAGCCTTCCGGTTAGTCCCCGACTTAAATGATAGAAAACACGTGTTACCCTTCTAGGATGCATTCCTACCCTCACCCTGGCCTCGCAGCAGGATCGCGACAGCTAGGTCAGGAGGGAGTACGCGGGTGGGGTGGATTTGGGGGAGGGGTTGACTCGCCAAAAGTCGGCTATCCCCGTCGGCAGGGGAGGCATCACGGCTGTCGTGTGCCGCTCTCCTCCCTCAGGGACCCCGTTCAGGCGGGATCCCGCCTCCCAGAGCCCAAGGCAGTTGTGGGGAAACCCCTTGCCCTTCCTCGCCGCTTGGCACTGCCGCCTCGCTCTCCCGACTCCAGCCCGCCGCCCGCCAGCCTCCAGGCCATGCATCTTCTTCGCAGGCCCAGCCCTCTCCACGCCCGGCTCTGAGAGGAAACTATGGAGGTGGTTCCCGCCTGCAGGCGGGTGGAAAAGCCCATGGTGAATGTCTCGGGGTGTCCCCCCAGTTGCTGTGAGAAGTGGGAAGGGAGGAGGAAGTGGACTTCACCACCGGGGAGAACTACCTCTATTCCTAACTTGGGGGAGGCCTTTAGATGGAAGGGATGCCAACGGGGAACCCTGGGCGGTTTCCAGGGAATCCATTGGCCAAGGGGAGGGTCACCCTGTCTGCACACACTGGTTACTATGACAATACAACCACAGCCTCCAGTTGCCATGGCAGCTGTCTATCCAATCCGATTCTTTTCTTTTCTCTTCCTCTCCGGGCCCCACCTTATCCCCTCCAAGAGTCTCCCAGCGTGCATGGGGAGGGGCTGCAGAGAAGAGGAAAGGGGGTCCTTCGAGTCACTCTCTACGCGCGAGAGAAGACAAGAGTCGAGGGACTGCTGGGAGGAACTGTAGGAGGAAGGGGCGGCGTTTCCGGTGGGGAAGAGTGGAGGCGTGCAAAAAGGAAGAGAGAAATCCGCTGGAGTGATAAGAAGGGGGAAGACTTTGAGTGTAACTCCCGGTTCTTTGGGCCTCGGTGTTCTTGGTGGGGTTGGGATTGCCCCCTTGCGCGGGAGGAGAAGGGTGGATTGGCAGGAAGCCTCCAAGCGCCACCAGCCGGTAGCTCAGAAGCCGCACACGCGCCACACAGCTTGTTGATCCCAAAAGGGAGCGCTACAGAGAAGCGGAAATCACCGGGAGAGACAGGCGCTGCTGAAATCTCGCGAGAGGGAGCCCCCCTCGTAGCCGACTTCCTTCCTCTGCTTCTCCTCTTTCCCCCGCCCCTCCTCCCTCCTCCTCCCCCCCTGGGTCGGAGTGTCCCTGCGCCCCACGGGCCGGAGCAGCAGCGAAAGCAGCTTTCCCCGCTCCCTCCCCCTCGCCTCATTCACCCCCACCCCCTTGCCGAGCGAGGAGGAGCCGGAGGAGAGGAAGATGGCGGCGGCCGCCAGCACCCGCGGTGCCGCGGGGCCGCTCCGAGGAGCCTGAGAGACCCACGGAGGCTTCGCGGGAAGACGCGGCGGCGGAGGATGAGCCTGCAGAGCGCGCAGTACCTCCGGCAGGCAGAAGTCCTGAAGGCTGACATGACAGATTCTAAGCTGGGTCCAGCTGAAGTCTGGACATCCAGGCAGGCTCTGCAGGACCTGTACCAGAAAATGCTAGTTACTGATTTGGAATACGCTTTAGACAAGAAAGTAGAACAGGATCTCTGGAATCACGCCTTTAAGAATCAGATCACAACACTACAAGGCCAGGCAAAGAATCGAGCAAATCCGAATCGAAGTGAAGTTCAGGCAAACCTTTCTCTGTTCCTAGAGGCAGCTAGTGGCTTCTATACCCAGTTATTACAAGAACTGTGTACAGTATTTAATGTAGATTTACCATGCCGTGTGAAGTCTTCCCAGTTGGGAATTATCAGCAATAAACAGACGCATACCAGCGCCATAGTGAAGCCACAGTCTAGCTCCTGTTCCTATATCTGCCAGCACTGCCTCGTCCACCTTGGAGACATTGCTCGATACAGAAACCAGACCAGCCAGGCAGAGTCCTACTATAGGCATGCAGCTCAGCTTGTCCCCTCCAATGGTCAGCCTTATAATCAGTTGGCTATCTTAGCTTCTTCCAAAGGAGACCATCTGACCACAATTTTCTACTACTGCAGAAGCATTGCTGTGAAGTTCCCTTTCCCAGCTGCCTCCACTAATCTGCAAAAAGCACTTTCTAAAGCACTGGAAAGCCGAGATGAGGTGAAAACCAAGTGGGGTGTTTCTGACTTCATCAAGGCCTTTATTAAATTCCACGGTCATGTGTACCTGAGTAAGAGCTTGGAAAAGTTGAGCCCTCTTCGAGAAAAATTGGAAGAACAGTTTAAGAGGCTGCTATTCCAAAAAGCTTTCAACTCTCAGCAGTTAGTTCATGTCACTGTCATTAACCTGTTTCAACTTCATCACCTTCGTGACTTTAGCAATGAAACTGAGCAGCACAGTTATAGCCAAGATGAGCAGCTATGTTGGACACAGTTGCTGGCCCTCTTTATGTCTTTTCTTGGCATCCTGTGCAAGTGTCCTCTACAGAATGAGTCTCAGGAGGAGTCCTACAATGCCTATCCTCTTCCAGCAGTCAAGGTCTCCATGGACTGGCTAAGACTCAGACCCAGGGTCTTTCAGGAGGCAGTGGTGGATGAAAGACAGTACATTTGGCCCTGGTTGATTTCTCTTCTGAATAGTTTCCATCCCCATGAAGAGGACCTCTCAAGTACTAGTGCAACACCACTTCCAGAGGAGTTTGAATTACAAGGATTCTTGGCATTGAGACCTTCTTTCAGGAACTTGGATTTTTCCAAAGGTCACCAGGGTATTACAGGAGACAAAGAAGGCCAGCAACGACGATTACGACAGCAGCGCTTGATTGCTATAGGCAAATGGATTGCTGATAATCAGCCAAGGCTGATTCAGTGTGAAAATGAGGTAGGGAAATTGTTGTTTATCACAGAAATCCCAGAATTAATACTGGAAGACCCCAGTGAAGCCAAAGAGAACCTCATTCTGCAAGAAACATCTGTAATAGAGTCGCTGGCTGCAGATGGGAGCCCAGGGCTAAAATCAGTGCTATCTACAAGCCGAAATTTAAGCAACAACTGTGACACAGGAGAGAAGCCAGTGGTTACCTTCAAAGAAAACATTAAGCCACGAGAAGTGAACAGAGACCAAGGAAGAAGTTTTCCTCCCAAAGAGGTAAAATCCCAGACAGAACTAAGAAAGACTCCAGTGTCTGAAGCCAGAAAAACACCTGTAACTCAAACCCCAACTCAAGCAAGTAACTCCCAGTTCATCCCCATTCATCACCCTGGAGCCTTCCCTCCTCTTCCCAGCAGGCCAGGGTTTCCACCACCAACATATGTTATCCCCCCTCCTGTGGCATTTTCTATGGGCTCAGGTTACACCTTCCCAGCTGGTGTTTCTGTCCCAGGAACCTTTCTTCAGCCTACAGCTCACTCTCCAGCAGGAAACCAGGTGCAAGCTGGGAAACAGTCCCACATTCCTTACAGCCAGCAACGGCCCTCTGGACCAGGGCCAATGAACCAGGGACCTCAACAATCACAGCCACCTTCCCAGCAACCCCTTACATCTTTACCAGCTCAGCCAACAGCACAGTCTACAAGCCAGTTGCAGGTTCAAGCTCTAACTCAGCAACAACAGTCCCCTACAAAAGCTGTGCCGGCTTTGGGGAAAAGCCCGCCTCACCACTCTGGATTCCAGCAGTATCAACAGGCAGATGCCTCCAAACAGCTGTGGAATCCCCCTCAGGTTCAAGGCCCATTAGGGAAAATTATGCCTGTGAAACAGCCCTACTACCTTCAGACCCAAGACCCCATAAAACTGTTTGAGCCGTCATTGCAACCTCCTGTAATGCAGCAGCAGCCTCTAGAAAAAAAAATGAAGCCTTTTCCCATGGAGCCATATAACCATAATCCCTCAGAAGTCAAGGTCCCAGAATTCTACTGGGATTCTTCCTACAGCATGGCTGATAACAGATCTGTAATGGCACAGCAAGCAAATATAGACCGCAGGGGCAAACGGTCACCAGGAGTCTTCCGTCCAGAGCAGGATCCTGTACCCAGGATGCCATTTGAGGACCCCAAGAGCTCCCCTCTGCTTCCTCCGGACCTGTTAAAGAGTCTGGCTGCCTTGGAGGAAGAGGAAGAGCTGATTTTTTCTAACCCTCCTGATCTTTACCCGGCTCTGCTGGGGCCTCTCGCCTCTCTTCCTGGACGAAGCCTTTTTAAATCCTTATTGGAGAAGCCCTCAGAGCTCATGTCACATTCATCCTCTTTCCTGTCCCTCACCGGATTCTCTCTCAATCAGGAAAGATACCCAAATAATAGTATGTTCAATGAGGTATATGGGAAAAACCTGACATCCAGCTCCAAAGCAGAACTCAATCCCTCAATGGCCCCCCAGGAAACATCTCTGTATTCCCTTTTTGAAGGGACTCCGTGGTCTCCATCACTTCCTGCCAGTTCAGATCATTCAACACCAGCCAGCCAGTCTCCTCATTCCTCTAACCCAAGCAGCCTGCCCAGTTCTCCTCCAACACACAACCATAATTCTGTTCCATTCTCCAATTTTGGACCCATTGGGACTCCAGATAACAGGGATAGAAGGACTGCAGATCGGTGGAAAACTGATAAGCCAGCCATGGGTGGGTTTGGCATTGATTACCTCTCAGCGACGTCATCCTCTGAGAGCAGTTGGCATCAGGCCAGCACTCCGAGTGGCACCTGGACAGGCCATGGCCCCTCCATGGAGGATTCCTCTGCTGTCCTCATGGAAAGCCTAAAGTCTATCTGGTCCAGTTCCATGATGCATCCTGGACCTTCCGCTCTGGAGCAGCTGTTAATGCAGCAGAAGCAGAAACAGCAACGGGGACAAGGCACCATGAACCCTCCACACTGAGGCCAAAGTGACAACCTGGGAATGAAGGCTCCATAAACCATGGCATGTTGGGTTTGCAGGACTGGCCCACACAGTCCCCTGCAGGTGGCAGCCCTCTTTTCTGTTTCTTGCTGTCAAGAGGGTGTAAGTATTCCACCAGCCCGCTGAGTGTGCACGAAATGTTCGCAGTGCAACAAAAAGAAAAATCCATCAGGAACTCTCCATCCCCCCGGGGCCTTCCGGAGGGAGAGAGAGAGGAACTGCTGTTTATCTCACTCAGTTACTTGGTATCACCGCCTCTCACCTTCTCCATCGTGCATGTCCCCAGCCACATGGGAAGTGAAAGCTGAGAAGGGAAGGCAGATGGGAGAAGCCAATGGGAACTTCTCAGTCCTTTTTCCCTCTTTGGGGAATAAAATAGGAATCCATTAATGGTTGCTTTGCTGACTGA +>XM_048567351.1 PREDICTED: Pyrus x bretschneideri alcohol dehydrogenase 1-like (LOC125469685), mRNA +ATACGATTCACTTTCAAGATGCCTTAATTCATCAAAGTGTTCTAGAGAGAGAGAGAGAGACTCATCTTCTCTCTCCTAAGAATAAGTTAACAGAGAGTCCCGTGGAGTAGTTATTGGAGGCCATTTTTTCTCAACATCCTCCCAAAAATAGGCAAAGAATTGCTCTTGACCTTTGATATTATATTTCACCATCTGTGTTTGCCAATTGGCATTTTCATCTTTCTTTTTTCTTTCTAAGTAGAACACTGTGAATTACACACCATGCACAAAATGCATAAGAGTTTTAGAACATTGGTGCACAATGACCATTTCTTGAAGCTCCTAAATAACCAAAAATCTAGGTTCCTCAGACCGGAACTTTACAGCACTTCGGCTCATGCTGGCCGTGCGATCACCAGCAAAGCGGCTGTTGCTTGGGAAGCAGGGAAGCCCTTGGTGATAGAGAAGGTGGATGTTGCTCCACCGCAAGCCAATGAAGTTAGGGTCCAAATCAAATACACCTCTCTTTGTCACACTGATATCTACTTCTGGGAAGCTAAGGGCCAGACACCATTGTTCCCTAGGATTTTCGGACACGAAGCAGCTGGCGTCGTTGAGAGTGTTGGTGAAGGCGTTAAGAACCTCAAGCCGGGGGATCATGTGCTTCCAGTTTTCACTGGGGAATGTGGGGATTGTCCACATTGCAAGTCTGAGGAAAGCAACATGTGTGAGCTGCTGAGAATCAATTGCGATAGAGGAGTCATGATTGGTGACGGGAAAGCAAGGTTTTCGCAGAATGGGACTCCGATTAATCACTTTCTCGGCACATCCACGTTTAGCGAGTACACAGTTATCCACGAAGGCTGCCTTGCCAAGATCGACCCAAAGGCACCATTGGATAAAGTCTGCATCCTCAGTTGTGGTGTGTCGACTGGCTTAGGTGCCACTCTGAAAGTAGCAAAACCAAAGAAGGGTTCTTCAGTTGCTATCTTTGGACTTGGAGCTGTTGGCCTCGCTGCTGCAGAAGGTGCAAGGATTTCTGGGGCATCAAGGATTATTGGGGTAGACTTGAATCCCCATAGATTTGAGCAAGCCAAGAACTTCGGAGTAAACGAGTTTGTGAACCCGAAAGACCATAACAAGCCAGTGCAGGAGGTTATCGCTGAGATGACGGATGGTGGAGTTGACAGAAGCTTAGAGTGCACCGGGAACATTAATTCGATGATCTCCGCTTTCGAATGTGTTCATGATGGGTGGGGTGTAGCGGTGCTTGTAGGAGTGCCAACCAAAGATGCAATCTTCAAGACAAACCCCATGAAAGTACTTGATGAAAGAACCCTCAAAGGAACATTTTTCGGCAACTACAAGCCTCGGAGCGACCTTCCCTCTCTCGTGGACATGTACATGAACAAGAAACTGGAAGTAGAGAAGTTTATAACGCATCGACTTCCTTTCTCGGAGATCAACAGAGCTTTTGACCTAATGTTGAAGGGGGAAGGCTTGCGGTGCGTCATTAGCATGGAAGAGTAGGATTAATGTCCAAATTCATATACGA +>XM_039052777.1 Cantharellus anzutake uncharacterized protein (EI90DRAFT_2259046), mRNA +GAAGTGGGTATAATGTACTTGACCCATGGTTTGAGAGAACCATGAACTGTCGGAAGTGATGTCCAACAGTGTTCAGTACCCCATAACTGCGTGCAGAGAGACCGAAAACGACTCGGGAGAAGCGCTTAAGCAACAAAGCGGTAATCGAAGTGTTGCAGGCACCAAGAAGGGCATGTAACTTAGGTATTTCAGGGCCTAGAGTCCACATATTCGTAACCGGAATGACACCGCTAAGGTATGATATCCCCATCACATTCGCGTCTGCTGGAGTGCTCCATTGACGAGATAGACAACGTGTCTCCAGTATCGCTCAGGTCCGTCTATCCATGCCGTCGCCCCAACACCCCACCAGGAAGGGGAAGAGGAAACACAACGGTTTGGAGGCCGTGGAAATTACCAACGGGCCTGCATGAAGCACGAAGTAGCCCAATGTGCGATTCCAAGCATTTCTCAGTTGGTGTATTCCCAGATCCATGTGATCTTGCCGAACAGGCTGACGAAAAGAGCGCAGTTAGAGCGCACTACCACCGCGGTCCCTCGCCTCTTGAGCCCAAGGAGGAGGCGATTTGTAAAGTCCGTGCACGGCATATGATCTCACCCCGGATGCTCGCAGGCATTGTAACATCCCAAGGTAAAGAAGACTCCCGACCCCGGACATCCGGCACTGACCAGGGAAGCCTGCAAGATGTAGCCCTGATCGCCAGCAGGGGGGTTTTATAACCTCCAGAGTTCGGTCCCACCCCCAATCGACGC +>XM_046171703.1 Alternaria rosae uncharacterized protein (BKA58DRAFT_402161), partial mRNA +ATGAATCAGAAACACGTTCCAGTCACTTCAACGCAACTACACACTTTCAACTGCGAGGTCTCAGGTGCGGCTCAGAAAGACATTTACCAAAACGACAGCAAACATCCCATCGGCTTCAACACTCAACATTCAAAACGCCATGGCAGCCTTCCATGGACCCTCAACCACTCCATTAAGCGAGCTGAACTCCTCAGAGTCTGGCAAAGTCGTTTCATCGAGCGATTCGAGAGCGTGAAGCAGCTGACCGTGGGGAACCTCGCTGCACTGCAGGCTGGTTACAATGACGTACAATCTCAGCCTACATCACCTCTAGACGGCGAGTTGCACCTCAGACCGTCTCCCGGTGCAACGGCATCTCTCATCAAACGTAAGCCGCTGCCAGATACAGCGCAAAAAGCAATCATAGAGATGAGAAATGAGACCGATGTAGAGTCGTTTGGAAACAGCGGAGATGAAGCTTCCCATCAAAACCACACACTTGCGCATCCAACGCACGGCCGCAGGCCGTCTTTCCATCGCACGAATACCGTGTTCACGGATTTCTTGCCTTACAACCAGGTGCGAACCTGGCAACAGGTTGATAATGAGGAATATCAAGACCGTTGTAGGCATTCCTTATCAGCTATTGCGTTGGATAGAATGAAAAAGCTCAATCTAGACCGCGATACACTATCGGCTCAAAGGAAGAAGACTGCAAATCAGTTGAAGAAAGTGATCGAACAGCACATACTTGACAAGGAGAAGTCAATTTCATAG +>XM_004366041.1 Dictyostelium fasciculatum hypothetical protein (DFA_12355) mRNA, complete cds +ATGGAGGATCAGAGCAGTCCATTTCTTGTCGATACAAAAGATACAACAACGACAGATACAACTCAACAACAACAACAACAACAAGAACATGTTCAACAACAAACAGCAGGTCAACTTGACGATAGAGTTGATCAAGAAGAATCGATAACTATGGGTGATGATCAAAATATATCAAGACAACAACGACAAAGAAGACTACTGTTGGTGAGCAAACCAAGTGCATTCTCGGTTGGTTATGAAAGAATAATGAAAAGATACTTTAAAGATTATGAATCATTGATGAAAGAGCATTTCAAACAACTAGAAGATCCATTAAAAAAGGTTAACTTGATTGATAGAAGAATAGAGAAACAAAAAGCTTGTATACCTAGAAATGTGGCATTGTTACAATGGATTATTCAAGGTCAAACAAATCAAGATCAAAGATTAAAGGTGATATCACCACCAAATTCATTAGAGTCATCACCATCTGCGTCACCTTCATCAAAAGATGGTGCTCTTTCATATCAAGAACAACAACAACAACAATTGTATGATGAAGAGAATGATGATATTGATAGAGATGATCAATTCCCAAATGAATTCACATCAGAGGATATAAAACAAAAATTGGAAACTTGTTTAACAAATATTGTTAGAGATTGGAGTTTTGATGGTAAAAGAGAAAGAGATCAAACCTATTTACCAATTTTAAATGATTTACAATCAATTTATCCATTGGAAAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATAATGGAAATAATAATAGAAATTCAATTAAAGTTTTATGTCCTGGATGTGGTCTTGGTAGATTAGCATATGAAATAGCATCACTTGGTTTTGATACAGAATTAAATGAACAATCTATATTTTTTATTATACCTCTAAAGAAAATATTAACAACAGAATTTGAAAATATTGAATCAAAGACTGTATATCCATACATTTCAATTTTAAAGAATACTAAAAGTATAGATTCAATTACTAAACAAATCAAGATACCGGATATCATTCCAGACAGAACGGTGATTGATAGAATGACATTGGCAGAAGGTGATATTTTCGAGTTTTATGAAAGCACTACGCAGTGCTACCAATACTTTGATGTTGTTACAACTTGTTTCTTTATCGATGTAGTTTTGGATATTTTACAACTTTTCAAAACCATTTCATCGGTCATCAAACCCGGAGGCTATTGGATCAACAATGGTCCATTATTTTATCATTTCAATGAAACTTTAAATCTTTCATACGATGAAATTATTATATTGGTTGAATCGTATGGTTTTACAATTCTTAAAAAAGATATTTTACTAGGTTTATCATATACCAATAACAAAGATTCATTATATCATCCAAATTTTGATAGTGTATACTTTGTTGCAAAGAAAAATACAATCAACAACAACTAA +>XM_023231809.3 PREDICTED: Piliocolobus tephrosceles aminomethyltransferase (AMT), transcript variant X2, mRNA +GAACCTGGGAGGCGGAGTTTGCAGTGAGCTGAGATCCGGCCACTGCACTCCAGCCTGGGTGACAGAGCCAGACTCCGTCTCAAAAAAAAAAAAAAAAGAACTGGGACCCTTCTGCCATCTGACATAGTCCAAAGCACATCCCTATCCTTTCTCCCAGTTGTCTCGCTCCTTTTTTTTTTTTTTTTTTTTTTGTTGGAGTTCTGCTTTTGTTGCCCAGGCTGGAGTGCAATGGTGCAATCTCGGCTCACTGCAACCTCCACTTCCCAGGTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCATGTGCTGCCACACCCGGCCTGCCCCTTTCCAAGAGAGATGCTCAGCATGATGAGAGATCAGCCAGGGTAGGGAATGGGTCCGAGTAAGGGTTTGCATTGTTGCCTTTTAAGAGGCCTAGGTCCTCCATTAACTCAGGCCAACCATTAAGTGATGCAGGCTGCTCTTCCTTCATGTGAGAAAAACCTGTTTCCCTCTGGTTCTTCCTGACTTTGCACCTGGTGGCTATTATGAAGCAGTACTGCAGTATGTCTTGGACCTGGAAAGTTGGACATGCGTGCGGCTCAACAGTTTTCTCGGAAGAGTTCAGTGACCTTTTGGTGGCCACCCTCTGCTCTTACCTATGAGTTCTTCCAGGTGGCGACTTTACCTGCAAGGTCACTTACATAGCCCCACTCAGCTGCTTTGGAAAGCATGATGGAGCAGTAGTCCTCAATGTGTGTGTGAGTGAAGAGGACCTTGTGGTAGCAGGGACCATGCTTCATTTGTGGCTGCATCCCCGTCCGAGGGCCTGGTATGCAGTAAGATCAATACATACTTGTGGAATGCATGACTCTGTTGGCTGCCTGTGTCTGCCTGGTGGGAGAGCTGTGGACCTAGGGGTCCACATGAGGCCAGACTACTGTGGTGCTGCCTACCTGCAAGGCTGGCTCCACCCTGCTGTGACCTCTCCACCTTCCCCACCCCTACTTGACCTTACTCCCTTGAGGTCCTAAAGGTACGATTCAGACCTTTCCGCCCTTTCTGGAACTTTGACTGTTTGGAGACAGGGCGGTTCGGAGACAGGGCAGTTCGGAGACAGGGCGGTTCTGCAGGGGGCAGTCTAGCCCCTAGCTCGCTTCTGGGCAGCCCAATCAGCTCTGGATTGCCCAAGCTGCCCTGAAAAGCCAGCCGAAAGAGCCGGAGGCTGCTTCCCTATGGTTGGGAGTTCCTGCATTCTCTGCTCTAAATCCCAGCCTGCCCTCGGGGCTGCCCACGCCCCCTTCAGATCCTTTGCTCCGGAGAGAGACCTGTCCGAGCAGAGGCCTGGACTACATCTCCCGGCGTGCCTGGCAGTGTGGTGTCCTCTGTGCGCCATCTGTACTTGTTGCAGGCGACGATGCAGAGGGTTGTAAGTGTGGTGGCCCATCTGGGCTTTCGCTTGCAGGCATTGCCCCCGGCCTTGTGTCGTCCACTCAGTTGCGCACAGGACGTGCTCCGCAGGACACCGCTCTATGACTTCCACCTGGCCCACGGCGGGAAAATGGTGGCGTTTGCGGGTTGGAGTCTGCCAGTGCAGTACCGGGACAGTCACACTGACTCGCACCTGCACACACGCCAGCACTGCTCGCTCTTTGACGTGTCTCATATGCTGCAGACCAAGATATTTGGTAGTGACCGGGTGAAGCTGATGGAGAGTCTAGTGGTTGGAGACATTGCAGAGCTAAGACCAAACCAGGGGACACTGTCGTTGTTTACCAACGAGGCTGGAGGCATCTTAGATGACTTGATTGTAACTAATACTTCTGAGGGGCACCTGTATGTGGTGTCCAACGCTGGCTGCTGGGAGAAAGATTTGGCCCTCATGCAGGACAAGGTCAGGGAGCTTCAGAACCAGGGCAGAGATGTGGGCCTGGAGGTGCTGGATAATGCCCTGCTAGCTCTGCAAGGCCCCACTGCAGCCCAGGTACTACAGGCCAGCGTGGCAGATGATCTGAAGAAACTGCCCTTCATGACTAGTGCTGTGATGGAGGTGTTTGGCGTGTCTGGCTGCCGTGTGACCCGCTGTGGCTACACAGGAGAAGACGGTGTGGAGATCTCGGTGCCAGCAGCGGGGGCAGTTCACCTGGCAACAGCTCTTCTGAAAAACCCAGAGGTGAGGCTGGCAGGGCTGGCAGCCAGGGACAGTCTGCGCCTGGAGGCAGGCCTCTGCCTGTATGGGAATGACATTGATGAACACACTACACCTGTGGAGGGCAGCCTCAGCTGGACACTGGGGAAGCGCCGCCGAGCTGCTATGGATTTCCCTGGAGCCAAGGTCATTGTTCCCCAACTGAAGGGCAAGGTGCAGCGGAGGCGTGTGGGGTTGATGTGTGAGGGGGCCCCAATGCGGGCACACAGTCCCATCCTGAACATGGAGGGTACCAAGATTGGTGCTGTGACTAGTGGCTGCCCCTCGCCCTCTCTGAAGAAGAATGTGGCAATGGGTTATGTGCCCTGCGAGTACAGTCGTCCAGGGACAATGCTGCTGGTAGAGGGTTCCTGAAATGCCGACCCAGTGCCTGCCTTCCTGGCCTCCAAGACAAGCTTGGAATAGGTTCTCCTTGAAAGGGGCCAGTCTATAAGAATGGAGATATTGCCCATTGGGCACCCCATCCCTGCTCCTCCAGGGAGCTGGCATCACCTCTCCCCTCCCTGCAAGTTGTTGCATCTGGGTCCCAAGGGGCAACAGCTTCCAGGATGTTCTCTCTCTCACTGCCCTTGTGCATGCATACCCTTGTTCTGTCTGAATAACCACAACAACTGATGCACTTCCGTGTTTAATAAGCCACATCCTCAGTTGAGCCTGAGGTGAAATGTGA +>XM_035095448.1 PREDICTED: Chelonus insularis structural maintenance of chromosomes protein 5 (LOC118074325), mRNA +AAAAATAGAAGACAATAGCGGTATGACAAAGAAAGATCGGAAAGGAAATGCGCAGTTATTCAGTTTCCCTCTAAAAAAGTAACGTAGAGGGTTAAAACAATTCGTTCGTGAACTTTACTTGTTTATTCGTGATGTAATTAAACTTTTCAAAATGACAAATACGGACATCATAAGCCAAGGAATCATTAAAAAAATTTTCCTGAAAGATTTTATTACATATGATGAGATAGTTTTCTTGCCTGGAAGATACTTCAATGTTGTCATAGGACCAAATGGTACCGGTAAGTCTACACTCGTAGCAGGAATAGCCTTAGGGCTAGGAGGATGTCCTAAAGATCTTGGTAGAATTGGTGAAATTTCTCAATACATAAAAGGTCAATGTGAAAAAGCATTGATTGAAATTGAACTTGAAAATGGACCGAACGAAACTGTCAAAATCAGTCGCATGTTCAATACAAGGAACAGGTCTACATGGATGATTAATGGAAAAACTGTTACTGAAGCTGAAGCTCAAGATTTGATTGCAAAATTCAATATTCAGGTGAACAATCTTTGTCAATTTATACCGCAAGAAAAAATTAATGATTTCGCAAAAATGAGCCCACAGGAGCTGCTATTAAATACAGAAAAGTCTGTAGGAGATCCAAAAGTATATGATTACCACATGCAATTAATAAGAAATAAGCAAAAACAAGAAGAAATATCTAACGAAATTGGTCAGAAAAAAACTGTGCTTGAATCTGATACTCAAAAATATCAACAATTAGATGAAATTGCTTCACAATATAGAGAAAGAAAAGCAATTATGAAAAAAATAAAAAATTTGGGACAAAAAAAAGCTTGGGTACTGTATGATATGACAAGAACAGAACTGATTAATTTGAAACATCAAAGCAATGGTCTTAAGAGTCAAATATCTGATCTAAAATCGACTTTGGATCCCATTTTAAGTCAAATGAATGAAAAAGGCAAAAAAATAAAAGAATTAGAAACTTCTGTTCAATCTTACAATCTACAAATTAAAAATTGTGAAACTAAATTATTAAAAAATATTGAAACTATTGAGAGTCTTCATCTTAATGTAATAAATATAAAGAAAAATTGCAAAGAAGAACTAAAAATGGAAGAAAGTCGAGATAAATCTATTAAACTTGAAGAAACACATAAAAGTAAATTAGAAAATGACATGCAGCTATTGATGGAAGAAATCGGTACTGAAGAATCAGTTCATAAAAAATTACAAGTAATCAATGATAAAATAAACAACGAAAGAAAAAAAATGGATGAAATTAATAACGAAGCTGTATTTTATAGAGAAAAGTTGAATCTTGTAGCACGTAAAATACATCAACTAGAAGGAGAATTAAAGCAGCTTAGCGATGTTCAGTCGAAACGTTTAGATTTACTTCGTTCTATGAATTCACATGCTTATGAAGCAGTTATGTGGCTTCGAAATAATAGAGATAAATTTCGAAGTGTCATTTATGAACCTATGATTTTACATATCGATATTAAAGAACTTAAATATGGTAAATTTTTTGAAAAGATAATTCCTAGACGAGATTTGGAAGCTTTCGTTTGTGAAGATAAACAAGATATGAATCTTTTATTAAGATATTTACGCGATCAGCAAAATCTAGTAGTCAATGTAGTCCATTCTGATTCAACTGAATCATTAAGTACTGTACCCAGGATACCACTCAATAATCTTACACGATACGGATTCTATTCTTATGCAATTTCTTTTATTTCTGCTCCTGACTTAATTATGAAGTATCTAATAAAAACATACCATATTCACAATATTCCATTTGGTACAGCTGCTGTAGACGATAACATTGATGCAGTGCCTACTGAGTTATTCTCTTTTTTCAGTCCTAATTATCATTATAATGTTCGAGTATCTAGGTATACTAAAGACAAATCCACACAAATTAATCCTTTGCCAAATCATGTACGAATGTTTTCTATTGTTGTGGATCATAACAAAATTGCGGAAAATACTCAATTATTAGAACAAAGACGAAATGAGCATGCACAACATGAATCGAAATTAAGAGAGACTGAAACAAAGTTGATGGAATATAACGATAAAATGGAATCGCTTCGTAAGTCAAGAAAAGATTTAGATACTAAGAGTAAACAAATTCAGATGCTTAATAGTCAAATCAAAAGGAAAACTAATGAAATTATACAGCTTCAAAATCAACGAAGGAGTTTTGAAGATATTAAAAATGCTGCAAATAATGCAATACTAAGTGTTTTGAAAAAACAAACAGAACTGTATAAAGAATGTGCTGGAGAGCATAAAAAAGCGATTGACATTATTAAACAATCGAAAACTAACAATTTTTTATTGAAATTAGCAGAACGTGAGTTAAAAAAAATTTCTGATAGTTCGAGACAATATAAAGACCAACTACAGGAAGTGGAGAATGAATTCAGAACATTGGCCAGGCAAATAGAACCAATGCAAGTTGAGATTAAAAGATTGCTTGGTGAAGCTATACGTTCCACAGACAATGTCAGTTCTAGCGATAGAGCAGCATTTGCTAAATATGAAAGAATCTTTGCTAAATTACCTCCGACAATTGAGGAGATAGACGAAGCTATTCAGTCAGCTAAAGCTCGACTTTTCTGTGCAGGTGACACTCATCACGGCGAAGAAATCCTTGAAGAATGTGAATTAGTTAAACGAAAAATTGAATCACTTAAAGTAGAGATAGAAAAATTAGAAGAAACATTAGCGAAAAATAAAAGAGATACAGAGGAGTTACGTGATCAGTGGTTACCACTAATTGAAAAGCTTACTCGTACGATTAATGGCAAGTTTTCAAATGGTTTCCAATCAATTGGATGTGTCGGTGAAATACAACTCAAACATAATGGAAATCCGATGGATTTTGATCAATATGAATATAAAATTTACGTTAAATTTCGAGATGTTGATGATTTACAAGAGTTCAATATAAACCGTCAAAGTGGTGGTGAACGAGCTTTTACAACTGCTGTTTACATGCTGTCTCTTCAAGAGATGTGTCGAGTGCCATTTAGAGTTGCTGATGAAATAAATCAGGGTATGGATGCTATTTATGAAAGGAAAATATTTGATAAACTTGTTGAGCTTACGTCAACAGCACATGGATCACAATATTTTTTGATTACTCCCAAGTTACTTCCTAATTTACAATACAACGAAAATGTAAGAGTTCATGTTGTTCACAATGGGCCATATATTATTCCATATGATAGATTCAATCTACAAGATTATTGTGCGAAATTGGAAAGGAATTAATTATCTTTAACTATATATTGTATTATATTTTTGTTCTTTATCATTTTTATTTGATTGTTTTTAATTATGATCTCGTTAAAACTGACAAAGTCAGTGTACGCATTTCCAATACATGCAATATAATTTATCTTTGAGTATTGCATTGACTATTATCTTACTTTCGATTTATTATTATTAAAAAAAATTTCTCAAGTATTATTCTATGAAAATAGCTTTGCTTGATTCTGTTTATTTTATGAGCCAGACAAAAATATTGTAGAAAAAATAAGCAAAATAATTACTATCAAGAGTTTTAATCA +>XM_013003374.1 PREDICTED: Erythranthe guttatus uncharacterized LOC105977970 (LOC105977970), mRNA +CAAAAACCTCACCAAATTTCCCCAAAATTGATTCTTTCGTTCTTCACTCAAATCAATGGCGTTGTCGATAATCCAATGCCCTAAACACTCAAAGTTTCCGCCCAGCAATTATTTTCTGAAAGCAAATTCACTCCCACTTCACCCCACATTTGTCAGGTTTTCCAGATTACAGCCAATCAGCAGCAATCGGGTGGTTTGCGCCGCATTTTCTGCCGCCGGTGGTTCCGGTGCAAACGGCGATGTAAACCCTTACGAGGTTCTTGGTGTAAATCCTCTAGAGGGATTCGACATGGTGAAGGCGGCTTACACGAAAAGGCGCAAGGATGCTGAGAGGAGAGGCGATGAAGCTGCTGCAGCACAATTGGAAAAAGCATACGACACTATAATGATGTCTCAATTGAAGAAACGGAAGAAGGGCGAAACTTTCGGTCCGTTTCGGGTTTCGAAAGATATAAAATATGCCGATAAGCAGCCAATTGTTCCGTGGGGCCCAAGGTTTGCCAAATCGGAGGTCAAAGATATTCGAATCAACATGGCAATATCAGCTGTATTTACGGCTTGGATTCTTATCAAGGGCAGTGCCGAATACAAACCTTTGCAATTCTTGGCCTTTGTTTTCGTTTATCGGATATTTGAGAAGTTAAAGTCGTTCGAATCACCTGCACCTACCACATTTACAGAAGAAGGTGGTGAGGATGAAGGGAGAATGTTGAAAATGGGCAAAAGACTGCTTCGATCACTTGCATTGGGTTTTGGATGCGTCGCTTTTGCCTCTTTGGGGTACACTGCAGTGTTGAATTGTATTGAATTTGCAGCTGGCTATATACCTATTTTCTTGTACAACAACCAGGAGTTGTTTGTAACTGCGTCAACGGCACTAATGCTTTATGTTCTAGCTTCGTACTACAAATGAAAATTCTGCATCTATCAAGGGAGGATTGAAGATCGATTTATTTTATTTGGAATTAATTAGACGAATAATTCCGTGTTTCAAGATTTAAATTTTGTATATGAGTTCAAATTTTGGGACTTGATTGTAATGTGTTTAACTTGTTAGTGATATTGTTTGCGACTCCGAGTCGAAATCGAGAAAGTAAGGAACAAAATAGTTGCGGGTTGTGTGCTAAAAAAATTGCATTTTATA +>MW016101.1 Clionaida sp. 1 JV-2020 voucher UF 3823 large subunit ribosomal RNA gene, partial sequence +GAGCATGAAATCCCTGGCAGGTGCTGTCAGAGAATTGTGGCCGGGAGAGGCGGTGGAGCTCCGACTGTTGCTGTCGAAGTTGACCTGGAAAGGCACGTCAGAGAGGGTGAGAGCCCCGTGGTCGACACCGACGGGAAGGGCCGTAGCCGTCTTCGGAGAGTCGGGTTGTTTGGGAATGCAGCCCAAAGTGGGTGGTAAACTCCATCTAAAGCTAAATACTGGCACGAGACCGATAGCGAACAAGTACCATGAGGGAAAGGTGAAAAGTACTTTGAAAAGAGAGTCAAAAAGACCGCGAAACCGTTAGGAGGGAAACGAATGCAGCTGAAGTGGCTCCGTATCAGGTTCAGGGGATGTCGGTGGACGTTCCGGCTGCGGACAGCTAACGCGTCCTCGGTCGGAGAGGCTGCCGACTTCCTTGCACTCCTGTTGGGAGCCGGCCAACAGCGGTTGTTCCTGGCCCAGAAGGCCGGTCGGGAGGTACCTCCGCACTCGTGCAGAGAACGTATAGCCGTCCGGTTCGGCGGTCTGGGAGCGACCKAGGAGAGTCGTGAACTTTCACGCTTGCAGCGCAGGCCCCTCGGGGCCGGGTCGCCTCTGTTCGTTTGGGCCCCGCGGTTGGGACTGCTTGCAGTGTCTGCCGACGGTCAGCCTGCTCGGTCGGGGGATTGGCCACGCCTTGCGCTCTAGTTGTTGGTGCTCGAATGGCTGCATCCGACCCGTCTTGAAACACGGACCAAGGAGTGCAACATGCGTGCGAGTCTTTGGGTGGCAAACCCGTCGGCGCAATGAAGGTGAAGGCAGGCGTTGGTCTGCTTAGGCGAGAGCTTCCTCGGGAGCGCATCGTCGACCGATCCCAGGCTACGCTGTGGCGGGATTTGAGTAAGAGCGTGCCTGTTGCGACCCGAAAGATGGTGAACTATGCCTGAATAGGGTGAAGCCAGAGGAAACTCTGGTGGAAGCTCGTAGCGATTCTGACGTGCAAATCGATCGTCAAATTTGGGTATAGGGGCGAAAGACTAATCGAACC +>JQ151355.1 Uncultured bacterium clone J2_5_82 16S ribosomal RNA gene, partial sequence +AGTGAACGCTGGCGGCATGCTTAACACATGCAAGTCGCGCGGTCAGCAATGGCAGCGGCGGACGGGTGAGTAACGCGTAGGAATGTATCCAGAGGTGGGGGACAACCCCGGGAAACTGGGGCTAATACCGCATATGTCCTGAGGGACAAAGCAGTAATGCGCCTTTGGAGCAGCCTGCGTCCGATTAGGTAGTTGGTGGGGTAATGGCCTACCAAGCCTGCGATCGGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGTCTTCGGATCGTAAAGCACTTTCGACAGGGACGATGATGACGGTACCTGTAGAAGAAGCCCCGGTAACTTCGTGCCAGCAGCCGCGGTAAGCATACTCGTA +>AY190253.1 Dothideomycete sp. G11-R40 18S ribosomal RNA gene, partial sequence +GATTAAGCCATGCATGTCTAAGTATAAGCAACTATACGGTGAAACTGCGAATGGCTCATTAAATCAGTTATCGTTTATTTGATAGTACCTTACTACTTGGATAACCGTGGTAATTCTAGAGCTAATACATGCTAAAAACCTCGACTTCGGAAGGGGTGTATTTATTAGATAAAAAACCAGCGCCCTTCGGGGCTCCTTGGTGATTCATAATAACTAAACGAATCGCATGGCCTTGCGCCGGCGATGGTTCATTCAAATTTCTGCCCTATCAACTTTCGATGGTAGGATAGTGGCCTACCATGGTATCAACGGGTAACGGGGAATTAGGGTTCTATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACACGGGGAGGTAGTGACAATAAATACTGATACAGGGCTCTTTTGGGTCTTGTAATTGGAATGAGTACAATTTAAATCCCTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAACCTTGGGCCTGGCTGGCCGGTCCGCCTCACCGCGTGTACTGGTCCGGCCGGGCCTTTCCTTCTGGGGAGCCGCATGCCCTTCACTGGGCGTGTCGGGGAACCAGGACTTTTACTTTGAAAAAATTAGAGTGTTCAAAGCAGGCCTTTGCTCGAATACATTAGCATGGAATAATAGAATAGGACGTGCGGTTCTATTTTGTTGGTTTCTAGGACCGCCGTAATGATTAATAGGGATAGTCGGGGGCATCAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAGTGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGGCGATGTTATCATTTTGACTCGCTCGGCACCTTACGAGAAATCAAAGTCTTTGGGTTCTGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACCAGGCGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACACAATAAGGATTGACAGATTGAGAGCTCTTTCTTGATTTTGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGCTTAATTGCGATAACGAACGAGACCTTAACCTGCTAAATAGCCCGGCCCGCTTTGGCGGGTCGCCGGCTTCTTAGAGGGACTATCGGCTCAAGCCGATGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACAGAGCCAACGAGTTCATCACCTTGGCCGAAAGGTCTGGGTAATCTTGTTAAACTCTGTCGTGCTGGGGATAGAGCATTGCAATTATTGCTCTTCAACGAGGAATGCCTAGTAAGCGTACGTCATCAGCGTGCGTTGATTACGTCCCTG +>XM_019758284.1 PREDICTED: Branchiostoma belcheri mitochondrial dicarboxylate carrier-like (LOC109461823), mRNA +TCGCGCGGGAAACGCCCCTCGTGGGGTCACCAGAGTTCATCCGCCATCTTGTTTACGAAGTTGTTTGTCTCTCACAACCTGCACGTCAGCTGGGTACGTCACGTAGGTCACGTGCGGCTTCGCTCAAAGGTCGTTTTTGTTGCAGACATTGCATGTTCAGCTTTTCGGCGTCTGCAGGCGCGCCTGGCTGCTCAGTGCTGCCCAGTTTGTACCCGATGGTAGGACGCTTGCTTTTGGCCACGCCACGTCACAGGTCACCGCCCCCCTCCCCACCATTCAAATCATCAGCCAGCTTCCTGCCAGGATTTGTACGTAATGATGGCCATGTGACATGTGATCGTGCGTGAACAGATGATTATACCCTCGGGACGTCTTTGTTTAGCTGTACTGAAGTCGATCGGATCCATGGAAACGTAGCAGCCCGGTGTACCTTATTGTTTGCTGACTCACAATGATTGCAGCTTTTTTGTCAAAAATCACAAGTTGAACGGAGCTCTTACACGTACGTCACCACGCCACGCCAGGGAGGTCGTGACTTTTCCAGCGCCCGCTTGCTTGAACTGGACTGGATGTGCTGTCAGCCTGACTTGTAAGACTATTTATTCAAACGTTGAAACAAACAAGAGACTTGTGTACAGTTTGCTCATCTGTTTACCTTAGTCTCCACCATGACGTTCCTGGGATTTGCGGACAGTGAAGAACTGAAAGCTAAGAAGATCGGAAGATGGTATTTTGGGGGCGTGGCATCAGCCATGGCCGCCTGCTGTACCCACCCACTAGACCTGCTCAAAGTCCACCTGCAAACTCAACAGAAGAAAGAGTTTGGGTTGTTGCAAATGGGTGTGAAGGTTGTGAAGGCGGATGGCATTGTAGGGTTGTACAACGGGATCACAGCGTCGGTCATGCGACAGCTGACCTACTCCATGACCAGGTTTGCCATCTACGAGACGGCGAAGAAGAAGCTAGCAGAACATTCGGGTGGCGCGAATCTGCCCTTCCACCAGAAGGTGATGCTGGCCTCGCTGGGAGGGTTCTGTGGCGGGATTGTGGGTACGCCGGCGGACATGGTGAACGTGAGGATGCAGAACGATATGAAGCTGCCGGCGGAGTTGAGGCGGAACTACCGGCACGTGTTCCACGGGTGGAGGTGCGTGGTGGCGGAGGAGGGCGTGAAGGGTTTGTTCTCGGGCGTGACGATGGCGTCGTCCAGGGCGATTCTGGTGACGGTGGGACAGATCGCGTTCTACGACCAGTTCAAACAGACGCTCCTGTCCACGAGCTTTTTTAACGACAACATCGTCACCCACTTCACCGCAAGCTTCCTCGCTGGTGGCGTAGCGACGGCCATGACACAACCGGCGGACGTGATGAAGACACGATTGATGAACGCAGCACCGGGGCAGTACTCGAGTATTTTGTCCTGCGCAATAGACATCGGAAAAGTTGGTCCATTTGGGTTCTTCAAGGGGTTTGTTCCAGCGTTCGTGCGTCTCGGCCCTCACACCATCCTCACCTTTATCTTCTTTGAGCAGCTCAGGAAGAACATGGGTGTGCTGCCTGCCTACACGGTATAAGCGCCATCTAGCCAACTGTACTGGCACTGCAGGACTTCTAATTCATGGCAATGAAAATCTCAAGGATCAAGTGGAAAAATGGACTCTGTTGCAAAACCATAGCAGTGATGGGTTGATGGTTTCAGTGTAGGGAGATAGTAGGGTATACATCAGTCTTTTGAAGAGGTAAATAGCAAAAGAGCATAACTGGCCTGCATGAAGGTTGTTTGCATCCCCATATGCTATGCATTCCCGTAGGCCTGCTTAATTGTGTTAACTGTGGCAGTATTAATTTTGGATATGTCAGACAAACAAATGTAATTTCCATGTCAGTGTTGCTATGTAATTGAACAAACATATAAATGGATGGTTTTCAAATATTCTAGCTCATCTCGGAACATATCAGCACCTTCAAGATCGGGACAATTACTAGTATACCTCCTCAATGTTGCATGATTTACCGGTAACCATAAAGAGCCAATTATTTCATGGACTTGTAGTAAAGAAAAATACAGCTGCCTTCATCCAGATGAGTTATATTGACCAACATGTCTATTCATATGAAGAAATAACTTGTAAACTAAATGTGATACAGCTCTAAAGGATACAAATGTGAATCAATATGCTTTTAGCAATTGAATATACAAACCAGTAGTTACTGTTAGTAAACACACCTATGGAACAACAAGATACCTTCTGAAAACTAGCTGTACATATAGATTTACTGAACAATCAGGAGATCAAAGAGGTGTGAGTGAGTTAAGCTTTGTTTTGTTTTGTTTTGTTTCTTCTCTTTATTTAATGCTTAGTAAAGATATCTGATCATAGATATTATTATAGCAAGGTGTATATTTGTGACCAAACTAGTTTGTACCAAATAACTACTAAAGTAATAATGTAGATCTTTTTTCATTTTTAGGTGATCAGTCATTTTAAGTAGAGTCTAAGCAAATTTGTTTTAACTTTGCTGTTAGATGTTTTCTTTTTATGGTTGTCAGATGTTCAATGTGTAATAAAATGCATCTGGGACCCAG +>XR_004573716.1 PREDICTED: Drosophila guanche uncharacterized LOC117582427 (LOC117582427), transcript variant X2, ncRNA +GTACACTCTCACTCACTCTCGCGCTGTCGCCCACGATACATGCAGCTTGCAAGCTCGGCGTCTAATCATTAGTAATGTGCCTATAACCGAAAGCAACTGCAGTGCAAATTACAAATATACAGTGTCAGGCCCGATGCCTCTGCAGCCCTCTGTCCTTTGCCCCAGAATGAAAAACGGAGGCAATCGGCATGGGATCGCCTCCTCATCGCCTCTACTGAAAATATGGGATCGAAGATCACTTGAGATGAAGAATTTCATCTAGCTTTCACTCACCATCAAACGCGGAAGACCAGCAGTCT +>XM_043480802.1 PREDICTED: Cervus canadensis olfactory receptor 56A4-like (LOC122449258), mRNA +ATGCTGCCTTATAGGAACACCTCCCTCTCTACTGAAGTCTCTGAGTTCCTCCTGAACTGTTTTGTCAGGTCACCCACCTGGCAGCTCTGGCTGTCCCTGCCCCTCAGTCTCCTCTTCCTCCTGGCCATGGGGGCCAACGCCACCCTCCTGCTCACCATCCGGCTGGAGGCCTCTCTGCACGAGCCCATGTACTACCTGCTCAGCCTGCTCTCCCTGCTGGACATGGCGCTCTGCCTCACTGTCATCCCCAAGGTCCTGGCCATCTCTGCACAGCTCCATTATTGTGGAAAAAATATAATTGAAAACTGTATCTGTGCCAACCTCTCCGTGTCCAAGCTCTCTTGTGGTAACATCACCCTTAACAAAATCTACCAATTAATTTTAGCCTGGACTCTGCTGGGCTCTGACCTCATCCTCATCTTCCTCTCCTACATCTTCATCCTCCGAGCTGTCCTTCGACTCCATACAAAAGGAGCAGCTGCTAAAGCTCTGAGCACCTGTGGCTCTCACTTCATCCTTATCCTCTTCTTCAGCACCATCCTGCTGGTTTTTGTTTTTACCCATTTGGCCAAGAAAAAGCTTTCACCTGATATTCCTGTCTTACTTAATGTCCTCCACCATGTCATTCCTGCAGCTCTCAACCCAATTGTCTATGGTGTTCGAACTCAGGAAATTAAGCAGGGGATTTGGAAATTATTGAGGAAGGGTAGTGACAGCAGAAAGTAA +>XM_014024072.1 PREDICTED: Austrofundulus limnaeus gelsolin-like (LOC106528817), mRNA +CCCAGGGCAGCACCAACAGGATGTGCAGAAAACAGGAAGGGCTGTGGCACGGCTTCTTCTTCTTCTCCTTCTTCACACTCAACATCTGACTTCTGTCTTCAGCAGACCCGGAGCAACATGGCCCACAAAGAGTTCGAGAACGCAGGGAAGAAGCCCGGCCTGCAGGTGTGGCGGGTGGAGAAAATGGATTTAAAACCCGTTCCAACTCAGCTCTACGGAGACTTCTTCACCGGAGATGCCTACATTGTGCTCTTCACCACCCCGGCACCTTCTTACGCTCTGCATTCGTGGACCGGAAATGAAGCTTCCCAAGATGAAGCCGGAGCCGTTGCCATTTTCCTGACTCAGATGGATGACTACATGAAGGGACTCCCGGTGCAGTTCAACGAGTTTCAAGGTGAAGAGTCGACCTGTTTTCAAGGCTACTTCAAGTCTGGAATGAAGTACAAGAAGGGTGGCGTGGCCTCAGGCTTCCATCATGTGGTGACCAACGACATGAACGTGAAGCGTCTGCTGCACGTTAAAGGTCGTCGTCTGATCAAAGGCACTGAGGTGGACCTGAGCTGGTCCAGCTTCAACAAGGGAGACTGCTTCATCATTGACCTGGGAAAGGACATCTACCACTGGTCCGGCAGTGAAAGCAATCGCTACGAACGCCTCAAAACCACTCAGATGGCCAACGACATCCGCGACAACGAGCGAAAAGGCCGCGCTAAAGTGCACATGATTGAAGAAGGTTCTGAGCCAGAGGCTGTCATTCAAGAACTTGGACCAAAGCCGGAGCTCCCTCCTGGGGAATGTGATACGGCAGAAGAAAAAACCCAGAAGACCAAGACATCTCTGTATCAGATTTCTGACGCCACTGGTAAAATGACCACAACGTTTGTGTCCAACGGTCCCTTCAAACAAAGCATGCTCTCCCAGAAGGAATGCTACATCCTGGACGATGGAGGAAACAACATATTTGTCTGGAAGGGAAAAGATGCAAATCCAGATGAGCGCAAAGCTGCAATGACTGCTGCAAAGACGTATATTACAGAAAAAAAATACCCCACAAAAACAAAGGTGCAGGTAATTCCTGCAGGAAGTGAGACCACGATGTTCAAACAGTTCTTCTTTAAATGGCTGGAGGGCGAGGCCACAGGAAAGACCTACACTGTGGGTCGCATCGCGAAGGTGGAGCAGATTCCCTTCGACTCCTCCAAACTCCACAGCAACAAGGCAATGGCTGCCCAGCACGGCATGGTGGACGACGGCTCCGGGAAAGTCCAGATCTGGCGTGTGGAGGGAAAGGATAAAGCAGCCGTGGACCCCTCCAGTTATGGACACTTCTTTGGTGGTGACTGTTACCTGGTGCTTTACTCCTACAATGATGGTGGCAGAACGAAGCATATCATCTACACCTGGCAAGGTCAGAAGTGTACTCAGGATGAGCTGGCTGCTTCAGCTTTCCTCACCGTCAAACTGGATGACTCCATGGGCGGAGTGGCCACACAGGTCAGGGTCAGTCAGGGCCAGGAGCCCCCTCATCTCGTCAGCTTGTTTAAAAACAAGCCTTTGGTCATCCACCTGGGTGGGACGTCCCGTAAGGGTGGTGACAGCACCCCTGGCAGCACGCGGCTCTTCCACATCCGTCAGAGCTCCACCAAAGCTACACGAGCTGTTGAGGTGGAACCCAAAGCCTCCTCTCTGAACACCAACGACGCGTTTGTGCTAAAGACACCATCTTCCCTGTTTGTGTGGAAGGGAAAAGGAGCGAGTTCAGATGAGACGTCGGCAGCTGAGTATGTCGCCAAGTTTCTGGGAGGAGCTGTCACCAAGCTGGATGAGACAAAAGAGCCAGATGGTTTCTGGTCAGCGCTGGGTGGGAAGGGCAACTATCAGACCTCCAAGGCCCTGCAGAACGTGATCAGACCTCCTCGACTCTTCGGTTGTTCAAACAAGACTGGCAGGCTCATTGCAGAAGAGGTTCCTGGTGACTTTACTCAGATCGATCTGGCCACAGATGATGTCATGATCCTGGACAGCTGGGATCAGATCTTTGTTTGGATCGGAAATGAAGCCAATGAAACTGAGAAATTAGGAGCTCCAAAAATTGCCCAAGAATATGTGGATTCTGACCCCGCCGGACGTCGTGGTGTCCCCATCACCACCATCAAGCAGGGCCAGGAGCCACCGTCATTCACGGGCTGGTTTCAAGCTTGGGACCCCCACATGTGGGACTAAGCTCATCATTAGAGCAGAAAGCATCGACTTACTAAACATCAGTAGTTGGATAAAATGCATAATCTTCACACAATGAGCTTAAGATTTTTATAGATGTAGATCAGATTTTAGACAAAATCTTATATGTCTGTGCTTTCAGTGTAACAGAAATACTCACCAAAGCTGAAAACTTACATATTTTGTGGCAATAAGCTGTTTTTCTTTTAATGAGGAACTGGCAAATAAAAATAATATGTGCTAATTTAAATGTCATATCCGTATTCTGGTTTAAATTTTAAAGAAAAATTAAGTTGACTCTAAAACAAATCATTAAAAGTTCTGAACCCCA +>KM104095.1 Uncultured fungus clone rcw_159 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +CGGAAGGATCATTATCGTGCTTTGGGGCATGGCTCCGGCCGTGCTCCTCCAGCCCCACCCGTGTTTACCACACCTGTTGCTTCGGCGGGCCCGGCGGCCCTGGCCGCTGCCCCGGGGGGGGATGTTTTCTCCCTCCGGGTGTCCGCGCCCGCCGAAGACCCTCTGAACTCTAGTGACCTGTGTCGTCTGAGCTTCATGATCAAATCATTAAAAAACTTTCAACAACGGATCTCTTGGTTCCGACATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAGTTCCGTGAATCATCGAATCTTTGAACGCATATTGCGCCCCCTGGTATTCCGGGGGGCATGTCTGTTCGAGCGTCATTGCAACCCTCAAGCACGGCTTGTGTGTTGGGCCCGGATGTCCCGGTGTGGACAGGCCCGAAAAGCAGTGGCTGGGATGTGTCTCGGCGCCCAAGCGTATGGGGACTCTTGTCACCCGCTTGCATGGCCCGGGCGGTCCCCGTCGACCTCTTTCTCTCCGGAAGGGCGCCCCCCTTTCGTCGGTTGACCTC +>XM_019782364.1 PREDICTED: Branchiostoma belcheri tryptophan 5-hydroxylase 2-like (LOC109480215), mRNA +ATCCATGTTCGTCAGAAGTTGTCTGAGAATCAGTTCCAAGATGTCGTCGGGAAGAAAACTGTTAGGGCGGCGGTTTTCTGACGTCTTCCCTTTAAACAACGGCAGCCGAGGCCCCCTTCTTACCAAGGACGGGACTGCAGGGGCAAGAACCCGTAGGCGCATCTCGTCTTTCCCTTGTGAGGAGACGTTTGCACCTGTTCGCACTCCGGTCATCCTGTCTATGAGGAAGGACGTTGGGGGCCTTGCTGCCGTGCTACAGTTATTTCAGGAAGAACAGGTCAGCGTTCTGCATATCGAGTCCCGACGCTCTCTTCGGCGGAAATCGGTGGTTGAAATCTACATGGACTGTGAGGCCGACAAGACCCGAATGAACGAACTGATCTCCCGGATTCAGAGGGAGACCAAGATGGTCAAGGTGGACACACCAGACAGCATCGGCAAGGGCAATGCACAAGATGAGGAGGGGTTTGAGGTTCCCTGGTTCCCGCGCAAAATCAGCGAGCTGGACAAGACGGCGTGCCGAGTCCTGATGTACGGAAACGACCTGGATGCCGACCACCCGGGTTTTAAGGACAATGTCTACCGGGAGAGAAGAAAGCTGTTCGCTGAAATCGCTCTGAACTACAAATACGGTCAACCTATACCCAGAATAAAGTATACCGAAGAAGAAGTGAACACATGGGGTGCAGTGTACCGTGAGCTGACGTCACTCTACCCGACACACGCCTGTCAACAGCACCTCAACAACCTGCCGCTACTGCGCATGTACTGCGGATATAGAGAAGACAACATCCCTCAGTTGGAAGATGTGTCCGCATTTCTTAAAGAACGAACAGGTTTCCAGTTGCGGCCGGTGGCGGGGTACCTGACACCACGTGACTTCCTGGCAGGACTTGCCTTCCGCGTGTTCCACTGTACCCAGTACATCCGCCACAGCACCGACCCCTTCTACACACCGGAACCGGACTGTTGTCACGAGTTGCTGGGTCACGTGCCCATGCTGGCCGACCCGAGTTTTGCCGAGTTCTCCCACGAGATCGGACTGGCTTCGCTCGGCGCCTCGGATGAGGAGGTACAAAAGTTAGCCACGTGCTACTTCTTCTCGGTAGAGTTCGGCCTGTGTAAAGAGGACGGGAAGATCAGGGCATACGGAGCAGGACTGCTGTCATCTGCCGGCGAGCTAAAGCATGCACTGACACAAGAGGATAAAGTTCTGCCCTTTGACCCGGAAGCTGTTGTACAACAGGAGTGTCTCATCACCACCTATCAGGACGTCTATTTCATGTCCGACAGTTTTGAGGAGGCTAAACAGCAGATGAGGTAATTTTCTCATTATTGTGCTTAG +>XR_008187289.1 PREDICTED: Carassius gibelio uncharacterized LOC128029018 (LOC128029018), ncRNA +CCATTACAGCAACAAACATTTTTAATGCAATTTTCTTTTTCAAAATTCACATCTGAGGTATGACAGTGTGTAATTTATATTGTAGGTTTAATAGGGAACATCTCTTGAATTCATGTTAATCACGTATCTTACTTTGCTTAAAGCTGAGCTAAACAGAACTAATTTGATTATTTTACCTTTTCAGCTGAATTGTGCCCAACCAGGGTAACAGTTGTCTGATTTCACAAGTGATTTTGCTCTTCCTGAAGTCCAGCTTTAAATTCAGAGCTTGATGTTGCAGCAGGTAATGAATCACTTCCCAGGTCAGTGAACAGGAAGTCAGATCTTTAGGCACCTTCTTCAGGAAAAAGCATGTCAGTTCATCATCCTGTGCTTCATACACCACTGAAACCAGCTGCTGAAGAGTTTCTTTAGAGAACCTGA +>XM_005997745.2 PREDICTED: Latimeria chalumnae BTB/POZ domain-containing protein KCTD6 (LOC102358416), transcript variant X1, mRNA +TCTCTATGGTTGGTCCTGTAGATATGATGCTGATTCCATGTTTTGGGTTGGCACGGCGCTGTTTTGAAACGAGCTTCGGGGTTTCGGGTTCAGTACGAGGGTTAAAAAAAAAAAAATGTTTGCTTATTTTTAAAGTGAAATCATTTCGAATGAGTGAATTTTGAGACAGTCAGAAGTCCTAGTTGGAATAAACTTTAGGTTTATGACGGAGAACCTTTCCAGATTATCATTGGAACACACAATTGAAAAATAAGAGCCACACTGGAGAACGGGAGGTGATTATTGCTTCTACCCTGCAATCTTTCATTGTTGAATCCTAAGAGAATTACTCGAGCATTGAAGCAGATGGATAATGGAGACTGGGGACATATGATGACTGATCCAGTCACGTTAAATGTAGGTGGCCACCTCTATGCAACCTCAATCTCCACTCTGACCCGTTACCCTGATTCCATGCTGGGAGCCATGTTTAGGGGAGGTTTTCCCACTGCCAGAGACTCCCAGGGTAACTACTTTATTGACAGAGATGGACCTCTATTCAGGTACATCTTGAATTTCTTAAGAACTTCTGAACTGACTCTTCCTCAAGACTTCAAAGAAATTGATTTGCTTCGAAAAGAGGCAGACTTTTACCAAATTGAGCCCCTGATCCAAAGTCTTAATGACCCCAAACCACTCTACCCCTTGGACACGTTTGAGGAAGTGGTGGAACTGTCAAGCACACGTAAACTTTCCAAATATTCTAATCCTGTAGCGGTCATTATAACTCAACTTACTATAACAACAAAGGTTCATTCTTTACTTGAAGGCATTTCCAACCATTTTACCAAGTGGAATAAGCATATGATGGACACGAGGGACTGCCAGGCTTCTTTTACGTTTGGGCCATGTGACCACCACCAAGAGGTCTCCCTTCGAGTTCACCTGATGGAGTATATTACAAAGCAAGGATTCACTATCCGAAATACAAGAATGCACCATATGAGTGAGAGGGCCAATGAGAATACAGTAGAGCATAACTGGACATTTTGCAGATTGGCACGAAAAATAGAAGACTGAAGCTGAATAGATCTTTTTTTGCTGTTGTTTTTTTTCAGTTGAAGACAGCATTAGTATCTCTTTGGAGCTGCATGAAGACCACTGTAAATACAGAGAAGAAAACAAAAATGATATGGGCTGTTCTTACAGCTACTTTTTGTTAATCGCCCTTAACAATGATTCTTTTGAAGATTGTATAGAAATTCCTCATAACTATGCATGTGCCTATTAAAGCTGCTATAGAACTAGAAAGTGACTTTCTCATTAACTTTTGAACAGATATCCTCTGTTTCTTTGAGAATATTAAAAACCACTTTAAGCTA +>XR_002182326.1 PREDICTED: Bos indicus uncharacterized LOC109569253 (LOC109569253), ncRNA +TTTTAGGACTGAAGCCCCCCCAGCTACCTCTGGCTCCTTGGGTGACCTAAAGATAATAGRCTACTCTGTGCACATGGGTCAGTGCCCCARAAAGGAGCAGCAGCCAGGACTGGTGTGGACCAGGCTGAGACATTTTAACCATACCCCTGCGTCCATTCCCAAAGCGCAAAGGTCAAAAGTACTCTGAGAACGTCCAAGGGGTCACATGCCACTGTCTGGTGGCTGGCATGGCTCTGATTGGTGAGAAAAGAGCACAACAGGGGAAAGGTGGGKGGGGCTCTCTCCTCTTGAAACCACAGGGCGTAGCTGCTGTTGAGGGCTGGCTGGGCTGRTCAAAAGCAGCTCCCACATRRGGACACATTGTCCTCCAGGCATCATCATRGGACATGCTGTGCTCTGGGAGGAGGGACACAGACRGTGACAGATTCTGCGGACAGAAACAACAAGCGTGGGGTKATCTGGGAACTTTTGTATCTGGGAGCCCAAGGGTGGGACCCTGGTTATCTTGCTGTGTAGTGACAAGCARCTAATAATGGAGACCTCAGAGCTGCCCATGTCAGAGGCATGAGGACATGGACTGCTGGTTCTGAGAYGGTTGCCTAGTGATACAGTGAGGAAAGGAYTAAGACCTAGAAGAACAAARTCACAGGATGTTAAGATTGAAGGAATCCACCTCTCAGTCTAGTTCCTTTGACATCATCTAYAACAAGTATCCTAACTCTACACTAACAGTCTCTTGAGGTTAGGCACCCCACTTGTTCATTCGTTATTGTGTCTACAGTGTGGTAGCCAGCCTCTGAGATTGATCCTCATCTCTGRYACTCATAACCTCATGTGGTCCCTCTCATATTAAAGAGGGCTGACCAACGTGATCAACAGGTTATTGYGAAAGTCATGGTACGTAACTCCCAAATGTGGAGCATAAAGGCCACAGCRGCTTCCATCCTGCTTTCTCTTGGACTCTGAGGGGAGGCAGTCACCACGTTGTAATGTTGTGATGAGGGACATCATAGGAAGCCCCATGGAGGGTCCRCATAGGAAGGTACTACCGCCYCTCCTCAACAGCCAGCACCGACTTGCCAGCTGTGTGGGTGAGCCTCCTTGGAAGAGATCCTCCAGCCTTGGTGGAGCCTTCAGATGACCACAGACCCAGRCAACGTCCTGCCTGCAACYTCATGACGCATCCTGAGTCAGAACCACACAGTCAAGCCACTGGCTTGCAGAAATCGCAGACTCCCAACCATTGGACCACCAGGGAAGTCCCTGCTGCTTAGCACCAAACACCTCCACTGATAGCCARCTTACCACCTCGYGAAACAATTGATTCTATCTTYGGACAACTCTGTTCAAGACTACCAAAATTAAATTGGTTCTTCCTAAA +>XM_001444626.1 Paramecium tetraurelia uncharacterized protein (GSPATT00012774001), partial mRNA +ATGTTAAAAAGTAATTCTTATCATCTAAAAACCAATAAGAAACATAAATCATCTCCATTAGCTTCCATAGAGCTACTACAAAAGTTATTGGATTTTAAATAAACGTAAACTTCCATGAATTGTTCCTAAGAAAACAAAACTCTAGTCATGAATGGGAATTTAGCAAAACAAATCTCGAAATCAATTTCAATTGGCAGTCAAAGTTGGAAGGATATAGCACCTCCAATTCATGAATCTGATAATTTGCTTAGAAAAAAGGAGGAAATCCTCAATACATTGAAGAAATCAAAGCATGTCAGACATATAAGTTAGATTTGGTCAATGAGAAATAGAACTGATAGTAATGTCCATACTCCAAGAAAAGAAGGGGTAAACGATTTTATTTAAAATGCAAGAATCTTTTTGAAAGAGAAACTATTAGAAAATAAGTTAGATAAGCTCTGCTATTAGGTTTAATAATTAAAAAATAAATCCGATATTTTGGAAATCTAAAATAAATTGCTTTTCGAGAACCTTAAGCAACATCATAATGACCATAATAACGTGCACGAAAGAAAGGTTTTGATGGGAAAGCTCGATTAAATGATAACGATGCAAAAGAAATAAGAATAAAGCTTAAATTATTTTAAGCAATTATTCCAAGAGAATGACGAAGGAAGGAGAGTGAAAACCTAAACCTCCTATCCCAAGCTGAGACCTGCCCTATACTCTGGCTACGTCGGATTAAAAATGTGA +>XM_047096667.1 PREDICTED: Lynx rufus CUGBP Elav-like family member 5 (LOC124524401), transcript variant X11, mRNA +ATGAAGGACCTGGACGCCATCAAGCTCTTCGTGGGCCAGATCCCGCGCAACCTGGACGAGAAGGACCTCAAGCCGCTCTTCGAGCAGTTCGGCCGCATCTACGAGCTCACGGTGCTCAAAGACCCCTACACGGGCATGCACAAAGGCTGTGCCTTTCTCACCTACTGTGCCAGGGACTCCGCCATCAAAGCTCAGACTGCCCTGCACGAACAGAAGACCTTGCCCGGGATGGCGCGGCCGATCCAGGTGAAGCCTGCGGACAGTGAAAGCCGCGGAGGGGACCGGAAGCTGTTTGTGGGGATGCTGAACAAGCAGCAGTCGGAAGAGGACGTGCTGCGGCTGTTCCAGCCCTTTGGGGTCATCGACGAATGCACCGTGCTCCGCGGGCCTGACGGCAGCAGCAAAGGCTGTGCCTTTGTGAAGTTCTCCTCCCACACGGAGGCCCAAGCGGCCATCCACGCGCTGCACGGCAGCCAAACCATGCCGGGTGCCTCCTCCAGCCTGGTGGTCAAGTTTGCCGACACGGACAAGGAGCGGACGCTCCGGCGCATGCAGCAGATGGTGGGCCAGCTGGGCATCCTGACGCCATCCCTCACCCTGCCCTTCAGCCCCTACAGTGCCTACGCCCAGGCCCTCATGCAGCAGCAGACAACGGTCCTGTCCACGTCGGGCAGCTACCTGAGCCCTGGCGTGGCCTTCTCACCCTGCCACATCCAGCAGATCGGCGCCGTCAGCCTTAACGGGCTGCCTGCCACACCCATCGCCCCTGCCTCTGGACTGCACTCGCCCCCGCTGCTTGGTTCCACTGCCGTGCCCGGGCTCGTGGCTCCCATCACCAATGGCTTCGCAGGTGTCGTGCCCTTCCCTGGGGGGCACCCTGCCCTAGAGACCGTGTATGCCAATGGCCTCGTGCCCTACCCAGCTCAGAGCCCGACCGTGGCCGAGACCCTCCATCCTGCCTTCTCCGGAGTCCAGCAGTACACAGGTACGGACGGCACCATGTACCCCACCGCGGCCATCACGCCCATCGCGCACAGCGTCCCCCAGCCGCCGCCCCTCCTGCAGCAGCAGCAGCGAGAAGGCTTCGTGAGCTTTGACAACCCGGCCAGCGCGCAGACCGCCATCCAGGCCATGAACGGCTTTCAGATCGGCATGAAGAGACTCAAAGTGCAGCTGAAGCGGCCCAAAGACCCGGGACACCCCTACTGACCGCGCCCACAGCCGCCCGGAGGCTGCGGGCCTGGCCCAGGTGAGCCGCCAGGCGGCCCCACCCGCCCCCACCCCCGCCCCCCACCCCCCCGTCTTGGCCAAACACCCCCTCGTTCTCCATGCCCTCCCCACCCCCCAGGGGGGATGCCGCTGGAGACCACAAGGAGCCCCCAGGTTGGGATGGTGGGGACAGAGCTAGAGAGTCACCCTCCAATCCCCCCTTTGATCAGGGCTGGGACAGAGGGTGGAACCGGGGTAGAAGGGGGTTGGGGAATCCTTCCAGAAGGTTTTGAAGGATGAATAGAAGTTCACTTGAGAGGCCAGGTTTGGTCTGGGGTGGGGCATGCTGCGAGGGAGGGGCTTCTGTCCTGTCCTGTGACTCTCCCAGCTGGGCCCCTGTCCAAGTTCCTCATTTGGTGTCACCCGCGTTCAGTGAACTGGCGAAAAAGTGGAATGTTTGCCCTGCTCACCAGCATGCCCCCCCCAAAGAGACCCCCCCCCCAACAAATCCCCAAGAGTGTATTTTGCCACCAGAGAGAACAACTTTATCAACAACTAAGCACCTTCTTTGGGGGAATGAACAGTGAGCCTAAGGGGCCAGTAGGGAAACATAACTGACCACAGCCTTGATGAGCCTCATCTGTGAAATGGGTTCACGAAAGTCGCCTCCCCAGAAGCAGCAGGGAGGATCCGCTCGGGGACGCGGTGTTTTCCCAGCTGAGCCCAGGACCCGCCACCTGGAAAGCTCTTGATCATTTGTTTTGATTTTGTTTTTGTTTTGTTTTTAATCATGAGCGCCGTCGTCATCAAAGCGCCGCGCCTGGGGTCTGGCGCGAAGTAGATGCTCAGTTAGGGGCTGCGCATGCTTTTCAGACCCTGCCAAATCAGCACCCGCAGAGTCGAAGGTCACGGGATCAGACAACTAACAGGCGACCCATGCACTTTAACACCCTGGGACAGCAAATCCTTTCTGAGCACCTACTATGCGCTAGGCACTGTTTGGGGACAGCGCTCGGGGACACAGCTGTGAATGACGAGAAACGGGGCGGGGGTTGGGAGAGAACTGCCTTCGTGGCAGGGAGCAGGGGAGACAAGATGAGACAAGAATAAACGCAACTGTTTGCCCCCGGGGGTTGCCAGATGAGGAAACAGCCTCGGTGGCCAGTCCTTTTCCAAGGCGGACCGCTGGCCTCTGAACCTGGAAATGGACTCTCTCTGAGCAGACAGGGGCCCTTGGGTTCCTGGAACCCAGCCTGGCCAGGGCAAGGGGGCGGGCGGGGGGCGATGTCGTCGGCCTGCATGCCCCCCATCACCGCACCCTAACGCCCCTCCCTTCTCCGCCAGGTGAGGGGCCTTCCCACCCCAGGAGGGCCTCCCGCTTCCAACCGACCCCGGACTTTTCCGTAAATTACAACCAAGTTTGGACACCAGCCCCACCCCCTCCCGTCTCCCCTTGCCCCCCCGCCCGCTTCCTAATGTGAAACACTACTGCGGGCCACACGGAGTGGGAAGGGGGCTTCGTGGTCCGCCCCAGCTGGGGAGGGGGGCTCCTGAGTTGGGGGCCGAGGGCTTCACTGCCCCCACCCTTGGTGGCTTCCCCAAATTAAATCACAACTTTTCCTATATATATATATATGCATATATATATAGAGCTATAGACAGTATATATATTTTTTGAGTATAGATCATGGGACCAAACTTTTCCGACTTCCTTCCATCCAAGAGAAGGTGACCCTGGCCCGGTCACTCAGCAGGGACATAAGAAGGGCTGAGGATGACCGGGCAGCCCAGTGTGTCCCCACCTCCCGCTGTCATGTCAGACCAGGGCACGGAGAAGCACTGGGAATCATCAGCCAACGCGATATACCTCCAGGACATTGGGCCCCTGCCACCGACGTTCTCGCAGGCCCTTGGGCTCGGCCAGCTCGAGTGTCCCTGGTCTTAGCTGCAGCTTCTGGAACCCCTACCCCCTCCCTCACCCCAGGGCCCTGCCTTCCCCGACATAGGCAAAGAAGAGACCCCCCCCCTGGCCTCCCACCCCCACCCCCGTCATAGCCTTACTCATGTGACCAATAGCCCTTAGCTTTCCGTCAGGGGCAGACAGGGTCGGGGGAGCCCCCCTGCCCCTCGCGCCCCCTCCCAAGGGCAGGCAGCCGCCCTCCCTGCCTTCGGATCACCAGCCTGGAGTTCACGATCTCATGACCAAGATCGCCACGCGCGTTGGACAAACCCAACCCGCTCTGGCCCAGCACCCCTTTACCAGAGATACCTCTACAAATAATTTTTTTTTTTGAATTTTGGTCTTTCTGAGAAGATACAAAGAAGAAAAGAGAAAAAAAAATGGGGAAAAAAAATCAGACAACAGTGGATTTTTGTTTCCTAGTTGGGGCGGGGAGGGAGGTCTTGTGGGGCGCCTCTGTATAGCTACTCAAACCGCGAAAACCCATCTTGAAGCACAGAGTCAAGTTCGTTGGACGTCCAGTGGGGCCTCTTGCCAAATGAGGCACCAGAGAACTTCATAAGCTCAAGAAAAAAAAAAAAAATTTGTAAAGAAAAAACAGCCTTCCCTTTTGTTTCTACCAAAATGTGTTGACCCAGAAAAAAAAAAAAAAAAAAAAGAAAAAAAAAACCACATAGCAAAAAAAAAAAAAAAAAAGGAAAAGAAAAAAAAAATCTTATGACCAACTTGTTTCGATATTCCAGAGTTTGATAATTGTTCCGAGACACTCTAGCGTGCCTGTGTCCTGTGCGTCTGCGTGTGCAAGCGTGTGCTCAGGGGCCACGAGGGGGCCTCGTCCGCGTCCCCGGCACCTGCCCAGCCCCGGCCAGGCCTGCTTGGGAGAGCGTGCTGGCGTGCAGTGGCGTTGTGTCCTTCTGGTCCATGTTTACTGGCTGTAAATACCATTTTTATACTCCACATCGAAGACCTACGTGATTTGTACGATGTACTTTATTTCTGCTACGAGTAATTTCATGAAGTTTCAACTTGCAAACCGACTTTTGGAGACAAATCGCCACACACACACACACACACACACACACACACAGAAAAGGAAGACAAGAAAGGAACTTACAGGGAACTTTGGGTGGACTGGGTTTGCATTTCTGGCTGGAGAGGTCCTTGGCACTGTGGTGTGTTTCAGGTGAGAAGCTGCAACCATCATCTTAATGTCCAAACGCCTCTCTTTGGTCTGGAGAAACTGAAAGTTTATTTAATAAAAGTTTTACTTGCTAAA +>XM_016552280.1 PREDICTED: Sinocyclocheilus rhinocerous general transcription factor IIH subunit 3-like (LOC107740007), mRNA +AAACCCTTCAGTGAATCCACAGAAGAAGAGCTCATTATGAGTCGGAACACAACTTTTAACAATATTGGAGGAAATACTAACTGAAATACCTTTACATAGCGATTTAGAGATAAAAGAATCGCAATAATGGCCTCTGACGACGAAATTAATATTCTGGTCATTGTGTTAGATGTCAACCCTATTTGGTGGGGCCAGCAAGCTCAGCGGGAACCTCAGTTCACTCTTTCAACATGCCTGGATTCTTTGATGGTCATGGCAAATGCCCATTTAGTGATGTCAAGAACCAACAAACTAGCCGTCATTGCAAACCTGTATCAAAAGAGCCACTTTCTATATCCAAGTAAGCAGTGGAAATCAGGGGATGAAATATCTGTAAGTAGCGATGGCAAATATGAACTTCTGTCAGTTACCAATGAACTCTTTGCGGAAGAGATCAGGAATCTCATGGACAGAACAGAGGTCAATGGCAGTCAAACAGACAGCCTGTTGGCCGTATCACTCGCCAAAGCTCTGTGCTATATTCATCGAGTCTCAAAGGATGTGCAAGCTGGACAGGACATGAAATCAAGGATTTTGGTAATAAAAGCTGCTGAGGATTCTACATTACAGTATATGAACTTCATGAATGTGATCTTTGCAGCACAGAAGAAGAATATCCTGATTGATGCCTGTGTGTTGGACGCTGACTCAGGACTGCTGCAGCAGGCTTGTGACATAACTGGAGGCTTGTATCTCAGAATTCCCCAGAAGATCGCACTCACACAGTATTTGTTGTGGGTATTTTTCCCAGACACAGACCAGAGATCCCAGCTGTTATTGCCTCCTCCGACATTCCTGCTTGTGACATAA +>XM_045728814.1 PREDICTED: Procambarus clarkii trans-1,2-dihydrobenzene-1,2-diol dehydrogenase-like (LOC123746912), mRNA +AATTTGTATCTGGCAACCCTGAGTCGCCCCGGCCGCTCGAGATTTGACTTGACATTTCAGCAGCAACATGGCAACACGGTGGGGCATAGTAAGTGCCGGTCTGATCTCCAATGACTTTGTAAATGCATTGAAGGCCTTACCCCCAGGGGAGCACCGCCTGGTGGCTGTAGCTGCACGCTCACTTGACAGTGCAAAAAGCTTTGCATCAAGAAATGGAGTGGAAAAGGCATATGGGTCATATGCAGAGCTTGCTCAGGATCCTGATGTAGAGGTGGTGTATATTGGCACAATCCAGACACAGCACCTCGCTGCTGCTTCCCTCATGATCCAGTCTGGGAAACATGTCCTTTGTGAGAAACCCCTTTGTTTAAATGTGAAGGAGACTAAGCAGCTTATTCAACTTGCTGAGGAAAAGAAGGTTTTCCTGATGGAGGCAGTATGGTCAAGGTTCTTCCCTGTGTACCAGGAGATGACAAGAAGAATCAAGTCAGGAGAGATTGGAGACGTGGTGCAAGTTATCTGTTCCTTTGGCAAATCAGTGGAGAATGTAGAGAGGCTGCTGAAGAAAGAAACTGGCGGAGGAGTCACCCTGGAAATAGGAATTTACCCAGTGCAGTTTACCACACTAGTAATGGGAGGAAAGAAGCCACAGAAAGTGCTTGCTGGTGGACACCTGAATGCCAATGGTGTAGAAGAATCAACAAGTGTCTCGCTTGTCTACTCTGGACGACGCTTGGCTTCTCTGAGTGCCACCATCAGGGCATGTTTGCCTTCAGAGGCCTTTGTTATTGGCACTAAGGGCACTATCAAGGTGAACTATCCCATGTGGTGTCCTGAAAGCCTGGAGTCACCATCAGGAAAATTTGAGTCACCACTTCCCAAAACAGGTCACACTTTCAACTTTGATAATAGCCAAGGATTAATGTATGAGGCAATTGAAGTGAGACGCTGTCTTAAAGAAGGTTTGCTGGAGAGTCCAGGGATGAGCCACAAAGAGAGTCTCACTATTGCTGAAGTCATGGAGCAAATAAGACGACAGGTTGGAGTAGAATTTGACTAGAACATCAAGGCAATCTAACAGTGTTAAGCTTTCATATAAAGTCGTAAACTAATTGCTGTTATTGAAGACTGGAGCCCAACTATATACTGTATAGTGATAGCAATAAGATAATCAGTGGTATAGTATTAGAGTTCTTTTAGAATATTGTATTAATCTTTACTTTCATGACATCAGTAGTTTGCAGTATGGAACTGTACTTGTGTTTTCTAACATTTATACTCAATGATACAATCAAAGTTAGAAGATTCTTAATTCATTAATTAAGTTTTATTACCATCTCGGTTATTACAGAACAAAATTGTAATTTTGTCGTGGAAGTCAAAATCCTCATTAGTATGTAATTCATGTAATTATGGTTATTCACTTGTTTATGGAATACACGAAGTTTCAATTTGTTATGTAGCTTAATTCTGTTAATTTGTATTTCAACAAGTCCTTCATTATATCTTGAGATATATCTTGAGATGATTTCGGGGCTTTAGTGTCCCCGCGGCCCGGTCCTTGACCAGGCCTCCAGTAAGTCCAGTATAGCAGCTTTATAGTAAGAACTAACTGGTAGCATATTCAACTGTACCATGGAAATATGTACAGGAATTTGAGAAATGCAGACCATAATAAAATTATAAAATAATTGTAAGTTAATGGTCTGAAATGCTCAATTACTATGCAGTACATTTTTTTTCTCAACAATAGTAATGTTTTTATATTAAAAGGATTTTCTATTTCAGAATTCAGTTTTCTTAGTAGTACAAAAGATGGTGATATTGTTGACAGCAGCTTAAATTTTACTTGGCTTTACCTGTTGCAACATTTGTTTAAATTAATGGTTGTTAGAAAACTTCAGTTTGGTTAATTTTTCTATAAGTGAATGCCTGTTTTGCTCATTTAAAATTATTTAATAAAAATCAAATGTTCACACAATAACATAAATAGCCTTAGAAAATTTTAAGTAAATAACTTAACAAATGCTAATCTGCAGTAGCAACTAGACTGAACCAGAAATGAGTTACTTTACAAACTGCTCATAGAGCACATAATTCTTCTAGAAAATTTAATGAAACATTTTAGCTAATTAATAAGGCATGTGAAGTATCAAGAAAATTGTACTTTAACAAATATTAATGCAAAATCACTAGAACTCCTAGCCTGACCCTATGACTAAATGTATGTCAAATTACTTTCTTACAGTACAGTACTCTTACTTTGTCCATCATGCATAAATATATATAACTAGCACAATAA +>XM_028373142.1 PREDICTED: Glycine soja putative GPI-anchor transamidase (LOC114409625), transcript variant X2, mRNA +AAAAATACTCGAAGAAAGAGTTGGTTGTGAAAAACTAGAACTAGAAGAACTGCCACCAGAAGACGCCGATCTCGTTCGCCCGAAGAACTACCTAATTTATTTACACTCCCGCTGACGCCGACACCAAACTCATTTAATTCAGTGTTTGATTTGACCTACATGATCCTTAAACTACCCGAATCATCAGCTGTTTTGCGATTGCGGGATTGATTTGTGGTTGCAGTGAATGTGATGGAACACTTATTTGGTACCGGAAGAAAAGAAGGACAAGTTAGCATACTCCTCATCTGCGTTTGAGTCTACAATGCACACTAATAATTGGGCTGTTTTGGTCTGCACGTCTCGCTTCTGGTTTAATTATCGGCATATGGCCAATACCCTGTCATTGTATAGGACAGTTAAACGGCTAGGAATACCGGATGAGAGGATTATACTCATGCTAGCAGATGACATGGCATGTAATGCTAGAAACAAGTACCCTGCCCAAGTTTTTAATAATGAAAACCATATACTTAATCTGTATGGGGATAATGTTGAGGTAGACTATCGTGGCTATGAAGTGACAGTGGAAAACTTTTTACGGGTACTTACTGGACGTCATGAGACATCTGTTCCAAGGTCCAAACGACTTCTTAGTGATGAGGGAAGTCATATTCTTCTGTATATGACAGGGCATGGAGGTGATGAGTTTTTGAAGTTTCAGGATTCGGAAGAGCTTCAAAGTCACGATTTAGCTGATGCTGTGAAGCAAATGAAAGAGAAGCGCAGGTTTAAGGAGCTTCTGATAATGGTGGACACCTGCCAAGCCTCTACTCTTTTTTCCCAGCTTCATTCACCAGGTGTTTTGGCAATTGGAAGTAGTATGAAAGGAGAAAATTCATATTCACATCATTTGGATTCAGATGTTGGCGTTTCAGTTGTTGATCGTTTTACATTTTACACTCTTGCTTTCTTTGAGAGGCTGAATATGTATGACAATGCTTCGTTGAGCAGCCTTTTCAATTCATATAATCCAAATTTGTTGATGTCGACTGCATATTACAGAATGGATATATACCAACGCTATTTAAAGGAGGTACCTGTGACAAACTTCTTTGGTTCTGTAATGAAAACGATACATACTGATTCAGCCTACAGATCCCGGTCAAATAAAAAAATTGAGGAAGCTAAAAGCAATATGTCTTTGGATGAATCAATCTCTGACAGTGACTCGGATGACGAGGATCAATTTAATAATTTAACTGCTGAGAAATATCTCTGGTATAGTGTTGGACCACTATGGAGTGCTATTCTCAGCAATGCCAATACTTCTGAAAGCATCGATACTTTGGTGTGCTATGGACTGCTTTTAATGCTTCCTTTGCTGATATTTTCCACATGGCTGTCAAAGTAAAGATTGGGGAAATATTCCGTAAGTTTGTTAGCAGAGCAGACACATTTCTTTGATGCTGCTAGATGGCACCGTTGCTTGAAATGCAATTTCACCCGAAAAAGCAGATTATTTGGCTGCATAATATGTGGGACGCAAACTACTGGTAGAGCAGCTTCATAGTTGTTGCCTATCAGCTGTATTCTGTTAGCTATTGCTTTTGCCTTGGTGCAGTTTATTCTGGTAGCCATTGGTGATGTTGGCTTGCTGCTGCTGTCATGTTTCGCCTTGTATTTTGATGATGATTATGATTATGATTGCAAACTGTAAAATTTTTGTAAAACCTCGCTCTATTTTTAGATATTATGTTGATGTCCAACATTAGAACACTGCTCTTTTAAGAACTCGGAAATGAAAATGCTTGATCATTTTATCTACTTGTA +>JF971034.1 Uncultured archaeon clone E09_A-C5_0239GSNP001F_P1 16S ribosomal RNA gene, partial sequence +AGGGCCCCCCCTGGGCAAAGGGGTAACCCCAGGGGCCGCCGGAAAAAGGCGGCTTTTCCTTGGTCTAAAACCCCTAGGGAATAAGAGGGGGGCAAGACTGGTGTCAGCCGCCCCGGTAACACCAGCCCCTCGAGTGGTGGGGATGATTATTTGGCCTAAAGCGTCCGTAGCCGGGCCGGGTAAGTCTCCCGTTAAATCCAGCGTCTCAAGCGTTGACTGCGGGAGATACTGTCTGGCTAGAGAGTGGGGAGAGGTGTACGGTATTCTGGGGGTAGGGGCGAAATCACACTAGAACACGTCTGACGGTCAGGGACGAAAGCTGGGGTAGCGAACCGGATTAGATACCCGGGTAGTCCCAGCCGTAAACGATGCACGCTAGGTGTTGGGGCGGGGCTCCGAGCCCCGATTAGTGTCGGAGAGAAGTTGTTAAGCAAGCTGCCTGGGAAGTACGATCGCAAGATTGAAACTTAAAGGAATTGGCGGGGGGAGCACAGCAACGGGTGGAGCGTGCGGTTTAATT +>XM_046691669.1 PREDICTED: Haliotis rubra tolloid-like protein 1 (LOC124257572), mRNA +AAAACCATACTCACTTACCCTGACCATACCGGTATATGCGACCAGTGAACTAACGCAGTAAGGACAGCCACACGCTTGACATTGTGCACCTGGCAACTGGCTCAATTTACCGAGTCATTCATATGCCTCCGCACCTGCACCGCTTCAGTGAGCACAAGTGTGGTTCACAACATGCAATAGTGTTTCGTTACCTGGGACATGCTGTTACTCTTTACTGGACATTTGACATGGAAACAGCTACAAGCGTGTTCAAAATGTCCAAACGGCGACCACAACAGCTGGCTATTTTGATAACAGTAACGTCGTTGTGGACGCGGATACTAGGTCAACCTTGGGCAGATGATGAATGCAACAACGTCATCGTGCCAGACCTATCGAGACAAGAAGTGAGGTCAGAAGGCTACCCGTCCGGATATGAACTGAATCAAGAGTGCAGATGGGAGTTTGATGCAACGAAGTGGTTTAACCAGAACAAAACACTTAGTGTGCAATTTGTCGTGGACATTGAAAAGACTACAGATTGTTCAAGAGAATCTGTTTCAGTGTATGCTTTCACATCGTCCAGCAATACACAGCTAGCGGTTATGTGTGGTCAGACTGTAAGACAGTATACGTTCTTCATCAAGTCCCTCCTGGTTGTACTGAAGACTGGATCTAGTCCTACACAGGGCCGGCGTGGTCTTAAGATGACACACCAGATGATTGATGACGAATCCTGCCGTGAGTGGTTGTATTCAGATACACACAAGACAGGTGCCATTCATTCACCCAGATATCCTGATCCGTATCCGAGCTTTCAGAGATGCACGTACCACATACGGAGTCGGACTCCCAACCGTAACGCCGAACTTAAAGTCATCCTTTCCGAGCTGAGCAGTGACTGTCACAAGGAATATGTCCTGGTCTATGACGGGAATTCAGAAAAAGGGTCCTTACTTGGAAAATGGTGCGGTTCAGAACGACCGACGTTCAACAGCCTGAGACAACAACTCTATGTAGTGTTTGTGAGCCATGACAACATCAGCGGACGAAGGGGGTTCAGGGCAGATTTCAAAGACGTCATATGTGGAGGCGCGGCATCAGCTGGACAGTACTATGGAAACGACATCGTATTTCCTGGGCAAGAGAGAGCATTTCACCATTACATCACGTGTCGCTGGTACATCAGACCTTCCCGCGGATTTACAGGCTTGATGGTGGAGTTCAGAAACCTTCAGGTCGACTGTGACAAAAGCAGGATTTCAGTGTATGACGGGCCAAGCGCTACAGACTACACAAGGACCTGGAAGATCTGCGGTAAAATGGATTATTCCTACCTGATTTCCGGGGCGGGCGTGTTCATCGAGTTCAGTAGCCAAGGCAACACAGCAGAGCCGGTCTCCTTCAAAATCAAATACAGGGGGAGCCGCGTTACAGGTTGCAGACTGAAAGGAAAGGAGGGCGACAAGGCTTACCTTGTGGCTTACTCTTACGAACAGATACTCCTGTCCCCGGGATATCCCGATCTATATCCAGATCGGATACAGTGTATGTGGCAAGTGAAGACTGGCCTTCTCGTGGACATTGTCATGATTGATGTTGTACGGCTGAATCTCCACTCACAGCCTGCATGTGACGACAGCATCAGTTTATATCATGGTCCAATATCTGATATCAGCAAGACACCGGCCATGGTGTTGTGTGGCACCACGACCGATGTTTTCTACAGCACTGGTCGGTACGCTACCATTGTGTTTTCAACCAATGACGTTGGAGTAGGAAGCGGCTTCACCATCAGTTACAAGTCTGTACCAAAGAAGAGCGCCGATACTGGAACCGCAGCTTCAGTTTCATCCAGTGCGTCAACGATAGTGATTGTTTGTTGTGTAATCTTCATCATCATCACCATAGTGGTTATCGTAACTTGTTTCGTTTGGAGAAAAAGACGCAGTGATCGCAATCGACAGCCACCGATTGTCCAAACATCTCCGGATCCAAACCCCCAGACTAGCGGCCAGGCAACCCCATTTTTGCCGCCCAATACCACCGGTACCACCAATCCTACCAATACCCCCGCTACCACCAACACCAGTGCGTCGCCCCCTGAATACCAGGATGTAAACTTCCTGCCCGTCACAGAACCATCAGCGCCAGAGATGCCGCCTCCCAGTTATGAAGATGCTGTGTCGAAGGGAATGATAGACACGGAAACTAGGTTTTGAGGCGTTTTGACAAGGTGTCTTCAAATTATAAACAGACGCTTTGACATGCATCACAAGGCAGTGGTCAGAATGTGAGTGAGTGAGTTGTTTTTAAGCCGCTTTGAACAGTACTCGATCGTAGAGTGTCTGCATAGCGTGGACGTAAGGTCATCAGAAAGTAGTTTCCTGATATCTAGTGTAGCTGTCTCATTGTCAGAAATATTATCCACGCATTTAGTACATGGTATTTGTCAGGAAGATACTCTAGGACATGGTATTGGTCAGAAAGAGACACTGGAACATGGTATTGATCAGGAAGATACTCTAGGACAAGGTATTGGTCAGAAAGAGACACTGAAACATGGTATTGATCAGGAAGAGACACTAGGACATGGTATTGGTCAGAACGAGACCAGTGGTGATTCCAGGTTAGATGAAGTCACAAGCAGCCTTTGCTGGTCGTAAGGGGTGACTAAATGAATCAGATGGTCAGACTTGGATGACGTCACGTAAACGTCGCTCATAATGTCAATCACTGAAATGTCTGGCGCAGTTATTTGAAGACCCCGTTACAGAGCTAGAAAGTCGCTACGTTATAACAAACAACAAAGACGCCCATCTACAAAAAGTTGATTCCGAAAAGACAAATCTGCAGAAGCCTACGATGACTTGTGGAGTATTTGTGTGGAGTAATGATGCTCAGTTTAAAAAACCTCTCAGTGGTATTTCCCAAAAGGAATCTGTTAACACCCAGGACTATCTCAGACACAAGTGGAGGCGTTGCACTCATATATTGTAGGAGTGGGTTCTTTCTCATCTGATTGGATGAATGGGTAGGGCAGATGGCCGAATCGTTTTAACGGGTGCGGCCAGGTTTCCCCGCTCATAAAACTGCTCCCCGGAAGACAATTCCCCACTGGTTGCAGAAATGTCAAGAACGTCTGGGGGTGGGGCGGAGAACATGACCTGGGGAGAATTTTCTTAGTAGGGGCAGTTGATCTGACGCCATATTAACACATCTTAGGTGTGGCGTGCAAAAGCTTTAGAAACTAAGCGGCCGGAGTGAGGGTTCAGATGCTACGAGCTTGGTGAAGCATCTCAGCATCTTTGATTATAGGTTCTTGAATATGTAACAATATGTGAGCCTGCTTTTAGCATTACCAGCATCTCCACCGAAACATCCCACTGAAGGTGAAATTGAACAGAAGTTGAACTTTATACTTGTATTCCGACTCTGTGTTCTGTTATGAATTCCTTTAAAAGAACATTCCAGTTTTAATGACATCATATATTGACGGGTTTCAGAGGGCAAAGGAAACGATTTCTGCTCAGGAACACTCAGCCCTGAAAATACCTTTGTATTTTGAATACAACAGAAATAGGGGGTCAACCGACAGTGTTGGATCCAAGTGGATTAAATATGTATTTGAATATATGCAAGTGCATTATTGTTTATATTATATATGTTTTATATAACATTTTGTATGATTTTATTGCGAGATACACGAGTCATAACACCATCGTGAGCGTGTTTGTTTTATTTGTTTATACACGTTTTATACATGATGACAGAACATTACACAGTAACATCTCACTTGTAGGACATGTTACTGAAGTAC +>XM_048419471.1 PREDICTED: Myodes glareolus docking protein 6 (Dok6), mRNA +GAGGGGGGCACAGCTGGGGGCGGCGCTAGCCGCGGTGCTCCCCTCGTGGTCGGGGGCGAAGGTGAAGACCGCTCTCAAGGTGCTGGTGCTGCTGAGCAGATTCGGGCCCGGTTCCCTGGTCCGGGTGCTTGGCGGCCCTGCTATCGACTCAGCGTCCGCGCCGGCAGGAGCCTGGGGAAGAACTGGCGGTGGCGCGACTGCCGGCGACGGCCGGCTGGATGCGAGACCTGCGTGGACCGGGCGGTGGACAGCGGTTGACGACTCCAAGAAGCGGATCACCTAGCAGAGGAGCCCGACCGCGCTGGCCATGGCCTCCAACTTTAACGACATAGTCAAGCAGGGCTACGTGAAAATCCGCAGCAGGAAGCTAGGGATTTTCAGACGATGTTGGTTGGTTTTTAAGAAGGCTTCTAGCAAGGGACCCAGAAGGCTAGAAAAATTTCCAGATGAAAAGGCAGCTTATTTCAGAAACTTTCACAAGGTAACTGAACTGCACAACATCAAAAATATTACCAGACTGCCTCGAGAGACCAAGAAGCATGCCGTGGCCATTATCTTTCATGACGAAACGTCAAAGACATTTGCTTGTGAGTCAGAGCTGGAGGCTGAGGAGTGGTGCAAACACCTTTGCATGGAATGCCTGGGGACAAGGCTGAATGACATCAGCCTTGGGGAGCCTGACCTACTGGCAGCTGGGGTGCAGCGGGAACAGAATGAACGATTCAATGTTTATCTTATGCCTACACCCAACCTGGATATTTATGGTGAATGCACAATGCAGATCACTCATGAGAATATCTATCTCTGGGATATCCACAATGCCAAGGTCAAGCTGGTGATGTGGCCTCTTAGCTCACTAAGAAGATATGGTCGGGATTCAACGTGGTTCACCTTTGAGTCAGGAAGAATGTGTGACACGGGAGAAGGACTATTCACTTTTCAAACAAGGGAAGGAGAAATGATCTATCAGAAGGTCCACTCTGCAACACTGGCCATAGCTGAGCAACATGAAAGATTAATGCTAGAAATGGAGCAGAAGGCCCGGCTTCAGACAAGCTTGACTGAACCAATGACATTATCGAAATCCATCTCTCTTCCTCGTAGTGCATACTGGCATCACATTACGCGTCAGAACAGCGTTGGAGAAATCTACAGCTTGCAAGGTCATGGGTTTGGCTCATCAAAGATGTCCAGGGCACAGACATTTCCAAGTTATGCTGCAGAACAGAGTGAAGAGGCTCAGCCACCATTGTCTCGGTCCAGCAGTTATGGATTCAGCTATAGCTCCAGCCTCATTCAGTGACATACAGAGGCCACCACTGACCAGCAAAACAGTCTGCCCTGGACCTGCCATGGGGTCATTTCGCCCTGTGTATCCTGGAAGATCAATTGCTGTACAAATTAACATTGGTAGGGCGTAGTCCCAACTGAAAGGTTAAAAACTGAAGTTCTGCTTCCTTGATTCAGTGGTTAAGTCCTTTATTTATTGAATTTCTATGGGGGAAATCTATGTTTTACAAAAAAATCCAATAATATGAACACTCATTTCAATACAACAAATTCTTTGTGTCTGACAGTAGCAGAAGCCTTGGCACTGGGAAATTTGCCCACTCTAGTTTGTGCCTGGTTGGGGTCACCAAAATTTGTCTTTCAGACTGTTTGCTCCTGTTTCGACACAGGGCCTGTCTTTAAACATAATAATGACCCACTCTAAGCTCTGTGGCTTTTTCAATTTTGACAGAAACAAATCATGTAATCTTTACTCATGGTATCATAACTCTCCATGTAAAGAAGTCCAGTGACAATTAAGGGGGTGTTAAATTAGAATATTCTATTCAGAAGGACCCTGTAGCTCGAGTGTGTGTGGATGTGGGGGGTTGTATGTCTGTGTCTCTATGTATGTAGGAAATTACTATAACCATCTACAGATTAGGGTATATCAAATGTGCTAAATGTGACAGGATATGCTCACTTAAATTATTTAAAACTAATTTGTCACATTAAAATTAAAACTATGTTGAATAACTATTTTTAAATTAGTGCTGTTAGAATATGAAAAAGGTCCCCTGTTAGAAAATGAAAAAGGTTCCCTACTAACAACAGTATCTCTGAAGCCCACTCTGGTCTTATGAGGATTATGATCAGAAACACAAGAAGGAAGCACTTTGGAAACAAGATTACCATCCCAGCTGCCCTGCATGTCCATTACACTGTCTGTCTGGTTGATGTTGCCTTGTTGTTGACTGTTTCTTCCATCTGAGCTACTTGAGAAATTGGTGTAATCTCCAACTCTAAAATGTTTGAGAAAGACACAAAGCTACACTGAAAATGAACTCAGCTGTTTGTAGTTAAAAGAAGAACAAATGATACATGAAAGTAGATGTTTTAAGTTTCACAGAGGAATTTTTGCATGGGTCGTTGGGGTCTTGGCATCTGCTATGGAAACAGAACTTACATGACTTGAATTTTTTTTGCCCTGAACTTGATTGGTTGGGATGAAAAGAGAAAATGTTTGGCTTGCAAATTTTTTTCAGTTCTACCACCTGACAATGTCCAAGTTTAAAGGGAAATGGAAAATTCCTCTCTAAAAGAGAAAGTTTGGCTTGTTCAGGTCAACATAGACATATTTTGAGCATAATTTAGTGAGTGAAAATATAAATTACTCTGTGAGACTCACCTGGTGTCACTTGCCTAAACCAGATATCAATTAAGGAATCCAGATCATATTCCTGAACACAAGGTCAAGGTCAAGCAAGAGGAAAACCTGTTTTTTTCTTTGATAGCAAAATGTTCTACCAAACTTAGTCTACTGAAAGGGTACCTTTTTGCTGATCCTTGTTAAGATTTCATTCATCCTGAGTCAGGCAGTAGTGGTTCATGCCTTTAATCCCTGTACTTGGGAGGCAAAGGCAGGAGAATACAAGAGCTAA +>XM_045791904.1 PREDICTED: Ursus americanus glycerol kinase 5 (GK5), transcript variant X2, mRNA +CCGGATCTCGCGGAGGGGCGGGCCGGGGGCGGCGGCCCCGCGGGGCGCGCTCGGCTCCTGAGGTGCGGGCCTTTATAGACGCGCCCTCTCGGCAGGCGGTTGTTGCGGAGAGGCTTGCGGGCTCGGAATGTCGGGGGTGCGCGCGGTCCAGGAGCAGAGCACGGCGGGCGCGTCTCCCGCGGGCTTCGTGTTGGGGCTGGACGTGGGCAGCTCAGTGATCCGCTGCCACGTCTATGACCACGCGACGCGGATCTGCGGCTCCAGCGCGCAGAAGCTGGAAAGTCTTTATCCTCAAGCTGGCCGGGTTGAAATTGATCCCGATGTTCTCTGGCTTCAGTTTGTGACTGTAATAAAAGAATCTGTTAAAGCTGCAGGAATAGAGATGAATCAAGTTGTTGGTCTTGGCATTTCAACACAGAGAGCAACTTTTATTACGTGGAACAAGAAAACAGGAAATCATTTTCACAACTTCATTAGTTGGCAAGACCTAAGAGCTGTTGAACTTGTAAAATCTTGGAATAATTCTCTCACAATGAAGGTGCAAAAGGCAGTTGAAGAAGATAATTGCTGCTTTGGGACTATTGACACCTGGTTGTTACATAAGCTCACAAAAGGTTCTGAATTTGCCACGGATTTTTCAAATGCTAGTACAACTGGACTATTTGACCCTTTTAAGATGCGTTGGAGCAGGCTCCTTACTTCCCTGCTTTCGATACCACTGTCTATCCTGCCTCCTGTGAGGGATACGAGCCACAATTTTGGATCAGCGGATGAAGAGATATTTGGGGTGCCTATACCAATAGTGGCCTTGGTCGCTGATCAGCAATCAGCCATGTTTGGAGAATGCTGCTTCCACACAGGAGATGTGAAACTAACCATGGGAACTGGGACATTTTTGGATATAAATACTGGAAATGATCTTCAACACACCGTTAGAGGCTTTTATCCACTAATTGGGTGGAAGATTGGCCAAGAAGTTGTATGCTTAGCTGAAAGCAATGCAGGAGACACTGGTACTATCATAAGATGGGCTCAAGAATTAGATCTTTTCACAGATGCTGCTGAGACTGAAAAAATGGCCAAAAGTTTAGAAGATTCTGAAGGAGTCTGTTTTGTTCCATCTTTTAGTGGATTGCAGGCTCCATTAAATGACCCCTGTGCATGTGCCTCTTTTATGGGTTTGAAGCCTTCCACCAATAAATACCATCTCGTACGAGCAATATTGGAGTCAATAGCTTTCAGAAACAAACAGTTATATGAGTTGATGCAGAAAGAGATCCATATCCCTGTGACAAAAGTCCGGGCAGATGGAGGAGTTTGTAGGAACAATTTTGTTATGCAGATGACTTCAGACCTGATTAATGCAAATATAGAGAGACCTGTCAACATAGACGTGTCCTGCCTGGGTGCTGCTTCTCTAGCTGGCCTTGCTGTTGGGTTTTGGACTGATAAGGAGGAACTAAAGAAACTGAGGCAAAGTGAAGTGGTTTTCAAGCCACAGAAGAAATGGCAAGAATATGAAATGAGTATGGAAAACTGGGTCAAAGCAGTGAAACGCTCCATGAATTGGTATAACAAGATGTAGCGCTAACTGGAACGACTGCAACCATATACGGCTGGCTGATACGACATGCAGATGAGACACAGCTCAGGGATAAAAACCCAATACGACGATGACTGAGAGCATTTCAGATGAGCTTTGCAACCTGAGAGAAAAAACATTGCTTTTTTGAATACAAAACAAAATCCCTCATTTTTAAATCTAAACCTTGGTAAGATTGTAAGGCAACAGTACCTCAAAACTTTATATCTTCTGTTTTGTAGCAAATTCCAAAGGACGTTAGCCATTTCTAGCCATATTTTGACAGCTGTGGGTCCTCCCCGTTTTTATACTGGGTCAGCGATACATACAAACATAATGGTTTACTATCTGAGTTAGTAGTTCTGGGTCAAGCACCATTCATGTTTTGTTCCAAAATTAAGTGACAAGTGTTCCTTTAATTATTTAAGATTAAGTAGGCTATATGAAGTTCACATAGCTATAAAGAAAGAATAACTGAGGAAATGTGGAGTTTTGCAACATTAATATTTTATATTTAAAACCATAATTGTTCAATACTCTATCCAAATATGAGCTCGATACGCCCCTCTCGGATACGCTTATTGTTAGTCAATTCTTTCTTTTATTGGGCTTAAAGACACTCACTGCCTTAATTTTTCCTTGGTTAACCAAAATCTGAGCATTCTTTTTGTATTGAAAAAATAACTTTAGTGAATGAAACTACAAAGGATAATGATTCATAAAGAACAAGAAAATATTTTCTTTCTCAAATGGGATTTCTTTCGAAAACTTCTGGCTAAAGTGTAACATCCCATTTTTTACAAAATGCAGGTAGTGGATAGAAATCTTGCTTTTCTCTTCCCGTTCTTCATCTTTGTTGTTGAGATGCTTGCATAAATGTCTTTTGTTTTAAATTAAGTGCCTAACTGACAACTTAATTTGAAGACAGTGCCCTAATTCATTGGTGACGTGGGAATTGCCTTCATTGGGGTACTTTACTTCCGCAGGTATCTTTTACTTCAGTTCAATCTACTCATCTCTGTGAGACAGGAGCAGTAGGTAGCTGCCAGAGGTAATGGGGGCGTGTTCATGCAAACGATTGCCTTGCAGTTACGGGGCGGAGCTCCGCAGAGAGGGACAGGGACAGTTCCACATTTTCAAACTTTTGTGATAGAAACAAACGTAAAGGAATCAGAGTTGTGAGTAGCTCTGGGCTGGTGTAAAACTGTCCTATGGCACCAGACTGCCCTCCAACTTGTTCTCATGTAATTTGCCCCTCCCTCCACTTGGGCTAGGTTCCATTTCGATTTGTATTAATAATGAATTTATTTCCCTCTTGGTCAGGCTTTGTGACATAAAGATCTACTGTTATAGAGCTAGTTGTTAAATACTAATGTACTTTAAAAAGTGACTGTTAGAGGGATTTTTGTTGTTGCCATCATATATGTCCATTTCAGGGACAGATAGCTAGAACTAGGGGTCACACTGCATTTCTGCAAATTCCATTTCAGTGAAGTTTGTCTTCTTGAAGTATTAACATTTTTGATAGAATCATAATAGCCAATATATAGTATCATTAACTCCATTAATTAAGATTTGGAATTTTTTTTGTGAAGTGGAGGTATTTTGTTTACGGTAACAAGTCAGATTACATTATGTAGATAATATTCTTCTTTTTAATTCTTTTCATTTTTCTTACGTCCCTTTTACAAAGCTTAGTGACCAATTGTAGGCCCTTTTATCAAAATCAGATCACGTGCAAGCTGCTCTGTTGTTTTACTGTTTCTTATAGATTCTGCTTCTCAGAGGGTATGATTTCATAGGAAAGAATTGTCTCTTTGTGTTAGGATATACTGAATTGTAATATTATTAATACTTAAAATTTGTTGGCTCATTTCTTTTTCACATTCTTCTTTCTCATCATCAAACACAAAATAAAGGATAAATACCTTTTAGATAATGTGAAAAAGTAACTGTGAACATGTTTTCATCGGAATTGAGCATCTCCTCAAAAATCAGTGGCTAGTTTTTTCTTCTGTTAGTCTAGAATTAATCTTTTATTTTTACTACTTCTGGCTTTTTTAGTGACACAGTTTAGTAAATCTTTTGCCAGATTTGACCTAAATCAGAAACGTGACCACATTTGCTTTTGTGGTTGTAGAAACAGTTGATATTCAAAATCAGTTGAGCAAAAAAATTGTGCTACGATTTCTCAGCATGTTCTATTTTCCCATTATGGATCAACCAGATATTTTTAGCAGGTCTGTAGCTATCTTATCAAGGAGGAGAATGTTTCTGTACAATCCTTCTTGAAGTGGTACTAATTTCTTTCATACCTAGACTTACCGATTTTAAATTTTTTTATATCCTACCATAATACGGTTTCTCAGTCTCAGCATTATTGACATTTGGGACAGGTAGTTCTTTGTTTTGGGACGTTGTGCTATGCAAGATAGGGTATTTGGCAGCTCAACCTGCTAGCTACCAGCAGCATCCCCTAGTTGTTGTGGTCAAAAATGTCTCGTAACACTGCCAAATGGCCCCCAGGAGGCAGTATCACCTCCAGTTGAGAACCACTAATTTGGACTATTAGAAGAAAGTTAAAGGCTCAGCAAATGTAGTGTGTCTATCATGCTCCTTTTCTCTCTGCCTCATTTTACCTTAGGAAATCGTTGTTAGCAAAAAGAGGTGGTTGTATCTTAAAACAAATAGGGTTTCTACTTTCCCAGTTAATGAGGGAAAAAAAAAATCTGATTTTACCCACTCAC +>XM_020802708.1 PREDICTED: Pogona vitticeps SH2B adaptor protein 3 (SH2B3), transcript variant X4, mRNA +AAGCTGTTCTATTTTAGAGCGCGCGCAGGGCGGCCTTTGGCGTACGACGTCAAAACCATCCGGTCCCCCTGTTTTGGCAGGAAATCGCAAGGCGCTGCCGGTGGGCATGTCGTTCTGTCTGGAGGTGGGCTTCCCTCATGGACTGGCCTCCCTTTTTTGGCCTGCGTGCAGTCAGTGGCCGGTCTAGCTTCTGCAAAGGACATCTGAGTGTTTCAAGTTCCTACCATGAATGGACACGCTGGGCCACCCATAGATCCTGCGCACGCCGGGGGCTGGAGCGAGTTCTGCGAACAGCATGCCGTCACCACCGCTCGAGAGCTGGCCCGGAAGTACCTCCTGTTTGTCAGCGAAAACCCCGAGCACGAAATCTTGGCGGCCGACAACTTCTCCCTCCAGTTTGCTGACCTCTTCCAGCAGTATTTCCGCAATGAGGTGAAGGACCATTCCGCCATGAACCAGTTCCGCGTTCTGCCCTTTAGCAAGGTGCGGGACTACAGGGAGACTGGCCGAACTCATGCCGGCGCCTCCCCCACTGGGACGTTAGGGGCCAAGAGTGAAATGGAACTGGGTGGACCAGTTGACCGGGGACCACCTGAGGCCCGTCCCGCCGGCCTCCCCAAATCGTGGAGTTCTGAGGAACTTACTGGAACGCCTCCTTCCTTGGCCGTCAGGAGACACTTTTCCCTCACCCGCCTGAGGAGGAGTTGGCGTAACTTTTTCCGCAGGAGGTCCTCAGAGCCGCCCCCTCCCGATGGGGAAATGTCGGATTCTGTGCTGAAGTCTAACCTGGCGCGGAAGATCTTCCCGTGGGCCCTTTCGCGAGACCCACCGCCTCAGGTCCGGAAAGAAGGCGGTCTCAAATACTGGATGGTGACCGAGGCCAACGTGGACAACGGGACGCGCTGGCAGAGGTGCCGGCTCGTTTTACGGAAAGAAGGGCCTTCAGAGAGTGAAAATTACGTCCTGGCGCTGTTTGACCCCCCCAAGAGCTCAAAGCCCAGACTCCAAGCCGCCTGTTCATCAATCCAAGAAATCAGACGGTGCACCAGCCTGGAGATGCCAGACAACGCGCACACCTTTGTGCTGAAGGTAAATGCCTCCACCGACATTATATTCGAGGCTGGGGATGACCAGCAGCTGTCTTCCTGGATGTCTGAAATTAAAGAATGCCTCCCTCAAGGGTCCACAGGAGCCGACCCGGACCTGGCCCCCGACTCCCTCTCGGAGGTCACGACGGCCAGCCCCACCACCACCACCAGCAGCAGCAGCGTGGATTCCCGGAACCAAGGCGCGACGCCCCCGAACGCCCCCGACCAGCCCTGCCAAAAGACGGACCGCTACCTTTCCGCTTTCCCCTGGTTCCACGGACCCATTTCTCGCTTCAAGGCCGCCCAGCTGGTCCAGTTCCAGGGCCCCGAAGGGCACGGAGTCTTCCTCATCCGACAGAGCGAGACCCGGAGGGGAGAATATGTCCTCACGTTCAATTTCCAAGGAGTAGCTAAGCACCTGCGGCTTTCGCTGACCGAGAGGGGCCAGTGTCGGATCCAGCATTTGCACTTCTCCTCGATCCTGGATATGCTACACCATTTCCAGCGCTGCCCGATTCCCCTGGAGTGTGGCGCTGCCTGCAACGTGCAGCTGTCCAGCTACGTGGTGGTTGTCCCAAACGCCCAAGGCTCGACCAACACGGCACCTTTCCCCCCCGCCATCCACCGCTACAACCCGGAGTTCGGCCTCCTCCAGCTCACGCCCTCCAGCTTCGCCCGGATCCGCCTCCCGGACCATCCTCACCGCCACCACAACTCCTCCGTGGAGCAGATCTTCCACTTGGTGCCCCCTCCGGAAGAGCTGGCCGGCAGCCTGTGGCCCCACAGAGGCCGGCCCGCCTCCCACCACCCCTTGCCGGCCCCCCGGCCCTGGGACGGCGATTACGAGACGGACTCCCACGGGAGGGGGCACCTGCGGGCGGTCAACAACCAGTACCTGTCCCTTTGACCCAGTGCGGCGGGGGCCCCCCCACCCTGCTTTTGCCCGAGACTCTTCCTCAAAGGACATCTTCCTCTCTCTTGGCAACGTTGAATATTTGGTTTGTAAGATAAGACGGATCGCTCCCGTCGCTGCGGCTGCAGCTCTTGATTTAGGCCTGTTGAAGGGCCCGTTTGTTCCTTTTTATTATTATTTTTTTCTCAGTCAAAACATTCTTTTCTCTCTTATCGGTTTTGCACACGACCTTCCTTTTGTGTTGAGGGTTTTACGAGTACATGCAGTACTTTGCAGCGGGTTAGCGCTGGTCCCCCTTTCTCTAGCCCCGTCCTCCTTGGAGAAGACGGGCTGGGTGGGGGAATAAGAGGACAGGTCAGCCAAGCAGCGTTCGTGGCCCGTCCAGAGTTATACGGGGGCTTCCTTAGGGTTGTGTTCTACGAAATCCCTGTCGTGAAGGCTAAGGCAAACAGGCATCAGGCAGCGGCTGAAAGGGCGCCCAACAGACGCGAGCAGGAGAAAAACATCTCCAGACACTCCCGTGGGAGTTGCAGTGTGACGGCACCCGCAGGGCGCTGTGCTGGTAGCGTGGCACAGTCTGAGACGCTACGCTCGATGGACGGCCACTCTCTGGCAGGGACAGCCCTCTTCCCCCCCATCCCCAGTAGCCAGTTCCCTTGCGCCGGAAAGTGCGGGAAGCGTTCATGGAGGGCCCAAATGGGTGCAAACACCGTAGCCTGCTTTTGGTGTAAGTCCCCCTCTTACAGCCAGCTGCCTGAGGGCCACCAGCCACGCAAGGAGCAGGTCCCTGATGAACTGTTTTCTGCTTCCAGTCTTGGCAGCCTAAGTCTGGATCACTCCCGTTTACACATTTGCACCACTTATGTGCCTTAGCTGGAAAAAGGGTGGGCGAGTCCCCAAACCCTAAGCTGTTGGCTTCTCTTTTCACTCTGAAGGTAGTCGCTTGGTTTAAAATAAAGAAGGCGCCCGTT +>XM_030133558.1 PREDICTED: Sphaeramia orbicularis signal peptidase complex subunit 3 (spcs3), mRNA +GTATAGTCGACATTTCCGGTTTGAACATTAGCTAAACTAGCTAGTACAACATAGCATTGTAGTCGAACGGTTATTTGTTCTCATTGTTTTTCGGTTTTGGCAGTTTTTCACGATGAATACGGTTTTATCAAGGGCCAACTCTTTGTTTGCCTTTTCTCTGAGTGTCATGGCGGCGTTAACTTTCGGCTGTTTCATCACTACGGCTTTTAAAGACAGAAGAGTTCCTGTGGACATCCACGTCTCTAAAGTCATGCTGAAGAATGTGGATGACTTCACAGGACCCAGAGAGCGCAGTGATCTGGGTTTCATCACATTTGACCTCTCAGCTGATTTGCAGCCAATTTTTGACTGGAATGTCAAACAGCTGTTCCTCTATCTGTCTGCAGAATATGCCACAAAGAGCAATGCTCTGAACCAGGTGGTCCTGTGGGATAAGATTGTCCTACGAGGGGAAAACACCAAACTGAACCTCAGAGACATGAAATCTAAATACTTCTTTTTCGATGATGGGAATGGACTCAGGGCCAATAAGAACATCACGTTGATGCTGTCGTGGAATGTGGTCCCTAACGCTGGAATCCTGCCCCTTGTGGCTGGAAGTGGACAAATCAGCCTGCCTTTCCCTGACACATACGAGAGCACCAAGAGCTACTAGACCCAACCAGATGTCCATGCTTTCATTACACACTGTACACGCCAGAAAAACAGAAACAAGCACAGACGCCAACAGATGACTCACACATTCTGTATATTATTGTTTCTTCATAGATGTACATCAATTTTTGGTTTATAAAAAAAAAAAAATTCGGA +>KP159845.1 Uncultured fungus clone OTU_86F_4_49 5.8S ribosomal RNA gene and internal transcribed spacer 2, partial sequence +CGCACATTGTGCCCTCTGGTATTCCGGGGGGGCATGCCTGTTCGAGCGTCATTATAACCACTCAAGCTCTCGCTTGGTATTGGGGTTCGCGGTTTCGCGGCCCCTAAAATCAGTGGCGGTGCCTGTCGGCTCTACGCGTAGTAATACTCCTCGCGATTGAGTCCGGCAGGTCTACTTGCCAGCAACCCCTTAATTTTTTT +>XM_014413384.2 PREDICTED: Maylandia zebra KN motif and ankyrin repeat domains 4 (kank4), transcript variant X2, mRNA +TATTAAGAGAGACAGGGTCAGTAGCATTCACAGAAACAGGAAGGACAGGAGGTAAGAAGAGCTATATGGCAGGCTGTTAGCTCCTACTCTAGCAAACACAAGTAGATGACTGAGAACTCGGCCTCCCATGATGGACAAGAAAAGTGCCAATGGCTTTCAGTCCAAGGCCAGTGAGGGTGGTGTTCAAAGGAAGCAGCTGCCCTACTCAGTGGAGACTCCCTATGGCTTCCACCTGGATCTTGATTTCCTCAAGTATGTTGATGATATTGAAAAAGGCAACACAATCAAAAGGGTCCACATTCAGCGCAGGGTAAAGGGCCCACCTAAATTCAGCACTCTGCCCAGAAATTTTAGTCTTCCTGGGCATGGAGTAAGGCCTCCCCCAAAGGAAAAGGACAGTACTTGGTCTGGGACGTCTACCCTGGGTCCCAAGCCTAAATCACGAGTGACAGAGGTTCAACAGATCTTTGACTTTCGAGCAAATGAAGGCGTGATTTCCAGCCAGAGCTGCAGGGGGACCACAAGTCAAGGAACTGGCTATGTTTCAACTAAACCCAAAGATGAAGTAGGCGCGGGGGCTCGCGGTGCTGAAGACAAAACTGGGGGGATTCAGATTCAGAGTCGTCCAAATCTGCTCAGAGCATCGAGCATGCCCATCACGCTACAGCAGCGTAAGAGTTCAGATTCAAGCAGTCCTGACCGTACCGTGGGAACACCAGAAAACGGCTCAACAGAGAACATGTTCCGGGCTTCACCAGACGTAACAGAAAGACGCTGTGTTCCCCAAGATCGAGCAGGTCTTCACCAGCAGATTACTGTTGCACTGAAGCGGGTCAGAGAGCTCGAGGAACAGGTCAAAACCATCCCAGAACTGAAAGCTCAGATCTGCTCTTTGAGGGAGGAGCGGGAGCAGCTGCTTCTTCAGCTACAAGCACAAGCCAAGGCCCAGGCTTCCAAATTATCTGCTACAGTACCAACAGGTTACGATTCTAGGACAAATAATCAATCGCAAGGACAGAGACCTTCACAGGAGATGAAGTTAGTCCTAAAGACTCAACCCACTGGACGTTTAGAAGACACAAGTCTTGGGCCATCAAACCAAGCTGCAGGGAAGGAGAAACAAGGTGAGACAGAGAAAACTAACGTGTTACTATCTGAAGTGGAGAGCTCGGCACAAGGAAAAAGTAGCATGTCCTCAGCACAAGAAGTGGAGAGACAATCACTGCAGCTGGACATACTTGAAAAACAAAAAGAAACAGAGAGTCCACTGGGACAGACAGTGCAAAAACTGCCACGAGACATTTCAGGGGAGGAATTACTATCTATCACAGTGGCTTTAAAAGAAACAGAGACTGCAGCAAAAGAAGGAAAACCAAAGGATCCAGATGATATGCAGAAGTTGCAGGAGAAGCTAACAGTACTAGAGACTAAACTTATTCAGGCTAGCCAGGAGCTAGAGAGCACTAATGCTCTTTTGAAACAGCAAATAGAGGAGAACAAGCTAAAAGAGGAGAGAATACTACAACTGAGTGAGGGAACGAGAGTGGAGGTTTGCACCGCACATGAACGTCCAAGAAGAGAGAGCATTGACACAGGGACAGTGACAGAAAGGATAGATTTTACCCACCAAGAAACAGAGACAGAATCGCCTGGTACTGTAGATCAGGGGACAGACACTGAAAAAATCTGCATTGAAGTGTGCATACCAAAACAAGAGACTAAAAGTACAGATCAAGGACCAGTGACGGGAAAAGCTGACACGCATGACCAGGAGACAGAGATGGAGGCGGCGATAACAGCGACAAGTCCACCGAGGCCCAGAGCCAACAGCATGGAACGAGGCACACTAACCGAGAGCATCATCACCCTGGATCAGATGACCGAGACCCCCGTGGCCGAAAGGGTAAACCAAGTCACAGAAACAGAAGGCGAGATGGTGACGGACCATCCTCACAGACCGAGGGCCAGCAGTGTTGACAGAGGGACAGAGACAGAAAGGGTGGGCACTGTGGACAGAGTGACAGAGACAGAGGTAGCCCAGAGAGCAGACCAGCAGACTGAGACAGAGATGGAGAGACGTCATGACAACAACCCAGCCAGAGGTGTAGAAGCAGAGAGTCAAGTGAGTGAGAACACAGGCAGCCAAAGAGACGAAGTCGTGGTGAGTGAAAGAACAGAAGACAGGGAAACATACGAAAGAATTCAAAGAGAGAGTGAACGTTTAGTTGCTGAGGTTTTATCAGAAAGCTCAGCGGCAGCTGTAGAAAGCATAAAAACTTTAGATGTTGTTAGGAAGAATGAAGAGTGCGCCAGTTCGGCTGCTAAAGCAGAAGAAAATAAGATTAAAGTGAGTTCCGAACAAGATGACTCAGAAACAAAAGAAATTACAGAAGTGGTTGAAACAAGACCAGCTGCCCTACAGAGAAGAGACCAGCTGCCCTACAGAGAAGAGACTACAGAGAAGAAAGAAACAGGAGCCGGGGAGGTTATGTCTGCAGCAGTCAAAGAAACTGTAGCCGCTGACACTGTTGCAGTAACTGAGGGGAATTCAGCTGTGAAGACAGCAGCTCCTGTAAGACCACAAAGAGGCAGGAAACCCTCAGTGGAGCAAACTCAGCCGTCACCTCCTCAACTTCAGGTGGTGCCTGTGCGTCCTCGTAGGGGATCCAGTGAAACTCAGACCCAGCCGCAGACGAAAACCCAGCCCCAGGTGCAGGAACAGAGTGCAGCTCAGCTTGAAGCTCGGTCCCCAGAACAGCTCTCTGAAACACAGGTAAAACATCAAACACCGTCTGTGCCTCAGGTTGAGGACCACACTATAGCAAAGAAACCTCCTGGAGGGTCTGGAGAGAAGCAGTCTGAATCTCGACTTCAGTCTGAGACTCAGGCCTTGTCTCCGGGCTCTAGTGAAGTCCAAGTCAGGCCTAAATCAATACAAGCGCAATCTCAAACTTCTGTACCTCGGCGGGACTCAAAAGAGCTGAAAGCACCGCAGAGGGTGTCTGGTGCATCACACACTCCTAGACGGGGATCGGGAGAAGCCCAGACCCAACCACCTCGCCAAGCGTCAAGCGATGCTCAAACTCAACCTCAGGGTTCACGTAGAAGCTCCAGTGAGGCTCAGGCCTCTCCGAAAGATGCCAGTGAGACACAGTCACTGCGCAGAGGCTCCAGTGAAGCAGCTCAGCGCCGTGGCTCCAGTGAAGCAGCTCAGCGCCGTGGCTCAAGCGAAGCCCAGGGTTCACGTCGCGACACCGGGGAGGCCCAGCCTCCTCGAAGAGGCTCCAGCGAATCACCAACATCGCCTGCAGCTTTGGGTCAAGTTGTAACTCGGATAACGGGGCTGCTAGGAGAGCAGTGGGCACATCTCGGAAGCAGCTCTGGCACTCAGCAAACAGCCAGCCAGCAGGAGAGCGCGAGCACACAGAAAAAGACGACAGGGAAAAGAGCAGAGGCTGGAAAGGCAACGTCAGCCAAGCCAGCGGGGAAAGCAGCCCCATCAGCAGCAGCGACAGGGAAACCAGCGGGGAAACCTGGTACTTCCAAAATGAGCTCCATTCAGAGCCAACTGGTCAGCTCCCTCAGTGTCCTCTCTGCCTTCTACTCCCCAAGCCAGAAAGCGGCTGCTGCCAGCAAACAGCAAGAACAAGGTCTCAAATCCATCATGAAGAAAAATGGTGGAGCAGGCAAGCAGGGGAACAAGGGAGCCAAGAAAAACCTGAAGTTTGTGGGGGTGAATGGAGGATATGAGACGACATCCAGTGAAGAGTCCAGTGGAGATGAGAAGTCAAAGGTGGAGGTAGAAGAGGAAGATAGCTCAGAACCAGAAGTGGAGAAGGAGCCTGAGAAGGAGCCTGAGAAGGAGCCTGAGAAGCAGCCAGAGGAGGGAGCAGAAGCCCAGAGAAAAGATGCAGAGGTCCCAACTGAGGGAGGAGGTGCTGTGGCTAAAGAGAAGGAGACTGAAAGAGGTCTGCTGGATCCAGAAAGTAGCCAGGAGCTCCTGGAAGAGCAGGCTGGAGGGGGAAGAGTCGACAAGGGGTTTATAGATGCATGCCTTTATGTAAAGGACCGCATGGAGGAGGTTTCATCCCCAGATAAAGAAATGCGCCAGGTTTTAGTGGTGCTCTACCAGGAGTGGTTCAGAGTCTCCAGTCAAAAGGACTCGCAGGCAGATACTGTCAGATTATACCTGCGACAAGTGGGGATGACCACACCCACTCTCCTGCCATATGTTGTTAACTTGACAGACGGCAATGGGAATATGGCTCTTCACTACAGCGTGTCACACTCCAACTTCCCTGTGGTCAAACTGCTGCTGGATACCGGCCTGTGCGAAACAGACAATCTCAATAAGGCAGGCTATACTCCAGTGATGCTGGCTGCTCTGACGGCTGCTGAGAGCCCCGATGATCTTGAAGTGGCACAGCAACTGTTGAAAGTGGGAGATGTCAACGCACGCTCCAGACAGGCGGGCCAGACAGCACTCATGCTTGCGGTGAGCCATGGCCGCGTTGCCATGGTGAAGCTGCTCCTGAGCTGCGGCGCGGATGTAAATGCCCAGGACCGCGAGGGCTCGACGGCCCTGATGTGTGCCAGCGAGCACGGGCACACGCACATCGCTCGCCTGCTGCTGGAGACAGGTCGCTGTGATACCAGCCTCAAAGATAAGAACAGTTCTCCACAGTCGCTGTCCACATGGGTCAGTGGGACCAAGAAGCACTCTGCTAATGTGTGGACTCTGACCAGCAACATCCAGCAGGACCCAGACAGCGTTTTCTATCTCCCAGCTGGAGTTTTTGTTTGTCTGTGACTGGAGAGTCAGATTTTTGTTGAGCTTCACACTTGCAGACCTAAGTCAGTTTGCAGAG +>XM_013897292.1 Thecamonas trahens ATCC 50062 hypothetical protein partial mRNA +ATGGCCGACGAACCTTCACCAAATCAGCCCGTGCCGCCCTGGGCCGATGCCGATCTCTCGCGATGCCTGCCGACGCTCGCCGCCGGCGGTGAGCGTCAGGATATGGAGTTCAAGGAACGCTTTCCCGGCCAGGCACGCGATCTCGCCAAGGAGATTGCGGCCTTCGCCACCTCCAATTTCGGCACGATCCTGCTCGGCGTCTCCAAGGCGGGCGGGGTGATCGGCCTCGCGGATTGCGAAAGCGCGTCCGAGCGGGAACGCCTGCTCGACCGCGTCGCGGGCATCTGTGCGAACAGCATCAAACCGTCGGTGACGCCGGCGCTCGCGTTCGCCGTGGTCGAAGACCGCACCGTGCTCGCCATCGCCGTGCCGAAGGGCGATGCGCCGCTCTACTACGTCGCCGGAGTGCCGTACCTCCGCCAGATGGCTACCTCGCGGCCGGCTGAGCCGCACGAGGTGATCGACCGGGTTCTCGATTGGGACCGGGCGAGAAACGGCAGCGGCCGGCCGAGCCCGGAATCCGAGTTCTTGAGCCAGACCGCGTCGCTCGTCGTCGATGTCGTCGTATACGCCGACGAACTCGAAGAACGTCGCGTCAAGCCGTGGCTCAACGAGACACGCCACGGACTCGCATGGGCGGCCGAAACGGCGCGCGACCTCGCGGCCCGGACGCCGGGAGACTTCGCGGAGATGGTCGAGCCGTTGGAGGAGATGGCGAGCAATCTCGACCGTGCTGCACACGAACGTCTCTCCATGGGCGGCGGCTGGGACGAGATGGACGCGGCGGCGCGGGCGGCAAGGGAGACGGCACGGAGCATCTGGACACGCTGGATCGAGCCGCACGGCTTCCATGCTGACTCGGTCGCCGGCGTGCGGGAGACGGTCTCGGAAAACGCGCGAAAGCTCGCGAGCCTCGCGGCGCGGCTCCAGGAAATGGACGATCAGGGACGGCTCGACGGCATCCAGTCGTCGGCCGGAGAGATCGGACTGGTGCTGCTCAAGGCCGCAACCTTCGGCGTCGGGCTCGGGGACGATCAGCGGATCGAGGAGTTGACAGCGATCGGCCGCGCCTTGCGCGACGTGGAGACCCGGACGATCTACGCCGACGGCGGCCAGTCAGCCCGGAGAATACTCGACGACGTCCGTGACGCGAGCGCGAGGCTGAACGCTTGGCTCGCCGGCCTTCCGTCTGAAGCGGAAGCGGGAGCATGA +>LN881636.1 Terribacillus sp. 1011TES3C6,21 partial 16S rRNA gene, isolate 1011TES3C6,21 +GGGAAATGGCGCGTGTCTATACATGCAAGTCGAGCGCAGGAAACAGATGACCCCTTCGGGGTGATTCTGGTGGAATGAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTGCCTGTAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAGTATTTCCTTTCTCCTGATTGGAAATGGAAAGACGGTTTCGGCTGTCACTTACAGATGGGCCCGCGGTGCATTAGCTAGTTGGTGGGGTAATGGCCCACCAAGGCGACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGCGATGAAGGCCTTCGGGTCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTACGAGAGTAACTGCTCGTACCTTGACGGTACCTAACCAGAAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCACAGCTCAACTGTGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGATATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGAAGTTAACGCATTAAGCACTCCGCCTGGGGAGTACGGCCGCAAGGCTGAAACTCAAAAGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCGCTGACAATCTTGGAGACAAGACGTTCCCTTCGGGGACAGCGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATTCTAGTTGCCAGCATTAAGTTGGGCACTCTAAAGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGGATGACGTCAAATCATCATGGCCCCTTAT +>XM_022540745.1 Aspergillus glaucus CBS 516.65 hypothetical protein (ASPGLDRAFT_127844), partial mRNA +ATGATTCCAACTCTGCTGTTCTCAGGTTTCTTTTTCGCCAATGCCTTTGCCATTCCCCTTGCAGGCCACGAGCAGCAGCAGCAGCAGCAGCAGCCATTGGGTAATGGGGTCTCTTCCTCCACGGCGCATAGCGCTGGAGGGGCGCAGAGGCTGACTGGGCGATTCCTGCATATCACTGATCCTCATCCTGATTCGCACTATAAACAAGGAGCGTCGGCCGACAATAATTGCCATCGAGGCCATGGATCTGCTGGATACTTTGGAGCGGACGGAACCGATTGCGATGCCCCGATCACCCTGATGAATGCGACTTTCCGATGGATCGAGCGAAATTTAAAGGGGAATATCGACTTCGTGCTCTGGACCGGCGACTCCGCCCGCCACGACAGGGATGAAAAGATGCCGCGGAAAATGGAAGAAATCATCCACCTGAATGAAATCTTGTCCCAGCAATTCATCGATGTTTTCCAGGACTCCATCCCCGTCGTTCCGACATTTGGCAACAACGATATCATGCCGCATAACACCATGAAAGAGGGACCGAACCGCTGGACGAAGACTTTTGTGGATGTTTGGGGCAAATTTATCCCGGAGGCTGAGCGCCATAGTTTTGTGGAGGGTGGCTGGTTCACGAGCGAAGTGATTCCTGGCAAATTATCAGCCATCAGTCTCAACACCATGTACTTCTACAGCTCCAACTCCGCCGTGGATGGATGCGACGACAAGGATGAGCCGGGATACGAGCATATGGAGTGGCTCAGAGTTCAACTGAAACTGCTTCGCCAGCGCAATATGAAGGCCATCCTGATTGGACATGTACCTCCGGCCCGGGCAGGCCCGAAACAAGGATGGGATGAAACGTGCTGGCAGAAATACACCCTGTGGTTGCATCAATATCGAGATGTCATCGTTGGGAGCGTCTATGGACATATGAATATCGACCACTTTATGTTCCAGGACAGCCACGATATCGACATCGTCGATTTGGAAGGTGACAACACGGGATCTAATGATTTCTCTGTCCAATCCATGGAAGACTATCTCGAGGCCCTTCGGGGCCAATGGTCCGATATGCCATCCCCGCCATCTGGTCTTTCAATTGAGGAATGCTTGGATGAAGACTTTGCGGAGACTGATGGCAATGCGCCTTGGACGGACATATCCAAGAAGAGAAAGAAGAAGAAGTTCCTGAGAAAGATCGGTGGCCCTCTGGCCGAAAGATATAGTGTCTCTTTGGTGTCGCCCAGTTTGGTGCCAGAATACTTTCCTACGCTCCGGGTGATTGAGTACAACATTACTGGCTTGGAAGATATGCCAACTTGGTCTGATATTCAAGAAAACACACAGATCTCATATCCCAACGACGATGACACACCGTCCGTTTTGGAATCCGAAGACTCTCCGATGATGAACAATGACAAGAAAAACAAGAAGAAGCCAAAATTCAAAGTACCAGAACCCCCACCGTCTTCTGCTCTTCCGGGCCCTGGCTACTCGAACCAGCAGTTGTCCTGGCTCGGATATACGCAGTACTACGCCAACCTAACGAGGATCAACGAGGAAGTGGCTTTGCACGAATCGACGCACCAAGACGGAACCGGGAATAACGTCAATGCTACCAGCGTTGATGATGTATTTGGCTTTGAGGTCGAGTACGATACTCGTAACGACCATATCTACAAAATGAAGGATCTTACAGTCCGCAGCTACTTCGATCTAGCCAGTCGGATTGCGAACAACATTCCGAATACCCTGGAATCACCTGATGACACGAACGACGACGGTTATGATAGCCAGAAGAAGAAGAAAAAGAAGAAGGGGAAAAAGAAGAAGGGGAAAAAGAAGAAGAATAAGAACAGGACATGGAAGACCTTTTTTGATCGGGCGTTCGTCGGGTACCTGGACATCAATGATCTTGAAGAGACAGAATCATGA +>KX654414.1 Uncultured bacterium clone OTU 2009 16S ribosomal RNA gene, partial sequence +GGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGAATGATGAAGGCCTTAGGGTTGTAAAGTTCTTTTGTCAGGGAAGATGATGACGGTACCTGAAGAATAAGCACCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGTGCTAGCGTTGTTCGGAATCACTGGGCGTAAAGCGCGCGTAGGCGGCTTTCCAAGTCAGAGGTGAAATCCCTGGGCTCAACCCAGGAACTGCCTTTGAAACTGTAAAGCTGGAGTGTCGGAGGGGATGGCGGAATTGCTAATGTAGAGGTGAAATTCGTAGATATTAGCAGGAACACCGGTGGCGAAGGCGGCCATCCGGACGACAACTGACGCTGAGGCGCGAAAGCGTGGGGATCAAAC +>XR_002806955.1 PREDICTED: Equus caballus NK6 homeobox 1 (NKX6-1), transcript variant X2, misc_RNA +ACAAAGGCTTTGGGGTCTCCCGGGCCTGCAAACTGTTGATGAACAAAAGGAATCAAGCCCCCGCCTTTGAAATTAGGTTAATCTAGATAGTAGAATGTGCTGGGGGAACTCGCCATTATTAGAGAATAAAAGCCTTACCAAAATATCAGCCCTGAGGATAGATCAGGCCAGTTAGATAGCTTCCATTTATTCTATTTGTAAAGATATTCAAGCTTTTGTTTATCAATTCAGGCCCCACTAGTTATATAAGTTCCTAATGTGTATCAGCATTATAGTGCTACTATATTAACTTGCAGGGTAAAAAAAAAAAAAAAAAAATCCAAGGATCTAAACACTTAGCACGGACGAATCTATCTGCTTTTAGCTTAGCAGAAAGCAGTCACTTTGGAATAGTAATTTTCCAAATGAATTGACAAGATTATTACTATATTATGAAATTGAATTCTGTTTAAAATAAGTTTATCCACAGATGTAAGATATTTTACTGTTTGTGACAATTTATAATTAAAATGTCACTTAGCTTATAATTGACTTGTACAGTGTATTTCCAGGGAATCAAATTTGAGAAATCTTTCCTTGGAAAATAAAGGGATTGAGCCAGCTAGGCAAATTAAATCCACAGTTTCCTGTATTTCCAGTATTCCCTTTTGTTCCTCTTCTTCAGTTTATTATATTTGGGGGTTTTTTTGGGGGGAGGCAAGTGTATTTTCATTAGTTATATTGTTGCTCTTTAAATTAAGTAGGAATAACATTAGCCATGTCTGCTGGTTAGAGTGTATTTCTCCCTGGACAAGCATCATAAAATGCATTTCAGGAGTGATTTTGTATGTGACCATTAGAATACCATCACAGTTAAAATTATTTTTGCAGTGGTTGGTACAGAGCCTACCACAGTAATCTAGAGGTCTTCATTTGTCACCATAAATATGTCTGCATGGCTAGAAGTGAATTATTATAGCTGTATAAAGAAAATAAAAATCACTTTCTTAATTCCGATTCTCTAGGTAAAATACATAACGGATGAGAAAATGGATGAGAAGCATAAAGACAAGATAATTCAATATATTTGGGAAATTGCTTGCTTATTCCTGATGCTTTAGGTTGCAATATGTGTATCAAACACAGTGTCAAACATCGTGAATAGGCCTAAAGTATTTGTATATAAAAAGATTGTCTTGGGGAGAAACAATATTAAAATAATATTTGAAAGACCTGGCATGTTAATAGTGGGAAATAATGTAATGGTAATAATGGGGAAAAATGTAATTGGCAAAATTACGCTTTTAAAAAATAACTGATGAAAATTTTAGCCTTGACTTTGATTTTATGAAAATCATTAAACCCGAGAGACAGAGATTGAGAGAGAGAAAGAGAAACCACTGTGATGATTTTGACTGAGCTATTAAATATTTTCATGCGTTTATGTTGGTTAGCATTAGTGATTTGAGGTTTCTGTTCAGCAGATTTTTTTAACTTTACATCATACACTGCAAGTGTAAATAGGGTGGGGAGTGTTTTCCTACCATGTTTGTGTGTATTCAGACCGGGAGAAGTGTAACAGGCAAATATCCAAAAGCGAAAAGGAGAGCAGAGGTAATTGGGGGAAATGCTGTGCCTTCTCCCACAAATCACACAAAACAGCAAGTACGCTTCAGGTTGTTTGAAATATCTTAATCTGAGAAAGAAAATAACGAATACAGTCACAGTCATCATGGGGCAACTTTACGAAGGGGAAAAGTTTTCTACTTCAAACTGGAAAGTAGGAAAGCGGACTCATTTTTAGGGAGACTCATTTTAAGTTTCCAAGTTTTTTCTCTTCTGAGAAATCGCTCTCTGACAACCTCAATACTCTTGTGTTACCATCGCTATGGCAACGGCAGTTTGTTGGTGCCTGTTACTCGGAGGAACCTGGGGCGACGGAGACTGACTTTGACGGCCCAGACAAGGAGGTCTGGTTCCAGAACCGCCGGACCAAGTGGAGGAAGAAGCACGCGGCCGAGATGGCCACCGCCAAGAAGAAGCAGGACTCGGAGACCGAGCGGCTCAAGGGGGCCTCGGAGAACGAGGAGGAGGACGACGACTACAACAAGC +>XM_006965968.1 Trichoderma reesei QM6a uncharacterized protein (TRIREDRAFT_108278), partial mRNA +ATGGACGAGCAAGAACAAGACAACCTCATCCAAACCCTCACAACCCAAAACGCCTCCCAAAACAAATCCACAGCACGCACCCTCCTCCTCCTCCCCCTTCTCTCAACAATAGCCTACATCCGCCCGCTCTTCGACCCCGCGACCGCTTCCTTTGCGATATTCTGTCTCACGTCCCTCCTCGCTACCGCGTTCCTCTTGTACCGCCTTCCGCCGACCGAGACGGGTATAATCATCGTCGATGACTGGGCGCACAGACGAACTGCTTCTTCTTCTTCTTCTTCGTCGTCGTCTGTCAATGCTTCTCTACGACAGCATAATCAGTCGCTGAGGGGCCTTTTGGGAAGGGCGCAGGTGGAATGGCGGTCTCCCTTGGAGAGGACGCTGCCGTATCTGAATCTCGGTTTGGTTGTGCTCTTGAGTCTCATGGGGCTGGTAAGGGGCGACCATCGAGCAGGTGGCTTTGGGTGGGTGAGCATGGGCAACGTACCAGGCCTGGTTTACTCTGTCGCCATCACGGCAAAAGTCGTCATGGCGGGCGTTGACCCCGAAAGGGAGCTGTCGGGCCTCAAGTACGGCTACAAAGGCGCTTGA +>XM_008866548.1 Aphanomyces invadans hypothetical protein mRNA +CGTCCATTCCGCGTGAAGTCGGTTGCCGCCCGCGCGAAGGAACAACTGGCGACGCATCCCCCAAACAGGAACAGGTGATGAGGAAGCAGCAACGTGGAGGTGGAGACGGTGACTACGGATCCAGTCGCGGCCTGGAGCGTCAGAAGCAGCTCTGCGATGAAGGCATGGCGCTGGTGAACGAAAGCGTCGGCATTCAAAACTCGGGGGGAGACACGGACCTGGCTGAGCGCAATTTGAACCGCGCTGTCGAGATATTTGAGACGGCTCTGGCAATTCAATACAGCACACAAGAAGAACAGGAAGCGGCCACTCGTCTGAACAACAAGATGCTTCGCTATGTCAAAATGATCAAGACTCAAAAAGCCAAGAACCCCGCGATCGGCGGCAACAAGCGCACCGCGTCCAAGTATAACATTCTCGAACTCGACAATCTCCCGCAGATTTATCATTCCATTGCGGGCAAACTGTTCAACTCGCAAGTTGGTGACGTGTTTGAATCGCTCAAAACGACTTTTGGTTTCCAGGACAACAACGTGCTCAACCAAAAAGAGCATGTCCTCTTGCTCTTGACAAACTACAAAGAGCAGCTGGACGTTCCAGACCCCAAGGCACCGGCGAACCAGCCCGTCCCCGCTCGCGACCAGCAAAGGGAGATGCAGTTGGCAGACAAAGCTGTCACCAAGTTCCATGCCAAATTGTTTGACAATTACAAAAAGTGGTGCAAGTATATTGGCCAAAAGCCCAAATTTACTCGGGACAACTTGACTGATATCGTGCTCTTCTTCCTCATTTGGGGGGAAGCTGGCAACTTTCGACAGACACCGGAATTGCTTTGCTTTTTGTTTCACAATCTCGCTCCGGCGTCGCAATCGGGCGGTTCGAAGGAGTCAGGAGACTTTTTGGCATCGGTGATCCGCCCCATGTACAACGAACTGAAAAAGGACAACGACAAGAAGACTTCCAAGGGCCAGCGCGCCCCGCACAATGAAATTCGCAACTACGACGACTTTAATGAGTTCTTTTGGACGAAAAAGTGCCTCAAGTACAACGCGTACACGATCGGGGAAGCGTTTGCAAGCGCCGACAAGAAGGGCAATCCGAAGGTCGTGAAGAAGACGTTCATCGAGAAGCGAACTTGGTTCCGTGCCCTAACGTCATTCCGCCGTATTTTCCTCTTCAACTTTGCACTGTTTTTGGCCACGGTTGGGTTTGCTATCAACATGATCACGCTGTGCCCGGACAGTCCGATCATGTATGGCCCTGACCTGGGCAAGATTGAAGTGTTCGGGAAAAAGTACTACGACAGCGTCACCTACACCACGCCGTTGACGGACACCGAAACTACCGCCCTGACGGCAGTCGAAGTTGACAGCACTCAAAAACTTTGCAACCCCGCGAAGTTGGCGACTTGCTTGGGAGTTGGAACCTATGTCCGAGGCGAGACGTTTGCGCACTATCCCCGCGACTTCAAGGAATTGATGAGTCAAATTCCTTTTCAGGACTGCATTGAAAGGCAAAGCGGCCGTTGCACGTGCTACATTGATCTGATCGAGAAGTGCTTTTCTCAAACTGGAAATGCAACCGTATACCCTGATGGCGGTTTGAAGAGCATTCCGGTCCAGTACGATCAAAAGTTGTGCGATCTGGTGTACAAGAAGACTGCCTTGGCCATCTTGAACAACAACACAGACGGAAGACTCAACTGCGACATGTGTCGTTTGGAGCCGCAGAGTTTGTTAAAGTCGTTGCCCAAACTGATCGGTTCATTTATCGATTTCAACCGATTCACCAAGAAACGCGACTTTGGTCCGCTGTTTTTCTTGGGTGGGGTGGGGTGTTTGGTCCTGGTGTTTGCGTGCGAGCTCCTCGGTCGAATGATATCGGGTGTCGGCGTCGGATATGTCGGTCGGTCGCTGCCAGTCCCATTTGGCGCGTATTGCCGGTACACGTGCTTTTGGCTCTTTTTGTTTGCTTGCAAACTCACGTTTGACTACCAATTCATGGTCAAGAACTTGGTGGAAACGACCGTGTTCATTTGGTCGACGGACGCAAAGTTGCACCACCCGACGACCCAGTTCCTCATCAGCTTCAGCTTCCACAACATTTTGTACATTGCTTTCTTGTGGATTCCGGCCATCACGGTGTTCCTGTACGACGCCCAGATCTTTTACGCACTCTTGTCGGTCATCTTTGGGTCGGTCCGCGGGTTCAACTTGCGCATTGGCGAGCTCCGATCGTTTCGCATTCTTCGGTTGACGTTTAAGTCGATCCCAAAAGTCTTCAACAAGAAGCTCGTGTCCAACTTGATTGAACGTGGCGGCAAGAAGAAAGGCAAGAAGGACAAATCGAAGAAGGGGTCCAAGGACGATCCTGCTCCGGAACGTCGATTCCAGCGCGTCTCGTACTCGGAAGGGAGCAAGCCATTGACCGGCACGGCCAAAGGTTTCAGTTCACTGTTGGAAAACGACGGATACAACGAGCTGCGAACCCCCGGTGGTGTCGATGCGGACTCGAGTACTGGACGCAATTCCAACATCACGTCCATCACCGGTGTTTCTGGGGCTGAATTTGAGCGCACGATTCCATTCGCCATGGCTTGGAACCGCTGTCTCGCTAGTATGCGCGAAGCGGATGTGTTGAGCGACCGCGAACTGAACGTACTAAGCTACTTGATCGACTCGAAAGACGTGGCGGAGCGACGTCTGTACCCGCCAGCTTTTTTGACGGCTGGCAAGTTAGACGAGTCCATCGACATCATTATTGAAAGCTACACGTTGCACGACAAGCTCAAGTCGGACAAAAAGAAGGACAAGACTCTGCAAAAGGTTGAAGTGTCGATGCGCGAACGATTGACCAAGGACGATCTGCGCGTGGAAGCCATTTTGGGCTCGTACAAGTTTTCGTCACAAGTGATTAAGTTATTGCTTGGCGACGAACACAAAGAGTTGGAAGCGTGTTTCAGCTTCATGGAGGAGATGGCAACCAACAAGACGACGTTGAAAGGTCTCAACTTCAGCAACTTGTACCAGGCTCGTTCGTCGTGTGCGGATTTGATGAAGTCGATTTTGGAAGTGCCCAAAGGCGCCCAGGAAGGCAGCATCAAGTTTTTGCGCTCGTTGTACCACGTTATCGACAACGTCGAAGCTGTCATGGGGTGCCTGAAGAAGGTCCTCTCGAAGCAAGAACACTTGGTCAAAATTTTGAACGACACGCCATTGAAGCCCAACTCATTCTTTTTCCCTGGCGACGCACAACACTATGCGAGTTCGCAACTCCAGCGCATCGTGAACGATCAAACGGCGATTGACATTGTGTCTCGGGCGTACCAGCTCCTTACGGTGGACAACTTCGATGCCGAGCCTCGATCTGAGGAAGGGCAGCGCCGTCTACGCTTTTTCACCAACTCGCTGTTCATGGAAATGCCTGAAGCCAAACCTGTGAGTCAGATGCACTCGTTTTCGATTTCGACGCCGTATTTCAACGAAATCGTGTTGTACTCGGTGAAAGAGCTGACTGCTGAAAATGACGACTCGATCAAGCTGCTGTACTACTTGCAAACAATCGATCCGTTCGAGTGGGAGAACTTTTTGGAACGCATCAACGTCAAGGATATGAACGAAGCCTTGAAAAAGTACCCGGAAGAAGTGCAGCTATGGGCGTCCTACCGCGGCCAAACGCTAGCCCGTACAGTTCGGGGAATGATGTACAACGAAGAAGCCATTCGGTTCTTGTACTGGTTGGAAATCGGCGAAAACGAACCCATGCATTTGCACGGATGCTCATGCAATCGGTGTATCAAGTTGGACGAAATGGTCGCGCTCAAGTTCAACTATATCTGCTCGTGCCAGATCTATGGCAAACACAAGGACGAACAGCGCCAACAAGCGCAAGACATTGACTACCTGCTCATGAAGCATCCTGGTCTTCGTGTTGCATACGTTGATGGCCCCAAGAAGGTCAAGGATGGGCCACCCAAGTACTTTTCCGTGCTCATTCGCGGAATCGGCGACAAGATCGTCGAGGTATACCGCGTCGAGTTACCGGGGGATCCCATCATCGGTGAAGGGAAGCCCGAGAACCAGAATCACGCGATCATTTTCACACGGGGGGAAATGCTCCAGTGTATTGATATGAACCAAGACGGGTACCTAGAAGAGTGTTTGAAGATGCCCAACTTGCTCGCTACGGTGGACCGCAAGGAGCACTCGAAGAACCCGTTGACGATTATTGGTTTTCGGGAATACGTGTTCACTGGTGCCGTGTCCAACTTGGCGAGTTTCATGCAAATCCAAGAACTGTCGTTTGTGTCGCTGGGTCAACGCATGCTCGCCCTGTTCCACGTCCGACAACACTATGGCCATCCAGACGTGTTTGACAAGATGTTTGCCATGACAACGGGGGGAACTGCCAAGCCTTCGAAAGGCATCAACTTGTCGGAAGATATTTTCGCCGGGTTCAACACGACGCTGCGCGGTGGTCGTGTGTCCCACGAAGAGTTCATTCAAGTGGGCAAAGGTCGTGATGTCGGCATGCAACAATTGGCGTTGTTTGAGGCCAAGTTGTCGTCTGGTGCCGGGGAGTGTGTCATTTCTCGCGATGCGTCCCGAATGGGCAGCCGCCTCGACTTTTGGCGCCTCAACTCTTGGTTTTATGGCAACCTGGGGTGGTACTTCACGCAAACGATGACCGTGTTCGGCATTTACGCGTTTATCTACGGCAAGATCTACTTTGCGTTGAGTGGCCTTGACTCATTTTTCCTCAAATCCGGTCGTCTTGGGATCAGTGGAGTCCTCAACACGTCATGGGCATTGCAGTTTGGTTTCCTCCTCGTCGTGCCTGTCATTGCCGTCGTGGGTGTCGAGCGCGGTTTCCGTCACGGGTTCTCGTACTTGGTGTGGAACGTGTTGACGCTTGGCCCGCTCTTCTTTACGTTCCAAATGGGCAACCGCATGAACTATTTTGATCGGACGTTGATCCATGGCGGCGCCAAGTACCGCGCAACCGGGCGTGGGTTTACCATCAAGCACGAAAAGTTTGCCGAACTGTTTCGATTTTACGCGTTCAGCCACTTTTACCGCGGCGTCGAGTTGGTGTTTTTGCTCATCCTGTTTTCAGCATACGGGACGTTTTCATGGTGCAACTGCTCTTGGCGTGTCGACCAGCTCTTTTACAACAACATTGAGCCACTGCAGTATGAATGGGACAAGCGATGTTATGCCAACTTTTACCAGATCTGCGTGTTGCCAACGAACCAAAACTACGGCATTATGAGTTTCTCGCTGTGGATTATTGCTGGCACTTGGCTGTGGGCGCCGTTCTTCTTCAACCCGAGCGGCCTGGATTGGGACAAGTGCATTGACGACTATAACGACTGGCAAAACTGGCTGCAGACCAAGAACGACTCGTCGGAGAGTTGGTTTGGGTGGTGGTCGAACGAACTCGAATACTTGGAGCACTCTAGCGTGAGTGCGCGCGTCGTCCAGTTTTTGCGCAAGTGCCGTTTCTTGTTTGTTGCGGTTGGCATTTATCTGCAGCTCATGTATCGCTTGTTTTACAAGGACCAGAACAAGGTGATCGTGTTCGACTTCCAAAGGAACTTCATTGAGTCCCTCAAGCCATTCATCATTGTCGGTGCATTGGTGGTGGTCATGCTGCTCTTGATTTGCTGTGGGTACTGCGCGAGTCGGTTTTCGAAGCGCAGTCAAATGAAGCAGAAGAAGTTGCGCAAGATCAAGTTCAACGTGAGCTTCTTCATCATGGTGCTCGTGCTGTTCTCGCTGCTGTACTTGACCATTTTGCAGCTCGTCGAGGTGTTTTTGATTGTTGTGCTGGCCGTGTACTGGTTTGTCCAGTTTGCCATCGTGCGCCTCAAGTCGAACCATGTCGTGATCCTTGCAATGGCCAAGAGCTTTGACCGGGCCGTGGGCTGGATCGTGTTTGGTCCAATTTTGTTTATCGCCATGTTTATGCCGTTCATTTCGTCGTTCCAGCAACGCGTGATGTTCAACAGCGCATTTACGTCGGGACTGGAGGTGTCCAAGCTCTTTTCCCACGACGTCATGCCGTCGCACACGGTCAAGACCAAACGCTCCAAGAAGAAGAAGCGCGACGAGTAATTGCGATTTTTGTATACCAAAGAATACATTTATAAATTCGTCGCCATTTTGGCCATTGTTGCCACAGTGGTCATTCGTTTCCAGTGACGAAATTCGGGTTTCATTCGAATTAAAAAAAAAACAAATTCGATTTTTCC +>XM_050630547.1 PREDICTED: Bombus huntii uncharacterized LOC126871580 (LOC126871580), mRNA +TGAAGATCTTATTATATTGTACATAGAGAATGAAGTGGATAGTTTTTGGTATCACATTAGTAATACGCAATTATATAATATCCTGTCAGGATATTGTATTTCCAAATAATGAAGAGATATCTCACGTGAGCGGCAATGCGGCGATAACAGAACGTATTCCAGTGGCTGCACCAAATATATGTCCCAAAGGCATGCTTCTTTATCCTGGAGCTGGAAGTAAAAGTACATGGGTATGCGATTGTAGACCTAGATTTCTATATTTTCCATTGAATGATAGTTGTCATGAAGCATATAGACAAGGACCTTGTGCACCACAGAATTATGTTGTACTTCCTAAGGATGAAGTTATACCAAAGTGTGTGAAAAATCCTTGCCTGGAAGACGGCTTAGTACAATATAATAATACATGTTATCCTCTAAGAACTACAGGTGGTCCTTGTGCCCCTAATGGAGTAATAGGAGTGAATGAAACTACATTTGACTTAGAATGTATGTCAACAGATATTGCACCATTCATAATTATTGATCCACCTTTAAGAAAGTGTCCCGTGGGAAGCCGTAGGAATGTACTTGGAATATGTAGAGTAATTTTAACCTAATATGTTTCTATTTAACAAATTTCTGTTTTTTTAATAACCTGGTATTTATTTGTTTGGCCTCTTTCATATAATAAATATCAATATATTATTATAATTCTGATATATTACGAGAATATATATAACATTTATATTTACAAAATATAGTTCTTATTACATTTA +>XM_020521000.2 PREDICTED: Rhincodon typus raftlin family member 2 (rftn2), transcript variant X1, mRNA +GTCTACAACCATTTTGGAACTTTCTACTTCAGAGTTTCCATCTGCTGTTTGGACAGCCATCTGACTGCGCCCAGAGCACTTCTTCACATCGCAGATTCTGCCATGGGTTGTGGGCTACGAAAGCTGGAAGAGCCTGATGATAGTAGCCCTGGCAAAATATTTTCTACTCTGAAGAGACCACAAGTGGAAACAAAGATTGATATTTCATATGAATACCTTTTGCTGGATTTTACTTTAGATATTGGTTCAGCAAACCCAGATGTTATTAAGATCTCCTCTCTTCTGGATCTTAATTCCAAATTGGAAGCATACTACAAGAGAGGATATGTTGTTGTCACTATCCACCCTACAGTTCTTTCTATGGGGCAAAGAAAACGATCTCCACTGAGTTACATTTATAGAGTTATATTAACTAAAGTAAGATCAGGTATAAAGACGTCAGAACAAGGAGAACCAAGACACTTAAAGCTAGTTGTTGAAGAATGGTCTGTGAGCAATCAAACACTTACCATTGATGTTGTAAAAGGACTGTTAGAAAAGGTGAATGACTTAACTAAGAAAGGAATGAGGTTTGTCGGATTTTTAAATCCACTCAGTACCCATTCAAAGGCCTGCAATGGTACAAAATCATCAAGAGAACTAGATGCAGATTTGGGACAGGATGTTGACCTTAAATTGCCAGATCAACAAAAGCAAAACCCCGATAACCATATAAAGTGCAGTGAGGAGACTTTTACCAAAAAGCCAATGGAATTTGCAACAGAAAGAGAACACTGTTGCAGTAAAGTCACTGATGTTTTAGAGAATAGACCAGCTCCAGAGGAGGATCTTTTGCATGGAAGAGAGAAAAGGATTGGAAACGAAACCTGTCCTTGCAGTGAACCAAAGGAAGATTTCAAACTGTTTGCTGTGTTCAATGTGTCGGATGAAGACTTCAGTGAACGGTCCTACCATGAAGGCAATATATCACTCAGAGTAACAAGGAAGGGCCAAACCATTTGTACCCTGGAGGCAGATTGGTTGGAAATCACAACATCTTATTATAAAAGTGGGATGTCGTTGGTTGATTCATTCATAGTTTGGGAAACAATGAAAGGAGACTACTTGTCCAAGTCTGTGGATGGAATATTTATTTATGAGGAACATCATTTGGGGGCTTTTGAGTCAAGCAAGATACCAAATGATGCAATTGTTGTTGAACAGTGGACTGTCATTGAGGGTTGTGAAGTAAAGACTGATTATGGTCCTTTGCTGCATACACTGGCAGAGTTTGGATGGCTGGTTACTTGTGTGCTGGCCACACCTATCATTCGCCATGACAGTGAAGGAAATTTAGCAACAAAACAAGTGATATTCTTGCAGAGACCTGCCATAACCAACAATGATCTAAGTCTAAAACCATTAGAGAAAAGATCTACTCGGCAAGCAAGTGAAAGAACCAAAAATTGGAACAGAAATGTGGGTGTGACCACCGGTAAAAACAAGCATTCAGAAACAAAGTCTCCTGAAGATTCTTGCACCACTTCAGAAATCAATTCACATCAATATGGAGGCATTTCAGGCATGAGTCATATTGATAGTGTTTCCAAAGACTTGGATGATGGGCAGCTGGATCAAGAGGAAGAAACAACTCAGGTTACCTGCATATAACATTGCAGAATTCAGATCTGTATTGAAGACAACAGTTTAAAGAAAGCAGACTTTCCAGAGTATAATATGATTGATAATAGCTAATGGCTTTGCAAGATGTGATTTTTGTTTTTGTTCTGTATGAAAGTGTGCTCTTTTTTAAACATTTTCTATAATCCTACAGGGAATAAAAGTATTAACAAATATTTCAGTTCTCGGGATTTATGCAAACAGATCCAGGCTTCTTTAGCAAAGTAGAACTGTTGATTACAATTTGCTATCAGAAAGAGCTTCACCTGATGATTTAAAATTACGTTCAACAAATTTAGGAAAGCCATAGCAAAGCATATTTACAGATGTTTATATTTACTTTTAAATTCTCAAGTAATATTTTTGTTACTTTTTCTATTTGTATGTGCTAATTTTTAAAAATCATTTGTTACTTTTTTCCTGTCATTTTTCTTTGCATATTCTTGGGATCATGTTTTGCAATCAACTTGTTCAAGAATATGCTCATGCAAAACAGTGCTGTCTCTGCAAGATCGAAAGGAGTCATTTTTGAGGATTGTTCAGTCAAGGTAACGTTAGTTGTCCTGCTAAGTAATATATGTATGGCAATGAACTG +>XM_047696666.1 PREDICTED: Lutra lutra methyl-CpG binding domain protein 1 (LOC125081859), transcript variant X5, mRNA +CCAGCGGGTTTCCGGTTCCGGGAGCAACGAACGGCCGCGGCAGCGACAGCTACCGCTTCAGAGGAAGCGTCTGCGGAGGAGGAAGAAGAGCAGGGCAAGGCGGGAGTCACAGGCGGGACCCTCGCCATGGGTCCGCGGACCTAGAGCGGCGGAAGCTACCGGCCTGGTGCCGAGCTGGCCGCTGCTCCTTCCCGTGGCTTCCATGGCTGAGGACTGGCTGGAGTGCCCAGCCTTGGGCCCTGGCTGGAAACGCCGTGAGGTCTTTCGAAAGTCAGGTGCCACCTGTGGACGCTCAGACACCTATTACCAGAGCCCCACAGGAGACAGGATCCGAAGCAAAGTTGAGCTGACCCGATACCTGGGCCCTGCGTGCGACCTCACCCTCTTCGACTTCAAACAAGGCATTCTGTGTTATCCAGCCCCCAAGCCCCAGTCCTTACCTGTCCCTAGCAGGAAGCGGAAGAAACCTTCACGGCCAGCCAAGACTCGGAAACGTCAGGTTGGACCCCAGAAGGGTGAGGTCAGGAAGGAGGCCCCAGGGGATGAGACCAAGGCTGATGCTGACACAGCCCCAGCTTCACTGCCTGCTCCTGGGTGCTGTGAGAACTGTGGAATCAGCTTCTCAGGGGATGGTACCCGAAGACAGCGGCTCAAGACATTATGCAAGGACTGCAGAGCACAGAGAATTGCTTTCAACCGGGAGCAAAGGATGTTTAAGCGTGTGGGCTGCGGGGAGTGCGCAGCCTGCCGGGTAACCGAGGACTGCGGGGCCTGCTCCACATGCCTTCTGCAGTTGCCCCATGATGTGGCCTCGGGGCTGTTCTGCAAATGTGAGCGGAGACGGTGCCTCCGGATTGTGGAAAGGAGCCGAGGGTGTGGAGTGTGCAGGGGCTGTCAGACCCGCGAGGACTGTGGCCGTTGTCGAGTTTGCCTTCGCCCTCCCCGCCCTGGTCTCAGGCGCCAATGGAGGTGTGTCCAGCGGCGCTGCTTACGGCACCTTGCCCACCGTCTCCGTCGCCACCATCAGCGATGTCAACGACGCCCTCCCCTAGCTGTGGCTCCCCCTGCTGGTAAACGTAGCCGCCGCAGAGGAGGCTGTGACTCCAAGATGGCTGCCCGGCGGCGCCCCCCCCGGACCCAGCCACTGCCTCCAGTTCCCCCATCACAGCCTCCAGCGTCTCCAGAGCTGCAGCCTTACACGAACCGTCGGCAGAACCGTAAGTGTGGGGCCTGTGCAGCTTGCCTGCGCCGGATGGACTGTGGTCGCTGTGACTTCTGCTGTGACAAGCCGAAATTTGGGGGCAGCAATCAGAAGCGCCAGAAGTGTCGTTGGCGCCAGTGCCTGCAGTTTGCCATGAAGCGGCTGCTGCCTAGTGTCTGGGCAGGATCTGAGGATGGAGCAGGGCCGCCCCCACCGTACTCTCGTCGAAAGAGACCTGGCTCTACTCGACGGCCCCGTCTGGGCCAGATACTGAAGACCTTGACCACACCCACAGTCAGATCAGGCCGTGCCCAAACTCCAATGAAACAGGAAACGGGCAGTGGCTTTGTGCTACCCCCACCTGGCACTGACCTTGTGTTCTTACGGGAAGGTGCAAGCAGTCCTGTGCAGGTGCCTGGCCCTGCTACAGCTTCCACAGAAGCCCTCTTGCAGGAGGCCCAGTGCCCAGGCCTGAGTTGGGTTGTGGCCTTACCCCAGGTGAAGCAAGAGAAGGTGGATGCCCAGGAAGAATGGACACCGGGCACAGCCATCCTGACTTCTCCTGTATTGCTGTCTGGCTGCCCCAGCAAGGCAGTAGATGCAGGCCTGCCACCTGTGAAGCAAGAGCCATTGGACCCTGAGGAGGACAAGGAGGAAGAGAGCAAGGATGACTCCGCCTCCGACTTGGCCCCAGAGGAGGAGGCAGGAGGGGCTGGCACACCCGTGATCACGGAGATTTTCAGCCTGGGTGGAACCCGCCTCCGGGACACAGCGGTCTGGTTGCCAAGTCTGCAGGGCAGGCAATCGGGAAGGGAAGATGGATGTAAAGTGTGGGAGACGGAGGACACTTTGGCGTGCACGAGCAAGAGCTGGAACCGGCGAGGATGGCCTAGAACCCATGTCAGTGTCTCACCATCTCCAACTGCGATAATGTGGGTGTCCTGCAGAAGAAGCTGGTGCCCTTCATCACAGAGTTAAATACTCATCTGGCCCAGGAGTTAGAGAAGCAGAAGGAAGATCCAGGGGAAGTGGAGCAGCTGCAGGCCTGACTGCAGGCCTGACTGCTGCCCCACACCAACGAGGTGAGCCAGCAGATAAGTGACAACATGTGTGAACTGCAACAGTGCCTGGTGCGCCTGCACCAACCTTCCGAGTGTAAAAACAGTATGCTGCTGCTTCACTTCTGTCCTCCAGTTACCATGCAAACTGTCTCTTGTGGCCCATCCTAACCGGAAGCATACAGGGAAGGGAGTTCTGGGAAACGTAGCCTAGTCAAGGTGACACATTACAAAGCCACCCTGCCATGAATCAGCTCCCAAGGGTCTCACTGCTCACCTGAGGATAACTTGATAAAGCTGCGTTGCTGGAAATGCAAAGCTGAAGACCATGGATTTCATGGTGACCCCAGCAAGTACAGAAATACTGTCAAGCCTACCCAGAAAAAAACTGGCTGGTCTCGGCTATTTTTGTGTCATTCATTCAAGTAATGAGAACCTGGCCCATGGTAGGCACTGTACTTGATACTGGGATACAGGAATGAAAAAGATACAGTCCATGCAATTTTATTAAATAACATAAGTATGTATTACAAATGGTGAATGGATATCCAACTTTATCATGGAATTTAATGGTGAAAATAGAGAATTCAGGAAACTGTCGGGAGGAAAGCTCTTGCGTGAACCTTGGGGCACAATAGGAATTGGAAATAATATAAATAGTTTCTATCTCTGAGCTGTTCTATTTTAAAATTATTTTAAAATGATTTTGATTGTCCCGTTTACTGTTTTATATATTTAGTGTTTCTTTGGGGAGTGTCTTGATGGTGTAACAGTGTTGACTCTGAGAAAGTGGGATGGTGGGTGGCAAGATCAAGGTCAGGTTCTGTCGAAGGACCTTGGGCCAACCACTTCTCTAGGCCTTGGGGCTTGGCTGAAGGTGGAGGCTCACCGCTGGTCCCGGTCCCGCCCCTCCACCGTTTTAATAGGCCCCCGCCAGGGGGCGCCGGGGCCGCGGTCATCCCACCACTGCTCTGGGAAGACGCAGCCCCTCACCCCTGGCCAGGGCGGCCCGGGGGCGTGGCCTCCACCCCGGCCGAGACA +>XM_019948349.2 PREDICTED: Tursiops truncatus tripartite motif containing 44 (TRIM44), transcript variant X5, mRNA +CCTGACGGGGACAGGGAAAGTGGAACCGGGGCGGCGCGGGGGCCGGCGGCACCGCGCTCGCCGGGGCAGCGGGGGGGCCGAGCGGGCGGCGCGGCGCAGGGGCCGACGGGGGCGCTGGGCGGCTGCGCCGGAAGTGCCCAGAACGCCGGAGGAAGCACAGCGGCCGCCAGGCTGCCGAGCCGGCGGCGAGGCCCTGTGCTCCTGGGCTGGGTGCAGACTGCTGGGAACAGGCGGCAGCGGCGCCGAGGCTGCGGGACACGGCGCGGCCAGTCTGCGGGACGGGCCCCAGGTGGGGAGGAGGACGCGAGGAGGCCGCGCCGAGGCCAGGCAGCGAGCTCTGAAGCCCGGAGACCCGGGCCGCGGCACAGCTCCCACATGGCCTCCGGAGGGGGCGCGGCCTTCGAGGAGCTGCCGCCCGACGGCACGTGTGATGAGTGCGAGCCAGACGAGGCTCCGGGAGCCGAGGAAGTGTGCCAGGAATGCGGCTTCTGCTACTGCCGCCGCCACGCGGAGGCGCACGGGCAGAAGTTCCCCAGGCACCACCTGGCCGAGTACGTCCACGAAGCCGCCCAGGCCTGGACCCCGGGAGCCCGGGGGGATGGGGCGGGAGAGGAAGAAGTCGAGGCCCAGGTAGAGAACGAGAAGGCCCTAGAAAGCGAGGCGGGGGAAGAGAGCGAGTCCGAGGAAGACTGTGAGTCCGAAGAAGAGAGTCAGACGGAGGAGGAGAGCGAAGACGAGAGTGAGGAAGACAGTGAGGAAGACAGTGAGGAAGAAATGGAGGATGAGCAAGAGAGTGAAGCAGAGGAAGACAACCAGGAGGAAGGAGAATCGGAAGCGGAGGGAGAAACTGAGGCAGAAAGCGAATTTGACCCAGAAATAGAAATGGAAGCGGAGAGAGTGGCCAAGAGGAAGTGTCCGGACCATGGGCTCGATTTGAGTACCTATTGCCAGGAAGATAAGCAGCTCATCTGTGTCCTGTGCCCAGTCATTGGGGCACATCAGGGCCACCAGCTCTCCACCCTAGACGAAGCCTTCGAAGAACTAAGAAGCAAAGATTCAGGCGGACTGAAGGCGGCTATGATAGAGTTGGTGGAAAGGTTAAAGTTCAAGAGCTCAGACCCTAAAGTAACCCGGGACCAGATGAAGGTGTTTATACAGCAGGAATTTAAGAAAGTTCAAAAAGTGATTGCTGATGAGGAGCAGAAGGCCCTTCATTTAGTGGACATCCAGGAAGCAATGGCCACAGCTCATGTGACTGAGATACTGGCAGACATCCAGTCCCATATGGATAGATTGATGACTCAGATGGCCCAAGCCAAGGAACAACTTGATACCTCTAATGAATCAGCTGAGCCAAAGGCAGAGGGCGACGAGGAAGGACCCAGTGGTGCCAGTGAAGAAGAAGACACATGAAGGCCTGCCATCCCCAGTGGAAAATCATCCCTTCCCCTTGTGTGTATGTGACGGCGTATATGTAATGGCTTCTGATTCCTGTGAAAGCTGCCCAGCAACAAACGTGCTTCCACCAGATGCCTCCCCAGATCCACAGCAGGCACATAGCTCTCCAAGGAATGACCAGTTTTACTCTTGCTGACTGTGCTTCTCATTCTCTTGTCGTGATAGGTCAAGGAAAATGCCCCTTTGATCAACCAGGAGCAATTAAAGGGTCCTTCAGGTAAATCCCTCGATGGCTGCTTTGAACTTGCTCGGGAAAGCCAGCCCCTGTCATAGTGTATACCCAAACAGTATCACTTCATTAAGAAGGATCTGGAATAATCTTGAAGGGCAGTCAGAATTTGTTTCCCTACCTGCTAATAAAACCACACTTTATTCATATTGAAGCATGGAATAAATGAGGGAAAAGTAGGGGCGAATCAACCCACATAGTTCGTCTCTAAAAGTCCATTTAATACATCTGTGAAAATGTGGTTTCATGAAATAATATGGACGGCTTGAAAACAGATAAAGAGTTAAAAGTTAGAAATATATAGAGATATTTTTAGTACATGAGGTTATCCAGGATTTCAGATTCATAATTCAGTGCTGTGGAAATGAAAA +>JF973483.1 Nocardia cyriacigeorgica strain DSSHB7 16S ribosomal RNA gene, partial sequence +CTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCGACAGGGACGAAGCGCAAGTGACGGTACCTGTAGAAGAAGCACCGGCCAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTGTCCGGAATTACTGGGCGTAAAGAGCTTGTAGGCGGCTTGTCGCGTCGATCGTGAAAACTTGGGGCTCAACCCCAAGCTTGCGGTCGATACGGGCAGGCTTGAGTACTTCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGAAGTAACTGACGCTGAGAAGCGAAAGCGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGGTGGGTACTAGGTGTGGGTTTCCTTCCACGGGATCCGTGCCGTAGCTAACGCATTAAGTACCCCGCCTGG +>XM_004257108.1 Entamoeba invadens IP1 hypothetical protein (EIN_015440) mRNA, complete cds +ATGAGTCAATTGGATGGCTATAACATGATGATTGTTTCAAAATATTTTAAAGATATTAAAGACTTTGCCACCCTCATTTTTGTGTGCAAGAAATTTTCAGACACCGCTGTTAAGTTTCATTTCAACCCAATACCTTTAACTCGAGAAACACTCAAATTCTTCCCACATATTGAAACACTCTTTTTGTACTCAATAAAAGACCCGATACTCCGTGACGGGAATATTCAAAGATATTTTGCGAATTTCACATGTAGTGTATGGGGATACAAATTCTATTTGTCTCATGGTGTCGAGTGTCGAGACGTCGGGTTTTTTTATAAAGACTGTCTGTCAGAAGAACCGCCAGCAATTCCAAAAGTAGTGTCATCCTTCAATCCATATTGTTTTAGTCGTCACGCGATGCCAACGATTATCGTCACCAAGAACATTCGAAGAGTTGCTGAGCTGTCGTTTGCAACAGCAAATGTTCGGAATGTTGTTTTTGAAAATTTGATAACAGACCTTCCATTTGGGACATTTTTGAATTGTAATCACCTCACAAACATCACTTTACCACAGACAATCACTTCTATACAAAACTTGTGTTTTTGTGGGTGCATGTTTTCCAGTATAAAAATCCCCGATGGCGTGGTTTATATGGGAGAGCAGTGCTTTTCACATTGTATAAAATTAAGGGAAATCCATTTCCCTCCAAAAGTAACAAAAATTGAAAATTATTCTTTTATAGGAAATGACGCACTTTATTTTATTGATTTTAAAAACATTAGCGAGATCGGGGAGAGTGCCTTTTATAAGTGTAAAAGTCTTCATAATATTGAATTTGGTAAAAGTGTCAAAAAACTCGGGGAAAGTTGTTTTTCGAATTGCACAAATTTAGTTTCTGTAAGATTCCCTATAACACTCACTTCGATCGGTTCGCTTGCGTTTTCTAAATGTAAACTACAACTTGTGGATATCGATTATACACTCGAAGATAACAGGGAAGTGCGTTTTGTTCAAGAAAACGTCGTGTTTCAGCACAACAAAACGCTTTTATCATTTTATTGTAATAATCCTGATATTAAAGTGAATGGAATTAATGTCATACAAAATACGCATTTTGTAATTTCAAATGCTATTTTGTGTTTGTCCAATTATTGTTTTTCAAATTGTTTTGACATCACAGAAATGGTCATTCCAAGTTCAGTTTCAAAGATTAAAAATGATTGTTTTTACCGCTGTGCAAAATTACACAAAGTGATTTTTATGGAAAACAGACAAAGTGATCTTATTCTTGGCCAAAACGCATTTTATTCTTGTGCTCAATTAAGTGTTATAAATGTGCCAAAAGAACTGACACGTGTTGGACAAAAGTGCTTTTCACAGTGCAATTTTTCCATTTTTGATTTTCAGAAGAGCACAAAAATAAAATCAATTAAAGCTTTTACTTTTGAAAATGATAAAATGCTCACCTCAATCCAAATTCCGTCCACAATCACTAAAATTGGACAATACGCTTTTTGTGGGTGTGAAAAGTTACAAATTTTTTTATTTCCTACGCAATTACACAAAATAGAAAATAACTGTTTTTCTCACTGTAATTTAACAGCTCTTGACTTTGCACCACTTCACAATTTGACATCAATTGGAGCGTCTTCTTTTTCGTTTTGTTCATCTCTTCGTCAAATTTCAATGGGTTCAGTGTTAACAAAACTCCCTGACAATTGCTTTGAAAATTGCGTTTTGTTGTCCGCAATTGAAATTCCACAAAATGTGACATATTTAGGAAATAGATGTTTTTCATATTGTTACAGTTTGAAAAGTGTTGTTCTTCCAGACAACTTGCGTTTTGTTGGCCATCACTGCTTTTCGTGTTGCGCAGTTCAAAATGTGATTTGGCCATCAATTGCTTCCGTCCCAAATTTCTGTTATTACAATTGCAGAAATTTGGAATCTTTCACTTTTGCTGAACAACAAAATGCGTCAATCACAATTGGTATTGCCTCTTTCTACAATTGTATCGCGTTAAAAAGAGTTTTGTTATCAAAAAATGTCACAGAAATTTGTGATTTTGCATTTTCAAATTGTAAAAAGATTTTAACTTTTTCAATCCCACAAAGTGTGACTTACCTTTCTTCTTTCTGCTTTGAAGAGCCCAACGACATGTCCGCGCTTTTCATTGGTTTTTGA +>XR_005782624.1 PREDICTED: Puma yagouaroundi uncharacterized LOC121013303 (LOC121013303), ncRNA +TCCTGGAACTCATTTGTTTCTGACTCTTCGAAGACCTCCCAAGTGTAAGGTCTTTTCCTTGTAAGACTACTCCAAACAAATGCAGTGACCTGAAGACTCCCAGAATAGGCACCACAAATTCTCTAAGAGGAAGGCTTATTTCTCTCATGCCCAGCCTTCCCTCTGCCCACCTGTCAACATGTAAACCTCGTGGTGTTTAGCCAAATTCCGTGCTTTATATGTTAGTGTCCTTTATCACATGCTATATTTCAAGGCAAATGAGCTAAAACATGATAATAACTAGCAAAAGATGCCACTCCTTTCAAGAAGGGTACCGTTTAGGCAGAGAATTATAGGGGGATAAAATGGAACAAAAACCAATAAGGCAAATCTTAAGAATATGGCCAGAAGACCATCCTCTTAGAGTTATTCTGAAAAATGGAGCTAAACACCATGTTGTCTGACTCAGAGAAGGATTAGATTTCAAGGGGAAATGGATTTGGGTCCATTTCCTTGAGAAGAGTTGCTATGAGACTGAGAGCCAGCATTCTCTTCACTGAGTGTTTGAGGGATAAATGCACAGAGCAATTTAGCAGCATTTCAGAAATGTAAAGTTCTCAGAAGCCACATTCCAAGTGAAGCAGATCTTGCTGAAGAAGTTGGGATGTGTGAGTCTAAAAAGAACGCTTTGAGCCCTCTGCTTCTCTTAGCTTAAATCCATATATGGCTTTGTTGCTGTTGCTGTTTTCATTTTAAACATAACCAAACAACACTGGTGCCCAGGAAATGGACTTCCAAAGAGAGGAGGGAAAAGCCCAAAAAATTCTTTCAGCATAAAGAAGACCAGTCTTGTTTAAATCAAAGAAAGGGCGCTGCCATCCCTTCAACAGCCAAGACCACAGATCTTGAAATCTTCTTCATCTCAGTGCTCCATGCTATACCCACACTGGAGTAACGAGGGTTTGCTCAGGCTCTGCTCTCTTCAGAGGCTGAGGTGGATTCAGCCGTGGCCTCAACTGCTTATCCTGACCAAACCCAGAGGATGTAGGAAAAGCCCTTCTCCACTCAGGAGTATGGATATCATGCAGACCCCTGGAGACACGGTGGTACTCAATAAGTATCTATGAGTTGACTTACACTGAATCCGAACTAACACAGACTTGAAG +>XM_053456309.1 PREDICTED: Spea bombifrons ADP ribosylation factor like GTPase 11 (LOC128474053), mRNA +CTTCCTGAGCTGGACTGCATTACTTTATCCTGTAGTCACCAAACTTCTGCTTTCTGGGAAACTCTTCTTAAAGACAGGATGAAAGACAGAGCACAGAAACACTGGTCTTTCAAGGCAAAGGAGTATAGGAATTAATCAAGACGTCATCATGGGAGGTCAAAATTCAACACACAAGAAGCAAGCAAGAGTTGTGATGATGGGTCTGGACCTTTCTGGAAAATCAACTATTTTATATAAACTTAAAATGAATCGTACGATGGAGACTTTTCCTACTGTGGGGTTTAACGTGGAATCCTTAGAAATGGCTAAAAATATGTCAGTAACCATTTGGGACGTTGGTGGCCAAGACAAACTTAGATCGAATTGGAAAGAATATCTCGAAGACACAGATGCCCTGATCTTTGTGGTTGACAGTTCAGATACAAGCAGACTACCAGATGCTAGAGCAGAGCTACAGACTGTCCTGAAGGATGAGAATATGTCTGGAGTTCCATTCTTAATTCTGGCCAACAAACAGGATGTGCCTGGTGCTTTGTCTACAAATGAACTGTTACAAGGTCTCAAGCTGGGAAGCTATGAAGACAGAAGTTGGGAGATTCAAGGCTGTAGCGCATACACGGGAGAAGGTCTTGCTGAAGCCATGAGTGCAGTGTCACGTCTACTAAAAAGGGCATAAAACTCCAAATGGCTGTTTAATTTTATTTGTGGCTCTTTCATATATGTAAAATATCCATCAAAATACCGTATTCAATCATGGTTTACAAGCCGGTAGATGTTACAGGTTTGAGACTCTGGGAGTTTTACACATTTCATCGTATAATTATCTACATGGATTTTACTTGAATAAGCCATGTGTTATAAAATGATACAGAAAAAAGACGATCTAAACTCCAGTGAGTTTGTTTACACTTCTGCTATATGATGTCAACATTATGTGTCATACTGTGGTATACATAATTTTTGTTAATGAGTTAATAATGAGTAATTAAAATTGCATTTAGTTATGTTTA +>XM_023958536.1 PREDICTED: Oryzias latipes uncharacterized LOC101166636 (LOC101166636), transcript variant X1, mRNA +TGTCAAGAGTCAGCTAACATCCTTAAATCATGTTAGCGTGTTTTTATTTCCGCTCCCAAATGCTTTGTTGCACATCAAAACACTTAAAGAGAGTAATGCTCTTCCAGCTCATCTTAGGGTGTGTGTAATGTCTGTGTGGGAAACATTGTTTCCTCCCACTCGTTGCTAAATTGATGTAACTAGGCGGTTGAAACCACAATTATCTGAGTGTGCCATCGCCATGGGACGAAGGAGCCTGCTGCAAGTTTGTTTGCTTCTTCTCGCCTTTTTCAAAGATATGTCCTCCCTAAAGATTCGTAATAAATTGCTGGGTAAATGCCTACAGGTGTCAGAGGAACGTGCAGGAGGAGGAGTTTCTCTAGAGGGTTGCGATCCATTTTCACCCCTGCAGGAGTGGCTCTGGCTGCCTGAGGGCCATGCTCTGCGCAGTCACCACACCGGGGACTGCCTGACTGCACCGAATGCGGAGTACGAAGGCGTCCGCCTACAGCCCTGCATTTTTACAAGTGGAGTGGTCATAGTGGATGTGGGAGGAGAAGCTAGCAGCCAGGCATGGAGCTGCTCCAAGAAAGGACACCTGACTTTGAAGGGCAGTGAGCGACACCTGACTGCTTCTCATGAATCCAGTTTAGTCTTCTTGTCAGGGGAACATAAGAGGCCAGGTAGTAGGTGGCGATCTCTGGATAACCAGACGCTTTGCAGTGGCAAAGGCATCAAACAGGACATAAGCCAACCCCAACAGCAGCTGGGAAAGACAAAGCCAGTCATCTCTCCAAGTGATGGTTCAGACACAAAGAGACTCGCCGACACATTTTCAGAAAATATGTCTTGGGGACTTGAATTTTTTCCTTTAACAGAAATTCTAGATGCGGCTACAGTGGGTACTGCTGGGACAGATTCTTATCAAGCAGGAAATATGACTCATTTCTTCCTCAGTACCAAATCCCCTCAAGATCCAACCATGATCTTTTTCACTATAGACTACGGGATGGGCTGGAAGATCACAATGCTGGTGTTGACCTCCCTGGCTCTGGTCTTAGGAGCCGTCATCCTCATCCTCAGTGTTTACTCTAACAGAAAGAAGAAGATGGTTTGTGTCGTGAAGTCGTTCAATCCCAGACCAGACATGAGTGCTCCGGGATCCCCGCTGCTCAGTGAAAGAGCCCCACTGACGGAGCACGCCATGCATCTCTCCCACTCTTCCCCCTACTTACAGCGAGGAGATATTCTAATAGAATGGAAAGATGGCACTGTTACTCCCCTGTATGAGGCTTAAATGTCGATGAAGGCAGTGCAGATGTGATTGTTTTCTGTAAAAGCACGCCGGCAGCTTGTGTGTGATTTGGCATGTTGCCCCACCACAACCAGCATCTCTCCCAGTGTCTCCTGGAAGCAAAAAAAAACAAAATTGAGAAAGTGAGGTGAAAAGAAAACTCAGCCTCAGCATTATTAGAACTAACTTTGTGAAGCTTTCAGAGTAGAATGTTAGTTTTCAAAGAAAAGTTCTTAACTGAGTTGTGATTTGACAGACTCCAAGGAAGACAAACTTTACCACTTTAGAAGCACTTAAATAGTTCAGCAAAGCCACTACATCTGTCATCTGGTATCAACCTTTGCACCAGTAAATAGAAAATTAATATTTACTTGAACCATTATGACCAGCTGACCTAGTCTCTGTTTCATGACAAACACTGCTGTGCTAACTGTTTGGCAGTGCTATGTGTGCTTTATTTTGTGAACTTAATTTTGTTTAAAAAAAAATTAAGATCCCCTGTTACTACTAAGAATCCAGATTTCTTGTCTGATTTGTAGATTTTTTTTTTTTGCAGTCTGGTGGTGTTGAAAACTGTTTCCAATGTTTTAAAGGTAGAAAGCTAACTAAATTCATTTATTAAGTGCAAACTTTTGTAATTGTGTTGAGTCCTGCATGTACACTGACTTGTTTGTCCATTCATGAGGGCTCTTCTTTAGTTGTGACAAATTCTCAGTTGGCTTAAAAGTATTTTCGGTAGTGCCTCAACTGCCTTTAAAGATCATCAGATTTCAGAGTGAAGAACATCACAGGCCAAATTCAGAGATCAACTGAAAGATAAACTGAACCTTTGGATTTAGTTGCTGGTGGTAAAAGTGTGAGCAAAACTCAAATTAAAGAAAGGATCAGCTGAATTTGATTTGACCACAAGGAGATTAATGGATTATTGAATTGAGAGCATTGTGACATTGCTGGTAAATATCTTAACCCTTGTGCTATCCATGGCCCGTTAACATTTGGAGTGGGGTCATCTGGACCCCACAAGACAGTGCGCTAAACTTTTATTCTTCAATAATTTGTGAGATTCACTTGTGTCCATGGAGTATATGAAATCCTCTTCACTTTTATCCACCTTTGTCCTGGTAGGGAGTCAATGTAAGGGTGGGGTCATCTGGACCCCATAAGATAACACAAAATCAGAATAGGTGGGAAACTGTGTACTTTGGACTGTTACCTAATAAGGCAGGGCCATTTCAGGATCAAACCAGAAAAGCAGGTTTTGTCATGACGTAATCTAGGAAATTGCAGAATAACATCTTAATTATCTGTAACTGTGAAAGTACTCTGGAGCTTGTTTTTGGGTAACAATAACTGGGTAACAACTGGCATCTTGTGAAAGGGGACACGCCCTCTCCTTTTATCAGTCGGGAAGCTTCTGTTATCCGCATTGCTTCACAAGTTATCCCAGGAAAAAGAGAAATAATAGTTTGTTTAAAAACAAGAAAACTAACAACAAATCACAGGAAAAGTTTTTGTTTTAATGTTTTCTAGCCTGTAAACAAGCAATAAAATGAGTTTTATACCTAA +>XM_018291179.1 Pochonia chlamydosporia 170 vacuolar ATP synthase (VFPPC_13402), partial mRNA +ATGGTCTCCGAGCTTTGCCCCGTTTACGCGCCCTTTTTCGGCGCCATGGGTTGCACCTGTGCCATTGTCTTCACCTGCCTGGGTGCTTCTTACGGTACCGCCAAGTCTGGTGTTGGTATCGCCGCCATGGGTGTCCTCCGCCCTGACCTTATCGTGAAGAACATTGTTCCCGTCATTATGGCTGGTATCATTGGTATTTACGGTCTGGTCGTGTCCGTCCTTATTTCCGACGGTCTGAAGCAGGAGCTCCCTCTGTACACTGGTTTCATCCAGTTCGGTGCTGGTCTGGCTGTCGGCCTTGCCGGTCTTGCTGCCGGTTTCGCCATCGGTATCGTTGGTGACGCTGGTGTCCGAGGAACTGCCCAGCAACCCCGTCTCTTTGTCGGCATGATTTTGATTCTCATTTTCGCCGAAGTCCTGGGTCTGTATGGTCTCATTGTTGCTCTTCTCATGAACTCTAAGGCTACCCAAGATACTGTCTGCCAGTAG +>MN512539.1 Penicillium crustosum strain MMS small subunit ribosomal RNA gene, partial sequence; internal transcribed spacer 1 and 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +TTTCCTGAACTTGCGGAAGGATCATTATCGAGTGAGGGCCCTCTGGGTCCAACCTCCCACCCGTGTTTATTTTACCTTGTTGCTTCGGCGGGCCCGCCTTAACTGGCCGCCGGGGGGCTTACGCCCCCGGGCCCGCGCCCGCCGAAGACACCCTCGAACTCTGTCTGAAGATTGAAGTCTGAGTGAAAATATAAATTATTTAAAACTTTCAACAACGGATCTCTTGGTTCCGGCATCGATGAAGAACGCAGCGAAATGCGATACGTAATGTGAATTGCAAATTCAGTGAATCATCGAGTCTTTGAACGCACATTGCGCCCCCTGGTATTCCGGGGGGCATGCCTGTCCGAGCGTCATTGCTGCCCTCAAGCCCGGCTTGGGG +>XM_002370192.2 Toxoplasma gondii ME49 ribonucleoside-diphosphate reductase large chain mRNA +CCGTTTCTGGGTCGTTTTTTGTCTTGGCGGTTCTCTTCGTGTGACGCGTGGCGCAGAGTTTGTCCGTTTCCGTTTGTCAAAATTTCCGTTTCCGCGTCCGCGGTGTGGGTTCGAGCACCGCTGACCAGCTTGCGTTTTCCACCGACGAAACTGACACATGCGGTGAGCCTTGTTTCGTTCTTTGCGCGCCGAAGCGCTCGCTGCTGGTTTCCCGCGCCTGTCTGGAAGAAGACGCCGTTCTCTCTCTGTGGATACCAGACGCCGTTAACGCTGCTGCCAGACAACTTGAAAGTGTTTTTCCGAGAGGGCTTTTCCGCAGTTCCAAAACATTCCACCGTGTTTCTACCGTTTTGTCGGGCTTTTTCGCGTGCACGCATTTCCGTGGGACAACCATCGTGGCCCCTGCTCGTCTTCCACTCGCCACCGTAAAAGCTAGGTTTCCATCGCACCGTCAGCCACCGTCGACCGTCCACCCGCCCTCCCCCCCTGGCGTGGCCCGTCTCGCGACTCACTTTCCTCGGAACCGAGTCGCGATTGTGTGCAACGAAGAGCGAATTTTCTCCATTTCCAACAAAAAGTGTCTCAACGAAGCGGAGAAACATCGCCACACTACTGTTCTCCGCCCCATTCTTCCGCATTTCCAACCTGTATAAAGGTATCCCCTTTTCTCTGTCGCGGATGTGTGTGTGTTCTAGCCTCTGTGTATCGGTATGCGATGTCCAAAAAGTAGCTGAGTGCGTTGGCGTCTGTGTGTGCGTTTCCTGTTGTCTCCTTTGTCCTCGGAGTCCCTCCTTTTGATCGTTTCCAGATTGTTTCCTCTTGGCGCTCGCCAGCCTCCGTTCTGTCGCAGACTCAAAACCGCCGTGTCCACCCGCTGTTGGCGGCTACACACCCGCCACCTTTGTCTTCTATCGGTGTACACACCCCCCTCCCACACTTGCGTGCGTTGCAGAGAACGCATTTTTTTCTTTTTCCCCGCTTCCCCGCGTTTCTCTCCTCAGTCCCCCTTTTCCCAGTGCCCCCGGAAGTCGCTCGTGTGCCCGTCTCAACTCTGGTGTGCCTGTCGCCTTCCCGCCGAGCAAAAAAATGGAAATCCCGGCGCCCTCGAGTCCGACCGCTCTCAAGGCGGCCGTACCCGTCTCGTCTCCGACCATGGCTCTGCACACACACGGGTCTCTCAGCAGTTCTTTTTCAGAGGCCGTTTCGCCGTCCAAAAAGACAGGATCTGCTGGCGCCTCTCCCGTCCACGGCGCAGGTCGTGGCATGTACGTCGTCAACCGCCGCGGCGAAGAGGAGCCTGTTTCCTTCGACCAGATTCTGAAGAGAATAGAGAAGCTCTCTTTCGGCCTCCACCCTCTCGTCGACCCCGCTCGCGTTGCACAGGCCGTTATCAACGGCATGTACGCGGGGATTCGAACAAGCGAGTTGGATGACCTGGCTGCACAGACCAGCGCTTACATGGCCGCTTCTCACCCTGACTTCTCCAGACTGGCTGCTCGGATCGCCATCGACAACCTCCACAAAAACACAACAGACAACTTCTTGACTGTCATCGATCAGCTGCATGGCTACGTCGACAAACTGGGGCGCGAGGCGAAGCTCGTCAGCACTGAGGTGTACGAATTCGTGAGGGAAAATGAGCAGGCGCTGAACGAGGCTCTGAACTACTCCAGAGATTTCGACTACGACTATTTTGGATTCAAGACACTGGAACGGTCGTACCTCCTGAAGATCCACGACCGGATTGTCGAGCGTCCCCAGCACATGCTCATGAGAGTCGCATGCGGCATTCATTGTGGGGATGTGGAGAAAGCAATCGAAACCTACGAACTGATGAGTCAGAAGTTCTTCACGCATGCAACGCCGACCCTGTTCAACGCCGGCACCCCCCGCCCACAGATGAGCAGCTGTTTTCTGCTGACGATGCAAGAGGACTCGATCGATGGAATTTTCAGCACACTGAAGCAATGCGCGTTGATTTCCAAGACAGCTGGGGGCCTCGGTCTCGCCGTGACAGACATTCGAGCCACAAACAGCTACATCCGAGGAACGAATGGCTACTCGAATGGCCTTCTGCCGATGCTCAGAGTCTTCAACGACGCCGCGCGCTACGTCGACCAGGGCGGCGGCAAACGCAAAGGCAGCCTCGCCATTTACTTGGAACCTTGGCACTTTGATGTTTTTGATTTCCTCGACATCAAGAAGAACCATGGCAAGGAAGAGCGACGGGCGCGCGACCTCTTCTGCGCCCTCTGGATCCCAGATCTCTTCATGGAACGTGTGAACGACAACGCGGGGTGGACGCTGATGTGCCCTAACGAATGCCCCGGTTTGACGGAGGTGTGGGGCGACGAATTCAAAGAGTTGTACGAGCGCTACGAACGCGAAGGTCGAGGCCGGAAGACGATTCCAGCTCAGCATCTTTGGTTTGCGATTCTCCAGGCGCAGATCGAGACGGGGACGCCGTACATGCTGTACAAAGACGCATGCAATCGGAAGAGCAACCAGAAGAACTTGGGAACGATCAAGTGCAGCAACTTGTGCACAGAAGTCGTCGAATATACGAGCAAAGACGAGGTGGCTGTCTGCAACTTGGCCTCCGTCTCGCTGCCCAAGTTCGTGGACCGCGAGAGCCGAACTTTCGACTACGAACACTTGAAGCGAATCGTCAAAGTCATGACGAGAAACTTGAACCGCGTGATCGATCGAAACTACTACCCAGTCCCAGAAGCGAAGAAGAGCAACTTGCGGCACCGACCTGTCGGTTTGGGAGTCCAAGGTCTCGCAGACGCCTTCATGCTTCTTCGCTATCCGTTCGACAGCCCCGAAGCTCGCGTCTTGAACAGAAACATCTTCGAGTGTATCTACTTTGCCGCTCTCGAGGCCAGCTGCGAACTCGCCGCCGAAGAAGGCCCCTACGCGACTTACGAGGGATCGCCGGTGTCTCAGGGCATTCTCCAGTTCGACATGTGGGGTGTGACTCCGTCGAGCGGTTTGTGTGACTGGGATGGTCTGAGAGAGAAGATCAAGGCACACGGAGTGAGAAACTCGCTCCTCGTGTCTCCGATGCCTACGGCCAGTACCTCTCAGATTCTGGGGAACAACGAGGCGTTTGAGCCGTACACTTCCAACATTTACTACCGCCGAGTGTTGAGCGGAGAGTTTTTCGTAGTGAATCCACACCTGCTGCGAGACTTGCTCGAGCGGGACCTGTGGTCTGAGGACGTCAAGCAGCAGCTGATTGCGCACAACGGCAGTGTCCAGAACATGGACGTCATCCCAGACGACTTGAAGGCACTGTACAAGACCGTTTGGGAGATCAAGCAGCGCGTCGTCCTCGACCTGGCGATCGACCGGGCACCGTTCATCGACCAGTCTCACTCGCTGAACATCCACATGGTCAATCCAACCTACGCGAAGCTCTCCACTATGCACTTTTACGGCTGGAGAGGCGGCCTGAAAACTGGGCTGTACTACCTCCGGACGCAGGCGGCAGCGGACGCGATCAAGTTCACTGTCGACTCGCAACTCGCCATGAGTGCGAAAGCGAAACTCAGCGGCGCCACTGTGGGAGCTCTCACGACGACCAGTTCCGGCGCCGACGAAGACAAGCGACAAGACGTCGCAGAGACGGAGAAAATCGAGCCTGTAGCTCCCGTCTGCAGGTGGAGACGTACAGGCGCTTCTCCAGATGAACCCTGTGAAATGTGCTCAGGCTAATCGCGTGCGTCAGCATGCAACGTACATATACACATATATATACATATATACATATATATATATATATATATTTATTTATTTATATATTTATTTATTTATATTTACATATAAAAATTTGATATAAACGAAAATGCATATGCATACACTTGTACACAGCCAAATGTGTTTCCATATGTATAAGTGTGTGAAGAGTGTACAGTTGTCTCGTAGAGGCGGACGGATGGGGATTCGATCTTTTGGGCTGCTCAAGGTTGCATGCGTCGCTTCTGAAAGCAGAGGGGGAAAAGAAGCACGGTGAGGAGAGTCCGAAACATTCTGCGCGGGCGTTTCTACAACTTGGCACTCGCGAGAAAACAGTGTTTGTCAAAAACAGAATTCTTGGGTCTTGTCTGAGTCGCGGAACCTTTTGTATTTACTCGAACGTTTGTACGAGAGAGCCCTGAGTCCTCAAATGTCGCTCCGGTGTGCCATTTTCGTGGTTTTCGAGTTTCCACAAATGCACATGCGATCGCATTTTATACATGTCGCTCTGTGCATTCACCTATATGGCTGTACAGAGAGAGGGATGATTTCCTTGCGCAGGACTCTGGGATTTGTCGACTTGTTCGTTTCTTCACCTTTGGCAAGTTTTACGCCTTCCAAGATCCGATTCACTGTTTAAAATGCGTTTTTTGTGTAAGGTGCACTTGTATGCAAAGAATCTTTCGCACTTGAGAATGGGTCTTTTCTGGCCTTCGTTTGTATCACAGTGACGCGACTCTTCTTCGCTGCAGCACTTTGTGGGGAGTCTTGCTTGTGCAGTTCTGTTTTGACAGGGAAAAGACCTTTGAACGTTTCGAGAAAGAGCGGAGAATCTGGGGACTTGGCCGTCTCTCTAGCTCCGTTTGCTTGACTTTGTGTAACTGTCTGATGCTCTCTTCGCGGCACCGTATGCGCGCCTGTGCATGCGAAGCGACTCTCACGGGCAGAACCGACAACGAAAAGGAACATCCATTGAGAAGAAAAA +>XM_037917243.1 PREDICTED: Penaeus monodon D-dopachrome decarboxylase-A-like (LOC119568800), mRNA +CTTGGGTCTCCCCTTTTAGTCAGCTGATAAATCCCGTCCTAGCAACGTTAGTTGGAATAGCTTCCAGTGACAGCATTTTTTTTTTCTCTCTTTCTAAAGGGATATTTCAGATATGCCTTTCGTGACGCTGACTACTAATCTGTCTTCTGAAAAAGTGGACAAGGCTTTTTCTGAGAGCTTTTCGGAAAAGTTGGCAGAAACTTTGGGGAAGCCCATAGAACGTATTTCAGTGACTGTAGTGGCTGGGCAGCAGATGTGCCGAGGAGGAAGCTGGGACCCGTTGTGTGAGGTTCACGTGTTGGCCATTGGACTCGATTCCGCCGAGAAAACCCAGAAGCCAGCTGAAGAAATAACCAAATTCTTGTCTGACCGTACTGGGATTCAGCCTGCAAGAATCTGCTTAACTTTCCGACCAGTGCTGCCTCATCAGGTTTCCGTCAATGGCGCTTTAATGGGATGATTTCAACAGCCAGTGAATGGGACTGCAACCATGAGAGAGTATGTGGAATGATCTAGCAATAAACTATTCTACAGTT +>XM_040043500.1 PREDICTED: Simochromis diagramma methyltransferase like 3 (mettl3), mRNA +ACTGGTTTAGTTACCAACATGCCACTTTCGTAGACTGAGATATATATGTATTATATTTTACATCATATACCCTCAATCCTAAAACCACGACAAATCACTACGAAAGCGGAACGTTCAATCCCAATCAACCCGTGTGCTACCCGACACACGTTTTCGTGTTGCACCGTACCCGCTTCCCTCCAAGAGTGGACTGGATTCAACTTTTGTTTAGTTTCCCGGACACTCGGTGCTCGGTGAGGCCAGTATTGGTGTTTTTCCTTCAGCTGAGTCCATTTCGTCATGTCGGACACATGGAGCAACATCCAGGCGCACAAGAAGCAGCTGGACTCTCTGCGGGAGAGGCTGCAGCGACGACGGAAAGACCCGGCTCAGCTGTCCGCCGATGGTGGTGGCAGCACAGACGGCACCACAGTCAGGAGTGACAGCCCTGCCCCAGCAGCTCCGTCCACCTCGCAGGAGGAAACAGAAAAACCACCAGACCCTGAACTGGAGAAGAGGCTGCTGGGATATCTGTCTGATCTGAGTCTCACACTGCCAACAGACTCCCTTTCCATCACAAATGAACTCAACAGTTCAGAAACAGCCGTTAGTCACGGCTGCATCCAGAGCCTGCTGCTTAAATTCTCTGCTCAGGAGCTCATCGAGGTCCGAGAGCCCACCTCGGCTCCTTCTTCTTCTACAACTTCCTCCTCCACGTCAACCCCCACGGTGGTCGTAGCTGTGGACCACACAAAACTTTGGGCTATGATTGGATCTGTAGCTGGAGCCCAGAGAACTGGAGTCAAGAGAAAAGCAGAAGACCAAATGCACAGCAAAAGGGCTGCAGGCTTCTCGCCCTCGCTTCAGAGCTCTGCTTCTCCTCCTCACTCGTCAACCACATCGCTGACGCCGGCCTCCTCCTCAGAGCCGGGGCCTTCGGCGTCAGGGAGCGGGACGGAGAAGAAGGGCAGGAGCAGTAAAAGCCAGTCGTCTCATTTGGACATGGAGATCGAAAGCCTCCTGAACCAACAGTCCACCAAGGAGCAGCAGAGCAAGAAGTTAAGCCGAGAGATTCTGGAGCTGCTGAACGCCAGCACAGCCAAGGAGCAGTCCATCGTGGAAAAGTTCAGATCCCGCGGCCGAGCTCAGGTCCAAGAGTTCTGCGATCATGGGACCAAAGAAGAATGTGTTCGCGCTGGAGACACGCCTCAGCCATGCACCAAGTTACACTTTCGTCGCATCATCAACAAGCACACAGACGAGAGCCTCGGCGACTGCTCCTTCCTCAACACCTGTTTCCACATGGACACCTGTAAGTACGTCCACTATGAGATCGACAGCCCCCCGGAGACCGAGGGGAACCTGCTGGGGCCCCAGGCGGGGACCACAGAGCTTGGTCTCCACGCAGGGGACGCCGACAGCAATGTGGGCAAACTCTTCCCTTCACAGTGGATCTGCTGTGATATCCGCTACCTGGACGTGTCCATCCTGGGTAAGTTCGCCGTAGTGATGGCTGACCCTCCCTGGGACATCCACATGGAGCTGCCCTACGGTACTCTGACCGATGACGAGATGAGAAAACTGAACATCCCCATCCTGCAGGATGACGGCTTCCTCTTCCTTTGGGTCACTGGCAGGGCTATGGAGCTGGGCAGAGAGTGTCTCAGCCTTTGGGGCTATGAGCGTGTGGATGAAATCATTTGGGTGAAAACCAACCAGCTCCAGAGAATCATCCGCACCGGCAGGACGGGTCATTGGCTGAACCACGGGAAGGAGCACTGCCTGGTTGGTGTAAAAGGAAACCCGCAGGGGTTCAACAGGGGTTTGGACTGTGATGTCATCGTGGCAGAGGTCCGCTCCACGAGTCACAAGCCAGACGAGATCTACGGCATGATAGAGAGACTCTCACCCGGCACCAGGAAGATTGAGCTCTTTGGTCGACCCCACAATGTCCAGCCTAACTGGATAACTCTCGGGAACCAGCTGGACGGCATTCATCTGTTGGATCCCGAGGTCGTGGCTCGGTTTAAGAAACGTTATCCAGACGGCGTCATCTCCAAACCCAAAAACATCCAGTCATCATAACTGCTCACAACTCTGAAGAAGTTTGTTTTCAAACTGTTTTATTTTTTTTATACCTGTAAACATTTTTTTAATAAATATTGTCCACTAGATGCCCCGTCTCCATCTTGCCTGTGTACTTTTCACGGCTTCTCTGCACATTATCCATAATGATCGCATCGCCGGGCCTCCACACGATACCATATTATTGCTATTTTTAGTATTTTGCGATAAAACATGCAACTTATCACATTTTTTCAACAACAAATTGTGTCCTCAAAGCTAAAAGTTTGTCATCTGTTTCATCCAGTAACATAAAGTTATCTCACTTTATTTTTTTCCTGCAAAATGAGACTGTCAAGCAGACCGTCACTAAAACCTGCCATAAATGTTGCTATAAGAGCGAGCACGTCTGATATCAGTCCACAAGTTGGAAGTTATTTGCAATTTGTTTCTGATAACACTCCAATTAACTGCGATAAATCATCAAAACTCACATCTGCTGTTGTCTACACAAACAGAAATTCACATTTAACTATTAGATTTGCACTCAGTAAACTTCCTGTTCCATAGTAATATAACCAGAAAACAAACAGTAGGCAGCCAGTCGAGTTGGGCTCATGTGCCTGAGCTTATTCTGAGTTAGGAAGCAGCTTCGTTAAGGTCAGTGTCCAGTGTTGAACCGCGAGTTTGCTTAGGTGATGTTTTTTGCAGATGGTCGTGCACGAGAGGAGCCCTCTTGTTTGTAGCATTCCTGGAGTATTTGAATTTAGTTTTTAGAAAATGCCAATATTTGGTATCCTTGTGTCTTTACAACATTGTCAAGCAATATATCCCCCAGCCCAAAAAAAACACACCGGAGACATTTTGTTACAACTTATTTTATATTTGCTTAGTTTAGAATGAAGATATTTTTGACGTACTCTGGATTTGAACAAGTGATCATTAGTCTTTTTTTTTTTTTTTGATCAGCATTTAACAGTCATAGCTTTTCAATTTGGGCAAATACAGAAAGGTTTTCTTACAAAAAAAAAAAAACGTGCATTTTAAAAACACAGCCAGAGCGTCTTTTTTTCTAATTAAAAATATTGATCAGAATCAAGCAAGACTAAGAAAATACCTATCAGAAATAAGCTGCTGTGTAGCTCGGCTTATTTCATACGGTTGCCCTGTGGTGCACAACACAACTGGATTTCAGCAAGCCTTTCTGAAAGTATCAGGGCCACCGTAGATCTCACAGATGAACTATTAACTATTAACAACACTGCTGTTAAACAGGCTCAGACCTGGTCAGCAGTTAATGTCTTTTATAAAACAGCAAACCATTTTCTGTTTTATTACCTCACTTTAAACTAGCAGGGTTCTGTGTCACAGAGCAGGATTAGAAAGTTAATTCACGATGATGACTTAATGATGAGGTTTAGATAGTCACACACTTCATCACACTCAATGCTATCTTCCTCCTCTCGCTTTGTGAAACAGCCTTAATTAACTCCAGCCATGATCTAATAAGCAAATTGATCTTTTTCTACAAAGGTAGTCAAAAAAAAAAGAAATATAAAAGAAACACAGTAAAAAAAAAA +>AY653294.1 Chlamys farreri ferritin CFB mRNA, partial cds +ATCAACCGGCAGATTAACATGGAGTTGTATGCCAGCTACTGTTACCAGTCCATGTCCTTTTACTTCGACCGTGATGATGTCGCTCTCCCTGGCTTTTCAAAATACTTCAAGAAAGCCTCAGATGAGGAACGTGAACATGCCGAGAAGTTCATGAAGTATCAGAACAAGAGGGGAGGCAGGATTGTCCTTCAGGACATCAAGAAGCCGGACAAGGATGAGTGGGGAAGTGCCCTGGAGGCCATGCAGGTTGCTCTGGCTCTGGAGAAGAATGTAAACCAGTCTCTCCTGGACCTCCACTGTGTTGGGGACAAACATGGCGATTCTCAGTTCATGGACTTCCTTGGGGGCGAATACCTGGAGGAACAGGTGAACGCGATCAAGGAGATCTCTGACCATATCACCAACCTGAAACGCGTGGGACCTGGACTCGGGGAGTACATGTACGACAAAGAGTCCATCAATGGATCCTAGACCAGAGGCACCCCCTGTGGAAGCTTCTAGCAGTGTTGAACATTTTGCCCAGAATGTGTTGTCTACTAAAATACTATATAACCACTCAGTAACATGTGAATTATAATATTCCTGGAAGAACTTTCTAGAAAAATCAATGCATAATACACAAAAAGAAAAAGAAATAATGGGCACAAAAGAAAAGTTGAAAAAAAAAAAAAAAAAAAA +>XM_025196037.1 PREDICTED: Alligator sinensis chromosome unknown C5orf24 homolog (CUNH5orf24), transcript variant X2, mRNA +TTATACATGTTTGTCTCCTTTATTTTGGTAGAAAATGATGCATCCTGTTGCCAGCAGTAATACAGCTTTCTGTGGGACTGGCAAGAGTTCTTGCCTTAATGAAGACAACGTGAGAGCCACTGACCAGTTTGATTTATATTCCACACAGCAAAGCAAATACAGCCACGCAGTCAGCCACAAACCAATTGCATGCCAGAGACAAGACACGTTAAATGAATCGCACTTGCAGACCACAAGTGGCAGGAATATAGAGACAAAAGATGAACTAAAGAAAAAGAAAAACCTCAACCGGTCTGGCAAACGTGGAAGGCCTTCGGGGACCACAAAATCAGCAGGGTACCGAACCAGCACAGGTCGACCCCTTGGGACCACCAAAGCAGCTGGATTTAAGACAAGTCCAGGCAGACCCTTGGGTACAACTAAAGCTGCAGGATACAAAGTCAGCCCAGGGAGACCTCCAGGAAAAAAGCAGCAAGCCTTCAGGTGTTCCAGTGATGCCTAACACATAATGAGCTGGACTTTATGCTGTACTTTACAATAGAATACTAGCAGCACGGTTTGGCAGGAAAAAGAAAGATGGCTGCCATCAGAAGGTACCTAACTTTTAATCCTATGGTGGTATTTTTCAATATCAGCAGTTGGCTTGGTCATTTAAGCAACAGTCTTTACATGTTACATTTACTTCAAATTAATCAAAGAAAACGTCAAAACCCATTGAACAGCTCTTTTCTGAAGTGTGCTTTTGTTTTGCCAGAAAGATTTTTCTTAAGCGTTCAGTCAAGACCCTACCAAACCAAGTCATTAAGAAGTGGTGTGTCTGAGAAAAGAATCACTTTGCTCTAAAATACATAAAGTAATTCTGATCAGAACTTCACTTTTTTTCCATTTCGAAGAGCTTTAAAAGGCAGAGCAGTTTAAGGTTATTTGTCTATTGGTTTCATTAGTTATGACTCTGCTTTTTTGTTACTATATGTACAGTAATGTTTCATACTATCCCTATAGACGATTACAAATAAAACAATCGCAATTGTAAAGACTTTGAACTGCAAACATTGTTTCTGACCACAAGATAAGTTTGTTCCTCTTTTTTATTATAATGCATATATTTTAACATTGCTTAAATATATTTATGAACTCTAGTTAGAGACTAGAGCTTTTTCTTTGCAATTTTTTCCAAGTAGGTAAATCTTTTTTATGAAAAATATGATGATGGTATGATCATTTTTTAGGAATGTTATGCTCATTGCTTGGTAATTTGGACCACTTTATGATTCTTTATCTTTTACAATTTGCTTTTCCACAGGTTCATTTTGGAGGAAACAATTATCCATTAAGTAACTAATATCAGCACCCTGCCCTCTGCTGTAAAAAGCCTGATTAGATACTGTGTATGTTTTTATGTCCATGAACTTGAGCTACTCGTGTGCAATTATGTGTATGGGAATGGAGTAGTGTTCATGATCTGTATTTACATCATCATATGGATGTATATTTATTAATAAAGTCAGTACTTTAAAACCAAA +>XM_009169100.1 Opisthorchis viverrini hypothetical protein partial mRNA +ACTTCCGGCCGTGTGAGAGTATACAGCGTGCTCTCCAAAAGCTTCCGTACACCTAGTGGTGTCCGTCAGGGATGCTCACTCTCTCCACTCATATTCAAATTTGTTATCGATGAAATAATGCAACTAACGCTGGAATGTCTTCGGAACCCCGGTGTTCAAATAGCCTGTGACGAAAACCTTGTCGATCTGGAATATGCAGACGACATCGTTCTCATCTTCAGAGAAGAGGTGAAGGCGCATGTGTTTTTGGATGAACTCACGAAAGTCATTCCGTCCTTTGAAATGCACTTTGCACACACAAAGTGTAAAGTCATGTTCATGGACATGCAGCTACTGAACACGCCACTTACCATCCAAACCCTGCGTTTCAATATCGTTTCGGATTCTGCAATAAAACAGATGGAATTCGTGCCAATAGCAGAAAGTGCGATTGTAGGCGCACCAGATTGGTTTCTTTCCGGGGCAATTACAACGAGCAACTCACATTTGCGCGGGGATGTTCGATCTGCTCTCGTGGCCTTCTCCTCCAAACCCTACGTTCATATATTTTTGGTCAAAGTCAGGTCCGCAGAACAGCATGACGTCAGCTCAGTAGTCTACGTAGGTCAGATTCAAGCACACCACGAACGTATTTCAGGCTTGTCCTTTTGCGAATCCGTGAATTTTTCATCTTCATCGGATATTCAGATGTTCTCTTGTGGACAGGACGGACTTGTTCGACATTGGAGCTATCACAGTCATGAGTGGTTGCTCACCAAAGAATTGAATATTCGTTCATTCAATGAATCGCTGCTTCCCACATGCCTGGATACAATTGTGATCGCTGACCAAATTCTCGCTTTAGTTGGGACAAACAAAGGAACATTGCTTGTTTGGGCTGTGTTTGCACTATCCACTGAACCCGTCTGCTTGACAAAGAAATTCGAAAATGATTCAGCGACAACTTGTGCTTGGGAACCGTGCAACTTGTCGGGTTGCATACGCCTGGCGATTGGATACAAAAAGGGGATCATAGGAGTTTACCTCTATCAACATTCCTCTGTGACCGCAGCGTCTTCCTTGACTCAACTATCTCGTTTCTATGCCCACGAACGGGACATATGTCACGTTGTGTGGAATCCATCTGCACACGGATACTCAGAAGTGGCAGCGTCGGAACCAGAGTTATTATCTACTGGACGGGACCAGATGGTTAAAATATGGAACATTGCCAGTTCGTGGTGTTGTGGTTCGGTCAGAGTTCCTGGGAGTGCACGTTCAATGCCAAAAGAATCGGATTCATCCAACCTGACAAAAAACCAGTCTACAGGTGCTCCTTGGATATCTGCTTGTTGGTTCCCAGAAAAAACGGACAATCCGGGCAGAAATATAGTTGTATCCGGTCTTCGAGGTGAATTGTATAGCTGGTCCGATTCGTCACAGCTGGTTCGTTTACACACCGAGAACCATGGTCACTCAATGCTTGTTTTCGCTATTCGTTCTATCCCTGATATGGACGGATTGTTCTTCACAATTGGCCAGGATCGTCAAGTTATTCTCTGGACATATCGTTGTCCGACTGACTTGACATTCATGCTTCGTGTGCCTACTATAGCTGCTGGTATCTCTGCTTTGGCACAGTCGGACCACGGACATGGACCAATTGCAGCAGGCGTGGCAGATGGATCAATTTTATTGTGGCGGCACTGCAGCTCTTTACAAGAAGAATCTTCTTCAACGAACCCGGTGACTTCTTACTGGCCACGTGGTGTGCACGGCAGCTGTGTGACTGCCTTAGCTTGGCATCCTTCAGTTCGCCATGAAAGTCTACTTGCCTACGGAACCGAGTCAGGATGTGTGGAACTCATTGACACATCCAAAATTCCCAAAAGTGCTACTCAGAGGTCGAAAACGCAGCCATATATTTTTGGATCAACCGTCTATCGAGTTGCTTGGGGACCTCCACTTTTCACAGATTCAGGGAAGGATCAGGTTGTTGAAACAGCTGTCTCAGAACACGATGCGAATGGTTCGACAGATAGCACAGATACGGTGGAACAAAAAGACTCAACAAACAAATCCTCGAGTACTCCCAAGTTCTCATCTTATATATACAGCGTATGCAAAGGGAAGATTTTTTGCCACGTTGGCTTCCAGCGACCACCTTTGGATGTAACTTTGAAGTTTCCCTCTGTTCCCGGAATCTCTACAGAGGACTGGGTAAATGACAAACGAACCGACATCGCGTTTTTATACCTGGAGAATTCCACCCGTTCCGTTGACAGTCCTTCTGAAGAGAATGAGATCCGCGAGTGTTTCAGCTGTTTGATCACCGTCGGCTACCGATCTGGGTCGGTGGATGTATACGGACTCGTGAAATCGAAGGAGCATGTATCGGTCGACCTTATTCGACCATTGTGTCGTATTTCTTGTCATACGAAGGGTGTCAATTGCTTGGCTTGGTCCTTTGACCGCTACTGGCTTGCAGTTGGCACTAATGAGTCCTTCATCACTGTAACTGATGTTGGGCACATTCTGAAACAAGCCACGAAACCCAATAATCCCTCTTTCCGACAAATTTCAACTTATTTGGCACATCTGGAGGGCCACGGCAACAGGATCACATGCTTGGACTGGTCTCCGCATGAAAATGGTCTCCTGCTTTCCGCTTCATTTGATGGCACTGCAAATGTCTGGAAAGTAACTCATAGTGACACCGAGTCAGGTTCCACATCTGTAGCGAATTTTCGAGCTCATCGTCTTCGCCTATTTGCCTGTCTGTGGAGTCGTCAGGAGGCGGACCTGGCTTTTAGCGGTGGTGAACTCTGTCACCTATTTAGCTGGCGTCCATCCAAACTCGCACATAAAGAGCCACCTAATTCCCGTCGTTATAGGCCTCCTTCAGTTAAACGTGTGCCCACCGATTCAAAGGATCCCTTAATGCCGTCGGGCATTCTCGAGCCTTCGGCCATTGTTGTCACCTCACAAGAAGTAAATCATACGGAATGTGTACCAGAGCCCATACATCACACTGATACGTCCGTTGGGACAAGTGTCCCACTTGAACTACCGGTGAAATCTGTGACTACGAAAAAACCTGGTTCAGGGGACAAACGCAAGCGACCGTCTTTGTGTCCACATTTTTTGCATCGCGGTTCACTTGAACCAAGTACGACGGATCTGGGATTTTGCCCTCCTTTTCGCCTAGGCTCAAGGTTTCTGCAAGTATCGCACGTACTAAATCTGTTGAAAAACGATGTTGATCTACCTGAATCGGACTGCGATCTTCTGTTCCTATTGCCAGAAACAAACAAAACACGATCAGCCTTGGTGCGATTTTTGACCAGTGAAGCAACTCATCATCTGTCAGCATATCGTGCAACTCAGCGATCTAATGGGCTTATGCATTTGGATGCTTATTGTATCATTCTTCTATGGCTTGGACGTACTCCGTTGGTTGCGCAGACAATGTGTTCTGAGAAACACATGCCCTTTTGGTTGCTTTGGGCAGTTCAATTGGCTCAAACAACCGTACCGGCCTTCTCCGCTCCCCGAAACTCATCAGGTGATCACGCGGATATAGATCTAGCTGGAGAAAAGGTCAAGGATATGACAAGCAACAGCCCTGATGTTTTGGTGTCTTCCACGTTACTTGTTTGTGCGGGTCGACATCAGGAGGCCGTTGATTACCTATTTGCACAAGATCGAGTGAAAGAAGCCTTGTTGCTTGCACGGCTCAGACTCAGTCCCATGGACGCGAACTCAGCAATGCAGAAGTGTATTGCTCGCATCATCGAACGGCGGTTGTGTCCGGAGGTTCCGTTCGTCAGAGTTTTACATGAACTTGGAGCTGGCGAGTGGGAGCGGGCACAGACAGTTCTACGTCAGGCAGCCGTAGTTTCCCTTTCACGCCAGGACATGGAAGTTGAGCAAGTTGCAAGTAGCTGGGTAGAACTTAATATTCTCCTCAGCTGTCCGGATGACAGTTTACCGACGAATGCGTTTGTTCGATTTGCTTTAAGCTGTCTGGCCGTTGGCTTCCAGTTGCCAGAAGCACAATCCATAGTTTACTTTCAGCGGTGTCAAGAAGCTGTGACTCTGTCAGCTGTCTTGGCTACTGGGACGGATTGCTTTCGACTGTTGTTAAATACTGGCCTTCGGTTTGCTGCTATTCTTACTGGCTCTTCTCAAACAGAACTCGAATTGGATATGGAACTACATGCAGATGTGAGAGATATTGTACACTGTCTTCGCTACGCAACGCTTGATCGTCAGCCAGCGAATCAGTGGTCTGCATGTGCTTCCCAGTTGGCACTTGATTTCACCATTTGCCTTCTTTCATCTAAAAAATTGACGTCTCAAGACCAATCCACTGAGGACCTTAATCGGCTGGAAGCGAGTTTGCGTTTGTGTTCAAAAGTCAATCCCACAAACACACAACAACTCAGTGACCTCCTGTTCCACTCCCAGACTTCTTCGGACCTTGACTCACGTTTGAAGCGGTTACAATCGACTGCGCTCCGCCCCTCAGACAATACAGATGAGCAAATCGGAAACACTTGTCCAGTGTTCTGTTCTCCTTTTAGCCAAACAACAATGCCTTCCGTCCGATCGCGGCGTAGCACATTATCTTACTCCGCCGAACTGGAGCGAGCCGGGATGGCCCCCATTGAAACCCCGATTGAACGCGTCACGGGTTCAACCGTGGTAGACGCTCGAATGTCTAGCGCTTCTAGATTTTGGAATCAGGATAATACACTTGTTAACATAAGAATGACCCCTTTCGGACACGAAAGAACCGACTACACATACGGAGATAGTGGAAGTTATCGGTCAGAGCGGGTTAAGACCAAATGGAACACACCGAATATGTCGCGCCTACCCGTTCATGGGAACCACGTTGCTGGACAACACATCGCCACTTTGGGTTCCCGTACTTTGAATGACTCAGATTTTGAAATGGATTCCGTTCTGACCGATGAAAGGTTGTCAGCGGTCATTCCGGGCCTAGGAGGCAATCGCGAGGAAGAGTTAGAAGATGATGAGCTTAGTAGTAGGGCTTCAGTTGCCTCATCTCGATCCAGCACCCGTATGTCGCGTGTCCGCTGCATACGCGTGCAAGGTGAATGGTGCGTTCATTCTGAGTGTATCGCTTCTACTCCTGGGAACCGACGTATGAACTTGGTTGCTCGTCAGCGCAATACAAACAATACTGCTGACGTCACTCACATCGTCGATGGGACTGATACAGAAACTCCCACTGGAAGATCTCGACATAAACACGAACAGCAGCAGTTGGTTTCTCGAAGATCCACTCGCGCCGGTGTGAGACCCTCGATTACGGCAACGAAAACCACTACATCTCAAAATCGCATTGAGTCGAATCCTCACACGGATCGTTCGAATCAGTTGGCTTCTGCTAGTTCCACGTATGTCTACACCTATGTAGCACCAGATGCTGACCATATGCGACCAGGAGAAGGCGGAGACAAAAGCTCGTTCGAGAGAGGAGACATTCCTGATTCGAATGGCAGAATGTGGGGTGCACAACCTCCACACGTTTCATCAAATGATCCCACTACTGAGCGATCATTCTTAGCCAATAGGTTTGTTTGCTCCAGTGGAACGTCTTCCGCTGGAAACAAAGCCCAGAAATGGCTTGCTCGACACATTTTTGGCCTTGAGTCATCTGCCCCGGTGAGTACTTCGAACCATTTTGTACCCAGTGATACTGAAGAGTCAGATACAATCACAACTGGTCGCTCCGTTGCTCGTGGGAAATACGTACACAAACCAAGCGTCACACGAAGCCATCGACTGCACCATATAGATTCATCATCAACAACCTGGTTCTTCCGACCGTTGATGCAAGGAGCAGAGAAGCTGAAAGGAGTGATTTTCTCGAGTATAGCTTTTGTATTGGCTGGCATCTTCATCGCCTACGATGCTTTCAGTTCTTGCGTCCGTAATTTGTCATCCGCCGTTTGGACCTTTTGGTTCCGTTATTCCAGTCCTTTGCCCCACCGTTCTCGTGATAAACTGACCGTTCATCCACGGCTAACTCAATTCGACAACCACGTCACTCTTCAAATCTCATCGGTCGAGGAATCTGACTTCTTCTCTCGATCGTTCCGGGCAAGCTACGTCTGGTTTACCAGAGCTGGGACGATCTGTGTTCGTCTGGTGGGCTGTCTTTGTTTCCTAATCCCGCTCCTCTTACTTTTGGCTTTCTTATTCGCACCAGTTGCTGTCAATGACGACGAACCACCTCCAGTGTGGCCTTCTTTTCTTTCGGATACCGACTGTAAAAAGGCCCTACTCGAATCTCGCCCCAGCGATGCAACAGCTTGGCAGCTCGCCCTTTGGAGATTCCGCTGTCTGTACAATCTATACTTCCTAACTCCCGACTTTCCGTCAAATGCTACCACTTCGGAAAGCTCTTCATTGTGGCAGAAGTTTAAAAGTTGGTTGTGGCCTTCTACATCCGTTGTACCCTCCCCGGTCATCGTACCAACTGATCTACCGTCATACGTCGACAGTAAGTTGCTCGCTCAGCTGGAAGCATTCCGGGATTTTGTGAACGATCGATTGGATGGTTTGTCAAACACTATACGTCATACGGAAGAACGTGTGTCCGAGATGGAACAACGATCTGAGACACAGTTCAATGACCTCAGTATACATATTAACAATTTGAAACAACACTTTAACGAGCACACCACTGCATTGGATTCCTGGCATGTCCAGCTACAAGCACTGCAGGCTCTTGCAGGCCGCTTGGACAGTTCGGAGCCATCAAAGGTGACTCTAAACGAATACGATCGACTCTTCAATGCGGTTATCAGTGCCGCAAATCAAACCGTTTCCAAGGAGTTGAATTTACTTCGGATCGAACTGGATGAGAAGTCAAGTTCAATGTGGAACCGACACAACTCCAGTTTCACACAACTGTCCCTGTTAATTTCTCGTCTGCGTGAAGAACTGAACGACCGCTTGCTTCAAACGGAACACAGGCTTGGTGAACTACGTTCACAACTAAACTCGGGAATTCATGCACAAGTAGTCAACCATACGTCGCTCGTTATCCAAATGGACGAAATCCGCCTAACATTAGGCAATCTATCGGAGCGTGTGGCACAAGTCCGGAGCGCTAATGAGGGGCTGGATGGACTGTTCAAGAAACTACAAGAAGCCACACGAGACTGTAGTGAACGACAATTGCATCAAGTAGAAGACTGTAAGCAAGCGGCCATCGAACGAGCGGAAATTGCCGTGAATGCTTTTTCCGAACGTTTCACCGATCAAATTTCCGTTCTTGTCAAGGAGGCTTTGCTGCATTGGCTGAATGATGTGTCGGTTGAGGAAGCCCTGGATTTGAAACTATCAGAACTGGTTAAACAGTCCACACGAGAAGCCGTAGATCGAGCCATCCGTGAATCCGCGATCTCAGGGTACGCTCCGAGCGTGGACACCAGCGCAGAACAAACCGACGAATTAAAATCCCGAGTATTCATTCAGAAGCTTATTGACGCTGCCCTAGAGCGTTTTGCCGCCGATCGAGTGGGGATGGCCGACTTCGCTTTGGAATCCGCTGGTGGGTCTATCGTAGGCACACGCTGTACGCGGACTTACACAGAACGGGCAGCACTCTTCACCATATTCGGCATACCTTTGGCTCGTTTAAGCAACTCAGCAAGAACCATTTTGCAACCAAGCAACAATCCCGGTGATTGTTGGGCATTCCATGGAAGTACGGGACAGGCGGTAATTCGCCTCTCAGCACCTATTGTCATAACGTCCGTCACCCTGGAGCACCTACCTCGTGTTCTTTCACCAAACCAAAGGGTGGATTCGGCGCCGAAGGATTTTGTCATCAAGGGTCTATCATCGGAAACTGATGAAGGGGTCGTAATTGGAACATTTGTCTACGATATCAATGGTCCTGCCATACAAACATTTCCGATAGAAGGTCAGTCATCTACGTGGCATTTAATCGAGTTGGGAATCCTCAGCAATCACGGACATCCACTATACACATGCGTGTATCGCTTGCGTGTACATGGAAGAATACCAGACTCCTAGGCAACTTGACGACTGACTGACTGTGAATTGCCAGCATGTTTCTGTCTGCCCACATGTACATATCGACCCCGGCTGTATTTTCAGACTCGTTAACACGTCTGTTGTCCCCGGTGTTTTATAGTATTCCAACTTCCCATACAAAGTGTATACTCTCTGAAACACCTCTAACCGATGAATGTGATTTTCCTCTACTGCAGGCGACCGGTAGGCAGCCTAATCTCCTAATACCCGCTCATGTCTTAATGATTCATGTGTAACTTTGAATATCTTTTCTGCCGCCGCCGTCGCTGATCCACCACTCATTCACCTCGCTTATCTAATTACAAACGTTCTTC +>XM_021551582.2 PREDICTED: Lonchura striata domestica carbohydrate sulfotransferase 9 (CHST9), transcript variant X2, mRNA +ATGTAGTGCTTCTTGAGGTTGGTGTCTCTGGGGAAGACACCGAAGAAGATGCAGGCATGCTGAAGACTTCAGAGAAGTGAGCAATGAGTCCTTCTGAAAGCTGAAGAAAAGCCCCCTTGTAGGGTCATGAACCTAAGACAAGTCTTCGTGTCTGTACTGCTGTTTGGAGTAGCTGGTCTACTCCTCTTCATGTATCTGCAAGCTTGGATTGAAGAACAGCATACAGAGTCTGGAAAAAAGCTGCAACAAGAGACAATTAATCAGGATTTCACACTCCAGCCTCTGGGGATGCCAAGGAAAGCAGCATGGAGAAGAATTGTTCCTGTGGGCCTCAGTAACCCTGAGATGGCTGTCTCAAGCAGCAGGCACTGGCAGGGCAGGGCTGACCCTTTTGGTGTGGTGGCTGCCTCCTCGAGGAGCTGGCTGCCTGAGCAGAAGATGAGTGAGTCCCCTCTCAGCTGGTTCAGAGGGGCGTATTTACCTCCTGCTCTGCACCCATTAAACAAGACATTTGTCAAGGGTGGTGAGTGGCAGGACATAGACAGCACCCAGGAAAAGCGCAGGGCCTTCCTGCAGGGCATCTGTAGGAAACACAATAGCAGAAGGAAGCTGCAAACCCATCTGGTGCACCTGGTGTCAAGAATTTACGTAGAGGACAGGCACAAGGTTTTGTACTGTGAAGTGCCAAAAGCAGGCTGCTCCAACTGGAAAAGGGTCCTCATGGTGCTCAGTGGACTCGCTGCTTCAGCAAACAACATCTCCCATGATGATGTGCACTATGGAAAGCATCTAAGGAAATTGGACAGTTATGACCTAAAAGGGATCTACACACGCTTGAACATGTACACCAAGTTTATATTTGTACGTGATCCTATGGAAAGATTGGTATCTGCCTTCAGGGATAAGTTTGAACATCCAAACAGCTATTACCATCCCGTATTTGGGAAGGCAATAATAAAAAAGTATAGACATAATGCAGATGAAGAAGCACTGAAAACAGGATCGGGAGTTAAGTTCAAGGAGTTTATCCAGTATTTGTTGGATTCCCACCGACCAGTAGGAATGGACATTCACTGGGAGCAAGTCAGTAAGCTCTGCTATCCCTGCCTCATCAACTATGATTTTATAGGAAAATTTGAAACCCTGGAAGAAGATGCCAATTACTTTCTGCAGCTGGTAGGTGCTCCAGCCAATCTGAAGTTCCCTAAATTCAAAGACAGACATTCCTCTGATGAGCGAACAAGTACAGAAGTAGTGAGGCAATATTTAAAGGAATTGTCTAAGGAGGAGAGACAGCTGACCTATGACTTCTATTACTTGGATTACTTAATGTTCAATTATACATCACCACTTGTATAGCACTAGAATAGCTTCAGGCTTCTACTAGATACTTATCATGTTGGGATTCAAAACAACTACTTTGATATTAGCCCTGAAAGGAAACAAAGTTACTGCTAAGTAGAGTTGTCTTGAATTAGTGGGGATTTTATAAGCTAGAGTGGTATCAATTGATACTAAATTATGGAGAATGCAAAGAAAAAAGACCTGCAAACAGCATAGATTGCACTAAAATGCCTGGAAAAGCTGTTTTTACCATTATGGATTATATTATGGAAGCAGTAGCTCAGACAGCTGTTGCATTAGCTTACCTAATGTTCTTTTAATGGTTTAAGAAAAAAAAATTGGAGTGGCATGATTCTTTTTTGGTATGTTTTCTTTAGAAATGGATTTTGAAAAAATTTTGAATGTATTTTTACTTTCTGTCACTTATTAATAAATGATCATAGGCTAA +>XM_027345943.1 PREDICTED: Dermatophagoides pteronyssinus SOSS complex subunit B1-like (LOC113795734), mRNA +TTGAATTATTTATTTACTTATATTTTTTTATTTAATTTTTTTTTGTAATTAAAATATATTTTTTTCCTATAAAAAATATTATGGGCTATTCGATTAATCAGATAAATATGACCGATAAAATTGATTCAATAAAAGATATTAAAGCACCATCGAACAAATTAAATGTTATTGCAATTGCAGTTGAAATTGTTTCACGTTTAATAACCAAAGATAATCATGAAATACGTGTAATGAGATTTGCCGATCGTACTGGTTGTATAAATATGTGTCTTTATGATGAATTAGGCGCAACGGTTCAACCAGGTGATATATGTCATATAACACGTTGCTATGCAACATTTCATAAAGGTGCATTAACATTATATATGGGTCGTCATGGTAAATTGACAAAAATTGGTGAATTTTGTATGACGTTTACTGAAACACCAAATATGAGTGATGGTGATCCATCTACATTATCATCACCATCAACTTCATCAACATCAACGTCGTCGTCGTCGTCGTCGTCATCAACGTCATCAGGTCCACCAACAAATTCATAAATATTTTTCATTTTTTTTTCTTTTCAAAAATTGTG +>EU801997.1 Uncultured bacterium clone 3C003382 16S ribosomal RNA gene, partial sequence +AGGGTTTGATCATGGCTCAGATTGAACGCTGGCGGAATGCTTTACACATGCAAGTCGAACGGCAGCACGGACTTCGGTCTGGTGGCGAGTGGCGAACGGGTGAGTAATATATCGGAACGTGCCCAGTCGTGGGGGATAACGTAGTGAAAATTACGCTAATACCGCATACGATCTAAGGATGAAAGCGGGGGATCGCAAGACCTCGCGCGATTGGAGCGGCCGATATCAGATTAGGTAGTTGGTGAGGTAAAGGCTCACCAAGCCAACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGACGCAAGTCTGATCCAGCCATTCCGCGTGCAGGACGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACAGAACGAAAAGGTCTCTATTAATACTAGGGGCTCATGACGGTACTGTAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTATATAAGACAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTTGTGACTGTATAGCTGGAGTGCGGCAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGGCCTGCACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTGGTTGTTGGGTCTTCACTGACTCAGTAACGAAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGTTTAATTCGATGCAACGCGAAAAACCTTACCCACCTTTGACATGTACGGAATTCGCCAGAGATGGCTTAGTGCTCGAAAGAGAACCGTAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGCCATTAATTGCCATCATTTAGTTGGGCACTTTAATGGGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTATGGCCAGGGCTTCACACGTAATACAATGGTCGGTACAGAGGGTTGCCAAGCCGCGAGGTGGAGCCAATCCCAGAAAGCCGATCGTAGTCCGGATTGTAGTCTGCAACTCGACTACATGAAGTCGGAATCGCTAGTAATCGCGGATCAGCATGTCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTTTACCAGAAGTAGGTAGTCTAACCTTCGGGAGGACGCTTACCACGGTAGTATTCATGACTGGGGTGAAGTCATAACAAGGTAACCGTA +>XM_007934102.1 Pseudocercospora fijiensis CIRAD86 uncharacterized protein (MYCFIDRAFT_212712), mRNA +CTTTCATGTTGTATGCTGGAGTCTGCATGTCCGCGGACACTTGCGCACGAGAGCATCAGCGCCCAGCGAGCTTGCGGAATGCGGAGCTGTCATGGTCGTACATCTGCCGAGTGTCCGTAACTGATATCGGTAGCCTCCTCAATTCTGGAAGCCTCTCAGATCCCAGCGTCCTTGTTCGCGCTGACGTTCTCTATGTCGCTTCTTTCCGCGGTGTTTCGCTTCAAATTCTCTCCCACAATCTCTTATGCAGTCTCTTCCACGCCCTCTTGCACGCCCACATCACCAGCAATGATTTCCTTCGGGTTGGCGGCTCGAGAGCTTATTGCAGCCTTGGTGAGAGGTGTAGGTCCCACGTCGTGACTTGTCCCGACGACAGGTCTCGCAGTGCATGCATCTTCGTCTTCTGGGGGTGTGAGATCGCTATCTCAACTGCCCTCGAGCTACGACTTCCATATCCCGCCTTCCTACTCCACCTTCTCCAAAGCCGGCCACATGTCGCAGACGTAGCGCTTCATGCACTGGACGGCTCTCTTGGCGGCGATTCCGAGGATAGCGACTTCACAGATGGTGCAAATTTGAACGACGTGACGGAGGAGAAGCTCTGAACCGGATCCACTGTGGTGAGAAGGTTGATTCCACAGCTCATCTCTGCATCCCTGTGGCCTTCCATCCCAGATGCGATTGAGTGAGGATCGGGTCATTTGCTGTGAGTTGAACTTGTCTTGGATGAAGCATACGATAAGTGTGATGTTGTAATAATCTCAACAGTCATGAACAATGACGG +>XM_026366555.1 PREDICTED: Anabas testudineus cytochrome c oxidase subunit 5A, mitochondrial-like (LOC113166428), mRNA +TCGAGTACGTGACCGGCTAAGTTAGCATTAGCTTCCTCCTGCCAGACCTCACCGGTTCGAGGAGCTAGCTGCCGCTCATCATGTTCAGAGCCGCCGTCCGACTTTCTGTCTCCGGTGTCCGGGGTTTAACCCGTACGCAACCACGGTGCCAAGCTGTTTTGGCCTCAAGATGGTACTCACATGGGAAACAAGAGACGGATGAGGAGTTTGATGCCCGTTGGGTCACTTATTTCAACAAGCCAGACATTGATGCATGGGAGCTGAGAAAAGGGATGAACACGTTGATTGGTTACGATCTGGTACCTGAGCCAAAGATTCTTGAGGCAGCACTGAGAGCCTGTCGAAGGTTAAACGACTTGGCCAGCGCTATCCGAATTTTGGAAGCTGTAAAGGAGAAAGCCGGTCCTCATAAAGACATCTACCCGTACGTGATCCAGGAGCTACGGCCAACATTAGATGAACTTGGCATCTCCACACCTGAAGATCTTGGCATTGACAAAGTGTAAATAAGTATCTGATAGTGAATAACCCCAGGACGCAGAATCATTGTACTTACATGTTTGCCTCACCTGATATGTGTGATATTTAATTTGCCCTTTATTAAGTTCTTTTGTTGTAAAATATTGATGAACCTAATAAAGGAAAACGAATCTTTATTGAGTGTCACATATTTTGAGAGATTTTAAACAGCCTGGTTACATATTGAAGCAATATTTTTGAAGTTGCTTTAACAGCAGAGCAGAGCGTCACTTGATGGTGCAAGTTGTCTCATTCTTCTGAGAGTCGCGTTTTGCCACCAGGGAGCAGCGTTTTCACATGAATGTAAAAATCATTCTTCTGTATTCAATCTATATTTCATCTGTTCAGGGAAGATATACATGCTGGTGAAATAAACTTGTTCAAATGTCAAA +>XM_008046871.1 Trametes versicolor FP-101664 SS1 uncharacterized protein (TRAVEDRAFT_136475), partial mRNA +ATGAACGAGCTGCAGACTCTCACAACTTTGCAGCCTTCAGCGGTCGTCTCAACTCGCGTCTCGCACTCCCTCGACAGATGTTCCACGCGGTCCTCCATTCTTTCCCATCCGAAGCTGTCACACAAAGTCAAGGGCATCTGCAAGGTCGCGCGTAAGGCCGGCTTCCGCCTCGTCTGGAACGACGCATGCTGCATCGACAAGTCGAGCAGTGCCGAACTCTCTGAGGCGATCAACTCGATGTACGACTGGTTCCGACTCTCGGACATGTGCTACGTCTACCTCCAAGATGTTGCGGACGGCGATAGACCCCAGGAAGCCCAGTCCGATTTCCGGAAGAGCCGATGGCACACCCGCGGTTGGACGCTGCAGGAGCTCATCGCGCCCGAGTGCGTCGAGTTTCTAACGCAGACTTGGCAATTTCTGGGCACGAAGCTGGGGCTTGCCTCGACTTTGGAGGAGATAACCGGAGTCGACGTCAATATTCTCACAGGCCGAGCCACCTTGAACTCTGCTAGCGTTGCGCGGAGGATGTCATGGGCGGCGAAGCGAGAGACGACGCGCATCGAGGACCAGGCGTACTCGCTCATGGGTATTTTCGGCGTCCACATGCCGCCTATATACGGCGAGGGCAACAACGCCTTCCTGCGTCTCCAGGAGGAGATAATCCGGACTATCCCCGATCAGACCATATTTGCCTGG +>FJ010171.1 Homo sapiens TCF7L2 isoform pFC8A_TCF7L2_B4_ex1-no4-11-14 mRNA, complete cds, alternatively spliced +TTTTCTTCCAAAATTGCTGCTGGTGGGTGAAAAAAAAATGCCGCAGCTGAACGGCGGTGGAGGGGATGACCTAGGCGCCAACGACGAACTGATTTCCTTCAAAGACGAGGGCGAACAGGAGGAGAAGAGCTCCGAAAACTCCTCGGCAGAGAGGGATTTAGCTGATGTCAAATCGTCTCTAGTCAATGAATCAGAAACGAATCAAAACAGCTCCTCCGATTCCGAGGCGGAAAGACGGCCTCCGCCTCGCTCCGAAAGTTTCCGAGACAAATCCCGGGAAAGTTTGGAAGAAGCGGCCAAGAGGCAAGATGGAGGGCTCTTTAAGGGGCCACCGTATCCCGGCTACCCCTTCATCATGATCCCCGACCTGACGAGCCCCTACCTCCCCAACGGATCGCTCTCGCCCACCGCCCGAACCTCTAACAAAGTGCCAGTGGTGCAGCACCCTCACCATGTCCACCCCCTCACGCCTCTTATCACGTACAGCAATGAACACTTCACGCCGGGAAACCCACCTCCACACTTACCAGCCGACGTAGACCCCAAAACAGGAATCCCACGGCCTCCGCACCCTCCAGATATATCCCCGTATTACCCACTATCGCCTGGCACCGTAGGACAAATCCCCCATCCGCTAGGATGGTTAGTACCACAGCAAGGTCAACCAGTGTACCCAATCACGACAGGAGGATTCAGACACCCCTACCCCACAGCTCTGACCGTCAATGCTTCCATGTCCAGGTTCCCTCCCCATATGGTCCCACCACATCATACGCTACACACGACGGGCATTCCGCATCCGGCCATAGTCACACCAACAGTCAAACAGGAATCGTCCCAGAGTGATGTCGGCTCACTCCATAGTTCAAAGCATCAGGACTCCAAAAAGGAAGAAGAAAAGAAGAAGCCCCACATAAAGAAACCTCTTAATGCATTCATGTTGTATATGAAGGAAATGAGAGCAAAGGTCGTAGCTGAGTGCACGTTGAAAGAAAGCGCGGCCATCAACCAGATCCTTGGGCGGAGGTGGCATGCACTGTCCAGAGAAGAGCAAGCGAAATACTACGAGCTGGCCCGGAAGGAGCGACAGCTTCATATGCAACTGTACCCCGGCTGGTCCGCGCGGGATAACTATGGAAAGAAGAAGAAGAGGAAAAGGGACAAGCGGCCGGGAGAGACCAATGGAGAAAAAAAAAGTGCGTTCGCTACATACAAGGTGAAGGCAGCTGCCTCAGCCCACCCTCTTCAGATGGAAGCTTACTAGATTCGCCTCCCCCCTCCCCGAACCTGCTAGGCTCCCCTCCCCGAGACGCCAAGTCACAGACTGAGCAGACCCAGCCTCTGTCGCTGTCCCTGAAGCCCGACCCCCTGGCCCACCTGTCCATGATGCCTCCGCCACCCGCCCTCCTGCTCGCTGAGGCCACCCACAAGGCCTCCGCC +>KX179358.1 Uncultured bacterium clone MA_1774 16S ribosomal RNA gene, partial sequence +ACGGGGGGCGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGGGCAGGCGGTCCGCTAAGTCTTTTGTGAAACTCCAGAGCTCAACTCTGGACATGCATAAGATACTGGCGGACTAGAGACCGGTAGAGGCTAGTGGAATTCCTGGTGTAGCGGTGGAATGTGTAGATATCAGGAAGAACACCAGTGGCGAAGGCGACTAGCTGGGCCGGGTCTGACGCTCATCCGCGAAAGCGTGGGGAGCAAACAGG +>XM_004415061.2 PREDICTED: Odobenus rosmarus divergens fidgetin-like 1 (FIGNL1), mRNA +AGCATGCAGGCCTCCAGCTCCAGGTCTGTGCACCTGAGTGAATGGCAGAAGAATTACTTTGCAATTACATCTGGCACATGTACCCCAGGACAGAAGGCAGATGCGTACCGAGCACAGATATTACGCATTCAGTATGCATGGGCAAATGCTGAGCTCTCCCAAGTCTGCGCCACCAAACTGTTCAGAAAATATGCAGAGAAATACTCTGCAGTTATTGATTCTGACAGTGTCGAGACTGGCTTGAATAACTACGCAGAATGCATTTCAACTTTAGCAAGATCTCAGCAGACTGACAGTGACAAGTGGCAGTCTGGATTGTCAATAAATAATGTTTTCAAAATGAGTAATGTACAGGAGATGATGCAAGCTGGCAAAAAATCCAGAGACTCTCTGTTGGCACCTGCCAGTGCATCGGTAGTAATCCATAAAGAGGCGCTTGTCCTCGATCCTCCTAAACTTAGTGTTTGTGGGGGTTCTGGGGAGAGTGGCCCATTAACTAACGCAGCTCCTGATACAAACAGGACCCAAGATATCCCAGAGAGCAGTCCTTCGAAGTGTCCTCAGGATGCTCAGCCACCTGTGCCGACTAACACCAGAAAGACCTGTCCTTCATCCTTAACACCGTTTGGTGACTTTGCCACTGCAAAAATCCATGCCACACCATTATTTGGAAATGCCAAGAAGGAAAATAACAGCTCTCCAAAGGCCAACGTAGGACTAAATATGTTCTCATCTAATCAGTCTTGTTTGCCTTCTGGCTTTGAAAATCCACGGGAGAGAAAAACTTTTTATGGTTCTGGCACCACTGATGCCCTTTCTGCCCCAGGAGTGAATAAGGCTTTTAGTAAAACAGAGGATAATGGCCAAAGGGAAGAGAGTAGCCTGCCTACTTTTAAAACTGCAAAAGAACAGTTATGGATAGATCAGCAAAAAAAGTACCACCAACCCCAGCGTGCATCCGGGTCTTCGTACGGTGGTGTAAAGAAGTCTCTGGGAGCTAGTAGGTCCCGAGGAATATTTGGGAAGTTCATTCCTCCTATACCTAAGCCAGATGGGGGAGATCAGAATGGGGGAATGCAGTATAAGGCTTACGGCGCAGGACCTGCAGAGCCAACACATCCAATTGATGAGCGGCTGAAGAACTTGGAGCCAAAGATGATTGAACTTATCATGAATGAGATTATGGATCATGGACCGCCCATAAGCTGGGATGATATTGCAGGAGTAGAATTTGCCAAAGCCACAATAAAGGAGATAGTCGTGTGGCCCATGATGAGGCCAGACATCTTTACGGGTTTACGAGGACCCCCTAAAGGAATTCTGCTCTTCGGGCCCCCCGGGACTGGTAAAACTCTAATTGGCAAGTGCATTGCTAGTCAGTCTGGGGCAACGTTCTTCAGTATCTCTGCTTCCTCTTTGACGTCTAAGTGGGTAGGTGAGGGGGAGAAAATGGTCCGTGCATTGTTTGCCGTGGCAAGGTGTCAGCAGCCGGCTGTGATATTCATTGATGAAATTGATTCCCTGTTATCTCAACGAGGAGATGGTGAGCATGAATCTTCTAGAAGGATAAAAACGGAATTTCTAGTGCAGTTAGATGGAGCAACCACATCTTCTGAAGATCGGATTCTAGTGGTGGGAGCAACCAATCGGCCCCAAGAAATTGATGAGGCTGCCCGGAGAAGGTTGGTCAAAAGGCTTTATATTCCACTCCCAGAAGCTGCGGCTAGGAAACAGATCGTGATTAATCTGATGTCCAAGGAGCAGTGCTGCCTCAGTGAGGAGGAAATTGCCCTGGTTGTAAGGCAGACCGATGGGTTCTCGGGAGCTGACATGACACAGCTTTGCAGAGAGGCGTCTCTCGGGCCTATTCGCAGTTTACAAACTGTTGACATCGCCACAGTAACACCCGATCAAGTTCGGCCAATAGCTTATATTGATTTTGAGAACGCCTTCAGAACCGTGCGACCTAGCGTGTCTCCTAAAGATTTAGAGGTCTATGAGAACTGGAACAGAACTTTTGGTTGTGGGAAGTGAAGGGGACACACGGGACACTTGAAATCTAAAGATGGCATCTTTGTAATGCAGCCTTCCCCACTTTTTAGCATGGGAAACTGGGAATTTATTAATTGTACTTTATAGTGTATATTTTGAATTCTATACCTCAAATAAAATAGTAACAGCTTAAAT +>XM_018530727.1 Alternaria alternata hypothetical protein mRNA +CCATCATGCAGTCTCAGCAAACTCCTCGGTATGTAAGCTAGAAGAGATGGCCTGTTGTTTAGGCACTTGCTGGACAGACCGATGGCTAGACCTCTATGCGATAGATGTAGAACAACACAAACAACAACTTGGACTAAACTTGCACGACGGTAGTCGGCAGTACGCCTTAAAATCAGAGAAATGTCTCGACACGTTTGGCCTTCCAATACGCTATCTACGTAGCACTTCACTCACCCTGATCATCTTAGCACATGAATACAGGCATATATGTCAGATACACGCAAAGTACAATAACTTGGCTTCACAGCGATCTTGGTGGAATCAATCACGTCTTCACGCAGAACTAGTGCTTGGAGAGTCAATTCAATACGAGTCGGAAACTCCCGAGGTCATCTTTACCGGCCGATGTGGTCTTACTGGAGAGAAGTTCGGAATTTTTCTAGTCAATATGATTATTATATTTCTCTTGCACAAGCACATACGACCACAGGATCTTGAGACCACGGCTTCCCGTTCGCTCAGCCCTAGTTAAGCAAGATACCGGCGGATTAGTAGTCAGGTGGGTGACCACTGGCGAATCCCCGCTGTTGTATGTTTTTTTGTTTCTTTCGAAAGAAGATCATTAGGCCGAAAATAGGCGTACTTGTTATTTTTTTGTCTTCCCGCAGATGCTGTTTCGCATGGTCGAACTTCTTTGACGTCGAGATAGGTAGTAAAGAGTAGGCAATAATTGTGGTTTCATCGTG +>DQ227595.1 Uncultured bacterium clone ZFos29a01 16S ribosomal RNA gene, partial sequence +GAGTTTGATCCTGGCTCAGGATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGATGACTTCTGTGCTTGCACAGAATGATTAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTCGGGATAAGCCTGGGAAACCGGGTCTAATACCGGATACGACCTCCTGGCGCATGCCATGGGGGTGGAAAGCTTTATTGCGGTTTTGGATGGACTCGCGGCCTATCAGCTTGTTGGTTGGGGTAATGGCCCACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACACTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGNCTTCGGGTTGTAACCCTCTTCAGCANGNAAGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCGCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAAGGGCGCAGCGTTATCCGGAATTATTGGCCGTAAAGAGCTCGTAGGCGGTTTGTCCCGTTCTGCTGTAAAACCCGGGGGCTCACCCCCGGGTTCTGANTGGGTT +>XM_001452590.1 Paramecium tetraurelia uncharacterized protein (GSPATT00002630001), partial mRNA +ATGAAAGTGCGTAAGTAAGCACCCCAATTTACAGCATCAGCCTACTTTAATAAATAGTTTAAGAGAATATCTCTAAGTGATTATAAAAATAGATATGTTGTTCTATTCTTCTATCCATTGGATTTTACATTTGTATGTCCAACAGAAATAATCCAGTTTTCTGATCGAGTTGAGGAATTCAAAGCAAATGGTTGTGATATTTTGGGTGTCTCTGTAGACTCCTAATTTTCTCATATGAAATATTGTAAATAAACACGTAATAATGGAGGATTGGGTGAGATGCAATTTCCTCTGATTTCAGATTTAAGTTAGGAAATCTCTAAAAAATATGGAGTCATTATAGATGATTCTGAAGATCCAGATTTTGGTGTTGCTTTCAGAGGGACATTCATAATCGACGGAAAAGGAATCCTCAGACATTATTCCATTAATGATTTACCTGTGGGTAGAAATGTAGACGAAGTCTTAAGATTAGTGTAAGCATTTAAATTTACAGATGAACATGGAGAAGTTTGTCCTGCACAATGGAAACCAGGATAGCCAACTTTGGTTACGAATCATTCTGACCCAAAGACTTAGAAATATTGGAATGAAGAACATATAAAATAAGCTAAATGA +>XM_007882153.1 Pseudozyma flocculosa PF-1 uncharacterized protein (PFL1_04627), partial mRNA +ATGGGCTTCTTCGACGTCGGCTCCATGCGGAGCAAAAAGTCCAACGCGGAGCTTACACAGGAAGCACGCATGCAGAGGCGCAAGAACGACGAGATCCTCGCAGCCAACCTCGGCCTCGACTACTCGCATGGCGGCAGCAGCAATCGCAGCAACGGCAAGTCGAGTCGTGACCGGCTCCACGACGACTTTGCAACGGGGCACGGCGCCGCCGCATCGACTGCGGCCAGGGACGCGACAAGACGGAGCAAGCTGGAGAGGATGATGGGTGCCGACGTGCCACTGCCCGACTCGCTCTCGGCGCCCAATGCTGACCATCGGCGAGGGCAGCATCAGGCCGACGCGGCATCCCAGATCTACGGCTCAAACGGAGGCTCGGCGCTCCACCTGCCCATGTCCAAGGGATCCTTTGACGCCATGAGCCAGCATTCGTCACACTCCTCCGGCCGCGAGCGTCAGTCGAGCGGAAGATCGTTTGATCCGCTCCCCGGCGCTTCAACGACCTTCACCGAGATGGCCGAGGTTGACTGCCCTGTCTGTCTGGAGCCGCTTTCGTACCGGCTCGCCGGCGAAAAGCCTCACGTTGTGCCCAATTGCGGCCACGCGCTGCACAACGCTTGCTTCACCGCCGTCTACGGCCCGCCGGAAGCCATCATTGCGCAGCAGAATGCGGCCTTGGGGGCAGGCAACGGTCGCACAAAGGGCGCCGGTCTGGTCCAGCGGACCCCGGCCGCAAACCCGCCAGGCATGTGCGGTGTATGCCGTCGAGCCATCGTGCTCGGCGGTGACGAGGCCACCGCCAAGTCTCAGAAGCTGGCGGGGCTGGGTCCGCACGGGTCGCAGGCCGATCGGATGACTCTGAGCTCGGACTCGGCCTCGGTTCGAGCCCTCTCTGAAGCCCACGAGGACGACCCTCTCGAGAGCCAGGCAAAAGGCCGGTCTGCCAACATCTCGGGACCCATCACGACCCCGACGATCCGGGCTAGGCCAGAGTACTCGACCATCTACAAGAAGGCCGATCGCAAGGACAACAGCAAGGTCAATGTGGTCTGCGTGCTCTCGGTCGAGGTGCCATCGAGAAGGCCGAGCTCTGACGATGCGGTCGAGTCCGGCCTTGACACGATCGAGGATCGCGGCTACGCTGAGGAAGAGTTTGACGAGGAGGACGAGCGCGACTACGAGGGCGAGGACTCGTACTCGGACGACCTCAAGCGCAGCGGCTCCGAGTACGTCCCCAACGACCGCAGGTCGAGCGGTCAGCGCAGCCCGCTGCCGACGTCGTACGCCAACGGCGCCGACGGAAAGCAGGCCGCCAGCCCGGAGCGCTGCATCTCTCCCGAAAGTCAGGCCGGGTTCTCGTACAGTGCGACGCCGGCAGCGCAGCAGCGGCTCAACGATCCCAACCTCGCTGTGGTCGAGGACCTCCGCAGTCGCGTGGCCGATTGGAAGGGTCACTCGCTCGAGCATTTCGGCGAGCTCGTGCTGCACGACCTTCTCAACGTCCGCCAGGACAGTGTCGTACGCGAGTTCCACGTCTACCTGTTCGAGGGCGCGCTGCTCTGCGTCACCGAGGAGAAGCGAAAGGGTCTCAGCCGGTTCATTCCTGCGGCACCTCCGGCCGCTCCGGGTGCCACCCCCGACGTTCCTGCCATGCCCAAACCCGCGCTCAAGCTCAAGGGCCGCATCTACCTCAAGCACATCCGCCGCGTCATCGACTCGTCGGTCGCTGGCGAGCTCAGCATCAGCATCACGATGGACGAGAGCCTGGATCAGTTTGTCCTCTGCTTCCGCGATCGCGAGACTCTGTCGGTGTGGAAAGAGCGTCTCAGCCAGAAGGTCGCCGCACAGTCCAAGTCGGCGGCGGCGGCAACTACGGCCAAGGAGGCGGCCAAGCCCGAGGAACCGGCATCAGCCTTCGACGCCGCCTCGGCCGCTCACTCGGCCGCGAGCCATGGCATGCACCCCCTCGACGACCACCAGCGCCTCCGCGGCCTTCCCGCGGCACCCAGCCACGGAGTTTCGATCTCGCGGGCGAATAGCGGCGCCGCATCAATCATCAGCGGCAAGACGGGCTCTCACCAAGGCGCCCTCTCTCCGGCCGACTACAGGAACATGCGACGCTTGTCGAACGTCTCGAGCGTCCAGAGCCACGGCAGCCACCGCAGCCGCACCTCGACAGCTTCGGACACGGTGCCTCGCCACCAGCAGTGGTCCGCCTCGGGCGGGCTCGACCCGAGGATCCCACCGCCTCCGATGCTGCCACACACGCCGCTCGACTTGGTGCTCATGTTCGCCGTGCCTCCGGTCCTGCCCAACAACGCACAGGGCTCGATCAACTCGTCGGCCGCGCTCAAGCTTCGCCTGGTCCGATCGACGCTTGACTTTGTTGTCAGCCACATGGGACCCAAGGACCGCGTCTCGCTCGTGGCCTACTCGGTCGGCTATGAGGGCGAGGTGAAGCGCACGGCGCTCCTCAACCCGAGGCGCTCGTCGAGCCGACAGATGCTGGGCGAGTTCATCCAGTGCATCGGCAGGCCTTGGGACGGCCACGCCGAGGACCCGTTCCGCGTCGACCTGGACCGGCTGGGCGGAACGAGCGAGCGGACCGATTCGGTGACGGCGGTCAATGTCGGGCTGGACATCGTGCTGCAGCGCAAGCAGAAGAACCCGATCACGGGCATGATTCTCGTCAACGACACGGCCGACGGACCCAAGCGGCACCAGATGGACCTGGTCATGGCGCGGGCCGAGGCGGCCAACGTGCCCATCCACTGCTTCGGCTACGGCAAGACGCACGACCCGTCTTCGCTGTGGCTGATCTCGAACCACACAAAGGGCTCGTACACGTTTGTGCGCGAGTGGTACCAGCTGCGCGAGTGCCTGGCCGGCTGCATTGGATCGATGATGTCGATCGCGCTGACCGACGTCAAGCTGCACGTCAGTGTGCCCCACGACAACCAGTTCCGCGTCCGCAAGATTGCCGGCATGCCCGGAGCCATCATCTCGTCGTCTGGCAAGGACGTCGACATCGACATGGGCGACATTCGCTTTGGCGACGCGCGCGAGCTGCTGGTGGAGCTCGAGCTCGATCTCGAGAGCCTGCTGCCGCGCCTCAACGCCAGCAGCAGCAGCAGCCGCAAGCTCTCTGCGCCTCCCATCGAGCAGGGCAGCGCTACCGACGACTTCATGCAGCGACTCGGCATCCAGGGGCTGAGCCTTGCCGACTCGGACGGCGCCGAGGGGTCATTTGAGCACCTGATCGACGAGGTCCCTGTCTTTGAGGCCGATGCCGGTTTCCGCGACCCGACCAACGGCACCAGCACGTCGAGGCTGGCCAACCCGACGATCCTGACGCTCGAGATCGACTGCCAGTCGCCGGACCCCGTGTCCTCCGGGCCGCCGGGCCTGGCCGCTGCGATGGCCGATCCAACCGTGACGCGGCGGCGGCTCGAGGTGTTGGTGTCGGAGATGATTACGCGCTCGCTGCTGCTCATCTCTCGCTCCAACTACGCCCAGGCGCAGAAGGTGTTCAACGAGACGCGGAGGATCATTGAGACGGTGGTGCGGGCAATCCCGCTGCCCGCCGGCGGCAGCGGCAGCGGCTCGCGGCGGCGGGCGCCGATGGGCAACTCGCGCTCCGCGGCCAAGCGGCAGCGCGACGCGCTCAACCGCAAGACGATCGACAGCCTGATGGCCATGATGAATGACCTCGACACGCTGCTGGAAGGGCTCGAGGCGCAGAACCGGACGACGTTCGAGCGCGACGGGCGCAACTTTGGCGCGCAGCAGGCCATGATCCTGCGCGATCAAAAGGCGTGGACGACGCGGACCGACACCGAGTATCAAAACTTCCGCGACGACAACGCCGCCGCTTTCGCTGCCTACGGTGCTTCGTACGCCAGCTCGCGGTGA +>XM_033386580.1 PREDICTED: Drosophila miranda mucin-5AC (LOC108151008), transcript variant X9, mRNA +AATGTTTGTCTTTAACTCATACGCGAATTCGTTACGCTCCCCAACTGTTAAAAGACCAACGATGTCTTCGAAGGCTTCTTCACGAGATTTATTAAGATTTATAATATCACTAGTAGTGCTCAGCCAAATCATACTCAAAAAAGCAGAGAGTGCCTCGGTTGAAAAAGTGCATTTAAAAAGTGCGCAAGTGAAAAACAATCTAATTGAATATGACTCACAGTTTGGCCGAGATACAAAATTTAATCATAAAAAAACAACTATAGCAAACGATATTACATCTGCACCTGAAGAGAGAACATCAGCCGCACATTCGACTTTTGCACCTGCGGAGAGCACCACAGCTGGGGGCAATACGACTTCTGCTCCGGAAGAAAACAACACATCTGAGGACGATACTACTCGTTCTACTTCTGAAAAAAGCACAAAAGCTAATGATTCGACATCTGCAGCACCCGATATAAGCACCACAGTTCAAGATTCGACATCTGAACCTGAAGAAAGCACTACAGCTAAGGACAACTCTACTTCTGCTCCTGAAAAAAGCACCACAGCTGAAGGGGATTCTCCTGCTGCTCCTGAAGAAAGCACCACAGCTGAAGAGGATTCTTCTTCTTCTCCTGAAGAAAGCACAACAGTTGAAGATTCGACCTCCGAACCTAAAGAAAGCACGACAACTGAAGGCGATTCTACTGCTGCTCCTGAAGAAAGCACCACAGCTGAAAATTCGACATCCAAACCTGTAGAAAGCACTACAGCTGAGGAGGATACTACTTCTACTTCTGAAAAAAGCACAACAGATAAAAATTCGACGTCTGAACCTGAAGAAAGCACCGCAGCTGGGGTCGATTCTACTTCAGCTCCTGAAGAAAGCACCACAGCTGAAGAGGATTCTTCTTCTGCTCCTGAAGAAAACACAACTGTTGAAGATTCGACCTCCGAACCTGAAGAAAGCACTACAGCTGAAGACGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCTGCACCTGAGATAAGCACCACAGCTGAAGATTCAACGTCAGAACCTGAAGAAAGCACTACAGCTGAAGGCGATTCTACTTCTGCCCCTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCGGCAACTGAGATAGGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTTCAGCTGAAGGCGATTCTACTTCTGCTCCTGAAGAAAGCACCACTGGTGAAGATTCGACGTCTAAACCTAATGAAAGTACCACAACTGAGGTCGAAACTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGAAATCAGAGCCTGAAGAAAGCACCACAGCTGAAGAGGATTCTACTTCTGCTCCTGAAGTCACCACTACAGCTGATGACTATACTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGTTTCGACATCTGAACCTGAAGAAAACTCCACGGCAGAGGACGATTCTACTTCTACTCCTGAAGAAAGCACCACAGCTGAGCACGATTCTTCTTCTGCTCCTGAAGAAAGCACGACAGCTGAAGATTCGACTTCCGCGGCACCTGATATAAGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTACAGCTGAAGGAGATTCTACTTCTGATATTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCGGCAACTGAGATAAGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTTCAGCTGAAGGCGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGATGAAGATTCGACATCTGAGCCTGAAGAAAGCACCACAGCTGAAGATTCGACATCAGAGCCTGAAGAAAGCACTACAACTAAAGGCGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGACGATACTACTTCTGCTCCCGAAGAAAGCACCACAGCTGAAGATTCAACATCAGAGCCTGAAGAAAGCACTACAACTGAAGGCGATTCTACTTCTGCTCCAGAAAAAAGCACCACAGCTGAAGATTCGACTTCCGCGGCAACTGAGATAAGCACCACAGCTGAAGATTCGACGTCTGAACCTGAGGAAAGCACTTCAGCTGAAGGCGATTCTACTCCTGCTTCTGAAGAAAGCACCACAGCTGAAGACGATACTACTTTTGCTCCTGAAAAAAGCACCACAGCTGAAGATTCAACATCAGAGCCTGAAGAAAGCACTACAACTGAAGGCGATTCTACCTCTGCACCTGATGAAAGCACCACAGCTGAAGAGGATTCTTCTTCTGCTTCTGAAGAAAGCACAACAGTTGAAGATTCGACCCCCGAACCTGAAGAAAGCACGACAACTGAAGGCGATTCTACTTCTGCTCCTGAAGAAAGCACCACAACTGAAGATTCGACGTCTGACCCTAATGAAAGTACCACCACTGAGGTCGAAACTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGACATCTGAGCCTGAAGAAAGCACCACTGCTGAAGATTCGACATCAGATTCTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCGGCAACTGAGATATGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTTCAGCTGATGACGATACTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGTTTCGACATCTGAACCTGAAGAAAACTCCACTGCAGAGGACGATTCTACTTCTACTCCTGAAGAAAGCACCACAGCTGAGGACGATTCTTCTTCTGCTCCTGAAGAAAGCACCACAGCTGAAAATTCGACATCAGAGCCTGAAGAAAGCACTACAACTGAAAGTGATTCTACCTCTACCCATGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCGGCAACTGAGATAAGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGACAGTTCTACAGCTGATGACGATACTACTTCTGCTCCTGGAGAAAGCACCACAGCTGAAGTTTCGACATCTGAACCTGAAGATAACTCCACGGCAGAGGACGATTCTACTTCTACTCCTGAAGAAAGCACCACAGCTGAGGACGATTCTTCTTCTGCTCCTGAAGAAAGCACCCCAGCTGAAGATGTGACTTCCGAGGCACCTGATATAAGCACCACAGCTAAAGATTCGACGTCTGAACCTGAAGAAAGCACTACAACTGAAGGAGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGAGTTCCGCGGCAACTGAGATAGGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAAAAAGCACTTCAGCTGAAGGCGATTCCACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGACGATACTACTTTTGCTCCTGAAGAAAGCACCACAGCTAAAGATTCGACATCTGAGCCTGAAGAAAGCACCACAGCTGAAGGTTCGACATCAGAGCCTGAAGAAAGCACTACAACTGAAGGTGATTCTACTTCTGCCCCTGAAGAAAGCACCACAGCTGACGATTCGACTTCCGCGGCAACTGAGATAAGCACCACAGCTCAAGATTCGACGTCTGAACCTGAAGAAAGCACTACAGCTGATGACGATACTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGTTTCGACATCTGAACCTGAAGAAAACTCCACGGCAGAGGACGATTCTACTTCTACTCCTGAAGAAAGCACCACAGCTGAGGACGATTCTTCTTCTGCTCCTGAAGAAAGCACGACAGCTGAAGATTCGACTTCCGCGGCACCTGATATAGGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTACAGCTGAAGGAGATTCTTCTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCGGAAACTGAGATAAGCACCACAGCTGAAGATTCGACGTCTGAACCTGAAGAAAGCACTTCAGCTGAAGGCGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGACATCTGAGCCTGAAGAAAGCACCACAGCTAAAGATTCGACATCAGAGCCTGAAGAAAGCACTACAACTGAAGGTGATTCTACTTCTGCCCCTGAAGAAAGCACCACAGCTGACGATTCGACTTCCGCGGCAACTGAGATAAGCACCACAGCTCAAGATTCGACGTCTGAACCTGAAGAAAGCACTACAGCTGATGACGATACGACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGTTTCGACATCTGAACCTGAAGAAAACTCCACGGCAGAGGACGATTCTACTTCTGCTCCTGAAGAAAGCACCACAGCTGAAGATTCGACATCTGAACCTGAAGAAAGCACCACAGCTGAAGATTCGACTTCCGCTGCACCTGAGATAAGCACTACGGCTAAAAATTCGACATCCGAACCTGACGAAAGCACTACATCTGAGGACGATTCTACATCTGCTCCTAAAGAAAGCACCACAGCTGAGGCCGATACAACATCTGATCCTGAAGACAGCACAGTTCAGGACGATACTACTTCTGCTTCTGAGGAAAGCACCACAGAAATCACCACAGCTGAGGATGGTGCTACTTCTGCTCCTATAGAGAGCACTACTGCTAAAGTAGATTCTACCACTGGATCGACGTCTAGCCCGGCGACATCACCTTCTCCTATACCGCCTATGTCATGTGCAAGTGGCGCTCCATACTTACCGCATCCATCGGATTGCCATAAATTTATTCAGTGCAGCAACGGACATGAGTACATCATGCATTGTCCAGATGATCTCTTCTGGGACTATCAGAATTTATACTGTGGGTATGATGACAGCGGTTGCTATAACAAAGTGGATCCCGAGGAAACGGTTTGCAAGCACGGCATGGATTTTCTACCAGACCCAACTGATTGTACGAAATATATCCAGTGCAGTAATGGTCAACCAATCGTCCAGAAGTGTCCTGAGCCTTTGTATTGGAACCAAAATCTTAAAGTATGTGATTGGTTCAGTAGCTCCTGCAAAACTCTACAAAAGAATGAAATAATATCTTGTAAAATGGGTATGAGTTTTGACGTTTTTCCAACCGACTGTTCGAAATATATTAAGTGTTTTGGTGAGCGCGGTGTAATAATGAGCTGTAATTCTGGACTTTTCTGGAACTCTTTGCAGGAAGTATGCGAAAAATCCCAGCGGTTCTGCAAATAATATGTAAGCATAAACAGTTACTCGTATAATATTATTCACTCTTGGTAGATTTTCTTGTTAAATGAATTGAAGAATATTACAGAAAATATAAAGGCATTACCCATTCTTTAATC +>XM_029689086.1 PREDICTED: Oncorhynchus nerka SWI/SNF-related matrix-associated actin-dependent regulator of chromatin subfamily B member 1-A-like (LOC115147092), mRNA +ATGGTGTCAGGTGTGCGGGATAATCAGCAGCCTGATGACCTAGAGGCCGGAGAAAGGGAGTATAGGGAGCAGAAGGCAAAGAGGAACAGCCAGTGGGTCCCCACGCTGCCCAACAGCTCCCACCACCTGGATGCTGTGCCCTGCTCCACCACCATCAATCGCAACCGAATGGGCCGCGACAAGAAGAGGACCTTCCCCCTGTGCTTTGGCGACCACGACCCGGCGGTGATCCACGAGAATGCGTCTCAGGCCGAGGTGTTGGTTTGTCTGGACATGGAGATTGACGGGCAGAAGCTCCGAGATGCCTTCACCTGGAACATGAATGAGAAGCTGATGACCCCAGAGATGTTTGCTGAGATCCTGTGTGACGACCTGGACCTGAACCCCCTGGCCTTTGTCCCGGCCATCGCCTCAGCTATCCGCCAGCAGATAGAGTCCTACCCCACAGACAGCATCCTGGATGAACAGACCGACCAGAGGGTCATCATCAAGCTGAACATCCACGTGGGGAACATCTCCCTGGTGGACATGTCGGAGAGGGAGAACTCTCCGGAGACGTTTGGCCTGATGCTGTGCTCCGAGCTGGGCCTGGGAGGAGAGTTTGTTACTACCATTGCCTACAGCATCCGCGGCCAGCTCAGCTGGCACCAGAGGACGTACGCCTTCAGGGCTGATTTCAGTGAGAACCCCCTGCCAAAGGTGGAGATTGCCATCCGCAACACAGGTGACGCATGGTGCCCTCTGCTGGAGACCCTGACAGATGCAGAGATGGAGAAGAAGATCAGGGACCAGGACAGGAACACCAGGCGCATGAGACGACTTGCCAACACTGCCCCCGCCTGGTAGAGAGAAGCACCAATAAGCTACTACAGAGCCTCTAGTCCAGTGGTTCCCAACCTCTTTTTGAACCGTGGCACACCTTGATGGGATATACAATTATGCCCTGCACACCAAATTCATTCATTTAGTGGTGATGACATCCATCTGATCTATATTGCATATCATCTATTTTCTGTGACAAATGTTTACTAAATAGGGTTTGTTTGAAGTATTTTCATAGTTCCTTACTCATGAAGGTTCATTTCTGTATACCCCTTTAAGAGTATCCCGCAAATAGGTATTTAGTTTTGAACAGTCTGTGTTAGAGGTACAACCACGTACACATAGCCAAGCTCCATTTGTTTTTATGGCAAGAGGCTGTGGTATAGCTAATAAATTACTCTCGCTAAGCCTAATCAAACTTACAAGTGATAATGGTTATCACAGACTAAGTAAAATAATAAAAATGACTTTGCTCGTGATGCGAGCCCCTCAAATGATACAAATGGAACAGCCTGAGTGCACTGGACTTGGAACAACGATACAGATGTAACAATGTACCATTTAATCTATTATCTGACTGGCACAGGTGCTCCCAAATCAAAATTACAGAGTGTACAAACATTTTTATCAAGATTAGGAAAGGTTTTGTGGCACACCACTGCTTCTAGTCAGCTAACAGTCAACTCCTATGGGCCCTCTGTGGAGACACACACACAAACAAACGTGACAAAAGACAGTCAACTGGTCCCTTCTTACAGCCCCCGTAATATTAAACTAGCTTTATGCTTGATTGTCATACTAATCCAGTACCAATGCCACATCTCTACTCCCATTAATAAAAATAATTACATCTGATCCCAGATCAGAGACTGTTCAAGGAGCCTTCTCCATTTCTAGCCCCTCTATTGGTTCAACCGCTACTCATTTCTGATGAGATGAGGCGACGTGGTATATAAAAGGTGCCATGGGTAGAGTGTATTTGTCCGTATGAAATGTAGCCATTGTCGATTGTACGGACTCACCATCTAAGTGAGCTCTACCTGTAATACTGCTTTGATGCACTTATATCTCTCATGATAGACAATGCTGACGGACTTGATCTGTCTGTTAATAGAAACACTCAGACTCAACTCTTGGGAATAATGTAAAGTTCTGTATTTATGCTGATACTTTTAGTATATTTTTTAGTTTCCTTTTTTAATAAAATAACATAAACCAGA +>XM_028986422.1 PREDICTED: Denticeps clupeoides disintegrin and metalloproteinase domain-containing protein 11-like (LOC114794095), transcript variant X1, mRNA +GGAGCTCCCGGTCCCACGTGTCCTGCCTTCCTCCGCTGGCTCGGCGCTTCTTCCTTCCTTTCTTTTAATCGACAGCTCCCTCCTTTCGCAGGCTGGCCGCGTTTTTCATTTGATTTCATTTTTTCATTTTTTTTTTCCTTTGGAACCGCAGCGCCGCCCAGTCTCACATTCGCCCGCGACGGGGCGCGCATCTCCCCGCATCGCCGCCCGCCCGCCCCGCTCCCCCGGTTCATATTTATCGACCGCCTCGTCGTCGTGAGCACGTTCCCGTCCGGTTTTTCCTGCTCCATGTGAGCCCGCGGGGCGACGTGAACAGGATGCTGGTCCTGCGGTGCCTCGTGTTCGCTGCTGCGGGCGCCGGGCTGTCCGCGACAGGCGTGAGCGGCGGGTCTCCAGCTCAGGATGCAGGCTTGTGGGACCGGGTCCTCCCAGTCCTCCCAGAAGAGGAAGAGGAGCTGTCCCGGCCACACCGGCTGCTGCCGTGGAGGGACTCGGACAGGGAGAGCCCACACAGTCACCTGGACACCCGGTTGAGGGACAGCAGCGGGAGCGTCACGCCTGTCCATTTGGCCCAGAGCAGCTTCCAGGTGGAGGCCTTTGGGAGCGTCTTCACTCTGGACCTGGAGCTGAATCATAATCTGCTCTCGTTGGATTATGTGGAACGGCACTTTGACCGGAGCGGAAATCCTTCAGAGTCGCTGGGAGGCGAGCACTGCTATTACCATGGTAAACTGAGGGGAGTACCAGGCTCCTGGGCAGCTCTGTCAACATGCCATGGCCTATGTGGCATGTTTTCAGATGGCCTCCACTCCTATGCCATTGAGCCCATCTTCAACGGGACCAATCAGGCTGATGGCACTCATAAAATCCGTAAAATGCCTGATGTCAGACTTCCAGCCTCCTGTTCAGGTTGTGAACAAGACGGAGAAAATGACACTGGTGACAATGACAGTAGTGAAAATCTGGACCCTCAGAGAAGGCCGAAACATACGGAGGGACTGAAACGTTCCAAAAGAGCGCTCTCGCGGCCCAGGGTGCAGACCGAAACCAAGTACATTGAGCTCATGGTGATTAATGACTTTGAAATGTTCGTTCTTCTCCGGCGCTCCACTGCTCAGACCAGGAACTTTGCCAAAGCGGTGGTGAACATGGCCGATGCGATCTACAAGGAGCAGCTAAACACCCGAATTGTGCTGGTTGCCATGGAGACCTGGACATCTGGGAACCCCATTACAGTGGAGTCGGACCCCCTGATAACTCTTCAGAACTTCATGAAGTACCGCACGGAGAATGTGAAAGAACAGAGCGATGTGGTGCACCTTTTCTCGGGCAGCACGTACCAGAGCAGCCGCAGTGGGACGGCATACTCAGGCGGAGTGTGTTCCCTTGCCAGGGGAGGAGGCATCAATGAGTATGGGAATGTAGGTCCCATGGCCATCACGCTTTGCCAGAGTCTGGGTCAGAATATTGGCATGAAATGGAACAACATCCGCAACTCAGCAGGTGACTGTAAGTGTCCTGACACTTGGCTGGGATGCATCATGGAGGATACTGGCTACTACCTTCCACGGAAATTCTCCCGCTGCAGTGTGGATGAGTACACACAGTTCCTGCTCCAGGGAGGTGGGAGCTGCCTCTTCAACAAGCCCAACAAGCTGCTGGACCCACCTGAATGTGGGAATGGTTTTGTGGAGACTGGAGAGGAATGTGACTGTGGCTCGCAAGTGGAGTGTGCCCGCAGTGGAGGGGCGTGCTGTAAAAAGTGCACACTTACTCATGATGCCATGTGCAGCAATGGACTGTGCTGCCGGGAATGCAGGTATGAGCAGAGGGGAGTGGTGTGCAGAGAGCCGGTGAATGACTGTGACATAGCTGAGACCTGCACAGGAGACTCCAGTCAGTGTCCACATAATGTACATAAGCTGGATGGGTACATGTGTGACAACAGCCAGGGTCGTTGTTATAATGGTCGTTGTCGGACACTAGATGGACAGTGCAGACGTCTCTGGGGCTTCAACGCTGCTGATCGGTTCTGTTATGAGAAGCTGAATTCTGAGGGAACAGAGAAAGGGAACTGTGGCCGCAACCCTGGTGGACAGGGCTGGATGCAGTGCAATAAACCGGACGTATTGTGTGGCTTTCTGTTCTGCTCTAACATGACTGCTAAGCCTAAATTTGGGGACCTTCAGGGTGAGGTGACCAGTCTGACCATCTACCACCAGAACAAGTATCTGGACTGCAGAGGAGGGCATGCAGTTCTAGAGGATGGTTCAGATTTGGGTTATGTGGAGGACGGGACGCCTTGTGGACCCAACATGATGTGCCTGGAGCGCCGCTGTCTTCCCATGTCTTCATTCAACCTCAGCACTTGCCCTGGGTCCAGCTATGGACGCACCTGTTTTGACCACGGAACTTGCAGTAATGAGGTCAAGTGTATATGTGACAGTGACTACACAGGGAAGGACTGCAGCGTGTATGACCCCATCCCTGACCCCACAAATCCTCCTGGCCCAGATAAAAAAGGAACATACGAAGAGGAAGATCTGGAGGGGGATAAAATCGATCTTCCTGTCTGTGTCCATGTTGCTGTGTGTCTGTGCTGTCTTCCTTACACTGTGTCCTTTCCACATCGGAGAAGAACAAGTCTTCCAACCACACCATTCCCTACAAAATATCCTCTGAATAGCTTCCAACCGAGATTCATCTCAATGTCCCTCTGTGCCGTCTAACGGCCTGCAACAGTGGAGCGTCTCCTGTCATATTCCAGCCTGCCATGTGTCTTCAGGCGAACCTCATTGACAGTATGGTCATTTCCAGATATAGGGGAGAGTGGTCCTTTGAAGATGACAGACAGCAAGGACTTGTATGTGTTTTTATGTGTGCGTTTATATATCTGTTCCCTCAATTCCATTGTTGAGTGTCCAGGAAGGGAACATGAAATGGATGGAAGGAGCACCATGTAATGATCTCACAAAGACACAGAGCAGTTTTTTTTATGACCTTTGTTCTTGGCTCTCCTGGTCACTGCTTGTCTGTTGCAGAACCTGGAGACCTTGCTCAGACCGGGTTTTTTGAACATACTTTTGAAAAACGTGACTTGAAACAAGAGAGACAATTTTCATGAGAAAACAGGCTGATTAGGAGCTGTTATATCAAAGAAGTTGGATTTCAGTCGAAGAAAGACTGGTTAGTTCTTCTCTTCCCAAAGAAAAAGGCCAGAAGAAGGAACAGATCAACATTGCAGGAGTGGAACTCCATGGACTAAGCCTGGAACTACAGCGGCGGGTCTTACATCTGCCAGTCTGAGCTCAACAGCTATAACTGTGTGCGCTTGCGTGTGTGTGTGTGTGCGCGTGTGTGTGTGTGTGTGTGAGACAGACTGTGTTTTTGGTTTTGGGATCATTGTTACTCCTGCCAGTCTTAGTGACAACCTTGTACAGGGCAGGGACCAGGTCAGTACTATAGAAAAGCAACATTCCACGTGGTTTTGTGTAGACCTTTTTCTTCCACAATATTTGTCTAAAAAACATTTTGAGAAGACCAAAAGTCCTAGAAAGTATGCCTCAAGGATAACTGTGAGCACATGCATGTGTCTGAGGATGTGAGAAATGATGCACAGGTTGACAGCTCTTAAATGTAGATATGAATGTCATCACTATGTTGTGCTGCAGATTAATGTCAGCGTTAGACCAGCAGCACACTACACGGAAAAAAAGGTTTTCATATGATGCAAACATAAGGAACACTAAAATGTGTTCACTCATATGCACTTGTACATTATGGCATTTGCAAGAGACATGTTAATACATGTGAATACATACGTTAATAATATTCTATGAATTCCATAATGCAAATTGTTTATTTGATAAAAATAAGTAAATATCATCTATCTATCTTATCTATCTATCTATCTAACTAACTATGGGCTTGGTAGCATTTAAGTCTTCTGAATATACAGAACGCACAAGAGGTCCTACCACTCCCACTGATTCTTAATCTGTTTACCACAGTGAGATATTCCGTGTTTTTCGCTTCAGCCTGCGCCCATGCATCATCAGTTCGTAATGTTTGTGGACCTGTCCAGATATCCACCCCATTAGCTGTACTTCACTGCCCTCGTTTTCTACTGTAAATGTGTTGATAGGCCCGTAGCCATGAGTTTAACCCGTAGGCTGCATAGACTTTGTTTAGTCTTTCATCGTAAATGAGATTACTTGGTCATATGGTTCCAGTAAGTGTAGCTTCCAAATAAACATTCATGAGCACCTACCAAGTAGCGGTGTTCCTGCACAGCACCCTACGCAATGCTCACAAGTTCCTCTGTAGTGCCTCGCAGGAAAACGGTCTAATACAGCGTTCTGAAATCTGTATGCAAGTCTCGATACCGGTGCCGAATGTCTGTTAATCCAAGCTACACTTAGAAGTCCAATGTGACCAAATGAAAGGAATAAATGTGAACGCTTGTGGGGATAAAAGCATTATTGGGTTGGGTGCTTGTAAAGAAGAGCTTTTTGCACTAAGGTAGATACACATTAGTCATGTACAGTAGGGACTGGGGATTGGGGCTGGTGAATGCTGGTTTCAAATTAAGAGGACAGAGGCTTTATGAGGAAAAGACCCCCGTCCATGACTTTTTAATGTGACCTTTTTAAACAATGTTGCAGTCATTATGACTGAGTGAATGGACGTGACTGTACGAAACACCCATAAAATAAAAATTTAGACATGAAAAATAA +>XM_008008285.2 PREDICTED: Chlorocebus sabaeus four and a half LIM domains 2 (FHL2), transcript variant X2, mRNA +TAAAGAAACATCTGCAGGGTAAGAAGGAAAAAAATCCACCGTGCAAATACATCCCAGGCACATGCCTCCTGAGAAGTGGCCCCCTCCTCCCTCCGCCGCCCCCGGCACCTCCTCGGGCTTCGCCAGCTTCCTGCTCCTGGGAGCAGGCAGAGATCCCGGCGTGGGCAGACCCCTGCCACTGGCGTCCAGGCCCCGTCCGAAACTCACGCCCACGTCGGAGGAGACTCTCGGGATAACCTCGGTGCTCCCAAGACCCGGAGGGCAAGAAGAAAGAGCCCTGGCAAACAAAGGGCACGGGCCGGCAGCGCTGCAGCCCGGGGTGGGGGCACGGTGACCGCTAGGCCTGGGGGCGCCCGCCCCCAGCGCCCCACGCCCGGTGCCTGCGAGCCGAGGCGTGCATCTCCTTATATGGTCAAATGACACGGAGGGGGTTCTCGAGGGCGGGAGCCGCGCAGCGCTCCACTCGGCCGGCAGCGGAGCCGCAGCCACCAGCCGCCCGCGCCCGCCCGCCCCGTCCGGCAGTCTCCGGGCCGCTGCGGCGCGGTGAGTACCTCCAACTCCCTGCGCCCCGGAGGGAGGCCGAGGGGCTTAGCCACCAGGACTCGGAAGAGGGGGCCGAATCCGGTGCGAGACCCGGGGAGAGGGGAGCAGATCCGGAGTTGGGGAGACCGGTTGCTGAAAAGGCAGGTGTCAAAATGACCGAGCGCTTTGACTGCCACCATTGCAACGAATCTCTCTTTGGCAAGAAGTACATCCTGCGAGAGGAGAGCCCATACTGCGTGGCGTGCTTCGAGACCCTCTTTGCCAACACCTGCGAGGAGTGTGGGAAGCCCATCGGCTGTGACTGCAAGGACTTATCCTACAAGGACCGGCACTGGCATGAAGCCTGTTTCCACTGCTCGCAGTGCAGAAACTCACTGGTGGACAAGCCCTTTGCTGCCAAGGAGGACCAGCTGCTCTGTACAGACTGCTATTCCAACGAGTACTCATCCAAGTGCCAGGAATGCAAGAAGACCATCATGCCAGGTACCCGCAAGATGGAGTACAAGGGCAGCAGCTGGCATGAGACCTGCTTCATCTGCCACCGCTGCCAGCAGCCAATTGGAACCAAGAGTTTCATCCCCAAAGACAATCAGAATTTCTGTGTGCCCTGCTATGAGAAACAACATGCCATGCAGTGCGTTCAGTGCAAAAAGCCCATCACCACGGGAGGGGTCACTTACCGGGAGCAGCCCTGGCACAAGGAGTGCTTTGTGTGCACCGCCTGCAGGAAGCAGCTGTCTGGGCAGCGCTTCACGGCTCGCGATGACTTTGCCTACTGCCTGAACTGCTTCTGTGACTTGTATGCCAAGAAGTGTGCTGGGTGTACCAACCCCATCAGCGGACTTGGCGGCACAAAATACATCTCCTTTGAGGAACGGCAGTGGCATAACGACTGCTTTAACTGTAAGAAGTGCTCCCTCTCACTGGTGGGGCGTGGCTTCCTCACAGAGAGGGACGACATCCTGTGCCCCGACTGTGGGAAAGACATCTGAAGTCAACACGGAGAAGTTGCTGCTTGTGATCTCACACACAGATTTTTATGTTTTCTTTCTCACCCAGGCAATCTTGCCTTCTGGTTTCTTCCAGCCACATCGAGACTTTCTTCTAGTGCTTTTCAGTGATACTCACGTTTGCTTCAACCCTTTAGTGCTTTGTGCTAGTTCAGTCCCAGGGAAAGAGAAAACTTGCCCTAGGCCCTAGGTGGGAAGCTGGTTTGAAATTTTTGTAATCAAGTAAGGCACAACCAAATGTAAAAATCCTTTTGAATGATGTCTTTATAAATCTTTCTCTCACTGCCTATTTAAGTGCAATTAATGTATGCCACAAACTTGAAAGTTTTCTAAACTCAGTAAGGTAATGACCAATTGGTATTTACAGCTCTGTAACTTCCTGTTGTGTCAAGTCTAAACCAAGATTATGTGACTTGCAATAAAGTTATTCAGAACTAAA +>XR_006147264.1 PREDICTED: Dipodomys spectabilis small nucleolar RNA SNORA40 (LOC122106945), ncRNA +AGCAATTGTATGTGTGCCTTTGTTTCATTTGTAACAAAGCCATATAGACAGGTGCAAACAGCAAATCCTCTACAACCCAGAACTCATTGTTGAATATGAGTTTGGCACATGTAAAAAGAATATG +>XM_034342832.1 PREDICTED: Prunus dulcis ATP-dependent 6-phosphofructokinase 6 (LOC117614132), transcript variant X3, mRNA +CCAATTTACTAACAGCCCCTCCTCCCCTGTCCGAGGACCATACACTCCGATTTCGTTTCTGCTTCAATTACTTTCAATCGCAGATTATTCTTCTGGTTTTGTTATGAGTGATCAGAAATCCGCAAAAGCAATGGGGCCTACTGGAAACTTGCAGATGAAGGTCGTGAAAGGCGATTTTGGTTATGTGCTCGAAGACGTGCCTCATCTCTGCGACTACTTGTCCGATCTTCCTACTTATCCCAATCCGTTGCAATTCAATCCGGCTTATTCAGTTGTAAAGCAGTATTTTGTTAATGTGGACGATACTGTTGCTCAAAAGATTGTTGTCCACACGGATAGTCCAAGAGGGACGCATTTTCGGCGAGCAGGACCACGCCAAAAGGTGTATTTTGACTCGGATGAAGTTCATGCTTGTATTGTAACATGTGGTGGTTTGTGCCCTGGACTCAACACGGTGATCAGGGAAATTGTGTGTGGACTTTATCACATGTATGGCGTCAACAAAGTTCTTGGGATAGATGGAGGATACAAGGGTTTCTATGCCCGAAATACCATTGACTTAACACCCAAGGTTGTCAATGACATCCACAAACGTGGTGGTACTATCCTTGGTACATCACGAGGAGGACATGATACCTCAAAGATTGTTGACAGCATTCAGGATCGTGGAATTAATCAGGTTTACATAATTGGAGGTGATGGAACTCAAAAAGGAGCAGCTGTCATCTATGAGGAAATTAGACGGCGCGGCCTCAAAGTTTCCGTTGCAGGAATTCCTAAAACCATAGACAATGACATTCCGGTTATAGACAGATCCTTTGGCTTTGATACTGCAGTTGAGGAGGCTCAACGTGCCATTAATGCAGCTCATGTTGAAGCTGAAAGTATTGAGAATGGTATTGGTGTTGTGAAGCTAATGGGACGCTACAGCGGTTTCATAGCTATGTATGCTACACTTGCCAGCCGAGATGTGGACTGCTGTTTGATTCCGGAGTCCCCCTTCTATCTTGAAGGAAGAGGTGGACTTTTCGAGTACATAGAAAAACGACTCAAAGAAAATGGGCATATGGTTATTGTGATAGCTGAGGGTGCGGGACAGGATCTTCTGTCAGAGAGCTTGCAATCCATGAACCAGCAGGATGCTTCAGGAAACAAGCTACTTAAAGATGTTGGCCTATGGATTTCTCAGAGGATAAAGAATCATTTTGGGAGACAACAAAAGATTTCCATCAATCTCAAGTATATAGCATATCACTGAGAAGCAAAACAAGGTTGTGATTACCGACAGGATGTGGGCACGACTTCTTTCTTCAACTAACCAGCCGAGCTTCTTGAACCCCAAAGACGTCATTGAAGTCCAAG +>KU329545.1 Uncultured bacterium clone OTU_22088 16S ribosomal RNA gene, partial sequence +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCGTTCGAAACTGCAAGGCTAGAGTATGGTAGAGGGGGGTAGAATTCCACGTGTAGCAGTGAAATGCGTAGAGATGTGGAGGAATACCAATGGCGAAGGCAGCCCCCTGGACTAATACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>XM_012378055.1 PREDICTED: Linepithema humile serine/threonine-protein phosphatase 4 regulatory subunit 2 (LOC105678582), mRNA +TCCCTCCTGTCATATCTCTCATTGTTGCTGTTTTGTGGCCGATAATCAAGACAGTCGAGAGGAAGCAGGGAAGACTTGTCAGAGGAGGTTGTCGGCGGCGGCGGGGAAGATGGAAAATTTAGAGGAGGTGTTGCAAGCGCTCGATGAGTTCCAGAAAATGCGGCCGACGGTAATCCCGCAGGAGTTGGAGGATTATCTGTGCTGGGTCGCAAAGACGGGCGATCCCGTCTACCAGTGGCCGTTGATCAAAACGCTCTTCAGGGAGAAGCTCACGCGCGTAATGACAGATTTTTACGAGAGTTGTCCCTCTCTGGAGCTGGCGACCTGTCCCAACGTGGAGCACTTCAACTACGACACGATGAAGAGCAGCCTTCTGGAGAGATTAGAGTCATTTGCGAATGCGCCCTTCACAGTCCAGCGGATATGTGAATTACTGACGGCGCCGCGCAAAGAGTACAATCGCGTGGATAAATTTATGCGCGCCATCGAGAAAAACATTCTGGTGGTTTCGACACGTGAACCCGGGCCTATCGCCAGACGCGGCGAGACCGGCGACGGTATGGTGAACGGGTCCGTCGAGGAGGACACAGCCTCGATCATGCAGCAGCAACCACCGCCACCGCCTCTCTCATTGTCACCGTCGCCGTCATCGTCGCTATCACCGTCATCGTCGCCGTCGCCATCGTCATCGCCATCGGCATCACCGTCGCCATCACCTTCGCTCTCACCCTCGTCCTCACCTTTGCCCTCACCCTCATCGTCGTCATTACCTTCACTGTCACAGCCACCGTTGCAGTCGTCACCGCAATCACCGTCGCAACTACCACAGACAACGCAACCGGCGCAGACAGGTCAGCCAAACTCTCAGGATGTGGAGATGGAATACTGGGAAAAGGACTGCACCTCAACCGTCACCATCAGTGTGCACACCGTTGTGGAAAACGAAACGCCTCCTCTCTTGCACAGCGGCGTCATACCGGCCGCTGGCTCACCACTGGCTAAAAGCATATTCACCGCGAGTGAGGCGACGCGGGAGAAGCTGGAGCAGGTCGCCTCTAGAACGGAAATCGCGACGTCCAATTATGTCCCCGCTACTTCAGACTTTTCTACTATATCGAATTTAACCTCGCAGGAGTCGGCGCCGACCGCCGTTCCAGTTGTGCAAAGTCTACCGGCTGCTGAAACGGTCTCCGACGATTCGCCTGTCGGCAGCGCCGACGTGGCGGAGGCGATCATGAACGAGGACACGACTTCTCAACCTAATCTAGATTTGGAGAGCGAAGAGATCGAACCGGCCGCAACGGCGACCACCACGACGACAACGATGACGACAACGGCGACAACAACAGCGACATCGTCGACGACGTCGACGTCGGCGGCAACGACGACGGTGACCGTTGTAGCGACGGTGATACCGTTGACGACGGACACCACGCAGAAGCTGCAGGCCGCTTTCCAAGCGAAGCACTTTGAGCCCGACGATAATAAGTGTCTGGAAAAATCCAACGAGAAGACACCGGTCTCGTCAACGGTGGAAGAAGGAATTGAACATTCCATGAAGAATGAAGAAACGACATTGGCAAAATCGAAGCCCGAGTGTGCGGATTCCAACGAGATGTCTCACAATGAAAGTAGGTTAACTGAAAATTTGCTAGAAACGGATATCGAGATGAGATCCGACGCTCTGGCGAATGACGCGGAAAGTGTCAGCGAGGAGAGAACTGCGAATAAACCGGAAGAGGAGGGAACATCGGTCCTCGAAGATGTGGATGAAGAACATTTACGGGTGGAGGAAGATGCGAAAGGAGAAACGGCGGTATTCGTCGAGTCGCAATCCACGGAGAAGGACAGTGCAGTCACGCCTGACGAATGCGCGGTTATTGTATCCAGCGGCGAGGCATTGTACAAAGCGGAGAAGGCCGAGACGCATCCCACGGAAACGTCGACGACAATTTCCTTGAAGGAGAGTTTTACACATGACCAATCTATAAGCCAAAAAGCTGAAATTATAGAAGTAATGGATAAGGTTCTAGAGGCCGTTCCTAAGATAGCGTCTTCTAACGGCAACGACGACGGACAGGAAATACAGGACACTGAATTCAACACGGATAATTTGAAAATGATGGAAATCATCAACGAGAAGGTGAGTCTTACCGAGTCCGCGATGTCGGATCCGATAAGCGTTATAGAGAAACCGAAAGAAGTGACATCCGTGATTGAGAAACTCGAGCTCGTCTCGCCTACTGTCGAAATGACAGAGAGCTCTGATAACGTTGGCTATCAGTCGCCAAAGGACGATAATTCAGCAGGCATCCAGGACGACGGTTTAGCGAATGCGCAAGGTAATAAAATGGCGTGCGTCATTAAAGAGAATCAGTCTTCTGTAATAGAGAGTGTGGCGTGTAGAAGAGAATCGATGGAGTTGATGGAAGTTGACGACGAGGAATCACCGTCGACATTTCAGCAAGACGAACCGATGGAGCAGGAAACAATGGACGATTTGTCGAAGAGTTAATCCCGGCTCATTTAATCGGTTGCATGTCTCTTTCCCTCTGTTTGATATCTATTTTTAAGGGTAGATGTCGCGAAATAAGAGCTAATACGTAAGATATCTTCTTGCGCGTAAGATGCTTGGTAACTGACGAACACAATTAAGCATATAATTTTTAATAGCCGTTAATTATGAATTGGAATTCAAATTATGAGCAAAAATTCTCGATATTGTTTGCTGCTTTATTTATTTCGGATACTTCGCCGTTTAGACTGAGCTCCGGTATTTACTTACAAAGAGATTTATCGAAGTGAATTTTCTAACTCTTGGAAGAAGAAAAAAAGAACACTGCCTATTCCCAAACGATTGTAATACTGAAACTGCTTGTATAGAAATCAGATTTGGTAAACATTTCAATATCGATTTATACAAATACCATAGATATCTGCTTAGAATAAGGTTGTGCCTACAACTATTGTGTATATTGCGTATTGGACAAGTATACCTGATGCATAAATTTTTAAATGATGACGTATAAGCACTACAGATTCGAGTATCTCGCGGTCGAGGTAAACGAAACAGCGTTCGTTCACGATCACAGCCTTATACTAAGTTGCGGTTGAATCTCGAAACGCTTCACGGCTACTTCTGAGAGAACGTTCGAGATTGATCGAAGATATTATTCCTTGCTAAAACTTTCTACAGTACGTAACGGCATTTGGAAATGTGTTAGAACGATGTTACTTCGAGCAGCTGTCTACTAAAACTCCGCTACAGCTAATTCAAAATTGATATTCCAGACGTATCGCTTGAAATCAGTATGTCAATTTCATTTCGTTTCTGTTATTATATCAGTGGGCAAAAATAGTTTCCTTCTTTTTTTACCGAGTGTTTACTGCATATGAAATGTAAAGAAAAAAAGAGACTAGTAACAAACTATATTTTATGAATTACACTAGCTCTTTGTATTTTCGTTCCTCCTATTTTGATATTGTATTTTCAGTAAATGAAGAATGTAGTTAAGTCGCAGATGCGTGCGAATCGGAACAGAAATCTTCAAGTGGCCCAAAACTGATAAAATCGATTCACCGCGGGGGCGCCCAGGATCCCGTTAAGATCGTTTCGAACCGCTTACAGTTTATGTATCGGCACAAGATGTTTTCGAGCGGATTCGGATTCGATGCGGATCCACCGAACCGTTATTAGAAGAATATCGTAGGAATGGGATATTAATTTAAGAATTAATATAGATTAATGATACATGATACACGCGAATGTGGATATCTGAAAAAAAATAGCTGTACATTATTTTATAAGAAAATATATAAAAATGATTGTCAA +>AB050083.1 Mus musculus VH2C mRNA for anti-A/dT antibody, partial cds +GGAATTCATGAAGTTCGGGCTAAGCTTGATTTTCCTTGTCCTTATTTTAAAAGGTGTCCAGTGTGATGTGCAGCTGGTGGAGTCTGGGGGAGGCTTAGTGCAGCCTGGAGGGTCCCGGAAACTCTCCTGTGCAGCCTCTGGATTCACTTTCAGTAGCTTTGGAATGCACTGGGTTCGTCAGGCTCCAGAGAAGGGGCTGGAGTGGGTCGCATACATTAGTAGTGGCAGTAGTACCATCTACTATGCAGACACAGTGAAGGGCCGATTCACCATCTCCAGAGACAATCCCAAGAACACCCTGTTCCTGCAAATGACCAGTCTAAGGTCCGAGGACACGGCCATGTATTACTGTGCAAGAAGGGGTACTACGGCCCTTTACTATGCTATGGACTACTGGGGTCAAGGAACCTCAGTCACCGTCTCCTCAGAGAGTCAGTCCTTCCCAAATGTCTTCCCCCTCGTAAGCTTGGG +>XM_010007313.1 PREDICTED: Chaetura pelagica leucine-rich repeat-containing protein 4B-like (LOC104397361), partial mRNA +AGCATCCCCTCCTACGCCTTCAACCGCGTCCCCTCCCTGCGCCGCCTGGACCTGGGCGAGCTGAAGCGCCTGGAGTACATCTCGGAGGCGGCTTTCGAGGGCCTGGTCAACCTCAGGTACCTCAACCTGGGCATGTGCAACCTGAAGGAGATCCCCAACCTGACGGCCTTGGTGAGGCTGGAGGAGCTGGAGCTGTCGGGGAACCGCTTGGGCAGGGTCAGGCCCGGCTCCTTCCAGGGCCTGGGCAGCCTGAGGAAGCTGTGGCTGATGCACGCGCGGGTGGCGGCCGTGGAGAGAAACGCCTTCGACGACCTGAAGGCCCTGGAGGAGCTCAACTTGGCCCACAACGAGTTGGCCTCTTTGCCCCACGACCTCTTCGCCCCTTTGCACCGCCTGGAGCGGGTCCACCTGCACCACAACCCCTGGCGCTGCGACTGCGACGTCCTGTGGCTCAGCTGGTGGCTCCGGGAGACCGTGCCCAGTAACACCAGTTGCTGCGCCCGTTGCCACGCGCCCCCGGCTCTGCGGGGTCGGTACCTGGGGGAGCTGGAACCCGGGCACTTCACCTGCTACGCCCCGGTCATCGTGGAACCTCCCGCCGACCTGACCGTCACCGAGGGGCTGGCGGCAGACC +>XM_053147013.1 Fusarium falciforme Sm domain-containing protein (NCS54_00138400), partial mRNA +CCAACTCTACCACGCCCTCTATTGATTTCGCCGCCTGCGGAAATGGACTCGGAGCAGGCTCGAGAATACCTATCGGGTATTCTAAACAAGAACCTGCGTGTATACACCACAGATGGTCGCCTATTCTGGGGTGCTCTAAAATGCACCGACCCTGATAGGAACATTGTTCTTGCTCATACATACGAGTACCGGCAACCGTCATCTAGGCAGCGTGCAGAAGCAGCCGAAAAGGCCGGTGGCGAAACAATCAAGCTTGACATGAGCTCCCGCTATCTGGGACTAGTAGTGGTGCCTGGACATCACATCGTCAAGATGGAGGTTGAGGAATTTGCGAGCCAAATGCGGAACCAGATTTGA +>XM_010271001.2 PREDICTED: Nelumbo nucifera uncharacterized hydrolase YugF (LOC104606003), mRNA +CACCCATCCAAATACTAATTGCAAACTGCAGCATTTATAATCGTATTCTCTCGTTTGAGCTTGAGGTCTCTCTTTCACTCTCCCCTCTTATTGGATGCCGAAATCTGCGGTTCCTTCTGTTCGTTGGTATGGTTGGGGTCGCCACTCGCCACCTGAGACCTCACCTCTAATAGGTAGGTATTGTTTGGCTACAGCTCCACCGCACCCCTTTCTCATTTCTCCTCTTCTGCTTTGGGAATCCTATAGTTCAATCGGTTCTGCATCGCCCCAGATTGATCATACTTCGGACTCGGAGGCGTATTTCGCTCAGATCTGTATAATTATCGTACCCATTTCATAGCTGGATTGAAATCGAACAACCTCCCAGTTTGTAGTGGTTCCGGTCCCTCTATTCCCTCCCAAACCTTCCATGGTGAAATCCCCAATTATCTGGTCTCCAACCGGAGAGACACCCTCCATTCGCGAGTCCCTTCCAATTTCATCAAGAAATCCGCACAAACAATAATAGTAAGGATAGAAGAACTTGGACCCCTCATCCCTCTCTCTCTCTGTAATTGATCCCTTACTCTCTCTCATGGCTAATAAATGTTTCAGCTTCACCGCATCAAGGGACTGGTGCTACCGTTACGCCTTCGCTAGCACTGGGCTTCGATCGGCCACGACCGACCTCGGCGATGGCACTGTCGTACATTGTTGGGTCCCCAAGACGCACAAACAGAACAAACCAACTCTGCTCCTACTCCATGGATTTGGAGCCAACGCAATGTGGCAATGGGGCGATATCCTCCGCAGCTTCGTCTCCCGCTTCAATATTTACGTCCCCGACCTCCTCTTCTTCGGTGACTCGTTCACCACTCGCCCCGAGCGGTCCGAGTCGTTCCAGGCCCAGTGCATGATGAGAATGATGGCGGCCCACGGGGTGCAAAAGATGATCTTGATTGGGCTAAGCTACGGCGGGTTCGTCGGGTACGGCATGGCGGCGCAGTTCCCGGAGGCGGTGGAGAAGGTGGTGATATGTTGCTCCGGGGTGTGCCTGGAGGAGAAGGATATGTCGGAGGGCTTGTTCATCGTCTCCAACTTGGACGATGTCTTCAGCGTTTTGCTGCCGCAGACGCCGGAGAAGCTTAGAGAGCTCATGCGGTTATCGTTCGTCAAGCCGGCCAAGATCGTTCCTTCTTGCTTCCTTCGCGATTTCATCGACGTTATGTGTACAGAATATGTTGAAGAGAAAAAGGAGTTGATCCATGCTTTACTCAAAGACAGGAAGCTTTCTGATCTTCCCAAAATCTCTCAGCCAACGTTAATAATCTGGGGAGAGCAAGATCAGGTATTCCCATTGGTGTTGGGACACAGATTGAAAAGTTATCTTGGGGAGAATGCTCAGCTAGTAGTGATAAAGAATGCGGGGCATGCTGTCAACTTTGAGAAGCCCAAGGAGATATACAAGCACTTGAAACCCTTCCTTTTTGATTCTCCTCCTCCTTCTCCTCCATCACAGCATCCTCCTTCAAAGTTTCTTGAAAACAAAGTAGATTGATGAACTGGTTTAATCTGATACGTACTACATTGTTAAACTAATATCATGGCTATATGGAAGCTGCTGGTGGCCTGGTGGGACTCTTAGAAAAGGCAGGCAGAGGAAGGTTTAGTCCAAATGTGCAACAAATTAATTAAGGATCCATATTGGTGATGATGAGTATGTATAATTGATTGATAACATAAATGCATATTGTACAATAGATCGATTGATTCATTGATTGA +>KP859945.1 Uncultured bacterium clone OTU_340 16S ribosomal RNA gene, partial sequence +CACGTAGGGGGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGTGTAGGCGGCTAAGTAAGTCAGGTGTGAAATCCCTCGGCTCAACCGAGGAATAGCACATGAAACTATCTAGCTTGAGTGCAGGAGAGGGGAGCGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAAGAACACCGGTGGCGAAGGCGGCTCTCTGGACTGTAACTGACGCTGAGGCGCGAAAGCTGGGGTAGCGAACGGGATTAGATACCCCGGTAGTCCCAGCCGTAAACTATGGGTACTAGGTGTTGGCAGTTAACCTGTCAGTGCCGCAGCAAACGCATTAAGTATCCCGCCTGGGGAGTACGGCCGCAAGGCTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCAGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCGGGGATTGACATCTTGTCGAACTTGGTAGAGATACCGAGGTGCCTTCGGGAACGTCAAGACAGGTGGTGCATGGTT +>XM_014748744.1 PREDICTED: Polistes canadensis E3 SUMO-protein ligase NSE2-like (LOC106786730), transcript variant X4, mRNA +TTTAATAACAAAAAACAAATAAAAATGACTCAATCAAAAGAAGTAGCCGAAGAATTGTTCGAATGTTATACAAAAACTGCTGAGAATATAGTTATATACTTTCAAGATAAAGAAAAGATAATAGCTGATTTGAAAGATGTTGTACAAAAGAACTGTGAAATAGATACTAAATTAAGTATGATTCAAGAGATAAAGGATGAAATATTAGAGAAATATGGTGATAAGAAAATAACGGAAAAAAATATACCTAAAATTATTAAGGATTATGAGAAATCTATATCTACAATGAATGTTGATGTATCTACAAATAAAAGATTACTGGAATTTAATAGACAATTGGAAGCATTATTGAACGATGCGAACAAAAATCAGAATATTGAGGAAAGTAACAGTGACGAAGAATTACAATTACAAACAGATTCTATGAATGTGATAGATCCTATTTCAAAAATGAGGATAAAAGATCCGATTAAAAATATTGCATGTGGACATACTTATGATCGTCAAAATATTATGGCATTGTTAAAAGTAAATAAAAAAACAAGGTGTCCCATGGTTGGATGCAAGAATACAAAATACATAGAAATCACAAATCTTCAAACGGATGTTGCAATGAAAGTATTTCTTCAAAGAAATCCTGTTTAATATTGTGACATTAAATGATTTTGTTCAGACATGCTAAAAATGTGATTATTTACTAATGTAAACAAATCACAAAATATTTCTATATATATTTAGATTTATATATATTATATAAATACAATTAGTATACCTACACAGAGATAAAG +>XM_023661946.1 PREDICTED: Cucurbita pepo subsp. pepo vacuolar protein sorting-associated protein 54, chloroplastic-like (LOC111781387), mRNA +GAGGCGGAGGTGGAGGTGGATTCCACTTCATAGAGGCGAGAGGCTTGAGGCTTGAGGCGAGAGGCTTGAGGCTTGAGGCGAGGCGCGCACGGAATTCTTGAACGAGATCTACCGCGGCACCGGACTTGCATTGCCAACTCTTATTTTCTCTCTCTTTCCTTCACCCAGCGGCGTCCACAACCTCTGTTTTCTTCATCATTCCTTTTCCATCTGGTGATTGAGATCCATCCGAAGCACTTCTTCATCTCGATCTCTCTCGCGATTGGAATTCATCTACTGAATGCCATCTTTGGAACCCGCCATTAGTTCATGATTCTAAGACTTTGAGCATGGACTCCCAGCCTTCCCAATCGGGAAGGTCCCCGACCGAGTATTCCAGCCTTCTCAGTAGAGAAACGACTCTTGGTCGAACTACTTCATCCTCCTCGCCTAAATCCAACCCCGATGCCAGCAGCCAGAGCTTGTCTTCAATTCTCAACAACCCTCACGCTGGCAAGTCCGATGCGTCCTGGGTTGGCTGGTGGTCCTCTTCCTCCACCGTCACCCCACCTGAGTTTATTCCCCTCACATCCTCCACAGCCTCATCGGAAGTTACTCGATTCGATTTTAACAACTACACGGCCTTGATCTCCGATTCTTATAACCGATTCGAGGACATACGAAACCATTCCAGCAAAGAGAACGGTGGCTTGGATAGCATTGGGGGCCAGGGGGAAGCCCTTGTGGCATGTTTGAGAGAGGTTCCGGCGCTTTACTTTAAGGAAGATTTCGCATTGGAGGACGGGGCGACATTCCGTGCAGCGTGCCCCTTCTTGAATGTATCGCAGAATTTAGTGCTGCAAGAGAAGCTTTCGCATTATTTAGATGTCGTGGAGTTGCATTTGGTCAAGGAAATTTCACTGCGTTCCAATTCTTTCTTCGAGGCTCAGGGGCAGCTACAAGACTTAAATGTGAAGATTGTGGAGGGATGTAGCCGGCTACGGCAATTAAAGGAGACCATACGGCTCTTGGATGTTGATTTAGTGGACTCTGCCAGGCAAATTCAGGAGCAGAATGCGACCAGGAACAATTTGTTGGCTCTTCAGCAGAAATTGAAGCTTATTTTATACGTTAATCAGGCCATTTCAGCTCTTAAATTGCTTGTAGCATCGGCAGATTGTGCTGGAGCCTTGGATGTGACCGATGATTTATTACATCTTCTGGAGGGTGATGAACTTGCCGGTCTACATTGCTTTCGCCACCTCCGTGATCATGTGGCAGCATCACTCGAATCCATAACCAGCATTCTTTCAGCAGAATTTATGCGTGCCTCAATTCATGATGCTGGAGATGTTGATCTCGTAATTATATCTGAAACAAAAGCAAGCATTTCAAATTTAATGAATGGAAAGGATGAAGTCAAGTTAACATGTATCTTGGATGAGGAAGAAACCTCCAACTTCCGTGATCGTCTTCTTCCTATTATCATTGGATTGCTTAGGACCGCCAAGCTTCCCTCTGTGTTGAGGTTATATCGTGATGCAGTTACAGTTGATATGAAAACTGCTATTAAGAATGCAGTGGCAGAATTACTTCCCGTTCTTCTAGTCAGACCTCTAGACTCAGATTTTGCACCGGGAGAGAGAACGAAGGATACAGATGGTGGAGCATCACTCGCAAGCAAGCTGAGGGGCCTGTCATCTGAAGGTTTTGTTCAACTTTTAAATGCCATTTTCAAGATTGTACAGGTACATTTGGTGCGTGCTGCAGAAGTGAAAAAGTCTATCGAATGGATTATGTGCAACCTTGATGGCCATTATGCTGCGGATTCAGTTGCTGCTGCAATTGCTACAGGTGCTGCAGCTTCTGGTACAGCTCAAGATAGTGATAACCAAGGTGGTTTGCCTCTTCCTCATGTACCTCAGGGTGCTGCCAAGGTTACTTCCTTACAGGGAAAAGCAAATGATGCGGCAAACCCTTCAAACATGTCTAGAAATTTCAGGGCTGATGTACTGCGAGAAAATACGGAAGCTGTTTTTGCAGCTTGTGATGCTGCTCATGGAAGATGGGCTAAACTCCTTGGTGTTCGCATTCTAGTTCACCCAAAGCTGAGGTTGCAGGAGTTTTTAAGCATATACAACATTACACAAGATTTTATAATGGCCACTGAAAAGATTGGTGGAAGGTTGGGATATAGCATTCGTGGAACTTTGCAGTCCCAGGCCAAAGCTTTCGTTGATTTTCAGCATGAATTTCGTATGACAAAAATAAAAGCAGTGCTTGATGTTGAAACATGGGTTGAAGTGGATGTTCCCGATGAATTTCAAACCATAGCTGAATCACTATGTTTTCATGAGCTGCTTTCTGCAAAACTTGATGATTCTCAGGGTAATATGGATCAAAGCTACAGTGATGTAGCTACAAATAATGAAGATGCACGCATTATAGGTGGTGTCAATGCTCAACAGCACTCTGAACAGGTTGATTCAAGTGACATTTCTGGGAGGAATACTGAACATGTGAAGCCTACTCCTGCAGATACAATTGAAAACAGTAAAGCTGATGTTGCAATTCCTGCGACACAAAATAACAATACTAATGTGAAGGAACGTGGAAAATCAAGTTCTCTGACTTTGCAATACAAAGGCGTTGGTTATCACATGGTTAACTGTGGGTTGATCTTGCTCAAGATGTTGTCTGAGTACGTTGACATGAATGATTCTTTGCCAGCACTATCTTCTGAAATCGTTCATCGTGTTGTGGAAATTCTCAAGTTTTTCAATACAAGGACTTGTCAACTTGTTCTTGGAGCTGGTGCTATGCAGGTGTCTGGTTTGAAGTCCATCACATCCAAACACTTGGCTCTTGCCAGTCAAGTTATCAGTTTCACCTTCGCCATTATTCCTGAAATGAGAAGAATCCTTTTTCTCAAGGTACCTGAGGCACGAAAGACACTATTGCTCTCAGAGATTGATCGAGTGGCTCAAGATTACAAAGTTCACCGAGATGAAATTCATACTAAGCTGGTCCAGATAATGAGGGAAAGGTTGTTAGTACATCTACGTGGCCTGCCGCAAATTGTTGAAAGTTGGAATAGACTAGAGGATGCTGACCCTCAGCCCAGTCAGTTTGCTCGATCCCTTACCAAGGAAGTTGGGTACCTTCAGCGTGTTTTATCTCGAACCTTACATGAGGCTGATGTTAAGGCAATATTTAGGCAAGTGGTCAAAATCTTCCATTTACAAATTTCTGAGGCATTTTCACGGTTAGACATAAGCACCCCTCAAGCAAAGGACAGGTTGCTTCGGGATGTTAAGCACATTCTTGGCTGCATAAGATCTTTGCCTTGTGATGATTCGAGTAAACCTGACATCCCAAACTGGGGGCAACTTGATGAATTCTTGGACCAGAGACTCGGATCTGAAGCTGGATAATGATGTGAATGTGTATTTTCCATTGTTTGCTTTTTTGATGAAGGGGGTCATATTTGAGGAGTAAATAACAGGATATCAGAAGTCAATTTTCAACCTATGTCATCTCCCTTGTACACCTAAAAATCAAGGTTTTGCGATTCTCATGGACAGGCGTGAAGTACAGTTTGGGATTCAGATATTTCAACGAAGTTGGGCCTTGCCCTTTTTGCTGAAACACATAACATATTATATGTTGTATTGGCTAGGCCAACACTTTTTGCTGCCCTAATTGTAGTTATGTTTAGAGAAAGAACAGATCAATTTGTTTACTCGAATAGATTTTAGTTCCTTGCTTTCTTTTCTTTCCCCCCCTTCAATTTTTATGGGCTTTCGTACAGTTACGCATGTTTGTACTTTGTAGAGCTAAATTTGTCATTATTGCCTATAAATAATTTTGCTTA +>XR_005523613.1 PREDICTED: Hibiscus syriacus uncharacterized LOC120200931 (LOC120200931), ncRNA +AAGTAAAATCAAAAGATTCAAACATTGGAATATACACTTGATCAAAAACACACTAACCCTTTTTTACAAATCTTTCTTCTTTTCATCATCTGACCCTTACCTCTTTGTCCCAGTGTCTCCTACGGTGAAACTTCGGTATCTGGGTTTTACCTTTTTTCTTTTACCAGAGATAAAATTTCACTGCTTTGGATCCGCCCCATACCCCTACTTTTTACCCTACCTTCCTTTCACCCTTTAAATTGCTAGACGATCCAAGCTCGCCTAAAGAAAGAAACAAGTGAAAGAAGAAACAAAATTTTCTAACTCTTTGAAAAGTTGGGTCAATCGCCAGTACATTCCAACACTTGTTTCTCTCTGGCAGTATGGATGATTATTACAGAAGGAACCATGTTCCAGCTTTTGGTAGCTGGGATTGGAACAATGACCTTCCTTTTACTCAGTGTTTGAATCGGCTCGGCAAACCGGATTCCTTCGTTATAGCTACGCCGAGGATCGTGATTTATACGTCGCTGGCGATCTTTATGAGAACGATGTCGTCACTCCCGCCGTGATTGTCGTTCCTCGTAAAAGGACAAAAGTAAGACAGTCGCATGTTAAAGACGGCAAAAAGCAAGAATGGGAGGTCAGTGACGTGAAACAACCGGCATCGGCAGCAAGCCCCATTCCCGTGTCCAAGCCAACTCCAAAACCCGTTGATGAAGACCTTTACAAAATCTCGCCTGACCTACTTTACACTAAAACCAAAAAGAAAAAAAGGTTGAGCTTGTTCTCATGCTGTTTGGTGCCAAGTTGATCATCTTGGAGGATTACGTAAATATAGTTCTTTTGATCCGTCCCTTCCCCTTGGTGTACTCAAGGGT +>XM_003231613.2 Trichophyton rubrum CBS 118892 uncharacterized protein (TERG_07960), partial mRNA +ATGGCACCATACACCAAGGTACAGGAGGCGAAAAACAGCAACGGTCAGGCAACAGGGCCTCCTGGCCCTCCACCAGCCGCAGTCCCTCCTCCGCCTGCTGATCTACCACCAGGGGCCGTTCAGCAAAAGCCTGAAGCCGCTGTCGTCCCGGCTATTGTGGTCCGGGACTGGACGAACGAGGACAACGCCCAGTTGAAGAAGTTGAAGGAGGACAACATCAGCTGGCGGAAAATCGCAGAGACGATGAACTGGCCGGTCCACGAGCTAAGGGAACGATGGCGGGCCATCAAGCCTGAGCTGCCTAAGAAGTCGCAGCAAGAGCCAGAAAAGGTCAAGCAAGACGGCGTTCAGGAGAAGCAAGTCGTGTTTATGGAGTCAGTCAAGGAGAAAAAGAGTAAAGAAATCCCAAAGGTGGTATATGCAGACGAGAGTCTGAGTACAGAGGAGGCCGTCCTGCTCAGCAAGCTTGCGGACAAGTACGACAAGGAGATGTGGTTACGCATCTGCTCCAAGTTCTTTGACAAGACCGGCAAGCGACTTGATCCAGACGAGGCCAGACGGCACATCCGTCCGTCATAA +>X84340.1 H.sapiens mRNA for Ig light chain, variable region (ID:CLL001VL) +CAGTCTGTGCTGACGCAGCCGCCCTCAGTGTCTGGGGCCGCAGGGCAGGGGGTCACCATCTCCTGCACTGGGAGCAACTCCAACGTCGGGGCAGGTTATGATGTGCACTGGTACCAGCAGCTTCCAGGAAAAGCCCCCAAACTCGTCATCCATGGTAATAGCAATCGGCCCTCAGGGGTCCCTGGCCGATTCTCTGGCTCCAAGTCTGGCGCCTCAGCCTCCCTGGCCATCACTGGACTCCAGTCTGAGGATGAGGCTGATTATTACTGCCAGACCTATGACAGCAGGCTGAATATTTGCGTGTTCGGCGGGGGGACCAGGCTGACCGTCGTAG +>XM_033723222.1 Mytilinidion resinicola uncharacterized protein (BDZ99DRAFT_493278), mRNA +CGCGTTAGTCTGTCCACGTCGTCACTCGAAATCTCTTGCTAGGCTTGCTTGTTCGCACACTTAAGCTGCTCCTCTTCAGCGCTCTCGCAGCACCCCGAAACGCGTCAAGATGCAGCCCCTGGAACGAAGTGACATAGACCCGCATGCCGAAAGGACGCTTCATGCTCAGGGTAGAGGAGAGAAAAGAAAGCTTCTAGTGCTATCCGAAGACACCCTTGAAAGACATAACAAGTGCTATCGAAAGACGAATGAAGCCTTCGGAAAGTCCGCCATTCGCCAGGAGGGGGCGCTGGCTTACGAAGAGGAAATGTATCATCTGCACTACGGCAAAAAAGTCGTAGCATTGCACGACGGATTCGTGCCTGGGCCCGACAAGAGAAGCATGCCGCCGCCGTCGCCGCCATCCGCCAATAACATGAACATATACAGCGCAACGCCCTCGTCCGAGACTCCGATGCGTCGCTTCATGTTTCCAAGCACGGCTCATGACGCCCAGCCATGGCTGGCACGAGGGATGCTTGAAGACAGCGGAATAGGCTGCGGCGACCTAGACAGCCTCGAGTTGAGAAGGCTGGCAGGGCAGGTCATAGTTCCTGACGAGAATGGAGATGAGACAGAGGGCAGCCTGTGTCCTTCATCGCCCACTCTGTCGAATGCGCAAGCGATGCGGGTGGTGAAAGAGAAGCAGGAAAGGGGATCTAAAGAGAACCCGCGAGTCCGAAAATTGATAAAGAGACATCGGGCGCATACTTCTAGAGATGCGCAGGATTCAGGGAATACCCCCGAGTAGAACAGGCTAGAGGCGGTACACCACACCACCTGCAGGCGGCTCTATGGGCTCAAGCTGCCGGCAAATGGTGTCGAGACGAGGAAAGATGTATGTACCTACAGATGCGGTGGATATCAGAAGTTTCGGGTTTTCTAGTTCGTCTTGCTAGTATGGATAGGCAGCACAGGCAGTCAGGCATGGTATACGATTAAATGAGAGACTCCAAAACTGGTGGGAGCACGACGCTTTTGAAGACTTCTAAAGCCACAACAAAGACTGCAC +>XM_042379977.1 PREDICTED: Homarus americanus putative transcription factor capicua (LOC121875420), transcript variant X2, mRNA +CTGGCTGCCATAACTCTTCCCATGCAGCAGTTGTCTCCATCTCAACAGCTTCAACAACAACAGCAACAACAAGTACAACAACAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAACAGAAAGTTAAAGCCCAGGTTGCTAGTATACCTGTAGCAGTGCCAGGAGGAAGACCTTTAGACGACGAAGAATTAGACGACAAACCAAAGTTTATTTTGGCTCCTACGCCGGCACAGCTCGGCAAGGCCCCTAGACAAAAGCGACTCAACTCTTCAGGGCAAATATCATCTATAGGAGACACTGCACCACAGTTATCTCCGGACGTAAAGATGGCTCCTCCGCACCACCCCAGCGGAGACAGTAAGGTATCTCCGGTGTTGAGTAATGCTTCAGAGGGCGACTCATCAGTACAGACGACCACCCAGCAGATGGTCTCTGTTCCACCATCACCTAGTGAGAAGAAGAGTTTCTTTAAGAAAAATATTGAGGATGGCATGGACAAGGTCCTTGAAGAGGTGAATTTCGAGCAGAAGTTCGGAGCGCTGCCCGAGTTTAACCCTGACGAGGTCCAGTCCCCCAGTGTCAACGCTAGCACTGGGCCCTCCGTACCTTCCTCCCCGCGGACCTTTATTACGTCTTACAGGAAAAAACGTAAACATTCCAGTGGTGAAGAGTCAGGCTCAGATACTCCCATGAGTGTCACCCCTCACCAGACACCCTCACTGACACCCTCCTCCACACTGCAAGGATCCAAGTTCTTTCCTCCTGATTTCAACCCAGAGACTTTCAAGGTTGGTGAGTCTCGGGCGGACAAGTGCGAGATAGAGTCACCTGCTGCAGGAGGCCGTTCACCCAAGACTCCCAGAGATGCGGACAAGAGCCATTCATCCTTGAGGCACATCCTGGATCAGAGGCGCACCCTTGTGATGCAGCTCTTTACTGAATATGGCTGGTTCCCATCTGCCCAAGCCGTCGCAGCATTCCAGTCTCGATACTCGGACATCTTCCCTACCAAGAACTGTCTGATACTCAAGATAAGAGAAGTACGTCAGAAGGTCCACCAGAACACACCCAACACACCTGGTGTACCGAGCAGTCCTAACCCGGCCACACACACTGGGTCCTCCTTACAACACCCCCACAACAACCACCACAAATTTCTGGTTAACCAAAAAGAATGTCGTGGCCGAACCATCGTACACGATCATCTCTCACTGCCGCTGTGTCAACGTCAAATCAAGCCACCACTTCCCTCCCAGTCGGCACATAATGCCACATCTCGGCTAGATTATTAATTTTACTGTGTTGTTTTTTTATTTTTATTTATATTTTAACCAATGGCTACCCAGCATTACTACATAATAATAACATTGGCATTTTACTACTGTTAAGAGTTGAATGTGTACTTTGTATAAATTAGCGACAGTTA +>XM_004341098.1 Acanthamoeba castellanii str. Neff uncharacterized protein (ACA1_236710), partial mRNA +ATGCCGCTGCCGCCGCCGGCCGTGGTTGCTGGGATTGAGGGCGCCGACGCGGCTCGCGGGACGCCGCCGTGGGGACCGCGCTCGATAACCGTTCCAGCCTTGACCGTCTCGCGCGGGTGCGGCTCCGACGTCGTCGTCGACCCCGGGGCGTCGCCGCCGCTCTCCTTCCTGCGCTTGCGCTCCTCCTCGATGAGGCGCATCTCCTCTTCCTTCTTGCGCGCCGCCTCGCTGTCGGCCCGCTCCTTCTCGCGCTCCTCCTCCTCGATCTTCTTCTTCCAGTCCTCCTCAGTGATCTTCACGCTGCGACGGTTGGCCAGCTTCTGCTGCTTCTCGCGCTCCTCCTTCTCGCGCTTCTCCTTCTCCTCCTGCTCGACCTTCTTGCGCCACTCCTCCTCGACGTTCTTGCGTGGCGTCTTGGCCAGCGCCTCCTCGCGCTCGATCTCCTTCTGGATCTTGTCGTCCTTGGGCTCCTCGCCGCTCAGGAACGCGCTCTCCTGCTTGCGCTCCTTGACGGCCTCGGCGATGCGGCGCATCTCCTCTTCCTTCTCGCGCGCCTTGTCGCTCTCCCTCTTCTCGCGCTCCTCCTCCTCGATCTTCTTCTTCCAGTCCTCCTCAGTGATCTTCACGCTGCGACGGTTGGCCAGCTTCTGCTGCTTCTCGCGCTCCTCCTTTTCGCGCTTCTCCTTTTCCTCCTGCTCGACCTTCTTCTTCCACTCCTCTTCAACGTTCTTGCGTGGCGTCTTGGGGAGGGCCTCCTCGCGCTCGACCTCCTTCTGGTGCCTGTCGTCCTTGGGCTCCTCGCCGCTCAGGAACGCGCTCTCCTGCTTGCGCTCCTTGACTGCTTCGGCGATGCGGCGCATCTCCTCTTCCTTCTCGCGCGCCTTGTCGCTCTCCTTCTTCTCGCGCTCCTCCTCCTCGATCTTCTTCTTCCAGTCCTCCTCAGTGATCTTCACGCTGCGACGGTTGGCCAGCTTCTGCTGCTTCTCGCGCTCCTCCTTCTCGCGCTTCTCCTTCTCCTCCTGCTCGACCTTCTTCTTCCACTCCTCTTCAACGTTCTTGCGCGGCGTCTTGGGGAGAGCCTCCTCGCGCTCGACCTCCTTCTGGTGCCTGTCGGCGCTGTCGTCGTCGGGACCCTTGAGGAACGCGCTCTCCTGCTTGCGCTCCTTGACGGCCTCGGCGATGCGGCGCATCTCCTCCTCCTTCTCGCGCGCCTCCTCGGCCCTGTCGCGCTCCTTGACCTCGCCCGTGAACATGGAGGCGATGCGACCCACCTTGGCGTTGCGCGCCAGCTGCTGTCGCTCCTCCTCCTTCTTGCGGCGGATCTCCTCCTCCTTGGCCTTCGATCCGCCCTCGTCGTCGCCCGACCCGATCTTGTTGCGCCACGCCTCCTCCTTCTCCTTCTGCGTCTTGGGCTT +>NM_001302118.2 Gallus gallus CDC28 protein kinase regulatory subunit 2 (CKS2), mRNA +AGTCGTTAGGGGGTTTGCGGGCAGATAGTATTGTGCCTAGAGTTCCGCCACTTTTTGCCATGGCTCACAAGGATATCTACTACTCCGATAAGTACTTTGATGAGCAATACGAGTACCGGCATGTAATGCTACCAAGAGAACTCTTGAAACGAATGCCAAAAGCTCATCTTCTGTCTGAAGAGGAATGGAGAAGCCTTGGTGTTCAGCAAAGTCTTGGATGGGTTCATTATATGATCCATGAACCAGAGCCACACATTCTTCTCTTTAGAAGACCTCTTCCAAAAGATGATCAGAAATGAACTACTGTCTAGAAATATTCTTAATCTTCTGGAACTTTGTGTATGCATGTATATATGTTGGTAGTATTCAGTGAATACTTTATGTACAAAACATACAACTGTACCTGTGCATGAGCTGTATTATTCACAGCAACAAAGCTCAGTCAAATGCAATTTCTAGTAGGCTGCTATTCTTTCAAAGAGAAGTGGAACTTCTAATAGTTCCTCTTAGTCTGAAATGAGTTCTCTAATAAAGTTTACTATTGTG +>XM_032261620.1 PREDICTED: Sapajus apella otolin 1 (OTOL1), transcript variant X1, mRNA +GGTCTTTTCATCTATTCTGGGTATACTGATGATCTCTTAGGAGTTAGACAGAAGTAAGAGAAGTGTATTGTTTTATAATCTAGTAATAGCCTCTGGTTGCAGATCTTTCCTAGGAAATTTGAAAATGTTTTTACTCCTTTATGAAATAAAAATTTTAGTTTTATTATATAAGGCTTTGTAGTTTGGGTTTATCTGAAGTAAGCCACCCATTCACTGGCATTGAGAAAGACTGTGGAATGGTTTTTGTGGTCACATGTCTTTTGAATCCAGGTTCGCTGGGCATATATCCTGGCTCTGCTAAACTGTATACATGACCTTGGGAACTTCCTTTACATTTCTTGGTCAGTTTCTTCATTTGTAAAATCAGTCTGGCAATAATGACTACTTCTTAGCTGTTTAAAGCATTTAGTGAGTTATTGAATGTTAAGTGCCTGACTCTTGCTTAGGACTCAATAAATGTTAGATATTACTATTAGTGACTACTGTACAATGAAATAAGATTACCTACAACTGTGAAGATAACTAATTAAAACAATAATCAAGACTGGAAAACATATATTTATTGTGTACTATATAAAAACATTCCATCAAGATAGAATAAAGCTATGAAGTCAGACAGATACAGGCTTGAAAATTTGGTATGTGTCATACTGCAGGTAACTTAGCTGTTCCTGAGCCTTGGTTTTATCTTCAAAATGGAGACAATTCTGCTTTGGAGGACTGTTGTGAGCAGAAACAAGAACATTTGGAAGAGGCTGGTGTACTCAATACAAATGGCTATTATACTTTTTATTGCTACTTGCTTTTCTTGAACTAAATTTTAAATAGCAACTCCTCTTTTTTATGGAAATCTAGGGAGTCTGATTTAGAGGAAGTGAGTACATGCTGTAGAATGGCCCATATGCCATTTTGCTATTAGAATATGAGTCATTATTTCTAAACTTAGTATTGCTTTATTTGTATGTTCCTTGCTTTTCTCAGAATCCCTAAGTCAGATCCAACCATAAACTTTGGATCATAAAAGAAAGCAACTTCAATTAAGTGGATTTTTGGAGTCACTGCAAGTCACTCATATGAGGCTGTCTGACCAAGCAGTGATGTAAAGAGGGCTAATAGTATTTCAGTGAGCAGCTCTGGCATTTTATGTTTGTACAGAGTGCTTCTACTTAACGAAAGTTTTAAATTTGTATTATCTTTTGTATTGAGGTACAATTTACATATGTTGAAATGTGTAGATCTTAATTGTGCATTCCCTCAGTCCTGACAGATACATACACTTCTATTAAGATACAGAATATTTCCAGAAAGTGTCCTCGTGTCCCTTCTCAGTCAATCCTTTCTCTTTTCCCATGCAACCACTATTCTGATTCCTATTGCCTTTGGTCAGCTTTTCTTGCTGTGGAACTTCACATAAATGGAATCCTGCAGCCTTTTGTGTCTGTACTTTTTTCCTTACCATAATGCTTTTGAGATTCAGCTGTATTATTATATGCATCAGTATAGTTTATTGTTGTTGGTGAGTAGTATTCCATTGTATGGATATACCAAAGTTTGTTTATCCATTTTCCGATTAAGAGACATTTGGGAAATTTCTGTTACTTCTTTTGATCATTATTGTAATGTTGTTGGAAGGTCAGAAGATTCTACTATCTTATTCTCTAGATTAGGAAGCTGGGATTCAGAGAAGTGAGACAACTCAAGGTAAATGGGGAACTCGAGAAGAGAACCTGATTATCTGGGCCCAGATCCTCTGCTTCCTTTACTTTCTATTTTCTGAGCCCAGGTTATTTTTGGCCCTGACTAGGAGTTCTGCCCTGTCTGACACCAGGATTTGACCTGACCTGTCTTATCTTTGATGGAGAAAGACCTAGAATATCAAAATTTAGGAATGTAGCCCTAATCTGGGCTAACCCTTGCCTAAGCCTTAGTTTCTTTCAGGTGCAGTGAATAGACTTCTTAGGCTGGCTCAAAAGTTGAGCAAGTAGAGGATCTGGATTACACCGGTTTAGATTACAGAATGCCTGAAGATATTCTAGGAGAGCTTTGTCTTTCATAGTGGCAAAGGGGAAATAGGATGAACATGGAATAAGATAAGCGTCTCTTAAATCCTAGCTCTGCCACCTATTAGTTGTGTGAGGTTGGGTAACTCAACTCTCTGGGTCTCTTTCTCCGTCTGTAGAAGAGGTAGTACAATGCTTCCCTCTCAAGTCTCGGCAAGGAAGTTCCTGACACAACCTGTCCTTTCTGTGCTCGATCAAGGTTGGAATTAAGAGAGCATTATAATATGATATTGATATTGCTGTGGGATTTTCATTGTATGGAAGAATGAATTCTTCCCTTTATCTCAGAAGACAATTCATTATTTATAGAATCTGAATAAAAATAGAAAAGTTAATTTGTCAGTAAAGTCCTCATAAAAATAAAGCAAGAGAGGGGCAAAGAGGAATGTGTTTACTTTAAGACAGCTGGAAAAATGAATATAGGTAAATAGGTCCTTTGAAGACACTCTCTTCCTTCTCAGGAAAAAGGCAAACATATTTAGAAGGTTAATCCTTGTTCAGGATGCTGATTAGGCTGTGTGGTTAAATAAGGTCTGTAGGAGAACCAAAAGGAAAAAGGATCTTAAGGGAACCCCATTCCTGCCCTATTATGGATTTAATGAGGTCTCTGGGTCACAGTTTCTCCATCTGTAATCCCTAAATAGCACTTTTTAATCACATATCTCAGGATTTGATGTGAAATTTGATGTGTTCAATTTTCTCATAATTTATATAGTTGCAAAAATTTTGCATAAAAAGAATAGTATTTATGTGTATTTTATGTAATTTAAGGCAAAGTATGCTGTCCAAGAAAATCTTACAGTTTATGAGAAGATTGACATGTGAATGACTTAACAGCAGAATACATTAAATGCTTGTCATAACAAAAATTGGCAGGAGTCTTAGAAGAACCTAGAGTTAGATGATTAGCTTGGTTCATAAAAGCTTCTAAAGGAAATTTCAAAGACTTAATGACATCACTGAACTTTTCCAACCAATATTGAGAGAAGCTGGTATGAAATGATTCAAGGAGTATTTACTGCTCTGCAAAACAGCTTTGCCTTTAATGTTTCCCAAGAAAAGGACATACTTGTAAAGACTTAATGCTTGTCCTAGAGAGGAAAAACAATTTCAACAGTCAGGACATCAGAGTGGTGGAAAGTATTCATGCAGGAAACTGAATGATGTACTTTATTTGTGAATTTTCATAATTAGCATTGAAACACCGCTACTTTGCTGGCTCAGCTTTTTAATGTATCAGATCCTTTGTGTGTAGGAAGAAAGAAGAATAAATGTGTCTCTGAATGTGGGGTGCTCTCTTTTAATAAAGAAACTTGAGAGAAAAGAGACGACAATAGGCAAATATGAAATAAGTTAAAAGAAGTAGGCAGAAAATAGAGAAAACTGCATCTCATGCAGTTGACGTTTATGTGGCAATTGCTTGGTTTGGACTTTTTGTCGGAGAACTTTTTTTTCAGAATTTATTTTGTGTATCACTAGTAAGTGTTGCATAATTTCCATATTTATTTATACTATGGGTCTGTCTCTCCTTCCAGACATAAAGGACACTTTGAATTTCAGGTGATAATGGAGCATACAATCACAGCAATCATATGATGAAAGTATGATTATTATTTTTATTGTCCCTGTGTTACAGGTGAGGAAACCGAAGGCAAGAAGTTGCCAAGTTTAGACAATTACTACTCACTCTGTCTCATGACAGCTGGATCAGAAGTGGGCAACTGATGGAGTCTGGATCCATGAGGAGTTCACGTTGCTAGAAAGGGTGGTGACCATGACTCCCTATTCTTAGGGGTGGCAGTGATTGCAATGCTTCAAAATTCAAAGGAGGTGTCAAAATGGAGGGTAGGGAAAAGGCGTGAGCTCTGCCTTCCCCTTGGCAGTGGCGAAGTGATATGGAGTGTGGGCAGGGAGGTGGCGCATTATAGGACTCAACACCACGCTCGTTTATACATAAGATTCCTACCCATTGGATCACTTGAGGAAAGGAGTTCAAGACCAGCCTGGCCAATATGAGTTCAGGCAGAGGACAATATGCAAAGATTGGGAACTAGAAAGAAAACAACATGCCTGTTTATTAAATGATTATAATTACCAATGTACCAGTTATTGTCTGGGAGTACTCAGGCCTATACCTGTCTTGTACCAATGGGGTAGAACTCCTGAGAACTACCTTCCCAAGATCCCCTTGACAGCTGGTTTCCAGCCTGGTTCTTCTAATGGGCTGGACTCCTATGTAATGAGAGGGAGATGGCAGAAGTAACTTGAAGGTCCTAGACTTCTGGTCCCAGCTGCAGAGCTGACATGCACCTGTGAATGCTTGCAAGGTTCCAGTGGCAGCAGCAGTGAATGTGTGCTCTGTGATGGATGCCCATTGTTTAGGGCAGACCAGTGTGGCCTCCTGCAGGTCCTGGTCCCTGAGAGACATTACTTTCCCCTCATGTCTCCTCTAGGCCTTCCCCTCGTGTCTCCAACAGTGTTGTAGGTTAACTCTCTGGATTAGATTCTTTTCTGTTTTGAATAATTAGAGTGCTTTCTATTTTGCTGATTGAATTCTTGACTGTTATCCCCCTATAATATGGCTGTTCTGGCAAGCTAAATTAGAGGACAGGAGAGCTATAAGGCCAGAGGCTTGAATAGGCTTTTTCAAAACTAAGATGACTGGAACTGAAGAGAAGATTTTGAGCAGACTTACCTTCCCTGTCTAGGGAGGAGCTGCTGGAATGCAGAAAATGTTATGAACTTGCTCCAAAGAACCAGAACCACATATACGTGCTAATTAGACTGAAAAACAGAATAGGAGAGAAACACCAGAACATGGCTGCAAGCCCTTAAGAAAAAGCAGTCTTATCTGTTCATAAAATGCAGGATAATGACCAATCCATTGATCATCATCTCCTTCTTACAGGAGGAAGAGTAAGGGGAATGGGTGGAAGTACCCAACATGCATGGGGAGAGCTGGAAACGTCTGCCTCTGAGCTGTGTTGGAAACCTGAGAAGCCTCAATTATGTGGATGTTTACTTGGCTTTGTGCTATTTTAATTATTTTGGCTATTGCTGGTATGAACACAATAGCAAAGACCACACCGTATACCAAATTTACGAAGAAATCTGAGGAAAGAGAGATGCCAAAGGGTCTAAAGCCATCCAGTGGCCCACCTCCACAAGAAGAAGAAACCCTCTTCACAGAAATGGCTGAAATGGCAGAACCAATCACCAAACCCTCAGCCTTGGATTCTGTGTTTGGCACTGCCACTCTCTTTCCCTTTGAAAACTTCACTCTTGACACAGCTGATTTCTTTTTGAATTGTTGTGATTGTTGTTCACCTGTACCTGGGCAGAAAGGAGAACGTGGAGAGACTGGAAAGCCAGGCCCTAAAGGAGAGACTGGGAATTTGGGGATCCCAGGGCCACCAGGAGTTGTTGGGCCCCAAGGCCCTAAAGGCTACAAAGGAGAGAAAGGGCTCAAAGGAGAACGTGGGGACCAAGGAATTCCAGGATACCCAGGAAAACCTGGAGCACAAGGTGAACTTGGCCCTAAGGGAGATAAAGGAAACACTGGTTTGGCAGGAGTGAAAGGACAAAAAGGCTCCAAGGGAGACACATGTGGGAATTGTACCAAAGGCGAAAAAGGAGACCAAGGGGCTATGGGCTCACCGGGCCTGCACGGAGGGCCTGGCACCAAGGGAGAGAAGGGGGAGATGGGGGAGAAAGGCTACTGCAGAGATTCTGGGGAGAAAGGAGGAAAAGGACAGAAAGGTGAGGCAGGTATAAAAGGAGAAAAAGGTTACAAAGGGGATAGTGGAATGGAAGGCAAAAGTGGTCACAGTGGTCTGCCTGGGGCCAAAGGTGATCCAGGGGTTAAAGGAGAAAAGGGAGAGTTAGGTCCTCCTGGTCTCCTGGGACCTACTGGGCCAAAGGGTGACATTGGCAGTAAAGGGGTCCGAGGCCCCATTGGGAAGAAGGGCTCTCGGGGCTTTAAAGGCTCCAAGGGTGAGGTGGCTAGAGTGCCACAGTCAGCTTTCAGTGCTGCTTTGTCAAAGCCTTTCCCTCCTCCAAACATCCCCATCAAATTTGACAAGGTTCTCTATAATGACCAAGGGAGTTATAGTCCTGTCACTGGGAAGTTTAACTGCTCTATTCCTGGGACATATGTTTTTTCCTACCATGTAACTGTGAGGGGCCGACCTGCTCGAATCAGTCTGGTGGCCCAGAATAAGAGGCAGTTCAAGTCCAGAGAAACTCTGTATGGTCAGGAAATAGACCAGGCATCTCTCCTCATTATCTTGAAATTAAGTGCAGGAGACCAAGTCTGGCTTGAAGTGTCAAAAGATTGGAATGGGGTGTATGTCAGTGCTGAGGATGACAGCATTTTTACTGGGTTTCTTTTGTACCCAAAGGAAACTTCTGGAATTTCACCATAAGTTTATGTCTTCAATCTCGTAGTTTAGATTTAGTGGAATAGGTCAATTAACATAGACTAGTGCTATTAAAAAAAAACTTCAATTTTTTCAAGACTATAAAAATAATGCAGAAATTTTTTTAAAAAATGTCTCTTGGAGTCAATTGTTATTTCTATTTTAAGGCACCTCCTTTAAAAATACTTATATATATTTCAGAACATATGTCAGTAACTTTGTAGCTAGGCTTTAAAATTTAGCATTATAATATCAGCATTATTCATGCCATTTAAGTATAATAATAATATCTGTATACAAAATATGAATGAGATTTATAGTTAATAAATATGTTCTTACTAAATATCTTCTATATCTCAGATAAATGTATGTCACTTCTTTTTGTGTAAATTGCATAGTATGACAGCAAGGTTTTGACTCTCTTGGATGGGTTGCCTTCTGACAAAATGGAACTCCTCTCATGTTGGTTTAATTCATGGAGATGACAGAAAGAGTGGCAAAGACTAGCTAAAGGATATTTAACATTTATCAGTGTCTAAAGGTTTGCTCACAAAACTTGTATTATATGGACTTGTGTGTTGGGTAAAATGTAAGAAAAAGTTGATAATCATAGTGAAGATGAAATCATTAATCAAATTATTGTGCTTAGAAGAACTGAATGTCCCCAAAAGAATAAAATGAAATCATTATTGATTTG +>XM_007480608.2 PREDICTED: Monodelphis domestica spermatogenesis associated 1 (SPATA1), transcript variant X3, mRNA +GGCGGACGGTGGAGGACGGGCGCGCCTCGGGGGCGCGCGCACGTGCGCGCGCGGCTGGCTCGACGCCCCAACCCCCCTCCTCTTCCTCCTCTACGCCTTCCTTGAGAGAGCGAGCGAGCGAGCGACCGGGAGGGAGGGGAGCGCTGGCATTTACATGACTTGAAGACAAAAGATGAATGGAATGCTATCATTAAGTCACCTAGAGGATTTAGTGACCCTTATCATTAAGTAATGCTTAAATGAAAAAGAAGACCACCAAGAAGCAATTAAAAGCAATTGTTACTTACTCAGGCATCAATGACTACGTCATTCAATAGAAGTCGACCTTCTTCATCAGAGTTGGTGGAACTTCATGTTTTTTATGTCCCTGAAGGATCATGGAACTATAAGCTAAATACTATTTCAGTAGAAGTTGTCAGTAAATTTATTTCAGCTGGATTTATAAGGGTGTCACCTCATCTTACTTTGCAAGCCCTGAGAGAGCAGCTGGGTGAGTTCCTTGGTGAAGAGGCTGTTGCAGAAAAATTCTTGTTTTTGAAATGCATAGGGAACAATTTAGCTGTGGTGAAGACAAAGCAAGAAAAAGAACTAAAGCTTAAGTCATTTGCTCCACCATATGCTCTTCAACCAGAATTATATTTGCTTCCCATAGTGGACCACTTAGGAAATATTTATTCATCATCATCATCCTCTGCTATGGGAGATACACAGCAGAATAATACTGATGTTTTTGAGAATGATAAAACTACTCAGAAACCAGATAGTTGTGCAGCATCTTCAAACAAGGAACATGAAAAAGATCCAAGCCCTATAGAAAATACTGATAAAGTTCCTCCCCTCAAGAATCAGGAAGAAGTCAGCCTAAAAGACAACAAGATTAAAAAATATCCAGCAAGAAAGTATGGATTTCTAGAAGCAATTGATGATAAGCGTCTTTTTCTTGCACAAAACAAAAAAAGCCAATTCCAATGGGAAAACGGAGACAAGATAACTGATACCAGTAGAAGAAAAGAAGATGGGTTAGGTGATGAAGATTTTGACAAGCCACCAGGTCCTTCTGCTCCTCCTTCATTACCACTCCTTGCTTTTGCTCCAGGAATGCTTGAAAATTCTGGTTTACAAAATGAGAAACCTGAGATGGAACCTTTGCCATGGAGGCAAATACTGTACAGCCACAAAGAAAGTAACAGTCAAGGACTCAAGATTATGCAACAAATGAAGCAAGTAAAGGAAGAAAGATGTCAGTTGGAAGAGACTAGAGAAGAACTGTTAAAAAGAGTTAAAAGTTTATTTGAACAAAGCAAAATGAAAAGATATCGTGTCCAGGAAGCTTGGAAGAAAAAATATTTTGAAACCAAGAAAATCACAGCTTCTTTGGAGGAAGTTTTAACCAAACTTCAAGAAGATTTAGAACTTTATTATAAAAAATTGCTCATGCAGCTAGAAGCTAGGGAGATCAAGATGCGGCCCAAAAATCTGGCAAATATGGAAGATTCAAAGAATAATCTAATAATCCAAATCACGGAGGTACAGCATGCAATTGACCAACTAAAGAGAAAACTGGACACTGACAAAATGAAACTCATGATAGAAATTAAGATGAGAAAACAAGCAATTTCAGACATACGAACATTAAAAATGGAACTGGAACAGAAGAAAATGAAGACACCTTTAAGCTCCTAGTCAAATGTATTTACTTAGAAGTGTCTTAGTTTTCAAAATGTTTAGACTTATTGGAAGACTGTCCATCCATTGTTCTTGCTGATGTTTCTTTATAAGCCTTGTATTTCTATTCCTTTATTTTTCATGCTGAGTTTATGAAGTGACTCACAAAATGTTAAGCACAGTATACTTCTCCAGTACCTGGAGGATCTGTGATTTTATCAGAGTGGGTGGTACCTCCACTGAAACAGATCATACCTCCTCCACAAGTTGGGAGATGGATTTTGAGAATAGCTTTAGTTTAAAAAAAAAAGGTAGGAAGGAAGGAAAAAAGAAAGAGAGAAAGAAAGAGCAAAGTGGAAAGCTAAGTAATTTGTTCAGGGCATTATTTAGTTATTTTTGAGTACTTCAAGAAAACTGGATTTCATTTTACAGTAAAGTATTGCATTATTAAATTGCTGGGTTTAAAGATAATTCATCTAAGAATTAAGAATAAAGGCCTATTATTAGTCTTAGCAAACCACCATGTCTTGGTACAAAAGGCTACATTGATTTTTTTTCAATGTAACCTTGATAATTAAAAGAATAATCCTTTTATTTCATTTTAACTAAACAGACTAAGAATCTAAGACTCAGGAAATTGAGATTACCATTTGGAGCACTCAGAGGAAACTCCTGGGATTAGTATCCAAGAACTGACTTATTAACATATTTTAGAAGCATAGAATCCATCAGTAATTCAAAATAAGTTATGAAACATCATCCTTTTGAATGGATGTTCCAGGGCCTCTGCCATAAGCAACCTTGTAAATTGGGAGCAGAGATCTTAAATATGAACTAGACCCAGCAAGGATGGTCAAATTTTTACTTGCTTTTATTCTGATTTATGGGAAAAACCACTAAGGAAGCCTAGATTTCTATTAGCCCAGGGTTCACAGGAATAGGTTTGTGATGCCCCTAGACAGTTATACAGCCAGTGCCATCAAAATGGAAATAATAAATTTGACATTTTCCCGATGCCTATAATGTACCATATGAAAAAGCAGATAGTTCTGAAGTGAAACCTGGCTAAAGGTTTAGAAAAGTTATAAACATTAAACTACTGTGTTTTAGAAATAGAAACATCAGTTCATAAACTAATGTCATGAGGTTAAAATTAGATTCCAATGTGGGAAAATATTGTAAAATTTTTTTTAAAAAAACTAAGCAATAAGGTTGCCAATGAATAAATTACAGATGCACAGAAAAGGATCTTAGGAGAATTGTTTCATCAAGAATAGCATAAGAATAATATCAGATTATCCGCTAAGTTATCCCTATAGTAAATTTAATAATAATAAAATTCTTCTTGAAAATATCTGTCTCAAAAGCATAATTTAGCTAAAAATGTAGGCAACACCACCATACTAGTTTAAAAGATTATCTTTTAAATTCTCTAGGCCAACTCTGTATCTTTTATCTTAGAGTTACTTGTCTGAAGGTTTGGGATGAAGCAAAAAGCAAGTATCACAGGGCACTGAGGTGCTACTTGGAAATAAGAATCATTGACCCAACAGCCCATCCTTCTTTTAACAATACATTGGTCCTAAGGAGAAGACACTATATATCAACCAACTTTAATATTAGGCTTATTGGACAAATAAAATTACAGAGTGAATTGCTTCTCAGAGAATGGGTATTTAAAAAAAAAATCTGTCCTAAGCAAACTAGGCTTTCCTTTACAAGTCTTAGAGCATTTTGCATAGTTTATAAATATGTAAGCATACATGTTAATATCATGTACAAAAGACATGAACATAATAAAATTATGAAAATACCGGTTTATTAAGTGACAGATAAAACATCTTATAAAATAAAGAAGATTATTTCATACT +>JN080695.1 Uncultured bacterium clone HI04_FZZ71GH04EJVXU 16S ribosomal RNA gene, partial sequence +GATCCTGGCTCAGGACGAGCGCTGGCGGCGTGCTTAACGCATGCAAGTCGAACGAGAATCTGTGGAAAGAGGATTCGTCCAATTGAAGCAGAGGACAGTGGCGGACGGGTGAGTAACGCGTGAGGAACCTGCCTTTCAGAGGGGGACGAACAGTTGGAAACGACTGCTAATACCGCATAACACATTGAGGTCGCATGGCCTTAATGTCAAAGATTTATCG +>XR_008021246.1 PREDICTED: Diospyros lotus uncharacterized LOC127792942 (LOC127792942), transcript variant X2, ncRNA +ATGGATTGGAGGGAGTGCTCCGAAATCAAAATATCTAAAAACAATTATATGAAACGAACGAGAATTTCGATACGATTATTATGACATCGAAAAAAATCTGATCAGAAACAGTTTTTTGGGCAGCTAAAAATCAGGCAGAAAATCGAATCGTCGTAATTCGTTCACAAAAAGTCAATTGAACACAAAATACAGTTTAATTTAGTTATTGGAACAACCTTTTGGTTGTTTAATGTTGAAACAAAAGTACTAGCGATCTTATCGAACAATAGGACGTAAGCGTAATTTCTTCATTTTTCCCGACTTTGCTCGAAAAAAGAAATTTCCTTTTTTTTTTTTTTGTCAATTTTCAATGGTGGAATGAAGATAATTTCATATGGTTTTAAGTGTAGTTTTATTTGGAAGTGTAATTGAAATATTCAAAAGATTAGGGGTTTAACTTGATTTTCGGTACAATTATGAGTAACCGAATGGATTGGAGGGAGTGCTCCGAAATCAAGATATCTAAAAACAATTATATGAAACGAACCAGAATTTCGATACGATTATTATGACATCGAAAAAAATCTGATCGGAAACAGTTTTTTGTGCAGCTAAAAATCAGGCCGAAAAGACGAATCGTCGTAATTCGTTCACAAAAAGTCAATTGAACTCAAAATACACTTTAATTTAGTTATTAGAACAACCTTTTGATTGTTTAATGTTGAAACAAAAGTACTAGCGATCAAATCGAACAATAGGACGTAAGCGTAATTTCTTCATTTTTCCCGACTTTGGTCGAAAAAAGAAATTTCTTTTTTTTTTTGTCAATTTTCAATGGTGGAATGAAGATAATT +>XM_038964517.1 PREDICTED: Salvelinus namaycush extensin-1-like (LOC120020894), mRNA +ATGTCCAAACCCTTCCCCAGAGGCCTGCCCAACCCCTTTCTCAGAAGCCTGACCAACCCCTTCCTCAGAAGCCTGCCCAACCCCTTCCTCAGTGGCATGTCCAACCCCTTCCCCAGAGGCCTGCCCAACCCCTTCCTCAGAAGCCTGACCAACCCCTTCTTCAGAGGCCCGCCCAACCCCTTCTTCAGAGGCCCGCCCAACCCCTTCCCCAGAGGCCTGCCCAACCCCTTTCTCAGAAGCCTGACCAACCCCTTCCTCAGAAGCCTGCCCAACCCCTTCCTCAGTGGCATGTCCAACCCCTTCCCCAGAGGCCTGCCCAACCCCTTCCTCAGAAGCCTGCCCAACCCCTTCTTCAGAGGCCCGCCCAACCCCTTCTTCAGAGGCCCGCCCAACCCCTTCTTCAGAGGCCCGCCCAACCCCTTCCTCAGATGCCTACCCAACCCCTTCCTCGGTGGACTACCCAACCCCTTCCTCGGTGGACTACCCAACCCCTTCCTCAGACGCCTGCCCAACCCCTTCCTCAGACGCCTGCCCAACCCCTTCCTCAGATGCCTGCCCAACCCCTTCCTCAGTGGACTGCCCAACCCCTTCCTCAGCGGACTGCCCAACCCCTTCCTCAGATGCCTGCCCAACCCATTCCTCAGCGGACTGGCCAACCCCTTACTCAGATGCCTGGCCAACCCCTTACTCAGTGGCCTGCCCAACCCCTTTCTCAGTGGCCTGCCCAACCCCTTCCCCAGAGGCCAGCCCAACCCCTGA +>XM_033401886.2 PREDICTED: Orcinus orca KAT8 regulatory NSL complex subunit 3 (LOC101288842), transcript variant X6, mRNA +TATATTTTTAAAACTCCAGAACATTATGAAGTCGTTGCAAAACTTTTGTTTAACACAAACGAGACGTCAAGGGCTTCCGTGAGGCCCACGTTAAGCAGCTGTTCCTGGGATGCTCACGCTACTGCTGGAGACGGCTCTGGGAAGCTTTCGAGAATGGTGACTAGCATGCAGGTACCCGTTCTCTGACTTGCTGCCCCTCTTCTGACATGGCCCACCGCGGTGGGGAGAGGGACTTCCAGACGTCAGCGCGGCGCATGGGCACCTCGCTGCTCTTCCAGCTTTCGGTGCATGAGCGGGAGCTGGACCTGGTGTTTCTGGATCATAGCTATGCCAAGCCGTGGAGCGCCCACCCAGATGCCAGTAGTGCCCGCCCCACCCGCATGCTCTTTGTTACTCCCCGGAGGCAGCACGAAAGTACCATCGAGTCAGATGTCCCACTAGATGTGGAGACAGTCACGTCAACCCCTGTGCCACTTTATGACAATCAGAAGGCACGCAGCGTGATGAATGAGTGTGAACGGCATGTCATCTTCGCCAGGACCGATGCGGATGCACCTCCCCCTCCAGAGGACTGGGAGGAGCACGTCAACAGGACTGGCTGGACAATGGCCCAGAACAAGCTATTCAACAAGATCCTCAAAGCCCTGCAGTCTGATCGGCTTGCCCGCTTGGCCAACGAAGGGGCTTGTAACGAGCCAGTGCTGCGCCGTGTTGCCGTGGACAAGTGTGCGAGGAGAGTGCGGCAAGCTCTGGCGAGTGTGAGCTGGGACACCAAGCTGGTCCAGTGGCTGCACACCACGCTGGTGGAGACCTTGAGTCTGCCCATGCTGGCCGCCTACCTGGATGCTTTGCAGACACTGAAAGGGAAGATCCCTACCTTGATTGACCGGATGCTCGTGTCGTCCAACACGAAGACCGGGGCTGCTGGAGCTGAGGCCTTGTCCCTCCTACTGAAGAGGCCCTGGGACCCCGCTGTGGGAGTGCTCTCTCATAACAAACCAAGCAAACTCCCCGGCTCTCCTCTCATTCTCATTGCCTCCTCCGGGCCCTCCAGCTCCGTGTTCCCCACCTCGCGCCGCCACCGCTTCTGGCAGTCTCAGCTGTCCTGCTTAGGCAAGGTCATCCCTGTTGCCACGCATCTGCTGAACAATGGTAGTGGAGTAGGAGTTCTGCAGTGTCTGGAGCACATGATTGGGGCAGTGCGAAGCAAAGTGCTAGAGATTCACAGCCATTTCCCGCACAAACCCATTATCTTGATTGGCTGGAATACAGGAGCCTTGGTGGCCTGTCACGTGTCGGTGATGGAATACGTCACTGCAGTTGTCTGCCTTGGGTTTCCTCTGCTTACCGTGGATGGCCCCAGAGGGGATGTGGATGATCCCCTCTTGGATATGAAGACTCCAGTCCTCTTTGTCATTGGTCAGAATTCCCTGCAGTGTCACCCTGAAGCCATGGAAGACTTCCGGGAGAAGATTCGGGCTGAGAACAGCTTGGTGGTGGTTGGGGGAGCTGATGATAATCTCAGAATAAGCAAAGCAAAGAAGAAATCGGAAGGGTTGACTCAGAGCATGGTGGACAGATGTATTCAGGATGAGATTGTGGACTTCCTGACTGGAGTGCTCACTCACGCGGAGGGGCACGTGGGCTCTGAGCCTCGGGATCAAGATGCTGAGAAGAAGAAGAAGCCCCGGGACGTGGCCCGCAGAGACCTGGCCTTTGAGGTCTCTGAGCGGGGCAGTCGACCTGCGTCACCAGCTGCCAAGCTACCTGCCTCACCCTCAGGCTCGGAGGATCTCTCCAGTGTGTCCAGTAGCCCCACCTCCAGTCCCAAGACCAAGGTGACCACAGTGGCCTCTGCCCAGAAGTCCAGTCAGATCGGAAGCACTCAGCTGCTGAAGAGACACGTGCAGCGGACAGAGGCTGTGCTGACCCACAAACAGGCTCAAGTTCCTGTTTCATCAGAACAAACGGAGGAAGCCGAGAAAGAGGATCTCAGGGTCCAGCTGAAGCGGCACCATCCCTCCAGTCCTCTTCCTGGCAGTAAGACCTCCAAGCGACCGAAGATCAAGGTGTCCCTTATCTCCCAAGGGGACACAGCTGGAGGGCCTTGTACTCCTTCCCAAGGAGGAGCTCCAGAAGCCGCAGGAGGGAAGCCCATCACCATGACACTGGGGCAAGCTTCCACAGGGGCCAAGGAGCTCACAGGACTCCTCACCACAACCAAGTCAAGTGCTGCTGAAGGGGGAGTCTCAGCCAGCCCAGCGTCCTCAGTGGTCTCTAGCAGCACTGCTCCCAGTGCCTTGCACACACTCCAGAGCCGCCTGGTGGCCACCTCTCCTGGCAGCTCCCTCCCAGGGGCCGCATCAGCCAGCAGCCTCCTCCAAGGCCTCAGCTTCAGCTTGCAGGATATCAGCAGCAAGACCTCTGGCCTCCCAGCAAACCCCTCTCCCGGGCCAGCCCCACAGGCCACCAGTGTGAAGTTGCCCACCCCCATGCAGAGCCTGGGTGCCATCACCACGGGCACCAGCACCATTGTCCGTACCATTCCTGTGGCCACCACTCTCTCCTCCTTGGGTGCCACTCCTGGTGGGAAGCCCACAGCCATCCACCAGCTGCTGACCAATGGGGGCCTCGCCAAGTTGGCAAGCAGCCTCCCTGGCCTGGCTCAGATCTCTAACCAAGCTTCAGGCTTGAAGGTCCCCACCACCATCACTCTGACACTACGTGGCCAGCCCAGCCGAATCACCACACTGAGCCCCATGGGCTCAGGAGCAGCCCAGTCAGAAGAGCCCACCTCCCAGGCGCTGCCCTCCAGCTCACAGCGCCTGCCTCCAGCGCCCTGAAGATGCCATGCGATATGTCCTCCTTTACCAGGTTGGTGACGGCTGCTGCACGGTGAGGCCTGGCACATGTGCTGTCCTGCTGAGCTGTACACTTGTCTGAAGACCTCTTTAAGACAGTCATTTTTGCCTCTCTGCCAACTGTCTTCAGGGCTGGGCCTCTGGGTCTTACGTAACCATTAGACAAGGTGATATGGCGCCAGCAGGGGGGGCCTTGTCCTTTAGCATCTGCAGGTCTGGTTCCCAGAATCTCCAGGTCCTCAGCAGATCTGGCCGTGTATGGATTGGAGGCACTTCTTCCCCAGCATTAGCTGTAACTTGACCCAAGTAGCAGTGTGGGACTGCTCACTGCATTTTAATAAAGGAGCTCCCCTTCGAAGTCTGTACTGCCCCGTGCCAAGTTGGGAGGAGACGTCCGTGTGGTCTGGGACTGAGAGCCCTGTGCTGAGGACCGGGATCATCCTGGCCCACTGGCCAGTGGTTCAGTGCCAGAAGGGCTTGTTTTGCACATCACTGTTGCCTTCACCAAGCAGCCATGGGAGAGTGCTCCCCGTGCAGCTCCCTCCTTACGAGCCACACTGGATACTGAGTACCTGCTGAGACCTGGGAACTCTTCATTTCAAACCCACGATAGGGCACAGAGAACTGGGCTGTCATCTTTCAGTCCCTTTGGTCACCTGTAGATGTTGGGACCAGCAGTCGCCAGGAGGTGAAAGCTGGCTTCTTTCTTTTTTCCATCATGCTTTGGGCAGTTCTTGTATCCAGAAAGCCTGCAGGTCCAGAAAGGCTGAAGAAGAGGAAGGGAACAGCAGATGAAGTGGCTTGAAGGACACGTCAGTGGTGAAAACGATTTGGGCTTGAGGCTTAGCATCTGGTACCTAAGGAGCCGTTGATTCAACTGGAGATGAGAAGAATTTGCCAAGCCAGAGGAGAGAAACTTCAGCCCCTGAAATTTCTGTCTCCAGTGCTTGGAAGTGGAACAGGGGTAACTGCTAAGTTAACGTCTTGGCCGTCCCATGAAGCTCAGGCATCAGGATGATGAAGGCCATGCTTCAGTGTTTCTGTTTCAGCTCTGTGCAACTTTTTGTCTTCTTGCTTAGAAGTGGGAAAATTATTGGTATTGACTCTGCTGTGCAGGGCTCTTGGTACCAGCCTGAGCCCTGGAGGTGGAGGTCTCTGGAGAAGTGATCACTGAAGATGGAGCTCTGAGCCCCTCCTTACCTCCTCACAATACTTGTGTGCAAAAAGTATTTTAGATTTGGCTGACAACCTATCCTCCAGAGCAGGCTCCTTTCCCTTCCATACTCTAGAATGTTTCCAGCCAAGGCGATGAATAAGGCAACCCAGATATAACTCTTCAGTATCTGTACTGAAGGCAGGGAGGGCCCACAGCGTGCCGTGGCTGGACTTGTGGTCCAGGGTCCTGACCCGTATAGTGCATCCATCGTATATCCAAACCAGGCCACCTGCATTCAATCCAGGAGCCTCACCTCCAGTATGAGTGGCAGCCAGGAGGGAGTACACAGTGTGCAGGATTCTCAGACAAGGCCATTTGGGGTGGTACAGGCAGGGCCAGGGACTGTGTATGATAGGAGTGGAGTGGGCAGATTATACACCATACGCTTCCTCCCCGACCTCCTGCAGAGCTGGTCTCAGCAGTGACTCACACAGAATTAGGCTGCATCCCTGTACTAGCTGGCAGGTAGCTGCTTTCTGAAATTCAGGAGGCGTTTAGTAAGTTGGAGGAAGATACGAAATCTGAAAGAGACATCCAGTGTCAGGGGTTTAATAACTTTACAGGTAGGATAGTAACACACCAATAGGAATTGAGGATGGTGAAACTGAGACTATGTGAAGTTTTAGGAATCATTCAGGACAGAGGTTCCTGAACAACCCATTCATGACTTAAGAGTGCAGTCTAGACAGCACTGGAGGGGCTGCTCCTGAAAGATGCTGGCCCTGTGTGTGCTGGGGCCAAAGGAGAAACTAACGCATCGTCCTGCATTTGCGTAAATCCTAGTATGCTTCTCATGGATGATTTCCTGAGGCTTGTGTTGTACACCTTAAAGAATGCCAAAAGGAGAAGGGAAGTTGTAAGGACATTGATTCTTCTGCACCCTGGAGGGACAGGCCTAAGGAGGAAGTGGTTGAAGTCTATACAGTCATGTTCCCCAATTCCATACTTCTCCAGCCCTTGAAGTGTAAAAGGAAGCTTTCCTCCGCCTATCATGTAGCAAACCTGGAGTCCATAACCTCAGAAGGTGATAACTACTGGCCGAAAGTGTAGAAGGATCAAGAGGGCTTTAGCTGATTTCTTGGATGACAGATACATGTTGATGCTCTATGGAAGATGTCCTTGTTTTGAGAAGAGGTCACTGATGGAGGAAGACCTGTCTGCCCTTGGCTCTACCACTAGAACAGTCTTGGGCTGGATGGGTTATAGAGCTGAGCTGCTGTGACGGTTCTGTTCTTCCATTAGCCAAAACAATTAAAAATAAAAACAAATTTGGATTGCTTCAATG +>XR_003982306.1 PREDICTED: Sparus aurata uncharacterized LOC115573581 (LOC115573581), ncRNA +CACCACTTTGTACCTCAAGAGGCGATAGTACAGAAGTGGGCTGCTGCAGAAACATGGCGGTGTAACATGGCAGACTCCGCGACAGAGGACCTGCTTCTTTTAAGGTAATCCCAGGAAAGTCTGGCTGGAGGCTGGAGACACGTTTGTCAGGAAAGTACGTGCCTGATCTGATGTGACCCCTCCAATCATCAAACTGTCAGATATGATTGAGAGGGTAGAGTCCACTGCTCTGACTGTATGGTATATCACTACGTTGGTGATATGAACTGTGAAGGTATTAA +>XM_040635235.1 PREDICTED: Ursus maritimus RNA polymerase III subunit E (POLR3E), transcript variant X3, mRNA +CACGTGTCCGCTGGAGTTTCTCCACCAGCAACATGGCCGCTGCCTAACAGAAGAGCCGGGCCGCCGCCACCTCTGCAGCCCGCGGGTACCTGGGCCGTTGCCGCCGCCCGCGCGCGGCCCCCGCGGAGAGATTGAGTCCAACGATCGTGCGGCTGGCTCCCCCCTAGTATGGCCAATGAAGAGGATGATCCAGTCGTACAGGAGATCGACGTGTACTTGGCCAAAAGTCTGGCAGAGAAGCTGTATTTGTTTCAGTACCCTGTGCGCCCAGCCTCGATGACCTACGATGACATTCCACACCTCTCAGCCAAGATCAAGCCCAAGCAGCAGAAGGTAGAGCTTGAGATGGCCATCGACACCCTGAACCCCAACTATTGCCACAGCAAAGGGGAGCAGATTGCACTCAACGTGGACGGCGCCTGCGCGGATGAGAGCAGCACTTACTCCTCGAAGCTGATGGACAAGCAGACATTCTGTTCCTCCCAGAGCACCAGTAACACAGCCCGTTACGCTGCCGCACTCTACAGGCAAGGTGAGCTGCACCTGACGCCTCTCCACGGCATCCTGCAGCTGCGGCCCAGCTTCTCCTACCTGGATAAGGCGGACGCCAAGCACCGGGAGAGGGAGGCGGCCAACGAAGCAGGAGACTCTTCACAGGATGAGGCGGAAGAAGACGTGAAGCAGATCACGGTGCGGTTCTCCCGTCCTGAGTCAGAGCAGGCCCGCCAGCGCCGCGTGCAGTCCTACGAGTTCCTGCAGAAGAAGCACGCCGAGGAGCCCTGGGTGCACCTGCACTACTACGGCCTGAGGGATAGCCGCTCTGAGCATGAGCGCCAGTACCTGCTGTGCCAGGGTTCCAGCGGGGTTGAGAACACAGAGCTCGTCAAGTCACCCAGTGAGTACCTCATGATGCTGATGCCGCCCAGCCCGGAGGAGGAGAAAGACAAACCCGTGGCCCCCAGCAACGTCCTGTCTATGGCCCAGCTGCGCACGTTGCCCCTGGCCGATCAGATCAAGATCCTGATGAAGAATGTGAAGGTCATGCCTTTTGCCAACCTGATGAGCCTCCTCGGCCCCTCCATCGACTCTGTGGCTGTTCTGCGTGGCATCCAGAAGGTGGCGATGTTGGTCCAAGGAAACTGGGTTGTGAAGAGCGACATCCTGTACCCCAAGGACTCCTCCAGCCCTCACAGCGGCGTCCCTGCCGAGGTGCTCTGCCGGGGTCGTGACTTCGTTATGTGGAAGTTCACGCAGAGCCGGTGGGTGGTGAGGAAAGAGGTGGCGGCAGTGACTAAACTGTGCACGGAGGATGTGAAGGACTTCCTAGAGCACATGGCCGTGGTGCGGATCAATAAGGGCTGGGAGTTCATACTGCCTTACGATGGGGAGTTCATCAGGAAGCATCCAGATGTGGTCCAGCGGCAGCATATGCTGTGGACGGGCATCCAGGCCAAATTAGAAAAAGTGTATAATCTTGTGAAGGAAAGCTTGCCAAAGAAGCCAGATGGACAATCAGGGCCTGCTGCTCTGCTCTCTGGGGACCAGCGGGTCCAAGTGGCCAAAAGCAAGGCCCAGCAGAACCACGCACTGCTGGAACGGGAGCTGCAGCGGAGGAAAGAGCAGATGCAGGCGTCCTCGGTCCTGCCTGGCGTGCGGATCAAGGAGGAGCCCATGAGTGAGGAGGGAGAGGAAGAAGAAGATCGAGATGCAGAGGAAGACGAGGAGCCCATGGACACCTCTCTTGGTGGCAGCCTCCACAACAGGCTGGCCAATGGGTTGCCTAGCGGGCGGGCGACAGGCGGGGACAGCTTCAATGGGCACCCGCCCCCAGGCTGTGCCAGCACCCCCGTGGCCCGGGAACTGAGGGCCTTCGTGGAGGCCACCTTTCAGAGACAGTTTGTGCTCACGCTGAGTGAACTCAAGCGCCTCTTCAACCTGCATCTGGCCAGCCTGCCACCTGGCCACACACTGTTCAGTGGCATCTCGGACCGCATGCTGCAGGACACGGTGCTGGCCGCCGGTTGCAAGCAGATATTGGTGCCTTTTCCCCCCCAGACTGCTGCGTCCCCAGATGAGCAGAAGGTGTTCGCCCTCTGGGAGTCTGGAGACATGAGCGATCAGTTATCATGAAACACCAAGTCTAAACTGCTTGTCCTCGGCTGGCGCGTCCCTGGCTTTGTTGTCTTCTTCCTGGGGTCTCGGG +>XR_001152071.1 PREDICTED: Microcebus murinus uncharacterized LOC105866893 (LOC105866893), ncRNA +TGCTAGCTCCTCGTTAAGGAAGTGACAAGGTTGTAGACACTGGAGGTGGCTCAGTTACAACTGCCTTTACCGTGTGGCTGAGAATTCACTCCCTTCCAGGTCTGGACCTCATGGTTCTGTCACCAAATCGGCTGCCCCTGGATAGAACAAAAAGGCAGAGGCCCTTCTCTTCTGAGCTGGGACACCCATCGTCTCCTGCCCTTGGACATGAGAACTGCACATTCTCCGGCTTTCAGACTCTGAGACTTACATCACTGGCTCCCAGGTTTTGACAACTTTGGACTTGAACTGAGCTATGCAACTGGCTTCCCGGGTGCTCCAACTTGCAGTGGGACTTCTTCCTCAGCCTCCATAATTGATGAACAGAGCAAACCTTATCACCAGAGATGGAGAATCAGAACCAAGATGAGTCTGCACAAATGAAGCTTACTAAAATTATACTTATCTTCCATTCATTTCCCCCACATCCA +>XM_037676314.1 PREDICTED: Nematolebias whitei ALG2 alpha-1,3/1,6-mannosyltransferase (alg2), mRNA +TCTCACTAAAATCGTGTGCTTTAAAGTGAGAAGGAAATAGGCGCCATTGTGGTCCAAACACGAAGCTCGTGTAGCTTAACTCTAACGGGCAATTAGAGCCAAAATGGCGTTTAACTGTTAGAGATTCTTGAAATCGGCTGACAAGTAGGCGAGTTTAATCAATGGTTTCTAAACCTTGACTGGATAGAGGAGAGATTCAAAGGATGGCCCGGGTGGTGTTTCTCCATCCGGATCTTGGTATCGGAGGAGCAGAGAGGCTAGTGGTTGATGCCGCTGTTGCCCTGAAGTCCCAGGGGTGTAGTGTTCAGATATGGACGGCCCATTATGATCCAACTCACTGCTTCTCAGAGACCCTGGACCCAGACCTGCCTGTGGTTTGTGTGGGTGACTGGTTACCTACCAGTGTGTATGGCTACCTTCATGCTCTCTGTGCATATATAAGAATGATCTATGTGGCTCTGTACCTGGTCTTCCTCAGTGGTGTTGAGTATGACGTCATCTTCTGTGATCAGGTGTCTGTGTGTATACCTGCACTGCGGTTGTCCCGTCACAGAAAGAAAGTTCTGTTTTACTGCCACTTCCCAGACCAACTGCTGACCCAGAGAACGTCGGCCCTAAAGAAATTTTACAGAGCTCCCATTGACTGGTTGGAGGAACGCACCACTGGCATGGCTGATATGATTCTGGTAAACAGCCAGTTCACCGCAGGCATCTTCAGGGAGACATTTCAGAGTCTGAGCAGGGTCCAGATAGACGTCCTGTATCCCTCCCTGAACACACAGACCTTTGACCAGGGGTCCACTGAGGCTCAGGGCCTGCAAGGTCTGCTTCCTGAGGGAACTTCTCACATGTTTCTGTCTCTGAACCGATACGAGAGAAAGAAGAACCTGGGTCTGGCTCTGGAGGCTCTGGCAGTCCTGAGGTGCAGCCTTACACCTGCTCAGAACGCAGGTGTTCACCTGGTGGTCGCGGGAGGCTACGATGATCGCGTTACTGAGAACGTTCAGCACTACAGTGAGCTGAAAGAATTAGCCGAGCAGCTCTACCTGATGGACTGTGTCACGTTTCTGCGCTCCCCCTCCGATTCCCTGAAGGTGGCGCTGCTGCGGGGCAGCACCGCAGTTCTTTACACCCCCAGCAGGGAACATTTTGGGATAGTTCCTGTGGAGGCCATGTATTGCTGCTGTCCTGTTATCGCTGTGAACTCTGGGGGGCCCCTGGAAAGCATAGCAGACGGGGAGACAGGCTTCCTGTGCGAGCCCACCGCTGACGCCTTCTCCAAGGCCATGGAGAGGCTTATCAAGGAGCAGCAGCTCTGCAGGGACATGGGGCAGGCTGGGAGGAGGAGGGTGCAGGAGAAGTTCTCTCTTCAGGCCTTCTCAGACCAGCTCTATGGGTACATTGTCCGGCTGAACCAGTGATGGGAAGGCAGGTGAAACCTATGACTGCACAGAGGATTTAAGTGTAAATGTGAAGGGAGGTGGGGGTGTATTAAGAAGACAATTAATCAGCATTCCACTGGAGGGGTTGCTGA +>XM_034454558.1 PREDICTED: Crassostrea gigas ankyrin and armadillo repeat-containing protein-like (LOC105340499), transcript variant X6, mRNA +TCGAGAATTAACGAAAGTGACCAATCAAACTTTCGCTTCTATTTGTACATCGTCGTCGACACCAACAGGTTGTGGAAACGACTGCAGTAGGGCAAAATACAAAATGCACACAGGATCTATAAATAGCTGACATGGCCACTATGAATGCTGGGACCCCCCAGCCGGGGGAACCCACGGACGAGGCCCAGCTCCAGGCCAAACTGGAACGCTTGGCCAGTACGTACTTCGAGAAGTTCTCCACCCCTGTGTTCAGAATGCAGGAGCTGATTGGCTTCCACAAAAACCACTGGCTGCTCTCTGACGATTTCAAGATGGCGTACGATCAACCGGACGGCCTCATTAAAGGTTTGAACCCGCTTAACTCCAACAGCTGTGTTCTGATGGTGCCGGAGGACCCAGTCCTAGCAGAGAATAAGCTTGGCCTGGACTACCGCGAGGTTCACCAGGTGATCCGGGAGCTGACCTACGGGATCTACGTCCTGAATCAGACCCCCAGCATCTCCCTGGAGGCACTGTATGATCAGGGCACATGGTGTAACCTACCCCCGGGCTTCAACGACACTCACATCGGTCAGCTGTTGATCAGCGTTGACTACATGATGAAGTCCCTGTGGCATGGAGCTTACTTTCCCAAAGAGAAGAGGACCAAATTCAACGACAAATGGAGGGAGCACTTCCAAGTGTCCAAACAGAATGGAAAACCAGAGAAAGAGAAATCCTTCCTCTCCGATTTCCTCAGTCATGGCATGGTAGATATGGGAAAAGATCCGGATTACTGTGACGCGTACAATGACCTTCAGTTCGATAACGAGGACGACCCAGACATGATAAAAGAGCGAATTCACTTTATGAAGCACATAGAGGACATTTGTATGCAGATGACGCTGTACCAGAAAAAAGTGATGCATGAAAAAGACATCTACATGATGGAGGCCGATATGACCATATCCAGTATCGTTCGACTGCTGGACGATCGGATAAATCACGACGACTACGAGCGTGTGAATACGAGACTTCAAATGCATGAAAACATGCTGAGGGAAAACCTTATGAAGAAGATGGACATCAGGCGACAGTTGTTCATTCTGAAGTTTGTGAGTTTTCTGACGCCGTTTTTGATCGGAATGAGGAAGAGAATGAAGATTCCCGACACTACACGATTTCTGCCAGATCTCTCAGAATCAGAAACAGAGGACCAATGTAAGACAGAAGAAGAGCTGCCACCATTAATGCTGGGAGACGACTTTAAGTGTAAAAACTTCTACCCCGACAAAAACAAGTACTTTCACCTACACGGGGGAATAAACATCGACTTTGAGACAGACGATCTAGAAGCGACTCCAAAGGAAGTGACCAACAGATACTCGGATATCCTAGCAATGGCTGAGCAAGGTTTTATAAAAGCCATTTCCATGGAAACTATCAAAGAGCATTATGAGGTGCCAAAAATTACAGTGGACGGAAAAGAGTATTACCTGATCTTCCTGGAGTTTGAGACGTTCTTTAACCCCCAACAGCCCGCCTGGATAAAGGCCTTCAACACAAAGCTGACCATTGACCTAGAAAGAAAGTACCTCCCCCTACAGGACACGCCCATGTGGGACATCTTTGTCAAACATTTTGGCAAGAAAAAGACAGGAAAGTTAAAGGCTCAGATGACGGGACCGCGAGCGGCGGCCATTAGAGGACTGGTCATCATATTTGTCCATATGTGTCGCAAAACTCTGGGACAGCAGATGTCAAGGTTGACAAAGCAAGACGAACACGGTCTATCGCTTTTGCATCATGCTGCGATGAACAATCGGCCGCAGATAATTGTCAGTCTGCTGCGACAAACTGTGGATATCAACTCTAGACGCAACAACATCTTGTCCACAGGTCCGACCGGGCTCCATATAGCTGCCCGTTGTGGGGCCTTGGATGCTGCTGCCTGTCTGTTGGCCTGTTGTGCGGGACAGACATTGTACGATCAGGACGGATGGGCCCCGATCCACCACGCTGCTTTTTTCGACCACGAGTCTATCATCAAGTTGATGGCCAGGAGGAACAATCCAGTCATAGAGCTGCTGACTAGGAATGATGTTCGGTCGACACCTCTGTTGCTAGCCGCGAGTTCTGGAGGACTCTCTGCCGTGAAATGTTTGATCAAACTCGGAGCGGACATTTCCCGGCTGGACGGGGAAGGGAACGGAATGGTCAATCTCGCTGCCATGAGATTCCACACTAACGTCTTGGAGTATCTCATTGAGTGGGGCCACCAAAAAGCCCCTGTGTGGAAGATTCTTGTCAAAATGCTGACTGATCCAGAAGTGGAAAAGAAAGACAGTGCTGTCAAATGTCTGGAGGTCTTGTCTACGTCAAAACCGGAGCACTGGAAATCCATTCTGGAAGCAGGGGGTATCCCAGCCTTGGTGACCTTGCTGAGTTCAGACAATGAAGTCCTCCAATCAGTGGCCGCCTCCGTCATCGTCAACATCTCGGAACACGCGGAGGTTCGTCACGCTCTGACGGCTGCCAAAGCCGCCCCAATTCTGATCCAGCTGCTCAACTCTCCAGACGATAACATTCAGTCTCGTGTGGCCATAATCCTGTCGGACATTGCCAGTGTCCAAGGAAACCAGTCGCTTATTGCGGACGAAGGCGGGATTCCCCCGCTGATTCATCTCATGGACTCTGAGCTGGAGGAAGTCCTGATAAACACTGTCAATGCCGTCCGTGTTCTCTGTGCAGGAAATCCCCCCAATCAGGACGCGGTGGCGGAAAACGGAGGAATCGCATTTCTTCGCGAGTTTCTGACATTGGATTCAGAGAAATTAAAAGCGGCAACAGCAGCATGTATTGCGGCGATCTCTTCAGGAAATAAAAAGAACCAGGACGCTCTGTTAGAGGCGGGAGCTTTAGAGCCCTTGGTGGATATAATTAATGGAACAGCTAATGAGACGGTGCGGGTGAAGTGTGCTAATGCCATCGAGGCGCTGGCCCAGGATAACCTTGCCTGCCAACAGACCTTTCTCCGAATTAAGGCCCCCACTGCCCTCAAAAAACTCCTCAAGAACTTTAATGTGTCGGTGAAGGAACATGGGGCCAAGGCACTCTGGGCGCTGGCGGGCAGCACCACGTCCCAGCAGAAGTACATCGCAGAGAAAACCAGCATCCCCGACATCTGTAGCATGCTACTGGAGGACACTGAGAAACTGCTGCAAGTCGGCTGCATGATGTCGATAGCCTTGGGGAGAGAGAATATCGAGAACCAGATCAAACTAGCTCAGACAGAGGCTTTCAATCAACTCGTCCGTCTGCTGCGGACTCACAAAGACTCGCCTCAAGTCATACTCATGGTCATCCAGGTGCTTGGAATTCTGTGTGTGGGTGTTGCATATTGTAACAACAAAGTAACACAGAGAAAAATAGCGGAAGAAGGGGCTATTCCGACCCTGGTGACCTACTTAAATCAGCCTCCTTCAGAAGAGGTCCAGGTGGAAGTTGCCATAGCGCTGGGGTGCATCGTCCTTAGCAACACTCGTAACCAGGAACTACTTCAAGAAGAACCAGGATTTAACTTTGATGTGCTACTGGATTTGTTGAAGTCAAAGAGTGAAGCTATTCGACTCCGAGCAGGCATGGCCCTGACCATCTTCGCATTTAACAATACTCCGCAACAGTACGCCATCCGAGAGGCAGGCGGCATAAAATACTCTGTCTTCGAACCTTTCCTCAACTCCAGCATAGAATATGATGTCTGTTACGCTGCGTTTCAGATCGTGGTGCTTGCGCGGGTGATTGTCGACCAAGACCAGGTGATGTTGACGGCTCGCGGTGTCACGCTGCTCGTAGAGAAGCTCCACTCCACAGAGGACAATGTGATCGTACTCGCCGCGAGTCTCCTATCGAGTCTCGCTCACACGCGGGCAGGAATCCCTGATGCCATGGTAACCACAGGCGCCATCGATGTGCTAGTGGAAAAACTCTCCTCACGGAATGACCAAGTTCGGAGTGCATGTGCGGTTGCCCTCGGTTACTTGACTTTCAACAGGACTGCTGCGAGGATTTTGTTCAGTGCTTGTCGAAACACTCCTGGATTGTACAAAAAGCTCGACGAAAACATTGGGAAAAATGCCAAAATTAGTCAGGAGTTTGTGCAGGATTTCAAACGAGCAAAGATTGTTGGATTGCCGTCTCAATGCCTTGAGATTAATGGTGGACCTCCAGTAATTCCTCCCAGCAGAAACAGTATGAGACCGATGACTGGTACGACAAGTCGAGCTACCACCGCCCAAGCTACAAGCCGAGCGAAATCAGCTCCGGGGAAGAGACCGCCGCCGAGATCATCCCCTAACCCCAGCGTGGTTGTTGTAAGTACCCCCGACAACAGTCGCCCCTCAACGGCCTCACCCCTCAGGATCCACCCCAGCTCTCTGTTCCGACCTGCCTCCTCCCCCCACACCAGAAAAGGGGCGCGGTCACCCCCAGATGCAACCTTCAAAACGCGGTTATCTTCGTGGAAAGAAGAAATCTGATGAAAATGTTTCTCTCTGAGTTTTTTGTATCAAATGAAATGTAATTCACTTCTGTGTGTTAAATACCCCCAAATTGTATAAGTCTATAAAATTATTATTTT +>HM490822.1 Uncultured Thermovirga sp. clone GE7GXPU01D8TM1 16S ribosomal RNA gene, partial sequence +GTACGTGTTACTGATCTGAGAGGACGAGGGACCCATGCTTCGGTATGGGAGCGTACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGCATCCAGTTGCCATCGGGCGAGCCGGGCACTCTGGAGGGACTGCCGGCGACAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTATGTCCAGGGCGACACACGTGCTACAATGGCCGGCACAGCGGGAAGCGGAGGGGCGACCCTGAAGCGGATCCCTTGAAAGCCGGTCCCAGTTCGGATTGCAGTCTGCAACTCGACTGCATGAAGTTGGAATCGCTAGTAATCGCGGATCAGCCAAGCCGCGGTGAATACGTTCCCGGGCCTT +>XR_005682382.1 PREDICTED: Panicum virgatum uncharacterized LOC120691804 (LOC120691804), transcript variant X1, ncRNA +TCCCTCTTGCCGGCGGCCTCGCCGACGTTTGCCGGCACGCTCGAGGTCGATCCGCTCATGGTTGCGGGCTCCTCTGTTGCCGCTAGGCGTACTCGTTCCTACCTTCGTTGCTGCAACCACGCCCTCCCAGTTGGACCTACGGAACCTTTGTTGCGGCATCCATCCCCTCCTAGATACAGTCCTCGGATTCTGATGCTCCCGCTAGCAAGGTTGCTCTTGCTTCTGTTGGTCAATCGTGCAACTGGTGGAAGGAGGACCACGGTTCTCCATGCTGTGGTGTAGATTAGGCGCTAGGTGCTTGATGTCACTGAAGAGAAAGAAGTAGAGGAGCTTATGTTCTTATGTTCGCTTTGGTGGCCAGTTGCTTATAATTTATTTGATACGGCGGCTTAGGATTATAGTCTTATGTAACCGTGAAAATTGTCTTTGGCAAATTTACTAAGTAGTTCAGAAGACTCACTTTGTATTGTATTGTATTTTAATAATTTATTGTTGTTGTGATCAATCAATATAAATTTGCAATGATATATATA +>JN143486.1 Uncultured eukaryote clone KYD009 18S ribosomal RNA gene, partial sequence +AGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAAACTCACCCGGCCCGGACACTGTAAGGATTGACAGACTGAGAGCTCTTTCTTAATTCGGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCTGGCCTATTAAATAGACGGTGTATCTTGAAGTATACCGCGCTTCTTAGAGGGACAAGCGGCGTCTAGCCGCATGAAATAGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCGGGGCTGCACGCGCGCTACACTGAAAGAATCAGCGTGCGATTAGCCTGGTTCGGAAGAATCGGGTAACCCAAGTAAATTCTTTCGTGCTTGGGATAGGGAATTGCAATTATTTCCCTTAAACGAGGAATTCCCAGTAAATGCGGGTCATAAGCTCGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGGATGACTCAGTGT +>XM_052629031.1 PREDICTED: Gossypium raimondii plasmodesmata-located protein 6 (LOC105780626), transcript variant X2, mRNA +TCTCTCATTTACACTCTTCTTTTCTATATATTCTCTTTTAAACCTTTTTTTGTTTTCTCAATATCTTCACTTATGGCTTTAGCGGCGAAACAATTATCGTCACCTTTTGTTATTTTTCTCATATTATCAATTTTCTTAGTTGGGCCATCGTTTTCCGGCACCGATACTTTCGTTTTCGGCGGCTGTTCGCAGCTGAAATTCACTTCAGGCTCACAGTACGAGTACAACGTCAACTCGATACTCACTTCCCTAGTCAACTCAGCCATGTTCACTTCTTACGACAACTTCACCATGTCAGCTTCCGGTGGTTGCAGTGCCGTTTACGGGCTGTTCCAATGCCGTGGTGACCTAAACAACCGTGACTGTAACCGTTGTGTAGCTAAAGCGGTGAGTCAAATTGGAACTCTTTGCTTTTACTCAACGGGTGGTGTGTTGCAACTCGAAGGGTGTTTAGTTAAATACGATAATGTAACTTTTTTGGGTGTGGAAGATAAGACCGTGGTAGTGAAGAAATGTGGACCGTCGTTCTCGTCTTACTCGGACGCTTTGACTCGGCGTGACTCGGTGCTGAGTTACTTGGAAGCGAGTGATGGGACGTATAAGCCGTTTCGGATCAGCGAGTCGGGGAATTTACAGGGTGTGGCTCAGTGTGTTGGTGATTTGAGTCCGAGTGAGTGCCAAGATTGCCTATCGGAGGCAATCGGACAGCTGAAAACTGAGTGTGGGGCAGCAAAATGGGGTGATTTGTATTTGGCTAAGTGCTACGTGCGGTTCTCGGAAGGTGGATACCACTCGCATGCCGGAAAGAGTAGCTAAATAAACAAAGGAAACTGACAATTGTTGTGAGGAATCCAAAAGAAAACCCTTTGCATTTGGTCTTCATTTCTTTTATCTGTTTATATTTAGACAACTATTGTACTGTCCGGGCGAGAAAATTTA +>HQ761033.1 Uncultured organism clone ELU0047-T268-S-NIPCRAMgANa_000215 small subunit ribosomal RNA gene, partial sequence +AGNGAAAGGCGCTTTCGGGTGTCGCTGATGGATGGACCCGCGGTGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCCACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGTTAGAGAAGAACAAGGACGTTAGTAACTGAACGTCCCCTGACGGTATCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGAGACTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGTAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTGGAGGGTTTCCGCCCTTCAGTGCTGCAGCAAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTTTGACCACTCTAGAGATAGAGCTTTCCCTTCGGGGACAAAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATTGTTAGTTGCCATCATTTAGTTGGGCACTCTAGCGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGAAGTACAACGAGTCGCTAGACCGCGAGGTCATGCAAATCTCTTAAAGCTTCTCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGAAGCCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGAGGTAACCTTTTTGGAGCCAGCCGCCTAAGGTGGGATAGATGATTGG +>XM_033535937.1 Aplosporella prunicola CBS 121167 uncharacterized protein (K452DRAFT_19523), mRNA +CTGGGGCGGCGGAAGAGGGCAGAACTCCGAAACACTCACTACACCCACGTCGGGTAGCTCGTCGCCAAGGTGGTACTCTACTCTAGCTGTGTTCCGCCATCCGGAGGCCTACACGTAAGGTCCATGTCGTGCAATTGGACTAGAGACGCACTCGTCTCCCACGCAATTCTGTCGTGCAGATGTACGGTTACTTCGTACTTTTGACAGATGCCTCGTCCGTCGTCCATCGTCCATCTGCATTTATGGTCGACGTTTCTCTCCAACCATGAATGCATGCTCGTATCTACTTCCCTAAGTAACATCGAGCGCATACAACCAAGACAACAAGGCCGACTGTGGGCTGCAATCCTCAGGGGACCAAAAAATTTCTGGTGCCACTACTGCACATACACGCGTTCTACGGTTAGCGTCAAGTATGCAAGCCACGAGAGTACAACAAGGGATGGGCTACAGCTTGGAACGGCCAGCCATTGGTCGCACACGCTAGCATACACTTTTATCTGGCTCCTCTGCTGGATAATCGCATTCCGCCGCCGTTTCGTGCTTCGCAGGCATGCCCATGCTCTGTCTCCATGCTGCATCTCAAATCCAGCGTATCGTGCATGTTTTGGTGCTTTGATGCAGGTCCATGACGTCACCGGCAAGGCATCGACAACGCATTGTCTGCACCGGGCAGATCAGAGTCCCTCTCATGCCCCATAATCCGTAGCGGTGCATTTATCCATGGATTCCTTGTCTTATACCGACCCGGCGTTAGCAGACGTTAACTCGTTCTGACTCGATCTC +>XM_008727620.1 Cladophialophora carrionii CBS 160.54 hypothetical protein partial mRNA +ATGTCTGAACAGTCCAGCGAACCGCGAATAAAGTCGCACAAGAGGAACGTCGCCCACCGTCGACGCCGGGATGACGACGATTTCGAGGACCGGTGGGGCGATGAAGAGGTTGCCGAGGACGACGACGCAGATGGACACGCGCAGGCTGAATTCCCAGAGTCGTCGTCCAAACGGGTGAAATTGTCTGATGGCTCGGCATCGCATCGGGCGAAGAATTCCACACCCACCCCTCCACCAGAAACGGAAGAGGAGAAAGCACAAAGGGACCGAAAGGAGCGAGACGAATTCGCGAAGCGGTTGGCAAAGAAGGACGAAGAGCGGGCGAAGAAGATCGTGGAAGACAGGTCCGCTGCAAAGGACAGTGCGACGGCGCAGCGGCGGGCATTGGCAGACGATGCGTCCGCGAGAGACGCTGCGATGCCGGATTTGAGGCTTCGGTCCCGTCAGGACTACCTTAAGAAGCGGGAAGCCGAGAGGTTGGCTCTGCTGCGCAAACAGGTCGCTGAGGAGCAGCAGGAGTTGAGGGACAACCCGGACCTGACGCGGCGGGAGAAGGAGGAATTCGCGCGCAACAAGGAGATCCTGCGCATCGCGGAGGAGAGGCTGGCCATTGACGATCACTTGGACGGCTATGCCTTGCCGGAAGACTACATTACCGAGAAAGGGAAAATCGACAAGCGGAAGAAGGAACAAGCACTCTACCAACGTTATGTCGATCGCGACGAGGCCGGCCGAGAACGCTATGTCACCGAGCACGAAGAGTGGGAGAGAGAGCAAACCAAGCGAGCCGAGGCCCAGATCAAGAAGTCCGAATTCGTAGACGAAGGCGACTACGGCTACGTGTTCGACGAAAGCCAGCAAATGAAGTTCATCCTGGCGGACAAGCTGGAGGGGGACAAGGGGATGACCAAGGAGCGCAGAGAAATGGAACAGCGGCTCAACGCGGCAGAAGCAAAAGCCAAGAGCATCGAGGAGACGAGGAAGAGTCTACCCATTTACCAATTCCGAGACGAGATCATCCAAGCCGTGAAAGACCATCAGGTCTTGATCATCGTAGGCGAAACTGGCAGCGGGAAGACCACTCAATTGCCACAGTACTTGCACGAAGCGGGTTTCACAAAAGGTGGCATGAAGATCGGATGTACTCAACCGCGAAGGGTTGCTGCCATGTCCGTTGCAGCCAGAGTAGCAGAAGAGATGGGCAAGCGGCTAGGGAACGAAGTGGGCTACGCCATCCGCTTCGAAGACAACACCAGCGAGAAGACGGTCCTCAAGTACATGACCGACGGCATGCTGCTGCGAGAACTGCTCACCGACCCGGAACTCTCTCAATATTCGGCCCTCATGATCGATGAGGCTCACGAACGCACCGTCTCCACCGACATCGCGTGCGGCCTGCTCAAGGACATCGCCCGCGCCAGACCAGACCTCAAGCTCCTGATATCCTCTGCAACCATGGATGCCCGCAAATTCCAGAAGTACTTTGACGACGCACCCATCTTCAACATCCCGGGAAGAAGATACGCGGTCGACGTGCATTACACGGCCCAACCGGAGGCGAATTACCTGGCCGCGGCGATCACGACGGTGTTCCAGATCCACATCACGCAAGGACCAGGCGACATCCTCGTGTTCCTGACGGGCCAAGAGGAGATCGAAGCCATGGAAGCAAGCCTGCAAGAGACGGCGCGCAAACTAGGCAGCAAGGTCAAAGAGATGATCATCTGTCCCATTTACGCCAACCTCCCAACCGACCTGCAGGCCAAGATCTTCGAGCCGACGCCCGCCGGCGCCAGGAAGGTCGTCCTCGCCACCAACATTGCAGAGACGTCCCTGACCATCGACGGCATCGTCTACGTCATCGACCCCGGCTTTGTCAAGGAGAACCAGTACAACCCACGCACAGGGATGGAATCCCTCGTCGTGGTGCCGTGCTCACGCGCCTCGGCGGGCCAACGAGCGGGGCGCGCGGGTCGCGTCGGCCCAGGCAAGTGCTTCCGCCTGTACACGTCGCAGGCGTACAAGAACGAACTGGACGAGAACACGACGCCGGAGATCCAGCGGACCAACCTGTCGGGGGTGATCCTACTGCTCAAGTCGCTGGGCATCAACGACCTGCTCGACTTTGACTTTATGGACCCGCCGTCGACGGACACGATCGTGCGCGCCGTGGAACAGCTGTACGCGCTCGGCGCGCTCAACAACGCCGGGGAACTGACCAAGATCGGGCGGCAGATGGCCGAGTTCCCGACGGACCCGATGCTGGCGCGCGCCATCCTCGCGGCGGACAAGTACGGGTGCGTGGACGAGGTGCTGTCCATCATCGCCATGCTGGGCGAGGCGTCGGCGCTGTTCTTCCGGCCCAAGGACAAGAAGATCCACGCCGACAGCGCGCGCGCGCGCTTCACCAACAAGGACGGCGGCGACCACCTGTCGCTGCTGAACATCTTCCACGAGTGGGTCGACAGCGACTACAGCTTCGTGTGGGCCAAGGAGAACTTCCTGCAGCAGCGCAGCCTGACGCGCGCGCGCGACGTGCGCGACCAACTCGCCCGGCTGTGCGACCGCGTCGAGGTCGACGCTGCCAAGTCGTGCGGCGGGGCCAGCAACATCGAGCCCATCCAGAAGGCCATCACGGCCGGGTTCTTCCCTCACTCGGCGCGGCTCCAGCGCGACGGGCAGAGCTATCGCACCGTCAAGAACGGGCAGGTCGTCTACATCCACCCGTCGGGCGTGCTGATCGAGACGCGGCCGAAATGGGTCATCTACCACGAATTGGTGCTCACGAGCAAAGAGTACATGCGCAGTTGCATGCCGTTGAAGCCCGAGTGGCTCATCGAGGTGGCACCGCATTACTACAAAAAGAAGGATCTGGAGAGCCTGGGCGTGGAGCGGAAGGTGCCGAGAGGAGAGGGTAAAGGGCAGAGTAAGATTTGA +>HF913007.1 Uncultured Anaerolineaceae bacterium partial 16S rRNA gene, clone 4_45 +GATGAACGCTGGCGGCGTGCTTAATACATGCAAGTCGAACGAAGATGTTCTTGAGTTTACTCGAGAGCTCTTAGTGGCGGACGGGTGAGTAACGCGTTGGTGACCTGCCCTAAAGAAGGGAACAACCTCGGGAAACTGAGGCTAATACCCTATGTGCTTATTTAGATTAGATGCTTTATAAGTAAAGGTTCTGTGGACGAAAGGCCACGGTGCCACTTTAGGAGGGGCCTGCGTACCATCAGCTAGTTGGTAGGGTAATGGCCTACCAAGGCAAAGACGGGTAGGGGACCTGAGAGGGTGGCCCCCCACAATGGAACTGAAACACGGTCCATACACCTACGGGTGGCAGCAGTAGGGAATATTGCACCATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGTGATGAAGGCCTTCGGGTCGTAAAACTCTTTTCAAGGGGAAGAGGAAGGACG +>XM_035019610.1 PREDICTED: Mirounga leonina family with sequence similarity 43 member B (FAM43B), mRNA +CCTACTCCTTAACTGCCCCTCCATCCCCACCCCTCCAATAAGAATGATTAATCCCGTTCCACCGCGCCTGTGCCGGGTCCCGGGCGAAGAGCAGCGCTAGCCGGCGCGGGGGAGGAGAGAGAGGAGAGCGAGGGGAGGGGACAAGAGAGCTAGCGGTCCCGCCCGGTGATGTAGGCAGCCCGGGGAGGTGGAGCCGCGACGCCTGAAGGAGTCCCCACCGCAGTCTCGCGCTCTCGGTCTACCCCTCCGAGCGGCCAGCCGCCAACCCCAGCTCCGGCGACCTCCCTGCCGCCGCAATTTGGGCGGCGGGGACTGCGGGATCCCCCCCCCCAGTTCGGGCCCGGGGGGCCCCTCCACCACGCCCAGCCCCCCTCCCCTCCTCGCTTCCCGGACGGCTGGAGCTACTCCCGGGGGAAGCTGTTCCCGGACGCTCGGCCGCCGCCCCGGCATCTCGGCTGCCAGCCCGGCCGGGCACCGGGCATCTCCGGGCACCGACTGGCTCCGGCGCCGCCCAGCTGCTCGCGACCCCGGGGCCGCGGGCTTCTGCTCGCCCTCCCCTCCCCCGGCCGCCGGCCAGGACGCCCGTGAGCTCCCGGTGCCCCCAGCCCCTCTGGCCGCCGCCGCCGCGATGCTGCCCTGGAGACGCAACAAATTCGTGCTGGTGGAGGACGAGGCCAAGTGCAAGGCGAAGAGCCTGAGTCCGGGACTCGCCTACACGTCGCTACTCTCCAGCTTCCTGCGCTCCTGTCCGGACCTGCTGCCCGACTGGCCGCTGGAGCGCCTGGGCCGCGTGTTTCGCAGCCGGCGCCAGAAAGTGGAGCTCAACAAGGAGGACCCGACCTACACCGTGTGGTACCTGGGCAACGCCGTCACCCTGCACGCCAAGGGCGACGGCTGCACCGACGACGCCGTGGGCAAGATCTGGGCGCGCTGCGGGCCGGGCGGGGGCACCAAGATGAAGCTGACGCTGGGGCCGCACGGCATCCGCATGCAGCCGTGCGAGCGCGGCGCCTCGGGGGGCTCGGGGGGCTCGGGGGGCCGCCGGCCGGCGCACGCCTACCTGCTGCCGCGCATCACCTACTGCACCGCGGACGGGCGCCACCCGCGCGTCTTCGCCTGGGTCTACCGCCACCAGGCGCGCCACAAGGCCGTGGTGCTGCGCTGCCACGCCGTGCTGCTGGCGCGGGCGCACAAGGCGCGCGCCCTGGCCCGCCTGCTCCGCCAGACCGCGCTGGCGGCCTTCAGCGACTTCAAGCGCCTGCAGCGCCAGAGCGACGCTCGCCACGTGCGCCAGCAGCACCTCCGCGCCGGGGGCGCCGCCGCCTCGGTGCCCCGCGCCCCGCTGCGCCGGCTGCTCAACGCCAAGTGCGCCTACCGGCCGCCGGCCGCCGAGCGCGGCCGTGGGGCGCCGCGCCTCAGCAGCATCCAGGAGGAGGACGAGGAGGAGGACGCGGACGCGGAGGAGCGCGAGCGGCCCGAGGTGCTCAGCCTGGCCCGGGAGCTGAGGACGTGCAGCCTGCGGGGCGCCCCGGCGCCGCCGCCGCCCGCGCAGCCCCGCCGCTGGAAGGCCGGCCCCAGGGAGCGGGCGGGCCAGGCGCGCTGAGAGCGCGGCGGGGGGGGGGTGCGGGGGGAGGGGCGCGGGCCTCGCGGCCCCAGCCCCCCGCCGGCCTGACTTCCAGCCTCCAACCCTGGCCCTGCCCGCTTCGGCTCCCCTCTGGTCCCCCGGCCCTTGCCTCCCTCGTGGTCTCTGTTGTTGTCTGCCCCGCGTCTCATCCTGGCTCAGGGTGACGCCTGATACGCCCTTGATTATTGGGGGACAAAGGGGAGGAGAGCAGCAGAAGTACTCGATGTTCGCCTCTCCCCCACATCCGGAGTTGCTGAGCGCCCTCCATCGTGGAATTGCTCGTAAGCTTTACAACAGGTCTTTGCCCATAGACCACCCTCTCCCTCCCAGAACAACCCCTCCAAAGAAGGGGGAAGAAGTTTCCAGAAATCCAGGAGGGTGGCCCTGGACGTTGGCCAGGTGGAAGCCGTGGTCCTGCCCTTGGCCAGTCAAGCCTTCCTCCCTGGGATGGGACCAGTTCTGGGCAGGCATGCTTGCAGAGAAAGAATAGTGGCCCGGGAGACCGGAGGCCAGGTCCAAGGTGGGAAGTGAGTCGGCTGCCATATACACAAGGAAGGATTCTCAGGCCCTGTGCCTGGCCTCTCTACCCCTTGGAGGATTTCTGGACTTCACTGCTCCATCTCCGGAGAAGACTGGGCTGGTCCTACCAACCCAAACAACAGGTTAGAGCAGGTAACAGCCCTCTGCTCTGGGCAGCTGCCCAAGAGTATGCCCTGGCACCTGGCACCCCCACAAGACTCCACCCACCCCACATCTCTGCAGACAGATGTGTGGGGTTCCCCACTAGGTGCCTCCAACTAGGACCAAGATGGGGTCTCCAAAGGAGGTAAGGAGAACCTTTGGCAGGTGCTTGAGGACACTGACCACCCAGAAAGTGGACACAGGAGGGATGCCCTCCCGTCCCCTCCCGCCCCCTGAGTCGGGGCTTGTCAGAGCAGGAGGGTCCTGACAGCAGTTGGGTTCTCATAGCCGGCTGAGGAAGGAGAGTGTGTTCACCCAGCAGAGGGAGTGGGCCCCCTGCCCAGGTGTCCCAACAAGGCCACAAAAAGCCCAAAGATCTATGTGTCACCAACTGATCGTTGTAAATAAAGTGGACCTGCTTTTTCA +>MN887529.1 Glyphodes pyloalis putative family 31 glucosidase KIAA1161 protein mRNA, complete cds +GGGGGGGGGGGCAGTAGGTGTGTGAGACAAGATGAAGCTGATACTTCTGTTGGCAGGCGTGTCGGTCGCGCTGGGCGGTATTGCGCGCGCGCCGACCAAGCGTGACTTCTTCGTCGACCAGCGGGAAGATGGCGGCCTCGACTTCATCGTGGTGTCCAGCGAGAAGGGTACACTGACCCTCGGGCACATCGGCCGCAAGGTGGCCGCAGACGACCCTGAGGTGACCTTCGACATGGATGCGCAGCTCGATGAGGCCAGCGGCGGCTGGAAGGTCACCATCAGCTGGGAAGGGCCCAGCGACAGAGTCTTCGAGGACTGCTTTGGCTTCAGAGGCAAAGAATGGTACGGAGGTCCCGAGCAGAAGGAGCAGTACTGGCCGATTCAGCACGGGAAGCTGGAGAAGTACTCCATCATCTCTAAGGAGGACGACAACGCCGCCGTCTCCGAGAGATACTGGCTCAACTCCGCCGGCTACTACTTCTACGTACACCCAGAGGCTCCCCTCTTCGTCGACTACCACAACACCAAGAACGATAACATCTGCTTCATCGCTGAAGTCGCCGCACCTTACTCCACCAAGCGTACACACAACGTTCTCAAATACGACATCTGGTTCTTTGACAACGCCAAGGTCGCCCACCAGCACGCCGTTGACACTTACCTGGGAAAGCCATCTGGCATTCCAGACTACAGAATGATCCAATACCCAATCTGGAACACTTGGGCGAGGTACTCCCGCGGAATCGACGAGGATCTTCTATGGGAATTCGCGAATGAAATCGCGGACAGTGGATTCCCTAACTCTCACTTTGAAATCGATGACCAATGGGAGGTGTGCTATGGATCTCTGACCGTCGATGAGGGCAAGCTCCCCAACTTGAAGCAGTTGGTTCAGAAAATCAAAGGACTTGGATTTAGAGTCGGCATGTGGGTGCATCCCTTCATTAACCAGGATTGTGAGCCTTGGTATTCTGAAGCTTTAGAAAATGGTTACTTGGTACTGAATGAAGAAGGAAATCCAGAAACCAGCTGGTGGAACAACAATGGCTCCATCCCTGCCTACGTTGACTTTACCAACCCTGAAGCCAAGAACTGGTACACCTCGCGAATCCAGAACCTCATTGACACTTACGCTTTGGACACTCTCAAGTTTGACGCTGGAGAATCGAGCTGGTCTCCTCAGATCCCAGTCCAGAATGGTGACATCGACCTTCATCCGGGACACATCGTGCAGGAATACGTGCGCGCAGTTGTCCAGTTTGGAGACATGATCGAAATTAGGTCTGGAATAAGAACCCAGGATCTGCCTGTGTTCATCCGTATGGTCGACAAAGACACCTACTGGGGCTTCAACAACGGCCTGGCGACATTGGTCACTACTCTGCTCGCAATGAACCTGAACGGCTACACGCTGGTCCTGCCCGACATGATCGGCGGCAACGGGTACAACGACAAACCAGAAAAGGAGCTGTTCATCCGCTGGCTTCAGGCCAACGTGTTCATGCCTAGCCTGCAGTACTCCTTCGTGCCGTGGGATCATGATGATGAGACCGTTGAGATCAGTCGCAAATACACGACTTTGCACGCGGAGTACGCCGACACCATCGTGGCTGCCATGGAAGCCTCCGTGAGGGACGGCACTCCTGTCAACCCTCCCATCTGGTGGTTGGACCCAACCGACGAAGACGCTCTAGCAGTTTGGGATGAATTCCTCCTCGGTGAGAAGATCCTAGCAGCGCCGGTGCTCGAAGAAGGCGCGGTGTCCAGGGACATCTACCTACCCACAGGCTCTTGGCGCGACGGCGTGACAGGCGAGTTGGTGCAGGGCCCAGTCTGGCTCATCGACTACTCCGCCCCCCTCGACACGCTGCCCTACTTCACCCTGGAAGATTAAGTCGAGACCTTCAGAAGGGTCTTGGGAGTTCCTAATTGATAAGTTTTAAAATAAAGTTGTTGTTTTCAAAAAAAAAAAAAAAAAAAA +>JX367473.1 Uncultured fungus clone 035A13021 18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, complete sequence; and 5.8S ribosomal RNA gene, partial sequence +AAAAAACGCTTGGTCATTTAGAGGAAGTAAGAGTCGTAACAAGGTCTCCGTAGGTGAACCTGCGGAGGGATCATTACACAATAAAATATGAAGGCCTGGCTTCGCGGCCGGCTGAAATATTTTTTCACCCATGTCTTTTGCGCACTTGTTGTTTCCTGGGCGGGTTCGCCCGCCACCAGGACCAAACCATAAACCTTTTTCTTATGCAGTTTCCATCAGCGTCAGTAAAAACAATGTAATAATTACAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATACGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACNCACATTGCGCCCTTTGGTATTCCAAAGGGCATGCCTGTTCGAGCGTCATTTGTACCTTCAAGTCTTTTGCTTTGGTGTTTGGGTCGTTTTTTGT +>XR_006640209.1 PREDICTED: Bubalus bubalis uncharacterized LOC123465122 (LOC123465122), ncRNA +GCCGAGAGAGTAGGTCGTCAGGCGGCCCTTGAGTTTTTTTCTCTTAGTGTAAACGTGTGCTGCGCGCTTAGCCGTCCAACCGGCTCTCGCCACGCCCATCTTCAGGGTCCCGCTGGTTCGGTCGACAGCCCGGTTTCCGGAGAAGCCGCGTCCTCTCCCCGGTCCTGGGATTCTGGAGAGCCCGGCCGGCCCCCGAGACCCCCTTTCTCCCACCCTCTGCCCTCGCGTCTCCTCAGGCCAATCGTTCTGTCCCGCAGGCCTCCCTTCCTGGGATGGTTAACCTTCAAGGATGTGGTGATCGAATTCTCTCAGGAGAAGTGGGAATGCCTGGACCCTGTTCAGAGGGCCTTGTACAGGGACATGATGCTGGAGACCTAGAAGAACCTGCTCTCCCTGGATCTATCTATCTGATACATGTGGTCAACCAATTACAACCCAAAGCAGACAGTGATACAGGAGAAGTATTCCAAACAGCAATCTTGGGAAGACCTAAAAGTCATGAAATCAAACATTTTTACCTCAGAGAACTCCAGGAAGACATGTATGACTTTGAGTATCATTGGAGAAGTGGTGGAAGAAATAACAAAGGAACGCGTATAACTCATGACAGAAATCTCACTGATGGCAGAGGTCAACAATGTAGAAAGGATGTGGAAATCAAGCCCTTTGTAAATAGGCTTGGATTTAACATGCAGGATAAACTTCAGATATTTCAAACTGACGGGATAATTTCTGAATGTAATAAAGTTACAAGGTAGTCAACAGTAGTTT +>XM_023049778.1 PREDICTED: Onthophagus taurus uncharacterized LOC111417487 (LOC111417487), mRNA +TTTAAGTTTTTTAATAAATAATTTTTAATAACAACTTTTTAGCAACAAAAATTAAAAAATGTGTACACCCGAACCGCTTCAACTAAATACAACAAAAGGAAAATGTTCAATCTCACCTTTCACATGCATTTTAAAGTTTTTGATACGTTCGTTGGAATGTCCGGAAAGTGAAAAGTTTATTTCACGTTTTGAGGATCAATTAAATCAATTGATTGCTGTTGGAGGTGTTAATGTTTCCGTTCGCGAATTAGCTGATTTAATAAAACTAATTTCTTTAACGTTTCAAAGAATCGATGAAAAACCTGCTTATTTAGAAGCTTTTTATAAATTATTAAATTTTAGTTCGCAAAATTTGGTATTTTTGATAACCAGCGACATGATAAGTTATGCTGAAATTATACAAGATTTTTTCAACATGCTGGGTTATTTACTGGGTAGTACAGAAAATCTGGATTGCATTCAACACATTTTAAACAGCATATTAAAAATGATTGCAATGGCAAAGAAAAAACCTTATTTACAATCAAAAGTACTTTTAGACGCTTTTGCAAATAGTCAAATACCACCGATTTTTAGCGAATTACTATACATATCTGAATTCGACGTTTACATCAAGTATTTAACAGTTTTAGAAAAATTCTTTGTATCGGAAAGCATCTGTCAAGCCTTTTTAAAATGTAAAGTTTTCGACACTGTCGTTCAAAGGGTTTGTTTAAAATGGAGAGATGAAATTAATTACCCAGATGAAGTTCTTCCAACTTTAGATTTACCACCACATTTAAATGTAACCCAAAGGATTCTTTGGACATTAACAATGATTTATAACGATAGCTCGACAACTTTTAAAAATAGTATTGGGTATTTAGTTGAAGGATCTTCTTTGAGAGGTCCTCGCAATGTTTTAATAACATTAATAACATCAAATAAAGATAAACACATGAGAAATATGTTTTATCTGCTTTTAAGAGCGATTGCTGGTACTGTGCCTTTTCGTCATTATAGAAGTTTAAATAATGAATTGCATATTTTAACGTTTACAACTGAAGTGGAACAATCTCATCCTTGGGCAAAAAGAATGGTGTTACGTGCAGATGATCTTGATTTTGAGTTTAAAATGATGCTGGTTTCAATGTTATGCATTAATAGAGTTTACCCACAAAGCTTAGATCTTTTTAGAAAAATGAATGCCGTTCAAGGAATTTTTACGTTAATCGATACAGATATACAATTAATTTGGTCGACTTATCAACGGTTAGAATTAATGAAAGGGGCATTAATTGGAATGGAAAATATGATTTTTCATGTCATCGATGATTATATTCACTACGGGGGACCTGGTAAATTATTAAAAGTTCTTACAAAAGTTGTTGAAGGTGAACTACATTCAACCCTTTTATTACCAATATTAAGATGTATTAATACATCCTTAAACGTTCCGAGTAATGTGCAAGAAAAGGTCGCTAAACTTTACAGAATGAAACATATCATTGAAATTTTAACAACTACAATTGAAAATGTAATTAATGCTGAATTCATAACAAAATTAAACTTAAGCTGTTTAGCTGTAAGTTATTGTATTTTGGAGAAAGTTGCGAAACCCAACGAACCAAAATTAACAGACGTAACAAAAACGGGAATTGCAATTTTAAAAAAATACTTAAATCCAGATCCTAGTATTTCTTTCTTAGCACCGAAAGTTCTCATTGCTGTGATGAGTTTTATATGGGAAAATGTAGTTTATTGTGAAAACGGGATACACGAATTCAGTTCTACAGGTGGCGTTTACGTCATCTTAGACATAATTGAGAAATTTCCTCTTGCCATTAAAGTTTTAGGTTTAAGCATGATAGCTGATTTTTGTCAAATTCAAGAATTTCTTTCATGCATTTTAACTTGGAAAGGTAAATCTGAACAAACGATTGTTCCATTTTTATTGGATATTTATAAAGATCAAGCTCGTTTTGATAAAGATCACACTGATATAAAATCAACACTTCAAGATTTAGAAAATCCAATTTTTGGTGATAAATACAACGAAATGAAAAAGAACTACATCAACAACGAATATGCAAGTTTCGCAACTTTGGATTTTTTAGGAAATTGTAAACCATCAATCTACGCAATTTTAACACTTTTAAGATGCGACGAAGACAAAGAGTTAATTAATAACACGTATAAAATATCAAAAGAAAATTTAACAAACAAAGAAAAAATTGTTGCTGCGTTAGCTGAAAATTATCTTCCATTATCGATAGGTGAATCTTGGATAGAAGTTAATCAACATTTTCAAACGAAAGGAGTACGCCCGTTAGTTTTCGATCAAATACTAATCGCTGCAAAGCTACAAGAACATCGTGAAAGAGCCAAATTAATTCAAATTGATCAATTGACATGTGAAATTTCTGAAAATAATCGCGAAATTTGTGTTGAACGGCAATTTTACGAACGTCTCCGAGAAGAAGTTCTCAACGAGTCTTTAGATGCATTAAACGAACTTCGATATTATACAAGATGCGTTGATACAATGGCTCGTTTAGAACAATGTACTCAACTTACTTTTGAAACTGAAAATGTGACCGCTGGTCGGCTTGATAAATCGATGTTGGTCGACTATCATAAAACTTTACCCGAATATATTAATATTACACCACATTTTAATCAACATGTCAGCATTCAAAGTAACGTCATTATTGATCCTAACAAAGAAAAAACTCCAGATGCAGTTTCTTTAGATAGCACCGAGCAAGGAATTATAGCTGCAAAAAAATTTGCTGATTTAATGCGTAAACGTGCTCCTAATCCTAATCCAACTTCTTATGATGTTACACGTTCGAAATATGCACGTTATTACAGTGTTGATTTTCATTAAT +>XM_020844603.2 PREDICTED: Dendrobium catenatum transcription termination factor MTEF1, chloroplastic (LOC110112391), mRNA +TATGCGGACAATGCTCAATGCCACTCACACTCACTATGCTCAGTTTCCACTCCCCTCTCGGTTCTCTCACTCACCCCAAACCTCTCCAAACGCTAAACCCTAATCCAGCCCTCCGATTTTTACCTCCGGTCGCTGGCACCACTTACATCTCCGGCAACGACGCGGGCTTGCGCTTCCGCGAAAAGCTTCTCTTCCTCGAACACGACCTTGGCGTCAATTCACTCCGCGCCCTTTCCCTCAACCCTAGCCTCCGCTCCGCTCCTCTCTCCTCTCTCAAATCGCTATCGTCCCTCCTCTCCTCCTTCGGCCTACTTCAATCCGATTCCTCTCGGGTCCTCTCCCTCCACCCCTCCCTCCTCACCGCCGATCCATCCGCCTCAATCCTCCCCGCCATCCACTTCCTTCTCGACACCGTATCCATCCCCTTCTTGGACCTTCGCCTCTCCATCAACCGCTGCCCTAGACTTCTCCTCTCCAGTGTCCCCGATCGCCTCCTGCCTTCCTTTAATTTCCTCCGTGGCCTCGGCTTTGTCGGTCGCCACCGCATCACCGCTCGTACTACTGTCCTTCTCATATCTGATGTTGAGGAGACGCTCATTCCCAAGCTTGATTTTGTCCAGAGCCTTGGGTTTTCTTATACGGATACTGTGAAATTGGTTTTGAGGATGCCTAGTCTGCTCACTTTTAGCGTTGAGAAGAATTTTCGGCCTAAGGTGGAGTTTTTAGTGGGGGAAATGGGGAGGGAAATTGTGGACTTGAAGGAGTTTCCGCAGTACTTTGCTTATAGTCTTGAGGGAAGGATTAAACCGCGACATACAATGATGGTAGAGAGAGGCTTTGGCTCCTCATCTATTTCACTTGGGGAGATGCTCAAGGCCAGTGATGGAGAGTTTCGAGAACGGCTACTAGAGATGCGGCTTAGTTCCGTGGGTGAGAAATTGTAGCTTGGTATGATGTGGGTTTCTTTTCCCCTTTCCAATTTTTTGAAGAAGTTGCATGCCTCCTAGATGCATACTTAGATTTGTAAATGTAAAATATTTGATGGGCCTGCCACATTAGTATTGTTGTAATAAGTACAATTCCCTGTATGTTATTATATTTTTAATTTTTGCTTATTTGGCTACCCAATA +>XM_026866306.1 PREDICTED: Athene cunicularia multiple EGF like domains 10 (MEGF10), transcript variant X1, mRNA +CAGGACTCTTTTGGGGCCTTTGGTGAATTTAAAGGATTTACACAGCAAGTAATAACATTATCACCTGCCATCTTTTTTTTGGAAAGATGTTTCTTCATTTGAATTTCTTTTTTGGCTTCCCTGTCATATTCCTGTACAACTGGATGGGGACAACTTTATCTTTGAATCTGGAAGATCCCAATGTGTGTAGCCATTGGGAAAGTTACTCAGTTACAGTGCAAGAGTCATATCCTCATCCTTTTGATCAAATTTACTACACCAGTTGTACTGACATCCTGAACTGGTTTAAGTGCACACGACACAGGATCAGTTACCGTACTGCCTACAGACATGGTGAAAAAACAATGTACAGACGTAAATCCCAGTGCTGCCCTGGTTTTTATGAAAGCAGGGAAATGTGTATCCCTCATTGTGCTGATAAATGTGTCCACGGTCGGTGTATTGCTCCAAACACCTGTCAGTGTGAGCCTGGCTGGGGAGGACCCAACTGCTCCAGTGCTTGTGACAGTGACCACTGGGGACCTCACTGCAGCAGCCGCTGCCAGTGCAAAAATGGAGCCTTGTGCAACCCCATCACTGGAGCCTGCCACTGTGCATCAGGTTTCAAAGGTTGGCGCTGTGAGGAGCACTGCGGTCAGGGGACGTATGGAAACGATTGCCATCAAAAATGCCAGTGTCAAAATGGAGCCACCTGCGACCATGTGACTGGAGAGTGTACATGTCCTCCTGGATACACTGGTGCCTTCTGCGAGGACCTTTGTCCCCCTGGGAAGCATGGGCCGCAGTGCGAGGAGAGATGCCCGTGCCAGAATGGAGGCGTCTGTCACCATGTCACCGGGGAGTGTGCCTGCCCACCAGGATGGATGGGCATGGTCTGTGGTCAGCCTTGTCCTGAGGGTCGTTATGGAAAAAACTGTTCCCAGGAGTGCCAGTGCCACAATGGAGGGACCTGTGACTCAGCGACAGGTCAATGCTATTGCAGCCCAGGTTACACAGGAGAACGATGCCAAGATGAATGTCCAGTGGGAACTTATGGAGTGCAGTGTGCTGAGACCTGCAAGTGTATGAATAGGGGGAAATGTTACCATATTAGTGGTGCCTGTCTCTGTGAACCAGGATACACTGGAGAGCACTGTGAAACAAGGCTTTGCCCTGAGGGAATTTATGGTCTCAAGTGTGATAAAAAGTGTCCCTGCCACATGCCCAATACCTGGAGCTGTCACCCTATGTCTGGGGAATGCTCCTGCAAGCCCGGCTGGTCTGGACTCTACTGCAATGAGACATGTTCTCCGGGATTCTACGGCAAGTCATGTCAGCAGATCTGCAGCTGCCAAAATGGTGCTGACTGTGATAGTGTGACTGGAAAATGCACCTGTGCCCCTGGATTTAAGGGTGCTGCTTGTGGTACCCCTTGTCTTCCGGGGACATACGGAGTAAACTGTTCGTCTGTGTGCAATTGCAAAAATGAAGCTATCTGTTCACCAGTAGATGGTTCTTGTGCCTGCAAAGCAGGTTGGCATGGTGTAGATTGCTCAGTAAATTGTCCCAGTGGTACCTGGGGACTTGGCTGTAACTTAACTTGCCAGTGTCTTAACGGAGGGGCTTGCAGTGCTCTGGATGGAACCTGTACCTGTGCCCCGGGCTGGAGAGGAGAAAAATGTGAACTCCCTTGCCAGGACGGCACTTATGGTATGGATTGTGCTGAGCGCTGTGACTGCAGCCATGCAGATGGTTGTCATCCCACCACAGGTTACTGTCGCTGTCTACCGGGATGGTCAGGCATTCACTGTGACAGTGTGTGTGCTGAGGGACAGTGGGGTCCAAATTGCTCATTGTCCTGTTACTGCAAAAATGGAGCATCCTGCTCTCCAGATGATGGAATCTGTGAGTGTGCACCAGGATACAGAGGCACCACTTGTCAGAGAATTTGTTCTCCTGGGTTTTATGGACACCGCTGCAGCCAGACATGCCCCCAGTGTGTACACAGTAGTGGTCCCTGCCACCATATTACTGGCTTATGTGACTGCTTACCTGGATTTACAGGAGCCCTCTGTAATGAAGTATGTCCCAGTGGCAGATTCGGCAAGAACTGCATTGGAATATGCACCTGCACCAATAATGGAACATGTAATCCTATTGATAGATCCTGTCAGTGTTACCCTGGCTGGATTGGTAGTGACTGCTCTCAGCCTTGCCCACCTTCCCACTGGGGACCAAACTGCATCCACACGTGCAACTGCCATAATGGAGCTTACTGCAGTGCCTATGATGGGGAGTGCAAATGTACCCCAGGATGGACTGGCCTGTATTGTACACAAAGATGTCCTCTAGGGTTTTATGGGAAGGACTGTGCATTGGTATGCCAATGTCAGAACGGAGCTGACTGCGACCACATCAGTGGGCAGTGCACGTGCCGCACAGGGTTCATGGGGAAGCACTGCCAGCAGAAGTGTCCTCAAGGTACGTATGGGTATGGATGTCGGCAGATATGTGACTGTCTGAACAACTCAACCTGTGACCACATCACGGGAACATGTTACTGCAGCCCAGGCTGGAAAGGTGCCAGGTGTGATCAAGCTGGTGTAATTATAGTGGGAAACTTGAACAGTTTAAGTCGTACCAGTACTGTCATCCCTGCTGACTCTTACCAGATAGGAGCTATAGCAGGCATCATCATTCTTGTCCTGGTTGTCCTTTTCCTGCTAGTGCTGTTCATCATTTACAGACATAAGCAGAAAGGAAAAGAAACAAATATGCCCTCAGTGACCTATACCCCCGCTATGAGGGTCATCAATGCAGATTATACCATTTCAGAAACCATCCCTCACAGTAATGGTGGAAATGCTAACAGTCACTATTTCTCTAACCCTAGTTATCATACTCTAACTCAATGTACTACCCCACCTCACGTCAACAACATCGACAGACTGACCCTAGCAAAGGCAAAAAACAATCAGCTGTTTGTGAACCTTAAAAATGTGCAATCTGGAAAACGAGGAACTGTCATGGACTACACAGGAACACTGCCTGCAGACTGGAAACATGGTGGCTACCTCAATGAGCTTGGTGCTTTTGGACTTGACAGGGGATATTTGGGAAAGTCCCTGAAAGATCTAGTGAAGAACTCTGAATACAATTTAAGTAATTGCTCATTAAGTAGTTCTGAGAACCCATACGCTACTATAAAAGACCCACCAACTCTTGTACCAAAAAGTTCTGAATGTGGATATGTTGAAATGAAGTCACCAGCACGCAGGGACTCTCCATATGCTGAGATTGCCAGCTCTTCTTCAGCCAGTAAAAATGTTTATGAAGTTGAACCTACAGTCAGCATTGTGCAGGGAGCATTCAGCAGCAGCGGACGTTTCAGCCAGGATCCTTATGATCTTCCAAAAAACAGCCATATTCCATGTCATTATGACTTGCTACCGGTTCGAGATAGCCCCACATCCTCTACAAAGGAGTTCAGCAGCGAATGACCCCAAAAGCTGATGTGTAGGACTCTGAAGGGGCAGAGTGGCATGGTTGTGCTCCTTCTTCTAATTCAGCATAATTTTTGGCTCTTAATCTGTCCAGCAAACAATTGCTGTACATTAAATAGAATCTCAACATGAGGTTTGTATTGTGTATACAAGTGACAGATGGGCAAATGCCACACTCTGGGGATCCTGATCATTCTTTTTTTCATGGCAGTAAATGTTACAGAAACAGGTATGCAACTCATTTATTCTATAATATACTGGCTTAAAAATACATTTGCAGATTAGTTTTGATAACATCCCATTTCATCTACTTTAAATATAGACTTCATATTTGTCATGTTTCAGCGTAGAAATACTCCCAGGACAGTGCAGTTTACCAAATACCACTTTGTACAGGTGATCTGATTCACTAGTTACGTAGAAGAAAAACTGCTTTGCCAAATTTTACCTTCCATTGTGATCTTTAGTCAAGACATACTAAGAAACAAGATTGGATGGGGATAAGTAAGCACAATACTGCAGTTGTTTGGGAAATCCATCAGGCTTTTTCGTCTACTACTGGCAGTGGGGTATCTTGCTTGAGTAGTTTTGGAGATAAAAGCATTGCATACATCAATATTATATGATGCCTCAAGATCTATTAGTACTCCAGACCCAGCACCAGTCTTCAGCAAATCTTTTGCTATGATTCAGCTCCATATGTTGCAGTTCTGACCACTATGTCTGCCATACGCAAGTAAAAATACATATCAGTAATTCAGAAATTATGTAAATGAAATCAGTCTTACTTTTATCACCATGGACTGATTATGTAAGGAGTGGACAAAGGTGATGACTGCTGTAAATCTTAACTGCAAGGAAAGGTTTACGTTTTATAAACAGATAGTAATAATGACTGTAATATAGAATAAAAATAGTAAAGTGTTCTGTTTTTTTTTCTTAGAAATAACTAATCAATCTCTGTGCATACTTGCTAAAAAGGCACCTTTTTTTATAATTGATGTCATGCTTAAGCTGGTCTTTTGCATTGCTAATAATGTGACACGTACTCCCCATTCTTCATTAACTTGTGTCTCCTTGTTGTGTCTGTGTTTCTAGTGATCTAGCTTGTAATTGCAAAAGTGTTCTACTTTGTGTCCATTTATTTTGCATTTTTGTCAGCTGGACTTTATTTATCTGGTTAAAGGGACCTCTGGGCAGAGGGAGAGGATTAAGATGTTTATCCAGAGGTAGTTAGCTAATCCATAATAGTTTAACTTAATGAATTGGTGAAAAAAATCAAGGTGTTTTTCTCAAGGATAATTAAAAGAATGCTGAAGGAAAGTGAAAAGCAGTCCCTCTTGAAAGTTTAGCTTATTCTGATGACTATATGGATGGACATCATCTTTCCAAAAGGCTCCCTTCTCTCCCTCCAAAAGAATCTGTTATGAACTGCATAATTCAGAGAAAATTAAATTTGCCAAGGTATCCATCTGTTGAAGCAAAATTGTCCCCCAAACACATCATCCTAA +>XM_053267654.1 PREDICTED: Hemicordylus capensis uncharacterized LOC128332879 (LOC128332879), mRNA +AAGGCTGGCTCTCACGTAGGCGCAAACAGCGGGGAAGGCCGAGCGGCGGGAAGGAGGAAGCGAGGCAAAGCATAAGCCCCAGGATGGGGAGAGAGGGGCAGCATCTGAGCCGCACCTGGGGACTTCCAGTAGGGAAGAACAAGAGGCGCCCCTGGCAGGCAGCAGCCCTCGCAGCCTCAATCCTGAGTTCTTGCTTTCTCCTGACTCAAGCCAAGAAGAGAGTGATCTCCAACATTCCTATCACATTGAGCCCATTAAATCCAGTTAGTGGGCAGAGGGTTGTCTTTGCACTTGGAGAGCTTGTGAGACGGAAGTCCATTTGCGAGTGGTACCGAGGGTCCAGTGACAAGGAGAACAAGATATTGGAATATGACTTTGGGTTGACCCAGTCCTCCTTTTCTGCCATACACAACACCCTCAAAGGCATTGACAGTTACATCAAGGGTGATGCTCATACTGGGCGGGAGAAGGTGTCCTCAAACTGCTCCCTTTATTTGGATCAATTACTGTTAAGTGACACTGGAACATACACAGTAGAAATGAAAAGATCTGGACAAGTTAAACAAAGAGGGCGTGTTTTCCTAGAAGTCTCAGATGTTCCTCCTGATTTGGGAGCGATTCTCCCCGATTCTCCCAAGGATGATGGTGACTATGATTATTTGCCGACTCCATCTTCCATGCTAGTTCCTGCTCTTGATATACAAGATCCTTCTCATTTAAAGCTACCTCTGGAGATCATTTGGAGGATCATTATTGGGTCTTTGGCTGTGACCACAGTCCTGGAGTTCCTACTTTACTTCCTTCTTCGTTCCTGTTATTGGAGGAACAGAAATTCTAACCGAATTATCTCAGCTACTCCAGGGTGTGGGATGATTCCCTCTTCTGCAAAGATGCTGAATCAACATGGAGACCCCGCTGTGCAGAGCAAGCTGTGA +>XM_046173440.1 Alternaria rosae uncharacterized protein (BKA58DRAFT_436843), partial mRNA +ATGCACGCTACTGCAGGCTCAATCTTAGGACCCACTAGCGCACACGGCCTGCCAATCACGCCAGCACTTGGCGGCCTCTCATCAGCGCACAAGCTCCAGCCCCGGGCGCCCCTTCCCTTCGACGCGATTGACGGCTCTTCTGACAACTCTCCCAAAAAGCAGTGCCACAACGGGAAGCCGGCTCCCAGACACCTCCAAGCACGCGCAACCCTCACCTCAGTCATTCGTTTCAGACAACAAACCAGCAAAGACAGCACACAGCAGCAACCTGCACCTAATACACCCCCCCGTACCATCACCGTCACATTCACCGTGCGCCAAGCAACGCTTCTCCCGGCACTTCCTCATCCGCAAACGCCTGCATCGCAAGAGCGACCGACTCTCGCCCACCTCGTTTCTGCCGTCCGTAATCGATTCCGGAGACCATTGCGCGCCCTTGCGAGGCTAATTGGCAGCTTCACTGGAACCAGCCTACCGGATCCAGCGATCGCGACGACGCTGAGCAAACCGCACCTGCCTCCCCGCCCACCGACATCCGCTCTCATGCCTATCGTGGCCACCCCTTCTTCATAA +>XM_010558636.1 PREDICTED: Tarenaya hassleriana carboxyl-terminal-processing peptidase 2, chloroplastic (LOC104826103), transcript variant X2, mRNA +AGAAAAACACAGCTGGAAATTTCTGGGGACGCGCTTTCATGGATGTCTCAGCGAGCTCCTCACTATCCCCAATTTTCACCAAGCATAATGACAATAGCAGGAGCCCTAATTTCTCTTCGAAGAACCCGGCATTCCAGGTGAAATCGTTTATTACATGCCAACCTCCAAAGTTTTTGGAAGTTGGCTTTACAAAACATGCAAGAAATGTCAGTATCAAGCCCAGGAGCCATGGAATCCTGAGAATCGTGGTCTTGCCCGAGTTTGCTCCAACCACAAGAAGCGAAAATCTGCGGAACAAATTTCTGCGTCTCGTCAAATGCAATTACCATAAGAACAGGCCTGGGGAAGTGGTCATGAATTGTTCCAACAAGTTCAGACAGAATGTCTCCCTTGCATTAGTTCGGCTTGTTTCTGTTCTGCTTGTCTCTTCCATCTCCGTTGTTCTCACTGAATCTCCATCCTGGGCTCTTACCGAAGAAAACCTTCTCTTCCTCGAGGCATGGAGAACGATTGATCGCGCTTATATCGACAAAACCTTCAACGGGCAGAGCTGGTTTCGTTACAGAGAGAATGCTCTGCGAAATGAACCAATGAACACGAGACAAGAGACATACATGGCTATTAAGAAGATGCTTGCCACATTGAACGATCCTTTCACCCGGTTTCTGGAGCCTGAAAAGTTCAAGAGTTTGCGGTCTGGAACACAAGGGGCGCTCACCGGTGTAGGGCTGTCGATAGGGTACCCTCCTGGATCGGGTGGATCACCAGCTGGCATTGTCGTTATATCAGCTGCTCCAGGAGGTCCTGCAAACAGAGCAGGGATTTCTCCCGGGGATGTTATCCTATCAATAGATAAGACTACAACAGAAAGCCTAACTATATACGACGCTGCAGGGATGTTGCAGGGACCTGACGGGAGCACGGTGGAGTTAACGATTCAGAGTGGACCCGAAACAAAAGTCTTGTCTTTGACGCGAGAGAAAGTATCAATGAATCCAGTGAAGTCAAGATTATGTGAAATTCCTGGTTCTGAGAAGAATGCCCCCAAGATCGGGTATATCAAACTAACATCATTCAACCAGAACGCTTCTGGTGCCATCAAGGAAGCAATTGAGACTCTAAGAAGCAACCACGTTAACGCATTCATATTGGATCTCCGAGACAATAGCGGTGGGCTTTTCCCAGAAGGAATCGAGATCGCCAAGATTTGGTTAGATAAGGGAGTGATCGTATACATTTGCGACAGTAGAGGCGTACGAGATATATACGACACAGATGGAAGCAATGCCTTAGCGGCTTCCGAGCCTTTAGCCGTCCTCGTTAACAAGGGAACGGCTAGTGCCAGCGAGATATTAGCCGGCGCCTTGAAGGATAACAAACGTGCCGTCGTGTTTGGGGAGCCGACCTACGGGAAAGGTAAGATACAGTCAGTGTTTCAGCTGTCAGATGGTTCTGGCCTGGCTGTGACTGTTGCTCGTTACGAAACCCCGGCCCACACTGATATCGACAAGGTCGGCGTAATTCCCGACCATCCGCTTCCTCGGTCTTTCCCGAAGGACGAGGATGCTTTCTGTGGCTGCCTCAAGGATCCCGGAGCTGAGTGTTATCTCAACCAAGGCCAGCTGTTTTCTAGATGATCATTCTTACTTCTCAAGGATGAGCATTCTTTGTTGAAGATTTTTCCTTACCTGTAATCCTTCAAAGATGTAGAGTTTAAGATACATGTATAAATATAAGAACCCATGACAATGGGAACCAGTTCAAGTCATTAAGACAGAACAGACCATGGATGGATTTCTAACTTCCTCTGTACTGTCTTGTTGTTTCAAGAAACAATTTCTCAAGTCTCAAA +>EF527335.1 Lepiotaceae sp. PA501 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +GTAGGTGAACCTGCGGAAGGATCATTATTGAATACCACTCGATGGGTTGTAGCTGGCTCTTTGGAGTATGTGCACACCTGTCTTGATTCTATTCATCCACCTGTGCATTTTTTGTAGTCTTCTGAGGGTTGGATCAGTCGAAAGACTGGATAAGAAGAGGATTGCAAGCACGCAAGTGCAAGCTCTCTTCAGTAAACCAGCCTTTAGAGTCTATGTCTTTTTCATAAACGATGTATAAGAATGTGATCAAATGGGTCTTTGTACCTATATAAAATGTCATACAACTTTCAGCAACGGATCTCTTGGCTCTCGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACCTTGCGCTCCTTGGTATTCCGAGGAGCATGCCTGTTTGAGTGTCAGTAATTTCTCAAACCCTTCTGGCTTTTTGTAGTCGGCTTGGGCTTGGATAGTGGAGGTTTTGCAGGCCCCCCCCCCCTGTGTCTGCTCCTCTGAAATGCATTAGCGGAACCTTGTTTGCGATCCGTCACTGGTGTGATAATTATCTACACCAAGTGGGTTGCTCTCTAGATGTTCAGCTTCCAATGGTCCCTCTGTGTGGGACAACTTTCTGACTTCTTGACCTCAAATCAGGTAGGACTACCCGCTGAACT +>XM_002141234.1 Cryptosporidium muris RN66 flavodoxin-like fold family protein, mRNA +ATGACTAGGAATGGGGTAACTGGTCCAGATGGTGCACATATATTGGTAATCTTGTCACATCCAGGGAAATCAATAGCAAATCAAGCAATAATTGATACTCTAGTTGAGAAGTTTGGCCAAAATATTCAGGTCAGACACTTGAATCAACTTTATCCAGACCAGAAGATAGATATAGAAGCTGAACAAAGAGCCTTAATTAGTGCAGAGCTTGTTATCTTGCAATTCCCAATGTATTGGTATAATATGCCTCCCTCATTAAAGAACTGGCTAGATTTGGTTCTCTCCTATGGATTTGCATATGGAACCTCGTATAAACTTGAGGATAAACTTCTCCTTGTATCTATTACCACAGGGGGTGAGGATAAAAAGTATGAAAAAAATACAGTAAATGACTATCTAATGTCTTTAGAATCAACATCAGAATTTATTAAGATGAAGTTTGCCGGTATACTAGCAGTTCATTCAATGCTATTAGTGCCAGGATTAGTGGGAGAGGAATCTGATATTAGGAAGAGAGCAAGTAACCATGCAAAACAAGTCGTCATCCCGAAAATTGAGAGTTTATTATCTAGATAG +>JN440197.1 Uncultured organism clone SBYB_3348 16S ribosomal RNA gene, partial sequence +AACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCAGGCGTTATCCGGATTTATTAGGTTTAAAGGGTGTTCAGGCTGTCTGGTAAGTCAGAGGTGAAAGTCGGTTGCTTAACGATCGAATTGCGCTTTGAAACTGTCAGACTTGAGTATGGATGTGGTAGNCGGAATGTGTAGTGTANCGGTGAAATGCATAGATATTACACAGAACTCCAATTGCGAAAGCAGCTTACCAAACCAGCACTGACGCTGAAGCACGAAAGCGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACGCAGTAAACGATGCTCACTCGCTGTTGGCAATACACCGTCAGCGGCTAAGGGAAACCGATAAGTGAGCCACCTGGGGAGTACGATCGCAAGATTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAACATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCTGGGCTTAAATGTGAAGTGCATTGTTTGGAAACAGACATTTCCTTCGGGACTCTTTACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCGGGTTAAGTCCCATAACGAGCGCAACCCCTATTGTTAGTTACCAGCGCGTCAAGGCGGGGACTCTAACGAGACTGCCGGTGTAAACCGCGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTATGTCCAGGGCTACACACGTGTTACAATGGTCGGTACAGAGGGCAGCTAGGCAGCGATGTCAAGCGAATCTCGAAAGCCGATCCCAGTTCGGATTGGAGTCTGCAACCCGACTCCATGAAGGTGGAATCGCTAGTAATCGCGCATCAGCCATGGCGCGGTGAATACGTTCCCGGGCATTGTACACACCGCCCGTCAAGCCATGGAAGTCTGGGGTGCATGAAGGCCGTAACCGCAAGGAGCGGTCTAGGGTAAACAGATGACTG +>HQ302012.1 Uncultured bacterium clone E416QYJ01EWDEE 16S ribosomal RNA gene, partial sequence +ACGCTCGACACCTACGGGAGGAAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGGAGGAAGAAGGTCTTCGGATTGTAAACTCCTGTTGTTGGGGAAAAAGAGGATGGTACCCAACAAGGAAGTGACGGCTAACTACGTGCCAGTAGCCGCGGTAATCTGAGCGGGCTGGCAAGGC +>XR_004686820.1 PREDICTED: Populus alba membrane-anchored ubiquitin-fold protein 3 (LOC118044643), transcript variant X2, misc_RNA +TGTGTTTCAGTTCACCAACAAAATAACAAACAAAACACCTACTCCCCCTCCTCCTCCACCTTCTTCACTACCAATCCAAGCCCGTCTCCTTTTTATCTTTTTCCCAAAAAAAAAAGGCAGACTGTTAATTATTTTGTCATCAAAATTTAAAGAAAAGAAAAAGGTGTCTTTTTTGATTGGGGAAACCGAGAGTGGAATATTAAACACGTTGTGGTAATTGGTTGGAGGAGGAGAAGGAAACAGGTCAAAAGTCAAATAGAAATGCCGGAGGAGGATTTGGTGGATATAAAGTTCAGGCTTTATGACGGGTCGGATATCGGACCGTTCCGGTACTCATCAACGTCTACTGTTGATATGCTTAAGCAGCGGATTGTTTCTGATTGGCCCAGAGGCAAAACAATAACTCCCAAGGCAGTGAATGAAATCAAGCTGATAAGCTCTGGTAAAGTCTTGGATAACAACAAGACTGTGGGTCAATGTAGAACACCTTTCGGAGAAGCGGCCGGGGGAGTTATCATAATGCATGTTGTTGTACAGCCATCTCTAGCAAAAACCAAAACAGAAAAGAAGATTGATAAATCTCCGAAGAAAATCGTGTGTTCGTGTTCCATAATGTGAAGGCAAAGTACGTAGAAATCTCGGGAATTGCACCCATGGTACCAACACTTTAGGTTACAGAAATACGGATTC +>XR_004968528.1 PREDICTED: Myotis myotis U6 spliceosomal RNA (LOC118659394), ncRNA +GTGCCCGCTTCGGCAGCACATAGACTAAAATTGGAACGATACAGAGATTAGCGTGGCCCCTGCGCAAGGATGACATGAAAATTCCTGAAGTGTTCCATATTTTT +>XM_034024519.2 PREDICTED: Acipenser ruthenus methionine aminopeptidase 2-like (LOC117414742), mRNA +GCGCTTCCTCTCTCGTTGTGTTTCCATCATGGCGGACATGGTGCGGCAACAGGAGCAAGAGAAAAAATCTGAGCAAGAGAAACACTTGAACGGGGAGATGGAACCCGAAGACAAGGAAGAGGCGGATACGACAGAGGAAGCAGCAAAGAAGAAGAAGAAAAAGAAGAAGAAAAACAAGTCTGCAGGAAATAATGAAAATGAGAGTAATGCCAATGCTGCTGGTGTTGACAAAGTGACAGATCAACTGGAGAAACAAGCCCTGGAAGACAAAGAGAAGGATGAGGAAGGAGAGGAAGATGGAGAGGAAGGAGAAAATTCAGCTGGGAAGAAAAAGAAGAAGAAAAAAAAGAAAAAGGGATCAAAGGTTCAAACTGATCCACCTTCAGTTCCAATCTGTGACCTCTACCCAAGTGGAGTCTTCACAAAGGGACAAGAATGCGAATATCCATCTACGCAAGACGGACGAAGTGCTGCCTGGCGCATGACCAATGAGGAAAAGAAAGTATTGGATAAAGCCAATGAAGAGGTTTGGAGTGATTTCAGACAAGCAGCTGAGGCTCATAGACAAGTCAGGAAGTACGTCTCAAGCTGGATCAAACCTGGAATGACCATGATTGAGATCTGTGAAAAGCTGGAAGACTGTTCCAGAAAACTGATCAAAGAGAATGGTTTACATGCAGGCCTGGCATTTCCAACTGGCTGTTCTCTGAATAACTGTGCTGCTCACTATACGCCCAATGCTGGAGACCCGACAGTTTTGCAGTATGATGATGTCTGTAAAATAGACTTCGGAACGCACATCAATGGTCGCATCATTGATTGTGCTTTTACTGTAACGTTCAATCCAAAGTATGATAAGCTTCTTGAAGCTGTGAAAGATGCCACCAATACTGGAATCAAGTGCGCTGGGATAGATGTCCGCCTTTGTGATGTTGGTGAAGCTATACAGGAAGTCATGGAATCCTATGAGGTTGAACTTGATGGCAAAACATATCAAGTGAAGCCAATACGTAACTTAAATGGGCACTCCATTGGACAGTACAGGATACATGCTGGCAAAACTGTTCCCATTGTCAAAGGAGGAGAAGCAACACGAATGGAGGAAGGAGAAGTGTATGCCATAGAGACTTTTGGCAGCACAGGAAAGGGGGTCGTTCATGATGACATGGAGTGTTCGCATTATATGAAGAATTTTGATGTTGGACATGTGCCAATCAGGCTACCCAGGGCTAAACACATGCTGAATGTAGTCAATGAACATTTTGGCACGCTGGCTTTTTGCCGCAGGTGGTTGGATCGCCTGGGTGAGACAAAATATTTAATGGCTCTGAAGAACCTTTGTGACTTGGGTATAGTGGATCCCTACCCTCCACTCTGTGATACTAAAGGCTCCTATACAGCACAGTTTGAGCACACCATTCTGTTACGCCCCACTTGCAAAGAAGTTGTGAGCCGTGGAGATGATTATTAAGCTCTGCAATTTATTTTCTTTCTTACATTATTTTTCCTGACAAGCTTTATCCTTTCTCACTTTGCTTTGGCAGAAATCAGCATGAACTAATTAATCTGAAGCTCGGTGTCTGTCTAAGCAGGGGACTTGTATATCTGCCATGTTTTGACAGGGATGGGAAATAGGTGACAAACTAATGTTTTCAGTTTTTTGTATATTTCTTTCTTGATCTAGAAATGATGAATGTATGCACATCCTATTGCTGATTTATAACACCTATGCCCAGTGTAGGATTGCCTTTTGAATTTTCCTGAAAGTTTTTTTTTTTTGTAAAAATAAAGATTAAACTCAAATCTGATTATTGGTTTCAATATTAATTCAATGTGTTAATTCTTCTGATTTGTCTATTCATCTTCTTTCCCCTGCCTCACTTACTTTTAGAACAGAGCATTGTAATTTATGGTCTTTCTGATTTTAATTGGGCAAGCTACACTTTTTAAATGATTTAATTGTGATTTTATTTATCAGTAATTCCACAATCCTTGCCACAACTTCCATCCATGATTCAGTACACACTGGGAAAGCATCCACAAACACCAGAAAGTAAGGATATTTATGTAGGTAGTATGTTCTGAACTGTACTTGCCTTCATACACGCTTGATTATTTTTTTATTTGTTTAGTGTTTTTACTCCCAATATAATTAATTTGGTACTGAAACTACTTTTGGGAGCAGCAGCCAGAATTACATGAAGTCTTTTTACTAATTTCCTCTTAAGTGTGAAGATAAACAGACGTGATTCTGGCCCAGGTGATCTCTCGTGCAAGTTTTAACTTAGTGTGAAAACAGTATTAGGTTTCTAGGTAGCCTCACTACTGCATAACTGATTTGAGTTTGAAAACTAAAGATGGTAATGAAC +>XM_046102345.1 Truncatella angustata uncharacterized protein (BKA67DRAFT_558781), mRNA +GCCGCCGCAGCCCTTTCCACGCCCGGCGCCGCCTACTCATCCTACGACCAGGTCATTACATCCGATGACTCGGACCGCATTTTCCACTACTACCCCGACGTGATGAATGCCTTCGGCGTTTCACGTCTCCGTCTGAGCAGCATTGACGAGATTCCTAAGGGCGCCGATATCATCACCTTGTTGCCCGTGAACTATGATGAATCGGACTCTACCCCTGGAATATACATGGCAGTCGATACCAAGGGCAACTACTTCTACATCATGGCCTGTGACATCGAGGGTGACGCTGCCAAGATCTTCATTGCGTCTGATCCGGATGCTGGTGCTGCCAAACTTGCCGAGGCGGATCTGCGCTACATCGTTACTGGTGGTGTTGTTCAGGATTGTTCCTTCATGCCATTTGTCTCGACTGGTGCCGGTTTGTCTTAAATGAATTTGGTGGCGTAGTGCTGTGAGTCGTACATTTGGCAAAAGGCACCTTGGTTTCTTATTACCTTAATTTGGGGCTTTCTTTGAGTACTACCGTACAACCCAATTTTTCATTGTCACAGCCATGTACCAACCATCATATGAGTAATACTTAACTGGCCCACAGAAAGTATGCACTGGAAAGAGGCCTTCTATTTCCAGTGCAACAACAATATAAGCAGTTACCTCAAA +>XM_052329315.1 PREDICTED: Diospyros lotus uncharacterized LOC127796910 (LOC127796910), mRNA +ATGGTCGCCGACGAAGCTTCGTCGTCGGCGACCATGGAGATCGACCGGGCTTCGTCGCGAACGAAGCCCCACGGTCGGGCTTCGTTCGCGACGAAGCCCGCTGGGGAGAGGAAGCGCCCGATCGGGCTTCAATTACAGACGAAGCCCGATCGGGCTTCGATTGAAGACCCAAGGAAGCCCGATCGGGCTTCGATTGCAGACAAAGCCCGATCGGGCGCGACTAAGCCCCACACCCAATTGGGCTCCCCCGACTGTTGGGCTATGACACAGCCCGATTATCGTTGCCCAACAAAGCCCAATCAAATGGCTGAACAACAAACTACAAAATTTGCTTATGTTCATGCTCACCGAATATTACCCCCCGGAATGCGAGTTACTACTCATTGTGGGATTAAACACCTTGAGGCGATGCGTCGTGCTCTAGACCGATACAAGTTATTGGATAGATTCCTACAGGGCCCATTAGGACATTTCTTGAAGATGCCTTTGTCCCTCCATTTGACTGCACCACAGTTGATATATCATGTTCTACTTAGGGAGGTGACATTTTCGAGTGCCCGCCACGATGAGATGTGGTTCGAGATTGGCGGCACACCATACAGATACGGGAGGCAGGAGTTCATACTTATTAGTGGACTCCGATTTGGGGCTATTGATAGGGAAAGCCTTGAACCGAAACCTATTGAGCCGGAGAGTTTACGTGCTCGACTATTTCCACAACATAAGAAAGGGGTGACTGGAGACGACCTTGAATTACTTATTAGTACCAAAGAGGATATGGTTTCAGAGGATGCCCTGAAACTGATTTACATTGCTGTGGTCGACATGTTTTTGTTGGGCCAGGATGAGCGTGGGCATGTGGATGATTTCTTGTGGACTATGGCCGAGGATTTACAAGCATTTGAGATGTTCCCTTGGGGTACATATGTCTACAGTAAGAGTCAACATTACATCCGGTTGGCCACGAAAGAAAGAAAATTGACTGGTGAAGGTGGGAAGAAAATCAACCTTTATGGTTTTGTATGGGCGTTTCAGTGGTGGTTGATCGAAACGTTCCCATGGATTCAGAATAAATGGGCCGTCAGACCGTCCGAAGCAGACATTCCAAGATGCAGAAAATGA +>XM_019061330.1 PREDICTED: Bemisia tabaci neutral ceramidase (LOC109043949), mRNA +ATCATTGAAACCCCGTTTAGGTCAAGCTCGCAGTTAAAAATGGATTTCGTCCAGTGCGCTTGAGTACAGCAGGAGCTGAAGCTTTGTATTACTATAATGCGAGAACACTTTTTACTCTGAAAGGCTGGATAACTGAGAAGACCAAAGTCGTAGTTCGAAATGCCGGGTGTATCGCGACAAGTCTGTTTGATATTGGCCAGCTTTGTAGCTTTCTGCGAATCGGCTTACAAGATTGGAGTGGGGATAGGGGATGTGACTGGTCCAGCGGTTGGAATCCCATTCATGGGCTACGCAAACCTCAGGCAGAGGGGTGAGGGATTGCATTTGCGACAATTTGCAAGAGCTTTCATCATAGGTGACTCCTACGAGAAACTCGTTTTCGTGAGTGTAGACGTGGGAATGGGCGCACACGGAGTCCGAATGAAGGTGCTGAAGCGGCTGAGGGAAAAATTCGGCGAGGAGTTCTCGGAGAGGAACTTGATGATAAGCGGGACGCATACCCACTCGGCGCCAGGCGGGTTCCTCATGCATTTCATGTTCGACATTAGCACCATGGGCTTCGTCCCTGAGACTTATGACGCCCTTGTTTCCGGCATTGTTACGAGCATAACCCGGGCGAGGAGTAACATGCGGAAAGGAAGTATATTTTTCTCGACAGGAGAAGTTTTGGACGCCAATACGAACAGGAGTCCATCCGCTTATGACAACAATCCAGAGAGCGAAAAAGCCAGATTCGAGTACAACGTGGATAAAAGGCTGATTCAGATGAAATTCGTGGCGGAAACGGGTCAACCGATGGGCGTGCTTAACTGGTTCCCGGTGCACCCAACCAGCATGAACAACACCAACACCCTCATCTCCAGCGACAACGTCGGTCTCGCCTCTGTCCTCTTCGAACAGCAGATGAATCCGGGACGTTCTATCGGCAAAGGCCCTTTTGTTGCAGCGTTCGCCTCGAGCAACTTGGGGGACGTGTCGCCGAACCTACGATCGCCGGTCTGCCTGAAAACCGGGGAGCCCTGCGACATGCTAACGAGCTCCTGCCCGGACGAACATGACATGTGCGTCGCCCTCGGACCCGGCGAGGACATGTTCCAGAGCACAAAAATCATCGCTCAACGGATCCTCGCCACCGCTATATCTCTTTGGAATGATCCTAACTCATGGGAGATCAAAGGACCCGTCCGGATGGTTCATCAATTTGTGAACATGGCTAAGCGGGAGGCAACATATCAAGATCCAAATACTGGCCAGATCCGACAGGTGCACGGTTGCAAGCCAGCTATGGGCCATAGTTTTGCTGCAGGGACAACCGATGGGCCTGGTCTTTTTGCGTTCAAGCAAGGAACCAAAAGTCCGGACAATCCACTCTGGAACTCTGTTTCCAGGATACTGCCCAACGCTTCAGCAGAGAGTGTTTCCTGCCATGGAGGAAAACCAATCTTGTTATCCACAGGCGAGATGAACTTCCCTTTCCAATGGCAACCGGAGATCGTGCCGACGCACCTGGCGACGATTGGGCAGCTGGCGGTGGCCTGCGTGCCGGGGGAGTTCACGACGATGGCCGGCCGCCGACTCAGAACCGCCCTCCGCAATCGCCTCGGCCTCGCCGACGACACCCACGTTATCATCGCCGGCCTTTGCAACGAGTACAGCGACTACATCACCACGCCCGAGGAATACGAGGTGCAGCGTTATGAAGGTGCGTCAACAATTTATGGCCCAGAAACACTACCACTCTACATCAGGCAGTACGAGGACCTGGCTGATCATATTCTTCGGAAAATGGACCCAGAGCGGGGCCCAGTTCCTCCTGAGTTTCTAAACAAATTAATTGTTCTCACACCACCTGTTTTATACGATGCTCCACCCTACGACCAAGACTTCGGAGCTTGTTTACAACATCCACCACTGAACGTCACCAGAGGCGAAACTGTCAACACTACGTTCGTCTCGGGGCACTTGCGCAACAACATGATGCGCGGCTCCAGCTTCCTCCTCGTCGAGCACCTTCCGATTAACGGGAACAAGTGGGAGGTCGTCGCCACCGACGCCAACTGGGAGACCATCATCACGTGGAAGCGGCAATCACTGCTACTGGGTACTAGTGCGGTGGTGATCAAGTGGACGGTGCCTGAGGACGCGCCGTTTGGGAAGTACAGGATCAAACACCAAGGCTACAGCAAACCCGTCATCGGGGCCCTGCACCAGTATCAAGGGCTCAGCAGAGTCTTCCAAGTTGTACCCAAAGATCTACCCTATTCATACGATGTCCCGCAAATACACGAGTGATCCTCTCAA +>XM_034027490.2 PREDICTED: Acipenser ruthenus phospholipid scramblase family member 5 (LOC117416435), mRNA +GAGGGATCGGAGACAGAGAGAGCAGCGACTTGAGAACAGAAGGCAAGCTTCATCCTCTGTGATCTACCGTACAGGACACAGTTCACTTGTGGCTGGGTGGAAGGATTTAAAGAGGATGCCGGTGATCACGGCCCAGCCGCCCCCCTTCGGCAGGCTGCAGAGGGAGAAGCACATCGAACAGCTCTTCAGGTCCTTACGCCAAGGGAGTAGGGGGTCCCAGGAGCCACGGCACAGTCTGGGAGAGGAGGCAGGACAGGGGGACTCTGAGACACTGGAGCTGCGTTGCACGACGGAGCCGGAGGCCCAGTCCAGCATCCCCAGAGTCCTCAAGCCAGCGGGCGCCACGGAGAGCAGCGAGCAGAGCCTGGCTCTCTTAGCGGACGTGGAGCAGCTGTGCATCATAGCCAGGCCGGGGCTCCAAGGACTGGCCTGTGAGCCTGGGAGGACCTACAGCATCTCCACAGCTTCCGGGAGTCAGCTCTACGTGGTGGTCGAAGACACGTCATGCCTGTGTCTGCTCTCCTGCGGTCCCGCTCGCTCCTGCTCTCTCCGAGGGTATGACAGAATGGCGCAGGAGGTCTTCCTGTTTGAGAGGCCCCTGAGGGCTGATGCGTGCTGTCTGGGCTGCTGCCTGATGGAAATGCAAGTGTTCACACCTGACCACCAGCTCATCGGGACTGTGCGTCAGAAGTGGAGCATGTTTACCCCCCTCATGGAGCTCAGCGACTCGGACGGGACGTCCTATATCAGGATTCAGGGCCCCTGCTGCCCCTGTCGTTGCTACTCCAGCCAGGAGTTTCAGGTGGTGTCCAAGATTGGAGACAAATTGGGAAAGATTTGGAAAAAATGGCCTGGCTTCAATGAAGAGTACAACATGGACCACGAATACTTCGGGCTGGATGTCCCAGCTGAAATGAGCCCGGAAACCAAAGTGCTGTTACTGGCTGCTGCGTTCTTACTGAACTACATGTTCTTTGAGATGAGCTGAACATACTGGAAGAGTACAGAGCGCCAGCCCTGACCAATGGGAGCACAGAGAGATCATGATGTCACAATGAAAGGTGTCACAGTGGCTGCACAAGGAGTAACGTTAAGAATCACATGTTTGTATCGGAAAACATTATTGCAGCAGTTTGAATGCCAGGGCATGGATAGGATTATTAACAGAGGCATTCACAGTGCAAGAGCCCCATTCAGACAATGCGCAGAAGGGTTAGATCACCCACAGCATATTCAACTAATGTAAAGCACTCAACTTTAATCCAATACCAGACACATACCTGCTCACCCTGAGATCGAAATCCTATGGATCATTCCAGCTGAAATCTGTGTCATAAAAAGTGCCCTGAAAAAATCTACCTTTAAAGAGCAAAGGAGCCCCCTTCAGGACATCATAAGCATGTAATGGCACCGGACTTTATACAATGACAGCATGTTGATGTAAGCAGGTACAGTATGTTAACATGAGCAGCACACTGTGCTCCTCAATGTGGTGAGGCTCACATTACTAATCTTGTGTTGTACTACAGTATATCCTGATCTGTGCTCCTCAATGTGGTGAGGCTCACATTACTAATCTTGTGTTGTACTACAGTATATCCTGATCTGTGCTCCTCAATGTGGTGAGGCTCACATTACTAATCATGTGTTGTACTACAGTATATCCTGATCTGTGCTCCTCAATGTGGTGAGGCTCACATTACTAATCTTGTGTTGTACTACAGTATATCCTGATCTGTGCTCCTCAATGTGGTGAGGCTCACATTACTAATCATGTGTTGTACTACAGTATATACTGATCTGCAACATGTACCTGCATGTGACTGACTGATTGCAGGAGCTACATGTTTACAGCCACCTCTGAATCAAGACTCAGAATAGCCTTCTTTTCATGCTTTTTCTTTTTTAATTTGATAAATAAAAACGATTTTGTAAAATA +>XM_048518335.1 PREDICTED: Sphaerodactylus townsendi coiled-coil domain containing 88A (CCDC88A), transcript variant X5, mRNA +GAAGGGAGAGGCTGAAGCAGCTGTTTTTTTTGGGGGGGGGGGATGAAGGAATAGGCAACGGGTGGGGTCCTGCTAGCAGTAGTTGACCTACCATTTTTGAAAAGGCAAGTCGGGGAGGCACCTCCAGATATCTGGTGGTGGTGGCAGAGAGAGAGCGCGCCCCTGTTTCCTGGGAAAGTGGGCGAGGTTGCCCGGGCGCCTCTTGTCTGCAGAAAAGGAAGATCAGTGCTAGTTCGGTGGAAAGAGGAGTGGTTTTTCTCTCTGAGCTGGCCTTGGGTGAATGGTTGTTCCTGCAAGGAAGAGAGACTTGTTGGGGGCTGATGAGGGAGGAGGTCGCTGCTGCCCTCCCCGCGGCTGGCACGCTCTTGGTGGGTCAGGGGTAATTAGCTGAGAGGAGTTTCACTGGCGTGTCTCCCCCTGGAGCACGCCGGCTGCTGGCTCGCTGGTGCTGCAGCCCGAGGCGGAGTGGGGGGGAATGCATGCTTGCTTGCGCGGCTGATGTAGGATCTTAGTAAGGTCCTTCCTTTCTTTCTCTTCTTGCTTCCTCTTCGGCACGGAGAGAGGAGGAAGAAGGAGTCATTTGGTGGAAATAAAGAAAAACAACCAGAAATGAACGTGGACTGCCTCTTGATTGTTCCCTTTCTGGACGAGGAAGAGAAAGCTCTTTTGACCGATAGCCTGACTACTTTTTAAATTGTATTGGGGGAACTGCCTTGGATATATATTTTTTCTTGAAATCGTGGAGCATTTCACGGAATTACTGCAACGAAAGGCACCGAATCTCTCCGTTTTTTTAGTCCTGGTTTAATAAAAACCCTCTTAATTATAAAGCATGGAAAACGAAATATTCACGCCTCTGTTGGAGCTCTTCATGACCAGCCCTCTTGTTACCTGGGTTAAGACATTTGGACCGTTAGCTGGAGGAAATGGAACCAACTTGGAGGAATATGTTGCGCTTGTGGACGGAGTTTTCCTGAATGAAGTCATGCTGCAAATCAACCCCAAAGCTACCAGTCAGAGAGTAAATAAGAAAGTCAACAATGATGCATCCCTGAGAATTCAAAATTTGTCTGTTTTGGTGAGGCAGGTTAAATCGTACTATCAGGAGACTTTACAGCAGTTGATTATGATGCCTTTGCCAAATGTCTTAATAATTGGCAAAAACCCCTTTTCAGAACAAGGTACTGAAGAAGTAAAAAAGCTACTTCTACTCCTGCTTGGCTGTGCAGTTCAGTGTCAGAAGAAAGAAGAATTCATTGAAAGAATCCAGAGTTTAGACTTTGATATAAGAGCAGCTGTTGCAGCCCACATACAAGAGGTGACACACAACCAGGAAAATGTTTTTGATCTGCAGTGGATGGAAGATGGTGCTCTCTCACAAGAGTATATTGAACCCCTCCTAAAAAATATGGCATTGCATTTAAAAAAACTTATAGATGAACGAGATGAGCATTCTGAGACTATTATAGAGCTCTCTGAAGAACGAGACTCTCTCCATTTTCTACCTCATGCTTCAGTGGCACAATCGCCTTGTGGATCTCCAGGCATGAAACGTACTGAAAGCAGACAGCATTTATCAGTAGAGCTAGCAGATGCCAAAGCAAAGATCAGAAGACTTAGACAAGAGCTTGAGGAAAAGACAGAACAGTTGCTGGATTGTAAACAAGAACTGGAGCAGATGGAAGTTGAGTTGAAGAGACTACAGCAAGAGAATATGAATTTGCTTTCGGATGCACGCTCTGCTAGAGTGTACCGTGATGAACTAGATGCTCTCAGGGAGAAGGCAATCCGTGTCGACAAGCTTGAAAGTGAAGTCAGCAGATATAAAGAGAGGCTACATGACATTGAATTCTACAGAGCTAGAGTGGAGGAACTCAAAGAAGATAATCAAGTATTGCTGGAAACAAAAACAATGTTGGAAGATCAACTGGAGGGGACCCGGGCTCGTTCAGATAAATTACATGAATTGGAGAAGGAGAATCTACAGTTAAAAGCTAAACTGCATGATATGGAGATGGAACGTGACATGGATCGGAAGAAAATTGAGGAACTTATGGAAGAAAACATGACTCTAGAAATGGCTCAGAAGCAAAGTATGGATGAGTCACTGCATCTTGGATGGGAACTTGAACAAATAAACAGATCCACTGAACTATCTGAAGTGCCACGAAAATCACTGGGGCATGAAGTGAATGAACTGGCATCGAGTAGGTTACTGAAACTGGAAATGGAAAACCAAAGTTTGATAAAGACTGTGGAAAAGCTACAAAGTACAATGGGATCTGCAGAAGGCAGTAATTCAAAACTTCTGAAAATGGAAAAGGAAAACCTGAGACTTAGTAAAAAGCTGCAAGGACTTGAGAATGAATTTAGCGAAGAGAAGCAAAGTCTTCAGAATAGTCAAAATCTAAGCAAAGATCTGATGAAAGAGAAAGCACAGCTTGAAAAGACAATTGAAACTCTGCGAGAAAACTCAGAGAGACAGATTAAAACATTGGAACAGGAGAATGAGCATTTGAATCAAACAGTGGCTTCCCTCAGACAGCGCTCTCAAATCAGTGCTGAAGCAAGAGTCAAAGATATTGAAAAGGAGAATAAAATTCTTCATGAATCTATCAAAGAAACAAGCAGTAAATTAAATAAGTTAGAATTTGAAAAGAAGCAAATTAAAAAAGAATTGGAACACTATAAAGAGAAGGGAGAGAGGGCAGATGAGCTGGAAAAAGAAGTACAACATCTTGAAAAAGAAAACGAGCTGCTACAGAAAAAGGTTACTAACTTAAAGATCACTTGTGAAAAAATAGATACTTTAGAGCAAGAAAACTCCAATCTGGATATGGAAAACAGAAAGCTGAAAAAGACCTTAGATAGCCGGAAAAACCTCAGCTTTCAGCTAGAATCTTTAGAGAAAGAGAATACACAACTTGATGAAGAAAATTTAGAACTCAGAAGAACAGTTGAATCTTTGAAGAGCATAAACATCAAAATGGCTCAGTTACAATTAGAAAACAAAGAATTGGAAAGTGAGAAAGAGCAGCTTCAGAAGAGCTTGGAGCTTATGAAAACATCTTTTAAGAAGACTGAACGTTTAGAAGTCAGTTACCAAGGTCTGGATACGGAAAACCAAAGGCTGCAGAAAGCCCTAGAAAACAGCAACAAAAAGATTCAGCATTTAGAAAGCGAACTACAAGATCTAGAGACAGAAAATCAAACCTTGCAAAAAAATTTAGAAGAACTCAAAATTTCTAGTAAACGCTTGGAACAGTTGGAGAAAGAAAACAAACTTTTGGAGCAAGAAACCTCTCAATTGGAGAAAGATAAAAAGCAACTGGAGAAAGAGAACAAGAGACTGCGGCAACAAGCAGATATTAAAGACAGCACTTTAGAAGAAAACAACGCAAAAATCTGTAACTTGGAAAAAGAGAACAAGTCTCTCATTAAGGAAATTGGTCTATGTAAAGAAGCTTCTATTCGACTAAAAGAAGCTGAAAAAGAGAATAAAGAACTTGTAAAGCGAGCCACCATTGACAAGAAAACGCTTGTCACATTGCGAGAGGATTTGGTGAATGAAAAGCTGAAGACGCAGCAGATGAATAATGATTTAGAGAAGCTTACACACGAACTTGAAAAGATTGGTTTGAATAAGGAGCGCCTTTTGCATGATGAGCAGAGTAGTGATGACAGTAAATACAAACTGTTAGAGTCAAGGTTGGAATCCACATTGAAGAAATCGCTTGAAATAAAAGAAGAAAAAATTGCTGCTTTGGAAGCTCGACTAGAAGAATCAACAAATTTAAACCAACAGCTGCGCCAGGAACTTAAAACAGTTAAAAAGAACTATGAAGCACTCAAACAGAGACAAGAGGAGGAGAAAATGGTACAGAACTGTTCCCCAAGAACTGGAGAAGAATCTCAGTCGGTTAATAAGTGGGAGAGAGAAAGTCAGGAAACTACTAGAGAACTTTTGAAGATTAAAGATAGATTAATTGAAATTGAGAGAAATAATGCAACACTGCAGGCAGAGAAGCAAGCTCTGAAAACACAACTAAAGCAACTTGAGACACAGAACAATAATCTGCAGGCTCAGATTTTGGCTCTTCAGAGACAAACAGTTTCCTTACAAGAACAAAATACAACTTTACAAACTCAGAATGCCAAGCTTCAGGTAGAAAATTCAGCTATTAATTCACAAAGTACATCTCTTATGAATCAAAATGCACAGCTGCTGATCCAACAGTCTGCCTTAGAAAATGAAAATGAATCTATAATCAAAGAACGGGAGGAACTGAAATCACTGTATGATTCACTAGTCAGAGATCATGAAAAACTGGAACAGCTTCATGAACGGCAGGCTGCAGAATATGAATTATTAATTTCCAAGCATGGAAACCTTAAGTCAATGCACAAAAATCTTGAAATGGAACATAAGGACTTAGAAGACAGATATAATCAGCTGCTGAAACAAAAAGTGCAATTAGAAGAATTTGAGAAAGTTCTCAAAGCAGAACAAGAGAAGATGGTACAGCAGAACAAAATGCATGAAACTGTAGCTGCAGAATACAAAAAGCTTTGTGAGGAAAATGGCAGGTTAAATCATACATATACCCAACTTTTGAGAGAGAATGAAGGTCTCCAAGTGGATCATAAGAATTTGAAAACACTTCTGAACAGTTCTAAACTGGAACAAACAAGATTAGAAGCTGACTTTTCCAAGCTCAAAGAACAGTACCAACAACTGGACATTAAGCATACAAAATTGAATAATCAGTGTGAGTTGCTTAGCCAATTAAAAGGAAACTTGGAGGAAGAAAACAGGCATTTGTTGGATCAAATCCAAACATTAATGCTGCAAAATAGAACACTATTGGAGCAGAATATGGAAAGTAAAGATCTCTTCCATGTTGAACAGAGACAGTATATAGACAAGCTAAATGAATTAAGAAGACAAAAAGAGAAACTGGAAGAAAAGATTATGGATCAGTATAAGTTTTATGAACCGTCACCACCAAGAAGGAGGGGTAATTGGATTACTCTGAAAATGAGGAAGTTGATAAAATCTAAGAAGGATGTTAACCGAGAACGACTCAAGTCTCTTACTCTGACACCCACCCGCTCCGAGTCAAGTGAAGGATTTCTTCAGCTGCCCCATCAGGACAGTCAAGATAGCTCTTCGGTGGGCTCAAACTCACTTGAGGATGGTCAGACTGTGGGGGCCAAAAAAAGCAGCACCATGAATGACCTGGTGCAGTCCATGGTCCTAGCAGGAGGACAATGGCCAGGTAGTTCTGAGCACCTGGAGGGTCCTGATGATATATCTACGGGTAAAAGGAGAAAAGAATTGGGATCTATGGCCTTCTCTACTACATCCATCAACTTTGCAACTGCCAACTCTGCTGCAGGCTTGAGATCCAAGCAGTTGCTTAATAATAAAGATGCTACATCTTTTGAAGATGTAAGTCCACAAGGAATTAGTGATGATTCTAGTACTGGATCAAGAATTCATGCTTCCAGACCAGCCAGCCTTGATAGTGGCAGAACATCCACTAGCAATAGCAATAATAATGCCTCACTCCATGAAATCAAAGCAGGTGCAGTTAATAATCAAAGCAGGCCACAAAGCCACAGCAGTGGAGAATTTAGCCTTCTTCATGATCACGAAGCATGGTCCAGCAGCAGCAGCAGTCCTGTCCAGTATCTGAAAAGCCACACCAAGTCTAGTCCGATACTCCATCATAGACTGTCAGAAACCCTGGACAGACAAGGAACGTGGAAAATTAAGACCGACTCTCCTGGCAGTGAAGTGGTTTCCCTGCAGCAGTTTTTAGAAGAAAGTAATAAGGTTATTTCAACTGAGATCAAATCCTCAAGCCAAGAGAATCTTCTGGATGAAGTAATGAAAATTTTCTCTGAAAATGCTGAATTAGCTGGAAGAGATAAACCAAGAAAACACTCAACAGTCAGCAGTGGTATCGCCAGATCACAGAGTGTAAAAAACACATATGAATTCTCTGATGGAAAATTAGCTAGCCAAGATCACCTTGCAAGGTCCAGTACATATAGAGTGGAAGAGCCCAACTTCTTGAACTCTTCAAAAACACTTACAACAGGGACTAGAGGCAAGACCAAGTCTGTTAAGGAAAATATACAAATGAGCCAATCACGACAATCAAAAGATTGTAATCCTTATGCTACTTTACCTCGTGCAAGCAGTGTGATTTCTACAGCTGAAGGAACTACTCGGAGAACAAGCATCCATGACTTTTTATCTAAAGACCCTAGACAGCCAGTATCCATTGATCCATCTCCACCTACAGTTGACAGAAGCGTCCCATCAGCTTCTAGTGAGTACGGTCCTCCAGAACAGTCCTCTTGTGTTTTTCATTATAAACCTTTTACTGCAGTTACCCTGTCAGAAAATGATTTAGGCAGTATAGCTATGTTAGGTTATTCTGCTCATAAATCAGAAGAGCAGAATGTAAAGACTAGTGAGACAAATTTTAATGCTAAAACACTTTCTTATAGTGACATGTACAGTGAAAAGGTAGGCCCATCAATAAGCAGTGTAGGGAAATTCTCTCTCGCCTGTTTATCCATGCCATTTTTGACACTTAATACTGAATTAGTCAGTAGTGTAAGTGGATTGCCTCAAAGGCCTGTATCAAAAGCAACCAGCACAACTTCTGGATCATCAGTGAAAGCTGCACAGAAGGATCATAAGCTACCTTCTGAGAATCAGAGATCTGATGACAGAAATTTAGAAGTGACTCAGAACAGGAGTGAATATACTGTTGTTGCACATGTAAACATTAATGAGAGTAAATCCCCATTACCAGTTTCTGACGATACCCAAACTATTTGGTATGAATATGGCTGTGTGTGACTAAATAAAGATTAAATATATTCTCCCA +>XM_002842962.1 Microsporum canis CBS 113480 conserved hypothetical protein (MCYG_08091), partial mRNA +ATGTCGGCGCCAAATCGACGTGGTGATGGGCAGACACCGCTAAACTCAGCTGGACCCAGCTCCAGTCCAGCCAAAACACCCTACAATGCGCTATTCAGATTATCGAGACTAGTGGCAGCGCCTTCGACTCCGGCACAGCAGAATGCTACCTCGTTCAACTCAAACAGACCGTCAGCGTCTCGGGCTGGCCGCCGGAAATCAGGGATGACGCCGTCACGGACAAGAGGCGGAGGTGAACATATACCAGTGACTCCGCATACGATAAGGGCATTCCAGAGACGTGCAGCAACATATACTCCGGGGCGGGATAGACGGAAGAGTCAGCGCTTCAAGCGGGAGACGCCAATGGATATTTTGAAAAACCTGGGGAAAGCTCTTGCGCCAATATCAAAACCGGTATCGTCTTCTCCGCAGACCGAACTAGAGGACGAGCCGGAGCCCCCAGTGGACGAAATTGAAGAATTAGACAGGGAGCCTCCCATTCCACCACCGAGACTTTCACTCCCGCTTAATGAGATGACTGTGGTCCAGGAGGACGATAACAGTCCCGAGATACCCCCTCCAAAACTGTCTCTCCTCCCAGAGGATGAGGACATTACGAGAGGGTCGATTGAATTGCCCCGGAGAGAGCGGTCAGGTCGAGATCTGGCCAGGCTGTCGAGAGTAAGCTTCGCCAGTAATCGTTTCAGTGATCATTTTGGGGACACCACGAACCTTGAAGATCCGGCAGAGGCATTGGACTTTCGTGTTGGACCAGAAGAGGACTTTGATGAGGATGTTGACAATACGACCGGACAACCGATGTTGGATGCAGGGGGAGAAACCGAGGATTTGGGCCGATTTAACCTCGATTTTGCCTTCCCAACGCCTGAAGCGCCTCATACTATGCCAATAGAGAATGATAATGAGCAGGACACCTTCGAGTTAGATGCAGTGCCACCCGAATTCGGTGGACCAGACAGTCCTTCATCAGGAAGCGATTTCGGGACAGCAGGATTCGAACCAGCCATGACCGATAGGTCGTCTAATCGGGGAGTCGTAGAGGAAGAAGAGGAGGAGGAGCAGGAGCAGCAACAGGAAGACCAGCCTGAGCCACCGCAGAAGAAACAAAAGCTGTCTAAACATGGGATACCGGTCCCAAGTCTGCCTTCTGGAGTCGTAAAGAAGCTGGCCATGCGGTTTGCAAGGTCCGGGAATAAAAAGACGAGAATCAACAAGGATACGATGGCGGCCATCCAGCAGGCAACGGATTGGTTCTTCGAACAAGCGAGCGGGGATTTGTCGACATATTCCAAACACTCTGGCCGAAAAACAATTGATGAAACAGATGTCATCGCACTGATGAGAAGGTAG +>JX319470.1 Uncultured fungus clone 034A1751 18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, complete sequence; and 5.8S ribosomal RNA gene, partial sequence +AAAAAAAGCTTGGTCATTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACAGAGTTCATGCCCTTACGGGTAGACCTCCCACCCTTGAATACTATACCTCTTGTTGCTTTGGCGGGCCGCTCCGGCTACCGGCTCCGGCTGGTGAGTGCCCGCCAAGGGACCTAAACTCTTGAATTATTGTGTCGTCTGAGTACTATATAATAGTTAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTTAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCGAGGGGCATGCCTGTTCGAGCGTCATTAT +>XM_040766144.1 Sporothrix brasiliensis 5110 uncharacterized protein (SPBR_07890), partial mRNA +ATGGTCATTGAGACCAGCGGCAAGCTGCTGAAGGGGTATGATGACAAAGGGTACAGCCGAGCCTTCAACCGATTGTTTACAAAGGCCCCGGCAAACGCCGGGTACAACGACGGCTTGTCGGCCCCGCAGCCCGACTTCGTAGAGGGCCTCGAGAAACAAGAGTTCCGCCCGTTCCAGGCCGCCGACTATATCCCTGGAGCCACTCTTTATAAGGACGACCCCCGTTCCATAACCCTACCGATGATTGCTGGAGAATGGAAGGGCCCTGCTGGGGACATGAGAGAAACGAGAGTGCAGAGTGCCTACGACGGAGCAGCTCTTGTCCACGCAAGAAACCAAGCACTCGCCTACATGGGAGGGTCTGATCCCCCAGGCCACGCAGAAGTCACAACATTCACCGCAGACGGCACCAATCTCAACCTGACGGACGGAGACGTCTCAGGAACGCCCAAGACTATGCGAAGACTCAGTCCGAAGAACTAA +>L38765.1 Pisolithus tinctorius (F00031) mRNA, EST0038 +CGGCTAGCTGCTTTTAACTGAAGTATTGCAGCATGTAAGTTGTGGTTTATAAAGTCTTTCGCCATGCGAGGAACAAGTCGACAAATTTGATGAGCTTATTCATCTTATTTGTGTATGTTACCACACAATGATTCCCTTCTTTAATTGAAGTATTTGAG +>XM_018671993.2 PREDICTED: Lates calcarifer inhibitor of growth family, member 1 (LOC108880464), transcript variant X1, mRNA +TCAATACACAGTCAGTGAGATGAAGGAACAAACCCGTCAGTGCCAAAGCAATGGGGACTCTGTAAATGGTGCAAGTGACTGGGTGTCCTGTGATAAAGACGAATTCGCAATGTTGAACCCCACCAATGGTGATCCAGGACATGTTGTCGTCAATTATGTGGAGGAGTATTTGGACCTCGTGGAATCACTACCTTTTGACCTACAGAGGAGTGTGTCTCTCATGAAGGAAATTGATGCCAAGTATCAAGATATTCTGAAGGAGCTTGATGACGCTTATGAACGTTATCGGCGGGAATCTGACTCACTTCAGAGGCGCAAGCTTCAGTCATCGATTCAGAGGGCGCTGATCCGCAGTCAAGAGCTTGGTGATGAAAAGATCCAGATAGCTGGTCAAATGGTGGAGTTGGTTGAGAACCGAACACGACAGTTAGACTGGCATTCTGAACTTCTCCTCTCCTCTCAAGAAGTCCCTGAGAGCCACGTTCCTACAGCAGCATCCATGACCACCACTGCAGCATCCTTGATGTCCTCATCATCAGCCACAATCACTCCAGGGAAACCTGGCCACCATGACAAGAAGCGTGATGAGGTAACCCCAGGCTCAGGTGGTGCAGACAAGGCTGGAGGGAAACGCTCAAGACGTCAGAAAAATGGAGAAAATCGGGAAAGTTATGGGGGTCTGGATCACACAGAGGAAGTGGGAGTGGGGGCGTCGCGGGAAAAACGTGCCAAAACATCTTCCAAGAAGAAGAAACGGTCAAAAGGAAAGTCTGAGAGAGAAGTGTCACCTCCAGACCTGCCCATTGATCCAGATGAGCCAACGTACTGCCTGTGTGAGCAGGTGTCCTATGGCGAAATGATAGGCTGTGATAACGATGAGTGTCCCATTGAGTGGTTTCATTTCTCCTGTGTTGGCCTCCATCATAAGCCAAAGGGAAAATGGTACTGCCCTAAGTGCAGAGGTGAGAATGAGAAGACCATGGACAAGGCCTTAGAAAGGGCCAAGAAGGAGAGGGCATACAACAGGTAGCTCGCGCTGCCTGGCCAAACGAACACTACTGCAGAGAAATTTAATTTTCTGTCTTGTCTTTGTTTCCATTTACTATTAACAGTGTTCAAAAAGAGTAATGAGTTGATGAGAGGGATCTTGTACATAGTTATTTTTGTAACTGCTGCATAGCCGAGAAACAAGATCACTCCCTCCCCCATTGGGATTATTTGTAATTGACACAGTACAGCACAGTACAACCTGCATGTTTGTAACCAGCTGTCCTCCACTCACATCCCCCATGTTTTCATCATGCATGCAACATCACCCACTCCACTATATATGCTCAATTAACAAATAAAATATTTCTAAACAAGGAAGAA +>XM_046503406.2 PREDICTED: Haliotis rufescens thymidine kinase, cytosolic-like (LOC124137211), transcript variant X3, mRNA +GTCTAGTCCCTGAAGTGGTGTGAAAACCCGTAAACCATTTATGTGTACCTTATTTAATTAACCTCGGGCGACAAGCGAACTCGTGCACATTTCTGTGTTCCGTGTTGCTGCCAGTCGCATGTTCGCCTAATTTAGAACCTCAGTGGGCGTGATCCGGGGCGGAGCATAGCGATGTCAGTGGATCACACTTGTTAGAGCTTTAGACTAACTGTGATTATTATGGAACAAGCACGTTTCGCTACATCTATAACATATATCAATATGATGTCTACAAATCACCTGATCCCTTCACCAACGGCAGTTACCAGCCACAGAGGGCATATTCAGATAATCTTTGGACCCATGTTCTCCGGCAAAACCACAGAATTAATGAGATTAATGAAGAGATACCAGGTAGCTAACCACTCCTGTCTCATAGTGAAGTACGCCAAAGACACCCGCTACGACAATCATGGCATCGCTACACACGACAGAACAGTGTTGTCTGCCACTGCTGCCCATGAGCTGATGTCTCTCATACCTGAGGCGCTGAAGTATGACGTCATAGGCATTGACGAGGGACAGTTCTTTCCTGACGTGGTGGTTTTTGCTGATACAATGGCAGAGAAGGGGAAAGTTGTCATAGTAGCAGCACTAGACGCGACATTCCAGAAGAAGGTGGAGGTGATCGGGGGCAAAGACAAATATCTAGCGGTGTGTCGTGCATGCTTCCGAGGGAACAGTTTTCACCAACAAACCAACACCACGACTGAGTAGTCCACGCCTCTATCGATCAGCCGTGTCTGTGTGGTGGAAGAAAAGGTGTCTGTGATTTTTGTCTGAGACAAAACAGTTATTTTAATGTCTTCCTTTTAGTATTCATCATACAGCTCAGCAGACATATATTTCACAAAGAACATTGTCCGGGCAAGCATGCCACTGTGATGTAGTCAAAGGGCATATTATGTATTACACAGAATAATATTCATATTTTTTAATATTTAAACAAGACTTGTATACATACAGACCTAGAAACTATTTGTTATTAAAGTATGTCAGTAAATTGCATTGACCATTTCTTCTCAAACTTTGCAACAACAGATATTAAGTAGTTTAGGAACGGCCATAATATATTCTAGGTTAGGCTGTTGTTTTAGTTTAAGTTATTTTATAGCGCTTCAAAACGTTATCCGAGCATTCAGAAGTCATGCTGGATTCTACACACTAAAAACCCCACTGTACTCAGTGATCTGTGATCTGTTTGAAGCTCGCGTACAACCAAAATATTTTTCTTCTCAAGATGTTGTTATGTTTGCTGCTATGTTACACTGCACGAACTTGTTCCTTTGACATTAATCGACTTGGGTGCCATTTAGCTGTTATTGCTATGGTTATATGCTAGGAATCTTCATCATGAGATAACAGGTTTATTATATACTTCAGTGTGAAAGACTGAGTTTTCTGAAGTTGAAAAAAGTGATATTTTCATTGCAGTGAACATAACACTTGATATTTCACTGCGGTGAACATAACACCTGATATTTCACTGCAGTGAACATAACATGTTGACGGAACTATGTTGGCCTACACGAGACAGCTCGTACACAAACTGTTGATTTACGTCAGTTCAACGTTGACAAGTCATATAATGACAGATGGTCATTTATGTAGTTAATACCGATTCTTATCGTTTGTTTATTTTGTTGAAAATGAATTGTATTAAACTGTGAATTTCTCTTCTGA +>XM_040439057.1 PREDICTED: Bufo bufo zinc finger MYND-type containing 8 (ZMYND8), transcript variant X7, mRNA +TCAAAAGATCTGACAGCCCCCGTGCTCCTCCTGTGTCCCGGGAAGGCCCTCTCTGGTTCCTAGTGTCACCGTTCTCATTGCTCCTTGCACTTTACCTGGATTCTCTGCTCCACAGCTCAGGGACAGGTCTCACAGGATGGCTCCTGCCTGCAAGAGCTGTACAAAGATAATCACTCAGGAAGTGGCTCAGCCAATGGCCTGAAGCATTACATGTGGATTCCCGAAAGCCTCCAATCCTGCCCCAGCTTGCAACAGGGGAGTCTGATCATCAGGCTGAAGTGCCAAGCCCTTTCTGTCTGAGAACTGAGAGTCTGTCCTCCATGTTTTATAAGTATTGACATATAACACTGTAACAATGCATCCACACAGGTAAGCCAGAGCTTGTCTTTTTTTGTAGTTTATTCCCATCTCTTGGACACTGTGCTTTTGCAGGTTGCATTTCCGCGACTTCTCGGGCCAAATTCGCTAAACCAGCAAGTGTTTTGAATTTTGACTTTCTGGAGAGATCACATGGTTGGGTGCCATTAGCCAGTGACTGCTGCTGGGGGTTCCAGGGGTACACTGCACAATTAACTTTTTTGTTTTGTAAAGAGTGGTGGGTTTCTGCACAGCCCCCTTCACTCCCCTGTTCACCAAGGAAGATCTCTGCATTATTGTGTATTCCTGTGTCACATGCTGCTCAGAGGAACATGGAGGCTGCCTCAGCACAAGGCTTCAGCTGACGTACAGGCCACCAAGCAAAGCACACTTTATTCACCCTCTATCTAAAGGACAAGAGCCAGACTAACCCAGGACTGTTACTTTTGATACCGACCACAGAGACTCTCAGCATTTATGCCTGACATACGTCTGGGGCCTAGCTTTGGATTTTTCAAATACCACCATATCTGAAGCCTTTCTCCGGTTTACTTGGTGCCCTGTGGACCCGGCACAGTGTGCGTGTACATGATTTTTCTTGCTTTTTACCCATATATTGTTTTTTGAGATTTTTTTATTTTTTATGTTCTGGATATATGATTTCCTGAGGCTGGGAGCTAACCAATATGGATGTCAAACATTTGGCAGAGGAGGAAGTGAAGATTGAGCCGGAGCTGGTGGAGGGGATGGATGTCACCACTCGATCCAAAGGTCCTGCTGTTGCATATCCAGAGGGATTATCGCAAGAACATGGAGACAGTCAGCAGTCCAACCCAGGCTCAGGGCAGAAAAGGAAGATTTCCAGCCCTCAGCACTCATCCAATGGGCACTCTCCTCAAGATGTATCCGGCAGCCCAAGTAAAAAGAAGAAGAAACCAGGAATGTTGAACAGTCACAACAAAGACCAGTCAGAGCTAAGACATGGTCCGTTTTACTATATGAAGCAGCCACTCACCACAGACCCTGTTGATGTTGTACCGCAGGACGGCCGCAATGACTTCTACTGCTGGGTTTGTCACCGGGAAGGTCAAGTCCTATGCTGTGAGCTCTGCCCCAGAGTTTATCATGCTAAGTGTCTGAAACTGACTGCTGAGCCTGAGGGTGACTGGTTTTGTCCTGAGTGTGAGAAAATCACAGTTGCAGAATGCATAGAGACACAGAGTAAAGCAATGACTATGTTGACCATAGAGCAGCTTTCGTACCTGCTGAAATTTGCTCTCCAGAAGATGAAACAGCCGGGGACAGAACCCTTCCAGAAGCCGGTGTCATTGGAGCAGCATCCTGATTATGCAGAATATATATTTAATCCTATGGATCTCAGTACGCTAGAAAAGAATGTTAAAAAGAAAATGTATGGTTGCACAGAAGCCTTCTTGGCAGATGCCAAATGGATATTGCATAACTGCATTATATACAATGGGGGAAATCACAAATTAACACAAACTGCAAAAGTAATAATCAAGATATGTGAACATGAGATGAATGAAATTGAAGTCTGCCCTGAATGTTATTTAGCTGCTTGCCAAAAAAGAGATAATTGGTTTTGTGAACCGTGTAGCAATCCGCACCCTCTGGTCTGGGCTAAATTAAAAGGATTTCCCTTCTGGCCTGCTAAAGCTCTGAGAGATAAAGATGGACAGGTGGACGCCCGCTTCTTTGGACAGCATGACAGGGCATGGGTTCCAATGAACAATTGCTACCTCATGTCAAAAGAAATCCCTTTTTCTGTAAAGAAGACGAAGAGCATCTTCAACAGTGCCATGCAGGAGATGGAGGTGTATGTGGAAAACATTCGCAAAAGGTTTGGTGTATTTAATTACGCTCCCTTTCGGACACCTTACACACCCAACAACCAGTACCAAATGCTGCTTGACACTACCAATCCAAGTGCTGGTACTGCCAAGACAGACAAACAGGAAAAGATCAAGCTGAACTTTGACATGACTGCATCTCCGAAGATCCTGATGAGCAAACCCATATTAAGCAGCAGTGGAGGCCGACGGATTTCATTAACAGACATGCCACGGTCCCCAATGAGCACAAACTCCTCTGTGCACACAGGCTCAGATGTAGAACCAGACGCTGAGAAGAAAGCAGTGTCCAGCCACTACAGTGCAAGTGAAGAGTCCATGGACTTTATAGATAAGAGTACAGCTTCTCCTGTATCCATAAAGACCGGACATGGTGGCAGTATATCAGGCAGCCCCAAACCTTTCTCACCACAATCCTCTACACCAGTAAAATGTAAGACGGAGAGGAACACAAGCACAGGCAGCATCCTCAACCTCAATCTTGACCGCAGTAAAGCGGAAATGGACTTGAAGGAGCTGAGTGAGTCTGTGCTTCAGCAGTCCACGGCAACCCCACTCATCTCTCCCAAAAGGCAGATCCGCAGCCGATTCCAGCTCAATCTGGACAAAACCATTGAGAGCTGCAAAGCCCAATTAGGAATTAACGAGATTCCGGATGATCCTGATGCCACAGTGGAACACAGTGATTCTGAGGAGTCAGAGAAGACAGATTCTAGTGACAGTGAGTATGGGAGCGACGATGAGCCGAAGTCAAAAAATGATGAGGAAGAAAAGGAAAGTGTGAAGGAAAAGGAACTCCCTCCATCTTCAGTAAAGAAAAAATCCAAGCCCTCAATCCAAATAGAGGCAAAGGATGAATCCAAGAGTGCAACAGCGACAACAGATAAAGCGGATGCAGGGGGTAAGGATAAGCTGGCATCCACTGTAGAGAAGGATGTTCCTGACAAAGGTAAACCCCTGACGCACTCTGCAAAGGAAAAAGTGAAGGGAAAGGATGATACAGACTCTCCTACTGTACACCTTGGACTGGACTCTGACTCTGAGAGCGAACTGGTCATTGACTTGGGTGAAGATCATTCGGGGCGAGAAGGACGTAAAGCCAAAAAGGATGCTAAAATAACAGCAACAAAACACCCAGAAATAAAATCCCCAACCACAGCCAGTGTCAGCAGTCTGCCAGCAGTTGACACCCCTATCATGACCCGCTCTGCATCCCAGGCTGCCCCTGCTGTAGGGGTAACAGTGACTACAAGTTCAGCATCAGCTGCAAGCACTCCGACGGCAGCTACTGGCAGCCCAGTGAAGAAGCAGAGACCTCTGCTCCCCAAGGAGACAGTTCCCACCGTGCAGAGAGTGGTGTGGAATTCTTCCAGTAAGTTTCAGACCTCATCCCAGAAATGGCACATGCAGAAAGTTCAAAGGCAACAGCAGCAGCAACAACAGCAGCAGCAACAGCCGAGCACGCCTGCGCCGTCACAGTCTCCACAAGGGACGAGATACCAGACACGGCAGGCTGTGAAAGCGGTGCAGCAAAAAGAAGTCACACAAGCCACATCCACCTCCACCATAACCCTTGTGACCACCGCCCCACCACTAGCCATGGTGACCAGCCCAGGACAGCCACTGACCACATCAATCACCAGTGACCTGCCCATCGCTACCGCCTCAGCTGATGTTGCTGCTGACATTGCCAAATACACCAGCAAGATGATGGAGGCAATTAAAGGCACAATGACTGAGATATACAACGACTTGTCTAAGAATACCACGGGGAATACCATAGCGGAGATTCGACGCTTACGAATAGAGATTGAAAAACTGCAGTGGCTTCATCAGCAGGAGCTGTCTGAAATGAAGCATAATTTAGAACTAACCATGGCAGAGATGAGGCAGAGTCTGGAGCAGGAGAGGGACCGGCTGATTGCAGAGGTGAAGAAACAAACTGAGCTGGAAAAGCAGCAAGCAGTGGATGAGACCAAGAAGAAGCAGTGGTGTGCCAATTGCAAGAAGGAGGCCATTTTCTACTGTTGCTGGAACACCAGCTACTGTGATTACCCGTGCCAGCAGGCGCACTGGCCCGAGCACATGAAGTCCTGCACGCAGTCAGCCTCTGCTACACAGCAGGAAGCTGACCCTGACCTCAGCACGGATAAAACGGCACAAGCAACAACAGGTACCCAGCCACAGCCTGCTGAAACCACCACAACGCCGAAAGAGAAGGATGGCACAGCTGATAAGAGCAAAGAGAGTGTCACTACCATCCCTGTGGTTGTAAGCCCCAGTGCCGGAGCGGTGGCGATGAGAGCCGGTGTTCAGTATGTGCAGACCACCATGCCGGTCCAGGTGAGAAGAGTGTGACCTGTAAGCATTAAAAACAGCAAGACAATACAGAAACACTACATTGTGCGTGTCCGGAGCCAGCGCCTCGTCCTGTATGTAAATAATGTACAATCTGTGGATGTGATTAAGAGTAGAACCATCTTTTTATATTTGTATTCACTTTAACTTATGAACGTTTATCCGGAGCCACGACATTAAAACACCGATTATGACAGATACTGCTGAAATCCTGCTATCTCGCAGAACGGATGGATGCCAAGGTGTAGATAAAGCAGATTACTCTTGTATCAGTATAATCAGTGTACAAAGGAGCAGTGAATGATACAAGCGTCTATGTGAATAATCACAGCTAATGCCGCATTCATGGCAAGAGGCAGCGGCATTCAATCAAACATTAACCCTAGTGTGGGATCGTCCCGCAGGAACAACCCTAATAACCGGAGAGGAAAACGAAGCACCATATTTATCTGTGGACAACGTTGCAAAAAATATATGGTGGCGCCTTCAGTCTGTTACATTGCCACCACAGATTCACTTTGTATCTTATGTAAAATCACTGCTGATGTCTGTATATGAGGACCCTCTGTATAAAATCATTCCAGTGCCACGCGTTGTACATTTATCACACTGTTGATTTTTCACCATTGTTAATAACGGAGATAGTGTGTACAGTAACCAATGGCGAATACAAGATGGAAGCAAGGCGCCATCAACCCTGAGCGAGAGGCAATATCAGTGGCAAGCGGTTTGAAATGCGGGACTGGCCAGCTTTCCCTTGTGAAACATAATTGCTTTTAGCATATGGAAGTATTTTTTCACATTTTCTTTGTATAAAATTTGTATTAAATTCAAACATTTCTTTTT +>XM_027968038.2 PREDICTED: Ovis aries RAD52 homolog, DNA repair protein (RAD52), transcript variant X6, mRNA +AGCGAGTTTCTGCGCGTTCAGTCTGAACAGAGCCCTGTCCGCTCTGCGCGGCTGAGGCGCTACCAGTACACAGTGGAAGAACACCAGGCCATCCAGAACGCCCTGAGGCAGAGGCTGGGCCCAGAGTACATCAGTAGCCGCATGGCTGGAGGAGGCCAGAAGGTGTGTTACATCGAGGGTCACAGGGTCATTAATCTGGCCAATGAGATGTTTGGCTACAATGGCTGGGCGCACTCCATCACTCAGCAGAACGTGGATTTTGTTGACCTTAACAATGGCAAGTTCTACGTGGGCGTCTGTGCGTTTGTGCGAGTCCAGCTGAAGGATGGCTCGTATCATGAAGATGTGGGCTATGGTGTCAGCGAAGGCCTTAAGTCAAAAGCCTTGTCCTTGGAAAAGGCCAGGAAGGAGGCAGTAACAGATGGGCTGAAGCGGGCGCTGAGAAGTTTTGGGAACGCACTCGGAAACTGTATTCTGGACAAAGACTATCTGAGGTCACTGAACAAGCTTCCACACCAGCCGCCTCTTGAAGTGGATTTAACTAACGCAAAGAGACAAGATTTTGAACCATCTGTTGAACAAGCCAGATACAGCAGCTGCCAGCAGAATGCGACCCTGGAGCCCCCTAAAACCCAGGAGGCGACCTCTCCATGCAGACGGAGCCACTTGGCTGGACCCCACACCGTGACGCAGGGGGCCACGGAGAGCAGCTCCCGAAGCCTGGCCCCCGGCACCGCGGAGAGTGAAGCCACGCTCCAGCGGAAGCTCCGGCAGCAGCAGCTGCAGCAGCAGTTCCGGAAACAGATGGAGAGACAGCAGCAGGCTGCCACCTCTGCTCTGTCCTCTGGAAGGACGGACCAGGCACAGCCGCCACCGGTGCCTCCTACCAAGCCCAGCCTCCCCAGGACCCGCTCACCTTCAGAGCCACTCACCCAGACAGACCTGCTCCCAGACAGTCTTGAAATGTGGGACATGGCTATGGATGCAGAGGACAGCGTGCTCAAGACCTTTTCGAAACCAGAACCACCGGAGACCCCTGCCATCTCGGTCCTGAAGAACCACATGGAGACCCAGAACAGGATCCCACCAAGCCTTTGCCACCAGAATCCACAGGCACAATCTGGACCCTGGCACCTCCAAACTTCCAGCCTTAACCAAGACACCACAGGGAATTGTGACTCCTCTAGGAAGAATCAGGACATGAAGAAAAGGAAACTGGACCCACCTTAACCACGGCTCAGGGCACCTCCTGAACTGTCCTGATGGGACTTCATTTTGGTCATGAAATGACTGGTCCTGCCTGAGGAGTGCACTCTGCCTCAGGGCTCTACCTGCTTCATCCTGAACTCTGCTGGGGGACTCAGCACCTGCTCACATCAAGTCGGGCATTTGGGAAGCTCTGTAGAGACTCGGTGCCTTTTCTTGGGCTCCTCACTCTTTATTCCTAAGCTATTGTGTTAATGAAGACAGAAATCACCTCAGCCTGTGGTGCGTTCCTGAGTGACCGCTGACCTCTTGCTGTGGGGGCCCCCCGTTATCTAACGCTGCCATGCAAGATTGCAGTCTTCATCACTATTGTTCATCGGCTCATGAAACTACTTCCCTTTTCTCCTAAGACCAAAGAAAAGGTATTTTTAAGAAAGCAAAATTAAATCCTACCCTGTAACAATGTAA +>XM_028824534.2 PREDICTED: Erpetoichthys calabaricus F-box and WD repeat domain containing 8 (LOC114668659), mRNA +CGCTTTTGGTGACGGAAAAGGCGGTGCATCACTTCTTGACTCCCCATCTGTTATGGATGTGCTGTAAATAAATATTTGCGGCGCCGTGCGCAATGGAGTTGGAACAATTCAGAGAGCAGTGGAAGAAAGAACTAGCGGTGCAGCGGAGTGCTATCGGTATCGGCCGGAAAGAGGCACGACGGTTTCAAGAAAGTACTCGTCCTGAGGTGTTGAAAACAAACAGAAAATTTAAACATGAGTCGGAGCTCGTTAATGAACAAACTACAGACGCAAAGACGGGAACGGTCTCGTTGCCCGACAGACCCCCGAAAAAGAGGTGGTACCCACACGGAGATCGACCGCAACATCTGCGGAAAGCGCCGCGGGAAGAGCGTTTGCTGGATCGGTTAATCCAAGACTTGAATGAAATTAATGAGATACCATTTTTTGACATGGATTTGCCATATGAATTAGCCCTGAAAATATTTCAGCATTTGAACACAACTGAGCTTGGAAGGTGTGCCCAGGTGAGTAAGGCTTGGAAGATACTTGCTGAAGATGAGCTGCTTTGGTACAGACACTGCCTGAAGGAAGGACATTTGATTGGGTCAAGTATATCAGACTCGCCCTGCTGGAAAAGTACCTTGCGTGATTGTCGGCAGATGGAACACACGATGCGGACTAATTGGAAGAACCGTGTCGGGGCCATCAGCCAGCTGCAGTATGAACTGGGAAAGGTGCTGTGTGATGTCAACTCATGTGCTGGACATGTTATAGCTGGGTACACTTCCGGAGATGTGAGGCTGTGGGACACTCAGAATTTGGATATTGGTTCGCCTTACCTGAGACCTAGCCATGTGTCCAGAGAAAGTGCCTTACGGCCACATGTCAGTCATGTCTGTGTGAATGAAAATGTGGCTGTGGCTGCCTATGAAGATGGCATCATAGATGTCTGGAGCATTGAAGCTGGCCGGGAACCCATCCACCATTATCAGCACCTGCAGCGGGTGCAGGCTTTGGCTTTGGGGGCTGAGGGGACCACTGTAGCCTCTGCCTCTGGTAAGCAGGTGCGAGTGGAACAGCCAGATGAGCAGGGCTACTGGCAGACAACAGCCCAGTTTGAGCTGGAGAAGTTGGTGGACTTTGCTCAAATCATTCCAGGAGTGCGTCCTCGGACACTGGCTGTTGTTGCTGCCTCTGACACAGTCTATCTCCTAGAGCCTGGCAAAGACCCCAGCATCCTTCACTGTGTGTACAGTCACCCAATAACCTGCCTTGACACCTCCTCCTCACAGGCTGCTGTGGGTGTGAAGAGCTTTGGGTGGGCAATGAATATGGGAAACAAGATTGATGTGTACAGCTGGGAGACTGGCCAGGCAGTTGTATCCTTGGGGTCATCCAGTGGAGATTTTACTTGTGTCAACTTGAAGGACAGTCCTCCAAATCTGCTGGTGTCTGGCAACAAAGACCGAAGAGTGCGGGTGTTTGATCTGAGGACAGCAAAGTCTGTCACATCTCTGTACGGCCATCACATGGGGGTTTCTGCGGTGCAGGCAGATGACTGGAAGATTGTAAGCGGTGGGGAGGAGGGTCTGCTCTGCGTCTGGGAAATGAGGATGGCAGCCAAGCTCTGGGAAATGCACAACAGGCACCCTGTTCGACATATCCACTTCCACACCCAGACCTTAGTAACAGCTAATATTCCAGACGAGAAGACTCCCAGGGGAGCATGCATCACCGATGATGACCTCACTGCACATCGACGGCACAGAGGGACCATCTACCTGTACGACTTTTCTGTGGACATGTCCAGCACCGATCACATCCTTCCTATCTGCCGCTCAAGTTACGCCGAGTCCCATGGTTATAACTACAACATTGGGCTGGCCGTTCCATATGATAACATCCTCGCCGCTTCTGTGGCGACCAGGCCACACGTGTCTTGAGCAAGACTAAAGACTGTCATGGAGGAGGAGGACGACATTTCTAATGGATCTGAGCACACATTTGAACACCTCTTGTCATTTTCCAGAAGTGTTCCTTTTAATATTTATTTTTCAATATGTTAGTATGTTAACATTTTTAAAATCTTAAAAGACAGTTCACTGCACAGTGCAGATGTGTCATACACAGGGGACTTGGCACAGTTCAGGTTAAAGTGAAAGCTTCAGTGTGGAGTTGTGCAAGCAGGACGACGGGCTCTGTGATTCATTGATGGCTCTTGTCTTGCACGTCGATCATTTTCTCTTTAATTATTCCTGCAAGTTGAGGAGCTGAGAATCAGTTCTCACGTTAACTTACCCGTCAGCCTTGCTCTTGCACAGAGATTTGTGTATATTGTATATAAATTGTATCATACTCCAGTATTTTGCAATGTCCCTAATGATTTATTTATTTCTTGTAAACACGTAGTTCTGATGT +>XM_045577126.1 PREDICTED: Pipistrellus kuhlii transient receptor potential cation channel subfamily M member 4 (TRPM4), transcript variant X6, mRNA +TCCGGGCCGGCGGCCAGCCGGGAAGCGGCAGATCCGGTTTGTCCGGGGCGGACCTGAGGTCGGGGTGGCGGAGGGAATGCGGGGAGCCGGATAGGCGGCGGCGGCATGGCGGGCCCGAAAGAGCAGAGCTGGATCCCCAAAATCTTCAAGAAGAAGACATGCACCGCCTTCATCGTGGACCCCGCAGACCCGGGAGGGACCCTGTGCCAGTGCGGGCGCCCCCGGAGCGCACACCTGGCTGTGGCCGTGGAGGACGCGTTCGGGGCGGCCGTGGTGACCGAGTGGGACCGGGACCTGCACACCACGGAGAAGCCCACCGACGCCTTCGGGGACCTGGACTTCCTGGGCGCCGGCCGCAAGGCCAGCAACTTCCTCCGGCTCTCGGACCGCACGGACCCGGCCACGGTGTATAACCTGGTCACACGCACCTGGGGCTTCCGGGCCCCGAACCTGGTGGTGTCGGTGCTGGGGGGCTCGGGGGGCCCCGTGCTCCAGACCTGGCTGCAGGACCTGCTGCGCAGCGGGCTGGTGCGGGCCGCGCAGAGCACAGGGGCCTGGATCGTCACCGGGGGGCTGCACACGGGCATCGGCCGGCACGTCGGCGTCGCCGTGCGGGACCACCAGACGGCCAGCACCGGCGGCACCAAGGTGGTGGCCATGGGCGTGGCCCCCTGGGGCGTGGTCCGCAACCGGGAGGCCCTCACCAACCCCAAGGGCTCCTTCCCCGCCAGCTACCGGTGGCGCGGGGACCCCCAGGACGGGGTGCAGTTCCCCCTGGACTACAACTACTCGGCCTTCCTGCTGGTGGACGACGGCACGCACGGCCGCGTGGGCGGCGAGAACCGCTTCCGCCTGCGCTTCGAGTCCTACATCGCGCAGCAGAAGACGGGCCTGGGGGGGACTGGCATCGACATCCCGGTCCTCCTCCTCCTGATTGATGGGAACCAGGAGATGTTGAAGCGGATAGAGAATGCCACTCAGGCTCAGCTCCCCTGCCTCCTGGTGGCGGGTTCGGGGGGCGCCGCGGACTGCCTGGCGGAGATCCTGGAGGACTCTCTGGCTCCGGGGAGCGGAGGGGGCCGGCGAGGGGATGCCCGAGACCGGATCAGGCGTTTCTTCCCCAAAGGGGACCCCGACGTCCTGCAGGCCCAGGTGGAGCGGATCATGACCCGGAAGGAGTTGCTGACAGTCTACTCTTCGGAGGACGGCCCCGAGGAGTTCGAGACCATCGTTCTGAGGGCTCTCGTCAAGGCCTGCGGGAGCTCCGAGGCCTCAGCCTACCTGGACGAGCTGCGCCTGGCTGTGGCTTGGAACCGCGTGGACATCGCCCAGAGCGAGCTCTTCCGGGGTGACATCCAGTGGCGGTCCGTCCACCTGGAGGCCTCCCTCATGGACGCCCTCCTGAACGACCGGCCGGAGTTCGTGCGCCTGCTCATCTCGCACGGCCTCAGCCTGGGCCACTTCCTGACGCCGGCGCGCCTGGCCCAGCTCTACAGCGCGGCGCCCCCCAGCTCGCTCATCCGCAGCCTGCTGGACCAGGCGTCCCCCGGCGCCGGCGCCAAAGGCCCGGCCCTGAAGCCCTCCGCCGAGCCCCGGCTCCCCGACGTGGGGCGGGTGCTGCGGCTGCTGCTGGGCGAGATGTGCGCGCCCAGGTATCGCGCCTGGGCCGCGGGGGACCCCCACCGCGACCACGGCTGCAGGGACGGCGGCGGCGGCGGCCTGGAGAGCGCCCAGCTGCTGTGCGTCAGGACCCCCTCGGAGCTCATGCTGGACGCGGTGCTGGGGCAGACCCCGTGGAGCGACCTGTTTCTCTGGGCGCTGCTGCTGAACAGGGCGCAGATGGCCCTGTACTTCTGGGAGATAGGCTCCAACGCCGTGGCCTCGGCTCTGGGCGCCTGCCTGCTGCTCCGGGTGCTGGCGCGCATGGAGTCTGAGGCCGAGGAGGCAGCTCGGAGGAAGGAGCTGGCAGCCAAGTTCGAGGGGCTCGGTGTTGACCTCTTCGGCGAGTGCCACCGCAGCAGCGAGGAGCGTGCCGCCCACCTGCTGCTCCGGCGCTGCCCGTTCTGGGGGGACGCCACCTGCCTGCAGCTCGCCATGCAGGCCGACGCCCGCGCCTTCTTTGCCCAGGATGGGGTGCAGTCTCTGCTGACCCAGAAGTGGTGGGGGGAGATGGACAGCTCCATGCCCATCTGGGCCCTGGTTCTCGCCTTCTTTTGCCCCCCACTCATCTACACCAACCTCATCACCTTCAGGAAGTCAGCGGAGGAGTCCACACAGAAGGACCTGGGGTTTGACATGGACGGGAGCCTCAATGGGGAAGGGCCTGTCAGGCTGACCCCGGGCCTGTATGACCTGGGCCGCACAGTCCTCTGCCTGGACTTCATGGTCTTCACGCTGCGCCTGCTGCACATCTTCACGGTCAATAAACAGCTGGGGCCCAAGATCGTCATCGTGAACAAGATGATGAAGGACGTGTTCTTCTTCCTCTTCTTCCTCGGAGTGTGGCTGGTGGCCTACGGGGTGGCCACGGAGGGTCTCCTCAGGCCCAAGGACCAGGACCTCCCACAAATCCTGCGCCGCGTCTTCTACCGGCCCTACCTGCAGATCTTCGGGCAGGTCCCGCAGGAGGAGATGGACGTGGCCCTCATGGAGCTCGCCAACTGCTCCTCGGAGGCGGGCCAGTGGGCGCGCCCGGTGGGGGCCCAGGCCGGCTCCTGCGTCTCCCTCTACGCCAACTGGCTGGTGGTGCTGCTCCTCGTCATCTTCCTGCTCGTGGCCAACATCCTGCTGGTCAACCTCCTCATCGCCATGTTCAGCTACACCTTTGGCAAAGTACAGGGCAACAGCGACCTCTATTGGAAGGCGCAGCGCTATAGCCTCATCCGGGAATTTCACTCTCGGCCCGCGCTGGCCCCGCCCTTCATCATCATCTCGCACGTGCGCCTCCTCTTCCGTCGATTGCGCAGGCACAGGGCCAGACTGCCGGCCTCCCCCAACCTCCAGCATTTCCGGGTCCACCTCCCTAAGGAAGCCGAGAGGAAGCTGCTGACCTGGGAATCGGTGCGGAAGGAGAATTTCCTGTTGGCGCGCGCTAGGGACAAGCGGGAGAGTGACTCAGAGCGTCTCAAGCGCACGTCTCAGAAGGTGGACATGGCCTTGAAGCAGCTGAGACAGATCCGCGAGTACGAGCAGCGCCTGAAAGGGGTGGAACAGGAGGTCCAGCACTGCAGCCGCGTCCTGGGCTGGGTGGCCGAGGCCCTGAGCCGCTCTACGTTGCTTCCCCCAGGGGGGCCTCCACCCCCGACCCCGCCTGGGCCCAAAGACTGAGCCCTGACGGCGGACTTCAAGGAGTAGCACCATGGGCGGTTTTTGCCCCCTGGACCCCAGTAGGTGGTGGCCCTGTCTTGAGGTGGGCCCTGTGCCATGGACTGGATCGCCGTGGGGACCACTGCAGGAGTCTCACCCGTTCGGACCACAGCAGGCCGGGCCCCGCCCAGAGCCAGCCCCACTGTGGGAGGTGCCGCCTCTGGAGGCCAGGCTGGCCCCTCCGCAGGCCCTGCCCCGGCCCGCGGGGCTGGAGAAGGCGTCAGGTCCTGGGGGCACAGGGACCACAGACCGCACTCAGCTCCCCACACTGGGGAAATAAAGCCACGTGAGCGTC +>MT775861.1 Lolium arundinaceum CDF1 (CDF1) mRNA, complete cds +ATGGGGCAGTACAGGTCGGCGGCCGGAGGAGGAGGAGACTGCCAGATCAAGCTGTTCGGGAAGACCATCCCCGTGCCGGACGCCAGCGCCGGTGCCGACGACAAGCAGAACCTTCAGCACAGCAGCAGCAGCATGATAGAACCAAGAGTAAAAGAAATCGTCCCTCAGGACTCCACGGATTCGCCTCCACAGCCCGAGGTTGTGGACATGGAGGACCCATCTGCTGTCAAGAACTCGTCAGAAGATCAGCAGGAGGAACAGGGTGACACGGCCAATCAGAAGGAGAAGCTCAAGAAGCCTGACAAGATCCTGCCCTGCCCCCGGTGTAGCAGCATGGACACCAAGTTCTGCTACTACAACAACTACAATATCAACCAGCCGCGGCACTTCTGCAAGAATTGCCAGAGGTACTGGACGGCAGGTGGTGCCATGCGCAACGTGCCCGTGGGTGCAGGCCGTCGCAAGAGCAAGAGTATAACGGCCGCTTCCCACTTCCTTCAGAGGATCAGGGCCGCTATGCCCGGTGATCCTCTCTGCACCCCAGTCAAGACCAACGGCACGGTGCTCAGCTTCGGGTCCAGCACATCCACCTTAGACCACACAGAACAAATGAAGCACATCAAGGAGCTCATCCCAATAACCCGGATCGAGAACACCGATGACCCATCGGTTGGGTCTTGTGCTGATGGATGGGCCAAGGCAGAAGAGTCAAACCAAATGAATTCAAGGGAGAGAGTTGCAGCAGATGAACCCGCAAACGTTGTGCAGCATCCATGCATGAACGGGGGAACCATGTGGCCATTCGGTTACGCACCATCACCTGCCTATTTCACCTCAAACGTAGCAATTCCATTCTATCCAGCACCTGCTGCTTACTGGGGCTGCATGGTTCCGGGAGCCTGGAACACTCCATGGCAGCCACAGTCTCAATCTCAATCTGGCTCATCACCTAGTGCTGCTTCTCCAGTATCAACAGTGTCGAGCTGCTTCCAGTCACGAAAGCACCCTAGAGATGGAGATGAGGAAAGAAATGCCAACGGTAATGGCAAGGTGTGGGTGCCGAAGACGATCCGGATTGATGACGTAGACGAGGTGGCCAGGAGTTCTATCTGGTCGCTTATTGGGATCAAGGGCGACAAGGTGGGGACAGATGATTCCAGAGGGTGTAAGCTTGCAAGGGTTTTTGATCCAAAGGATGCGGCAAAGACGACAACTCACAGAGTTATCAATAGCTCGCCGTTCTTGAAGGGGAACCCAGCTGCACTATCGCGATCAGTGACCTTTCAAGAGAGATCTTGA +>XM_033534398.1 Aaosphaeria arxii CBS 175.79 glycoside hydrolase family 5 protein (BU24DRAFT_56693), mRNA +ATATACACTACGCTATTACACTACGAGCCGCCGCCGCCGTTATGGTTTGTTCGCTCGCCACAGCTCCCTCCGTGTCGAAAAGGGTAATGGTTTGATTTACTTCGAGATGGAATTGAATTTCGAGGACTTTATATTCGAGGCTTTTGCCTGCAATTTTCGAGTTTGATTTCTGTAGCAATCTCAATTGTCAATTACTGAGGTCGAAGAATCATGCTGTTTGATCTGCCAACTTTCATCTCTTTGGCCCTTGTGGCAAGCCAGGGTACGTCGGCTGCTGCTGTCATCGGCAAGAGACAGCAATCGTCAAGTGGATTCGTCACTACGGATGGAAACAAGTTCTTGCTTGATGGGAAGGACTTCTACTTCGCCGGTAGCAATGCCTACTATTTCCCTTTCAACGACAAGGCAGAAGACGTTGAAGCCGGCCTCACTGCCGCAAAGGAAGCAGGTCTGAGTGTATTCAGAACTTGGGGATTCAACGATAAGAACAAGACTTATGTCCCAGGTGGTTTGCCCCAGTATGGAGGCGAAGGTGCGGGAGATACCTCGAATGTGTTGCAGCTGTGGGAGAATGGCACTTCGACTATCAACCTCAAGCCATTTGACAAAGTTGTTGCTGCAGCCGAGAAGACTGGCATCAAGCTTGTCGTTGCTCTGACCAACAACTGGGCGGACTACGGTGGTATGGATGTTTACACCGTACAACTAGGTGGCAGATATCACGATGATTTCTACCGCCTACCGGCGATCAAGACCGCATTCAAGAGATACGTCAAGGAGATCGTAACCCGCTACTCCAACTCCAGCGCGATCATGGCCTGGGAACTCGGCAACGAGCCCCGCTGCGGCGCCGACGGCACGCGCAACCTCCCGCGCTCCGACGACTGCAAGCCCGAGCTCCTGACCGCCTGGACGGACGAAATGAGCACGTACATCAAGAGCCTCGACAAGAACCACCTCGTGACCTGGGGCGGCGAGGGCGGCTTCAACATCCAAGGCCACGAGGACGGGTTCTACAACGGCTGGGACGGCGGCGACTTCGACGTCGAGCTCGCGCTCGAGAACATCGACTTCGGCACTTTCCATTCGTATCCGGATTGGTGGTCGAAGACGGTGGAGTGGACGGATCAGTGGATCAAGGACCACGCTGCGTCGGGTCGAAAGGTCGGAAAGCCTGTCGTTCACGAAGAATACGGATGGCTCACCGACGACAAGCGCCAGGAATACCTCGGCAAGACGTCCAACATCACTCGCATCGAGGCGCTCGGCCTCTGGCAAGCAACCTCCATCGCCGAGAAGATGCCAGACATGTACTGGCAGTTCGGCTTCTCCAACTACTCGTACGGAAGGAATCACGACGATGGGTTCACCATCTTCCTTGACGACGCGGAGGCTCAGACTTTGATCTACGACCATGCTAAGAAGGTTAATGCTTTGAATGGGAACTCGACGCTGCGTAGGTAGGACGTT +>XM_050200589.1 PREDICTED: Aphis gossypii uncharacterized LOC114125601 (LOC114125601), transcript variant X2, mRNA +TACATTTTAGTGTTATTATCTATATCATTTTACATAATACTTATAACAATTATATTTATATAATAGGTATGATTATATTATACATATTATTTTATGTTAATCTATGATTCATCAGCAGAATAGTTAAAATAAACACTAAATGGCCACGATAAGACAACAAATCAAACGGAACACGAGAATACACAAGAACGTCAAGAGCCTAAACTCGAAGGCTAACAGTTTGGTTCTTATTATGTAATGATTTATAGGTAGTTGTTCATATTATAATTCGCATCATTTGCCATTTGTATAAAAAACGATTCGTTGTAACCCTTACATTATGGATTTCGAAAGTGAATTTTTGAAGACTTATAGAATTTTGAAATGGGATGAGTTCACTGTGCTGAATAATGACCGTATATCAATCAACGAGAAAATCACTAACAAGGTGATAACTAAACATGAGTTGTTACTGCAGTTTAAAGCAGAGCTGAGTTTGCTTAATGCGTGTAAACACAAAATCAAAGACGAGTTGGAACAAGGTTTAGATGTTATTGATACTCAAGTACTTGTCCTCCTAAGCAAACGTGTTATTGAATTGTTTGATCATATGCATGTTCTGTTTTCTATTGATGAGAAGCTGTTATTTTATTTTATCAACTTTTGTCAAGACAATGTAAGCTACATACATGTAGACCAGCTAGATATTTTATTAGATGCTGTTTTGTGTACAGAAAATAATCAAAAGATTTGGATACGATTATTAAAGCTTTATTTGGAATTAAATAGTTTTGATAAATTGATGACTGTTTTTCAAGAAGGTGTTCGTTCATTAAAAAAAAATTCACTACCTTTATGGAAGATTATAATTCGATTTATGCAAATTAGGCGTCCTGATATGTACAAAGACATAGATGCAACTCGTAACCTGTTCAATGAACTAAAAAAGTTAAAGCCACCATGTTATAAATTGTATTTAATAATGATGGCTATTGAATCAGAGACATCAGATTTTGAATTACTGACTGTTAGAAAATTGTATGATGAAGCTTGCATTTTATTTGGCACAGATAACATTGAAGTATGGCTTGATTATATTCGTTTTGAACAGACTGATGGCTCCCCAAAATTAATGGAAAGTATTTATACTAGAGGTTTATGGAAACTGGAACCGAATTTAAAAAATACTTTCATAGAAGAGTATAATAATATTAAACGTGAATTTATGAATAGTTTAGGAAAAGAAGTTATAGTCATTGATGATTGAAATATATATTATATATTATAAACAAAAAATGGCGAATTTATTTAGAGATCTCCTTATTTATTTAATTTTTAAATTAATATTATAAGTGGGTCACTTAATAATATTAATACATTTGTATACTTTGGTTTTATTTGGTCATATAAAACAGTTTATTGTATTAGGCAAACAGTGTAGTACAGTGAAACTTCTGTTAATAGTTTACTTTGAAAGACTTCTAAATAAATAAATATGTATAATATGTATGTACAACATCACTTCTGCAAAGTTGCATTTTTTTCTGTTTTCTATAGTTGAACAGTACAAAAGTCTCACTGTACCATTTAGACGTCACAGTTAATGACACAATCTTAAATTTAACAATAGAAGGTTAATGGTATTTTTTTCTTTTATAATGTGTGTAATTGAATAATGTTTTATGTTACTTAATATTTTAAGCACTATTATATTTATAAATATATCATTTTATTTTATTTACATTGTCATAATTGTAATTTGTGCAATACCTATTAAAATAGACGGTTTGATGATAATAAATTATAATTTTTTACCTAA +>XM_026522476.1 PREDICTED: Papaver somniferum putative F-box protein At1g52490 (LOC113272669), mRNA +ATGGAGAAGAAGTTTCCTAGTGACATAATGCTAGATATAGTATCTCCCTTACGGCACGAAACCATAATACATTGCAAACTAGTTTGCAAACCCTGGCGAGATATACTAAACAATATCAAGGTAGGTGTCCTTTTTAGGTTTGGGAAACCTGCTTTCAATTTCTGTTATAGAGGAGAGCAATACGATGATATTGATATGCATGAGAATTACTCTTACACGACACTGGTGGAAATCGATAAGCATCGGCCTGTCGAGCTAGAACCCTTGTCTGACATGGTTGGTTCATGTAATGGTTTGGTTTGTTTTTCTGTAAGGCGCAAGTTCACTGTTGCGTATGATCCCATCTACATCTGTAATCCCGTCACAGAGGAATATGTATATCTTCCAACATTCAACTATGATGAACCATATGATGATCTCCGGGTAGCTGGTTCTTTTGATTGTGGTTTTGGTTATCATCGTTTCATGGATGAGTACAAAGTCGTTAGAATCCACGGGGCTCTGAGAGATTTTAGTAAACGCTCGCAGAGCCGGAAAGTTGAAGTATACACTTTGGGTAGTGGTCATGGGTGGAGAGATAAAGGAAGCATCGATCACTTATTAGTTTGGGACCATGGAGTTTGTGCAAATGGAGCCATTCATTGGGTAGAGTATCGGAAAAATAAAATTGTGGCTTTCGATTGTAGCAAATGA +>XR_001996655.2 PREDICTED: Juglans regia pentatricopeptide repeat-containing protein At5g61990, mitochondrial (LOC108994206), transcript variant X3, misc_RNA +ACCATCTCTGCTCTGCCTCTCGAGTCCGAGTCCCCGCAGCCGTCTCTCACGCCGAGCCCCTCTCTCACGCCGTCAACAGCCCCTCGCCGTCGACACTGTTATTCCGTTCTGTTCTCCTCCGCTTCCAGTTGTTCCCGAGGCTACAGAATCACAGATATTGTTTTCCCCTCTCTCGGCGAGCTAATCGGTCAGGAATAAAATGGGTCTACTTTCTCAGAGAAACCTCCTTGCATTTGCACTCCGAAATCGAAATGTTGTCGCAGAAGCACAACCATCAAGACTTCTTTTTGTTTATGCCAAATCCTTCAGCTTTTGCACCTCGCAGACTTCAAAACAGAATGAAGAGCTCACAATCGAAGAAATCTCCGCCTTTCTCAAGCAAAGCAACTGGCAGTACCTCATGGAATCGTCAAATATACCCAAGAAGCTGAACCCAGAGGTGGTTCGGTCTGTTCTTCAACATAACTGGGTGAGTGACCCCAAACGCCTCCTTCATTTTTTTGATTGGTCCGCTTCTTTGATGGGCGTTCCTCAAAATCAGTATTCTTTCTCGATTCTTGCAATTGCTCTATGTAATTCGAGGCTTTTCGCCCATGCTAATGGCGTCTTAGAGCGAATGGTGGGAACCCGGAAGCCGCCGTTGGAAATTCTTGATTCCATTGTTACTTTCTTTGTAGAATGTGGTGGGTCTAATGTGGTAGTTTTTGAGATTTTGGTGAATGCTTATAGGAAAGTGGGGATGTTGAATGAGGCTGCTAGCGTGTTTTTGGGAATTAAAAATGATGGGTTTTTGCCTACTTTGGTGTTTTGTAATTCTTTGTTGAAGGACTTGGCAAAGTGTAATAGGATGGAGTTGTTTTGGAAGGTTTATGATCGGATGTTAGAGGCTAAGATGAGTCCGGATGTTTATACTTATTCTACTGTGATAAATGCGCATTGTAAGGTTGGGAATGTTGAAGAGGGTAGGAGGGTGCTATTTGGTATGGAGGAGAAGGGCTGTAGTCCTAATTTGGTTACCTACAATGTGGTGATTGGCGGATTGTGCAAACATGGGGCTGTTGATGAGGCTCTTGAGTTGAAGAAGTTCATGGCTGGGAAGGGGTTGATCCCAGATGCCTATACTTACTCTATGCTTGTTGATGGGTTTTGCAAACAGAAAAGGTCAGAAGAAGCAAAGTCGATATTGGAAGAGATGTTTGGTATGGGTTTACGTCCTGATCACATTACCTACACTGCTTTGGTTGATGGGTTCATGAAACAAGGTAAGGTAGAAGATGCCTTGAGAATCAAAGATGAGATGGTTGCCCGTGGAGTAAGCTTAACTTTGGTAACATATAATGTACTTGTCGGTGGGTTTTGTAAGGTTGGTGAGATGACGAAGGCCAAAGCTCTCATCAATGAGATGAGTGTGATGGGAATAAAACCAGATAGTTATACTTTTAACTCTTTAATTAGTGGTTATTACAAAAAGAAAAATATGGTTGAGGCTTATCAACTTCTTCTTGAGATGAAGAAGTGGAACTTGGCACCCACAATATTCACTTATGGTGTGATAATAAATGGCCTATGCCATTGTGGAGATCTGCAAGCAGCTAATGGTGTTTTGGAGCAGATGATTGCAGGGGGTTTGAAACCAAATGCTGTTCTATTCTCAACTCTAATCAAAGGTCATGTACAACAAAGTAGATTTGACGAGGCAATAACGATATTAAAAGGAATGGAGGAAAAGGGCGTTCTGCCTGACATGTTTTGTTATAATTCTCTTATAATTGGCCTCTGCAAGGCCAAAAAAATGAAAGATGCTGAGAATTTCTTGGTTGAAATGATCGAGAGGGGTCTTAAACCTAATGAATATACATATGGGACTTTCATCGATGGATATGCTAAGGCGGGGAATATGCAATTAGCATACGGTTATTTCATAGAAATGCTAGGTTGGGGTATAGCGCCCAATGGTTTGATCTGCACGGCCTTGATTGATGGGCACTTTAAAGATGGTAACGTAACTGGAGCTCTTTCTGCATTTCAATTATTACTTGGACAAAGGGTCATCCCAGATATCCAGACTTATAGTGTTCTCATCCATGGTCTTTCTATGAATGGAAAAATTGAGGAAGCAATGGAGGTTTTATCTGAAGTCCTTGACAAGGGTCTGGTGCCAGATGTTTTTACCTACACCTCTCTCATTTCTGGATCCTGTAAGCAAGGTGATTTAGACAGAGCTTTTCAACTCTATGATGAGATGTGCCAGAAAGGCATCACTCCAAACATTGTTACTTATAACTCCTTGATCAATGGACTTTGCAAGTCGGGTGACATTGAGAGAGCTAGGGAACTGTTTGATGGAATCTCAAGAAAGGGTTTGGCTAAGAATGGTGTGACCTATGCTACGATTATAGATGGATACTGCAAATCTGGAAATTTAGTTGAGGCATTTCAATTAATGGATGAGATGCCATCTATGGGGGTTCCACCTGATTGTTTCATCTATTGTGCCCTTGTTGATGGGTGCTGCAAAGCAGGAAACATGGAGAAGGCCCTTTCCTTATTTCATGAGATGGTGCAGAAGGGCTTTGCTTCCACACCTTCTTTTAATGCTTTGATTGATGGCTTCTCCAAGTCCGGGAAATTGGATGAAGCTAACCAATTGTTTGAAGACATTGTTGATAAGCATGTGACCCCAGATGATGTGACCTACACAATTCTGATCAATTCGCACTGCAAGGCTGGATTAATGAAGGAAGCTGAGAAGCTCTTTCTGGAGATCAAAAAAAGAAATCTCAAGCCAAATATTTTAACTTACACTGCACTCCTGCATGGGTACAACAACATAGGGAGCAGAGATAAGATGTGTGCTCTTTTCGATGAAATGGTGGCAGCGGGGATTGACCCTGATGAAGAAACATATGGCATGCTCGAGAGAATTCCGTTGATATCTGAGGCTGCAAATACAGAGAGGCCATCTTCAATCACAACTAGCCTTTTCATTGGTGGGGCGCTGGCTGCAAGATCTGATATCTGACAATGAAGATACAAATATTAGTAGTATCTTTGAAGAAGCTTCTGATTCTATTGATCATGTTGAACAAATAGGTAGAAGTGCCACCTTGGTGATGGCGTACTTAATGCTCAGGAAGAACCTAACTCTACTAAAACGAGTTCACCACTGAGCCCAGCGCAATGATGGCTTTGCTAGGATCCTTTTGGATCTGGATAGGAAATTACATGGGACACAGCATCCATGGAATGGCGACAACGAAAGCCAATGATGAAAGTTTGCCCCATTTGTGGGAAGAAGGCCGGTCTGAGCAGCAGTTCACTTAAGCTTCATTCGCAGAAATCACACAAGAATCTTTAATCAGGAAGTGTGGACAGTGGCATGACCATGGAAATACAAAAGTCTTTGACAGCACTCAAACGGGGTCTGCCCGAGTCGAAACTGCTCCCTCGCCTGCGTCGATTGTGCTCTGCCCACCGCCTCCAGCGACACCATCTCTTTCCAGCGACACCGAGGCCGTCTGCACAGCTTCGCCACACCCCTTGTCGCCCAGCTTTCCTCCCTCCCCATTGCCAGCCCATCTCCTTTTCTTCCTCTCCCCACCCCTCGCATCTCCCCCCACCCGCGCCAGTGTACCGGATTCACTAAACGCCCAGCCCTCGTCCCACAGCTCTCCTCCCTCCCTGTTGCCCTCATCGTCCCAGAATTGATATCAACGATCCCTAGAGTCCCTGCTTCAGAATCGACATCAATGAATCTACATCTTGGCAGCCAGGTCCGCTTTATCTGAAACTCCTCACAAAGCATCACCAGCAACTCCAAGAGTTGCTAGACCAAGCAGGGGAGTAGCTAAATCATAATCTGATTCACCCTCTCCTTTGCAAAGTTCACGCCTTTCAGTTGATCGGTCTCCACGATCAGTTCCCTTGAAGCCCACCATAAGATCACCAAAACTTGCTACCCCACCTGAAGTCACTGCAATTGAAATTAATAACCTTTTTCGCGAAGACCTCTTCCTTGCCAAGGTTGGGATGGAGTGCGGCATCGGGATTTTGCAACGTCATTTTCAAGATTGTAAGGGAATCACAACATGAAGCTTTTGCAGCTCTTCATCACAGCATCAATTCCAGTCTTGAAACTGCTCTTGATTTCTGGACTTAGGGTTTATGCCAATCAGAAGAAGATAAACTAATAGAAAGAGAGAATGATCTTCACAAGCTTGAGGACGAACTTTGAAAGCGGATAGTAGAGAATAAATGTGCACATATATTATTGTGTTTGTACTAAGTTTTATTTATTGTAATGGTTTCTAGTTGGTTCAGACTATTTCTGGTTGGTTTTATCATCAATGTGTACTTTATCTATTGCTGAAGATGAATTTAGTTCCTTTTTTTCTCTC +>HQ320065.1 Uncultured bacterium clone RMAM1139 16S ribosomal RNA gene, partial sequence +CAGTCGAGGGGCAGCGGGGGTAGCAATACCCGCCGGCGACCGGCGCACGGGTGAGTAACGCGTATGCAACTTACCTATCAGAGGGGGATAACCCGGCGAAAGTCGGACTAATACCGCATGAAGCAGGGGCCCCGCATGGGGATATTTGCTAAAGATTCATCGCTGATAGATAGGCATGCGTTCCATTAGGCAGTTGGCGGGGTAACGGCCCACCAAACCGACGATGGATAGGGGTTCTGAGAGGAAGGTCCCCCACATTGGTACTGAGACACGGACCAAACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGCGAGCCTGAACCAGCCAAGTCGCGTGAGGGATGAAGGTTCTATGGATCGTAAACCTCTTTTATAAGGGAATAAAGTGCGGGACGTGTCCTGTTTTGTATGTACCTTATGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCTGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGCCTTTTAAGTCAGCGGTGAAAGTCTGTGGCTCAACCATAGAATTGCCGTTGAAACTGGGGGGCTTGAGTATGTTTGAGGCAGGCGGAATGCGTGGTGTAGCGGTGAAATGCTTAGATATCACGCAGAACCCCGATTGCGAAGGCAGCCTGCCAAGCCATGACTGACGCTGATGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCAGTAAACGATGATCACTAGCTGTTTGCGATACACTGTAAGCGGCACAGCGAAAGCGTTAAGTGA +>XM_048817709.1 PREDICTED: Caretta caretta kinesin family member 19 (KIF19), transcript variant X2, mRNA +GTGCTACTGTGTCAACAGGAGCCTGCTGCGCTGCGGTTGTTGTGTACAGTTTAAAGATCTCCAGGGGAGCCGGCGAGATCCCGCAGGCAGCAAAAGCAGCTGGGCAGAGCTGGGCTGGCCCTCCTGAGTACAGCCCGGTCAGCTGGCGTGAGAGGCAGCCGGGGCTAGAGCTCCCCGAAGGGAGCAGGAATGCTGCACCCCAGCCCTTTGTGGCTCTGTAGCCTCCTGGGGGGCCGAGAGGACAAAAGGCCCTGAGCCCGTGGATGGGAAAGGAGCAGGCAGGGCTGGCGTCGTCCCTGCAGCCCGCCTCCCCCTTTTGTCTCTGGGAGGATTAGCCTAAGTCTCAGGTTGTTTAGGAAACAGCGGATGCAAGTGACAGGTCTGTGGAGGGGGGAGTGGCGGTTGCAGGGTCCTGAGAGCCATGCCTGTGGCAGCTGCTGCTGGCCCTCCCCTCTAGACCCTCTGTGCACCTGCCAGGATCATGAAGGAGGTGAAGGAGTCCAGAGACCAGCAACTCACGGTGGCCCTTCGGATCCGGCCGATCAGCATGGTGGAGCTGGAGGAAGGAGCTACTCTCATAGCTCATAAAGTGGATGAACAGGTAGCGGTGCTCATGGACCCCATGGAGGACCCCGAGGACATCCTGCGAGCCAACCGCTCCCGCGAGAAATCCTATGTCTTCGACGTGGCCTTTGACTTCACGGCAACTCAGGAGATGGTCTATCGCGCCACCACCAAGGGCCTGATCGAAGGTGTCATCTCTGGGTACAACGCAACCGTCTTCGCCTACGGCCCCACCGGCTGCGGGAAGACGTACACCATGCTGGGCACAGACCGTGAGCCCGGCATCTACGCACGCACCCTCCATGACCTCTTCAGAGCCATTGAGGAGACCAGCGATGACATGGAGTATGAGGTGTCGATGTCCTACCTCGAGATCTACAACGAGATGATCCGGGACCTGCTCAACCCGTCGCTGGGCTTCCTGGAGCTGCGGGAGGACGCCAAGGGAGTGATCCAGGTGGCGGGGATCACGGAAGTCTCCACCATCAACGCCAAGGAGGTCATGCAGCTGCTGCTGAAGGGGAACAAGCAGAGGATGCAGGAGCCCACGGCCGCCAACCAGACGTCGTCGCGGTCCCACGCTGTGCTGCAGGTCACCGTCCGCCAGAAGCCCCGCATCAGGAACATCATGCAGGAGGTGCGGGTGGGGCGGCTCTTCATGATCGACCTGGCTGGCTCCGAGAGGGCATCTCAGACCCAGAACCGTGGGCAGAGGATGAAGGAGGGAGCCCACATCAACCGCTCGCTGCTGGCCCTGGGGAACTGCATCAATGCCCTGAGCGACAAGGGGGCCCCCAAGTACGTCAACTACCGTGACAGCAAGCTCACCCGCCTCCTGAAGGACTCCCTCGGGGGCAACAGCCGCACAGTCATGATCGCCCACATCAGCCCTGCCAGCAGCGCCTTCGAGGAGTCCCGCAGCACCCTCACCTACGCCGACCGCGCCAAGAGCATCAAAACCACGGTGAAGCGGAACCTGCTCAATGTCTCATACCACATTGCCCAGTACACCAGCATCATCTCGGACCTGCGCAGCGAGATCCAACGCCTCAAGTGCAAGATCGACGCGCCGGGGCCGCGCCCGGCCCGGGGCGAGCGGGGTGACATCCGCCACATCCAAGCCGAGGTGCAGCTCCTCAGCTCCCTCTGCGACCGGCAGGAGATGGACCAGCTGCGGGAACAGCTGATCGGTGCCTTCCAGGAGCAGATGGACCTGCGGCGCCAGCTGATGGAGCTGGAGAACAGCTACATGGAGATCCAGATCGAGAGCACCCGGCACCTGCTGACCATTGCGGACTGGGACCAGGAGAAGAGGCACCGGGCGCAGAAGTGCAGGGAGGAGCTGAGGAAGGAAGAGAGCGAGAAGGATTCGGACACCGGGGATGAGCAGCCGGACGCGCCGGAGCCACAGGAAGTGAGCTCGGCCAGGGAGAACATCGCCGCCCTCATGGGGGAGCAGAAGAAGCTGCGCAAGCAAAAGGCGGAGCTGGAGAAGCGGTTCAAGGAGATCCGCCAGCGGGGGCGGCGGCTGGAGGAGGTCCTGCCTCGGCGCATCAGCTCGGAGGAGCAGCGCGAGGTGCTGAGCCTGCTCTGCAAGGTGCACGAGCTGGAGCTGGAGAACACAGAGATGCAGTCCAGCGCCCTGCTGAAGGACGGCGTCATCCGCCACAAGAACTACGTGGTCCGGCGCTTCGAGCAGCACCGCAGCCTCTGTGGCCGCATCATCCAGCAGCAGAGGCAGATCATCCACGAATATCACCTCTCAGTCCCGCACCACCTGGAGGAGCTGTATGAGATCTACCTGCGGGAGCTGGAGGAGGGCAGCCTGGACCGGGTTGCCAGCCTGGACCGCGTGGCCGCCAAAGCCCTGAAGGATACGTCTCTGCCCAAGATCCCCCACCTCCCGGCTGCTGAGAGCGCCCTGGACTCCGACCAGGAGAGCGTGAGGACGCTGGGCTCAGAGCACCAGCCACTGCTGCGGCGTGACTCCCGCAGGCAGGCCCTGCCGCCCCTCGTGCTGGATGCAGAGAGCGACCCGGCCCAGGTGTTCAGGACCAGCCCTCGGGTGCGGCAGATCAAGAGTTCGGCTGTGCTGACCCCGCCCCCCATCCACATGAACGGCATGGTGACCCAAGAGTACCTGCACCGGGGGAGCCTGGCCAGCCTGGAGAGCCCCCCCAACTCCTCCCCGGACAGCAGCGAGAACTGCTCGGACGTCGCTCTGACGCGCAGAGAGCGCAGGGAGATCCTGAGCAGCACCAAGAACATCGCGGTGAAGGCTGCCCGGCGCCGCTCCAGGGTGCTGGAGTCCGACCGGCTGCAGCTGCTGGAGCCCATGAAGGAGCGGAGCAGCCTGTCGCTGCACTCCCTGAGCGAGAGCGAAGACCCCCTCTCCCCAGAGACCCCCGCCTCCCGGGGCCCGCCGTGCCCCGGCCTGCAGCATGCCGCCAGCGAGGACAACCTGTCCAGCAGCACCGGGGAGACGGCCTCGCGGGCCGAGGGCCCCTGCCCCAGCCACTCCCCCGGGCCCTGGCTCCGGGGGCACAAGGAGGCTGGCAAGAAGCTGGAGAAGAGGGAGGAGTCGCTGGACGGCAGAAGGCGGAAACGACGGTCCAGGTCCTTCGAAGTCACCGGCCACGGGGTCTGGGGGACCCGGCATCTCTCCCGCTCCCCCTCCCTCCTCCCGGCAACTTGAAGAAAGGCCCCCAGCCCAGCCAGCACCCCCGCCTGAGCTACATCACGCTGAACGGCACCAACGCTTACGCCAAGGACGGCAGGAGCCGGC +>BC147860.1 Bos taurus hypothetical protein LOC785621, mRNA (cDNA clone IMAGE:8182959), partial cds +GAGTGAGAGGTAAAGCATCTCAGACACCAGAGTTAGGCATTTTGTTAAGACAGCTTCTCTTCCTAACAACCTCCATCAGAAGAAATATAAGTCCTTTGTCATTCTTATTCAGAGAAACCTGGGTTCAAGTCAGCCAGTCTTCAGACTTACTTGTGGGGAACCTGTTAGAAAGGAGCTCACTGCCGCTTCACTGCTCTACTATGTCCTTGGTGTTCACCTTGATGCTTGAGATGCTCCTGTTTCTGACAGGAGCTGGAGCCCAGTCAGTGACCCAGCCTGATGACCACATTGCTGTCTCTGAAGGAGCCCGTCTGGAGCTGAAGTGCAACTACTCATCTTCTGTTTCACCGTATCTCTTCTGGTACATACAGTACCCCAACCAAGGACTCCAGCTTCTCCTGAAGTACGTGTCTGGAGACAATCTTGTTTCAGGCATCAAAGGTTTTGAGGCTGAATTTAGGAACAGTGAGACGTCTTTCCACCTGAGGAAAATACCAGCTCATTGGAAAGACTCGGCCAAGTACTTCTGTGCTCTGAGCCCGATGGATGGCAACTATCAGTGGATCTGGGGCTCTGGGACCAAACTAATTATAAAGCCAGAAGTCAAGGACCCCAACCCCACTGTGTACCAGCTGAGAAGCCCCCAATCCAGTGACACTTCTGTCTGCCTATTCACCGATTTTGATTCAAATCAAGTCAACATGGAAAAAATCATGGGGTCCGAGGGGAGCACGGTGCACAAAACAAACAGCACCGTGCTCAACATGGAGATCCTGGGATCCAAGAGCAACGGGATAGTGACTTGGGGAAACACCAGCGATGCTGGATGCGAATACACCTTCAACGAGACCATTCCCTTCGCCTCCAGCTTGGAAATCTCCTGTAATGCCAAGCTGGTAGAGAAAAGCTTTGAAACAGATATAAACCTAAACTCCCAAAACCTGTCAGTGATAGTGTTCCGCATCCTCCTCCTGAAGGTGGTCGGGTTTAATCTGCTCATGACGCTGCGGCTCTGGTCCAGTTGAGGTCACCGACAACCTGAGAGCCCCGTGCTCCCTCGCCCCTTGCTCCTCGTCGCCCTTCCTCTCCCTCTTCAAGCAGAGAGGCGCACTCTCTGCCCCCATGGATGAGAAGGCTCCCTCCTCCTCTCTGGCCTGGCTGGCCATAACACCAACTGGATCCTCCAGATACTGGTGATCAAGATGCTGACAAGCTGCCCAGCACGGCTGCCACCCACTCTCTTCCTCACTGCTGCTTGTCACTGCCTGGCATTCTTGGCAAAGTCGGGGGGCTGCTGCAGCCTCTCCTGGCTGTGGGGACACTCCCTCCCCACCCCCACCCCCCAGAGACTGCCTCTGATGTCCCACTGGATGGTGGATCCCCAGTGGGTTCTCCTGGGCTCTAGCTCCTGGAGAATGTTGTGTGTTGTTTATATTTTTTACATAGTGTTCATAAAAAAATATATATCACCCTTTTCCCCAACATGTGGGGAAAAATTATCTTTTCACGATCTAGGCCCTGCTCTTCTGTGTATCCGAGCCACATTGTATATTCTGCTGCCACGGCTTCAATAAAAGCGATTTGGAAGAGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA +>XR_006744459.1 PREDICTED: Melitaea cinxia uncharacterized LOC123662241 (LOC123662241), ncRNA +TTTTTGTATGACGCGAACTATAACGGTCGACTTTTACCTATACACAAGTATTAAGTTGCTTACCGTAGGAAGAGACGACCGAGTGTGTAT +>XM_022921984.1 PREDICTED: Stylophora pistillata protein ZINC INDUCED FACILITATOR-LIKE 1-like (LOC111319159), mRNA +TGTACCTAGTTGTTTTTATTTTGCATCGGCAGCAGTTGTGATTAATCTTAGGAAGGAAGTTGTTGTTGTACCCACAATGAATTTCTTAATGTCTTTCTTGCGTGGAATATTTTATCCTCCGGGAACAAATTCTTTGAATTGGAAGCTCTTCTTCATCGTTTTCCTCTCTACATTGTGTTCTGCAATGTCCATCACGATATTGTTTCCATTTTTACCAGCTATGGTGAAGAGTTTTGGGATCTCAGATGAAGACACAGGATATTTTGCGGGTCTTATAGCATCTTCAATGTTTATTGGACGCACAGCAGCTTGGTAAGTGTGGAGTGAATCTCTATTTCAATCAA +>XR_008133656.1 PREDICTED: Oncorhynchus keta uncharacterized LOC118373694 (LOC118373694), ncRNA +TGCCCCTGAACTAGACAGACTGGAACAACCTCCGTGATTTACAAGAAATCACCCGACTGTCTAGAAATGGAAAACCTTCAAACTAAGGCTGACCTATCACTTCATGAAGTACAACTTGGCCCCACATCACTTTAAAACATCAGCTGTCAATCCTCCCGCAGACATACAACTCCAGATACCCAACTCAACAGGCAGTATACATCAATGATGTCGCTCTTGCTGCTGGTGATTCTCTGATCCACCTCTACGCAGACGACACCATTCTGTATACTTCTGGCCTGATGCTGAATGAAGAGCTCTTCACTAGATACCAACACACTCAAAGGCGATTTTCTGAAAACCGCCGGAAAACGTGTGGCGAGACCCCATTTGCTCCAGTACTTTTTGATCTGCTGCAGCGCTGCTACACCACTTTCAGAGCAGCAGCACCAACCAAGACACTTCTCAGCACATTTTTGCATTCCAGTTCAACATTTACCTGCTCTGTTGCAGTCTATCGTTCTACTTCTGTGGGTTTTATGGCGGACTACAACCCCAAAATGTGTGTTCCCGCCACCAACTTGATGGGGTTGAAAAAACAAGTACATGTTCAAAGGTGGAAGAGACCCTCCAGAGTTGCTGCAGTGTGTGTTCTACTGGCTGTGATCATAGGCCTGTGGGATTCCTATGCAACTGCAGAGAGAGACCAGCTACAAAAAAGTCTAAATACCTCAACCAGAGAGAGAGACCAGCTACAGAATAGTCTGAATACCATGACCACAGAGAGAGACCAGCTACAGAATAGTCTGAATACCATGACCACAGAGAGAGACCAGCTACAGAATAGGCTAAATACCATGACCACAGAGAGAGACCAGCTACGTAATAGTCTATTTTCCACGAACACAAAGAAAGACCAGCCACAAAATAGTCTAATTTCCACAACCACAGAGAGAGACCAGCTACAGAATAGTCTGAAAACCATG +>HM666087.1 Uncultured bacterium clone GB7N87003F9F57 small subunit ribosomal RNA gene, partial sequence +AGAGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCCCGTAGCAATACGGGAGCGGCAGACGGGATAGTAACACGTGGGAACGCGCCCTTCGGTTCGGAATAACTCAGGGAAACTTGAGCTAATACCGGATACGCCCTTACGGGGAAAGATTTATTGCCGAAGGAACGGCCCGCGTCCGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGATGACCAGCATCACTGGGACTGAGGCACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGGATGATGAAGGCCTTAGGGTTGTAAAGTCCTTTTAACGGGGAAGATAAGTGACGGTACCCGTAGAATAAGCCCCGGCTAACTTCGCGCCAGCAGCCGC +>XM_042080615.1 PREDICTED: Alosa sapidissima tensin 1a (tns1a), transcript variant X8, mRNA +TTCTTTCTTTCTTTCTGTCTGTCTCTCTCTCTCTCTCTCGCTCTCCCTCCCTCCTCTCCCTCTCCCCCTGTGAGTCGTGTCATGGATTTGCCTTGCCTGGAGAGGCAGCCTTTCGAAATACCAGGCGTTTTTGGGAATACTGCATCCGATGCGGAGATCCGCTGACTCCCTGGAGATGCCCTCCGTGTCCCTCGGACTTCCGGCAGCTTTGGCCGGCCGGGCCAGGACCTGGGTCTGTCTCTCCTGCATGTTCTGGCCAGATGAGTTTGAAGGGGTCCACTCCCATACCTTCCGTGTGAAGGCATTCAAGAAAGCCAAGTGCTGTGCAGTATGCAAGCAGGCTGTCACCAAGGAAGGCCTGGTCTGCAAAGCTTGCCGGTTATCATGTCATAAGAAGTGTGAAGTGAAGGTCTCCACTGCCTGCACGACTGCTGCCAACTATGAGCTGCCTCCCACTGCTGAACTTCCCCTGAAACATGTAGAGACTCCGGGATCCACCAAATCCACCAGAAGTATGGACTCTCGTCAGAGACCCTCACGGAGCCTGAGTATGATCCAGAACCTGGATGACACGGAGGTGGACCTGGTCTACATCACAGAGCGGATCATCTCACTGTCCTTCCCCACGGGCTCCGACGAGCACAGCTACACCTCCCACCTCAAGGACGTGGCCGCCATGATGAGGTCCAAGCACGGAGAGCACTACCTGGTTCTTAACTTGAGTGAACACCGAAATGACATCGTCAAGCTGAACCCAAAGGTCATGGACTTTGGCTGGCCCGATCAACATGCACCTGCCCTGGACAAGATCTGTAGCATCTGCAAGGCCATGGACACCTGGCTCAATGCAGACATACACAATGTAGTTGTCCTACACAACAAGGGCAATCGGGGTCGGACAGGGGTTGTGATCGCGGCCTACATGCACTACAGCAACATCTCTGCCAGTGCTGACCAGGCCCTGGACAGGTTCGCCATGAAGCGCTTTTATGAAGACAAAGCCCTGCCAGTGGGCCAGCCGTCCCAGAGGAGATATGTACAGTATTTCAGCGGACTTCTCTCTGGTCATATCAAGATCAACAACAAGCCTCTGTTCCTGCACCACGTCATCATGCACGGCATCCCCAACTTCGAGTCCAAAGGAGGTTGCAGGCCGTTTCTAAAGATCTATCAGGGGATGCAGCCAATTTATATGTCTGGGATATACAATGTTCAAGGTGACAGCTCCACAAGTATCTGCATAACCATAGAGCCTGGCCTTCTCTTGAAGGGAGACATCCTGCTGAAGTGCTACCACAAGCGCTTCAGGAGCCCGAGCAGGGACGTGATCTTCAGGGTGCAGTTCCACACGTGTGCTGTCCACGACCTCGCCGTGGTCTTCACCAAGAATGAGCTCGACGAGACATTCAAAGATGACAGATTTCCTGAGTATGGGAAGGTTGAGTTTATCTTCTCATTTGGACCAGAAAAGATAAAAGGGCTTGATCATCTGGAGAACGGTCCGAGTGTGTCAGTAGACTACAATACCCAGGACCCCCTGATCCGTTGGGACTCCTATGACAACTTCCACAAGCGCTGTGAAGATGCACCAGACGACGTAGTGCACACGCAGGGTCCAGTCGACGGCAGTCTCTACGCTAAGATCCGAAAGAAGGACTCCAACGAGGGCATTGTTTCCGTTAACGGCCTTCCGCCCTCCGAGCGTGCTCATCCTCCCCTCCAGCAGGCAGTCGGAGTAGCCAACCACGCGCTTCCTCTCCCTGTCGCCAACCACGCCCTCCCGGTCGCTGACCACGCGCTCTCTGTGAGCAGCGACTCGGGCAACTCCACCGCCTCCGTCAAGACCGACCGCACCGATGACCCGCAGTCCCAGCAGGGCGGCGCCGCCGGCGGAGGAAGTGGCAGCGGGGGGGCCTGCGTGAGCCAGCCGCCCGGCGCCGAACCGTCCCTGAGTCCGCGGGAGAAGCGCGAGCTCGAGCAGCTGCTCAGCGGTCTCGAGGGAGGAGGAGGAGCCCAGGGGGGCCGACAGGGGAGCCCAGCGGCCGTCGGGGGTATCCTCCACCTGGTGCCCGCGCAGGTGCACGTGAACGGGCGTGGCTTGATCCGCGCCAACACCGTCCCGGCAGCAGCATCCGCGCGCGCCGCAGACAGCCGGAGCGAAACCGAACGCGAGACTGATATCCTTGACGACGAGCTCCCAGAGGCTCCCAACAGCGCCGACAGCCTCGGGACGATCTCGTCTCTGGACGGACACGAGACGCCAGCCGCCGACAGCCAGGGACACAGCGACTACCAGACTCCCCAGCAGCAGCAGCAGCAGCAGCAGCAGCAACCGCCGTCTGACTCGACCACCGTGGACATCGAGGGACCGTCGGCTCTCCCAGATCTCCGGTCCAGCAGGAGAGACATGCCGGTGCACCAGGTGCACGGCTCGGCCTCCGCGCAGGAGCGTCTGATCGACTACAGCGACCAGAACGGGGCCATGTACCGCTCACAGTCCTACGGGGCTGCCCCAGCCATGGACCCAGGGGCAGCTGCCAGGCTTCTGCCCCAAGCGCCCGAAAGGAGCACGAGCAGCCGCGAGGCCGTCCAGCGCGGCCTCAACGCCTGGCACCAGTACGGCCTGGTGGACGACCCGTTCTTCGGGCCCATGTCGGGCCTGTCGCGCTTCCCCACGTCGCCGAGCGGCGCCTCGCAGAACGACGTGGAGCAGTCCATCGAGGCCCTCAACATGCTCATGATGGACCTTGAGCCCACGCAGACGCCTGTACCCAAGTCCCAGAGCGCCCCCCCGGGCGACAACCCGGCTACCTACCAGACGCCCTTCGCCCAGAACTACCCGAGGCCCTCGTACCAGGCGGACCAGGCCATCCACAGCTACTCGACGGGCTACCCGCCCTCCACCTCGGCCAGCTACGGCCAGTCCTCTCAGAGGTCCTCCCCGGCCTACCCGCCCATGTCGCCCTCCATGGAGCCCCACAGGGGGGCTTTCCACTCCCCCACCCACCCACAGGAGGCGTACATCCACCGGGGAGGTCCCGGGTCCCCGTCCCCCACCCTGCACCACCCGCAACCCCTGAAGCCCCAGAGCGCCTTCACCCCAGGGGGAGGCAGCTCGGTGTGCTACACCCCGGAGCTCCAGGGCATCTCCCCGTACCCCACCACCCAGATGAGCTACAGTGCCTCCTCCTCTCCCCTCCCGTCGGTTACCCCCGCCAGGGAGGCTGACCCCGAGGAGGAGAGCCTGAACCTGGAGGGGCTGGTGGCCCACCGCATAGCTGAGTACAACGCTCGCATCCGGGGCATCTCGGCGAGTATGAGCCCCCAGCCCCAGCCCCGCGAACGCCATCGCTCCTATTCTTTTTCTGGGTCAAGGTCACACACAGCAACCCCAGATGAGTCCGGTTCATCCATGCGTCGCCGCACGACCAGCGAGGGTCAGTACCACAACGGTCACGAGGATCGTCCAGCTCACGGGAATGCCTCCCGCACCCCTGTCTCGCCAGAGTTTGTTACTGTTATCGCCTCGAATCCAGGAGGCCGACCAAGGGAGGTTCACATGCACAGCTATCGGGAGGCGTTTGACGACACCCCAGACGGCAGCGGTGGCGCCCCCACCAGCCCAACCCCCAGCGCCGGTGGTCGCTCCCCGCCAGGCTTGGCCAAGACGCCTCTGTCAGCCCTGGGGCTGAAGGCGCAGAGCCCCAACGATGTTCACATGCAGCAGAGCAGCTCCGAGCCGCGAGGCTACATTGGGCCCGTGGCACACGTTGGAGGGAGGGGTCTCGGCATGTCCCCTAGCCACCAGCACCCCCTGTACCCGTCTGAAGCTATGGAGAGGGCGGCACCCCCTGCCCACGGCATCAACCCCCCGCTCTCACCCCTTGGCACCAGCCACCACCCTGAGGGACACTTCTCACATCCTGACGGCTCCATGCGAGTGGCCAGTCCCCCTGTCCCTGTGTCCAACGTGGGCTACCCGCCCAACACCACCGAGCTCACGCACCCCCACTTTTACCCCGACCCGCTGGGCTACCTGGATCCTGAAACGGCCACGGTCAACATCATGGGCGTCCATCGTGTGCCGGGCAGCCCCAACACGCTCCACCGCACCGTTGCCACCAACACCGCCCCCAGCCCCGTCCTCCAGCGCCGGCTAGCCAATCAGAGCCCAGTCACCGGGCACCGGGTCCCCCCAGCCAATGGCGGCGACCCCAACAGCCCTGTGCCCGCGCGCCACATGGGTGCCACCAAAGCGGTGCCCCAGAGCCCCACGATGGGCCGCCACACTCAGAGCCCGGGCAGCGCCGGAAGCCTGAGTCCGGAGAGGAGGCCCAGCAGGCAGGCCAGCCCCGACGAGAGGCCCGGCGGGCGCCAGTCCGGCGCCTCTGGAGGTCACCTGTATGGCGCGGAGCCAGGCTCCCAGCCCCTGCTGCCCGATAAGAGGCCCAGTGCCACCCCAACTGAGGGCTCCATGAACAGGAAGATGTCCTCGCCAGGGCCCAGCGGTGCCAGCACGCCCGTCATGCCCCCGCACGCAACGTCTGAACCTGCCATTGTCTCCATCTATGCTGATGGACCACCAGACATCAAGCTCAACGTAAAGTTTGTGCAGGACACATCCAAGTTCTGGTACAAGCCAGAGATCTCCCGGGAGCAAGCTATCTGCGTGCTGAAGGACAGAGAGCCTGGGGCGTTTGTTATCCGAGACAGCCACTCCTTCAAGGGGGCCTACGGCCTGGCCATGAAGGTGGCCTCACCTCCACCCACTGTGCAACAGAACAAGAAAGTGGGAGACATCACTAACGAGCTGGTTCGTCACTTCCTGATTGAGACTAGTGCTAAGGGTGTGAGGCTGAAGGGCTGTCCCAACGAGCCCTACTTTGGCTGTCTCTCTGCATTGGTGTACCAGCACTCCATGACACCCCTGGCTCTCCCATGCAAGCTAATGATCCCAACCCGAGACCCGAATGAGGAAGCCATTGAGTTAGCCACCCCAACAAGCTCCACCATTGACCTACTGAAGCAGGGTGCAGCCCCTGTCGGTCCCCTGACAGTTTGTCCCTCTTATGTCACCGTAGGGCCGAAGGTTCCTGATGAGTCACAGGCATGCAATGTTCTGTATATTAACTCGGTGGAGATGGAGTCCCTGACAGGCCCCCAGGCCATTGCCAAAGCCATCAGCGAGACGCTGGCGGCCCAGCCACTGCCCAGTGCCACTGTCGTCCACTTCAAGGTGTCCACCCAGGGCATCACCCTCACCGACAATCAGAGGAAAATCTTCTTCCGGCGCCACTATCCCATCAACACCGTCACCTACTGTAACCTTGACCCGCAGGACAGAAAGTGGAACAAGACAGAGGGTGGAGCGGCTAAGTTGTTTGGATTTGTGGCCCGGAAACAAGGAAGCACAACAGACAACGTCAGTCACCTGTTTGCCGAATTGGAGCCAGACCAGCCGGCCAGTGCCATTGTCAGTTTTGTCTCCAAGGTCATGCTCGGCAACCCCAAACAGTGAAGACTGCCCTGGCAGACATTTTGTTTTTTCTCTAAACTGCGTGTGTTCTTTTTTTCCTCCCACAAAGACACGTTTTTTCATGCCCTTTTTGTGTGGATATATTTTTTCATAAAGGTCTCCCCGCCCCCGTCCTTCTTTCGAAGAGATGGGAAGGAGGAGTTGAGTAAAACTGTTGACTTTATTTTATTTTTTTTTTCTTTAAGTTTTCAAGGTGTTGATTTTTCCTTCAGTGAAGTAGGAGAACATTCAGGATGGAGTCTATGCACGTGCAGGAGAGCTCAGAGGTTTTTCTGGAAGAGGAAGGGGAGAATACTTCTCCCAGTGGTTCATCCAGACTTGAAGAGAATTTAGGAATTAATGAGTTTTAAAAGAAAGACAAGTGAAGAAACAAAAAAGCAACAAAGAATCATTTTTCAGATAGAACAACCAAAGGTAGTGTTCAGAACAAGTATGCCATTATTGGACAATGTATTCCATTTTGTTTTGTAAAGGAATTTTACTTTTAACCAGACTGTCAAAAAAGTACAAAATCCCTCTGGACAAAAAAAAAAGATTTTTTTGTCTGTCTCTGTGACTTCTTCTTTCAAAAAGAACATTGAAAAAAAAAGAAAAAGTATTCAGTGACGATATGCATGTTCGCTTGCAAATGGTCCTTAGCTGCTTCTCTAACCCTTCGTTGTTGGTCAAGACTGCTCTCTTTGTAGACACTGGTGGACTCGAGATTGTAGGATGCTACCAGGTCTACCGATCACAACACCTACACACACAGACACCAGTTCAGTTGACCAAACTGCATATCAGGAAAAAAATTGAAAAACACTGTGGTCCAACATCAGCAATAATGTCACCCAGGCCCCAGGCTCAACTAGTCAAACTCAGAAAGAGGGGGAACTGTTGGGGTGGAGAGGATTGTGGATCGGCTGCTCTGGCCTGTAGATGCAAAATGTGTGTGACTGCACTGTATCAGGATGCAGGTGAGGATACAAGTCTCAGCTCATGCACAGAGCCTGTAAAGCAGGAGAGAGATGTTCTACAGGTCACCTCATACACACACAGACACACACACAGACACACACACACACACACACACACACACACACACTCACACACATACACACAATTACTGTACACACACAGAAATGTGCACATCTCCCTATAATGACCCACACTGGACACTGGAGGGGTGAACAATTCATCGCCTGGATGGACCAACAGCGATGCCCCCGCATGCCGTAGTGCAAAAGTAGCTCCTTTAACCTTTAACCTTTACCCTTCAACCTGACTCAATGAACTTTACCCCCCAGCCCCCCACTATCCTCTGAACGCAGATCACCCCTTTCCCCTGCTGTAGGAAAGAAACAAAAAAAGAAGAAAAATTGCTATGGCGACACTGATCGCTAGAGACTTCAACTGCATGTGATGCTACCTTCAGGTTTTTCTTTTCTTTTCTTTTTTACTTCAAAAAAAGGGTCTTACATCTTGTTGAAGTTCGCTATGCTCTGTCTTTATCTTTGTCACACACACACACACATACTAACACACACACACACACACACACACACACATACTAACACACACACACATCATTTCCTCTCCCGAGTGGAGTTTTATTTCAGCCAAATACACATTAGGCAATGTCTACCTTTTCTTTCAAGAAAAAACAGAGTTGCTTTCTGTTCACACTGCCCATTACCACACTTCTTTTATTCACTGTGTGAGAGCGTGGCTTAAAAAAAGAAGACAACATAAAGAAAAAACAATACACAAAGCCCAATCTTCATAAGCTATTGAAAAAAGATAAACATGACTATAAATAATGATGACTACATATGTATTACTATAAAAAGGTGACTTTAATGAAAATATTTATTTTTGTTGCTCTCTCTTGCTTTTGGGTTATTCATGCAGTATATTGAAATGACAAGATATTGTATAGTCAACATTCAAAACATCTGAGACTACATGGGGGGGAAATTATTTTGGTTAAGAGTTAAAAGTCATGAGTGAAAAAAGACATCTTGTGTGTCCAGCTGAGAGTCACTTTGTTTTGCGTGTGGCCACTGCTCCATTTTGTCTCATGTTGAGGTGTTTGAGGTGTGTGAGGGGAAGACATTCATGTATAAAAAAAAACACAATGTTTTTATTTTTGTTTTTATGCATTTTTTTATTTGTAATCCATCAGTTTGTGCCGTTGCAGGATGATAACGCTGTCTGTCAGTTGTGTGTGTGATGGAGATGGAACTAGAAGTCTGCCAGCTACAGACACTAATTTGCCCATCAAGAATGTCAAGAGGAAGGCACACAAATGTGTTTGCCAAAGAGGCAAACTCAGAAGATCCACAGCGTAGGCTACCCCATCTTTATAATTGTATAGCACTTACAGACTGCCAGTGCCACCCTAGTTAAGTTAAACCAGAATCTAAACATGTCCTCATGACTTTTCTAAGGACAAGCTACAACAGATGTCGGTGCAGTTCTTACATAGCTTCTGTTGTTGGGATTCAGTATTGGAAACGGTTGAATAATATCTCGTTATTATTAGGGGAAGAGCAGGTGTCATGGCTGCCAAGAACCTTTGTTGTAGATCATGCCGCTATTAAGCACCATACTCCATTCAAAACCACTATAGCTGTACACATATATGCAGTTTCTTCGCCTTTTTCATGTAACAAGACCTCAAAGCGAACACAAGATAACAAATGATACTGACTGTCCTTTGTGTAACATAAAAGTATGTATTTATTTCTGTTTTTAAATTATGTTTTGTTTGTGTTTTTTTCACTCACCGGTTGGTCTTCCCCATAGTCAGGCCCAGTGCTTTGGTGTCATCAGTGTTACCCAGAATGCTCTAGACTCGCAGGCGACCCGGCGGACATTTTCCTCGGATGTTTGCCTGAAGTCAGTGAGTTGGCTTTGCGAAGATGAAGTCTGGGGTTTGAATGTGTGAATGTACTACTAAGGCTGTACAGAGCTTCTGTGGGATTTATGTGTTTTTATTTTATTTTATGTTTATTTGTGTTATAATGCAATGGCTTTGTTCCTGAGGAGAAAAAAAAAAAAACATTAAAGCAATACAAACCAGTTA +>XM_031525737.1 PREDICTED: Punica granatum senescence/dehydration-associated protein At4g35985, chloroplastic-like (LOC116196154), mRNA +CTTTCGAATCAAACACAGCACAACTTCCTCTGTAAGCCATTCCTATTCCCTTGCCAGCCAATCACAATGTTCTTCTATTCCATGTCCTGACAAAACCAAACACAGCTCTCTCCAAGAACAGGTCCACTTCATCTGCGGGAGAGACAGAGAGGAAGAGGAAGATGGGCTGTTTCAGCTGTGGAAGCAGCAGAAGCAACAGCAGCAGCAGAGGAGGTTCAAATTCTACGTACTTTGATCCTTATGAGACAACCCAGCAAAACTCGGAACCCAGAACGACCAAGCAGCAAGTTCTGCTCCAAATCCCGTCATGCACCGTCCACTTAATGGACCAAGGAGAAGCTTTGGAGCTCTCCAGTGGCAGAGAGTTCACCCTTCTCACCATCTCGGACGAGAACATCTCCCTGGCAACCATCATAAAGGTCGGTGATGACCTCCAGTGGCCGCTCACCAAGGACGAGCCGGTCGTGAAGTTAGACTCCCTTCACTACCTCTTCTCCCTGCCCGTGAAAGATGGTGACCCGCTCAGCTATGGAGTCACTTTCATGGAACAGTATGTAAGCTATTTGGGGTACTTGGACAAGTTCCTTGAAGAACATTCGTGCTTCTCTTCTTCGGCTCCTGCTTCTTCATCTTCATATTCTGCACCGAACCGGAACCTTAACTGGAAGGAGTTTGCCCCGAAAATCAATGACTATAACAATGTCTTGGCTAAGGCCATTGCCGGAGGGACTGGTCAGATTGTTAAAGGCATCTTTATGTGTAGCAATGGCTACACCAATCAGGTCCACAAGGGAGGAGAAATGATCATGACTAGTGTTGTGGAGCAGAGGAATGGTTCGAGTTACCATGAAAGCTATGGAGGCAGCAATGGGGGTGCCCAGAAGAAGAGCGCAGTCAATATAAGCCTGAAACGTGTAAGAAAGGTGTCTAAAATGACTGACAAGATCAGCAAGAAACTGCTAGATGGAGTTCAATTTGCCACTGGATCGGTAATGGCGCCGATGGTGAAGTCCCAAGCAGGGAAGTCCTTCCTAGCAATGGTTCCAGGAGAGGTTCTGCTGGCTTCACTTGATGCTGTCGATAAGGTGTTAGATGCAGCTGAAGCGGCTGAGAAGCAAGCTTACTCGGCTACCTCAAAAGCTGCTACGAGAATGGTCAGCAGAAGGTTTGGAGAGAGTGCAGGGGAGGCAACAGAAGATGCGCTTGCAACAGCAGGTCACTGTGCAAGCACTGCTTGGAACGTCTTCAAGATCAGGAAGGCCGTCAATCCGGCATCTTCCGTCTCCACTGGGGTGCTAAAAAATGCGGGCAAGGCCAAGAATTCATACTCTTGAATTCAGTCCGATTCAACTCTATTAGTTAAAGTCTAGATGGACTAGAAACAGCATGCTCGGGTTTGTAATGGAGTCTGGAATATCTGTCTAGAACTAACTGAGAATGATTTGGTATATCATTTGCATATTGCCATTGCTGCTTCTTTCCTCAGATAGATCTTCCAATGTATGTCTGCACAATTTGTACGTAAGACATTTTTAATGCGTTTGAATTCAGAGTTAAAAAGTAACTTTAATTTTGATTTA +>LC139547.1 Uncultured bacterium gene for 16S rRNA, partial sequence, clone: SdRy21_50 +GTGCCAGCAGCCGCGGTAATACGGAGGGGGCAAGCGTTGCTCGGATTTACTGGGCGTAAAGGGTCCGCAGGCGGTTAAGTAAGTTAGATGTGAAAGCTCAAGGCTTAACCTTGAAACTGCATCTAAAACTGCTCGACTAGAGTCCAAGAGGGGTCGGCGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCCGACTGGCTTGGAACTGACGCTCAGGGACGAAAGCGTGGGTAGCGAACCGGATTAGATACCCGGGTAGTCCACGCCCTAAACGATGGATGCTAGGTGTGGGGATTTTATCTCCTTGCCGAAGCTAACGCATTAAGCATCCCGCCTGGGGAGTACGGTCGCAAGGCTGAAACTCAAAGGAATTGGCGGGGGCCCGCACAAGCGGTGGAGCACGTGGTTTAATTCGATGATAAGCGAAGAACCTTACCAGGACTTGACATGTTTACCTAAGCCGATGCGAAAGCATTTGGTGGTTTTGAGCTTGCTTAGAACGGTATTCACAGGTGCTGCATGGCTGTCGTCAGCTCGTGCCGTGAGGTGTCCGGTTAAGTCCGGTAACGAGCGCAACCCCTATTTTTAGTTGCCAGCATTTCGGATGGGCACTCTAAAGGGACTGCCGGTGACAAACCGGAGGAAGGTGGGGACGACGTCAAGTCAGCATGGCCCTTATGTCCTGGGCTACACACATGCTACAATGGCTAGTACAATGGGTTGCCAAATCGCAAGATGGAGCTAATCCCATCAAAGCTAGTCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGAAGCTGGAATCGCTAGTAATCGTGGATCAGCATTGCCACGGTGAATACGTTCCCGGGCCTTGCACACACCGCCCGTC +>XM_007532958.2 PREDICTED: Erinaceus europaeus C1q and tumor necrosis factor related protein 1 (C1QTNF1), transcript variant X1, mRNA +CCCCCCCCCCCAGGACTTTTCATTTGTCCCACTGGTTCTCCTTCCACAAGTCTGTTTGGACCTAGAAAAAGCTCAGCTGCTGGGAGATGATCTAACCAGTGTCCCAAGAGCCCGTGGCAGTGGGCGCTCCCACTCAGGAGTCAGAGGCTTGGAGGGAAAATGGGCTGCCAGGCACTGGGATTCTCTCTGACCAGCTGCCTGCTCCTGGCCTTTACCTGCAGCCTGGTGCTGAGCCGTGTGCCACATGGACAGCCAGACCCTCAGGAGCAAGAGGGAACTGGGGAGCCACCATTGGATCACACTGAAAGGATTGAAGAAAATCATGAAAAATACAGCCCCAAGCAAGATGAGGAGCCCTCAGCAACCCAGTGTTTGCGCTGCTGTGACCCCAGCACCCCCATGTACCAAGCCATCCCAGTGCCCCAGATCAACATCACCATTCTGAAAGGTGAGAAGGGAGACCGAGGGGACAGGGGCTTGCAGGGCAAATATGGCAAGACAGGCTCTGCAGGTGCCCGGGGCCACATGGGCCCCAAGGGACAGAAGGGGTCCATCGGAGCCCCTGGGGACCGCTGCAAGAATCACTATGCAGCCTTCTCAGTGGGCCGCAAGAAGCCACTGCACAGCAATGACTACTACCAGACTGTCATCTTCGACACGGAGTTTGTGAACCTCTACGGCCACTTCAACATGTTCACAGGCCGGTTCTACTGCTATGTACCTGGCATCTACTTCTTCAACCTCAACGTGCACACTTGGAACCAGAAGGAGACCTACCTGCATATCATGAGGAATGAGGAGGTGGCAGTGATCCTGTACGCCCAGGTGAGCGACCGCAGCATCATGCAGAGCCAGAGCCTGCTGCTGGAGCTGCAGGAGCAGGACGAGGTTTGGGTGAGGCTCTTCCGGGGGGAGCGCGAGAACGCCATCTTCAGCGATGAGTTTGACACCTACATCACCTTCAGTGGCTACCTGGTCAAGCACTCCACAGAGCCCTAACCCATGGCACCTCCTCATCTCCAGCTTGCCTGTTCTCCCACCCCACTGGGTTCCAATGGTCCAGCATCAAAAGGCCCCCTGGCCCTTCACCTCCCCCACTACCCTGCTCCCTGCTCCCCAGCTCTGGCGTTCTACCCCACATTTTTCTTTAGCAGGGACAGGAAGTGAATGTTGCTGTGTGTTCTGGCCCTCTGTGGATGAAATCACAGGGGCAAATGCCCCCTCTGGAATCACATCCTTAAGTGGCCCATGGCCCAGGCAAAACATGTCTGGATATGGCAAAGAGTCTTCTTTCCTTTTCTTTTTAAA +>XM_032266396.1 PREDICTED: Sapajus apella transmembrane protein 108 (TMEM108), transcript variant X7, mRNA +TGTGTTTATGTAAATATTATGTCAGATTGTCTTTATTTTAGCTGTTAAAGGTACTAATTAAATATTTGTTAATGAATTATAGTGCTGTATTTATCAAGTTCTGATTTACAGGGTAAAAGCACAGTTGACCAAATTGTGTGAAACCTTGAACCTCAGACCCTCTGACGTGGGCTTACTGCTGCATTAACACCCTGTGCATCTGGTGGTAGCTTCCAAAATGATAGCTGAGGGTCTGAGTCGAAATAAATGGCTTTTAGCAAGTGTTGAACTTTGAATGTGCTATTTAACCTCTGATTAATTGATTACTCAGCTCTGAATATGAGAGGTGTATAGCTATCCCTTATCTCACTTAAGTGATTTGAGCATGGATGCTCCTCTCATTTGAATACAGTTTTTGGGGTGGGTGGGGGTGATATCAGATCCCAGGGTACATGCTATGATAATGACAGGCTTAATTATCACTCAGTATGGTTTAGGACAAAGGTTTTCTTTTGATCACAATATTAAGAAACCTTTCTTTAACAGATAGTTTTACTTGTACGTATGAAGTATATATATAAATTTATCATTTCCTATATATTTGATTCACATTCAGAGGGTATTTAAAATAGTATCTTCTTCAGAATGTATATGTTGGGATTATATATTACTGTTTCTTTCCTTTTTATGTAGTTTCTTTTTGTGGTCAGGTAAAAGAAGACTAAAGGGATGTGATATTTAGTCTCAAATATTTGAAGTATAGTCACTGTTCTGTTTCAGGGCTGTTTCCCTCTATCAATTCCTTTGATATGGAACTCCAATGTCATTTTTACTTTACAATTGATCACATGCTGGCTCACTGACATCAATTAACTAATTTGAGGCAAATTTTTAAACCAAATGCCAAATTTTAATTTACTGAGAGAATATAATCTAATAAGAAAGACTACCCTTGGGCTCTTCACATGGTGAACCCTAGTGTGGTTTTGATAAAGAAGCCCAAGTATATACTAACTATAATCTTTTCTTAAAAAAAAGTGGTGTTCTTATCTAGACCCTCCAGAATCTAGAGTAGCATCGTCCAATAAAAATGTAATATAAACCTCAAGTATGAGCTTTATATGTAATTTTAAATGTTCTAATAGCCACTTTAAAAATGAAATGTGAAATTAATTTTAGCTCTATATTTTATGTTGCTTAATATATGCAGCATATTATTTCAACATGTACAGTTGACCCTTGGTATCCATGGAGAATTGGTTCCAGGACTGCCCACAGATACCGAAATCTGTGGATGCCCAAGTCCCTTGTATAAAATGATGAGGTATTTGCATATAACATGTGCATATCCTCCCATATATTTTAAATCATCTTTAGATAACTTAAAATACCTAATACAATGTAAATGCTATGTAAATAATTGTTGTACTATATTATCTATATTGTTTTTTGTTTTTTATTAATTTACTTTTTAAAAATATTTTTACTGGGCAGTTGGTTGCATATGCAGAACCCATGGATATCGAGGGTTGACTGTAACTAATATAATGAATTATTAATGAGATATTTTGTATTTTTAAAATACAAAGTCTTGAAAGTCCAATTGAGATGTGCTGTAAGCATATTTTACACTTATAGCACATCTCAACTGGGACACTGAGGTTTCATGTACAGTACTTGATCTGTACTTAAATTAAAACTTACAGTAGAAAAAATAGATTCACATACCCAAGTCATTCCAAACATGCAAATCAGTTGTCCAGTAACTGAATCGGTGTCCATTTCTAAATTTAAATTTAACTTTAATTAAAATTAAATAAAATTTAAAGTAAAATTCAATTCCTGATTGACACTAGCAATGTTTAAAGCACTCAGTAACCACCTGTGGAGTGGCTGCCATGTTGTGTTGGACAGCACAGAAAGGACTGCTTTCTCTAGCCTTTTCCTTCACTCCTGCATGTCTCAGATGGGAAGACTTGTGTGAGACCTCTGATGGGAAGAGAATCTCATTTTGAAAGTGTGGAACCACAGACAAAGAGTTGACTTTCTTAAAAAGAAGTTTCCATTCAGGCTATATTAGAACCTGCCTGGCAAGGAGTTATCTGTCTAATATACCACATTATCTCCACCCTTGTTCCTAAATACACCCCTCATTGTCTCCCCAACAGATAAAAATATGCCAACCTTGTGTCAAGGTTGCCTCCCTGATCCCCTTGTCCTCCACTGCAGGCTGGCTCATTTCCATTACGTCAGTGTATTTCCTGGTTATAGTCCTCCTTTCTCATTGTTTCAGTTTCCACATTTGGCCTTAATTTCTATGATACCTCAGTGAAGCATTCAAATGTTTAAATTCCAATTTAGTTCTTAATTAAGGTCATGTATATCAAGGTCAATGTTATGTTAATTTGGATAACAGACATTTCCTTTGTCCCTTGCTCCAGATTTCTAGAGTGGCTGGGCTGAGAAACTTTACTTCCTGTTCACCTAGACAGAATCATGAATAAACTGGAGGATAAGCAGGACCAGATGATACCATGAAGAGAAGTTTACAGGCCCTCTATTGCCAACTGTTAAGTTTCCTGCTGATCTTGGCACTGACCGAAGCGCTGGCATTTGCCATCCAGGAACCATCTCCCAGGGAATCTCTTCAGGTCCTCCCTTCAGGCAGTCCCCCAGGAACCATGATGACAGCACCCCACAGCTCTACCAGACACGCTTCTGTGGTGACACTGACCCCCAATCCCAATGGACCCCCCTCACAGGCTTCAGCTCCCATGGCAACACCGACACCCCATACAGAGGGGCACCCTCCTACGCACACCATCTCCACCATCGCTGCGACAGTAACCACCCCCCATTCTAAAAGCTCCCTACCCACAGGGCCCTCTCCAGTGGCCACAGCAACCACATCCTCCCACCCAGAGGGCCGCCCCCCGGGGCAGGCTACTCCCACCATCCTGCTGACAAAGCCACCGAGGGCCACCGGTCGCCCCACTGCAGCGCCCCCACGCGCTACCACACGCAGGCCCCCCAGGCCCCCAGGCTCCTCCCGAAAAGGGGCTGGCAATTCATCACGCCCTGTCCCACCTGCACCTGGTGGCCACTCCAGGAGTAAGGAAGGACAGCGGGGACGAAACCCAAGCTCCACACCTCTAGGGCAGAAGCGGCCCCTGGGGAAAATCTTCCAGATCTACAAGGGCAACTTCACTGGGTCTGTGGAGCTGGACCCTTCTGCCCTCACCCCCAGGACCCGGCTCTGGGGCTACTCCTCTTCACCACAGCCCCAGACAATGGCTGTCACTACAGCGCCCAGCAATACCTCGTGGGCACCTCCCACCACCTCCCTGGGGCCTGCAGAGGACAAGCCAGGCCTTCGCAGAGTGGCCCAGGGAGGTGGTTCGACCTTCACCAGCCAAGGAGGGACGCCAGATGCCACAGCAGCCTCAGGTGCCCCTGCCAGTCCACAACCTGCCCCAGTGCCTTCTCAGCGCCCCCACCGCGGTGACCCACAGGACGGCCCCAGCCATAGTGACTCTTGGCTTACTGTCACCCCTGGCACCAACAGACCTCCATCTGCCAGCTCTGGGGTCTTCACGGCCGCCACGGGGCCCACCCCAACTGCCTTCGATGCCAGTGTCTCAGCCCCTTCCCAGGGGATTCCTCAGGGAGCATCCACAACCACGCAGGCTCCAACCCATCTCCCCAGGGTCTCAGAAAGCACTATTTCTGGAGCCAAGGAAGAGACTGCAGCCACCTACACCATGACCGACAGGGTGCCCAGTCCTTTCTCCACAGTGGTATCCACAGCCACAGGCAACTTCCTCAACCGCCTGGTTCCTGCCGGGACCTGGAAGCCTGGGACAGCAGGGAACATATCCCACGTGGCCGAAGGGGACAAACCCCAGCACAGAGCCACCATCTGCCTGAGCAAGATGGATATCGCCTGGGTGATCCTGGCCATCAGCGTGCCCATCTCCTCCTGCTCTGTCCTGCTGACAGTGTGCTGCATGAAGAGGAAGAAGAAGACTGCCAACCCAGAGAACAACCTGAGCTACTGGAACAATGCCATCACCATGGACTACTTCAACAGGCATGCTGTGGAGCTGCCCAGGGAGATCCAGTCCCTGGAAACCTCTGAGGACCAGCTTTCAGAGCCCCGTTCCCCAGCCAATGGCGACTACAGAGACACTGGGATGGTCCTTGTTAACCCCTTCTGTCAAGAAACACTGTTTGTGGGAAACGATCAAGTATCTGAGATCTAACTGCAGCAGGCTTCGCTTTGCTATTCCCTATTTTTCGTCTCTAAATTATAAATATACAAATATATATATTATAAATATAACCTTTGTGTAACCCTGACTTAATGAGAAACATTTTCAGCTTTCTTTTCCTATGAATTGTCAACATCTTTTTTACAAGTGTGGTTTAAAAAAAAATTTACAGAATGATCTGTGGCTTTATAAAATAAAGGTATTTCTAAGCAAAGCAGTTGCATTGATTGCTTCTCTTAATAACTATTTTTGAGCACCTGGGGATCCCAGGAACCCTAGTCAGGTGAGGTAAGAGACTGACCTCCTGTAGAAGCTCAGTGTTACAGTGGTCAAGTGCACAGTTCTTTGAGTGATTCTTAAAGCTCTGGTTCCTCTTGATTTGGCGTGGCCCATTTCCTCCCTCTCATACGCACACCTGTAAAGGGAACTGGGCCACCTGGGGGAAGATGGCAGACTCATGCACAGGGCAGGAAAAGGGAACACCTCATCACCCCCAAGGATGGGGGCCCTGGAGCCTCACGACACCACCATTGGATGTCATGTTTAAAAGTTGTAGACAGCAGACAGAAGCATGGAGTCCTTGGGAATCCATGGAGGACATCAAGGCATCCCAAGGCCACATCCCCCTAACATTGCTTCCACTGCTAACAACAAGACTGCCTTTCCCTGGTGGGAAAATGCTCCCTTCATGCCCGTTCCTGCATCCCCTCCAACGCTCAATCTGCATTAAACACCCGTGCCTTTCTCTTGGAGAGGGTTTAGATGCAGATCCCAGCCTTGGAGCTTTAAAATGCTTGCCCTTCTTCAAGGATCAAATGTTTATTGGGGTTTAGCTTTGTTTTCTCAAAAGGCCACGGTATTGTGCCCCTAAGGAACACGTTTATCTAAGAAGCTTTGAGGTAGCAGAGCTATGATTTTTGAAACCTTCCTCCTGCAATCTTTAAAAAAAAAAAAAAAAAAGATTGCCAAGCAAGTCATTTCCGAGAAGACATCATTACACTCCTACTTGCCCCTGCAAACCTGCTCGAAGCACCAGCCGGTGGACTTGCCACGCAGCTCGCAGCTTCCACTGCTCGCCTCGTTCCCCACTGGCTGGCTGCCTCACCGTGCCGTGTCCAGCGTGGCCAACAGGGTCAGACCCTCAGAGATGCCCAAGAGGCTGCCAGAGGTGGCTGCTTCTCTATTTTTTCCTGATCGTGGCTGAGAGAGATGATTACTGCTTTGACACTTTCTTTCTCTAAAATAAAGCTAGTTTGATAGTATATTTTGAATATAGATGCTCTTATAGTTGGATTGGGAATTGAACTCGAATGTTGATTCATATGTTTGTGTTGTTGCTGTGGTCTTTTTATCATGACTTTTTTCTTTCTGCGTTTTCCTTAAAAAAAAAGATGGCCTTCAAAAGTGTGTTCTTAGTGTTGTATAAACCTACTTCATATGAGTTCAGTTGTTGTCTCTCTTCAAAGACTCTTCAACCCACAAAGAAGCAGGTTAAATGTTTCTCTAAGTTTAATTTTCTAGCGTGTTGTTGTCTGACCTTTTTAACCTTACCATAATATTTCTGTTAACTGTTACATTTAATATACCAATGTGTGTGAGTATACATAGAGAAAAATCTGTAAAGTAAAATTTATATATAATATATGTAATCCAAGATACATATGTTATATATACACGTACGTGGATGTATGACTTATTTTTCCGTATCCACAGATTTCGGCTACCATGGATATATAAATAAACTTATTTTGTTAGCCAGAGGA +>XR_006349495.1 PREDICTED: Manihot esculenta small nucleolar RNA SNORD34 (LOC122722555), ncRNA +GGAGGCCTAGGATGATCTTAAATTTGCCTACATTGTCAGAGTGTTTAAATCATGACAGATTATTGAATGATTCTGAGGCCACT +>XM_008548960.2 PREDICTED: Microplitis demolitor basic salivary proline-rich protein 2 (LOC103571010), mRNA +TATTGTTATGATTATTGGCGGCCATATTTGAAATTTATTCGAGTTTCCAATGTAAAAAACGCCCGAGCTTTAGTTTGGTTTTCATACCCAAGCAAATGTTTGGTCACTAAAAAAAAAGGACTCAACTACGTAATTGTCAGATTATTGTCATAAATCTCATTGTAATAAATTACTTGAAACGTGTGGGTGTGCGGTATTGTATTGGTGATAAAAGAGTAAGAAAAAAAGTAAAACGTGGTATTGTTTTATTAAAATATATCACCAGCCACTAAATTGTGGTATATATATTTAGTTTAGCTTTAAGTAACTAAAAATGTCAGCTACTTTTGCACAACGCGGTCGTGTACCGCCAACTCCAGCTCAAATTCAGAAGATGCTGGACGAGAATAGTCATTTGATACAGACGATACAGGAGTACCAGAATAAAGGAAAACCTCAGGAATGTTTACAATATCAACAGATATTACATCGGAATTTAGTTTATCTCGCTTCTATTGCTGATGCGAATCAAAATATCCAGGCACTGCTACCGCCGCCACAGGGTTTGCCGCCGATGACAAATGGTCCGCAGCATGGAATGATGGGTCCGCAAGGGCCACCGAATGTCGCTCCGGGAACTCCAGGGCCTGGAGGTGAAATGCCACCGAATCCTCCGCAGCCTATGCCAATGCAGGGATTTAATCAGGGACAGCCGATGCCTCAGGGTGGCTACCGTGGTCCAGTGATGGCTGGACAGGGTCCTCCGATGAATAGAGCGAACCCTGGACCTGGGCCTCAGCAGTATCGAGGTGGGCCACAGGCTTATCCGCAGCAACCTGGACAGCAGGGGTATCCTGCTGGTTATGGGGGACAGAATCCTGGTGGGAATTATCCACAAGGTCCTCAGGGAAGTGGTTATGGAGCTGGACAGCCTAATCAGTACCCGCCTAATGCACCGCAGCAAGGCTACCCGGCGTCAGGACAGCAGAATTATGGGCCTCCGGGTTCTGTTAATAGTTATGGAGGTCAACCGGGTGCTTATCCGCCACCGGGAGGTAATCAGCCCTCTGGTGGCTACGGTCCTCCGCCGCCGAATCAGCAAGGATATCCCCCGCCTACTACGCAGCAAAACTTCTCGCCTAATCCTCAGCAGCAGCAGCAACAACAGCAGCAACAACAACAACAGCAACAGCAGCAGCAACAACAACCTGGACAGTATGGTAGTCCTAGTCCTCAGCCAAACTATCAGCCTCCTTCCCAAGCTCCTAATCAGAATGCTTATGGTCCAGGTCAGACTCCCGGTAATTATCCTCCTCAATCCTCTCAAGCTTATCCTAATAATGTTCCTCCACAGAATTATCCTCCTCCACCTCCGACGTCTAATAATGTTGCCCAGCCTAGCCAAGGACCACCACAGCAGAGTCAAGGTGGGCCGCCGCAGAATTACTCAAGTCAGCCAAGTCCTGGTGGTGGACCACCAACTCCATATGGACCTTCATCTACATCACCGCCATTTAGCACCAGTAATGTGAGTGGAGTTAATACGTATGCTCCTAGTAATCAACCTACGAGTACACCTTCTGCTTCGACTCAGACTTACCCACCATCCAGTGGACCTCCACCAGCAACTTCGCAAGCTGGTAGTTATGTTCCTGGGCCTACTCCTTCCGGGTATCCGGTGCATCAGCCGTCGCATCAAGCTCATGGTCCACATGGGCCTCATCCTGGCTCTCATCAGATTCCTCATCCTCCGCCATCACAGTCGCAACCTGGACCGCCACCTCAGTCGCAGCCACCTGGTCAATCGCAGCAACCTTCTCAACAACCGTCTCAGCAGCAGCAGTCTCAGCAACAACCACCAGCCCAATCACCACAGCAGCAACAACAACAAGGACCTCCACCTCAAGGACCCCCTCAGCAGCAACAATCTCAGCAGGGAGCGCCACAGTCTCAACATCAACAATCCCCGAGTCCAGTTCCGAGTAATTTCCCACCAACTTCCGGACCAATATCACAGGGTCCACCCTCTGGGCCTCCAGGTCCACCGGGTCCACCTCAACAACCTCCTGGTGGATATGGACCTCCACAATCTCACCCAGCGACGACGCAGACTTACGTACCCCCGGGTTCTGGTCAACCACCACAAGGCTATCCGACTCACCCCCCATCTCAAGGAGGCCAACCGCATTATGGTCATCCACAGTATCCTCCTCAAAATTATCCGCCTCATCCTCCACCGCCTTCTGCTGGTCAAGGTTATCCTCAGTATCCTCCTCGAGGTCCCCCTGGTGGTCATATGCCACCACCACCGGGTCCTCAAGGTCCTCCGCCACCGAATCAGTATGCAGGGTATGGTTACCAACAACCTCCGCAGTAAATAAAAAAATAACGAGACTTTTTTTAAATAATTCGACTATAGGATTTGTGCTATTTAATGATGTGTAATGTAATGGTTTTTTGCATTGTAATTTTTATATTTTATATATGTAATAATTTGATGATATTGATAATTAAATAAACTGATTTTTTTGTTGTACTTGTGGGATCGTTTGTGGAATAAAAAATGATTTTTGAAATCTTATTAATTATTTTATTATTTTAATTTTAATGCTCACACTTCAGCTGCCCAATTTCAAAACACAGTAAGGGACAAATTTTTCAAAGTTGATTTTTTAGAATTTATAGTTCCAGTGGAGTCTTATGGACATAATTTATTTCATATTTCAAAAATTTTCTTTTTGTCAGTTACTGTGTTTTGAAATTGAGCAGCCGATTTACTCGTACATATTTCCTTTGATATTATTAAGGTAAGAGACCTAGTACCCGATCAGGGAACTAGGATTCGATCGTTTTATAAATTTGTATGTCTATATTTAGTAAATATAGATATACAAATATATGAGTGATCAAGTACTGGGTCTTTTACCTTATATTTATTATTTAATACTTGGTAA +>JN883616.1 Uncultured bacterium clone 254_InIs3-B9 16S ribosomal RNA gene, partial sequence +AGAGTTTGATCCTGGCTCAGGATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAAGCACTTTATCACGATTTCTTCGGAATGACGATTTGGTGACTGAGTGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCTTATACAGGGGGATAACAGTTGGAAACGGCTGCTAATACCGCATAAGCGCACAGGGTCGCATGACCTGGTGTGAAAAACTCCGGTGGTATGAGATGGACCCGCGTTGGATTAGCTGGTTGGTGAGGTAACGGCCCACCAAGGCGACGATCCATAGCCGACCTGAGAGGGTGACCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGCGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGATAATGACGGTACCTGACTAAGAAGCACCGGCTAAATACGTGCCAGCAGCCGCGGTAATACGTATGGTGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGCAGGCGGTACGGCAAGTCTGATGTGAAAGCCCGGGGCTCAACCCCGGTACTGCATTGGAAACTGTCGAACTAGAGTGTCGGAGGGGTAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACGATAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATACTAGGTGTCGGGGAGCAAAGCTCTTCGGTGCCGTCGC +>MZ592923.1 Lysinibacillus sp. strain KEI8 16S ribosomal RNA gene, partial sequence +CTTGCTCCTTTTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTACCCTATAGTTTGGGATAACTCCGGGAAACCGGGGCTAATACCGAATAATCTCTTTTGCTTCATGGTGAAAAATTGAAAGACGGTTTCGGCTGTCGCTTTAGGATGGGCCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGGCGAAAGCCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGTAAGGGAAGAACAAGT +>XR_004099807.1 PREDICTED: Ipomoea triloba uncharacterized LOC116026275 (LOC116026275), ncRNA +TTTTTCCCATTAATCTGCAAAAATGAAGGCATTTTGATTAATAATTCAGGAGTGCTATGAAGGTTAGAGCCATACTTCGGTTGTGGAAAGGGAAGGCTCTTCCGAAAAAAAAGAGCAAAGAAATCATCTTCCACGACGAACAGGAATCGAGCTACATAACAGAGTAGTATGTACCAGTTGATATGTTGAAGGTTATCTCTATATTCCACAATAAAAAAGAGTATCCAGTAAAGGTCCATTGTATGTATCAGTTTCTTTGTTGAATTAAGTTCATTGTTCATATTAAATGAACTATTGAAAATATGAATATGTTCGTGATTTTTTTCTTTATGTTTTTTTTTTCTTTATGTTATGTCCATTGTTCATATAACAAAGTAGCATGTACCAGGTTTTGTTTCTTTAACTGTGTAGTTTAAGAAAAAGTTGTGGTTCTTCTCCTTTT +>XM_029121761.2 PREDICTED: Esox lucius contactin 5 (cntn5), mRNA +CCCCGCGCACCAGCACGCCGCAGAACAGAAGCTGCTGAGACCAACCGCCAGTCTGACGTGCAGAGTCAACCACCGAATTGTCATCTCCGCGGCTTTTATCCATTTCAAACGGCGTTCGGTAACTGGAAGGTTCCCGAAGTGTTGGCCAAGGAAGTCCAGAAAGCAACCGTCGGTGGAGAAATCGACACAAGATTACAGCGAAAGGAGGGAGGGATGTAGCTACTATTCACGTCGTCGTCTTATTCAGTAAAGACAGAGGAAAGGACCGGTTTGGAATCAGGCTGCTTTGGCATTCTGTGGTTCGGGGCGACGGAGACTGGTTGGTTACCGTTAGATTATCTGGGACTGGCAGTTGAAACAACTTGACGTTACGAAGGGAAAACCTGCATGTTCCCAGCTTTTGGCGGCACAGCTTTAATGAAGGATCACACCTGTTAACAACACTTGTGAAGGGGGCACCCACCTGAACGAGCATGGGGTCGCCGTGGAAACCACTTCTCCTGCTGTCCATCATCAGTGGCCTTTCAGACTTCGCCAAAGCTGTAGGAGGGAGGCAAGTGTCCTACGCAGCTGTTCTGAGAATGAAAGGGGACAGCTCATCATCACTGCTCAGTTCACGGAGCCGACATGCCTACAGCAGAGGACTGGTGACTCCTGATTGGCCGACGTCCTTTTCCAGCCAGCACCCGTCGCCTCTCAATCTGCTCAGCTATCAGGAGGAATACAGGAGTCAAGAGAGTGAGGAGTTCGGGCCAACATTTTCCCAGGAGCCAGATGACTCTATCTTTGCACTGGACTCTGAGGAGAAGAAAGTGATGATGAGCTGTGAAGCCAGAGGCAACCCAACACCTGCCTACAGTTGGTTCATTAATGGGACTAAGCTGGATGTAGAGGCAGATTACCGATACAGCTTGATGGACGGCAACTTGATAATAACCAACGCCAGCGAGACGGCAGATTACGGCAGATACCAGTGCATGGCGGAGAACAGCTACGGGATGATTCTGAGCAGGGATGCGCTCCTACAATTCGCCTATCTCAGGGCCTTCAGCGGCAGGACGCGAGGAGCCGTGTCTGTAAGGGAAGGACAAGGAGTGGTGCTCATGTGCAGCCCTCCACCTCATTCACCAGAGATTATCTACAGCTGGGTCTTCAATGAGTTCCCGTCATTCGTTGCCGAGGACAGCCGGCGGTTTATCTCCCAGGTAACGGGCAACCTGTATGTCTCCAAGGTGCAGCCTAGCGATGTGGGCAGCTACATCTGTCTGGTGAAGAACACTGTGACCAACGCCAAGGTCCTCAGCCCGCCCACGCCCCTTACACTCAGAACAGATGGTGTAATGGGAGAATATGAACCTAAAATCGAGGTGCATTTTTCCCCGTCTGTATTAGCAGCTAATGGAGTCACCGTGAGACTGGAGTGTTTTGCCCTGGGGAATCCTGTTCCAACCATCACATGGAGAAAGATGAACGGTAACATTCCTAAGAAGGCTCGTCTGAGGAAGTCCCAGGCAGTGCTGGAGATCCCAAATGTTCAGCTAGAGGACTCAGGCACCTACGAGTGTAAAGCAGAGAATCCCAGGGGAGGAACGGCCTTCAAGGGACACCTCCAAGTTTACACCCTGCCCCAGTGGAGCAGCAGGATAAATGACACCCAGCTGGACAGTGGGGAGCAGCTCCAGTGGGAGTGCAGAGCCACCGGGAGGCCTAGACCCTCCTATCGCTGGCTCCGTAATGGACAGCCAATTACACAACAGAGCAGGTTGGAGATGGTGAGTGGGGAGCTTATCATTCACAAGGTCCAGCAAGATGACTCAGGGATGTACCAGTGTGTGGCTGAAAACAAGTATGGAGCAATCTACTCCAGTGCAGAACTCAAGATCTTAGCTTCAGCCCCGGTCTTCAACCCCAACCCTATACGCCTGATCGCTACTTTGGGGAAGGACGTGTCGCTGGAGTGTAAACCTAAAGCATCTCCCAAGCCCAGAGTAACATGGAGGAGAGGGGACCGTAGAATACAGCCCAACAGAAGAATAATGCTGTTACGAAACAACACGCTGAGGCTCGTCAACGCCAGCCGCTCTGATGAGGGAAACTACGTCTGTCGGGCTGAGAATCAGTTTGGCTCAGCCGAGATGACGGCCACACTGTGGGTAAAAGAGGCCATGCGTGTGGACCTGAGCCCCAGCAGGGTGGAGGTGACGGTGGGGGAGAGTGTGGTGCTCAGCTGCAAAGCATCACATGACCCTTCTCTGGACGTGTCCTTCCAGTGGCTCCTCAACCAGCAACCCCTCGACTTCCAACAGGAGGGTGGCCATTTTGAATACATCCAAACACAGTCCTCCACGGTGGACCTGATGATCAGAAGCATCTTGCTGAAGCATGCTGGGAAATACGGCTGCCGAGCTCAGACCAGCGCAGACACAGTGTTTGCTGAGGCTGAACTTCTGGTCAGAGGCCCCCCAGGACCTCCTGGGGTGGTGATTGTGGAAGAGATCACAGACACCACAGCCACCCTGTCATGGAGTGCAGGTCTGGACAACCACAGCCCCATCAGCACCTACCACCTCCAGGCCCGGAGCCCTTTCTCCCTGGGCTGGCAGACTGTACGCACAGACCCCGATCCAGTGACAGGGGTTATGGAGTCGGCCATGGCTGTTGAGCTGAACCCCTGGGTGGAGTATGAGTTCAGGGTGGTGGCCAGCAACGCCATTGGGACGGGAGACCCCAGCGTTCCATCCAGAGGAGTGAGGACGAAAGAAGCAGTACCTTCAGTGGCTCCGGCTAACGTCAGTGGAGGGAACGGTCGAAGGCATGAACTGGTCATCTCTTGGGAGCCTGTGTCAGAAGAGTTCCAGAATGGGGAGGGTTTTGGCTACATCGTGGCATTCCGAGCCAATGGGACGAGAGGCTGGAAGGAGAAGATGGTGACATCAGCAGATTCCACTACATACAAGTACAGGGATGAGACATTCCCTCCCCTCACCCCCTTTGAAGTGAAGGTGGGCGTGTACAACAACAAAGGAGATGGGCCCTTCAGTGGAGTGGTCACGGTGTACTCTGCAGAGGGTGAGCCCAGAGAGGCCCCATCTGAGGTAAAAACTTCCAGCACTTCCTCTTCGGAAATTAAGATCACATGGCGACCGCCGAACCCTGGCCCAGGAAGGCCTGCAGGATACGAGGTGAGCTACTGGAGGGAGGGAGAACAGGAGGAATCTGGGAAGAAGAAGAAGACGATAGGGAACGAGACGTCTATGATGCTGACCGGCCTGGGCGGGAATAGTGTGTACCTCATTACAGTCCGAGGCTTCAACAGCATTGGCCAGGGCCCTGCAAGCATACCAAGCGCTGCCAAGACCAGGAAGGACCCTCCTGTCCAGCCTCCAGCCAACCTCATGTGGATTCAGGAAGGGAACAATGTGTCATTAAACTGGGACCCGGTCAAGTCTCAACCAAATGAGTCAGATGTCATTGGATACAAGGTCTTGTTGAGTCAGGAGGGGCGTGTCCACCACCAGGTGATGAGAACCATCAATCCCTCTGCCATCCTAACCCTACCAGAGGGGGGCACCTACATCATTGAAGTGCGGGCAGTTAGTGAGGGAGGAGAGGGAGCAGCCAGCTCCCTGGTCCGTGTACTCACCTCTTCAGGAGTGCGGGCAAAGAGCAGCCAGTGTTCAGTCCACTGTGTTCGACCCTGGGCTCTGCCATGGACATGGACTGCTCTGCTCCTTACTGTTCCTCTGGTGCCTTCAGCTTCCTGGTGAGGCCTACAGAGACCTCCTGCTCCTCTTTTACATGGAGGGACTGGGCCTCTCCTTTGTCCCCTCGCCCTCCTTCCATTCATCTCCTCCTGAAACTGTTTGCTTGCTCTGGCCTTGCCCATCAGCCAGACAGATCTGGGGCCTGCTGAGCGGATCCACTTCTAAAACCAACAAACAGATGGTCAAAAAATAACTCATTTCTGTCTTTTTTTTTCTTCACCTATCAACTTCCTGAGAGCTAAACAAAACTCTTCCTTTTTTTCTTTGGCGGGGGGGGGG +>XM_016506093.1 PREDICTED: Sinocyclocheilus anshuiensis guanylyl cyclase-activating protein 1-like (LOC107703476), mRNA +TGTCATTATCCCATTAGCAGTAGTTATTTTAAGGTGCCACCTCTTTTTATTGGTACTTGGATCTAATAGTTTCAGACATTCAGTATCCTGTGCTGTCACTGTGTGCGGAGGCCAGTCTGCACCTCGTTGTCAGAGCTCACAGGCCTGCAACCGTCTGGTCCAGCCATGGGGAACACACACGCAAGTCTGGACGACATACTCGCTGAGGACATGCACCACTGGTATAACAAGTTCATGAGGGAGTCTCCATCAGGCCTGATCACACTTTTTGAACTCAAATCCATCCTGGGACTGCAGGGCATGAATGAGGATGCTAACAGTTATGTGAACCAGGTGTTCTTCACTTTCGACATGGATGGGGATGGATACATAGATTTTGTGGAATATATCGCTGCTATTAGCTTAATGCTGAAGGGGGAAATCAATCAGAAACTGAAATGGTACTTCAAACTTTTTGACCAGGATGGCAATGGAAAAATTGACAAGGATGAATTGGAAACAATATTTACTGCTATACAACACATTACAAGAAATCATGACATTGTGCCAGAGGAAGTAGTGGCTCTTATATTTGAAAAGATTGATGTTAACGGAGAAGGTGAACTGACGCTGGAGGAGTTCATTGAAGGAGCCAAAGATCATCCTGACATTATGGATATGCTGAAGAAACTGATGGACCTCACTCCAGTCCTGGTCATTATTGTGGAAGGGCGACAGAAACCAATCAATACAAGTTAGGCTGACTAAACTCCAACTTAAGGACAGAGAAAACAGAAAATTCTCCGCCTGAAAGCAAAATGAAAGTGGAGTTTGGTAGTCCCACTCTTGAGGAACAGATGTAGCTTCCCACAGCACCTGTGAGAAAATTCTCGGGGGAACTTTTGCCCAAGCATGGTCCTGTCTGACCCCAGTGGAGATACCAAGCCTTGCATCTGAGCTGTCCTCAGCTAAACATTGATCTTCTAATGCTATAAGGGGGATTCAGGAAACTAAGGAACTGCTGGCAAGGCTTAGGAGTGAGCAGTGTGGTGCTTTTTAAGGAAAGGCTCAGTAGAGAACACTGTGCACACATCTAGTGACTTTCATTGGATGAGCACATCATATAATCCATGTACTTGTGCTTGAACTATTTATGGCATGACTATATTGCTCTGAGAGTGAACTCTGAGACAGTACATTGCCGATGTGGCCTGAATTGCCCTAAGAACTGGGAAATGTAGAGCAATGGTTCTCAGCTGGTTTTTGCCTACATTTTAAATTGGACATCAAATGGCAACCCAACACAGAACAAAAATAGTTTATTGTACAAAATGTACCTGTAAATCAAACATTTCTATAGAATGTTGTAATCAACATAATATTACAATGAACTGCATAGACCCAACAATTTACTACATTAGCAACCTGACCAGGCTGAGTGAGAAATATAACAATTTGATAAATTCATAAATGCAATAGTTGGCCACAATATGTTGACATCAATATCTTTGGCGTTATTAACAATGGGAAGTTGTGCCTGTTTATTTTGTTGTCCGTGACCCAGAACAGACCTAAAACCAATTTCTTGTCTGTGGCCCACCAGTTGTGACCACTGATATAATATCACAAATATTATAGCACTTTATCAAAGGAAAGCATCAAATTTTCCTGATACAGTTACCTTATGCAGTAGGTGCAAAAGAAATTCATTAAATGCATTTCCACCTGTCTTTTAGCTGATCTAAACTTGTCAAAACATTAAAACTAAAAGTTTTCAAAATTAGTACCTGCATTTTTTAGACTTATATCCTTTACCATTCAAAGGTTTGGGTT +>XR_004899828.1 PREDICTED: Phyllostomus discolor uncharacterized LOC118497304 (LOC118497304), ncRNA +CTGAACACACCTGCTTCATAGCATAACTGTGGGGCTGGCCAAAGTCTGTTTGTTTTTTTCTGTAAAATAAAAGACCCATTTTTCATTTTCACCAATGACATTATTGACTTGGACATTTGGACTATGGCCGCTCTCTCCCGTATGGTAGAACATTGACCGTTCTCCTTCAAAGTCTCAGTGTGATCGCTGTCGATTTCATCTGGTCTGCCCGACTGTGGGGCATCGTCCAGAGAGGAGTCTCCAGCACAGAACTTCGCAAACCACTCCTGACACGTTCCACCAGTCACGGCACCTTCTCCACACACTGCACACATCTTTTTTTGCATTTCAGTTGCATATTTACCTTTCTTGAAATAATAAAGCACAATACACAAAAATGTCTATATACCAGCCCTGG +>MG876669.1 Uncultured bacterium clone 7H_2119_4993_17823 16S ribosomal RNA gene, partial sequence +TGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCAACGCCGCGTGAGGGATGAAGGATTTTGGTTCGTAAACCTCTGTCAAGTGGGAAGAATAATGACGGTACCACTAAAGGAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGGGCAAGCGTTGTTCGGAATTATTGGGCGTAAAGAGTATGTAGGCGGCTAGATAAGTCAGACGTGTAAGCCCATGGCTCAACCATGGAATTGCGTTTGAAACTATTTAGCTTGAGTGCAGGAGAGGAAAGCGGAATTCCCAGTGTAGCGGTGAAATGCATTGATATTGGGAAGAACACCGGTGGCGAAGGCGGCTTTCTGGTCTGTTACTGACGCTGAGATACGAAAGCCAGGGGAGCAAAGGGG +>JF603243.1 Uncultured bacterium clone GDIC2IK01C8G26 16S ribosomal RNA gene, partial sequence +TCAGGATGAACGCTAGCGACAGGCCTAACACATGCAAGTCAGGGGCAGCACAAGGAGCAATCTGAGGTGGCGACCGGCGCACGGGTGAGTAACACGTATGCAACCTGCCTGTAAGCGGGGAATAACCCGTTGAAAGACGGACTAATACCGCATAATACTAAATTACTGCATGGTAATTTATTTAAACATTTATGGCTTACAGATGGGCATGCGCATGATTAGCTAGTTGGAGAGGTAACGGCTCCCCAAGGCAACGATCATTAGGGGTTCTGAGAGGAGGGTCCCCCCACACTGGTACTGAGACACGGACCAGACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGACGAGAGTCTGAACCAGCCAAGTCGCGTGCAGGAAGAATTGTCCTATGGATTGTAAACTGCTTTTGCAGGGGAATAAAGTGCATCACGTGTGATGTTTTGTATGTACTCTGCGAATAAGGATCGGCTAACTCCGTGCCAGCCGCGGC +>XM_029711062.1 PREDICTED: Salmo trutta sodium channel protein type 2 subunit alpha-like (LOC115160726), transcript variant X3, mRNA +ACCCTGCATCTCTGCAGTCATTTGTACCCGGTAACAACCGGAAGCGCAACAGAATGCTCTGAACAAGGCGACTGTGGTGGCAGCAATTTCATAACGCTCTCCTGTGTGATTTTTTTGGGGGGGGTCCATCTCTGGGAAATACTACATTACAGAGAGGAGAACCTTTTGACTTAATCAAGTATCCACATGTGTCCTCGAATCACCTTTTTACTCGGGAGAAAGCAACATCAAGGCGTGCCTGGCGATTTTTGGCGGATTCTTCCCCTTCTTGGATGAAAAACTAATGCCCTTTCTAATGCAGGAGGCTAGCCGTTCACTCTGAAAGTGCAGGATGAAAAGATGGCACAGCTGCTTGTACCGCCAGGACCAGACAGCTTCCGCCCGTTTTGTCGTGAGTCCCTCGATGCCATCGAGAGGCGGATCGCTGACGAGAACGCCAAAAAGTCCAAGGCGAAGCCCAACAACAATGACGACGACGGGCCTAAGCCCAGCAGTGACCTGGAGGCGGGAAAATCACTGCCACTCATATATGGGGACATTCCCAAAGGATTGGTGTCCACACCACTGGAGGATTTGGACACCTTCTACAGCAACCAGAAAACCTTTATAGTGTTGAACCGAGGGAAGGCCATCTTCCGCTTCAACGCCACTCCTGCCTTGTATGTCTTAAACCCCTTCAACCCTCTTAGAAGAATATCAATTAAGGTTTTGGTACACTCATTGTTCAGCATGGTAATCATGTTGACTATCCTTACCAACTGTGCGTTTATGACCCTGAGTCAGCCCCCGGACTGGGCAAAGAATGTAGAGTACACATTCACTGGAATCTACACATTTGAATCTCTTATAAAAATTCTGGCAAGGGGCTTCTGTGTAGGGAAGTTTACCTTTCTCCGAGACCCATGGAACTGGTTGGATTTCTGTGTTATTGTCATGGCATATGTCACAGAGTTTGTGGACCTGGGCAATGTCTCAGCACTGAGAACTTTCAGGGTTCTCCGAGCTTTGAAAACTATATCGGTCATCCCAGGCCTCAAGACCATTGTGGGAGCGCTGATCCAGTCAGTGAAGAAACTATCAGATGTGATGATCCTCACTGTATTCTGCCTAAGTGTCTTTGCCCTGGTAGGGCTGCAGTTGTTCATGGGGAATTTAAGAAACAAATGTTTAAGGATCCCTCTTAACTCAACCGACCTCTTCGATGATTCATTCGACTTTAATGGGACGGACCTCAACAAGACCAAGTCGTTCAACTGGACCTATTACATGAACGATCCCAAAAATTATTACTACCTCCCAGGTAAAAAAGATGCTTTGCTTTGTGGAAATGGCAGTGGTGCTGGGCTGTGCCCAGAGGGATTCTGGTGCATCAAAGCGGGCCGGAACCCAGATTACGGCTACACCAGCTTTGACACGTTCAGCTGGGCCTTCCTGTCTCTGTTCAGACTGATGACTCAGGACTACTGGGAGAACCTCTACCAGCAGACCCTGAGGGCTGCTGGGAAGCCATACATGATCTTCTTTGTGTTGGTCATCTTCCTGGGCTCCTTCTACCTTATCAACCTAATCCTGGCTGTGGTTGCCATGGCCTACGACGAGCAGAACCAGGCCACCATTGAGGAGGCTCAGCAGAAGGAGGAGGAGTTTCAGAAGCTGAAGAAACAGCAGGAGGACGCACAGGCAGCGGCAGCGGTGACAGCGGCTGAGAGCGGGGAGTTCAGTGAGAGAGGGGAGCTCACTGACACCTCCTCAGAGGCCTCCAAACTCAGTTCCAAGAGCGCCAAAGAGAGACGCAACAGGCGCAAGAAGAAAAAGCAGAGAGAGGAGGAGGAGAGAGGGGACAATGACAAGTTTCACAGGTCTGAGTCTGAGGGCAGTGTGCAAAAGAGTCGTTTCCGCTTCTCCATAGATGCCTCCAACCTGCTCAACTACGACATGAGATGTTCCACACCACACCAGTCCTTCCTGAGTATCCGTGGACCCCTGTTCTCATCCAGACGAAACAGCCAGGCAAGCCTCTTCAGCTTCCGGGAACGAGCGCAAGATATGGGCTCGGAGAACGACTTTGCCGACGACGAGAACAGTACTTTCGAGGACAACGACAGTCGCCGGGGATCTCTGTTTGTTCCCCGGCGGAGCGACCGGCGCTCCAGCAACCTCAGCCAGAACAGCATGTCGTCACATGTCCTGTTGCCGGCCAATGGGAAGAAGCACAGCTCCGTGGACTGCAATGGGGTGGTGTCCCTGGTGGGCGGGGCTTCACTTCCCACATCACCTGAGGGACTCCTTCTGCCAGAGGGCAACACTACGGAGACAGAGTACAGAAAGGCCCAATGTGAATCGTACCAGGCCTCTATGAACTTCCTGGAGGACCCAGGGGCCAGGCAGAGGGCCTTCAGTGTAGCTAGTGTTATAACTAATACTATGGAAGAACTTGAAGAGTCGAGACAGGAGTGCCCTCCTTGCTGGTACAAGTTCTCCAACACTTTCCTCATCTGGGACTGTTGTCCGGCATGGCTGAGGATCAAGAAGACAGTCAAGATGATCGTGATGGACCCTTTTGTAGACCTGACTATTACCATATGTATTGTTCTGAACACAGTGTTCATGGCTATGGAGCACCACCCAATGTCTGGGGATTTCAAAAAAATGCTTTCTGTGGGAAACCTGGTGTTTACAGGTATCTTCACAGCTGAGATGTGTTTCAAGATTATTGCTTTGGATCCGTACTGTTATTTTAAGGAAGGCTGGAATATATTTGATGGTATCATTGTCAGTTTGAGCTTGATGGAGATTGGCTTGGCCAACGTGTCTGGAATGTCTGTCCTCAGATCATTCCGATTGCTGAGAGTATTCAAACTGGCCAAGTCTTGGCCCACACTGAACATGCTGATCAAGATCATTGGTAACTCAGTGGGGGCTCTGGGTAACCTCACCCTGGTCCTGGCCATCATTGTCTTCATCTTCGCGGTGGTGGGCATGCAGCTGTTTGGGAAGAACTACAGAGACTGTGTGTGTAAGATCTCTACAGACTGCACACTGCCCCGCTGGCACATGCATGACTTCTTCCACTCCTTCCTGATTGTGTTCCGGGTGCTGTGTGGGGAGTGGATCGAGACCATGTGGGACTGTATGGAGGTGGCTGGCCAGAGCATGTGTCTCATCGTCTTCATGATGGTCATGGTCATCGGGAACCTGGTGGTCCTGAATCTGTTCCTGGCCCTGCTGCTGAGCTCGTTCAGTGCTGATAACCTGGCGGCCACGGATGATGACAGCGAGATGAACAATCTGACGGTGGCCATAGGCCGCATCCACCAGGGCATCGCCTTTGTCAAGGCCTTGGTGTGCCGCTCCTTCCACAGCATCTGTCTGAGGAAAAAGAAGGGGAGCCTGGATGACCTCCACAGAACCAACTACAACTCCAACCACACCACTGTGGAGATCATGAAAGACCCTGAATACGTGAAGGATGACAATGGCACCACCGGTGGGGTAGGCATGGGAGTGGGTAGCAATGCAGCAGGGAAATACATAGTCAACGACAACACTGACTACATGCAGTTCATCCACAACCCCAGTCTGACCGTCACGGTGCCCATCGCTGTGGGGGAGTCGGACTTTGAAAATCTCAACACTGAGGACTTCAGCAGCGATTCCTCGGACATAGAGGGAAGCAAAGAGCAGCTAGCTAAAGACCGTCCACTGAGCTCATCAGAGGGCAGTACAGTGGACATCAGGGCCCCAGGAGAGAGAGAGGGCTCGGTGGACATGGAGCCTGAGGAGTCCATGGAAGCTGAAGGATGCTTCACTGATGGCTGTGTCCGTAGATTCCAATGCTGCCAAGTGAACGTTGAGGAGGGCAAGTGGAAGATGTGGTGGACATTGAGGAAGACCTGCTTCAGGATAGTGGAGCACAACTGGTTTGAGAGCTTTATCATCTTCATGATCCTGCTCAGCAGTGGAGCACTGGCATTTGAGGACATCTACATCGAACAGAGGAAGACCATTAAGACATTGTTGGAGTTTGCGGACAAAATCTTCACCTACATCTTCATCCTGGAGATGTTGCTGAAATGGGTGGCCTATGGATTCGCCAAATACTTCACCAACGCCTGGTGCTGGTTGGACTTTCTTATTGTTGACGTCTCTTTGGTCAGCCTTGTGGCCAACGCCCTGGGCTACGCTGAGCTGAGTGCCATCAAGTCCCTGAGGACGCTGCGAGCGCTGAGGCCCCTGAGAGCGCTGTCCCGCTTCGAGGGCATGAGGGTGGTCATAAACGCTCTGCTTGGAGCCATCCCCTCCATCTTCAATGTGCTGCTGGTCTGCCTCATCTTCTGGCTCATCTTCAGCATCATGGGTGTCAACCTGTTTGCAGGGAAATACTACCATTGTATCAACATGACCACGAGTGATCGCTTCGAAGTCAGAGACGTGGCTAACAAGACAGAATGTTTGGCTTTGACAGGTACCCACTGGAAGAATGTCAAGATCAACTTTGATAACGTGGGAGCAGGCTATCTGGCACTGTTACAAGTGGCTACATTCAAAGGCTGGATGGACATCATGTATGCAGCTGTGGACTCTCGCAATTTGGATGATCAACCCGACTACGAAGTGAATCTGTACATGTATCTGTACTTTGTGGTATTCATCATATTTGGATCCTTCTTCACACTCAATCTCTTCATTGGTGTCATTATAGACAACTTCAATCAGCAAAAGAAAAAGTTTGGAGGTCAAGACATCTTCATGACAGAGGAACAGAAGAAATACTACAATGCTATGAAGAAGCTTGGCTCAAAGAAACCCCAAAAGCCTATCCCTAGGCCAGTGAACAAGTTTCAAGGGTTTGTCTTTGATTTCATTACAAAGCAAGCCTTCGACATTGTCATCATGATTCTTATATGCCTTAATATGGTCACCATGATGGTGGAGACGGAAGACCAGACAGACGACATTCGTAAAATTCTCTACAAGATCAACCTGGTGTTTATTGTCATGTTCACCGGGGAGTGTATTCTGAAGATGATCTCACTCCGACAATACTATTTTACCATTGGTTGGAATGTATTTGACTTTATCGTTGTTATCCTGTCGATAATTGGTATGTTTCTCTCGGAACTGATAGAGAAGTACTTGGTTTCACCAACCTTATTCCGAGTCATTCGACTGGCCCGAATTGGTCGCATCCTTCGCCTCATCAAGAGTGCCAAGGGAATCCGTACACTCTTGTTTGCGTTGATGATGTCACTTCCTGCATTGTTCAACATTGGTCTTCTGCTCTTCTTAGTGATGTTTATCTATGCAATCTTTGGCATGTCAAACTTTGCATACGTCAAGAAGGAGTCTGGGATTGACGACATGTTCAACTTTGAGACGTTCGGCAACAGCATGATCTGCCTGTTCCAGATCACCACGTCTGGGGGCTGGGATCTCCTGCTGGCCCCCATCCTCAACAAGGGAGAGCCAGACTGCGACAGCCGGAAAGAGCACCCAGGAAGCACGTACAAGGGGGGAGACTGTGGAAACCCCCCTGTGGCCATTATCTTCTTTGTGAGCTACATAATCATCTGTTTCCTTGTTGTGGTCAACATGTACATTGCTGTCATTCTAGAGAACTTCAGTGTGGCCACTGAGGAGAGCGCTGAGCCCCTGAGCGAGGATGACTTTGAGATGTTCTATGAGGTCTGGGAGAAGTTTGATGCGCGAGCCACCCAGTTCATGGAGTATGACAAGCTGTCAGACTTTGCTGATGCCCTAGACCCCCCGCTACGCATCTCTAAGCCCAACAAGATCCAGTTGATCTCAATGGATTTACCCATGGTGAGTGGGGAGCGCATCCACTGCCTGGACATCCTGTTTGCCTTCACCAAACGTGTCCTTGGCGAGGGGGAAGGCTTGGACATCCTCAGGGGTCAAATGGAGGAGCGATTTATGGCCTCCAACCCCTCCAAGGTGTCCTACGAACCAATCACCACCACACTGCGCCGCAAGCTAGAGGACATGTCTGCCCTGGTCATCCAGAGAGCTTTCAGACGATATCTTCTCAAGCGTATTGTTAAGCGGGCCTCTGCCATGTACAAGGAGAAAATGCAAAGTGGAGGCACGCTCCTTGATAAAGAGCTTCTCGTCATAGACAAATTTAACGAGATCTCTACTTCAGACAGAACTGACATGACACCCTCCACAGCTTCTCCCCCATCATATGACAGTGTCACAAAACCTGAAAAAAACAAATATGAAAAAGACAAGAGAAAGAAGGAGGTGAAGGAGAAAAAAAAGTACATGGATGTTGGGAAGATTTAGCATAGAATTCATTCTGCTACAAATTGTTTACAGCCTTTGAAGGTGACCAATGCGTCAAGTGAAGTGTCTTTGGTGTGAATATCTATGCCAAACTGACAATGCTTACTTGAGTCTAAATGTAAGGTTGGTGCCTAACATGAGGCAGTGACTCACATTCTTAGGCTGTAAGAATTGTTTGGATGTTAATGGGGACTAAAACAAATGTTTGCCAGCTTTATAGGGACAGGTAAAACATTTTGTTGTGTGTTGTTACAATCAGAAACGTTTAGTTATACTGTAACTTCTCTTGCAGCTAGTACTTCCAGGGTTGCATCCAGTGTCTTGCATTATAACTGCCATATGATTTACTAACTTATTTTTCTTACAGAATCTTGTTTTTAAAACTCATAGGTTGATTGTGTGACTATTTTTGTAAACATATGTTTTACTGTAAAAAGAGGGGTTTCATGTATTGCTTTAAAGGTAGTCTTGTTCACTTTAAATGTTCATACAACTTGACTTGTCAAGTGTGATCAAACACACATCCTTGTGGGGTGCAGGGCCCAAAAAAAAGTTGGTATAAAAGAAATTGTGCCCGCACACTCATAAACCGTTTTTAAATGAAGGTACATGGTGGAGCTTATGCATGTGCGGGCTCTGTTTCGAGCATAAGACATGACTACTCATGACAACCATTATTGCTGCAGTGCAGTTAGGGGGATTGCTGCAGTTCAATCGACGTGTAGACTTGCATGAATGCTTACCCATGATTACAGTGTCGCATTACGCACCATCACCAAAATGAGCTTGATTTCTCCGTGATGTCTGAGGGACTCATACTTTGATGAATCTGTAACATTATGTTACTCTCACTATTACAAATCAACAGAAAAGATTTCTCCTGAGCATACAGTCCAAATACCATTACCAACAACTGTTGTCTATAATCAGTTTCCGAACAATAACACGCTCTAGAAAAACATAGTTTTCCTCCTTTCATTCATCAGAAACTACAGTACAATGCAGAATACATTCATCTTTAGTGCTGGTTGACAGAGTTGATACACATAGTATTCGTAGTCCAGCTCTTCTCTCCAGCTTGAACCTAAATGGCCTCAAAGACATGTCTATACTGTATTTTCTCTTCATAGTGGTGAATGATAAAATGAGGCAATTTCCTCTGCACAGTATAGTTGTGACCATCAGGTGTAAATCGCCTGAAATAATCTCCAAGCCTAGTCTGACAGGTGAAACACTGTATTCTGTGTCATATATGCTCACTTAAGAGGCATTCCGACAGCATGTATCTTGTGTACTCTGTGGTTTTGGTACTGCAACATCATTAGTAAGTGCTATAAAACTTGTCATTTACCAAATCTAAATTGCTTTGAGTTTACCTTTCCTACCCACTTCCCAAATATTTTTCCATTGTTGTTGATGTATCTGTATGTACATATTCTATAATATATGAAATATACAAATATATTTGATATATTATGTGATGTTTCATGTATAATGGAATATATGAAGTTGTTAATGTTATTTAATACATATATCTATTATATTCTGCATTCTCTGCTCTATATGGCAGACAGACCAGAGTATGAAGCATCCAGTTGAGGCTGTGGGAAGATTTTGTAGTTAGATTACACTCAATGTCTATATAAATATTGTAATATAATCATTTTTCTTTGTACTGTACAACTGTTTTGTAAATAGTTTGCTATACAATATAGCCACACTGTCTGCGCTATAGCCACTTTAGTTATTTTAAGTTTCACTGCACCCTTTCATTTGGAAATGCCTCATGTGATCTAGTGAAGGGGATGTGGACATCTCATTTTGATTCTTACATCTTTTATTTTGTGTCATTTGTAAACTGTTGTCACATTTTACCTCACATGCTTTATCATAATAAATATCTAAGATGGAACATCAGGTTCAGAGAATTCTGAATATGATTGTCTCAAGGCTAGTGTGACAGCACAAGTCTTCGATTGTTTCCTACATTTGTTTACATAGTAATCCAATTCCTCAGGATGTTACTTTTGTCAGCTGTTCCCTTTGTATAAAGTGTCACAAGTATCTGTAATTAAAATGTTATAAAGTATGTTATAAAGAGCATATGTTGCATGTAATAAAAACGTTCAGAATATGTATATACTATATATGTATACACAATGAATGTTTTGATTACATAACATTTAATAGATCACATCTTTATATGCATTATGCTTGTAGTGTATGAGTAAACTGCATGCAAGATATTGCTATAACCCATCTCATTGAAAAGCCAAAAGAATAAAGAATACATGTACCTCA +>XR_989699.2 PREDICTED: Macaca nemestrina uncharacterized LOC105485591 (LOC105485591), transcript variant X1, ncRNA +TGGTTTGCTGCAGGTCCGCTCCAGACCTTATTCCACTGAATCTTTCCTGCTCTTGGAGATAACACCAGTGGAGTCTGCAGAACGGCAAAGGCGGCTTTCTGCTTCTTCCTCTGAAACCTTTGTGGCAAAGGAGCACTGACATGATGGCAGCCGGAACTCTCCTGTGAAATAGGAAGATGAAGGCTGGAGTTGCATAATGATCCTTCTATTATGAGCTTTGGTAACGTCATTTTCCAGAGGGATAGTCATAAATCTTATTAGTAAAACTCAATTGCACATTTTCATCAAAAATGAGGCAGTTCCTCTAATTCAAATGAACATACACGTTTAAATACAGTCGCTGCTCTTGAGAACGTGTGTCAGTGCGCTCAGTAATTCACCATTGGTGAAGACTGACCTCTACTAAAAAAAAAAAAAAAAGAAAAAGAAAAACTGAGCATCCAAATTCAGAGAGCCTATCAAGAAATTCAGAAAGCCTATCAACAAGAATAATGCACATACCATTCCAACACTGTGTGAAGTGAGAGGACATGAGACAAGGTCATTCTTAAGCAACAAATTCTGAAGACAGACCAAAGTGTTCTGCATATCAAGCAGGTTGTGAGGTCAACGTGCAGAAAATATCACAACATAAGTTAATGCCTGCGAATGACACCCTAAAAACAACTTTTAAAAGCAGTCCTGACAGCTAGAGCATCTGCAGAAATTACCTCCACATGAAACGTTGCTTGGTGCTGCAGAAGGGGCCTCCTGTTAAGGAATACATTTGACAGTGATATCAAGAAGTGCTAGGGCGATTTAGTGGCAAGATGGCCGAATAGGAACAGCTCCAGTTTCCA +>XR_003517074.1 PREDICTED: Zalophus californianus uncharacterized LOC113913036 (LOC113913036), transcript variant X2, ncRNA +CCCCGACGTGCACACCCGAGGACCTAAGACACGGCTCCTACACCTGCCGCGTGCGACACCCCCGCACGGAAATCCCGCTCCTCGGCTGACCTGGTGACACAGGCCGTCACCCCTACCCCCACTTCCCCCCCTCCACCCCACTCTCTGCGTTGCTTCCGTGAGGTCAGCACTCACCTTCCCTGCAGGGATGAAAAGGGCAATTCGCGCCTCCCGCCAGCCAAGGAGTCTGCCCTTTCTTCCCCCACGCCGGGCGCTTAGAGAAGAGGAAGGACAGCAAGCTTGCTTTTGCTTTACCCTTACCTTATAAAGCACCGCTCTCGTGGTTCTGACTCAGAAGACCCCGGGGGCCCAATAAGCCAGGCCTGAGCAGCAAGCAAGCGAGGCCCGAGCAACAAGCGAGTGAACGACCAACTTGGAGTGGGAAGAGACCAGACTTAAAGCACTGAACAGGAATTCTGAAACCTAAGAAGTCAATGTTAAGGCTAGTTTCCCTAACTTACAAGGCTGGACAATACTCTTCACCATTTCATGTGGCCCAGATAGCTGGAACAGCTCCAGTCACCAGACCTCACACCAATGTCGCAAGCAAGAAGGAAAAGCAGAGACCAAGAAACTACTTGTAATTCTCAAATCGGTACCAGCAGCTGCCATGGGCCCGCTTCACTTTCACACAAAACAAAACAAACGAGAAAGCACGTATCTTTCCTTTGGCTTTGTGTAAGCTCCTTGACAAAAGATAATGACAAGATGGCCGAGAATTCGGCATCTGACCAGCACCGCATGT +>XM_028148513.1 PREDICTED: Eptesicus fuscus transcription factor 7 (TCF7), transcript variant X4, mRNA +CAGCTTTTCCCGCGCCCCTCACGGCCCCTCTGGATTTCCCCGCAGGCTCTCGGGCGGGAACACACTTCGCAGAGACTTTTCCCCGACAAACTTCCAGAATCTCTGGAGGACGGCCTGAAGGCCCCGGAGTGCGCCAGCAGCATGTACAAAGACACCGTCTACTCCGCCTTCAATCTGCTCATGCACTACCCGCCCCCCTCGGGAGCAGGGCAGCACCCCCAGCCGCAGCCCCCACTGCACAACAAGGCCAGTCAGCCTGCCCATGGCGTCACCCAACTCTCTCCTCTCTATGAACATTTCAGCAGCCCACACCCCACACCTGCACCGGCCGAAATCAACCAGAAGCAAGTTCACAGGCCTCTGCAGACCTCTGACATCTCTGGCTTCTACTCTCTGACCTCAGGCAGCATGGGACAGCTCCCCCACACTGTGAGCTGGCCCAGCCCTCCTCTCTATCCCCTGTCCCCTTCCTGCGGATATAGACAGCACTTCCCTGCCCCCACTGCAGCCCCTGGCGCCCCCTATCCCAGGTTCACCCACCCATCCCTGATGCTAGGTTCCAGCGTACCTGGTCACCCAGCAGCCATTCCCCACCCGGCCATTGTGCCCCCCTCAGGGAAGCAGGAACTACAGCCTTATGATCGAAGCCTGAAGACGCAGGCAGAATCCAAGGCAGAGAAGGAGGCCAAGAAACCAACCATCAAGAAGCCACTCAATGCTTTCATGCTGTACATGAAGGAGATGAGAGCCAAGGTTATTGCAGAATGCACACTCAAGGAGAGTGCTGCCATCAACCAGATCCTGGGCCGCAGGTGGCACGCACTGTCACGGGAGGAACAGGCCAAGTATTACGAGCTGGCCCGCAAGGAGAGGCAGCTGCACATGCAGCTATACCCAGGCTGGTCAGCGCGGGACAATTACGGGAAGAAGAAGAGGCGGTCCAGAGAAAAGCACCAAGAATCCAACACAGGAGGAAAAAGAAATGCATTCGGTACTTACCCGGAGAAGGCCGCTGCCCCAGCCCCTTTCCTTCCGATGACAGTTCTCTAGGTTGCTCCGGGTCCCCAGTCCCCCAGGACTCACCCTCATACCTCCTGCTGCCTCACTTCCCTACTGCACTACTTGCTAGCCCTGCAGAACCGGCGCCTACATCACCAGGTCTCTCTGCGGCACTCAGCCTCCCAGC +>XM_032234808.1 PREDICTED: Thamnophis elegans microtubule affinity regulating kinase 3 (MARK3), transcript variant X2, mRNA +AGGAAGCCGGGCGGCCATCTTGGATCATCCGGGAGCGGCGGCGTTGTTGCCGCCGCCGCTGCTGCTGCTAGTACTGTGGCTACTGGTTGAGAGAGCCGAGGGAGCTGGTTTGACGGCGGCAGCAGCAGCGCCAGAGGGGTTGTCTTCCTTCAGTGTTTCCAACCCAGGCTGTGACGGAAGCGTCTTTCTCCTTGGGTCTGAGCCTTCCCCCTTTGGGATAGGGGGTTGGTAGGCAGCGAAGGACTTGGGAGTTCTGGAGAAGAAGGAAGAGGAGGGGGCGCAATTAAGTCATGAGAGCCCGAGGCCCGGCGAAGCAATCCGTGTAGAGTTAGAAAACGGCTGAGGGCTTGGCCCGCTTCCCTTTGACCAGCTCTGGGGGGTTGGGGGGGTTGGTTGTTCTTTCGCAGCCGACAGTGGTTGCGCGGAAAGCGGCGGCTGCTTCCCCACTTTTCCTTCCTCAGCAGCCTGCTAGTTGGGCTGTACCGTAATTGCTGCAGCGCCTGCCCTCTCCCGGCTCCCCGCTTTTTTCTTTCGTCTTTTAACGGCACCGGACCATTTTTTGCCCCGTTTTTCTTTTGGTGCTCCATGAGAATCTCCTCTAATCTGTCCGTCCCCACCTTCTAAAGACCCTAATCTGTCTATAAGATGATTCCTGAAGATTCCCAGAGGAATCTAATGCTGCATTATCAGACTGGAAGATAGATGAGAAAAAGGGTGGTGGAGAAAATAATCACCCCAAATTTCTCTTCCCCCGTACTACCTTTTCCTTTGATGGTGGCACTTGATAACTGCTATCATGCTGTAAAATCACATTTTTTTGTAAATATATATATGTATATGTGCTCGGAGGGAGGGAGGTGTTAGGATTTTTTTATTTTTATATAATAAATAGTTGGATTTTGCCATTGCAAACGGTGCTTCAGCTAAGTGAATGAAAATGTCTACTAGAACTCCATTGCCCACGGTGAATGAACGGGACACTGAAAACCATATCTCTCACAGTGAAGGACGACAGGAAATTTCCTCCCGAACTGGTCGGTCTGGGGCTCGCTGTAGGAATTCTATAGCTTCCTGTGCAGATGAGCAGCCTCATATTGGGAATTACAGACTCCTTAAGACAATTGGAAAGGGAAATTTTGCAAAAGTGAAACTGGCCAGACATATCCTTACTGGCAGAGAGGTTGCAATAAAAATAATTGACAAAACTCAATTGAATCCAACTAGTCTACAAAAGCTGTTTAGGGAAGTAAGAATAATGAAGATTTTAAATCATCCTAACATAGTTAAATTATTTGAAGTAATTGAGACTGAAAAAACACTCTACTTAATCATGGAATATGCAAGTGGAGGGGAGGTATTTGATTATTTAGTTGCACATGGAAGAATGAAGGAAAAAGAAGCAAGAGCGAAATTTAGACAGATAGTATCTGCAGTGCAGTATTGTCACCAAAAGCATATTGTTCACAGAGATCTCAAGGCTGAAAATCTATTACTTGATGCAGACATGAACATTAAAATAGCCGATTTTGGTTTTAGTAACGAGTTTACAGTTGGTAATAAACTGGACACATTTTGTGGCAGCCCTCCCTATGCTGCTCCAGAACTCTTCCAAGGCAAGAAATATGATGGACCAGAAGTAGACGTTTGGAGCTTAGGTGTCATTCTTTATACCCTTGTGAGTGGATCTCTGCCTTTTGATGGGCAGAATCTAAAGGAACTCAGAGAGAGAGTGTTAAGAGGAAAATACAGGATTCCTTTCTACATGTCAACAGATTGTGAAAACCTGCTAAAACGTTTCCTGGTGCTAAACCCAACTAAAAGAGGCACTCTTGAGCAAATAATGAAGGACAGATGGATCAATGCAGGACATGAGGATGATGAACTTAAACCATTTGTGGAACCAGAATTAGACATCGCAGACCAAAAGAGAATAGATATTATGATTGGAATGGGATATTCTCAAGAAGAAATTCAGGAATCTCTCAGTAAAATGAAATATGATGAAATCACTGCTACATACTTACTACTCGGGAGGAAATCATCAGAGTTGGATGCTAGTGACTCAAGCTCTAGCAGCAACCTTTCTCTTGCTAAAGTCAGGCCAAGTAGTGATCTCAATAATAGCACTGGACAGTCTCCACATCACAAAGTTCAAAGAAGTATATCTTCTAGCCAGAAGCAGCGAAGGTACAGCGACCATGCTGGTCCATCTATTCCTCCAGTAGCAGCATATCCTAAAAGGAGCCAGACGAGTACTACTGACAATGACCTCAAGGAAGAAGGGATTCCATCAAGGAAATCCAACAGCAATGCAGCTGGAGGAAAAGGAATTGCTCCTGCTAGTCCTATGCTTGGGAATGCAAACAATCCAAATAAAGCTGACATACCTGAGCGTAAAAGAAGTTCTGTTACACCCAATAGCAACACTACACCTGGAGCAGCCATGACACGGCGAAACACTTATGTTTGTAGTGAACGAACTGCTGCAGACAGACACTCGGTAATTCAAAATGGCAAGGAAAGCAGTACCATTCCTGACCAGAGAACACCAGTTGCTTCAACTCACAGTATCAGCAGTGCAACAACACCCGATCGTATCCGATTCCCAAGAGGAACTGCCAGTCGTAGTACTTTCCATGGTCAGCTTAGAGAAAGGCGCACTGCCACCTATAATGGACCTCCTGCGTCACCTAGTTTATCCCATGAGGCAACACCACTTTCACAGACACGAAGTAGGGGCTCCACTAATTTGTTCAGTAAATTGACTTCAAAGCTGACTAGAAGAAACATGTCATTCAGGTTTATCAAAAGTCGTAACGTAGCCGTTGATCAGAAGGATGACAGCAAGGAAGCCAAACCCCGTTCACTACGATTTACTTGGAGCATGAAAACTACCAGTTCAATGGATCCTAATGATATGATGAGGGAAATTCGCAAGGTCCTGGATGCCAATAATTGTGACTATGAACAGAGGGAACGTTTCTTGCTTTTCTGTGTCCATGGGGATGGCCATGCAGAAAACCTCGTGCAATGGGAGATGGAAGTGTGTAAGCTTCCCAGACTGTCTCTGAACGGAGTTCGCTTTAAACGGATATCGGGAACATCCATAGCTTTTAAAAACATTGCTTCCAAAATTGCCAATGAATTAAAGCTGTAATGAGAAGAGCAATCGAGTTTGTAAATTAAGTAGCAAATTCAAGTGTTTTTGTTTTGTTTTTGAGGACACCAATGGTCATGTATAGAATACTTAGGGCAATAACTTCTGCATCTTCTGGATCGTGATATTAAAACAAAACAGTTCAGACAAGCTGCTGAGCTGGGAGGGAAGTTGGACTTTTTTTTATAAGTGCACTACAGCATTAAAGTTGCCTATGTAAAATATTCCCTTCTGCTTTATTTCCATTGCTTTGAGTCTTGACAAACAATCTAAAACACACCATGTATACATTTGGATATTCCTCCTGTTGTGTGGATGTGTGAATGTACAGTATGTGTGTATAATTATAATATAAAAGTATTATATGTAAACAATTCATTTATAGCATCAGAACTGTACCAGTACCTCTTCCGGGTTAATTTTGGTGCTAAAATGGAAATGGCCAAGGTGAAAGCCCTTAAGAATACTAAATAATCGGTAAACACAAGCTTCACAGTTCACTGTTGTGTTTAAGATTATGGAGGTTTGGGTTTATGGGTGTGAACATTATTCCTGTATTTTTTAAAATTAATTTTCATAACATGATTTAAATCCCCCCAAATAATTCTTTCTTTTCTTTTGCCTATTTATTATTATTTAAGTCTGAAATCAATTTAAATTACTTAATTATGATAATGAAAATTGTGGGGGAAATGCTTCAAGGTTACATGTTTTTTTCCTTTGCTAAGCTGATTGAGCATTTTATCCTCACCTTTTTTTGCTAGTACATATTATAATTTTAAAAATTTTACTTGAAAAGTTTGTTCTCAACTCCCATTCATTTCAGTGGAGCTGGTGCAGAGAAAACTTGTTACTAATGAAATACTGTAGAAACAGCCTGAACAATTGATATAAATTTTACATTTAGGCTACCTTATAATAATGTATTTTGAAGTTTAAAAAAACCATATTCAGACATTTCTAGTGTGAAAGAAATTCCTATGGCAAAATAATTGTGCCAGATCAGCAAAAAATGATCAGGAGAGAGAACTTTTGAATTCTAGTAATTTAATATTCTTGTACGTACTATACAATGACTGATAATGTTAATCATAATCAAAACACTATCAGCAAAGTTTATAAAAGTGAGAAAGTATGACCTGTCCAGCCAGGATTTGTGTTTTATTTGGTCTTTCCCAATTGTTTGCTGCCCAGATTTTAAAATTGGTTATGCAGGCTGGGAATTATGGGAATGGTAAAAATAAATATATTAAGGGAGATTAGAGGATTGAGAAAAGCTATTCTAAGTCTATGTCATGTGTTTCAATTTTGTCAGAGGCTTAAACTTCTTAAAAGCCTTGTTGCTGGCCAAGTCTTCCTTCATCATCAATTGCATCTCTCTAGCAAATTCTGCCCTTAGAGACAAAAAGCTATTGAAAACAGGGTGGGTAGGTAGGTGGAGAGGATTGCCTGCCAGTGACATGATAGCTCATAATTTCCATTTGGAAATGCTTCTGTAAATCTGAACAGGTTTATATGCTTTCTTGCACAGCTTCATATTTAAAAATATTTTAGTCACAATGCACTGGAGTTTAGAAGGGGGTTGTAAATGACTTAAATCTTTGTTTTTATGCTGGGTAAACAAATCCAATCCCTGGACCTTTATCTAAACTTCTATTTTCTAAGCTTGTGACAAAGCTTCAGACATTCAACATAATTATGATGACTAAAACACTTTTTAAGAAGGCTTGCTGGTCCTGCATTGCAGGTGATACGAAGCAATTTTAGGGTGTACTCTACATGAATTGGCTGTAACTATCTGCCTTTTTCAAACTGCTATCTCCTCTGCTGGTCCTTACTAAATTGGGTATGATTTGTCTAAATCAAGTCATAGGATGATATAATCTTTTCTGCTGCCTTAATCAATGCCTTTTGATTCAAACTTGTTAGGAGCTTAAAGTATCATGTATTAGATATATGGTCTGGCAGAAAAAACCTTCATTTAAAATGTAGTGAATTGAATTATAATATTTCATTTGGAGGCACCCAACTAAAATTCAATCCAGAGTGGTAATACAGAATACTGAATGTTCTAGACATTTTTCATTTATGTGTAATTCTCCCTTGAAACTTTGTAAAGATGTTATATTAATCCTGCATTGCGGTACTATAGCACAAAGTGACTGACTTCTGGTTTGTTTTTGATTTTTCTTAATGAAAAGAACAGTATTCTGTATAGAGATTTAATTATAACAATTGTTCAACAGTGGCTGTAGCAAGTACTGATTCTCCATTTT +>XM_019789640.1 PREDICTED: Branchiostoma belcheri mucin-5AC-like (LOC109485937), mRNA +AGGTGTGTACATGTGAAGTCTATTGATCCCCAACCGCCGTCCTGTGAGACACTTGCCTTCACCATGGAGCCGGGGAAACACATCTGCGCCGCGGTAGTCCTGTTGGGGTACGTTATTTCAATAATATCGACTTCAACAAGCCCGATATATCATGTAAGCTACCAACGTCTTGCCGATGCAACACAAGTGCCACCAACGTCTCAGCAGGAACATACCATTTCGACTGACAAAGAAGCCCCCACAGACAATGTGCAGACCACGGTAGAACAGGATACAGCAACTTCATCCGGTGGGAATGGAGTGACAGCCTTGGGAACAGCAATATCTACAATAACAAGGTTGGTAACAACGTCATTAGTTGACTCTAGTACTGAGTCTGACACTGTTCAGAACACAAACACGACAGCAACAGACGCGTTTACAATTGTGGATGCCCAAAGTACTGCAAACAGTGCCACGGGCGTTGTAACGGCAGCTGTTACAACTGAAAAGTCTTTCGTTACTACCGATACTGTTACAACAACTGATACAGTAACCCCGGTCATTACTACTGATGTTGGCATAAATGACGCAACTGGGTCCACCACCACTGACACCTTCATCACTCCAGTTACAACTGATCCTGTCATTACAACGAAAGCTGGTACAGCATCTGTAAAAACCGAGTCTGGCCTTTCCACACATGCTATCACGCCGTCTATCACAACGGAACCTGTTCAAACAACATATGTTTCTACACCTGCAACAACAGAGAATGTCATTACCGACAATGGCATAACAACACCCGTTACCACAGATTCTGCCCTTACCACTGATGCAATTGCAACATCTAGTAGAACAGAAGATGTCATTACAACTGATGCTGGTACAACGTACGTCAATACACAACCTGCGATAACCACGTATGTTGTAGCAACAGCAGCCACTTCACAGCCAACCGTCATCACTAATGCAGCCACAGCACCTGTTACACCACAACCTGGCCTTATAATAATTACCACTAACGCGGTTACAGCATCAGTTATAACACAGTATGACCTTCCCAGTGGCGCGGTTACAACGCCGGTTACAACACATCCTGGCATTACCACTGGTGCTAACACAATATCGATTACAACAGATCCTATTTCTACCACCAACGCGAATACAACATCACTTACACCACAGCCTACCCCCACCACCATCGCTGATACAACATCTGTCACAACAGATCCTATTTCTACCACGAACGCCGTTACAACATCAGTAACAATAGAACCTATCTCTATCACTAACGTCGATACAACATCTGTTACAGCAGAAACTATTTCTACCACCAACGCTGATACAACACCAGTCACAACAAATCCTATTTCCACCACCAACGCTGTTACATCAGTTACAACAGAACCTATTCCCACTACCAACGCTGAAACAACATCAGTCACAACACAACTCATTCCCACGACGAACGCCGAAACAACATCAGTTAAAACAGATCCTATTCTCACCACCAACGCCAATACAACGGTATTTACAACACAACCTATCCCAACCACCATTGGCTTTACAACATCAGATGTCACATATCCTATTTCTACTACCAACGCTGTCACATCAGTGACACACTGCCTACCCCCACCATCAACTCTGATACAACATCGGTCACAGCAGATTCAATCTCTACCACCAACACTGGTACAACATCAGTCACAACAGATCCCATTTCTACAACCAACGCTGTTACATCAGTCACAACACAGCCTACCCCCGCCACCAACGCTGTAACAACATCTGTCACAA +>XM_034695841.1 PREDICTED: Notolabrus celidotus SPO11 initiator of meiotic double stranded breaks (spo11), transcript variant X5, mRNA +GAAGTAAACAACGGCCAAGCTGATAGCGAACCTGCTTCTTTTGCATCACTTAAGAAGTAGTTTGTATGGAATTCAACAACATTCACAGCACCTAAAAACTGAGATCCCTGTCAAACGCGAAGAAAAAAGGAAAGCGGATACGAGCGCTGTGCATTATGGGAAACAGTACGCGAGGTAGACTGGTCCTATGAAAACTTCCCAGATCAGTACGACATCGAGCTGTATTCTGAAATTGACAAGCTCCGTGCTCAGCTGCTGCACAATGTCGAATTAATGTCGGACCGCCAGTGGATGATAGAAGAAATCAGCGACAGAGAAATTCTGACCCGCATCGAAAATGTAATCCTTGGAATAGTGACAAGTCTGTCCAAAGATGAGGCCCCTGTCCTGGCACTGCCCAACAGATCCAGCTGGGCCAACATCAGTTTTGACAGTGCTGTTGGGCTTCAAATGAGTTCAGGAAGTTCTGTCACAACCATAAGGAGCGACTGTAGCTCATCCATCACGAAATTTGCTCAAATTCTCAAGATCCTGGCGGCCATCTACAGACTGGTGCAGAGCAACTCTTATTCTACCAAGAGAGACATCTACTACAACAACCCACAGCTGTTTGTTTCACAAAGGACTGTTGATAGTATAGTAGATGACATCTCCTGTATGCTAAAGGTTCCTCGCAGATCTCTACATGTGTTGGCCTCGTCCAAAGGATTGATCTCAGGTGATCTGTCTTATCTTGAAGAGGACGGCACAAGAGTTGACTGCCGCTCAAGCTCTGCTGCTGTTGCTGTATCGTCAAACATTGGTGGGATTAAGAATATTGTATCATCTGCAAAGTTTGTCATGATAGTGGAGAAGGATGCGACGTTTCAGCGACTGCTCGACAACGACTTCTGCACAAAGCTCGCTCCCTGCATCATCATCACAGGAAAAGGCATGCCAGATGTGAACAGCAGGTTGATGGTGAGAAAGCTTTGGGACACGCTACACATCCCCATCTTCGCTCTGGTGGACGCCGACCCTCACGGGATGGAGATCATGTGTGTCTACAAGTATGGATCAGTGGCCATGTCGTTTGAGGCCCACAGCCTGACCGTCCCCAGCGTTATGTGGCTGGGCCTCCTCCCCTCTGACCTCCAGAGGTTGCGGGTTCCTGAGGATGCCCTGATCCCTCTTACAAAGAGAGACCAAAGCAAACTCAACAGCCTCCTGGAGAGACCGTACTTAAGCAGCCAGTCAGACTGGCAGAAAGAGATGGAGCTGATGCAGCAGAGTAAAGTCAAGGCTGAAATACAGTCCCTGGATGCTATTGCACCTGATTTCCTGACCAGCATCTACCTGCCCAATAAGCTGCGTTATGGTGGCTGGGTATGAGTGCAATGCTGCCACCTAGTGGGGATCTAAGACTACTGAGATCCCTCACCCTTTTATTAAAACCCTGTGAATATGGTGAAAACTCGCACCATGTTTTTTGTGTTTATGTTCCCAAGATGTTTGGACATGCTGTTGAAGTCTCATCAAACACACTATGTTAGTTTAAGTAAAGTCCAGCCTGTTTTACAACCACTCAACACCCCTAAGTATGCTCATTAAAAGACTTCAAGTCAACAGA +>XR_007695918.1 PREDICTED: Diabrotica virgifera virgifera uncharacterized LOC126878978 (LOC126878978), ncRNA +TCGGAAAGGAGGTGTTCTCTTCACCAGTTGGTGGTTTTAAAGGCCGTAGCATACCTAGAAGGGCGGTGAATGTGGTTGGACCAAACCCTTTTTCAATTATTTGGACCAAAAGAGACCAATTATAGAAAAAACTCGAGATAATCTGAATTGCGGCATTATTTTGAGTTAGTGTTTTCTATTACGTTTCGCCATGGTTTGACCATGTGATCGTGGTACCTTTTTGTAACATCGGCTATTTATTTTAGGGTTTTTATTTTGGGGGAAAACAGATTTCCTGTATACTTTTATCTTTGATGGGAGATGTTTGCATTTTGATTAAACATATTGCATATTTTGCTGTAGTACTGTACTGGAGTTTTGGTGAATGGTAGTTTCCTGGATTCGCTTGCACGTGGTTTCATTGAGGTTCTGGGGGAACCATGCGGCGTAGCTGAACCTTTTCAGTGGAACGGGTGGATTGGTAACCTATTCAGTTATTTCTATAGGATTTATAGGAGTCCCGTGGGGACGTGATGACCTTAGTTGGGGACAATTGGAGAAGTGTAAATAACTATTTTTATTTATATTGTTTATTGACCTGGGAGGTGCTGCTTGTAAAGAGAAATGGCGAAATTTGCGTGTTGTGTTTATGAGACACTTGAAACCTTTGCCAAGTGGTTCTAAAAAAAAAGACCGTACTATTTACTTGATTATATCCAATTTTTGTCGCCATATGTAAAACCAATTAATCTGCCCGAAGTAGGGGACCTCCCGTCCACTTCAACAGAGGATACCGAAATACATGCTACCATTGATGTGTCAAACGATGTTCCAGAAGATTTGGCTACAGAGTCCGAGCAATCTAAAAAGCCTACCTCTCCCAGTATACATAATAGTACAATAATTCAACATTCTTCCAACTCAAAGCAAATGAAGTTTTCATTTCACGAGACAGATAAGTTTTTCCTCAATTATTTAAAAGAAAAAGCTACTAAATCTTCTACGGAGACTTCCACGGACTCTGTTATGTCATTTTTAAACACTCTTGCACCCGAATTAAGAGAAATGAATATGCACTAGGTCAAAATATTCAAAAGACGTGCACTAAGCCTAGTTGATGATATATTGAATCCATCTTCTACTGCGCCTGAAAGTCAAACAATGAGTGCATTAACTAAATTAAGTAGTGAAACGTCCCGGGACACAATATATTCTCCGCAGCCGTATGGTAGTCCTTCATTTGTGCAGCCACTGCAGTAAGTACCAACAACTAATCCTCTGGACTTCAGCGGGGTACGAACACAAAACTTTATGCAGGCAGTATCAACAACTAATCCTTTGGACTTAAGCGGAGTATCGACAGAAATCTCATTAAATTGTACAGAATACCCTTCTGTCAGCCAGAACATGTCGTTATAACTCATTTTATGTTTAAATATAAGTAATAATAATTAGATACCTACTGATAAAAATTAGATTTCGTCATTTCAATATTATTTTAATCATTGATTTAAATAAATATTTTAAAATACTTA +>AB291824.1 Bradyrhizobium sp. Pd-E-(r)-e-D-6(2) gene for 16S rRNA, partial sequence +TTTATCGCCGAAAAGATCGGCCCCGCGTTCTGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCCTAGGGTTGTAAAGCTCTTTTGTGCGGGAAGATAATGACGGTACCGCAAGAATAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGGTCTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGATCTTGAGTTCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATGCCAGCCGTTGG +>XM_037164408.2 PREDICTED: Artibeus jamaicensis staufen double-stranded RNA binding protein 1 (LOC119063191), transcript variant X6, mRNA +GTTTCTTCCTTCTTTCCTTCTTCCTTCCTTCCTTCTCGCCGCCGCCGCCCAGGACCGCCGGTCAGGAGACGAGCTCCGGGCAGCAGCCAGGAGTTTTCTAACCACATAACCACTCAGATCTGAACCAAAACAACATTGTTCCCGGAGCACCTCTTTTTAAGGTAGAACTTTAGACTTCATAGCACTGAATTAACCTGCACTGAAAGCTGTTTACCTGCAGTTATTCACTTTTGTTGAAAGTGACCATGTCTCAAGTTCAAGTGCAAGTTCAGAACCCATCTGCTGCTCTCTCAGGGAGCCAAATACTGAACAAGAACCAGTCTCTTCTCTCACAGCCTTTGATGAGTATTCCTTCTACTACTAGCTCTCTACCCTCTGAAAATGCAGGTAGACCTATTCAAAACTCTGCTTTACCCTCTGCATCTATTACATCCACCAGTGCAGCTGCAGTTCCTTCTAGCATGGCACACCCCAAAGAGAAAACCCCAATGTGTCTTGTGAATGAGTTAGCCCGTTTCAACAAGATTCAGCCTGAGTATAAGCTTTTGCGTGAGCAAGGTCCGGCTCACTGTAAGGTGTTTACAGTACAGCTAACACTTGGAGATCAGCACTGGGAAGCTGAAGGAAGTAGTATTAAAAAAGCCCAACACACAGCTGCTGCCAAAGCTTTGGAAGGAACAAAATTTCCTAGACCCATAGTCCGCCCTTTTCGTAGCGAAGGAAGGAATCCAGAAAGCATAACCCCTACTGTAGAGCTAAATGCACTGTGCATGAAACTTGGAAAAAAACCAATGTACAAACCCGTTGACCCTTACTCTCGGATGCAGTCCACCTATAACTACAATATGAGAGGAGGTGCTTATCCCCCAAGGTACTTTTACCCATTTCCAGTACCACCCTTACTTTATCAAGTTGAACTTTCTGTGGGAGGACAGCAATTTAACGGGAAAGGAAAAACGAGACAGGCTGCGAAACACGATGCTGCTGCGAAAGCTTTGAGGATCCTGCAGAACGAGCCCCCGCCCGAGAGGCTGGAGGTGAACGGAAGAGAATCAGAAGAAGAAAATCTCAATAAATCTGAAATAAGTCAAGTGTTCGAGATTGCACTTAGACGGAACTTGCCTGTGAATTTTGAGGTCGCCCGGGAAAGTGGCCCACCTCACATGAAGAGCTTTGTGACCAAGGTGTCGGTTGGGGAGTTTGTGGGGGAAGGTGAAGGGAAGAGCAAGAAGATTTCAAAGAAAAATGCTGCTATAGCTGTTCTTGAGGAGCTGAAGAAGTTACCACCCCTGCCTGCAGTCGAGCGGGTGAAGCCCCGAATCAAAAAGAAAACAAAGCCCATAGTCAGGGTACAGAGTGGCCCAGAGCATGGCCAGGCGATGAACCCCATCAGCAGACTCGCCCAGATCCAGCAGGCGAAGAAGGACAAGGAGCCGGAGTACATGCTCCTCACAGAGCGAGGCCTCCCACGTCGCAGAGAGTTTGTGATGCAGGTGAAAGTGGGAAAGCACACTGCAGAGGGAACGGGCACCAACAAGAAGGTAGCCAAGCGCAATGCGGCCGAGAACATGCTGGAGATTCTTGGTTTCAAAGTCCCACAAGCTCAGCCCACCAAACCAGCCCTCAAGTCAGAGGATAAGACACCCATAAAGAAACCAGGGGATGGAAGAAAAGTAACCTTTTTTGAACCTGGCTCTGGGGATGAAAATGGGACTAGCAATAAGGAGGATGAATTTAGGATGCCTTATCTTAGTCATCAGCAACTGCCTGCTGGAATTCTTCCCATGGTGCCCGAGGTTGCCCAAGCCGTAGGAGTCAGTCAAGGACATCACACCAAAGATTTTACCAGGGCAGCTCCGAATCCCGCGAAGGCCACGGTAACTGCCATGATAGCCCGTGAATTGTTGTATGGGGGCACGTCGCCCACAGCCGAGACCATTTTAAAGAATAACATCTCTTCAGGCCACGCACCCCATGGACCTCTCACGAGACCCTCTGAGCAGTTGGACTATCTTTCCAGAGTCCAGGGATTCCAGGTCGAATACAAAGACTTCCCCAAAAACAACAAGAACGAATTTGTATCTCTTATCAATTGCTCCTCTCAGCCACCTCTGATCAGCCACGGTATTGGAAAGGATTTGGAGTCCTGCCATGACATGGCTGCACTGAACATTTTAAAGTTGCTGTCTGAGCTGGACCAACAAAGCACAGAGATGCCAAGACCAGGAAATGGACCAATGTCTGTGTGTGGGAGGTGCTGAACCTCTTCTGGTCATGAACCGTTATATAAACTTCCCAACAGATACTGAAAATCCTGAGACTGCTTTTGAAAATTTGGAATTTCTGATACCTCGAGTGGGCCGAGAGACGCGATGGGTAAAGAACTGGAGACAGCAGTGGTGACAGAGGCTGAGGCTGCTCGCATGTGCTGTGGTTTGTCCCCACACGGCAGCAGCTGCTGTGGGGGAGGTTGGGACCTGCCAAGCAGCCCTTAATTGCAAAACCAGCAGGTCCCTGCCCCTGGCACTTCAGTGCTTGGGTTTTTTTTTTTTTTTTTTTTTTT +>XM_035643150.2 PREDICTED: Scophthalmus maximus uncharacterized LOC118315681 (LOC118315681), transcript variant X2, mRNA +GCTCCGGGTCCACGTTCAGTTCATCTGGTTTCCTTGTTGCACCCAGCCAGAGGACAGGACTTTAGAAACCTCACACTTTACTTTCAAAGAAGACAATTTGTTGCCTCTGCAGAACTAGAGCCGACTTAAAACATGGTTGATAGAAGGATTGCACTGGAGGCGTTGGGTGTGCTCTGCAATGCCAATGTGACGTCTGTTCAGCAACAGAGATCACAACCTGGTGTGTGCATCCTTCAAGGACGACAGGAGCAGCTGTTCATCAAGCAGCTCATCCCCTCTGTCTTGGATGCAGATGAAACCTGCCAGGTGTCCAGATCCAGCTTCTACCGCATCCAAGCCATCTTGGAGAGCAGTGAACCGGCAGATGGCTTCCCCAGGCTGGCCGTGGTGGCTGTTCCAAAGAAGGACCACATCATCGATGAGGAAGAATTCTTTGCGCCGCAGTTTGACTATGATTTCACCAAGCTGACCGACAGCGAGACTTATTGGAGGGGCGGAGAGAAGTACGAGCGCCCGTGTGGTTGGTACCGCTTTGGCCTCAAGGTCCTGGACAAGTACTGTGGAAACACCTGGCTGGGAACCACATACCGGAGCACCCAGTCCTGTCCAGGGGAGTGGCCCGTGTCCTACCACGGGACATCAAAGAAAGGTGCTGAGGGCATCATCGGAGACCACTACAAGCCAGGCTGTTTTAAAGGAATTTGGTATCAACGTCTCTGCCACACCAAGGGGACACAGAAGGCTGAACAGTATATCACAACTGTGCCCGTATCATTTTCTATTTCGCAAAACTGGGCTTGTATTTGCAATGCAGAGTTGGAGAAAAGAGTCCCAGGAGAGGTTTGGCTGCCGTGATTATTTGAAATCAGATTTTGAGACGACTTCTAGTAAAGAATGTGTGTCTGGGCCGACCGATGAAGTTTTTCCACTTTCATTGGAACTCACTAGCCACAACAGGGAGTCGTGACCTTGAGGTTATATAGAATAAATAAGTGAAACTGCCTAA +>XM_038305068.1 Cyprinodon tularosa uncharacterized protein LOC119796484 transcript variant X1 (LOC119796484), mRNA +TTCAATCCTCCAGCTGCACTTGATCAAGCAGTTTGACTAGAAGAGAATCAAGCAGAGCTCTGACAGCACAGAGACCATCATGAGACAGAAACCTCTAGAGATGGAGTTTAAAGACTCCCATGTTCCAGTTCTCAGTGTGTCTCACTGCTCCTCTCTTTCCCTCTCTGTCTCCTCAGCAGCAACATTTGTAGTGAATGTGACACAGAGCTCCTATCAGGCAGAGGAGAACCACAACATCACTCTGGAGTGGACCTTCACCACAAGACCCAACAGAACCTGGATCATCTACTGTTGCGTGTTGACTCTTCCCAGAGAAATAGTCCTCTATTCAGTCTATGAAGATGTTGAAGAGACAGAGTTTACAGATGAACACTTTAAAGGACGAGTCCAGATGGACAAAGACGTCCTCAGAGAAGGACGGATCAGATTCCATCTGTCCAGACTGAGGACTGAAGACTCTGGACTGTATGTGTGTAACATCAGGACTGACTATGGGGAAGGTTCTGCAGACTGCAACGTTACAATCACTGAGACGGTTCCTGAGAGAAACCTCATCACTCCGACTCTACAGGATAAAACCATCAGTAACGGAGGTCGGTCCAGGCTCTTCCTTTTATTTCCTTTTATTTTCTTCATCATTTCTCCGTGTTTGGTTTTACTCTTCATTTCTAAAAATAAGAACTCTAGGAAGAGTCCTTCTAGGTCAACCATCTACATTACAGAATGGAAACCTTGCATAAGGGCAAACTTGTGTTAATGTAGCTGAGATCAGAGCAAAGTCTTCTCTCCTTCATCTTTCTGAGGTCTCCAACTGTTCAATAAATTGCAGGAGACCCTGGAGATAGAAGGAGTCTTAATGATACCTTAGAAGCTGTTGATGAAACCAGGAGTCTTTTCAATGTTTAAAGTCAGTCTCTGCAGGAACCCAACAAACTTCACATCAAAACACAATCAGATGCTGTGGATTTATCTCCAGGAAGAGGAAAATCAGACATTTCGGAAATTGTGCATTGTTTTCTCACAGCAGTGATTTTTTTTTTCTCCCTCAATGCATTTTATCAAAGTACAGATAAAAAAAATGCTAACCCTCGGTTGGGGGGAATCTTCAAATTTCATGTATATATGTTATTTATTATTATTATTTTTTTATTATTGTTTTTTACTCTGTTGTAATTAAAGAAAGGCTACATATGTAAAGTGTTTCATAAATATTGATTTTTGTAATTATTCATTATTAAATAATAGTTATCATTATTACCTCCAACTACATGGCTAAGAACCTCATCTTTTCCTTTTCTACAACTCTCAACTGCCTGTAGGACACATT +>HQ018492.1 Uncultured Candidatus Microthrix sp. clone R4CP1R1E11 16S ribosomal RNA gene, partial sequence +TCGCGTAACACGTAGGCAACCTGCCTCGAAGTGGGGGACAACAGCCCGAAAGGGTTGCTAATACCGCATGTGGATGTTTGGTGGCATCACCGATCATCTAAAGCCTTGTGCGCTTCGAGATGGGCTTGCGGCCTATCAGGTAGTTGGTGGGGTAATGGCCTACCAAGCCGACGACGGGTAGCTGGTCTGAGAGGACGATCAGCCGGATTGGGACTGAGATACGGCCCAGACTCCTACGGGGGGCAGCAATTAGGAATCTTGCGCAATGGGGGAAACCCTGACGCAGCGACAGCCGCGTGCGGGATGACG +>XM_013285616.1 PREDICTED: Papilio polytes antichymotrypsin-2-like (LOC106105325), mRNA +ATGTTTAAATCAGCTAAACCAAGGTACGATACTGCCGTTGAATCATTATGGCAAGGAAATACGGAGTTCACACTAAACTTTTTAAATTTAAAACTAAATGAAAGTCCTTATAACAGTTTTATAGTATCTCCGTTTTCTGTTCTAATACCCCTGGCAGAACTTGCACTGTACGCCAATGGAACAACACACGATCAACTAACAAATATCCTTCATGTCGACAATAGAATAGAGGTTGGGGGTGGTTTCCGTGAAATTTTGAAGTCTTTTTCATCTTCTGATGATGTACAGATTTCATTAGCTCAAAGAATCTACTCCAATGTAAATACAGAATTATCTGAAGACTTTAAAAATGACACTAAGGATTATTTTAATGCCGAAGCTCAAAATGTAGACTTTGAAAAGAATCAAGAAGTAGCGAAAATGATCAACGAGTGGGTGCAAGAACAAACCCATGGTCTCATTTCACGAATTGTTGAACCCAATATGTTGGACCAATCAACAAATATGGTTTTAGTTAATGCCATTTATTTCAAGGGTGATTGGGACTATGCTTTCAATCCAAATGACACAAAACATAAAGACTTTTACTTATCGATAGGCGAGCAGGTTGAAGTAAAAATGATGTATCAAAAGAATACGTTTAAATACATGGAAAATCCAGCTCTTCAAATAAAGGCATTGCAACTACCATACACGAAGCAGCATTATAGCCTTTTAGTTATACTACCCACGTCACGAGTTGATTATGGTTTGCAAAAAGTGGCTAAGAGGATTAGAAATCCCCAAGTGTTTACAGAAATTATCGATGATTTGAGAAACGCAGAAGTTGAAGTATCATTACCGTCTATAGAAACTTCCAGTACAACAGATTTACAGGGAATCCTAAAAGGCGTAAATGTCACTGAAATGTTCGTGTCTGGCAATTCGGATCTTAATGGGTTACTGAAAAATAATCAATCAATACATATCTCTGTTGCTGTTCAAAAAGCCGTTGTGGTTATCAATGAGTTGGGTACAAAAGCAGCTGCATCAAATAATATAGAATTTTTACCATCGGCGCCACTGGTCAAACCGCCCCCAATAACTTTCAACGCTAACCGGCCTTTCCTTTATTTCATTCTATATAAGAAGAACGTTTTGTTCTGTGGATCATACTATGGAGAATACTTAAAAACCAGAGAAAATCCTGGACAAGGTTTCATAGCATCGCCATTCTCTGTGTTGCTGCCTTTAGCGGAACTTACGCTATATGCCACTAGAATAGCGTACGAACAACTTTCTAATGTTTTGAATATTGATGAAAGAGATGAGGTTCGACTGGGATTCAGAAAACTTTTGGATAACTTTGCGTTGCCACAAAAAGTATCAATTACTTTTGCTCAAAAAGTATACGGCAGTCTCGATTTCGATTTCATTGACGACTTTAAATATGATACCAAAGAATATTTTGATGCAGAAGCACAAAATTTAGATTTCAGTCAAAACCAACAAGCTGCAGAAATAATCAACGATTGGGCTAAATGGAAAGATCCATTTGACCCAGATGATACTAAACCAGAAGACTTTTATATAACAAAAGATGAAAAAATAACCGTTAACATGATGTTTCAAGAAGGATATTTCTTATACGCTGAAAACCCTGAACTACAAATACAGGCATTGGAACTAAAGTATGAAGACGAAGATTATAGTCTCTTGATTATTTTGCCAACGTCTGAAGATGATTACAGCGTAGAAGGTGTAGTACAAAAAATTCAAGAACCACATGTTTTTGAAGGAATAATTAACGATTTATCAATTGATGAAGTTGAAGTACATTTACCTTCAATATTAACTACTACAACAACAGATCTAAAACCAATTCTAGAAGGAGTTAATGTTACTGAAATATTTAACCCAGATACAACTGACATAAGTGGGATGCTAGAATACATTCAGCCAATGCACGTTTCCGTAGCTATCCAAAAAGCAGTCTGTAATAACCAGCCTGAGAATGGCAATTATAAAGTCAGCAATTTTTAA +>FQ672044.1 16S rRNA amplicon fragment from a soil sample (ferralsol, Madagascar) resulting from a 16 days laboratory incubation experiment +TGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGGGTGATGAAGGCCCTAGGGTTGTAAAGCCCTTTCGGCGGGGAAGATAATGACGGTACCCGCAGAAGAAGCCCCGGCTAATTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGCGCACGTAGGCGGATTGTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGGCGATCTTGAGTCCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTG +>XM_030518924.1 PREDICTED: Scaptodrosophila lebanonensis dynein beta chain, ciliary (LOC115624302), transcript variant X1, mRNA +ATGGAGCCATCCACGAGCGCCGAAGCAGCTGCAGCCGCTGCCGGCGGTGGGCCGGATCCACGTTTGGAGCTGATGGGTTCCTTTGTCATCAAGTCCCTCAAACTGAAGCCGGAGAAATGGACGCGTGTCATCACCGTGGAGGAGCACAAGGGCATTATTAAGGAGTTCTTGGATCGAAATACACCGGTAGTGCTCATCATTATATTGACAACCGCTGCCCAATTGGTGCCCTCCACCACCTTTCCGCTGTCGCAGCTCAAGAGCAAGGGGGTGTACTTCATAAAGAAGTACGCCAAGCCGATACCACGCGAGCTCTGTGAGAATTTCATTATTTTCGGCGACTTGGCAACGCGCACCATCGACCAACTGTCCGCCCTGGTGGAGGAGGTGGTTGTGCCTCTGCTCTCCAACGAGGACAATTACAGGGCCTGGCCCACTATGGTGGCGCAGGATGTGCAGAAGCATGTGCATAGCCTAAAGAGTACGGTGCACCAGGTGAAGGGTCAGGTGAGCGGTGAAACTATTCTGGCCATGCCTGTGGGCGTCGAGAAAATTGTCAAGGCCGCCAAGGAGTTGGTCGAAACCGAACAATGCCAGTTCGATCTGTATCTGAAGAGCGCCATCGAGGGTGTGGTCATCAAGTGGGCGACACAGATCCATGAGGTCATCAAGGAGAGTCCGTCGAATGCCTTCGCCAATGGCCAGAATCCCACGCCCCACACAGAATTTACATTTTGGAATAATCGCCTTAAGAACCTATCTTTTATCTACGACCAATTGCGCAACGAACGTATCCGTGCCATGGCAATAATACTTGAATACTCGCTAAGTGCCTACCATCCGTGCTTTCAAACGCTCTTCAAGAACGTCGTTACGGCACTCGCCGAAGCAAAGGACATAACACTCTATTTAAATCCATTGAAACGTCCATTGCAACAGCTGGAGGAAATAGATTTTGCGGAAAGCAAGCCACTGCTCATCCCCTTCATGAATATCGTCTGTATTCTGTGGGGAAACTCGCGCTATTATTGTCAGTCATCGAAAATAACGATTCTGTTGCAAGAGATATGCAATCTGATTATCCATCAGGCCAAACGCTATTTGGATCCCTCGTCAATTTTTCACAGCGACATCGATGAGGCCATGCAACGCCTCACTCTCTCCATACAGATACTGAAGTTCTTTCGGGAGCTTTTCGATTATTATAAGGAACGTTTGGCCGATTTCTTTACAGAGCCCGAGGAGCGGCCACCGATTTTCTGGACTTTTCATCCAAATTCAGTTTTCAAGCGCTTTAATGCATTCCTAGAGCGTTTAACAACCATACAATGGTTCTTCTTTACTGTGATTGAATTCCTGAAATTAGAGAAAGTCGAAATCGGTGGCTTGCGTGGTCGTCAGCTCAGCACACGCATTACAGATGTCTATGTCGAGTTCAATCAATATTTTACAGCCTTTGCGTCCAAAAGCTACGATGTGCTGGACCCAGACGATCATGACTTTGACGATGACTTTAAGGGCTTTCAAACCCGTATACTTGAACTAGATATGAAGTTGGCCGCCATATTGTGCCAGGCCTTTGATGATTGCCACAATTTGGAGAGCATTTTTAAGCTCATTAGCATTGTGGGTAGCGTTTTAGATAGACCCAAAATTAGAGAAGAATTCACACAACGCTATGCCGAAATTCTTGAGATGCTGAACGATGAGATGACGATGTGTGAGGCCATCTACGAGAAGCAAATGGAACTGAGAAAGATTGGCGAGAATCTCTATCCGGACTATAACTGTCCACCTGTGGCTGCCTTCATACGTTGGTGCAATCAGCTGGAGACTCGTATTACAGGGCCTGTGAAGAACTTCAAGGCGCTTCAGCATGAAATATCAAAGTGTGAGAAGGCTCTAGAGATAATGGAACGCTACGATCGCTTGATCGAAAAGTTGGGTGCCTGTAAGACACAGTGTTTTGAGGAATGGAGCTCCCAGCTAGCCGAACAAATCGAGGAGAATCTAAAGAAGTCGCTTATTGCGCGCGGTCCCCAAGGCAACTCGTTAATTTTAAACTTTAGCGCTGCCCTATTCTCAATACTGCGTGAGGTTCATTATATGCAGCAAATGAAAATCGAAGGCATACCCGATATAGCTATAGAGTTCGCTGAGAAGAGCGATGTCTTTCGTGGATATACGTTGAATTTGGAGAAGACTATCGATTGGTATAACAGCATACAGGAGGCTAGCTCGCCGGTTGAGTTGCAATTGATTGGACCCGAAATAAAAATGATTGATGACCTTGTGGAGATCGGTGTGGATAACTTAGTCTGGAATTCAGAAGACATCTTGACGTATTTGGAAAAGTTACGTAAGCCCGTTGCTGCTCTCCAATATCGCATGGATCATACGCAGGGAAATTTGCGGCAAATACGCAAAATTATGAGTGTGTGGGCCAAGCAGCCGTTGTTTGAGCGTCGGGACTGCAAAAAGGATTCGGTGTTGTCTATTGACGAGCGACCTGATCGCACCTCCAAGCGTTATGCTGAGATACAAGCGGCCTCCGTTGAGATACACAAACTACTGCACGACAATATGCTGCAGTTCGACATGGAGGATAAACAGCAGGATGAGGTCTGGCTCAGCTATGTGAACTTTGTCGATAACATCGTCTACGAGAACCTGCTGCGCACTGTGGGCGTAAGTGTTGGGTATTTAGCCGAGAACATGGATCCGGAGAACAATTATGCACCACTTTTTGAGTCCCGTCTGGAGCTAGTCGAACCCGATCTTGTGTTTGTGCCCTCCCTTGAGCCGGAAGACCCGATGGGCTTTAACAACATGCTGATTGAATTAATGCGCGATATTATGAAAATGGGTTCGCTAATCAAGCGTCTGACTCACGAGAAGCGCAGCTATGCTGAGATTATTAAAGAGAACCAGGACATAATTGATATGCGACGTGAAATTCTGAACGGTGTGGACTTGGTAATGGAGGAGGCATCCCGTTTTTGTCGCCAGTTTGAACGCTACTCGTACCTATGGCTGGATGATCGCGAGGAATGCATGGAATACTTTTTGGAATATGGTCATATTTTGGATCCCGACGAAATCGAATTAGTTTTGATGAACGATCCGAATGCACCGAAGCCCTGTTTGCCAACCATTGAGGCATTCCGAGAGCAGATCGATAACTATGAGTCGCTATTCAATGAGATTGAGGATATATCGCCATTTCAAGTGTTTAGCTCGTGGTTTCAAGTGGATGTGCGACCCTTTCGTCAAGCGCTGCTCAATACAGTGTGCAAATGGGGAAATATGTTCAAGGAGCATTTGGTTACAACCGTCACAACCAATCTAATGGACTTAAGTCACTTCATACACAAGGCCGACGAGGGTTTGCTGCAAACAGTGAAGGAGGGCGACTACGAGGGCTTGGTTAATCTAATGGCCTATCTTATGCAGGTTAAGGAGCGGGCCATCAAGACAGATGATATGTTCGAGCCGATGCAGGAAACCATACAGCTGCTAAAATACTATGACATGGATATACCTGAGGAGGTGAATGTGTTGCTTCAAGAATTGCCCGAACAATGGGCCAACACCAAGAAGATTGCTTCAACGGTTAAGCAACAGGTATCGCCACTCCAAGCCACTGAGGTGGTCAGCATACGGAACAAGATAGCGTTATTTGAGGCCCACATACAGCTCTTCCGGGAGGTCTTCAAGAATTACGACTTCTTTCGCTTTGATTGTCATAAGCCATACCAACTTATGGATCGCATTAACGATGACATGTTTCTGTGCGAGAGCGAAATGCGCGACATACAAGAGTCGGGCAGTCTCTTCGAGGTCAATATACCAGAGTTCAAAGTGCTGAGGCAATGTCGCAAGGAATTACGCATGCTTAAGCAACTCTGGGATTATGTTAATATTGTGCAGACCAGCATCGAAGATTGGAAGACTACGCCATGGCGTAAAGTCGATGTGGAGAATATGGATATAGAGTGCAAGAAGTTTGCCAAGGATATACGCTTGTTGGATAAGGAAATGCGTGCCTGGGACACTTTCATAAATCTCGAGTCGACGGTGAAAAATATGTTAACCTCATTGCGCGCTGTGGGAGAGCTACAGAATCCTGCCATACGTGAGAGACACTGGAATCAGCTGATGAACTCGACAAAGAGCCTTGCCGCCTTGCCCAAGGAAGTGACCGTGAAATTTATAATGGATCATGAGACAACGTTGGCAGAGCTTCTGGGCTTGAACCTGCACGAGTGCGAGGAGGAGGTGAAAAACATTGTTGATAAGGCTGTTAAGGAAATGTCTATGGAGAAAATATTGCGTGATTTAAACACAACATGGTCTGCGATGGAATTCGATCATGAACTCCATCCACGCACTGGCTGTAATCTCCTTAAAGCATCGGAAGAACTCATAGAGACGCTCGAAGATAATCAGGTTTGCCTACAAAATTTAATAACATCCAAGTACATCGCCCATTTTCTCGAAGAAGTTTCAACTTGGCAAAATAAATTAATGATCGCCGATCAAGTGATAACCGTTTGGTTCGAGGTGCAACGCACTTGGACCCATCTTGAGAGTATCTTCATGAGTTCGGAAGACATACGCAAACAGCTGCCCGTCGACTCGGATCGTTTCGATAATATCGACGCCGAATTTCGTATACTCATGGATGAGATGTGCGTCTCATCGAATGTTGTGGCCTCGACTAATCGATCTGGGCTAATCGAACGTTTGGAGCATTTGCAGAAGGAGCTTACACTTTGCGAAAAGGCACTGGCAGAGTACTTGGAAACGAAGCGTTTGGCTTTTCCTCGTTTCTACTTTGTATCATCGGCCGATCTTCTCGATGTCCTAAGCAATGGCATCCAACCGGAAATGGTGACCAAACATCTAACAAAATTATTCGATTCGATCGCACGCTTAAAATTCAATCGCGATACGGCCAATGAGATAGAGACAGCTTCGGGCATGTATGCCAAAGATGGCGAATACGTTGAGTTCAACGAGCTGGCCAGCATACGCGGGCCGGTTGAGGTGTGGCTGAATCGTATACAAGCGGCCATGCGAGCCACCCTGCGACACTATGTCACAGAAGCTGTGGTCGCTTATGAGGAAAAGCAACGCGAACAGTGGTTATTCGATTATCCTGCACAGGTGTCGCTCTGTGGATCACAAATCTGGTGGTCGACAGAGGTGAACATTGCCTTCAGCCGTTTAGAGGAAGGTTACGATAATGCCATCAAGGACTACTATAAGAAACAGATCTCACAACTCAGTTTACTCATAACACTGCTGCTGGGCGAGCTGACCAAGGGTGATCGTCAAAAAATAATGACGATTTGCACAATTGATGTGCACTCACGAGACGTGGTCGCTAAGATGATTCAGGCCAAATTGGATTCAGGTTCGGCTTTTATGTGGCAATCGCAGCTAAGGCATCGCTTCGACGATGTAGAGAAGGATTGCTTTGCCAATATTTGCGACGCTGAGTTCCAGTATTGTCACGAATACTTAGGCAATACGCCACGACTGGTCATCACGCCTCTGACAGATCGCTGCTACATTACACTAACACAGAGTCTACACTTAATTTTGGGCGGTGCGCCTGCAGGTCCAGCTGGAACAGGGAAAACAGAGACTACAAAGGATCTGGGACGTGCCATTGGAATAATGGTGTACGTGTTCAATTGCTCAGAGCAAATGGACTATCAGTCGTGTGGTAATATTTACAAGGGTCTAGCCCAGACAGGGGCCTGGGGCTGCTTCGATGAGTTCAACCGCATTACTGTCGAGGTGTTGTCTGTGGTGGCAGTGCAGGTGAAGTCTGTGCAGGATGCGATACGTGACAAAAAGGACAAGTTTAATTTTATGGGCGAGATTATAACCTGTGTGCCCACAGTTGGCATATTTATAACCATGAATCCCGGCTACGCGGGTCGCACAGAGCTGCCGGAGAATTTGAAGGCACTTTTTAGGCCGTGCGCCATGGTGGTGCCAGACTTTGAGCTGATCTGCGAGATTATGTTGGTCGCCGAGGGCTTTCAAGATGCACGAATATTGGCGCGTAAGTTCATCACACTCTATACACTCTGCAAGGAGCTGCTTTCCAAACAGGATCACTATGATTGGGGATTGCGCGCAATTAAATCTGTATTGGTCGTTGCTGGATCGCTGAAGCGTGGTGATCCTGGCCGTCCTGAGGAGGAGGTCCTTATGCGTGCCTTGCGCGATTTCAATATACCAAAAATAGTTACCGATGATATGCCCGTGTTCATGGGGCTCATCAGCGATTTATTTCCCGCTTTGGATGTGCCGCGCAAACGTGATCAGGACTTTGAACGCACCGTAAAACAAGCTGCCTCCGATTTGCTACTACAACCCGAAGATAATTTTATATTGAAAGTGGTGCAACTGGAGGAACTGTTGGAGGTACGTCACTCTGTGTTCATCGTTGGCAATGCTGGCACTGGAAAGACACAAGTGTGGAAAACGCTGCTGCGCACCTATCAGAACATCAAGCGCAAGCCCATTTTCAATGACTTGAACCCGAAAGCCGTGACCAATGACGAACTTTTCGGCATTATAAACCCAGCTACGCGTGAATGGAAAGACGGCCTCTTCTCGGTACTGATGCGGGATCAGGCAAATATCGCGGGTGATCAACCAAAATGGATAGTCCTAGATGGTGATATTGATCCCATGTGGATCGAGAGCTTAAATACCGTCATGGATGATAATAAGGTCTTGACTTTGGCGAGCAATGAACGTATTGCTTTGACGCCTTCAATGCGCTTGCTTTTCGAAATCTCCAATCTGAGAACAGCAACACCGGCAACTGTATCCAGAGCCGGCATATTGTATATCAATCCGCAGGACTTGGGTTGGAATCCCTATGTAACCAGTTGGGTTGAGACGCGCAAAATTCCAGCCGAAAAGTCCAATTTGGTCATGTTATTCGATAAGTACATACCATCATCATTGGAGACGATACGCGTGCGTTTTAAAAAGATCACGCCTATCGCCGAAATGGCCCACATACAAATGTTGTGCCATCTATTGGACTGTTTTCTAATACCAGCGAACACACCGGCCGATTGTCCAAAGGAATGGCATGAGCTCTACTTCGTGTTTGCCTGCATTTGGGCCTTCGGATCGGCTATGTTCCAGGATCAAGCCATTGATTATCGTGTGGAGTTCAGCAAATGGTGGGTAAATGAGTTCAAAACAGTTAAGTTCCCAGCAGGTGGCACTGTTTTCGATTATTTTTTGGATAGCGAGACTAAGACATTTCTGCCCTGGATCGAGAAGACACCCAAATTCGAGCTGGACTCTGATCTGCCATTGCAAGCTGTACTCGTGCACACCTCCGAGTCCATTCGCTTGCGTTTCTTTTTGGACTTACTTATGGATAAGAAGCACCCGGTGATGCTAGTCGGCAATGCCGGTTGCGGCAAAAGTGTTTTGGTCAACGAGAAGCTTCAATCGCTTTCTGAGAATTTCGCTGTCACCACAATACCATTCAATTACTACACAACGTCCGAAATGTTGCAAAAGATATTGGAGAAGCCGCTGGAGAAGAAAGCGGGACGCAACTTTGGACCGCCCGGCAATAAAACCTTGATATACTTCATCGACGACATCAATATGTCGGAGGTAGACTGCTACGGCACCGTACAACCCCACACTCTAATGCGCCAGCATCTTGATTATGGCCATTGGTACGATAGGAACAAACTAACTCTCAAGGATATACACAATTGTCAGTATGTGGCGTGCATGAACCCAACTTCGGGCAGCTTTACCATCAATCCGCGACTCCAACGCCACTTCTGCGTATTAGCTGTCAGTTTTCCGGGACCCGATTCGATAACCGTCATGTACTCGGCCATCTTGTCTCAACATTTTGCGAATGCCGAGCAGAAATTCATTCCGATCGTAACACGCATGACGCCAAATATTGTGGCCGCAACCATAGCGTTGCACAACAAATGCCTCCAGATATTCCTGCCCACGGCCATAAAGTCACACTATATATTCAATTTGCGCGACATCAGCAATGTATTTCAAGGTTTACTCTTCAGTTCAACAGAATGCCTAACGGGCTCTACAGATCTTATACGTTTGTGGCAACATGAGACACAGCGTGTCTACGCCGATAAGCTAACCGATGATAAGGATATTGATAGCTTTACTAAAATGCAGCATGACATTGTTAAGAAATCGTTCGAGGAAATTGACGAATCCGTAATATTCGACAAACCGAATATCTATTGTCATTTCGCTGGAGGAATTGGTGATCCTAAGTACATGCCCATCAAGGGCTGGCCTGAGCTTCACAAACTCCTTCAGGAAGCAATGTCATCGTATAATGATCTGGTCGCTGCCATGAATCTGGTGTTATTCGAAGATGCGATGATGCATGTGTGCAGAATCAATCGCATATTAGAATCACCGCGTGGCAGCGCTTTATTGGTTGGTGTTGGTGGCAGTGGTAAACAATCTCTAGCGCGCTTGGCAGCATTCATATCCAGCTTGGAGGTCGTGCAGATACAGCTTAAGAAGGGCTATGGTGTCAACGACTTGAAGATTGAGTTTTCCGGTTTGTATCTGAAAGCGGGACTTAAAAACGTCAGCATCATGTTCCTAATGACGGATGCGCAAATTCCCAGTGAGGATTTTCTTGTCTTAATCAACGATATGTTAGCCACTGGCGAGATTCCAGATCTATTTCCGGACGACGAAATCGAGAACATAATCGCTGGCGTGCGTAATGAGGTCAAAGGTGCGGGGCTGGTTGATACGCGAGAAAACTGCTGGAAATTCTTCATCGATCGTGTACGCAAGCAACTGAAGATAGTTCTGTGTTTTTCACCAGTGGGCTCAACATTGCGTGTTCGGTCGAGAAAATTCCCTGCCATCATCAATGCAACGTCCATCAATTGGTTCCACGAATGGCCTCAAGAGGCACTCATATCGGTTGCCATGAACTTTTTGGCACAGAACAAAGTACTGCCTGACAATCATCGGGACTCTGTTGCTAAATTCATGGCATATGTCCACACAGCTGTAAATTCCACATCCAAAGTTTATTTGCAGAACGAGCGCCGTTACAACTACACAACTCCCAAGAGCTATCTCGAGCAAATAAATCTCTATTTAAAGCTACTGAATCACAAAAACCAGGATTTGCAGAGCAAAATCGAGCGTCTGGAAAATGGATTGGAGAAGCTTCGTTCCACGGCCGTCCAGGTGGCCGATTTAAAAGTTAAGCTAGCCGTTCAGGAGGTCGAGCTTAAAGAGAAGAACGAGGCGGCCGATGCTTTAATTGAAATTGTGGGTATTGAAACGGAGAAAGTGCAGACGGAGAAAGCGGTGGCGGATGAGGAGGAAATGAAGGTTGCTTTGATAGCGGACGAAGTCAGCAAGAAACAACGTGATTGTGAAGAGGATCTATTAAAGGCCGAACCGGCGCTTCTCGCAGCCCAGGAAGCCTTGAACACGTTGAACAAAGCGAATCTAACGGAATTAAAGAGTTTTGGTTCGCCCCCGGGTGCGGTCACAAACGTAACAGCCGCCGTTATGGTATTGCTGGCTCCAGGTGGAAAACTGCCCAAGGACCGCTCCTGGAAAGCTGCAAAAATTTCGATGGCAAAAGTCGACGCCTTTCTAGACGCATTGATCAATTATGACAAAGAAAACATACATCCTGAAATCATTAAGGCTATACAACCATATCTAAAGGATCCAGAATTTGAGCCCGAATTCGTGCGCTCCAAGTCAGGTGCAGCGGCCGGTTTGTGTGCTTGGGTTATCAACATTATCAAGTTTTATGAAGTCTATTGCGACGTGGAGCCCAAACGTAAGGCGTTAGCAGCCGCCAATGCAGAGTTGGCTGCTGCTCAGGATAAGCTTGCGGGCATTAAACGCAAAGTGGCGAGTCTGGAGGAACAACTAGCTAAGCTAACAGCCGATTTTGAGAAGGCCACGGCGGACAAATTGCGTTGCCAGCAGGAAGCTGATGCCACGCAAGCAACCATAGCATTGGCTAATCGTCTTGTAGGTGGTCTAGCCAGCGAGAATGTGCGCTGGGCAGAGGCTGTCAATAACTTTGTCAAGCAGGGCATTACGCTTCCCGGCGACATTCTACTGATTACCGCCTTCATTTCCTATGTTGGCTGTTTCACGAAAGGATTTCGCATCGATTTGCTGCAAAAGATGTGGACACCCTTCCTGAAGGGCATCGATCCTCCCATACCCACAACCGAAAATCTCGATCCACTCTCGCTGCTGACAGATGACACAACCATCGCCGTTTGGACAAACGAGGGCCTGCCGAGTGATCGCATGTCCATTGAGAATGCAACCATTCTTTCCAACTCTGATCGCTGGCCACTGATGATAGATCCCCAGCTGCAGGGTGTGAAATGGATTAAACAGAAATATGGCGATGAACTTAAGGTTATCCGTTTGGGTCAGCGCAGCTATTTGGACATCATAGAGAAGGCCATAAACACGGGTAGCACTGTCTTGATTGAGAACATAGATGAGAACTTGGATCCTGTTTTGGATTCATTGCTTGGTCGTAATCTCATCAAAAAGGGAAAAGCTATTAAAATCGGCGACAAAGAGGTCGAGTATAACTCCAACTTCCGTTTGATCCTGCACACGAAACTAGCAAATCCACATTATAAGCCCGAGATGCAAGCACAAACCACACTTATTAATTTCACTGTTACCCGCGATGGGTTAGAAGATCAATTGCTGGCGGAAGTTGTGAAGGCCGAACGTCCCGATCTGGAGGATCTCAAGGCCGAATTAACCAAACAACAGAATGACTTCAAAATCATGCTAAAGAAACTGGAGGACGATTTGCTGTCGCGCTTATCGTCTGCTGGTGAGAATATTTTAGGTGACACCGCTTTGGTGGAAAATCTAGAGACCACAAAGAGTACAGCATCGGAGATTGAGGAGAAAGTGGCTGAGGCCAAGATCACATCGAAGGAGATTGACAAGGCGCGTGAATACTACAGACCAGCGGCGACCAGAGCCAGCTTGCTTTACTTCATCTTAAATGAACTAAACACTATAAATCCGATCTATCAGTTTTCCCTGAAGGCTTTTAGTGTAGTTTTCCAAAAGGCCATAGCTAAGGCTGAACCAGGCGAATCCTTGGATTTGCGTGTCTCCAATCTGATCGATTGCATAACGTACTCGGTCTTTCAGTATACTTCGCGTGGTCTTTTTGAATGCGACAAACTGATATTCGCATCTCAAATGACTTTTCAGATACTGCTTATGAACGAGGAAGTAACATCTGTGGAACTGGACTTCCTACTCCGCTTCCCGATCAAACCGCATGTGACAAGTCCTGTTGACTTTTTGTCAAACCAATCGTGGGGCGGAATATGCAGTCTAGCGTCCAAGGATGAGTTTAGGAATTTGGACCGTGACATAGAGACCTCATCGAAGCGTTGGAAGAAACTGGTGGAATCGGAACTGCCGGAGAAGGAGAAGTTCCCACAGGAGTGGAAGAATAAAACGGCTCTGCAACGTCTTTGCATGATTAGAGCTTTGCGACCTGATCGCATGACTTATGCTCTAGGGGATTTTATTGAGGAGAAACTGGGCTCCAAATATGTGGAAAGTCGAGCAATGGAATTTGCAAAATCTTTCGAAGAGGCTAGTCCTTCAACACCCATCTTCTTCATATTATCGCCTGGCGTCAATCCTCTGAAGGATGTGGAAGCGTTGGGAAAACAGCTGGGCTTTTCCATGGATCTGGGCAATTTTCACAATGTATCACTGGGTCAGGGTCAGGAGGCAATTGCTGAAGCGGCCATGGATATAGCAGCAAAGAATGGACACTGGGTCATACTACAGAACATACATCTGGTACGCAAATGGCTGCCTGCCCTGGAGAAGAAGCTGGAATATTATGCTGAGGGCTCACATAAAGATTATCGCATGTTTCTGAGTGCAGAGCCCGCATCTACGCCCTCGGCGCATATTATACCACAGGGAATTTTGGAGTCATCGATTAAGATCACAAATGAACCCCCCACGGGCATGCTGGCGAATCTGCACAAGGCCCTCGATAATTTTACACAAGAAACACTGGAAATGTCCGGCAAGGAGGCCGAATTCAAGGCAATACTTTTTTCGCTTTGCTACTTCCATGCTGTGGTGGCTGAGCGCCGTAAATTTGGTCCACAAGGTTGGAATAAGATATATCCGTTTAATGTGGGTGACTTGAACATAAGCGTATCGGTTCTCTACAACTATCTGGAGGCCAACGCAAAGGTGCCGTGGGAGGACCTGCGCTATCTGTTTGGAGAAATTATGTACGGTGGACATATAACTGACGATTGGGATCGACGCTTATGCATCACCTATCTAGAGGAGTATATGCAACCTGATTTGGTGGACGGTGAACTTTTTCTGGCGCCATCATTTCCCGCCCCACCAAATACCGATTATCTCGGCTATCACACATATGTCGACGAAATGATGCCCGCCGAGTCGCCTTATCTCTATGGCTTACACCCGAATGCCGAGATAGGTTTTTTGACCACACGTGCCGAGAACATTTTCCGCACCGTCTTCGAAATGCAACCTCGGGAGGCTGGCGCTGGAGGCGGCGCCACTGTGACGCGTGAGGACAAGGTCAAACAAATCGTGGATGAAATACTGGAAAAGTTGCCCGAGGAATTTAACATGGTGGAGATAATGAACAAAGTGGAGGAGCGCACGCCATATGTAATTGTGGCTTTTCAGGAATGCGAGCGCATGAATTACCTAACAAGCGAAATGAAGCGTAGCTTGAAGGAGCTAGACCTCGGCCTTAAGGGCGAATTAACCATAACTTCGGATATGGAAGTGCTGGAAAACTCTTTATTTTTGGATCAAGTGCCGCCGATTTGGACATCGCGCGCCTATCCATCCCTCTTAGGTCTAAACAATTGGTTCATTGACTTATGTTTGCGTTTGCGGGAGTTGGAGACTTGGTCAACGGATTTTGTGCTTCCGTCTTGCGTCTGGTTAGCCGGATTCTTTAATCCCCAATCACTGCTAACGGCCATTATGCAGAGTACGGCGCGTCGCAACGAATTGCCGCTGGACAAGATGTGTTTGCAATGCGATGTCACTAAGAAGCAGAAGGAGGACTTTACAACGGCACCGCGCGAGGGCGCCTACGTTCATGGCATATTTATGGAAGGCGCCAGATGGGACATACAGCAGGGTATTATAATGGAGTCGCGTCTTAAAGAGCTCTATCCATCAATGCCAGTCATCAATATTCGGGCCATTACCCAAGATAAGCAGGATTTGCGTAATATGTACGAGTGCCCCGTCTATAAGACACGCACACGTGGACCAACCTATGTTTGGACATTTAATTTGAAGACCAAAGATAAGCCCGGCAAATGGACGTTGGCCGGCGTGGCATTATTGCTACAAACTTAGCTGGAATATACCTATATCGACATTTTTCCAATTCATTTTTCTCGAATTAAATT +>XR_002553663.2 PREDICTED: Helianthus annuus DNA-binding protein HEXBP-like (LOC110871340), transcript variant X4, misc_RNA +TTGGGATCGATCGAACAAGGGCAGGGAGAGGGTGAATAACCCTAAACTCAAGAAATCAAGAATTGAAGCTAAAATCTCAAGGAAAATTCGATGCATGAGCCCTTCTTTGCGAAAATCTAACCCTAATTATTGAAGTGGCGTGAAAGAAGAAGGTACAAGCACTAAGCAAGCGGAAGGAGCACGAGATCGAGGTAAAGCACCTCTATAGGCGATATGGAGATATGGAACGAGCACATGTTTAAGCCTTATAATACCAAGCGCTTTCGC +>XM_033245137.1 PREDICTED: Anneissia japonica ataxin-2-like protein (LOC117104323), mRNA +ATTGGCCTTTAGCATAATTATTTTCTGGTCTCTGTCGAAGGCCAAAGCATTGTCGATTTATCAAAAACATTGCCTTTGAAATCATCCTCTGGTGGTAGTGGGAAGCAGTTGCGAATATTAAAGACAAGCATTTTTATCGATATGCTTTGTTGATTGTTATAAAATACAAATTAATTGATTTTGCAAGGCTCGTGCTTCTGAGAAGCAGCTCACCGGCGATCCGAAGGCATGATGAGTACACAGCAAGCACCACAAAACAAACGTAAAGGGGGGAGAACCGGGAACAGTGGTCATGGAAGAAATCGAAACTCAACTCGATCAAGTAATCTTACAGCTAACTCGCAATCACACTCAACGCCGGTCATTCCACCTAGATTATACGCAAATGCTCACTTTGTACACGCTACAGCTGTTCTCAAGGGATTAAAAGTTCAAGTTGTGGTTGTATCAGGCAAAAAGTATGAGGGAATATTCAGCACAATAAGTAATAATGGTGAGATTGTAATAGAATTGGCACACATGGTAGAAGGCAATACAAATGCTGTACCAAGCAAGGAAAGGACAATTGATAAGCTGGTTGTTAAGTTCAAAGATGTAGTCTCGCTTACAGCATTAGATGTTGATCTCGAATACGCTGTTAAAAGCGATGTTCAGCCTGGATTTCAGACAGATTCAGATATCAGCGGGAAGAAATCGAATGGTCAAGCAGGAGAGAGAGAATTACAGCAGTGGACTCCAAGCAATGAGACCCCAGCAGATTTATCATTAGATGGTGATACTAATGGATGGAGTGTGGAAGATATGTTTAAAGCTAATGAAAAACAATTTGGTTATGAATCCTCATACGACACAACTCTAAAAGATTACACGACGCTCTTACGCAAAGAGGATACAGAGGAGTTCCGTCAGAAATCAGAAAGGGCGAATAGACTAGCAATGGAAATTGAAGAAAGTGCAGGCTACAAACAAAGAGCAGCTCTTGAATTAGATGATGGGCAAACAGAGGAGGATAGATTCAGTGCTGTGCAACGGCCGAAGGCCAGAATGAGCCCATCGGGATCACAGCAGGGAAGATCCGCTAGCCCAAAAGGAAACCCACAGTTTGATGGTAATGCATCAACTAATAAGTATGTACCCCCTCATTTAAGAAATAACAAGCCGGCTCAAAGGAATTATAATCAACCCTCACATAGGCCTCACACTCCAACACAGGGGGGCCAAAGAGGACCGACACACGCACAGAACATGGCTAGGCCACCTAGACATGCTGTGCCTGATGAACGTCTGACAATGCAAGATGTACGAATGTCACCAGAATCTAGGCAATCCCAAGATGTTAGGTTGTCACAGGATGCAAGGCTTGCGTATGAACCTCGACCTCAAAGGTCTGCTGCACAAGTTGTTGCAGGAAGCAATCCCCAACGTGGCATGGTTCCACAGCAACAAAATGTTATGAAGCAACGAGAAGTCAAGCCGGAGTCCATAGGAATATCGCCCAGCCCAGGCCCTCCAGCAAACATGGCCAAGCAGCCTACAAAAGATATACCTAGGGTACCAAGCCCAATGGTTGGAAGCTTACCACCAACAGGTGAAACCAATCCTCAACACCCAGTTGCATCAGAGGATAAGAAGCCACAGAAATCACAGAAATCTCAAAAAATTAGTGAATTGAATGAATTTAGCAACAACTTCAGGTTACAAGAGAATCAAACTACACCTAGCAACAACCATGTTGCTACCCAGGCCCATGAAGCCAAACCAGTTCAGTCCTTAAATCCAGCTCCAACACCACAGCAAGGAAACCAGCAACCTGTACCCCAACAGGCAGCACAACAGGTAGCTCAGCCATCTTCTCAGTCGCCTCAAACACGACCAGTACCACCACCTGCGCAGGCTCAACCGCAGGCACTTATTACACAAATTATACAACAGCAACCTTTACCGGCTCAGAAGCTAGGCCAGGCACCATCTCAAGTATCAATTCTTCAGCACCAGGCTCATTCCCAAGCTCAACCTATCTCCACAGCTCAGCCACCAAGGCCAGTGGATGAAAAGAAACCAGAATTTAAGCTGAACCCAAATGCTAAGGAATTTACCTTGAACCCATCAGCTAAGCCTTTCACACCGAACTCACTACGTAAGGGGGTGAGTGTGAGTAAAACACCGACACCTCCCCGACCGCATTCACGACAGAGTCAGAGTCCAACACTCCATCCACCATCAATGCCAATGACCCAAATAATGACTGGTGGACCCCCTCCACCGCACACCTTTATCCCTCAAATGCCCTCAGTTGTCTATGCACACCAAATTCCTCTTCAGAAAAAATATCCTAAAAGTCCGGCAACCAATCTACCACAGCCCCCAAGGCAGCAGCAACCAGGGGATATATCTGGACAAATGATGTCGGCATCAACAGCAACCGGGCAACCACTGCTAGCCCCTTCTCATTTTGTACCGCCGTATCATCAGCATCCAGGGGCACATCCTGGTCAGATGATCCCAGGTCAGCCTATAATGCAACCTCAACCCATGCCATTTGTGCAGATGCAACAACAAAAGCTGCCTTATCGTCACGCCAGTTCGATGTCCAATGTACAACAATCACAAGCTCAACTCCATCCACTGCCAGAGGTCTCTCCAAATACCCCTCTCTTTGTTACACCCCAAGGTTCCAGTCAAGTCTATCCAGGTCAGCAACAGCCATCAGTGTACCCTCATCACCCCTCATCTGCTCAACAAGGAGGCCAACAACATCCCCAGGGCCAAGCAGGTCACCATCAAATGGTCCAGTCAGCCCATCCTCACTCCCATGGAGCTCAACAAGGACAAAACCAGCACCATCAAGGCCAGCCTCAGGGTCATAGACCAACGCCTAGCCCAGTTCAACATTCTATACAGTCACCCTCACAATCTACTCAGCAAAATATACCGTTACCGATATATTACAACATGCCACAGCACAGCCAACCAATTCAAGGTCACACACCTCAATCTCAGCAGACGTTTACAACTGTTTTAATGCATCAACAACAGCAGCAGCCTCAACCCCAGCCATACTCTGCTACCTCCCACAGCATAACAAATATGACGACAGTTCACACTAGCCCTCACCCGCACCCTCATGCACAACCTGGCAATGTGATGTATGTAGGAGGGGGACAGCCAGTCCCCCAACATTCACACACAGTCATGCTACCAAGTGGAAGCATATCATATCTGCCCCCACAAGGAGGTCAAGGTCAACACCCTCCTATTCAAGCCTACCAGCAGACTAACTAGAGCAATGTGTAGTGCATAAAATTCAAAAATATATATAGAACTGATCAAGGCCTTCATAATTTATTATATTATAGAGACCTGATGTCTAAGAGCTGGAGGAATTTCTTATTGAAAAGGATATATGCTGCTTATGTGTGACAGCTGAGCCTTGTATTGAATGTACAAGATGTGTTTTACCTGATGGGAAATAATGTTGTTTCCTCCTGATGGATCGGCTCTTAGGAAAATCCTACCAAGGGCCTAGGATTTAAATTGAAGCAAGCAGAAGAATCCTACAGAATTATCTAATCGTACTCCAAGAATCATATTGTGCAAGTTACCAACATGTTTGGTTTTCTTTTAATGCACCTTATAATTAAAAACTACCGGGGGCTTGTGTCTGCTCCTGGCCCTCTATGTGGAGTACAAACAGGGTTTCTGTCTGCTCTGAATATTTATAGAGTACCACCAGCCAGGCTGCAGTAGTTTACTGTCTGATCCAGCCTTTTAAAATGGATTTGCCAATTGGCCTAGTGTGCTGTTTGCTCTTTACTCTCTAAATGGAGTGCCAACAAGGCTCCTGGTCCGCAGATATTATTGAGATTTTAACAATGAGGATATAAGTCAGAATCGTAGGCTAATTATTGCTGACTAAACTCTAGATGAATTAAATTAAGGTTTTAAGATGTTTCTGCAACAGATTTATCCTATCTAAAGATTTCAAAATTCGCCCCATAAATTGGTAAATTATTCTTATTTAAATATTGTTTAAATGACCTTGACTTCAGATTCTTTATATGCAAATGTATTTTCCCTGATATTAAATTCTAAATTCCATTTAAATGTGATAATTTACATCACAAAATTAAAGAAAACAAATACGATATATATATTATGAAATTTGAAAACCATGTCATTTAATTGAAAACTCTGGTGACTGAATAGTGCTTACATTGAATATGTAATTTCACATTCATTGCATATTCCTATGAATCTAAGTAAAAAATAATATGCATGAATGAGCACAGAAATAATTGTTAAAGTTGCTTACCTTTGCTTTATTCATCCTGATAACACTAATTGTATTCTAATATTTTATTATGTAGCTTATGTTTTCTCGGTCCCCCACATGTGGACAATGTTCACACGTTTTCTGGTCCCTATGTATAAATATTAGGGTATGCTTACTGATAGTCCCTCAGGTTAGTTATTCAAATATATTGGTAATATTTTCACCCCGTAAGGATTAACACGAAACAACTGTTTTATAAAATGATTATTGTTGATTTCATGTTTTAGTTAAAATGATTAAGTTGATCAGTGAAGTAATGCAAATTGGATGTTAAGCTATTATTTTGAAATAGTTTCTACTTAATAATTTAACAATCTGTCATCAAATGCCATTGCATAAATGAATGTCGGCTTTTTTTTTACTGATCTGTGGTGTTGACTTATGACACCTAATTATAGTTCTTTGTGACAGGAGTTCCTGCTTCACTTCAGATTTCTTTGAGTGAGCCAATTACATGGTGTGAACAGCTCCACAGTTAATTAGATATGAGTAAGGTATTCTTGAAATCACTCCATTTAAGATGCATATCACTTTACAGTATAAGGCATAGTTGTTTATTTCATTAATCATTAAGATAACACATATCATCAGTGACATCTAATGTCATAAATACATGGCTAAGCCTGGTATAGTCTGCAAATGCAAAATGGGGTGTAAATGTTTTGGTTGTTTCAGATTTAATTTCAACACAGTTATTTATTCAGGATGTGAAATGGAAATAGTTTGACTGTTTTTATCGACAATTTCTTAACCAGTGCATCAAAGTATATAAATATTTATTTTATTAATGCAGTATTATATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTCATATATTGATTTTAGTGTTTATTTTTAAAATAAAATAATGCTGATGTGTAATGAACTACTGTATTAAAATGAACATTTTACATTATATACATGTACATGCATGTTGGTGACACATGCATACATACATACATACATACATACATACACACACACACGCACACAAGGATGAGCAAAGCAAAAGTTTAAACTTACAGATCTTTATGACCTGTTTGCTGCCCTCTATAGTTAAGTTATTTTGGCAGCTACTGTAGTTTAAAGAATCTGATATTTGAATTAGTTCTATCATGTCTATGTTTTTATGACAACAATATAAGGGGGTTATTTTCAAGGATATAGCAAGGGAGGGCACTGCTCAAGGGAAGTGTATGAAAACGGTGAACATCGTTCTTTGTGTTACAAACGAGTTCTATTGTTCTTCCGTTTTTTGTCTTGATGTGAAATGAAATAAAAAATGACATGATTGCATTTTATCCAAATAAGAA +>LN587638.1 Uncultured eukaryote partial 18S rRNA gene, clone SIGW489_N9D4_16S_A +AGTCGGCTCAGCGCCTGGTCATCCGTATGGGAAACTAGCTCGACCTTCACTGGTCGGCTAGTGGATCATACACTTTACTTTGAAAAAATTAGAGTGTTTCAGGCAGGCAATTGCTTGGATACTGTAGCATGGAATATGGAATAGGACTTTGACCTTATTTGTTGGTTTCTCGAGGTCAAAGTAATGATTAATAGGGACAGTTGGGGGCATTCGTATTTAATTGTCAGAGGTGAAATTCTTGGATTTTTTAAAGACGAACTTATGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCAAAGACGATCAGATACCGTCCTAGTCTTAACCATAAACTATACCGACTAGGGATTGGTGAGGTCTTTTAAGCCTCATCAGCACCTTATGAGAAATCAAAGTCTTTGGGTTCTGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTCCAGACATAGTTAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCTTAACCTGCTAACTAGTCACCTTTATGTCAATAGGGGTCTGACTTCTTAGAGGGACTTTATG +>XR_004845356.1 PREDICTED: Anopheles albimanus uncharacterized LOC118464036 (LOC118464036), transcript variant X5, ncRNA +CTCTCTCTCTCTCTCTCTGAATTGCTCTCTCCCTGACAGTCTCTATCTCTGTTTTACTTCATGCCCATCGCCTGCTTGTCCAGGTTCCGTGTGGCACGTACAGGATACGAAATTCTTCCTATTTCTTCTGAATGGCAAACTGACATGCCTTGCATTCGAAATTTCGAGTATTGTACAGAGAACGACGGCATGTGCTGCATAACCAATGAAACCGGTGCGTTACAGCCGATGAGTCGCTGCGGAGTGTGATTTCGAAAGTGCCGACAGTCGGAAGTGGTGGCCGCTCCTAGGAGGACGTTCGCTTATCTCTGTAGCAGTGTTCTTGAAAAATATTCTAGAATTAAGCGTGAGAAACATGCGTTTAGCTAGGTGGAATACTATTTTACGAACCTGAGGAAGTTCCCCGGAACAGTGTGAGACTCACACTCACTAAACCTCACTAGCTTGGTTTTCCGTTACCACCCTGCAGCTGTGTGCCTCTTTCGAGATGACTTGCAGCGAGGGTGGCAACGCCGAACCACTTGCTGCGCGAAAACATGGGTCTGAAGCGACTATATTTTTTGGAGTAACGTTGTTAAAACCACCTTACACGCTCGTTACTGCTAAAAAACGGTCCTCGCAAATGCGCGGGTGGCCGAATGGAAGGTACTCTCTGAAGTACCCATGTCCCGATAGGAACGGGGCCAAGCAGGGGTTAATCTCGCCGTATCTACGAGACAACCATCTCTCAAGATTGGGAAGTAGACGATAAGTCCATCGGCCGTTCTGGTCATTTTCCCATTATCGTTGCCAGCGCTGCAGCGACCTCGCCCGCCTCGCCACGACCAGCGTAGCGTTCCCTGTTCTCTTCGATGAGAATGCCAACCGGGATCATGCCGGTGATCACACTGATGGCCGCTGGTGATACGGTTGGGAAGGCACCCGCAACCCCAATCCCAGTAAGCCTGTGAACGCGGTTCAGCTCGACCAGGTTCCGTCCGGTCGACAGAGCCGAATACCGAGGTGACTACGCTGGATAGTAACCTCGTCCTCGAGCAACTGAGGCCGTCTGCTCCACGCATAATGGCCGAAAGGGCGTTAAGAGCCATCAGTGCGTTAAGAGGTGGTAGCATAATCAACATGGTCTCCGAAGGCAAGCGTGCGATCTACTATCACCCCGAGGTACTTAATCGCCTCCTGGGACCGATCCACTAGATCGCCGATTTCAATCGATATCTCTTGGACAGGCTGCAGGCTGCTAACAAGCATTGCCTTGGTTTTGTGCACGCTTCCACTGATTCGATCAACCGTTCCGCGTTAACTTTCACCTCGCTCAGGCTCTGACCATTAACCGCTAGGACCATATCGACGACCAATGACATAACAGGGAGTTTCGGCCGCAGAACCCCGTCAAACATCATTTTTCAGAATGTTGGCCCTAGAACGGATCCTTGGAGAACGTCAGCCGTAAGCGGCATTACCTCTGGTCATGAGTCGGTGTCGTACAGCAGAACGCGTCGATCGAAGTGCCTACCCAGGATGCGCCCGAGGGATCGCCACCCCAATTGGCGTTGTTGAAGGCGTTCTTCGCGTCGATCCGCGTGACAACCGCGCAGAGACGGTCGGCTCCCCGCTTTTGGCGAACACCACTAGCAGTTTCGAGTACCATCTTTATCGCGTCCAAATATAATTCAGCTGGTGTAGCTAGAAATGTTGTATAATACCTAAAGGCAGTTGGGTATTGTTTAGTTAATGCTCAACATTTTTGTGCACTTAGTAGATTAGATATGGTTGGTCGTAGTGGTTAAGTGGCCCAACCGTACCCGATCAGAATGAAAATGGAATACTCCAATACTGTCCTAGTCTAACATTGCGACAAGAGACGGTTCAGATACTCTCATTTCTTCCTCCTTACACATCCGCTGAAGTTACTCTACTGGAATATTTGGGGCGATGGTTTTCCAGTTTCCAAACCAGTTTGGACTGTATCTCAGGTGAGAGAACATGGTCACAATGCATCTTCTGAGACCCAAGAGAATGGGCGCTGGGTTTTGTATCCCTTTCTCGCGAGGACAGCACTGATTATAAAACATGAAACTAAAGTTTCTATTGTAGAAGGTTTGTAGTACCAGATGAAAAGCCCGTTAACTTGCAGATTTCAGACCAGGTCATGGGTAATACTGCCTCCAATCATAATTGCAATAATTAAAATGTGTAAAATTTCGGACGATGTAACTCAGTAATTAATTTGCACCACCAAAGTGAATGAAACCCCCTATTTTATTGCTAGAAACTCGATATAACGGATATGATATGTGTGAAAAAATCGGATATCGCAGCATATAATCGGTCCATTAAGCTACTGACCTGCAAGCCACAATGGGACTCGCAAACCCGTACTGCACTTGCCACATGCGACAGGATGAAATCGCCCGTAGGTACAATGGTTCACTGTTTGATTATCGTCAGAAAACAACGGCTAATCAAATGATGCAACAAAACGGGCATCAATGGTGGTTTAGGCCATTACAGGATGTGTTGGGGTTAAGGGTGACATGACTCTTTGGAAAACCAGAAAGGTGGGGCAAACAGCCATCAATGGTAGTATGTTGGAGTGACTACCTATTAGGAAAGCGAGTAGGAAAAGGTTCACCTTTCCGGTATGGTAATTCACCGAAAAAAATGAACTGATATACATAATACAACTGATACACTAATATACCAAAGCATTAATGCTTGCGATCGAACTTCGCAAACCTCAATTGTTGCAGATCTGCTCTTTGATGTGCTTGGTTCGCCAATCGATCTGATCGAGGACTTTTAGCGGCCGCAGGCAGGTAACGCTAAATCGTGGAAGCATTGGATCAGGACAGTCGCTTACGTCTGAATCGCGCATCGCCATTGATCCAAAGGGTGTTGAAAACATACGTCAGTATGTTGTACAGCCTGCCCTAAACATAGTGCAACAATCGAATTGCTTGTGTCTTTGCACTCATCGTTTGCGAACTTGCCGAGAGAGATAAGTGGGCAAATGATGCATATTCAATGAAGTTGGCTTTGGCAGCTATTGCATATGTTGCAGCCAACATACACATTCCAAAGGCACCAAACACATATAATGTTGAATATCTTCTGATTTGGCTATTATCTATTCGAACTTTCTCATGATAAAGCATTCTGTAAATTTTTCAAGGTTTTAACGAGACATGTTGCTCTTGAAGCATGGACACGCGAATGTTCGATCGGTAATGCACCGCTTCCTCTCATGCATTGGTCACTGTTATCAGCATATCCGAACTGCCACCGATCGAATTGTCCTGTCACTAAAGGAACATGAACATTACCGCCATTAGTTGCAGAAGTGGCCACCCTAGAGCACCAATCTATCCAGGCAGTGCAATGGTTCCATATCGGACACAATTAATCATCCGTGCAAAAGAAGTATGCGGATGACGATCAACATGGTACATGTCCCTCAAAGTGCATGACCACGATCTAACGTTATGTGACTCTTACACGTGGAAAATCGCAAGCAAACGTAATGGCGCTGATCTTGGACTCAATAGTAAAAAATATGTATCGGTTTGGAATGGAAGATTTTGAGGACTGAGTACTCACGTCTGGCGAAACTGATGCGTTCGTGCTCTACGTATGGTATCAATGGCCCCTATTATGAAACAAGTCGATAACGCTATCGATCGACAAGAGTAAATTTTTGAATGAACTTTTCTTGCAAACGAACATAAAAATGAACACTTGTCGACTTTTTTGTCGATCGATAACGTTATCGACTTTTTCATAATAGGGGCCACTGTCCGTCTGCAATTGTTTCTATGCTATCCGCTGCCGATGGTCCTGTGTTTGCCACTTATAGGCTACGGTAGATCCTTGCAACAAAAGCTCTTCTAGTCAATGCAATCAATAAACTTACAGTGTTTTTTCTAAGATGTTCGCAGCGTTCAAATGGCACTCCTGGAAACAGCTGAACAAACATCAATAATCTGTTGAATGGAGAAAATAAGCCTGCCTCGGATAGAACAATCAGAATGAATAGAAAATAACAGCAATTTACACCTAGAAGAAGCCTCTCATCTTTGTAATGTATGCGTACCCTGAATTCTAGCTCCATGGATGATAAACTATTCTTAGATGATGAGCTAGACTGTTAAAGTAATGTTATTAGTTCATCAAGTGTCAGTTGCACAGCTGATTATAAAAACAAGACAAAGTGCGTTGTTAAAGGGAAAACACATCGCGATAGTCATTTGGAATACTCAGCTTTTACAGTTATTGTGGTGAGCATTTAATGTGTTTGAGTATAGAATTGAAAAAGAACCAAAATGAGTTTTGTCTAAAATACACTAATATAAAACCAGCTTATCATATAGACTATTTGTTGTATTTTGATAATTTCTGTTTTTCCAAAAAGCGTTGTATTGGCAGACAGGCGTCAGTTCCGTTCCTCTTCCTAAAAGCAGAGGATCGCCAGATGCGGCGCAATCACGATCACTATAATTGAAAGTAAAATGAAGACCCTCCACTCCCATTCCTTTCAATGGCAATTCAATGGCCCGTACGCGCCATTCTCCTACTCCCGAGACCAGCGCTTCAACGCCTTTTAACTTACCGTAAATGCCATCGAATTGCACTCTTTCTCACTCAATGGGTATTCTGATGCGGATCCTATCTCCAATTACACATACGGTCCTCAAACATCCAATGCACAAATGATAAACCCACCCTTCGGTGAGTAGAATGAATTGAGTTTTTGCAGGTGACGCTTTGGTTAGACAGTCGGTCGACCGATTCCCATATATCACAGTTAATCATCACGCCGAGATACCTGACAGCATGATTCAACGAAAAACCACGCAACTTTAGTTTTGTGATTCGCGAAGAGTAAACTTTCTCTCGTTTATTTTGCCCCTTTTCCAGGATTTGGCCACAGATTCTATAGATCACTGATACATGCGATAATCAAAACCCCTAAAGAAAGCGCTTGAGATCAGCGCCCGACATGTACGTATTTATAGATGTCAATTCCTCAAAACGCCGGTTATTTATTGGTTTTTATCATAATAACTGCGTGTTTTCATACACATAGTGTTGATAGTTGGTTGGTCGTTACTATTTCTTCCTTCATTTAACTGTCATTTTAAGATTGCCTTAGAAACTTGCCATAAGGAATTCAAAAACGAGCATTTTCAACGGACATCTGTCAGCCAGAATGAAAGTTAAAAGTCATTGAACAAAATGTAATATATATTATTAGTAAACCATTATCTTAAGTATTTGAAGAATTGAATTTAAGAATTTCTTTTGTAAAATTTAATGTATAAGTAAAATTGAAGCACTGTTGTAAAGTTTAAGTAGCTTTTAAACTATGCTATTCTGTAAAACGAGAATGCAAACCCAAGAGATTGGACACGCATTTAAAATCCTAGCAAAGCATTTTCTAGCATCGTCGAATGGTGCCAATTGTTTCATCTTTTTCGTATTGGTTAGTTTAAAAAGGAATATGAAGAATGGATTTTAATTTGATTATATAAATTCATAGAAAACACATTTCCTAGAGCATTGCCATTATCGACATCGATTGACACCATTCACGAAGCCTGATTGTTAAAATGAAGAAACACCTCCGCTCCTCTATTCAACACTACCGGGATCTACTCAATAAATATGCAAATCATGTAGCTACTACGCTCTTACTGTTAAAAGATCCTATTCATGGTATTCTCCAAAAATATTCAAGATTTATGAATATATTTACATCAATTGTGTCAAACGAAGGACTCTTCGTTTCACCTTTATTCTGTAGCTATTTATGAAGACGCGTGCCGCGTTGTGTGTTGTTGGGGCAATTTTAATGTCATCATCGTGCCGTGAGGGAATGGTAACTGAAAGGCTTTAAGATGCAAAAAGTTTAAAATTCCAGTAGCAGAATTACTTGAAGGATAATTCTTCTGAAGAAATGAAACCCATAAAATATGAATATTAGACTGTGTACCTGCATTAGTCTAACACCAAAATGTATGACCTTCCACAAATCATCCTACCACCCACGACACATGGATCAAACATCAGCTGTATATTGTAATATATTTTATCAAGATTGTTCTAATATCGATGAAATCTTAGTTTGTAAATGAAGATATCCATCTTTATTTTGCCTCGGTTCTCATCAGTGCTCAATGAAGTTGAAACTGTTTAGAATTGACTGACTCTGTTTTTTTTTTTTTTATTGAAAACATCTAGCGATTTGTGAAGAAAGAAACTTAATAAAACTGATAATATTTGATAATAAAAAATCAATAAAAAGATAGCCATTTGAAATAATCAGGCTATACAGGTGCGTAACCAACATGCCTCCAAACTCATTCCGGAACCATTCCGGAAACTTCTCTGACGTCTACCATAAAGCAAATAAACTTAATTGACCATATCTCAATTCAGTCAAACAACCGGTCAAAAAGCAATAATCTTTTGCCCAGGGATGTGGCTGCATGCAAACGTTTACCATGGGATAAGGCAGCAAGTGCCCCGGCTCGTGCCCTTGGACGCTGTGACTGGGCTAAATCATTGGGGAATTGGTCAACGGTCACCTAATGGATAGGCACAAGGAATGAAATCAATTATTACTACTCATGTGGAAAATGCCGTCAACATTGCTTACAAGGGGGTGCAAACTATTCAAATACTCTCACTATTAGAAGTAATACAGTTCGTAAGCAAACGTGTGCAGCAGGTTTTTTTTATTGAAAAAAAAAACACAAAATTGTAATAAAACTGCTACTTGCACCTTTTTCACCTTGCATATTTTTTCTGAGTGGTGAAACTTCCAACAGTATTGCGTAATCGTTTTAGAGCAATCGAATTAATTTGCGCATGGTAGCTTTTGTTTTAATAAAGTTACTTTTACTTTATTTTAAGAAGATCCCGAACCCCCCTACAAATTCTGAGCAGTGCCTTTTGAAGCGGATATCTCAAAACTATGGTTTTCAATCTCGATGGTCATTACAGTACTTCCTTTCGTTTTGAAATTTTGAACACATCATTTACCCTTTAAATGTTTACTTGTCAAGCTCGAACATTTTTTAAATTTTTCGATACTTTTTATACCCCAAAGGAAAAATCGATTATCGATTGTATTGATTGGTAGTAATCGTTCTAAATGCACAAACAATTATTTCTGCAGCTTAGGAGAATCATACCCGTATGCCTTTATCGAACAGTAATTGACGGACGTAGTGAATCGTTTAGAGCAATCGAATCGTTTTAGAGCAATCGAAT +>XM_009271859.1 Wallemia ichthyophaga EXF-994 Phenol 2-monooxygenase partial mRNA +ATGGCGTCAGATCCGCAAATCAAAAACTCAAACGTAGACGTACTAATCATCGGAGCTGGTCCTGCTGGTGTCATTGCCGCTGACTGGCTCGCGAGATTCACCAAATACGGTGTTAAGACAAGGGTGGTGGACAAGCGCTCGCACAAAGTCTTCACCGGACAAGCAGACGGACTCAACCCGCGCTCTATTGAAATGTTCCAGTCTTTCAACATTGCAAACAAGATCGTCAGTGAAGCGAACCCGATGAATGAGGTTTGTTTCTGGGCCCCAAATGAGAGCCATGGTGGTATTGAGCGTGGTAGACGTATTCCAGATACCATCCCTGGTATATCAAGATACGTCCAGTCTGTCCTCCACCAAGGTAGAATCGAGAGACACATCCTCGACGACATGAACGAAAAGAGCAATGGTACAATGAAGATCGAGCGTGGTGTGCTTCCCGAGACGTTGGAAGTCAATGAAGAACTCTGCCAAGACGACAACGCGTACCCAGTCAAAGTCGGTATTCGCCAACTCTCAGAAGAGGAATCACGTCCAAAGCTAGGCTCAAAGAACGGTGAAGTAGAATCTGGTCTCTACAAGTCAAACCTCGTCAAGGATGAAGACGATGACGTCGAATTCAAACCAGATGTTCCGGTCGGCGACAGAGAAATTATCAACGCAAAGTATGTTATTGGTGCAGATGGTGCGCACTCGTGGGTGCGTCGTCAATTAGGATTCAAGATGCAAGGTGAAGGATCTGATTTCGTTTGGGGTGTTGTCGATGGTGTTCCAATCACAAACTTCCCTGATATCCGCTGCCGTGCTGCTATCCACTCAAACGCTGGTAGCATGATGATCATTCCACGCGAAGGTAGCCTCGTTCGTCTGTACATTCAGCTCAACTTGCAAGTGGACGAGGGTGGACATGTCGACCGTAGCTTGATCACACCAAAGATGCTGATGGACCAAGCTAAGGCTGTGTTCCATCCATACTCGATCGAGATTCCTGATATCATGTGGTACACCGGTTACCAAGTCGGACAACGTCTCACCTCGGAGTATGCAAAGAATGACCGTGTTTTCATCGCCGGTGACGCTTGCCACACGCACTCTCCTAAGGCCGGTCAGGGTATGAATGCATCCATGGCTGACACATACAACCTGTGTTGGAAAATTGGTCATGTCTTAGCTGGACACGCTCCACGCTCCATTCTCAAAACATACGAGAGCGAGAGACGTCCATTCGCGGAGCACTTGATTATGAACGATGCCCAACTCGCCAAGCTCTTTTCAGGAAAGCCATTGTCATCAGCTGAGCTTAATGAACTTGGTGTCGACATGAAGGACTTTGAAAACATTCTCGAGAGAGGAATTTCATTCTTTTTGGGTACTTCTATTGAGTACTTCAACTCCACTGCCACCGCCAACGGAAGAGACGGTAGACTTTCATCGAAGCAGGAGCTGGCGAAGAATATACCAGTCGGACAACGTTTCCCCTCTCACCAAGTCGTCTCGCAGTTCGACGGCAGACACTACCACTTAGTCGACACCATGTTTGCTGATGGACAGTTTACTATTGTGTTATTCGCAGGCAATATGGACAAACAAGTAAACCGTCAACGTTTGCAAACCATTGCTCAACGTCTCGACAGCGATGATGGCGTAGTGAGCAAGTATACACCTAAGGACAGACAAAGAGATGGCGTGATTGACGTCAAGACAGTCCACTGTGGAGGCAGAACGAACATTGAAGTGCATGAGTTCCCACAACCAACTATTTACCCACCAGGCACATACAACAAGCTCTACGTCGACGACGTTTCCTACCACGCAGGTCACGGAGAGGCTTACAAGAACTACGACATCAGCAAGGAAGATGGTGCTGTTGTTGTTGTGCGTCCAGACCACTTTGTCGGATTAGTTACCTCGCTCGACGGTGCTGGTATGGATGATGTCGACAAATACTTTAGCGGATTGCTCAAGACTGTTCCGGCAGAGCAACGCAACTCGGCAAAGGATATCAAGGTTATTCCACAACCTAAAGTTTAA +>XM_041320268.1 Suillus paluster uncharacterized protein (EDB91DRAFT_1172848), partial mRNA +ATAACCCTCCTTGGGCACGCTATCCTTTATTGCTCTCTTTCCCCACAACTCCATTGCATGTGCTGCCACACCTCCTTCACCTCCCTCCGATGATAACAGCACACTTGTTGATCTTACAGTTCATGAGACACTGTTGGACTGCTGCATGGGAAGCATCGAGGAGAAAGCATATATAGCTCCTCCTACCAGTGACAGATATCAACCTCACACACTTCTGTGCAGCTTCGGTTATCGACGATGACAAGCTCATTGCATATTAATAAAGTGGCGTATTCATCGTGGGCGCTGGCAAGTTGGTCTGGAGCGTCGTGTGGTAGACATACAGTGCAGCAGTTCAACTCATCAGTGTCAGAAAGACAGGCGTACACGACCTGCTCAGATAGCATTATGAGTATTTTGACTTCATTCTGCGCTACATATTCAAGGCGACAGACACCCGTCCCCACACCTCAGTCTCGTTAACCGTTGACTGAGGCTCGTGCACTAGCTCTTACCTTTGATACTCTGCTACTTCTCCAGCTACCTTAAAAGCCCGCCTATCAACAATTGCTCGTTCATCCAGGTCATGCATT +>XM_025612137.1 Aspergillus sclerotioniger CBS 115572 methyltransferase (BO94DRAFT_536881), mRNA +GAACTATGCGCATTGCACACCGAATTTCCTGTTCCTTAGTGAAGTCTAGAAATGTGACAGCCATGCATCGCCCTGATATACGAGGCATTTCAAGCGCATATAAAAGGCGAAGACGCCCCAGCTGTACGAGAGGTGATGTCGCCATCAACGTAATTTTACAGAGCAAAATGCCGACCACTATCGCTCAGACCATCCAATCTTACGCCCTTCGCTTGGTACAAGACACTCTGCGGCAGATTGCAGCCCCTGTGAAACTGATCTATGTTGTTGATGGAGTGAAGAGTGTCTTGTACAACGACCCAGCGATACAGGATGCCGATAAAGCGGTGATCTATGTCACCCATGTGAATTTCTGGAGAAAAGTCCTCCTAGACTTCGATCTGGGATTTGCAGAAGCCTTCATGCTTCAGGAAGTGGAATGCGACCAACTAAGTAAAGTCTTCGACTTATATATCAAAAACCGCGCGACCCTCGACTCCGGTGACTCACTGTTTCATCTCGCTCAGCGATTAGCCCAGTGGTGGAGACCAGCGAACAACATCGACAATGCGCGCATCAACATCGCATCCCATTATGACACCTCAAATGGATTATTTACCAACTTTCTCTCTGCAGATATGAACTATTCCTGTGCGCACTGGTCCAACGATACTGCGGAATCCCTACAGACAGCACAGCGACGCAAGGTTCACTATATGATCAGAAAGGCCCGCGTGCAACACGACCACCACTTATTAGACGTCGGTTGCGGATGGGGAGATTTGATTATCGAAGCGGCGCAACTAACCGGCTGTCGAGCGACAGGTTTGACACTCTCAGAAGAGCAAAAGAATTTGACGGATGAGCGCATCCGTGACGCGGGCCTGCAGGACCGCGTTCGTGTACTGTTGTGCGACTATCGCAACGCCCCGCGGCCAGGCAACGGATATGATTGCATTATCTCAATCGGCATGTTTGAACACGTCGGACCTGAGTATATGGATCAATATTTCGAAGTGATATCTCAATTACTAAAGTCTCAAAACGGCGTGATGGTCATTGACGGCATAACTAAAATACACCCATTTCACGAGACCAATCCTCGCGTGGGTGATTACATCAATCGCTACGTCTTCCCAGGCGGATACTTGCCCACACCAAGTATACTCTTCGAGGCACTCCATCGGGGCAGCAAAGGGACATTGGAAGTGTCCTCTGTTCTCAACACCGGTCCTCACTACGGCAAAACCTTACTAGCTTGGAGGAACAACTTCATTTCCAACTGGGAACATATCCGATCTGATTTTTCCCCCCGATATCCCGATGCGTCGGAAAAGGAAATCGAGACCTACCGGCGGCGCTGGCTATACTACTTTGAGTATTGCGAGGCTGGGTTCCGTAATCGTATCTTGGGAAATTACACCATTTGCGCGGTCCGCACCCCCGAGGTGACCATTGACTACAAGAGCCTGGACATTGATGATGCGCAGAGTATCAAATTATATGAATGAATCATTGTTCTTATTGGGGTCTGGGTCTTCAAATACGTCTTGACTTCATGATGAGCTGCAGAACAAAGATAAGTCATGCTTTATGTTCGGC +>XM_041003117.1 PREDICTED: Ochotona curzoniae negative regulator of reactive oxygen species (NRROS), transcript variant X3, mRNA +TCCTTCCGCAAGTGCGAAAATAACCCGATGCCCTAGAGAGCAGGCAGCCCAGCCCTGCGTTTGGTTGCTCTCAGGGAGGCAGGAGCCCTGGGAGAGGATGCACCCCGCCGAGCCGCCTGGGCCTGCGGGAGGAGCCGGCTGCCCTTGAAATGGAGTTGCTGCCCCTCTGGCTCTGCCTGGGTTGTCACTTCTTAGCCGTGGGATGGACAAAGAGCAGTGGAGCGGACATTGCTGTGTCCCAAGGGAGCTGCAAGTGGGACGACGGAACCGGAACCGCTGACTGCCGTGCTCAGGGCCTGGCCTCGGTGCCCAGCAGCCTCTCTCCGCGCTCTCGGACGCTCCTCCTGGAGGCCAACCCGCTTGAGAAGCTAGAGAATCACTCCCTGCAGCGTTACCGTCTCCTGGAGAGCCTCGGCCTGCGCGGCTGCCACCTGCACCGTCTGGACCGCAACGCCTTCCGCCAGCAGCAAGGCCACCTCCGCAGCCTGGACCTGGCTGACAACCGACTGGCCGAGGACTACCACGAGGCAGCCGCCGCCCTGCACACTCTGCCGCACCTGCAGACGCTCGACCTGTCCGGGAACTCCCTGACGGAAGACATGGCGGCCGTCCTGCTGCACAACCTGTCGTCGCTGGAGGCCGTGTCTCTGGCCAGGAACACGCTCATGAGGCTGGACGAGTCGGTCTTCGAGGGCCTGGAGCGTCTCCGGGAACTGGATCTACAGAGAAACTACATCTTCGAGATCGAAGGCGCCGCCTTTGACGGCCTGCCGGGGCTCCAGCGTCTCCACCTGGCCTACAACAACCTGCCGTGCATCGTGGACTTCCGCCTCACGCAGCTGCGCTTCCTCAACGTCAGTTACAACGGCCTTGAGTGGTTCCTGGCGTCGAGGACCGAGGCCACCTTCGAGCTGGAGACGCTGGACCTGTCCCACAACCAGCTGCTCTTCTTCCCGCTGCTGCCCCAGTGCCCCAAGCTGCGCACACTGCTGCTGCGGGACAACAACATGGGCTTCTACCGGGACCTATATAACACCTCATCACCTCAGGAGATGGTGGCCCAGTTCCTCCTGGTGGACGGCAACGTGACCAACGTGACCACCGTCAGCCTCTGGGACGAGTTCTCTGCCAACAGCCTCCCGGACCTCCGTCTCCTGGACCTGAGCCAGAATCAGTTCCAGTACCTGCCCGAAGGCTTCCTGAGGCAAATGCCTGCCCTCGCCCACCTCAACCTCAACCGGAACTGCCTGACCACGCTCCACATCCAGGAGCAGGAGCCCCCCGGGGCGCTCACCGAGCTGGATCTGAGCCACAACCAGCTGTCGCAGCTGCACCTGACGCCCGGGCCCAGTGGCTGCCTGAGAAACCTCCGCTCCTTCAATTTGAGCTCCAATCAGCTCCTGGACGTGCCCTCCGGCCTTTTTGCCAATGCCAGCAGCATCACTACAATCGACATGAGCCACAATCGAATCTCACTGTGTCCCGGGGCTGGCCCATCCAGCTGTGTGGATTTCAGGAATCTCACCTCTCTGAGGAGCCTCTCTCTGGAGGACTGCGGGCTGGACACGTTGCGGGACTGCCCATTCCAAGGGACACCCCTTACGCACTTGGACCTGTCCAGCAACTGGGGTGTTCTAAACGGGGGTATCAGCCCACTGCGGGATGTTGCCCCCATGCTGCAGGTCCTGGCCCTCAGGGATGTGGGCCTCAGTTCCAGTTTGACCCAGTTGGACTTCTCCGGGTTTGGGCACTTGCAGAACCTGGATTTGGCAGGAAACGCCTTGACCAGCTTCCCGAGGCTAGGGGGCAGCCTGCCCCTGCAGACCCTGGATCTGCGCAGGAACCGACTCACAGCCCTGCCCCACAAGGCTGTGTCTGAGCAGCTCCCTCAGAGTCTGCGGATCATCTACCTCAGTCACAATCCCTATGACTGCTGCCTGGTGGAGGGCTGGGACGCCCTGCAGCACCTGGGCGTCGTGGCTGACGCAGCCTCCATCACCTGCAACCTGTCCTCCAGGGTCATTCGTGTGCTGGAGCTGCCCGGTAGTGTGTGGCATGACTGTAAGTGGGAGCAGGTGGACACGGGCCTCCTCTACCTTGTGCTCATCCTGCCCAGCTGCCTCACCCTGCTGGTGGCCTGCACTGTCATCTTCCTCACCTTTAAGAAACCTCTGTTCCTACTGATCAAGACCCGCTGCCGCTGGTCCTCTGTGTACTGACTCAGGGGCAAGCCTGGGTTTGCTACTGGGCCTGGGCAGCTGAGGACATCTCTGGGCTGGACTGGGGGCTCTCCATGCAGAGGCTAGTGTGATAAGCCAGGGTTTAAATTAAACTGGAAAATGGTTCCATCCCTTAGCCTCTGCCTCCCCCTCCACCTATAAGTTTTTATCTCATTTTGATGGTTCAGCCTCATCATTCTGGTCAAATATTTATTAAATGACACTGTATAAAAATAAAAGACAATGGTCTCATATA +>XM_043331653.1 Rhizoctonia solani uncharacterized protein (RhiXN_11838), partial mRNA +ATGTCTCGCCTCGCCGCTGTGGCCTTTATTCTTCTTTCACTCAGCTTCCTTGCTCATGCCTCGCCCATCGCCGCCCCTGCTCCAGAGCCCGAGCCTGGGAAGAAAATTGTTGCGATTGAGGAGCGCGCTGGAAGCCATTGCTACGGGGGATATTGCTACGGTGGTCTAGACCTTGTGACTCTACTCTTGCAACTCCAGGCTGCGATTGAAATCAAGCTTGGGTTGCTTGATGGATGTCTACACGGCGGAGATTACAAGGCGATTATCCTTGAGATTGAAGCGCTGTTGTATGCTGCTATTGGTGCTGTCCGAGGCTACAAAATTGGTCTTCTTGGGCTTCTCACTGGCAAGATTCTGGTCATCGCTAAAATCTGGTTTGCTATCGTGATTTCTATTGCTACTCACTGTGGAAAATGGGCAGGCCACGCAGATTTTGAGATCTTCCTGGTTCTTATCGTCAAACTTGATCTTGCCCTTAAGCTCTTGCTCCTTGCCATCATTAATCTCGGCGGTATTCTCAGTGGCTTGCTTAGCATCATTATCGGCTTGTTTGCGAAGGTTCATATTGCTCTACTAATCAAAGTCAAGTTCTTCCTGTGCCTTGGCGCTCTGAGACTCGGCGGCTACTAA +>XM_039822988.1 PREDICTED: Perca fluviatilis glucosidase 2 subunit beta-like (LOC120573318), transcript variant X6, mRNA +TTTCAGGAAGTCAGGACATGGCCAGTTTAAATGTTGGATGTCATGAGTTTGAAACACCTTTGAGCGGGTTTTTGCGAGGCAGGAGGCAGACAATTTACAATTATGTCATCTGACATGCATTTCCATATTATTATCGCCGCTGTCTTTTGGTGTGGTTTCGTAGACTCGCGGAAAATAAGAGGGATATCTTCGTCCTGTCCTTATCTTCAACACAGACAACATGTTGCAAGTTCCTATCAAGTTGCCATCGCTGCAGATGACAAGCGGTTCTACAGGGAGAGGAAGTCTTTTCTGTGCATTGATGGGTCGAAGATCATCCCATTTGAGCAGGTGAACGATGACTACTGCGACTGTGAAGATGGCTCTGATGAACCTGGCACCTCAGCCTGTCCTCGTGGCCGATTCTACTGCACCAATCTGGGTTTCCGCCCACACTACATCCCATCATCGCGAGTCAATGATGGCATCTGTGATTGCTGCGATGCCTCCGATGAATACAACAGCCACGCTCACTGCCAGAACACTTGCTGGAATCTGGGACAGAGAGAGAGAGCATACGTGGAGGGCCAGATGAGGACCTTGGACGAGGGTTTGCAACTCAAGCAGCAACTGATTGAGGAAGGAGTACTGCTCTGGAGGGAGAAACAGGCCCAGCTCAGAGAGCTTCAGCAAGTAGCTGAGGACCTACAGATCAAATTAGAGGAACACAGAAGGAAGAAACATGAGGCCGACCGACTCAAAGAGCAAACTATAAAGGCGCTGGAAGCAGGGGGCAGCAGTCTCAGACGTCAAAACAGGACAGTATCAAGTACTTTCAAGCTACTGGACAGCAATAAAGATGGCAGTATAACAGTGGATGAAGTCCAGGCAAAAGTGGCACTCGTCCATGATGAAGAGCAGGTTCTCTCTGAGGATGAAGCAGTGGCTTTGTTGGGCGGAGGCCATCAGATGGATCTCACCAAGTTTCAGTACACTCTCTGGGACATCCTGACAAAAGGAGACCATGTCAAGATCAAAGACACCCGTGGTGCACCAGGCAGTCTTGTGGGTGAAGATCCTCACTTAAAGGCAGCTGATACAGATATCATGACCCGGTTACTCAAGATAATCCACAGACCTGGTTGTGGGCAGATTAATTTAGGAAACTATTTTCTTTCTACCGAACTCCACCCGCCAAACGTACCACGGTGCAGAAGGAAGCATACTTATGGACTAGCGGCTACTCCTCTTTGGCTGAGCTGTAACGTTGCTTACTGATAATGCTAGCTGACGTGAGCTAGCTTACGCTACAGCTCTGCAGGGAAGGACGCCATAGATGTTTACATCTCGCGCTTTCACAAGCACAAGCCTCTCGTCCATTAGTACTCTTCCTTGTCGAAAAATTAATCTAAAACATTTAGAAGATAACTTATGATGGACACTATTTTTAAACAAGTGTAAAGTTTATGTGATTATTGCATGTTTTAAAGAAGAAAATGAGACAGTCCTGTTAAAATTTTGGTGGAGGGGGTGGTGGTGGTTGCAGTCTTTTTTAATACCACCACTAGACGGTGCCAAAGTCAGAAATGTACACATCCTAAATAGTAGCTTTAACTTATTATTAAATACTTACTTATTTACACACAATTTGTTTAGCTTTTTGTATTAAGTGGATTTTGGAAATATATATATATATATAAAAAAAAGGTGCAGACCCAGAGGGGACTGAAATGTTAGTTTTCATAATAAATGGTGATGCTAGAGCAAGAGTAGAGTGTGAGATTTTTCTTTTCTTTGTTCAAGTTTGTGAT +>XM_017639444.1 PREDICTED: Rhagoletis zephyria uncharacterized LOC108383066 (LOC108383066), partial mRNA +ATGGAGCAATTGGAGAAGGAATTTGCTGACTTCTTCGGCGAATGTAAGCAGCAAGGATTTACCTCCAAAGAAATGCGTGCCATATGTCAGCCGCTGTTGCATCGTCGCAACAACAGATGTTACGTGTTACTGGGCGTCTTGTTGGCTATGATGGCCGCCTTTTATTTACTCTATAACTGGTCCGAAGAATTTAGTTGGTTTGTTAGCGCCATTGGACGTTTGGTGTTGCTACAGCTGTTGCCCTACTGGAATTGGACGCCTCTATATAGTAGCCGGTGTCTAATTGAGCGTGCGGTAGATAAAAACGGTGCGCAGAGTGCAACTTCAACAACGAAAGCCTTGGGCCGTTATGAGACTGAAGCTGAAAATTGCGTACTTTGCGAGACGCTTG +>XM_047907316.1 Fulvia fulva Putative ariadne-like RING finger protein (CLAFUR5_08168), partial mRNA +ATGGCCAACAGCTCGGAAAAAGAGGTTGTGGACCTCCTCATACTGGTTGACGCCACGGCGTCTATGACCAGCTATCTCCAAGCACTGAAGCAATCACTACCACAAATCATCTCTATTTCAGCCCTGACGAACTGCTTTGATCGCATCGGCATACTAGCGTATCGCGACTATGCCCACCGCGACCTCCTCGACTGGTCAGGCTGGACTTCTTGCGCTCAAATGCAGCAAGACGGCGGAGCCACCCTAATCGCCAAAGCAAACGCTCTGCACGCCGTTCGCGGGGAATCCGACGACCACCCTGAAGCCGCGAAGACTGGCCTTGCTCAGGCATATGAGTACATGCGCACCGATGCAAAGACCCTCATGCTAGTCTACGCCGATGCGCCACCTCATATCGAAGGCCTTAAGACCCGTGCTCACAACGGAGACAAGGAGTTACAAGCCCTCTCTGATCCGCAGAGTTATGGCGGATACGGGCCACTCTTCGCGGATTGGGTCTCTGCTGCGAAGACCATGCGCGAGGGAGAGAAGAGGGTACAAGTCATGTCGATTCTACACTTCCCGTACCATCCACAGGATTCTGCCTATTTCGACTACCTAGCCACCATGACGCGAGGCGCTGCTATTCACTTGAACAACTCCCAGGCACGTACCATTTCTGAGGTCACGGTTGAGGTCTTGCTAGCTTGGATGGGTGTGAAGAAGGAGGGAGCTGGATCGGTCGCACTTCCTGCGAAGCTCTCCTGGTACGTGGACACAGATATCGGAAAAGTGAAAGCAGAAGGCGAGCTCGCTGCTTTCCTCCCGTTTGGAGATGTGATTGCATCTCAACGGCTAGCTCTCACATCCGAGCTTCTCGAACAACGACTGCCAAAGAAGGCGACTCCGCTAAAGGACTTTGCACGGTCTTATAAGGAAGATGCAGCGTATCGAGACATCGTTACCACGCATCTCCGCGCTATTATTGAGAGCGATGTGGCTGCTATGAGCTTGAATCCTGTCTTTGGTTCTCTTTGGCGGACCTTCTGTAATGATAAGGAAAACCCTCATGGGCAAGACCTCCTGGATCTGTTCGGGCTGAAAGTCAACGGTCTCGCGTACGCGGATGACCGAGCGAAGATGAAGACCTGGCTGGAAGAGTCTTACGACTATACTGCAGAGGTTCTCGAGGCTATCGCTAAGGTGCCAAAGGGGTTGCAGTATCCATGCGTATGCTTGGATCCAACGCTGTCGTATGAGTTGGCGCCTCAAGCCGAGGACGAGGACAGCGAAGACAACCGCCCCATCACTTCCTTCCGGCGGGATGAGCTCCTAGAGCTGGGACGATCTTGTGATTACCGTATCCTGCGACGCTTAGGACGAGTGCTTACCCGACTGACATTTGTCGAGTCTGCTGATGCGATGCCAGGTCACATTGCTGCCGCTGGACAGGAGACTGTGACCAGGATCCCTATGGCATTGGTCCGAAAGGAGTATGGCCGCAAGTTCTGGCGGATTCTCCTACATATCGTGGTCCCGGGTACTATGCTCTCCGGTCGCGCTGCTGCATTGCTTGGAGCTCTCACTATCCGGATGGGAGTACAGCCCCTGAGACGTGCTGCTGAGGAAATTCCTGAGACGTGGAATGTCAGCTGTCTGTCCCTGATTCTTGATGCTGATAAGGCTTATACTGAGCACTATAATGACGGCTTCATGGGAAGTGAGGCTGGCTTGCTCTGGGACCAGGATCGGGAGCTGTTCAGGCGCCTCGTGGATTACAAGATGTTGGAGCTTAATCTTGATACAACGCTGCACGCTCAAGTAGCCTGGACGCCTCACAAGACGACTATGTCTCTCGGTCCTACCATCATGTGCAAGCTATGCCAGTACCATCGATCAGTGACTGGCATGGGACCAGAAAACATTTGTGGACTGTGCTGCTACAATCGTGACAATCCCAATGCCACTGATCAAGCCAATATCCATTGCCACACTGCAGACGCTGATGGCGAAGCGGAGAACATATACTGGTACGAATGCAGCGCTAAGCACTGTCGAGCCCAGTACATCGTCCACGAAGCCGACAGGCTGAACGTGCGACCAAAGTGTCATTACTGCCGCATGGGAGAAACCGCTCCGATACTAGAATGCTCCAAGTGTCTCAACGGAATGATCAGGCCGCTGGAGTATCGACACGGCCTGGACGAAGCAACCTTTACTTGTGTAGGCTGCTCACAGGGACGCCAGACAATCATCGATATTTATGAGCATATGAACGAGGCGCATGGAGGGTACTATGGTGATTTGGAGGATGATGAGGACGGGGAATAG +>LN871451.1 Bacillus licheniformis partial 16S rRNA gene, strain IRQBAS20 +TCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAACTCTGTTGGTAGGGAAGAACAAGTACCGTTCGAATAGGGCGGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGAGGGTTTCCGCCCTTTAGTGCTGCAGCAAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAACCCTAGAGATAGGGCTTCCCCTTCGGGGGCAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCAGCATTCAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGAACAAAGGGCAGCGAAGCCGCGAGGCTAAGCCAATCCCACAAATCTGTTCTCAGTTCGGATCGCAGTCTGCAACTCGACTGCGTGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGAGGTAACCTTTGGAGCCAGCCGCCGAATGATGATATGAAATC +>OP114738.1 Raoultella ornithinolytica strain X13 16S ribosomal RNA gene, partial sequence +TGCAAGTCGAGCGGTAGCACAGAGAGCTTGCTCTCGGGTGACGAGCGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGTGGGGGACCTTCGGGCCTCATGCCATCAGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAATGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGAAGGCGTTAAGGTTAATAACCTTAGCGATTGACGTTACTCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTTGAAACTGGCAGGCTTGAGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGTCGACTTGGAGGTTGTTCCCTTGAGGAGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACTCTTGACATCCAGAGAACTTAGCAGAGATGCTTTGGTGCCTTCGGGAACTCTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGATTCGGTCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGAGTAGGGCTACACACGTGCTACAATGGCATATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTATGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTAGATCAGAATGCTACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTACCAC +>XM_021864905.1 PREDICTED: Chenopodium quinoa outer envelope protein 61-like (LOC110688195), transcript variant X2, mRNA +TAAGAGTCCTAGTCCTAATTCAAGTGTGGTTGGCGTCTTGGCGACCCACCTTATTTATTTCCAACAAAATTAAAATTATAAATTCTAATTCTTCACCTCTTTCCTCTATTTAACTTCACAATTATCACCGAATTTCCCTAACTGTTTAATTCTCTCTCTTCAATTTTGCATCCATCGCAATTAATCAATCCCTAGATTCTACGAATTTCTGCTTCGATTTGATCTCAATTGTAACTTATTGATTTTGAAACCCTAATCAATCGAAGGATTTTGCCAGATGTTTAACGGTATGATGGATCCTGAGTTGTTTCGGATTGCGCAAGAACAGATGAGTCGCATGTCTCCTGCTGAGATGGCTAAGATCCAACAGCAGATGATGTCTAATCCGGAATTGCTTAAGATGGCTTCGGAAGGTATGAAGAATATGAGACCTGAGGATCTAAAGATGGCTGCAGAGCAAATGAAGAATGTACGTCCTGAAGAAATGGCTCAGATTGGTGAGAAGATGGCTAATTCATCCCCGGAAGAAATTGCATCAATGCGTGCACGTGCTGATGCTCAATTAGTCTACGAGTTAGATGCAGCTGAATTACTAAAGAAACAGGGAAATGACCTTCACAAACAGGGGAAGTATCATGACGCTGCACAGAAATACTTGCGGGCAAAGAACAACCTACAAGGGGCTCCAGTTGCCAGAAGTAGAGCATTGCAGTTGGCATGCTCACTTAATCTGATGACATGTTATTTGAAAACAAGACAATTTCATGACTGTGTCAAAGAAGGCAGTGAGGTTTTGGCCTATGATGAAAAGAATGTCAAGGCCTTGTACCGTAGGGGTCAAGCATACAAAGAATTAGGTCAATTAGAGGTTGCTGCTTCTGACCTGACAAGGGCACTTGAAGTTACCCCTGGTGATGACACAATTGCTGAAGTTTTAAGGGAGGTCAAAGAAAGTCTAGGAAAAGAAGGTGTCACACGAACTTCGACAGTTGCAAATGGTAAGAGAACGTCTCAAGATTGTTCAGTTACTCAACCTGAGGAAAGCAGTGGGCATTCTAAATATCAATCAGAAACTGTTAGTAAGAGACCAACGACAGAATCAGAATGTTTGCAGGCAATGAAGGATGATCCAGACACAATCAGATCTTTCCAGAATTTCATTTCCGAAACTGATCCTGAGGTTCTAGCCAGAATGAATATTGGAAACAACAGAGAGGTTCCTGCTGACATGCTGAAGACAGCATCAAATATGATTGGACGAATGTCTCCTGAGGAGCTCCAAAATATGGTGAAAATGGCCTCCTCATTTAAGGGTGATAATTCACCCTTTAATGGTAACTTTGGACCGGGCTCAGTTCCTCCAAATTTGTCACCTGAAATGCTGAAAACAGCTAGTGATATGATGGGTAAAATGTCACCTGAGGAAGTTCAAAGGATGTTTGAGATGGCTTCCTCTTTGAAGCAGGACTCAGTTCCTAGCTCATCAGGTTCGTCAAGTGGCAGATCGAGTTTGGAGTCTGGTTCAAAGTTCACTGCAACTCGGGGTGTACCTGTTGATAGAAATAATGTTATTGGTGAGAGGAGCAGTATTTCTGGCTCATATTCTAATCCTGGAAGTACTTCCCAATCAAGTTTTCCTACATCAATGGGTGATATGCAAGAACAGATGAGAAATCAAATGAAGGATCCTGCCATGCGACAAATGTTTTCGTCGATGATGAAAAATATGAGCCCCGATATGATGGCCAGCATGAGTGAGCAATTTGGACTCAAGCTTTCTAAAGAAGACGCTGCAAAAGCTCAAGAAGCCATGTCGTCATTGTCACCTGAAGACCTAGATAAAATGATGCGTTGGGCAGATAGAATTCAAAGAGGAGTAGAAGGTGCGAAGAAGACAAAGAACTGGCTACTGGGAAGACCGGGGATGATTATAGCCGTATGCATGCTTCTTCTGGCTGTTATCCTTCACTTTTTCGGCTTCATTGGTAGGTGATTTTTCAGGACAGTAAGATAAATCTCCTGTTATAACAGCTTGTACTTGCTGATATCAGCAAATCCAGGGCCGAACTTATGGTGTTCAAGGGGTGTGTAAATC +>XM_028853279.1 PREDICTED: Macaca mulatta estrogen related receptor gamma (ESRRG), transcript variant X13, mRNA +GGAAGCTTGTACTGAAATATATACAAATAATTAAGAATACTTTTAGTGCACTGTTTAGTAATGCTCTCCCTACAAAAAAAAAAAAAAAATGCTCTCTTTATTTTGTCAAAATGCATTGAGAGAGATTTAATTCGCTATTTACCCCCACAACCCTCAGTCTCCCCACCCCTAAAACTGAAGAAGCCAATTTGTCCTGCGGTTGTTTACCTTTGTTTTGAAAAGCTATGCGTTGTATCTACACGTAAAGAGACAGTCGCAGGTATAGAAAGGTTTACACATATAATTTACTTAGGCATTCTCTCAAATTGTATTGTCACTGTTTCCTCTTCTGTAGTTGTGTAAAACTGCATTCCACCTCAGAGATGACGATCCCAGTTCACATGCTCAAACAATTTAGAAGAATGTCTTTATTATTATTATTTTTAATGCCCAGCATACATCAGGAAAACAGGAAAAGACATGATTAGGAATACATGAGAAAGTACAGCACCAAATAAACAGCAGCCCCCGGTGTAATCAAAACACAGACAACGGCAGGACAAACTTAATTCTCTACCTTCCGCAGAATCCTTTCCCAAATTAACTGAGAGTCTGCGTGAGTTCTCCTTTTCAAGGCAAAAGAGATCTTAGGTTAGAAATCAAAGGCAAATCCCTCCAGTGCTTAGAGAGTTAAGTTAGTTATGTTTCTTTTGTAGCTTCCCAGAAGAAAAAAAAAAAGAGAGAGAGAGAGAGAAGGGAGGAAAAAAAAAAAATCAAACCCGAGAGTGTGTATTGGGAGCGTTTCAACCGCTCCCTTCTCCGCTCCCTTTTTCTCTGCCCACTCTCAGTTTCCAGCCCCCTTCGGCTCTCTGCACCCTGCCTACCTGCCTGGCTCCTCTCGCTCCGTGCAGCCTCCCGTCGCCTCCCTCCTGATTGGGCAGAGGCCCCCCAATCGGCTGCGCGGCTGGGCCGGTGGGACTGCATATGTAAAGCCCTACTTCATATTAATAAGCTCCAATCGGGGCTTTAAGTCCTTGATTAGGAGAGTGTGAGAGCTTTGGTCCCAACTGGCTGTGCCTATAGGCTTGTCACTAGGAGAACATTTGTGTTAATTGCACTGTGCTCTGTCAAGGAAACTTTGATTTATAGCTGGGGTGCACAAATAATGGTTGCCGGTCGCACATGGATTCGGTAGAACTTTGCCTTCCTGAATCTTTTCCCCTGCACTACGAGGAAGAGCTTCTCTGCAGAATGTCAAACAAAGATCGACACATTGATTCCAGCTGTTCGTCCTTCATCAAGACGGAACCTTCCAGCCCGGCCTCCCTGACGGACAGCGTCAACCACCACAGCCCTGGTGGCTCATCAGACGCCAGTGGGAGCTACAGTTCAACCATGAATGGCCATCAGAACGGACTTGACTCGCCACCTCTCTACCCTTCTGCTCCTATCCTGGGAGGTAGTGGTCCTGTCAGGAAACTGTATGATGACTGCTCCAGCACTATCGTTGAAGATCCCCAGACCAAGTGTGAATACATGCTCAACTCGATGCCCAAGAGACTGTGTTTAGTGTGTGGTGACATCGCTTCTGGGTACCACTATGGGGTAGCGTCATGTGAAGCCTGCAAGGCGTTCTTCAAGAGGACAATTCAAGGGGTGCGTCTTGACAGAGTACGTGGAGGTCGGCAGAAGTACAAGCGCAGAATAGATGCGGAGAACAGCCCATACCTGAACCCTCAGCTGGTTCAGCCAGCCAAAAAGCCATTGCTCTGGTCTGATCCTGCAGATAACAAGATTGTCTCACATTTGTTGGTGGCTGAACCGGAGAAGATCTATGCCATGCCTGACCCTACTGTCCCCGACAGTGACATCAAAGCCCTCACTACACTGTGTGACTTGGCCGACCGAGAGTTGGTGGTTATCATTGGATGGGCGAAGCATATTCCAGGCTTCTCCACGCTGTCCCTGGCAGACCAGATGAGCCTTCTGCAGAGTGCTTGGATGGAAATTTTGATCCTTGGTGTCGTATACCGGTCTCTTTCGTTTGAGGATGAACTTGTCTATGCAGACGATTATATAATGGACGAAGACCAGTCCAAATTAGCAGGCCTTCTTGATCTAAATAATGCTATCCTGCAGCTGGTAAAGAAATACAAGAGCATGAAGCTGGAGAAAGAAGAATTTGTCACCCTCAAAGCTATAGCTCTTGCTAATTCAGACTCCATGCACATAGAAGATGTTGAAGCCGTTCAGAAGCTTCAGGATGTCTTACATGAGGCGCTGCAGGATTATGAAGCTGGCCAGCACATGGAAGACCCTCGTCGAGCTGGCAAGATGCTGATGACACTGCCACTGCTGAGGCAGACCTCTACCAAGGCCGTGCAGCATTTCTACAACATCAAACTAGAAGGCAAAGTCCCCATGCACAAACTTTTTTTGGAAATGCTGGAGGCCAAGGTCTGACTAAAAGCTCCCTGGGCCTTCCCATCCTTCATGCTGAAAAAGGGAAAATAAACCCAAGAGTGACGTCAAAGAAACTTAGAGTTTAGTTAACAACATCAAAAATCAACAGACTGCACTGACAATTTAGCAGCAAGACTATGAAGCAGCTTTCAGATTCCTCCATAGCTTCCTGATGAGTTTCTTTCTACTTTCTCCATCATCTTCTTTCCTCTTCCTTCCCACATTTCTCTTCCTGTTTATTTTTTCTCCCTTTCTTCTTTCCCCCTCCCTTATTTCTTTGCTTCTTTCATTCCTAGTTCCCATTCTCCTTTATTTTCTTCCCATCTGCCTGCCTGCCTTCTTTCTTTTCTTTGCTGCTCTCGTTCCTCTCTTTACTCATCTTCCTCCTGTTTTCTAAATTTTAAATAGCTTTAGTTGTAAAAAAAAAAAAAAAATCCTTCCTTCCCCCTTTCCTTTCTCTTTCTTCCCTTTTTTCCTTTTTCCCTTTCCCCTTTGCCCTTTCCCCTTTCCTTTCCTTCTGATCTTCTTTCCATCTTTCTTTTTCTTCCTTCTGCTGCTGAACTTTTAAAAGAGGTCTCTAACTGAAAAGAGATGGAAGCCAGCCCTGCCAAAGGATGGAGATCCATAATATGGATGCCAGTGAACTTATTGTGAACCATACCGTCCCCAGTGACTAAGGAATCAAAGAGAGAGAACCAACGTACCTAAAAGTACAGTGCAACATATACGAATTGACTGAGTGCAGTATTAGATTTCATGGGAGCAGCCTCTAATTAGACAACTTAAGCAACGTTGCATCGGCTGCTTCTTATCATTGCTTTTCCATCTAGATCAGTTACAGCCATTTGATTCCTTAATTGTTTTTTCAAGTCTTCCAGGTATTTGTTAGTTTAGCTACTATGTAACTTTTTCAGGGAATAGTTTAAGCTTTATTCATTCATGCAATACTAAAGAGAAATAAGAATACTGCAATTTTGTGCTGGCTTTGAACAATTATGAACAATAATGAAGGACAAATGAATCCTGAAGGAAGATTTTTAAAAATGTTTTGTTTCTTCTTACAAATGGAGATTTTTTTGTACCAGCTTTACCACTTTTCAGCCATTTATTAATATGGGAATTTAACTTACTCAAGCAATAGTTGAAGGGAAGGTGCATATTATCACGGATGCAATTTATGTTGTGTGCCAGTCTGGTCCCAAACATCAGTTTCTTAACATGAGCTCCAGTTTACCTAAATGTTCACTGACACAAAGGATTAGATTACACCTACAGTGACTCTGAGTAGTCACACATATAAGCACTGCACATGAGATATAGATCCGTAGAATTATCAGGAGTGCACCTCTCTACTTGGGAGGTACAGTTGCCATATGATTTCTAGCTGCCACGGTGGTTAGGAATGTGATACTGCCTGTTTGCAAAGTTACAGACCTTGTCTCAGAAGGAGCTGTGAGCCAGTATTCATTTAAGAGGCAATAAGGCAAATGCCAGAATTTAAAAAAAAAAAAAAAATCATCAAAGACAGAAAACGCCTGACCAAATTCTAAAACCTAATCCATATAAGTTTATTCATTTAGGAATGTTTGTTTAAATTAATCTGCAGTTTTTACCAAGAGCTAAGCCAATATATGTGCTTTTCAACCAGTATTGTCACAGCATGAAAGTCAGTCAGGTTCCAGACTGTTAAGAGGTGTAATCTAATGAAGAAATCAATTAGATGCCCCAAAATCTACAGTCGCTGAATAACCAATAAACAGTAACCTCCATCAAATGCTATACCAATGGACCAGTGTTAGTAGCTGCTCCCTGTACTATGTGAACAGTCTTATTCTATGTACACAGATGTAATTAAAATTGTAATCCTAACAAACAAAAGAAATGTAGTTCAGCTTTTCAATGTTTCATGTTTGCTGTGCTTTTCTGAATTTTATGTTGCATTCAAAGACTGTTGTCTTGTTCTTGTGGTGTTTGGATTCTTGTGGTGTGTGCTTTTAGACACAGGGTAGAATTAGAGACAATATTGGATGTACAATTCCTCAGGAGACTACAGTAGTATATTCTATTCCTTACCAGTAATAAGGTTCTTCCTAATAATTAATTAAGAGATTGAAACTCCAAACAAGTATTCATTATGAACAGATACACATCAAAATCATAATAATATTTTCAAAACAAGGAATAATTTCTCTAATGGTTTATTATAGAATACCAATGTATAGCTTAGAAATAAAACTTTGAATATTTCAAGAATATAGATAAGTCTAATTTTTAAATGCTGTATATATGGCTTTTGCTCAATCATCTCTCAGATGTTGTTATTAACTCGCTCTGTGTTGTTGCAAAACTTTTTGGTGCAGATTCGTTTCCAAAACTATTGCTACTTTGTGTGCTTTAAACAAAATACCTTGGGTTGATGAAACATCAACCCAGTGCTAGGAATACTGTGTATCTATCATTAGCTATATGGGACTATATTGTAGATTGTGGTTTCTCAGTAGAGAAGTGACTGTAGTGTGATTCTAGATAAATCATCATTAGCAATTCATTCAGATGGTCAATAACTTGAAATTTATAGCTGTGATAGGAGTTCAGAAATTGGCACATCCCTTTAAAAATAACAACAGAAAATACAACTCCTGGGAAAAAAGGTGCTGATTCTATAAGATTATTTATATATGTAAGTGTTTAAAAAGATTATTTTCCAGAAAGTTTGTGCAGGGTTTAAGTTGCTACTATTCAACTACACTATATATAAATAAAATATATACAATATATACATTGTTTTCACTGTATCACATTGAAGTACTTGGGCTTCAGAAGTAAGAGCCAACCAACTGAAAACCTGAGATGGAGATATGTTCAAAGAATGAGATACAATTTTGTAGTTTTCAGTGTAACTCTCGGCATTTCAAAAGAGTAAGTATCTCACAAATAGGAAATACAACTAAAACGTAGATTTAAAAAGAACTGCACGGGCTTTAGGGTAATTGCTCATCTTAAACCTCACTAGAGGGAAGTCTTTTCAAGTTTCAAGCAAGACCATTTACTTAATGTGAAGTTTTGGAAAGTTATAAAGGTGTATGTTTTAGCCATATGATTTTAATTTTAATTTTGCTTCTTTTAGGTTCGTTCTTATTTAAAGCAATATGATTGTGTGACTCCTTGTAGTTGCACTTGTGTTTCAATCAGATCAGATTGTTGTATTTATTCCACTATTTTGCATTTAAATGATAACATAAAAGATATAAAAAATTTAAAACTGCTATTTTTCTTATAGAAGAGAAAATGGGTGTTGGTGATTGTATTTTAATTATTTAAGCGTCTCTGTTTACCTGCCTAGGAAAACATTTTATGGCAGTCTTATGTGCAAAGATCGTAAAAGGACAAAAAATTTAAACTGCTTCTAATAATCCAGGAGTTGCATTATAGCCAGTAGTAAAAATAATAATAATAATAATAATAATAATAAAACCATGTCTATAGCTGTAGATGGGCTCCACATCTGTAAAGCAATCAATTGTATATTTTTGTGATGTGTACCATACTGTGTGCTCCAGCAAATGTCCATTTGTGTAAATGTATTTATTTTATATTGTATATATTGTTAAATGCAAAAAGGAGATATGATTCTGTAACTCCAATCAGTTCAGATGTGTAACTCAAATTATTATGCCTTTCAGGATGATGGTAGAGCAATATTAAACAAGCTTCCACTTTTGACTGCT +>AF377161.1 Rhizopogon sp. AHF133 internal transcribed spacer 1, partial sequence; 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +TCCGTAGGTGAACCTGCGGAAGGATCATTAACGAATATAATTCGAGGGGTTGTCGCTGGCCTCGCTCGCGCGAGGCATGTGCACGCTTCTCGTTTTTCTCTCAACTCACCTGTGCACCTAATGTAGGATGCCTCTCCTCCGGGAGGGGGGACCTATGTCTTCGTAACATCTTCGTGTAGAAAGTCTTTGAATGTTTACTATCATCGAGTCGCGACTTCTAGGAGACGCGATTCTTTGAGATAAAAGTTATTACAACTTTCAGCAACGGATCTCTTGGCTCTCGCATCGATGAAGAACGCAGCGAAAAGCGATATGTAATGTGAATTGCAGATCTACAGTGAATCATCGAATCTTTGAACGCACCTTGCGCTCCTCGGTGTTCCGAGGAGCATGCCTGTTTGAGTGTCAGTAAATTCTCAACCCCTCTCGATTAGCTTCGAGAGGGAGCTTGGATAGTGGAGGTTGCCGGAGACTTGGATTCGTCCGAGACTCGGGCTCTTCTGAAATGCATCGGCTTGCGGTCGACTTTTGACTATGTGCGACAAGGCTTTCGGCGTGATAATGATCGCCGTTCGCTGAAGCGCATGACTGAACGTCCCGTGCCTCTAATACGTCGACCGCTTATTATCTCTCCGGAGAGAACAGGGTCTTCCTTATTGACTTTGACCTCAAATCAGGTAGGACTACCC +>XM_023987877.2 PREDICTED: Salvelinus alpinus transmembrane protein 88-like (LOC111964137), mRNA +AGACAGACAGGAGACAGACAGGAGACAGAGGGGAGACAGACAGGAGACAGACAGGAGACAGAGGGGAGACTCAGTGACTAACCAAACTGGAATGAAAGTGAGGAAACAGCACGGCAGGAAAGGAAGAGTCAGAGCCAAACAGAAAAGCAATATTTGCCTTAACTGTGCAGAGCGTAGAATTTAACACAAAGCAAAGGGGAAAGAGAGTGACACCGACTGAGACCTTTGCAGACACAAAGCATCTGCTGAATACCTGGAGTTTCAGAAACACCAGGATATATCAGAGAATGACAAAGGTCTAAACTCTCATCATCAGGGTATAAACCTCCACCTGGTCAATGTCATCAGTCTGACCTCAGGATCTGGATGTTCATGTCGTGGAGACCTACCTCTTCTTCTCTCGACGCGCATTCTCAGAGAAGGAAGACAGGTTAAAGAATAGAGTGTATTCACATCTTCTCTTACTGCTACTGTGAGAGGCGAGAGACAGAGAGACAAATCCTCAGAACTGCTCCACCAATCACAAAGCCTAGGGAGGATGAGTCTGCCGAGGAACCAGACCCTGGAGAACGGCATCACCAAGCTGCATCACATTAACAATGGGGAACCTCTGTCTTCACTGCAGTTCCACCTCCAGCACACAGGCTCTGTGACCTCTGTGCCWGGGTCGCCCACGGGGGGGTCAGGGGTGGTGGTGCCACCCCCGTACTCAGTAGCGGGCAGCGTGGCGGGGGCTACGGACGCCACTCTGGAGCTAAGAGGCTCTCTGGACTGCTGGGCGTGCTCAGTACTGGTGACGGCTCAGAACCTGATCATTGCCCTGGTCAACAGTACGCTGGTCAGTATTGTGTTCGGCACCATCATGACCCCAGCGCTGGTCATGGTCGTGTTTGGCTTCCTATGTCACTCTACGGTGCAACCCAATGGCACGTCCCTGTACTGTTCAGACCTGCTGGATGACGGTGGCTGTGTGGCCCTGCTGGTGGTGGGCTTCATCCTGGTCACCCCTCTCCTGGTCCTGGCTCTGGCTGCTTACTGCCGCCTGGCCCGCCACCTCCAACTGGGCCTCTGTTTCATCCCCTACAGCAGGGCCGTCTACAAGAACCTGCCTGCCTCGCGCCAACGTGGAGGAGGCTGCTGTGGCCAGCAGGGGGCCTCAGAGGGGGAGGGCAAAGGCAGTGTGTGGGTGTGAGGGGAGGGATATGTTGACCCTAACCACTGATGCAGGGTCAGATAACATTTTCTTGCCTCTTAAGGTTAAGGTTAGGATTGGGGATCAAGTAATCTGATCCTAGATCTGTAGATAGAGGCAACTTCTACCTTGAGCAGGGAGGGAAGGAATGTGAAGGAAGGGAGAAAACAGGGCATGAGGGTAGTAGGGAAAGTTGAGGTGTGGACACGTGGAGATGATGTTTATGGACACAGTTATAATATGCCTATGAGTCTTTTGGTGGGGGTGGTGTGGAGGTGGATCTTACAATACACTGGTTTGTAGATTGCAGAGAGCAAAGGTGAAGCTGTAAAAACACAAGTATGCTACATGAAGTACTATCAAATACCACTGTAACTACACTGCAATTATTTGTTATTATGTTTGTTTTTTATGTTGAATTATCCTGTACTATTATTAAATTATGTTTGTTTAGAATAAAATATTTCCATTA +>XR_003517021.2 PREDICTED: Zalophus californianus uncharacterized LOC113912871 (LOC113912871), transcript variant X2, ncRNA +TAATGCTCCCCTCCTCCTCCCCTCTCCTCCTGGGCTCCTAGCCCGCCCGCTTGCCAGCCCGGGCGGCGGCGGGACCGCAGGGCCCCGTGCCTCGGCCTCTCCCCCGACGCCTGGCCCCCCCTCGCCGCCCAGTGGGACCGGGCGGGGGCGGGGTGGGGGGAGAGGGAGAAGGGTGCAGTTACGGAGGGGACCCGGGCAGACGCCGCGGCCACGCCTGGCACCCTGTGCCGGGCGGGTGGGGGTGGCGAGGGTGGCGGGGCCGGGGTCACCCGGAGGGGACGCGTCGGAGAGGGCCAGGCGGAACCAGCGCCCTGCCTAACCTGAGGGGGTGGCCCGGGGGTGTGCACCGCTGGACCTGATGTGGTCCTGAAGGCGTCCTTAAATTGTTAAAAATAGTCTCGCTGTATAGAGAAGAACACTGGAACCTTTTAAGTCCCCATCCCCTCGCCTGAGTCCGGAGTGAAACTCCAAACATACTTATTAAGAAACTGTTGCTTTATTTTGACTCGTTTACATAAATTTTCCACTTTGGGGGGATGGTGGTGGGCTTGTGGAATTCCTAAAATAACTTTTAATGGAGCGAAGCCTTCCATTATGGGAAGCGCCTAGACGCGAGAGGCGTCTGGAGGCCTAGGTTCCCGTCACAGCCCTGCCACCAACTGGCTGAGCGACTGAGGCACATCGCCGCCCCTCTCGGCCGGGGTTAGGAGAGTGGACGCCCCCTCCACCCCGAAAGGGGAGACCGGAGAGCTGTCTCAACCATTAATAATGAGACTGGGTTTTCCTTCCTTAAAATGTTCTGATAGTATGGAGAGGCAACTTGGAGATGAGAATAAAAATAAAAGAGGGAGCCATAACAGGTTTATGGCCCTGACCCGGGGAGGCCCTGCCCACCTTACCACCGAGGATCCGAGAAGCTGAGTACTGTGGACACCTGGGTGAAACAGCCATGAAGCTTTACTAACTGCTCTGCAGCCTGACTCACTTGGGGCGGGTCTACACCACAGTCTAAGTACAGCGAAGGAGGAAAGTGACTTCAAGCAAACTGAAAACCATTTGGAAGAAGAGACAGTAGGCACACAGTGTGACGAAGTCTGCGCTGGAGCTAGAAGGACGAGTATGCCCGCAGCTCTGTCCCGAACTGACCTCAAAGGGCCATCAGAGGACTGCCGTGAGGTGCAGCGAAGGGGACGCGGAGCCGCACGGGGATAAAACCACTCGCCCAGGGTCACCAGGCTAATGCTCCTTAAAGGTTCTTGTCTCAGTCATGTCCTCTAACCGGCTGGCTCACCAAGCTGCCGCTGTGACCAGGAGTTGTATTGTTTCCTTAA +>AJ288639.1 Centruroides exilicauda mitochondrial partial 16S rRNA gene, haplotype CexTE +CCCCTCCTCTTGCGGAGTGGAGGAAATCTAATCCAACATCGAGGTCGCAAACATGTTTGTCAATTTGAGCTTTCAAAACACATTACGCTGTTATCCCTAAAGTAACTTATTTAACTTTCAAAAATTTTGGGTATTAAAATAATGTCATTTATATATTTTAAAAGTGTTTTTCTTCTTACCGCCCCAGTAAAACATATTTTTAATTTATTAAATTATTTTATGTAAAGCTTTATAGGGTCTTCTTGTCTAAAAGAAACATTTTAGCCTTTTTACTAAAAAGTAAATTTCAAAAGAAAAAGTCAAGAAAGAAACTTTCTAGTTTATCCTTTCATTCCAGTCTTAAATTACAAGACTA +>XM_012291159.1 PREDICTED: Megachile rotundata mucin-17-like (LOC100879044), transcript variant X1, mRNA +GACCAGTGCACGCGACAAGAAGGAAGAAGCCGCGTGGCCCCAGGTGTTTTGAAATGAAACATTGGATCGGACTCTAAGAAGCTGCAAGAATGGCGCGGAGATTTTCGTGGTGCACGGCGGTGGCATTGGTGGTGCTGCTTTTCGTCACGACCGAAGGTCTTCGTGAACGTGGCACTCAGGTCGACGATCAGAAAACCGCAGGTCGAGGTACTCTGAGGTTCAACTCAAGATCGCTAGAGGAATCCACAACCGCTTCGCTCTCAAGATCCAGATCTCAAGACAGATCGCAGTCAAGAAAATCGAACTTCGAACGAAACGACAGAACAACCTCATCGAACTTCGAACGAAACGACAGAACAACCTCTCCGACCGACTCGGAGTCCACAACCAAACGTCCAAGCCCCACAGCGAGCGATGTGACCGAAATCCCCGCAAGAAGGACCACGGACCCGAACAGAAGAAACGGTAAAAGGTTCTCTCCAGAGAGGACGAGGTCGAAGGATGAAAACGCGATAGATTCCAAGGTCATATCTCGAAGGGTGTCGAACGGGAGATCCGACGGAGTCACGGAGAGGCTGGACAACACAGGGCCGTCGGTCTTCGCGTTGACGACGGAGTCCTCGAGGTCGAGGACCGGCAGGAAGATCCAGACGACGTTCTCCACGAAGGACCTGAAGACGCAGATACCCGCGTCGAGGAGGTATAATAAAAAATCGGAGAACGTAGAGGCGACTACAGTTTCCTTCAAAAGAGGCAGACCCACAACGGAGCGCAGTAGGTCCGGCAGGTCGAAGGTGAACAGGGAGAACTCTGTTGCTCGCAAAGGTCAAGAAGCCCTTTTGTACGAGTCTGAAAGCGTCAGAGTCGACATTCCTCTCGCAGTCGACGGAACAGAGAGTCCTTCCAGTGATCCAACGACCGTCGGCTTCGGTATCGTTTCCCAAAGAAGGTCGGACACCAAGGAGACTCTCAGGGGCAGGTCAGGAGCCGAGAGGAAGAGCAGAGGACGATCGAGCGACTCCGAAGCTGCCGGCTCCTCCAGAAACGGCTCCCGAAGAGGATCGTCCAGGTTCAACGACTTCTCCACCACGGAAGCTAACGAGGTTGGTTCGAGGAAAAGCTCTTCCAGGGATCGTTTGAAGGAAACTAGGAAGAGCGCTAGTGAATCGAGATCGAGATCTAGAGGTAGAGAACAGACGAAGAGTGCAGATGTGGATGTCAAACGAAAATCGGGAGACAGGAATTCTTTGGATAGGAGGTCCAGACTTTCCGAGGGAACTACGAGGTCGGTGGAAAGTCGCGGACAGGATCAGGATGCCAGGAGATCCAGGAGCAGAGCGAGGACGGAAACGACGCCTCTGGCTACGGATGTCACCACAACCGTCGCGCCAGAGACAACAGTCTTCACCGACTCGACGAGCACCGAGCCCGAAGTCTCCAGCACCACCCTTAAACCAACGACAACTTCAACCACAACCCGAAGCACGTCGCGATCATCTTCTACAACCGAAAGAAACCGAGGAAGAGGCAGAGGCAATCAAGGAAGAAAACTAAAGGAAGATTTCTTCAACCACGGACTCGGATTTCGAGGACGAAAGCCATCTCTGGATGCATCAAGCACCGGGGAGTCCAGAAGACCCACCCCCAAAAACGATTCCTACATAAACCCCGGTTGGACCCTCAGAAGACGACCACCTAACTTGAACTACTCCGACAACCTTCCACAAACGATCCCTTCGTCGAGAGACCAAACGAACGAAGTGATTCCTCAGAACGAGGTATCGACGAGCACCGAAATCGTAACTACGGTGGAAACCTCTACATCCACCGCGAGAAGAGGTTCTAAAAAGCTGCAGTCCACGGAGGAGAGCACTACGGAGATGGATGTTACTACGAAGAGTTTCAGAAGGGGTAATAAAACGTTCGAGAAGAATAGGAACGTTGCACCTGGGAAGCAGGAGCATGAAGAGAGCGACAACTATCCGCCGGAGTTTAAGGCCAGGTTGTCTCTGTTGAAGAGTACGAACACGAAAATACCAGCCCCGAAAACTACCTCTAGAACGCCATTGGAGGTGAAGAGATCGTCGGCCGCTCTGTTCGCCGAACGATCGAGGATGAAGCTGGAGCTGGCTAGGAGGTTAGTGAAGCCAGAGTTGAACATCGAGGAGAATGATCTCGACGCAACCACGGCCTCCTCTTTCAGCAAACCGAGGCCGACCGTGGCGTCGACGGTCGATGAGACGGCCAAGGTCGCCAAGTTCGTTAAACCGTCTGCGGGTCGCAGAACGTCCACGGAAAAGAGGTCTCGAGAAGACGAGAAGTCGAAAGTTTCCGCGAGGACAGGCGACGACTCCTCTAGGTTCGCTAGACCGAATTCGAAGAAAGGACGAATCATCTCCGAGAGAATGGTCACCTCGATCTCGGTGGAGGAAAGGGCTGCCGAACAAACCACCAAGCCATACTCGTCGAGTCAGTCGGTGGTCACCTTGTCCTCCGCTGAAGAGGGATCGGCGACCACCATAGACACCACGCGGATTCGCCTGTCCAGCGCTCGGAACGGAAAGAAATCCAAGGAGGAGACCTCGAAGAGACGCGAACACGACGACACCATTACCACTTTCAAACCGAAGAAGCCCTACGCGTATCAATCGCGCGTCACCAAATCGCAGGAACAATCTACGACCCCCGAAGAGAATCTAGTAACGTCCAAAAAGACCTACGCCTCGTCCAAACAGAACGGAGGGCAACGGAAGTTCCAAAGCTCCCGCGAAGAGGATGCGAGAAGAACCAAGTCCACGACAGTTACCAAACCCACCTTCAGACCCCGATACAGCAAACGAACGAAACCGAAATCGATCGACGACAAGTTGACAGACTACGAAGCGACGATCACCACGAAGGTACCTGTTGCTACCAGCAGGTACTCCAGGAAGAAGTCCGTGGTAAAGGCTACAGAGGGTAAATCGAAGACCACCACGGAAGGAGTAGCAACGCAGACGAAGAAGCTGGAGTTTCGTCCTAGAACCGCGACCTACAGAAGACACTCCGAGGTGCCGACGACCTTGGTGGAATCGAGTACCAAGGTTGAGGGTGCAGGAGTCGCCATCACTCCCAGATCGACCAAGTATTCCGCGACTCTGAAGACCTCGACAGAAAGCGCTCGATCGGTAGCGCAGGAACCGCAGGTTAACCTGAGGATCAGCAACGACACCGCGCAGGAAGCGGCTGGCATTACCGGCAGCAGTAACGGAGACACCGGCAGCAATATCTTCAATCCGACCAGAAGCACCATTCTCGCTGGAAATGGAACCCTGTTGGAACAACTGCGAAGCACCGTCGCGCCGCTGCTCAACTCGCTCGGTAACAAGACTCCGGTGTTCTCTGGATCCTACAGCAACGTTAATGTGAATTCAGCTCCCAGAATCACACCAAACGGATCACCGCCCCGATTTAGCGCGAGATACAAAGGTGCAGAATTATTTGTCAGAAAACAAAATAACATTTATCAACCCACTGTGCCATCGATCACTAGCTCGTCTACAACACCAGCTACAACCGTAGAGAACTCTGGTTCGGCACCACCGATCGATGTCTCGAGTCCTGGCGAGCCAAGGTTCTTGACCCTTTATCACGCGTTGGAGTCGGCAGACATCAGGAACGAATTAGAAGCGAACACGAGCGTACAGGCCGACAGGGTTCTCCAGGTAGACTCTAACGCCACTGTCGCTAACGACAACAGCAGTAATTCTAACAATGACACCACAAGCCCCTCCGTAGCGACCACCGGCCCACAGACCCCAGACACCACCGCGAACACTACTCTGACCTCGAGATTATCCGAGGATACGGAGAACACCACCCCCGCGGTTACCACGGGAGTCCCTGAAACCCCTGCGACCACCGAACAACCCTCTAACGCCGAACAACAAGCCTCCAGCACGGAATCACCCTCTACCGAGCAACCTTCCACCAACGCAGTTTCCATGTCGCCACCTGAACAAAGTAGCACGGATGCGCCGACTACGACCGTCGGAAACTCAGAAAGTAGTCAGATACTCTCGACGACTACCACGGAAGTTCCTACCACGACAGGGTCCAGTACCGAAGCAAATGTGCCTAGTACGACCGAGGCCGCGTCGACCACTCAAGGTGCGCAAGGTCTGACGGAGAGTACCACGATGGCTGCCGTCAGCGACGCCGCGAGTATGTCCGAAAGTCCGGAGAGCAATACTATACCGTTCTCCGAGACGCCAGCCACTCAGTCGACCGATTCGAGTTCGACCGATGCCCCCACGACCGAGGCCATATCGAGCAATATGGTGGATGCGGAGACAACTACCGTGATACCTACCACCACGTCGCGACCTAGACTGATCGATTTAGCGCAGGATATTCTGTCCCGTTTGCAAGCGTCTCTGAACGTTACCACGCAGCCGAGTGTAGACTCCACGACTATACCTCCAACGACCGAGATATCGAACGCGATATTAGATATTAGATTCGACGCGAACAATACCCTGCAGAGTCTGTCGCAGTTGAACGAAACGGGAACAGCTGAACCGGCAACCACCGATGAAACCACTACCCAGAGCGCAGTAGGCTCAGTCCCTACTACGACACCTGCGACCACGAATGACCCGTCCAGCTCAATGGTATCTACCCAAGAAGCCAACACGCTGGACGAATCGAGTCCAGTTACAACCACCACACCAGTAACACCACAAGACTCTCAAACAGTTCCGAACACAGAATCGACCACCGTAGGCGACCCCAACAGTTCCTCCAGCCCTCCGTTAGACGTTGATGCGACCACTGCGTCGACGGTTACCACCACGAACGATACTTTACTGACAGAATTAATGTCCATCGCCAAGACCCTCTTTTCGGAAGAGATGAACGACACCGAAACATCGGTACCTGTTCAAACGACGACCGATGTTTCTGGCGTGTCAGGCACGATTCAAGCCACGGAATCGTCGTCGATTTCGCCGGATGTCACGACAGAAACCGTAGAAGCAACTCCGACCACTGTAACTATGTCTGACGTTACCACATTTTCGGTCGATCCCTCGCAGAACGAGGTGGACTCCACAGACCCCACCGTGACCGTTTCGTCTACGGAGAGTTCGACAGACACGCCCAGTACAACTCTAGTGAATAACATGCTCGACAACCTGGTGGATGTCGCGCGAACGAACGACACCGCAACGTTAGGAACACCCCTCGCCGAGAACGTAGAGTCGACCACCCCCTCGTTAACGACCGAAAACGAACAAACGACCCTCTCGATTAACGTATTGTCCAGGCTCGAAAGTGGCCCGGACACCACGACTCAGTTGTCGACAACCACACAAAACACGGAAACGACAGTCGCATCCACCGCCATTAATTTTGAACTAACCACTAACACGTTCGATTTGATATCGACCGACTCGACGACGACGACGACGGGGCCGCAAGCGGCTCCCGAACTTACAGAAACCACCACACCATTAACCGATCTCACGACCGTAACACCAGAGCTTTCGCCAAACACTAGCACTAATCAACCCGAAGTAACCACGATTCCTGAAACAACTCAGTCCACTGTAAATACGATGAGCACGCCGTTGCCCGAAATGATAGTCGAGCAAACCACGGTGGTGTCCACTACAGAGTCGATCCAAAGCGTAACAACCGACGTGACAACCACGTCGCCGATCACGAGCACTCCGCGATTGGACGTTAACCCGATGGACGACGCTGAGGTCACCACCAGCCAGACCCCGCTAACGTCCAGCCTAGAGTCCATTGTGGAAACCACTACTAATACGCCCAGCGAAACAACAAACCTCCCCCAAACAACCCCGACCCTCGAGAACGAAACTCCAACTGTTGTTGCCCGTTTCCAGGATACGACATCAGCAACCGCCCAAGGGACGGCAGGTTCAGGAATCGGCCAAACGACCGAGAACACCACTCCCATGACCATGATACCTTCCACACCTTCTCCCATGCAATCCACCACCCAGTCTCTCGTTTCAACCACTTCATCTTCGGTCGAGACTACGACTACGACGCCGACGATGACTACGACGACGCAGACAACGACGAAAATCGGACGCGTTCCCGAGCTCGCAACGACACAGTCGAGCATGGGTGTCGTCACCGTCACGCCGATGCCCGACACGACGGTTCCTACGACGGTCACGGGTGCCGTAGAGGACAATCTCGTTTCCACCGAAGCTGGGACAACGATGCAACCTATGGGACCCATGAACGCAACGATGATGACCATGAACGCAACCGCCGCGAACACAACCGCCGAAACGACGACCCCGTCGATGCAAACCACTCCTGCGACTTCGACGATGGCTCCGTCTTCTCAGGCTCCCACGACGGCGTACATGGGTCGATTCGGGGGCTCCAGGTTGACGCCTGCCCCCAGGTTCAGCCTCAGCTCCACCACCAGAGCTCCTCTGCGGGACTATCTGGTCTACGGGATATATCCTAACAAAACGATCGTTAGGAAACGACCGGAGGACAACCTGATCGACGCTAGGAACGTGGACAGCCCGTACGTGATATTCGGTATCTTCCCGGATGGCAGGCTGGTCCGGAAATTCCCGAACGGAACGATAATACCGGACCCACCTAGGAGCCCCGTCGAGGTTGTGTTCTCACTTAGCACTACCACTACCACTAACAGGCCACCACCCAGACCGTATTATAACCAGGCTAACCAAGGCGTTTACAATCAGTATCAAGGCCCGGTGTACAGTAATATTCGTAGACCTGAGCCGATGAGAATCGTCCAAAGTCCCGGCACCGTTGACCTCGGCCTTACTGGTAACGCGATCGTCGGCCCCAATGGAGGTGGACCCGGTTTCACGGGGCCACTTGGTACCCCTGCTAGCCTCCCGAGCACCAACGAAATGAGCAATGCCCTGGTAAATACGCAAATGGGGACAGCATCGGTGACGCCGACAGTAAGTACCGGTCGACCGCCGACCGTTTCGCAGGGCGGTCGTATCGTACAGGATCGAGAGAGGGACGAGGCCACCAGGACGAAAGAGGTCGGAGGTCAACGCAGCTCCGTGTACATCGGACAGGACAAGTTCGTCAATTATTGGACCGATGGGGCCTCCACCACCAACCCGCGTGTCCTCGGTGTCAAAATAAACTCGGTGGCTACCGGATCAAATTTGGGACCGTCGCCATCCGTGCCGTCTTTCGCAAATCTTTTGAACAATGAACCAGGAGGTCAAGTTACAGCTCCACCAGGATTCCCATGGAGGGATCCATTGGATCAAATTTTCGGTATTACTACCTCCTCGCCGATAATAACAGCTTCAGTTGCATCGAACTCGCTGGATGATTCTTCGGAATCGAGCAATCCGACTGCAGCAAGGCCGGTGAACCCATTCGTGGAAATTTTCACTCCACTTTCGAACGCGATTGGTATGCCAAGGGGAAATGGCGTGCTTAGTGTCACAGGAGCTGTTCCTAGTACGACGATGCAAACTACTCCTATTACTACTACTATGGCACCAACACCACCAGCTGCACCATCAACACCACCAGCAACACCACCACCACCTCCATCAACACCACCAACTACTACCGCAGCTCCAACTACAACTACACCACCTACAACTACACCACAGCCTACAACTCCTCAAACTAATGCTGCATCGCAAGCACCTCAGTCAACTCCTGGATCCACAGGACCTCCTTCGACAACACCGACTAATTTGCCTGCAAACTTGTTGAATAATATGCAACAGCAGAACGCATTTGGAACGTCGTTTAATGACCTGGTGTTCCTGAATTCGTTGTTGCAGGATAATTCTCGAGGATCTAAAACAAAGACGCTGACCCAAGTCGAGCAGCTGTTAGCCAACAAGATTTTGTCCCTGGCACTGAACGGCCCCGACCCAGGCCCAACCCGCGCCCCAAAGGCCATCAGCTTCGAGAACGCCTCTCCGAATTCCGTCTACCAGTCTCCAAAGTCCTACGAGCCGATAGTGATCGATTTATCCCCATCATCGACCGCCACGTCGCCAACGTGGAAACCGACCCAGCAAACTAGTCAGAAAGCGCCCATTAGTTCAACGACGGAACAAGTCACTCAGACCTCGATTTCGACCACGACCGCGAAGAGAGACATCATCACGAGCGCTCCTTCGACGACTGACAAAACCACCCTAATAAGCACCACAAAAGTCCCAGTCTCCCCTAAAACAGTGACTCGGCCCAGAACCACCACTGAGGCTCCCGTGGGTTTAGCGGGACTCTTGTGGCAAACTCTTCTGGGCGGAGGACTTTTTGGGCCATCGACTACTGAGAGACCTTTGAGGACTAAGCAGGTGAAGACTGTTACGAAGTCTGTGAACATCACTCCGAAGCCGATACCAACTACGCAAAGACCGACGACGACTAGTACCACTACCACAACTACCACCACGACTACCACAGCTCGTACTACAACAGTCAACACGATTGATATCTCGAAGATTCATGTGAGCACTCCGAATTCGATCGGAGTAGAAAAGAAGGCTGCTACGCCGGTTCCACTGTTGTCGACGACGAAGAAGTCGTTGCTGAATAATCCGAACCCCAGGTTGTCTGTTCCTACTTCCACTTTCTCTCCTGAAGAGGAGACCAGGTTCTTGCTGTCGATACTGAGAGCCGCTCAACAGGATGAGAAAGCTGGCGGTTCGAAAAATTCTCTGGACGATGAAGCCTTCTTGAGAGCAATTTTAAGCGGACAGGCTTCCCCGACAAGTACTCCTCCTCCGCAAACGGAAATCAGCAACGCTGCTCTGTTGGCAGCGTTGTTGAAGGCTCAAGGCATCGAACCCGAAACGCCTGCTACTAACATCAGGGAGCAATTGCAGTTGGCTAGCCTCGGCCAGAGCGTCACCTCTGCTCCGAGCTTATCCCCGGCTAGCAGCGGGTCTACGACAATTACAACAAGGCCGACTTCGACTGCGACTCGAGCCACGGATACGACGAAAAACACGGTGACACCGAGACCAACCTCAAGACCAAGGGTACGCACAACAACGTGGTCGCCGAGCTCCACGTATCCACCTCCTCTCTTCAGCTCCTTCTCCAATTACGCTACACCGGGACAGTCGGCTGCCGCTGGCAATTCGGATAATGGCGCGATATTTGGTGCTACCAGGGCGTTCAGTCAATTCCTCGGTGCTGCATTAAGCGGAGCGGCACAACAGTTGCAGTCGTTAGTGAGAAATGGTACTAGGATCGTGTCCGAAGTAGTGGGATAAAATTAGCAAGAAAATAATAAAAATTTTTCGCGTAATCCATAGAATAAGAGAAGCGATTCGCGAGCATGAAAATCTGGAATGAACAAGCTGGTGGTAGCGATGCTTCGAAATAAGTATTCTTTTAGATATTCATTAAAAGTCAATCTGTTTGCTCGATGTTGAAGAGAAACTTCTCGAAATTTCCTCCTCCTTTTTTTATGTATAGATCGTAGCGTTACGCGCAGATAGTTGTTGGGTGATTATGTATTTTATTTTTATTGTACGTAGCTGATAACGGGACGTGACGTGACTCGATCGTTCATTCTTAAAACATGAAGAACGTATTTTATAATAATTCATTTTCAACTTTTCCGAAATATAATTTAGTAACTTTTAATTTTCAAGTTTGTTACATTTTGAGGAAGAGAGATGTAAAAGTATTAACAGTTGAAAATTTAGAAATATTGTAATTTTAATTTTCTATATTGTTTACTTATAAGTTTTTATGAATGTAATTCAGAGCTTCAGAACTTTATAAATTTATAAATTGAGAAATGTAATAATTTAGTGAGTGATTTAGTTTTAATTGAGTGATTTAATCTTCATGTTTTAAGAGTTGAGCGATGCCCGTCGACAGCGATGACGAAACAATTCGGAAAGTGTGGAGTTTCGTTCCGATTCGCGACAGGAGTAACGACTGGACGCCTTGCAAACGTTTCTGGGGTAGGAGCGACCGATGGCTCGTACCACTTTGAAACATTTGTAACGTTGGTCGCAATTAAGGTAATTAATCGAGGGCGATGCGGCTCGTCACGACTCTCTGGACAGTGACGATCCGCGGTGTCTTCGCGTGAAAGAGGGCGTTCCGACTTCTGATGCCCACCCACAAAGATCGATTTAAGGGTCCAGTATCGTGGACCTCTTCCGGGAAAATCGAAAAGCCGACTTCATTTCTTCTGCGATAAAAGCAATTTAACTAATGTATGATTATCAAGCGAAACACCTCGTACTGTCATTCTCAAAATATTC +>OQ027676.1 Uncultured bacterium clone 703 16S ribosomal RNA gene, partial sequence +TGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGCGGGATGAAGGCCTTCGGGTTGTAAACCGCTTTCAGCAGGGACGAGGCCGCAAGGTGACGGTACCTGCAGAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTATCCGGATTCATTGGGCGTAAAGCGCGCGTAGGCGGCTTGTTAGGTCGGAGGTTAAAGACCGAGGCTCAACCTCGGCACGCCTCCGATACCGGCAGGCTTGAGTGTGGTAGAGGAAGGTGGAATTCCCAGTGTAGCGGTGGAATGCGCAGATATTGGGAAGAACACCAGCGGCGAAGGCGGCCTTCTGGGCCATTACTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACAGG +>XM_035742444.2 PREDICTED: Oncorhynchus keta protein phosphatase 2, regulatory subunit B', gamma a (LOC118362247), transcript variant X2, mRNA +CGCTTCATTTTCTCATCTGCTTTTGTGCTAAAATGGAGGCTGGCCCCTTACCTTAAGTGGATTGCCTTCCTGGTCGAGTTTAGATGTTGACATGCAATAAAGCTGGAATCAGGATGGTTGTGGATGCACCTAATTCCAATGGGCCTTTCCAGCCGGTGGCTCTTATGCACTTCAGAGACTGTGCTCCGGCAGAGCAGGAGAAGCTGTTTGTGCAGAAGCTGCGCCAGTGCTGCGTGCTCTTTGACTTCCTGTCGGACCCACTAAGTGACCTGAAATGGAAGGAGGTGAAGCGGGCGGCGCTGAGCGAGATGGTGGAGTACATCACGCACAACCGGAATGTCATCACAGAGCCCATCTACCCAGAGGTGGTGCATGTGTTTGCGGTGAACATGTTCCGAACGTTGCCTCCGTCGTCCAACCCCACAGGAGCAGAGTTCGACCCCGAGGAGGACGAGCCTACACTTGAGGCTGCATGGCCACATCTCCAGCTCGTCTACGAATTTTTCCTTCGGTTTTTAGAATCCCCTGATTTTCAACCGAACATAGCGAAGAAGTACATCGACCAGAAGTTTGTGATGCAGCTTTTAGACCTGTTTGACAGTGAAGACCCACGGGAGAGGGACTTCCTCAAAACAACTCTCCACAGGATATATGGGAAGTTCCTGGGACTACGGGCCTACATCAGAAAACACATCAATAATATATTTTATAGGTTTATCTATGAGACTGAGCACCATAATGGAATTGCAGAATTACTGGAGATACTTGGAAGTATAATCAATGGGTTTGCCTTACCACTAAAAGAGGAGCACAAGATATTCCTTTTAAAGGTCCTGTTGCCTTTGCACAAAGTCAAATCACTTAGTGTCTACCATCCGCAGTTGGCATACTGTGTGGTGCAGTTTCTAGAGAAGGACAGCACTCTCACTGAACCAGTGGTCATGGCCCTTCTGAAATACTGGCCCAAGACTCACTCCCCCAAAGAGGTGATGTTCCTTAACGAGCTGGAGGAGATTCTAGACGTCATCGAGCCATCCGAGTTCGTCAAGGTCATGGAGCCACTGTTCAGGCAGCTGGCCAAGTGTGTGTCCAGCCCACACTTCCAGGTAGCAGAGAGAGCTCTGTACTACTGGAACAACGAGTACATCATGAGTCTGATCAGTGACAACGCAGCCAAGATCCTGCCCATCATGTTCCCGGCGCTCTACCGCAACTCCAAGACCCACTGGAACAAGACCATCCATGGCCTCATCTACAACGCTCTCAAGCTCTTCATGGAGATGAACCAGAAGTTGTTTGATGACTGCACACAGCAGTTCAGAGCAGAGAAAAACAAAGAGAAGGCCAAGTCAAAAGACCGGGAAGAGGCTTGGATAAAGATTGAGAACCTTGCCAAATCCAACCCACAGGTAGTCTTCTAGGGTGGATGTTGAACAGTCCTAGCATAAGTTACGAACGAGAGACCAGAGGAAAGACCGGCCTATGAAGCGGCGTAAGTCTGATCTCCCTCAGGACATCTACACCGCAAAAGCCTTGGAGACCCGTCGCCGAGCCGACGTCATGATCACTACCCGCGATGGGCTCTAGGTCTGCCCCTCTCTCTCTCTAGTTTCCAGTCCCATCTTCTCTCTTTCCTCTAGTGTCCAGTCCCCTCTTCTCTCCACCCTCATCCACACAGCACATTCAGATTACTGGCCCAGTTTCCTCATCGTCGCCAGTACACAACCCCCTGGATTTCTGCTTTCTCAGGTGTTTCTTTTTGGGAGGGGTGGGGCCGCAACTTTCTTTTTTAGTCTTGCCGTCAATTTTTTATTTTTTTTTGCTTAATCGTGCATAACAGTATCGGCTCATCCCTCCAGGCTCTTACTGTACAAATGAAAATGGGGGAAGTTCCGTTCCACTAGCAACATGACAAGCTCCTATGTTCCCCCATTGAGCGCAGTTGGTAGAGAGCAGAAACAGAATGGGGGAGGCTCCTCTCGTTTCCTCTCATGTCAGTTTCTGTTAAGGGGAAACAAAACTAAGAACAGCCATTGTTGGATGGTGGGGGGTGATTGGATCGACTTTTCTGAAGTTTTGTTTCTTCTCTTTTTTTGTAATCCCAGGGACATTTGCCAGTGCCAAGACTGTTTGTTCTTTCTGTGTCTGTGTTTTTCTGTGTGAGAGAAACCAGGATGACTGACTATCTAGGTAGACAGCCTGTGTCGTTTGCCTTCGTTTTTTTTTTTGGAGCCTCAGATGATTCAAATGTTGTTTTTTTAATAAGCTGAAGAGCAACAGGACTTTCTGAAGTGACTGATCCATCTGTTCTGATGAAGTCACTTTATGACTAGGATGGGTGGCAGGACGGGAGGTTCTCTGTGGACACTGGACTCTTTACACCCTACACTTTGTGCCATGCACATTCTTTCGTTGGATTGATTTCCTTTCTGTTGAAGTCCATTGGCAATATGTGAGCCAGATCACAATGAAATATTGACAGTTCAAACAATGGTACTTATTTCATACGCAGAAACACATTGGGTGGTTGTTAGTCTGCACCCACTTTGTCATATTCAAAAGCCCTTCTTAGACATTTCAGTCTCCTTAATTCATACATAATGCATGTCCCCAGTTCTTACTGCTATTGGGAAGCTTCATTTAAATCTCAATGGCCAGCTAGGAAGTGTTTGGTTTGACACAGAGTCCATCAAGACACCTGTAGCCACACACACTGTAATGCTACGTTATGCAGAACATTCCACAAACGTTCCAACTGAAATTACATTATGACACTTTACCTGGGGGTGTCAGTTTGAGGAAGGCGAGGTGCAGAATTACTCATCTCGATCACATAATACGTTATGTGGGATGTAGGGTGATGTTGTAGAACTGTGATTCTGCACAGCCTGACTGTAATGAAGTCCTTCTCAAAAGCACACCTTGTCCTCAGATGCAGGCTTTTCAGAATCCCCGGCGCTGCTTGCTAGTCAAGCATGTTCCAGAAGTACACATGGTATCACATGCCCTGAAGCCCCCCCACACAGCGGTCTCACGTTTCCCCATGTTGGTTTTTACCAGTGCCCTCCTACCCAGAGGTGCTTTGCTGTGGAGCTGAAAGGACTGTTACGTGTCTTGTTGTGAAGTACTGAACAAATGGGGATCAGAGAGCCGTTTATGGAATGGCGGAATGCTACAGGATGAGAACATCAACACTGTTTGGATGACAACCGTTTCATGTGACAGTTGAATGAGCATTGGAAGAGGTGATTTCAAACCTGAATACCTCTTTGGATGATATCTGTAACCGTTGAGAATACGTCTATTGAAAAAGCACTTCCTGAAACTTGAAAGATGTGACATGTTTGTGTATCTTCATTGAAGCGCTCTTCAGTGTCCCGTTGAGTCTATATGTACAGTCTGCTCTGCTTTGTCAAGTTCAGGAAGCTGTCCATTTCCTGGACTGGACAAGGAAACGACCCATAAGTAAGCATTTCAGTGTTAGTCCACGCCTGTTGTTTACGAAGCATGTGACGAATACAATTTTATTTGATTGGGGCCCCATTGTAAATGTTAGTCTTTCTCTGGTACCATTGTTTGAACTTGCAAATCTAGTACGTGTATCCAATCTGTATTGTCTTTTCTGTTTCTAGTCTGGCAACTGGTAGCCTGGATGCTCATTTTAGCATTGTAGCTGCCAATGGAAAGGGCCAATGTTGAAAGACTGGCATCCAGGCTTGGCTTGGTAACTACATTATTAATACTTAAATGCAAAAAGGTGTTCATTTAACTACCATGTATCTTTTGTCCTGGACGAATGGCACTCGCCGAAACAATTTGACCCCCCCCAAAAAAAAAAAAAAAAATCTTCACTTTTATATAACAGTATCATTTGGAAAGATGTTTGATCAGTTTGCTTTTTATTTGTGTTCAAACTTTTTTTTTTTTTTAGACACATCAATTACTCGTATGACAAGTTAGACAACAAATGTTTTGGATTGTTTTCCAGAATTGTTTGCTTGGCCTCTGCAGGTTTTTAGTTAGAACATGTACTTTCCAGAATATAATAACTTGACAAGTGTCCTTTTGTCTGTGATCTGTACTATGTGGCTTCATTTAATATTGTACATATGATTTACTTTGTTTTATGTAGTGTTATATCTAGATTAATTTTGTATAAAATTGTCCTCTGTACAGAATAAAACATCAATAGCAATGACAAAGAAGTCAATGTGGCACATAACTTCTCTCTCCCCTGTAACTTTCTGCATTATTAGAAATAACACATCTAATATTTTCTTTAATTCCCAATTATCTGTGACCAGATTTCAGTCCGTAGCCTTTTGTGTGCTTTTATCACAATCTCAACTGGTGTTCATCTGTAATAGAATGAATAAAGAGAATATTTGAATTTTATATTTTCAACCATA +>XM_023493610.1 PREDICTED: Eurytemora affinis uncharacterized LOC111718108 (LOC111718108), mRNA +GGCTCGTAAACTAGGGTTTAAAAAAGATTACTACCTGGAATCAGAGAACTGGTTTGGAAACACAACAAACATGACTTCAGATCAGATCCTTCAGGAGATAGTTCTGAAGAGGAATGAAGTGTTTGCTGACAACGATGCGATCAGAATCAAGACAGGGCAAGAGTATTGGAAGTTTTATATAGAGAAAGGGTATTACAGGTCACCAGGACCTGATTTTAGGTACTACTACTACGAGAGGCCGGATAGTAACATCAGTTCTCCTCTGTTTACGGAGAAGAATAAAAACTCTGGTGTCTGTTATAAGTTCCAGGTTCCAGAGTTTCTCTGGAAGAAAGGAGTTTCACAAATTTATATAAATACAAAGGTTAACACATTGATCGGATTCAGCCACTATGGCCAGAGGAGTGGAATTGACAATCAGGACAGGGTGTTCCTAAATACAGATGAGAAGATATATCTAATATTAACCCAACAGCACTTTGAGAGGATCCGGGTTCATGGAAAGCTCTGCAATTCAGAACTAAATACCGGGTTTGACAGTTGCAATGAGCAATGGCTTCATGATTACTCTGTGGCAGAGTATGGATGTATAAGTCCATGGAACAATGTTCCCTCCAACTACTCTGTGTGTAAGAATAAAACGTGTACTAGCGGAGTAAATGATATTGTTTTGAACTGGGTTAATGGATTCAATGATAGTATGTGTGGATCCCCGTGTGAGAGCTCGGAGGTGATGTTTGCCTCGCAGTTCTCCTACAAGGTGGAGGGGATGGGGTATGGATACCTAGCCATCACATTCAAACAATCTGTCAAGGTTACGAGGTCTTCTATACCCTACGGGTTTCTAGAGATGCTGGCTGAAGTAGGAGGATATGTTGGACTATTCCTAGGAGTCTCTATTCAACAACTTGTAGCCATGCCAGAGACCTTTATTGATAAAATATACAAAATACAGTTTTAAATATATCACCATCATCATACACTACACTAGTTAAACAATGATCAGTTTTTGGTAAGAAATATTTGT +>XM_035042612.1 PREDICTED: Populus alba uncharacterized LOC118036784 (LOC118036784), transcript variant X6, mRNA +AATCAGCTCGCCCATGATTCCTCACAACCACATCTCACCAACAAACCCTCAATATGCATTCAGCAGTCCAGTTCAGATGCTATTCATCAGAAACTATGAATATTTCTGCTGGTGCTAACAACTGTTCTGGTCTTGACATTATTATGGGAAGGGGAAGAAAAGAGGAGTACAAAATATTGAGGATGTTTACATCAAGCAGCTTTATGGGAGCCGAATCAAGTTCATATATCAGAGATGGCTTGAAGCTGCATTGATGAGAGTATTGACTTTGCAAATCGCTATTTAGAATGACATGATACATGCAGCACAGTAAAGACAACGTTTGGTTTGGACGAGTGGGTGATTTTAGAAAAAGAAAACAGGATGCTCGGACAGACAAAACATGCATGCTTTTCTGTCAGATTATATGCAAATCTGAACGACACCCTGTAAGATTAAAAAAAGAAAAAGCAAAGAGAAACTCGATCGAGAGTACTGACGAGCTGCCAGCAAGAGTACTAGTTTGAAAGGTCATGGATTGAATTTTTATTTTATTTTATCTACTGACTTGGAAAATTATGCCCAAGTGTCCAAGTCCTTTTGACCAAAAGACTCGCCTTTGAGTAAGTGGGCCATTGTCAAATTCGGACACCAAAAGGGAAGGGCTGAACTGTTAGATATGATGCCTCAGCTTCATAGAAGTAAGTTGATTCCCAAGTATTAATTATGCCGACTAGGAGAAAACCAAAGGAGTACTGCATGCATGTGAACTCTGGAAGAAACACATCTACACACGATAAAACCGCCGACGGCTATGGAGTGAACCCATTTCCAATCGGGCAGTGCCTATCACCTCTACCTGGAGAGTCTCCTACTGCCCATACTAAGCCGAAAAGAAAAGCTCCTAAAACTGCCAAGGATCTTGAAAAGAAAAGAGAGTACGACAGGGCATATCGGCGACGATGCAGGGAAAATAAAAGGAAAACTGAGCAAGAATTGTTTGTGCTCACAGAAGAGAATAAGAAATTAAATAGAGAGAATGACTACTTCAAAAGGGAAGAAGTTCAGCTGCAAGAGATGGTGCAATCTCAGAAAGACGAAATGACACTGCTACAGAATAAACTTCGCCAACAGAAGGCCCAGCTTCAGGGGCAAAATGTAGTCGTGGATGTGCTTTCGAAGAAAGTAGCTAGTATCGAAGATAATATGGATCCTCAGCGCGAAAATAAACGGCTGAAATTAGAAATGGATTTGCTGATTAAGAAGATTAACAACGATGACTATTTAAACCTCATTCAACCTCGAGAAAAAAACATGAAACTAGAAAAAGAGAAGAATGATCTCCAGTTGATTATTGATGCCTTATGTGCAAAGATAAACAAGGATAATGACCTCGAACCAAAGCAAGCATCCTAATTAATGTACTGAGCTACAAAGTAAATGGACAGAGGAGGTGTTCTGACAGGAGAATTAAGAGGCTACACGAATTTAAATACCCAAGGATGTGACCTAATGTGTTCTTAGAATTGCATGACCTATTATATTGACCTAATCATCATGTATGAAGGGTGTTCTTAGATTTTAGCAGCAAAAGTATCAAGAAGTAAATAAATAAATTGGTACTTGGAGGTTTTGATTTGCCTTTTAAATTGGTAATCTCTCTTGTACTTAGTGTATGTAAATCTCACTGGTTAAGGCCATCTTATAAGCCTACTAATATCGCTCATGAGCACCGGTCTCCCCCATTTGATGGAGGAATAAAATTGACAGTGGTGGAACCAGCAAGATGAATGATCCGTATAGGGATATTTCCTTGGGGTATTTCATGGCAGGATTTGCAGCTGGATTGGCTATGGAATTTGGGAATCAGATGTTTGCATCTTGAAGTAGCTTCCAAGTGGTTAAACATGTTTTGGCAGATGATCAAGGACAGGGCAGGCCCTTATGCTATTTTTCCAAGATGGGTATAAATCTTCCACGCAGCGACTGGAGGGCAGAAACCTCTCCAGTGTAGGGGGGGTCTAGCTCATGTTCTTATAG +>XM_011946569.1 PREDICTED: Colobus angolensis palliatus RIB43A domain with coiled-coils 1 (RIBC1), transcript variant X2, mRNA +GGAGTTGGTGCTGGGCGGAGTCAGAGCAGCTCTTGAGGGTCAAGGAGGCGGGGGAGACCTGAGTTCACGCTTGCTGAGACAGAAGTCACAGCAGGATTATGCCCCTCAGGGCAAGAGGAAGGTGGGAGCTCGGCTGTGGCTTTAGCCTGGCCAACCTTCAAGGCTAGGACAAGGACAGGGGCGGGAATTGGAAAGACCCGGGGGGAGCGGAGGGCTGGACGAGAATGAGGGGCCAACGGGAGGATTCAGTGTTAGAGTTCAGAAACTGCCGCTGTAACCCAAGAACAAGGTTGCATGCAGAGCCAACCTAAGAGCTTCAAAATCGGGATTCCTTACTGAGAAAGATGTATAACATAAACCAGTCAACAGATACCAAGGAAGCAGCAGCCATCGAGGCCAGAAGAAATCGAGAAAAAGAGCGACAAAACCGATTCTTCAATGTGCGGAACCGAGTCATGGGGGTGGATGTCCAGGCCCTGAACAACCAGGTAGGAGACCGAAAGCATCAGGAAGCAGCAGAAAGAAGCAAGGAGGCAGCTTATGGTACCAGCCAGGTGCAGTATGATGTGGTAGTCCAGATGTTAGAGAAGGAAGAGGCAGATCGAACACGTCGGCTGGCCAAGAAAGTCCAGGAGTTTCGGGAGCAGAAGCAGCAGCTCAAGAACGGGCGTGAATTTAGTCTTTGGGATCCAGACCAAGTCTGGAAGGGGCTTCCAACCTATCTTAGTTACAGTAATACCTATCCTGGTCCAGCCAGCCTGCAGTACTTCTCTGGGGAAGACCTAGACAGGGCCACACGGCTGAGAATGCAGCAGAGGCAGTTCAGGTACAACTTGGAAAGGCAGCAGCAGGAGCAACAGCAAGCCAAGGTTGATGAGAATTGTGCAGATGCGCTCAGTAACCAGCTGCGCCTCGCCATGGACGCGCAGGCCACCCATCTGGCCAGGCTGGAGGAGTCTTGTCGTGCGGCCATGATGTGTGCCATGGCCAATGCCAACAAAGCGCAGGCAGCTGTGCAGGCTGGGCGTCAGCGCTGTGAGCGTCAGCGTGAAAAGAAGGCCAACCTTGCAGAGATCCGGCACCAGAGCACAAGTGACCTACTGACTGAAAACCCCCAGGTCGCCCAACACCGTACAGCTCCCCACCGGGTCCTGCCCTATTGCTGGAAGGGCATGACTCCAGAGCAGCGAGCTGCCATCAGGAAAGAGCAGGAAGTACAACGCTCTAAGAAGGAAGCTCACCGTCAGGCTGAGAAAACACTGGATACTGAATGGAAAAGCCAGACCATGAGTTCAGCCCAGGCATTGCTGGAGCTAGAAGAGCAGGAGAGGGAATTGTGTGCTGTATTTCAAAGGGGTCTAGGCTCTTTCAACCAGCAGCTGGCTAATGAGCAAAAAGCCCAGCAGGATTACCTGAATTCAGTAATCTATACCAATCAACCTACAGCCCAGTATCACCGGCAGTTTAACACCAGCAGCCGCTAAGTTCAGGATGTTTATCTCTTCCTTCTCCTCCATCAAGCTCACAGGCAGTTAGGAGTCAAAGAGAAAAATGCTGCATACTCCCACCTTCTAACCTAGGTAATAAAGTTCTTCACTCAAAATCAA +>HM954641.1 Uncultured Sphingobacteriales bacterium clone GG5QJA201E0Q5R 16S ribosomal RNA gene, partial sequence +TAAAGGGATACTTCTTCGGACAATATACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCGGGTTAAGTCCCATAACGAGCGCAACCCCTATCATTAGTGCCATCAGGTCAAGCTGGGGACTCTAATGAAACTGCCTACGCAAGTAGTGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTACGTCCAGGGCTACACACGTGCTACAATGGCCGGTACAAAGGGCAGCTACCTGGTGACAGGATGCTAATCTCAAAAGCCGGTCTCAGTTCGGATCGGAGTCTGCAACCCGACTCCGTGAAGCTGGAATCGCTAGTAATCGCGCATCAGCCATGGCGCGGTGAATACGTTCCCGGGCCTT +>JN110382.1 Trichosporon asahii strain f2fp12 26S ribosomal RNA gene, partial sequence +ACGGCGAGTGAAGCGGGAAGAGCTCAAATTTGAAATCTGGCAGTCTTCGATTGTCCGAGTTGTAATCTATAGAGGCGTTTTCCGTGCCGGACCGTGTCCAAGTCTCCTGGAAAGGAGTATCAAAGAGGGTGATAATCCCGTACTTAACACGACCACCGGTGCTCTGTGATACGTCTTCTACGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGGTGGTGAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGTTGAAAGGGAAACGATTGAAGTCAGTCGTGTTCTTTGGATTCAGCCAGTTCTGCTGGTCTACTTCCTTGGAACGGGTCAACATCAGTTTTGTCCGGTGGATAAAGGTAGTAGGAATGTGACTTCTCCGGAAGTGTTATAGCCTATTATCACATACACTGGGTGAGACTGAGGACTGCAGCTCGCCTTTATGGCCGGCCTTCGGGCA +>XM_022629730.1 Penicillium arizonense hypothetical protein (PENARI_c005G05025), partial mRNA +ATGGCCCCCGTGGAAACACAGCAGTATGATTACATTGTCCTTGGCGGTGGTAGCGGTGGCAGTGGAAGCGCTCGCCGTGCAGCCGGTTGGTATGGTAAAAAGACCTTGATTGTGGAAAGTGGACGGTCAGGAGGTACCTGTGTCAACGTTGGTTGTGTGCCTAAGAAAATGACCTGGAACTTCGCAACCATTAACGAGATGCTGCATGTTGGCAAGAGCTATGGCTATGACATTCCTGATAACATCGCTATGGACTACACCCACTTCAAGAACACCCGTGACGCCGTTATTAAGCGGCTCAATGGCGCATACGAGCGCAACTGGAACCGGGAAGGAATTGATCTCGTGCAGGGTCGTGCAGGCTTCGTTGAGCCTCAAACCATTGAGGTCAAGCTAGCCGACGGCTCCGGTTCTGCCCGCTACACTGCGCCGCACATCCTCTTGGCCACCGGCGGCCGGCCCAACATCCCCTCCGTGCCCGGTGCCGAGCACGGTATCACTAGCGACGGATTCTTTGAGATGGAGGATCTTCCCCCGAAGGTTGCAGTCGTGGGTGCTGGCTACATTGCTGTCGAGCTTGCTGGCGTCATGAACGCTGTCAATGTCGAGACCCACATGTTCATTCGCGGGGAAACCTTCCTCCGCAAGTTTGACCCTATGATCCAGAAGACCATGACCGATCGGTATGAGGCTTCCGGTGTCAAGCTTCACCGTAACCACTCCGGATTCAAGGAAGTGCAACTCATCCGTGACGGCAAAGGCAAGGATAAATTGCTCAAGCTCATTGGCCATGACGGCTCTGAGCTTGAGGTGAACGAGCTGCTCTGGGCCGTGGGTCGTGCCCCCGAGGTCGAGGACCTGAACCTCAATATCCCCGGAGTCAAGCTGAATGCCGGCGGTCACGTTGTGGTTGACGAGTACCAGAACACCTCGGTCGAAGGTGTCTATGCTCTTGGTGACGTGACAGGTCAAGCCGAGCTGACCCCAGTCGCCATCGCCGCCGGTCGTCAACTCGGCAGCCGTCTGTTCGGTCCCCCGGAGCTCAAGTCATCCAAGCTTTCATACGAGAACATCCCTACGGTCGTCTTCTCCCACCCCGAAGTCGGCTGTGTTGGTCTCACGGAGCCCGAGGCCCGCGAGCGCTACGGTGATGACAAGATCAAGATCTACCACACCAAGTTCACGGCCATGTTCTACGACGTCATGCCCGCCGAGGAGAAGGCTAAGAATCCGACTGAGATGAAGATAATCTGCGCCGGTCCCCAGGAGAAGGTTGTCGGTCTCCACATCTTGGGCCTCGGTGTCGGTGAGATGCTTCAGGGCTTCGGTGTCGCTGTCAAGATGGGCGCCACAAAGCAGGACTTTGATAGCTGTGTTGCTATCCACCCTACTAGCGCCGAGGAGCTGGTGACGATGCGGTGA +>AF339527.1 Harposporium helicoides strain Arsef 5354 large subunit ribosomal RNA gene, partial sequence +AAATTTGAAATCTGGCCCCCCCCGGGGGGCCCGAGTTGTAATTTGCAGAGGATGCTTCTGGCGCGGCGCCTTCCGAGTTCCCTGGAAAGGGACGCCACAGAGGGTGAGAGCCCCGTCTGGTCGGACGCCAAGCCTGTGTGAAGCCCCTTCGACGAGTCGAGTAGTTTGGGAATGCTGCTCAAAACGGGAGGTATATGTCTTCTAAAGCTAAATACCGGCCAGAGACCGATAGCGCACAAGTAGAGTGATCGAAAGATGAAAAGCACTTTGAAAAGAGGGTTAAACAGTACGTGAAATTGTTGAAAGGGAAGCGCTTGTGACCAGACTCGGACCCGGCGAATCACCCAGCGTTCTCGCTGGTGCACTTCGCCGGGCCCGGGCCAGCATCAGTTCGCCGCGGGGGACAAAGGCGGCGGGAACGTGGCTCCCCCGGGAGTGTTATAGCCCGCCGCGCAATGCCCTGGGGCGGACTGAGGTTCGCGCTCCGCAAGGATGCTGGCGTAATGGTCACCAGCGACCCGTCTTGAAACACGGACCAAGGAGTCGTCTTCGTATGCGAGTGTTCGGGTGTGAAACCCTTGCGCGTAATGAAAGTGAACGCAGGTGAGAGCTTCGGCGCATCATCGACCGATCCTGATGTTCTCGGATGGATTTGAGTAAGAGCATACGGGGCCGGACCCGAAAGAAGGTGAACTATGCCTGTGTAGGGTGAAGCCAGAGGAAACTCTGGTGGAGGCTCGCAGCGGTTCTGACGTGCAAATCGATCGTCA +>XM_024173345.1 PREDICTED: Morus notabilis allantoinase (LOC21397670), transcript variant X1, mRNA +GTTCATGAACCTCTCCACGACACGAGCGAGATTCTTCTCTCTCTTTCTCTCTCTTATTGGTCAGTGTAACGCATAATATTAGAAGTAGATGAAGAAGAGAGAGAATATGGAGAATAGGCTTCAATGGAGGCTCTTTCCCCTGCTTGCGATACTCGCTTCATATTTGGTCTTCTTCTACGTCCAAAACCATTCCGAGCTCTCACATAATAGATGTAGTCTGCTGCCTCACCAACACTATTGGATAGCTAGCAAGCGGATTGTGATACCACAAGGGATTATATCTGGAGCAGTTGAGGTGAAGAATGGGAAGATTGTATCGATTGTCAAAGAAGAAGAAAGGTTGTGGAGTTCCAAGTTGGGGCAAGTAATTGACTATGGAGATGCGGTTGTCATGCCTGGCTTGATTGACGTGCATGCACATCTTGATGATCCCGGAAGAACTGAATGGGAAGGATTTCCTTCAGGAACTAAAGCGGCTGCTGCTGGAGGTATAACGACATTGGTTGACATGCCTCTGAATAGTTTCCCCTCAACTGTGTCTAGGGACACATTGAAACTTAAGATTAAGTCGGCAGAGAACAGAATTCATGTCGATGTTGGTTTTTGGGGAGGTCTTGTTCCTGAAAATGCGTTCAACCATTCCGCTCTTGAAGACCTCTTAAATGCTGGTGCTCTTGGTCTAAAGTCGTTTATGTGTCCTTCAGGGATCGATGATTTTCCCATGACAAACATTAGTCATATTAAGGAGGGCCTGTCAATACTTGCAAAATTTAGAAGACCTTTACTTGTGCATTCAGAGATTCAAAAAGATCTTGAAAGCCCTTTGGGACTCGAAGAAGATGGTGCCAATGACCCTCGTTCTTATTCAACATATCTCAAGACTAGGCCGCCTTCAATGTTGCTGAAACTTTCCAACTCTGTTTTTTTAACTTTTTGGTTCAAACACAGGGAGGAAGCAGCTATTAGGGAGCTCTTGACAGTGTCAAAAGACACGAGGATTGGTGGCCCTTTAGTTGGAGCTCATCTTCACATTGTTCACTTGTCTGATTCAAGTTCTTCCTTGAATCTTATCAAGGAAGCAAAACGTGGCGGTGACAGTTTGACTGTTGAGACTTGCCCACACTACTTGGCTTTCTCAGCGGAAGAAATTAAGGACGGAGACACTCGTTTTAAGTGTGCGCCACCCATTCGCGACGCAGTCAATAGAGAAAAACTGTGGGAGGCAGTAATGGAAGGACATATCGACATGTTAAGTTCCGATCATTCGCCAACAGAGCCAAAACTCAAGCTTCTTGAGGAGGGTAACTTCTTAAAGGCATGGGGAGGAATATCATCTTTGCAGTTTGTGCTTCCTGTGACATGGTCATATGGGAGAAAATATGGTGTAACATTGGAACAATTAGCTTTATGGTGGAGTGAGAGGCCCGCAAAGCTTGCTGGACAAGAATTAAAGGGGTCCATTGCAGTTGGTAATTATGCAGATATAGTTGTATGGGAACCTGAAGTAGAGTTCAACCTCAATGATGAATATCCTGTATACCTTAAACATCCTGGTATTTCTGCCTACATGGGAAGCAAGCTATATGGAAGAGTTTCGGCAACCTTTGTGAGGGGAAACCTTGTCTACAAAGAGAAGAACCATGCCACTGCTGCTTGTGGTGTCCCAATCCTCGCAATATAGAAGTTGCTGCACCATTGAACTCCTTTTGTTTTCCTCTTCTTTTTTTTTTTTGGTTTATGTTATGTAATTAAACATCGAGTTTGTTGTTTCTTTCTTAACATCATGTGAATATTATGTACATCTGTATAGTACACCACTTTTAAGTACTTTTTCTGTTTTTTCTTTTTTTTCAATACAATACGGAATCAAACCCGCACTCTCAATTGAAGCTC +>XM_016927369.2 PREDICTED: Pan troglodytes S100 calcium binding protein A8 (S100A8), transcript variant X2, mRNA +GAGAAACCAGAGACTGTAGCAACACTGGCAGGGAGAAGCTGTCTCTGATGGCCTGAAGCTGTGGGCAGCTGGCCAAGCCTAACCGCTATAAAAAGGAGCTGCCTCTCAGCCCTGCATGTCTCTTGTCAGCTGTCTTTCAGAAGACCTGGTTCTGTTTTTCAGGTGGGGCAAGTCCGTGGGCATCATGTTGACCGAGCTGGAGAAAGCCTTGAACTCTATCATCGATGTCTACCACAAGTACTCCCTGATAAAGGGGAATTTCCATGCCGTCTACAGGGATGACCTGAAGAAATTGCTAGAGACTGAGTGTCCTCAGTATATCAGGAAAAAGGGTGCAGACGTCTGGTTCAAAGAGTTGGATATCAACACTGATGGTGCAGTTAACTTCCAGGAGTTTCTCATTCTGGTGATAAAGATGGGCGTGGCAGCCCACAAAAAAAGCCACGAAGAAAGCCACAAAGAGTAGCTGAGTTACTGGGCCCAGAGGCTGGGCCCCTGGACATGTACCTGCAGAATAATAAAGTCATCAATACCTCA +>XM_050595833.1 PREDICTED: Cataglyphis hispanica C1GALT1-specific chaperone 1-like (LOC126851659), transcript variant X2, mRNA +TCGCGTTGCGAGAGTGGACAAGCGGCAGCATGCATATAGCATCTCCGGATGTCCACTCAACGCAGATAGTGCGGCCACCGTGAGGCTTTAGTGGGTAAAAATCTCACATAATCCTCGACTCTCCCCGAAGTCGAGGATATCTTTGGAAGATTTCCTCACGTAAAAAAAAAAAAGAATGCATTTATATACCAATCATACACATATATGATTGGTGGTGGAAGGGGAAGAGGGTTATGTGAGTTAGGTTAAGCAAACAGATGACTTGTTTATGTCACCTGTTGAATATTGTGATCACTAGCAAACACTACCGATTGATCGTCGCAGATGTATATAGGTGTGTTTATAATGTAAAAATGTCAGATATAGAATTTTACACAATTATGTAAACGCTTCAAAATATAATCTTCATGTTAATTCGTCGAATAATATTATAAATGATTTTGCGATGATTTCATCGCATATTTTTATCGATAATACAAGCGCAAAATGCATACTACAGACTATATACATCAACTTTACAAATAAGAGGATACATATAAATTTAAAGTATGCATAAGAAAAGATCTTAATGAGATAATTGAGTTTAACGAAGGTCAAATATAATGATAGTCAAAGAAACTTGTGATTGGCATTACTTGACTACTTGGCATTAGTGTTGAGAGAACTGGATTGTTATTATGTATTTATCGAATTCAATTTTTACTGTGATGACAAGATGCGATTTCGATTTTTAAAACAGAGATCTATATTTCTGATTGGTTTGACAATTGGCTTTGTTTTTCCATTATTGTTATCTTTATTAAGGAATATATTTGTGATTGATTCGATGTGTAAACAAGATCAACCATTGTGGCAACCTGAATATTATCTGAGTAAGGAACCTCACCACGAAGAAATTATTTTACAGCATTGGGAAAAAGTGAAGAGATCTGGAAATTTTAATATCGTTACATACAACACTTGGTTGGCAGCACAAAACTTGAAACCATACAAACTTGATTTGGATAGATATCTATATCTCCAAAAAGGATACAATACAAGAAAAATTGAAAGCGAATGGAACTGGTTAAAAGAACGAGTATCTGTCACATGTATAGTTTTTGTAGAAAAACTCAAATTGGGGAAATCAATCCAGAATACATGGGGTAAACGCTGTAACAATATTTATTTCTTTGGACACCGTTTGAAAGACGATGAATTGCCTATTATAAATATAAATACAAAGATTGTGTCATCTTGGCAATTGCTGTGTGAAGCTATGAACTACATTTGGAAAAAAGAAGCAGACAAATTGGAGTGGATTATTTTCGTAAAAGATAATACTATAGTCATACCGGAAAATCTGCGCTATATGATTGCTCCGTTAGACCACAGAGATGATTACTATCTGGGTCATCCAATAGTTCTGTGGGGTCAGATTTATAACGTTGCTCAATCTGGATATGTTCTTAGTAAAGGAGCACTTGTTAAAGTATTACAAATGTTCAATACTACAGAAAAATGCATTGAAGGTGGAAAATATTGGAAGAAGGAAGATTATTATCTTGGAAAACACTTATCGTTTTTGGGTATACGTCCATCTGATACCAGAGATCAGTATTTGAGAGGTACTTTTCATGGTCATTCTTTACAAAATCTTCTATGGGGTATTATCAGACCAGATAGCTACTTTACACATGCTGTGTATCCGACGAAAGGAGAATGCTGTTCACCGATATCTGTGACTTTCAGTGTCAGTGAACCCGACAAAATGCATATGTTAAATTATTTGCTATATCACTTGCATGTATTTAACAGTGAAAGCAAATTTGGCAATATATCCATCAAAATTCAAGTACCTGAAGACAATGTATGGAAGATTGCACTGCAGGAGGAATTCAACATCACACATTTGAACGATATATCGAGTGACGCTTATTACGAAATATGGCACTCGAAATATTCGGAACCTGGACAGCTAAGAATTGCTAAAAATTATCGAATGACGTCGGATGTACTAAACTGTTTATTGACGAACTACAAAACAGGAAACACGTCTGCGTATAATTGTAGAAGTAAAACAGTCGTCGACAGTACAAAAACCTAAGCCATTAAAACAGCTATTAAAACATTATTTAACAGCTTTATATTATTATTATCAAGACAGAAGATTTACAAAAAACCAATAGACGGTGAATATCTCCAGTCTTGTAATATGCGATTTTCTATACATAAAAATCACGTTATAAACTTTAACAGATAAGTACATTAATAAAGTTAATATTATTTGACCTAA +>XM_030571406.1 PREDICTED: Gopherus evgoodei complement factor H-related protein 2-like (LOC115655701), mRNA +ATGACGCAGCTTGGATATACTGCCATTCTGATATTATGGGCGTGCTCCACTGCATTAGCTATTTCATGTGGTAACATAGAAAATGGGAGGGTAAAGCCAAGTTTCTTCTTCCAGAGAAGAAAAAGAACATTTGAATGTAATGCCGGGTATATAGCAGAAAATGACAACAACAGAATTGAGTGTACTTCTTCAGGATGGGCTCCTGTACCCAGATGCATTCCAATACAATGTGGAAGGATAGAAAATGGGAAAATAGTGGACAAAGTTGAAGAAAAAACCACCTTTCGATGTGATCATGGATATAAATCTGAAAATGGAATTAATGAAACTACCTGTACCGCTGAAGGCTGGTCTCCAGTACCTATATGTATTGTTCAAGAGTGTTCGCATCCACCTGACATCGATTTGGCAGAAATTGTCAGTGGGGAGAAAGCAGAATATCAGGAGGGTGATGTTGTTCAGTACAGGTGCTACCCAGGATATACTTTGGCAGGATCTGAAAGGATAACATGCAATGGAGAAAAATGGACACCTCCACCAAAGTGCTTCGCTCCATGTATTATCACAAGGCAGCAATTAGAAACAAAAAAATTGCTTCTGTCTAATGGCCGAAGACGTACAGTATTGATTCAAAGTGACCAAACAATGGAATTTCTTTGTGGTGAACATTCTGACCTTAAAATCCCCTACTTCATCAAGTGTGTAGATGGGCACATGGATTTACCAACTTGTGTATCAGGAACTGGGGAAAAGTGTGGCCGGCCACCTACTATTGAGAACGGAGACATAACTACTTTATCCCTAAAAGAGTATGCATTTGGATCTTCGGTAGAATACAGATGCCAGCATTATTACATAATAGAAGGAGACCGGAAATCATACTGTTACAATGGAATCTGGACAAAAGTACCAGTTTGTTTGGAGCCATGTGTTATCACGCAAGAAGATATGAGATCACGCAACATAGATCTAAAGGGGGAGTCAGCTCAAAAACGCTATGTGTCACATGGAGATTTTGTAGAGTTTAAGTGTAGATCCAGTTGGTTTCAAAACTCTTCAAATAATTATAGAGTGCAGTGCAATGCGGGCCAAATACCTTATCCCCAATGCACTTAG +>XM_045878377.1 PREDICTED: Mirounga angustirostris ret proto-oncogene (RET), transcript variant X2, mRNA +CCAGACCCAGGCGCGCAGCAGCGGAGGGCAGCTGGAGTCCGCGCCCCGACGCTCTGCGCCCCCCGTGTCTCCCGCGTCCGCCGCGCCCCGGGCGGGCATGGGGCGGCCAGGCTGAGCGCCGCACCCCGCCGCCGACACCCCGGGCCCCAGCCAGCAGCCCTCTTGCCGCGGCCCCGGCGCGCACGGGCCATGGCGAAGGCGACGGCGACGGCCGGCGCCGCGGGGCTGCGGCTGCTGCTGCTGCTGCCGCTGCTCAGCGAAGCTCCGCTAGGACTCTACTTCTCTAGGGATGCTTACTGGGAGAAACTGTATGTGGACCAGCCAGCTGGCATGCCCCTGCTCTATGTCCATGCCCTGCGGGACGTCCCCGAGGAGGTGCCCAGCTTCCGCCTGGGTCAGCATCTCTACGGCATCGCCTACCGTGCGAGGCTGCATGAGAACGACTGGATCCGCATCGAGGAGGACACAGGCCTTCTCTACCTTAACCGGAGCCTAGATCGCAGCGCCTGGGAGAAGCTCAGCATCCAAAATGGCGGCTTCCCTGTGCTCACCATCTACCTCCAGGTCTTCCTGTTGTCTACGTCCCTGCGTGAGGGCGAGTGCCAGTGGCCAGGCTGTGCCCGGGTGTACTTCTCCTTCATCAACACTTCCTTCCCGGCTTGTGGTTCCCTCAAACCCCGGGAGCTCTGCTTTCCCGAAACAAGCGTCTCCTTCCGCATCAGAGAGAACAGGCCTCCTGGCACCTTCCACCAATTCCGGCTGCTGCCTGTGCAGTTCCTGTGCCCCAACATCAGTGTGTCCTACAGGCTCCTAGAAGGTGAGAATCTGCCCTTCCGTTGCGCCCCGGACAGCCTGGAGGTGAGCACACGCTGGGCCCTGGACCGCGAGCTGCGGGAGAAGTATGAGCTGGTGGCCGCGTGCACGGTGCGCGTCGGCGCGCGCAAAGAGGAGGTGGTGATGGTGCCCTTCCCCGTGACCGTGTATGATGAGGACGACTCGGCGCCCACCTTCCTCGGGGGCTTCGACACCGCCAGCGCTGTGGTGGAGTTCAAGAGGAAGGAGGGCACTGTGGTGGCCACGATACGTGTCTTCGATGCAGATGTGGTGCCAGCATCTGGGGAGCTGCTGAGGCGATACACAAGCACACTACTCCCTGGGGATGCCTGGGCCCTCCAGACTTTCCGTGTCGAGCACTCACCCAACGAGACCTTGACCCAGGCCAACGGCAGCTTTGTGCGGGCAACTGTGCATGACTACAGGCTGGTTCTCAACCGGAGCCTCCCCATCTCGGAGTGCCGCTCGCTGCAGCTGGCCGTGCTGGTCAATGACTCGGACTTCCAGGGCCCGGGGGAGGGCGTCCTCCGCCTCCACTTCAACGTGAGCGTGCTGCCCGTCAGCCTGCACTTACCCAGCGCCTACTCCTTCACTGTGAGCAGGCGAGCCCGCCGCTTTGCCCAGATTGGGAAAGTCTGTGTGGACAACTGCCAGGAGTTCAGCGGCATCCACGTGCAGTACAAGCTGCAGCTGTCCAGCACCAACTGCAGTGTCCTGGGGGTGGTCACCTCAGCCGAGGACACCACGGGGACCCTGTTCGTGAATGACACGGAAGCCCTGCAGCGGCTCGATTGTTCTCAACTCCAGTACACGGTGGTGGCCACCAACCGGCCAACCCGCAGGCAGACCCAGGCCCCGCTGGTCGTCACCGTGGAGGGGACGTATGTGGCTGAGGAGCCAGGCTGCCCCCTGTCCTGTGCAGTCAGCAAGAGGCGGCCTGAGTGTGAGGAGTGCGGCGGCCTGGGCTCTCTGACGGGCAGGTGCGAGTGGAGACAGGGAGATGGCAAAGGGATCACCAGGAACTTCTCCACCTGCTCCCCCAGCATCAAGACCTGCCCCGATGGCCACTGTGATGCTGTGGAGAGCAGAAATGTCAACATCTGCCCCCAGGACTGCCTCCGGGGCGGCAGCATCATTGGTGGGCACGAGCCAGGGGACCGCTGGGGGATAAAAGCTGGCTTCGGTATCTGCAACTGTTTCCCTGAAGAGAAGAAGTGCTTCTGTGAGCCTGAAGACAGCCAGGACCCGCTGTGCGATGAGCTCTGCCGCACAGTGATCGCGGCGGCCGTGCTCTTCTCCTTCATCGTCTCCATGCTGCTCTCCACCTTCTGCATTCACCGCTACCACAAGAATGCCCACAAGCCGCCCGTCGCCTCCGCCGAGATGACTTTCCGCCGGCCGGCCCAGGCCTTCCCAGTCAGCTACTCCTCGTCGGGCGCCCGCCGGCCCTCCTTGGACTCCATGGAGAACCAGGTTTCTGTGGACGCCTTCAAGATCCCGGAGGATCCGAAGTGGGAATTCCCTCGGAAGAACTTGGTTCTTGGAAAAACTCTGGGAGAAGGCGAATTTGGAAAAGTGGTTAAGGCAACAGCCTTCCGGCTTAAAGGCAAAGCAGGATACACGACCGTGGCCGTGAAGATGCTGAAAGAGAACGCCTCCCCAAGCGAGCTGCGGGACCTGCTGTCAGAGTTCAACCTCCTGAAGCAGGTCAACCACCCGCACGTCATCAAGCTGTACGGGGCCTGCAGCCAGGATGGGCCACTCTTCCTCATTGTGGAGTATGCCAAGTACGGCTCCCTGCGGGGCTTCCTCCGAGAGAGCCGCAAGGCGGGGCCGGGCTACGTGGGCAGTGGAGGCAGCCGCAGCTCCAGCTACCTGGACAACCCCGAGGAGCGGGCCCTGACCATGGGCGACCTAATCTCCTTCGCCTGGCAGATCTCTCGGGGGATGCGGTACCTGGCGGAGATGAAGCTTGTCCATCGGGACTTGGCCGCCAGAAACGTCCTGGTAGCCGAGGGGCGGAAGATGAAGATTTCGGACTTTGGCCTATCCCGAGATGTTTATGAAGAGGATTCCTACGTGAAGAGGAGCAAGGGTCGGATTCCAGTCAAATGGATGGCAATTGAGTCTCTTTTCGATCATATCTACACCACCCAAAGTGATGTGTGGTCCTTCGGTGTCCTGCTGTGGGAGATTGTGACTCTGGGGGGCAACCCCTACCCCGGGATTCCTCCGGAGCGGCTCTTCAACCTTCTGAAGACAGGCTACCGGATGGAGAGGCCCGACAACTGCAGTGAGGAGATGTACGGTCTAATGCTGCAGTGTTGGAAGCAGGAACCAGACAAGAGGCCAGTGTTTGCTGACATCAGCAAAGACCTGGAGAAGATGATGGTTAAGAACAGAGACTACTTGGACCTGGCCGCGTCCACCCCATCTGACTCCCTGCTTTATGACGACGGCCTCTCGGAGGAGGAGACGCCCCTGGTGGACTGTAATAATGCTCCCCTCCCTCGAGCCCTCCCCTCCACGTGGATTGAAAACAAACTCTATGGTAGAATTTCACATGCATTTACTAGATTCTAGCAACATCGTTCCTCTCTGCACTATCCTTACTCTCTGTAATGCTTTTTAAGAGTGTTTCTGATCTGAATGAAACCAAAGTTCTCCCTGAACCTTTTTATTTGTAAATGTCTGACTTTGCATCCGTTTACATTCGGGCATTTTTGAAACTATGTTTTTTTAAAAGGATGTGAAAATAAGTATAATTACCACACTGCCCGGCTACTTATGATTATGGAGAAGAAAGGGAGCTGGGCAGAACTCTCAGGGGATATTGAGAAGATGATAAATAAGTCGTCTCTGGGGTGGGTATGTATCAAGTCATAGTACTTCTAATTTAACTACTGGGATAAATTTACCCAATCTGGGGAGGCAGTTAATTGAGACAGGAGGAGCCAGCACCACCCTGCCTGCACTGAGGGCACAGCCTGTGGTCACTCCCAGACCCCATCTGGGCGGGCAGGTGGCTCTCAGAGGCCACTTGGTACTAGGGAGCATTGGCCCGCCCGGCCTGAGCCCCGCCCACATGCCCACTATCAGGGAGGACACCTGCAGACTGCTGTTTTCACATCCTTTGCATTACACACTGTCATGACAGTTGTCACTCATGAAGTCAGTGCTAAAAGCTGAAGCAAATGCTTTTGAAAGAACATAGTCTGTGGTGCTGTGGTCTTGCAATGGACAGTAAATATGGTTCTTGCCAAAACTCCTTCTTTTGTCTTTGATTAAATACTTGAAAATTT +>XM_028244121.1 PREDICTED: Camellia sinensis uncharacterized LOC114299398 (LOC114299398), mRNA +ACACCGACGACACGAGTCGTCGTCGCGAGTCGTGACTCATCTCATCTGCACTTCACAAGAAGTTAGTCACCAGACCCCCCCGTATGCACCATCATCAATCAATGTCTTTCCATGTATGAAACCCTAGCTTTGCAAAGCATTTTTCCTATTCAGGAACTAGGGTTTCTCTCTCTCTCTCTCTCTCTCTAAATTAGGGTTTCTATTTTTCTTCAGTCACTCTTGCGCGCTTTCTCTCAAACCCTCCATCGAATCAATTTTTTTTGTCTTTTCTTTTAATTTTATCGTTGTCAGGTAGTTTCCAGGAAAAAAAAATTGTAAATGCGAGAAATCGTAAGAAAGACGTTTTGACACAGCAGGTGCTTTCTTGGAAACCCCATCAAAGATTCCATCTATTTCCTTTCAATATCTTTGATGACAGTGAGGAGGAAGAGGAAAACACATGAAAGATTCGAGAATTTGTGCGAAAATTGTTGAAAAACCTAGGCACTAGTGTGAACTTCGATGGAGTCGACGCATGTGGTACTCGATATAAGCTCGGACGAAGATTATGATTATGATTGGATATCGGAGTTTTTGGACGATGCGGATGACTCTGATGAAGTGGTGGTGGTGAGTGAAGTTGTGGCGAATCACAAGCAGAGGTCGTCAAAGTCTTCTAGTGTTGCTGCTGCGAAGCCGAAAGATTTGGATGATGATTGTGTGGTATTGGAGGGTGATCCAGATAAACCGGTTGCGATCGAGATCGAGAACAATACGGAAGGTGATTCGGATGATTTGTCCATTGTTGGCGAGAAGGGGCAGATTGCTTGCAGAGATTACCCTCACGCTCGCCACCTCTGTGCTAAGTTTCCTTTCACTTCCTCTCTGCATGAGAGGCATTGTCCTCAGTGCCACTGCTATGTATGTGACTCACTTGCACCATGTGTCAATTGGGGCAATGGCACTTCCAGAAATGACCATTGTCACGCTACCGATAAAGATGAGTTCTGGAAATCTCAGAGGCAGAGTTTCAAGCAAGGGAATAAAGCCCCACTACCAGGTCCTAAATTTCCTGACACTTCTCGCTCAATTCGACCACCGCCAACAATCACACAGCTGCAACCAAAGAATCAGATCTCCAGGTCAGCCACAATCCGTGCTTGCTCTATGCCTACCAGTTTTGGCGTCCCAAATATCACAGATCAAGGCAGAAGCCAACAGTCTGTATATGTAAGAAACAAATTCCACCCAGATTTGGTCTCTCGGCAGTTGCTTAGTACCCGTAATAATATCATTCAAAGGGACAGAAGGTTTGGTAATTTAGGGCCTCCATATATCAATTCCCACACAATTTTCAAAAGGGCAGCAGGATCAACTAGAGTTGCTTTGGCAACAAATCGAACTAGATATGGCTCATCTGACAACAATTATGCAACTCAATTCTCCAGAAATCCCTCTCCTGTGGCAGCTTCAAATGATAACAATCCCACTAGGTGGCGAGACCTTTCAAGTGGAATGATTTCAGACTCAGAAGCATATCAGAACCTCTCCCAGCAAAACACTGGCAGCAGCTTGGAGAATTCAGTGCCTTCTCAACCCCTGTTATCCTCACATCCAAACATGGGCAGTGTCTTTCTGAATTCAGTGCCTTCTGGACCCCGACTGTCCTCCCAGCCAAACATAGGCTGCAGCTTTGTCGATTCAGTGCCTTCACCGCAAGTCTCTTCCCAGCCAAGCATGGGAAGCAATTTCGAAAATCCTTTGTCTTGTCAACCGCAAGTGTCCTCACGGCCAAACATGGGCAGCAGCTTTGTCTATCCTGTGCCTTCGCAACCCCAAGTGTATAGTAGTCAGCCTATTCCTGCAGCAAATGATGGCCAATATGGCTTCCAGCAAGGAAACGAGACTCAAAGTGCTGTGGATCCAAGTTTTTCAGATTTTGACTCAAGTTGGGTTGCCCCAACTGGCTGCCAGAGCAACCAACCTTTGGCAGATAATTCCCTATTTCAAATTCCAGGGCTGACTTATCATCATCCTCCTCTTGTCACAGGGTTTGATCCCCAGATTCCTGTAAACACAAATCCAGGCTTACCGGACTTCCAATTTGATTGGATGTTGGAGAATCAATCTTTTTCTGGGGCCCTAGAAGTTCCTGTTCCTTCTGGATGCAATGTATACTCTCCGGAAACTGCCCCTGTTGATGATGTTGCGTTCTTTGATTTCTAAACCTCCTGGGAGTAACCAACCCATGTAAAAAGCCCTCAACCCTGCAAAGAATGAAAATGGCATTCCATTCTTTGGATGATATAATAGGGATTATTAGTAATTGGGTTAAAACATCAACAGTAGAACAGTTGTACTGTACAGTATTTTTTTGTTTTTAATTTTAATATGAGGTACATACTCAAGTAGCCTTGTTTTTACGGTTGCTTTAGGGATGTAGGGTGCCGGTGATGTAACATTATATATGAAATTCTCAGATTGTCATTTTTCTATCCAATCATTTTAGGCTCTACTCAAA +>HM725485.1 Uncultured bacterium clone GB7N87003GN9MT small subunit ribosomal RNA gene, partial sequence +AGGACGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAGCGGGGTCCATCCAGTGGCAACACTGGTGAAGACCTAGCGGCGAACGGGTGAGTAACACGTGAGAAACCTGCCCTGAAGTCTGGGATAACCCGAGGAAACTCGAGCTAATACCGGATGTCCCCACCGAGCCGCATGGTTTGGTGAGGAAAGATTTATCGCTTCAGGAGGGTCTCGCGGCCTATCAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCATCGACGGGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCAACGCCGCGTGCGGGATGAAGGCCTTCGGGTTGTAAACCGCTTTCAGTGGGACGAAAACGAGACGGTACCCACAGAAGAACGCCCGGCCAACTACGTGCCAGCAGCCGCGGT +>EF082344.1 Picea sitchensis clone WS0277_P22 unknown mRNA +CCCCCAAAAATGAAAGAAGCAGAGGAGAGGAGAAAGCAAGAGGAAGAAGAGAAGCAAAGAAGAGAGGAGGAAGAACGGCTCAGATTAGAAGAACTAGAAAGAGAGAAAGAGGAAGCAAAACGCCGGAAGAAAGAACGGGAAAAGGAAAAGATCCTGAAGAAGAAGCAGGAAGGCAAATTGTTGACTGGCAAAAAGAAGGAAGAAGCTCGTAGGTTGGCTATAATGAGAGAACAATTTCTTGCTCAAAGTGGGGTTTCATCCGATATCTCAAAGGAGGAAAATCATGCTATGCCCAAGAAACCAAAGTATGAAACAAAGAAGAAGAGGCATGGTCCAATTATTTCTGATGCTGTGGCAGTTGAGCCTGTTGAGATTCAGCCAGATGTGGAAATGAAAGAAGCAGAGGAGAGGAGAAAGCAAGAGGAAGAAGAGAAGCAAAGAAGAGAGGAGGAAGAACGGCTCAGATTAGAAGAACTAGAAAGAGAGAAAGAGGAAGCAAAACGCCGGAAGAAAGAACGGGAAAAGGAAAAGATCCTGAAAAAAAAAAAAAAAA +>KJ417285.1 Leucopaxillus eucalyptorum strain REH9110 voucher NYBG:01115433 18S small subunit ribosomal RNA gene, partial sequence; internal transcribed spacer 1 and 5.8S ribosomal RNA gene, complete sequence; and internal transcribed spacer 2, partial sequence +GAAGGATCATTATTGAATAAATTGAGTTGGGTTGTTGCTGGCTCTTAGGAGTAATGTGCACACTTGACATTAATTTTATTTTACCACCTGTGCACTTTGTGTAGATTTGGGGGAAACTGTATTATTGAGTTGTCATGTGTATATTTGCATTTGGCTCTCGTTGATATATTATTTTCCAAGTCTATGTATTTTATATACCCCTATAGTATGTCAAAGAATGTAGTGAAGGGCATGAATGGCCCTATAAACTTAATACAACTTTCAACAACGGATCTCTTGGCTCTCGCATCGATGAAGAACGCAGCAAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACCTTGCGCTCCTTGGTATTCCGAGGAGCATGCCTGTTTGAGTGTCATGAAATTCTCAACCCTACAAAGTTATTTACTTTGTCTGGCTTGGATTGTGGGATCTGCTGGCTTGTTCAGCTCTCCTTAAATGTATTAGCAGAATCTTATATGGGTCAGCTTTTAGTGTGATAATTATCTACGCTATAAAGTGACTTGTTTGTAATTCAGCTTCTAATTGTCTGATTTTTGAAGACACCCTATGA +>XR_007078499.1 PREDICTED: Homo sapiens uncharacterized LOC124906680 (LOC124906680), ncRNA +CTCATGGCGGCCTCTGCAGGCCCAGCTGTTCCTCCTGGCTGCATCTCTCGGCCCAGCTCCTGCCTCCCAGCAGGCAAGCTCTTTTGGCTCAGCTCCCTCCAGCGTTTGTAGACCCCGAAGTTTCTGCAGCCAAGCTCTTCAGGCCCACATCCTGCCTCCCGGCGGGCGCGAAGAGCTTGGCTCGAGAAAGTTCGGGGCCTACAAAGGCGGTTTTGAGCTGGGCAGGAGTTGAGCCCAAAGAGCTTGCTTACTTGCTGGGAGGCAGGGCCGGGAGACGCTGACTTCAGGACGACTTGGGCCTGCAGAGGTCGCCAGGAGGCCCAAGCTGGGCGCGGAGGAGCCCACCGACCGGAGACCGTTTGGGGCCTGGAGACGCCATCGGAGGGCAGGAGCTGATCCTGGAGAGGCCACCGTGAGGCCTGACCTGGGCCTGGGGAGCTTGGCTTGAGGAAGCTGTGGGCCGACCAAGGCCGCCAGGAGATGGGCAGGCGCTGAGTCCAAAGAGGTTGTTGGGAGGCAGCAGTCGGGCCTGGAGACGCAGCCGGGAGGAAGAGCTGGGCCCGGAGAGGACGCCGGGAGGCCGCATGTGGGTCTGGAGAGGCCGACTTGAGGAGGCCCGGCCTCTGCCTCCCTCAGGGCGGCCTCTGCAGGCCCAGCTGTTCCTCCTGGCTGCATCTCTCGGCCCAGCTCCTGCCTCCCAGCAGGCAAGCTCTTTTGGCTCAGCTCCCTCCAGCGTTTGTAGACCCCGAAGTTTCTGCAGCCAAGCTCTTCAGGCCCACATCCTGCCTCCCGGCGGGCGCGAAGAGCTTGGCTCGAGAAAGTTCGGGGCCTACAAAGGCGGTTTTGAGCTGGGCAGGAGTTGAGCCCAAAGAGCTTGCTTACTTGCTGGGAGGCAGGGCCGGGAGACGCTGACTTCAGGACGACTTGGGCCTGCAGAGGTCGCCAGGAGGCCCAAGCTGGGCGCGGAGGAGCCCACCGACCGGAGACCGTTTGGGGCCTGGAGACGCCATCGGAGGGCAGGAGCTGATCCTGGAGAGGCCACCGTGAGGCCTGACCTGGGCCTGGGGAGCTTGGCTTGAGGAAGCTGTGGGCCGACCAAGGCCGCCAGGAGATGGGCAGGCGCTGAGTCCAAAGAGGTTGTTGGGAGGCAGCAGTCGGGCCTGGAGACGCAGCCGGGAGGAAGAGCTGGGCCCGGAGAGGACGCCGGGAGGCTGCATGTGGGTCTGGAGAGGCCGACTTGAGGAGGCCCGGCCTCTGCCTCCCTCATGGCGGCCTCTGCAGGCCCAGCTGTTCCTCCTGGCTGCATCTCTCGGCCCAGCTCCTGCCTCCCAGCAGGCAAGCTCTTTTGGCTCAGCTCCCTCCAGCGTTTGTAGACCCCGAAGTTTCTGCAGCCAAGCTCTTCAGGCCCACATCCTGCCTCCCGGTGGCCTGTACAGTCCCAGCTCTGGCAGCAGAAGAGCGTCAGCAGGCCCCGCTGTTGCCTCCCAGGGGCGTCTCCAGGCCCAGCTCTCGCCCCACCACGGCCTCCCGCGGCCAAGTCCCTGCCTGCTCCCGGCAGCCTGCGTACGGCCCTGCTCCTCCCTCACGGTGGCCTGTTGAGGCAGGGGCTCACGCTGACCTCTCTCGGCGTGGGAGGGGCCGGTGTGAGGCAAGGGCTCACGCTGACCTCTCTCGGCG +>XM_014708519.1 Ordospora colligata OC4 valyl-tRNA synthetase partial mRNA +ATGGAATCTGAGAAAGATGAAAAGAAAAGGATTAAAGAGGAGAAGAAAAGACAGAAGCTTGAGAAGTTTCTACAGAAGAAAACACAGGAAGTGAGTGTGACAAAACCCAGAGGAGAGTACAAATCAGGAGGATACGACCCTATGGAGATTGAAAGTAAATGGTATAAGTACTGGGAGAGCAATGGTCTTTTTAAGCCAATGCGCAGTGAGAAGAAGTATGTTATTCCCATTCCACCGCCAAATGTGACTGGAAATCTGCATATTGGGCATGCTATGATGGTTTCTATACAGGATGCGATATGCAGGTATAAAAGGATGTGTGGATATGAAGTTCTGTATATTCCCGGGACCGATCATGCAGGAATAGCAACACAAAGTGTTGTTTCTAAGCAATTGGCCAAGGAAGGAGTGGTTGATGTTGATCGAGGAAGGTTTTTGAAGAGAGCATGGGAATGGAAGAATACGCATGGAAGTAAGATATATGAGCAGTTTAAGAGACTGGGTACCAGTGTTGATTTTTCAAGGGAAAGATTTACTCTTGATCCTGGGATGAGTGATGCAGTTAGTGAGGCTTTTGTGAGATTGTATGAGAAAGGACTGATATACAGGGAGCCAAAGATAGTGAATTGGTGTGGGAAGTTGTGTACGACTATAAGTGATCTTGAGGTGAATCATGAAGAGATTGAACCGAATACTGTTATTCAGGTTGATGGAGGTATGTATGAGTTTGGAGTCATTTATCATGTGAAGTATCCATTAACTACATGTGCAGAATATAAAGGATGTGTTAGTGAACTACCAAGTGTTGAGATAGCAACCACAAGACCTGAAACGATTCTTGGAGACACAGCTATATGTGCGAATGCAAATGACGAACGATTTGGCAGTGATGGGATAAGGAAGATGTTTGGAGATGTATCTCGAGATACAAAGGTGTATGGAGTGAATCCATTGACAAAGAGAGTGATTCCTGTGATATTTGATGATTATGCAGACATGAGTTTTGGAACGGGCGTACTGAAGGTGACACCTGCACATGATGCAAATGATTTTGAGTTGTCTAAGAGACATGGGCTTGAATGTATTGTTGTATTTGATGAAAATAATAAAGTGAGTGTTGAGGGAGAGTTTAAAGGGCTTGGAAGGTTTGAAGCTAGGAAGGCGGTTATATGCGATCTTAAGTCTATGGGACTGTATGTGGGTAAGAAAGGACATCCTCAAGTGATTCCAAGATGCTCTAGATCGAATGATGTTATTGAGCCTATGATCAAAAGTCAGTGGTGGATGGATTGTAAGGAGATGGCAAGAAAAGCAATTGATGTGGTTAGGAATGGTGAGATGGATATTCTACCACCAGGTGCTGAGAAGCAATGGTATAAGTGGCTTGAGAATATAAGAGATTGGTGTTTATCAAGGCAGTTGTGGTGGGGACATAGGATACCAGCGTATAGAGTATCTGATGGACAGTGGGTAGTTGGAAGAACGAAGGAAGAGGCGTATGAGAAGATGAGAAAAGAGTATCCTGAGTGCAAGTGTACAATTGATGAAATGGAGCAGGACGAGGATGTATTAGACACCTGGTTTTCATCTGGGCTATGGCCATTTGCAGTGCTTGGATGGCCTAATATAGCAGATGATTATGCGCGATATTATCCAACTACGCTTCTTGAGACTGGTAGTGATATTCTTTTTTTCTGGGTTGCCAGGATGGCAATGCTAGGGATAGAACTTACGAGAAAGATCCCGTTTGATCAGGTTCTTCTGCATGGGATAGTTAGGGATGCACATGGAAGAAAGATGAGCAAAAGTCTTGGGAACGTGATAGACCCGATATTTGTGATAGATGGATGCAGCTTGAATGAACTTATTGCAACGATGAAGAGTGGAAACCTTGATGAGAAGGAAGTGAAAGTTGCTGAAGCAGCTTTGCGTAAAGACTTTCCGAACGGAATACCTAGATGTGGTGCAGATGCACTTCGTTTTACGTTACTCTCTTACACTTCAGGAATGAAAGACATTAATTTAGATGTGCTTAGGGTTGAAGGATACAGAAGGTTCTGCAATAAGATTTGGAATGCACAAAAGTTTGTTAAGATGATGGTTGATGAAGCAAAGGATTGCCTGAGCTCTGAATGTGGATATGCAGAGTATACTTTAAATGTCTCTGACCTTACTAATGGATTTGATTCTGGGCCGATTGAATGGATCCTTATGAAAAGAAACGAAACAATAGAGTATGTCAAAGAGATGATGGAGATGTATAAGTTTATGGAGGCAACACAGGCAATTCATCAGTTTTTTATGTATGACATTTGCGATGTTTTTATTGAGATTGTGAAAGGAAACAAGGAAAAGATGTATGTCAGTGTCTTACTGACAGTGTTTATTGACTCTATGAAGATATTTCATCCGTTCATGCCTTTTATTACTGAAGAAGTGTTTTCAAGCTACTTTGATACATCAATTTCAACATCGGAATATCCAGTAAGTGATGGTAATGCTCACAACAATAATTTTGGTGCAACATTACAACTGGTGAAGCATCTGAGAGGTTTATTGGAGACGAATGGGCCTGGAGGAATGAATGTGCTTGAGATTGTCCCTGGACCTGAGATTAACCACCATGATTTGAAATTTATCCATCTGCTTTGTAGAAGGATATGCAGTGTTGAAATATTATGCGATTATGACGAGAGGTTCTTGGACTTCGGAGGCACAAAAGCATATCTTCGGAAAATTGAATAA +>XM_039636903.2 PREDICTED: Drosophila santomea uncharacterized LOC120452602 (LOC120452602), mRNA +TCCAGTATTCTATCAGTATAGAAAACAACACACACACACTTTGTAGACACGCGTAAATAATTTTTCGAAATTTGTACTTTTATGCGTGCTATTCTTTTTCGACTTTTATCTTAAATATATTACCATTTTCAAACTATAAAGAACATATTTACAATCACCGAACCTCAAAATGCCGCCCGTTTTAAAACGGAGTCTACGGAAAAGATCAAAACCAGTTCAAGAAACTCCAGCCGAAATCAAGAAGACGAGTACGCTTTCGAAAATAATCATTCAAGGCACTGAACAGCTGTTATTGGATTCTGAAAATAATCCAAATATTCGAGTTATTGAAAAACCCAGAAAAATGCGGTATTCAAAATCATCGATTCCCACTGCGGAACCGGATTTCCAGCTGCATTCCACACCGAAAATTGGTAATCTGGCAAATAAAAGCAACGCACGCGGGATGTTTGGTCCGATCAAAAATAAACAGACATCCATAGAAGCTATTTCTGAAATTAGTGATATGTCCATTGCTTCAGTGTCGGTGAGGAATCAGCCGTTTGTGAACTTTCTCCAGGATTTCTGCATGACTCGTGGTTCCGATCCCAGAGAAAGTGTTCAAGAGGCCATCGCCAAATGGGATAAAATGACACCCAAACAAAAAGCAGAATTCAGTCCAGAAAACTACGTTCTAAAATTGTGTAATCAAGTGCAGAATCGTAATGAAATTTTAAATGCGGTTGCACTGCAGCCGGTTTATGAAACTACAAAAAAAAATCAAAATGGATTTAATAAAGCCAGCAAGGTCAAGAGATTGTCTCCAAAGCTACGTAAGTTGACAAAGCGATTAAACCCAAGACCACGAGGTGTGGTGAGTCCCAGAAAATCAATTAAAAATGCGGCCAAAAAGGAGGTGCCTCCAATGGTGTCGGTGCGTCTAACTAATAGTGCTTCGGCTTACAAAAACTTTCTGCGCAAAGTCCGTCAAGCAAATCCTGGTCTGATGTCCGTAGAAAAGACCTCCCTGTGGCGCAAAATGACTCCTGCCGAAAAGGATCTCTATCGGGTAGTCAGCAAGCGAAGCCAAGAGAAAACCAATGTCAAGAAAACCAAGTTAAGAGCTCTAGCTGCCAAACGCGTAAGGAAGCAAAGAACCTCACGATCAACCCAGATGCCTGAAAATGCTTTACATTATTTGCAAAGCAGTTTCGATATTCAGCGAGATGGCCAACTAGAAATTTGGAACGAGAGCAACACTTTGCTACGGGATAGTCAACGCTCCTGGGTCACACTTGACTACATTTCAAAAGCCTTTGAAAAAGTGAAGAATATATTTAGTTAACTACTTGTTGTCCAAATTTTATACAAAACATATGTAATTGCTATAAAAAAAACTGCGTAGAAACATA +>XM_045247888.1 PREDICTED: Portunus trituberculatus adhesive plaque matrix protein-like (LOC123499604), transcript variant X2, mRNA +GGCAGGATGAGGGTGGTCACTTGTAGGAAGAACACGAGAGGAGGAGGAGGTCATGACGAGGTTCACAGGACGGTCGCTGGTGGTGGTGGTGGTGGTGGCGGTGGTGGTGGTGGTGGGAGTGGCAGGGGAGAAGCTGGAACACGGTCTGGAGCTCATCACACGGGGGGAGCTGACGGGGGAGACAGACTTTGCGCCCCAGGGGAGGGAAGATGAGCGGACCAGCGCCCACCGAAGCTTTCCCGCGGCGCCCATAGCCCTCACCTACCTGCCGCCCATACAGAGCCCCTTACCCATAGAGGAAACACAGGGGACCACCACAGGCACCAGCGCTACCCCGGGGGAGGTCTTCGTGGCTCCTGACCATGGGGGAGAGATACTTAGACCATTCAACCAAGCAGGGTCACACCTCGAGCAGACCAGCCAACAGCACCACCACCACCATCACCACCTTGGCCCCTTTGAGTCCTCCCAAGAGAACACGCCCTTCCATACAGAGTTCCAGCCCTCAACAAGTGACCAGGACCCAGACGCCCTCCCAGCTGTGGTCCCAGGCCTGAAGAGCGCAGTAACAGCCAAGACAGAAGCATTTGGTACCCTCACGAAAGCTGCACCGTTTGAACACACCCCCCAAACTGCACCAGCCCCCGTGGTACCGTACCCGATCTACCCGCCGTACCCCAAGCCCCAGCAGACGTACCCCCAGCCTTCCTACGTGTACCACAAAGCCTCGTATCCTCAGCCAGTGTACCATAAACCAGTGTACCATAAGCAAATGTACCCTGTAGTGGTGTACCCTGGATATCATCAGTACCACGCCAAGCCGAGCCCCCTGGAGGCGTTGAAGGCTAAGGTGGAGGGCTACGTGGAGACTAAGAGAGCGGCTGTGAGTGGAGCGCTGGCCAAGGTGGAGGAGGCTAAGGCGAAGCTGGACGCAAAAATCAAAGGTCTTTTTAAACCCACTTCCTTGAAAAAAACACCTATTCCATACCCTTCCAAGCCCCTTCCAGCCCCGTCTGCACCCTTCTACCCCTTCAGACCCTATCTCAATGTGCCCCTGACGCCTCACAAGGGGTACTCCATCAAGGCCACCCCTGCCAAGCCCCTGCCAGCCCCTGTACACCACGTCAAAGGCCCGGTACCAAAACCTTACCCTGTGAATGTATACCCAGCCATACCACAGCCTTCCCTTGCTACTACCCCTGCTCCTACCCCTGTCCCGATCCCTGCCACGCTTCCTGCCGCTTCTACAGGCCCCCAGATACCCCAGGAGACCTACCCCATGGCCACAGCACCCCAGTATCAGCCTGTGTATGCAATTTACCCCGTGGCAGCCTCGCCTGACGTGGGACTCAAGGAAAAGCTGGAGGCGAAGAAGAAGCAAGTGATGGGAGCGATTACAGGCGCGTTTGCAAAGTTGAAGGCGCCATTCCAGTACCTGCACCCTTCCTACTCCTACTACTACGCCCCCCAGCATTGGTAGAGGCGCGGCAGGGGCTGGGAAGGCGGCAGGGGGTAAAAAGCTAAGGAGGTATTGGATTAAGCACGTGGTAAGCAGACGCCTTTCAGCCGCCCTGCTCGTGACGTCATCTTAGAGACCGCGGGTGTAAACTAAAATTAAATACATTGGGTTAAAAATATTAGTAATCTGAGCCTATGTTAGTTTATAGTGTGTAATATTTTGTTTATTAGTTAATCTTCTATATAATGTTAATTTGTAGGGTTATGATTGTTATTCTTAAGAGTTTTGAGATTAAGTTTATATTTTATTTTTGGGGTTTTGTATGTAAGGAAGGTACTGGCTAATGGAAGACAAAAAAATGAAATATATAAAAAAAAATGAGTTTAAATGCCAGACCTAACATGAAAAGCACCAAAAGGATTATGAAATTTGGAGAAGTGTTCGATAATAAGGAACAAAGGTACGATGCAGCGAGGAGAGCGCGGCATTTTCAAAACACTGCTAGCGCGCTCCTTTTTAGCCAAGTAGAAGTGAAAAAAAAAGTGCTAAATATTTTTCTAACTCTTGTTATATGTTAATAAAAAAATAAAATAGTTGTTTTT +>MH123473.1 Homo sapiens isolate NUB087 cytochrome b (CYTB) gene, partial cds; tRNA-Thr and tRNA-Pro genes, complete sequence; and D-loop, partial sequence; mitochondrial +GGGCCTGTCCTTGTAGTATAAACTAATACACCAGTCTTGTAAACCGGAGATGAAAACCTTTTTCCAAGGACAAATCAGAGAAAAAGTCTTTAACTCCACCATTAGCACCCAAAGCTAAGATTCTAATTTAAACTATTCTCTGTTCTTTCATGGGGAAGCAGATTTGGGTACCACCCAAGTATTGACTCACCCATCAACAACCGCTATGTATTTCGTACATTACTGCCAGCCACCATGAATATTGTACGGTACCATAAATACTTGATCACCTGTAGTACATAAAAACCCAATCCACATCAAAATGCTTACAAGCAAGTACAGCAATCAACCTTCAACTATCACACATCAACTGCAACTCCAAAGCCACCCCTCACCCACTAGGATACCAACAAACCTACCCTCCCTTAACAGTACATAGCACATAAAGCCATTTACCGTACATAGCACATTACAGTCAAATCCTTTCTCGCCCCCATGGATGACCCCCCTCAGATAGGGGTCCCTTGGCCACCATCCTCCGTGAAATCAATATCCCGCACAAGAGTGCTACTCTCCTCGCTCCGGGCCCATAACACTTGGGGGTAGCTAAAGTGAACTGTATCCGACATCTGGTTCCTACTTCAGGGCCATAAAGCCTAAATAGCCCACACGTTCCCCTTAAATAAGACATCACGATGGATCACAGGTCTATCACCCTATTAACCACTCACGGGAGCTCTCCATGCATTTGGTATTTTCGTCTGGGGGGTGTGCACGCGATAGCATTGCGAGACGCTGGAGCCGGAGCACCCTATGTCGCAGTATCTGTCTTTGATTCCTGCCCCATCCTATTATTTATCGCACCTACGTTCAATATTACAGGCGAACATACTTACTAAAGTGTGTTAATTAATTAATGCTTGTAGGACATAATAATAACAATTGAATGTCTGCGCAGCCGCTTTCCACACAGACATCATAACAAAAAATTTCCACCAAAGCTTCTGGCCACAGCACTTAAACACATCTCTGCCAAACCCCAAAAACAAAGAACCCTAACACCAGCCTAACCAGATTTCAAATTTTATCTTTTGGCGGTATGCACTTTTAACAGTCACCCCCCAACTAACACATTATTTTCCCCTCCCACTCCCATACTACTAATCTCATCAATACAACCCCCGCCCATCCTACCCAGCCGCTGCTAACCCCATACCCCGAACCAACCAAACCCCAAAGACACCCCCC +>XM_026551140.1 PREDICTED: Papaver somniferum ketol-acid reductoisomerase, chloroplastic-like (LOC113302251), mRNA +GAGTCAGTTGGCTCCCTGCAATCGTTCTGGCGGGATGGAGTTGAACAGTGAGTCGAAGTTAAAAGTTTGAATCTTTTACTACCTCGTATAGAAGAGTCCAAGGGAGGTAAAAATATAGAAGAGGAGGAGTTATGGATTAAGTAACCGCTGTATCCGCACTGAACTGCAGGAGAAACTTATCCAGATGAAATTCGTGTGATTATGGATTCGTTTGGGTTTCATTTCCGCTGATTTGAATTCCTATGATATACTTGCTGTATTTGGTTAATTCTCAAGTAGAATTTGTTACTCATGGGAACTTCCACTCCGTCCATAGCTTCTTCTTGTTCATTTAAAACCCTAAAACTACTTCACTCAACATCCTCCTCTTCTTCTTTGGGTTTTAAAGTAGGGTTTCTTTCTTCATCTTCTAAAACCTTAAAATTTCTTCTTATTCGTGTTTCTAACAACAGTGTCTCGTTCCCTATTGGATCATCTCTTCTTGCATCTCGTATGATGGTTTCAGTTCCCGATACTAAACCTTTGACTGCTCTTGATTTTGAAACCTCTGTGTTTTACAAGGAGAAGGTCACTCTTGCTGGAAATGACGAGTATGTTGTGAGAGGAGGAAGGGATTTATTCCATTTGTTGCCTGAAGCATTCAAAGGAATTAAGCAGATTGGTGTTCTTGGTTGGGGTTCTCAGGCTTGTGCACAAGCTCAGAACTTGAGGGATTCACTTGCAGAAGCCAGATCTAACATTGTTGTCAAGATCGGATTGAGGAAGGGATCCCGTTCTTTTGCTAAAGCACGTGCTGTTGGTTTTACCGAGGAGACTGGAACTCTGGGTGATATATATGAAACAGTAGCAGAGAGTGATCTTGTGCTGCTATTAATTTCTGATTCTGCACAGGCAGATAATTATGAGAAAATATGCTCCCACATGAAACCTAACAGCATTCTTGGACTCTCTCATGGATTCCTCCTTGGACACCTACAGTCCCTAGGGCTCGACTTCCCTGAAAGTGTGAGTGTGATAGCTGTGTGCCCCAAGGGCCTGGGTCCGTCTATCAGAAGACTTTATGTTCAAGGGAAAGGGATAAATGGTCCTGGAGTTAATGCAAGTTTTGCCGTCCACCAGGATGTTGATGGTAGAGCAACAGATGTCGCCTTAGCATGGTCTGTTGCTCTTGGTTCTCCTTTAACATTCTCCACTACTCTGGAACAAGAATACAAGAGAGACACTTTCGGAAACCAGGATAGCCAGGAAACTGAAAGACGGAGAAAGATAGGGTTTGCAAACAAAGGGAGAACACCATGGAACAAAGGAAAGAAACACAGTGCCGAGACTCGTAAGAAGATCAAACAAAGAACCATAGAGGCACTGAGTGATCCCAAGGTCAGAAAGAAGATGTCTGAGTGTCCCCGTGCTCATAGTGAGGAGAACAAGATAAAAATAAGCATTGCTCAGAAGAAAATGTGGAGAAAACGCTTGCAGATGAAAAGACTGAAGGATGAGTTTTATCTGAAGTGGGCAGAAAGAATTGCAGAGGCAGCTAGGTTAGGCGGCTGTGACCAACAGGAACTAAATTGGGATAGCCATGAAAAGATCACAGAGGAATTGGTTCTTAAACAGCTTCAGTTGACTGCAGATAAAGCAAGGGAAAAAGAAATTGCAAAATTAAGAAGAGCTAGAGCAGCGAAGGAAAGAGAGGAGAAAATGGCTAGAATTGCCCAGAGGAGAAAAGAGAGGATAGAAAAGGAGAGGGAAGAAAAATCAAAACCCAGAGTAGAAATAAAGAGAAAGACACGTAGAAAATCAGAAAAAGAGAAGCAACTACTGGCTCTTTCCAAGGGCTCAAAACTCAAGGAAAAATTGACGAAGATTCGCCGTAAGAAGACTGTTGATGGTCAAGGAGTAGTGGCAACCGGCAATCAACCAGCGATTGAGAAATTGGATTTAGAGTTTATAGAAAGAGAGAAACTGCGGAAGGAAGTGTCTCTTGCGGATCAGATTCGAGCTGTAAAAAAGATGAGAGAGGAGTTAAACAAGGAACCTCTTGCCAGAGCCATCTTATAGATTAAGCCAGCTAGATCATTTTCCTAGTCGAAGTGTTTAGGCTTGGGCTGCTATACATGTCAAAGTTGATAGGCTGAAAACTAAATTAGAAATAAGAACATGAGTTGATCTAGGCTTAGATTTGTTTTTGTTTTTTTTTCCCTCATTCTCCTTGTAAGAACAAATAAGAGCACCAACATCGTCTACCTTCTTTTATCAATCAGTTTTGAAATTGTTGAAGGAAAATGTTATGTCGTTGGGTAATAGATTTGTCCAAAACTTACACTTGGGCACCAACGTATGTCCAGGTGGTTATTATTGACCAATTGAATTTGAAAAAGATATT +>OK585766.1 Setaria viridis SvmiRp606 miRNA gene, partial sequence +TCGGACCAGGCTTCAATCCC +>XM_008174878.2 PREDICTED: Chrysemys picta bellii olfactory receptor 52R1-like (LOC101936597), transcript variant X1, mRNA +ATGTCAGATTCCAACACAACCGAATTCACCAACCCCTCCACTTTCATCCTGCTGGGCATTCCTGGCCTGGAGGCAGCCCATGTCTGGATCTCCATCCCCTTCTGCACCATGTACACCATAGCCATCTTGGGGAACTTCACCATCCTATTCATTGTGAAGATGGAGCCGAGTCTCCATGGGCCCATGTACTATTTCCTTTGCATGCTGGCCGTCACTGACCTGGTGGAATCTACGTCCATTGTGCCCAAAATGCTGAGCATCTTCTGGTTCAATTCGAGAGAGATAGATTTCAATTCTTGCCTCACCCAGTTGTACTTCATTCACTGCTTCTCAGTGATGGAGTCTGGGATCTTCTCAGGCATCTTTGTGGCTATGGCTTTGGATCGCTACGTGGCCATCTGCAATCCCCTGAGACATTTCACCATCCTGACAAACTCCATCGTGGCCAAGATTGGCCTGGCCATGATGCTGCGCAGCGGCTTGCTTGCATTGCCCTATCCCTTCCTGGTAAGACAATGGCCATATTGCAGAACCAACATCATCCCCCAGTCGTACTGCGCACACATTGCCGTGGTGAAGCTGGCCTGCACCGACATCCGCGTCAGTAGTTACTATGGCCTCTTTGTGGTATTCTGTGTGATGGGTCTGGATGCGATTTTTATTGCCCTGTCCTACTCCCAGATCCTCAGGGTCATCTTCAGCCTCCCCACAAAGGATGCCCGGATAAAGACTTTTGGGACCTGCATCTCCCACCTTTGTGCCATCTTAGCCTTTTACATCCCAAGTCTCTTCTTCTCCCTCATGTATCGGTTTGGCCAGAATGTGCCCCTGCATTTCCACGTTCTCATTGCCAACGTTTACCTCTTGATGCCCCCCATGCTAAATCCCATCATCTACGGGGTGAGGACCAAACAGATCCGGGACAGGCTGCTCCGACTCTTTACTCATAAAGGGACCTAA +>XM_013231282.1 PREDICTED: Biomphalaria glabrata lipoxygenase homology domain-containing protein 1-like (LOC106071234), partial mRNA +GATGACATTGCCACAGATTGGAAAGTTGATAATCTTGTCATGGAAAATCCTAGCACTGGTGAGAAGCACAGCTTTGAGGTGAACAGATGGCTGTCCCATAAAGAAATTGATGGAGACATTGTATTTGAAGGTGCAGTCAAACAGCACAACCAACCAGTTGCTTCTACTTGTAAATACATTGTTAAGACCATTACTGAAAGTGAAGAAAATGCAGGAACTGAGGCTAATGTGTATATAAATCTTATAGGAAATCTAGGGGATTCTGGAAAAAGATTTCTAGTGAACAGCAGTAATGGAGGTGAAAAGTTTTCAGCAGGAAAAACAAACTATTTCACTATTGAAGCAGTGGATCTTGGTGATCTAGAAAAAATAGTCATTGGTCATGATGGAACAACACCTGAAGATGCTTGGAAACTTCTGTGCGTTATGGTTCGCAAAGCTGACTCTGCCAACAGAGATACTTCTGTGTTTCCTTGTGGAAA +>XM_017243286.2 PREDICTED: Drosophila bipectinata nuclear transcription factor Y subunit gamma (LOC108126631), mRNA +TTTCACCCCTAACTGGAGGCTGCCACACTGTTCGCGTGTATGTGTGCATTGCGCATTTCGTTGATTTTAACAAAATTTTAGCCTTCCAGCCGGCTGTGATAGCCAAACCGTTGCCGTCACCGCACCGCAGATCACGTGAGTCAACCGGGACATGTACGCCACCAACAACGGTGGCACAAACAAGGCGCCAAACAGCAATGCCAGCACGCTGTTCGAGAACACCATAACCGTGACGCCAATTAAGGTGGAGTTGGGCACAACGTATGGCGCCGGAAAGCCACCCACACCGGCGCTACAACGAAGGACGCCCAATGCCGTGGTGGTGACCACTAGTAATCCGCAACAACAGCAGCAGCAGCAGCAGCAACAACAGCATCAAACTGGTGCCGGAACCACCACTCTGAACCTGCCCATGCAAGCCACCCTGGTCTCGAATGCCTGCACCATAATGAATCCCAGCCTGAGTGTGACTGTGAATACCACCACCACTGGAGCCCTGGCCAAGGAACCGAAGGGTAAAGCAGCGCGGGCGCAGGTGGTACGGAAACCGCCGCCTACCATCGACAACTTCTGGCCGAATATCGTGAACGAGGTGCATGCAATCGGGCAAGTGGACGCCAAGCATCAAGTCTTGCCACTGGCGCGGATCAAGAAGATAATGAAGCTGGACGAGAATGCCAAGATGATAGCGGGCGAGGCGCCGCTGCTGTTTGCCAAGGCGTGCGAATACTTCATCCAGGAGCTGACGATGCACGCGTGGGTGCACACCGAGGAGAGCAGACGTCGCACGCTCCAGAGATCGGACATTGCCCAGGCGATCGCCAATTATGATCAGTTCGACTTCCTTATTGACATTGTGCCGCGCGAGGAGATCAAGCCGTCGTCGGCGCAGAAGAGCAAGGATGCGGGTGGATCGAGTACGTCGAGCGGGAGTGCCACAGGAGTTACCTCATCCACGTCGTCCGGCACCAGTGCCGGCGGTGTCGTCAGTTCTTCCGTCAATGCATCTGCAGCTTCGGTCACGGGATCGGCTGGAGCCGCTGGGAATTTCGTGGTCGGAGCCACTGCTGTACCTGCTGCCAAGATGGATACGGGTGGAGGAGCCACCGCTACAGAGGTACTAGGCTTTAGCACGGTCACGCCGGACCTGTTCGCCACGCAACTGCAGCAGCAGCAGCAGCAGCACGTCGCCCAGCAGCAACAGCAGCAACAACAACAGCAGCAGGCGCATCCACAACAAGTGCAAATAATCCAGCAGGCCGGACACGGCGGCGCCCAGCAATTGCAGTACTTTATTGCGCTGCCGGGCCAGCAGACGGCACAGCCGGCCCAGAATCATCTGGCCAATAGTCTGGGCCTCAACATTGTGGCCGCCCAACAGCCCGCCCAGCAGCTGATCCTCACCGCGGGCCCCAACGGCCAGCTAACTGCCACCCCAGCCCCCGCGGCCACGGTGCAGCAACAACAGACGGCCCTGCTCCAGAATCTCGCCCAGCAGCAGCAACAGCAACAGCAGGCCCAGCAGCAACAGCAGCAGATCCAATTGCTCCAGCAGGTGGTCACTCCCACGGGGGAACTGACCAATGTCCCGATTGCAATCAATGCCAACCACTTGCATCTGCTCCGGTTGCAGATGCAGCAACAACAACAGCAGCAACAGCAACAACAGCAGCAGCAACAACAACAGCAGGTGATAATACCGACACAGTTGCTGACGGCACAACAGATACTCCAATTGGGCGGAGCACCCGCTACCGTTGGACAGCAGCAGGCGCAGGTTCAAGTCCAGCAGCAGCAGCCACAGGTGCAAGTTCAAGTCCAACAGCAGCATCCAAATCTCAGTCAGGGCAATGCCAGTGCCACGCCCATTTTTATAAATTCAACAGCGACACAGCAAGTGGCGCAACAGCAGGCGCAGCAACAGCAACAACAACAACAACAGGCGCAACAGCAACAACAACAACAACAACAACAGCAGCAGCAACAACAACAACAACAGAGCAACATGGCCGGGGAAAGGACACTAACCGGAGGATTTCGGTAAAAGGAGCTCGCGCTGAGCGTGCACTGGTCGTGCAATGGTAACCATATCGAGGCATGGGTGGGAAAGGTCCAGCACAATTTGTATAATATATAGTTTACGTTTGTATATCGGAAAGAAGATTATATATATAGTTAGTGCTGTAAGTGTAGAAACGA +>XM_002365330.1 Toxoplasma gondii ME49 Ctr copper transporter family protein mRNA +AGAATTGAGTTGGTGGTTGTTTTCGATGGAAGGAAGCGAGAGTTTCGGAAGAATTCTCGGAAAAGTGGATGTCAACCTGGCAATTCTGTCCCGTTCGCGGGGGGCTCTCCTTTTCCGTGCAAGCACGCGTCCACCTTGATCTCGCGTTCTGCGCTGTGGATTGCAGGAGACGTGTAAGGCAGGCGCCTCTGTTTCCCCGCGGGAGGCACAGGCGATGCAGGAAGCGTCTCCTTTCACGACACCTTGGCAATTCACGAAGGAAATTCCCGTCTGCCTTGTCTGACTCAGGTGGCAAAACTCTTCCTGCGTTCTTGCTGCCTCTGAGTCGAGGGTTTAGGGACTTTTAGGGTTTAAGCCTTCAACTGCCGAGGGCCCCCCCGCGAGTCAAAGACACACGCCGCGTGTCTCTCCTGTGGCGACTCTCCGCGAGAGAGGAAAGAAAACTTCACAAGAATCATAGGCTGAAGCGAACCTCCGATTAACAAGTGTGTGCGCTCCGTGGGGAGAGAGAACGCGTTCGAGAAAGACCTACAGAGGGCAGACCAAGAGAGTCAAGATGGCAACGCACGCTCAGTCAGGTGCTTCCTGCTCTCTGAGCACTTCTCCGAGATCTGGACGCGAAGGAGGACAGAGAAAGACGGAAGCCTACCTTCTGTCCCTCCGCAAAATCCCCAGTTCCAGACGGCGAGGTCTTCCGACCGGTCCTCAATCAAAGGCCTCTCTTCTGCGAGTGTCCACGTTCTTCCTTGTTTGCGCGCTTCACTGCGTGTCTTCTCTCCCCGGCGCTCTGTCCTCCGCCTCGAACTCTCCCGTCTCTTCTGACAACGAGGTGCCCGACCCTCAGCGAAACCGTGACAGCTCAAAACCTTCCAGTTCCGATGCTACGCCAGATAAGACGCATGACAAGCAGCGGCCGAGAAACAGGTATGAAGATGTCGAGGACTGCTGCAAGGGACAGAAGAAGCGCGCTGCCGACGACGCTTCTGCTGCGAGAGAGGCGGACGGAAAAGAGGAGTCTTGCTGCGACAAGAAAGGCGCTGCCGGAGGGTCGGGCGGAGAGGGACCTTCCAGTGAAGGAAAACAGTCCTGCTGTAAAAAGAAGAAAGCAGTGGCTGCGGAAGGAACCGCCCACGTCGCTGCGGAGGGACATAAGTCCTCTTGCTGTGGGGTCATGCCCATGTCTTTTCAAAACTCGCTGCACACCGTGATTCTCTTCCACTCATGGGAGACACTCGAGCGGTGGCAGTACGTGCTGTCGCTGCTGACGTGCGTGGTTCTGGGGATGCTCTCCGTGGTTCTGAAAGTCCTTCGCCTGCGACTCGAGTTCTTCCTCGCCAAGCGCGACCGCGCCGCGGAGGACGCCCAACGAGTCGAGAAATTGAAGGAAAAGGAAGGACAGAGTTCGGCGGCTTCTCCGTCTTCAGCAATTGTCGAACGCCTTTGCGGGAATTTCCCTCTGAAGCAAAACTCCTGGCGGATGCTGGAGGCGTTCGTCATCTACGGGTACGACTACCTTCTCATGCTGATCGTGATGACCTACAACGTAGGGCTCTTCTTCGCTGTCACGGGAGGCCTCGCTCTGGGCTTCTTCTGCTTCGGGCACCTCCTCAGAATCCAGGCAGAAAAAGAAGAGAACTCGCTGGAAGAAGACTACCGCGGGGACCCCTGCTGCTGCGGAACATAAGAACTGGAGACAAAAAGAGAAGACGAAAGGTGTTGGAGACCGAGAATGAAGGAAGAGGAGACAGAGAAAGAAGGAAAGGGAGACAGAGAAAGAAGAAACTGAAGAGTGGAACTAGGAGAGACCACAGGAAGGCGTGGAGCTGGAAATTATTCCTTTGAAACTGGTAGCAGAGCAGGGAGGTCCCTTGAACTTTTGGATTTAAAACATCCTTTTTTTAAAAGCCTCCCTGAGGGAAGAAGCTGGAACGCAGGGTCAAGAGACTAAGGTTGCCGCGTGGAATCGGTTGATCCGCCGTTTTTGTGTAGAACTGCATTCTTTACCGACGCGTTTCAGCGCGTTTTTTGCCGTCGGGGAAGAGTCGAGAAGGGCGCACACATGCGTGTACAAGATGCACACAGACTGTGGCCCTCGTCTGTTCTCCAACAGACCGCGTTTCAGAACGAACATGTAGAATACGCACAGAGACGCGTTCAAGCCTCTGCGCCGGTG +>XM_037418793.1 PREDICTED: Rhipicephalus microplus uncharacterized LOC119167324 (LOC119167324), mRNA +TGCAAGAAACTACGTACATCATGGTCTCGAGAACTTCCTCCGTATAAAGGTCCAATCGTAGCGCTGATATATGTTTATTTTCGCCTTTTACGACGTGCATCAACAGGAGCACCATGCAAACAGGGAATGGCGTCGTACTGCTCTTGGTTATTTTATCTTATTTGACAGGATTTGGCCAGTCAATATTCATAAAGGAAAATGATTTCAAAGTGTTCTTAAACACAACGCAACCCATATGGACCTTCAACACGACAAACAAATACAACAAGAATTACTGCATTGTGGACGTTACAAAAAAACTGCTGGGAGAAACTGTCATGTATACTCACTCCTTCTATGTCGACCCCACGAGAAAACAGAGGGTTTCTGTTCATATGGAAGGTGCCTTGAAATATAGCAATAAAATGGTTGCCACGCAAAAAGGTTCGAAAGTGACTTTTAAGCACAAGCTCGTGTATCTTGACTTCGACAACATGTGCGCTGTGGTGAAAGTTACTCCAAAGCTTCCTATCCCTGGGCAGCCTTGGCATGACCTGCGAATGTGGAATTCCTCGCTTGTGAGACATCGCCACCCTTCGATAACCTGTTTACACTATTTCAATCTTGAAGCAAAGCATGGACGCCTAACTTATAAGCCTATATGCCAAAAACTCCTTTATCAAGTGAATCCGTATCAAAAGAAAATTCTTCAAGGGCAGAAGACGCCGCAGACATACAGGAGCACGAGCGTGTGAACTGTCGAGCATACTTCGGAAGTATGTAGCACATCAAAGCTTTCTCTAGTGGTTCACGAGAACCACTGGAGGCAGAGATGAATAACTTGTCTAGCCTGTGCTATAAATTTCCATGGGTAAAATGAACAAATCGTTGTCTGATTTCATATGTGTGGTATAATGCGCGCAGCGCTTACATAGATTGCCACAGCTTTCAAGCAGCAACACAACGTGCAACATAAATATGCTGAACCTTACAGATACGCAACCAATAAGTTTTAAATAATGTAAAAATCCACAGACAATGAAA +>XM_027137582.2 PREDICTED: Tachysurus fulvidraco probable endonuclease 4 (si:ch211-141o9.10), transcript variant X3, mRNA +GACGCAGCTAATTATGAAAACGAGTCCTCCACAGTGCTGTTTGTAACTATGCAATGGGGATAATGTAAACGAAGAAAAGACCACACTGGTTTTAAAGCGTTGAAAAGTCAGTTGGTTGACGGTCGGCCATTTTACTGCTCGGATTATACACTTAAAGTGAGCGAATCCCTTCTCACTGACAACAGTACATAAATTAAAGGCACATTGACCACGCCCCCATACCAAAGTATATGTGGAGATGGGCGGGGCTACAACACACACCTACATACCTACCTACACCTACCTCTCGATGATACAGATTGTGATCTTTTAAGGTGACTAAACTGAAAAAGAGATGGCTTCGTGCAAAAAAGGAGAGAAGAGAAGAAAAGAGAGAAATGTGAAAACGTTAGAGGAATTTGAAGACTCGGCTGAAAGGAAAGGAAGGACAAGAGAACAAAAAAAGTACATTGGTGCTCATGTGTCCATAGTAGGAGGGATATGGAAAGCAGTTGAAGCAAGTGTAGAAATGGGGGGCCACAGTTTTGGATTATTTTTGGGTTCCCAACGCTCTTGGCAAAGACCTGCTCTTGATCAGAAAGCTGCAGTGAAATTTCAGCAGGCTTGTGCTCAACACAGCTTTGACGCAAGACACATTCTGCCACATGGATCTTACCTGATGAATTGTGGCTCTCCCAAAGAAGATGTGTTTAGTAAGAGCCAGGTCATGCTGGTTGATGAACTCAGTCGCTGTAGTCTTTTGGGCCTTACTCAGTTCAACTTTCACCCCGGGGCCTCCCTTGACTCCAGCAAAGAGCAATGTATCGAGAGGATTGCCGAAGCTATAAACAATGCTCACCAGCAAATACCTGCAGTCTGTACCGTTCTTGAAAATATGAGTGGACAGGGAAGTACAGTTGGTGGAGATTTTAATGAACTGAAGTCCATAATTGACCGTGTTCGAGATAAGACACGTGTTGGAGTATGTCTAGACACGTGCCATGCATTTGCAGCAGGTTATGACATTTCTTCAGAGGGAGGAGTGAAGTCTGTGCTTGATGAATTTGACCAAGTGGTTGGACTGCACTACCTGAGAGCAGTTCATCTAAATGACTCAAAAGGTAAATTGGGCTGCCATCTGGATCGCCATGAGGACATTGGCCGTGGACAGATTGGCATCTCTGCTTTCCGAAACATTGTGAATGAACCTCGATTTGACAACATCCCTCTTATTCTCGAGACACCTGGCCGCCCAGGTTTTGAATATGCTGAACAAATACAGCTCCTGTATTCTTTATGTGAGGACTAGAATGCAAGAGGACCTCTTCATTAGACAGTTATAAAGATTTTGTGTTCTATTTTATTCTGTTCACGCATTGTATATTTCATACAGGCATACAATAAACATAAATTGGATTCATATAATCTGTTATCTGTAAAGTATAAAGTACTGTAAAGTGTAGTTGATTGCACAACTACAATTTAGTTGTTTAGTCAGCAGAGGGAGCTGGAAACAAGGAAAACATGATAGAGTAGGTTGAAATCCCATCAGTAAATCTTAAACTAGGTCTGCTAAAGCAATTCTGCTTCCATATTGTACTTTCATATGTATTAAAGAATTTACTCAATCA +>BT130104.1 Oryza sativa clone RRlibC00934 mRNA sequence +CCCTTTCATCCATCCATCCATCCATCCATCCACATAGCAACGACCTCTCACAATTCACGAATCACCACTGCACACTACACTAGCGGCAGCAAGGATGAAGCTTATTGGCAGCGGCAGCGGCAGCGGCGGGCAGAGGAGAGGGATCGCGAGGGCACTCAAGGAGCACAAGGCGAGGCTCTACATCATCCGCCGATGCGTCGTCATGCTCCTCCGCTGCTGATGATCGAGCTGAGGATGGCGTGCACACGCCTTAATTTCTTCTCGGTGGAATATCTTTCGCAGTTTTTCTCTCACCAATTCACCATGGATCGGTGGGGGCGAATGTTTGTCCCTTGTTTGGGTAGATCTGTTTGGATCTGTCTCTCTTAAATTTGTACATACTGATGAGCTAGTGTAGACCATATCAATATAGGATGCAGATGGAAGTAGTATTAGTTAGTATGAGAGGTAAATTAGTTAGTTGGGGCTGAAGAATTGGGGGTTGTCCTCTACCCAGGACCAATTTTGCCTTGTATGATGATCAGAAGTGGGAATGCAAGAGAAATCTACATGATTTACAAAACAAAAAAAAAAAAAAA +>XM_020061516.1 Plasmodium coatneyi Cleavage and polyadenylation specifity protein partial mRNA +ATGAACAACATTAATATTGTGTGCCTGGGTGGGGCGAGCGAAGTGGGTCGTTCGTGCGTAATTATAGAAAGTGCGAACAGGTCAATTATGTTGGATTGTGGAATTCACCCTGCCTTTATGGGGATTGGCTGTTTACCCATCTATGACGCGTACGACATTTCGAAGGTGGACTTGTGTTTAATAACACATTTCCATATGGATCACAGTGGTGCCTTACCGTACTTGGTTAACAGAACCCGTTTTAAAGGAAAGGTATACATGACCGAGGCGACGAAAAGTATCTGCTATTTATTATGGAACGACTATGCAAGAATTGAAAAATGTATGCACATGATGAATAAGATGAAAGGAGGTAGGAGTAAAAATGAAGCGGGTGAAAATGAAACAGACGAATATGGAAACAAGGTTAAAAGAGGAGGACTATACTCCAGTGATGAATACGCAAGTGAAGACAATGAAGACGATGATTATTACCAAAGTTACATTTGCGAAATGGGAGATGGAGATATAAAGCATAATGTACTGTATGACGAAAATGATATAAACGCAGCGATGAAAAGGATAGAAACTTTAAATTTTCACGAACACATAGAATTTGAGGATGTAAAATTTACAGCATATAGAGCAGGACACGTGATCGGTGCGTGTATGTTCCTAGTCGAAATAAATAATATACGTTTTTTGTACACAGGAGATTATAGCAGGGAGGTGGATAGGCACATTCCCATAGCGGAGATCCCCACTATTGATGTCCACGTGTTAATTTGCGAAGGAACCTATGGAATAAAAGTGCATGACGATAGAAAAAAAAGGGAAATTCGCTTCCTTAACATGATTACCAGTATATTAAATAATAAAGGGAAAGTGTTACTCCCTGTGTTTGCTTTAGGAAGGGCTCAAGAATTGCTGCTAATTATGGAAGAACATTGGGAAAGAAACACACAGTTGCAGAAAATCCCCATTTTTTACATATCCTCTATGGCTACAAAATCGTTATGTATATATGAGACCTTCATAAATTTGTGTGGAGATTTTGTAAGGCATGTATTAAATGAAGGAAAGAATCCTTTTAACTTTAAGTTTGTAAAGTATGCGAAATCTTTGGACTCCATTTTGAATTATTTATACCAGGATAATTATCCGTGTGTTGTTATGGCTTCGCCTGGTATGCTACAGAATGGAATTTCGAAAAATATTTTTAACATCATTGCACCTGATAAGAAGAGTGGAGTTATCCTTACTGGGTATACAGTCAAGGGAACTTTGGCCCATGAGTTAAAAACTGAACCGGAATATGTCCTCATTAACGACAAACCGGTTAAGAGGAGGTGCCGCTTCGAGGAAATTTCCTTCAGTGCTCATTCTGATTTTAATCAAACTAAAACGTTTATTGAAAAGTTGAAGTGCCCAAATGTGGTTCTTGTGCATGGCGATAGGAATGAATTGAACAGACTGAAAAATAAGCTAACGGAGGAGAAAAAATATTTGTCCGTTTTTACGCCCGAGTTGCTGCAGAGGCTGACTTTTCGCTTTGAGCACAGTGACCACGTGGTGTCCCTAGGTCGGCTTTCCCAACATATTAGAGGGAAGCACCAACCGGGGGATGAAAAACTGAGTGACAGAAATGGAGAGGAAAAAACAATTCCCAACGGGGTGGATGCCATAATAATATCGGAGCCGAAAGCCATCCCGATTATGATTTACGCCAAGGATATTTATGAGTATACAAATTTGAAGACTGCGCTGATCGACCAGACGATTAGCATAAAATTCCCCTACAAGTTCGAGCTGCTGTATCATATGTTGAAGGGTGTGTACGAGGAAACGCATATGGAGGGTGAAGGCAGCGAAAGTGGGAATAGTAACAATGGTGATAATGGTGTCAATGGTGACAACGGCGGAGCGGTCATCTTCGTGCAGGACGTAAAAATCCACCACTGCAGGAAAGAGAAGGTTATTAGTATTAATTGGCTTTCAAGCCCAGTGAACGACCTAGTAGCTGACAGCGTCAATTTTCTAATTCTAGAATTTCTCGACACCATGAAGAATAACAACAACCACCTGCCCATCTGCGACGAAGTAACAGATGATGAGATTTATGAAATGATCATTTCGTATGTGCGGGAAAATTATACCAATGTGGAGAGATTTTCCAAAGTGGAGTTGAAAAGGTTTCTTTTGCAAAATGGCTGTGACAGTCCCGAGGGGGGAAAAAACGAAAAAGCAAATGCTTCATACACAGATGGGTTGACCCATTTGAAGAATGCCCAATCGTATTCATCTGGCAGGGTGAACCAAATCGATCATAACAGAATGGAAGAAGGGGTTACTTTACACGAGGAACATGATGAACAAAGCGGGGATGGAGACAAAATGAAGAAATTCCGCGCCCTTGATAAAATCTTATTCGACTATATCGCGGCAGATGCTAGTTTAGCCATGTCCACTGATGAGGAGGAACCCGTTGTACCGGTTCTTAATGGCGGGATGCTTTATGAAATACTAAAGTTTGAGGTGAAGGATAATAACAACAACGACGTTAATGTGTACGTCGATATAGACAACCGGGAAGTCATCTGTGAGGAAGTTACAATTTTGTCAAAAATTAGAGAAATTCTAAAAAATATAGAGGAGTCGCTATTGCCCATGTGCTTCTAA +>XR_001369330.2 PREDICTED: Pelodiscus sinensis uncharacterized LOC102457183 (LOC102457183), transcript variant X2, ncRNA +TTTCTCTAGTGCTCAGTCATTGCCTAGTGCCAAGGCTCAAGATCTTTCTCTGCCCTGAGCTGAAACCGTTGCATTTGTTACATTTGTTCTAGAGCCACTGGAGCATTTCAGGCCATTCATCTCATGAGACACGTGAACTAAAGACACTTTGCTGGCATGGAGATGGCCAGTTCCTGGCACAGGACCTTTCCAATCAGTACTGCTCTGCATTGCAAGGTGCAGAAGGAAGCAGAATTGCAGGAGTTTGGTCAAATCTCCAGGAGATCATAACAAGTCCATAAGAGTAAGTCACCACTACTTGCAGGGATCTCGTGTGGGGCTGGCATATGCTTCCATTACTTTGTCACGTCTGCTTCTAGTCGGGTGCGTGACTGCAAACATACGAGAAATCTCTCAGAGTACCTCGCCTGCATTTTCTCCTGTTCCCAGACTTCCTTCTTGTGAAGCAACTGGCCCAACAGCTACTTGGCTTCTTTGTGATCTTGAAGACACTTTACACTTAGATTTGATCATCACCTGCTGGGTTATTTCCCCAATCCTCTCGTTTATGCCTTCACAATGGTGATTGTGTTTCTAGAAGCTCTATGTGCAACATCTGGCAAGACACAGGCATCCAAGATGGCTCCGCCTGACTCTATTCTTCATGCCACGGTGCCTTTGCCTGGCTTTGCCTTAATAGTTTAAAACAGCTGGTCACAGATGATTCAGGAAAACATGAAGAGGAAGCGTTATCTGTGTGTGTAGAGTACAGGCGCTACGGTTTTTGCTTCATTCTTCTTTAAAGAACCAGTGCGAGACTCATGTTAGACATGGGGAACAATACCTCCTACGCTACAGCATAGGGAGAGAAAAACACTTTTGGGGTTCTTGCCTTTATGTTCTAGTCCATAAATTCTACTTTGCTATATATAATCCTTAGCTAGAGGTACAGGCAGTCCCTGGGTTATGTACAAGA +>XM_048564862.1 PREDICTED: Pyrus x bretschneideri LIM domain-containing protein WLIM2b (LOC103942600), transcript variant X2, mRNA +GCTTTTTATTTATATTTTATAACGCCTTTAAAATCTCTCCCATCGGATTTGGAGGGGTCTCTCTCACGCTCTAATCTCTGTAATTTCATCGTCGTCGTCTTCCTCCACTACGCCGCATCCGCTCCCTGCAAAAAGCCTTCGCCATTCACCGTCCGCCATCTCATTCCTTCTGTACGGAAAAGGACCCATTTGCGCTCCTCACTTTTTTTCGCTCTTTCCATTTTTCAAAATCTTTTCTCTTTTATTCTACCCTTTTTATTTGTCGAGATTTTTTAGCTTCACTCAGTCAGCCTTAAAGCTTTTAAGGGTACGCTTTTCTGACTCTGAAGAATGTTTATTGACTTCAATTTATAATCTCTGCTGCCAGATCTCCATTCATTTGTTCTTGCATTTGTGTGCTTTGAAGGTGGAAGCTTAAGAGGTGGTGGTCTGGGTTGGGAGAGAAGAATCAGATCTAGAAGGAGAAAGAATTATGTCTTTCATTGGCACCCAGCAGAAATGCAAGGCTTGTGAAAAGACAGTTTACCCAGTGGAGGAGCTTTCTGCTGATGGGATTTCCTACCACAAGTCTTGCTTCAAATGCACCCACTGCAAAGGGACTTTGAAGCTGAGCAATTATTCCTCAATGGAAGGTGTCCTGTACTGTAAGCCTCACTTTGAGCAACTGTTCAAGGAGACTGGCAATTTCAACAAGAACTTTCAGTCGCCTGCAAAGTCAGCTGAGAAGTTAACTCCAGAGCTGACTAGATCACCTAGCAAAGCTGCTAGCATGTTTTCTGGAACACAAGACAAATGTGCTACTTGTGGTAAAACAGCTTACCCATTGGAGAAGGTGACAGTGGAGAGCCAGGCCTACCACAAGTCGTGTTTCAAGTGTTCTCACGGCGGCTGTCCTATTACTCCCTCAAACTACGCCGCCCTGGAGGGCATTTTATACTGCAAACACCATTTCTCCCAGCTTTTCAAGGAGAAGGGGAGCTACAACCATCTTATTAAGTCTGCATCAATCAAGCGCACAGCAGCTGCAGCAGCAGCGGCAGCAGCAACAGTAGCCTCCATTCCAGAAGCATAAATTCCATATTTAAATGTTCGATTACATGGCTTTCGTTTGTTTGAGAGTGTTGCATCCCTCTTCAACCTCACGCTTTTCCATGGCGGAGTGAGAAAACTTGGTTCTTCTCTTTTGTATTTGGCTCATCAATCTTGGGCACATTGTTGTGTTTTGCTTCATGTATGTGATTCTGGGTCCGGCAGTTAGTAAAATGACCTTCTTCGGGA +>MG270501.1 Uncultured bacterium clone OTU7751 16S ribosomal RNA gene, partial sequence +GTGAGGAATATTGGTCAATGGGCGGGAGCCTGAACCAGCCAAGTCGCGTGAGGGAAGACGGTCCTATGGATTGTAAACCTCTTTAGGCGGGGAGCAATGCCGGGCACGCGTGCCCGGAGGGAGAGTACCCGCAGAATAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGATTTTTAAGTCAGCGGTAAAATGTCCGGGCTCAACCCGGGCCGGCCGTTGAAACTGGGGATCTTGAGTGGGCGAGAAGTATGCGGAATGCGTGGTGTAGCGGTGAAATGCATAGATATCACGCAGAACTCCGATTGCGAAGGCAGCATACCGGCGCCCGACTGACGCTGAGGCACGAAAGCGTGGGGATCGAACAGG +>MT590786.1 Dendriscosticta praetextata isolate 16_52820 small subunit ribosomal RNA gene, partial sequence; internal transcribed spacer 1, 5.8S ribosomal RNA gene, and internal transcribed spacer 2, complete sequence; and large subunit ribosomal RNA gene, partial sequence +AAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTATCGAGAGAGGCGTCCCGCCTCGGGGGGGGCTTCCGGCCCCCCGACTCTTCACCCGATGGGTACTCAGCAGCGTTTCTTTGGCGGCGGCTCTTCCGCCGTCCGAGGACCCCCTCCACCACTCCAGTGATTGATGTCGTCGGAGCGCGAAACGAATGAACGCAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCGAGGGGCATGCCTGTTCGAGCGTCATTACACCCGTCAAGCCGTGCTTGGTGTTGGGCCGACGTCCCGTTCCGGGACGGGCTCGAATGGCAGTGGCGGCCCGGCGTGGCTTCGAGCGGAGTAGACGTATGCCGTGTCGCTCGGGAGACGCGTCCGGGTCCGGCCAGTCAACCCTTTTTTTTTCTATGTTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGCATATCA +>CR627091.1 Homo sapiens mRNA; cDNA DKFZp779E152 (from clone DKFZp779E152) +TGTGCAAAACCCAGGAGCCACCCCTGCCAAGTGCTGGGCGTGTCTGTGGAGCAGATGAGGCCACAGGCACTGGCCACAGGACTGCGCTGTCTGGAGAGGGATTCGCACACATTTGCAGGGGTGCAGGGCTGGTGTTCTCAGGATTTTGCCTGGCTTCTCTGGATCCGGAGGTCCTGGGAAGGTGGCTTGGACCCTGGTGGGCGGAGTCTTTGAAGTGCAGTCTGGAATCTTCCATGCACAGTTGGGCGACCTGGACAGTGCCCACTGTGTTCTCTAGAGAGTTCCTCAAGGATGCAGCCCCTTTGTCCAGACACTGTTGCAGGAGGCAGGGAGGGAGGCCTGCCCCATGTCCCCTGGATGGCAGGATGGGCTCCCACCTTGTGTCTGGCTGGGCTGTAGTGTGCGGGGCAGCCAAAAGGCACCCTCCGGGTAATCAAGGCCTACCCCACATGGGGACTCTGGTGAGAACCGGGCCTCCACCGACCCCCTGTCCAGGGTGCAGGAGCCAGGCCCGTGCTGTCAGCTGTGTCTGTTTGTCTGTGGTTTCCCTGTGGCTTCATGGCACATGCAGGTCTCTCTTCATGCTTTGGGTGTGGAAGCCGTCGTCAGCTGAGAGTGTTCTGTGGGTGGGTAGCTCTCCTTCCTCCTGAATTTGGGGTGACCTTCTGTGTGGAGGCCCATGACGGTTTCCCATGCATTCTGGGGCTCTGGGATGCTGTGGGCACGAGTTCTGGAGGGGTCTGCACACCTAGGTTCATCTCACGGGCCTCGGGGTGGGCAGAGGGTCCTGGACTGCAGGGACTTGCCCTTCTTTGCAGCTTTGTGCTTTGGTGGTAAAGAAAGGGCTGTGTCCTCAGCCACACTGGGAGCTGCTGCCCTTGCGTGGAACAGGAGCAGCTGTTTGTGGGCAGTCCAGGTGTGGGCTGCAGGCGGGTCGGGGTGGGCTGCAGGCAGGCATTTAAGGAAGTCACAGCTCCAGGCACCAAGGAGGCAGTGGCTGCTGGCCCTGTCCTTTGCTGCATTTCTGTGGACTCCTAGCCCAGGGAATGGAGCCCTGGAGGGTCCCAGGGTAGTCGGTGTCACCTGAAGTGTCCCAGGGACACCTGGTCCTCTGGCTGATGGGGCCGCCCTGTGGGGTAGGCCAGGCCCTGGCTCTCTGGCCCTCAGGGCAGGGTGCGGGTTCCCCACTTCCCCGGCCCTCACACACACCCTTCCAGCCACCCGCGTGAGCATGCTCCAAACACGGCCTTCTGCCCTTGCCTTTTCTTCTCCTTTTGCGTTTTAAAAATCAAATCAGCGGTTCGGAAGGCCTGGAGCTTGGAGGACTCACGCAGAGGCGGCCTTCTGCCTGCCCTCAGGGGCTCCTGAACTTCCCAGAAGCAGCCCTCCCTCCCAGGCTGAACTTTCTGTCTCAGTCCCCGCACTTTCCCAGCTAGGCGGGCTCCTTGTTCCTGCCCATTTTACTCCAGAAGCGAAGCAGGCAGGCCCGGGTTATCCTGCAGGTGCCAGGAGCCCCCTTGGCCAAGCTCCATCTGTGCATAATGGGGGCTCCAGTGGTTTGGGGGGTTGGTCCATGGGAGAACTGGATGTTCACCAGGGGTCAGCATTGGCCTTGAAGTGTGGAGAAGGGTCATCTTGGCAGAGGTGGCAAGGTGGTGAGCCCCTGGGGCTGAGCACAGGTGCGTCTGGTGAGAGGGGCCTGGCCATGACCGCAGTGACTGCTCTTCACTGTCACCTCCTTTGCTCCTCAGGCCACCTGCGCAGAGGGTGTGATCCTTGCATGACTTTGCCATTGAGGAAATGCAAGGGTAGAAAGTGCAGTCTCGTCGGCCGCCTCGGCCTCTAGAATGCCCAAGCAGTGGTATCAACGCAGAGTCGCCATTATGGCCGGGACCACAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA +>JN907114.1 Uncultured microorganism clone GF13U7304JJ6AB 16S ribosomal RNA gene, partial sequence +GAGTTTGATCATGGCTCAGAACGAACGCTGGCGGCGTGGATAAGACATGCAAGTCGAACGGGAGAATTGCTAGCTTGCTAATAATTCTCTAGCGGCGCACGGGTGAGTAACACGTGAGTAACCTGCCCCGAGAGCGGGATAGCCCTGGGAAACTGGGATTAATACCGCATAGTATCGAAAGATTAAAGCAGCAATGCGCTTGGGGATGGGCTCGCGGCCTATTAGTTAGTTGGTGAGGTAACGGCTCACCAAGGCGATGACGGGTAGCCGGTCTGAGAGGATGTCCGGCCACACTGGAACTGAGACACGGTCCAGACACCTACGGGTGGCAGCAGTCGAGAATCATTCACAATGGGGGAAACCCTGATGGTGCGACGCCGCGTGGGGGAATGAAGGTCTTCGGATTGTAAACCCCTGTCATGTGGGAGCAAATTAAAAAGATAGTACCACAAGAGGAAGAGACGGCTAACTCTGTGCCAGCCGCCGCAGT +>XM_019753900.1 PREDICTED: Rhinolophus sinicus cytochrome c oxidase assembly factor 5 (LOC109459430), mRNA +TTCCGGTTCTTTCCTCCGGACGTTGTTCGCTCGCAGCCGGGTCGCCGCGGTTGCGGACGGAAGCGGTGGGGACGGCGGCGGCCGAGAGGCGCGGCCATGCCCCGGTATTACGAGGACAAGCCGGAGGGCGGCGCGTGCGCGGGCGTGAAGGAGGACCTGGGCTCCTGCCTGCTGCAGTCGGACTGTGTGCTCCAGGAAGGAAAATCCCCTCGGCAGTGTCTGAAGGAGGGAAACTGCAAAGCTTTGAAATATTCATTTTTTGAATGTAAAAGATCAATGTTGGATGCCAGATCAAGATTCAGAGGAAGAAAAGGATATTGACACTACTATGTTGAAACTGAGCTGAAAACAACAAGGGATTTTTTCTGGTCATTAAAACAGAGAAGCCAAAATAGGAAACATACTTTTTCTCACATCCGTTTGGTTAGACCAGTTTTTCCCTCCGTGGGACACTGGAGAAATGCATGAGTTCTAGTTTTGAATATGTATAAATGATCCTCTTGCTCTAAGTTATTTTTAGAAGAAAAATGTAATGGATGAGTTACGAGCTCGGAGTATGAGAATTGTTCTGAAGCACAAAGAATGGAAAGGTTGTTATTTTCAAACCTGACTCCTCAAATGACAATTAGTACATCCTTTGTGAATGTTATCAAGGCCACTGATGGGACTGTTAAAATGAGGAACATGGAGCCTGGGGAGAAGGTATCTATTGGGAAAGTTTAGGATACAACTTTCTGTTATTCATTCTGTCCTGTTTACTTCTAAAATAAACTGTGTTTGATTCCTGGGA +>XM_052447470.1 PREDICTED: Populus trichocarpa kinesin-like protein KIN-10C (LOC7454519), transcript variant X5, mRNA +TTTGAAAAAAAAAAACAGAAAAGAAACAGCAGAGCCCTTCCTTCTTTCGACGTCTCTCTTTCCTTCTTTCCTTTTTTATTATCATCAAATTAATTACTACAAAATATCATCCATTTCAATCTCTCTCTCTATATCTCTATCTACGAATTCAAACACTCTCTCTCTCTCTCTCTCTCTCTCTCTCAATCAACCAGGTAAAGAAGAAGAAGAAGCAGAAGCAGAAGCAGAAGAAGAAGAAGAGTAAAGATGAGTGGCGTACCAAGAAAGCAAAACCTCAACCCCAAGGTTCGCGTCATTGCCAAAATCAGAGGTTCCTCACATCTTGACGGTCTTTCAACTTCTTGGATTTCCGTTCACAATAACATACGTGACGGCATTTTTTCTCACTCTCTCACTTTTTCTCTTGGAGACCGACCAGTTGCTACCAGTGGTGGTGGTGGTAGGAAGGAGGCTTATGTGGTGGATTATTGCTACGAACAAAACGAGAAAAATGATTTGGTTTTTGAAAGAGAAGTTAAGCCTTTTATTAATGAAGTTTTTGATGGCCGTAATGCCACGATTATTGCTTGTGGAGCAAGGGGCACTGGAAAATCCTACCTCTTTCAGGGTACGGATGATGAACCGGGTCTGACAGTGTTGGCTGTGGATGAAATGCTTCGATTGGCTGCGGATAACGGGAAGTCCATTGCCGTTTCCTTTTATGAGGTTGATCAAGATCATCATGTCAAAGACTTGTTGGATCCCAATCGACAACAAGTTTTTGTATTGAAGGATGCTCATGGAAAAACACAATTAAAAGGACTTTCTCAGGTTTCGGTGACATCCGTGTCTCAATTTCACAATTTCTATGGTGGTGGGACTAATCCACGTAAATCGATTCAGAAAGCAGTGACTGAACTTCCCAAGAGAAGTCATAAAGGGTTGATAGTATATGTATCGTCTCATGGTGGAGAAAAGTTGGACGTTTCTGTCAGCAAATTGAATTTTGTTGACTTGGCAGGTTATCAGGATGCTAGAAGGAAGAGTATTGATGGACATAATTTGGTTGAGAGTACAAGGAATATTAATAAGTCCATTCATGCCATTCATAATGTTGTTTACTCTTTGAAAGCTAATGAAACTCATGTGCCATACCGGGAAAGTAAGATCACTACCATGTTGCAAGATTCACTAGGAGGGGCTGGCAGAATTTTGATGGTCACTTGCTTAAACCCATCTTTTTGCCAAGAATCTATTTACATGGTGAAATTAGCATCTCGTTCTTGTCAAGGAAGTAGTTGGGCTATCACAGACTCCACAAAGAAAGCCAACAGCTCAGCAAGACCAATGGTGCCTTCTTCACATAATAGCCGGATGCTTGGTAGTGTTTCCACATCTGTGAAGAAACAAATTGTGTCTCGAGGGCACATTTCTGGAAAAAAAGCACACTGTTCAACTTCCACACTGAAAGCTAGGAAACTGTTTGATGAGTCAAGTGATTTGATATCTCAGAAGATTACTGTGCAGCCAAGTTCCTCAAACAATGTTCCAACAGTTGAATCTGTTATGCATGAAGCGGACCAGCTCACTTCAAATGTTGCCAAAGAAGCATCATCTTTGGAAGAAGGTGTATCATTGTTCACTCATGAGGATTCAAACTCTGTTTCTGTGGATGTTTCTCCTGTAGCAGCAATTTCTAGTACTTGTGAAACTACAATACTTGATAAGGAAGTTTCTCCTGTAGCAGCAGTTTCTGTTACTTGTGAAGCTACAATACTTGATAAGGAAGCTTCTCCACTAGCTATTTCCAGTACTTGTGAAATTACCGTACTTGATAAGGCTGACGAGGACCAAAACAAAACTGTGCTTTACACTGGAGAGTTATCTATGTTCAATGAAGGTAAAAAAATAGACAAGGAAAACAACAGTTCAATTGTCAATCAAGGTGGATCGCCACCCATTAGCGCACAATTGCAAGAACTATCAAACAGTTTGAAGTTACTATGTTCCTCAACCCCATCGTGCATGGATATAACACTAAAAAATGATGCATTTCACAATCAAACTTCAACTGATATCGGGGAACCAACAACTCCCAGTTCAAGTATGAGAGTAACAAATAGGGAAATTACAAGCTTTTGTAGTCCATGGGAAAAATTCAACGCCCGCAGCACTGGGATGAAGAACTCACTTGTTCAAGATTATCTTAGATTGTTGAACACAGCTGACAAGGAAGAATTGAGGAAATTGAAGGGTATTGGAGAAAAGAGAGCTACTTCCATCCTTGAACTTCGAGAAGATTGTCCAGAGCCATTTAAGAATCTTGATGATTTGAAAGACATCGGACTCTCAGCCAAGCAGGTAAAAGGATGGCTTAAAAAGGAAGTTGGGGGACTCTTTGATTAGCATGGCAGCTATGATTAATATGTTGGTTTGGAAGATAATTTACTTTGGGCAACCGAAAGTTGCTTTGAAACTTAATTAGAATTGATTGTAAAGTGGTTACTATATATATATAAATTTGGCATGCATTATTATTCA +>XM_013532536.1 PREDICTED: Lingula anatina FMRFamide receptor (LOC106157047), mRNA +TACTTATGAACTCCGCTGTGACCAAAAAAAGGAGAAATAAAACACAAAGAGAAAACTGATATTTAAAAAAACTGTAGGTAGAATTGACCTCTGGAAGTGAAAAAACCAGCACCAATATAAACTTTTGTACCTGGACTACCTTATCTGAAGTACTGCTCTGAGGAAAAAGAGTCACCTGTCAAGAATGGACCACTCGGCATTGATATTGGGAACCTTGATTCCAACGGCTGCTGCTGAGCCACAGGGAAATCTCACTGCTGAACTTTACATGGCAGGAGGTGGCGAAAACCAGTTTCCATCCCATGACTTGAGCTACCAGGACAAGCAGCAATGCTTTAATTATGCCAATGGCTCTTTTAAGGATGATGAGCGACTTGAGCAGATACAGTTTGTGATGTTTGGAATAATCTTGCACATCATTTGCATATTTGGAGTTGTTGGCAACCTTGTTTCGTTCTTTGTCCTCAGCAGAAAAGAAATGCGCTCCTCTTCCTCCTGCTATCTTATGGCTTTAATGATATTCAATACAGTTGTCCTACTGACTGCATATTCCAATGATGTTATGACAGGTATTGGAGTGGGAAGCATGTATGGCGCTGTTTCCAACTATATCCTGACATTTGGTTCAGCTGTTGGTCAGTGGTGTTCCGACTGCAGCACTTGGTTGACCATTGCCCTCACTGTAGAACGCTACATATTTGTCTGTCACACTTTTCAAGCTTCAACAATGTGTACCATGCGCCGAGCCATCATAGTTATTGTGTTTTTGTCTATTGGGATGTTTCTTTATGATATCCCATGGTTTCTGCGGCAAGAAGTGAGAAGTGTCACTTGTCCATTTAACGATGAGCCTATCACATACATTGTGATGCGTTCTGAAAAGCATCGCCCTTCAGATATGTACTATAATATACAGCTTTTGTATATTATGCCTGCCTTATTTCTCATTGTGCCCATATTTGTTTTGACAGCGTTCACAGTAATCTTGTTACTTGAGGTGCGAAAGTCAAATAAGCTACGCCAACAGATGTCTACCACACAGACTGCTGAGATCAATGTCACAGTTGTTCTCATCAGTGTTGTTGTGGTTTTTCTTATTTGCACCCTACCAAATTGTATTTTTGCCATTACTCGCACTGTTAAAAAAATTGAAAAAGCAGACGACCCATATTTCGACATTTACTTCACTTTCACTGGAAGAGTCTGTTTTATTGTAGCAAATGTGTTCTTTTATTCAAATTCAGCTCTAAATTTCTTGATTTTTTGTACAGTTGGTCAAAAATTTAGAAAAACATTCAAGCGTATATTTCTTCGACGCTGCAAGTTCTTGACAACGGAAGTGGTTCGTTACAGCAGTGTGAGTGTTGGCTCGAGAACTGGTTCAACCAGGGCAAGCTTTTATCAGACTGAGACAAACATATAGTCAGGTGACAAGTTCTATAGTTATTGGAAATGCAAGAGAGACTGATTTTTTAAATGAAAGTACTATCATTTCAATATTTATAAACATGATTTATAAGTTGCATTGATACTATCATTTTGATTTTGACAACATATATGACCTGATTCTTTTAGAGTTAAAAAGGGTCATTTGCCCATGAATTGATGTGTTTTAATCAGTTTATAAAAGTACAATTAATGAGATTTGATCTATATTCAGGTAGCAGAATATCTGTGGATTTTTTGTTTCAAGGCAACAGTTTCTGAACATGAAAAGGTTAAATTAACCAAAGCAGAGCAGGAAATGTAACTTTTGATGCTATTGATTTTGCAGCTCATGCAAAAATGGACAAAAAATTCAAATTTCTTTAAAACTAACATCAGTTGTGGTAAATCGATTTCCCAGGACGTCACAGTTGGTAGAATGATCCAACAAAAACGTCATATTACAGGAAAGACAAGGTACTAGAAACTAGATTACAGAATGGAGTTCAGGTTCTATTAAGATCTATATTTGTTACTGAATATAGCAGAATTCTAAATTTAAAGGTGCTTCAGAATTTTTTGTAACATGTTGATGGTGTTATCACCCATTTACTACGTTGTGGGTAATTTTTACGGTAATCGTTATTTCGATTAGAGCAAAATGCTTAATGTACTTTGTATACATGTAACATAATTTATACCACTGCTCAAGCAAGAAACAATGGGTCACACCATGACCTGTTCCAAGCAGAGTCGTGGCACACATGGTTGAGTATTGATTCCATTTCTAATTGGTTTTAAATCTGATAAAGCTCTCGTGCTGAAGCTTAGATTTATGTAAAATGGAGGAGTATCCAATTATTTCCACTATTTTACTTAAAACTTTGCGATCTTTATCTTTCATGTTATTGTCACTGCAGAAGTGGTCAAAATATCACAGCTGTTCATTAATGACATGTTTCAAATATGTATCACGAGGCACTTGTGCTTTTTTTTAATGTGCAAGTGACGTGAAATTGAATTTTAATTTAAATATTTATTAGGTAGGTCTGTATTTTACATGATTTGCCAGTGTAACGGTTGTATTTTAAGCTACTTTGGCTGAATGTACTTTTTATGTAAGACTATAGTAAAATAATTAAGTCTGATATTGTTTGATAAGTTGGTGTGGCAGTAGATTGTAATTTTTGTCGATCTATTTAGTTTCTATGTTTGCTTGTTTGAACTTTTCACCTAAAAAATAAATAGTTATGTTTATCATGATCCTACCTGTTTATTGTGATTCTCACAATAAGTA +>XM_030059219.1 PREDICTED: Myripristis murdjan zinc finger and BTB domain containing 5 (zbtb5), transcript variant X2, mRNA +AGGTCATGGATGCGAAGAATAGCGTCACCTTGTGAGTCTGGCTGTAAAACACAGTCTGGGAGAGGAAATTCTTAGGGAATATTATACATACATATTCATACCTGAGCGGTGGGGATTGTTAGCTAGTAGGCTCCCTCGTACAGTTTTTGGTGAACATCTGTTTTAAACACAACTTAGCGTGTAAACAGATGTGTGTGTGTGTGTGCTGAAGCTGCTCCAGCCCGTGGATGTAACGGCAGCTCCAGCCAGACAACCGTCGCGGACGCACAGCCACGGCAGTGCCCCCGCCCCTGCCCTGACCATGCACCCTACATACACCGGATAGAGGATAACGGTGGGACACGGAAAAGATTTGGATAAACTTTTGGGGTTTTATCGGAAGAAAGTAGCCTTGCGATACACAAACATTAATCCTGGTGGCCGCATGTGAGTGCTGCTTGAAAGCGACAACTCAGCGAGCTAACGGGCTAGCCTGCTAATCGCTAGCCAGCTAGCTTTGTTAGTTGGTGGTCGGGGGCCCTGTTGTACTTCGCCTTACACTTTTACCTTCACCTGTTCCGGACAATTCAAGGAACATGGATTTCCCAGGTCACTTTGAGCAGATCTTTCAGCAGCTGAATTACCAGCGTGTCCATGGCCAGCTGTGCGACTGTGTTATAGTCGTGGGCAGCCGTCACTTCAAGGCCCACCGCTCAGTGCTGGCAGCCTGCAGCACCCACTTCAGAGCCCTGTTCACTGTTGCAGAGGGAGATGCTAGCATGAACATGATCCAGCTGGACAGTGAGGTGGTGACAGCTGAGGCTTTTGCCGCCCTGGTGGACATGATGTACACCTCAACACTGATGCTGGGAGAGAGCAATGTAATGGACATCCTCCTTGCAGCCTCACACCTGCACCTCAACAATGTAGTCAAAGCCTGCAAACACTATTTGACCACCCGCACCCTGCCCATGTCCCCATCATCTGACAGACCCACCCATCGCCACCCTCAACAGGACCAGCCGAGACACAGGCAGCAGCAACAGCAGCAACAAGTAGCAGATTTAGCAGTGAATCCTAATCTAGCAGCTAATGCCAATCTTGCAGCTAATGCTGCTACATCCAGGTTGCAGCGCTCCTTCCTTCTGCAGCAGCTGGGGCTGAGTTTGGTGAGCTCTGCCCTAGGGGGGATGGAGGAAGATGGGGTGGGCAACGTAGTTGGCAATGGAGTAGTTGAACAGAGAGCTTCCTTTCCAATCAGACGCTTCCACAAGCGTAAGCCCTCTCATGCCCTGGCCATATCAGATGACAGACCTCGGCAGAGGGCGCGTCCCTCTGCCCCTCCTCGGGGTTTGCTGGGAGAGGAAGGGGTTAATGTTGAGCGGGAGGAAGGAGCACTGCTCTCTCCGGATTCCCATAAAATGGGAGATGAATCGAAATTGGATGCTGCAATTGCGGGCCTAGTGGGGGTGTCCCCAGATGATCCTCAAATGCCTAGCCAGTCAGACAGTGGTCACTGTGAAGGAGAGGACTCAGGGAGGATGCAGGGAGGAGTGGGGAAGGAGGAGTACATGGAAGACGGGGATCACCAGGACAATAGAGTTGGGACTAAGATTAAGTCTGGGACGGAGGAAGAGGAAGAGGTGGAAGCACAGGAACAGAAGGTGGTGGTAAAACGAGAACCACTGAGCTCCCCTGAGCCAACAGATGAAACCAGTGATGTAACATCACAGGCAGAAGGCAGCGACACAGCTGCGCCCGGAGGCCAGGAGGAGGAGGAGAAGGTGGAGCTGAGCCCAGAGAGCAGCGACCGCAGCTTTACCTCTGACCCCCAGTCCAGTTCTGACCCTCTGCTTAAGCCCAGCTCCCAGCTCCTCCTCAAGACCAGTATGGGTGGAGGCGCTGGGGCTGAAGGAGGTGGAGGAGGTTTTGGGTGTAGCAATGGATTGAATGGCAAATCTGGTTTCAGCATTTCCAGTTTTCTCAGCCCTAAGGGTTTCAGGGGTGGCGAGGCAGGCTTGGTTGCTGGGGACGATGACCTCCCCAACACAACAACTGGTGATGCAGCCACACATCACTTCCTGCTTGGACAGGAAGCTGCTGGGACATCTGCCTCTGCTTCTAGCTCTCTCCTGCAATCCAGTTCACTGAACTGTGAGAATCATAGCAGTTTTGGAGACAGCCTCCAGGCTGATTCTCTTTTCCTTCGACCCCTGCATGACGGGTTGGGAAGCCCCAGAGGAAGTGGAGGAAGTGGTGGAGGAGGAGGGGTAGACCCCTTTGGTTTGGACTACCAGCGCTCCAGTCTGGGGCTGCACTCCCTGGCACGAGCCACAAGAGGGGCTGGAGGAGCCGCTGCTGCTTCTCTGGGCTACCCAGGCTACCGTCGCATAGCTCCCAAAATGGCCAATGGCATGGGAGGAGAAGGAGATGTGGGTGCTGTGCTCCAGGATGCTGCCTCCTCCTCCTCAAGTCTAGGAGGGCCCCTGCTTCTCAATGAGAGCGGTGGTTATGAGATGAACAGCGGCAGGCCCACTTCCCTTCCCCCTCAGCTGACACGAGCCTCTGCCGATGTGCTGTCCAAGTGTAAGAAGGCTCTGTCAGAGCACAATGTCTTAGTTGTGGAGGGAGCCCGAAAATATGCCTGCAAAATCTGTTGCAAAACCTTCCTCACCCTGACTGATTGCAAGAAGCACATTCGGGTCCACACAGGAGAGAAACCCTATGCTTGTCTCAAGTGTGGAAAGCGCTTCAGTCAGTCCTCCCATCTATACAAGCATTCCAAGACAACCTGTCTACGCTGGCAGAACAGCAACACGCCCAATGCCCTGCTATAGAACTGAGACAGCTGCATCAAAACACCATCTATTCCCCCGCTCCTTAGAGCAAATCATGGTATGGAACTAATCAGGCAAGCTCTCAGTCACAGTGGTGCCTCCCCTGCCTGTTCATGTGGCCTGTCATTTGTTTTGTTACCCACTCCCCTCTCCCGACACACACACGCACACACATACAAGGAATTATCCAGCAGCTGTCATTACCAGCTGTGATGTATACAGTATATGGAAGCCCCGCTTCCCCAGCAAGTTTGCCATCATTACTCTTCTGCTGCCTCTGGACCTCGCATCTTGGAAACTTCTGGGCTCTTCTTTTGGATGCGGTAAACCCCAGTTGTATGTATCCTTGATTCAGATATGGATTCCAGATATATTGCTTCTAAAAAGGAAGTATTAATCCAGAAACTGTTAAGCATCTAAACTTGTGTAAGAACTGGTGGTAGTTTTGTGCGTTCTTGATGTTTCTGTGTACTGTAGAAAGAGAGAGGGTCAAGCTCTATCCTGTGTGCTTGTTGCTACCTCCATTCCCTTAAGAAAGGGTGGAAAGCCGAAGATGTTAATGAGGAGGAGTTAGACCATTCCTCTTCTCGTACTAAATCAGTTCAAATCCATGTGAGATGTTTGACATCTGAAGTTGCCTTTGCGTACAAGCACCTTTTTAATCACCAGTGGTTTTGTTTAGGTTACAGAAGGGGAGAGCTAATTTGTCCCGGCTGGCTTTCTTTACTTGTAGTATCAGTGACTCAGAGCTCTTGCATGCAAAAATAAGGTTTGCACTGACAGGGCATTGGGTCTGTAAGTGACTTAGCTGACGAGTCACTGCTGTGGCCCATCGTGGATGGTGTAAGAGACTCAGATTGTGTTTATGTAATAGTCTGCAGCTGCAAAGATTTAAACAGACAAATCAGGTTTTTGCTCCTGAAAAGTTTTAACATGTTAACATAGCTAGCTTGCAAGCGTAAACTAGGTAGCACTGAGTGAAAACATACAGAAAAAAAACTCTTGTCGACATATTAATTATCTAATGTTTATTCCGGCTGTTGACCACTGGGAAGTTTTGAATGACTGTAACCAACTTCTTAACCATTTTGCAATTGCCTGTTGGAACTATTTATAATACAATGAAGGCACATCAGTCGAGCAACAAACAAGCATGAAAATCTGAGCATCTGTTCCCCCGTCCCAATTCGGCCCTTAAACGCTGACGCCCAGGAAATATACTGTGCGGCTGTAAACTACAAAAAGAACATTCCAGTGCTGCATCCTTTACACAGACATGTTGAGAAACATGTCTTTTCTTAGTAGTATGGTATATTTATATCAGAGTCCTATGGATGGAACTGGATTAAAAAACAACATAAAAGTTAAATTAAAGAAATAATGAGAATCAGCCACACATAATTTAAATAAATGGCGAAATTGTAAAATGTGTTGTTTGAGTGTTTACTCAGATTTTCAATGTCAGCTGTGAACTTTACATGTTTTCAGGGGGAAAACATTAATTGTTTGTCCCGTGGTTTAACCATGTTTCCCCATTTGATCATTTCATATTTGTGAAACAGTCCAATGAAATTTGTACAGTTCCAAATTGTTCAGATAAAAAGTGGCACATTCATTAATTAAGGTACTTAATTTAAAGCCGTATTTGTAGGAAGTTGGCTTCTCCTTTGCCACGCTCTCCGCTGTGGGTAATTTTGGTATCCAAGTGCCTGCTGGGGGCAGCTCTTGCTTACCAGCACTTTTAATTCCTTCAGTTTCAGTGGAACGCAGGTGGCTTTAACAGCCACTACCGCTCGCTTCAGTTGGCTCACTTGGTAATGGGACCTGGTTGAACTTAGTGGTGGTGAGTGAGCAAATCTATGATTGGTACCTAGGTTTAGTGTTGAGGGGTGGAATTGGAACAAGGGTTATCAAGTGTCCTGCAGTAAGCAAACCCAAACAAAAGTAGTACTTTGTCCATTTCTGATTTAAGTTTGAACTTGCAATAGAACAGTATAAAGTGAATATATACTCCTGTAAAAGCTCGTGAAGTTGCTCTCAAATGCTGACATGGTTTGATGTCTGTTGCTGGTAACACTGAACAGTTGCATCAGCAAAGCTAGACATTTACATCACCCTAATTTCTTAATCAGTTTAAGTTTATGTATCATGTTCATGTTTTCATCTAGTCAGCGATATAGTTATCCCCTCACAGCTAAATGAACTTCAGCTCGACTTGGCTCCCAGCCAGGCACAAAGGACTAAGGGTTGCAGATTGCAGGAGGCCCCCTAGTTGCTCCTGATTGGCTCTTTACAGTCAACAACCGCCAAATGTCCAGCCATGGCCAACTTTCTTAGCTGACAAGCTTGTTGACCGTCCAAACACCAGCTGAGTGTCTCTGGTCGCTCAGCTGTGTGGTGAATGAATGAACTCCTCGTGAGCTGTTGAGTGTGTTGCTGGTAATCTGAATGCATGGTAAGATTAAAAATGTGCCGACAAAGGCATCGTTAAGAGAAGGTCTTCGAATAGGTGGCTTTGAGCTGATGTGACTTCTGTTTGTTTTCATTTGCACTTTGTGTGTCTATGCGCGCAAGATTGTGTTTGTGTTTGAAAAGGGCAGTGATGTTGAGTCCAGCATTTTGTACTGAGAGGCAGAGTCAACCGAACTTAGCTGGTTGCAGACTTTTTTTTTTTTTTTTTTTTTTTTTGGTGTACAGCACTTGTTGAACAGTGCTTTCAAAGTGTAAATATGACACATTTGTGATGTCTGTCATTTTCACTTGGAACAGAAATATAAAAAACAACACATAATGAACTAAATGTTGTGTAAAAGTTTGCTACTCTACTTGGTATCAGTGCTTTCTACATATCTCTTATATGTCAAATGTTTCATCCATAACAAAACAAAGGCACTTAGAGACAAATCTTTGTTTTTTAGGATAGTCCAAAAATGTTTACTGGAATGTTGAACTATGTGAAAATATTGCTGTTTTTCAATTATCCAACTCTACATCTCTGATGTCTATTACAATAGGTGTCCAAGCCAAAGCGAGTTTGTTGCATTGTGGTCTTCTAACTAGGTGATTTTTTTATTTATGTCATTGAAGGAAAACCCAAAAGGAAAGACTTCTAAAGAATGGAAATCTAACTGGAAGTGTGGGAGTGTTTGTTCTGTTTATTTGTTTGTTCATTTGATTTACAATTTGTGCTTGTTTCTGAATGCAGGATGGTAACACTCCCCTCAGCCCCATTTTAACTCTCATAGAAACCAAACAATATATAATTTAATAAGAAATTATATATATAAGAAATTCCCCATAGAGCAAAACACCACCATGTGGGGAAGGAATCTTAATTTGCCTTTTATAAGAATAAGCATAATTAAAGTCATCAAACAATCATCAATCTCAGTTTTAGAGTCCTGATTTCCAACTGGTTGGAAACAAGAGAGGCTCCATGGGTAGAAAGTTGGGTAATTGAGATCAGCATTCATGCAGTGCTGTAGACTTCTGCTTTAGTGAAGTGGAGGAAAAAATGAAGAAGAAAGAAAACACCTTAATTACACGTTTGCCTTTTTGTATACTTTATTTCGTGTCATATTGTGTCACCTGCACTGTCACTGAGAATTACAAGGTCCTTGCTTCCATTCCTAGTTGGCACCTTATTGTACAGTCGTTACACTGTTAGTCTGTACAAAACGATCTGACAGTTTTATTTGAGGCAAGTAAATGGATAATTCTGCCTTTTTATTTTGCTAGAAAAATAACTGCCTTGCAGGATGTTCTTACTGTAAACATAAGCTAGTATACTGTTTCTTTGAGTAAGTCTTGAATATACAGAACCAATAGTATTTCAGTCACACTGAGGATATTTTCTAGCTTGTCTTGAGTGTTTAAAACAACCACTGATGGTTAAATCTTGAATCTGACTTCTGTTCCTTAGTGTTCATATTCAAGAGAAAGGAGGCTGTGATAGACCCAATAGCATAAATATTGTTATTATTATTATTTTTTTGTTTGTTTTAAAGACATGGAGGGGAGGGGATATACAGAACCAATGAGAGATTAAGTCATCCAAAATGGCTTCCATGTCTCACACAGTGGCCTGAACAGATCTGTTATGGTGCTGTCTTCTGAAACTGTTGCATGGACAGTTTACAGTATGTGAATCTATGAAAAATGCACTGAAATATTGTTAATTTATTACCCCTGTATAAATATGCCAAAACTAAAATGTGTACAAGGCCTAAATTGACCATCAAATTCACTGCCTTATGTGCTCTAGCTTGAAAAGCTGAGCTTTTATTGATATGCCAAAATTGAAGGATTTTGTTCTTTCTGTATACCTAACATAGTGTAACCATGAGAGAACTAAATGTTTGTCTCTTTACTGTTGAAGGTTATGAAGGATGTACAGTATTTTCAGTTGTTGTATAGACTGAATTAAAAAAATGAAATTTTA +>XM_043813081.1 PREDICTED: Vespula pensylvanica cytochrome P450 9e2-like (LOC122629547), mRNA +GTTAGTAGTATTGAACCTCTCGCTAGCATAACGTTGAGTAGTTTTCCACTCAGGATCTTTTAATTAATCGAGCACACGATGGAGACTTGGGCAATGATCTTGGCCTTGGTAGCAGTGATAGTCAGCATTTATTACTACGTCTTTAAGGACTTGAGTTACTTCAAAAAAATTGGTATACCGTATTTAGAACCATGGCCGATTGTGGGCAACATGGGCCCAGCAATTTTACGTCTGAAATCGCTGATTAATATAATTAAAGACATTTACAATCTAAATCCGGAAGCCAAATACGTAGGCTTCTTCGATATGGGTAAACCAGTTTTCTTTATTCGCGATCCAGAATTAATCAAAATGATCGCGGTTAAGAGTTTCGATAATTTCCCGGATCACAGAGGTTTCGTCGACGAGGTACAAGAGCCACTGTTCGGAAAGAATTTGTTTTCCTTGAAAGGCAATCGATGGAGAGAAACTAGAACGATGTTGAGTCCGGCGTTTACTTTGCGCAAGCTAAAGGGTATGTTCAAATTGATGAACGAATGCGGAGCAGATTTTACCGATTATCTATCGAAAATGCCGAAGGATAAGAAAACTATAGAAATGAAGGACGTCTTCGCGAGATATACCAACGACGTAATAGCCACTTGTGCATTTGGTATCAGTATTAATTCTATGAAAGATCGGAACAACGATTTCTACGTTCTCGGTAGAAAAGCAACCAATTTCGAAGGTATTCAATTTCTGAAATTCTTCCTTATTCGTTCTTTCCCAAATATTGTAAAATTTTTCAACGTCAAGCTCATATCCGGTAATATCGACAATTTCTTCACGAACGTTGTCAAGGAAGTAATCGACACTAGAGATCAAAATAAGATCGTACGATCAGACATGATACAATTGATGATGGAAGCTAGAGACAAGAGAGTCGAAATGGGACAAGAATTACCTCTGATAGACATAGTAGCTCAAGCGTTTATATTTTTCTTTGGTGGCTTTGACACCGTCTCCACGGCCATGTGCTTCACCTGTCACGAAATTGGTATCAATCTGGATATACAAAAGAGATTGCAGCAAGAGATCGACGAGGTCATTGAGAAGACCAATGGAAATCTAACTTATGATATTATCAACACCATGCAATATTTAGACGCCGTGATACAAGAATCCCTACGGAGATATCCGATCGTTGTCTTTCTTGATAGAGTATGCATCGAAGATTTCGAACTGCCACCAAGTTTACCTGGAAAGAAACCTTTGTTAATAAAAAAAGGCACGAATGTTTGGTTCCCAGTTAGTGCACTCCACTTGGACCTCAAATATTTCGAGGATCCGTACAAATTCGATCCAGAAAGATTTATAAAAAATGGAAAGGAGATCAACAATTCCGGTGTCTATTTGCCCTTCGGATTAGGACCTAGAATGTGCATTGGTAATAGATTCGCTTTGCTGGAGATAAAAGTTTTGATATTTAATTTATTGGCAAGATGTAGTCTGAAGCCATCCATCAAAACCCAAAATCCAATTCGATTATCCAAGAGTGGAATCAACTTGTCGGCTGAAAAAGGTTTTTGGATGGATTTAGAAGAAAGAAGCGATGTTCATCCTGCTCTTAAAAATATTGTCTGTAATAATAATTCTGATACTATTAAACTATGTAGCCATTAATGGAGTTACTATTGATCGTACTGTTAAAACTTAAGATATAGAAATGAAATAATGAAAATAATTTTATGAAGATAAACTTATGTAATGGATATATATATATTTTTTTTTCGTGATCGAAATGATAAAACATCGAATTTGGATTAAACGTTTACGTATCGTAGTCGGTGCTATTAGGAATTATCCTCTTTTAAATTTCACACAACTATAAAAGCATAACCTCTTGTCATTGAATTACGTATCGTTTTAGAGATTAATACAACTGAAGCTGTTATTTTATTATTATCTTACGATATAAATAACGTATAATTACTA +>XM_001591429.1 Sclerotinia sclerotiorum 1980 UF-70 predicted protein partial mRNA +ATGGCTAAAGGGCTAAAGCTTATCACAAATGGCGACGATGCAACCACCCTAACTCAAGCACAGCAGGAACAAGCCGCTGAAGAAAGAATTACTTGGCCGGAGATTGGTTGTATTGGGACATCTTAG +>XM_006974024.3 PREDICTED: Peromyscus maniculatus bairdii hook microtubule tethering protein 1 (Hook1), transcript variant X1, mRNA +GGTGCCGTGGCACGGGACGGACGCGGTGGGCGAGGGGGGCGGTCGCGCCGCGGCGACGTCGGCGGCGTGAGGCTTCGCGCGTGAGCGGCGCGGGCGCCAGGCCTGACGGCCGAGCTCCGGGTGGCGGGCGCGTAGGTCGTTGACGCGGGCCCGGGCCGGAGGTGCGTCCGTCGCCGAGAGCGCGGCGTCGAGGTTCCCGGACCATGGAGGACCCGCAGCCGCTGCCCCAGCCCGAGCTGCCGCTGTGTGACAGCCTCATCATCTGGCTGCAGACATTCAAGACTGCCTCACCCTGTCAAGATGTCAAACAGCTGACTAATGGAGTGACCATGGCACAAGTTCTTCATCAAATTGACGTAGCCTGGTTCAACGATTCTTGGTTAAGCCGAATTAAAGATGATGTTGGAGACAACTGGAGAATAAAGGCTAGTAACTTAAAGAAGGTCCTCCATGGAATTACAAGTTATTATCATGAGTTTTTGGGGCAGCAGATTTCTGAAGAACTTATCCCTGATTTAAACCAAATAACTGAGTGTTCAGACCCTGTGGAGCTTGGAAGGTTGCTTCAGCTTATTCTAGGCTGTGCAGTCAACTGTGAAAGGAAGCAAGAGCATATTAAAAATATAATGACCCTTGAAGAATCTGTTCAGCATGTGGTCATGACTGCAATTCAGGAGTTGATGAGTAAAGAAATCGTGAGCTCTCCTGCAAGTGACACCATTGGAGAATTAGAGCAGCAGCTTAAAAGGGCATTAGAAGAGCTTCAGGAAGCCACAGCAGAGAAGGAAGAGCTGAAGCAAAGGTGCCAGGAACTGGATATGCAGGTGACTGCACTTCAAGATGAGAAGAACTCACTGGTTTCTGAGAATGAGATGATGAATGAAAAGCTTGACCAGTTGGATGGCTCTTTTGATGATCCAAATACAATGGTTGCGAAAAAGTATTTTCATGCACAGTTACAACTAGAACAATTACAAGAAGAAAACTACAGGCTTGAAGCTGCAAAAGATGATTACCGTGTTCACTGTGAGGAACTTGAAAAGCAGCTGATTGAATTTCAGCACAGAAACGATGAGCTGACGAGCCTTGCTGAGGAAACCAGAGCCCTGAAAGATGAGATAGATGTTCTTAGGGCTACCTCAGACAAAGCAAATAAACTGGAGTCGGCAGTGGAAGTGTATCGTCAGAAGCTACAGGATCTAAATGACCTCCGTAAGCAGGTGAAATCTTTACAGGAGACAAATATGATGTATATGCACAACACCGTGAGCTTGGAAGAGGAGCTGAAGAAGGCCAACGCAGCACGTGCGCAGCTGGAGACCTATAAGCGCCAGGTTCAAGACCTTCACACTAAGCTTTCCTCTGAGTCTAAAAGGGCAGATACACTAGCATTTGAGATGAAACGGCTTGAAGAAAAACATGAAGCTTTACTCAAGGAAAAAGAGAGACTGATAGAACAGCGTGACACTCTGAAAGAGACGAATGAGGAGCTACGGTGCTCACAGGCACAGCAAGATCACCTAAATCAAGCTGATGCATCTACTACAAAAAGTTATGAGAACCTCGCTGCTGAGATCATGCCAGTGGAATACAGAGAGGTGTTCATTCGACTGCAGCATGAAAACAAAATGCTTCGCCTGCAGCAGGAAGGGACGGAGAATGAACGCATTGAGCAGCTGCAGGAGCAGCTGGAGCAGAAGCACCGCAAGATGAACGAGTTGGAAACTGAACAAAGATTGAGCAAGGAGCGCATTGGAGAATTGCAGCAGCAAATTGAGGACCTCCAGAAATCGTTACAAGAACAGGGCTCCAAGACTGAAGGCGAAAGTTCCAGCAAACTAAAGCAGAAGTTGGAAGCTCATATGGAAAAACTAACAGAAGTCCATGAAGAATTACAGAAGAAACAGGAGCTCATTGAAGACCTTCAGCCAGATATAAGTCAGAACGTCCAAAAGATCAGTGAGCTTGAAGCTGCTCTTCAGAAGAAGGATGAAGACATGAAAGCAATGGAGGAGAGATATAAAATGTACTTAGAGAAAGCCAGAAATGTAATAAAAACTTTAGATCCCAAATTAAATCCAGCATCAGCAGAAATAATGTTACTTAGAAAGCAGCTGGCGGAGAAAGAAAGAAGAATTGAGATTCTAGAGAGTGAATGTAAAGTAGCAAAATTCCGTGATTATGAGGAAAAACTCATTGTTTCTGCCTGGTATAACAAGAGCCTGGCGTTTCAGAAACTGGGCATGGAGTCTCGGCTTGTGAGCGGCACTGGTGCTTGCAAAGACGCTGGTGCGGGGGCGCCTGCACGGTCCTTCTTAGCACAGCAGCGGCACATCACCAGCACCCGGAGAAATCTCTCTGTTAAAGTCCCAGCCGCGGCATCTGACTAGTCCGCAAAGCAAACACGAACAGAAGTGCCTCAAAATGTTTTGTACCCCAAGAAACTACCAGATGGAAAACAAAGGTTAAGATGCTTGGTAGCAGCTAGTTTTGTTTGGATTTTGTTTTGAGATAGGGTCTCCCATCCCCCAAACTGGCACTGAATTGACAGCGTATTCAAGGATGACCTTGCCATCTGATCAGTCCTTCCCTCACTTCCTGCATGCTGGGATTAATAGTTGTGTACCACCATATTGGGTGGATACAGTGCTGGGGATCAAAACTTGCACTTAGGTCAAGCCAGCTACCAACTAGCTACATTCCTAACCTGGGTATCAACTATTTTTATGTCAAAATATATCAAGTTAACATTTAAGTTTACTCTGAAAACAAAATGCAAAATCAGCTCTGTCCCTGGGCAGCACTTTTGAGTAGTTGGAAGTGTGATAAAACAAATATTTGTCTTGAGATGGCATCATGTGTGGGAAAGCAACTGCATATTCCAGCTTTATGCTTTCAGTTGTAACAGCGAGTCAGTTAAGGTAGAAAAGTAATAGTTTGTCATTTAGTAATATATCTAGATTTGCTTTATGGGAAGCAGCCTCCAGTAAGGCATGTAGATAAGAACTGTGCAAAGTAATTTCTTTGACCTGGTGTGTACAAAGCTTTCCTCTACTTGCTAGTTCTGTCCTCAAGAGGATCCTTTGTCATGCTGTGGAATCGATAATGCATGGAAGACTTTACTGTTGGAGTGACTTTGTCCTATAAAAGCGACTGATTGGACATTTGCAGTTTCTCTGAGCTGTATCTCAGTTTGTACATGTACTGCTGTGAATGAAGACTTTGGAGGGCTTGACTGAAATGGTAAGGTGGGAAATAAACTGGTATTTCTAAGAGGTACCTTTCTGTTGGAAAGCAAACTAGAAGAATACATGTTGAAATATCCATATGCTTTTGAGCATGAAATTGTTGTGGCCTTTGTTTTCAAAGAAGGGTATAATTTTGCTTTATTACCTGTAAAGAAACAATGATGAAACAGCTTAGGACCAGTTTGGTTTCTGCTTACCTCTTACGGAGTTTCTGGAGCTGGATTTGTGGCATTCAGTTCATTTCTGCCCAGGGTTGTTCTTTTCAGAGATGTTACTTTCTAATTTGGGGTCACTTTTTAAAGTCACACTTTGGAATATTAGTTGTTAAATCAGTATTGATTGATGTAGCCACAAGTGGTTCATTCTTGTGTCAGACACATTTCCAACACTTAGCAGCCACGTTTCCATCATTGTTGAGAGTTCTGGTGTGATGCAGTGTCACGGTAGATCTTGGTTTTGGTAACTTGGGAAAATTCTTTGATCCTTAGACTACAGAAGTGGGAATAATTCATCTCATATCTAGAGAAGAATCAGATGGTGACAAGAATGCAGCAACACAAATGTCGCAGCATTGTGTATACACTGAACGTTAGCAGGCATTCTGTGAGGGAGTGAGCTTGTGGGCTGCATGATCCTTGATTGGTCAGCTCCTCACCACTCCCCTCAGCATGAAAGGAGGGATGCTAATATGTAAACAAAATGGGTGTGAGCCAGATTAAGCTGGCAGGCTGTAGAGCTGTGGTCTACACTTTATTCTTAGTCCTTCATAAATATGAGTATTGTTCTATTTGAAGTGTTAACTCATGTAGATAACTGCCTTTAAATCCTTGCCCAGTAATTTTTTTAACCACTTAACAACACAAGAATTTCACAGTGATTTGGGGTTTTGAGATTAGTGGCATCTGCCAGGATATTTTGTTTTATCAGGGTTCCTTCTGTTGACTACCTCTTAGATTTTTATGCTTTGTGCATTTAAACTGTTGGTTTGCATTTTGGTATGTTCTTATGGTGTCTGCTTGCCTATGTCTTTTAGTGAAATAGGACTTTGGAAAATACTTTAGCATGCTATTTAAAATTTTCTAAAAATTGTGGCATTTGGGTATATTTTTGTTAATGAAGATATTGATGTTAGTGTTTGTATTTGCTTATAATTGAGATTTTACAAGTTCTCTTTTAATGGAACTTACTGTAAAAGATGAACTTCAATAAATTAATGTTTCTAGTGTAATTGCTCATAAATTTCTAAATAACTAATGTAGCATAGATAAGGACATAAGGATAAGTTTTCTTTTCTTAAAGAAAAGGCAGATTTTCTGATTTTTCTAGTTTTAAGTAGAATTTCAAACGTTTGATACATGTTTATACAAAACTATGTAAAGTTCTATATAATTGAGACTAATCACAGAAATTGAGGCAGTGATCAGGGTGATTCTTTCCCTATGTGGTTCATGCAGTGAGATCGGTGCCTGCCACATATAAAGTATACATGTTTCATCTGGAACCATAATTCTACAAATGTGTTACAAGGGAGGACTGAATGTATAAACATGGAATTGACAAAAAAAATTTATGTCCCAGTGATTATAAAGTTAGAAACAATTTTGAATTTCAAGTGGTTGTCCTTGGATTGATATTCCTTTCTCTTTTTGGATATAATTATGACCAATTGTTTATCTTGGAAATTAACTTAATGTATTGAAAAATATTTGAAGTTTATTCTATTTTTTCCCGTGATTAAAACTAATGATTTAATGTAAGTTAAAAATACCTTGCCTAGCATCCTTTAGCAGAGTATCCCTTAGTAAGATCTGGTAGATTGTTGATGACTAGATGTTAAACACTTCAAAAACACACCTACTTTTGTGTAATGTACATCTGGCCTTTGGGAATGATGGTGATTTAGGCCAGAGTAGTGTCACTTTGTGTAAAAATAAATGTATATGGCTCGTTATACATACAGTCTTATTGTGATCTTGTTTATTGCACAGAAATTGGACACTTATAAAGCACAAATCATCAGAGGAAATAGTGTGTAGTTTATTGAATTTGAGGAAGTCTCAGTACAGTGTTTAGTTTATAAAAAGGTCCTTTCTATTTTCTATGACAAATACTGTCACACTTGAAAAATAGATGCAATACTTGATTTATTTTTGTAAGTATTTAGAATATTATTTTAAATAAATGATTGTCAATATAATTGTGAAATGTTTTGAGTAAATAAACTTCTGCTTCTGTA +>XR_008312440.1 PREDICTED: Hemicordylus capensis uncharacterized LOC128337805 (LOC128337805), ncRNA +CGGAGGGTGGCGGACCGCCAGAAGGGTGGCAGAGGCCGAAGGAGATGCAAGAGAAATGGATTGGGAAGGGCAGGATCATCAGAGGACCAACATCTCCCCAGCATAAAGACACTATCGTGGAAATGCAGAATGCATCGGACAAGTACCTAGGCATGCTGCTGACCACCTGTTGGATGCTCACCATGTCCAGCGAAGGGCCATCACACGCCAGACCATTGCGCCAGCTCCCTGCGCTGGTTGGAGCCGCTTCTGGGAGTTCAACGGCCTCCTTCCTCCCACTTCTGGCTGGAGATTCTTCTGGCTGGCAGCAGCACCCTGAAGCCAACACGAGGCTTCTTCCCATCTTGCACTTTGTCCAGGTGGCACCAGCAGCAGCAGCAGCAGCAGCAGCAGCACCAATATTTATATACCGCTTTTCAACAAAAGAGAACAAAGCGGTTTACTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCATATTTCTATGCCGCCTAATATGTACATCTCTAGGCTGTTTACACAGAGAAATAATAAATAAATGAATGAATAATTGA +>XM_024685516.1 PREDICTED: Selaginella moellendorffii transcription factor TCP20-like (LOC112350051), mRNA +ATGGGATCTAGTAGCGAGGTCTCGGAGGACATCGAGTGGCACTCCCCGGGAGGAGTGCCAGCGGCGGCTGCGCCATCGCCAGCCCCGCCGGAGGAGGCGAAATTGATCGCGCCCATCAAAGGCAAGCGGAGCTGCGGGATCAGGAAGAGGAATTCGAGCGTGAAAAATCGCAAGGCTGAAGTGGTGGAGGAGGAGCCGGAGGAGAAGAAGTTGAAGAAGGCGGCGCCAAAGCGGAGCTCGACCAGGGATCGCCACACCAAGGTGGAGGGGCGGGGGCGGAGAATCAGGATGCCGGCGGCGTGCGCCGCCAGGATCTTCCAGCTCACGCGGGAGCTGGGCAATAAGTCTGAGGGCGAGACCATCGAGTGGCTGCTCAAGCAGGCGGAACCTTCGATCATCAAGGCCACGGGCACAGGTACCATCCCGGCGCTCGCCTTCTCAGTGGCGGCGCCGCTGGCCCTCCGCCAGGCCGCCGCCAATTACGTCTCGCCGATCGCCGTCGCCACCCGCTCCAGCCTGCCGCTGGATTTCGCGGCGCCGCGAGTGGACAACGCTAACGCCACCACCACCACCACCACCACCACCACCACTATCACCACCGAGGGTGGCGGCGGTGGTGGCGGTGGCGGCGATGAGAACTCCAACGAGAGCCATCGAAGGTACGAGTTCCAAGAGAATGGGGACAGTGGATCCATCGGAGACGATCATGGAGAGGGGAACGCCAAGAACTTGCTCACTAGCTTGAAAGATGATCCACGATCTCTCCAATCCAAGCAACAGCAAGCTCTCGACGACCACCACCAGCATGACCAAGAAGAACTCGCGATCCATCACCAGCAGCAGCAAATCTCTTGGCCCGTGCCAAACCTGTGGATGCTGCCAGTTCCATCTATGGGTGATCACTCGTGGGCATACACCACTTCGACTTCGTGTCCCTCGAGCTTCTCATCGTCGGCGGCGATGATCCAGCAGCAGCTCCAGCGGATGAATGCGAGCAGCCTGATCGAGCTGGGGCCTCTGGGATCGATGCTGGCGATGCAGCATCACCCGGATCTTTGCGCCCCTGGCAGCGATAACTTCAACCTCTTTGCCGCGACGTACCACCACCATCTCCAACGCCAAACATATGATCCTCACGTTACTTCACGAGACGATAGCGGCTAG +>XM_053129038.1 Zychaea mexicana uncharacterized protein (BDB00DRAFT_931432), partial mRNA +TGCCACGATGGCCCTGGTATCCTCACAGGCTGTTACCAGAAGTGTCATCGCCATGTTAGTCCAGCCATCGAGGAAACCATCCACCCAGATATCCGGACTGCACCTCATCGACTGACTCCCACGAGCACCGTGACCGCACCATCAGCAGAGCCTGCAGATGTTTTTCCGTTTGGTTATGATATTGGGAATAGCCGCCGTGCGCAACGAGAGCGCACCCAGAACGCAAGCAAACGAAACGCAAAGGCGCAACGCACACCACAGAGGAATACCAAAGATGGCGGAAGAAAAGAAAGGGGGGCCGGAACGGAAGGCAGATACGGAACATACTGAATAGATCTTGGTGAAACACCGATCAGCTATGCTCAGGAAGAAGTTGTCATTATTGGGATCACGTAATTCAC +>XM_050140454.1 PREDICTED: Microtus fortis uncharacterized LOC126500504 (LOC126500504), mRNA +CTCGGATCCCCCGCACTCCCGGAAGAGAATGTCCACCGCTCCTGCGGGAGAGGAAGGCGAGTTTTGCAGCCATGCTCCGCAGAGTGGCCCGGACCGTGGTCCCAGGGCTCAAGGTGCCCTGGGCGCGGTGGTCTAGGAACTGGGCGGGGGTCCCAGACCAGGTGGTAGACCTGCGCAGCGACACGGTGACCCGGCCAGGGCCGGCCATGAGGCGCGCCATGGCCGAGGCGGTCGTGGGAGACGACGATTACGGCGAAGACCCTACGGTCCTCGAACTGCAGGAGAAGGCTGCAAAGCTGCTTGGGGTGGAGCAGACCCTGTTTGTGCCAACCAACACCATGGCCAACCTCATCTCTGTGATGGGTCACTGCCGGCGCCGGGGTTCCCAGGTCCTCCTTGGGCAGGAATGCCACCTCCACATCTATGAGCAGGGCGGGGTGGCTCAGATCGCCGGGGTGCATTCCCAGCCCCTCCCAGACATGCCCCATGGCACCTTGGACCTGAACGAGCTGGAGAGGGCACTCTCTCGGGGTTTCAGGAACTCCTACCATCCTGTCTGTGAGCTTGTGTGTCTGGAGAACACACACAGCAGCGCAGGGGGCCGGGTCCTTCCCATCCACTACCTCCGCCAGGTGCGCCTCCTGGCCCACGCCTACGGAGCACGGGTCCACCTGGATGGGGCGCGGCTGATGAATGCAGCTGTGGCTCTGCGTGTGCCTCCCGCCCACCTCGTGGAGCACTGTGACTCCGTATCCTTCTGCTTCTCTAAGGGTCTTGGTGCACCAGTCGGGGCGCTGGTCGGTGGAGCCAAAGGCTTCATTGAGGAAGCCTGGCGCCTCCGCAAAGCCCTGGGTGGAGGCATGCGCCAGGCTGGAGTACTGGCTGCGGCTGCCATGGTGGGACTGGCTGAGGCAGAGGAGGTGCTGCCAAGAGATCATGAGAATGCCCGGAGATTCGCTAAAGGACTCCGGGACCTGGCATCACCCATTTGCTCCGTGGATCCCGACACTGTGGAGACCAACATGGTGCTGGTGCAGGTGGCGGGGCGGCCTCCTGCAGAACTGTGCCAGCGCCTACAGGCTGTGAGCGCCGAGGAGGTGGCTCAGACTGGCCGCGCTGTGAGCGTGCTGCTCTTTCCCTGGACAGAACACTCCGTGCGGGCCGTGTGGCACCGGGATGTGTCTGCTCAGGACACGGAACTGGCGCTGAGGAAATGGGAATTTGTGCTGAGGCAGTTGAGGCCCTGAGATCAGGGGACCAGGAGCCCTGTGCCCTGGCTAGGATTGAAGTGTAGAGTAAGCTGGTCCAAGCCATTAGCCTAGTGGAGGCCCGCCCTTCTGGGGGATGACGACACCATTCCGGCCTCTGAATTCCTCCACTGACACTCATGTGATGGCCTCATTCAATCAGGAACAACCAGGCACGGGCTGGGATAAGAAGGGGCTGAATATCAAGAGAAGGGAATGAATTCAGGAAGCAGACCTGGGGCTGGGACGTGCAGCGTGACTGCCTGGTGTGTGTAAGCCCCGGGTCTAGTCCCAGCACTGTATAAACAGGTGTGTTGACTCACACCTGTAATCTTAGCAAGCTGAGAAATTAGAAGTTCAAGGTTGGGCTGGAGAGATGGCTCAGGGGTTGAGAGCACTGGCTGCTCTTCCAGAGTTCGATTCCCAGCAACCACATGGTGGCTCACCACCATTTGTAATGAGATCTGGTGCCCTCTTCTGGCCTGCAGCCATACATGCAGGCAGAGCACTGTATAGATAATAAATATTTTTTTTTAAAAAGTTCAGTCATTCTCAGATACAGAGTTTGATTCAACCCTGGGCTACATGAGACCCTATCTGCAAACAAACAGATCCTGTGTGACTGGCATAGTTATTAGAGATGGACTGTAAAATAATAATGTGGGATTTCCTTCTGTGTGCTGTGATTACCATTAATGAATAAACTGCTTTGGGCCTGTTGATAGAGCAGAACTTAGATAGGCGGGGAAAACTAAATGGAATGCTGGGAGGAAGAAGGCGGAGTCAGGGAGCCGCCATGGAGCAGCCAGAGTCAGACATGCCAAAACTGCTGATAAGCCACTGCCACGTGGTGATACACAGATTAATAGAAATGGGTTAAATGAAGAGGTAAGAGTTAGCCAGTAAGAAGCTAGAGCTAATGGGCCAAGCAGTGTTATAATTAATATAGTTTCTGTGTGGTTATTTTGGTTCTGGGCAGCCAGGATGAACAAGTGACCCTTCCCCCAATAAAGTATTGAAGGAGCTGTATTTGTACTTTTAT +>XM_025755560.1 PREDICTED: Arachis hypogaea protein LURP-one-related 10 (LOC112703951), mRNA +TGCATGAAAAATATGAGAACCAACTACTTCATCTCCTATATATGATAGTGTTCTTACTTCTTACAACTGAAAAAGGAAACTCTTATCAATTAATTTGTGAAGTAATGGAGGCAAGTGCACCTGATTTTGCATTGGCACATGGGTTCCCCATGAATATGATAAGTGTAGTAGATGATAAGTTCTATGTTGCAAACCCAACAGAAATGATTGTGAAGAAGAAATACAATGGATTGTTGTTGAAGCAACGTTACAAAGTGAAAGATGTTAATGGGAAACTCTTGCTTCAAGTTGATGGGCCAAGCTTAAGCATCCACAAAAAGAGGGTTATGCGTGATGCTCAAGGTTCACCAATCCTCATAATGCAAGAGAAGGTTAAAATGGTATCGCTCCGGCACAGGTGGACGGTTCATAGAGGGAAAAGCTCAGATGATAAGAATGTGATATTTGGGGTGAAAAGGTCACACCCAATGGACATGAAACCACGGCTTGATGTGTTCATGCCTGGTAATACTGATGAAGATGTAAGCAACTTTCAAGTTGTTGGTAGCCACATTCAAAAATCTTGCACTATTTACAAAGGTGACACCATCATTGCTCAGGTAAGTGATGTGTTCCCAAGCAGAAACTTCAGCAAATGGAAAGAAAGCTATAAAGTGAAGATTAATGAAGGGGTGGATTATGCTTTCGTCATGGCATTACTTGTAATATTAACCGTAAATGACTACATTTGAATTTGGTTTCCCTCAACATTAAATCAATAATAATAATAAGAAGTAGGAGTGGGAATATGTACCTTACCTGCAGGTACCCAATCCGATCTTACCTGATCGGGTAGGGTTGTCAACCCAATCCGCAGCGGGTAGGGTAGAGTGCGGGTAGGATTTTCATGTAGGTCGGATAGAGTGCGGGTTGAACTTCAATCCTACCCGACCAACCCGCACCCTATATATGTATATGTTATATACTTATATAAAAATATGTTCTAAGTGGATGTTGAA +>XR_004838883.1 PREDICTED: Vespa mandarinia uncharacterized LOC118444101 (LOC118444101), transcript variant X2, misc_RNA +GATTTATATTTAATTTAAAAAATTTTTTTTCTTCAATAGTTCCTAAATAAAAAATTATTTCTTATTTTCAAAATCAAAAATGATAGTTCCTAAATATCTATTTTAATAGTAATAAAGTACTTCAATGGCAAAAGTTCGTAAGTCCATATTCTAAATTATATCAATCTTTAAATTAATTTTATGAAGAATTAATATTAATAGTACAATATGAATATTATAACAGAGGATGATAAATTTGTCCCATTACATTTTGTATTTTGTAATTTTTATGGTGAAGATACATGTTTTTGTTGGAACGATGATAAATTTGTTATGTTTCCATACATACAAGAAAAATATACATCTTTGCTGCCAGTTTTGATTGCACCGAGGCAAATAAAAACTATACAATGTTTTTCCAATAGAGTTTTCTTTACATGTTTACCCCATGGTGTATATAAACTTTCAAGAGATAGAAGATTCAGTGTATTAAGTAAAAGTGCTATAAGTGTTGGTTCCATATTTTTTGAGATACTTAAGACAAAGGATGATCACTTATATTTGGAAAATAAACAGAACAAATCGAGTAAGATATTACTCCATTTGCCACTCATGTCAAAACAACTAGAAGAATTATGTACTTTTCCTTTGAACATGGAAAATTCAGAACATGAATTTAGAAACATATTACTAGATGAAATTGATATGGTAGATAATTTATGTTTGATTGGTAATGGTAAAAAGTTATTTACTTTAACAAAAGAAGTAATTCATTTAATTCATAGTTTTGATAATAAAATAATAAACATTGTACCTATACAAAATGACAAAAAGATTAATGGATTAGTACTTATAACAAATACAGATGCAATTATCATTGTGCATTCAAAAAATAATATATTACGCTATAAAAAACTTTATCTAGGAGTAAATGTTAAAACCCTTTGCGCAGGACTTAATCATCAATGTAGCGATAAAATATGGATTGTTTATTCCGATGAATCCAAATTGTATTACATGATAATGACACTTTCTACCGAAATATATAAGAAAGTAAAAATAGAAGAAAAAAATTTTATTTGCCTGCAATATTATGAAAAAGATAAATTTGTAGGTCTAACTAAAACAAAAGAACTTCATGAATTATCCATTAATACAATAGAAAATTGTGTAAATGAAGAAATTTCCAAAGATGATTTTATAAATCTTCATAAAGATATGTTAAAAGGTACAGATTTAATTGTTGAACAAATCTATGAAAGAGCAAAAGAATTAGAATTGTGGAATAAAATACTTCTTACTGAAGAAGATAAACTTTATAGAATAAATCTTTATGCTTGCAGAAAGAAAATACAAATGTATCCTAAAATGACAGTATATAGAATAGCAAAACAATTATTTCTTAATATAGATTTTCAAGAAAATTTACCAAAAAATGTTTATATTGTTTGTTTCTTAGTATCCAATCATGAAACAACTTTCTCTATCAAAGAAATAGTAAATAATGAAACTTCAATCGATTTACCTATAGTAACAAAAAAATTATTTAATTCTTTACAAATCAGAATGGATTTAGTAACAATCATAAACGTAGAACAACCATGGTTTCTTATAAAAGATTTTGTAACAGATCCAGTTATAGAGAAGAAAAAGAAACAAAAAGAAATGCAAATTAAGAGAGATAAAACAAATTTTATAAATGCTAAAATAAATCTTATAAGGAATTTAATGTTGACAAAAAACTTAACTATGAAGAAATTATCAGAGATGAAAAAGAAGATAAGAAAAGAAATATGTGACTTTTAATTTAATAATGTAAGCAATCATTTCATAACATAAAATGTCTTATGTTATTACTATCACAATTTTTTAAAAAAGTTTATAAAATCGTTTATGTAATTAAGAACTGGGCATTTCTATTATACTTCCAATACTGCAACTGGAACTCTTTGGTTGTTTCACAGAATTTCTAAAACTATTTTGTATTCTGGGACCACCAAGTCGATCTTGAAGTGTATCTAATGATTTAGCACTTTTCTTCGAACCATTAGCACTACGATCTTCTTGTTCATCGTTTTTATTGGAACGACGTTGTAGAATTTTGGTAACACAGACTTTAAAGTTTTCTGAGAATATACCATAAAGAATAGGATTGACCACTGTATTCAATTGAGCTGTAATAAGTGCCCAAATGAAATGATGCGATCTCATGAAAAAATCAGTTTGTTTAGGTGGTCTCTGAGCATCAATGAAAAGCAAGAGAGCGATGATCGTTATTGGCAACCACATGACTAAAACGGCAACTACGTTTAATAATAAAATCCGCATGACACGTATATGCTTGTGAAGACGGACTTCCTCGTGTTGTGACATACTACCAGTTCTACCAGTACGTTCTATAACTGATGATGTAGATAATTTTCTTCCAACCCATGGTATTAATGATCCTACCACCGATAATTCCGAATCTCTTCTGTTTCCTTTACCAGTTGTTAAGTCCTATAAGATATAAAATTTATCAAATTAAATTAAAAAGATTTAGCAA +>XM_033905725.1 PREDICTED: Pecten maximus uncharacterized LOC117343383 (LOC117343383), mRNA +TACCGCCAGAGGGCAGTATGTCTCGCATTACTTCCGGATAGTTCAGTAAACAATGGCGGACCGTAGCAACAGTATAAACAAAGAGAATGAAGACGTGAACCTGCAGACAATTGATCGGCTTACTGTTCAAGAATTGAAGAGTTTTTTGCGCCAGCATGACCAGCCAGTTAGTGGACGATCAACTGAATTAAAGGAACGTGCGAAAGGTGTGTTGAAACTTGGTATCAGACGGAAAGATATACTACAGCGGGAAGATGAAAGACAATCCACTCTCTACCAAGCCCGTAAGTTCGTGTCCCCTCTTGGCGAAATTTTACCCCACCCATCCACATTGAAGAACTGGACCGACAATGCTAGGCAGATACCTGTGTTTCTAGAAGATGCCTTATATAATTACCTTGTTCTGAACAGACAGCGGACGTTTGATAATGCTCCAATGGGTGCTGTTAAACAACTTAAAGCAAAGGTCTTCTATGAAGATAGTCATGTTCACCATATACGATACAGCCCTATCACAGACCTCTGTTCTCACTGTTATGTATCATGTAAAGTGGTACCATCCATGCCAACGGCAGATGTGAACAAGTCTCCTGACTACAGTGTTTGGATATGTATATCGAAGCAGACTGGACAAGTGCATGCAGCTGATTGTAACTGTCCTGCAGGAAATGGAGAATCGTGCAACCATGTGGCAAGTCTTCTGTATGGCCTTGTTGACATCACAGAGAAGAAGCAGTCTGGGGAATTAGCGCCAACCGCTGAACCCTGTAAATGGAGCCAGCCAAGAAAGAGGAAATTGTCCCCCAAAAAGGCAGAACAGATGAAATTTCGAAAATACACAAATACTGGTAATGCTGATAAATCAGACTACACATTATTCCGACCATCTGGAGTTCAGCCACCATTGGATAGGAATTCGTTCCTAGCAGAGATGAAGGAAGTCTTGCCAAATGCAGGGTACATGAAGCTGTTTCCAAAACAGAAAGCTCCAGAACATGTCTTACAAGAGTGTTGTTTACCAGAACCAAAATTTAATTTTCATAATAGTGTAGACTTGTCTTCAAGTGCTTGTCAGATTGAGTTTGATAACTATGTACAGGATTTGATAGACAATAGTGCATGTACAGATACTATTGAGGGATTGACCAAAGGACAGAGTACAAATGATGTCTGGCTGAAAGCAAGAATAGGGCGGATCACAGCATCGCGTTTCGGGGTAGTGTGTCGCAGGAAACAAGATGTAAATCCAAACAGTCTGGTAAAATCTGTAATGGGTTATTACTCTGATAAAACCAACGATGGAATGGAATGGGGGATTAATCATGAAAGAACAGCCAATCTGGAATATATTCAGAAGATGAGAAGCAATGGTCATAGCTCAATAACTGTGCAAGAGAGTGGACTGTGTGTTATGGTAGATCATCCATATATAGGTGCTAGTCCTGATGGTTTTGTTTCATGTGGTGACTGTGAAGACAGTAAAGGACTGGAAATCAAATGTCCTTTCAAATATCGAGACTTTTTCTCCAAAACATGCTGCTACACATAA +>XM_034976728.1 PREDICTED: Maniola hyperantus cytochrome c oxidase assembly factor 6 homolog (LOC117989378), mRNA +AGACATTTGTCAAATACGAAATATCCGTCCTACAATTTTCTGCGAGGTTATATTTTGCTCTCAAGATAAAAAATCGCTAATTTCATTATCTAAATCGAAAGCTTCATCAAGATTTGATCTTTGAAACAAGTACATAGGCTCAAAGATGTCATTTCCTGATAAACAACAACGAAAGATTTGTTGGGATTCTAGAGACCGTTACTGGGAATGTTTAGACGATCAAAGTATAAAAGACAATTCGCTAAAGCCTAAAGTATGCGCGGAGCTTAGGAGAATATTTGAAAAGTCGTGCCCCCCCAAATGGGTGACCCATTTCGATAGGAAGCGAGACTATGAAATATTTAAACAAAAAATGCAAAAAGAGGGTTTTGACCCTATTAAAGACAGTAAATAATTACTCTAAGTAATTTATTTAATTGTGATTGTAAATATAGTTTATTTATTTAGTGAAGTAAATTGTTTTTATTT +>XM_046179821.1 Filobasidium floriforme uncharacterized protein (HD553DRAFT_310221), mRNA +GCGAGCTACGTATACATCAACCGGTAAACGTAGCTGTCGAACAGGCCACGTTAAGGACTTCCATTAGGACCGAGAAATGCAACTGACCGACGACCGACCTACCCGGGTCAACCGATATTCGGCTCCCCCCTTCTTCCCTGTACCGGCACTCCTGCTCGTCCTCATACCTTTCCAACTCTTCGTACACTTCTCTTCGCACTCGATAGCCGCCTACGTCAAGGATACAGTCGAGGGTCTTCTCGGGAAGGGGTTCGTTGCTGCGAGTTTCAAGTTTCTGCTCGGAGCCGTAAGCACCTCTTGCCCGTCGTCCACCGCATTTCGCCGTCTTTACAACTTACCGGACTCGACCTTGTTTATCGAAGCACGGAGCGGAAGCCTCGTACATGCTATCCCAATGCATCAAGTATCACTGCCCAGCGGATGTTGGTGCCAAGTACGTCGTGACCACCCTCTTGTTCGGGTTTGTGGGGATACAACAGTTCAATCGGCAAGCGAGGATAGCGGAGAAGGGGAAATCCAAGGGTCTTTGATGAGGGAGACGCTTCTATACCGGGCTTGTGGCCGTACAAGAGATGTCGAGATTAGGATGATCAGAGATGGACGAGATGATAGTCCAGCTGGCGATCGCGATAGCTGTTCAGCTAGCTAAAGGCGACCTGGGTAGTCTTGACCATAACCGTGCGTTTTGCGGGTATGCGAGCCGACAGTATCAGCGGGAGGGATCGGAGACCATGACAACAGATGACGGAGAAGTTGGGCATGGTCATCGGGCTTCTCTTCATGTTGTCATACTTTTACATCTACTCTAGGCGAAATACAACTCGTGACA +>XM_009314119.1 Trypanosoma grayi hypothetical protein partial mRNA +ATGCCCTCAACGGGTTCCGGCTACACCTTTGAGGACTTCCTCAAGCGGATGGAGCGCAGCCCCACGTCACATATGTCGCCACTCTACCACGAGCATCGGGAACTATTCGTTGGCCGCCCCGACATGTTCACTCGCGCTATTAGCTCCGTTTCGTGGGAGAAGGGGTGTGCGTTGGTCGACGCCGCCTACCACTCGCAGCCCATCGCAGTCGACACGTACCGTGCCCTGCTGGCCCGCATGTTGCTGCACAATCGCCATGTACAGCGCAGCGGTGCCGGTAGCCTTGTTATGTGGAAGGCGGCCTTCCGCACATACTCGGAGGCCATCCTTTCCCACGGAAATGCTGTTCCCACACGCATGACTTTATCCACGCTGCGCTTGCTTGCTCCGCACCGCCAGTGGGAAGCCGCCGTGTCTTTACTGAAGCTCAGCCAGGCGAACGAGAAGCTGACACTTCCGATGCTTGTTGACGCCGCTCGTTGCTCAGCGACGCCAGCGACGTGGCCTATGGCATTGGACTTTCTCAGCATGGTGCATGCGCAGGCACCCAACATGCTCGCTGATAGCATACAGAGTCTGCGGCCGCTTGGTACAAGCGCCGCAACAGTATCTGCTGCTGCGAATGCGATGCTGGTGGACAACAGCAAGGGGCCGACGGCAGAACAGAGACACGTTTTGTCGGTGCTTAACGATGTGGTAGCGGCTGTGCCATGGAAAACGGCACTGTCGAACGAGATGTGTGTGTCCTACCTCACGTATCTTGCCGCGAGTACGACGTACCCATCGCAGGAAAAGACTGTTGCGCTCACAGCCGTGTTGCGGCAGTACCCGTGGGAGGCATTCAAGCAGCTGATGATGAGGCAGAGTGTTGTGCTGCCGGCGGTCTCTGGTGAGGCCACTTCGCCGCCAATCCCGGAGGACAAGAAACTGCTGCATCAGCAACAGGAGTATAAACTGGAGGCTTCACCACTGAACTACCCCGCAGTTCAAGAAAGCCTGCTGCTGCTTAAAAGTGAACCCGAGACAGCGGTGCCATTTATTGCAGCTATCGTTGAGAAACTTCCTTCCGCCGAGGTCTCCGCCTCGTTTCTTCACGAGACGGCCGACATACATCGCGACACTAGGGTTGCCGCTGCGCTGCGCCACCCCTTGGTGGTGAGTGCCCTGCTGCGAAAATGCGCGGAACATAATGAATGGCGTCTCGCGTCCTCGGTAATGCTGTCGATGTCCCCAAGCACGATTCCATGCGACGTAGCCAGCACGCTCGTGCTGCAGATGCGGGCTGCTAAACAGGCATCCCTGGTGGTGGAGATACTACAAAAGTGCATTGTGCCCTCAAGGACCATGCTGACGCAAGAAGCAATGGAGGCGGTGCTCCTGTGTGTGCTCGCACATAATCGCGCCATAACCGAAACCGCATCACTCACATTCCCCAAGACGCGAAATACGAACACCACGGCAGTGATACACTGGCGCTCTGCGTTGAGTTGGGCGGTGGACTTGCTGCAGGACGACACGGAGGGACGCATTGTGGAGACAGGCTCCGCTCCCTCCAAGGGCGCCGTGAGACACACGCATACCAAGGTGATTCCACGCCTAAAGCCCATGTCTTCTCGCATACTCAGTCTTCTTATTCACATTTGTGTGAACGCCGGTAGTCCGCAAGGAGCATTGCAGGCAATGGGATATGCTCGCACTGTCAACAAGACGGAGTTGGCCATGTCAGATGAGATCCAAGCGCTTCTGTACTGCATGCTGTACGACCG +>XM_020925385.1 PREDICTED: Boleophthalmus pectinirostris protocadherin beta-15-like (LOC110160707), mRNA +ATGATGGAGATTAAAAGGCCATTTGCAGTGGGAATCAGCGCGTGGATCGTTTTGTGTTCGGCTCTACTGCTGCTTTTTGGACAGTCCGTTTTGGCTCAGATCAGATACTCTGTTCCGGAGGAGGTGAAGGACGGGACTGTGGTTGGAAATGTGGCAAAGGATCTTGGTCTTGATGTTGCCTCTTTGGGTGAGAGACGGTTCCGTATTTCTGAAACAAAGGACACTATATTTGCTGTAAACTCTGATAATGGCGCTTTGTACGTCCACGGGCGCATTGACAGAGAGCAGCTGTGTCAGGGCAGCGGTACGTGTCTGATGGAGCTGAAGGTTCTGGTGGAAAACCCTTTGGAAGTTCACTATGTTGTTGTAGAAATCACCGATGTAAACGACCACGCGCCCACCTTTCCCAAAAGAAATGAAACCATAGAAATAGCGGAACATACCTTATCTGGAAAACGATTTCAGCTGCACTCTGCTCATGATCCTGACGCAGGGATGAACTCAGTCCGCACGTACAGTTTGTCTGCTAATGAACATTTTGACATTAATATTCGCGAAACTAATGGTGAAAAAATACCATTTCTAGTTTTGAAAAAAATGCTGGACAGAGAAAAAAGCAGTGAACATTCTTTAGTGGTCACAGCGGTTGATGGAGGTAAACCCCAGAGGTCAGGCACACTTAATGTTACCATTATTGTTCTTGATACTAATGATAATAGACCAGTTTTTAGTCAAGAGATTTATGAAATTACAGCGAAAGAAAATCTACAAACAGGCACGTCAATTTTTAAGCTCACAGCTACAGACCCAGACGAAGGAACAAACGGAGAAATTGATTATAGTCTGGCAAAAATATTAAAGCAAAGAATCTATGATATTTTTGAATTAGACACGAAAACAGGAGACATTGTTGTAAAGGGGCACATCGATTACGAAGAAAATGATTTCTATGAATTGGAAGTGCAAGCGTCAGATAAAGGCACACCTCCATTAACAGGTGAATGTAGAGTTATTATAAAAATCATAGATGTAAATGATAATTCTCCAGAAATAGACGTGACTTCTCTGTCAAACACAGTGTCTGAAGACTCCAAACCAGGGACAGTAGTTTCTCTCATTCGCGTCAAAGACAAAGACTCTGGTGTCAATGGTAAAATCATCGCTCACATAACAAACAACGTGCCTTTTGAACTCAAACCCTCGTATAAAGAAAACACATATTCAGTTGTCACTAAGGATTTCCTGGACAGGGAGGAGGTGTCACATTATGACATAACTATAAAAGCCACTGACTGTGGGGAGCCTCCTTTATCCACCACTAAAACTCTGAGTATTCAGATATTAGATGTAAACGACAACAGTCCACAGTTTGAACAAAATCCTCTGTACTTTTATATTGTAGAAAATAACGTGGCAGGGACGTCACTGTTCTCTGTAACTGCATCAGACAAAGACAAGAATGAAAACGCAGATATTTCCTACAGCATTGCGCGTGCAGGACAGGAGAAGGACGTGACGCTCTTTTTAAACGTGAACGCGGAAAATGGTCAAATCACTGCTCTGAAAAGCTTTGACTTTGAGACATTAAAGTCTTTCCAGTTTCAAGTCGTGGCCTCAGACTCTGGGACTCCGTCACTGAGCAGCAACGCGACAGTGCACGTGTTCATCCTGGATCAGAACGACAACGCTCCAGTCATTCTGTATCCAGTCAGGTCTAATGGTTCTGCTGAAGGAGTGGAGGAGATCCCCCGCAATGTGAACGCGGGACACTTGGTGACTAAAGTCAGGGCCTATGACTCTGATATCGGATATAACGGCTGGCTGCTGTTTTCACTGCAGGAAGTGACTGACCACAGTCTGTTTGGGTTGGACCGCTACACAGGACAGATCAGGACACTTCGCTCGTTCACAGAGACAGACGAGGCCGAGCACAAACTCGTCATACTGGTCAAAGACAATGGCAACGTGTCCCTGTCAGCTACAGCTACTGTGCTCGTGAAAGTGGTGGAGCCCAGAGAGGCTTTTGCAGCTTCTGACGTTAAGAGCTCCTCTAAAGACTCTGAGGACACTAACGTGACTTTTTACCTGATGATAACTCTGGCCTCGGTCTCAGCTCTGTTCATTCTCAGTATCATTGTGCTGATTGCAATGCAGTGCTCCAAGTCCAGCACTGACTACACCTCCAAGTACTTACAGGACACAAACTATGACGGGACTCTGTGCCACAGCATCCAGTACAGATCTGGAGACAAGCGCTACATGTTAGTTGGACCCAGAATGAGCGTAGGATCCACTATAGTCCCAGGGAGCCAAGCCAACACACTGGTGCTGCCTGACAGGAGGAGGCCCTCTGAGGAGGACACAAACTATGACGGGACTCTGTGCCACAGCATCCAGTACAGATCTGGAGACAAGCGCTACATGTTAGTTGGACCCAGAATGAGCGTAGGATCCACTATAGTCCCAGGGAGCCAAGCCAACACACTGGTGCTGCCTGACAGGAGGAGGCCCTCTGAAGAGGTAAAGAGACAAGCGCTACATGTTAGTTGGACCCAGAATGAGCGTAGGATCCACTATAGTCCCAGGGAGCCAAGCCAACACACTGGTGCTGCCTGA +>XM_042877628.1 PREDICTED: Lagopus leucura von Willebrand factor D and EGF domain-containing protein-like (LOC122183568), transcript variant X25, mRNA +TTGCTCAGTCCAAATGCCAGGAGGCAGTGCTAAGATACAAATTTTTAACTTATTTAACTGTTGGAAGAGTTGGGTATCACCTACATGGCTAATGTGATATCCCTAGCTAGGGATGGTGAAGTCCAGGTTCACTGGGAAGATAGTAGTAAGCCCTTAAGTAGCAAACTGTTGCTGGGCTTCAATACAATCACATCTGATAGGAAAATCAGAGCAAAGATACAGGCCCTCCCCATGTTTTGCTGGAGCAAGACTCTGCAGTGGCTTTCTGCCTGTATTTCTGAGGACTTCTTGATAAACTAATGATGATTTTCACCGTGTTACCACAGTGGTCAGCGTTGCATTGTGTCTGACAACAGTATGCTGATAGCTCAGCTGGCAGGAGTTTTGCAAGAGATCAAGGTGCAAGGTAACAACCAGGCACTCCACATAGGAAGCAACCCAGCTGGAAATGTAAGATAATATCCAAAATAATTAAAAGCTCCTCACACTATATTTCCTGCTCGCATTCTGTCTCCAAGACATCTTCCACGGGAGCAATTCAGCTCTATGTATACACTGGGACCAATTCTGCCCTACTGAAAATATGTGGAATTTCATGGCTGACTTCTCCAGGATCAGGATCAGTCCACAGAGAAAATATAGTGTGTTGTGTGTGTTCGGACCATCAAACCCCAAAGCTGACCCTACACCCTATGCACAGAACCTCACCCTGCCCAGCAGAGATGTGTAGGTCGAGACTCATCATGGAACTGTCTGCACTGCCTGGAGCACAAGTTCAGTGTTTAGTGCCTGAATGCAAACTTGGTTCCACCCATGAAGACTCTGGTGCCGCAGCCCCAGAAGTTTCTTCTCCCTCTCTCCTTATGCATACGTATATGGAAATGTGTCTGAGGGCTGCTGATCCAAAGGGGCTCCTTGGCAGCAGGGAGGGAGAGATGCATGGATGATTGTCCTGCACATTACAAACAACAGGGTAGCCTCCCCGTAGCCATGATTCCCACCTGGGAGGAGCTGACAGCCTGAGGGAGGACTTGTCCACATTTACACTGTGTCTCCAATGTGCTCTCCTACAGTCACCTAACAGTCAGGTGTGTGCAGCGTGGACAAATGGTAAAACCTTCTTACACTCCTTACTGGACATCCCTCTCTCCTTGTCCCATGGAAAGCAATACAGATAGCACCAGCAACGAGCAATTTCAAGCCCCAATTATTGAATTTACTGACAGCTCATGTGTTTCCATGGAATTACCATGCCAGCAGGATCAGGCAGGACATTTCTTTAGCTACACCTTTGCATTTTTGAGGGTTTGAAAAGGAGCTGAAATGCTGTTTCAGGATGACAGGGAGAAGAGAGGCAAAGTCTGAAGAGCACAGAAACACACTGCAAGCACAACATAATTTGGACAAATAGAAGTGCTTAGTTCTGTTTAATGTGAATTAGCTTTCAGAAGTGTTGCTGGTTCTCAATACACACGTGCATTGGTGTCTCAGAGGCCGGAGGGGAGGACCAGTAGTACTGCAGGATCCTTGCTCAGTGTCTGCCATCAGTGAACCATACTGCTGTGCGATGCACATCTGACCCCAAAACAATGGAAGAAGAGTGATAACAGAAATGAACACTGCTGACAAGGTAAACAGAGAGACATGGCAGCCTGCTTGTTAGAGACAGCTAATGCTTGAGGGAACTCTGCATTCAACTCCATTGCAAGAAAAAAATCTAAAGACGAGTTCCACCCATTGAAGTGAATTGGCTTCTCAATGTTTTTCAGTGAGGTATCATTCGAATTTGGCTAGGAATCTTAATATATTTTTGACTCTCCATTATTACATTAATTTGAGTTAATTGCATTTATGCGGCTTGTTCTTTTTGATAGGCTTCAGAGCAAATGCTGGGTGTAAAAATCACCAGTCATGATACAGTGGTTTCCTAACACTTAAGACAGTTTCATAACAGAAGAAAAATTCTACAAACAGATGCTCTCGCTTCTCTGTAGATGGAGAATATAAATGTGTTATTACTGTGGAACTTCATAGTGCAATTTATGTATTTGGTTTATTCATAAGTTATGTTCACATTTTAAGAATAAACATATTCAGTTTTCCACTGCAGATAAAATTATTCTCAGATTTTAAATGCTGCTTTTCATCAGATTAGTCTTGTTTGTAAGATTGTGTAAAGTAATAAAGGTACATTTTCCTGCTAAACGCATTTGGGGATGGAAAACACCTAGCAATAACAATAACAGCAATTCTTGGCATTACTGTAGCAACTTTCATCCAAAGATCTCCAAATGCTTTCCAATAAGTAATTAATTAGGCCTCACAGCACCCTGGAGAGTTAATTACAAATTATCAAGCATACTCTCAAACCATTTCCATTGAAATTATACTTGTTCCCTTTCCAGAAGAAAACAAAATACGCTGGCTATCATACCATGACCTTTCAATACCATGATTCATTTTGAAAATGTAATTAGATGAGAATTTGAACGTATCCAGTTTTAGGAAAAGCTAATATAATTATACCTGACCACAAAACTCATTAGAATTTTTGGTTTCTTCAGTGAGATGATACTTTTTAATCTAACTCTTTAATAAAACTGCAACATCTATAGGAAAAAAAAAAATGAAATGCAGCTGGATATCCCAGTAAAATTCCAGAGAGATTTTAAATTGTGGACATCCATCTGTTCTTCCGTCACAAGAGTGTTTGGTTTTGAGGATGTTTGATCCAGACTTTGCTTCTGACACAGTCAGAAGGCAGAAGGACAAATCAGTGTTGCCTCCAGACTGAGCATCCCTCCAGAAATGTAGTGAGCTCCACTAATTCAAGTGCTGCAATCTGGGCCAGAGGAGGTATTTGTTAGAGAATGTTGTTTGCCACAGAATGTAGGAGGCAGAGAAAGGCAAGAAAAGGCTGAAATCTCAAATCCATTTATAATGGAAACATCCTGCATTTCCTGAAGCACTGAGTAGATGCTACAAGATATAATTCCTTCCTACCAAAAATCTGAAGCTGTAATTTTACCTTCATCACATAGAATCATGGGAGTAATTAAAAACACTTTTACTATGTCTTTTGCTGCAACATAGTGATTGTCTTGTTTTGATGTAAGATGAAAGTAGTTTTCTTGCATAATTTTCTGAAGGCAAAGAATTTTCTTCTTTTACATCCTAGTTTTGTAGGAAAGCAAAATAATGCTTGTTTGCATGGACAGAACTTGCATATAATTTGAAAAAAAAACCTAGTATTTTATCGATGAAAATATGGTACAAATGAAAATATATCCGCATCTCATAGATTTCAAAGGCTGCATTAAATTAACAGTGAAGATCTATTTTTCCTTATTGTATGGGAACTGCTGAGTTACGGCCTGAACCTCTGATTGATCACCTGAGGGAATCCACCTCTCTTTGAGAAGAAAGAACTGTCTACGGCTTGTTCAGAGCACACAGGGTCTGGACAAGAGGAATGCAGAGGACTCTGGGCAGTCCCATTGCTGAAGAAAAACTCTAAACAGGCATTCTTCAGGATTCAGTTATAGAGTAAAGCAATATCTGGACAAGGTGACTGACAGACCCTGGTCCCCCACTGGGGCAGGACTGACCTACATGGATATTTCTCTGAGCAAGGAAGGAGACATTTCCTAAAAAACTGTGTTCAAGATCTGCTTTCATTTGAACCTATCCTGAAGTCAAAGAAGTTAATGTGGCTTCATCTGAGAGCAGAATTTTGTCTAAAATCTTCATTACATGCCAATTCCACGAGGATAATTCATAGTTAAGGCCTCTGAACACCTTTAAAATAATCCTCTTTTGCTTCATATAATGAATAGAATAGATAGGGAATTGCTTTCCCAGACTTTCTGAGGAAACTGAAGCAATGTGTTAAAGTTTTAACAGCTTTTATTTCTCTTTTCAGATCTTAACCCAGTATCAAATATTAAAGTCCTAATATATTTAAGGAAAGCAGAAGTTGCTGTTATAATTAATTTCCTATCTGAGGGGAAAAATAAATGTATTGCTAGCCCTTTTGGAAAGAATCTCAGTTGCAGACTTGTAGTGATCACCTGGAAGAGCATGCAGTGATTTCATGAAATCATACTGGAAGAGGAAAAGGATGATTTCACAGGAATTCTGTTGGGAGGATTTTAGATGCTGCAAATGAACTGGAAAAAGAGGCTGAGAAAATGCTAAAGCAGCATAATTTTTGTCTTCTTCCAGTGGAGGAAAATACCGACAGATTTATTATACCCAGACTTTTGCTGAGAAACAAGCATTTGGGATCTATTTTAAATTAATTTTGCAAGAATTTTATTTTTTTTTTTAATGAGAAATAATTTATTTTCCTTCTGGTTAAATCTTGAAATACTAGAAGCAGTATGAAAGAAACACTTGTAGATAAGCTTAAAAATTCCAGTATTTTAATTTGCTTATGCATTCACATCTTGGTTTATTATTTGCAGTCTAACAGTCTTCATGCTTAGTCTAAAACCTTTAATTTCCTCTATAATATGTATCGCCGTGAAAGTGAACATATCAGAAGACTTAGGCACTACAGACATGACAGCAGACAACCCTTTGAAAATGTTTTTAAGGTTTCACTTGAAAAGGAAATTATGCCAATGGGCATTAATCATTTTGGAGGCTTCATATTGCTTCACAGATATTTATAATGTTAATGAAAACAGTGACGCTGTTATGAGCTACTGAATCAAGAAGTTCATTTGCCCCAATAACAGCAGGGGCTTGAAATGAGAAAAAAAATCTTTCAGACAGGGATGCTGCAAAGTTCTGAGTATGGAAAATCTTAGGAGTGTTGTGACATTCAAAAATGTCTCCAAAGATGTGTTATGCCAAAAAGCCTGAAAATAGGCACATGCATATCTTACCTTTCTGCATTTCTTTGCATTGTAAACTACACAACAACATTTTTTTTTTCTGTCTACATCACTTTACTTAATAATATAGGGCAGTGATAGAGTTTTAAAAGTTCCTTGTGATTTTTTCATTACAGCATTTTGATTGGTTTTAAGGTTAACATAAACTGATCTTTTCTGCCTAATTGGCTTTTTTTTTTCTCTTTTATATAAGCAATTTAATTCCCAGTTGTGATATATCATGCAGGAGAAATATATATCAGAGAAAGAAGAAGATATGTCATGTGGAAAGGAGGAAGGAAGGAACTGCAAGAGGGATAGGCTATAACCTTAAAAAAAAAGATTGAAAGTTATCCAGAGTTTTTTTCTGTGGGGCCATACAATCTGTGTGTGATCTTGAAATGATTGGTTTTGGTCACAGCGGGCAAGATGTTGAATGTGGTCTTATTTGTGTTATTAGACATCTTCCATTTAATGCCATGGCTGTAAAGGGTGATACAAGTGTTGGCTTCATTTCAGAGTCAGTAGTACCAGCAAACATAGCCCAGCTAAAAATAATGAATTTTCAACTACTTATTTTCCTATTTTGCCTTGAGGTTAAGGCACTTTAGCATGCAAGCCTTCTGCAAGACATATTTGAGTCTACCAAATGTAGTTTAGCAGGTAATGAGATGCATTTTTTCATCAGGGTCATGCTACCTAATCAGACGCTAAATGTAATTATTCACGATCGAACCTCAAATGCAATTTTAGAAAGTGTCTGTATTACAAACTAAGAAATCAACAGGAGGACTGCTTTAAACATGTTTTCAGTATGCCAACATTGCCTTTAATTATTTTTTGATGTTTTATATGAAGTCAAAAGACAAAAAGAACAAGCTCTGAAAAAGTTGTGAAAAAGAGATAGCATGTGCGTGTCAGAAGAAACACAGGGAGAGAGAACATGAAAGAAAGTATAGAAAAAGAAAGGAAGTACTAAAAAGATGAAGAAACAGAGAAAGAAAGAAAGAGAGATAGAGAATAGAACTCACATATAGCATTTGATAGCCGTAATTGCTCTGCTCTTTTATAAAGGCTTCCTTTTTCTGATTAGAGACTTTAAGATAGTTACTACCGAAAACAGTATTTAAAATTCATTCTTTTCCTCCTTTTTCTTTGAATTCTTCATTATGTAAAACATGTACTTCAGTGCTCTTGAAATGTTTTGTTCTCTTCATTAAATTGCTCCATTTTTATTTTAATGTCCCTGTAGTCTGGATTTTTCTCTAAAAATGTCTGTATATCTGTTAAGAACACTTGTTCTTTCAGAACCTGTTTTCCCTTTTATTTTTTTAATTCTATTTCTGAGTGAAAATGTGATTTTGTTTCTTTTTTCTTTTTTTTTTTAACACCTATTTGTCTTTTTTCTTTTTCTTTCAACAATTCTTTTGCACCAGCAAAGGGCCCATCATTCCAGACCACATTCATTTTGTTTAAATCTGGCCAAAGAAGGACTGTGCACGATTAGTATATACAATAGATGAGTAATGATGATTTTTATTCCATCAGTATTAATTTTATGCCCTTGCCTAAAGATTACTTGTAAATGCTTAGATTTTAAGTATTAAAGTAAACATCACCCCTATTGATATTTTGGAAATGTCAGGTTAGTTAATTGGGGTAATATACAGGTACAAGTTTCCAAACCATTATATCAAACTTTGCCCACCATTGGGCTCATGCTCTGTCAGCTAGCAGAGGAAAGAAAGCCAGAGGAGCAGCTCAGGCCACCATAACCCATTCTTGCCTGCTCCTCTCTACTCTTTTTTTGCTCCCCAAAGTGAGTTCAGCAAATGCCTATTTAGTTGGACCAGTTCTTTTGATATAGGCTTATACGTCTTCACTTAAGGAAACGTTTTTATTGAGGGAGAAAAGCCTCATGACGGTATTTGTTTTTACTGTGGGTTTCAGCACTTCAAGAGTTATGGACACCATCTAACCTGCACTAATGTGCAGAAGCAGTATCAGGCTGATATACTGAGCATCATTACTTACCGTGGTCTTTTTAAGAAGTTGGGAATTGAAGGCTGAAATCTCAAGACAGTCCTCTCAGCAGTCCAAGGACTTGAGTTTAGAGTTATCTGTAAATTCTGTTTATGTTTATCCAATAAGAACTCAGCCAGTGAGTGCTGCAAATAATCGTTTACTTAAACATAAATGGGAATTAATTAGTCTATCAAATGAAAGGAAAGAAGATTCTGAGCCAGGAATGCACTCATAGTCACAGTAGCACATCATAACTTTGCTCGATGTACCTAAAATTTCTTTTAAGTGTGGCTGCCAAATCATCATGATTCTTTTGTTTATTAGCCAAAAATCCTACCCAAAATGGGAAAACTTCCAGTCTTTTCTATGATACTTATGACAGCCTTTTTTAGTAGCTGATTTCTTATTAGAATATATTCCTCTAAAAAAATACATTTGGCTATTTATTGATTAATGCTCATTTTTTAATGGAGCTGTTTTGCTAAGATTCAGTGTCAGGTGCATTTCTAACACCCCAGCTCCTCTGTTCTGTGCATCAATTGGCACACTCATCAGTTAGCCAGTTCTGCAATAAAATAAATTAATGGACTATCCTATTTCATTTCATGGCATCCGGCCGATGGAGTACAGAAACTGCTATAAACCCTAGGACTCAGTGGGACTGCTGGTATGAGGAAGGAGTGCAGCATTTGGCCCACATTTTGCATTGATCAAGCAGAATTAAAATTAGCACAGCAGTTTGCCTTGAATGAAGCAGAAAAGCGTGGTGCAGGCTATGCAGCCTCCCAACTACTAAATTGACCCCTTTTCCCTTTTATTTTCTCTTAGCTTAATTTTTGCCCTACTGAAATAAATGAGGCTACTTATACTGTGAAAGGAAGGACTGGATAATCTGACCAGTATAGCATATTAAAATTATATGTATTCTATGGTTCATAATCAAATATGATTCTCTTCCTGAAATAAGCACTATATGGCTGTAGTGATAATCACTAATGGGTCAGTTGGGTACCAGAGCACTGTAAATTCTGGTGATGAATACACGGGGATGCTGTAGACTTCTGCCTTGTATTATTTTAATAGAGAGCAGAGGAAAACAAGGGAAGATTTCCTCGGAGGTATACTGATAAAATCTCACTTAATTATGTTATAGATCTCACATTGCTTAATTTTTTTTCTTAAAACTTCAGCTCTTTGAATCGCATTATTTAAAAATGGATTTCCCTGGATGGGAAAAAAAAAAAAAAGAAGAGAGAATTCTTCATAGCTGGGAAGAAAATCTTTACACTGGAAGCTTAAAAAGCAGAGAGTAAACACAAACAAAGAAGAAAAATGGAGGACCAGCGGTGAAATCATAGGCTGAGTGATGTCATGGAAATAATGTCCTTAGAGGAGGACTTCATGCCAAAACCCAGGAGCAGACAGATTTCTGAGAAAGATCTTGATCATCAATAACTCCTGCTAATTCAGTGGAAATCACAGTCAGGTTGGCAAGCACTATGAATCATCTCTTCTGATCCCTGCATGCTTTTGTAGAAGAAATTGGAAAGGCAACATCCACGAGGAAATACATGAAGATCTAACCTGGCCTGTGTGAAAATATTCATGTCATAACCCAGACAAGAAACAAATGTGCCATCTCAGACGAATCCACCTTTCTCTCTTTGCATCTCATGGAAGACTTTGAAATTTCGGGACAAAATTGCATTCTCTTATTCAAAACTGAACAAAGCAGGGCGAGTCCTGCCGTTTTGCTGAAAATGCTCTGTATAGAAAGTATATGTACATTAAATTGCCTCTGTGACCATGTTTGACTCTTACTCTACAAATAAATGGGAGTAGATAGCTCCCTTCCCTCAGGAACTTCTGTCTGCGAAAACTGTGGATTGCTGGGATATGCAGATGAAACATCTCTTTCTCTCCACCAAGATATGAAAGCAAAGAGCTCCTTCCCCTTCTGAGCTTCAGGCCAAGGGGCTCCGACACACACCGAGCAAATGGGAAGATGTGTGATTAGGTAACTTCCAAACTTCAGAAACATTTCCATTTCAAATTCTGACTTCCTGCCATGCACATACTCTTCTGCAGCCAGCTCCGAGGCAATTTATTAACAACTCCAGTGGAGTGATATCTGCAGAATCTGTTTTTCAGCTTTTGACAGCTGAGCTGGGCTAATGTTCCTGTTCCAGAGTGCCGTCGTGGAAGCAGTGCATATTCTATATATTCAATGAAGAAGTGTCCTTTGAAAGTGTAAATGAAATCGCTTATCTGAAGTAAAGAGATAAAAAATCAATTTAAAACATTTTAGATTGTTTATCAGCATGTAAGAAAAAAATACAAGATTGACCAGGTTTTACAAAGAAAGTTTTAAACCACAAACTACCAGTACTTTTAGGTTGTATTTCCTGTTCACTAAATTAAACGTTTCAATGGATAGCAATGCATTTCAGAAAAATAAATTAAAAACAAATCAATAAACAATAGAATAAAACCTACTAAATGCTTTCAGTATTTTAACTTCTTAAATACAAAAGCCTATTGAAGTTGTTTCTGCAACCTTAAAATATAACAGAACCCATTGAGATCAGCACTACATCCAAGATCTGAAATGAGGGGTTTTAAAAAATACCTGAAATACTCTAAATATTAGATAAAGAAAAGTTAGAGAGGTGTTCAGGGAAAGAAAAAGGGCAATTTTTTCACATCAGGGATTTAAACGAATGTGAAATCATGAAAGTCTTAACACTGTTCTTGAACTTTCACAGAACATAGGTCTTACTTGGATGAATGTTACAAGGAGAGTGGAAGAAGGACTTAGACTAAAAACAGGATTGACATGCATGATGAATTACAGTTCATTAATCCAATTAATGAGTAATTTCAGAGGCTTTAATCCCAGATAAAGCTCCTTATTGCAGCTCTGTTGGCTAGTGATGCACAAACTAAGAGCCTGTCAGCAAATCAATTGTAAAATTCTATTAAATAAAGCCTGCCATACACTTCTGTAGCTTATGTGACAATATTTTGTCCAAAAAAACCCCAAAAACATATATATATATATGTACATATGTAAGAGAAGGAGAGGAGGGAGCAATCTCTAACCTTATTCACCCTGATTTGTAATATAAGAGTTCAAGATATATTTAAAATGATGCAAGCCAGCTGAATGCAACTTCAGATATTTATAAGCACTCTTGATTTAGAAGGTAAACATATGCCCCAGTTTCTGAAGTCATCTGTATGTATGATTTCCTCATACACATTCTGTTGACTAATGGGAGTCAATAAAGTACATCAGGCTGCTTTGGGAATAGTCTCTGTTCTGTTCTTAGTTTATTTTATTTGTGGTGCCACTGCATCCAAGTGATTCTTTCTGAGCGCTTCAGAAATAGACTCTGTCCTCCAAAAGTCTCACAAGCAGAGAGCAAAGAAAGGAGATAAAGAGAGGAAAAATTGTGAGAGTTGTCTTCATTGACTGTAGAATCATAGCACAACAGCTGACAGAGCAGTAAGTATGAAGCAAGCATTTGAAATTTCAGCTAAAAAGTCAAAACCTAAAAACCTAAAACCTAAAAACCTAAAGAGTCAAAACATGATTTAAAGCAGAAACAACAGTGTTTCACGGCTTCTCAGAAAACCAGGAGGACTCCCCTCCCAAAAAACCATTCCCCTCTGACTGAACCAGGCTTTGTATCCCTGTTATAACAACCCTCTCCCCCTGACAATCAAGCACTTCAAATATTCCCTTGCCCACCATAATGGAATGAAGAGTGGACCTTCACTAAGACGCCTCTGAAAACAGGCAGGCTGGCAACTTGCAGTGACAGCCATGTACTGACTTCTATGTAGCGACTTTGATTTGTTGAGTACTGGGCTACCCTGCACAAAAAACATAAATGCATTCCATTTTAACAATGAAGAAGGCTTGCAGTACTGTGAGAGGCTGTGCAACACACACAAATATTGATCCTGATCTCTTTGAACAGCTATGTCAATTACCTTCCGCATTCTCAGTTTGTAAAAGCTGTGTTACCAAAGAGACAAGATCCTGCTATGACGACTATTTAAGTAAAAGTGCATCCTTTCTGATATTGCCGAAGAGTATGCTGTGGGAGGATGGCAGTTCACACCCAATTACACACCATGATGGATTCATATTTCTTGATCTTTGAAGCCTTCTGAAACAACATTGCACAATGACCCTCAGTCTTAAAGACCAAATAAGATGATTAGTGACATGCAGAAAAAAGGCTCAGAATTTCATGCATGTCAGAAAAACTCTTAAGCACTTTCTGTTTGTGGCAGTGCTCCTGAACTGGAAGAAACTTCAGTCACTCCAGCACAGAGAAAGCTGTTTGATGGAAACAAACAACTGCAGAGACTATAAGATCGGTAACACCATTGTCCCTAAAAGGCTCCCATTTAACAAAAGATATATCACAATTTGAAACCAAAAGCAAAATACTTGTGTGCCTATTGCTAGAATTTTGGATTTCTGCAGTTTGAAAATACAATGGAAATCACAAATGTTAATGAAGATTCAGTGCACATCAGCGTGATGATGCATATTACTATAGCTGACAGATTTTGAAAATGAAGGTCATAAGAAATTGTGGCATTGAGAAAATCTTTTATGCTACTAGTGCTAAAAGTTTGTTCTATACCACGCAAAGCAAACGCTGTGTACTTCAGAAAATGCAGCTGTTGAAGGAAAATGAATCTGATCCACAGCTTAATCCCATTGTATGAATACAATCCTGAAAGTATGATGTCTATCCAGGAGAAACAATGCATGAATCAGTACTTAACTAATGGAAACAATAATTCCTGTAGTTGTTTCAATAACAACCATGGCTGAGAGTGTCCTAAAGGATCAACCAGGCTGAGGGTAAGACTGCTCAGCAGATTAGAAATCAAATCAAAATGAAAATGGGAGTGGAGAAAGAAAGTTCTCACCCTTGCAAAGTCCCAAGGAATATCAGAGCCACTCTGGGAGCATCTCCATGTGGGGATGTCAGATGCCATCCTTCACCTTCTCTCTGCACTGACCCACATGGGGGCACCTAGGAGGGTGGGCCAGTTCTGCCACCATCAAAATCTTTGATGACTGCAGCTTTTGGCCTCCCACCACAGCAGGCGTGTTAGCAGCCAGGTCACCAGAGGAACTGCCAAACATATGACAAGTGACAGGAATTGAAACACTTTGACCTTGAGCCATGCATAGGCTTGAAGCAGTGCATTTAGTGCCTCGAGAGGAGCAGGAGGTGTGAGACGTGCGTTTTGAAGAGAAAACTAAAACTGATAAAAGCACAAGATTAAGAAACGAATGAAAGTTACCAAAAAATGACCAGGCTGTTTAATGTGAGGAGAAAATGATCATGCTATAGTCCTCCAAATGCTTTTAAAGACAGAAAGGTATCCATATATCTTTTCTTCCGCCTTTGAAGCTTCAACTGTGAAAGTTAATCTAAAGGAAGCAAAATGCAGCCACTCTCTTCAGACCATTTGATATGCTATTGCTTGCAAACTTCCTTTAAAAATATCTTTCATAACTAAGAAAATTGCCATATGCTCACTGGCTTATAAATGGGAAATTAAAGATAAGAAAGTCTGAATAAAATAAGACTACTCGATATTAGCATTCCGAGCACTTGGCCAGTATCGGTCAATTACTTCACTGCTCTTCTTTGCCATCCCCAATCTCACTGAAAAATACAAGCCCACAACTTCCCCACGAGATGGATGTTATTAACCCATTTTTCACAGCTGAGAGCTGAGACACAGGGGAGATGGGTGACTCCCTCTGGGTCACCGTGCTGCTATTGAGAAAGCTGGAAATAGGCCTTGAATCTCGTTTATAAGACAAGACACGGGGCAGTTCATTTCAACCAGAGTGGTTTCCACATTGGGATTTTACAAGCTTACATTATATGGATGAATTAATAATTTGACGTCTCAAAAGCCTCCTGCTATTCACAGAACTCGTTTTAATTCTTACGTTACTTTTTTTTTGGCAAGACTGTGACGAGCAGTGTGAGGGCAGAGGTGTGGTCTGATGGCATTTATCAGTGTCAGTTGTCACCTTACAAAGCGTTATGGGGATGTACGTGTCCAGCTTTCACTGTTTGCACTGCTGGCAGATTGTGTGATCCCACTTTATTGCCTTTTGGCTTTTTCCCTTAAAAACAAACAAACAGTATACTGTTCCCTGGAGAAGGACAGGTAGTGCTTTTTACATCTAATAACGAGCCAAGAAGAAATCTATTCTGGAACACTCATTTTCACTCTGTTGCTGATTGTAACATCAGTACTTCTTTTCTACGAGCACTCATTCAGTCTGCTGTTCCTACTAACACATTATACATGACATTTGCTATGTATAGTTAAATCAAATTTTATTTATGATATTCTCCATAGTGATAATGCACTTTGTGTCCAGGCCAAAACATTGAGAATTCAGTTGTTTTGCATTCATTATATGCTTCTTCCTCCCCAACCATACAAGGAATAGCATCCAAGCGATGTTTGGATCCCCTGTCCCAATGCCAGGCAAGTCTCTGCCAAAGACAGTTCTGATAAGAGGTGTTAAATAGTTAAACACAATGGATTTTGATTTTTTTTTTCATTTTATTTTCAGTCATTAGGGTAATTTCTTATATATGGAACATCACTTGTTCTTGAATACTGTGATAATGCGAGTCTCCAGTTAAAGACTGAAGATGAAATAATTAAAAATGGCTTATTGACCTTGAAAGCCATGTCCTTCTGAGCATCAATATGAGATATGCACATTAATTAGTGTTTTTCAAATTCAATCCTTAACATTTACCAAAGGAGAACAGTTTTCTCAGTAAGTCAAAGACAGGCCTGGTTAGCCAGTAACTTATTACATATTTGTCCACATCACAATTTTCTTCATCCTTGATTTAATCTGCAAAAATATTTAATAAGGAAAGCTCTGTTGAAAATAACATGTTTATTAGAGCTTCATTTTTGAAAAAAAATTCTTTTGAATAGCAGACTGAATTGCTAGCATTATAGAGTAACCACTTCTTAATGAATAATAGAAATTTGAGATAAAGGACATCAAATTATTATGACTTATTAGAAGATACAAAGGACCAAATTTGCAAATGAAACTGGCTAAATTTTAACAAATATGTCCATAATAAATCTTAATTTCAGTATGACTTTCTAAAACTCCATTTCTATAGTATTTAACAAAAAGCTCTGCAAAGAAGAGCTTAAGCTTTATATTTTTTCACTTATTAGAGCGAGGAGTGGAATTTCTGACAAACACCAATAAAGAGTAAAATTTATATCTTGTCAATAGGACCTATTTTGTTGCTAAATTATCTCAGAAGTCTCACAGTCAGGAACACAGTAGTCTAAAGCAGTCAGGACATAGAAGAAACAATGGGCAGACAATCTTGTGCTAACTGAAAAGTGAGCACTGTAAGGGAACAGCTGAATTGGGGCCTGAACCTCTGATTGACCACCTGAGGTGAGTAATGAGCCAGCTGTGGGAGCACAGGTGAAGGCAATTCATGTGTGCTGCTGGAAGGGGTGGAGCCTGGCTGCACCTCTCCTGGACCCATTTAAGAGCTGACTACTGGGGTGGAAAGATCTTTTTGTGGAGATCCCTCCTTTGGAGTTTTACAGTGTGCCCAGGATAAGGTGAAGAAAGTAAGTTCAAGTGACTGGTCCAAAATTACACAACCACACTGATGCTCAGCTAGCAACGGGGACTTCCTTCATCCAGTGCGGCACACCATCGCTTTACATCACTCAGCTTGCAGAGAGAGAAGATTGAAGTTATTTGTGGGCAAATTTATGCTGATAAGAGAGAGCACAGAGAGCCCCAGAGATGGAAAGGTTTCAGAAGACACTTCTGCTGGAAAGCCAGCTCCTGAGTGCTCCCCAGCTGGACATCGCATCCTCCGCAGCCCATACCGCAGCACCAGGTTTGACTCGCTGGAGCTGCAGCGAACGTCTGCTCAGGTCCTGGTGTGTGACCACTCATTGCCACCAGCATGGTATCGGTTCATGATCAACAACACGCCTGCGGAAATGCCAACGAGATGCATTGAAATGAACAAATGTGGGACACAAGCTCCGGTGTGGCTGTCACTGAGGTCTGAATCCCTGCCTGCTCCAGGTGAAAGCAAGCACCTGATGGCCTGTGGTACCTGGCAGGTCTTTGGGGGCACCAAGGACTGCTGCTTGTTCCGGATACCCATCACTGTCAGGAACTGCATCAAGTTCTTTGTTTATCTCTTGCAGCCGACTCAAGGATGCATGGGCTACTGTGCAGAAGAAAAACTCCCAAGCCTGACTTTACAGCCAGTGATAACTTCTGAGCTCGTGCGAGGTCGCGCCCACCTGAAATGCGCCTACAGCTCACCCAGCTGGGGGCTGAGCTACACGGTGCTCTGGTCACGTCTGGTCGCCCCGGGCAAACAGGAGCAGATCCATCAGGACACCACCCTGCAGACGTGTTCCTACCTGGAGATAAGCAGCAGACATCTCCAGCTGGGAGACACAGTCTTCTGCACTGTGACTGCATTTGCAAGGGACACTTCTGAGCAGCGGTCATTGCCTGAGCAGAGCAAAGGTTTCTACGCTGGGATTAAGTTTTTACCAGAATCATTACAAATTGCAGAAGATGGCAAGGAGCACATTTTGACCATCCTGAGCACTGTGCCCATTACCTGTGCTGGGCATAACGATTCATGTAAAATCACATTACGGCTCAGTACTGAGGATCTGGACAGCCAATTACTGGGGCCCCCAAACACTGTCCTCTCAGCGTGCCAGGTGGATCTGGTGCCGGCGCCCTGCTCACAAGGCAGCTGTGCAGCAGCTGTACTAACAGTGACAGCCGTCACCGACTTCGCTCAGGATGGGAACCGCGTCAGCTACATCAGAGCCGAGCCAGTTGGACACAGAGATGTACTTTGGAGGGCTCACGCCTCGAAGGATGTAAAGGTCACAGTTCAGGACCTCCCAACAGGGAACTGCTACTCTTTCACTGATCCACACATTATCACGTTTGATGGATGGCGTTACGATAACTATAAAATCGGCACCTTCCTTTTGTGCCAGAGCACGTCACGGGCATTCGAAGTGCACGTCCGTCAGTGGGACTGTGGGGGACACCACTCTGCCACTGCCTGCAACTGTGGGGTGGCTGCATGGGAAGGGAGCGACGTCGTCCGCCTGGATGCCTGCAATGGGCACTTTCGGGACAGCAGGCCGCAGCTCAGCATCCAAAGTACTGAGGCATCACCACAGGTCAAAATCCTAACGTCCTACGGAGGGAGAAAGATAACAATCCTATTCCCTTCAGGAGCGTTCATTCGAGCCGATGTGAGTGAGTGGGGAATGGGCTTGACAGTGAGGATACCAAGCAGTGACTTCAACAGCACCAGAGGTTTGTGTGGCCTCTTTGATGGGATCAGTCACAACGACTTGAACAATGTGCCTGAGGAAGACTTCATAGAGGAGTGGAGAATACCTCCAGGGAAGAGTTTATTTGACAAAACTCCAGCATCTTCAGAGGGGAAGCAGAGGAAAAACTACTGCAGATGCCAGAAGGAGAGCACAAAGTCCATGCCCTTGCTAAAGACGCTGAATGCCTTTCAGATGCAATCTCCTGGTTGTCATTATGATAATGTGGATTACACTTTTGCAATTCCATATCTGGATGTTACATCAGAGTTTGTCACTCACTCAGGCAAAGAGTTTGCTTCAAGAGATGATGAGGAACGGTCGCCCAAGTCTTTTGATCAAAGATCTCTCCCTAAATCAGCCAAGAAGCGAGGTAGCCGTGAGGAGCGATTAAAACCCTTCTCACATCATGCTTCCATGAAAAACAACAGTTCCCTTAACTTTACCAAGCCAACAGAAGAACTACAGAGACCAAAAAGACAAGAAAACTACTTTGAATACTCAGCCCTTCACCCGTTGCATAGCCCAAGCCAGACAGACACGGAAAGCTTTGCCTATTTTTTCCCAGAGGATTATTTTGAAGGGATTCGGATAAAACTCCCACTGGGATGGCCCACTCCCAGCGGCCTAACCTCTGCCAAAGCTCAGGAGATTTGCCACCAAATTCTTGCAAATTCCACCATTGGCTTAGCGTGTAAGTCTCTGCTGGGAAAACTGATAGATGAGGCCATCAATATATGCATGTTAGATCTGCAGCTCAAGGATGATGTGGCCTGGGTAAGGGCACTGATAGCGCTTTTGGAAAATGAGTGTGAAAGACGAGTGCTGAGGCACAGAGGTGAAGTGTTTCGTGTTGGAAGCCAGCCAACTTCTAACCAGGAGGAAATCCTTACCATTCTCCGCTGTCCTGCTTTCTGTAATGGCAATGGACAATGTACAGACATGGGCTGCCAATGCTTTGAAGACCACAGCTCTTATGATTGTAGCACTGCCAGAAAGCAAACTCTGGAAATCACAAGCTTGGAGAACAGGGGCCTATGTGACATTCGCACCTCTGACTGCAGTCGTGTCCGAGTGTTTGGCGTTGGCTTCAAGGATTCTCCCCATCTGCACTGTGAAGTCACCAGATTAATTCATCTCAACGGCGAATGGATATCAAGAGAGCAAGAAACCACACAAGCAGATTTTCTCAGCTCTAAGGCTGTTGACTGCCAGATTCCTCTCCTGAACATTGCAGAGACGGAGGCTGTGCACTTTGTAGCTGGCGATGAGCCGTTCGCAAGATGGCAAGTAAAAATCACTGATGATGGCTTCCAGTACAGTAATTCCAGAGTGCTGACCCTGTACGACGCAGTCTGCCAGGCCTGCGAATCCCATCCAACTGGACTTTGTAAATTAAAGGACAATACTTGTAATATAGATGGACTTTGCTATGGGGAAGGAGAGTCAAACCCTGCCAGTCCTTGTCTTCTCTGTGAACCTGATATCTCTAAGTTCACCTGGTCTATTAATGAAAACAACCTGCCTCCTGTGTTCCAGGCCCCCTCCAGCCAGCTGCTGACATTTATTGGTGAGAATTTTGTTTACCAGTTAACAGCGGTGGATCCGGAAGGGTCAGCTGTGCTATTCATCTTAGAGGCTGGGCCACAGGATGCCAGGCTCTCTCCCGCTGGCCTTCTTATCTGGAAAGTTGATTCAGAAGAAATGCAGACCTTTGAATTCACTGTGTCGGATGAATGCAACGCGCAGAGCAGATACGCTGTTGAGGTTCGAGTGAAGCCCTGCAGCTGTCTCAATGGCGGAACGTGTGTTACCAATATTAAATTCCCCCCGGGCCTTGGTGAATATCTGTGTTTATGTCCAAATGGATTTGATGGAGGGCTTTGCCAGGAAGATATTAATGAGTGCAAATCAAACCCGTGCAAAAGCGGAACTTGTGTGGATGGTGTGGACAGCTATGCTTGTCAATGTCCCCCTGGTTTAGGAGGGCTTACTTGTCAGGAAGACAAGAATGAGTGTGAAGAAGGTCTGTGTTTTCCAGGAGTGTCCTGCATGAACACCTTTGGATCATACGTGTGTGGAATTTGTCCAAGTGGGATGGAGGGAAATGGTAAAACTTGCAAATCTGTGCTTGCTGGTGACTTTACAAAAGCTTTAATCGTTGACAACAACAATGGCAAAGGTGATTTGAACAAAACTGAAGTTGAGTGGCCACTGCACCCCTTAGAAGCAAATAATTCTCCTGTAATTAGGAATTTTAACATAAGCACTAATCATGTCCACACAGCACATCAGCCCCGTGTTACCACCTGTGCCAATAGGCCATGCTTTCCTGGAGTGCTGTGTTTCAATAGGAAACCCCCTTACGTTGGCTATGTCTGTGGCCGATGTCCAATAGGGTTTTTTGGAAATGGCCGAACCTGCAGCAAAGCCTCCAGACCAGTTTCAAGATCTTCCCAAAGCCATACAGATGTTGCTGAAAGAAATAGTGAAGATGCCAGAGGCTCTCATCAGGAAGGCAAGACATCAAGAAACATCTATTCGTTCCTATCCCAAACCCAAATTCCAAGGCAAGAAACTACATACTTTGTGGAAAGAAACCACACAGTTATTAATGCAGCATCCTTTACAACGAAAAGGAAGATTTCCCAGCCTCAGATGCTGTCAGCAAAAATACCTGATACAGAGTCCACTGTATCTGAGAAACAGACTTTTACTGAAAAAAGAAGTCATACACACACTTTCCTTCTGCATGAGGAGCCAGATCCCAAAGCAGCAGCTGTCAATGTGACTACTCCTACCCCTGTGCATTTTAAACAGTACAAGCCAGGAACAAGACAGACCATTCCTTCTCATCTCAACACAAACGCAAGCTCACTCTTCGCACGGCTGCATGCTGTACAGCAAGCTCGTTCCAGATACAGCTTATCTTCCAGGAAATGGCCCAGTCAAGTGACAGGCTCAAAGACTGAACTCTCCAAAAATCTCCCAACAAAGCAGCAGAGAGTTTCTTCTTTGGAAACATCCCTCACATCCCCTTTGCATGAAATAGGTTTTTCCCTTGACACAGCTCCACAGAGTGCCAGTGTCCTGCCTGGACCTGCTCCCCCAGCAAGGCTTCCAGCACATACCACAACCTTCAGAAGAGCATCCAGTGTAGCAATGGACCATGCAGAACTGCCAAAACCCATCAGTGGGTCCTATGAGAAAGCTCTCTGTGGTTCAACACCATGCTTTAGTGGTGTGCAGTGTGAGCTAGCCAAAGATGGAGAATTTAAATGTGGGTCTTGTCCCAGTGGATACAGCGGTAATGGAATTACATGTGAAGTGCAGTGTGACCCACCGTGTGAGCATGGAGGAACCTGTGTAGCTCAGAACACTTGTTCTTGTGCCTATGGATTTGTTGGTCCTCGATGTGAAACAATGGTGTGTAACAGGCACTGCCATAATGGCGGGGTCTGTGTGTCGCCAGACGAGTGCAAATGCAGAAGCGGATGGAGCAGCCCTTCCTGTGAAATAGCTGTGTGCAACCCTGTGTGCTTAAATGGAGGAATCTGCGTGCGACCAAACACTTGCACGTGTCCTTACGGTTTCTATGGGCCCCAGTGCCAGAGAGCTGTCTGCATTCCTCCTTGTAAGAATGGCGGCCACTGTGTTCGAACCAACGTGTGCTCCTGTACTGAGGGCTACACTGGAAGAAGATGTCAGAAGAGTGTCTGTGATCCTGCGTGCATGAATGGAGGGAAATGTGTAAGCCCAAATGTTTGTGACTGCCCATCTGGTTGGAGAGGAAAGCACTGTAATAAACCTGTTTGCCTGCAGAAATGCCTGAATGGTGGAGAATGTATAGGTCCAAACATCTGCGAGTGCCCTGAAGGATGGGTGGGAATGCTGTGCCAAACCCCAATTTGTGAGCAAAAATGTCTGTTTGGAAGCAGATGCATAAAACCAAATGTCTGTGCTTGCAGAAGTGGCTATACTGGGTCAGCATGTGAAAAGAAGGAGTACTCAAAGCTAATGACTGCTCATTTAGAAACCATATCTTTAACTACCCACAGGATGAAGATAACATAACAGCAGGACAATGAAGACAATCATTTGGGTATCGATAAGCCCAAACTGAGTTCGTTTTTCATTTGGGAAGACACGGTGTGAAAACATTACTACTTCTCTCCCTTCTACTCTCCTATAATCACAAAGAAAAACTAAAACAAAACACCAAGGCATATGTCAATAAACAGACCTCTATTTTCAAAA +>XM_038827982.1 PREDICTED: Tripterygium wilfordii uncharacterized LOC119984160 (LOC119984160), mRNA +CCTACTTCTCACCGCCATTATTAACCTCCTAAACCTTCTCTTCTCTGCAAAAATTGTTAAAAAAATACAAATTATATATAAACCAAACAACAAATCCTGTATTATACAGAAACCTTGATAACTGATCGTCCGCAATCATTCACATCCTCTCTCTCGAGTCGCAACGAATCCAAATCTTCATCGTTGGATCAGAGGGCCAGACCAAACACCACCACTAGCAGAAAACATGGTTGAAACCAGACGCAGCTCTTCGTCTAAGCGCCCTCTCGCCTCGTCTGCTAACCCCGTGCCTTCACCATCGGCCAAGCGATCCAAGGCTGGTGAGGCATCCTCGAAGGCAAACGATGCGGCGGCGGTTGAGTTATCGACGGATACCAATGGTTCGGTCAAAGAATCTGGGTCTGGAAGTCTTGAACCGGAGCTGCAATCCCCTGATCTGCAGGCCGACGATGCTGCCAAGCCCGCCGATGGGGAGAAATCGCCAGATGCTGAGGTGGAAGAGGAGGCCTTGGCGTCTCCGCGCTCCATAGGTGAAGCTGCAGTGGATGCTGCGGGTAATCGGCAGAAGAAGCGGCCTGTGAAAGCGGCAAAACTGAATACGAAGGCTGCGTGGGGAAAGCTTCTTTCGCAGTTCTCCCAGAATCCTCACCTTAACATGTGTGGTGCTACTTTCACTGTTGGCCAAAGTCGTACTTGCAATTTGTGTCTTAATGATCCATCCGTCAGTTCTACTTTATGTAAACTGAGGCATGTTGAGCGTGGAGGTTCATCTGTTGCCCTATTGGAGATATCTGGGGGCAAAGGATTTGTCCAAGTGAATGGGAAAATTTACTACAAGAATTCCAGTAAGACATTAACTAGTGGTGATGAACTGGTTTTCAGTTCTTCTGGAAAACATGCTTACATTTTTCAGCAGCTCACTCATGATACTGTAGCTGCTACCGGTCTATCTTCATCATTAAGCATTCTGGAAGCACAAAGTGCTCCATTAAAGGAAATACATATTGAGGCAAGGGCAGGGGACTCCTCTGCTGTTGCTGGAGCGTCAATATTAGCCTCTTTGTGCCAGAAGGACATATCCCTTCTTCCTCCACCCCCCAAGACTAGTGGTGATGTGCAGCAAAGCACTGAGATGCCTCAACTTCCGTCTGGATGTGGAGAATCTGATGATCGCACTCCAGACATTGATATGAAGGATGGTCCGAGTACTAATGAGCCTGCTGATGCTTCTTTGAGGGGAAAAACTGGTTGTCCATCATCTTGTGCTGCTCATGAAAACCACAATATTGATAGCCTTGGATTGGATTCATGTCCACATGCCGCCTCCAAAAAGATTAGTGGGACAACGTACGAGTTGACGCCTCTACTGAGGATGCTTACGGGAACGTCATCATCTAATTATGATTCAAGAGGCGGCATTCCTAAAATACCTGATGAGCATAGGGAAATCAGGGACCTGCTGAAGGAGTTTGGTTCTCGTGCAAATTTGATTAAACGACAAGCACTTAAGGATAGTTTGCAGCAAGGAATCCTAAATCCTGGCAGCATTGGTATTTCATTTGCAAGTTTTCCATATTACCTCAGCGACACTACGAAGAATGTTTTGATAGCTTCTACATACATCCAGCTGAAGTGTGACAAGTTTTCAAAATTGGCCTCAGATCTTCCTACTGTGTCTCCCCGAATATTATTATCTGGTCCAGCAGGTTCTGAGATATACCAGGAGACATTGGTGAAGGCACTTGCCACACATTTTGGGGCTAGACTTCTAATTGTTGATTCCCTTCTCTTGGCCGGTGGATCAGGGGCCAAAGATTCTGATTTGGTGAAGGAAAGTTCAAGGCCTGAGAGAGTCTCTGCATTTGCAAAACGAGCTTCACATGCTGCTGCATTGCAGCATAAAAAACCGACATCTACTGTTGAGGCTGATATTACGGGTGGCTCAATGATAAATTCTCAGACGCCGACAAAGCAGGAGACGTCAACTGCTTCATCCAAAAACTATACATTTAAACAAGGTGACAGAGTGAAGTTTGTGGGCAGCTGTCATACAGTTGCTTCCATACAACCTCCTTTGAGGGGACCGACAGTTGGTTTTCGAGGCAAAGTAGTCCTTGCTTTTGAAGACAATAGTTCCTCAAAAATTGGGGTTAGATTTGATAAATCAATCCCTGAAGGAAATGACCTTGGGGGTCTCTGCGAAGAAGATCACGGTTTCTTCTGCTCTGCTAATTCCCTTCGGTTAGAGAGTTCTGCTGGGGATGATGTTGACAAATTTGCTATTAATGAACTTTTTGAGGTTGCTTCAAATGAAAGTAAAAGTGGTTCCTTGATACTGTTTATGAAAGACATAGAGAAGTCTATGGTGGGGAATCAGGATGCATATGTGGCCTTCAAGAGTAAGTTCGACAATTTACCAGGGAATGTTGTTGTAATTGGCTCCCATACACAGGCGGACAGCCGTAAAGAGAAGTCTCATCCTGGAGGTCTTCTATTTACGAAATTTGGAAGCAATCACACAGCTTTACTTGATCTTGCTTTCCCGGATAGCTTTGGTAGGCTGCATGAGCGGGGGAAAGAGACGCCCAAAACGATGAAGCAACTTTCTCGACTTTTCCCTAACAAAGTGGGAATACAGCTGCCCCAGGATGAAGCTTTACTTTTGGACTGGAAGCAGCAGTTGGAGCGTGATATTGAAACTTTAAAAGCACAGGCCAACATTGTTAGCTTTCGCTCGGTGCTCGGTCGGATTGGCCTGGAATGCCCTGATCTTGAAAGTCTTTGCATCAATGATCAGGCTCTTACAACTGAAAATGTGGAGAAAATAGTAGGCTGGGCTTTAAGTCACCACTTGATGCATTATTCAGAAGGTTTGGCCAGAGATGCTAAGCTTGCGATTTCTACTGAAAGTATAAGGTATGGTTTGAACATTTTACTAGGCGTTCAAAACGAAAGCAAGAGCTTGAAGAAATCACTCAAGGATGTCGTAACGGAGAATGAATTTGAGAAGAAACTTCTTGCGGATGTTATTCCTCCAAATGACATCGGGGTCACATTTGATGACATAGGAGCCTTAGAAAATGTCAAGGATACCTTGAAGGAGCTGGTGATGCTTCCTCTTCAGAGGCCGGAATTGTTTTTGAAAGGACAGCTGACTAAGCCATGCAAGGGAATTTTACTGTTTGGGCCTCCTGGCACTGGAAAAACAATGTTAGCCAAGGCTGTCGCGACTGAGGCGGGTGCAAATTTTATCAATATATCAATGTCAAGCATCACTTCAAAGTGGTTTGGTGAAGGCGAGAAATATGTTAAAGCAGTGTTCTCTTTAGCTAGTAAAATTGCTCCTAGTGTTGTTTTTGTTGACGAGGTTGATAGCATGTTGGGTAGACGTGAAAATCCAGGAGAACATGAAGCTATGCGCAAAATGAAGAATGAATTTATGGTGAATTGGGATGGTCTTCGTACAAAGGATAAAGAGCGGGTATTGGTACTTGCTGCCACCAATAGGCCTTTTGATCTTGACGAGGCTGTTATAAGAAGGTTACCCCGGAGGTTGATGGTTAATTTGCCTGATGCCTCCAACAGAGAGAAAATCCTTAAAGTTATCTTAGCCAAAGAAGAATTGTCACCCGATGTGGAGTTAGAGGCAATTGCAAATATGACTGATGGGTATTCTGGAAGTGACCTTAAGAATCTGTGTGTGACTGCAGCTCATTTTCCGATACGCGAAATACTTGAGAGAGAAAAGAAGGAGAGAGCTTCAGCATTGGCGGAAAACAGACCATTGCCTGGACTTCATAACAGCACTGATGTACGCTCTCTGAAGATGGATGATTTTAAGTGTGCGCATGAACAAGTATGTGCAAGCGTTTCATCGGAGTCTACAAATATGAATGAGCTCCTCCAGTGGAATGATTTATATGGAGAAGGTGGCTCCAGGAAAAAGACGTCTCTCAGCTACTTCATGTAGAGAACGTATGTTTGTGTACAGCGATCCATGTTACAGATGTTTATTCACCTCTCTCTACCTGGCAGAGTCGGGAGTCGGGACACCATTGATTATGGAATTCTATCGCAGGTACTGAGCTCGGTGTACCATATTATCATAGGTTTTGGAATCATTTACCATTTTAGGGAGGTTTTACAATATTTATCAAGCAGGTTTTGTTTGACGGAAGCCGTCTTCTTGTTAATCTATCTAGTTTTGAATTCCTTCTCTTTCCCCTTTTCTTGTCTCGTCTGTAGCATGTAAATTCTCATTTTGATCAATTGAATAAGCATTCCCCTCTTTTTCTCCC +>XR_004155863.1 PREDICTED: Punica granatum putative leucine-rich repeat receptor-like protein kinase At2g19210 (LOC116201365), transcript variant X2, misc_RNA +GAACTAAACTTCTATAAGTGCCCATATTATTTGTATCAAATCTCTGTTGTGTATTATAATTAGCATGAAGATGTTATTCGTGATACTTGTATGTATCAGTCTCAATGCTATCGCTCAAGCACAAGAAAATCCAGGTTTCATAAGCATCGACTGTGGAGCACCTAATGGTTATCACGATGACAACCTTGACATTTACTACACGATAGACACGGGATTTGTTGAGTCAGGGAAAAACATGCAGATTTCTTCGAAGTACATCGATCGAGTTCCTATGCAACAGCTAATGAACTTGAGATGCTTTCCTAATGGAACAAGGAACTGTTACACGCTAAGGCCAACGCAAGGGAAGAGCAAGAGATATCTAATCCGGGCATCTTTCTTTTACGGAAATTATGATACTCTCTCCCAAACCCCAACATTCGACCTCTATATCGATGTAAACTACTGGATCACCGTGAAAGATCCATCAAACTACACGTACGAAGAGATTATATACACTACCTCAAGAGATTATATACAAGTGTGTCTTGTGAATCGGGGCTCGGGGGTTCCCTTCATTTCAGCACTAGAGCTACGAACCCTCGACAATTCCACTTATGATACTTCAGCTGGAGCACTACAGACCTCATGGCGATATAATATTGGGTCCAAAACCACATACAGGCATCCGCAAGATGACTATGACCGGATTTGGGAAGGCCAGAGTTTCAATTGGACTACAATCACAAACAAGACGAATGTTGACAGCTTAAGAAGCACAAACAATGCGTATAAAGTTCCACTGGAAGTCCTAATGACTGGCCAACAATCCCTGGATAATATTTCAAGCAGCCTGAAATTATTCTGGATTTCTTCTGAACCCACATATAAATGGTACTTGTTCTTTCACTTCGCCGAGTTTCAGGTATTGCGATCCGGACAGCTGAGGCGATTCAGAGTTTACGTCAATGATAACAAACTGATAACAACCGTTACACCTGAGTACCTCAAACCTGTGACCGTGTCCACGTTTCCCTTTGATGGGACCGTCCTGAACTTCTCAATCACCTCTGTGACTTCTCAATCAAGCCTCCCGCCGTTCCTCAATGCTGTCGAGTGGTTTCGTTCCATTGACCTTCCACATTCTACCACGGACTTAAATGATGTTACCGGTATTAACAGCATCAAGACGATTTACGGAGTGGCTATAGATGACTGGCAGGGCGATCCATGTGTTCCAGTGTCTTTTATTTGGAGTTTTTTGAACTGCAGCGAAGACGATATTCCGAGGATCATCTCCTTGAACTTGAGCTCTAGCAATTTGAAGGGGAGCATTGCTACCTCATTCTCCAGTCTCACGGCATTAGTCTCCCTGGATCTATCGTTCAATGAACTAAGTGGACAGATACCTGATTTTTTTGCTGACATGCCGAATTTGAGGATCTTAAACTTAAGTGGAAACAACCTCAACGGTTCAATTCCTGCAGTTCTTGAAAAGAAGATGGCGGATAAGACATTGCAATTAAGCTTGGATGGTAATCCGAATCTTTGTCGACAAGACTCTAATTGCAATCAAGACGGCCGCAAGAAGAAAAATACCGTTGTCCCAGCTGTTGCTGCTACTGTGGGCTCATTGGCTCTGGTATTCTTTCTCATTTGTGCCATCGTTGTCATTCGCAGACGTAGGAAGAAGATAGAAGAAATTAATACTGGATCAATGGAAGTCACTGCATCGAAGGAACATAGACCTAAGGAGGTATCCGAGCCTAGTACTGGTACCGGATTTAACGAGGGGCGACTAGTAGTTGGAAAGAACCGACCATTTACATCTGCTGAAGTTTTGAGTATCACCGGGAACTTCAGAACAGTTATCGGGGAAGGTGGATTCGGAAACGTGTACCTTGGAACTCTCGATGATGGTTGGAAAGTCGCAGTGAAAGTGCTCTCTCAGTCATCAAAGCAGGGCTACAAGGAATTCCAAGCAGAGGCACAGCTTCTGATGATTGTTCATCACAAAAATCTTGTTTCTCTCATCGGGTATTGCGAAGATTTCGATAACATGGCCCTGATTTATGAATTTATGCCCAATGGAAACTTAAGGCAGCATCTGGCAGGAAACACATCTAATGTCATAAGTTGGAGTCAGAGACTGCAAATTGCAATAGACGCAGCACAGGTTTTGGTCAATCTTTTGATGCAGGGCTGGAGTATTTGCATAATGGTTGCCGACCTTCGATCATTCACAGAGATCTCAAGACTTCAAATATCCTTCTAAATGAGAACATGCAAGCCAAAATAGCTGATTTTGGTCTCTCTCGGGTTTTCATGATGGAAGATGGCTGTCAAATTTCGACTCAACCTGCCGGCACACCCGGTTACCTTGACCCGGTGTTCAACACGGGTGGAAACTTGAACAAGAAAAGTGATGTGTACAGCTTCGGGATCATTCTGTTCGAGCTGATTACCGGACAGCCTGCTATTCTAAGAAGTCCGACGGGCAGTATTCACATCGTTAAATGGGTGACTCCACTC +>XM_030225762.1 PREDICTED: Drosophila hydei latent-transforming growth factor beta-binding protein 2 (LOC111599265), partial mRNA +CAATCGCGTAACGATCAGTGCACAGCAAACGAGATCCAGCTCGATCCCCACGACTGTGCTGCCTATTTCCTATGTGTGAAGGGAGAATTTGTGAGTCAGAAATGTGTTCGTGGCTTTTACTTCGATGCCGCAATCCAGGCGTGTGTGGGCGACACCAAAGAGTCGTCTAACAAGCGGACTGCGAAAATGGCTCACAATAGAAACCTCAAATTTGTGTATCTCCTTTCCATTGCTGTGACCCTGGTCTTTGGAGCTGCAGCCGATGATGATTGCTGTCAACCCGGCGATACCAAGCCCGTCGAAGGCGATTGCACCCAGTACTACGGCTGCTGTACGGGAAAGTTCGTTCTGAAGTCGTGCCCTAGCGGACAATACTGGAATTCAAACAACCAACAATGTGAACCTGACAACGGCCAATGCGTTCCTGTTGAGCCCGGTGCGCCCGGTGCGCCCTGTGCGCCCGGTGAGCCCGGTGCGCCCGGTGCATGCACAGAAGGAGATACCAAAGTGGATGCCTCCGATTGTACCAAATATCAAGTCTGCAAGAACGGAGAGTATGTCTCGGCCTCCTGTAACTCTGGTTACTACTGGAACTCGGCTAACAGCCAGTGCGAGCAGGATAACGGCCAGTGCGTTTCAGTAACATGTAAGGACGGAGAGCTTAGTGCAGACTCATCTGACTGCGCAGGCTACTTCATATGTCTGGATAATAAGTTAGTCAAGAGGAAGTGCGCTAGTCAAACCTATTTCGATGCCAGTCTGGAGACTTGCGTTATCGACACTGAGGGTGTTTGCATACCCAAGGTTTGCGATTCCGAATGCTGCGATAAGCCCAACAATTGGATTGGACCCGTCGATAAGAACTGCTCCGCATTCATTCACTGCCTTTACGGCCAACTGATTCAACAGACCTGTCCCAACAATCTGCAGTTCAACAACATTACCAAGCAGTGCGACTTCCCCGATGTTGTCCAATGCGATGACGGCAGCCCACCGCCAAGCGGACCCACAGCCGGTCCCTCGGGCACCTACTGTGAGAGCAAGGGTCGCTGCGTCGGACAACGTGATGGCGCCATGTTCGCCGATGCCAAGTCTGCCTCCAGTGGTGGCTACATCGTATGCCAATGTGAATGTGAGATTAACTTCAACTGTGTCGCCGGCTTAGTTTTCAACGAGAAGATTCGCACCTGCGATTGGCCATAA +>XM_035486762.1 Talaromyces rugulosus uncharacterized protein (TRUGW13939_03582), partial mRNA +ATGACACCCAAGCGAGTGAGAACTGTCGAGGGCTCATGCTGGCTATGCAAAGATCGCCGGGTTCTATGCGACTTGCAGCAGCCTCGTTGCTCCCGATGCGTGTCCAAAGGTGAACCATGTGAATACGGTGAGGTACGCTTGCGCTGGTGCAATGGCGTAGCGGCTCGAGGCCGATATGCTGGTCAGAATGTACCTGTGTCAATACCATCAGCCAGGAGGGATTCTTCTAGAGGGTCGTTAGGAAAGACACCGCCGTTGCAATCAACCGAAAACGATCAAGGTGATGGGGAAGTCCCTAAAGTCGAAACATTGTCGCCAGTAAGCTCCAATGCACTACAGATATCGGGGCTTTCATCACAAGTGACAGCAGAGCAGCTATTGCTCTATTTTTCCAACGTCGTGGTCGACCGTTTCAGCCTTTCCACGGATCGGATATCGATTAATCTCCCATCAGTATGCGAAGAGCCTGCTCTTCGTGACTCGATGAGCGCCGTTGCAAATGCACATCATGTTCTTTCCCTGTATCCTGGTCGTCCAGGTGTAGGGCTCGCCAAGAAGAGGGCACGTTGGAGCGCTATTCACAATTTCCGAGCTCGGCTGGAATGCCCGAGCATGGAGTCGAGGACACCGGGCCTCGATCTGTTCATGGCCAACGTCCTGCTCTGTATACTAGACGGAGTCATTGACCCGCATGACGAAAGCGCAGCTACTCATATGCATTATCGCGGCGGACGAGCAATCCTCAGTCAATGGAAGCTTCAGAAACAGTTATATCAGGAAAAACGCGGCTTGCCGGCTTTGATGTTGTCTGTTTTTGCAACCATGGATTTGACATACTCGATGCTTAGCGGTGAAGAACAGTATTTTCAGCATACTATCTGGAATGGCTTTGCTGAGAGTGATGGCTGGTGGGGGACTCTTCCTCAAGATGATCCCTTTTTGGAAGTTATGTGTACTCTATCGCGTCTGACTCGACTGGGGTCTCTCGTAAGCAAGGGCCTTGATTTTCCTGATGAGGCCCTCAACGAGGAAGTGAGTACTCTCCTGACGACTCTGCAGGGCCCTCCCCAGATTCCGTATGATATTTCTTGTCCCGAAAGAATGGACTTGGAAGACCAACCGGCTCCTCTATTGCTTTTTACCTCGCCAGGCCACCACGATTTAGATCACAACCAGTCATGGATTGTCTTCTGCAATGCATACCGGATTGCCGGTCTAATATACGCGTACCGCGTCTTTTATCGGCTAAATTTCGGCGATCCCTTGATACAACAGGCCGTGAACCTGGGTATACAAGCCGTCTGCAAAACACGACTAACAGGCAAACTATCACACTGCTTGCTCTTCCCAGCGCTCGTAATCGGAAGCCATTGCCAATCCAACGAAGACCAGGCAGCGATACTCGCGACGATCCAATCAACCGCGGCATTCTTGCATTTTGGGTCGCTTCGAGTTATGGAGAGCTTTTTGCATCGAGTGTGGGAGCGAGCTCCAGCGGCGGAGACTTGGTGGCAGTTTTTTGAGCCGATTTCCAAGAAGGCCTTTTTATTTTGA +>XM_012357333.1 Saprolegnia parasitica CBS 223.65 hypothetical protein partial mRNA +ATGGGCATCAAGATCCGCAACGACACGCGCCACGACGTCCTCGTCATTGTCTTCACGTACTTCACGACGCCGTTCCCGACGCTGTACTACCGCAAGACACTGCTCATCCCGGCCGGCGAGCGCTACAACTGCCCGACGTGGCAGAGCGCTGTCAAGATCTACGCGTGGGAAGCCGACAGTAGCAACGG +>XM_021677838.1 PREDICTED: Neomonachus schauinslandi translation initiation factor IF-2-like (LOC110569879), mRNA +ATGGCGTCGCCGCGGAGTCCGGCACACGCATCCATTTTATCAGGAGCCCGGCGCGGCGGCGCTCAGGAACGAAGGCTGCGGTGTGGAAGGCCGGGCCGGCTCCGCGCTCAGCGAGCGGAGACCCCGCGGCCGCCGCAGGTGCAAGCGCCGCAAGCCCCGCCCCGCCCGCCGCCCCAGCCAACCGCGGGCGGCGGGGGCGGGGCCTGGACCCGCCACACCTGGGGCGGCCGCCCGGCCGTGTCCCAACCACGCTGCCCACAGCCCGCGGCCCGCCGCTCAAGCCCGCCGCCCCGCCCCACCCGCGTCCCCGGCCCCTGCCTGCCCCGCGACCGGTGCGAGGCCCGCCCTGCCCACCCGGCCGGAGTCGTCCCCTCAGTCCCGCCGCCGCGCCGCCCCAGCCGTTTCCACAACGGCTCCGCCTCAACCGTCGGGAGGCTGGCCGTCCGCCCGCTCGCCCACCCGCCGCTGCTGGAGACCGGCCCGGCGTCACGGCCCCCCTCCACGCAGCCCCGCTGTCAGGGAGGCCCGGCCCGGCGCCCGGCTCTACCTGCGGCTGGAGGAAGCCTCCCCGTCCGGGCCCGGGAGCCGCCGCCACGGCCGCCGACTCGAGTCGCGTCTCTGCTCTCCGCGACCGCCGCGGCTCTTCAGGCGGCCGACGGTGGGCGGGAAGCGCCCGCCCAATCAGCGCCGCGTGCGTTCGGAATCGCGTCCAATCAGCGCAGCTCGCAGTCCAGGCTCCGCCCCTCGTGCTCGCCGGCGACGCAGGGGTCGCCAGAGGCCGAAGCCAGGGGCGCCGCGGTGGGCGCGGCTCGGGGCCGGGCCGGGTAG +>MF950468.1 Uncultured bacterium clone OTU1501_Control_T4.8037 16S ribosomal RNA gene, partial sequence +ATACGGGAGGCAGCAGTGGGGAATCTTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGCGATGAAGCCCTTCGGGGTGTAAAGCTCTTTCGGCGGGGACGATAATGACGGTACCCGCAGAAGCAGCTGCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGCAGCGAGCGTTGTTCGGAGTTACTGGGCGTAAAGGGTGTGTAGGCGGTTCCTTAAGTTTGGTGTGAAATCTCCCGGCTCAACTGGGAGGGTGCGCCGGATACTGAGGAGCTAGAGTGCGGGAGAGGAAAGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCTGTGGTGTAGACGGCTTTCTGGACCGTGACTGACGCTGAGACACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGT +>XM_038920781.1 Brettanomyces nanus uncharacterized protein (FOA43_000450), partial mRNA +ATGATGAAAGCTTTAACATATGTCAGACCAGGAGTTATCAAGTACCAGGATGTGGAGAAACCAAAATTACTTCAGCCTACAGATGTGATCGGAAAGACCGTTGTAACAACTATTTGCGGATCGGATCTTCATATCCTTTCAGGTGCTTTCCCAGAGTTCAACAAGTTGGCCGAGAAAAAGGCTGGCCGAGGATTTATCTTGGGTCATGAGGGTATCATCAAGGTGGAGCAAATAGGTTCTGAAGTAAAGAACTTTAAAGTCGGTGATGTGTGCATCGTCTCTTGCATCACTCCTTGTGGTGAATGCTTTTACTGTAAAGAAGGTTGCGAAGCTCATTGTACACAGAACGAGGGAACCTGTGGATGCATCTTGGGTAGTGAGATTGATGGAACTCAAGCTGATTATGTTAGAGTTCCTCTTGCTGACAATTCTTTAATCAAATGCCCGGATAACGTGAAGTTGGAGTCTTTATTAATGCTTAGTGACATTTTACCAACCTCCTACGAACTTGGTGTTCTGGATGGAGGTGTCAAAGAAGGAAGTACCGTTGCCATTGTCGGTATGGGACCTGTTGGGTTGGCTGCTTTGATCAGTGCTAAGGCATTGAATCCAGATTATATTGTTGCTATCGACTTGAACGAATCCAGATTGAAGACTGCCAAAAAATTGGGTGCCGACTACACCTTTAATCCAAGCAAGGATGATGTTGTTAAACTTGTTATGGGGCTTCCTGTGAAACAGGGTAAGCTACCCGGTGTCGATGTGGCCATCGAATGCTGTGGTATTCCGGCAACTTTCGAGATGTGCCAGGATATTGTTGGTATGAACGGTAGAATTGCCAATGTCGGTGTTCACTCTAAGTCATGCAAACTTGCTATGGAAAAGTTATGGGTCATGAATATCAACATAAGTACCGGATTGGTCTGCGGCCATTCTACAAAAGATTTACTCAGGAAAGTTGTATCCGGAGAATTGGATCCTTCGTCTTTGATTACTCATCGCTTCAAACTAAATGAGATCGAAAAGGCTTACGATGTCTTCAGCAATGCTTCTGAGACTGATGCCATTAAGATGCTTCTTATCAACGATTGA +>MW263500.1 Cortinarius sp. PDD 112391 isolate JAC15241 large subunit ribosomal RNA gene, partial sequence +CATATCAATAAGCGGAGGAAAAGAAACTAACAAGGGATTCCCCCTAGTAACTGCGAGTGAAGCGGGAAAAGCTCAAATTTAAAATCTGGCGGTCTTTGGCTGTCCGAGTTGTAATCTAGAGAAGTGTTATCCGCGCCGGACCGTGTACAAGTCTCCTGGAATGGAGCGTCATAGAGGGTGAGAATCCCGTCTTTGACACGGACTACCGGGGCTTTGTGATGCGCTCTCAAAGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGAACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGCTGAAAGGGAAACGCTTGAAGTCAGTCGCGTTGTCCAGGGATCAACCTTGCTTTTGCTTGGTGCACTTTCTGGTTGACGGGTCAGCATCAATTTTGACTATTGGAAAAAGATTAGGGGAATGTGGCATCTTTGGATGTGTTATAGCCCTTGGTTGCATACAATGGTTGGGATTGAGGAACTCAGCACGCCGCAAGGCCGGGTTTTTAACCACGTACGTGCTTAGGATGCTGGCATAATGGCTTTAATCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGCCTGCGAGTGTTTGGGTGGAAAACTCGAGCGCGTAATGAAAGTGAAAGTTGAGATCCCTGTCGTGGGGAGCATCGACGCCCGGACCAGACCTTTTGTGACGGTTCCGCGGTAGAGCATGTATGTTGGGACCCGAAAGATGGTGAACTATGCCTGAATAGGGTGAAGCCAGAGGAAACTCTGGTGGAGGCTCGTAGCGATTCTGACGTGCAAATCGATCGTCAAATTTGGGTAT +>MN640403.1 Mycobacterium simiae strain a18 16S-23S ribosomal RNA intergenic spacer and 23S ribosomal RNA gene, partial sequence +GAATCTTGACTGGGGTGTGAGCCGTGAGGGGTTCTCGTCTGTAGTGGACGAGGGCCGGGTGCACAACAACAGGCAATCGCCAGACACACTATTGGGCCCTGAGACAACACTCGGCCGACTTCGGTTGAAGTGGTGTCCCTCCATCTTGGTGGTGGGGTGTGGTGTTTGAGTATTGAATAGTGGTTGCGAGCATCAGGAGGTACCTCCGTTCTGTTTGAGTATTGGATAGTGGTTGCGAGCATCAGGGTGGTGGGGTGTGGGGTTTGACATCAGAATGGTGAAGGCAATTATCAGGTACCGCCTC diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/5y2e.cif b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/5y2e.cif new file mode 100644 index 0000000000000000000000000000000000000000..5bdf12d8578f56fb7ade71be04307468ca0c311d --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/5y2e.cif @@ -0,0 +1,562 @@ +data_5Y2E +# +_entry.id 5Y2E +# +loop_ +_chem_comp.formula +_chem_comp.formula_weight +_chem_comp.id +_chem_comp.mon_nstd_flag +_chem_comp.name +_chem_comp.pdbx_synonyms +_chem_comp.type +"C3 H7 N O2" 89.093 ALA y ALANINE ? "L-peptide linking" +"C6 H15 N4 O2 1" 175.209 ARG y ARGININE ? "L-peptide linking" +"C4 H7 N O4" 133.103 ASP y "ASPARTIC ACID" ? "L-peptide linking" +"C5 H10 N2 O3" 146.144 GLN y GLUTAMINE ? "L-peptide linking" +"C5 H9 N O4" 147.129 GLU y "GLUTAMIC ACID" ? "L-peptide linking" +"C2 H5 N O2" 75.067 GLY y GLYCINE ? "peptide linking" +"C6 H10 N3 O2 1" 156.162 HIS y HISTIDINE ? "L-peptide linking" +"H2 O" 18.015 HOH . WATER ? non-polymer +"C6 H13 N O2" 131.173 ILE y ISOLEUCINE ? "L-peptide linking" +"C6 H13 N O2" 131.173 LEU y LEUCINE ? "L-peptide linking" +"C6 H15 N2 O2 1" 147.195 LYS y LYSINE ? "L-peptide linking" +"C5 H11 N O2 S" 149.211 MET y METHIONINE ? "L-peptide linking" +"C4 H9 N O3" 119.119 THR y THREONINE ? "L-peptide linking" +"C5 H11 N O2" 117.146 VAL y VALINE ? "L-peptide linking" +# +_entity.id 1 +_entity.pdbx_description "Non-structural glycoprotein 4" +_entity.type polymer +# +_entity_poly.entity_id 1 +_entity_poly.pdbx_strand_id A +_entity_poly.type polypeptide(L) +# +loop_ +_entity_poly_seq.entity_id +_entity_poly_seq.hetero +_entity_poly_seq.mon_id +_entity_poly_seq.num +1 n MET 1 +1 n ILE 2 +1 n GLU 3 +1 n LYS 4 +1 n GLN 5 +1 n MET 6 +1 n ASP 7 +1 n ARG 8 +1 n VAL 9 +1 n VAL 10 +1 n LYS 11 +1 n GLU 12 +1 n MET 13 +1 n ARG 14 +1 n ARG 15 +1 n GLN 16 +1 n LEU 17 +1 n GLU 18 +1 n MET 19 +1 n ILE 20 +1 n ASP 21 +1 n LYS 22 +1 n LEU 23 +1 n THR 24 +1 n THR 25 +1 n ARG 26 +1 n GLY 27 +1 n ILE 28 +1 n GLU 29 +1 n GLN 30 +1 n VAL 31 +1 n GLU 32 +1 n LEU 33 +1 n LEU 34 +1 n LYS 35 +1 n ARG 36 +1 n ILE 37 +1 n HIS 38 +1 n ASP 39 +1 n LYS 40 +1 n LEU 41 +1 n MET 42 +1 n ILE 43 +1 n ARG 44 +1 n ALA 45 +1 n VAL 46 +1 n ASP 47 +# +_exptl.method "X-RAY DIFFRACTION" +# +_pdbx_audit_revision_history.revision_date 2018-03-14 +# +_pdbx_database_status.recvd_initial_deposition_date 2018-03-14 +# +loop_ +_pdbx_poly_seq_scheme.asym_id +_pdbx_poly_seq_scheme.auth_seq_num +_pdbx_poly_seq_scheme.entity_id +_pdbx_poly_seq_scheme.hetero +_pdbx_poly_seq_scheme.mon_id +_pdbx_poly_seq_scheme.pdb_ins_code +_pdbx_poly_seq_scheme.pdb_seq_num +_pdbx_poly_seq_scheme.pdb_strand_id +_pdbx_poly_seq_scheme.seq_id +B 94 1 n MET . 94 A 1 +B 95 1 n ILE . 95 A 2 +B 96 1 n GLU . 96 A 3 +B 97 1 n LYS . 97 A 4 +B 98 1 n GLN . 98 A 5 +B 99 1 n MET . 99 A 6 +B 100 1 n ASP . 100 A 7 +B 101 1 n ARG . 101 A 8 +B 102 1 n VAL . 102 A 9 +B 103 1 n VAL . 103 A 10 +B 104 1 n LYS . 104 A 11 +B 105 1 n GLU . 105 A 12 +B 106 1 n MET . 106 A 13 +B 107 1 n ARG . 107 A 14 +B 108 1 n ARG . 108 A 15 +B 109 1 n GLN . 109 A 16 +B 110 1 n LEU . 110 A 17 +B 111 1 n GLU . 111 A 18 +B 112 1 n MET . 112 A 19 +B 113 1 n ILE . 113 A 20 +B 114 1 n ASP . 114 A 21 +B 115 1 n LYS . 115 A 22 +B 116 1 n LEU . 116 A 23 +B 117 1 n THR . 117 A 24 +B 118 1 n THR . 118 A 25 +B 119 1 n ARG . 119 A 26 +B 120 1 n GLY . 120 A 27 +B 121 1 n ILE . 121 A 28 +B 122 1 n GLU . 122 A 29 +B 123 1 n GLN . 123 A 30 +B 124 1 n VAL . 124 A 31 +B 125 1 n GLU . 125 A 32 +B 126 1 n LEU . 126 A 33 +B 127 1 n LEU . 127 A 34 +B 128 1 n LYS . 128 A 35 +B 129 1 n ARG . 129 A 36 +B 130 1 n ILE . 130 A 37 +B 131 1 n HIS . 131 A 38 +B 132 1 n ASP . 132 A 39 +B 133 1 n LYS . 133 A 40 +B 134 1 n LEU . 134 A 41 +B 135 1 n MET . 135 A 42 +B 136 1 n ILE . 136 A 43 +B 137 1 n ARG . 137 A 44 +B 138 1 n ALA . 138 A 45 +B ? 1 n VAL . 139 A 46 +B ? 1 n ASP . 140 A 47 +# +_pdbx_struct_assembly.details author_and_software_defined_assembly +_pdbx_struct_assembly.id 1 +_pdbx_struct_assembly.method_details PISA +_pdbx_struct_assembly.oligomeric_count 4 +_pdbx_struct_assembly.oligomeric_details tetrameric +# +_pdbx_struct_assembly_gen.assembly_id 1 +_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G +_pdbx_struct_assembly_gen.oper_expression 1 +# +_pdbx_struct_oper_list.id 1 +_pdbx_struct_oper_list.matrix[1][1] 1.0000000000 +_pdbx_struct_oper_list.matrix[1][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[1][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][2] 1.0000000000 +_pdbx_struct_oper_list.matrix[2][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][3] 1.0000000000 +_pdbx_struct_oper_list.name 1_555 +_pdbx_struct_oper_list.symmetry_operation x,y,z +_pdbx_struct_oper_list.type "identity operation" +_pdbx_struct_oper_list.vector[1] 0.0000000000 +_pdbx_struct_oper_list.vector[2] 0.0000000000 +_pdbx_struct_oper_list.vector[3] 0.0000000000 +# +_refine.ls_d_res_high 2.70 +# +_software.classification other +_software.name "DeepMind Structure Class" +_software.pdbx_ordinal 1 +_software.version 2.0.0 +# +_struct_asym.entity_id 1 +_struct_asym.id B +# +loop_ +_atom_site.group_PDB +_atom_site.id +_atom_site.type_symbol +_atom_site.label_atom_id +_atom_site.label_alt_id +_atom_site.label_comp_id +_atom_site.label_asym_id +_atom_site.label_entity_id +_atom_site.label_seq_id +_atom_site.pdbx_PDB_ins_code +_atom_site.Cartn_x +_atom_site.Cartn_y +_atom_site.Cartn_z +_atom_site.occupancy +_atom_site.B_iso_or_equiv +_atom_site.auth_seq_id +_atom_site.auth_asym_id +_atom_site.pdbx_PDB_model_num +ATOM 1 N N . MET B 1 1 ? 2.644 6.839 -46.028 1.00 83.71 94 A 1 +ATOM 2 C CA . MET B 1 1 ? 1.400 7.612 -45.825 1.00 86.32 94 A 1 +ATOM 3 C C . MET B 1 1 ? 1.210 7.971 -44.344 1.00 87.15 94 A 1 +ATOM 4 O O . MET B 1 1 ? 1.479 7.188 -43.421 1.00 80.48 94 A 1 +ATOM 5 C CB . MET B 1 1 ? 0.170 6.890 -46.382 1.00 88.07 94 A 1 +ATOM 6 C CG . MET B 1 1 ? -0.124 7.275 -47.840 1.00 91.84 94 A 1 +ATOM 7 S SD . MET B 1 1 ? -1.789 6.807 -48.325 1.00 103.69 94 A 1 +ATOM 8 C CE . MET B 1 1 ? -2.264 8.027 -49.569 1.00 97.89 94 A 1 +ATOM 9 N N . ILE B 1 2 ? 0.696 9.166 -44.185 1.00 87.93 95 A 1 +ATOM 10 C CA . ILE B 1 2 ? 0.364 9.779 -42.948 1.00 84.67 95 A 1 +ATOM 11 C C . ILE B 1 2 ? -0.678 8.946 -42.258 1.00 75.98 95 A 1 +ATOM 12 O O . ILE B 1 2 ? -0.634 8.714 -41.080 1.00 67.98 95 A 1 +ATOM 13 C CB . ILE B 1 2 ? -0.321 11.082 -43.309 1.00 89.99 95 A 1 +ATOM 14 C CG1 . ILE B 1 2 ? 0.696 12.146 -43.577 1.00 94.59 95 A 1 +ATOM 15 C CG2 . ILE B 1 2 ? -1.197 11.546 -42.182 1.00 92.79 95 A 1 +ATOM 16 C CD1 . ILE B 1 2 ? 1.132 12.780 -42.294 1.00 93.36 95 A 1 +ATOM 17 N N . GLU B 1 3 ? -1.625 8.499 -43.046 1.00 71.66 96 A 1 +ATOM 18 C CA . GLU B 1 3 ? -2.745 7.716 -42.585 1.00 68.44 96 A 1 +ATOM 19 C C . GLU B 1 3 ? -2.273 6.463 -41.883 1.00 69.98 96 A 1 +ATOM 20 O O . GLU B 1 3 ? -2.890 6.024 -40.946 1.00 67.88 96 A 1 +ATOM 21 C CB . GLU B 1 3 ? -3.613 7.332 -43.745 1.00 73.44 96 A 1 +ATOM 22 C CG . GLU B 1 3 ? -4.382 8.485 -44.320 1.00 87.42 96 A 1 +ATOM 23 C CD . GLU B 1 3 ? -3.735 9.039 -45.551 1.00 89.38 96 A 1 +ATOM 24 O OE1 . GLU B 1 3 ? -4.454 9.413 -46.477 1.00 97.81 96 A 1 +ATOM 25 O OE2 . GLU B 1 3 ? -2.511 9.105 -45.593 1.00 88.14 96 A 1 +ATOM 26 N N . LYS B 1 4 ? -1.212 5.844 -42.364 1.00 71.45 97 A 1 +ATOM 27 C CA . LYS B 1 4 ? -0.676 4.669 -41.671 1.00 72.76 97 A 1 +ATOM 28 C C . LYS B 1 4 ? 0.097 5.062 -40.408 1.00 74.11 97 A 1 +ATOM 29 O O . LYS B 1 4 ? 0.209 4.268 -39.462 1.00 77.84 97 A 1 +ATOM 30 C CB . LYS B 1 4 ? 0.197 3.807 -42.578 1.00 66.63 97 A 1 +ATOM 31 N N . GLN B 1 5 ? 0.624 6.270 -40.364 1.00 72.03 98 A 1 +ATOM 32 C CA . GLN B 1 5 ? 1.295 6.749 -39.158 1.00 65.60 98 A 1 +ATOM 33 C C . GLN B 1 5 ? 0.255 7.097 -38.099 1.00 58.64 98 A 1 +ATOM 34 O O . GLN B 1 5 ? 0.462 6.888 -36.942 1.00 52.26 98 A 1 +ATOM 35 C CB . GLN B 1 5 ? 2.143 7.976 -39.487 1.00 63.76 98 A 1 +ATOM 36 N N . MET B 1 6 ? -0.861 7.648 -38.542 1.00 49.04 99 A 1 +ATOM 37 C CA . MET B 1 6 ? -1.953 7.954 -37.679 1.00 45.66 99 A 1 +ATOM 38 C C . MET B 1 6 ? -2.486 6.679 -37.100 1.00 50.63 99 A 1 +ATOM 39 O O . MET B 1 6 ? -2.882 6.643 -35.948 1.00 50.11 99 A 1 +ATOM 40 C CB . MET B 1 6 ? -3.050 8.640 -38.449 1.00 42.97 99 A 1 +ATOM 41 C CG . MET B 1 6 ? -4.395 8.703 -37.753 1.00 42.67 99 A 1 +ATOM 42 S SD . MET B 1 6 ? -5.430 9.916 -38.524 1.00 47.21 99 A 1 +ATOM 43 C CE . MET B 1 6 ? -6.803 9.938 -37.397 1.00 48.85 99 A 1 +ATOM 44 N N . ASP B 1 7 ? -2.531 5.622 -37.894 1.00 56.67 100 A 1 +ATOM 45 C CA . ASP B 1 7 ? -3.070 4.383 -37.401 1.00 55.17 100 A 1 +ATOM 46 C C . ASP B 1 7 ? -2.223 3.846 -36.257 1.00 53.54 100 A 1 +ATOM 47 O O . ASP B 1 7 ? -2.785 3.365 -35.256 1.00 47.69 100 A 1 +ATOM 48 C CB . ASP B 1 7 ? -3.067 3.354 -38.520 1.00 57.94 100 A 1 +ATOM 49 C CG . ASP B 1 7 ? -3.936 2.164 -38.236 1.00 62.42 100 A 1 +ATOM 50 O OD1 . ASP B 1 7 ? -5.111 2.416 -37.949 1.00 67.59 100 A 1 +ATOM 51 O OD2 . ASP B 1 7 ? -3.401 1.020 -38.206 1.00 61.64 100 A 1 +ATOM 52 N N . ARG B 1 8 ? -0.900 3.909 -36.428 1.00 54.78 101 A 1 +ATOM 53 C CA . ARG B 1 8 ? -0.002 3.384 -35.432 1.00 61.23 101 A 1 +ATOM 54 C C . ARG B 1 8 ? -0.168 4.177 -34.127 1.00 63.20 101 A 1 +ATOM 55 O O . ARG B 1 8 ? -0.017 3.620 -33.077 1.00 67.94 101 A 1 +ATOM 56 C CB . ARG B 1 8 ? 1.484 3.327 -35.943 1.00 64.73 101 A 1 +ATOM 57 C CG . ARG B 1 8 ? 2.403 4.541 -35.635 1.00 73.16 101 A 1 +ATOM 58 N N . VAL B 1 9 ? -0.406 5.483 -34.222 1.00 63.14 102 A 1 +ATOM 59 C CA . VAL B 1 9 ? -0.546 6.334 -33.061 1.00 59.81 102 A 1 +ATOM 60 C C . VAL B 1 9 ? -1.853 6.121 -32.347 1.00 55.82 102 A 1 +ATOM 61 O O . VAL B 1 9 ? -1.880 6.066 -31.150 1.00 48.46 102 A 1 +ATOM 62 C CB . VAL B 1 9 ? -0.421 7.813 -33.454 1.00 60.39 102 A 1 +ATOM 63 C CG1 . VAL B 1 9 ? -0.731 8.703 -32.272 1.00 60.03 102 A 1 +ATOM 64 C CG2 . VAL B 1 9 ? 0.994 8.091 -33.943 1.00 61.68 102 A 1 +ATOM 65 N N . VAL B 1 10 ? -2.941 6.014 -33.079 1.00 56.18 103 A 1 +ATOM 66 C CA . VAL B 1 10 ? -4.231 5.743 -32.481 1.00 53.53 103 A 1 +ATOM 67 C C . VAL B 1 10 ? -4.236 4.419 -31.704 1.00 52.90 103 A 1 +ATOM 68 O O . VAL B 1 10 ? -4.772 4.355 -30.607 1.00 49.99 103 A 1 +ATOM 69 C CB . VAL B 1 10 ? -5.317 5.742 -33.553 1.00 51.75 103 A 1 +ATOM 70 C CG1 . VAL B 1 10 ? -6.606 5.137 -33.045 1.00 52.18 103 A 1 +ATOM 71 C CG2 . VAL B 1 10 ? -5.610 7.153 -33.983 1.00 52.67 103 A 1 +ATOM 72 N N . LYS B 1 11 ? -3.601 3.402 -32.243 1.00 55.55 104 A 1 +ATOM 73 C CA . LYS B 1 11 ? -3.521 2.104 -31.626 1.00 56.87 104 A 1 +ATOM 74 C C . LYS B 1 11 ? -2.709 2.164 -30.350 1.00 60.76 104 A 1 +ATOM 75 O O . LYS B 1 11 ? -2.986 1.464 -29.399 1.00 58.80 104 A 1 +ATOM 76 C CB . LYS B 1 11 ? -2.837 1.155 -32.582 1.00 60.72 104 A 1 +ATOM 77 C CG . LYS B 1 11 ? -3.729 0.487 -33.601 1.00 72.80 104 A 1 +ATOM 78 C CD . LYS B 1 11 ? -2.915 -0.472 -34.451 1.00 79.85 104 A 1 +ATOM 79 C CE . LYS B 1 11 ? -3.664 -0.963 -35.666 1.00 84.90 104 A 1 +ATOM 80 N NZ . LYS B 1 11 ? -5.110 -0.693 -35.513 1.00 94.50 104 A 1 +ATOM 81 N N . GLU B 1 12 ? -1.674 2.982 -30.369 1.00 56.70 105 A 1 +ATOM 82 C CA . GLU B 1 12 ? -0.798 3.204 -29.249 1.00 54.71 105 A 1 +ATOM 83 C C . GLU B 1 12 ? -1.507 3.946 -28.155 1.00 52.45 105 A 1 +ATOM 84 O O . GLU B 1 12 ? -1.387 3.608 -27.007 1.00 51.88 105 A 1 +ATOM 85 C CB . GLU B 1 12 ? 0.404 4.036 -29.667 1.00 60.63 105 A 1 +ATOM 86 C CG . GLU B 1 12 ? 1.418 4.261 -28.569 1.00 71.75 105 A 1 +ATOM 87 C CD . GLU B 1 12 ? 2.100 2.985 -28.105 1.00 83.66 105 A 1 +ATOM 88 O OE1 . GLU B 1 12 ? 1.973 1.951 -28.793 1.00 97.71 105 A 1 +ATOM 89 O OE2 . GLU B 1 12 ? 2.729 3.008 -27.039 1.00 91.62 105 A 1 +ATOM 90 N N . MET B 1 13 ? -2.250 4.972 -28.495 1.00 50.99 106 A 1 +ATOM 91 C CA . MET B 1 13 ? -2.993 5.703 -27.508 1.00 53.07 106 A 1 +ATOM 92 C C . MET B 1 13 ? -4.045 4.874 -26.849 1.00 51.54 106 A 1 +ATOM 93 O O . MET B 1 13 ? -4.220 4.974 -25.651 1.00 48.88 106 A 1 +ATOM 94 C CB . MET B 1 13 ? -3.640 6.915 -28.107 1.00 61.60 106 A 1 +ATOM 95 C CG . MET B 1 13 ? -2.651 8.032 -28.402 1.00 65.35 106 A 1 +ATOM 96 S SD . MET B 1 13 ? -3.551 9.590 -28.498 1.00 76.88 106 A 1 +ATOM 97 C CE . MET B 1 13 ? -3.620 9.931 -26.737 1.00 76.03 106 A 1 +ATOM 98 N N . ARG B 1 14 ? -4.714 4.016 -27.571 1.00 53.52 107 A 1 +ATOM 99 C CA . ARG B 1 14 ? -5.703 3.187 -26.952 1.00 50.53 107 A 1 +ATOM 100 C C . ARG B 1 14 ? -5.040 2.268 -25.975 1.00 51.01 107 A 1 +ATOM 101 O O . ARG B 1 14 ? -5.527 2.040 -24.903 1.00 48.89 107 A 1 +ATOM 102 C CB . ARG B 1 14 ? -6.358 2.367 -28.011 1.00 54.79 107 A 1 +ATOM 103 C CG . ARG B 1 14 ? -7.580 1.648 -27.566 1.00 60.71 107 A 1 +ATOM 104 C CD . ARG B 1 14 ? -7.895 0.586 -28.570 1.00 70.83 107 A 1 +ATOM 105 N NE . ARG B 1 14 ? -8.689 1.116 -29.658 1.00 78.79 107 A 1 +ATOM 106 C CZ . ARG B 1 14 ? -8.278 1.182 -30.911 1.00 81.77 107 A 1 +ATOM 107 N NH1 . ARG B 1 14 ? -7.086 0.746 -31.233 1.00 91.09 107 A 1 +ATOM 108 N NH2 . ARG B 1 14 ? -9.071 1.675 -31.832 1.00 79.36 107 A 1 +ATOM 109 N N . ARG B 1 15 ? -3.896 1.754 -26.355 1.00 46.73 108 A 1 +ATOM 110 C CA . ARG B 1 15 ? -3.174 0.827 -25.534 1.00 45.05 108 A 1 +ATOM 111 C C . ARG B 1 15 ? -2.681 1.503 -24.248 1.00 47.85 108 A 1 +ATOM 112 O O . ARG B 1 15 ? -2.752 0.930 -23.189 1.00 50.40 108 A 1 +ATOM 113 C CB . ARG B 1 15 ? -2.063 0.286 -26.404 1.00 50.23 108 A 1 +ATOM 114 C CG . ARG B 1 15 ? -1.165 -0.750 -25.876 1.00 59.06 108 A 1 +ATOM 115 C CD . ARG B 1 15 ? -0.358 -1.317 -27.046 1.00 59.59 108 A 1 +ATOM 116 N NE . ARG B 1 15 ? 0.861 -1.991 -26.583 1.00 65.92 108 A 1 +ATOM 117 N N . GLN B 1 16 ? -2.221 2.739 -24.349 1.00 49.74 109 A 1 +ATOM 118 C CA . GLN B 1 16 ? -1.810 3.511 -23.193 1.00 47.85 109 A 1 +ATOM 119 C C . GLN B 1 16 ? -2.993 3.774 -22.279 1.00 48.41 109 A 1 +ATOM 120 O O . GLN B 1 16 ? -2.898 3.560 -21.091 1.00 46.33 109 A 1 +ATOM 121 C CB . GLN B 1 16 ? -1.209 4.809 -23.611 1.00 49.18 109 A 1 +ATOM 122 C CG . GLN B 1 16 ? 0.208 4.681 -24.112 1.00 53.75 109 A 1 +ATOM 123 C CD . GLN B 1 16 ? 0.618 5.857 -24.974 1.00 61.24 109 A 1 +ATOM 124 O OE1 . GLN B 1 16 ? -0.145 6.791 -25.159 1.00 69.70 109 A 1 +ATOM 125 N NE2 . GLN B 1 16 ? 1.786 5.782 -25.546 1.00 63.00 109 A 1 +ATOM 126 N N . LEU B 1 17 ? -4.098 4.266 -22.817 1.00 45.61 110 A 1 +ATOM 127 C CA . LEU B 1 17 ? -5.278 4.506 -22.010 1.00 41.80 110 A 1 +ATOM 128 C C . LEU B 1 17 ? -5.848 3.244 -21.329 1.00 44.01 110 A 1 +ATOM 129 O O . LEU B 1 17 ? -6.378 3.314 -20.232 1.00 49.63 110 A 1 +ATOM 130 C CB . LEU B 1 17 ? -6.380 5.133 -22.818 1.00 41.83 110 A 1 +ATOM 131 C CG . LEU B 1 17 ? -6.545 6.610 -23.075 1.00 44.57 110 A 1 +ATOM 132 C CD1 . LEU B 1 17 ? -6.481 7.448 -21.815 1.00 46.53 110 A 1 +ATOM 133 C CD2 . LEU B 1 17 ? -5.534 7.076 -24.054 1.00 46.70 110 A 1 +ATOM 134 N N . GLU B 1 18 ? -5.724 2.085 -21.974 1.00 48.92 111 A 1 +ATOM 135 C CA . GLU B 1 18 ? -6.176 0.854 -21.354 1.00 50.45 111 A 1 +ATOM 136 C C . GLU B 1 18 ? -5.278 0.446 -20.173 1.00 50.00 111 A 1 +ATOM 137 O O . GLU B 1 18 ? -5.748 -0.088 -19.155 1.00 52.97 111 A 1 +ATOM 138 C CB . GLU B 1 18 ? -6.361 -0.236 -22.405 1.00 54.05 111 A 1 +ATOM 139 C CG . GLU B 1 18 ? -7.693 -0.095 -23.112 1.00 59.57 111 A 1 +ATOM 140 C CD . GLU B 1 18 ? -7.804 -0.858 -24.438 1.00 68.03 111 A 1 +ATOM 141 O OE1 . GLU B 1 18 ? -6.834 -1.521 -24.893 1.00 73.96 111 A 1 +ATOM 142 O OE2 . GLU B 1 18 ? -8.896 -0.808 -25.069 1.00 73.24 111 A 1 +ATOM 143 N N . MET B 1 19 ? -4.000 0.760 -20.284 1.00 48.79 112 A 1 +ATOM 144 C CA . MET B 1 19 ? -3.094 0.512 -19.186 1.00 52.15 112 A 1 +ATOM 145 C C . MET B 1 19 ? -3.371 1.430 -18.007 1.00 47.91 112 A 1 +ATOM 146 O O . MET B 1 19 ? -3.429 0.986 -16.872 1.00 45.58 112 A 1 +ATOM 147 C CB . MET B 1 19 ? -1.653 0.667 -19.617 1.00 54.11 112 A 1 +ATOM 148 C CG . MET B 1 19 ? -1.053 -0.654 -20.052 1.00 58.96 112 A 1 +ATOM 149 S SD . MET B 1 19 ? 0.471 -0.323 -20.923 1.00 65.09 112 A 1 +ATOM 150 C CE . MET B 1 19 ? 1.501 -0.237 -19.466 1.00 67.56 112 A 1 +ATOM 151 N N . ILE B 1 20 ? -3.541 2.711 -18.297 1.00 43.25 113 A 1 +ATOM 152 C CA . ILE B 1 20 ? -3.900 3.677 -17.287 1.00 40.09 113 A 1 +ATOM 153 C C . ILE B 1 20 ? -5.165 3.240 -16.596 1.00 40.28 113 A 1 +ATOM 154 O O . ILE B 1 20 ? -5.297 3.383 -15.395 1.00 41.67 113 A 1 +ATOM 155 C CB . ILE B 1 20 ? -4.079 5.077 -17.885 1.00 41.26 113 A 1 +ATOM 156 C CG1 . ILE B 1 20 ? -2.700 5.633 -18.275 1.00 39.56 113 A 1 +ATOM 157 C CG2 . ILE B 1 20 ? -4.715 6.029 -16.880 1.00 44.72 113 A 1 +ATOM 158 C CD1 . ILE B 1 20 ? -2.722 6.963 -19.009 1.00 37.40 113 A 1 +ATOM 159 N N . ASP B 1 21 ? -6.096 2.680 -17.346 1.00 41.39 114 A 1 +ATOM 160 C CA . ASP B 1 21 ? -7.302 2.201 -16.728 1.00 46.35 114 A 1 +ATOM 161 C C . ASP B 1 21 ? -7.074 1.044 -15.762 1.00 45.76 114 A 1 +ATOM 162 O O . ASP B 1 21 ? -7.662 1.035 -14.682 1.00 43.56 114 A 1 +ATOM 163 C CB . ASP B 1 21 ? -8.272 1.734 -17.759 1.00 51.71 114 A 1 +ATOM 164 C CG . ASP B 1 21 ? -9.647 1.640 -17.208 1.00 60.74 114 A 1 +ATOM 165 O OD1 . ASP B 1 21 ? -10.153 2.682 -16.742 1.00 68.50 114 A 1 +ATOM 166 O OD2 . ASP B 1 21 ? -10.199 0.528 -17.210 1.00 73.36 114 A 1 +ATOM 167 N N . LYS B 1 22 ? -6.258 0.070 -16.178 1.00 47.51 115 A 1 +ATOM 168 C CA . LYS B 1 22 ? -5.942 -1.062 -15.321 1.00 50.59 115 A 1 +ATOM 169 C C . LYS B 1 22 ? -5.255 -0.563 -14.028 1.00 52.11 115 A 1 +ATOM 170 O O . LYS B 1 22 ? -5.648 -0.941 -12.919 1.00 55.27 115 A 1 +ATOM 171 C CB . LYS B 1 22 ? -5.085 -2.111 -16.025 1.00 52.86 115 A 1 +ATOM 172 C CG . LYS B 1 22 ? -5.829 -3.010 -17.008 1.00 57.80 115 A 1 +ATOM 173 N N . LEU B 1 23 ? -4.266 0.312 -14.176 1.00 48.62 116 A 1 +ATOM 174 C CA . LEU B 1 23 ? -3.594 0.880 -13.039 1.00 44.80 116 A 1 +ATOM 175 C C . LEU B 1 23 ? -4.511 1.665 -12.106 1.00 44.04 116 A 1 +ATOM 176 O O . LEU B 1 23 ? -4.412 1.565 -10.897 1.00 41.22 116 A 1 +ATOM 177 C CB . LEU B 1 23 ? -2.492 1.781 -13.511 1.00 43.26 116 A 1 +ATOM 178 C CG . LEU B 1 23 ? -1.353 1.039 -14.177 1.00 45.18 116 A 1 +ATOM 179 C CD1 . LEU B 1 23 ? -0.449 2.064 -14.839 1.00 45.01 116 A 1 +ATOM 180 C CD2 . LEU B 1 23 ? -0.582 0.210 -13.156 1.00 45.90 116 A 1 +ATOM 181 N N . THR B 1 24 ? -5.402 2.445 -12.674 1.00 49.17 117 A 1 +ATOM 182 C CA . THR B 1 24 ? -6.382 3.155 -11.886 1.00 49.60 117 A 1 +ATOM 183 C C . THR B 1 24 ? -7.250 2.198 -11.085 1.00 51.60 117 A 1 +ATOM 184 O O . THR B 1 24 ? -7.503 2.441 -9.918 1.00 50.82 117 A 1 +ATOM 185 C CB . THR B 1 24 ? -7.248 4.024 -12.811 1.00 54.67 117 A 1 +ATOM 186 O OG1 . THR B 1 24 ? -6.463 5.126 -13.253 1.00 58.01 117 A 1 +ATOM 187 C CG2 . THR B 1 24 ? -8.464 4.559 -12.141 1.00 57.77 117 A 1 +ATOM 188 N N . THR B 1 25 ? -7.718 1.116 -11.704 1.00 53.09 118 A 1 +ATOM 189 C CA . THR B 1 25 ? -8.495 0.117 -10.981 1.00 50.55 118 A 1 +ATOM 190 C C . THR B 1 25 ? -7.709 -0.503 -9.820 1.00 49.50 118 A 1 +ATOM 191 O O . THR B 1 25 ? -8.267 -0.695 -8.720 1.00 50.25 118 A 1 +ATOM 192 C CB . THR B 1 25 ? -8.933 -0.983 -11.947 1.00 53.52 118 A 1 +ATOM 193 O OG1 . THR B 1 25 ? -9.796 -0.396 -12.916 1.00 60.17 118 A 1 +ATOM 194 C CG2 . THR B 1 25 ? -9.619 -2.127 -11.260 1.00 58.18 118 A 1 +ATOM 195 N N . ARG B 1 26 ? -6.447 -0.762 -10.054 1.00 48.62 119 A 1 +ATOM 196 C CA . ARG B 1 26 ? -5.575 -1.319 -9.076 1.00 52.29 119 A 1 +ATOM 197 C C . ARG B 1 26 ? -5.362 -0.349 -7.936 1.00 56.15 119 A 1 +ATOM 198 O O . ARG B 1 26 ? -5.203 -0.758 -6.818 1.00 60.08 119 A 1 +ATOM 199 C CB . ARG B 1 26 ? -4.262 -1.609 -9.738 1.00 57.25 119 A 1 +ATOM 200 C CG . ARG B 1 26 ? -4.341 -2.608 -10.845 1.00 67.09 119 A 1 +ATOM 201 C CD . ARG B 1 26 ? -4.671 -3.974 -10.307 1.00 78.77 119 A 1 +ATOM 202 N NE . ARG B 1 26 ? -4.743 -4.923 -11.390 1.00 95.96 119 A 1 +ATOM 203 C CZ . ARG B 1 26 ? -3.703 -5.558 -11.900 1.00 111.57 119 A 1 +ATOM 204 N NH1 . ARG B 1 26 ? -3.881 -6.412 -12.892 1.00 120.54 119 A 1 +ATOM 205 N NH2 . ARG B 1 26 ? -2.494 -5.350 -11.417 1.00 114.95 119 A 1 +ATOM 206 N N . GLY B 1 27 ? -5.312 0.940 -8.241 1.00 57.29 120 A 1 +ATOM 207 C CA . GLY B 1 27 ? -5.176 2.005 -7.265 1.00 55.03 120 A 1 +ATOM 208 C C . GLY B 1 27 ? -6.391 2.105 -6.381 1.00 51.16 120 A 1 +ATOM 209 O O . GLY B 1 27 ? -6.273 2.252 -5.174 1.00 48.31 120 A 1 +ATOM 210 N N . ILE B 1 28 ? -7.570 1.983 -6.973 1.00 48.29 121 A 1 +ATOM 211 C CA . ILE B 1 28 ? -8.807 2.040 -6.198 1.00 51.59 121 A 1 +ATOM 212 C C . ILE B 1 28 ? -8.893 0.889 -5.227 1.00 54.18 121 A 1 +ATOM 213 O O . ILE B 1 28 ? -9.376 1.068 -4.118 1.00 53.53 121 A 1 +ATOM 214 C CB . ILE B 1 28 ? -10.053 2.141 -7.095 1.00 55.27 121 A 1 +ATOM 215 C CG1 . ILE B 1 28 ? -10.187 3.601 -7.621 1.00 55.95 121 A 1 +ATOM 216 C CG2 . ILE B 1 28 ? -11.306 1.807 -6.320 1.00 61.76 121 A 1 +ATOM 217 C CD1 . ILE B 1 28 ? -11.126 3.822 -8.793 1.00 55.74 121 A 1 +ATOM 218 N N . GLU B 1 29 ? -8.420 -0.273 -5.627 1.00 61.84 122 A 1 +ATOM 219 C CA . GLU B 1 29 ? -8.319 -1.378 -4.700 1.00 67.68 122 A 1 +ATOM 220 C C . GLU B 1 29 ? -7.415 -1.069 -3.537 1.00 65.03 122 A 1 +ATOM 221 O O . GLU B 1 29 ? -7.791 -1.331 -2.393 1.00 64.70 122 A 1 +ATOM 222 C CB . GLU B 1 29 ? -7.868 -2.634 -5.431 1.00 78.78 122 A 1 +ATOM 223 C CG . GLU B 1 29 ? -9.069 -3.428 -5.962 1.00 86.76 122 A 1 +ATOM 224 C CD . GLU B 1 29 ? -8.878 -4.019 -7.353 1.00 87.49 122 A 1 +ATOM 225 O OE1 . GLU B 1 29 ? -7.768 -4.558 -7.636 1.00 84.73 122 A 1 +ATOM 226 O OE2 . GLU B 1 29 ? -9.870 -3.959 -8.121 1.00 77.87 122 A 1 +ATOM 227 N N . GLN B 1 30 ? -6.256 -0.484 -3.829 1.00 59.57 123 A 1 +ATOM 228 C CA . GLN B 1 30 ? -5.315 -0.084 -2.773 1.00 55.23 123 A 1 +ATOM 229 C C . GLN B 1 30 ? -5.910 0.955 -1.841 1.00 51.86 123 A 1 +ATOM 230 O O . GLN B 1 30 ? -5.662 0.942 -0.653 1.00 44.12 123 A 1 +ATOM 231 C CB . GLN B 1 30 ? -4.037 0.514 -3.362 1.00 55.92 123 A 1 +ATOM 232 C CG . GLN B 1 30 ? -3.221 -0.371 -4.262 1.00 61.37 123 A 1 +ATOM 233 C CD . GLN B 1 30 ? -2.863 -1.664 -3.614 1.00 62.35 123 A 1 +ATOM 234 O OE1 . GLN B 1 30 ? -2.326 -1.663 -2.512 1.00 63.09 123 A 1 +ATOM 235 N NE2 . GLN B 1 30 ? -3.188 -2.787 -4.276 1.00 70.63 123 A 1 +ATOM 236 N N . VAL B 1 31 ? -6.703 1.858 -2.386 1.00 57.05 124 A 1 +ATOM 237 C CA . VAL B 1 31 ? -7.323 2.883 -1.569 1.00 56.37 124 A 1 +ATOM 238 C C . VAL B 1 31 ? -8.333 2.246 -0.629 1.00 61.68 124 A 1 +ATOM 239 O O . VAL B 1 31 ? -8.461 2.699 0.470 1.00 58.51 124 A 1 +ATOM 240 C CB . VAL B 1 31 ? -7.969 3.950 -2.456 1.00 57.06 124 A 1 +ATOM 241 C CG1 . VAL B 1 31 ? -9.007 4.756 -1.702 1.00 58.79 124 A 1 +ATOM 242 C CG2 . VAL B 1 31 ? -6.871 4.864 -2.974 1.00 58.78 124 A 1 +ATOM 243 N N . GLU B 1 32 ? -9.044 1.205 -1.068 1.00 67.95 125 A 1 +ATOM 244 C CA . GLU B 1 32 ? -9.940 0.481 -0.175 1.00 64.07 125 A 1 +ATOM 245 C C . GLU B 1 32 ? -9.140 -0.246 0.887 1.00 61.43 125 A 1 +ATOM 246 O O . GLU B 1 32 ? -9.521 -0.248 2.049 1.00 58.85 125 A 1 +ATOM 247 C CB . GLU B 1 32 ? -10.821 -0.511 -0.911 1.00 70.57 125 A 1 +ATOM 248 C CG . GLU B 1 32 ? -11.844 0.047 -1.875 1.00 81.60 125 A 1 +ATOM 249 C CD . GLU B 1 32 ? -12.772 1.105 -1.306 1.00 92.01 125 A 1 +ATOM 250 O OE1 . GLU B 1 32 ? -13.833 0.773 -0.713 1.00 101.96 125 A 1 +ATOM 251 O OE2 . GLU B 1 32 ? -12.392 2.286 -1.482 1.00 95.64 125 A 1 +ATOM 252 N N . LEU B 1 33 ? -8.042 -0.849 0.489 1.00 55.72 126 A 1 +ATOM 253 C CA . LEU B 1 33 ? -7.201 -1.483 1.447 1.00 58.91 126 A 1 +ATOM 254 C C . LEU B 1 33 ? -6.628 -0.487 2.476 1.00 56.58 126 A 1 +ATOM 255 O O . LEU B 1 33 ? -6.271 -0.829 3.592 1.00 59.20 126 A 1 +ATOM 256 C CB . LEU B 1 33 ? -6.089 -2.149 0.676 1.00 63.68 126 A 1 +ATOM 257 C CG . LEU B 1 33 ? -5.181 -3.155 1.283 1.00 71.88 126 A 1 +ATOM 258 C CD1 . LEU B 1 33 ? -4.453 -3.972 0.195 1.00 73.91 126 A 1 +ATOM 259 C CD2 . LEU B 1 33 ? -4.179 -2.480 2.169 1.00 75.78 126 A 1 +ATOM 260 N N . LEU B 1 34 ? -6.482 0.743 2.064 1.00 51.59 127 A 1 +ATOM 261 C CA . LEU B 1 34 ? -6.054 1.821 2.952 1.00 47.43 127 A 1 +ATOM 262 C C . LEU B 1 34 ? -7.162 2.293 3.867 1.00 49.18 127 A 1 +ATOM 263 O O . LEU B 1 34 ? -6.917 2.748 4.956 1.00 48.29 127 A 1 +ATOM 264 C CB . LEU B 1 34 ? -5.537 2.996 2.165 1.00 43.17 127 A 1 +ATOM 265 C CG . LEU B 1 34 ? -4.031 2.968 1.890 1.00 42.73 127 A 1 +ATOM 266 C CD1 . LEU B 1 34 ? -3.630 4.313 1.305 1.00 42.46 127 A 1 +ATOM 267 C CD2 . LEU B 1 34 ? -3.088 2.610 3.005 1.00 43.31 127 A 1 +ATOM 268 N N . LYS B 1 35 ? -8.399 2.214 3.408 1.00 52.51 128 A 1 +ATOM 269 C CA . LYS B 1 35 ? -9.553 2.535 4.233 1.00 52.46 128 A 1 +ATOM 270 C C . LYS B 1 35 ? -9.710 1.492 5.330 1.00 53.78 128 A 1 +ATOM 271 O O . LYS B 1 35 ? -10.040 1.823 6.442 1.00 47.30 128 A 1 +ATOM 272 C CB . LYS B 1 35 ? -10.830 2.641 3.381 1.00 54.62 128 A 1 +ATOM 273 C CG . LYS B 1 35 ? -12.138 2.251 4.078 1.00 59.22 128 A 1 +ATOM 274 N N . ARG B 1 36 ? -9.454 0.236 4.997 1.00 56.56 129 A 1 +ATOM 275 C CA . ARG B 1 36 ? -9.471 -0.853 5.953 1.00 60.75 129 A 1 +ATOM 276 C C . ARG B 1 36 ? -8.392 -0.650 7.014 1.00 59.48 129 A 1 +ATOM 277 O O . ARG B 1 36 ? -8.620 -0.927 8.185 1.00 63.52 129 A 1 +ATOM 278 C CB . ARG B 1 36 ? -9.292 -2.210 5.247 1.00 65.76 129 A 1 +ATOM 279 C CG . ARG B 1 36 ? -10.535 -2.769 4.547 1.00 68.71 129 A 1 +ATOM 280 C CD . ARG B 1 36 ? -10.167 -3.835 3.488 1.00 67.67 129 A 1 +ATOM 281 N N . ILE B 1 37 ? -7.221 -0.161 6.611 1.00 54.56 130 A 1 +ATOM 282 C CA . ILE B 1 37 ? -6.140 0.129 7.539 1.00 49.62 130 A 1 +ATOM 283 C C . ILE B 1 37 ? -6.541 1.250 8.466 1.00 49.00 130 A 1 +ATOM 284 O O . ILE B 1 37 ? -6.319 1.155 9.647 1.00 47.20 130 A 1 +ATOM 285 C CB . ILE B 1 37 ? -4.839 0.472 6.806 1.00 51.01 130 A 1 +ATOM 286 C CG1 . ILE B 1 37 ? -4.243 -0.830 6.231 1.00 57.41 130 A 1 +ATOM 287 C CG2 . ILE B 1 37 ? -3.851 1.181 7.755 1.00 49.06 130 A 1 +ATOM 288 C CD1 . ILE B 1 37 ? -2.922 -0.695 5.533 1.00 59.59 130 A 1 +ATOM 289 N N . HIS B 1 38 ? -7.179 2.276 7.957 1.00 50.21 131 A 1 +ATOM 290 C CA . HIS B 1 38 ? -7.618 3.356 8.797 1.00 53.53 131 A 1 +ATOM 291 C C . HIS B 1 38 ? -8.670 2.891 9.780 1.00 62.35 131 A 1 +ATOM 292 O O . HIS B 1 38 ? -8.744 3.378 10.880 1.00 61.76 131 A 1 +ATOM 293 C CB . HIS B 1 38 ? -8.175 4.452 7.947 1.00 51.42 131 A 1 +ATOM 294 C CG . HIS B 1 38 ? -9.034 5.412 8.688 1.00 54.14 131 A 1 +ATOM 295 N ND1 . HIS B 1 38 ? -10.380 5.221 8.850 1.00 59.92 131 A 1 +ATOM 296 C CD2 . HIS B 1 38 ? -8.749 6.586 9.283 1.00 55.36 131 A 1 +ATOM 297 C CE1 . HIS B 1 38 ? -10.887 6.229 9.522 1.00 62.46 131 A 1 +ATOM 298 N NE2 . HIS B 1 38 ? -9.918 7.073 9.795 1.00 61.48 131 A 1 +ATOM 299 N N . ASP B 1 39 ? -9.476 1.928 9.394 1.00 63.84 132 A 1 +ATOM 300 C CA . ASP B 1 39 ? -10.480 1.421 10.286 1.00 65.95 132 A 1 +ATOM 301 C C . ASP B 1 39 ? -9.837 0.648 11.420 1.00 61.61 132 A 1 +ATOM 302 O O . ASP B 1 39 ? -10.164 0.840 12.551 1.00 56.16 132 A 1 +ATOM 303 C CB . ASP B 1 39 ? -11.456 0.577 9.509 1.00 73.60 132 A 1 +ATOM 304 C CG . ASP B 1 39 ? -12.373 1.404 8.658 1.00 76.60 132 A 1 +ATOM 305 O OD1 . ASP B 1 39 ? -12.277 2.631 8.703 1.00 70.60 132 A 1 +ATOM 306 O OD2 . ASP B 1 39 ? -13.195 0.833 7.937 1.00 81.44 132 A 1 +ATOM 307 N N . LYS B 1 40 ? -8.926 -0.245 11.106 1.00 59.87 133 A 1 +ATOM 308 C CA . LYS B 1 40 ? -8.191 -0.985 12.129 1.00 59.13 133 A 1 +ATOM 309 C C . LYS B 1 40 ? -7.573 -0.021 13.157 1.00 58.88 133 A 1 +ATOM 310 O O . LYS B 1 40 ? -7.579 -0.267 14.361 1.00 63.83 133 A 1 +ATOM 311 C CB . LYS B 1 40 ? -7.093 -1.864 11.503 1.00 58.69 133 A 1 +ATOM 312 C CG . LYS B 1 40 ? -7.577 -3.018 10.646 1.00 62.42 133 A 1 +ATOM 313 C CD . LYS B 1 40 ? -6.463 -3.844 9.987 1.00 62.93 133 A 1 +ATOM 314 N N . LEU B 1 41 ? -7.038 1.086 12.674 1.00 60.19 134 A 1 +ATOM 315 C CA . LEU B 1 41 ? -6.454 2.092 13.561 1.00 62.93 134 A 1 +ATOM 316 C C . LEU B 1 41 ? -7.487 2.707 14.452 1.00 63.64 134 A 1 +ATOM 317 O O . LEU B 1 41 ? -7.205 2.982 15.605 1.00 73.06 134 A 1 +ATOM 318 C CB . LEU B 1 41 ? -5.765 3.197 12.764 1.00 64.98 134 A 1 +ATOM 319 C CG . LEU B 1 41 ? -4.531 2.611 12.036 1.00 68.88 134 A 1 +ATOM 320 C CD1 . LEU B 1 41 ? -4.332 3.201 10.638 1.00 78.49 134 A 1 +ATOM 321 C CD2 . LEU B 1 41 ? -3.301 2.685 12.900 1.00 67.40 134 A 1 +ATOM 322 N N . MET B 1 42 ? -8.669 2.955 13.913 1.00 63.76 135 A 1 +ATOM 323 C CA . MET B 1 42 ? -9.752 3.512 14.704 1.00 67.57 135 A 1 +ATOM 324 C C . MET B 1 42 ? -10.186 2.561 15.817 1.00 72.44 135 A 1 +ATOM 325 O O . MET B 1 42 ? -10.413 2.985 16.975 1.00 66.48 135 A 1 +ATOM 326 C CB . MET B 1 42 ? -10.932 3.853 13.816 1.00 69.82 135 A 1 +ATOM 327 C CG . MET B 1 42 ? -10.710 5.112 13.020 1.00 74.54 135 A 1 +ATOM 328 S SD . MET B 1 42 ? -10.062 6.547 13.958 1.00 82.27 135 A 1 +ATOM 329 C CE . MET B 1 42 ? -11.073 6.663 15.446 1.00 83.33 135 A 1 +ATOM 330 N N . ILE B 1 43 ? -10.271 1.274 15.477 1.00 81.93 136 A 1 +ATOM 331 C CA . ILE B 1 43 ? -10.594 0.243 16.446 1.00 79.15 136 A 1 +ATOM 332 C C . ILE B 1 43 ? -9.526 0.183 17.546 1.00 79.65 136 A 1 +ATOM 333 O O . ILE B 1 43 ? -9.854 0.128 18.719 1.00 82.01 136 A 1 +ATOM 334 C CB . ILE B 1 43 ? -10.781 -1.129 15.738 1.00 80.39 136 A 1 +ATOM 335 C CG1 . ILE B 1 43 ? -12.176 -1.237 15.090 1.00 78.84 136 A 1 +ATOM 336 C CG2 . ILE B 1 43 ? -10.586 -2.294 16.708 1.00 84.53 136 A 1 +ATOM 337 C CD1 . ILE B 1 43 ? -12.480 -0.642 13.720 1.00 74.74 136 A 1 +ATOM 338 N N . ARG B 1 44 ? -8.250 0.200 17.158 1.00 85.15 137 A 1 +ATOM 339 C CA . ARG B 1 44 ? -7.131 0.216 18.111 1.00 90.78 137 A 1 +ATOM 340 C C . ARG B 1 44 ? -7.103 1.498 18.957 1.00 91.00 137 A 1 +ATOM 341 O O . ARG B 1 44 ? -6.632 1.453 20.068 1.00 96.79 137 A 1 +ATOM 342 C CB . ARG B 1 44 ? -5.803 0.033 17.373 1.00 95.82 137 A 1 +ATOM 343 C CG . ARG B 1 44 ? -4.883 -1.005 17.902 1.00 101.09 137 A 1 +ATOM 344 C CD . ARG B 1 44 ? -3.772 -1.099 16.880 1.00 107.64 137 A 1 +ATOM 345 N NE . ARG B 1 44 ? -2.978 -2.299 17.060 1.00 124.71 137 A 1 +ATOM 346 C CZ . ARG B 1 44 ? -2.237 -2.882 16.112 1.00 137.30 137 A 1 +ATOM 347 N NH1 . ARG B 1 44 ? -2.186 -2.387 14.871 1.00 128.35 137 A 1 +ATOM 348 N NH2 . ARG B 1 44 ? -1.533 -3.990 16.400 1.00 147.87 137 A 1 +ATOM 349 N N . ALA B 1 45 ? -7.688 2.601 18.506 1.00 92.41 138 A 1 +ATOM 350 C CA . ALA B 1 45 ? -7.783 3.810 19.381 1.00 96.29 138 A 1 +ATOM 351 C C . ALA B 1 45 ? -8.773 4.837 18.851 1.00 95.46 138 A 1 +ATOM 352 O O . ALA B 1 45 ? -8.386 5.847 18.235 1.00 81.53 138 A 1 +ATOM 353 C CB . ALA B 1 45 ? -6.408 4.475 19.603 1.00 97.91 138 A 1 +# diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6s61.cif b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6s61.cif new file mode 100644 index 0000000000000000000000000000000000000000..b762402006f21a7318791798e392ed19a89e10b5 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6s61.cif @@ -0,0 +1,3293 @@ +data_6S61 +# +_entry.id 6S61 +# +loop_ +_chem_comp.formula +_chem_comp.formula_weight +_chem_comp.id +_chem_comp.mon_nstd_flag +_chem_comp.name +_chem_comp.pdbx_synonyms +_chem_comp.type +"C3 H7 N O2" 89.093 ALA y ALANINE ? "L-peptide linking" +"C6 H15 N4 O2 1" 175.209 ARG y ARGININE ? "L-peptide linking" +"C4 H8 N2 O3" 132.118 ASN y ASPARAGINE ? "L-peptide linking" +"C4 H7 N O4" 133.103 ASP y "ASPARTIC ACID" ? "L-peptide linking" +"C3 H7 N O2 S" 121.158 CYS y CYSTEINE ? "L-peptide linking" +"Fe 3" 55.845 FE . "FE (III) ION" ? non-polymer +"C5 H10 N2 O3" 146.144 GLN y GLUTAMINE ? "L-peptide linking" +"C5 H9 N O4" 147.129 GLU y "GLUTAMIC ACID" ? "L-peptide linking" +"C2 H5 N O2" 75.067 GLY y GLYCINE ? "peptide linking" +"C6 H10 N3 O2 1" 156.162 HIS y HISTIDINE ? "L-peptide linking" +"H2 O" 18.015 HOH . WATER ? non-polymer +"C6 H13 N O2" 131.173 ILE y ISOLEUCINE ? "L-peptide linking" +"C6 H13 N O2" 131.173 LEU y LEUCINE ? "L-peptide linking" +"C6 H15 N2 O2 1" 147.195 LYS y LYSINE ? "L-peptide linking" +"C5 H11 N O2 S" 149.211 MET y METHIONINE ? "L-peptide linking" +"C9 H11 N O2" 165.189 PHE y PHENYLALANINE ? "L-peptide linking" +"C5 H9 N O2" 115.130 PRO y PROLINE ? "L-peptide linking" +"C3 H7 N O3" 105.093 SER y SERINE ? "L-peptide linking" +"C4 H9 N O3" 119.119 THR y THREONINE ? "L-peptide linking" +"C11 H12 N2 O2" 204.225 TRP y TRYPTOPHAN ? "L-peptide linking" +"C9 H11 N O3" 181.189 TYR y TYROSINE ? "L-peptide linking" +"C5 H11 N O2" 117.146 VAL y VALINE ? "L-peptide linking" +"Zn 2" 65.409 ZN . "ZINC ION" ? non-polymer +# +loop_ +_entity.id +_entity.pdbx_description +_entity.type +1 "Ferritin heavy chain" polymer +3 "ZINC ION" non-polymer +# +_entity_poly.entity_id 1 +_entity_poly.pdbx_strand_id M +_entity_poly.type polypeptide(L) +# +loop_ +_entity_poly_seq.entity_id +_entity_poly_seq.hetero +_entity_poly_seq.mon_id +_entity_poly_seq.num +1 n MET 1 +1 n THR 2 +1 n THR 3 +1 n ALA 4 +1 n SER 5 +1 n PRO 6 +1 n SER 7 +1 n GLN 8 +1 n VAL 9 +1 n ARG 10 +1 n GLN 11 +1 n ASN 12 +1 n TYR 13 +1 n HIS 14 +1 n GLN 15 +1 n ASP 16 +1 n ALA 17 +1 n GLU 18 +1 n ALA 19 +1 n ALA 20 +1 n ILE 21 +1 n ASN 22 +1 n ARG 23 +1 n GLN 24 +1 n ILE 25 +1 n ASN 26 +1 n LEU 27 +1 n GLU 28 +1 n LEU 29 +1 n TYR 30 +1 n ALA 31 +1 n SER 32 +1 n TYR 33 +1 n VAL 34 +1 n TYR 35 +1 n LEU 36 +1 n SER 37 +1 n MET 38 +1 n SER 39 +1 n CYS 40 +1 n TYR 41 +1 n PHE 42 +1 n ASP 43 +1 n ARG 44 +1 n ASP 45 +1 n ASP 46 +1 n VAL 47 +1 n ALA 48 +1 n LEU 49 +1 n LYS 50 +1 n ASN 51 +1 n PHE 52 +1 n ALA 53 +1 n LYS 54 +1 n TYR 55 +1 n PHE 56 +1 n LEU 57 +1 n HIS 58 +1 n GLN 59 +1 n SER 60 +1 n HIS 61 +1 n GLU 62 +1 n GLU 63 +1 n ARG 64 +1 n GLU 65 +1 n HIS 66 +1 n ALA 67 +1 n GLU 68 +1 n LYS 69 +1 n LEU 70 +1 n MET 71 +1 n LYS 72 +1 n LEU 73 +1 n GLN 74 +1 n ASN 75 +1 n GLN 76 +1 n ARG 77 +1 n GLY 78 +1 n GLY 79 +1 n ARG 80 +1 n ILE 81 +1 n PHE 82 +1 n LEU 83 +1 n GLN 84 +1 n ASP 85 +1 n ILE 86 +1 n LYS 87 +1 n LYS 88 +1 n PRO 89 +1 n ASP 90 +1 n ARG 91 +1 n ASP 92 +1 n ASP 93 +1 n TRP 94 +1 n GLU 95 +1 n SER 96 +1 n GLY 97 +1 n LEU 98 +1 n ASN 99 +1 n ALA 100 +1 n MET 101 +1 n GLU 102 +1 n CYS 103 +1 n ALA 104 +1 n LEU 105 +1 n HIS 106 +1 n LEU 107 +1 n GLU 108 +1 n LYS 109 +1 n SER 110 +1 n VAL 111 +1 n ASN 112 +1 n GLN 113 +1 n SER 114 +1 n LEU 115 +1 n LEU 116 +1 n GLU 117 +1 n LEU 118 +1 n HIS 119 +1 n LYS 120 +1 n LEU 121 +1 n ALA 122 +1 n THR 123 +1 n ASP 124 +1 n LYS 125 +1 n ASN 126 +1 n ASP 127 +1 n PRO 128 +1 n HIS 129 +1 n LEU 130 +1 n CYS 131 +1 n ASP 132 +1 n PHE 133 +1 n ILE 134 +1 n GLU 135 +1 n THR 136 +1 n TYR 137 +1 n TYR 138 +1 n LEU 139 +1 n SER 140 +1 n GLU 141 +1 n GLN 142 +1 n VAL 143 +1 n LYS 144 +1 n SER 145 +1 n ILE 146 +1 n LYS 147 +1 n GLU 148 +1 n LEU 149 +1 n GLY 150 +1 n ASP 151 +1 n HIS 152 +1 n VAL 153 +1 n THR 154 +1 n ASN 155 +1 n LEU 156 +1 n ARG 157 +1 n LYS 158 +1 n MET 159 +1 n GLY 160 +1 n ALA 161 +1 n PRO 162 +1 n GLU 163 +1 n ALA 164 +1 n GLY 165 +1 n MET 166 +1 n ALA 167 +1 n GLU 168 +1 n TYR 169 +1 n LEU 170 +1 n PHE 171 +1 n ASP 172 +1 n LYS 173 +1 n HIS 174 +1 n THR 175 +1 n LEU 176 +1 n GLY 177 +1 n HIS 178 +1 n GLY 179 +1 n ASP 180 +1 n GLU 181 +1 n SER 182 +# +_exptl.method "ELECTRON MICROSCOPY" +# +_pdbx_audit_revision_history.revision_date 2019-07-10 +# +_pdbx_database_status.recvd_initial_deposition_date 2019-07-10 +# +_pdbx_nonpoly_scheme.asym_id PA +_pdbx_nonpoly_scheme.auth_seq_num 201 +_pdbx_nonpoly_scheme.entity_id 3 +_pdbx_nonpoly_scheme.mon_id ZN +_pdbx_nonpoly_scheme.pdb_ins_code . +_pdbx_nonpoly_scheme.pdb_seq_num 201 +_pdbx_nonpoly_scheme.pdb_strand_id M +# +loop_ +_pdbx_poly_seq_scheme.asym_id +_pdbx_poly_seq_scheme.auth_seq_num +_pdbx_poly_seq_scheme.entity_id +_pdbx_poly_seq_scheme.hetero +_pdbx_poly_seq_scheme.mon_id +_pdbx_poly_seq_scheme.pdb_ins_code +_pdbx_poly_seq_scheme.pdb_seq_num +_pdbx_poly_seq_scheme.pdb_strand_id +_pdbx_poly_seq_scheme.seq_id +M ? 1 n MET . 0 M 1 +M ? 1 n THR . 1 M 2 +M ? 1 n THR . 2 M 3 +M ? 1 n ALA . 3 M 4 +M ? 1 n SER . 4 M 5 +M 5 1 n PRO . 5 M 6 +M 6 1 n SER . 6 M 7 +M 7 1 n GLN . 7 M 8 +M 8 1 n VAL . 8 M 9 +M 9 1 n ARG . 9 M 10 +M 10 1 n GLN . 10 M 11 +M 11 1 n ASN . 11 M 12 +M 12 1 n TYR . 12 M 13 +M 13 1 n HIS . 13 M 14 +M 14 1 n GLN . 14 M 15 +M 15 1 n ASP . 15 M 16 +M 16 1 n ALA . 16 M 17 +M 17 1 n GLU . 17 M 18 +M 18 1 n ALA . 18 M 19 +M 19 1 n ALA . 19 M 20 +M 20 1 n ILE . 20 M 21 +M 21 1 n ASN . 21 M 22 +M 22 1 n ARG . 22 M 23 +M 23 1 n GLN . 23 M 24 +M 24 1 n ILE . 24 M 25 +M 25 1 n ASN . 25 M 26 +M 26 1 n LEU . 26 M 27 +M 27 1 n GLU . 27 M 28 +M 28 1 n LEU . 28 M 29 +M 29 1 n TYR . 29 M 30 +M 30 1 n ALA . 30 M 31 +M 31 1 n SER . 31 M 32 +M 32 1 n TYR . 32 M 33 +M 33 1 n VAL . 33 M 34 +M 34 1 n TYR . 34 M 35 +M 35 1 n LEU . 35 M 36 +M 36 1 n SER . 36 M 37 +M 37 1 n MET . 37 M 38 +M 38 1 n SER . 38 M 39 +M 39 1 n CYS . 39 M 40 +M 40 1 n TYR . 40 M 41 +M 41 1 n PHE . 41 M 42 +M 42 1 n ASP . 42 M 43 +M 43 1 n ARG . 43 M 44 +M 44 1 n ASP . 44 M 45 +M 45 1 n ASP . 45 M 46 +M 46 1 n VAL . 46 M 47 +M 47 1 n ALA . 47 M 48 +M 48 1 n LEU . 48 M 49 +M 49 1 n LYS . 49 M 50 +M 50 1 n ASN . 50 M 51 +M 51 1 n PHE . 51 M 52 +M 52 1 n ALA . 52 M 53 +M 53 1 n LYS . 53 M 54 +M 54 1 n TYR . 54 M 55 +M 55 1 n PHE . 55 M 56 +M 56 1 n LEU . 56 M 57 +M 57 1 n HIS . 57 M 58 +M 58 1 n GLN . 58 M 59 +M 59 1 n SER . 59 M 60 +M 60 1 n HIS . 60 M 61 +M 61 1 n GLU . 61 M 62 +M 62 1 n GLU . 62 M 63 +M 63 1 n ARG . 63 M 64 +M 64 1 n GLU . 64 M 65 +M 65 1 n HIS . 65 M 66 +M 66 1 n ALA . 66 M 67 +M 67 1 n GLU . 67 M 68 +M 68 1 n LYS . 68 M 69 +M 69 1 n LEU . 69 M 70 +M 70 1 n MET . 70 M 71 +M 71 1 n LYS . 71 M 72 +M 72 1 n LEU . 72 M 73 +M 73 1 n GLN . 73 M 74 +M 74 1 n ASN . 74 M 75 +M 75 1 n GLN . 75 M 76 +M 76 1 n ARG . 76 M 77 +M 77 1 n GLY . 77 M 78 +M 78 1 n GLY . 78 M 79 +M 79 1 n ARG . 79 M 80 +M 80 1 n ILE . 80 M 81 +M 81 1 n PHE . 81 M 82 +M 82 1 n LEU . 82 M 83 +M 83 1 n GLN . 83 M 84 +M 84 1 n ASP . 84 M 85 +M 85 1 n ILE . 85 M 86 +M 86 1 n LYS . 86 M 87 +M 87 1 n LYS . 87 M 88 +M 88 1 n PRO . 88 M 89 +M 89 1 n ASP . 89 M 90 +M 90 1 n ARG . 90 M 91 +M 91 1 n ASP . 91 M 92 +M 92 1 n ASP . 92 M 93 +M 93 1 n TRP . 93 M 94 +M 94 1 n GLU . 94 M 95 +M 95 1 n SER . 95 M 96 +M 96 1 n GLY . 96 M 97 +M 97 1 n LEU . 97 M 98 +M 98 1 n ASN . 98 M 99 +M 99 1 n ALA . 99 M 100 +M 100 1 n MET . 100 M 101 +M 101 1 n GLU . 101 M 102 +M 102 1 n CYS . 102 M 103 +M 103 1 n ALA . 103 M 104 +M 104 1 n LEU . 104 M 105 +M 105 1 n HIS . 105 M 106 +M 106 1 n LEU . 106 M 107 +M 107 1 n GLU . 107 M 108 +M 108 1 n LYS . 108 M 109 +M 109 1 n SER . 109 M 110 +M 110 1 n VAL . 110 M 111 +M 111 1 n ASN . 111 M 112 +M 112 1 n GLN . 112 M 113 +M 113 1 n SER . 113 M 114 +M 114 1 n LEU . 114 M 115 +M 115 1 n LEU . 115 M 116 +M 116 1 n GLU . 116 M 117 +M 117 1 n LEU . 117 M 118 +M 118 1 n HIS . 118 M 119 +M 119 1 n LYS . 119 M 120 +M 120 1 n LEU . 120 M 121 +M 121 1 n ALA . 121 M 122 +M 122 1 n THR . 122 M 123 +M 123 1 n ASP . 123 M 124 +M 124 1 n LYS . 124 M 125 +M 125 1 n ASN . 125 M 126 +M 126 1 n ASP . 126 M 127 +M 127 1 n PRO . 127 M 128 +M 128 1 n HIS . 128 M 129 +M 129 1 n LEU . 129 M 130 +M 130 1 n CYS . 130 M 131 +M 131 1 n ASP . 131 M 132 +M 132 1 n PHE . 132 M 133 +M 133 1 n ILE . 133 M 134 +M 134 1 n GLU . 134 M 135 +M 135 1 n THR . 135 M 136 +M 136 1 n TYR . 136 M 137 +M 137 1 n TYR . 137 M 138 +M 138 1 n LEU . 138 M 139 +M 139 1 n SER . 139 M 140 +M 140 1 n GLU . 140 M 141 +M 141 1 n GLN . 141 M 142 +M 142 1 n VAL . 142 M 143 +M 143 1 n LYS . 143 M 144 +M 144 1 n SER . 144 M 145 +M 145 1 n ILE . 145 M 146 +M 146 1 n LYS . 146 M 147 +M 147 1 n GLU . 147 M 148 +M 148 1 n LEU . 148 M 149 +M 149 1 n GLY . 149 M 150 +M 150 1 n ASP . 150 M 151 +M 151 1 n HIS . 151 M 152 +M 152 1 n VAL . 152 M 153 +M 153 1 n THR . 153 M 154 +M 154 1 n ASN . 154 M 155 +M 155 1 n LEU . 155 M 156 +M 156 1 n ARG . 156 M 157 +M 157 1 n LYS . 157 M 158 +M 158 1 n MET . 158 M 159 +M 159 1 n GLY . 159 M 160 +M 160 1 n ALA . 160 M 161 +M 161 1 n PRO . 161 M 162 +M 162 1 n GLU . 162 M 163 +M 163 1 n ALA . 163 M 164 +M 164 1 n GLY . 164 M 165 +M 165 1 n MET . 165 M 166 +M 166 1 n ALA . 166 M 167 +M 167 1 n GLU . 167 M 168 +M 168 1 n TYR . 168 M 169 +M 169 1 n LEU . 169 M 170 +M 170 1 n PHE . 170 M 171 +M 171 1 n ASP . 171 M 172 +M 172 1 n LYS . 172 M 173 +M 173 1 n HIS . 173 M 174 +M 174 1 n THR . 174 M 175 +M 175 1 n LEU . 175 M 176 +M 176 1 n GLY . 176 M 177 +M ? 1 n HIS . 177 M 178 +M ? 1 n GLY . 178 M 179 +M ? 1 n ASP . 179 M 180 +M ? 1 n GLU . 180 M 181 +M ? 1 n SER . 181 M 182 +# +_pdbx_struct_assembly.details author_and_software_defined_assembly +_pdbx_struct_assembly.id 1 +_pdbx_struct_assembly.method_details PISA +_pdbx_struct_assembly.oligomeric_count 24 +_pdbx_struct_assembly.oligomeric_details 24-meric +# +_pdbx_struct_assembly_gen.assembly_id 1 +_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G,H,I,J,K,L,M,N,O,P,Q,R,S,T,U,V,W,X,Y,Z,AA,BA,CA,DA,EA,FA,GA,HA,IA,JA,KA,LA,MA,NA,OA,PA,QA,RA,SA,TA,UA,VA,WA,XA,YA,ZA,AB,BB,CB,DB,EB,FB,GB,HB,IB,JB,KB,LB,MB,NB,OB,PB,QB,RB,SB,TB,UB,VB,WB,XB,YB,ZB +_pdbx_struct_assembly_gen.oper_expression 1 +# +_pdbx_struct_oper_list.id 1 +_pdbx_struct_oper_list.matrix[1][1] 1.0000000000 +_pdbx_struct_oper_list.matrix[1][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[1][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][2] 1.0000000000 +_pdbx_struct_oper_list.matrix[2][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][3] 1.0000000000 +_pdbx_struct_oper_list.name 1_555 +_pdbx_struct_oper_list.symmetry_operation ? +_pdbx_struct_oper_list.type "identity operation" +_pdbx_struct_oper_list.vector[1] 0.0000000000 +_pdbx_struct_oper_list.vector[2] 0.0000000000 +_pdbx_struct_oper_list.vector[3] 0.0000000000 +# +_refine.ls_d_res_high 1.84 +# +_software.classification other +_software.name "DeepMind Structure Class" +_software.pdbx_ordinal 1 +_software.version 2.0.0 +# +loop_ +_struct_asym.entity_id +_struct_asym.id +1 M +3 PA +# +loop_ +_struct_conn.conn_type_id +_struct_conn.id +_struct_conn.pdbx_ptnr1_PDB_ins_code +_struct_conn.pdbx_ptnr1_label_alt_id +_struct_conn.pdbx_ptnr2_PDB_ins_code +_struct_conn.pdbx_ptnr2_label_alt_id +_struct_conn.pdbx_role +_struct_conn.pdbx_value_order +_struct_conn.ptnr1_auth_asym_id +_struct_conn.ptnr1_auth_seq_id +_struct_conn.ptnr1_label_asym_id +_struct_conn.ptnr1_label_atom_id +_struct_conn.ptnr1_label_comp_id +_struct_conn.ptnr1_label_seq_id +_struct_conn.ptnr1_symmetry +_struct_conn.ptnr2_auth_asym_id +_struct_conn.ptnr2_auth_seq_id +_struct_conn.ptnr2_label_asym_id +_struct_conn.ptnr2_label_atom_id +_struct_conn.ptnr2_label_comp_id +_struct_conn.ptnr2_label_seq_id +_struct_conn.ptnr2_symmetry +metalc metalc1 ? ? ? ? ? ? M 27 M OE2 GLU 28 1_555 M 201 PA ZN ZN . 1_555 +metalc metalc2 ? ? ? ? ? ? M 62 M OE1 GLU 63 1_555 M 201 PA ZN ZN . 1_555 +metalc metalc3 ? ? ? ? ? ? M 65 M ND1 HIS 66 1_555 M 201 PA ZN ZN . 1_555 +# +_struct_conn_type.criteria ? +_struct_conn_type.id metalc +_struct_conn_type.reference ? +# +loop_ +_atom_site.group_PDB +_atom_site.id +_atom_site.type_symbol +_atom_site.label_atom_id +_atom_site.label_alt_id +_atom_site.label_comp_id +_atom_site.label_asym_id +_atom_site.label_entity_id +_atom_site.label_seq_id +_atom_site.pdbx_PDB_ins_code +_atom_site.Cartn_x +_atom_site.Cartn_y +_atom_site.Cartn_z +_atom_site.occupancy +_atom_site.B_iso_or_equiv +_atom_site.auth_seq_id +_atom_site.auth_asym_id +_atom_site.pdbx_PDB_model_num +ATOM 1 N N . PRO M 1 6 ? 122.212 117.597 42.494 1.00 9.28 5 M 1 +ATOM 2 C CA . PRO M 1 6 ? 122.084 118.174 43.835 1.00 9.28 5 M 1 +ATOM 3 C C . PRO M 1 6 ? 120.908 117.581 44.601 1.00 9.28 5 M 1 +ATOM 4 O O . PRO M 1 6 ? 119.808 117.491 44.064 1.00 9.28 5 M 1 +ATOM 5 C CB . PRO M 1 6 ? 121.864 119.662 43.555 1.00 9.28 5 M 1 +ATOM 6 C CG . PRO M 1 6 ? 121.230 119.694 42.219 1.00 9.28 5 M 1 +ATOM 7 C CD . PRO M 1 6 ? 121.846 118.564 41.447 1.00 9.28 5 M 1 +ATOM 8 H HA . PRO M 1 6 ? 122.903 118.063 44.342 1.00 9.28 5 M 1 +ATOM 9 H HB2 . PRO M 1 6 ? 121.285 120.040 44.235 1.00 9.28 5 M 1 +ATOM 10 H HB3 . PRO M 1 6 ? 122.714 120.128 43.534 1.00 9.28 5 M 1 +ATOM 11 H HG2 . PRO M 1 6 ? 120.274 119.558 42.308 1.00 9.28 5 M 1 +ATOM 12 H HG3 . PRO M 1 6 ? 121.419 120.545 41.793 1.00 9.28 5 M 1 +ATOM 13 H HD2 . PRO M 1 6 ? 121.199 118.179 40.836 1.00 9.28 5 M 1 +ATOM 14 H HD3 . PRO M 1 6 ? 122.642 118.866 40.982 1.00 9.28 5 M 1 +ATOM 15 N N . SER M 1 7 ? 121.145 117.181 45.845 1.00 7.08 6 M 1 +ATOM 16 C CA . SER M 1 7 ? 120.080 116.612 46.653 1.00 7.08 6 M 1 +ATOM 17 C C . SER M 1 7 ? 119.029 117.671 46.964 1.00 7.08 6 M 1 +ATOM 18 O O . SER M 1 7 ? 119.342 118.844 47.176 1.00 7.08 6 M 1 +ATOM 19 C CB . SER M 1 7 ? 120.641 116.033 47.949 1.00 7.08 6 M 1 +ATOM 20 O OG . SER M 1 7 ? 119.605 115.511 48.745 1.00 7.08 6 M 1 +ATOM 21 H H . SER M 1 7 ? 121.906 117.238 46.241 1.00 7.08 6 M 1 +ATOM 22 H HA . SER M 1 7 ? 119.655 115.894 46.159 1.00 7.08 6 M 1 +ATOM 23 H HB2 . SER M 1 7 ? 121.264 115.319 47.741 1.00 7.08 6 M 1 +ATOM 24 H HB3 . SER M 1 7 ? 121.098 116.727 48.450 1.00 7.08 6 M 1 +ATOM 25 H HG . SER M 1 7 ? 119.939 115.148 49.425 1.00 7.08 6 M 1 +ATOM 26 N N . GLN M 1 8 ? 117.777 117.226 47.005 1.00 6.97 7 M 1 +ATOM 27 C CA . GLN M 1 8 ? 116.610 118.112 47.218 1.00 6.97 7 M 1 +ATOM 28 C C . GLN M 1 8 ? 116.732 118.800 48.583 1.00 6.97 7 M 1 +ATOM 29 O O . GLN M 1 8 ? 116.136 119.848 48.758 1.00 6.97 7 M 1 +ATOM 30 C CB . GLN M 1 8 ? 115.306 117.326 47.078 1.00 6.97 7 M 1 +ATOM 31 C CG . GLN M 1 8 ? 115.074 116.345 48.214 1.00 6.97 7 M 1 +ATOM 32 C CD . GLN M 1 8 ? 113.835 115.494 48.045 1.00 6.97 7 M 1 +ATOM 33 O OE1 . GLN M 1 8 ? 112.862 115.903 47.422 1.00 6.97 7 M 1 +ATOM 34 N NE2 . GLN M 1 8 ? 113.875 114.298 48.614 1.00 6.97 7 M 1 +ATOM 35 H H . GLN M 1 8 ? 117.574 116.339 47.027 1.00 6.97 7 M 1 +ATOM 36 H HA . GLN M 1 8 ? 116.628 118.808 46.520 1.00 6.97 7 M 1 +ATOM 37 H HB2 . GLN M 1 8 ? 114.560 117.960 47.043 1.00 6.97 7 M 1 +ATOM 38 H HB3 . GLN M 1 8 ? 115.326 116.836 46.229 1.00 6.97 7 M 1 +ATOM 39 H HG2 . GLN M 1 8 ? 115.854 115.755 48.288 1.00 6.97 7 M 1 +ATOM 40 H HG3 . GLN M 1 8 ? 115.001 116.846 49.054 1.00 6.97 7 M 1 +ATOM 41 H HE21 . GLN M 1 8 ? 114.576 114.063 49.098 1.00 6.97 7 M 1 +ATOM 42 H HE22 . GLN M 1 8 ? 113.201 113.736 48.510 1.00 6.97 7 M 1 +ATOM 43 N N . VAL M 1 9 ? 117.388 118.172 49.551 1.00 6.25 8 M 1 +ATOM 44 C CA . VAL M 1 9 ? 117.529 118.728 50.894 1.00 6.25 8 M 1 +ATOM 45 C C . VAL M 1 9 ? 118.772 119.591 51.047 1.00 6.25 8 M 1 +ATOM 46 O O . VAL M 1 9 ? 118.891 120.310 52.048 1.00 6.25 8 M 1 +ATOM 47 C CB . VAL M 1 9 ? 117.547 117.608 51.957 1.00 6.25 8 M 1 +ATOM 48 C CG1 . VAL M 1 9 ? 116.257 116.809 51.898 1.00 6.25 8 M 1 +ATOM 49 C CG2 . VAL M 1 9 ? 118.761 116.689 51.824 1.00 6.25 8 M 1 +ATOM 50 H H . VAL M 1 9 ? 117.757 117.402 49.445 1.00 6.25 8 M 1 +ATOM 51 H HA . VAL M 1 9 ? 116.763 119.289 51.092 1.00 6.25 8 M 1 +ATOM 52 H HB . VAL M 1 9 ? 117.602 118.020 52.833 1.00 6.25 8 M 1 +ATOM 53 H HG11 . VAL M 1 9 ? 116.190 116.261 52.696 1.00 6.25 8 M 1 +ATOM 54 H HG12 . VAL M 1 9 ? 115.507 117.422 51.853 1.00 6.25 8 M 1 +ATOM 55 H HG13 . VAL M 1 9 ? 116.261 116.241 51.112 1.00 6.25 8 M 1 +ATOM 56 H HG21 . VAL M 1 9 ? 118.720 116.025 52.530 1.00 6.25 8 M 1 +ATOM 57 H HG22 . VAL M 1 9 ? 118.732 116.240 50.965 1.00 6.25 8 M 1 +ATOM 58 H HG23 . VAL M 1 9 ? 119.588 117.186 51.922 1.00 6.25 8 M 1 +ATOM 59 N N . ARG M 1 10 ? 119.714 119.469 50.120 1.00 6.80 9 M 1 +ATOM 60 C CA . ARG M 1 10 ? 121.028 120.137 50.287 1.00 6.80 9 M 1 +ATOM 61 C C . ARG M 1 10 ? 120.873 121.657 50.283 1.00 6.80 9 M 1 +ATOM 62 O O . ARG M 1 10 ? 120.265 122.177 49.352 1.00 6.80 9 M 1 +ATOM 63 C CB . ARG M 1 10 ? 122.014 119.698 49.205 1.00 6.80 9 M 1 +ATOM 64 C CG . ARG M 1 10 ? 123.450 120.070 49.528 1.00 6.80 9 M 1 +ATOM 65 C CD . ARG M 1 10 ? 124.419 119.495 48.512 1.00 6.80 9 M 1 +ATOM 66 N NE . ARG M 1 10 ? 125.813 119.611 48.924 1.00 6.80 9 M 1 +ATOM 67 C CZ . ARG M 1 10 ? 126.705 118.641 48.816 1.00 6.80 9 M 1 +ATOM 68 N NH1 . ARG M 1 10 ? 126.346 117.466 48.336 1.00 6.80 9 M 1 +ATOM 69 N NH2 . ARG M 1 10 ? 127.944 118.830 49.223 1.00 6.80 9 M 1 +ATOM 70 H H . ARG M 1 10 ? 119.572 119.093 49.304 1.00 6.80 9 M 1 +ATOM 71 H HA . ARG M 1 10 ? 121.392 119.870 51.162 1.00 6.80 9 M 1 +ATOM 72 H HB2 . ARG M 1 10 ? 121.952 118.726 49.097 1.00 6.80 9 M 1 +ATOM 73 H HB3 . ARG M 1 10 ? 121.758 120.115 48.356 1.00 6.80 9 M 1 +ATOM 74 H HG2 . ARG M 1 10 ? 123.539 121.047 49.539 1.00 6.80 9 M 1 +ATOM 75 H HG3 . ARG M 1 10 ? 123.681 119.732 50.419 1.00 6.80 9 M 1 +ATOM 76 H HD2 . ARG M 1 10 ? 124.207 118.548 48.368 1.00 6.80 9 M 1 +ATOM 77 H HD3 . ARG M 1 10 ? 124.299 119.960 47.657 1.00 6.80 9 M 1 +ATOM 78 H HE . ARG M 1 10 ? 126.081 120.373 49.252 1.00 6.80 9 M 1 +ATOM 79 H HH11 . ARG M 1 10 ? 125.518 117.337 48.069 1.00 6.80 9 M 1 +ATOM 80 H HH12 . ARG M 1 10 ? 126.939 116.820 48.270 1.00 6.80 9 M 1 +ATOM 81 H HH21 . ARG M 1 10 ? 128.184 119.612 49.550 1.00 6.80 9 M 1 +ATOM 82 H HH22 . ARG M 1 10 ? 128.532 118.178 49.155 1.00 6.80 9 M 1 +ATOM 83 N N . GLN M 1 11 ? 121.516 122.324 51.239 1.00 6.12 10 M 1 +ATOM 84 C CA . GLN M 1 11 ? 121.478 123.774 51.352 1.00 6.12 10 M 1 +ATOM 85 C C . GLN M 1 11 ? 122.621 124.235 52.245 1.00 6.12 10 M 1 +ATOM 86 O O . GLN M 1 11 ? 122.708 123.833 53.406 1.00 6.12 10 M 1 +ATOM 87 C CB . GLN M 1 11 ? 120.137 124.237 51.920 1.00 6.12 10 M 1 +ATOM 88 C CG . GLN M 1 11 ? 119.911 125.721 51.902 1.00 6.12 10 M 1 +ATOM 89 C CD . GLN M 1 11 ? 118.537 126.076 52.435 1.00 6.12 10 M 1 +ATOM 90 O OE1 . GLN M 1 11 ? 117.830 125.223 52.962 1.00 6.12 10 M 1 +ATOM 91 N NE2 . GLN M 1 11 ? 118.126 127.312 52.236 1.00 6.12 10 M 1 +ATOM 92 H H . GLN M 1 11 ? 121.988 121.938 51.846 1.00 6.12 10 M 1 +ATOM 93 H HA . GLN M 1 11 ? 121.591 124.163 50.470 1.00 6.12 10 M 1 +ATOM 94 H HB2 . GLN M 1 11 ? 119.423 123.835 51.401 1.00 6.12 10 M 1 +ATOM 95 H HB3 . GLN M 1 11 ? 120.071 123.946 52.843 1.00 6.12 10 M 1 +ATOM 96 H HG2 . GLN M 1 11 ? 120.572 126.146 52.470 1.00 6.12 10 M 1 +ATOM 97 H HG3 . GLN M 1 11 ? 119.997 126.048 50.993 1.00 6.12 10 M 1 +ATOM 98 H HE21 . GLN M 1 11 ? 118.637 127.884 51.847 1.00 6.12 10 M 1 +ATOM 99 H HE22 . GLN M 1 11 ? 117.347 127.547 52.514 1.00 6.12 10 M 1 +ATOM 100 N N . ASN M 1 12 ? 123.445 125.121 51.688 1.00 6.65 11 M 1 +ATOM 101 C CA . ASN M 1 12 ? 124.619 125.702 52.391 1.00 6.65 11 M 1 +ATOM 102 C C . ASN M 1 12 ? 125.569 124.588 52.872 1.00 6.65 11 M 1 +ATOM 103 O O . ASN M 1 12 ? 126.059 124.697 53.982 1.00 6.65 11 M 1 +ATOM 104 C CB . ASN M 1 12 ? 124.137 126.571 53.556 1.00 6.65 11 M 1 +ATOM 105 C CG . ASN M 1 12 ? 125.258 127.385 54.163 1.00 6.65 11 M 1 +ATOM 106 O OD1 . ASN M 1 12 ? 126.071 127.935 53.440 1.00 6.65 11 M 1 +ATOM 107 N ND2 . ASN M 1 12 ? 125.302 127.463 55.473 1.00 6.65 11 M 1 +ATOM 108 H H . ASN M 1 12 ? 123.269 125.513 50.886 1.00 6.65 11 M 1 +ATOM 109 H HA . ASN M 1 12 ? 125.105 126.283 51.760 1.00 6.65 11 M 1 +ATOM 110 H HB2 . ASN M 1 12 ? 123.438 127.176 53.235 1.00 6.65 11 M 1 +ATOM 111 H HB3 . ASN M 1 12 ? 123.749 125.994 54.246 1.00 6.65 11 M 1 +ATOM 112 H HD21 . ASN M 1 12 ? 124.657 127.104 55.959 1.00 6.65 11 M 1 +ATOM 113 H HD22 . ASN M 1 12 ? 125.976 127.875 55.869 1.00 6.65 11 M 1 +ATOM 114 N N . TYR M 1 13 ? 125.844 123.567 52.055 1.00 5.90 12 M 1 +ATOM 115 C CA . TYR M 1 13 ? 126.657 122.414 52.440 1.00 5.90 12 M 1 +ATOM 116 C C . TYR M 1 13 ? 127.687 122.174 51.341 1.00 5.90 12 M 1 +ATOM 117 O O . TYR M 1 13 ? 127.385 121.578 50.305 1.00 5.90 12 M 1 +ATOM 118 C CB . TYR M 1 13 ? 125.780 121.196 52.694 1.00 5.90 12 M 1 +ATOM 119 C CG . TYR M 1 13 ? 126.505 120.044 53.350 1.00 5.90 12 M 1 +ATOM 120 C CD1 . TYR M 1 13 ? 126.937 120.148 54.661 1.00 5.90 12 M 1 +ATOM 121 C CD2 . TYR M 1 13 ? 126.681 118.836 52.705 1.00 5.90 12 M 1 +ATOM 122 C CE1 . TYR M 1 13 ? 127.578 119.120 55.287 1.00 5.90 12 M 1 +ATOM 123 C CE2 . TYR M 1 13 ? 127.319 117.786 53.335 1.00 5.90 12 M 1 +ATOM 124 C CZ . TYR M 1 13 ? 127.766 117.935 54.631 1.00 5.90 12 M 1 +ATOM 125 O OH . TYR M 1 13 ? 128.404 116.916 55.298 1.00 5.90 12 M 1 +ATOM 126 H H . TYR M 1 13 ? 125.574 123.542 51.239 1.00 5.90 12 M 1 +ATOM 127 H HA . TYR M 1 13 ? 127.152 122.600 53.253 1.00 5.90 12 M 1 +ATOM 128 H HB2 . TYR M 1 13 ? 125.041 121.450 53.268 1.00 5.90 12 M 1 +ATOM 129 H HB3 . TYR M 1 13 ? 125.430 120.884 51.845 1.00 5.90 12 M 1 +ATOM 130 H HD1 . TYR M 1 13 ? 126.822 120.949 55.119 1.00 5.90 12 M 1 +ATOM 131 H HD2 . TYR M 1 13 ? 126.385 118.735 51.829 1.00 5.90 12 M 1 +ATOM 132 H HE1 . TYR M 1 13 ? 127.875 119.221 56.163 1.00 5.90 12 M 1 +ATOM 133 H HE2 . TYR M 1 13 ? 127.445 116.981 52.887 1.00 5.90 12 M 1 +ATOM 134 H HH . TYR M 1 13 ? 128.383 116.208 54.846 1.00 5.90 12 M 1 +ATOM 135 N N . HIS M 1 14 ? 128.905 122.635 51.599 1.00 7.28 13 M 1 +ATOM 136 C CA . HIS M 1 14 ? 129.958 122.673 50.597 1.00 7.28 13 M 1 +ATOM 137 C C . HIS M 1 14 ? 130.572 121.284 50.442 1.00 7.28 13 M 1 +ATOM 138 O O . HIS M 1 14 ? 130.617 120.503 51.393 1.00 7.28 13 M 1 +ATOM 139 C CB . HIS M 1 14 ? 131.006 123.701 51.029 1.00 7.28 13 M 1 +ATOM 140 C CG . HIS M 1 14 ? 131.952 124.116 49.949 1.00 7.28 13 M 1 +ATOM 141 N ND1 . HIS M 1 14 ? 133.111 123.432 49.663 1.00 7.28 13 M 1 +ATOM 142 C CD2 . HIS M 1 14 ? 131.927 125.178 49.112 1.00 7.28 13 M 1 +ATOM 143 C CE1 . HIS M 1 14 ? 133.748 124.039 48.678 1.00 7.28 13 M 1 +ATOM 144 N NE2 . HIS M 1 14 ? 133.051 125.103 48.327 1.00 7.28 13 M 1 +ATOM 145 H H . HIS M 1 14 ? 129.149 122.936 52.367 1.00 7.28 13 M 1 +ATOM 146 H HA . HIS M 1 14 ? 129.593 122.954 49.743 1.00 7.28 13 M 1 +ATOM 147 H HB2 . HIS M 1 14 ? 130.552 124.500 51.338 1.00 7.28 13 M 1 +ATOM 148 H HB3 . HIS M 1 14 ? 131.532 123.326 51.753 1.00 7.28 13 M 1 +ATOM 149 H HD2 . HIS M 1 14 ? 131.267 125.832 49.071 1.00 7.28 13 M 1 +ATOM 150 H HE1 . HIS M 1 14 ? 134.552 123.767 48.298 1.00 7.28 13 M 1 +ATOM 151 H HE2 . HIS M 1 14 ? 133.267 125.657 47.706 1.00 7.28 13 M 1 +ATOM 152 N N . GLN M 1 15 ? 131.037 120.970 49.229 1.00 7.51 14 M 1 +ATOM 153 C CA . GLN M 1 15 ? 131.561 119.634 48.946 1.00 7.51 14 M 1 +ATOM 154 C C . GLN M 1 15 ? 132.800 119.311 49.780 1.00 7.51 14 M 1 +ATOM 155 O O . GLN M 1 15 ? 133.039 118.148 50.120 1.00 7.51 14 M 1 +ATOM 156 C CB . GLN M 1 15 ? 131.867 119.500 47.450 1.00 7.51 14 M 1 +ATOM 157 C CG . GLN M 1 15 ? 132.933 120.431 46.917 1.00 7.51 14 M 1 +ATOM 158 C CD . GLN M 1 15 ? 133.162 120.248 45.425 1.00 7.51 14 M 1 +ATOM 159 O OE1 . GLN M 1 15 ? 132.551 119.386 44.791 1.00 7.51 14 M 1 +ATOM 160 N NE2 . GLN M 1 15 ? 134.052 121.052 44.861 1.00 7.51 14 M 1 +ATOM 161 H H . GLN M 1 15 ? 131.058 121.511 48.561 1.00 7.51 14 M 1 +ATOM 162 H HA . GLN M 1 15 ? 130.879 118.977 49.157 1.00 7.51 14 M 1 +ATOM 163 H HB2 . GLN M 1 15 ? 132.164 118.595 47.269 1.00 7.51 14 M 1 +ATOM 164 H HB3 . GLN M 1 15 ? 131.057 119.680 46.948 1.00 7.51 14 M 1 +ATOM 165 H HG2 . GLN M 1 15 ? 132.652 121.347 47.070 1.00 7.51 14 M 1 +ATOM 166 H HG3 . GLN M 1 15 ? 133.774 120.264 47.370 1.00 7.51 14 M 1 +ATOM 167 H HE21 . GLN M 1 15 ? 134.462 121.642 45.333 1.00 7.51 14 M 1 +ATOM 168 H HE22 . GLN M 1 15 ? 134.218 120.981 44.020 1.00 7.51 14 M 1 +ATOM 169 N N . ASP M 1 16 ? 133.599 120.324 50.111 1.00 7.21 15 M 1 +ATOM 170 C CA . ASP M 1 16 ? 134.771 120.116 50.956 1.00 7.21 15 M 1 +ATOM 171 C C . ASP M 1 16 ? 134.371 119.680 52.361 1.00 7.21 15 M 1 +ATOM 172 O O . ASP M 1 16 ? 135.026 118.818 52.953 1.00 7.21 15 M 1 +ATOM 173 C CB . ASP M 1 16 ? 135.610 121.393 51.009 1.00 7.21 15 M 1 +ATOM 174 C CG . ASP M 1 16 ? 136.321 121.680 49.696 1.00 7.21 15 M 1 +ATOM 175 O OD1 . ASP M 1 16 ? 136.404 120.772 48.845 1.00 7.21 15 M 1 +ATOM 176 O OD2 . ASP M 1 16 ? 136.805 122.815 49.519 1.00 7.21 15 M 1 +ATOM 177 H H . ASP M 1 16 ? 133.476 121.137 49.858 1.00 7.21 15 M 1 +ATOM 178 H HA . ASP M 1 16 ? 135.320 119.415 50.571 1.00 7.21 15 M 1 +ATOM 179 H HB2 . ASP M 1 16 ? 135.034 122.148 51.207 1.00 7.21 15 M 1 +ATOM 180 H HB3 . ASP M 1 16 ? 136.282 121.306 51.703 1.00 7.21 15 M 1 +ATOM 181 N N . ALA M 1 17 ? 133.297 120.259 52.899 1.00 6.09 16 M 1 +ATOM 182 C CA . ALA M 1 17 ? 132.760 119.819 54.182 1.00 6.09 16 M 1 +ATOM 183 C C . ALA M 1 17 ? 132.287 118.373 54.109 1.00 6.09 16 M 1 +ATOM 184 O O . ALA M 1 17 ? 132.504 117.591 55.040 1.00 6.09 16 M 1 +ATOM 185 C CB . ALA M 1 17 ? 131.615 120.738 54.603 1.00 6.09 16 M 1 +ATOM 186 H H . ALA M 1 17 ? 132.865 120.907 52.533 1.00 6.09 16 M 1 +ATOM 187 H HA . ALA M 1 17 ? 133.452 119.884 54.859 1.00 6.09 16 M 1 +ATOM 188 H HB1 . ALA M 1 17 ? 131.308 120.487 55.488 1.00 6.09 16 M 1 +ATOM 189 H HB2 . ALA M 1 17 ? 131.935 121.654 54.614 1.00 6.09 16 M 1 +ATOM 190 H HB3 . ALA M 1 17 ? 130.887 120.656 53.967 1.00 6.09 16 M 1 +ATOM 191 N N . GLU M 1 18 ? 131.621 118.014 53.012 1.00 5.83 17 M 1 +ATOM 192 C CA . GLU M 1 18 ? 131.183 116.639 52.793 1.00 5.83 17 M 1 +ATOM 193 C C . GLU M 1 18 ? 132.369 115.677 52.836 1.00 5.83 17 M 1 +ATOM 194 O O . GLU M 1 18 ? 132.351 114.658 53.547 1.00 5.83 17 M 1 +ATOM 195 C CB . GLU M 1 18 ? 130.451 116.566 51.447 1.00 5.83 17 M 1 +ATOM 196 C CG . GLU M 1 18 ? 129.838 115.239 51.109 1.00 5.83 17 M 1 +ATOM 197 C CD . GLU M 1 18 ? 129.069 115.276 49.797 1.00 5.83 17 M 1 +ATOM 198 O OE1 . GLU M 1 18 ? 129.047 116.341 49.148 1.00 5.83 17 M 1 +ATOM 199 O OE2 . GLU M 1 18 ? 128.489 114.242 49.415 1.00 5.83 17 M 1 +ATOM 200 H H . GLU M 1 18 ? 131.409 118.555 52.378 1.00 5.83 17 M 1 +ATOM 201 H HA . GLU M 1 18 ? 130.552 116.395 53.488 1.00 5.83 17 M 1 +ATOM 202 H HB2 . GLU M 1 18 ? 129.737 117.223 51.446 1.00 5.83 17 M 1 +ATOM 203 H HB3 . GLU M 1 18 ? 131.070 116.780 50.732 1.00 5.83 17 M 1 +ATOM 204 H HG2 . GLU M 1 18 ? 130.539 114.574 51.031 1.00 5.83 17 M 1 +ATOM 205 H HG3 . GLU M 1 18 ? 129.220 114.990 51.814 1.00 5.83 17 M 1 +ATOM 206 N N . ALA M 1 19 ? 133.426 116.014 52.101 1.00 5.64 18 M 1 +ATOM 207 C CA . ALA M 1 19 ? 134.627 115.186 52.077 1.00 5.64 18 M 1 +ATOM 208 C C . ALA M 1 19 ? 135.261 115.089 53.461 1.00 5.64 18 M 1 +ATOM 209 O O . ALA M 1 19 ? 135.695 114.008 53.887 1.00 5.64 18 M 1 +ATOM 210 C CB . ALA M 1 19 ? 135.619 115.756 51.068 1.00 5.64 18 M 1 +ATOM 211 H H . ALA M 1 19 ? 133.469 116.730 51.627 1.00 5.64 18 M 1 +ATOM 212 H HA . ALA M 1 19 ? 134.387 114.294 51.780 1.00 5.64 18 M 1 +ATOM 213 H HB1 . ALA M 1 19 ? 136.445 115.249 51.108 1.00 5.64 18 M 1 +ATOM 214 H HB2 . ALA M 1 19 ? 135.231 115.688 50.181 1.00 5.64 18 M 1 +ATOM 215 H HB3 . ALA M 1 19 ? 135.792 116.686 51.281 1.00 5.64 18 M 1 +ATOM 216 N N . ALA M 1 20 ? 135.309 116.209 54.182 1.00 5.19 19 M 1 +ATOM 217 C CA . ALA M 1 20 ? 135.912 116.226 55.509 1.00 5.19 19 M 1 +ATOM 218 C C . ALA M 1 20 ? 135.118 115.366 56.484 1.00 5.19 19 M 1 +ATOM 219 O O . ALA M 1 20 ? 135.694 114.687 57.340 1.00 5.19 19 M 1 +ATOM 220 C CB . ALA M 1 20 ? 136.010 117.663 56.015 1.00 5.19 19 M 1 +ATOM 221 H H . ALA M 1 20 ? 134.988 116.964 53.924 1.00 5.19 19 M 1 +ATOM 222 H HA . ALA M 1 20 ? 136.813 115.873 55.449 1.00 5.19 19 M 1 +ATOM 223 H HB1 . ALA M 1 20 ? 136.318 117.661 56.935 1.00 5.19 19 M 1 +ATOM 224 H HB2 . ALA M 1 20 ? 136.643 118.153 55.468 1.00 5.19 19 M 1 +ATOM 225 H HB3 . ALA M 1 20 ? 135.136 118.080 55.963 1.00 5.19 19 M 1 +ATOM 226 N N . ILE M 1 21 ? 133.794 115.373 56.355 1.00 4.65 20 M 1 +ATOM 227 C CA . ILE M 1 21 ? 132.950 114.537 57.205 1.00 4.65 20 M 1 +ATOM 228 C C . ILE M 1 21 ? 133.187 113.062 56.918 1.00 4.65 20 M 1 +ATOM 229 O O . ILE M 1 21 ? 133.212 112.237 57.837 1.00 4.65 20 M 1 +ATOM 230 C CB . ILE M 1 21 ? 131.466 114.924 57.036 1.00 4.65 20 M 1 +ATOM 231 C CG1 . ILE M 1 21 ? 131.165 116.301 57.642 1.00 4.65 20 M 1 +ATOM 232 C CG2 . ILE M 1 21 ? 130.563 113.897 57.679 1.00 4.65 20 M 1 +ATOM 233 C CD1 . ILE M 1 21 ? 131.182 116.337 59.164 1.00 4.65 20 M 1 +ATOM 234 H H . ILE M 1 21 ? 133.365 115.839 55.774 1.00 4.65 20 M 1 +ATOM 235 H HA . ILE M 1 21 ? 133.213 114.693 58.125 1.00 4.65 20 M 1 +ATOM 236 H HB . ILE M 1 21 ? 131.263 114.954 56.088 1.00 4.65 20 M 1 +ATOM 237 H HG12 . ILE M 1 21 ? 131.845 116.927 57.348 1.00 4.65 20 M 1 +ATOM 238 H HG13 . ILE M 1 21 ? 130.297 116.611 57.340 1.00 4.65 20 M 1 +ATOM 239 H HG21 . ILE M 1 21 ? 129.700 114.308 57.842 1.00 4.65 20 M 1 +ATOM 240 H HG22 . ILE M 1 21 ? 130.447 113.140 57.083 1.00 4.65 20 M 1 +ATOM 241 H HG23 . ILE M 1 21 ? 130.944 113.601 58.521 1.00 4.65 20 M 1 +ATOM 242 H HD11 . ILE M 1 21 ? 131.445 117.226 59.450 1.00 4.65 20 M 1 +ATOM 243 H HD12 . ILE M 1 21 ? 130.292 116.138 59.495 1.00 4.65 20 M 1 +ATOM 244 H HD13 . ILE M 1 21 ? 131.804 115.688 59.529 1.00 4.65 20 M 1 +ATOM 245 N N . ASN M 1 22 ? 133.341 112.698 55.646 1.00 4.76 21 M 1 +ATOM 246 C CA . ASN M 1 22 ? 133.649 111.301 55.339 1.00 4.76 21 M 1 +ATOM 247 C C . ASN M 1 22 ? 134.999 110.889 55.925 1.00 4.76 21 M 1 +ATOM 248 O O . ASN M 1 22 ? 135.141 109.784 56.475 1.00 4.76 21 M 1 +ATOM 249 C CB . ASN M 1 22 ? 133.598 111.055 53.832 1.00 4.76 21 M 1 +ATOM 250 C CG . ASN M 1 22 ? 132.178 111.044 53.293 1.00 4.76 21 M 1 +ATOM 251 O OD1 . ASN M 1 22 ? 131.264 110.549 53.941 1.00 4.76 21 M 1 +ATOM 252 N ND2 . ASN M 1 22 ? 132.000 111.547 52.086 1.00 4.76 21 M 1 +ATOM 253 H H . ASN M 1 22 ? 133.277 113.220 54.965 1.00 4.76 21 M 1 +ATOM 254 H HA . ASN M 1 22 ? 132.976 110.740 55.755 1.00 4.76 21 M 1 +ATOM 255 H HB2 . ASN M 1 22 ? 134.078 111.762 53.373 1.00 4.76 21 M 1 +ATOM 256 H HB3 . ASN M 1 22 ? 134.006 110.200 53.626 1.00 4.76 21 M 1 +ATOM 257 H HD21 . ASN M 1 22 ? 132.665 111.877 51.652 1.00 4.76 21 M 1 +ATOM 258 H HD22 . ASN M 1 22 ? 131.214 111.556 51.737 1.00 4.76 21 M 1 +ATOM 259 N N . ARG M 1 23 ? 135.968 111.799 55.858 1.00 5.20 22 M 1 +ATOM 260 C CA . ARG M 1 23 ? 137.304 111.552 56.459 1.00 5.20 22 M 1 +ATOM 261 C C . ARG M 1 23 ? 137.134 111.402 57.973 1.00 5.20 22 M 1 +ATOM 262 O O . ARG M 1 23 ? 137.736 110.506 58.538 1.00 5.20 22 M 1 +ATOM 263 C CB . ARG M 1 23 ? 138.287 112.670 56.112 1.00 5.20 22 M 1 +ATOM 264 C CG . ARG M 1 23 ? 138.602 112.743 54.626 1.00 5.20 22 M 1 +ATOM 265 C CD . ARG M 1 23 ? 139.855 113.564 54.401 1.00 5.20 22 M 1 +ATOM 266 N NE . ARG M 1 23 ? 139.739 114.892 54.977 1.00 5.20 22 M 1 +ATOM 267 C CZ . ARG M 1 23 ? 139.293 115.956 54.319 1.00 5.20 22 M 1 +ATOM 268 N NH1 . ARG M 1 23 ? 138.919 115.844 53.060 1.00 5.20 22 M 1 +ATOM 269 N NH2 . ARG M 1 23 ? 139.230 117.132 54.915 1.00 5.20 22 M 1 +ATOM 270 H H . ARG M 1 23 ? 135.834 112.649 55.562 1.00 5.20 22 M 1 +ATOM 271 H HA . ARG M 1 23 ? 137.651 110.704 56.097 1.00 5.20 22 M 1 +ATOM 272 H HB2 . ARG M 1 23 ? 137.907 113.526 56.400 1.00 5.20 22 M 1 +ATOM 273 H HB3 . ARG M 1 23 ? 139.120 112.524 56.609 1.00 5.20 22 M 1 +ATOM 274 H HG2 . ARG M 1 23 ? 138.737 111.838 54.272 1.00 5.20 22 M 1 +ATOM 275 H HG3 . ARG M 1 23 ? 137.852 113.155 54.148 1.00 5.20 22 M 1 +ATOM 276 H HD2 . ARG M 1 23 ? 140.622 113.103 54.803 1.00 5.20 22 M 1 +ATOM 277 H HD3 . ARG M 1 23 ? 140.021 113.643 53.437 1.00 5.20 22 M 1 +ATOM 278 H HE . ARG M 1 23 ? 139.984 115.002 55.807 1.00 5.20 22 M 1 +ATOM 279 H HH11 . ARG M 1 23 ? 138.963 115.063 52.658 1.00 5.20 22 M 1 +ATOM 280 H HH12 . ARG M 1 23 ? 138.624 116.549 52.626 1.00 5.20 22 M 1 +ATOM 281 H HH21 . ARG M 1 23 ? 139.480 117.211 55.756 1.00 5.20 22 M 1 +ATOM 282 H HH22 . ARG M 1 23 ? 138.932 117.833 54.473 1.00 5.20 22 M 1 +ATOM 283 N N . GLN M 1 24 ? 136.303 112.230 58.589 1.00 4.27 23 M 1 +ATOM 284 C CA . GLN M 1 24 ? 136.057 112.163 60.050 1.00 4.27 23 M 1 +ATOM 285 C C . GLN M 1 24 ? 135.381 110.826 60.366 1.00 4.27 23 M 1 +ATOM 286 O O . GLN M 1 24 ? 135.792 110.182 61.304 1.00 4.27 23 M 1 +ATOM 287 C CB . GLN M 1 24 ? 135.231 113.334 60.583 1.00 4.27 23 M 1 +ATOM 288 C CG . GLN M 1 24 ? 135.188 113.347 62.108 1.00 4.27 23 M 1 +ATOM 289 C CD . GLN M 1 24 ? 136.537 113.649 62.722 1.00 4.27 23 M 1 +ATOM 290 O OE1 . GLN M 1 24 ? 137.398 114.230 62.085 1.00 4.27 23 M 1 +ATOM 291 N NE2 . GLN M 1 24 ? 136.731 113.278 63.973 1.00 4.27 23 M 1 +ATOM 292 H H . GLN M 1 24 ? 135.752 112.801 58.143 1.00 4.27 23 M 1 +ATOM 293 H HA . GLN M 1 24 ? 136.933 112.175 60.501 1.00 4.27 23 M 1 +ATOM 294 H HB2 . GLN M 1 24 ? 135.623 114.172 60.260 1.00 4.27 23 M 1 +ATOM 295 H HB3 . GLN M 1 24 ? 134.319 113.266 60.231 1.00 4.27 23 M 1 +ATOM 296 H HG2 . GLN M 1 24 ? 134.542 114.023 62.406 1.00 4.27 23 M 1 +ATOM 297 H HG3 . GLN M 1 24 ? 134.878 112.473 62.429 1.00 4.27 23 M 1 +ATOM 298 H HE21 . GLN M 1 24 ? 136.087 112.865 64.417 1.00 4.27 23 M 1 +ATOM 299 H HE22 . GLN M 1 24 ? 137.504 113.442 64.368 1.00 4.27 23 M 1 +ATOM 300 N N . ILE M 1 25 ? 134.455 110.366 59.533 1.00 4.04 24 M 1 +ATOM 301 C CA . ILE M 1 25 ? 133.757 109.072 59.780 1.00 4.04 24 M 1 +ATOM 302 C C . ILE M 1 25 ? 134.814 107.969 59.775 1.00 4.04 24 M 1 +ATOM 303 O O . ILE M 1 25 ? 134.825 107.162 60.686 1.00 4.04 24 M 1 +ATOM 304 C CB . ILE M 1 25 ? 132.669 108.811 58.722 1.00 4.04 24 M 1 +ATOM 305 C CG1 . ILE M 1 25 ? 131.463 109.726 58.927 1.00 4.04 24 M 1 +ATOM 306 C CG2 . ILE M 1 25 ? 132.268 107.346 58.704 1.00 4.04 24 M 1 +ATOM 307 C CD1 . ILE M 1 25 ? 130.542 109.790 57.732 1.00 4.04 24 M 1 +ATOM 308 H H . ILE M 1 25 ? 134.294 110.730 58.714 1.00 4.04 24 M 1 +ATOM 309 H HA . ILE M 1 25 ? 133.339 109.104 60.659 1.00 4.04 24 M 1 +ATOM 310 H HB . ILE M 1 25 ? 133.057 109.027 57.838 1.00 4.04 24 M 1 +ATOM 311 H HG12 . ILE M 1 25 ? 130.953 109.407 59.703 1.00 4.04 24 M 1 +ATOM 312 H HG13 . ILE M 1 25 ? 131.783 110.631 59.129 1.00 4.04 24 M 1 +ATOM 313 H HG21 . ILE M 1 25 ? 131.520 107.219 58.094 1.00 4.04 24 M 1 +ATOM 314 H HG22 . ILE M 1 25 ? 133.020 106.805 58.408 1.00 4.04 24 M 1 +ATOM 315 H HG23 . ILE M 1 25 ? 132.004 107.068 59.598 1.00 4.04 24 M 1 +ATOM 316 H HD11 . ILE M 1 25 ? 129.788 110.372 57.933 1.00 4.04 24 M 1 +ATOM 317 H HD12 . ILE M 1 25 ? 131.027 110.141 56.966 1.00 4.04 24 M 1 +ATOM 318 H HD13 . ILE M 1 25 ? 130.213 108.898 57.525 1.00 4.04 24 M 1 +ATOM 319 N N . ASN M 1 26 ? 135.739 107.997 58.831 1.00 4.23 25 M 1 +ATOM 320 C CA . ASN M 1 26 ? 136.770 106.935 58.766 1.00 4.23 25 M 1 +ATOM 321 C C . ASN M 1 26 ? 137.629 107.000 60.033 1.00 4.23 25 M 1 +ATOM 322 O O . ASN M 1 26 ? 137.870 105.966 60.618 1.00 4.23 25 M 1 +ATOM 323 C CB . ASN M 1 26 ? 137.632 107.025 57.513 1.00 4.23 25 M 1 +ATOM 324 C CG . ASN M 1 26 ? 138.457 105.768 57.372 1.00 4.23 25 M 1 +ATOM 325 O OD1 . ASN M 1 26 ? 139.615 105.766 57.731 1.00 4.23 25 M 1 +ATOM 326 N ND2 . ASN M 1 26 ? 137.836 104.688 56.940 1.00 4.23 25 M 1 +ATOM 327 H H . ASN M 1 26 ? 135.874 108.705 58.276 1.00 4.23 25 M 1 +ATOM 328 H HA . ASN M 1 26 ? 136.310 106.063 58.747 1.00 4.23 25 M 1 +ATOM 329 H HB2 . ASN M 1 26 ? 137.058 107.133 56.728 1.00 4.23 25 M 1 +ATOM 330 H HB3 . ASN M 1 26 ? 138.224 107.802 57.579 1.00 4.23 25 M 1 +ATOM 331 H HD21 . ASN M 1 26 ? 136.953 104.669 56.909 1.00 4.23 25 M 1 +ATOM 332 H HD22 . ASN M 1 26 ? 138.302 103.982 56.685 1.00 4.23 25 M 1 +ATOM 333 N N . LEU M 1 27 ? 137.977 108.199 60.481 1.00 4.02 26 M 1 +ATOM 334 C CA . LEU M 1 27 ? 138.840 108.382 61.679 1.00 4.02 26 M 1 +ATOM 335 C C . LEU M 1 27 ? 138.126 107.816 62.917 1.00 4.02 26 M 1 +ATOM 336 O O . LEU M 1 27 ? 138.760 107.121 63.684 1.00 4.02 26 M 1 +ATOM 337 C CB . LEU M 1 27 ? 139.149 109.873 61.835 1.00 4.02 26 M 1 +ATOM 338 C CG . LEU M 1 27 ? 140.085 110.228 62.989 1.00 4.02 26 M 1 +ATOM 339 C CD1 . LEU M 1 27 ? 141.294 109.307 63.013 1.00 4.02 26 M 1 +ATOM 340 C CD2 . LEU M 1 27 ? 140.521 111.687 62.919 1.00 4.02 26 M 1 +ATOM 341 H H . LEU M 1 27 ? 137.610 108.970 60.164 1.00 4.02 26 M 1 +ATOM 342 H HA . LEU M 1 27 ? 139.678 107.884 61.539 1.00 4.02 26 M 1 +ATOM 343 H HB2 . LEU M 1 27 ? 139.548 110.193 61.001 1.00 4.02 26 M 1 +ATOM 344 H HB3 . LEU M 1 27 ? 138.305 110.351 61.961 1.00 4.02 26 M 1 +ATOM 345 H HG . LEU M 1 27 ? 139.588 110.099 63.834 1.00 4.02 26 M 1 +ATOM 346 H HD11 . LEU M 1 27 ? 141.901 109.586 63.720 1.00 4.02 26 M 1 +ATOM 347 H HD12 . LEU M 1 27 ? 141.003 108.393 63.178 1.00 4.02 26 M 1 +ATOM 348 H HD13 . LEU M 1 27 ? 141.753 109.351 62.156 1.00 4.02 26 M 1 +ATOM 349 H HD21 . LEU M 1 27 ? 141.103 111.888 63.672 1.00 4.02 26 M 1 +ATOM 350 H HD22 . LEU M 1 27 ? 141.001 111.843 62.087 1.00 4.02 26 M 1 +ATOM 351 H HD23 . LEU M 1 27 ? 139.737 112.262 62.953 1.00 4.02 26 M 1 +ATOM 352 N N . GLU M 1 28 ? 136.831 108.071 63.062 1.00 4.01 27 M 1 +ATOM 353 C CA . GLU M 1 28 ? 136.023 107.567 64.213 1.00 4.01 27 M 1 +ATOM 354 C C . GLU M 1 28 ? 135.968 106.029 64.180 1.00 4.01 27 M 1 +ATOM 355 O O . GLU M 1 28 ? 136.192 105.431 65.200 1.00 4.01 27 M 1 +ATOM 356 C CB . GLU M 1 28 ? 134.646 108.231 64.224 1.00 4.01 27 M 1 +ATOM 357 C CG . GLU M 1 28 ? 134.708 109.746 64.330 1.00 4.01 27 M 1 +ATOM 358 C CD . GLU M 1 28 ? 135.022 110.278 65.717 1.00 4.01 27 M 1 +ATOM 359 O OE1 . GLU M 1 28 ? 135.132 111.477 65.845 1.00 4.01 27 M 1 +ATOM 360 O OE2 . GLU M 1 28 ? 135.180 109.480 66.654 1.00 4.01 27 M 1 +ATOM 361 H H . GLU M 1 28 ? 136.336 108.472 62.412 1.00 4.01 27 M 1 +ATOM 362 H HA . GLU M 1 28 ? 136.491 107.832 65.039 1.00 4.01 27 M 1 +ATOM 363 H HB2 . GLU M 1 28 ? 134.174 107.988 63.400 1.00 4.01 27 M 1 +ATOM 364 H HB3 . GLU M 1 28 ? 134.133 107.879 64.981 1.00 4.01 27 M 1 +ATOM 365 H HG2 . GLU M 1 28 ? 135.391 110.078 63.709 1.00 4.01 27 M 1 +ATOM 366 H HG3 . GLU M 1 28 ? 133.846 110.118 64.045 1.00 4.01 27 M 1 +ATOM 367 N N . LEU M 1 29 ? 135.785 105.403 63.026 1.00 3.51 28 M 1 +ATOM 368 C CA . LEU M 1 29 ? 135.765 103.946 62.933 1.00 3.51 28 M 1 +ATOM 369 C C . LEU M 1 29 ? 137.136 103.360 63.258 1.00 3.51 28 M 1 +ATOM 370 O O . LEU M 1 29 ? 137.245 102.337 63.952 1.00 3.51 28 M 1 +ATOM 371 C CB . LEU M 1 29 ? 135.301 103.527 61.538 1.00 3.51 28 M 1 +ATOM 372 C CG . LEU M 1 29 ? 133.853 103.850 61.150 1.00 3.51 28 M 1 +ATOM 373 C CD1 . LEU M 1 29 ? 133.595 103.571 59.675 1.00 3.51 28 M 1 +ATOM 374 C CD2 . LEU M 1 29 ? 132.868 103.099 62.048 1.00 3.51 28 M 1 +ATOM 375 H H . LEU M 1 29 ? 135.653 105.809 62.280 1.00 3.51 28 M 1 +ATOM 376 H HA . LEU M 1 29 ? 135.135 103.595 63.582 1.00 3.51 28 M 1 +ATOM 377 H HB2 . LEU M 1 29 ? 135.875 103.956 60.885 1.00 3.51 28 M 1 +ATOM 378 H HB3 . LEU M 1 29 ? 135.409 102.566 61.462 1.00 3.51 28 M 1 +ATOM 379 H HG . LEU M 1 29 ? 133.694 104.797 61.289 1.00 3.51 28 M 1 +ATOM 380 H HD11 . LEU M 1 29 ? 132.643 103.636 59.502 1.00 3.51 28 M 1 +ATOM 381 H HD12 . LEU M 1 29 ? 134.053 104.234 59.135 1.00 3.51 28 M 1 +ATOM 382 H HD13 . LEU M 1 29 ? 133.912 102.684 59.442 1.00 3.51 28 M 1 +ATOM 383 H HD21 . LEU M 1 29 ? 132.022 102.980 61.589 1.00 3.51 28 M 1 +ATOM 384 H HD22 . LEU M 1 29 ? 133.233 102.231 62.281 1.00 3.51 28 M 1 +ATOM 385 H HD23 . LEU M 1 29 ? 132.726 103.616 62.856 1.00 3.51 28 M 1 +ATOM 386 N N . TYR M 1 30 ? 138.197 104.018 62.789 1.00 3.71 29 M 1 +ATOM 387 C CA . TYR M 1 30 ? 139.553 103.601 63.125 1.00 3.71 29 M 1 +ATOM 388 C C . TYR M 1 30 ? 139.788 103.627 64.630 1.00 3.71 29 M 1 +ATOM 389 O O . TYR M 1 30 ? 140.367 102.694 65.193 1.00 3.71 29 M 1 +ATOM 390 C CB . TYR M 1 30 ? 140.558 104.494 62.407 1.00 3.71 29 M 1 +ATOM 391 C CG . TYR M 1 30 ? 141.983 104.208 62.780 1.00 3.71 29 M 1 +ATOM 392 C CD1 . TYR M 1 30 ? 142.637 103.095 62.294 1.00 3.71 29 M 1 +ATOM 393 C CD2 . TYR M 1 30 ? 142.674 105.050 63.634 1.00 3.71 29 M 1 +ATOM 394 C CE1 . TYR M 1 30 ? 143.934 102.835 62.635 1.00 3.71 29 M 1 +ATOM 395 C CE2 . TYR M 1 30 ? 143.977 104.793 63.983 1.00 3.71 29 M 1 +ATOM 396 C CZ . TYR M 1 30 ? 144.601 103.678 63.482 1.00 3.71 29 M 1 +ATOM 397 O OH . TYR M 1 30 ? 145.902 103.394 63.809 1.00 3.71 29 M 1 +ATOM 398 H H . TYR M 1 30 ? 138.158 104.711 62.281 1.00 3.71 29 M 1 +ATOM 399 H HA . TYR M 1 30 ? 139.690 102.691 62.818 1.00 3.71 29 M 1 +ATOM 400 H HB2 . TYR M 1 30 ? 140.472 104.349 61.452 1.00 3.71 29 M 1 +ATOM 401 H HB3 . TYR M 1 30 ? 140.372 105.424 62.613 1.00 3.71 29 M 1 +ATOM 402 H HD1 . TYR M 1 30 ? 142.192 102.514 61.720 1.00 3.71 29 M 1 +ATOM 403 H HD2 . TYR M 1 30 ? 142.251 105.805 63.975 1.00 3.71 29 M 1 +ATOM 404 H HE1 . TYR M 1 30 ? 144.359 102.079 62.298 1.00 3.71 29 M 1 +ATOM 405 H HE2 . TYR M 1 30 ? 144.429 105.369 64.556 1.00 3.71 29 M 1 +ATOM 406 H HH . TYR M 1 30 ? 146.373 103.345 63.115 1.00 3.71 29 M 1 +ATOM 407 N N . ALA M 1 31 ? 139.356 104.699 65.292 1.00 3.35 30 M 1 +ATOM 408 C CA . ALA M 1 31 ? 139.528 104.812 66.738 1.00 3.35 30 M 1 +ATOM 409 C C . ALA M 1 31 ? 138.774 103.707 67.462 1.00 3.35 30 M 1 +ATOM 410 O O . ALA M 1 31 ? 139.276 103.129 68.437 1.00 3.35 30 M 1 +ATOM 411 C CB . ALA M 1 31 ? 139.056 106.184 67.214 1.00 3.35 30 M 1 +ATOM 412 H H . ALA M 1 31 ? 138.946 105.361 64.927 1.00 3.35 30 M 1 +ATOM 413 H HA . ALA M 1 31 ? 140.472 104.735 66.949 1.00 3.35 30 M 1 +ATOM 414 H HB1 . ALA M 1 31 ? 139.116 106.235 68.181 1.00 3.35 30 M 1 +ATOM 415 H HB2 . ALA M 1 31 ? 139.622 106.867 66.821 1.00 3.35 30 M 1 +ATOM 416 H HB3 . ALA M 1 31 ? 138.134 106.318 66.945 1.00 3.35 30 M 1 +ATOM 417 N N . SER M 1 32 ? 137.564 103.400 66.993 1.00 3.18 31 M 1 +ATOM 418 C CA . SER M 1 32 ? 136.811 102.293 67.567 1.00 3.18 31 M 1 +ATOM 419 C C . SER M 1 32 ? 137.603 100.999 67.464 1.00 3.18 31 M 1 +ATOM 420 O O . SER M 1 32 ? 137.641 100.201 68.404 1.00 3.18 31 M 1 +ATOM 421 C CB . SER M 1 32 ? 135.466 102.139 66.865 1.00 3.18 31 M 1 +ATOM 422 O OG . SER M 1 32 ? 134.752 101.051 67.407 1.00 3.18 31 M 1 +ATOM 423 H H . SER M 1 32 ? 137.174 103.793 66.335 1.00 3.18 31 M 1 +ATOM 424 H HA . SER M 1 32 ? 136.630 102.476 68.502 1.00 3.18 31 M 1 +ATOM 425 H HB2 . SER M 1 32 ? 134.939 102.946 66.973 1.00 3.18 31 M 1 +ATOM 426 H HB3 . SER M 1 32 ? 135.620 101.974 65.922 1.00 3.18 31 M 1 +ATOM 427 H HG . SER M 1 32 ? 135.094 100.829 68.141 1.00 3.18 31 M 1 +ATOM 428 N N . TYR M 1 33 ? 138.275 100.799 66.337 1.00 3.03 32 M 1 +ATOM 429 C CA . TYR M 1 33 ? 138.957 99.533 66.105 1.00 3.03 32 M 1 +ATOM 430 C C . TYR M 1 33 ? 140.246 99.446 66.928 1.00 3.03 32 M 1 +ATOM 431 O O . TYR M 1 33 ? 140.590 98.384 67.463 1.00 3.03 32 M 1 +ATOM 432 C CB . TYR M 1 33 ? 139.148 99.386 64.594 1.00 3.03 32 M 1 +ATOM 433 C CG . TYR M 1 33 ? 139.641 98.067 64.082 1.00 3.03 32 M 1 +ATOM 434 C CD1 . TYR M 1 33 ? 139.026 96.900 64.464 1.00 3.03 32 M 1 +ATOM 435 C CD2 . TYR M 1 33 ? 140.504 98.008 63.005 1.00 3.03 32 M 1 +ATOM 436 C CE1 . TYR M 1 33 ? 139.409 95.696 63.962 1.00 3.03 32 M 1 +ATOM 437 C CE2 . TYR M 1 33 ? 140.878 96.805 62.460 1.00 3.03 32 M 1 +ATOM 438 C CZ . TYR M 1 33 ? 140.315 95.642 62.942 1.00 3.03 32 M 1 +ATOM 439 O OH . TYR M 1 33 ? 140.653 94.414 62.435 1.00 3.03 32 M 1 +ATOM 440 H H . TYR M 1 33 ? 138.348 101.369 65.698 1.00 3.03 32 M 1 +ATOM 441 H HA . TYR M 1 33 ? 138.370 98.818 66.396 1.00 3.03 32 M 1 +ATOM 442 H HB2 . TYR M 1 33 ? 138.302 99.563 64.154 1.00 3.03 32 M 1 +ATOM 443 H HB3 . TYR M 1 33 ? 139.791 100.056 64.312 1.00 3.03 32 M 1 +ATOM 444 H HD1 . TYR M 1 33 ? 138.426 96.924 65.175 1.00 3.03 32 M 1 +ATOM 445 H HD2 . TYR M 1 33 ? 140.889 98.792 62.686 1.00 3.03 32 M 1 +ATOM 446 H HE1 . TYR M 1 33 ? 139.016 94.918 64.286 1.00 3.03 32 M 1 +ATOM 447 H HE2 . TYR M 1 33 ? 141.500 96.784 61.769 1.00 3.03 32 M 1 +ATOM 448 H HH . TYR M 1 33 ? 141.157 94.498 61.768 1.00 3.03 32 M 1 +ATOM 449 N N . VAL M 1 34 ? 140.915 100.585 67.121 1.00 3.46 33 M 1 +ATOM 450 C CA . VAL M 1 34 ? 142.055 100.663 68.039 1.00 3.46 33 M 1 +ATOM 451 C C . VAL M 1 34 ? 141.629 100.281 69.455 1.00 3.46 33 M 1 +ATOM 452 O O . VAL M 1 34 ? 142.290 99.482 70.134 1.00 3.46 33 M 1 +ATOM 453 C CB . VAL M 1 34 ? 142.683 102.071 68.007 1.00 3.46 33 M 1 +ATOM 454 C CG1 . VAL M 1 34 ? 143.748 102.219 69.088 1.00 3.46 33 M 1 +ATOM 455 C CG2 . VAL M 1 34 ? 143.311 102.347 66.654 1.00 3.46 33 M 1 +ATOM 456 H H . VAL M 1 34 ? 140.716 101.332 66.744 1.00 3.46 33 M 1 +ATOM 457 H HA . VAL M 1 34 ? 142.735 100.036 67.747 1.00 3.46 33 M 1 +ATOM 458 H HB . VAL M 1 34 ? 141.995 102.736 68.165 1.00 3.46 33 M 1 +ATOM 459 H HG11 . VAL M 1 34 ? 144.305 102.986 68.882 1.00 3.46 33 M 1 +ATOM 460 H HG12 . VAL M 1 34 ? 143.331 102.360 69.952 1.00 3.46 33 M 1 +ATOM 461 H HG13 . VAL M 1 34 ? 144.301 101.423 69.110 1.00 3.46 33 M 1 +ATOM 462 H HG21 . VAL M 1 34 ? 143.667 103.249 66.651 1.00 3.46 33 M 1 +ATOM 463 H HG22 . VAL M 1 34 ? 144.029 101.713 66.500 1.00 3.46 33 M 1 +ATOM 464 H HG23 . VAL M 1 34 ? 142.654 102.259 65.946 1.00 3.46 33 M 1 +ATOM 465 N N . TYR M 1 35 ? 140.530 100.866 69.919 1.00 3.20 34 M 1 +ATOM 466 C CA . TYR M 1 35 ? 140.001 100.604 71.283 1.00 3.20 34 M 1 +ATOM 467 C C . TYR M 1 35 ? 139.639 99.114 71.378 1.00 3.20 34 M 1 +ATOM 468 O O . TYR M 1 35 ? 139.849 98.500 72.402 1.00 3.20 34 M 1 +ATOM 469 C CB . TYR M 1 35 ? 138.841 101.546 71.587 1.00 3.20 34 M 1 +ATOM 470 C CG . TYR M 1 35 ? 139.250 102.931 72.020 1.00 3.20 34 M 1 +ATOM 471 C CD1 . TYR M 1 35 ? 140.196 103.117 73.010 1.00 3.20 34 M 1 +ATOM 472 C CD2 . TYR M 1 35 ? 138.646 104.058 71.485 1.00 3.20 34 M 1 +ATOM 473 C CE1 . TYR M 1 35 ? 140.544 104.389 73.448 1.00 3.20 34 M 1 +ATOM 474 C CE2 . TYR M 1 35 ? 138.992 105.335 71.899 1.00 3.20 34 M 1 +ATOM 475 C CZ . TYR M 1 35 ? 139.942 105.505 72.889 1.00 3.20 34 M 1 +ATOM 476 O OH . TYR M 1 35 ? 140.290 106.755 73.319 1.00 3.20 34 M 1 +ATOM 477 H H . TYR M 1 35 ? 139.962 101.356 69.405 1.00 3.20 34 M 1 +ATOM 478 H HA . TYR M 1 35 ? 140.725 100.784 71.935 1.00 3.20 34 M 1 +ATOM 479 H HB2 . TYR M 1 35 ? 138.284 101.619 70.784 1.00 3.20 34 M 1 +ATOM 480 H HB3 . TYR M 1 35 ? 138.294 101.144 72.294 1.00 3.20 34 M 1 +ATOM 481 H HD1 . TYR M 1 35 ? 140.606 102.366 73.404 1.00 3.20 34 M 1 +ATOM 482 H HD2 . TYR M 1 35 ? 137.992 103.955 70.813 1.00 3.20 34 M 1 +ATOM 483 H HE1 . TYR M 1 35 ? 141.198 104.495 74.119 1.00 3.20 34 M 1 +ATOM 484 H HE2 . TYR M 1 35 ? 138.571 106.086 71.515 1.00 3.20 34 M 1 +ATOM 485 H HH . TYR M 1 35 ? 139.593 107.177 73.589 1.00 3.20 34 M 1 +ATOM 486 N N . LEU M 1 36 ? 139.084 98.533 70.325 1.00 3.08 35 M 1 +ATOM 487 C CA . LEU M 1 36 ? 138.744 97.115 70.332 1.00 3.08 35 M 1 +ATOM 488 C C . LEU M 1 36 ? 139.990 96.254 70.508 1.00 3.08 35 M 1 +ATOM 489 O O . LEU M 1 36 ? 139.984 95.281 71.274 1.00 3.08 35 M 1 +ATOM 490 C CB . LEU M 1 36 ? 138.005 96.750 69.045 1.00 3.08 35 M 1 +ATOM 491 C CG . LEU M 1 36 ? 137.534 95.304 68.916 1.00 3.08 35 M 1 +ATOM 492 C CD1 . LEU M 1 36 ? 136.553 94.968 70.028 1.00 3.08 35 M 1 +ATOM 493 C CD2 . LEU M 1 36 ? 136.903 95.067 67.564 1.00 3.08 35 M 1 +ATOM 494 H H . LEU M 1 36 ? 138.894 98.952 69.598 1.00 3.08 35 M 1 +ATOM 495 H HA . LEU M 1 36 ? 138.158 96.956 71.088 1.00 3.08 35 M 1 +ATOM 496 H HB2 . LEU M 1 36 ? 137.216 97.310 68.970 1.00 3.08 35 M 1 +ATOM 497 H HB3 . LEU M 1 36 ? 138.587 96.937 68.292 1.00 3.08 35 M 1 +ATOM 498 H HG . LEU M 1 36 ? 138.295 94.706 68.982 1.00 3.08 35 M 1 +ATOM 499 H HD11 . LEU M 1 36 ? 136.178 94.088 69.867 1.00 3.08 35 M 1 +ATOM 500 H HD12 . LEU M 1 36 ? 137.019 94.970 70.879 1.00 3.08 35 M 1 +ATOM 501 H HD13 . LEU M 1 36 ? 135.843 95.629 70.043 1.00 3.08 35 M 1 +ATOM 502 H HD21 . LEU M 1 36 ? 136.535 94.170 67.543 1.00 3.08 35 M 1 +ATOM 503 H HD22 . LEU M 1 36 ? 136.197 95.717 67.423 1.00 3.08 35 M 1 +ATOM 504 H HD23 . LEU M 1 36 ? 137.580 95.162 66.875 1.00 3.08 35 M 1 +ATOM 505 N N . SER M 1 37 ? 141.069 96.611 69.816 1.00 3.69 36 M 1 +ATOM 506 C CA . SER M 1 37 ? 142.323 95.872 69.937 1.00 3.69 36 M 1 +ATOM 507 C C . SER M 1 37 ? 142.871 95.954 71.360 1.00 3.69 36 M 1 +ATOM 508 O O . SER M 1 37 ? 143.339 94.957 71.924 1.00 3.69 36 M 1 +ATOM 509 C CB . SER M 1 37 ? 143.339 96.419 68.940 1.00 3.69 36 M 1 +ATOM 510 O OG . SER M 1 37 ? 144.559 95.726 69.033 1.00 3.69 36 M 1 +ATOM 511 H H . SER M 1 37 ? 141.104 97.291 69.290 1.00 3.69 36 M 1 +ATOM 512 H HA . SER M 1 37 ? 142.174 94.940 69.715 1.00 3.69 36 M 1 +ATOM 513 H HB2 . SER M 1 37 ? 142.982 96.331 68.042 1.00 3.69 36 M 1 +ATOM 514 H HB3 . SER M 1 37 ? 143.507 97.356 69.128 1.00 3.69 36 M 1 +ATOM 515 H HG . SER M 1 37 ? 144.931 95.734 68.280 1.00 3.69 36 M 1 +ATOM 516 N N . MET M 1 38 ? 142.811 97.145 71.956 1.00 3.57 37 M 1 +ATOM 517 C CA . MET M 1 38 ? 143.243 97.312 73.342 1.00 3.57 37 M 1 +ATOM 518 C C . MET M 1 38 ? 142.431 96.421 74.277 1.00 3.57 37 M 1 +ATOM 519 O O . MET M 1 38 ? 142.984 95.719 75.141 1.00 3.57 37 M 1 +ATOM 520 C CB . MET M 1 38 ? 143.122 98.784 73.749 1.00 3.57 37 M 1 +ATOM 521 C CG . MET M 1 38 ? 144.133 99.719 73.108 1.00 3.57 37 M 1 +ATOM 522 S SD . MET M 1 38 ? 143.865 101.435 73.612 1.00 3.57 37 M 1 +ATOM 523 C CE . MET M 1 38 ? 145.135 102.271 72.672 1.00 3.57 37 M 1 +ATOM 524 H H . MET M 1 38 ? 142.498 97.857 71.588 1.00 3.57 37 M 1 +ATOM 525 H HA . MET M 1 38 ? 144.179 97.066 73.411 1.00 3.57 37 M 1 +ATOM 526 H HB2 . MET M 1 38 ? 142.236 99.102 73.516 1.00 3.57 37 M 1 +ATOM 527 H HB3 . MET M 1 38 ? 143.231 98.858 74.710 1.00 3.57 37 M 1 +ATOM 528 H HG2 . MET M 1 38 ? 145.022 99.457 73.394 1.00 3.57 37 M 1 +ATOM 529 H HG3 . MET M 1 38 ? 144.086 99.664 72.141 1.00 3.57 37 M 1 +ATOM 530 H HE1 . MET M 1 38 ? 145.182 103.200 72.947 1.00 3.57 37 M 1 +ATOM 531 H HE2 . MET M 1 38 ? 145.984 101.832 72.837 1.00 3.57 37 M 1 +ATOM 532 H HE3 . MET M 1 38 ? 144.920 102.220 71.728 1.00 3.57 37 M 1 +ATOM 533 N N . SER M 1 39 ? 141.125 96.439 74.059 1.00 3.57 38 M 1 +ATOM 534 C CA . SER M 1 39 ? 140.177 95.667 74.882 1.00 3.57 38 M 1 +ATOM 535 C C . SER M 1 39 ? 140.572 94.195 74.781 1.00 3.57 38 M 1 +ATOM 536 O O . SER M 1 39 ? 140.725 93.591 75.818 1.00 3.57 38 M 1 +ATOM 537 C CB . SER M 1 39 ? 138.755 95.858 74.453 1.00 3.57 38 M 1 +ATOM 538 O OG . SER M 1 39 ? 137.885 95.283 75.403 1.00 3.57 38 M 1 +ATOM 539 H H . SER M 1 39 ? 140.739 96.797 73.317 1.00 3.57 38 M 1 +ATOM 540 H HA . SER M 1 39 ? 140.271 95.958 75.829 1.00 3.57 38 M 1 +ATOM 541 H HB2 . SER M 1 39 ? 138.563 96.819 74.367 1.00 3.57 38 M 1 +ATOM 542 H HB3 . SER M 1 39 ? 138.616 95.434 73.576 1.00 3.57 38 M 1 +ATOM 543 H HG . SER M 1 39 ? 138.336 95.071 76.086 1.00 3.57 38 M 1 +ATOM 544 N N . CYS M 1 40 ? 140.888 93.717 73.583 1.00 4.32 39 M 1 +ATOM 545 C CA . CYS M 1 40 ? 141.264 92.302 73.348 1.00 4.32 39 M 1 +ATOM 546 C C . CYS M 1 40 ? 142.555 92.007 74.115 1.00 4.32 39 M 1 +ATOM 547 O O . CYS M 1 40 ? 142.598 91.009 74.795 1.00 4.32 39 M 1 +ATOM 548 C CB . CYS M 1 40 ? 141.449 92.000 71.865 1.00 4.32 39 M 1 +ATOM 549 S SG . CYS M 1 40 ? 139.891 91.997 70.941 1.00 4.32 39 M 1 +ATOM 550 H H . CYS M 1 40 ? 141.025 94.242 72.853 1.00 4.32 39 M 1 +ATOM 551 H HA . CYS M 1 40 ? 140.545 91.729 73.700 1.00 4.32 39 M 1 +ATOM 552 H HB2 . CYS M 1 40 ? 142.044 92.671 71.472 1.00 4.32 39 M 1 +ATOM 553 H HB3 . CYS M 1 40 ? 141.874 91.124 71.765 1.00 4.32 39 M 1 +ATOM 554 H HG . CYS M 1 40 ? 140.354 91.741 69.861 1.00 4.32 39 M 1 +ATOM 555 N N . TYR M 1 41 ? 143.500 92.935 74.109 1.00 4.38 40 M 1 +ATOM 556 C CA . TYR M 1 41 ? 144.808 92.747 74.775 1.00 4.38 40 M 1 +ATOM 557 C C . TYR M 1 41 ? 144.627 92.543 76.279 1.00 4.38 40 M 1 +ATOM 558 O O . TYR M 1 41 ? 145.227 91.640 76.793 1.00 4.38 40 M 1 +ATOM 559 C CB . TYR M 1 41 ? 145.702 93.952 74.532 1.00 4.38 40 M 1 +ATOM 560 C CG . TYR M 1 41 ? 147.002 93.889 75.275 1.00 4.38 40 M 1 +ATOM 561 C CD1 . TYR M 1 41 ? 148.056 93.128 74.805 1.00 4.38 40 M 1 +ATOM 562 C CD2 . TYR M 1 41 ? 147.181 94.611 76.438 1.00 4.38 40 M 1 +ATOM 563 C CE1 . TYR M 1 41 ? 149.266 93.079 75.479 1.00 4.38 40 M 1 +ATOM 564 C CE2 . TYR M 1 41 ? 148.382 94.574 77.123 1.00 4.38 40 M 1 +ATOM 565 C CZ . TYR M 1 41 ? 149.423 93.798 76.649 1.00 4.38 40 M 1 +ATOM 566 O OH . TYR M 1 41 ? 150.601 93.766 77.329 1.00 4.38 40 M 1 +ATOM 567 H H . TYR M 1 41 ? 143.368 93.789 73.825 1.00 4.38 40 M 1 +ATOM 568 H HA . TYR M 1 41 ? 145.245 91.942 74.397 1.00 4.38 40 M 1 +ATOM 569 H HB2 . TYR M 1 41 ? 145.886 94.017 73.571 1.00 4.38 40 M 1 +ATOM 570 H HB3 . TYR M 1 41 ? 145.218 94.761 74.802 1.00 4.38 40 M 1 +ATOM 571 H HD1 . TYR M 1 41 ? 147.951 92.633 74.009 1.00 4.38 40 M 1 +ATOM 572 H HD2 . TYR M 1 41 ? 146.475 95.140 76.771 1.00 4.38 40 M 1 +ATOM 573 H HE1 . TYR M 1 41 ? 149.973 92.549 75.150 1.00 4.38 40 M 1 +ATOM 574 H HE2 . TYR M 1 41 ? 148.487 95.066 77.920 1.00 4.38 40 M 1 +ATOM 575 H HH . TYR M 1 41 ? 150.480 93.440 78.113 1.00 4.38 40 M 1 +ATOM 576 N N . PHE M 1 42 ? 143.784 93.325 76.942 1.00 3.75 41 M 1 +ATOM 577 C CA . PHE M 1 42 ? 143.626 93.250 78.424 1.00 3.75 41 M 1 +ATOM 578 C C . PHE M 1 42 ? 142.893 91.962 78.827 1.00 3.75 41 M 1 +ATOM 579 O O . PHE M 1 42 ? 142.921 91.650 79.995 1.00 3.75 41 M 1 +ATOM 580 C CB . PHE M 1 42 ? 143.056 94.559 78.978 1.00 3.75 41 M 1 +ATOM 581 C CG . PHE M 1 42 ? 144.075 95.668 78.885 1.00 3.75 41 M 1 +ATOM 582 C CD1 . PHE M 1 42 ? 145.167 95.702 79.740 1.00 3.75 41 M 1 +ATOM 583 C CD2 . PHE M 1 42 ? 144.003 96.615 77.879 1.00 3.75 41 M 1 +ATOM 584 C CE1 . PHE M 1 42 ? 146.147 96.675 79.609 1.00 3.75 41 M 1 +ATOM 585 C CE2 . PHE M 1 42 ? 144.963 97.613 77.774 1.00 3.75 41 M 1 +ATOM 586 C CZ . PHE M 1 42 ? 146.039 97.634 78.626 1.00 3.75 41 M 1 +ATOM 587 H H . PHE M 1 42 ? 143.184 93.883 76.545 1.00 3.75 41 M 1 +ATOM 588 H HA . PHE M 1 42 ? 144.541 93.169 78.795 1.00 3.75 41 M 1 +ATOM 589 H HB2 . PHE M 1 42 ? 142.257 94.803 78.468 1.00 3.75 41 M 1 +ATOM 590 H HB3 . PHE M 1 42 ? 142.799 94.426 79.914 1.00 3.75 41 M 1 +ATOM 591 H HD1 . PHE M 1 42 ? 145.254 95.040 80.407 1.00 3.75 41 M 1 +ATOM 592 H HD2 . PHE M 1 42 ? 143.271 96.606 77.284 1.00 3.75 41 M 1 +ATOM 593 H HE1 . PHE M 1 42 ? 146.871 96.699 80.214 1.00 3.75 41 M 1 +ATOM 594 H HE2 . PHE M 1 42 ? 144.890 98.263 77.093 1.00 3.75 41 M 1 +ATOM 595 H HZ . PHE M 1 42 ? 146.689 98.314 78.553 1.00 3.75 41 M 1 +ATOM 596 N N . ASP M 1 43 ? 142.191 91.322 77.898 1.00 4.58 42 M 1 +ATOM 597 C CA . ASP M 1 43 ? 141.473 90.038 78.080 1.00 4.58 42 M 1 +ATOM 598 C C . ASP M 1 43 ? 142.425 88.840 77.923 1.00 4.58 42 M 1 +ATOM 599 O O . ASP M 1 43 ? 142.006 87.752 78.194 1.00 4.58 42 M 1 +ATOM 600 C CB . ASP M 1 43 ? 140.329 89.942 77.072 1.00 4.58 42 M 1 +ATOM 601 C CG . ASP M 1 43 ? 139.568 88.639 77.147 1.00 4.58 42 M 1 +ATOM 602 O OD1 . ASP M 1 43 ? 139.070 88.323 78.243 1.00 4.58 42 M 1 +ATOM 603 O OD2 . ASP M 1 43 ? 139.491 87.950 76.115 1.00 4.58 42 M 1 +ATOM 604 H H . ASP M 1 43 ? 142.065 91.654 77.065 1.00 4.58 42 M 1 +ATOM 605 H HA . ASP M 1 43 ? 141.091 90.021 78.989 1.00 4.58 42 M 1 +ATOM 606 H HB2 . ASP M 1 43 ? 139.701 90.677 77.231 1.00 4.58 42 M 1 +ATOM 607 H HB3 . ASP M 1 43 ? 140.690 90.039 76.168 1.00 4.58 42 M 1 +ATOM 608 N N . ARG M 1 44 ? 143.669 89.028 77.488 1.00 4.59 43 M 1 +ATOM 609 C CA . ARG M 1 44 ? 144.629 87.906 77.341 1.00 4.59 43 M 1 +ATOM 610 C C . ARG M 1 44 ? 144.872 87.264 78.707 1.00 4.59 43 M 1 +ATOM 611 O O . ARG M 1 44 ? 144.960 87.979 79.676 1.00 4.59 43 M 1 +ATOM 612 C CB . ARG M 1 44 ? 145.945 88.407 76.749 1.00 4.59 43 M 1 +ATOM 613 C CG . ARG M 1 44 ? 145.842 88.780 75.285 1.00 4.59 43 M 1 +ATOM 614 C CD . ARG M 1 44 ? 147.064 89.496 74.784 1.00 4.59 43 M 1 +ATOM 615 N NE . ARG M 1 44 ? 148.304 88.846 75.136 1.00 4.59 43 M 1 +ATOM 616 C CZ . ARG M 1 44 ? 149.445 89.019 74.482 1.00 4.59 43 M 1 +ATOM 617 N NH1 . ARG M 1 44 ? 149.498 89.823 73.439 1.00 4.59 43 M 1 +ATOM 618 N NH2 . ARG M 1 44 ? 150.530 88.386 74.877 1.00 4.59 43 M 1 +ATOM 619 H H . ARG M 1 44 ? 144.027 89.832 77.290 1.00 4.59 43 M 1 +ATOM 620 H HA . ARG M 1 44 ? 144.238 87.234 76.736 1.00 4.59 43 M 1 +ATOM 621 H HB2 . ARG M 1 44 ? 146.239 89.192 77.257 1.00 4.59 43 M 1 +ATOM 622 H HB3 . ARG M 1 44 ? 146.623 87.708 76.852 1.00 4.59 43 M 1 +ATOM 623 H HG2 . ARG M 1 44 ? 145.710 87.966 74.753 1.00 4.59 43 M 1 +ATOM 624 H HG3 . ARG M 1 44 ? 145.059 89.356 75.152 1.00 4.59 43 M 1 +ATOM 625 H HD2 . ARG M 1 44 ? 147.011 89.569 73.807 1.00 4.59 43 M 1 +ATOM 626 H HD3 . ARG M 1 44 ? 147.069 90.407 75.149 1.00 4.59 43 M 1 +ATOM 627 H HE . ARG M 1 44 ? 148.305 88.305 75.821 1.00 4.59 43 M 1 +ATOM 628 H HH11 . ARG M 1 44 ? 148.775 90.249 73.178 1.00 4.59 43 M 1 +ATOM 629 H HH12 . ARG M 1 44 ? 150.258 89.935 73.012 1.00 4.59 43 M 1 +ATOM 630 H HH21 . ARG M 1 44 ? 150.499 87.850 75.555 1.00 4.59 43 M 1 +ATOM 631 H HH22 . ARG M 1 44 ? 151.285 88.501 74.438 1.00 4.59 43 M 1 +ATOM 632 N N . ASP M 1 45 ? 145.103 85.958 78.766 1.00 4.97 44 M 1 +ATOM 633 C CA . ASP M 1 45 ? 145.355 85.256 80.057 1.00 4.97 44 M 1 +ATOM 634 C C . ASP M 1 45 ? 146.668 85.742 80.712 1.00 4.97 44 M 1 +ATOM 635 O O . ASP M 1 45 ? 146.819 85.489 81.891 1.00 4.97 44 M 1 +ATOM 636 C CB . ASP M 1 45 ? 145.349 83.739 79.894 1.00 4.97 44 M 1 +ATOM 637 C CG . ASP M 1 45 ? 146.620 83.284 79.220 1.00 4.97 44 M 1 +ATOM 638 O OD1 . ASP M 1 45 ? 147.606 83.093 79.940 1.00 4.97 44 M 1 +ATOM 639 O OD2 . ASP M 1 45 ? 146.633 83.234 77.997 1.00 4.97 44 M 1 +ATOM 640 H H . ASP M 1 45 ? 145.234 85.444 78.027 1.00 4.97 44 M 1 +ATOM 641 H HA . ASP M 1 45 ? 144.615 85.487 80.666 1.00 4.97 44 M 1 +ATOM 642 H HB2 . ASP M 1 45 ? 145.279 83.310 80.771 1.00 4.97 44 M 1 +ATOM 643 H HB3 . ASP M 1 45 ? 144.582 83.466 79.350 1.00 4.97 44 M 1 +ATOM 644 N N . ASP M 1 46 ? 147.649 86.258 79.969 1.00 4.81 45 M 1 +ATOM 645 C CA . ASP M 1 46 ? 148.928 86.748 80.536 1.00 4.81 45 M 1 +ATOM 646 C C . ASP M 1 46 ? 148.867 88.257 80.847 1.00 4.81 45 M 1 +ATOM 647 O O . ASP M 1 46 ? 149.900 88.769 81.216 1.00 4.81 45 M 1 +ATOM 648 C CB . ASP M 1 46 ? 150.117 86.389 79.649 1.00 4.81 45 M 1 +ATOM 649 C CG . ASP M 1 46 ? 149.985 86.864 78.215 1.00 4.81 45 M 1 +ATOM 650 O OD1 . ASP M 1 46 ? 148.921 87.352 77.865 1.00 4.81 45 M 1 +ATOM 651 O OD2 . ASP M 1 46 ? 150.959 86.728 77.462 1.00 4.81 45 M 1 +ATOM 652 H H . ASP M 1 46 ? 147.592 86.348 79.066 1.00 4.81 45 M 1 +ATOM 653 H HA . ASP M 1 46 ? 149.061 86.277 81.392 1.00 4.81 45 M 1 +ATOM 654 H HB2 . ASP M 1 46 ? 150.928 86.785 80.029 1.00 4.81 45 M 1 +ATOM 655 H HB3 . ASP M 1 46 ? 150.227 85.417 79.642 1.00 4.81 45 M 1 +ATOM 656 N N . VAL M 1 47 ? 147.711 88.919 80.748 1.00 4.20 46 M 1 +ATOM 657 C CA . VAL M 1 47 ? 147.532 90.321 81.107 1.00 4.20 46 M 1 +ATOM 658 C C . VAL M 1 47 ? 146.468 90.377 82.200 1.00 4.20 46 M 1 +ATOM 659 O O . VAL M 1 47 ? 146.740 90.802 83.326 1.00 4.20 46 M 1 +ATOM 660 C CB . VAL M 1 47 ? 147.159 91.167 79.874 1.00 4.20 46 M 1 +ATOM 661 C CG1 . VAL M 1 47 ? 146.894 92.607 80.267 1.00 4.20 46 M 1 +ATOM 662 C CG2 . VAL M 1 47 ? 148.260 91.084 78.816 1.00 4.20 46 M 1 +ATOM 663 H H . VAL M 1 47 ? 146.975 88.546 80.505 1.00 4.20 46 M 1 +ATOM 664 H HA . VAL M 1 47 ? 148.355 90.681 81.473 1.00 4.20 46 M 1 +ATOM 665 H HB . VAL M 1 47 ? 146.348 90.817 79.473 1.00 4.20 46 M 1 +ATOM 666 H HG11 . VAL M 1 47 ? 146.844 93.141 79.459 1.00 4.20 46 M 1 +ATOM 667 H HG12 . VAL M 1 47 ? 146.053 92.662 80.747 1.00 4.20 46 M 1 +ATOM 668 H HG13 . VAL M 1 47 ? 147.615 92.937 80.825 1.00 4.20 46 M 1 +ATOM 669 H HG21 . VAL M 1 47 ? 148.056 91.680 78.078 1.00 4.20 46 M 1 +ATOM 670 H HG22 . VAL M 1 47 ? 149.110 91.329 79.214 1.00 4.20 46 M 1 +ATOM 671 H HG23 . VAL M 1 47 ? 148.314 90.176 78.480 1.00 4.20 46 M 1 +ATOM 672 N N . ALA M 1 48 ? 145.252 89.939 81.871 1.00 4.09 47 M 1 +ATOM 673 C CA . ALA M 1 48 ? 144.226 89.581 82.848 1.00 4.09 47 M 1 +ATOM 674 C C . ALA M 1 48 ? 143.784 90.780 83.690 1.00 4.09 47 M 1 +ATOM 675 O O . ALA M 1 48 ? 143.736 90.720 84.918 1.00 4.09 47 M 1 +ATOM 676 C CB . ALA M 1 48 ? 144.712 88.431 83.733 1.00 4.09 47 M 1 +ATOM 677 H H . ALA M 1 48 ? 144.982 89.848 81.060 1.00 4.09 47 M 1 +ATOM 678 H HA . ALA M 1 48 ? 143.445 89.262 82.369 1.00 4.09 47 M 1 +ATOM 679 H HB1 . ALA M 1 48 ? 143.981 88.111 84.285 1.00 4.09 47 M 1 +ATOM 680 H HB2 . ALA M 1 48 ? 145.014 87.713 83.155 1.00 4.09 47 M 1 +ATOM 681 H HB3 . ALA M 1 48 ? 145.456 88.731 84.279 1.00 4.09 47 M 1 +ATOM 682 N N . LEU M 1 49 ? 143.443 91.870 83.008 1.00 3.91 48 M 1 +ATOM 683 C CA . LEU M 1 49 ? 142.931 93.101 83.616 1.00 3.91 48 M 1 +ATOM 684 C C . LEU M 1 49 ? 141.549 93.386 83.022 1.00 3.91 48 M 1 +ATOM 685 O O . LEU M 1 49 ? 141.416 94.075 82.011 1.00 3.91 48 M 1 +ATOM 686 C CB . LEU M 1 49 ? 143.918 94.244 83.389 1.00 3.91 48 M 1 +ATOM 687 C CG . LEU M 1 49 ? 145.258 94.024 84.111 1.00 3.91 48 M 1 +ATOM 688 C CD1 . LEU M 1 49 ? 146.322 95.005 83.680 1.00 3.91 48 M 1 +ATOM 689 C CD2 . LEU M 1 49 ? 145.071 94.083 85.631 1.00 3.91 48 M 1 +ATOM 690 H H . LEU M 1 49 ? 143.516 91.927 82.153 1.00 3.91 48 M 1 +ATOM 691 H HA . LEU M 1 49 ? 142.808 92.984 84.571 1.00 3.91 48 M 1 +ATOM 692 H HB2 . LEU M 1 49 ? 144.095 94.342 82.440 1.00 3.91 48 M 1 +ATOM 693 H HB3 . LEU M 1 49 ? 143.525 95.066 83.722 1.00 3.91 48 M 1 +ATOM 694 H HG . LEU M 1 49 ? 145.595 93.140 83.896 1.00 3.91 48 M 1 +ATOM 695 H HD11 . LEU M 1 49 ? 147.187 94.570 83.732 1.00 3.91 48 M 1 +ATOM 696 H HD12 . LEU M 1 49 ? 146.165 95.292 82.767 1.00 3.91 48 M 1 +ATOM 697 H HD13 . LEU M 1 49 ? 146.309 95.769 84.278 1.00 3.91 48 M 1 +ATOM 698 H HD21 . LEU M 1 49 ? 145.899 94.367 86.048 1.00 3.91 48 M 1 +ATOM 699 H HD22 . LEU M 1 49 ? 144.367 94.712 85.853 1.00 3.91 48 M 1 +ATOM 700 H HD23 . LEU M 1 49 ? 144.830 93.201 85.954 1.00 3.91 48 M 1 +ATOM 701 N N . LYS M 1 50 ? 140.522 92.794 83.640 1.00 4.48 49 M 1 +ATOM 702 C CA . LYS M 1 50 ? 139.116 92.801 83.147 1.00 4.48 49 M 1 +ATOM 703 C C . LYS M 1 50 ? 138.529 94.213 83.070 1.00 4.48 49 M 1 +ATOM 704 O O . LYS M 1 50 ? 137.806 94.487 82.119 1.00 4.48 49 M 1 +ATOM 705 C CB . LYS M 1 50 ? 138.251 91.891 84.020 1.00 4.48 49 M 1 +ATOM 706 C CG . LYS M 1 50 ? 138.716 90.445 84.052 1.00 4.48 49 M 1 +ATOM 707 C CD . LYS M 1 50 ? 137.781 89.541 84.839 1.00 4.48 49 M 1 +ATOM 708 C CE . LYS M 1 50 ? 138.133 88.076 84.693 1.00 4.48 49 M 1 +ATOM 709 N NZ . LYS M 1 50 ? 136.916 87.233 84.702 1.00 4.48 49 M 1 +ATOM 710 H H . LYS M 1 50 ? 140.604 92.440 84.474 1.00 4.48 49 M 1 +ATOM 711 H HA . LYS M 1 50 ? 139.122 92.429 82.235 1.00 4.48 49 M 1 +ATOM 712 H HB2 . LYS M 1 50 ? 138.251 92.242 84.935 1.00 4.48 49 M 1 +ATOM 713 H HB3 . LYS M 1 50 ? 137.331 91.918 83.686 1.00 4.48 49 M 1 +ATOM 714 H HG2 . LYS M 1 50 ? 138.785 90.113 83.132 1.00 4.48 49 M 1 +ATOM 715 H HG3 . LYS M 1 50 ? 139.611 90.408 84.454 1.00 4.48 49 M 1 +ATOM 716 H HD2 . LYS M 1 50 ? 137.820 89.785 85.789 1.00 4.48 49 M 1 +ATOM 717 H HD3 . LYS M 1 50 ? 136.861 89.680 84.528 1.00 4.48 49 M 1 +ATOM 718 H HE2 . LYS M 1 50 ? 138.613 87.935 83.854 1.00 4.48 49 M 1 +ATOM 719 H HE3 . LYS M 1 50 ? 138.716 87.803 85.427 1.00 4.48 49 M 1 +ATOM 720 H HZ1 . LYS M 1 50 ? 137.138 86.370 84.536 1.00 4.48 49 M 1 +ATOM 721 H HZ2 . LYS M 1 50 ? 136.512 87.285 85.513 1.00 4.48 49 M 1 +ATOM 722 H HZ3 . LYS M 1 50 ? 136.338 87.519 84.064 1.00 4.48 49 M 1 +ATOM 723 N N . ASN M 1 51 ? 138.832 95.061 84.037 1.00 4.04 50 M 1 +ATOM 724 C CA . ASN M 1 51 ? 138.313 96.445 84.094 1.00 4.04 50 M 1 +ATOM 725 C C . ASN M 1 51 ? 138.979 97.259 82.986 1.00 4.04 50 M 1 +ATOM 726 O O . ASN M 1 51 ? 138.313 98.120 82.470 1.00 4.04 50 M 1 +ATOM 727 C CB . ASN M 1 51 ? 138.358 97.030 85.502 1.00 4.04 50 M 1 +ATOM 728 C CG . ASN M 1 51 ? 137.360 96.332 86.403 1.00 4.04 50 M 1 +ATOM 729 O OD1 . ASN M 1 51 ? 136.337 95.857 85.933 1.00 4.04 50 M 1 +ATOM 730 N ND2 . ASN M 1 51 ? 137.675 96.201 87.674 1.00 4.04 50 M 1 +ATOM 731 H H . ASN M 1 51 ? 139.425 94.854 84.696 1.00 4.04 50 M 1 +ATOM 732 H HA . ASN M 1 51 ? 137.356 96.389 83.863 1.00 4.04 50 M 1 +ATOM 733 H HB2 . ASN M 1 51 ? 139.259 96.924 85.868 1.00 4.04 50 M 1 +ATOM 734 H HB3 . ASN M 1 51 ? 138.149 97.986 85.462 1.00 4.04 50 M 1 +ATOM 735 H HD21 . ASN M 1 51 ? 138.442 96.521 87.975 1.00 4.04 50 M 1 +ATOM 736 H HD22 . ASN M 1 51 ? 137.119 95.793 88.228 1.00 4.04 50 M 1 +ATOM 737 N N . PHE M 1 52 ? 140.264 97.074 82.697 1.00 3.78 51 M 1 +ATOM 738 C CA . PHE M 1 52 ? 140.889 97.787 81.553 1.00 3.78 51 M 1 +ATOM 739 C C . PHE M 1 52 ? 140.179 97.325 80.269 1.00 3.78 51 M 1 +ATOM 740 O O . PHE M 1 52 ? 139.787 98.165 79.473 1.00 3.78 51 M 1 +ATOM 741 C CB . PHE M 1 52 ? 142.386 97.523 81.457 1.00 3.78 51 M 1 +ATOM 742 C CG . PHE M 1 52 ? 143.231 98.417 82.334 1.00 3.78 51 M 1 +ATOM 743 C CD1 . PHE M 1 52 ? 143.460 98.114 83.666 1.00 3.78 51 M 1 +ATOM 744 C CD2 . PHE M 1 52 ? 143.836 99.549 81.815 1.00 3.78 51 M 1 +ATOM 745 C CE1 . PHE M 1 52 ? 144.276 98.921 84.452 1.00 3.78 51 M 1 +ATOM 746 C CE2 . PHE M 1 52 ? 144.649 100.353 82.597 1.00 3.78 51 M 1 +ATOM 747 C CZ . PHE M 1 52 ? 144.872 100.031 83.914 1.00 3.78 51 M 1 +ATOM 748 H H . PHE M 1 52 ? 140.864 96.663 83.243 1.00 3.78 51 M 1 +ATOM 749 H HA . PHE M 1 52 ? 140.741 98.761 81.665 1.00 3.78 51 M 1 +ATOM 750 H HB2 . PHE M 1 52 ? 142.552 96.589 81.703 1.00 3.78 51 M 1 +ATOM 751 H HB3 . PHE M 1 52 ? 142.662 97.640 80.524 1.00 3.78 51 M 1 +ATOM 752 H HD1 . PHE M 1 52 ? 143.069 97.340 84.040 1.00 3.78 51 M 1 +ATOM 753 H HD2 . PHE M 1 52 ? 143.705 99.767 80.906 1.00 3.78 51 M 1 +ATOM 754 H HE1 . PHE M 1 52 ? 144.419 98.703 85.359 1.00 3.78 51 M 1 +ATOM 755 H HE2 . PHE M 1 52 ? 145.049 101.123 82.225 1.00 3.78 51 M 1 +ATOM 756 H HZ . PHE M 1 52 ? 145.407 100.591 84.454 1.00 3.78 51 M 1 +ATOM 757 N N . ALA M 1 53 ? 139.908 96.025 80.142 1.00 3.65 52 M 1 +ATOM 758 C CA . ALA M 1 53 ? 139.238 95.471 78.940 1.00 3.65 52 M 1 +ATOM 759 C C . ALA M 1 53 ? 137.855 96.116 78.772 1.00 3.65 52 M 1 +ATOM 760 O O . ALA M 1 53 ? 137.594 96.572 77.712 1.00 3.65 52 M 1 +ATOM 761 C CB . ALA M 1 53 ? 139.126 93.973 79.054 1.00 3.65 52 M 1 +ATOM 762 H H . ALA M 1 53 ? 139.978 95.422 80.819 1.00 3.65 52 M 1 +ATOM 763 H HA . ALA M 1 53 ? 139.784 95.690 78.148 1.00 3.65 52 M 1 +ATOM 764 H HB1 . ALA M 1 53 ? 138.698 93.617 78.257 1.00 3.65 52 M 1 +ATOM 765 H HB2 . ALA M 1 53 ? 140.013 93.587 79.145 1.00 3.65 52 M 1 +ATOM 766 H HB3 . ALA M 1 53 ? 138.593 93.746 79.835 1.00 3.65 52 M 1 +ATOM 767 N N . LYS M 1 54 ? 137.059 96.217 79.827 1.00 4.07 53 M 1 +ATOM 768 C CA . LYS M 1 54 ? 135.720 96.798 79.806 1.00 4.07 53 M 1 +ATOM 769 C C . LYS M 1 54 ? 135.766 98.273 79.442 1.00 4.07 53 M 1 +ATOM 770 O O . LYS M 1 54 ? 134.953 98.751 78.641 1.00 4.07 53 M 1 +ATOM 771 C CB . LYS M 1 54 ? 135.038 96.601 81.160 1.00 4.07 53 M 1 +ATOM 772 C CG . LYS M 1 54 ? 134.600 95.184 81.418 1.00 4.07 53 M 1 +ATOM 773 C CD . LYS M 1 54 ? 133.912 95.041 82.759 1.00 4.07 53 M 1 +ATOM 774 C CE . LYS M 1 54 ? 133.444 93.611 82.976 1.00 4.07 53 M 1 +ATOM 775 N NZ . LYS M 1 54 ? 132.778 93.456 84.294 1.00 4.07 53 M 1 +ATOM 776 H H . LYS M 1 54 ? 137.302 95.910 80.593 1.00 4.07 53 M 1 +ATOM 777 H HA . LYS M 1 54 ? 135.183 96.335 79.144 1.00 4.07 53 M 1 +ATOM 778 H HB2 . LYS M 1 54 ? 135.659 96.855 81.860 1.00 4.07 53 M 1 +ATOM 779 H HB3 . LYS M 1 54 ? 134.249 97.163 81.211 1.00 4.07 53 M 1 +ATOM 780 H HG2 . LYS M 1 54 ? 133.980 94.913 80.723 1.00 4.07 53 M 1 +ATOM 781 H HG3 . LYS M 1 54 ? 135.371 94.596 81.413 1.00 4.07 53 M 1 +ATOM 782 H HD2 . LYS M 1 54 ? 134.544 95.254 83.463 1.00 4.07 53 M 1 +ATOM 783 H HD3 . LYS M 1 54 ? 133.151 95.641 82.799 1.00 4.07 53 M 1 +ATOM 784 H HE2 . LYS M 1 54 ? 132.810 93.380 82.279 1.00 4.07 53 M 1 +ATOM 785 H HE3 . LYS M 1 54 ? 134.202 93.006 82.939 1.00 4.07 53 M 1 +ATOM 786 H HZ1 . LYS M 1 54 ? 132.343 92.681 84.331 1.00 4.07 53 M 1 +ATOM 787 H HZ2 . LYS M 1 54 ? 133.386 93.475 84.944 1.00 4.07 53 M 1 +ATOM 788 H HZ3 . LYS M 1 54 ? 132.201 94.122 84.421 1.00 4.07 53 M 1 +ATOM 789 N N . TYR M 1 55 ? 136.721 99.003 80.017 1.00 3.64 54 M 1 +ATOM 790 C CA . TYR M 1 55 ? 136.889 100.416 79.716 1.00 3.64 54 M 1 +ATOM 791 C C . TYR M 1 55 ? 137.089 100.630 78.223 1.00 3.64 54 M 1 +ATOM 792 O O . TYR M 1 55 ? 136.367 101.408 77.587 1.00 3.64 54 M 1 +ATOM 793 C CB . TYR M 1 55 ? 138.079 100.968 80.500 1.00 3.64 54 M 1 +ATOM 794 C CG . TYR M 1 55 ? 138.327 102.435 80.293 1.00 3.64 54 M 1 +ATOM 795 C CD1 . TYR M 1 55 ? 137.546 103.371 80.930 1.00 3.64 54 M 1 +ATOM 796 C CD2 . TYR M 1 55 ? 139.335 102.885 79.461 1.00 3.64 54 M 1 +ATOM 797 C CE1 . TYR M 1 55 ? 137.758 104.712 80.757 1.00 3.64 54 M 1 +ATOM 798 C CE2 . TYR M 1 55 ? 139.557 104.229 79.278 1.00 3.64 54 M 1 +ATOM 799 C CZ . TYR M 1 55 ? 138.761 105.141 79.932 1.00 3.64 54 M 1 +ATOM 800 O OH . TYR M 1 55 ? 138.958 106.493 79.769 1.00 3.64 54 M 1 +ATOM 801 H H . TYR M 1 55 ? 137.298 98.689 80.572 1.00 3.64 54 M 1 +ATOM 802 H HA . TYR M 1 55 ? 136.094 100.896 79.997 1.00 3.64 54 M 1 +ATOM 803 H HB2 . TYR M 1 55 ? 137.905 100.843 81.446 1.00 3.64 54 M 1 +ATOM 804 H HB3 . TYR M 1 55 ? 138.884 100.486 80.254 1.00 3.64 54 M 1 +ATOM 805 H HD1 . TYR M 1 55 ? 136.866 103.082 81.495 1.00 3.64 54 M 1 +ATOM 806 H HD2 . TYR M 1 55 ? 139.873 102.270 79.017 1.00 3.64 54 M 1 +ATOM 807 H HE1 . TYR M 1 55 ? 137.219 105.326 81.201 1.00 3.64 54 M 1 +ATOM 808 H HE2 . TYR M 1 55 ? 140.238 104.516 78.714 1.00 3.64 54 M 1 +ATOM 809 H HH . TYR M 1 55 ? 139.605 106.634 79.252 1.00 3.64 54 M 1 +ATOM 810 N N . PHE M 1 56 ? 138.045 99.916 77.638 1.00 3.26 55 M 1 +ATOM 811 C CA . PHE M 1 56 ? 138.361 100.183 76.241 1.00 3.26 55 M 1 +ATOM 812 C C . PHE M 1 56 ? 137.272 99.657 75.307 1.00 3.26 55 M 1 +ATOM 813 O O . PHE M 1 56 ? 137.034 100.239 74.247 1.00 3.26 55 M 1 +ATOM 814 C CB . PHE M 1 56 ? 139.732 99.626 75.871 1.00 3.26 55 M 1 +ATOM 815 C CG . PHE M 1 56 ? 140.876 100.339 76.545 1.00 3.26 55 M 1 +ATOM 816 C CD1 . PHE M 1 56 ? 141.155 101.654 76.234 1.00 3.26 55 M 1 +ATOM 817 C CD2 . PHE M 1 56 ? 141.736 99.677 77.390 1.00 3.26 55 M 1 +ATOM 818 C CE1 . PHE M 1 56 ? 142.198 102.309 76.825 1.00 3.26 55 M 1 +ATOM 819 C CE2 . PHE M 1 56 ? 142.796 100.338 77.966 1.00 3.26 55 M 1 +ATOM 820 C CZ . PHE M 1 56 ? 143.023 101.646 77.678 1.00 3.26 55 M 1 +ATOM 821 H H . PHE M 1 56 ? 138.498 99.287 78.010 1.00 3.26 55 M 1 +ATOM 822 H HA . PHE M 1 56 ? 138.401 101.145 76.120 1.00 3.26 55 M 1 +ATOM 823 H HB2 . PHE M 1 56 ? 139.762 98.690 76.124 1.00 3.26 55 M 1 +ATOM 824 H HB3 . PHE M 1 56 ? 139.856 99.697 74.912 1.00 3.26 55 M 1 +ATOM 825 H HD1 . PHE M 1 56 ? 140.589 102.126 75.666 1.00 3.26 55 M 1 +ATOM 826 H HD2 . PHE M 1 56 ? 141.590 98.782 77.595 1.00 3.26 55 M 1 +ATOM 827 H HE1 . PHE M 1 56 ? 142.360 103.203 76.628 1.00 3.26 55 M 1 +ATOM 828 H HE2 . PHE M 1 56 ? 143.367 99.891 78.548 1.00 3.26 55 M 1 +ATOM 829 H HZ . PHE M 1 56 ? 143.739 102.093 78.069 1.00 3.26 55 M 1 +ATOM 830 N N . LEU M 1 57 ? 136.563 98.594 75.692 1.00 3.56 56 M 1 +ATOM 831 C CA . LEU M 1 57 ? 135.447 98.132 74.871 1.00 3.56 56 M 1 +ATOM 832 C C . LEU M 1 57 ? 134.337 99.173 74.852 1.00 3.56 56 M 1 +ATOM 833 O O . LEU M 1 57 ? 133.737 99.449 73.801 1.00 3.56 56 M 1 +ATOM 834 C CB . LEU M 1 57 ? 134.908 96.802 75.395 1.00 3.56 56 M 1 +ATOM 835 C CG . LEU M 1 57 ? 133.841 96.119 74.535 1.00 3.56 56 M 1 +ATOM 836 C CD1 . LEU M 1 57 ? 134.418 95.725 73.192 1.00 3.56 56 M 1 +ATOM 837 C CD2 . LEU M 1 57 ? 133.244 94.918 75.242 1.00 3.56 56 M 1 +ATOM 838 H H . LEU M 1 57 ? 136.694 98.147 76.415 1.00 3.56 56 M 1 +ATOM 839 H HA . LEU M 1 57 ? 135.769 97.997 73.966 1.00 3.56 56 M 1 +ATOM 840 H HB2 . LEU M 1 57 ? 135.644 96.179 75.496 1.00 3.56 56 M 1 +ATOM 841 H HB3 . LEU M 1 57 ? 134.506 96.958 76.264 1.00 3.56 56 M 1 +ATOM 842 H HG . LEU M 1 57 ? 133.119 96.743 74.361 1.00 3.56 56 M 1 +ATOM 843 H HD11 . LEU M 1 57 ? 133.810 95.111 72.751 1.00 3.56 56 M 1 +ATOM 844 H HD12 . LEU M 1 57 ? 134.521 96.524 72.652 1.00 3.56 56 M 1 +ATOM 845 H HD13 . LEU M 1 57 ? 135.280 95.300 73.323 1.00 3.56 56 M 1 +ATOM 846 H HD21 . LEU M 1 57 ? 132.555 94.538 74.675 1.00 3.56 56 M 1 +ATOM 847 H HD22 . LEU M 1 57 ? 133.937 94.258 75.403 1.00 3.56 56 M 1 +ATOM 848 H HD23 . LEU M 1 57 ? 132.855 95.206 76.083 1.00 3.56 56 M 1 +ATOM 849 N N . HIS M 1 58 ? 134.052 99.759 76.015 1.00 3.86 57 M 1 +ATOM 850 C CA . HIS M 1 58 ? 133.085 100.842 76.095 1.00 3.86 57 M 1 +ATOM 851 C C . HIS M 1 58 ? 133.498 102.006 75.206 1.00 3.86 57 M 1 +ATOM 852 O O . HIS M 1 58 ? 132.668 102.593 74.502 1.00 3.86 57 M 1 +ATOM 853 C CB . HIS M 1 58 ? 132.940 101.305 77.539 1.00 3.86 57 M 1 +ATOM 854 C CG . HIS M 1 58 ? 131.986 102.439 77.703 1.00 3.86 57 M 1 +ATOM 855 N ND1 . HIS M 1 58 ? 130.619 102.276 77.663 1.00 3.86 57 M 1 +ATOM 856 C CD2 . HIS M 1 58 ? 132.202 103.764 77.863 1.00 3.86 57 M 1 +ATOM 857 C CE1 . HIS M 1 58 ? 130.035 103.449 77.821 1.00 3.86 57 M 1 +ATOM 858 N NE2 . HIS M 1 58 ? 130.974 104.369 77.942 1.00 3.86 57 M 1 +ATOM 859 H H . HIS M 1 58 ? 134.418 99.555 76.766 1.00 3.86 57 M 1 +ATOM 860 H HA . HIS M 1 58 ? 132.222 100.514 75.798 1.00 3.86 57 M 1 +ATOM 861 H HB2 . HIS M 1 58 ? 132.604 100.567 78.072 1.00 3.86 57 M 1 +ATOM 862 H HB3 . HIS M 1 58 ? 133.803 101.589 77.879 1.00 3.86 57 M 1 +ATOM 863 H HD2 . HIS M 1 58 ? 133.029 104.185 77.920 1.00 3.86 57 M 1 +ATOM 864 H HE1 . HIS M 1 58 ? 129.118 103.603 77.835 1.00 3.86 57 M 1 +ATOM 865 H HE2 . HIS M 1 58 ? 130.840 105.212 78.049 1.00 3.86 57 M 1 +ATOM 866 N N . GLN M 1 59 ? 134.786 102.339 75.238 1.00 3.55 58 M 1 +ATOM 867 C CA . GLN M 1 59 ? 135.333 103.431 74.394 1.00 3.55 58 M 1 +ATOM 868 C C . GLN M 1 59 ? 135.113 103.056 72.914 1.00 3.55 58 M 1 +ATOM 869 O O . GLN M 1 59 ? 134.716 103.896 72.159 1.00 3.55 58 M 1 +ATOM 870 C CB . GLN M 1 59 ? 136.821 103.672 74.668 1.00 3.55 58 M 1 +ATOM 871 C CG . GLN M 1 59 ? 137.147 104.192 76.061 1.00 3.55 58 M 1 +ATOM 872 C CD . GLN M 1 59 ? 136.194 105.252 76.544 1.00 3.55 58 M 1 +ATOM 873 O OE1 . GLN M 1 59 ? 135.612 105.142 77.613 1.00 3.55 58 M 1 +ATOM 874 N NE2 . GLN M 1 59 ? 136.019 106.291 75.759 1.00 3.55 58 M 1 +ATOM 875 H H . GLN M 1 59 ? 135.416 101.843 75.668 1.00 3.55 58 M 1 +ATOM 876 H HA . GLN M 1 59 ? 134.834 104.257 74.591 1.00 3.55 58 M 1 +ATOM 877 H HB2 . GLN M 1 59 ? 137.298 102.828 74.527 1.00 3.55 58 M 1 +ATOM 878 H HB3 . GLN M 1 59 ? 137.153 104.314 74.006 1.00 3.55 58 M 1 +ATOM 879 H HG2 . GLN M 1 59 ? 137.133 103.442 76.693 1.00 3.55 58 M 1 +ATOM 880 H HG3 . GLN M 1 59 ? 138.056 104.561 76.058 1.00 3.55 58 M 1 +ATOM 881 H HE21 . GLN M 1 59 ? 135.434 106.916 75.978 1.00 3.55 58 M 1 +ATOM 882 H HE22 . GLN M 1 59 ? 136.486 106.365 75.013 1.00 3.55 58 M 1 +ATOM 883 N N . SER M 1 60 ? 135.331 101.813 72.512 1.00 3.24 59 M 1 +ATOM 884 C CA . SER M 1 60 ? 135.143 101.390 71.126 1.00 3.24 59 M 1 +ATOM 885 C C . SER M 1 60 ? 133.699 101.592 70.690 1.00 3.24 59 M 1 +ATOM 886 O O . SER M 1 60 ? 133.420 102.123 69.604 1.00 3.24 59 M 1 +ATOM 887 C CB . SER M 1 60 ? 135.541 99.924 70.959 1.00 3.24 59 M 1 +ATOM 888 O OG . SER M 1 60 ? 135.301 99.505 69.637 1.00 3.24 59 M 1 +ATOM 889 H H . SER M 1 60 ? 135.602 101.192 73.042 1.00 3.24 59 M 1 +ATOM 890 H HA . SER M 1 60 ? 135.722 101.916 70.552 1.00 3.24 59 M 1 +ATOM 891 H HB2 . SER M 1 60 ? 136.482 99.810 71.163 1.00 3.24 59 M 1 +ATOM 892 H HB3 . SER M 1 60 ? 135.013 99.373 71.558 1.00 3.24 59 M 1 +ATOM 893 H HG . SER M 1 60 ? 136.017 99.537 69.199 1.00 3.24 59 M 1 +ATOM 894 N N . HIS M 1 61 ? 132.766 101.182 71.545 1.00 3.61 60 M 1 +ATOM 895 C CA . HIS M 1 61 ? 131.351 101.333 71.224 1.00 3.61 60 M 1 +ATOM 896 C C . HIS M 1 61 ? 130.969 102.807 71.111 1.00 3.61 60 M 1 +ATOM 897 O O . HIS M 1 61 ? 130.209 103.194 70.212 1.00 3.61 60 M 1 +ATOM 898 C CB . HIS M 1 61 ? 130.503 100.619 72.274 1.00 3.61 60 M 1 +ATOM 899 C CG . HIS M 1 61 ? 130.658 99.131 72.259 1.00 3.61 60 M 1 +ATOM 900 N ND1 . HIS M 1 61 ? 130.123 98.316 73.233 1.00 3.61 60 M 1 +ATOM 901 C CD2 . HIS M 1 61 ? 131.295 98.310 71.392 1.00 3.61 60 M 1 +ATOM 902 C CE1 . HIS M 1 61 ? 130.422 97.058 72.962 1.00 3.61 60 M 1 +ATOM 903 N NE2 . HIS M 1 61 ? 131.131 97.028 71.850 1.00 3.61 60 M 1 +ATOM 904 H H . HIS M 1 61 ? 132.932 100.839 72.316 1.00 3.61 60 M 1 +ATOM 905 H HA . HIS M 1 61 ? 131.177 100.924 70.362 1.00 3.61 60 M 1 +ATOM 906 H HB2 . HIS M 1 61 ? 130.749 100.941 73.155 1.00 3.61 60 M 1 +ATOM 907 H HB3 . HIS M 1 61 ? 129.567 100.820 72.116 1.00 3.61 60 M 1 +ATOM 908 H HD2 . HIS M 1 61 ? 131.758 98.559 70.625 1.00 3.61 60 M 1 +ATOM 909 H HE1 . HIS M 1 61 ? 130.179 96.315 73.466 1.00 3.61 60 M 1 +ATOM 910 H HE2 . HIS M 1 61 ? 131.444 96.322 71.471 1.00 3.61 60 M 1 +ATOM 911 N N . GLU M 1 62 ? 131.505 103.647 71.997 1.00 3.84 61 M 1 +ATOM 912 C CA . GLU M 1 62 ? 131.212 105.075 71.925 1.00 3.84 61 M 1 +ATOM 913 C C . GLU M 1 62 ? 131.729 105.689 70.628 1.00 3.84 61 M 1 +ATOM 914 O O . GLU M 1 62 ? 131.069 106.546 70.032 1.00 3.84 61 M 1 +ATOM 915 C CB . GLU M 1 62 ? 131.806 105.801 73.132 1.00 3.84 61 M 1 +ATOM 916 C CG . GLU M 1 62 ? 131.117 105.507 74.458 1.00 3.84 61 M 1 +ATOM 917 C CD . GLU M 1 62 ? 129.702 106.056 74.531 1.00 3.84 61 M 1 +ATOM 918 O OE1 . GLU M 1 62 ? 129.434 107.105 73.910 1.00 3.84 61 M 1 +ATOM 919 O OE2 . GLU M 1 62 ? 128.856 105.440 75.213 1.00 3.84 61 M 1 +ATOM 920 H H . GLU M 1 62 ? 132.043 103.424 72.630 1.00 3.84 61 M 1 +ATOM 921 H HA . GLU M 1 62 ? 130.249 105.187 71.946 1.00 3.84 61 M 1 +ATOM 922 H HB2 . GLU M 1 62 ? 132.737 105.543 73.223 1.00 3.84 61 M 1 +ATOM 923 H HB3 . GLU M 1 62 ? 131.758 106.757 72.975 1.00 3.84 61 M 1 +ATOM 924 H HG2 . GLU M 1 62 ? 131.068 104.548 74.594 1.00 3.84 61 M 1 +ATOM 925 H HG3 . GLU M 1 62 ? 131.631 105.913 75.173 1.00 3.84 61 M 1 +ATOM 926 N N . GLU M 1 63 ? 132.904 105.264 70.167 1.00 3.87 62 M 1 +ATOM 927 C CA . GLU M 1 63 ? 133.445 105.837 68.937 1.00 3.87 62 M 1 +ATOM 928 C C . GLU M 1 63 ? 132.639 105.379 67.724 1.00 3.87 62 M 1 +ATOM 929 O O . GLU M 1 63 ? 132.447 106.143 66.768 1.00 3.87 62 M 1 +ATOM 930 C CB . GLU M 1 63 ? 134.923 105.479 68.779 1.00 3.87 62 M 1 +ATOM 931 C CG . GLU M 1 63 ? 135.854 106.022 69.867 1.00 3.87 62 M 1 +ATOM 932 C CD . GLU M 1 63 ? 135.896 107.537 69.978 1.00 3.87 62 M 1 +ATOM 933 O OE1 . GLU M 1 63 ? 135.774 108.240 68.963 1.00 3.87 62 M 1 +ATOM 934 O OE2 . GLU M 1 63 ? 136.035 108.032 71.115 1.00 3.87 62 M 1 +ATOM 935 H H . GLU M 1 63 ? 133.388 104.654 70.533 1.00 3.87 62 M 1 +ATOM 936 H HA . GLU M 1 63 ? 133.379 106.804 68.981 1.00 3.87 62 M 1 +ATOM 937 H HB2 . GLU M 1 63 ? 135.006 104.513 68.804 1.00 3.87 62 M 1 +ATOM 938 H HB3 . GLU M 1 63 ? 135.238 105.797 67.919 1.00 3.87 62 M 1 +ATOM 939 H HG2 . GLU M 1 63 ? 135.596 105.675 70.735 1.00 3.87 62 M 1 +ATOM 940 H HG3 . GLU M 1 63 ? 136.753 105.720 69.663 1.00 3.87 62 M 1 +ATOM 941 N N . ARG M 1 64 ? 132.101 104.161 67.796 1.00 3.76 63 M 1 +ATOM 942 C CA . ARG M 1 64 ? 131.222 103.585 66.708 1.00 3.76 63 M 1 +ATOM 943 C C . ARG M 1 64 ? 129.982 104.548 66.721 1.00 3.76 63 M 1 +ATOM 944 O O . ARG M 1 64 ? 129.586 104.978 65.656 1.00 3.76 63 M 1 +ATOM 945 C CB . ARG M 1 64 ? 130.958 102.003 66.808 0.50 3.76 63 M 1 +ATOM 946 C CG . ARG M 1 64 ? 129.868 101.512 65.865 0.50 3.76 63 M 1 +ATOM 947 C CD . ARG M 1 64 ? 130.261 101.575 64.397 0.50 3.76 63 M 1 +ATOM 948 N NE . ARG M 1 64 ? 130.583 100.261 63.843 0.50 3.76 63 M 1 +ATOM 949 C CZ . ARG M 1 64 ? 129.698 99.402 63.345 0.50 3.76 63 M 1 +ATOM 950 N NH1 . ARG M 1 64 ? 130.106 98.233 62.883 0.50 3.76 63 M 1 +ATOM 951 N NH2 . ARG M 1 64 ? 128.413 99.701 63.309 0.50 3.76 63 M 1 +ATOM 952 H H . ARG M 1 64 ? 132.146 103.647 68.546 1.00 3.76 63 M 1 +ATOM 953 H HA . ARG M 1 64 ? 131.743 103.924 65.813 1.00 3.76 63 M 1 +ATOM 954 H HB2 . ARG M 1 64 ? 131.792 101.531 66.603 0.50 3.76 63 M 1 +ATOM 955 H HB3 . ARG M 1 64 ? 130.704 101.784 67.729 0.50 3.76 63 M 1 +ATOM 956 H HG2 . ARG M 1 64 ? 129.643 100.585 66.092 0.50 3.76 63 M 1 +ATOM 957 H HG3 . ARG M 1 64 ? 129.062 102.055 65.999 0.50 3.76 63 M 1 +ATOM 958 H HD2 . ARG M 1 64 ? 129.523 101.967 63.883 0.50 3.76 63 M 1 +ATOM 959 H HD3 . ARG M 1 64 ? 131.040 102.163 64.298 0.50 3.76 63 M 1 +ATOM 960 H HE . ARG M 1 64 ? 131.419 100.014 63.850 0.50 3.76 63 M 1 +ATOM 961 H HH11 . ARG M 1 64 ? 130.961 98.028 62.902 0.50 3.76 63 M 1 +ATOM 962 H HH12 . ARG M 1 64 ? 129.522 97.667 62.549 0.50 3.76 63 M 1 +ATOM 963 H HH21 . ARG M 1 64 ? 128.135 100.477 63.619 0.50 3.76 63 M 1 +ATOM 964 H HH22 . ARG M 1 64 ? 127.838 99.124 62.975 0.50 3.76 63 M 1 +ATOM 965 N N . GLU M 1 65 ? 129.447 104.893 67.887 1.00 4.14 64 M 1 +ATOM 966 C CA . GLU M 1 65 ? 128.292 105.783 67.961 1.00 4.14 64 M 1 +ATOM 967 C C . GLU M 1 65 ? 128.612 107.153 67.371 1.00 4.14 64 M 1 +ATOM 968 O O . GLU M 1 65 ? 127.777 107.746 66.678 1.00 4.14 64 M 1 +ATOM 969 C CB . GLU M 1 65 ? 127.806 105.917 69.404 1.00 4.14 64 M 1 +ATOM 970 C CG . GLU M 1 65 ? 127.215 104.648 70.011 1.00 4.14 64 M 1 +ATOM 971 C CD . GLU M 1 65 ? 126.815 104.819 71.470 1.00 4.14 64 M 1 +ATOM 972 O OE1 . GLU M 1 65 ? 127.167 105.858 72.067 1.00 4.14 64 M 1 +ATOM 973 O OE2 . GLU M 1 65 ? 126.168 103.907 72.026 1.00 4.14 64 M 1 +ATOM 974 H H . GLU M 1 65 ? 129.750 104.624 68.646 1.00 4.14 64 M 1 +ATOM 975 H HA . GLU M 1 65 ? 127.573 105.393 67.440 1.00 4.14 64 M 1 +ATOM 976 H HB2 . GLU M 1 65 ? 128.554 106.187 69.959 1.00 4.14 64 M 1 +ATOM 977 H HB3 . GLU M 1 65 ? 127.121 106.603 69.441 1.00 4.14 64 M 1 +ATOM 978 H HG2 . GLU M 1 65 ? 126.423 104.393 69.514 1.00 4.14 64 M 1 +ATOM 979 H HG3 . GLU M 1 65 ? 127.878 103.941 69.968 1.00 4.14 64 M 1 +ATOM 980 N N . HIS M 1 66 ? 129.829 107.640 67.616 1.00 4.22 65 M 1 +ATOM 981 C CA . HIS M 1 66 ? 130.308 108.938 67.079 1.00 4.22 65 M 1 +ATOM 982 C C . HIS M 1 66 ? 130.290 108.866 65.548 1.00 4.22 65 M 1 +ATOM 983 O O . HIS M 1 66 ? 129.822 109.783 64.939 1.00 4.22 65 M 1 +ATOM 984 C CB . HIS M 1 66 ? 131.713 109.301 67.587 1.00 4.22 65 M 1 +ATOM 985 C CG . HIS M 1 66 ? 131.792 109.546 69.053 1.00 4.22 65 M 1 +ATOM 986 N ND1 . HIS M 1 66 ? 133.003 109.665 69.722 1.00 4.22 65 M 1 +ATOM 987 C CD2 . HIS M 1 66 ? 130.831 109.635 69.993 1.00 4.22 65 M 1 +ATOM 988 C CE1 . HIS M 1 66 ? 132.776 109.838 71.000 1.00 4.22 65 M 1 +ATOM 989 N NE2 . HIS M 1 66 ? 131.461 109.838 71.198 1.00 4.22 65 M 1 +ATOM 990 H H . HIS M 1 66 ? 130.452 107.215 68.128 1.00 4.22 65 M 1 +ATOM 991 H HA . HIS M 1 66 ? 129.676 109.640 67.364 1.00 4.22 65 M 1 +ATOM 992 H HB2 . HIS M 1 66 ? 132.330 108.571 67.356 1.00 4.22 65 M 1 +ATOM 993 H HB3 . HIS M 1 66 ? 132.020 110.107 67.116 1.00 4.22 65 M 1 +ATOM 994 H HD2 . HIS M 1 66 ? 129.904 109.592 69.854 1.00 4.22 65 M 1 +ATOM 995 H HE1 . HIS M 1 66 ? 133.434 109.962 71.662 1.00 4.22 65 M 1 +ATOM 996 H HE2 . HIS M 1 66 ? 131.063 109.939 71.973 1.00 4.22 65 M 1 +ATOM 997 N N . ALA M 1 67 ? 130.747 107.775 64.950 1.00 3.84 66 M 1 +ATOM 998 C CA . ALA M 1 67 ? 130.771 107.598 63.501 1.00 3.84 66 M 1 +ATOM 999 C C . ALA M 1 67 ? 129.362 107.575 62.928 1.00 3.84 66 M 1 +ATOM 1000 O O . ALA M 1 67 ? 129.078 108.216 61.908 1.00 3.84 66 M 1 +ATOM 1001 C CB . ALA M 1 67 ? 131.504 106.307 63.143 1.00 3.84 66 M 1 +ATOM 1002 H H . ALA M 1 67 ? 131.105 107.131 65.393 1.00 3.84 66 M 1 +ATOM 1003 H HA . ALA M 1 67 ? 131.257 108.336 63.100 1.00 3.84 66 M 1 +ATOM 1004 H HB1 . ALA M 1 67 ? 131.443 106.159 62.186 1.00 3.84 66 M 1 +ATOM 1005 H HB2 . ALA M 1 67 ? 132.433 106.374 63.413 1.00 3.84 66 M 1 +ATOM 1006 H HB3 . ALA M 1 67 ? 131.087 105.565 63.608 1.00 3.84 66 M 1 +ATOM 1007 N N . GLU M 1 68 ? 128.465 106.843 63.583 1.00 4.02 67 M 1 +ATOM 1008 C CA . GLU M 1 68 ? 127.104 106.708 63.080 1.00 4.02 67 M 1 +ATOM 1009 C C . GLU M 1 68 ? 126.361 108.039 63.154 1.00 4.02 67 M 1 +ATOM 1010 O O . GLU M 1 68 ? 125.551 108.363 62.274 1.00 4.02 67 M 1 +ATOM 1011 C CB . GLU M 1 68 ? 126.385 105.614 63.868 1.00 4.02 67 M 1 +ATOM 1012 C CG . GLU M 1 68 ? 126.941 104.210 63.617 1.00 4.02 67 M 1 +ATOM 1013 C CD . GLU M 1 68 ? 126.280 103.138 64.473 1.00 4.02 67 M 1 +ATOM 1014 O OE1 . GLU M 1 68 ? 125.463 103.483 65.352 1.00 4.02 67 M 1 +ATOM 1015 O OE2 . GLU M 1 68 ? 126.596 101.946 64.273 1.00 4.02 67 M 1 +ATOM 1016 H H . GLU M 1 68 ? 128.615 106.433 64.324 1.00 4.02 67 M 1 +ATOM 1017 H HA . GLU M 1 68 ? 127.136 106.429 62.152 1.00 4.02 67 M 1 +ATOM 1018 H HB2 . GLU M 1 68 ? 126.479 105.804 64.815 1.00 4.02 67 M 1 +ATOM 1019 H HB3 . GLU M 1 68 ? 125.445 105.608 63.630 1.00 4.02 67 M 1 +ATOM 1020 H HG2 . GLU M 1 68 ? 126.785 103.976 62.689 1.00 4.02 67 M 1 +ATOM 1021 H HG3 . GLU M 1 68 ? 127.896 104.193 63.787 1.00 4.02 67 M 1 +ATOM 1022 N N . LYS M 1 69 ? 126.644 108.836 64.186 1.00 4.51 68 M 1 +ATOM 1023 C CA . LYS M 1 69 ? 126.058 110.167 64.286 1.00 4.51 68 M 1 +ATOM 1024 C C . LYS M 1 69 ? 126.543 111.060 63.145 1.00 4.51 68 M 1 +ATOM 1025 O O . LYS M 1 69 ? 125.765 111.831 62.573 1.00 4.51 68 M 1 +ATOM 1026 C CB . LYS M 1 69 ? 126.392 110.761 65.656 1.00 4.51 68 M 1 +ATOM 1027 C CG . LYS M 1 69 ? 125.744 112.081 65.984 1.00 4.51 68 M 1 +ATOM 1028 C CD . LYS M 1 69 ? 126.140 112.584 67.379 1.00 4.51 68 M 1 +ATOM 1029 C CE . LYS M 1 69 ? 125.446 111.817 68.486 1.00 4.51 68 M 1 +ATOM 1030 N NZ . LYS M 1 69 ? 125.760 112.374 69.836 1.00 4.51 68 M 1 +ATOM 1031 H H . LYS M 1 69 ? 127.178 108.638 64.831 1.00 4.51 68 M 1 +ATOM 1032 H HA . LYS M 1 69 ? 125.092 110.102 64.227 1.00 4.51 68 M 1 +ATOM 1033 H HB2 . LYS M 1 69 ? 126.106 110.132 66.337 1.00 4.51 68 M 1 +ATOM 1034 H HB3 . LYS M 1 69 ? 127.353 110.884 65.706 1.00 4.51 68 M 1 +ATOM 1035 H HG2 . LYS M 1 69 ? 126.054 112.738 65.342 1.00 4.51 68 M 1 +ATOM 1036 H HG3 . LYS M 1 69 ? 124.779 111.993 65.944 1.00 4.51 68 M 1 +ATOM 1037 H HD2 . LYS M 1 69 ? 127.097 112.483 67.503 1.00 4.51 68 M 1 +ATOM 1038 H HD3 . LYS M 1 69 ? 125.887 113.517 67.465 1.00 4.51 68 M 1 +ATOM 1039 H HE2 . LYS M 1 69 ? 124.487 111.865 68.351 1.00 4.51 68 M 1 +ATOM 1040 H HE3 . LYS M 1 69 ? 125.737 110.892 68.471 1.00 4.51 68 M 1 +ATOM 1041 H HZ1 . LYS M 1 69 ? 126.614 112.223 70.038 1.00 4.51 68 M 1 +ATOM 1042 H HZ2 . LYS M 1 69 ? 125.615 113.252 69.847 1.00 4.51 68 M 1 +ATOM 1043 H HZ3 . LYS M 1 69 ? 125.247 111.989 70.453 1.00 4.51 68 M 1 +ATOM 1044 N N . LEU M 1 70 ? 127.821 110.946 62.778 1.00 4.14 69 M 1 +ATOM 1045 C CA . LEU M 1 70 ? 128.312 111.688 61.615 1.00 4.14 69 M 1 +ATOM 1046 C C . LEU M 1 70 ? 127.628 111.240 60.328 1.00 4.14 69 M 1 +ATOM 1047 O O . LEU M 1 70 ? 127.352 112.060 59.446 1.00 4.14 69 M 1 +ATOM 1048 C CB . LEU M 1 70 ? 129.824 111.540 61.473 1.00 4.14 69 M 1 +ATOM 1049 C CG . LEU M 1 70 ? 130.714 112.224 62.508 1.00 4.14 69 M 1 +ATOM 1050 C CD1 . LEU M 1 70 ? 132.178 111.871 62.320 1.00 4.14 69 M 1 +ATOM 1051 C CD2 . LEU M 1 70 ? 130.530 113.726 62.481 1.00 4.14 69 M 1 +ATOM 1052 H H . LEU M 1 70 ? 128.408 110.456 63.170 1.00 4.14 69 M 1 +ATOM 1053 H HA . LEU M 1 70 ? 128.095 112.626 61.732 1.00 4.14 69 M 1 +ATOM 1054 H HB2 . LEU M 1 70 ? 130.029 110.592 61.501 1.00 4.14 69 M 1 +ATOM 1055 H HB3 . LEU M 1 70 ? 130.074 111.883 60.601 1.00 4.14 69 M 1 +ATOM 1056 H HG . LEU M 1 70 ? 130.458 111.911 63.390 1.00 4.14 69 M 1 +ATOM 1057 H HD11 . LEU M 1 70 ? 132.659 112.176 63.105 1.00 4.14 69 M 1 +ATOM 1058 H HD12 . LEU M 1 70 ? 132.281 110.911 62.229 1.00 4.14 69 M 1 +ATOM 1059 H HD13 . LEU M 1 70 ? 132.517 112.314 61.527 1.00 4.14 69 M 1 +ATOM 1060 H HD21 . LEU M 1 70 ? 131.231 114.137 63.010 1.00 4.14 69 M 1 +ATOM 1061 H HD22 . LEU M 1 70 ? 130.577 114.045 61.566 1.00 4.14 69 M 1 +ATOM 1062 H HD23 . LEU M 1 70 ? 129.667 113.945 62.865 1.00 4.14 69 M 1 +ATOM 1063 N N . MET M 1 71 ? 127.364 109.948 60.208 1.00 4.44 70 M 1 +ATOM 1064 C CA . MET M 1 71 ? 126.697 109.405 59.001 1.00 4.44 70 M 1 +ATOM 1065 C C . MET M 1 71 ? 125.291 110.001 58.920 1.00 4.44 70 M 1 +ATOM 1066 O O . MET M 1 71 ? 124.905 110.440 57.849 1.00 4.44 70 M 1 +ATOM 1067 C CB . MET M 1 71 ? 126.674 107.880 59.051 1.00 4.44 70 M 1 +ATOM 1068 C CG . MET M 1 71 ? 128.068 107.310 58.992 1.00 4.44 70 M 1 +ATOM 1069 S SD . MET M 1 71 ? 128.013 105.515 59.092 1.00 4.44 70 M 1 +ATOM 1070 C CE . MET M 1 71 ? 129.764 105.161 59.006 1.00 4.44 70 M 1 +ATOM 1071 H H . MET M 1 71 ? 127.457 109.354 60.890 1.00 4.44 70 M 1 +ATOM 1072 H HA . MET M 1 71 ? 127.206 109.698 58.210 1.00 4.44 70 M 1 +ATOM 1073 H HB2 . MET M 1 71 ? 126.238 107.593 59.878 1.00 4.44 70 M 1 +ATOM 1074 H HB3 . MET M 1 71 ? 126.151 107.542 58.297 1.00 4.44 70 M 1 +ATOM 1075 H HG2 . MET M 1 71 ? 128.499 107.576 58.152 1.00 4.44 70 M 1 +ATOM 1076 H HG3 . MET M 1 71 ? 128.600 107.661 59.738 1.00 4.44 70 M 1 +ATOM 1077 H HE1 . MET M 1 71 ? 129.900 104.207 59.039 1.00 4.44 70 M 1 +ATOM 1078 H HE2 . MET M 1 71 ? 130.121 105.509 58.180 1.00 4.44 70 M 1 +ATOM 1079 H HE3 . MET M 1 71 ? 130.213 105.578 59.752 1.00 4.44 70 M 1 +ATOM 1080 N N . LYS M 1 72 ? 124.578 110.039 60.037 1.00 5.09 71 M 1 +ATOM 1081 C CA . LYS M 1 72 ? 123.268 110.672 60.109 1.00 5.09 71 M 1 +ATOM 1082 C C . LYS M 1 72 ? 123.349 112.134 59.697 1.00 5.09 71 M 1 +ATOM 1083 O O . LYS M 1 72 ? 122.508 112.617 58.933 1.00 5.09 71 M 1 +ATOM 1084 C CB . LYS M 1 72 ? 122.703 110.527 61.522 1.00 5.09 71 M 1 +ATOM 1085 C CG . LYS M 1 72 ? 121.325 111.109 61.739 1.00 5.09 71 M 1 +ATOM 1086 C CD . LYS M 1 72 ? 120.796 110.746 63.129 1.00 5.09 71 M 1 +ATOM 1087 C CE . LYS M 1 72 ? 119.462 111.406 63.437 1.00 5.09 71 M 1 +ATOM 1088 N NZ . LYS M 1 72 ? 118.368 110.935 62.544 1.00 5.09 71 M 1 +ATOM 1089 H H . LYS M 1 72 ? 124.846 109.694 60.777 1.00 5.09 71 M 1 +ATOM 1090 H HA . LYS M 1 72 ? 122.666 110.214 59.501 1.00 5.09 71 M 1 +ATOM 1091 H HB2 . LYS M 1 72 ? 122.640 109.582 61.732 1.00 5.09 71 M 1 +ATOM 1092 H HB3 . LYS M 1 72 ? 123.310 110.959 62.144 1.00 5.09 71 M 1 +ATOM 1093 H HG2 . LYS M 1 72 ? 121.371 112.076 61.677 1.00 5.09 71 M 1 +ATOM 1094 H HG3 . LYS M 1 72 ? 120.720 110.757 61.068 1.00 5.09 71 M 1 +ATOM 1095 H HD2 . LYS M 1 72 ? 120.682 109.785 63.191 1.00 5.09 71 M 1 +ATOM 1096 H HD3 . LYS M 1 72 ? 121.431 111.046 63.798 1.00 5.09 71 M 1 +ATOM 1097 H HE2 . LYS M 1 72 ? 119.208 111.187 64.347 1.00 5.09 71 M 1 +ATOM 1098 H HE3 . LYS M 1 72 ? 119.546 112.368 63.342 1.00 5.09 71 M 1 +ATOM 1099 H HZ1 . LYS M 1 72 ? 117.580 111.187 62.871 1.00 5.09 71 M 1 +ATOM 1100 H HZ2 . LYS M 1 72 ? 118.464 111.284 61.731 1.00 5.09 71 M 1 +ATOM 1101 H HZ3 . LYS M 1 72 ? 118.388 110.047 62.481 1.00 5.09 71 M 1 +ATOM 1102 N N . LEU M 1 73 ? 124.372 112.846 60.176 1.00 4.70 72 M 1 +ATOM 1103 C CA . LEU M 1 73 ? 124.575 114.232 59.765 1.00 4.70 72 M 1 +ATOM 1104 C C . LEU M 1 73 ? 124.735 114.343 58.257 1.00 4.70 72 M 1 +ATOM 1105 O O . LEU M 1 73 ? 124.121 115.210 57.626 1.00 4.70 72 M 1 +ATOM 1106 C CB . LEU M 1 73 ? 125.792 114.820 60.486 1.00 4.70 72 M 1 +ATOM 1107 C CG . LEU M 1 73 ? 126.197 116.293 60.314 1.00 4.70 72 M 1 +ATOM 1108 C CD1 . LEU M 1 73 ? 126.895 116.563 58.993 1.00 4.70 72 M 1 +ATOM 1109 C CD2 . LEU M 1 73 ? 125.020 117.220 60.465 1.00 4.70 72 M 1 +ATOM 1110 H H . LEU M 1 73 ? 124.966 112.543 60.719 1.00 4.70 72 M 1 +ATOM 1111 H HA . LEU M 1 73 ? 123.795 114.747 60.024 1.00 4.70 72 M 1 +ATOM 1112 H HB2 . LEU M 1 73 ? 125.621 114.717 61.435 1.00 4.70 72 M 1 +ATOM 1113 H HB3 . LEU M 1 73 ? 126.570 114.287 60.259 1.00 4.70 72 M 1 +ATOM 1114 H HG . LEU M 1 73 ? 126.833 116.516 61.011 1.00 4.70 72 M 1 +ATOM 1115 H HD11 . LEU M 1 73 ? 127.419 117.376 59.068 1.00 4.70 72 M 1 +ATOM 1116 H HD12 . LEU M 1 73 ? 127.480 115.818 58.782 1.00 4.70 72 M 1 +ATOM 1117 H HD13 . LEU M 1 73 ? 126.229 116.668 58.295 1.00 4.70 72 M 1 +ATOM 1118 H HD21 . LEU M 1 73 ? 125.345 118.132 60.408 1.00 4.70 72 M 1 +ATOM 1119 H HD22 . LEU M 1 73 ? 124.387 117.048 59.750 1.00 4.70 72 M 1 +ATOM 1120 H HD23 . LEU M 1 73 ? 124.600 117.070 61.327 1.00 4.70 72 M 1 +ATOM 1121 N N . GLN M 1 74 ? 125.569 113.483 57.671 1.00 4.76 73 M 1 +ATOM 1122 C CA . GLN M 1 74 ? 125.839 113.540 56.238 1.00 4.76 73 M 1 +ATOM 1123 C C . GLN M 1 74 ? 124.544 113.406 55.449 1.00 4.76 73 M 1 +ATOM 1124 O O . GLN M 1 74 ? 124.287 114.173 54.515 1.00 4.76 73 M 1 +ATOM 1125 C CB . GLN M 1 74 ? 126.819 112.433 55.835 1.00 4.76 73 M 1 +ATOM 1126 C CG . GLN M 1 74 ? 127.295 112.530 54.401 1.00 4.76 73 M 1 +ATOM 1127 C CD . GLN M 1 74 ? 128.249 113.676 54.194 1.00 4.76 73 M 1 +ATOM 1128 O OE1 . GLN M 1 74 ? 127.849 114.775 53.838 1.00 4.76 73 M 1 +ATOM 1129 N NE2 . GLN M 1 74 ? 129.532 113.391 54.310 1.00 4.76 73 M 1 +ATOM 1130 H H . GLN M 1 74 ? 125.987 112.851 58.078 1.00 4.76 73 M 1 +ATOM 1131 H HA . GLN M 1 74 ? 126.241 114.394 56.014 1.00 4.76 73 M 1 +ATOM 1132 H HB2 . GLN M 1 74 ? 127.609 112.511 56.392 1.00 4.76 73 M 1 +ATOM 1133 H HB3 . GLN M 1 74 ? 126.415 111.560 55.961 1.00 4.76 73 M 1 +ATOM 1134 H HG2 . GLN M 1 74 ? 127.762 111.711 54.171 1.00 4.76 73 M 1 +ATOM 1135 H HG3 . GLN M 1 74 ? 126.548 112.649 53.793 1.00 4.76 73 M 1 +ATOM 1136 H HE21 . GLN M 1 74 ? 129.777 112.597 54.532 1.00 4.76 73 M 1 +ATOM 1137 H HE22 . GLN M 1 74 ? 130.123 114.002 54.182 1.00 4.76 73 M 1 +ATOM 1138 N N . ASN M 1 75 ? 123.737 112.412 55.802 1.00 4.47 74 M 1 +ATOM 1139 C CA . ASN M 1 75 ? 122.429 112.141 55.138 1.00 4.47 74 M 1 +ATOM 1140 C C . ASN M 1 75 ? 121.453 113.301 55.386 1.00 4.47 74 M 1 +ATOM 1141 O O . ASN M 1 75 ? 120.756 113.695 54.470 1.00 4.47 74 M 1 +ATOM 1142 C CB . ASN M 1 75 ? 121.854 110.804 55.586 1.00 4.47 74 M 1 +ATOM 1143 C CG . ASN M 1 75 ? 122.406 109.660 54.764 1.00 4.47 74 M 1 +ATOM 1144 O OD1 . ASN M 1 75 ? 122.981 109.885 53.713 1.00 4.47 74 M 1 +ATOM 1145 N ND2 . ASN M 1 75 ? 122.233 108.443 55.235 1.00 4.47 74 M 1 +ATOM 1146 H H . ASN M 1 75 ? 123.885 111.904 56.543 1.00 4.47 74 M 1 +ATOM 1147 H HA . ASN M 1 75 ? 122.592 112.080 54.168 1.00 4.47 74 M 1 +ATOM 1148 H HB2 . ASN M 1 75 ? 122.072 110.660 56.529 1.00 4.47 74 M 1 +ATOM 1149 H HB3 . ASN M 1 75 ? 120.879 110.827 55.495 1.00 4.47 74 M 1 +ATOM 1150 H HD21 . ASN M 1 75 ? 121.801 108.321 55.996 1.00 4.47 74 M 1 +ATOM 1151 H HD22 . ASN M 1 75 ? 122.549 107.747 54.790 1.00 4.47 74 M 1 +ATOM 1152 N N . GLN M 1 76 ? 121.463 113.847 56.588 1.00 5.04 75 M 1 +ATOM 1153 C CA . GLN M 1 76 ? 120.581 114.983 56.952 1.00 5.04 75 M 1 +ATOM 1154 C C . GLN M 1 76 ? 120.881 116.181 56.044 1.00 5.04 75 M 1 +ATOM 1155 O O . GLN M 1 76 ? 119.961 116.839 55.678 1.00 5.04 75 M 1 +ATOM 1156 C CB . GLN M 1 76 ? 120.835 115.462 58.374 1.00 5.04 75 M 1 +ATOM 1157 C CG . GLN M 1 76 ? 119.945 114.854 59.435 1.00 5.04 75 M 1 +ATOM 1158 C CD . GLN M 1 76 ? 119.808 115.830 60.585 1.00 5.04 75 M 1 +ATOM 1159 O OE1 . GLN M 1 76 ? 118.777 115.913 61.234 1.00 5.04 75 M 1 +ATOM 1160 N NE2 . GLN M 1 76 ? 120.836 116.632 60.800 1.00 5.04 75 M 1 +ATOM 1161 H H . GLN M 1 76 ? 122.100 113.657 57.209 1.00 5.04 75 M 1 +ATOM 1162 H HA . GLN M 1 76 ? 119.639 114.714 56.850 1.00 5.04 75 M 1 +ATOM 1163 H HB2 . GLN M 1 76 ? 121.769 115.267 58.599 1.00 5.04 75 M 1 +ATOM 1164 H HB3 . GLN M 1 76 ? 120.725 116.436 58.392 1.00 5.04 75 M 1 +ATOM 1165 H HG2 . GLN M 1 76 ? 119.060 114.661 59.057 1.00 5.04 75 M 1 +ATOM 1166 H HG3 . GLN M 1 76 ? 120.336 114.015 59.757 1.00 5.04 75 M 1 +ATOM 1167 H HE21 . GLN M 1 76 ? 121.177 117.105 60.136 1.00 5.04 75 M 1 +ATOM 1168 H HE22 . GLN M 1 76 ? 121.175 116.708 61.613 1.00 5.04 75 M 1 +ATOM 1169 N N . ARG M 1 77 ? 122.137 116.447 55.723 1.00 5.21 76 M 1 +ATOM 1170 C CA . ARG M 1 77 ? 122.556 117.638 54.929 1.00 5.21 76 M 1 +ATOM 1171 C C . ARG M 1 77 ? 122.537 117.372 53.405 1.00 5.21 76 M 1 +ATOM 1172 O O . ARG M 1 77 ? 122.838 118.277 52.658 1.00 5.21 76 M 1 +ATOM 1173 C CB . ARG M 1 77 ? 123.908 118.130 55.452 1.00 5.21 76 M 1 +ATOM 1174 C CG . ARG M 1 77 ? 123.873 118.631 56.893 1.00 5.21 76 M 1 +ATOM 1175 C CD . ARG M 1 77 ? 122.925 119.810 57.098 1.00 5.21 76 M 1 +ATOM 1176 N NE . ARG M 1 77 ? 123.250 120.925 56.224 1.00 5.21 76 M 1 +ATOM 1177 C CZ . ARG M 1 77 ? 124.148 121.866 56.492 1.00 5.21 76 M 1 +ATOM 1178 N NH1 . ARG M 1 77 ? 124.811 121.845 57.631 1.00 5.21 76 M 1 +ATOM 1179 N NH2 . ARG M 1 77 ? 124.387 122.830 55.625 1.00 5.21 76 M 1 +ATOM 1180 H H . ARG M 1 77 ? 122.822 115.881 55.924 1.00 5.21 76 M 1 +ATOM 1181 H HA . ARG M 1 77 ? 121.896 118.347 55.108 1.00 5.21 76 M 1 +ATOM 1182 H HB2 . ARG M 1 77 ? 124.554 117.395 55.388 1.00 5.21 76 M 1 +ATOM 1183 H HB3 . ARG M 1 77 ? 124.221 118.856 54.873 1.00 5.21 76 M 1 +ATOM 1184 H HG2 . ARG M 1 77 ? 123.594 117.896 57.481 1.00 5.21 76 M 1 +ATOM 1185 H HG3 . ARG M 1 77 ? 124.776 118.902 57.161 1.00 5.21 76 M 1 +ATOM 1186 H HD2 . ARG M 1 77 ? 122.005 119.519 56.922 1.00 5.21 76 M 1 +ATOM 1187 H HD3 . ARG M 1 77 ? 122.974 120.106 58.032 1.00 5.21 76 M 1 +ATOM 1188 H HE . ARG M 1 77 ? 122.839 120.970 55.456 1.00 5.21 76 M 1 +ATOM 1189 H HH11 . ARG M 1 77 ? 124.661 121.204 58.213 1.00 5.21 76 M 1 +ATOM 1190 H HH12 . ARG M 1 77 ? 125.402 122.472 57.804 1.00 5.21 76 M 1 +ATOM 1191 H HH21 . ARG M 1 77 ? 123.947 122.853 54.863 1.00 5.21 76 M 1 +ATOM 1192 H HH22 . ARG M 1 77 ? 124.980 123.453 55.815 1.00 5.21 76 M 1 +ATOM 1193 N N . GLY M 1 78 ? 122.159 116.191 52.933 1.00 5.50 77 M 1 +ATOM 1194 C CA . GLY M 1 78 ? 122.140 115.887 51.522 1.00 5.50 77 M 1 +ATOM 1195 C C . GLY M 1 78 ? 123.459 115.443 50.939 1.00 5.50 77 M 1 +ATOM 1196 O O . GLY M 1 78 ? 123.541 115.249 49.723 1.00 5.50 77 M 1 +ATOM 1197 H H . GLY M 1 78 ? 121.916 115.531 53.428 1.00 5.50 77 M 1 +ATOM 1198 H HA2 . GLY M 1 78 ? 121.495 115.178 51.372 1.00 5.50 77 M 1 +ATOM 1199 H HA3 . GLY M 1 78 ? 121.836 116.659 51.020 1.00 5.50 77 M 1 +ATOM 1200 N N . GLY M 1 79 ? 124.495 115.290 51.756 1.00 5.18 78 M 1 +ATOM 1201 C CA . GLY M 1 79 ? 125.727 114.712 51.279 1.00 5.18 78 M 1 +ATOM 1202 C C . GLY M 1 79 ? 125.645 113.205 51.198 1.00 5.18 78 M 1 +ATOM 1203 O O . GLY M 1 79 ? 124.682 112.590 51.648 1.00 5.18 78 M 1 +ATOM 1204 H H . GLY M 1 79 ? 124.512 115.509 52.587 1.00 5.18 78 M 1 +ATOM 1205 H HA2 . GLY M 1 79 ? 125.940 115.050 50.395 1.00 5.18 78 M 1 +ATOM 1206 H HA3 . GLY M 1 79 ? 126.453 114.957 51.874 1.00 5.18 78 M 1 +ATOM 1207 N N . ARG M 1 80 ? 126.638 112.620 50.533 1.00 5.31 79 M 1 +ATOM 1208 C CA . ARG M 1 80 ? 126.688 111.162 50.279 1.00 5.31 79 M 1 +ATOM 1209 C C . ARG M 1 80 ? 127.898 110.553 51.001 1.00 5.31 79 M 1 +ATOM 1210 O O . ARG M 1 80 ? 129.032 110.956 50.759 1.00 5.31 79 M 1 +ATOM 1211 C CB . ARG M 1 80 ? 126.670 110.918 48.767 1.00 5.31 79 M 1 +ATOM 1212 C CG . ARG M 1 80 ? 125.405 111.442 48.090 1.00 5.31 79 M 1 +ATOM 1213 C CD . ARG M 1 80 ? 124.176 110.697 48.584 1.00 5.31 79 M 1 +ATOM 1214 N NE . ARG M 1 80 ? 122.876 111.198 48.135 1.00 5.31 79 M 1 +ATOM 1215 C CZ . ARG M 1 80 ? 121.961 111.743 48.932 1.00 5.31 79 M 1 +ATOM 1216 N NH1 . ARG M 1 80 ? 122.198 111.880 50.220 1.00 5.31 79 M 1 +ATOM 1217 N NH2 . ARG M 1 80 ? 120.804 112.149 48.440 1.00 5.31 79 M 1 +ATOM 1218 H H . ARG M 1 80 ? 127.344 113.082 50.191 1.00 5.31 79 M 1 +ATOM 1219 H HA . ARG M 1 80 ? 125.874 110.763 50.663 1.00 5.31 79 M 1 +ATOM 1220 H HB2 . ARG M 1 80 ? 127.450 111.355 48.367 1.00 5.31 79 M 1 +ATOM 1221 H HB3 . ARG M 1 80 ? 126.744 109.954 48.602 1.00 5.31 79 M 1 +ATOM 1222 H HG2 . ARG M 1 80 ? 125.303 112.399 48.282 1.00 5.31 79 M 1 +ATOM 1223 H HG3 . ARG M 1 80 ? 125.482 111.330 47.118 1.00 5.31 79 M 1 +ATOM 1224 H HD2 . ARG M 1 80 ? 124.254 109.759 48.308 1.00 5.31 79 M 1 +ATOM 1225 H HD3 . ARG M 1 80 ? 124.185 110.708 49.565 1.00 5.31 79 M 1 +ATOM 1226 H HE . ARG M 1 80 ? 122.678 111.115 47.290 1.00 5.31 79 M 1 +ATOM 1227 H HH11 . ARG M 1 80 ? 122.964 111.608 50.556 1.00 5.31 79 M 1 +ATOM 1228 H HH12 . ARG M 1 80 ? 121.590 112.243 50.741 1.00 5.31 79 M 1 +ATOM 1229 H HH21 . ARG M 1 80 ? 120.638 112.062 47.579 1.00 5.31 79 M 1 +ATOM 1230 H HH22 . ARG M 1 80 ? 120.205 112.515 48.973 1.00 5.31 79 M 1 +ATOM 1231 N N . ILE M 1 81 ? 127.627 109.572 51.839 1.00 4.71 80 M 1 +ATOM 1232 C CA . ILE M 1 81 ? 128.644 108.852 52.587 1.00 4.71 80 M 1 +ATOM 1233 C C . ILE M 1 81 ? 129.483 108.029 51.621 1.00 4.71 80 M 1 +ATOM 1234 O O . ILE M 1 81 ? 128.948 107.277 50.797 1.00 4.71 80 M 1 +ATOM 1235 C CB . ILE M 1 81 ? 127.982 107.961 53.650 1.00 4.71 80 M 1 +ATOM 1236 C CG1 . ILE M 1 81 ? 127.205 108.806 54.675 1.00 4.71 80 M 1 +ATOM 1237 C CG2 . ILE M 1 81 ? 129.034 107.088 54.347 1.00 4.71 80 M 1 +ATOM 1238 C CD1 . ILE M 1 81 ? 126.224 108.031 55.531 1.00 4.71 80 M 1 +ATOM 1239 H H . ILE M 1 81 ? 126.825 109.314 52.012 1.00 4.71 80 M 1 +ATOM 1240 H HA . ILE M 1 81 ? 129.217 109.490 53.040 1.00 4.71 80 M 1 +ATOM 1241 H HB . ILE M 1 81 ? 127.353 107.381 53.193 1.00 4.71 80 M 1 +ATOM 1242 H HG12 . ILE M 1 81 ? 127.845 109.217 55.277 1.00 4.71 80 M 1 +ATOM 1243 H HG13 . ILE M 1 81 ? 126.688 109.497 54.232 1.00 4.71 80 M 1 +ATOM 1244 H HG21 . ILE M 1 81 ? 128.684 106.748 55.185 1.00 4.71 80 M 1 +ATOM 1245 H HG22 . ILE M 1 81 ? 129.264 106.336 53.780 1.00 4.71 80 M 1 +ATOM 1246 H HG23 . ILE M 1 81 ? 129.820 107.628 54.525 1.00 4.71 80 M 1 +ATOM 1247 H HD11 . ILE M 1 81 ? 125.755 108.653 56.109 1.00 4.71 80 M 1 +ATOM 1248 H HD12 . ILE M 1 81 ? 125.587 107.584 54.952 1.00 4.71 80 M 1 +ATOM 1249 H HD13 . ILE M 1 81 ? 126.695 107.375 56.068 1.00 4.71 80 M 1 +ATOM 1250 N N . PHE M 1 82 ? 130.802 108.170 51.715 1.00 5.36 81 M 1 +ATOM 1251 C CA . PHE M 1 82 ? 131.748 107.327 50.988 1.00 5.36 81 M 1 +ATOM 1252 C C . PHE M 1 82 ? 132.688 106.692 51.999 1.00 5.36 81 M 1 +ATOM 1253 O O . PHE M 1 82 ? 133.540 107.371 52.577 1.00 5.36 81 M 1 +ATOM 1254 C CB . PHE M 1 82 ? 132.521 108.111 49.933 1.00 5.36 81 M 1 +ATOM 1255 C CG . PHE M 1 82 ? 131.690 108.495 48.747 1.00 5.36 81 M 1 +ATOM 1256 C CD1 . PHE M 1 82 ? 131.427 107.575 47.748 1.00 5.36 81 M 1 +ATOM 1257 C CD2 . PHE M 1 82 ? 131.162 109.762 48.634 1.00 5.36 81 M 1 +ATOM 1258 C CE1 . PHE M 1 82 ? 130.659 107.920 46.658 1.00 5.36 81 M 1 +ATOM 1259 C CE2 . PHE M 1 82 ? 130.395 110.107 47.545 1.00 5.36 81 M 1 +ATOM 1260 C CZ . PHE M 1 82 ? 130.144 109.187 46.560 1.00 5.36 81 M 1 +ATOM 1261 H H . PHE M 1 82 ? 131.185 108.757 52.213 1.00 5.36 81 M 1 +ATOM 1262 H HA . PHE M 1 82 ? 131.278 106.615 50.526 1.00 5.36 81 M 1 +ATOM 1263 H HB2 . PHE M 1 82 ? 132.867 108.921 50.338 1.00 5.36 81 M 1 +ATOM 1264 H HB3 . PHE M 1 82 ? 133.258 107.563 49.620 1.00 5.36 81 M 1 +ATOM 1265 H HD1 . PHE M 1 82 ? 131.775 106.715 47.806 1.00 5.36 81 M 1 +ATOM 1266 H HD2 . PHE M 1 82 ? 131.328 110.393 49.297 1.00 5.36 81 M 1 +ATOM 1267 H HE1 . PHE M 1 82 ? 130.491 107.296 45.990 1.00 5.36 81 M 1 +ATOM 1268 H HE2 . PHE M 1 82 ? 130.045 110.966 47.479 1.00 5.36 81 M 1 +ATOM 1269 H HZ . PHE M 1 82 ? 129.627 109.423 45.824 1.00 5.36 81 M 1 +ATOM 1270 N N . LEU M 1 83 ? 132.516 105.396 52.207 1.00 4.68 82 M 1 +ATOM 1271 C CA . LEU M 1 83 ? 133.289 104.642 53.174 1.00 4.68 82 M 1 +ATOM 1272 C C . LEU M 1 83 ? 134.622 104.239 52.562 1.00 4.68 82 M 1 +ATOM 1273 O O . LEU M 1 83 ? 134.746 104.069 51.348 1.00 4.68 82 M 1 +ATOM 1274 C CB . LEU M 1 83 ? 132.521 103.401 53.623 1.00 4.68 82 M 1 +ATOM 1275 C CG . LEU M 1 83 ? 131.190 103.642 54.335 1.00 4.68 82 M 1 +ATOM 1276 C CD1 . LEU M 1 83 ? 130.481 102.327 54.590 1.00 4.68 82 M 1 +ATOM 1277 C CD2 . LEU M 1 83 ? 131.353 104.418 55.627 1.00 4.68 82 M 1 +ATOM 1278 H H . LEU M 1 83 ? 131.943 104.919 51.778 1.00 4.68 82 M 1 +ATOM 1279 H HA . LEU M 1 83 ? 133.461 105.184 53.960 1.00 4.68 82 M 1 +ATOM 1280 H HB2 . LEU M 1 83 ? 132.339 102.858 52.840 1.00 4.68 82 M 1 +ATOM 1281 H HB3 . LEU M 1 83 ? 133.082 102.899 54.235 1.00 4.68 82 M 1 +ATOM 1282 H HG . LEU M 1 83 ? 130.625 104.170 53.750 1.00 4.68 82 M 1 +ATOM 1283 H HD11 . LEU M 1 83 ? 129.639 102.499 55.040 1.00 4.68 82 M 1 +ATOM 1284 H HD12 . LEU M 1 83 ? 130.314 101.894 53.738 1.00 4.68 82 M 1 +ATOM 1285 H HD13 . LEU M 1 83 ? 131.041 101.763 55.146 1.00 4.68 82 M 1 +ATOM 1286 H HD21 . LEU M 1 83 ? 130.496 104.434 56.082 1.00 4.68 82 M 1 +ATOM 1287 H HD22 . LEU M 1 83 ? 132.017 103.986 56.187 1.00 4.68 82 M 1 +ATOM 1288 H HD23 . LEU M 1 83 ? 131.630 105.324 55.420 1.00 4.68 82 M 1 +ATOM 1289 N N . GLN M 1 84 ? 135.620 104.103 53.420 1.00 4.98 83 M 1 +ATOM 1290 C CA . GLN M 1 84 ? 136.983 103.695 53.032 1.00 4.98 83 M 1 +ATOM 1291 C C . GLN M 1 84 ? 137.424 102.574 53.977 1.00 4.98 83 M 1 +ATOM 1292 O O . GLN M 1 84 ? 136.776 102.330 54.991 1.00 4.98 83 M 1 +ATOM 1293 C CB . GLN M 1 84 ? 137.940 104.889 53.070 1.00 4.98 83 M 1 +ATOM 1294 C CG . GLN M 1 84 ? 137.481 106.057 52.206 1.00 4.98 83 M 1 +ATOM 1295 C CD . GLN M 1 84 ? 137.435 105.714 50.736 1.00 4.98 83 M 1 +ATOM 1296 O OE1 . GLN M 1 84 ? 136.691 106.307 49.957 1.00 4.98 83 M 1 +ATOM 1297 N NE2 . GLN M 1 84 ? 138.254 104.763 50.333 1.00 4.98 83 M 1 +ATOM 1298 H H . GLN M 1 84 ? 135.530 104.287 54.308 1.00 4.98 83 M 1 +ATOM 1299 H HA . GLN M 1 84 ? 136.952 103.340 52.113 1.00 4.98 83 M 1 +ATOM 1300 H HB2 . GLN M 1 84 ? 138.027 105.190 53.998 1.00 4.98 83 M 1 +ATOM 1301 H HB3 . GLN M 1 84 ? 138.823 104.592 52.766 1.00 4.98 83 M 1 +ATOM 1302 H HG2 . GLN M 1 84 ? 136.587 106.339 52.496 1.00 4.98 83 M 1 +ATOM 1303 H HG3 . GLN M 1 84 ? 138.091 106.814 52.338 1.00 4.98 83 M 1 +ATOM 1304 H HE21 . GLN M 1 84 ? 138.896 104.475 50.869 1.00 4.98 83 M 1 +ATOM 1305 H HE22 . GLN M 1 84 ? 138.164 104.414 49.526 1.00 4.98 83 M 1 +ATOM 1306 N N . ASP M 1 85 ? 138.495 101.908 53.612 1.00 4.69 84 M 1 +ATOM 1307 C CA . ASP M 1 85 ? 139.059 100.852 54.433 1.00 4.69 84 M 1 +ATOM 1308 C C . ASP M 1 85 ? 139.338 101.384 55.830 1.00 4.69 84 M 1 +ATOM 1309 O O . ASP M 1 85 ? 139.747 102.533 56.005 1.00 4.69 84 M 1 +ATOM 1310 C CB . ASP M 1 85 ? 140.360 100.325 53.827 1.00 4.69 84 M 1 +ATOM 1311 C CG . ASP M 1 85 ? 140.159 99.642 52.493 1.00 4.69 84 M 1 +ATOM 1312 O OD1 . ASP M 1 85 ? 139.068 99.089 52.247 1.00 4.69 84 M 1 +ATOM 1313 O OD2 . ASP M 1 85 ? 141.111 99.651 51.689 1.00 4.69 84 M 1 +ATOM 1314 H H . ASP M 1 85 ? 138.954 102.090 52.908 1.00 4.69 84 M 1 +ATOM 1315 H HA . ASP M 1 85 ? 138.430 100.116 54.494 1.00 4.69 84 M 1 +ATOM 1316 H HB2 . ASP M 1 85 ? 140.983 101.059 53.707 1.00 4.69 84 M 1 +ATOM 1317 H HB3 . ASP M 1 85 ? 140.739 99.671 54.435 1.00 4.69 84 M 1 +ATOM 1318 N N . ILE M 1 86 ? 139.106 100.539 56.825 1.00 3.70 85 M 1 +ATOM 1319 C CA . ILE M 1 86 ? 139.459 100.834 58.207 1.00 3.70 85 M 1 +ATOM 1320 C C . ILE M 1 86 ? 140.807 100.167 58.441 1.00 3.70 85 M 1 +ATOM 1321 O O . ILE M 1 86 ? 140.902 98.937 58.481 1.00 3.70 85 M 1 +ATOM 1322 C CB . ILE M 1 86 ? 138.405 100.331 59.202 1.00 3.70 85 M 1 +ATOM 1323 C CG1 . ILE M 1 86 ? 137.025 100.939 58.911 1.00 3.70 85 M 1 +ATOM 1324 C CG2 . ILE M 1 86 ? 138.841 100.699 60.622 1.00 3.70 85 M 1 +ATOM 1325 C CD1 . ILE M 1 86 ? 135.886 100.255 59.630 1.00 3.70 85 M 1 +ATOM 1326 H H . ILE M 1 86 ? 138.741 99.767 56.719 1.00 3.70 85 M 1 +ATOM 1327 H HA . ILE M 1 86 ? 139.559 101.790 58.338 1.00 3.70 85 M 1 +ATOM 1328 H HB . ILE M 1 86 ? 138.343 99.365 59.135 1.00 3.70 85 M 1 +ATOM 1329 H HG12 . ILE M 1 86 ? 137.028 101.876 59.163 1.00 3.70 85 M 1 +ATOM 1330 H HG13 . ILE M 1 86 ? 136.822 100.870 57.965 1.00 3.70 85 M 1 +ATOM 1331 H HG21 . ILE M 1 86 ? 138.100 100.616 61.243 1.00 3.70 85 M 1 +ATOM 1332 H HG22 . ILE M 1 86 ? 139.559 100.111 60.906 1.00 3.70 85 M 1 +ATOM 1333 H HG23 . ILE M 1 86 ? 139.154 101.617 60.629 1.00 3.70 85 M 1 +ATOM 1334 H HD11 . ILE M 1 86 ? 135.049 100.509 59.210 1.00 3.70 85 M 1 +ATOM 1335 H HD12 . ILE M 1 86 ? 136.000 99.294 59.564 1.00 3.70 85 M 1 +ATOM 1336 H HD13 . ILE M 1 86 ? 135.882 100.509 60.566 1.00 3.70 85 M 1 +ATOM 1337 N N . LYS M 1 87 ? 141.853 100.969 58.576 1.00 4.77 86 M 1 +ATOM 1338 C CA . LYS M 1 87 ? 143.193 100.423 58.707 1.00 4.77 86 M 1 +ATOM 1339 C C . LYS M 1 87 ? 143.363 99.744 60.060 1.00 4.77 86 M 1 +ATOM 1340 O O . LYS M 1 87 ? 142.782 100.155 61.065 1.00 4.77 86 M 1 +ATOM 1341 C CB . LYS M 1 87 ? 144.243 101.521 58.530 1.00 30.00 86 M 1 +ATOM 1342 C CG . LYS M 1 87 ? 144.208 102.201 57.170 1.00 30.00 86 M 1 +ATOM 1343 C CD . LYS M 1 87 ? 144.545 101.226 56.055 1.00 30.00 86 M 1 +ATOM 1344 C CE . LYS M 1 87 ? 144.582 101.921 54.704 1.00 30.00 86 M 1 +ATOM 1345 N NZ . LYS M 1 87 ? 144.888 100.972 53.599 1.00 30.00 86 M 1 +ATOM 1346 H H . LYS M 1 87 ? 141.807 101.827 58.599 1.00 4.77 86 M 1 +ATOM 1347 H HA . LYS M 1 87 ? 143.330 99.755 58.017 1.00 4.77 86 M 1 +ATOM 1348 N N . LYS M 1 88 ? 144.175 98.693 60.077 1.00 4.97 87 M 1 +ATOM 1349 C CA . LYS M 1 88 ? 144.415 97.973 61.311 1.00 4.97 87 M 1 +ATOM 1350 C C . LYS M 1 88 ? 145.153 98.877 62.302 1.00 4.97 87 M 1 +ATOM 1351 O O . LYS M 1 88 ? 145.866 99.795 61.895 1.00 4.97 87 M 1 +ATOM 1352 C CB . LYS M 1 88 ? 145.223 96.704 61.055 1.00 4.97 87 M 1 +ATOM 1353 C CG . LYS M 1 88 ? 146.628 96.926 60.549 1.00 4.97 87 M 1 +ATOM 1354 C CD . LYS M 1 88 ? 147.328 95.606 60.302 1.00 4.97 87 M 1 +ATOM 1355 C CE . LYS M 1 88 ? 148.741 95.814 59.822 1.00 4.97 87 M 1 +ATOM 1356 N NZ . LYS M 1 88 ? 149.425 94.518 59.579 1.00 4.97 87 M 1 +ATOM 1357 H H . LYS M 1 88 ? 144.595 98.383 59.393 1.00 4.97 87 M 1 +ATOM 1358 H HA . LYS M 1 88 ? 143.546 97.705 61.648 1.00 4.97 87 M 1 +ATOM 1359 H HB2 . LYS M 1 88 ? 145.284 96.205 61.885 1.00 4.97 87 M 1 +ATOM 1360 H HB3 . LYS M 1 88 ? 144.759 96.168 60.393 1.00 4.97 87 M 1 +ATOM 1361 H HG2 . LYS M 1 88 ? 146.599 97.427 59.719 1.00 4.97 87 M 1 +ATOM 1362 H HG3 . LYS M 1 88 ? 147.152 97.407 61.209 1.00 4.97 87 M 1 +ATOM 1363 H HD2 . LYS M 1 88 ? 147.360 95.100 61.129 1.00 4.97 87 M 1 +ATOM 1364 H HD3 . LYS M 1 88 ? 146.855 95.105 59.619 1.00 4.97 87 M 1 +ATOM 1365 H HE2 . LYS M 1 88 ? 148.727 96.320 58.995 1.00 4.97 87 M 1 +ATOM 1366 H HE3 . LYS M 1 88 ? 149.236 96.296 60.503 1.00 4.97 87 M 1 +ATOM 1367 H HZ1 . LYS M 1 88 ? 150.258 94.655 59.296 1.00 4.97 87 M 1 +ATOM 1368 H HZ2 . LYS M 1 88 ? 149.448 94.051 60.337 1.00 4.97 87 M 1 +ATOM 1369 H HZ3 . LYS M 1 88 ? 148.985 94.051 58.963 1.00 4.97 87 M 1 +ATOM 1370 N N . PRO M 1 89 ? 145.005 98.637 63.607 1.00 4.65 88 M 1 +ATOM 1371 C CA . PRO M 1 89 ? 145.751 99.442 64.578 1.00 4.65 88 M 1 +ATOM 1372 C C . PRO M 1 89 ? 147.253 99.252 64.431 1.00 4.65 88 M 1 +ATOM 1373 O O . PRO M 1 89 ? 147.727 98.300 63.811 1.00 4.65 88 M 1 +ATOM 1374 C CB . PRO M 1 89 ? 145.249 98.925 65.928 1.00 4.65 88 M 1 +ATOM 1375 C CG . PRO M 1 89 ? 143.930 98.331 65.641 1.00 4.65 88 M 1 +ATOM 1376 C CD . PRO M 1 89 ? 144.058 97.737 64.286 1.00 4.65 88 M 1 +ATOM 1377 H HA . PRO M 1 89 ? 145.536 100.384 64.490 1.00 4.65 88 M 1 +ATOM 1378 H HB2 . PRO M 1 89 ? 145.858 98.253 66.272 1.00 4.65 88 M 1 +ATOM 1379 H HB3 . PRO M 1 89 ? 145.173 99.666 66.549 1.00 4.65 88 M 1 +ATOM 1380 H HG2 . PRO M 1 89 ? 143.743 97.634 66.289 1.00 4.65 88 M 1 +ATOM 1381 H HG3 . PRO M 1 89 ? 143.239 99.011 65.663 1.00 4.65 88 M 1 +ATOM 1382 H HD2 . PRO M 1 89 ? 144.416 96.837 64.330 1.00 4.65 88 M 1 +ATOM 1383 H HD3 . PRO M 1 89 ? 143.192 97.751 63.850 1.00 4.65 88 M 1 +ATOM 1384 N N . ASP M 1 90 ? 148.000 100.181 65.028 1.00 6.42 89 M 1 +ATOM 1385 C CA . ASP M 1 90 ? 149.444 100.220 64.829 1.00 6.42 89 M 1 +ATOM 1386 C C . ASP M 1 90 ? 150.160 99.064 65.521 1.00 6.42 89 M 1 +ATOM 1387 O O . ASP M 1 90 ? 151.321 98.786 65.205 1.00 6.42 89 M 1 +ATOM 1388 C CB . ASP M 1 90 ? 150.000 101.563 65.307 1.00 6.42 89 M 1 +ATOM 1389 C CG . ASP M 1 90 ? 149.765 101.813 66.789 1.00 6.42 89 M 1 +ATOM 1390 O OD1 . ASP M 1 90 ? 149.098 100.993 67.452 1.00 6.42 89 M 1 +ATOM 1391 O OD2 . ASP M 1 90 ? 150.256 102.842 67.298 1.00 6.42 89 M 1 +ATOM 1392 H H . ASP M 1 90 ? 147.692 100.794 65.546 1.00 6.42 89 M 1 +ATOM 1393 H HA . ASP M 1 90 ? 149.632 100.154 63.880 1.00 6.42 89 M 1 +ATOM 1394 H HB2 . ASP M 1 90 ? 150.954 101.594 65.135 1.00 6.42 89 M 1 +ATOM 1395 H HB3 . ASP M 1 90 ? 149.555 102.273 64.818 1.00 6.42 89 M 1 +ATOM 1396 N N . ARG M 1 91 ? 149.525 98.437 66.501 1.00 6.46 90 M 1 +ATOM 1397 C CA . ARG M 1 91 ? 150.159 97.302 67.210 1.00 6.46 90 M 1 +ATOM 1398 C C . ARG M 1 91 ? 149.116 96.345 67.771 1.00 6.46 90 M 1 +ATOM 1399 O O . ARG M 1 91 ? 147.959 96.741 67.965 1.00 6.46 90 M 1 +ATOM 1400 C CB . ARG M 1 91 ? 151.033 97.810 68.360 1.00 6.46 90 M 1 +ATOM 1401 C CG . ARG M 1 91 ? 150.288 98.636 69.392 1.00 6.46 90 M 1 +ATOM 1402 C CD . ARG M 1 91 ? 151.196 99.661 70.045 1.00 6.46 90 M 1 +ATOM 1403 N NE . ARG M 1 91 ? 152.000 99.066 71.096 1.00 6.46 90 M 1 +ATOM 1404 C CZ . ARG M 1 91 ? 152.762 99.746 71.952 1.00 6.46 90 M 1 +ATOM 1405 N NH1 . ARG M 1 91 ? 152.826 101.065 71.888 1.00 6.46 90 M 1 +ATOM 1406 N NH2 . ARG M 1 91 ? 153.443 99.097 72.877 1.00 6.46 90 M 1 +ATOM 1407 H H . ARG M 1 91 ? 148.725 98.709 66.841 1.00 6.46 90 M 1 +ATOM 1408 H HA . ARG M 1 91 ? 150.726 96.813 66.571 1.00 6.46 90 M 1 +ATOM 1409 H HB2 . ARG M 1 91 ? 151.438 97.038 68.808 1.00 6.46 90 M 1 +ATOM 1410 H HB3 . ARG M 1 91 ? 151.757 98.353 67.985 1.00 6.46 90 M 1 +ATOM 1411 H HG2 . ARG M 1 91 ? 149.539 99.099 68.960 1.00 6.46 90 M 1 +ATOM 1412 H HG3 . ARG M 1 91 ? 149.923 98.043 70.083 1.00 6.46 90 M 1 +ATOM 1413 H HD2 . ARG M 1 91 ? 151.787 100.051 69.366 1.00 6.46 90 M 1 +ATOM 1414 H HD3 . ARG M 1 91 ? 150.651 100.384 70.423 1.00 6.46 90 M 1 +ATOM 1415 H HE . ARG M 1 91 ? 151.982 98.198 71.177 1.00 6.46 90 M 1 +ATOM 1416 H HH11 . ARG M 1 91 ? 152.368 101.496 71.274 1.00 6.46 90 M 1 +ATOM 1417 H HH12 . ARG M 1 91 ? 153.329 101.507 72.457 1.00 6.46 90 M 1 +ATOM 1418 H HH21 . ARG M 1 91 ? 153.398 98.218 72.919 1.00 6.46 90 M 1 +ATOM 1419 H HH22 . ARG M 1 91 ? 153.948 99.544 73.444 1.00 6.46 90 M 1 +ATOM 1420 N N . ASP M 1 92 ? 149.508 95.111 68.064 1.00 7.52 91 M 1 +ATOM 1421 C CA . ASP M 1 92 ? 148.594 94.135 68.707 1.00 7.52 91 M 1 +ATOM 1422 C C . ASP M 1 92 ? 149.003 94.016 70.176 1.00 7.52 91 M 1 +ATOM 1423 O O . ASP M 1 92 ? 148.133 93.680 70.973 1.00 7.52 91 M 1 +ATOM 1424 C CB . ASP M 1 92 ? 148.599 92.781 68.004 1.00 7.52 91 M 1 +ATOM 1425 C CG . ASP M 1 92 ? 149.977 92.479 67.459 1.00 7.52 91 M 1 +ATOM 1426 O OD1 . ASP M 1 92 ? 150.923 92.558 68.246 1.00 7.52 91 M 1 +ATOM 1427 O OD2 . ASP M 1 92 ? 150.093 92.229 66.240 1.00 7.52 91 M 1 +ATOM 1428 H H . ASP M 1 92 ? 150.363 94.825 67.949 1.00 7.52 91 M 1 +ATOM 1429 H HA . ASP M 1 92 ? 147.678 94.499 68.666 1.00 7.52 91 M 1 +ATOM 1430 H HB2 . ASP M 1 92 ? 148.342 92.079 68.636 1.00 7.52 91 M 1 +ATOM 1431 H HB3 . ASP M 1 92 ? 147.956 92.789 67.266 1.00 7.52 91 M 1 +ATOM 1432 N N . ASP M 1 93 ? 150.256 94.338 70.525 1.00 6.76 92 M 1 +ATOM 1433 C CA . ASP M 1 93 ? 150.729 94.272 71.901 1.00 6.76 92 M 1 +ATOM 1434 C C . ASP M 1 93 ? 150.848 95.690 72.446 1.00 6.76 92 M 1 +ATOM 1435 O O . ASP M 1 93 ? 151.701 96.460 71.996 1.00 6.76 92 M 1 +ATOM 1436 C CB . ASP M 1 93 ? 152.072 93.541 71.962 1.00 6.76 92 M 1 +ATOM 1437 C CG . ASP M 1 93 ? 152.556 93.294 73.379 1.00 6.76 92 M 1 +ATOM 1438 O OD1 . ASP M 1 93 ? 151.901 93.735 74.341 1.00 6.76 92 M 1 +ATOM 1439 O OD2 . ASP M 1 93 ? 153.612 92.646 73.529 1.00 6.76 92 M 1 +ATOM 1440 H H . ASP M 1 93 ? 150.867 94.598 69.979 1.00 6.76 92 M 1 +ATOM 1441 H HA . ASP M 1 93 ? 150.095 93.777 72.443 1.00 6.76 92 M 1 +ATOM 1442 H HB2 . ASP M 1 93 ? 151.972 92.679 71.528 1.00 6.76 92 M 1 +ATOM 1443 H HB3 . ASP M 1 93 ? 152.743 94.066 71.499 1.00 6.76 92 M 1 +ATOM 1444 N N . TRP M 1 94 ? 149.999 96.024 73.413 1.00 4.79 93 M 1 +ATOM 1445 C CA . TRP M 1 94 ? 149.951 97.357 74.005 1.00 4.79 93 M 1 +ATOM 1446 C C . TRP M 1 94 ? 150.818 97.490 75.257 1.00 4.79 93 M 1 +ATOM 1447 O O . TRP M 1 94 ? 150.931 98.589 75.800 1.00 4.79 93 M 1 +ATOM 1448 C CB . TRP M 1 94 ? 148.495 97.714 74.308 1.00 4.79 93 M 1 +ATOM 1449 C CG . TRP M 1 94 ? 147.719 97.784 73.062 1.00 4.79 93 M 1 +ATOM 1450 C CD1 . TRP M 1 94 ? 146.925 96.817 72.544 1.00 4.79 93 M 1 +ATOM 1451 C CD2 . TRP M 1 94 ? 147.702 98.862 72.130 1.00 4.79 93 M 1 +ATOM 1452 N NE1 . TRP M 1 94 ? 146.394 97.228 71.353 1.00 4.79 93 M 1 +ATOM 1453 C CE2 . TRP M 1 94 ? 146.862 98.483 71.073 1.00 4.79 93 M 1 +ATOM 1454 C CE3 . TRP M 1 94 ? 148.312 100.113 72.090 1.00 4.79 93 M 1 +ATOM 1455 C CZ2 . TRP M 1 94 ? 146.612 99.311 69.994 1.00 4.79 93 M 1 +ATOM 1456 C CZ3 . TRP M 1 94 ? 148.066 100.930 71.015 1.00 4.79 93 M 1 +ATOM 1457 C CH2 . TRP M 1 94 ? 147.222 100.529 69.984 1.00 4.79 93 M 1 +ATOM 1458 H H . TRP M 1 94 ? 149.420 95.479 73.741 1.00 4.79 93 M 1 +ATOM 1459 H HA . TRP M 1 94 ? 150.269 98.003 73.356 1.00 4.79 93 M 1 +ATOM 1460 H HB2 . TRP M 1 94 ? 148.102 97.033 74.876 1.00 4.79 93 M 1 +ATOM 1461 H HB3 . TRP M 1 94 ? 148.451 98.582 74.739 1.00 4.79 93 M 1 +ATOM 1462 H HD1 . TRP M 1 94 ? 146.766 95.992 72.944 1.00 4.79 93 M 1 +ATOM 1463 H HE1 . TRP M 1 94 ? 145.858 96.772 70.859 1.00 4.79 93 M 1 +ATOM 1464 H HE3 . TRP M 1 94 ? 148.878 100.387 72.775 1.00 4.79 93 M 1 +ATOM 1465 H HZ2 . TRP M 1 94 ? 146.050 99.045 69.303 1.00 4.79 93 M 1 +ATOM 1466 H HZ3 . TRP M 1 94 ? 148.466 101.769 70.978 1.00 4.79 93 M 1 +ATOM 1467 H HH2 . TRP M 1 94 ? 147.074 101.107 69.270 1.00 4.79 93 M 1 +ATOM 1468 N N . GLU M 1 95 ? 151.384 96.385 75.738 1.00 6.28 94 M 1 +ATOM 1469 C CA . GLU M 1 95 ? 152.486 96.279 76.696 1.00 6.28 94 M 1 +ATOM 1470 C C . GLU M 1 95 ? 152.172 96.600 78.151 1.00 6.28 94 M 1 +ATOM 1471 O O . GLU M 1 95 ? 152.860 96.079 79.032 1.00 6.28 94 M 1 +ATOM 1472 C CB . GLU M 1 95 ? 153.654 97.191 76.296 1.00 6.28 94 M 1 +ATOM 1473 C CG . GLU M 1 95 ? 154.410 96.800 75.049 1.00 6.28 94 M 1 +ATOM 1474 C CD . GLU M 1 95 ? 155.561 97.748 74.768 1.00 6.28 94 M 1 +ATOM 1475 O OE1 . GLU M 1 95 ? 155.686 98.769 75.478 1.00 6.28 94 M 1 +ATOM 1476 O OE2 . GLU M 1 95 ? 156.334 97.480 73.823 1.00 6.28 94 M 1 +ATOM 1477 H H . GLU M 1 95 ? 151.108 95.601 75.516 1.00 6.28 94 M 1 +ATOM 1478 H HA . GLU M 1 95 ? 152.814 95.366 76.679 1.00 6.28 94 M 1 +ATOM 1479 H HB2 . GLU M 1 95 ? 153.340 98.102 76.181 1.00 6.28 94 M 1 +ATOM 1480 H HB3 . GLU M 1 95 ? 154.302 97.181 77.018 1.00 6.28 94 M 1 +ATOM 1481 H HG2 . GLU M 1 95 ? 154.776 95.909 75.164 1.00 6.28 94 M 1 +ATOM 1482 H HG3 . GLU M 1 95 ? 153.808 96.816 74.289 1.00 6.28 94 M 1 +ATOM 1483 N N . SER M 1 96 ? 151.102 97.336 78.433 1.00 4.95 95 M 1 +ATOM 1484 C CA . SER M 1 96 ? 150.767 97.707 79.804 1.00 4.95 95 M 1 +ATOM 1485 C C . SER M 1 96 ? 149.509 98.565 79.794 1.00 4.95 95 M 1 +ATOM 1486 O O . SER M 1 96 ? 149.121 99.130 78.771 1.00 4.95 95 M 1 +ATOM 1487 C CB . SER M 1 96 ? 151.907 98.467 80.503 1.00 4.95 95 M 1 +ATOM 1488 O OG . SER M 1 96 ? 152.134 99.722 79.901 1.00 4.95 95 M 1 +ATOM 1489 H H . SER M 1 96 ? 150.553 97.645 77.848 1.00 4.95 95 M 1 +ATOM 1490 H HA . SER M 1 96 ? 150.583 96.900 80.310 1.00 4.95 95 M 1 +ATOM 1491 H HB2 . SER M 1 96 ? 151.648 98.620 81.425 1.00 4.95 95 M 1 +ATOM 1492 H HB3 . SER M 1 96 ? 152.735 97.962 80.503 1.00 4.95 95 M 1 +ATOM 1493 H HG . SER M 1 96 ? 152.947 99.803 79.704 1.00 4.95 95 M 1 +ATOM 1494 N N . GLY M 1 97 ? 148.886 98.664 80.967 1.00 4.08 96 M 1 +ATOM 1495 C CA . GLY M 1 97 ? 147.786 99.597 81.142 1.00 4.08 96 M 1 +ATOM 1496 C C . GLY M 1 97 ? 148.198 101.035 80.900 1.00 4.08 96 M 1 +ATOM 1497 O O . GLY M 1 97 ? 147.507 101.781 80.204 1.00 4.08 96 M 1 +ATOM 1498 H H . GLY M 1 97 ? 149.080 98.206 81.669 1.00 4.08 96 M 1 +ATOM 1499 H HA2 . GLY M 1 97 ? 147.044 99.362 80.564 1.00 4.08 96 M 1 +ATOM 1500 H HA3 . GLY M 1 97 ? 147.481 99.547 82.062 1.00 4.08 96 M 1 +ATOM 1501 N N . LEU M 1 98 ? 149.324 101.444 81.487 1.00 4.35 97 M 1 +ATOM 1502 C CA . LEU M 1 98 ? 149.821 102.805 81.323 1.00 4.35 97 M 1 +ATOM 1503 C C . LEU M 1 98 ? 150.076 103.129 79.861 1.00 4.35 97 M 1 +ATOM 1504 O O . LEU M 1 98 ? 149.678 104.190 79.371 1.00 4.35 97 M 1 +ATOM 1505 C CB . LEU M 1 98 ? 151.098 102.993 82.141 1.00 4.35 97 M 1 +ATOM 1506 C CG . LEU M 1 98 ? 151.816 104.337 82.014 1.00 4.35 97 M 1 +ATOM 1507 C CD1 . LEU M 1 98 ? 150.932 105.487 82.425 1.00 4.35 97 M 1 +ATOM 1508 C CD2 . LEU M 1 98 ? 153.073 104.329 82.842 1.00 4.35 97 M 1 +ATOM 1509 H H . LEU M 1 98 ? 149.820 100.947 81.983 1.00 4.35 97 M 1 +ATOM 1510 H HA . LEU M 1 98 ? 149.157 103.427 81.660 1.00 4.35 97 M 1 +ATOM 1511 H HB2 . LEU M 1 98 ? 150.874 102.876 83.078 1.00 4.35 97 M 1 +ATOM 1512 H HB3 . LEU M 1 98 ? 151.731 102.304 81.884 1.00 4.35 97 M 1 +ATOM 1513 H HG . LEU M 1 98 ? 152.095 104.478 81.096 1.00 4.35 97 M 1 +ATOM 1514 H HD11 . LEU M 1 98 ? 151.461 106.299 82.385 1.00 4.35 97 M 1 +ATOM 1515 H HD12 . LEU M 1 98 ? 150.183 105.557 81.812 1.00 4.35 97 M 1 +ATOM 1516 H HD13 . LEU M 1 98 ? 150.611 105.342 83.329 1.00 4.35 97 M 1 +ATOM 1517 H HD21 . LEU M 1 98 ? 153.583 105.131 82.647 1.00 4.35 97 M 1 +ATOM 1518 H HD22 . LEU M 1 98 ? 152.832 104.310 83.781 1.00 4.35 97 M 1 +ATOM 1519 H HD23 . LEU M 1 98 ? 153.598 103.545 82.616 1.00 4.35 97 M 1 +ATOM 1520 N N . ASN M 1 99 ? 150.760 102.206 79.194 1.00 4.75 98 M 1 +ATOM 1521 C CA . ASN M 1 99 ? 151.113 102.418 77.769 1.00 4.75 98 M 1 +ATOM 1522 C C . ASN M 1 99 ? 149.818 102.556 76.966 1.00 4.75 98 M 1 +ATOM 1523 O O . ASN M 1 99 ? 149.706 103.465 76.165 1.00 4.75 98 M 1 +ATOM 1524 C CB . ASN M 1 99 ? 151.972 101.305 77.182 1.00 4.75 98 M 1 +ATOM 1525 C CG . ASN M 1 99 ? 152.324 101.638 75.750 1.00 4.75 98 M 1 +ATOM 1526 O OD1 . ASN M 1 99 ? 152.887 102.690 75.506 1.00 4.75 98 M 1 +ATOM 1527 N ND2 . ASN M 1 99 ? 152.012 100.765 74.813 1.00 4.75 98 M 1 +ATOM 1528 H H . ASN M 1 99 ? 150.924 101.371 79.514 1.00 4.75 98 M 1 +ATOM 1529 H HA . ASN M 1 99 ? 151.621 103.260 77.698 1.00 4.75 98 M 1 +ATOM 1530 H HB2 . ASN M 1 99 ? 152.791 101.209 77.709 1.00 4.75 98 M 1 +ATOM 1531 H HB3 . ASN M 1 99 ? 151.479 100.460 77.212 1.00 4.75 98 M 1 +ATOM 1532 H HD21 . ASN M 1 99 ? 152.223 100.926 73.970 1.00 4.75 98 M 1 +ATOM 1533 H HD22 . ASN M 1 99 ? 151.592 100.017 75.028 1.00 4.75 98 M 1 +ATOM 1534 N N . ALA M 1 100 ? 148.838 101.713 77.239 1.00 3.93 99 M 1 +ATOM 1535 C CA . ALA M 1 100 ? 147.559 101.755 76.541 1.00 3.93 99 M 1 +ATOM 1536 C C . ALA M 1 100 ? 146.852 103.084 76.778 1.00 3.93 99 M 1 +ATOM 1537 O O . ALA M 1 100 ? 146.297 103.679 75.850 1.00 3.93 99 M 1 +ATOM 1538 C CB . ALA M 1 100 ? 146.675 100.583 76.973 1.00 3.93 99 M 1 +ATOM 1539 H H . ALA M 1 100 ? 148.889 101.110 77.850 1.00 3.93 99 M 1 +ATOM 1540 H HA . ALA M 1 100 ? 147.721 101.661 75.589 1.00 3.93 99 M 1 +ATOM 1541 H HB1 . ALA M 1 100 ? 145.808 100.671 76.547 1.00 3.93 99 M 1 +ATOM 1542 H HB2 . ALA M 1 100 ? 147.087 99.751 76.692 1.00 3.93 99 M 1 +ATOM 1543 H HB3 . ALA M 1 100 ? 146.559 100.585 77.936 1.00 3.93 99 M 1 +ATOM 1544 N N . MET M 1 101 ? 146.875 103.575 78.018 1.00 3.66 100 M 1 +ATOM 1545 C CA . MET M 1 101 ? 146.250 104.859 78.321 1.00 3.66 100 M 1 +ATOM 1546 C C . MET M 1 101 ? 146.962 106.005 77.611 1.00 3.66 100 M 1 +ATOM 1547 O O . MET M 1 101 ? 146.317 106.935 77.120 1.00 3.66 100 M 1 +ATOM 1548 C CB . MET M 1 101 ? 146.231 105.092 79.833 1.00 3.66 100 M 1 +ATOM 1549 C CG . MET M 1 101 ? 145.292 104.199 80.617 1.00 3.66 100 M 1 +ATOM 1550 S SD . MET M 1 101 ? 143.559 104.519 80.234 1.00 3.66 100 M 1 +ATOM 1551 C CE . MET M 1 101 ? 142.752 103.227 81.176 1.00 3.66 100 M 1 +ATOM 1552 H H . MET M 1 101 ? 147.250 103.190 78.690 1.00 3.66 100 M 1 +ATOM 1553 H HA . MET M 1 101 ? 145.330 104.834 78.013 1.00 3.66 100 M 1 +ATOM 1554 H HB2 . MET M 1 101 ? 147.126 104.958 80.182 1.00 3.66 100 M 1 +ATOM 1555 H HB3 . MET M 1 101 ? 145.954 106.006 80.000 1.00 3.66 100 M 1 +ATOM 1556 H HG2 . MET M 1 101 ? 145.479 103.273 80.397 1.00 3.66 100 M 1 +ATOM 1557 H HG3 . MET M 1 101 ? 145.427 104.340 81.567 1.00 3.66 100 M 1 +ATOM 1558 H HE1 . MET M 1 101 ? 141.803 103.421 81.221 1.00 3.66 100 M 1 +ATOM 1559 H HE2 . MET M 1 101 ? 142.900 102.372 80.743 1.00 3.66 100 M 1 +ATOM 1560 H HE3 . MET M 1 101 ? 143.121 103.207 82.073 1.00 3.66 100 M 1 +ATOM 1561 N N . GLU M 1 102 ? 148.293 105.953 77.550 1.00 4.25 101 M 1 +ATOM 1562 C CA . GLU M 1 102 ? 149.059 106.982 76.855 1.00 4.25 101 M 1 +ATOM 1563 C C . GLU M 1 102 ? 148.734 106.993 75.366 1.00 4.25 101 M 1 +ATOM 1564 O O . GLU M 1 102 ? 148.533 108.059 74.766 1.00 4.25 101 M 1 +ATOM 1565 C CB . GLU M 1 102 ? 150.554 106.754 77.092 1.00 4.25 101 M 1 +ATOM 1566 C CG . GLU M 1 102 ? 151.008 107.015 78.528 1.00 4.25 101 M 1 +ATOM 1567 C CD . GLU M 1 102 ? 152.467 106.671 78.766 1.00 4.25 101 M 1 +ATOM 1568 O OE1 . GLU M 1 102 ? 153.102 106.091 77.863 1.00 4.25 101 M 1 +ATOM 1569 O OE2 . GLU M 1 102 ? 152.977 106.981 79.862 1.00 4.25 101 M 1 +ATOM 1570 H H . GLU M 1 102 ? 148.774 105.332 77.901 1.00 4.25 101 M 1 +ATOM 1571 H HA . GLU M 1 102 ? 148.837 107.850 77.227 1.00 4.25 101 M 1 +ATOM 1572 H HB2 . GLU M 1 102 ? 150.781 105.839 76.862 1.00 4.25 101 M 1 +ATOM 1573 H HB3 . GLU M 1 102 ? 151.049 107.359 76.518 1.00 4.25 101 M 1 +ATOM 1574 H HG2 . GLU M 1 102 ? 150.901 107.961 78.712 1.00 4.25 101 M 1 +ATOM 1575 H HG3 . GLU M 1 102 ? 150.471 106.507 79.156 1.00 4.25 101 M 1 +ATOM 1576 N N . CYS M 1 103 ? 148.657 105.810 74.757 1.00 4.27 102 M 1 +ATOM 1577 C CA . CYS M 1 103 ? 148.305 105.715 73.345 1.00 4.27 102 M 1 +ATOM 1578 C C . CYS M 1 103 ? 146.880 106.192 73.098 1.00 4.27 102 M 1 +ATOM 1579 O O . CYS M 1 103 ? 146.597 106.836 72.083 1.00 4.27 102 M 1 +ATOM 1580 C CB . CYS M 1 103 ? 148.489 104.281 72.869 1.00 4.27 102 M 1 +ATOM 1581 S SG . CYS M 1 103 ? 150.209 103.771 72.899 1.00 4.27 102 M 1 +ATOM 1582 H H . CYS M 1 103 ? 148.795 105.055 75.144 1.00 4.27 102 M 1 +ATOM 1583 H HA . CYS M 1 103 ? 148.905 106.272 72.824 1.00 4.27 102 M 1 +ATOM 1584 H HB2 . CYS M 1 103 ? 147.991 103.688 73.453 1.00 4.27 102 M 1 +ATOM 1585 H HB3 . CYS M 1 103 ? 148.161 104.199 71.960 1.00 4.27 102 M 1 +ATOM 1586 H HG . CYS M 1 103 ? 150.444 103.312 73.983 1.00 4.27 102 M 1 +ATOM 1587 N N . ALA M 1 104 ? 145.972 105.900 74.029 1.00 3.59 103 M 1 +ATOM 1588 C CA . ALA M 1 104 ? 144.597 106.367 73.899 1.00 3.59 103 M 1 +ATOM 1589 C C . ALA M 1 104 ? 144.523 107.884 74.011 1.00 3.59 103 M 1 +ATOM 1590 O O . ALA M 1 104 ? 143.741 108.529 73.307 1.00 3.59 103 M 1 +ATOM 1591 C CB . ALA M 1 104 ? 143.717 105.700 74.952 1.00 3.59 103 M 1 +ATOM 1592 H H . ALA M 1 104 ? 146.139 105.455 74.746 1.00 3.59 103 M 1 +ATOM 1593 H HA . ALA M 1 104 ? 144.259 106.114 73.026 1.00 3.59 103 M 1 +ATOM 1594 H HB1 . ALA M 1 104 ? 142.844 106.122 74.943 1.00 3.59 103 M 1 +ATOM 1595 H HB2 . ALA M 1 104 ? 143.625 104.758 74.741 1.00 3.59 103 M 1 +ATOM 1596 H HB3 . ALA M 1 104 ? 144.128 105.802 75.825 1.00 3.59 103 M 1 +ATOM 1597 N N . LEU M 1 105 ? 145.337 108.468 74.889 1.00 3.78 104 M 1 +ATOM 1598 C CA . LEU M 1 105 ? 145.427 109.922 74.991 1.00 3.78 104 M 1 +ATOM 1599 C C . LEU M 1 105 ? 145.897 110.530 73.678 1.00 3.78 104 M 1 +ATOM 1600 O O . LEU M 1 105 ? 145.317 111.505 73.182 1.00 3.78 104 M 1 +ATOM 1601 C CB . LEU M 1 105 ? 146.367 110.302 76.139 1.00 3.78 104 M 1 +ATOM 1602 C CG . LEU M 1 105 ? 146.670 111.778 76.392 1.00 3.78 104 M 1 +ATOM 1603 C CD1 . LEU M 1 105 ? 145.424 112.550 76.719 1.00 3.78 104 M 1 +ATOM 1604 C CD2 . LEU M 1 105 ? 147.682 111.933 77.520 1.00 3.78 104 M 1 +ATOM 1605 H H . LEU M 1 105 ? 145.854 108.045 75.430 1.00 3.78 104 M 1 +ATOM 1606 H HA . LEU M 1 105 ? 144.547 110.272 75.200 1.00 3.78 104 M 1 +ATOM 1607 H HB2 . LEU M 1 105 ? 145.973 109.969 76.960 1.00 3.78 104 M 1 +ATOM 1608 H HB3 . LEU M 1 105 ? 147.217 109.853 76.006 1.00 3.78 104 M 1 +ATOM 1609 H HG . LEU M 1 105 ? 147.066 112.161 75.594 1.00 3.78 104 M 1 +ATOM 1610 H HD11 . LEU M 1 105 ? 145.649 113.493 76.738 1.00 3.78 104 M 1 +ATOM 1611 H HD12 . LEU M 1 105 ? 144.751 112.394 76.038 1.00 3.78 104 M 1 +ATOM 1612 H HD13 . LEU M 1 105 ? 145.089 112.268 77.584 1.00 3.78 104 M 1 +ATOM 1613 H HD21 . LEU M 1 105 ? 147.677 112.852 77.830 1.00 3.78 104 M 1 +ATOM 1614 H HD22 . LEU M 1 105 ? 147.440 111.344 78.251 1.00 3.78 104 M 1 +ATOM 1615 H HD23 . LEU M 1 105 ? 148.565 111.701 77.193 1.00 3.78 104 M 1 +ATOM 1616 N N . HIS M 1 106 ? 146.934 109.922 73.114 1.00 4.28 105 M 1 +ATOM 1617 C CA . HIS M 1 106 ? 147.520 110.383 71.834 1.00 4.28 105 M 1 +ATOM 1618 C C . HIS M 1 106 ? 146.438 110.299 70.751 1.00 4.28 105 M 1 +ATOM 1619 O O . HIS M 1 106 ? 146.286 111.244 70.023 1.00 4.28 105 M 1 +ATOM 1620 C CB . HIS M 1 106 ? 148.773 109.591 71.459 1.00 4.28 105 M 1 +ATOM 1621 C CG . HIS M 1 106 ? 149.411 110.133 70.226 1.00 4.28 105 M 1 +ATOM 1622 N ND1 . HIS M 1 106 ? 150.540 110.923 70.253 1.00 4.28 105 M 1 +ATOM 1623 C CD2 . HIS M 1 106 ? 149.036 110.055 68.935 1.00 4.28 105 M 1 +ATOM 1624 C CE1 . HIS M 1 106 ? 150.858 111.276 69.023 1.00 4.28 105 M 1 +ATOM 1625 N NE2 . HIS M 1 106 ? 149.945 110.764 68.197 1.00 4.28 105 M 1 +ATOM 1626 H H . HIS M 1 106 ? 147.356 109.193 73.463 1.00 4.28 105 M 1 +ATOM 1627 H HA . HIS M 1 106 ? 147.772 111.331 71.941 1.00 4.28 105 M 1 +ATOM 1628 H HB2 . HIS M 1 106 ? 149.416 109.629 72.202 1.00 4.28 105 M 1 +ATOM 1629 H HB3 . HIS M 1 106 ? 148.531 108.650 71.313 1.00 4.28 105 M 1 +ATOM 1630 H HD2 . HIS M 1 106 ? 148.293 109.590 68.597 1.00 4.28 105 M 1 +ATOM 1631 H HE1 . HIS M 1 106 ? 151.595 111.806 68.774 1.00 4.28 105 M 1 +ATOM 1632 H HE2 . HIS M 1 106 ? 149.939 110.854 67.325 1.00 4.28 105 M 1 +ATOM 1633 N N . LEU M 1 107 ? 145.669 109.220 70.709 1.00 3.81 106 M 1 +ATOM 1634 C CA . LEU M 1 107 ? 144.621 109.008 69.718 1.00 3.81 106 M 1 +ATOM 1635 C C . LEU M 1 107 ? 143.511 110.042 69.856 1.00 3.81 106 M 1 +ATOM 1636 O O . LEU M 1 107 ? 143.052 110.622 68.865 1.00 3.81 106 M 1 +ATOM 1637 C CB . LEU M 1 107 ? 144.061 107.593 69.870 1.00 3.81 106 M 1 +ATOM 1638 C CG . LEU M 1 107 ? 142.912 107.169 68.954 1.00 3.81 106 M 1 +ATOM 1639 C CD1 . LEU M 1 107 ? 143.350 107.247 67.519 1.00 3.81 106 M 1 +ATOM 1640 C CD2 . LEU M 1 107 ? 142.426 105.770 69.294 1.00 3.81 106 M 1 +ATOM 1641 H H . LEU M 1 107 ? 145.758 108.572 71.268 1.00 3.81 106 M 1 +ATOM 1642 H HA . LEU M 1 107 ? 145.012 109.084 68.834 1.00 3.81 106 M 1 +ATOM 1643 H HB2 . LEU M 1 107 ? 144.787 106.968 69.716 1.00 3.81 106 M 1 +ATOM 1644 H HB3 . LEU M 1 107 ? 143.748 107.493 70.783 1.00 3.81 106 M 1 +ATOM 1645 H HG . LEU M 1 107 ? 142.159 107.768 69.075 1.00 3.81 106 M 1 +ATOM 1646 H HD11 . LEU M 1 107 ? 142.668 106.841 66.962 1.00 3.81 106 M 1 +ATOM 1647 H HD12 . LEU M 1 107 ? 143.463 108.179 67.276 1.00 3.81 106 M 1 +ATOM 1648 H HD13 . LEU M 1 107 ? 144.193 106.777 67.423 1.00 3.81 106 M 1 +ATOM 1649 H HD21 . LEU M 1 107 ? 141.544 105.640 68.911 1.00 3.81 106 M 1 +ATOM 1650 H HD22 . LEU M 1 107 ? 143.047 105.123 68.923 1.00 3.81 106 M 1 +ATOM 1651 H HD23 . LEU M 1 107 ? 142.374 105.669 70.257 1.00 3.81 106 M 1 +ATOM 1652 N N . GLU M 1 108 ? 143.069 110.235 71.091 1.00 4.12 107 M 1 +ATOM 1653 C CA . GLU M 1 108 ? 141.969 111.176 71.413 1.00 4.12 107 M 1 +ATOM 1654 C C . GLU M 1 108 ? 142.399 112.588 70.991 1.00 4.12 107 M 1 +ATOM 1655 O O . GLU M 1 108 ? 141.596 113.279 70.406 1.00 4.12 107 M 1 +ATOM 1656 C CB . GLU M 1 108 ? 141.587 111.054 72.884 1.00 4.12 107 M 1 +ATOM 1657 C CG . GLU M 1 108 ? 140.923 109.727 73.206 1.00 4.12 107 M 1 +ATOM 1658 C CD . GLU M 1 108 ? 139.792 109.399 72.241 1.00 4.12 107 M 1 +ATOM 1659 O OE1 . GLU M 1 108 ? 138.811 110.143 72.219 1.00 4.12 107 M 1 +ATOM 1660 O OE2 . GLU M 1 108 ? 139.909 108.409 71.485 1.00 4.12 107 M 1 +ATOM 1661 H H . GLU M 1 108 ? 143.492 109.895 71.822 1.00 4.12 107 M 1 +ATOM 1662 H HA . GLU M 1 108 ? 141.187 110.921 70.871 1.00 4.12 107 M 1 +ATOM 1663 H HB2 . GLU M 1 108 ? 142.395 111.150 73.430 1.00 4.12 107 M 1 +ATOM 1664 H HB3 . GLU M 1 108 ? 140.975 111.784 73.114 1.00 4.12 107 M 1 +ATOM 1665 H HG2 . GLU M 1 108 ? 141.592 109.010 73.166 1.00 4.12 107 M 1 +ATOM 1666 H HG3 . GLU M 1 108 ? 140.564 109.755 74.118 1.00 4.12 107 M 1 +ATOM 1667 N N . LYS M 1 109 ? 143.643 112.984 71.226 1.00 4.42 108 M 1 +ATOM 1668 C CA . LYS M 1 109 ? 144.089 114.320 70.843 1.00 4.42 108 M 1 +ATOM 1669 C C . LYS M 1 109 ? 144.176 114.453 69.325 1.00 4.42 108 M 1 +ATOM 1670 O O . LYS M 1 109 ? 143.880 115.518 68.773 1.00 4.42 108 M 1 +ATOM 1671 C CB . LYS M 1 109 ? 145.424 114.669 71.504 1.00 4.42 108 M 1 +ATOM 1672 C CG . LYS M 1 109 ? 145.316 114.840 73.017 1.00 4.42 108 M 1 +ATOM 1673 C CD . LYS M 1 109 ? 146.618 115.261 73.686 1.00 4.42 108 M 1 +ATOM 1674 C CE . LYS M 1 109 ? 146.896 116.730 73.440 1.00 4.42 108 M 1 +ATOM 1675 N NZ . LYS M 1 109 ? 148.084 117.253 74.164 1.00 4.42 108 M 1 +ATOM 1676 H H . LYS M 1 109 ? 144.242 112.493 71.600 1.00 4.42 108 M 1 +ATOM 1677 H HA . LYS M 1 109 ? 143.439 114.968 71.158 1.00 4.42 108 M 1 +ATOM 1678 H HB2 . LYS M 1 109 ? 146.060 113.958 71.328 1.00 4.42 108 M 1 +ATOM 1679 H HB3 . LYS M 1 109 ? 145.752 115.499 71.124 1.00 4.42 108 M 1 +ATOM 1680 H HG2 . LYS M 1 109 ? 144.645 115.513 73.209 1.00 4.42 108 M 1 +ATOM 1681 H HG3 . LYS M 1 109 ? 145.041 114.001 73.418 1.00 4.42 108 M 1 +ATOM 1682 H HD2 . LYS M 1 109 ? 146.543 115.125 74.644 1.00 4.42 108 M 1 +ATOM 1683 H HD3 . LYS M 1 109 ? 147.358 114.745 73.330 1.00 4.42 108 M 1 +ATOM 1684 H HE2 . LYS M 1 109 ? 147.028 116.881 72.491 1.00 4.42 108 M 1 +ATOM 1685 H HE3 . LYS M 1 109 ? 146.130 117.236 73.754 1.00 4.42 108 M 1 +ATOM 1686 H HZ1 . LYS M 1 109 ? 147.963 118.112 74.361 1.00 4.42 108 M 1 +ATOM 1687 H HZ2 . LYS M 1 109 ? 148.197 116.799 74.921 1.00 4.42 108 M 1 +ATOM 1688 H HZ3 . LYS M 1 109 ? 148.814 117.172 73.661 1.00 4.42 108 M 1 +ATOM 1689 N N . SER M 1 110 ? 144.542 113.374 68.629 1.00 4.37 109 M 1 +ATOM 1690 C CA . SER M 1 110 ? 144.545 113.402 67.165 1.00 4.37 109 M 1 +ATOM 1691 C C . SER M 1 110 ? 143.136 113.581 66.609 1.00 4.37 109 M 1 +ATOM 1692 O O . SER M 1 110 ? 142.915 114.377 65.684 1.00 4.37 109 M 1 +ATOM 1693 C CB . SER M 1 110 ? 145.161 112.117 66.620 1.00 4.37 109 M 1 +ATOM 1694 O OG . SER M 1 110 ? 144.341 111.009 66.927 1.00 4.37 109 M 1 +ATOM 1695 H H . SER M 1 110 ? 144.787 112.625 68.973 1.00 4.37 109 M 1 +ATOM 1696 H HA . SER M 1 110 ? 145.089 114.145 66.862 1.00 4.37 109 M 1 +ATOM 1697 H HB2 . SER M 1 110 ? 145.240 112.181 65.655 1.00 4.37 109 M 1 +ATOM 1698 H HB3 . SER M 1 110 ? 146.039 111.988 67.011 1.00 4.37 109 M 1 +ATOM 1699 H HG . SER M 1 110 ? 144.057 111.077 67.715 1.00 4.37 109 M 1 +ATOM 1700 N N . VAL M 1 111 ? 142.176 112.838 67.158 1.00 4.23 110 M 1 +ATOM 1701 C CA . VAL M 1 111 ? 140.783 112.978 66.746 1.00 4.23 110 M 1 +ATOM 1702 C C . VAL M 1 111 ? 140.298 114.398 67.013 1.00 4.23 110 M 1 +ATOM 1703 O O . VAL M 1 111 ? 139.589 114.998 66.193 1.00 4.23 110 M 1 +ATOM 1704 C CB . VAL M 1 111 ? 139.905 111.926 67.453 1.00 4.23 110 M 1 +ATOM 1705 C CG1 . VAL M 1 111 ? 138.430 112.153 67.153 1.00 4.23 110 M 1 +ATOM 1706 C CG2 . VAL M 1 111 ? 140.296 110.511 67.023 1.00 4.23 110 M 1 +ATOM 1707 H H . VAL M 1 111 ? 142.302 112.255 67.777 1.00 4.23 110 M 1 +ATOM 1708 H HA . VAL M 1 111 ? 140.727 112.817 65.791 1.00 4.23 110 M 1 +ATOM 1709 H HB . VAL M 1 111 ? 140.028 111.997 68.412 1.00 4.23 110 M 1 +ATOM 1710 H HG11 . VAL M 1 111 ? 137.929 111.367 67.422 1.00 4.23 110 M 1 +ATOM 1711 H HG12 . VAL M 1 111 ? 138.098 112.918 67.649 1.00 4.23 110 M 1 +ATOM 1712 H HG13 . VAL M 1 111 ? 138.322 112.290 66.199 1.00 4.23 110 M 1 +ATOM 1713 H HG21 . VAL M 1 111 ? 139.830 109.881 67.595 1.00 4.23 110 M 1 +ATOM 1714 H HG22 . VAL M 1 111 ? 140.028 110.373 66.101 1.00 4.23 110 M 1 +ATOM 1715 H HG23 . VAL M 1 111 ? 141.253 110.372 67.097 1.00 4.23 110 M 1 +ATOM 1716 N N . ASN M 1 112 ? 140.717 114.929 68.153 1.00 4.52 111 M 1 +ATOM 1717 C CA . ASN M 1 112 ? 140.342 116.303 68.560 1.00 4.52 111 M 1 +ATOM 1718 C C . ASN M 1 112 ? 140.887 117.288 67.517 1.00 4.52 111 M 1 +ATOM 1719 O O . ASN M 1 112 ? 140.143 118.121 67.037 1.00 4.52 111 M 1 +ATOM 1720 C CB . ASN M 1 112 ? 140.871 116.639 69.955 1.00 4.52 111 M 1 +ATOM 1721 C CG . ASN M 1 112 ? 140.253 117.911 70.489 1.00 4.52 111 M 1 +ATOM 1722 O OD1 . ASN M 1 112 ? 139.121 118.212 70.161 1.00 4.52 111 M 1 +ATOM 1723 N ND2 . ASN M 1 112 ? 140.984 118.639 71.313 1.00 4.52 111 M 1 +ATOM 1724 H H . ASN M 1 112 ? 141.351 114.540 68.678 1.00 4.52 111 M 1 +ATOM 1725 H HA . ASN M 1 112 ? 139.358 116.369 68.580 1.00 4.52 111 M 1 +ATOM 1726 H HB2 . ASN M 1 112 ? 140.666 115.899 70.563 1.00 4.52 111 M 1 +ATOM 1727 H HB3 . ASN M 1 112 ? 141.843 116.744 69.913 1.00 4.52 111 M 1 +ATOM 1728 H HD21 . ASN M 1 112 ? 141.775 118.347 71.578 1.00 4.52 111 M 1 +ATOM 1729 H HD22 . ASN M 1 112 ? 140.683 119.419 71.599 1.00 4.52 111 M 1 +ATOM 1730 N N . GLN M 1 113 ? 142.141 117.072 67.128 1.00 5.11 112 M 1 +ATOM 1731 C CA . GLN M 1 113 ? 142.834 117.940 66.147 1.00 5.11 112 M 1 +ATOM 1732 C C . GLN M 1 113 ? 142.073 117.860 64.820 1.00 5.11 112 M 1 +ATOM 1733 O O . GLN M 1 113 ? 141.691 118.896 64.332 1.00 5.11 112 M 1 +ATOM 1734 C CB . GLN M 1 113 ? 144.297 117.557 65.966 1.00 5.11 112 M 1 +ATOM 1735 C CG . GLN M 1 113 ? 145.022 118.572 65.094 1.00 5.11 112 M 1 +ATOM 1736 C CD . GLN M 1 113 ? 144.785 119.967 65.611 1.00 5.11 112 M 1 +ATOM 1737 O OE1 . GLN M 1 113 ? 145.184 120.306 66.717 1.00 5.11 112 M 1 +ATOM 1738 N NE2 . GLN M 1 113 ? 144.062 120.770 64.847 1.00 5.11 112 M 1 +ATOM 1739 H H . GLN M 1 113 ? 142.599 116.316 67.344 1.00 5.11 112 M 1 +ATOM 1740 H HA . GLN M 1 113 ? 142.790 118.868 66.475 1.00 5.11 112 M 1 +ATOM 1741 H HB2 . GLN M 1 113 ? 144.728 117.512 66.845 1.00 5.11 112 M 1 +ATOM 1742 H HB3 . GLN M 1 113 ? 144.348 116.671 65.551 1.00 5.11 112 M 1 +ATOM 1743 H HG2 . GLN M 1 113 ? 145.984 118.380 65.094 1.00 5.11 112 M 1 +ATOM 1744 H HG3 . GLN M 1 113 ? 144.696 118.505 64.171 1.00 5.11 112 M 1 +ATOM 1745 H HE21 . GLN M 1 113 ? 143.722 120.470 64.088 1.00 5.11 112 M 1 +ATOM 1746 H HE22 . GLN M 1 113 ? 143.918 121.606 65.096 1.00 5.11 112 M 1 +ATOM 1747 N N . SER M 1 114 ? 141.629 116.668 64.416 0.55 4.90 113 M 1 +ATOM 1748 C CA . SER M 1 114 ? 140.863 116.555 63.144 0.55 4.90 113 M 1 +ATOM 1749 C C . SER M 1 114 ? 139.536 117.326 63.248 0.55 4.90 113 M 1 +ATOM 1750 O O . SER M 1 114 ? 139.168 118.017 62.297 0.55 4.90 113 M 1 +ATOM 1751 C CB . SER M 1 114 ? 140.631 115.110 62.773 0.55 4.90 113 M 1 +ATOM 1752 O OG . SER M 1 114 ? 139.747 114.492 63.686 0.55 4.90 113 M 1 +ATOM 1753 H H . SER M 1 114 ? 141.266 116.108 65.036 0.55 4.90 113 M 1 +ATOM 1754 H HA . SER M 1 114 ? 141.406 116.977 62.424 0.55 4.90 113 M 1 +ATOM 1755 H HB2 . SER M 1 114 ? 140.252 115.063 61.866 0.55 4.90 113 M 1 +ATOM 1756 H HB3 . SER M 1 114 ? 141.490 114.631 62.771 0.55 4.90 113 M 1 +ATOM 1757 H HG . SER M 1 114 ? 139.464 115.080 64.225 0.55 4.90 113 M 1 +ATOM 1758 N N . LEU M 1 115 ? 138.859 117.253 64.392 1.00 4.69 114 M 1 +ATOM 1759 C CA . LEU M 1 115 ? 137.594 117.954 64.591 1.00 4.69 114 M 1 +ATOM 1760 C C . LEU M 1 115 ? 137.776 119.467 64.575 1.00 4.69 114 M 1 +ATOM 1761 O O . LEU M 1 115 ? 136.914 120.196 64.076 1.00 4.69 114 M 1 +ATOM 1762 C CB . LEU M 1 115 ? 136.965 117.506 65.904 1.00 4.69 114 M 1 +ATOM 1763 C CG . LEU M 1 115 ? 136.436 116.074 65.961 1.00 4.69 114 M 1 +ATOM 1764 C CD1 . LEU M 1 115 ? 136.142 115.718 67.392 1.00 4.69 114 M 1 +ATOM 1765 C CD2 . LEU M 1 115 ? 135.185 115.889 65.113 1.00 4.69 114 M 1 +ATOM 1766 H H . LEU M 1 115 ? 139.121 116.786 65.065 1.00 4.69 114 M 1 +ATOM 1767 H HA . LEU M 1 115 ? 136.991 117.729 63.865 1.00 4.69 114 M 1 +ATOM 1768 H HB2 . LEU M 1 115 ? 137.632 117.597 66.602 1.00 4.69 114 M 1 +ATOM 1769 H HB3 . LEU M 1 115 ? 136.223 118.099 66.102 1.00 4.69 114 M 1 +ATOM 1770 H HG . LEU M 1 115 ? 137.112 115.463 65.628 1.00 4.69 114 M 1 +ATOM 1771 H HD11 . LEU M 1 115 ? 135.645 114.886 67.426 1.00 4.69 114 M 1 +ATOM 1772 H HD12 . LEU M 1 115 ? 136.992 115.614 67.847 1.00 4.69 114 M 1 +ATOM 1773 H HD13 . LEU M 1 115 ? 135.636 116.432 67.811 1.00 4.69 114 M 1 +ATOM 1774 H HD21 . LEU M 1 115 ? 135.004 114.939 65.032 1.00 4.69 114 M 1 +ATOM 1775 H HD22 . LEU M 1 115 ? 134.437 116.323 65.552 1.00 4.69 114 M 1 +ATOM 1776 H HD23 . LEU M 1 115 ? 135.315 116.259 64.226 1.00 4.69 114 M 1 +ATOM 1777 N N . LEU M 1 116 ? 138.878 119.960 65.131 1.00 5.05 115 M 1 +ATOM 1778 C CA . LEU M 1 116 ? 139.138 121.397 65.104 1.00 5.05 115 M 1 +ATOM 1779 C C . LEU M 1 116 ? 139.387 121.874 63.680 1.00 5.05 115 M 1 +ATOM 1780 O O . LEU M 1 116 ? 138.920 122.949 63.282 1.00 5.05 115 M 1 +ATOM 1781 C CB . LEU M 1 116 ? 140.322 121.733 66.011 1.00 5.05 115 M 1 +ATOM 1782 C CG . LEU M 1 116 ? 140.104 121.561 67.520 1.00 5.05 115 M 1 +ATOM 1783 C CD1 . LEU M 1 116 ? 141.408 121.733 68.279 1.00 5.05 115 M 1 +ATOM 1784 C CD2 . LEU M 1 116 ? 139.056 122.534 68.048 1.00 5.05 115 M 1 +ATOM 1785 H H . LEU M 1 116 ? 139.484 119.491 65.522 1.00 5.05 115 M 1 +ATOM 1786 H HA . LEU M 1 116 ? 138.360 121.870 65.437 1.00 5.05 115 M 1 +ATOM 1787 H HB2 . LEU M 1 116 ? 141.064 121.161 65.761 1.00 5.05 115 M 1 +ATOM 1788 H HB3 . LEU M 1 116 ? 140.578 122.655 65.850 1.00 5.05 115 M 1 +ATOM 1789 H HG . LEU M 1 116 ? 139.769 120.669 67.702 1.00 5.05 115 M 1 +ATOM 1790 H HD11 . LEU M 1 116 ? 141.268 121.446 69.195 1.00 5.05 115 M 1 +ATOM 1791 H HD12 . LEU M 1 116 ? 142.101 121.192 67.870 1.00 5.05 115 M 1 +ATOM 1792 H HD13 . LEU M 1 116 ? 141.673 122.666 68.255 1.00 5.05 115 M 1 +ATOM 1793 H HD21 . LEU M 1 116 ? 139.130 122.592 69.013 1.00 5.05 115 M 1 +ATOM 1794 H HD22 . LEU M 1 116 ? 139.204 123.408 67.653 1.00 5.05 115 M 1 +ATOM 1795 H HD23 . LEU M 1 116 ? 138.172 122.210 67.813 1.00 5.05 115 M 1 +ATOM 1796 N N . GLU M 1 117 ? 140.102 121.074 62.890 1.00 6.09 116 M 1 +ATOM 1797 C CA . GLU M 1 117 ? 140.283 121.391 61.476 1.00 6.09 116 M 1 +ATOM 1798 C C . GLU M 1 117 ? 138.942 121.417 60.745 1.00 6.09 116 M 1 +ATOM 1799 O O . GLU M 1 117 ? 138.692 122.295 59.908 1.00 6.09 116 M 1 +ATOM 1800 C CB . GLU M 1 117 ? 141.244 120.379 60.849 1.00 6.09 116 M 1 +ATOM 1801 C CG . GLU M 1 117 ? 142.676 120.511 61.372 1.00 6.09 116 M 1 +ATOM 1802 C CD . GLU M 1 117 ? 143.615 119.439 60.848 1.00 6.09 116 M 1 +ATOM 1803 O OE1 . GLU M 1 117 ? 143.145 118.498 60.174 1.00 6.09 116 M 1 +ATOM 1804 O OE2 . GLU M 1 117 ? 144.829 119.532 61.124 1.00 6.09 116 M 1 +ATOM 1805 H H . GLU M 1 117 ? 140.479 120.343 63.141 1.00 6.09 116 M 1 +ATOM 1806 H HA . GLU M 1 117 ? 140.686 122.270 61.398 1.00 6.09 116 M 1 +ATOM 1807 H HB2 . GLU M 1 117 ? 140.938 119.480 61.047 1.00 6.09 116 M 1 +ATOM 1808 H HB3 . GLU M 1 117 ? 141.261 120.514 59.889 1.00 6.09 116 M 1 +ATOM 1809 H HG2 . GLU M 1 117 ? 143.029 121.370 61.094 1.00 6.09 116 M 1 +ATOM 1810 H HG3 . GLU M 1 117 ? 142.679 120.468 62.341 1.00 6.09 116 M 1 +ATOM 1811 N N . LEU M 1 118 ? 138.050 120.493 61.095 1.00 5.44 117 M 1 +ATOM 1812 C CA . LEU M 1 118 ? 136.683 120.381 60.513 1.00 5.44 117 M 1 +ATOM 1813 C C . LEU M 1 118 ? 135.896 121.645 60.854 1.00 5.44 117 M 1 +ATOM 1814 O O . LEU M 1 118 ? 135.268 122.209 59.984 1.00 5.44 117 M 1 +ATOM 1815 C CB . LEU M 1 118 ? 136.001 119.162 61.135 1.00 5.44 117 M 1 +ATOM 1816 C CG . LEU M 1 118 ? 135.154 118.291 60.216 1.00 5.44 117 M 1 +ATOM 1817 C CD1 . LEU M 1 118 ? 134.146 117.487 61.035 1.00 5.44 117 M 1 +ATOM 1818 C CD2 . LEU M 1 118 ? 134.466 119.108 59.137 1.00 5.44 117 M 1 +ATOM 1819 H H . LEU M 1 118 ? 138.182 119.944 61.808 1.00 5.44 117 M 1 +ATOM 1820 H HA . LEU M 1 118 ? 136.748 120.280 59.536 1.00 5.44 117 M 1 +ATOM 1821 H HB2 . LEU M 1 118 ? 136.695 118.598 61.532 1.00 5.44 117 M 1 +ATOM 1822 H HB3 . LEU M 1 118 ? 135.431 119.476 61.865 1.00 5.44 117 M 1 +ATOM 1823 H HG . LEU M 1 118 ? 135.758 117.649 59.768 1.00 5.44 117 M 1 +ATOM 1824 H HD11 . LEU M 1 118 ? 134.618 116.943 61.689 1.00 5.44 117 M 1 +ATOM 1825 H HD12 . LEU M 1 118 ? 133.634 116.908 60.443 1.00 5.44 117 M 1 +ATOM 1826 H HD13 . LEU M 1 118 ? 133.542 118.095 61.495 1.00 5.44 117 M 1 +ATOM 1827 H HD21 . LEU M 1 118 ? 133.946 118.518 58.565 1.00 5.44 117 M 1 +ATOM 1828 H HD22 . LEU M 1 118 ? 133.876 119.761 59.551 1.00 5.44 117 M 1 +ATOM 1829 H HD23 . LEU M 1 118 ? 135.136 119.569 58.602 1.00 5.44 117 M 1 +ATOM 1830 N N . HIS M 1 119 ? 135.947 122.064 62.122 1.00 5.74 118 M 1 +ATOM 1831 C CA . HIS M 1 119 ? 135.252 123.284 62.608 1.00 5.74 118 M 1 +ATOM 1832 C C . HIS M 1 119 ? 135.812 124.508 61.869 1.00 5.74 118 M 1 +ATOM 1833 O O . HIS M 1 119 ? 135.030 125.369 61.545 1.00 5.74 118 M 1 +ATOM 1834 C CB . HIS M 1 119 ? 135.357 123.419 64.135 1.00 5.74 118 M 1 +ATOM 1835 C CG . HIS M 1 119 ? 134.535 124.536 64.685 1.00 5.74 118 M 1 +ATOM 1836 N ND1 . HIS M 1 119 ? 134.975 125.837 64.658 1.00 5.74 118 M 1 +ATOM 1837 C CD2 . HIS M 1 119 ? 133.302 124.564 65.235 1.00 5.74 118 M 1 +ATOM 1838 C CE1 . HIS M 1 119 ? 134.060 126.618 65.183 1.00 5.74 118 M 1 +ATOM 1839 N NE2 . HIS M 1 119 ? 133.035 125.861 65.563 1.00 5.74 118 M 1 +ATOM 1840 H H . HIS M 1 119 ? 136.410 121.635 62.778 1.00 5.74 118 M 1 +ATOM 1841 H HA . HIS M 1 119 ? 134.298 123.198 62.373 1.00 5.74 118 M 1 +ATOM 1842 H HB2 . HIS M 1 119 ? 135.068 122.576 64.550 1.00 5.74 118 M 1 +ATOM 1843 H HB3 . HIS M 1 119 ? 136.298 123.565 64.378 1.00 5.74 118 M 1 +ATOM 1844 H HD1 . HIS M 1 119 ? 135.747 126.104 64.341 1.00 5.74 118 M 1 +ATOM 1845 H HD2 . HIS M 1 119 ? 132.745 123.826 65.397 1.00 5.74 118 M 1 +ATOM 1846 H HE1 . HIS M 1 119 ? 134.129 127.551 65.291 1.00 5.74 118 M 1 +ATOM 1847 H HE2 . HIS M 1 119 ? 132.296 126.153 65.935 1.00 5.74 118 M 1 +ATOM 1848 N N . LYS M 1 120 ? 137.117 124.588 61.642 1.00 6.94 119 M 1 +ATOM 1849 C CA . LYS M 1 120 ? 137.704 125.731 60.953 1.00 6.94 119 M 1 +ATOM 1850 C C . LYS M 1 120 ? 137.252 125.769 59.501 1.00 6.94 119 M 1 +ATOM 1851 O O . LYS M 1 120 ? 136.968 126.841 58.957 1.00 6.94 119 M 1 +ATOM 1852 C CB . LYS M 1 120 ? 139.226 125.668 61.063 1.00 6.94 119 M 1 +ATOM 1853 C CG . LYS M 1 120 ? 139.965 126.875 60.528 1.00 6.94 119 M 1 +ATOM 1854 C CD . LYS M 1 120 ? 141.474 126.717 60.664 1.00 6.94 119 M 1 +ATOM 1855 C CE . LYS M 1 120 ? 141.924 126.836 62.124 1.00 6.94 119 M 1 +ATOM 1856 N NZ . LYS M 1 120 ? 143.405 126.855 62.278 1.00 6.94 119 M 1 +ATOM 1857 H H . LYS M 1 120 ? 137.682 123.981 61.870 1.00 6.94 119 M 1 +ATOM 1858 H HA . LYS M 1 120 ? 137.406 126.548 61.382 1.00 6.94 119 M 1 +ATOM 1859 H HB2 . LYS M 1 120 ? 139.445 125.586 62.004 1.00 6.94 119 M 1 +ATOM 1860 H HB3 . LYS M 1 120 ? 139.553 124.888 60.587 1.00 6.94 119 M 1 +ATOM 1861 H HG2 . LYS M 1 120 ? 139.763 126.981 59.585 1.00 6.94 119 M 1 +ATOM 1862 H HG3 . LYS M 1 120 ? 139.697 127.666 61.021 1.00 6.94 119 M 1 +ATOM 1863 H HD2 . LYS M 1 120 ? 141.736 125.844 60.333 1.00 6.94 119 M 1 +ATOM 1864 H HD3 . LYS M 1 120 ? 141.916 127.413 60.152 1.00 6.94 119 M 1 +ATOM 1865 H HE2 . LYS M 1 120 ? 141.562 127.647 62.515 1.00 6.94 119 M 1 +ATOM 1866 H HE3 . LYS M 1 120 ? 141.600 126.065 62.615 1.00 6.94 119 M 1 +ATOM 1867 H HZ1 . LYS M 1 120 ? 143.619 127.107 63.104 1.00 6.94 119 M 1 +ATOM 1868 H HZ2 . LYS M 1 120 ? 143.740 126.045 62.127 1.00 6.94 119 M 1 +ATOM 1869 H HZ3 . LYS M 1 120 ? 143.762 127.429 61.699 1.00 6.94 119 M 1 +ATOM 1870 N N . LEU M 1 121 ? 137.154 124.601 58.866 1.00 6.89 120 M 1 +ATOM 1871 C CA . LEU M 1 121 ? 136.638 124.530 57.503 1.00 6.89 120 M 1 +ATOM 1872 C C . LEU M 1 121 ? 135.186 124.986 57.441 1.00 6.89 120 M 1 +ATOM 1873 O O . LEU M 1 121 ? 134.803 125.757 56.555 1.00 6.89 120 M 1 +ATOM 1874 C CB . LEU M 1 121 ? 136.786 123.102 56.978 1.00 6.89 120 M 1 +ATOM 1875 C CG . LEU M 1 121 ? 136.318 122.766 55.565 1.00 6.89 120 M 1 +ATOM 1876 C CD1 . LEU M 1 121 ? 137.080 123.577 54.538 1.00 6.89 120 M 1 +ATOM 1877 C CD2 . LEU M 1 121 ? 136.493 121.280 55.308 1.00 6.89 120 M 1 +ATOM 1878 H H . LEU M 1 121 ? 137.359 123.837 59.205 1.00 6.89 120 M 1 +ATOM 1879 H HA . LEU M 1 121 ? 137.162 125.118 56.936 1.00 6.89 120 M 1 +ATOM 1880 H HB2 . LEU M 1 121 ? 137.730 122.882 57.011 1.00 6.89 120 M 1 +ATOM 1881 H HB3 . LEU M 1 121 ? 136.308 122.511 57.580 1.00 6.89 120 M 1 +ATOM 1882 H HG . LEU M 1 121 ? 135.373 122.969 55.487 1.00 6.89 120 M 1 +ATOM 1883 H HD11 . LEU M 1 121 ? 136.899 123.221 53.654 1.00 6.89 120 M 1 +ATOM 1884 H HD12 . LEU M 1 121 ? 136.791 124.502 54.586 1.00 6.89 120 M 1 +ATOM 1885 H HD13 . LEU M 1 121 ? 138.029 123.518 54.730 1.00 6.89 120 M 1 +ATOM 1886 H HD21 . LEU M 1 121 ? 136.305 121.089 54.376 1.00 6.89 120 M 1 +ATOM 1887 H HD22 . LEU M 1 121 ? 137.408 121.035 55.519 1.00 6.89 120 M 1 +ATOM 1888 H HD23 . LEU M 1 121 ? 135.882 120.783 55.875 1.00 6.89 120 M 1 +ATOM 1889 N N . ALA M 1 122 ? 134.366 124.518 58.380 1.00 6.56 121 M 1 +ATOM 1890 C CA . ALA M 1 122 ? 132.956 124.884 58.403 1.00 6.56 121 M 1 +ATOM 1891 C C . ALA M 1 122 ? 132.772 126.373 58.681 1.00 6.56 121 M 1 +ATOM 1892 O O . ALA M 1 122 ? 131.834 126.996 58.172 1.00 6.56 121 M 1 +ATOM 1893 C CB . ALA M 1 122 ? 132.228 124.038 59.443 1.00 6.56 121 M 1 +ATOM 1894 H H . ALA M 1 122 ? 134.599 123.980 59.009 1.00 6.56 121 M 1 +ATOM 1895 H HA . ALA M 1 122 ? 132.566 124.688 57.537 1.00 6.56 121 M 1 +ATOM 1896 H HB1 . ALA M 1 122 ? 131.302 124.321 59.497 1.00 6.56 121 M 1 +ATOM 1897 H HB2 . ALA M 1 122 ? 132.279 123.107 59.175 1.00 6.56 121 M 1 +ATOM 1898 H HB3 . ALA M 1 122 ? 132.657 124.155 60.305 1.00 6.56 121 M 1 +ATOM 1899 N N . THR M 1 123 ? 133.659 126.961 59.484 1.00 7.31 122 M 1 +ATOM 1900 C CA . THR M 1 123 ? 133.606 128.398 59.721 1.00 7.31 122 M 1 +ATOM 1901 C C . THR M 1 123 ? 134.046 129.166 58.482 1.00 7.31 122 M 1 +ATOM 1902 O O . THR M 1 123 ? 133.495 130.227 58.173 1.00 7.31 122 M 1 +ATOM 1903 C CB . THR M 1 123 ? 134.470 128.769 60.928 1.00 7.31 122 M 1 +ATOM 1904 O OG1 . THR M 1 123 ? 133.960 128.120 62.097 1.00 7.31 122 M 1 +ATOM 1905 C CG2 . THR M 1 123 ? 134.483 130.277 61.145 1.00 7.31 122 M 1 +ATOM 1906 H H . THR M 1 123 ? 134.302 126.556 59.886 1.00 7.31 122 M 1 +ATOM 1907 H HA . THR M 1 123 ? 132.694 128.650 59.934 1.00 7.31 122 M 1 +ATOM 1908 H HB . THR M 1 123 ? 135.385 128.481 60.782 1.00 7.31 122 M 1 +ATOM 1909 H HG1 . THR M 1 123 ? 133.261 127.701 61.895 1.00 7.31 122 M 1 +ATOM 1910 H HG21 . THR M 1 123 ? 134.748 130.484 62.055 1.00 7.31 122 M 1 +ATOM 1911 H HG22 . THR M 1 123 ? 135.113 130.697 60.539 1.00 7.31 122 M 1 +ATOM 1912 H HG23 . THR M 1 123 ? 133.599 130.644 60.988 1.00 7.31 122 M 1 +ATOM 1913 N N . ASP M 1 124 ? 135.030 128.636 57.753 1.00 8.30 123 M 1 +ATOM 1914 C CA . ASP M 1 124 ? 135.501 129.298 56.541 1.00 8.30 123 M 1 +ATOM 1915 C C . ASP M 1 124 ? 134.428 129.291 55.460 1.00 8.30 123 M 1 +ATOM 1916 O O . ASP M 1 124 ? 134.339 130.227 54.657 1.00 8.30 123 M 1 +ATOM 1917 C CB . ASP M 1 124 ? 136.770 128.620 56.028 1.00 8.30 123 M 1 +ATOM 1918 C CG . ASP M 1 124 ? 137.366 129.322 54.822 1.00 8.30 123 M 1 +ATOM 1919 O OD1 . ASP M 1 124 ? 136.811 130.351 54.385 1.00 8.30 123 M 1 +ATOM 1920 O OD2 . ASP M 1 124 ? 138.392 128.834 54.304 1.00 8.30 123 M 1 +ATOM 1921 H H . ASP M 1 124 ? 135.429 127.895 57.930 1.00 8.30 123 M 1 +ATOM 1922 H HA . ASP M 1 124 ? 135.715 130.220 56.753 1.00 8.30 123 M 1 +ATOM 1923 H HB2 . ASP M 1 124 ? 137.433 128.611 56.737 1.00 8.30 123 M 1 +ATOM 1924 H HB3 . ASP M 1 124 ? 136.561 127.710 55.765 1.00 8.30 123 M 1 +ATOM 1925 N N . LYS M 1 125 ? 133.639 128.218 55.448 1.00 7.98 124 M 1 +ATOM 1926 C CA . LYS M 1 125 ? 132.537 127.992 54.479 1.00 7.98 124 M 1 +ATOM 1927 C C . LYS M 1 125 ? 131.232 128.616 54.993 1.00 7.98 124 M 1 +ATOM 1928 O O . LYS M 1 125 ? 130.244 128.495 54.287 1.00 7.98 124 M 1 +ATOM 1929 C CB . LYS M 1 125 ? 132.390 126.495 54.199 1.00 7.98 124 M 1 +ATOM 1930 C CG . LYS M 1 125 ? 133.616 125.856 53.570 1.00 7.98 124 M 1 +ATOM 1931 C CD . LYS M 1 125 ? 134.148 126.682 52.423 1.00 7.98 124 M 1 +ATOM 1932 C CE . LYS M 1 125 ? 135.243 126.000 51.635 1.00 7.98 124 M 1 +ATOM 1933 N NZ . LYS M 1 125 ? 135.481 126.687 50.345 1.00 7.98 124 M 1 +ATOM 1934 H H . LYS M 1 125 ? 133.694 127.571 56.087 1.00 7.98 124 M 1 +ATOM 1935 H HA . LYS M 1 125 ? 132.780 128.441 53.637 1.00 7.98 124 M 1 +ATOM 1936 H HB2 . LYS M 1 125 ? 132.195 126.037 55.044 1.00 7.98 124 M 1 +ATOM 1937 H HB3 . LYS M 1 125 ? 131.625 126.363 53.602 1.00 7.98 124 M 1 +ATOM 1938 H HG2 . LYS M 1 125 ? 134.314 125.758 54.252 1.00 7.98 124 M 1 +ATOM 1939 H HG3 . LYS M 1 125 ? 133.380 124.961 53.244 1.00 7.98 124 M 1 +ATOM 1940 H HD2 . LYS M 1 125 ? 133.408 126.894 51.815 1.00 7.98 124 M 1 +ATOM 1941 H HD3 . LYS M 1 125 ? 134.496 127.528 52.777 1.00 7.98 124 M 1 +ATOM 1942 H HE2 . LYS M 1 125 ? 136.069 126.000 52.154 1.00 7.98 124 M 1 +ATOM 1943 H HE3 . LYS M 1 125 ? 134.993 125.073 51.461 1.00 7.98 124 M 1 +ATOM 1944 H HZ1 . LYS M 1 125 ? 136.152 126.274 49.896 1.00 7.98 124 M 1 +ATOM 1945 H HZ2 . LYS M 1 125 ? 134.728 126.664 49.841 1.00 7.98 124 M 1 +ATOM 1946 H HZ3 . LYS M 1 125 ? 135.712 127.551 50.495 1.00 7.98 124 M 1 +ATOM 1947 N N . ASN M 1 126 ? 131.229 129.276 56.154 1.00 8.52 125 M 1 +ATOM 1948 C CA . ASN M 1 126 ? 130.015 129.901 56.741 1.00 8.52 125 M 1 +ATOM 1949 C C . ASN M 1 126 ? 128.888 128.867 56.820 1.00 8.52 125 M 1 +ATOM 1950 O O . ASN M 1 126 ? 127.810 129.160 56.312 1.00 8.52 125 M 1 +ATOM 1951 C CB . ASN M 1 126 ? 129.529 131.135 55.978 1.00 8.52 125 M 1 +ATOM 1952 C CG . ASN M 1 126 ? 130.525 132.269 56.008 1.00 8.52 125 M 1 +ATOM 1953 O OD1 . ASN M 1 126 ? 130.814 132.840 54.977 1.00 8.52 125 M 1 +ATOM 1954 N ND2 . ASN M 1 126 ? 131.085 132.562 57.168 1.00 8.52 125 M 1 +ATOM 1955 H H . ASN M 1 126 ? 131.987 129.495 56.603 1.00 8.52 125 M 1 +ATOM 1956 H HA . ASN M 1 126 ? 130.235 130.189 57.658 1.00 8.52 125 M 1 +ATOM 1957 H HB2 . ASN M 1 126 ? 129.357 130.885 55.047 1.00 8.52 125 M 1 +ATOM 1958 H HB3 . ASN M 1 126 ? 128.685 131.439 56.371 1.00 8.52 125 M 1 +ATOM 1959 H HD21 . ASN M 1 126 ? 130.925 132.059 57.876 1.00 8.52 125 M 1 +ATOM 1960 H HD22 . ASN M 1 126 ? 131.621 133.262 57.235 1.00 8.52 125 M 1 +ATOM 1961 N N . ASP M 1 127 ? 129.169 127.682 57.357 1.00 6.70 126 M 1 +ATOM 1962 C CA . ASP M 1 127 ? 128.151 126.617 57.571 1.00 6.70 126 M 1 +ATOM 1963 C C . ASP M 1 127 ? 127.847 126.621 59.071 1.00 6.70 126 M 1 +ATOM 1964 O O . ASP M 1 127 ? 128.430 125.802 59.748 1.00 6.70 126 M 1 +ATOM 1965 C CB . ASP M 1 127 ? 128.649 125.263 57.062 1.00 6.70 126 M 1 +ATOM 1966 C CG . ASP M 1 127 ? 127.592 124.162 57.047 1.00 6.70 126 M 1 +ATOM 1967 O OD1 . ASP M 1 127 ? 126.669 124.198 57.869 1.00 6.70 126 M 1 +ATOM 1968 O OD2 . ASP M 1 127 ? 127.711 123.274 56.207 1.00 6.70 126 M 1 +ATOM 1969 H H . ASP M 1 127 ? 130.003 127.458 57.645 1.00 6.70 126 M 1 +ATOM 1970 H HA . ASP M 1 127 ? 127.350 126.846 57.064 1.00 6.70 126 M 1 +ATOM 1971 H HB2 . ASP M 1 127 ? 128.987 125.374 56.150 1.00 6.70 126 M 1 +ATOM 1972 H HB3 . ASP M 1 127 ? 129.391 124.967 57.628 1.00 6.70 126 M 1 +ATOM 1973 N N . PRO M 1 128 ? 126.965 127.479 59.619 1.00 5.77 127 M 1 +ATOM 1974 C CA . PRO M 1 128 ? 126.741 127.524 61.065 1.00 5.77 127 M 1 +ATOM 1975 C C . PRO M 1 128 ? 126.225 126.213 61.679 1.00 5.77 127 M 1 +ATOM 1976 O O . PRO M 1 128 ? 126.600 125.891 62.754 1.00 5.77 127 M 1 +ATOM 1977 C CB . PRO M 1 128 ? 125.692 128.634 61.255 1.00 5.77 127 M 1 +ATOM 1978 C CG . PRO M 1 128 ? 125.083 128.814 59.877 1.00 5.77 127 M 1 +ATOM 1979 C CD . PRO M 1 128 ? 126.196 128.501 58.906 1.00 5.77 127 M 1 +ATOM 1980 H HA . PRO M 1 128 ? 127.581 127.794 61.513 1.00 5.77 127 M 1 +ATOM 1981 H HB2 . PRO M 1 128 ? 125.010 128.365 61.906 1.00 5.77 127 M 1 +ATOM 1982 H HB3 . PRO M 1 128 ? 126.113 129.466 61.561 1.00 5.77 127 M 1 +ATOM 1983 H HG2 . PRO M 1 128 ? 124.330 128.202 59.749 1.00 5.77 127 M 1 +ATOM 1984 H HG3 . PRO M 1 128 ? 124.766 129.732 59.755 1.00 5.77 127 M 1 +ATOM 1985 H HD2 . PRO M 1 128 ? 125.845 128.154 58.065 1.00 5.77 127 M 1 +ATOM 1986 H HD3 . PRO M 1 128 ? 126.741 129.289 58.725 1.00 5.77 127 M 1 +ATOM 1987 N N . HIS M 1 129 ? 125.348 125.514 60.982 1.00 5.02 128 M 1 +ATOM 1988 C CA . HIS M 1 129 ? 124.765 124.273 61.476 1.00 5.02 128 M 1 +ATOM 1989 C C . HIS M 1 129 ? 125.834 123.227 61.751 1.00 5.02 128 M 1 +ATOM 1990 O O . HIS M 1 129 ? 125.834 122.585 62.805 1.00 5.02 128 M 1 +ATOM 1991 C CB . HIS M 1 129 ? 123.744 123.740 60.480 1.00 5.02 128 M 1 +ATOM 1992 C CG . HIS M 1 129 ? 123.184 122.415 60.872 1.00 5.02 128 M 1 +ATOM 1993 N ND1 . HIS M 1 129 ? 123.741 121.229 60.452 1.00 5.02 128 M 1 +ATOM 1994 C CD2 . HIS M 1 129 ? 122.173 122.082 61.706 1.00 5.02 128 M 1 +ATOM 1995 C CE1 . HIS M 1 129 ? 123.067 120.221 60.972 1.00 5.02 128 M 1 +ATOM 1996 N NE2 . HIS M 1 129 ? 122.113 120.712 61.739 1.00 5.02 128 M 1 +ATOM 1997 H H . HIS M 1 129 ? 125.099 125.746 60.192 1.00 5.02 128 M 1 +ATOM 1998 H HA . HIS M 1 129 ? 124.296 124.455 62.305 1.00 5.02 128 M 1 +ATOM 1999 H HB2 . HIS M 1 129 ? 123.005 124.365 60.417 1.00 5.02 128 M 1 +ATOM 2000 H HB3 . HIS M 1 129 ? 124.156 123.652 59.606 1.00 5.02 128 M 1 +ATOM 2001 H HD2 . HIS M 1 129 ? 121.611 122.670 62.158 1.00 5.02 128 M 1 +ATOM 2002 H HE1 . HIS M 1 129 ? 123.240 119.319 60.828 1.00 5.02 128 M 1 +ATOM 2003 H HE2 . HIS M 1 129 ? 121.547 120.247 62.189 1.00 5.02 128 M 1 +ATOM 2004 N N . LEU M 1 130 ? 126.756 123.052 60.813 1.00 5.28 129 M 1 +ATOM 2005 C CA . LEU M 1 130 ? 127.830 122.084 60.980 1.00 5.28 129 M 1 +ATOM 2006 C C . LEU M 1 130 ? 128.739 122.462 62.142 1.00 5.28 129 M 1 +ATOM 2007 O O . LEU M 1 130 ? 129.133 121.600 62.940 1.00 5.28 129 M 1 +ATOM 2008 C CB . LEU M 1 130 ? 128.616 121.985 59.676 1.00 5.28 129 M 1 +ATOM 2009 C CG . LEU M 1 130 ? 129.788 121.014 59.622 1.00 5.28 129 M 1 +ATOM 2010 C CD1 . LEU M 1 130 ? 129.324 119.615 59.936 1.00 5.28 129 M 1 +ATOM 2011 C CD2 . LEU M 1 130 ? 130.428 121.058 58.252 1.00 5.28 129 M 1 +ATOM 2012 H H . LEU M 1 130 ? 126.778 123.490 60.073 1.00 5.28 129 M 1 +ATOM 2013 H HA . LEU M 1 130 ? 127.435 121.218 61.169 1.00 5.28 129 M 1 +ATOM 2014 H HB2 . LEU M 1 130 ? 128.001 121.743 58.966 1.00 5.28 129 M 1 +ATOM 2015 H HB3 . LEU M 1 130 ? 128.971 122.866 59.479 1.00 5.28 129 M 1 +ATOM 2016 H HG . LEU M 1 130 ? 130.459 121.278 60.271 1.00 5.28 129 M 1 +ATOM 2017 H HD11 . LEU M 1 130 ? 129.948 118.980 59.550 1.00 5.28 129 M 1 +ATOM 2018 H HD12 . LEU M 1 130 ? 129.297 119.505 60.899 1.00 5.28 129 M 1 +ATOM 2019 H HD13 . LEU M 1 130 ? 128.439 119.477 59.562 1.00 5.28 129 M 1 +ATOM 2020 H HD21 . LEU M 1 130 ? 131.261 120.562 58.278 1.00 5.28 129 M 1 +ATOM 2021 H HD22 . LEU M 1 130 ? 129.823 120.652 57.612 1.00 5.28 129 M 1 +ATOM 2022 H HD23 . LEU M 1 130 ? 130.597 121.979 57.999 1.00 5.28 129 M 1 +ATOM 2023 N N . CYS M 1 131 ? 129.088 123.745 62.240 1.00 5.91 130 M 1 +ATOM 2024 C CA . CYS M 1 131 ? 129.904 124.227 63.347 1.00 5.91 130 M 1 +ATOM 2025 C C . CYS M 1 131 ? 129.253 123.901 64.682 1.00 5.91 130 M 1 +ATOM 2026 O O . CYS M 1 131 ? 129.891 123.335 65.574 1.00 5.91 130 M 1 +ATOM 2027 C CB . CYS M 1 131 ? 130.131 125.729 63.203 1.00 5.91 130 M 1 +ATOM 2028 S SG . CYS M 1 131 ? 131.134 126.159 61.782 1.00 5.91 130 M 1 +ATOM 2029 H H . CYS M 1 131 ? 128.856 124.353 61.678 1.00 5.91 130 M 1 +ATOM 2030 H HA . CYS M 1 131 ? 130.777 123.805 63.314 1.00 5.91 130 M 1 +ATOM 2031 H HB2 . CYS M 1 131 ? 129.273 126.171 63.104 1.00 5.91 130 M 1 +ATOM 2032 H HB3 . CYS M 1 131 ? 130.578 126.060 63.998 1.00 5.91 130 M 1 +ATOM 2033 H HG . CYS M 1 131 ? 130.449 126.104 60.798 1.00 5.91 130 M 1 +ATOM 2034 N N . ASP M 1 132 ? 127.967 124.217 64.820 1.00 5.48 131 M 1 +ATOM 2035 C CA . ASP M 1 132 ? 127.281 123.991 66.084 1.00 5.48 131 M 1 +ATOM 2036 C C . ASP M 1 132 ? 127.145 122.505 66.376 1.00 5.48 131 M 1 +ATOM 2037 O O . ASP M 1 132 ? 127.222 122.085 67.531 1.00 5.48 131 M 1 +ATOM 2038 C CB . ASP M 1 132 ? 125.909 124.656 66.064 1.00 5.48 131 M 1 +ATOM 2039 C CG . ASP M 1 132 ? 125.215 124.578 67.402 1.00 5.48 131 M 1 +ATOM 2040 O OD1 . ASP M 1 132 ? 125.634 125.300 68.328 1.00 5.48 131 M 1 +ATOM 2041 O OD2 . ASP M 1 132 ? 124.254 123.795 67.528 1.00 5.48 131 M 1 +ATOM 2042 H H . ASP M 1 132 ? 127.475 124.553 64.200 1.00 5.48 131 M 1 +ATOM 2043 H HA . ASP M 1 132 ? 127.803 124.396 66.794 1.00 5.48 131 M 1 +ATOM 2044 H HB2 . ASP M 1 132 ? 126.005 125.590 65.820 1.00 5.48 131 M 1 +ATOM 2045 H HB3 . ASP M 1 132 ? 125.348 124.203 65.415 1.00 5.48 131 M 1 +ATOM 2046 N N . PHE M 1 133 ? 126.935 121.698 65.339 1.00 4.96 132 M 1 +ATOM 2047 C CA . PHE M 1 133 ? 126.879 120.250 65.500 1.00 4.96 132 M 1 +ATOM 2048 C C . PHE M 1 133 ? 128.176 119.716 66.096 1.00 4.96 132 M 1 +ATOM 2049 O O . PHE M 1 133 ? 128.164 118.980 67.093 1.00 4.96 132 M 1 +ATOM 2050 C CB . PHE M 1 133 ? 126.616 119.617 64.138 1.00 4.96 132 M 1 +ATOM 2051 C CG . PHE M 1 133 ? 126.460 118.140 64.172 1.00 4.96 132 M 1 +ATOM 2052 C CD1 . PHE M 1 133 ? 125.267 117.579 64.563 1.00 4.96 132 M 1 +ATOM 2053 C CD2 . PHE M 1 133 ? 127.501 117.309 63.819 1.00 4.96 132 M 1 +ATOM 2054 C CE1 . PHE M 1 133 ? 125.111 116.227 64.590 1.00 4.96 132 M 1 +ATOM 2055 C CE2 . PHE M 1 133 ? 127.340 115.952 63.850 1.00 4.96 132 M 1 +ATOM 2056 C CZ . PHE M 1 133 ? 126.146 115.419 64.239 1.00 4.96 132 M 1 +ATOM 2057 H H . PHE M 1 133 ? 126.826 121.970 64.531 1.00 4.96 132 M 1 +ATOM 2058 H HA . PHE M 1 133 ? 126.144 120.020 66.090 1.00 4.96 132 M 1 +ATOM 2059 H HB2 . PHE M 1 133 ? 125.790 119.981 63.782 1.00 4.96 132 M 1 +ATOM 2060 H HB3 . PHE M 1 133 ? 127.343 119.833 63.533 1.00 4.96 132 M 1 +ATOM 2061 H HD1 . PHE M 1 133 ? 124.556 118.129 64.802 1.00 4.96 132 M 1 +ATOM 2062 H HD2 . PHE M 1 133 ? 128.317 117.667 63.553 1.00 4.96 132 M 1 +ATOM 2063 H HE1 . PHE M 1 133 ? 124.299 115.859 64.854 1.00 4.96 132 M 1 +ATOM 2064 H HE2 . PHE M 1 133 ? 128.043 115.393 63.610 1.00 4.96 132 M 1 +ATOM 2065 H HZ . PHE M 1 133 ? 126.034 114.496 64.259 1.00 4.96 132 M 1 +ATOM 2066 N N . ILE M 1 134 ? 129.305 120.104 65.501 1.00 5.03 133 M 1 +ATOM 2067 C CA . ILE M 1 134 ? 130.616 119.674 65.982 1.00 5.03 133 M 1 +ATOM 2068 C C . ILE M 1 134 ? 130.840 120.153 67.413 1.00 5.03 133 M 1 +ATOM 2069 O O . ILE M 1 134 ? 131.305 119.397 68.272 1.00 5.03 133 M 1 +ATOM 2070 C CB . ILE M 1 134 ? 131.719 120.176 65.028 1.00 5.03 133 M 1 +ATOM 2071 C CG1 . ILE M 1 134 ? 131.577 119.558 63.624 1.00 5.03 133 M 1 +ATOM 2072 C CG2 . ILE M 1 134 ? 133.105 119.929 65.596 1.00 5.03 133 M 1 +ATOM 2073 C CD1 . ILE M 1 134 ? 131.748 118.039 63.534 1.00 5.03 133 M 1 +ATOM 2074 H H . ILE M 1 134 ? 129.335 120.630 64.821 1.00 5.03 133 M 1 +ATOM 2075 H HA . ILE M 1 134 ? 130.642 118.704 65.994 1.00 5.03 133 M 1 +ATOM 2076 H HB . ILE M 1 134 ? 131.619 121.137 64.938 1.00 5.03 133 M 1 +ATOM 2077 H HG12 . ILE M 1 134 ? 130.691 119.745 63.277 1.00 5.03 133 M 1 +ATOM 2078 H HG13 . ILE M 1 134 ? 132.226 119.978 63.038 1.00 5.03 133 M 1 +ATOM 2079 H HG21 . ILE M 1 134 ? 133.751 120.040 64.881 1.00 5.03 133 M 1 +ATOM 2080 H HG22 . ILE M 1 134 ? 133.296 120.575 66.294 1.00 5.03 133 M 1 +ATOM 2081 H HG23 . ILE M 1 134 ? 133.155 119.026 65.946 1.00 5.03 133 M 1 +ATOM 2082 H HD11 . ILE M 1 134 ? 131.674 117.779 62.602 1.00 5.03 133 M 1 +ATOM 2083 H HD12 . ILE M 1 134 ? 132.622 117.784 63.869 1.00 5.03 133 M 1 +ATOM 2084 H HD13 . ILE M 1 134 ? 131.051 117.593 64.041 1.00 5.03 133 M 1 +ATOM 2085 N N . GLU M 1 135 ? 130.489 121.403 67.667 1.00 5.70 134 M 1 +ATOM 2086 C CA . GLU M 1 135 ? 130.686 122.013 69.003 1.00 5.70 134 M 1 +ATOM 2087 C C . GLU M 1 135 ? 129.853 121.255 70.039 1.00 5.70 134 M 1 +ATOM 2088 O O . GLU M 1 135 ? 130.444 120.817 71.036 1.00 5.70 134 M 1 +ATOM 2089 C CB . GLU M 1 135 ? 130.277 123.487 68.999 1.00 5.70 134 M 1 +ATOM 2090 C CG . GLU M 1 135 ? 131.234 124.397 68.267 1.00 5.70 134 M 1 +ATOM 2091 C CD . GLU M 1 135 ? 130.626 125.767 68.005 1.00 5.70 134 M 1 +ATOM 2092 O OE1 . GLU M 1 135 ? 129.620 126.068 68.646 1.00 5.70 134 M 1 +ATOM 2093 O OE2 . GLU M 1 135 ? 131.138 126.504 67.151 1.00 5.70 134 M 1 +ATOM 2094 H H . GLU M 1 135 ? 129.997 121.908 67.091 1.00 5.70 134 M 1 +ATOM 2095 H HA . GLU M 1 135 ? 131.639 121.943 69.245 1.00 5.70 134 M 1 +ATOM 2096 H HB2 . GLU M 1 135 ? 129.391 123.562 68.586 1.00 5.70 134 M 1 +ATOM 2097 H HB3 . GLU M 1 135 ? 130.200 123.790 69.927 1.00 5.70 134 M 1 +ATOM 2098 H HG2 . GLU M 1 135 ? 132.051 124.508 68.798 1.00 5.70 134 M 1 +ATOM 2099 H HG3 . GLU M 1 135 ? 131.482 123.989 67.409 1.00 5.70 134 M 1 +ATOM 2100 N N . THR M 1 136 ? 128.607 120.926 69.710 1.00 5.69 135 M 1 +ATOM 2101 C CA . THR M 1 136 ? 127.648 120.409 70.673 1.00 5.69 135 M 1 +ATOM 2102 C C . THR M 1 136 ? 127.901 118.943 70.981 1.00 5.69 135 M 1 +ATOM 2103 O O . THR M 1 136 ? 127.792 118.527 72.139 1.00 5.69 135 M 1 +ATOM 2104 C CB . THR M 1 136 ? 126.231 120.615 70.132 1.00 5.69 135 M 1 +ATOM 2105 O OG1 . THR M 1 136 ? 125.987 122.016 69.958 1.00 5.69 135 M 1 +ATOM 2106 C CG2 . THR M 1 136 ? 125.180 120.022 71.054 1.00 5.69 135 M 1 +ATOM 2107 H H . THR M 1 136 ? 128.290 121.021 68.916 1.00 5.69 135 M 1 +ATOM 2108 H HA . THR M 1 136 ? 127.735 120.908 71.500 1.00 5.69 135 M 1 +ATOM 2109 H HB . THR M 1 136 ? 126.146 120.171 69.274 1.00 5.69 135 M 1 +ATOM 2110 H HG1 . THR M 1 136 ? 126.306 122.271 69.224 1.00 5.69 135 M 1 +ATOM 2111 H HG21 . THR M 1 136 ? 124.308 120.381 70.826 1.00 5.69 135 M 1 +ATOM 2112 H HG22 . THR M 1 136 ? 125.137 119.058 70.952 1.00 5.69 135 M 1 +ATOM 2113 H HG23 . THR M 1 136 ? 125.382 120.243 71.977 1.00 5.69 135 M 1 +ATOM 2114 N N . TYR M 1 137 ? 128.255 118.148 69.967 1.00 5.32 136 M 1 +ATOM 2115 C CA . TYR M 1 137 ? 128.285 116.699 70.109 1.00 5.32 136 M 1 +ATOM 2116 C C . TYR M 1 137 ? 129.681 116.086 70.112 1.00 5.32 136 M 1 +ATOM 2117 O O . TYR M 1 137 ? 129.812 114.924 70.507 1.00 5.32 136 M 1 +ATOM 2118 C CB . TYR M 1 137 ? 127.446 116.053 68.996 1.00 5.32 136 M 1 +ATOM 2119 C CG . TYR M 1 137 ? 125.993 116.445 69.078 1.00 5.32 136 M 1 +ATOM 2120 C CD1 . TYR M 1 137 ? 125.173 115.917 70.061 1.00 5.32 136 M 1 +ATOM 2121 C CD2 . TYR M 1 137 ? 125.435 117.320 68.164 1.00 5.32 136 M 1 +ATOM 2122 C CE1 . TYR M 1 137 ? 123.854 116.266 70.149 1.00 5.32 136 M 1 +ATOM 2123 C CE2 . TYR M 1 137 ? 124.109 117.674 68.238 1.00 5.32 136 M 1 +ATOM 2124 C CZ . TYR M 1 137 ? 123.318 117.142 69.235 1.00 5.32 136 M 1 +ATOM 2125 O OH . TYR M 1 137 ? 121.991 117.479 69.329 1.00 5.32 136 M 1 +ATOM 2126 H H . TYR M 1 137 ? 128.481 118.435 69.189 1.00 5.32 136 M 1 +ATOM 2127 H HA . TYR M 1 137 ? 127.872 116.438 70.947 1.00 5.32 136 M 1 +ATOM 2128 H HB2 . TYR M 1 137 ? 127.794 116.325 68.132 1.00 5.32 136 M 1 +ATOM 2129 H HB3 . TYR M 1 137 ? 127.491 115.087 69.065 1.00 5.32 136 M 1 +ATOM 2130 H HD1 . TYR M 1 137 ? 125.528 115.329 70.687 1.00 5.32 136 M 1 +ATOM 2131 H HD2 . TYR M 1 137 ? 125.965 117.681 67.491 1.00 5.32 136 M 1 +ATOM 2132 H HE1 . TYR M 1 137 ? 123.322 115.905 70.821 1.00 5.32 136 M 1 +ATOM 2133 H HE2 . TYR M 1 137 ? 123.756 118.269 67.616 1.00 5.32 136 M 1 +ATOM 2134 H HH . TYR M 1 137 ? 121.786 118.019 68.719 1.00 5.32 136 M 1 +ATOM 2135 N N . TYR M 1 138 ? 130.715 116.820 69.695 1.00 4.75 137 M 1 +ATOM 2136 C CA . TYR M 1 138 ? 132.058 116.267 69.521 1.00 4.75 137 M 1 +ATOM 2137 C C . TYR M 1 138 ? 133.140 116.945 70.353 1.00 4.75 137 M 1 +ATOM 2138 O O . TYR M 1 138 ? 133.898 116.247 71.032 1.00 4.75 137 M 1 +ATOM 2139 C CB . TYR M 1 138 ? 132.409 116.289 68.026 1.00 4.75 137 M 1 +ATOM 2140 C CG . TYR M 1 138 ? 131.612 115.244 67.293 1.00 4.75 137 M 1 +ATOM 2141 C CD1 . TYR M 1 138 ? 132.096 113.958 67.141 1.00 4.75 137 M 1 +ATOM 2142 C CD2 . TYR M 1 138 ? 130.320 115.500 66.879 1.00 4.75 137 M 1 +ATOM 2143 C CE1 . TYR M 1 138 ? 131.360 112.991 66.518 1.00 4.75 137 M 1 +ATOM 2144 C CE2 . TYR M 1 138 ? 129.567 114.535 66.263 1.00 4.75 137 M 1 +ATOM 2145 C CZ . TYR M 1 138 ? 130.093 113.277 66.087 1.00 4.75 137 M 1 +ATOM 2146 O OH . TYR M 1 138 ? 129.368 112.286 65.485 1.00 4.75 137 M 1 +ATOM 2147 H H . TYR M 1 138 ? 130.649 117.652 69.486 1.00 4.75 137 M 1 +ATOM 2148 H HA . TYR M 1 138 ? 132.058 115.331 69.774 1.00 4.75 137 M 1 +ATOM 2149 H HB2 . TYR M 1 138 ? 132.226 117.161 67.643 1.00 4.75 137 M 1 +ATOM 2150 H HB3 . TYR M 1 138 ? 133.350 116.078 67.917 1.00 4.75 137 M 1 +ATOM 2151 H HD1 . TYR M 1 138 ? 132.959 113.757 67.423 1.00 4.75 137 M 1 +ATOM 2152 H HD2 . TYR M 1 138 ? 129.963 116.350 66.999 1.00 4.75 137 M 1 +ATOM 2153 H HE1 . TYR M 1 138 ? 131.714 112.139 66.400 1.00 4.75 137 M 1 +ATOM 2154 H HE2 . TYR M 1 138 ? 128.706 114.734 65.975 1.00 4.75 137 M 1 +ATOM 2155 H HH . TYR M 1 138 ? 129.810 111.572 65.461 1.00 4.75 137 M 1 +ATOM 2156 N N . LEU M 1 139 ? 133.243 118.277 70.343 1.00 5.15 138 M 1 +ATOM 2157 C CA . LEU M 1 139 ? 134.409 118.924 70.952 1.00 5.15 138 M 1 +ATOM 2158 C C . LEU M 1 139 ? 134.414 118.788 72.475 1.00 5.15 138 M 1 +ATOM 2159 O O . LEU M 1 139 ? 135.460 118.504 73.074 1.00 5.15 138 M 1 +ATOM 2160 C CB . LEU M 1 139 ? 134.485 120.398 70.541 1.00 5.15 138 M 1 +ATOM 2161 C CG . LEU M 1 139 ? 134.810 120.765 69.087 1.00 5.15 138 M 1 +ATOM 2162 C CD1 . LEU M 1 139 ? 134.728 122.282 68.909 1.00 5.15 138 M 1 +ATOM 2163 C CD2 . LEU M 1 139 ? 136.168 120.241 68.631 1.00 5.15 138 M 1 +ATOM 2164 H H . LEU M 1 139 ? 132.663 118.816 70.008 1.00 5.15 138 M 1 +ATOM 2165 H HA . LEU M 1 139 ? 135.217 118.493 70.633 1.00 5.15 138 M 1 +ATOM 2166 H HB2 . LEU M 1 139 ? 133.626 120.801 70.744 1.00 5.15 138 M 1 +ATOM 2167 H HB3 . LEU M 1 139 ? 135.163 120.828 71.085 1.00 5.15 138 M 1 +ATOM 2168 H HG . LEU M 1 139 ? 134.147 120.368 68.501 1.00 5.15 138 M 1 +ATOM 2169 H HD11 . LEU M 1 139 ? 134.996 122.514 68.006 1.00 5.15 138 M 1 +ATOM 2170 H HD12 . LEU M 1 139 ? 133.819 122.579 69.071 1.00 5.15 138 M 1 +ATOM 2171 H HD13 . LEU M 1 139 ? 135.323 122.712 69.543 1.00 5.15 138 M 1 +ATOM 2172 H HD21 . LEU M 1 139 ? 136.264 120.441 67.687 1.00 5.15 138 M 1 +ATOM 2173 H HD22 . LEU M 1 139 ? 136.878 120.678 69.128 1.00 5.15 138 M 1 +ATOM 2174 H HD23 . LEU M 1 139 ? 136.219 119.282 68.765 1.00 5.15 138 M 1 +ATOM 2175 N N . SER M 1 140 ? 133.263 118.984 73.122 1.00 5.52 139 M 1 +ATOM 2176 C CA . SER M 1 140 ? 133.212 118.887 74.580 1.00 5.52 139 M 1 +ATOM 2177 C C . SER M 1 140 ? 133.454 117.457 75.050 1.00 5.52 139 M 1 +ATOM 2178 O O . SER M 1 140 ? 134.145 117.230 76.053 1.00 5.52 139 M 1 +ATOM 2179 C CB . SER M 1 140 ? 131.870 119.403 75.101 1.00 5.52 139 M 1 +ATOM 2180 O OG . SER M 1 140 ? 131.723 120.784 74.840 1.00 5.52 139 M 1 +ATOM 2181 H H . SER M 1 140 ? 132.513 119.176 72.748 1.00 5.52 139 M 1 +ATOM 2182 H HA . SER M 1 140 ? 133.909 119.450 74.952 1.00 5.52 139 M 1 +ATOM 2183 H HB2 . SER M 1 140 ? 131.153 118.933 74.647 1.00 5.52 139 M 1 +ATOM 2184 H HB3 . SER M 1 140 ? 131.806 119.255 76.058 1.00 5.52 139 M 1 +ATOM 2185 H HG . SER M 1 140 ? 130.981 121.049 75.132 1.00 5.52 139 M 1 +ATOM 2186 N N . GLU M 1 141 ? 132.881 116.482 74.341 1.00 5.44 140 M 1 +ATOM 2187 C CA . GLU M 1 141 ? 133.127 115.075 74.648 1.00 5.44 140 M 1 +ATOM 2188 C C . GLU M 1 141 ? 134.614 114.753 74.571 1.00 5.44 140 M 1 +ATOM 2189 O O . GLU M 1 141 ? 135.157 114.061 75.441 1.00 5.44 140 M 1 +ATOM 2190 C CB . GLU M 1 141 ? 132.330 114.187 73.684 1.00 5.44 140 M 1 +ATOM 2191 C CG . GLU M 1 141 ? 132.429 112.681 73.926 1.00 5.44 140 M 1 +ATOM 2192 C CD . GLU M 1 141 ? 133.700 112.071 73.369 1.00 5.44 140 M 1 +ATOM 2193 O OE1 . GLU M 1 141 ? 134.274 112.642 72.421 1.00 5.44 140 M 1 +ATOM 2194 O OE2 . GLU M 1 141 ? 134.137 111.025 73.895 1.00 5.44 140 M 1 +ATOM 2195 H H . GLU M 1 141 ? 132.350 116.619 73.678 1.00 5.44 140 M 1 +ATOM 2196 H HA . GLU M 1 141 ? 132.818 114.891 75.549 1.00 5.44 140 M 1 +ATOM 2197 H HB2 . GLU M 1 141 ? 131.391 114.422 73.750 1.00 5.44 140 M 1 +ATOM 2198 H HB3 . GLU M 1 141 ? 132.635 114.353 72.778 1.00 5.44 140 M 1 +ATOM 2199 H HG2 . GLU M 1 141 ? 132.425 112.522 74.882 1.00 5.44 140 M 1 +ATOM 2200 H HG3 . GLU M 1 141 ? 131.671 112.224 73.528 1.00 5.44 140 M 1 +ATOM 2201 N N . GLN M 1 142 ? 135.292 115.259 73.542 1.00 4.79 141 M 1 +ATOM 2202 C CA . GLN M 1 142 ? 136.713 114.986 73.383 1.00 4.79 141 M 1 +ATOM 2203 C C . GLN M 1 142 ? 137.530 115.642 74.486 1.00 4.79 141 M 1 +ATOM 2204 O O . GLN M 1 142 ? 138.505 115.063 74.971 1.00 4.79 141 M 1 +ATOM 2205 C CB . GLN M 1 142 ? 137.196 115.455 72.011 1.00 4.79 141 M 1 +ATOM 2206 C CG . GLN M 1 142 ? 136.700 114.641 70.837 1.00 4.79 141 M 1 +ATOM 2207 C CD . GLN M 1 142 ? 137.195 113.215 70.874 1.00 4.79 141 M 1 +ATOM 2208 O OE1 . GLN M 1 142 ? 136.418 112.283 71.061 1.00 4.79 141 M 1 +ATOM 2209 N NE2 . GLN M 1 142 ? 138.501 113.044 70.749 1.00 4.79 141 M 1 +ATOM 2210 H H . GLN M 1 142 ? 134.959 115.766 72.933 1.00 4.79 141 M 1 +ATOM 2211 H HA . GLN M 1 142 ? 136.847 114.028 73.454 1.00 4.79 141 M 1 +ATOM 2212 H HB2 . GLN M 1 142 ? 136.902 116.370 71.877 1.00 4.79 141 M 1 +ATOM 2213 H HB3 . GLN M 1 142 ? 138.165 115.421 71.989 1.00 4.79 141 M 1 +ATOM 2214 H HG2 . GLN M 1 142 ? 135.730 114.621 70.832 1.00 4.79 141 M 1 +ATOM 2215 H HG3 . GLN M 1 142 ? 137.031 115.050 70.022 1.00 4.79 141 M 1 +ATOM 2216 H HE21 . GLN M 1 142 ? 139.007 113.729 70.633 1.00 4.79 141 M 1 +ATOM 2217 H HE22 . GLN M 1 142 ? 138.848 112.257 70.771 1.00 4.79 141 M 1 +ATOM 2218 N N . VAL M 1 143 ? 137.154 116.857 74.890 1.00 4.49 142 M 1 +ATOM 2219 C CA . VAL M 1 143 ? 137.859 117.519 75.985 1.00 4.49 142 M 1 +ATOM 2220 C C . VAL M 1 143 ? 137.719 116.709 77.269 1.00 4.49 142 M 1 +ATOM 2221 O O . VAL M 1 143 ? 138.703 116.478 77.990 1.00 4.49 142 M 1 +ATOM 2222 C CB . VAL M 1 143 ? 137.350 118.966 76.144 1.00 4.49 142 M 1 +ATOM 2223 C CG1 . VAL M 1 143 ? 137.845 119.590 77.428 1.00 4.49 142 M 1 +ATOM 2224 C CG2 . VAL M 1 143 ? 137.827 119.821 74.969 1.00 4.49 142 M 1 +ATOM 2225 H H . VAL M 1 143 ? 136.490 117.304 74.577 1.00 4.49 142 M 1 +ATOM 2226 H HA . VAL M 1 143 ? 138.802 117.565 75.764 1.00 4.49 142 M 1 +ATOM 2227 H HB . VAL M 1 143 ? 136.380 118.968 76.157 1.00 4.49 142 M 1 +ATOM 2228 H HG11 . VAL M 1 143 ? 137.733 120.551 77.358 1.00 4.49 142 M 1 +ATOM 2229 H HG12 . VAL M 1 143 ? 137.317 119.266 78.174 1.00 4.49 142 M 1 +ATOM 2230 H HG13 . VAL M 1 143 ? 138.783 119.383 77.559 1.00 4.49 142 M 1 +ATOM 2231 H HG21 . VAL M 1 143 ? 137.236 120.583 74.866 1.00 4.49 142 M 1 +ATOM 2232 H HG22 . VAL M 1 143 ? 138.728 120.131 75.150 1.00 4.49 142 M 1 +ATOM 2233 H HG23 . VAL M 1 143 ? 137.831 119.297 74.152 1.00 4.49 142 M 1 +ATOM 2234 N N . LYS M 1 144 ? 136.507 116.220 77.544 1.00 4.83 143 M 1 +ATOM 2235 C CA . LYS M 1 144 ? 136.288 115.404 78.735 1.00 4.83 143 M 1 +ATOM 2236 C C . LYS M 1 144 ? 137.105 114.119 78.678 1.00 4.83 143 M 1 +ATOM 2237 O O . LYS M 1 144 ? 137.698 113.704 79.680 1.00 4.83 143 M 1 +ATOM 2238 C CB . LYS M 1 144 ? 134.801 115.079 78.899 1.00 4.83 143 M 1 +ATOM 2239 C CG . LYS M 1 144 ? 133.922 116.256 79.272 1.00 4.83 143 M 1 +ATOM 2240 C CD . LYS M 1 144 ? 132.501 115.808 79.620 1.00 4.83 143 M 1 +ATOM 2241 C CE . LYS M 1 144 ? 131.707 115.401 78.389 1.00 4.83 143 M 1 +ATOM 2242 N NZ . LYS M 1 144 ? 130.284 115.092 78.707 1.00 4.83 143 M 1 +ATOM 2243 H H . LYS M 1 144 ? 135.811 116.327 77.050 1.00 4.83 143 M 1 +ATOM 2244 H HA . LYS M 1 144 ? 136.569 115.910 79.514 1.00 4.83 143 M 1 +ATOM 2245 H HB2 . LYS M 1 144 ? 134.473 114.724 78.058 1.00 4.83 143 M 1 +ATOM 2246 H HB3 . LYS M 1 144 ? 134.693 114.412 79.595 1.00 4.83 143 M 1 +ATOM 2247 H HG2 . LYS M 1 144 ? 134.301 116.702 80.045 1.00 4.83 143 M 1 +ATOM 2248 H HG3 . LYS M 1 144 ? 133.865 116.875 78.527 1.00 4.83 143 M 1 +ATOM 2249 H HD2 . LYS M 1 144 ? 132.542 115.043 80.215 1.00 4.83 143 M 1 +ATOM 2250 H HD3 . LYS M 1 144 ? 132.032 116.540 80.050 1.00 4.83 143 M 1 +ATOM 2251 H HE2 . LYS M 1 144 ? 131.724 116.123 77.741 1.00 4.83 143 M 1 +ATOM 2252 H HE3 . LYS M 1 144 ? 132.098 114.597 78.012 1.00 4.83 143 M 1 +ATOM 2253 H HZ1 . LYS M 1 144 ? 129.888 114.729 77.997 1.00 4.83 143 M 1 +ATOM 2254 H HZ2 . LYS M 1 144 ? 130.240 114.522 79.389 1.00 4.83 143 M 1 +ATOM 2255 H HZ3 . LYS M 1 144 ? 129.853 115.839 78.925 1.00 4.83 143 M 1 +ATOM 2256 N N . SER M 1 145 ? 137.167 113.489 77.507 1.00 4.26 144 M 1 +ATOM 2257 C CA . SER M 1 145 ? 137.864 112.212 77.389 1.00 4.26 144 M 1 +ATOM 2258 C C . SER M 1 145 ? 139.374 112.391 77.507 1.00 4.26 144 M 1 +ATOM 2259 O O . SER M 1 145 ? 140.058 111.572 78.133 1.00 4.26 144 M 1 +ATOM 2260 C CB . SER M 1 145 ? 137.494 111.546 76.069 1.00 4.26 144 M 1 +ATOM 2261 O OG . SER M 1 145 ? 136.114 111.241 76.049 1.00 4.26 144 M 1 +ATOM 2262 H H . SER M 1 145 ? 136.834 113.784 76.771 1.00 4.26 144 M 1 +ATOM 2263 H HA . SER M 1 145 ? 137.575 111.628 78.108 1.00 4.26 144 M 1 +ATOM 2264 H HB2 . SER M 1 145 ? 137.692 112.151 75.337 1.00 4.26 144 M 1 +ATOM 2265 H HB3 . SER M 1 145 ? 138.006 110.728 75.968 1.00 4.26 144 M 1 +ATOM 2266 H HG . SER M 1 145 ? 135.685 111.835 76.460 1.00 4.26 144 M 1 +ATOM 2267 N N . ILE M 1 146 ? 139.906 113.464 76.921 1.00 3.93 145 M 1 +ATOM 2268 C CA . ILE M 1 146 ? 141.327 113.772 77.054 1.00 3.93 145 M 1 +ATOM 2269 C C . ILE M 1 146 ? 141.676 114.000 78.517 1.00 3.93 145 M 1 +ATOM 2270 O O . ILE M 1 146 ? 142.687 113.494 79.012 1.00 3.93 145 M 1 +ATOM 2271 C CB . ILE M 1 146 ? 141.700 114.985 76.176 1.00 3.93 145 M 1 +ATOM 2272 C CG1 . ILE M 1 146 ? 141.605 114.623 74.688 1.00 3.93 145 M 1 +ATOM 2273 C CG2 . ILE M 1 146 ? 143.080 115.516 76.549 1.00 3.93 145 M 1 +ATOM 2274 C CD1 . ILE M 1 146 ? 141.639 115.802 73.726 1.00 3.93 145 M 1 +ATOM 2275 H H . ILE M 1 146 ? 139.459 114.044 76.469 1.00 3.93 145 M 1 +ATOM 2276 H HA . ILE M 1 146 ? 141.845 113.016 76.736 1.00 3.93 145 M 1 +ATOM 2277 H HB . ILE M 1 146 ? 141.057 115.690 76.348 1.00 3.93 145 M 1 +ATOM 2278 H HG12 . ILE M 1 146 ? 142.348 114.041 74.462 1.00 3.93 145 M 1 +ATOM 2279 H HG13 . ILE M 1 146 ? 140.779 114.139 74.530 1.00 3.93 145 M 1 +ATOM 2280 H HG21 . ILE M 1 146 ? 143.453 116.028 75.814 1.00 3.93 145 M 1 +ATOM 2281 H HG22 . ILE M 1 146 ? 143.004 116.096 77.322 1.00 3.93 145 M 1 +ATOM 2282 H HG23 . ILE M 1 146 ? 143.670 114.772 76.744 1.00 3.93 145 M 1 +ATOM 2283 H HD11 . ILE M 1 146 ? 141.513 115.471 72.823 1.00 3.93 145 M 1 +ATOM 2284 H HD12 . ILE M 1 146 ? 140.926 116.419 73.952 1.00 3.93 145 M 1 +ATOM 2285 H HD13 . ILE M 1 146 ? 142.493 116.259 73.778 1.00 3.93 145 M 1 +ATOM 2286 N N . LYS M 1 147 ? 140.838 114.750 79.232 1.00 3.89 146 M 1 +ATOM 2287 C CA . LYS M 1 147 ? 141.100 115.021 80.643 1.00 3.89 146 M 1 +ATOM 2288 C C . LYS M 1 147 ? 141.039 113.741 81.475 1.00 3.89 146 M 1 +ATOM 2289 O O . LYS M 1 147 ? 141.881 113.521 82.354 1.00 3.89 146 M 1 +ATOM 2290 C CB . LYS M 1 147 ? 140.111 116.076 81.137 1.00 3.89 146 M 1 +ATOM 2291 C CG . LYS M 1 147 ? 140.203 116.479 82.594 1.00 3.89 146 M 1 +ATOM 2292 C CD . LYS M 1 147 ? 141.543 117.081 82.931 1.00 3.89 146 M 1 +ATOM 2293 C CE . LYS M 1 147 ? 141.512 117.806 84.271 1.00 3.89 146 M 1 +ATOM 2294 N NZ . LYS M 1 147 ? 141.164 116.952 85.399 1.00 3.89 146 M 1 +ATOM 2295 H H . LYS M 1 147 ? 140.115 115.097 78.920 1.00 3.89 146 M 1 +ATOM 2296 H HA . LYS M 1 147 ? 141.991 115.394 80.726 1.00 3.89 146 M 1 +ATOM 2297 H HB2 . LYS M 1 147 ? 140.260 116.884 80.621 1.00 3.89 146 M 1 +ATOM 2298 H HB3 . LYS M 1 147 ? 139.208 115.763 80.971 1.00 3.89 146 M 1 +ATOM 2299 H HG2 . LYS M 1 147 ? 139.522 117.145 82.774 1.00 3.89 146 M 1 +ATOM 2300 H HG3 . LYS M 1 147 ? 140.052 115.711 83.167 1.00 3.89 146 M 1 +ATOM 2301 H HD2 . LYS M 1 147 ? 142.200 116.369 82.982 1.00 3.89 146 M 1 +ATOM 2302 H HD3 . LYS M 1 147 ? 141.797 117.719 82.246 1.00 3.89 146 M 1 +ATOM 2303 H HE2 . LYS M 1 147 ? 142.398 118.159 84.450 1.00 3.89 146 M 1 +ATOM 2304 H HE3 . LYS M 1 147 ? 140.870 118.533 84.241 1.00 3.89 146 M 1 +ATOM 2305 H HZ1 . LYS M 1 147 ? 140.321 116.682 85.309 1.00 3.89 146 M 1 +ATOM 2306 H HZ2 . LYS M 1 147 ? 141.684 116.230 85.411 1.00 3.89 146 M 1 +ATOM 2307 H HZ3 . LYS M 1 147 ? 141.256 117.398 86.164 1.00 3.89 146 M 1 +ATOM 2308 N N . GLU M 1 148 ? 140.069 112.873 81.186 1.00 3.93 147 M 1 +ATOM 2309 C CA . GLU M 1 148 ? 139.953 111.593 81.882 1.00 3.93 147 M 1 +ATOM 2310 C C . GLU M 1 148 ? 141.201 110.738 81.676 1.00 3.93 147 M 1 +ATOM 2311 O O . GLU M 1 148 ? 141.770 110.195 82.632 1.00 3.93 147 M 1 +ATOM 2312 C CB . GLU M 1 148 ? 138.707 110.863 81.379 1.00 3.93 147 M 1 +ATOM 2313 C CG . GLU M 1 148 ? 138.412 109.544 82.057 1.00 3.93 147 M 1 +ATOM 2314 C CD . GLU M 1 148 ? 137.135 108.897 81.547 1.00 3.93 147 M 1 +ATOM 2315 O OE1 . GLU M 1 148 ? 136.491 109.475 80.647 1.00 3.93 147 M 1 +ATOM 2316 O OE2 . GLU M 1 148 ? 136.772 107.813 82.046 1.00 3.93 147 M 1 +ATOM 2317 H H . GLU M 1 148 ? 139.476 112.996 80.575 1.00 3.93 147 M 1 +ATOM 2318 H HA . GLU M 1 148 ? 139.842 111.748 82.833 1.00 3.93 147 M 1 +ATOM 2319 H HB2 . GLU M 1 148 ? 137.937 111.438 81.511 1.00 3.93 147 M 1 +ATOM 2320 H HB3 . GLU M 1 148 ? 138.820 110.688 80.432 1.00 3.93 147 M 1 +ATOM 2321 H HG2 . GLU M 1 148 ? 139.142 108.926 81.893 1.00 3.93 147 M 1 +ATOM 2322 H HG3 . GLU M 1 148 ? 138.316 109.694 83.011 1.00 3.93 147 M 1 +ATOM 2323 N N . LEU M 1 149 ? 141.633 110.603 80.423 1.00 3.53 148 M 1 +ATOM 2324 C CA . LEU M 1 149 ? 142.801 109.782 80.110 1.00 3.53 148 M 1 +ATOM 2325 C C . LEU M 1 149 ? 144.070 110.354 80.727 1.00 3.53 148 M 1 +ATOM 2326 O O . LEU M 1 149 ? 144.912 109.604 81.235 1.00 3.53 148 M 1 +ATOM 2327 C CB . LEU M 1 149 ? 142.940 109.646 78.594 1.00 3.53 148 M 1 +ATOM 2328 C CG . LEU M 1 149 ? 141.908 108.748 77.901 1.00 3.53 148 M 1 +ATOM 2329 C CD1 . LEU M 1 149 ? 141.939 108.934 76.394 1.00 3.53 148 M 1 +ATOM 2330 C CD2 . LEU M 1 149 ? 142.163 107.282 78.252 1.00 3.53 148 M 1 +ATOM 2331 H H . LEU M 1 149 ? 141.264 110.980 79.743 1.00 3.53 148 M 1 +ATOM 2332 H HA . LEU M 1 149 ? 142.663 108.899 80.487 1.00 3.53 148 M 1 +ATOM 2333 H HB2 . LEU M 1 149 ? 142.866 110.527 78.196 1.00 3.53 148 M 1 +ATOM 2334 H HB3 . LEU M 1 149 ? 143.824 109.298 78.397 1.00 3.53 148 M 1 +ATOM 2335 H HG . LEU M 1 149 ? 141.017 108.970 78.215 1.00 3.53 148 M 1 +ATOM 2336 H HD11 . LEU M 1 149 ? 141.323 108.313 75.976 1.00 3.53 148 M 1 +ATOM 2337 H HD12 . LEU M 1 149 ? 141.662 109.840 76.186 1.00 3.53 148 M 1 +ATOM 2338 H HD13 . LEU M 1 149 ? 142.840 108.782 76.068 1.00 3.53 148 M 1 +ATOM 2339 H HD21 . LEU M 1 149 ? 141.692 106.719 77.618 1.00 3.53 148 M 1 +ATOM 2340 H HD22 . LEU M 1 149 ? 143.113 107.090 78.213 1.00 3.53 148 M 1 +ATOM 2341 H HD23 . LEU M 1 149 ? 141.832 107.102 79.146 1.00 3.53 148 M 1 +ATOM 2342 N N . GLY M 1 150 ? 144.227 111.677 80.690 1.00 3.59 149 M 1 +ATOM 2343 C CA . GLY M 1 150 ? 145.373 112.298 81.331 1.00 3.59 149 M 1 +ATOM 2344 C C . GLY M 1 150 ? 145.401 112.034 82.822 1.00 3.59 149 M 1 +ATOM 2345 O O . GLY M 1 150 ? 146.454 111.747 83.394 1.00 3.59 149 M 1 +ATOM 2346 H H . GLY M 1 150 ? 143.677 112.226 80.321 1.00 3.59 149 M 1 +ATOM 2347 H HA2 . GLY M 1 150 ? 146.196 111.985 80.925 1.00 3.59 149 M 1 +ATOM 2348 H HA3 . GLY M 1 150 ? 145.322 113.257 81.197 1.00 3.59 149 M 1 +ATOM 2349 N N . ASP M 1 151 ? 144.233 112.095 83.464 1.00 3.83 150 M 1 +ATOM 2350 C CA . ASP M 1 151 ? 144.141 111.783 84.884 1.00 3.83 150 M 1 +ATOM 2351 C C . ASP M 1 151 ? 144.541 110.337 85.159 1.00 3.83 150 M 1 +ATOM 2352 O O . ASP M 1 151 ? 145.269 110.058 86.121 1.00 3.83 150 M 1 +ATOM 2353 C CB . ASP M 1 151 ? 142.722 112.049 85.382 1.00 3.83 150 M 1 +ATOM 2354 C CG . ASP M 1 151 ? 142.356 113.522 85.358 1.00 3.83 150 M 1 +ATOM 2355 O OD1 . ASP M 1 151 ? 143.268 114.366 85.450 1.00 3.83 150 M 1 +ATOM 2356 O OD2 . ASP M 1 151 ? 141.152 113.836 85.264 1.00 3.83 150 M 1 +ATOM 2357 H H . ASP M 1 151 ? 143.483 112.301 83.098 1.00 3.83 150 M 1 +ATOM 2358 H HA . ASP M 1 151 ? 144.747 112.358 85.377 1.00 3.83 150 M 1 +ATOM 2359 H HB2 . ASP M 1 151 ? 142.097 111.579 84.809 1.00 3.83 150 M 1 +ATOM 2360 H HB3 . ASP M 1 151 ? 142.633 111.725 86.292 1.00 3.83 150 M 1 +ATOM 2361 N N . HIS M 1 152 ? 144.078 109.425 84.300 1.00 3.63 151 M 1 +ATOM 2362 C CA . HIS M 1 152 ? 144.374 107.967 84.419 1.00 3.63 151 M 1 +ATOM 2363 C C . HIS M 1 152 ? 145.893 107.773 84.328 1.00 3.63 151 M 1 +ATOM 2364 O O . HIS M 1 152 ? 146.470 107.176 85.208 1.00 3.63 151 M 1 +ATOM 2365 C CB . HIS M 1 152 ? 143.627 107.139 83.350 1.00 3.63 151 M 1 +ATOM 2366 C CG . HIS M 1 152 ? 142.152 107.067 83.552 1.00 3.63 151 M 1 +ATOM 2367 N ND1 . HIS M 1 152 ? 141.562 107.495 84.711 1.00 3.63 151 M 1 +ATOM 2368 C CD2 . HIS M 1 152 ? 141.148 106.653 82.753 1.00 3.63 151 M 1 +ATOM 2369 C CE1 . HIS M 1 152 ? 140.263 107.300 84.645 1.00 3.63 151 M 1 +ATOM 2370 N NE2 . HIS M 1 152 ? 139.980 106.801 83.453 1.00 3.63 151 M 1 +ATOM 2371 H H . HIS M 1 152 ? 143.551 109.623 83.584 1.00 3.63 151 M 1 +ATOM 2372 H HA . HIS M 1 152 ? 144.079 107.668 85.311 1.00 3.63 151 M 1 +ATOM 2373 H HB2 . HIS M 1 152 ? 143.806 107.531 82.466 1.00 3.63 151 M 1 +ATOM 2374 H HB3 . HIS M 1 152 ? 143.990 106.226 83.347 1.00 3.63 151 M 1 +ATOM 2375 H HD1 . HIS M 1 152 ? 141.990 107.805 85.410 1.00 3.63 151 M 1 +ATOM 2376 H HD2 . HIS M 1 152 ? 141.232 106.303 81.885 1.00 3.63 151 M 1 +ATOM 2377 H HE1 . HIS M 1 152 ? 139.639 107.518 85.316 1.00 3.63 151 M 1 +ATOM 2378 N N . VAL M 1 153 ? 146.528 108.396 83.356 1.00 3.75 152 M 1 +ATOM 2379 C CA . VAL M 1 153 ? 147.971 108.297 83.143 1.00 3.75 152 M 1 +ATOM 2380 C C . VAL M 1 153 ? 148.724 108.840 84.351 1.00 3.75 152 M 1 +ATOM 2381 O O . VAL M 1 153 ? 149.692 108.237 84.822 1.00 3.75 152 M 1 +ATOM 2382 C CB . VAL M 1 153 ? 148.374 109.028 81.848 1.00 3.75 152 M 1 +ATOM 2383 C CG1 . VAL M 1 153 ? 149.883 109.083 81.695 1.00 3.75 152 M 1 +ATOM 2384 C CG2 . VAL M 1 153 ? 147.762 108.349 80.624 1.00 3.75 152 M 1 +ATOM 2385 H H . VAL M 1 153 ? 146.125 108.884 82.774 1.00 3.75 152 M 1 +ATOM 2386 H HA . VAL M 1 153 ? 148.214 107.364 83.040 1.00 3.75 152 M 1 +ATOM 2387 H HB . VAL M 1 153 ? 148.054 109.943 81.879 1.00 3.75 152 M 1 +ATOM 2388 H HG11 . VAL M 1 153 ? 150.096 109.335 80.783 1.00 3.75 152 M 1 +ATOM 2389 H HG12 . VAL M 1 153 ? 150.253 109.751 82.293 1.00 3.75 152 M 1 +ATOM 2390 H HG13 . VAL M 1 153 ? 150.261 108.211 81.886 1.00 3.75 152 M 1 +ATOM 2391 H HG21 . VAL M 1 153 ? 147.770 108.976 79.884 1.00 3.75 152 M 1 +ATOM 2392 H HG22 . VAL M 1 153 ? 148.296 107.572 80.397 1.00 3.75 152 M 1 +ATOM 2393 H HG23 . VAL M 1 153 ? 146.848 108.071 80.793 1.00 3.75 152 M 1 +ATOM 2394 N N . THR M 1 154 ? 148.291 109.995 84.858 1.00 3.85 153 M 1 +ATOM 2395 C CA . THR M 1 154 ? 148.932 110.603 86.022 1.00 3.85 153 M 1 +ATOM 2396 C C . THR M 1 154 ? 148.898 109.660 87.218 1.00 3.85 153 M 1 +ATOM 2397 O O . THR M 1 154 ? 149.918 109.443 87.885 1.00 3.85 153 M 1 +ATOM 2398 C CB . THR M 1 154 ? 148.248 111.938 86.336 1.00 3.85 153 M 1 +ATOM 2399 O OG1 . THR M 1 154 ? 148.471 112.832 85.239 1.00 3.85 153 M 1 +ATOM 2400 C CG2 . THR M 1 154 ? 148.742 112.558 87.655 1.00 3.85 153 M 1 +ATOM 2401 H H . THR M 1 154 ? 147.608 110.423 84.559 1.00 3.85 153 M 1 +ATOM 2402 H HA . THR M 1 154 ? 149.860 110.796 85.817 1.00 3.85 153 M 1 +ATOM 2403 H HB . THR M 1 154 ? 147.293 111.795 86.429 1.00 3.85 153 M 1 +ATOM 2404 H HG1 . THR M 1 154 ? 147.948 112.664 84.604 1.00 3.85 153 M 1 +ATOM 2405 H HG21 . THR M 1 154 ? 148.362 113.444 87.759 1.00 3.85 153 M 1 +ATOM 2406 H HG22 . THR M 1 154 ? 148.441 112.039 88.417 1.00 3.85 153 M 1 +ATOM 2407 H HG23 . THR M 1 154 ? 149.709 112.627 87.668 1.00 3.85 153 M 1 +ATOM 2408 N N . ASN M 1 155 ? 147.717 109.104 87.452 1.00 3.90 154 M 1 +ATOM 2409 C CA . ASN M 1 155 ? 147.514 108.206 88.617 1.00 3.90 154 M 1 +ATOM 2410 C C . ASN M 1 155 ? 148.382 106.953 88.457 1.00 3.90 154 M 1 +ATOM 2411 O O . ASN M 1 155 ? 149.095 106.632 89.362 1.00 3.90 154 M 1 +ATOM 2412 C CB . ASN M 1 155 ? 146.035 107.938 88.833 1.00 3.90 154 M 1 +ATOM 2413 C CG . ASN M 1 155 ? 145.392 109.062 89.613 1.00 3.90 154 M 1 +ATOM 2414 O OD1 . ASN M 1 155 ? 145.664 109.232 90.787 1.00 3.90 154 M 1 +ATOM 2415 N ND2 . ASN M 1 155 ? 144.564 109.846 88.966 1.00 3.90 154 M 1 +ATOM 2416 H H . ASN M 1 155 ? 147.019 109.144 86.870 1.00 3.90 154 M 1 +ATOM 2417 H HA . ASN M 1 155 ? 147.833 108.687 89.416 1.00 3.90 154 M 1 +ATOM 2418 H HB2 . ASN M 1 155 ? 145.592 107.849 87.964 1.00 3.90 154 M 1 +ATOM 2419 H HB3 . ASN M 1 155 ? 145.926 107.097 89.323 1.00 3.90 154 M 1 +ATOM 2420 H HD21 . ASN M 1 155 ? 144.376 109.687 88.117 1.00 3.90 154 M 1 +ATOM 2421 H HD22 . ASN M 1 155 ? 144.194 110.535 89.378 1.00 3.90 154 M 1 +ATOM 2422 N N . LEU M 1 156 ? 148.402 106.337 87.289 1.00 4.14 155 M 1 +ATOM 2423 C CA . LEU M 1 156 ? 149.191 105.131 87.050 1.00 4.14 155 M 1 +ATOM 2424 C C . LEU M 1 156 ? 150.684 105.404 87.191 1.00 4.14 155 M 1 +ATOM 2425 O O . LEU M 1 156 ? 151.413 104.605 87.787 1.00 4.14 155 M 1 +ATOM 2426 C CB . LEU M 1 156 ? 148.864 104.560 85.670 1.00 4.14 155 M 1 +ATOM 2427 C CG . LEU M 1 156 ? 147.513 103.856 85.526 1.00 4.14 155 M 1 +ATOM 2428 C CD1 . LEU M 1 156 ? 147.157 103.593 84.075 1.00 4.14 155 M 1 +ATOM 2429 C CD2 . LEU M 1 156 ? 147.544 102.535 86.278 1.00 4.14 155 M 1 +ATOM 2430 H H . LEU M 1 156 ? 147.967 106.623 86.605 1.00 4.14 155 M 1 +ATOM 2431 H HA . LEU M 1 156 ? 148.956 104.473 87.722 1.00 4.14 155 M 1 +ATOM 2432 H HB2 . LEU M 1 156 ? 148.864 105.293 85.035 1.00 4.14 155 M 1 +ATOM 2433 H HB3 . LEU M 1 156 ? 149.564 103.938 85.417 1.00 4.14 155 M 1 +ATOM 2434 H HG . LEU M 1 156 ? 146.815 104.402 85.921 1.00 4.14 155 M 1 +ATOM 2435 H HD11 . LEU M 1 156 ? 146.301 103.139 84.044 1.00 4.14 155 M 1 +ATOM 2436 H HD12 . LEU M 1 156 ? 147.092 104.435 83.598 1.00 4.14 155 M 1 +ATOM 2437 H HD13 . LEU M 1 156 ? 147.842 103.039 83.669 1.00 4.14 155 M 1 +ATOM 2438 H HD21 . LEU M 1 156 ? 146.739 102.033 86.079 1.00 4.14 155 M 1 +ATOM 2439 H HD22 . LEU M 1 156 ? 148.323 102.036 85.987 1.00 4.14 155 M 1 +ATOM 2440 H HD23 . LEU M 1 156 ? 147.597 102.688 87.234 1.00 4.14 155 M 1 +ATOM 2441 N N . ARG M 1 157 ? 151.130 106.511 86.611 1.00 4.62 156 M 1 +ATOM 2442 C CA . ARG M 1 157 ? 152.566 106.885 86.712 1.00 4.62 156 M 1 +ATOM 2443 C C . ARG M 1 157 ? 152.921 107.087 88.185 1.00 4.62 156 M 1 +ATOM 2444 O O . ARG M 1 157 ? 153.909 106.536 88.619 1.00 4.62 156 M 1 +ATOM 2445 C CB . ARG M 1 157 ? 152.855 108.202 85.999 1.00 4.62 156 M 1 +ATOM 2446 C CG . ARG M 1 157 ? 152.830 108.083 84.492 1.00 4.62 156 M 1 +ATOM 2447 C CD . ARG M 1 157 ? 153.154 109.409 83.844 1.00 4.62 156 M 1 +ATOM 2448 N NE . ARG M 1 157 ? 153.240 109.244 82.412 1.00 4.62 156 M 1 +ATOM 2449 C CZ . ARG M 1 157 ? 152.921 110.186 81.543 1.00 4.62 156 M 1 +ATOM 2450 N NH1 . ARG M 1 157 ? 152.486 111.355 81.979 1.00 4.62 156 M 1 +ATOM 2451 N NH2 . ARG M 1 157 ? 153.027 109.953 80.247 1.00 4.62 156 M 1 +ATOM 2452 H H . ARG M 1 157 ? 150.642 107.005 86.024 1.00 4.62 156 M 1 +ATOM 2453 H HA . ARG M 1 157 ? 153.121 106.166 86.331 1.00 4.62 156 M 1 +ATOM 2454 H HB2 . ARG M 1 157 ? 152.188 108.864 86.277 1.00 4.62 156 M 1 +ATOM 2455 H HB3 . ARG M 1 157 ? 153.737 108.524 86.279 1.00 4.62 156 M 1 +ATOM 2456 H HG2 . ARG M 1 157 ? 153.485 107.412 84.204 1.00 4.62 156 M 1 +ATOM 2457 H HG3 . ARG M 1 157 ? 151.940 107.789 84.201 1.00 4.62 156 M 1 +ATOM 2458 H HD2 . ARG M 1 157 ? 152.455 110.063 84.060 1.00 4.62 156 M 1 +ATOM 2459 H HD3 . ARG M 1 157 ? 154.009 109.746 84.189 1.00 4.62 156 M 1 +ATOM 2460 H HE . ARG M 1 157 ? 153.523 108.480 82.102 1.00 4.62 156 M 1 +ATOM 2461 H HH11 . ARG M 1 157 ? 152.417 111.503 82.842 1.00 4.62 156 M 1 +ATOM 2462 H HH12 . ARG M 1 157 ? 152.272 111.983 81.403 1.00 4.62 156 M 1 +ATOM 2463 H HH21 . ARG M 1 157 ? 153.315 109.170 79.965 1.00 4.62 156 M 1 +ATOM 2464 H HH22 . ARG M 1 157 ? 152.811 110.582 79.670 1.00 4.62 156 M 1 +ATOM 2465 N N . LYS M 1 158 ? 152.072 107.791 88.925 1.00 5.18 157 M 1 +ATOM 2466 C CA . LYS M 1 158 ? 152.305 108.139 90.355 1.00 5.18 157 M 1 +ATOM 2467 C C . LYS M 1 158 ? 152.363 106.858 91.193 1.00 5.18 157 M 1 +ATOM 2468 O O . LYS M 1 158 ? 153.242 106.774 92.033 1.00 5.18 157 M 1 +ATOM 2469 C CB . LYS M 1 158 ? 151.255 109.143 90.834 1.00 5.18 157 M 1 +ATOM 2470 C CG . LYS M 1 158 ? 151.459 110.545 90.277 1.00 5.18 157 M 1 +ATOM 2471 C CD . LYS M 1 158 ? 150.766 111.657 91.039 1.00 5.18 157 M 1 +ATOM 2472 C CE . LYS M 1 158 ? 151.182 113.041 90.582 1.00 5.18 157 M 1 +ATOM 2473 N NZ . LYS M 1 158 ? 152.590 113.343 90.962 1.00 5.18 157 M 1 +ATOM 2474 H H . LYS M 1 158 ? 151.240 108.010 88.630 1.00 5.18 157 M 1 +ATOM 2475 H HA . LYS M 1 158 ? 153.187 108.574 90.412 1.00 5.18 157 M 1 +ATOM 2476 H HB2 . LYS M 1 158 ? 150.368 108.823 90.568 1.00 5.18 157 M 1 +ATOM 2477 H HB3 . LYS M 1 158 ? 151.282 109.184 91.812 1.00 5.18 157 M 1 +ATOM 2478 H HG2 . LYS M 1 158 ? 152.422 110.733 90.258 1.00 5.18 157 M 1 +ATOM 2479 H HG3 . LYS M 1 158 ? 151.140 110.558 89.349 1.00 5.18 157 M 1 +ATOM 2480 H HD2 . LYS M 1 158 ? 149.796 111.565 90.928 1.00 5.18 157 M 1 +ATOM 2481 H HD3 . LYS M 1 158 ? 150.970 111.564 91.995 1.00 5.18 157 M 1 +ATOM 2482 H HE2 . LYS M 1 158 ? 151.094 113.105 89.612 1.00 5.18 157 M 1 +ATOM 2483 H HE3 . LYS M 1 158 ? 150.594 113.708 90.984 1.00 5.18 157 M 1 +ATOM 2484 H HZ1 . LYS M 1 158 ? 152.792 114.199 90.737 1.00 5.18 157 M 1 +ATOM 2485 H HZ2 . LYS M 1 158 ? 152.696 113.238 91.856 1.00 5.18 157 M 1 +ATOM 2486 H HZ3 . LYS M 1 158 ? 153.153 112.781 90.528 1.00 5.18 157 M 1 +ATOM 2487 N N . MET M 1 159 ? 151.514 105.879 90.895 1.00 5.22 158 M 1 +ATOM 2488 C CA . MET M 1 159 ? 151.432 104.578 91.613 1.00 5.22 158 M 1 +ATOM 2489 C C . MET M 1 159 ? 152.658 103.713 91.315 1.00 5.22 158 M 1 +ATOM 2490 O O . MET M 1 159 ? 152.825 102.725 91.997 1.00 5.22 158 M 1 +ATOM 2491 C CB . MET M 1 159 ? 150.172 103.809 91.228 1.00 5.22 158 M 1 +ATOM 2492 C CG . MET M 1 159 ? 148.916 104.469 91.735 1.00 5.22 158 M 1 +ATOM 2493 S SD . MET M 1 159 ? 147.452 103.782 90.930 1.00 5.22 158 M 1 +ATOM 2494 C CE . MET M 1 159 ? 147.174 102.347 91.968 1.00 5.22 158 M 1 +ATOM 2495 H H . MET M 1 159 ? 150.989 105.909 90.152 1.00 5.22 158 M 1 +ATOM 2496 H HA . MET M 1 159 ? 151.413 104.766 92.580 1.00 5.22 158 M 1 +ATOM 2497 H HB2 . MET M 1 159 ? 150.128 103.739 90.254 1.00 5.22 158 M 1 +ATOM 2498 H HB3 . MET M 1 159 ? 150.229 102.903 91.593 1.00 5.22 158 M 1 +ATOM 2499 H HG2 . MET M 1 159 ? 148.843 104.335 92.704 1.00 5.22 158 M 1 +ATOM 2500 H HG3 . MET M 1 159 ? 148.958 105.433 91.559 1.00 5.22 158 M 1 +ATOM 2501 H HE1 . MET M 1 159 ? 146.343 101.926 91.717 1.00 5.22 158 M 1 +ATOM 2502 H HE2 . MET M 1 159 ? 147.900 101.722 91.853 1.00 5.22 158 M 1 +ATOM 2503 H HE3 . MET M 1 159 ? 147.129 102.623 92.891 1.00 5.22 158 M 1 +ATOM 2504 N N . GLY M 1 160 ? 153.447 104.059 90.305 1.00 6.11 159 M 1 +ATOM 2505 C CA . GLY M 1 160 ? 154.641 103.293 89.915 1.00 6.11 159 M 1 +ATOM 2506 C C . GLY M 1 160 ? 154.401 102.326 88.772 1.00 6.11 159 M 1 +ATOM 2507 O O . GLY M 1 160 ? 155.296 101.539 88.514 1.00 6.11 159 M 1 +ATOM 2508 H H . GLY M 1 160 ? 153.270 104.785 89.785 1.00 6.11 159 M 1 +ATOM 2509 H HA2 . GLY M 1 160 ? 155.354 103.929 89.655 1.00 6.11 159 M 1 +ATOM 2510 H HA3 . GLY M 1 160 ? 154.964 102.788 90.703 1.00 6.11 159 M 1 +ATOM 2511 N N . ALA M 1 161 ? 153.295 102.429 88.028 1.00 5.68 160 M 1 +ATOM 2512 C CA . ALA M 1 161 ? 153.010 101.513 86.900 1.00 5.68 160 M 1 +ATOM 2513 C C . ALA M 1 161 ? 154.054 101.713 85.779 1.00 5.68 160 M 1 +ATOM 2514 O O . ALA M 1 161 ? 154.506 102.844 85.635 1.00 5.68 160 M 1 +ATOM 2515 C CB . ALA M 1 161 ? 151.618 101.684 86.356 1.00 5.68 160 M 1 +ATOM 2516 H H . ALA M 1 161 ? 152.714 103.128 88.073 1.00 5.68 160 M 1 +ATOM 2517 H HA . ALA M 1 161 ? 153.078 100.613 87.280 1.00 5.68 160 M 1 +ATOM 2518 H HB1 . ALA M 1 161 ? 151.477 101.064 85.620 1.00 5.68 160 M 1 +ATOM 2519 H HB2 . ALA M 1 161 ? 150.970 101.504 87.058 1.00 5.68 160 M 1 +ATOM 2520 H HB3 . ALA M 1 161 ? 151.503 102.595 86.037 1.00 5.68 160 M 1 +ATOM 2521 N N . PRO M 1 162 ? 154.409 100.749 84.886 1.00 7.28 161 M 1 +ATOM 2522 C CA . PRO M 1 162 ? 154.085 99.312 84.954 1.00 7.28 161 M 1 +ATOM 2523 C C . PRO M 1 162 ? 154.971 98.516 85.926 1.00 7.28 161 M 1 +ATOM 2524 O O . PRO M 1 162 ? 154.581 97.457 86.342 1.00 7.28 161 M 1 +ATOM 2525 C CB . PRO M 1 162 ? 154.330 98.822 83.521 1.00 7.28 161 M 1 +ATOM 2526 C CG . PRO M 1 162 ? 155.490 99.653 83.076 1.00 7.28 161 M 1 +ATOM 2527 C CD . PRO M 1 162 ? 155.248 101.006 83.709 1.00 7.28 161 M 1 +ATOM 2528 H HA . PRO M 1 162 ? 153.129 99.190 85.181 1.00 7.28 161 M 1 +ATOM 2529 H HB2 . PRO M 1 162 ? 154.554 97.867 83.506 1.00 7.28 161 M 1 +ATOM 2530 H HB3 . PRO M 1 162 ? 153.546 98.977 82.953 1.00 7.28 161 M 1 +ATOM 2531 H HG2 . PRO M 1 162 ? 156.335 99.269 83.388 1.00 7.28 161 M 1 +ATOM 2532 H HG3 . PRO M 1 162 ? 155.514 99.725 82.100 1.00 7.28 161 M 1 +ATOM 2533 H HD2 . PRO M 1 162 ? 156.091 101.420 83.972 1.00 7.28 161 M 1 +ATOM 2534 H HD3 . PRO M 1 162 ? 154.791 101.601 83.086 1.00 7.28 161 M 1 +ATOM 2535 N N . GLU M 1 163 ? 156.116 99.069 86.313 1.00 9.11 162 M 1 +ATOM 2536 C CA . GLU M 1 163 ? 157.116 98.359 87.156 1.00 9.11 162 M 1 +ATOM 2537 C C . GLU M 1 163 ? 156.554 97.984 88.534 1.00 9.11 162 M 1 +ATOM 2538 O O . GLU M 1 163 ? 156.810 96.847 88.932 1.00 9.11 162 M 1 +ATOM 2539 C CB . GLU M 1 163 ? 158.407 99.172 87.161 1.00 9.11 162 M 1 +ATOM 2540 C CG . GLU M 1 163 ? 158.962 99.335 85.753 1.00 9.11 162 M 1 +ATOM 2541 C CD . GLU M 1 163 ? 159.605 98.072 85.199 1.00 9.11 162 M 1 +ATOM 2542 O OE1 . GLU M 1 163 ? 160.214 97.338 85.995 1.00 9.11 162 M 1 +ATOM 2543 O OE2 . GLU M 1 163 ? 159.535 97.834 83.968 1.00 9.11 162 M 1 +ATOM 2544 H H . GLU M 1 163 ? 156.311 99.945 86.185 1.00 9.11 162 M 1 +ATOM 2545 H HA . GLU M 1 163 ? 157.316 97.512 86.695 1.00 9.11 162 M 1 +ATOM 2546 H HB2 . GLU M 1 163 ? 158.228 100.055 87.545 1.00 9.11 162 M 1 +ATOM 2547 H HB3 . GLU M 1 163 ? 159.070 98.718 87.722 1.00 9.11 162 M 1 +ATOM 2548 H HG2 . GLU M 1 163 ? 158.236 99.605 85.151 1.00 9.11 162 M 1 +ATOM 2549 H HG3 . GLU M 1 163 ? 159.631 100.052 85.753 1.00 9.11 162 M 1 +ATOM 2550 N N . ALA M 1 164 ? 155.776 98.815 89.227 1.00 7.30 163 M 1 +ATOM 2551 C CA . ALA M 1 164 ? 155.234 98.411 90.546 1.00 7.30 163 M 1 +ATOM 2552 C C . ALA M 1 164 ? 154.122 97.408 90.223 1.00 7.30 163 M 1 +ATOM 2553 O O . ALA M 1 164 ? 153.116 97.838 89.664 1.00 7.30 163 M 1 +ATOM 2554 C CB . ALA M 1 164 ? 154.740 99.593 91.340 1.00 7.30 163 M 1 +ATOM 2555 H H . ALA M 1 164 ? 155.409 99.570 88.902 1.00 7.30 163 M 1 +ATOM 2556 H HA . ALA M 1 164 ? 155.952 97.964 91.051 1.00 7.30 163 M 1 +ATOM 2557 H HB1 . ALA M 1 164 ? 154.393 99.288 92.195 1.00 7.30 163 M 1 +ATOM 2558 H HB2 . ALA M 1 164 ? 155.473 100.212 91.492 1.00 7.30 163 M 1 +ATOM 2559 H HB3 . ALA M 1 164 ? 154.034 100.043 90.847 1.00 7.30 163 M 1 +ATOM 2560 N N . GLY M 1 165 ? 154.236 96.151 90.658 1.00 6.92 164 M 1 +ATOM 2561 C CA . GLY M 1 165 ? 153.314 95.083 90.241 1.00 6.92 164 M 1 +ATOM 2562 C C . GLY M 1 165 ? 151.868 95.338 90.628 1.00 6.92 164 M 1 +ATOM 2563 O O . GLY M 1 165 ? 151.010 95.167 89.782 1.00 6.92 164 M 1 +ATOM 2564 H H . GLY M 1 165 ? 154.779 95.909 91.347 1.00 6.92 164 M 1 +ATOM 2565 H HA2 . GLY M 1 165 ? 153.372 94.981 89.258 1.00 6.92 164 M 1 +ATOM 2566 H HA3 . GLY M 1 165 ? 153.612 94.231 90.648 1.00 6.92 164 M 1 +ATOM 2567 N N . MET M 1 166 ? 151.605 95.837 91.826 1.00 5.59 165 M 1 +ATOM 2568 C CA . MET M 1 166 ? 150.221 96.059 92.311 1.00 5.59 165 M 1 +ATOM 2569 C C . MET M 1 166 ? 149.565 97.323 91.718 1.00 5.59 165 M 1 +ATOM 2570 O O . MET M 1 166 ? 148.351 97.431 91.853 1.00 5.59 165 M 1 +ATOM 2571 C CB . MET M 1 166 ? 150.183 96.094 93.844 1.00 5.59 165 M 1 +ATOM 2572 C CG . MET M 1 166 ? 149.711 94.770 94.463 1.00 5.59 165 M 1 +ATOM 2573 S SD . MET M 1 166 ? 150.210 94.519 96.182 1.00 5.59 165 M 1 +ATOM 2574 C CE . MET M 1 166 ? 150.247 96.218 96.745 1.00 5.59 165 M 1 +ATOM 2575 H H . MET M 1 166 ? 152.252 96.152 92.384 1.00 5.59 165 M 1 +ATOM 2576 H HA . MET M 1 166 ? 149.687 95.288 92.011 1.00 5.59 165 M 1 +ATOM 2577 H HB2 . MET M 1 166 ? 151.079 96.301 94.177 1.00 5.59 165 M 1 +ATOM 2578 H HB3 . MET M 1 166 ? 149.584 96.812 94.130 1.00 5.59 165 M 1 +ATOM 2579 H HG2 . MET M 1 166 ? 148.732 94.732 94.416 1.00 5.59 165 M 1 +ATOM 2580 H HG3 . MET M 1 166 ? 150.062 94.028 93.926 1.00 5.59 165 M 1 +ATOM 2581 H HE1 . MET M 1 166 ? 149.345 96.557 96.802 1.00 5.59 165 M 1 +ATOM 2582 H HE2 . MET M 1 166 ? 150.662 96.258 97.616 1.00 5.59 165 M 1 +ATOM 2583 H HE3 . MET M 1 166 ? 150.754 96.752 96.122 1.00 5.59 165 M 1 +ATOM 2584 N N . ALA M 1 167 ? 150.296 98.233 91.066 1.00 5.07 166 M 1 +ATOM 2585 C CA . ALA M 1 167 ? 149.727 99.509 90.580 1.00 5.07 166 M 1 +ATOM 2586 C C . ALA M 1 167 ? 148.602 99.286 89.562 1.00 5.07 166 M 1 +ATOM 2587 O O . ALA M 1 167 ? 147.510 99.735 89.842 1.00 5.07 166 M 1 +ATOM 2588 C CB . ALA M 1 167 ? 150.817 100.366 89.972 1.00 5.07 166 M 1 +ATOM 2589 H H . ALA M 1 167 ? 151.155 98.122 90.809 1.00 5.07 166 M 1 +ATOM 2590 H HA . ALA M 1 167 ? 149.348 99.989 91.353 1.00 5.07 166 M 1 +ATOM 2591 H HB1 . ALA M 1 167 ? 150.435 101.202 89.655 1.00 5.07 166 M 1 +ATOM 2592 H HB2 . ALA M 1 167 ? 151.494 100.556 90.643 1.00 5.07 166 M 1 +ATOM 2593 H HB3 . ALA M 1 167 ? 151.224 99.894 89.227 1.00 5.07 166 M 1 +ATOM 2594 N N . GLU M 1 168 ? 148.815 98.511 88.504 1.00 4.44 167 M 1 +ATOM 2595 C CA . GLU M 1 168 ? 147.748 98.325 87.474 1.00 4.44 167 M 1 +ATOM 2596 C C . GLU M 1 168 ? 146.605 97.530 88.114 1.00 4.44 167 M 1 +ATOM 2597 O O . GLU M 1 168 ? 145.468 97.850 87.878 1.00 4.44 167 M 1 +ATOM 2598 C CB . GLU M 1 168 ? 148.344 97.782 86.175 1.00 4.44 167 M 1 +ATOM 2599 C CG . GLU M 1 168 ? 149.229 98.839 85.535 1.00 4.44 167 M 1 +ATOM 2600 C CD . GLU M 1 168 ? 149.720 98.632 84.117 1.00 4.44 167 M 1 +ATOM 2601 O OE1 . GLU M 1 168 ? 149.618 97.495 83.616 1.00 4.44 167 M 1 +ATOM 2602 O OE2 . GLU M 1 168 ? 150.234 99.621 83.538 1.00 4.44 167 M 1 +ATOM 2603 H H . GLU M 1 168 ? 149.551 97.986 88.400 1.00 4.44 167 M 1 +ATOM 2604 H HA . GLU M 1 168 ? 147.392 99.221 87.272 1.00 4.44 167 M 1 +ATOM 2605 H HB2 . GLU M 1 168 ? 148.872 96.980 86.369 1.00 4.44 167 M 1 +ATOM 2606 H HB3 . GLU M 1 168 ? 147.619 97.540 85.561 1.00 4.44 167 M 1 +ATOM 2607 H HG2 . GLU M 1 168 ? 148.743 99.691 85.554 1.00 4.44 167 M 1 +ATOM 2608 H HG3 . GLU M 1 168 ? 150.020 98.955 86.104 1.00 4.44 167 M 1 +ATOM 2609 N N . TYR M 1 169 ? 146.921 96.577 88.980 1.00 4.01 168 M 1 +ATOM 2610 C CA . TYR M 1 169 ? 145.892 95.728 89.630 1.00 4.01 168 M 1 +ATOM 2611 C C . TYR M 1 169 ? 144.938 96.568 90.492 1.00 4.01 168 M 1 +ATOM 2612 O O . TYR M 1 169 ? 143.761 96.423 90.331 1.00 4.01 168 M 1 +ATOM 2613 C CB . TYR M 1 169 ? 146.555 94.628 90.464 1.00 4.01 168 M 1 +ATOM 2614 C CG . TYR M 1 169 ? 145.550 93.777 91.191 1.00 4.01 168 M 1 +ATOM 2615 C CD1 . TYR M 1 169 ? 144.937 92.700 90.566 1.00 4.01 168 M 1 +ATOM 2616 C CD2 . TYR M 1 169 ? 145.160 94.088 92.479 1.00 4.01 168 M 1 +ATOM 2617 C CE1 . TYR M 1 169 ? 143.997 91.924 91.224 1.00 4.01 168 M 1 +ATOM 2618 C CE2 . TYR M 1 169 ? 144.243 93.310 93.161 1.00 4.01 168 M 1 +ATOM 2619 C CZ . TYR M 1 169 ? 143.646 92.236 92.524 1.00 4.01 168 M 1 +ATOM 2620 O OH . TYR M 1 169 ? 142.716 91.496 93.177 1.00 4.01 168 M 1 +ATOM 2621 H H . TYR M 1 169 ? 147.751 96.468 89.336 1.00 4.01 168 M 1 +ATOM 2622 H HA . TYR M 1 169 ? 145.357 95.295 88.917 1.00 4.01 168 M 1 +ATOM 2623 H HB2 . TYR M 1 169 ? 147.091 94.061 89.871 1.00 4.01 168 M 1 +ATOM 2624 H HB3 . TYR M 1 169 ? 147.158 95.045 91.115 1.00 4.01 168 M 1 +ATOM 2625 H HD1 . TYR M 1 169 ? 145.176 92.483 89.680 1.00 4.01 168 M 1 +ATOM 2626 H HD2 . TYR M 1 169 ? 145.567 94.814 92.922 1.00 4.01 168 M 1 +ATOM 2627 H HE1 . TYR M 1 169 ? 143.597 91.189 90.788 1.00 4.01 168 M 1 +ATOM 2628 H HE2 . TYR M 1 169 ? 143.994 93.534 94.042 1.00 4.01 168 M 1 +ATOM 2629 H HH . TYR M 1 169 ? 142.054 91.991 93.406 1.00 4.01 168 M 1 +ATOM 2630 N N . LEU M 1 170 ? 145.441 97.487 91.311 1.00 4.13 169 M 1 +ATOM 2631 C CA . LEU M 1 170 ? 144.616 98.274 92.218 1.00 4.13 169 M 1 +ATOM 2632 C C . LEU M 1 170 ? 143.909 99.399 91.476 1.00 4.13 169 M 1 +ATOM 2633 O O . LEU M 1 170 ? 142.798 99.792 91.845 1.00 4.13 169 M 1 +ATOM 2634 C CB . LEU M 1 170 ? 145.469 98.813 93.366 1.00 4.13 169 M 1 +ATOM 2635 C CG . LEU M 1 170 ? 146.030 97.767 94.341 1.00 4.13 169 M 1 +ATOM 2636 C CD1 . LEU M 1 170 ? 146.951 98.399 95.361 1.00 4.13 169 M 1 +ATOM 2637 C CD2 . LEU M 1 170 ? 144.904 97.009 95.034 1.00 4.13 169 M 1 +ATOM 2638 H H . LEU M 1 170 ? 146.286 97.642 91.355 1.00 4.13 169 M 1 +ATOM 2639 H HA . LEU M 1 170 ? 143.922 97.699 92.576 1.00 4.13 169 M 1 +ATOM 2640 H HB2 . LEU M 1 170 ? 146.226 99.287 92.988 1.00 4.13 169 M 1 +ATOM 2641 H HB3 . LEU M 1 170 ? 144.932 99.435 93.881 1.00 4.13 169 M 1 +ATOM 2642 H HG . LEU M 1 170 ? 146.553 97.119 93.843 1.00 4.13 169 M 1 +ATOM 2643 H HD11 . LEU M 1 170 ? 147.356 97.694 95.890 1.00 4.13 169 M 1 +ATOM 2644 H HD12 . LEU M 1 170 ? 147.644 98.911 94.915 1.00 4.13 169 M 1 +ATOM 2645 H HD13 . LEU M 1 170 ? 146.426 98.981 95.933 1.00 4.13 169 M 1 +ATOM 2646 H HD21 . LEU M 1 170 ? 145.268 96.464 95.749 1.00 4.13 169 M 1 +ATOM 2647 H HD22 . LEU M 1 170 ? 144.268 97.648 95.391 1.00 4.13 169 M 1 +ATOM 2648 H HD23 . LEU M 1 170 ? 144.460 96.432 94.393 1.00 4.13 169 M 1 +ATOM 2649 N N . PHE M 1 171 ? 144.530 99.912 90.419 1.00 3.79 170 M 1 +ATOM 2650 C CA . PHE M 1 171 ? 143.872 100.895 89.568 1.00 3.79 170 M 1 +ATOM 2651 C C . PHE M 1 171 ? 142.682 100.273 88.847 1.00 3.79 170 M 1 +ATOM 2652 O O . PHE M 1 171 ? 141.621 100.894 88.730 1.00 3.79 170 M 1 +ATOM 2653 C CB . PHE M 1 171 ? 144.874 101.442 88.562 1.00 3.79 170 M 1 +ATOM 2654 C CG . PHE M 1 171 ? 144.340 102.550 87.735 1.00 3.79 170 M 1 +ATOM 2655 C CD1 . PHE M 1 171 ? 144.342 103.846 88.205 1.00 3.79 170 M 1 +ATOM 2656 C CD2 . PHE M 1 171 ? 143.774 102.294 86.510 1.00 3.79 170 M 1 +ATOM 2657 C CE1 . PHE M 1 171 ? 143.840 104.856 87.442 1.00 3.79 170 M 1 +ATOM 2658 C CE2 . PHE M 1 171 ? 143.267 103.300 85.759 1.00 3.79 170 M 1 +ATOM 2659 C CZ . PHE M 1 171 ? 143.300 104.576 86.223 1.00 3.79 170 M 1 +ATOM 2660 H H . PHE M 1 171 ? 145.328 99.706 90.173 1.00 3.79 170 M 1 +ATOM 2661 H HA . PHE M 1 171 ? 143.555 101.638 90.105 1.00 3.79 170 M 1 +ATOM 2662 H HB2 . PHE M 1 171 ? 145.651 101.772 89.040 1.00 3.79 170 M 1 +ATOM 2663 H HB3 . PHE M 1 171 ? 145.148 100.727 87.967 1.00 3.79 170 M 1 +ATOM 2664 H HD1 . PHE M 1 171 ? 144.718 104.044 89.032 1.00 3.79 170 M 1 +ATOM 2665 H HD2 . PHE M 1 171 ? 143.749 101.423 86.186 1.00 3.79 170 M 1 +ATOM 2666 H HE1 . PHE M 1 171 ? 143.856 105.730 87.758 1.00 3.79 170 M 1 +ATOM 2667 H HE2 . PHE M 1 171 ? 142.897 103.113 84.927 1.00 3.79 170 M 1 +ATOM 2668 H HZ . PHE M 1 171 ? 142.954 105.265 85.703 1.00 3.79 170 M 1 +ATOM 2669 N N . ASP M 1 172 ? 142.886 99.054 88.392 1.00 4.02 171 M 1 +ATOM 2670 C CA . ASP M 1 172 ? 141.806 98.292 87.727 1.00 4.02 171 M 1 +ATOM 2671 C C . ASP M 1 172 ? 140.659 98.138 88.738 1.00 4.02 171 M 1 +ATOM 2672 O O . ASP M 1 172 ? 139.533 98.351 88.327 1.00 4.02 171 M 1 +ATOM 2673 C CB . ASP M 1 172 ? 142.330 96.951 87.193 1.00 4.02 171 M 1 +ATOM 2674 C CG . ASP M 1 172 ? 141.273 96.045 86.572 1.00 4.02 171 M 1 +ATOM 2675 O OD1 . ASP M 1 172 ? 140.506 95.464 87.323 1.00 4.02 171 M 1 +ATOM 2676 O OD2 . ASP M 1 172 ? 141.246 95.911 85.334 1.00 4.02 171 M 1 +ATOM 2677 H H . ASP M 1 172 ? 143.713 98.680 88.321 1.00 4.02 171 M 1 +ATOM 2678 H HA . ASP M 1 172 ? 141.480 98.822 86.962 1.00 4.02 171 M 1 +ATOM 2679 H HB2 . ASP M 1 172 ? 143.014 97.129 86.515 1.00 4.02 171 M 1 +ATOM 2680 H HB3 . ASP M 1 172 ? 142.753 96.464 87.929 1.00 4.02 171 M 1 +ATOM 2681 N N . LYS M 1 173 ? 140.916 97.846 90.025 1.00 4.18 172 M 1 +ATOM 2682 C CA . LYS M 1 173 ? 139.818 97.616 90.960 1.00 4.18 172 M 1 +ATOM 2683 C C . LYS M 1 173 ? 139.128 98.913 91.381 1.00 4.18 172 M 1 +ATOM 2684 O O . LYS M 1 173 ? 137.897 98.991 91.389 1.00 4.18 172 M 1 +ATOM 2685 C CB . LYS M 1 173 ? 140.325 96.848 92.179 1.00 4.18 172 M 1 +ATOM 2686 C CG . LYS M 1 173 ? 140.865 95.460 91.866 1.00 4.18 172 M 1 +ATOM 2687 C CD . LYS M 1 173 ? 139.777 94.534 91.328 1.00 4.18 172 M 1 +ATOM 2688 C CE . LYS M 1 173 ? 140.229 93.101 91.153 1.00 4.18 172 M 1 +ATOM 2689 N NZ . LYS M 1 173 ? 139.141 92.269 90.574 1.00 4.18 172 M 1 +ATOM 2690 H H . LYS M 1 173 ? 141.708 97.794 90.356 1.00 4.18 172 M 1 +ATOM 2691 H HA . LYS M 1 173 ? 139.134 97.087 90.521 1.00 4.18 172 M 1 +ATOM 2692 H HB2 . LYS M 1 173 ? 141.048 97.352 92.584 1.00 4.18 172 M 1 +ATOM 2693 H HB3 . LYS M 1 173 ? 139.597 96.747 92.812 1.00 4.18 172 M 1 +ATOM 2694 H HG2 . LYS M 1 173 ? 141.556 95.531 91.189 1.00 4.18 172 M 1 +ATOM 2695 H HG3 . LYS M 1 173 ? 141.237 95.075 92.675 1.00 4.18 172 M 1 +ATOM 2696 H HD2 . LYS M 1 173 ? 139.010 94.546 91.921 1.00 4.18 172 M 1 +ATOM 2697 H HD3 . LYS M 1 173 ? 139.524 94.850 90.446 1.00 4.18 172 M 1 +ATOM 2698 H HE2 . LYS M 1 173 ? 140.984 93.064 90.545 1.00 4.18 172 M 1 +ATOM 2699 H HE3 . LYS M 1 173 ? 140.476 92.729 92.014 1.00 4.18 172 M 1 +ATOM 2700 H HZ1 . LYS M 1 173 ? 139.354 91.406 90.625 1.00 4.18 172 M 1 +ATOM 2701 H HZ2 . LYS M 1 173 ? 138.377 92.403 91.010 1.00 4.18 172 M 1 +ATOM 2702 H HZ3 . LYS M 1 173 ? 139.022 92.484 89.719 1.00 4.18 172 M 1 +ATOM 2703 N N . HIS M 1 174 ? 139.898 99.937 91.734 1.00 4.28 173 M 1 +ATOM 2704 C CA . HIS M 1 174 ? 139.326 101.141 92.340 1.00 4.28 173 M 1 +ATOM 2705 C C . HIS M 1 174 ? 138.808 102.130 91.299 1.00 4.28 173 M 1 +ATOM 2706 O O . HIS M 1 174 ? 137.635 102.510 91.318 1.00 4.28 173 M 1 +ATOM 2707 C CB . HIS M 1 174 ? 140.365 101.793 93.254 1.00 4.28 173 M 1 +ATOM 2708 C CG . HIS M 1 174 ? 140.680 100.984 94.467 1.00 4.28 173 M 1 +ATOM 2709 N ND1 . HIS M 1 174 ? 139.808 100.871 95.527 1.00 4.28 173 M 1 +ATOM 2710 C CD2 . HIS M 1 174 ? 141.767 100.251 94.792 1.00 4.28 173 M 1 +ATOM 2711 C CE1 . HIS M 1 174 ? 140.345 100.097 96.451 1.00 4.28 173 M 1 +ATOM 2712 N NE2 . HIS M 1 174 ? 141.533 99.709 96.031 1.00 4.28 173 M 1 +ATOM 2713 H H . HIS M 1 174 ? 140.752 99.957 91.635 1.00 4.28 173 M 1 +ATOM 2714 H HA . HIS M 1 174 ? 138.576 100.895 92.904 1.00 4.28 173 M 1 +ATOM 2715 H HB2 . HIS M 1 174 ? 141.193 101.898 92.761 1.00 4.28 173 M 1 +ATOM 2716 H HB3 . HIS M 1 174 ? 140.046 102.661 93.547 1.00 4.28 173 M 1 +ATOM 2717 H HD2 . HIS M 1 174 ? 142.533 100.137 94.277 1.00 4.28 173 M 1 +ATOM 2718 H HE1 . HIS M 1 174 ? 139.951 99.866 97.261 1.00 4.28 173 M 1 +ATOM 2719 H HE2 . HIS M 1 174 ? 142.076 99.200 96.462 1.00 4.28 173 M 1 +ATOM 2720 N N . THR M 1 175 ? 139.668 102.559 90.381 1.00 3.92 174 M 1 +ATOM 2721 C CA . THR M 1 175 ? 139.281 103.609 89.443 1.00 3.92 174 M 1 +ATOM 2722 C C . THR M 1 175 ? 138.388 103.072 88.331 1.00 3.92 174 M 1 +ATOM 2723 O O . THR M 1 175 ? 137.333 103.648 88.043 1.00 3.92 174 M 1 +ATOM 2724 C CB . THR M 1 175 ? 140.529 104.288 88.884 1.00 3.92 174 M 1 +ATOM 2725 O OG1 . THR M 1 175 ? 141.222 104.932 89.958 1.00 3.92 174 M 1 +ATOM 2726 C CG2 . THR M 1 175 ? 140.176 105.309 87.815 1.00 3.92 174 M 1 +ATOM 2727 H H . THR M 1 175 ? 140.472 102.269 90.290 1.00 3.92 174 M 1 +ATOM 2728 H HA . THR M 1 175 ? 138.774 104.287 89.917 1.00 3.92 174 M 1 +ATOM 2729 H HB . THR M 1 175 ? 141.117 103.628 88.485 1.00 3.92 174 M 1 +ATOM 2730 H HG1 . THR M 1 175 ? 141.349 105.742 89.774 1.00 3.92 174 M 1 +ATOM 2731 H HG21 . THR M 1 175 ? 140.922 105.911 87.670 1.00 3.92 174 M 1 +ATOM 2732 H HG22 . THR M 1 175 ? 139.977 104.866 86.975 1.00 3.92 174 M 1 +ATOM 2733 H HG23 . THR M 1 175 ? 139.402 105.826 88.086 1.00 3.92 174 M 1 +ATOM 2734 N N . LEU M 1 176 ? 138.787 101.981 87.690 1.00 3.89 175 M 1 +ATOM 2735 C CA . LEU M 1 176 ? 138.029 101.435 86.571 1.00 3.89 175 M 1 +ATOM 2736 C C . LEU M 1 176 ? 137.001 100.390 86.986 1.00 3.89 175 M 1 +ATOM 2737 O O . LEU M 1 176 ? 136.269 99.897 86.125 1.00 3.89 175 M 1 +ATOM 2738 C CB . LEU M 1 176 ? 138.981 100.835 85.536 1.00 3.89 175 M 1 +ATOM 2739 C CG . LEU M 1 176 ? 139.949 101.826 84.877 1.00 3.89 175 M 1 +ATOM 2740 C CD1 . LEU M 1 176 ? 140.858 101.121 83.920 1.00 3.89 175 M 1 +ATOM 2741 C CD2 . LEU M 1 176 ? 139.256 102.990 84.197 1.00 3.89 175 M 1 +ATOM 2742 H H . LEU M 1 176 ? 139.499 101.538 87.883 1.00 3.89 175 M 1 +ATOM 2743 H HA . LEU M 1 176 ? 137.528 102.142 86.135 1.00 3.89 175 M 1 +ATOM 2744 H HB2 . LEU M 1 176 ? 139.518 100.161 85.981 1.00 3.89 175 M 1 +ATOM 2745 H HB3 . LEU M 1 176 ? 138.456 100.406 84.843 1.00 3.89 175 M 1 +ATOM 2746 H HG . LEU M 1 176 ? 140.518 102.192 85.573 1.00 3.89 175 M 1 +ATOM 2747 H HD11 . LEU M 1 176 ? 140.996 101.648 83.117 1.00 3.89 175 M 1 +ATOM 2748 H HD12 . LEU M 1 176 ? 141.711 100.998 84.365 1.00 3.89 175 M 1 +ATOM 2749 H HD13 . LEU M 1 176 ? 140.472 100.264 83.679 1.00 3.89 175 M 1 +ATOM 2750 H HD21 . LEU M 1 176 ? 139.918 103.538 83.747 1.00 3.89 175 M 1 +ATOM 2751 H HD22 . LEU M 1 176 ? 138.608 102.648 83.562 1.00 3.89 175 M 1 +ATOM 2752 H HD23 . LEU M 1 176 ? 138.811 103.528 84.870 1.00 3.89 175 M 1 +ATOM 2753 N N . GLY M 1 177 ? 136.922 100.050 88.265 1.00 4.79 176 M 1 +ATOM 2754 C CA . GLY M 1 177 ? 135.933 99.110 88.758 1.00 4.79 176 M 1 +ATOM 2755 C C . GLY M 1 177 ? 134.724 99.796 89.358 1.00 4.79 176 M 1 +ATOM 2756 O O . GLY M 1 177 ? 134.403 100.926 88.999 1.00 4.79 176 M 1 +ATOM 2757 H H . GLY M 1 177 ? 137.440 100.352 88.881 1.00 4.79 176 M 1 +ATOM 2758 H HA2 . GLY M 1 177 ? 135.628 98.522 88.049 1.00 4.79 176 M 1 +ATOM 2759 H HA3 . GLY M 1 177 ? 136.344 98.561 89.444 1.00 4.79 176 M 1 +HETATM 2760 ZN ZN . ZN PA 3 . ? 134.712 110.111 68.601 1.00 16.76 201 M 1 +# diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6ydw.cif b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6ydw.cif new file mode 100644 index 0000000000000000000000000000000000000000..040f961e6b8b732218c13c13db8f378502a151d5 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/6ydw.cif @@ -0,0 +1,2467 @@ +data_6YDW +# +_entry.id 6YDW +# +loop_ +_chem_comp.formula +_chem_comp.formula_weight +_chem_comp.id +_chem_comp.mon_nstd_flag +_chem_comp.name +_chem_comp.pdbx_synonyms +_chem_comp.type +"C10 H14 N5 O8 P" 363.221 5GP . "GUANOSINE-5'-MONOPHOSPHATE" ? non-polymer +"C10 H14 N5 O7 P" 347.221 A y "ADENOSINE-5'-MONOPHOSPHATE" ? "RNA linking" +"C3 H7 N O2" 89.093 ALA y ALANINE ? "L-peptide linking" +"C6 H15 N4 O2 1" 175.209 ARG y ARGININE ? "L-peptide linking" +"C4 H8 N2 O3" 132.118 ASN y ASPARAGINE ? "L-peptide linking" +"C4 H7 N O4" 133.103 ASP y "ASPARTIC ACID" ? "L-peptide linking" +"C9 H14 N3 O8 P" 323.197 C y "CYTIDINE-5'-MONOPHOSPHATE" ? "RNA linking" +"C3 H7 N O2 S" 121.158 CYS y CYSTEINE ? "L-peptide linking" +"C6 H11 N O3 S" 177.221 FME n N-FORMYLMETHIONINE ? "L-peptide linking" +"C10 H14 N5 O8 P" 363.221 G y "GUANOSINE-5'-MONOPHOSPHATE" ? "RNA linking" +"C5 H10 N2 O3" 146.144 GLN y GLUTAMINE ? "L-peptide linking" +"C5 H9 N O4" 147.129 GLU y "GLUTAMIC ACID" ? "L-peptide linking" +"C2 H5 N O2" 75.067 GLY y GLYCINE ? "peptide linking" +"C10 H17 N6 O13 P3" 522.196 GNP . "PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER" ? non-polymer +"C10 H16 N5 O14 P3" 523.180 GTP n "GUANOSINE-5'-TRIPHOSPHATE" ? non-polymer +"C6 H10 N3 O2 1" 156.162 HIS y HISTIDINE ? "L-peptide linking" +"H2 O" 18.015 HOH . WATER ? non-polymer +"C6 H13 N O2" 131.173 ILE y ISOLEUCINE ? "L-peptide linking" +"C6 H13 N O2" 131.173 LEU y LEUCINE ? "L-peptide linking" +"C6 H15 N2 O2 1" 147.195 LYS y LYSINE ? "L-peptide linking" +"C5 H11 N O2 S" 149.211 MET y METHIONINE ? "L-peptide linking" +"Mg 2" 24.305 MG . "MAGNESIUM ION" ? non-polymer +"C9 H11 N O2" 165.189 PHE y PHENYLALANINE ? "L-peptide linking" +"C5 H9 N O2" 115.130 PRO y PROLINE ? "L-peptide linking" +"C3 H7 N O3" 105.093 SER y SERINE ? "L-peptide linking" +"C10 H26 N4" 202.340 SPM . SPERMINE ? non-polymer +"C4 H9 N O3" 119.119 THR y THREONINE ? "L-peptide linking" +"C11 H12 N2 O2" 204.225 TRP y TRYPTOPHAN ? "L-peptide linking" +"C9 H11 N O3" 181.189 TYR y TYROSINE ? "L-peptide linking" +"C9 H13 N2 O9 P" 324.181 U y "URIDINE-5'-MONOPHOSPHATE" ? "RNA linking" +"C4 H9 N O2" 103.120 UNK . UNKNOWN ? "L-peptide linking" +"C5 H11 N O2" 117.146 VAL y VALINE ? "L-peptide linking" +"Zn 2" 65.409 ZN . "ZINC ION" ? non-polymer +# +_entity.id 17 +_entity.pdbx_description "Mitochondrial ribosomal protein L46" +_entity.type polymer +# +_entity_poly.entity_id 17 +_entity_poly.pdbx_strand_id Bj +_entity_poly.type polypeptide(L) +# +loop_ +_entity_poly_seq.entity_id +_entity_poly_seq.hetero +_entity_poly_seq.mon_id +_entity_poly_seq.num +17 n MET 1 +17 n ALA 2 +17 n ALA 3 +17 n PRO 4 +17 n VAL 5 +17 n ARG 6 +17 n ARG 7 +17 n THR 8 +17 n MET 9 +17 n LEU 10 +17 n ARG 11 +17 n VAL 12 +17 n VAL 13 +17 n ARG 14 +17 n GLY 15 +17 n TRP 16 +17 n ARG 17 +17 n ARG 18 +17 n PHE 19 +17 n GLU 20 +17 n GLY 21 +17 n PRO 22 +17 n TRP 23 +17 n ALA 24 +17 n HIS 25 +17 n SER 26 +17 n LEU 27 +17 n GLY 28 +17 n SER 29 +17 n ARG 30 +17 n ASN 31 +17 n LEU 32 +17 n ALA 33 +17 n LEU 34 +17 n ALA 35 +17 n VAL 36 +17 n ALA 37 +17 n PRO 38 +17 n SER 39 +17 n SER 40 +17 n SER 41 +17 n SER 42 +17 n SER 43 +17 n PRO 44 +17 n TRP 45 +17 n ARG 46 +17 n LEU 47 +17 n LEU 48 +17 n GLY 49 +17 n ALA 50 +17 n LEU 51 +17 n CYS 52 +17 n LEU 53 +17 n GLN 54 +17 n ARG 55 +17 n PRO 56 +17 n PRO 57 +17 n LEU 58 +17 n VAL 59 +17 n THR 60 +17 n LYS 61 +17 n PRO 62 +17 n LEU 63 +17 n THR 64 +17 n PRO 65 +17 n LEU 66 +17 n GLN 67 +17 n GLU 68 +17 n GLU 69 +17 n MET 70 +17 n ALA 71 +17 n ASP 72 +17 n LEU 73 +17 n LEU 74 +17 n GLN 75 +17 n GLN 76 +17 n ILE 77 +17 n GLU 78 +17 n ILE 79 +17 n GLU 80 +17 n ARG 81 +17 n SER 82 +17 n LEU 83 +17 n TYR 84 +17 n SER 85 +17 n ASP 86 +17 n HIS 87 +17 n GLU 88 +17 n LEU 89 +17 n ARG 90 +17 n ALA 91 +17 n LEU 92 +17 n ASP 93 +17 n GLU 94 +17 n ALA 95 +17 n GLN 96 +17 n GLN 97 +17 n LEU 98 +17 n ALA 99 +17 n LYS 100 +17 n LYS 101 +17 n LYS 102 +17 n SER 103 +17 n ASP 104 +17 n LEU 105 +17 n TYR 106 +17 n GLU 107 +17 n GLU 108 +17 n GLU 109 +17 n ASP 110 +17 n GLU 111 +17 n GLN 112 +17 n ASN 113 +17 n ILE 114 +17 n LEU 115 +17 n LEU 116 +17 n ALA 117 +17 n GLN 118 +17 n ASP 119 +17 n LEU 120 +17 n GLU 121 +17 n ASP 122 +17 n MET 123 +17 n TRP 124 +17 n GLU 125 +17 n GLN 126 +17 n LYS 127 +17 n PHE 128 +17 n LEU 129 +17 n HIS 130 +17 n PHE 131 +17 n LYS 132 +17 n LEU 133 +17 n GLY 134 +17 n ALA 135 +17 n ARG 136 +17 n LEU 137 +17 n THR 138 +17 n GLU 139 +17 n ALA 140 +17 n ASP 141 +17 n LYS 142 +17 n LYS 143 +17 n ASP 144 +17 n ASP 145 +17 n ARG 146 +17 n THR 147 +17 n SER 148 +17 n LEU 149 +17 n HIS 150 +17 n ARG 151 +17 n LYS 152 +17 n LEU 153 +17 n ASP 154 +17 n ARG 155 +17 n ASN 156 +17 n LEU 157 +17 n ILE 158 +17 n LEU 159 +17 n LEU 160 +17 n VAL 161 +17 n ARG 162 +17 n GLU 163 +17 n LYS 164 +17 n LEU 165 +17 n GLY 166 +17 n ASP 167 +17 n GLN 168 +17 n ASP 169 +17 n ILE 170 +17 n TRP 171 +17 n MET 172 +17 n LEU 173 +17 n PRO 174 +17 n GLN 175 +17 n SER 176 +17 n ASP 177 +17 n TRP 178 +17 n GLN 179 +17 n PRO 180 +17 n GLY 181 +17 n GLU 182 +17 n THR 183 +17 n LEU 184 +17 n ARG 185 +17 n GLN 186 +17 n THR 187 +17 n ALA 188 +17 n GLU 189 +17 n ARG 190 +17 n THR 191 +17 n LEU 192 +17 n ALA 193 +17 n THR 194 +17 n LEU 195 +17 n SER 196 +17 n GLU 197 +17 n ASN 198 +17 n ASN 199 +17 n MET 200 +17 n GLU 201 +17 n ALA 202 +17 n LYS 203 +17 n PHE 204 +17 n LEU 205 +17 n GLY 206 +17 n ASN 207 +17 n ALA 208 +17 n PRO 209 +17 n CYS 210 +17 n GLY 211 +17 n HIS 212 +17 n TYR 213 +17 n LYS 214 +17 n PHE 215 +17 n LYS 216 +17 n PHE 217 +17 n PRO 218 +17 n GLN 219 +17 n ALA 220 +17 n MET 221 +17 n ARG 222 +17 n THR 223 +17 n GLU 224 +17 n THR 225 +17 n SER 226 +17 n LEU 227 +17 n GLY 228 +17 n ALA 229 +17 n LYS 230 +17 n VAL 231 +17 n PHE 232 +17 n PHE 233 +17 n PHE 234 +17 n LYS 235 +17 n ALA 236 +17 n LEU 237 +17 n LEU 238 +17 n LEU 239 +17 n THR 240 +17 n GLY 241 +17 n ASP 242 +17 n PHE 243 +17 n SER 244 +17 n GLN 245 +17 n ALA 246 +17 n GLY 247 +17 n LYS 248 +17 n LYS 249 +17 n GLY 250 +17 n HIS 251 +17 n HIS 252 +17 n VAL 253 +17 n TRP 254 +17 n VAL 255 +17 n SER 256 +17 n LYS 257 +17 n GLU 258 +17 n GLU 259 +17 n LEU 260 +17 n GLY 261 +17 n ASP 262 +17 n TYR 263 +17 n LEU 264 +17 n LYS 265 +17 n PRO 266 +17 n LYS 267 +17 n TYR 268 +17 n LEU 269 +17 n ALA 270 +17 n GLN 271 +17 n VAL 272 +17 n ARG 273 +17 n ARG 274 +17 n PHE 275 +17 n LEU 276 +17 n LEU 277 +17 n ASP 278 +17 n LEU 279 +# +_exptl.method "ELECTRON MICROSCOPY" +# +_pdbx_audit_revision_history.revision_date 2020-07-15 +# +_pdbx_database_status.recvd_initial_deposition_date 2020-07-15 +# +loop_ +_pdbx_poly_seq_scheme.asym_id +_pdbx_poly_seq_scheme.auth_seq_num +_pdbx_poly_seq_scheme.entity_id +_pdbx_poly_seq_scheme.hetero +_pdbx_poly_seq_scheme.mon_id +_pdbx_poly_seq_scheme.pdb_ins_code +_pdbx_poly_seq_scheme.pdb_seq_num +_pdbx_poly_seq_scheme.pdb_strand_id +_pdbx_poly_seq_scheme.seq_id +Q ? 17 n MET . 1 Bj 1 +Q ? 17 n ALA . 2 Bj 2 +Q ? 17 n ALA . 3 Bj 3 +Q ? 17 n PRO . 4 Bj 4 +Q ? 17 n VAL . 5 Bj 5 +Q ? 17 n ARG . 6 Bj 6 +Q ? 17 n ARG . 7 Bj 7 +Q ? 17 n THR . 8 Bj 8 +Q ? 17 n MET . 9 Bj 9 +Q ? 17 n LEU . 10 Bj 10 +Q ? 17 n ARG . 11 Bj 11 +Q ? 17 n VAL . 12 Bj 12 +Q ? 17 n VAL . 13 Bj 13 +Q ? 17 n ARG . 14 Bj 14 +Q ? 17 n GLY . 15 Bj 15 +Q ? 17 n TRP . 16 Bj 16 +Q ? 17 n ARG . 17 Bj 17 +Q ? 17 n ARG . 18 Bj 18 +Q ? 17 n PHE . 19 Bj 19 +Q ? 17 n GLU . 20 Bj 20 +Q ? 17 n GLY . 21 Bj 21 +Q ? 17 n PRO . 22 Bj 22 +Q ? 17 n TRP . 23 Bj 23 +Q ? 17 n ALA . 24 Bj 24 +Q ? 17 n HIS . 25 Bj 25 +Q ? 17 n SER . 26 Bj 26 +Q ? 17 n LEU . 27 Bj 27 +Q ? 17 n GLY . 28 Bj 28 +Q ? 17 n SER . 29 Bj 29 +Q ? 17 n ARG . 30 Bj 30 +Q ? 17 n ASN . 31 Bj 31 +Q ? 17 n LEU . 32 Bj 32 +Q ? 17 n ALA . 33 Bj 33 +Q ? 17 n LEU . 34 Bj 34 +Q ? 17 n ALA . 35 Bj 35 +Q ? 17 n VAL . 36 Bj 36 +Q ? 17 n ALA . 37 Bj 37 +Q ? 17 n PRO . 38 Bj 38 +Q ? 17 n SER . 39 Bj 39 +Q ? 17 n SER . 40 Bj 40 +Q ? 17 n SER . 41 Bj 41 +Q ? 17 n SER . 42 Bj 42 +Q 43 17 n SER . 43 Bj 43 +Q 44 17 n PRO . 44 Bj 44 +Q 45 17 n TRP . 45 Bj 45 +Q 46 17 n ARG . 46 Bj 46 +Q 47 17 n LEU . 47 Bj 47 +Q 48 17 n LEU . 48 Bj 48 +Q 49 17 n GLY . 49 Bj 49 +Q 50 17 n ALA . 50 Bj 50 +Q 51 17 n LEU . 51 Bj 51 +Q 52 17 n CYS . 52 Bj 52 +Q 53 17 n LEU . 53 Bj 53 +Q 54 17 n GLN . 54 Bj 54 +Q 55 17 n ARG . 55 Bj 55 +Q 56 17 n PRO . 56 Bj 56 +Q 57 17 n PRO . 57 Bj 57 +Q 58 17 n LEU . 58 Bj 58 +Q 59 17 n VAL . 59 Bj 59 +Q 60 17 n THR . 60 Bj 60 +Q 61 17 n LYS . 61 Bj 61 +Q 62 17 n PRO . 62 Bj 62 +Q 63 17 n LEU . 63 Bj 63 +Q 64 17 n THR . 64 Bj 64 +Q 65 17 n PRO . 65 Bj 65 +Q 66 17 n LEU . 66 Bj 66 +Q 67 17 n GLN . 67 Bj 67 +Q 68 17 n GLU . 68 Bj 68 +Q 69 17 n GLU . 69 Bj 69 +Q 70 17 n MET . 70 Bj 70 +Q 71 17 n ALA . 71 Bj 71 +Q 72 17 n ASP . 72 Bj 72 +Q 73 17 n LEU . 73 Bj 73 +Q 74 17 n LEU . 74 Bj 74 +Q 75 17 n GLN . 75 Bj 75 +Q 76 17 n GLN . 76 Bj 76 +Q 77 17 n ILE . 77 Bj 77 +Q 78 17 n GLU . 78 Bj 78 +Q 79 17 n ILE . 79 Bj 79 +Q 80 17 n GLU . 80 Bj 80 +Q 81 17 n ARG . 81 Bj 81 +Q 82 17 n SER . 82 Bj 82 +Q 83 17 n LEU . 83 Bj 83 +Q 84 17 n TYR . 84 Bj 84 +Q 85 17 n SER . 85 Bj 85 +Q 86 17 n ASP . 86 Bj 86 +Q 87 17 n HIS . 87 Bj 87 +Q 88 17 n GLU . 88 Bj 88 +Q 89 17 n LEU . 89 Bj 89 +Q 90 17 n ARG . 90 Bj 90 +Q 91 17 n ALA . 91 Bj 91 +Q 92 17 n LEU . 92 Bj 92 +Q 93 17 n ASP . 93 Bj 93 +Q 94 17 n GLU . 94 Bj 94 +Q 95 17 n ALA . 95 Bj 95 +Q 96 17 n GLN . 96 Bj 96 +Q 97 17 n GLN . 97 Bj 97 +Q 98 17 n LEU . 98 Bj 98 +Q 99 17 n ALA . 99 Bj 99 +Q 100 17 n LYS . 100 Bj 100 +Q 101 17 n LYS . 101 Bj 101 +Q 102 17 n LYS . 102 Bj 102 +Q 103 17 n SER . 103 Bj 103 +Q 104 17 n ASP . 104 Bj 104 +Q ? 17 n LEU . 105 Bj 105 +Q ? 17 n TYR . 106 Bj 106 +Q ? 17 n GLU . 107 Bj 107 +Q ? 17 n GLU . 108 Bj 108 +Q ? 17 n GLU . 109 Bj 109 +Q ? 17 n ASP . 110 Bj 110 +Q ? 17 n GLU . 111 Bj 111 +Q ? 17 n GLN . 112 Bj 112 +Q ? 17 n ASN . 113 Bj 113 +Q ? 17 n ILE . 114 Bj 114 +Q ? 17 n LEU . 115 Bj 115 +Q 116 17 n LEU . 116 Bj 116 +Q 117 17 n ALA . 117 Bj 117 +Q 118 17 n GLN . 118 Bj 118 +Q 119 17 n ASP . 119 Bj 119 +Q 120 17 n LEU . 120 Bj 120 +Q 121 17 n GLU . 121 Bj 121 +Q 122 17 n ASP . 122 Bj 122 +Q 123 17 n MET . 123 Bj 123 +Q 124 17 n TRP . 124 Bj 124 +Q 125 17 n GLU . 125 Bj 125 +Q 126 17 n GLN . 126 Bj 126 +Q 127 17 n LYS . 127 Bj 127 +Q 128 17 n PHE . 128 Bj 128 +Q 129 17 n LEU . 129 Bj 129 +Q 130 17 n HIS . 130 Bj 130 +Q 131 17 n PHE . 131 Bj 131 +Q 132 17 n LYS . 132 Bj 132 +Q 133 17 n LEU . 133 Bj 133 +Q 134 17 n GLY . 134 Bj 134 +Q 135 17 n ALA . 135 Bj 135 +Q 136 17 n ARG . 136 Bj 136 +Q 137 17 n LEU . 137 Bj 137 +Q 138 17 n THR . 138 Bj 138 +Q 139 17 n GLU . 139 Bj 139 +Q 140 17 n ALA . 140 Bj 140 +Q 141 17 n ASP . 141 Bj 141 +Q 142 17 n LYS . 142 Bj 142 +Q 143 17 n LYS . 143 Bj 143 +Q 144 17 n ASP . 144 Bj 144 +Q 145 17 n ASP . 145 Bj 145 +Q 146 17 n ARG . 146 Bj 146 +Q 147 17 n THR . 147 Bj 147 +Q 148 17 n SER . 148 Bj 148 +Q 149 17 n LEU . 149 Bj 149 +Q 150 17 n HIS . 150 Bj 150 +Q 151 17 n ARG . 151 Bj 151 +Q 152 17 n LYS . 152 Bj 152 +Q 153 17 n LEU . 153 Bj 153 +Q 154 17 n ASP . 154 Bj 154 +Q 155 17 n ARG . 155 Bj 155 +Q 156 17 n ASN . 156 Bj 156 +Q 157 17 n LEU . 157 Bj 157 +Q 158 17 n ILE . 158 Bj 158 +Q 159 17 n LEU . 159 Bj 159 +Q 160 17 n LEU . 160 Bj 160 +Q 161 17 n VAL . 161 Bj 161 +Q 162 17 n ARG . 162 Bj 162 +Q 163 17 n GLU . 163 Bj 163 +Q 164 17 n LYS . 164 Bj 164 +Q 165 17 n LEU . 165 Bj 165 +Q 166 17 n GLY . 166 Bj 166 +Q 167 17 n ASP . 167 Bj 167 +Q 168 17 n GLN . 168 Bj 168 +Q 169 17 n ASP . 169 Bj 169 +Q 170 17 n ILE . 170 Bj 170 +Q 171 17 n TRP . 171 Bj 171 +Q 172 17 n MET . 172 Bj 172 +Q 173 17 n LEU . 173 Bj 173 +Q 174 17 n PRO . 174 Bj 174 +Q 175 17 n GLN . 175 Bj 175 +Q 176 17 n SER . 176 Bj 176 +Q 177 17 n ASP . 177 Bj 177 +Q 178 17 n TRP . 178 Bj 178 +Q 179 17 n GLN . 179 Bj 179 +Q 180 17 n PRO . 180 Bj 180 +Q 181 17 n GLY . 181 Bj 181 +Q 182 17 n GLU . 182 Bj 182 +Q 183 17 n THR . 183 Bj 183 +Q 184 17 n LEU . 184 Bj 184 +Q 185 17 n ARG . 185 Bj 185 +Q 186 17 n GLN . 186 Bj 186 +Q 187 17 n THR . 187 Bj 187 +Q 188 17 n ALA . 188 Bj 188 +Q 189 17 n GLU . 189 Bj 189 +Q 190 17 n ARG . 190 Bj 190 +Q 191 17 n THR . 191 Bj 191 +Q 192 17 n LEU . 192 Bj 192 +Q 193 17 n ALA . 193 Bj 193 +Q 194 17 n THR . 194 Bj 194 +Q 195 17 n LEU . 195 Bj 195 +Q 196 17 n SER . 196 Bj 196 +Q 197 17 n GLU . 197 Bj 197 +Q 198 17 n ASN . 198 Bj 198 +Q 199 17 n ASN . 199 Bj 199 +Q 200 17 n MET . 200 Bj 200 +Q 201 17 n GLU . 201 Bj 201 +Q 202 17 n ALA . 202 Bj 202 +Q 203 17 n LYS . 203 Bj 203 +Q 204 17 n PHE . 204 Bj 204 +Q 205 17 n LEU . 205 Bj 205 +Q 206 17 n GLY . 206 Bj 206 +Q 207 17 n ASN . 207 Bj 207 +Q 208 17 n ALA . 208 Bj 208 +Q 209 17 n PRO . 209 Bj 209 +Q 210 17 n CYS . 210 Bj 210 +Q 211 17 n GLY . 211 Bj 211 +Q 212 17 n HIS . 212 Bj 212 +Q 213 17 n TYR . 213 Bj 213 +Q 214 17 n LYS . 214 Bj 214 +Q 215 17 n PHE . 215 Bj 215 +Q 216 17 n LYS . 216 Bj 216 +Q 217 17 n PHE . 217 Bj 217 +Q ? 17 n PRO . 218 Bj 218 +Q ? 17 n GLN . 219 Bj 219 +Q ? 17 n ALA . 220 Bj 220 +Q ? 17 n MET . 221 Bj 221 +Q ? 17 n ARG . 222 Bj 222 +Q ? 17 n THR . 223 Bj 223 +Q ? 17 n GLU . 224 Bj 224 +Q ? 17 n THR . 225 Bj 225 +Q ? 17 n SER . 226 Bj 226 +Q 227 17 n LEU . 227 Bj 227 +Q 228 17 n GLY . 228 Bj 228 +Q 229 17 n ALA . 229 Bj 229 +Q 230 17 n LYS . 230 Bj 230 +Q 231 17 n VAL . 231 Bj 231 +Q 232 17 n PHE . 232 Bj 232 +Q 233 17 n PHE . 233 Bj 233 +Q 234 17 n PHE . 234 Bj 234 +Q 235 17 n LYS . 235 Bj 235 +Q 236 17 n ALA . 236 Bj 236 +Q 237 17 n LEU . 237 Bj 237 +Q 238 17 n LEU . 238 Bj 238 +Q 239 17 n LEU . 239 Bj 239 +Q 240 17 n THR . 240 Bj 240 +Q 241 17 n GLY . 241 Bj 241 +Q 242 17 n ASP . 242 Bj 242 +Q 243 17 n PHE . 243 Bj 243 +Q 244 17 n SER . 244 Bj 244 +Q 245 17 n GLN . 245 Bj 245 +Q 246 17 n ALA . 246 Bj 246 +Q 247 17 n GLY . 247 Bj 247 +Q 248 17 n LYS . 248 Bj 248 +Q 249 17 n LYS . 249 Bj 249 +Q 250 17 n GLY . 250 Bj 250 +Q 251 17 n HIS . 251 Bj 251 +Q 252 17 n HIS . 252 Bj 252 +Q 253 17 n VAL . 253 Bj 253 +Q 254 17 n TRP . 254 Bj 254 +Q 255 17 n VAL . 255 Bj 255 +Q 256 17 n SER . 256 Bj 256 +Q 257 17 n LYS . 257 Bj 257 +Q 258 17 n GLU . 258 Bj 258 +Q 259 17 n GLU . 259 Bj 259 +Q 260 17 n LEU . 260 Bj 260 +Q 261 17 n GLY . 261 Bj 261 +Q 262 17 n ASP . 262 Bj 262 +Q 263 17 n TYR . 263 Bj 263 +Q 264 17 n LEU . 264 Bj 264 +Q 265 17 n LYS . 265 Bj 265 +Q 266 17 n PRO . 266 Bj 266 +Q 267 17 n LYS . 267 Bj 267 +Q 268 17 n TYR . 268 Bj 268 +Q 269 17 n LEU . 269 Bj 269 +Q 270 17 n ALA . 270 Bj 270 +Q 271 17 n GLN . 271 Bj 271 +Q 272 17 n VAL . 272 Bj 272 +Q 273 17 n ARG . 273 Bj 273 +Q 274 17 n ARG . 274 Bj 274 +Q 275 17 n PHE . 275 Bj 275 +Q 276 17 n LEU . 276 Bj 276 +Q 277 17 n LEU . 277 Bj 277 +Q 278 17 n ASP . 278 Bj 278 +Q 279 17 n LEU . 279 Bj 279 +# +_pdbx_struct_assembly.details author_defined_assembly +_pdbx_struct_assembly.id 1 +_pdbx_struct_assembly.method_details ? +_pdbx_struct_assembly.oligomeric_count 95 +_pdbx_struct_assembly.oligomeric_details 95-meric +# +_pdbx_struct_assembly_gen.assembly_id 1 +_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G,H,I,J,K,L,M,N,O,P,Q,R,S,T,U,V,W,X,Y,Z,AA,BA,CA,DA,EA,FA,GA,HA,IA,JA,KA,LA,MA,NA,OA,PA,QA,RA,SA,TA,UA,VA,WA,XA,YA,ZA,AB,BB,CB,DB,EB,FB,GB,HB,IB,JB,KB,LB,MB,NB,OB,PB,QB,RB,SB,TB,UB,VB,WB,XB,YB,ZB,AC,BC,CC,DC,EC,FC,GC,HC,IC,JC,KC,LC,MC,NC,OC,PC,QC,RC,SC,TC,UC,VC,WC,XC,YC,ZC,AD,BD,CD,DD,ED,FD,GD,HD,ID,JD,KD,LD,MD,ND,OD,PD,QD,RD,SD,TD,UD,VD,WD,XD,YD,ZD,AE,BE,CE,DE,EE,FE,GE,HE,IE,JE,KE,LE,ME,NE,OE,PE,QE,RE,SE,TE,UE,VE,WE,XE,YE,ZE,AF,BF,CF,DF,EF,FF,GF,HF,IF,JF,KF,LF,MF,NF,OF,PF,QF,RF,SF,TF,UF,VF,WF,XF,YF,ZF,AG,BG,CG,DG,EG,FG,GG,HG,IG,JG,KG,LG,MG,NG,OG,PG,QG,RG,SG,TG,UG,VG,WG,XG,YG,ZG,AH,BH,CH,DH,EH,FH,GH,HH,IH,JH,KH,LH,MH,NH,OH,PH,QH,RH,SH,TH,UH,VH,WH,XH,YH,ZH,AI,BI,CI,DI,EI,FI,GI,HI,II,JI,KI,LI,MI,NI,OI,PI,QI,RI,SI,TI,UI,VI,WI,XI,YI,ZI,AJ,BJ,CJ,DJ,EJ,FJ,GJ,HJ,IJ,JJ,KJ,LJ,MJ,NJ,OJ,PJ,QJ,RJ,SJ,TJ,UJ,VJ,WJ,XJ,YJ,ZJ,AK,BK,CK,DK,EK,FK,GK,HK,IK,JK,KK,LK,MK,NK,OK,PK,QK,RK,SK,TK,UK,VK,WK,XK,YK,ZK,AL,BL,CL,DL,EL,FL,GL,HL,IL,JL,KL,LL,ML,NL,OL,PL,QL,RL,SL,TL,UL,VL,WL,XL,YL,ZL,AM,BM,CM,DM,EM,FM,GM,HM,IM,JM,KM,LM,MM,NM,OM,PM,QM,RM,SM,TM,UM,VM,WM,XM,YM,ZM,AN,BN,CN,DN,EN,FN,GN,HN,IN,JN,KN,LN,MN,NN,ON,PN,QN,RN,SN,TN,UN,VN,WN,XN,YN,ZN,AO,BO,CO,DO,EO,FO,GO,HO,IO,JO,KO,LO,MO,NO,OO,PO,QO,RO,SO,TO,UO,VO,WO,XO,YO,ZO,AP,BP,CP,DP,EP,FP,GP,HP,IP,JP,KP,LP,MP,NP,OP,PP,QP,RP,SP +_pdbx_struct_assembly_gen.oper_expression 1 +# +_pdbx_struct_oper_list.id 1 +_pdbx_struct_oper_list.matrix[1][1] 1.0000000000 +_pdbx_struct_oper_list.matrix[1][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[1][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][2] 1.0000000000 +_pdbx_struct_oper_list.matrix[2][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][3] 1.0000000000 +_pdbx_struct_oper_list.name 1_555 +_pdbx_struct_oper_list.symmetry_operation ? +_pdbx_struct_oper_list.type "identity operation" +_pdbx_struct_oper_list.vector[1] 0.0000000000 +_pdbx_struct_oper_list.vector[2] 0.0000000000 +_pdbx_struct_oper_list.vector[3] 0.0000000000 +# +_refine.ls_d_res_high 4.20 +# +_software.classification other +_software.name "DeepMind Structure Class" +_software.pdbx_ordinal 1 +_software.version 2.0.0 +# +_struct_asym.entity_id 17 +_struct_asym.id Q +# +loop_ +_atom_site.group_PDB +_atom_site.id +_atom_site.type_symbol +_atom_site.label_atom_id +_atom_site.label_alt_id +_atom_site.label_comp_id +_atom_site.label_asym_id +_atom_site.label_entity_id +_atom_site.label_seq_id +_atom_site.pdbx_PDB_ins_code +_atom_site.Cartn_x +_atom_site.Cartn_y +_atom_site.Cartn_z +_atom_site.occupancy +_atom_site.B_iso_or_equiv +_atom_site.auth_seq_id +_atom_site.auth_asym_id +_atom_site.pdbx_PDB_model_num +ATOM 1 N N . SER Q 17 43 ? 162.672 264.147 303.911 1.00 104.46 43 Bj 1 +ATOM 2 C CA . SER Q 17 43 ? 161.478 264.930 303.620 1.00 104.46 43 Bj 1 +ATOM 3 C C . SER Q 17 43 ? 160.551 264.181 302.669 1.00 104.46 43 Bj 1 +ATOM 4 O O . SER Q 17 43 ? 160.970 263.766 301.589 1.00 104.46 43 Bj 1 +ATOM 5 C CB . SER Q 17 43 ? 161.857 266.287 303.024 1.00 104.46 43 Bj 1 +ATOM 6 O OG . SER Q 17 43 ? 162.640 267.043 303.931 1.00 104.46 43 Bj 1 +ATOM 7 N N . PRO Q 17 44 ? 159.295 264.000 303.074 1.00 115.21 44 Bj 1 +ATOM 8 C CA . PRO Q 17 44 ? 158.333 263.328 302.193 1.00 115.21 44 Bj 1 +ATOM 9 C C . PRO Q 17 44 ? 157.997 264.188 300.984 1.00 115.21 44 Bj 1 +ATOM 10 O O . PRO Q 17 44 ? 157.754 265.392 301.099 1.00 115.21 44 Bj 1 +ATOM 11 C CB . PRO Q 17 44 ? 157.110 263.118 303.093 1.00 115.21 44 Bj 1 +ATOM 12 C CG . PRO Q 17 44 ? 157.236 264.161 304.150 1.00 115.21 44 Bj 1 +ATOM 13 C CD . PRO Q 17 44 ? 158.707 264.346 304.379 1.00 115.21 44 Bj 1 +ATOM 14 N N . TRP Q 17 45 ? 157.996 263.551 299.814 1.00 124.11 45 Bj 1 +ATOM 15 C CA . TRP Q 17 45 ? 157.732 264.221 298.549 1.00 124.11 45 Bj 1 +ATOM 16 C C . TRP Q 17 45 ? 156.706 263.430 297.755 1.00 124.11 45 Bj 1 +ATOM 17 O O . TRP Q 17 45 ? 156.918 262.249 297.460 1.00 124.11 45 Bj 1 +ATOM 18 C CB . TRP Q 17 45 ? 159.014 264.384 297.726 1.00 124.11 45 Bj 1 +ATOM 19 C CG . TRP Q 17 45 ? 159.872 265.522 298.174 1.00 124.11 45 Bj 1 +ATOM 20 C CD1 . TRP Q 17 45 ? 160.962 265.456 298.990 1.00 124.11 45 Bj 1 +ATOM 21 C CD2 . TRP Q 17 45 ? 159.709 266.903 297.831 1.00 124.11 45 Bj 1 +ATOM 22 N NE1 . TRP Q 17 45 ? 161.490 266.710 299.176 1.00 124.11 45 Bj 1 +ATOM 23 C CE2 . TRP Q 17 45 ? 160.738 267.616 298.475 1.00 124.11 45 Bj 1 +ATOM 24 C CE3 . TRP Q 17 45 ? 158.793 267.605 297.042 1.00 124.11 45 Bj 1 +ATOM 25 C CZ2 . TRP Q 17 45 ? 160.877 268.997 298.355 1.00 124.11 45 Bj 1 +ATOM 26 C CZ3 . TRP Q 17 45 ? 158.932 268.975 296.925 1.00 124.11 45 Bj 1 +ATOM 27 C CH2 . TRP Q 17 45 ? 159.966 269.656 297.577 1.00 124.11 45 Bj 1 +ATOM 28 N N . ARG Q 17 46 ? 155.602 264.083 297.413 1.00 135.34 46 Bj 1 +ATOM 29 C CA . ARG Q 17 46 ? 154.591 263.520 296.531 1.00 135.34 46 Bj 1 +ATOM 30 C C . ARG Q 17 46 ? 154.887 263.943 295.098 1.00 135.34 46 Bj 1 +ATOM 31 O O . ARG Q 17 46 ? 155.343 265.063 294.855 1.00 135.34 46 Bj 1 +ATOM 32 C CB . ARG Q 17 46 ? 153.191 263.983 296.943 1.00 135.34 46 Bj 1 +ATOM 33 C CG . ARG Q 17 46 ? 152.052 263.259 296.243 1.00 135.34 46 Bj 1 +ATOM 34 C CD . ARG Q 17 46 ? 150.703 263.776 296.723 1.00 135.34 46 Bj 1 +ATOM 35 N NE . ARG Q 17 46 ? 149.585 263.097 296.074 1.00 135.34 46 Bj 1 +ATOM 36 C CZ . ARG Q 17 46 ? 148.306 263.372 296.309 1.00 135.34 46 Bj 1 +ATOM 37 N NH1 . ARG Q 17 46 ? 147.977 264.316 297.180 1.00 135.34 46 Bj 1 +ATOM 38 N NH2 . ARG Q 17 46 ? 147.353 262.704 295.673 1.00 135.34 46 Bj 1 +ATOM 39 N N . LEU Q 17 47 ? 154.641 263.040 294.152 1.00 137.26 47 Bj 1 +ATOM 40 C CA . LEU Q 17 47 ? 154.910 263.296 292.743 1.00 137.26 47 Bj 1 +ATOM 41 C C . LEU Q 17 47 ? 153.644 263.057 291.937 1.00 137.26 47 Bj 1 +ATOM 42 O O . LEU Q 17 47 ? 152.955 262.053 292.143 1.00 137.26 47 Bj 1 +ATOM 43 C CB . LEU Q 17 47 ? 156.056 262.414 292.233 1.00 137.26 47 Bj 1 +ATOM 44 C CG . LEU Q 17 47 ? 156.329 261.107 292.986 1.00 137.26 47 Bj 1 +ATOM 45 C CD1 . LEU Q 17 47 ? 155.350 260.012 292.587 1.00 137.26 47 Bj 1 +ATOM 46 C CD2 . LEU Q 17 47 ? 157.766 260.652 292.776 1.00 137.26 47 Bj 1 +ATOM 47 N N . LEU Q 17 48 ? 153.331 263.982 291.030 1.00 138.18 48 Bj 1 +ATOM 48 C CA . LEU Q 17 48 ? 152.120 263.883 290.230 1.00 138.18 48 Bj 1 +ATOM 49 C C . LEU Q 17 48 ? 152.394 264.339 288.806 1.00 138.18 48 Bj 1 +ATOM 50 O O . LEU Q 17 48 ? 153.199 265.246 288.575 1.00 138.18 48 Bj 1 +ATOM 51 C CB . LEU Q 17 48 ? 150.977 264.725 290.818 1.00 138.18 48 Bj 1 +ATOM 52 C CG . LEU Q 17 48 ? 150.485 264.427 292.237 1.00 138.18 48 Bj 1 +ATOM 53 C CD1 . LEU Q 17 48 ? 151.283 265.210 293.269 1.00 138.18 48 Bj 1 +ATOM 54 C CD2 . LEU Q 17 48 ? 149.000 264.730 292.359 1.00 138.18 48 Bj 1 +ATOM 55 N N . GLY Q 17 49 ? 151.716 263.701 287.855 1.00 135.43 49 Bj 1 +ATOM 56 C CA . GLY Q 17 49 ? 151.707 264.149 286.482 1.00 135.43 49 Bj 1 +ATOM 57 C C . GLY Q 17 49 ? 150.384 264.812 286.131 1.00 135.43 49 Bj 1 +ATOM 58 O O . GLY Q 17 49 ? 149.360 264.601 286.775 1.00 135.43 49 Bj 1 +ATOM 59 N N . ALA Q 17 50 ? 150.428 265.639 285.090 1.00 130.02 50 Bj 1 +ATOM 60 C CA . ALA Q 17 50 ? 149.244 266.346 284.629 1.00 130.02 50 Bj 1 +ATOM 61 C C . ALA Q 17 50 ? 149.304 266.468 283.116 1.00 130.02 50 Bj 1 +ATOM 62 O O . ALA Q 17 50 ? 150.384 266.588 282.529 1.00 130.02 50 Bj 1 +ATOM 63 C CB . ALA Q 17 50 ? 149.121 267.730 285.275 1.00 130.02 50 Bj 1 +ATOM 64 N N . LEU Q 17 51 ? 148.131 266.439 282.491 1.00 127.85 51 Bj 1 +ATOM 65 C CA . LEU Q 17 51 ? 148.013 266.429 281.039 1.00 127.85 51 Bj 1 +ATOM 66 C C . LEU Q 17 51 ? 147.458 267.759 280.549 1.00 127.85 51 Bj 1 +ATOM 67 O O . LEU Q 17 51 ? 146.498 268.285 281.121 1.00 127.85 51 Bj 1 +ATOM 68 C CB . LEU Q 17 51 ? 147.117 265.280 280.572 1.00 127.85 51 Bj 1 +ATOM 69 C CG . LEU Q 17 51 ? 146.876 265.173 279.065 1.00 127.85 51 Bj 1 +ATOM 70 C CD1 . LEU Q 17 51 ? 148.194 265.030 278.321 1.00 127.85 51 Bj 1 +ATOM 71 C CD2 . LEU Q 17 51 ? 145.949 264.010 278.748 1.00 127.85 51 Bj 1 +ATOM 72 N N . CYS Q 17 52 ? 148.064 268.295 279.492 1.00 126.27 52 Bj 1 +ATOM 73 C CA . CYS Q 17 52 ? 147.580 269.488 278.806 1.00 126.27 52 Bj 1 +ATOM 74 C C . CYS Q 17 52 ? 147.282 269.077 277.369 1.00 126.27 52 Bj 1 +ATOM 75 O O . CYS Q 17 52 ? 148.176 269.073 276.517 1.00 126.27 52 Bj 1 +ATOM 76 C CB . CYS Q 17 52 ? 148.607 270.615 278.866 1.00 126.27 52 Bj 1 +ATOM 77 S SG . CYS Q 17 52 ? 149.201 271.004 280.527 1.00 126.27 52 Bj 1 +ATOM 78 N N . LEU Q 17 53 ? 146.033 268.707 277.107 1.00 117.88 53 Bj 1 +ATOM 79 C CA . LEU Q 17 53 ? 145.621 268.248 275.787 1.00 117.88 53 Bj 1 +ATOM 80 C C . LEU Q 17 53 ? 145.134 269.436 274.969 1.00 117.88 53 Bj 1 +ATOM 81 O O . LEU Q 17 53 ? 144.159 270.096 275.343 1.00 117.88 53 Bj 1 +ATOM 82 C CB . LEU Q 17 53 ? 144.526 267.191 275.898 1.00 117.88 53 Bj 1 +ATOM 83 C CG . LEU Q 17 53 ? 143.910 266.774 274.563 1.00 117.88 53 Bj 1 +ATOM 84 C CD1 . LEU Q 17 53 ? 144.958 266.142 273.659 1.00 117.88 53 Bj 1 +ATOM 85 C CD2 . LEU Q 17 53 ? 142.749 265.828 274.792 1.00 117.88 53 Bj 1 +ATOM 86 N N . GLN Q 17 54 ? 145.803 269.698 273.851 1.00 118.52 54 Bj 1 +ATOM 87 C CA . GLN Q 17 54 ? 145.488 270.830 272.992 1.00 118.52 54 Bj 1 +ATOM 88 C C . GLN Q 17 54 ? 144.817 270.326 271.723 1.00 118.52 54 Bj 1 +ATOM 89 O O . GLN Q 17 54 ? 145.391 269.510 270.993 1.00 118.52 54 Bj 1 +ATOM 90 C CB . GLN Q 17 54 ? 146.748 271.626 272.652 1.00 118.52 54 Bj 1 +ATOM 91 C CG . GLN Q 17 54 ? 147.464 272.202 273.860 1.00 118.52 54 Bj 1 +ATOM 92 C CD . GLN Q 17 54 ? 148.683 273.016 273.478 1.00 118.52 54 Bj 1 +ATOM 93 O OE1 . GLN Q 17 54 ? 148.961 273.222 272.297 1.00 118.52 54 Bj 1 +ATOM 94 N NE2 . GLN Q 17 54 ? 149.419 273.484 274.478 1.00 118.52 54 Bj 1 +ATOM 95 N N . ARG Q 17 55 ? 143.598 270.796 271.480 1.00 113.62 55 Bj 1 +ATOM 96 C CA . ARG Q 17 55 ? 142.952 270.625 270.189 1.00 113.62 55 Bj 1 +ATOM 97 C C . ARG Q 17 55 ? 143.238 271.852 269.337 1.00 113.62 55 Bj 1 +ATOM 98 O O . ARG Q 17 55 ? 142.879 272.968 269.740 1.00 113.62 55 Bj 1 +ATOM 99 C CB . ARG Q 17 55 ? 141.455 270.444 270.349 1.00 113.62 55 Bj 1 +ATOM 100 C CG . ARG Q 17 55 ? 140.733 270.185 269.037 1.00 113.62 55 Bj 1 +ATOM 101 C CD . ARG Q 17 55 ? 139.290 270.650 269.102 1.00 113.62 55 Bj 1 +ATOM 102 N NE . ARG Q 17 55 ? 139.013 271.693 268.119 1.00 113.62 55 Bj 1 +ATOM 103 C CZ . ARG Q 17 55 ? 139.321 272.974 268.284 1.00 113.62 55 Bj 1 +ATOM 104 N NH1 . ARG Q 17 55 ? 139.923 273.375 269.395 1.00 113.62 55 Bj 1 +ATOM 105 N NH2 . ARG Q 17 55 ? 139.032 273.855 267.337 1.00 113.62 55 Bj 1 +ATOM 106 N N . PRO Q 17 56 ? 143.874 271.703 268.180 1.00 114.98 56 Bj 1 +ATOM 107 C CA . PRO Q 17 56 ? 144.258 272.868 267.384 1.00 114.98 56 Bj 1 +ATOM 108 C C . PRO Q 17 56 ? 143.057 273.471 266.683 1.00 114.98 56 Bj 1 +ATOM 109 O O . PRO Q 17 56 ? 142.018 272.811 266.528 1.00 114.98 56 Bj 1 +ATOM 110 C CB . PRO Q 17 56 ? 145.255 272.283 266.375 1.00 114.98 56 Bj 1 +ATOM 111 C CG . PRO Q 17 56 ? 144.800 270.875 266.201 1.00 114.98 56 Bj 1 +ATOM 112 C CD . PRO Q 17 56 ? 144.288 270.438 267.549 1.00 114.98 56 Bj 1 +ATOM 113 N N . PRO Q 17 57 ? 143.156 274.726 266.247 1.00 116.15 57 Bj 1 +ATOM 114 C CA . PRO Q 17 57 ? 142.053 275.331 265.494 1.00 116.15 57 Bj 1 +ATOM 115 C C . PRO Q 17 57 ? 141.864 274.658 264.144 1.00 116.15 57 Bj 1 +ATOM 116 O O . PRO Q 17 57 ? 142.830 274.337 263.446 1.00 116.15 57 Bj 1 +ATOM 117 C CB . PRO Q 17 57 ? 142.492 276.791 265.334 1.00 116.15 57 Bj 1 +ATOM 118 C CG . PRO Q 17 57 ? 143.977 276.762 265.492 1.00 116.15 57 Bj 1 +ATOM 119 C CD . PRO Q 17 57 ? 144.251 275.681 266.490 1.00 116.15 57 Bj 1 +ATOM 120 N N . LEU Q 17 58 ? 140.600 274.449 263.778 1.00 116.27 58 Bj 1 +ATOM 121 C CA . LEU Q 17 58 ? 140.270 273.823 262.504 1.00 116.27 58 Bj 1 +ATOM 122 C C . LEU Q 17 58 ? 140.215 274.830 261.361 1.00 116.27 58 Bj 1 +ATOM 123 O O . LEU Q 17 58 ? 140.604 274.507 260.234 1.00 116.27 58 Bj 1 +ATOM 124 C CB . LEU Q 17 58 ? 138.934 273.084 262.609 1.00 116.27 58 Bj 1 +ATOM 125 C CG . LEU Q 17 58 ? 138.884 271.888 263.562 1.00 116.27 58 Bj 1 +ATOM 126 C CD1 . LEU Q 17 58 ? 137.503 271.254 263.554 1.00 116.27 58 Bj 1 +ATOM 127 C CD2 . LEU Q 17 58 ? 139.946 270.864 263.194 1.00 116.27 58 Bj 1 +ATOM 128 N N . VAL Q 17 59 ? 139.743 276.044 261.628 1.00 110.63 59 Bj 1 +ATOM 129 C CA . VAL Q 17 59 ? 139.613 277.074 260.606 1.00 110.63 59 Bj 1 +ATOM 130 C C . VAL Q 17 59 ? 140.674 278.138 260.846 1.00 110.63 59 Bj 1 +ATOM 131 O O . VAL Q 17 59 ? 141.190 278.295 261.959 1.00 110.63 59 Bj 1 +ATOM 132 C CB . VAL Q 17 59 ? 138.197 277.692 260.596 1.00 110.63 59 Bj 1 +ATOM 133 C CG1 . VAL Q 17 59 ? 138.060 278.749 261.681 1.00 110.63 59 Bj 1 +ATOM 134 C CG2 . VAL Q 17 59 ? 137.873 278.271 259.228 1.00 110.63 59 Bj 1 +ATOM 135 N N . THR Q 17 60 ? 141.010 278.864 259.784 1.00 105.54 60 Bj 1 +ATOM 136 C CA . THR Q 17 60 ? 142.011 279.914 259.869 1.00 105.54 60 Bj 1 +ATOM 137 C C . THR Q 17 60 ? 141.427 281.168 260.510 1.00 105.54 60 Bj 1 +ATOM 138 O O . THR Q 17 60 ? 140.245 281.483 260.349 1.00 105.54 60 Bj 1 +ATOM 139 C CB . THR Q 17 60 ? 142.562 280.246 258.481 1.00 105.54 60 Bj 1 +ATOM 140 O OG1 . THR Q 17 60 ? 143.384 281.417 258.558 1.00 105.54 60 Bj 1 +ATOM 141 C CG2 . THR Q 17 60 ? 141.426 280.489 257.498 1.00 105.54 60 Bj 1 +ATOM 142 N N . LYS Q 17 61 ? 142.275 281.882 261.244 1.00 98.53 61 Bj 1 +ATOM 143 C CA . LYS Q 17 61 ? 141.844 283.097 261.913 1.00 98.53 61 Bj 1 +ATOM 144 C C . LYS Q 17 61 ? 141.540 284.190 260.890 1.00 98.53 61 Bj 1 +ATOM 145 O O . LYS Q 17 61 ? 142.039 284.151 259.762 1.00 98.53 61 Bj 1 +ATOM 146 C CB . LYS Q 17 61 ? 142.918 283.578 262.886 1.00 98.53 61 Bj 1 +ATOM 147 C CG . LYS Q 17 61 ? 143.171 282.633 264.046 1.00 98.53 61 Bj 1 +ATOM 148 C CD . LYS Q 17 61 ? 144.091 283.258 265.081 1.00 98.53 61 Bj 1 +ATOM 149 C CE . LYS Q 17 61 ? 144.264 282.348 266.288 1.00 98.53 61 Bj 1 +ATOM 150 N NZ . LYS Q 17 61 ? 145.130 282.959 267.333 1.00 98.53 61 Bj 1 +ATOM 151 N N . PRO Q 17 62 ? 140.716 285.171 261.253 1.00 97.74 62 Bj 1 +ATOM 152 C CA . PRO Q 17 62 ? 140.458 286.288 260.340 1.00 97.74 62 Bj 1 +ATOM 153 C C . PRO Q 17 62 ? 141.703 287.136 260.133 1.00 97.74 62 Bj 1 +ATOM 154 O O . PRO Q 17 62 ? 142.668 287.080 260.898 1.00 97.74 62 Bj 1 +ATOM 155 C CB . PRO Q 17 62 ? 139.357 287.083 261.049 1.00 97.74 62 Bj 1 +ATOM 156 C CG . PRO Q 17 62 ? 139.506 286.725 262.488 1.00 97.74 62 Bj 1 +ATOM 157 C CD . PRO Q 17 62 ? 139.933 285.287 262.495 1.00 97.74 62 Bj 1 +ATOM 158 N N . LEU Q 17 63 ? 141.667 287.934 259.071 1.00 100.40 63 Bj 1 +ATOM 159 C CA . LEU Q 17 63 ? 142.797 288.761 258.672 1.00 100.40 63 Bj 1 +ATOM 160 C C . LEU Q 17 63 ? 142.618 290.179 259.198 1.00 100.40 63 Bj 1 +ATOM 161 O O . LEU Q 17 63 ? 141.553 290.781 259.027 1.00 100.40 63 Bj 1 +ATOM 162 C CB . LEU Q 17 63 ? 142.946 288.779 257.150 1.00 100.40 63 Bj 1 +ATOM 163 C CG . LEU Q 17 63 ? 143.056 287.411 256.475 1.00 100.40 63 Bj 1 +ATOM 164 C CD1 . LEU Q 17 63 ? 143.238 287.556 254.972 1.00 100.40 63 Bj 1 +ATOM 165 C CD2 . LEU Q 17 63 ? 144.195 286.614 257.080 1.00 100.40 63 Bj 1 +ATOM 166 N N . THR Q 17 64 ? 143.657 290.697 259.845 1.00 107.97 64 Bj 1 +ATOM 167 C CA . THR Q 17 64 ? 143.667 292.093 260.253 1.00 107.97 64 Bj 1 +ATOM 168 C C . THR Q 17 64 ? 143.516 292.982 259.019 1.00 107.97 64 Bj 1 +ATOM 169 O O . THR Q 17 64 ? 144.073 292.666 257.964 1.00 107.97 64 Bj 1 +ATOM 170 C CB . THR Q 17 64 ? 144.974 292.410 260.987 1.00 107.97 64 Bj 1 +ATOM 171 O OG1 . THR Q 17 64 ? 145.120 291.524 262.105 1.00 107.97 64 Bj 1 +ATOM 172 C CG2 . THR Q 17 64 ? 145.005 293.848 261.485 1.00 107.97 64 Bj 1 +ATOM 173 N N . PRO Q 17 65 ? 142.750 294.076 259.102 1.00 107.81 65 Bj 1 +ATOM 174 C CA . PRO Q 17 65 ? 142.603 294.962 257.932 1.00 107.81 65 Bj 1 +ATOM 175 C C . PRO Q 17 65 ? 143.921 295.427 257.333 1.00 107.81 65 Bj 1 +ATOM 176 O O . PRO Q 17 65 ? 144.005 295.621 256.112 1.00 107.81 65 Bj 1 +ATOM 177 C CB . PRO Q 17 65 ? 141.785 296.141 258.486 1.00 107.81 65 Bj 1 +ATOM 178 C CG . PRO Q 17 65 ? 141.775 295.966 259.988 1.00 107.81 65 Bj 1 +ATOM 179 C CD . PRO Q 17 65 ? 141.881 294.498 260.212 1.00 107.81 65 Bj 1 +ATOM 180 N N . LEU Q 17 66 ? 144.958 295.608 258.152 1.00 108.37 66 Bj 1 +ATOM 181 C CA . LEU Q 17 66 ? 146.280 295.907 257.613 1.00 108.37 66 Bj 1 +ATOM 182 C C . LEU Q 17 66 ? 146.764 294.776 256.714 1.00 108.37 66 Bj 1 +ATOM 183 O O . LEU Q 17 66 ? 147.264 295.010 255.605 1.00 108.37 66 Bj 1 +ATOM 184 C CB . LEU Q 17 66 ? 147.261 296.150 258.760 1.00 108.37 66 Bj 1 +ATOM 185 C CG . LEU Q 17 66 ? 148.674 296.601 258.394 1.00 108.37 66 Bj 1 +ATOM 186 C CD1 . LEU Q 17 66 ? 148.637 297.948 257.693 1.00 108.37 66 Bj 1 +ATOM 187 C CD2 . LEU Q 17 66 ? 149.550 296.661 259.635 1.00 108.37 66 Bj 1 +ATOM 188 N N . GLN Q 17 67 ? 146.602 293.533 257.172 1.00 108.81 67 Bj 1 +ATOM 189 C CA . GLN Q 17 67 ? 146.992 292.387 256.360 1.00 108.81 67 Bj 1 +ATOM 190 C C . GLN Q 17 67 ? 146.109 292.247 255.126 1.00 108.81 67 Bj 1 +ATOM 191 O O . GLN Q 17 67 ? 146.569 291.758 254.091 1.00 108.81 67 Bj 1 +ATOM 192 C CB . GLN Q 17 67 ? 146.951 291.114 257.204 1.00 108.81 67 Bj 1 +ATOM 193 C CG . GLN Q 17 67 ? 147.901 291.140 258.391 1.00 108.81 67 Bj 1 +ATOM 194 C CD . GLN Q 17 67 ? 148.113 289.770 259.002 1.00 108.81 67 Bj 1 +ATOM 195 O OE1 . GLN Q 17 67 ? 147.728 288.754 258.424 1.00 108.81 67 Bj 1 +ATOM 196 N NE2 . GLN Q 17 67 ? 148.730 289.735 260.177 1.00 108.81 67 Bj 1 +ATOM 197 N N . GLU Q 17 68 ? 144.851 292.683 255.209 1.00 110.89 68 Bj 1 +ATOM 198 C CA . GLU Q 17 68 ? 143.985 292.678 254.034 1.00 110.89 68 Bj 1 +ATOM 199 C C . GLU Q 17 68 ? 144.476 293.670 252.987 1.00 110.89 68 Bj 1 +ATOM 200 O O . GLU Q 17 68 ? 144.512 293.356 251.791 1.00 110.89 68 Bj 1 +ATOM 201 C CB . GLU Q 17 68 ? 142.545 292.997 254.438 1.00 110.89 68 Bj 1 +ATOM 202 C CG . GLU Q 17 68 ? 141.839 291.878 255.186 1.00 110.89 68 Bj 1 +ATOM 203 C CD . GLU Q 17 68 ? 141.367 290.766 254.268 1.00 110.89 68 Bj 1 +ATOM 204 O OE1 . GLU Q 17 68 ? 141.481 290.917 253.034 1.00 110.89 68 Bj 1 +ATOM 205 O OE2 . GLU Q 17 68 ? 140.877 289.740 254.783 1.00 110.89 68 Bj 1 +ATOM 206 N N . GLU Q 17 69 ? 144.845 294.877 253.421 1.00 119.08 69 Bj 1 +ATOM 207 C CA . GLU Q 17 69 ? 145.448 295.841 252.506 1.00 119.08 69 Bj 1 +ATOM 208 C C . GLU Q 17 69 ? 146.723 295.281 251.888 1.00 119.08 69 Bj 1 +ATOM 209 O O . GLU Q 17 69 ? 146.964 295.440 250.684 1.00 119.08 69 Bj 1 +ATOM 210 C CB . GLU Q 17 69 ? 145.744 297.150 253.237 1.00 119.08 69 Bj 1 +ATOM 211 C CG . GLU Q 17 69 ? 144.526 297.820 253.844 1.00 119.08 69 Bj 1 +ATOM 212 C CD . GLU Q 17 69 ? 144.878 299.094 254.586 1.00 119.08 69 Bj 1 +ATOM 213 O OE1 . GLU Q 17 69 ? 146.016 299.584 254.422 1.00 119.08 69 Bj 1 +ATOM 214 O OE2 . GLU Q 17 69 ? 144.018 299.605 255.334 1.00 119.08 69 Bj 1 +ATOM 215 N N . MET Q 17 70 ? 147.551 294.620 252.702 1.00 119.12 70 Bj 1 +ATOM 216 C CA . MET Q 17 70 ? 148.786 294.039 252.184 1.00 119.12 70 Bj 1 +ATOM 217 C C . MET Q 17 70 ? 148.499 292.952 251.153 1.00 119.12 70 Bj 1 +ATOM 218 O O . MET Q 17 70 ? 149.177 292.872 250.123 1.00 119.12 70 Bj 1 +ATOM 219 C CB . MET Q 17 70 ? 149.628 293.487 253.335 1.00 119.12 70 Bj 1 +ATOM 220 C CG . MET Q 17 70 ? 150.879 292.746 252.892 1.00 119.12 70 Bj 1 +ATOM 221 S SD . MET Q 17 70 ? 151.859 293.670 251.693 1.00 119.12 70 Bj 1 +ATOM 222 C CE . MET Q 17 70 ? 152.198 295.174 252.604 1.00 119.12 70 Bj 1 +ATOM 223 N N . ALA Q 17 71 ? 147.494 292.112 251.408 1.00 117.23 71 Bj 1 +ATOM 224 C CA . ALA Q 17 71 ? 147.151 291.056 250.461 1.00 117.23 71 Bj 1 +ATOM 225 C C . ALA Q 17 71 ? 146.601 291.635 249.164 1.00 117.23 71 Bj 1 +ATOM 226 O O . ALA Q 17 71 ? 146.901 291.130 248.075 1.00 117.23 71 Bj 1 +ATOM 227 C CB . ALA Q 17 71 ? 146.146 290.093 251.089 1.00 117.23 71 Bj 1 +ATOM 228 N N . ASP Q 17 72 ? 145.790 292.690 249.260 1.00 117.37 72 Bj 1 +ATOM 229 C CA . ASP Q 17 72 ? 145.300 293.360 248.060 1.00 117.37 72 Bj 1 +ATOM 230 C C . ASP Q 17 72 ? 146.459 293.920 247.245 1.00 117.37 72 Bj 1 +ATOM 231 O O . ASP Q 17 72 ? 146.511 293.759 246.020 1.00 117.37 72 Bj 1 +ATOM 232 C CB . ASP Q 17 72 ? 144.317 294.468 248.446 1.00 117.37 72 Bj 1 +ATOM 233 C CG . ASP Q 17 72 ? 143.468 294.941 247.276 1.00 117.37 72 Bj 1 +ATOM 234 O OD1 . ASP Q 17 72 ? 143.969 294.974 246.132 1.00 117.37 72 Bj 1 +ATOM 235 O OD2 . ASP Q 17 72 ? 142.289 295.283 247.504 1.00 117.37 72 Bj 1 +ATOM 236 N N . LEU Q 17 73 ? 147.405 294.580 247.919 1.00 119.96 73 Bj 1 +ATOM 237 C CA . LEU Q 17 73 ? 148.572 295.115 247.226 1.00 119.96 73 Bj 1 +ATOM 238 C C . LEU Q 17 73 ? 149.385 294.005 246.571 1.00 119.96 73 Bj 1 +ATOM 239 O O . LEU Q 17 73 ? 149.873 294.161 245.443 1.00 119.96 73 Bj 1 +ATOM 240 C CB . LEU Q 17 73 ? 149.436 295.910 248.205 1.00 119.96 73 Bj 1 +ATOM 241 C CG . LEU Q 17 73 ? 150.798 296.368 247.685 1.00 119.96 73 Bj 1 +ATOM 242 C CD1 . LEU Q 17 73 ? 150.633 297.215 246.438 1.00 119.96 73 Bj 1 +ATOM 243 C CD2 . LEU Q 17 73 ? 151.550 297.134 248.760 1.00 119.96 73 Bj 1 +ATOM 244 N N . LEU Q 17 74 ? 149.546 292.877 247.266 1.00 118.44 74 Bj 1 +ATOM 245 C CA . LEU Q 17 74 ? 150.309 291.766 246.709 1.00 118.44 74 Bj 1 +ATOM 246 C C . LEU Q 17 74 ? 149.627 291.192 245.476 1.00 118.44 74 Bj 1 +ATOM 247 O O . LEU Q 17 74 ? 150.288 290.911 244.472 1.00 118.44 74 Bj 1 +ATOM 248 C CB . LEU Q 17 74 ? 150.513 290.683 247.766 1.00 118.44 74 Bj 1 +ATOM 249 C CG . LEU Q 17 74 ? 151.495 291.024 248.888 1.00 118.44 74 Bj 1 +ATOM 250 C CD1 . LEU Q 17 74 ? 151.535 289.909 249.915 1.00 118.44 74 Bj 1 +ATOM 251 C CD2 . LEU Q 17 74 ? 152.883 291.289 248.326 1.00 118.44 74 Bj 1 +ATOM 252 N N . GLN Q 17 75 ? 148.305 291.017 245.529 1.00 121.57 75 Bj 1 +ATOM 253 C CA . GLN Q 17 75 ? 147.584 290.533 244.356 1.00 121.57 75 Bj 1 +ATOM 254 C C . GLN Q 17 75 ? 147.705 291.512 243.195 1.00 121.57 75 Bj 1 +ATOM 255 O O . GLN Q 17 75 ? 147.891 291.101 242.042 1.00 121.57 75 Bj 1 +ATOM 256 C CB . GLN Q 17 75 ? 146.116 290.286 244.704 1.00 121.57 75 Bj 1 +ATOM 257 C CG . GLN Q 17 75 ? 145.881 289.058 245.568 1.00 121.57 75 Bj 1 +ATOM 258 C CD . GLN Q 17 75 ? 146.176 287.763 244.836 1.00 121.57 75 Bj 1 +ATOM 259 O OE1 . GLN Q 17 75 ? 146.161 287.713 243.606 1.00 121.57 75 Bj 1 +ATOM 260 N NE2 . GLN Q 17 75 ? 146.449 286.705 245.592 1.00 121.57 75 Bj 1 +ATOM 261 N N . GLN Q 17 76 ? 147.617 292.813 243.483 1.00 121.41 76 Bj 1 +ATOM 262 C CA . GLN Q 17 76 ? 147.734 293.811 242.425 1.00 121.41 76 Bj 1 +ATOM 263 C C . GLN Q 17 76 ? 149.103 293.751 241.760 1.00 121.41 76 Bj 1 +ATOM 264 O O . GLN Q 17 76 ? 149.204 293.703 240.529 1.00 121.41 76 Bj 1 +ATOM 265 C CB . GLN Q 17 76 ? 147.468 295.209 242.984 1.00 121.41 76 Bj 1 +ATOM 266 C CG . GLN Q 17 76 ? 146.016 295.474 243.336 1.00 121.41 76 Bj 1 +ATOM 267 C CD . GLN Q 17 76 ? 145.782 296.899 243.795 1.00 121.41 76 Bj 1 +ATOM 268 O OE1 . GLN Q 17 76 ? 146.644 297.764 243.637 1.00 121.41 76 Bj 1 +ATOM 269 N NE2 . GLN Q 17 76 ? 144.612 297.151 244.370 1.00 121.41 76 Bj 1 +ATOM 270 N N . ILE Q 17 77 ? 150.173 293.743 242.560 1.00 121.50 77 Bj 1 +ATOM 271 C CA . ILE Q 17 77 ? 151.509 293.737 241.969 1.00 121.50 77 Bj 1 +ATOM 272 C C . ILE Q 17 77 ? 151.794 292.406 241.283 1.00 121.50 77 Bj 1 +ATOM 273 O O . ILE Q 17 77 ? 152.530 292.360 240.289 1.00 121.50 77 Bj 1 +ATOM 274 C CB . ILE Q 17 77 ? 152.579 294.076 243.026 1.00 121.50 77 Bj 1 +ATOM 275 C CG1 . ILE Q 17 77 ? 152.598 293.031 244.141 1.00 121.50 77 Bj 1 +ATOM 276 C CG2 . ILE Q 17 77 ? 152.341 295.466 243.594 1.00 121.50 77 Bj 1 +ATOM 277 C CD1 . ILE Q 17 77 ? 153.596 293.329 245.239 1.00 121.50 77 Bj 1 +ATOM 278 N N . GLU Q 17 78 ? 151.203 291.311 241.770 1.00 127.63 78 Bj 1 +ATOM 279 C CA . GLU Q 17 78 ? 151.360 290.022 241.105 1.00 127.63 78 Bj 1 +ATOM 280 C C . GLU Q 17 78 ? 150.720 290.042 239.724 1.00 127.63 78 Bj 1 +ATOM 281 O O . GLU Q 17 78 ? 151.334 289.616 238.738 1.00 127.63 78 Bj 1 +ATOM 282 C CB . GLU Q 17 78 ? 150.751 288.916 241.968 1.00 127.63 78 Bj 1 +ATOM 283 C CG . GLU Q 17 78 ? 150.750 287.538 241.324 1.00 127.63 78 Bj 1 +ATOM 284 C CD . GLU Q 17 78 ? 149.964 286.520 242.129 1.00 127.63 78 Bj 1 +ATOM 285 O OE1 . GLU Q 17 78 ? 149.341 286.910 243.139 1.00 127.63 78 Bj 1 +ATOM 286 O OE2 . GLU Q 17 78 ? 149.967 285.329 241.753 1.00 127.63 78 Bj 1 +ATOM 287 N N . ILE Q 17 79 ? 149.483 290.539 239.634 1.00 128.89 79 Bj 1 +ATOM 288 C CA . ILE Q 17 79 ? 148.823 290.642 238.336 1.00 128.89 79 Bj 1 +ATOM 289 C C . ILE Q 17 79 ? 149.572 291.607 237.426 1.00 128.89 79 Bj 1 +ATOM 290 O O . ILE Q 17 79 ? 149.639 291.400 236.208 1.00 128.89 79 Bj 1 +ATOM 291 C CB . ILE Q 17 79 ? 147.349 291.057 238.519 1.00 128.89 79 Bj 1 +ATOM 292 C CG1 . ILE Q 17 79 ? 146.601 290.011 239.349 1.00 128.89 79 Bj 1 +ATOM 293 C CG2 . ILE Q 17 79 ? 146.667 291.245 237.171 1.00 128.89 79 Bj 1 +ATOM 294 C CD1 . ILE Q 17 79 ? 145.159 290.370 239.635 1.00 128.89 79 Bj 1 +ATOM 295 N N . GLU Q 17 80 ? 150.159 292.661 237.996 1.00 120.51 80 Bj 1 +ATOM 296 C CA . GLU Q 17 80 ? 150.899 293.625 237.187 1.00 120.51 80 Bj 1 +ATOM 297 C C . GLU Q 17 80 ? 152.154 292.998 236.589 1.00 120.51 80 Bj 1 +ATOM 298 O O . GLU Q 17 80 ? 152.403 293.116 235.384 1.00 120.51 80 Bj 1 +ATOM 299 C CB . GLU Q 17 80 ? 151.254 294.849 238.029 1.00 120.51 80 Bj 1 +ATOM 300 C CG . GLU Q 17 80 ? 150.076 295.764 238.317 1.00 120.51 80 Bj 1 +ATOM 301 C CD . GLU Q 17 80 ? 150.361 296.745 239.436 1.00 120.51 80 Bj 1 +ATOM 302 O OE1 . GLU Q 17 80 ? 151.384 296.573 240.132 1.00 120.51 80 Bj 1 +ATOM 303 O OE2 . GLU Q 17 80 ? 149.562 297.686 239.621 1.00 120.51 80 Bj 1 +ATOM 304 N N . ARG Q 17 81 ? 152.958 292.327 237.415 1.00 127.65 81 Bj 1 +ATOM 305 C CA . ARG Q 17 81 ? 154.175 291.694 236.924 1.00 127.65 81 Bj 1 +ATOM 306 C C . ARG Q 17 81 ? 153.910 290.416 236.139 1.00 127.65 81 Bj 1 +ATOM 307 O O . ARG Q 17 81 ? 154.830 289.913 235.485 1.00 127.65 81 Bj 1 +ATOM 308 C CB . ARG Q 17 81 ? 155.125 291.390 238.086 1.00 127.65 81 Bj 1 +ATOM 309 C CG . ARG Q 17 81 ? 155.793 292.620 238.677 1.00 127.65 81 Bj 1 +ATOM 310 C CD . ARG Q 17 81 ? 156.934 292.237 239.606 1.00 127.65 81 Bj 1 +ATOM 311 N NE . ARG Q 17 81 ? 157.606 293.409 240.160 1.00 127.65 81 Bj 1 +ATOM 312 C CZ . ARG Q 17 81 ? 158.686 293.357 240.933 1.00 127.65 81 Bj 1 +ATOM 313 N NH1 . ARG Q 17 81 ? 159.223 292.186 241.246 1.00 127.65 81 Bj 1 +ATOM 314 N NH2 . ARG Q 17 81 ? 159.230 294.475 241.393 1.00 127.65 81 Bj 1 +ATOM 315 N N . SER Q 17 82 ? 152.693 289.881 236.188 1.00 132.55 82 Bj 1 +ATOM 316 C CA . SER Q 17 82 ? 152.370 288.695 235.409 1.00 132.55 82 Bj 1 +ATOM 317 C C . SER Q 17 82 ? 152.400 289.006 233.917 1.00 132.55 82 Bj 1 +ATOM 318 O O . SER Q 17 82 ? 152.138 290.132 233.487 1.00 132.55 82 Bj 1 +ATOM 319 C CB . SER Q 17 82 ? 150.995 288.155 235.799 1.00 132.55 82 Bj 1 +ATOM 320 O OG . SER Q 17 82 ? 150.618 287.084 234.953 1.00 132.55 82 Bj 1 +ATOM 321 N N . LEU Q 17 83 ? 152.726 287.986 233.123 1.00 141.40 83 Bj 1 +ATOM 322 C CA . LEU Q 17 83 ? 152.784 288.167 231.677 1.00 141.40 83 Bj 1 +ATOM 323 C C . LEU Q 17 83 ? 151.391 288.102 231.062 1.00 141.40 83 Bj 1 +ATOM 324 O O . LEU Q 17 83 ? 150.906 289.086 230.495 1.00 141.40 83 Bj 1 +ATOM 325 C CB . LEU Q 17 83 ? 153.703 287.117 231.046 1.00 141.40 83 Bj 1 +ATOM 326 C CG . LEU Q 17 83 ? 155.217 287.359 231.080 1.00 141.40 83 Bj 1 +ATOM 327 C CD1 . LEU Q 17 83 ? 155.777 287.271 232.494 1.00 141.40 83 Bj 1 +ATOM 328 C CD2 . LEU Q 17 83 ? 155.934 286.382 230.159 1.00 141.40 83 Bj 1 +ATOM 329 N N . TYR Q 17 84 ? 150.729 286.953 231.185 1.00 138.40 84 Bj 1 +ATOM 330 C CA . TYR Q 17 84 ? 149.374 286.749 230.687 1.00 138.40 84 Bj 1 +ATOM 331 C C . TYR Q 17 84 ? 148.911 285.361 231.099 1.00 138.40 84 Bj 1 +ATOM 332 O O . TYR Q 17 84 ? 149.722 284.476 231.384 1.00 138.40 84 Bj 1 +ATOM 333 C CB . TYR Q 17 84 ? 149.286 286.904 229.164 1.00 138.40 84 Bj 1 +ATOM 334 C CG . TYR Q 17 84 ? 148.728 288.236 228.722 1.00 138.40 84 Bj 1 +ATOM 335 C CD1 . TYR Q 17 84 ? 147.825 288.929 229.517 1.00 138.40 84 Bj 1 +ATOM 336 C CD2 . TYR Q 17 84 ? 149.110 288.805 227.515 1.00 138.40 84 Bj 1 +ATOM 337 C CE1 . TYR Q 17 84 ? 147.313 290.147 229.120 1.00 138.40 84 Bj 1 +ATOM 338 C CE2 . TYR Q 17 84 ? 148.604 290.023 227.109 1.00 138.40 84 Bj 1 +ATOM 339 C CZ . TYR Q 17 84 ? 147.706 290.690 227.916 1.00 138.40 84 Bj 1 +ATOM 340 O OH . TYR Q 17 84 ? 147.198 291.905 227.517 1.00 138.40 84 Bj 1 +ATOM 341 N N . SER Q 17 85 ? 147.594 285.185 231.119 1.00 142.26 85 Bj 1 +ATOM 342 C CA . SER Q 17 85 ? 146.972 283.899 231.385 1.00 142.26 85 Bj 1 +ATOM 343 C C . SER Q 17 85 ? 146.297 283.383 230.122 1.00 142.26 85 Bj 1 +ATOM 344 O O . SER Q 17 85 ? 145.916 284.154 229.237 1.00 142.26 85 Bj 1 +ATOM 345 C CB . SER Q 17 85 ? 145.951 284.005 232.523 1.00 142.26 85 Bj 1 +ATOM 346 O OG . SER Q 17 85 ? 145.350 282.749 232.786 1.00 142.26 85 Bj 1 +ATOM 347 N N . ASP Q 17 86 ? 146.159 282.058 230.045 1.00 146.76 86 Bj 1 +ATOM 348 C CA . ASP Q 17 86 ? 145.513 281.453 228.884 1.00 146.76 86 Bj 1 +ATOM 349 C C . ASP Q 17 86 ? 144.067 281.911 228.760 1.00 146.76 86 Bj 1 +ATOM 350 O O . ASP Q 17 86 ? 143.592 282.202 227.656 1.00 146.76 86 Bj 1 +ATOM 351 C CB . ASP Q 17 86 ? 145.586 279.929 228.976 1.00 146.76 86 Bj 1 +ATOM 352 C CG . ASP Q 17 86 ? 147.009 279.410 228.939 1.00 146.76 86 Bj 1 +ATOM 353 O OD1 . ASP Q 17 86 ? 147.939 280.227 228.775 1.00 146.76 86 Bj 1 +ATOM 354 O OD2 . ASP Q 17 86 ? 147.198 278.182 229.073 1.00 146.76 86 Bj 1 +ATOM 355 N N . HIS Q 17 87 ? 143.355 281.991 229.886 1.00 143.58 87 Bj 1 +ATOM 356 C CA . HIS Q 17 87 ? 141.955 282.403 229.864 1.00 143.58 87 Bj 1 +ATOM 357 C C . HIS Q 17 87 ? 141.808 283.826 229.339 1.00 143.58 87 Bj 1 +ATOM 358 O O . HIS Q 17 87 ? 141.013 284.086 228.428 1.00 143.58 87 Bj 1 +ATOM 359 C CB . HIS Q 17 87 ? 141.361 282.274 231.266 1.00 143.58 87 Bj 1 +ATOM 360 C CG . HIS Q 17 87 ? 139.966 282.801 231.387 1.00 143.58 87 Bj 1 +ATOM 361 N ND1 . HIS Q 17 87 ? 138.892 282.220 230.748 1.00 143.58 87 Bj 1 +ATOM 362 C CD2 . HIS Q 17 87 ? 139.468 283.854 232.078 1.00 143.58 87 Bj 1 +ATOM 363 C CE1 . HIS Q 17 87 ? 137.793 282.893 231.039 1.00 143.58 87 Bj 1 +ATOM 364 N NE2 . HIS Q 17 87 ? 138.115 283.889 231.844 1.00 143.58 87 Bj 1 +ATOM 365 N N . GLU Q 17 88 ? 142.573 284.764 229.906 1.00 144.20 88 Bj 1 +ATOM 366 C CA . GLU Q 17 88 ? 142.496 286.152 229.463 1.00 144.20 88 Bj 1 +ATOM 367 C C . GLU Q 17 88 ? 142.938 286.295 228.013 1.00 144.20 88 Bj 1 +ATOM 368 O O . GLU Q 17 88 ? 142.350 287.073 227.251 1.00 144.20 88 Bj 1 +ATOM 369 C CB . GLU Q 17 88 ? 143.348 287.040 230.370 1.00 144.20 88 Bj 1 +ATOM 370 C CG . GLU Q 17 88 ? 142.916 287.043 231.827 1.00 144.20 88 Bj 1 +ATOM 371 C CD . GLU Q 17 88 ? 141.589 287.744 232.044 1.00 144.20 88 Bj 1 +ATOM 372 O OE1 . GLU Q 17 88 ? 141.201 288.571 231.193 1.00 144.20 88 Bj 1 +ATOM 373 O OE2 . GLU Q 17 88 ? 140.932 287.466 233.070 1.00 144.20 88 Bj 1 +ATOM 374 N N . LEU Q 17 89 ? 143.972 285.551 227.614 1.00 150.45 89 Bj 1 +ATOM 375 C CA . LEU Q 17 89 ? 144.455 285.625 226.240 1.00 150.45 89 Bj 1 +ATOM 376 C C . LEU Q 17 89 ? 143.384 285.161 225.263 1.00 150.45 89 Bj 1 +ATOM 377 O O . LEU Q 17 89 ? 143.108 285.834 224.263 1.00 150.45 89 Bj 1 +ATOM 378 C CB . LEU Q 17 89 ? 145.732 284.795 226.090 1.00 150.45 89 Bj 1 +ATOM 379 C CG . LEU Q 17 89 ? 146.537 284.942 224.794 1.00 150.45 89 Bj 1 +ATOM 380 C CD1 . LEU Q 17 89 ? 148.022 284.792 225.081 1.00 150.45 89 Bj 1 +ATOM 381 C CD2 . LEU Q 17 89 ? 146.100 283.926 223.748 1.00 150.45 89 Bj 1 +ATOM 382 N N . ARG Q 17 90 ? 142.765 284.008 225.537 1.00 152.73 90 Bj 1 +ATOM 383 C CA . ARG Q 17 90 ? 141.701 283.518 224.667 1.00 152.73 90 Bj 1 +ATOM 384 C C . ARG Q 17 90 ? 140.519 284.478 224.647 1.00 152.73 90 Bj 1 +ATOM 385 O O . ARG Q 17 90 ? 139.922 284.715 223.590 1.00 152.73 90 Bj 1 +ATOM 386 C CB . ARG Q 17 90 ? 141.249 282.128 225.114 1.00 152.73 90 Bj 1 +ATOM 387 C CG . ARG Q 17 90 ? 142.304 281.042 224.985 1.00 152.73 90 Bj 1 +ATOM 388 C CD . ARG Q 17 90 ? 141.785 279.721 225.532 1.00 152.73 90 Bj 1 +ATOM 389 N NE . ARG Q 17 90 ? 142.813 278.685 225.563 1.00 152.73 90 Bj 1 +ATOM 390 C CZ . ARG Q 17 90 ? 142.621 277.456 226.032 1.00 152.73 90 Bj 1 +ATOM 391 N NH1 . ARG Q 17 90 ? 141.435 277.105 226.511 1.00 152.73 90 Bj 1 +ATOM 392 N NH2 . ARG Q 17 90 ? 143.613 276.577 226.022 1.00 152.73 90 Bj 1 +ATOM 393 N N . ALA Q 17 91 ? 140.174 285.051 225.804 1.00 151.16 91 Bj 1 +ATOM 394 C CA . ALA Q 17 91 ? 139.046 285.974 225.863 1.00 151.16 91 Bj 1 +ATOM 395 C C . ALA Q 17 91 ? 139.295 287.204 225.000 1.00 151.16 91 Bj 1 +ATOM 396 O O . ALA Q 17 91 ? 138.448 287.586 224.184 1.00 151.16 91 Bj 1 +ATOM 397 C CB . ALA Q 17 91 ? 138.774 286.377 227.313 1.00 151.16 91 Bj 1 +ATOM 398 N N . LEU Q 17 92 ? 140.462 287.836 225.160 1.00 153.35 92 Bj 1 +ATOM 399 C CA . LEU Q 17 92 ? 140.757 289.032 224.378 1.00 153.35 92 Bj 1 +ATOM 400 C C . LEU Q 17 92 ? 140.911 288.700 222.898 1.00 153.35 92 Bj 1 +ATOM 401 O O . LEU Q 17 92 ? 140.504 289.488 222.035 1.00 153.35 92 Bj 1 +ATOM 402 C CB . LEU Q 17 92 ? 142.008 289.729 224.920 1.00 153.35 92 Bj 1 +ATOM 403 C CG . LEU Q 17 92 ? 143.367 289.021 224.908 1.00 153.35 92 Bj 1 +ATOM 404 C CD1 . LEU Q 17 92 ? 144.128 289.267 223.608 1.00 153.35 92 Bj 1 +ATOM 405 C CD2 . LEU Q 17 92 ? 144.198 289.456 226.107 1.00 153.35 92 Bj 1 +ATOM 406 N N . ASP Q 17 93 ? 141.477 287.531 222.583 1.00 158.04 93 Bj 1 +ATOM 407 C CA . ASP Q 17 93 ? 141.618 287.134 221.188 1.00 158.04 93 Bj 1 +ATOM 408 C C . ASP Q 17 93 ? 140.259 286.958 220.528 1.00 158.04 93 Bj 1 +ATOM 409 O O . ASP Q 17 93 ? 140.031 287.459 219.422 1.00 158.04 93 Bj 1 +ATOM 410 C CB . ASP Q 17 93 ? 142.435 285.845 221.091 1.00 158.04 93 Bj 1 +ATOM 411 C CG . ASP Q 17 93 ? 142.537 285.325 219.671 1.00 158.04 93 Bj 1 +ATOM 412 O OD1 . ASP Q 17 93 ? 143.236 285.958 218.852 1.00 158.04 93 Bj 1 +ATOM 413 O OD2 . ASP Q 17 93 ? 141.915 284.283 219.372 1.00 158.04 93 Bj 1 +ATOM 414 N N . GLU Q 17 94 ? 139.338 286.257 221.195 1.00 152.75 94 Bj 1 +ATOM 415 C CA . GLU Q 17 94 ? 138.009 286.061 220.624 1.00 152.75 94 Bj 1 +ATOM 416 C C . GLU Q 17 94 ? 137.242 287.374 220.544 1.00 152.75 94 Bj 1 +ATOM 417 O O . GLU Q 17 94 ? 136.508 287.609 219.576 1.00 152.75 94 Bj 1 +ATOM 418 C CB . GLU Q 17 94 ? 137.232 285.028 221.439 1.00 152.75 94 Bj 1 +ATOM 419 C CG . GLU Q 17 94 ? 137.821 283.622 221.404 1.00 152.75 94 Bj 1 +ATOM 420 C CD . GLU Q 17 94 ? 137.812 283.008 220.014 1.00 152.75 94 Bj 1 +ATOM 421 O OE1 . GLU Q 17 94 ? 138.701 283.342 219.202 1.00 152.75 94 Bj 1 +ATOM 422 O OE2 . GLU Q 17 94 ? 136.913 282.189 219.734 1.00 152.75 94 Bj 1 +ATOM 423 N N . ALA Q 17 95 ? 137.404 288.249 221.541 1.00 149.73 95 Bj 1 +ATOM 424 C CA . ALA Q 17 95 ? 136.744 289.549 221.485 1.00 149.73 95 Bj 1 +ATOM 425 C C . ALA Q 17 95 ? 137.228 290.374 220.300 1.00 149.73 95 Bj 1 +ATOM 426 O O . ALA Q 17 95 ? 136.409 290.925 219.556 1.00 149.73 95 Bj 1 +ATOM 427 C CB . ALA Q 17 95 ? 136.966 290.311 222.791 1.00 149.73 95 Bj 1 +ATOM 428 N N . GLN Q 17 96 ? 138.545 290.458 220.098 1.00 150.30 96 Bj 1 +ATOM 429 C CA . GLN Q 17 96 ? 139.069 291.205 218.961 1.00 150.30 96 Bj 1 +ATOM 430 C C . GLN Q 17 96 ? 138.693 290.549 217.637 1.00 150.30 96 Bj 1 +ATOM 431 O O . GLN Q 17 96 ? 138.419 291.247 216.653 1.00 150.30 96 Bj 1 +ATOM 432 C CB . GLN Q 17 96 ? 140.587 291.346 219.080 1.00 150.30 96 Bj 1 +ATOM 433 C CG . GLN Q 17 96 ? 141.037 292.145 220.293 1.00 150.30 96 Bj 1 +ATOM 434 C CD . GLN Q 17 96 ? 142.543 292.301 220.364 1.00 150.30 96 Bj 1 +ATOM 435 O OE1 . GLN Q 17 96 ? 143.262 291.925 219.438 1.00 150.30 96 Bj 1 +ATOM 436 N NE2 . GLN Q 17 96 ? 143.029 292.859 221.467 1.00 150.30 96 Bj 1 +ATOM 437 N N . GLN Q 17 97 ? 138.657 289.214 217.595 1.00 151.44 97 Bj 1 +ATOM 438 C CA . GLN Q 17 97 ? 138.274 288.528 216.367 1.00 151.44 97 Bj 1 +ATOM 439 C C . GLN Q 17 97 ? 136.824 288.819 216.005 1.00 151.44 97 Bj 1 +ATOM 440 O O . GLN Q 17 97 ? 136.511 289.077 214.838 1.00 151.44 97 Bj 1 +ATOM 441 C CB . GLN Q 17 97 ? 138.504 287.024 216.512 1.00 151.44 97 Bj 1 +ATOM 442 C CG . GLN Q 17 97 ? 138.299 286.242 215.225 1.00 151.44 97 Bj 1 +ATOM 443 C CD . GLN Q 17 97 ? 138.665 284.777 215.367 1.00 151.44 97 Bj 1 +ATOM 444 O OE1 . GLN Q 17 97 ? 138.752 284.049 214.377 1.00 151.44 97 Bj 1 +ATOM 445 N NE2 . GLN Q 17 97 ? 138.881 284.336 216.601 1.00 151.44 97 Bj 1 +ATOM 446 N N . LEU Q 17 98 ? 135.926 288.798 216.992 1.00 148.86 98 Bj 1 +ATOM 447 C CA . LEU Q 17 98 ? 134.535 289.147 216.723 1.00 148.86 98 Bj 1 +ATOM 448 C C . LEU Q 17 98 ? 134.399 290.617 216.343 1.00 148.86 98 Bj 1 +ATOM 449 O O . LEU Q 17 98 ? 133.602 290.963 215.462 1.00 148.86 98 Bj 1 +ATOM 450 C CB . LEU Q 17 98 ? 133.663 288.821 217.936 1.00 148.86 98 Bj 1 +ATOM 451 C CG . LEU Q 17 98 ? 132.970 287.455 217.941 1.00 148.86 98 Bj 1 +ATOM 452 C CD1 . LEU Q 17 98 ? 133.982 286.318 217.938 1.00 148.86 98 Bj 1 +ATOM 453 C CD2 . LEU Q 17 98 ? 132.028 287.335 219.129 1.00 148.86 98 Bj 1 +ATOM 454 N N . ALA Q 17 99 ? 135.174 291.494 216.988 1.00 145.68 99 Bj 1 +ATOM 455 C CA . ALA Q 17 99 ? 135.111 292.915 216.661 1.00 145.68 99 Bj 1 +ATOM 456 C C . ALA Q 17 99 ? 135.546 293.172 215.225 1.00 145.68 99 Bj 1 +ATOM 457 O O . ALA Q 17 99 ? 134.966 294.018 214.534 1.00 145.68 99 Bj 1 +ATOM 458 C CB . ALA Q 17 99 ? 135.974 293.716 217.636 1.00 145.68 99 Bj 1 +ATOM 459 N N . LYS Q 17 100 ? 136.567 292.452 214.755 1.00 146.95 100 Bj 1 +ATOM 460 C CA . LYS Q 17 100 ? 137.039 292.630 213.387 1.00 146.95 100 Bj 1 +ATOM 461 C C . LYS Q 17 100 ? 136.219 291.845 212.371 1.00 146.95 100 Bj 1 +ATOM 462 O O . LYS Q 17 100 ? 136.274 292.159 211.177 1.00 146.95 100 Bj 1 +ATOM 463 C CB . LYS Q 17 100 ? 138.514 292.233 213.279 1.00 146.95 100 Bj 1 +ATOM 464 C CG . LYS Q 17 100 ? 139.442 293.056 214.160 1.00 146.95 100 Bj 1 +ATOM 465 C CD . LYS Q 17 100 ? 139.237 294.550 213.946 1.00 146.95 100 Bj 1 +ATOM 466 C CE . LYS Q 17 100 ? 139.610 294.973 212.533 1.00 146.95 100 Bj 1 +ATOM 467 N NZ . LYS Q 17 100 ? 139.301 296.408 212.288 1.00 146.95 100 Bj 1 +ATOM 468 N N . LYS Q 17 101 ? 135.468 290.833 212.812 1.00 146.63 101 Bj 1 +ATOM 469 C CA . LYS Q 17 101 ? 134.598 290.100 211.900 1.00 146.63 101 Bj 1 +ATOM 470 C C . LYS Q 17 101 ? 133.263 290.804 211.699 1.00 146.63 101 Bj 1 +ATOM 471 O O . LYS Q 17 101 ? 132.679 290.714 210.613 1.00 146.63 101 Bj 1 +ATOM 472 C CB . LYS Q 17 101 ? 134.377 288.677 212.420 1.00 146.63 101 Bj 1 +ATOM 473 C CG . LYS Q 17 101 ? 133.447 287.827 211.565 1.00 146.63 101 Bj 1 +ATOM 474 C CD . LYS Q 17 101 ? 133.953 287.708 210.137 1.00 146.63 101 Bj 1 +ATOM 475 C CE . LYS Q 17 101 ? 132.991 286.903 209.277 1.00 146.63 101 Bj 1 +ATOM 476 N NZ . LYS Q 17 101 ? 133.449 286.811 207.864 1.00 146.63 101 Bj 1 +ATOM 477 N N . LYS Q 17 102 ? 132.768 291.510 212.721 1.00 149.37 102 Bj 1 +ATOM 478 C CA . LYS Q 17 102 ? 131.516 292.243 212.568 1.00 149.37 102 Bj 1 +ATOM 479 C C . LYS Q 17 102 ? 131.629 293.337 211.515 1.00 149.37 102 Bj 1 +ATOM 480 O O . LYS Q 17 102 ? 130.622 293.722 210.910 1.00 149.37 102 Bj 1 +ATOM 481 C CB . LYS Q 17 102 ? 131.084 292.839 213.908 1.00 149.37 102 Bj 1 +ATOM 482 C CG . LYS Q 17 102 ? 130.550 291.819 214.900 1.00 149.37 102 Bj 1 +ATOM 483 C CD . LYS Q 17 102 ? 130.124 292.485 216.198 1.00 149.37 102 Bj 1 +ATOM 484 C CE . LYS Q 17 102 ? 129.052 293.533 215.952 1.00 149.37 102 Bj 1 +ATOM 485 N NZ . LYS Q 17 102 ? 127.840 292.944 215.321 1.00 149.37 102 Bj 1 +ATOM 486 N N . SER Q 17 103 ? 132.836 293.849 211.283 1.00 153.12 103 Bj 1 +ATOM 487 C CA . SER Q 17 103 ? 133.065 294.846 210.248 1.00 153.12 103 Bj 1 +ATOM 488 C C . SER Q 17 103 ? 133.347 294.232 208.883 1.00 153.12 103 Bj 1 +ATOM 489 O O . SER Q 17 103 ? 133.244 294.935 207.872 1.00 153.12 103 Bj 1 +ATOM 490 C CB . SER Q 17 103 ? 134.228 295.762 210.645 1.00 153.12 103 Bj 1 +ATOM 491 O OG . SER Q 17 103 ? 135.428 295.024 210.805 1.00 153.12 103 Bj 1 +ATOM 492 N N . ASP Q 17 104 ? 133.696 292.950 208.828 1.00 150.06 104 Bj 1 +ATOM 493 C CA . ASP Q 17 104 ? 133.990 292.286 207.564 1.00 150.06 104 Bj 1 +ATOM 494 C C . ASP Q 17 104 ? 133.253 290.954 207.461 1.00 150.06 104 Bj 1 +ATOM 495 O O . ASP Q 17 104 ? 132.042 290.886 207.671 1.00 150.06 104 Bj 1 +ATOM 496 C CB . ASP Q 17 104 ? 135.497 292.067 207.412 1.00 150.06 104 Bj 1 +ATOM 497 C CG . ASP Q 17 104 ? 135.859 291.377 206.111 1.00 150.06 104 Bj 1 +ATOM 498 O OD1 . ASP Q 17 104 ? 135.698 292.000 205.040 1.00 150.06 104 Bj 1 +ATOM 499 O OD2 . ASP Q 17 104 ? 136.307 290.212 206.158 1.00 150.06 104 Bj 1 +ATOM 500 N N . LEU Q 17 116 ? 133.163 280.213 224.046 1.00 145.92 116 Bj 1 +ATOM 501 C CA . LEU Q 17 116 ? 133.824 281.452 224.439 1.00 145.92 116 Bj 1 +ATOM 502 C C . LEU Q 17 116 ? 134.248 281.400 225.904 1.00 145.92 116 Bj 1 +ATOM 503 O O . LEU Q 17 116 ? 134.010 280.409 226.594 1.00 145.92 116 Bj 1 +ATOM 504 C CB . LEU Q 17 116 ? 132.909 282.657 224.197 1.00 145.92 116 Bj 1 +ATOM 505 C CG . LEU Q 17 116 ? 132.645 283.081 222.748 1.00 145.92 116 Bj 1 +ATOM 506 C CD1 . LEU Q 17 116 ? 133.940 283.098 221.947 1.00 145.92 116 Bj 1 +ATOM 507 C CD2 . LEU Q 17 116 ? 131.596 282.203 222.072 1.00 145.92 116 Bj 1 +ATOM 508 N N . ALA Q 17 117 ? 134.878 282.476 226.373 1.00 150.38 117 Bj 1 +ATOM 509 C CA . ALA Q 17 117 ? 135.358 282.543 227.748 1.00 150.38 117 Bj 1 +ATOM 510 C C . ALA Q 17 117 ? 134.316 283.114 228.702 1.00 150.38 117 Bj 1 +ATOM 511 O O . ALA Q 17 117 ? 134.259 282.710 229.870 1.00 150.38 117 Bj 1 +ATOM 512 C CB . ALA Q 17 117 ? 136.638 283.378 227.815 1.00 150.38 117 Bj 1 +ATOM 513 N N . GLN Q 17 118 ? 133.490 284.050 228.229 1.00 142.89 118 Bj 1 +ATOM 514 C CA . GLN Q 17 118 ? 132.488 284.656 229.099 1.00 142.89 118 Bj 1 +ATOM 515 C C . GLN Q 17 118 ? 131.425 283.644 229.507 1.00 142.89 118 Bj 1 +ATOM 516 O O . GLN Q 17 118 ? 130.930 283.680 230.639 1.00 142.89 118 Bj 1 +ATOM 517 C CB . GLN Q 17 118 ? 131.852 285.861 228.409 1.00 142.89 118 Bj 1 +ATOM 518 C CG . GLN Q 17 118 ? 132.831 286.982 228.103 1.00 142.89 118 Bj 1 +ATOM 519 C CD . GLN Q 17 118 ? 132.150 288.215 227.546 1.00 142.89 118 Bj 1 +ATOM 520 O OE1 . GLN Q 17 118 ? 130.942 288.218 227.309 1.00 142.89 118 Bj 1 +ATOM 521 N NE2 . GLN Q 17 118 ? 132.924 289.274 227.337 1.00 142.89 118 Bj 1 +ATOM 522 N N . ASP Q 17 119 ? 131.065 282.731 228.601 1.00 146.82 119 Bj 1 +ATOM 523 C CA . ASP Q 17 119 ? 130.108 281.686 228.951 1.00 146.82 119 Bj 1 +ATOM 524 C C . ASP Q 17 119 ? 130.655 280.792 230.056 1.00 146.82 119 Bj 1 +ATOM 525 O O . ASP Q 17 119 ? 129.943 280.472 231.016 1.00 146.82 119 Bj 1 +ATOM 526 C CB . ASP Q 17 119 ? 129.759 280.857 227.715 1.00 146.82 119 Bj 1 +ATOM 527 C CG . ASP Q 17 119 ? 129.136 281.688 226.613 1.00 146.82 119 Bj 1 +ATOM 528 O OD1 . ASP Q 17 119 ? 128.456 282.687 226.932 1.00 146.82 119 Bj 1 +ATOM 529 O OD2 . ASP Q 17 119 ? 129.325 281.343 225.428 1.00 146.82 119 Bj 1 +ATOM 530 N N . LEU Q 17 120 ? 131.922 280.388 229.941 1.00 143.97 120 Bj 1 +ATOM 531 C CA . LEU Q 17 120 ? 132.531 279.559 230.976 1.00 143.97 120 Bj 1 +ATOM 532 C C . LEU Q 17 120 ? 132.639 280.316 232.294 1.00 143.97 120 Bj 1 +ATOM 533 O O . LEU Q 17 120 ? 132.434 279.736 233.367 1.00 143.97 120 Bj 1 +ATOM 534 C CB . LEU Q 17 120 ? 133.907 279.077 230.517 1.00 143.97 120 Bj 1 +ATOM 535 C CG . LEU Q 17 120 ? 133.963 278.376 229.157 1.00 143.97 120 Bj 1 +ATOM 536 C CD1 . LEU Q 17 120 ? 135.379 277.917 228.843 1.00 143.97 120 Bj 1 +ATOM 537 C CD2 . LEU Q 17 120 ? 132.992 277.205 229.107 1.00 143.97 120 Bj 1 +ATOM 538 N N . GLU Q 17 121 ? 132.949 281.613 232.235 1.00 138.39 121 Bj 1 +ATOM 539 C CA . GLU Q 17 121 ? 133.032 282.405 233.459 1.00 138.39 121 Bj 1 +ATOM 540 C C . GLU Q 17 121 ? 131.674 282.510 234.141 1.00 138.39 121 Bj 1 +ATOM 541 O O . GLU Q 17 121 ? 131.573 282.370 235.366 1.00 138.39 121 Bj 1 +ATOM 542 C CB . GLU Q 17 121 ? 133.586 283.796 233.152 1.00 138.39 121 Bj 1 +ATOM 543 C CG . GLU Q 17 121 ? 133.560 284.751 234.337 1.00 138.39 121 Bj 1 +ATOM 544 C CD . GLU Q 17 121 ? 134.430 284.285 235.491 1.00 138.39 121 Bj 1 +ATOM 545 O OE1 . GLU Q 17 121 ? 135.428 283.575 235.242 1.00 138.39 121 Bj 1 +ATOM 546 O OE2 . GLU Q 17 121 ? 134.114 284.628 236.650 1.00 138.39 121 Bj 1 +ATOM 547 N N . ASP Q 17 122 ? 130.617 282.755 233.364 1.00 136.27 122 Bj 1 +ATOM 548 C CA . ASP Q 17 122 ? 129.278 282.822 233.938 1.00 136.27 122 Bj 1 +ATOM 549 C C . ASP Q 17 122 ? 128.853 281.471 234.501 1.00 136.27 122 Bj 1 +ATOM 550 O O . ASP Q 17 122 ? 128.190 281.408 235.543 1.00 136.27 122 Bj 1 +ATOM 551 C CB . ASP Q 17 122 ? 128.281 283.308 232.888 1.00 136.27 122 Bj 1 +ATOM 552 C CG . ASP Q 17 122 ? 128.626 284.682 232.352 1.00 136.27 122 Bj 1 +ATOM 553 O OD1 . ASP Q 17 122 ? 129.645 285.254 232.793 1.00 136.27 122 Bj 1 +ATOM 554 O OD2 . ASP Q 17 122 ? 127.881 285.189 231.488 1.00 136.27 122 Bj 1 +ATOM 555 N N . MET Q 17 123 ? 129.232 280.381 233.829 1.00 138.10 123 Bj 1 +ATOM 556 C CA . MET Q 17 123 ? 128.929 279.051 234.345 1.00 138.10 123 Bj 1 +ATOM 557 C C . MET Q 17 123 ? 129.632 278.806 235.675 1.00 138.10 123 Bj 1 +ATOM 558 O O . MET Q 17 123 ? 129.032 278.278 236.618 1.00 138.10 123 Bj 1 +ATOM 559 C CB . MET Q 17 123 ? 129.329 277.991 233.319 1.00 138.10 123 Bj 1 +ATOM 560 C CG . MET Q 17 123 ? 128.950 276.572 233.702 1.00 138.10 123 Bj 1 +ATOM 561 S SD . MET Q 17 123 ? 129.525 275.362 232.494 1.00 138.10 123 Bj 1 +ATOM 562 C CE . MET Q 17 123 ? 128.763 275.986 230.998 1.00 138.10 123 Bj 1 +ATOM 563 N N . TRP Q 17 124 ? 130.906 279.192 235.770 1.00 136.46 124 Bj 1 +ATOM 564 C CA . TRP Q 17 124 ? 131.634 279.040 237.027 1.00 136.46 124 Bj 1 +ATOM 565 C C . TRP Q 17 124 ? 131.008 279.885 238.129 1.00 136.46 124 Bj 1 +ATOM 566 O O . TRP Q 17 124 ? 130.875 279.430 239.272 1.00 136.46 124 Bj 1 +ATOM 567 C CB . TRP Q 17 124 ? 133.102 279.416 236.828 1.00 136.46 124 Bj 1 +ATOM 568 C CG . TRP Q 17 124 ? 133.795 278.588 235.791 1.00 136.46 124 Bj 1 +ATOM 569 C CD1 . TRP Q 17 124 ? 133.472 277.320 235.405 1.00 136.46 124 Bj 1 +ATOM 570 C CD2 . TRP Q 17 124 ? 134.920 278.975 234.994 1.00 136.46 124 Bj 1 +ATOM 571 N NE1 . TRP Q 17 124 ? 134.331 276.891 234.423 1.00 136.46 124 Bj 1 +ATOM 572 C CE2 . TRP Q 17 124 ? 135.229 277.889 234.152 1.00 136.46 124 Bj 1 +ATOM 573 C CE3 . TRP Q 17 124 ? 135.698 280.134 234.913 1.00 136.46 124 Bj 1 +ATOM 574 C CZ2 . TRP Q 17 124 ? 136.283 277.927 233.242 1.00 136.46 124 Bj 1 +ATOM 575 C CZ3 . TRP Q 17 124 ? 136.743 280.169 234.009 1.00 136.46 124 Bj 1 +ATOM 576 C CH2 . TRP Q 17 124 ? 137.026 279.073 233.186 1.00 136.46 124 Bj 1 +ATOM 577 N N . GLU Q 17 125 ? 130.604 281.116 237.802 1.00 133.02 125 Bj 1 +ATOM 578 C CA . GLU Q 17 125 ? 129.992 281.984 238.803 1.00 133.02 125 Bj 1 +ATOM 579 C C . GLU Q 17 125 ? 128.671 281.413 239.299 1.00 133.02 125 Bj 1 +ATOM 580 O O . GLU Q 17 125 ? 128.403 281.405 240.507 1.00 133.02 125 Bj 1 +ATOM 581 C CB . GLU Q 17 125 ? 129.785 283.386 238.231 1.00 133.02 125 Bj 1 +ATOM 582 C CG . GLU Q 17 125 ? 131.071 284.154 237.985 1.00 133.02 125 Bj 1 +ATOM 583 C CD . GLU Q 17 125 ? 130.819 285.533 237.408 1.00 133.02 125 Bj 1 +ATOM 584 O OE1 . GLU Q 17 125 ? 129.640 285.874 237.179 1.00 133.02 125 Bj 1 +ATOM 585 O OE2 . GLU Q 17 125 ? 131.799 286.274 237.184 1.00 133.02 125 Bj 1 +ATOM 586 N N . GLN Q 17 126 ? 127.828 280.928 238.383 1.00 132.06 126 Bj 1 +ATOM 587 C CA . GLN Q 17 126 ? 126.550 280.374 238.808 1.00 132.06 126 Bj 1 +ATOM 588 C C . GLN Q 17 126 ? 126.735 279.073 239.580 1.00 132.06 126 Bj 1 +ATOM 589 O O . GLN Q 17 126 ? 125.981 278.808 240.520 1.00 132.06 126 Bj 1 +ATOM 590 C CB . GLN Q 17 126 ? 125.624 280.176 237.605 1.00 132.06 126 Bj 1 +ATOM 591 C CG . GLN Q 17 126 ? 126.097 279.164 236.583 1.00 132.06 126 Bj 1 +ATOM 592 C CD . GLN Q 17 126 ? 125.303 279.223 235.293 1.00 132.06 126 Bj 1 +ATOM 593 O OE1 . GLN Q 17 126 ? 124.412 280.057 235.137 1.00 132.06 126 Bj 1 +ATOM 594 N NE2 . GLN Q 17 126 ? 125.624 278.335 234.359 1.00 132.06 126 Bj 1 +ATOM 595 N N . LYS Q 17 127 ? 127.748 278.271 239.234 1.00 128.96 127 Bj 1 +ATOM 596 C CA . LYS Q 17 127 ? 128.037 277.081 240.029 1.00 128.96 127 Bj 1 +ATOM 597 C C . LYS Q 17 127 ? 128.495 277.455 241.433 1.00 128.96 127 Bj 1 +ATOM 598 O O . LYS Q 17 127 ? 128.100 276.813 242.414 1.00 128.96 127 Bj 1 +ATOM 599 C CB . LYS Q 17 127 ? 129.093 276.223 239.332 1.00 128.96 127 Bj 1 +ATOM 600 C CG . LYS Q 17 127 ? 128.593 275.496 238.093 1.00 128.96 127 Bj 1 +ATOM 601 C CD . LYS Q 17 127 ? 129.699 274.667 237.457 1.00 128.96 127 Bj 1 +ATOM 602 C CE . LYS Q 17 127 ? 129.191 273.901 236.246 1.00 128.96 127 Bj 1 +ATOM 603 N NZ . LYS Q 17 127 ? 130.253 273.047 235.645 1.00 128.96 127 Bj 1 +ATOM 604 N N . PHE Q 17 128 ? 129.328 278.493 241.547 1.00 124.78 128 Bj 1 +ATOM 605 C CA . PHE Q 17 128 ? 129.778 278.943 242.861 1.00 124.78 128 Bj 1 +ATOM 606 C C . PHE Q 17 128 ? 128.613 279.459 243.694 1.00 124.78 128 Bj 1 +ATOM 607 O O . PHE Q 17 128 ? 128.543 279.208 244.903 1.00 124.78 128 Bj 1 +ATOM 608 C CB . PHE Q 17 128 ? 130.845 280.026 242.703 1.00 124.78 128 Bj 1 +ATOM 609 C CG . PHE Q 17 128 ? 131.325 280.607 244.004 1.00 124.78 128 Bj 1 +ATOM 610 C CD1 . PHE Q 17 128 ? 132.290 279.956 244.754 1.00 124.78 128 Bj 1 +ATOM 611 C CD2 . PHE Q 17 128 ? 130.821 281.810 244.470 1.00 124.78 128 Bj 1 +ATOM 612 C CE1 . PHE Q 17 128 ? 132.737 280.489 245.948 1.00 124.78 128 Bj 1 +ATOM 613 C CE2 . PHE Q 17 128 ? 131.264 282.348 245.663 1.00 124.78 128 Bj 1 +ATOM 614 C CZ . PHE Q 17 128 ? 132.223 281.687 246.403 1.00 124.78 128 Bj 1 +ATOM 615 N N . LEU Q 17 129 ? 127.688 280.186 243.064 1.00 122.50 129 Bj 1 +ATOM 616 C CA . LEU Q 17 129 ? 126.535 280.696 243.799 1.00 122.50 129 Bj 1 +ATOM 617 C C . LEU Q 17 129 ? 125.558 279.583 244.162 1.00 122.50 129 Bj 1 +ATOM 618 O O . LEU Q 17 129 ? 124.879 279.670 245.192 1.00 122.50 129 Bj 1 +ATOM 619 C CB . LEU Q 17 129 ? 125.829 281.784 242.989 1.00 122.50 129 Bj 1 +ATOM 620 C CG . LEU Q 17 129 ? 126.260 283.226 243.273 1.00 122.50 129 Bj 1 +ATOM 621 C CD1 . LEU Q 17 129 ? 126.103 283.546 244.752 1.00 122.50 129 Bj 1 +ATOM 622 C CD2 . LEU Q 17 129 ? 127.688 283.484 242.817 1.00 122.50 129 Bj 1 +ATOM 623 N N . HIS Q 17 130 ? 125.472 278.535 243.339 1.00 124.27 130 Bj 1 +ATOM 624 C CA . HIS Q 17 130 ? 124.581 277.424 243.653 1.00 124.27 130 Bj 1 +ATOM 625 C C . HIS Q 17 130 ? 125.137 276.570 244.785 1.00 124.27 130 Bj 1 +ATOM 626 O O . HIS Q 17 130 ? 124.395 276.174 245.691 1.00 124.27 130 Bj 1 +ATOM 627 C CB . HIS Q 17 130 ? 124.343 276.571 242.407 1.00 124.27 130 Bj 1 +ATOM 628 C CG . HIS Q 17 130 ? 123.598 277.281 241.320 1.00 124.27 130 Bj 1 +ATOM 629 N ND1 . HIS Q 17 130 ? 122.957 278.485 241.521 1.00 124.27 130 Bj 1 +ATOM 630 C CD2 . HIS Q 17 130 ? 123.400 276.962 240.019 1.00 124.27 130 Bj 1 +ATOM 631 C CE1 . HIS Q 17 130 ? 122.391 278.873 240.392 1.00 124.27 130 Bj 1 +ATOM 632 N NE2 . HIS Q 17 130 ? 122.645 277.967 239.465 1.00 124.27 130 Bj 1 +ATOM 633 N N . PHE Q 17 131 ? 126.434 276.275 244.753 1.00 123.12 131 Bj 1 +ATOM 634 C CA . PHE Q 17 131 ? 127.041 275.459 245.795 1.00 123.12 131 Bj 1 +ATOM 635 C C . PHE Q 17 131 ? 127.241 276.280 247.061 1.00 123.12 131 Bj 1 +ATOM 636 O O . PHE Q 17 131 ? 127.634 277.449 247.007 1.00 123.12 131 Bj 1 +ATOM 637 C CB . PHE Q 17 131 ? 128.378 274.890 245.322 1.00 123.12 131 Bj 1 +ATOM 638 C CG . PHE Q 17 131 ? 128.932 273.819 246.221 1.00 123.12 131 Bj 1 +ATOM 639 C CD1 . PHE Q 17 131 ? 128.636 272.485 245.993 1.00 123.12 131 Bj 1 +ATOM 640 C CD2 . PHE Q 17 131 ? 129.747 274.145 247.292 1.00 123.12 131 Bj 1 +ATOM 641 C CE1 . PHE Q 17 131 ? 129.144 271.497 246.816 1.00 123.12 131 Bj 1 +ATOM 642 C CE2 . PHE Q 17 131 ? 130.257 273.162 248.118 1.00 123.12 131 Bj 1 +ATOM 643 C CZ . PHE Q 17 131 ? 129.955 271.837 247.880 1.00 123.12 131 Bj 1 +ATOM 644 N N . LYS Q 17 132 ? 126.965 275.659 248.206 1.00 116.35 132 Bj 1 +ATOM 645 C CA . LYS Q 17 132 ? 127.090 276.303 249.505 1.00 116.35 132 Bj 1 +ATOM 646 C C . LYS Q 17 132 ? 128.171 275.612 250.323 1.00 116.35 132 Bj 1 +ATOM 647 O O . LYS Q 17 132 ? 128.289 274.383 250.305 1.00 116.35 132 Bj 1 +ATOM 648 C CB . LYS Q 17 132 ? 125.759 276.283 250.264 1.00 116.35 132 Bj 1 +ATOM 649 C CG . LYS Q 17 132 ? 125.018 277.611 250.239 1.00 116.35 132 Bj 1 +ATOM 650 C CD . LYS Q 17 132 ? 124.841 278.121 248.819 1.00 116.35 132 Bj 1 +ATOM 651 C CE . LYS Q 17 132 ? 124.220 279.507 248.803 1.00 116.35 132 Bj 1 +ATOM 652 N NZ . LYS Q 17 132 ? 124.099 280.040 247.419 1.00 116.35 132 Bj 1 +ATOM 653 N N . LEU Q 17 133 ? 128.955 276.411 251.041 1.00 122.76 133 Bj 1 +ATOM 654 C CA . LEU Q 17 133 ? 130.066 275.909 251.829 1.00 122.76 133 Bj 1 +ATOM 655 C C . LEU Q 17 133 ? 129.629 275.679 253.274 1.00 122.76 133 Bj 1 +ATOM 656 O O . LEU Q 17 133 ? 128.461 275.844 253.634 1.00 122.76 133 Bj 1 +ATOM 657 C CB . LEU Q 17 133 ? 131.244 276.879 251.757 1.00 122.76 133 Bj 1 +ATOM 658 C CG . LEU Q 17 133 ? 131.666 277.326 250.356 1.00 122.76 133 Bj 1 +ATOM 659 C CD1 . LEU Q 17 133 ? 132.813 278.319 250.434 1.00 122.76 133 Bj 1 +ATOM 660 C CD2 . LEU Q 17 133 ? 132.045 276.128 249.501 1.00 122.76 133 Bj 1 +ATOM 661 N N . GLY Q 17 134 ? 130.584 275.293 254.118 1.00 129.65 134 Bj 1 +ATOM 662 C CA . GLY Q 17 134 ? 130.282 275.055 255.514 1.00 129.65 134 Bj 1 +ATOM 663 C C . GLY Q 17 134 ? 130.327 276.328 256.339 1.00 129.65 134 Bj 1 +ATOM 664 O O . GLY Q 17 134 ? 131.088 277.255 256.064 1.00 129.65 134 Bj 1 +ATOM 665 N N . ALA Q 17 135 ? 129.488 276.366 257.371 1.00 138.35 135 Bj 1 +ATOM 666 C CA . ALA Q 17 135 ? 129.408 277.524 258.252 1.00 138.35 135 Bj 1 +ATOM 667 C C . ALA Q 17 135 ? 130.539 277.469 259.271 1.00 138.35 135 Bj 1 +ATOM 668 O O . ALA Q 17 135 ? 130.677 276.482 260.002 1.00 138.35 135 Bj 1 +ATOM 669 C CB . ALA Q 17 135 ? 128.051 277.571 258.950 1.00 138.35 135 Bj 1 +ATOM 670 N N . ARG Q 17 136 ? 131.347 278.530 259.322 1.00 130.79 136 Bj 1 +ATOM 671 C CA . ARG Q 17 136 ? 132.483 278.568 260.234 1.00 130.79 136 Bj 1 +ATOM 672 C C . ARG Q 17 136 ? 132.087 278.942 261.655 1.00 130.79 136 Bj 1 +ATOM 673 O O . ARG Q 17 136 ? 132.785 278.556 262.599 1.00 130.79 136 Bj 1 +ATOM 674 C CB . ARG Q 17 136 ? 133.536 279.556 259.727 1.00 130.79 136 Bj 1 +ATOM 675 C CG . ARG Q 17 136 ? 133.810 279.469 258.237 1.00 130.79 136 Bj 1 +ATOM 676 C CD . ARG Q 17 136 ? 135.032 280.286 257.861 1.00 130.79 136 Bj 1 +ATOM 677 N NE . ARG Q 17 136 ? 134.968 281.647 258.384 1.00 130.79 136 Bj 1 +ATOM 678 C CZ . ARG Q 17 136 ? 135.943 282.541 258.256 1.00 130.79 136 Bj 1 +ATOM 679 N NH1 . ARG Q 17 136 ? 137.061 282.218 257.620 1.00 130.79 136 Bj 1 +ATOM 680 N NH2 . ARG Q 17 136 ? 135.801 283.757 258.764 1.00 130.79 136 Bj 1 +ATOM 681 N N . LEU Q 17 137 ? 130.992 279.683 261.830 1.00 133.57 137 Bj 1 +ATOM 682 C CA . LEU Q 17 137 ? 130.559 280.141 263.149 1.00 133.57 137 Bj 1 +ATOM 683 C C . LEU Q 17 137 ? 129.570 279.126 263.717 1.00 133.57 137 Bj 1 +ATOM 684 O O . LEU Q 17 137 ? 128.360 279.345 263.762 1.00 133.57 137 Bj 1 +ATOM 685 C CB . LEU Q 17 137 ? 129.956 281.539 263.059 1.00 133.57 137 Bj 1 +ATOM 686 C CG . LEU Q 17 137 ? 130.891 282.628 262.527 1.00 133.57 137 Bj 1 +ATOM 687 C CD1 . LEU Q 17 137 ? 130.188 283.977 262.488 1.00 133.57 137 Bj 1 +ATOM 688 C CD2 . LEU Q 17 137 ? 132.159 282.703 263.364 1.00 133.57 137 Bj 1 +ATOM 689 N N . THR Q 17 138 ? 130.111 277.993 264.160 1.00 133.35 138 Bj 1 +ATOM 690 C CA . THR Q 17 138 ? 129.322 276.936 264.778 1.00 133.35 138 Bj 1 +ATOM 691 C C . THR Q 17 138 ? 129.133 277.144 266.275 1.00 133.35 138 Bj 1 +ATOM 692 O O . THR Q 17 138 ? 128.651 276.236 266.959 1.00 133.35 138 Bj 1 +ATOM 693 C CB . THR Q 17 138 ? 129.970 275.573 264.522 1.00 133.35 138 Bj 1 +ATOM 694 O OG1 . THR Q 17 138 ? 131.309 275.575 265.032 1.00 133.35 138 Bj 1 +ATOM 695 C CG2 . THR Q 17 138 ? 129.999 275.269 263.033 1.00 133.35 138 Bj 1 +ATOM 696 N N . GLU Q 17 139 ? 129.508 278.309 266.795 1.00 134.95 139 Bj 1 +ATOM 697 C CA . GLU Q 17 139 ? 129.306 278.647 268.196 1.00 134.95 139 Bj 1 +ATOM 698 C C . GLU Q 17 139 ? 128.457 279.891 268.396 1.00 134.95 139 Bj 1 +ATOM 699 O O . GLU Q 17 139 ? 127.841 280.034 269.453 1.00 134.95 139 Bj 1 +ATOM 700 C CB . GLU Q 17 139 ? 130.659 278.842 268.900 1.00 134.95 139 Bj 1 +ATOM 701 C CG . GLU Q 17 139 ? 130.604 278.798 270.422 1.00 134.95 139 Bj 1 +ATOM 702 C CD . GLU Q 17 139 ? 130.428 280.169 271.046 1.00 134.95 139 Bj 1 +ATOM 703 O OE1 . GLU Q 17 139 ? 130.488 281.174 270.307 1.00 134.95 139 Bj 1 +ATOM 704 O OE2 . GLU Q 17 139 ? 130.231 280.241 272.277 1.00 134.95 139 Bj 1 +ATOM 705 N N . ALA Q 17 140 ? 128.404 280.792 267.412 1.00 139.06 140 Bj 1 +ATOM 706 C CA . ALA Q 17 140 ? 127.569 281.980 267.543 1.00 139.06 140 Bj 1 +ATOM 707 C C . ALA Q 17 140 ? 126.090 281.623 267.616 1.00 139.06 140 Bj 1 +ATOM 708 O O . ALA Q 17 140 ? 125.316 282.326 268.275 1.00 139.06 140 Bj 1 +ATOM 709 C CB . ALA Q 17 140 ? 127.829 282.937 266.380 1.00 139.06 140 Bj 1 +ATOM 710 N N . ASP Q 17 141 ? 125.681 280.539 266.954 1.00 140.48 141 Bj 1 +ATOM 711 C CA . ASP Q 17 141 ? 124.289 280.111 267.023 1.00 140.48 141 Bj 1 +ATOM 712 C C . ASP Q 17 141 ? 124.001 279.307 268.283 1.00 140.48 141 Bj 1 +ATOM 713 O O . ASP Q 17 141 ? 122.859 279.293 268.754 1.00 140.48 141 Bj 1 +ATOM 714 C CB . ASP Q 17 141 ? 123.924 279.291 265.784 1.00 140.48 141 Bj 1 +ATOM 715 C CG . ASP Q 17 141 ? 124.675 277.976 265.714 1.00 140.48 141 Bj 1 +ATOM 716 O OD1 . ASP Q 17 141 ? 125.822 277.916 266.203 1.00 140.48 141 Bj 1 +ATOM 717 O OD2 . ASP Q 17 141 ? 124.116 277.002 265.168 1.00 140.48 141 Bj 1 +ATOM 718 N N . LYS Q 17 142 ? 125.010 278.635 268.840 1.00 134.61 142 Bj 1 +ATOM 719 C CA . LYS Q 17 142 ? 124.797 277.853 270.053 1.00 134.61 142 Bj 1 +ATOM 720 C C . LYS Q 17 142 ? 124.838 278.740 271.293 1.00 134.61 142 Bj 1 +ATOM 721 O O . LYS Q 17 142 ? 123.839 278.877 272.005 1.00 134.61 142 Bj 1 +ATOM 722 C CB . LYS Q 17 142 ? 125.847 276.744 270.155 1.00 134.61 142 Bj 1 +ATOM 723 C CG . LYS Q 17 142 ? 126.107 276.000 268.857 1.00 134.61 142 Bj 1 +ATOM 724 C CD . LYS Q 17 142 ? 124.858 275.311 268.339 1.00 134.61 142 Bj 1 +ATOM 725 C CE . LYS Q 17 142 ? 125.153 274.532 267.067 1.00 134.61 142 Bj 1 +ATOM 726 N NZ . LYS Q 17 142 ? 123.939 273.858 266.530 1.00 134.61 142 Bj 1 +ATOM 727 N N . LYS Q 17 143 ? 125.993 279.349 271.561 1.00 130.78 143 Bj 1 +ATOM 728 C CA . LYS Q 17 143 ? 126.225 280.262 272.679 1.00 130.78 143 Bj 1 +ATOM 729 C C . LYS Q 17 143 ? 125.934 279.638 274.039 1.00 130.78 143 Bj 1 +ATOM 730 O O . LYS Q 17 143 ? 125.924 280.350 275.050 1.00 130.78 143 Bj 1 +ATOM 731 C CB . LYS Q 17 143 ? 125.421 281.559 272.519 1.00 130.78 143 Bj 1 +ATOM 732 C CG . LYS Q 17 143 ? 125.982 282.503 271.471 1.00 130.78 143 Bj 1 +ATOM 733 C CD . LYS Q 17 143 ? 127.408 282.899 271.812 1.00 130.78 143 Bj 1 +ATOM 734 C CE . LYS Q 17 143 ? 127.980 283.857 270.782 1.00 130.78 143 Bj 1 +ATOM 735 N NZ . LYS Q 17 143 ? 129.382 284.238 271.109 1.00 130.78 143 Bj 1 +ATOM 736 N N . ASP Q 17 144 ? 125.698 278.330 274.099 1.00 131.40 144 Bj 1 +ATOM 737 C CA . ASP Q 17 144 ? 125.447 277.643 275.360 1.00 131.40 144 Bj 1 +ATOM 738 C C . ASP Q 17 144 ? 126.492 276.583 275.666 1.00 131.40 144 Bj 1 +ATOM 739 O O . ASP Q 17 144 ? 127.062 276.578 276.763 1.00 131.40 144 Bj 1 +ATOM 740 C CB . ASP Q 17 144 ? 124.048 277.003 275.351 1.00 131.40 144 Bj 1 +ATOM 741 C CG . ASP Q 17 144 ? 122.935 278.027 275.449 1.00 131.40 144 Bj 1 +ATOM 742 O OD1 . ASP Q 17 144 ? 122.551 278.595 274.407 1.00 131.40 144 Bj 1 +ATOM 743 O OD2 . ASP Q 17 144 ? 122.442 278.263 276.571 1.00 131.40 144 Bj 1 +ATOM 744 N N . ASP Q 17 145 ? 126.762 275.685 274.723 1.00 125.63 145 Bj 1 +ATOM 745 C CA . ASP Q 17 145 ? 127.651 274.554 274.962 1.00 125.63 145 Bj 1 +ATOM 746 C C . ASP Q 17 145 ? 129.095 275.042 274.977 1.00 125.63 145 Bj 1 +ATOM 747 O O . ASP Q 17 145 ? 129.719 275.197 273.922 1.00 125.63 145 Bj 1 +ATOM 748 C CB . ASP Q 17 145 ? 127.441 273.482 273.897 1.00 125.63 145 Bj 1 +ATOM 749 C CG . ASP Q 17 145 ? 128.031 272.142 274.292 1.00 125.63 145 Bj 1 +ATOM 750 O OD1 . ASP Q 17 145 ? 128.682 272.064 275.355 1.00 125.63 145 Bj 1 +ATOM 751 O OD2 . ASP Q 17 145 ? 127.837 271.162 273.542 1.00 125.63 145 Bj 1 +ATOM 752 N N . ARG Q 17 146 ? 129.624 275.289 276.173 1.00 123.19 146 Bj 1 +ATOM 753 C CA . ARG Q 17 146 ? 131.031 275.617 276.354 1.00 123.19 146 Bj 1 +ATOM 754 C C . ARG Q 17 146 ? 131.912 274.378 276.423 1.00 123.19 146 Bj 1 +ATOM 755 O O . ARG Q 17 146 ? 133.141 274.505 276.438 1.00 123.19 146 Bj 1 +ATOM 756 C CB . ARG Q 17 146 ? 131.221 276.448 277.628 1.00 123.19 146 Bj 1 +ATOM 757 C CG . ARG Q 17 146 ? 130.339 277.684 277.717 1.00 123.19 146 Bj 1 +ATOM 758 C CD . ARG Q 17 146 ? 130.774 278.756 276.734 1.00 123.19 146 Bj 1 +ATOM 759 N NE . ARG Q 17 146 ? 130.058 280.011 276.945 1.00 123.19 146 Bj 1 +ATOM 760 C CZ . ARG Q 17 146 ? 130.291 281.128 276.265 1.00 123.19 146 Bj 1 +ATOM 761 N NH1 . ARG Q 17 146 ? 131.225 281.151 275.325 1.00 123.19 146 Bj 1 +ATOM 762 N NH2 . ARG Q 17 146 ? 129.590 282.224 276.524 1.00 123.19 146 Bj 1 +ATOM 763 N N . THR Q 17 147 ? 131.314 273.189 276.464 1.00 120.18 147 Bj 1 +ATOM 764 C CA . THR Q 17 147 ? 132.038 271.936 276.619 1.00 120.18 147 Bj 1 +ATOM 765 C C . THR Q 17 147 ? 132.125 271.136 275.328 1.00 120.18 147 Bj 1 +ATOM 766 O O . THR Q 17 147 ? 132.651 270.018 275.343 1.00 120.18 147 Bj 1 +ATOM 767 C CB . THR Q 17 147 ? 131.373 271.081 277.702 1.00 120.18 147 Bj 1 +ATOM 768 O OG1 . THR Q 17 147 ? 130.082 270.655 277.249 1.00 120.18 147 Bj 1 +ATOM 769 C CG2 . THR Q 17 147 ? 131.209 271.884 278.982 1.00 120.18 147 Bj 1 +ATOM 770 N N . SER Q 17 148 ? 131.625 271.672 274.219 1.00 118.54 148 Bj 1 +ATOM 771 C CA . SER Q 17 148 ? 131.618 270.943 272.961 1.00 118.54 148 Bj 1 +ATOM 772 C C . SER Q 17 148 ? 133.006 270.928 272.336 1.00 118.54 148 Bj 1 +ATOM 773 O O . SER Q 17 148 ? 133.743 271.916 272.398 1.00 118.54 148 Bj 1 +ATOM 774 C CB . SER Q 17 148 ? 130.617 271.567 271.988 1.00 118.54 148 Bj 1 +ATOM 775 O OG . SER Q 17 148 ? 130.928 272.926 271.735 1.00 118.54 148 Bj 1 +ATOM 776 N N . LEU Q 17 149 ? 133.361 269.790 271.735 1.00 117.15 149 Bj 1 +ATOM 777 C CA . LEU Q 17 149 ? 134.619 269.711 271.001 1.00 117.15 149 Bj 1 +ATOM 778 C C . LEU Q 17 149 ? 134.608 270.627 269.785 1.00 117.15 149 Bj 1 +ATOM 779 O O . LEU Q 17 149 ? 135.662 271.129 269.377 1.00 117.15 149 Bj 1 +ATOM 780 C CB . LEU Q 17 149 ? 134.891 268.267 270.579 1.00 117.15 149 Bj 1 +ATOM 781 C CG . LEU Q 17 149 ? 136.256 267.992 269.944 1.00 117.15 149 Bj 1 +ATOM 782 C CD1 . LEU Q 17 149 ? 137.367 268.200 270.960 1.00 117.15 149 Bj 1 +ATOM 783 C CD2 . LEU Q 17 149 ? 136.314 266.588 269.358 1.00 117.15 149 Bj 1 +ATOM 784 N N . HIS Q 17 150 ? 133.431 270.864 269.203 1.00 119.46 150 Bj 1 +ATOM 785 C CA . HIS Q 17 150 ? 133.275 271.750 268.056 1.00 119.46 150 Bj 1 +ATOM 786 C C . HIS Q 17 150 ? 132.939 273.179 268.467 1.00 119.46 150 Bj 1 +ATOM 787 O O . HIS Q 17 150 ? 132.307 273.912 267.695 1.00 119.46 150 Bj 1 +ATOM 788 C CB . HIS Q 17 150 ? 132.203 271.196 267.115 1.00 119.46 150 Bj 1 +ATOM 789 C CG . HIS Q 17 150 ? 132.333 271.667 265.700 1.00 119.46 150 Bj 1 +ATOM 790 N ND1 . HIS Q 17 150 ? 133.406 271.334 264.901 1.00 119.46 150 Bj 1 +ATOM 791 C CD2 . HIS Q 17 150 ? 131.523 272.440 264.939 1.00 119.46 150 Bj 1 +ATOM 792 C CE1 . HIS Q 17 150 ? 133.252 271.884 263.709 1.00 119.46 150 Bj 1 +ATOM 793 N NE2 . HIS Q 17 150 ? 132.118 272.561 263.706 1.00 119.46 150 Bj 1 +ATOM 794 N N . ARG Q 17 151 ? 133.334 273.589 269.675 1.00 116.45 151 Bj 1 +ATOM 795 C CA . ARG Q 17 151 ? 133.014 274.930 270.155 1.00 116.45 151 Bj 1 +ATOM 796 C C . ARG Q 17 151 ? 133.683 276.000 269.299 1.00 116.45 151 Bj 1 +ATOM 797 O O . ARG Q 17 151 ? 133.011 276.780 268.616 1.00 116.45 151 Bj 1 +ATOM 798 C CB . ARG Q 17 151 ? 133.432 275.069 271.620 1.00 116.45 151 Bj 1 +ATOM 799 C CG . ARG Q 17 151 ? 133.285 276.474 272.176 1.00 116.45 151 Bj 1 +ATOM 800 C CD . ARG Q 17 151 ? 133.694 276.533 273.637 1.00 116.45 151 Bj 1 +ATOM 801 N NE . ARG Q 17 151 ? 133.681 277.899 274.151 1.00 116.45 151 Bj 1 +ATOM 802 C CZ . ARG Q 17 151 ? 133.957 278.225 275.408 1.00 116.45 151 Bj 1 +ATOM 803 N NH1 . ARG Q 17 151 ? 134.267 277.282 276.287 1.00 116.45 151 Bj 1 +ATOM 804 N NH2 . ARG Q 17 151 ? 133.923 279.495 275.788 1.00 116.45 151 Bj 1 +ATOM 805 N N . LYS Q 17 152 ? 135.011 276.043 269.313 1.00 117.42 152 Bj 1 +ATOM 806 C CA . LYS Q 17 152 ? 135.770 277.054 268.591 1.00 117.42 152 Bj 1 +ATOM 807 C C . LYS Q 17 152 ? 136.622 276.389 267.521 1.00 117.42 152 Bj 1 +ATOM 808 O O . LYS Q 17 152 ? 137.171 275.304 267.735 1.00 117.42 152 Bj 1 +ATOM 809 C CB . LYS Q 17 152 ? 136.655 277.866 269.542 1.00 117.42 152 Bj 1 +ATOM 810 C CG . LYS Q 17 152 ? 135.879 278.626 270.605 1.00 117.42 152 Bj 1 +ATOM 811 C CD . LYS Q 17 152 ? 136.809 279.386 271.538 1.00 117.42 152 Bj 1 +ATOM 812 C CE . LYS Q 17 152 ? 136.029 280.083 272.644 1.00 117.42 152 Bj 1 +ATOM 813 N NZ . LYS Q 17 152 ? 136.923 280.801 273.593 1.00 117.42 152 Bj 1 +ATOM 814 N N . LEU Q 17 153 ? 136.727 277.048 266.368 1.00 116.24 153 Bj 1 +ATOM 815 C CA . LEU Q 17 153 ? 137.460 276.511 265.234 1.00 116.24 153 Bj 1 +ATOM 816 C C . LEU Q 17 153 ? 138.638 277.371 264.802 1.00 116.24 153 Bj 1 +ATOM 817 O O . LEU Q 17 153 ? 139.490 276.883 264.051 1.00 116.24 153 Bj 1 +ATOM 818 C CB . LEU Q 17 153 ? 136.518 276.317 264.036 1.00 116.24 153 Bj 1 +ATOM 819 C CG . LEU Q 17 153 ? 135.239 275.539 264.342 1.00 116.24 153 Bj 1 +ATOM 820 C CD1 . LEU Q 17 153 ? 134.370 275.417 263.102 1.00 116.24 153 Bj 1 +ATOM 821 C CD2 . LEU Q 17 153 ? 135.573 274.168 264.908 1.00 116.24 153 Bj 1 +ATOM 822 N N . ASP Q 17 154 ? 138.712 278.626 265.242 1.00 114.21 154 Bj 1 +ATOM 823 C CA . ASP Q 17 154 ? 139.819 279.499 264.880 1.00 114.21 154 Bj 1 +ATOM 824 C C . ASP Q 17 154 ? 140.864 279.628 265.977 1.00 114.21 154 Bj 1 +ATOM 825 O O . ASP Q 17 154 ? 141.912 280.237 265.742 1.00 114.21 154 Bj 1 +ATOM 826 C CB . ASP Q 17 154 ? 139.301 280.893 264.510 1.00 114.21 154 Bj 1 +ATOM 827 C CG . ASP Q 17 154 ? 138.591 281.574 265.661 1.00 114.21 154 Bj 1 +ATOM 828 O OD1 . ASP Q 17 154 ? 138.041 280.861 266.526 1.00 114.21 154 Bj 1 +ATOM 829 O OD2 . ASP Q 17 154 ? 138.580 282.823 265.698 1.00 114.21 154 Bj 1 +ATOM 830 N N . ARG Q 17 155 ? 140.614 279.065 267.154 1.00 117.24 155 Bj 1 +ATOM 831 C CA . ARG Q 17 155 ? 141.560 279.082 268.258 1.00 117.24 155 Bj 1 +ATOM 832 C C . ARG Q 17 155 ? 141.854 277.656 268.702 1.00 117.24 155 Bj 1 +ATOM 833 O O . ARG Q 17 155 ? 141.141 276.711 268.356 1.00 117.24 155 Bj 1 +ATOM 834 C CB . ARG Q 17 155 ? 141.020 279.897 269.441 1.00 117.24 155 Bj 1 +ATOM 835 C CG . ARG Q 17 155 ? 140.581 281.306 269.091 1.00 117.24 155 Bj 1 +ATOM 836 C CD . ARG Q 17 155 ? 140.132 282.057 270.334 1.00 117.24 155 Bj 1 +ATOM 837 N NE . ARG Q 17 155 ? 139.613 283.382 270.013 1.00 117.24 155 Bj 1 +ATOM 838 C CZ . ARG Q 17 155 ? 139.268 284.288 270.921 1.00 117.24 155 Bj 1 +ATOM 839 N NH1 . ARG Q 17 155 ? 139.392 284.015 272.212 1.00 117.24 155 Bj 1 +ATOM 840 N NH2 . ARG Q 17 155 ? 138.803 285.469 270.538 1.00 117.24 155 Bj 1 +ATOM 841 N N . ASN Q 17 156 ? 142.922 277.508 269.478 1.00 113.83 156 Bj 1 +ATOM 842 C CA . ASN Q 17 156 ? 143.233 276.233 270.102 1.00 113.83 156 Bj 1 +ATOM 843 C C . ASN Q 17 156 ? 142.516 276.132 271.441 1.00 113.83 156 Bj 1 +ATOM 844 O O . ASN Q 17 156 ? 142.286 277.135 272.123 1.00 113.83 156 Bj 1 +ATOM 845 C CB . ASN Q 17 156 ? 144.741 276.067 270.300 1.00 113.83 156 Bj 1 +ATOM 846 C CG . ASN Q 17 156 ? 145.277 276.908 271.442 1.00 113.83 156 Bj 1 +ATOM 847 O OD1 . ASN Q 17 156 ? 144.906 278.071 271.601 1.00 113.83 156 Bj 1 +ATOM 848 N ND2 . ASN Q 17 156 ? 146.154 276.320 272.247 1.00 113.83 156 Bj 1 +ATOM 849 N N . LEU Q 17 157 ? 142.156 274.908 271.811 1.00 117.97 157 Bj 1 +ATOM 850 C CA . LEU Q 17 157 ? 141.427 274.665 273.045 1.00 117.97 157 Bj 1 +ATOM 851 C C . LEU Q 17 157 ? 142.163 273.643 273.900 1.00 117.97 157 Bj 1 +ATOM 852 O O . LEU Q 17 157 ? 142.908 272.801 273.397 1.00 117.97 157 Bj 1 +ATOM 853 C CB . LEU Q 17 157 ? 139.997 274.188 272.760 1.00 117.97 157 Bj 1 +ATOM 854 C CG . LEU Q 17 157 ? 139.112 275.189 272.013 1.00 117.97 157 Bj 1 +ATOM 855 C CD1 . LEU Q 17 157 ? 137.703 274.642 271.833 1.00 117.97 157 Bj 1 +ATOM 856 C CD2 . LEU Q 17 157 ? 139.084 276.528 272.733 1.00 117.97 157 Bj 1 +ATOM 857 N N . ILE Q 17 158 ? 141.952 273.734 275.213 1.00 113.83 158 Bj 1 +ATOM 858 C CA . ILE Q 17 158 ? 142.549 272.815 276.169 1.00 113.83 158 Bj 1 +ATOM 859 C C . ILE Q 17 158 ? 141.443 272.284 277.071 1.00 113.83 158 Bj 1 +ATOM 860 O O . ILE Q 17 158 ? 140.365 272.871 277.184 1.00 113.83 158 Bj 1 +ATOM 861 C CB . ILE Q 17 158 ? 143.669 273.481 276.999 1.00 113.83 158 Bj 1 +ATOM 862 C CG1 . ILE Q 17 158 ? 144.690 272.440 277.466 1.00 113.83 158 Bj 1 +ATOM 863 C CG2 . ILE Q 17 158 ? 143.086 274.213 278.188 1.00 113.83 158 Bj 1 +ATOM 864 C CD1 . ILE Q 17 158 ? 145.859 273.029 278.223 1.00 113.83 158 Bj 1 +ATOM 865 N N . LEU Q 17 159 ? 141.723 271.155 277.716 1.00 117.96 159 Bj 1 +ATOM 866 C CA . LEU Q 17 159 ? 140.729 270.429 278.495 1.00 117.96 159 Bj 1 +ATOM 867 C C . LEU Q 17 159 ? 140.864 270.768 279.973 1.00 117.96 159 Bj 1 +ATOM 868 O O . LEU Q 17 159 ? 141.962 270.695 280.535 1.00 117.96 159 Bj 1 +ATOM 869 C CB . LEU Q 17 159 ? 140.876 268.922 278.285 1.00 117.96 159 Bj 1 +ATOM 870 C CG . LEU Q 17 159 ? 139.756 268.048 278.849 1.00 117.96 159 Bj 1 +ATOM 871 C CD1 . LEU Q 17 159 ? 138.420 268.435 278.235 1.00 117.96 159 Bj 1 +ATOM 872 C CD2 . LEU Q 17 159 ? 140.053 266.577 278.608 1.00 117.96 159 Bj 1 +ATOM 873 N N . LEU Q 17 160 ? 139.745 271.135 280.597 1.00 129.48 160 Bj 1 +ATOM 874 C CA . LEU Q 17 160 ? 139.681 271.396 282.030 1.00 129.48 160 Bj 1 +ATOM 875 C C . LEU Q 17 160 ? 138.594 270.526 282.642 1.00 129.48 160 Bj 1 +ATOM 876 O O . LEU Q 17 160 ? 137.483 270.456 282.110 1.00 129.48 160 Bj 1 +ATOM 877 C CB . LEU Q 17 160 ? 139.396 272.874 282.319 1.00 129.48 160 Bj 1 +ATOM 878 C CG . LEU Q 17 160 ? 140.586 273.780 282.641 1.00 129.48 160 Bj 1 +ATOM 879 C CD1 . LEU Q 17 160 ? 141.302 273.297 283.894 1.00 129.48 160 Bj 1 +ATOM 880 C CD2 . LEU Q 17 160 ? 141.543 273.865 281.466 1.00 129.48 160 Bj 1 +ATOM 881 N N . VAL Q 17 161 ? 138.908 269.869 283.754 1.00 136.87 161 Bj 1 +ATOM 882 C CA . VAL Q 17 161 ? 137.973 268.976 284.427 1.00 136.87 161 Bj 1 +ATOM 883 C C . VAL Q 17 161 ? 137.583 269.581 285.768 1.00 136.87 161 Bj 1 +ATOM 884 O O . VAL Q 17 161 ? 138.402 270.219 286.438 1.00 136.87 161 Bj 1 +ATOM 885 C CB . VAL Q 17 161 ? 138.566 267.564 284.611 1.00 136.87 161 Bj 1 +ATOM 886 C CG1 . VAL Q 17 161 ? 138.693 266.867 283.267 1.00 136.87 161 Bj 1 +ATOM 887 C CG2 . VAL Q 17 161 ? 139.917 267.637 285.303 1.00 136.87 161 Bj 1 +ATOM 888 N N . ARG Q 17 162 ? 136.323 269.392 286.149 1.00 151.13 162 Bj 1 +ATOM 889 C CA . ARG Q 17 162 ? 135.837 269.829 287.450 1.00 151.13 162 Bj 1 +ATOM 890 C C . ARG Q 17 162 ? 135.852 268.656 288.420 1.00 151.13 162 Bj 1 +ATOM 891 O O . ARG Q 17 162 ? 135.243 267.615 288.155 1.00 151.13 162 Bj 1 +ATOM 892 C CB . ARG Q 17 162 ? 134.425 270.405 287.339 1.00 151.13 162 Bj 1 +ATOM 893 C CG . ARG Q 17 162 ? 133.794 270.771 288.675 1.00 151.13 162 Bj 1 +ATOM 894 C CD . ARG Q 17 162 ? 134.649 271.772 289.435 1.00 151.13 162 Bj 1 +ATOM 895 N NE . ARG Q 17 162 ? 134.041 272.166 290.702 1.00 151.13 162 Bj 1 +ATOM 896 C CZ . ARG Q 17 162 ? 134.595 273.012 291.565 1.00 151.13 162 Bj 1 +ATOM 897 N NH1 . ARG Q 17 162 ? 135.775 273.556 291.298 1.00 151.13 162 Bj 1 +ATOM 898 N NH2 . ARG Q 17 162 ? 133.971 273.316 292.694 1.00 151.13 162 Bj 1 +ATOM 899 N N . GLU Q 17 163 ? 136.552 268.826 289.540 1.00 162.19 163 Bj 1 +ATOM 900 C CA . GLU Q 17 163 ? 136.655 267.786 290.555 1.00 162.19 163 Bj 1 +ATOM 901 C C . GLU Q 17 163 ? 136.528 268.410 291.935 1.00 162.19 163 Bj 1 +ATOM 902 O O . GLU Q 17 163 ? 137.204 269.398 292.237 1.00 162.19 163 Bj 1 +ATOM 903 C CB . GLU Q 17 163 ? 137.981 267.024 290.442 1.00 162.19 163 Bj 1 +ATOM 904 C CG . GLU Q 17 163 ? 138.128 266.212 289.165 1.00 162.19 163 Bj 1 +ATOM 905 C CD . GLU Q 17 163 ? 139.362 265.332 289.175 1.00 162.19 163 Bj 1 +ATOM 906 O OE1 . GLU Q 17 163 ? 140.126 265.387 290.161 1.00 162.19 163 Bj 1 +ATOM 907 O OE2 . GLU Q 17 163 ? 139.566 264.582 288.197 1.00 162.19 163 Bj 1 +ATOM 908 N N . LYS Q 17 164 ? 135.663 267.833 292.764 1.00 165.97 164 Bj 1 +ATOM 909 C CA . LYS Q 17 164 ? 135.477 268.256 294.149 1.00 165.97 164 Bj 1 +ATOM 910 C C . LYS Q 17 164 ? 136.057 267.171 295.050 1.00 165.97 164 Bj 1 +ATOM 911 O O . LYS Q 17 164 ? 135.463 266.101 295.210 1.00 165.97 164 Bj 1 +ATOM 912 C CB . LYS Q 17 164 ? 134.004 268.509 294.456 1.00 165.97 164 Bj 1 +ATOM 913 C CG . LYS Q 17 164 ? 133.424 269.735 293.773 1.00 165.97 164 Bj 1 +ATOM 914 C CD . LYS Q 17 164 ? 132.024 270.035 294.284 1.00 165.97 164 Bj 1 +ATOM 915 C CE . LYS Q 17 164 ? 131.472 271.312 293.673 1.00 165.97 164 Bj 1 +ATOM 916 N NZ . LYS Q 17 164 ? 130.115 271.638 294.195 1.00 165.97 164 Bj 1 +ATOM 917 N N . LEU Q 17 165 ? 137.217 267.450 295.636 1.00 168.90 165 Bj 1 +ATOM 918 C CA . LEU Q 17 165 ? 137.880 266.496 296.515 1.00 168.90 165 Bj 1 +ATOM 919 C C . LEU Q 17 165 ? 137.275 266.587 297.915 1.00 168.90 165 Bj 1 +ATOM 920 O O . LEU Q 17 165 ? 136.251 267.238 298.138 1.00 168.90 165 Bj 1 +ATOM 921 C CB . LEU Q 17 165 ? 139.386 266.743 296.518 1.00 168.90 165 Bj 1 +ATOM 922 C CG . LEU Q 17 165 ? 140.073 266.659 295.154 1.00 168.90 165 Bj 1 +ATOM 923 C CD1 . LEU Q 17 165 ? 141.578 266.829 295.293 1.00 168.90 165 Bj 1 +ATOM 924 C CD2 . LEU Q 17 165 ? 139.738 265.346 294.462 1.00 168.90 165 Bj 1 +ATOM 925 N N . GLY Q 17 166 ? 137.912 265.927 298.884 1.00 171.61 166 Bj 1 +ATOM 926 C CA . GLY Q 17 166 ? 137.369 265.914 300.232 1.00 171.61 166 Bj 1 +ATOM 927 C C . GLY Q 17 166 ? 137.561 267.231 300.961 1.00 171.61 166 Bj 1 +ATOM 928 O O . GLY Q 17 166 ? 136.656 267.703 301.656 1.00 171.61 166 Bj 1 +ATOM 929 N N . ASP Q 17 167 ? 138.736 267.843 300.815 1.00 174.91 167 Bj 1 +ATOM 930 C CA . ASP Q 17 167 ? 139.046 269.091 301.495 1.00 174.91 167 Bj 1 +ATOM 931 C C . ASP Q 17 167 ? 139.291 270.254 300.545 1.00 174.91 167 Bj 1 +ATOM 932 O O . ASP Q 17 167 ? 139.620 271.352 301.010 1.00 174.91 167 Bj 1 +ATOM 933 C CB . ASP Q 17 167 ? 140.268 268.910 302.408 1.00 174.91 167 Bj 1 +ATOM 934 C CG . ASP Q 17 167 ? 141.477 268.372 301.667 1.00 174.91 167 Bj 1 +ATOM 935 O OD1 . ASP Q 17 167 ? 142.126 269.149 300.937 1.00 174.91 167 Bj 1 +ATOM 936 O OD2 . ASP Q 17 167 ? 141.778 267.169 301.815 1.00 174.91 167 Bj 1 +ATOM 937 N N . GLN Q 17 168 ? 139.144 270.054 299.236 1.00 175.00 168 Bj 1 +ATOM 938 C CA . GLN Q 17 168 ? 139.378 271.108 298.261 1.00 175.00 168 Bj 1 +ATOM 939 C C . GLN Q 17 168 ? 138.382 270.985 297.119 1.00 175.00 168 Bj 1 +ATOM 940 O O . GLN Q 17 168 ? 138.082 269.879 296.661 1.00 175.00 168 Bj 1 +ATOM 941 C CB . GLN Q 17 168 ? 140.810 271.056 297.710 1.00 175.00 168 Bj 1 +ATOM 942 C CG . GLN Q 17 168 ? 141.878 271.477 298.705 1.00 175.00 168 Bj 1 +ATOM 943 C CD . GLN Q 17 168 ? 143.281 271.320 298.157 1.00 175.00 168 Bj 1 +ATOM 944 O OE1 . GLN Q 17 168 ? 143.477 270.789 297.063 1.00 175.00 168 Bj 1 +ATOM 945 N NE2 . GLN Q 17 168 ? 144.267 271.783 298.916 1.00 175.00 168 Bj 1 +ATOM 946 N N . ASP Q 17 169 ? 137.876 272.129 296.665 1.00 168.27 169 Bj 1 +ATOM 947 C CA . ASP Q 17 169 ? 136.985 272.221 295.510 1.00 168.27 169 Bj 1 +ATOM 948 C C . ASP Q 17 169 ? 137.646 273.173 294.517 1.00 168.27 169 Bj 1 +ATOM 949 O O . ASP Q 17 169 ? 137.390 274.379 294.534 1.00 168.27 169 Bj 1 +ATOM 950 C CB . ASP Q 17 169 ? 135.589 272.706 295.915 1.00 168.27 169 Bj 1 +ATOM 951 C CG . ASP Q 17 169 ? 134.950 271.832 296.978 1.00 168.27 169 Bj 1 +ATOM 952 O OD1 . ASP Q 17 169 ? 135.285 270.631 297.048 1.00 168.27 169 Bj 1 +ATOM 953 O OD2 . ASP Q 17 169 ? 134.109 272.348 297.743 1.00 168.27 169 Bj 1 +ATOM 954 N N . ILE Q 17 170 ? 138.499 272.629 293.653 1.00 159.42 170 Bj 1 +ATOM 955 C CA . ILE Q 17 170 ? 139.305 273.423 292.734 1.00 159.42 170 Bj 1 +ATOM 956 C C . ILE Q 17 170 ? 138.930 273.073 291.301 1.00 159.42 170 Bj 1 +ATOM 957 O O . ILE Q 17 170 ? 138.527 271.941 291.010 1.00 159.42 170 Bj 1 +ATOM 958 C CB . ILE Q 17 170 ? 140.815 273.204 292.968 1.00 159.42 170 Bj 1 +ATOM 959 C CG1 . ILE Q 17 170 ? 141.172 271.723 292.823 1.00 159.42 170 Bj 1 +ATOM 960 C CG2 . ILE Q 17 170 ? 141.225 273.726 294.336 1.00 159.42 170 Bj 1 +ATOM 961 C CD1 . ILE Q 17 170 ? 142.645 271.427 293.007 1.00 159.42 170 Bj 1 +ATOM 962 N N . TRP Q 17 171 ? 139.059 274.056 290.411 1.00 144.42 171 Bj 1 +ATOM 963 C CA . TRP Q 17 171 ? 138.893 273.855 288.972 1.00 144.42 171 Bj 1 +ATOM 964 C C . TRP Q 17 171 ? 140.241 273.390 288.437 1.00 144.42 171 Bj 1 +ATOM 965 O O . TRP Q 17 171 ? 141.054 274.182 287.960 1.00 144.42 171 Bj 1 +ATOM 966 C CB . TRP Q 17 171 ? 138.414 275.138 288.303 1.00 144.42 171 Bj 1 +ATOM 967 C CG . TRP Q 17 171 ? 138.043 274.985 286.860 1.00 144.42 171 Bj 1 +ATOM 968 C CD1 . TRP Q 17 171 ? 138.831 275.252 285.779 1.00 144.42 171 Bj 1 +ATOM 969 C CD2 . TRP Q 17 171 ? 136.785 274.539 286.340 1.00 144.42 171 Bj 1 +ATOM 970 N NE1 . TRP Q 17 171 ? 138.144 274.997 284.618 1.00 144.42 171 Bj 1 +ATOM 971 C CE2 . TRP Q 17 171 ? 136.885 274.557 284.935 1.00 144.42 171 Bj 1 +ATOM 972 C CE3 . TRP Q 17 171 ? 135.586 274.124 286.925 1.00 144.42 171 Bj 1 +ATOM 973 C CZ2 . TRP Q 17 171 ? 135.832 274.177 284.106 1.00 144.42 171 Bj 1 +ATOM 974 C CZ3 . TRP Q 17 171 ? 134.541 273.747 286.101 1.00 144.42 171 Bj 1 +ATOM 975 C CH2 . TRP Q 17 171 ? 134.672 273.775 284.707 1.00 144.42 171 Bj 1 +ATOM 976 N N . MET Q 17 172 ? 140.479 272.086 288.520 1.00 147.69 172 Bj 1 +ATOM 977 C CA . MET Q 17 172 ? 141.806 271.514 288.352 1.00 147.69 172 Bj 1 +ATOM 978 C C . MET Q 17 172 ? 142.015 270.976 286.940 1.00 147.69 172 Bj 1 +ATOM 979 O O . MET Q 17 172 ? 141.082 270.507 286.285 1.00 147.69 172 Bj 1 +ATOM 980 C CB . MET Q 17 172 ? 142.030 270.391 289.368 1.00 147.69 172 Bj 1 +ATOM 981 C CG . MET Q 17 172 ? 143.468 269.917 289.488 1.00 147.69 172 Bj 1 +ATOM 982 S SD . MET Q 17 172 ? 143.610 268.411 290.466 1.00 147.69 172 Bj 1 +ATOM 983 C CE . MET Q 17 172 ? 142.770 267.241 289.402 1.00 147.69 172 Bj 1 +ATOM 984 N N . LEU Q 17 173 ? 143.260 271.057 286.478 1.00 139.16 173 Bj 1 +ATOM 985 C CA . LEU Q 17 173 ? 143.650 270.404 285.241 1.00 139.16 173 Bj 1 +ATOM 986 C C . LEU Q 17 173 ? 143.738 268.894 285.468 1.00 139.16 173 Bj 1 +ATOM 987 O O . LEU Q 17 173 ? 143.996 268.445 286.588 1.00 139.16 173 Bj 1 +ATOM 988 C CB . LEU Q 17 173 ? 144.996 270.950 284.764 1.00 139.16 173 Bj 1 +ATOM 989 C CG . LEU Q 17 173 ? 145.334 270.960 283.270 1.00 139.16 173 Bj 1 +ATOM 990 C CD1 . LEU Q 17 173 ? 144.311 271.766 282.496 1.00 139.16 173 Bj 1 +ATOM 991 C CD2 . LEU Q 17 173 ? 146.725 271.512 283.037 1.00 139.16 173 Bj 1 +ATOM 992 N N . PRO Q 17 174 ? 143.500 268.080 284.423 1.00 136.31 174 Bj 1 +ATOM 993 C CA . PRO Q 17 174 ? 143.610 266.621 284.586 1.00 136.31 174 Bj 1 +ATOM 994 C C . PRO Q 17 174 ? 144.959 266.176 285.134 1.00 136.31 174 Bj 1 +ATOM 995 O O . PRO Q 17 174 ? 146.003 266.377 284.503 1.00 136.31 174 Bj 1 +ATOM 996 C CB . PRO Q 17 174 ? 143.377 266.087 283.164 1.00 136.31 174 Bj 1 +ATOM 997 C CG . PRO Q 17 174 ? 143.447 267.291 282.257 1.00 136.31 174 Bj 1 +ATOM 998 C CD . PRO Q 17 174 ? 142.983 268.434 283.092 1.00 136.31 174 Bj 1 +ATOM 999 N N . GLN Q 17 175 ? 144.935 265.578 286.323 1.00 135.35 175 Bj 1 +ATOM 1000 C CA . GLN Q 17 175 ? 146.121 265.112 287.030 1.00 135.35 175 Bj 1 +ATOM 1001 C C . GLN Q 17 175 ? 146.040 263.602 287.238 1.00 135.35 175 Bj 1 +ATOM 1002 O O . GLN Q 17 175 ? 145.028 262.962 286.944 1.00 135.35 175 Bj 1 +ATOM 1003 C CB . GLN Q 17 175 ? 146.278 265.834 288.372 1.00 135.35 175 Bj 1 +ATOM 1004 C CG . GLN Q 17 175 ? 146.579 267.318 288.255 1.00 135.35 175 Bj 1 +ATOM 1005 C CD . GLN Q 17 175 ? 146.837 267.965 289.602 1.00 135.35 175 Bj 1 +ATOM 1006 O OE1 . GLN Q 17 175 ? 146.707 267.325 290.646 1.00 135.35 175 Bj 1 +ATOM 1007 N NE2 . GLN Q 17 175 ? 147.204 269.241 289.585 1.00 135.35 175 Bj 1 +ATOM 1008 N N . SER Q 17 176 ? 147.130 263.036 287.754 1.00 133.75 176 Bj 1 +ATOM 1009 C CA . SER Q 17 176 ? 147.220 261.598 287.965 1.00 133.75 176 Bj 1 +ATOM 1010 C C . SER Q 17 176 ? 148.177 261.315 289.116 1.00 133.75 176 Bj 1 +ATOM 1011 O O . SER Q 17 176 ? 148.730 262.227 289.736 1.00 133.75 176 Bj 1 +ATOM 1012 C CB . SER Q 17 176 ? 147.683 260.882 286.694 1.00 133.75 176 Bj 1 +ATOM 1013 O OG . SER Q 17 176 ? 146.894 261.256 285.582 1.00 133.75 176 Bj 1 +ATOM 1014 N N . ASP Q 17 177 ? 148.364 260.026 289.395 1.00 134.79 177 Bj 1 +ATOM 1015 C CA . ASP Q 17 177 ? 149.341 259.551 290.362 1.00 134.79 177 Bj 1 +ATOM 1016 C C . ASP Q 17 177 ? 149.995 258.296 289.806 1.00 134.79 177 Bj 1 +ATOM 1017 O O . ASP Q 17 177 ? 149.390 257.559 289.023 1.00 134.79 177 Bj 1 +ATOM 1018 C CB . ASP Q 17 177 ? 148.706 259.260 291.728 1.00 134.79 177 Bj 1 +ATOM 1019 C CG . ASP Q 17 177 ? 148.221 260.516 292.424 1.00 134.79 177 Bj 1 +ATOM 1020 O OD1 . ASP Q 17 177 ? 147.166 261.051 292.025 1.00 134.79 177 Bj 1 +ATOM 1021 O OD2 . ASP Q 17 177 ? 148.898 260.969 293.370 1.00 134.79 177 Bj 1 +ATOM 1022 N N . TRP Q 17 178 ? 151.238 258.056 290.216 1.00 142.13 178 Bj 1 +ATOM 1023 C CA . TRP Q 17 178 ? 152.031 256.996 289.615 1.00 142.13 178 Bj 1 +ATOM 1024 C C . TRP Q 17 178 ? 153.041 256.465 290.620 1.00 142.13 178 Bj 1 +ATOM 1025 O O . TRP Q 17 178 ? 153.592 257.217 291.429 1.00 142.13 178 Bj 1 +ATOM 1026 C CB . TRP Q 17 178 ? 152.752 257.500 288.360 1.00 142.13 178 Bj 1 +ATOM 1027 C CG . TRP Q 17 178 ? 153.556 258.740 288.606 1.00 142.13 178 Bj 1 +ATOM 1028 C CD1 . TRP Q 17 178 ? 153.092 260.023 288.654 1.00 142.13 178 Bj 1 +ATOM 1029 C CD2 . TRP Q 17 178 ? 154.966 258.815 288.843 1.00 142.13 178 Bj 1 +ATOM 1030 N NE1 . TRP Q 17 178 ? 154.126 260.891 288.906 1.00 142.13 178 Bj 1 +ATOM 1031 C CE2 . TRP Q 17 178 ? 155.287 260.173 289.026 1.00 142.13 178 Bj 1 +ATOM 1032 C CE3 . TRP Q 17 178 ? 155.987 257.865 288.916 1.00 142.13 178 Bj 1 +ATOM 1033 C CZ2 . TRP Q 17 178 ? 156.588 260.604 289.277 1.00 142.13 178 Bj 1 +ATOM 1034 C CZ3 . TRP Q 17 178 ? 157.276 258.293 289.166 1.00 142.13 178 Bj 1 +ATOM 1035 C CH2 . TRP Q 17 178 ? 157.565 259.650 289.344 1.00 142.13 178 Bj 1 +ATOM 1036 N N . GLN Q 17 179 ? 153.282 255.155 290.554 1.00 140.75 179 Bj 1 +ATOM 1037 C CA . GLN Q 17 179 ? 154.303 254.528 291.375 1.00 140.75 179 Bj 1 +ATOM 1038 C C . GLN Q 17 179 ? 155.685 254.777 290.770 1.00 140.75 179 Bj 1 +ATOM 1039 O O . GLN Q 17 179 ? 155.812 254.956 289.556 1.00 140.75 179 Bj 1 +ATOM 1040 C CB . GLN Q 17 179 ? 154.047 253.026 291.496 1.00 140.75 179 Bj 1 +ATOM 1041 C CG . GLN Q 17 179 ? 154.330 252.219 290.233 1.00 140.75 179 Bj 1 +ATOM 1042 C CD . GLN Q 17 179 ? 153.239 252.345 289.187 1.00 140.75 179 Bj 1 +ATOM 1043 O OE1 . GLN Q 17 179 ? 152.254 253.059 289.380 1.00 140.75 179 Bj 1 +ATOM 1044 N NE2 . GLN Q 17 179 ? 153.408 251.645 288.072 1.00 140.75 179 Bj 1 +ATOM 1045 N N . PRO Q 17 180 ? 156.741 254.792 291.602 1.00 139.20 180 Bj 1 +ATOM 1046 C CA . PRO Q 17 180 ? 158.082 255.138 291.101 1.00 139.20 180 Bj 1 +ATOM 1047 C C . PRO Q 17 180 ? 158.545 254.295 289.922 1.00 139.20 180 Bj 1 +ATOM 1048 O O . PRO Q 17 180 ? 159.406 254.726 289.148 1.00 139.20 180 Bj 1 +ATOM 1049 C CB . PRO Q 17 180 ? 158.976 254.914 292.327 1.00 139.20 180 Bj 1 +ATOM 1050 C CG . PRO Q 17 180 ? 158.072 255.131 293.486 1.00 139.20 180 Bj 1 +ATOM 1051 C CD . PRO Q 17 180 ? 156.734 254.597 293.063 1.00 139.20 180 Bj 1 +ATOM 1052 N N . GLY Q 17 181 ? 157.983 253.098 289.770 1.00 135.25 181 Bj 1 +ATOM 1053 C CA . GLY Q 17 181 ? 158.324 252.240 288.655 1.00 135.25 181 Bj 1 +ATOM 1054 C C . GLY Q 17 181 ? 157.674 252.589 287.337 1.00 135.25 181 Bj 1 +ATOM 1055 O O . GLY Q 17 181 ? 157.880 251.875 286.352 1.00 135.25 181 Bj 1 +ATOM 1056 N N . GLU Q 17 182 ? 156.897 253.667 287.282 1.00 137.08 182 Bj 1 +ATOM 1057 C CA . GLU Q 17 182 ? 156.183 254.062 286.078 1.00 137.08 182 Bj 1 +ATOM 1058 C C . GLU Q 17 182 ? 156.697 255.404 285.572 1.00 137.08 182 Bj 1 +ATOM 1059 O O . GLU Q 17 182 ? 157.089 256.276 286.354 1.00 137.08 182 Bj 1 +ATOM 1060 C CB . GLU Q 17 182 ? 154.675 254.141 286.339 1.00 137.08 182 Bj 1 +ATOM 1061 C CG . GLU Q 17 182 ? 153.829 254.307 285.086 1.00 137.08 182 Bj 1 +ATOM 1062 C CD . GLU Q 17 182 ? 152.344 254.191 285.367 1.00 137.08 182 Bj 1 +ATOM 1063 O OE1 . GLU Q 17 182 ? 151.980 253.776 286.487 1.00 137.08 182 Bj 1 +ATOM 1064 O OE2 . GLU Q 17 182 ? 151.541 254.515 284.466 1.00 137.08 182 Bj 1 +ATOM 1065 N N . THR Q 17 183 ? 156.690 255.560 284.252 1.00 130.92 183 Bj 1 +ATOM 1066 C CA . THR Q 17 183 ? 157.170 256.770 283.603 1.00 130.92 183 Bj 1 +ATOM 1067 C C . THR Q 17 183 ? 156.071 257.827 283.567 1.00 130.92 183 Bj 1 +ATOM 1068 O O . THR Q 17 183 ? 154.878 257.512 283.596 1.00 130.92 183 Bj 1 +ATOM 1069 C CB . THR Q 17 183 ? 157.647 256.460 282.182 1.00 130.92 183 Bj 1 +ATOM 1070 O OG1 . THR Q 17 183 ? 158.349 255.210 282.177 1.00 130.92 183 Bj 1 +ATOM 1071 C CG2 . THR Q 17 183 ? 158.582 257.550 281.671 1.00 130.92 183 Bj 1 +ATOM 1072 N N . LEU Q 17 184 ? 156.490 259.094 283.506 1.00 129.02 184 Bj 1 +ATOM 1073 C CA . LEU Q 17 184 ? 155.532 260.194 283.444 1.00 129.02 184 Bj 1 +ATOM 1074 C C . LEU Q 17 184 ? 154.716 260.147 282.159 1.00 129.02 184 Bj 1 +ATOM 1075 O O . LEU Q 17 184 ? 153.502 260.384 282.173 1.00 129.02 184 Bj 1 +ATOM 1076 C CB . LEU Q 17 184 ? 156.266 261.528 283.563 1.00 129.02 184 Bj 1 +ATOM 1077 C CG . LEU Q 17 184 ? 157.066 261.730 284.849 1.00 129.02 184 Bj 1 +ATOM 1078 C CD1 . LEU Q 17 184 ? 157.941 262.967 284.754 1.00 129.02 184 Bj 1 +ATOM 1079 C CD2 . LEU Q 17 184 ? 156.125 261.830 286.034 1.00 129.02 184 Bj 1 +ATOM 1080 N N . ARG Q 17 185 ? 155.367 259.842 281.035 1.00 125.72 185 Bj 1 +ATOM 1081 C CA . ARG Q 17 185 ? 154.653 259.763 279.767 1.00 125.72 185 Bj 1 +ATOM 1082 C C . ARG Q 17 185 ? 153.671 258.598 279.760 1.00 125.72 185 Bj 1 +ATOM 1083 O O . ARG Q 17 185 ? 152.540 258.735 279.279 1.00 125.72 185 Bj 1 +ATOM 1084 C CB . ARG Q 17 185 ? 155.652 259.644 278.618 1.00 125.72 185 Bj 1 +ATOM 1085 C CG . ARG Q 17 185 ? 155.034 259.681 277.235 1.00 125.72 185 Bj 1 +ATOM 1086 C CD . ARG Q 17 185 ? 156.064 260.119 276.211 1.00 125.72 185 Bj 1 +ATOM 1087 N NE . ARG Q 17 185 ? 155.563 260.025 274.845 1.00 125.72 185 Bj 1 +ATOM 1088 C CZ . ARG Q 17 185 ? 156.149 260.598 273.800 1.00 125.72 185 Bj 1 +ATOM 1089 N NH1 . ARG Q 17 185 ? 157.250 261.316 273.971 1.00 125.72 185 Bj 1 +ATOM 1090 N NH2 . ARG Q 17 185 ? 155.631 260.462 272.587 1.00 125.72 185 Bj 1 +ATOM 1091 N N . GLN Q 17 186 ? 154.083 257.448 280.298 1.00 132.51 186 Bj 1 +ATOM 1092 C CA . GLN Q 17 186 ? 153.167 256.318 280.411 1.00 132.51 186 Bj 1 +ATOM 1093 C C . GLN Q 17 186 ? 151.994 256.642 281.326 1.00 132.51 186 Bj 1 +ATOM 1094 O O . GLN Q 17 186 ? 150.860 256.229 281.055 1.00 132.51 186 Bj 1 +ATOM 1095 C CB . GLN Q 17 186 ? 153.914 255.087 280.925 1.00 132.51 186 Bj 1 +ATOM 1096 C CG . GLN Q 17 186 ? 155.119 254.696 280.089 1.00 132.51 186 Bj 1 +ATOM 1097 C CD . GLN Q 17 186 ? 155.882 253.529 280.683 1.00 132.51 186 Bj 1 +ATOM 1098 O OE1 . GLN Q 17 186 ? 155.493 252.978 281.713 1.00 132.51 186 Bj 1 +ATOM 1099 N NE2 . GLN Q 17 186 ? 156.978 253.147 280.037 1.00 132.51 186 Bj 1 +ATOM 1100 N N . THR Q 17 187 ? 152.245 257.383 282.408 1.00 131.91 187 Bj 1 +ATOM 1101 C CA . THR Q 17 187 ? 151.163 257.778 283.304 1.00 131.91 187 Bj 1 +ATOM 1102 C C . THR Q 17 187 ? 150.188 258.718 282.606 1.00 131.91 187 Bj 1 +ATOM 1103 O O . THR Q 17 187 ? 148.971 258.593 282.773 1.00 131.91 187 Bj 1 +ATOM 1104 C CB . THR Q 17 187 ? 151.737 258.432 284.560 1.00 131.91 187 Bj 1 +ATOM 1105 O OG1 . THR Q 17 187 ? 152.712 257.561 285.147 1.00 131.91 187 Bj 1 +ATOM 1106 C CG2 . THR Q 17 187 ? 150.634 258.703 285.570 1.00 131.91 187 Bj 1 +ATOM 1107 N N . ALA Q 17 188 ? 150.705 259.659 281.814 1.00 133.19 188 Bj 1 +ATOM 1108 C CA . ALA Q 17 188 ? 149.827 260.556 281.066 1.00 133.19 188 Bj 1 +ATOM 1109 C C . ALA Q 17 188 ? 149.020 259.794 280.020 1.00 133.19 188 Bj 1 +ATOM 1110 O O . ALA Q 17 188 ? 147.848 260.110 279.775 1.00 133.19 188 Bj 1 +ATOM 1111 C CB . ALA Q 17 188 ? 150.647 261.666 280.409 1.00 133.19 188 Bj 1 +ATOM 1112 N N . GLU Q 17 189 ? 149.632 258.789 279.390 1.00 135.20 189 Bj 1 +ATOM 1113 C CA . GLU Q 17 189 ? 148.905 257.958 278.433 1.00 135.20 189 Bj 1 +ATOM 1114 C C . GLU Q 17 189 ? 147.783 257.190 279.121 1.00 135.20 189 Bj 1 +ATOM 1115 O O . GLU Q 17 189 ? 146.649 257.145 278.628 1.00 135.20 189 Bj 1 +ATOM 1116 C CB . GLU Q 17 189 ? 149.869 257.000 277.732 1.00 135.20 189 Bj 1 +ATOM 1117 C CG . GLU Q 17 189 ? 150.860 257.688 276.807 1.00 135.20 189 Bj 1 +ATOM 1118 C CD . GLU Q 17 189 ? 151.898 256.735 276.247 1.00 135.20 189 Bj 1 +ATOM 1119 O OE1 . GLU Q 17 189 ? 151.856 255.537 276.598 1.00 135.20 189 Bj 1 +ATOM 1120 O OE2 . GLU Q 17 189 ? 152.755 257.183 275.457 1.00 135.20 189 Bj 1 +ATOM 1121 N N . ARG Q 17 190 ? 148.085 256.576 280.268 1.00 137.16 190 Bj 1 +ATOM 1122 C CA . ARG Q 17 190 ? 147.053 255.885 281.035 1.00 137.16 190 Bj 1 +ATOM 1123 C C . ARG Q 17 190 ? 145.950 256.847 281.459 1.00 137.16 190 Bj 1 +ATOM 1124 O O . ARG Q 17 190 ? 144.768 256.483 281.473 1.00 137.16 190 Bj 1 +ATOM 1125 C CB . ARG Q 17 190 ? 147.674 255.206 282.256 1.00 137.16 190 Bj 1 +ATOM 1126 C CG . ARG Q 17 190 ? 146.670 254.507 283.159 1.00 137.16 190 Bj 1 +ATOM 1127 C CD . ARG Q 17 190 ? 147.358 253.841 284.338 1.00 137.16 190 Bj 1 +ATOM 1128 N NE . ARG Q 17 190 ? 148.133 254.792 285.129 1.00 137.16 190 Bj 1 +ATOM 1129 C CZ . ARG Q 17 190 ? 147.632 255.522 286.120 1.00 137.16 190 Bj 1 +ATOM 1130 N NH1 . ARG Q 17 190 ? 146.352 255.413 286.445 1.00 137.16 190 Bj 1 +ATOM 1131 N NH2 . ARG Q 17 190 ? 148.412 256.362 286.786 1.00 137.16 190 Bj 1 +ATOM 1132 N N . THR Q 17 191 ? 146.318 258.084 281.795 1.00 139.17 191 Bj 1 +ATOM 1133 C CA . THR Q 17 191 ? 145.327 259.090 282.158 1.00 139.17 191 Bj 1 +ATOM 1134 C C . THR Q 17 191 ? 144.388 259.378 280.996 1.00 139.17 191 Bj 1 +ATOM 1135 O O . THR Q 17 191 ? 143.164 259.268 281.131 1.00 139.17 191 Bj 1 +ATOM 1136 C CB . THR Q 17 191 ? 146.024 260.373 282.606 1.00 139.17 191 Bj 1 +ATOM 1137 O OG1 . THR Q 17 191 ? 146.894 260.085 283.707 1.00 139.17 191 Bj 1 +ATOM 1138 C CG2 . THR Q 17 191 ? 144.999 261.416 283.027 1.00 139.17 191 Bj 1 +ATOM 1139 N N . LEU Q 17 192 ? 144.945 259.747 279.841 1.00 141.63 192 Bj 1 +ATOM 1140 C CA . LEU Q 17 192 ? 144.109 260.056 278.687 1.00 141.63 192 Bj 1 +ATOM 1141 C C . LEU Q 17 192 ? 143.341 258.840 278.185 1.00 141.63 192 Bj 1 +ATOM 1142 O O . LEU Q 17 192 ? 142.352 259.004 277.463 1.00 141.63 192 Bj 1 +ATOM 1143 C CB . LEU Q 17 192 ? 144.956 260.651 277.557 1.00 141.63 192 Bj 1 +ATOM 1144 C CG . LEU Q 17 192 ? 146.099 259.830 276.954 1.00 141.63 192 Bj 1 +ATOM 1145 C CD1 . LEU Q 17 192 ? 145.628 258.957 275.794 1.00 141.63 192 Bj 1 +ATOM 1146 C CD2 . LEU Q 17 192 ? 147.225 260.747 276.511 1.00 141.63 192 Bj 1 +ATOM 1147 N N . ALA Q 17 193 ? 143.770 257.628 278.546 1.00 143.93 193 Bj 1 +ATOM 1148 C CA . ALA Q 17 193 ? 143.045 256.438 278.119 1.00 143.93 193 Bj 1 +ATOM 1149 C C . ALA Q 17 193 ? 141.916 256.066 279.074 1.00 143.93 193 Bj 1 +ATOM 1150 O O . ALA Q 17 193 ? 140.870 255.584 278.626 1.00 143.93 193 Bj 1 +ATOM 1151 C CB . ALA Q 17 193 ? 144.010 255.261 277.971 1.00 143.93 193 Bj 1 +ATOM 1152 N N . THR Q 17 194 ? 142.098 256.279 280.377 1.00 145.46 194 Bj 1 +ATOM 1153 C CA . THR Q 17 194 ? 141.129 255.841 281.375 1.00 145.46 194 Bj 1 +ATOM 1154 C C . THR Q 17 194 ? 140.242 256.970 281.888 1.00 145.46 194 Bj 1 +ATOM 1155 O O . THR Q 17 194 ? 139.014 256.846 281.870 1.00 145.46 194 Bj 1 +ATOM 1156 C CB . THR Q 17 194 ? 141.855 255.179 282.553 1.00 145.46 194 Bj 1 +ATOM 1157 O OG1 . THR Q 17 194 ? 142.819 256.090 283.094 1.00 145.46 194 Bj 1 +ATOM 1158 C CG2 . THR Q 17 194 ? 142.563 253.912 282.096 1.00 145.46 194 Bj 1 +ATOM 1159 N N . LEU Q 17 195 ? 140.840 258.069 282.358 1.00 142.21 195 Bj 1 +ATOM 1160 C CA . LEU Q 17 195 ? 140.050 259.165 282.911 1.00 142.21 195 Bj 1 +ATOM 1161 C C . LEU Q 17 195 ? 139.145 259.793 281.860 1.00 142.21 195 Bj 1 +ATOM 1162 O O . LEU Q 17 195 ? 138.038 260.239 282.181 1.00 142.21 195 Bj 1 +ATOM 1163 C CB . LEU Q 17 195 ? 140.968 260.229 283.517 1.00 142.21 195 Bj 1 +ATOM 1164 C CG . LEU Q 17 195 ? 141.597 259.972 284.891 1.00 142.21 195 Bj 1 +ATOM 1165 C CD1 . LEU Q 17 195 ? 142.698 258.923 284.829 1.00 142.21 195 Bj 1 +ATOM 1166 C CD2 . LEU Q 17 195 ? 142.128 261.271 285.480 1.00 142.21 195 Bj 1 +ATOM 1167 N N . SER Q 17 196 ? 139.594 259.839 280.604 1.00 140.98 196 Bj 1 +ATOM 1168 C CA . SER Q 17 196 ? 138.776 260.410 279.541 1.00 140.98 196 Bj 1 +ATOM 1169 C C . SER Q 17 196 ? 137.616 259.503 279.154 1.00 140.98 196 Bj 1 +ATOM 1170 O O . SER Q 17 196 ? 136.610 259.998 278.635 1.00 140.98 196 Bj 1 +ATOM 1171 C CB . SER Q 17 196 ? 139.642 260.710 278.317 1.00 140.98 196 Bj 1 +ATOM 1172 O OG . SER Q 17 196 ? 138.870 261.273 277.272 1.00 140.98 196 Bj 1 +ATOM 1173 N N . GLU Q 17 197 ? 137.739 258.194 279.389 1.00 135.62 197 Bj 1 +ATOM 1174 C CA . GLU Q 17 197 ? 136.656 257.236 279.156 1.00 135.62 197 Bj 1 +ATOM 1175 C C . GLU Q 17 197 ? 136.208 257.234 277.696 1.00 135.62 197 Bj 1 +ATOM 1176 O O . GLU Q 17 197 ? 135.013 257.193 277.396 1.00 135.62 197 Bj 1 +ATOM 1177 C CB . GLU Q 17 197 ? 135.470 257.510 280.085 1.00 135.62 197 Bj 1 +ATOM 1178 C CG . GLU Q 17 197 ? 135.840 257.617 281.554 1.00 135.62 197 Bj 1 +ATOM 1179 C CD . GLU Q 17 197 ? 134.680 258.079 282.413 1.00 135.62 197 Bj 1 +ATOM 1180 O OE1 . GLU Q 17 197 ? 133.581 258.302 281.863 1.00 135.62 197 Bj 1 +ATOM 1181 O OE2 . GLU Q 17 197 ? 134.868 258.222 283.639 1.00 135.62 197 Bj 1 +ATOM 1182 N N . ASN Q 17 198 ? 137.171 257.276 276.779 1.00 129.66 198 Bj 1 +ATOM 1183 C CA . ASN Q 17 198 ? 136.857 257.290 275.358 1.00 129.66 198 Bj 1 +ATOM 1184 C C . ASN Q 17 198 ? 138.089 256.875 274.568 1.00 129.66 198 Bj 1 +ATOM 1185 O O . ASN Q 17 198 ? 139.210 256.881 275.082 1.00 129.66 198 Bj 1 +ATOM 1186 C CB . ASN Q 17 198 ? 136.372 258.671 274.903 1.00 129.66 198 Bj 1 +ATOM 1187 C CG . ASN Q 17 198 ? 137.500 259.681 274.800 1.00 129.66 198 Bj 1 +ATOM 1188 O OD1 . ASN Q 17 198 ? 138.430 259.675 275.605 1.00 129.66 198 Bj 1 +ATOM 1189 N ND2 . ASN Q 17 198 ? 137.425 260.552 273.801 1.00 129.66 198 Bj 1 +ATOM 1190 N N . ASN Q 17 199 ? 137.862 256.515 273.307 1.00 121.02 199 Bj 1 +ATOM 1191 C CA . ASN Q 17 199 ? 138.944 256.208 272.374 1.00 121.02 199 Bj 1 +ATOM 1192 C C . ASN Q 17 199 ? 139.384 257.519 271.734 1.00 121.02 199 Bj 1 +ATOM 1193 O O . ASN Q 17 199 ? 138.711 258.055 270.850 1.00 121.02 199 Bj 1 +ATOM 1194 C CB . ASN Q 17 199 ? 138.496 255.185 271.335 1.00 121.02 199 Bj 1 +ATOM 1195 C CG . ASN Q 17 199 ? 137.204 255.577 270.646 1.00 121.02 199 Bj 1 +ATOM 1196 O OD1 . ASN Q 17 199 ? 136.405 256.339 271.189 1.00 121.02 199 Bj 1 +ATOM 1197 N ND2 . ASN Q 17 199 ? 136.993 255.057 269.443 1.00 121.02 199 Bj 1 +ATOM 1198 N N . MET Q 17 200 ? 140.516 258.044 272.190 1.00 123.96 200 Bj 1 +ATOM 1199 C CA . MET Q 17 200 ? 141.014 259.341 271.760 1.00 123.96 200 Bj 1 +ATOM 1200 C C . MET Q 17 200 ? 142.451 259.205 271.279 1.00 123.96 200 Bj 1 +ATOM 1201 O O . MET Q 17 200 ? 143.258 258.501 271.895 1.00 123.96 200 Bj 1 +ATOM 1202 C CB . MET Q 17 200 ? 140.927 260.358 272.901 1.00 123.96 200 Bj 1 +ATOM 1203 C CG . MET Q 17 200 ? 141.315 261.768 272.517 1.00 123.96 200 Bj 1 +ATOM 1204 S SD . MET Q 17 200 ? 141.001 262.928 273.857 1.00 123.96 200 Bj 1 +ATOM 1205 C CE . MET Q 17 200 ? 141.986 262.202 275.165 1.00 123.96 200 Bj 1 +ATOM 1206 N N . GLU Q 17 201 ? 142.767 259.880 270.176 1.00 115.66 201 Bj 1 +ATOM 1207 C CA . GLU Q 17 201 ? 144.092 259.821 269.570 1.00 115.66 201 Bj 1 +ATOM 1208 C C . GLU Q 17 201 ? 144.889 261.040 270.022 1.00 115.66 201 Bj 1 +ATOM 1209 O O . GLU Q 17 201 ? 144.619 262.164 269.586 1.00 115.66 201 Bj 1 +ATOM 1210 C CB . GLU Q 17 201 ? 143.988 259.759 268.048 1.00 115.66 201 Bj 1 +ATOM 1211 C CG . GLU Q 17 201 ? 143.149 258.601 267.531 1.00 115.66 201 Bj 1 +ATOM 1212 C CD . GLU Q 17 201 ? 143.120 258.531 266.017 1.00 115.66 201 Bj 1 +ATOM 1213 O OE1 . GLU Q 17 201 ? 143.950 259.207 265.373 1.00 115.66 201 Bj 1 +ATOM 1214 O OE2 . GLU Q 17 201 ? 142.265 257.803 265.470 1.00 115.66 201 Bj 1 +ATOM 1215 N N . ALA Q 17 202 ? 145.869 260.814 270.892 1.00 117.10 202 Bj 1 +ATOM 1216 C CA . ALA Q 17 202 ? 146.717 261.870 271.422 1.00 117.10 202 Bj 1 +ATOM 1217 C C . ALA Q 17 202 ? 148.131 261.723 270.876 1.00 117.10 202 Bj 1 +ATOM 1218 O O . ALA Q 17 202 ? 148.651 260.609 270.767 1.00 117.10 202 Bj 1 +ATOM 1219 C CB . ALA Q 17 202 ? 146.744 261.840 272.952 1.00 117.10 202 Bj 1 +ATOM 1220 N N . LYS Q 17 203 ? 148.748 262.853 270.539 1.00 120.82 203 Bj 1 +ATOM 1221 C CA . LYS Q 17 203 ? 150.096 262.887 269.981 1.00 120.82 203 Bj 1 +ATOM 1222 C C . LYS Q 17 203 ? 150.986 263.704 270.910 1.00 120.82 203 Bj 1 +ATOM 1223 O O . LYS Q 17 203 ? 150.846 264.929 270.994 1.00 120.82 203 Bj 1 +ATOM 1224 C CB . LYS Q 17 203 ? 150.087 263.476 268.572 1.00 120.82 203 Bj 1 +ATOM 1225 C CG . LYS Q 17 203 ? 151.408 263.346 267.834 1.00 120.82 203 Bj 1 +ATOM 1226 C CD . LYS Q 17 203 ? 151.757 261.888 267.591 1.00 120.82 203 Bj 1 +ATOM 1227 C CE . LYS Q 17 203 ? 153.066 261.752 266.833 1.00 120.82 203 Bj 1 +ATOM 1228 N NZ . LYS Q 17 203 ? 153.409 260.327 266.571 1.00 120.82 203 Bj 1 +ATOM 1229 N N . PHE Q 17 204 ? 151.897 263.028 271.606 1.00 125.72 204 Bj 1 +ATOM 1230 C CA . PHE Q 17 204 ? 152.832 263.707 272.490 1.00 125.72 204 Bj 1 +ATOM 1231 C C . PHE Q 17 204 ? 153.972 264.322 271.689 1.00 125.72 204 Bj 1 +ATOM 1232 O O . PHE Q 17 204 ? 154.445 263.744 270.707 1.00 125.72 204 Bj 1 +ATOM 1233 C CB . PHE Q 17 204 ? 153.391 262.739 273.531 1.00 125.72 204 Bj 1 +ATOM 1234 C CG . PHE Q 17 204 ? 152.415 262.383 274.614 1.00 125.72 204 Bj 1 +ATOM 1235 C CD1 . PHE Q 17 204 ? 151.538 261.325 274.454 1.00 125.72 204 Bj 1 +ATOM 1236 C CD2 . PHE Q 17 204 ? 152.379 263.106 275.795 1.00 125.72 204 Bj 1 +ATOM 1237 C CE1 . PHE Q 17 204 ? 150.641 260.996 275.451 1.00 125.72 204 Bj 1 +ATOM 1238 C CE2 . PHE Q 17 204 ? 151.484 262.782 276.795 1.00 125.72 204 Bj 1 +ATOM 1239 C CZ . PHE Q 17 204 ? 150.615 261.725 276.624 1.00 125.72 204 Bj 1 +ATOM 1240 N N . LEU Q 17 205 ? 154.414 265.504 272.120 1.00 121.24 205 Bj 1 +ATOM 1241 C CA . LEU Q 17 205 ? 155.467 266.215 271.402 1.00 121.24 205 Bj 1 +ATOM 1242 C C . LEU Q 17 205 ? 156.851 265.713 271.799 1.00 121.24 205 Bj 1 +ATOM 1243 O O . LEU Q 17 205 ? 157.602 265.202 270.961 1.00 121.24 205 Bj 1 +ATOM 1244 C CB . LEU Q 17 205 ? 155.344 267.719 271.658 1.00 121.24 205 Bj 1 +ATOM 1245 C CG . LEU Q 17 205 ? 153.967 268.330 271.399 1.00 121.24 205 Bj 1 +ATOM 1246 C CD1 . LEU Q 17 205 ? 153.973 269.814 271.724 1.00 121.24 205 Bj 1 +ATOM 1247 C CD2 . LEU Q 17 205 ? 153.536 268.092 269.962 1.00 121.24 205 Bj 1 +ATOM 1248 N N . GLY Q 17 206 ? 157.202 265.847 273.070 1.00 130.10 206 Bj 1 +ATOM 1249 C CA . GLY Q 17 206 ? 158.515 265.444 273.539 1.00 130.10 206 Bj 1 +ATOM 1250 C C . GLY Q 17 206 ? 158.419 264.700 274.853 1.00 130.10 206 Bj 1 +ATOM 1251 O O . GLY Q 17 206 ? 157.446 264.831 275.598 1.00 130.10 206 Bj 1 +ATOM 1252 N N . ASN Q 17 207 ? 159.458 263.909 275.133 1.00 132.28 207 Bj 1 +ATOM 1253 C CA . ASN Q 17 207 ? 159.476 263.119 276.359 1.00 132.28 207 Bj 1 +ATOM 1254 C C . ASN Q 17 207 ? 159.764 263.982 277.581 1.00 132.28 207 Bj 1 +ATOM 1255 O O . ASN Q 17 207 ? 159.380 263.618 278.699 1.00 132.28 207 Bj 1 +ATOM 1256 C CB . ASN Q 17 207 ? 160.510 261.999 276.242 1.00 132.28 207 Bj 1 +ATOM 1257 C CG . ASN Q 17 207 ? 160.456 261.029 277.405 1.00 132.28 207 Bj 1 +ATOM 1258 O OD1 . ASN Q 17 207 ? 159.414 260.859 278.039 1.00 132.28 207 Bj 1 +ATOM 1259 N ND2 . ASN Q 17 207 ? 161.581 260.384 277.690 1.00 132.28 207 Bj 1 +ATOM 1260 N N . ALA Q 17 208 ? 160.429 265.117 277.395 1.00 129.27 208 Bj 1 +ATOM 1261 C CA . ALA Q 17 208 ? 160.739 265.987 278.515 1.00 129.27 208 Bj 1 +ATOM 1262 C C . ALA Q 17 208 ? 159.476 266.692 279.008 1.00 129.27 208 Bj 1 +ATOM 1263 O O . ALA Q 17 208 ? 158.549 266.940 278.230 1.00 129.27 208 Bj 1 +ATOM 1264 C CB . ALA Q 17 208 ? 161.789 267.020 278.115 1.00 129.27 208 Bj 1 +ATOM 1265 N N . PRO Q 17 209 ? 159.410 267.019 280.299 1.00 132.17 209 Bj 1 +ATOM 1266 C CA . PRO Q 17 209 ? 158.236 267.726 280.821 1.00 132.17 209 Bj 1 +ATOM 1267 C C . PRO Q 17 209 ? 158.110 269.117 280.221 1.00 132.17 209 Bj 1 +ATOM 1268 O O . PRO Q 17 209 ? 159.065 269.686 279.688 1.00 132.17 209 Bj 1 +ATOM 1269 C CB . PRO Q 17 209 ? 158.499 267.795 282.331 1.00 132.17 209 Bj 1 +ATOM 1270 C CG . PRO Q 17 209 ? 159.515 266.734 282.598 1.00 132.17 209 Bj 1 +ATOM 1271 C CD . PRO Q 17 209 ? 160.359 266.661 281.366 1.00 132.17 209 Bj 1 +ATOM 1272 N N . CYS Q 17 210 ? 156.902 269.668 280.318 1.00 129.55 210 Bj 1 +ATOM 1273 C CA . CYS Q 17 210 ? 156.616 271.006 279.817 1.00 129.55 210 Bj 1 +ATOM 1274 C C . CYS Q 17 210 ? 156.563 272.051 280.922 1.00 129.55 210 Bj 1 +ATOM 1275 O O . CYS Q 17 210 ? 156.967 273.196 280.703 1.00 129.55 210 Bj 1 +ATOM 1276 C CB . CYS Q 17 210 ? 155.294 271.012 279.044 1.00 129.55 210 Bj 1 +ATOM 1277 S SG . CYS Q 17 210 ? 155.139 269.674 277.842 1.00 129.55 210 Bj 1 +ATOM 1278 N N . GLY Q 17 211 ? 156.076 271.687 282.100 1.00 136.75 211 Bj 1 +ATOM 1279 C CA . GLY Q 17 211 ? 156.066 272.608 283.225 1.00 136.75 211 Bj 1 +ATOM 1280 C C . GLY Q 17 211 ? 156.247 271.868 284.528 1.00 136.75 211 Bj 1 +ATOM 1281 O O . GLY Q 17 211 ? 155.885 270.695 284.650 1.00 136.75 211 Bj 1 +ATOM 1282 N N . HIS Q 17 212 ? 156.808 272.561 285.516 1.00 134.65 212 Bj 1 +ATOM 1283 C CA . HIS Q 17 212 ? 157.023 272.000 286.842 1.00 134.65 212 Bj 1 +ATOM 1284 C C . HIS Q 17 212 ? 156.523 272.973 287.897 1.00 134.65 212 Bj 1 +ATOM 1285 O O . HIS Q 17 212 ? 156.786 274.177 287.812 1.00 134.65 212 Bj 1 +ATOM 1286 C CB . HIS Q 17 212 ? 158.502 271.694 287.090 1.00 134.65 212 Bj 1 +ATOM 1287 C CG . HIS Q 17 212 ? 158.933 270.348 286.601 1.00 134.65 212 Bj 1 +ATOM 1288 N ND1 . HIS Q 17 212 ? 159.905 269.605 287.236 1.00 134.65 212 Bj 1 +ATOM 1289 C CD2 . HIS Q 17 212 ? 158.530 269.612 285.539 1.00 134.65 212 Bj 1 +ATOM 1290 C CE1 . HIS Q 17 212 ? 160.079 268.468 286.587 1.00 134.65 212 Bj 1 +ATOM 1291 N NE2 . HIS Q 17 212 ? 159.258 268.447 285.553 1.00 134.65 212 Bj 1 +ATOM 1292 N N . TYR Q 17 213 ? 155.805 272.454 288.892 1.00 135.25 213 Bj 1 +ATOM 1293 C CA . TYR Q 17 213 ? 155.323 273.300 289.979 1.00 135.25 213 Bj 1 +ATOM 1294 C C . TYR Q 17 213 ? 155.377 272.542 291.296 1.00 135.25 213 Bj 1 +ATOM 1295 O O . TYR Q 17 213 ? 154.938 271.392 291.372 1.00 135.25 213 Bj 1 +ATOM 1296 C CB . TYR Q 17 213 ? 153.896 273.793 289.707 1.00 135.25 213 Bj 1 +ATOM 1297 C CG . TYR Q 17 213 ? 153.785 274.683 288.490 1.00 135.25 213 Bj 1 +ATOM 1298 C CD1 . TYR Q 17 213 ? 153.974 276.055 288.588 1.00 135.25 213 Bj 1 +ATOM 1299 C CD2 . TYR Q 17 213 ? 153.497 274.151 287.241 1.00 135.25 213 Bj 1 +ATOM 1300 C CE1 . TYR Q 17 213 ? 153.875 276.870 287.476 1.00 135.25 213 Bj 1 +ATOM 1301 C CE2 . TYR Q 17 213 ? 153.395 274.957 286.125 1.00 135.25 213 Bj 1 +ATOM 1302 C CZ . TYR Q 17 213 ? 153.585 276.315 286.248 1.00 135.25 213 Bj 1 +ATOM 1303 O OH . TYR Q 17 213 ? 153.485 277.120 285.137 1.00 135.25 213 Bj 1 +ATOM 1304 N N . LYS Q 17 214 ? 155.902 273.189 292.333 1.00 138.67 214 Bj 1 +ATOM 1305 C CA . LYS Q 17 214 ? 156.024 272.582 293.650 1.00 138.67 214 Bj 1 +ATOM 1306 C C . LYS Q 17 214 ? 155.177 273.334 294.667 1.00 138.67 214 Bj 1 +ATOM 1307 O O . LYS Q 17 214 ? 154.975 274.547 294.559 1.00 138.67 214 Bj 1 +ATOM 1308 C CB . LYS Q 17 214 ? 157.483 272.554 294.123 1.00 138.67 214 Bj 1 +ATOM 1309 C CG . LYS Q 17 214 ? 158.319 271.446 293.510 1.00 138.67 214 Bj 1 +ATOM 1310 C CD . LYS Q 17 214 ? 159.715 271.422 294.112 1.00 138.67 214 Bj 1 +ATOM 1311 C CE . LYS Q 17 214 ? 160.537 270.265 293.567 1.00 138.67 214 Bj 1 +ATOM 1312 N NZ . LYS Q 17 214 ? 159.905 268.949 293.855 1.00 138.67 214 Bj 1 +ATOM 1313 N N . PHE Q 17 215 ? 154.684 272.594 295.658 1.00 143.45 215 Bj 1 +ATOM 1314 C CA . PHE Q 17 215 ? 153.944 273.179 296.769 1.00 143.45 215 Bj 1 +ATOM 1315 C C . PHE Q 17 215 ? 154.171 272.332 298.012 1.00 143.45 215 Bj 1 +ATOM 1316 O O . PHE Q 17 215 ? 154.077 271.103 297.954 1.00 143.45 215 Bj 1 +ATOM 1317 C CB . PHE Q 17 215 ? 152.446 273.293 296.456 1.00 143.45 215 Bj 1 +ATOM 1318 C CG . PHE Q 17 215 ? 151.816 272.015 295.975 1.00 143.45 215 Bj 1 +ATOM 1319 C CD1 . PHE Q 17 215 ? 151.873 271.659 294.637 1.00 143.45 215 Bj 1 +ATOM 1320 C CD2 . PHE Q 17 215 ? 151.143 271.185 296.855 1.00 143.45 215 Bj 1 +ATOM 1321 C CE1 . PHE Q 17 215 ? 151.287 270.489 294.190 1.00 143.45 215 Bj 1 +ATOM 1322 C CE2 . PHE Q 17 215 ? 150.553 270.015 296.414 1.00 143.45 215 Bj 1 +ATOM 1323 C CZ . PHE Q 17 215 ? 150.626 269.667 295.079 1.00 143.45 215 Bj 1 +ATOM 1324 N N . LYS Q 17 216 ? 154.477 272.988 299.126 1.00 149.62 216 Bj 1 +ATOM 1325 C CA . LYS Q 17 216 ? 154.790 272.310 300.375 1.00 149.62 216 Bj 1 +ATOM 1326 C C . LYS Q 17 216 ? 153.709 272.593 301.408 1.00 149.62 216 Bj 1 +ATOM 1327 O O . LYS Q 17 216 ? 153.137 273.687 301.440 1.00 149.62 216 Bj 1 +ATOM 1328 C CB . LYS Q 17 216 ? 156.158 272.749 300.906 1.00 149.62 216 Bj 1 +ATOM 1329 C CG . LYS Q 17 216 ? 157.300 272.479 299.940 1.00 149.62 216 Bj 1 +ATOM 1330 C CD . LYS Q 17 216 ? 158.639 272.904 300.519 1.00 149.62 216 Bj 1 +ATOM 1331 C CE . LYS Q 17 216 ? 159.771 272.621 299.544 1.00 149.62 216 Bj 1 +ATOM 1332 N NZ . LYS Q 17 216 ? 161.098 272.996 300.105 1.00 149.62 216 Bj 1 +ATOM 1333 N N . PHE Q 17 217 ? 153.435 271.602 302.250 1.00 143.58 217 Bj 1 +ATOM 1334 C CA . PHE Q 17 217 ? 152.407 271.732 303.275 1.00 143.58 217 Bj 1 +ATOM 1335 C C . PHE Q 17 217 ? 153.018 272.091 304.624 1.00 143.58 217 Bj 1 +ATOM 1336 O O . PHE Q 17 217 ? 152.899 271.339 305.590 1.00 143.58 217 Bj 1 +ATOM 1337 C CB . PHE Q 17 217 ? 151.599 270.437 303.392 1.00 143.58 217 Bj 1 +ATOM 1338 C CG . PHE Q 17 217 ? 150.831 270.087 302.150 1.00 143.58 217 Bj 1 +ATOM 1339 C CD1 . PHE Q 17 217 ? 150.463 271.069 301.245 1.00 143.58 217 Bj 1 +ATOM 1340 C CD2 . PHE Q 17 217 ? 150.477 268.774 301.886 1.00 143.58 217 Bj 1 +ATOM 1341 C CE1 . PHE Q 17 217 ? 149.756 270.748 300.101 1.00 143.58 217 Bj 1 +ATOM 1342 C CE2 . PHE Q 17 217 ? 149.771 268.447 300.744 1.00 143.58 217 Bj 1 +ATOM 1343 C CZ . PHE Q 17 217 ? 149.410 269.435 299.851 1.00 143.58 217 Bj 1 +ATOM 1344 N N . LEU Q 17 227 ? 157.135 268.148 304.312 1.00 125.05 227 Bj 1 +ATOM 1345 C CA . LEU Q 17 227 ? 156.195 267.564 303.362 1.00 125.05 227 Bj 1 +ATOM 1346 C C . LEU Q 17 227 ? 156.009 268.470 302.151 1.00 125.05 227 Bj 1 +ATOM 1347 O O . LEU Q 17 227 ? 155.534 269.599 302.277 1.00 125.05 227 Bj 1 +ATOM 1348 C CB . LEU Q 17 227 ? 154.846 267.299 304.034 1.00 125.05 227 Bj 1 +ATOM 1349 C CG . LEU Q 17 227 ? 153.726 266.761 303.141 1.00 125.05 227 Bj 1 +ATOM 1350 C CD1 . LEU Q 17 227 ? 154.132 265.448 302.492 1.00 125.05 227 Bj 1 +ATOM 1351 C CD2 . LEU Q 17 227 ? 152.443 266.591 303.938 1.00 125.05 227 Bj 1 +ATOM 1352 N N . GLY Q 17 228 ? 156.388 267.969 300.971 1.00 128.22 228 Bj 1 +ATOM 1353 C CA . GLY Q 17 228 ? 156.244 268.718 299.745 1.00 128.22 228 Bj 1 +ATOM 1354 C C . GLY Q 17 228 ? 155.646 267.856 298.647 1.00 128.22 228 Bj 1 +ATOM 1355 O O . GLY Q 17 228 ? 155.531 266.635 298.775 1.00 128.22 228 Bj 1 +ATOM 1356 N N . ALA Q 17 229 ? 155.272 268.518 297.555 1.00 135.59 229 Bj 1 +ATOM 1357 C CA . ALA Q 17 229 ? 154.709 267.825 296.410 1.00 135.59 229 Bj 1 +ATOM 1358 C C . ALA Q 17 229 ? 155.086 268.574 295.142 1.00 135.59 229 Bj 1 +ATOM 1359 O O . ALA Q 17 229 ? 155.273 269.793 295.151 1.00 135.59 229 Bj 1 +ATOM 1360 C CB . ALA Q 17 229 ? 153.186 267.691 296.522 1.00 135.59 229 Bj 1 +ATOM 1361 N N . LYS Q 17 230 ? 155.195 267.821 294.052 1.00 134.09 230 Bj 1 +ATOM 1362 C CA . LYS Q 17 230 ? 155.610 268.330 292.755 1.00 134.09 230 Bj 1 +ATOM 1363 C C . LYS Q 17 230 ? 154.658 267.812 291.689 1.00 134.09 230 Bj 1 +ATOM 1364 O O . LYS Q 17 230 ? 154.215 266.660 291.748 1.00 134.09 230 Bj 1 +ATOM 1365 C CB . LYS Q 17 230 ? 157.044 267.900 292.437 1.00 134.09 230 Bj 1 +ATOM 1366 C CG . LYS Q 17 230 ? 157.266 266.407 292.605 1.00 134.09 230 Bj 1 +ATOM 1367 C CD . LYS Q 17 230 ? 158.738 266.053 292.685 1.00 134.09 230 Bj 1 +ATOM 1368 C CE . LYS Q 17 230 ? 158.919 264.566 292.931 1.00 134.09 230 Bj 1 +ATOM 1369 N NZ . LYS Q 17 230 ? 158.240 264.126 294.181 1.00 134.09 230 Bj 1 +ATOM 1370 N N . VAL Q 17 231 ? 154.339 268.668 290.723 1.00 135.01 231 Bj 1 +ATOM 1371 C CA . VAL Q 17 231 ? 153.447 268.325 289.624 1.00 135.01 231 Bj 1 +ATOM 1372 C C . VAL Q 17 231 ? 154.143 268.676 288.317 1.00 135.01 231 Bj 1 +ATOM 1373 O O . VAL Q 17 231 ? 154.717 269.766 288.179 1.00 135.01 231 Bj 1 +ATOM 1374 C CB . VAL Q 17 231 ? 152.083 269.037 289.740 1.00 135.01 231 Bj 1 +ATOM 1375 C CG1 . VAL Q 17 231 ? 152.256 270.540 289.888 1.00 135.01 231 Bj 1 +ATOM 1376 C CG2 . VAL Q 17 231 ? 151.200 268.706 288.544 1.00 135.01 231 Bj 1 +ATOM 1377 N N . PHE Q 17 232 ? 154.109 267.736 287.371 1.00 135.12 232 Bj 1 +ATOM 1378 C CA . PHE Q 17 232 ? 154.776 267.856 286.079 1.00 135.12 232 Bj 1 +ATOM 1379 C C . PHE Q 17 232 ? 153.708 267.897 284.994 1.00 135.12 232 Bj 1 +ATOM 1380 O O . PHE Q 17 232 ? 152.998 266.910 284.777 1.00 135.12 232 Bj 1 +ATOM 1381 C CB . PHE Q 17 232 ? 155.736 266.691 285.848 1.00 135.12 232 Bj 1 +ATOM 1382 C CG . PHE Q 17 232 ? 156.600 266.370 287.032 1.00 135.12 232 Bj 1 +ATOM 1383 C CD1 . PHE Q 17 232 ? 157.175 267.378 287.786 1.00 135.12 232 Bj 1 +ATOM 1384 C CD2 . PHE Q 17 232 ? 156.831 265.055 287.394 1.00 135.12 232 Bj 1 +ATOM 1385 C CE1 . PHE Q 17 232 ? 157.968 267.079 288.875 1.00 135.12 232 Bj 1 +ATOM 1386 C CE2 . PHE Q 17 232 ? 157.623 264.749 288.481 1.00 135.12 232 Bj 1 +ATOM 1387 C CZ . PHE Q 17 232 ? 158.192 265.763 289.223 1.00 135.12 232 Bj 1 +ATOM 1388 N N . PHE Q 17 233 ? 153.597 269.034 284.318 1.00 138.91 233 Bj 1 +ATOM 1389 C CA . PHE Q 17 233 ? 152.629 269.220 283.246 1.00 138.91 233 Bj 1 +ATOM 1390 C C . PHE Q 17 233 ? 153.266 268.835 281.917 1.00 138.91 233 Bj 1 +ATOM 1391 O O . PHE Q 17 233 ? 154.289 269.410 281.525 1.00 138.91 233 Bj 1 +ATOM 1392 C CB . PHE Q 17 233 ? 152.141 270.667 283.211 1.00 138.91 233 Bj 1 +ATOM 1393 C CG . PHE Q 17 233 ? 151.342 271.064 284.416 1.00 138.91 233 Bj 1 +ATOM 1394 C CD1 . PHE Q 17 233 ? 151.971 271.457 285.584 1.00 138.91 233 Bj 1 +ATOM 1395 C CD2 . PHE Q 17 233 ? 149.959 271.042 284.380 1.00 138.91 233 Bj 1 +ATOM 1396 C CE1 . PHE Q 17 233 ? 151.233 271.818 286.695 1.00 138.91 233 Bj 1 +ATOM 1397 C CE2 . PHE Q 17 233 ? 149.218 271.404 285.489 1.00 138.91 233 Bj 1 +ATOM 1398 C CZ . PHE Q 17 233 ? 149.856 271.793 286.646 1.00 138.91 233 Bj 1 +ATOM 1399 N N . PHE Q 17 234 ? 152.663 267.863 281.235 1.00 134.22 234 Bj 1 +ATOM 1400 C CA . PHE Q 17 234 ? 153.088 267.418 279.917 1.00 134.22 234 Bj 1 +ATOM 1401 C C . PHE Q 17 234 ? 152.037 267.799 278.884 1.00 134.22 234 Bj 1 +ATOM 1402 O O . PHE Q 17 234 ? 150.840 267.584 279.098 1.00 134.22 234 Bj 1 +ATOM 1403 C CB . PHE Q 17 234 ? 153.301 265.902 279.885 1.00 134.22 234 Bj 1 +ATOM 1404 C CG . PHE Q 17 234 ? 154.564 265.447 280.554 1.00 134.22 234 Bj 1 +ATOM 1405 C CD1 . PHE Q 17 234 ? 154.684 265.473 281.933 1.00 134.22 234 Bj 1 +ATOM 1406 C CD2 . PHE Q 17 234 ? 155.625 264.972 279.802 1.00 134.22 234 Bj 1 +ATOM 1407 C CE1 . PHE Q 17 234 ? 155.845 265.047 282.547 1.00 134.22 234 Bj 1 +ATOM 1408 C CE2 . PHE Q 17 234 ? 156.786 264.542 280.410 1.00 134.22 234 Bj 1 +ATOM 1409 C CZ . PHE Q 17 234 ? 156.896 264.580 281.784 1.00 134.22 234 Bj 1 +ATOM 1410 N N . LYS Q 17 235 ? 152.488 268.350 277.760 1.00 127.98 235 Bj 1 +ATOM 1411 C CA . LYS Q 17 235 ? 151.591 268.748 276.685 1.00 127.98 235 Bj 1 +ATOM 1412 C C . LYS Q 17 235 ? 151.407 267.614 275.685 1.00 127.98 235 Bj 1 +ATOM 1413 O O . LYS Q 17 235 ? 152.342 266.861 275.399 1.00 127.98 235 Bj 1 +ATOM 1414 C CB . LYS Q 17 235 ? 152.120 269.988 275.962 1.00 127.98 235 Bj 1 +ATOM 1415 C CG . LYS Q 17 235 ? 151.913 271.288 276.717 1.00 127.98 235 Bj 1 +ATOM 1416 C CD . LYS Q 17 235 ? 152.321 272.477 275.865 1.00 127.98 235 Bj 1 +ATOM 1417 C CE . LYS Q 17 235 ? 151.978 273.788 276.547 1.00 127.98 235 Bj 1 +ATOM 1418 N NZ . LYS Q 17 235 ? 152.378 274.957 275.719 1.00 127.98 235 Bj 1 +ATOM 1419 N N . ALA Q 17 236 ? 150.191 267.503 275.155 1.00 124.65 236 Bj 1 +ATOM 1420 C CA . ALA Q 17 236 ? 149.871 266.534 274.120 1.00 124.65 236 Bj 1 +ATOM 1421 C C . ALA Q 17 236 ? 148.912 267.176 273.129 1.00 124.65 236 Bj 1 +ATOM 1422 O O . ALA Q 17 236 ? 148.201 268.130 273.453 1.00 124.65 236 Bj 1 +ATOM 1423 C CB . ALA Q 17 236 ? 149.260 265.254 274.706 1.00 124.65 236 Bj 1 +ATOM 1424 N N . LEU Q 17 237 ? 148.905 266.645 271.911 1.00 117.02 237 Bj 1 +ATOM 1425 C CA . LEU Q 17 237 ? 148.078 267.159 270.829 1.00 117.02 237 Bj 1 +ATOM 1426 C C . LEU Q 17 237 ? 146.925 266.201 270.561 1.00 117.02 237 Bj 1 +ATOM 1427 O O . LEU Q 17 237 ? 147.072 264.984 270.709 1.00 117.02 237 Bj 1 +ATOM 1428 C CB . LEU Q 17 237 ? 148.906 267.358 269.556 1.00 117.02 237 Bj 1 +ATOM 1429 C CG . LEU Q 17 237 ? 148.232 268.081 268.388 1.00 117.02 237 Bj 1 +ATOM 1430 C CD1 . LEU Q 17 237 ? 147.874 269.508 268.773 1.00 117.02 237 Bj 1 +ATOM 1431 C CD2 . LEU Q 17 237 ? 149.124 268.062 267.157 1.00 117.02 237 Bj 1 +ATOM 1432 N N . LEU Q 17 238 ? 145.780 266.752 270.167 1.00 111.74 238 Bj 1 +ATOM 1433 C CA . LEU Q 17 238 ? 144.598 265.953 269.875 1.00 111.74 238 Bj 1 +ATOM 1434 C C . LEU Q 17 238 ? 144.550 265.637 268.385 1.00 111.74 238 Bj 1 +ATOM 1435 O O . LEU Q 17 238 ? 144.436 266.545 267.555 1.00 111.74 238 Bj 1 +ATOM 1436 C CB . LEU Q 17 238 ? 143.330 266.688 270.308 1.00 111.74 238 Bj 1 +ATOM 1437 C CG . LEU Q 17 238 ? 142.006 266.022 269.930 1.00 111.74 238 Bj 1 +ATOM 1438 C CD1 . LEU Q 17 238 ? 141.964 264.588 270.427 1.00 111.74 238 Bj 1 +ATOM 1439 C CD2 . LEU Q 17 238 ? 140.831 266.812 270.482 1.00 111.74 238 Bj 1 +ATOM 1440 N N . LEU Q 17 239 ? 144.634 264.350 268.050 1.00 112.02 239 Bj 1 +ATOM 1441 C CA . LEU Q 17 239 ? 144.528 263.909 266.665 1.00 112.02 239 Bj 1 +ATOM 1442 C C . LEU Q 17 239 ? 143.084 263.603 266.282 1.00 112.02 239 Bj 1 +ATOM 1443 O O . LEU Q 17 239 ? 142.601 264.068 265.245 1.00 112.02 239 Bj 1 +ATOM 1444 C CB . LEU Q 17 239 ? 145.409 262.678 266.433 1.00 112.02 239 Bj 1 +ATOM 1445 C CG . LEU Q 17 239 ? 146.918 262.867 266.591 1.00 112.02 239 Bj 1 +ATOM 1446 C CD1 . LEU Q 17 239 ? 147.642 261.536 266.459 1.00 112.02 239 Bj 1 +ATOM 1447 C CD2 . LEU Q 17 239 ? 147.442 263.866 265.571 1.00 112.02 239 Bj 1 +ATOM 1448 N N . THR Q 17 240 ? 142.387 262.825 267.107 1.00 112.72 240 Bj 1 +ATOM 1449 C CA . THR Q 17 240 ? 140.988 262.492 266.862 1.00 112.72 240 Bj 1 +ATOM 1450 C C . THR Q 17 240 ? 140.284 262.360 268.201 1.00 112.72 240 Bj 1 +ATOM 1451 O O . THR Q 17 240 ? 140.656 261.510 269.017 1.00 112.72 240 Bj 1 +ATOM 1452 C CB . THR Q 17 240 ? 140.855 261.198 266.056 1.00 112.72 240 Bj 1 +ATOM 1453 O OG1 . THR Q 17 240 ? 141.478 261.363 264.776 1.00 112.72 240 Bj 1 +ATOM 1454 C CG2 . THR Q 17 240 ? 139.389 260.842 265.860 1.00 112.72 240 Bj 1 +ATOM 1455 N N . GLY Q 17 241 ? 139.281 263.204 268.427 1.00 112.39 241 Bj 1 +ATOM 1456 C CA . GLY Q 17 241 ? 138.518 263.163 269.658 1.00 112.39 241 Bj 1 +ATOM 1457 C C . GLY Q 17 241 ? 137.166 262.503 269.490 1.00 112.39 241 Bj 1 +ATOM 1458 O O . GLY Q 17 241 ? 136.235 263.106 268.948 1.00 112.39 241 Bj 1 +ATOM 1459 N N . ASP Q 17 242 ? 137.047 261.262 269.950 1.00 120.39 242 Bj 1 +ATOM 1460 C CA . ASP Q 17 242 ? 135.806 260.495 269.875 1.00 120.39 242 Bj 1 +ATOM 1461 C C . ASP Q 17 242 ? 135.359 260.229 271.309 1.00 120.39 242 Bj 1 +ATOM 1462 O O . ASP Q 17 242 ? 135.683 259.189 271.887 1.00 120.39 242 Bj 1 +ATOM 1463 C CB . ASP Q 17 242 ? 136.006 259.200 269.088 1.00 120.39 242 Bj 1 +ATOM 1464 C CG . ASP Q 17 242 ? 134.704 258.479 268.811 1.00 120.39 242 Bj 1 +ATOM 1465 O OD1 . ASP Q 17 242 ? 133.900 258.990 268.004 1.00 120.39 242 Bj 1 +ATOM 1466 O OD2 . ASP Q 17 242 ? 134.484 257.400 269.399 1.00 120.39 242 Bj 1 +ATOM 1467 N N . PHE Q 17 243 ? 134.612 261.172 271.876 1.00 125.10 243 Bj 1 +ATOM 1468 C CA . PHE Q 17 243 ? 134.205 261.109 273.274 1.00 125.10 243 Bj 1 +ATOM 1469 C C . PHE Q 17 243 ? 132.791 260.548 273.376 1.00 125.10 243 Bj 1 +ATOM 1470 O O . PHE Q 17 243 ? 131.858 261.086 272.771 1.00 125.10 243 Bj 1 +ATOM 1471 C CB . PHE Q 17 243 ? 134.284 262.493 273.916 1.00 125.10 243 Bj 1 +ATOM 1472 C CG . PHE Q 17 243 ? 133.967 262.500 275.384 1.00 125.10 243 Bj 1 +ATOM 1473 C CD1 . PHE Q 17 243 ? 134.948 262.216 276.319 1.00 125.10 243 Bj 1 +ATOM 1474 C CD2 . PHE Q 17 243 ? 132.690 262.797 275.830 1.00 125.10 243 Bj 1 +ATOM 1475 C CE1 . PHE Q 17 243 ? 134.661 262.224 277.670 1.00 125.10 243 Bj 1 +ATOM 1476 C CE2 . PHE Q 17 243 ? 132.398 262.805 277.179 1.00 125.10 243 Bj 1 +ATOM 1477 C CZ . PHE Q 17 243 ? 133.384 262.518 278.100 1.00 125.10 243 Bj 1 +ATOM 1478 N N . SER Q 17 244 ? 132.637 259.471 274.141 1.00 130.58 244 Bj 1 +ATOM 1479 C CA . SER Q 17 244 ? 131.334 258.873 274.383 1.00 130.58 244 Bj 1 +ATOM 1480 C C . SER Q 17 244 ? 130.729 259.423 275.668 1.00 130.58 244 Bj 1 +ATOM 1481 O O . SER Q 17 244 ? 131.444 259.824 276.591 1.00 130.58 244 Bj 1 +ATOM 1482 C CB . SER Q 17 244 ? 131.443 257.349 274.467 1.00 130.58 244 Bj 1 +ATOM 1483 O OG . SER Q 17 244 ? 130.182 256.759 274.733 1.00 130.58 244 Bj 1 +ATOM 1484 N N . GLN Q 17 245 ? 129.395 259.434 275.717 1.00 128.80 245 Bj 1 +ATOM 1485 C CA . GLN Q 17 245 ? 128.640 259.945 276.861 1.00 128.80 245 Bj 1 +ATOM 1486 C C . GLN Q 17 245 ? 129.024 261.398 277.157 1.00 128.80 245 Bj 1 +ATOM 1487 O O . GLN Q 17 245 ? 129.573 261.730 278.209 1.00 128.80 245 Bj 1 +ATOM 1488 C CB . GLN Q 17 245 ? 128.834 259.050 278.092 1.00 128.80 245 Bj 1 +ATOM 1489 C CG . GLN Q 17 245 ? 127.890 259.349 279.253 1.00 128.80 245 Bj 1 +ATOM 1490 C CD . GLN Q 17 245 ? 126.435 259.074 278.920 1.00 128.80 245 Bj 1 +ATOM 1491 O OE1 . GLN Q 17 245 ? 126.126 258.253 278.055 1.00 128.80 245 Bj 1 +ATOM 1492 N NE2 . GLN Q 17 245 ? 125.531 259.762 279.608 1.00 128.80 245 Bj 1 +ATOM 1493 N N . ALA Q 17 246 ? 128.731 262.266 276.186 1.00 127.68 246 Bj 1 +ATOM 1494 C CA . ALA Q 17 246 ? 129.038 263.683 276.337 1.00 127.68 246 Bj 1 +ATOM 1495 C C . ALA Q 17 246 ? 128.140 264.366 277.359 1.00 127.68 246 Bj 1 +ATOM 1496 O O . ALA Q 17 246 ? 128.472 265.463 277.821 1.00 127.68 246 Bj 1 +ATOM 1497 C CB . ALA Q 17 246 ? 128.926 264.394 274.987 1.00 127.68 246 Bj 1 +ATOM 1498 N N . GLY Q 17 247 ? 127.018 263.748 277.720 1.00 128.61 247 Bj 1 +ATOM 1499 C CA . GLY Q 17 247 ? 126.115 264.325 278.695 1.00 128.61 247 Bj 1 +ATOM 1500 C C . GLY Q 17 247 ? 126.252 263.710 280.072 1.00 128.61 247 Bj 1 +ATOM 1501 O O . GLY Q 17 247 ? 125.267 263.595 280.808 1.00 128.61 247 Bj 1 +ATOM 1502 N N . LYS Q 17 248 ? 127.468 263.311 280.433 1.00 125.96 248 Bj 1 +ATOM 1503 C CA . LYS Q 17 248 ? 127.713 262.724 281.739 1.00 125.96 248 Bj 1 +ATOM 1504 C C . LYS Q 17 248 ? 127.891 263.817 282.791 1.00 125.96 248 Bj 1 +ATOM 1505 O O . LYS Q 17 248 ? 127.941 265.012 282.488 1.00 125.96 248 Bj 1 +ATOM 1506 C CB . LYS Q 17 248 ? 128.946 261.822 281.702 1.00 125.96 248 Bj 1 +ATOM 1507 C CG . LYS Q 17 248 ? 130.258 262.572 281.540 1.00 125.96 248 Bj 1 +ATOM 1508 C CD . LYS Q 17 248 ? 131.448 261.630 281.626 1.00 125.96 248 Bj 1 +ATOM 1509 C CE . LYS Q 17 248 ? 132.761 262.393 281.596 1.00 125.96 248 Bj 1 +ATOM 1510 N NZ . LYS Q 17 248 ? 133.934 261.479 281.668 1.00 125.96 248 Bj 1 +ATOM 1511 N N . LYS Q 17 249 ? 127.991 263.389 284.050 1.00 120.94 249 Bj 1 +ATOM 1512 C CA . LYS Q 17 249 ? 128.204 264.319 285.150 1.00 120.94 249 Bj 1 +ATOM 1513 C C . LYS Q 17 249 ? 129.630 264.849 285.213 1.00 120.94 249 Bj 1 +ATOM 1514 O O . LYS Q 17 249 ? 129.879 265.823 285.932 1.00 120.94 249 Bj 1 +ATOM 1515 C CB . LYS Q 17 249 ? 127.843 263.653 286.481 1.00 120.94 249 Bj 1 +ATOM 1516 C CG . LYS Q 17 249 ? 126.360 263.355 286.649 1.00 120.94 249 Bj 1 +ATOM 1517 C CD . LYS Q 17 249 ? 125.530 264.631 286.660 1.00 120.94 249 Bj 1 +ATOM 1518 C CE . LYS Q 17 249 ? 124.617 264.713 285.447 1.00 120.94 249 Bj 1 +ATOM 1519 N NZ . LYS Q 17 249 ? 123.811 265.964 285.445 1.00 120.94 249 Bj 1 +ATOM 1520 N N . GLY Q 17 250 ? 130.565 264.239 284.488 1.00 123.18 250 Bj 1 +ATOM 1521 C CA . GLY Q 17 250 ? 131.923 264.742 284.431 1.00 123.18 250 Bj 1 +ATOM 1522 C C . GLY Q 17 250 ? 132.013 266.047 283.669 1.00 123.18 250 Bj 1 +ATOM 1523 O O . GLY Q 17 250 ? 131.833 266.074 282.448 1.00 123.18 250 Bj 1 +ATOM 1524 N N . HIS Q 17 251 ? 132.289 267.138 284.379 1.00 125.29 251 Bj 1 +ATOM 1525 C CA . HIS Q 17 251 ? 132.322 268.470 283.778 1.00 125.29 251 Bj 1 +ATOM 1526 C C . HIS Q 17 251 ? 133.687 268.686 283.137 1.00 125.29 251 Bj 1 +ATOM 1527 O O . HIS Q 17 251 ? 134.647 269.104 283.786 1.00 125.29 251 Bj 1 +ATOM 1528 C CB . HIS Q 17 251 ? 132.019 269.538 284.821 1.00 125.29 251 Bj 1 +ATOM 1529 C CG . HIS Q 17 251 ? 130.737 269.315 285.560 1.00 125.29 251 Bj 1 +ATOM 1530 N ND1 . HIS Q 17 251 ? 129.511 269.688 285.053 1.00 125.29 251 Bj 1 +ATOM 1531 C CD2 . HIS Q 17 251 ? 130.489 268.757 286.769 1.00 125.29 251 Bj 1 +ATOM 1532 C CE1 . HIS Q 17 251 ? 128.563 269.370 285.917 1.00 125.29 251 Bj 1 +ATOM 1533 N NE2 . HIS Q 17 251 ? 129.131 268.803 286.966 1.00 125.29 251 Bj 1 +ATOM 1534 N N . HIS Q 17 252 ? 133.771 268.392 281.842 1.00 117.65 252 Bj 1 +ATOM 1535 C CA . HIS Q 17 252 ? 134.965 268.633 281.044 1.00 117.65 252 Bj 1 +ATOM 1536 C C . HIS Q 17 252 ? 134.674 269.751 280.053 1.00 117.65 252 Bj 1 +ATOM 1537 O O . HIS Q 17 252 ? 133.661 269.713 279.348 1.00 117.65 252 Bj 1 +ATOM 1538 C CB . HIS Q 17 252 ? 135.405 267.363 280.309 1.00 117.65 252 Bj 1 +ATOM 1539 C CG . HIS Q 17 252 ? 134.422 266.883 279.289 1.00 117.65 252 Bj 1 +ATOM 1540 N ND1 . HIS Q 17 252 ? 133.315 266.131 279.617 1.00 117.65 252 Bj 1 +ATOM 1541 C CD2 . HIS Q 17 252 ? 134.377 267.051 277.946 1.00 117.65 252 Bj 1 +ATOM 1542 C CE1 . HIS Q 17 252 ? 132.631 265.856 278.521 1.00 117.65 252 Bj 1 +ATOM 1543 N NE2 . HIS Q 17 252 ? 133.254 266.403 277.493 1.00 117.65 252 Bj 1 +ATOM 1544 N N . VAL Q 17 253 ? 135.556 270.746 280.008 1.00 119.25 253 Bj 1 +ATOM 1545 C CA . VAL Q 17 253 ? 135.344 271.959 279.228 1.00 119.25 253 Bj 1 +ATOM 1546 C C . VAL Q 17 253 ? 136.541 272.173 278.314 1.00 119.25 253 Bj 1 +ATOM 1547 O O . VAL Q 17 253 ? 137.691 272.100 278.762 1.00 119.25 253 Bj 1 +ATOM 1548 C CB . VAL Q 17 253 ? 135.137 273.190 280.131 1.00 119.25 253 Bj 1 +ATOM 1549 C CG1 . VAL Q 17 253 ? 134.861 274.428 279.291 1.00 119.25 253 Bj 1 +ATOM 1550 C CG2 . VAL Q 17 253 ? 134.007 272.948 281.121 1.00 119.25 253 Bj 1 +ATOM 1551 N N . TRP Q 17 254 ? 136.269 272.431 277.036 1.00 115.00 254 Bj 1 +ATOM 1552 C CA . TRP Q 17 254 ? 137.283 272.897 276.101 1.00 115.00 254 Bj 1 +ATOM 1553 C C . TRP Q 17 254 ? 137.325 274.418 276.147 1.00 115.00 254 Bj 1 +ATOM 1554 O O . TRP Q 17 254 ? 136.330 275.082 275.836 1.00 115.00 254 Bj 1 +ATOM 1555 C CB . TRP Q 17 254 ? 136.987 272.415 274.681 1.00 115.00 254 Bj 1 +ATOM 1556 C CG . TRP Q 17 254 ? 136.967 270.928 274.547 1.00 115.00 254 Bj 1 +ATOM 1557 C CD1 . TRP Q 17 254 ? 135.876 270.139 274.334 1.00 115.00 254 Bj 1 +ATOM 1558 C CD2 . TRP Q 17 254 ? 138.092 270.046 274.625 1.00 115.00 254 Bj 1 +ATOM 1559 N NE1 . TRP Q 17 254 ? 136.251 268.819 274.269 1.00 115.00 254 Bj 1 +ATOM 1560 C CE2 . TRP Q 17 254 ? 137.607 268.735 274.446 1.00 115.00 254 Bj 1 +ATOM 1561 C CE3 . TRP Q 17 254 ? 139.461 270.236 274.827 1.00 115.00 254 Bj 1 +ATOM 1562 C CZ2 . TRP Q 17 254 ? 138.443 267.622 274.463 1.00 115.00 254 Bj 1 +ATOM 1563 C CZ3 . TRP Q 17 254 ? 140.289 269.130 274.842 1.00 115.00 254 Bj 1 +ATOM 1564 C CH2 . TRP Q 17 254 ? 139.778 267.840 274.662 1.00 115.00 254 Bj 1 +ATOM 1565 N N . VAL Q 17 255 ? 138.473 274.965 276.535 1.00 119.35 255 Bj 1 +ATOM 1566 C CA . VAL Q 17 255 ? 138.586 276.379 276.870 1.00 119.35 255 Bj 1 +ATOM 1567 C C . VAL Q 17 255 ? 139.797 276.969 276.160 1.00 119.35 255 Bj 1 +ATOM 1568 O O . VAL Q 17 255 ? 140.791 276.276 275.919 1.00 119.35 255 Bj 1 +ATOM 1569 C CB . VAL Q 17 255 ? 138.678 276.575 278.400 1.00 119.35 255 Bj 1 +ATOM 1570 C CG1 . VAL Q 17 255 ? 139.988 276.026 278.940 1.00 119.35 255 Bj 1 +ATOM 1571 C CG2 . VAL Q 17 255 ? 138.506 278.030 278.766 1.00 119.35 255 Bj 1 +ATOM 1572 N N . SER Q 17 256 ? 139.702 278.248 275.804 1.00 122.61 256 Bj 1 +ATOM 1573 C CA . SER Q 17 256 ? 140.792 278.967 275.164 1.00 122.61 256 Bj 1 +ATOM 1574 C C . SER Q 17 256 ? 141.580 279.743 276.219 1.00 122.61 256 Bj 1 +ATOM 1575 O O . SER Q 17 256 ? 141.375 279.576 277.423 1.00 122.61 256 Bj 1 +ATOM 1576 C CB . SER Q 17 256 ? 140.249 279.877 274.066 1.00 122.61 256 Bj 1 +ATOM 1577 O OG . SER Q 17 256 ? 141.298 280.548 273.390 1.00 122.61 256 Bj 1 +ATOM 1578 N N . LYS Q 17 257 ? 142.489 280.613 275.772 1.00 127.00 257 Bj 1 +ATOM 1579 C CA . LYS Q 17 257 ? 143.375 281.318 276.695 1.00 127.00 257 Bj 1 +ATOM 1580 C C . LYS Q 17 257 ? 142.610 282.285 277.595 1.00 127.00 257 Bj 1 +ATOM 1581 O O . LYS Q 17 257 ? 142.840 282.324 278.811 1.00 127.00 257 Bj 1 +ATOM 1582 C CB . LYS Q 17 257 ? 144.455 282.054 275.899 1.00 127.00 257 Bj 1 +ATOM 1583 C CG . LYS Q 17 257 ? 144.923 283.367 276.506 1.00 127.00 257 Bj 1 +ATOM 1584 C CD . LYS Q 17 257 ? 146.041 283.168 277.511 1.00 127.00 257 Bj 1 +ATOM 1585 C CE . LYS Q 17 257 ? 146.569 284.511 277.993 1.00 127.00 257 Bj 1 +ATOM 1586 N NZ . LYS Q 17 257 ? 147.753 284.372 278.882 1.00 127.00 257 Bj 1 +ATOM 1587 N N . GLU Q 17 258 ? 141.695 283.069 277.021 1.00 126.69 258 Bj 1 +ATOM 1588 C CA . GLU Q 17 258 ? 141.007 284.103 277.788 1.00 126.69 258 Bj 1 +ATOM 1589 C C . GLU Q 17 258 ? 140.134 283.494 278.880 1.00 126.69 258 Bj 1 +ATOM 1590 O O . GLU Q 17 258 ? 140.313 283.776 280.071 1.00 126.69 258 Bj 1 +ATOM 1591 C CB . GLU Q 17 258 ? 140.173 284.979 276.851 1.00 126.69 258 Bj 1 +ATOM 1592 C CG . GLU Q 17 258 ? 140.982 285.777 275.834 1.00 126.69 258 Bj 1 +ATOM 1593 C CD . GLU Q 17 258 ? 141.362 284.971 274.602 1.00 126.69 258 Bj 1 +ATOM 1594 O OE1 . GLU Q 17 258 ? 141.635 283.760 274.732 1.00 126.69 258 Bj 1 +ATOM 1595 O OE2 . GLU Q 17 258 ? 141.381 285.553 273.498 1.00 126.69 258 Bj 1 +ATOM 1596 N N . GLU Q 17 259 ? 139.174 282.652 278.490 1.00 129.80 259 Bj 1 +ATOM 1597 C CA . GLU Q 17 259 ? 138.332 281.997 279.482 1.00 129.80 259 Bj 1 +ATOM 1598 C C . GLU Q 17 259 ? 139.126 281.043 280.365 1.00 129.80 259 Bj 1 +ATOM 1599 O O . GLU Q 17 259 ? 138.712 280.779 281.498 1.00 129.80 259 Bj 1 +ATOM 1600 C CB . GLU Q 17 259 ? 137.179 281.259 278.797 1.00 129.80 259 Bj 1 +ATOM 1601 C CG . GLU Q 17 259 ? 136.278 282.148 277.950 1.00 129.80 259 Bj 1 +ATOM 1602 C CD . GLU Q 17 259 ? 136.700 282.197 276.494 1.00 129.80 259 Bj 1 +ATOM 1603 O OE1 . GLU Q 17 259 ? 137.140 281.154 275.965 1.00 129.80 259 Bj 1 +ATOM 1604 O OE2 . GLU Q 17 259 ? 136.592 283.278 275.878 1.00 129.80 259 Bj 1 +ATOM 1605 N N . LEU Q 17 260 ? 140.270 280.549 279.888 1.00 130.83 260 Bj 1 +ATOM 1606 C CA . LEU Q 17 260 ? 141.148 279.742 280.729 1.00 130.83 260 Bj 1 +ATOM 1607 C C . LEU Q 17 260 ? 141.669 280.562 281.901 1.00 130.83 260 Bj 1 +ATOM 1608 O O . LEU Q 17 260 ? 141.580 280.142 283.062 1.00 130.83 260 Bj 1 +ATOM 1609 C CB . LEU Q 17 260 ? 142.301 279.197 279.882 1.00 130.83 260 Bj 1 +ATOM 1610 C CG . LEU Q 17 260 ? 143.280 278.143 280.407 1.00 130.83 260 Bj 1 +ATOM 1611 C CD1 . LEU Q 17 260 ? 143.986 277.497 279.232 1.00 130.83 260 Bj 1 +ATOM 1612 C CD2 . LEU Q 17 260 ? 144.307 278.740 281.346 1.00 130.83 260 Bj 1 +ATOM 1613 N N . GLY Q 17 261 ? 142.232 281.735 281.610 1.00 132.72 261 Bj 1 +ATOM 1614 C CA . GLY Q 17 261 ? 142.661 282.625 282.674 1.00 132.72 261 Bj 1 +ATOM 1615 C C . GLY Q 17 261 ? 141.510 283.111 283.530 1.00 132.72 261 Bj 1 +ATOM 1616 O O . GLY Q 17 261 ? 141.689 283.389 284.720 1.00 132.72 261 Bj 1 +ATOM 1617 N N . ASP Q 17 262 ? 140.317 283.220 282.943 1.00 135.25 262 Bj 1 +ATOM 1618 C CA . ASP Q 17 262 ? 139.148 283.630 283.717 1.00 135.25 262 Bj 1 +ATOM 1619 C C . ASP Q 17 262 ? 138.742 282.558 284.722 1.00 135.25 262 Bj 1 +ATOM 1620 O O . ASP Q 17 262 ? 138.354 282.874 285.853 1.00 135.25 262 Bj 1 +ATOM 1621 C CB . ASP Q 17 262 ? 137.986 283.951 282.778 1.00 135.25 262 Bj 1 +ATOM 1622 C CG . ASP Q 17 262 ? 136.680 284.169 283.519 1.00 135.25 262 Bj 1 +ATOM 1623 O OD1 . ASP Q 17 262 ? 136.568 285.178 284.246 1.00 135.25 262 Bj 1 +ATOM 1624 O OD2 . ASP Q 17 262 ? 135.764 283.332 283.373 1.00 135.25 262 Bj 1 +ATOM 1625 N N . TYR Q 17 263 ? 138.823 281.286 284.330 1.00 135.63 263 Bj 1 +ATOM 1626 C CA . TYR Q 17 263 ? 138.387 280.204 285.207 1.00 135.63 263 Bj 1 +ATOM 1627 C C . TYR Q 17 263 ? 139.450 279.853 286.242 1.00 135.63 263 Bj 1 +ATOM 1628 O O . TYR Q 17 263 ? 139.148 279.738 287.435 1.00 135.63 263 Bj 1 +ATOM 1629 C CB . TYR Q 17 263 ? 138.020 278.968 284.383 1.00 135.63 263 Bj 1 +ATOM 1630 C CG . TYR Q 17 263 ? 136.748 279.113 283.580 1.00 135.63 263 Bj 1 +ATOM 1631 C CD1 . TYR Q 17 263 ? 136.444 278.220 282.560 1.00 135.63 263 Bj 1 +ATOM 1632 C CD2 . TYR Q 17 263 ? 135.849 280.139 283.842 1.00 135.63 263 Bj 1 +ATOM 1633 C CE1 . TYR Q 17 263 ? 135.282 278.346 281.823 1.00 135.63 263 Bj 1 +ATOM 1634 C CE2 . TYR Q 17 263 ? 134.685 280.272 283.109 1.00 135.63 263 Bj 1 +ATOM 1635 C CZ . TYR Q 17 263 ? 134.407 279.373 282.101 1.00 135.63 263 Bj 1 +ATOM 1636 O OH . TYR Q 17 263 ? 133.250 279.500 281.367 1.00 135.63 263 Bj 1 +ATOM 1637 N N . LEU Q 17 264 ? 140.698 279.676 285.808 1.00 134.80 264 Bj 1 +ATOM 1638 C CA . LEU Q 17 264 ? 141.750 279.206 286.706 1.00 134.80 264 Bj 1 +ATOM 1639 C C . LEU Q 17 264 ? 142.092 280.291 287.720 1.00 134.80 264 Bj 1 +ATOM 1640 O O . LEU Q 17 264 ? 142.757 281.278 287.390 1.00 134.80 264 Bj 1 +ATOM 1641 C CB . LEU Q 17 264 ? 142.981 278.790 285.908 1.00 134.80 264 Bj 1 +ATOM 1642 C CG . LEU Q 17 264 ? 142.804 277.524 285.068 1.00 134.80 264 Bj 1 +ATOM 1643 C CD1 . LEU Q 17 264 ? 144.129 277.063 284.492 1.00 134.80 264 Bj 1 +ATOM 1644 C CD2 . LEU Q 17 264 ? 142.169 276.422 285.898 1.00 134.80 264 Bj 1 +ATOM 1645 N N . LYS Q 17 265 ? 141.633 280.107 288.955 1.00 137.65 265 Bj 1 +ATOM 1646 C CA . LYS Q 17 265 ? 141.877 281.041 290.049 1.00 137.65 265 Bj 1 +ATOM 1647 C C . LYS Q 17 265 ? 143.260 280.904 290.689 1.00 137.65 265 Bj 1 +ATOM 1648 O O . LYS Q 17 265 ? 143.947 281.921 290.850 1.00 137.65 265 Bj 1 +ATOM 1649 C CB . LYS Q 17 265 ? 140.794 280.889 291.122 1.00 137.65 265 Bj 1 +ATOM 1650 C CG . LYS Q 17 265 ? 140.067 279.555 291.107 1.00 137.65 265 Bj 1 +ATOM 1651 C CD . LYS Q 17 265 ? 139.195 279.392 292.339 1.00 137.65 265 Bj 1 +ATOM 1652 C CE . LYS Q 17 265 ? 140.022 279.484 293.612 1.00 137.65 265 Bj 1 +ATOM 1653 N NZ . LYS Q 17 265 ? 141.088 278.445 293.660 1.00 137.65 265 Bj 1 +ATOM 1654 N N . PRO Q 17 266 ? 143.720 279.709 291.071 1.00 140.01 266 Bj 1 +ATOM 1655 C CA . PRO Q 17 266 ? 144.940 279.634 291.881 1.00 140.01 266 Bj 1 +ATOM 1656 C C . PRO Q 17 266 ? 146.183 279.907 291.050 1.00 140.01 266 Bj 1 +ATOM 1657 O O . PRO Q 17 266 ? 146.185 279.801 289.822 1.00 140.01 266 Bj 1 +ATOM 1658 C CB . PRO Q 17 266 ? 144.937 278.195 292.416 1.00 140.01 266 Bj 1 +ATOM 1659 C CG . PRO Q 17 266 ? 143.732 277.520 291.808 1.00 140.01 266 Bj 1 +ATOM 1660 C CD . PRO Q 17 266 ? 143.299 278.360 290.659 1.00 140.01 266 Bj 1 +ATOM 1661 N N . LYS Q 17 267 ? 147.260 280.264 291.753 1.00 148.42 267 Bj 1 +ATOM 1662 C CA . LYS Q 17 267 ? 148.508 280.602 291.080 1.00 148.42 267 Bj 1 +ATOM 1663 C C . LYS Q 17 267 ? 149.209 279.379 290.506 1.00 148.42 267 Bj 1 +ATOM 1664 O O . LYS Q 17 267 ? 150.039 279.526 289.603 1.00 148.42 267 Bj 1 +ATOM 1665 C CB . LYS Q 17 267 ? 149.447 281.333 292.041 1.00 148.42 267 Bj 1 +ATOM 1666 C CG . LYS Q 17 267 ? 149.947 280.481 293.195 1.00 148.42 267 Bj 1 +ATOM 1667 C CD . LYS Q 17 267 ? 150.971 281.233 294.030 1.00 148.42 267 Bj 1 +ATOM 1668 C CE . LYS Q 17 267 ? 151.539 280.354 295.132 1.00 148.42 267 Bj 1 +ATOM 1669 N NZ . LYS Q 17 267 ? 152.570 281.070 295.935 1.00 148.42 267 Bj 1 +ATOM 1670 N N . TYR Q 17 268 ? 148.900 278.181 291.005 1.00 155.87 268 Bj 1 +ATOM 1671 C CA . TYR Q 17 268 ? 149.550 276.982 290.487 1.00 155.87 268 Bj 1 +ATOM 1672 C C . TYR Q 17 268 ? 149.064 276.652 289.082 1.00 155.87 268 Bj 1 +ATOM 1673 O O . TYR Q 17 268 ? 149.833 276.147 288.255 1.00 155.87 268 Bj 1 +ATOM 1674 C CB . TYR Q 17 268 ? 149.315 275.807 291.434 1.00 155.87 268 Bj 1 +ATOM 1675 C CG . TYR Q 17 268 ? 149.991 275.984 292.771 1.00 155.87 268 Bj 1 +ATOM 1676 C CD1 . TYR Q 17 268 ? 151.334 275.678 292.934 1.00 155.87 268 Bj 1 +ATOM 1677 C CD2 . TYR Q 17 268 ? 149.290 276.466 293.867 1.00 155.87 268 Bj 1 +ATOM 1678 C CE1 . TYR Q 17 268 ? 151.960 275.843 294.150 1.00 155.87 268 Bj 1 +ATOM 1679 C CE2 . TYR Q 17 268 ? 149.907 276.633 295.090 1.00 155.87 268 Bj 1 +ATOM 1680 C CZ . TYR Q 17 268 ? 151.242 276.319 295.225 1.00 155.87 268 Bj 1 +ATOM 1681 O OH . TYR Q 17 268 ? 151.863 276.483 296.440 1.00 155.87 268 Bj 1 +ATOM 1682 N N . LEU Q 17 269 ? 147.796 276.926 288.793 1.00 143.98 269 Bj 1 +ATOM 1683 C CA . LEU Q 17 269 ? 147.256 276.720 287.458 1.00 143.98 269 Bj 1 +ATOM 1684 C C . LEU Q 17 269 ? 147.228 277.995 286.627 1.00 143.98 269 Bj 1 +ATOM 1685 O O . LEU Q 17 269 ? 147.115 277.912 285.399 1.00 143.98 269 Bj 1 +ATOM 1686 C CB . LEU Q 17 269 ? 145.845 276.130 287.545 1.00 143.98 269 Bj 1 +ATOM 1687 C CG . LEU Q 17 269 ? 145.752 274.727 288.149 1.00 143.98 269 Bj 1 +ATOM 1688 C CD1 . LEU Q 17 269 ? 144.310 274.253 288.179 1.00 143.98 269 Bj 1 +ATOM 1689 C CD2 . LEU Q 17 269 ? 146.624 273.751 287.375 1.00 143.98 269 Bj 1 +ATOM 1690 N N . ALA Q 17 270 ? 147.339 279.164 287.255 1.00 137.42 270 Bj 1 +ATOM 1691 C CA . ALA Q 17 270 ? 147.361 280.426 286.528 1.00 137.42 270 Bj 1 +ATOM 1692 C C . ALA Q 17 270 ? 148.680 280.671 285.810 1.00 137.42 270 Bj 1 +ATOM 1693 O O . ALA Q 17 270 ? 148.785 281.646 285.059 1.00 137.42 270 Bj 1 +ATOM 1694 C CB . ALA Q 17 270 ? 147.068 281.588 287.482 1.00 137.42 270 Bj 1 +ATOM 1695 N N . GLN Q 17 271 ? 149.681 279.820 286.021 1.00 132.72 271 Bj 1 +ATOM 1696 C CA . GLN Q 17 271 ? 150.970 279.944 285.357 1.00 132.72 271 Bj 1 +ATOM 1697 C C . GLN Q 17 271 ? 151.126 278.967 284.199 1.00 132.72 271 Bj 1 +ATOM 1698 O O . GLN Q 17 271 ? 152.241 278.789 283.699 1.00 132.72 271 Bj 1 +ATOM 1699 C CB . GLN Q 17 271 ? 152.102 279.749 286.366 1.00 132.72 271 Bj 1 +ATOM 1700 C CG . GLN Q 17 271 ? 152.097 280.762 287.495 1.00 132.72 271 Bj 1 +ATOM 1701 C CD . GLN Q 17 271 ? 153.182 280.502 288.519 1.00 132.72 271 Bj 1 +ATOM 1702 O OE1 . GLN Q 17 271 ? 154.178 279.838 288.232 1.00 132.72 271 Bj 1 +ATOM 1703 N NE2 . GLN Q 17 271 ? 152.994 281.024 289.725 1.00 132.72 271 Bj 1 +ATOM 1704 N N . VAL Q 17 272 ? 150.038 278.325 283.767 1.00 127.77 272 Bj 1 +ATOM 1705 C CA . VAL Q 17 272 ? 150.113 277.466 282.590 1.00 127.77 272 Bj 1 +ATOM 1706 C C . VAL Q 17 272 ? 150.313 278.305 281.335 1.00 127.77 272 Bj 1 +ATOM 1707 O O . VAL Q 17 272 ? 150.913 277.842 280.356 1.00 127.77 272 Bj 1 +ATOM 1708 C CB . VAL Q 17 272 ? 148.858 276.577 282.494 1.00 127.77 272 Bj 1 +ATOM 1709 C CG1 . VAL Q 17 272 ? 147.619 277.418 282.237 1.00 127.77 272 Bj 1 +ATOM 1710 C CG2 . VAL Q 17 272 ? 149.029 275.519 281.414 1.00 127.77 272 Bj 1 +ATOM 1711 N N . ARG Q 17 273 ? 149.836 279.552 281.344 1.00 126.48 273 Bj 1 +ATOM 1712 C CA . ARG Q 17 273 ? 150.044 280.452 280.218 1.00 126.48 273 Bj 1 +ATOM 1713 C C . ARG Q 17 273 ? 151.496 280.886 280.074 1.00 126.48 273 Bj 1 +ATOM 1714 O O . ARG Q 17 273 ? 151.838 281.516 279.067 1.00 126.48 273 Bj 1 +ATOM 1715 C CB . ARG Q 17 273 ? 149.146 281.684 280.353 1.00 126.48 273 Bj 1 +ATOM 1716 C CG . ARG Q 17 273 ? 147.662 281.390 280.204 1.00 126.48 273 Bj 1 +ATOM 1717 C CD . ARG Q 17 273 ? 146.993 281.126 281.543 1.00 126.48 273 Bj 1 +ATOM 1718 N NE . ARG Q 17 273 ? 146.890 282.333 282.357 1.00 126.48 273 Bj 1 +ATOM 1719 C CZ . ARG Q 17 273 ? 146.190 282.414 283.484 1.00 126.48 273 Bj 1 +ATOM 1720 N NH1 . ARG Q 17 273 ? 145.525 281.357 283.930 1.00 126.48 273 Bj 1 +ATOM 1721 N NH2 . ARG Q 17 273 ? 146.150 283.552 284.163 1.00 126.48 273 Bj 1 +ATOM 1722 N N . ARG Q 17 274 ? 152.349 280.573 281.051 1.00 119.98 274 Bj 1 +ATOM 1723 C CA . ARG Q 17 274 ? 153.770 280.876 280.920 1.00 119.98 274 Bj 1 +ATOM 1724 C C . ARG Q 17 274 ? 154.394 280.073 279.786 1.00 119.98 274 Bj 1 +ATOM 1725 O O . ARG Q 17 274 ? 155.151 280.611 278.970 1.00 119.98 274 Bj 1 +ATOM 1726 C CB . ARG Q 17 274 ? 154.489 280.596 282.239 1.00 119.98 274 Bj 1 +ATOM 1727 C CG . ARG Q 17 274 ? 155.996 280.753 282.164 1.00 119.98 274 Bj 1 +ATOM 1728 C CD . ARG Q 17 274 ? 156.653 280.440 283.497 1.00 119.98 274 Bj 1 +ATOM 1729 N NE . ARG Q 17 274 ? 158.106 280.552 283.422 1.00 119.98 274 Bj 1 +ATOM 1730 C CZ . ARG Q 17 274 ? 158.925 280.351 284.449 1.00 119.98 274 Bj 1 +ATOM 1731 N NH1 . ARG Q 17 274 ? 158.434 280.026 285.638 1.00 119.98 274 Bj 1 +ATOM 1732 N NH2 . ARG Q 17 274 ? 160.236 280.475 284.288 1.00 119.98 274 Bj 1 +ATOM 1733 N N . PHE Q 17 275 ? 154.086 278.781 279.719 1.00 124.86 275 Bj 1 +ATOM 1734 C CA . PHE Q 17 275 ? 154.571 277.923 278.649 1.00 124.86 275 Bj 1 +ATOM 1735 C C . PHE Q 17 275 ? 153.499 277.598 277.619 1.00 124.86 275 Bj 1 +ATOM 1736 O O . PHE Q 17 275 ? 153.784 276.886 276.652 1.00 124.86 275 Bj 1 +ATOM 1737 C CB . PHE Q 17 275 ? 155.151 276.626 279.226 1.00 124.86 275 Bj 1 +ATOM 1738 C CG . PHE Q 17 275 ? 154.189 275.853 280.081 1.00 124.86 275 Bj 1 +ATOM 1739 C CD1 . PHE Q 17 275 ? 153.410 274.846 279.535 1.00 124.86 275 Bj 1 +ATOM 1740 C CD2 . PHE Q 17 275 ? 154.073 276.123 281.434 1.00 124.86 275 Bj 1 +ATOM 1741 C CE1 . PHE Q 17 275 ? 152.527 274.130 280.320 1.00 124.86 275 Bj 1 +ATOM 1742 C CE2 . PHE Q 17 275 ? 153.191 275.411 282.224 1.00 124.86 275 Bj 1 +ATOM 1743 C CZ . PHE Q 17 275 ? 152.418 274.412 281.666 1.00 124.86 275 Bj 1 +ATOM 1744 N N . LEU Q 17 276 ? 152.279 278.098 277.799 1.00 117.83 276 Bj 1 +ATOM 1745 C CA . LEU Q 17 276 ? 151.240 277.932 276.795 1.00 117.83 276 Bj 1 +ATOM 1746 C C . LEU Q 17 276 ? 151.359 279.017 275.733 1.00 117.83 276 Bj 1 +ATOM 1747 O O . LEU Q 17 276 ? 151.592 280.188 276.045 1.00 117.83 276 Bj 1 +ATOM 1748 C CB . LEU Q 17 276 ? 149.857 277.977 277.444 1.00 117.83 276 Bj 1 +ATOM 1749 C CG . LEU Q 17 276 ? 148.658 277.885 276.498 1.00 117.83 276 Bj 1 +ATOM 1750 C CD1 . LEU Q 17 276 ? 148.689 276.585 275.710 1.00 117.83 276 Bj 1 +ATOM 1751 C CD2 . LEU Q 17 276 ? 147.359 278.018 277.275 1.00 117.83 276 Bj 1 +ATOM 1752 N N . LEU Q 17 277 ? 151.203 278.619 274.472 1.00 108.03 277 Bj 1 +ATOM 1753 C CA . LEU Q 17 277 ? 151.313 279.567 273.372 1.00 108.03 277 Bj 1 +ATOM 1754 C C . LEU Q 17 277 ? 150.175 280.577 273.422 1.00 108.03 277 Bj 1 +ATOM 1755 O O . LEU Q 17 277 ? 149.048 280.245 273.802 1.00 108.03 277 Bj 1 +ATOM 1756 C CB . LEU Q 17 277 ? 151.306 278.836 272.032 1.00 108.03 277 Bj 1 +ATOM 1757 C CG . LEU Q 17 277 ? 152.569 278.060 271.666 1.00 108.03 277 Bj 1 +ATOM 1758 C CD1 . LEU Q 17 277 ? 152.537 277.695 270.195 1.00 108.03 277 Bj 1 +ATOM 1759 C CD2 . LEU Q 17 277 ? 153.805 278.877 271.992 1.00 108.03 277 Bj 1 +ATOM 1760 N N . ASP Q 17 278 ? 150.474 281.816 273.030 1.00 106.80 278 Bj 1 +ATOM 1761 C CA . ASP Q 17 278 ? 149.461 282.864 273.029 1.00 106.80 278 Bj 1 +ATOM 1762 C C . ASP Q 17 278 ? 148.629 282.835 271.754 1.00 106.80 278 Bj 1 +ATOM 1763 O O . ASP Q 17 278 ? 147.422 283.101 271.794 1.00 106.80 278 Bj 1 +ATOM 1764 C CB . ASP Q 17 278 ? 150.123 284.231 273.199 1.00 106.80 278 Bj 1 +ATOM 1765 C CG . ASP Q 17 278 ? 151.058 284.283 274.390 1.00 106.80 278 Bj 1 +ATOM 1766 O OD1 . ASP Q 17 278 ? 150.918 283.436 275.297 1.00 106.80 278 Bj 1 +ATOM 1767 O OD2 . ASP Q 17 278 ? 151.932 285.174 274.420 1.00 106.80 278 Bj 1 +ATOM 1768 N N . LEU Q 17 279 ? 149.259 282.519 270.625 1.00 104.98 279 Bj 1 +ATOM 1769 C CA . LEU Q 17 279 ? 148.601 282.483 269.320 1.00 104.98 279 Bj 1 +ATOM 1770 C C . LEU Q 17 279 ? 147.938 283.817 268.987 1.00 104.98 279 Bj 1 +ATOM 1771 O O . LEU Q 17 279 ? 148.618 284.810 268.729 1.00 104.98 279 Bj 1 +ATOM 1772 C CB . LEU Q 17 279 ? 147.567 281.354 269.263 1.00 104.98 279 Bj 1 +ATOM 1773 C CG . LEU Q 17 279 ? 148.068 279.941 269.566 1.00 104.98 279 Bj 1 +ATOM 1774 C CD1 . LEU Q 17 279 ? 147.007 278.919 269.200 1.00 104.98 279 Bj 1 +ATOM 1775 C CD2 . LEU Q 17 279 ? 149.365 279.652 268.834 1.00 104.98 279 Bj 1 +# diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/7rye.cif b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/7rye.cif new file mode 100644 index 0000000000000000000000000000000000000000..5ff8f4c606c7dc9f4679569eb994c59974f4ff26 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/7rye.cif @@ -0,0 +1,893 @@ +data_7RYE +# +_entry.id 7RYE +# +loop_ +_chem_comp.formula +_chem_comp.formula_weight +_chem_comp.id +_chem_comp.mon_nstd_flag +_chem_comp.name +_chem_comp.pdbx_synonyms +_chem_comp.type +"C3 H7 N O2" 89.093 ALA y ALANINE ? "L-peptide linking" +"C6 H15 N4 O2 1" 175.209 ARG y ARGININE ? "L-peptide linking" +"C4 H8 N2 O3" 132.118 ASN y ASPARAGINE ? "L-peptide linking" +"C4 H7 N O4" 133.103 ASP y "ASPARTIC ACID" ? "L-peptide linking" +"C3 H7 N O2 S" 121.158 CYS y CYSTEINE ? "L-peptide linking" +"C5 H10 N2 O3" 146.144 GLN y GLUTAMINE ? "L-peptide linking" +"C5 H9 N O4" 147.129 GLU y "GLUTAMIC ACID" ? "L-peptide linking" +"C2 H5 N O2" 75.067 GLY y GLYCINE ? "peptide linking" +"C6 H10 N3 O2 1" 156.162 HIS y HISTIDINE ? "L-peptide linking" +"C6 H13 N O2" 131.173 ILE y ISOLEUCINE ? "L-peptide linking" +"C6 H13 N O2" 131.173 LEU y LEUCINE ? "L-peptide linking" +"C6 H15 N2 O2 1" 147.195 LYS y LYSINE ? "L-peptide linking" +"C5 H11 N O2 S" 149.211 MET y METHIONINE ? "L-peptide linking" +"C9 H11 N O2" 165.189 PHE y PHENYLALANINE ? "L-peptide linking" +"C5 H9 N O2" 115.130 PRO y PROLINE ? "L-peptide linking" +"C3 H7 N O3" 105.093 SER y SERINE ? "L-peptide linking" +"C4 H9 N O3" 119.119 THR y THREONINE ? "L-peptide linking" +"C11 H12 N2 O2" 204.225 TRP y TRYPTOPHAN ? "L-peptide linking" +"C9 H11 N O3" 181.189 TYR y TYROSINE ? "L-peptide linking" +"C5 H11 N O2" 117.146 VAL y VALINE ? "L-peptide linking" +# +_entity.id 1 +_entity.pdbx_description "Protein PrgI" +_entity.type polymer +# +_entity_poly.entity_id 1 +_entity_poly.pdbx_strand_id J +_entity_poly.type polypeptide(L) +# +loop_ +_entity_poly_seq.entity_id +_entity_poly_seq.hetero +_entity_poly_seq.mon_id +_entity_poly_seq.num +1 n MET 1 +1 n ALA 2 +1 n THR 3 +1 n PRO 4 +1 n TRP 5 +1 n SER 6 +1 n GLY 7 +1 n TYR 8 +1 n LEU 9 +1 n ASP 10 +1 n ASP 11 +1 n VAL 12 +1 n SER 13 +1 n ALA 14 +1 n LYS 15 +1 n PHE 16 +1 n ASP 17 +1 n THR 18 +1 n GLY 19 +1 n VAL 20 +1 n ASP 21 +1 n ASN 22 +1 n LEU 23 +1 n GLN 24 +1 n THR 25 +1 n GLN 26 +1 n VAL 27 +1 n THR 28 +1 n GLU 29 +1 n ALA 30 +1 n LEU 31 +1 n ASP 32 +1 n LYS 33 +1 n LEU 34 +1 n ALA 35 +1 n ALA 36 +1 n LYS 37 +1 n PRO 38 +1 n SER 39 +1 n ASP 40 +1 n PRO 41 +1 n ALA 42 +1 n LEU 43 +1 n LEU 44 +1 n ALA 45 +1 n ALA 46 +1 n TYR 47 +1 n GLN 48 +1 n SER 49 +1 n LYS 50 +1 n LEU 51 +1 n SER 52 +1 n GLU 53 +1 n TYR 54 +1 n ASN 55 +1 n LEU 56 +1 n TYR 57 +1 n ARG 58 +1 n ASN 59 +1 n ALA 60 +1 n GLN 61 +1 n SER 62 +1 n ASN 63 +1 n THR 64 +1 n VAL 65 +1 n LYS 66 +1 n VAL 67 +1 n PHE 68 +1 n LYS 69 +1 n ASP 70 +1 n ILE 71 +1 n ASP 72 +1 n ALA 73 +1 n ALA 74 +1 n ILE 75 +1 n ILE 76 +1 n GLN 77 +1 n ASN 78 +1 n PHE 79 +1 n ARG 80 +# +_exptl.method "ELECTRON MICROSCOPY" +# +_pdbx_audit_revision_history.revision_date 2021-11-10 +# +_pdbx_database_status.recvd_initial_deposition_date 2021-11-10 +# +loop_ +_pdbx_poly_seq_scheme.asym_id +_pdbx_poly_seq_scheme.auth_seq_num +_pdbx_poly_seq_scheme.entity_id +_pdbx_poly_seq_scheme.hetero +_pdbx_poly_seq_scheme.mon_id +_pdbx_poly_seq_scheme.pdb_ins_code +_pdbx_poly_seq_scheme.pdb_seq_num +_pdbx_poly_seq_scheme.pdb_strand_id +_pdbx_poly_seq_scheme.seq_id +J ? 1 n MET . 1 J 1 +J ? 1 n ALA . 2 J 2 +J 3 1 n THR . 3 J 3 +J 4 1 n PRO . 4 J 4 +J 5 1 n TRP . 5 J 5 +J 6 1 n SER . 6 J 6 +J 7 1 n GLY . 7 J 7 +J 8 1 n TYR . 8 J 8 +J 9 1 n LEU . 9 J 9 +J 10 1 n ASP . 10 J 10 +J 11 1 n ASP . 11 J 11 +J 12 1 n VAL . 12 J 12 +J 13 1 n SER . 13 J 13 +J 14 1 n ALA . 14 J 14 +J 15 1 n LYS . 15 J 15 +J 16 1 n PHE . 16 J 16 +J 17 1 n ASP . 17 J 17 +J 18 1 n THR . 18 J 18 +J 19 1 n GLY . 19 J 19 +J 20 1 n VAL . 20 J 20 +J 21 1 n ASP . 21 J 21 +J 22 1 n ASN . 22 J 22 +J 23 1 n LEU . 23 J 23 +J 24 1 n GLN . 24 J 24 +J 25 1 n THR . 25 J 25 +J 26 1 n GLN . 26 J 26 +J 27 1 n VAL . 27 J 27 +J 28 1 n THR . 28 J 28 +J 29 1 n GLU . 29 J 29 +J 30 1 n ALA . 30 J 30 +J 31 1 n LEU . 31 J 31 +J 32 1 n ASP . 32 J 32 +J 33 1 n LYS . 33 J 33 +J 34 1 n LEU . 34 J 34 +J 35 1 n ALA . 35 J 35 +J 36 1 n ALA . 36 J 36 +J 37 1 n LYS . 37 J 37 +J 38 1 n PRO . 38 J 38 +J 39 1 n SER . 39 J 39 +J 40 1 n ASP . 40 J 40 +J 41 1 n PRO . 41 J 41 +J 42 1 n ALA . 42 J 42 +J 43 1 n LEU . 43 J 43 +J 44 1 n LEU . 44 J 44 +J 45 1 n ALA . 45 J 45 +J 46 1 n ALA . 46 J 46 +J 47 1 n TYR . 47 J 47 +J 48 1 n GLN . 48 J 48 +J 49 1 n SER . 49 J 49 +J 50 1 n LYS . 50 J 50 +J 51 1 n LEU . 51 J 51 +J 52 1 n SER . 52 J 52 +J 53 1 n GLU . 53 J 53 +J 54 1 n TYR . 54 J 54 +J 55 1 n ASN . 55 J 55 +J 56 1 n LEU . 56 J 56 +J 57 1 n TYR . 57 J 57 +J 58 1 n ARG . 58 J 58 +J 59 1 n ASN . 59 J 59 +J 60 1 n ALA . 60 J 60 +J 61 1 n GLN . 61 J 61 +J 62 1 n SER . 62 J 62 +J 63 1 n ASN . 63 J 63 +J 64 1 n THR . 64 J 64 +J 65 1 n VAL . 65 J 65 +J 66 1 n LYS . 66 J 66 +J 67 1 n VAL . 67 J 67 +J 68 1 n PHE . 68 J 68 +J 69 1 n LYS . 69 J 69 +J 70 1 n ASP . 70 J 70 +J 71 1 n ILE . 71 J 71 +J 72 1 n ASP . 72 J 72 +J 73 1 n ALA . 73 J 73 +J 74 1 n ALA . 74 J 74 +J 75 1 n ILE . 75 J 75 +J 76 1 n ILE . 76 J 76 +J 77 1 n GLN . 77 J 77 +J 78 1 n ASN . 78 J 78 +J 79 1 n PHE . 79 J 79 +J 80 1 n ARG . 80 J 80 +# +_pdbx_struct_assembly.details author_defined_assembly +_pdbx_struct_assembly.id 1 +_pdbx_struct_assembly.method_details ? +_pdbx_struct_assembly.oligomeric_count 24 +_pdbx_struct_assembly.oligomeric_details 24-meric +# +_pdbx_struct_assembly_gen.assembly_id 1 +_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G,H,I,J,K,L,M,N,O,P,Q,R,S,T,U,V,W,X +_pdbx_struct_assembly_gen.oper_expression 1 +# +_pdbx_struct_oper_list.id 1 +_pdbx_struct_oper_list.matrix[1][1] 1.0000000000 +_pdbx_struct_oper_list.matrix[1][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[1][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[2][2] 1.0000000000 +_pdbx_struct_oper_list.matrix[2][3] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][1] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][2] 0.0000000000 +_pdbx_struct_oper_list.matrix[3][3] 1.0000000000 +_pdbx_struct_oper_list.name 1_555 +_pdbx_struct_oper_list.symmetry_operation ? +_pdbx_struct_oper_list.type "identity operation" +_pdbx_struct_oper_list.vector[1] 0.0000000000 +_pdbx_struct_oper_list.vector[2] 0.0000000000 +_pdbx_struct_oper_list.vector[3] 0.0000000000 +# +_refine.ls_d_res_high 3.90 +# +_software.classification other +_software.name "DeepMind Structure Class" +_software.pdbx_ordinal 1 +_software.version 2.0.0 +# +_struct_asym.entity_id 1 +_struct_asym.id J +# +loop_ +_atom_site.group_PDB +_atom_site.id +_atom_site.type_symbol +_atom_site.label_atom_id +_atom_site.label_alt_id +_atom_site.label_comp_id +_atom_site.label_asym_id +_atom_site.label_entity_id +_atom_site.label_seq_id +_atom_site.pdbx_PDB_ins_code +_atom_site.Cartn_x +_atom_site.Cartn_y +_atom_site.Cartn_z +_atom_site.occupancy +_atom_site.B_iso_or_equiv +_atom_site.auth_seq_id +_atom_site.auth_asym_id +_atom_site.pdbx_PDB_model_num +ATOM 1 N N . THR J 1 3 ? 180.798 156.981 49.506 1.00 100.87 3 J 1 +ATOM 2 C CA . THR J 1 3 ? 180.336 158.053 50.380 1.00 100.87 3 J 1 +ATOM 3 C C . THR J 1 3 ? 178.888 157.811 50.811 1.00 100.87 3 J 1 +ATOM 4 O O . THR J 1 3 ? 178.076 157.312 50.030 1.00 100.87 3 J 1 +ATOM 5 C CB . THR J 1 3 ? 180.468 159.436 49.691 1.00 100.87 3 J 1 +ATOM 6 O OG1 . THR J 1 3 ? 180.169 160.478 50.627 1.00 100.87 3 J 1 +ATOM 7 C CG2 . THR J 1 3 ? 179.541 159.546 48.488 1.00 100.87 3 J 1 +ATOM 8 N N . PRO J 1 4 ? 178.569 158.139 52.065 1.00 96.05 4 J 1 +ATOM 9 C CA . PRO J 1 4 ? 177.201 157.918 52.554 1.00 96.05 4 J 1 +ATOM 10 C C . PRO J 1 4 ? 176.203 158.873 51.924 1.00 96.05 4 J 1 +ATOM 11 O O . PRO J 1 4 ? 176.293 160.090 52.112 1.00 96.05 4 J 1 +ATOM 12 C CB . PRO J 1 4 ? 177.326 158.152 54.065 1.00 96.05 4 J 1 +ATOM 13 C CG . PRO J 1 4 ? 178.504 159.047 54.212 1.00 96.05 4 J 1 +ATOM 14 C CD . PRO J 1 4 ? 179.457 158.664 53.117 1.00 96.05 4 J 1 +ATOM 15 N N . TRP J 1 5 ? 175.251 158.334 51.169 1.00 82.05 5 J 1 +ATOM 16 C CA . TRP J 1 5 ? 174.242 159.172 50.543 1.00 82.05 5 J 1 +ATOM 17 C C . TRP J 1 5 ? 173.275 159.710 51.591 1.00 82.05 5 J 1 +ATOM 18 O O . TRP J 1 5 ? 173.068 159.105 52.647 1.00 82.05 5 J 1 +ATOM 19 C CB . TRP J 1 5 ? 173.467 158.390 49.486 1.00 82.05 5 J 1 +ATOM 20 C CG . TRP J 1 5 ? 172.575 159.261 48.675 1.00 82.05 5 J 1 +ATOM 21 C CD1 . TRP J 1 5 ? 172.953 160.130 47.697 1.00 82.05 5 J 1 +ATOM 22 C CD2 . TRP J 1 5 ? 171.158 159.402 48.811 1.00 82.05 5 J 1 +ATOM 23 N NE1 . TRP J 1 5 ? 171.856 160.778 47.189 1.00 82.05 5 J 1 +ATOM 24 C CE2 . TRP J 1 5 ? 170.741 160.351 47.859 1.00 82.05 5 J 1 +ATOM 25 C CE3 . TRP J 1 5 ? 170.199 158.807 49.634 1.00 82.05 5 J 1 +ATOM 26 C CZ2 . TRP J 1 5 ? 169.408 160.720 47.709 1.00 82.05 5 J 1 +ATOM 27 C CZ3 . TRP J 1 5 ? 168.877 159.176 49.482 1.00 82.05 5 J 1 +ATOM 28 C CH2 . TRP J 1 5 ? 168.493 160.120 48.527 1.00 82.05 5 J 1 +ATOM 29 N N . SER J 1 6 ? 172.676 160.860 51.291 1.00 78.94 6 J 1 +ATOM 30 C CA . SER J 1 6 ? 171.730 161.484 52.213 1.00 78.94 6 J 1 +ATOM 31 C C . SER J 1 6 ? 170.799 162.391 51.422 1.00 78.94 6 J 1 +ATOM 32 O O . SER J 1 6 ? 171.235 163.417 50.892 1.00 78.94 6 J 1 +ATOM 33 C CB . SER J 1 6 ? 172.462 162.265 53.300 1.00 78.94 6 J 1 +ATOM 34 O OG . SER J 1 6 ? 173.149 161.389 54.176 1.00 78.94 6 J 1 +ATOM 35 N N . GLY J 1 7 ? 169.526 162.014 51.347 1.00 80.09 7 J 1 +ATOM 36 C CA . GLY J 1 7 ? 168.512 162.855 50.750 1.00 80.09 7 J 1 +ATOM 37 C C . GLY J 1 7 ? 168.082 163.958 51.698 1.00 80.09 7 J 1 +ATOM 38 O O . GLY J 1 7 ? 168.539 164.059 52.838 1.00 80.09 7 J 1 +ATOM 39 N N . TYR J 1 8 ? 167.174 164.804 51.207 1.00 78.37 8 J 1 +ATOM 40 C CA . TYR J 1 8 ? 166.760 165.964 51.991 1.00 78.37 8 J 1 +ATOM 41 C C . TYR J 1 8 ? 166.084 165.523 53.284 1.00 78.37 8 J 1 +ATOM 42 O O . TYR J 1 8 ? 166.332 166.093 54.351 1.00 78.37 8 J 1 +ATOM 43 C CB . TYR J 1 8 ? 165.830 166.858 51.167 1.00 78.37 8 J 1 +ATOM 44 C CG . TYR J 1 8 ? 165.412 168.151 51.846 1.00 78.37 8 J 1 +ATOM 45 C CD1 . TYR J 1 8 ? 164.409 168.939 51.311 1.00 78.37 8 J 1 +ATOM 46 C CD2 . TYR J 1 8 ? 166.073 168.622 52.974 1.00 78.37 8 J 1 +ATOM 47 C CE1 . TYR J 1 8 ? 164.036 170.122 51.913 1.00 78.37 8 J 1 +ATOM 48 C CE2 . TYR J 1 8 ? 165.705 169.801 53.581 1.00 78.37 8 J 1 +ATOM 49 C CZ . TYR J 1 8 ? 164.688 170.550 53.044 1.00 78.37 8 J 1 +ATOM 50 O OH . TYR J 1 8 ? 164.318 171.735 53.638 1.00 78.37 8 J 1 +ATOM 51 N N . LEU J 1 9 ? 165.226 164.506 53.213 1.00 73.64 9 J 1 +ATOM 52 C CA . LEU J 1 9 ? 164.645 163.967 54.439 1.00 73.64 9 J 1 +ATOM 53 C C . LEU J 1 9 ? 165.730 163.390 55.340 1.00 73.64 9 J 1 +ATOM 54 O O . LEU J 1 9 ? 165.719 163.604 56.560 1.00 73.64 9 J 1 +ATOM 55 C CB . LEU J 1 9 ? 163.595 162.906 54.109 1.00 73.64 9 J 1 +ATOM 56 C CG . LEU J 1 9 ? 162.192 163.335 53.661 1.00 73.64 9 J 1 +ATOM 57 C CD1 . LEU J 1 9 ? 162.211 164.303 52.488 1.00 73.64 9 J 1 +ATOM 58 C CD2 . LEU J 1 9 ? 161.355 162.112 53.321 1.00 73.64 9 J 1 +ATOM 59 N N . ASP J 1 10 ? 166.683 162.668 54.750 1.00 75.23 10 J 1 +ATOM 60 C CA . ASP J 1 10 ? 167.828 162.189 55.511 1.00 75.23 10 J 1 +ATOM 61 C C . ASP J 1 10 ? 168.631 163.360 56.062 1.00 75.23 10 J 1 +ATOM 62 O O . ASP J 1 10 ? 169.140 163.297 57.186 1.00 75.23 10 J 1 +ATOM 63 C CB . ASP J 1 10 ? 168.695 161.293 54.624 1.00 75.23 10 J 1 +ATOM 64 C CG . ASP J 1 10 ? 169.793 160.577 55.393 1.00 75.23 10 J 1 +ATOM 65 O OD1 . ASP J 1 10 ? 169.921 160.785 56.617 1.00 75.23 10 J 1 +ATOM 66 O OD2 . ASP J 1 10 ? 170.537 159.796 54.764 1.00 75.23 10 J 1 +ATOM 67 N N . ASP J 1 11 ? 168.742 164.442 55.289 1.00 76.21 11 J 1 +ATOM 68 C CA . ASP J 1 11 ? 169.449 165.624 55.770 1.00 76.21 11 J 1 +ATOM 69 C C . ASP J 1 11 ? 168.755 166.229 56.984 1.00 76.21 11 J 1 +ATOM 70 O O . ASP J 1 11 ? 169.416 166.658 57.932 1.00 76.21 11 J 1 +ATOM 71 C CB . ASP J 1 11 ? 169.573 166.658 54.651 1.00 76.21 11 J 1 +ATOM 72 C CG . ASP J 1 11 ? 170.510 166.210 53.546 1.00 76.21 11 J 1 +ATOM 73 O OD1 . ASP J 1 11 ? 171.452 165.444 53.836 1.00 76.21 11 J 1 +ATOM 74 O OD2 . ASP J 1 11 ? 170.303 166.623 52.386 1.00 76.21 11 J 1 +ATOM 75 N N . VAL J 1 12 ? 167.423 166.274 56.973 1.00 71.19 12 J 1 +ATOM 76 C CA . VAL J 1 12 ? 166.679 166.814 58.107 1.00 71.19 12 J 1 +ATOM 77 C C . VAL J 1 12 ? 166.846 165.921 59.330 1.00 71.19 12 J 1 +ATOM 78 O O . VAL J 1 12 ? 167.032 166.405 60.457 1.00 71.19 12 J 1 +ATOM 79 C CB . VAL J 1 12 ? 165.197 166.989 57.729 1.00 71.19 12 J 1 +ATOM 80 C CG1 . VAL J 1 12 ? 164.358 167.240 58.967 1.00 71.19 12 J 1 +ATOM 81 C CG2 . VAL J 1 12 ? 165.039 168.124 56.733 1.00 71.19 12 J 1 +ATOM 82 N N . SER J 1 13 ? 166.779 164.604 59.130 1.00 71.31 13 J 1 +ATOM 83 C CA . SER J 1 13 ? 167.004 163.691 60.244 1.00 71.31 13 J 1 +ATOM 84 C C . SER J 1 13 ? 168.397 163.882 60.831 1.00 71.31 13 J 1 +ATOM 85 O O . SER J 1 13 ? 168.555 163.965 62.054 1.00 71.31 13 J 1 +ATOM 86 C CB . SER J 1 13 ? 166.801 162.246 59.794 1.00 71.31 13 J 1 +ATOM 87 O OG . SER J 1 13 ? 165.459 162.023 59.402 1.00 71.31 13 J 1 +ATOM 88 N N . ALA J 1 14 ? 169.413 163.985 59.972 1.00 73.94 14 J 1 +ATOM 89 C CA . ALA J 1 14 ? 170.773 164.209 60.451 1.00 73.94 14 J 1 +ATOM 90 C C . ALA J 1 14 ? 170.904 165.566 61.130 1.00 73.94 14 J 1 +ATOM 91 O O . ALA J 1 14 ? 171.700 165.728 62.061 1.00 73.94 14 J 1 +ATOM 92 C CB . ALA J 1 14 ? 171.765 164.087 59.295 1.00 73.94 14 J 1 +ATOM 93 N N . LYS J 1 15 ? 170.140 166.557 60.668 1.00 71.21 15 J 1 +ATOM 94 C CA . LYS J 1 15 ? 170.140 167.860 61.321 1.00 71.21 15 J 1 +ATOM 95 C C . LYS J 1 15 ? 169.612 167.753 62.742 1.00 71.21 15 J 1 +ATOM 96 O O . LYS J 1 15 ? 170.146 168.383 63.660 1.00 71.21 15 J 1 +ATOM 97 C CB . LYS J 1 15 ? 169.311 168.855 60.511 1.00 71.21 15 J 1 +ATOM 98 C CG . LYS J 1 15 ? 170.142 169.773 59.635 1.00 71.21 15 J 1 +ATOM 99 C CD . LYS J 1 15 ? 169.313 170.920 59.089 1.00 71.21 15 J 1 +ATOM 100 C CE . LYS J 1 15 ? 170.176 171.888 58.300 1.00 71.21 15 J 1 +ATOM 101 N NZ . LYS J 1 15 ? 169.369 172.970 57.676 1.00 71.21 15 J 1 +ATOM 102 N N . PHE J 1 16 ? 168.559 166.963 62.943 1.00 68.61 16 J 1 +ATOM 103 C CA . PHE J 1 16 ? 168.102 166.713 64.308 1.00 68.61 16 J 1 +ATOM 104 C C . PHE J 1 16 ? 169.128 165.927 65.120 1.00 68.61 16 J 1 +ATOM 105 O O . PHE J 1 16 ? 169.342 166.226 66.300 1.00 68.61 16 J 1 +ATOM 106 C CB . PHE J 1 16 ? 166.749 166.005 64.309 1.00 68.61 16 J 1 +ATOM 107 C CG . PHE J 1 16 ? 165.587 166.929 64.088 1.00 68.61 16 J 1 +ATOM 108 C CD1 . PHE J 1 16 ? 165.736 168.293 64.256 1.00 68.61 16 J 1 +ATOM 109 C CD2 . PHE J 1 16 ? 164.345 166.437 63.736 1.00 68.61 16 J 1 +ATOM 110 C CE1 . PHE J 1 16 ? 164.670 169.147 64.068 1.00 68.61 16 J 1 +ATOM 111 C CE2 . PHE J 1 16 ? 163.277 167.286 63.544 1.00 68.61 16 J 1 +ATOM 112 C CZ . PHE J 1 16 ? 163.439 168.643 63.710 1.00 68.61 16 J 1 +ATOM 113 N N . ASP J 1 17 ? 169.768 164.918 64.521 1.00 77.06 17 J 1 +ATOM 114 C CA . ASP J 1 17 ? 170.752 164.149 65.286 1.00 77.06 17 J 1 +ATOM 115 C C . ASP J 1 17 ? 171.927 165.017 65.719 1.00 77.06 17 J 1 +ATOM 116 O O . ASP J 1 17 ? 172.413 164.888 66.848 1.00 77.06 17 J 1 +ATOM 117 C CB . ASP J 1 17 ? 171.254 162.929 64.509 1.00 77.06 17 J 1 +ATOM 118 C CG . ASP J 1 17 ? 170.136 162.119 63.888 1.00 77.06 17 J 1 +ATOM 119 O OD1 . ASP J 1 17 ? 170.103 162.001 62.647 1.00 77.06 17 J 1 +ATOM 120 O OD2 . ASP J 1 17 ? 169.286 161.602 64.642 1.00 77.06 17 J 1 +ATOM 121 N N . THR J 1 18 ? 172.399 165.901 64.845 1.00 76.90 18 J 1 +ATOM 122 C CA . THR J 1 18 ? 173.485 166.801 65.205 1.00 76.90 18 J 1 +ATOM 123 C C . THR J 1 18 ? 173.016 167.991 66.028 1.00 76.90 18 J 1 +ATOM 124 O O . THR J 1 18 ? 173.851 168.678 66.626 1.00 76.90 18 J 1 +ATOM 125 C CB . THR J 1 18 ? 174.203 167.303 63.949 1.00 76.90 18 J 1 +ATOM 126 O OG1 . THR J 1 18 ? 175.476 167.849 64.314 1.00 76.90 18 J 1 +ATOM 127 C CG2 . THR J 1 18 ? 173.381 168.373 63.253 1.00 76.90 18 J 1 +ATOM 128 N N . GLY J 1 19 ? 171.709 168.255 66.067 1.00 78.19 19 J 1 +ATOM 129 C CA . GLY J 1 19 ? 171.207 169.320 66.916 1.00 78.19 19 J 1 +ATOM 130 C C . GLY J 1 19 ? 171.381 169.012 68.389 1.00 78.19 19 J 1 +ATOM 131 O O . GLY J 1 19 ? 171.777 169.879 69.172 1.00 78.19 19 J 1 +ATOM 132 N N . VAL J 1 20 ? 171.089 167.780 68.785 1.00 76.12 20 J 1 +ATOM 133 C CA . VAL J 1 20 ? 171.317 167.329 70.150 1.00 76.12 20 J 1 +ATOM 134 C C . VAL J 1 20 ? 172.694 166.684 70.220 1.00 76.12 20 J 1 +ATOM 135 O O . VAL J 1 20 ? 173.054 165.862 69.368 1.00 76.12 20 J 1 +ATOM 136 C CB . VAL J 1 20 ? 170.212 166.362 70.606 1.00 76.12 20 J 1 +ATOM 137 C CG1 . VAL J 1 20 ? 168.869 167.069 70.596 1.00 76.12 20 J 1 +ATOM 138 C CG2 . VAL J 1 20 ? 170.158 165.132 69.713 1.00 76.12 20 J 1 +ATOM 139 N N . ASP J 1 21 ? 173.487 167.090 71.210 1.00 78.41 21 J 1 +ATOM 140 C CA . ASP J 1 21 ? 174.863 166.617 71.290 1.00 78.41 21 J 1 +ATOM 141 C C . ASP J 1 21 ? 174.916 165.113 71.524 1.00 78.41 21 J 1 +ATOM 142 O O . ASP J 1 21 ? 175.347 164.349 70.653 1.00 78.41 21 J 1 +ATOM 143 C CB . ASP J 1 21 ? 175.608 167.363 72.396 1.00 78.41 21 J 1 +ATOM 144 C CG . ASP J 1 21 ? 175.835 168.824 72.061 1.00 78.41 21 J 1 +ATOM 145 O OD1 . ASP J 1 21 ? 175.946 169.149 70.861 1.00 78.41 21 J 1 +ATOM 146 O OD2 . ASP J 1 21 ? 175.903 169.647 72.998 1.00 78.41 21 J 1 +ATOM 147 N N . ASN J 1 22 ? 174.471 164.668 72.693 1.00 74.91 22 J 1 +ATOM 148 C CA . ASN J 1 22 ? 174.565 163.267 73.084 1.00 74.91 22 J 1 +ATOM 149 C C . ASN J 1 22 ? 173.277 162.819 73.765 1.00 74.91 22 J 1 +ATOM 150 O O . ASN J 1 22 ? 173.294 162.151 74.799 1.00 74.91 22 J 1 +ATOM 151 C CB . ASN J 1 22 ? 175.777 163.050 73.987 1.00 74.91 22 J 1 +ATOM 152 C CG . ASN J 1 22 ? 175.825 164.032 75.138 1.00 74.91 22 J 1 +ATOM 153 O OD1 . ASN J 1 22 ? 174.925 164.855 75.304 1.00 74.91 22 J 1 +ATOM 154 N ND2 . ASN J 1 22 ? 176.881 163.956 75.938 1.00 74.91 22 J 1 +ATOM 155 N N . LEU J 1 23 ? 172.134 163.193 73.182 1.00 72.21 23 J 1 +ATOM 156 C CA . LEU J 1 23 ? 170.852 162.915 73.824 1.00 72.21 23 J 1 +ATOM 157 C C . LEU J 1 23 ? 170.648 161.425 74.053 1.00 72.21 23 J 1 +ATOM 158 O O . LEU J 1 23 ? 170.248 161.010 75.146 1.00 72.21 23 J 1 +ATOM 159 C CB . LEU J 1 23 ? 169.708 163.483 72.989 1.00 72.21 23 J 1 +ATOM 160 C CG . LEU J 1 23 ? 168.328 163.271 73.612 1.00 72.21 23 J 1 +ATOM 161 C CD1 . LEU J 1 23 ? 168.229 163.983 74.946 1.00 72.21 23 J 1 +ATOM 162 C CD2 . LEU J 1 23 ? 167.237 163.743 72.669 1.00 72.21 23 J 1 +ATOM 163 N N . GLN J 1 24 ? 170.920 160.601 73.039 1.00 70.63 24 J 1 +ATOM 164 C CA . GLN J 1 24 ? 170.840 159.157 73.230 1.00 70.63 24 J 1 +ATOM 165 C C . GLN J 1 24 ? 171.802 158.707 74.320 1.00 70.63 24 J 1 +ATOM 166 O O . GLN J 1 24 ? 171.425 157.974 75.242 1.00 70.63 24 J 1 +ATOM 167 C CB . GLN J 1 24 ? 171.143 158.435 71.917 1.00 70.63 24 J 1 +ATOM 168 C CG . GLN J 1 24 ? 170.834 156.949 71.947 1.00 70.63 24 J 1 +ATOM 169 C CD . GLN J 1 24 ? 169.405 156.644 71.556 1.00 70.63 24 J 1 +ATOM 170 O OE1 . GLN J 1 24 ? 168.697 157.505 71.042 1.00 70.63 24 J 1 +ATOM 171 N NE2 . GLN J 1 24 ? 168.972 155.412 71.801 1.00 70.63 24 J 1 +ATOM 172 N N . THR J 1 25 ? 173.052 159.167 74.242 1.00 72.05 25 J 1 +ATOM 173 C CA . THR J 1 25 ? 174.029 158.829 75.267 1.00 72.05 25 J 1 +ATOM 174 C C . THR J 1 25 ? 173.628 159.382 76.627 1.00 72.05 25 J 1 +ATOM 175 O O . THR J 1 25 ? 173.752 158.681 77.636 1.00 72.05 25 J 1 +ATOM 176 C CB . THR J 1 25 ? 175.407 159.349 74.865 1.00 72.05 25 J 1 +ATOM 177 O OG1 . THR J 1 25 ? 175.777 158.785 73.601 1.00 72.05 25 J 1 +ATOM 178 C CG2 . THR J 1 25 ? 176.447 158.961 75.898 1.00 72.05 25 J 1 +ATOM 179 N N . GLN J 1 26 ? 173.147 160.627 76.676 1.00 73.20 26 J 1 +ATOM 180 C CA . GLN J 1 26 ? 172.756 161.219 77.951 1.00 73.20 26 J 1 +ATOM 181 C C . GLN J 1 26 ? 171.656 160.400 78.610 1.00 73.20 26 J 1 +ATOM 182 O O . GLN J 1 26 ? 171.709 160.118 79.814 1.00 73.20 26 J 1 +ATOM 183 C CB . GLN J 1 26 ? 172.301 162.663 77.739 1.00 73.20 26 J 1 +ATOM 184 C CG . GLN J 1 26 ? 173.397 163.693 77.939 1.00 73.20 26 J 1 +ATOM 185 C CD . GLN J 1 26 ? 172.920 165.105 77.674 1.00 73.20 26 J 1 +ATOM 186 O OE1 . GLN J 1 26 ? 171.782 165.454 77.979 1.00 73.20 26 J 1 +ATOM 187 N NE2 . GLN J 1 26 ? 173.791 165.926 77.101 1.00 73.20 26 J 1 +ATOM 188 N N . VAL J 1 27 ? 170.660 159.989 77.824 1.00 70.38 27 J 1 +ATOM 189 C CA . VAL J 1 27 ? 169.615 159.113 78.339 1.00 70.38 27 J 1 +ATOM 190 C C . VAL J 1 27 ? 170.211 157.789 78.796 1.00 70.38 27 J 1 +ATOM 191 O O . VAL J 1 27 ? 169.787 157.217 79.808 1.00 70.38 27 J 1 +ATOM 192 C CB . VAL J 1 27 ? 168.521 158.911 77.274 1.00 70.38 27 J 1 +ATOM 193 C CG1 . VAL J 1 27 ? 167.570 157.803 77.685 1.00 70.38 27 J 1 +ATOM 194 C CG2 . VAL J 1 27 ? 167.761 160.204 77.059 1.00 70.38 27 J 1 +ATOM 195 N N . THR J 1 28 ? 171.208 157.285 78.067 1.00 66.97 28 J 1 +ATOM 196 C CA . THR J 1 28 ? 171.814 156.011 78.437 1.00 66.97 28 J 1 +ATOM 197 C C . THR J 1 28 ? 172.453 156.080 79.821 1.00 66.97 28 J 1 +ATOM 198 O O . THR J 1 28 ? 172.163 155.246 80.688 1.00 66.97 28 J 1 +ATOM 199 C CB . THR J 1 28 ? 172.841 155.591 77.388 1.00 66.97 28 J 1 +ATOM 200 O OG1 . THR J 1 28 ? 172.192 155.449 76.118 1.00 66.97 28 J 1 +ATOM 201 C CG2 . THR J 1 28 ? 173.475 154.265 77.774 1.00 66.97 28 J 1 +ATOM 202 N N . GLU J 1 29 ? 173.322 157.072 80.055 1.00 72.66 29 J 1 +ATOM 203 C CA . GLU J 1 29 ? 173.906 157.156 81.396 1.00 72.66 29 J 1 +ATOM 204 C C . GLU J 1 29 ? 172.874 157.531 82.451 1.00 72.66 29 J 1 +ATOM 205 O O . GLU J 1 29 ? 172.996 157.088 83.594 1.00 72.66 29 J 1 +ATOM 206 C CB . GLU J 1 29 ? 175.107 158.111 81.526 1.00 72.66 29 J 1 +ATOM 207 C CG . GLU J 1 29 ? 176.428 157.677 80.874 1.00 72.66 29 J 1 +ATOM 208 C CD . GLU J 1 29 ? 176.594 158.116 79.452 1.00 72.66 29 J 1 +ATOM 209 O OE1 . GLU J 1 29 ? 175.740 158.874 78.981 1.00 72.66 29 J 1 +ATOM 210 O OE2 . GLU J 1 29 ? 177.582 157.707 78.806 1.00 72.66 29 J 1 +ATOM 211 N N . ALA J 1 30 ? 171.858 158.331 82.113 1.00 71.55 30 J 1 +ATOM 212 C CA . ALA J 1 30 ? 170.840 158.641 83.113 1.00 71.55 30 J 1 +ATOM 213 C C . ALA J 1 30 ? 170.124 157.377 83.571 1.00 71.55 30 J 1 +ATOM 214 O O . ALA J 1 30 ? 169.974 157.134 84.776 1.00 71.55 30 J 1 +ATOM 215 C CB . ALA J 1 30 ? 169.842 159.654 82.555 1.00 71.55 30 J 1 +ATOM 216 N N . LEU J 1 31 ? 169.710 156.541 82.619 1.00 67.57 31 J 1 +ATOM 217 C CA . LEU J 1 31 ? 169.026 155.299 82.949 1.00 67.57 31 J 1 +ATOM 218 C C . LEU J 1 31 ? 169.947 154.332 83.681 1.00 67.57 31 J 1 +ATOM 219 O O . LEU J 1 31 ? 169.513 153.645 84.613 1.00 67.57 31 J 1 +ATOM 220 C CB . LEU J 1 31 ? 168.470 154.664 81.675 1.00 67.57 31 J 1 +ATOM 221 C CG . LEU J 1 31 ? 167.565 153.444 81.827 1.00 67.57 31 J 1 +ATOM 222 C CD1 . LEU J 1 31 ? 166.434 153.521 80.822 1.00 67.57 31 J 1 +ATOM 223 C CD2 . LEU J 1 31 ? 168.355 152.161 81.641 1.00 67.57 31 J 1 +ATOM 224 N N . ASP J 1 32 ? 171.217 154.256 83.275 1.00 72.67 32 J 1 +ATOM 225 C CA . ASP J 1 32 ? 172.149 153.367 83.960 1.00 72.67 32 J 1 +ATOM 226 C C . ASP J 1 32 ? 172.379 153.821 85.398 1.00 72.67 32 J 1 +ATOM 227 O O . ASP J 1 32 ? 172.414 152.997 86.319 1.00 72.67 32 J 1 +ATOM 228 C CB . ASP J 1 32 ? 173.467 153.305 83.188 1.00 72.67 32 J 1 +ATOM 229 C CG . ASP J 1 32 ? 174.413 152.240 83.718 1.00 72.67 32 J 1 +ATOM 230 O OD1 . ASP J 1 32 ? 174.073 151.558 84.706 1.00 72.67 32 J 1 +ATOM 231 O OD2 . ASP J 1 32 ? 175.507 152.083 83.137 1.00 72.67 32 J 1 +ATOM 232 N N . LYS J 1 33 ? 172.532 155.130 85.610 1.00 71.55 33 J 1 +ATOM 233 C CA . LYS J 1 33 ? 172.715 155.655 86.958 1.00 71.55 33 J 1 +ATOM 234 C C . LYS J 1 33 ? 171.496 155.382 87.824 1.00 71.55 33 J 1 +ATOM 235 O O . LYS J 1 33 ? 171.628 155.006 88.994 1.00 71.55 33 J 1 +ATOM 236 C CB . LYS J 1 33 ? 173.001 157.155 86.900 1.00 71.55 33 J 1 +ATOM 237 C CG . LYS J 1 33 ? 174.385 157.517 86.392 1.00 71.55 33 J 1 +ATOM 238 C CD . LYS J 1 33 ? 174.482 159.007 86.104 1.00 71.55 33 J 1 +ATOM 239 C CE . LYS J 1 33 ? 174.396 159.829 87.379 1.00 71.55 33 J 1 +ATOM 240 N NZ . LYS J 1 33 ? 174.607 161.279 87.119 1.00 71.55 33 J 1 +ATOM 241 N N . LEU J 1 34 ? 170.296 155.566 87.269 1.00 70.34 34 J 1 +ATOM 242 C CA . LEU J 1 34 ? 169.095 155.291 88.045 1.00 70.34 34 J 1 +ATOM 243 C C . LEU J 1 34 ? 168.944 153.807 88.358 1.00 70.34 34 J 1 +ATOM 244 O O . LEU J 1 34 ? 168.263 153.458 89.327 1.00 70.34 34 J 1 +ATOM 245 C CB . LEU J 1 34 ? 167.865 155.824 87.305 1.00 70.34 34 J 1 +ATOM 246 C CG . LEU J 1 34 ? 166.493 155.819 87.987 1.00 70.34 34 J 1 +ATOM 247 C CD1 . LEU J 1 34 ? 165.645 156.923 87.403 1.00 70.34 34 J 1 +ATOM 248 C CD2 . LEU J 1 34 ? 165.773 154.496 87.808 1.00 70.34 34 J 1 +ATOM 249 N N . ALA J 1 35 ? 169.587 152.930 87.582 1.00 66.69 35 J 1 +ATOM 250 C CA . ALA J 1 35 ? 169.434 151.494 87.785 1.00 66.69 35 J 1 +ATOM 251 C C . ALA J 1 35 ? 169.942 151.034 89.144 1.00 66.69 35 J 1 +ATOM 252 O O . ALA J 1 35 ? 169.492 149.995 89.640 1.00 66.69 35 J 1 +ATOM 253 C CB . ALA J 1 35 ? 170.153 150.726 86.678 1.00 66.69 35 J 1 +ATOM 254 N N . ALA J 1 36 ? 170.865 151.775 89.759 1.00 67.09 36 J 1 +ATOM 255 C CA . ALA J 1 36 ? 171.402 151.403 91.059 1.00 67.09 36 J 1 +ATOM 256 C C . ALA J 1 36 ? 171.016 152.357 92.179 1.00 67.09 36 J 1 +ATOM 257 O O . ALA J 1 36 ? 171.066 151.959 93.347 1.00 67.09 36 J 1 +ATOM 258 C CB . ALA J 1 36 ? 172.933 151.307 90.996 1.00 67.09 36 J 1 +ATOM 259 N N . LYS J 1 37 ? 170.632 153.590 91.860 1.00 66.94 37 J 1 +ATOM 260 C CA . LYS J 1 37 ? 170.209 154.579 92.850 1.00 66.94 37 J 1 +ATOM 261 C C . LYS J 1 37 ? 168.843 155.099 92.431 1.00 66.94 37 J 1 +ATOM 262 O O . LYS J 1 37 ? 168.736 156.111 91.726 1.00 66.94 37 J 1 +ATOM 263 C CB . LYS J 1 37 ? 171.229 155.709 92.979 1.00 66.94 37 J 1 +ATOM 264 C CG . LYS J 1 37 ? 172.582 155.242 93.477 1.00 66.94 37 J 1 +ATOM 265 C CD . LYS J 1 37 ? 172.450 154.552 94.823 1.00 66.94 37 J 1 +ATOM 266 C CE . LYS J 1 37 ? 173.808 154.194 95.400 1.00 66.94 37 J 1 +ATOM 267 N NZ . LYS J 1 37 ? 173.680 153.478 96.700 1.00 66.94 37 J 1 +ATOM 268 N N . PRO J 1 38 ? 167.768 154.426 92.850 1.00 68.68 38 J 1 +ATOM 269 C CA . PRO J 1 38 ? 166.442 154.759 92.315 1.00 68.68 38 J 1 +ATOM 270 C C . PRO J 1 38 ? 165.804 155.974 92.952 1.00 68.68 38 J 1 +ATOM 271 O O . PRO J 1 38 ? 165.061 156.684 92.265 1.00 68.68 38 J 1 +ATOM 272 C CB . PRO J 1 38 ? 165.630 153.501 92.616 1.00 68.68 38 J 1 +ATOM 273 C CG . PRO J 1 38 ? 166.222 153.021 93.902 1.00 68.68 38 J 1 +ATOM 274 C CD . PRO J 1 38 ? 167.701 153.332 93.834 1.00 68.68 38 J 1 +ATOM 275 N N . SER J 1 39 ? 166.056 156.240 94.230 1.00 70.54 39 J 1 +ATOM 276 C CA . SER J 1 39 ? 165.383 157.320 94.933 1.00 70.54 39 J 1 +ATOM 277 C C . SER J 1 39 ? 166.204 158.596 94.992 1.00 70.54 39 J 1 +ATOM 278 O O . SER J 1 39 ? 165.705 159.612 95.488 1.00 70.54 39 J 1 +ATOM 279 C CB . SER J 1 39 ? 165.027 156.887 96.360 1.00 70.54 39 J 1 +ATOM 280 O OG . SER J 1 39 ? 166.196 156.601 97.104 1.00 70.54 39 J 1 +ATOM 281 N N . ASP J 1 40 ? 167.425 158.579 94.500 1.00 71.51 40 J 1 +ATOM 282 C CA . ASP J 1 40 ? 168.310 159.702 94.730 1.00 71.51 40 J 1 +ATOM 283 C C . ASP J 1 40 ? 167.868 160.912 93.909 1.00 71.51 40 J 1 +ATOM 284 O O . ASP J 1 40 ? 167.348 160.766 92.800 1.00 71.51 40 J 1 +ATOM 285 C CB . ASP J 1 40 ? 169.741 159.324 94.374 1.00 71.51 40 J 1 +ATOM 286 C CG . ASP J 1 40 ? 170.519 158.829 95.569 1.00 71.51 40 J 1 +ATOM 287 O OD1 . ASP J 1 40 ? 170.038 159.024 96.701 1.00 71.51 40 J 1 +ATOM 288 O OD2 . ASP J 1 40 ? 171.606 158.245 95.379 1.00 71.51 40 J 1 +ATOM 289 N N . PRO J 1 41 ? 168.040 162.115 94.445 1.00 72.15 41 J 1 +ATOM 290 C CA . PRO J 1 41 ? 167.725 163.323 93.677 1.00 72.15 41 J 1 +ATOM 291 C C . PRO J 1 41 ? 168.792 163.594 92.630 1.00 72.15 41 J 1 +ATOM 292 O O . PRO J 1 41 ? 169.806 162.902 92.531 1.00 72.15 41 J 1 +ATOM 293 C CB . PRO J 1 41 ? 167.709 164.427 94.737 1.00 72.15 41 J 1 +ATOM 294 C CG . PRO J 1 41 ? 167.558 163.713 96.031 1.00 72.15 41 J 1 +ATOM 295 C CD . PRO J 1 41 ? 168.278 162.420 95.862 1.00 72.15 41 J 1 +ATOM 296 N N . ALA J 1 42 ? 168.537 164.627 91.831 1.00 68.90 42 J 1 +ATOM 297 C CA . ALA J 1 42 ? 169.449 165.183 90.837 1.00 68.90 42 J 1 +ATOM 298 C C . ALA J 1 42 ? 169.710 164.237 89.674 1.00 68.90 42 J 1 +ATOM 299 O O . ALA J 1 42 ? 170.388 164.632 88.718 1.00 68.90 42 J 1 +ATOM 300 C CB . ALA J 1 42 ? 170.795 165.605 91.445 1.00 68.90 42 J 1 +ATOM 301 N N . LEU J 1 43 ? 169.199 163.008 89.712 1.00 66.88 43 J 1 +ATOM 302 C CA . LEU J 1 43 ? 169.214 162.168 88.523 1.00 66.88 43 J 1 +ATOM 303 C C . LEU J 1 43 ? 167.793 161.722 88.216 1.00 66.88 43 J 1 +ATOM 304 O O . LEU J 1 43 ? 167.436 161.561 87.048 1.00 66.88 43 J 1 +ATOM 305 C CB . LEU J 1 43 ? 170.136 160.956 88.678 1.00 66.88 43 J 1 +ATOM 306 C CG . LEU J 1 43 ? 169.723 159.783 89.565 1.00 66.88 43 J 1 +ATOM 307 C CD1 . LEU J 1 43 ? 170.578 158.575 89.251 1.00 66.88 43 J 1 +ATOM 308 C CD2 . LEU J 1 43 ? 169.875 160.147 91.011 1.00 66.88 43 J 1 +ATOM 309 N N . LEU J 1 44 ? 166.976 161.526 89.255 1.00 62.81 44 J 1 +ATOM 310 C CA . LEU J 1 44 ? 165.564 161.231 89.034 1.00 62.81 44 J 1 +ATOM 311 C C . LEU J 1 44 ? 164.891 162.349 88.255 1.00 62.81 44 J 1 +ATOM 312 O O . LEU J 1 44 ? 164.229 162.103 87.240 1.00 62.81 44 J 1 +ATOM 313 C CB . LEU J 1 44 ? 164.850 161.025 90.366 1.00 62.81 44 J 1 +ATOM 314 C CG . LEU J 1 44 ? 164.662 159.603 90.876 1.00 62.81 44 J 1 +ATOM 315 C CD1 . LEU J 1 44 ? 164.144 159.655 92.300 1.00 62.81 44 J 1 +ATOM 316 C CD2 . LEU J 1 44 ? 163.706 158.844 89.980 1.00 62.81 44 J 1 +ATOM 317 N N . ALA J 1 45 ? 165.051 163.589 88.717 1.00 63.51 45 J 1 +ATOM 318 C CA . ALA J 1 45 ? 164.565 164.727 87.951 1.00 63.51 45 J 1 +ATOM 319 C C . ALA J 1 45 ? 165.278 164.805 86.611 1.00 63.51 45 J 1 +ATOM 320 O O . ALA J 1 45 ? 164.660 165.085 85.577 1.00 63.51 45 J 1 +ATOM 321 C CB . ALA J 1 45 ? 164.759 166.015 88.748 1.00 63.51 45 J 1 +ATOM 322 N N . ALA J 1 46 ? 166.587 164.547 86.611 1.00 63.88 46 J 1 +ATOM 323 C CA . ALA J 1 46 ? 167.322 164.470 85.356 1.00 63.88 46 J 1 +ATOM 324 C C . ALA J 1 46 ? 166.799 163.335 84.489 1.00 63.88 46 J 1 +ATOM 325 O O . ALA J 1 46 ? 166.675 163.486 83.270 1.00 63.88 46 J 1 +ATOM 326 C CB . ALA J 1 46 ? 168.815 164.297 85.627 1.00 63.88 46 J 1 +ATOM 327 N N . TYR J 1 47 ? 166.483 162.190 85.100 1.00 60.60 47 J 1 +ATOM 328 C CA . TYR J 1 47 ? 165.886 161.089 84.350 1.00 60.60 47 J 1 +ATOM 329 C C . TYR J 1 47 ? 164.618 161.528 83.639 1.00 60.60 47 J 1 +ATOM 330 O O . TYR J 1 47 ? 164.476 161.336 82.427 1.00 60.60 47 J 1 +ATOM 331 C CB . TYR J 1 47 ? 165.579 159.921 85.282 1.00 60.60 47 J 1 +ATOM 332 C CG . TYR J 1 47 ? 164.985 158.730 84.578 1.00 60.60 47 J 1 +ATOM 333 C CD1 . TYR J 1 47 ? 165.771 157.885 83.811 1.00 60.60 47 J 1 +ATOM 334 C CD2 . TYR J 1 47 ? 163.629 158.457 84.675 1.00 60.60 47 J 1 +ATOM 335 C CE1 . TYR J 1 47 ? 165.223 156.798 83.168 1.00 60.60 47 J 1 +ATOM 336 C CE2 . TYR J 1 47 ? 163.073 157.376 84.037 1.00 60.60 47 J 1 +ATOM 337 C CZ . TYR J 1 47 ? 163.872 156.550 83.285 1.00 60.60 47 J 1 +ATOM 338 O OH . TYR J 1 47 ? 163.317 155.471 82.646 1.00 60.60 47 J 1 +ATOM 339 N N . GLN J 1 48 ? 163.681 162.118 84.380 1.00 61.22 48 J 1 +ATOM 340 C CA . GLN J 1 48 ? 162.418 162.506 83.769 1.00 61.22 48 J 1 +ATOM 341 C C . GLN J 1 48 ? 162.618 163.572 82.703 1.00 61.22 48 J 1 +ATOM 342 O O . GLN J 1 48 ? 162.021 163.485 81.623 1.00 61.22 48 J 1 +ATOM 343 C CB . GLN J 1 48 ? 161.441 163.000 84.832 1.00 61.22 48 J 1 +ATOM 344 C CG . GLN J 1 48 ? 160.073 163.333 84.276 1.00 61.22 48 J 1 +ATOM 345 C CD . GLN J 1 48 ? 159.096 163.765 85.344 1.00 61.22 48 J 1 +ATOM 346 O OE1 . GLN J 1 48 ? 159.445 163.860 86.519 1.00 61.22 48 J 1 +ATOM 347 N NE2 . GLN J 1 48 ? 157.858 164.028 84.941 1.00 61.22 48 J 1 +ATOM 348 N N . SER J 1 49 ? 163.461 164.571 82.975 1.00 66.01 49 J 1 +ATOM 349 C CA . SER J 1 49 ? 163.666 165.643 82.010 1.00 66.01 49 J 1 +ATOM 350 C C . SER J 1 49 ? 164.298 165.117 80.729 1.00 66.01 49 J 1 +ATOM 351 O O . SER J 1 49 ? 163.843 165.437 79.628 1.00 66.01 49 J 1 +ATOM 352 C CB . SER J 1 49 ? 164.529 166.744 82.623 1.00 66.01 49 J 1 +ATOM 353 O OG . SER J 1 49 ? 164.839 167.732 81.658 1.00 66.01 49 J 1 +ATOM 354 N N . LYS J 1 50 ? 165.348 164.301 80.851 1.00 62.23 50 J 1 +ATOM 355 C CA . LYS J 1 50 ? 165.992 163.755 79.662 1.00 62.23 50 J 1 +ATOM 356 C C . LYS J 1 50 ? 165.074 162.806 78.908 1.00 62.23 50 J 1 +ATOM 357 O O . LYS J 1 50 ? 165.080 162.796 77.674 1.00 62.23 50 J 1 +ATOM 358 C CB . LYS J 1 50 ? 167.292 163.045 80.036 1.00 62.23 50 J 1 +ATOM 359 C CG . LYS J 1 50 ? 168.320 163.948 80.688 1.00 62.23 50 J 1 +ATOM 360 C CD . LYS J 1 50 ? 168.804 165.014 79.725 1.00 62.23 50 J 1 +ATOM 361 C CE . LYS J 1 50 ? 169.815 165.927 80.391 1.00 62.23 50 J 1 +ATOM 362 N NZ . LYS J 1 50 ? 171.093 165.218 80.672 1.00 62.23 50 J 1 +ATOM 363 N N . LEU J 1 51 ? 164.282 162.004 79.620 1.00 55.13 51 J 1 +ATOM 364 C CA . LEU J 1 51 ? 163.386 161.078 78.942 1.00 55.13 51 J 1 +ATOM 365 C C . LEU J 1 51 ? 162.306 161.830 78.175 1.00 55.13 51 J 1 +ATOM 366 O O . LEU J 1 51 ? 161.984 161.482 77.034 1.00 55.13 51 J 1 +ATOM 367 C CB . LEU J 1 51 ? 162.773 160.118 79.955 1.00 55.13 51 J 1 +ATOM 368 C CG . LEU J 1 51 ? 161.865 159.044 79.373 1.00 55.13 51 J 1 +ATOM 369 C CD1 . LEU J 1 51 ? 162.675 158.158 78.450 1.00 55.13 51 J 1 +ATOM 370 C CD2 . LEU J 1 51 ? 161.246 158.227 80.487 1.00 55.13 51 J 1 +ATOM 371 N N . SER J 1 52 ? 161.739 162.876 78.783 1.00 58.66 52 J 1 +ATOM 372 C CA . SER J 1 52 ? 160.769 163.700 78.069 1.00 58.66 52 J 1 +ATOM 373 C C . SER J 1 52 ? 161.418 164.423 76.896 1.00 58.66 52 J 1 +ATOM 374 O O . SER J 1 52 ? 160.815 164.553 75.825 1.00 58.66 52 J 1 +ATOM 375 C CB . SER J 1 52 ? 160.119 164.699 79.023 1.00 58.66 52 J 1 +ATOM 376 O OG . SER J 1 52 ? 159.266 164.041 79.940 1.00 58.66 52 J 1 +ATOM 377 N N . GLU J 1 53 ? 162.646 164.910 77.081 1.00 65.81 53 J 1 +ATOM 378 C CA . GLU J 1 53 ? 163.360 165.549 75.985 1.00 65.81 53 J 1 +ATOM 379 C C . GLU J 1 53 ? 163.519 164.593 74.816 1.00 65.81 53 J 1 +ATOM 380 O O . GLU J 1 53 ? 163.285 164.966 73.663 1.00 65.81 53 J 1 +ATOM 381 C CB . GLU J 1 53 ? 164.729 166.027 76.468 1.00 65.81 53 J 1 +ATOM 382 C CG . GLU J 1 53 ? 164.823 167.501 76.834 1.00 65.81 53 J 1 +ATOM 383 C CD . GLU J 1 53 ? 164.613 168.437 75.659 1.00 65.81 53 J 1 +ATOM 384 O OE1 . GLU J 1 53 ? 164.395 167.965 74.524 1.00 65.81 53 J 1 +ATOM 385 O OE2 . GLU J 1 53 ? 164.659 169.667 75.875 1.00 65.81 53 J 1 +ATOM 386 N N . TYR J 1 54 ? 163.901 163.351 75.104 1.00 59.32 54 J 1 +ATOM 387 C CA . TYR J 1 54 ? 164.070 162.346 74.065 1.00 59.32 54 J 1 +ATOM 388 C C . TYR J 1 54 ? 162.742 162.013 73.396 1.00 59.32 54 J 1 +ATOM 389 O O . TYR J 1 54 ? 162.683 161.828 72.175 1.00 59.32 54 J 1 +ATOM 390 C CB . TYR J 1 54 ? 164.710 161.104 74.676 1.00 59.32 54 J 1 +ATOM 391 C CG . TYR J 1 54 ? 164.986 159.991 73.707 1.00 59.32 54 J 1 +ATOM 392 C CD1 . TYR J 1 54 ? 166.049 160.070 72.828 1.00 59.32 54 J 1 +ATOM 393 C CD2 . TYR J 1 54 ? 164.208 158.845 73.697 1.00 59.32 54 J 1 +ATOM 394 C CE1 . TYR J 1 54 ? 166.316 159.055 71.945 1.00 59.32 54 J 1 +ATOM 395 C CE2 . TYR J 1 54 ? 164.470 157.819 72.819 1.00 59.32 54 J 1 +ATOM 396 C CZ . TYR J 1 54 ? 165.527 157.929 71.944 1.00 59.32 54 J 1 +ATOM 397 O OH . TYR J 1 54 ? 165.800 156.912 71.061 1.00 59.32 54 J 1 +ATOM 398 N N . ASN J 1 55 ? 161.668 161.931 74.183 1.00 55.92 55 J 1 +ATOM 399 C CA . ASN J 1 55 ? 160.344 161.659 73.629 1.00 55.92 55 J 1 +ATOM 400 C C . ASN J 1 55 ? 159.925 162.748 72.647 1.00 55.92 55 J 1 +ATOM 401 O O . ASN J 1 55 ? 159.524 162.458 71.511 1.00 55.92 55 J 1 +ATOM 402 C CB . ASN J 1 55 ? 159.340 161.529 74.777 1.00 55.92 55 J 1 +ATOM 403 C CG . ASN J 1 55 ? 157.922 161.278 74.306 1.00 55.92 55 J 1 +ATOM 404 O OD1 . ASN J 1 55 ? 157.659 161.123 73.117 1.00 55.92 55 J 1 +ATOM 405 N ND2 . ASN J 1 55 ? 156.998 161.213 75.253 1.00 55.92 55 J 1 +ATOM 406 N N . LEU J 1 56 ? 160.012 164.010 73.071 1.00 57.85 56 J 1 +ATOM 407 C CA . LEU J 1 56 ? 159.659 165.115 72.183 1.00 57.85 56 J 1 +ATOM 408 C C . LEU J 1 56 ? 160.587 165.185 70.980 1.00 57.85 56 J 1 +ATOM 409 O O . LEU J 1 56 ? 160.148 165.503 69.871 1.00 57.85 56 J 1 +ATOM 410 C CB . LEU J 1 56 ? 159.665 166.437 72.945 1.00 57.85 56 J 1 +ATOM 411 C CG . LEU J 1 56 ? 158.428 166.781 73.772 1.00 57.85 56 J 1 +ATOM 412 C CD1 . LEU J 1 56 ? 158.257 165.920 74.998 1.00 57.85 56 J 1 +ATOM 413 C CD2 . LEU J 1 56 ? 158.539 168.224 74.179 1.00 57.85 56 J 1 +ATOM 414 N N . TYR J 1 57 ? 161.872 164.895 71.176 1.00 60.05 57 J 1 +ATOM 415 C CA . TYR J 1 57 ? 162.800 164.844 70.054 1.00 60.05 57 J 1 +ATOM 416 C C . TYR J 1 57 ? 162.362 163.824 69.013 1.00 60.05 57 J 1 +ATOM 417 O O . TYR J 1 57 ? 162.299 164.134 67.817 1.00 60.05 57 J 1 +ATOM 418 C CB . TYR J 1 57 ? 164.203 164.534 70.578 1.00 60.05 57 J 1 +ATOM 419 C CG . TYR J 1 57 ? 165.239 164.289 69.513 1.00 60.05 57 J 1 +ATOM 420 C CD1 . TYR J 1 57 ? 165.328 163.058 68.881 1.00 60.05 57 J 1 +ATOM 421 C CD2 . TYR J 1 57 ? 166.114 165.288 69.127 1.00 60.05 57 J 1 +ATOM 422 C CE1 . TYR J 1 57 ? 166.257 162.825 67.909 1.00 60.05 57 J 1 +ATOM 423 C CE2 . TYR J 1 57 ? 167.052 165.063 68.149 1.00 60.05 57 J 1 +ATOM 424 C CZ . TYR J 1 57 ? 167.118 163.828 67.545 1.00 60.05 57 J 1 +ATOM 425 O OH . TYR J 1 57 ? 168.044 163.579 66.567 1.00 60.05 57 J 1 +ATOM 426 N N . ARG J 1 58 ? 162.069 162.598 69.446 1.00 58.38 58 J 1 +ATOM 427 C CA . ARG J 1 58 ? 161.680 161.562 68.498 1.00 58.38 58 J 1 +ATOM 428 C C . ARG J 1 58 ? 160.373 161.916 67.804 1.00 58.38 58 J 1 +ATOM 429 O O . ARG J 1 58 ? 160.238 161.726 66.587 1.00 58.38 58 J 1 +ATOM 430 C CB . ARG J 1 58 ? 161.566 160.217 69.208 1.00 58.38 58 J 1 +ATOM 431 C CG . ARG J 1 58 ? 162.900 159.553 69.491 1.00 58.38 58 J 1 +ATOM 432 C CD . ARG J 1 58 ? 163.871 159.707 68.335 1.00 58.38 58 J 1 +ATOM 433 N NE . ARG J 1 58 ? 165.241 159.437 68.753 1.00 58.38 58 J 1 +ATOM 434 C CZ . ARG J 1 58 ? 166.293 159.472 67.948 1.00 58.38 58 J 1 +ATOM 435 N NH1 . ARG J 1 58 ? 166.171 159.760 66.663 1.00 58.38 58 J 1 +ATOM 436 N NH2 . ARG J 1 58 ? 167.498 159.214 68.445 1.00 58.38 58 J 1 +ATOM 437 N N . ASN J 1 59 ? 159.399 162.432 68.558 1.00 58.16 59 J 1 +ATOM 438 C CA . ASN J 1 59 ? 158.133 162.817 67.945 1.00 58.16 59 J 1 +ATOM 439 C C . ASN J 1 59 ? 158.327 163.928 66.924 1.00 58.16 59 J 1 +ATOM 440 O O . ASN J 1 59 ? 157.735 163.893 65.839 1.00 58.16 59 J 1 +ATOM 441 C CB . ASN J 1 59 ? 157.133 163.240 69.017 1.00 58.16 59 J 1 +ATOM 442 C CG . ASN J 1 59 ? 156.401 162.065 69.619 1.00 58.16 59 J 1 +ATOM 443 O OD1 . ASN J 1 59 ? 156.905 161.403 70.521 1.00 58.16 59 J 1 +ATOM 444 N ND2 . ASN J 1 59 ? 155.203 161.796 69.117 1.00 58.16 59 J 1 +ATOM 445 N N . ALA J 1 60 ? 159.154 164.925 67.250 1.00 62.06 60 J 1 +ATOM 446 C CA . ALA J 1 60 ? 159.407 166.012 66.314 1.00 62.06 60 J 1 +ATOM 447 C C . ALA J 1 60 ? 160.081 165.504 65.052 1.00 62.06 60 J 1 +ATOM 448 O O . ALA J 1 60 ? 159.709 165.896 63.940 1.00 62.06 60 J 1 +ATOM 449 C CB . ALA J 1 60 ? 160.257 167.092 66.980 1.00 62.06 60 J 1 +ATOM 450 N N . GLN J 1 61 ? 161.067 164.621 65.203 1.00 65.39 61 J 1 +ATOM 451 C CA . GLN J 1 61 ? 161.748 164.072 64.037 1.00 65.39 61 J 1 +ATOM 452 C C . GLN J 1 61 ? 160.774 163.310 63.148 1.00 65.39 61 J 1 +ATOM 453 O O . GLN J 1 61 ? 160.735 163.512 61.925 1.00 65.39 61 J 1 +ATOM 454 C CB . GLN J 1 61 ? 162.895 163.171 64.494 1.00 65.39 61 J 1 +ATOM 455 C CG . GLN J 1 61 ? 164.044 163.067 63.519 1.00 65.39 61 J 1 +ATOM 456 C CD . GLN J 1 61 ? 165.192 162.262 64.080 1.00 65.39 61 J 1 +ATOM 457 O OE1 . GLN J 1 61 ? 166.240 162.807 64.420 1.00 65.39 61 J 1 +ATOM 458 N NE2 . GLN J 1 61 ? 164.998 160.957 64.189 1.00 65.39 61 J 1 +ATOM 459 N N . SER J 1 62 ? 159.959 162.442 63.753 1.00 64.39 62 J 1 +ATOM 460 C CA . SER J 1 62 ? 159.025 161.644 62.969 1.00 64.39 62 J 1 +ATOM 461 C C . SER J 1 62 ? 157.998 162.522 62.267 1.00 64.39 62 J 1 +ATOM 462 O O . SER J 1 62 ? 157.716 162.331 61.078 1.00 64.39 62 J 1 +ATOM 463 C CB . SER J 1 62 ? 158.333 160.619 63.865 1.00 64.39 62 J 1 +ATOM 464 O OG . SER J 1 62 ? 157.410 159.843 63.125 1.00 64.39 62 J 1 +ATOM 465 N N . ASN J 1 63 ? 157.438 163.504 62.976 1.00 65.16 63 J 1 +ATOM 466 C CA . ASN J 1 63 ? 156.437 164.361 62.357 1.00 65.16 63 J 1 +ATOM 467 C C . ASN J 1 63 ? 157.033 165.219 61.252 1.00 65.16 63 J 1 +ATOM 468 O O . ASN J 1 63 ? 156.389 165.421 60.216 1.00 65.16 63 J 1 +ATOM 469 C CB . ASN J 1 63 ? 155.767 165.233 63.413 1.00 65.16 63 J 1 +ATOM 470 C CG . ASN J 1 63 ? 154.853 164.439 64.316 1.00 65.16 63 J 1 +ATOM 471 O OD1 . ASN J 1 63 ? 154.525 163.290 64.026 1.00 65.16 63 J 1 +ATOM 472 N ND2 . ASN J 1 63 ? 154.434 165.045 65.416 1.00 65.16 63 J 1 +ATOM 473 N N . THR J 1 64 ? 158.252 165.729 61.444 1.00 66.60 64 J 1 +ATOM 474 C CA . THR J 1 64 ? 158.875 166.543 60.408 1.00 66.60 64 J 1 +ATOM 475 C C . THR J 1 64 ? 159.147 165.725 59.153 1.00 66.60 64 J 1 +ATOM 476 O O . THR J 1 64 ? 158.846 166.169 58.035 1.00 66.60 64 J 1 +ATOM 477 C CB . THR J 1 64 ? 160.169 167.158 60.935 1.00 66.60 64 J 1 +ATOM 478 O OG1 . THR J 1 64 ? 159.877 167.977 62.072 1.00 66.60 64 J 1 +ATOM 479 C CG2 . THR J 1 64 ? 160.819 168.011 59.865 1.00 66.60 64 J 1 +ATOM 480 N N . VAL J 1 65 ? 159.707 164.523 59.310 1.00 64.00 65 J 1 +ATOM 481 C CA . VAL J 1 65 ? 159.978 163.718 58.124 1.00 64.00 65 J 1 +ATOM 482 C C . VAL J 1 65 ? 158.671 163.316 57.452 1.00 64.00 65 J 1 +ATOM 483 O O . VAL J 1 65 ? 158.580 163.285 56.220 1.00 64.00 65 J 1 +ATOM 484 C CB . VAL J 1 65 ? 160.858 162.499 58.464 1.00 64.00 65 J 1 +ATOM 485 C CG1 . VAL J 1 65 ? 162.203 162.957 58.999 1.00 64.00 65 J 1 +ATOM 486 C CG2 . VAL J 1 65 ? 160.176 161.571 59.442 1.00 64.00 65 J 1 +ATOM 487 N N . LYS J 1 66 ? 157.626 163.047 58.241 1.00 65.12 66 J 1 +ATOM 488 C CA . LYS J 1 66 ? 156.341 162.691 57.649 1.00 65.12 66 J 1 +ATOM 489 C C . LYS J 1 66 ? 155.745 163.847 56.855 1.00 65.12 66 J 1 +ATOM 490 O O . LYS J 1 66 ? 155.240 163.645 55.745 1.00 65.12 66 J 1 +ATOM 491 C CB . LYS J 1 66 ? 155.366 162.235 58.733 1.00 65.12 66 J 1 +ATOM 492 C CG . LYS J 1 66 ? 153.992 161.855 58.202 1.00 65.12 66 J 1 +ATOM 493 C CD . LYS J 1 66 ? 154.088 160.891 57.032 1.00 65.12 66 J 1 +ATOM 494 C CE . LYS J 1 66 ? 152.711 160.542 56.496 1.00 65.12 66 J 1 +ATOM 495 N NZ . LYS J 1 66 ? 151.754 160.214 57.587 1.00 65.12 66 J 1 +ATOM 496 N N . VAL J 1 67 ? 155.779 165.064 57.402 1.00 65.92 67 J 1 +ATOM 497 C CA . VAL J 1 67 ? 155.163 166.185 56.696 1.00 65.92 67 J 1 +ATOM 498 C C . VAL J 1 67 ? 155.958 166.528 55.442 1.00 65.92 67 J 1 +ATOM 499 O O . VAL J 1 67 ? 155.381 166.863 54.397 1.00 65.92 67 J 1 +ATOM 500 C CB . VAL J 1 67 ? 154.993 167.401 57.629 1.00 65.92 67 J 1 +ATOM 501 C CG1 . VAL J 1 67 ? 156.328 167.937 58.097 1.00 65.92 67 J 1 +ATOM 502 C CG2 . VAL J 1 67 ? 154.200 168.492 56.929 1.00 65.92 67 J 1 +ATOM 503 N N . PHE J 1 68 ? 157.288 166.435 55.509 1.00 66.56 68 J 1 +ATOM 504 C CA . PHE J 1 68 ? 158.076 166.682 54.308 1.00 66.56 68 J 1 +ATOM 505 C C . PHE J 1 68 ? 157.826 165.606 53.260 1.00 66.56 68 J 1 +ATOM 506 O O . PHE J 1 68 ? 157.772 165.899 52.059 1.00 66.56 68 J 1 +ATOM 507 C CB . PHE J 1 68 ? 159.558 166.785 54.657 1.00 66.56 68 J 1 +ATOM 508 C CG . PHE J 1 68 ? 159.991 168.177 55.012 1.00 66.56 68 J 1 +ATOM 509 C CD1 . PHE J 1 68 ? 160.099 168.568 56.333 1.00 66.56 68 J 1 +ATOM 510 C CD2 . PHE J 1 68 ? 160.268 169.101 54.022 1.00 66.56 68 J 1 +ATOM 511 C CE1 . PHE J 1 68 ? 160.490 169.850 56.660 1.00 66.56 68 J 1 +ATOM 512 C CE2 . PHE J 1 68 ? 160.658 170.384 54.343 1.00 66.56 68 J 1 +ATOM 513 C CZ . PHE J 1 68 ? 160.769 170.758 55.664 1.00 66.56 68 J 1 +ATOM 514 N N . LYS J 1 69 ? 157.646 164.356 53.694 1.00 70.04 69 J 1 +ATOM 515 C CA . LYS J 1 69 ? 157.283 163.302 52.755 1.00 70.04 69 J 1 +ATOM 516 C C . LYS J 1 69 ? 155.929 163.584 52.123 1.00 70.04 69 J 1 +ATOM 517 O O . LYS J 1 69 ? 155.731 163.326 50.934 1.00 70.04 69 J 1 +ATOM 518 C CB . LYS J 1 69 ? 157.291 161.944 53.465 1.00 70.04 69 J 1 +ATOM 519 C CG . LYS J 1 69 ? 157.067 160.718 52.570 1.00 70.04 69 J 1 +ATOM 520 C CD . LYS J 1 69 ? 155.593 160.436 52.289 1.00 70.04 69 J 1 +ATOM 521 C CE . LYS J 1 69 ? 155.424 159.353 51.239 1.00 70.04 69 J 1 +ATOM 522 N NZ . LYS J 1 69 ? 153.999 158.953 51.085 1.00 70.04 69 J 1 +ATOM 523 N N . ASP J 1 70 ? 154.979 164.093 52.908 1.00 70.15 70 J 1 +ATOM 524 C CA . ASP J 1 70 ? 153.667 164.418 52.356 1.00 70.15 70 J 1 +ATOM 525 C C . ASP J 1 70 ? 153.770 165.503 51.293 1.00 70.15 70 J 1 +ATOM 526 O O . ASP J 1 70 ? 153.172 165.386 50.216 1.00 70.15 70 J 1 +ATOM 527 C CB . ASP J 1 70 ? 152.719 164.850 53.472 1.00 70.15 70 J 1 +ATOM 528 C CG . ASP J 1 70 ? 152.353 163.710 54.396 1.00 70.15 70 J 1 +ATOM 529 O OD1 . ASP J 1 70 ? 152.337 162.552 53.930 1.00 70.15 70 J 1 +ATOM 530 O OD2 . ASP J 1 70 ? 152.082 163.970 55.587 1.00 70.15 70 J 1 +ATOM 531 N N . ILE J 1 71 ? 154.538 166.558 51.574 1.00 64.31 71 J 1 +ATOM 532 C CA . ILE J 1 71 ? 154.721 167.619 50.588 1.00 64.31 71 J 1 +ATOM 533 C C . ILE J 1 71 ? 155.375 167.070 49.326 1.00 64.31 71 J 1 +ATOM 534 O O . ILE J 1 71 ? 154.941 167.362 48.203 1.00 64.31 71 J 1 +ATOM 535 C CB . ILE J 1 71 ? 155.545 168.772 51.188 1.00 64.31 71 J 1 +ATOM 536 C CG1 . ILE J 1 71 ? 154.860 169.327 52.435 1.00 64.31 71 J 1 +ATOM 537 C CG2 . ILE J 1 71 ? 155.751 169.866 50.159 1.00 64.31 71 J 1 +ATOM 538 C CD1 . ILE J 1 71 ? 155.778 170.127 53.325 1.00 64.31 71 J 1 +ATOM 539 N N . ASP J 1 72 ? 156.423 166.261 49.492 1.00 68.85 72 J 1 +ATOM 540 C CA . ASP J 1 72 ? 157.144 165.727 48.343 1.00 68.85 72 J 1 +ATOM 541 C C . ASP J 1 72 ? 156.266 164.795 47.517 1.00 68.85 72 J 1 +ATOM 542 O O . ASP J 1 72 ? 156.316 164.814 46.282 1.00 68.85 72 J 1 +ATOM 543 C CB . ASP J 1 72 ? 158.398 165.005 48.825 1.00 68.85 72 J 1 +ATOM 544 C CG . ASP J 1 72 ? 159.551 165.947 49.062 1.00 68.85 72 J 1 +ATOM 545 O OD1 . ASP J 1 72 ? 160.691 165.462 49.183 1.00 68.85 72 J 1 +ATOM 546 O OD2 . ASP J 1 72 ? 159.318 167.171 49.125 1.00 68.85 72 J 1 +ATOM 547 N N . ALA J 1 73 ? 155.464 163.963 48.181 1.00 65.97 73 J 1 +ATOM 548 C CA . ALA J 1 73 ? 154.553 163.081 47.466 1.00 65.97 73 J 1 +ATOM 549 C C . ALA J 1 73 ? 153.501 163.878 46.715 1.00 65.97 73 J 1 +ATOM 550 O O . ALA J 1 73 ? 153.128 163.520 45.593 1.00 65.97 73 J 1 +ATOM 551 C CB . ALA J 1 73 ? 153.894 162.103 48.437 1.00 65.97 73 J 1 +ATOM 552 N N . ALA J 1 74 ? 153.004 164.960 47.319 1.00 64.99 74 J 1 +ATOM 553 C CA . ALA J 1 74 ? 152.063 165.819 46.610 1.00 64.99 74 J 1 +ATOM 554 C C . ALA J 1 74 ? 152.700 166.405 45.358 1.00 64.99 74 J 1 +ATOM 555 O O . ALA J 1 74 ? 152.080 166.428 44.288 1.00 64.99 74 J 1 +ATOM 556 C CB . ALA J 1 74 ? 151.567 166.931 47.533 1.00 64.99 74 J 1 +ATOM 557 N N . ILE J 1 75 ? 153.947 166.864 45.469 1.00 67.26 75 J 1 +ATOM 558 C CA . ILE J 1 75 ? 154.634 167.425 44.307 1.00 67.26 75 J 1 +ATOM 559 C C . ILE J 1 75 ? 154.797 166.367 43.222 1.00 67.26 75 J 1 +ATOM 560 O O . ILE J 1 75 ? 154.522 166.615 42.042 1.00 67.26 75 J 1 +ATOM 561 C CB . ILE J 1 75 ? 155.993 168.017 44.717 1.00 67.26 75 J 1 +ATOM 562 C CG1 . ILE J 1 75 ? 155.807 169.113 45.765 1.00 67.26 75 J 1 +ATOM 563 C CG2 . ILE J 1 75 ? 156.721 168.564 43.502 1.00 67.26 75 J 1 +ATOM 564 C CD1 . ILE J 1 75 ? 154.983 170.274 45.286 1.00 67.26 75 J 1 +ATOM 565 N N . ILE J 1 76 ? 155.244 165.170 43.607 1.00 71.16 76 J 1 +ATOM 566 C CA . ILE J 1 76 ? 155.503 164.119 42.627 1.00 71.16 76 J 1 +ATOM 567 C C . ILE J 1 76 ? 154.216 163.694 41.935 1.00 71.16 76 J 1 +ATOM 568 O O . ILE J 1 76 ? 154.164 163.579 40.705 1.00 71.16 76 J 1 +ATOM 569 C CB . ILE J 1 76 ? 156.205 162.925 43.299 1.00 71.16 76 J 1 +ATOM 570 C CG1 . ILE J 1 76 ? 157.602 163.325 43.761 1.00 71.16 76 J 1 +ATOM 571 C CG2 . ILE J 1 76 ? 156.302 161.755 42.342 1.00 71.16 76 J 1 +ATOM 572 C CD1 . ILE J 1 76 ? 158.489 163.764 42.631 1.00 71.16 76 J 1 +ATOM 573 N N . GLN J 1 77 ? 153.158 163.457 42.708 1.00 74.01 77 J 1 +ATOM 574 C CA . GLN J 1 77 ? 151.870 163.093 42.139 1.00 74.01 77 J 1 +ATOM 575 C C . GLN J 1 77 ? 151.276 164.203 41.291 1.00 74.01 77 J 1 +ATOM 576 O O . GLN J 1 77 ? 150.522 163.917 40.355 1.00 74.01 77 J 1 +ATOM 577 C CB . GLN J 1 77 ? 150.903 162.718 43.266 1.00 74.01 77 J 1 +ATOM 578 C CG . GLN J 1 77 ? 149.608 162.063 42.818 1.00 74.01 77 J 1 +ATOM 579 C CD . GLN J 1 77 ? 148.547 163.075 42.436 1.00 74.01 77 J 1 +ATOM 580 O OE1 . GLN J 1 77 ? 148.119 163.881 43.261 1.00 74.01 77 J 1 +ATOM 581 N NE2 . GLN J 1 77 ? 148.126 163.046 41.178 1.00 74.01 77 J 1 +ATOM 582 N N . ASN J 1 78 ? 151.610 165.453 41.583 1.00 75.47 78 J 1 +ATOM 583 C CA . ASN J 1 78 ? 151.007 166.584 40.903 1.00 75.47 78 J 1 +ATOM 584 C C . ASN J 1 78 ? 151.656 166.793 39.532 1.00 75.47 78 J 1 +ATOM 585 O O . ASN J 1 78 ? 151.100 167.503 38.692 1.00 75.47 78 J 1 +ATOM 586 C CB . ASN J 1 78 ? 151.109 167.797 41.862 1.00 75.47 78 J 1 +ATOM 587 C CG . ASN J 1 78 ? 150.672 169.138 41.268 1.00 75.47 78 J 1 +ATOM 588 O OD1 . ASN J 1 78 ? 150.393 169.290 40.093 1.00 75.47 78 J 1 +ATOM 589 N ND2 . ASN J 1 78 ? 150.555 170.120 42.149 1.00 75.47 78 J 1 +ATOM 590 N N . PHE J 1 79 ? 152.755 166.084 39.244 1.00 76.77 79 J 1 +ATOM 591 C CA . PHE J 1 79 ? 153.341 166.125 37.905 1.00 76.77 79 J 1 +ATOM 592 C C . PHE J 1 79 ? 152.308 165.775 36.843 1.00 76.77 79 J 1 +ATOM 593 O O . PHE J 1 79 ? 152.188 166.465 35.824 1.00 76.77 79 J 1 +ATOM 594 C CB . PHE J 1 79 ? 154.513 165.146 37.794 1.00 76.77 79 J 1 +ATOM 595 C CG . PHE J 1 79 ? 155.770 165.599 38.471 1.00 76.77 79 J 1 +ATOM 596 C CD1 . PHE J 1 79 ? 155.885 166.866 39.000 1.00 76.77 79 J 1 +ATOM 597 C CD2 . PHE J 1 79 ? 156.855 164.744 38.553 1.00 76.77 79 J 1 +ATOM 598 C CE1 . PHE J 1 79 ? 157.054 167.261 39.614 1.00 76.77 79 J 1 +ATOM 599 C CE2 . PHE J 1 79 ? 158.021 165.138 39.162 1.00 76.77 79 J 1 +ATOM 600 C CZ . PHE J 1 79 ? 158.121 166.398 39.692 1.00 76.77 79 J 1 +ATOM 601 N N . ARG J 1 80 ? 151.557 164.702 37.066 1.00 84.01 80 J 1 +ATOM 602 C CA . ARG J 1 80 ? 150.552 164.246 36.118 1.00 84.01 80 J 1 +ATOM 603 C C . ARG J 1 80 ? 149.236 164.973 36.361 1.00 84.01 80 J 1 +ATOM 604 O O . ARG J 1 80 ? 148.856 165.220 37.506 1.00 84.01 80 J 1 +ATOM 605 C CB . ARG J 1 80 ? 150.365 162.730 36.232 1.00 84.01 80 J 1 +ATOM 606 C CG . ARG J 1 80 ? 149.526 162.108 35.127 1.00 84.01 80 J 1 +ATOM 607 C CD . ARG J 1 80 ? 148.094 161.873 35.581 1.00 84.01 80 J 1 +ATOM 608 N NE . ARG J 1 80 ? 148.029 160.982 36.733 1.00 84.01 80 J 1 +ATOM 609 C CZ . ARG J 1 80 ? 146.964 160.838 37.510 1.00 84.01 80 J 1 +ATOM 610 N NH1 . ARG J 1 80 ? 145.848 161.512 37.286 1.00 84.01 80 J 1 +ATOM 611 N NH2 . ARG J 1 80 ? 147.022 159.999 38.541 1.00 84.01 80 J 1 +ATOM 612 O OXT . ARG J 1 80 ? 148.527 165.332 35.421 1.00 84.01 80 J 1 +# diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/__init__.py b/flax_model/alphafold3/test_data/miniature_databases/pdb_mmcif/__init__.py new file mode 100644 index 0000000000000000000000000000000000000000..e69de29bb2d1d6434b8b29ae775ad8c2e48c5391 diff --git a/flax_model/alphafold3/test_data/miniature_databases/pdb_seqres_2022_09_28__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/pdb_seqres_2022_09_28__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..711714d7676dbcffb7bd5d60aa02f34d036ceaf0 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/pdb_seqres_2022_09_28__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>4ffz_X mol:protein length:111 Envelope protein E +MASMTLKGMSYVMCTGSFKLEKEVAETQHGTVLVQVKYEGTDAPCKIPFSSQDEKGVTQNGRLITANPIVTDKEKPVNIEAEPPFGESYIVVGAGEKALKLSWFKKGSSIG +>2y3e_A mol:protein length:134 STREPTAVIDIN +MAEAGITGTWYNQLGSTFIVTAGADGALTGTYESAVGNAEGDYVLTGRYDSAPATDGSGTALGWTVAWKNNYRNAHSATTWSGQYVGGAEARINTQWLLTSGTTEANAWKSTLVGHDTFTKVKPSAASHHHHHH +>7rye_J mol:protein length:80 Protein PrgI +MATPWSGYLDDVSAKFDTGVDNLQTQVTEALDKLAAKPSDPALLAAYQSKLSEYNLYRNAQSNTVKVFKDIDAAIIQNFR +>5eq0_B mol:protein length:6 unc3866 +XFALXX +>5thk_C mol:protein length:266 Putative dehydrogenase +MAHHHHHHMVATHTLADKVVLIAGGAKNLGGLIARDLAGHGAKAVAIHYNSAASQAQAEETAAAVRAAGAEAATFQADLTTAAAVEKLFDDAKQRFGKIDIAINTVGKVLKKPFTEISEAEYDEMFAVNSKSAFFFIKEAGRHLEDHGKLVTLVTSLLGAFTPFYAAYEGSKAPVEHFTRAASKEYGARGISVTAVGPGPMDTPFFYPAEGADAVAYHKTAAALSPFSKTGLTDIEDVVPFIRHLVTDGWWITGQTILINGGYTTK +>1svu_B mol:protein length:327 Modification methylase HhaI +MIEIKDKQLTGLRFIDLFAGLGGFRLALESCGAECVYSNEWDKYAQEVYEMNFGEKPEGDITQVNEKTIPDHDILCAGFPCQAFSISGKQKGFEDSRGTLFFDIARIVREKKPKVVFMENVKNFASHDNGNTLEVVKNTMNELDYSFHAKVLNALDYGIPQKRERIYMICFRNDLNIQNFQFPKPFELNTFVKDLLLPDSEVEHLVIDRKDLVMTNQEIEQTTPKTVRLGIVGKGGWGERIYSTRGIAITLSAYGGGIFAKTGGYLVNGKTRKLHPRECARVMGYPDSYKVHPSTSQAYKQFGNSVVINVLQYIAYNIGSSLNFKPY +>3c0r_B mol:protein length:75 Ubiquitin +MQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRG +>3dnn_H mol:protein length:170 HIV-1 envelope glycoprotein gp120 +TSVITQACPKVSFEPIPIHYCAPAGFAILKCNNKTFNGTGPCTNVSTVQCTHGIRPVVSTQLLLNGSLAEEEVVIRSVNFTDNAKTIIVQLNTSVEINCTGAGHCNISRAKWNNTLKQIASKLREQFGNNKTIIFKQSSGGDPEIVTHSFNCGGEFFYCNSTQLFNSTWF +>4igl_D mol:protein length:690 YenC2 +MDIQLFSKTPSVTVFDNRGLSVRDIAYRRHPDTPKVTEECITYHQFDFRGFLAQSLDPRLNHKEVTNFSYLTDLNGNIIYTQSVDAGNTLVLNDTEGRSVIAMTNISRGENGKDDLSLAVTRTFQYENAPLPGRPLSVTEQVNGENARITEHFVYAGNTPQEKNLNLAGQCVSYYDAAGLIQTDSVSLTGKPLSVSRKLLKNLDDTNILADWQGNDTSAWNSLLATEIYTTVTRTDAAGAVLTTIDAVGNQQRVAFDIAGQLSASWLTLKGGQEQVIIKVLTYSAAGQKLREEGGNGVVTTYTYEAETQRLIGIKTERPNGHAAGAKVLQDLRYEYDPVGNVLSITNDAEETRFWRNQKVVPENAYRYDSLYQLVSASGREVAGAGQQGSDLPSPLVPLPSDSSVYTNYTRTYTYDSAGNLMRIRHSAPATNNNYTLNITVSERSNRGVMSSLTENPADVDALFTASGSQKCLQQGQSLIWTPRGELRTVLLVARGETADDSESYRYDGSSQRILKISSQQTNHSARVQRALYLPGLEWRTMTGGVAEAENLQVICIGEAGRAQVRVLHWESGKPDGIINDQIRWSYDNLTCSSGLEVDGDGLVISMEEYYPYGGTAVWAARSHIETAYKTVRYSGKERDATGLYYYGFRYYQPWAGRWLSADPAGTVDGLNLYRMVRNNPLRLTDPDGM +>2y1z_B mol:protein length:94 ALPHA-CRYSTALLIN B CHAIN +GAMEMRLEKDRFSVNLDVKHFSPEELKVKVLGDVIEVHGKHEERQDEHGFISREFHGKYRIPADVDPLTITSSMSSDGVLTVNGPRKQVSGPER +>7vy3_V mol:protein length:54 Antenna pigment protein alpha chain +MSKFYKIWMIFDPRRVFVAQGVFLFLLAVMIHLILLSTPSYNWLEISAAKYNRV +>7v2c_P mol:protein length:208 NADH dehydrogenase [ubiquinone] iron-sulfur protein 3, mitochondrial +TRPTIRPRNDVVHKQLSAFGQYVAEILPKYVQQVQVSCFNELEIFIHPDGVIPVLTFLRDHTNAQFKSLADLTAVDVPTRQNRFEIVYNLLSLRFNSRIRVKTYTDELTPIESSVTVYKAANWYEREIWDMFGVFFANHPDLRRILTDYGFEGHPFRKDFPLSGYVELRYDDEVKRVVAEPVELAQEFRKFDLNSPWEAFPAYRQPPE +>7eca_A mol:protein length:333 Kelch-like ECH-associated protein 1 +MGHHHHHHENLYFQGHMTLHKPTQAVPCRAPKVGRLIYTAGGYFRQSLSYLEAYNPSNGSWLRLADLQVPRSGLAGCVVGGLLYAVGGRNNSPDGNTDSSALDCYNPMTNQWSPCASMSVPRNRIGVGVIDGHIYAVGGSHGCIHHSSVERYEPERDEWHLVAPMLTRRIGVGVAVLNRLLYAVGGFDGTNRLNSAECYYPERNEWRMITPMNTIRSGAGVCVLHNCIYAAGGYDGQDQLNSVERYDVETETWTFVAPMRHHRSALGITVHQGKIYVLGGYDGHTFLDSVECYDPDSDTWSEVTRMTSGRSGVGVAVTMEPCRKQIDQQNCTC +>2maa_A mol:protein length:13 Temporin-A +FLPLIGRVLSGIL +>7xi7_A mol:protein length:187 Dihydrofolate reductase +MVGSLNCIVAVSQNMGIGKNGDLPWPPLRNEFRYFQRMTTTSSVEGKQNLVIMGKKTWFSIPEKNRPLKGRINLVLSRELKEPPQGAHFLSRSLDDALKLTEQPELANKVDMVWIVGGSSVYKEAMNHPGHLKLFVTRIMQDFESDTFFPEIDLEKYKLLPEYPGVLSDVQEEKGIKYKFEVYEKND +>6zmn_A mol:protein length:125 Mothers against decapentaplegic homolog 3 +GPAVKRLLGWKQGDEEEKWCEKAVKSLVKKLKKTGQLDELEKAITTQNVNTKCITIPRSLDGRLQVSHRKGLPHVIYCRLWRWPDLHSHHELRAMELCEFAFNMKKDEVCVNPYHYQRVETPVLP +>7vbn_G mol:protein length:88 Acyl carrier protein, mitochondrial +SDAPPLTLEAIKDRVLYVLKLYDKIDPEKLSVNSHFMKDLGLDSLDQVEIIMAMEDEFGFEIPDIDAEKLMCPQEIVDYIADKKDVYE +>7vaq_J mol:protein length:188 V-type ATP synthase subunit E +MSKLEAILSQEVEAEIQALLQEAEAKAEAVKREAEEKAKALLQARERALEAQYRAALRRAESAGELLVATARTQARGEVLEEVRRRVREALEALPQKPEWPEVVRKLALEALEALPGAKALVANPEDLPHLEALARERGVELQAEPALRLGVRAVGAEGKTQVENSLLARLDRAWDALSSKVAQALWG +>7osz_B mol:protein length:512 Bifunctional glutamate/proline--tRNA ligase +GAGEGQGPKKQTRLGLEAKKEENLADWYSQVITKSEMIEYHDISGCYILRPWAYAIWEAIKDFFDAEIKKLGVENCYFPMFVSQSALEKEKTHVADFAPEVAWVTRSGKTELAEPIAIRPTSETVMYPAYAKWVQSHRDLPIKLNQWCNVVRWEFKHPQPFLRTREFLWQEGHSAFATMEEAAEEVLQILDLYAQVYEELLAIPVVKGRKTEKEKFAGGDYTTTIEAFISASGRAIQGGTSHHLGQNFSKMFEIVFEDPKIPGEKQFAYQNSWGLTTRTIGVMTMVHGDNMGLVLPPRVACVQVVIIPCGITNALSEEDKEALIAKCNDYRRRLLSVNIRVRADLRDNYSPGWKFNHWELKGVPIRLEVGPRDMKSCQFVAVRRDTGEKLTVAENEAETKLQAILEDIQVTLFTRASEDLKTHMVVANTMEDFQKILDSGKIVQIPFCGEIDCEDWIKKTTARDQDLEPGAPSMGAKSLCIPFKPLCELQPGAKCVCGKNPAKYYTLFGRSY +>6y0u_A mol:protein length:115 Fucose-binding lectin +MATQGVFTLPANTRFGVTAFANSSGTQTVNVLVNNETAATFSGQSTNNAVIGTQVLNSGSSGKVQVQVSVNGRPSDLVSAQVILTNELNFALVGSEDGTDNDYNDAVVVINWPLG +>3j3y_5T mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>7pmz_D mol:protein length:504 Inosine-5'-monophosphate dehydrogenase +GSHMTANVDGVPEKFATLGLTYDDVLLLPGASAVLPNAVDTSSRISRNVRVNIPLLSAAMDKVTESRMAISMARQGGVGVLHRNLSIEDQANQVDLVKRSESGMVANPITIHPDATLGEADALCAKFRISGVPVTDGAGKLLGIVTNRDMAFETDRSRQVREVMTPMPLVTGQVGISGVDAMELLRRHKIEKLPLVDGDGILKGLITVKDFVKAEQYPHAAKDAKGRLLVGAAVGASPEALDRAQALAEAGVDFLVVDTSHGHNSNALSWMSKIKSSVGIDVVGGNVATRDGAQALIDAGVDGIKVGVGPGSICTTRVVAGIGVPQVTAIYEASLAARAAGVPLIGDGGLQYSGDIGKALAAGADTVMLGSLLAGCEESPGELQFINGKQFKSYRGMGSLGAMQSRGQGRSYSKDRYFQAEVASDDKLVPEGIEGQVPYRGPLANVLHQLVGGLRQTMGYVGAATIEEMESKGRFVRITSAGLKESHPHDIQMTVEAPNYSRSK +>3ccr_F mol:protein length:120 50S ribosomal protein L7Ae +MPVYVDFDVPADLEDDALEALEVARDTGAVKKGTNETTKSIERGSAELVFVAEDVQPEEIVMHIPELADEKGVPFIFVEQQDDLGHAAGLEVGSAAAAVTDAGEADADVEDIADKVEELR +>5omf_A mol:protein length:774 DNA polymerase,DNA polymerase,DNA polymerase +MILDTDYITEDGKPVIRIFKKENGEFKIEYDRTFEPYFYALLKDDSAIEEVKKITAERHGTVVTVKRVEKVQKKFLGRPVEVWKLYFTHPQDVPAIRDKIREHPAVIDIYEYDIPFAKRYLIDKGLVPMEGDEELKMLAFAIATLYHEGEEFAEGPILMISYADEEGARVITWKNVDLPYVDVVSTEREMIKRFLRVVKEKDPDVLITYNGDNFDFAYLKKRCEKLGINFALGRDGSEPKIQRMGDRFAVEVKGRIHFDLYPVIRRTINLPTYTLEAVYEAVFGQPKEKVYAEEITTAWETGENLERVARYSMEDAKVTYELGKEFLPMEAQLSRLIGQSLWDVSRSSTGNLVEWFLLRKAYERNELAPNKPDEKELARRRQSYEGGYVKEPERGLWENIVYLDFRSLYPSIIITHNVSPDTLNREGCKEYDVAPQVGHRFCKDFPGFIPSLLGDLLEERQKIKKKMKATIDPIERKLLDYRQRAIKILANSYYGYYGYARARWYCKECAESVTAWGREYITMTIKEIEEKYGFKVIYSDTDGFFATIPGADAETVKKKAMEFLKYINAKLPGALELEYEGFYKRGFFVTKKKYAVIDEEGKITTRGLEIVRRDWSEIAKETQARVLEALLKDGDVEKAVRIVKEVTEKLSKYEVPPEKLVIHEQITRDLKDYKATGPHVAVAKRLAARGVKIRPGTVISYIVLKGSGRIGDRAIPFDEFDPTKHKYDAEYYIENQVLPAVERILRAFGYRKEDLRYQKTRQVGLSAWLKPKGT +>4chk_E mol:protein length:127 AUXIN RESPONSE FACTOR 5 +GAMSKGSSWQKIATPRVRTYTKVQKTGSVGRSIDVTSFKDYEELKSAIECMFGLEGLLTHPQSSGWKLVYVDYESDVLLVGDDPWEEFVGCVRCIRILSPTEVQQMSEEGMKLLNSAGINDLKTSVS +>5yfm_A mol:protein length:414 Isocitrate dehydrogenase [NADP] cytoplasmic +MSKKISGGSVVEMQGDEMTRIIWELIKEKLIFPYVELDLHSYDLGIENRDATNDQVTKDAAEAIKKHNVGVKCATITPDEKRVEEFKLKQMWKSPNGTIRNILGGTVFREAIICKNIPRLVSGWVKPIIIGRHAYGDQYRATDFVVPGPGKVEITYTPSDGTQKVTYLVHNFEEGGGVAMGMYNQDKSIEDFAHSSFQMALSKGWPLYLSTKNTILKKYDGRFKDIFQEIYDKQYKSQFEAQKIWYEHRLIDDMVAQAMKSEGGFIWACKNYDGDVQSDSVAQGYGSLGMMTSVLVCPDGKTVEAEAAHGTVTRHYRMYQKGQETSTNPIASIFAWTRGLAHRAKLDNNKELAFFANALEEVSIETIEAGFMTKDLAACIKGLPNVQRSDYLNTFEFMDKLGENLKIKLAQAKL +>1h0k_B mol:protein length:364 2,4-DIENOYL-COA REDUCTASE +MITAQAVLYTQHGEPKDVLFTQSFEIDDDNLAPNEVIVKTLGSPINPSDINQIQGVYPSKPAKTTGFGTAEPAAPCGNEGLFEVIKVGSNVSSLEAGDWVIPSHVNFGTWRTHALGNDDDFIKLPNPAQSKANGKPNGLTINQGATISVNPLTAYLMLTHYVKLTPGKDWFIQNGGTSAVGKYASQIGKLLNFNSISVIRDRPNLDEVVASLKELGATQVITEDQNNSKEFGPTIKEWIKQSGGEAKLALNCVGGKSSTGIARKLNNNGLMLTYGGMSFQPVTIPTSLYIFKNFTSAGFWVTELLKNNKELKTSTLNQIIAWYEEGKLTDAKSIETLYDGTKPLHELYQDGVANSKDGKQLITY +>1b4n_B mol:protein length:619 FORMALDEHYDE FERREDOXIN OXIDOREDUCTASE +MYGWWGRILRVNLTTGEVKVQEYPEEVAKKFIGGRGLAAWILWNEARGVEPLSPENKLIFAAGPFNGLPTPSGGKLVVAAKSPLTGGYGDGNLGTMASVHLRRAGYDALVVEGKAKKPVYIYIEDDNVSILSAEGLWGKTTFETERELKEIHGKNVGVLTIGPAGENLVKYAVVISQEGRAAGRPGMGAVMGSKKLKAVVIRGTKEIPVADKEELKKLSQEAYNEILNSPGYPFWKRQGTMAAVEWCNTNYALPTRNFSDGYFEFARSIDGYTMEGMKVQQRGCPYCNMPCGNVVLDAEGQESELDYENVALLGSNLGIGKLNEVSVLNRIADEMGMDTISLGVSIAHVMEAVERGILKEGPTFGDFKGAKQLALDIAYRKGELGNLAAEGVKAMAEKLGTHDFAMHVKGLEVSGYNCYIYPAMALAYGTSAIGAHHKEAWVIAWEIGTAPIEGEKAEKVEYKISYDPIKAQKVVELQRLRGGLFEMLTACRLPWVEVGLSLDYYPKLLKAITGVTYTWDDLYKAADRVYSLIRAYWVREFNGKWDRKMDYPPKRWFTEGLKSGPHKGEHLDEKKYDELLSEYYRIRGWDERGIPKKETLKELDLDFVIPELEKVTNLE +>5b66_c mol:protein length:455 Photosystem II CP43 reaction center protein +NSIFATNRDQESSGFAWWAGNARLINLSGKLLGAHVAHAGLIVFWAGAMTLFELAHFIPEKPMYEQGLILIPHIATLGWGVGPGGEVVDTFPFFVVGVVHLISSAVLGFGGVYHAIRGPETLEEYSSFFGYDWKDKNKMTTILGFHLIVLGIGALLLVAKAMFFGGLYDTWAPGGGDVRVITNPTLDPRVIFGYLLKSPFGGEGWIVSVNNLEDVVGGHIWIGLICIAGGIWHILTTPFGWARRAFIWSGEAYLSYSLGALSMMGFIATCFVWFNNTVYPSEFYGPTGPEASQAQAMTFLIRDQKLGANVGSAQGPTGLGKYLMRSPTGEIIFGGETMRFWDFRGPWLEPLRGPNGLDLNKIKNDIQPWQERRAAEYMTHAPLGSLNSVGGVATEINSVNFVSPRSWLATSHFVLAFFFLVGHLWHAGRARAAAAGFEKGIDRESEPVLSMPSLD +>6ujv_A mol:protein length:129 Envelope glycoprotein GP41 +LLELDKWASLWNWFDITNWLWYIRIFIIIVGSLIGLRIVFAVLSLVNRVRQGYSPLSFQTHLPTPRGPDRPEGIEEEGGERDRDRSIRLVNGSLALIWDDLRSLSLFSYHRLRDLLLIVTRIVELLGRR +>5lzf_d mol:protein length:205 30S ribosomal protein S4 +ARYLGPKLKLSRREGTDLFLKSGVRAIDTKCKIEQAPGQHGARKPRLSDYGVQLREKQKVRRIYGVLERQFRNYYKEAARLKGNTGENLLALLEGRLDNVVYRMGFGATRAEARQLVSHKAIMVNGRVVNIASYQVSPNDVVSIREKAKKQSRVKAALELAEQREKPTWLEVDAGKMEGTFKRKPERSDLSADINEHLIVELYSK +>3j92_l mol:protein length:51 eL39 +MSSHKTFRIKRFLAKKQKQNRPIPQWIRMKTGNKIRYNSKRRHWRRTKLGL +>4ato_A mol:protein length:194 TOXN +MTNKDNPKFHTISTEYIDYLREADSKVPFNKDEQHSRPYVGVLEKINGHDYFVPLTSRNDKNFNSQVSVKLFDNDEKRIGVLLVNNMIPVPEKECKEIDIAEKTAADPQYGNLMLKQYLFLKENMDRVTNKVEKVYKDVTVQGKPSHKQKFLKGVCCDFPKLEEKCQEYKERDQAKERDKARRIAYMRQMGRER +>6sh8_N mol:protein length:174 CRISPR-associated protein Cmrx +MSTQREYVFIPITNSITIDVKITIGGSDHITNIDERGIHNVLVITGYAVDEKNGRLVPTLDPCDYVKGILVAGTPQQAQSNDFLTLKLPANKLYLIRKKGNISDDLKIYIPYSSPDARNSMKTKPVSISDDTIVNNIIKEVFDKIYNITQKEKVKIEKVKEDIKELFSYYALEQ +>4v86_S mol:protein length:520 Capsid protein VP1 +GADGVGNASGNWHCDSTWLGDRVITTSTRTWALPTYNNHLYKQISSASTGASNDNHYFGYSTPWGYFDFNRFHCHFSPRDWQRLINNNWGFRPKRLNFKLFNIQVKEVTTNDGVTTIANNLTSTVQVFSDSEYQLPYVLGSAHQGCLPPFPADVFMIPQYGYLTLNNGSQAVGRSSFYCLEYFPSQMLRTGNNFTFSYTFEDVPFHSSYAHSQSLDRLMNPLIDQYLYYLNRTQNQSGSAQNKDLLFSRGSPAGMSVQPKNWLPGPCYRQQRVSKTKTDNNNSNFTWTGASKYNLNGRESIINPGTAMASHKDDKDKFFPMSGVMIFGKESAGASNTALDNVMITDEEEIKATNPVATERFGTVAVNLQSSSTDPATGDVHVMGALPGMVWQDRDVYLQGPIWAKIPHTDGHFHPSPLMGGFGLKHPPPQILIKNTPVPANPPAEFSATKFASFITQYSTGQVSVEIEWELQKENSKRWNPEVQYTSNYAKSANVDFTVDNNGLYTEPRPIGTRYLTRPL +>4kis_B mol:protein length:328 Putative integrase [Bacteriophage A118] +RDRMVMGKIKRIEAGLPLTTAKGRTFGYDVIDTKLYINEEEAKQLRLIYDIFEEEQSITFLQKRLKKLGFKVRTYNRYNNWLTNDLYCGYVSYKDKVHVKGIHEPIISEEQFYRVQEIFSRMGKNPNMNKESASLLNNLVVCSKCGLGFVHRRKDTVSRGKKYHYRYYSCKTYKHTHELEKCGNKIWRADKLEELIIDRVNNYSFASRNIDKEDELDSLNEKLKIEHAKKKRLFDLYINGSYEVSELDSMMNDIDAQINYYEAQIEANEELKKNKKIQENLADLATVDFNSLEFREKQLYLKSLINKIYIDGEQVTIEWLLEHHHHHH +>3vap_A mol:protein length:272 Aurora kinase A +GAMGSKRQWALEDFEIGRPLGKGKFGNVYLAREKQSKFILALKVLFKAQLEKAGVEHQLRREVEIQSHLRHPNILRLYGYFHDATRVYLILEYAPLGTVYRELQKLSKFDEQRTATYITELANALSYCHSKRVIHRDIKPENLLLGSAGELKIADFGWSVHAPSSRRTTLCGTLDYLPPEMIEGRMHDEKVDLWSLGVLCYEFLVGKPPFEANTYQETYKRISRVEFTFPDFVTEGARDLISRLLKHNPSQRPMLREVLEHPWITANSSKPS +>2ybu_F mol:protein length:381 ACIDIC MAMMALIAN CHITINASE +EAEAYQLTCYFTNWAQYRPGLGRFMPDDINPCLCTHLIYAFAGMQNNEITTIEWNDVTLYQAFNGLKNKNSQLKTLLAIGGWNFGTAPFTAMVSTPENRQTFITSVIKFLRQYEFDGLDFDWEYPGSRGSPPQDKHLFTVLVQEMREAFEQEAKQINKPRLMVTAAVAAGISNIQSGYEIPQLSQYLDYIHVMTYDLHGSWEGYTGENSPLYKYPTDTGSNAYLNVDYVMNYWKDNGAPAEKLIVGFPTYGHNFILSNPSNTGIGAPTSGAGPAGPYAKESGIWAYYEICTFLKNGATQGWDAPQEVPYAYQGNVWVGYDNIKSFDIKAQWLKHNKFGGAMVWAIDLDDFTGTFCNQGKFPLISTLKKALGLQSASCTAPA +>7ebk_A mol:protein length:187 Tripartite motif-containing protein 66 +SPIENEDFCAVCINGGELLCCDRCPKVYHLSCHVPALLSFPGGEWVCTLCRSLTQPEMEYDCENARYGVRVLPGLSMYDQKKCEKLVLSLCCNSLSLPFHEPVSPLARHYYQIIKRPMDLSIIRRKLQKKDPAHYTTPEEVVSDVRLMFWNCAKFNYPDSEVAEAGRCLEVFFEGWLKEIYPDKCFA +>4pcf_B mol:protein length:239 Ma18-TIM +MSKPQPIAAANWKSGSPDSLSGLIDLFNSTSINHDVQCVVASTFVHLAMTKERLSHPKFVIAAQNAGNTDALASLKDFGVNWIVLGHFERRWYYGETNEIVADKVAAAVASGFMVIACIGETLQERESGRTAVVVLTQIAAIAKKLKKADWAKVVIAYEPVWAIGTGKVVTPQQAQEAHALIRSWVSSKIGADVAGELRILYGGSVNGKNARTLYQQRDVNGFLAGLKPEFVDIIKATQ +>3txx_F mol:protein length:359 Putrescine carbamoyltransferase +MGSSHHHHHHSSGLVPRGSHMKRDYVTTETYTKEEMHYLVDLSLKIKEAIKNGYYPQLLKNKSLGMIFQQSSTRTRVSFETAMEQLGGHGEYLAPGQIQLGGHETIEDTSRVLSRLVDILMARVERHHSIVDLANCATIPVINGMSDYNHPTQELGDLCTMVEHLPEGKKLEDCKVVFVGDATQVCFSLGLITTKMGMNFVHFGPEGFQLNEEHQAKLAKNCEVSGGSFLVTDDASSVEGADFLYTDVWYGLYEAELSEEERMKVFYPKYQVNQEMMDRAGANCKFMHCLPATRGEEVTDEVIDGKNSICFDEAENRLTSIRGLLVYLMNDYEAKNPYDLIKQAEAKKELEVFLDTQSI +>6oro_A mol:protein length:153 RC1 variant of HIV-1 Env glycoprotein gp41 +AVGIGAVSLGFLGAAGSTMGAASMTLTVQARNLLSGIVQQQSNLLRAPEPQQHLLKDTHWGIKQLQARVLAVEHYLRDQQLLGIWGCSGKLICCTNVPWNSSWSNRNLSEIWDNMTWLQWDKEISNYTQIIYGLLEESQNQQEKNEQDLLALD +>2yso_A mol:protein length:46 Zinc finger protein 95 homolog +GSSGSSGSREKSHQCRECGEIFFQYVSLIEHQVLHMGQKNSGPSSG +>7nal_H mol:protein length:697 NAD(+) hydrolase SARM1 +LAVPGPDGGGGTGPWWAAGGRGPREVSPGAGTEVQDALERALPELQQALSALKQAGGARAVGAGLAEVFQLVEEAWLLPAVGREVAQGLCDAIRLDGGLDLLLRLLQAPELETRVQAARLLEQILVAENRDRVARIGLGVILNLAKEREPVELARSVAGILEHMFKHSEETCQRLVAAGGLDAVLYWCRRTDPALLRHCALALGNCALHGGQAVQRRMVEKRAAEWLFPLAFSKEDELLRLHACLAVAVLATNKEVEREVERSGTLALVEPLVASLDPGRFARCLVDASDTSQGRGPDDLQRLVPLLDSNRLEAQCIGAFYLCAEAAIKSLQGKTKVFSDIGAIQSLKRLVSYSTNGTKSALAKRALRLLGEEVPRPILPSVPSWKEAEVQTWLQQIGFSKYCESFREQQVDGDLLLRLTEEELQTDLGMKSGITRKRFFRELTELKTFANYSTCDRSNLADWLGSLDPRFRQYTYGLVSCGLDRSLLHRVSEQQLLEDCGIHLGVHRARILTAAREMLHSPLPCTGGKPSGDTPDVFISYRRNSGSQLASLLKVHLQLHGFSVFIDVEKLEAGKFEDKLIQSVMGARNFVLVLSPGALDKCMQDHDCKDWVHKEIVTALSCGKNIVPIIDGFEWPEPQVLPEDMQAVLTFNGIKWSHEYQEATIEKIIRFLQGRSSRDSSAGSDTSLEGAAPMGPT +>3dv5_C mol:protein length:402 Beta-secretase 1 +GPDEEPEEPGRRGSFVEMVDNLRGKSGQGYYVEMTVGSPPQTLNILVDTGSSNFAVGAAPHPFLHRYYQRQLSSTYRDLRKGVYVPYTQGKWEGELGTDLVSIPHGPNVTVRANIAAITESDKFFINGSNWEGILGLAYAEIARPDDSLEPFFDSLVKQTHVPNLFSLQLCGAGFPLNQSEVLASVGGSMIIGGIDHSLYTGSLWYTPIRREWYYEVIIVRVEINGQDLKMDCKEYNYDKSIVDSGTTNLRLPKKVFEAAVKSIKAASSTEKFPDGFWLGEQLVCWQAGTTPWNIFPVISLYLMGEVTNQSFRITILPQQYLRPVEDVATSQDDCYKFAISQSSTGTVMGAVIMEGFYVVFDRARKRIGFAVSACHVHDEFRTAAVEGPFVTLDMEDCGYNI +>5lky_C mol:protein length:300 N-acetylneuraminate lyase +MEHHHHHHNKDLKGLYAALLVPFDENGQVNEQGLKQIAQNAIETEELDGLYVNGSSGENFLLNTEQKKQVFKVAKEAVGDKVKLIAQVGSLDLNEAIELGKYATELGYDALSAVTPFYYPFTFEEIRDYYFDIIEATQNNMIIYAIPDLTGVNISIEQFSELFNHEKIVGVKYTAPNFFLLERIRKAFPDKLILSGCDEMLVQATISGVDGAIGSTYNVNGRRARKIFDLARQGQIQEAYQLQHDSNDIIETVLSMGIYPTLKEILRHRGIDAGLPKRPFKPFNEAHRQTLDQLIAKYDL +>5lzz_OO mol:protein length:168 uS11 +MKARALSGSGVRRRRAAMAPRKGKEKKEEQVISLGPQVAEGENVFGVCHIFASFNDTFVHVTDLSGKETICRVTGGMKVKADRDESSPYAAMLAAQDVAQRCKELGITALHIKLRATGGNRTKTPGPGAQSALRALARSGMKIGRIEDVTPIPSDSTRRKGGRRGRRL +>6swb_A mol:protein length:135 Two-component response regulator +HHHHHHWKVLIADDEAIIREGIRESIDWNEFNMEVVAEAEDGEEALELALRHRVDVLFVDLSMPIMDGLTLMKYAREKLPNCHMIVITGYDEFSYAQEAIRLQVDDYLLKPTDPQRLREVVAKVKEKLEQEQKEK +>1z7h_A mol:protein length:447 Tetanus toxin light chain +GSHMMPITINNFRYSDPVNNDTIIMMEPPYCKGLDIYYKAFKITDRIWIVPERYEFGTKPEDFNPPSSLIEGASEYYDPNYLRTDSDKDRFLQTMVKLFNRIKNNVAGEALLDKIINAIPYLGNSYSLLDKFDTNSNSVSFNLLEQDPSGATTKSAMLTNLIIFGPGPVLNKNEVRGIVLRVDNKNYFPCRDGFGSIMQMAFCPEYVPTFDNVIENITSLTIGKSKYFQDPALLLMHELIHVLHGLYGMQVSSHEIIPSKQEIYMQHTYPISAEELFTFGGQDANLISIDIKNDLYEKTLNDYKAIANKLSQVTSCNDPNIDIDSYKQIYQQKYQFDKDSNGQYIVNEDKFQILYNSIMYGFTEVELGKKFNIKTRLSYFSMNHDPVKIPNLLDDTIYNDTEGFNIESKDLKSEYKGQNMRVNTNAFRNVDGSGLVSKLIGLCKKII +>6sic_o mol:protein length:174 CRISPR-associated protein Cmrx +MSTQREYVFIPITNSITIDVKITIGGSDHITNIDERGIHNVLVITGYAVDEKNGRLVPTLDPCDYVKGILVAGTPQQAQSNDFLTLKLPANKLYLIRKKGNISDDLKIYIPYSSPDARNSMKTKPVSISDDTIVNNIIKEVFDKIYNITQKEKVKIEKVKEDIKELFSYYALEQ +>1nlq_C mol:protein length:108 Nucleoplasmin-like protein +MAEESFYGVTLTAESDSVTWDVDEDYARGQKLVIKQILLGAEAKENEFNVVEVNTPKDSVQIPIAVLKAGETRAVNPDVEFYESKVTFKLIKGSGPVYIHGHNIKDDV +>3gtc_A mol:protein length:358 Beta-lactamase +APQQINDIVHRTITPLIEQQKIPGMAVAVIYQGKPYYFTWGYADIAKKQPVTQQTLFELGSVSKTFTGVLGGDAIARGEIKLSDPTTKYWPELTAKQWNGITLLHLATYTAGGLPLQVPDEVKSSSDLLRFYQNWQPAWAPGTQRLYANSSIGLFGALAVKPSGLSFEQAMQTRVFQPLKLNHTWINVPPAEEKNYAWGYREGKAVHVSPGALDAEAYGVKSTIEDMARWVQSNLKPLDINEKTLQQGIQLAQSRYWQTGDMYQGLGWEMLDWPVNPDSIINGSDNKIALAARPVKAITPPTPAVRASWVHKTGATGGFGSYVAFIPEKELGIVMLANKNYPNPARVDAAWQILNALQ +>7av1_A mol:protein length:613 Leukotriene A-4 hydrolase +GPGPEIVDTCSLASPASVCRTKHLHLRCSVDFTRRTLTGTAALTVQSQEDNLRSLVLDTKDLTIEKVVINGQEVKYALGERQSYKGSPMEISLPIALSKNQEIVIEISFETSPKSSALQWLTPEQTSGKEHPYLFSQCQAIHCRAILPCQDTPSVKLTYTAEVSVPKELVALMSAIRDGETPDPEDPSRKIYKFIQKVPIPCYLIALVVGALESRQIGPRTLVWSEKEQVEKSAYEFSETESMLKIAEDLGGPYVWGQYDLLVLPPSFPYGGMENPCLTFVTPTLLAGDKSLSNVIAHEISHSWTGNLVTNKTWDHFWLNEGHTVYLERHICGRLFGEKFRHFNALGGWGELQNSVKTFGETHPFTKLVVDLTDIDPDVAYSSVPYEKGFALLFYLEQLLGGPEIFLGFLKAYVEKFSYKSITTDDWKDFLYSYFKDKVDVLNQVDWNAWLYSPGLPPIKPNYDMTLTNACIALSQRWITAKEDDLNSFNATDLKDLSSHQLNEFLAQTLQRAPLPLGHIKRMQEVYNFNAINNSEIRFRWLRLCIQSKWEDAIPLALKMATEQGRMKFTRPLFKDLAAFDKSHDQAVRTYQEHKASMHPVTAMLVGKDLKVD +>3wkm_B mol:protein length:180 Putative zinc metalloprotease aq_1964 +GSEVPKYLKEPVVVGYVQRDSIAQKIGIKPGDKIIKINGYEVRTWEDLRDALIRLSLDGVKETTLFLERNGEVLHLTIKVPNVQKGEELGIAPLVKPVVGGVKKGSPADQVGIKPGDLILEVNGKKINTWYELVEEVRKSQGKAIKLKILRNGKMIEKELIPAKDPKTGTYFIGLFPKTE +>7mei_e mol:protein length:215 DNA-directed RNA polymerases I, II, and III subunit RPABC1 +MDQENERNISRLWRAFRTVKEMVKDRGYFITQEEVELPLEDFKAKYCDSMGRPQRKMMSFQANPTEESISKFPDMGSLWVEFCDEPSVGVKTMKTFVIHIQEKNFQTGIFVYQNNITPSAMKLVPSIPPATIETFNEAALVVNITHHELVPKHIRLSSDEKRELLKRYRLKESQLPRIQRADPVALYLGLKRGEVVKIIRKSETSGRYASYRICM +>1e67_D mol:protein length:128 AZURIN +AECSVDIQGNDQMQFNTNAITVDKSCKQFTVNLSHPGNLPKNVMGHNWVLSTAADMQGVVTDGMASGLDKDYLKPDDSRVIAHTKLIGSGEKDSVTFDVSKLKEGEQYMFFCTFPGHSALMKGTLTLK +>5dzn_F mol:protein length:114 T-cell immunoglobulin and mucin domain-containing protein 4 +MVTSETVVTEVLGHRVTLPCLYSSWSHNSNSMCWGKDQCPYSGCKEALIRTDGMRVTSRKSAKYRLQGTIPRGDVSLTILNPSESDSGVYCCRIEVPGWFNDVKINVRLNLQRA +>3s34_L mol:protein length:214 1121B Fab light chain +DIQMTQSPSSVSASIGDRVTITCRASQGIDNWLGWYQQKPGKAPKLLIYDASNLDTGVPSRFSGSGSGTYFTLTISSLQAEDFAVYFCQQAKAFPPTFGGGTKVDIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>6wz5_A mol:protein length:135 Histone H3.2 +ARTKQTARKSTGGKAPRKQLATKAARKSAPATGGVKKPHRYRPGTVALREIRRYQKSTELLIRKLPFQRLVREIAQDFKTDLRFQSSAVMALQEASEAYLVALFEDTNLCAIHAKRVTIMPKDIQLARRIRGERA +>6r1u_A mol:protein length:135 Histone H3.2 +ARTKQTARKSTGGKAPRKQLATKAARKSAPATGGVKKPHRYRPGTVALREIRRYQKSTELLIRKLPFQRLVREIAQDFKTDLRFQSSAVMALQEASEAYLVALFEDTNLCAIHAKRVTIMPKDIQLARRIRGERA +>1ht6_A mol:protein length:405 ALPHA-AMYLASE ISOZYME 1 +HQVLFQGFNWESWKQSGGWYNMMMGKVDDIAAAGVTHVWLPPPSHSVSNEGYMPGRLYDIDASKYGNAAELKSLIGALHGKGVQAIADIVINHRCADYKDSRGIYCIFEGGTSDGRLDWGPHMICRDDTKYSDGTANLDTGADFAAAPDIDHLNDRVQRELKEWLLWLKSDLGFDAWRLDFARGYSPEMAKVYIDGTSPSLAVAEVWDNMATGGDGKPNYDQDAHRQNLVNWVDKVGGAASAGMVFDFTTKGILNAAVEGELWRLIDPQGKAPGVMGWWPAKAVTFVDNHDTGSTQAMWPFPSDKVMQGYAYILTHPGIPCIFYDHFFNWGFKDQIAALVAIRKRNGITATSALKILMHEGDAYVAEIDGKVVVKIGSRYDVGAVIPAGFVTSAHGNDYAVWEKN +>2av7_E mol:protein length:100 Beta-2-microglobulin +MIQRTPKIQVYSRHPAENGKSNFLNCYVSGFHPSDIEVDLLKNGERIEKVEHSDLSFSKDWSFYLLYYTEFTPTEKDEYACRVNHVTLSQPKIVKWDRDM +>5pcd_A mol:protein length:138 Bromodomain adjacent to zinc finger domain protein 2B +MHHHHHHSSGVDLGTENLYFQSMSVKKPKRDDSKDLALCSMILTEMETHEDAWPFLLPVNLKLVPGYKKVIKKPMDFSTIREKLSSGQYPNLETFALDVRLVFDNCETFNEDDSDIGRAGHNMRKYFEKKWTDTFKVS +>5cx1_L mol:protein length:523 Nitrogenase molybdenum-iron protein beta chain +MSQQVDKIKASYPLFLDQDYKDMLAKKRDGFEEKYPQDKIDEVFQWTTTKEYQELNFQREALTVNPAKACQPLGAVLCALGFEKTMPYVHGSQGCVAYFRSYFNRHFREPVSCVSDSMTEDAAVFGGQQNMKDGLQNCKATYKPDMIAVSTTCMAEVIGDDLNAFINNSKKEGFIPDEFPVPFAHTPSFVGSHVTGWDNMFEGIARYFTLKSMDDKVVGSNKKINIVPGFETYLGNFRVIKRMLSEMGVGYSLLSDPEEVLDTPADGQFRMYAGGTTQEEMKDAPNALNTVLLQPWHLEKTKKFVEGTWKHEVPKLNIPMGLDWTDEFLMKVSEISGQPIPASLTKERGRLVDMMTDSHTWLHGKRFALWGDPDFVMGLVKFLLELGCEPVHILCHNGNERWKKAVDAILAASPYGKNATVYIGKDLWHLRSLVFTDKPDFMIGNSYGKFIQRDTLHKGKEFEVPLIRIGFPIFDRHHLHRSTTLGYEGAMQILTTLVNSILERLDEETRGMQATDYNHDLVR +>3cw1_1 mol:protein length:86 Small nuclear ribonucleoprotein F +MSLPLNPKPFLNGLTGKPVMVKLKWGMEYKGYLVSVDGYMNMQLANTEEYIDGALSGHLGEVLIRCNNVLYIRGVEEEEEDGEMRE +>7toc_A mol:protein length:363 Ketol-acid reductoisomerase, mitochondrial +SNAPVVSAAPLATRGLKTINFGGTEEVVHERADWPREKLLEYFKNDTMALIGYGSQGYGQGLNLRDNGLNVIIGVRKNGASWKAAIEDGWVPGENLFDVKEAITKGTIIMNLLSDAAQSETWPDLKPLITEGKTLYFSHGFSPVFKDLTKVEPPSNVDVILAAPKGSGRTVRSLFLEGRGINSSYAVWNDVTGKAEEKAIAMAVAIGSGYVYQTTFEREVNSDLYGERGCLMGGIHGMFLAQYEVLRENGHTPSEAFNETVEEATQSLYPLIGKYGMDYMYDACSTTARRGALDWYPRFKDALKPVFVELYESVKNGTETQRSLDFNGAPDYRERLEEELETIRNMEIWKVGKEVRKLRPENQ +>6yfg_IG mol:protein length:130 coat protein +SKPIAIFKLRELSSDSTLFTLPGHSVTLPNTLGIVSHLPTPRKGNPGTVKTMRNLRKTILLGAGTASERAVPIVIKTETSFPVGTTEEDRAEVLKQMASFLIEEVKNNQELAYSGYVQDKYFIEDLVITE +>4ac5_H mol:protein length:258 REACTION CENTER PROTEIN H CHAIN +MYHGALAQHLDIAQLVWYAQWLVIWTVVLLYLRREDRREGYPLVEPLGLVKLAPEDGQVYELPYPKTFVLPHGGTVTVPRRRPETRELKLAQTDGFEGAPLQPTGNPLVDAVGPASYAERAEVVDATVDGKAKIVPLRVATDFSIAEGDVDPRGLPVVAADGVEAGTVTDLWVDRSEHYFRYLELSVAGSARTALIPLGFCDVKKDKIVVTSILSEQFANVPRLQSRDQITLREEDKVSAYYAGGLLYATPERAESLL +>5m9e_B mol:protein length:77 Microtubule integrity protein mal3 +SGSAKQAQQQITSLETQLYEVNETMFGLERERDFYFNKLREIEILVQTHLTTSPMSMENMLERIQAILYSTEDGFEL +>5o61_BH mol:protein length:132 30S ribosomal protein S8 +MTMTDPIADFLTRLRNANSAYHDEVTLPHSKLKANIAEILKREGYISDYRTEDARVGKSLVVQLKYGPSRERSIAGLRRVSKPGLRVYAKSTNLPRVLGGLGVAIISTSSGLLTDRQAARQGVGGEVLAYVW +>6owg_CF mol:protein length:105 Ethanolamine utilization protein EutN/carboxysome structural protein Ccml +MQMAKVCGTVVGTQKLPSMTGVKLLLLQFIDANGELLPKYEVAADPVGAGLGEWVLVNRGSAARQTEYHQNRPLDAMVVAIIDTVTVNNRRLYGEGSWSHPQFEK +>6ywv_K mol:protein length:249 60S ribosomal protein L16 +MKHNASSALLSAFQGLRISSSATPFRAASLATSAVRRPIAPTPVSVASHVRLFSATAIQAGSWLEPNLNRKKKMMKGRPRVPTGGSTKGTTVVWGDYGLRMRDHHRRISAQQLKLAEDTIKQRLRGQKYRLYKRVACNVGVYVSGNEMRMGKGKGSFDHWATRVAVNQIIFEIRGQLHEQVIRDAFRLAGHKLPGLYEFVKKGDPPVVGITKLEDGLTVEDLKNPRKKLLMPEITQSAASTSSTAAPPS +>2f0x_F mol:protein length:148 Thioesterase superfamily member 2 +MTSMTQSLREVIKAMTKARNFERVLGKITLVSAAPGKVICEMKVEEEHTNAIGTLHGGLTATLVDNISTMALLCTERGAPGVSVDMNITYMSPAKLGEDIVITAHVLKQGKTLAFTSVDLTNKATGKLIAQGRHTKHLGNLEHHHHHH +>2q28_B mol:protein length:564 oxalyl-CoA decarboxylase +MSDQLQMTDGMHIIVEALKQNNIDTIYGVVGIPVTDMARHAQAEGIRYIGFRHEQSAGYAAAASGFLTQKPGICLTVSAPGFLNGLTALANATVNGFPMIMISGSSDRAIVDLQQGDYEELDQMNAAKPYAKAAFRVNQPQDLGIALARAIRVSVSGRPGGVYLDLPANVLAATMEKDEALTTIVKVENPSPALLPCPKSVTSAISLLAKAERPLIILGKGAAYSQADEQLREFIESAQIPFLPMSMAKGILEDTHPLSAAAARSFALANADVVMLVGARLNWLLAHGKKGWAADTQFIQLDIEPQEIDSNRPIAVPVVGDIASSMQGMLAELKQNTFTTPLVWRDILNIHKQQNAQKMHEKLSTDTQPLNYFNALSAVRDVLRENQDIYLVNEGANTLDNARNIIDMYKPRRRLDCGTWGVMGIGMGYAIGASVTSGSPVVAIEGDSAFGFSGMEIETICRYNLPVTIVIFNNGGIYRGDGVDLSGAGAPSPTDLLHHARYDKLMDAFRGVGYNVTTTDELRHALTTGIQSRKPTIINVVIDPAAGTESGHITKLNPKQVAGN +>3n7k_A mol:protein length:426 Botulinum neurotoxin type C1 +NNINDSKILSLQNRKNTLVDTSGYNAEVSEEGDVQLNPIFPFDFKLGSSGEDRGKVIVTQNENIVYNSMYESFSISFWIRINKWVSNLPGYTIIDSVKNNSGWSIGIISNFLVFTLKQNEDSEQSINFSYDISNNAPGYNKWFFVTVTNNMMGNMKIYINGKLIDTIKVKELTGINFSKTITFEINKIPDTGLITSDSDNINMWIRDFYIFAKELDGKDINILFNSLQYTNVVKDYWGNDLRYNKEYYMVNIDYLNRYMYANSRQIVFNTRRNNNDFNEGYKIIIKRIRGNTNDTRVRGGDILYFDMTINNKAYNLFMKNETMYADNHSTEDIYAIGLREQTKDINDNIIFQIQPMNNTYYYASQIFKSNFNGENISGICSIGTYRFRLGGDWYRHNYLVPTVKQGNYASLLESTSTHWGFVPVSE +>6q6g_A mol:protein length:1855 Anaphase-promoting complex subunit 1,Anaphase-promoting complex subunit 1 +MSNFYEERTTMIAARDLQEFVPFGRDHCKHHPNALNLQLRQLQPASELWSSDGAAGLVGSLQEVTIHEKQKESWQLRKGVSEIGEDVDYDEELYVAGNMVIWSKGSKSQALAVYKAFTVDSPVQQALWCDFIISQDKSEKAYSSNEVEKCICILQSSCINMHSIEGKDYIASLPFQVANVWPTKYGLLFERSASSHEVPPGSPREPLPTMFSMLHPLDEITPLVCKSGSLFGSSRVQYVVDHAMKIVFLNTDPSIVMTYDAVQNVHSVWTLRRVKSEEENVVLKFSEQGGTPQNVATSSSLTAHLRLAPETEPIVPELCIDHLWTETITNIREKNSQASKVFITSDLCGQKFLCFLVESQLQLRCVKFQESNDKTQLIFGSVTNIPAKDAAPVEKIDTMLVLEGSGNLVLYTGVVRVGKVFIPGLPAPSLTMSNTMPRPSTPLDGVSTPKPLSKLLGSLDEVVLLSPVPELRDSSKLHDSLYNEDCTFQQLGTYIHSIRDPVHNRVTLELSNGSMVRITIPEIATSELVQTCLQAIKFILPKEIAVQMLVKWYNVHSAPGGPSYHSEWNLFVTCLMNMMGYNTDRLAWTRNFDFEGSLSPVIAPKKARPSETGSDDDWEYLLNSDYHQNVESHLLNRSLCLSPSEASQMKDEDFSQNLSLDSSTLLFTHIPAIFFVLHLVYEELKLNTLMGEGICSLVELLVQLARDLKLGPYVDHYYRDYPTLVRTTGQVCTIDPGQTGFMHHPSFFTSEPPSIYQWVSSCLKGEGMPPYPYLPGICERSRLVVLSIALYILGDESLVSDESSQYLTRITIAPQKLQVEQEENRFSFRHSTSVSSLAERLVVWMTNVGFTLRDLETLPFGIALPIRDAIYHCREQPASDWPEAVCLLIGRQDLSKQACEGNLPKGKSVLSSDVPSGTETEEEDDGMNDMNHEVMSLIWSEDLRVQDVRRLLQSAHPVRVNVVQYPELSDHEFIEEKENRLLQLCQRTMALPVGRGMFTLFSYHPVPTEPLPIPKLNLTGRAPPRNTTVDLNSGNIDVPPNMTSWASFHNGVAAGLKIAPASQIDSAWIVYNKPKHAELANEYAGFLMALGLNGHLTKLATLNIHDYLTKGHEMTSIGLLLGVSAAKLGTMDMSITRLLSIHIPALLPPTSTELDVPHNVQVAAVVGIGLVYQGTAHRHTAEVLLAEIGRPPGPEMEYCTDRESYSLAAGLALGMVCLGHGSNLIGMSDLNVPEQLYQYMVGGHRRFQTGMHREKHKSPSYQIKEGDTINVDVTCPGATLALAMIYLKTNNRSIADWLRAPDTMYLLDFVKPEFLLLRTLARCLILWDDILPNSKWVDSNVPQIIRENSISLSEIELPCSEDLNLETLSQAHVYIIAGACLSLGFRFAGSENLSAFNCLHKFAKDFMTYLSAPNASVTGPHNLETCLSVVLLSLAMVMAGSGNLKVLQLCRFLHMKTGGEMNYGFHLAHHMALGLLFLGGGRYSLSTSNSSIAALLCALYPHFPAHSTDNRYHLQALRHLYVLAAEPRLLVPVDVDTNTPCYALLEVTYKGTQWYEQTKEELMAPTLLPELHLLKQIKVKGPRYWELLIDLSKGTQHLKSILSKDGVLYVKLRAGQLSYKEDPMGWQSLLAQTVANRNSEARAFKPETISAFTSDPALLSFAEYFCKPTVNMGQKQEILDLFSSVLYECVTQETPEMLPAYIAMDQAIRRLGRREMSETSELWQIKLVLEFFSSRSHQERLQNHPKRGLFMNSEFLPVVKCTIDNTLDQWLQVGGDMCVHAYLSGQPLEESQLSMLACFLVYHSVPAPQHLPPIGLEGSTSFAELLFKFKQLKMPVRALLRLAPLLLGNPQPMVM +>6riq_F mol:protein length:144 MinC +KDSAPRKPAEEPSPSVGEARPEPAKAEEKPAEPVSRPTKVVKTPVRGGMQIYAAGGDLIVLAAVSPGAELLADGNIHVYGPMRGRALAGVKGDATARIFCQQLAAELVSIAGNYKVAEDLRRSPQWGKAVHVSLSGDVLNITRL +>7ohr_v mol:protein length:231 Nucleolar protein 16 +MTSVRKRKMNRSSVGKATRRNKDKQRKINIQSNPIIAANWDYSLTMAQNYKKLGLRAKLQTPAGGKEADLSKVVKRIPLTKPVLDEDEDEDEGEDEQNDYNAATVELDENEIPEGGARIQRDKNGDVVRVVYGKKKNFDADEDVNEIKARDTTEETEVVKKLEELASRPVIRKERSQSEREEEWLEKLYKKHGDDYKKMFFDKKLNIYQQSEGDLKRRLLRWKKRNGIASK +>4v89_B7 mol:protein length:65 50S ribosomal protein L35 +MPKIKTVRGAAKRFKKTGKGGFKHKHANLRHILTKKATKRKRHLRPKAMVSKGDLGLVIACLPYA +>3gdv_D mol:protein length:3 YQF peptide +YQF +>7du2_M mol:protein length:708 DNA-directed RNA polymerase III subunit RPC5 +MANEEDDPVVQEIDVYLAKSLAEKLYLFQYPVRPASMTYDDIPHLSAKIKPKQQKVELEMAIDTLNPNYCRSKGEQIALNVDGACADETSTYSSKLMDKQTFCSSQTTSNTSRYAAALYRQGELHLTPLHGILQLRPSFSYLDKADAKHREREAANEAGDSSQDEAEDDVKQITVRFSRPESEQARQRRVQSYEFLQKKHAEEPWVHLHYYGLRDSRSEHERQYLLCPGSSGVENTELVKSPSEYLMMLMPPSQEEEKDKPVAPSNVLSMAQLRTLPLADQIKILMKNVKVMPFANLMSLLGPSIDSVAVLRGIQKVAMLVQGNWVVKSDILYPKDSSSPHSGVPAEVLCRGRDFVMWKFTQSRWVVRKEVATVTKLCAEDVKDFLEHMAVVRINKGWEFILPYDGEFIKKHPDVVQRQHMLWTGIQAKLEKVYNLVKETMPKKPDAQSGPAGLVCGDQRIQVAKTKAQQNHALLERELQRRKEQLRVPAVPPGVRIKEEPVSEEGEEDEEQEAEEEPMDTSPSGLHSKLANGLPLGRAAGTDSFNGHPPQGCASTPVARELKAFVEATFQRQFVLTLSELKRLFNLHLASLPPGHTLFSGISDRMLQDTVLAAGCKQILVPFPPQTAASPDEQKVFALWESGDMSDQHRQVLLEIFSKNYRVRRNMIQSRLTQECGEDLSKQEVDKVLKDCCVSYGGMWYLKGTVQS +>6qiu_P mol:protein length:10 Ataxin-1 phosphopeptide +KRRWSAPESR +>7dbc_D mol:protein length:445 Tubulin beta chain +MREIVHIQAGQCGNQIGAKFWEVISDEHGIDPTGSYHGDSDLQLERINVYYNEATGNKYVPRAILVDLEPGTMDSVRSGPFGQIFRPDNFVFGQSGAGNNWAKGHYTEGAELVDSVLDVVRKESESCDCLQGFQLTHSLGGGTGSGMGTLLISKIREEYPDRIMNTFSVMPSPKVSDTVVEPYNATLSVHQLVENTDETYCIDNEALYDICFRTLKLTTPTYGDLNHLVSATMSGVTTCLRFPGQLNADLRKLAVNMVPFPRLHFFMPGFAPLTSRGSQQYRALTVPELTQQMFDSKNMMAACDPRHGRYLTVAAIFRGRMSMKEVDEQMLNVQNKNSSYFVEWIPNNVKTAVCDIPPRGLKMSATFIGNSTAIQELFKRISEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDATADEQGEFEEEEGEDEA +>2kd3_A mol:protein length:113 Sclerostin +GSHMNGGRPPHHPYDAKDVSEYSCRELHYTRFLTDGPCRSAKPVTELVCSGQCGPARLLPNAIGRVKWWRPNGPDFRCIPDRYRAQRVQLLCPGGAAPRSRKVRLVASCKCKR +>3e15_D mol:protein length:312 Glucose-6-phosphate 1-dehydrogenase +MAHHHHHHMDCQALAKSLEQMNHLHNVKYLEAKDLTDFNQKSAYYICHQIAEKQLSKEGGHVVIGLSGGKTPIDVYKNIALVKDIKIDTSKLIFFIIDERYKRDDHKFSNYNNIKFLFESLKINEKEQLYRPDTSKNIVECVRDYNEKIKNMVKKYTKVDIAILGMGSDFHIASLFPNIFFNIYMNNYQNSYIYDESSIKVANSNDTSDNDNLDLLKEYVYFTTTNNFDVRKRITVSLDLLGNASSKIFLLNSTDKLDLWKNMLLKSYVDVNYCLYPAVYLIDSMNTTVVTCGYTNYPQMLEDIYVSNSSLS +>6xhv_1S mol:protein length:112 50S ribosomal protein L18 +MARLTAYERRKFRVRNRIKRTGRLRLSVFRSLKHIYAQIIDDEKGVTLVSASSLALKLKGNKTEVARQVGRALAEKALALGIKQVAFDRGPYKYHGRVKALAEGAREGGLEF +>4l1u_E mol:protein length:138 RNA polymerase-associated protein RTF1 homolog +GDITHMVSLPEELNRVRLSRHKLERWCHMPFFAKTVTGCFVRIGIGNHNSKPVYRVAEITGVVETAKVYQLGGTRTNKGLQLRHGNDQRVFRLEFVSNQEFTESEFMKWKEAMFSAGMQLPTLDEINKKELSIKEALN +>4v3p_LX mol:protein length:122 60S ribosomal protein L23a +RKSKKIRTSVTFHRPKTLKKARDPKYPRVSAPGRNKLDQYQILKYPLTTESAMKKIEDNNTLVFIVDLKADKKKIKAAVKKMYDIQAKKVNTLIRPDGKKKAYVKLTPDYDALDVANKIGII +>6vwr_A mol:protein length:346 Clavaminate synthase 3 +MGSSHHHHHHSSGLVPRGSHMMMTVVDCSEYSADLLALASRLPRIPRQDLYGFLDAAHEAAGDLPEGLGTALDRFNADGSHDGYLMLRGLPVEDDDDLPATPTSTPAPVDRPLQNMEAMLAVIGRRLGLHTGYRELRSGTVYHDVYPSPGAHHLSSETSETLLEFHTEMAYHVLQPNYVMLACSRADHERKAATLVGSIRKALPLIPEEVRARLFDRPMPCCVDVAFRGGVENPGAIANVKPLYGDPRDPFLGYDRELLAPREPDDVEAVAVLSKALDEVSEAVRLTPGDLLVVDNFRTTHARTPFSPRWDGKDRWLHRVYIRTDRNDQLSGGERAGDVVDFSPRR +>6hsv_A mol:protein length:124 Toxin B subunit +TPQNITDLCAEYHNTQIYTLNDKIFSYTESLAGKREMAIITFKNGAIFQVEVPGSQHIDSQKKAIERMKDTLRIAYLTEAKVEKLCVWNNKTPHAIAAISMANGVSALEKEVSALKEKVSALEF +>4u1v_DW mol:protein length:76 50S ribosomal protein L27 +TRNGRDSEAKRLGVKRFGGESVLAGSIIVRQRGTKFHAGANVGCGRDHTLFAKADGKVKFEVKGPKNRKFISIEAE +>5s53_D mol:protein length:445 Tubulin beta-2B chain +MREIVHIQAGQCGNQIGAKFWEVISDEHGIDPTGSYHGDSDLQLERINVYYNEATGNKYVPRAILVDLEPGTMDSVRSGPFGQIFRPDNFVFGQSGAGNNWAKGHYTEGAELVDSVLDVVRKESESCDCLQGFQLTHSLGGGTGSGMGTLLISKIREEYPDRIMNTFSVMPSPKVSDTVVEPYNATLSVHQLVENTDETYCIDNEALYDICFRTLKLTTPTYGDLNHLVSATMSGVTTCLRFPGQLNADLRKLAVNMVPFPRLHFFMPGFAPLTSRGSQQYRALTVPELTQQMFDSKNMMAACDPRHGRYLTVAAIFRGRMSMKEVDEQMLNVQNKNSSYFVEWIPNNVKTAVCDIPPRGLKMSATFIGNSTAIQELFKRISEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDATADEQGEFEEEEGEDEA +>3tbt_I mol:protein length:9 GLYCOPROTEIN G1 +KAPSNFATM +>6yfg_LM mol:protein length:130 coat protein +SKPIAIFKLRELSSDSTLFTLPGHSVTLPNTLGIVSHLPTPRKGNPGTVKTMRNLRKTILLGAGTASERAVPIVIKTETSFPVGTTEEDRAEVLKQMASFLIEEVKNNQELAYSGYVQDKYFIEDLVITE +>2b9v_H mol:protein length:652 alpha-amino acid ester hydrolase +APAADAAQAHDPLSVQTGSDIPASVHMPTDQQRDYIKREVMVPMRDGVKLYTVIVIPKNARNAPILLTRTPYNAKGRANRVPNALTMREVLPQGDDVFVEGGYIRVFQDIRGKYGSQGDYVMTRPPHGPLNPTKTDETTDAWDTVDWLVHNVPESNGRVGMTGSSYEGFTVVMALLDPHPALKVAAPESPMVDGWMGDDWFHYGAFRQGAFDYFVSQMTARGGGNDIPRRDADDYTNFLKAGSAGSFATQAGLDQYPFWQRMHAHPAYDAFWQGQALDKILAQRKPTVPMLWEQGLWDQEDMWGAIHAWQALKDADVKAPNTLVMGPWRHSGVNYNGSTLGPLEFEGDTAHQYRRDVFRPFFDEYLKPGSASVHLPDAIIYNTGDQKWDYYRSWPSVCESNCTGGLTPLYLADGHGLSFTHPAADGADSYVSDPAHPVPFISRPFAFAQSSRWKPWLVQDQREAESRPDVVTYETEVLDEPVRVSGVPVADLFAATSGTDSDWVVKLIDVQPAMTPDDPKMGGYELPVSMDIFRGRYRKDFAKPEALQPDATLHYHFTLPAVNHVFAKGHRIMVQIQSSWFPLYDRNPQKFVPNIFDAKPADYTVATQSIHHGGKEATSILLPVVKQKLGPEQKLISEEDLNSAVDHHHHHH +>7z1z_G mol:protein length:281 Pol polyprotein +WIENIPLAEEEHNKWHQDAVSLHLEFGIPRTAAEDIVQQCDVCQENKMPSTLRGSNKRGIDHWQVDYTHYEDKIILVWVETNSGLIYAERVKGETGQEFRVQTMKWYAMFAPKSLQSDNGPAFVAESTQLLMKYLGIEHTTGIPWNPQSQALVERTHQTLKNTLEKLIPMFNAFESALAGTLITLNIKRKGGLGTSPMDIFIFNKEQQRIQQQSKSKQEKIRFCYYRTRKRGHPGEWQGPTQVLWGGDGAIVVKDRGTDRYLVIANKDVKFIPPPKEIQKE +>5lj5_O mol:protein length:590 Pre-mRNA-splicing factor CEF1 +MPPVPIYVKGGVWTNVEDQILKAAVQKYGTHQWSKVASLLQKKTARQSELRWNEYLNPKLNFTEFSKEEDAQLLDLARELPNQWRTIADMMARPAQVCVERYNRLLESEDSGGAALSTGVTDLKAGDINPNAETQMARPDNGDLEDEEKEMLAEARARLLNTQGKKATRKIRERMLEESKRIAELQKRRELKQAGINVAIKKPKKKYGTDIDYNEDIVYEQAPMPGIYDTSTEDRQIKKKFEQFERKVNRKGLDGNKDKPSKKNKDKKRKHDENEHVEKAALGESTTLTDEYKKPKLILSAPGTKQGKVTYKKKLESKRQKLIEAQATGTVLTPKELLPHDSGQEDNERSNIKSGKQLKSRIRKFLVQMFASLPSPKNDFEIVLSEDEKEEDAEIAEYEKEFENERAMNEEDNFIEPPSQNDAPRVSLVAVPLAYSTLPIPEFKNNPQSAIDNKYNLLVANAINKEPHMVPEDTVDFLKEVESRMQHITQGRTSMKIQFKTAMPPTEVLLESIQSKVESIEQLQRKLQHVQPLEQQNNEMCSTLCHHSLPALIEGQRKYYADYYAYRQEIRSLEGRRKRLQAMLNSSSSI +>6j8m_D mol:protein length:147 Cytochrome c oxidase subunit 4 isoform 1 +AHGSVVKSEDYALPSYVDRRDYPLPDVAHVKNLSASQKALKEKEKASWSSLSIDEKVELYRLKFKESFAEMNRSTNEWKTVVGAAMFFIGFTALLLIWEKHYVYGPIPHTFEEEWVAKQTKRMLDMKVAPIQGFSAKWDYDKNEWKK +>6vw1_F mol:protein length:217 SARS-CoV-2 chimeric RBD +RVVPSGDVVRFPNITNLCPFGEVFNATKFPSVYAWERKKISNCVADYSVLYNSTFFSTFKCYGVSATKLNDLCFSNVYADSFVVKGDDVRQIAPGQTGVIADYNYKLPDDFMGCVLAWNTRNIDATSTGNYNYKYRLFRKSNLKPFERDISTEIYQAGSTPCNGVEGFNCYFPLQSYGFQPTNGVGYQPYRVVVLSFELLNAPATVCGPKLSTDLIK +>3n99_b mol:protein length:290 uncharacterized protein TM1086 +HHHHHHGHMRTNKDRLVRISVVGEIAPAKMRSPYSVTTEGTVRVIPVLGGITYNVKVGDSAYGWAGDHVEPGVSVMARRKEEEIPLMTLSCIGNEVIVMSGDAKGSRGFVTGKHGGVNHVLVHFEEEVLGKLMVGDKILIKAWGQGLKLLDHPDVKVMNIDPDLFEKLGIQEKNGKIHVPVVAKIPAHMMGSGIGASSSASTDYDIMASNPEDLGVADLKLGDIVAIQDHDNSYGVGKYRKGAVSIGVVVHSACVSAGHGPGVVVIMTGDESKILPEEVERANISDYLVR +>2j1k_M mol:protein length:197 FIBER PROTEIN +MRGSHHHHHHGSPPAAPITLWTGPGPSINGFINDTPVIRCFICLTRDSNLVTVNASFVGEGGYRIVSPTQSQFSLIMEFDQFGQLMSTGNINSTTTWGEKPWGNNTVQPRPSHTWKLCMPNREVYSTPAATISRCGLDSIAVDGAPSRSIDCMLIINKPKGVATYTLTFRFLNFNRLSGGTLFKTDVLTFTYVGENQ +>5dc3_D1 mol:protein length:87 40S ribosomal protein S21-A +MENDKGQLVELYVPRKCSATNRIIKADDHASVQINVAKVDEEGRAIPGEYVTYALSGYVRSRGESDDSLNRLAQNDGLLKNVWSYSR +>1nun_A mol:protein length:145 Fibroblast growth factor-10 +GRHVRSYNHLQGDVRWRKLFSFTKYFLKIEKNGKVSGTKKENCPYSILEITSVEIGVVAVKAINSNYYLAMNKKGKLYGSKEFNNDCKLKERIEENGYNTYASFNWQHNGRQMYVALNGKGAPRRGQKTRRKNTSAHFLPMVVHS +>2w58_A mol:protein length:202 PRIMOSOME COMPONENT (HELICASE LOADER) +DERKRQESLIQSMFMPREILRASLSDVDLNDDGRIKAIRFAERFVAEYEPGKKMKGLYLHGSFGVGKTYLLAAIANELAKRNVSSLIVYVPELFRELKHSLQDQTMNEKLDYIKKVPVLMLDDLGAEAMSSWVRDDVFGPILQYRMFENLPTFFTSNFDMQQLAHHLTYSQRGEEEKVKAARIMERIRYLAYPIEITGPNRR +>4bp7_CY mol:protein length:129 COAT PROTEIN +ASNFTQFVLVDNGGTGDVTVAPSNFANGVAEWISSNSRSQAYKVTCSVRQSSAQNRKYTIKVEVPKVATQTVGGVELPVAAWRSYLNMELTIPIFATNSDCELIVKAMQGLLKDGNPIPSAIAANSGIY +>6kbp_A mol:protein length:338 D-amino-acid oxidase +MRVVVIGAGVIGLSTALCIHERYHSVLQPLDIKVYADRFTPLTTTDVAAGLWQPYLSDPNNPQEADWSQQTFDYLLSHVHSPNAENLGLFLISGYNLFHEAIPDPSWKDTVLGFRKLTPRELDMFPDYGYGWFHTSLILEGKNYLQWLTERLTERGVKFFQRKVESFEEVAREGADVIVNCTGVWAGALQRDPLLQPGRGQIMKVDAPWMKHFILTHDLERGIYNSPYIIPGTQTVTLGGIFQLGNWSELNNIQDHNTIWEGCCRLEPTLKNARIIGERTGFRPVRPQIRLEREQLRTGPSNTEVIHNYGHGGYGLTIHWGCALEAAKLFGRILEEKK +>6yfg_HY mol:protein length:130 coat protein +SKPIAIFKLRELSSDSTLFTLPGHSVTLPNTLGIVSHLPTPRKGNPGTVKTMRNLRKTILLGAGTASERAVPIVIKTETSFPVGTTEEDRAEVLKQMASFLIEEVKNNQELAYSGYVQDKYFIEDLVITE +>2wqj_K mol:protein length:35 TUMOR PROTEIN P73 +GSDEDTYYLQVRGRENFEILMKLKESLELMELVPQ +>3lyc_F mol:protein length:241 Putative pectinase +GGDGNITTENIPVSEYDCLELEGGGMVVNYTQSDAPEGLEIKTDRNIFEKYEFNVENHKLKIRPKKEFRKHTNFRPTEFMVTANSRNLKKLAAAGSTHVNINSPLQAEEFEAGLAGSGIIQFHDTASFTNLKIEIAGSGDFVGHKVYCEELNGDMAGSNTIVLGGTVGIAEFSIAGSGTVRAFDCTMDELECKIAGSGDIEAFVVNKIKAEIAGSGSVKYKGDPQDIQKKVMGSGKIEKVE +>6oj2_QQ mol:protein length:105 30S ribosomal protein S17 +MPKKVLTGVVVSDKMQKTVTVLVERQFPHPLYGKVIKRSKKYLAHDPEEKYKLGDVVEIIESRPISKRKRFRVLRLVESGRMDLVEKYLIRRQNYESLSKRGGKA +>3sln_J mol:protein length:311 Capsid +ESRTKPFTVPILTVEEMTNSRFPIPLEKLFTGPSSAFVVQPQNGRCTTDGALLGTTQLSPVDICTFRGDVTHIAGTQNYTMNLASQNWNNYDPTEEIPAPLGTPDFVGKIQGVLTQTTRRDGSTRGHKATVSTGSVHFTPKLGSVQFSTDTSNDFETGQNTRFTPVGVVQDGSTTHQNEPQQWVLPDYSGRDSHNVHLAPAVAPTFPGEQLLFFRSTMPGCSGYPNMNLDCLLPQEWVQHFYQESAPAQSDVALLRFVNPDTGRVLFECKLHKSGYVTVAHTGQHDLVIPPNGYFRFDSWVNQFYTLAPMG +>6yfh_AK mol:protein length:156 coat protein +PAMTNIVLRDDQTSVATKTLIPIVSDGNMSVWRENAANVPIDGQIKLTGQWERMKDGTYRLNAKLEVPVMETAGAGGAYVAPPKVAYKVTASLTLYAPSRSTIADRANAMKMLSAVLCGADATAGTTLSPQSVTGDAWKNSALPFVFGFINQAFPT +>4qe8_D mol:protein length:13 Nuclear receptor coactivator 2 +KENALLRYLLDKD +>5gaq_I mol:protein length:310 Lysenin +MSAKAAEGYEQIEVDVVAVWKEGYVYENRGSTSVDQKITITKGMKNVNSETRTVTATHSIGSTISTGDAFEIGSVEVSYSHSHEESQVSMTETEVYESKVIEHTITIPPTSKFTRWQLNADVGGADIEYMYLIDEVTPIGGTQSIPQVITSRAKIIVGRQIILGKTEIRIKHAERKEYMTVVSRKSWPAATLGHSKLFKFVLYEDWGGFRIKTLNTMYSGYEYAYSSDQGGIYFDQGTDNPKQRWAINKSLPLRHGDVVTFMNKYFTRSGLCYDDGPATNVYCLDKREDKWILEVVGLVPRGSGHHHHHH +>4c5q_B mol:protein length:79 PHOSPHOPROTEIN +MGDHYDDELFSDVQDIKTALAKIHEDNQKIISKLESLLLLKGEVESIKKQINRQNISISTLEGHLSSIMIAIPHHHHHH +>6f2n_A mol:protein length:227 Metallo-beta-lactamase type 2 +SQKVEKTVIKNETGTISISQLNKNVWVHTELGSFNGEAVPSNGLVLNTSKGLVLVDSSWDDKLTKELIEMVEKKFQKRVTDVIITHAHADRIGGIKTLKERGIKAHSTALTAELAKKNGYEEPLGDLQTVTNLKFGNMKVETFYPGKGHTEDNIVVWLPQYNILVGGCLVKSTSAKDLGNVADAYVNEWSTSIENVLKRYRNINAVVPGHGEVGDKGLLLHTLDLLK +>5ef0_F mol:protein length:74 Transcription attenuation protein MtrB +MYTNSDFVVIKALEDGVNVIGLTRGADTRFHHSEKLDKGEVLIAQFTEHTSAIKVRGKAYIQTRHGVIESEGKK +>3tsz_A mol:protein length:391 Tight junction protein ZO-1 +GSHMILRPSMKLVKFRKGDSVGLRLAGGNDVGIFVAGVLEDSPAAKEGLEEGDQILRVNNVDFTNIIREEAVLFLLDLPKGEEVTILAQKKKDVYRRIVESDVGDSFYIRTHFEYEKESPYGLSFNKGEVFRVVDTLYNGKLGSWLAIRIGKNHKEVERGIIPNKNRAEQLASVQYTLPKTAGGDRADFWRFRGLRSSKRNLRKSREDLSAQPVQTKFPAYERVVLREAGFLRPVTIFGPIADVAREKLAREEPDIYQIAKSEPRDAGTDQRSSGIIRLHTIKQIIDQDKHALLDVTPNAVDRLNYAQWYPIVVFLNPDSKQGVKTMRMRLCPESRKSARKLYERSHKLRKNNHHLFTTTINLNSMNDGWYGALKEAIQQQQNQLVWVSEG +>3jaj_d mol:protein length:107 Ribosomal protein eL31 +NEVVTREYTINIHKRIHGVGFKKRAPRALKEIRKFAMKEMGTPDVRIDTRLNKAVWAKGIRNVPYRIRVRLSRKRNEDEDSPNKLYTLVTYVPVTTFKNLQTVNVDE +>5a1v_E mol:protein length:874 COATOMER SUBUNIT GAMMA-1 +MLKKFDKKDEESGGGSNPLQHLEKSAVLQEARVFNETPINPRKCAHILTKILYLINQGEHLGTTEATEAFFAMTKLFQSNDPTLRRMCYLTIKEMSCIAEDVIIVTSSLTKDMTGKEDNYRGPAVRALCQITDSTMLQAVERYMKQAIVDKVPSVSSSALVSSLHLLKCSFDVVKRWVNEAQEAASSDNIMVQYHALGLLYHVRKNDRLAVSKMISKFTRHGLKSPFAYCMMIRVASKQLEEEDGSRDSPLFDFIESCLRNKHEMVVYEAASAIVNLPGCSAKELAPAVSVLQLFCSSPKAALRYAAVRTLNKVAMKHPSAVTACNLDLENLVTDSNRSIATLAITTLLKTGSESSIDRLMKQISSFMSEISDEFKVVVVQAISALCQKYPRKHAVLMNFLFTMLREEGGFEYKRAIVDCIISIIEENSESKETGLSHLCEFIEDCEFTVLATRILHLLGQEGPKTNNPSKYIRFIYNRVVLEHEEVRAGAVSALAKFGAQNEEMLPSILVLLKRCVMDDDNEVRDRATFYLNVLEQKQKALNAGYILNGLTVSIPGLEKALQQYTLEPSEKPFDLKSVPLATTPMAEQRPESTATAAVKQPEKVAATRQEIFQEQLAAVPEFQGLGPLFKSSPEPVALTESETEYVIRCTKHTFSDHLVFQFDCTNTLNDQTLENVTVQMEPTEAYEVLSYVPARSLPYNQPGTCYTLVALPTEDPTAVACTFSCVMKFTVKDCDPNTGEIDEEGYEDEYVLEDLEVTVADHIQKVMKVNFEAAWDEVGDEFEKEETFTLSTIKTLEEAVGNIVKFLGMHPCERSDKVPENKNTHTLLLAGVFRGGHDILVRSRLLLLDTVTMQVTARSSEELPVDIILASVG +>1b12_C mol:protein length:248 SIGNAL PEPTIDASE I +VRSFIYEPFQIPSGSMMPTLLIGDFILVEKFAYGIKDPIYQKTLIETGHPKRGDIVVFKYPEDPKLDYIKRAVGLPGDKVTYDPVSKELTIQPGCSSGQACENALPVTYSNVEPSDFVQTFSRRNGGEATSGFFEVPKNETKENGIRLSERKETLGDVTHRILTVPIAQDQVGMYYQQPGQQLATWIVPPGQYFMMGDNRDNSADSRYWGFVPEANLVGRATAIWMSFDKQEGEWPTGLRLSRIGGIH +>1ev4_D mol:protein length:221 GLUTATHIONE S-TRANSFERASE A1-1 +SGKPVLHYFNARGRMECIRFLLAAAGVEFDEKFIQSPEDLEKLKKDGNLMFDQVPMVEIDGMKLAQTRAILNYIATKYDLYGKDMKERALIDMYSEGILDLTEMIMQLVICPPDQKEAKTALAKDRTKNRYLPAFEKVLKSHGQDYLVGNKLTRVDIHLLELLLYVEEFDASLLTSFPLLKAFKSRISSLPNVKKFLQPGSQRKLPMDAKQIEEARKIYKF +>7eyd_V4 mol:protein length:173 C-phycocyanin beta subunit +MTLDVFTKVVSQADSRGEFLSNEQLDALANVVKEGNKRLDVVNRITSNASAIVTNAARALFEEQPQLIAPGGNAYTNRRMAACLRDMEIILRYVTYAILAGDASVLDDRCLNGLRETYQALGTPGSSVAVGVQKMKDAAVGIANDPNGITKGDCSQLISEVASYFDRAAAAVG +>2cvk_A mol:protein length:110 Thioredoxin +MAKPIEVTDQNFDETLGQHPLVLVDFWAEWCAPCRMIAPILEEIAKEYEGKLLVAKLDVDENPKTAMRYRVMSIPTVILFKDGQPVEVLVGAQPKRNYQAKIEKHLPATA +>4ctf_D3 mol:protein length:226 P1 +APIRVVSVPESDSFMSSVPDNSTPLYPKVVVPPRQVPGRFTNFIDVAKQTYSFCSISGKPYFEVTNTSGDEPLFQMDVSLSAAELHGTYVASLSSFFAQYRGSLNFNFIFTGAAATKAKFLVAFVPPHSAAPKTRDEAMACIHAVWDVGLNSAFSFNVPYSSPADFMAVYSAEATVVNVSGWLQVYALTALTSTDIAVNSKGRVLVAVSAGPDFSLRHPVDLPDKQ +>6vgn_G mol:protein length:200 ATP-dependent Clp protease proteolytic subunit +ILPSFIEHSSFGVKESNPYNKLFEERIIFLGVQVDDASANDIMAQLLVLESLDPDRDITMYINSPGGGFTSLMAIYDTMQYVRADIQTVCLGQAASAAAVLLAAGTPGKRMALPNARVLIHQPSLSGVIQGQFSDLEIQAAEIERMRTLMETTLARHTGKDAGVIRKDTDRDKILTAEEAKDYGIIDTVLEYRKLSAQTA +>6ase_A mol:protein length:170 GTPase KRas +GMTEYKLVVVGAGGVGKSALTIQLIQNHFVDEYDPTIEDSYRKQVVIDGETCLLDILDTGGQEEYSAMRDQYMRTGEGFLCVFAINNTKSFEDIHHYREQIKRVKDSEDVPMVLVGNKCDLPSRTVDTKQAQDLARSYGIPFIETSAKTRQGVDDAFYTLVREIRKHKEK +>1nno_B mol:protein length:543 NITRITE REDUCTASE +KDDMKAAEQYQGAASAVDPAHVVRTNGAPDMSESEFNEAKQIYFQRCAGCHGVLRKGATGKPLTPDITQQRGQQYLEALITYGTPLGMPNWGSSGELSKEQITLMAKYIQHTPPQPPEWGMPEMRESWKVLVKPEDRPKKQLNDLDLPNLFSVTLRDAGQIALVDGDSKKIVKVIDTGYAVHISRMSASGRYLLVIGRDARIDMIDLWAKEPTKVAEIKIGIEARSVESSKFKGYEDRYTIAGAYWPPQFAIMDGETLEPKQIVSTRGMTVDTQTYHPEPRVAAIIASHEHPEFIVNVKETGKVLLVNYKDIDNLTVTSIGAAPFLHDGGWDSSHRYFMTAANNSNKVAVIDSKDRRLSALVDVGKTPHPGRGANFVHPKYGPVWSTSHLGDGSISLIGTDPKNHPQYAWKKVAELQGQGGGSLFIKTHPKSSHLYVDTTFNPDARISQSVAVFDLKNLDAKYQVLPIAEWADLGEGAKRVVQPEYNKRGDEVWFSVWNGKNDSSALVVVDDKTLKLKAVVKDPRLITPTGKFNVYNTQHDVY +>6u3m_C mol:protein length:191 HLA class II histocompatibility antigen, DQ alpha 1 chain +EDIVADHVASYGVNLYQSYGPSGQYTHEFDGDEQFYVDLGRKETVWSLPVLRQFRFDPQFALTNIAVLKHNLNSLIKRSNSTAATNEVPEVTVFSKSPVTLGQPNILICLVDNIFPPVVNITWLSNGHSVTEGVSETSFLSKSDHSFFKISYLTLLPSAEESYDCKVEHWGLDKPLLKHWEPETSGDDDDK +>6wdh_z mol:protein length:58 50S ribosomal protein L30 +AKTIKITQTRSAIGRLPKHKATLLGLGLRRIGHTVEREDTPAIRGMINAVSFMVKVEE +>4nrl_D mol:protein length:182 Hemagglutinin HA2 chain +GFFGAIAGFLEGGWEGMIAGWHGYTSHGAHGVAVAADLKSTQEAINKITKNLNSLSELEVKNLQRLSGAMNELHDEILELDEKVDDLRADTISSQIELAVLLSNEGIINSEDEHLLALERKLKKMLGPSAVEIGNGCFETKHKCNQTCLDRIAAGTFNAGDFSLPTFDSLNITAASGALVPR +>43ca_H mol:protein length:117 PROTEIN (IMMUNOGLOBULIN (HEAVY CHAIN)) +QVQLVESGPGLVAPSQSLSITCTVSGISLSRYNVHWVRQSPGKGLEWLGMIWGGGSIEYNPALKSRLSISKDNSKSQIFLKMNSLQTDDSAMYYCVSYGYGGDRFSYWGQGTLVTVS +>5us9_c mol:protein length:541 Capsid protein VP2 +MSENEIQDQQPSDSMDGQRGGGGGATGSVGGGKGSGVGISTGGWVGGSYFTDSYVITKNTRQFLVKIQNNHQYKTELISPSTSQGKSQRCVSTPWSYFNFNQYSSHFSPQDWQRLTNEYKRFRPKGMHVKIYNLQIKQILSNGADTTYNNDLTAGVHIFCDGEHAYPNATHPWDEDVMPELPYQTWYLFQYGYIPVIHELAEMEDSNAVEKAICLQIPFFMLENSDHEVLRTGESTEFTFNFDCEWINNERAYIPPGLMFNPLVPTRRAQYIRRNNNPQTAESTSRIAPYAKPTSWMTGPGLLSAQRVGPATSDTGAWMVAVKPENASIDTGMSGIGSGFDPPQGSLAPTNLEYKIQWYQTPQGTNNNGNIISNQPLSMLRDQALFRGNQTTYNLCSDVWMFPNQIWDRYPITRENPIWCKKPRSDKHTTIDPFDGSLAMDHPPGTIFIKMAKIPVPSNNNADSYLNIYCTGQVSCEIVWEVERYATKNWRPERRHTTFGLGIGGADNLNPTYHVDKNGTYIQPTTWDMCFPVKTNINKVL +>8dja_G mol:protein length:123 Major prion protein +GSKKRPKPGGWNTGGSRYPGQGSPGGNRYPPQGGTWGQPHGGGWGQPHGGSWGQPHGGSWGQPHGGGWGQGGGTHNQWNKPSKPKTNLKHVAGAAAAGAVVGGLGGYMLGSAMSRPMIHFGND +>4z96_A mol:protein length:530 Ubiquitin carboxyl-terminal hydrolase 7 +SGPLGSEAHLYMQVQIVAEDQFCGHQGNDMYDEEKVKYTVFKVLKNSSLAEFVQSLSQTMGFPQDQIRLWPMQARSNGTKRPAMLDNEADGNKTMIELSDNENPWTIFLETVDPELAASGATLPKFDKDHDVMLFLKMYDPKTRSLNYCGHIYTPISCKIRDLLPVMCDRAGFIQDTSLILYEEVKPNLTERIQDYDVSLDKALDELMDGDIIVFQKDDPENDNSELPTAKEYFRDLYHRVDVIFCDKTIPNDPGFVVTLSNRMNYFQVAKTVAQRLNTDPMLLQFFKSQGYRDGPGNPLRHNYEGTLRDLLQFFKPRQPKKLYYQQLKMKITDFENRRSFKCIWLNSQFREEEITLYPDKHGCVRDLLEECKKAVELGEKASGKLRLLEIVSYKIIGVHQEDELLECLSPATSRTFRIEEIPLDQVDIDKENEMLVTVAHFHKEVFGTFGIPFLLRIHQGEHFREVMKRIQSLLDIQEKEFEKFKFAIVMMGRHQYINEDEYEVNLKDFEPQPGNMSHPRPWLGLDHFN +>3d2c_A mol:protein length:181 Lipase +AEHNPVVMVHGIGGSSSNFEGIKSYLVSQGWSRDKLYAVDFWDKTGTNYNNGPVLSRFVQKVLDETGAKKVDIVAHSMGGANTLYYIKYLDGGNKVANVVTLGGANRLTTDKAPPGTDPNQKILYTSIYSSDDMIVMNYLSRLDGARNVQIHGVGHMGLLYSSQVYSLIKEGLNGGGQNTN +>6yxl_HHH mol:protein length:221 ACPA F3 Fab fragment - heavy chain +QVQLVQSGAEVKKPGASVRVSCKASGFVTDYFIQWVRQAPGQGPEWMAWINPHNGETDYAPKLQDRVTVTCDTSTNTAFMELSRLTSDDTALYYCGRSGRTDARRAPVSYWGQGALVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKRVEP +>2jdt_I mol:protein length:20 CAMP-DEPENDENT PROTEIN KINASE INHIBITOR ALPHA +TTYADFIASGRTGRRNAIHD +>4qua_D mol:protein length:6 ACE-ASP-GLU-VAL-ASP-CHLOROMETHYLKETONE INHIBITOR +XDEVDX +>3daq_C mol:protein length:292 Dihydrodipicolinate synthase +THLFEGVGVALTTPFTNNKVNLEALKAHVNFLLENNAQAIIVNGTTAESPTLTTDEKELILKTVIDLVDKRVPVIAGTGTNDTEKSIQASIQAKALGADAIMLITPYYNKTNQRGLVKHFEAIADAVKLPVVLYNVPSRTNMTIEPETVEILSQHPYIVALKDATNDFEYLEEVKKRIDTNSFALYSGNDDNVVEYYQRGGQGVISVIANVIPKEFQALYDAQQSGLDIQDQFKPIGTLLSALSVDINPIPIKALTSYLGFGNYELRLPLVSLEDTDTKVLREAYDTFKAGE +>2ddw_B mol:protein length:283 Pyridoxine kinase +MSSLLLFNDKSRALQADIVAVQSQVVYGSVGNSIAVPAIKQNGLNVFAVPTVLLSNTPHYDTFYGGAIPDEWFSGYLRALQERDALRQLRAVTTGYMGTASQIKILAEWLTALRKDHPDLLIMVDPVIGDIDSGIYVKPDLPEAYRQYLLPLAQGITPNIFELEILTGKNCRDLDSAIAAAKSLLSDTLKWVVVTSASGNEENQEMQVVVVTADSVNVISHSRVKTDLKGTGDLFCAQLISGLLKGKALTDAVHRAGLRVLEVMRYTQQHESDELILPPLAEA +>6xt5_A mol:protein length:451 Legumain +RGSHHHHHHGSEVGTRWAVLVAGSNGYGNYRHQADVCHAYQLLIKGGVKEENIVVFMYDDIAYNAMNPRPGVIINHPQGPDVYAGVPKDYTGEDVTPENLYAVILGDKSKVKGGSGKVINSNPEDRIFIFYSNHGGPGVLGMPNAPFVYAMDFIDVLKKKHASGGYKEMVIYIEACESGSIFEGIMPKDLNIYVTTASNAQENSFGTYCPGMNPPPPEEYVTCLGDLYSVSWMEDSETHNLKRETVQQQYQSVRKRTSNSNSYRFGSHVMQYGDTNITAEKLYLYHGFDPATVNFPPHNGNLEAKMEVVNQRDAELLFMWQMYQRSNHQPEKKTHILEQITETVKHRNHLDGSVELIGVLLYGPGKSSSVLHSVRAPGLPLVDDWTCLKSMVRVFETHCGSLTQYGMKHMRAFGNVCNSGVSKASMEEACKAACGGYDAGLLYPSNTGYSA +>6l3t_E mol:protein length:279 Gap junction gamma-3 protein +MCGRFLRRLLAEESRRSTPVGRLLLPVLLGFRLVLLAASGPGVYGDEQSEFVCHTQQPGCKAACFDAFHPLSPLRFWVFQVILVAVPSALYMGFTLYHVIWHWELSGKGKEEETLIQGREGNTDVPGAGSLRLLWAYVAQLGARLVLEGAALGLQYHLYGFQMPSSFACRREPCLGSITCNLSRPSEKTIFLKTMFGVSGFCLLFTFLELVLLGLGRWWRTWKHKSSSSKYFLTSESTRRHKKATDSLPVVETKEQFQEAVPGRSLAQEKQRPVGPRDA +>3uk4_B mol:protein length:6 C-terminal peptide from Lactotransferrin +LEACAF +>1ztg_A mol:protein length:74 POLY(RC)-BINDING PROTEIN 1 +GILTIRLLMHGKEVGSIIGKKGESVKRIREESGARINISEGNCPERIITLTGPTNAIFKAFAMIIDKLEEDINS +>1usv_H mol:protein length:170 AHA1 +MRGSHHHHHHGMASMVVNNPNNWHWVDKNCIGWAKEYFKQKLVGVEAGSVKDKKYAKIKSVSSIEGDCEVNQRKGKVISLFDLKITVLIEGHVDSKDGSALPFEGSINVPEVAFDSEASSYQFDISIFKETSELSEAKPLIRSELLPKLRQIFQQFGKDLLATHGNDIQV +>5mfc_B mol:protein length:257 (KR)4-Green fluorescent protein,Green fluorescent protein +GPGSGSPKRKRKRKREGKLMSKGEELFTGVVPILVELDGDVNGHKFSVRGEGEGDATNGKLTLKFICTTGKLPVPWPTLVTTLTYGVQCFSRYPDHMKRHDFFKSAMPEGYVQERTISFKDDGTYKTRAEVKFEGDTLVNRIELKGIDFKEDGNILGHKLEYNFNSHNVYITADKQKNGIKANFKIRHNVEDGSVQLADHYQQNTPIGDGPVLLPDNHYLSTQSVLSKDPNEKRDHMVLLEFVTAAGITHGMDELYK +>4v7s_CF mol:protein length:100 30S ribosomal protein S6 +MRHYEIVFMVHPDQSEQVPGMIERYTAAITGAEGKIHRLEDWGRRQLAYPINKLHKAHYVLMNVEAPQEVIDELETTFRFNDAVIRSMVMRTKHAVTEAS +>6zvt_ZA mol:protein length:258 Vipp1 +MGLFDRIKRVVSSNLNDLVNKAEDPEKMLEQAILEMQEDLVQLRQGVAQAIAAQKRSEKQYNDAQNEINKWQRNAQLALQKGDENLARQALERKKTYTDTSAALKASLDTQSTQVETLKRNLIQLESKISEAKTKKEMLKARITTAKAQEQLQGMVRGMNTSSAMSAFERMEEKVLMQESRAQALGELAGADLETQFAQLEGGSDVDDELAALKAQMLPPATPVTQAQLPPQQETTPAKSNEVVDAELDSLRKQLDQL +>6pg2_A mol:protein length:189 Thiol:disulfide interchange protein DsbA +AQYEDGKQYTTLEKPVAGAPQVLEFFSFFCPHCYQFEEVLHISDNVKKKLPEGVKMTKYHVNFMGGDLGKDLTQAWAVAMALGVEDKVTVPLFEGVQKTQTIRSASDIRDVFINAGIKGEEYDAAWNSFVVKSLVAQQEKAAADVQLRGVPAMFVNGKYQLNPQGMDTSNMDVFVQQYADTVKYLSEKK +>6pm2_B mol:protein length:458 Glycine receptor subunit alphaZ1 +MFALGIYLWETIVFFSLAASQQAAARKAASPMPPSEFLDKLMGKVSGYDARIRPNFKGPPVNVTCNIFINSFGSIAETTMDYRVNIFLRQQWNDPRLAYSEYPDDSLDLDPSMLDSIWKPDLFFANEKGANFHEVTTDNKLLRISKNGNVLYSIRITLVLACPMDLKNFPMDVQTCIMQLESFGYTMNDLIFEWDEKGAVQVADGLTLPQFILKEEKDLRYCTKHYNTGKFTCIEARFHLERQMGYYLIQMYIPSLLIVILSWVSFWINMDAAPARVGLGITTVLTMTTQSSGSRASLPKVSYVKAIDIWMAVCLLFVFSALLEYAAVNFIARQHKELLRFQRRRRHLKEDEAGDGRFSFAAYGMGPACLQAKDGMAIKGNNNNAPTSTNPPEKTVEEMRKLFISRAKRIDTVSRVAFPLVFLIFNIFYWITYKIIRSEDIHKQLVPRGSHHHHHHHH +>5nc7_J mol:protein length:12 ActA-derived 10-mer Ac-FPPPPTEDEL-NH2 with acetylated (Ac) and amidated (NH2) termini. Phe is substitued by Trp to increase affinity for crystallization +XWPPPPTEDELX +>7cwl_B mol:protein length:1273 Spike glycoprotein +MFVFLVLLPLVSSQCVNLTTRTQLPPAYTNSFTRGVYYPDKVFRSSVLHSTQDLFLPFFSNVTWFHAIHVSGTNGTKRFDNPVLPFNDGVYFASTEKSNIIRGWIFGTTLDSKTQSLLIVNNATNVVIKVCEFQFCNDPFLGVYYHKNNKSWMESEFRVYSSANNCTFEYVSQPFLMDLEGKQGNFKNLREFVFKNIDGYFKIYSKHTPINLVRDLPQGFSALEPLVDLPIGINITRFQTLLALHRSYLTPGDSSSGWTAGAAAYYVGYLQPRTFLLKYNENGTITDAVDCALDPLSETKCTLKSFTVEKGIYQTSNFRVQPTESIVRFPNITNLCPFGEVFNATRFASVYAWNRKRISNCVADYSVLYNSASFSTFKCYGVSPTKLNDLCFTNVYADSFVIRGDEVRQIAPGQTGKIADYNYKLPDDFTGCVIAWNSNNLDSKVGGNYNYLYRLFRKSNLKPFERDISTEIYQAGSTPCNGVEGFNCYFPLQSYGFQPTNGVGYQPYRVVVLSFELLHAPATVCGPKKSTNLVKNKCVNFNFNGLTGTGVLTESNKKFLPFQQFGRDIADTTDAVRDPQTLEILDITPCSFGGVSVITPGTNTSNQVAVLYQDVNCTEVPVAIHADQLTPTWRVYSTGSNVFQTRAGCLIGAEHVNNSYECDIPIGAGICASYQTQTNSPRRARSVASQSIIAYTMSLGAENSVAYSNNSIAIPTNFTISVTTEILPVSMTKTSVDCTMYICGDSTECSNLLLQYGSFCTQLNRALTGIAVEQDKNTQEVFAQVKQIYKTPPIKDFGGFNFSQILPDPSKPSKRSFIEDLLFNKVTLADAGFIKQYGDCLGDIAARDLICAQKFNGLTVLPPLLTDEMIAQYTSALLAGTITSGWTFGAGAALQIPFAMQMAYRFNGIGVTQNVLYENQKLIANQFNSAIGKIQDSLSSTASALGKLQDVVNQNAQALNTLVKQLSSNFGAISSVLNDILSRLDKVEAEVQIDRLITGRLQSLQTYVTQQLIRAAEIRASANLAATKMSECVLGQSKRVDFCGKGYHLMSFPQSAPHGVVFLHVTYVPAQEKNFTTAPAICHDGKAHFPREGVFVSNGTHWFVTQRNFYEPQIITTDNTFVSGNCDVVIGIVNNTVYDPLQPELDSFKEELDKYFKNHTSPDVDLGDISGINASVVNIQKEIDRLNEVAKNLNESLIDLQELGKYEQYIKWPWYIWLGFIAGLIAIVMVTIMLCCMTSCCSCLKGCCSCGSCCKFDEDDSEPVLKGVKLHYT +>7oo2_B mol:protein length:214 anti-MenX Fab light chain +ETTVTQSPASLSVATGEKVTIRCITSTDIDDDMTWYQQKPGEPPKLLISEATTLRPGVPSRFSASGYGTDFVFTIENTLSEDVADYYCLQSDNMPYTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNEC +>1h4l_D mol:protein length:147 CYCLIN-DEPENDENT KINASE 5 ACTIVATOR +STSELLRCLGEFLCRRCYRLKHLSPTDPVLWLRSVDRSLLLQGWQDQGFITPANVVFLYMLCRDVISSEVGSDHELQAVLLTCLYLSYSYMGNEISYPLKPFLVESCKEAFWDRCLSVINLMSSKMLQINADPHYFTQVFSDLKNES +>3b07_A mol:protein length:309 Gamma-hemolysin component B +MGHHHHHHAMEGKITPVSVKKVDDKVTLYKTTATADSDKFKISQILTFNFIKDKSYDKDTLVLKATGNINSGFVKPNPNDYDFSKLYWGAKYNVSISSQSNDSVNVVDYAPKNQNEEFQVQNTLGYTFGGDISISNGLSGGLNGNTAFSETINYKQESYRTTLSRNTNYKNVGWGVEAHKIMNNGWGPYGRDSFHPTYGNELFLAGRQSSAYAGQNFIAQHQMPLLSRSNFNPEFLSVLSHRQDGAKKSKITVTYQREMDLYQICWNGFYWAGANYKNFKTRTFKSTYEIDWENHKVKLLDTKETENNK +>6zqn_B mol:protein length:510 ATP synthase subunit alpha, mitochondrial +EKTGTAEVSSILEERILGADTSVDLEETGRVLSIGDGIARVHGLRNVQAEEMVEFSSGLKGMSLNLEPDNVGVVVFGNDKLIKEGDIVKRTGAIVDVPVGEELLGRVVDALGNAIDGKGPIGSKARRRVGLKAPGIIPRISVREPMQTGIKAVDSLVPIGRGQRELIIGDRQTGKTSIAIDTIINQKRFNDGTDEKKKLYCIYVAIGQKRSTVAQLVKRLTDADAMKYTIVVSATASDAAPLQYLAPYSGCSMGEYFRDNGKHALIIYDDLSKQAVAYRQMSLLLRRPPGREAYPGDVFYLHSRLLERAAKMNDAFGGGSLTALPVIETQAGDVSAYIPTNVISITDGQIFLETELFYKGIRPAINVGLSVSRVGSAAQTRAMKQVAGTMKLELAQYREVAAFAQFGSDLDAATQQLLSRGVRLTELLKQGQYSPMAIEEQVAVIYAGVRGYLDKLEPSKITKFENAFLSHVISQHQALLGKIRTDGKISEESDAKLKEIVTNFLAGFEA +>7oue_C mol:protein length:242 N-glycosylase/DNA lyase +GSHMIARIIGEIGIEGARFIEENIDEQFKALRYLSKGIDSETFVKLVIANSLVSYQLTGKGEQWWWEFAKYFYGRDVKSIYLAYKEFLPNSRFNRRLIPQKLSRIRRVETFLSTLTEERIEEYYGDMSSLWGSIARALGVDKESKTVVFSVKMFGYAARIVLSTFNPYPMEIPIPEDSRIVKLTKKLTNEKPRKFWMKIARESGVPPLHIDSILWPLLGGASIDSAPPELRDKLAELIKIIR +>6vyy_h mol:protein length:273 50S ribosomal protein L2 +MAVVKCKPTSPGRRHVVKVVNPELHKGKPFAPLLEKNSKSGGRNNNGRITTRHIGGGHKQAYRIVDFKRNKDGIPAVVERLEYDPNRSANIALVLYKDGERRYILAPKGLKAGDQIQSGVDAAIKPGNTLPMRNIPVGSTVHNVEMKPGKGGQLARSAGTYVQIVARDGAYVTLRLRSGEMRKVEADCRATLGEVGNAEHMLRVLGKAGAARWRGVRPTVRGTAMNPVDHPHGGGEGRNFGKHPVTPWGVQTKGKKTRSNKRTDKFIVRRRSK +>6hgh_B mol:protein length:40 Alpha-1-antichymotrypsin +SALVETRTIVRFNRPFLMIIVDHFTWSIFFMSKVTNPKQA +>4g7g_B mol:protein length:448 sterol 14-alpha-demethylase +GKLPPVYPVTVPILGHIIQFGKSPLGFMQECKRQLKSGIFTINIVGKRVTIVGDPHEHSRFFLPRNEVLSPREVYSFMVPVFGEGVAYAAPYPRMREQLNFLAEELTIAKFQNFVPAIQHEVRKFMAANWDKDEGEINLLEDCSTMIINTACQCLFGEDLRKRLDARRFAQLLAKMESSLIPAAVFLPILLKLPLPQSARCHEARTELQKILSEIIIARKEEEVNKDSSTSDLLSGLLSAVYRDGTPMSLHEVCGMIVAAMFAGQHTSSITTTWSMLHLMHPANVKHLEALRKEIEEFPAQLNYNNVMDEMPFAERCARESIRRDPPLLMLMRKVMADVKVGSYVVPKGDIIACSPLLSHHDEEAFPEPRRWDPERDEKVEGAFIGFGAGVHKCIGQKFGLLQVKTILATAFRSYDFQLLRDEVPDPDYHTMVVGPTASQCRVKYIRR +>4glm_A mol:protein length:72 Dynamin-binding protein +GGAAQPAMAQGALTYGVALYRFQALEPNELDFEVGDKIRILATLEDGWLEGSLKGRTGIFPYRFVKLCPAAA +>7eyd_V5 mol:protein length:173 C-phycocyanin beta subunit +MTLDVFTKVVSQADSRGEFLSNEQLDALANVVKEGNKRLDVVNRITSNASAIVTNAARALFEEQPQLIAPGGNAYTNRRMAACLRDMEIILRYVTYAILAGDASVLDDRCLNGLRETYQALGTPGSSVAVGVQKMKDAAVGIANDPNGITKGDCSQLISEVASYFDRAAAAVG +>1mfr_K mol:protein length:176 M FERRITIN +MVSQVRQNYHSDCEAAVNRMLNLELYASYTYSSMYAFFDRDDVALHNVAEFFKEHSHEEREHAEKFMKYQNKRGGRVVLQDIKKPERDEWGNTLEAMQAALQLEKTVNQALLDLHKLATDKVDPHLCDFLESEYLEEQVKDIKRIGDFITNLKRLGLPENGMGEYLFDKHSVKESS +>7nvm_Q mol:protein length:548 T-complex protein 1 subunit theta +MALHVPKAPGFAQMLKEGAKHFSGLEEAVYRNIQACKELAQTTRTAYGPNGMNKMVINHLEKLFVTNDAATILRELEVQHPAAKMIVMASHMQEQEVGDGTNFVLVFAGALLELAEELLRIGLSVSEVIEGYEIACRKAHEILPNLVCCSAKNLRDIDEVSSLLRTSIMSKQYGNEVFLAKLIAQACVSIFPDSGHFNVDNIRVCKILGSGISSSSVLHGMVFKKETEGDVTSVKDAKIAVYSCPFDGMITETKGTVLIKTAEELMNFSKGEENLMDAQVKAIADTGANVVVTGGKVADMALHYANKYNIMLVRLNSKWDLRRLCKTVGATALPRLTPPVLEEMGHCDSVYLSEVGDTQVVVFKHEKEDGAISTIVLRGSTDNLMDDIERAVDDGVNTFKVLTRDKRLVPGGGATEIELAKQITSYGETCPGLEQYAIKKFAEAFEAIPRALAENSGVKANEVISKLYAVHQEGNKNVGLDIEAEVPAVKDMLEAGILDTYLGKYWAIKLATNAAVTVLRVDQIIMAKPAGGPKPPSGKKDWDDDQND +>6s61_M mol:protein length:182 Ferritin heavy chain +MTTASPSQVRQNYHQDAEAAINRQINLELYASYVYLSMSCYFDRDDVALKNFAKYFLHQSHEEREHAEKLMKLQNQRGGRIFLQDIKKPDRDDWESGLNAMECALHLEKSVNQSLLELHKLATDKNDPHLCDFIETYYLSEQVKSIKELGDHVTNLRKMGAPEAGMAEYLFDKHTLGHGDES +>5j8k_F mol:protein length:429 COMPLEX I 51KDA/NDUFV1 +XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXCXXCXXCXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXCXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX +>4wuz_B mol:protein length:229 Exonuclease +GSHMTPDIILQRTGIDVRAVEQGDDAWHKLRLGVITASEVHNVIAKPRSGKKWPDMKMSYFHTLLAEVCTGVAPEVNAKALAWGKQYENDARTLFEFTSGVNVTESPIIYRDESMRTACSPDGLCSDGNGLELKCPFTSRDFMKFRLGGFEAIKSAYMAQVQYSMWVTRKNAWYFANYDPRMKREGLHYVVIERDEKYMASFDEIVPEFIEKMDEALAEIGFVFGEQWR +>7xve_C mol:protein length:215 Sodium channel subunit beta-2 +MHRDAWLPRPAFSLTGLSLFFSLVPPGRSMEVTVPATLNVLNGSDARLPCTFNSCYTVNHKQFSLNWTYQECNNCSEEMFLQFRMKIINLKLERFQDRVEFSGNPSKYDVSVMLRNVQPEDEGIYNCYIMNPPDRHRGHGKIHLQVLMEEPPERDSTVAVIVGASVGGFLAVVILVLMVVKCVRRKKEQKLSTDDLKTEEEGKTDGEGNPDDGAK +>5nd8_G mol:protein length:179 50S ribosomal protein L5 +MNRLKEKFNTEVTENLMKKFNYSSVMEVPKIDKIVVNMGVGDAVQNSKVLDNAVEELELITGQKPLVTKAKKSIATFRLREGMPIGAKVTLRGERMYEFLDKLISVSLPRVRDFQGVSKKAFDGRGNYTLGVKEQLIFPEIDYDKVSKVRGMDIVIVTTANTDEEARELLANFGMPFRK +>7pr0_E mol:protein length:205 Spike protein S1 +ETGHHHHHHTNLCPFGEVFNATRFASVYAWNRKRISNCVADYSVLYNSASFSTFKCYGVSPTKLNDLCFTNVYADSFVIRGDEVRQIAPGQTGKIADYNYKLPDDFTGCVIAWNSNNLDSKVGGNYNYLYRLFRKSNLKPFERDISTEIYQAGSTPCNGVEGFNCYFPLQSYGFQPTNGVGYQPYRVVVLSFELLHAPATVCGKK +>2af7_A mol:protein length:125 gamma-carboxymuconolactone decarboxylase +MERYRRGMEILNRMNRKSYTAIRDELEDVAPDLARFVAEFAYGDVYSRGVLDLKTRELLTLAALTVLRADDQLKSHVRGALNAGCSKDEIIEVMIQMAVYAGFPAAINAVLAAKEVFTENDPAEV +>7ukn_A mol:protein length:1142 DNA damage-binding protein 1 +GAMSYNYVVTAQKPTAVNGCVTGHFTSAEDLNLLIAKNTRLEIYVVTAEGLRPVKEVGMYGKIAVMELFRPKGESKDLLFILTAKYNACILEYKQSGESIDIITRAHGNVQDRIGRPSETGIIGIIDPECRMIGLRLYDGLFKVIPLDRDNKELKAFNIRLEELHVIDVKFLYGCQAPTICFVYQDPQGRHVKTYEVSLREKEFNKGPWKQENVEAEASMVIAVPEPFGGAIIIGQESITYHNGDKYLAIAPPIIKQSTIVCHNRVDPNGSRYLLGDMEGRLFMLLLEKEEQMDGTVTLKDLRVELLGETSIAECLTYLDNGVVFVGSRLGDSQLVKLNVDSNEQGSYVVAMETFTNLGPIVDMCVVDLERQGQGQLVTCSGAFKEGSLRIIRNGIGIHEHASIDLPGIKGLWPLRSDPNRETDDTLVLSFVGQTRVLMLNGEEVEETELMGFVDDQQTFFCGNVAHQQLIQITSASVRLVSQEPKALVSEWKEPQAKNISVASCNSSQVVVAVGRALYYLQIHPQELRQISHTEMEHEVACLDITPLGDSNGLSPLCAIGLWTDISARILKLPSFELLHKEMLGGEIIPRSILMTTFESSHYLLCALGDGALFYFGLNIETGLLSDRKKVTLGTQPTVLRTFRSLSTTNVFACSDRPTVIYSSNHKLVFSNVNLKEVNYMCPLNSDGYPDSLALANNSTLTIGTIDEIQKLHIRTVPLYESPRKICYQEVSQCFGVLSSRIEVQDTSGGTTALRPSASTQALSSSVSSSKLFSSSTAPHETSFGEEVEVHNLLIIDQHTFEVLHAHQFLQNEYALSLVSCKLGKDPNTYFIVGTAMVYPEEAEPKQGRIVVFQYSDGKLQTVAEKEVKGAVYSMVEFNGKLLASINSTVRLYEWTTEKELRTECNHYNNIMALYLKTKGDFILVGDLMRSVLLLAYKPMEGNFEEIARDFNPNWMSAVEILDDDNFLGAENAFNLFVCQKDSAATTDEERQHLQEVGLFHLGEFVNVFCHGSLVMQNLGETSTPTQGSVLFGTVNGMIGLVTSLSESWYNLLLDMQNRLNKVIKSVGKIEHSFWRSFHTERKTEPATGFIDGDLIESFLDISRPKMQEVVANLQYDDGSGMKREATADDLIKVVEELTRIH +>4i10_A mol:protein length:406 Beta-secretase 1 +MRGSFVEMVDNLRGKSGQGYYVEMTVGSPPQTLNILVDTGSSNFAVGAAPHPFLHRYYQRQLSSTYRDLRKGVYVPYTQGKWEGELGTDLVSIPHGPNVTVRANIAAITESDKFFINGSNWEGILGLAYAEIARPDDSLEPFFDSLVKQTHVPNLFSLQLCGAGFPLNQSEVLASVGGSMIIGGIDHSLYTGSLWYTPIRREWYYEVIIVRVEINGQDLKMDCKEYNYDKSIVDSGTTNLRLPKKVFEAAVKSIKAASSTEKFPDGFWLGEQLVCWQAGTTPWNIFPVISLYLMGEVTNQSFRITILPQQYLRPVEDVATSQDDCYKFAISQSSTGTVMGAVIMEGFYVVFDRARKRIGFAVSACHVHDEFRTAAVEGPFVTLDMEDCGYNIPQTDESRSHHHHHH +>5j88_D1 mol:protein length:56 50S ribosomal protein L32 +AVQQNKPTRSKRGMRRSHDALTAVTSLSVDKTSGEKHLRHHITADGYYRGRKVIAK +>6wl8_oA mol:protein length:29 Form 2 peptide +QAKILEADAEILKAYAKILEAHAEILKAQ +>4z3s_1q mol:protein length:105 30S ribosomal protein S17 +MPKKVLTGVVVSDKMQKTVTVLVERQFPHPLYGKVIKRSKKYLAHDPEEKYKLGDVVEIIESRPISKRKRFRVLRLVESGRMDLVEKYLIRRQNYESLSKRGGKA +>1tyq_D mol:protein length:300 Arp2/3 complex 34kDa subunit +MILLEVNNRIIEETLALKFENAAAGNKPEAVEVTFADFDGVLYHISNPNGDKTKVMVSISLKFYKELQAHGADELLKRVYGSYLVNPESGYNVSLLYDLENLPASKDSIVHQAGMLKRNCFASVFEKYFQFQEEGKEGENRAVIHYRDDETMYVESKKDRVTVVFSTVFKDDDDVVIGKVFMQEFKEGRRASHTAPQVLFSHREPPLELKDTDAAVGDNIGYITFVLFPRHTNASARDNTINLIHTFRDYLHYHIKCSKAYIHTRMRAKTSDFLKVLNRARPDAEKKEMKTITGKTFSSR +>7jxs_F mol:protein length:137 Matrix protein +GARASVLSGGELDKWEKIRLRPGGKKQYKLKHIVWASRELERFAVNPGLLETSEGCRQILGRLQPSLQTGSEELRSLYNTIAVLYCVHQRIDVKDTKEALDKIEEEQNKSKKKAQQAAADTGNNSQVSQNYHHHHHH +>1ww4_D mol:protein length:160 galectin +TTSAVNIYNISAGASVDLAAPVTTGDIVTFFSSALNLSAGAGSPNNTALNLLSENGAYLLHIAFRLQENVIVFNSRQPNAPWLVEQRVSNVANQFIGSGGKAMVTVFDHGDKYQVVINEKTVIQYTKQISGTTSSLSYNSTEGTSIFSTVVEAVTYTGLA +>3waa_G mol:protein length:131 Histone H2A.V +GSHMAGGKAGKDSGKAKAKAVSRSQRAGLQFPVGRIHRHLKTRTTSHGRVGATAAVYSAAILEYLTAEVLELAGNASKDLKVKRITPRHLQLAIRGDEELDSLIKATIAGGGVIPHIHKSLIGKKGQQKTA +>6ryr_H mol:protein length:123 Histone H2B 1.1 +MAKSAPAPKKGSKKAVTKTQKKDGKKRRKTRKESYAIYVYKVLKQVHPDTGISSKAMSIMNSFVNDVFERIAGEASRLAHYNKRSTITSREIQTAVRLLLPGELAKHAVSEGTKAVTKYTSAK +>6umr_A mol:protein length:441 Damage-control phosphatase DUF89 +MAVVPASLSGQDVGSFAYLTIKDRIPQILTKVIDTLHRHKSEFFEKHGEEGVEAEKKAISLLSKLRNELQTDKPFIPLVEKFVDTDIWNQYLEYQQSLLNESDGKSRWFYSPWLLVECYMYRRIHEAIIQSPPIDYFDVFKESKEQNFYGSQESIIALCTHLQQLIRTIEDLDENQLKDEFFKLLQISLWGNKCDLSLSGGESSSQNTNVLNSLEDLKPFILLNDMEHLWSLLSNCKKTREKASATRVYIVLDNSGFELVTDLILADFLLSSELATEVHFYGKTIPWFVSATTIHDFNWLIEQVKHSNHKWMSKCGADWEEYIKMGKWVYHNHIFWTLPHEYCAMPQVAPDLYAELQKAHLILFKGDLNYRKLTGDRKWEFSVPFHQALNGFHPAPLCTIRTLKAEIQVGLQPGQGEQLLASEPSWWTTGKYGIFQYDGPL +>1m64_A mol:protein length:571 flavocytochrome c3 +ADNLAEFHVQNQECDSCHTPDGELSNDSLTYENTQCVSCHGTLAEVAETTKHEHYNAHASHFPGEVACTSCHSAHEKSMVYCDSCHSFDFNMPYAKKWLRDEPTIAELAKDKSERQAALASAPHDTVDVVVVGSGGAGFSAAISATDSGAKVILIEKEPVIGGNAKLAAGGMNAAWTDQQKAKKITDSPELMFEDTMKGGQNINDPALVKVLSSHSKDSVDWMTAMGADLTDVGMMGGASVNRAHRPTGGAGVGAHVVQVLYDNAVKRNIDLRMNTRGIEVLKDDKGTVKGILVKGMYKGYYWVKADAVILATGGFAKNNERVAKLDPSLKGFISTNQPGAVGDGLDVAENAGGALKDMQYIFAHPTLSVKGGVMVTEAVRGNGAILVNREGKRFVNEITTRDKASAAILAQTGKSAYLIFDDSVRKSLSKIDKYIGLGVAPTADSLVKLGKMEGIDGKALTETVARYNSLVSSGKDTDFERPNLPRALNEGNYYAIEVTPGVHHTMGGVMIDTKAEVMNAKKQVIPGLYGAGEVTGGVHGANRLGGNAISDIITFGRLAGEEAAKYSKKN +>5kwy_D mol:protein length:133 Epididymal secretory protein E1 +EPVQFKDCGSVDGVIKEVNVSPCPTQPCQLSKGQSYSVNVTFTSNIQSKSSKAVVHGILMGVPVPFPIPEPDGCKSGINCPIQKDKTYSYLNKLPVKSEYPSIKLVVEWQLQDDKNQSLFCWEIPVQIVSHLA +>5jc9_AU mol:protein length:56 30S ribosomal protein S21 +PVIKVRENEPFDVALRRFKRSCEKAGVLAEVRRREFYEKPTTERKRAKASAVKRHA +>2jd7_C mol:protein length:174 FERRITIN HOMOLOG +MLSERMLKALNDQLNRELYSAYLYFAMAAYFEDLGLEGFANWMKAQAEEEIGHALRFYNYIYDRNGRVELDEIPKPPKEWESPLKAFEAAYEHEKFISKSIYELAALAEEEKDYSTRAFLEWFINEQVEEEASVKKILDKLKFAKDSPQILFMLDKELSARAPKLPGLLMQGGE +>4r6o_H mol:protein length:19 Agglutinin beta-3 chain +EQSGISQTVIVGPWGAKVS +>2hzi_B mol:protein length:277 Proto-oncogene tyrosine-protein kinase ABL1 +GAMDPSPNYDKWEMERTDITMKHKLGGGQYGEVYEGVWKKYSLTVAVKTLKEDTMEVEEFLKEAAVMKEIKHPNLVQLLGVCTREPPFYIITEFMTYGNLLDYLRECNRQEVNAVVLLYMATQISSAMEYLEKKNFIHRDLAARNCLVGENHLVKVADFGLSRLMTGDTYTAHAGAKFPIKWTAPESLAYNKFSIKSDVWAFGVLLWEIATYGMSPYPGIDLSQVYELLEKDYRMERPEGCPEKVYELMRACWQWNPSDRPSFAEIHQAFETMFQES +>6wyd_E mol:protein length:467 Myeloperoxidase heavy chain +VNCETSCVQQPPCFPLKIPPNDPRIKNQADCIPFFRSCPACPGSNITIRNQINALTSFVDASMVYGSEEPLARNLRNMSNQLGLLAVNQRFQDNGRALLPFDNLHDDPCLLTNRSARIPCFLAGDTRSSEMPELTSMHTLLLREHNRLATELKSLNPRWDGERLYQEARKIVGAMVQIITYRDYLPLVLGPTAMRKYLPTYRSYNDSVDPRIANVFTNAFRYGHTLIQPFMFRLDNRYQPMEPNPRVPLSRVFFASWRVVLEGGIDPILRGLMATPAKLNRQNQIAVDEIRERLFEQVMRIGLDLPALNMQRSRDHGLPGYNAWRRFCGLPQPETVGQLGTVLRNLKLARKLMEQYGTPNNIDIWMGGVSEPLKRKGRVGPLLACIIGTQFRKLRDGDRFWWENEGVFSMQQRQALAQISLPRIICDNTGITTVSKNNIFMSNSYPRDFVNCSTLPALNLASWREAS +>3cgx_A mol:protein length:242 Putative nucleotide-diphospho-sugar transferase +GMSESCILFFVKYPEPGKVKTRLGEVVGNDKAAMLYRHFVQDMLQGLARLHADLHICYVPGDADLPEKFKAWLGPQHMFAAQQGLDLGERMKHAMQKAFDDGYDRVVLMGSDIPDYPCELVQKALNDLQHYDAAIGPAFDGGYYLIGFRKDSFCPDVFDGIRWGEADVYQPTVEKMRRARLEVLQLPDWNDVDTVWDLNVLYRTNKNSSFRRSSTYALLRENDALIRQYDIDLPGMAPVEKE +>3dke_X mol:protein length:164 Lysozyme +MNIFEMLRIDEGLRLKIYKDTEGYYTIGIGHLLTKSPSLNAAKSELDKAIGRNTNGVITKDEAEKLFNQDVDAAVRGILRNAKLKPVYDSLDAVRRAAAINLVFQMGETGVAGFTNSLRMLQQKRWDEAAVNLAKSRWYNQTPNRAKRVITTFRTGTWDAYKNL +>6jxq_A mol:protein length:147 Lysozyme C +MRSLLILVLCFLPLAALGKVFGRCELAAAMKRHGLDNYRGYSLGNWVCAAKFESNFNTQATNRNTDGSTDYGILQINSRWWCNDGRTPGSRNLCNIPCSALLSSDITASVNCAKKIVSDGNGMNAWVAWRNRCKGTDVQAWIRGCRL +>1ju2_A mol:protein length:536 hydroxynitrile lyase +LATTSDHDFSYLSFAYDATDLELEGSYDYVIVGGGTSGCPLAATLSEKYKVLVLERGSLPTAYPNVLTADGFVYNLQQEDDGKTPVERFVSEDGIDNVRGRVLGGTSIINAGVYARANTSIYSASGVDWDMDLVNQTYEWVEDTIVYKPNSQSWQSVTKTAFLEAGVHPNHGFSLDHEEGTRITGSTFDNKGTRHAADELLNKGNSNNLRVGVHASVEKIIFSNAPGLTATGVIYRDSNGTPHQAFVRSKGEVIVSAGTIGTPQLLLLSGVGPESYLSSLNIPVVLSHPYVGQFLHDNPRNFINILPPNPIEPTIVTVLGISNDFYQCSFSSLPFTTPPFGFFPSSSYPLPNSTFAHFASKVAGPLSYGSLTLKSSSNVRVSPNVKFNYYSNLTDLSHCVSGMKKIGELLSTDALKPYKVEDLPGVEGFNILGIPLPKDQTDDAAFETFCRESVASYWHYHGGCLVGKVLDGDFRVTGINALRVVDGSTFPYTPASHPQGFYLMLGRYVGIKILQERSASDLKILDSLKSAASLVL +>3oi9_A mol:protein length:164 Molybdenum cofactor synthesis domain +GPGSMTTRSARVIIASTRASSGEYEDRCGPIITEWLAQQGFSSAQPEVVADGSPVGEALRKAIDDDVDVILTSGGTGIAPTDSTPDQTVAVVDYLIPGLAEAIRQSGLPKVPTSVLSRGVCGVAGQTLIVNLPGSPGGVRDGLGVLAGVLDHALDQLAGKDHPR +>5zf0_C1 mol:protein length:80 Photosystem I iron-sulfur center +AHTVKIYDTCIGCTQCVRACPTDVLEMVPWDGCKAGQIASSPRTEDCVGCKRCETACPTDFLSIRVYLGAETTRSMGLAY +>3fq3_H mol:protein length:197 Inorganic pyrophosphatase:Bacterial/Archaeal inorganic pyrophosphatase +MAHHHHHHMGTLEAQTQGPGSMNIDAISIGSNPPEDVNVIIEVPVGGQPIKYEMDKKAGALIVDRFLYTPMTYPGNYGFVPHTLSEDGDPIDVLVCNTRPLIPGCVINVRPIGVLVMEDNSGKDEKIIAVPSPHLTRRYEKIHDYTDMPEITLKQIAHFFEHYKDLEPGKWVKIGDWGDEDYARKFIVEAIERAKGK +>7s5z_A mol:protein length:390 ATP-sensitive inward rectifier potassium channel 11 +MLSRKGIIPEEYVLTRLAEDPAKPRYRARQRRARFVSKKGNCNVAHKNIREQGRFLQDVFTTLVDLKWPHTLLIFTMSFLCSWLLFAMAWWLIAFAHGDLAPSEGTAEPCVTSIHSFSSAFLFSIEVQVTIGFGGRMVTEECPLAILILIVQNIVGLMINAIMLGSIFMKTAQAHRRAETLIFSKHAVIALRHGRLCFMLRVGDLRKSMIISATIHMQVVRKTTSPEGEVVPLHQVDIPMENGVGGNSIFLVAPLIIYHVIDANSPLYDLAPSDLHHHQDLEIIVILEGVVETTGITTQARTSYLADEILWGQRFVPIVAEEDGRYSVDYSKFDNTVKVPTPLCTARQLDEDHSLLEALTLASARGPLRKRSVPMAKAKPKFSISPDSLS +>6zsb_g mol:protein length:166 39S ribosomal protein L49, mitochondrial +MAATMFRATLRGWRTGVQRGCGLRLLSQTQGPPDYPRFVESVDEYQFVERLLPATRIPDPPKHEHYPTPSGWQPPRDPPPNLPYFVRRSRMHNIPVYKDITHGNRQMTVIRKVEGDIWALQKDVEDFLSPLLGKTPVTQVNEVTGTLRIKGYFDQELKAWLLEKGF +>7xoa_C mol:protein length:1270 Spike glycoprotein +MFVFLVLLPLVSSQCVNLITRTQSYTNSFTRGVYYPDKVFRSSVLHSTQDLFLPFFSNVTWFHAIHVSGTNGTKRFDNPVLPFNDGVYFASTEKSNIIRGWIFGTTLDSKTQSLLIVNNATNVVIKVCEFQFCNDPFLDVYYHKNNKSWMESEFRVYSSANNCTFEYVSQPFLMDLEGKQGNFKNLREFVFKNIDGYFKIYSKHTPINLGRDLPQGFSALEPLVDLPIGINITRFQTLLALHRSYLTPGDSSSGWTAGAAAYYVGYLQPRTFLLKYNENGTITDAVDCALDPLSETKCTLKSFTVEKGIYQTSNFRVQPTESIVRFPNITNLCPFDEVFNATRFASVYAWNRKRISNCVADYSVLYNFAPFFAFKCYGVSPTKLNDLCFTNVYADSFVIRGNEVSQIAPGQTGNIADYNYKLPDDFTGCVIAWNSNKLDSKVGGNYNYLYRLFRKSNLKPFERDISTEIYQAGNKPCNGVAGFNCYFPLRSYGFRPTYGVGHQPYRVVVLSFELLHAPATVCGPKKSTNLVKNKCVNFNFNGLTGTGVLTESNKKFLPFQQFGRDIADTTDAVRDPQTLEILDITPCSFGGVSVITPGTNTSNQVAVLYQGVNCTEVPVAIHADQLTPTWRVYSTGSNVFQTRAGCLIGAEYVNNSYECDIPIGAGICASYQTQTKSHGSASSVASQSIIAYTMSLGAENSVAYSNNSIAIPTNFTISVTTEILPVSMTKTSVDCTMYICGDSTECSNLLLQYGSFCTQLKRALTGIAVEQDKNTQEVFAQVKQIYKTPPIKYFGGFNFSQILPDPSKPSKRSPIEDLLFNKVTLADAGFIKQYGDCLGDIAARDLICAQKFNGLTVLPPLLTDEMIAQYTSALLAGTITSGWTFGAGPALQIPFPMQMAYRFNGIGVTQNVLYENQKLIANQFNSAIGKIQDSLSSTPSALGKLQDVVNHNAQALNTLVKQLSSKFGAISSVLNDILSRLDPPEAEVQIDRLITGRLQSLQTYVTQQLIRAAEIRASANLAATKMSECVLGQSKRVDFCGKGYHLMSFPQSAPHGVVFLHVTYVPAQEKNFTTAPAICHDGKAHFPREGVFVSNGTHWFVTQRNFYEPQIITTDNTFVSGNCDVVIGIVNNTVYDPLQPELDSFKEELDKYFKNHTSPDVDLGDISGINASVVNIQKEIDRLNEVAKNLNESLIDLQELGKYEQYIKWPWYIWLGFIAGLIAIVMVTIMLCCMTSCCSCLKGCCSCGSCCKFDEDDSEPVLKGVKLHYT +>5dgf_M9 mol:protein length:188 60S ribosomal protein L19-A +ANLRTQKRLAASVVGVGKRKVWLDPNETSEIAQANSRNAIRKLVKNGTIVKKAVTVHSKSRTRAHAQSKREGRHSGYGKRKGTREARLPSQVVWIRRLRVLRRLLAKYRDAGKIDKHLYHVLYKESKGNAFKHKRALVEHIIQAKADAQREKALNEEAEARRLKNRAARDRRAQRVAEKRDALLKEDA +>4otz_A mol:protein length:395 Amino acid/amide ABC transporter substrate-binding protein, HAAT family +SNATNTDTNSTNNSPNNTTNTTTNVTTTSDKNTIPIGIALAQTSNVALLGQEQVAGAKIAEKYFNDKGGVNGTPIKLIFQDTAGDEAGTINAFQTLINKDKVVGIVGPTLSQQAFSANPIAERAKVPVVGPSNTAKGIPEIGDYVARVSAPVSVVAPNSVKAALKQNPNIKKVAVFFAQNDAFSKSETEIFQQTVKDQGLELVTVQKFQTTDTDFQSQATNAINLKPDLVIISGLAADGGNLVRQLRELGYQGAIIGGDGLNTSNVFAVCKALCDGVLIAQAYSPEYTGEINKAFRQAYVDQYKKEPPQFSAQAFAAVQVYVESLKALDTKNKVSKIQLPELRTELNKQLLTGKYNTPLGEISFTPIGEVVQKDFYVAQIKMEKDGSQGKFTFLK +>1dps_L mol:protein length:167 DPS +MSTAKLVKSKATNLLYTRNDVSDSEKKATVELLNRQVIQFIDLSLITKQAHWNMRGANFIAVHEMLDGFRTALIDHLDTMAERAVQLGGVALGTTQVINSKTPLKSYPLDIHNVQDHLKELADRYAIVANDVRKAIGEAKDDDTADILTAASRDLDKFLWFIECNIE +>7wxi_A mol:protein length:776 Delta-1-pyrroline-5-carboxylate synthase +MLQNSFKLAQSLRNGFYRNAWRAFSSHGPRQPLVSPERRLEKAHPTFTERSQLKYARRLVVKLGSAVITREDNHGLALGRLASIVEQVAECHLEGREVMMVTSGAVAFGKQKLAQELLMSLSMRETLNPKDSKEFDGATLEPRAAAAVGQSGLMSLYDAMFAQYGVKIAQVLVTKPDFYNEETRNNLFCTLSELISLNIVPIINTNDAVSPPMFIRDDEPAGGARRGIPIKDNDSLSAMLAAEVQADLLILMSDVDGIYNKPPWEDGAKLMHTYTSDDSNSIEFGKKSKVGTGGMDSKVKAATWALDRGVSVVICNGMQEKAIKTIIGGRKVGTFFTEATESANAVPVEVMAENARTGSRQMQALTPAQRASAVNTLADLLVSREKFILDANAKDLAEAQKSGLAKPLLSRLSLNPAKLKNLSVGLKQIAEDSHKNVGRVLRRTRLADQLELKQVTVPIGVLLVIFESRPDSLPQVAALAMASANGLLLKGGKEAAHSNKALMELVKEALATVGAEHAVSLVSTREEISDLLSMENHIDLIIPRGSSDLVRSIQQQSLHIPVLGHAEGVCHVYIDRDADLEKALRIARDAKCDYPAACNAMETLLIHEDLMSGAIFGDVCNMLKREGVKIYAGPRLNQQLTFGPPAAKSLKHEYGALECCIEVVPSLDEAINHIHTYGSSHTDVIVTENDAAARQFLGSVDSACVFHNASSRFADGFRFGLGAEVGISTARIHARGPVGVEGLLTTKWILEGQDHAAADFAEGGGRTWLHETLPLD +>4u1v_B3 mol:protein length:64 50S ribosomal protein L35 +PKIKTVRGAAKRFKKTGKGGFKHKHANLRHILTKKATKRKRHLRPKAMVSKGDLGLVIACLPYA +>5l5h_J mol:protein length:198 Proteasome subunit beta type-4 +MDIILGIRVQDSVILASSKAVTRGISVLKDSDDKTRQLSPHTLMSFAGEAGDTVQFAEYIQANIQLYSIREDYELSPQAVSSFVRQELAKSIRSRRPYQVNVLIGGYDKKKNKPELYQIDYLGTKVELPYGAHGYSGFYTFSLLDHHYRPDMTTEEGLDLLKLCVQELEKRMPMDFKGVIVKIVDKDGIRQVDDFQAQ +>6mu3_M mol:protein length:225 Fab 2G12, heavy chain +EVQLVESGGGLVKAGGSLILSCGVSNFRISAHTMNWVRRVPGGGLEWVASISTSSTYRDYADAVKGRFTVSRDDLEDFVYLQMHKMRVEDTAIYYCARKGSDRLSDNDPFDAWGPGTVVTVSPASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKS +>3sud_B mol:protein length:203 NS3 protease, NS4A protein +GSHMASMKKKGSVVIVGRINLSGDTAYAQQTRGEEGCQETSQTGRDKNQVEGEVQIVSTATQTFLATSINGVLWTVYHGAGTRTIASPKGPVTQMYTNVDKDLVGWQAPQGSRSLTPCTCGSSDLYLVTRHADVIPVRRRGDSRGSLLSPRPISYLKGSAGGPLLCPAGHAVGIFRAAVSTRGVAKAVDFIPVESLETTMRSP +>6bfq_I mol:protein length:127 Granulocyte-macrophage colony-stimulating factor +APARSPSPSTQPWEHVNAIQEARRLLNLSRDTAAEMNETVEVISEMFDLQEPTCLQTRLELYKQGLRGSLTKLKGPLTMMASHYKQHCPPTPETSCATQIITFESFKENLKDFLLVIPFDCWEPVQE +>5fl8_R mol:protein length:189 60S ribosomal protein L19-A +MANLRTQKRLAASVVGVGKRKVWLDPNETSEIAQANSRNAIRKLVKNGTIVKKAVTVHSKSRTRAHAQSKREGRHSGYGKRKGTREARLPSQVVWIRRLRVLRRLLAKYRDAGKIDKHLYHVLYKESKGNAFKHKRALVEHIIQAKADAQREKALNEEAEARRLKNRAARDRRAQRVAEKRDALLKEDA +>6hiv_BJ mol:protein length:333 mL76 +MLRLSSWNLKSQHHNVLRRSRPHIHKYRELNRWQRQAQGISKWDQSHSHRPLPYVERFNPESVGLTRGTSAFAWKWWHTQYPWLPNVPPEAAQIDEAQKQERRSHRPPAWDDEFAKVVLNMNDAEIREYLMSKLTDVIFLETQRDGYELRRLDFEGKPLTSLPEPRIIENFVLEEETIRERVIYQVVEGVFRLSPTSADRRELRSVANIIDYVLTHVRAARPTDRERRQERPITSAALAVMQKCPIQPQLGFVHALPHDTRDALLQEWERMHHLDWQFGKAVYTPRSKENVRGNLTWLREDRHYDQRMKFMQEVESGEARAKHMKLIAEAAGN +>7kf1_B mol:protein length:218 anti-VEGF-A Fab bH1 light chain +DIQMTQSPSSLSASVGDRVTITCRASQDIPRSISGYVAWYQQKPGKAPKLLIYWGSYLYSGVPSRFSGSGSGTDFTLTISSLQPEDFATYYCQQHYTTPPTFGQGTKVEIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>2v7n_B mol:protein length:229 IMMUNOGLOBULIN HEAVY CHAIN +QVQLVESGGGLVQPGGSLRLSCAASGFTFRNSAMHWVRQAPGKGLEWVSSIWYSGSNTYYADSVKGRFTISRDNSKNTLYLQMNSLRAEDTAVYYCARFAGGWGAYDVWGQGTLVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSEFHHHHHH +>4ium_A mol:protein length:142 papain-like protease 2 +GYNPPGDGACGYRCLAFMNGATVVSAGCSSDLWCDDELAYRVFQLSPTFTVTIPGGRVCPNAKYAMICDKQHWRVKRAKGVGLCLDESCFRGICNCQRMSGPPPAPVSAAVLDHILEAATFGNVRVVTPEGQGSSGHHHHHH +>5qob_B mol:protein length:189 Thiol:disulfide interchange protein +AQYEDGKQYTTLEKPVAGAPQVLEFFSFFCPHCYQFEEVLHISDNVKKKLPEGVKMTKYHVNFMGGDLGKDLTQAWAVAMALGVEDKVTVPLFEGVQKTQTIRSASDIRDVFINAGIKGEEYDAAWNSFVVKSLVAQQEKAAADVQLRGVPAMFVNGKYQLNPQGMDTSNMDVFVQQYADTVKYLSEKK +>7odk_AAA mol:protein length:617 Receptor-like protein kinase HSL1 +GSSMDNQDGFILQQVKLSLDDPDSYLSSWNSNDASPCRWSGVSCAGDFSSVTSVDLSSANLAGPFPSVICRLSNLAHLSLYNNSINSTLPLNIAACKSLQTLDLSQNLLTGELPQTLADIPTLVHLDLTGNNFSGDIPASFGKFENLEVLSLVYNLLDGTIPPFLGNISTLKMLNLSYNPFSPSRIPPEFGNLTNLEVMWLTECHLVGQIPDSLGQLSKLVDLDLALNDLVGHIPPSLGGLTNVVQIELYNNSLTGEIPPELGNLKSLRLLDASMNQLTGKIPDELCRVPLESLNLYENNLEGELPASIALSPNLYEIRIFGNRLTGGLPKDLGLNSPLRWLDVSENEFSGDLPADLCAKGELEELLIIHNSFSGVIPESLADCRSLTRIRLAYNRFSGSVPTGFWGLPHVNLLELVNNSFSGEISKSIGGASNLSLLILSNNEFTGSLPEEIGSLDNLNQLSASGNKFSGSLPDSLMSLGELGTLDLHGNQFSGELTSGIKSWKKLNELNLADNEFTGKIPDEIGSLSVLNYLDLSGNMFSGKIPVSLQSLKLNQLNLSYNRLSGDLPPSLAKDMYKNSFIGNPGLCGDIKGLCGSENEAKKRGYVLEGSENLYFQ +>1ixm_B mol:protein length:192 PROTEIN (SPORULATION RESPONSE REGULATORY PROTEIN) +MKDVSKNQEENISDTALTNELIHLLGHSRHDWMNKLQLIKGNLSLQKYDRVFEMIEEMVIDAKHESKLSNLKTPHLAFDFLTFNWKTHYMTLEYEVLGEIKDLSAYDQKLAKLMRKLFHLFDQAVSRESENHLTVSLQTDHPDRQLILYLDFHGAFADPSAFDDIRQNGYEDVDIMRFEITSHECLIEIGLD +>7c0w_A mol:protein length:406 Sugar ABC transporter, periplasmic sugar-binding protein +MMKPEDVIKEQCARAKVVAELWHGFTGGAPKAALENLVVEFNKAQQGRCVRPVPQGGYRDLSTKIKAAFAAGKVPTMAQAFENNIALYLEAKALLPIESLGVKLQGVNLTFLNAVRFGGVVYGVPFNKSIQVLYYNKDLLKKHGVPVPATLEEFVAAAKKLSRAEGGPVYWFQPDASTFAYFFFNLGGSYLKDGKLVLNSKEAVEALTLLQNGVKEGWAKPITSGAINQNLGSGPYAFSVDTSAGYTYYLRAAKFDLGVATLPGRTKGQPGYGLVQGTNLVVFRQASKEEQAVAKDFLEFVLSPRAQAVFATATGYVPVTEGALKDPVYQAYAAENPDYATIVRQSRYAKFEPALAEWEQIRFDILGQAIKEAILNKADPKAALDRAQKLAEDLLSSRTRHHHHHH +>5pln_A mol:protein length:364 Lysine-specific demethylase 4D +MHHHHHHSSGVDLGTENLYFQSMETMKSKANCAQNPNCNIMIFHPTKEEFNDFDKYIAYMESQGAHRAGLAKIIPPKEWKARETYDNISEILIATPLQQVASGRAGVFTQYHKKKKAMTVGEYRHLANSKKYQTPPHQNFEDLERKYWKNRIYNSPIYGADISGSLFDENTKQWNLGHLGTIQDLLEKECGVVIEGVNTPYLYFGMWKTTFAWHTEDMDLYSINYLHLGEPKTWYVVPPEHGQRLERLARELFPGSSRGCGAFLRHKVALISPTVLKENGIPFNRITQEAGEFMVTFPYGYHAGFNHGFNCAEAINFATPRWIDYGKMASQCSCGEARVTFSMDAFVRILQPERYDLWKRGQDR +>7xxg_A mol:protein length:277 VP1 +GDNQDRTVANTQPSGPSNSKEIPALTAVETGHTSQVDPSDTLQTRHVVNFHSRSESTVENFMGRAACVFMDQYKLNGEETSTDNFAVWTINVREMAQLRRKCELFTYMRFDIEMTMVITSCQDQGTQLEQDMPVLTHQIMYVPPGGPIPAKVDSYEWQTSTNPSVFWTEGNAPARMSIPFISVGNAYSLFYDGWSHFTQDGTYGYTTLNAMGKLFVRHVNKSSPHQITSTIRVYFKPKHIKAWVPRPPRLCPYINKGDVNFVVTEVTDARKSITDTP +>6ynl_A mol:protein length:183 YTHDC1 +MHHHHHHSSGRENLYFQGTSKLKYVLQDARFFLIKSNNHENVSLAKAKGVWSTLPVNEKKLNLAFRSARSVILIFSVRESGKFQGFARLSSESHHGGSPIHWVLPAGMSAKMLGGVFKIDWICRRELPFTKSAHLTNPWNEHKPVKIGRDGQEIELECGTQLCLLFPPDESIDLYQVIHKMRH +>7xat_A mol:protein length:563 Somatostatin receptor type 2,LargeBit +MKTIIALSYIFCLVFADYKDDDDKGSGSHHHHHHHHHHLEVLFQGPMDMADEPLNGSHTWLSIPFDLNGSVVSTNTSNQTEPYYDLTSNAVLTFIYFVVCIIGLCGNTLVIYVILRYAKMKTITNIYILNLAIADELFMLGLPFLAMQVALVHWPFGKAICRVVMTVDGINQFTSIFCLTVMSIDRYLAVVHPIKSAKWRRPRTAKMITMAVWGVSLLVILPIMIYAGLRSNQWGRSSCTINWPGESGAWYTGFIIYTFILGFLVPLTIICLCYLFIIIKVKSSGIRVGSSKRKKSEKKVTRMVSIVVAVFIFCWLPFYIFNVSSVSMAISPTPALKGMFDFVVVLTYANSCANPILYAFLSDNFKKSFQNVLCLVKVSGTDDGERSDSKQDKSRLNETTETQRTVFTLEDFVGDWEQTAAYNLDQVLEQGGVSSLLQNLAVSVTPIQRIVRSGENALKIDIHVIIPYEGLSADQMAQIEEVFKVVYPVDDHHFKVILPYGTLVIDGVTPNMLNYFGRPYEGIAVFDGKKITVTGTLWNGNKIIDERLITPDGSMLFRVTINS +>3k7z_A mol:protein length:33 General control protein GCN4 +RMKQLEDKVEELLSKAYHLENEVARLKKLVGER +>1uld_C mol:protein length:150 galectin-2 +MLYHLFVNNQVKLQNDFKPESVAAIRSSAFNSKGGTTVFNFLSAGENILLHISIRPGENVIVFNSRLKNGAWGPEERIPYAEKFRPPNPSITVIDHGDRFQIRFDYGTSIYYNKRIKENAAAIAYNAENSLFSSPVTVDVHGLLPPLPPA +>1nz0_A mol:protein length:118 Ribonuclease P protein component +GSTESFTRRERLRLRRDFLLIFKEGKSLQNEYFVVLFRKNGMDYSRLGIVVKRKFGKATRRNKLKRWVREIFRRNKGVIPKGFDIVVIPRKKLSEEFERVDFWTVREKLLNLLKRIEG +>7wt2_B mol:protein length:184 Lactoylglutathione lyase +MAEPQPPSGGLTDEAALSCCSDADPSTKDFLLQQTMLRVKDPKKSLDFYTRVLGMTLIQKCDFPIMKFSLYFLAYEDKNDIPKEKDEKIAWALSRKATLELTHNWGTEDDETQSYHNGNSDPRGFGHIGIAVPDVYSACKRFEELGVKFVKKPDDGKMKGLAFIQDPDGYWIEILNPNKMATLM +>4v79_AS mol:protein length:81 30S ribosomal protein S19 +XRSLKKGPFIDLHLLKKVEKAVESGDKKPLRTWSRRSTIFPNMIGLTIAVHNGRQHVPVFVTDEMVGHKLGEFAPTRTYRX +>4prp_B mol:protein length:99 Beta-2-microglobulin +IQRTPKIQVYSRHPAENGKSNFLNCYVSGFHPSDIEVDLLKNGERIEKVEHSDLSFSKDWSFYLLYYTEFTPTEKDEYACRVNHVTLSQPKIVKWDRDM +>6zpo_H mol:protein length:146 ATP synthase subunit delta, mitochondrial +AEAAAAQAPAAGPGQMSFTFASPTQVFFNSANVRQVDVPTQTGAFGILAAHVPTLQVLRPGLVVVHAEDGTTSKYFVSSGSVTVNADSSVQLLAEEAVTLDMLDLGAAKANLEKAQSELLGAADEATRAEIQIRIEANEALVKALE +>1yxo_B mol:protein length:328 4-hydroxythreonine-4-phosphate dehydrogenase 1 +MSLRFALTPGEPAGIGPDLCLLLARSAQPHPLIAIASRTLLQERAGQLGLAIDLKDVSPAAWPERPAKAGQLYVWDTPLAAPVRPGQLDRANAAYVLETLTRAGQGCLDGHFAGMITAPVHKGVINEAGIPFSGHTEFLADLTHTAQVVMMLATRGLRVALATTHLPLREVADAISDERLTRVARILHADLRDKFGIAHPRILVCGLNPHAGEGGHLGREEIEVIEPCLERLRGEGLDLIGPLPADTLFTPKHLEHCDAVLAMYHDQGLPVLKYKGFGAAVNVTLGLPIIRTSVDHGTALDLAGSGRIDSGSLQVALETAYQMAASRC +>7n2u_Pp mol:protein length:3 Nascent peptide +MFK +>4ui8_C mol:protein length:48 TANKYRASE-2 +MAHSPPGHHSVTGRPSVNGLALAEYVIYRGEQAYPEYLITYQIMRPEG +>4v8d_DT mol:protein length:96 50S ribosomal protein L23 +MKTAYDVILAPVLSEKAYAGFAEGKYTFWVHPKATKTEIKNAVETAFKVKVVKVNTLHVRGKKKRLGRYLGKRPDRKKAIVQVAPGQKIEALEGLI +>5dcm_B mol:protein length:243 PhoB family transcriptional regulator +MSQEQGKIYIVEDDMTIVSLLKDHLSASYHVSSVSNFRDVKQEIIAFQPDLILMDITLPYFNGFYWTAELRKFLTIPIIFISSSNDEMDMVMALNMGGDDFISKPFSLAVLDAKLTAILRRSQQFIQQELTFGGFTLTREGLLSSQDKEVILSPTENKILSILLMHPKQVVSKESLLEKLWENDSFIDQNTLNVNMTRLRKKIVPIGFDYIHTVRGVGYLLQNDPSSSVDKLAAALEHHHHHH +>6v1q_A mol:protein length:773 Two pore channel 3 +MSEGKTEKTSHTLTKDEGFTNGGNHVPSNVTDQMTEKFDLATVYVSDAKYNRNIFFDTSPQAVKLYLLYNHWFMQTLVYVFIIINLALALFEDPAVVPLPIWATSTIETICLSAFTVRIIHYAKVIPKDKFWKDPKNICIIIIVTLSFIDMVIYGALKATGHYGIRWSRVLRPLLLVNVTEGRQLRRAFRSIRNALPQISYVFFLFMFSVLVFSLMALKLFGKRGLLTINGSPYFTDYMDIVFDLYVLVTTANSPDVMMPAYNSSVYFTIFFILYIVINTYTFMSFFLAVVYNNYKKYLKEEVRQLVKAKRIKMCRAFSLLQENRGEGGEPVVTQANWNHLVKLVKPKISTAHRELLWSVLDDQNKGHIGKFAFVQLADLLSIQVITVKSQAHPIQICFPSLYNSLPSRFIRQMVHHRVFVYAYDLIILVNAVFIGLDEENPVVSNAEWGFLALYMLEILLKLYATEPRAFFARHQFWNWFDTIIVVSALFGTIINSALKHSGGYTSRQVLDIVFILRVLRLIRVVDSIKRFRAIINTLIKIGPTILTFGQLILVVYYIFAMVGMELFKGKIQFFEPNSTSPDREYCGNPLLKSTSFAKLNYCKNNFNDVISSFILLLELTVVNQWHVLTSGFTAVTHVSARLFFVIFHIVVVIIIINIFVAFILEAFLVEYTVDKSELQTSLEKKIEELELNVQQDGVDTGLVDAMETNDSDLGSSEDGKRKPSLMFKIASRRSRTVDGLLQRMFETDLRPEDFNEEELDNTNFSNPVFDSV +>6xza_O2 mol:protein length:117 50S ribosomal protein L18 +MDKKSARIRRATRARRKLQELGATRLVVHRTPRHIYAQVIAPNGSEVLVAASTVEKAIAEQLKYTGNKDAAAAVGKAVAERALEKGIKDVSFDRSGFQYHGRVQALADAAREAGLQF +>7of6_J mol:protein length:192 39S ribosomal protein L11, mitochondrial +MSKLGRAARGLRKPEVGGVIRAIVRAGLAMPGPPLGPVLGQRGVSINQFCKEFNERTKDIKEGIPLPTKILVKPDRTFEIKIGQPTVSYFLKAAAGIEKGARQTGKEVAGLVTLKHVYEIARIKAQDEAFALQDVPLSSVVRSIIGSARSLGIRVVKDLSSEELAAFQKERAIFLAAQKEADLAAQEEAAKK +>5ltq_M mol:protein length:269 Green fluorescent protein blFP-Y3 +MRGSHHHHHHGMASMTGGQQMGRDLYDDDDKDPMVSKGEEDNMASLPATHELHIFGSFNGVDFDMVGRGTGNPNDGYEELNLKSTKGALQFSPWILVPQIGYGFHQYLPFPDGMSPFQAAMKDGSGYQVHRTMQFEDGASLTSNYRYTYEGSHIKGEFQVIGTGFPADGPVMTNSLTAADWCVTKMLYPNDKTIISTFDWTYTTGSGKRYQSTARTTYTFAKPMAANILKNQPMFVFRKTELKHSKTELNFKEWQKAFTDVMGMDELYK +>1rx0_B mol:protein length:393 Acyl-CoA dehydrogenase family member 8, mitochondrial +MVQTGHRSLTSCIDPSMGLNEEQKEFQKVAFDFAAREMAPNMAEWDQKELFPVDVMRKAAQLGFGGVYIQTDVGGSGLSRLDTSVIFEALATGCTSTTAYISIHNMCAWMIDSFGNEEQRHKFCPPLCTMEKFASYCLTEPGSGSDAASLLTSAKKQGDHYILNGSKAFISGAGESDIYVVMCRTGGPGPKGISCIVVEKGTPGLSFGKKEKKVGWNSQPTRAVIFEDCAVPVANRIGSEGQGFLIAVRGLNGGRINIASCSLGAAHASVILTRDHLNVRKQFGEPLASNQYLQFTLADMATRLVAARLMVRNAAVALQEERKDAVALCSMAKLFATDECFAICNQALQMHGGYGYLKDYAVQQYVRDSRVHQILEGSNEVMRILISRSLLQE +>1c4y_1 mol:protein length:36 THROMBIN:SHORT CHAIN +TFGSGEADCGLRPLFEKKSLEDKTERELLESYIDGR +>7tab_A mol:protein length:130 Isoform 4 of Transcription activator BRG1 +GSAEKLSPNPPNLTKKMKKIVDAVIKYKDSSSGRQLSEVFIQLPSRKELPEYYELIRKPVDFKKIKERIRNHKYRSLNDLEKDVMLLCQNAQTFNLEGSLIYEDSIVLQSVFTSVRQKIEKEDDSEGEES +>6p4h_E mol:protein length:281 uS3 +MSARRRRRRAAFRRRAEPFIPISVREPLPFLSAARGGKMAVQISKKRKFVADGIFKAELNEFLTRELAEDGYSGVEVRVTPTRTEIIILATRTQNVLGEKGRRIRELTAVVQKRFGFPEGSVELYAEKVATRGLCAIAQAESLRYKLLGGLAVRRACYGVLRFIMESGAKGCEVVVSGKLRGQRAKSMKFVDGLMIHSGDPVNYYVDTAVRHVLLRQGVLGIKVKIMLPWDPSGKIGPKKPLPDHVSIVEPKDEILPTTPISEQKGGKPEPPAMPQPVPTA +>6zzy_7 mol:protein length:221 Chlorophyll a-b binding protein, chloroplastic +VRELWFPGNKEVVPDYLDGSLVGDHGFDPLGLGSSPEQLSWNVHAEIFHGRLAMTGVAGILLTSLLHKGGADVPEWFEAGRVYLDRNPNVDFGALLFSTIVMSGFVEFKRLNDIRNPGSQGSGILPEDFKGVGGPQGRTVGGPYVGGRYFDPMGLCRGSPEQTLKYKWNEIRNGRLAMMAFLGFAAQYAATGKGPIDNLVDHVADPFHTTFVHNGVSVPFI +>5ai4_A mol:protein length:549 BIFUNCTIONAL EPOXIDE HYDROLASE 2 +GMTLRAAVFDLDGVLALPAVFGVLGRTEEALALPRGLLNDAFQKGGPEGATTRLMKGEITLSQWIPLMEENCRKCSETAKVCLPKNFSIKEIFDKAISARKINRPMLQAALMLRKKGFTTAILTNTWLDDRAERDGLAQLMCELKMHFDFLIESCQVGMVKPEPQIYKFLLDTLKASPSEVVFLDDIGANLKPARDLGMVTILVQDTDTALKELEKVTGIQLLNTPAPLPTSCNPSDMSHGYVTVKPRVRLHFVELGSGPAVCLCHGFPESWYSWRYQIPALAQAGYRVLAMDMKGYGESSAPPEIEEYCMEVLCKEMVTFLDKLGLSQAVFIGHDWGGMLVWYMALFYPERVRAVASLNTPFIPANPNMSPLESIKANPVFDYQLYFQEPGVAEAELEQNLSRTFKSLFRASDESVLSMHKVCEAGGLFVNSPEEPSLSRMVTEEEIQFYVQQFKKSGFRGPLNWYRNMERNWKWACKSLGRKILIPALMVTAEKDFVLVPQMSQHMEDWIPHLKRGHIEDCGHWTQMDKPTEVNQILIKWLDSDARN +>6vlz_A0 mol:protein length:218 28S ribosomal protein S34, mitochondrial +MARKKVRPRLIAELARRVRALREQLNRPRDSQLYAVDYETLTRPFSGRRLPVRAWADVRRESRLLQLLGRLPLFGLGRLVTRKSWLWQHDEPCYWRLTRVRPDYTAQNLDHGKAWGILTFKGKTESEAREIEHVMYHDWRLVPKHEEEAFTAFTPAPEDSLASVPYPPLLRAMIIAERQKNGDTSTEEPMLNVQRIRMEPWDYPAKQEDKGRAKGTPV +>3j3q_eB mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>1c2y_H mol:protein length:156 PROTEIN (LUMAZINE SYNTHASE) +MNELEGYVTKAQSFRFAIVVARFNEFVTRRLMEGALDTFKKYSVNEDIDVVWVPGAYELGVTAQALGKSGKYHAIVCLGAVVKGDTSHYDAVVNSASSGVLSAGLNSGVPCVFGVLTCDNMDQAINRAGGKAGNKGAESALTAIEMASLFEHHLKA +>7vfk_B mol:protein length:505 Glycosyl transferase, group 1 family protein +SMNYFVGNSLGVNLTGIEKAIINRLNLFKEMGRPAQCVFLSWNRYLYRNAQNYITSSDYINMYDFFQEATYLERNEPFDWLSYWTDECHYTLKHVENSHDFRIYDQERFLMYAHFQDPKYRILDYVNHFDSQRRKVKRDFYDVRGFLSCSRILVDKQQTLCEFFYNPEGDTKLEKYFSYKDGKPEVQKIIVYYANKQYFFNNETELGAFFIKQLYQHGDLFFSDRNVYTAPIFNLTPESIPVVAVLHSTHIKNIDALDSSPFKNVYKAMFENLSRYRAIIVSTEQQKLDVEKRINHTIPVVNIPVGYSETIDTPVQTLDQRSVKLISVARYSPEKQLHQQIELIKRLVSYVPKIELHMYGFGSESKKLNELIQKYGLENHVYLRGFLSNLDQEYSDAYLSLITSNMEGFSLALLESLAHGVPVISYDIKYGPNELITSDFNGYLITKNDEDALFDKVKYVIDHPEVQQRLSKGSLAKAQQYSKASLIKQWDQFVRLILEHHHHHH +>5wns_L mol:protein length:124 30S ribosomal protein S12 +PTINQLVRKGREKVRKKSKVPALKGAPFRRGVCTVVRTVTPKKPNSALRKVAKVRLTSGYEVTAYIPGEGHNLQEHSVVLIRGGRVKXLPGVRYHIVRGVYDAAGVKDRKKSRSKYGTKKPKEA +>4wss_B mol:protein length:514 Hemagglutinin +ADPGDKICIGYHANNSTTQVDTILEKNVTVTHSVELLETQKESRFCRVLNKAPLDLGDCTTEGWILGNPRCDKLLGDRSWSYIVERPDAQNGICYPGVLKEAEELKALIGSIDTIQRFEMFPKSTWTGVDTNSGVTSACTYNGGSSFYRNLLWIIKIRSDPYSLIKGTYTNTGSQSILYFWGVHHPPDDVEQANLYGLGTRYVRMGTESMNFAKGPEIADRPPANGQRGRIDYYWSVLKPGETLNVESNGNLIAPWYAYKFTSSRHKGAIFRSDLPIENCDAVCQTLTGAINTNKTFQNVSPIWIGECPKYVKSKSLKLATGLRNVPQVKTRGLFGAIAGFIEGGWTGMVDGWYGYHHENSQGSGYAADKESTQKAIDGITNKVNSIIDKMNTQFEAVEHEFSNLEKRISNLNKRMEDGFLDVWTYNAELLVLLENERTLDMHDANVKNLHEKVKSQLRDNAKDLGNGCFEFWHKCDNECINSVKNGTYNYPKYQEESRLNREEIKSGRLVPRG +>6ip5_2X mol:protein length:125 60S ribosomal protein L31 +MAPAKKGGEKKKGRSAINEVVTREYTINIHKRIHGVGFKKRAPRALKEIRKFAMKEMGTPDVRIDTRLNKAVWAKGIRNVPYRIRVRLSRKRNEDEDSPNKLYTLVTYVPVTTFKNLQTVNVDEN +>5lng_C mol:protein length:164 Putative Fml fimbrial adhesin FmlD +FSCNVDGGSSIGAGTTSVYVNLDPVIQPGQNLVVDLSQHISCWNDYGGWYDTDHINLVQGSAFAGSLQSYKGSLYWNNVTYPFPLTTNTNVLDIGDKTPMPLPLKLYITPVGAAGGVVIKAGEVIARIHMYKIATLGSGNPRNFTWNIISNNSVVMPTHHHHHH +>6u42_Z0 mol:protein length:443 Tubulin beta +MREIVHIQGGQCGNQIGAKFWEVVSDEHGIDPTGTYHGDSDLQLERINVYFNEATGGRYVPRAILMDLEPGTMDSVRSGPYGQIFRPDNFVFGQTGAGNNWAKGHYTEGAELIDSVLDVVRKEAESCDCLQGFQVCHSLGGGTGSGMGTLLISKIREEYPDRMMLTFSVVPSPKVSDTVVEPYNATLSVHQLVENADECMVLDNEALYDICFRTLKLTTPTFGDLNHLISAVMSGITCCLRFPGQLNADLRKLAVNLIPFPRLHFFMVGFTPLTSRGSQQYRALTVPELTQQMWDAKNMMCAADPRHGRYLTASALFRGRMSTKEVDEQMLNVQNKNSSYFVEWIPNNVKSSVCDIPPKGLKMSATFIGNSTAIQEMFKRVSEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDASAEEEGEFEGEEEEA +>6htr_b mol:protein length:196 PROTEASOME SUBUNIT BETA TYPE-1 +TSIMAVTFKDGVILGADSRTTTGAYIANRVTDKLTRVHDKIWCCRSGSAADTQAIADIVQYHLELYTSQYGTPSTETAASVFKELCYENKDNLTAGIIVAGYDDKNKGEVYTIPLGGSVHKLPYAIAGSGSTFIYGYCDKNFRENMSKEETVDFIKHSLSQAIKWDGSSGGVIRMVVLTAAGVERLIFYPDEYEQL +>3loe_A mol:protein length:30 Neutrophil defensin 1 +ACYCRIPACIAGERRYGTCIYQGRLWAACC +>7o5h_K mol:protein length:117 30S ribosomal protein S11 +RKQVSDGVAHIHASFNNTIVTITDRQGNALGWATAGGSGFRGSRKSTPFAAQVAAERCADAVKEYGIKNLEVMVKGPGPGRESTIRALNAAGFRITNITDVTPIPHNGCRPPKKRRV +>4dsq_D mol:protein length:184 Peroxiredoxin type-2 +MGHHHHHHMSDLVNKKFPAGDYKFQYIAISQSDADSESCKMPQTVEWSKLISENKKVIITGAPAAFSPTCTVSHIPGYINYLDELVKEKEVDQVIVVTVDNPFANQAWAKSLGVKDTTHIKFASDPGCAFTKSIGFELAVGDGVYWSGRWAMVVENGIVTYAAKETNPGTDVTVSSVESVLAHL +>5nhk_B mol:protein length:140 Ferric uptake regulation protein +MNSKNLDLKEFGFKVTQPRVEILKLFEKNKDKHLSPDDVFSKLKAQGSTTGIATVYRVLNQFESAGIINRLKLDNEQVMYELNQGEHHDHIICVKCNMIQEFYSPGIEALQKQIVESFGAEMIDYSLNIYVKCKSCREKI +>4gkf_A mol:protein length:169 CRISPR system Cmr subunit Cmr5 +MEVHMLSKDNKKSIRKTLEQRRGEYAYYVIKEVADLNDKQLEEKYASLVKKAPVMILSNGLLQTLAFLLAKAETSPEKANQILSRVNEYPPRFIEKLGNDKDEHLLLYLHIVYWLRENVDRNIDVKTLLSQDYSKVLWATKEAIALLNWMRRFAVAMLKEEGKENEGSS +>3sdj_B mol:protein length:448 Serine/threonine-protein kinase/endoribonuclease IRE1 +PEKKKRKRGSRGGKKGRKSRIANIPNFEQSLKNLVVSEKILGYGSSGTVVFQGSFQGRPVAVKRMLIDFCDIALMEIKLLTESDDHPNVIRYYCSETTDRFLYIALELCNLNLQDLVESKNVSDENLKLQKEYNPISLLRQIASGVAHLHSLKIIHRDLKPQNILVSTSSRFTADQQTGAENLRILISDFGLCKKLDSGQSSFRTNLNNPSGTSGWRAPELLEESTKRRLTRSIDIFSMGCVFYYILSKGKHPFGDKYSRESNIIRGIFSLDEMKCLHDRSLIAEATDLISQMIDHDPLKRPTAMKVLRHPLFWPKSKKLEFLLKVSDRLEIENRDPPSALLMKFDAGSDFVIPSGDWTVKFDKTFMDNLERYRKYHSSKLMDLLRALRNKYHNFMDLPEDIAELMGPVPDGFYDYFTKRFPNLLIGVYMIVKENLSDDQILREFLYS +>3oeb_A mol:protein length:144 S-layer associated multidomain endoglucanase +MVNMVSNPGFEDGLDSWQDWQQDMSAVPEAAHNGALGLKIGGGKAAGGGQDIPLKPNTTYILGAWAKFDSKPAGTFDVVVQYHLKDANNTYVQHILNFNETDWTYKQLLFTTPDVFGSTPELALWKGDTSKANLYVDDVYLVEV +>6y5l_E mol:protein length:70 X-31 Influenza Haemagglutinin HA1,X-31 Influenza Haemagglutinin HA1 +AVPNGTLVKTITDDQIEVTNATELVCITPNGSIPNDKPFQNVNKITYGACPKYVKQNTLKLATGMRNVPE +>5den_A mol:protein length:453 Phenylalanine-4-hydroxylase +MAAVVLENGVLSRKLSDFGQETSYIEDNSNQNGAISLIFSLKEEVGALAKVLRLFEENDINLTHIESRPSRLNKDEYEFFTYLDKRSKPVLGSIIKSLRNDIGATVHELSRDKEKNTVPWFPRTIQELDRFANQILSYGAELDADHPGFKDPVYRARRKQFADIAYNYRHGQPIPRVEYTEEEKQTWGTVFRTLKALYKTHACYEHNHIFPLLEKYCGFREDNIPQLEDVSQFLQTCTGFRLRPVAGLLSSRDFLGGLAFRVFHCTQYIRHGSKPMYTPEPDICHELLGHVPLFSDRSFAQFSQEIGLASLGAPDEYIEKLATIYWFTVEFGLCKEGDSIKAYGAGLLSSFGELQYCLSDKPKLLPLELEKTACQEYSVTEFQPLYYVAESFSDAKEKVRTFAATIPRPFSVRYDPYTQRVEVLDNTQQLKILADSINSEVGILCNALQKIKS +>7jsd_A mol:protein length:263 Lysine hydroxylase +GPHMDVHEIDETLEKFLAENYTPERVQQLADRFQRTGFVKFDSHMRIVPEELITAVRAEADRLVREHKERRDLVLGTTGGTPRNLSVVKSQDVEQSDLIRAVTRSEVLLTFLAGITRERIIPEVSDDERYLITHQEFASDTHGWHWDDYSFAFNWALRMPPIASGGMVQAVPHTHWDKNAPRINETLCERQIDTYGLVSGDLYLLRSDTTMHRTVPLTEDGAVRTMLVVSWSAERDLGKVLTGNDRWWENPEAGAAQPVHRAG +>3hzo_B mol:protein length:293 protein Rv0554, putative Bromoperoxidase +MSYYHHHHHHDYDIPTTENLYFQGAMDPEFRVINLAYDDNGTGDPVVFIAGRGGAGRTWHPHQVPAFLAAGYRCITFDNRGIGATENAEGFTTQTMVADTAALIETLDIAPARVVGVSMGAFIAQELMVVAPELVSSAVLMATRGRLDRARQFFNKAEAELYDSGVQLPPTYDARARLLENFSRKTLNDDVAVGDWIAMFSMWPIKSTPGLRCQLDCAPQTNRLPAYRNIAAPVLVIGFADDVVTPPYLGREVADALPNGRYLQIPDAGHLGFFERPEAVNTAMLKFFASVKA +>4whv_G mol:protein length:83 Polyubiquitin-B +GPGYQDPMQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG +>4ng3_D mol:protein length:335 5-carboxyvanillate decarboxylase +SLRLIATEEAVTFQPVVDALRAHSRTDDASLDMILVRDVYGDEPARPAMIGRLSDVTGERLAEMDSNGVDMHLLSLTAPGVQMFDAETGTRLARIANDLMAQTVAANPTRFAGLGTFAPQDPASAAREIERVATQLRLNGLVINSHTNDLYYDDPFFHPVFEAIEASGLALYIHPRAPSKQIDRAFRDYGMNSAIWGYGIETSTNAVRMILSGLFDRFPRLKIVLGHMGEAIPFWLWRLDYMHGNATTFGGAPKLKLKPSEYFRRNFAITTSGVESHAALRYSIEVLGPENVMWAIDYPYQPMAPAVQFIRTAPIPEDVKAMVAGGNAARIFRIT +>7og4_0 mol:protein length:188 39S ribosomal protein L32, mitochondrial +MALAMLVLVVSPWSAARGVLRNYWERLLRKLPQSRPGFPSPPWGPALAVQGPAMFTEPANDTSGSKENSSLLDSIFWMAAPKNRRTIEVNRCRRRNPQKLIKVKNNIDVCPECGHLKQKHVLCAYCYEKVCKETAEIRRQIGKQEGGPFKAPTIETVVLYTGETPSEQDQGKRIIERDRKRPSWFTQN +>7kbl_B mol:protein length:481 2-oxoglutarate carboxylase small subunit +MKHHHHHHAMFKKVLVANRGEIACRVIRACKELGIQTVAIYNEIESTARHVKMADEAYMIGVNPLDTYLNAERIVDLALEVGAEAIHPGYGFLAENEHFARLCEEKGITFIGPHWKVIELMGDKARSKEVMKRAGVPTVPGSDGILKDVEEAKRIAKEIGYPVLLKASAGGGGRGIRICRNEEELVRNYENAYNEAVKAFGRGDLLLEKYIENPKHIEFQVLGDKYGNVIHLGERDCSIQRRNQKLVEIAPSLLLTPEQREYYGSLVVKAAKEIGYYSAGTMEFIADEKGNLYFIEMNTRIQVEHPVTEMITGVDIVKWQIRIAAGERLRYSQEDIRFNGYSIECRINAEDPKKGFAPSIGTIERYYVPGGFGIRVEHASSKGYEITPYYDSLIAKLIVWAPLWEVAVDRMRSALETYEISGVKTTIPLLINIMKDKDFRDGKFTTRYLEEHPHVFDYAEHRDKEDFVAFISAVIASYHGL +>3itu_D mol:protein length:345 cGMP-dependent 3',5'-cyclic phosphodiesterase +GSAMDDEYTKLLHDGIQPVAAIDSNFASFTYTPRSLPEDDTSMAILSMLQDMNFINNYKIDCPTLARFCLMVKKGYRDPPYHNWMHAFSVSHFCYLLYKNLELTNYLEDIEIFALFISCMCHDLDHRGTNNSFQVASKSVLAALYSSEGSVMERHHFAQAIAILNTHGCNIFDHFSRKDYQRMLDLMRDIILATDLAHHLRIFKDLQKMAEVGYDRNNKQHHRLLLCLLMTSCDLSDQTKGWKTTRKIAELIYKEFFSQGDLEKAMGNRPMEMMDREKAYIPELQISFMEHIAMPIYKLLQDLFPKAAELYERVASNREHWTKVSHKFTIRGLPSNNSLDFLDEE +>7mt7_n mol:protein length:61 30S ribosomal protein S14 type Z +MAKKALVNKAAGKPRFAVRAYTRCSKCGRPRAVYRKFGLCRICLREMAHAGELPGVQKSSW +>5xnl_2 mol:protein length:232 Chlorophyll a-b binding protein 8, chloroplastic +RKSATTKKVASSGSPWYGPDRVKYLGPFSGESPSYLTGEFPGDYGWDTAGLSADPETFSKNRELEVIHSRWAMLGALGCVFPELLSRNGVKFGEAVWFKAGSQIFSEGGLDYLGNPSLVHAQSILAIWATQVILMGAVEGYRIAGGPLGEVVDPLYPGGSFDPLGLADDPEAFAELKVKELKNGRLAMFSMFGFFVQAIVTGKGPLENLADHLSDPVNNNAWSYATNFVPGK +>6cjn_B mol:protein length:225 Chalcone--flavonone isomerase 1 +GSHMAASITAITVENLEYPAVVTSPVTGKSYFLGGAGERGLTIEGNFIKFTAIGVYLEDIAVASLAAKWKGKSSEELLETLDFYRDIISGPFEKLIRTSKIRELSGPEYSRKVMENCVAHLKSVGTYGDAEAEAMQKFAEAFKPVNFPPGASVFYRQSPDGILGLSFSPDTSIPEKEAALIENKAVSSAVLETMIGEHAVSPDLKRCLAARLPALLNEGAFKIGN +>2d10_F mol:protein length:28 Ezrin-radixin-moesin binding phosphoprotein 50 +KERAHQKRSSKRAPQMDWSKKNELFSNL +>1xbp_D mol:protein length:180 50S ribosomal protein L5 +MQQLKTKYNDQVRPALMQQFGYSSVMAVPRIEKIVVNEGLGSSKEDSKAIDKAAKELALITLQKPIITKAKKSISNFKLRQGMPVGIKVTLRGERMYVFLEKLINIGLPRIRDFRGINPNAFDGRGNYNLGIKEQLIFPEITYDMVDKTRGMDITIVTTAKTDEEARALLQSMGLPFRKQ +>4y8m_R mol:protein length:260 Proteasome subunit alpha type-5 +MFLTRSEYDRGVSTFSPEGRLFQVEYSLEAIKLGSTAIGIATKEGVVLGVEKRATSPLLESDSIEKIVEIDRHIGCAMSGLTADARSMIEHARTAAVTHNLYYDEDINVESLTQSVCDLALRFGEGASGEERLMSRPFGVALLIAGHDADDGYQLFHAEPSGTFYRYNAKAIGSGSEGAQAELLNEWHSSLTLKEAELLVLKILKQVMEEKLDENNAQLSCITKQDGFKIYDNEKTAELIKELKEKEAAESPEEADVEMS +>6jvb_B mol:protein length:540 Dihydropyrimidinase-related protein 2 +MHHHHHHHMSYQGKKNIPRITSDRLLIKGGKIVNDDQSFYADIYMEDGLIKQIGENLIVPGGVKTIEAHSRMVIPGGIDVHTRFQMPDQGMTSADDFFQGTKAALAGGTTMIIDHVVPEPGTSLLAAFDQWREWADSKSCCDYSLHVDISEWHKGIQEEMEALVKDHGVNSFLVYMAFKDRFQLTDCQIYEVLSVIRDIGAIAQVHAENGDIIAEEQQRILDLGITGPEGHVLSRPEEVEAEAVNRAITIANQTNCPLYITKVMSKSSAEVIAQARKKGTVVYGEPITASLGTDGSHYWSKNWAKAAAFVTSPPLSPDPTTPDFLNSLLSCGDLQVTGSAHCTFNTAQKAVGKDNFTLIPEGTNGTEERMSVIWDKAVVTGKMDENQFVAVTSTNAAKVFNLYPRKGRIAVGSDADLVIWDPDSVKTISAKTHNSSLEYNIFEGMECRGSPLVVISQGKIVLEDGTLHVTEGSGRYIPRKPFPDFVYKRIKARSRLAELRGVPRGLYDGPVCEVSVTPKTVTPASSAKTSPAKQQAPPVR +>2pmp_A mol:protein length:160 2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase +TLPFRIGHGFDLHRLEPGYPLIIGGIVIPHDRGCEAHSDGDVLLHCVVDAILGALGLPDIGQIFPDSDPKWKGAASSVFIKEAVRLMDEAGYEIGNLDATLILQRPKISPHKETIRSNLSKLLGADPSVVNLKAKTHEKVDSLGENRSIAAHTVILLMKK +>4lbp_A mol:protein length:100 5-chloro-2-hydroxyhydroquinone dehydrochlorinase (TftG) +MLFLIYRKDRPGSLQVRIDNYAAHLAYLEPLKAKIQVGGPTLGAGTGTDDKDMTGSFLIMEAESWDEVHSFVENDPFTKAGLFAATIVERWKHGKHNDSK +>6jmq_D mol:protein length:219 Antibody +DIVMSQSPSSLVVSVGEKVTMSCXXXXXXXXXXXXXXXXXWYQQKPGQSPKLLIYXXXXXXXGVPDRFTGSGSGTDFTLTISSVKAEDLAVYYCXXXXXXXXXFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNE +>5j46_A mol:protein length:189 Peptide deformylase +MAHHHHHHMANAAHRFTEYRKTMALLNILHYPDKRLHKVAKPVDKVDDRIRKLVADMAETMYAAPGIGLAATQVDVHERVIVIDVSEDKNELRAFINPEIIWSSDGKQVYEEGCLSVPGIYDEVERPDRVRVRALNEQGETFELDCEGLLAVCIQHEMDHLMGRVFVEYLSPLKQSRIKTKMKKLERAM +>5pf4_A mol:protein length:138 Bromodomain adjacent to zinc finger domain protein 2B +MHHHHHHSSGVDLGTENLYFQSMSVKKPKRDDSKDLALCSMILTEMETHEDAWPFLLPVNLKLVPGYKKVIKKPMDFSTIREKLSSGQYPNLETFALDVRLVFDNCETFNEDDSDIGRAGHNMRKYFEKKWTDTFKVS +>6zcd_V mol:protein length:95 Vascular endothelial growth factor A +EVVKFMDVYQRSYCHPIETLVDIFQEYPDEIEYIFKPSCVPLMRCGGCCNDEGLECVPTEESNITMQIMRIKPHQGQHIGEMSFLQHNKCECRPK +>4zzc_B mol:protein length:317 Proton-gated ion channel +GQDMVSPPPPIADEPLTVNTGIYLIECYSLDDKAETFKVNAFLSLSWKDRRLAFDPVRSGVRVKTYEPEAIWIPEIRFVNVENARDADVVDISVSPDGTVQYLERFSARVLSPLDFRRYPFDSQTLHIYLIVRSVDTRNIVLAVDLEKVGKNDDVFLTGWDIESFTAVVKPANFALEDRLESKLDYQLRISRQYFSYIPNIILPMLFILFISWTAFWSTSYEANVTLVVSTLIAHIAFNILVETNLPKTPYMTYTGAIIFMIYLFYFVAVIEVTVQHYLKVESQPARAASITRASRIAFPVVFLLANIILAFLFFGF +>5t0x_C mol:protein length:19 Estrogen receptor peptide +RAANLWPSPLMIKRSKKNS +>6msb_d mol:protein length:349 26S proteasome non-ATPase regulatory subunit 8 +FIKGRAPRAPPRERRRATRGGLRQVVAPPRALGSTSRPHFRRASVCRRRCRKSGGLLAASRKMAAAAVNGAAGFSSSGPAATSGAVLQAATGMYEQLKGEWNRKSPNLSKCGEELGRLKLVLLELNFLPTTGTKLTKQQLILARDILEIGAQWSILRKDIPSFERYMAQLKCYYFDYKEQLPESAYMHQLLGLNLLFLLSQNRVAEFHTELERLPAKDIQTNVYIKHPVSLEQYLMEGSYNKVFLAKGNIPAESYTFFIDILLDTIRDEIAGCIEKAYEKILFTEATRILFFNTPKKMTDYAKKRGWVLGPNNYYSFASQQQKPEDTTIPSTELAKQVIEYARQLEMIV +>7o7y_Aq mol:protein length:135 40S ribosomal protein eS17 +MGRVRTKTVKKAARVIIEKYYTRLGNDFHTNKRVCEEIAIIPSKKLRNKIAGYVTHLMKRIQRGPVRGISIKLQEEERERRDNYVPEVSALDQEIIEVDPDTKEMLKLLDFGSLSNLQVTQPTVGMNFKTPRGAV +>1trs_A mol:protein length:105 THIOREDOXIN +MVKQIESKTAFQEALDAAGDKLVVVDFSATWCGPCKMIKPFFHSLSEKYSNVIFLEVDVDDAQDVASEAEVKATPTFQFFKKGQKVGEFSGANKEKLEATINELV +>6zv6_I mol:protein length:208 40S ribosomal protein S8 +MGISRDNWHKRRKTGGKRKPYHKKRKYELGRPAANTKIGPRRIHTVRVRGGNKKYRALRLDVGNFSWGSECCTRKTRIIDVVYNASNNELVRTKTLVKNCIVLIDSTPYRQWYESHYALPLGRKKGAKLTPEEEEILNKKRSKKIQKKYDERKKNAKISSLLEEQFQQGKLLACIASRPGQCGRADGYVLEGKELEFYLRKIKARKGK +>3nff_D mol:protein length:121 RNA polymerase I subunit A34.5 +MGYQPPSDYKQCKHLKSFPVSELKGDNKELWLMKVPANIDISQLKSLPLDTDATVSTVELGSKNFNVLQNTSTQEGSDNTNLSLLIPSEKKKETLKVATSKDNKSVYFDRVFTISETARIP +>7lus_B mol:protein length:207 Immunoglobulin heavy constant gamma 2 +GPSVFLFPPKPKDTLMISRTPEVTCVVVDVSHEDPEVQFNWYVDGVEVHNAKTKPREEQFNSTFRVVSVLTVVHQDWLNGKEYKCKVSNKGLPAPIEKTISKTKGQPREPQVYTLPPSREEMTKNQVSLTCLVKGFYPSDIAVEWESNGQPENNYDTTPPMLDSDGSFFLYSDLTVDKSRWQQGNVFSCSVMHEALHNHYTQKSLSL +>5t15_E mol:protein length:4676 Ryanodine receptor 1,Ryanodine receptor 1,Ryanodine receptor 1,Ryanodine receptor 1,Ryanodine receptor 1,Ryanodine receptor 1,Ryanodine receptor 1 +QFLRTDDEVVLQCSATVLKEQLKLCLAAEGFGNRLCFLEPTSNAQNVPPDLAICCFTLEQSLSVRALQEMLANTVEAGVESSQGGGHRTLLYGHAILLRHAHSRMYLSCLTTSRSMTDKLAFDVGLQEDATGEACWWTMHPASKQRSEGEKVRVGDDLILVSVSSERYLHLSTASGELQVDASFMQTLWNMNPICSCCEEGYVTGGHVLRLFHGHMDECLTISAADSDDQRRLVYYEGGAVCTHARSLWRLEPLRISWSGSHLRWGQPLRIRHVTTGRYLALTEDQGLVVVDACKAHTKATSFCFRVSKEKLDTAPKRDVEGMGPPEIKYGESLCFVQHVASGLWLTYAAPDPKALRLGVLKKKAILHQEGHMDDALFLTRCQQEESQAARMIHSTAGLYNQFIKGLDSFSGKPRGSGPPAGPALPIEAVILSLQDLIGYFEPPSEELQHEEKQSKLRSLRNRQSLFQEEGMLSLVLNCIDRLNVYTTAAHFAEYAGEEAAESWKEIVNLLYELLASLIRGNRANCALFSTNLDWVVSKLDRLEASSGILEVLYCVLIESPEVLNIIQENHIKSIISLLDKHGRNHKVLDVLCSLCVCNGVAVRSNQDLITENLLPGRELLLQTNLINYVTSIRPNIFVGRAEGSTQYGKWYFEVMVDEVVPFLTAQATHLRVGWALTEGYSPYPGGGEGWGGNGVGDDLYSYGFDGLHLWTGHVARPVTSPGQHLLAPEDVVSCCLDLSVPSISFRINGCPVQGVFEAFNLDGLFFPVVSFSAGVKVRFLLGGRHGEFKFLPPPGYAPCHEAVLPRERLRLEPIKEYRREGPRGPHLVGPSRCLSHTDFVPCPVDTVQIVLPPHLERIREKLAENIHELWALTRIEQGWTYGPVRDDNKRLHPCLVNFHSLPEPERNYNLQMSGETLKTLLALGCHVGMADEKAEDNLKKTKLPKTYMMSNGYKPAPLDLSHVRLTPAQTTLVDRLAENGHNVWARDRVAQGWSYSAVQDIPARRNPRLVPYRLLDEATKRSNRDSLCQAVRTLLGYGYNIEPPDQEPSQVENQSRWDRVRIFRAEKSYTVQSGRWYFEFEAVTTGEMRVGWARPELRPDVELGADELAYVFNGHRGQRWHLGSEPFGRPWQSGDVVGCMIDLTENTIIFTLNGEVLMSDSGSETAFREIEIGDGFLPVCSLGPGQVGHLNLGQDVSSLRFFAICGLQEGFEPFAINMQRPVTTWFSKSLPQFEPVPPEHPHYEVARMDGTVDTPPCLRLAHRXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXMPLSAAMFLSERKNPAPQCPPRLEVQMLMPVSWSRMPNHFLQVETRRAGERLGWAVQCQDPLTMMALHIPEENRCMDILELSERLDLQRFHSHTLRLYRAVCALGNNRVAHALCSHVDQAQLLHALEDAHLPGPLRAGYYDLLISIHLESACRSRRSMLSEYIVPLTPETRAITLFPPGRKGGNARRHGLPGVGVTTSLRPPHHFSPPCFVAALPAAGVAEAPARLSPAIPLEALRDKALRMLGEAVRDGGQHARDPVGGSVEFQFVPVLKLVSTLLVMGIFGDEDVKQILKMIEPEVFTEEEEEEEEEEEEEEEEEEDEEEKEEDEEEEEKEDAEKEEEEAPEGEKEDLEEGLLQMKLPESVKLQMCNLLEYFCDQELQHRVESLAAFAERYVDKLQANQRSRYALLMRAFTMSAAETARRTREFRSPPQEQINMLLHFKDEADEEDCPLPEDIRQDLQDFHQDLLAHCGIQLEGEEEEPEEETSLSSRLRSLLETVRLVKKKEEKPEEELPAEEKKPQSLQELVSHMVVRWAQEDYVQSPELVRAMFSLLHRQYDGLGELLRALPRAYTISPSSVEDTMSLLECLGQIRSLLIVQMGPQEENLMIQSIGNIMNNKVFYQHPNLMRALGMHETVMEVMVNVLGGGETKEIRFPKMVTSCCRFLCYFCRISRQNQRSMFDHLSYLLENSGIGLGMQGSTPLDVAAASVIDNNELALALQEQDLEKVVSYLAGCGLQSCPMLLAKGYPDIGWNPCGGERYLDFLRFAVFVNGESVEENANVVVRLLIRKPECFGPALRGEGGSGLLAAIEEAIRISEDPARDGPGVRRDRRREHFGEEPPEENRVHLGHAIMSFYAALIDLLGRCAPEMHLIQAGKGEALRIRAILRSLVPLDDLVGIISLPLQIPTLXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXNFDPRPVETLNVIIPEKLDSFINKFAEYTHEKWAFDKIQNNWSYGENVDEELKTHPMLRPYKTFSEKDKEIYRWPIKESLKAMIAWEWTIEKAREGEEERTEKKKTRKISQTAQTYDPREGYNPQPPDLSGVTLSRELQAMAEQLAENYHNTWGRKKKQELEAKGGGTHPLLVPYDTLTAKEKARDREKAQELLKFLQMNGYAVTRXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXTPLYNLPTHRACNMFLESYKAAWILTEDHSFEDRMIDDLSKAGEQEEEEEEVEEKKPDPLHQLVLHFSRTALTEKSKLDEDYLYMAYADIMAKSCHLEEGGENGEAEEEEVEVSFEEKEMEKQRLLYQQSRLHTRGAAEMVLQMISACKGETGAMVSSTLKLGISILNGGNAEVQQKMLDYLKDKKEVGFFQSIQALMQTCSVLDLNAFERQNKAEGLGMVNEDGTVINRQNGEKVMADDEFTQDLFRFLQLLCEGHNNDFQNYLRTQTGNTTTINIIICTVDYLLRLQESISDFYWYYSGKDVIEEQGKRNFSKAMSVAKQVFNSLTEYIQGPCTGNQQSLAHSRLWDAVVGFLHVFAHMMMKLAQDSSQIELLKELLDLQKDMVVMLLSLLEGNVVNGMIARQMVDMLVESSSNVEMILKFFDMFLKLKDIVGSEAFQDYVTDPRGLISKKDFQKAMDSQKQFTGPEIQFLLSCSEADENEMINFEEFANRFQEPARDIGFNVAVLLTNLSEHVPHDPRLRNFLELAESILEYFRPYLGRIEIMGASRRIERIYFEISETNRAQWEMPQVKESKRQFIFDVVNEGGEAEKMELFVSFCEDTIFEMQIAAQISEPEGEPEADEDEGMGEAAAEGAEEGAAGAEGAAGTVAAGATARLAAAAARALRGLSYRSLRRRVRRLRRLTAREAATALAALLWAVVARAGAAGAGAAAGALRLLWGSLFGGGLVEGAKKVTVTELLAGMPDPTSDEVHGEQPAGPGGDADGAGEGEGEGDAAEGDGDEEVAGHEAGPGGAEGVVAVADGGPFRPEGAGGLGDMGDTTPAEPPTPEGSPILKRKLGVDGEEEELVPEPEPEPEPEPEKADEENGEKEEVPEAPPEPPKKAPPSPPAKKEEAGGAGMEFWGELEVQRVKFLNYLSRNFYTLRFLALFLAFAINFILLFYKVSDSPPGEDDMEGSAAGDLAGAGSGGGSGWGSGAGEEAEGDEDENMVYYFLEESTGYMEPALWCLSLLHTLVAFLCIIGYNCLKVPLVIFKREKELARKLEFDGLYITEQPGDDDVKGQWDRLVLNTPSFPSNYWDKFVKRKVLDKHGDIFGRERIAELLGMDLASLEITAHNERKPDPPPGLLTWLMSIDVKYQIWKFGVIFTDNSFLYLGWYMVMSLLGHYNNFFFAAHLLDIAMGVKTLRTILSSVTHNGKQLVMTVGLLAVVVYLYTVVAFNFFRKFYNKSEDEDEPDMKCDDMMTCYLFHMYVGVRAGGGIGDEIEDPAGDEYELYRVVFDITFFFFVIVILLAIIQGLIIDAFGELRDQQEQVKEDMETKCFICGIGSDYFDTTPHGFETHTLEEHNLANYMFFLMYLINKDETEHTGQESYVWKMYQERCWDFFPAGDCFRKQYEDQLS +>2isc_A mol:protein length:239 purine nucleoside phosphorylase +ATPHNSAQVGDFAETVLMCGDPLRAKLIAETYLENPKLVNNVRGIQGYTGTYKGKPISVMGHGMGLPSICIYAEELYSTYKVKTIIRVGTCGAIDMDIHTRDIVIFTSAGTNSKINRIRFMDHDYPATASFDVVCALVDAAKELNIPAKVGKGFSTDLFYNPQTELAQLMNKFHFLAVEMESAGLFPIADLYGARAGCICTVSDHILHHEETTAEERQNSFQNMMKIALEAAIKLHHHH +>4kzx_b mol:protein length:84 40S ribosomal protein S27 +MPLAKDLLHPSPEEEKRKHKKKRLVQSPNSYFMDVKCPGCYKITTVFSHAQTVVLCVGCSTVLCQPTGGKARLTEGCSFRRKQH +>1y5k_A mol:protein length:141 Hemoglobin alpha chain +VLSPADKTNVKAAWGKVGAHAGEYGAEALERMFLSFPTTKTYFPHFDLSHGSAQVKGHGKKVADALTNAVAHVDDMPNALSALSDLHAHKLRVDPVNFKLLSHCLLVTLAAHLPAEFTPAVHASLDKFLASVSTVLTSKYR +>3ddo_D mol:protein length:253 Uridine phosphorylase +MSKSDVFHLGLTKNDLQGAQLAIVPGDPERVEKIAALMDKPVKLASHREFTSWRAELDGKAVIVCSTGIGGPSTSIAVEELAQLGIRTFLRIGTTGAIQPHINVGDVLVTTASVRLDGASLHFAPMEFPAVADFACTTALVEAAKSIGATTHVGVTASSDTFYPGQERYDTYSGRVVRRFKGSMEEWQAMGVMNYEMESATLLTMCASQGLRAGMVAGVIVNRTQQEIPNAETMKQTESHAVKIVVEAARRLL +>2klw_C mol:protein length:32 (POG)10 +XPPGPPGPPGPPGPPGPPGPPGPPGPPGPPGX +>6qml_B mol:protein length:76 Polyubiquitin-B +LQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG +>6s1v_A mol:protein length:114 Gag-Pro-Pol polyprotein +WVQPITCQKPSLTLWLDDKMFTGLINTGADVTIIKLEDWPPNWPITDTLTNLRGIGQSNNPKQSSKYLTWRDKENNSGLIKPFVIPNLPVNLWGRDLLSQMKIMMCSPNDIVTA +>6cbe_X mol:protein length:736 Capsid protein VP1 +MAADGYLPDWLEDTLSEGIRQWWKLKPGPPPPKPAERHKDDSRGLVLPGYKYLGPFNGLDKGEPVNEADAAALEHDKAYDRQLDSGDNPYLKYNHADAEFQERLKEDTSFGGNLGRAVFQAKKRVLEPLGLVEEPVKTAPGKKRPVEHSPVEPDSSSGTGKAGQQPARKRLNFGQTGDADSVPDPQPLGQPPAAPSGLGTNTMATGSGAPMADNNEGADGVGNSSGNWHCDSTWMGDRVITTSTRTWALPTYNNHLYKQISSASTGASNDNHYFGYSTPWGYFDFNRFHCHFSPRDWQRLINNNWGFRPKRLNFKLFNIQVKEVTQNDGTTTIANNLTSTVQVFTDSEYQLPYVLGSAHQGCLPPFPADVFMVPQYGYLTLNNGSQAVGRSSFYCLEYFPSQMLRTGNNFTFSYTFEDVPFHSSYAHSQSLDRLMNPLIDQYLYYLSRTNTPSGTTTQSRLQFSQAGASDIRDQSRNWLPGPCYRQQRVSKTSADNNNSEYSWTGATKYHLNGRDSLVNPGPAMASHKDDEEKFFPQSGVLIFGKQGSEKTNVDIEKVMITDEEEIRTTNPVATEQYGSVSTNLQRGNRQAATADVNTQGVLPGMVWQDRDVYLQGPIWAKIPHTDGHFHPSPLMGGFGLKHPPPQILIKNTPVPANPSTTFSAAKFASFITQYSTGQVSVEIEWELQKENSKRWNPEIQYTSNYAKSANVDFTVDNNGVYSEPRPIGTRYLTRNL +>2ide_E mol:protein length:157 Molybdenum cofactor biosynthesis protein C +MDLTHFQDGRPRMVDVTEKPETFRTATAEAFVELTEEALSALEKGGVGKGDPLVVAQLAGILAAKKTADLIPLCHPLPLTGVEVRVELLKAEKRVRIEATVKTKAETGVEMEAMTACAVAALTVYDMLKAASKGLVISQVRLLHKAGGKSGEWRREQ +>7f27_D mol:protein length:408 3-oxoacyl-(Acyl-carrier-protein) synthase +MKRVVVTGMAGITSLGETADDIFARFEAGKSGIRYMPEWEQYVDLRTKLAGPVETFHIPKHFNRKVTRGMGRVALMSVVCAETALQNAGLLGHEILSSGEAGVAFGSSAGSVDAVGEFASMLLHQSMSKINATTYIRMMAHTSAVNMTVYFGLKGLTLPTSSACTSGSMAIGQAYEAIKYGKQQVMIAGGAEELSAAGAAVFDVLFATSGMNDQPEKTPRPFDAKRDGLVIGEGAGCLILEEYEHAKARGAHIYAEVIGYGSNTDGQHVTRPESEMMGRCMELALKDASVEAKDIAYVNAHGTSTDQGDVAESQATAKVLGYKPISSLKSYFGHTLGACGAIEAWLSIEMMNRGRFIPTLNLDEIDSLCGELDYIVQQPRNLDADIIMSNNFAFGGINTSLIFKRVKQ +>3fi2_A mol:protein length:353 Mitogen-activated protein kinase 10 +MSKSKVDNQFYSVEVGDSTFTVLKRYQNLKPIGSGAQGIVCAAYDAVLDRNVAIKKLSRPFQNQTHAKRAYRELVLMKCVNHKNIISLLNVFTPQKTLEEFQDVYLVMELMDANLCQVIQMELDHERMSYLLYQMLCGIKHLHSAGIIHRDLKPSNIVVKSDCTLKILDFGLARTAGTSFMMTPYVVTRYYRAPEVILGMGYKENVDIWSVGCIMGEMVRHKILFPGRDYIDQWNKVIEQLGTPCPEFMKKLQPTVRNYVENRPKYAGLTFPKLFPDSLFPADSEHNKLKASQARDLLSKMLVIDPAKRISVDDALQHPYINVWYXXXXXXDEREHTIEEWKELIYKEVMNSE +>4p18_G mol:protein length:176 Ferritin, middle subunit +MVSQVRQNYHSDCEAAVNRMLNLELYASYTYSSMYAFFDRDDVALHNVAEFFKEHSHEEREHAEKFMKYQNKRGGRVVLQKIKKPERDEWGNTLEAMQAALQLEKTVNQALLDLHKLATDKVDPHLCDFLESEYLEEQVKDIKRIGDFITNLKRLGLPENGMGEYLFDKHSVKESS +>4lb1_D mol:protein length:30 Neutrophil defensin 1 +ACYCRIPACIAGERRAGTCIYQGRLWAACC +>6unz_H mol:protein length:604 fumarate hydratase 2 +MGSSHHHHHHSSGLVPRGSHMASMTGGQQMGRGSEFMSLCDQCEIGCRRVGIKDIEDASAVNADFHFSAIFQPTDPHHHQTEFAKVEGSEKYVEEVEVFGRQALKVNPEALTILAHRAFSDVHHFFRKDHLEGWRRAIEDPEASDNDRYVATTLLKNACIAAGRVLPSCQDTGTAIVLGKRGELCWTGGEDEKYLSKGIWNAYRYHNLRYSQTAALDMFKECNTGDNLPAQLDLLAVPGSDYEFLFIAKGGGSANKAYLYQETKALLNPKSLRAFIEEKLKTLGTAACPPYHIALVIGGTSAEMTMKTVKLASCRYYDSLPTTGDKYGRAFRDPEWEKIVMEVAQKSGIGAQFGGKYFAHQARVIRLPRHGASCPVGLAVSCSADRQILAHINKSGIYIEQLEQNPAQYLPDIPEVHLSTTSVKVDLKRPIDKVRQQLSQYPVGTRVMLNGTLIVARDIAHAKIKEMMDNGEPLPEYMKTSPIYYAGPAKTPEGYASGSFGPTTAGRMDSYVDLFQSHGGSYITLAKGNRSKQVTDACKKHGGFYLGSIGGPAAILAKDSIKQVTCLAFPELGMEAVWKIEVEDFPAFIVVDDKGNDMYSKTLA +>7emd_A mol:protein length:275 Leucocyte antigen +GPHSLSYFYTAVSRPDRGDSRFIAVGYVDDTQFVRFDSDAPNPRMEPRAPWIQQEGQDYWDRETRKQRDTSQTYRVGLKNLRGYYNQSEAGSHTYQSMYGCYLGPDGLLLRGYRQYAYDGADYIALNEDLRSWTAADTAAQITKRKWETANVAERRRSYLQGLCVESLREYLEMGKDTLQRAEPPKTHVTRHPSSDLGVTLRCWALGFYPKEISLTWQREGQDQSQDMELVETRPSGDGTFQKWAALVVPPGEEQSYTCHVQHEGLQEPLTLRWD +>7sym_K mol:protein length:194 uS4 +MPVARSWVCRKTYVTPRRPFEKSRLDQELKLIGEYGLRNKREVWRVKFTLAKIRKAARELLTLDEKDPRRLFEGNALLRRLVRIGVLDEGKMKLDYILGLKIEDFLERRLQTQVFKLGLAKSIHHARVLIRQRHIRVRKQVVNIPSFIVRLDSQKHIDFSLRSPYGGGRPGRVKRKNAKKGQGGAGAGDDEEED +>2n8n_A mol:protein length:72 Translation initiation factor IF-1 +MAKQDVIELEGTVLDTLPNAMFKVELENGHEILAHVSGKIRMNYIRILPGDKVTVEMSPYDLTRGRITYRYK +>6v8z_O mol:protein length:231 VRC03 Fab Heavy Chain +QVQLVQSGAVIKTPGSSVKISCRASGYNFRDYSIHWVRLIPDKGFEWIGWIKPLWGAVSYARQLQGRVSMTRQLSQDPDDPDWGVAYMEFSGLTPADTAEYFCVRRGSCDYCGDFPWQYWCQGTVVVVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPK +>5nqv_H mol:protein length:11 EAR motif of IAA27 +TELRLGLPGSE +>2fzd_A mol:protein length:316 aldose reductase +MASRILLNNGAKMPILGLGTWKSPPGQVTEAVKVAIDVGYRHIDCAHVYQNENEVGVAIQEKLREQVVKREELFIVSKLWCTYHEKGLVKGACQKTLSDLKLDYLDLYLIHWPTGFKPGKEFFPLDESGNVVPSDTNILDTWAAMEELVDEGLVKAIGISNFNHLQVEMILNKPGLKYKPAVNQIECHPYLTQEKLIQYCQSKGIVVTAYSPLGSPDRPWAKPEDPSLLEDPRIKAIAAKHNKTTAQVLIRFPMQRNLVVIPKSVTPERIAENFKVFDFELSSQDMTTLLSYNRNWRVCALLSCTSHKDYPFHEEF +>4x0g_D mol:protein length:109 Blastoderm-specific gene 25A +PMVTIGPNGTEVSRISLSAINWAMTGPSITRKLLCEIFDRDTLAHHTLSGKPSPAFRDCARPSKQQLDPLKVADLVYLMTNSCDMTPREVRTAITTKCADENKMLRSRM +>6cxa_C mol:protein length:209 Chimeric T cell antigen receptor alpha chain Va14,Va24,Ja18 +MKTQVEQSPQSLVVRQGENCVLQCNYSVTPDNHLRWFKQDTGKGLVSLTVLVDQKDKTSNGRYSATLDKDAKHSTLHITATLLDDTATYICVVGDRGSALGRLHFGAGTQLIVIPDIQNPDPAVYQLRDSKSSDKSVCLFTDFDSQTNVSQSKDSDVYITDKCVLDMRSMDFKSNSAVAWSNKSDFACANAFNNSIIPEDTFFPSPESS +>5y6p_z6 mol:protein length:177 R-phycoerythrin beta chain +MLDAFSRVVVNSDSKAAYVGGSDLQSLKTFISDGNKRLDAVNCIVSNASCIVSDAISGMICENPGLIAPGGNCYTNRRMAACLRDGEIILRYVSYALLAGDSSVLDDRCLNGLKETYIALGVPTASTSRAVSIMKAASTAFIMNTASGRKIEIAAGDCQALQSEAAAYFDKVGSAVD +>4r8o_B mol:protein length:104 Uncharacterized protein +GGNPGDNLIYNAEEVNGVVVSETIFKMEGTMLTNYMKHNYKYDANNQRTEDEAQKWNSNKNRWENNLCIRYTYGNKSMTTEYYKWNSKKKEYILVPEMTVTMDK +>2big_B mol:protein length:361 PHOSPHOSERINE AMINOTRANSFERASE +MVKQVFNFNAGPSALPKPALERAQKELLNFNDTQMSVMELSHRSQSYEEVHEQAQNLLRELLQIPNDYQILFLQGGASLQFTMLPMNLLTKGTIGNYVLTGSWSEKALKEAKLLGETHIAASTKANSYQSIPDFSEFQLNENDAYLHITSNNTIYGTQYQNFPEINHAPLIADMSSDILSRPLKVNQFGMIYAGAQKNLGPSGVTVVIVKKDLLNTKVEQVPTMLQYATHIKSDSLYNTPPTFSIYMLRNVLDWIKDLGGAEAIAKQNEEKAKIIYDTIDESNGFYVGHAEKGSRSLMNVTFNLRNEELNQQFLAKAKEQGFVGLNGHRSVGGCRASIYNAVPIDACIALRELMIQFKENA +>1dmx_A mol:protein length:248 MURINE CARBONIC ANHYDRASE V +CATGTRQSPINIQWKDSVYDPQLAPLRVSYDAASCRYLWNTGYFFQVEFDDSCEDSGISGGPLGNHYRLKQFHFHWGATDEWGSEHAVDGHTYPAELHLVHWNSTKYENYKKASVGENGLAVIGVFLKLGAHHQALQKLVDVLPEVRHKDTQVAMGPFDPSCLMPACRDYWTYPGSLTTPPLAESVTWIVQKTPVEVSPSQLSMFRTLLFSGRGEEEDVMVNNYRPLQPLRDRKLRSSFRLDRTKMRS +>6u42_Z7 mol:protein length:451 Tubulin alpha +MREVISIHIGQAGIQVGNACWELYCLEHGIQPDGQMPSDKTIGGGDDAFNTFFSETGAGKHVPRCIFLDLEPTVVDEVRTGTYRQLFHPEQLISGKEDAANNFARGHYTIGKEIVDLALDRIRKLADNCTGLQGFLVFNAVGGGTGSGLGSLLLERLSVDYGKKSKLGFTVYPSPQVSTAVVEPYNSVLSTHSLLEHTDVAVMLDNEAIYDICRRSLDIERPTYTNLNRLIAQVISSLTASLRFDGALNVDITEFQTNLVPYPRIHFMLSSYAPIISAEKAYHEQLSVAEITNAAFEPASMMVKCDPRHGKYMACCLMYRGDVVPKDVNASVATIKTKRTIQFVDWCPTGFKCGINYQPPTVVPGGDLAKVQRAVCMISNSTAIGEIFSRLDHKFDLMYAKRAFVHWYVGEGMEEGEFSEAREDLAALEKDFEEVGAESAEGAGEGEGEEY +>3oda_H mol:protein length:116 Poly [ADP-ribose] polymerase 1 +MGSSHHHHHHSSGLVPRGSHMAESSDKLYRVEYAKSGRASCKKCSESIPKDSLRMAIMVQSPMFDGKVPHWYHFSCFWKVGHSIRHPDVEVDGFSELRWDDQQKVKKTAEAGGVTG +>3kaq_A mol:protein length:147 Flavodoxin +SKVLILFGSSTGNTESIAQKLEELVAAGGHEVTLLNAAEASADNLADGYDAVLMGCSAWGMEDLELQDDFAPLFDEMENMGLKGKKLAAFASGDMEYEHYCGAVPAIEEKARGLGAEVICEGLKIEGDASSDPDAVSAFAEDVLKKL +>5xxb_c mol:protein length:120 Ribosomal protein eL31 +MKGTTRKAQNKSLQPVCRDYTIHLHKLIHGIQFKKRAPRALREIRRFAQKTMHTKDVRIDTKLNKFIWSGGIRNVPRRVRVRIARRRNDDEDSKEKFYTLVQHVPVASFENLKTEYVNEE +>2j57_B mol:protein length:105 AMICYANIN +DKATIPSESPFAAAEVADGAIVVDIAKMKYETPELHVKVGDTVTWINREAMPHNVHFVAGVLGEAALKGPMMKKEQAYSLTFTEAGTYDYHCTPHPFMRGKVVVE +>6y2l_SV mol:protein length:83 40S ribosomal protein S21 +MQNDAGEFVDLYVPRKCSASNRIIGAKDHASIQMNVAEVDKVTGRFNGQFKTYAICGAIRRMGESDDSILRLAKADGIVSKNF +>7vxc_A mol:protein length:1261 Spike glycoprotein +MFVFLVLLPLVSSQCVNLTTRTQLPPAYTNSFTRGVYYPDKVFRSSVLHSTQDLFLPFFSNVTWFHAIHVSGTNGTKRFDNPVLPFNDGVYFASTEKSNIIRGWIFGTTLDSKTQSLLIVNNATNVVIKVCEFQFCNDPFLDVYYHKNNKSWMKSEFRVYSSANNCTFEYVSQPFLMDLEGKQGNFKNLREFVFKNIDGYFKIYSKHTPINLVRDLPQGFSALEPLVDLPIGINITRFQTLLALHRSYLTPGDSSSGWTAGAAAYYVGYLQPRTFLLKYNENGTITDAVDCALDPLSETKCTLKSFTVEKGIYQTSNFRVQPTESIVRFPNITNLCPFGEVFNATRFASVYAWNRKRISNCVADYSVLYNSASFSTFKCYGVSPTKLNDLCFTNVYADSFVIRGDEVRQIAPGQTGKIADYNYKLPDDFTGCVIAWNSNNLDSKVGGNYNYRYRLFRKSNLKPFERDISTEIYQAGSTPCNGVQGFNCYFPLQSYGFQPTNGVGYQPYRVVVLSFELLHAPATVCGPKKSTNLVKNKCVNFNFNGLTGTGVLTESNKKFLPFQQFGRDIADTTDAVRDPQTLEILDITPCSFGGVSVITPGTNTSNQVAVLYQGVNCTEVPVAIHADQLTPTWRVYSTGSNVFQTRAGCLIGAEHVNNSYECDIPIGAGICASYQTQTNSRGSASSVASQSIIAYTMSLGAENSVAYSNNSIAIPTNFTISVTTEILPVSMTKTSVDCTMYICGDSTECSNLLLQYGSFCTQLNRALTGIAVEQDKNTQEVFAQVKQIYKTPPIKDFGGFNFSQILPDPSKPSKRSFIEDLLFNKVTLADAGFIKQYGDCLGDIAARDLICAQKFNGLTVLPPLLTDEMIAQYTSALLAGTITSGWTFGAGAALQIPFAMQMAYRFNGIGVTQNVLYENQKLIANQFNSAIGKIQDSLSSTASALGKLQDVVNQNAQALNTLVKQLSSNFGAISSVLNDILSRLDPPEAEVQIDRLITGRLQSLQTYVTQQLIRAAEIRASANLAATKMSECVLGQSKRVDFCGKGYHLMSFPQSAPHGVVFLHVTYVPAQEKNFTTAPAICHDGKAHFPREGVFVSNGTHWFVTQRNFYEPQIITTDNTFVSGNCDVVIGIVNNTVYDPLQPELDSFKEELDKYFKNHTSPDVDLGDISGINASVVNIQKEIDRLNEVAKNLNESLIDLQELGKYEQGSGYIPEAPRDGQAYVRKDGEWVLLSTFLENLYFQGDYKDDDDKHHHHHHHHH +>6yam_f mol:protein length:71 ribosomal protein eS31 +KKSYTTPKKNKHKRKKVKLAVLKYYKVDENGKISRLRRECPSDECGAGVFMASHFDRHYCGKCCLTYCFNK +>2fvv_A mol:protein length:194 Diphosphoinositol polyphosphate phosphohydrolase 1 +MHHHHHHSSGVDLGTENLYFQSMMKLKSNQTRTYDGDGYKKRAACLCFRSESEEEVLLVSSSRHPDRWIVPGGGMEPEEEPSVAAVREVCEEAGVKGTLGRLVGIFENQERKHRTYVYVLIVTEVLEDWEDSVNIGRKREWFKIEDAIKVLQYHKPVQASYFETLRQGYSANNGTPVVATTYSVSAQSSMSGIR +>4fna_C mol:protein length:280 Ferric hydroxamate receptor 2 +GSNNKAETKSYKMDDGKTVDIPKDPKRIAVVAPTYAGGLKKLGANIVAVNQQVDQSKVLKDKFKGVTKIGDGDVEKVAKEKPDLIIVYSTDKDIKKYQKVAPTVVVDYNKHKYLEQQEMLGKIVGKEDKVKAWKKDWEETTAKDGKEIKKAIGQDATVSLFDEFDKKLYTYGDNWGRGGEVLYQAFGLKMQPEQQKLTAKAGWAEVKQEEIEKYAGDYIVSTSEGKPTPGYESTNMWKNLKATKEGHIVKVDAGTYWYNDPYTLDFMRKDLKEKLIKAAK +>3zw8_A mol:protein length:742 PEROXISOMAL BIFUNCTIONAL ENZYME +MGSSHHHHHHSSGLVPRGSHMAEYLRLPHSLAMIRLCNPPVNAVSPTVIREVRNGLQKAGSDHTVKAIVICGANGNFCAGADIHGFSAFTPGLALGSLVDEIQRYQKPVLAAIQGVALGGGLELALGCHYRIANAKARVGLPEVTLGILPGARGTQLLPRVVGVPVALDLITSGKYLSADEALRLGILDAVVKSDPVEEAIKFAQKIIDKPIEPRRIFNKPVPSLPNMDSVFAEAIAKVRKQYPGVLAPETCVRSIQASVKHPYEVGIKEEEKLFMYLRASGQAKALQYAFFAEKSANKWSTPSGASWKTASAQPVSSVGVLGLGTMGRGIAISFARVGISVVAVESDPKQLDAAKKIITFTLEKEASRAHQNGQASAKPKLRFSSSTKELSTVDLVVEAVFEDMNLKKKVFAELSALCKPGAFLCTNTSALNVDDIASSTDRPQLVIGTHFFSPAHVMRLLEVIPSRYSSPTTIATVMSLSKKIGKIGVVVGNCYGFVGNRMLAPYYNQGFFLLEEGSKPEDVDGVLEEFGFKMGPFRVSDLAGLDVGWKIRKGQGLTGPSLPPGTPVRKRGNSRYSPLGDMLCEAGRFGQKTGKGWYQYDKPLGRIHKPDPWLSTFLSQYREVHHIEQRTISKEEILERCLYSLINEAFRILEEGMAARPEHIDVIYLHGYGWPRHKGGPMFYAASVGLPTVLEKLQKYYRQNPDIPQLEPSDYLRRLVAQGSPPLKEWQSLAGPHGSKL +>7ad0_M mol:protein length:14 Modified p53 peptide +ATSFAEYWALLXPA +>2d0c_A mol:protein length:310 ribonuclease HIII +MSNYVIQADQQLLDALRAHYEGALSDRLPAGALFAVKRPDVVITAYRSGKVLFQGKAAEQEAAKWISGASASNETADHQPSALAAHQLGSLSAIGSDEVGTGDYFGPIVVAAAYVDRPHIAKIAALGVKDSKQLNDEAIKRIAPAIMETVPHAVTVLDNPQYNRWQRSGMPQTKMKALLHNRTLVKLVDAIAPAEPEAIIIDEFLKRDSYFRYLSDEDRIIRERVHCLPKAESVHVSVAAASIIARYVFLEEMEQLSRAVGLLLPKGAGAIVDEAAARIIRARGEEMLETCAKLHFANTKKALAIAKRRK +>6ba1_O mol:protein length:321 Inosine-uridine preferring nucleoside hydrolase +GSHMKKLILDLDTGVDDTLAISYALGSPEMELIGITGTYGNVLMEQGVRNALAITDLLGHPEVKVYKGLSHASTKDSFEVLPISAFIHGDNGIGDVEIPDSPRKAEDESAVDFIIDSVKKYGKDLVYVPTGPMTNIAAALKKAPEIKDEIGKIVLMGGALTIHGNVNAWTEANISQDPDAADILFRSGAPVTMIGLDVTLQTLLTYKETKQWRDLNTKAGKFLADMTDFYIKAYETTAPHLGGCGLHDPLAVAVAVDPTLVTTLPINMQVDVEGPTRGRTIGDVTRLNDPVKTMQVAVGVDVPRFLNEFMTRISGLAKIAG +>3fch_B mol:protein length:281 Carboxysome shell protein CsoS1D +MSYYHHHHHHDYDIPTTENLTFQGAMEPTSSLNRGDRKKGSSLVTGSEVQSQSNGASCFITTDSEKSLVSRQASQVEQIELRTYVFLDSLQPQLAAYMGTVSRGFLPIPGDSCLWMEVSPGMAVHRVTDIALKASNVRLGQMIVERAFGSLALYHKDQSTVLHSGDVVLDAIGSEVRKRTKPSTSWTEVICAITPDHAVLINRQNRSGSMIQSGMSMFILETEPAGYVLKAANEAEKSANITIIDVKAVGAFGRLTLAGKEGDVEEAAAAAIRAIDQISNY +>3r37_B mol:protein length:151 4-hydroxybenzoyl-CoA thioesterase +MHRTSNGSHATGGNLPDVASHYPVAYEQTLDGTVGFVIDEMTPERATASVEVTDTLRQRWGLVHGGAYCALAQMLATEATVAVVHEKGMMAVGQSNHTSFFRPVKEGHVRAEAVRIHAGSTTWFWDVSLRDDAGRLCAVSSMSIAVRPRRD +>7zpp_G mol:protein length:281 Integrase +WIENIPLAEEEHNKWHQDAVSLHLEFGIPRTAAEDIVQQCDVCQENKMPSTLRGSNKRGIDHWQVDYTHYEDKIILVWVETNSGLIYAERVKGETGQEFRVQTMKWYAMFAPKSLQSDNGPAFVAESTQLLMKYLGIEHTTGIPWNPQSQALVERTHQTLKNTLEKLIPMFNAFESALAGTLITLNIKRKGGLGTSPMDIFIFNKEQQRIQQQSKSKQEKIRFCYYRTRKRGHPGEWQGPTQVLWGGDGAIVVKDRGTDRYLVIANKDVKFIPPPKEIQKE +>3aty_B mol:protein length:379 Prostaglandin F2a synthase +MATFPELLRPLKLGRYTLRNRIIMAPLTRCQATEDDHVPRTESMLKYYEDRASAGLIIAEATMVQPNYTGFLTEPGIYSDAQIEEWRKIVDAVHKKGGLIFLQLIHAGRAGIPEKILQQSKSDQDPLAGRLLAASAIPIKDHRIPAYFAASGEKETYGVPEELTDDEVRDGIIPLFVEGAKNAIFKAGFDGVEIHGANGYLLDAFFRESSNKRQSGPYAGTTIDTRCQLIYDVTKSVCDAVGSDRVGLRISPLNGVHGMIDSNPEALTKHLCKKIEPLSLAYLHYLRGDMVNQQIGDVVAWVRGSYSGVKISNLRYDFEEADQQIREGKVDAVAFGAKFIANPDLVERAQQNWPLNEPRPETYYTRTAVGYNDYPTYNK +>3rkc_A mol:protein length:148 Capsid protein +SRPFSVLRANDVLWLSLTAAEYDQTTYGSSTNPMYVSDTVTFVNVATGAQGVSRSLDWSKVTLDGRPLTTIQQYSKTFFVLPLRGKLSFWEAGTTKAGYPYNYNTTASDQILIENAPGHRVCISTYTTNLGSGPVSISAVGVLAPHSA +>3gew_B mol:protein length:224 Chaperone protein faeE +SLAVDQTRYIFRGDKDALTITVTNNDKERTFGGQAWVDNIVEKDTRPTFVVTPSFFKVKPNGQQTLRIIMASDHLPKDKESVYWLNLQDIPPALEGSGIAVALRTKLKLFYRPKALLEGRKGAEEGISLQSRPDGRTMLVNTTPYIFAIGSLLDGNGKKIATDNGTTQKLLMFMPGDEVQVKGNVVKVDSLNDYGELQTWTINKKKPAAPEAAKAEKADTAEQK +>2zmv_A mol:protein length:227 Trafficking protein particle complex subunit 4 +MAIFSVYVVNKAGGLIYQLDSYAPRAEAEKTFSYPLDLLLKLHDERVLVAFGQRDGIRVGHAVLAINGMDVNGRYTADGKEVLEYLGNPANYPVSIRFGRPRLTSNEKLMLASMFHSLFAIGSQLSPEQGSSGIEMLETDTFKLHCYQTLTGIKFVVLADPRQAGIDSLLRKIYEIYSDFALKNPFYSLEMPIRCELFDQNLKLALEVAEKAGTFGPGSLEHHHHHH +>6y7f_A mol:protein length:288 Elongation of very long chain fatty acids protein 7 +MAFSDLTSRTVHLYDNWIKDADPRVEDWLLMSSPLPQTILLGFYVYFVTSLGPKLMENRKPFELKKAMITYNFFIVLFSVYMCYEFVMSGWGIGYSFRCDIVDYSRSPTALRMARTCWLYYFSKFIELLDTIFFVLRKKNSQVTFLHVFHHTIMPWTWWFGVKFAAGGLGTFHALLNTAVHVVMYSYYGLSALGPAYQKYLWWKKYLTSLQLVQFVIVAIHISQFFFMEDCKYQFPVFACIIMSYSFMFLLLFLHFWYRAYTKGQRLPKTVKNGTCKNKDNAENLYFQ +>3ejm_A mol:protein length:146 Nucleoside diphosphate kinase +YKKAGLQRTLVLIKPDAFERSLVAEIMGRIEKKNFKIVSMKFWSKAPRNLIEQHYKEHSEQSYFNDNCDFMVSGPIISIVYEGTDAISKIRRLQGNTNPLASAPGTIRGDLANDIRENLIHASDSEDSAVDEISIWFPETKMETDN +>4hem_E mol:protein length:123 Anti-baseplate TP901-1 Llama vHH 02 +QVQLVESGGGLVQAGGSLRLSCAASESTFSNYAMGWFRQAPGPEREFVATISQTGSHTYYRNSVKGRFTISRDNAKNTVYLQMNNMKPEDTAVYYCAAGDNYYYTRTYEYDYWGQGTQVTVSS +>3njk_A mol:protein length:128 Peptidase +SNAMFAPQGLAQFIKVNVTLENGEPVFIYTDANGQVCQGDITVTQAGTITYLLNDQTLKGLKFVGVGFVTPFDGIIDAVTISSDGMLVQLVDLDKTPGTTKFQFVLSNTANTLLVLSPAPQIINRPQN +>2xwq_B mol:protein length:133 SIROHYDROCHLORIN COBALTOCHELATASE +GMRRGLVIVGHGSQLNHYREVMELHRKRIEESGAFDEVKIAFAARKRRPMPDEAIREMNCDIIYVVPLFISYGLHVTEDLPDLLGFPRGRGIKEGEFEGKKVVICEPIGEDYFVTYAILNSVFRIGRDGKGEE +>7spi_F3 mol:protein length:453 TraB +MANVNKVVRRRQVALLIALVLGIGAGGAGTWMVSEMNLKKAPPAKAPKGEPAPDMTGVVNQSFDNKVQRSAIAEAQRLNKETQTEIKKLRTEMGLVSRDLKGSQDRIRELEDQNQLLQTQLEAGKNFDSLSAEPLPGALASQGKPAPAGNVPPPTSFWPAGGGQAPAAPVMTPIQRPGMMDSQEFSLPDTGPKKPRFPWISSGSFVEAIVVEGADANASVTGDKNTAPMQLRLTGKVQMPNDEEFDLTGCFVTLEAWGDVSSERAIVRSRSISCKLGDDDIDQKIAGHVSFMGKNGIKGEVVMRNGQILLYAGGAGFLDGIGKGIEKASSTTVGVGATASMSAADIGQAGLGGGVSSAAKTLSDYYIKRAEQYHPVIPIGAGNEVTLVFQDGFQLETLEEARAKAAARKKQNQPSASSTPAAMPGNTPDMLKQLQDFRVGDTVDPATGQVVTQ +>4clr_D mol:protein length:288 PTERIDINE REDUCTASE 1 +MGSSHHHHHHSSGLVPRGSHMEAPAAVVTGAAKRIGRAIAVKLHQTGYRVVIHYHNSAEAAVSLADELNKERSNTAVVCQADLTNSNVLPASCEEIINSCFRAFGRCDVLVNNASAFYPTPLVQGDHEDNSNGKTVETQVAELIGTNAIAPFLLTMSFAQRQKGTNPNCTSSNLSIVNLCDAMVDQPCMAFSLYNMGKHALVGLTQSAALELAPYGIRVNGVAPGVSLLPVAMGEEEKDKWRRKVPLGRREASAEQIADAVIFLVSGSAQYITGSIIKVDGGLSLVHA +>4u50_C0 mol:protein length:105 40S ribosomal protein S10-A +MLMPKEDRNKIHQYLFQEGVVVAKKDFNQAKHEEIDTKNLYVIKALQSLTSKGYVKTQFSWQYYYYTLTEEGVEYLREYLNLPEHIVPATYIQERNPTQRPQRRY +>7ezx_G8 mol:protein length:177 B-phycoerythrin beta chain +MLDAFSRVVVNSDAKAAYVGGSDLQALKSFIADGNKRLDAVNSIVSNASCMVSDAVSGMICENPGLISPGGNCYTNRRMAACLRDGEIILRYVSYALLAGDASVLEDRCLNGLKETYIALGVPTNSSIRAVSIMKAQAVAFITNTATERKMSFAAGDCTSLASEVASYFDRVGAAIS +>5da5_c mol:protein length:116 Rru_A0973 +MAQSSNSTHEPLEVLKEETVNRHRAIVSVMEELEAVDWYDQRVDASTDPELTAILAHNRDEEKEHAAMTLEWLRRNDAKWAEHLRTYLFTEGPITAANSSSVDKLAAALEHHHHHH +>2amf_A mol:protein length:259 1-Pyrroline-5-Carboxylate reductase +SNAMKIGIIGVGKMASAIIKGLKQTPHELIISGSSLERSKEIAEQLALPYAMSHQDLIDQVDLVILGIKPQLFETVLKPLHFKQPIISMAAGISLQRLATFVGQDLPLLRIMPNMNAQILQSSTALTGNALVSQELQARVRDLTDSFGSTFDISEKDFDTFTALAGSSPAYIYLFIEALAKAGVKNGIPKAKALEIVTQTVLASASNLKTSSQSPHDFIDAICSPGGTTIAGLMELERLGLTATVSSAIDKTIDKAKSL +>4v5r_AJ mol:protein length:105 30S RIBOSOMAL PROTEIN S10 +MPKIRIKLRGFDHKTLDASAQKIVEAARRSGAQVSGPIPLPTRVRRFTVIRGPFKHKDSREHFELRTHNRLVDIINPNRKTIEQLMTLDLPTGVEIEIKTVGGGR +>7n02_B mol:protein length:362 Aminopeptidase P family protein +MSKIERISAFLNDKEVDMTFITNPTTLNYLTGLAISPHERIAGLMIFRDSTPMLFTPALEVEKAKEHTSGLDIFGYEDSQNPWEVVKNHVKSDVKSIAVEFSDIPLAKTEGLKAQFGDINFVNLTPLIERMRLIKSADEIEKMKVAGDFADKCFEIGFATAAERNGVTESDIVAKIEYEMKRMGVPQMSFDTLVLSGARAANPHGAPENVEIQENKLLLFDLGVMSGGYASDATRTIAIGQPNDFDAEIHKIVKEAQQAAMDFIKPGVTAHEVDAVARDLITKAGYGEYFNHRLGHGIGMDVHEYPSIVAGNDLVIQEGMCFSNEPGIYIPGKVGVRIEDCLYVTENGCESFTHTDHDLLIF +>2ivq_J mol:protein length:156 CYANATE HYDRATASE +MIQSQINRNIRLDLADAILLSKAKKDLSFAEIADGTGLAEAFVTAALLGQQALPADAARLVGAKLDLDEDSILLLQMIPLRGCIDDRIPTDPTMYKFYEMLQVYGTTLKALVHEKFGDGIISAINFKLDVKKVADPEGGERAVITLDGKYLPTKPF +>2p1n_D mol:protein length:160 SKP1-like protein 1A +MSAKKIVLKSSDGESFEVEEAVALESQTIAHMVEDDCVDNGVPLPNVTSKILAKVIEYCKRHVEAAASKAEAVEGAATSDDDLKAWDADFMKIDQATLFELILAANYLNIKNLLDLTCQTVADMIKGKTPEEIRTTFNIKNDFTPEEEEEVRRENQWAFE +>6png_A mol:protein length:421 Nitric oxide synthase, brain +CPRFLKVKNWETEVVLTDTLHLKSTLETGCTEYICMGSIMHPSQHARRPEDVATKDQLFPLAKEFIDQYYSSIKRFGSKAHMERLEEVNKEIDTTSTYQLKDTELIYGAKHAWRNASRCVGRIQWSKLQVFDARDCTTAHGMFNYICNHVKYATNKGNLRSAITIFPQRTDGKHDFRVWNSQLIRYAGYKQPDGSTLGDPANVQFTEICIQQGWKPPRGRFDVLPLLLQANGNDPELFQIPPELVLEVPIRHPKFEWFKDLGLKWYGLPAVSNMLLEIGGLEFSACPFSGWYMGTEIGVRDYCDNSRYNILEEVAKKMNLDMRKTSSLWKDQALVEINIAVLYSFQSDKVTIVDHHSATESFIKHMENEYRCRGGCPADWVWIVPPMSGSITPVFHQEMLNYRLTPSFEYQPDPWNTHVWK +>4v55_DR mol:protein length:103 50S ribosomal protein L21 +MYAVFQSGGKQHRVSEGQTVRLEKLDIATGETVEFAEVLMIANGEEVKIGVPFVDGGVIKAEVVAHGRGEKVKIVKFRRRKHYRKQQGHRQWFTDVKITGISA +>5y6p_v1 mol:protein length:161 beta_APC +MQDAITAVINTADVQGKYLDDNSLDKLRGYFETGELRVRAAATIAANAATIIKESVAKALLYSDITRPGGNMYTTRRYAACIRDLDYYLRYATYGMLAGDPSILDERVLNGLKETYNSLGVPIGATVQAIQAMKEVTASLVGTNAGQEMAVYFDYICSGLS +>1lqo_A mol:protein length:135 PROBABLE Fosfomycin Resistance Protein +MLTGLNHLTLAVADLPASIAFYRDLLGFRLEARWDQGAYLELGSLWLCLSREPQYGGPAADYTHYAFGIAAADFARFAAQLRAHGVREWKQNRSEGDSFYFLDPDGHRLEAHVGDLRSRLAACRQAPYAGMRFAD +>1z5n_B mol:protein length:242 MTA/SAH nucleosidase +FQGAMDPEFSMKIGIIGAMEEQVTLLRDKIENRQTISLGGCEIYTGQLNGTEVALLKSGIGKVAAALGATLLLEHCKPDVIINTGSAGGLAPTLKVGDIVVSDEARYHDADVTAFGYEYGQLPGCPAGFKADDKLIAAAEACIAELNLNAVRGLIVSGDAFINGSVGLAKIRHNFPQAIAVEMEATAIAHVCHNFNVPFVVVRAISDVADQQSHLSFDEFLAVAAKQSSLMVESLVQKLAHG +>2xm1_A mol:protein length:716 O-GLCNACASE BT_4395 +QNVSLQPPPQQLIVQNKTIDLPAVYQLNGGEEANPHAVKVLKELLSGKQSSKKGMLISIGEKGDKSVRKYSRQIPDHKEGYYLSVNEKEIVLAGNDERGTYYALQTFAQLLKDGKLPEVEIKDYPSVRYRGVVEGFYGTPWSHQARLSQLKFYGKNKMNTYIYGPKDDPYHSAPNWRLPYPDKEAAQLQELVAVANENEVDFVWAIHPGQDIKWNKEDRDLLLAKFEKMYQLGVRSFAVFFDDISGEGTNPQKQAELLNYIDEKFAQVKPDINQLVMCPTEYNKSWSNPNGNYLTTLGDKLNPSIQIMWTGDRVISDITRDGISWINERIKRPAYIWWNFPVSDYVRDHLLLGPVYGNDTTIAKEMSGFVTNPMEHAESSKIAIYSVASYAWNPAKYDTWQTWKDAIRTILPSAAEELECFAMHNSDLGPNGHGYRREESMDIQPAAERFLKAFKEGKNYDKADFETLQYTFERMKESADILLMNTENKPLIVEITPWVHQFKLTAEMGEEVLKMVEGRNESYFLRKYNHVKALQQQMFYIDQTSNQNPYQPGVKTATRVIKPLIDRTFATVVKFFNQKFNAHLDATTDYMPHKMISNVEQIKNLPLQVKANRVLISPANEVVKWAAGNSVEIELDAIYPGENIQINFGKDAPCTWGRLEISTDGKEWKTVDLKQKESRLSAGLQKAPVKFVRFTNVSDEEQQVYLRQFVLTIEKK +>3dll_2 mol:protein length:47 50S ribosomal protein L34 +MKRTYQPNNRKRAKTHGFRARMKTKSGRNILARRRAKGRHQLTVSDE +>4cub_B mol:protein length:183 BETA-GALACTOSIDASE +QTEQGANISDQWTGSELPLAFASDSNPSDPVSNVNDKLISYNNQPANRWTNWNRSNPEASVGVLFGDSGILSKRSVDNLSVGFHEDHGVGAPKSYVIEYYVGKTVPTAPKNPSFVGNEDHVFNDSANWKPVTNLKAPAQLKAGEMNHFSFDKVETYAIRIRMVKADNKRGTSITEVQIFAKQV +>1otr_B mol:protein length:76 Ubiquitin +MQIFVKTLTGKTITLEVESSDTIDNVKSKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG +>2oig_A mol:protein length:111 RS21-C6 +GPLGSRPFRFSPEPTLEDIRRLHAEFAAERDWEQFHQPRNLLLALVGEVGELAELFQWKSDTEPGPQAWPPKERAALQEELSDVLIYLVALAARCHVDLPQAVISKMDTNR +>5vhr_E mol:protein length:262 26S proteasome regulatory subunit 10B +GNVSYSEIGGLSEQIRELREVIELPLTNPELFQRVGIIPPKGCLLYGPPGTGKTLLARAVASQLDCNFLKVVSSSIVDKYIGESARLIREMFNYARDHQPCIIFMDEIDAIGGRRFSEGTSADREIQRTLMELLNQMDGFDTLHRVKMIMATNRPDTLDPALLRPGRLDRKIHIDLPNEQARLDILKIHAGPITKHGEIDYEAIVKLSDGFNGADLRNVCTEAGMFAIRADHDFVVQEDFMKAVRKVADSKKLESKLDYKPV +>6zke_s mol:protein length:137 NADH:ubiquinone oxidoreductase subunit B7 +MGAHLARRYLGDASVEPEPLRMPTFPPDYGFPERKEREMVATQQEMNDAQLVLQQRDYCAHYLIRFLKCKRDSFPNFLACKHEQHDWDYCEHLDYVKRMKEFERERRLLQRKKRREQREADMAKGLGPGEVAPEVAL +>7lmx_C mol:protein length:75 Integrin inhibitor +STKCVVRFVFRGDLATLMLRAVKDHLKKEGPHWNITSTNNGAELVVRGIHESDAKRIAKWVEKRFPGVHTETQCD +>6qn7_L mol:protein length:216 Light chain of bovine anti-RSV B13 +QAVLTQPPSVSGSLGQRVSITCSGSSDNIGIFAVGWYQQVPGSGLRTIIYGNTKRPSGVPDRFSGSKSGNTATLTINSLQAEDEADYFCVCGESKSATPVFGGGTTLTVLGQPKSPPSVTLFPPSTEELNGNKATLVCLISDFYPGSVTVVWKADGSTITRNVETTRASKQSNSKYAASSYLSLTSSDWKSKGSYSCEVTHEGSTVTKTVKPSECS +>5b00_A mol:protein length:294 MoeN5 +MAHHHHHHVDDDDKAASWSHPQFEKGAENLYFQSMLAAEAANRDHVTRCVAQTGGSPDLVAHTAALRLYLRVPHFLTEWTTDPDRRAAVSRALALDIVSMKLLDDLMDDDTGLDRVELACVCLRLHLRALHELESLARDPKAVTDILEQDAVHLCGGQIRTKRSRATNLREWRAHASTYGSTFLGRYGALAAACGGEGQPADSVREFAEAFAMTITMADDLTDYDRNGERDGNLAHLMRTGAVAGQDVVDLLEELRGRALAAVAAPPGAPGLVPVVHLYTDDVLVRLLPRHLGE +>6iqt_D mol:protein length:166 Cag pathogenicity island protein (Cag10) +GTSSMADIGSGEFKIVKRSDARQIVNSEAVVDSATSKFVSLLFGYSKNSLRDRKDQLMQYCDVSFQTQAMRMFNENIRQFVDKVRAEAIISSNIQREKVKNSPLTRLTFFITIKITPDTMENYEYITKKQVTIYYDFARGNSSQENLIINPFGFKVFDIQITDLQN +>4o26_A mol:protein length:257 Telomerase reverse transcriptase +GSGFLYGGRGMHGFCLNRKRRTAAGPRRLQGQDLVRLVFFEGLPYLNGQERKPKKLPLRYFNMVPVFGRLLQRHRKCRYSSVLHRMCPVVELSRAAQGELSSLIPQHCAPHRVYLFVRECLTAVVPEELWGSDHNRLQFFSRVRGFLKSGKFERISVAELMWKIKVMDCDWLKLRRTAGRFPPSELAYRTRILSQFLTWLLDGFVVGLVRACFYATESVGQKNAIRFYRQEVWSKLQDLAFRRHIAKGEMEELSPAQ +>8d0k_B mol:protein length:374 CST complex subunit STN1 +MHHHHHHQPGSSRCEEETPSLLWGLDPVFLAFAKLYIRDILDMKESRQVPGVFLYNGHPIKQVDVLGTVIGVRERDAFYSYGVDDSTGVINCICWKKLNTESVSAAPSAARELSLTSQLKKLQETIEQKTKIEIGDTIRVRGSIRTYREEREIHATTYYKVDDPVWNIQIARMLELPTIYRKVYDQPFHSSALEKEEALSNPGALDLPSLTSLLSEKAKEFLMENRVQSFYQQELEMVESLLSLANQPVIHSASSDQVNFKKDTTSKAIHSIFKNAIQLLQEKGLVFQKDDGFDNLYYVTREDKDLHRKIHRIIQQDCQKPNHMEKGCHFLHILACARLSIRPGLSEAVLQQVLELLEDQSDIVSTMEHYYTAF +>7mus_FD mol:protein length:163 DotD +MNNNKIVIMFIFSALLAGCAGTMKFKKPPINNPSDDATIKLAEAAVSVSDSMLEMAKVEKVITPPSKDNTLTIPNAYNLQARASVDWSGPIEELTARIAKAAHFRFRVLGKSPSVPVLISISTKDESLAEILRDIDYQAGKKASIHVYPNSQVVELRYAKIYS +>2olh_A mol:protein length:361 Chitinase-3-like protein 1 +YKLICYYTSWSQYREGDGSCFPDAIDPFLCTHVIYSFANISNNEIDTWEWNDVTLYDTLNTLKNRNPKLKTLLSVGGWNFGPERFSKIASKTQSRRTFIKSVPPFLRTHGFDGLDLAWLYPGRRDKRHLTALVKEMKAEFAREAQAGTERLLLSAAVSAGKIAIDRGYDIAQISRHLDFISLLTYDFHGAWRQTVGHHSPLFRGNSDASSRFSNADYAVSYMLRLGAPANKLVMGIPTFGRSFTLASSKTDVGAPISGPGIPGRFTKEKGILAYYEICDFLHGATTHRFRDQQVPYATKGNQWVAYDDQESVKNKARYLKNRQLAGAMVWALDLDDFRGTFCGQNLTFPLTSAVKDVLARV +>6ue6_D mol:protein length:141 Histone-lysine N-methyltransferase NSD2 +GGRDKDHLLKYNVGDLVWSKVSGYPWWPCMVSADPLLHSYTKLKGQKKSARQYHVQFFGDAPERAWIFEKSLVAFEGEGQFEKLCQESAKQAPTKAEKIKLLKPISGKLRAQWEMGIVQAEEAASMSVEERKAKFTFLYVG +>2nvy_C mol:protein length:318 DNA-directed RNA polymerase II 45 kDa polypeptide +MSEEGPQVKIREASKDNVDFILSNVDLAMANSLRRVMIAEIPTLAIDSVEVETNTTVLADEFIAHRLGLIPLQSMDIEQLEYSRDCFCEDHCDKCSVVLTLQAFGESESTTNVYSKDLVIVSNLMGRNIGHPIIQDKEGNGVLICKLRKGQELKLTCVAKKGIAKEHAKWGPAAAIEFEYDPWNKLKHTDYWYEQDSAKEWPQSKNCEYEDPPNEGDPFDYKAQADTFYMNVESVGSIPVDQVVVRGIDTLQKKVASILLALTQMDQDKVNFASGDNNTASNMLGSNEDVMMTGAEQDPYSNASQMGNTGSGGYDNAW +>2vd0_D mol:protein length:199 GLUTATHIONE-REQUIRING PROSTAGLANDIN D SYNTHASE +MPNYKLTYFNMRGRAEIIRYIFAYLDIQYEDHRIEQADWPEIKSTLPFGKIPILEVDGLTLHQSLAIARYLTKNTDLAGNTEMEQCHVDAIVDTLDDFMSCFPWAEKKQDVKEQMFNELLTYNAPHLMQDLDTYLGGREWLIGNSVTWADFYWEICSTTLLVFKPDLLDNHPRLVTLRKKVQAIPAVANWIKRRPQTKL +>1yf1_B mol:protein length:186 Alkyl hydroperoxide reductase subunit C +SLINTKIKPFKNQAFKNGEFIEVTEKDTEGRWSVFFFYPADFTFVCPTELGDVADHYEELQKLGVDVYSVSTDTHFVHKAWHSSSETIAKIKYAMIGDPTGALTRNFDNMREDEGLADRATFVVDPQGIIQAIEVTAEGIGRDASDLLRKIKAAQYVAAHPGEVCPAKWKEGEATLAPSLDLVGKI +>4g4s_B mol:protein length:250 Proteasome component Y7 +MTDRYSFSLTTFSPSGKLGQIDYALTAVKQGVTSLGIKATNGVVIATEKKSSSPLAMSETLSKVSLLTPDIGAVYSGMGPDYRVLVDKSRKVAHTSYKRIYGEYPPTKLLVSEVAKIMQEATQSGGVRPFGVSLLIAGHDEFNGFSLYQVDPSGSYFPWKATAIGKGSVAAKTFLEKRWNDELELEDAIHIALLTLKESVEGEFNGDTIELAIIGDENPDLLGYTGIPTDKGPRFRKLTSQEINDRLEAL +>6mjz_C mol:protein length:495 Fusion glycoprotein F0 +QIDITKLQHVGVLVNSPKGMKISQNFETRYLILSLIPKIEDSNSCGDQQIKQYKRLLDRLIIPLYDGLKLQKDVIVTNQESNENTDPRTERFFGGVIGTIALGVATSAQITAAVALVEAKQAKSDIEKLKEAIRDTNKAVQSVCSSVGNCIVAIKSVQDYVNKEIVPSIARLGCEAAGLQLGIALTQHYSELTNCFGDNIGSLQEKGIKLQCIASLYRTNITEIFTTSTVDKYDIYDLLFTESIKVRVIDVDLNDYSITLQVRLPLLTRLLNTQIYKVDSISYNIQNREWYIPLPSHIMTKGAFLGGADVKECIEAFSSYICPSDPGFVLNHEMESCLSGNISQCPRTTVTSDIVPRYAFVNGGVVANCITTTCTCNGIGNRINQPPDQGVKIITHKECNTIGINGMLFNTNKEGTLAFYTPDDITLNNSVALDPIDISIELNKVKSDLEESKEWYRRSNQKLSAIEDKIEEILSKIYHIENEIARIKKLIGEAP +>5vbr_A mol:protein length:113 Bromodomain testis-specific protein +GAASTNQLQYLQKVVLKDLWKHSFSWPFQRPVDAVKLQLPDYYTIIKNPMDLNTIKKRLENKYYAKASECIEDFNTMFSNCYLYNKPGDDIVLMAQALEKLFMQKLSQMPQEE +>1wuu_B mol:protein length:399 Galactokinase +MAHHHHHHAALRQPQVAELLAEARRAFREEFGAEPELAVSAPGRVNLIGEHTDYNQGLVLPMALELMTVLVGSPRKDGLVSLLTTSEGADEPQRLQFPLPTAQRSLEPGTPRWANYVKGVIQYYPAAPLPGFSAVVVSSVPLGGGLSSSASLEVATYTFLQQLCPDSGTIAARAQVCQQAEHSFAGMPCGIMDQFISLMGQKGHALLIDCRSLETSLVPLSDPKLAVLITNSNVRHSLASSEYPVRRRQCEEVARALGKESLREVQLEELEAARDLVSKEGFRRARHVVGEIRRTAQAAAALRRGDYRAFGRLMVESHRSLRDDYEVSCPELDQLVEAALAVPGVYGSRMTGGGFGGCTVTLLEASAAPHAMRHIQEHYGGTATFYLSQAADGAKVLCL +>1wp9_D mol:protein length:494 ATP-dependent RNA helicase, putative +MVLRRDLIQPRIYQEVIYAKCKETNCLIVLPTGLGKTLIAMMIAEYRLTKYGGKVLMLAPTKPLVLQHAESFRRLFNLPPEKIVALTGEKSPEERSKAWARAKVIVATPQTIENDLLAGRISLEDVSLIVFDEAHRAVGNYAYVFIAREYKRQAKNPLVIGLTASPGSTPEKIMEVINNLGIEHIEYRSENSPDVRPYVKGIRFEWVRVDLPEIYKEVRKLLREMLRDALKPLAETGLLESSSPDIPKKEVLRAGQIINEEMAKGNHDLRGLLLYHAMALKLHHAIELLETQGLSALRAYIKKLYEEAKAGSTKASKEIFSDKRMKKAISLLVQAKEIGLDHPKMDKLKEIIREQLQRKQNSKIIVFTNYRETAKKIVNELVKDGIKAKRFVGQASKENDRGLSQREQKLILDEFARGEFNVLVATSVGEEGLDVPEVDLVVFYEPVPSAIRSIQRRGRTGRHMPGRVIILMAKGTRDEAYYWSSRQKEKIMQE +>6mxv_B mol:protein length:252 Rhodanese-like family protein +MKIMQHSSGFLKLVDDAKSRIQECSVDDIQKMNETQTLDGLLIDTREESEVANGYIPNAIHLSKGIIESAIESAVPNKNQKMYFYCGGGFRSALVADKLREMGYKNVISVDGGWRAWNAKGYPTVSPNQFRPNEFLKLVNNAKTQIKECSTTELYNKINSQELDGIVFDVREDSEFNRFHIQGATHLSKGQIEVKIENLVPNKQQKIYLYCGSGFRSALAAESLQHMGYTNVVSIAGGIKDWLANNYPVSQN +>6owg_B9 mol:protein length:113 Microcompartments protein +MAVAVGMIETLGFPAVVEAADAMVKAARVTLVGYEKIGTGRVTVIVRGDVSEVQASVSAGTESVKRVNGGQVLSTHIIARPHENLEYVLPIRYTEEVEQFREGVGTPRNITRQ +>6x6s_IC mol:protein length:481 Type IV secretion system apparatus protein Cag3 +MFRKLATAVSLIGLLTSNTLYAKEISEADKVIKATKETKETKKEAKRLKKEAKQRQQIPDHKKPQYVSVDDTKTQALFDIYDTLNVNDKSFGDWFGNSALKDKTYLYAMDLLDYNNYLSIENPIIKTRAMGTYADLIIITGSLEQVNGYYNILKALNKRNAKFVLKINENMPYAQATFLRVPKRSDPNAHTLDKGASIDENKLFEQQKKMYFNYANDVICRPDDEVCSPLRDEMVAMPTSDSVTQKPNIIAPYSLYRLKETNNANEAQPSPYATATAPENSKEKLIEELIANSQLVANEEEREKKLLAEKEKQEAELAKYKLKDLENQKKLKALEAELKKKNAKKPRVVEVPVSPQTSNSDETMRVVKEKENYNGLLVDKETTIKRSYEGTLISENSYSKKTPLNPNDLRSLEEEIKSYYIKSNGLCYTNGINLYVKIKNDPYKEGMLCGYESVQNLLSPLKDKLKYDKQKLQKALLKDSK +>6th6_Al mol:protein length:135 30S ribosomal protein S9 +MRVIQTAGKRKTAVARATIREGKGRVRINHKPVEIIEPEIARFTIMEPLILAGEEIVSRVDIDVKVEGGGFMGQAEAARVAIARALVEWTNDMNLKEKFMKYDRTMLVGDSRRTEPHKPNRSTKGPRAKRQKSYR +>6lvv_G mol:protein length:775 N,N-dimethylformamidase large subunit +MKDIAIRGYCDRPSVATGETIRFYVSANETRGTFDAELVRLIHGDSNPAGPGYKEEAIKSDLEGQYPARFQRTQFGSYVEVADPDAGLQPDGAFSVHLFLWSTTPSRGRQGIASRWNDERQSGWNLAIEDGRVVFTIGDGSGATSSVVSDRPLFQQIWYSITGVYDPEKKQLRLYQKSVVNRTNSRFGLVVPLDSDCAVSADATVKAADSETSLLIAGLGEAAAQDGRTWCIAHYNGKVDAPKIYGCALGQDDAEKLSRGEIVRPISRLAHWDFSAGIGLNGIPTDHVVDASGYGHHGRCMNQPSRGSTGWNWDGHEENFIHCPEQYGALWFHEDCLDDCRWEKDFEFTVPEGLKSDFYAVKIRYEDTEDYIPFFVLPPRGTATAPILVIASTLSYLAYANEQIMHKADIGQAVAGHTPVLNENDVELHKNLSYYGLSTYDGHIDGRGVQYTSWRRPIMNLRPKHRQGFGSIWELPADLHLIDWLNHNGFEYDVATEHDLNDQGAELLRRYKVVLTGSHPEYQTWANADAWEDYLADGGRGMYLAANGMYWIVEVHPEKPWVMEVRKELGVTAWEAPPGEYHYSTNGRRGGRFRGRARATQKIWGTGMSSFGFDHSGYFVQMPDSQDERVAWIMEGIDPEERIGDGGLVGGGAGGYELDRYDLALGTPPNTLLLASSVEHSVVYTVIPDDKAFPHPGMNGGEHPFVRADITYFSTANGGGMFATSSISWLGSLSWNDYDNNVSKMTKNVLNQFIKDEPAPRVKLAAALEHHHHHH +>1esb_A mol:protein length:240 PORCINE PANCREATIC ELASTASE +VVGGTEAQRNSWPSQISLQYRSGSSWAHTCGGTLIRQNWVMTAAHCVDRELTFRVVVGEHNLNQNNGTEQYVGVQKIVVHPYWNTDDVAAGYDIALLRLAQSVTLNSYVQLGVLPRAGTILANNSPCYITGWGLTRTNGQLAQTLQQAYLPTVDYAICSSSSYWGSTVKNSMVCAGGDGVRSGCQGDSGGPLHCLVNGQYAVHGVTSFVSRLGCNVTRKPTVFTRVSAYISWINNVIASN +>3wry_B mol:protein length:431 Tm-1 protein +MATAQSNSPRVFCIGTADTKFDELRFLSEHVRSSLNSFSNKSSFKVGVTVVDVSTSWKETNSCADFDFVPSKDVLSCHTLGEETMGTFADTRGLAIAIMSKALETFLSIANDEQNLAGVIGLGGSGGTSLLSSAFRSLPIGIPKVIISTVASGQTESYIGTSDLVLFPSVVDICGINNVSKVVLSNAGAAFAGMVIGRLESSKEHSITNGKFTVGVTMFGVTTPCVNAVKERLVKEGYETLVFHATGVGGRAMEDLVRGGFIQGVLDITTTEVADYVVGGVMACDSSRFDAILEKKIPLVLSVGALDMVNFGPKTTIPPEFQQRKIHEHNEQVSLMRTTVGENKKFAAFIAEKLNKASSSVCVCLPEKGVSALDAPGKDFYDPEATSCLTRELQMLLENNERCQVKVLPYHINDAEFANALVDSFLEISPK +>4i55_F mol:protein length:384 Tubulin tyrosine ligase, TTL +MYTFVVRDENSSVYAEVSRLLLATGQWKRLRKDNPRFNLMLGERNRLPFGRLGHEPGLVQLVNYYRGADKLCRKASLVKLIKTSPELSESCTWFPESYVIYPTNLKTPVAPAQNGIRHLINNTRTDEREVFLAAYNRRREGREGNVWIAKSSAGAKGEGILISSEASELLDFIDEQGQVHVIQKYLEKPLLLEPGHRKFDIRSWVLVDHLYNIYLYREGVLRTSSEPYNSANFQDKTCHLTNHCIQKEYSKNYGRYEEGNEMFFEEFNQYLMDALNTTLENSILLQIKHIIRSCLMCIEPAISTKHLHYQSFQLFGFDFMVDEELKVWLIEVNGAPACAQKLYAELCQGIVDVAISSVFPLADTGQKTSQPTSIFIKLHHHHHH +>3dal_B mol:protein length:196 PR domain zinc finger protein 1 +SSGLVPRGSKKMDMEDADMTLWTEAEFEEKCTYIVNDHPWDSGADGGTSVQAEASLPRNLLFKYATNSEEVIGVMSKEYIPKGTRFGPLIGEIYTNDTVPKNANRKYFWRIYSRGELHHFIDGFNEEKSNWMRYVNPAHSPREQNLAACQNGMNIYFYTIKPIPANQELLVWYCRDFAERLHYPYPGELTMMNLTQ +>6pjj_A mol:protein length:351 Serine/threonine-protein kinase PRP4 homolog +SMDFKENPNLRDNWTDAEGYYRVNIGEVLDKRYNVYGYTGQGVFSNVVRARDNARANQEVAVKIIRNNELMQKTGLKELEFLKKLNDADPDDKFHCLRLLRHFYHKQHLCLVFEPLSMNLREVLKKYGKDVGLHIKAVRSYSQQLFLALKLLKRCNILHADIKPDNILVNESKTILKLCDFGSASHVADNDITPYLFSRFYRAPEIIIGKSYDYGIDMWSVGCTLYELYTGKILFPGKTNNHMLKLAMDLKGKMPNKMIRKGVFKDQHFDQNLNFMYIEVDKVTEREKVTVMSTINPTKDLLADLIGCQRLPEDQRKKVHQLKDLLDQILMLDPAKRISINQALQHAFIQE +>7ajb_AO mol:protein length:75 ATP synthase F(0) complex subunit C2, mitochondrial +DIDTAAKFIGAGAATVGVAGSGAGIGTVFGSLIIGYARNPSLKQQLFSYAILGFALSEAMGLFCLMVAFLILFAM +>7a4g_FI mol:protein length:197 Antitermination protein N,6,7-dimethyl-8-ribityllumazine synthase,6,7-dimethyl-8-ribityllumazine synthase +MGNAKTRRRERRAEKQAQWKAANAGAGAGAMATPHFDYIASEVSKGLANLSLELRKPITFGVITADTLEQAIERAGTKHGNKGWEAALSAIEMANLFKSLRGTGHHHHHHGSSMEIYEGKLTAEGLRFGIVASRFNHALVDRLVEGAIDCIVRHGGREEDITLVRVPGSWEIPVAAGELARKEDIDAVIAIGVLIRG +>6r8h_E mol:protein length:250 Triosephosphate isomerase +ASNRKFFVGGNWKMNGSKESNQKLLKTLSDAKPDANTEILVAVPFVYLKDVREHLDKRFHVAAQNCYKVASGAFTGEISPAMIRDCGCEWVILGHSERRHIFGESDELIGEKVNHALTCGLKVVPCIGEKLDEREAGKTEQVCFRQLDAIKKGIPKAEDWSRVVIAYEPVWAIGTGKTASPEQAQEVHHAVRQWLEKNVSQAVASSLRITYGGSVTAANCKELAKKPDVDGFLVGGASLKPEFVDICNAN +>7of2_U mol:protein length:153 39S ribosomal protein L23, mitochondrial +MARNVVYPLYRLGGPQLRVFRTNFFIQLVRPGVAQPEDTVQFRIPMEMTRVDLRNYLEGIYNVPVAAVRTRVQHGSNKRRDHRNVRIKKPDYKVAYVQLAHGQTFTFPDLFPEKDESPEGSAADDLYSMLEEERQQRQSSDPRRGGVPSWFGL +>1xa6_A mol:protein length:466 Beta2-chimaerin +MRLLSSLSGSSVSSDAEEYQPPIWKSYLYQLQQEAPRPKRIICPREVENRPKYYGREFHGIISREQADELLGGVEGAYILRESQRQPGCYTLALRFGNQTLNYRLFHDGKHFVGEKRFESIHDLVTDGLITLYIETKAAEYISKMTTNPIYEHIGYATLLREKVSRRLSRSKNEPRKTNVTHEEHTAVEKISSLVRRAALTHNDNHFNYEKTHNFKVHTFRGPHWCEYCANFMWGLIAQGVRCSDCGLNVHKQCSKHVPNDCQPDLKRIKKVYCCDLTTLVKAHNTQRPMVVDICIREIEARGLKSEGLYRVSGFTEHIEDVKMAFDRDGEKADISANVYPDINIITGALKLYFRDLPIPVITYDTYSKFIDAAKISNADERLEAVHEVLMLLPPAHYETLRYLMIHLKKVTMNEKDNFMNAENLGIVFGPTLMRPPEDSTLTTLHDMRYQKLIVQILIENEDVLF +>6y9i_BBB mol:protein length:292 Major Capsid Protein VP1 +GSHMGGVEVLNIITGPDSTTEIELYLEPRMGINSPTGDKKEWYGYSEVIHHADGYDNNLLSIQMPQYSCARVQLPMLNTDMTSDTLMMWEAVSCKTEIVGIGSLISVHLLEAKMAAKEGGDGPSQPIEGMNYHMFAVGGEPLDLQGIESNALTKYASAIPPKTIHPNDIAKLAEEEKPQLQGLVPKAKARLDKDGFYPIEEWSPDPSRNENSRYFGSFVGGLNTPPNLQFTNAVTTVLLDENGVGPLCKGDGLFVSAADICGVMVKADNEAIRYRGLPRYFKVTLRKRAVKN +>5hrm_B mol:protein length:504 Haloalkylphosphorus hydrolase +QVVIGPGDRPETGLQGQTTIEDVVSGRSKLPYHAGVRLVGRTDIWNRGGNLQLSWVDQCAYVSTFKQAGPITANSRSALFLREPAGVAVIDVRDPRAPKPVRLLRDRGSIDAVETMHAIAAPGRKVLVAGAYSGGIAGRGEEDAAWLSIYDASNCLNPKLQSEFKWPANIHMVTISPNGRRVYGTEVVPGLGSGKGGLHVLDISDMKRPRYLGRFGVTRPNGLTAGFTPHEVSISHDERRIYAAVLASETGDVPVGASILASDGDVPVENGSVYILDNSDIVDGRSQPKMRLVGEAKQGGFHSVVPASINGVPHLVGAAELGACPGTWPRIINIADEKNPKIVGEFKLQMNIKENCDAIRFTPRKEDPYASFIPIPDITARLGAVGSHFNDVDDARNTRLGLFPFFAGGVRIVDLRDPTKPVEVGYYKPGANPDTPLSGNGLNWTGLNDQVTDGCMSHVRYVPESGHIWFACVTTGFHVVELNPDLRARLGFPTVKLEHHHHHH +>1s5c_F mol:protein length:103 cholera enterotoxin B-subunit +TPQNITDLCAEYHNTQIHTLNDKIFSYTESLAGKREMAIITFKNGATFQVEVPGSQHIDSQKKAIERMKDTLRIAYLTEAKVEKLCVWNNKTPHAIAAISMAN +>3nvv_K mol:protein length:334 Xanthine dehydrogenase/oxidase +LFNPEEFMPLDPTQEPIFPPELLRLKDVPPKQLRFEGERVTWIQASTLKELLDLKAQHPEAKLVVGNTEIGIEMKFKNQLFPMIICPAWIPELNAVEHGPEGISFGAACALSSVEKTLLEAVAKLPTQKTEVFRGVLEQLRWFAGKQVKSVASLGGNIITASPISDLNPVFMASGTKLTIVSRGTRRTVPMDHTFFPSYRKTLLGPEEILLSIEIPYSREDEFFSAFKQASRREDDIAKVTCGMRVLFQPGSMQVKELALCYGGMADRTISALKTTQKQLSKFWNEKLLQDVCAGLAEELSLSPDAPGGMIEFRRTLTLSFFFKFYLTVLKKLG +>6lum_G mol:protein length:138 Succinate dehydrogenase subunit C +MSTQTEVPAPQPKKTRRRTLYRGDPGMWSWVLHRITGATIFFFLFVHVLDTALVRVSPQAYNEVIETYKTPIVGLMEIGLVAAVLFHALNGIRVILIDFWAKGPRYQRQMLAVIAGLFLVIFIAAVGVIGMHMVERFL +>1vav_B mol:protein length:222 Alginate lyase PA1167 +PDLSTWNLTIPQGRPAITISTSQLQRDYRSDYFQRTADGIRFWVPVNGSHTRNSEFPRSELRETLSSGRPYNWRYARADNWLEATLRIEAVPSTRRMIIGQIHSDGSNSGQAAPLVKLLYQLRLDQGRVQALVRERPDDGGTRAYTLMDGIPLGQPFSYRIGVSRSGLLSVSVNGSALEQQLDPQWAYQGLYFKAGLYLQDNRGPSSEGGRATFSELRVSHQ +>3q6e_A mol:protein length:21 Insulin A chain +GIVEQCCTSICSLYQLENYCN +>4s17_F mol:protein length:481 Glutamine synthetase +SNAMTALETKADAEALINKEGIEYVSVRFTDLIGVQQHFTVPASEFLKDAFTDGMPFDGSSVEGFQAINESDMKLVPDVSTAFIDPFRKHKTLDVAFSIVDPLTDEPYSRDPRQVAGKAEAYLKSTGIADTASFAPEAEFFIFDKVRFENSMQRSFYEVDSIEAPWNSGIDTEDDGTPNIAFKNRVKKGYFPVPPIDHTQDLRDDMVANLQKVGLILERSHHEVAGAGQQEINYRFNSLQHAGDDLMKYKYVVHETAALAGKAATFMPKPIAGDNGTGMHCHQSLWKDGKPLFYDEKNYGGLSDLARWYIGGLIKHSSSVLAFTNPSLNSYHRLVPGFEAPVNLVYSARNRSAAIRIPLAGTSPAAKRIEFRAPDPSCNPFLAFSAQLMAGLDGILNHIEPPAPVDKDLYELPPEEHAGIKQVPSSLAEAMDALEEDHDFLTAGDVFTDDLIDTWISIKRGEIDQARLAPTPLEYELYFHI +>4dv4_D mol:protein length:209 ribosomal protein S4 +MGRYIGPVCRLCRREGVKLYLKGERCYSPKCAMERRPYPPGQHGQKRARRPSDYAVRLREKQKLRRIYGISERQFRNLFEEASKKKGVTGSVFLGLLESRLDNVVYRLGFAVSRRQARQLVRHGHITVNGRRVDLPSYRVRPGDEIAVAEKSRNLELIRQNLEAMKGRKVGPWLSLDVEGMKGKFLRLPDREDLALPVNEQLVIEFYSR +>3zv2_A mol:protein length:320 Tyrosine-protein phosphatase non-receptor type 1 +MEMEKEFEQIDKSGSWAAIYQDIRHEASDFPCRVAKLPKNKNRNRYRDVSPFDHSRIKLHQEDNDYINASLIKMEEAQRSYILTQGPLPNTCGHFWEMVWEQKSRGVVMLNRVMEKGSLKCAQYWPQKEEKEMIFEDTNLKLTLISEDIKSYYTVRQLELENLTTQETREILHFHYTTWPDFGVPESPASFLNFLFKVRESGSLSPEHGPVVVHAAAGIGRSGTFCLADTCLLLMDKRKDPSSVDIKKVLLEMRKFRMGLIQTADQLRFSYLAVIEGAKFIMGDSSVQDQWKELSHEDLEPPPEHIPPPPRPPKRILEPH +>4lyc_A mol:protein length:129 Lysozyme C +KVFGRCELAAAMKRHGLDNYRGYSLGNWVCAAKFESNFNTQATNRNTDGSTDYGILQINSRWWCNDGRTPGSRNLCNIPCSALLSSDITASVNCAKKIVSDGNGMNAWVAWRNRCKGTDVQAWIRGCRL +>6gaw_Bp mol:protein length:112 mL53 +MAAALARLGLRAVKQVRVQFCPFEKNVESTRTFLQAVSSEKVRCTNLNCSVIADVRHDGSEPCVDVLFGDGHRLIMRGAHLTAQEMLTAFASHIQARGAAASGDKPSASTGR +>3bvb_B mol:protein length:99 Protease (Retropepsin) +PQITLWKRPLVTIKIGGQLKEALLNTGADDTVIEEMSLPGRWKPKMIGGIGGFIKVRQYDQIIIEIAGHKAIGTVLVGPTPVNIIGRNLLTQIGATLNF +>5djb_E mol:protein length:99 Microcompartments protein +MADALGMIEVRGFVGMVEAADAMVKAAKVELIGYEKTGGGYVTAVVRGDVAAVKAATEAGQRAAERVGEVVAVHVIPRPHVNVDAALPLGRTPGMDKSA +>6jpa_F mol:protein length:1046 Voltage-dependent calcium channel subunit alpha-2/delta-1 +FPSAVTIKSWVDKMQEDLVTLAKTASGVHQLVDIYEKYQDLYTVEPNNARQLVEIAARDIEKLLSNRSKALVRLALEAEKVQAAHQWREDFASNEVVYYNAKDDLDPEKNDSEPGSQRIKPVFIDDANFRRQVSYQHAAVHIPTDIYEGSTIVLNELNWTSALDDVFKKNREEDPSLLWQVFGSATGLARYYPASPWVDNSRTPNKIDLYDVRRRPWYIQGAASPKDMLILVDVSGSVSGLTLKLIRTSVSEMLETLSDDDFVNVASFNSNAQDVSCFQHLVQANVRNKKVLKDAVNNITAKGITDYKKGFSFAFEQLLNYNVSRANCNKIIMLFTDGGEERAQEIFAKYNKDKKVRVFTFSVGQHNYDRGPIQWMACENKGYYYEIPSIGAIRINTQEYLDVLGRPMVLAGDKAKQVQWTNVYLDALELGLVITGTLPVFNITGQFENKTNLKNQLILGVMGVDVSLEDIKRLTPRFTLCPNGYYFAIDPNGYVLLHPNLQPKPIGVGIPTINLRKRRPNVQNPKSQEPVTLDFLDAELENDIKVEIRNKMIDGESGEKTFRTLVKSQDERYIDKGNRTYTWTPVNGTDYSLALVLPTYSFYYIKAKIEETITQARYSETLKPDNFEESGYTFLAPRDYCSDLKPSDNNTEFLLNFNEFIDRKTPNNPSCNTDLINRVLLDAGFTNELVQNYWSKQKNIKGVKARFVVTDGGITRVYPKEAGENWQENPETYEDSFYKRSLDNDNYVFTAPYFNKSGPGAYESGIMVSKAVEIYIQGKLLKPAVVGIKIDVNSWIENFTKTSIRDPCAGPVCDCKRNSDVMDCVILDDGGFLLMANHDDYTNQIGRFFGEIDPSLMRHLVNISVYAFNKSYDYQSVCEPGAAPKQGAGHRSAYVPSIADILQIGWWATAAAWSILQQFLLSLTFPRLLEAADMEDDDFTASMSKQSCITEQTQYFFDNDSKSFSGVLDCGNCSRIFHVEKLMNTNLIFIMVESKGTCPCDTRLLIQAEQTSDGPDPCDMVKQPRYRKGPDVCFDNNVLEDYTDCG +>2zoq_A mol:protein length:382 Mitogen-activated protein kinase 3 +LGSMAAAAAQGGGGGEPRRTEGVGPGVPGEVEMVKGQPFDVGPRYTQLQYIGEGAYGMVSSAYDHVRKTRVAIKKISPFEHQTYCQRTLREIQILLRFRHENVIGIRDILRASTLEAMRDVYIVQDLMETDLYKLLKSQQLSNDHICYFLYQILRGLKYIHSANVLHRDLKPSNLLINTTCDLKICDFGLARIADPEHDHTGFLTEYVATRWYRAPEIMLNSKGYTKSIDIWSVGCILAEMLSNRPIFPGKHYLDQLNHILGILGSPSQEDLNCIINMKARNYLQSLPSKTKVAWAKLFPKSDSKALDLLDRMLTFNPNKRITVEEALAHPYLEQYYDPTDEPVAEEPFTFAMELDDLPKERLKELIFQETARFQPGVLEAP +>6pee_K mol:protein length:562 Protein InvG +MKTHILLARVLACAALVLVTPGYSSEKIPVTGSGFVAKDDSLRTFFDAMALQLKEPVIVSKMAARKKITGNFEFHDPNALLEKLSLQLGLIWYFDGQAIYIYDASEMRNAVVSLRNVSLNEFNNFLKRSGLYNKNYPLRGDNRKGTFYVSGPPVYVDMVVNAATMMDKQNDGIELGRQKIGVMRLNNTFVGDRTYNLRDQKMVIPGIATAIERLLQGEEQPLGNIVSSEPPAMPAFSANGEKGKAANYAGGMSLQEALKQNAAAGNIKIVAYPDTNSLLVKGTAEQVHFIEMLVKALDVAKRHVELSLWIVDLNKSDLERLGTSWSGSITIGDKLGVSLNQSSISTLDGSRFIAAVNALEEKKQATVVSRPVLLTQENVPAIFDNNRTFYTKLIGERNVALEHVTYGTMIRVLPRFSADGQIEMSLDIEDGNDKTPQSDTTTSVDALPEVGRTLISTIARVPHGKSLLVGGYTRDANTDTVQSIPFLGKLPLIGSLFRYSSKNKSNVVRVFMIEPKEIVDPLTPDASESVNNILKQSGAWSGDDKLQKWVRVYLDRGQEAIK +>6zg6_C mol:protein length:1273 Protein transport protein SEC31 +MVKLAEFSRTATFAWSHDKIPLLVSGTVSGTVDANFSTDSSLELWSLLAADSEKPIASLQVDSKFNDLDWSHNNKIIAGALDNGSLELYSTNEANNAINSMARFSNHSSSVKTVKFNAKQDNVLASGGNNGEIFIWDMNKCTESPSNYTPLTPGQSMSSVDEVISLAWNQSLAHVFASAGSSNFASIWDLKAKKEVIHLSYTSPNSGIKQQLSVVEWHPKNSTRVATATGSDNDPSILIWDLRNANTPLQTLNQGHQKGILSLDWCHQDEHLLLSSGRDNTVLLWNPESAEQLSQFPARGNWCFKTKFAPEAPDLFACASFDNKIEVQTLQNLTNTLDEQETETKQQESETDFWNNVSREESKEKPSVFHLQAPTWYGEPSPAAHWAFGGKLVQITPDGKGVSITNPKISGLESNTTLSEALKTKDFKPLINQRLVKVIDDVNEEDWNLLEKLSMDGTEEFLKEALAFDNDESDAQDDANNEKEDDGEEFFQQIETNFQPEGDFSLSGNIEQTISKNLVSGNIKSAVKNSLENDLLMEAMVIALDSNNERLKESVKNAYFAKYGSKSSLSRILYSISKREVDDLVENLDVSQWKFISKAIQNLYPNDIAQRNEMLIKLGDRLKENGHRQDSLTLYLAAGSLDKVASIWLSEFPDLEDKLKKDNKTIYEAHSECLTEFIERFTVFSNFINGSSTINNEQLIAKFLEFINLTTSTGNFELATEFLNSLPSDNEEVKTEKARVLIASGKSLPAQNPATATTSKAKYTNAKTNKNVPVLPTPGMPSTTSIPSMQAPFYGMTPGASANALPPKPYVPATTTSAPVHTEGKYAPPSQPSMASPFVNKTNSSTRLNSFAPPPNPYATATVPATNVSTTSIPQNTFAPIQPGMPIMGDYNAQSSSIPSQPPINAVSGQTPHLNRKANDGWNDLPLKVKEKPSRAKAVSVAPPNILSTPTPLNGIPANAASTMPPPPLSRAPSSVSMVSPPPLHKNSRVPSLVATSESPRASISNPYAPPQSSQQFPIGTISTANQTSNTAQVASSNPYAPPPQQRVATPLSGGVPPAPLPKASNPYAPTATTQPNGSSYPPTGPYTNNHTMTSPPPVFNKPPTGPPPISMKKRSNKLASIEQNPSQGATYPPTLSSSASPLQPSQPPTLASQVNTSAENVSHEIPADQQPIVDFLKEELARVTPLTPKEYSKQLKDCDKRLKILFYHLEKQDLLTQPTIDCLHDLVALMKEKKYKEAMVIHANIATNHAQEGGNWLTGVKRLIGIAEATLN +>6v00_F mol:protein length:355 MCherry fluorescent protein,Potassium voltage-gated channel subfamily E member 3 +GGMVSKGEEDNMAIIKEFMRFKVHMEGSVNGHEFEIEGEGEGRPYEGTQTAKLKVTKGGPLPFAWDILSPQFMYGSKAYVKHPADIPDYLKLSFPEGFNWERVMNFEDGGVVTVTQDSSLQDGEFIYKVKLRGTNFPSDGPVMQCRTMGWEASTERMYPEDGALKGEIKQRLKLKDGGHYDAEVKTTYKAKKPVQLPGAYNVDIKLDILSHNEDYTIVEQYERAEGRHSTGGMDELYKGSGENLYFQSSRATMETTNGTETWYESLHAVLKALNATLHSNLLCRPGPGLGPDNQTEERRASLPGRDDNSYMYILFVMFLFAVTVGSLILGYTRSRKVDKRSDPYHVYIKNRVSMI +>5a15_L mol:protein length:120 BTB/POZ DOMAIN-CONTAINING PROTEIN KCTD16 +SMGSAVPNSFPEVVELNVGGQVYFTRHSTLISIPHSLLWKMFSPKRDTANDLAKDSKGRFFIDRDGFLFRYILDYLRDRQVVLPDHFPEKGRLKREAEYFQLPDLVKLLTPDEIKQSPDE +>4k6a_B mol:protein length:279 Triosephosphate isomerase +MHHHHHHSSGVDLGTENLYFQSNAMRHPLVMGNWKLNGSRHMVHELVSNLRKELAGVAGCAVAIAPPEMYIDMAKREAEGSHIMLGAQNVDLNLSGAFTGETSAAMLKDIGAQYIIIGHSERRTYHKESDELIAKKFAVLKEQGLTPVLCIGETEAENEAGKTEEVCARQIDAVLKTQGAAAFEGAVIAYEPVWAIGTGKSATPAQAQAVHKFIRDHIAKVDANIAEQVIIQYGGSVNASNAAELFAQPDIDGALVGGASLKADAFAVIVKAAEAAKQA +>4yzv_QL mol:protein length:132 30S ribosomal protein S12 +MPTINQLVRKGREKVRKKSKVPALKGAPFRRGVCTVVRTVTPKKPNSALRKVAKVRLTSGYEVTAYIPGEGHNLQEHSVVLIRGGRVKDLPGVRYHIVRGVYDAAGVKDRKKSRSKYGTKKPKEAAKTAAKK +>5iia_D mol:protein length:129 Vitelline envelope sperm lysin receptor +AQTNAAADWDVYCSQDESIPAKFISRLVTSKDQALEKTEINCSNGLVPITQEFGINMMLIQYTRNELLDSPGMCVFWGPYSVPKNDTVVLYTVTARLKWSEGPPTNLSIQCYMPKSPVAPKLEHHHHHH +>7br8_y mol:protein length:176 Small capsomere-interacting protein +MARRLPKPTLQGRLEADFPDSPLLPKFQELNQNNLPNDVFREAQRSYLVFLTSQFCYEEYVQRTFGVPRRQRAIDKRQRASVAGAGAHAHLGGSSATPVQQAQAAASAGTGALASSAPSTAVAQSATPSVSSSISSLRAATSGATAAASAAAAVDTGSGGGGQPHDTAPRGARKKQ +>1aql_A mol:protein length:532 BILE-SALT ACTIVATED LIPASE +AKLGSVYTEGGFVEGVNKKLSLFGDSIDIFKGIPFAAAPKALEKPERHPGWQGTLKAKSFKKRCLQATLTQDSTYGNEDCLYLNIWVPQGRKEVSHDLPVMIWIYGGAFLMGASQGANFLSNYLYDGEEIATRGNVIVVTFNYRVGPLGFLSTGDSNLPGNYGLWDQHMAIAWVKRNIEAFGGDPDNITLFGESAGGASVSLQTLSPYNKGLIKRAISQSGVGLCPWAIQQDPLFWAKRIAEKVGCPVDDTSKMAGCLKITDPRALTLAYKLPLGSTEYPKLHYLSFVPVIDGDFIPDDPVNLYANAADVDYIAGTNDMDGHLFVGMDVPAINSNKQDVTEEDFYKLVSGLTVTKGLRGANATYEVYTEPWAQDSSQETRKKTMVDLETDILFLIPTKIAVAQHKSHAKSANTYTYLFSQPSRMPIYPKWMGADHADDLQYVFGKPFATPLGYRAQDRTVSKAMIAYWTNFARTGDPNTGHSTVPANWDPYTLEDDNYLEINKQMDSNSMKLHLRTNYLQFWTQTYQALPTV +>2acl_C mol:protein length:238 Retinoic acid receptor RXR-alpha +SANEDMPVERILEAELAVEPKTETYVEANMGLNPSSPNDPVTNICQAADKQLFTLVEWAKRIPHFSELPLDDQVILLRAGWNELLIASFSHRSIAVKDGILLATGLHVHRNSAHSAGVGAIFDRVLTELVSKMRDMQMDKTELGCLRAIVLFNPDSKGLSNPAEVEALREKVYASLEAYCKHKYPEQPGRFAKLLLRLPALRSIGLKCLEHLFFFKLIGDTPIDTFLMEMLEAPHQMT +>7p1t_J mol:protein length:265 29 kDa antigen, Cfp29 +MNNLYRDLAPVTEAAWAEIELEAARTFKRHIAGRRVVDVSDPGGPVTAAVSTGRLIDVKAPTNGVIAHLRASKPLVRLRVPFTLSRNEIDDVERGSKDSDWEPVKEAAKKLAFVEDRTIFEGYSAASIEGIRSASSNPALTLPEDPREIPDVISQALSELRLAGVDGPYSVLLSADVYTKVSETSDHGYPIREHLNRLVDGDIIWAPAIDGAFVLTTRGGDFDLQLGTDVAIGYASHDTDTVRLYLQETLTFLCYTAEASVALSH +>7pk6_K mol:protein length:758 Biodegradative arginine decarboxylase +MRALIVYTELTDKDSVISHAVARLASELNDEHVETVIIRDFEDGLAYIRSNTSIDCLLYGRDMSDRDEQIQAHRLITQLHRRQEDVPVFLLSDREEALVAFDRNMMEQVDEFAWILEDSADFIAGRVLAAIQRYRSQLLPPLMKSLIKYSDVHEYSWAAPGHQGGVGFTKTPAGRIYHDFFGENLFRTDIGIERVAVGSLLDHTGAFGECEKNAARIFGADQSYSVVVGTSGSNRTIMQACMTDDDVVVIDRNCHKSIEQGLILTGAKPVYMIPSRNRYGIIGPIYPKEMTPDAIKFKIAANPLTKGKVKQKPAYSVVTNCTYDGVCYNARKVQDLLDGSLDRIHFDEAWYGYARFNPLYRNHFAMRDEERTENEPTIFATHSTHKLLNALSQASFIHVRNGRNAIDFNRFNQAYLMHSTTSPLYAICASNDIAADMMDGNSGRSLTDEVIRESIDFRQSLAYLYKEFLNDDEWFFKPWNQEMVKDPATGKRYAFEDAPVELLMREQSCWVMHPEDKWHGFNDIPDNWAMLDPIKVSILAPGMGDDGKLLDTGVPAALVTAWLNHYGIVPTRTTDFQIMFLFSMGITKGKWGTLVNTLLSFKRHYDNNTALKKVLPEVVASAPEIYGEMGLRDLGDKMFAYLQKNNPGARLNQAYSQLPQVMMTPRDAYQQIVANRVEAVPVDQLMGRVAANSIIPYPPGIPMLLSGENFGDENSPHIHYLRSLQAWDSEFPGFEHETEGTEIIDGQYYVMCVKTCDE +>3pvg_A mol:protein length:331 Casein kinase II subunit alpha +SKARVYADVNVLRPKEYWDYEALTVQWGEQDDYEVVRKVGRGKYSEVFEGINVNNNEKCIIKILKPVKKKKIKREIKILQNLCGGPNIVKLLDIVRDQHSKTPSLIFEYVNNTDFKVLYPTLTDYDIRYYIYELLKALDYCHSQGIMHRDVKPHNVMIDHELRKLRLIDWGLAEFYHPGKEYNVRVASRYFKGPELLVDLQDYDYSLDMWSLGCMFAGMIFRKEPFFYGHDNHDQLVKIAKVLGTDGLNVYLNKYRIELDPQLEALVGRHSRKPWLKFMNADNQHLVSPEAIDFLDKLLRYDHQERLTALEAMTHPYFQQVRAAENSRTRA +>2bcb_A mol:protein length:75 CALBINDIN D9K +KSPEELKGIFEKYAAKEGDPNQLSKEELKLLLQTEFPSLLKGGSTLDELFEELDKNGDGEVSFEEFQVLVKKISQ +>6w6c_B mol:protein length:313 Probable dimethyladenosine transferase +MPKVKSGAIGRRRGRQEQRRELKSAGGLMFNTGIGQHILKNPLIINSIIDKAALRPTDVVLEVGPGTGNMTVKLLEKAKKVVACELDPRLVAELHKRVQGTPVASKLQVLVGDVLKTDLPFFDTCVANLPYQISSPFVFKLLLHRPFFRCAILMFQREFALRLVAKPGDKLYCRLSINTQLLARVDHLMKVGKNNFRPPPKVESSVVRIEPKNPPPPINFQEWDGLVRITFVRKNKTLSAAFKSSAVQQLLEKNYRIHCSVHNIIIPEDFSIADKIQQILTSTGFSDKRARSMDIDDFIRLLHGFNAEGIHFS +>4pbp_B mol:protein length:210 C-reactive protein +MEFFKNLSGKVLQFKTATDNSYVKLYPEKPLSLSAFTLCMRVATELPLDREVILFAYYTPDVDELNVWRERDGRVSLYIQSSKDAAFFRLPPLSTLQTHLCVAWESATGLTAFWMDGRRSLHQVYRKGYSIRSGGTVVLGQDPDSYVGSFDVDQSFVGEIANLQMWDYVLSSAQIKAVYYNQDNRVKGNVFDWDTIEYDVTGNVLVVPDN +>3pdg_A mol:protein length:98 Fibronectin(III)-like module +MVTIDSPVAGERFEAGKDINISATVKSKTPVSKVEFYNGDTLISSDTTAPYTAKITGAAVGAYNLKAVAVLSDGRRIESPVTPVLVKVIVLEHHHHHH +>1ttv_A mol:protein length:107 Ubiquitin-protein ligase E3 Mdm2 +NHISTSDQEKLVQPTPLLLSLLKSAGAQKETFTMKEVLYHLGQYIMAKQLYDEKQQHIVHCSNDPLGELFGVQEFSVKEHRRIYAMISRNLVSANVKESSEDIFGNV +>6mux_Z mol:protein length:211 20S proteasome beta-5 subunit +TTTLAFKFKDGIIVAVDSRASMGSFISSQNVEKIIEINKNILGTMAGGAADCLYWEKYLGKIIKIYELRNNEKISVRAASTILSNILYQYKGYGLCCGIILSGYDHTGFNMFYVDDSGKKVEGNLFSCGSGSTYAYSILDSAYDYNLNLDQAVELARNAIYHATFRDGGSGGKVRVFHIHKNGYDKIIEGEDVFDLHYHYTNPEQKDQYVM +>4wiz_CB mol:protein length:338 Coat protein +MVRKGEKKLAKPATTKAANPQPRRRANNRRRSNRTDAPVSKASTVTGFGRGTNDVHLSGMSRISQAVLPAGTGTDGYVVVDATIVPDLLPRLGHAARIFQRYAVETLEFEIQPMCPANTGGGYVAGFLPDPTDNDHTFDALQATRGAVVAKWWESRTVRPQYTRTLLWTSSGKEQRLTSPGRLILLCVGNNTDVVNVSVLCRWSVRLSVPSLENPEETTAPIMTQGSLYNDSLSTNDFKSILLGSTPLDIAPDGAVFQLDRPLSIDYSLGTGDVDRAVYWHLKKFAGNAGTPAGWFRWGIWDNFNKTFTDGVAYYSDEQPRQILLPVGTVCTRVDSEN +>6b55_D mol:protein length:48 Flower-specific defensin +ARECKTESNTFPGICITKPPCRKACISEKFTDGHCSKILRRCLCTKPC +>4hnp_L mol:protein length:222 Proteasome component C5 +QFNPYGDNGGTILGIAGEDFAVLAGDTRNITDYSINSRYEPKVFDCGDNIVMSANGFAADGDALVKRFKNSVKWYHFDHNDKKLSINSAARNIQHLLYGKRFFPYYVHTIIAGLDEDGKGAVYSFDPVGSYEREQCRAGGAAASLIMPFLDNQVNFKNQYEPGTNGKVKKPLKYLSVEEVIKLVRDSFTSATERHIQVGDGLEILIVTKDGVRKEFYELKRD +>3i4e_B mol:protein length:439 Isocitrate lyase +GPGSMSRQQQAQELQKQWETDPRWKGIKRAFTAEDVVRLRGSIQQEHTLAKRGAEKLWTLINNEPFVNALGALTGNQAMQQVKAGLKAIYLSGWQVAGDANVAGEMYPDQSLYPANSVPLVVKRINNTLTRADQIQWSEGKNPGDEGYVDFFAPIVADAEAGFGGVLNAFELMKAMIEAGASGVHFEDQLASVKKCGHMGGKVLVPTREAVAKLTAARLAADVMGTPTVLVARTDAEAADLITSDIDDNDKPYLTGERTVEGFFRTKPGLEQAISRGLAYAPYADLIWCETGKPDLEYAKKFAEAIHKQFPGKLLSYNCSPSFNWKKNLDDATIAKFQKELGAMGYKFQFITLAGFHALNYSMFNLAHGYARTQMSAFVELQQAEFAAADKGFTAVKHQREVGTGYFDAVTQTVEREASTTALHGSTEDEQFFDGQKVA +>1s89_C mol:protein length:152 Methylglyoxal synthase +MELTTRTLPARKHIALVAHDHCKQMLMSWVERHQPLLEQHVLYATGTTGNLISRATGMNVNAMLSGPMGGDQQVGALISEGKIDVLIFFWDPLNAVPNDPDVKALLRLATVWNIPVATNVATADFIIQSPHFNDAVDILIPDYQRYLADRLK +>7az7_H mol:protein length:6 Peptide 37 +XQAXLF +>4elf_B mol:protein length:166 Dihydrofolate reductase +MIVSFMVAMDENRVIGKDNNLPWRLPSELQYVKKTTMGHPLIMGRKNYEAIGRPLPGRRNIIVTRNEGYHVEGCEVAHSVEEVFELCKNEEEIFIFGGAQIYDLFLPYVDKLYITKIHHAFEGDTFFPEMDMTNWKEVFVEKGLTDEKNPYTYYYHVYEKQQLVPR +>4ji2_B mol:protein length:256 RIBOSOMAL PROTEIN S2 +MPVEITVKELLEAGVHFGHERKRWNPKFARYIYAERNGIHIIDLQKTMEELERTFRFIEDLAMRGGTILFVGTKKQAQDIVRMEAERAGMPYVNQRWLGGMLTNFKTISQRVHRLEELEALFASPEIEERPKKEQVRLKHELERLQKYLSGFRLLKRLPDAIFVVDPTKEAIAVREARKLFIPVIALADTDSDPDLVDYIIPGNDDAIRSIQLILSRAVDLIIQARGGVVEPSPSYALVQEAEATETPEGESEVEA +>6ydp_Ak mol:protein length:325 Mitochondrial ribosomal protein S35 +MAATSLPAWLILKSRAGTFRAFSTAMSPATRSPRPALRTTERTSKPERALRRKALPPRTEKMAVDQDWPSVYPVAAPFKPSAVPLPVRMGYPVKRGVPMAKEGNLELLKIPNFLHLTPVAIKRHCEALKDFCTEWPAALDSDEKCEKHFPIEIDTADYVSAGPSIRNPKARVVTLRVKLSSLNLDDHAKKKLIKLVGDRYCKSTDVLTIKTDRCPLKRQNYDYAVYLLTVLYHESWKTEEWEKKKTEADMEEYIWENSTSEKNILETLLQIKAAEKNLELSKEELLGTKEVEDYRKSVVSLKNEGDNENTLSQYKESVKRLLNLA +>7f5s_Ld mol:protein length:125 60S ribosomal protein L31 +MAPAKKGGEKKKGRSAINEVVTREYTINIHKRIHGVGFKKRAPRALKEIRKFAMKEMGTPDVRIDTRLNKAVWAKGIRNVPYRIRVRLSRKRNEDEDSPNKLYTLVTYVPVTTFKNLQTVNVDEN +>1izl_L mol:protein length:472 Photosystem II: Subunit PsbB +MGLPWYRVHTVLINDPGRLIAAHLMHTALVAGWAGSMALYELATFDPSDPVLNPMWRQGMFVLPFMARLGVTGSWSGWSITGETGIDPGFWSFEGVALAHIVLSGLLFLAACWHWVYWDLELFRDPRTGEPALDLPKMFGIHLFLAGLLCFGFGAFHLTGLFGPGMWVSDPYGLTGSVQPVAPEWGPDGFNPYNPGGVVAHHIAAGIVGIIAGLFHILVRPPQRLYKALRMGNIETVLSSSIAAVFFAAFVVAGTMWYXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGGELNGQTFTDPPTVKSYARKAIFGEIFEFDTETLNSDGIFRTSPRGWFTFAHAVFALLFFFGHIWHGARTLFRDVFSGIDPELSPEQVEWGFYQKVGDVTTRRKEAV +>2y0d_D mol:protein length:478 UDP-GLUCOSE DEHYDROGENASE +HHHHHHGSMNLTIIGSGKVGLVTGACLADIGHDVFCLDVDQAKIDILNNGGVPIHEPGLKEVIARNRSAGRLRFSTDIEAAVAHGDVQFIAVGTPPDEDGSADLQYVLAAARNIGRYMTGFKVIVDKSTVPVGTAERVRAAVAEELAKRGGDQMFSVVSNPEFLKEGAAVDDFTRPDRIVIGCDDDVPGERARELMKKLYAPFNRNHERTLYMDVRSAEFTKYAANAMLATRISFMNELANLADRFGADIEAVRRGIGSDPRIGYHFLYAGCGYGGSCFPKDVEALIRTADEHGQSLQILKAVSSVNATQKRVLADKIVARFGEDLTGRTFAIWGLAFKPNTDDMREAPSRELIAELLSRGARIAAYDPVAQEEARRVIALDLADHPSWLERLSFVDDEAQAARDADALVIVTEWKIFKSPDFVALGRLWKTPVIFDGRNLYEPETMSEQGIEYHPIGRPGSRQAVAARVTGTAPASA +>7pi2_J mol:protein length:343 Cysteine-rich protective antigen +DSRHVFIRTELSFIKNNVPCIRDMFFIYKRELYNICLDDLKGEEDETHIYVQKKVKDSWITLNDLFKETDLTGRPHIFAYVDVEEIIILLCEDEEFSNRKKDMTCHRFYSNDGKEYNNAEITISDYILKDKLLSSYVSLPLKIENREYFLICGVSPYKFKDDNKKDDILCMASHDKGETWGTKIVIKYDNYKLGVQYFFLRPYISKNDLSFHFYVGDNINNVKNVNFIECTHEKDLEFVCSNRDFLKDNKVLQDVSTLNDEYIVSYGNDNNFAECYIFFNNENSILIKPEKYGNTAAGCYGGTFVKIDENRALFIYSSSQGIYNIHTIYYANYEGGGGSEPEA +>1n2r_A mol:protein length:276 HLA class I histocompatibility antigen, BW-44(B-12) B*4403 alpha chain +GSHSMRYFYTAMSRPGRGEPRFITVGYVDDTLFVRFDSDATSPRKEPRAPWIEQEGPEYWDRETQISKTNTQTYRENLRTALRYYNQSEAGSHIIQRMYGCDVGPDGRLLRGYDQDAYDGKDYIALNEDLSSWTAADTAAQITQRKWEAARVAEQLRAYLEGLCVESLRRYLENGKETLQRADPPKTHVTHHPISDHEVTLRCWALGFYPAEITLTWQRDGEDQTQDTELVETRPAGDRTFQKWAAVVVPSGEEQRYTCHVQHEGLPKPLTLRWEP +>2nxx_B mol:protein length:235 Ultraspiracle (USP, NR2B4) +MTSNLQADMPLERIIEAEKRVECNDPLVALVVNENNTTVNNICQATHKQLFQLVQWAKLVPHFTSLPLTDQVQLLRAGWNELLIAAFSHRSMQAQDAIVLATGLTVNKSTAHAVGVGNIYDRVLSELVNKMKEMKMDKTELGCLRAIILYNPDVRGIKSVQEVEMLREKIYGVLEEYTRTTHPNEPGRFAKLLLRLPALRSIGLKCLEHLFFFKLIGDVPIDTFLMEMLEGTTDS +>4s3s_A mol:protein length:143 Thermonuclease +ATSTKKLHKEPATLIKAIDGDTAKLMYKGQPMTFRLLLVDTPEFNEKYGPEASAFTKKMVENAKKIEVEFDKGQRTDKYGRGLAYKYADGKMVNEALVRQGLAKVAYVYKGNNTHEQLLRKAEAQAKKEKLNIWSEDNADSGQ +>4e9x_C mol:protein length:339 Multicopper oxidase +MAEREFDMTIEEVTIKVAPGLDYKVFGFNGQVPGPLIHVQEGDDVIVNVTNNTSLPHTIHWHGVHQKGTWRSDGVPGVTQQPIEAGDSYTYKFKADRIGTLWYHCHVNVNEHVGVRGMWGPLIVDPKQPLPIEKRVTKDVIMMMSTWESAVADKYGEGGTPMNVADYFSVNAKSFPLTQPLRVKKGDVVKIRFFGAGGGIHAMHSHGHDMLVTHKDGLPLDSPYYADTVLVSPGERYDVIIEADNPGRFIFHDHVDTHVTAGGKHPGGPITVIEYDGVPVDDWYVWKDKDYDPNFFYSESLKQGYGMFDHDGFKGEFEQRQRRPGRKLAAALEHHHHHH +>6tg2_A mol:protein length:351 MotA +MGSSHHHHHHSSGLVPRGSHMDVVIASSGGGWQEAQDKALWAPAAKALNITYTQDTFQNWAEARAQVESGSVTWDIIQIGIADEPQAKAAGVLEKLDPDIVNKADFPPGSVTDSFVANSNYSTLIAWNKKTYGDNGPKSMADFFDVKKFPGKRALWNQPIGMIEAAALALGTPRDKVYEFLSTEEGRKAAIAKLTELAPSVSVWWESGAQAAQLIKDGEVDMIITWGGRVQGAINDGANFAYTFNDAQLGTDGYAIVKGAPHRDAAMRFLKEMSKAEYQKDLPNSFATAPANMKAYDLAKYTPEKMATMASAPENVAVQYSVDPNFWAKHAKWASEAYDNVRLSRHHHHHH +>6p60_K mol:protein length:212 Antibody A12V163-a.02 light chain +QFVLAQPPSVSGAPGQRVTLSCTGSNSNIGVNYVQWYQQLPGTAPKLLIYENNKRPSGVSDRFSGSQSGTSASLTITGLQSEDEADYYCQCYDISLGAHVFGSGTELTVLGQPKAAPSVTLFPPSSEELQANKATLVCLISDFYPGAVEVAWKADGSAVNAGVETTKPSKQSNNKYAASSYLSLTSDQWKSHKSYSCQVTHEGSTVEKTVAP +>5pg2_A mol:protein length:138 Bromodomain adjacent to zinc finger domain protein 2B +MHHHHHHSSGVDLGTENLYFQSMSVKKPKRDDSKDLALCSMILTEMETHEDAWPFLLPVNLKLVPGYKKVIKKPMDFSTIREKLSSGQYPNLETFALDVRLVFDNCETFNEDDSDIGRAGHNMRKYFEKKWTDTFKVS +>2oa6_C mol:protein length:320 Aristolochene synthase +MKKPNGTNGASSSLEPPPSTFQPLCHPLVEEVSKEVDGYFLQHWNFPNEKARKKFVAAGFSRVTCLYFPKALDDRIHFACRLLTVLFLIDDLLEYMSFEEGSAYNEKLIPISRGDVLPDRSIPVEYIIYDLWESMRAHDREMADEILEPVFLFMRAQTDRTRARPMGLGGYLEYRERDVGKELLAALMRFSMGLKLSPSELQRVREIDANCSKHLSVVNDIYSYEKELYTSKTAHSEGGILCTSVQILAQEADVTAEAAKRVLFVMCREWELRHQLLVARLSAEGLETPGLAAYVEGLEYQMSGNELWSQTTLRYSVVVD +>6qz0_5b mol:protein length:448 Major capsid protein +MRITFNDVKTSLGITESYDIVNAIRNSQGDNFKSYVPLATANNVAEVGAGILINQTVQNDFITSLVDRIGLVVIRQVSLNNPLKKFKKGQIPLGRTIEEIYTDITKEKQYDAEEAEQKVFEREMPNVKTLFHERNRQGFYHQTIQDDSLKTAFVSWGNFESFVSSIINAIYNSAEVDEYEYMKLLVDNYYSKGLFTTVKIDEPTSSTGALTEFVKKMRATARKLTLPQGSRDWNSMAVRTRSYMEDLHLIIDADLEAELDVDVLAKAFNMNRTDFLGNVTVIDGFASTGLEAVLVDKDWFMVYDNLHKMETVRNPRGLYWNYYYHVWQTLSVSRFANAVAFVSGDVPAVTQVIVSPNIAAVKQGGQQQFTAYVRATNAKDHKVVWSVEGGSTGTAITGDGLLSVSGNEDNQLTVKATVDIGTEDKPKLVVGEAVVSIRPNNASGGAQA +>7eqd_3 mol:protein length:62 Light-harvesting protein B-870 alpha chain +MWRIWQLFDPRQALVGLATFLFVLALLIHFILLSTERFNWLEGASTKPVQTSMVMPSSDLAV +>5k5o_A mol:protein length:98 AspA +GKISTDKYIFLTPRAYIIVHLLKVGKAKASEISENTQIPYQTVIQNIRWLLAEGYVVKEQKGEEIYYKLTDKGKQLATAELEKIRKLVEVVQHHHHHH +>3dby_N mol:protein length:269 uncharacterized protein +MSLERNYEESALFEHQFWLKVLTDHAQFLLDALAPKEKEDIKKATYFVETFTNLLNKVRNVNLMAFSKEAEQAAKEIRAFKLNIIQKQLEGKITIHFTPTFINHMVNEVEEYIAVLEFLKKGEVPPVFHELHYHLVWLTDAAGHAGSISGGLDLVEKRLKEKSEEFTKHFEQFYLKAVEMTGYLRTELHHFPALKKFTKDVSLELKLFSHFLHEVEELELSNEVLSVLSARMADHMAREECYYLLKLAQSSGLEMPKCNPLEGHHHHHH +>1sfo_E mol:protein length:215 DNA-directed RNA polymerases I, II, and III 27 kDa polypeptide +MDQENERNISRLWRAFRTVKEMVKDRGYFITQEEVELPLEDFKAKYCDSMGRPQRKMMSFQANPTEESISKFPDMGSLWVEFCDEPSVGVKTMKTFVIHIQEKNFQTGIFVYQNNITPSAMKLVPSIPPATIETFNEAALVVNITHHELVPKHIRLSSDEKRELLKRYRLKESQLPRIQRADPVALYLGLKRGEVVKIIRKSETSGRYASYRICM +>2zee_B mol:protein length:329 Glutaminyl-peptide cyclotransferase +ASAWPEEKNYHQPAILNSSALRQIAEGTSISEMWQNDLQPLLIERYPGSPGSYAARQHIMQRIQRLQADWVLEIDTFLSQTPYGYRSFSNIISTLNPTAKRHLVLACHYDSKYFSHWNNRVFVGATDGAVPCAMMLELARALDKKLLSLKTVSDSKPDLSLQLIFFDGEEAFLHWSPQDSLYGSRHLAAKMASTPHPPGARGTSQLHGMDLLVLLDLIGAPNPTFPNFFPNSARWFERLQAIEHELHELGLLKDHSLEGRYFQNYSYGGVIQDDHIPFLRRGVPVLHLIPSPFPEVWHTMDDNEENLDESTIDNLNKILQVFVLEYLHL +>6cae_1c mol:protein length:239 30S ribosomal protein S3 +MGNKIHPIGFRLGITRDWESRWYAGKKQYRHLLLEDQRIRGLLEKELYSAGLARVDIERAADNVAVTVHVAKPGVVIGRGGERIRVLREELAKLTGKNVALNVQEVQNPNLSAPLVAQRVAEQIERRFAVRRAIKQAVQRVMESGAKGAKVIVSGRIGGAEQARTEWAAQGRVPLHTLRANIDYGFALARTTYGVLGVKAYIFLGEVIGGQKPKARPELPKAEERPRRRRPAVRVKKEE +>3hhq_J mol:protein length:167 Deoxyuridine 5'-triphosphate nucleotidohydrolase +MGSSHHHHHHSSGLVPRGSHMTATSDKVLKIQLRSASATVPTKGSATAAGYDIYASQDITIPAMGQGMVSTDISFTVPVGTYGRIAPRSGLAVKNGIQTGAGVVDRDYTGEVKVVLFNHSQRDFAIKKGDRVAQLILEKIVDDAQIVVVDSLEESARGAGGFGSTGN +>2a3s_A mol:protein length:101 Myocyte Nuclear Factor +ESKPPYSYAQLIVQAISSAQDRQLTLSGIYAHITKHYPYYRTADKGWQNSIRHNLSLNRYFIKVPRSQEEPGKGSFWRIDPASEAKLVEQAFRKRRQRGVS +>5dcp_A mol:protein length:175 Filamin-B +SMMNGLGFKPFDLVIPFAVRKGEITGEVHMPSGKTATPEIVDNKDGTVTVRYAPTEVGLHEMHIKYMGSHIPESPLQFYVNYPNSGSVSAYGPGLVYGVANKTATFTIVTEDAGEGGLDLAIEGPSKAEISCIDNKDGTCTVTYLPTLPGDYSILVKYNDKHIPGSPFTAKITDD +>2qsp_B mol:protein length:145 Hemoglobin subunit beta +MLTAEEKAAVTAFWGKVKVDEVGGEALGRLLVVYPWTQRFFESFGDLSTADAVMNNPKVKAHGKKVLDSFSNGMKHLDDLKGTFAALSELHCDKLHVDPENFKLLGNVLVVVLARNFGKEFTPVLQADFQKVVAGVANALAHRYH +>3fp9_H mol:protein length:153 Proteasome-associated ATPase +MPSGYGVLLATHDDDTVDVFTSGRKMRLTCSPNIDAASLKKGQTVRLNEALTVVEAGTFEAVGEISTLREILADGHRALVVGHADEERVVWLADPLIAEDLPDGLPEALNDDTRPRKLRPGDSLLVDTKAGYAFERIPKAEVEDLVLEELVPR +>6v3o_E mol:protein length:970 Phosphoenolpyruvate carboxylase +MASTKAPGPGEKHHSIDAQLRQLVPGKVSEDDKLIEYDALLVDRFLNILQDLHGPSLREFVQECYEVSADYEGKGDTTKLGELGAKLTGLAPADAILVASSILHMLNLANLAEEVQIAHRRRNSKLKKGGFADEGSATTESDIEETLKRLVSEVGKSPEEVFEALKNQTVDLVFTAHPTQSARRSLLQKNARIRNCLTQLNAKDITDDDKQELDEALQREIQAAFRTDEIRRAQPTPQDEMRYGMSYIHETVWKGVPKFLRRVDTALKNIGINERLPYNVSLIRFSSWMGGDRDGNPRVTPEVTRDVCLLARMMAANLYIDQIEELMFELSMWRCNDELRVRAEELHSSSGSKVTKYYIEFWKQIPPNEPYRVILGHVRDKLYNTRERARHLLASGVSEISAESSFTSIEEFLEPLELCYKSLCDCGDKAIADGSLLDLLRQVFTFGLSLVKLDIRQESERHTDVIDAITTHLGIGSYREWSEDKRQEWLLSELRGKRPLLPPDLPQTEEIADVIGAFHVLAELPPDSFGPYIISMATAPSDVLAVELLQRECGVRQPLPVVPLFERLADLQSAPASVERLFSVDWYMDRIKGKQQVMVGYSDSGKDAGRLSAAWQLYRAQEEMAQVAKRYGVKLTLFHGRGGTVGRGGGPTHLAILSQPPDTINGSIRVTVQGEVIEFCFGEEHLCFQTLQRFTAATLEHGMHPPVSPKPEWRKLMDEMAVVATEEYRSVVVKEARFVEYFRSATPETEYGRMNIGSRPAKRRPGGGITTLRAIPWIFSWTQTRFHLPVWLGVGAAFKFAIDKDVRNFQVLKEMYNEWPFFRVTLDLLEMVFAKGDPGIAGLYDELLVAEELKPFGKQLRDKYVETQQLLLQIAGHKDILEGDPFLKQGLVLRNPYITTLNVFQAYTLKRIRDPNFKVTPQPPLSKEFADENKPAGLVKLNPASEYPPGLEDTLILTMKGIAAGMQNTG +>2gf0_C mol:protein length:199 GTP-binding protein Di-Ras1 +SMPEQSNDYRVVVFGAGGVGKSSLVLRFVKGTFRDTYIPTIEDTYRQVISCDKSVCTLQITDTTGSHQFPAMQRLSISKGHAFILVFSVTSKQSLEELGPIYKLIVQIKGSVEDIPVMLVGNKCDETQREVDTREAQAVAQEWKCAFMETSAKMNYNVKELFQELLTLETRRNMSLNIDGKRSGKQKRTDRVKGKCTLM +>1p3q_Q mol:protein length:54 Vacuolar protein sorting-associated protein VPS9 +SSLIKKIEENERKDTLNTLQNMFPDMDPSLIEDVCIAAASRIGPCVDALLSLSE +>3c91_O mol:protein length:233 Proteasome subunit alpha +MQQGQMAYDRAITVFSPDGRLFQVEYAREAVKKGSTALGMKFANGVLLISDKKVRSRLIEQNSIEKIQLIDDYVAAVTSGLVADARVLVDFARISAQQEKVTYGSLVNIENLVKRVADQMQQYTQYGGVRPYGVSLIFAGIDQIGPRLFDCDPAGTINEYKATAIGSGKDAVVSFLEREYKENLPEKEAVTLGIKALKSSLEEGEELKAPEIASITVGNKYRIYDQEEVKKFL +>4wra_1A mol:protein length:105 30S ribosomal protein S10 +MPKIRIKLRGFDHKTLDASAQKIVEAARRSGAQVSGPIPLPTRVRRFTVIRGPFKHKDSREHFELRTHNRLVDIINPNRKTIEQLMTLDLPTGVEIEIKTVGGGR +>4n06_A mol:protein length:347 CRISPR-associated endonuclease Cas1 1 +GGMRLVVDGFGKYLGIENGLIVVKEKGKALRKVRPEDLKQVLIIGKAAISSDAIKLLLKNRVDVVFLDFNGEILGRLSHPLIGTAKTRREQYLAYGDKRGVHLAKEFIKAKMANQMAILTNLAKARKDSNPEVAESLLKAKKEIDACLNELDGVEAEMIDKVRERLLGIEGKASKHYWDAISLVIPEEYRFNGRRGIEIGSPRYAKDIVNAMLNYGYSILLAECVKAVELAGLDPYAGFLHVDVSGRSSLAIDLMENFRQQVVDRVVLRLISYRQIKPEDCEKRNMVCQLSDNARRLLLASLLERLDSKTQYRGRNLAYSSIILLHARDVVAFLRGERRYEGFVQKW +>6d6e_A mol:protein length:129 Lysozyme C +KVFGRCELAAAMKRHGLDNYRGYSLGNWVCAAKFESNFNTQATNRNTDGSTDYGILQINSRWWCNDGRTPGSRNLCNIPCSALLSSDITASVNCAKKIVSDGNGMNAWVAWRNRCKGTDVQAWIRGCRL +>1v1m_A mol:protein length:400 2-OXOISOVALERATE DEHYDROGENASE ALPHA SUBUNIT +SSLDDKPQFPGASAEFIDKLEFIQPNVISGIPIYRVMDRQGQIINPSEDPHLPKEKVLKLYKSMTLLNTMDRILYESQRQGRISFYMTNYGEEGTHVGSAAALDNTDLVFGQYREAGVLMYRDYPLELFMAQCYGNISDLGKGRQMPVHYGCKERHFVTISSPLATQIPQAVGAAYAAKRANANRVVICYFGEGAASEGDAHAGFNFAATLECPIIFFCRNNGYAISTPTSEQYRGDGIAARGPGYGIMSIRVDGNDVFAVYNATKEARRRAVAENQPFLIEAMTYRIGHASTSADSSAFRSVDEVNYWDKQDHPISRLRHYLLSQGWWDEEQEKAWRKQSRRKVMEAFEQAERKPKPNPNLLFSDVYQEMPAQLRKQQESLARHLQTYGEHYPLDHFDK +>7pak_H mol:protein length:132 30S ribosomal protein S9 +MEKQSYYGLGRRKSSSAKVYLTPTQDKGKITVNRRDPSEYFPNKLVIQDMEQPLDLTDLKKNFDINVVVKGGGFTGQAGAIRLGIVRALLQFNPELKKILKSKKLTTRDKRVKERKKFGLYGARRAPQFTKR +>4gob_A mol:protein length:230 Kaede-type Fluorescent Protein +MSVIKSDMKIKLRMEGTVNGHKFVIEGEGEGKPYEGTQTMNLKVKEGAPLPFAYDILTTVFHYGNRVFAKYPKHIPDYFKQSFPEGYSWERSMTFEDGGICTARNDITLEGDCFFNEIRFDGVNFPPNGPVMQKKTLKWEPSTEKMYVRDGVLTGDINMALLLEGGGHYRCDFKTTYKAKKGVQLPDYHFVDHCIEILSHDKDYNNVKLYEHAVAHSGLPRQAKHHHHHH +>5f5k_B mol:protein length:7 Peptidic derivative of Gurken: ACE-ARG-LYS-VAL-ARG-MET-ALA-aldehyde +XRKVRMX +>6rkm_P mol:protein length:12 Cellular tumor antigen p53 +KLMFKTEGPDSD +>2p1m_B mol:protein length:594 TRANSPORT INHIBITOR RESPONSE 1 protein +MQKRIALSFPEEVLEHVFSFIQLDKDRNSVSLVCKSWYEIERWCRRKVFIGNCYAVSPATVIRRFPKVRSVELKGKPHFADFNLVPDGWGGYVYPWIEAMSSSYTWLEEIRLKRMVVTDDCLELIAKSFKNFKVLVLSSCEGFSTDGLAAIAATCRNLKELDLRESDVDDVSGHWLSHFPDTYTSLVSLNISCLASEVSFSALERLVTRCPNLKSLKLNRAVPLEKLATLLQRAPQLEELGTGGYTAEVRPDVYSGLSVALSGCKELRCLSGFWDAVPAYLPAVYSVCSRLTTLNLSYATVQSYDLVKLLCQCPKLQRLWVLDYIEDAGLEVLASTCKDLRELRVFPSEPFVMEPNVALTEQGLVSVSMGCPKLESVLYFCRQMTNAALITIARNRPNMTRFRLCIIEPKAPDYLTLEPLDIGFGAIVEHCKDLRRLSLSGLLTDKVFEYIGTYAKKMEMLSVAFAGDSDLGMHHVLSGCDSLRKLEIRDCPFGDKALLANASKLETMRSLWMSSCSVSFGACKLLGQKMPKLNVEVIDERGAPDSRPESCPVERVFIYRTVAGPRFDMPGFVWNMDQDSTMRFSRQIITTNGL +>1jf1_B mol:protein length:100 beta-2-microglobulin +MIQRTPKIQVYSRHPAENGKSNFLNCYVSGFHPSDIEVDLLKNGERIEKVEHSDLSFSKDWSFYLLYYTEFTPTEKDEYACRVNHVTLSQPKIVKWDRDM +>7vot_Y mol:protein length:53 Rsp_7571 Protein-Y PufY +MPEVSEFAFRLMMAAVIFVGVGIMFAFAGGHWFVGLVVGGLVAAFFAATPNSN +>7o11_C mol:protein length:308 Probable ABC transporter ATP-binding protein NosF +MNAVEIQGVSQRYGSMTVLHDLNLNLGEGEVLGLFGHNGAGKTTSMKLILGLLSPSEGQVKVLGRAPNDPQVRRQLGYLPENVTFYPQLSGRETLRHFARLKGAALTQVDELLEQVGLAHAADRRVKTYSKGMRQRLGLAQALLGEPRLLLLDEPTVGLDPIATQDLYLLIDRLRQRGTSIILCSHVLPGVEAHINRAAILAKGCLQAVGSLSQLRAEAGLPVRIRASGISERDSWLQRWTDAGHSARGLSESSIEVVAVNGHKLVLLRQLLGEGEPEDIEIHQPSLEDLYRYYMERAGDVRAQEGRL +>7nt9_A mol:protein length:1287 Spike glycoprotein +MGILPSPGMPALLSLVSLLSVLLMGCVAETGMFVFLVLLPLVSSQCVNLTTRTQLPPAYTNSFTRGVYYPDKVFRSSVLHSTQDLFLPFFSNVTWFHAIHVSGTNGTKRFDNPVLPFNDGVYFASTEKSNIIRGWIFGTTLDSKTQSLLIVNNATNVVIKVCEFQFCNDPFLGVYYHKNNKSWMESEFRVYSSANNCTFEYVSQPFLMDLEGKQGNFKNLREFVFKNIDGYFKIYSKHTPINLVRDLPQGFSALEPLVDLPIGINITRFQTLLALHRSYLTPGDSSSGWTAGAAAYYVGYLQPRTFLLKYNENGTITDAVDCALDPLSETKCTLKSFTVEKGIYQTSNFRVQPTESIVRFPNITNLCPFGEVFNATRFASVYAWNRKRISNCVADYSVLYNSASFSTFKCYGVSPTKLNDLCFTNVYADSFVIRGDEVRQIAPGQTGKIADYNYKLPDDFTGCVIAWNSNNLDSKVGGNYNYLYRLFRKSNLKPFERDISTEIYQAGSTPCNGVEGFNCYFPLQSYGFQPTNGVGYQPYRVVVLSFELLHAPATVCGPKKSTNLVKNKCVNFNFNGLTGTGVLTESNKKFLPFQQFGRDIADTTDAVRDPQTLEILDITPCSFGGVSVITPGTNTSNQVAVLYQDVNCTEVPVAIHADQLTPTWRVYSTGSNVFQTRAGCLIGAEHVNNSYECDIPIGAGICASYQTQTNSPSRASSVASQSIIAYTMSLGAENSVAYSNNSIAIPTNFTISVTTEILPVSMTKTSVDCTMYICGDSTECSNLLLQYGSFCTQLNRALTGIAVEQDKNTQEVFAQVKQIYKTPPIKDFGGFNFSQILPDPSKPSKRSFIEDLLFNKVTLADAGFIKQYGDCLGDIAARDLICAQKFNGLTVLPPLLTDEMIAQYTSALLAGTITSGWTFGAGAALQIPFAMQMAYRFNGIGVTQNVLYENQKLIANQFNSAIGKIQDSLSSTASALGKLQDVVNQNAQALNTLVKQLSSNFGAISSVLNDILSRLDPPEAEVQIDRLITGRLQSLQTYVTQQLIRAAEIRASANLAATKMSECVLGQSKRVDFCGKGYHLMSFPQSAPHGVVFLHVTYVPAQEKNFTTAPAICHDGKAHFPREGVFVSNGTHWFVTQRNFYEPQIITTDNTFVSGNCDVVIGIVNNTVYDPLQPELDSFKEELDKYFKNHTSPDVDLGDISGINASVVNIQKEIDRLNEVAKNLNESLIDLQELGKYEQSGRENLYFQGGGGSGYIPEAPRDGQAYVRKDGEWVLLSTFLGHHHHHH +>5euj_T mol:protein length:573 Pyruvate decarboxylase +MYTVGMYLAERLAQIGLKHHFAVAGDYNLVLLDQLLLNKDMEQVYCCNELNCGFSAEGYARARGAAAAIVTFSVGAISAMNAIGGAYAENLPVILISGSPNTNDYGTGHILHHTIGTTDYNYQLEMVKHVTCAAESIVSAEEAPAKIDHVIRTALRERKPAYLEIACNVAGAECVRPGPINSLLRELEVDQTSVTAAVDAAVEWLQDRQNVVMLVGSKLRAAAAEKQAVALADRLGCAVTIMAAAKGFFPEDHPNFRGLYWGEVSSEGAQELVENADAILCLAPVFNDYATVGWNSWPKGDNVMVMDTDRVTFAGQSFEGLSLSTFAAALAEKAPSRPATTQGTQAPVLGIEAAEPNAPLTNDEMTRQIQSLITSDTTLTAETGDSWFNASRMPIPGGARVELEMQWGHIGWSVPSAFGNAVGSPERRHIMMVGDGSFQLTAQEVAQMIRYEIPVIIFLINNRGYVIEIAIHDGPYNYIKNWNYAGLIDVFNDEDGHGLGLKASTGAELEGAIKKALDNRRGPTLIECNIAQDDCTETLIAWGKRVAATNSRKPQALVPRGSGGGLEHHHHHH +>5y6p_A2 mol:protein length:318 LR_gamma4 +MDSPAFAVNGMFSAVKVGNSSFTENKVTAVSKTAPTASVRMVVDPFQRKFQSIGKIGIDYSRPKKLATYKRVGYSVGLDFPNAVSMAGHYSLTDCTRAGGAAKILMKYDEYCAKGMLQVYKRSAVSTGVYTTKCTEATQPGVAYDVRVFNRTAAFRQAQKPVNVRLGEQYAARKACVTLAHNCSREEAQFKNMPMSCATFLAGKMEAMGTCYRTVRPSSKAEDYMAGSVRMQVYQKGNASGVYPVGGCEDGHAKGDADLRRVIALASEYRAAQQGAAAVTGAQYASSKMAIQLYGHSCNHEEGQFCDYPAVAAAMCRY +>7qgr_S mol:protein length:179 50S ribosomal protein L5 +MAKLHDYYKDEVVKKLMTEFNYNSVMQVPRVEKITLNMGVGEAIADKKLLDNAAADLAAISGQKPLITKARKSVAGFKIRQGYPIGCKVTLRGERMWEFFERLITIAVPRIRDFRGLSAKSFDGRGNYSMGVREQIIFPEIDYDKVDRVRGLDITITTTAKSDEEGRALLAAFDFPFRK +>3q9i_A mol:protein length:10 Cyclic pseudo-peptide LV(4BF)FA(ORN)(HAO)LK(ORN) +LVYFAAXLKA +>4a35_A mol:protein length:441 MITOCHONDRIAL ENOLASE SUPERFAMILY MEMBER 1 +SMVRGRISRLSVRDVRFPTSLGGHGADAMHTDPDYSAAYVVIETDAEDGIKGCGITFTLGKGTEVVVCAVNALAHHVLNKDLKDIVGDFRGFYRQLTSDGQLRWIGPEKGVVHLATAAVLNAVWDLWAKQEGKPVWKLLVDMDPRMLVSCIDFRYITDVLTEEDALEILQKGQIGKKEREKQMLAQGYPAYTTSCAWLGYSDDTLKQLCAQALKDGWTRFKVKVGADLQDDMRRCQIIRDMIGPEKTLMMDANQRWDVPEAVEWMSKLAKFKPLWIEEPTSPDDILGHATISKALVPLGIGIATGEQCHNRVIFKQLLQAKALQFLQIDSCRLGSVNENLSVLLMAKKFEIPVCPHAGGVGLCELVQHLIIFDYISVSASLENRVCEYVDHLHEHFKYPVMIQRASYMPPKDPGYSTEMKEESVKKHQYPDGEVWKKLLPA +>3zpv_S mol:protein length:62 PROTEIN PYGOPUS +GAMAIYPCGMCHKEVNDNDEAVFCESGCNFFFHRTCVGLTEAAFQMLNKEVFAEWCCDKCVS +>7y15_C mol:protein length:71 Guanine nucleotide-binding protein G(I)/G(S)/G(O) subunit gamma-2 +MASNNTASIAQARKLVEQLKMEANIDRIKVSKAAADLMAYCEAHAKEDPLLTPVPASENPFREKKFFCAIL +>3glh_D mol:protein length:376 DNA polymerase III subunit tau +GPHMSYQVLARKWRPQTFADVVGQEHVLTALANGLSLGRIHHAYLFSGTRGVGKTSIARLLAKGLNCETGITATPCGVCDNCREIEQGRFVDLIEIDAASRTKVEDTRDLLDNVQYAPARGRFKVYLIDEVHMLSRHSFNALLKTLEEPPEHVKFLLATTDPQKLPVTILSRCLQFHLKALDVEQIRHQLEHILNEEHIAHEPRALQLLARAAEGSLRDALSLTDQAIASGDGQVSTQAVSAMLGTLDDDQALSLVEAMVEANGERVMALINEAAARGIEWEALLVEMLGLLHRIAMVQLSPAALGNDMAAIELRMRELARTIPPTDIQLYYQTLLIGRKELPYAPDRRMGVEMTLLRALAFHPRMPLPEPEVPRQ +>3k6s_C mol:protein length:1095 Integrin alpha-X +FNLDTEELTAFRVDSAGFGDSVVQYANSWVVVGAPQKITAANQTGGLYQCGYSTGACEPIGLQVPPEAVNMSLGLSLASTTSPSQLLACGPTVHHECGRNMYLTGLCFLLGPTQLTQRLPVSRQECPRQEQDIVFLIDGSGSISSRNFATMMNFVRAVISQFQRPSTQFSLMQFSNKFQTHFTFEEFRRSSNPLSLLASVHQLQGFTYTATAIQNVVHRLFHASYGARRDAAKILIVITDGKKEGDSLDYKDVIPMADAAGIIRYAIGVGLAFQNRNSWKELNDIASKPSQEHIFKVEDFDALKDIQNQLKEKIFAIEGTETTSSSSFELEMAQEGFSAVFTPDGPVLGAVGSFTWSGGAFLYPPNMSPTFINMSQENVDMRDSYLGYSTELALWKGVQSLVLGAPRYQHTGKAVIFTQVSRQWRMKAEVTGTQIGSYFGASLCSVDVDSDGSTDLVLIGAPHYYEQTRGGQVSVCPLPRGWRRWWCDAVLYGEQGHPWGRFGAALTVLGDVNGDKLTDVVIGAPGEEENRGAVYLFHGVLGPSISPSHSQRIAGSQLSSRLQYFGQALSGGQDLTQDGLVDLAVGARGQVLLLRTRPVLWVGVSMQFIPAEIPRSAFECREQVVSEQTLVQSNICLYIDKRSKNLLGSRDLQSSVTLDLALDPGRLSPRATFQETKNRSLSRVRVLGLKAHCENFNLLLPSCVEDSVTPITLRLNFTLVGKPLLAFRNLRPMLAADAQRYFTASLPFEKNCGADHICQDNLGISFSFPGLKSLLVGSNLELNAEVMVWNDGEDSYGTTITFSHPAGLSYRYVAEGQKQGQLRSLHLTCDSAPVGSQGTWSTSCRINHLIFRGGAQITFLATFDVSPKAVLGDRLLLTANVSSENNTPRTSKTTFQLELPVKYAVYTVVSSHEQFTKYLNFSESEEKESHVAMHRYQVNNLGQRDLPVSINFWVPVELNQEAVWMDVEVSHPQNPSLRCSSEKIAPPASDFLAHIQKNPVLDCSIAGCLRFRCDVPSFSVQEELDFTLKGNLSFGWVRQILQKKVSVVSVAEITFDTSVYSQLPGQEAFMRAQTTTVLEKYKVHGCGGLENLYFQ +>3tvu_C mol:protein length:769 Acetyl-CoA carboxylase +MASGSMHLRPIATPYPVKEWLQPKRYKAHLMGTTYVYDFPELFRQASSSQWKNFSADVKLTDDFFISNELIEDENGELTEVEREPGANAIGMVAFKITVKTPEYPRGRQFVVVANDITFKIGSFGPQEDEFFNKVTEYARKRGIPRIYLAANSGARIGMAEEIVPLFQVAWNDAANPDKGFQYLYLTSEGMETLKKFDKENSVLTERTVINGEERFVIKTIIGSEDGLGVECLRGSGLIAGATSRAYHDIFTITLVTCRSVGIGAYLVRLGQRAIQVEGQPIILTGASALNKVLGREVYTSNLQLGGTQIMYNNGVSHLTAVDDLAGVEKIVEWMSYVPAKRNMPVPILETKDTWDRPVDFTPTNDETYDVRWMIEGRETESGFEYGLFDKGSFFETLSGWAKGVVVGRARLGGIPLGVIGVETRTVENLIPADPANPNSAETLIQQAGQVWFPNSAFKTAQAINDFNNGEQLPMMILANWRGFSGGQRDMFNEVLKYGSFIVDALVDYKQPIIIYIPPTGELRGGSWVVVDPTINADQMEMYADVNARAGVLEPEGTVEIKFRREKLLDTMNRLDDKYRELRSQLSNKSLAPEVHQQISKQLADRERELLPIYGQISLQFADLHDRSSRMVAKGVISKELEWTEARRFFFWRLRRRLNEEYLIKRLSHQVGEASRLEKIARIRSWYPASVDHEDDRQVATWIEENYKTLDDKLKGLKLESFAQDLAKKIRSDHDNAIDGLSEVIKMLSTDDKEKLLKTLKLEHHHHHH +>2kj4_A mol:protein length:87 plasminogen +YVEFSEECMHGSGENYDGKISKTMSGLECQAWDSQSPHAHGYIPSKFPNKNLKKNYCRNPDRDLRPWCFTTDPNKRWEYCDIPRCAA +>7s3d_G mol:protein length:782 Photosystem I P700 chlorophyll a apoprotein A1 +MTASPPKRNQASAATEQSPIPTSFERWAKPGHFDRTLARGPKTTTWIWNLHADAHDFDSHTNDLQDISRKIFSAHFGHLAVVFVWLSGMYFHGARFSNFSSWMADPTHIRPSAQVVWPLVGQDILNGDMGGGFRGIQITSGLFQMWRGEGFTNEFQLYCTAIGALVMAGLMIFAGWFHYHVRSPKLEWFQNVQSMLNHHLAGLLGLGSLGWAGHLIHVALPTNKLLDAGVAPQDIPLPHEFVLDKALMAELYPSFAQGIRPFFTLNWATYSDFLTFNGGLNPVTGGLWMTDIAHHHVAIAVLFIFAGHMYRTNWGIGHSIRTMLEDARHPKMLPFLSFIGPVGHRGLFEVLTTSWHAQLSINLAMMGSLSIIVAQHMYSMPPYPYLATDYGTVTSLFTHHMWIGGFLIVGAAAHAGIFMVRDYDPAENVNNVLDRVLRHRDAIISHLVWVCQFLGFHSFAMYCHNDTMRAFGRPQDMFSDTGIQLQPIFAQWVQHIQTMAVGSAQVAEPLGDALGGIQNIALSGVGTTAPGVASPASYAFGGGLVAVGGKVAMMPISLGTADFLIHHIHAFTIHVTVLVLLKGVLFARNSRLIPDKSELGFRFPCDGPGRGGTCQVSAWDHVFLGLFWMYNSIAMVIFHFFWKMQSDVWGAVDANGTVSHITGGNFAQSSITINGWLRDFLWAQATQVISSYGSALSAYGLMFLAGHFVFAFSLMFLFSGRGYWQELIESIVWAHNKLRITTAIQPRALSITQGRAVGAAHYLLGSIVTTWAFFLARMAAIG +>1hqz_9 mol:protein length:141 ACTIN-BINDING PROTEIN +MALEPIDYTTHSREIDAEYLKIVRGSDPDTTWLIISPNAKKEYEPESTGSSFHDFLQLFDETKVQYGLARVSPPGSDVEKIIIIGWCPDSAPLKTRASFAANFAAVANNLFKGYHVQVTARDEDDLDENELLMKISNAAGA +>6fq5_H mol:protein length:95 Histone H2B +RKTRKESYAIYVYKVLKQVHPDTGISSKAMSIMNSFVNDVFERIAGEASRLAHYNKRSTITSREIQTAVRLLLPGELAKHAVSEGTKAVTKYTSA +>6ek5_L mol:protein length:205 Capsid protein +APMYRKPTMYRMYRSPDIPRGCEGPCKVQSFEQRDDVKHLGICKVISDVTRGPGLTHRVGKRFCIKSIYILGKIWLDETIKKQNHTNNVIFYLLRDRRPYGNAPQDFGQIFNMFDNEPSTATIKNDLRDRFQVLRKFHATVVGGLYCMKEQALVKRFYRLNHHVTYNHQEAGKYENHTENALLLYMACTHASNPVYATLKIRIYF +>6f7b_A mol:protein length:361 Mitotic checkpoint serine/threonine-protein kinase BUB1 +GSSLGTVDAPNFIVGNPWDDKLIFKLLSGLSKPVSSYPNTFEWQCKLPAIKPKTEFQLGSKLVYVHHLLGEGAFAQVYEATQGDLNDAKNKQKFVLKVQKPANPWEFYIGTQLMERLKPSMQHMFMKFYSAHLFQNGSVLVGELYSYGTLLNAINLYKNTPEKVMPQGLVISFAMRMLYMIEQVHDCEIIHGDIKPDNFILGNGFLEQDDEDDLSAGLALIDLGQSIDMKLFPKGTIFTAKCETSGFQCVEMLSNKPWNYQIDYFGVAATVYCMLFGTYMKVKNEGGECKPEGLFRRLPHLDMWNEFFHVMLNIPDCHHLPSLDLLRQKLKKVFQQHYTNKIRALRNRLIVLLLECKRSRK +>3cic_A mol:protein length:390 Beta-secretase 1 +GSFVEMVDNLRGKSGQGYYVEMTVGSPPQTLNILVDTGSSNFAVGAAPHPFLHRYYQRQLSSTYRDLRKGVYVPYTQGKWEGELGTDLVSIPHGPNVTVRANIAAITESDKFFINGSNWEGILGLAYAEIARPDDSLEPFFDSLVKQTHVPNLFSLQLCGAGFPLNQSEVLASVGGSMIIGGIDHSLYTGSLWYTPIRREWYYEVIIVRVEINGQDLKMDCKEYNYDKSIVDSGTTNLRLPKKVFEAAVKSIKAASSTEKFPDGFWLGEQLVCWQAGTTPWNIFPVISLYLMGEVTNQSFRITILPQQYLRPVEDVATSQDDCYKFAISQSSTGTVMGAVIMEGFYVVFDRARKRIGFAVSACHVHDEFRTAAVEGPFVTLDMEDCGYNI +>6qea_A mol:protein length:129 Lysozyme C +KVFGRCELAAAMKRHGLDNYRGYSLGNWVCAAKFESNFNTQATNRNTDGSTDYGILQINSRWWCNDGRTPGSRNLCNIPCSALLSSDITASVNCAKKIVSDGNGMNAWVAWRNRCKGTDVQAWIRGCRL +>4br6_A mol:protein length:197 SUPEROXIDE DISMUTASE +KATLPDLKYDYGALEPYISARIMELHHSKHHQTYVNGLNSALEATAEAEAKGDFTKAASLAPLLNFHGGGHLNHTLFWENLAPASREGGGEPDGALKKAIEADFGSFETFRKQMNAALTGIQGSGWAWLAKDKDSGNLAIVTRANQDPVTGQLVPLMGIDAWEHAYYLQYENRKAEYFEAIWNVINWKTVAQRFEKA +>4hpe_B mol:protein length:308 Putative cell wall hydrolase Tn916-like,CTn1-Orf17 +GADSDDENSNFSSGITGMNLSAEVLKHQPMVEKYARENGISEYVNVLLAIIQVESGGTAEDVMQSSESLGLPPNSLDTESSIKQGCKYFASLLSSSKNQGIDDLNVAIQSYNYGGGYVGYVAGKGKKHTFNLAESFAREKSGGKKVTYTNPIAVAKNGGWRWNYGNMFYVELVNQYLTVPQVSGELAQKVMNEALKYQGWKYVYGGSNPNTSFDCSGLTQWCYGKAGISLPRTAQAQYDATQHLPLSQAKAGDLVFFHSTYNAGSYVTHVGIYVGNNQMYHAGDPIGYADLSSSYWQQHLIGAGRVKQ +>6c7g_A mol:protein length:342 cGMP-dependent 3',5'-cyclic phosphodiesterase +SAMDDEYTKLLHDGIQPVAAIDSNFASFTYTPRSLPEDDTSMAILSMLQDMNFINNYKIDCPTLARFCLMVKKGYRDPPYHNWMHAFSVSHFCYLLYKNLELTNYLEDIEIFALFISCMCHDLDHRGTNNSFQVASKSVLAALYSSEGSVMERHHFAQAIAILNTHGCNIFDHFSRKDYQRMLDLMRDIILATDLAHHLRIFKDLQKMAEVGYDRNNKQHHRLLLCLLMTSCDLSDQTKGWKTTRKIAELIYKEFFSQGDLEKAMGNRPMEMMDREKAYIPELQISFMEHIAMPIYKLLQDLFPKAAELYERVASNREHWTKVSHKFTIRGLPSNNSLDFLD +>6a83_A mol:protein length:394 Phosphoethanolamine transferase EptC +MGSSHHHHHHSSGLVPRGSHMYRQQLNSLTKLLNENNALPPLANFKDESGNEPRTLVLVIGESTQRGRMSLYGYPRETTPELDALHKTDPNLTVFNNVVTSRPYTIEILQQALTFANEKNPDLYLTQPSLMNMMKQAGYKTFWITNQQTMTARNTMLTVFSRQTDKQYYMNQQRTQSAREYDTNVLKPFQEVLNDPAPKKLIIVHLLGTHIKYKYRYPENQGKFDGNTDHVPPGLNAEELESYNDYDNANLYNDHVVASLIKDFKAANPNGFLVYFSDHGEEVYDTPPHKTQGRNEDNPTRHMYTIPFLLWTSEKWQATHPRDFSQDVDRKYSLAELIHTWSDLAGLSYDGYDPTRSVVNPQFKETTRWIGNPYKKNALIDYDTLPYGDQVGNQ +>4eqh_A mol:protein length:128 Histidine triad nucleotide-binding protein 1 +SLMADEIAKAQVARPGGDTIFGKIIRKEIPAKIIFEDDRCLAFHDISPQAPTHFLVIPKKHISQISVAEDDDESLLGHLMIVGKKCAADLGLNKGYRMVVNEGSDGGQSVYHVHLHVLGGRQMHWPPG +>7mjk_F mol:protein length:244 Fab ab1 Heavy Chain +EVQLVESGGGLVQPGGSLRLSCAASGFTVSSNYMSWVRQAPGKGLEWVSVIYSGGSTYYADSVKGRFTISRHNSKNTLYLQMNSLRAEDTAVYYCARGYGDYYFDYWGQGTLVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSCDKTSGQAGHHHHHHGDYKDDDDKG +>5p35_A mol:protein length:330 endothiapepsin +STGSATTTPIDSLDDAYITPVQIGTPAQTLNLDFDTGSSDLWVFSSETTASEVDGQTIYTPSKSTTAKLLSGATWSISYGDGSSSSGDVYTDTVSVGGLTVTGQAVESAKKVSSSFTEDSTIDGLLGLAFSTLNTVSPTQQKTFFDNAKASLDSPVFTADLGYHAPGTYNFGFIDTTAYTGSITYTAVSTKQGFWEWTSTGYAVGSGTFKSTSIDGIADTGTTLLYLPATVVSAYWAQVSGAKSSSSVGGYVFPCSATLPSFTFGVGSARIVIPGDYIDFGPISTGSSSCFGGIQSSAGIGINIFGDVALKAAFVVFNGATTPTLGFASK +>3j3y_9P mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>2wq5_A mol:protein length:119 PHOSPHOLIPASE A2, ACIDIC +NLYQFKNMIKCTVPSRSWWDFADYGCYCGRGGSGTPVDDLDRCCQVHDNCYNEAEKISKCWPFFKTYSYKCSQGTLTCKGGNNACAASVCDCDRLAAICFAGAPYNDNNYNIDLKARCQ +>5ot7_H mol:protein length:127 30S ribosomal protein S9 +EQYYGTGRRKEAVARVFLRPGNGKVTVNGQDFNEYFQGLVRAVAALEPLRAVDALGHFDAYITVRGGGKSGQIDAIKLGIARALVQYNPDYRAKLKPLGFLTRDARVVERKKYGKHKARRAPQYSKR +>3iml_D mol:protein length:399 S-adenosylmethionine synthetase +GPGSMANDYLFTSESVSEGHPDKVADQISDAILDAILAQDKYSRVAAETLCNTGLVVLAGEITTTANIDYIQIARDTIKRIGYDNTDYGIDYRGCAVLVAYDKQSPDIAQGVDRAHDNNLDQGAGDQGLMFGYACDETPELMPLPIHLSHRLVERQANLRRDGRLPWLRPDAKSQVTVRYVDGKPHSIDTVVLSTQHAPEIDLPALREAVIEEVIKPTLPADLIKGDIKFLVNPTGRFVIGGPQGDCGLTGRKIIVDTYGGAAPHGGGAFSGKDPSKVDRSAAYAGRYVAKNIVAAGLASRALIQVSYAIGVAEPTSVMVNTFGTGRVSDETITKLVREHFDLRPKGIIQMLDLLRPIYEKTAAYGHFGREEPEFSWEAADKALALAEAAGVEPAVQVA +>6gsl_H5 mol:protein length:60 50S ribosomal protein L30 +MPRLKVKLVKSPIGYPKDQKAALKALGLRRLQQERVLEDTPAIRGNVEKVAHLVRVEVVE +>3j3q_4p mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>5u23_A mol:protein length:382 Putative aminotransferase +MGSSHHHHHHSSRNLYFQGGGHMFFLNLKQINDRFNTEFITKFKEILESGWYILGKQCEKFENNFAKYCGVKHCIGVANGLDALRLIIKAYDFKENDEIIVPANTYIASILAITDNKCKPILIEPDINTYNINPDLIEEKITKKTKAIMVVHLYGQVCDMEKIQLLANKYNLKIIEDCAQAHGAIYKDKRVGNLGDAAGFSFYPGKNLGALGDAGCICTNDDNFASKIRALANYGSHKKYENLYTGLNSRLDEIQAAFLDIKLKYLDEDNNKRKNIANFYLQNIKNENIILPSNKFDHVWHLFVVKTKLRDELQHYLNNHDIQTIIHYPIPPHKQKCYKDLNHLKLPITENIHQEVLSLPISPTMKENDFKKVADILNKWKV +>6i7v_C5 mol:protein length:45 50S ribosomal protein L36 2 +MKVLNSLRTAKERHPDCQIVKRKGRLYVICKSNPRFKAVQGRKKK +>6mrc_2 mol:protein length:100 10 kDa heat shock protein, mitochondrial +GQAFRKFLPLFDRVLVERSAAETVTKGGIMLPEKSQGKVLQATVVAVGSGSKGKGGEIQPVSVKVGDKVLLPEYGGTKVVLDDKDYFLFRDGDILGKYVD +>5jw4_B mol:protein length:162 Hemagglutinin +GLFGAIAGFIEGGWQGMVDGWYGYHHSNEQGSGYAADKESTQKAIDGVTNKVNSIIDKMNTQFEAVGREFNNLERRIENLNKKMEDGFLDVWTYNAELLVLMENERTLDFHDSNVKNLYDKVRLQLRDNAKELGNGCFEFYHKCDNECMESVRNGTYDYPQY +>6rjh_P mol:protein length:171 Ferritin light chain +SQIRQNYSTEVEAAVNRLVNLYLRASYTYLSLGFYFDRDDVALEGVCHFFRELAEEKREGAERLLKMQNQRGGRALFQDLQKPSQDEWGTTLDAMKAAIVLEKSLNQALLDLHALGSAQADPHLCDFLESHFLDEEVKLIKKMGDHLTNIQRLVGSQAGLGEYLFERLTLK +>6ch9_G mol:protein length:518 Envelope glycoprotein gp120 +MDAMKRGLCCVLLLCGAVFVSPSQEIHARFRRGARAAKKWVTVYYGVPVWKEATTTLFCASDAKAYDTEVHNVWATHACVPTDPNPQEIVLGNVTENFNMWKNNMVEQMHEDIISLWDQSLKPCVKLTPLCVTLNCNNVNTNNTNNSTNATISDWEKMETGEMKNCSFNVTTSIRDKIKKEYALFYKLDVVPLENKNNINNTNITNYRLINCNTSVITQACPKVSFEPIPIHYCAPAGFAILKCNSKTFNGSGPCTNVSTVQCTHGIRPVVSTQLLLNGSLAEEEIVIRSENITDNAKTIIVQLNEAVEINCTRPNNNTRKSIHIGPGRAFYATGDIIGNIRQAHCNISKARWNETLGQIVAKLEEQFPNKTIIFNHSSGGDPEIVTHSFNCGGEFFYCNTTPLFNSTWNNTRTDDYPTGGEQNITLQCRIKQIINMWQGVGKAMYAPPIRGQIRCSSNITGLLLTRDGGRDQNGTETFRPGGGNMRDNWRSELYKYKVVKIEPLGIAPTACKRRVVQ +>1w76_B mol:protein length:543 ACETYLCHOLINESTERASE +DDHSELLVNTKSGKVMGTRVPVLSSHISAFLGIPFAEPPVGNMRFRRPEPKKPWSGVWNASTYPNNCQQYVDEQFPGFSGSEMWNPNREMSEDCLYLNIWVPSPRPKSTTVMVWIYGGGFYSGSSTLDVYNGKYLAYTEEVVLVSLSYRVGAFGFLALHGSQEAPGNVGLLDQRMALQWVHDNIQFFGGDPKTVTIFGESAGGASVGMHILSPGSRDLFRRAILQSGSPNCPWASVSVAEGRRRAVELGRNLNCNLNSDEELIHCLREKKPQELIDVEWNVLPFDSIFRFSFVPVIDGEFFPTSLESMLNSGNFKKTQILLGVNKDEGSFFLLYGAPGFSKDSESKISREDFMSGVKLSVPHANDLGLDAVTLQYTDWMDDNNGIKNRDGLDDIVGDHNVICPLMHFVNKYTKFGNGTYLYFFNHRASNLVWPEWMGVIHGYEIEFVFGLPLVKELNYTAEEEALSRRIMHYWATFAKTGNPNEPHSQESKWPLFTTKEQKFIDLNTEPMKVHQRLRVQMCVFWNQFLPKLLNATACDGELSS +>7tk0_O mol:protein length:195 ATP synthase subunit 5 +ASKAAAPPPVRLFGVEGTYATALYQAAAKNSSIDAAFQSLQKVESTVKKNPKLGHLLLNPALSLKDRNSVIDAIVETHKNLDGYVVNLLKVLSENNRLGCFEKIASDFGVLNDAHNGLLKGTVTSAEPLDPKSFKRIEKALSASKLVGQGKSLKLENVVKPEIKGGLIVELGDKTVDLSISTKIQKLNKVLEDSI +>5ap8_C mol:protein length:166 TSR3 +MKVYIIDYHKDDPKRCTGKKLVKLKIAEFTRVGKGVVLDPFAQITLSNKDKDIVRRIGITIVDTSWNNTSQSEFKNIRGEHRRIPILFAGNPIHYGIAYKLSSIEALIATLYIVDEVEEAIKLSNVVKWGHTFIELNKELLEAYKNKTEEDIKKIEREIIEKILEK +>5qfe_A mol:protein length:321 Tyrosine-protein phosphatase non-receptor type 1 +MEMEKEFEQIDKSGSWAAIYQDIRHEASDFPSRVAKLPKNKNRNRYRDVSPFDHSRIKLHQEDNDYINASLIKMEEAQRSYILTQGPLPNTVGHFWEMVWEQKSRGVVMLNRVMEKGSLKCAQYWPQKEEKEMIFEDTNLKLTLISEDIKSYYTVRQLELENLTTQETREILHFHYTTWPDFGVPESPASFLNFLFKVRESGSLSPEHGPVVVHCSAGIGRSGTFCLADTCLLLMDKRKDPSSVDIKKVLLEMRKFRMGLIQTADQLRFSYLAVIEGAKFIMGDSSVQDQWKELSHEDLEPPPEHIPPPPRPPKRILEPHN +>5xhz_A mol:protein length:66 SH3 domain-containing kinase-binding protein 1 +GPGSEFRRRRRCQVAFSYLPQNDDELELKVGDIIEVVGEVEEGWWEGVLNGKTGMFPSNFIKELSG +>5ndg_C7 mol:protein length:136 40S ribosomal protein S17-A +MGRVRTKTVKRASKALIERYYPKLTLDFQTNKRLCDEIATIQSKRLRNKIAGYTTHLMKRIQKGPVRGISFKLQEEERERKDQYVPEVSALDLSRSNGVLNVDNQTSDLVKSLGLKLPLSVINVSAQRDRRYRKRV +>5lzd_e mol:protein length:157 30S ribosomal protein S5 +ELQEKLIAVNRVSKTVKGGRIFSFTALTVVGDGNGRVGFGYGKAREVPAAIQKAMEKARRNMINVALNNGTLQHPVKGVHTGSRVFMQPASEGTGIIAGGAMRAVLEVAGVHNVLAKAYGSTNPINVVRATIDGLENMNSPEMVAAKRGKSVEEILG +>5anb_E mol:protein length:136 60S RIBOSOMAL PROTEIN L23 +MSKAQAVGSNYRVSLGLPVGAVMNSADNSGAKNLYVIAVKGIKGRLNRLPSAGVGDMVMATVKKGKPELRKKVCTGLVVRQRKHWKRKDGVYIYFEDNAGVMCNPKGEVKGNILGPVAKECSDLWPKVATNAGTIV +>6ydw_Bj mol:protein length:279 Mitochondrial ribosomal protein L46 +MAAPVRRTMLRVVRGWRRFEGPWAHSLGSRNLALAVAPSSSSSPWRLLGALCLQRPPLVTKPLTPLQEEMADLLQQIEIERSLYSDHELRALDEAQQLAKKKSDLYEEEDEQNILLAQDLEDMWEQKFLHFKLGARLTEADKKDDRTSLHRKLDRNLILLVREKLGDQDIWMLPQSDWQPGETLRQTAERTLATLSENNMEAKFLGNAPCGHYKFKFPQAMRTETSLGAKVFFFKALLLTGDFSQAGKKGHHVWVSKEELGDYLKPKYLAQVRRFLLDL +>3jbt_N mol:protein length:105 Cytochrome c +MGDVEKGKKIFVQKCAQCHTVEKGGKHKTGPNLHGLFGRKTGQAPGFTYTDANKNKGITWKEETLMEYLENPKKYIPGTKMIFAGIKKKTEREDLIAYLKKATNE +>1htq_N mol:protein length:477 glutamine synthetase +TEKTPDDVFKLAKDEKVEYVDVRFCDLPGIMQHFTIPASAFDKSVFDDGLAFDGSSIRGFQSIHESDMLLLPDPETARIDPFRAAKTLNINFFVHDPFTLEPYSRDPRNIARKAENYLISTGIADTAYFGAEAEFYIFDSVSFDSRANGSFYEVDAISGWWNTGAATEADGSPNRGYKVRHKGGYFPVAPNDQYVDLRDKMLTNLINSGFILEKGHHEVGSGGQAEINYQFNSLLHAADDMQLYKYIIKNTAWQNGKTVTFMPKPLFGDNGSGMHCHQSLWKDGAPLMYDETGYAGLSDTARHYIGGLLHHAPSLLAFTNPTVNSYKRLVPGYEAPINLVYSQRNRSACVRIPITGSNPKAKRLEFRSPDSSGNPYLAFSAMLMAGLDGIKNKIEPQAPVDKDLYELPPEEAASIPQTPTQLSDVIDRLEADHEYLTEGGVFTNDLIETWISFKRENEIEPVNIRPHPYEFALYYDV +>1sor_A mol:protein length:235 Aquaporin-0 +RSASFWRAIFAEFFATLFYVFFGLGASLRWAPGPLHVLQVALAFGLALATLVQAVGHISGAHVNPAVTFAFLVGSQMSLLRAICYVVAQLLGAVAGAAVLYSVTPPAVRGNLALNTLHPGVSVGQATIVEIFLTLQFVLCIFATYDERRNGRLGSVALAVGFSLTLGHLFGMYYTGAGMNPARSFAPAILTRNFTNHWVYWVGPVIGAGLGSLLYDFLLFPRLKSVSERLSILKG +>6dv5_A mol:protein length:205 Heat shock protein beta-1 +MTERRVPFSLLRGPSWDPFRDWYPHSRLFDQAFGLPRLPEEWSQWLGGSSWPGYVRPLPPAAIESPAVAAPAYSRALSRQLSSGVSEIRHTADRWRVSLDVNHFAPDELTVKTKDGVVEITGKHEERQDEHGYISRCFTRKYTLPPGVDPTQVSSSLSPEGTLTVEAPMPKLATQSNEITIPVTFESRAQLGGPEAAKSDETAAK +>5dat_c1 mol:protein length:155 40S ribosomal protein S11-A +STELTVQSERAFQKQPHIFNNPKVKTSKRTKRWYKNAGLGFKTPKTAIEGSYIDKKCPFTGLVSIRGKILTGTVVSTKMHRTIVIRRAYLHYIPKYNRYEKRHKNVPVHVSPAFRVQVGDIVTVGQCRPISKTVRFNVVKVSAAAGKANKQFAKF +>1o1e_2 mol:protein length:375 SKELETAL MUSCLE ACTIN +DEDETTALVCDNGSGLVKAGFAGDDAPRAVFPSIVGRPRHQGVMVGMGQKDSYVGDEAQSKRGILTLKYPIEHGIITNWDDMEKIWHHTFYNELRVAPEEHPTLLTEAPLNPKANREKMTQIMFETFNVPAMYVAIQAVLSLYASGRTTGIVLDSGDGVTHNVPIYEGYALPHAIMRLDLAGRDLTDYLMKILTERGYSFVTTAEREIVRDIKEKLCYVALDFENEMATAASSSSLEKSYELPDGQVITIGNERFRCPETLFQPSFIGMESAGIHETTYNSIMKCDIDIRKDLYANNVMSGGTTMYPGIADRMQKEITALAPSTMKIKIIAPPERKYSVWIGGSILASLSTFQQMWITKQEYDEAGPSIVHRKCF +>5b02_A mol:protein length:343 MoeN5,DNA-binding protein 7d +MAHHHHHHVDDDDKMLAAEAANRDHVTRCVAQTGGSPDLVAHTAALRLYLRVPHFLTEWTTDPDRRAAVSRALALDIVSMKLLDDLMDDDTGLDRVELACVCLRLHLRALHELESLARDPKAVTDILEQDAVHLCGGQIRTKRSRATNLREWRAHASTYGSTFLGRYGALAAACGGEGQPADSVREFAEAFAMTITMADDLTDYDRNGERDGNLAHLMRTGAVAGQDVVDLLEELRGRALAAVAAPPGAPGLVPVVHLYTDDVLVRLLPRHLGEAGAGAMATVKFKYKGEEKEVDISKIKKVWRVGKMISFTYDEGGGKTGRGAVSEKDAPKELLQMLEKQKK +>6r4o_A mol:protein length:1533 Adenylate cyclase 9 +MASPPHQQLLQHHSTEVSCDSSGDSNSVRVRINPKQPSSNSHPKHCKYSISSSCSSSGDSGGVPRRMGAGGRLRRRKKLPQLFERASSRWWDPKFDSVNLEEACMERCFPQTQRRFRYALFYIGFACLLWSIYFGVHMKSKLIVMVAPALCFLVVCVGFFLFTFTKLYARHYVWTSLVLTLLVFALTLAAQFQVLTPLSGRVDNFNHTRAARPTDTCLSQVGSFSMCIEVLFLLYTVMHLPLYLSLILGVAYSVLFETFGYHFQDEACFASPGAEALHWELLSRALLHLCIHAIGIHLFIMSQVRSRSTFLKVGQSIMHGKDLEVEKALKERMIHSVMPRIIADDLMKQGDEESENSVKRHATSSPKNRKKKSSIQKAPIAFRPFKMQQIEEVSILFADIVGFTKMSANKSAHALVGLLNDLFGRFDRLCEETKCEKISTLGDCYYCVAGCPEPRADHAYCCIEMGLGMIRAIEQFCQEKKEMVNMRVGVHTGTVLCGILGMRRFKFDVWSNDVNLANLMEQLGVAGKVHISEATAKYLDDRYEMEDGKVTERLGQSVVADQLKGLKTYLIAGQRAKESHCSCSEALLSGFEVLDGSRVSSGPRGQGTASPGSVSDLAQTVKTFDNLKTCPSCGITFTPKPEAGAEGGAVQNGCQEEPKNSAKASGGPSSKTQNGLLSPPPEEKLTNSQTSLCEILQEKGRWAGVSLDQSALLPLRFKNIREKTDAHFVDVIKEDSLMKDYFFKPPINQFSLNFLDPELERAYRTSYQEEVVKSSPVRTFASATFSSLLDVLLSTTVFLILSITCFLRYGAASTPPPPAALAVFGAALLLEILSLVVSVRMVFFLEDVMTCTKRLLEWIAGWLPRHFIGAILVSLPALAVYSHVTSEFETNIHSTMFTGSAVLTAVVQYCNFCQLSSWMRSSLATVVGAGPLLLLLYVSLCPDSSTVISHLDAVQNFSSTRKLCNASLPHDGRSPASLIGQEVILVFFLLLLLVWFLNREFEVSYRLHYHGDVEADLHRTKIQSMRDQADWLLRNIIPYHVAEQLKVSQTYSKNHDSGGVIFASIVNFSEFYEENYEGGKECYRVLNELIGDFDELLSKPDYSSIEKIKTIGATYMAASGLNATQCRDGSHPQEHLQILFEFAKEMMRVVDDFNNNMLWFNFKLRVGFNHGPLTAGVIGTTKLLYDIWGDTVNIASRMDTTGVECRIQVSEESYRVLSKMGYEFDYRGTVNVKGKGQMKTYLYPKCTDSGAAALEVLFQGPGGVSKGEELFTGVVPILVELDGDVNGHKFSVSGEGEGDATYGKLTLKFICTTGKLPVPWPTLVTTFGYGLQCFARYPDHMKQHDFFKSAMPEGYVQERTIFFKDDGNYKTRAEVKFEGDTLVNRIELKGIDFKEDGNILGHKLEYNYNSHNVYIMADKQKNGIKVNFKIRHNIEDGSVQLADHYQQNTPIGDGPVLLPDNHYLSYQSALSKDPNEKRDHMVLLEFVTAAGITLGMDELYKAASAWSHPQFEKGGGSGGGSGGSAWSHPQFEK +>7ac8_E mol:protein length:253 Imidazole glycerol phosphate synthase subunit HisF +MLAKRIIACLDVKDGRVVKGTNFENLRDSGDPVELGKFYSEIGIDELVFLDITASVEKRKTMLELVEKVAEQIDIPFTVGGGIHDFETASELILRGADKVSINTAAVENPSLITQIAQTFGSQAVVVAIDAKRVDGEFMVFTYSGKKNTGILLRDWVVEVEKRGAGEILLTSIDRDGTKSGYDTEMIRFVRPLTTLPIIASGGAGKMEHFLEAFLAGADAALAASVFHFREIDVRELKEYLKKHGVNVRLEGL +>7l88_D mol:protein length:498 BG505 SOSIP MD39 - gp120 +MGILPSPGMPALLSLVSLLMGCVAETGAENLWVTVYYGVPVWKDAETTLFCASDAKAYETKKHNVWATHCCVPTDPNPQEIHLENVTEEFNMWKNNMVEQMHEDIISLWDQSLKPCVKLTPLCVTLQCTNVTNNITDDMRGELKNCSFNMTTELRDKKQKVYSLFYRLDVVQINENQGNRSNNSNKEYRLINCNTSAITQACPKVSFEPIPIHYCAPAGFAILKCKDKKFNGTGPCPSVSTVQCTHGIKPVVSTQLLLNGSLAEEEVIIRSENITNNAKNILVQLNTPVQINCTRPNNNTVKSIRIGPGQWFYYTGDIIGDIRQAHCNVSKATWNETLGKVVKQLRKHFGNNTIIRFAQSSGGDLEVTTHSFNCGGEFFYCNTSGLFNSTWISNTSVQGSNSTGSNDSITLPCRIKQIINMWQRIGQAMYAPPIQGVIRCVSNITGLILTRDGGSTNSTTETFRPGGGDMRDNWRSELYKYKVVKIEPLGVAPTRCKR +>1v9w_A mol:protein length:130 putative 42-9-9 protein +GSEGAATMATFEEVSVLGFEEFDKAVKEHESKTIFAYFSGSKDTEGKSWCPDCVEAEPVIREGLKHVTEDCVFIYCQVGDKPYWKDPNNDFRQKLKITAVPTLLKYGTPQKLVESECCQSSLVEMIFSED +>7uck_M mol:protein length:138 60S ribosomal protein L14 +VFRRFVEVGRVAYVSFGPHAGKLVAIVDVIDQNRALVDGPCTRVRRQAMPFKCMQLTDFILKFPHSARQKYVRKAWEKADINTKWAATRWAKKIEARERKAKMTDFDRYKVMKAKKMRNRIIKNEVKKLQRAALLKAS +>4v9j_BU mol:protein length:117 50S ribosomal protein L20 +PRAKTGVVRRRKHKKILKLAKGYWGLRSKSFRKARETLFAAGNYAYAHRKRRKRDFRRLWIVRINAACRQHGLNYSTFIHGLKKAGIEVDRKNLADLAVREPQVFAELVERAKAAQG +>2cvl_D mol:protein length:124 protein translation initiation inhibitor +MEAVKTDRAPAAIGPYAQAVKAGGFVFVSGQIPLAPDGSLVEGDIRVQTERVMENLKAVLEAAGSGLSRVVQTTCFLADMEDFPGFNEVYARYFTPPYPARATVAVKALPRGVRVEVACVALAE +>1joj_R mol:protein length:8 HEXAPEPTIDE +XMYWYPYX +>6w83_A mol:protein length:312 Potassium channel subfamily K member 2 +MSFSSKPTVLASRVESDSAINVMKWKTVSTIFLVVVLYLIIGATVFKALEQPQEISQRTTIVIQREKFLRAHPCVSDQELDELIQQIVAAINAGIIPLGASSNQVSHWDLGSSFFFAGTVITTIGFGNISPRTEGGKIFCIIYALLGIPLFGFLLAGVGDQLGTIFGKGIAKVEDTFIKWNVSQTKIRIISTIIFILFGCVLFVALPAVIFKHIEGWSALDAIYFVVITLTTIGFGDYVAGGSDIEYLDFYKPVVWFWILVGLAYFAAVLSMIGDWLRVIAKKTKEAVGEFRAHAAEWTANVTSNSLEVLFQ +>3ijj_B mol:protein length:114 Macrophage migration inhibitory factor +PMFIVNTNVPRASVPDGFLSELTQQLAQATGKPPQYIAVHVVPDQLMAFGGSSEPCALCSLHSIGKIGGAQNRSYSKLLCGLLAERLRISPDRVYINYYDMNAANVGWNNSTFA +>5c54_F mol:protein length:312 Dihydrodipicolinate synthase/N-acetylneuraminate lyase +MASATFTGVIPPVMTPLHADGSVDVESLRKLVDHLINGGVDGLFALGSSGEAAFLTRAQRKLALTTIIEHTAGRVPVTAGVIETTTARVIELVEDALEAGAEGLVATAPFYTRTHDVEIEEHFRKIHAAAPELPLFAYNIPVSVHSNLNPVMLLTLAKDGVLAGTKDSSGNDGAIRSLIEARDDAGLTEQFKILTGSETTVDFAYLAGADGVVPGLGNVDPAAYAALAKLCLDGKWAEAAALQKRINHLFHIVFVGDTSHMSGSSAGLGGFKTALAHLGIIESNAMAVPHQSLSDEETARIHAIVDEFLYTA +>6kuo_A mol:protein length:300 Poly(ethylene terephthalate) hydrolase +MGSSHHHHHHSSGLVPRGSHMRGPNPTAASLEASAGPFTVRSFTVSRPSGYGAGTVYYPTNAGGTVGAIAIVPGYTARQSSIKWWGPRLASHGFVVITIDTNSTLDQPSSRSSQQMAALRQVASLNGTSSSPIYGKVDTARMGVMGWSMGGGGSLISAANNPSLKAAAPQAPWDSSTNFSSVTVPTLIFACENDSIAPVNSSALPIYDSMSRNAKQFLEINGGSHSCANSGNSDQALIGKKGVAWMKRFMDNDTRYSTFACENPNSTRVSDFRTANCSLEDPAANKARKEAELAAATAEQ +>1dmh_B mol:protein length:311 CATECHOL 1,2-DIOXYGENASE +MEVKIFNTQDVQDFLRVASGLEQEGGNPRVKQIIHRVLSDLYKAIEDLNITSDEYWAGVAYLNQLGANQEAGLLSPGLGFDHYLDMRMDAEDAALGIENATPRTIEGPLYVAGAPESVGYARMDDGSDPNGHTLILHGTIFDADGKPLPNAKVEIWHANTKGFYSHFDPTGEQQAFNMRRSIITDENGQYRVRTILPAGYGCPPEGPTQQLLNQLGRHGNRPAHIHYFVSADGHRKLTTQINVAGDPYTYDDFAYATREGLVVDAVEHTDPEAIKANDVEGPFAEMVFDLKLTRLVDGVDNQVVDRPRLAV +>3j3q_53 mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>6q8y_BH mol:protein length:172 60S ribosomal protein L20-A +MAHFKEYQVIGRRLPTESVPEPKLFRMRIFASNEVIAKSRYWYFLQKLHKVKKASGEIVSINQINEAHPTKVKNFGVWVRYDSRSGTHNMYKEIRDVSRVAAVETLYQDMAARHRARFRSIHILKVAEIEKTADVKRQYVKQFLTKDLKFPLPHRVQKSTKTFSYKRPSTFY +>7wu9_S mol:protein length:255 scFv16 +DVQLVESGGGLVQPGGSRKLSCSASGFAFSSFGMHWVRQAPEKGLEWVAYISSGSGTIYYADTVKGRFTISRDDPKNTLFLQMTSLRSEDTAMYYCVRSIYYYGSSPFDFWGQGTTLTVSSGGGGSGGGGSGGGGSDIVMTQATSSVPVTPGESVSISCRSSKSLLHSNGNTYLYWFLQRPGQSPQLLIYRMSNLASGVPDRFSGSGSGTAFTLTISRLEAEDVGVYYCMQHLEYPLTFGAGTKLELKGENLYFQ +>1rxo_H mol:protein length:475 RIBULOSE BISPHOSPHATE CARBOXYLASE/OXYGENASE +MSPQTETKASVGFKAGVKDYKLTYYTPEYETLDTDILAAFRVSPQPGVPPEEAGAAVAAESSTGTWTTVWTDGLTNLDRYKGRCYHIEPVAGEENQYICYVAYPLDLFEEGSVTNMFTSIVGNVFGFKALRALRLEDLRIPVAYVKTFQGPPHGIQVERDKLNKYGRPLLGCTIKPKLGLSAKNYGRAVYECLRGGLDFTKDDENVNSQPFMRWRDRFLFCAEALYKAQAETGEIKGHYLNATAGTCEDMMKRAVFARELGVPIVMHDYLTGGFTANTTLSHYCRDNGLLLHIHRAMHAVIDRQKNHGMHFRVLAKALRLSGGDHIHSGTVVGKLEGERDITLGFVDLLRDDYTEKDRSRGIYFTQSWVSTPGVLPVASGGIHVWHMPALTEIFGDDSVLQFGGGTLGHPWGNAPGAVANRVALEACVQARNEGRDLAREGNTIIREATKWSPELAAACEVWKEIKFEFPAMDTV +>6lkh_A mol:protein length:294 ABC transporter, solute-binding protein +NVLTVYSPYQSNLIRPILNEFEKQEHVKIEIKHGSTQVLLSNLHNEDFSERGDVFMGGVLSETIDHPEDFVPYQDTSVTQQLEDYRSNNKYVTSFLLMPTVIVVNSDLQGDIKIRGYQDLLQPILKGKIAYSNPNTTTTGYQHMRAIYSMHHRVSDVHQFQNHAMQLSKTSKVIEDVAKGKYYAGLSYEQDARTWKNKGYPVSIVYPIEGTMLNVDGIALVKNAHPHPKRKKLVQYLTSRSVQQRLVAEFDAKSIRKDVSEQSDQSIENLKNIPLIPKSKLPDIPHHKFLEMIQ +>2pnv_A mol:protein length:43 Small conductance calcium-activated potassium channel protein 2 +GSHMNIMYDMISDLNERSEDFEKRIVTLETKLETLIGSIHALP +>5uyk_Q mol:protein length:80 30S ribosomal protein S17 +KIRTLQGRVVSDKMEKSIVVAIERFVKHPIYGKFIKRTTKLHVHDENNECGIGDVVEIRECRPLSKTKSWTLVRVVEKAV +>7mtw_q mol:protein length:518 Capsid protein VP1 +DGVGSSSGNWHCDSQWLGDRVITTSTRTWALPTYNNHLYKQISNSTSGGSSNDNAYFGYSTPWGYFDFNRFHCHFSPRDWQRLINNNWGFRPKRLNFKLFNIQVKEVTDNNGVKTIANNLTSTVQVFTDSDYQLPYVLGSAHEGCLPPFPADVFMIPQYGYLTLNDGSQAVGRSSFYCLEYFPSQMLRTGNNFQFSYEFENVPFHSSYAHSQSLDRLMNPLIDQYLYYLSKTINGSGQNQQTLKFSVAGPSNMAVQGRNYIPGPSYRQQRVSTTVTQNNNSEFAWPGASSWALNGRNSLMNPGPAMASHKEGEDRFFPLSGSLIFGKQGTGRDNVDADKVMITNEEEIKTTNPVATESYGQVATNHQSAQAQAQTGWVQNQGILPGMVWQDRDVYLQGPIWAKIPHTDGNFHPSPLMGGFGMKHPPPQILIKNTPVPADPPTAFNKDKLNSFITQYSTGQVSVEIEWELQKENSKRWNPEIQYTSNYYKSNNVEFAVNTEGVYSEPRPIGTRYLTRNL +>7jg2_D mol:protein length:355 Igh protein +WGQGTLVTVSAESARNPTIYPLTLPPALSSDPVIIGCLIHDYFPSGTMNVTWGKSGKDITTVNFPPALASGGRYTMSSQLTLPAVECPEGESVKCSVQHDSNPVQELDVNCSGPTPPPPITIPSCQPSLSLQRPALEDLLLGSDASITCTLNGLRNPEGAVFTWEPSTGKDAVQKKAVQNSCGCYSVSSVLPGCAERWNSGASFKCTVTHPESGTLTGTIAKVTVNTFPPQVHLLPPPSEELALNELLSLTCLVRAFNPKEVLVRWLHGNEELSPESYLVFEPLKEPGEGATTYLVTSVLRVSAETWKQGDQYSCMVGHEALPMNFTQKTIDRLSGKPTNVSVSVIMSEGDGICY +>6boh_DA mol:protein length:54 50S ribosomal protein L33 +MASEVRIKLLLECTECKRRNYATEKNKRNTPNKLELRKYCPWCRKHTVHREVKI +>6j3h_D mol:protein length:264 Glutathione S-transferase +GLVPRGSHMIQQIHFYDIPRNRDEDDRTWNPNTSKTRLTLTYKRLPYKTIWVEYPDIERVCKEIGAEPSAFGLLKEGKPYYSLPVIHDPNTGTTISDSIRIARYLDKTYPDTPAVIPAELEAFHAVFEDAFWDTIFMPLFPFLVPAACPQLNPRSEAYFRETREGKFGSILGGKMENWAPTGPVRDDRWKALQAGFTKMAGWLSADGQERPFFMGEKLCYTDIVVGAWLISVKKVFGSDHPEWLQVEKWDGGRWSRLVQVVENF +>3tty_C mol:protein length:675 Beta-galactosidase +MINEKFPKIWYGGDYNPEQWDKATMEEDMRMFNLAGIDVATVNVFSWAKIQRDEVSYDFTWLDDIIERLTKENIYLCLATSTGAHPAWMAKKYPDVLRVDYEGRKRKFGGRHNSCPNSPTYRKYAKILAGKLAERYKDHPQIVMWHVSNEYGGYCYCDNCEKQFRVWLKERYGTLEALNKAWNTSFWSHTFYDWDEIVAPNALSEEWSGNRTNFQGISLDYRRFQSDSLLECFKMERDELKRWTPDIPVTTNLMGFYPELDYFKWAKEMDVVSWDNYPSMDTPFSFTAMAHNLMRGLKSGQPFMLMEQTPGVQNWQPYNSAKRPGVMRLWSYQAVAHGADTVMFFQLRRSVGACEKYHGAVIEHVGHEHTRVFRECAELGKELQQLGDTILDARSEAKVAVMYDWENRWALELSSGPSIALNYVNEVHKYYDALYKQNIQTDMISVEEDLSKYKVVIAPVMYMVKPGFAERVERFVAQGGTFVTTFFSGIVNENDLVTLGGYPGELRNVMGIWAEEIDALLPGHQNEIVLRQDWGGLRGSYSCGILCDVIHAETAEVLAEYGADYYKGTPVLTRNKFGNGQSYYVASSPDADFLQGLIANLCEEQGVKPLLNTPDGVEVAERVKNGTSYLFVMNHNAEEMTFDAGASRQRDLLTGKTISGQATIPARGVMILERA +>4adj_C mol:protein length:473 E1 ENVELOPE GLYCOPROTEIN +EEAFTYLCTAPGCATQTPVPVRLAGVRFESKIVDGGCFAPWDLEATGACICEIPTDVSCEGLGAWVPTAPCARIWNGTQRACTFWAVNAYSSGGYAQLASYFNPGGSYYKQYHPTACEVEPAFGHSDAACWGFPTDTVMSVFALASYVQHPHKTVRVKFHTETRTVWQLSVAGVSCNVTTEHPFCNTPHGQLEVQVPPDPGDLVEYIMNYTGNQQSRWGLGSPNCHGPDWASPVCQRHSPDCSRLVGATPERPRLRLVDADDPLLRTAPGPGEVWVTPVIGSQARKCGLHIRAGPYGHATVEMPEWIHAHTTSDPWHPPGPLGLKFKTVRPVALPRALAPPRNVRVTGCYQCGTPALVEGLAPGGGNCHLTVNGEDVGAFPPGKFVTAALLNTPPPYQVSCGGESDRASARVIDPAAQSFTGVVYGTHTTAVSETRFEDDDDKAGWSHPQFEKGGGSGGGSGGGSWSHPQFEK +>5d80_F mol:protein length:517 V-type proton ATPase subunit B +MVLSDKELFAINKKAVEQGFNVKPRLNYNTVSGVNGPLVILEKVKFPRYNEIVNLTLPDGTVRQGQVLEIRGDRAIVQVFEGTSGIDVKKTTVEFTGESLRIPVSEDMLGRIFDGSGRPIDNGPKVFAEDYLDINGSPINPYARIYPEEMISTGVSAIDTMNSIARGQKIPIFSASGLPHNEIAAQICRQAGLVRPTKDVHDGHEENFSIVFAAMGVNLETARFFKQDFEENGSLERTSLFLNLANDPTIERIITPRLALTTAEYLAYQTERHVLTILTDMSSYADALREVSAAREEVPGRRGYPGYMYTDLSTIYERAGRVEGRNGSITQIPILTMPNDDITHPIPDLTGYITEGQIFVDRQLHNKGIYPPINVLPSLSRLMKSAIGEGMTRKDHGDVSNQLYAKYAIGKDAAAMKAVVGEEALSIEDKLSLEFLEKFEKTFITQGAYEDRTVFESLDQAWSLLRIYPKEMLNRISPKILDEFYDRARDDADEDEEDPDTRSSGKKKDASQEESLI +>5fxy_H mol:protein length:85 METASTASIS-ASSOCIATED PROTEIN MTA1 +GAAMKTRQAFYLHTTKLTRIARRLCREILRPWHAARHPYLPINSAAIKAECTARLPEASQSPLVLKQAVRKPLEAVLRYLETHPR +>1gav_5 mol:protein length:129 BACTERIOPHAGE GA PROTEIN CAPSID +ATLRSFVLVDNGGTGNVTVVPVSNANGVAEWLSNNSRSQAYRVTASYRASGADKRKYTIKLEVPKIVTQVVNGVELPVSAWKAYASIDLTIPIFAATDDVTVISKSLAGLFKVGNPIAEAISSQSGFYA +>6zkb_k mol:protein length:355 NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 10, mitochondrial +MALRFLRLVPASAASRGLAAVPPRVGGIHTSVQRKLQYGPLAYILGEKTTKKMTENSKLITVDGNICSGKSKLAKEVAEKLGLKHFPEAGIHYADSTTGDGKPLPVRFSGNCSLEKFYDDPKSNDGNSYRLQAWLYASRLLQYADALEHLLSTGQGVVLERSIYSDFVFLEAMYRQGFIRKQCVDHYNQVKKVTVCEYLPPHVVIYVDVPVSEVQSRIQKKGNPHEMKITSAYLQDIENVYKGTFLPEMSEKCEVLQYSAWEAEDAEKVVEDIQYLKYDKGPWLDQDDRKLHNLRMLVQDKLEVLNYTSIPVFLPEVTIGAHQSDRVFQEFTELPGRKYRAGYNEDVGDKWIWLK +>3kts_A mol:protein length:192 Glycerol uptake operon antiterminator regulatory protein +MSLELPFSNQSIIPAAHNQKDMEKILELDLTYMVMLETHVAQLKALVKYAQAGGKKVLLHADLVNGLKNDDYAIDFLCTEICPDGIISTRGNAIMKAKQHKMLAIQRLFMIDSSAYNKGVALIQKVQPDCIELLPGIIPEQVQKMTQKLHIPVIAGGLIETSEQVNQVIASGAIAVTTSNKHLWEGHHHHHH +>1tqb_C mol:protein length:219 VRQ14 Fab light chain +DVVMSQTPLTLSVTIGQPASISCKSSQSLLDSDGKTYLNWLLQRPGQSPKRLIYLVSRLDSGVPDRFTGSGSGTDFTLKISRVEAEDLGIYFCWQGSHFPQTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNEC +>5tbw_l mol:protein length:361 60S ribosomal protein L4-A +SRPQVTVHSLTGEATANALPLPAVFSAPIRPDIVHTVFTSVNKNKRQAYAVSEKAGHQTSAESWGTGRAVARIPRVGGGGTGRSGQGAFGNMCRGGRMFAPTKTWRKWNVKVNHNEKRYATASAIAATAVASLVLARGHRVEKIPEIPLVVSTDLESIQKTKEAVAALKAVGAHSDLLKVLKSKKLRAGKGKYRNRRWTQRRGPLVVYAEDNGIVKALRNVPGVETANVASLNLLQLAPGAHLGRFVIWTEAAFTKLDQVWGSETVASSKVGYTLPSHIISTSDVTRIINSSEIQSAIRPAGQATQKRTHVLKKNPLKNKQVLLRLNPYAKVFAAEKLGSKKAEKTGTKPAAVFTETLKHD +>2z6i_B mol:protein length:332 Trans-2-enoyl-ACP reductase II +MKTRITELLKIDYPIFQGGMAWVADGDLAGAVSKAGGLGIIGGGNAPKEVVKANIDKIKSLTDKPFGVNIMLLSPFVEDIVDLVIEEGVKVVTTGAGNPSKYMERFHEAGIIVIPVVPSVALAKRMEKIGADAVIAEGMEAGGHIGKLTTMTLVRQVATAISIPVIAAGGIADGEGAAAGFMLGAEAVQVGTRFVVAKESNAHPNYKEKILKARDIDTTISAQHFGHAVRAIKNQLTRDFELAEKDAFKQEDPDLEIFEQMGAGALAKAVVHGDVDGGSVMAGQIAGLVSKEETAEEILKDLYYGAAKKIQEEASRWTGVVRNDLEHHHHHH +>6o7a_B mol:protein length:554 Ion channel CASTOR +MAKGKSEVVEQNHTLILGWSDKLGSLLNQLAIANESLGGGTIAVMAERDKEDMELDIGKMEFDFKGTSVICRSGSPLILADLKKVSVSKARTIIVLAEDGNADQSDARALRTVLSLTGVKEGLRGHIVVEMSDLDNEVLVKLVGGDLVETVVAHDVIGRLMIQCARQPGLAQIWEDILGFENCEFYIKRWPQLDGMLFEDVLISFPAAIPCGIKVASYGGKIILNPDDSYVLQEGDEVLVIAEDDDTYAPAPLPMVRRGSLPKDFVYPKSPERILFCGWRRDMEDMITVLDASLAPDSELWMFNDVPEKEREKKLIDGGLDISRLENISLVNREGNAVIRRHLESLPLESFDSILILADESVEDSAIQADSRSLATLLLIRDIQARRLPYVAMASQTQGGNFSKGSWIGEMKQASDKTVIISEILDPRTKNLLSMSKISDYVLSNELVSMALAMVAEDRQINDVLEELFAEEGNEMHIRQADIYLREGEEMSFYEIMLRARQRREILIGYRLANAERAVINPPAKTGRRKWSLKDVFVVITEKEGSRSHHHHHH +>3j3q_6T mol:protein length:231 capsid protein +PIVQNLQGQMVHQAISPRTLNAWVKVVEEKAFSPEVIPMFSALSEGATPQDLNTMLNTVGGHQAAMQMLKETINEEAAEWDRLHPVHAGPIEPGQMREPRGSDIAGTTSTLQEQIGWMTHNPPIPVGEIYKRWIILGLNKIVRMYSPTSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPAATLEEMMTACQGVGGPGHKARVL +>7ls9_G mol:protein length:215 1-57 Fab light chain +EIVLTQSPGTLSLSPGERATLSCRASQSVSSSYLAWYQQKPGQAPRLLIYGASSRATGIPDRFSGSGSGTDFTLTISRLEPEDFAVYYCQQYGSSPSTFGQGTKLEIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>2v2z_A mol:protein length:271 4-DIPHOSPHOCYTIDYL-2C-METHYL-D-ERYTHRITOL KINASE +GSHMIKVLSPAKINLGLWVLGRLPSGYHEILTLYQEIPFYDEIYIREGVLRVETNIGIPQEENLVYKGLREFERITGIEINYSIFIQKNIPPGAGLGGGSSNLAVVLKKVNELLGSPLSEEELRELVGSISADAPFFLLGKSAIGRGKGEVLEPVETEISGKITLVIPQVSSSTGRVYSSLREEHFVTPEYAEEKIQRIISGEVEEIENVLGDIARELYPEINEVYRFVEYLGFKPFVSGSGSTVYFFGGASEELKKAAKMRGWKVVELEL +>2jhu_B mol:protein length:138 RHO GDP-DISSOCIATION INHIBITOR 1 +AMVPNVVVTGLTLVCSSAPGPLELDLTGDLESFKKQSFVLKEGVEYRIKISFRVNREIVSGMKYIQHTYRKGVKIDKTDYMVGSYGPRAAAYEFLTPVEEAPKGMLARGSYSIKSRFTDDDKTDHLSWEWNLTIKKDW +>6bet_A mol:protein length:12 H(DPR)(DVA)CIP(DPR)E(DLY)VC(DGL) +HPVCIPPEKVCE +>7r3v_D mol:protein length:239 Cytochrome c1, heme protein, mitochondrial +DLELHPPSYPWSHRGLLSSLDHTSIRRGFQVYKQVCSSCHSMDYVAYRHLVGVCYTEDEAKALAEEVEVQDGPNEDGEMFMRPGKLSDYFPKPYPNPEAARAANNGALPPDLSYIVRARHGGEDYVFSLLTGYCEPPTGVSLREGLYFNPYFPGQAIGMAPPIYNEVLEFDDGTPATMSQVAKDVCTFLRWAAEPEHDHRKRMGLKMLLMMGLLLPLVYAMKRHKWSVLKSRKLAYRPP +>3e21_A mol:protein length:45 FAS-associated factor 1 +GSMDREMILADFQACTGIENIDEAITLLEQNNWDLVAAINGVIPQ +>6gcv_C mol:protein length:146 Chemotaxis transducer +SGLVPAGSHMYLSMSISPETINVAGAQRMLSQKMAREALQLRLGAGDPKALAATIAQYERSAADLDAGNAERNVSRMGAPEIAAQRQKVAQIWGRYRAMLDQVAQPASQVDLRGFSQYSTELLGELNNLVSLMSARADSVQHTQMW +>6ev1_A mol:protein length:220 Heavy chain +EVQLQQSGAELAKPGASVKMSCKASGYTFTSYWMHWVKQRPGQGLEWIGYINPSTGYTEYNQKFKDKATLTADKSSSTAYMQLSSLTSEDSAVYYCAPLWPLGTDYWGQGTTLTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSC +>6pbz_D mol:protein length:494 Guanosine-5'-triphosphate,3'-diphosphate pyrophosphatase +MGSTSSLYAAIDLGSNSFHMLVVREVAGSIQTLTRIKRKVRLAAGLNSENALSNEAMERGWQCLRLFAERLQDIPPSQIRVVATATLRLAVNAGDFIAKAQEILGCPVQVISGEEEARLIYQGVAHTTGGADQRLVVDIGGASTELVTGTGAQTTSLFSLSMGCVTWLERYFADRNLGQENFDAAEKAAREVLRPVADELRYHGWKVCVGASGTVQALQEIMMAQGMDERITLEKLQQLKQRAIHCGRLEELEIDGLTLERALVFPSGLAILIAIFTELNIQCMTLAGGALREGLVYGMLHLAVEQDIRSRTLRNIQRRFMIDIDQAQRVAKVAANFFDQVENEWHLEAISRDLLISACQLHEIGLSVDFKQAPQHAAYLVRNLDLPGFTPAQKKLLATLLLNQTNPVDLSSLHQQNAVPPRVAEQLCRLLRLAIIFASRRRDDLVPEMTLQANHELLTLTLPQGWLTQHPLGKEIIAQESQWQSYVHWPLEVH +>5k00_A mol:protein length:335 Maternal embryonic leucine zipper kinase +MDYDELLKYYELHETIGTGGFAKVKLACHILTGEMVAIKIMDKNTLGSDLPRIKTEIEALKNLRHQHICQLYHVLETANKIFMVLEYCPGGELFDYIISQDRLSEEETRVVFRQIVSAVAYVHSQGYAHRDLKPENLLFDEYHKLKLIDFGLCAKPKGNKDYHLQTCCGSLAYAAPELIQGKSYLGSEADVWSMGILLYVLMCGFLPFDDDNVMALYKKIMRGKYDVPKWLSPSSILLLQQMLQVDPKKRISMKNLLNHPWIMQDYNYPVEWQSKNPFIHLDDDCVTELSVHHRNNRQTMEDLISLWQYDHLTATYLLLLAKKARGKPVHHHHHH +>7xtb_R mol:protein length:584 Soluble cytochrome b562,5-hydroxytryptamine receptor 6 +DYKDDDDAKLQTMHHHHHHHHHHHHHHHADLEDNWETLNDNLKVIEKADNAAQVKDALTKMRAAALDAQKATPPKLEDKSPDSPEMKDFRHGFDILVGQIDDALKLANEGKVKEAQAAAEQLKTTRNAYIQKYLASENLYFQGGTVPEPGPTANSTPAWGAGPPSAPGGSGWVAAALCVVIALTAAANSLLIALICTQPALRNTSNFFLVSLFTSDLMVGLVVMPPAMLNALYGRWVLARGLCLLWTAFDVMCCSASILNLCLISLDRYLLILSPLRYKLRMTPLRALALVLGAWSLAALASFLPLLLGWHELGHARPPVPGQCRLLASLPFVLVASGLTFFLPSGAICFTYCRILLAARKQAVQVASLTTGMASQASETLQVPRTPRPGVESADSRRLATKHSRKALKASLTLGILLGMFFVTWLPFFVANIVQAVCDCISPGLFDVLTWLGYCNSTMNPIIYPLFMRDFKRALGRFLPCPRCPRERQASLASPSLRTSHSGPRPGLSLQQVLPLPLPPDSDSDSDAGSGGSSGLRLTAQLLLPGEATQDPPLPTRAAAAVNFFNIDPAEPELRPHPLGIPTN +>6y35_C mol:protein length:119 CCAAT-binding factor complex subunit HapE +MGTWANVNQGLQGTARDILTTYWQHIINHLESDNHDYKIHQLPLARIKKVMKADPEVKMISAEAPILFAKGCDIFITELTMRAWIHAEDNKRRTLQRSDIAAALSKSDMFDFLIDIVPR +>1bcf_L mol:protein length:158 BACTERIOFERRITIN +MKGDTKVINYLNKLLGNELVAINQYFLHARMFKNWGLKRLNDVEYHESIDEMKHADRYIERILFLEGLPNLQDLGKLNIGEDVEEMLRSDLALELDGAKNLREAIGYADSVHDYVSRDMMIEILRDEEGHIDWLETELDLIQKMGLQNYLQAQIREEG +>3oqm_A mol:protein length:339 Catabolite control protein A +MNITIYDVAREANVSMATVSRVVNGNPNVKPTTRKKVLEAIERLGYRPNAVARGLASKKTTTVGVIIPDISSIFYSELARGIEDIATMYKYNIILSNSDQNMEKELHLLNTMLGKQVDGIVFMGGNITDEHVAEFKRSPVPIVLAASVEEQEETPSVAIDYEQAIYDAVKLLVDKGHTDIAFVSGPMAEPINRSKKLQGYKRALEEANLPFNEQFVAEGDYTYDSGLEALQHLMSLDKKPTAILSATDEMALGIIHAAQDQGLSIPEDLDIIGFDNTRLSLMVRPQLSTVVQPTYDIGAVAMRLLTKLMNKEPVEEHIVELPHRIELRKSTKSHHHHHH +>6epf_4 mol:protein length:201 Proteasome subunit beta type-2 +MEYLIGIQGPDYVLVASDRVAASNIVQMKDDHDKMFKMSEKILLLCVGEAGDTVQFAEYIQKNVQLYKMRNGYELSPTAAANFTRRNLADCLRSRTPYHVNLLLAGYDEHEGPALYYMDYLAALAKAPFAAHGYGAFLTLSILDRYYTPTISRERAVELLRKCLEELQKRFILNLPTFSVRVIDKDGIHNLENITFTKRSS +>6t7g_CCC mol:protein length:674 Glyco_hydro_42M domain-containing protein +MGSSHHHHHHSSGLEVLFQGPAERISKQSTPFVGAQIFIEPGQTQEQIEQWFKLLAESNMTTCRIRMFGKYMKTPSGTYDFTLFDRAFKLADKYHIKVYATLFPDTEFTDVGGFKFPHSREHQKEVEDYIKNVVSHFSQYKNLAAWVLINEPGTPNLPFNEPFTKERFSDWKKEHNFSEYNEKGYPVLNFEKENFIIDYHNWYLNWLANQVRLYDKQHDLHVNPHNVFKLSGLYDFPTWRTFLNSLGGSAHASWHFGYFPRKAYTVAMSANAELIRSGAGELPWLMTELQGGNNLYSGANPLCPTAEEIIQWLWINFATEAKGGIFWSFNARSTAAEAGEWAMINFKNKSSDRLIAAATIGKFITENVKMMSNIKTLNSGISILYNHESMWVEAAQTRGKLNGNGRSIGAVMCSPLSYFEALSETGLQANFKEIKEFDFSLNDYTDQVIILSHQIALDNKVIKQLESFVEKGGTLIADGLTGYYDYQAHSTVVSGFALENLFGSYPIEYKIKENLFSLDFEKDNYKLPAHLWKGTIETSKATPIMDKEGECIACINQYGKGKVFWIPSPIALGARESKDFSELSKLTVSLLPNKILNDNPHFDKHYKDVMMKSFKSNGTMYSLIINKSASVQTVDIVGGKGKAFILFANKNAHSTANKLTISPEETVIIKWKNN +>5ysl_F mol:protein length:215 1H1 light chain +DIILTQSPAIMSASLGERVTLTCTASSSVSSSYLHWYQQKPGSSPKLWIYSTYNLAGAVPPRFSGSGSGTSYSLTISSMEAEDAATYYCQQYHRSPWTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKNFNRNEC +>5ydz_C mol:protein length:580 mammalian endo-lysosomal TRPML1 channel +MATPAGRRASETERLLTPNPGYGTQVGTSPAPTTPTEEEDLRRRLKYFFMSPCDKFRAKGRKPCKLMLQVVKILVVTVQLILFGLSNQLVVTFREENTIAFRHLFLLGYSDGSDDTFAAYTQEQLYQAIFYAVDQYLILPEISLGRYAYVRGGGGPWANGSALALCQRYYHRGHVDPANDTFDIDPRVVTDCIQVDPPDRPPDIPSEDLDFLDGSASYKNLTLKFHKLINVTIHFQLKTINLQSLINNEIPDCYTFSILITFDNKAHSGRIPIRLETKTHIQECKHPSVSRHGDNSFRLLFDVVVILTCSLSFLLCARSLLRGFLLQNEFVVFMWRRRGREISLWERLEFVNGWYILLVTSDVLTISGTVMKIGIEAKNLASYDVCSILLGTSTLLVWVGVIRYLTFFHKYNILIATLRVALPSVMRFCCCVAVIYLGYCFCGWIVLGPYHVKFRSLSMVSECLFSLINGDDMFVTFAAMQAQQGHSSLVWLFSQLYLYSFISLFIYMVLSLFIALITGAYDTIKHPGGTGTEKSELQAYIEQCQDSPTSGKFRRGSGSACSLFCCCGRDSPEDHSLLVN +>6gqv_AF mol:protein length:124 40S ribosomal protein S15 +KKRVFKTHSYRGVDLEKLLEMSTEDFVKLAPARVRRRFARGMTSKPAGFMKKLRAAKLAAPENEKPAPVRTHMRNMIIVPEMIGSVVGIYNGKAFNQVEIRPEMLGHYLGEFSITYTPVRHGRA +>3is7_S mol:protein length:158 Bacterioferritin +MKGDKKVIQHLNKILGNELIAINQYFLHSRMWNDWGLKRLGAHEYHESIDEMKHADKLIERILFLEGLPNLQDLGKLLIGENTQEMLQCDLNLELKATKDLREAIVHCEQVHDYVSRDLLKDILESEEEHIDYLETQLGLIQKVGLENYLQSHMHEDD +>3g5f_A mol:protein length:396 Cytochrome P450 121 +MTATVLLEVPFSARGDRIPDAVAELRTREPIRKVRTITGAEAWLVSSYALCTQVLEDRRFSMKETAAAGAPRLNALTVPPEVVNNMGNIADAGLRKAVMKAITPKAPGLEQFLRDTANSLLDNLITEGAPADLRNDFADPLATALHCKVLGIPQEDGPKLFRSLSIAFMSSADPIPAAKINWDRDIEYMAGILENPNITTGLMGELSRLRKDPAYSHVSDELFATIGVTFFGAGVISTGSFLTTALISLIQRPQLRNLLHEKPELIPAGVEELLRINLSFADGLPRLATADIQVGDVLVRKGELVLVLLEGANFDPEHFPNPGSIELDRPNPTSHLAFGRGQHFCPGSALGRRHAQIGIEALLKKMPGVDLAVPIDQLVWRTRFQRRIPERLPVLW +>6wdh_l mol:protein length:143 50S ribosomal protein L15 +RLNTLSPAEGSKKAGKRLGRGIGSGLGKTGGRGHKGQKSRSGGGVRRGFEGGQMPLYRRLPKFGFTSRKAAITAEIRLSDLAKVEGGVVDLNTLKAANIIGIQIEFAKVILAGEVTTPVTVRGLRVTKGARAAIEAAGGKIEE +>3ej7_D mol:protein length:70 Beta-subunit of trans-3-chloroacrylic acid dehalogenase +PFIECHIATGLSVARKQQLIRDVIDVTNKSIGSDPKIINVLLVEHAEANMSISGRIHGEAASTERTPAVS +>5t5h_e mol:protein length:245 60S ribosomal protein L2 +GKTVLTCRKGNGSIYQVHGHKRLGPAKLRILDYAERHGFMRGVVKTIEHEPGRGAPLARVEFRHPYKYRRVKELMVAPEGMFTGQSVLCGVKAPLAIGNVLPLGQITEGCIVCNVEAKVGDRGTIARASGDYCIIISHNHETGRTRLKLPSGQKKTVPSNCRAMIGIIAGGGRIEKPVLKAGNSFYRFRGKRNCWPKVRGVARNPVEHPHGGGNHQHIGHPSTVSRHAPPGQKVGLIAARRTGRI +>6nsh_XJ mol:protein length:105 30S ribosomal protein S10 +MPKIRIKLRGFDHKTLDASAQKIVEAARRSGAQVSGPIPLPTRVRRFTVIRGPFKHKDSREHFELRTHNRLVDIINPNRKTIEQLMTLDLPTGVEIEIKTVGGGR +>5lnn_A mol:protein length:206 Histidine kinase CKI1 +GSSHHHHHHSSGLVPRGSHMASTDSESETRVKSVRTGRKPIGNPEDEQETSKPSDDEFLRGKRVLVVDDNFISRKVATGKLKKMGVSEVEQCDSGKEALRLVTEGLTQREEQGSVDKLPFDYIFMACQMPEMDGYEATREIRKVEKSYGVRTPIIAVSGHDPGSEEARETIQAGMDAFLDKSLNQLANVIREIESKRHLEHHHHHH +>2qxu_A mol:protein length:179 Lipase +HNPVVMVHGIGGASFNFAGIKSYLVSQGWSRDKLYAVDFWDKTGTNYNNGPVLSRFVQKVLDETGAKKVDIVAHSMGGANTLYYIKNLDGGNKVANVVTLGGANRLTTGKALPGTDPNQKILYTSIYSSADMIVMNYLSRLDGARNVQIHGVGHIGLLYSSQVNSLIKEGLNGGGQNTN +>1kyo_A mol:protein length:430 UBIQUINOL-CYTOCHROME C REDUCTASE COMPLEX CORE PROTEIN I +AEVTQLSNGIVVATEHNPAHTASVGVVFGSGAANENPYNNGVSNLWKNIFLSKENSAVAAKEGLALSSNISRDFQSYIVSSLPGSTDKSLDFLNQSFIQQKANLLSSSNFEATKKSVLKQVQDFEDNDHPNRVLEHLHSTAFQNTPLSLPTRGTLESLENLVVADLESFANNHFLNSNAVVVGTGNIKHEDLVNSIESKNLSLQTGTKPVLKKKAAFLGSEVRLRDDTLPKAWISLAVEGEPVNSPNYFVAKLAAQIFGSYNAFEPASRLQGIKLLDNIQEYQLCDNFNHFSLSYKDSGLWGFSTATRNVTMIDDLIHFTLKQWNRLTISVTDTEVERAKSLLKLQLGQLYESGNPVNDANLLGAEVLIKGSKLSLGEAFKKIDAITVKDVKAWAGKRLWDQDIAIAGTGQIEGLLDYMRIRSDMSMMRW +>7dbn_D mol:protein length:444 HIV-1 RT p51 subunit +MAHHHHHHALEVLFQGPISPIETVPVKLKPGMDGPKVKQWPLTEEKIKALVEICTEMEKEGKISKIGPENPYNTPVFAIKKKDSTKWRKLVDFRELNKRTQDFWEVQLGIPHPAGLKQKKSVTVLDVGDAYFSVPLDKDFRKYTAFTIPSINNETPGIRYQYNVLPQGWKGSPAIFQSSMTKILEPFRKQNPDIVIYQYMDDLYVGSDLEIGQHRTKIEELRQHLLRWGFTTPDKKHQKEPPFLWMGYELHPDKWTVQPIVLPEKDSWTVNDIQKLVGKLNWASQIYAGIKVRQLSKLLRGTKALTEVVPLTEEAELELAENREILKEPVHGVYYDPSKDLIAEIQKQGQGQWTYQIYQEPFKNLKTGKYARMKGAHTNDVKQLTEAVQKIATESIVIWGKTPKFKLPIQKETWEAWWTEYWQATWIPEWEFVNTPPLVKLWYQ +>7unu_Q mol:protein length:116 50S ribosomal protein L18 +MSVKKETRLRRARKARLKMRELETVRLCVYRSSQHIYAQVIAADGGKVLASASTLDKDLREGATGNIDAAKKVGQLVAERAKAAGVTQVAFDRSGFKYHGRVKALADAAREGGLEF +>7lst_A mol:protein length:800 Pullulanase +MRTTKKIVSAVLAACMLASTAVVSSFAATADDSSAVSSDYARDNSYTKAAEDIDAQYAYSGNDLGVTYTKDATTFKVWSPTATGVKLNIFTKGSDDEQGASKVASYTLEKMLVDGEWNGVWTITLVGEWKDYYYTYSVTTTDTTHIGSDATKTYETQDVYSTATGVNGKRSMIVDLDETDPEGWSNDSHVLLDKSTKSSVWELHIKDFSYDKASGVSDANRGKYLAFTENGTTLNGEGKVSTCIDYLKELGVTTVQLNPFYDFQSVNEAGDDSQFNWGYDPVNYNVPEGSYSSNPYDGKVRIKECKEMIKALHDAGISVVMDVVYNHTYSTDSCFQYTVPNYYYRMKTTGAFSDGSGCGNEGATERAMYRQYVIDSLKYWVNEYHVDGFRFALMGLMDVETMNMAREALDQIDPRITMWGEGWAGGDSYHPTNTCSGTKFYPATQANASRLSDRIAIFNDGIRDGIKGSAMDISDVGFIQGSKSSAKGVSYGVRANSSGTYKWKAQAPSQCVTYDACHDNATLYDQIIASTGLADYGERNSEAVKMNRLASAIIYTSQGISFTLAGEEMARSKDGDTNSYKSAANLNMIKWQNVVDYADVVSYYKGMMQIKSAFSPLTAMDNSYADKYTFTKKVSASTNQISFTIQNDVEGEWNKMAVIYNNATTAADVTLSDTSVTDWVVIANGETAGLDSLGEVTGSTFTVPARSAIVAVDKAGYESAGIHSSKGKVKVNYVYEATGEKLEDSVILQGSVGSGYVTVPSAVIPDTYIVSRIGGNAEGKYTSDMQEVTYYYTDYIPESL +>4z9k_B mol:protein length:116 VHH2(F5) antibody +VQLVESGGGLVQPGGSLRLSCAASGFTLDDYAIGWFRQVPGKEREGVACVKDGSTYYADSVKGRFTISRDNGAVYLQMNSLKPEDTAVYYCASRPCFLGVPLIDFGSWGQGTQVTV +>7vnr_G mol:protein length:1049 Potassium voltage-gated channel subfamily KQT member 4,Maltodextrin-binding protein +MDYKDDDDKAEAPPRRLGLGPPPGDAPRAELVALTAVQSEQGEAGGGGSPRRLGLLGSPLPPGAPLPGPGSGSGSACGQRSSAAHKRYRRLQNWVYNVLERPRGWAFVYHVFIFLLVFSCLVLSVLSTIQEHQELANECLLILEFVMIVVFGLEYIVRVWSAGCCCRYRGWQGRFRFARKPFCVIDFIVFVASVAVIAAGTQGNIFATSALRSMRFLQILRMVRMDRRGGTWKLLGSVVYAHSKELITAWYIGFLVLIFASFLVYLAEKDANSDFSSYADSLWWGTITLTTIGYGDKTPHTWLGRVLAAGFALLGISFFALPAGILGSGFALKVQEQHRQKHFEKRRMPAANLIQAAWRLYSTDMSRAYLTATWYYYDSILPSFRELALLFEHVQRARNGGLRPLEVRRAPVPDGAPSRYPPVATCHRPGSTSFCPGESSRMGIKDRIRMGSSQRRTGPSKQHLAPPTMPTSPSSEQVGEATSPTKVQKSWSFNDRTRFRASLRLKPRTSAEDAPSEEVAEEKSYQCELTVDDIMPAVKTVIRSIRILKFLVAKRKFKETLRPYDVKDVIEQYSAGHLDMLGRIKSLQTRVDQIVGRGPGDRKAREKGDKGPSDAEVVDEISMMGRVVKVEKQVQSIEHKLDLLLGFYSRCLRSGTSALEVLFQGPMAKIEEGKLVIWINGDKGYNGLAEVGKKFEKDTGIKVTVEHPDKLEEKFPQVAATGDGPDIIFWAHDRFGGYAQSGLLAEITPDKAFQDKLYPFTWDAVRYNGKLIAYPIAVEALSLIYNKDLLPNPPKTWEEIPALDKELKAKGKSALMFNLQEPYFTWPLIAADGGYAFKYENGKYDIKDVGVDNAGAKAGLTFLVDLIKNKHMNADTDYSIAEAAFNKGETAMTINGPWAWSNIDTSKVNYGVTVLPTFKGQPSKPFVGVLSAGINAASPNKELAKEFLENYLLTDEGLEAVNKDKPLGAVALKSYEEELAKDPRIAATMENAQKGEIMPNIPQMSAFWYAVRTAVINAASGRQTVDEALKDAQTNAAAEHHHHHHHHHH +>6mng_A mol:protein length:208 4738 TCR alpha chain +MQQVRQSPQSLTVWEGETAILNCSYENSAFDYLPWYQQFPGEGPALLIAIRSVSDKKEDGRFTIFFNKREKKLSLHITDSQPGDSATYFCAGIDTGANTGKLTFGHGTILRVHPNIQNPDPAVYQLRDSKSSDKSVCLFTDFDSQTNVSQSKDSDVYITDKCVLDMRSMDFKSNSAVAWSNKSDFACANAFNNSIIPEDTFFPSPESS +>4r4j_A mol:protein length:366 Aspartate-semialdehyde dehydrogenase +MGYTVAVVGATGAVGAQMIKMLEESTLPIDKIRYLASARSAGKSLKFKDQDITIEETTETAFEGVDIALFSAGSSTSAKYAPYAVKAGVVVVDNTSYFRQNPDVPLVVPEVNAHALDAHNGIIACPNCSTIQMMVALEPVRQKWGLDRIIVSTYQAVSGAGMGAILETQRELREVLNDGVKPCDLHAEILPSGGDKKHYPIAFNALPQIDVFTDNDYTYEEMKMTKETKKIMEDDSIAVSATCVRIPVLSAHSESVYIETKEVAPIEEVKAAIAAFPGAVLEDDVAHQIYPQAINAVGSRDTFVGRIRKDLDAEKGIHMWVVSDNLLKGAAWNSVQIAETLHERGLVRPTAELKFELKLEHHHHHH +>7p7j_B mol:protein length:220 NADH-quinone oxidoreductase subunit B +MDYTLTRIDPNGENDRYPLQKQEIVTDPLEQEVNKNVFMGKLNDMVNWGRKNSIWPYNFGLSCCYVEMVTSFTAVHDVARFGAEVLRASPRQADLMVVAGTCFTKMAPVIQRLYDQMLEPKWVISMGACANSGGMYDIYSVVQGVDKFIPVDVYIPGCPPRPEAYMQALMLLQESIGKERRPLSWVVGDQGVYRANMQSERERKRGERIAVTNLRTPDEI +>1ocz_D mol:protein length:147 CYTOCHROME C OXIDASE +AHGSVVKSEDYALPSYVDRRDYPLPDVAHVKNLSASQKALKEKEKASWSSLSIDEKVELYRLKFKESFAEMNRSTNEWKTVVGAAMFFIGFTALLLIWEKHYVYGPIPHTFEEEWVAKQTKRMLDMKVAPIQGFSAKWDYDKNEWKK +>7p7q_P mol:protein length:144 50S ribosomal protein L16 +MLVPKRVKHRREFRGKMRGEAKGGKEVAFGEWGLQATESHWITNRQIEAARIAMTRYMKRGGKVWIKIFPHKSYTSKAIGVRMGKGKGAPEGWVSPVKRGKIMFEIAGVPEEVAREALRLASHKLPVKTKIVKREEMGGESNEG +>7tqa_C mol:protein length:231 Fab S9.6 heavy chain +EVQLQQSGPELVKPGASVKMSCKASGYTFTSYVMHWVKQKPGQGLEWIGFINLYNDGTKYNEKFKGKATLTSDKSSSTAYMELSSLTSKDSAVYYCARDYYGSRWFDYWGQGTTLTVSSAKTTAPSVYPLAPVCGDTTGSSVTLGCLVKGYFPEPVTLTWNSGSLSSGVHTFPAVLQSDLYTLSSSVTVTSSTWPSQSITCNVAHPASSTKVDKKISALPETGGGHHHHHH +>3taz_B mol:protein length:471 DNA double-strand break repair protein nurA +MGSSHHHHHHSSGLVPRGSHMRLLSKQSIERITKILLDELENVRENEQIRNIINSWKPLPSPEKSSIYAVDGSRSVSRLSGTVIYFLSALAVGSGKQLRLSYANAIKSNYGTSDQIVRMQMETLENMLGYLAYRKLEGEKRAILMDGTLTGSLVRPPVYPEDIRSLNVMRALIGESDFENLLNEFLEKLRDHYRKVEEHLEKNGNYDSPILTDNVVEKLRKKYIDTKVIAYGSGKVKVKIPRKALGYSPRVIPIEVLESSRGKSVDELLQELDEEKVELYLGKDDIYDALHMTLSYIEYLYSIDKLLEVKNLAYIAKSFYTKTLARTLGVEIVDTALLDAVIRTLIGHEKEGYLEIEHAVVPPKWSFPDFLLSKFRNIEKLIDKGIHLAYVRFEQGDVIYMLQSTTNIEKILPLILHHKAGGYLRPLQLAHHGVKISYKEARHTLEALINALRNRDPALKIFVKYGRSPLE +>7uwd_a mol:protein length:823 V-type proton ATPase subunit a +MAELQSGGGGGCCPPMDLFRSEPMQLVQIIIPIESAHLTVSYLGELGLLQFKDLNSEKSPFQRTYAAQIKKCAEMARKLRFFKEQMLKAGILSSVKSTTRADNNTDDLEVKLGDLEAELVEINANGDKLQRAHSELVEYKLVLQKAGEFFSSALTSAAAQQREMESQQTGEMTIETPLLTDKEMSADPSKQIKLGFIAGLVPREKSMSFERMLFRATRGNVFLRQAVVDEPVVDPVSGEKMEKNVFVVFYSGERAKNKILKICDAFGANRYPFNEEFDKQAQAISEVSGRLSELKTTLDAGLLHRGNLLQTIGDQFEQWNLLVKREKSIYHTLNMLSLDVTKKCLVGEGWSPVFATKQIQDALERAAFDSNSQVGAIFQVLHTKESPPTYFRTNKFTSAFQEIVDAYGVAKYREANPGVFTIVTFPFLFAVMFGDWGHGICLLLGTLVLIVREKKLASQKLDDITDMTFGGRYVILMMALFSIYTGLIYNEFFSVPFEIFSHSAYACRDLSCSEATTVGLIKVRDTYPFGVDPVWHGSRSELPFLNSLKMKMSILLGVAQMNLGIILSYFNATFFRIGVNIWCQFIPQIIFLNSLFGYLSLLIILKWITGSQADLYHVMIYMFLSPTDELGDNQLFPGQKTAQLVLLLLAFVSVPWMLLPKPFILKMQHQDRHQGQSYEALQSTDESLQPDTNHDSHGHEEFEFSEVFVHQMIHTIEFVLGAVSNTASYLRLWALSLAHSELSSVFYEKVLLLAWGYNNILILIVGIIVFIFATVGVLLVMETLSAFLHALRLHWVEFQNKFYEGDGYKFSPFSFALLDDEDE +>2r5b_L mol:protein length:17 HIV entry inhibitor PIE7 +XKGACDYPEWQWLCAAX +>4zzh_A mol:protein length:356 NAD-dependent protein deacetylase sirtuin-1 +GPYTFVQQHLMIGTDPRTILKDLLPETIPPPELDDMTLWQIVINILSEPPKRKKRKDINTIEDAVKLLQECKKIIVLTGAGVSVSCGIPDFRSRDGIYARLAVDFPDLPDPQAMFDIEYFRKDPRPFFKFAKEIYPGQFQPSLCHKFIALSDKEGKLLRNYTQNIDTLEQVAGIQRIIQCHGSFATASCLICKYKVDCEAVRGDIFNQVVPRCPRCPADEPLAIMKPEIVFFGENLPEQFHRAMKYDKDEVDLLIVIGSSLKVRPVALIPSSIPHEVPQILINREPLPHLHFDVELLGDCDVIINELCHRLGGEYAKLCCNPVGGGSGGGSQYLFLPPNRYIFHGAEVYSDSEDDV +>2i03_C mol:protein length:726 Dipeptidyl peptidase 4 +SRKTYTLTDYLKNTYRLKLYSLRWISDHEYLYKQENNILVFNAEYGNSSVFLENSTFDEFGHSINDYSISPDGQFILLEYNYVKQWRHSYTASYDIYDLNKRQLITEERIPNNTQWVTWSPVGHKLAYVWNNDIYVKIEPNLPSYRITWTGKEDIIYNGITDWVYEEEVFSAYSALWWSPNGTFLAYAQFNDTEVPLIEYSFYSDESLQYPKTVRVPYPKAGAVNPTVKFFVVNTDSLSSVTNATSIQITAPASMLIGDHYLCDVTWATQERISLQWLRRIQNYSVMDICDYDESSGRWNCLVARQHIEMSTTGWVGRFRPSEPHFTLDGNSFYKIISNEEGYRHICYFQIDKKDCTFITKGTWEVIGIEALTSDYLYYISNEYKGMPGGRNLYKIQLSDYTKVTCLSCELNPERCQYYSVSFSKEAKYYQLRCSGPGLPLYTLHSSVNDKGLRVLEDNSALDKMLQNVQMPSKKLDFIILNETKFWYQMILPPHFDKSKKYPLLLDVYAGPCSQKADTVFRLNWATYLASTENIIVASFDGRGSGYQGDKIMHAINRRLGTFEVEDQIEAARQFSKMGFVDNKRIAIWGWSYGGYVTSMVLGSGSGVFKCGIAVAPVSRWEYYDSVYTERYMGLPTPEDNLDHYRNSTVMSRAENFKQVEYLLIHGTADDNVHFQQSAQISKALVDVGVDFQAMWYTDEDHGIASSTAHQHIYTHMSHFIKQCFS +>4nb5_B mol:protein length:171 DNA binding protein +VSVNDGVDQMGAEPDIMEFVEQMGGYFESRSLTRLAGRLLGWLLVCDPERQSSEELATALAASSGGISTNARMLIQFGFIERLAVAGDRRTYFRLRPNAFAAGERERIRAMAELQDLADVGLRALGDAPPQRSRRLREMRDLLAYMENVVSDALGRYSQRTGEDDHHHHHH +>5whf_A mol:protein length:90 Vimentin +GPHMEMRELRRQVDQLTNDKARVEVERDNLAEDIMRLREKLQEEMLQREEAENTLQSFRQDVDNASLARLDLERKVESLQEEIAFLKKLH +>2rfz_B mol:protein length:430 Cellulose 1,4-beta-cellobiosidase +QRAGNETPENHPPLTWQRCTAPGNCQTVNAEVVIDANWRWLHDDNMQNCYDGNQWTNACSTATDCAEKCMIEGAGDYLGTYGASTSGDALTLKFVTKHEYGTNVGSRFYLMNGPDKYQMFNLMGNELAFDVDLSTVECGINSALYFVAMEEDGGMASYPSNQAGARYGTGYCDAQCARDLKFVGGKANIEGWKSSTSDPNAGVGPYGSCCAEIDVWESNAYAFAFTPHACTTNEYHVCETTNCGGTYSEDRFAGKCDANGCDYNPYRMGNPDFYGKGKTLDTSRKFTVVSRFEENKLSQYFIQDGRKIEIPPPTWEGMPNSSEITPELCSTMFDVFNDRNRFEEVGGFEQLNNALRVPMVLVMSIWDDHYANMLWLDSIYPPEKEGQPGAARGDCPTDSGVPAEVEAQFPDAQVVWSNIRFGPIGSTYDF +>3blw_J mol:protein length:354 Isocitrate dehydrogenase [NAD] subunit 2 +ATVKQPSIGRYTGKPNPSTGKYTVSFIEGDGIGPEISKSVKKIFSAANVPIEWESCDVSPIFVNGLTTIPDPAVQSITKNLVALKGPLATPIGKGHRSLNLTLRKTFGLFANVRPAKSIEGFKTTYENVDLVLIRENTEGEYSGIEHIVCPGVVQSIKLITRDASERVIRYAFEYARAIGRPRVIVVHKSTIQRLADGLFVNVAKELSKEYPDLTLETELIDNSVLKVVTNPSAYTDAVSVCPNLYGDILSDLNSGLSAGSLGLTPSANIGHKISIFEAVHGSAPDIAGQDKANPTALLLSSVMMLNHMGLTNHADQIQNAVLSTIASGPENRTGDLAGTATTSSFTEAVIKRL +>7nvo_q mol:protein length:548 T-complex protein 1 subunit theta +MALHVPKAPGFAQMLKEGAKHFSGLEEAVYRNIQACKELAQTTRTAYGPNGMNKMVINHLEKLFVTNDAATILRELEVQHPAAKMIVMASHMQEQEVGDGTNFVLVFAGALLELAEELLRIGLSVSEVIEGYEIACRKAHEILPNLVCCSAKNLRDIDEVSSLLRTSIMSKQYGNEVFLAKLIAQACVSIFPDSGHFNVDNIRVCKILGSGISSSSVLHGMVFKKETEGDVTSVKDAKIAVYSCPFDGMITETKGTVLIKTAEELMNFSKGEENLMDAQVKAIADTGANVVVTGGKVADMALHYANKYNIMLVRLNSKWDLRRLCKTVGATALPRLTPPVLEEMGHCDSVYLSEVGDTQVVVFKHEKEDGAISTIVLRGSTDNLMDDIERAVDDGVNTFKVLTRDKRLVPGGGATEIELAKQITSYGETCPGLEQYAIKKFAEAFEAIPRALAENSGVKANEVISKLYAVHQEGNKNVGLDIEAEVPAVKDMLEAGILDTYLGKYWAIKLATNAAVTVLRVDQIIMAKPAGGPKPPSGKKDWDDDQND +>5z9m_B mol:protein length:207 DNA gyrase subunit B +GLDAVRKRPGMYIGDTDDGTGLHHMVFEVVDNAIDEALAGHCKEIIVTIHADNSVSVQDDGRGIPTGIHPEEGVSAAEVIMTVLHAGGKFDDNSYKVSGGLHGVGVSVVNALSQKLELVIQREGKIHRQIYEHGVPQAPLAVTGETEKTGTMVRFWPSLETFTNVTEFEYEILAKRLRELSFLNSGVSIRLRDKRDGKEDHFHYEGG +>3c74_F mol:protein length:253 Uridine phosphorylase +KSKSDVFHLGLTKNDLQGAQLAIVPGDPERVEKIAALMDKPVKLASHREFTSWRAELDGKAVIVCSTGIGGPSTSIAVEELAQLGIRTFLRIGTTGAIQPHINVGDVLVTTASVRLDGASLHFAPMEFPAVADFACTTALVEAAKSIGATTHVGVTASSDTFYPGQERYDTYSGRVVRRFKGSMEEWQAMGVMNYEMESATLLTMCASQGLRAGMVAGVIVNRTQQEIPNAETMKQTESHAVKIVVEAARRLL +>4unm_A mol:protein length:615 SECRETED PROTEIN +GSHMSTEKYHQYKINQPEYKAANGKWEIIEFPEKYRQNTIHAALLRTGKVLMVAGSGNNQDNSDDKQYDTRIWDPVKGTIKKVPTPSDLFCTGHTQLANGNLLIAGGTKRYEKLKGDVTKAGGLMVVHNENPDKPITLPAGTKFTGKENGKTFVSKDPVLVPRAEKVFDPATGAFVRNDPGLGRIYVEAQKSGSAYETGTEDNYRVQGLSGADARNTYGIAQKLALDKKDFQGIRDAFEFDPVAEKYIKVDPMHEARWYPTLTTLGDGKILSVSGLDDIGQLVPGKNEVYDPKTKAWTYTDKVRQFPTYPALFLMQNGKIFYSGANAGYGPDDVGRTPGVWDVETNKFTKVPGMSDANMLETANTVLLPPAQDEKYMVIGGGGVGESKLSSEKTRIADLKADDPKFVDGPSLEKGTRYPQASILPDDSVLVSGGSQDYRGRGDSNILQARLYHPDTNEFERVADPLVGRNYHSGSILLPDGRLMFFGSDSLYADKANTKPGKFEQRIEIYTPPYLYRDSRPDLSGGPQTIARGGSGTFTSRAASTVKKVRLIRPSASTHVTDVDQRSIALDFKADGDKLTVTVPSGKNLVQSGWYMMFVTDGEGTPSKAEWVRVP +>5nh3_H mol:protein length:121 anti-human ActRIIB mAb BYM338 Fv heavy-chain +QVQLVQSGAEVKKPGASVKVSCKASGYTFTSSYINWVRQAPGQGLEWMGTINPVSGSTSYAQKFQGRVTMTRDTSISTAYMELSRLRSDDTAVYYCARGGWFDYWGQGTLVTVSSHHHHHH +>5osi_D mol:protein length:182 Vacuolar protein sorting-associated protein 29 +MLVLVLGDLHIPHRCNSLPAKFKKLLVPGKIQHILCTGNLCTKESYDYLKTLAGDVHIVRGDFDENLNYPEQKVVTVGQFKIGLIHGHQVIPWGDMASLALLQRQFDVDILISGHTHKFEAFEHENKFYINPGSATGAYNALETNIIPSFVLMDIQASTVVTYVYQLIGDDVKVERIEYKKP +>6ysr_T mol:protein length:100 50S ribosomal protein L23 +MIREERLLKVLRAPHVSEKASTAMEKSNTIVLKVAKDATKAEIKAAVQKLFEVEVEVVNTLVVKGKVKRHGQRIGRRSDWKKAYVTLKEGQNLDFVGGAE +>2x6r_B mol:protein length:416 TREHALOSE-SYNTHASE TRET +MKMYEVKEFSSGKRKLEDYKSIIGEEEVSKIQEKAEKLKGRSFVHVNSTSFGGGVAEILHSLVPLLRSIGIEARWFVIEGPTEFFNVTKTFHNALQGNESLKLTEEMKELYLNVNRENSKFIDLSSFDYVLVHDPQPAALIEFYEKKSPWLWRCHIDLSSPNREFWEFLRRFVEKYDRYIFHLPEYVQPELDRNKAVIMPPSIDPLSEKNVELKQTEILRILERFDVDPEKPIITQVSRFDPWKGIFDVIEIYRKVKEKIPGVQLLLVGVMAHDDPEGWIYFEKTLRKIGEDYDVKVLTNLIGVHAREVNAFQRASDVILQMSIREGFGLTVTEAMWKGKPVIGRAVGGIKFQIVDGETGFLVRDANEAVEVVLYLLKHPEVSKEMGAKAKERVRKNFIITKHMERYLDILNSLGG +>6rj0_C mol:protein length:337 Coat protein +VRKGNKKLAKQATTKAVNPQPRRRNNNRRRGMRADAPLAKASTITGFGRGTNDVHLTGMSRIAQAVIPAGTGTDGYIVVDETIVPELLPRLGFAARIFQRYAVETLEFEIQPMCPANTGGGYVAGFLPDPTDSDHTFDAIQATRGAVVAKWWESRTIRPQYARALLWTSVGKEQRLTSPGRLILLCVGNNTDVVNVSVLCRWSVRLSVPSLETPEDTFAPILTLGPLYNDSLAANDFKSILLGSTQLDIAPEGAVYSLDRPLSIDYNLGTGDVDRAVYWHVKKVAGNAGTPAGWFHWGLWDNFNKTFTQGTAYYSDAQPRQILLPVGTLFTRADSGN +>5qn5_B mol:protein length:189 Thiol:disulfide interchange protein +AQYEDGKQYTTLEKPVAGAPQVLEFFSFFCPHCYQFEEVLHISDNVKKKLPEGVKMTKYHVNFMGGDLGKDLTQAWAVAMALGVEDKVTVPLFEGVQKTQTIRSASDIRDVFINAGIKGEEYDAAWNSFVVKSLVAQQEKAAADVQLRGVPAMFVNGKYQLNPQGMDTSNMDVFVQQYADTVKYLSEKK +>5e7k_L5 mol:protein length:49 50S ribosomal protein L34 +MKRTWQPNRRKRAKTHGFRARMRTPGGRKVLKRRRQKGRWRLTPAVRKR +>4ru4_F mol:protein length:602 tail spike protein gp49 +GSVGQSLQFLEMGRVTPAQFGAVGDGASHPLSERYATLAEAQTVYPHAVALSDEIDWAALQAAVDSGAPVHIPSGDYQINRGISSTGSLQIAGDGATSIIRPTAAFTGTSVLSCVGSLVALPNISSVSAGSLTIDFASTPNLVAGDVFIIYNPTDSSFSGFRTSYRAGEFCEVRAVSGNTVTIRSALYAAYDGATVAIYKVVSGVVDIASIQIVGGTVPMNGLLVEAVVSPRVDDVTVTLANNAGVYFARCYDAKITNSNISNIGDGGDDYGIIFGNCHDGGADNCKVYARRHAIATGGDAEVGCVPVRNVRMRNCTLRNDITSGTHCADFHGNAEDCSYENCTIYGGATWQGKDISYRHCTITNASGGWIVISAEILGGTFLLDQCTLYTTGDPQPGNRGVIDVGGNSAVLTTNTTQPCNFLIQGGSLRAPSLSTSSYLLRARLEGSTVPVNIQYSGQAIDVGSLGKVLQLDITSGSTSPEYLIVENLAGLPSGITLASAAGGFASAPMRMPVLGGRVQVTTATNASSVTAPVTFRYIYPKAPTVQVTKTDRSYAGNRVGVAIANPTSASGATLGLFTDDGTNFSSAVTNQLNWQAGIYEV +>4y0g_A mol:protein length:90 5'-AMP-activated protein kinase subunit beta-2 +GPLGSPNSQARPTVIRWSEGGKEVFISGSFNNWSTKIPLIKSHNDFVAILDLPEGEHQYKFFVDGQWVHDPSEPVVTSQLGTINNLIHVK +>6pv4_D mol:protein length:653 Glycoside Hydrolase +MGSSHHHHHHSSGLVPRGSHMASTDGITENFYEIYPKPQEISYSGGEFQISDEINIVYDDGIDTYTKKRVDEVLEASNLEATVSNEIVPGKTNFLVGINESGGVVDNYFNKNIPHDESFFDEKMDANIVSVKDGVIGVIAEDTDSAFYGVTTLKHVFNQLEEGNEIKNFRADDYAEVAHRGFIEGYYGNPWSNEDRAELMKFGGDYKLNQYVFAPKDDPYHNSKWRDLYPEEKLSEIKKLAQMGNETKNRYVYALHPFMNNPVRFDTEENYQNDLGVIKAKFTQLLENDVRQFAILADDASAPAQGASMYVKLLTDLTRWLEEQQSTYPDLKTDLMFCPSDYYGNGSSAQLKELNKAEDNVSIVMTGGRIWGEVDENFANNFMNNISTEGHPGRAPFFWINWPCSDNSKQHLIMGGNDTFLHPGVDPSKIDGIVLNPMQQAEANKSALFAIADYAWNIWDNKEEADENWNDSFKYMDHGTAEETNSSLALREISKHMINQNMDGRVRPLQESVELAPKLEAFKQKYDSGASIKEDALELIEEFTNLQKAAEYYKNNPGNERTRDQIIYWLNCWEDTMDAAIGYLKSAIAIEEGDDEAAWANYSEAQSAFEKSKTYGFHYVDHTEYAEVGVQHIVPFIKSMGQNLSVVIGSIVD +>4e51_A mol:protein length:467 Histidine--tRNA ligase +MAHHHHHHMGTLEAQTQGPGSMTEQKRKLEKLTGVKGMNDILPQDAGLWEFFEATVKSLLRAYGYQNIRTPIVEHTPLFTRGIGEVTDIVEKEMYSFVDALNGENLTLRPENTAAVVRAAIEHNMLYDGPKRLWYIGPMFRHERPQRGRYRQFHQVGVEALGFAGPDADAEIVMMCQRLWEDLGLTGIKLEINSLGLAEERAAHRVELIKYLEQHADKLDDDAQRRLYTNPLRVLDTKNPALQEIVRNAPKLIDFLGDVSRAHFEGLQRLLKANNVPFTINPRLVRGLDYYNLTVFEWVTDKLGAQGTVAAGGRYDPLIEQLGGKPTAACGWAMGIERILELLKEEHLVPEQEGVDVYVVHQGDAAREQAFIVAERLRDTGLDVILHCSADGAGASFKSQMKRADASGAAFAVIFGEDEVTNGTASVKPLRGTGDDGEKSVQQSVPVESLTEFLINAMVATAEDGDD +>1j0n_A mol:protein length:752 XANTHAN LYASE +SDEFDALRIKWATLLTGGPALDPADSDIAARTDKLAQDANDYWEDMDLSSSRTYIWYALRGNGTSDNVNAVYERLRTMALAATTVGSSLYGNADLKEDILDALDWLYVNSYNSTRSRSAYNWWHWQLGIPMSLNDTAVLLYDDISAARMATYMDTIDYFTPSIGLTGANRAWQAIVVGVRAVIVKDAVKLAAARNGLSGTGIFPYATGGDGFYADGSFVQHTTFAYTGGYGSSVLETTANLMYLLSGSTWSVSDPNQSNVWQWIYEAYRPLLYKGAMMDMVRGREISRSYAQDHAVGHGIVASIVRLAQFAPAPHAAAFKQIAKRVIQEDTFSSFYGDVSTDTIRLAKAIVDDPSIAPAAAPNLYKQYAAMDRAVLQRPGFALGLALYSTRISSYESINSENGRGWYTGAGATYLYNQDLAQYSEDYWPTVDAYRIPGTTVASGTPIASGTGTSSWTGGVSLAGQYGASGMDLSYGAYNLSARKSWFMFDDEIVALGSGISSTAGIPIETVVDNRKLNGAGDNAWTANGAALSTGLGVAQTLTGVNWVHLAGNTADGSDIGYYFPGGATLQTKREARTGTWKQINNRPATPSTAVTRNYETMWIDHGTNPSGASYGYVLLPNKTSAQVGAYAADPAIEIVVNTSGVQSVKEKTLGLVGANFWTDTTQTADLITSNKKASVMTREIADERLEASVSDPTQANNGTIAIELARSAEGYSADPGITVTQLAPTIKFTVNVNGAKGKSFHASFQLG +>4qyj_D mol:protein length:516 Aldehyde dehydrogenase +MGSSHHHHHHSSGLVPRGSHMNSSLSAIDGLRLPHQMLIGGQWVSAQSGKTLNVYNPATGDILTEVPDGDVEDVNAAVESAAATLRSDTWRRMPPSARERILLRLADLLEVHGDELARLETLNNGKLLIYSKLMEVGASAQWLRYMAGWATKLTGSTLDLSLPLPPEVRSRASTQRVPVGVVAAIIPWNFPLLMAVWKIAPALACGNTVVLKPAEETPLTALRLAELAMEAGLPAGALNVVTGRGETAGDALVRHPKVAKVAFTGSTEVGRIIGSACGRSLKAVSLELGGKSPVIVLADCDPQEAAEGAAAAIFFNHGQVCTAGSRLYVHESIYEDVIQRLAVIGESIVVGSGLEQGVHMGPMVSKKHHENVLRHIRNGIEDGADLICGGTEAPCAQGFFVKPTIFANREKKDIRLLSQEVFGPVLVATPFSDIAEVVNEANRSVYGLGASIWTNDLSAALRINDELEAGTVWVNTHNMVDPNLPFGGFKDSGVGREHGAAAIEHYTTTRSLVIAY +>4b3w_B mol:protein length:190 CYTOGLOBIN +MEKVPGEMEIERRERSEELSEAERKAVQAMWARLYANSEDVGVAILVRFFVNFPSAKQYFSQFKHMEDPLEMERSPQLRKQASRVMGALNTVVENLHDPDKVSSVLALVGKAHALKHKVEPVYFKILSGVILEVVAEEFASDFPPETQRAWAKLRGLIYSHVTAAYKEVGWVQQVPNATTPPATLPSSGP +>6sql_A mol:protein length:270 Enoyl-[acyl-carrier-protein] reductase [NADH] +SMTGLLDGKRILVSGIITDSSIAFHIARVAQEQGAQLVLTGFDRLRLIQRITDRLPAKAPLLELDVQNEEHLASLAGRVTEAIGAGNKLDGVVHSIGFMPQTGMGINPFFDAPYADVSKGIHISAYSYASMAKALLPIMNPGGSIVGMDFDPSRAMPAYNWMTVAKSALESVNRFVAREAGKYGVRSNLVAAGPIRTLAMSAIVGGALGEEAGAQIQLLEEGWDQRAPIGWNMKDATPVAKTVCALLSDWLPATTGDIIYADGGAHTQLL +>2pty_A mol:protein length:432 Enolase +GSHMTIQKVHGREVLDSRGNPTVEVEVTTEKGVFRSAVPSGASTGVYEACELRDGDKKRYVGKGCLQAVKNVNEVIGPALIGRDELKQEELDTLMLRLDGTPNKGKLGANAILGCSMAISKAAAAAKGVPLYRYLASLAGTKELRLPVPCFNVINGGKHAGNALPFQEFMIAPVKATSFSEALRMGSEVYHSLRGIIKKKYGQDAVNVGDEGGFAPPIKDINEPLPILMEAIEEAGHRGKFAICMDCAASETYDEKKQQYNLTFKSPEPTWVTAEQLRETYCKWAHDYPIVSIEDPYDQDDFAGFAGITEALKGKTQIVGDDLTVTNTERIKMAIEKKACNSLLLKINQIGTISEAIASSKLCMENGWSVMVSHRSGETEDTYIADLVVALGSGQIKTGAPCRGERTAKLNQLLRIEEELGAHAKFGFPGWS +>3otw_D mol:protein length:163 Phosphopantetheine adenylyltransferase +HHHHHHMQKIGIYPGTFDPVTNGHIDIIHRSSELFEKLIVAVAHSSAKNPMFSLDERLKMIQLATKSFKNVECVAFEGLLANLAKEYHCKVLVRGLRVVSDFEYELQMGYANKSLNHELETLYFMPTLQNAFISSSIVRSIIAHKGDASHLVPKEIYPLISKA +>7ojp_J mol:protein length:261 Acyl-[acyl-carrier-protein]-UDP-N-acetylglucosamine O-acyltransferase +GSHMSLIDPRAIIDPSARLAADVQVGPWSIVGAEVEIGEGTVIGPHVVLKGPTKIGKHNRIYQFSSVGEDTPDLKYKGEPTRLVIGDHNVIREGVTIHRGTVQDRAETTIGDHNLIMAYAHIGHDSVIGNHCILVNNTALAGHVHVDDWAILSGYTLVHQYCRIGAHSFSGMGSAIGKDVPAYVTVFGNPAEARSMNFEGMRRRGFSSEAIHALRRAYKVVYRQGHTVEEALAELAESAAQFPEVAVFRDSIQSATRGITR +>6ev1_D mol:protein length:213 Light chain +DIVLTQSPAIMSASPGEKVTMTCSASSSVSYMHWYQQKSGTSPKRWIYDTSKLASGVPARFSGSGSGTSYSLTISSMEAEDAATYYCQQWSSNPPTFGAGTKLELKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLRSPVTKSFNRGEC +>1p44_B mol:protein length:269 Enoyl-[acyl-carrier-protein] reductase [NADH] +MTGLLDGKRILVSGIITDSSIAFHIARVAQEQGAQLVLTGFDRLRLIQRITDRLPAKAPLLELDVQNEEHLASLAGRVTEAIGAGNKLDGVVHSIGFMPQTGMGINPFFDAPYADVSKGIHISAYSYASMAKALLPIMNPGGSIVGMDFDPSRAMPAYNWMTVAKSALESVNRFVAREAGKYGVRSNLVAAGPIRTLAMSAIVGGALGEEAGAQIQLLEEGWDQRAPIGWNMKDATPVAKTVCALLSDWLPATTGDIIYADGGAHTQLL +>4v9c_DU mol:protein length:104 50S ribosomal protein L24 +MAAKIRRDDEVIVLTGKDKGKRGKVKNVLSSGKVIVEGINLVKKHQKPVPALNQPGGIVEKEAAIQVSNVAIFNAATGKADRVGFRFEDGKKVRFFKSNSETIK +>6d3g_B mol:protein length:284 Beta-lactamase +SAQSPLLKEQIETIVTGKKATVGVAVWGPDDLEPLLLNPFEKFPMQSVFKLHLAMLVLHQVDQGKLDLNQSVTVNRAAVLQNTWSPMMKDHQGDEFTVAVQQLLQYSVSHSDNVACDLLFELVGGPQALHAYIQSLGVKEAAVVANEAQMHADDQVQYQNWTSMKAAAQVLQKFEQKKQLSETSQALLWKWMVETTTGPQRLKGLLPAGTIVAHKTGTSGVRAGKTAATNDAGVIMLPDGRPLLVAVFVKDSAESERTNEAIIAQVAQAAYQFELKKLSAVSPD +>7ce1_K mol:protein length:341 LacI-type transcription factor +ERPTLKTIAYMTGLGITTVSRALKDAPDIGAETKERVRLIAQQIGYQPNRAGVRLRTGKTNVIALVLSVDEELMGFTSQMVFGITEVLATTQYHLVVTPHTHAKDSMVPIRYILETGSADGVIISKIEPNDPRVRFMTERKMPFVTHGRSDMGIEHAYHDFDNEAYAYEAVERLAQCGRKRIAIIVPPSRFAFHDHARKGFTRGIRDFGVSEFPLDAITIETPLDKIRDFGKRLMQSDDRPDGIVSISGSSTIALVAGFEAAGVRIGKDIDIVSKQSAEFLNWIQPQIHTVNEDIKLAGRELAKALLARINGAPPETLQSVSRPVWSSMAPKPLEHHHHHH +>5tzc_B mol:protein length:344 cGMP-dependent 3',5'-cyclic phosphodiesterase +SAMDDEYTKLLHDGIQPVAAIDSNFASFTYTPRSLPEDDTSMAILSMLQDMNFINNYKIDCPTLARFCLMVKKGYRDPPYHNWMHAFSVSHFCYLLYKNLELTNYLEDIEIFALFISCMCHDLDHRGTNNSFQVASKSVLAALYSSEGSVMERHHFAQAIAILNTHGCNIFDHFSRKDYQRMLDLMRDIILATDLAHHLRIFKDLQKMAEVGYDRNNKQHHRLLLCLLMTSCDLSDQTKGWKTTRKIAELIYKEFFSQGDLEKAMGNRPMEMMDREKAYIPELQISFMEHIAMPIYKLLQDLFPKAAELYERVASNREHWTKVSHKFTIRGLPSNNSLDFLDEE +>1zwu_A mol:protein length:30 AMARANTHUS CAUDATUS ANTIMICROBIAL PEPTIDE 2 (ACMP2) +VGECVRGRCPSGMCCSQAGYCGKGPKYCGR +>7nei_A mol:protein length:267 Polyester Hydrolase Leipzig 7 (PHL-7) +MANPYERGPDPTESSIEAVRGPFAVAQTTVSRLQADGFGGGTIYYPTDTSQGTFGAVAISPGFTAGQESIAWLGPRIASQGFVVITIDTITRLDQPDSRGRQLQAALDHLRTNSVVRNRIDPNRMAVMGHSMGGGGALSAAANNTSLEAAIPLQGWHTRKNWSSVRTPTLVVGAQLDTIAPVSSHSEAFYNSLPSDLDKAYMELRGASHLVSNTPDTTTAKYSIAWLKRFVDDDLRYEQFLCPAPDDFAISEYRSTCPFLEHHHHHH +>3ab4_E mol:protein length:421 Aspartokinase +MALVVQKYGGSSLESAERIRNVAERIVATKKAGNDVVVVCSAMGDTTDELLELAAAVNPVPPAREMDMLLTAGERISNALVAMAIESLGAEAQSFTGSQAGVLTTERHGNARIVDVTPGRVREALDEGKICIVAGFQGVNKETRDVTTLGRGGSDTTAVALAAALNADVCEIYSDVDGVYTADPRIVPNAQKLEKLSFEEMLELAAVGSKILVLRSVEYARAFNVPLRVRSSYSNDPGTLIAGSMEDIPVEEAVLTGVATDKSEAKVTVLGISDKPGEAAKVFRALADAEINIDMVLQNVFSVEDGTTDITFTCPRSDGRRAMEILKKLQVQGNWTNVLYDDQVGKVSLVGAGMKSHPGVTAEFMEALRDVNVNIELISTSEIRISVLIREDDLDAAARALHEQFQLGGEDEAVVYAGTGR +>3qjn_I mol:protein length:7 Beta-PIX +AWDETNL +>6yft_AD mol:protein length:113 coat protein +STFSSLVIGSNTFIPTAPGYYSLSTRGFSDPRNQIKISGGKFNAKTGRVTAAVSRLWETDVTVAGLPVRSAAEVAIIMTLGRGITATNADVLLSDLNTLLDPARLDQILQGGF +>5w08_E mol:protein length:291 Hemagglutinin HA1 +TNATELVQNSSIGEICDSPHQILDGENCTLIDALLGDPQCDGFQNKKWDLFVERSKAYSNCYPYDVPDYASLRSLVASSGTLEFNNESFNWNGVTQNGTSSACIRRSNNSFFSRLNWLTHLNFKYPALNVTMPNNEQFDKLYIWGVHHPVTDKDQIFLYAQPSGRITVSTKRSQQAVIPNIGFRPRIRNIPSRISIYWTIVKPGDILLINSTGNLIAPRGYFKIRSGKSSIMRSDAPIGKCKSECITPNGSIPNDKPFQNVNRITYGACPRYVKQSTLKLATGGALEVLFQ +>6t7m_C mol:protein length:266 3-oxoacyl-[acyl-carrier-protein] reductase FabG +MHHHHHHSSGVDLGTENLYFQSMSFEGKIALVTGASRGIGRAIAETLVARGAKVIGTATSENGAKNISDYLGANGKGLMLNVTDPASIESVLENIRAEFGEVDILVNNAGITRDNLLMRMKDDEWNDIIETNLSSVFRLSKAVMRAMMKKRCGRIITIGSVVGTMGNAGQANYAAAKAGLIGFSKSLAREVASRGITVNVVAPGFIETDMTRALSDDQRAGILAQVPAGRLGGAQEIASAVAFLASDEASYITGETLHVNGGMYMV +>4www_XU mol:protein length:51 30S ribosomal protein S21 +IKVRENEPFDVALRRFKRSCEKAGVLAEVRRREFYEKPTTERKRAKASAVK +>3ab4_I mol:protein length:421 Aspartokinase +MALVVQKYGGSSLESAERIRNVAERIVATKKAGNDVVVVCSAMGDTTDELLELAAAVNPVPPAREMDMLLTAGERISNALVAMAIESLGAEAQSFTGSQAGVLTTERHGNARIVDVTPGRVREALDEGKICIVAGFQGVNKETRDVTTLGRGGSDTTAVALAAALNADVCEIYSDVDGVYTADPRIVPNAQKLEKLSFEEMLELAAVGSKILVLRSVEYARAFNVPLRVRSSYSNDPGTLIAGSMEDIPVEEAVLTGVATDKSEAKVTVLGISDKPGEAAKVFRALADAEINIDMVLQNVFSVEDGTTDITFTCPRSDGRRAMEILKKLQVQGNWTNVLYDDQVGKVSLVGAGMKSHPGVTAEFMEALRDVNVNIELISTSEIRISVLIREDDLDAAARALHEQFQLGGEDEAVVYAGTGR +>6sn9_E mol:protein length:87 Outer membrane protein assembly factor BamE +ERVVYRPDINQGNYLTANDVSKIRVGMTQQQVAYALGTPLMSDPFGTNTWFYVFRQQPGHEGVTQQTLTLTFNSSGVLTNIDNKPAL +>5o9f_B mol:protein length:352 Alcohol dehydrogenase +MKAVQYTEIGSEPVVVDIPTPTPGPGEILLKVTAAGLCYSDISVMDMPAAQYAYGLPLTLGHEGVGTVAELGEGVTGFGVGDAVAVYGPWGCGACHACARGRENYCTRAADLGITPPGLGSPGSMAEYMIVDSARHLVPIGDLDPVAAAPLTDAGLTPYHAISRVLPLLGPGSTAVVIGVGGLGHVGIQILRAVSAARVIAVDLDDDRLALAREVGADAAVKSGAGAADAIRELTGGQGATAVFDFVGAQSTIDTAQQVVAVDGHISVVGIHAGAHAKVGFFMIPFGASVVTPFAGTRSELMEVVALARAGRLDIHTETFTLDEGPAAYRRLREGSIRGRGVVVPTSHHHHH +>7vec_F mol:protein length:118 Gamma-aminobutyric acid receptor-associated protein +GPMKFVYKEEHPFEKRRSEGEKIRKKYPDRVPVIVEKAPKARIGDLDKKKYLVPSDLTVGQFYFLIRKRIHLRAEDALFFFVNNVIPPTSATMGQLYQEHHEEDFFLYIAYSDESVYG +>6r72_C mol:protein length:599 Multidrug exporter ATP-binding cassette +MSSSHHHHHHMPTKKQKSKSKLKPFFALVRRTNPSYGKLAFALALSVVTTLVSLLIPLLTKQLVDGFSMSNLSGTQIGLIALVFFVQAGLSAYATYALNYNGQKIISGLRELLWKKLIKLPVSYFDTNASGETVSRVTNDTMVVKELITTHISGFITGIISVIGSLTILFIMNWKLTLLVLVVVPLAALILVPIGRKMFSISRETQDETARFTGLLNQILPEIRLVKASNAEDVEYGRGKMGISSLFKLGVREAKVQSLVGPLISLVLMAALVAVIGYGGMQVSSGELTAGALVAFILYLFQIIMPMGQITTFFTQLQKSIGATERMIEILAEEEEDTVTGKQIENAHLPIQLDRVSFGYKPDQLILKEVSAVIEAGKVTAIVGPSGGGKTTLFKLLERFYSPTAGTIRLGDEPVDTYSLESWREHIGYVSQESPLMSGTIRENICYGLERDVTDAEIEKAAEMAYALNFIKELPNQFDTEVGERGIMLSGGQRQRIAIARALLRNPSILMLDAATSSLDSQSEKSVQQALEVLMEGRTTIVIAHRLSTVVDADQLLFVEKGEITGRGTHHELMASHGLYRDFAEQQLKMNADLENKAG +>2w85_B mol:protein length:12 PEROXIN-19 +SQEKFFQELFDS +>1z4v_A mol:protein length:532 Hemagglutinin-neuraminidase +SPSESLITQKQIMSQAGSTGSNSGLGSITDLLNNILSVANQIIYNSAVALPLQLDTLESTLLTAIKSLQTSDKLEQNCSWSAALINDNRYINGINQFYFSIAEGRNLTLGPLLNMPSFIPTATTPEGCTRIPSFSLTKTHWCYTHNVILNGCQDHVSSNQFVSMGIIEPTSAGFPFFRTLKTLYLSDGVNRKSCSISTVPGGCMMYCFVSTQPERDDYFSAAPPEQRIIIMYYNDTIVERIINPPGVLDVWATLNPGTGSGVYYLGWVLFPIYGGVIKGTSLWNNQANKYFIPQMVAALCSQNQATQVQNAKSSYYSSWFGNRMIQSGILACPLRQDLTNECLVLPFSNDQVLMGAEGRLYMYGDSVYYYQRSNSWWPMTMLYKVTITFTNGQPSAISAQNVPTQQVPRPGTGDCSATNRCPGFCLTGVYADAWLLTNPSSTSTFGSEATFTGSYLNTATQRINPTMYIANNTQIISSQQFGSSGQEAAYGHTTCFRDTGSVMVYCIYIIELSSSLLGQFQIVPFIRQVTLS +>5xf9_E mol:protein length:591 NAD-reducing hydrogenase +MTTERQRTAPGLLAALHQARSRFGRPLDAQALAELSTAFSLPPGEIAATASFYHFFQTPPARYQIHFVDHVVDHHAGVAALCNHLCAAFAIQPGQRTADARLFVGWTACAGLSDQAPAALINGRPMPRLDAARIDALIEKIQAQIPMDQWPTEWFAVTNAIHRHGPLLTWLDTTPAEAVFEHPTAHDPDAILQAVTDAGLRGRGGAGFPTATKWRFCRENADPERFLICNADEGEPGTFKDRVLLTRYPEHLFAGMILAARAIGADKAILYLRYEYQYLLPQLEAARERIASAQATVPQAERVTLEIALGAGAYVCGEESALIESLEGKPGRPRVRPPYPVTQGYLGHPTVVNNVETLVAVAAIVGNGAAWWRALGTPDSSGPKLFCVSGDVAQPGLYEFPYGVALGDVVTAARPLGTRYAVQVSGPSGTLLPATPEQLARPLAFEALPCNGTVMVFDVRRDPVAIVHHFARFFAHESCGFCTPCRVGTQLIAKTFEKIAAGYATRFDLERLAPALEAMRLASNCGFGLSAGNPVRDLIAHFRQQLEAQLQPHDFIPAFSLDAELAATRRLTGRDDPHAHLAQFEQPEVTR +>2zh3_A mol:protein length:437 CCA-adding enzyme +MKVEEILEKALELVIPDEEEVRKGREAEEELRRRLDELGVEYVFVGSYARNTWLKGSLEIDVFLLFPEEFSKEELRERGLEIGKAVLDSYEIRYAEHPYVHGVVKGVEVDVVPCYKLKEPKNIKSAVDRTPFHHKWLEGRIKGKENEVRLLKGFLKANGIYGAEYKVRGFSGYLCELLIVFYGSFLETVKNARRWTRRTVIDVAKGEVRKGEEFFVVDPVDEKRNVAANLSLDNLARFVHLCREFMEAPSLGFFKPKHPLEIEPERLRKIVEERGTAVFAVKFRKPDIVDDNLYPQLERASRKIFEFLERENFMPLRSAFKASEEFCYLLFECQIKEISRVFRRMGPQFEDERNVKKFLSRNRAFRPFIENGRWWAFEMRKFTTPEEGVRSYASTHWHTLGKNVGESIREYFEIISGEKLFKEPVTAELCEMMGVKD +>5md0_C mol:protein length:74 Capsid protein p24 +TSILDIRQGPKEPFRDYVDRFYKTLRAEQASQEVKNWMTETLLVQNANPDCKTILKALGPGATLEEMMTACQGV +>6myg_A mol:protein length:178 Gamma-crystallin S +MSKTGGKISFYEDRNFLGRRYDCDCDCADFRSYLSRCNSIRVEGGTWAVYERPNFSGHMYILPQGEYPEYQRWMGLNDRLGSCRAVHLSSGGQAKIQVFEKGDFNGQMYETTEDCPSIMEQFHLREIHSCKVVEGTWIFYELPNYRGRQYLLDKKEYRKPVDWGAASPAIQSFRRIVE +>3vyt_B mol:protein length:372 Hydrogenase expression/formation protein HypD +MEEPFEAYRSREVAMKLVEKIREEAKTLDGEIRIMHVCGTHEDTVTRHGIRSLLPENVKVVSGPGCPVCITPVEDIVAMQLIMRKAREEGEEIILTTFGDMYKIPTPMGSFADLKSEGFDVRIVYGIFDTYRIAKENPDKTVVHFSPGFETTTAPAAGMLNVAAQEELENFKIYSVHRLTPPAVEVLLKQGTVFQGLIAPGHVSTIIGVKGWEYLTEKYGIPQVVAGFEPNDVLMAILMLIRMYKEGEARIINEYERAVKYEGNVVAQKMIDKFFEVVDAKWRALGVFPKSGLELRKEWKDFEIRSFYKVEVPKNLPDLEKGCRCGAVLRGLALPTDCPLFGKTCTPRHPVGPCMVSYEGTCQIFYKYGVLF +>4atq_L mol:protein length:456 4-AMINOBUTYRATE TRANSAMINASE +MTTTANELSYRIEQKRNINGAFPGPKSQALAERRSAVVAAGVASGVPVYVEDADGGIIRDVDGNSFIDLGSGIAVTSVGASDPAVVAAVQEAAAHFTHTCFMVTPYEGYVAVTEQLNRLTPGDHAKRTVLFNSGAEAVENAVKVARLATGRDAVVAFDHAYHGRTNLTMALTAKAMPYKTNFGPFAPEVYRMPMSYPFREENPEITGAEAAKRAITMIEKQIGGDQVAAIIIEPIQGEGGFIVPAEGFLPALSEWAKEKGIVFIADEVQSGFCRTGEWFAVDHEGVVPDIITMAKGIAGGLPLSAITGRADLLDAVHPGGLGGTYGGNPVACAAALAAIDTMEQHDLNGRARHIEELALGKLRELAAELSAGGGSVVGDIRGRGAMLAIELVQPGSKEPNAELTKAVAAACLKEGVIILTCGTYGNVIRLLPPLVISDELLIDGLEVLAAAIKAHA +>2cha_C mol:protein length:97 ALPHA-CHYMOTRYPSIN A +ANTPDRLQQASLPLLSNTNCKKYWGTKIKDAMICAGASGVSSCMGDSGGPLVCKKNGAWTLVGIVSWGSSTCSTSTPGVYARVTALVNWVQQTLAAN +>1r7x_A mol:protein length:283 Glycoprotein-fucosylgalactoside alpha-galactosyltransferase +MVSLPRMVYPQPKVLTPCRKDVLVVTPWLAPIVWEGTFNIDILNEQFRLQNTTIGLTVFAIKKYVAFLKLFLETAEKHFMVGHRVHYYVFTDQPAAVPRVTLGTGRQLSVLEVGAYKRWQDVSMRRMEMISDFCERRFLSEVDYLVCVDVDMEFRDHVGVEILTPLFGTLHPSFYGSSREAFTYERRPQSQAYIPKDEGDFYYMGAFFGGSVQEVQRLTRACHQAMMVDQANGIEAVWHDESHLNKYLLRHKPTKVLSPEYLWDQQLLGWPAVLRKLRFTAVP +>6gzq_S2 mol:protein length:78 30S ribosomal protein S19 +KGVFVDDHLLEKVLELNAKGEKRLIKTWSRRSTIVPEMVGHTIAVYNGKQHVPVYITENMVGHKLGEFAPTRTYRGHG +>4lmv_F mol:protein length:252 Glutathione transferase +SQPIVFYDIPSNDTLKQSPWSPNTWKIRYALNIKGIKYKTEWVEYPDIEDVVKKLGGKPTGKKPDGRDHYTVPVIYDPNTKTVVEDGIKIAKYLDDAYPDTPRLFPAGTDAFQAAFDDFVWSVTLAFPLLSLLLLDVSNSLPPRSSAYFRATREQQFGKRLEEQGGEERWQQLEAGLGKFKGYLERNGAGNDLLLMGTQGGITYSDVQIASLFVWAKVVWGEGSEKWKRLMGFHGGKWAQFCAQFAEYERAD +>1lhu_A mol:protein length:189 SEX HORMONE-BINDING GLOBULIN +LRPVLPTQSAHDPPAVHLSNGPGQEPIAVMTFDLTKITKTSSSFEVRTWDPEGVIFYGDTNPKDDWFMLGLRDGRPEIQLHNHWAQLTVGAGPRLDDGRWHQVEVKMEGDSVLLEVDGEEVLRLRQVSGPLTSKRHPIMRIALGGLLFPASNLRLPLVPALDGCLRRDSWLDKQAEISASAPTSLRSCD +>3fx7_A mol:protein length:94 Putative uncharacterized protein +MSRVQMDTEEVREFVGHLERFKELLREEVNSLSNHFHNLESWRDARRDKFSEVLDNLKSTFNEFDEAAQEQIAWLKERIRVLEEDYLEHHHHHH +>4xkj_A mol:protein length:335 D-lactate dehydrogenase +MKIIMFSVRDDEEAAIREWEKKTGVQVDINRLELDAETAQLTKGYDGIVIQQRSHISNPAVYETLQKNGLRQLTSRTAGYDMIDLEQASERGLVVTNVPAYSPNSVAELALTQTMRLIRNLPLFDARGAEQDFRWAGLMAREIRSLTVGIIGAGRIGGTVARLFKALGATVIANDIVERVELKDIVTYVSKEELLQAADVVTLHVPLMDSTTQLIDADALALMKNDAVLINASRGPVVDTDALIAALQNKQIAGAALDTLNGEEHFFNQDLCGKELPSEQLKVLRTLPNVLITPHIGFYTNKAVQNMVEISLNDVLAILKTGTSEHQLNKVAVEN +>6aw9_A mol:protein length:228 Catechol O-methyltransferase +MGDTKEQRILRYVQQHAKPGDPQSVLEAIDTYCTQKEWAMNVGDAKGQIMDEVIQEHNPSLVLELGAYCGYSAVRMARLLSPGARLLTMEKNPDYAAITQQMLNFAGLQDKVTILIGASQDLIPQLKKYDVDTLDMVFLDHWKDRYLPDTILLEECGLLRKGTVLLADNVIVPGTPDFLAYVRGSSSFECTHYSSYLEYMKVVDGLEKAVYKGPSSPKQPLEHHHHHH +>5w93_F mol:protein length:20 Paxillin +MDDLDALLADLESTTSHISK +>2fkb_C mol:protein length:180 Putative Nudix hydrolase yfcD +MEQRRLASTEWVDIVNEENEVIAQASREQMRAQCLRHRATYIVVHDGMGKILVQRRTETKDFLPGMLDATAGGVVQADEQLLESARREAEEELGIAGVPFAEHGQFYFEDKNCRVWGALFSCVSHGPFALQEDEVSEVCWLTPEEITARCDEFTPDSLKALALWMKRNAKNEAVETETAE +>4z2y_A mol:protein length:359 CalO6 +GSHMELTTTAARPGLRHRMQQLIYGFFTAQTLHVAVRLRIPDLLADGARDVGDLASATGADAPSLRRLLRALVFLEVLDEPAPGTFALTEQGEVLRADVTGSMRELVLLLSGPESWAAWGQLEHSVRTGEVAWEHVHGRSCFDHLMADPQRQAAFNAAMAEGSRAFVPTLLSAYDFGDLRTVVDVGGGSGALLAGVLAAHPHLRGTVFDTPDGVADAARTVAEQGVADRCGVETGDFFVSVPPGADAYVLKSVLHDWDDEQCVEVLRTVRRAVRPDSRVILVESLMPTTVTTAPSVAQVVMNDLNMMVCHGGRERTVAEFRELLRVAGFRLESVTPCPAPSVVGILEAAPAPATGPDGS +>2prf_A mol:protein length:125 PROFILIN IA +SWQTYVDTNLVGTGAVTQAAILGLDGNTWATSAGFAVTPAQGQTLASAFNNADPIRASGFDLAGVHYVTLRADDRSIYGKKGSAGVITVKTSKSILVGVYNEKIQPGTAANVVEKLADYLIGQGF +>5m32_I mol:protein length:205 Proteasome subunit beta type-3 +MSIMSYNGGAVMAMKGKNCVAIAADRRFGIQAQMVTTDFQKIFPMGDRLYIGLAGLATDVQTVAQRLKFRLNLYELKEGRQIKPYTLMSMVANLLYEKRFGPYYTEPVIAGLDPKTFKPFICSLDLIGCPMVTDDFVVSGTCAEQMYGMCESLWEPNMDPDHLFETISQAMLNAVDRDAVSGMGVIVHIIEKDKITTRTLKARMD +>1xm2_A mol:protein length:173 Tyrosine Phosphatase +MARMNRPAPVEVTYKNMRFLITHNPTNATLNKFIEELKKYGVTTIVRVCEATYDTTLVEKEGIHVLDWPFDDGAPPSNQIVDDWLSLVKIKFREEPGCCIAVHSVAGLGRAPVLVALALIEGGMKYEDAVQFIRQKRRGAFNSKQLLYLEKYRPKMRLRFKDSNGHRNNCCIQ +>1nez_B mol:protein length:99 Beta-2-microglobulin +IQKTPQIQVYSRHPPENGKPNILNCYVTQFHPPHIEIQMLKNGKKIPKVEMSDMSFSKDWSFYILAHTEFTPTETDTYACRVKHDSMAEPKTVYWDRDM +>6i50_A mol:protein length:170 SFRICE_029225 +RPFIAAHFHGNTSHLNSAIHDHYKGNGLVRVSHDAPHDVWYPAPWTVASPHPRPTLTRTGHVHVHHTGVYLVYVQIYYLDSHDTISWVLHRTNADIEGRETLLQCAQSSYSTEPIDKPNSCFSAAALFLKAGDRLAVRNTAGDRHSLMQPEKSFIGLVKLADAEDPTQEL +>5zbo_c mol:protein length:209 Capsid protein +MGSSHHHHHHSSGLVPRGSHFNTRLSRTFGYTIKRTTVKTPSWAVDMMRFNINDFLPPGGGSNPRSVPFEYYRIRKVKVEFWPCSPITQGDRGVGSSAVILDDNFVTKATALTYDPYVNYSSRHTITQPFSYHSRYFTPKPVLDSTIDYFQPNNKRNQLWLRLQTAGNVDHVGLGTAFENSIYDQEYNIRVTMYVQFREFNLKDPPLNP +>5j8a_BM mol:protein length:114 30S ribosomal protein S13 +ARIAGINIPDHKHAVIALTSIYGVGKTRSKAILAAAGIAEDVKISELSEGQIDTLRDEVAKFVVEGDLRREISMSIKRLMDLGCYRGLRHRRGLPVRGQRTKTNARTRKGPRKP +>7ban_B mol:protein length:1932 Teneurin-4 +METACGDSKDNDGDGLVDCMDPDCCLQPLCHINPLCLGSPNPLDIIQETQVPVSQQNLHSFYDRIKFLVGRDSTHIIPGENPFDGGHACVIRGQVMTSDGTPLVGVNISFVNNPLFGYTISRQDGSFDLVTNGGISIILRFERAPFITQEHTLWLPWDRFFVMETIIMRHEENEIPSCDLSNFARPNPVVSPSPLTSFASSCAEKGPIVPEIQALQEEISISGCKMRLSYLSSRTPGYKSVLRISLTHPTIPFNLMKVHLMVAVEGRLFRKWFAAAPDLSYYFIWDKTDVYNQKVFGLSEAFVSVGYEYESCPDLILWEKRTTVLQGYEIDASKLGGWSLDKHHALNIQSGILHKGNGENQFVSQQPPVIGSIMGNGRRRSISCPSCNGLADGNKLLAPVALTCGSDGSLYVGDFNYIRRIFPSGNVTNILELRNKDFRHSHSPAHKYYLATDPMSGAVFLSDSNSRRVFKIKSTVVVKDLVKNSEVVAGTGDQCLPFDDTRCGDGGKATEATLTNPRGITVDKFGLIYFVDGTMIRRIDQNGIISTLLGSNDLTSARPLSCDSVMDISQVHLEWPTDLAINPMDNSLYVLDNNVVLQISENHQVRIVAGRPMHCQVPGIDHFLLSKVAIHATLESATALAVSHNGVLYIAETDEKKINRIRQVTTSGEISLVAGAPSGCDCKNDANCDCFSGDDGYAKDAKLNTPSSLAVCADGELYVADLGNIRIRFIRKNKPFLNTQNMYELSSPIDQELYLFDTTGKHLYTQSLPTGDYLYNFTYTGDGDITLITDNNGNMVNVRRDSTGMPLWLVVPDGQVYWVTMGTNSALKSVTTQGHELAMMTYHGNSGLLATKSNENGWTTFYEYDSFGRLTNVTFPTGQVSSFRSDTDSSVHVQVETSSKDDVTITTNLSASGAFYTLLQDQVRNSYYIGADGSLRLLLANGMEVALQTEPHLLAGTVNPTVGKRNVTLPIDNGLNLVEWRQRKEQARGQVTVFGRRLRVHNRNLLSLDFDRVTRTEKIYDDHRKFTLRILYDQAGRPSLWSPSSRLNGVNVTYSPGGYIAGIQRGIMSERMEYDQAGRITSRIFADGKTWSYTYLEKSMVLLLHSQRQYIFEFDKNDRLSSVTMPNVARQTLETIRSVGYYRNIYQPPEGNASVIQDFTEDGHLLHTFYLGTGRRVIYKYGKLSKLAETLYDTTKVSFTYDETAGMLKTINLQNEGFTCTIRYRQIGPLIDRQIFRFTEEGMVNARFDYNYDNSFRVTSMQAVINETPLPIDLYRYDDVSGKTEQFGKFGVIYYDINQIITTAVMTHTKHFDAYGRMKEVQYEIFRSLMYWMTVQYDNMGRVVKKELKVGPYANTTRYSYEYDADGQLQTVSINDKPLWRYSYDLNGNLHLLSPGNSARLTPLRYDIRDRITRLGDVQYKMDEDGFLRQRGGDIFEYNSAGLLIKAYNRAGSWSVRYRYDGLGRRVSSKSSHSHHLQFFYADLTNPTKVTHLYNHSSSEITSLYYDLQGHLFAMELSSGDEFYIACDNIGTPLAVFSGTGLMIKQILYTAYGEIYMDTNPNFQIIIGYHGGLYDPLTKLVHMGRRDYDVLAGRWTSPDHELWKHLSSSNVMPFNLYMFKNNNPISNSQDIKCFMTDVNSWLLTFGFQLHNVIPGYPKPDMDAMEPSYELIHTQMKTQEWDNSKSILGVQCEVQKQLKAFVTLERFDQLYGSTITSCQQAPKTKKFASSGSVFGKGVKFALKDGRVTTDIICVANEDGRRVAAILNHAHYLENLHFTIDGVDTHYFVKPGPSEGDLAILGLSGGRRTLENGVNVTVSQINTVLNGRTRRYTDIQLQYGALCLNTRYGTTLDEEKARVLELARQRAVRQAWAREQQRLREGEEGLRAWTEGEKQQVLSTGRVQGYDGFFVISVEQYPELSDSANNIHFMRQSE +>4o6c_D mol:protein length:377 NS1 +AEHHHHHHSSGVDLGTENLYFQSNADTGCAIDISRQELRCGSGVFIHNDVEAWMDRYKYYPETPQGLAKIIQKAHKEGVCGLRSVSRLEHQMWEAVKDELNTLLKENGVDLSVVVEKQEGMYKSAPKRLTATTEKLEIGWKAWGKSILFAPELANNTFVVDGPETKECPTQNRAWNSLEVEDFGFGLTSTRMFLKVRESNTTECDSKIIGTAVKNNLAIHSDLSYWIESRLNDTWKLERAVLGEVKSCTWPETHTLWGDGILESDLIIPVTLAGPRSNHNRRPGYKTQNQGPWDEGRVEIDFDYCPGTTVTLSESCGHRGPATRTTTESGKLITDWCCRSCTLPPLRYQTDSGCWYGMEIRPQRHDEKTLVQSQVNA +>5wyk_AD mol:protein length:575 Utp9 +XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX +>6grj_D mol:protein length:367 AhlB +MTNATTITMDQGMANQASQAMQIQTYCNSVKQQVPVDFSQFPNLKDNQTQINQGLDLAKGHADLYLNTIQPQIITNISNISNYFALQNAIPAVLPPGSTKAQWLRQLSVIKEQATEYQRLSSDTRLVIVNLNNNLITDSSNFQGIVVNLNSKVQGDNGVLAQLNGDIDKVNAAIDGAIAGIVAGGLLVIGGAFVTAIGAVADFVTAGTSTPVVIGGVAMMVAGAGGITAGAIVLHNSLGARQDLYQKRSSLNSEVLIATQIGNGYKGLQVQAQNAVTAATQMSNAWDSLTSDLGSLITDLDKGITSGDDIRQLWLTAADTTVKTVLTDVTTIKAQIAGVSPLQVPQTDTIANFVARLAALEHHHHHH +>3ria_G mol:protein length:221 Mouse monoclonal Fab fragment, heavy chain +EVQLQQSGPELVRPGASMKISCKASGYSFTGYTMNWVKQSHGKNLEWIGLINPYNGGTSYNQKFKGKATLTVDKSSSTAYMELLSLTSEDSAVYYCARDGDYYRYGRYFDYWGQGTTLTVSSAKTTPPSVYPLAPGSAAQTNSMVTLGCLVKGYFPEPVTVTWNSGSLSSGVHTFPAVLQSDLYTLSSSVTVPSSTWPSETVTCNVAHPASSTKVDKKIVP +>3jbv_u mol:protein length:104 50S ribosomal protein L24 +MAAKIRRDDEVIVLTGKDKGKRGKVKNVLSSGKVIVEGINLVKKHQKPVPALNQPGGIVEKEAAIQVSNVAIFNAATGKADRVGFRFEDGKKVRFFKSNSETIK +>6tj2_B mol:protein length:285 Alpha/beta hydrolase +MKSIHIKIVLALCISIFTIMGLQPLNQHSTVAAANHKSSTKQTPLTFVLIHGSWATAGFWDETASELRKLGHTVYTPEYAGHGADKNNNVTHEQITKSVVDYIKQKDLKDFILLGHSFGGSVIQTVSQQVPDRIKRIVFFDAFAPLDGQSVADQFPAESLKSFEQLRDASGNNTITLPFPLFRDTFVNTASLAQAQAFYKQAPPEPATPLFEKLDLKKFYSLQIPKSYLYLTEDTAIPQGPYGFHPTQSSHLGVFRFIEGKGDHMTTVRTEPKMMAELMVKAGRD +>1vy7_AC mol:protein length:239 30S ribosomal protein S3 +MGNKIHPIGFRLGITRDWESRWYAGKKQYRHLLLEDQRIRGLLEKELYSAGLARVDIERAADNVAVTVHVAKPGVVIGRGGERIRVLREELAKLTGKNVALNVQEVQNPNLSAPLVAQRVAEQIERRFAVRRAIKQAVQRVMESGAKGAKVIVSGRIGGAEQARTEWAAQGRVPLHTLRANIDYGFALARTTYGVLGVKAYIFLGEVIGGQKPKARPELPKAEERPRRRRPAVRVKKEE +>6q16_AJ mol:protein length:252 Lipoprotein PrgK +MIRRYLYTFLLVMTLAGCKDKDLLKGLDQEQANEVIAVLQMHNIEANKIDSGKLGYSITVAEPDFTAAVYWIKTYQLPPRPRVEIAQMFPADSLVSSPRAEKARLYSAIEQRLEQSLQTMEGVLSARVHISYDIDAGENGRPPKPVHLSALAVYERGSPLAHQISDIKRFLKNSFADVDYDNISVVLSERSDAQLQAPGTPVKRNSFATSWIVLIILLSVMSAGFGVWYYKNHYARNKKGITADDKAKSSNE +>2bo9_C mol:protein length:308 CARBOXYPEPTIDASE A4 +SSNNFNYGAYHSLEAIYHEMDNIAADFPDLARRVKIGHSFENRPMYVLKFSTGKGVRRPAVWLNAGIHSREWISQATAIWTARKIVSDYQRDPAITSILEKMDIFLLPVANPDGYVYTQTQNRLWRKTRSRNPGSSCIGADPNRNWNASFAGKGASDNPCSEVYHGPHANSEVEVKSVVDFIQKHGNFKGFIDLHSYSQLLMYPYGYSVKKAPDAEELDKVARLAAKALASVSGTEYQVGPTCTTVYPASGSSIDWAYDNGIKFAFTFELRDTGTYGFLLPANQIIPTAEETWLGLKTIMEHVRDNLY +>7jor_A mol:protein length:137 Dehaloperoxidase B +GFKQDIATLRGDLRTYAQDIFLAFLNKYPDEKRNFKNYVGKSDQELKSMAKFGDHTEKVFNLMMEVADRATDCVPLASDASTLVQMKQHSGLTTGNFEKLFVALVEYMRASGQSFDSQSWDRFGKNLVSALSSAGMK +>5o09_2C mol:protein length:238 Bacterial kinesin light chain +DTALERQIASASRSVEEARRLAYHDPIRVGALVEQISVLADLRQKEGDFRKAESLYREALFRAQELRKQDPDLLTGIYSLLAHLYDRWGRMDKAAEFYELALKISAENGLEESDKVATIKNNLAMIFKQLRKFERAEGYYCEALETFQRLDGEQSARVASVYNNLGVLYYSHMDVDRAQVMHERALAIRQNLHEGQMDPADLSQTFINLGAVYKAAGDFQKAEACVDRAKRIRAAMNG +>6eq4_A mol:protein length:182 7,8-dihydro-8-oxoguanine triphosphatase +MKHHHHHHPMSDYDIPTTENLYFQGAMGASRLYTLVLVLQPQRVLLGMKKRGFGAGRWNGFGGKVQEGETIEDGARRELQEESGLTVDALHKVGQIVFEFVGEPELMDVHVFCTDSIQGTPVESDEMRPCWFQLDQIPFKDMWPDDSYWFPLLLQKKKFHGYFKFQGQDTILDYTLREVDTV +>7ezx_NP mol:protein length:161 Allophycocyanin alpha subunit +MSIVTKSIVNADAEARYLSPGELDRIKSFVLSGQRRLRIAQTLTENRERIVKQGGQQLFQRRPDVVSPGGNAYGEEMTATCLRDLDYYLRLVTYGIIAGDVTPIEEIGLVGVKEMYSALGTPISGVAEGIRCMKDVACSLLSGEDAAEVGFYFDYTLAAMQ +>5aqj_B mol:protein length:118 BAG FAMILY MOLECULAR CHAPERONE REGULATOR 1 +GPLGSNSPQEEVELKKLKHLEKSVEKIADQLEELNKELTGIQQGFLPKDLQAEALCKLDRRVKATIEQFMKILEEIDTLILPENFKDSRLKRKGLVKKVQAFLAECDTVEQNICQETE +>6d8s_A mol:protein length:31 Potassium channel toxin alpha-KTx 5.4 +AFCNLRRCELSCRSLGLLGKCIGEECECVPY +>1wgj_B mol:protein length:286 INORGANIC PYROPHOSPHATASE +TYTTRQIGAKNTLEYKVYIEKDGKPVSAFHDIPLYADKENNIFNMVVEIPRWTNAKLEITKEETLNPIIQDTKKGKLRFVRNCFPHHGYIHNYGAFPQTWEDPNVSHPETKAVGDNDPIDVLEIGETIAYTGQVKQVKALGIMALLDEGETDWKVIAIDINDPLAPKLNDIEDVEKYFPGLLRATNEWFRIYKIPDGKPENQFAFSGEAKNKKYALDIIKETHDSWKQLIAGKSSDSKGIDLTNVTLPDTPTYSKAASDAIPPASLKADAPIDKSIDKWFFISGSV +>4jfz_H mol:protein length:235 Fab heavy chain +EISEVQLVESGGGLVQPGGSLRLSCVTSGFTFRKFGMSWVRQAPGKGLEWVASIATGGHTTYYSDSVKGRFTISRDNSKNTLYLQMNSLRAEDTAVYYCTRGYSSTSYAMDYWGQGTLVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSCDKSHTATGA +>5gup_Aj mol:protein length:47 Cytochrome c oxidase subunit 7C, mitochondrial +SHYEEGPGKNIPFSVENKWRLLAMMTLFFGSGFAAPFFIVRHQLLKK +>4e8g_B mol:protein length:391 Mandelate racemase/muconate lactonizing enzyme, N-terminal domain protein +MHHHHHHSSGVDLGTENLYFQSMKIAEIHVYAHDLPVKDGPYTIASSTVWSLQTTLVKIVADSGLAGWGETCPVGPTYAPSHALGARAALAEMAPGLIGANPLQPLVLRRRMDGLLCGHNYAKAAIDIAAYDLMGKHYGVRVADLLGGVAAERVPSYYATGIGQPDEIARIAAEKVAEGFPRLQIKIGGRPVEIDIETVRKVWERIRGTGTRLAVDGNRSLPSRDALRLSRECPEIPFVLEQPCNTLEEIAAIRGRVQHGIYLDESGEDLSTVIRAAGQGLCDGFGMKLTRIGGLQQMAAFRDICEARALPHSCDDAWGGDIIAAACTHIGATVQPRLNEGVWVAQPYIAQPYDEENGIRIAGGHIDLPKGPGLGITPDESLFGPPVASFS +>4h5r_B mol:protein length:383 Heat shock cognate 71 kDa protein +SKGPAVGIDLGTTYSCVGVFQHGKVEIIANDQGNRTTPSYVAFTDTERLIGDAAKNQVAMNPTNTVFDAKRLIGRRFDDAVVQSDMKHWPFMVVNDAGRPKVQVEYKGETKSFYPEEVSSMVLTKMKEIAEAYLGKTVTNAVVTVPAYFNDSQRQATKDAGTIAGLNVLRIINEPTAAAIAYGLDKKVGAERNVLIFDLGGGTFDVSILTIEDGIFEVKSTAGDTHLGGEDFDNRMVNHFIAEFKRKHKKDISENKRAVRRLRTACERAKRTLSSSTQASIEIDSLYEGIDFYTSITRARFEELNADLFRGTLDPVEKALRDAKLDKSQIHDIVLVGGSTRIPKIQKLLQDFFNGKELNKSINPDEAVAYGAAVQAAILSGDK +>6uea_J mol:protein length:245 Immunoglobulin heavy constant alpha 2 +DYKDDDDKLVPRGSCHPRLSLHRPALEDLLLGSEANLTCTLTGLRDASGATFTWTPSSGKSAVQGPPERDLCGCYSVSSVLPGCAQPWNHGETFTCTAAHPELKTPLTANITKSGNTFRPEVHLLPPPSEELALNELVTLTCLARGFSPKDVLVRWLQGSQELPREKYLTWASRQEPSQGTTTYAVTSILRVAAEDWKKGETFSCMVGHEALPLAFTQKTIDRLAGKPTHINVSVVMAEADGTCY +>3pi4_A mol:protein length:152 Hemoglobin II +XTTLTNPQKAAIRSSWSKFMDNGVSNGQGFYMDLFKAHPETLTPFKSLFGGLTLAQLQDNPKMKAQSLVFCNGMSSFVDHLDDNDMLVVLIQKMAKLHNNRGIRASDLRTAYDILIHYMEDHNHMVGGAKDAWEVFVGFICKTLGDYMKELS +>4hmj_A mol:protein length:143 Thermonuclease +ATSTKKLHKEPATLIKAIDGDTVKLMYKGQPMTFRDLLVDTPEFNEKYGPEASAFTKKMVENAKKIEVEFDKGQRTDKYGRGLAYIYADGKMVNEALVRQGLAKVAYVYKGNNTHEQLLRKAEAQAKKEKLNIWSEDNADSGQ +>6hhq_AC mol:protein length:59 60S ribosomal protein L29 +MAKSKNHTAHNQTRKAHRNGIKKPKTYKYPSLKGVDPKFRRNHKHALHGTAKALAAAKK +>2c37_X mol:protein length:248 PROBABLE EXOSOME COMPLEX EXONUCLEASE 1 +MREMLQVERPKLILDDGKRTDGRKPDELRSIKIELGVLKNADGSAIFEMGNTKAIAAVYGPKEMHPRHLSLPDRAVLRVRYHMTPFSTDERKNPAPSRREIELSKVIREALESAVLVELFPRTAIDVFTEILQADAGSRLVSLMAASLALADAGIPMRDLIAGVAVGKADGVIILDLNETEDMWGEADMPIAMMPSLNQVTLFQLNGSMTPDEFRQAFDLAVKGINIIYNLEREALKSKYVEFKEEGV +>1gvd_A mol:protein length:52 MYB PROTO-ONCOGENE PROTEIN +LIKGPWTKEEDQRLIKLVQKYGPKRWSVIAKHLKGRIGKQCRERWHNHLNPE +>5d2q_A mol:protein length:102 Fibroin-modulator-binding protein-1 +MHHHHHHETSEERAARLAKMSAYAAQRLANESPEQRATRLKRMSEYAAKRLSSETREQRAIRLARMSAYAARRLANETPAQRQARLLRMSAYAAKRQASKKS +>1u8t_F mol:protein length:16 Flagellar motor switch protein fliM +MGDSILSQAEIDALLN +>2vj0_P mol:protein length:12 SYNAPTOJANIN-1 +NPKGWVTFEEEE +>6opd_A mol:protein length:275 HLA class I histocompatibility antigen, A-2 alpha chain +GSHSMRYFFTSVSRPGRGEPRFIAVGYVDDTQFVRFDSDAASQRMEPRAPWIEQEGPEYWDGETRKVKAHSQTHRVDLGTLRGYYNQSEAGSHTVQRMYGCDVGSDWRFLRGYHQYAYDGKDYIALKEDLRSWTAADMAAQTTKHKWEAAHVAEQLRAYLEGTCVEWLRRYLENGKETLQRTDAPKTHMTHHAVSDHEATLRCWALSFYPAEITLTWQRDGEDQTQDTELVETRPAGDGTFQKWAAVVVPSGQEQRYTCHVQHEGLPKPLTLRWE +>4jaw_B mol:protein length:644 Lacto-N-biosidase +MGSSHHHHHHSSGLVPRGSHMGYSATAPVNLTRPATVPSMDGWTDGTGAWTLGEGTRVVSSDALAARAQSLASELTKFTDVDIKAATGSATGKDISLTLDASKKAELGDEGFKLNIGSKGLEVIGATDIGVFYGTRSVSQMLRQGQLTLPAGTVATKPKYKERGATLCACQINISTDWIDRFLSDMADLRLNYVLLEMKLKPEEDNTKKAATWSYYTRDDVKKFVKKANNYGIDVIPEINSPGHMNVWLENYPEYQLADNSGRKDPNKLDISNPEAVKFYKTLIDEYDGVFTTKYWHMGADEYMIGTSFDNYSKLKTFAEKQYGAGATPNDAFTGFINDIDKYVKAKGKQLRIWNDGIVNTKNVSLNKDIVIEYWYGAGRKPQELVQDGYTLMNATQALYWSRSAQVYKVNAARLYNNNWNVGTFDGGRQIDKNYDKLTGAKVSIWPDSSYFQTENEVEKEIFDGMRFISQMTWSDSRPWATWNDMKADIDKIGYPLDIREYDYTPVDAGIYDIPQLKSISKGPWELITTPDGYYQMKDTVSGKCLALFTGSKHLDVVTQVGARPELRNCADVSVGQDQRNTANERNTQKWQIRADKDGKYTISPALTQQRLAIATGNEQNIDLETHRPAAGTVAQFPADLVSD +>5e7r_A mol:protein length:314 TAK1 kinase - TAB1 chimera fusion protein +SLHMIDYKEIEVEEVVGRGAFGVVCKAKWRAKDVAIKQIESESERKAFIVELRQLSRVNHPNIVKLYGACLNPVCLVMEYAEGGSLYNVLHGAEPLPYYTAAHAMSWCLQCSQGVAYLHSMQPKALIHRDLKPPNLLLVAGGTVLKICDFGTACDIQTHMTNNKGSAAWMAPEVFEGSNYSEKCDVFSWGIILWEVITRRKPFDEIGGPAFRIMWAVHNGTRPPLIKNLPKPIESLMTRCWSKDPSQRPSMEEIVKIMTHLMRYFPGADEPLQYPCQHSLPPGEDGRVEPYVDFAEFYRLWSVDHGEQSVVTAP +>4ndy_W mol:protein length:74 Centromere protein X +SGFRKELVSRLLHLHFKDDKTKVSGDALQLMVELLKVFVVEAAVRGVRQAQAEDALRVDVDQLEKVLPQLLLDF +>6u5t_G mol:protein length:2073 Fatty acid synthase subunit beta +MDAYSTRPLTLSHGSLEHVLLVPTASFFIASQLQEQFNKILPEPTEGFAADDEPTTPAELVGKFLGYVSSLVEPSKVGQFDQVLNLCLTEFENCYLEGNDIHALAAKLLQENDTTLVKTKELIKNYITARIMAKRPFDKKSNSALFRAVGEGNAQLVAIFGGQGNTDDYFEELRDLYQTYHVLVGDLIKFSAETLSELIRTTLDAEKVFTQGLNILEWLENPSNTPDKDYLLSIPISCPLIGVIQLAHYVVTAKLLGFTPGELRSYLKGATGHSQGLVTAVAIAETDSWESFFVSVRKAITVLFFIGVRCYEAYPNTSLPPSILEDSLENNEGVPSPMLSISNLTQEQVQDYVNKTNSHLPAGKQVEISLVNGAKNLVVSGPPQSLYGLNLTLRKAKAPSGLDQSRIPFSERKLKFSNRFLPVASPFHSHLLVPASDLINKDLVKNNVSFNAKDIQIPVYDTFDGSDLRVLSGSISERIVDCIIRLPVKWETTTQFKATHILDFGPGGASGLGVLTHRNKDGTGVRVIVAGTLDINPDDDYGFKQEIFDVTSNGLKKNPNWLEEYHPKLIKNKSGKIFVETKFSKLIGRPPLLVPGMTPCTVSPDFVAATTNAGYTIELAGGGYFSAAGMTAAIDSVVSQIEKGSTFGINLIYVNPFMLQWGIPLIKELRSKGYPIQFLTIGAGVPSLEVASEYIETLGLKYLGLKPGSIDAISQVINIAKAHPNFPIALQWTGGRGGGHHSFEDAHTPMLQMYSKIRRHPNIMLIFGSGFGSADDTYPYLTGEWSTKFDYPPMPFDGFLFGSRVMIAKEVKTSPDAKKCIAACTGVPDDKWEQTYKKPTGGIVTVRSEMGEPIHKIATRGVMLWKEFDETIFNLPKNKLVPTLEAKRDYIISRLNADFQKPWFATVNGQARDLATMTYEEVAKRLVELMFIRSTNSWFDVTWRTFTGDFLRRVEERFTKSKTLSLIQSYSLLDKPDEAIEKVFNAYPAAREQFLNAQDIDHFLSMCQNPMQKPVPFVPVLDRRFEIFFKKDSLWQSEHLEAVVDQDVQRTCILHGPVAAQFTKVIDEPIKSIMDGIHDGHIKKLLHQYYGDDESKIPAVEYFGGESPVDVQSQVDSSSVSEDSAVFKATSSTDEESWFKALAGSEINWRHASFLCSFITQDKMFVSNPIRKVFKPSQGMVVEISNGNTSSKTVVTLSEPVQGELKPTVILKLLKENIIQMEMIENRTMDGKPVSLPLLYNFNPDNGFAPISEVMEDRNQRIKEMYWKLWIDEPFNLDFDPRDVIKGKDFEITAKEVYDFTHAVGNNCEDFVSRPDRTMLAPMDFAIVVGWRAIIKAIFPNTVDGDLLKLVHLSNGYKMIPGAKPLQVGDVVSTTAVIESVVNQPTGKIVDVVGTLSRNGKPVMEVTSSFFYRGNYTDFENTFQKTVEPVYQMHIKTSKDIAVLRSKEWFQLDDEDFDLLNKTLTFETETEVTFKNANIFSSVKCFGPIKVELPTKETVEIGIVDYEAGASHGNPVVDFLKRNGSTLEQKVNLENPIPIAVLDSYTPSTNEPYARVSGDLNPIHVSRHFASYANLPGTITHGMFSSASVRALIENWAADSVSSRVRGYTCQFVDMVLPNTALKTSIQHVGMINGRKLIKFETRNEDDVVVLTGEAEIEQPVTTFVFTGQGSQEQGMGMDLYKTSKAAQDVWNRADNHFKDTYGFSILDIVINNPVNLTIHFGGEKGKRIRENYSAMIFETIVDGKLKTEKIFKEINEHSTSYTFRSEKGLLSATQFTQPALTLMEKAAFEDLKSKGLIPADATFAGHSLGEYAALASLADVMSIESLVEVVFYRGMTMQVAVPRDELGRSNYGMIAINPGRVAASFSQEALQYVVERVGKRTGWLVEIVNYNVENQQYVAAGDLRALDTVTNVLNFIKLQKIDIIELQKSLSLEEVEGHLFEIIDEASKKSAVKPRPLKLERGFACIPLVGISVPFHSTYLMNGVKPFKSFLKKNIIKENVKVARLAGKYIPNLTAKPFQVTKEYFQDVYDLTGSEPIKEIIDNWEKYEQSDYKDHDGDYKDHDIDYKDDDDK +>2cbo_A mol:protein length:115 NEOCARZINOSTATIN +AAPTATVTPSSGLSDGTVVKVAGAGLQAGTAYWVAQWARVDTGVWAYNPADNSSVTADANGSASTSLTVRRSFEGFLFDGTRWGTVDCTTAACQVGLSDAAGNGPEGVAISFNHH +>7z46_N mol:protein length:352 Major head protein +MANPTLFVSYDQNGKKLSFANWISVLSPQDTPFVSMTGKESINQTIFSWQTDALASVDGNNAHVEGSRAEDGEMKPTVIKSNVTQILRKVVRVSDTANTTANYGRGRELMYQLEKKGKEIKRDLEKILLSGQARTDVLADQYLTNSAADPAVAGLNDTHAARKTGAFQFLCAHGGLAGGVVDKTKNGPADPDTGAVTVKVAQNASNPTTNIGFDEADIFDMTLQLYTAGSEADIIMINPAHAKIFAGLQENTQGSRKRIFENTKQFIYEVNSITDPLGQSYKIIVNRWMPTDAVYFFRSADWTQMVLRAPKRTELAKDGSYEKWMIEMEVGLRHRNPYASGVLFTAAGKAAA +>1hmv_D mol:protein length:440 HIV-1 REVERSE TRANSCRIPTASE (SUBUNIT P51) +PISPIETVPVKLKPGMDGPKVKQWPLTEEKIKALVEICTEMEKEGKISKIGPENPYNTPVFAIKKKDSTKWRKLVDFRELNKRTQDFWEVQLGIPHPAGLKKKKSVTVLDVGDAYFSVPLDEDFRKYTAFTIPSINNETPGIRYQYNVLPQGWKGSPAIFQSSMTKILEPFKKQNPDIVIYQYMDDLYVGSDLEIGQHRTKIEELRQHLLRWGLTTPDKKHQKEPPFLWMGYELHPDKWTVQPIVLPEKDSWTVNDIQKLVGKLNWASQIYPGIKVRQLCKLLRGTKALTEVIPLTEEAELELAENREILKEPVHGVYYDPSKDLIAEIQKQGQGQWTYQIYQEPFKNLKTGKYARMRGAHTNDVKQLTEAVQKITTESIVIWGKTPKFKLPIQKETWETWWTEYWQATWIPEWEFVNTPPLVKLWYQLEKEPIVGAETF +>6e34_AN mol:protein length:233 Capsid protein of PCV2 +MTYPRRRYRRRRHRPRSHLGQILRRRPWLVHPRHRYRWRRKNGIFNTRLSRTFGYTIKRTTVKTPSWAVDMMRFNINDFLPPGGGSNPRSVPFEYYRIRKVKVEFWPCSPITQGDRGVGSSAVILDDNFVTKATALTYDPYVNYSSRHTITQPFSYHSRYFTPKPVLDSTIDYFQPNNKRNQLWLRLQTAGNVDHVGLGTAFENSIYDQEYNIRVTMYVQFREFNLKDPPLNP +>7z4a_X mol:protein length:352 Major head protein +MANPTLFVSYDQNGKKLSFANWISVLSPQDTPFVSMTGKESINQTIFSWQTDALASVDGNNAHVEGSRAEDGEMKPTVIKSNVTQILRKVVRVSDTANTTANYGRGRELMYQLEKKGKEIKRDLEKILLSGQARTDVLADQYLTNSAADPAVAGLNDTHAARKTGAFQFLCAHGGLAGGVVDKTKNGPADPDTGAVTVKVAQNASNPTTNIGFDEADIFDMTLQLYTAGSEADIIMINPAHAKIFAGLQENTQGSRKRIFENTKQFIYEVNSITDPLGQSYKIIVNRWMPTDAVYFFRSADWTQMVLRAPKRTELAKDGSYEKWMIEMEVGLRHRNPYASGVLFTAAGKAAA +>3l51_B mol:protein length:166 Structural maintenance of chromosomes protein 4 +GKVLDAIIQEKKSGRIPGIYGRLGDLGAIDEKYDIAISSCCHALDYIVVDSIDTAQECVNFLKKHNIGIATFIGLDKMTVWAKKMSKIQTPENTPRLFDLVKVKNEEIRQAFYFALRDTLVANNLDQATRVAYQRDRRWRVVTLQGQIIEQSGTMSGGLEHHHHHH +>5f59_A mol:protein length:154 Histone-lysine N-methyltransferase 2C +SKSSQYRKMKTEWKSNVYLARSRIQGLGLYAARDIEKHTMVIEYIGTIIRNEVANRKEKLYESQNRGVYMFRMDNDHVIDATLTGGPARYINHSCAPNCVAEVVTFERGHKIIISSSRRIQKGEELCYDYKFDFEDDQHKIPCHCGAVNCRKWM +>6tuv_D mol:protein length:76 Polyubiquitin-C +MQIFVKTLTGKTITLEVEPSDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGG +>3gfj_A mol:protein length:146 146aa long hypothetical transcriptional regulator +MLESNENRIQIMSTIAKIYRAMSRELNRRLGELNLSYLDFLVLRATSDGPKTMAYLANRYFVTQSAITASVDKLEEMGLVVRVRDREDARKILIEITEKGLETFNKGIEIYKKLANEVTGDLSEDEVILVLDKISKILKRIEEISQ +>4lf4_H mol:protein length:138 ribosomal protein S8 +MLTDPIADMLTRIRNATRVYKESTDVPASRFKEEILRILAREGFIKGYERVDVDGKPYLRVYLKYGPRRQGPDPRPEQVIHHIRRISKPGRRVYVGVKEIPRVRRGLGIAILSTSKGVLTDREARKLGVGGELICEVW +>5j4d_KC mol:protein length:65 50S ribosomal protein L35 +MPKMKTHKGAKKRVKITASGKVVAMKTGKRHLNWQKSGKEIRQKGRKFVLAKPEAERIKLLLPYE +>2hnb_A mol:protein length:147 Protein mioC +MADITLISGSTLGGAEYVAEHLAEKLEEAGFTTETLHGPLLEDLPASGIWLVISSTHGAGDIPDNLSPFYEALQEQKPDLSAVRFGAIGIGSREYDTFCGAIDKLEAELKNSGAKQTGETLKINILDHDIPEDPAEEWLGSWVNLLK +>7c2b_C mol:protein length:115 Thioredoxin F2, chloroplastic +ETVNVTVGQVTEVDKDTFWPIVKAAGDKIVVLDMYTQWCGPSKVIAPKYKELSEKYQDMVFLKLDCNQDNKPLAKELGIRVVPTFKILKDNKVVKEVTGAKYEDLLAAIEAARSG +>6be2_H mol:protein length:227 Fab (F598) Heavy Chain +QVQLQESGPGLVKPSETLSLTCTVSGGSISGYYWSWIRQPPGKGLEWIGYIHYSRSTNSNPALKSRVTISSDTSKNQLSLRLSSVTAADTAVYYCARDTYYYDSGDYEDAFDIWGQGTMVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKAEPKSC +>6uti_E mol:protein length:227 Proteasome subunit alpha +AYDRAITVFSPDGRLFQVEYAREAVKKGSTALGMKFANGVLLISDKKVRSRLIEQNSIEAIQLIDDYVAAVTSGLVADARVLVDFARISAQQEKVTYGSLVNIENLVKRVADQMQQYTQYGGVRPYGVSLIFAGIDQIGPRLFDCDPAGTINEYKATAIGSGKDAVVSFLEREYKENLPEKEAVTLGIKALKSSLEEGEELKAPEIASITVGNKYRIYDQEEVKKFL +>6rxq_B mol:protein length:254 NAD-dependent protein deacylase +MGSSHHHHHHSQDPKPRVLVLTGAGISAESGIRTFRAADGLWEEHRVEDVGTPEGFDRDPELVQAFYNARRRQLQQPEIQPNAAHLALAKLQDALGDRFLLVTQNCDNLHERAGNTNVIHMHGELLKVRCSQSGQALDWTGDVTPEDKCHCCQFPAPLRPHVVWFGEMPLGMDEIYMALSMADIFIAIGTSGHVYPAAGFVHEAKLHGAHTVELNLEPSQVGNEFAEKYYGPASQVVPEFVEKLLKGLKAGSIA +>2vil_A mol:protein length:126 VILLIN 14T +VELSKKVTGKLDKTTPGIQIWRIENMEMVPVPTKSYGNFYEGDCYVLLSTRKTGSGFSYNIHYWLGKNSSQDEQGAAAIYTTQMDEYLGSVAVQHREVQGHESETFRAYFKQGLIYKQGGVASGMK +>5szs_C mol:protein length:1325 Spike glycoprotein +FFTCNSNANLSMLQLGVPDNSSTIVTGLLPTHWFCANQSTSVYSANGFFYIDVGNHRSAFALHTGYYDANQYYIYVTNEIGLNASVTLKICKFSRNTTFDFLSNASSSFDCIVNLLFTEQLGAPLGITISGETVRLHLYNVTRTFYVPAAYKLTKLSVKCYFNYSCVFSVVNATVTVNVTTHNGRVVNYTVCDDCNGYTDNIFSVQQDGRIPNGFPFNNWFLLTNGSTLVDGVSRLYQPLRLTCLWPVPGLKSSTGFVYFNATGSDVNCNGYQHNSVVDVMRYNLNFSANSLDNLKSGVIVFKTLQYDVLFYCSNSSSGVLDTTIPFGPSSQPYYCFINSTINTTHVSTFVGILPPTVREIVVARTGQFYINGFKYFDLGFIEAVNFNVTTASATDFWTVAFATFVDVLVNVSATNIQNLLYCDSPFEKLQCEHLQFGLQDGFYSANFLDDNVLPETYVALPIYYQHTDINFTATASFGGSCYVCKPHQVNISLNGNTSVCVRTSHFSIRYIYNRVKSGSPGDSSWHIYLKSGTCPFSFSKLNNFQKFKTICFSTVEVPGSCNFPLEATWHYTSYTIVGALYVTWSEGNSITGVPYPVSGIREFSNLVLNNCTKYNIYDYVGTGIIRSSNQSLAGGITYVSNSGNLLGFKNVSTGNIFIVTPCNQPDQVAVYQQSIIGAMTAVNESRYGLQNLLQLPNFYYVSNGGNNCTTAVMTYSNFGICADGSLIPVRPRNSSDNGISAIITANLSIPSNWTTSVQVEYLQITSTPIVVDCATYVCNGNPRCKNLLKQYTSACKTIEDALRLSAHLETNDVSSMLTFDSNAFSLANVTSFGDYNLSSVLPQRNIRSSRIAGRSALEDLLFSKVVTSGLGTVDVDYKSCTKGLSIADLACAQYYNGIMVLPGVADAERMAMYTGSLIGGMVLGGLTSAAAIPFSLALQARLNYVALQTDVLQENQKILAASFNKAINNIVASFSSVNDAITQTAEAIHTVTIALNKIQDVVNQQGSALNHLTSQLRHNFQAISNSIQAIYDRLDSIQADQQVDRLITGRLAALNAFVSQVLNKYTEVRGSRRLAQQKINECVKSQSNRYGFCGNGTHIFSIVNSAPDGLLFLHTVLLPTDYKNVKAWSGICVDGIYGYVLRQPNLVLYSDNGVFRVTSRVMFQPRLPVLSDFVQIYNCNVTFVNISRVELHTVIPDYVDVNKTLQEFAQNLPKYVKPNFDLTPFNLTYLNLSSELKQLEAKTASLFQTTVELQGLIDQINSTYVDLKLLNRFENLIKRMKQIEDKIEEIESKQKKIENEIARIKKIKLVPRGSLEWSHPQFEK +>2fsy_C mol:protein length:282 major capsid protein +SLGSDADSAGSLIQPMQIPGIIMPGLRRLTIRDLLAQGRTSSNALEYVREEVFTNNADVVAEKALKPESDITFSKQTANVKTIAHWVQASRQVMDDAPMLQSYINNRLMYGLALKEEGQLLNGDGTGDNLEGLNKVATAYDTSLNATGDTRADIIAHAIYQVTESEFSASGIVLNPRDWHNIALLKDNEGRYIFGGPQAFTSNIMWGLPVVPTKAQAAGTFTVGGFDMASQVWDRMDATVEVSREDRDNFVKNMLTILCEERLALAHYRPTAIIKGTFSSGS +>6rxx_Cn mol:protein length:145 40S ribosomal protein s23-like protein +MSGGKPRGLNAARKLRNNRREQRWADLQYKKRALGTAYKSSPFGGSSHAKGIVLEKVGVEAKQPNSAIRKCVRVQLIKNGKKVTAFVPNDGCLNFVDENDEVLLAGFGRKGKAKGDIPGVRFKVVKVSGVGLLALWKEKKEKPRS +>6xqn_I mol:protein length:394 Calcium uptake protein 1, mitochondrial +GPTAAALEPHPEEKKKKRSGFRDRKVMEYENRIRAYSTPDKIFRYFATLKVISEPGEAEVFMTPEDFVRSITPNEKQPEHLGLDQYIIKRFDGKKISQEREKFADEGSIFYTLGECGLISFSDYIFLTTVLSTPQRNFEIAFKMFDLNGDGEVDMEEFEQVQSIIRSQTSMGMRHRDRPTTGNTLKSGLCSALTTYFFGADLKGKLTIKNFLEFQRKLQHDVLKLEFERHDPVDGRITERQFGGMLLAYSGVQSKKLTAMQRQLKKHFKEGKGLTFQEVENFFTFLKNINDVDTALSFYHMAGASLDKVTMQQVARTVAKVELSDHVCDVVFALFDCDGNGELSNKEFVSIMKQRLMRGLEKPKDMGFTRLMQAMWKCAQETAWDFALPKQSNW +>4fny_A mol:protein length:327 ALK tyrosine kinase receptor +RTSTIMTDYNPNYSFAGKTSSISDLKEVPRKNITLIRGLGHGAFGEVYEGQVSGMPNDPSPLQVAVKTLPEVCSEQDELDFLMEALIISKFNHQNIVRCIGVSLQSLPRFILLELMAGGDLKSFLRETRPRPSQPSSLAMLDLLHVARDIACGCQYLEENHFIHRDIAARNCLLTCPGPGRVAKIGDFGMAQDIYRASYYRKGGCAMLPVKWMPPEAFMEGIFTSKTDTWSFGVLLWEIFSLGYMPYPSKSNQEVLEFVTSGGRMDPPKNCPGPVYRIMTQCWQHQPEDRPNFAIILERIEYCTQDPDVINTALPIEYGPLVEEEEK +>7c5l_R mol:protein length:352 Glyceraldehyde-3-phosphate dehydrogenase +HHHHHHSSGLVPRGSHMASMSKVGINGFGRIGRLVLRRLLEVKSNIDVVAINDLTSPKILAYLLKHDSNYGPFPWSVDFTEDSLIVDGKSIAVYAEKEAKNIPWKAKGAEIIVECTGFYTSAEKSQAHLDAGAKKVLISAPAGEMKTIVYNVNDDTLDGNDTIVSVASSTTNCLAPMAKALHDSFGIEVGTMTTIHAYTGTQSLVDGPRGKDLRASRAAAENIIPHTTGAAKAIGLVIPELSGKLKGHAQRVPVKTGSVTELVSILGKKVTAEEVNNALKQATTNNESFGYTDEEIVSSDIIGSHFGSVFDATQTEITAVGDLQLVKTVAWYDNEYGFVTQLIRTLEKFAKL +>6f0v_B mol:protein length:317 Proton-gated ion channel +GQDMVSPPPPIADEPLTVNTGIYLIECYSLDDKAETFKVNAFLSLSWKDRRLAFDPVRSGVRVKTYAPEAIWIPEIRFVNVENARDADVVDISVSPDGTVQYLERFSARVLSPLDFRRYPFDSQTLHIYLIVRSVDTRNIVLAVDLEKVGKNDDVFLTGWDIESFTAVVKPANFALEDRLESKLDYQLRISRQYFSYIPNIILPMLFILFISWTAFWSTSYEANVTLVVSTLIAHIAFNILVETNLPKTPYMTYTGAIIFMIYLFYFVAVIEVTVQHYLKVESQPARAASITRASRIAFPVVFLLANIILAFLFFGF +>6yto_C mol:protein length:314 Calcium homeostasis modulator protein 4 +MCPTLNNIVSSLQRNGIFINSLIAALTIGGQQLFSSSTFSCPCQVGKNFYYGSAFLVIPALILLVAGFALRSQMWTITGEYCCSCAPPYRRISPLECKLACLRFFSITGRAVIAPLTWLAVTLLTGTYYECAASEFASVDHYPMFDNVSASKREEILAGFPCCRSAPSDVILVRDEIALLHRYQSQMLGWILITLATIAALVSCCVAKCCSPLTSLQHCYWTSHLQNERELFEQAAEQHSRLLMMHRIKKLFGFIPGSEDVKHIRIPSCQDWKDISVPTLLCMGDDLQGHYSFLGNRVDEDNEEDRSRGIELKP +>6p4g_K mol:protein length:194 uS4 +MPVARSWVCRKTYVTPRRPFEKSRLDQELKLIGEYGLRNKREVWRVKFTLAKIRKAARELLTLDEKDPRRLFEGNALLRRLVRIGVLDEGKMKLDYILGLKIEDFLERRLQTQVFKLGLAKSIHHARVLIRQRHIRVRKQVVNIPSFIVRLDSQKHIDFSLRSPYGGGRPGRVKRKNAKKGQGGAGAGDDEEED +>4v6w_CU mol:protein length:299 60S ribosomal protein L22 +MAPTAKTNKGDTKTAAAKPAEKKAAPAAAAAKGKVEKPKAEAAKPAAAAAKNVKKASEAAKDVKAAAAAAKPAAAKPAAAKPAAASKDAGKKAPAAAAPKKDAKAAAAPAPAKAAPAKKAASTPAAAPPAKKAAPAKAAAPAAAAPAPAAAAPAVAKPAPKPKAKAAPAPSKVVKKNVLRGKGQKKKKVSLRFTIDCTNIAEDSIMDVADFEKYIKARLKVNGKVNNLGNNVTFERSKLKLIVSSDVHFSKAYLKYLTKKYLKKNSLRDWIRVVANEKDSYELRYFRISSNDDEDDDAE +>1oxy_A mol:protein length:628 HEMOCYANIN (SUBUNIT TYPE II) +TLHDKQIRICHLFEQLSSATVIGDGDKHKHSDRLKNVGKLQPGAIFSCFHPDHLEEARHLYEVFWEAGDFNDFIEIAKEARTFVNEGLFAFAAEVAVLHRDDCKGLYVPPVQEIFPDKFIPSAAINEAFKKAHVRPEFDESPILVDVQDTGNILDPEYRLAYYREDVGINAHHWHWHLVYPSTWNPKYFGKKKDRKGELFYYMHQQMCARYDCERLSNGMHRMLPFNNFDEPLAGYAPHLTHVASGKYYSPRPDGLKLRDLGDIEISEMVRMRERILDSIHLGYVISEDGSHKTLDELHGTDILGALVESSYESVNHEYYGNLHNWGHVTMARIHDPDGRFHEEPGVMSDTSTSLRDPIFYNWHRFIDNIFHEYKNTLKPYDHDVLNFPDIQVQDVTLHARVDNVVHTFMREQELELKHGINPGNARSIKAKYYHLDHEPFSYAVNVQNNSASDKHATVRIFLAPKYDELGNEIKADELRRTAIELDKFKTDLHPGKNTVVRHSLDSSVTLSHQPTFEDLLHGVGLNEHKSEYCSCGWPSHLLVPKGNVAGMEYHLFVMLTDWDKDKVDGSESVACVDAVSYCGARDHKYPDKKPMGFPFDRPIHTEHISDFLTNNMFIKDIKIKFHE +>7vmv_E mol:protein length:82 Core protein +MSYYHHHHHHDYDIPTTENLYFQGAMGSADLSLEKAANVQWDEMADITGSSPIIEVKQDEDGSFSIRDIEETNMIAQVKTQR +>5o4y_F mol:protein length:16 PHE-MAA-ASN-PRO-HIS-LEU-SER-TRP-SER-TRP-9KK-9KK-ARG-CCS-GLY-NH2 +FANPHLSWSWXXRCGX +>4hel_B mol:protein length:525 60 kDa chaperonin 4 +AAKDVKFGNDARVKMLRGVNVLADAVKVTLGPKGRNVVLDKSFGAPTITKDGVSVAREIELEDKFENMGAQMVKEVASKANDAAGDGTTTATVLAQAIITEGLKAVAAGMNPMDLKRGIDKAVTAAVEELKALSVPCSDSKAIAQVGTISANSDETVGKLIAEAMDKVGKEGVITVEDGTGLQDELDVVEGMQFDRGYLSPYFINKPETGAVELESPFILLADKKISNIREMLPVLEAVAKAGKPLLIIAEDVEGEALATLVVNTMRGIVKVAAVKAPGFGDRRKAMLQDIATLTGGTVISEEIGMELEKATLEDLGQAKRVVINKDTTTIIDGVGEEAAIQGRVAQIRQQIEEATSDYDREKLQERVAKLAGGVAVIKVGAATEVEMKEKKARVEDALHATRAAVEEGVVAGGGVALIRVASKLADLRGQNEDQNVGIKVALRAMEAPLRQIVLNCGEEPSVVANTVKGGDGNYGYNAATEEYGNMIDMGILDPTKVTRSALQYAASVAGLMITTECMVTDLPK +>3dmd_B mol:protein length:328 Signal recognition particle receptor +GSHMASMFGKLREKLKSFVKRVEEEVEKEEEEVEKKGLLDRILTVEIKEKDVDKALDELEIDLLEADVALEVVDALREKIKQKLVGKKVRIGTDKGKIIEEAVKEAVSEILETSRRIDLIEEIRKAEKPYVIMFVGFNGSGKTTTIAKLANWLKNHGFSVVIAASDTFRAGAIEQLEEHAKRIGVKVIKHSYGADPAAVAYDAIQHAKARGIDVVLIDTAGRSETNRNLMDEMKKIARVTKPNLVIFVGDALAGNAIVEQARQFNEAVKIDGIILTKLDADARGGAALSISYVIDAPILFVGVGQGYDDLRPFEKEWFLERIFGEENA +>3jcd_D mol:protein length:209 50S ribosomal protein L3 +MIGLVGKKVGMTRIFTEDGVSIPVTVIEVEANRVTQVKDLANDGYRAIQVTTGAKKANRVTKPEAGHFAKAGVEAGRGLWEFRLAEGEEFTVGQSISVELFADVKKVDVTGTSKGKGFAGTVKRWNFRTQDATHGNSLSHRVPGSIGQNQTPGKVFKGKKMAGQMGNERVTVQSLDVVRVDAERNLLLVKGAVPGATGSDLIVKPAVKA +>3ccj_K mol:protein length:132 50S ribosomal protein L14P +MEALGADVTQGLEKGSLITCADNTGARELKVISVHGYSGTKNRHPKAGLGDKITVSVTKGTPEMRRQVLEAVVVRQRKPIRRPDGTRVKFEDNAAVIVDENEDPRGTELKGPIAREVAQRFGSVASAATMIV +>7c2o_A mol:protein length:368 R-specific carbonyl reductase +MTKAVPDKFQGFAVSDPKNWNRPKLASYERKQINPHDVVLKNEVCGLCYSDIHTLSAGWQPLQRDNLVVGHEIIGEVIAVGDEVTEFKVGDRVGIGAASSSCRSCQRCDSDNEQYCKQGAATYNSKDVRSNNYVTQGGYSSHSIADEKFVFAIPEDLPSSYGAPLMCAGITVFSPLIRNLGLDARGKNVGIIGIGGLGHLALQFANAMGANVTAFSRSSSKKEQAMKLGAHDFVATGEDKTWYKNYDDHFDFILNCASGIDGLNLSEYLSTLKVDKKFVSVGLPPSEDKFEVSPFTFLQQGASFGSSLLGSKTEVKEMLNLAAKHNVRPMIEEVPISEENCAKALDRCHAGDVRYRFVFTDFDKAFKA +>6iax_B mol:protein length:355 Cyclic nucleotide-gated potassium channel mll3241 +MSVLPFLRIYAPLNAVLAAPGLLAVAALTIPDMSGRSRLALAALLAVIWGAYLLQLAATLLKRRAGVVRDRTPKIAIDVLAVLVPLAAFLLDGSPDWSLYCAVWLLKPLRDSTFFPVLGRVLANEARNLIGVTTLFGVVLFAVALAAYVIERDIQPEKFGSIPQAMWWAVVTLSTTGYGDTIPQSFAGRVLAGAVMMSGIGIFGLWAGILATGFYQEVRRGDFVRNWQLVAAVPLFQKLGPAVLVEIVRALRARTVPAGAVICRIGEPGDRMFFVVEGSVSVATPNPVELGPGAFFGEMALISGEPRSATVSAATTVSLLSLHSADFQMLCSSSPEIAEIFRKTALERRGAAASA +>5l64_F mol:protein length:288 Probable proteasome subunit alpha type-7 +MTSIGTGYDLSNSVFSPDGRNFQVEYAVKAVENGTTSIGIKCNDGVVFAVEKLITSKLLVPQKNVKIQVVDRHIGCVYSGLIPDGRHLVNRGREEAASFKKLYKTPIPIPAFADRLGQYVQAHTLYNSVRPFGVSTIFGGVDKNGAHLYMLEPSGSYWGYKGAATGKGRQSAKAELEKLVDHHPEGLSAREAVKQAAKIIYLAHEDNKEKDFELEISWCSLSETNGLHKFVKGDLLQEAIDFAQKEINGDDDEDEDDSDNVMSSDDENAPVATNANATTDQEGDIHLE +>6zn5_a mol:protein length:72 40S ribosomal protein S25 +DKLNNLVLFDKATYDKLCKEVPNYKLITPAVVSERLKIRGSLARAALQELLSKGLIKLVSKHRAQVIYTRNT +>3b3v_A mol:protein length:291 Bacterial leucyl aminopeptidase +MPPITQQATVTAWLPQVDASQITGTISSLESFTNRFYTTTSGAQASDWIASEWQALSASLPNASVKQVSHSGYNQKSVVMTITGSEAPDEWIVIGGHLDSTIGSHTNEQSVAPGADDDASGIAAVTEVIRVLSENNFQPKRSIAFMAYAAEEVGLRGSQDLANQYKSEGKNVVSALQLDMTNYKGSAQDVVFITDYTDSNFTQYLTQLMDEYLPSLTYGFDTCGYACADHASWHNAGYPAAMPFESKFNDYNPRIHTTQDTLANSDPTGSHAKKFTQLGLAYAIEMGSATG +>2owp_A mol:protein length:129 Hypothetical protein Bxe_B1374 +GMEVNQPDIVAQVQAAFVEYERALVENDIEAMNALFWHTPETVRYGIAEVQHGGEAIRAWRERCEPVPKSRKLHRTVVTTFGTDFATVSTEFTSDATPLLGRQMQTWARLSPADGWKIVAAHVSLIAMP +>6dr6_A mol:protein length:16 ORT-CYS-VAL-PHE-XXX-CYS-GLU-ASP-ORT-ALA-ILE-ILE-GLY-LEU-ORA-VAL +ACVFACEDAAIIGLAV +>7phw_F mol:protein length:209 Monoclonal antibody Cy.004 light chain +ALTQPSSVSANPGETVKITCSGSTYNYGWYQQKSPGSAPVTVIYYNDKRPSDIPSRFSGSKSGSTGTLTITGVQAEDEAVYYCGNSDSRNVAFGAGTTLTVLRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>3gvt_B mol:protein length:351 Pumilio homolog 2 +GTGRSRLLEDFRNNRFPNLQLRDLIGHIVEFSQDQHGSRFIQQKLERATPAERQIVFNEILQAAYQLMTDVFGNYVIQKFFEFGSLDQKLALATRIRGHVLPLALQMYGCRVIQKALESISSDQQSEMVKELDGHVLKCVKDQNGNHVVQKCIECVQPQSLQFIIDAFKGQVFVLSTHPYGCRVIQRILEHCTAEQTLPILEELHQHTEQLVQDQYGNYVIQHVLEHGRPEDKSKIVSEIRGKVLALSQHKFASNVVEKCVTHASRAERALLIDEVCCQNDGPHSALYTMMKDQYANYVVQKMIDMAEPAQRKIIMHKIRPHITTLRKYTYGKHILAKLEKYYLKNSPDLG +>6z0l_B mol:protein length:50 Cys-N2 Strand +XGLCALRSELQALRREGFSPEELAALESELQALERELAALRSELQALRGX +>4ujc_CC mol:protein length:293 40S RIBOSOMAL PROTEIN US5 +MADDAGAAGGPGGPGGPGMGNRGGFRGGFGSGIRGRGRGRGRGRGRGRGARGGKAEDKEWMPVTKLGRLVKDMKIKSLEEIYLFSLPIKESEIIDFFLGASLKDEVLKIMPVQKQTRAGQRTRFKAFVAIGDYNGHVGLGVKCSKEVATAIRGAIILAKLSIVPVRRGYWGNKIGKPHTVPCKVTGRCGSVLVRLIPAPRGTGIVSAPVPKKLLMMAGIDDCYTSARGCTATLGNFAKATFDAISKTYSYLTPDLWKETVFTKSPYQEFTDHLVKTHTRVSVQRTQAPAVATT +>6ywy_OO mol:protein length:320 Related to ribosomal protein S15 (Mitochondrial) +MPPRLPGPQGLRSLTLCLRPAVASPAQALQPLIQTANISQKEKKRKMKQDPYGWAQAQQRKAVNVKRQAELQAQRDAAWGDPVKGITTPFVESFDSAGQASVSPPKVGPDGQLVEEPKPLPTSPHLRNYLLNKDEFDSAIQYAEHILKPIKAEDRLTADPEKEDEEAREHAARHAKAVAALERIAKLEHGGAKDRKHANIRRCIETFGRHITDQSLERPTPPLARGVEPKPQPVRAGPDTGSSEVQIAILTSKIRALSKALEGHGGNRDKNNKRSLRRLCHKRQRLLRYMERKERGSGRWHHMLETLGLTPATWKGQITL +>5vyo_D mol:protein length:200 Thiol:disulfide interchange protein +SNAAGFAQASPSAPVAGKDFEVMKSPQPVSAPAGKVEVIEFFWYGCPHAYEFEPTIEAWVKKQGDKIAFKRVPVAFRDDFVPHSKLFYALAALGVSEKVTPAVFNAIHKEKNYLLTPQAQADFLATQGVDKKKFLDAYNSFSVQGQVKQSAELLKNYNIDGVPTIVVQGKYKTGPAYTNSLEGTAQVLDFLVKQVQDKKL +>2i0c_A mol:protein length:259 Glutamate receptor, ionotropic kainate 2 +GSNRSLIVTTILEEPYVLFKKSDKPLYGNDRFEGYCIDLLRELSTILGFTYEIRLVEDGKYGAQDDVNGQWNGMVRELIDHKADLAVAPLAITCVREKVIDFSKPFMTLGISILYRKGTPIDSADDLAKQTKIEYGAVEDGATMTFFKKSKISTYDKMWAFMSSRRQSVLVKSNEEGIQRVLTSDYAFLMESTTIEFVTQRNCNLTQIGGLIDSKGYGVGTPMGSPYRDKITIAICQLQEEGKLHMMKEKWWRGNGCPS +>2pod_A mol:protein length:410 Mandelate racemase / muconate lactonizing enzyme +MSLKITEIETLRPEEFPNLLWVLVHTDEGITGLGETFYGACSAEAYIHEWAANRLIGEDPLQIDRHAKRLSGYLGFRSAGAEMRGNSALDIALWDIFGKATGQPIYQLLGGKCRDTIRTYNTCAGPHYVRTAKQQSVANWGLANSVSARYDDLNAFLHRADELALDLLDSGITAMKIWPFDPYAEASDGYYISKSDLKRALEPFEKIRRAVGDKMDVMVEFHSLWNLPPALQIAEALREYETFWHEDPIRMDSLSSLKRYAERSLAPVCASETLATRWGFRDLLETNAAGIVMLDISWCGGLSEARKIASMAEAWHLPVAPHDCTGPVVLTASTHLSLNAPNALVQESVRAFYDGWYRDLVTALPTVKDGHITVPDGPGLGLELMPDIRERLTIAVRNTSDCEGHHHHHH +>6bsr_A mol:protein length:666 PBP4 protein +MGSDKIHHHHHHENLYFQGHMSQWQAKQELAEAKKTATTFLNVLSKQEFDKLPSVVQEASLKKNGYDTKSVVEKYQAIYSGIQAEGVKASDVQVKKAKDNQYTFTYKLSMSTPLGEMKDLSYQSSIAKKGDTYQIAWKPSLIFPDMSGNDKISIQVDNAKRGEIVDRNGSGLAINKVFDEVGVVPGKLGSGAEKTANIKAFSDKFGVSVDEINQKLSQGWVQADSFVPITVASEPVTELPTGAATKDTESRYYPLGEAAAQLIGYTGTITAEDIEKNPELSSTGVIGKTGLERAFDKELRGQDGGSLVILDDKENVKKALQTKEKKDGQTIKLTIDSGVQQQAFAIFDKRPGSAVITDPQKGDLLATVSSPSYDPNKMANGISQKEYDAYNNNKDLPFTARFATGYAPGSTFKTITGAIGLDAGTLKPDEELEINGLKWQKDKSWGGYFATRVKEASPVNLRTALVNSDNIYFAQQTLRMGEDKFRAGLNKFIFGEELDLPIAMTPAQISNEDKFNSEILLADTGYGQGQLLISPIQQATMYSVFQNNGTLVYPKLVLDKETKKKDNVISANAANTIATDLLGSVEDPSGYVYNMYNPNFSLAAKTGTAEIKDKQDTDGKENSFLLTLDRSNNKFLTMIMVENSGENGSATDISKPLIDYLEATIK +>1i48_J mol:protein length:445 CYSTATHIONINE GAMMA-SYNTHASE +MAKAVDAAAAAAAAIAPVDTTVVNEDVALVENETCNDQNVQFDSLPSMKYASFLNSDGSVAIHAGERLGRGIVTDAITTPVVNTSAYFFNKTSELIDFKEKRRASFEYGRYGNPTTVVLEEKISALEGAESTLLMASGMCASTVMLLALVPAGGHIVTTTDCYRKTRIFIETILPKMGITATVIDPADVGALELALNQKKVNLFFTESPTNPFLRCVDIELVSKLCHEKGALVCIDGTFATPLNQKALALGADLVLHSATKFLGGHNDVLAGCISGPLKLVSEIRNLHHILGGALNPNAAYLIIRGMKTLHLRVQQQNSTALRMAEILEAHPKVRHVYYPGLQSHPEHHIAKKQMTGFGGAVSFEVDGDLLTTAKFVDALKIPYIAPSFGGCESIVDQPAIMSYWDLSQSDRAKYGIMDNLVRFSFGVEDFDDLKADILQALDSI +>3u39_C mol:protein length:319 6-phosphofructokinase +MKRIGVLTSGGDSPGMNAAIRSVVRKAIYHGVEVYGVYHGYAGLIAGNIKKLEVGDVGDIIHRGGTILYTARCPEFKTEEGQKKGIEQLKKHGIEGLVVIGGDGSYQGAKKLTEHGFPCVGVPGTIDNDIPGTDFTIGFDTALNTVIDAIDKIRDTATSHERTYVIEVMGRHAGDIALWSGLAGGAETILIPEADYDMNDVIARLKRGHERGKKHSIIIVAEGVGSGVDFGRQIQEATGFETRVTVLGHVQRGGSPTAFDRVLASRLGARAVELLLEGKGGRCVGIQNNQLVDHDIAEALANKHTIDQRMYALSKELSI +>5i8e_C mol:protein length:222 VRC34.01 Fab heavy chain +QEVLVQSGAEVKKPGASVKVSCRAFGYTFTGNALHWVRQAPGQGLEWLGWINPHSGDTTTSQKFQGRVYMTRDKSINTAFLDVTRLTSDDTGIYYCARDKYYGNEAVGMDVWGQGTSVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEP +>3mhv_C mol:protein length:117 Vacuolar protein sorting-associated protein 4 +GSPDLAARTTMFEINVGDTPCVLTKEDYRTLGAMTEGYSGSDIAVVVKDALMQPIRKIQSATHFKDVSTEDDETRKLTPCSPGDDGAIEMSWTDIEADELKEPDLTIKDFLKAIKST +>7opd_d mol:protein length:1143 DNA damage-binding protein 1 +SNAMSYNYVVTAQKPTAVNGCVTGHFTSAEDLNLLIAKNTRLEIYVVTAEGLRPVKEVGMYGKIAVMELFRPKGESKDLLFILTAKYNACILEYKQSGESIDIITRAHGNVQDRIGRPSETGIIGIIDPECRMIGLRLYDGLFKVIPLDRDNKELKAFNIRLEELHVIDVKFLYGCQAPTICFVYQDPQGRHVKTYEVSLREKEFNKGPWKQENVEAEASMVIAVPEPFGGAIIIGQESITYHNGDKYLAIAPPIIKQSTIVCHNRVDPNGSRYLLGDMEGRLFMLLLEKEEQMDGTVTLKDLRVELLGETSIAECLTYLDNGVVFVGSRLGDSQLVKLNVDSNEQGSYVVAMETFTNLGPIVDMCVVDLERQGQGQLVTCSGAFKEGSLRIIRNGIGIHEHASIDLPGIKGLWPLRSDPNRETDDTLVLSFVGQTRVLMLNGEEVEETELMGFVDDQQTFFCGNVAHQQLIQITSASVRLVSQEPKALVSEWKEPQAKNISVASCNSSQVVVAVGRALYYLQIHPQELRQISHTEMEHEVACLDITPLGDSNGLSPLCAIGLWTDISARILKLPSFELLHKEMLGGEIIPRSILMTTFESSHYLLCALGDGALFYFGLNIETGLLSDRKKVTLGTQPTVLRTFRSLSTTNVFACSDRPTVIYSSNHKLVFSNVNLKEVNYMCPLNSDGYPDSLALANNSTLTIGTIDEIQKLHIRTVPLYESPRKICYQEVSQCFGVLSSRIEVQDTSGGTTALRPSASTQALSSSVSSSKLFSSSTAPHETSFGEEVEVHNLLIIDQHTFEVLHAHQFLQNEYALSLVSCKLGKDPNTYFIVGTAMVYPEEAEPKQGRIVVFQYSDGKLQTVAEKEVKGAVYSMVEFNGKLLASINSTVRLYEWTTEKELRTECNHYNNIMALYLKTKGDFILVGDLMRSVLLLAYKPMEGNFEEIARDFNPNWMSAVEILDDDNFLGAENAFNLFVCQKDSAATTDEERQHLQEVGLFHLGEFVNVFCHGSLVMQNLGETSTPTQGSVLFGTVNGMIGLVTSLSESWYNLLLDMQNRLNKVIKSVGKIEHSFWRSFHTERKTEPATGFIDGDLIESFLDISRPKMQEVVANLQYDDGSGMKREATADDLIKVVEELTRIH +>7ba7_A mol:protein length:236 14-3-3 protein sigma +GAMGSMERASLIQKAKLAEQAERYEDMAAFMKGAVEKGEELSNEERCLLSVAYKNVVGGQRAAWRVLSSIEQKSNEEGSEEKGPEVREYREKVETELQGVCDTVLGLLDSHLIKEAGDAESRVFYLKMKGDYYRYLAEVATGDDKKRIIDSARSAYQEAMDISKKEMPPTNPIRLGLALNFSVFHYEIANSPEEAISLAKTTFDEAMADLHTLSEDSYKDSTLIMQLLRDNLTLWT +>4v8d_CE mol:protein length:256 30S RIBOSOMAL PROTEIN S2 +MPVEITVKELLEAGVHFGHERKRWNPKFARYIYAERNGIHIIDLQKTMEELERTFRFIEDLAMRGGTILFVGTKKQAQDIVRMEAERAGMPYVNQRWLGGMLTNFKTISQRVHRLEELEALFASPEIEERPKKEQVRLKHELERLQKYLSGFRLLKRLPDAIFVVDPTKEAIAVREARKLFIPVIALADTDSDPDLVDYIIPGNDDAIRSIQLILSRAVDLIIQARGGVVEPSPSYALVQEAEATETPEGESEVEA +>6ald_D mol:protein length:363 FRUCTOSE-1,6-BIS(PHOSPHATE) ALDOLASE +PHSHPALTPEQKKELSDIAHRIVAPGKGILAADESTGSIAKRLQSIGTENTEENRRFYRQLLLTADDRVNPCIGGVILFHETLYQKADDGRPFPQVIKSKGGVVGIKVDKGVVPLAGTNGETTTQGLDGLSERCAQYKKDGADFAAWRCVLKIGEHTPSALAIMENANVLARYASICQQNGIVPIVEPEILPDGDHDLKRCQYVTEKVLAAVYKALSDHHIYLEGTLLKPNMVTPGHACTQKYSHEEIAMATVTALRRTVPPAVTGVTFLSGGQSEEEASINLNAINKCPLLKPWALTFSYGRALQASALKAWGGKKENLKAAQEEYVKRALANSLACQGKYTPSGQAGAAASESLFISNHAY +>3eff_N mol:protein length:139 Voltage-gated potassium channel +SALHWRAAGAATVLLVIVLLAGSYLAVLAERGAPGAQLITYPRALWWSVETATTVGYGDLYPVTLWGRLVAVVVMVAGITSFGLVTAALATWFVGREQERRGHFVRHSEKAAEEAYTRTTRALHERFDRLERMLDDNRR +>1px6_B mol:protein length:209 Glutathione S-transferase P +PPYTVVYFPVRGRCAALRMLLADQGQSWKEEVVTVETWQEGSLKASCLYGQLPKFQDGDLTLYQSNTILRHLGRTLGLYGKDQQEAALVDMVNDGVEDLRCKYISLIYTNYEAGKDDYVKALPGQLKPFETLLSQNQGGKTFIVGDQISFANYNLLDLLLIHEVLAPGCLDAFPLLSAYVGRLSARPKLKAFLASPEYVNLPINGNGKQ +>6lkn_C mol:protein length:361 Cell cycle control protein 50A +MAMNYNAKDEVDGGPPCAPGGTAKTRRPDNTAFKQQRLPAWQPILTAGTVLPIFFIIGLIFIPIGIGIFVTSNNIREIEIDYTGTEPSSPCNKCLSPDVTPCFCTINFTLEKSFEGNVFMYYGLSNFYQNHRRYVKSRDDSQLNGDSSALLNPSKECEPYRRNEDKPIAPCGAIANSMFNDTLELFLIGQDSYPIPIALKKKGIAWWTDKNVKFRNPPGGDNLEERFKGTTKPVNWLKPVYMLDSDPDNNGFINEDFIVWMRTAALPTFRKLYRLIERKSDLHPTLPAGRYWLNVTYNYPVHYFDGRKRMILSTISWMGGKNPFLGIAYIAVGSISFLLGVVLLVINHKYRNSSNTADITI +>1ees_A mol:protein length:178 GTP-BINDING PROTEIN +MQTIKCVVVGDGAVGKTCLLISYTTNKFPSEYVPTVFDNYAVTVMIGGEPYTLGLFDTAGQEDYDRLRPLSYPQTDVFLVCFSVVSPSSFENVKEKWVPEITHHCPKTPFLLVGTQIDLRDDPSTIEKLAKNKQKPITPETAEKLARDLKAVKYVECSALTQKGLKNVFDEAILAALE +>3ow9_B mol:protein length:6 KLVFFA hexapeptide segment from Amyloid beta +KLVFFA +>7ezx_hI mol:protein length:164 Phycoerythrin alpha subunit +MKSVITTVVSAADAAGRFPSNSDLESIQGNIQRSAARLEAAEKLAGNHEAVVKEAGDACFAKYAYLKNPGEAGENQEKINKCYRDVDHYMRLVNYCLVVGGTGPLDEWGIAGAREVYRTLNLPTSAYVASIAYTRDRLCVPRDMSAQAGVEFSAYLDYLINALS +>7o2z_P mol:protein length:9 P/A#1 epitope peptide +XAPAPAAPA +>6zsk_A mol:protein length:158 Cytochrome c +MNKPSFLLVGLLVVSGVLGAAETKVKYPDGFRSWYHVKSMVIQPGHPLENPFGGIHHVYANAEAIQGLRGGNYPDGAVLVFDLFDYQEDNHALVEGKRKLIGVMERDAKRFSATGGWGYEGFGEGKPDKRLVTDGGQGCFGCHAAQKESQYVFSRLRD +>5k28_B mol:protein length:64 Mitogen-activated protein kinase kinase kinase 11 +HMPVWTALFDYEPSGQDELALRKGDRVEVLSRDAAISGDEGWWAGQVGGQVGIFPSNYVSRGGG +>6xc7_D mol:protein length:215 CC12.3 light chain +EIVLTQSPGTLSLSPGERATLSCRASQSVSSYLAWYQQKPGQAPRLLIYGASSRATGIPDRFSGSGSGTDFTLTISRLEPEDFAVYYCQQYGSSPRTFGQGTKLEIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGECS +>3mfe_O mol:protein length:240 Proteasome subunit alpha +MEQAMRERSELARKGIARAKSVVALAYAGGVLFVAENPSRSLQKISELYDRVGFAAAGKFNEFDNLRRGGIQFADTRGYAYDRRDVTGRQLANVYAQTLGTIFTEQAKPYEVELCVAEVAHYGETKRPELYRITYDGSIADEPHFVVMGGTTEPIANALKESYAENASLTDALRIAVAALRAGSADTSGGDQPTLGVASLEVAVLDANRPRRAFRRITGSALQALLVDQESPQSDGESSG +>5uuh_A mol:protein length:241 DNA-7-methylguanine glycosylase +GPVPMHPFVKALQEHFTAHQNPEKAEPMARYMKNHFLFLGIQTPERRQLLKDIIQIHTLPDQKDFQIIIRELWDLPEREFQAAALDIMQKYKKHINETHIPFLEELIVTKSWWDSVDSIVPTFLGDIFLKHPELISAYIPKWIASDNIWLQRAAILFQLKYKQKMDEELLFWIIGQLHSSKEFFIQKAIGWVLREYAKTNPDVVWEYVQNNELAPLSKREAIKHIKQNYGINNEKIGETLS +>4y6t_C mol:protein length:166 Coat protein +MTAPIPVVPVSRPQAKTSLKLPNNQVWVTRKASEWSAKTIDTNDAIPFKTIVEGIPEINSETKFYRLLIGFVAVSDGTFGMVDGVTGDVIPDPPVVGRLGFKKNTYRSRDFDLGGKLLNQLDDRAIVWCLDERRRDAKRVQLAGYWIAISKPAPLMPPEDFLVNQD +>1hx6_B mol:protein length:394 MAJOR CAPSID PROTEIN +AQVQQLTPAQQAALRNQQAMAANLQARQIVLQQSYPVIQQVETQTFDPANRSVFDVTPANVGIVKGFLVKVTAAITNNHATEAVALTDFGPANLVQRVIYYDPDNQRHTETSGWHLHFVNTAKQGAPFLSSMVTDSPIKYGDVMNVIDAPATIAAGATGELTMYYWVPLAYSETDLTGAVLANVPQSKQRLKLEFANNNTAFAAVGANPLEAIYQGAGAADCEFEEISYTVYQSYLDQLPVGQNGYILPLIDLSTLYNLENSAQAGLTPNVDFVVQYANLYRYLSTIAVFDNGGSFNAGTDINYLSQRTANFSDTRKLDPKTWAAQTRRRIATDFPKGVYYCDNRDKPIYTLQYGNVGFVVNPKTVNQNARLLMGYEYFTSRTELVNAGTISTT +>2hbg_A mol:protein length:147 HEMOGLOBIN (DEOXY) +GLSAAQRQVIAATWKDIAGADNGAGVGKKCLIKFLSAHPQMAAVFGFSGASDPGVAALGAKVLAQIGVAVSHLGDEGKMVAQMKAVGVRHKGYGNKHIKAQYFEPLGASLLSAMEHRIGGKMNAAAKDAWAAAYADISGALISGLQS +>3wry_D mol:protein length:451 Replicase large subunit +SYTRSEEIESLEQFHMATASSLIHKQMCSIVYTGPLKVQQMKNFIDSLVASLSAAVSNLVKILKDTAAIDLETRQKFGVLDVASKRWLVKPSAKNHAWGVVETHARKYHVALLEHDEFGIITCDNWRRVAVSSESVVYSDMAKLRTLRRLLKDGEPHVSSAKVVLVDGVPGCGKTKEILSRVNFEEDLILVPGRQAAEMIRRRANASGIIVATKDNVRTVDSFLMNYGKGARCQFKRLFIDEGLMLHTGCVNFLVEMSLCDIAYVYGDTQQIPYINRVTGFPYPAHFAKLEVDEVETRRTTLRCPADVTHFLNQRYEGHVMCTSSEKKSVSQEMVSGAASINPVSKPLKGKILTFTQSDKEALLSRGYADVHTVHEVQGETYADVSLVRLTPTPVSIIARDSPHVLVSLSRHTKSLKYYTVVMDPLVSIIRDLERVSSYLLDMYKVDAGTQ +>6hvt_U mol:protein length:252 Proteasome subunit alpha type-1 +MSGAAAASAAGYDRHITIFSPEGRLYQVEYAFKATNQTNINSLAVRGKDCTVVISQKKVPDKLLDPTTVSYIFCISRTIGMVVNGPIPDARNAALRAKAEAAEFRYKYGYDMPCDVLAKRMANLSQIYTQRAYMRPLGVILTFVSVDEELGPSIYKTDPAGYYVGYKATATGPKQQEITTNLENHFKKSKIDHINEESWEKVVEFAITHMIDALGTEFSKNDLEVGVATKDKFFTLSAENIEERLVAIAEQD +>5z3u_H mol:protein length:122 Histone H2B 1.1 +AKSAPAPKKGSKKAVTKTQKKDGKKRRKTRKESYAIYVYKVLKQVHPDTGISSKAMSIMNSFVNDVFERIAGEASRLAHYNKRSTITSREIQTAVRLLLPGELAKHAVSEGTKAVTKYTSAK +>2ex3_C mol:protein length:575 DNA polymerase +MKHMPRKMYSCAFETTTKVEDCRVWAYGYMNIEDHSEYKIGNSLDEFMAWVLKVQADLYFHNLKFAGAFIINWLERNGFKWSADGLPNTYNTIISRMGQWYMIDICLGYKGKRKIHTVIYDSLKKLPFPVKKIAKDFKLTVLKGDIDYHKERPVGYKITPEEYAYIKNDIQIIAEALLIQFKQGLDRMTAGSDSLKGFKDIITTKKFKKVFPTLSLGLDKEVRYAYRGGFTWLNDRFKEKEIGEGMVFDVNSLYPAQMYSRLLPYGEPIVFEGKYVWDEDYPLHIQHIRCEFELKEGYIPTIQIKRSRFYKGNEYLKSSGGEIADLWLSNVDLELMKEHYDLYNVEYISGLKFKATTGLFKDFIDKWTYIKTTSEGAIKQLAKLMLNSLYGKFASNPDVTGKVPYLKENGALGFRLGEEETKDPVYTPMGVFITAWARYTTITAAQACYDRIIYCDTDSIHLTGTEIPDVIKDIVDPKKLGYWAHESTFKRAKYLRQKTYIQDIYMKEVDGKLVEGSPDDYTDIKFSVKCAGMTDKIKKEVTFENFKVGFSRKMKPKPVQVPGGVVLVDDTFTIK +>2jo4_D mol:protein length:22 KIA7 +XAKAAAAAIKAIAAIIKAGGYX +>7vd5_b mol:protein length:484 Photosystem II CP47 reaction center protein +ALPWYRVHTVVLNDPGRLIAVHLMHTALVAGWAGSMALYELAVFDPSDPVLNPMWRQGMFVMPFMTRLGITDSWGGWSITGESVSNPGIWSFEGVALSHIILSGMCFLAAIWHWVYWDLELFRDPRTGEPALDLPKIFGIHLFLSGLLCFGFGAFHVTGLFGPGIWVSDAYGITGKVQPVAPAWGADGFNPFNPGGIAAHHIAAGIFGIFAGIFHLTVRPPQRLYRALRMGNIETVLSSSISAVFFAAFVTSGTMWYGAAATPIELFGPTRYQWDSGYFQQEIERQVETSVSEGLSESQAWSRIPDKLAFYDYIGNNPAKGGLFRAGPMNKGDGIAEAWLGHPIFRDKEGRELTVRRMPAFFETFPVILVDKDGIIRADIPFRRAESKYSIEQVGVTVDFYGGKLNGQTFKDAPTVKKFARKAQLGEVFEFDRTSLESDGVFRSSPRGWYTYGHANFALLFFFGHLWHGGRTIFRDVFTGIGAE +>7c4w_C mol:protein length:240 Capsid protein VP3 +GIPAELRPGTNQFLTTDDDTAAPILPGFTPTPTIHIPGEVHSLLELCRVETILEVNNTTEATGLTRLLIPVSSQNKADELCAAFMVDPGRIGPWQSTLVGQICRYYTQWSGSLKVTFMFTGSFMATGKMLVAYSPPGSAQPANRETAMLGTHVIWDFGLQSSVSLVIPWISNTHFRTAKTGGNYDYYTAGVVTLWYQTNYVVPPETPGEAYIIAMGAAQDNFTLKICKDTDEVTQQAVLQ +>4w2f_CS mol:protein length:93 30S Ribosomal Protein S19 +MPRSLKKGVFVDDHLLEKVLELNAKGEKRLIKTWSRRSTIVPEMVGHTIAVYNGKQHVPVYITENMVGHKLGEFAPTRTYRGHGKEAKATKKK +>5s64_B mol:protein length:445 Tubulin beta-2B chain +MREIVHIQAGQCGNQIGAKFWEVISDEHGIDPTGSYHGDSDLQLERINVYYNEATGNKYVPRAILVDLEPGTMDSVRSGPFGQIFRPDNFVFGQSGAGNNWAKGHYTEGAELVDSVLDVVRKESESCDCLQGFQLTHSLGGGTGSGMGTLLISKIREEYPDRIMNTFSVMPSPKVSDTVVEPYNATLSVHQLVENTDETYCIDNEALYDICFRTLKLTTPTYGDLNHLVSATMSGVTTCLRFPGQLNADLRKLAVNMVPFPRLHFFMPGFAPLTSRGSQQYRALTVPELTQQMFDSKNMMAACDPRHGRYLTVAAIFRGRMSMKEVDEQMLNVQNKNSSYFVEWIPNNVKTAVCDIPPRGLKMSATFIGNSTAIQELFKRISEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDATADEQGEFEEEEGEDEA +>3tdp_B mol:protein length:257 formate/nitrite transporter +RAHKETLDKLTNAAINKINLLNTSKVKYLVSSAFAGLYVGIGILLIFTIGGLLTDAGSPMTKIVMGLSFAIALSLVIMTGTELFTGNNMVMSAGMLNKGVSIKDTSKIWAYSWVGNLIGALVLGIIFVGTGLVDKGPVAEFFANTAASKASMPFTALFFRGILCNILVCVSVLCSFRTNSDTAKIIMIFLCLFAFITSGFEHSVANMTIYSVSLFSPTISTVTIGGAIYNLVAVTLGNIVGGALFMGLGTYILGKEK +>4jpj_B mol:protein length:181 Germline-targeting HIV-1 gp120 engineered outer domain, eOD-GT6 +DTITLPCRPAPPPHCSSNITGLILTRDGGVSNDETEIFRPSGGDMRDIARCQIAGTVVSTQLFLNGSLAEEEVVIRSVDFRDNAKSICVQLDTSVEIDCTGAGHCDISRAKWDNTLKQIASKLREQFGDRTIIFKQSSGGDPEFVTHSFNCGGEFFYCDSTQLFDSTWFDSTGTKHHHHHH +>5ohm_F mol:protein length:116 K33-specific affimer +MSAATGVRAVPGNENSLEIEELARFAVDEHNKKENALLEFVRVVKAKEQIWEMDASKETMYYLTLEAKDGGKKKLYEAKVWVKMTHWIGAMNNFKELQEFKPVGDAAAAHHHHHHG +>7eqg_B mol:protein length:434 Type I-F CRISPR-associated protein Csy1 +MTSPLPTPTWQELRQFIESFIQERLQGKLDKLHPDEDDKRQTLLATHRREAWLADAARRVGQLQLVTHTLKPIHPDARGSNLHSLPQAPGQPGLAGSHELGDRLVSDVVGNAAALDVFKFLSLQYQGKNLLNWLTEDSAEAVQALSDNAEQAREWRQAFIGITAVKGAPASHSLAKQLYFPLPGSGYHLLAPLFPTSLVHHVHALLREARFGDAAKAAREARSRQESWPHGFSEYPNLAIQKFGGTKPQNISQLNSERYGENWLLPSLPPHWQRQDQRAPIRHSSVFEHDFGRSPEVSRLTRTLQRLLAKTRHNNFTIRRYRAQLVGQICDEALQYAARLRELEPGWSATPGCQLHDAEQLWLDPLRAQTDETFLQRRLRGDWPAEVGNRFANWLNRAVSSDSQILGSPEAAQWSQELSKELTMFKEILEDERD +>4a98_F mol:protein length:307 CYS-LOOP LIGAND-GATED ION CHANNEL +PVDVSVSIFINKIYGVNTLEQTYKVDGYIVAQWTGKPRKTPGDKPLIVENTQIERWINNGLWVPALEFINVVGSPDTGNKRLMLFPDGRVIYNARFLGSFSNDMDFRLFPFDRQQFVLELEPFSYNNQQLRFSDIQVYTENIDNEEIDEWWIRGKASTHISDIRYDHLSSVQPNQNEFSRITVRIDAVRNPSYYLWSFILPLGLIIAASWSVFWLESFSERLQTSFTLMLTVVAYAFYTSNILPRLPYTTVIDQMIIAGYGSIFAAILLIIFAHHRQANGVEDDLLIQRCRLAFPLGFLAIGCVLVI +>6trc_z mol:protein length:36 Photosystem I 4.8K protein +MATKSAKPTYAFRTFWAVLLLAINFLVAAYYFGILK +>3lte_O mol:protein length:132 Response regulator +MSLKQSKRILVVDDDQAMAAAIERVLKRDHWQVEIAHNGFDAGIKLSTFEPAIMTLDLSMPKLDGLDVIRSLRQNKVANQPKILVVSGLDKAKLQQAVTEGADDYLEKPFDNDALLDRIHDLVNEGHHHHHH +>7jql_1D mol:protein length:276 50S ribosomal protein L2 +MAVKKFKPYTPSRRFMTVADFSEITKTEPEKSLVKPLKKTGGRNNQGRITVRFRGGGHKRLYRIIDFKRWDKVGIPAKVAAIEYDPNRSARIALLHYVDGEKRYIIAPDGLQVGQQVVAGPDAPIQVGNALPLRFIPVGTVVHAVELEPKKGAKLARAAGTSAQIQGREGDYVILRLPSGELRKVHGECYATVGAVGNADHKNIVLGKAGRSRWLGRRPHVRGAAMNPVDHPHGGGEGRAPRGRPPASPWGWQTKGLKTRKRRKPSSRFIIARRKK +>6wvt_O mol:protein length:236 Catenin alpha-1 +AIMAQLPQEQKAKIAEQVASFQEEKSKLDAEVSKWDDSGNDIIVLAKQMCMIMMEMTDFTRGKGPLKNTSDVISAAKKIAEAGSRMDKLGRTIADHCPDSACKQDLLAYLQRIALYCHQLNICSKVKAEVQNLGGELVVSGVDSAMSLIQAAKNLMNAVVQTVKASYVASTKYQKSQGMASLNLPAVSWKMKAPEKKPLVKREKQDETQTKIKRASQKKHVNPVQALSEFKAMDSI +>6oq5_F mol:protein length:142 7F +SNSQVQLVESGGGLVEAGGSLRLSCVVTGSSFSTSTMAWYRQPPGKQREWVASFTSGGAIKYTDSVKGRFTMSRDNAKKMTYLQMENLKPEDTAVYYCALHNAVSGSSWGRGTQVTVSSEPKTPKPQTSGAPVPYPDPLEPR +>5ekc_C mol:protein length:491 Aldehyde dehydrogenase +MIDLNIMKVANYINGEFKEPSTGAFQVKTSPVDGSKIAEVPRSGREDAREAIDSAFEALKAWANIPAIRRAEYLYKMLEVFRQMKEDFMKILTVEGGGTYRKVWGEVVFTERLIQNAAELARHYQGRVLQSDSESTISVVFKRSKGVVGVITPWNYPLSISMKKIAHTLAVGNTVVYKPASDTPVTGWLIAQMVAKAGLPKGVFNLVIGPGPVVGEEIVTHKRVAHVTFTGESSTGREIAAKAAGTLKTVTLELGGSDPLIILDDVDVDYAARLAVFASLFHQGQICTSAKRIIVHKAVADKFIERYVHYVKMLRIDDPRKDEKVDLGPLINERQVALMKEFVDDAVSRGGRLLIGGRSWGNFFEPAIFVDVDRNFRIMREEVFGPVRPIVVVENDDQAVEVANDTDYGLSGAVLTNNVNRAFRIAEAVESGMFHINDVTFLEESHVPFGGIKASGVGREGGEWSFHETTYDRWVTVTLRTRRFPIPSALK +>3fby_A mol:protein length:551 Cartilage oligomeric matrix protein +RSPWPGVPTSPVWWNSAQRFCPDGSPSECHEHADCVLERDGSRSCVCAVGWAGNGILCGRDTDLDGFPDEKLRCPERQCRKDNCVTVPNSGQEDVDRDGIGDACDPDADGDGVPNEKDNCPLVRNPDQRNTDEDKWGDACDNCRSQKNDDQKDTDQDGRGDACDDDIDGDRIRNQADNCPRVPNSDQKDSDGDGIGDACDNCPQKSNPDQADVDHDFVGDACDSDQDQDGDGHQDSRDNCPTVPNSAQEDSDHDGQGDACDDDDDNDGVPDSRDNCRLVPNPGQEDADRDGVGDVCQDDFDADKVVDKIDVCPENAEVTLTDFRAFQTVVLDPEGDAQIDPNWVVLNQGREIVQTMNSDPGLAVGYTAFNGVDFEGTFHVNTVTDDDYAGFIFGYQDSSSFYVVMWKQMEQTYWQANPFRAVAEPGIQLKAVKSSTGPGEQLRNALWHTGDTESQVRLLWKDPRNVGWKDKKSYRWFLQHRPQVGYIRVRFYEGPELVADSNVVLDTTMRGGRLGVFCFSQENIIWANLRYRCNDTIPEDYETHQLRQAGT +>6h58_h mol:protein length:129 30S ribosomal protein S8 +SMQDPIADMLTRIRNGQAANKAAVTMPSSKLKVAIANVLKEEGFIEDFKVEGDTKPELELTLKYFQGKAVVESIQRVSRPGLRIYKRKDELPKVMAGLGIAVVSTSKGVMTDRAARQAGLGGEIICYVA +>4bts_DN mol:protein length:55 40S RIBOSOMAL PROTEIN RPS29E +MPNKLWRTHPRNYGKDSKECRVCGARQGLITKYEMMTCRRCFREQAPHIGFVKYR +>6qq8_A mol:protein length:239 Green fluorescent protein +MVSKGEELFTGVVPILVELDGDVNGHKFSVSGEGEGDATYGKLTLKFICTTGKLPVPWPTLVTTLTWGVQCFARYPDHMKQHDFFKSAMPEGYVQERTIFFKDDGNYKTRAEVKFEGDTLVNRIELKGIDFKEDGNILGHKLEYNAISDNVYITADKQKNGIKANFKIRHNIEDGSVQLADHYQQNTPIGDGPVLLPDNHYLSTQSALSKDPNEKRDHMVLLEFVTAAGITLGMDELYK +>1a93_B mol:protein length:34 MAX PROTEIN +XCGGMRRKNDTHQQDIDDLKRQNALLEQQVRALX +>2fyq_A mol:protein length:194 Chymotrypsin-like cysteine proteinase +MAHHHHHHDDDDKAPPTLWSRVTKFGSGWGFWVSPTVFITTTHVVPTGVKEFFGEPLSSIAIHQAGEFTQFRFSKKMRPDLTGMVLEEGCPEGTVCSVLIKRDSGELLPLAVRMGAIASMRIQGRLVHGQSGMLLTGANAKGMDLGTIPGDCGAPYVHKRGNDWVVCGVHAAATKSGNTVVCAVQAGEGETALE +>6q98_n mol:protein length:130 30S ribosomal protein S9 +MAENQYYGTGRRKSSAARVFIKPGNGKIVINQRSLEQYFGRETARMVVRQPLELVDMVEKLDLYITVKGGGISGQAGAIRHGITRALMEYDESLRSELRKAGFVTRDARQVERKKVGLRKARRRPQFSKR +>4ujd_Cc mol:protein length:69 40S RIBOSOMAL PROTEIN ES28 +MDTSRVQPIKLARVTKVLGRTGSQGQCTQVRVEFMDDTSRSIIRNVKGPVREGDVLTLLESEREARRLR +>4eef_G mol:protein length:74 F-HB80.4, DESIGNED HEMAGGLUTININ BINDING PROTEIN +MDYKDDDDKGSHMASTRGSGRPWKFSENIAFEIALSFTNKDTPDRWKKVAQYVKGRTPEEVKKHYELEHHHHHH +>4quo_A mol:protein length:868 Aminopeptidase N +KTVHYLKDYQTPAYHILKTDLHFDINEPQTVVKSRLTVEPQRVGEPLVLDGSAKLLSVKINGAAADYVLEGETLTIAGVPSERFTVEVETEILPAENKSLMGLYASGGNLFTQCEPEGFRKITFYIDRPDVMSKFTTTIVADKKRYPVLLSNGNKIDGGEFSDGRHWVKWEDPFSKPSYLFALVAGDLAVTEDYFTTMSGRNVKIEFYTTEADKPKVGFAVESLKNAMKWDETRFGLEYDLDIFMVVAVGDFNMGAMENKGLNIFNTKFVLADSRTATDTDFEGIESVVGHEYFHNWTGNRVTCRDWFQLSLKEGLTVFRDQEFSGDRASRAVRRIENIRLLRQHQFPEDAGPTAHPVRPASYEEMNNFYTMTVYEKGAEVVRMYHTLLGEEGFQKGMKLYFQRHDGQAVTCDDFRAAMADANGINLDQFALWYSQAGTPVLEAEGRLKNNIFELTVKQTVPPTPDMTDKQPMMIPVKVGLLNRNGEAVAFDYQGKRATEAVLLLTEAEQTFLLEGVTEAVVPSLLRGFSAPVHLNYPYSDDDLLLLLAHDSDAFTRWEAAQTLYRRAVAANLATLSDGVELPKHEKLLAAVEKVISDDLLDNAFKALLLGVPSEAELWDGAENIDPLRYHQAREALLDTLAVHFLPKWHELNRQAAKQENQSYEYSPEAAGWRTLRNVCRAFVLRADPAHIETVAEKYGEMAQNMTHEWGILSAVNGNESDTRNRLLAQFADKFSDDALVMDKYFALVGSSRRSDTLQQVRTALQHPKFSLENPNKARSLIGSFSRNVPHFHAEDGSGYRFIADKVIEIDRFNPQVAARLVQAFNLCNKLEPHRKNLVKQALQRIRAQEGLSKDVGEIVGKILDSNA +>6olg_BM mol:protein length:120 40S ribosomal protein S12 +VMDVNTALQEVLKTALIHDGLARGIREAAKALDKRQAHLCVLASNCDEPMYVKLVEALCAEHQINLIKVDDNKKLGEWVGLCKIDREGKPRKVVGCSCVVVKDYGKESQAKDVIEEYFKC +>6wgc_9 mol:protein length:513 Cell division control protein 6 +MSAIPITPTKRIRRNLFDDAPATPPRPLKRKKLQFTDVTPESSPEKLQFGSQSIFLRTKALLQKSSELVNLNSSDGALPARTAEYEQVMNFLAKAISEHRSDSLYITGPPGTGKTAQLDMIIRQKFQSLPLSLSTPRSKDVLRHTNPNLQNLSWFELPDGRLESVAVTSINCISLGEPSSIFQKIFDSFQDLNGPTLQIKNMQHLQKFLEPYHKKTTFVVVLDEMDRLLHANTSETQSVRTILELFLLAKLPTVSFVLIGMANSLDMKDRFLSRLNLDRGLLPQTIVFQPYTAEQMYEIVIQKMSSLPTIIFQPMAIKFAAKKCAGNTGDLRKLFDVLRGSIEIYELEKRFLLSPTRGSLNSAQVPLTPTTSPVKKSYPEPQGKIGLNYIAKVFSKFVNNNSTRTRIAKLNIQQKLILCTIIQSLKLNSDATIDESFDHYIKAITKTDTLAPLQRNEFLEICTILETCGLVSIKKTKCKGKTKRFVDKIDVDLDMREFYDEMTKISILKPFLH +>7nqh_BF mol:protein length:294 Mitochondrial ribosomal protein L4 +MLQLVRAGARTWFRPSGCRGLNTLAEEAVQQAEKPESVASLGLQPPVLRKCELPVPAHRRPVQAWIESLRGYEQERVGLTELHPDVFSTAPRLDILHQVAIWQKNFKRISYAKTKTRAEVRGGGRKPWVQKGSGRARHGSIRSPIWRGGGVAHGPRGPTSYYYMLPMKVRVQGLKVALTVKLAQDDLHIVDSLELPTADPQYLIELARYRRWGDSVLLVDLEHEDMPQNVVAATSGLKTFNLVPAVGLNVHSMLKHQTLVLTLPTVAFLEEKLLWHNSRYTPLYPFRLPYCDFP +>1xm9_A mol:protein length:457 plakophilin 1 +GLTIPKAVQYLSSQDEKYQAIGAYYIQHTCFQDESAKQQVYQLGGICKLVDLLRSPNQNVQQAAAGALRNLVFRSTTNKLETRRQNGIREAVSLLRRTGNAEIQKQLTGLLWNLSSTDELKEELIADALPVLADRVIIPFSGWCDGNSNMSREVVDPEVFFNATGCLRNLSSADAGRQTMRNYSGLIDSLMAYVQNCVAASRCDDKSVENCMCVLHNLSYRLDAEVPTRYRQLEYNARNAYTEKSSTGCFSNKSDKMMNNNYDCPLPEEETNPKGSGWLYHSDAIRTYLNLMGKSKKDATLEACAGALQNLTASKGLMSSGMSQLIGLKEKGLPQIARLLQSGNSDVVRSGASLLSNMSRHPLLHRVMGNQVFPEVTRLLTSHTGNTSNSEDILSSACYTVRNLMASQPQLAKQYFSSSMLNNIINLCRSSASPKAAEAARLLLSDMWSSKELQGVL +>6h06_D mol:protein length:219 HUMAN FAB ANTIBODY FRAGMENT OF HCBTAU-22.1 +DVVMTQSPLSLPVTPGEPASISCRSSQSLLHRSGHKYLHWYLQRPGQSPQVLIYLGSNRASGVPDRFSGSGSGTDFTLKISRVEAEDVGLYYCMQTLQTPWTFGQGTKVEIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>4xr3_A mol:protein length:316 DNA replication terminus site-binding protein +MHHHHHHMARYDLVDRLNTTFRQMEQELAIFAAHLEQHKLLVARVFSLPEVKKEDEHNPLNRIEVKQHLGNDAQSLALRHFRHLFIQQQSENRSSKAAVRLPGVLCYQVDNLSQAALVSHIQHINKLKTTFEHIVTVESELPTAARFEWVHRHLPGLITLNAYRTLTVLHDPATLRFGWANKHIIKNLHRDEVLAQLEKSLKSPRSVAPWTREEWQRKLEREYQDIAALPQNAKLKIKRPVKVQPIARVWYKGDQKQVQHACPTPLIALINRDNGAGVPDVGELLNYDADNVQHRYKPQAQPLRLIIPRLHLYVAD +>4wqr_5I mol:protein length:61 30S ribosomal protein S14 type Z +MARKALIEKAKRTPKFKVRAYTRCVRCGRARSVYRFFGLCRICLRELAHKGQLPGVRKASW +>5dkn_A mol:protein length:92 Protein S100-B +MSELEKAVVALIDVFHQYSGREGDKHKLKKSELKELINNELSHFLEEIKEQEVVDKVMETLDSDGDGECDFQEFMAFVAMITTACHEFFEHE +>5z0z_B mol:protein length:465 Pilus assembly protein +MGRDPNSTTTVDFTLHKIEQTSDEQIQNTGHDLGLTGRKPVQGAQFKIFNVTDAFYQLLENHDKTTAASMISQNLGQYVNLQDPNAATVTTDADGLAAFKGLAAKTNGRHSVYAFHEAVTPQPYQKAADMIVSLPVRQDDGSDLTNIHLYPKDSLVTKNLTEINEQAVATKDLHDVAVGDVLTYQVQFQIPHDIGALADHSQDTFKYNQFKVLAYMTKEGLTFKALTAITVDGQDILKALTGKMAFMSSNDAAWQQTHNYPFGFELDFLGGTDPDAVRNLLTQYAGKRVTVAYTGIVNEKMIPDQKVGNTAEVSFDPDSKITVNGPEIQTGGIRFFKHEAGSSKSLANATFILQRMNGNVREYAVLEGVNGMAGTYQPTKITWTTNQDAATRLKTSGAETANLTIQGLLPGRYTLVETAAPEGYEILDPTTDFEVIAGTWGTKTIRIANTPVNQLLPLEHHHHHH +>6bjc_D mol:protein length:445 Tubulin beta chain +MREIVHIQAGQCGNQIGAKFWEVISDEHGIDPTGSYHGDSDLQLERINVYYNEAAGNKYVPRAILVDLEPGTMDSVRSGPFGQIFRPDNFVFGQSGAGNNWAKGHYTEGAELVDSVLDVVRKESESCDCLQGFQLTHSLGGGTGSGMGTLLISKIREEYPDRIMNTFSVVPSPKVSDTVVEPYNATLSVHQLVENTDETYCIDNEALYDICFRTLKLTTPTYGDLNHLVSATMSGVTTCLRFPGQLNADLRKLAVNMVPFPRLHFFMPGFAPLTSRGSQQYRALTVPELTQQMFDAKNMMAACDPRHGRYLTVAAVFRGRMSMKEVDEQMLNVQNKNSSYFVEWIPNNVKTAVCDIPPRGLKMSATFIGNSTAIQELFKRISEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDATADEQGEFEEEGEEDEA +>2v6a_M mol:protein length:140 RIBULOSE BISPHOSPHATE CARBOXYLASE SMALL CHAIN 1 +MMVWTPVNNKMFETFSYLPPLTDEQIAAQVDYIVANGWIPCLEFAEADKAYVSNESAIRFGSVSCLYYDNRYWTMWKLPMFGCRDPMQVLREIVACTKAFPDAYVRLVAFDNQKQVQIMGFLVQRPKTARDFQPANKRSV +>3x37_A mol:protein length:123 ZYRO0C14696p +MSSWRLVASVRTLPSSLRLELDGAQVNSYEEFVPNIISESRANKIGLRHLIHNPDKYCVLERYGNGFWIRYDVLQMDLQEVEDEFTGNEHLINWAAIKEWNLMGFKDLLPLWKEDLEHHHHHH +>6yfc_EW mol:protein length:124 coat protein +MRLTDVDLTVGEETREYAVSEQQGTLFRFVDKSGTVANNTGVFSLEQRFGAANSNRKVTMLLTDPVVVKDASGADMTIKANASVTFSLPKTYPNEHITKLRQTLIAWLGQQCVSDPVDSGLNNY +>1vvj_QK mol:protein length:129 30S ribosomal protein S11 +MAKKPSKKKVKRQVASGRAYIHASYNNTIVTITDPDGNPITWSSGGVIGYKGSRKGTPYAAQLAALDAAKKAMAYGMQSVDVIVRGTGAGREQAIRALQASGLQVKSIVDDTPVPHNGCRPKKKFRKAS +>1w4r_A mol:protein length:195 THYMIDINE KINASE +MRGSHHHHHHLVPRGSKTRGQIQVILGPMFSGKSTELMRRVRRFQIAQYKCLVIKYAKDTRYSSSFCTHDRNTMEALPACLLRDVAQEALGVAVIGIDEGQFFPDIVEFCEAMANAGKTVIVAALDGTFQRKPFGAILNLVPLAESVVKLTAVCMECFREAAYTKRLGTEKEVEVIGGADKYHSVCRLCYFKKAS +>5lmt_D mol:protein length:209 30S ribosomal protein S4 +MGRYIGPVCRLCRREGVKLYLKGERCYSPKCAMERRPYPPGQHGQKRARRPSDYAVRLREKQKLRRIYGISERQFRNLFEEASKKKGVTGSVFLGLLESRLDNVVYRLGFAVSRRQARQLVRHGHITVNGRRVDLPSYRVRPGDEIAVAEKSRNLELIRQNLEAMKGRKVGPWLSLDVEGMKGKFLRLPDREDLALPVNEQLVIEFYSR +>7e6c_A mol:protein length:419 Cysteine desulfurase SufS +MGHMNITDIREQFPILHQQVNGHDLVYLDSAATSQKPRAVIETLDKYYNQYNSNVHRGVHTLGTRATDGYEGAREKVRKFINAKSMAEIIFTKGTTTSLNMVALSYARANLKPGDEVVITYMEHHANIIPWQQAVKATGATLKYIPLQEDGTISLEDVRETVTSNTKIVAVSHVSNVLGTVNPIKEMAKIAHDNGAVIVVDGAQSTPHMKIDVQDLDCDFFALSSHKMCGPTGVGVLYGKKALLENMEPAEFGGEMIDFVGLYESTWKELPWKFEAGTPIIAGAIGLGAAIDFLEEIGLDEISRHEHKLAAYALERFRQLDGVTVYGPEERAGLVTFNLDDVHPHDVATVLDAEGIAVRAGHHAAQPLMKWLDVTATARASFYLYNTEEEIDKLVEALQKTKEYFTNVFVDLEHHHHHH +>3pkj_F mol:protein length:355 NAD-dependent deacetylase sirtuin-6 +GSVNYAAGLSPYADKGKCGLPEIFDPPEELERKVWELARLVWQSSSVVFHTGAGISTASGIPDFRGPHGVWTMEERGLAPKFDTTFESARPTQTHMALVQLERVGLLRFLVSQNVDGLHVRSGFPRDKLAELHGNMFVEECAKCKTQYVRDTVVGTMGLKATGRLCTVAKARGLRACRGELRDTILDWEDSLPDRDLALADEASRNADLSITLGTSLQIRPSGNLPLATKRRGGRLVIVNLQPTKHDRHADLRIHGYVDEVMTRLMEHLGLEIPAWDGPRVLERALPPLPRPPTPKLEPKEESPTRINGSIPAGPKQEPCAQHNGSEPASPKRERPTSPAPHRPPKRVKAKAVPS +>7mkd_K mol:protein length:91 DNA-directed RNA polymerase subunit omega +MARVTVQDAVEKIGNRFDLVLVAARRARQMQVGGKDPLVPEENDKTTVIALREIEEGLINNQILDVRERQEQQEQEAAELQAVTAIAEGRR +>1kz8_A mol:protein length:337 FRUCTOSE-1,6-BISPHOSPHATASE +TDQAAFDTNIVTLTRFVMEQGRKARGTGEMTQLLNSLCTAVKAISTAVRKAGIAHLYGIAGSTNVTGDQVKKLDVLSNDLVINVLKSSFATCVLVTEEDKNAIIVEPEKRGKYVVCFDPLDGSSNIDCLVSIGTIFGIYRKNSTDEPSEKDALQPGRNLVAAGYALYGSATMLVLAMVNGVNCFMLDPAIGEFILVDRNVKIKKKGSIYSINEGYAKEFDPAITEYIQRKKFPPDNSAPYGARYVGSMVADVHRTLVYGGIFMYPANKKSPKGKLRLLYECNPMAYVMEKAGGLATTGKEAVLDIVPTDIHQRAPIILGSPEDVTELLEIYQKHAAK +>5puo_B mol:protein length:156 Bromodomain-containing protein 1 +MHHHHHHSSGVDLGTENLYFQSMEQVAMELRLTELTRLLRSVLDQLQDKDPARIFAQPVSLKEVPDYLDHIKHPMDFATMRKRLEAQGYKNLHEFEEDFDLIIDNCMKYNARDTVFYRAAVRLRDQGGVVLRQARREVDSIGLEEASGMHLPERPA +>6olf_F mol:protein length:294 60S ribosomal protein L5 +VKVVKNKAYFKRYQVKFRRRREGKTDYYARKRLVIQDKNKYNTPKYRMIVRVTNRDIICQIAYARIEGDMIVCAAYAHELPKYGVKVGLTNYAAAYCTGLLLARRLLNRFGMDKIYEGQVEVTGDEYNVESIDGQPGAFTCYLDAGLARTTTGNKVFGALKGAVDGGLSIPHSTKRFPGYDSESKEFNAEVHRKHIMGQNVADYMRYLMEEDEDAYKKQFSQYIKNSVTPDMMEEMYKKAHAAIRENPVYEKKPKKEVKKKRWNRPKMSLAQKKDRVAQKKASFLRAQERAAES +>6x6k_AT mol:protein length:278 Cag pathogenicity island protein +MKLRASVLIGATILCLILSACSNYAKKVVKQKNHVYTPVYNELIEKYSEIPLNDKLKDTPFMVQVKLPNYKDYLLDNKQVVLTFKLVHHSKKITLIGDANKILQYKNYFQANGARSDIDFYLQPTLNQKGVVMIASNYNDNPNSKEKPQTFDVLQGSQPMLGANTKNLHGYDVSGANNKQVINEVAREKAQLEKINQYYKTLLQDKEQEYTTRKNNQREILETLSNRAGYQMRQNVISSEIFKNGNLNMQAKEEEVREKLQEERENEYLRNQIRSLLS +>3j78_82 mol:protein length:130 60S ribosomal protein L32 +MASLPHPKIVKKHTKKFKRHHSDRYHRVAENWRKQKGIDSVVRRRFRGNISQPKIGYGSNKKTKFLSPSGHKTFLVANVKDLETLTMHTKTYAAEIAHNISAKNRVVILARAKALGIKVTNPKGRLALEA +>3sbp_D mol:protein length:638 Nitrous-oxide reductase +MSDKDSKNTPQVPEKLGLSRRGFLGASAVTGAAVAATALGGAVMTRESWAQAVKESKQKIHVGPGELDDYYGFWSGGHQGEVRVLGVPSMRELMRIPVFNVDSATGWGLTNESRHIMGDSAKFLNGDCHHPHISMTDGKYDGKYLFINDKANSRVARIRLDIMKCDKMITVPNVQAIHGLRLQKVPHTKYVFANAEFIIPHPNDGKVFDLQDENSYTMYNAIDAETMEMAFQVIVDGNLDNTDADYTGRFAAATCYNSEKAFDLGGMMRNERDWVVVFDIHAVEAAVKAGDFITLGDSKTPVLDGRKKDGKDSKFTRYVPVPKNPHGCNTSSDGKYFIAAGKLSPTCSMIAIDKLPDLFAGKLADPRDVIVGEPELGLGPLHTTFDGRGNAYTTLFIDSQVVKWNMEEAVRAYKGEKVNYIKQKLDVHYQPGHLHASLCETNEADGKWLVALSKFSKDRFLPVGPLHPENDQLIDISGDEMKLVHDGPTFAEPHDCIMARRDQIKTKKIWDRNDPFFAPTVEMAKKDGINLDTDNKVIRDGNKVRVYMTSMAPAFGVQEFTVKQGDEVTVTITNIDQIEDVSHGFVVVNHGVSMEISPQQTSSITFVADKPGLHWYYCSWFCHALHMEMVGRMMVEPA +>6yft_HF mol:protein length:113 coat protein +STFSSLVIGSNTFIPTAPGYYSLSTRGFSDPRNQIKISGGKFNAKTGRVTAAVSRLWETDVTVAGLPVRSAAEVAIIMTLGRGITATNADVLLSDLNTLLDPARLDQILQGGF +>5w40_B mol:protein length:352 PopP2 protein +SEFELGAPAGRQAGQQATVDRLRTQVTGFLSGALGKLQALSAQNMDPELAQFRVLDVDRAIMPLLIVAENARNPGLNLVPLHMDMAEDEEVRTQPPMAGSRHIAEFVASARPGRYRAVIDDGSHTRAADIRKDASGTSVIVVDPLRKEKDESAYVDYADNVNMEFGEHAKCAFIPVDIQKSSFDCRILSLSLALKMHDKDDAFAAFHETLRNGGDPSHHVSRAQQTEELGATLVLDGAPLVDARMMKHGQAASSVSRYLGNHPEQSTVPVNKRNETLGERTTRHLVKRKVRNRADSEGRVTSGETKEITFSNSVEQKRIALLNRAASYVNSAPPPVVMRMAKLLQDSLLDTN +>6lqt_B1 mol:protein length:923 Periodic tryptophan protein 2 +MKSDFKFSNLLGTVYRQGNITFSDDGKQLLSPVGNRVSVFDLINNKSFTFEYEHRKNIAAIDLNKQGTLLISIDEDGRAILVNFKARNVLHHFNFKEKCSAVKFSPDGRLFALASGRFLQIWKTPDVNKDRQFAPFVRHRVHAGHFQDITSLTWSQDSRFILTTSKDLSAKIWSVDSEEKNLAATTFNGHRDYVMGAFFSHDQEKIYTVSKDGAVFVWEFTKRPSDDDDNESEDDDKQEEVDISKYSWRITKKHFFYANQAKVKCVTFHPATRLLAVGFTSGEFRLYDLPDFTLIQQLSMGQNPVNTVSVNQTGEWLAFGSSKLGQLLVYEWQSESYILKQQGHFDSTNSLAYSPDGSRVVTASEDGKIKVWDITSGFCLATFEEHTSSVTAVQFAKRGQVMFSSSLDGTVRAWDLIRYRNFRTFTGTERIQFNCLAVDPSGEVVCAGSLDNFDIHVWSVQTGQLLDALSGHEGPVSCLSFSQENSVLASASWDKTIRIWSIFGRSQQVEPIEVYSDVLALSMRPDGKEVAVSTLKGQISIFNIEDAKQVGNIDCRKDIISGRFNQDRFTAKNSERSKFFTTIHYSFDGMAIVAGGNNNSICLYDVPNEVLLKRFIVSRNMALNGTLEFLNSKKMTEAGSLDLIDDAGENSDLEDRIDNSLPGSQRGGDLSTRKMRPEVRVTSVQFSPTANAFAAASTEGLLIYSTNDTILFDPFDLDVDVTPHSTVEALREKQFLNALVMAFRLNEEYLINKVYEAIPIKEIPLVASNIPAIYLPRILKFIGDFAIESQHIEFNLIWIKALLSASGGYINEHKYLFSTAMRSIQRFIVRVAKEVVNTTTDNKYTYRFLVSTDGSMEDGAADDDEVLLKDDADEDNEENEENDVVMESDDEEGWIGFNGKDNKLPLSNENDSSDEEENEKELP +>3fi0_N mol:protein length:326 Tryptophanyl-tRNA synthetase +MKTIFSGIQPSGVITIGNYIGALRQFVELQHEYNCYFCIVDQHAITVWQDPHELRQNIRRLAALYLAVGIDPTQATLFIQSEVPAHAQAAWMLQCIVYIGELERMTQFKEKSAGKEAVSAGLLTYPPLMAADILLYNTDIVPVGEDQKQHIELTRDLAERFNKRYGELFTIPEARIPKVGARIMSLVDPTKKMSKSDPNPKAYITLLDDAKTIEKKIKSAVTDSEGTIRYDKEAKPGISNLLNIYSTLSGQSIEELERQYEGKGYGVFKADLAQVVIETLRPIQERYHHWMESEELDRVLDEGAEKANRVASEMVRKMEQAMGLGR +>6y67_MMM mol:protein length:293 Capsid protein VP1 +MGSSHHHHHHSSGENLYFQGSHMGGIEVLDVKTGPDSTTTIEAYLNPRVGQNWGFSTEITVASNGYNDAPHLTEIPCYSSARISLPLLNEDITSPTLLMWEAVSVKTEVVGISSMLNMHSYGLRAFGGYGGGYTIEGSHIHFFSVGGEPLDLQGLMQNHSTQYPSPLVGPKKPDGTTDDSAQVLNPIYKAKLDKDATYPIECWCPDPSRNENSRYFGSYTGGVETPPVLSFTNTSTTILLDENGVGPLCKGDGLYLSSADVAGTFVQQTSQKQYWRGLPRYFNITLRKRAVKN +>1dzr_A mol:protein length:183 DTDP-4-DEHYDRORHAMNOSE 3,5-EPIMERASE +MMIVIKTAIPDVLILEPKVFGDERGFFFESYNQQTFEELIGRKVTFVQDNHSKSKKNVLRGLHFQRGENAQGKLVRCAVGEVFDVAVDIRKESPTFGQWVGVNLSAENKRQLWIPEGFAHGFVTLSEYAEFLYKATNYYSPSSEGSILWNDEAIGIEWPFSQLPELSAKDAAAPLLDQALLTE +>6gmt_A mol:protein length:108 Magnetosome protein MamM +GSHMEAVQNRIVEAAERVPGVRGVIHLRARYVGQDIWADMIIGVDPENTVEQAHEICEAVQAAVCGKIRRIESLHVSAEAREIGDTTKPSFSDQPLSFDEVMLSKVDN +>5a1w_F mol:protein length:177 COATOMER SUBUNIT ZETA-1 +MEALILEPSLYTVKAILILDNDGDRLFAKYYDDTYPSVKEQKAFEKNIFNKTHRTDSEIALLEGLTVVYKSSIDLYFYVIGSSYENELMLMAVLNCLFDSLSQMLRKNVEKRALLENMEGLFLAVDEIVDGGVILESDPQQVVHRVALRGEDVPLTEQTVSQVLQSAKEQIKWSLLR +>5e81_3E mol:protein length:209 30S ribosomal protein S4 +MGRYIGPVCRLCRREGVKLYLKGERCYSPKCAMERRPYPPGQHGQKRARRPSDYAVRLREKQKLRRIYGISERQFRNLFEEASKKKGVTGSVFLGLLESRLDNVVYRLGFAVSRRQARQLVRHGHITVNGRRVDLPSYRVRPGDEIAVAEKSRNLELIRQNLEAMKGRKVGPWLSLDVEGMKGKFLRLPDREDLALPVNEQLVIEFYSR +>6y5e_F mol:protein length:83 Histone H4 +KVLRDNIQGITKPAIRRLARRGGVKRISGLIYEETRGVLKVFLENVIRDAVTYTEHAKRKTVTAMDVVYALKRQGRTLYGFGG +>5pgy_A mol:protein length:286 Corticosteroid 11-beta-dehydrogenase isozyme 1 +GSHMASMTGGQQMGRGSNEEFRPEMLQGKKVIVTGASKGIGREMAYHLAKMGAHVVVTARSKETLQKVVSHCLELGAASAHYIAGTMEDMTFAEQFVAQAGKLMGGLDMLILNHITNTSLNLFHDDIHHVRKSMEVNFLSYVVLTVAALPMLKQSNGSIVVVSSLAGKVAYPMVAAYSASKFALDGFFSSIRKEYSVSRVNVSITLCVLGLIDTETAMKAVSGIVHMQAAPKEECALEIIKGGALRQEEVYYDSSRWTTLLIRNPCRKILEELYSTSYNMDRFINK +>7r4n_A mol:protein length:362 Hydroxyacid oxidase 1 +MLPRLICINDYEQHAKSVLPKSIYDYYRSGANDEETLADNIAAFSRWKLYPRMLRNVAETDLSTSVLGQRVSMPICVGATAMQRMAHVDGELATVRACQSLGTGMMLSSWATSSIEEVAEAGPEALRWLQLYIYKDREVTKKLVRQAEKMGYKAIFVTVDTPYLGNRLDDVRNRFKLPPQLRMKNFETSTLSFSPEENFGDDSGLAAYVAKAIDPSISWEDIKWLRRLTSLPIVAKGILRGDDAREAVKHGLNGILVSNHGARQLDGVPATIDVLPEIVEAVEGKVEVFLDGGVRKGTDVLKALALGAKAVFVGRPIVWGLAFQGEKGVQDVLEILKEEFRLAMALSGCQNVKVIDKTLVRK +>6dec_R mol:protein length:9 unidentified +XXXXXXXXX +>6j9f_C mol:protein length:1383 DNA-directed RNA polymerase subunit beta +MTSYSFTEKKRIRKDFGKQRSILEVPFLLAIQVDSYREFLQEDVESTKRKDLGLHAALKSVFPISSYSGNAALEYVGYKLGQPVFDERECRQRGMSYGAPLRVTVRLVIYDRESSTKAIKYVKEQEVYLGEIPLMTGNGTFIVNGTERVIVSQLHRSPGVFFDHDRGKTHSSGKLLYSARIIPYRGSWLDFEFDPKDALFTRIDRRRKLPVSILLRALGYNNEEMLAEFFEINTFHINPDEGVQLELVPERLRGETLNFDLADGDKVIVEAGKRITARHVKQLEAAGVAALAVPDDYLVGRILSHDVVDGSTGELLANANDEISEDQLTAFRKAGVDAVGTLWVNDLDRGPYLSNTLRIDPTKTQLEALVEIYRMMRPGEPPTKEAAQNLFHNLFFTFERYDLSTVGRMKFNRRVGRKDVLGESVLYDKKYFAERNDEESKRLVAEHTDTSDILEVIKVLTEIRNGRGVVDDIDHLGNRRVRSVGEMAENVFRVGLVRVERAVKERLSMAESEGLTPQELINAKPVAAAIKEFFGSSQLSQFMDQNNPLSEVTHKRRVSALGPGGLTRERAGFEVRDVHPTHYGRVCTIETPEGPNIGLINSLAVFARTNQYGFLETPYRKVLDGKVSDDVEYLSAIEENEYVIAQANALTDAKNMLTEQFVPCRFQGESLLKPPSEVHFMDVSPMQTVSVAAALVPFLEHDDANRALMGANMQRQAVPTLRSQKPLVGTGIERAVARDSGVTVNALRGGVIEQIDAARIVVKVNEAEIGGGTDAGVDIYNLIKYTRSNQNTCINQRPLVNVGDVIARGDVLADGPSTDIGELALGQNMLIAFMPWNGYNFEDSILLSERVVEEDRYTTIHIEELTCVARDTKLGPEEISADIPNVSEQALNRLDESGVVYIGAEVRAGDIMVGKVTPKGESQLTPEEKLLRAIFGEKASDVKDSSLRVPPGMDGTVIDVQVFTRDGIEKDKRARQIEENEIKRVKKDFDDQFRILEAAIYARLRSQIVGKVANGGANLKKGDSVTDAYLDGLKKSDWFQLRMKDEDAADAIERAQKQIQAHEKEFEARFADKRGKITQGDDLAPGVLKMVKVFLAVKRRIQPGDKMAGRHGNKGVVSNVVPVEDMPYMATGESVDIVLNPLGVPSRMNIGQILEVHLGWAAKGLGRKIQRMLEAQAAVSELRKFLDDIYNHDNAINAQRVDLSQFSDEELLNLGKNLIDGVPMATPVFDGASEAEIKRMLELADLPQSGQTQLYDGRTGEAFDRKTTVGYMHYLKLNHLVDDKMHARSTGPYSLVTQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQEMLTVKSDDVQGRNQMYKNIVDGEHEMVAGMPESFNVLVKEIRSLAIHMELEE +>2e7s_E mol:protein length:135 Rab guanine nucleotide exchange factor SEC2 +GPLGSLEEQLNKSLKTIASQKAAIENYNQLKEDYNTLKRELSDRDDEVKRLREDIAKENELRTKAEEEADKLNKEVEDLTASLFDEANNLVADARMEKYAIEILNKRLTEQLREKDMLLDTLTLQLKNLKKVMHS +>2wfz_A mol:protein length:537 ACETYLCHOLINESTERASE +DDHSELLVNTKSGKVMGTRVPVLSSHISAFLGIPFAEPPVGNMRFRRPEPKKPWSGVWNASTYPNNCQQYVDEQFPGFSGSEMWNPNREMSEDCLYLNIWVPSPRPKSTTVMVWIYGGGFYSGSSTLDVYNGKYLAYTEEVVLVSLSYRVGAFGFLALHGSQEAPGNVGLLDQRMALQWVHDNIQFFGGDPKTVTIFGESAGGASVGMHILSPGSRDLFRRAILQSGSPNCPWASVSVAEGRRRAVELGRNLNCNLNSDEELIHCLREKKPQELIDVEWNVLPFDSIFRFSFVPVIDGEFFPTSLESMLNSGNFKKTQILLGVNKDEGSFFLLYGAPGFSKDSESKISREDFMSGVKLSVPHANDLGLDAVTLQYTDWMDDNNGIKNRDGLDDIVGDHNVICPLMHFVNKYTKFGNGTYLYFFNHRASNLVWPEWMGVIHGYEIEFVFGLPLVKELNYTAEEEALSRRIMHYWATFAKTGNPNEPHSQESKWPLFTTKEQKFIDLNTEPMKVHQRLRVQMCVFWNQFLPKLLNATAC +>5cnv_D mol:protein length:761 Ribonucleoside-diphosphate reductase 1 subunit alpha +MNQNLLVTKRDGSTERINLDKIHRVLDWAAEGLHNVSISQVELRSHIQFYDGIKTSDIHETIIKAAADLISRDAPDYQYLAARLAIFHLRKKAYGQFEPPALYDHVVKMVEMGKYDNHLLEDYTEEEFKQMDTFIDHDRDMTFSYAAVKQLEGKYLVQNRVTGEIYESAQFLYILVAACLFSNYPRETRLQYVKRFYDAVSTFKISLPTPIMSGVRTPTRQFSSCVLIECGDSLDSINATSSAIVKYVSQRAGIGINAGRIRALGSPIRGGEAFHTGCIPFYKHFQTAVKSCSQGGVRGGAATLFYPMWHLEVESLLVLKNNRGVEGNRVRHMDYGVQINKLMYTRLLKGEDITLFSPSDVPGLYDAFFADQEEFERLYTKYEKDDSIRKQRVKAVELFSLMMQERASTGRIYIQNVDHCNTHSPFDPAIAPVRQSNLCLEIALPTKPLNDVNDENGEIALCTLSAFNLGAINNLDELEELAILAVRALDALLDYQDYPIPAAKRGAMGRRTLGIGVINFAYYLAKHGKRYSDGSANNLTHKTFEAIQYYLLKASNELAKEQGACPWFNETTYAKGILPIDTYKKDLDTIANEPLHYDWEALRESIKTHGLRNSTLSALMPSETSSQISNATNGIEPPRGYVSIKASKDGILRQVVPDYEHLHDAYELLWEMPGNDGYLQLVGIMQKFIDQSISANTNYDPSRFPSGKVPMQQLLKDLLTAYKFGVKTLYYQNTRDGAEDAQDDLVPSIQDDGCESGACKI +>6fzd_A mol:protein length:392 Lipase +SRANDAPIVLLHGFTGWGREEMFGFKYWGGVRGDIEQWLNDNGYRTYTLAVGPLSSNWDRACEAYAQLVGGTVDYGAAHAAKHGHARFGRTYPGLLPELKRGGRIHIIAHSQGGQTARMLVSLLENGSQEEREYAKAHNVSLSPLFEGGHHFVLSVTTIATPHDGTTLVNMVDFTDRFFDFQKFVLKAAAVASNVPYTSQVYDFKLDQWGLRRQPGESFDQYFERLKRSPVWTSTDTARYDLSVPGAEKLNQWVKASPNTYYLSFATERTYRGALTGNYYPELGMNAFSAVVCAPFLGSYRNATLGIDDRWLENDGIVNAFSMNGPKRGSTDRIVPYDGTIKKGVWNDMGTYNVDHFEVIGVDPNPLFDIRAFYLRLAEQLASLQPHHHHHH +>6stf_C mol:protein length:178 Ras-related protein Rab-8A +MDYLFKLLLIGDSGVGKTCVLFRFSEDAFNSTFISTIGIDFKIRTIELDGKRIKLQIWDTAGQERFRTITTAYYRGAMGIMLVYDITNEKSFDNIRNWIRNIEEHASADVEKMILGNKCDVNDKRQVSKERGEKLALDYGIKFMETSAKANINVENAFFTLARDIKAKMDKKHHHHHH +>7pny_K mol:protein length:128 28S ribosomal protein S14, mitochondrial +MAAFMLGSLLRTFKQMVPSSASGQVRSHYVDWRMWRDVKRRKMAYEYADERLRINSLRKNTILPKILQDVADEEIAALPRDSCPVRIRNRCVMTSRPRGVKRRWRLSRIVFRHLADHGQLSGIQRATW +>8d5p_C mol:protein length:209 TCR-alpha +MDSVTQTEGQVALSEEDFLTIHCNYSASGYPALFWYVQYPGEGPQFLFRASRDKEKGSSRGFEATYNKETTSFHLQKASVQESDSAVYYCALGDPTGANTGKLTFGHGTILRVHPNIQNPDPAVYQLRDSKSSDKSVCLFTDFDSQTNVSQSKDSDVYITDKCVLDMRSMDFKSNSAVAWSNKSDFACANAFNNSIIPEDTFFPSPESS +>6o22_D mol:protein length:279 Histone chaperone ASF1 +SSIVSLLGIKVLNNPAKFTDPYEFEITFECLESLKHDLEWKLTYVGSSRSLDHDQELDSILVGPVPVGVNKFVFSADPPSAELIPASELVSVTVILLSCSYDGREFVRVGYYVNNEYDEEELRENPPAKVQVDHIVRNILAEKPRVTRFNIVWDNENEGDLYPPEQPGVDDEEEEDDEEEDDDEDDEDDEDDDQEDGEGEAEEAAEEEEEEEEKTEDNETNLEEEEEDIENSDGDEEEGEEEVGSVDKNEDGNDKKRRKIEGGSTDIESTPKDAARSTN +>6gqb_AA mol:protein length:105 40S ribosomal protein S10-A +MLMPKEDRNKIHQYLFQEGVVVAKKDFNQAKHEEIDTKNLYVIKALQSLTSKGYVKTQFSWQYYYYTLTEEGVEYLREYLNLPEHIVPGTYIQERNPTQRPQRRY +>1z9x_C mol:protein length:321 Death-associated protein kinase 2 +GMEPFKQQKVEDFYDIGEELGSGQFAIVKKCREKSTGLEYAAKFIKKRQSRASRRGVSREEIEREVSILRQVLHHNVITLHDVYENRTDVVLILELVSGGELFDFLAQKESLSEEEATSFIKQILDGVNYLHTKKIAHFDLKPENIMLLDKNIPIPHIKLIDFGLAHEIEDGVEFKNIFGTPEFVAPEIVNYEPLGLEADMWSIGVITYILLSGASPFLGDTKQETLANITSVSYDFDEEFFSHTSELAKDFIRKLLVKETRKRLTIQEALRHPWITPVDNQQAMVRRESVVNLENFRKQYVRRRSKLAFSIVSLCNHLTR +>6qbx_S3 mol:protein length:228 NADH:ubiquinone oxidoreductase core subunit S3 +ESASADTRPTVRPRNDVAHKQLSAFGEYVAEILPKYVQQVQVSCFSELEICIHPDGVIPVLTFLRDHSNAQFKSLADLTAVDIPTRQNRFEIVYNLLSLRFNSRIRVKTYTDELTPVESSVSVYKAANWYEREIWDMFGVFFANHPDLRRILTDYGFEGHPFRKDFPLSGYVELRYDDEVKRVVAEPVELAQEFRKFDLNSPWEAFPAYRQPPESLKLEAGDKKPEAK +>3h0r_Q mol:protein length:478 Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B +MNEKYEAVIGLEIHVQMDTKTKMFCGCKVEFGAEPNTNVCPVCLGMPGALPIVNKRAVEYAIRASLALNCEVHEESVFARKHYFYPDLPKGYQISQYEKPLATNGWVELNLPNGEKKKVRIRRLHIEEDAGKNIHEGDKTLVDLNRAGTPLMEIVTEPDIRTPEEARLFLEKLRNIMRYAGVSKADMEKGQLRCDINVSIRPKGSKEFGTRVEIKNVNSFRFVQKALEYEIERQINVVEEGGEVVQETRTFDPQTGKTYPMRTKEEAEDYRYFPDPDLVPLKVKKEWIEEIKKNMPELPDQRFERLIKEYGLSEYEAGILVNHKEVGDFFEEAVRHFKEPKGIVNWLINDLLGLLRDKGISIEESPVKPEHLAELVKLIKEKVISTKIGKEVIKEMVETGKTPSQIVEEKGLKQITDENQIKELVKKIFEKHPKEVERLKQGEEKLIGFFVGQVMRETRGKANPQVVNKVIRELVKEV +>4v99_Al mol:protein length:242 Capsid protein +MNRNGATPTRGRGKRAIPNPPRRRARGKSVERGSTPLQYVTTLGPSRPRMGQGQGWQKLSHEEIILQVNSSTAADTIQTIPIIPRLSVPAGDKPIYSGSAPHLRTIGSAFAIHRWRALSFEWIPSCPTTTPGNLVLRFYPNYSTETPKTLTDLMDSESLVLVPSLSGKTYRPKIETRGNPPELRNIDATAFSALSDEDKGDYSVGRLVVGSSKQAVVIQLGLLRMRYSAEMRGATSISGVSA +>6zsa_XS mol:protein length:205 39S ribosomal protein L21, mitochondrial +MAASSLTVTLGRLASACSHSILRPSGPGAASLWSASRRFNSQSTSYLPGYVPKTSLSSPPWPEVVLPDPVEETRHHAEVVKKVNEMIVTGQYGRLFAVVHFASRQWKVTSEDLILIGNELDLACGERIRLEKVLLVGADNFTLLGKPLLGKDLVRVEATVIEKTESWPRIIMRFRKRKNFKKKRIVTTPQTVLRINSIEIAPCLL +>7pe9_I mol:protein length:409 DEP domain-containing mTOR-interacting protein +MEEGGSTGSAGSDSSTSGSGGAQQRELERMAEVLVTGEQLRLRLHEEKVIKDRRHHLKTYPNCFVAKELIDWLIEHKEASDRETAIKLMQKLADRGIIHHVCDEHKEFKDVKLFYRFRKDDGTFPLDNEVKAFMRGQRLYEKLMSPENTLLQPREEEGVKYERTFMASEFLDWLVQEGEATTRKEAEQLCHRLMEHGIIQHVSSKHPFVDSNLLYQFRMNFRRRRRLMELLNEKSPSSQETHDSPFCLRKQSHDNRKSTSFMSVSPSKEIKIVSAVRRSSMSSCGSSGYFSSSPTLSSSPPVLCNPKSVLKRPVTSEELLTPGAPYARKTFTIVGDAVGWGFVVRGSKPCHIQAVDPSGPAAAAGMKVCQFVVSVNGLNVLHVDYRTVNNLILTGPRTIVMEVMEELEC +>5v3t_A mol:protein length:132 Globin +MSKQPMTPFEAIGGEQCIEILVDTFYSYVSKHPDLSPIFPDDLTETARKQKQFLTQYLGGPNLYTEEHGHPMLRARHLPFEITPKRAEAWLSCMEQAMDDTGVHGHIREFVFERLALTAQHMVNTPNETGEI +>4wra_E5 mol:protein length:85 50S ribosomal protein L27 +MAHKKGLGSTRNGRDSQAKRLGVKRYEGQVVRAGNILVRQRGTRFKPGKNVGMGRDFTLFALVDGVVEFQDRGRLGRYVHVRPLA +>4waj_A mol:protein length:229 Carbonic anhydrase 2 +MDKIKQLFANNYSWAQRMKEENSTYFKELADHQTPHYLWIGCSDSRVSPEKLTNLEPGELFVHRNVANQVIHTDFNCLSVVQYAVDVLKIEHIIICGHTNCGGIHAAMADKDLGLINNWLLHIRDIWFKHGHLLGKLSPEKRADMLTKINVAEQVYNLGRTSIVKSAWERGQKLSLHGWVYDVNDGFLVDQGVMATSRETLEISYRNAIARLSILDEENILKKDHLENT +>2c97_A mol:protein length:160 6,7-DIMETHYL-8-RIBITYLLUMAZINE SYNTHASE +MKGGAGVPDLPSLDASGVRLAIVASSWHGKICDALLDGARKVAAGCGLDDPTVVRVLGAIEIPVVAQELARNHDAVVALGVVIRGQTPHFDYVCDAVTQGLTRVSLDSSTPIANGVLTTNTEEQALDRAGLPTSAEDKGAQATVAALATALTLRELRAHS +>5j4b_2e mol:protein length:162 30S ribosomal protein S5 +MPETDFEEKMILIRRTARMQAGGRRFRFGALVVVGDRQGRVGLGFGKAPEVPLAVQKAGYYARRNMVEVPLQNGTIPHEIEVEFGASKIVLKPAAPGTGVIAGAVPRAILELAGVTDILTKELGSRNPINIAYATMEALRQLRTKADVERLRKGEAHAQAQG +>7n6p_A mol:protein length:227 1C3 Fab heavy chain +QVQLVQSGAEVKKPGSSVKVACKVSGGTFSSYTISWVRQAPGQGLEWMGGIIPSFGVGHYSQKFRDRVTLTADKSTTTAFLELSSVRSEDTALYYCAILGTFNWKSGGNYFGPWGQGTLVTVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSC +>2vt5_B mol:protein length:338 FRUCTOSE-1,6-BISPHOSPHATASE 1 +MADQAPFDTDVNTLTRFVMEEGRKARGTGELTQLLNSLCTAVKAISSAVRKAGIAHLYGIAGSTNVTGDQVKKLDVLSNDLVMNMLKSSFATCVLVSEEDKHAIIVEPEKRGKYVVCFDPLDGSSNIDCLVSVGTIFGIYRKKSTDEPSEKDALQPGRNLVAAGYALYGSATMLVLAMDCGVNCFMLDPAIGEFILVDKDVKIKKKGKIYSLNEGYAKDFDPAVTEYIQRKKFPPDNSAPYGARYVGSMVADVHRTLVYGGIFLYPANKKSPNGKLRLLYECNPMAYVMEKAGGMATTGKEAVLDVIPTDIHQRAPVILGSPDDVLEFLKVYEKHSAQ +>6dhf_c mol:protein length:451 Photosystem II CP43 reaction center protein +ATNRDQESSGFAWWAGNARLINLSGKLLGAHVAHAGLIVFWAGAMTLFELAHFIPEKPMYEQGLILIPHIATLGWGVGPGGEVVDTFPFFVVGVVHLISSAVLGFGGVYHAIRGPETLEEYSSFFGYDWKDKNKMTTILGFHLIVLGIGALLLVAKAMFFGGLYDTWAPGGGDVRVITNPTLDPRVIFGYLLKSPFGGEGWIVSVNNLEDVVGGHIWIGLICIAGGIWHILTTPFGWARRAFIWSGEAYLSYSLGALSMMGFIATCFVWFNNTVYPSEFYGPTGPEASQAQAMTFLIRDQKLGANVGSAQGPTGLGKYLMRSPTGEIIFGGETMRFWDFRGPWLEPLRGPNGLDLNKIKNDIQPWQERRAAEYMTHAPLGSLNSVGGVATEINSVNFVSPRSWLATSHFVLAFFFLVGHLWHAGRARAAAAGFEKGIDRESEPVLSMPSLD +>5hg0_A mol:protein length:264 Pantothenate synthetase +SNAMIIADNIKQFHSIRNSLIKQQKIGFVPTMGALHNGHISLIKKAKSENDVVIVSIFVNPTQFNNPNDYQTYPNQLQQDIQILASLDVDVLFNPSEKDIYPDGNLLRIEPKLEIANILEGKSRPGHFSGMLTVVLKLLQITKPNNLYLGEKDYQQVMLIKQLVKDFFINTKIIVCPTQRQPSGLPLSSRNKNLTSTDIEIANKIYEILRQDDFSNLEELTNKINSTGAKLQYIQKLNNRIFLAFYIGKVRLIDNFLKETGPSC +>2h6s_A mol:protein length:340 Candidapepsin-3 +QTVPVKLINEQVSYASDITVGSNKQKLTVVIDTGSSDLWVPDSQVSCQAGQGQDPNFCKNEGTYSPSSSSSSQNLNSPFSIEYGDGTTSQGTWYKDTIGFGGISITKQQFADVTSTSVDQGILGIGYKTHEAEGNYDNVPVTLKNQGIISKNAYSLYLNSRQATSGQIIFGGVDNAKYSGTLIALPVTSDNELRIHLNTVKVAGQSINADVDVLLDSGTTITYLQQGVADQVISAFNGQETYDANGNLFYLVDCNLSGSVDFAFDKNAKISVPASEFTAPLYTEDGQVYDQCQLLFGTSDYNILGDNFLRSAYIVYDLDDNEISLAQVKYTTASNIAALT +>6atb_B mol:protein length:501 Nicotinamide phosphoribosyltransferase +MNPAAEAEFNILLATDSYKVTHYKQYPPNTSKVYSYFECREKKTENSKLRKVKYEETVFYGLQYILNKYLKGKVVTKEKIQEAKDVYKEHFQDDVFNEKGWNYILEKYDGHLPIEIKAVPEGFVIPRGNVLFTVENTDPECYWLTNWIETILVQSWYPITVATNSREQKKILAKYLLETSGNLDGLEYKLHDFGYRGVSSQETAGIGASAHLVNFKGTDTVAGLALIKKYYGTKDPVPGYSVPAAEHSTITAWGKDHEKDAFEHIVTQFSSVPVSVVSDSYDIYNACEKIWGEDLRHLIVSRSTQAPLIIRPDSGNPLDTVLKVLEILGKKFPVTENSKGYKLLPPYLRVIQGDGVDINTLQEIVEGMKQKMWSIENIAFGSGGGLLQKLTRDLLNCSFKCSYVVTNGLGINVFKDPVADPNKRSKKGRLSLHRTPAGNFVTLEEGKGDLEEYGQDLLHTVFKNGKVTKSYSFDEIRKNAQLNIELEAAHHLEHHHHHHHH +>1oqj_B mol:protein length:97 Glucocorticoid Modulatory Element Binding protein-1 +GAMEDMEIAYPITCGESKAILLWKKFVCPGINVKCVKFNDQLISPKHFVHLAGKSTLKDWKRAIRLGGIMLRKMMDSGQIDFYQHDKVCSNTCRSTK +>5m7g_A mol:protein length:451 Tubulin alpha-1B chain +MRECISIHVGQAGVQIGNACWELYCLEHGIQPDGQMPSDKTIGGGDDSFNTFFSETGAGKHVPRAVFVDLEPTVIDEVRTGTYRQLFHPEQLITGKEDAANNYARGHYTIGKEIIDLVLDRIRKLADQCTGLQGFLVFHSFGGGTGSGFTSLLMERLSVDYGKKSKLEFSIYPAPQVSTAVVEPYNSILTTHTTLEHSDCAFMVDNEAIYDICRRNLDIERPTYTNLNRLISQIVSSITASLRFDGALNVDLTEFQTNLVPYPRIHFPLATYAPVISAEKAYHEQLSVAEITNACFEPANQMVKCDPRHGKYMACCLLYRGDVVPKDVNAAIATIKTKRSIQFVDWCPTGFKVGINYQPPTVVPGGDLAKVQRAVCMLSNTTAIAEAWARLDHKFDLMYAKRAFVHWYVGEGMEEGEFSEAREDMAALEKDYEEVGVDSVEGEGEEEGEEY +>6z6j_LW mol:protein length:155 60S ribosomal protein L24-A +MKVEIDSFSGAKIYPGRGTLFVRGDSKIFRFQNSKSASLFKQRKNPRRIAWTVLFRKHHKKGITEEVAKKRSRKTVKAQRPITGASLDLIKERRSLKPEVRKANREEKLKANKEKKKAEKAARKAEKAKSAGTQSSKFSKQQAKGAFQKVAATSR +>6mte_F mol:protein length:225 uL30 +NFAELKIKRLRKKFAQKMLRKARRKLIYEKAKHYHKEYRQMYRTEIRMARMARKAGNFYVPAEPKLAFVIRIRGINGVSPKVRKVLQLLRLRQIFNGTFVKLNKASINMLRIVEPYIAWGYPNLKSVNELIYKRGYGKINKKRIALTDNTLIARSLGKYNIICMEDLIHEIYTVGKHFKEANNFLWPFKLSSPRGGMKKKTTHFVEGGDAGNREDQINRLIRRMN +>4v93_BD mol:protein length:151 EXTRACELLULAR GLOBIN-4 +ADDEDCCSYEDRREIRHIWDDVWSSSFTDRRVAIVRAVFDDLFKHYPTSKALFERVKIDEPESGEFKSHLVRVANGLKLLINLLDDTLVLQSHLGHLADQHIQRKGVTKEYFRGIGEAFARVLPQVLSCFNVDAWNRCFHRLVARIAKDLP +>7nk4_B mol:protein length:757 RNA-directed RNA polymerase catalytic subunit +MDVNPTLLFLKVPAQNAISTTFPYTGDPPYSHGTGTGYTMDTVNRTHQYSEKGRWTTNTETGAPQLNPIDGPLPEDNEPSGYAQTDCVLEAMAFLEESHPGIFENSCLETMEVVQQTRVDKLTQGRQTYDWTLNRNQPAATALANTIEVFRSNGLTANESGRLIDFLKDVMESMDKEEMEITTHFQRKRRVRDNMTKKMVTQRTIGKKKQRLNKRSYLIRALTLNTMTKDAERGKLKRRAIATPGMQIRGFVYFVETLARSICEKLEQSGLPVGGNEKKAKLANVVRKMMTNSQDTELSFTITGDNTKWNENQNPRMFLAMITYITRNQPEWFRNVLSIAPIMFSNKMARLGKGYMFESKSMKLRTQIPAEMLASIDLKYFNDSTRKKIEKIRPLLIDGTASLSPGMMMGMFNMLSTVLGVSILNLGQKRYTKTTYWWDGLQSSDDFALIVNAPNHEGIQAGVDRFYRTCKLLGINMSKKKSYINRTGTFEFTSFFYRYGFVANFSMELPSFGVSGINESADMSIGVTVIKNNMINNDLGPATAQMALQLFIKDYRYTYRCHRGDTQIQTRRSFEIKKLWEQTRSKAGLLVSDGGPNLYNIRNLHIPEVCLKWELMDEDYQGRLCNPLNPFVSHKEIESVNNAVMMPAHGPAKNMEYDAVATTHSWIPKRNRSILNTSQRGILEDEQMYQKCCNLFEKFFPSSSYRRPVGISSMVEAMVSRARIDARIDFESGRIKKEEFAEIMKICSTIEELRRQK +>2bwp_D mol:protein length:401 5-AMINOLEVULINATE SYNTHASE +MDYNLALDKAIQKLHDEGRYRTFIDIEREKGAFPKAQWNRPDGGKQDITVWCGNDYLGMGQHPVVLAAMHEALEAVGAGSGGTRNISGTTAYHRRLEAEIAGLHQKEAALVFSSAYNANDATLSTLRVLFPGLIIYSDSLNHASMIEGIKRNAGPKRIFRHNDVAHLRELIAADDPAAPKLIAFESVYSMDGDFGPIKEICDIAEEFGALTYIDEVHAVGMYGPRGAGVAERDGLMHRIDIFNGTLAKAYGVFGGYIAASARMVDAVRSYAPGFIFSTSLPPAIAAGAQASIAFLKTAEGQKLRDAQQMHAKVLKMRLKALGMPIIDHGSHIVPVVIGDPVHTKAVSDMLLSDYGVYVQPINFPTVPRGTERLRFTPSPVHDLKQIDGLVHAMDLLWARCA +>3nno_C mol:protein length:171 Peptidoglycan recognition protein 1 +EDPPACGSIVPRREWRALASECRERLTRPVRYVVVSHTAGSHCDTPASCAQQAQNVQSYHVRNLGWCDVGYNFLIGEDGLVYEGRGWNIKGAHAGPTWNPISIGISFMGNYMNRVPPPRALRAAQNLLACGVALGALRSNYEVKGHRDVQPTLSPGDRLYEIIQTWSHYRA +>2feu_A mol:protein length:411 Cytochrome P450-cam +NLAPLPPHVPEHLVFDFDMYNPSNLSAGVQEAWAVLQESNVPDLVWTRCNGGHWIATRGQLIREAYEDYRHFSSECPFIPREAGEAYDFIPTSMDPPEQRQFRALANQVVGMPVVDKLENRIQELACSLIESLRPQGQCNFTEDYAEPFPIRIFMLLAGLPEEDIPHLKYLTDQMTRPDGSMTFAEAKEALYDYLIPIIEQRRQKPGTDAISIVANGQVNGRPITSDEAKRMCGLLLVGGLDTVVNFLSFSMEFLAKSPEHRQELIERPERIPAACEELLRRFSLVADGRILTSDYEFHGVQLKKGDQILLPQMLSGLDERENACPMHVDFSRQKVSHTTFGHGSHLCLGQHLARREIIVTLKEWLTRIPDFSIAPGAQIQHKSGIVSGVQALPLVWDPATTKAVHHHHHH +>6v3b_V mol:protein length:85 50S ribosomal protein L27 +MATKKAGGSTKNGRDSNPKMLGVKVYGGQTVTAGNIIVRQRGTEFHAGANVGMGRDHTLFATADGVVKFEVKGQFGRRYVKVETV +>3qjv_C mol:protein length:34 Cytochrome c oxidase polypeptide 2A +MEEKPKGALAVILVLTLTILVFWLGVYAVFFARG +>6az1_b mol:protein length:112 ribosomal protein S26e +MTTKRRNHGRSKPAHSRGRVKPIHCFNCGRLTPKDKAVGRFVVRRMLDAASARDVAEASPVYGANFPMPKLYMKQRFCIACAIHSRTVRARPVGNRKIRYTRKVPFRPAGKK +>4v5l_AS mol:protein length:93 30S RIBOSOMAL PROTEIN S19 +MPRSLKKGVFVDDHLLEKVLELNAKGEKRLIKTWSRRSTIVPEMVGHTIAVYNGKQHVPVYITENMVGHKLGEFAPTRTYRGHGKEAKATKKK +>3siq_F mol:protein length:136 Apoptosis 1 inhibitor +MASVVPIAFDQVDNNTNATQLFKNNINKTRMNDLNREETRLKTFTDWPLDWLDKRQLAQTGMYFTHAGDKVKCFFCGVEIGSWEQEDQPVPEHQRWSPNCPLLRRRTTNNVPINAEALDRILPPISYDLEHHHHHH +>7qp7_H mol:protein length:84 40S ribosomal protein S27 +MPLAKDLLHPSPEEEKRKHKKKRLVQSPNSYFMDVKCPGCYKITTVFSHAQTVVLCVGCSTVLCQPTGGKARLTEGCSFRRKQH +>3wkn_O mol:protein length:54 AFFinger p17 +GPGISAFSPGRGVYDPETGTWYDAAWHLGELVWATYYDPETGTWEPDWQRMLGQ +>5y2e_A mol:protein length:47 Non-structural glycoprotein 4 +MIEKQMDRVVKEMRRQLEMIDKLTTRGIEQVELLKRIHDKLMIRAVD +>3rtf_B mol:protein length:258 Glutamate receptor 2 +KTVVVTTILESPYVMMKKNHEMLEGNERYEGYCVDLAAEIAKHCGFKYKLTIVGDGKYGARDADTKIWNGMVGELVYGKADIAIAPLTITLVREEVIDFSKPFMSLGISIMIKKGTPIESAEDLSKQTEIAYGTLDSGSTKEFFRRSKIAVFDKMWTYMRSAEPSVFVRTTAEGVARVRKSKGKYAYLLESTMNEYIEQRKPCDTMKVGGNLDSKGYGIATPKGSSLGNAVNLAVLKLNEQGLLDKLKNKWWYDKGEC +>7cme_A mol:protein length:214 Cadherin-3 +MDWVVAPISVPENGKGPFPQRLNQLKSNKDRDTKIFYSITGPGADSPPEGVFAVEKETGWLLLNKPLDREEIAKYELFGHAVSENGASVEDPMNISIIVTDQNDHKPKFTQDTFRGSVLEGVLPGTSVMQVTATDEDDAIYTYNGVVAYSIHSQEPKDPHDLMFTIHRSTGTISVISSGLDREKVPEYTLTIQATDMDGDGSTTTAVAVVEILD +>6vq7_h mol:protein length:155 V-type proton ATPase 16 kDa proteolipid subunit +MADIKNNPEYSSFFGVMGASSAMVFSAMGAAYGTAKSGTGIAAMSVMRPELIMKSIIPVVMAGIIAIYGLVVAVLIANSLTDGITLYRSFLQLGAGLSVGLSGLAAGFAIGIVGDAGVRGTAQQPRLFVGMILILIFAEVLGLYGLIVALILSTK +>5af9_I mol:protein length:12 HIRUDIN VARIANT-2 +GDFEEIPEEYLQ +>3nhn_A mol:protein length:193 Tyrosine-protein kinase HCK +GIREAGSEDIIVVALYDYEAIHHEDLSFQKGDQMVVLEESGEWWKARSLATRKEGYIPSNYVARVDSLETEEWFFKGISRKDAERQLLAPGNMLGSFMIRDSETTKGSYSLSVRDYDPRQGDTVKHYKIRTLDNGGFYISPRSTFSTLQELVDHYKKGNDGLCQKLSVPCMSSKPQKPWEKDAWELEHHHHHH +>1gn2_H mol:protein length:207 SUPEROXIDE DISMUTASE +MAEYTLPDLDWDYGALEPHISGQINELHHSKHHATYVKGANDAVAKLEEARAKEDHSAILLNEKNLAFNLAGHVNHTIWWKNLSPNGGDKPTGELAAAIADAFGSFDKFRAQFHAAATTVQGCGWAALGWDTLGNKLLIFQVYDHQTNFPLGIVPLLLLDMWEHAFYLQYKNVKVDFAKAFWNVVNWADVQSRYAAATSQTKGLIFG +>2y2p_A mol:protein length:494 PENICILLIN-BINDING PROTEIN 1B +DISSISEITYSDGTVIASIESDLLRQDFLPSGTVTGISRDYLYFTTLAEAQERMYDYLAQRDNVSAKELKNEATQKFYRDLAAKEIENGGYKITTTIDQKIHSAMQSAVADYGYLLDDGTGRVEVGNVLMDNQTGAILGFVGGRNYQENQNNHAFDTKRSPASTTKPLLAYGIAIDQGLMGSETILSNYPTNFANGNPIMYANSKGTGMMTLGEALNYSWNIPAYWTYRMLRENGVDVKGYMEKMGYEIPEYGIESLPMGGGIEVTVAQHTNGYQTLANNGVYHQKHVISKIEAADGRVVYEYQDKPVQVYSKATATIMQGLLREVLSSRVTTTFKSNLTSLNPTLANADWIGKTGTTGQDENMWLMLSTPRLTLGGWIGHDDNHSLSQQAGYSNNSNYMAHLVNAIQQASPSIWGNERFALDPSVVKSEVLKSTGQKPGKVSVEGKEVEVTGSTVTSYWANKSGAPATSYRFAIGGSDADYQNAWSSIVGSLP +>7tpb_G mol:protein length:66 Ras GTPase-activating protein 1 +GPLGSRRRVRAILPYTKVPDTDEISFLKGDMFIVHNELEDGWMWVTNLRTDEQGLIVEDLVEEVGR +>3dfq_A mol:protein length:363 Fructose-bisphosphate aldolase A +PHSHPALTPEQKKELSDIAHRIVAPGKGILAASESTGSIAKRLQSIGTENTEENRRFYRQLLLTADDRVNPCIGGVILFHETLYQKADDGRPFPQVIKSKGGVVGIKVDKGVVPLAGTNGETTTQGLDGLSERCAQYKKDGADFAKWRCVLKIGEHTPSALAIMENANVLARYASICQQNGIVPIVEPEILPDGDHDLKRCQYVTEKVLAAVYKALSDHHIYLEGTLLKPNMVTPGHACTQKYSHEEIAMATVTALRRTVPPAVTGVTFLSGGQSEEEASINLNAINKCPLLKPWALTFSYGRALQASALKAWGGKKENLKAAQEEYVKRALANSLACQGKYTPSGQAGAAASESLFISNHAY +>1anc_A mol:protein length:223 ANIONIC TRYPSIN +IVGGYTCQENSVPYQVSLNSGYHFCGGSLINDQWVVSAAHCYKSRIQVRLGEHNINVLEGNEQFVNAAKIIKHPNFDRKTLNNDIMLIKLSSPVKLNARVATVALPSSCAPAGTQCLISGWGNTLSSGVNEPDLLQCLDAPLLPQADCEASYPGKITDNMVCVGFLEGGKDSCQGDSGGPVVCNGELQGIVKWGYGCALPDNPGVYTKVCNYVDWIQDTIAAN +>6d0u_I mol:protein length:214 Antibody C05, light chain +DIQLTQSPSSLSASVGDRVTLTCQASQDIRKFLNWYQQKPGKGPKLLIYDASNLQRGVPSRFSGGGSGTDFTLIISSLQPEDVGTYYCQQYDGLPFTFGGGTKVVIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNRGEC +>2nti_F mol:protein length:244 DNA polymerase sliding clamp A +MKVVYDDVRVLKDIIQALARLVDEAVLKFKQDSVELVALDRAHISLISVNLPREMFKEYDVNDEFKFGFNTQYLMKILKVAKRKEAIEIASESPDSVIINIIGSTNREFNVRNLEVSEQEIPEINLQFDISATISSDGFKSAISEVSTVTDNVVVEGHEDRILIKAEGESEVEVEFSKDTGGLQDLEFSKESKNSYSAEYLDDVLSLTKLSDYVKISFGNQKPLQLFFNMEGGGKVTYLLAPKV +>3prc_C mol:protein length:336 PHOTOSYNTHETIC REACTION CENTER +CFEPPPATTTQTGFRGLSMGEVLHPATVKAKKERDAQYPPALAAVKAEGPPVSQVYKNVKVLGNLTEAEFLRTMTAITEWVSPQEGCTYCHDENNLASEAKYPYVVARRMLEMTRAINTNWTQHVAQTGVTCYTCHRGTPLPPYVRYLEPTLPLNNRETPTHVERVETRSGYVVRLAKYTAYSALNYDPFTMFLANDKRQVRVVPQTALPLVGVSRGKERRPLSDAYATFALMMSISDSLGTNCTFCHNAQTFESWGKKSTPQRAIAWWGIRMVRDLNMNYLAPLNASLPASRLGRQGEAPQADCRTCHQGVTKPLFGASRLKDYPELGPIKAAAK +>7pi5_V mol:protein length:32 Photosystem II reaction center protein Ycf12 +SLTLILQLVALFAVVAAGPLVVVLLSVRGGNL +>6s39_P mol:protein length:12 Cellular tumor antigen p53 +KLMFKTEGPDSD +>4v1a_b mol:protein length:380 MITORIBOSOMAL PROTEIN ML38, MRPL38 +MAAPWWRAALCASRRWRGFSTSAALSRRAAPLGPMPNEDIDVSDLERLKKYRSFDRYRRRAEQEARKPHWWRTYREHFGEESGPKDRVDIGLPPPKVSRTQQLLERKQALRELRANVEEERAARLQTARIPLEAVRAEWERTCGPYHKQRLAEYCGLYRDLFHGATFVPRVPLHVAYAVGEDDLMPVYHGNEVTPTEAAQAPEVTYEADEGSLWTLLLTNLDGHLLEPDAEYVHWLVTNIPGNRVTEGQETCPYLPPFPARGSGFHRFAFLLFKQDKRIDFSGDTRPSPCYQLAQRTFHTFDFYKKHQDAMTPAGLAFFQCRWDDSVTRVFHQLLDMREPVFEFVRPPPYHPKQKRFPHRQPLRYLDRYRDSHEPTYGIY +>1z7n_E mol:protein length:208 ATP phosphoribosyltransferase +MIKIAITKGRIQKQVTKLLENADYDVEPILNLGRELQIKTKDDLQIIFGKPNDVITFLEHGIVDIGFVGKDTLDENDFDDYYELLYLKIGQCIFALASYPDFSNKNFQRHKRIASKYPRVTKKYFAQKQEDIEIIKLEGSVELGPVVGLADAIVDIVETGNTLSANGLEVIEKISDISTRMIVNKSSFKFKKDKIIEMVERLEDAQTN +>1ygz_A mol:protein length:173 Inorganic pyrophosphatase +MNLEKLEVSHDADSLCVVIEISKHSNIKYELDKESGALMVDRVLYGAQNYPANYGFVPNTLGSDGDPVDALVLSDVAFQAGSVVKARLVGVLNMEDESGMDEKLIALPIDKIDPTHSYVKDIDDLSKHTLDKIKHFFETYKDLEPNKWVKVKGFENKESAIKVLEKAIKAYQG +>5rkm_A mol:protein length:149 PH-interacting protein +MHHHHHHSSGVDLGTENLYFQSMSYDIQAWKKQCEELLNLIFQCEDSEPFRQPVDLLEYPDYRDIIDTPMDFATVRETLEAGNYESPMELCKDVRLIFSNSKAYTPSKRSRIYSMSLRLSAFFEEHISSVLSDYKSALRFHKRNTITKR +>4dvi_B mol:protein length:217 Tankyrase-1 +QGTILLDLAPEDKEYQSVEEEMQSTIREHRDGGNAGGIFNRYNVIRIQKVVNKKLRERFCHRQKEVSEENHNHHNERMLFHGSPFINAIIHKGFDERHAYIGGMFGAGIYFAENSSKSNQYVYGIGGGTGCPTHKDRSCYICHRQMLFCRVTLGKSFLQFSTMKMAHAPPGHHSVIGRPSVNGLAYAEYVIYRGEQAYPEYLITYQIMKPEHHHHHH +>6xu6_CD mol:protein length:290 60S ribosomal protein L5 +KNKQYFKRYQVKFRRRREGKTDYYARKRLTFQDKNKYNTPKYRLIVRLSNKDITVQIAYARIEGDRVVCAAYSHELPKYGIQVGLTNYAAAYCTGLLVARRVLNKLGLDSLYAGCTEVTGEEFNVEPVDDGPGAFRCFLDVGLARTTTGARVFGAMKGAVDGGLNIPHSVKRFPGYSAETKSFNADVHRAHIFGQHVADYMRSLEEEDEESFKRQFSRYIKLGIRADDLEDIYKKAHQAIRNDPTHKVTAKKSSAVTKKRWNAKKLTNEQRKTKIAAHKAAYVAKLQSET +>6m0s_E mol:protein length:159 V-type proton ATPase subunit c +MTELCPVYAPFFGAIGCASAIIFTSLGAAYGTAKSGVGICATCVLRPDLLFKNIVPVIMAGIIAIYGLVVSVLVCYSLGQKQALYTGFIQLGAGLSVGLSGLAAGFAIGIVGDAGVRGSSQQPRLFVGMILILIFAEVLGLYGLIVALLLNSRATQDVV +>7ckb_Bj mol:protein length:98 Major carboxysome shell protein 1A +MADVTGIALGMIETRGLVPAIEAADAMTKAAEVRLVGRQFVGGGYVTVLVRGETGAVNAAVRAGADACERVGDGLVAAHIIARVHSEVENILPKAPQA +>7l6g_B mol:protein length:299 Metallo-mystery pair system four-Cys motif protein +AGVKTQPVAVRFALVADGKEVGCGAPLANLGSGRLAGKLHEARLYVYGFELVDAKGKHTPIALTQNDWQYADVALLDFKDARGGNAACTPGNPAKNTTVVGAAPQGAYVGLAFSVGAPVESLVDGKPVFVNHSNVEAAPPPLDISGMAWNWQAGRRFVTIEVIPPAAVIKPDGSKSRTWMVHVGSTGCKGNPATGEIVACAHENRFPVVFDRFDPKTQRVELDLTTLFESSDISVDKGGAVGCMSALDDPDCPAVFRALGLNLADSAPGANDAGKPSRPGVSPIFSVGAAASKVAGGKQ +>3lcb_C mol:protein length:416 Isocitrate dehydrogenase [NADP] +MESKVVVPAQGKKITLQNGKLNVPENPIIPYIEGDGIGVDVTPAMLKVVDAAVEKAYKGERKISWMEIYTGEKSTQVYGQDVWLPAETLDLIREYRVAIKGPLTTPVGGGIRSLNVALRQELDLYICLRPVRYYQGTPSPVKHPELTDMVIFRENSEDIYAGIEWKADSADAEKVIKFLREEMGVKKIRFPEHCGIGIKPCSEEGTKRLVRAAIEYAIANDRDSVTLVHKGNIMKFTEGAFKDWGYQLAREEFGGELIDGGPWLKVKNPNTGKEIVIKDVIADAFLQQILLRPAEYDVIACMNLNGDYISDALAAQVGGIGIAPGANIGDECALFEATHGTAPKYAGQDKVNPGSIILSAEMMLRHMGWTEAADLIVKGMEGAINAKTVTYDFERLMDGAKLLKCSEFGDAIIENM +>2wl6_A mol:protein length:392 ACETYL-COA ACETYLTRANSFERASE +STPSIVIASAARTAVGSFNGAFANTPAHELGATVISAVLERAGVAAGEVNEVILGQVLPAGEGQNPARQAAMKAGVPQEATAWGMNQLCGSGLRAVALGMQQIATGDASIIVAGGMESMSMAPHCAHLRGGVKMGDFKMIDTMIKDGLTDAFYGYHMGTTAENVAKQWQLSRDEQDAFAVASQNKAEAAQKDGRFKDEIVPFIVKGRKGDITVDADEYIRHGATLDSMAKLRPAFDKEGTVTAGNASGLNDGAAAALLMSEAEASRRGIQPLGRIVSWATVGVDPKVMGTGPIPASRKALERAGWKIGDLDLVEAHEAFAAQACAVNKDLGWDPSIVNVNGGAIAIGNPIGASGARILNTLLFEMKRRGARKGLATLCIGGGMGVAMCIESL +>6qz0_6E mol:protein length:448 Major capsid protein +MRITFNDVKTSLGITESYDIVNAIRNSQGDNFKSYVPLATANNVAEVGAGILINQTVQNDFITSLVDRIGLVVIRQVSLNNPLKKFKKGQIPLGRTIEEIYTDITKEKQYDAEEAEQKVFEREMPNVKTLFHERNRQGFYHQTIQDDSLKTAFVSWGNFESFVSSIINAIYNSAEVDEYEYMKLLVDNYYSKGLFTTVKIDEPTSSTGALTEFVKKMRATARKLTLPQGSRDWNSMAVRTRSYMEDLHLIIDADLEAELDVDVLAKAFNMNRTDFLGNVTVIDGFASTGLEAVLVDKDWFMVYDNLHKMETVRNPRGLYWNYYYHVWQTLSVSRFANAVAFVSGDVPAVTQVIVSPNIAAVKQGGQQQFTAYVRATNAKDHKVVWSVEGGSTGTAITGDGLLSVSGNEDNQLTVKATVDIGTEDKPKLVVGEAVVSIRPNNASGGAQA +>5ez8_D mol:protein length:31 CC-Hept-I-C-I +XGEIAQALKEIAKALKEIAWACKEIAQALKG +>7jqm_2H mol:protein length:180 50S ribosomal protein L6 +MSRIGRLPIPVPKGVSVEVAPGRVKVKGPKGELEVPVSPEMRVVVEEGVVRVERPSDERRHKSLHGLTRTLIANAVKGVSEGYSKELLIKGIGYRARLVGRALELTVGFSHPVVVEPPEGITFEVPEPTRVRVSGIDKQKVGQVAANIRAIRKPSAYHEKGIYYAGEPVRLKPGKAGAKK +>7ck8_B mol:protein length:173 Ferritin heavy chain +STSQVRQNYHQDSEAAINRQINLELYASYVYLSMSYYFDRDDVALKNFAKYFLHQSHEEREHAEKLMKLQNQRGGRIFLQDIKKPDSDDWESGLNAMESALHLEKNVNQSLLELHKLATDKNDPHLSDFIETHYLNEQVKAIKELGDHVTNLRKMGAPESGLAEYLFDKHTLG +>5gaq_C mol:protein length:310 Lysenin +MSAKAAEGYEQIEVDVVAVWKEGYVYENRGSTSVDQKITITKGMKNVNSETRTVTATHSIGSTISTGDAFEIGSVEVSYSHSHEESQVSMTETEVYESKVIEHTITIPPTSKFTRWQLNADVGGADIEYMYLIDEVTPIGGTQSIPQVITSRAKIIVGRQIILGKTEIRIKHAERKEYMTVVSRKSWPAATLGHSKLFKFVLYEDWGGFRIKTLNTMYSGYEYAYSSDQGGIYFDQGTDNPKQRWAINKSLPLRHGDVVTFMNKYFTRSGLCYDDGPATNVYCLDKREDKWILEVVGLVPRGSGHHHHHH +>2g2w_B mol:protein length:165 Beta-lactamase inhibitory protein +AGVMTGAKFTQIQFGMTRQQVLDIAGAENCETGGSFGDSIHCRGHAAGDYYAYATFGFTSAAADAKVDSKSQEKLLAPSAPTLTLAKFNQVTVGMTRAQVLATVGQGSCTTWSEYYPAYPSTAGVTLSLSCFDVDGYSSTGFYRGSAHLWFTDGVLQGKRQWDLV +>1egm_G mol:protein length:173 PROPANEDIOL DEHYDRATASE +MNTDAIESMVRDVLSRMNSLQGEAPAAAPAAGGASRSARVSDYPLANKHPEWVKTATNKTLDDFTLENVLSNKVTAQDMRITPETLRLQASIAKDAGRDRLAMNFERAAELTAVPDDRILEIYNALRPYRSTKEELLAIADDLESRYQAKICAAFVREAATLYVERKKLKGDD +>4oko_B mol:protein length:312 Rapid Encystment Phenotype Protein 34 KDa +MPAQYHIGTPGKKWGSEEKSQWLAEQNKKRSYQQEAEKKILALVSDFDIDEYGQLDYPVGSYKLYALKTKNWDASKPYVLVTGGVHGYETSGVQGAISFAQTRALEFARDYNIVILPCLSPWGYETINRWNPNALDPNRSFYLESGCQEAVLAMKYVFSLGVEFLMHIDLHETTDTDDSEFRPALAAREGIAINKWGIPDGFYLVANNRNPHYDFQKYIIDAVAKVTHIAPTDPSINILGDDIIRDGIMACDSDKERLCMSFTTAEYTTTTEVYPDSPRTNPQECILAQVEAIVAGLNFLKQKNLEHHHHHH +>4cih_B mol:protein length:150 LISTERIA NUCLEAR TARGETED PROTEIN A +RPKLSTKDLALIKADLAEFEARELSSEKILKDTIKEESWSDLDFANDNINQMIGTMKRYQQEILSIDAIKRSSEASADTEAFKKIFKEWSEFKIERIQVTIDLLNGKKDSEAVFKKTYPNQIIFDDVRTNKLQTALNNLKVGYELLDSQK +>6k3a_A mol:protein length:264 Proliferating cell nuclear antigen +GPGMFEARLVQGSILKKVLEALKDLINEACWDISSSGVNLQSMDSSHVSLVQLTLRSEGFDTYRCDRNLAMGVNLTSMSKILKCAGNEDIITLRAEDNADTLALVFEAPNQEKVSDYEMKLMDLDVEQLGIPEQEYSCVVKMPSGEFARICRDLSHIGDAVVISCAKDGVKFSASGELGNGNIKLSQTSNVDKEEEAVTIEMNEPVQLTFALRYLNFFTKATPLSSTVTLSMSADVPLVVEYKIADMGHLKYYLAPKIEDEEGS +>1myw_A mol:protein length:239 Green fluorescent protein +MVSKGEELFTGVVPILVELDGDVNGHKFSVSGEGEGDATYGKLTLKLICTTGKLPVPWPTLVTTLGYGLQCFARYPDHMKQHDFFKSAMPEGYVQERTIFFKDDGNYKTRAEVKFEGDTLVNRIELKGIDFKEDGNILGHKLEYNYNSHNVYITADKQKNGIKANFKIRHNIEDGGVQLADHYQQNTPIGDGPVLLPDNHYLSYQSALSKDPNEKRDHMVLLEFVTAAGITHGMDELYK +>5zmu_A mol:protein length:314 Cis-epoxysuccinate hydrolase +MGSSHHHHHHSSGLVPRGSHMTRTKLILEARINEYMPRRGNPHVPWTPKEIGEAAAQAREAGASIVHFHARQADGSPSHDYETYAESIREIRARSDVLVHPTLGQITLGGRESRLAHIERLCLDPALKPDFAPVDLGSTNIDRYDDVEKRYETGDRVYLNNIDTLQHFSKRLRELGVKPAFIAWTVPFTRTLDAFMDMGLVDDPAYLLFELTDCGIRGGHPGTIRGLRAHTDFLPPGRQIQWTVCNKIGNLFGPAAAAIEEGGHVAIGLGDYLYPELGTPTNGEVVQTVANMARAMGREIATPAETKEILGISN +>6yfb_CB mol:protein length:166 coat protein +SYTQSFGYTIPTEKDTLEIPQYQALLAKKASYMDDSQGKNTATYMNTAAPKDQPETITFGVNKVDNVYKQSNVQNQTFYASSSKGTKIRIDGKRIWRTQSTDVNTGLPVIVDCPLWTSFTLGFADFTLVDDSARKSTIEWMISQLELLKDDGVWSKLCSGVTRIYG +>1j0a_A mol:protein length:325 1-aminocyclopropane-1-carboxylate deaminase +MHPKIFALLAKFPRVELIPWETPIQYLPNISREIGADVYIKRDDLTGLGIGGNKIRKLEYLLGDALSKGADVVITVGAVHSNHAFVTGLAAKKLGLDAILVLRGKEELKGNYLLDKIMGIETRVYDAKDSFELMKYAEEIAEELKREGRKPYVIPPGGASPIGTLGYVRAVGEIATQSEVKFDSIVVAAGSGGTLAGLSLGLSILNEDIRPVGIAVGRFGEVMTSKLDNLIKEAAELLGVKVEVRPELYDYSFGEYGKITGEVAQIIRKVGTREGIILDPVYTGKAFYGLVDLARKGELGEKILFIHTGGISGTFHYGDKLLSLL +>4hgj_B mol:protein length:455 Bifunctional P-450/NADPH-P450 reductase +TIKEMPQPKTFGELKNLPLLNTDKPVQALMKIADELGEIFKFEAPGRVTRYLSSQRLIKEACDESRFDKNLSQALKFVRDFAGDGLATSWTHEKNWKKAHNILLPSFSQQAMKGYHAMMVDIAVQLVQKWERLNADEHIEVPEDMTRLTLDTIGLCGFNYRFNSFYRDQPHPFITSMVRALDEAMNKLQRANPDDPAYDENKRQFQEDIKVMNDLVDKIIADRKASGEQSDDLLAHMLNGKDPETGEPLDDENIRYQIITFLIAGHETTSGLLSFALYFLVKNPHVLQKAAEEAARVLVDPVPSYKQVKQLKYVGMVLNEALRLWPTAPAFSLYAKEDTVLGGEYPLEKGDELMVLIPQLHRDKTIWGDDVEEFRPERFENPSAIPQHAFKPFGNGQRACIGQQFALHEATLVLGMMLKHFDFEDHTNYELDIKETLTLKPEGFVVKAKSKKIPL +>6vmi_5 mol:protein length:423 39S ribosomal protein L37, mitochondrial +MALASGPARRALAGSGQLGLGGFGAPRRGAYEWGVRSTRKSEPPPLDRVYEIPGLEPITFAGKMHFVPWLARPIFPPWDRGYKDPRFYRSPPLHEHPLYKDQACYIFHHRCRLLEGVKQALWLTKTKLIEGLPEKVLSLVDDPRNHIENQDECVLNVISHARLWQTTEEIPKRETYCPVIVDNLIQLCKSQILKHPSLARRICVQNSTFSATWNRESLLLQVRGSGGARLSTKDPLPTIASREEIEATKNHVLETFYPISPIIDLHECNIYDVKNDTGFQEGYPYPYPHTLYLLDKANLRPHRLQPDQLRAKMILFAFGSALAQARLLYGNDAKVLEQPVVVQSVGTDGRVFHFLVFQLNTTDLDCNEGVKNLAWVDSDQLLYQHFWCLPVIKKRVVVEPVGPVGFKPETFRKFLALYLHGAA +>6uzq_C mol:protein length:9 Synthetic peptide THR-VAL-ARG-ALA-SER-GLY-HIS-SER-TYR +TVRASGHSY +>6wwl_A mol:protein length:451 Tubulin alpha-1B chain +MRECISIHVGQAGVQIGNACWELYCLEHGIQPDGQMPSDKTIGGGDDSFNTFFSETGAGKHVPRAVFVDLEPTVIDEVRTGTYRQLFHPEQLITGKEDAANNYARGHYTIGKEIIDLVLDRIRKLADQCTGLQGFLVFHSFGGGTGSGFTSLLMERLSVDYGKKSKLEFSIYPAPQVSTAVVEPYNSILTTHTTLEHSDCAFMVDNEAIYDICRRNLDIERPTYTNLNRLISQIVSSITASLRFDGALNVDLTEFQTNLVPYPRIHFPLATYAPVISAEKAYHEQLSVAEITNACFEPANQMVKCDPRHGKYMACCLLYRGDVVPKDVNAAIATIKTKRSIQFVDWCPTGFKVGINYQPPTVVPGGDLAKVQRAVCMLSNTTAIAEAWARLDHKFDLMYAKRAFVHWYVGEGMEEGEFSEAREDMAALEKDYEEVGVDSVEGEGEEEGEEY +>7l20_D mol:protein length:305 39S ribosomal protein L2, mitochondrial +MALCALTRALRSLNLAPPTVAAPAPSLFPAAQMMNNGLLQQPSALMLLPCRPVLTSVALNANFVSWKSRTKYTITPVKMRKSGGRDHTGRIRVHGIGGGHKQRYRMIDFLRFRPEETKSGPFEEKVIQVRYDPCRSADIALVAGGSRKRWIIATENMQAGDTILNSNHIGRMAVAAREGDAHPLGALPVGTLINNVESEPGRGAQYIRAAGTCGVLLRKVNGTAIIQLPSKRQMQVLETCVATVGRVSNVDHNKRVIGKAGRNRWLGKRPNSGRWHRKGGWAGRKIRPLPPMKSYVKLPSASAQS +>7d28_D mol:protein length:117 Endoribonuclease MazF +MVSDYVPDAGHLVWLNFTPQAGHEQGGRRPALVLSPAAYNGVTGLMQACPVTSRAKGYPFEVTLPAHLGVSGVVLADHCRSLDWRSRRAEQLAEAPADVLAEVRGKLGSLLGMSEKA +>6hvu_b mol:protein length:196 Proteasome subunit beta type-1 +TSIMAVTFKDGVILGADSRTTTGAYIANRVTDKLTRVHDKIWCCRSGSAADTQAIADIVQYHLELYTSQYGTPSTETAASVFKELCYENKDNLTAGIIVAGYDDKNKGEVYTIPLGGSVHKLPYAIAGSGSTFIYGYCDKNFRENMSKEETVDFIKHSLSQAIKWDGSSGGVIRMVVLTAAGVERLIFYPDEYEQL +>2nyz_E mol:protein length:93 Lymphotactin +VGSEVSDKRTCVSLTTQRLPVSRIKTYTITEGSLRAVIFITKRGLKVCADPQATWVRDVVRSMDRKSNTRNNMIQTKPTGTQQSTNTAVTLTG +>5sce_D mol:protein length:447 Pyruvate kinase +GSMEGPAGYLRRADVAQLTQELGTAFFQQQQLPAAMADTFLEHLCLLDIDSEPVAARSTSIIATIGPASRSVERLKEMIKAGMNIARLNFSHGSHEYHAESIANVREAVESFAGSPLSYRPVAIALDTKGPGSGPGLSEQDVRDLRFGVEHGVDIVFASFVRKASDVAAVRAALGPEGHGIKIISKIENHEGVKRFDEILEVSDGIMVARGDLGIEIPAEKVFLAQKMMIGRCNLAGKPVVCATQMLESMITKPRPTRAETSDVANAVLDGADCIMLSGETAKGNFPVEAVKMQHAIAREAEAAVYHRQLFEELRRAAPLSRDPTEVTAIGAVEAAFKCCAAAIIVLTTTGRSAQLLSRYRPRAAVIAVTRSAQAARQVHLCRGVFPLLYREPPEAIWADDVDRRVQFGIESGKLRGFLRVGDLVIVVTGWRPGSGYTNIMRVLSIS +>7qrv_B mol:protein length:281 Tripartite motif-containing protein 2 +SMNPIEDDLIFRVGTKGRNKGEFTNLQGVAASTNGKILIADSNNQCVQIFSNDGQFKSRFGIRGRSPGQLQRPTGVAVHPSGDIIIADYDNKWVSIFSSDGKFKTKIGSGKLMGPKGVSVDRNGHIIVVDNKACCVFIFQPNGKIVTRFGSRGNGDRQFAGPHFAAVNSNNEIIITDFHNHSVKVFNQEGEFMLKFGSNGEGNGQFNAPTGVAVDSNGNIIVADWGNSRIQVFDGSGSFLSYINTSADPLYGPQGLALTSDGHVVVADSGNHCFKVYRYLQ +>6wef_L mol:protein length:159 Uncharacterized protein +GGEVPIGDPKELNGMEIAAVYLQPIEMEPRGIDLAASLADIHLEADIHALKNNPNGFPEGFWMPYLTIAYELKNTDTGAIKRGTLMPMVADHGPHYGANIAMEKDKKGGFGVGNYELTFYISNPEKQGFGRHVDEETGVGKWFEPFKVDYKFKYTGTPK +>1v2a_A mol:protein length:210 glutathione transferase gst1-6 +MDYYYSLISPPCQSAILLAKKLGITLNLKKTNVHDPVERDALTKLNPQHTIPTLVDNGHVVWESYAIVLYLVETYAKDDTLYPKDPKVRSVVNQRLFFDIGTLYKRIIDVIHLVMKKEQPSDEQMEKLKGALDLLEQFVTERAYAAADHLTVADICLLGTVTALNWLKHDLEPFPHIRAWLERVRAEMPDYEEFSKQVADDTLAYVASRK +>6onk_B mol:protein length:137 Dehaloperoxidase B +GFKQDIATLRGDLRTYAQDIFLAFLNKYPDEKRNFKNYVGKSDQELKSMAKFGDHTEKVFNLMMEVADRATDCVPLASDASTLVQMKQHSGLTTGNFEKLFVALVEYMRASGQSFDSQSWDRFGKNLVSALSSAGMK +>4v8e_CG mol:protein length:182 50S ribosomal protein L5 +MPLDVALKRKYYEEVRPELIRRFGYQNVWEVPRLEKVVINQGLGEAKEDARILEKAAQELALITGQKPAVTRAKKSISNFKLRKGMPIGLRVTLRRDRMWIFLEKLLNVALPRIRDFRGLNPNSFDGRGNYNLGLREQLIFPEITYDMVDALRGMDIAVVTTAETDEEARALLELLGFPFRK +>7d1t_b mol:protein length:505 Photosystem II CP47 reaction center protein +GLPWYRVHTVLINDPGRLIAAHLMHTALVAGWAGSMALYELATFDPSDPVLNPMWRQGMFVLPFMARLGVTGSWSGWSITGETGIDPGFWSFEGVALAHIVLSGLLFLAACWHWVYWDLELFRDPRTGEPALDLPKMFGIHLFLAGLLCFGFGAFHLTGLFGPGMWVSDPYGLTGSVQPVAPEWGPDGFNPYNPGGVVAHHIAAGIVGIIAGLFHILVRPPQRLYKALRMGNIETVLSSSIAAVFFAAFVVAGTMWYGSATTPIELFGPTRYQWDSSYFQQEINRRVQASLASGATLEEAWSAIPEKLAFYDYIGNNPAKGGLFRTGPMNKGDGIAQAWKGHAVFRNKEGEELFVRRMPAFFESFPVILTDKNGVVKADIPFRRAESKYSFEQQGVTVSFYGGELNGQTFTDPPTVKSYARKAIFGEIFEFDTETLNSDGIFRTSPRGWFTFAHAVFALLFFFGHIWHGARTLFRDVFSGIDPELSPEQVEWGFYQKVGDVTTRK +>1swr_B mol:protein length:127 CORE-STREPTAVIDIN +AEAGITGTWYNQLGSTFIVTAGADGALTGTYESAVGNAESRYVLTGRYDSAPATDGSGTALGWTVAWKNNYRNAHSATTWSGQYVGGAEARINTQWLLTSGTTEANAAKSTLVGHDTFTKVKPSAAS +>5xke_B mol:protein length:445 Tubulin beta chain +MREIVHIQAGQCGNQIGAKFWEVISDEHGIDPTGSYHGDSDLQLERINVYYNEATGNKYVPRAILVDLEPGTMDSVRSGPFGQIFRPDNFVFGQSGAGNNWAKGHYTEGAELVDSVLDVVRKESESCDCLQGFQLTHSLGGGTGSGMGTLLISKIREEYPDRIMNTFSVMPSPKVSDTVVEPYNATLSVHQLVENTDETYCIDNEALYDICFRTLKLTTPTYGDLNHLVSATMSGVTTCLRFPGQLNADLRKLAVNMVPFPRLHFFMPGFAPLTSRGSQQYRALTVPELTQQMFDSKNMMAACDPRHGRYLTVAAIFRGRMSMKEVDEQMLNVQNKNSSYFVEWIPNNVKTAVCDIPPRGLKMSATFIGNSTAIQELFKRISEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDATADEQGEFEEEGEEDEA +>6nx9_A mol:protein length:333 L-asparaginase 2 +MHHHHHHLPNITILATGGTIAGGGDSATKSNYTVGKVGVENLVNAVPQLKDIANVKGEQVVNIGSQDMNDNVWLTLAKKINTDCDKTDGFVITHGTTTMEETAYFLDLTVKCDKPVVMVGAMRPSTSMSADGPFNLYNAVVTAADKASANRGVLVVMNDTVLDGRDVTTTNTTDVATFKSVNYGPLGYIHNGKIDYQRTPARKHTSDTPFDVSKLNELPKVGIVYNYANASDLPAKALVDAGYDGIVSAGVGNGNLYKSVFDTLATAAKTGTAVVRSSRVPTGATTQDAEVDDAKYGFVASGTLNPQKARVLLQLALTQTKDPQQIQQIFNQY +>2qr0_S mol:protein length:213 Fab-Fragment Light Chain +DIQMTQSPSSLSASVGDRVTITCRASQSVSSAVAWYQQKPGKAPKLLIYSASSLYSGVPSRFSGSRSGTDFTLTISSLQPEDFATYYCQQYSYYYYPFTFGQGTKVEIKRTVAAPSVFIFPPSDEQLKSGTASVVCLLNNFYPREAKVQWKVDNALQSGNSQESVTEQDSKDSTYSLSSTLTLSKADYEKHKVYACEVTHQGLSSPVTKSFNR +>4v7v_B2 mol:protein length:46 50S ribosomal protein L34 +MKRTFQPSVLKRNRSHGFRARMATKNGRQVLARRRAKGRARLTVSK +>5lze_r mol:protein length:65 30S ribosomal protein S18 +FCRFTAEGVQEIDYKDIATLKNYITESGKIVPSRITGTRAKYQRQLARAIKRARYLSLLPYTDRH +>7b4v_A mol:protein length:132 Broadly neutralizing DARPin bnD.2 +GPGSDLGKKLLEAARAGQDDEVRILMANGADVNASDADVGATPLHLAAWAGHLEIVEVLLKTGADVNAVDIWGLTPLHLAAAVGHLEIVEVLLKHGADVNAQDKFGKTPFDLAIDNGNEDIAEVLQKAAKLN +>7xjh_R mol:protein length:395 Beta-3 adrenergic receptor +DYKDDDDAMGAPWPHGNGSVASWPAAPTPTPDAANTSGLPGAPWAVALAGALLALEVLATVGGNLLVIVAIARTPRLQTMTNVFVTSLATADLVVGLLVVPPGATLALTGRWPLGATGCELWTSVDVLCVTASIETLCALAVDRYLAVTNPLRYGALVTKRRARAAVVLVWVVSAAVSFAPIMSKWWRVGADAEAQRCHSNPHCCAFASNIPYALLSSSVSFYLPLLVMLFVYARVFLVATRQLRLLRRELGRFPPAESPPAASRSRSPGPARRCASPAAVPSDRLRPARLLPLREHRALRTLGLIVGTFTLCWLPFFVANVMRALGGPSLVPSPALLALNWLGYANSAFNPLIYCRSPDFRSAFRRLLCRCRREEHRAAASPPGDPSENLYFQG +>6bx1_z mol:protein length:540 VP2 +SGVGHSTGNYNNRTIFHYHGDEVTIICHATRHIHLNMSPTEEYKIYDTNHGPEFPNTGDQTQQGRNTVNDSYHAKVETPWYLINPNSWGIWFNPADFQQLITTCTHVTIETLTQEIDNIVIKTVSKQGSGAEETTQYNNDLTALLEVALDKSNMLPWVADNMYLNSLGYIPWRPCKLTQFCYHTNFYNTINLLEGTQQNQWSQIKEGIQYDNLQFTPIETSAEIDLLRTGDSWTSGTYHFKCKPTQLFYHWQSTRHIGAPHPTTSPEQEGQKGQIIQDTNGWQWGDRDNPISASTTVKDFHIGYSWPEWRWHYSTGGPSINPGSAFSQTPWGSEVGGTRLTQGASEKAIFDYNHGEAEPGHRDQWWQNNAQQTGQTNWAIKNAHQSELRNATASRETFWTQDYHNTFGPYTAVDDVGIQYPWGAMWGKQPDTTHKPMMSAHAPFTCQNGPPGQLLVKLAPNYTDSLNNEGLQTNRIVTFATFWWTGRCTFKAKLRTPRQFNAYQLPGIPSGTNPKKFVPDAIGRFELPFMPGRAMPNYTY +>7lkj_D mol:protein length:423 Aminofutalosine deaminase +MHHHHHHENLYFQGMQEIIGASLVFLCNEKCEVLEDYGVVFDEKIVEIGDYHNLTLKYPHLKAQFFENSVLLPAFINAHTHFEFSNNKASFDYGSFSGWLGSVLNNGGAILENCQGAIQNAIMAQLKSGVGSVGAISNHLIEVNLLKESPLNAVVFLEFLGSSYSLEKLKAFEAKFKELKDLEDQKLKAALAVHAPYSVQKDMALSVIQLAKDSQSLLSTHFLESLEELEWVENSKGWFENFYQRFLKESNFTSLYEGANDYIDMFKDTHTLFVHNQFASLEALKRIKSQVKNAFLITCPFSNRLLSGKALDLERVREAGLSVSVATDGLSSNISLSLLDELRAFLLSHNMPLLELAKIALLGATRHGAKALALNNGEIETNKRADLSVFGFNEKFTKEQAILQFLLHAKEVERLFLGGKRVI +>4xuc_A mol:protein length:218 Catechol O-methyltransferase +NLLAGDTKEQRILNHVLQHAEPGNAQSVLEAIDTYCEQKEWAMNVGDKKGKIVDAVIQEHQPSVLLELGAYCGYSAVRMARLLSPGARLITIEINPDCAAITQRMVDFAGVKDKVTLVVGASQDIIPQLKKKYDVDTLDMVFLDHWKDRYLPDTLLLEECGLLRKGTVLLADNVICPGAPDFLAHVRGSSCFECTHYQSFLEYREVVDGLEKAIYKGP +>3l0s_A mol:protein length:223 Adenylate kinase +MNILIFGPNGSGKGTQGNLVKDKYSLAHIESGGIFREHIGGGTELGKKAKEFIDRGDLVPDDITIPMVLETLESKGKDGWLLDGFPRNTVQAQKLFEALQEKGMKINFVIEILLPREVAKNRIMGRRICKNNPNHPNNIFIEAIKPNGDVCRVCGGALSARADDQDEGAINKRHDIYYNTVDGTLAAAYYYKNMAAKEGFVYIELDGEGSIDSIKDTLLAQLA +>7rqc_2P mol:protein length:150 50S ribosomal protein L15 +MKLSDLRPNPGANKRRKRVGRGPGSGHGKTATRGHKGQKSRSGGLKDPRRFEGGRSTTLMRLPKRGMQGQVPGEIKRPRYQGVNLKDLARFEGEVTPELLVRAGLLKKGYRLKILGEGEAKPLKVVAHAFSKSALEKLKAAGGEPVLLEA +>4yus_A mol:protein length:382 Family 3 adenylate cyclase +MNHKVHHHHHHIEGRHMKRLTYISKFSRPLSGDEIEAIGRISSQKNQQANVTGVLLCLDGIFFQILEGEAEKIDRIYERILADERHTDILCLKSEVEVQERMFPDWSMQTINLDENTDFLIRPIKVLLQTLTESHRILEKYTQPSIFKIISQGTNPLNIRPKAVEKIVFFSDIVSFSTFAEKLPVEEVVSVVNSYFSVCTAIITRQGGEVTKFIGDCVMAYFDGDCADQAIQASLDILMELEILRNSAPEGSPLRVLYSGIGLAKGKVIEGNIGSELKRDYTILGDAVNVAARLEALTRQLSQALVFSSEVKNSATKSWNFIWLTDSELKGKSESIDIYSIDNEMTRKSSGGLEIARNIGHYLERVGDRQPSQIFGVKSLPL +>1ziq_A mol:protein length:173 Gamma crystallin E +GKITFYEDRGFQGRHYECSTDHSNLQPYFSRCNSVRVDSGCWMLYEQPNFTGCQYFLRRGDYPDYQQWMGFSDSVRSCRLIPHSSSHRIRIYEREDYRGQMVEITDDCPHLQDRFHFSDFHSFHVMEGYWVLYEMPNYRGRQYLLRPGEYRRYHDWGAMNARVGSLRRIMDFY +>4qx8_D mol:protein length:68 Lysine-specific demethylase 2A +QVHLTHFELEGLRCLVDKLESLPLHKKCVPTGIEDEDALIADVKILLEELASSDPKLALTGVPIVQWP +>6r0z_B mol:protein length:578 V-type ATP synthase alpha chain +MIQGVIQKIAGPAVIAKGMLGARMYDICKVGEEGLVGEIIRLDGDTAFVQVYEDTSGLKVGEPVVSTGLPLAVELGPGMLNGIYDGIQRPLERIREKTGIYITRGVVVHALDREKKWAWTPMVKPGDEVRGGMVLGTVPEFGFTHKILVPPDVRGRVKEVKPAGEYTVEEPVVVLEDGTELKMYHTWPVRRARPVQRKLDPNTPFLTGMRILDVLFPVAMGGTAAIPGPFGSGKTVTQQSLAKWSNADVVVYVGCGERGNEMTDVLVEFPELTDPKTGGPLMHRTVLIANTSNMPVAAREASIYVGVTIAEYFRDQGFSVALMADSTSRWAEALREISSRLEEMPAEEGYPPYLAARLAAFYERAGKVITLGGEEGAVTIVGAVSPPGGDMSEPVTQSTLRIVGAFWRLDASLAFRRHFPAINWNGSYSLFTSALDPWYRENVAEDYPELRDAISELLQREAGLQEIVQLVGPDALQDAERLVIEVGRIIREDFLQQNAYHEVDAYCSMKKAYGIMKMILAFYKEAEAAIKRGVSIDEILQLPVLERIGRARYVSEEEFPAYFEEAMKEIQGAFKALA +>6fl9_E mol:protein length:320 Cys-loop ligand-gated ion channel +MASLAAEPSDVFIGLKIDQITGINQKEENFSVVGSLRIDWRQPLLAFEHAPGEPKHRTYTLATFLKLLEEKQIRWPAFTYHNQQGRMDFQNRLISLSEDGTVMYLERFTSTFQAPAFDFRLFPFDNQLFFIHVDSIFPQHLFRFQEMQGFSGLGDQLGEEEWIVTEVNTHLTTHNEFTKGDASRFVLEFHAERHLNYYLMRILIPVLLIITVSWFTFFLQDYTKRIDLAGGNLLLFIAFNFTISSDLPRLGYITLMDAFLVGTFIITALVVLGNVWLRRLENHGKQALARKLDIYAITSYPLAYLLGALTLWLLFFWRSY +>7som_CC mol:protein length:443 Tubulin beta +MREIVHIQGGQCGNQIGAKFWEVVSDEHGIDPTGTYHGDSDLQLERINVYFNEATGGRYVPRAILMDLEPGTMDSVRSGPYGQIFRPDNFVFGQTGAGNNWAKGHYTEGAELIDSVLDVVRKEAESCDCLQGFQVCHSLGGGTGSGMGTLLISKIREEYPDRMMLTFSVVPSPKVSDTVVEPYNATLSVHQLVENADECMVLDNEALYDICFRTLKLTTPTFGDLNHLISAVMSGITCCLRFPGQLNADLRKLAVNLIPFPRLHFFMVGFTPLTSRGSQQYRALTVPELTQQMWDAKNMMCAADPRHGRYLTASALFRGRMSTKEVDEQMLNVQNKNSSYFVEWIPNNVKSSVCDIPPKGLKMSATFIGNSTAIQEMFKRVSEQFTAMFRRKAFLHWYTGEGMDEMEFTEAESNMNDLVSEYQQYQDASAEEEGEFEGEEEEA +>4r8p_H mol:protein length:122 Histone H2B 1.1 +AKSAPAPKKGSKKAVTKTQKKDGKKRRKTRKESYAIYVYKVLKQVHPDTGISSKAMSIMNSFVNDVFERIAGEASRLAHYNKRSTITSREIQTAVRLLLPGELAKHAVSEGTKAVTKYTSAK +>2euz_A mol:protein length:345 NDT80 protein +GPLGSMNEMENTDPVLQDDLVSKYERELSTEQEEDTPVILTQLNEDGTTSNYFDKRKLKIAPRSTLQFKVGPPFELVRDYCPVVESHTGRTLDLRIIPRIDRGFDHIDEEWVGYKRNYFTLVSTFETANCDLDTFLKSSFDLLVEDSSVEGRLRVQYFAIKIKAKNDDDDTEINLVQHTAKRDKGPQFCPSVCPLVPSPLPKHQTIREASNVRNITKMKKYDSTFYLHRDHVNYEEYGVDSLLFSYPEDSIQKVARYERVQFASSISVKKPSQQNKHFSLHVILGAVVDPDTFHGENPGIPYDELALKNGSKGMFVYLQEMKTPPLIIRGRSPSNYASSQRITVR +>5e18_A mol:protein length:315 DNA-directed RNA polymerase subunit alpha +MLDSKLKAPVFTVRTQGREYGEFVLEPLERGFGVTLGNPLRRILLSSIPGTAVTSVYIEDVLHEFSTIPGVKEDVVEIILNLKELVVRFLNPSLQTVTLLLKAEGPKEVKARDFLPVADVEIMNPDLHIATLEEGGRLNMEVRVDRGVGYVPAEKHGIKDRINAIPVDAVFSPVRRVAFQVEDTRLGQRTDLDKLTLRIWTDGSVTPLEALNQAVEILREHLTYFSNPQAAAVAAPEEAKEPEAPPEQEEELDLPLEELGLSTRVLHSLKEEGIESVRALLALNLKDLKNIPGIGERSLEEIKEALEKKGFTLKE +>5xru_A mol:protein length:193 adenylate kinase +MADKIKDAKIIFVVGGPGSGKGTQCEKIVAKYGYTHLSSGDLLRAEVSSGSERGKQLQAIMQKGELVPLDTVLDMIKDAMIAKADVSKGYLIDGYPREVKQGEEFEKKIGKPCLLLYIDAKGETMVKRLMKRGETSGRADDNEETIKKRLDLYYKATEPVIAFYEGRGIVRKIDSELPVDEVFKQVSTAIDAL +>7oiz_l mol:protein length:136 50S ribosomal protein L16 +MLQPKRTKFRKMHKGRNRGLAQGTDVSFGSFGLKAVGRGRLTARQIEAARRAMTRAVKRQGKIWIRVFPDKPITEKPLAVRMGKGKGNVEYWVALIQPGKVLYEMDGVPEELAREAFKLAAAKLPIKTTFVTKTVM +>7l08_4 mol:protein length:103 39S ribosomal protein L36, mitochondrial +MANLFIRKMVNPLLYLSRHTVKPRALSTFLFGSIRGAAPVAVEPGAAVRSLLSPGLLPHLLPALGFKNKTVLKKRCKDCYLVKRRGRWYVYCKTHPRHKQRQM +>5w5f_O mol:protein length:163 Tail tube protein gp19 +MFVDDVTRAFESGDFARPNLFQVEISYLGQNFTFQCKATALPAGIVEKIPVGFMNRKINVAGDRTFDDWTVTVMNDEAHDARQKFVDWQSIAAGQGNEITGGKPAEYKKSAIVRQYARDAKTVTKEIEIKGLWPTNVGELQLDWDSNNEIQTFEVTLALDYWE +>1cah_A mol:protein length:259 CARBONIC ANHYDRASE II +SHHWGYGKHNGPEHWHKDFPIAKGERQSPVDIDTHTAKYDPSLKPLSVSYDQATSLRILNNGHAFNVEFDDSQDKAVLKGGPLDGTYRLIQFHFHWGSLDGQGSEHTVDKKKYAAELHLVHWNTKYGDFGKAVQQPDGLAVLGIFLKVGSAKPGLQKVVDVLDSIKTKGKSADFTNFDPRGLLPESLDYWTYPGSLTTPPLLECVTWIVLKEPISVSSEQVLKFRKLNFNGEGEPEELMVDNWRPAQPLKNRQIKASFK +>1rd4_D mol:protein length:191 Integrin alpha-L +GAMSCIKGNVDLVFLFDGSMSLQPDEFQKILDFMKDVMKKLSNTSYQFAAVQFSTSYKTEFDFSDYVKRKDPDALLKHVKHMLLLTNTFGAINYVATEVFREELGARPDATKVLIIITDGEATDSGNIDAAKDIIRYIIGIGKHFQTKESQETLHKFASKPASEFVKILDTFEKLKDLFTELQKKIYVIEG +>5tg8_A mol:protein length:332 Hemagglutinin HA1 chain +ADPGDKICLGHHAVANGTKVNTLTERGVEVVNATETVEITGIDKVCTKGKKAVDLGSCGILGTIIGPPQCDLHLEFKADLIIERRNSSDICYPGRFTNEEALRQIIRESGGIDKESMGFRYSGIRTDGATSACKRTVSSFYSEMKWLSSSMNNQVFPQLNQTYRNTRKEPALIVWGVHHSSSLDEQNKLYGTGNKLITVGSSKYQQSFSPSPGARPKVNGQAGRIDFHWMLLDPGDTVTFTFNGAFIAPDRATFLRSNAPSGIEYNGKSLGIQSDAQIDESCEGECFYSGGTINSPLPFQNIDSRAVGKCPRYVKQSSLPLALGMKNVPEKI +>7pi2_E mol:protein length:231 Monoclonal antibody Cy.003 heavy chain +AVTLDESGGGLQTPGGALSLVCKGSGFFSFSSYTMQWVRQAPGKGLEWVASISSGGGTNYGAAVKGRATISRDNGQSTLRLQLNNLRAEDTGTYYCAKHGVNGCDWSYSVGCVDAWGHGTEVIVSSASTKGPSVFPLAPSSKSTSGGTAALGCLVKDYFPEPVTVSWNSGALTSGVHTFPAVLQSSGLYSLSSVVTVPSSSLGTQTYICNVNHKPSNTKVDKKVEPKSCDK +>7qyd_B mol:protein length:724 Pesticidal crystal protein Cry11Ba +MQNNNFNTTEINNMINFPMYNGRLEPSLAPALIAVAPIAKYLATALAKWAVKQGFAKLKSEIFPGNTPATMDKVRIEVQTLLDQRLQDDRVKILEGEYKGIIDVSKVFTDYVNQSKFETGTANRLFFDTSNQLISRLPQFEIAGYEGVSISLFTQMCTFHLGLLKDGILAGSDWGFAPADKDALICQFNRFVNEYNTRLMVLYSKEFGRLLAKNLNEALNFRNMCSLYVFPFSEAWSLLRYEGTKLENTLSLWNFVGESINNISPNDWKGALYKLLMGAPNQRLNNVKFNYSYFSDTQATIHRENIHGVLPTYNGGPTITGWIGNGRFSGLSFPCSNELEITKIKQEITYNDKGGNFNSIVPAATRNEILTATVPTSADPFFKTADINWKYFSPGLYSGWNIKFDDTVTLKSRVPSIIPSNILKYDDYYIRAVSACPKGVSLAYNHDFLTLTYNKLEYDAPTTQNIIVGFSPDNTKSFYRSNSHYLSTTDDAYVIPALQFSTVSDRSFLEDTPDQATDGSIKFTDTVLGNEAKYSIRLNTGFNTATRYRLIIRFKAPARLAAGIRVRSQNSGNNKLLGGIPVEGNSGWIDYITDSFTFDDLGITTSSTNAFFSIDSDGVNASQQWYLSKLILVKESSFTTQIPLKPYVIVRCPDTFFVSNNSSSTYEQGYNNNYNQNSSSMYDQGYNNSYNPNSGCTCNQDYNNSYNQNSGCTCNQGYNNNYPK +>2vbj_B mol:protein length:152 DNA ENDONUCLEASE I-CREI +NTKYNKEFLLYLAGFVDADGSIIAQIEPNQSSKFKHRLKLTFQVTQKTQRRWFLDKLVDEIGVGYVRDSGSVSNYILSEIKPLHNFLTQLQPFLKLKQKQANLVLKIIEQLPSAKESPDKFLEVCTWVDQIAALNDSKTRKTTSETVRAVLD +>6nlj_K mol:protein length:158 Ferroxidase +MKGDKKVIQHLNKILGNELIAINQYFLHSRMWNDWGLKRLGAHEYHESIDEMKHADKLIERILFLEGLPNLQDLGKLLIGENTQEMLQCDLNLELKATKDLREAIVHCEQVHDYVSRDLLKDILESEEEHIDYLETQLGLIQKVGLENYLQSHMHEDD +>6zh9_FFF mol:protein length:134 Nanobody H11-H4 +QVQLVESGGGLMQAGGSLRLSCAVSGRTFSTAAMGWFRQAPGKEREFVAAIRWSGGSAYYADSVKGRFTISRDKAKNTVYLQMNSLKYEDTAVYYCAQTHYVSYLLSDYATWPYDYWGQGTQVTVSSKHHHHHH +>6yfp_BQ mol:protein length:164 coat protein +SYTIDINCSTGDTQANLVLTEIPAEPYVHVSGDNKSTIEYLDTGSDNSLLVRPTQQFNCVSSQYPYRNYSKIPRSQQDPLAVRREFYTRRVEYWRKADASNVDAPEYTLPQSCSIRLASTVTKETTAADIAGIVLRTLAPIFPNGSGDWIKLQQLIDGLPRIFG +>3rap_R mol:protein length:167 PROTEIN (G protein RAP2A) +MREYKVVVLGSGGVGKSALTVQFVTGTFIEKYDPTIEDFYRKEIEVDSSPSVLEILDTAGTEQFASMRDLYIKNGQGFILVYSLVNQQSFQDIKPMRDQIIRVKRYEKVPVILVGNKVDLESEREVSSSEGRALAEEWGCPFMETSAKSKTMVDELFAEIVRQMNYA +>4fk2_A mol:protein length:903 DNA polymerase +MKEFYLTVEQIGDSIFERYIDSNGRERTREVEYKPSLFAHCPESQATKYFDIYGKPCTRKLFANMRDASQWIKRMEDIGLEALGMDDFKLAYLSDTYNYEIKYDHTKIRVANFDIEVTSPDGFPEPSQAKHPIDAITHYDSIDDRFYVFDLLNSPYGNVEEWSIEIAAKLQEQGGDEVPSEIIDKIIYMPFDNEKELLMEYLNFWQQKTPVILTGWNVESFAIPYVYNRIKNIFGESTAKRLSPHRKTRVKVIENMYGSREIITLFGISVLDYIDLYKKFSFTNQPSYSLDYISEFELNVGKLKYDGPISKLRESNHQRYISYNIIAVYRVLQIDAKRQFINLSLDMGYYAKIQIQSVFSPIKTWDAIIFNSLKEQNKVIPQGRSHPVQPYPGAFVKEPIPNRYKYVMSFDLTSAYPSIIRQVNISPETIAGTFKVAPLHDYINAVAERPSDVYSCSPNGMMYYKDRDGVVPTEITKVFNQRKEHKGYMLAAQRNGEIIKEALHNPNLSVDEPLDVDYRFDFSDEIKEKIKKLSAKSLNEMLFRAQRTEVAGMTAQINRKALINGLAGALGNVWFRYYDLRNATAITTFGQMALQWIERKVNEYLNEVCGTEGEAFVLYGDTDSIYVSADKIIDKVGESKFRDTNHWVDFLDKFARERMEPAIDRGFREMCEYMNNKQHLMFMDREAIAGPPLGSKGIGGFWTGKKRYALNVWDMEGTRYAEPKLKIMGLETQKSSTPKAVQKALKECIRRMLQEGEESLQEYFKEFEKEFRQLNYISIASVSSANNIAKYDVGGFPGPKCPFHIRGILTYNRAIKGNIDAPQVVEGEKVYVLPLREGNPFGDKCIAWPSGTEITDLIKDDVLHWMDYTVLLEKTFIKPLEGFTSAAKLDYEKKASLFDMFDF +>1yja_A mol:protein length:275 SUBTILISIN 8397+1 +AQSVPYGVSQIKAPALHSQGYTGSNVKVAVIDSGIDSSHPDLKVAGGASFVPSETNPFQDNNSHGTHVAGTVAALDNSIGVLGVAPSASLYAVKVLGADGSGQYSWIINGIEWAIANNMDVINMSLGGPSGSAALKAAVDKAVASGVVVVAAAGNEGTSGSSSTVGYPAKYPSVIAVGAVDSSNQRASFSSVGPELDVMAPGVSICSTLPGNKYGAYSGTSMASPHVAGAAALILSKHPNWTNTQVRSSLENTTTYLGDSFYYGKGLINVQAAAQ diff --git a/flax_model/alphafold3/test_data/miniature_databases/rfam_14_4_clustered_rep_seq__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/rfam_14_4_clustered_rep_seq__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..633ee10374ab75f3ffed4faa32723683934dde79 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/rfam_14_4_clustered_rep_seq__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>AY587142.1/1755-1856 Arsenophonus endosymbiont of Aleurodicus dugesii 16S ribosomal RNA gene, partial sequence; tRNA-Glu gene, complete sequence; and 23S ribosomal RNA gene, partial sequence. +CTTTAACAATCTGGAACAAGCTGAAAATTGAAACACACATTATTGAAAAATAGTGTGGGGAACTCTCAAAACTCCAAGTTGAAGTGTTATGCAAATAGGCAG +>MTKT01000541.1/46599-46389 Punica granatum cultivar Dabenzi scaffold481, whole genome shotgun sequence. +CTCATTACCCTAAAACCACAGGTTTCCGCAAAGTCGTAAGACCATGTATGGGGGCTGACGCTTGCCCTGTGTCGGAAGGTCAAGGAAGTTGATGACCTGATGACGAGGGAGTCGACGATCGAAGCCCCGGTGGACGAAGACTGTAACTATAACAGTCCTAAGGTAGGGAAATTTCTTGTCGGGTAAGTTCCAACCCGCACAAAAGGCGTAA +>ABRO02008320.1/60058-60003 Dipodomys ordii contig_8320, whole genome shotgun sequence. +GGAGATATGGCTCAAGTGGTAGAGCACCTGCCTAGAAAGCACGTGGCCTATTGCCA +>MTKT01004810.1/4745052-4744924 Punica granatum cultivar Dabenzi scaffold70, whole genome shotgun sequence. +TCGTTTGCAGATGCAGCTTCATCAAGATTCACATGCCGGCCTCTACGTTCGTCAGAGGTACCGTGTTTCTCGGACAGCTATAGTAGGTTCTGGTATTGGGAATCTTGATGATGCTGCATCGGCAAGAGA +>ABRO02033548.1/61663-61950 Dipodomys ordii contig_33548, whole genome shotgun sequence. +GTAAGGGCAATCTGGCTACAACATCTGTCACCTCATTGATCACCACGGTTGATCTGGGTATCTGGCCTGCTAGGCAGGTGTCCCCTTCCTCCCTTACCTGTGTGCCCCTCCTGAAGCTGCATGCTTGGTTGAGGACGACCATCCCAGCATCTGATCGAGGAGGACTGGTCTTTAGTCAAGGGTATATGAGTAGCTGTGTTCTGATAGAACCTCCAAACAAGCTCTCAACAGAAGGGACAGGAGGGGAAAACAGAGAGAACACTGCCCATAAAGAAATGTAATCTTTAT +>AUSU01004475.1/2209-2114 Genlisea aurea contig_6775, whole genome shotgun sequence. +CTTCTGCGGTGATGAAATTAATTTTCGCATGTCAGACTTCAGAGATTTTTCATTAAATCAATGAGATGAATAACTTCACTTTGACCTGAGCAGAAG +>GL896952.1/11483861-11483692 Mustela putorius furo unplaced genomic scaffold scaffold00055, whole genome shotgun sequence. +AGCTTTGCGCAGTGGCAGTATTGTAGCCAATGAGGTTTATCCGAGGCGTGATTATTGCTAATTGAAAACTAGTTCATCATATTGGTCACGTGAGCTTCTCTCATCCAGCCTAGGAAATGTGAGATTTTGAGTGTGAGAGAATGCTGTTACCAGTTTTGCCTGGGAGAAGA +>KQ414408.1/749-926 Termitomyces sp. J132 unplaced genomic scaffold C248965, whole genome shotgun sequence. +AACAGGCTGATCGCGGACGAGAGTACACATTGTCTCCGCGGATTGGCACCTCGATGTCGACTCATCCTATCCTCTGGGGGAAGAAGCTTGGAAGGGTTCGGCTGTTCGCCGATTAAAAGGGTACGTGAGTTGGGTTTAATACGACGTGAACTACAAAATTTTAATTAAACCCTTAAAT +>CP000593.1/393484-393597 Ostreococcus lucimarinus CCE9901 chromosome 13, complete sequence. +TCTTCCTTAACTCAGCTGGTAGAGTGTCAGACTGTTAGGAAAAAGTCTCCGTCGAATATGACGGCTGCTCCGATAGAGATCTGGAAGCCGCGGGATCGAAACCCGCAGGAAGAG +>JFYO01000008.1/890-1 Microbacterium oleivorans strain RIT293 contigs6, whole genome shotgun sequence. +GCGACTGTTTACTAAAAACACAGGTCCGTGCCAAGTCGCAAGACGATGTATACGGACTGACGCCTGCCCGGTGCTGGAAGGTTAAGAGGACCGGTTAGCCGCAAGGCGAAGCTGAGAATTTAAGCCCCAGTAAACGGCGGTGGTAACTATAACCATCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAACGACTTCCCAACTGTCTCAACCGCGAACTCGGCGAAATTGCATTACGAGTAAAGATGCTCGTTACGCGCAGCAGGACGGAAAGACCCCGTGACCTTTACTATAGCTTTGTATTGGTGTTCGGTGTGGCTTGTGTAGGATAGGTGGGAGACTTTGAAGCGGTGACGCCAGTTACCGTGGAGTCATTGTTGAAATACCACTCTGGTCACTCTGGATATCTAACTTCGAACCGTAATCCGGTTCAGGGACAGTGCATGGTGGGTAGTTTAACTGGGGCGGTTGCCTCCCAAAAAGTAACGGAGGCGCCCAAAGGTTCCCTCAACCTGGTTGGCAATCAGGTGGCGAGTGTAAGTGCACAAGGGAGCTTGACTGTGAGACTGACAGGTCGAGCAGGGACGAAAGTCGGGACTAGTGATCCGGCAGTGGCTTGTGGAAGCGCTGTCGCTCAACGGATAAAAGGTACCTCGGGGATAACAGGCTGATCTTGCCCAAGAGTCCATATCGACGGCATGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGGAGTAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCCGCTGCGCGCGTAGGAAATTTGAGAGGATCTGACCCTAGTAC +>FWWT01000006.1/33934-33831 Desulfonispora thiosulfatigenes DSM 11270 genome assembly, contig: Dest_Contig00014 +ATATTTTATATCGGGAGCTTGAAAAGGCTGAGAGTATGATGTTTTCGTAGACCGATTGAACCTGTTGGGTAATGCCAGCGTAGGGAATGTGATTAAATTATTAC +>AWHE01032144.1/18768-18530 Amborella trichopoda AMTR_V1.0_contig_32144, whole genome shotgun sequence. +TAGCGAGTGGTTTGAGTTTTTCATTTATTTTTTAATTCCATGGGAAGTGGTGCATGGCCATTCATAGTTGGTGGGGTGGGGTGATTTGTTGCCTAATTCCATTAATGAATGAGACTTTCAGCCTGCTAACTAGCTTCGTGAGATATCCTCCACAACCAACTGCTTAGACAGAGCGACGAAGTATGGCTGTTTAGGTCAAGAATGTTTGAGGTGAAAACAGGTTTGTGATGCCCTTAGAT +>CP014699.1/1893224-1893021 Streptococcus sp. TA 26, complete genome. +AAATGTCTTCAGGGCAGGGTGCAATTCCCGACCGGCGGTGACTTTTCGTTTACTGTTCCAGCTTGATGGCCTGCAGAGTAGTTCTGCAGAGCTGATGCTTAAAAATAAGCAGCAGGAATATGAAGCGAGAAGAAGTCCGCGAGCGCAAGCTGATGCGGTGCAATTCCGCAACCGACAGTAAAGTCTGGATGGGAGAAGACGAAG +>JRRC01354587.1/210-1 Gossypium arboreum cultivar AKA8401 contig_360664_1, whole genome shotgun sequence. +CTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCTATACCCGGCCGTCGGGGCAAGAGCTAGGCCCCGATGAGTAGGAGGGCGCGGCGGTCGCCGCAAAACCCGGGGCGCGAGCCCGGGCTGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAA +>LFZV01000001.1/3925782-3925615 Bacillus sp. FJAT-27916 Scaffold1, whole genome shotgun sequence. +TTTTCTGTATAAGCGCCAGAACTAAACCCATGTGGTGGGATTTAGTTGACGAGGTGGAGGTTATCGAAATGTTCGGCGGGAGCCTCCCAGCTTACATGTGCGGGCTGCAACTCTTTTTACCAAAACAGTTTGGCGACAAACTGGACAGAATAAAGAGAGAAGCACATA +>JJRU01049126.1/2855-2468 Picoides pubescens contig49126, whole genome shotgun sequence. +TATACTCAGTCCAAAAATTTCTTGCAATGCATTTATAGAAGCTTTCTGATGCAGGTAGTTAAAGACTTGTGGCGGTCAAGTGTTCACAGCGACGTTGCTTTTTGATCCTTCATTGTCAGTTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCTACTAATAGGGAACATGAGCTGGGATTAGACCATCATGAGACAGGTTAGTTCTACCCTACTGATGATGTGTTGTTGCAATAGTAATCCTGCTCAGTATGAGAGGTACCACAGGTTCAGATTCTTGGTACATGCGATTGGCTGAGGAATCATGGATTCATAGAATCAAAAAGGTTGGAAAAGACCTCAAAGATCACACAATCACACAGAATCACAGAATC +>NC_009988.1/26865-27149 Bat coronavirus HKU2, complete genome +GCATTTTTTTATTAACATTGGCAAATTTTGCAGATTTGTTTGACATACAATCCCTAGCTTTGCTTGTGGATTTAGTCTCATACACAATGGTAAGCACGTAATTATGCTAGTATGAGTAGAGTATAATTATATTGAGTCCTATAGACCAACGCAGTTAACTACATGTCCGGTGTGGCGGAGTAATCAAAGATCCGCTTGACGAGCCTATATGGAAGAGCCGTCACACCTCGTATGTATGTTGCTGCTAGTAGTTGTTAATTAGTTGATTCTTTGACAGTGATACAC +>GG697144.2/73122-72404 Mitsuokella multacida DSM 20544 genomic scaffold Scfld3, whole genome shotgun sequence. +TGAGTAGCGAAACGATCCGTGAGAATCGGATCCACCGAAAGCCTAAGGGATCCTGAGCAACGCTCGTCGTCTCAGGGTAAGTCGGGACCTAAGCCGAGGCATAAAGCATAGGCGATGGACAACAGGCGAAAATTCCTGTACTGCATGATGTTGTTTGAGGATGGAGTGACACAGCAAGGAGCTTGAGCGCGCGATTGGAAATGCGCGTCGAAGGCGGTAGGCTGGTACAGAGGCAAATCCCTGTACTAAGGCCGAGAACTGATAGATAGGAGCGTACTTCGGTACAATCCAAATTCAAGCGTACTACACTGTCGAGAAAAGCTTCTAACGAGACATCATGTACCCGTACCAAAACCGACACAGGTAGGCGGGGAGAGAATCCTAAGGTGCGCGGGAAAACCCTCGTTAAGGAACTCGGCAAAATGCATCCGTAACTTCGGGAGAAGGATGGCCGGAGCTGGTGAAGACCCTTGCGGTTGGAGCTGGAGCCGGCGGCAGAAGAGAAGCCCAAGCGACTGTTTACCACAAACACAGGTGCCTGCTAAAGAGAAATCTGACGGTTANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCATAGAGCTTGCCAGCCGTGCCGTTCAGAGCGATACCCTGATAGTTGGCAGCAT +>CP000482.1/1312853-1313047 Pelobacter propionicus DSM 2379, complete genome. +AATTGAATATCTGATCAAGGTGCCCGAGAGGGCTTGATAGGGAAGAGGGGTGCCGCTCTCAGTAACGAGCCATTCCCCCGCGGACCCGCCGCTGTAAGCGATGACGAAGGGCAGTATGCCACTGGTGAATAACCGGGAAGGCGCCCGGAGGATGACTCGCGAGCCAGAAGACCTGCCTTTTGATTATTGCCACAG +>LL238006.1/6014-5950 Echinostoma caproni strain Egypt genome assembly, scaffold: ECPE_scaffold0004910 +ATTCTGTCTGTGAGGTCCCCGATCAGGTACATTGCTGATGAGACCCAGACAGGTCGAAACAGTAG +>HF952018.1/1220924-1220795 Thermobrachium celere DSM 8682 genomic scaffold, scaffold33 +GATGTTGTTAAAGGGGAGTAGCTGCCCATTTTGGGTTGATAAAGTCAACATGCTGGCCTTTGGCCTGGCTTTATCGGACGTTTGTCAAGTGAGACCTTTAACACAATGCTTTGCATTGTGTTAAAGGTCT +>JH472210.1/112-1 Nannochloropsis gaditana CCMP526 unplaced genomic scaffold scaffold1650, whole genome shotgun sequence. +GGGTTACTCCATTGCGCTACGCGCTAGTTGATAAAAGTTCGCACCTCTATCAAACTGGGTAACCCCACCTCTTGGCAAGGCCTAATTGTCAGATCAAATCGAAACTACTTCA +>AEYP01109460.1/2187-2427 Mustela putorius furo breed Sable contig109460, whole genome shotgun sequence. +AAAAAGACACTGTGTTCGGGGATCATTTCTACAGTTTGTTGCTAGAGAAGTTTTTCTGAACATGTAGAGTACCTCAAACCATGTGGAGGAAGAGGAGTGCTCTCTTGTGAGCCTGAAGCTGGATTTAGGTGTTCTTTCCAAACAGCCAATTATGGGTGCCTGGGTTGCTCAGTTTGTTAAACAACTGCCTTTGGCTCAGGTCATGATACTGGAGTCCTGAGATCAAGTCCCACATCAGAGT +>ADNJ02000004.1/3715450-3715582 Metarhizium robertsii ARSEF 23 MAA_Scf_4, whole genome shotgun sequence. +GACAGAGTGCCCGAGTGGTTAAGGGGAGTGACTTGAAGCGCTAGGCCTGGAGTGCGAGAAATCGTATGAAGAACCGCCTAGCAATAGATATCACTTGGTTTCGGCCTCGCAGGTTCGAATCCTGTCTCTGTCG +>CCCW010014085.1/4006-862 Brassica napus, WGS project CCCW01000000 data, contig: 30103 +TATTTTTAATTCTGGTCGAACCAACTCCAAAATGGTCGAGCTGAATTTTTCTCGACCAAAATTTTATCTGCTCGTGAGGGTTATTACAGTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCCAATCGGGCGGTAAATTCCATCCAAGGCTAAATATGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGTAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGAAGTGGGCTTGCGATGCATCCCGGTCGGATGCAGAATGGAGCAATCCTGTCTGCCGATCGATTCAGGGCGTGGACCGACGCGGATTAAGGTGGTGACCTAAGCCCGGCTTTTGTTACGCCGCTACCTTAATCATTGTCTGCGGCACGAGCCTCACGGCATTCCTTGGCATCTGCGTGCTCAGGGCGTCGGCCTGTGGGCTCCCCATTCGACCCCTCTTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGTGAGTAAACCCATAAGGCGCAAGGAAGCTGATTGGCTGGATCCCTCACGGGTGCACAGCCGACCGACCTTGATCTTCTGTGAAGGGTTCGAGTGTGAGCATGCCTGTCGGGACCCGAAAGATTGTGAACTATGCCTGAGTGGGGCGAAGCCAGAGGAAACTCTAGTGGAGGCCCGCAGCGATACTAACGTGCAAATCGTTCGTCTGACTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGGTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCTCGGAAACGAGTTCTATCGGGTAAAGCCAATGATTAGAGGCATCGGGGACGCAACGTCCTCGACCTATTCTCAAACTTTAAATAGGTAGGACAGGTGGCTGCTTTGTTGAGCCATCCCACGGAATCGAGAGCTCCAAGTGGGCCATTTTTGGTATGCAGAACTGGCGATACGGGATGAACAAGAAGCCGGGTTACAGTGCCCAACTGCGCTAACCTAGAACCCTCAAAGGGTGTTGGTCGATTAAGATAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTAAAGCACGCGACCTATAACCGGCCGTCGGGCAAGAGCCATGCCTCGATGAGTTGGAGGACGCGGCGGTCGCTGCAAAAACTAGGGCGCGAGCCCGGGCAGAGCGGTCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGGGAACTTGGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAATGGCACTTTCACATGGGTTAGTCGATCCTAAGAGTCGGGGGAAACCCATCTGATAGCGCTTATGCACGAACTTCGAAAGGGGATCCAGTTAAAATTCCTGAACCGGGACGTGGCGGTTGACGGCAACGTTAGGGAGTCCAGAGACGTCAGCGGGAATTCCGGAAAGAGTTATCATTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGGCAAAGGTAGGGTCAAGTGGCTGGAAGAGCACCGCACATCGTGTGGTGTCCGGTGCATTCCCGGCGGCCCTTGAAAACCTGGAGGACCGAGTGCCGCTCACGCCCGGTCGTACTCATAACCACATCAGGTCTCCAAGGTGAACAGCCTCTGGTCAATGGAACAATGTAGGCAAGGGAAGTCACAAAATAGATCCATAACTTTGGGAAAAGGATTGGCTCTGAGGGCTGGGATCGGGGGTCCCAGTTCCGAACCCGTCGACTGTTGGCGGGCTACTTGAGCTGCTAACATGGCGAGAGCGGACCGCCTTGTGTCGGCCGGGGGACGGACTGGGAACGGCTCTTTCGGGAGCTTTCCCCAGGCGTCAAACAGCAAACTCAGAACCGGTACGGACAAGGAGAATCCGACTATTTAATTAAAACAAAGCACTGCGATGGTCCATGCGGATGCTAATGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCAGGAGTAACTATGACTCTCTTAAGGTAACCAAATGCCTCGTCATCTAATTAGTGACGTGCATGAATGGATTAACGAGATTCCCACTGTGCATGTCTACTATCCTGCGAAACTACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGAAAAGAAGACCCTATTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGAATAAGTGGGAGCTCCGGCGGGGTAACAACCCCTTCTTTTAGACCCAAGACTCGCTTTGGCGTGTCGATCCAGGTGGAGGACATTATCAGGTCGGGAGTTTGGCTGGGGCGGCACATTTGTTAAAAGATAACGCAGGTTTCCTAAGATAAGCTCGACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCAGTACGAATATGAACCGTGAAAGCGTGGCCTATCGAACCTTTAGACCTTTGGAATTTGAATCTAGAGGTGTCAAAAAAGTTACCACAGGGATAACTGGCTAGTGGCAGCCAAACGTTCATAGTGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAATGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACAGTCGTGAGACAGGTTAGTTTTACCCTACTGATGCCGGCGTCGCAATAGTAATTCAACCTAGTACAAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGCTGGATTATGACTGAACGCCTCTAAGTCAGAATCCGAGCTAGAAGGGACGCATGCGCCTGCCGCCCGATTACCGACCCTCAGTAAGAGCTTCGGCTCCCAAAGGAACGTGTCATTGGCTAAGTCCGTTCGGCAGAAGCGTCCTTTGGACCGCCTTGAATTATAATTACCACCGAGTGGCGGGTAGAATCCTTTGCAGACGACTTAAATACGCGACGGGGTATTGTAAGTGGCAGAGTGGCCTTGCTGCCACGATCCACTGAGATTAAGCCCTTTGTCGCTAAGATTCGA +>CM001407.1/48474749-48475301 Lepisosteus oculatus linkage group LG4, whole genome shotgun sequence. +AAACAACAACAACTTATCTCTTAATTTTTTTCAATCCCTCTCTTACTCAATGAAGTGGCAGAATGACCTCAGAGCAGGCTCATGTTACTGGCATCAGGTAGCCAGCACCTGCCAGCCACAACCTGCTCCAGGAACAGTGGTAGGTAGGAGATTTGACCGAGGAAGTACTATACCCATTAAAACATTATCGCAAGTATCCTAAAGTGAGGTCAAGGAGCACAGAAACCTCCTGTGGAGCAAAAGGCCACTATCTTAGCTTATGAAAACTCATTATGAATATAGATATTGAAAGTGGCAATCCTTTTGGCTTTTGGAAATTTAAGTAGAAAGTGTCAAAAAGTTACCACAGGTATACTGTAACTAGCTTTTGGAAGCCAAGCATTCGTAGAAGCATTACATTTTGATCCTTCAATGTCGGGTGTTTGAATTATTCTTCAACAAGACTTCACCTTCCGTTCAAACATTGGCTTGTTCAACCGCTAATAGGGGGAGTGATCTGTGCTGAGACTGTTGCAAGGCAAACAGGAGTTGAGCATGGGTCAGTTGGTATTAC +>JQCA01000072.1/4381-4571 Lactobacillus paucivorans strain DSM 22467 NODE_100, whole genome shotgun sequence. +TTGGTTCTAAGGTGTACGCGTTGTCTCACTACAAGTTGCCGAACAAGTAATTTATATATGGGAATGTTCTATGGTGGAGAAGATGGCAGGCCTTTTCACTTGGAAGTCAGACACTCCAACAGACATTCCCCCCTGCATTGTCATCGCGGGTCAACATGACTGGACAATTAACGGCACCACTTAGATCAACC +>KB018237.1/393050-393252 Camelus ferus unplaced genomic scaffold scaffold2244, whole genome shotgun sequence. +ATCGCTTCTTGGCCTTTTGGCTAAGATGAAGTGTAGTATCTGTTCTTATCAGTCAGGGCACCAGCAGATTCGGTGTCTGGTGAGAGCCCACATCCCGGTTCATAGACCTTCCAGCTGTAAGCTCACTTGGCGAGAAGGACCGGGGTTTTCTCTGATCTCTTTTATAAGAGCACTCATCCCATTCATGATGGCTCTGCCCCACC +>APMT01104059.1/10100-10194 Mesocricetus auratus contig104059, whole genome shotgun sequence. +GATTGTATGCTGGCACTCCCCCGATCCATTGGAATGATACAGAGAAGATTAGCATGGCCCCTGCACCTACATATTGTAGGGTACCACCTATGTTT +>URS0001A24371_12908/1-89 unclassified sequences L2-Alphaproteobacteria ribosomal protein leader +GGGGACCUUCGGGGCCCUAUACCAACGGUGGGCUUCACCCACCCUACAUAAGACGGGGAGACCCGUCUAAGCUAAACGGAAGACAGAAA +>LN907827.1/31808-32053 Erwinia sp. EM595 isolate E_g_EM595 genome assembly, chromosome: 1 +TATTCACAGCGTCAGGTAGACGAGCTTCCTCAGGAAGCGCTCAGGGATAGCCCGGAAGGCAGCAGAGCAGGGAAAAAGGATGGGGTCTGAAGGAGAGACCGTCAGGGATAAGGAAGCGCTCGGGATGAGTGGACAGCAGACGGGATAAACCGGGATGTTGATTGCATAAAGGGATGTAAAGGATGACTGTCCTTCTACGGAAGGTACGAAAAAAGGCGACAGATTGCTCTGTCGCCTTTTTTCTTT +>FR872580.1/1712617-1713059 Parachlamydia acanthamoebae UV-7, complete genome +GGGGGTGTCACGGTTTCGACTGAGAAGTCAAGTATTGATTGCATGCGGAGGATGTCGGTTGGCCTCCTAAAAAAGCCGATAAAACAATAAATGCTAACACAAATAGCAAACTAATTAGTGGTGTTGATTTTGCCGCTGCTGTAGAAGCTGATTCAGTTTCTTACGCTGCTGCTGCTTAACCTGACTAATTGGTCGCTGTATAAAGCCTAACAGCTTTATCAGCACAGCAGTCTGAGACTGGACCAAGGGTCGAGGAGTCTGCTGTCATTGACTTGGTACGGAATAAAGTCCGCCGCTTCTAGGGTTTTATTCTAAGATAAATGAAGCAAGTTAATCATAGTGTGGTGGCTGCAATGTGATTGACTTATTTTCAGCACACTAAGCATGTAGATATTAATATGTAGATTTGCCCAGGACGAGAGTTCAATTCTCTCCACCTCCAA +>JH835313.1/5567540-5567270 Erinaceus europaeus unplaced genomic scaffold scaffold00025, whole genome shotgun sequence +GGATATGAGGGTGATCTGGCTGCGACATCTGTCATCCATTGATTCAGCTGATCTGGTTGGCTAGGCGAGTGTTCTCTTCCTCCCTCATTGCTCCATGTGAGTCCCTGCCGATGGCCTTTCCCAAATAGAGAAGGGCGGGCGAGTCTTCAGTTGAGGGTATAGGAATAGCTGCGCTCCCCTGCTAGGACCTCCAAGCAAGCTCTCAAGAGTCATCTTCAACCTTAAGGTCAGCTAGACTTTTTATGTTCTCCTTGTAGATCACCATTTTACA +>CM007648.1/27503544-27503238 Zea mays cultivar B73 chromosome 2, whole genome shotgun sequence. +CATTGGTGAGAATCCAATGCCCCGAAAACCCAAGGTTTCCTCCGCAAGGTTCGTCCACGGAGGGTGAGTCAGGGCCTAAGATCAGGCCGAAAGGCGTAGTCGATGGACAACAGGTCAATATTCCTGTACTACCCCTTGTTGGTACGGAGGGACAGAGGAGGCTAGGTTAGCCGAAAGATGGGGCTAGTTTGATAACTCCATTTTCTCAAGAAAAATGAACTAATTGTTCCTGGGGAAAATGAAAATCCTTTACATCACGTTTGGATCATTGGAATCGAATTTCATTCTAATAATAGTAATTTAGGCG +>CCCW010011448.1/3522-244 Brassica napus, WGS project CCCW01000000 data, contig: 32740 +CATGGTCGGATTTTGATGTTCTAGTGTGTTTTGTTGGAAACTGTTTATGAGAATCTCTTATTTGGGAGTTATCAGAGATTATCATGAATTTTAATTAGTTTTTGGGAATTTATTTGAGTATGTTGGTTTGGACAGGTTATAGATTCTAAGTAGCCGAACCATGCTTATCTAGACTTGATGTTAGGATATCGGCCTTATGAATGTGCATTGTGTCTTGTGTGGTTTCAGGATCGGACATGGACCGTGGTAAGGGAAAGGCACCGTGAAGACTCAGGCCATGAGAAGATGTGTGGTGAATGGGTCATTGTAGATAGATGTGACATACTGATAGCCTATTGTGCAACTTGTGAACTTATGTTTGACTAAGTGTGTATAACTTATTAGGACGAACCTAAGAATGATGTATGAATCTCAGTTTATATTTATACAATTGATTTGCCCCTTATGTTTCCTTGTTTAGATTTTTTGTATTGAACCTCAGTTGAATTGAATTGAATTTACAAAGATAAGAATTAAAACTTGGTTCACTCGGACTTAGATTGAAAGGATAAGGCCGCAGATCAGTTTGAGCAGCCACAAATTTCCTGTGTGTGCTGACGGACACACACGGACGTCCTGTGTTTGCTGACGGACACCCACGGACGTCCTGTGTGTACTGAACAAACAGCCCACGGGACATCACATACAACCCTTGGTAACTAGTGACCTTTGGCCACTCGTGCCTCTTGGGACATGACCAACCGTTTAGCCCAACAGCCCAGTCTATGGTGCAATTCGAACCGACCATCTAACCGACCAGCATCTAGGTTAGCGGTTTGGTTATGACCGGCCAAGTCTAGGGACGTGTTCCTTGGACTGAACCAACACAACCCTTCGTTTATAATCAGAAAGAAGAGAAAGGGCCGGATAGAAACAAGAAGAGGAGAAGCGGTTAGGTCTAATGGACCGACCAGAGCCGCGGTGCGATCACAAGGACCGTCCGTTCGGTCTGATGGAGCCATAGGCCACCACGTACGTTCTGAACCGTGTCAGGTTTCTCCATGCTCTTCTCCTGCTCTCGGTCTCCCATACTTGATCAGAGGTTGCTTCACAAACGATCAGATCGCCGGAAACCTAACCACCACACAATCGGCCTTGCTTTGGCCGGAAACTCTCTCTTTCTTTCTTTCTCTCTCTCTATGATTTTTCTGAGTATTTTACTCTGGAATTGGATGATTGAAATTGACATAGAGGACCCCATATTTAGAGAAAATTAGGGGGTAAGTCTTGCCCAAAGAACAGGCATGACTGGCAAACGGATGGGCACAATCGGCCAAGGGTTACACCCTCTCGGCCGCATACGTCCCTTCGCCAATACCACATGGGATTGGGTCGGATAGAGGGCCACGGCCTTGTCCCAAGCCCCAACGGTCCATGGCCTCATGGCCGGACCCCCATGTCCCGCCACCAGCCCGGACCCGGGCCATCGGACCGAAACCCGAACAGTCCGTCCAGCTGAGTTTAGCTGACTCCCAGCTGTCTCAGCTGAGTGGGCTAGTAGTTCAGCTAGTGGAGCTGACTTAGTAGTGGCCGAGCTGGAGTGAGCTTAACCTAACTCCGTTGAGCTGGTCGAGCTACTTGTTCCATCCGTCCAGCTACCGTCTTACTCGTCCTAGCTGACTCTCGACTTGTATAAGATTAAGTCTAAGTTTCCTTACGTCCTTAACCTTCTTATCTGGCCATGGAACACTTGTCTTGATGTCCTAAGACTAACTAGTACGTTTCCTCGAAACATGGCCGTCCCAATGATCCTATTCAGGATCCGGGATGTTACAACGTCGGCGGGAATTTCGGAAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGCACGTCGCCTGGTGTCCGGTGCATTCCCAGCGGCCCCTGAAAATCTGGAGGACCGACTGCTGCTCACGCCCGTTCGTACTCATAACCACATCAGGTCTCCAAGGTGAACAGCCTCTGGTCGATGGAACAATGTAGGCAAGGGAAGTCGGCAAAATGGATCCGTAACTTTGGGAAAAGGATTGGCTCTGAGGGCTGGGCTCGGGGGTCCCAGTTCCGAACCCGTCGACTGTTAGTGGGCTGCTTGAGCTGCTAACTTGGCGAGAGCGGACCGCCTCGTGTCGGCCGGGTGATGGACTGGGAACGGCTCTTTTGGGATCTTTCCCCGGGCGACGAACAGCCAACTCATATTTGGTACGGATAAGGGGAATCCGTCTGTTTTATTAAAACAAAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGATGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGAAAAATCAGCGGGGAAAGAAGACCACTAATTTTAACGTTATTTTACTTACTCCGTGAATCGGAGGCGGGGTAACAACCCCTCCTTTTAGACCCAAGACTCGCTTCGGCGGGTCGATCCGGGCGGAGGACATTGTCAGGTGGGGAGTTTTTCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCTTAAGATAAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCAGTACGAATACGAACCGTGAAAGCGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTTGATGTCGGCTCTTCCTATCATTATGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTTGGTTTAGACCATCGTGAGACAGGTTAGTTTTACCCTACTGATGCCCGCGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACTGTTGATTCGCACAATTCGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGCTGGATTATGACTGAACGCCTCTAAGTCAGAATCAGGGCTAAAAGCAACGCATGCGCCCGCCGCCCGATTGCCGACCCTCAGTAGGAGCTTCGGCTCCCAAAGGCACGTGTCGTTGGCTAAGTCCGTTCGGCGAAAGCGCTGTTCGGACAGCCTTGAATTATAATTACCACCGAGCGGCGGGTAGAATCCTTTGCAGATGACTTAAATACGCGACAGGGTATTGTAAGTGGCAGAGTGGCCTTGCTGTCACGATCCACTGAGATTCAGCCCTTTGTCACTAAGATTCGA +>MJHW01000006.1/498708-498411 Roseburia sp. 831b contig000006, whole genome shotgun sequence. +GTAAACACGAGGAAAAAGAGAGTACATCCCTTAGAACTTTACAGAGAAGTTTTTGAATGAGATGCATCCGCATACATTCGCTGAGAGAAAACGGGCAAAGAGAGATGGAAGATGGCTTTGGAGTGGCAGAGCTGAACGAAAAGCACTACATTTACAAACGTAGTTGAATTTCGATAAGTTTTGACAGGACCGCCTGTTATAGCGGTAGAACGTAACAACAAATGTTGCGTCAATGAGGCTTTCTCTGCAAAGAGAAGGTAAAGAGAAGTGGTACCACGGGTAGCAGCTCGTCTTCTGG +>JH835659.1/1480072-1479972 Erinaceus europaeus unplaced genomic scaffold scaffold00371, whole genome shotgun sequence +AAAAAGCATTATCCAGCTTCCTTCCTACTCTGTCTCCAATATCTTTTTTGAACAAAAAAGATATTGGAGACAGAGTAGGAAGGAAGCTGGATAATGCCCAT +>MHBM01000110.1/8313-8490 Lentisphaerae bacterium RIFOXYA12_FULL_48_11 rifixya3_full_scaffold_2456, whole genome shotgun sequence. +AATACCCTGCCTTGTTCGCAAACAGGCTGACGTCTCTGGCCCATTAATTGTAAGTTAGGGAGTTTGAATACGGCGGCAACTGAACGCCCTTTACTGGGACTCAGGAACCGACGGATAAAGCACCCACCTCGATTTCGAGGATCAGAGATAAATGCCTCTACGACAAAGTGGGGTATTT +>CM000379.2/41198104-41197644 Equus caballus chromosome 3, whole genome shotgun sequence. +AACAAAAATGTCACGTTTAGTTACTTAATTTGACTCAACACAGGAGACCTCGCTTGGCCTGGCATGGACAAGACTGACAGGTTGATAGCTCTTTCTCTGTTCCATAGGTGGTAGAGTGTGGCCATTCTTAGTTGGTAGAGCCATTTGTCGGGCTAGTTCTGATAACAAACAAGACTCAGGCATGCTAACTAGTTATGGAACCTCCAAGCAGTGGTATCCTCCAACTTCTCAGAGGGACAAGTGCTGTTCAGCCACCCAAGGTTTAAGCAAATAACAGGTCTGGGCTGCCCTTAGATGTCCCGGTTTGCAGGCACTACACTAACTGGCTGAGTGTGGCCTATCCTGAGAATGCAGCTTCAGGTAACCCTTTGAACCCCATTCATGATGGGAATCTGGGATTACAATTATTCCCAAAGAACACAGAATTTCCATTAAGGGCCATAAGCTTGTGTTGATTGGTT +>CM000028.3/22112491-22112645 Canis lupus familiaris chromosome 28, whole genome shotgun sequence. +AGCTTTGTGCAGTGGCAGTATCGTAGCCAATGAGGTTTATCCGAGGCGCGATTATTGCTAATTGAAAAGTGAGTGCTGGCCAGGAGAACAGGTGCATGCAGATGCTCAGCAAACTTTCATTGAGCACCTATTGTGCATCACCTTCTGTTTTAGGT +>JH594435.1/493167-492948 Eubacterium infirmum F0142 genomic scaffold supercont1.1, whole genome shotgun sequence. +GAATAATAATATCATATTAATCCAGAGGAACGCATATTAGAGAGAACAGGCGCGGAACCCTGTATCGAGTGCCCTTCTTTGCAGATTCATATCAGCAGAGAAACTGTATTGTGGAGTTTTACTTATATGCCATTGGAACGAGGGACAAATTCTTCTTCCGAGAAGGCAAGTAAGACGGTGAAGCATAGCCAGGAGACTTATTAATGAGATATACACCTGA +>LL810796.1/383-1371 Gongylonema pulchrum genome assembly, scaffold: GPUH_scaffold0038229 +CTGTCGCATTTACGATGAAGTTATTGCACGGTAATAAAGAAATTACGCAGCAAATTACCGTAATTACAGTTAAGTGTCATAAAACCAATATAATGAACTATCCCAGTTACTATAATGATTTGCGTGTAATTTGAATTACTGTAATATTTGGTACCGTAGCATATGTTATTACTGGAATATATTACTGTAACGTAGGGCTACTGTAGTATGTATTAGTTTTTGGCATTCGATTACCGTTTGCCTCAGATCGCAGCCTAGAGTGGGTGGTAAACCTCATCTAAGGCTAAATACGGCCACGAGACAGATAGCAAACAAGTACCGTGAGGGAAAGAACTTTGAAGAAAGAGTTCAAAAAGGCGTGAAACTTTTTTTGCAGTAATGATAGTTTTCAGCAATTTTTCTTAGTTATAATTGAAAAAACAATTGAAATTTCGGCGTTCTCTTCAGGAGTAACTTAGCATTACTACATGTCTGCGATTTGTTACGATGCTCATCCACGACGGTACAGTGGTCTGATCACATCCCACTACTCCTACATATTGCTGTCCTGGGGCTGGATTCATTGCNNNNNNNNNNNNNNNNNNNNTTAGCGTTACTACATGTCTGCGATTTGTTACGATGCTCATCCACGGCGGTACAGTGGTCTGATCACATCCCACTACTCCTACATATTGCTGTCCTGGGGCTGGATTCATTGCGACCCACGATTTGCCGGCACGCTCGGCAGCTTCTCATCAATATTGTTCTTCTTCAAGCCGGTGAAGCAGTAGCCGCCTCACAGCTTTCCAATATTTTATTGAGCAATCAGGTTTGTCTTCGAGTTTTTTATGTTCGAGGTTTTTTCTAAGATCAGATTTTTGAGGTTTTTTTTTTTTTAAAAAACAGTACCTGCGATTTCTAATTTGCGCTTCCCGCGATCCTGGTTTTTTTTTCCAGTTAAAAAGTACCTTTTCACCCATTTCGGCCCTTTTTGGACCGGCCGTTTTTGG +>ALYE01010731.1/119708-119256 Gossypium raimondii Chr08_contig_1147, whole genome shotgun sequence. +GTCCTTATACACTGGCAACAATGTCAATGCCAATCGAGTTAATACTCAATCAGCAAAATAGCACAAAATTTCATTAATTTATTTTATGAATAGTTTAGGAACGTGGATACAAGTGGTGCATGGCTATCGTCAGCTCGTGCTGGAAGGTGTTCGGTTAAGTCCCGCAATGAGTGCAACCTTCGTGTTTAGTTGCCACCGTTGAGTTTGGAACCCTGAGTAGATTGCCGATGATAAATTGGAGGAAGGTGAGGATCAAGTCAAGTCATCATACCCCTTATGCCCTGGGTGATACACTTGCTACAATGGACAAGTCAAAGGGTCACGACCCTGCAAGAGTGGGCTAACTCCAAAAACTTACCCTCAATTCGGATTGCAAGCTACAACTCGCCTACATGAAGCTGAAATTGTTAATAATCGCCGATCAACCATACGACGGTGAATTCGTTCCTGGGC +>JOOK01005830.1/289-4 Oesophagostomum dentatum strain OD-Hann O_dentatum-1.0_Cont11200.2, whole genome shotgun sequence. +AAAGCGGATACAGGCGCAAAAGAATAATAGAATAATAGATACATAGCAGGAGATAACTGCGGCAATTCCGGAGCTAATATATGTGAATAAACCCTGATTTTCGAAAGGGTGCAATTATGAGAGCAAAACAATCATCTTCGGATGTAGTTTGCTGACTCTAAATAACGCTGCATATCGTCGGCTTGTCCAACGATATTCCGAAAAAGTGTCTGCCCTATCAATCTGATGGTAGTCTACCAGTCTACTATAGTTATTACGGGTAACCGAGAATAAGGGCTCGGTTCCA +>KB016774.1/3281454-3281537 Camelus ferus unplaced genomic scaffold scaffold490, whole genome shotgun sequence. +TGGAGTGGGGGGGCAGGAGGGGCTCAGGGAGAAAGTGTGTGCAGCCCCTGGCCCTCTCTGCCCTTCCGTCCCCCGTTCCTAGAC +>CP013118.1/3064815-3064903 Salinivirga cyanobacteriivorans strain L21-Spi-D4 chromosome, complete genome. +TGAGAACCGTAGCGAAGCGGAGCTCATGACCGTAGAGAATAACTCAGCCGAAGCCATAGTATCCCGATACTTCTAATTAGGAGAAGGGC +>FXAH01000012.1/80855-80720 Paraburkholderia caryophylli strain Ballard 720 genome assembly, contig: Ga0139045_112 +ATGAGTTCCCGTTTATTCCGTTTCCGCTGCAGTTGCGCCTTTCGACCGAACACGCCTTTCTTTCGTTCGCCGGGCGCAGCGCTTCGCTCGAAGCCGAGCCGCCAGCTCCGATGCACGAGGAGCGGCGGCTTTTTTA +>LZPO01018772.1/1933-2618 Neotoma lepida isolate 417 scaffold_18136, whole genome shotgun sequence. +CTATGACCCTGAGATTAAGAGTCTCATGCTCTACAGACTGAACTAGCCAAGACTGTGGCAGCCAAACATTCATAGTGACATAACTTTTTGATCCTTAAATGTTGGCTCTTCTTATGATTGTGAGGCTGAATTTACCAGGCAGTGGATTGTTCATCCACTAATAAGAATGTGAGCTGAGTTTAGATTGTCATGAGACAGATTAGTTTTTCCCTACTGATGATGATGTATTGTTGCCATCATAATACTGCTCAGTACAAGAGGAACCACAGGCTCAGACATTTGGTGTATGTGCTTGGCTGAGGAGCCAATAGTGTGAAGCTACCATCTGTGGGATTATGACTGAATGCCTGTAAGTCAGAATTCTGGCAGAACAATATGGCAGTGCCAAAGGAGCCTCGGTTGGCCCCAGATAGCCAGATCCCCTTCCAGCTCCATTGGCAGTCTGTCCTGTTCTCGCACATGGCGGGTCCCCACAGTGTGTTGGGACCAGAGTCTGGTATGGACAGCCATTCATACAGAGAAACAGGGTATGGCTGAAAAGGGTGCTGCCCTCTCACCCATCACATTGAACACACATTTGTGTGGAACCTGGTGCTAAACCATCCATAGATGACCTATTTCAATGGTTATAAGTTGTAATAGGGTTGTTGGTGGAACAATGAAGTCTAGACTCAGGATCCTCTTTT +>HF986408.1/139458-139379 Blautia hydrogenotrophica CAG:147 genomic scaffold, scf339 +ACAGGTATGAGCACGCAGGCATATGCGCCGGAGTGCGAATGCCTGTCGGGATTGCGGGAGTGCGATGCACGGGGCAATCC +>LBYD01000004.1/63542-63156 Parcubacteria (Moranbacteria) bacterium GW2011_GWC2_40_12 UT79_C0004, whole genome shotgun sequence. +GGGGATGCTAGGCATCGACAATTTGTTCTCTCAAAATACGCAAGCCGAGCATGACATTAGACTCGTAAAACCTTGTGTCAACGATCATAAGTGCAAACTTATTTTCAAAGGTTAAGCAAGCTTTTCAGCCTGCTTACGCCGTTGTTCCTGCCTAATTCGCGGGGACCATCAGCCTGCTGATGCCTAATAAGCAACCGCTGGTGTCATACATTGGGCTTGATTGATAGTTTTTCTCTGCGGCTATCTCTGACCATTGAGCAAAGAGGACTTTTCAAGGTTTTGTTTACTTTATACTTGAAAAGTTTCTCAAAACAAGTAAACTAAGCTTGTAGAATATTTTGGAAGATATAAATTTGGACATGGGTTCGAGTCCCATCATCTCCACCA +>CP013023.1/5009948-5010143 Paenibacillus bovis strain BD3526, complete genome. +CGATGAGGTAGAGGTCGCAGCATGAATCAGTACAACCGGAGCAGGCGTAGAGCCGCCGCGAATCCCGGTTGAAAAGGTCCTGCTGCCGAAGTGCAGATTCCGCTCTGGGAATCCTGTGCTGGGGCTGTACCCGAAAGGGACAGAACTGTCACAATGAAAAAATCCAAGCATTTCATTGTGTTGAGCTATCTTAAAG +>AFEY01018855.1/2775-2892 Sarcophilus harrisii ctg7180001412063, whole genome shotgun sequence. +GGATGTGAGGGCTATCTGGCTGCGATATCTGTCACCCCATTGATCGCCAGGATTGATTCGGCTGATCTGGCTGGCTAGGCGGGTGTCCCCTTCCTCCCTCACCGCTCCATGTGCGTCC +>CM000246.2/64301032-64300896 Rattus norvegicus chromosome 16, whole genome shotgun sequence. +TATACAAGCAGCTACTCTCTCCCTCTGGAAAGTCCAGTCAAGATTTCAGGGCCATTGCAGGAGAGTGTAGGGCAGTCAGGCGTCTAGAACTGTAGGTCCATCCAAAGGAGGTGCTTCATGGTGGTCAGCCCTTGTTT +>LPNL01000017.1/7001-6356 Hanseniaspora opuntiae strain AWRI3578 Hanseniaspora_opuntiae_AWRI3578_scaffold228, whole genome shotgun sequence. +TGCCAGAAGATTCGGTTAGACGATAAAAGCAAAGTTTAATTCAGAGTTTAAAACAGCTGTAGGCAATAAATTATACTTGAATGAATATTAAATAAGAGGTAAAATTCTAAGACTTTAATTAGCATTCCAAATAGTATAATGCTGAGAGCTAAAGCCATTACTTAAGGACTAGGATTAGAGACCCTACTACTGATGGTACTATCTATGATAATTATAGTAAACGAAAGTCAAGAATTATCTACTCGAAGATTAAGCCTTAACGGGTGAAAATCAAAGTTGAAGAGCGTTATATCATCAATTGAGTGGATCGTGCTGTTTAATTTGACAACCCCCAATAAACCTTACCTAATCTTGTATAATACAGGTGTTACATTATCGTCTTTAGGCATTATTGTGAAATTATTGCTGCAGGAGCTATTACTTATGGCCCCGTGACTGATCTACATGACTCTAACGATTAGGGCTACAGGCGCGATATCAAGAATTGAATTATGAAACTCTAATTCATGAATAAATAATCAGAAGTAATATGGTGTTAGAATTACCATATGAATATCAAAGATATAAGCTACTAATTGCCCATCAATCTCCTAGTGAGATAAGTTGACACAAAGTTACGCTAGATGAATTTGGCGTGGGAAATTAA +>LMAW01002579.1/3015099-3014999 Amazona aestiva scaffold_41, whole genome shotgun sequence. +TGCTATGATGATGTAATTTGCATCTTATCCAGTGCTCAGCGACAGTTGCCTGCTGTCAGCATGCTGGCACTGCTGAGCTGAAGACCCCTTCGTTCTGAGCA +>GL010075.1/7513268-7513324 Loxodonta africana unplaced genomic scaffold scaffold_48, whole genome shotgun sequence. +GATTCAGGGGTAGAATTCTCACCTTCCAAGTGAGAGAGGTTTGGGTTCAATTCCCAG +>APLE01005677.1/5643-4894 Erythranthe guttata cultivar DUN x IM62 scaffold_74_contig_8, whole genome shotgun sequence. +CAACGGTTGACCAAGCCGCCTTGAAGAACAGTGCTGTGTAGCCGTCTGGCCCCGGTGCTTTAGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCGAGAGGTACTCCATGCATATAACGAAAAGATAAGGGGATAGCAATTATTTGGGGGTCGACCGGTTTGCACGTTGACTGAGAGCTCAGAAAATTCCGGTAAAAGGACTCGAATTCTTCAAGTACCTCATCCCTTGAGGTAGTAACCGATTCCGTTAACGAACGAGACCTCAGCCTGCTAACTAGCTATGCGGAGGTATCCCTTCGTGGCCAGCTTCTTAGAGGGACTACGGCCTTTTAGGCCGCGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGATGTATTCAACGAGTTTATAGCCTTGGCCGACAGGTCCGGGTAATCTTTGAAATTTCATCGTGATGGGGATAGATCATTGCAATTGTTGGTCTTCAACGAGGAATTCCTAGTAAGCGCGAGTCATCAGCTCGCGTTGACTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATTGAATGGTCCGGTGAAGTGTTTGGATCGAGGCGACGTGGGCGGTTCGCTGCCCGCGACGTCGCGAGAAGTCCACTGAACCTTATCATTTAGAGGAAGGAGAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTG +>APMT01208959.1/14589-14458 Mesocricetus auratus contig208959, whole genome shotgun sequence. +TCAAACCAAAATAAGGTCATAAGGTGTTCTTCCTAGGGACCTAATATGCTGTGGCTATAAACATCAGCAACCCTGGGGGTGTATTCAACCTCTTGCTTAAATGGGTTTCCCTAAGCAAACTTGAAGACAATT +>ALWT01321998.1/3958-4053 Myotis davidii contig321998, whole genome shotgun sequence. +TGAAGGTGATGCTGCTATAACATCTATCACCCCATTGATCACCAGGGTTGATTCTGCTGACCTGGCTGGCTAGGTGTGTGTCCCTCTCCTCCCTTA +>AZNC01047644.1/7457-7628 Glycine soja cultivar W05 scaffold3943_7, whole genome shotgun sequence. +TTGCACTATGTAGTATCGTAGGTCTCTCTGATTATGTGGAGCGGCCTTTGAGCAATGGTGCATAAAGTGAGAGCTGATTAGTCAGCAGGCAGCCAGACAACTGCCGAGGTGGATCCACAGATGAACGGCTCATTTGTTAATGCTGTTTGTCTACTAATTCCACCTTACATTT +>AWGT02000388.1/78840-78931 Colinus virginianus strain Texas jcf7180006226242, whole genome shotgun sequence. +AAGCACAGCGATCACGACTGAACGCATCAATCTTTCGCCTTTTACTAAAGACTGCAGTGTCGTTTCAGCAAATAATGCGCCTCATACATCAA +>CP002637.1/13277-13481 Selenomonas sputigena ATCC 35185, complete genome. +CTATGCTACAATCAAAGAACGCAATGGGCGTTTTCTATGTTGCTCTTTTGAGAAGCCTTTTCCAGTTCGGAGCGCGGCGCCTTGGTCTTGCGCAATGGAGTCTCGTGAACCCCGTCAGGTCCGGAAGGAAGCAGCGGTAAGCGAACCGCTTCATGTGCCGCGAGGGCGCCTGGGGGTCGCGCCCCGAAGTGGAAAAGGAGTATTT +>CM000232.2/104162388-104162527 Rattus norvegicus chromosome 2, whole genome shotgun sequence. +ACATGGTTCAAACTTATAAATAAAGACTTATCTCATCCTGTGGGCCTCTCATAGTGTCCCGTGCTAGAGCAAACTGGCTCCTAACCATTGCCCAGCCTCGGTGCATGTAGGCTGCTGGCACTGAAGTGGGTCACACAGTG +>HE612865.1/664054-663926 Tetrapisispora phaffii CBS 4417 chromosome 10, complete genome +TATTGTGATGACAAGTTGTCGCCCCAGGCGGATCTATTCAGTGTATATTATTTCTATTTAAGTATAAAATAATGTGCAGTCGGAAATGACAGAAATATAACAACAAGCCAAACACTGAAAATTCTGATA +>MEPB01000070.1/175699-175987 Bacteroidetes bacterium RIFCSPLOWO2_12_FULL_35_15 rifcsplowo2_12_scaffold_36, whole genome shotgun sequence. +TACATTTGTCAACTTTTTGGTTCCTGAGTTTGATAAAATATCAAACCGGATTAAATGGGAATCAGGTGAAAATCCTGGACATTTCCCGATGCTGTAAGTTCTTATTAGTTTAAAGTTTATTTTTTAATTTTCTGGTTGTTAGACCTGAAAAACAAAAAACAAAACAAAATTCTAATATTTTTTTTAACATTCTTAGCCACTGTCTTGAATCGAATAAAGATTCTTTAAAGATGGGAAGGCGTTAAAAACAGAACAAGTCAGAAGACCTGCCAAAGAAATTAACATTTGT +>AAGB01000009.1/14123-14306 Wolbachia endosymbiont of Drosophila ananassae gdan_434, whole genome shotgun sequence. +ACTGATTCCTTTATGATGGTGTCATCCCAGTGCCCAGACACTGGGATCCAGGAAACTTAATTGCAAGTAATGCATTGGATTTGGTGAGTATGGGTTTTGCGTTATAGAATGAAGCACTTTTGGTGAATTTATAAAGAAAGCTGGATCCCAGTGTCAAGCACTGGGATGACAAGGTATAAACCTT +>NATD01000006.1/25331-26764 Candidatus Parcubacteria bacterium 4484_255 ex4484_255_scaffold_717, whole genome shotgun sequence. +TAGAGAATTAATTAGAGCATATGGTGGATGCCTAGACACCAAAAGCCGATGAAGGACGTAGCAGCCTGCGATAAGCCTCGGGGAGGCGGCAAGCAACCTTTGATCCGAGGATTTCCGAATGGGGAAACCTAGCGTTACAAAACAGCGCTGCACACCGTTTCACAGTGAATTCAAAAATCAAAAATCAAAGTGCAAAAATAATAAGAAAATTTACAAGAAACAAGATGCAATAACCAAACAATAGTCAATAAATCAATGACCGAATAATCAAACGGTTTGATTATTGAATATTGGAATTTGGAATTTGTTTGTATTTTGTATCTTGGTTATTGGTTGTTTCAAATAATTTTGATTTTTACATTTTACATTTTGAATTTACCGCGAAGCGGTGTGGGGGTACCCGGGGAAGTGAAACATCTCAGTACCCGGAGGAAAAGAGAGAAACCACCGCGCCTCACTATCGTTCGGCACGAATGTCTAATATCTAATGTCTAATTTCTAATAAATGTTTAATGTCAAAATGTCCAATGTCTAATTATTTTAGTCACTTGGTTATTAAGTCATTGGGATTTTATTAGTCATTAGGAATTAGGATTTAGAAATTCCTGTGACGAGCGGTAGCGAGGCACGGTGATATTTCCTTAGTAGTGGCGAGCGAAAGGGAAACAGTCTAAACTCTATAGAATCTTAGTTTTATAAGAGTCTTATCTTCGGATATTTCTTTTATTTAATGAAAGGTAGTAAAGCCAAAATATTCTATAAAGTGTTGTGGGGTAACTAATGTTTTGTTTTTTACTGAACAGAGTTAGGATTTAAATTTTTAGTCCAATAGCATGGAATTGCTAACCATAGAGGGTGAAAGTCCTGTAGATTAAAAAAATTTAAATTTTAATAATTAGTTATGCCCGAGTAATGCCAAACTCGTGAAATTTGGTATGAATCAAGGCGGACTATCGCCTAAGACTAAATACTTTTGGTGATCGATAGTGAACTAGTACCGTGAGGGAAAGGTGAAAAGTAGCCCGGTTAGGGCAATGAAAAGTACCTGAAACCATATGCTAACAAAGAGTCAGAGCCTTGTGCTTCGCACAAGGAAATTCAAAGCACGAAGCACGAAATCCCAAACAATATCAAAATCCTAATGTTTTAAATTCAAAACAAATTCGAGAAATTTCTGTTTTGGTCATTTGGATTTAGAATTTAAGATTTGTTTAGGGTTTCGTATTTAGAATTTTGGATTTTCTCGCGCGGAGCGCGAGGTAGGGTGAGTCTGTCTTAATTGACAGAGGAGGCCCGAACCCGTTGACCGTACAACATCATGGGATGAGCCGTGGATAGGGGTAAAAAGCCAATCGAACTCAGTGATAGCTGGTTCTCCCCGAAATAGCTTTAGGGCTAGCCCGTTCTTTACTCTCTGGGGGTAGAGCTACTGGA +>CM000129.1/18755739-18758932 Oryza sativa (indica cultivar-group) chromosome 4, whole genome shotgun sequence. +AAAGAAATCGTTAAGGGCGTATGGCGGATGCCTAGGCTTTCAGAGGCGACGAAGGACGTGGTAAGCTGCGAAAAGCTGCGGGGATTGGCACACACGAATTGATCCGCAGATATCCGAATGGGGCAACCCGGCATATTGAAGATATGTCACCTCGCAAGAGGAGCAAACCCGGAGAACTGAAACATCTAAGTACCCGGAGGAAAAGAAATCGAAGAGATTCCGTAAGTAGTGGCGAGCGAAAGCGGATTAGCCCAAAAGTCTTTTTATGTTTAGAGGAATGTTCTGGAAAGAACAATCATAGAAGGTGATAATCCTGTACTCGAAAGGCATATAGAGATGATAAATGAGTAGGGCGGGACACGTGAAATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGAAAGACCGATAGTGAACAAGTACTGTGAAGGAAAGGTGAAAAGCACTTCGAATAGAAGGGTGAAATAGAACCTGAAACCGTACGCCTACAAGCGGTCGGAGCAGCGTAATGCTGTGACGGCGTGCCTTTTGCATAATGAGCCTACGAGTTAATTTTACTAGCGAGGTTAAGGTATTAAGTACCGGAGCCGGAGCGAAAGCGAGTCTGAATAGGGCGCATAGTTAGTAGGATTAGACGCGAAACCTTGTGATCTACCCATGGGCAGGTTGAAGCTCTGGTAACACAGAGTGGAGGACCGAACCGGTTGACGTTGAAAAGTCTTCGGATGACCTGTGGGTAGGGGTGAAAGGCCAATCAAACTGGGAGATAGCTCGTACTCTCCGAAATGCATTTAGGTGCAGCGTCGTATATAAGTTTATTAGAGGTAGAGCTACTGATTGGATGCGGGGGTTTCATCGCCTACCATTCCTGACAACTCCGAATGCTAATAAATGTTCTACGGCAGTGAGGGCATGGGTGCTAAGGTCCATGTCCGAGAGGGAAAGAACCCAGACCCACAGCTACAGGTCCCCAATATATGTTAAGTTGAAGCAACGCGGTTGGACTGCATTGACAGCTAGGATGTTGGCTTGGAAGCAGCCATTCATTTAAAGAGTGCGTAACAGCTCACTAGTCGAGCGGTCCGGCATGGATAATAATCGGGCATAAACATATTACCGAAGCTATGGATTTATATTTTAGATATATCTGGTAGGAGAGCATTCTATTTGCGCCGAAGCAGTACTGTGAGGTATTGTGGAGCGGATAGAAAAGAAAATGTAGGCATAAGTAACGATAAAGCAGGCGAGAAACCTGCTCACCGAAAGACCAAGGCTTCCTCAGCCATGCTAATCAGCTGAGGGTTAGTCGGGACCTAACGCGAACCCGAAAGGGGTAGTGGATGGACATGGGTTAATATTCCCATACTTGCTCACAATAAAAGGGGACGGTTGGATGTAGCTGCTGGAGACTGACGGAATAGTCAAGGCCTAGCCTTCGGGCGAAGCTGCTGTAGTGTAATCTGATCCGAGAAAAGCCGAAGTGAAGCNACCCGTACCAAAACCGACCCAGGTGGTCGAGGAGAGAATCCTAAGGTGCTCGAGTGAGTCGTGGCTAAGGAACTAGGCAAAATAGTCTCGTAACTTCGGAAGAAGAGACGCCACAGCANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNAATGTAGGCATAAGTAACGATAAAGCAGGCGAGAAACCTGCTCACCGAAAGACCAAGGCTTCCTCAGCCATGCTAATCAGCTGAGGGTTAGTCGGGACCTAACGCGAACCCGAAAGGGGTAGTGGATGGACAATGGGTTAATATTCCCATACTTGCTCACAATAAAAGGGGACGGTTGGATGTAGCTGCTGGAGACTGACGGAATAGTCAAGGCCTAGCCTTCGGGCGAAGCTGCTGTAGTGTAATCTGATCCAAGAAAAGCCGAAGTGAAGCAACCCGTACCAAAACCGACACAGGTGGTCGAGGAGAGAATCCTAAGGTGCTCGAGTGAGTCGTGGCTAAGGAACTAGGCAAAATAGTCTCGTAACTTCGGAAGAAGAGACGCCAACAGCAATGTTGGCCGCAGTGAAGAGGCCCAGGCGACTGTTTATCAAAAACACAGGACTCTGCTAAATCGAAAGATGCTGTATAGGGTCTGACACCTGCCCGGTGCTGGAAGGTTAAGGAAGGTGCTTAGCGTAAGCGAAGGCATTAACTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGTGTAACGATCTGGGCACTGTCTCAGCCACGAGCTCGGTGAAATTGTAGTATCGGTGAAGATGCCGATTACCCGCAATGGGACGAAAAGACCCTGTGAACCTTTACTATAACTTCGTATTGACTTTGAGTAAGTAATGTGTAGGATAGGTGGGAGGCTTTGAAGCAGGCACGCTAGTGTTTGTGGAGCCGACGTTGAAATACCACCCTTTACTTACTTGGAGCCTAACTTCTTTCAGAAGGACATTGCGTGGTGGGTAGTTTGACTGGGGTGGTCGCCTCCAAAAGAGTAACGGAGGCTTTCAAAGGTACCCTCAGCACGCTTGGTAACCGTGCGTAGAGTGTAATGGCATAAGGGTGCTTGACTGTGAGACCTACAAGTCGATCAGGTGCGAAAGCAGGACATAGTGATCCGGTGGTTCCGTATGGAAGGGCCATCGCTCATAGGATAAAAGGTACTCCGGGGATAACAGGCTAGTCTCCCCCAAGAGCTCACATCGACGGGGAGGTTCGGCACCTCGATGTCGGCTCGTCACATCCTGGGGCTGGAGAAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGTGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCTCTATCTATTGCGGGCGTTAGATGTTTGAGAGGGCTTGATTCTAGTACGAGAGGACCGAATTGAACAAACCTCTGGTGTATCAGTTGTACCGCCAGGTGCACCGCTGAGTAGCTACGTTTGGAAGAGATAAGCACTGAAAGCATATAAGTGCGAAACTCGCCTCAAGATGAGACATCTTTTAAGGGTCGTTGTAGATGACGACGTTGATAGGCTATAGGTGTAAAGACAGTAATGTCATAGCCAAGTAGTACTAATTACCCGTAGATTTATAGTC +>CYGY02000008.1/113318-113432 Burkholderia sp. STM 7183 genome assembly, contig: CYGY01000008 +TCACCCCTGCGTGACTGGCGATAGAACCCGAAGCTGTCAAGCCTGACGGGTTCAAGGTGGAGCATCCCACCGTGAAGCGCAGGGTGCCGTTTTGCCGTTCGCCTGGGCAGCCATG +>ALWZ044793892.1/3195-2923 Picea glauca, whole genome shotgun sequence. +GTCTGTGATGCCCTTAGATGTTCTGGGCCACACGCGCGCTACACTGATGCAGTCAACGAGTTTTTCTCCCTGGTTCGAGAGGATCGGGAAATCTTCTCAAATTGCATCATGATGGGGATAGACCATTGCAATTATTGGTCTTCAACGAGGAATTCCTAGTAAGCGCGTGTCATCAGCTCGTGTTGACTACGTCCCTGCCCTTTGTACACACTGCCCATGGGTGTGTGTTTTTTGGTCCGGTGGGAGTGCTTTGTTGAAACCTGGAGCTCAAGT +>CM000335.3/6839130-6839055 Pan troglodytes isolate Yerkes chimp pedigree #C0471 (Clint) chromosome 22, whole genome shotgun sequence. +TGTCCTCTGGGGACTCAGCTTGCTCTGGCTGCTGGATTGAATTAGCTGCAGGACCAAGATGAGCCCTTGGTGGAGA +>AAQR03125679.1/12691-13758 Otolemur garnettii contig125679, whole genome shotgun sequence. +GGGGAGTATGGTTGCAAACTGAAACTTAAAGAAATTGACAGAAGGGAACACCAGGGTGAAAACTATGGCTTAATGTGACCCGACTTGAGAAACCTCACCCAGCCTGAACACAGACCGCTTGGCAGACTGACAGCTCTTTCTTTCTTTCCTTTTTTGTTTTTCTTTTTTTCCTGAGACAGAGTCTCACTCTGTTGCTGCTCTGTAGAGTGCTGTGCTGTCACAGCTCATAGCAACCTCAAACTCTTGGGCTCAAGCATTTATTTCTCTTGCCTCAGCCTCCCAAGTAGCTGGGACTACAGGTGCCTGCAACAACCCCTGGCTTTTTTTTTTTTTTTTTTTTTTTCTAGTTGTCATTGTGGTTTTAGCAGGCCTCGGGCTGGAACCCACCAACTCCAGTGTATGTGGCTGGCGCTGTAACCACTGAGCTACGGGCACCATCTGATAGCTCTTTCTTGATTCCTTGGGTGGTGGTATGTGGCTGATCTTAGCTGAGGGAGCAATTTGGTTAATTCTGATAACAAACTCTGAGATTCTGGCATTCTAATTAGTTAGGCAACCCCAAGCGACCCACTGTCTCAACTTCTTTTTTTTTTTTGAGACAGAGCCTCAAGCTGTCCCCCTGGGTAGAGTGCTGTGGCATTACAGCTCACAGCAACCTCCAACTCCTGGGCTCAAGCGAGTCTCCTGCCTCCGCCTCCCAAGTAGCTGGAACCACAGGCGCCCGCCACAACGCCTGGCTATTTTTTGGTTGCAGCCGTCATTGTTGTTTGGCGGGTCTGGGCTGGGGATTCGAACCCGCCACCTTAGGTGTACGTGGCTGGCGCCTTAGCCGGTTGAGCTATAAGCGCCGAGCCACTGTCTCAACTTCTTAGAGGGCAAGTGGCATCCAGCCACCAGAGATTGATGCCCTTATATTGTCCAAGGCTGTAGACGCACTGTGCCTACCCTGTCATGGATAACTTGCTGAGCCCCATTTGTGAGGGAGATCAGGGATTGCAATTACCAGCATGAACAAGGAATTCCCAGTAAGTGCGAGCCATAAACTTGTGTTTATTAAGTCCCTTTAAA +>MKQR01000007.1/110347-110112 Actinokineospora bangkokensis strain 44EHW Scaffold15, whole genome shotgun sequence. +ACACGAGAGAGGAGGTGGTCCACCAGTGAGTTCCGGTAGGACGCGTGAGGTGGCTGTCCGCTAAGGACCACCCATCAACGATGGACGCCGGCTCCGCCCACGGCAGACACCGGGTACCCGGTGCCGTAGGCGCGGCGCGTGGTCGGCGAATACCAGGCAGTCACCCGGCCCCTGGGCTTCCGTGGTAGTCCGCCACGGGCCTCCCTCGCGGAGGAGTCGCCCAGGGGCTGTGCCCT +>CM000916.2/23724354-23724270 Nasonia vitripennis chromosome 2, whole genome shotgun sequence. +AACGTGTCAAAGTCTGGTAACTCCACCACCGTTGGCGGAATGTTAAAAAGCCAATGGGGTACGAGTTTCCTACCATTGACGCGTT +>JH209564.1/9089797-9089999 Pelodiscus sinensis unplaced genomic scaffold scaffold80, whole genome shotgun sequence. +AGCTTTGCGCAGTGGCAGTATCGTAGCCAATGAGGTTAATCCGAGGCGCGATTATTGCTAATTGAAAACTTTTCCCATTCCTTTCCCTTCTCCCTCCGATCCCCCTTTCCTGTCCCTGTTCAGGGACCCTTTCTCATGAGAATCTCTTATGTCTGGAGGTACATCAGCTCATGGTGATAGGAATAATAGAAGTGGTTCCACCA +>DS546278.1/1-991 Physcomitrella patens subsp. patens PHYPAscaffold_3506 genomic scaffold, whole genome shotgun sequence. +CAAGCATTGCGATGGTCCCCACGGATGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGAAAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTAAGAGGTGTAGAATAAGTGGGAGCCCTCAAAGCGCAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCATGAGGTGGAGGCGGGACTCTGTCCCTGCTTCTAGTCTTAAGGCGCGCCCCTCGGGTGCGCCGATCCAGGTGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCATTTGATTTTGATTTTCAGTACGAATACAAACTGTGAAAGCATGGCCTATCGATCCTTTAGTCTTTCGGAATTTGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGNGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGCTCGGTGCCGCAATAGTAATTCAACTTAGTACGAGAGGAACCGTTGATTCACATAATTGGTCATTGCGTTTGGTTGAAAAGCCAGTGACGCGAAGCTACCATGTGTAGGATTATGACTGAANNNNNNNNNNNNNNNNNN +>DS232073.1/119557-119157 Culex pipiens quinquefasciatus supercont3.261 genomic scaffold, whole genome shotgun sequence. +TATCAACATGACAAGATTATTCAATTCACGGTGGGAATGATCTGCCAAATCAGCGCTAATCAATTAGCTAATTGACAAAAATCAACGCTAGTTGATTAGCGTTACTATAATTGATTAGGTGTGTCTCACCCCTCGATAGAGGACTACCATGGTTGCAACGGGTAACGGGGAATCAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAATGGCTTCCATTTCCAAGGAAGGCAGCAGGCGCGTAAATTACCCAATCCCGGCACGGGGAGGTAGTGGCGAGAAATAACAATATAAGACTCTTTTATGATGTTTTATAATTGGAATGAACCGAGCATAAATCCTTCGGTAAGGATCAAGTAGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCACT +>LZPO01108083.1/67281-67406 Neotoma lepida isolate 417 scaffold_2510, whole genome shotgun sequence. +AATGGAAATCAACTTGTTGGCTATGGCAGCCTCCCATTACAAGCCATGGAACAGCATATTCCTATTTGTTGGCAAGGCTGTCTCCATTTATTTGGTGTCTGTTTCTTATTTGCCCAAATAACTAAC +>JTHE01000287.1/5907-6033 Lyngbya confervoides BDU141951 scaffold_83, whole genome shotgun sequence. +GCCTGTCAGGAACGCGGCTACCTCCTCCCAGCCGCCTACTGAAGGTGTTTTGCAAGGGCACCTCCTCCCGCCCTTGCAACTCGTGTTGAGCCGGACCGCTACCTCCTCCCAGCGGTCCGGCTTTTCT +>CM000685.2/62840825-62842378 Homo sapiens chromosome X, GRCh38 reference primary assembly. +AGGGAACCATGAAAGAATAATTACAAATACAGAAAGGCAAAGATAATCCCTTCTAACATTTGCATAATGAATTAACTAGTATAATATTACTAAGAGAACTTTTTAGCTAAAATCCTTGAGACCAGAGGAGCTACCCATAGAAAGTCAAGAGAACACACTCATTTATACAGCAAAATAATGAGAAAATCAATGGGTAGAGGTAAAAGGCCTACCGAACCTGGTGACAGCTGGTTTTATCAAGATAGAATTTAAGTTTAACTTTAAGTTTACCTATAGAATTGTCTAATCCTATTGTAATTTTATATGTTAGTCTAAAGGGGGACAGCTCTTTAGATGTAGGAAATCACTTTTTCACTAACGGTAAGACACAAAACTCCTTTAGTTTGCCTAAAAGCAGACACCGATTAAGAAATCATTGAAGTTAAACATTTGAAACCCCTTAATTTCAATCACTACATCTAATTTCTAACACTATACTGGACCAATCTATTTTTAAATAGAAGAAATACTGTTAGTATAAGTAACAATAAATAATTGTCTTTGCATAAGCTTAGTCTTTGCGTAAGCTTAATCTTTGCATAAGCTTATGTCAAACTGGAAAATCCACTGAGAGTTAATAATCCAATACAGATAATCATATTATAAACTTTTTATTGTCCCAATTGGTAACCTAACACACAGATGCATTAAGGAAAGATTTTAAAAAGTAAAAGGAACTCAGCAAAATCAAACCCTGCCTGTTTACCAAAAACATCACCTCTGACATAACTAGTATTAGAGGCACTACCTGCCCAGTGACATAAGTTTAACAGCCACAGTATCCTGACCATGCTAAGGTAGCATAATCATTTGTTCCCAAAATGGGAACTTCCATGAATGGCCTCACAAGGGTTTAATTGTCTCTTACGTTTAATCAGTGAAATTGACCTATCTGTGGAGAGGCAGAAATATTTAAGTAAGATAAAAAAAACCTTATGGAGTTTCAATTTATTAGTAGAAATAAACTTATAAAAAAGCCTTAATAGGTCTTTTTGGGAGTAATTATTTTTATTTTTAAATATCTAGTGTACCACCATGGCATGTATTCTTTAAATTTTATACAAACAAGCACATTTTTTCAGTGTTTTGATGTATTTTCATATTTTTCTAACTTAGACGTGTAGGCAATACATTTTATCTAATGAACCAAAAATTTTGGTTGGGGTGACCTCAGAGCATAACACAACCTCTGAAATGATTTCAGCTAGGACCACACTAGTCAAGGTAATCTATTACACATTGACCCAAGTAGTTTGAGCAATGGAACACGTTACCTTAGGGATAGCAGTACAATCCTATTCTAGAATCCGTATCAGCAATAGGGTGTATGACTTCGATATTGGATCAGGATATTCCAATGATGTAACTACAATTAATGGCTCATATGTCCAATGATTAAAGTCCTATGTGATCTGAGTTCAGACCAGAGTAATCCAGGTAAGCTGCTATCTATTCAATATTTCTCTCAGTACAAAAGGACAAGAGAAACAGGGCCCACTTCAAAAAGTGCCCTCG +>DS022294.1/558139-558315 Mariprofundus ferrooxydans PV-1 scf_1099921033919 genomic scaffold, whole genome shotgun sequence. +GCGCCCCTGCGTTGAGCGAATGGCAATCATGTTGCCTGAGCCGATACTTGTTGAACGGGAGCCAAGCTACGATGGCTGTGTGAATCCCTTTAGGGGATACCTGATGCCAGAGTGCTGCACCCACCTCTTGTTAGAGGGTTCGACAACAGATTGCCGCAACGTCAACGCGGGGGCGCC +>AEUN01000020.1/91-28 Staphylococcus simiae CCM 7213 contig00020, whole genome shotgun sequence. +CTCAACAAACTTATGATGGGGTGCGCGCTTTTTTATTGTACAAGATAACGGATTTGTAGACATT +>URS0000D66E06_12908/1-81 unclassified sequences freshwater-2 RNA +CATATAAATCTTTATATGTTCTTATGCGGAACCAAACCGCGTAGGCCTAGAACGCCACTTAATTTAAGGAGAAACAAAATG +>KV442016.1/37818-37189 Mortierella elongata AG-77 unplaced genomic scaffold K457scaffold_6, whole genome shotgun sequence. +TTGAAAATGGTGCAGGAAGAGTTCTATATAGGTTTAATAGCTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTGATCCTTCGATGTCGGCTCTTCCTATCATACTGAAGCAGAATTCAGTAAGCGTTGGATTGTTCACCCACTAATAGGGAATGTGAGCTGGGTTTAGACCGTCGTGAGGCAGGTTAGTTTTACCCTATTGATGAAATGTTGTTGCAATAGTAATTGAACTTAGTACGAGAGGAACCGTTCATTCGGATAATTGTTACTTGGACCTGCCTGAGCTGGCAATGGCCCGAAGCTATTATCCATTGGGTTATGGCTGAATGCCCCCAAGTCCGAACCCGTGCTAGAACGCGAAGATTACCGTCTTTCGATTTTTTTTTTAGTTGAATATGAATAGACCTTCGGCTCCAAGATCATACTACATGGGGTTATGTTTTAGGGCTGAAGGCATTATGATGTTCCTGCTAAAACTTTATTCACGAATATCCCTTCCTCCGTACTTTAATTCGAGACAATATTGTGTCGAAAAATTTTGTGTGCTGGGCTCATGCACTTCCATATGATAACTTGCAAAAAGGGAAGCTAACTTAGTTCAAGGTCCATTTTTCATCCACAAA +>APMT01213728.1/1364-1077 Mesocricetus auratus contig213728, whole genome shotgun sequence. +TTTGTTCAACGATTAAAGTCCTACGTGATCTGAGTTCAGACCGGAGTAATCCAGGTCGGTTTCTATCTATTTACAATTTCTCCCAGTACAAAAGGACAAGAGAAATGGGGCCTCCTTAATATAAGCGCCCCTAATTAATTAATGAAACCATCTCAATATAGTAAATCCATACTATATTTACCCTAGACAAGGGTTTATTAGGGTGGCAGAGCCCGGAAATTGCGTAAGACTTAAAACCTTGTCCTCAGAGGTTCAAATCCTCTCCCTAATAGTGCATTTAATTAATAT +>DS028102.1/263782-263910 Coccidioides immitis RMSCC 2394 supercont1.10 genomic scaffold, whole genome shotgun sequence. +GGGCTGGTGGCGCAGCGGTTAGCGCGTCGGATTGCGTAAGTGGCGAATTAAGACAGATGCATCTCAGCAGCAAGCTAACCCTTTCATATAGAGATCCCAAGGTCCCCGGTTCAAATCCGGGTCAGCCCT +>CP003614.1/5692256-5692124 Oscillatoria nigro-viridis PCC 7112, complete genome. +AGGAGCCGTGTGCGGAGAAATCCGCAAGCACGGTTCTGAAGACGAGTCGCTCCGGTGACGGGGCGGCTTCGTTTAACAAGCTTACGCTGTAATCTTTGATTCAGCATAGGAGGATGTCACCGTCCGAGTTTAT +>AODI01000030.1/8750-8667 Brochothrix thermosphacta DSM 20171 = FSL F6-1036 c30, whole genome shotgun sequence. +TAAAGGTATAGAAAAAGACACTAGCGCAAACTAGCGTCCGTGTAGAACCGTTTAAGACGGTGGCTACGCAATTATAATACTAAA +>LBUD01000030.1/9979-10044 Parcubacteria bacterium GW2011_GWA2_38_13 US74_C0030, whole genome shotgun sequence. +AGGCGTGTAGCTTAATTCAGTGGTTTCCAAAACCAGGGAGTGCGGGTTCAAATCCTGCCACGCCCG +>HF998384.1/8394-8081 Coprococcus eutactus CAG:665 genomic scaffold, scf48 +GAAAATGCAATGAAGAGGAGTAGTAGAATCCTGGAGATGTTCAGAGAACTGCCGGTTGGTGTGAGACAGTGATTGAGAGGATTTGAACTCGCCTTGGAGCAGCCCGCTAAAAGATACGACGTTACACAGTAGCGTTGAGCGTATCGAGTAGGATGGGACGGAGGCTGGCCGTTATAGCAGAAGGATATAAGATATGTAAAAGATATGTATTTGAGTTGTATAAGATCTGCATGTCTGTATCTGTAACGAGAGCATATTTTGTAATTATTATGAAGTATGAAATAGAGTGGTACCGCGTAACTTACGTCTCTATA +>LKEX01010032.1/13186-15658 Cyphomyrmex costatus contig10032, whole genome shotgun sequence. +CCCGCTGAATTTAAGCATATTATTAAGCGGAGGAAGAGAAACTAACTAGGATTTCCTTAGTAGCGGCGAGCGAACAGGAAAGAGCCCAGCACCGAATCCCGCGGTTCCGCCGCAGGGAAATGTGGTGTTCGGGAGGATCCGTTTATCCCATGGTGTCGCGCCGCGTCCAAGTCCATCTTGAATGGGGCCACTTACCCGCAGAGAGTGCCAGGCCCGTAGCGACCGGTGCGCGTCTCGGGAGGATTCCTCCTTAGAGTCGGGTTGCTTGAGAGTGCATCTCTAAGTGGGTGGTAAACTCCATCTAAGGCTAAATACGACCACGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGTTGAAAAGAACTTTGAAGAGAGAGTTCAAGAGTACGTGAAACCGTTCAAGGGTAAACCTAAGAAACCAAAAGATCGAACGGGGAGATTCATCGTCAGCGACGCTGGCTTCGCGTCGGTGAGCGATGATCCTCGCGGCCCGCAGCGCGGACACGCTGCCGTGCGTCGACGTCCGGCGTACGTCGTCGTGCACTTCTCCCCTAGTAGAACGTCGCGACCCGCTGGGTGTCGGACTACGGCCCGGGTGCGGTGACTGACGCGTCGCCGGTAAAACGGCACGCGTCAAACCCCCGGTCGCCCGGCCGGCTGCCCGGCGGTACACGCACGGTATCAGGCCGCAGACAACGGTCGGGGCGCGGGGCCCCCCACGTCCTCCGTGGCGTGCGGGGGTCTCCACTCCGTCCTGCTTTGCGTCGAGGCCGTCGCAAGCGCGCGCCACGGTACACGGAGGCTTACGGACCTAGCGCCGTCACCGGTCCTGGCCCGCTGTTGGTCGTACGGTTAACCTTCGACCGGTCTACGAACGTTCCTCGCGTTTCCCCCTCGCGGGGCGGGCGCGGGGGACCGATACCGGTCGGCAACGTTACTGCTTTCGGTACTCTTAGGAACCGTCTTGAAACACGGACCAAGGAGTCTAACATGTACGCGAGTCATTGGGACTCTAGCGATACCTAAAGGCGTAATGAAAGTGAAGGTCGGCCCTGGTTGTCGACCGAGGGAGGATGGGCCGCGTCGCGATGCGGCTCCGCACTCCCGGGGCGTCTCGTTCTCATCGCGAGAAGAGGCGCACCCAGAGCGTACACGTTGGGACCCGAAAGATGGTGAACTATGCCTGGTCAGGACGAAGTCAGGGGAAACCCTGATGGAGGTCCGTAGCGATTCTGACGTGCAAATCGATCGTCGGAACTGGGTATAGGGGCGAAAGAATAATCGAATCACCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATACCTGGCACTCGGCCGTTCCGCACGGAACGCGCGCGAGTCTCATCTGGTAAAGCGAATGATTAGAGGCATTGGGCCCGAAACGACCTCAACCTATTCTCAAACTTTAAATGGGTGAGATCTCTGACTTTCTTGAACCGTGAAGTCACGAGTATCACTCGGATCAGAGTGCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGCTGTGGGATGAACCAAACACAGAGTTAAGGCGCCCAACTCGACGCTCATAGGACACCATGAAAGGCGTTGGTTGCTTAAGACAGCAGGACGGTAGCCATGGAAGTCGGAATCCACTAAGGAGTGTGTAACAACTCACCTGCCGAAGCAACTAGCCCTGAAAATGGATGGCGCTGAAGCGTCGAGCCTATACTCTGCCGTCAGCGGCAAGTGGGGCGGCCGTGTGCGCGTCGTCAGACGCGTGCGCGCCGCCACGAAGCCCTGACGAGTAGGAGGGTCGCGGCGGTGTGCGCAGAAGGGTCTGGGCGCGAGCCTGCCTGGAGCCGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATACTCCAGCGAGGCCCTGGAGGACTGACGTGGAGAAGGGTTTCGTGTGAACAGCCGTTGCACACGAGTCAGTCGATCCTAAGCCCTAGGAGAAATCCTATGTCAATGACGGCGTACGATACTCTAGTGTTGTCGTTGTCGCGCTCTCGATCTCCGACTCGCCGCCGCTCCCACGCGCGCGCGCGACGACGGGGAGGGGAGAGCGTGGTGTTTTCTTCTTCAACGAGAAGCGCTCTGACAGGACACACGCCCGTCGGGCGAAAGGGAATCCGGTTCCTATTCCGGAACCCGGCAGCGGAACCGCATACAATTCGGGCCCTCGTAAGAGTGTTCGTCGGGGTAACCCAAAATGACCTGGAGACGCCGTCGGGAGATCCGGGAAGAGTTTTCTTTTCTGTATAAGCGTTCGAGTTCCCTGGAAACCTCTAGCAGGGAGATAGGGTTTGGAACGCGAAGAGCACCGCAGTTGCGGCGGTGTCCGGATCTTCCCCTCGGACCTTGAAAATCCAGGAGAGGGCCACGTGGAGGTGTCGCGCCGGCTCGTACCCATATCCGCAGCAGGTCTCCAAGGTAAAGAGCCTCTAGTC +>ALWZ040927269.1/1-1274 Picea glauca, whole genome shotgun sequence. +TTCGAATTGGGAGGGCGATCCTCCCGGTGAACTAACCGTACCCCAAACCGACACGGGTGAACAAGTAGAGTATACTAGGGCGCTTGAGAGAACCATGTTGAAGGAACTTGGGAAAATGACCCTGTAACTTTGGGAGAAGGGGTGCTCTCCCTCCTATCTTTGGGTTGGGAAAGTGGCACATACCAGGGGGTAGCGACTGTTTATTAAAAACACAGGACTCTGCCAAATGGTAACACGATGTATAGAGTCTGACACCTACCCGGTGCTGGAAGGTTGGAAGGAGAAGTGTGATAAGCTTCGAATGGAAGCCCCGGTAAACGACGACAGTAACTCTAACTATCCTAAGGTAGCGAAATTCCTTGTCGCATAAGTAGCGACCTGCACGAATGGTGTAACGACTGCCCCACTGTCTCCGACATGGACCCAGTGAAATTGAATTCTCCGTGAAGATGTGAAGTACCAACGGCTAGACGGTAAGACCCCGTGCACCTTGACTATAGCTTCGCAGTGACAACCTCTTATGAATGTGTGGGATAGGTGGGAGGTGGGGAACTCTCAATCCTGGAATACCACTCTTTCATCTAAGGATGCCTAACCATTTCTTTCTCTAGATTTATTCTCAGGGTGGGACACTACAAGGTGGGTAGTTTATCTGGGGCAAATGTCTCCTAAAGAGTAACAAAGGTGTGCGACGGTAGGCACTTTCTATAAGCAAGCATAATGGTCTAAGCCTGCCTGACTGTGAGACTCACTGGTCGAACAGAGACGAAAGTTGGCCATAGTGATCCGGGAGTCCCGCGTGGAAGGGCTCTTACTCAATGGATCAAAGGTATGTCGGGGATAACAGGCTAATGACTCCCAAGAGCTCTTATCGACGGAGTCATTTGGCACGTCGATGTCGACTCATCACATCCTGGGGTTGAAGAAGGTCCCAAGGGTTCGATTGTTCACCGATGAAAGTGGTATGTGAGTTGGGTTTAGAACGTCGTGAGACAGTTCGGTTCCTATCTACCGCTGGTGTTGAAGGGAGAACTGTGAGGAGCCAACCCTAGTATGAGAGGACTGGGTTGGGCCAACCTATGGTGTACCGGTTGTCATGCCTAGCAGCGTTGGGCAACCAAGTTGGTATGGAAGAACTGTTGAAAGCATCTAAGCGGGAAATCCTTTTCTAGACAAGTTCTCGTACGAGGTGAAAGAACATCACTTTGATAGGCGATAGGTGTAAGCACCGCGAGGTGTGAAATGATATCGTACTAATATTTTTACTTAGTCCA +>AE007869.2/110253-110382 Agrobacterium tumefaciens str. C58 circular chromosome, complete sequence. +ATGGTGAAAGGCAGCGTCCATAAAAATAGACGCGCCCTGGAACATCAGACCGTTGAACGCTTTGACCACGGATGTACTGGCACTGACGAAAAACGGATGGAAAGGTCGGGCTCGCCCGGCCTTTTTGTTT +>LGKD01302340.1/501-591 Octopus bimaculoides Scaffold36772_contig_40, whole genome shotgun sequence. +TATAGTTTTCAAAGTGACAACTAGTCACTGACCTATAGTAATTTTTTAAATTATAGATCAGTGACTAGTTGTCACTTTGAAAACTATATAT +>AACT01052938.1/746-1 Ciona savignyi cont_52938, whole genome shotgun sequence. +AATTCTTGGATCGGCGCAAGACGAACGACTGCGAAAGCATTTGCCAAGAATGTTTTCTTTAATCAAGAGCGAAAGTCAGAGGTTCGAAGACGATCAGATACCGTCCTAGTTCTGACTATAAACGATGCCAACTAGCGATCGGGGGGCGTTACATTGACGACCCCTCCGGCAGCTTACGGGAAACCAAAGTCTTTGGGTTCCGGGGGAAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAATCTCACCCGGCCCGGACACAGTGAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCTGGCTTGCTAAATAGTTACGCGACCATCCCGGTCGGCGTTTAACTTCTTAGAGGGACAAGTGGCGTTTAGCCACACGAGATTGAGCAATAACCCCTATTTCCACAAAGGAATAAATTTTAAAATCCAATCTACGTTCAGTTTCTAACATAACACATTTTTATTTTTGTTTCTTTCGCTGCAGCGTTTATCACCAACAATTAAAAAATACATGTCATATATATATATACCAAAACAAATATGGTGTTAACTGAAAATCCAACAATTAACCAAAGAAATAAAAAATACTACAACAAAACAGGAAGGCACCAAAAAAACC +>CCCW010012867.1/738-403 Brassica napus, WGS project CCCW01000000 data, contig: 31321 +ACTCTAGTCCGACTTTGTGAAATGACTTGAGAGATGTAGAATAAGTGGGAGCTCCGTGAATCGGAGGCGGGGTTGTTACCCCTTGTTTTCGACCCAAGACTCGCTTCGGCGGGTCAATCCGAGCGGATGACATTGTCAGGTGGGGAGTTTGGTTGGGGGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAAAACAGAAATCTCATGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCTGTACGAATATGAACCGTGAAAGCGTGGCCTATCGATCCTTTGGACCTTCGGAATTTGAAGCTAGAGGCTTCAG +>AFEY01211982.1/140-48 Sarcophilus harrisii ctg7180001785086, whole genome shotgun sequence. +ATTGGTTTTCAGCCTTTTGGCTAAGATCAGTATCTATTCTTATCAGTTTAATATCTGATATGTCATCTATATGTATATACATAGGTATATGTA +>GL832959.1/2234038-2236146 Salpingoeca sp. ATCC 50818 unplaced genomic scaffold supercont1.5, whole genome shotgun sequence. +TAACTGGTCGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTAAGTATGAATAGTATTCTTGATACTGTGAAACTGCGAATGGCTCATTAAATCAGTTATAGTTTATTTGATAGTTTGCAACTCGTTTTTCGGAGCGGTGTTGTGCTAGACGGATAGCCGTGGTAATTCTAGAGCTAATACGTGCGACAAGGCCCGAGAGAGGGGTGTGTGTATGCGCATTTTTTCTTCTCGAGGGCTGCATTTGTTAGGTATAAAGCCAGCAGGAACATGACTGGTGAATCAGAATAACTTTGCTGACCGTTACACTTTTGTGTGTGATGGTGTCTCATTCGAATTTCTGCCCTATCAACTTTCGATGGTAAGGTATTGGCTTACCATGGTGACAACGGGTGACGGGGAACATTTGGTTCGATTCCGGAGAGGGAGCCTGAGAGACGGCTACCACTTCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACACAGGGAGGTAGTGACAATAAATACCAATGCACGGTGTTTTTTATGCACTGTGCAATTGGAATGAGAACAATGTAAAGACCTTATCAAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAAAAGCGTATACTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCATGCGGGGTTCACGGTGTGTGGGTGGGGGTGAGACACTGTTTCACGCGCGCCTTCTTCTGCCCCGCACTGTTTGGACTCTGCAGTTTTAATATTCCCTGGTGGCGCCTTTGGCGCGTGCCCTTGATTGGGTGTGTGTCAAGTCACGTAGTGGTGGGGCGCTGTTGGGGGCTTTACTTTGAAAAAATTAGAGTGTCAAAGCAGGCAGTCATTTGATTTGCTTGAATAGATTAGCATGGAACAACGGAAGAGGACTTTTGGGCCTGTACTGTTGGCGTGTGGTGCGGGGTGTGTGGAAGAAGAAACCGCAAGGTTTTCTTATTCCTCCCTCACCACATCGGGTCTGAAGTAATGATTAATAGGGACGGTTGGGGGCACTGGTATTTCGTTGTCAGAGGTGAAATTCTTGGATTTACGAAAGACCGCCGACTGCGAAAGCATTTGCCAAGGACGCTTTCATTGATCAAGAACGAAAGTTAGGGGATCGAAGACGATTAGATACCGTCGTAGTCTTAACCATAAACGATGCCGGCCAGGGCTCGGTGGGCAGCACAAATGTTTCAACGCATGGTGGCGCCATCGGGACCTTTAGGGAAACCAAAGCGTTTGGGTTCCGGGGGGAGTATGATCGCAAGATTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACATGGGAAGGATTGACAGATTGACAGCTCTTTCTTGATTCCAAGGGAGGTGGTGCATGGCCGTCCAGCTTTTGTTGTGAAATCTCTGTTTGATTACGGTAAACGGCGAGACCTTGACTTGCTGATTGGTGTGCGCCTGCGTTAGCAGGCGTTGGAGATTACGCGCAAGCGTGTCTTTTGATACACCACTCAGAGGGACACTCGGCGTTGCTATTGAGCGTAAGCCGAAGGAAGTTTGAGGCGATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCTGCACGCGCGCTACACTGACGGGGGCAGCGAGTATGCTTTGGGTGTTTGTGGTGGGGAAAGTCTTGTGCTTTTCTGCATTCACAAACATCTATTCCTGCGCTGGAAGGCGTGGGGACTCTTGTGAAAACCCGTCGTGCTGGGGATAGATGCTTGCAATTATTCATCTTGAACGAGGAATTCCTAGTAAGCGCAATTCAACAGATTGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGAATGGTTTAGTGAGGCCTCGGGATTGGCGCGTGGGCGCTGGCAACAGCTGCCCATGTGTTTCTTTGCTGAGAACCTGGTCAAACTTGATCATTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTC +>AGTP01003540.1/18890-19069 Ictidomys tridecemlineatus contig003540, whole genome shotgun sequence. +AAGTATTATCTCTATAAAGACTTACTAGAGAAGTTTCTCTGATTGCATAAAGAACCAGAAATCAAGGAGGTGCAGTGTGAACAGGTACTTGGTGTTGTTTTGTTGCAACTACCATTTCCCATTGATGATTGTTGTTCTCTTCCGTTTAGGGAGAGTAAGAGGGAAAGAATGCCAAGTGGT +>CM004282.1/30198321-30198152 Daucus carota subsp. sativus cultivar DH1 chromosome 5, whole genome shotgun sequence. +ATACCTTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTATAATATCTGATATGTGGGCTTATAAGTTCACACGATATTAAGGGGCTGTTTGGTTGAGAGAAGCAGCTTCTGGCTTCTGCTTCTCTTGACCCGTTTGTGTAAAGAAGTAGAAGCACTTTTA +>AACT01036598.1/1017-1 Ciona savignyi cont_36598, whole genome shotgun sequence. +TACTCTATTCAGCAGAACAAAAGCTGTTATAGGGGCCAGGCTTACGAAACTAATTGGAGAAGAACCTACCATCAAGACTCTGCAGCAACACCGCATCGAGAGCTTCTCCAAGCAGGTCCAGGGCTACGGATCCAGTCACTTTAGCAACACTCACTCCAACAGCTGGTTAACAGGATCAACCAGGCTAATGACTGGCCGTAACTACGTACAAGCCTGTGCACTCCGGACACAGACCCTGCCAACCCGCGAAGCCGTCTCAAGGGGAAGAGTCGGCGCGAACACCATCTGCCGAAACTGCGGGCTGGCAGAGGAAACACTGTCCCACATCCTGCAGAACTGCCACCGGACCAATAAGATCAGGATTCAACGGCATAACGCGGTTCTGCAGGTACTTGTCAAACATCTACGTAGGAGAAAATGGAAAATCCAAGAAGAACCATACATCCCCACTCCTACGGGCAGTGTCATTAAGCCTGATGTTCTGGCCACGGATCCTGACGGGAACGTGTTTGTCATCGATGCCGCCTGCCCCTACGAGGGTAACAAGAACTCCCTCGTCAATGCAGCAGCGGCAAAGGTGAGCAAATACACACCTTATAAACCCTCCATTCTTCATTATATAGGTGAGACCCCAACAACGGTCACTTTCCTCGGATTCGTGGTGGGAGCCCGTGGCGCAATGCCACCGCAGACACAACACTTCTGCAAGCAGGTAGGTCTTGGTAATGGCCAATTAGATCTAATGTCGGTACGGGCCATAGAAGGAAGCCTAAAAATCTTCCGATTATTTATGGCCCTGTAATATTAACTCGGGTACGCACCCACGAAGTATACGCAAGTGGTACTTCGGTAATGCGAAAAGACACGGTGCTATCGGACCTGACCTTTATGGTAAGGACCCGCGGCACCAAGTCAAACATAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCGCTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGG +>MHIF01000055.1/14859-14981 Candidatus Buchananbacteria bacterium RIFCSPHIGHO2_01_FULL_46_12 rifcsphigho2_01_scaffold_5410, whole genome shotgun sequence. +GACCTAACCCTTGGGTAATTTATCTAAGGCATGGTCGAAAAACTCATCCTACATAAAGACGGTCTTCCGTCCAGTACTTGTAGGATGAGTCTATGCCCAAAAGGGTATAGTTGGTATATCTAA +>CP002273.2/732628-732803 Eubacterium limosum KIST612, complete genome. +TTAATAACTTAATGATGCTGTTTTGTTAGAGGAAAGCGGTTGAAATCCGCTACAGCCCCCGCTACTGTAATTGCAGACAAGATCCTCATAGACCACTGTCAGGCGTATCCTGACGGGAAGGGAGGATGGAGAAGGAAGCAAGAGTCAGGACACTTGAAGCAAAGCAATATAATCAC +>AAGJ05103349.1/43054-43146 Strongylocentrotus purpuratus Contig103349_fixed, whole genome shotgun sequence. +CCCGCCAGCCCGATCATTTTTGTGTTTATGCAACTTTTGTATTTTCACCGATCAGAGTAGTTGCATAGTCACAAAAGTGATTGGGAGGGTTGG +>MLAU01031941.1/12573-12707 Lupinus angustifolius cultivar Tanjil contig_31941, whole genome shotgun sequence. +CTTGTGGGGAATGCTGTCCGGTTCAAGGACATAACACTATCTTTACAACCTATGATATATATAATTTGCGGATTGTATAATCGATTTTGTGTTATGACTTAGTGTTTCCTCGGACCAGGCTTCATTCCTCTCAAT +>KB096275.1/1122699-1122634 Helobdella robusta unplaced genomic scaffold HELROscaffold_19, whole genome shotgun sequence. +TCCTATGATGAACCTGGCTTAGGAAGTGCCGTCAGATACATATATGATGATCGCTATTAGCTGATG +>CM002813.1/58122422-58122133 Capsicum annuum cultivar Zunla-1 chromosome 2, whole genome shotgun sequence +TTAATTTGACTCAACATAGGAAAACTTACTAAGTCCAGACATGGTAAGGATTGATAGACTGAGAGCTTTTCTTTATATAATGGGTGGTGGTTCATGGCCATTCTTACTATATGGAGTGATTTGTCTAGTTAATTACTGATACGCCTAAATTACACCTCTTTTTTGAGAGAGTAAGTGATCTCTATCAAATATAGAACTCAACTGGGTTGGGTGTCGAATCACACAAGGAATATTGTGTTCACTAAATATTGTGATTGTTATTAGACTGTTGATCTAAGGTTCCTGAGTAC +>GL378484.1/35805-36021 Volvox carteri f. nagariensis unplaced genomic scaffold VOLCAscaffold_163, whole genome shotgun sequence. +ACTTGGACAAGGCGGCTGGCGGTAACGCAAGCGAGCCCGGAGACATCGGCATCGGCCCTGGGAAGAGTTCTCTTTTCTTTTTAACAACCCGAAGGCCCTGGAATCGAATCATTCGAAGATAGGGCTCAGAGGTTGGTAAAGCACCGCACTTCTCGCGGTGTCCGGCGCGCCGTTGACGGTCCTTGAAAATCCGGGGGAGCATTTCCGATCTTGCCAA +>AFSB01153275.1/28776-28952 Heterocephalus glaber contig153275, whole genome shotgun sequence. +ATCGCTTCTCAGCCTTTTGGCTAAGATCAAGTGTATTATCTGACTGTCTTCAGGGCTTTGCTCTCAGGGTAGGTTAATGCACAGGAAGTATTCACAAATGTGGAGCTTACCCACTTGAGTAAGCCCCACACACGCTTGAACACTAATCATCTGAAAAGGTTTTAGGATGTAAAAGTT +>EU151723.4/3777-3872 Opium poppy mosaic virus isolate PHEL5235, complete genome. +GCAATATAGTGGGAGCCGGGTCCTGGTAAACAGGTTGAGTTGGTCTCGTAATCTCGGGTGGACTGCCAATCCACCGTCGCACCACTCTCATGGGCT +>JMQN01000048.1/178591-178475 Marinobacterium sp. AK27 AUG5_contig_7, whole genome shotgun sequence. +CTATCTTGGTCGGGGTGCCCCGTCATTGGCGTTGGAACGCGAATGGTACGGGCTGAGATTAAACCCGCTGAACCTGATCCGGCTTGGACCGGCGTAGGAAATCGAGATATTCCGTAT +>URS0000D69473_1118056/1-77 Anaerococcus obesiensis ph10 skipping-rope RNA +AATCATAGAGGTTAAGAAATCTGCCGATAACGCTATTTTATAGAAATGTGGGAGAGGAGGCAGTCCCACCTATGTTT +>JRRC01354207.1/1-1013 Gossypium arboreum cultivar AKA8401 contig_36035_3, whole genome shotgun sequence. +CGTAAACCGTGAAAACGGGGTTGTGGGAGAGCAATAAAAGCGTCGTGCTGCTAGGCGAAGCGGTGAAGTGCCGAACCCTAGATGGCGATAGTCCAGTAGCCGAAAGCATCACTAGCTTACGCTCTGACCCGAGTAGCATGGGGCACGTGGAATCCCGTGTGAATCAGCAAGGACCACCTTGCAAGGCTAAATACTCCTGGGTGACCGATAGCGAAGTAGTACCGTGAGGGAAGGGTGAAAAGAACCCCCGTCGGGGAGTGAAATAGAACATGAAACCGTAAGCTCCCAAGCAGTGGGAGGAGCCCAGGGCTCTGACCGCGTGCCTGTTGAAGAATGAGCCGGCGACTCATAGGCAGTGGCTTGGTTAAGGGAACCCACCGGAGCCGTAGCGAAAGCGAGTCTTCATAGGGCAATTGTCACTGTTTATGGACCCGAACCTGGGTTATCTATCCATGACCAGGATGAAGCTTGGGTGAAACTAAGTGGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGGATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGCTGGTTCTCCCCGAAATGCGTTGAGGCGCAGCAGTTGACTGGACATCTAGGGGTAAAACACTATTTCAGTGCAGGCCGCGAGAGCGGTACCAAATCGAGGCAAACTCTGAATACTAGATATGGCCTCAAAATAACAGGGGTCGAGGTCGGCCAGTGAGACGATGGGGGATAAGCTTCATCGTCGAGAGGGAAACAGCCCGGATCACCAGCTAAATATCCGGACTATTCTACAGGTTTCCACTTTCCTTCAATCCGTTGAAATTTCAACAGATGAAACTTGTAGATAAAAAAGACTTAGGTACAATGGTGGGAATTTAATGCTTGAACGGGGACAACACTGAACCAATTCCATTGTTTGTCGAGTTAGTCGATCTTGAGCCCATTGAAAATGTCGTTCTATTAAGTAATCAATTAAAAAGCATGATACGGTTTTTATTGACATTTTTTT +>KI545835.1/844-926 Toxoplasma gondii VEG unlocalized apicoplast scaffold scaffold00504, whole genome shotgun sequence. +GGATTGATGTCTGAGTGGTCAATAGAAATAGACTGTAAATCTATAGAAGTTATTCTTCATCGGTTCAAATCCGATTCAATTCA +>KQ435742.1/1845933-1846233 Melipona quadrifasciata isolate 0111107301 unplaced genomic scaffold scaffold54, whole genome shotgun sequence. +GAGTTCCCTCGAGTAACGCGGCGGAGCCACAATCGGAGTTCTCAGTGACTCTCAATGCTCTGAGGAAAGTCCCTGGACCTTGGACAGAAAGTGTTCGTAGCATCGCCGTTACTAGCCTCTCGTCGTCTTTCTCGAACTTGAGACAGGAAGCTTCGGCCGATCTTTTCGGGTTAGGACGAGAGTGTATTGGTCAGAGGAAAGTAATGCGTTTCAAATCAAAAAATTCTCTCTTTCAATCTCCCTTTGTGGAGAGAGAAACTGAGAATTTGTCCAACTAAACAGGGCTTACTACGAGGGAAAA +>KE148148.1/1651271-1651071 Ophiostoma piceae UAMH 11346 chromosome Unknown scf03, whole genome shotgun sequence. +TCAGCTCTCTTTGCCATGACGGCTTAGATCAAGTGTAGTATCTGTTCTTTTCAGTTTAACAGCTGAAAAAGCCTTACTGAGGCTCTTCTGTTACGCTAATTTTTGGCAACTTGGGCAGGGCGGTCGACTGAGCTCGTCTCGCGCGACCATCCGTCCACGGTGTCCCTGGTATTTCACTGCTTCCAGGCGACGCGAACCCAC +>FR887668.1/64445-64618 Firmicutes bacterium CAG:41 genomic scaffold, scf118 +AAGCAAGGTAGAGGTGCGCTTGTGTATTAGTATGTATACGGAGATATGCAATTATCTTTGATGTATACGGAAAGGACACAGTGCCGAAGTTTGAATATTATTGCGAATATTCATTCTGGGCATATCGTTAACAGCGGTATGACTGTCATCGTAAGGTGGGGAGCTATCGCTGTT +>ASAF01228276.1/12168-11615 Nicotiana sylvestris Nsyl_contig228276, whole genome shotgun sequence. +CATAAAAAAGTTTTGAATTCTTAATTAATTGTTTCCGATTCACCGGATCTTACCTCTTTTGAAAGGAGTCAATAAAAAGTCAAAATATGGATTAACTTAAACTAATTTAAAAATTAAATCGAANTCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGATGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCTGTAGGTGGCTTTTTAAGTCCGCCGTCAAATCCCAGGGCTCAACCCTGGACAGGCGGTGGAAACTACCAAGTTGGAGTACGGTAGGGGCATAGGGAATTTCCGGTGGAGCGGTGAAATGCGTAGAGATTGGAAAGAACACCAACGGCGAAAGCACTCTGCTGGGCCGACACTGACACTGAGAGAAGAAAGCTAGGGGAGCGAATGGGATTAGATACCCCAGTAGTCCTAGCCTTAAACGATGGATACTAGGCACTGTGCGTATCGACCCATGTAGTGCTGTAGCTAATGCNAGTGATAAAGGAGGTAGGGGTGCAGAGACAGCCAGGAGGTTTGCCTAGAAGCAGCCACCCTT +>CP001097.1/1124998-1125215 Chlorobium limicola DSM 245, complete genome. +ATAAGTAATAACAGTTACGGTTTCCGGCGCCTGGAAGGGCGCCGGAATGAAAAGGGAACCCGGTGAAAATCCGGGACAGTGCCCGCTGCTGTGATCCCCCCGTCGGCATCTGCCGGCGGCGCGGTGCTTCCGAAAAGGCCACTGGTCCGCGCCTGCGGACCGGGAAGGCCGGAAGCATGGGGAGAGTCAGAAGACCTGCCGTAACGAAGTAATGCTTC +>KK502588.1/105838-105391 Glossina austeni unplaced genomic scaffold Scaffold188, whole genome shotgun sequence. +AGAAGAAAAGATAGGGAAGTGCTGGCTGCAGCCTACTGGGAAGATGGCCAAGGTCCGAATATAAGCGTGTAACACAGATTGATAGCTTTTTCTCAAATCAGCGGATTGTGGTGGATGATCGTTCTTAGTTCTTATTACAAAAAGATGTTTTAAGGGTTAAGGTGTTGAAGCTTTTATGGAATCTGTTTATAAAAGTGGAACCGTATCTGTTAGTTTGTGTTTTTATAGGAGAAAATAATGCGATTAAGCAATGACAGCTCTGTAGCGCCTTTATATGCCCTGGGCTGCACAATGAACGTATTAATATATATTCCCTAGACCTAGTGATCCGGATAAATCGCTGGACCACTTTCAGACTTGGAATTGTGAAATGAAACTGTTCATTTGGAACTTGGAATTCCCAGTAAGTGTGAGTCGTTAATTCACATTGATTGAGTCCATGCTCTTT +>AFSB01210878.1/11034-11234 Heterocephalus glaber contig210878, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATCAGAAACCAAACAAACCCCAAACAAGATGAAATCCATAACGAAAAACACAGTACTAAAACTGTCATTTACCAAAGATAAAAGGATGCATAAGAAAAGCAGTCAGAAATTTTTGTAAAAATTTTTGAGCTCACTGGGGATTTAGCTCAGTGGTTTGACCGCCT +>MLAU01024954.1/4432-4362 Lupinus angustifolius cultivar Tanjil contig_24954, whole genome shotgun sequence. +CTTTTTATGGTGAATTAGTGTCCCAATCGATTTAAGATTGAATAAAAATGGTTCGAACCCATTTGAGGGGA +>AACT01006374.1/1536-1721 Ciona savignyi cont_6374, whole genome shotgun sequence. +TGGTTTGTAATGTTGAGATTGATATATGAGTTTGCAAGAAAGCTGGCTATTTTGTTGGTTTTCGGAGAGCGAGGTAATGATTAAAAGAGACAGACGGGGGCATTCGTACTGTGCCGTTAGAGGTGAAATTCTTTGGATCGGCTCAAGACAAACGACTCGAAAGCATTAGCCAAGAATGTTTTCTTT +>CH990426.1/969-1 Drosophila simulans chrU_M_6102 genomic scaffold, whole genome shotgun sequence. +TTAGGGTATTTCCGGGGGGGTTTTTTAATGGGATTAAAATTTGTTTTTTTTCTTATGTTCTTCTTATTAAAAACCTGCATTGGGGTTTTTAAACGAGTGTTTTTTTGGGGCGGGTATTTTTCTTTTGAACAAATTAGAGTGTTTAAAGCAGGTTTCAAATGCCTGAATATTTTGTGCATGGGGATAATGAAATAAGACTTCTGGTTTGTTTTCATTGGGTTTTCAGATCAAGAGGTAATGATTAATAGAAGCAGTTTGGGGGCATTAGTATTACGACGCGAGAGGTGAAATTCTTGGACCGTCGTAAGACTAATTTAAGCGAAAGCATTTGCCAAAGATGTTTTCATTAATCAAGAACGAAAGTTAGAGGTTCGAAGGCGATCAGATACCGCCCTAGTTCTAACCATAAACGATGCCAGCTAGCAATTGGGTGTAGCTACTTTTATGGCTCTCTCAGCCGCTTCCCGGGAAACCAAAGCTTTTGGGCTCCGGGGGAAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAAACTTACCAGGTCCGAACATAAGTGTGTAAGACAGATTGATAGCTCTTTCTCGAATCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTCGTGGAGTGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCAAATATATTAAATAGATATCTTCAGGATTATGGTGCTGAAGCTTATGTAGCCTTCATTCATGGTGGCAGTAAAATGTTTATTGTGTTTGAATGTGTTTATGTAAGTGGAGCCGTACCTGTTGGTTTGTCCCATTATAAGGACACTAGCTTCTTAAATGGACAAATTGCGTCTAGCAATAATGAGATTGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCTGGGCTGCACGCGCGCTACGAATCCACCA +>CP000682.1/2154080-2154188 Metallosphaera sedula DSM 5348, complete genome. +GCCGGGGTGCCCGAGCGGACCAAGGGGGTAGGCTCGAGACCTTTCCAGCGTTAAAGCGTGCGACCTACTGTCTCTCCGAGACACGCGGGTTCAAATCCCGCCCCCGGCG +>CBUU010045831.1/1-300 Eimeria praecox, Houghton, WGS project CBUU01000000 data, contig: Eph_scaff15802_1 +GAGCAATGCGGAAGACACAGTGAGGTGGGGAGTTTGGCTGAGGCGGCACATTTGTGAAACAATAGCGCAGGTGTTTTAAGGCAAGCTCAATGAGAAGAGAAATCTCATGTTTACCAGAAGGGGAAAAGCTTGCTTGATTTTGATTTTCAGTACGAATACAAACTGTGAAAGCATGACCTATCGATCCTTTAGGTCTGAGAAGCTTTCAGTTAGAGGTGGCAGAAAGGTTACCACAGGTATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGG +>KB016908.1/814362-814466 Camelus ferus unplaced genomic scaffold scaffold638, whole genome shotgun sequence. +ATTTCAAAAAATTATCCCCAGGAGGGCTCTGGACCCCTCGGCATTGTATCTTCAGTACCGGCAGCTTGCAGTCCACCAGTTCAATCCTCAAGCGCCAGAACACGG +>JQBS01000032.1/75904-76076 Carnobacterium divergens DSM 20623 NODE_75, whole genome shotgun sequence. +ATAAAAAATAGAGGTGCAACAATTATCAGTAATTAGTTGGAGGTTTGACAAAACCTGTGAAGACTAGTGAAAGGAATTTTTGCCGAAACAAAAAACTGTCATCTTTTTGTTGGGTCTTAGGTTGAATAAGCCGAGAACTGTCGCTTATCTTTAAGCGTTGCGCTATCTTACTG +>CM000839.2/46388956-46388601 Glycine max cultivar Williams 82 chromosome 6, whole genome shotgun sequence. +CATTAGAGCATTAAGAAGACATTTCCCTAGTACAAGAATATTGGGAAGGACTCACCTTCGGTGTGCCAGTTATCGTGCCCAGCCACGGTAAACGTTGGGTTGCCAAGTGTGGAGTAGATAATTGCTGAAAGCATCTAAGTAGTAACCCTAAGGTGAGTGCTTTCATATTTCAACTTCCCCAAAGCCTCCGGTAGCACAACTGAGATAGTGATGGGTTCTCTGGCCCAACAGGGATGAAGTGAAATTTTTTAAAGAATTCAAGAGAAGGTCACAGTGAGATGAGTTGTTGCTAATTAATGATAGGTGTCAAATAGAAATGCAATGATGTATGTATCTGAGGCATCCTAACAAACCGT +>ALWZ040783527.1/524-606 Picea glauca, whole genome shotgun sequence. +TATGGCATAGGATGTTATATCTTATTCTACACACTGAAATTACCGTGTAGATAACTATACACCTCTGACAAGCTGATGCCAAC +>AAYZ01665444.1/416-340 Ochotona princeps cont2.665443, whole genome shotgun sequence. +TGCTCTGATGACACAGGTAGCAAATAGGAAGTGCCGTCAGAGCGAGAACTGACGATCCTGGAGACGCGTGTCTGAGC +>AFYH01197597.1/1946-2009 Latimeria chalumnae contig197597, whole genome shotgun sequence. +TACACTTTAGTGAAGGCTATATAGAAAACCTTTCAAAGGCATATGTAGTCTGATGTTGTGTGTA +>MHXH01000017.1/67050-63467 Parcubacteria group bacterium RIFCSPLOWO2_01_FULL_48_18 rifcsplowo2_01_scaffold_382, whole genome shotgun sequence. +GGGCATATGGTGGATGCCTTGACTTGAGAAGGCGATGAAGGACGTGGCGTGGCTGCGATAAGCTTCGGGGAGGCGCTTAGCAACCTATGATCCGGAGATTTCCGAATGGGGAACCCCCGCCGTGCAAACCACGGCGAGCCGTGCTTTGCACAGAAATCCGAAGTACGAAATACGAAATCCGAAACAAAAAGCTTCGAATTTCGATATTCGAATTTCGAGTTTCCGCGCAGAGCGCGGCGGCGTACCCGCTGAATTGAAACATCTTAGTAAGCGGAGGAAAAGAAACCAACATTCAGCTCTACGCTGTGCTAACTAAGTTACCTGCTCAATTTTTTGGATTTGGAGAATAAAAAAAGAGGACCGTCGCGCGCGGCGGTCCCAGAACTCAAGCACCCCGAGGACAGAAGTCAAGCAAGGGATGCTGATAGTATTATAGCATGCTGGTAGGTTTTGTCAAGAGTCCAAAAATTTGAGCAGGTATAAGGTTGGAACAGTGTTCTACTGAATCATTCCCTTAGTAGCGGCGAGCGAAAAGGGAGGAGCCTAGAGCTCGGGTGTGCAGCATCGGGAAGCTTCAAATTTCAAAGTCCATATTTCTATTTTTTTCGCGAAGCATATTTCAAATTATTTCAGAAATATGTGGAAATATATAGAAACTCAGAAATATGCGGACATATTTTGTCATTTGGAATTTCCGCTGCTGTGCATCTGGGCAGTTGTAAGATAGTAACGTCTTCCTGATTTATCAGAGAGGGGGGGTGTAAGTAAGACTTCGTTAGTAGAACAACTTGGAAAAGTTGGCCAAAGAGGGTGATAGCCCCGTATGCGAAAACGGTCTTATAACCCCAGTTATTATCGACTCTTTAGAGTCGGAGCTATGATATTTTTACATGTCGTAGTTTCTTGAGTACTTCGACGACAGAAAGCGTCGGAGGAAACCGCGAGTACTATCTCGCAAGGCTAAATACTTCTCAAGATCGATAGTGAACAAGTACCGCGAGGGAAAGGTGAAAAGTAGCCCTATTAGGGCAGTGAAATAGTACCTGAAACCATATGCTTACAAGGAACCGAGGCTGAGCATCTCACTGTCGTGAGATGCGGAATATAGAATCTTGAATTTTGAATTTGGAATGATTATTCCAAATTCTCCCGCCAATCTCCGAAGGGCGAAGCCCTAGGCAAGATTGGCGAGGATCCCGTACTGTCCGCGATGAAGATAGGACAAAATCTTCATTCGGAGATTGGCGGGACCCTAGCCAACTGTAGCCGCTCTCCCGCTTTCAGCGGGATCGCGGACAGTTGCGGGACAACTTCTTCCGCCAAAGGCGGATCCGCCTCAGGCGGAAAATTCTGCACCGAACGAGAGTGAGGTGCTTGGTGACGGTGTGCCTATTGAAGAATGAGCCAACGACTTTATCTATGTTGCAAAGTCTAATCCCGAAAAGGGAGAAGGCGCAGGGAAACCGAGTGTTAAAAGCGCGTTACTTTAGCTCGATAGCTTTTTAGCTCAACAGCTCGTTAGTTTTCTATCGAGCTAACGAGCTAATCGGCTAACGAGCTTAAGTTAGCAGCATGGATAAGACCCGAAACCAGATGAGCTTGCCATGGCCAGGATGAACGCCGGGTAACACCGTCGGGAGGTCCGAACCGGTGGGTTGTGCAAAACCCTCGGATGAGCTGTGGTAAGGAGTGAAAAGCTAATCGAATCTGGTAATAGCTGGTTCTCCCCGAAATCGCTTTAGGGCTAGCGGCGTTTTATGTCATGCCGGAGGTAGAGCTACTGGATGATCCTCAAAGGGCGAAAGCTCGGATGATCAATCAAACTCCGAATGCCGGCAGGATTACAACGCTAGTTAGACCGTGGGGGCTAAGCTCCATGGTCGAGAGGGAAACAGCCCAGATCGCCGTCTAAGGTCCCTAAATTCTTGCTAAGTGTAAAAGGTAGTAATCAGCCGAAGACAGGTAGGAGGTTGGCTTAGAGGTAGCCATCCTTTAAAGAGTGTGTAACAACTCACTATCATATCGGCCGCATCTCACTAAGGCGAGATACTTGAATGACCAATTTCTAATTGACCTAATTTCTAATAAATTTCCAATACCCAATTTCGGAATTCGGTTACTGGGATTTATTTAGAAATTAGAAGTTAGGATTTAGAAATTTGAGCACCGAACTTTAGTGAGGTGCGGTTGATTGGCTGGTTGCGCCGAAAATGTACCGGGGCTAAGCAAGATACCGAAGACGCGAATTACCTGCTCAAATTTTTGGACTAATAAAATAATAAAAAAGAGGCCACCCATTGACGAATGACCCCTGACCTGACTCGTGGAAGTTCTTGTTAGACGACTATGGTCGTAACGACCGCGACGATCACCCAAGAGCCGTAGATGAGTGTTCCTTTCATGGGTTCAACTCTCCACGCTTCGATCATGCGGCTTTCCGTAGCTCATGATCATTGAGATCGTTATCGCCCCAAAGACTAATGCCGAAACAAGTGAAGAAGTCGGTTCCACGACAAGCTCCTTGATTGAGGGTTCGTTGCAATTATAGCATAAAGTTAAGTTTTTTGTCGAGAGTCCAAAAATTTGAGCAGGTAGTGGTAGGGGAGCATTTTGTGCGCAGCGAAGGTTGACCCGCGAGGGCGACTGGAGCGCACAGAAGAGAGAATGTTGGCATGAGTAACCAACAATGCCGATGAGAAATCGGCACTCCGTAAGCCCAAGGTTTCCGTGGCAATGGCAATCAACCACGGGTGAGGCGGTCCTAAGCCGATGGCGAAAGCCGAAGGTGATGGACAGACGGTTAATATTCCGTCCCACCGATACTATTTCGATGGAGCGACGGTTGAAATAAGGCCGGGCGTCTTAATGGTTTGACGCTGTTTGCTTGAAGGAATGTTGGACAGGCAAATCCGTTCAACTGTCTTTTATGGCAAATTCCGAAAGCAGACGAAAGTTTTGGTTTTTACCAGGGCAATCCGGCTGAAGAGCGATCCAAGAAAAACTTCTAGAGTTAATAGTATTGGTTCCGTACCGCAATCCGACACTGGTGGGCGGGGCGAGTAGCCCAAGGAGAACGAGTGAGTCCTCGTTAAGGAACTCGGCAAAAAAGCGGCCGTAAGTTAGCGATAAGGCCTTCCCGAGCACCGCAAGGTGCGAGGGACGCAGCGAAAGTTTGCCTGGCGACTGTTTATCAAAAACACAGCTCCCTGCTAACTCGTAAGAGGATGTATAGGGGGTGACGCCTGACCGATGCGAGAAGGTTAAACGATGGGGGTCGTATGCATCTCACTAAGGCGAGATACTTGAATGACCAATTTCTAATTGACCTAATTTCTAATAAATTTCCAATACCCAATTTCGGAATTCGGTTACTGGGATTTATTTAGAAATTAGAAGTTAGGATTTAGAAATTTGAGCACCGAACTTTAGTGAGGTGTGTACGGCTCACTGTTGTAAGCCCTCGTCAATGTCAGCGATAACTATAATCGTTCTAAGGTAGCGCAATTCCTTTCCGGGTAAGTTCCGGAGCGCACGAAAGGCGTAACGACTGGGCAACTGTCTCAACGAGGAGCTCGGTGAAAATG +>ABRO02033478.1/54894-54660 Dipodomys ordii contig_33478, whole genome shotgun sequence. +GCTGGGCGCTGTGGTGCGCCTGTAATCCCAGCTATTCGGAAGGCTGAGTCCAAGAGTTCTGGGCTACAGTGCGCTATGCCGATCGGGTGTCCACACTAAGTTCAGCATCAATATGGTGACCTCCCGGGAGCGGGGAACACCAGGTTGCCTAAGGAGGGGTGAACCGGCCCAGGTCAGAATTGTGACTGTGGTTCTGACATAGGAATAGACAGGTAGAACAATGAAACAGACTAGT +>ABGB01001252.1/615-1121 Enterocytozoon bieneusi H348 ctg01_717, whole genome shotgun sequence. +CATTAGGTTGATTCTGCCTAACGTAGATGCTAGTCTCTGAGATTAAGCCATGCATGTCAGTGAAGCCTTACGGCGGAACGGCGAACGGCTCAGTAATGTTGCGGTAATTTGGTCTCTGTGTGTAAACTAACCACGGTAACCTGTGGCTAAAAGCGGAGAATAAGGCGCAACCCTATCAGCTTGTTGGTAGTGTAAAGGACTACCAAGGCCATGACGGGTAACGGGAAATCAGGGTTTGATTCCGGAGAGGGAGCCTGAGAGATGGCTCCCACGTCCAAGGACGGCAGCAGGCGCGAAACTTGTCCACTCCTTACGGGGGAGACAGTCATGAGACGTGAGTATAAGACCTGAGTGTAAAGACCTTAGGGTGAAGCAATTGGAGGGCAAGCTTTGGTGCCAGCAGCCGCGGTAACTCCAACTCCAAGAGTGTCTATGGTGGATGCTGCAGTTAAAGGGTCCGTAGTCGTGAATGCAATTAAATGTCGTTGTTCAATAGCGATGATTGCT +>KV453914.1/432734-432532 Candida tanzawaensis NRRL Y-17324 unplaced genomic scaffold CANTAscaffold_6, whole genome shotgun sequence. +ATCATCAGTAGTGGTTATACTATATCTAATATATATAACTATTATTTCATAAAGATCTTGGATGGAGGCATGCATATCATAGATGTGTGCAGGCTGACCATTTAACTACCCATAGCTAAGCATTCGTTGACCTAACTAACAATTGGGCCACAACGAGTGTTTCGTTTCGGTCTTTTAGATTATTACGTTTGTTGACGGCATTC +>CM000034.3/40324702-40324549 Canis lupus familiaris chromosome 34, whole genome shotgun sequence. +AGCTTTACGCAGTGGCAGCATCATAGCCAATGAGGTTTATCTGAGGCACGATTATTGCTAATTAAAATATGGAGGCAACATCTCAAATTCCACCCTGGTTCATTCAACTTTCTGGAGACATCTAGCTTTTTAGCAATCAGATCATGCTATTCTG +>JYDM01000907.1/879-1 Trichinella sp. T8 scaffold908s, whole genome shotgun sequence. +GTATCATTCCTGGGGGAAGTGGCGCGGAAGGAAGGTTACCAGGTCATGATAGAGCCTAAGGTGTCAACCCCGGTCGGCGCGCTCAAGCCCGACCTCCTTCTCATCAAAGCCGACACTGCATTCATTGTGGATGTAGGCATTGCGTGGGAAGGTGGACGCCCACTAAAGCTGGTCAACAAAATGAAATGTGACAAGTACAAGATTGCCATCCCGGCAATTTTGGAAACATTTCACGTTGGCCATGCTGAGACGTACGGCGTTATTCTGGGCAGCCGCGGATGCTGGCTCAAGAGCAACGACAAGGCGTTGGCATCAATTGGGCTCAATATCACACGGAAGATGAAAGAACACCTGAGCTGGTTGACGTTTGAAAACACCATCCGAATTTATAACTCATTCATGAAGAACTGAGGTTTTTGTTTTCTTTTACCTTTTACCATTTTTTATTGTTACATTGTTGTTATTTGCTTTAATCCTGCATTTTACCGTCGGCAATTCCATCGTTATTATTACTGTTATTGTTATTATTATTACTATTGTTATTACTTTTACTTACTATTGTTATTACGATTTATTTCGTATACTTACGTTATTGTTACTACTACTTACTTTGCTCTCGCAAACGTTCGTTGTTGTTACTTTTGGACCAGGTTTAGAGAAATCGCACGCACAGCGGAACTGGACCGCTTAAGCCAGAAACAGTAAAGTAACAATAGCCAAATGCCTCGTCATCTAATTAGTGACGCGTATGAATGGATCAACAAGATTCCTTCTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCTGACTCTGTGAA +>MEUW01000021.1/52640-49699 Candidate division WWE3 bacterium RBG_19FT_COMBO_53_11 rbg_19ft_combo_scaffold_7, whole genome shotgun sequence. +AAGAAGGTCTTTTTATAAGGTAGATGAAGGATGCCTTGGGGCAAAGGGCCGATGAAGGACGTACTAGGCTGCGATAAGCCTCGGTGAGCTGCCACGAAGCGTTATTAACCGGGGATTTCCGAATGGGGTAACCCAATCCGTAAGGATTACGCTTAAGCCAAGTTCCTGCCTTTTGGCGGGATAGTAACTTAAGTGAGGGAACTCAGCGAAGTGAAACATCTCAGTAACTGAAGGAAAAGAAAGAGAAGCGCTTTATGCGCGGGTTCCCTAAGGACTCTCGCGATTTATTTCGCGGGAAACCTTGGGGAATCTTCGATCCTCCGAGTAGCGGCGAGCGAAAGGGGGGAAGCCTAAACTCCGGCGCAAGCCGGAGGGTTGCAGGACCTGCATTAGGAAAATTATTGGTAGGAGAATGCCCTGGAAAGGGCGGCCATAGAGGGTGAAAGCCCCGTAACTTAAACTGGTAATTTTCTGGCGGGAATCCTAAGTATCACGAGAAAAGTGAAAGCTTGTGAGAATCGAGCCAAACCACTGGCTAAGGCTAAATACTCTTTGCCACCGATAGTGAACAAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGTAAGGGGAGTGAAATAGAATCTGAAATCATCTACTTACAAGCAGACGGAGCCCGCAAGGGTGACGTCGTGCCTATTGAAGAATGACCCGAGGAGTTATCGCCAGCAGCAAGGTTAATCGCGTCAAACGCGGCGAGCCGTAGCGAAAGCAAGTCCTAAATGGGCGAATAGTTGCTGGTGGTAGACCCGAAACCTGGTGAGCTAGCCATGGGCAGGATGAAAGCCGACGAGAGTCGGCTGGAGGTCCGAACCGATGTGCGTTGCAATGCGCTCGGATGACCTGTGGTTAGGGGCAATATACCAATCGAACCAGGTGATAGCTGGCTCTCCCCGAAATGTATTTAGGTACAGCCTTGCAAAGTAACGAAGGGGGTAGAGATACTGGAAGGAATGCCGAGCCCGCAAGGGTATCGCTTCCTACCAAACTCCGAATACCTTCGCGAAATTTGCAGGAGTGAGCAGGCGGGAGCAAGTTCCGTCGTGCTAAAGGGAAACAGCCCAGATCATCGGTTAAGGTCCCTAAGTTGGATTTAAGTGGGAAAGGCAGTGGAATTTCTTAGACATCCAGAAGGTAGGCTTAGAAGCAGCCATCCTTGAAAGAGTGCGTAACAGCTCACTGGTTGAGAAATTCTGCGCCGAAAATGTAACGGGGCTCAAAATCCACACCGAAACCGTGAACTCGCCGCAAGGCGAGTGGTAGGGGAGCGTCGCCACAGCAGTGAAGCTGGATCGTAAGGTCCGGTGGAGCGGTGGCGAGTGAGAATCTCGGGATGAGTAACGTTTGGCGGTGAGAATCCGCCTCGCCGGAAGTTCAAGGTTTCCTCCGCTCTGGTCGTCATCGGAGGGTTAGTCGGTCCTAAGCCGAGGTCGAAAGACGTAGGCGATGGGCAGGGCGTTAATATTCGCCCACTTCCGTCCGGTTCGATGGGGTAACGTTTTCCAAAGTTGCGAGCGTCCGCATGGTTGGGCGTTCGGCGCACCAAGGTGCTTTGTTGGCAAATCCGCAAGGCATAAGCCAAGGTGTGACGGGGAGTCCCGTAAGGGACAACTCGTGAGGCTGGAGAACCAAGAAAAACCTCTAAGTTATGCCGGACGGGATCCGTACCGCAAACCGACACAGGTGAACTAGGTGAGTAGCCTAAGGCGAGCGGGATAACGTTCTTTGAGGAATTCGGCAAGTTGGCCCCGTAAGTTCGCAAGAAGGGGTGCCCCGACTTAAACGTCGGGGTCGCAGCAACAAGGCTCAAGCGACTGTTTAACAAAAACACAGGTCTCCGCTCAACCCGTAAGGGGATGTATGGGGGCTGAAGCCTGCCCAGTGTCCGTCGGTTAAGGAGAGGTCTGAGATTATTTCAAGGATCGAACCTAAGCCCGGATGAACGGCAGCAGTAACTATAACTGTTTTAAAGTAGCGAAGTTCCTTGTCGGGTAAGTTCCGACCCGCATGAAAGGCTTCACGACTTGAGCACTCTCTTAAAGAATGACCCGGTGAAATTGAAATGGCCGTGAAGATGCGGCCTACCCACAGCAGGACAAAAAGACCCCGTGGAGCTTTACTGTAGCTTGACATTGGTTTGATGATCGGATTTGTGTAGCGTAGGAGGGAGCCGCAAGGCGCCAATGAAACACCTCTCGATTTGATCCTCAAATCTTACTTAGGCGGTTAACCCGTCTGGGAACAGTGTCTGGTGGGCAGTTTAACTGGGGCGGTTGCCTCGCAAAGAGTAACCGAGGCGCCCCAAGGTCGGCTTAGTCTCGATGGACACGAGACTGTAAGTGCAAAGACATATGCCGGCTTGACTGCGAGACCAACAAGTCGAGCAGGTGCGAAAGCAGGGCTTAGTGACCTGTTCACTTCGAGTGGCGGAGTGAACAACATCGGACAAAAGCTACCCCGGGGATAACAGGCTGATCTCCTCCAAGAGTCCATATCGACGAGGAGGTTTGGCACCTCGATGTCGGCTCGTCCTATCCTGGGGCTGAAGAAGGTCCCAAGGGTTTGGCTGTTCGCCAATTAAAAGGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGACTCTATCCGCTGTGGGCGTTTAGCTTTTGAGGGGATTTCTCTCTAGTACGAGAGGACCGAGAGGAGCCAACCTCTGGTGTACCGGTTGTCCTACCAAGGGCATAAGATATGCCGGGTAGCTATGTTGGTAAGGGATAAGCGCTGAAAGCATCTAAGCACGAAGCCCACCCCAAGATGAAAAGCAGACCCCTTGTAGACTATAAGGTTGATAGACGGCAGGTGGAAGCGCAGTAATGCGTTAAGCCGAGCCGCACTAATAGGTCGTTTGATCTTCTTTT +>APMT01169783.1/38025-37737 Mesocricetus auratus contig169783, whole genome shotgun sequence. +AGATGTGAGGGCAATCTGGCTGTGGCATCTGCCATCTCATGAATCACCAGGGTTGATTTGGCTGATCTAGCTGGCTAGGCTGGTGTCCTTTGTCTCCCTCACCATGCTTTGTGCATCCCTCCTAAGGCTGCACACTCAGTCAAAAAGGACAACCTTCCCCAACTAGAGAAAGACCTATCTTCAGTTAAGAATATACTAGTAGCTGTGTTCCCCTGATAGAACTTCAAACAAGCTCTCAAGGAACTACTTAAGTGGGGCCAGTAAGAACTTCGGTGCATGTAACTCAGTT +>JJRN01037118.1/15094-15301 Fulmarus glacialis contig37118, whole genome shotgun sequence. +AATCCAGTGAAGGATTCACTGAAGGAAACTGCTTCAAATCCTGGATTCAAGCAAATTAGGAAGTTTGAACAAGGAAAAGACCTATAGGTGAGTTCAGATCTTCAGATTACCCCAAAATACCTTTTGTTCTAAGTTAGCTTACCTAGAGTTAAAACCTTGCTCTGCTTTCTATTTTTGCTCAAACTGACGTATCAGCAGAAGGTGTGGG +>JJRE01079984.1/1-608 Phoenicopterus ruber ruber contig79984, whole genome shotgun sequence. +TTTTCATTAATCAAGAACGAAAGTCAGAGGTTCGAAGACGATCAGATACCATCGTAGTTCCGACCATAAACGATGCCGACTGGCGATCCGGCGGGGGTATTTCCATGACCCGCCGGGCAGCTCCCGGGAAACCCAAGTCTTTTGGTTCCGGGGGGAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAACCTCACCCGGCCCGGACACGGACAGGATTGACAGATTGAGAGCTCTTTCTCGATTCCGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGGTTAATTCCGATAACGAATTAAGCGCGCCCTCCCTCCATTCCCTCCGCTGCGCGGTGGAGGTTTTGGACTTGCGACCTCAGATCAGACGTGGCGACCTGCTGAATTTAAGCATATTAGTCAGTGGAGGAAAAGAAACTAACGAGGATTCCCTCAGTAACGGCGAGTGAAGAGGGAAGAGCCCAGCGCCGAATCCCCGCCCCACGGTGGGGCACGGGACATGTGGCGTACAGAAGCCCCCCTCCCCAGCGGCGCTCTCGGGGGACAC +>JXUM01141515.1/11783-11841 Aedes albopictus isolate Foshan contig141515, whole genome shotgun sequence. +TAGCCTAGTGGTTAAGGCTATGGATTGCCAATCCGGAGACGGCGGGTTCGATTCCCGAT +>JH836770.1/104900-105236 Erinaceus europaeus unplaced genomic scaffold scaffold01482, whole genome shotgun sequence +GGATGTGAGGACAATCTGGCTGTGACATCTGTCATCCCATTGATTGCCAGGGTTGATTCAGCCTATCTGGCTGGCTGGGCAGGTGTCCCCTCCTCCCTCACCTCCCTCACCGCTCCACGTGCATCACTCCTTTGAAGAGGACAGCCTTCCCAAATAGAGATGGACCAGTCTTCGGTCTAGGGTATACAAATAGCTGCGCTCCCCTGCTAGAACCTCCAAACAAGCTCTCAAAATTGTCAAACCCTTAGTCAGACTTACTAGAAAAGGGCGGTGGGCTAGAAGATACAAATATATAGAACTGTAAACAATAGAGGAGATACTGCCCTCCTTACTAGTT +>CP003597.1/1039739-1039660 Chroococcidiopsis thermalis PCC 7203, complete genome. +ATCGTTCATCTCTCTTAAAAACACTCTTCACCGGATGCTGAGAGAGACGGAAGTAAGGAAATATCCAGAAGGAACGCACG +>APGL01003207.1/3249-3375 Dendroctonus ponderosae Seq01003220, whole genome shotgun sequence. +TGAGGGGTTTTTAGTGGGTAGGCAGCCCCACGGGACTGAATCCCACATAACCTAGCCGACAATGAACATCGTCGGCACAAAATCCAGCACAACATCGGCTGGGTATCTTTGGAAGATTTTCCCCTCA +>KK198759.1/5784749-5784536 Eucalyptus grandis cultivar BRASUZ1 unplaced genomic scaffold scaffold_7, whole genome shotgun sequence. +TAGCGACTGTTTATTAAAAACACAGGACTCTGCTAGGTGGTAACAGGATGTATAGAGTCTGACACCTGCCAGGTGCTGGAAGGTCGGAAGGAGAAGTGTTATAAGCTTTGAATGGAAGCCCCAGTAAACGGCGGCAGTAACTCTAACTGTCCTCTTTTCTTATTTATTTGACTCTATTTGAAGTATATTTCTTGCATCTTTTTTGTAATTATTA +>KB317698.1/876973-877093 Rhizoctonia solani AG-1 IA unplaced genomic scaffold scaffold3, whole genome shotgun sequence. +GTCCTCTTCGGAGTGACATATACAAAAATTGGAACGATACAGAGAAGATTAGCATGGCCCCTGCACAAGGATGACACGCTAGTTCAGAGTGGACGGTCTACGGACCGCAATATTTATTTTT +>MJEQ01005272.1/36510-37593 Nicotiana attenuata strain UT scaffold05272, whole genome shotgun sequence. +TACCTGGTTGGTCGTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCTATGCATGTGTAAGTATGACCAAATTCAGAATGTGAAACTGCGAATGGCTCATTAAATACGTTATAGATTGTTTGCTGGTATCTACTACTCGGATAACCGTAGTAATTCTAGAGCTAATACGTGCAACAAACCTGACTTCTGGAAGGGTTGCATTTATTAGATAAAAGGTCGACGCGGGCTCTGCCTGTTGCTGCGATGATTCATGATAAATCGACGGATCGTACGGCCATTGTGGCGGCGACGCATCATTCAAATTTCTGCCCTTTCAACTTTCGATGGTAGGATAATGGCCTACTATTAGACCCTAACTCTCTTTCATCGGGCGTGGCACGCCTATGGCAAGAATTTGGGTGTGATTGCCTTGTCATTGGCCTATGTGCGTGCGAAACGATCATGCGGACGATGGACAAGATATTGTCATTGAGGGCTGTTGTGGGCAAGTATTGGCCAAGGCCTTGGGACAGGCAAGGCGCGCTTTTCAAAGGCTTGACAAAGCAGCGTGGGCAATGTTAGGGCGGCATGGCACGACATGCACGCCAAAGTCAGTGGAACGACACTTTGGGTTGTGGCAGCTAAGTGCGGGCTAAGCTAAGGCAAGGCGAAAATGCGGGATGATGGCAAAGGCTTTCAATAGCTAAGGCAAGGCTTGTGAAGGAAAATACAAGCAATGGCACGAGGGAAATGAAGGTTGACATGGACAAGGCAGAAACTAAGCCAAGGCAGTGCGCGGGCGGCAGCGACGTCGGGCGTGTGTGGCCAAATCATGGCAGCAGGTTGCGGGCAAGTCATTGGCGCAGAGCAATGTCAAATTGAGCTAAGGCTTGGCACAAAGCAAGCCTTAGGCGTGATTCAGCTGGCCAAGTGAAGATGGCACATGCAATGCACATGAAAAGCAGTTTTGGTGGTTACCTTGTCAGTAACCTCTTTGTCCCATGACTGNCGCGACGTCGCGAGAAGTCCATTGAACCTTATCATTTAGAGGAAGGAGAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTG +>CP001848.1/3411853-3411422 Pirellula staleyi DSM 6068, complete genome. +GGAGTTGGGCAGACGACCGCTGGCTGCCATTTGGCAGCGAGAGGAAAGTCCGGGCTCCACAGGACAGGGTGGTCGATAACGTCGACCGGTCGTGAGATCAGGGACAGTGCCACAGAAAACAGACCGCCGCTGCGGGCATGAGCCCCCGTCAAGGTTTGATTGTCTGCATGCGGTAAGGGTGAAACGGTGCGGTAAGAGCGCACCAGCAGTCGAGGCGACTCGGCTGGCTAGGTAAACCCCGCCCGGAGCAAGACCAAGCAGAGAGCATGTTGTCGGTGTCACAGCCGACAGCCGGAATCGGTTCGGTTTCGTATGACTCTCGGGTAGGTTGCCGGAGCTAGCGAGCAATTGCTAGCCTAGAGAAATGGTCGTCAGACGTTTTCGATCCGTCGAAGACGCCAACAGAACCCGGCTTATTGCCTGACTCCGAAA +>APMT01097187.1/1014-904 Mesocricetus auratus contig097187, whole genome shotgun sequence. +GTGCTTGATTCAGCAGCACATATGTTAAAAATTGGAACAAGACACAAAAGATTAGCATGACCTCTGTGCAAGAAAGTATCCAAGGGGGCTGGAGAGATGGCTCAGAGGTTA +>GG697144.2/1-676 Mitsuokella multacida DSM 20544 genomic scaffold Scfld3, whole genome shotgun sequence. +AGGCTACGAAAGCGGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATGCTAGGTGTAGGAGGTATCGACCCCTCCTGTGCCGGAGTTAACGCAATAAGCATTCCGCCTGGGGAGTACGGCCGCAAGGCTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGTATGTGGTTTAATTCGACGCAACGCGAAGAACCTTACCAGGGCTTGACATTGAGTGAAAGGGCTAGAGATAGTCCCCTCTCTTCGGAGACACGAAAACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATCCTTTGTTGCCAGCACATAATGGTGGGAACTCAAAGGAGACTGCCGCGGACAACGCGGAGGAAGGCGGGGATGACGTCAAGTCATCATGCCCCTTATGTCCTGGGCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCATTGCGGAAGATTCCCCACTGCTGCCTCCCGTAGGAGTCTGGACCGTGTCTCAGTTCCAATGTGGCCGTTCATCCTCTCAGACCGGCTACTGATCGTCGCCTTG +>CP000270.1/1720642-1720704 Burkholderia xenovorans LB400 chromosome 1, complete sequence. +CCGTCTCTCAGGTTCTAGCACGGCCCTCGGAATGGCTAGAACTTTTGGGTATACGGATTTAAT +>KX552040.1/184526-184806 Kaumoebavirus isolate Sc, complete genome. +CCGAGTCTCAGATTAAAGCTGAGGCTAGTTACGCATTAATGAAAAATGCTAGCTACATTCGTAAATTGCGGGAAAATCTCACGATTAATAACACCATTAGCAGCTTGAGAAAGTTGCTGAGAACCTCAGGGAAACTTGAGAACAACGGTAAAAGATTATTAATAGAGACAATCCGCAGCCAAGCTTGTGAAGAAATATCTACACAAGAAGGTTCAGAGACTTTATACGAATGGGCGGTTCTACCGCTTAAGATAAAGTCCATGCCCCACTGTGAAGTGGAT +>LVLJ01001741.1/199221-199340 Marchantia polymorpha subsp. polymorpha scaffold2490, whole genome shotgun sequence. +ATCTTTGCGCTTGGGGCAATGACGCAGTTCATGAGGTGAAACCGCGTCAATTGCTGGTTGAAAACTATTTCCATAAACCCAAAATGTTCTGTGGATTGAATTTAAGTAAAATGCGTGCTT +>CYZX01000004.1/41603-41740 Clostridium disporicum strain 2789STDY5834856 genome assembly, contig: SCcontig000004 +TAGTTTTGTGTTTTCTAGTGTGTAAAAGTCTAAGGAATTTTCTATGACTTTTACGCCTGAATGTTTATCATTCACAGGGCAGTAATTGAAAAGTTATTGTCTCCACGTATTTTGGGAAGGAAAATAAGTAGATTTAAT +>JPGV01000050.1/11129-10707 Chlorobium sp. GBChlB GB_Chlorobi_Contig_4394, whole genome shotgun sequence. +AAGCTGCGCGGCGGCGGTCGCTGCTCCGACAGGTCGGAGCAGAGGAAAGTCCGAACATCACAGGGCTGGGCGCCGGACAAGGTTTTGTCGGCAACGATGAAACACAAGTTCGGGCGGGCGAAAGCAATTTCGCTCGACAGATAGCGCAACAGAAAGCAAACCGTCTCGACGCAAGTTGGGATAAGGGTGAAACGGCGGTGTAAGAGACCACCAGTTAACGCAGTAATGCGTTAAGCTCGGCAAGCCTCCCCGATGCAAGACTATGTAGGAAAACTTTTTCCGCGAGGAAAAAAGAGTTGCCCGCTCAATTCATGCGCTTTCGGGCGCGGGAGAGTTTTCGGGTGAGTCGCATAGATAAATGACTGCCTCTCGTTCAAGCACTTGAGCGGGAAACAGAATTCGGCTTACAAGCGCGGCTTCATT +>CM001455.1/27997587-27997665 Oreochromis niloticus linkage group LG12, whole genome shotgun sequence. +GGCCTGCAAAATCCAATCACCACCTCCTCGCGGTGTCGGCTGGAAACAAGATCCTCTGGAACTTGGCTAACGGTGATGG +>APLE01000910.1/95410-95331 Erythranthe guttata cultivar DUN x IM62 scaffold_7_contig_2, whole genome shotgun sequence. +GCCTGTGATGATGCTTTATTCAAGAAATGCATTTATGCATTCATGTTGAAAACTCCATTTTGACTAGGACGGTCTGAGGC +>JZQY01000031.1/173164-173396 Nitrospira sp. OLB3 UZ03_NOB00100CONTIG000031, whole genome shotgun sequence. +GCGTCCCGGTAACGGGACCGTGGGTTCGAATCCCACCCTCTCCGCCATACTAGTGTGTTCGACCTCCGGCCGGTCTCGTAAGAATGTGGCGGCGGAGTCCGCCGTCGATGGTGATAGGGGCCGGGCCCTGTGCAACAGAACTCTGTGAACCCCGCCAGGTCCGGAAGGAAGCAACGGTAAGCGGTCCGTTCTGTGTGCCGCAGGATCACCTGGCCCCGCTAATTCTGGGACGT +>CM000401.2/17156931-17157025 Equus caballus chromosome 25, whole genome shotgun sequence. +TATGGAATCGCTGGATCATATAGTGGATGTATATTTTGAGAAATTGCCAAACTTTTTTCCAAAGTGCTTGTACTATTTCACATTTCACTAGCAAT +>CM001002.2/3260960-3260256 Mus musculus chromosome 9, GRC primary reference assembly. +GAGGGGTGTGGGTACAAAACTGAATCTTAAAGGAATTGATGGAAGTGCACCACTAGGAGTGGAGTCTGCAGCTTATTTTTGACTCAAAATGGGAAACCTCACCTGGCCTGGATATGGACAGCATTGACAAGATTGTTAGCTCTTTCTCAATACCATAGATGGTGGTTCATGGTAATTCTTGGTGGAGTAATTTCTCTGGTTAATTCTGATGAGAAATGAGATTCTGTCATGCTAACAAGTTATGAGACACCCACACACACACACAAGCAGTCAGCATCCTCCAATATTTTGAGGGACAAGTGGCATTCAGCTGCCTGATGTTGAACAATTACAGGTGCATGATGCTGTTAGATATCTTGAGCTGCACACCCATGACACTGACTGTCTCAGCATGTGCCTACCTTATGCTGACAGGCATGGGTAACCCGTTGAACTCCATTCATGCTGGGTGGATAGGGGATGGCAATTTTCCGTACGAATGAGGAATTCTCAGTAAATGTCAGTCAATAGATTGTGTTGACCAAGTCCCTGCCCTTTGTACACACTGCCCATCCCTACTACCGATTGGATGGTTTAGAGAGGCCCTCAGATCGACCCCACCAGGTTGGCACCTGGCCTGATCAGAAATTTGAGAAGATGGTTGAACTTGACTACCTACAGGAAGTAAAAGTCATAAGAAGGTTTCTGTAGGTGAACCTGCAGAAG +>JH836513.1/219899-219725 Erinaceus europaeus unplaced genomic scaffold scaffold01225, whole genome shotgun sequence +AAGACTGTACTTTCAGGGATCATTTCTATAGTTTGTTACTGCTTCCTTCTATGGTATCTAAATACAAACTTCTGTAAGAGCAGGAATTTTTCCTGTTTTAGCAAGCTTTAGTCCCAAGAATAGCAGACAGTAGTTTGCACATACCTTTTAAAAATGAATAAGGGATATTTTCTAA +>DS562880.1/7595309-7595616 Cavia porcellus supercont2_25 genomic scaffold, whole genome shotgun sequence. +AAATGCTGTATTAGCTGGCTATGGCTTCTGTCACCCCACTGATTGTCATGGCTGATTCTGCTGATCTGTCTAGGTGGGTGACCCCTTCCTCCTTCTCCCTCGCTGCTCCATGTGTATCTCTCCTGAAGCTATGTACTCAGTGGAAGAGAAAGATCATCACTGATAGAAGAGGACACTTTCCTCAGTCAAAGGTATACAAGTAGCTGTACTCCCCTACTAGAACTTCCAAAAAAGCTCTCAAAAAGTCATATACTTGCCAGGGTTACAGCTCAGCAGCAAGGCACCTGCCAGGCAAGCATGAGGTCCTG +>CCCW010013542.1/2343-2238 Brassica napus, WGS project CCCW01000000 data, contig: 30646 +AATCCGTGGTGTGGACATTCTCGCTGGAAAAACCTAAATCTAATCCACGTATCTTTGAAGGACTCTCCAGCCTTCTGCGAGAATGTGGAAATTTTGTTCCGAAGTT +>Y11506.1/699-3910 Pamaria palmata 5.8S & 28S rRNA genes, ITS1, ITS2, IGS +GGATCTCAAATCAGACAAGATGACCCGCTGAATTTAAGCATATAACTAAGCGGAGGAAAAGAAACTAACAAGGATTCCCCTAGTAGCGGCGAGCGAAGCGGGAACAGCCCAAGATGAAAATCCCTTCGGGGAGTTGTAGTCTGAGTGTCCTTGGGTGGGTCAGTGCGGGCAAGTCTTCTGGAATGAAGCGCCATGGAGGGTGAGAGCCCCGTCCATCCCGCACAGGATCCATTCGTACAAGGACGCTTCAACCGAGTCGGGTAGCTTGGGAATGCTGCTCTAATTGGTGGTAAATCTCATCAAAGGCTAAATAGTGGTGGGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGGAAAGAACTTTGAAAAGAGAGTGAAAAGCACTTGAAACCGTCACGGGGGAAGCGGATTGCGTGAGTGATGGTGTCGCTTGTTCAGCGCTTTATTGCGTGCATTCTGGCGGCGCCGTGCCGGCGTGGCTGGCTGGACTGTGATTTTGACAGTCTCGGCTGGTGAGGGCTCCCTCGTATGAGGTGAGGACGCGGGCAAAATGACGCAATACGACCCGTCTTGAAACACGGACCAAGGAGTCTAGCACGGCTGCGAGTCGAAGAGTGATTAAACTCAAGGGCGCAGTGAAAGCGAAATTATAAGCAAATTGGGGAGGCGTTGCGTTTTTAACAAAATGTCCTACCTCGAGCATTTGTGCTGGGACCCGAAAGATGGTGAACTATGCCGGAGTAGGGCAAAGCCAGAGGAAACTCTGGTGGAGGCTCGTAGCGATGCTGACGTGCAAATCGCTCGTCGAACTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCTCTCAGGATAGCGGGCCGACACGCGTTTGTTGTTTTGTGCGGTAAAGCGAATGATTAGTGCATTTGGGGTACGAAGTACTTCGGGCGATTCTCAAACTTTAAATGCGCAAGGGGGTGGCTGCTTAATTGAGCCTACTCTTTGAAAAACGTCGGCCCTGTGGGCCACTTTTGGTAAGCAGAACTGGCGATAAGGGATGAACCTTAAGCGCGGTTAAGGCGCCTCATTACCCGCTTATAGACCCCACAAAAGGTGTTGATTCATATAGACAGCAGGACGGTGGCCATGGAAGTCGGAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATGAATTAGCCCTGAAAATGGATGGCGCTAAAGCGGGTAGCCGACACCGCGCCGTTCCGGCGAGACGAGGCCGGGATGAGTAGGAGGGCGTGGCGGTCAGTGAAGCAGGCTAGGGTGCAGACCCAGCTGAAACGGCCGCTAGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAGCGAGATCCTTGAAGGGCGAAGCGGGGAAGGGTTCCACGCAAACATTGATTGGGCGTGGGTGAGTCGTTCCTAAGCCGAGTGGCAATTGCTAAGTAGCGGCGAAAGGGAAGCGGGTTAAAATTCCCGCACACGGATATGGAGGCGGCGACGCAAGCAGAGGCGAATACGCTGGCCGAGGCGCTGGGCAGAGTTGTCTTTTCTGTTTGACCGGCATCGCGCCGTGTGGAATCCGCTTATCGGGAGAAACACGCGCGGGTATGGGCAGAGCGTCAAGTTTTTTTTGGCGTCCAGCTCGCCTCGGACGGCCCCTGAAAATTCGCCCGCGAACTTTAAAAATTTCATGCTGTGACGTACCGATATCCGCATCAGGTCCCCAAGGTGAACAGCCTCTGCTCAATATGAACAATGCAGGTAAGGGAAGTCGGCAAAATAGATCCGTAACTTTGGGAAAAGGGTTGGCTCTAGTGGGATGAAGGTCTTCAAAGGGGGCTTCGCTGTGCTTGGCGTCTGACGGGAGTGGCTAGCTTTCGGGCTGGATGCTTCTGTTGGATTCCTTGCGTGGGGGATGTTTCTCGCCTTCAGCATATCCCAGACTAGAACTGCAACGGGCAAAGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGAAGGCCGTGGCCGGTGTTGACGCAATGTGATTTCTGCTCAGTGCTCTGAATGTCAAAGTGAAGAGATTCAATCAAGCGCGGGTAAACAGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCTACTGTCCCTATCTGCTTCTAGCGAAACCACAGCCGAGGGAACGGGCTCGGCGGAATCGGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTATTCTAATTTTGTGAAGCAAGTTAGGAGGTGTAGAATAGGTGGGAGCTTCGGCAACCGTGAAATACCACTACTCTTAATCTTGCTTTACTTAGGGCGTGAGGCTGTACGGCCGCAAGGCTTGCTTATTGCATCAAGCGTGATTCGTTCGCGTGAACAGCGCGCCCAACACATTTAGGAGGGGAGTTTGGCTGGGGCGGCACATCTTCTACAAGACAACGAAGGTGTCCAAAGATAAGCTCAGTGAGAACAGAAATCTCACGTAGCGCAAAAGGGTAAAAGCTTGTTTGATTTTGATTTTCAGTGTGAGTTGAAAACGCGAAAGCGTGGCCTATCGATCCTTTCACGATTCGAGATTTGAAGCGAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCGGCCAAGCGTTCATAGCGACGTCGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGCGAAGCAGAATTCGCCAAGTGTCGGATTGTTCACCCGCCAACAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTATCCTACCGATGAGTTGTTGCCGCGGCAGTAATATATGGCAGTACGAGAGGAACGCATATTTCACACCACTGGTTCATGCAGCTGCCTGAGCAGGCAGTGCTGCGAAGCTACCGTGTGAATGATCAGAATAGCTGAGAGAGTCTAAGCTAGGATCGGTTCTGCTCAGCGGCGACTTATTTGTATCCGCCTCGACACTGTGTACAGATAGCCTTCGGGCGAGCACCATTGGGCGTAAGCTTATCGTCGTGCGTTTTAGCGGATGTAAAATCACCTGCAGATGACTGGGTTGGGACTGGAGCGTGTACAGCGTTGAGAGATCTTGTTATCTCGATTCCTTGAGCGTATCTGAGTCCTTACGATTTGT +>GL876983.1/220883-220724 Magnaporthe poae ATCC 64411 unplaced genomic scaffold supercont1.18, whole genome shotgun sequence. +CACCGCCCGTCGCTACTACCGATTGAACGGCTCAGTGAGGCCTTCGGACTGGCCCAGGGAGGTGGGCAACTACCACCCAGGTGCCGGAAAGTTGTACGAACTCGGTCGTTTAGAGGAAGTAAAAGTCGTAACAAGGTCTCCGTTGGTGAACCAGCGGAGG +>GL897030.1/4179803-4179625 Mustela putorius furo unplaced genomic scaffold scaffold00133, whole genome shotgun sequence. +AGCTTTGTGTAGTGGCAGTATCGTAGCCAATGAGGTTTATCCAAGGTGCAATTATGGCTAATTGAAAATATTTTTACCAGGCCCCAAAGAAATCTTGTACCCATAAACAATCACTCCCCATCCCTCCCACAGACACTTATTGGCATGCAGAGTTTTTAGCTCCATATCCAAACAACATG +>AFTD01079003.1/14897-14834 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +TCTTGATGATGCACTTCCAATAGATCCTTCTGACCCTCCACTGTGGACTCTCCATTCCACAAGG +>CM007654.1/638658-638533 Prunus persica cultivar Lovell chromosome G4, whole genome shotgun sequence. +TACATAACGAGGGACAGTTTGTGTGTCTCTTGGATTGAGAAGAATAGCGAGGTAGAGTGAAAAGGCCGAGCCATCGTTTCGGTCGTCATTATTTGGATTGGCGATTCGATTGTTTCTCGTCCACAT +>AASG02044696.1/921-990 Ricinus communis cultivar Hale ctg_1100012308131, whole genome shotgun sequence. +CGACCCCAGGTCAGGCGGGATTACCCGCTGAGTTTAAGCATATCAATAAGCGGAGGAAAAGAAACTACCA +>KB671965.1/368135-367938 Anopheles epiroticus strain epiroticus2 unplaced genomic scaffold supercont1.71, whole genome shotgun sequence. +ATCAATACAACTCTAGTAGCGTAAGGATGCGAGGTCTTTAGAAGTATAAAATAAGCTCGTCTTAGCTACTCCTATTTGTCACCATCGTACAGAGTGGTAACATATCTCCTAACACCTGAGCTTGGGTATAAGGAGAATTTCTTATAGAAGTGCCCGGTAAGGGCAAGCCAACTTAACTAAATGTTTCAAATGAGAGAA +>URS0000D6A915_12908/1-80 unclassified sequences skipping-rope RNA +ATTAAATGAGGTGGACAATGGCATCCACGCACCTATATTGGTTAAAAGAGATGAAAGTACAGCCAGACTTTCCATTTAAT +>FR902120.1/11240-11312 Clostridium sp. CAG:914 genomic scaffold, scf4 +TTGATTGCTCAACCGCACGAAAAAGGTATATAAGTAGATTTTTCTCACCTTATAGGCGAGTCTTAAACAAAAT +>CM000941.1/117493038-117492965 Anolis carolinensis chromosome 5, whole genome shotgun sequence. +CGATGATGATGATGATGATGATGATGATGATGATGATGATATCATCATCATCATCATCATCATTATCTTTATTT +>AAGD02001768.1/1-584 Caenorhabditis remanei strain PB4641 contig453.2, whole genome shotgun sequence. +TCCGGACTCCAGGGATCCGAACGTCTAATTAAAACAGAAGTGACCAGATGGTCTTGCGGAAGTTGACTTACAGTGATTCTGCCCCAGTGCTCTGAATGTTAGCTCGTATTAATTAGAGTAAGCGCGGGTAAACTGCGGGAGAAACTATGACTCTCTTAAGGTAGCCAAAGGCATCGTCATTAAATTGTCACGCGCATGAATGGAATAACGAGATTCGTACTGTCCCTAACTACTATTTAGTGAAACCACAGCCAAGAGAACGGGCTTGGCTAAAGTAGCGGGTAAAGAAGACCCTGTTGAGCTTGACTCTGGTTTGACATTGTGAAGAGTCATGAGAGGCGTAGCATAGGTGGGAGACTTCGGTAGACAGTGAATTACCACCACTTTCATCGACTCTTTAATTATTGGGTTGAAAGAGAATACATCCGGCCCGTAGTAGGTCACGGACATAGATCTCGCTGAGATCTACATTTTGGTATATTTTTCAGGTCATAACACTGAGTTTGAAGCATTTACGAGCCGGCCCAGGTCGACCCGGTTTGCAAATATGTTTTGAACTAATTTTCAGAATCCAAATGAGCCGT +>URS0000D6BD91_395494/1-79 Gallionella capsiferriformans ES-2 int-alpA RNA +GCCGCACCTAGTCCGTGCTTAATTACCACGGGCGAAAGCACAGAAACCCTTGCTGTGTTGGTGCGGCTTCTATTCAGGG +>AZRA01000138.1/15527-15395 Sphaerotilus natans subsp. natans DSM 6575 X805_138, whole genome shotgun sequence. +CCGAAGGGTCGCTAGGGTTCCGAGGCCTACCATGCGGCAGGCCTGTCTGGTCCGAGAGCGACCGGCCTCAAGTGCCCGCGGCAGCTGCCGCGACGGCACTCAGGCTCCACGGCGGGACAAAAGCCCGGGAGGA +>MJEQ01005736.1/39329-39916 Nicotiana attenuata strain UT scaffold05736, whole genome shotgun sequence. +TTGTGTATTTTGTTAAGCAAAATCGTCTAAGTCATTTCCTAGGGTGGGAAAATCATTTTGGCCAGGGAATCGGGGAATTCTTTGTCTTGGCCATAGGGTTGGCTATTGTGTTCTTGTATTCACATATTAATACGAGTTGGGAAGAAATTCCTGTATATCGTGTGTGCCTTTTTACTGTTTATGCTGCCTATTTCGTTCTAAGTTTCAAACGTCCCTAAAATAAAACTAAGTGTTGGAAAGGCTGAAGTCAAGGCTGGGCTTGACTGCCGCACGGAGGTGAACCTCGAGTAGAAATTTGAGTGACATAAATCACCCCTGTGACACCTACCATGGTGGTGACGGGTGACGGAGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGTAGCAGGCGCGCAAATTACCCAATCCTGACACGGGGAGGTAGTGACAATAAATAACAATACCGGGCTCTATGAGTCTGGTAATTGGAATGAGTACAATCTAAATCCCTTAACGAGGATCCATTGGAGGTCAAGTCTGGTGCCAGCAGTCGCGGTAATTCCAGCTCCAATAGCGTATATT +>MHFR01000003.1/41901-41805 Omnitrophica bacterium RIFCSPLOWO2_12_FULL_44_17 rifcsplowo2_12_scaffold_1117, whole genome shotgun sequence. +CATGTAGTGTGGCGCAAATCGAAAGGTTAGGACGCAAAGCTTTAGAGCCTAAACCGACCGGGCAAAAACCCGGTAGGCATGGTTGTCAGTTGCCGAA +>AF137379.1/97379-97053 Nephroselmis olivacea chloroplast DNA, complete genome. +GGGGTTGTCATGGAATCGACGTCTCTTCTAAGAACGAAAGGTTAAAGCAGGTCGAGGTCGAAGATGGACTCGTACTCTCCACTTCATTGCTTGATTGCATGCTAATCAGATTCTTCCTTTCTCTCGCCGGGTAGCCGTTGCTGCTTAAGCGAGTTTCTAGTGCCACTTTGTCACTAGTTTGTATTATGAGTTTCACACTCACTTCAATGACGGTGATAGATACTACATATCACTCCTGCTTAGAGGGTCATCTAAGCTAAACCATGTGAATATAACCTTTCGGGCCTCGAGAGACGGAAGTGAGTTCAATTCTCACCAACTCCACCA +>FO117623.1/2019842-2020021 Blastococcus saxobsidens DD2 complete genome +GACCGAACACCGCCTAATCACCGCGCGGCGTGCAGTCCCGGCGCCCGGGGTGTACCGGGGACCCACCGCAGTTCTGGGGTGAGTTCTCCCGCGGCCGGCTCGCCGGTGCGTGGGGGATAGGGCCAGTCTTCCCAGCCCGAACCCGTCAGCTAACTCGGTCGGCGGTAGCTGAGGAAGAAA +>JH971392.1/893535-893437 Agaricus bisporus var. burnettii JB137-S8 unplaced genomic scaffold AGABI1scaffold_8, whole genome shotgun sequence. +CCTATCTGATGATACAAGCGCAATCGCATAGTTCACGCTGAATCAAAAGTGTTGACAATCATGCATCTTTACGTCTTTCGCTCCTATCTGACTCATCTC +>AZIM01000372.1/334250-333937 Ophiophagus hannah scaffold373.1, whole genome shotgun sequence. +GGATGTGAGGGTGATCTGTCTGTGACATCTGTCACCCCATTGATACCACAGTTAATTCAGTTGATCTGGCTAGCTAGGCAGGTGTCCCCTTCCTCCGTTACCACTCCATTTTTATTTTTCCATGAACTGTGTGCTCATGGAAGAGACAACTAATTTAGGGAGGAGTGTATCAATCTTTAGGCAAGGGTATGATATCCGTGCTCACCTTCTAGAACCGACAAACAAACCTTTTCCTCCATCCATTTGCCTGTTCGTTTCCCAGGCTTGAGATATAACAATGCATCTCAATGGCTTTGTTTGATCAGCAGTGCTTG +>CAJI01046266.1/316-1 Cucumis melo, WGS project CAJI01000000 data, contig: 46266 +AATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTGAAGCGCGCGACCTATACCCGGCCGTCGGGGCAAGAGCCAGGCCCCGATGAGTAGGAGGGCGCGGCGGTCGCTGCAAAACCTTGGGCGTGAGCCCGGGCGGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAGGAGACGGGGGAAACCCGTCTGATAGCGCGAC +>CP013111.1/5040245-5040340 Bordetella sp. N genome. +ACGCTTGAGGAGCGTTGCGACGGATCATTCCGCCAGGCTCAAGCATTCCAGGGTATGCCGCGTTCGCGCGGCACCATGAAACGGCGCTCACCTTAG +>LFJF01027493.1/1808-5852 Macrostomum lignano unitig_27548, whole genome shotgun sequence. +TGACCTCGGATCAGACGTGATTACCCGCTGAAATTTAAGCATATTATTAAGCGGAGGAAAAGAAACTAACAAGGATTCCCTAGTAACGGGCGAGTGAACGGGAAGAGCCCAACACCGAATCCCTTGGCGCAAGTCAACGGGGAAATGTGGTGTTAAGGTAGCCCTTCGTGTCAGTCTAGGCGTCTCAAGTCCACCTGATTTGTGTGCTCAAGCCCAGAGAGGGTGTAAGGCCCCGTAGAGACGCTCCGACTGATTCCTGGGGTGTTTACCTACGAGTCGCTTGTTTGGGAATGCAGGCCAAAGCGGGTGGTAAACTCCATCCAAGGCTAAATCTGGCACTGAGTCCGATAGCGGACAAAGTCCGATAGGCGGACAAGTACCGTGAGGGAAAAGTTTGAAAGAACTTTGAAGAGAGAGTTCAATAGTACGTGAAACCGCTTAGAGGTTAAACAACGGACGGATGGAGCTCATAACTGGCCTGAGCTTCAATCAACTGTGACGGTGGCTGGACGAGGCTGGAGCGAGTTCGGATCTCTTCTTTTGGGACGGGCAGATCTGCTCTTTTGGTGACGCTCGGCGTTCGGTTGGCTATCAGCTCCTGACATCGGTGCCAATCTTGTCCCTTGGTGGCCTTCCGCCACGACCACGACACTGGCTACCCGCGGCTGGGGTAAGGTGACAAACTGCTTCGGCAATTTTGTGTATAGACCCGCGGCGTCGTCGGACATGGTTTTGGCCAGGACGTCGAGCTTGGCGGCGCCCGCTCCTTGTGTGGCTCGCATGTTTGGCTATAGCTTGGCTGCCGCCGATGCTTGCACTGGACAACCAGTACAGGTGGACGGTTGTGGTCTATGTCTCTAGTTGGCCTCTGCGAGTTTGGCGCCTTATAGTCTGTGGTGTACTTGTGGGTAGACTATCCGACCCGTCTTGAAACACGGACCAAGAGTCTAACATCTGCGCTGAGTCATGGGGATTTCCTACACGACCAAGTGTGCGCGCGAGTCATGGGGGGATTCTACGAAACCAAAGGCGCAGTTGAAAGTAAAGGCCTGCTTCTCGTAGGCTGAGGGTGGGATCTCGTGCATTCGCGAATTGGCGAGCGCACCAACCGGGCCCGTTCCTATCTGTCTCTGTCAGTGGGGCGGCGCAAGAGCGTACACGTTGGGACCCGAAAGATGGTGAACTATGCTTGCGCAGCTCGAAGTCAGTGGAAAACACTGATGGAGGAGCGCAGCGTTTCTGACGTGCAAATCGATCGTCAAACGTGAGTATAGGGCGAAAGACTAATCGAACCATCTAGTAGCTGTTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGCACTCGGGAAACAGTTTTATCCGGTAAAGCGATGATTAGAGGCATTGGGGTCGAAACGACCTCGACCTATTCTCAAAACTTTAAAAATGGTAAGATGCTCGTCTCGCTTTAATTGGAGGCGGGCTTCACCTCTCTATAAACGTGAATGTGAGTGCCCAGTGGGCCATTTTTGGTAAAGCAGAACTGGCGCTGTGGGATGAACCAAAACGCGCGGTTAAGGCGCCAATGCGGACGCTCATTGAGACACCACAAAAGGTGTTGGTCGATATACTGACAAGCAGGACGGTTCGGCCATGCGAAGTCGGAACCCGCTAAGGAGTGGTAAGCAACTGCACCTGCCGAATCAACAGCCCTGAAAATGGATGGCGCTGGAGCGTCGGGCCTATACCGTGCCGTTGGCAGGCGAAGCAGACAAATAATCTGTGTGGATGTCCCCAAACGAAGTAGGAGGGTCGCCGTGGTGAGCGCAGAAGGTGCGGCCGTGAGGCCGGCTGGAGCCGCCACGGGCGCAGATCTTGGTGTAGTAGCAATTACTCAAGTGTGAGAACCTTTTGAGGACTGAAGTGGAGAAGGGTTCCATGTGAACAGCAGTTGAACATGGGTCAGGCGGTCCTAAGCGATCTCGGTAACTCCGTACACTAGACGAGGGTGACAACTATCACTTGAACTAATACTGTGAAGTGTTATAGCCCTCCGGAGCGAAAGGGAATCGTGTTAATATTTCACGACCCTTACCGTGGAGATCGCCCCTTTCGGGGGGCAAGTGCGGTAACGCAAACGAACACAGAGACGTCGGCTGGAGCCCCGGGAAGAGTTCTCTCTTTTCTTTGTAAGGAGCCGTACCCCCTGGAATCGGCTTGTCCGGAGATAGGGGCGTGGCTTCCGTAAAGGCAGCGCGCGGTCTTGCGCTGTCCGGTGCACTCTAGTCGGCCCTTGAAAATCTGTGGGAGACAGTGTGATTTTCACGGTAGGCCGTACCCATATCCGCAAGCATGCGTCTCCAAGTGAACAGCCTCTAGTCCTAGAACAATGTAGGTAAGGGAAGTCGGCAAAATGGATCCCGTAACTTCGGGCGAAAAGGATTGGCTCTGAGGGCTGGGGTCGGATGGGCTGGCGTAAGAAAGCTGTTCCGGTGGTGAGGACTGGGCGAGGCTTTCGGGCTTTACTCGGACCATGCCGAGACCAGGCAGTAGACGACGTCAGCTGTGCTTGTCGTGTTTCGGCGCGGCGCGGCAGCTTCGTCCGGCAACAAACAGCCAATCTCAGAACTGGCACGGACTAGGGGAATCCGACTGTCTAATTAAAACAAAGCATTATGCGATGGCTCGTGTGCTCGATGTTGACGCAAATGTGATTTCTGCCCAAGCTGCTCTGAATGTCAAAGTGAAGAAATTCAATCAAGCGCTGGGTAAACGGCGGGAGATAACTATGACTCTCTTAAGCGTAGCCAAATGCCTCGTCGTCATCTAATTAGTGACGCGCTTATGAAGGTGGGGTATTAACGAGATTCCACTGTCCTATCTAACTATCTAAGCGAAACCACAGCGCCAAGGGAACGGGCGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACCTTTGTGAAGAGACGCATGAAGAGGTGTAGTATAGGTGGGGAGCGTCAGCGACTTTGAAATACCATACTTTTAATCGTTCTTTACTTATTCAGTGAAGCGGGGGGGGGGAGCGGCCTTCACGGCACTCGTTTCTGCGGTGTTTAAACGGCTGGCCCTCGCGGCCGGCCGTGAACCTTGCTCTGAAGTACAGGTCAGGCGGGGGGAGTTTGACTGGGGCGTGTACATCTGTCAAAAGGTAACGCAGGCTGTCCAAGATGAGCTCAGTCAGGACCAGAAACCTGCGTAGAGCAAAAGGGCAAAAGCTCATTTGATTTTGATTTTCAGTACGAATACAGACGTGAAAGCGCGGCCTATACGCATCCCTTTGATTAATCAGAGTTGATGCAAGGCGGTGTTCAGAAAAGTATCCACAGGATAACTGGCTTTCTCACGCGTCTGCGAGTGCGATGGCGGGCAAGCGTCATAGCGACCGTCGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCAATTGTGAAGCAGAATTCACCAAGCGTTTGGATTTGTTCACCACCCAATAGGAACGGTGAGCTGGGTTTTAGACCGTCGTGAGACAGGTTAGTGTTTACCCTACTTGATGTCTTCGGTCGTTGCCTATGGTAATCCTGCTTAGCTACGAGGAGAACCGCAGGTTCAGACATTTTGGTTTATGTGCTTGGTCGAAAGACCAATGGTGCGAAGCTGACCAATCTTTGACGGCGATTTAAGACCTGAAAGCCTTCTTTAAGTCTTGAATCGCCGCCACGAAACGTGCAACGATACTATCGGTGCCCCTACGCCGGGAGGCAACGAATATACTCGGCCCGCAGAATCCGATTTCGGCGGGCGAGCACTGGCTAAAGCACTCGATTACTGCGTGGCCACACCCGCTGTCTTTGTGAAATTTGCAGTCGGAGGCACAGACACGATTACCACTTGATATTGAGACGTTAGGGGTTTCTATAAATCGTTTGTTAGAGCGACTTAGATTCCGGTCGGGGTGCCGTACTTAGTTGAGCAGTTTCACTTGCGATGCTATTTGAGGGCCTAAGCCTTTTGACGGGGAGATATGT +>LMNA01000001.1/561241-561047 Pseudorhodoferax sp. Leaf274 contig_1, whole genome shotgun sequence. +CCGCCCGTCTTGGGGGAGTAGCCAGCCTTCGCTTTGTGCGAGAGGGGTTTGCGTCAACAGACTTGTTCGTGCCGTGCCTTGGTGTGCGGTCCGACATGGCGCAAACGGACCACCAGCAGCAGCCTGCAACGGGCGATGCCTTGCCGGGGTTCAAGCGAGACCTTTGACTGCGCAGCTTCTCGTGCCGGGAAGGCT +>ALWZ043544869.1/1192-611 Picea glauca, whole genome shotgun sequence. +GGTTTGGCATAATCAACAGAGAAAGAAGACCTTGTTGAGATTGACTCTAGTCCAACTTTGTGAAATGAATTGAGAGTTGTAGAATAAGTGGGAATCATTTTTGACACAAATGAAATACCACTACTTTTAACATTATTTTACTTATAATTTTGTGGGGCGAAGACGGGGCAGTTACCCTATTTTTGGCCTTAAGTCATGTTTCGATGGGTTGATATGGGCGGAAGACATTGTAGGTGGGGATTTTGGATGGGGAAACACATCTATTAAAAGATAACATAAAATATAATTTGTGTAGATAGAACATTTGTATTTGGGAGATCCTAGTGCACAACCACCCTTATTACCTTTCCCTCCTAATTTGTAGTTACATCCAATCATTTCTAAATTGAATCTAGTTTCCTCACTTGCACAATATGGATAGACGTGTGAACCCTATACATTATTAAATATTTCAAAACCCCTATCCATGAGCCTATGGTTACATACAAATGGGAAAAAAAAGGTGGATACAAAAATGACACCCATTCCTCCTCACAGTCCTCCCTAGGATCTTGTTGTATCTCATAATGTTGCACACTCCAT +>ALWZ042080687.1/2737-2632 Picea glauca, whole genome shotgun sequence. +GAAGAATCCTTTATAGACGACTTAAATATGTGACGGGGTATTGTAAGTGGTAGAGTGGCCTTTCTACCACAATCCACTAAGATTCATCCCTTTGTCGCCTCAATTT +>ALWT01066045.1/576-1 Myotis davidii contig66045, whole genome shotgun sequence. +TGGAGTCCAGGGGGCGTGGGAGGAACGGCCTCTCCAGCTCCCTTTGCTCCGCCGCCGCGTCCCACCGACCCGCCCCCCGAAGAAGCATCGGGACCGCTCAGATTTGCAGTCGGAGCCGCGTCCCGAGGGAGAGAAGGGGCGTGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAATGAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATGAACGAGATTCCCACTGTCCCTACCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCGGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCTGGCACGGTGAAGAGACATGAGAGGTGTAGAATAAGTGGGAGGCCCCCGGCGCCCTTTCCCTCAGCCCCCTCTCGCGAGGGGGCGGGGAGGGGGGCACGCCGGCCTTGCGGGCCGCCGGTGAAATACCACTACTCTGATCGTTTTTTCACTGACCCGGTGAGGCGGGGGGGCGAGACCCGGGGGGGGGTGC +>APMT01039647.1/25991-25874 Mesocricetus auratus contig039647, whole genome shotgun sequence. +ATGTTGTATCAGAGAGAATGTCAGCACTCTTCTTGCTAAGTATGAAAAGACCAATGAGCCTAACAGTGTACATTTAAGGCATTGATCCTTACAATGTGGCATCTAACCACTGTTTTTA +>AKHW03004724.1/5683634-5683707 Alligator mississippiensis ScZkoYb_22, whole genome shotgun sequence. +CAACAAGAAGATGAATGGTAGGCTGGTCACTTTCCTGGGAAGTAAGAGTCAGGAGTTCAAACCCCTCTAGTTGA +>LGKD01319461.1/278-207 Octopus bimaculoides Scaffold40646_contig_8, whole genome shotgun sequence. +TTACTGACCAAGTGGTTGTGAATGTGCTGCTAAATTGGACTTTCATATCACAGCCTGCTTGGATCAGTAACA +>AACY023405062.1/1217-1321 Marine metagenome ctg_1101668212413, whole genome shotgun sequence. +AAAGTCGGAATGGGTGTTGAAAGATTACCGACAAGATGAGGGAAACACGCAACCCTCGTTCGATGCGGGTAATTATTCCAACAGTTCCGCATCGATGCCGCTGCT +>BDFN01000945.1/2677-5912 Ipomoea nil DNA, scaffold: scaffold0945, cultivar: Tokyo-kokei standard. +CGACCCCAGGTCAGGCGGGATTACCCGCTGAGTTTAAGCATATCAATAAGCGGAGGAAAAGAAACTTACAAGGATTCCCCTAGTAACGGCGAGCGAACGGGAACAGCCCAGCCTTAGAATCGGACGGCCTTGCCGTTCGAATTGTAGTCTGGAGAAGCGTCCTCAGCGGCGGACCGGGCCCAAGTCCCCTGGAAAGGGGCGCCGGAGAGGGTGAGAGCCCCGTTGTGCCCGGACCCTGTCGCACCACGAGGCGCTGTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCCAATCGGGCGGTGAATTCCGTCCAAGGCTAAATACGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGGAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGATGGAGACCGGCGATGCGCCCGGTAGTATGTGGAACGGTGAGAGCCGGTCCGCCGATCTACTCGGGGCGCAGACCAGCGAGGATTCGGGGGCGGCCAAAGCCCGGGCCTTTGATACGCCCGCGGAACGTCGTCTCTCGGATCGTGGGAAGCAGCGCGCGCCCCTGGCGTGCCTCGGCACCTGCGCGCTCCGGTCGCTGGCCTGTGGGCTCTCCATTCGACCCGTCTTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGCGAGTAAACCCGTAAGGCGCAAGGAAGCTGATTGGCGGGATCCCCTCACGGGGGTGCACCGCCGACCGACCTTGATCTTTTGAGAAGGGTTCGAGTGCGAGCATACCTGTCGGGACCCGAAAGATGGTGAACTATGCCTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTGACTTGGGTATAGGGGCGAAAGACTAATCGAACCGTCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCTGGCGCGAGAGTTCTATCGGGTAAAGCCAATGATTAGAGGCATCGGGGGCGTAACGCCCTCGACCTATTCTCAAACTTTAAATAGGTAGGACGGCGCGCGGCTGCTTCGTTGAGCCGCGCCACGGAATCAACAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGGAAGCCGGGTTACGGTGCCCAACTGCGCGCTAACCTAGATCCCACAAAGGGTGTTGGTCGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCTATACCCGGCCGTCGGGGCAAGAGCTAGGCCCCGATGAGTAGGAGGGGCGCGGTCGCTGCAAAACCTTGGGCGTGAGCCCGGGCGGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGGGTCGGGGGAAGCCCGACAGACAGCGCGTTTTGCGCGTGCGCCGAAAGGGAATCGGGGTTAAAATTCCTGAACCGGGACGTGGCGGTTGACGGCAACGTTAGGGATTCCGGAGACGTCGGCGGGGGCCTCGGGAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGCACGTCGCGTGGTGTCCGGTGCGCCCCGGCGGCCCTTGAAAATCCGGAGGACCGAGTGCCGTCCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGCAATGGAACGCTGGCAAGGAACGGGCGGGCCTTCCCGGGCGTCGAACAGCCAACTCAGAACTGGTACGGACAAGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTAACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGGTAAACGGCGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGAAAAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCCGAAAGGCGAAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCGTGAATCGGAGGCGGGGCATTGCCCCTCTTTTTGGACCCAAGGCTCGCTTGCGGGCCGATCCGGGCGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAGAAGGGTAAAAGCTCGTTTGATTCTGATTTCCAGTACGAATACGAACCGTGAAAGCGTGGCCTAACGATCCTTTAGACCTTCGGAATTCGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGACAGTGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTTTGCGGTTCGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGACCGACGCATGCGCTCGTCGCGTCCGTTTGGCCGACCCGCCAGTATGGGGGCCATTTGGCCCCCAAGGGGCACGTGGTCGTTGGGCTAAGCCGTCGTGGCGGAAAGGGGTCACGGTTGGGCCGCGCTTGAATATACAATTGCCGATCGAGCGGGGCGAGCTGAATCCTTTGCAGACGACTTAAATACGCGACGGGGTATTGTAAGGGGTAGAGTGGCCTTGCTGGCCACGATCCTCTGAGATTCAGCCCTTTGTCGCTCCGATTCGT +>JARO02002307.1/4880-4968 Scleropages formosus scaffold2307, whole genome shotgun sequence. +TTGAGTTTTCAGCTTTGAGAACTGAATTCCAAGGGTTTTTGGATCAAGCTTTGCCCGTGGGACTTAGTTCTTAAAACTGGATGCTCCTG +>BABG01005904.1/1457-1294 Human gut metagenome DNA, contig sequence: In-R_005904. +TATCGGACGGTGGTGATATTTTCTCGAAAAGTGCTGAAAATCAGGGTGGAGCGAACAGGACGTTCGCGACAGGCGGACGTTGCCATGGATGGCAACTGGAGCCGTGCCCGTGCGGATTAGAACCGATATCTCACTTTTCGTCAGAAAATTCCCACCGGGAGACC +>MHKX01000006.1/12218-16044 Candidatus Liptonbacteria bacterium RIFCSPHIGHO2_01_FULL_57_28 rifcsphigho2_01_scaffold_11526, whole genome shotgun sequence. +ATGGTTGGCATTAAGGGCGCATGGTGGATGCCTAGACATCAAACGACGACGAAGGACGCAGCATAGCGGCGATACGCCACGGTGAGGTGCGGAGCAACCGTTGACCCGTGGATTTCCGAATGGGGCAACCCTGTTGAGTAAACCTCAACAACCTTCGCAAGAAGGAGTCACACCCGCTGAAGTAAAACATTTCAGTAAGCGGTGGAAACGAAAAAAAGTCCGCGCAAGCGGAAAAATTCCCCAAGTAGCGGCGAGCGAAACGGGAGAAGCCTAAACCACATGTTCGCAAGAATGCGTGGGGTTGTAAGGGAGGAACGCTATCACTTATAACCGAGAGCCGGGAGCGATCCCGGCATATCGGTTATGGGTGAAAAGGAGGAGTTACAAATTCATTTGCTAGCCGAAGCGTCCTGGAAAGGACCGCCAAAGTGGGTGATGGCCCCGTAGGCGAAAGCAGATGAACTTCTTAGTTTCTTTTCTTGAGTAGCTCGAGGTAAAACAGCTTCGAGTGAATCCGGGAGTACTATCTCCTAAGGCTAAATACGTTTGATGATCGATAGTGAACTAGTACCGTGAGGGAAAGGTTAAAAGCAGGCCGGTGAGGCCGTTGAAATAGATCCTGAAACCATGCGTTTACAAGGAACTGACGTCTTATGAGCCCGCCGCAAGGCAGGCCCCGGACTACAGTGTGCCTATTGAAGAATGAGCCAACGACTTTAGGTGTGCGGCAAGGATAAGTCCTCTCGGGGACGCATCCGTAGGGAAACCGAGTATTAACGTGCGATTTAGTCGTACACCTAAGACCCGAAGCCGGATGAGCTTGCCTTGGCCAGGTTGAACTCCGTAGAAATACGGAGGGAGGACCGAACCGGTAGGTTGTTCAACACCTTCGGATGAGCTGAGGTAAGGAGTGAAAAGCTAATCGAATTCGGTAATAGCTGGTTCTCTCCGAAACAGTTTTTGGACTGGCGGCGTAAAGTAGCGGGTGGGGGCTAAGCTCCATGTTCGCGAGGGAAAAAGCCCAGACCATCAATTAAGGTCCCCAAGTGCGTGCTAAGTGTAAAAGGCAGTGTTGTGCCATAGACAGATAGGAGGTTGGCTTAGAGGTAGCCACCCTTTAAAGAGTGTGTAACAACTCACTATTCGATCGGCACGGCGCGCCGAAAATGTATCGGGGCTAAGCACGCCACCGAAATTATGGGTTCGTATGTCCTTCGGGACGTATGAGCGGTAGGAGAGCATTCCCTTCTGCTGTGAAGCAGGACCCGCGAGGGCCTGTGGAGCGTAGGGAAGAGAGAATGTTGGCATGAGTAACCACAATCCCAATGAGAAATTGAGAGCCCGAAAATCCAAGGTTTCCGTGGCACTGGCAATCAACCACGGGTTAGGCGGTCCTAAGGCGATGGCGAAAGCCGCAGCTGATGGATAGCCGGTTAATATTCCGGCCCAGCCATGCGATCATAGCGAAGTGCGAAGGAAAAAGACGGGAGTGCCTTATTGGTTTGGCATTTATACTCCAAGGCGCAAGCCGGGAGCGTATGAATGTCCGGTTTTACCGGACAAACTTCCGAGAAGAGCCTTCCGAGAAAAGCTTCGTGAAAGCGAGCGCATGGTTTCCGTACCGTAAACCGACACTGGTGGGTGAGGCGAGAAGCCTCAGGGTAACGAGTGATTCATCTTTAAGGAACTCGGCAAAAAAGCGGCCGTACCTTCGGTATAAGGCCTGCCCATCGCAAGATGGGCCGCAGCGAAAGTCTCCCTGGCGACTGTTTACCAAAAACACAGCTCCCTGCAAACTCGCAAGAGGACGTATAGGGGGTGACACTTGACCGATGCGAGAAGGTTAAACTTGGCAGTGGTGTGCAGCAATGTGCATTGCCGACCGAGCGAAGCCCTCGTCAATGTCAGCGGTAACTATAACCGTTCTAAGGTAGCGCATTTCCTTTCCGGGTAAGTTCCGGAGCGCACGAAAAGTGTAACGACTGGGGAACTGTCTCAAAGATGAGCTCGGTGAAATTGCGATTCCCGTGAAGACGCGGGATACCTGTAGCGGGACGAAAAGACCCCGGAAGCTTTACTGCAGCCTGGTATTGATTTCAGAGTTATGATGCGTAGCGTAGTGGCGAGCCTTTGAAGCGTCCCTTTCGGGGGACGTGGAGGCGACAATGAAACAGCCATCTTCATCACTTTGACGTCTCACCGGGGAGGGACCTTAAAATGGAAACCTCCCTGGGACAGTGCTTGGTGGGTAGTTTAAATGGGGCGTTTTCCTTAACTTGACAATGCTTCCGTGTTGTCAGAAGGGGGACCCGATCCAGTCTTAAGATTGGAGGGAAAAATCTAATGTATATGCTGGAACATCCGCGGTATCAGTTTGTACCTTTGTCGAAAAGGTGAAAATCAAACTGTGGCGTCCGATGAAAATCGGGCCGGCGGACAATCAGCAGGCAACCTCGACGTAAGAATTGAGGAAGTCCTCAGAGACTATCAGTTAGAGCGGCGCACTACCCGCGCGCCGTATGATATAGTCCGAACTGCATGGCGACATGCAGGCCGCGCAAGCGGCACCTAAATACCATGAGATCAAGAATCATTGAAGAGCTTAAGAAACATCTGAAGCTTACTGCAATGCAAAGATCTCTTCTCGTAGGCCTGCTTTTAGGCGATGGCCATCTGGAACTACAGAGTGGTGGCAGAGAATATCGTCTGAAAGTTGAACATGGAGTTAAGCAGAAGGATTATGTGGATTGGTTGTACGAACAATTCAAAGATTTTGTTCGTACGCCGCCGCGTATCAAGACCAGGATTGTAAAAGGAATAACGTGTAAGAGCTACGGCTTTACCACTTATTCCTACGGATCATTTCGTTTTTACGCCCAGCAATTCTACGTTGGGCGAAAGAAAGTGATCCCGAAACTGATCTCCAAAATGCTTGACCCTAGAGCGTTGGCAATATGGTTCATGGATGATGGATCTTTCAAGTCCGTCAGCCACAAGACCTATATAATCCATACGCATGGTTACGAGAAGAAAGATTTGGAGCGTGTAAAAGATGTGCTCCAAAAGAAATTCGGTATTATCGTAGGACTGCATAAGCAATATGATCGCTGGCGAATCTACATAATGAGTGATTCGGCAACGGCGTTCAGAAATCTTGTCAGTGCCCATGTAATACCGTCAATGCGGTATAAGTTAGGGAACATCAAGCCTAAAGAGTAACGGAGGAGTTTATTAAGGTTGGCTAGGCCCGGATGGAAACCGGGCGCGTCGTGTAAAGGCATATGCCAGCTTGACTGCAAGACCTACAAGTCGCGCAGGCGCGAAAGCGGAACTTAGTGACCCGACGATTCTTTATAGAAAGGTCGGAGACAACGGATAAAAGCTACTCCGGGGATAACAGGCTAGTCTGGTCCGAGCGTCCACAGCGACGACCAGGCTCGGCACCTCGATGTCGGCTCGCCCTAGCGCGGGGGTGAAGAAGCTCCCAAGCGTTTGGCTGTTCGCCAATTAAAAGGGCACGTGAGCTGGGTTCAGACCGTCGTGAGACAGGTTGGTCTCTATCTGTTACAGGCGTTTAATCACTTGAGGGGAGTTGACCCTAGTACGAGAGGACCGGGTTGAACATACCTCTGGTCTACCGGCTTTGGCACCTGCTGAAACGCCGGGTAGCTATGTACGGAAGGGATAAGTGCTGAAAGCATCTAAGCACGAAGCCCACCCCAAGATTAGGTGATATGGTCTCGTCGCAGACTACGACGTTGATAGGCTCTAGGTGTAAGGATCGCAAGGTCTTCAGCCAAGGAGTACTAATGACCCGCCAACCATCC +>MDEO01000036.1/702348-702384 Mesorhizobium sp. UASWS1009 41, whole genome shotgun sequence. +GGTCTCGCCGGAAGCGAGACCGCCGAACATGAAGGAG +>MEQJ01000121.1/2993-1439 Bdellovibrionales bacterium RIFOXYD1_FULL_53_11 rifoxyd1_full_scaffold_587, whole genome shotgun sequence. +AAACATGAGAGTTTGATCCTGGCTCAGAGCGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGTGAAAGGGGGCAACCCCGAGTAAAGTGGCGTACGGGTGAGTAACGCGTAGGTAATCTACCCTGGAGTTCGGAATAACCTGCCGAAAGGCGGGCTAATACCGGATAGAGCGAGGGAACCTGTAAGAGGGTTTTTCGGGAAAGGGAGCTCGCAAGAGCCCTTGCTCCGGGATGAGCCTGCGTCCCATTAGCTAGTTGGCGAGGTAACGGCTCACCAAGGCGATGATGGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAAACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGACGGAAGTCTGACGCAGCGACGCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAGCTCTGTCACACGGGACGAACGGCGAGTGGGTTAACAGCCCATTTGATTGACGGTACCGTGGAAGGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTGCTCGGAATTATTGGGCGTAAAGGGCAAGTAGGTGGTCTCATTAGTCCGGGGTGAAAGCCTTGAGCTCAACTCAAGAAGTGCCTTGGAAACGGTGGGACTGGAGTCCTGGAGAGGGTCGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGAGATCGGGAGGAACACCAGAGGCGAAGGCGGCGGCCTGGACAGGAACTGACACTCAACTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGGGTACTAGACTTGGCGGGATTTGACCCCTGCCGAGTCGGAGCTAACGCGATAAGTACCCCGCCTGGGAAGTACGGTCGCAAGACTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGATCATGTGGTTCAATTCGAAGCAACGCGAAAAACCTTACCTGGGTTTGACATCCCCGGACAGCCGTAGAGATACGGTTTTTGTAGCAATACAACCGGGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTGGTGACATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGTCCTTAGTTGCCAGCATTAAGTTGGGCTCTCTAAGGAGACTGCCGTGGTTAACACGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCTTTATGTCCAGGGCGACACACGTGATACAATGGCCGGTACAGAGGGAAGCGAAGTGGTGACACGGAGCCAATCTCAAAAAGCCGGTCTCAGTTCGGATTGGAGTCTGCAACTCGACTCCATGAAGGTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGCTGACTCAACCAGAAGACGTCCAGGCTAACCGTAAGGGGGCCGGCGGCGAAGGTGGGGTTGGTGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGGGAACCTGCGGCTGGATCACCTCCTTT +>MNFI01000130.1/10369-10188 Gemmatimonadetes bacterium 13_1_40CM_4_65_7 13_1_40cm_4_scaffold_3525, whole genome shotgun sequence. +CCGTCCTAGACTGATTCGGGATCCACGTTTGCGAACGGGGATTTACGGAAGCCGGTGCGAATCCGGCGCGGCCCCGCCACTGTAACGGGCTGTTCATCGCGGCTCAGAGCCACTGGGGAAACCTGGGAAGGCGAGCCGCGTAGCCCGAAGCCAGGAGACGTCTTCGTTCGCGCCACCAATCA +>MLAY01000007.1/1262-1155 Marine bacterium AO1-C Bin2_contig__6B_len_915437_cov_89.8812_ID_11, whole genome shotgun sequence. +GCCGGTGTGGCGAAAATGGTTTACGCAGCTCAAGTTAGTTTGATTTGCGGCCAAGGCCTTGGGAATCGTGGCCTGTAAGGCGTGGGGGTTCGAGTCCCTCCATCGGTA +>ANKR01270450.1/11566-11419 Myotis brandtii contig270450, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTATCAGTTTAAAATATTATCTATCTGCTGCAAAGCAAGCTGTCTAGAATGATATAACTAAGGTTATCTATAAAATAATGAGGAGTTTCAAAATAAAATATTT +>DS022282.1/1685882-1685929 alpha proteobacterium HTCC2255 scf_1100007007381 genomic scaffold, whole genome shotgun sequence. +TAAGGCTTACAACGGCTACCTGAAGTAAGTTGACATAAAAACGGAGCA +>EU420138.1/1-299 Bat coronavirus 1A strain AFCD62, complete genome. +GACTTAAAGATATAATCCATCTACAGATAGAGTGTACTCTTCTAGACTTTTGTCTACTCCCCTCAACTAAACGAAATTTTTGCCATATGTTTATGGCTAATTGAAATTTCAGTCGGTTGTTAACATACTTGCACAAGTGTCGTGCATGTCGCCAGTCCCTCCTTTCAGTTCCGTCTGTTAGGTATACTAGGTGGCTGCCTTTGGTTCAGTTCCGTCTGGCCATTGTGTGGATAGTACGTTCCGTCGTGCTTGAAACCGATAACTAGCAGGTATGTCGTCCAACCTTGTGACATTGGCCT +>LSGP01000020.1/293217-293477 Anaerosporomusa subterraneum strain RU4 RU4_contig_5, whole genome shotgun sequence. +GAAATGACGATGAACGGAACAGTAGTTACAGTCTGAGATAGTTTCAGAGAACTGGATTTGGTGTGAACCAGTACTATCTGCTGTCATGAATATCCTCCGTGAGTTGCACACCGAAGAATGTAGTAGGCTGTGCCGGGCCTCGATTGAGGAAACGCCACCCGTTATTGTGGCGAGGTATCGAGTGTAAACTCCGTACCGTTGAGAGACTATGGGCAACTATAGTAATTTGGGTGGTAGCGCGGATTAATCTCCGTCCCTTGT +>MEWZ01000006.1/7057-6737 Candidatus Adlerbacteria bacterium RIFCSPLOWO2_01_FULL_54_21b rifcsplowo2_01_scaffold_18878, whole genome shotgun sequence. +TGAGCGCGTTGAGTAGTAGCCCCGACGTAACGTCGGGGAGGAAAGTCCGAACACTCCCTCTGGAAAACTGGAGGAGAAAGGTAGCAGGTAACGCCTGTCGTGCGCTTTTTGCGGGCGCAAGAGGTGCGAACAGAGACGAGTCTTCGACAATTTAGGGTTTACCTTGAGTATGTCGAAGGGTGAAACGGCAAAATCCTTACCCGAGTGCAAGGCCGTGTCCCGAGAGTAATCGAAGGAAGTGCCGCTTGATCCCGACGGTGACGTCAGGACCAGATAAATTACTGCTCACGACAGAATTCGGCTTACAGACGCGCGCGCAGA +>JANL01000037.1/68389-68165 Alkalibacterium sp. AK22 AUG3_contig_1, whole genome shotgun sequence. +ACTAAACTGGATCTTGAAACACGTTCATGATTGATGCTTTACAGAGAGTCAATGCAGGCTGAGAATTGACAAGCAAATATCATGGTCATCATTCAAGGAGTTAGAAGCTGAATGTAGTAGGTTTCTACGTCTATCCGCGTTAAGGATACAGAGGATAAGTAGAAAAGCTCTAGTGGGCTGATACTTTTCAAACTAAGGTGGTACCACGAAGATTTCGTCCTTTCG +>LITN01000010.1/54782-54831 Bacillus sp. FJAT-21945 super19, whole genome shotgun sequence. +GAGAGATTTGCTCCGCACAAATGTATACGATGAAGCATTGTGTCAGGAGC +>JNFA01000019.1/339474-339242 Listeriaceae bacterium FSL A5-0281 contig000019, whole genome shotgun sequence. +ATAAAGACGTTGAAGGAGACAAGTAACGTTACCAAGTCATTGTTAGGGAGAGGTTACCTTAGACTGCAAGTAACCTTAGTGATACGTAATGCGAACATTTCAGCTCTGGAGTCGCTGTCGGGATTTTGTATAATGAAAGACAGATCGGTGTGAAGCCGTTATTGGAATGAAGTGGATAGCTTATTTAGCTGTCTATTAGGGTGGTACCGCGTGATTATAACCTCGTCCCTTTG +>ABLF02007471.1/1-1768 Acyrthosiphon pisum strain LSR1 Contig7649, whole genome shotgun sequence. +CATGGAAGTCGGATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAAGCAACTAGCTCTGAAAATGGATGGCGCTGGAGCGTCGTGCCTATACTCGGCCGTCGACGGCATAGTGGGGCCAGTCGTCGCTCGCGGCGGCCGGTCCCGGCAAGCCTCGACGAGTAGGATGGCGCGGCGGTGTGCGTCGAAGGGCAGGTCGCGAGACCGCCTGGAGCCGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATACTCGAGAGGGGCCCTCGGGGGCTGCCGTGGAGAAGGGTTTCTTGTGAACAGCCGTTGTCCAAGAGTCAGTCGATCCTAAGCCCGGGGAGAGATCCTCGTACCACGGGCGAAGGCGTTTTCGAATCGCCCTTGGGGCGAGAGGGAATCCGGTTCGTATTCCGGAACCCGACGCGGAACCGCTCCCTAGTGTTCGGGGCTCTTTTGTCTCGTCTGGGTAACCAGAATGAACTCGAAGAAGCCGCCGGGGGATCTGGGTAGAGTTCTCTTTTCTCTGTGAGCGTTGTACGTCCCTGGAATCCTCTAGCCGGGCGATAGGGACGCGAGCGCGAAGAGCACCGCTCGTTGCGGCGGTGTCCGTGATCCCCACGCGGACCTTGAAAATTCGAGAGAGGGCCACGCGGAGTCTTCGCGTCGGTTCGTACCGATATCCGCAGCAGGTCTCCGAGGTGAGCAGCCTCTAGCCGCATAGAATAATGTAGGTAAGGGAAGTCGGCAAAACCGATCCGTAACTTCGGGATAAGGATTGGCTCTGAGGAGCGTGGCTGCCGGGTTCGGGTCGTCGTAGAAGCGTAGGCGTTTTTGGCGACACCCCGGCCGTCGCCCGTGCGCCCGGTCTTCGGAACGGGAGCCTCGAGGCGGCCGCGGGCCCGTCGCCGTCCGCCGACCGTGGAACCACCGAGCTTCGGTCGCTGGCCGCGTCGCGGCCGGCCGACCGCCTTGGTGTCGGTTCGCCGTCACCGGGCGGTCCGGCCGCCGCGCCGTCGGTCGCGTAGCCGGATCGACAGCCATGTAACGGTCAACTCAGAACTGGCACGGACCAGGGGAATCCGACTGTCTAATTAAAACAAAGCATCGCGATGGCCCGGGACGGGTGTTGACGCGATGTGATTTCTGCCCAGTGCTCTGAATGTCAACGTGAAGAAATTCAAGCAAGCGCGGGTAAACGGCAGGAGTAACTATGACTCTTTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCTCACTGTCCCTATCTACTAGCGTTGCGACAACAGCGACATAGTTCAGACGTGTGTTTCCACGTTCGACGTTGCTCCGAAGGGCGATCCTAGTGGTGATAACTGGCGATTAACTTAACTTCGAAAGTTTACAGGAATTTTTTCAAAAAAGTGTTCAAAAAGTTTTGGTATAGTGCATAGTGCAATCTAAGTCGGGTTTCACGGAAGTTCGCTTAGCCGTTCGTGGTTAAAAGCCGAAAGGCCACTTTTACGTGTTACAGGATAGGACCTTACCGTAAGTGGAGGGGAGAGCTCCGGTCGGCAGTCACGTACACCGAGCAATTCCTGGAATCGGCCGCCCGTCTGGAAATTCGCGACACGTGTAAGTGCGTATCACTGTTCATAAAAGCGCATAAAATAATTAACACGGCCGCCGTGAATATTATTTGGGTAAAATCGTAAATAAAATCGTGTTTTAAGTAAAGCCTATAATTTCGTGATATACGTTAAT +>LQOS01000013.1/108713-108903 Mycobacterium doricum strain DSM 44339 contig_20, whole genome shotgun sequence. +GCCGCGCCATGCTTAGGATGTGCGATGTAATCGGCAGGCGTAGGAATCTGGTGAGAATCCAGAACGGTCGCGCCACTGTGAGAGTCAGACCCGACGCCTGCTTCATTCCACTCGGGACGCGAAATCCCGGAAAGGACCCCTGATGACGTCACCGCAAGCGCGCCAGACCCGCGTTCCGGCCATCGACCTGT +>KL543784.1/20050-21792 Capsicum annuum cultivar Zunla-1 unplaced genomic scaffold scaffold9433, whole genome shotgun sequence +TACCTAGTTGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTGTAAGTATGAACAAATTCAGACTGTGAAACTACGAATGGCTCATTAAATCAGTTATAGTTTGTTTGATGGTATCTACTACTCGGATAACCGTAGTAATTCTAGAGCTAATACGTGCAACAAACCCCGACTTCTGGAAGGGATGCATTTATTAGATAAAAGGTCGACGCAGGCTCTGCCCGTTGCTGTGATGATTGATGATAACTCGACGGATCGCACGACCATCATGCCAGCGACGCATCATTTAAATTCTGCCCTATCAACTTTTGATGGTAGGATAGTGGCCTACCATGGTGGTGACGGGTGACGGAGAATTAGGGTTCGATTACGGAGAGGGAGACTAAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACACGGGGAGGTAGTGACAATAAATAACAATACCGGGCTCAATGAGTCTGGTAATTGGAATGAGTACAATCTAAATCCCTTAACGAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTTAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGACTTTGGGATGGGCCGGCCGGTCCGCCTATGGTGTGCACCGGTCGTCTCGTCCCTTCTGTCGGCGATGCGCTCCTGGCCTTAACTGGCCGGGTCGTGCCTCCGGCGCTGTTACTTTGAAGAAATTAGAGTGCTCAAAGCAAGCCTACTGTCACGGGCCTAATTTTAACCACGTGCGGACAGCCTAACACTCACTATATTGAGGCTAAACTTCAGTCCTAAACCGCCCTGAACAACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACAAAAGTTGGGGGCTCGACGACGATCAGATACCGTCCTAGTCTTAACCTTAAACGATGCCGACCAGGGATCGGCGGATGTTGCTTTTAGGATTCTGCCAGCACCTTATGAGAAATCAAAGTTTTTGGGTTCCACGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGATGGAAGGGCACCACAAGGAGTGGAGCCTGCGTCTTAATTTGACTCAACACGGCGAAAATTACCAGGTCCAGACATAGTAAGGATTGACAGACTAAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCCTGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCATTAACGAACGAGACCTCAGCCTGCTAACTAGCTATGCGGAGGTATCCCTTCGCGGCCAGCTTCTTAGAGGCACTACGGCCTTTTAGGCCACGGAAGTTTGAGGCAATAACAGTTTCGTGACGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGATGTATTCAATGAGTTTATAGCCTTGGCCGACAGGCTCGGGTAATCTTTGAAATTTCATCATGATGGGGATAGATCATTGCAATTGTTGGACTTCAACGAGGAATTCCTAGTAAGCGTGAGTCATCAACTCGCGTTGACTACGTTCCTGCCCTTTGTATACACCGCCCGTCGCTCCTACCGATTGAATGATTCGGTGAAATGTTTCGATCGCGGCGACGTGGGCGGTTCGCTGCCCGCGACGTCGCGAGATGTCCATTGAACCTTATCATTTAGAGGAAGGAGAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTG +>CM001659.1/36667298-36667637 Nomascus leucogenys chromosome 13, whole genome shotgun sequence. +GCCGGGTGCTGGGGCACGCGCCTGGAGTCCCAGCTACTCCTGAGGCTGAGGCAGGAGGATGCTTGAGCCCAGGAGGTAGAGGCTGCAGTGAGCCATGATCACGCCACTGCACTCCTGCCTGGGCTGTCGTGGGCTATGTCTAGCTGGAGTCTGCACTAAGTTCAGCATCAGCGTGGTGACCTCCCAGGTGCAAGGGGACTACCAGGTTGCCTAAGGAGGGGTGAACCAAATCAGATCAGAAATGGAGCAGGTGGAAATCCTGTGCTAATCAGTAGTGGGATCCCGCCTGTGAATAGCCACTGCACTCCAGGCTGGGTGACATAGCCAGAACCCATCTTTG +>ALWZ041907802.1/9044-8520 Picea glauca, whole genome shotgun sequence. +GGGAAAGAAGACCTTGTTGAGATTGACTCTAGTTCGACTTTGTGAAATGACTTGAGAGATGTAGAATAAGTTGGAGTCATTTTCAATGGAAGTGAAATACCACTACTTTTAATGTTATTTTACTTATTCCGTGGGGCGAAGACGGGGCATTGCCCCTGTTTTTGGCCTTAAGACATGTTTCGGTGGGTCAATCCGGGCGGAAGACATTGTTAGGTGGGCAGTTTGTCTAGGGTAGCACATCTATTAAAAGATAACGTAGGTGTCCTAAGATGAGCTCAACGAGAACAAAAATCTCATGTGGAACAAAAGGGTAAAAGCTCATTTGATTTTGATTTTCGGTATGAATACAAACCATGAAAGTGTGGCCTATTATGAAAATGAAGTTATTTTGGCCTTAGATGATGGTGCATGTTTTATCAATGTGTAGCTTCACTTGTAATGCATCTTAAATTAATGCATAGCTTCACGTGTAATGAATAGTAAGAATCACAAGAACTTCCTGCTACATGCCTATAAGTTTAGCTT +>FAOM01433674.1/17830-17492 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_433674_5DL +TCGAATTGTTTGTTGACACGGACAAAGTAAGGGAAAACCTCTGAAAGAATTTCCATATTGACCTTGGACATATAAGAGTTCCGAATCAAATCTCTTTAGAAAGATGATCTTTTGTCTCATGGTAGCCTGCTCCAGTCCCCAAATTCAGAGAAACCTTGGAATTAAAAAGGGCAATCCTGAGGCAAATCCGTGCTTTGAGAAAACAAGGGGTTCTCGAACTAGAATACAAAGGAAAATGATAGGCGCAGAGACTCAATGGAAGTTGTTCTAACGAATCGAGTTAATTACGTTGTGTTTACCAAAAGTTCCTACATTAATGGGAAATGCCCTACCTTTGAG +>CM000916.2/22526794-22526579 Nasonia vitripennis chromosome 2, whole genome shotgun sequence. +AAGATCATACTTCACAGGATCATTTCTGTAGTATATCTTCACAGACTCTCTACCCAAAGTAGGAGTCGATGCAACCACGATGAGGAGACGTAGCTCTCCTTCCTGAGCGTGAGGACGACTCGGAATTGCGGCTTCGGTCGGAATACCAGTCATCGATGATCGTTCACCTTCTGCACTTTGTGCAGAAGGCATGGGAGGACGGGCTTTCTGAGTGGC +>MLCN01000008.1/279819-279740 Alkanindiges sp. H1 contig8, whole genome shotgun sequence. +GGTCTCGAGGGGTGCTGCAACAGTAAAGTAATATACTGCCAGGCTCGAGCATGTCATTTATTGAACGGCATCCGCGAATT +>JPUK01000002.1/192788-192900 Candidatus Micrarchaeum sp. AZ1 Contig2, whole genome shotgun sequence. +CCAAACGGTAATAGGAGCAGGGAAACGCCCGATCCCATTCCGAACTCGGAAGCTAAGCCTGCTCACGATATGTGTGTACTGTCTGCGGATGGGAAAGCATGTTGCTGTTTGGC +>AAQR03163520.1/18142-17999 Otolemur garnettii contig163520, whole genome shotgun sequence. +ATCCTTTCACAGCTCATAAGCGGGGCGATTGGGTTTTCATGCGCATGCGTGCGCACACCCCTCCTCCCTCTCCTTCCCCCCTTCCCCCACCCTCCCCGACCCCGCCAAATCTTGTTATGACATTGGCACATTACCCATCTGACA +>ABAV01003903.1/1546-1268 Nematostella vectensis strain CH2 x CH6 NEMVEscaffold_21_Cont3903, whole genome shotgun sequence. +TAGAACAATGTAGGTAAGGGAAGTCGGCAAAATAGATCCGTAACTTCGGGAAAAGGATTGGCTCTAAGGGTTGGGTCTGTCGGGCTGAGACTTGAAGCCAGTGGACCCGGCCCGGACTGGCCGAGGCCCTTCCGGGGGTCGAAGCTGGACCGGGAAGGGGCTGTTGGTGGATTGGCCCAGCTATGGTCGCGAGGCCAATTCGGCAGGCAATGAACAACCAACTTGCAATCAGATTTCGAATCGATCAAGAATTGAGTTAGAAGGTCCATGTACCATGTA +>AM910987.1/84270-80099 Plasmodium knowlesi strain H chromosome 5, complete genome +TGTTTTCTAAATAGGAGAGCGAATCCGCCGAATTTAAGCATATAATTAAGCGGAAGAAAAGAAAATAACTATGATTCCTTTAGTAACGGCGAGTGAACAAGGAAAAGCTCAAGCGGATAATCTGTGTGTCTTTTCCTTTTTTTTTAAAAGGTTTAGCACAAAGAATTGTCGTGTATAAAAATACTATAGTAACTTTTCGGTATCTGTAAAAATAAAGCATATGTTACGAAGCGAGGTGGAATGCCTCCCCCAAAGAGGGTGAAAGGCCCGTAGGAAAACATTTATGGTTTAGCGTTACTGAGAGACCTCTATATGTAAAAGAGTCGTGTTCTTTGAGATTGGAGCACAAATGCGTGTGATACATTTCACATAAAGCTAAATATGTGTAGGAGACCGATAGCAAACAAGTACCGTGAGGGAAAGATGAAATAGTACTCAGGAATGAGCAATTAAAAAGTACCTGAAATCGTTAAGATGGAACGGATTAAGAGAGAAAAAAAGTAAATGCAGTCAAATAGTGATTTAGCAGCACTATCATAATTTAACTGCTTTATTAAAAGAAACATCAGTAAAAAGTTTTACGACCTATTCGGATAAAACTGTTGATGAAAAAAACATTTAATTTTTTTTTCTTATCCCAGGATAAAAAAAAAAATTAATAGTCTTTTTCACATTATCCTTATTTTAAAATATAGGATAAAAGGTTTTATAGAAAATCACGAAATAAAAGTGATAAGATAGTCCATTTTACTGAGGTTATATAAAAATGTGTATTTGCTTGTAAAAAAAAAAAAATATTCTTTGTGAATATCTTTTTTTTTACAGCTGCGCATTTTAAGTTGTTTCTATAAGATACTTTCTTAACCCACTCGTCTTGAAACACGGACCAAGGAGTCTAGCAAATGTGCAAGTGTATATGATATATTAAACATTAATGTACGTGAATAACGTACTGTTTTTATACGCATAATTAATGTAATATGTTATAATTTGTAGAATTAGTTGATAATTGCAAAATTATCACTAACGCATACAATACCGGTAGGCAAATTATGCCATATTGAGTAAGAGCATATTTGGTAGGACCCGAGAGGCTTTGAACTAAGCGTGGTGAGATTGAAGTCAGACGAAAGTCTGATGGAGGATCGAATTGATACTGACGTGCAAATCGTTCATTTCAATCACGTTTAGGGGCGAAAGACTAATCGAAAAGCCTATTAGCTGGTTATTTTCGAAAGATCTCTCAGGATCGCTGGAGTTGATTGTTATAATTTTACCAGGTAGAGACAATGATTAGAGGACTCAGGGAATTGAATTTCCTTGACCTATTCTCAAACTCCCAATGGGTAAAAAGGGATAAAAATAACTTTATTGTATTTTTCTCTATTCAAATAAAATAACTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGAGGGATGCTCCTAACGCTTGGATAAGGTGCCTAAATATTCGCTCATCAGATCCCATAAAAGGTGTTGGTTCATTATGACAGTAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTTACCTACCGAATGAACTAGCCCTGAAAATGGATGGCGCTAAAGCGAATTACCGATACCAGGCCATAGAAGGGCAAGAAAAAGAATTAGTACTTTCGGGTGTTTTTTCTTTTTTAGGAACCTTCTATGAGTAGAAAATCGTGGGGTTTTGTGTAGAAGCGAAATACGTGAGTTTTCGTGGAACATCTCCCTAGTGCAGATCTTGGTGGAAGTAGCAACTATTCAAATGAGAACTTTGAAGACTGAAGTGGAGAAGGGTTTCTTGCCAACTGTGTTTGTACAAGAGTTAGCCGCTCCTAAGAGATAGCTGAAAAGTGTTTATATGGGGAGGATTCTAATCTTTCTATCCCCGTCTCGAAAGGGAAACAGGTTTATATTCCTGTGCCAATACAAATCTATGGGTTAATTTTTAAAAGATGGCAACATATAGACAAATGAACCTCTTTACATAGGTTTTACCATCGGGGTGCGTTATCTTTGCACTTTACCTTTATAGCATACCTTGGAATCAATTTACTTGGAGAAGAGGTATGTTGAAGTCAATTCAGTTAAATTTTTGTATGGTTCTGTAATTCTCATTACAGAATTATATGTAAAAACTTTCCTGTTTTGTAGCAATAGTAATTCGTTTTTATGAATTATTCGATTCGGTATAAACTATCCTTGAAAAAAGGGGGGAACAACAAACCAAAGGGGGAGAAGTAGAATCGCCTACAAGTGATTTTAGTAATCGCAAGATTGCTAGTTCGGTTGTAAAAAGATTCTTTTCTCATTCTTGGTATGTACAACTCTAATTTGTAAAAATGAGCGTACCAACAACCGCATCAGGTCTCCAAGGTTAGTAACCTCTGGTTAAATAGAAAAAAGTAAGTAAGGGAAGTCGGCAAAATAGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGACATTAGAATGGAAAGAAATAGAAATATAGTCGAAAGAAAAGTCATTGAGGTGCTTTTACATGTTTTTTTTTTCCACAAAAAAAACGTGTAGGCATTTCTTTTGCACTCTTTTCTCTTCTGTTTTCCTTTTCTGCCCCCATTCGCCGTCATATATATATCTTTTCGCTTCGGCGATTGGCGTACATATGACACTTATAATGTTAACTCAGAACTGAAACGGACAAGGGGAATCCGACTGTTTAATTAAAACATAGCATTGTGACAAGCCATAACTGGTATTAACACAATGTGATTTCTGCCCAGTGCTTTGAATGTCAACTTGATGAAATTCAATCAAGCGCAGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTACTTGCTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGCCAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTTACTCTAGTCTGGCTTTGTGAAACGACTTAAGAGGTGTAGCATAAGTGGGAGTAGAGATCGAAAGGTCTTTACGACAGTGAAATACCACTACTTTTAACGTTGTTTTACTAATCCATTTATTGGAATATATATGTATAAAAGGGATGCTCCTTTTTTTTTTAAGAAAGGGGTTTTATCTTTTACATATTATCGCAGAATTTATAGTTAGGGCTATGCATGTAAAAAATGTGTAGTTTTATCTATAGTTCCGATTTCTTATGGAGACATAGCCAGGTGGGGAGTTTGACTGGGGCGGTACATCTGTTAAACAATAACGCAGATGTCCAAAGACAAGCTCAGAGAGAACAGAAATCTCTTGTAGACTAAAAGGGGAAAAGCTTGTTTGATTTTTACTTTCAGAAAAAGTAGAAAACGTGAAAGCGTGGCCTATCGATCCTTTACATTTGCAAAATGATGGAGTTTATTCTCTTACTGTGCATGTAGAGGTGTCTGAAAAGTTACCACAGGGATAACTGGCTTGTGGCTGCCAAGCGCTCCTAGCGACGTAGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGGGACGCAGAAGTCTCAAAGTGTCGGATTGTTCACCCGCTAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGAATACTATTATTTTTATATACATATAGTATTGTGACAGTAATCCAACTTAGTACGAGAGGATTAGTTGGTTCAGACAATTGGTACAGCAATTGGTTGACAAACCAGTGTTGCGAAGCTAAGTCTGTTGGATAATGGCTGAACGCCTCTTAAGCCAGAACCCATGCTGATTAAACAATATTATTTCGATCTTTTTTGTAACAAATTTTTTACCGTCGATGTAAAAGAGAAATTATATATGCAGTTCTGTGTTTTTAACCGGGTGCATTATTAATCCTATTAACATATAATACTGTGTGTGTATCGTTTGCAAAAACTTACACCAAAACAGTAAAATGTTTAATATTATTTTAACAACAAGAAAGATTATCTGTGTTTGTAGACTACTTACTTGGTCCCGGGGTGCTGTAAACATGAAAGTAAACTTTGTTTTACGATCTGTTGAGGCTTATCCTCAGTGACATAAGAAAAT +>LTWW01000048.1/24870-24711 Staphylococcus sp. HMSC078E07 Staphylococcus_spHMPREF2905-1.0_Cont825.1, whole genome shotgun sequence. +AGTGTCTTTTAAAAAGAGTCCAGAGAGGCTCAAAAGACAGGGTGACTAATGATATAAATATGATTAACTTTAATTGTTCGATTGTTATCAGACGAATCATATAAAATATTTTTATATACATTAAACCTCATGTCTTTGTAAAAGGCATGAGGTTTTTTCT +>MTEM01000151.1/7116-7366 Desulfobacteraceae bacterium IS3 Ga0073107_10151, whole genome shotgun sequence. +ATACCCGAAATTTGTTCAGGTGTTTTATCGCTTAATAGGGAACCCCGTGAAAATCGGGGGCGGGCCCGCCGCTGTAATCGGGGACGAACGCCGCTTGAAACCACTGACGGAGAAAATGCAAAATGCAAAGTGCAAAATGCAAAGTTAACTTTGCACTTTTAACTTTACATTTTGCATTGTATCTGTCGGGAAGGTGCGGTCAGTAGGATGAACCGAGAGTCAGAAGACCTGTCTGAATGATATACCGGCGT +>JH591489.1/51165-51260 Lepisosteus oculatus unplaced genomic scaffold UNK80, whole genome shotgun sequence. +AACCTTTTATTACTTTTTGATAATAAAAAAAAATCTGTTCTTATCAGTTTAATATCTGATACGTCCCCCATCGGGGGACCACATATTAAACNNNNN +>MICY01000022.1/569-1 Tenericutes bacterium GWF2_38_8 gwf2_scaffold_13316, whole genome shotgun sequence. +TTTATGGAGAGTTTGATCCTGGCTCAGGATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAACGCACCATTTCGGTGGTGAGTGGCGAACGGGTGAGTAACACGTAGGTAACCTGCCCTTAAGACGAGGATAACCAAGGGAAACTTTGGCTAAAACTGGATAGGAACATCGAAGGCATCTTTGATGTTTTAAAAGACCTAGCAATAGGTATGCTTAAGGAGGGGCCTGCGGCGCATTAGTTAGTTGGTGAGGTGAAGGCTCACCAAGACGATGATGCGTAGCCGGACTGAGAGGTTGAACGGCCACATTGGGACTGAGAAACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATTTTCGGCAATGGGGGAAACCCTGACCGAGCAACGCCGCGTGAATGACGAAGTACTTCGGTATGTAAAGTTCTTTTATCAGGGAAGAATGGCTAGCGGAAAAGCTAGATTGACGGTACTTGATGAATAAGCCCCGGCTAACTATGTGCCAGCAGCCGCGGTAATACATAGGGGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGGGTG +>ABBZ01000577.1/639-936 Beggiatoa sp. PS contig21537_2600-2601, whole genome shotgun sequence. +CAAGGGACTTAAACAAATTTGAGCACCTATTGCGAAATCTTTAGGTGAATGGAGTCTAATTCGGCGAAACCTTTAAAATGACAACGCCGAGCTAAGCTCAACGGTGGGGGCAAGGAAAGGGGATAATCATATCCCTTTTCCTTTCCCCTTTATTATTTTTTCTAAACCATTTCTCCTCCGTTGAGAAAGTGTAGAGACCATACGGCTCCTGCCTGACTAAATCCCTTCAATTATTTGATTGCGAGGCATTTAAAGGCAAAGACAGGGTCCAGACCACAAACATTCAATTAATTGAAAA +>MKTL01000001.1/659200-659282 Clostridiales bacterium 38-18 SCNpilot_bf_inoc_scaffold_0, whole genome shotgun sequence. +CTATTATCTTGGCAAACTGCTTGAAAGAGTAGGACGCAAAGTTTGAAGTCTAAGGCACTAGCTATGACCGTTCAACTGCAGTA +>CP000680.1/4301122-4301323 Pseudomonas mendocina ymp, complete genome. +CGGGTTTACTCCTGGTTTTTACCGTTTCGCCAAACCGAGGTTCGGCGGCGTTTTGGTGTCTGATTCGGTAACGAATCGGGAGCACCATCTGCGTAGGCCATCAGGCGAACCTGACATTTAAAACGCGAGTCACCTACGGTCTTGGATAGCCCCCGCCAGGCAGGGACCCCAATCTTTCAAAGCCGGCAGCGCATGGCTGCCG +>KK198757.1/45732841-45732932 Eucalyptus grandis cultivar BRASUZ1 unplaced genomic scaffold scaffold_5, whole genome shotgun sequence. +TGATGATAATGATGATGATGATGATGATGATAATGATGATAATACTAGTAGTAGTAGTAGTAACATCATCATCATCATCATCATCAAAGGTA +>CP000705.1/1964394-1964162 Lactobacillus reuteri DSM 20016, complete genome. +TAAAAAACGTTGACCGAGAATCGTCAATTCTGCTGAATTAAGAGAGCCGGTGGTTGGTGGAAACCGGTAGGAGGTAGTTGCGACAAATCCCTCGCGAGTTGTATGCCGAAATAATAGTAGAACATACTGGTAGCAGCCATTATCTTGCCGATTAATTGCCATTGTGGGCAGTTGATTGAGGCAACCCTTGTGTTGTAAATAAAGGTGGTACCACGTTGATAGACGTCCTTTTA +>AHHD01001364.1/1-303 Macrophomina phaseolina MS6 contig01813, whole genome shotgun sequence. +GTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCTGCCGAAGTTTCCCTCAGGATAGCAGTAACGTATTCAGTTTTATGAGGTAAAGCGAATGATTAGAGGCCTTGGGGTTGAAACAACCTTAACCTATTCTCAAACTTTAAATATGTAAGAAGTCCTTGTTACTTAGTTGAACGTGGACACTTGAATGTACCGTTACTAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGAACGCGATGTTAAGGTGCCGGAATGCACGCTCATCAGACACCACAAAA +>AFYH01130564.1/25905-25790 Latimeria chalumnae contig130564, whole genome shotgun sequence. +TTTGAAACCCAAACCAGCTAGATTTAATTCTATCCACGTCTGATCTCAGAAGCTAAGCAGGATCGGGCCTGGTCAGTACTTGGATGGGAGACCACTGAGGCAGCCCAGGTGCAGTC +>KB944511.1/1034622-1034709 Plesiomonas shigelloides 302-73 genomic scaffold scaffold00012, whole genome shotgun sequence. +GTAAGACGCGCTATTTTGTTGTCATCACATCCCTGAAATTACACACGCAGAGATGTATTTCGGCCACCCCACCTTGGAGTGGCCTTTT +>CM002812.1/447709-447914 Capsicum annuum cultivar Zunla-1 chromosome 1, whole genome shotgun sequence +TCAGTCATAGTTTGTTTAATGGTATTTATTACTCAAATAATCATAGTAACTCTAAAGATAATACATGCAACAAACCCTAACTTTTTAAAGGGATGCATATATTAGATAAAAGGTAGATGTGGGCTCTTCCCATTTTTTTGATGATTCATGATAACTCAATGGATTGCACGGTCATTATGTTGGCGACACATCATTCAAATTTTTGC +>AZHD01000026.1/410476-410398 Sporothrix insectorum RCEF 264 scaffold_26, whole genome shotgun sequence. +AAAGGGGTAGTATAATAATTAAACACTTAAAAGACGCCGTAACGCCGCGACGTCGTAGGTTCGAATCCTACCCCTTTTA +>CM002818.1/23807342-23807451 Capsicum annuum cultivar Zunla-1 chromosome 7, whole genome shotgun sequence +TTTTGTATTTTTCCACAGCTTTCTTGAACTGCATCTAATTACGATTTTCACTAATGAGGAAATTAATTCATATCGTTGCGGTTCAATAAAGCTGTGGGAAGATATAGATA +>AYZL01000006.1/155934-155671 Lactobacillus floricola DSM 23037 = JCM 16512 strain DSM 23037 NODE_9, whole genome shotgun sequence. +AATTTTACTGAGAAAAGATGAGTAAATATTTATCTTATTTTAACAGAGAGCCATGTTAGGTGAAAGATGGTATTTAAGAAAATATTGAAGATGGTCTTGGAGTAAGTTTAAATTGTGAGCCAGTTAGGTTAGCAATTTACGGGATAACACACGTTACTGTGTTGAAGGATAGCTACCATGAGTGTCCGGATCGAAGATGGTGATAATAGCATTGTATAATTATCACTAATATAGGGTGGTACCGCGTTTAACAACGCCCCTAGG +>ALWT01124023.1/1602-1388 Myotis davidii contig124023, whole genome shotgun sequence. +ATCGCTTCTTGGCCTTTTGGCTAAGATCAATTGTAGTATCTGTTCTTATCAGTTTAATATATATTTCCAAATTTTTCAGGTGGATGCCCCAAAGAGGGATTTCTGGGTTATATGGTAGCTCTATTCTCAATTTTTTTTTTGAGGAACTTTCATACTGTTAACATAGCGGCTGTAACAATTTACATTCCCACCAGCAGTGCATGAGGGTTCCCTTT +>JTDY01005470.1/30475-30582 Operophtera brumata OBRU01_Sc05470, whole genome shotgun sequence. +TGATGATGATGGTGATGATGTTGGTGGTGGTGGTGATGATGGTGGTGGTGTAGGTGGTGATGTTGGTGACCATCATCATCACCACCATCATCATCATCATCACCTGCA +>LN774769.1/2382714-2382521 Lactococcus piscium MKFS47 genome assembly, chromosome: I +GAAGCACTGGAATGTGCGAACTTACTCACATTTTTGACCGACTAAATCGTATTACCTAGGGAGTCTTTGAGACATCTTACCGCGTGCAAGCCATTTTAGATGGAAGCTGCTAAGTAAGAGCGAGACGCCCACCTGTTTAACATTTACAGCGGGTTCAATACAAGAGTGAGTAACGGCATTCAATCAGTGCTTTT +>AYUG01147828.1/3237-3115 Fukomys damarensis contig147828, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAAACAACATCTTATTAATTCTGGTTTGATTGTCTTTACCAAAAGAAATCATTCCTGAGGTTTTCTTATGGAAAATGTTTTGGAACTTTC +>URS0000D69AE5_12908/1-140 unclassified sequences RAGATH-24 RNA +TTGACAGTCCAAAAACCACCTGCCCTCGGGAGATACCCGAGGTGTGACCTTCGCCGTTTATCGGTCGCCTCCCAGATTCATCGGGGGGCGGGGAGAGAGGGTCAGCGATTCGTTCGCTTGATGACGTGGGAATAGGACAC +>KB095811.1/12337799-12337623 Helobdella robusta unplaced genomic scaffold HELROscaffold_1, whole genome shotgun sequence. +TGATGACGATGATGATGATGATGATGGCGACGATGATGATGATGATGATGACATTGTTGTTACATCAAAACAGCGATTTCGAATGCATAATTGGATGTGTTTTTGTTTGGCCCGGCAAATAACTGCTATTAAATGTCATCATCATCATCGTCGTCGTCCTCATCATTATCATCATCA +>LL990082.1/1-981 Schistosoma rodhaini strain Burundi genome assembly, scaffold: SROB_contig0004979 +GCATTGCGATGTCCACTGATTGGTTTTGACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATTACCGACGTTCAATCAGCTGCGTCAACCGCACTGAATTGCATCCTACGTGTGGGGTGAAGCAAGGAGACCCCCTGTCGCCACTCCTCTTCATCATGGTTCTCGACGAAGTACTGGAAGGTCTAGATACAATGACCCACCTAACAGTTGATGGAGAGAGCTTGAACTACATAGCTTATGCTGACGATCTCGTAGTTTTCGCTCCAAATGCAGAACTCCTTCAACGAAAACTCGATCGAATCTCCCTACTTCTACACGAGGCTGGATGGTCGGTTAACCCTGAAAAAAGCCGGACCCTGGACCTAATCTCTGGTGGCCATTCCAAAACCACAGCGCTCTCTCAGACAGAATTCACCAACGCGGGGATGCGTATACCACCGCTTTCTGCCGCCGACACCTTCGACTACCTGGGTATCAAATTCAACTTCAAGGGCCGATGCCCAGTGGCCCATATTGACTTATTGAACAACTACCTCACGGAAATATCGTGCGCTCCACTTAAGCCGCAGCAGCGCATGAAGATCTTGAAAGATAATCTACTCCCTCGACTCCTCTACCCCCTGACTCTAGGAATAGTACACCTGAACACCCTGAAGTCAATGGACCGAAATATCCACACGGCCATAAGGAAATGGTTGCGGCTACCCTCCGACACCCCGCTAGCATATTTTCACTCACCCGTCGCTGCCGGAGGCCTAGGGATCCTCCATCTGTCCTCATCGGTTCCATTCCACCGTCGAAAACGTCTAGAAACCCTCCTATCTTCACCGAACCGCCTACTGCACAAGTTGCCAACTTCTCCAACACTAGCTTCTTATTCACACCTTAGTCAACTGCCAGTTCGAATTGGGCACGAGACCGTAACGTCTAGA +>BDDD01008159.1/30464-30638 Cephalotus follicularis DNA, scaffold: scaffold8159, isolate: St1. +ATACCCTTAACTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTCTGAGTTTATCATCTCATATGATTCACACGATATTTTTTTATATGGGAAAAGACTCATCACAATAGCTTACTATTGGGGTTTTTTAGCGTCCCTTATGTGTTCCATACCGTATGGACCTGACGCACCCCTA +>ALYE01001358.1/3372-2729 Gossypium raimondii Chr01_contig_1358, whole genome shotgun sequence. +AATACGAACCGTGAAAGCGTGGCCTATCGATCCTTTAGACCTTCGGATTTGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAGCAGAATTCACCAAGTGTTGGATTGTTCACCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTACCCTACTGATGGCCGCGTCGCATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGCTGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGAAGCGACGCACGCGCCCGTCGCCCGATTGCCGACCCGCAGTAGGGCCTCTGGCCCCCAAGGGCACGTGTCGTAGTGCAGCGGCCGCGGCGGACAAGTCGCGGGCGCCTCCTGGAGCGTAATTCCCACCGAGCGGCGGGTAGAATCCTTGCAGACGACTTAAATACGCGACGGGGTATTGTAAGTGGCAGAGTGGCCTTGCTGCCACGATCCACTGAGATTCAGCCCTTTGTCGCTTCGATTCGT +>CM001740.1/4627691-4627566 Gossypium raimondii chromosome 1, whole genome shotgun sequence. +GGGCGTAGGCCTCTTAAAAGGAGTGCAAAGGCAGAAGGGAGCTTGATTCAAGACCCACCTGTCTAGTAAGGACGAAAATCAGCTTTAGTGATCCGATTGTGCCGAGTGAAAGGGTCGTCGCTCAAC +>KB730334.1/190955-191028 Fusarium oxysporum f. sp. cubense race 1 unplaced genomic scaffold scaffold395, whole genome shotgun sequence. +GCCAAGGTGGCCGAGCGGTCTAAGGCGCCAGACTCAAGATCTGATTGGTTGGATCTAGAATCCCAACCTTGGCA +>MHLG01000025.1/17211-16820 Candidatus Liptonbacteria bacterium RIFOXYD1_FULL_36_11 rifoxyd1_full_scaffold_658, whole genome shotgun sequence. +GGGGGTGAAAGGGCTCGACGGAGTTTCTTTGTTATAAAAGTGGCAGGTAGGTTTGACGAGACCTTAAAAACGTCAAAAAAATAAGTGCCAACTTATTCAACAGACAACCGGCTTTAGCTTACGCTTAAGTTGGTTGTAACCTTAGCTTTTATGCTGAGGCGTCGCTCTACTTTTTGCTTATAGGAGTGGAAGCGGTGTAAAAGTATAAGCTTTTCTTACTCTTTTAAACTTGGGGAGTGGGAGAAAAAAACAGGTTTGGCGGGTAAAAACTTTTTGGTAAATTATAAATTTTTACTCGTTTACCGAAAGGTAAAAAATAAAATTTACCTATATCTGTAGAAACTTTTATGGCTCAACTTCGGACATGGGTTCAATTCCCATCATCTCCACTA +>HF992493.1/15144-15489 Mycoplasma sp. CAG:877 genomic scaffold, scf27 +AATATATAGACAAACGCTGGGACTCTTGAGGTCCTTGAGGAAAGTCCATGCTCGCACAGTCTGAGATGACTGTAGTGTTCATTCTTAGGGAATAAATAACCTAAGGTAGTACTTGTACTAACGGCGGATACTATATCTAAGTCTTATGATATGATATAGTCCATAAAGTGCCACAGTGACGAATTCTTTGGAAACGAGGAAGTGAAACGCGGTAAACCCAATGAGCGAGAAACCCAAATTTTGGTAGGGGAGTTCCAACTTCGAGAAATGAATTGGAGTGGAGACCAGTAATGGTAGATAAATGTTTGTCGCTTAGGAAACTAAGAACAGAACATGGCTTATTTAT +>CM001498.2/114148093-114148035 Papio anubis isolate 1X1155 chromosome 8, whole genome shotgun sequence. +TGACTTATTTGGTTAAAGTACCTGTCTAGTAAACAGGAGATCCTGAGTTTGAATCACAG +>KE356582.1/1391668-1391842 halophilic archaeon J07HB67 genomic scaffold scf_7180000098878, whole genome shotgun sequence. +ACTGCAGGCTGTCGCTGAGACATGGTCGCTGATGTGCAGAGTAGGTAGGAGTCGTTACCGAGGCCCGTGCGCCAGCACGGCGCCCAGACACACATGAAACACTACCCGTCAGTGACTGTGACTCTCACTCCGGGAGGAGAACACCGGTAGCCGGGCAGTTTGACTGGGGCGGTAC +>CM000820.5/64985614-64985509 Sus scrofa isolate TJ Tabasco breed Duroc chromosome 9, whole genome shotgun sequence. +GTTCTTGCCTCGGCAGTATATAAACTAAAACCGACAATACAGAGAAGATGAGCATGGTCCCTGTGCAAACATAGCATGCAAATGTCCATAAAAAAGAATGCTATTT +>CM000791.1/61008405-61008287 Oryctolagus cuniculus chromosome 2, whole genome shotgun sequence. +ATCGCTTCTTGGCCTTTTGGCTAAGATCAAGTGTAACAATGCTAAAACATCAAAAAGATATTCAGTCTAAGTTATATATTATACAAAATATATTTGCTGTTATATATATTTAAACCTCC +>GL637601.1/22009363-22009461 Caenorhabditis tropicalis strain JU1373 unplaced genomic scaffold Scaffold629, whole genome shotgun sequence. +TTTCGAAACAGAGTGACCGTCTGTAGTTTTTTTGTGTAGTGCTCCGAGCCAAAATGTGTTCGAAGCACCACGAGAAGCTGCAGATGGAACAACTTGTAT +>MNXL01000222.1/6266-6479 Anaerolineae bacterium CG2_30_64_16 cg2_3.0_scaffold_3852_c, whole genome shotgun sequence. +CTCTTATCCAGAGAGGCAGAGGGACCGGCCCTGTGAAGCCTCGGCAACCAGGAGATGGTAAATTGGTAAACTGGTAAACTGGTAAATTGGTAAATTGGTGGTCTGCTCGATGGGCAGCGACTTGCCACCAATCTACCAACCTACCAATCTACCAATCTACCAGGTTACCACCCCATGGTGCCAATTCCGGCAGAGTTGATCTGGAAGATGAGAG +>MEVM01000037.1/1634-1766 Candidate division WWE3 bacterium RIFCSPLOWO2_02_FULL_53_10 rifcsplowo2_02_scaffold_176987, whole genome shotgun sequence. +AGTTTATTAAGAGCGGCGGTTAGAGGCCTGGCTCGTTGACCCGCCCAGCAACTTGTTTGCGAGGCGTTGGAGAAACCCTCCGACAATCTTGGGATAAAGTGCTAAATCCAGCCCCGCTTGGGGAAGATAAATT +>ALWT01215141.1/49283-49606 Myotis davidii contig215141, whole genome shotgun sequence. +GTTTGTAAGAACGGACATGTCATGTGACATCTGTCACCCCATTGATCGCCCGGGTTGATTCGGCTGATCTGGCTGGCTAGGCGGGTGTCCCCCTCCTCCCTCACCGACCCATGTGCGTCCCTCCCGAAGCTGCGCGATCAGTCGAAGAGGACGACCTCCGCTCCCCCCAGAGGACCGGTCTTCGGTCAAGGGTATACGAGTAGCTGCGCCGCCCTGCTAGAACCTCCAAACAAGCTCTCAAGAAATATCCAGGGGAGACAGAGTAAAATTTAAAACGAGTTTGGCCTATATTCAGTCTTAAAAGTTTCATGAAAATATAAAACT +>AYZV02077796.1/1114-1237 Spinacia oleracea cultivar SynViroflay scaffold18850.con0006.1, whole genome shotgun sequence. +TAACCCCGGCACAAGGTTGACACAAAATTGAAATGATACAGAGAAGACATTTTCAAGATTGAAATTAATATGGCCCCTTTGCAAGGATGACACAAATTTAAGAAAACATTTTCAAGAAATCTTT +>FR899405.1/21238-21732 Mycoplasma sp. CAG:472 genomic scaffold, scf68 +TTGATATAATATTTATGTGGTGCATTATGCTAGTCACAATCACTATTTGAAGATGGGGCTAAAAATCCATTAATTGATACAATTGCACTTTATATATTTGCTGCTTCTGCCCAAGTTGGGGTGAATATGTAATTTAAAATTATAGGGAAATCATAACGGCATATGACTAACCCCCTGTAATTAAGCAAAAAAGGAAGAGTTATTCATGTCGTGCGTGGTTATTAGGGATTTAACGAATAATAATGTTGATGAAATCTTAACTGCAAAAGCGAATAAGAATAGTTTAGATGTGTCAGGGAAAACCTCTAGCGTGTTATTTATTATAAAGATTGAAGTGCGGACTATGTGGCAATCGAGTCATTAGTTAGGCAACTACTAATTATTTTCTTTAAAGAGAAATCGCCTAAGGGTAACCAAGGGAGAGAAAATAGAGAAATTCAACTCGACCAAAGCCGTAAGATTAATTTATAATAAACCATAACATTTTTAATAACT +>AFTD01054950.1/9395-9285 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +ATCGCTTTTCAGTCTTTTGGCTAAGATCAAGTTTAGTATTTGTTCTTATCAGTTTAGATTAGTACCCTGTTCTCTTTGAAGTATAAAAATAAGGTGAATTTAAAAAGTCAT +>MNTO01000093.1/21391-21316 Ruminococcus sp. CAG:9-related_41_34 Ley3_66761_scaffold_4291, whole genome shotgun sequence. +AGTCCGTGTGATGATGTAGCACCGCTGGCAAAGGGTACGGCTGGATGAGAACCATGCAGGGGTGAGATTCCCATGA +>CP002528.1/2537163-2537236 Dokdonia sp. 4H-3-7-5 chromosome, complete genome. +ATAACCAGGAGTTGGTCTATTAGAGAAGTCAGCAGAAGTCATAGTAGCTAAAGCCTGATATTTTAGTGAAGGAC +>AOTI010107864.1/9315-6890 Triticum urartu cultivar G1812 contig107864, whole genome shotgun sequence. +TGGACCTAAGCCTGAGACTAAGTGCTTCTACTGCAAAGGGACTGGTCACTAAAAGCGGAACTGTCCCAAGTATTTATTGGATGAAACTAAGCAGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGGATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGCTGGTTCTCCCCGAAATGCGTTGAGGCGCAGCAGTTGACTGGACATCTAGGGGTAAAGCACTGTTTCGGTGCGGGCTGCGCGAGCGGTACCAAATCGAGGCAAACTCTGAATACTAGATATGACCCAAAAATAACAGGGGTCAAGGTCGGCCAGTGAGACGATGGGGGATAAGCTTCATCGTCGAGAGGGAAACAGCCCGGATCACCAGCTAAGGCCCCTAAATGACCGCTCAGTGATAAAGGAGGTGGGGGTGCAAAGACAGCCAGGAGGTTTGCCTAGAAGCAGCCACCCTTTAAAGAGTGCGTAATAGCTCACTGATCGAGCGCCCTTGCGCTGAAGATGAACGGGGCTAAGCGATCTGCCGAAGCTGTGGGATGTCAAAATGCATCGGTAGGGGAGCGTTCCGCCTTAGAGGGAAGCAACCGCGAAAGCGGGGGTCGACGAAGCGGAAGCGAGAATGTCGGCTTGAGTAACGAAAACATTGGTGAGAATCCAATGCCCCGAAAACCCAAGGTTTCCTCCGCAAGGTTCGTCCACGGAGGGTGAGTCAGGGCCTAAGATCAGGCCGAAAGGCGTAGTCGATGGACAACAGGTCAATATTCCTGTACTACCCCTTGTTGGTACGGAGGGACGGAGGAGGCTAGGTTAGCCGAAAGATGGTTATAGGTTTAAGGACACAAGGTGACCCTGCTTTTTCAGGGTAAGAAGGGGTAGAGAAAATGCCTCGAGCCGAGGTCCGAGTACCAAGCGCTGCAGCGCTGAAGTATGAGCCCCGTGGACTAGCGATTGCTTCTCCACGAGGCTCATACCAGGCGCTACGGCGCTGAAGTATGTAACTGATGCCATACTCCCAGGAAAAGCTCGAACGACCTTCAACAAAAGGGTACCTGTACCCGAAACCGACACAGGTGGGTAGGTAGAGAATACCTAGGGGCGCGAGACAACTCTCTCTAAGGAACTCGGCAAAATAGCCCCGTAACTTCGGGAGAAGGGGTGCCCCCTCACAAAAGGGGGCCGCAGTGACCAGGCCCGGGCGACTGTTTACCAAAAACACAGGTCTCCGCAAAGTCGTAAGACCATGTATGGGGGCTGACGCCTGCCCAGTGCCGGAAGGTCAAGGAAGTTGGTGAACTGATGACAGGGAAGCCGGCGACCGAAGCCCCGGTGAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAAAGGCGTAACGATCTGGGCACTGTCTCGGAGAGAGGCTCGGTGAAATAGACATGTCTGTGAAGATGCGGACTACCTGCACCTGGACAGAAAGACCCTATGAAGCTTTACTGTTCCCTGGGATTGGCTTTGGGCCTTTCCTGCGCAGCTTAGGTGGAAGGCGAAGAAGGCCCCCTTCCGGGGGGGCCCGAGCCATCAGTGAGATACCACTCTGGAAGAGCTCGGATTCTAACCTTGTGTCAGACCCGCGGGCCAAGGGACAGTCTCAGGTAGACAGTTTCTATGGGGCGTAGGCCTCCCAAAAGGTAACGGAGGCGTGCAAAGGTTTCCTCGGGCCAGACGGACATTGGTCCTCGAGTGCAAAGGCAGAAGGGAGCTTGACTGCAAGACTCACCCGTCGAGCAGAGACGAAAGTCGGCCTTAGTGATCCGACGGTGCCGAGTGGAAGGGCCGTCGCTCAACGGATAAAAGTTACTCTAGGGATAACAGGCTGATCTTCCCCAAGAGTCCACATCGACGGGAAGGTTTGGCACCTCGATGTCGGCTCTTCGCCACCTGGAGCTGTAGGTGGTTCCAAGGGTTGGGCTGTTCGCCCATTAATGCGGTACGTGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCATATCCGGTGTGGGCGTTAGAGCATTGAGAGGACCTTTCCCTAGTACGAGAGGACCGGGAAGGACGCACCTCTGGTGTACCAGTTATCGTGCCTACGGTAAACGCTGGTAGCCAAGTGCGGAGAGGATAACTGCTGAAAGCATATAAGTAGTAAGCCCACCCCAAGATGAGTGCTCTCTCCTCCGACTTCCCTAGAGCCTCCGGTATCACAGCCGAGACAGCGACGGGTTCTCCACCCATACGGGGATGGAGCGACAGAAGTATGGAAATAGGATAAGGTAGCGGCGAGACGAGCCGTTTAAATAGGTGTCAAGTGGAAGTGCCGTGATGTATGCAGCTGAGGCATCCTAACGAACGAACGATTTGAACCT +>DF157098.1/956789-956946 Plasmodium cynomolgi strain B DNA, chromosome 6. +TAACTGGCTTTTGGCTGCCAAGCGCTCCTAACGACGTAGTTTTTTGATCCTTCGATGTTGGCTCTTTCCATCATTGGGACGCAGAAGTCTGAAAGTATCGGATTGTTCACCTGCTAAAAGGGAACATGAGCTGGGTTTAGACCGTCGTGAGACAAGTT +>D90215.1/1270-1191 Nicotiana tabacum par gene, partial cds. +CTAACAAGGGGATAAAAAAATTCAAATGTGAAACAACTAATATTCAAATGTACGACGACCTTAAACAGCTCGGTGAAACT +>HG719501.1/1361-1 Eimeria maxima Weybridge genomic scaffold, Emw_scaff1073 +AGACCTGAAGTCAGTCGAGGTTACTCGCTAAATTTAAGCATATTACTAAGCGGAGGAGGAGAAAATAACACTTCCCTCTAGGGAAGAGCTCAAAGGGAAAATCGTGAGTCCCTTTTGACCTCACGAATTGTAGCCTCTTGAGGCGTTGCCAGTGGGCGGGCAGGCTAAATATTGACGTGAGACCGATGGCGAACAAGTACTGTTAAGGAAATGTGAAAAGGACTTCGAAAAGAGAGTTAAAAGTGTCTGAAATTGCTGAATGGGAGGCGATTGAAACTTTAGTCTCTTCAGGGTGCGGGTGGATATTAGTTGTTCATTAGAAGGTAGCAAAATGCCTCGTCATCAAAATTAGTGAGGTGCATGAATGGATTAACGAGATTCCCACTGTCCCTATCTACTATCTAGCAAAACCACAGCAAAGGGAACGGGCTTGCCGGAATCAGCGGGGGAAGAAGACCCTGTTGAGCTTGACTCCAGTCCGACTTTGCTGAACGACTTGCGGGGTGTATCATAGGTGGGAGCTCCGACGACCGTGAAATACCACTACCCTCAATGTCACTTTACCTATTCCGTTAAGTTGAGATGCATGCTCGGCATCTGTTGAAGTCTTAAGGCACCCTTTTGGATCCGATAAATGCGGAAGACACAGTCAGGTGGGGAATTTGGCTGGGGCGGCACATCTGTGAAACAATAGTGTAGGTGTCCTAAGGCAAGCTCAATGAGAACAGAAGTCTCATGTTGACCAAAAGGGGAAAAGCTTGCTTGATTTTGATTTTCAGTGCGAATACAAACTGTGAAAGCATGGCCTATCTATCCTTTAGGTCTGAGAAACTTTCAGCTAGAGGTGTCAGAAAAGTTACCACAGGGCTTGTGACAGCTAAGCGTCCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGAGACGCAGAAGTCTCAAAGTGTCGGATTGTTCCCCCGCCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATAAAATTGATACTGCGACAGTAATCCAACTTAGTACGAGAGGAACAGTTGGTTCAGATACTTGGTTAATACGGCTAGCTGAGAAGCTGGTGCCGCGAAGCTACCATCTGTTGGATTATGACTGAACGCCTCTAAGTCAGAACCCATGCTGGCTAAGCAGTGTTTCGCATTGCCCCATTTGTTACTTGCATATGGTTTTAGTGCCTTTTGAGCACAACATCTCATCAAAGCCCTTTGCGTCATGCGCTGGGCTATAATCACAATTTCCCACAATTGAGGCGCTACATCCATTGCAGACGACTTTGGCGCAACCAGGTATTGTAAGTGT +>CP003171.1/2269902-2269995 Oceanimonas sp. GK1, complete genome. +GCCCGGCGTCGGGTGTTCTCTTACTAGCGCACGGCTCAGCTAATGAGCCATTCCCCTGAGCCAGGTACACGGAATTTGTACCTGGCTTTTTTTG +>AACT01014037.1/2025-2536 Ciona savignyi cont_14037, whole genome shotgun sequence. +TTTGGCCGCCAAACCATTGCAAATACCCGAAAGATGGTGAACTATGCCTGAGGAGGTTGAAGCCAGAGGAAACTCTGGTGGAGGACCGTAGCGATTCTGACGTGCAAATCGATCGTCAAATTTGGGTATAGGGGCGAAAGACTAATCGAACCGTCTAGTAGCTGGTTCCCTTCGAAGTTTCCCTCAGGATAGCTGGCGCTCTGTCGCAGTTTTATCTGGTAAAGCGAATGATTAGAGGTCCTTGGGGGCCGAAACGCCCTCAACCTATTCTCAAACTTTAAATTGGTAAGAAGCCCGACTCGCTCGTTTGGAGCCGGGCATGGAATGCGAGTGCCAAGTGGGCCACTCTTGGTAAGCAGGACTGGCGATGCGGGATGAACCGAACGCCGGGTTAAGGCGCCCGACGCGACGCTCATCAGAGCCCCAAAAGGGTGTTTGGTTGATATAGACAGCAGGACGGTGGCCATGGAAGTCGGAAACCGCTAATGGAGTGTGTAACAACTCACCTGCCG +>CM000236.2/115408586-115408648 Rattus norvegicus chromosome 6, whole genome shotgun sequence. +GAATGAACACAGCTCTTTTAGAATTTTCCTAACAAGATTTCTGACTTTGGTCAGAAAACCCAA +>HG417174.1/11014915-11014980 Oryza rufipogon genomic scaffold, chr10 +AGGCCGATGATGCTAATCATGCTCCTATGGTTTTTCTCTAAGAATGTTTCCCAAGAGCTGAGGACC +>JH835324.1/5005558-5005616 Erinaceus europaeus unplaced genomic scaffold scaffold00036, whole genome shotgun sequence +CTCTGTAAAACTTTTCCTATGCTGGGTAGTAAAAGACACCTTGTTACCTGAATGGACAG +>LMQS01000004.1/71000-70919 Methylophilus sp. Leaf416 contig_4, whole genome shotgun sequence. +CCTTCTGAGGAACGCTGCGAGAGTTTCATACTCCCAGGCTCAGAGTGATAGCTGCGAAGCTTCTCAACTGCGTTCACTTTTC +>CM001441.1/4265140-4264954 Desulfosporosinus youngiae DSM 17734 chromosome, whole genome shotgun sequence. +TGTATATTGGAAAATAAAGGTGCGCGTACTACATAGTACAGCTTAAAAGGGAAGCAGGTAAAATTCTGCACGGTCCCGCCACTGTAATGGGGAAATGTTTTATACTAATAGCCACTAGTCCTACCGGGAAGGCGTAAAGCATTGATGAACCAAAGTCAGAAGACCTGCCTTTGTTGAATGAACCAAT +>JEMT01029493.1/3587-3436 Rhizophagus irregularis DAOM 197198w jcf7180003195098, whole genome shotgun sequence. +ATCCTCTCTTGCCTATTGGCTAAGATCAAGTGTAGTATCTGTTATTTTCAGTATAATATCTGAAACTTTACACACAGGAGTTCCTTGGCTTGCCAATACTCCCTCATGAGTGTCCCTATTATTGCACTACCTCTAGGCGACGCTCACATTTT +>URS0000D68632_7029/1-72 Acyrthosiphon pisum (pea aphid) type-P1 twister ribozyme +UUUUUAAUCAUACCAGUAGUCUAAUUUUUAGAUUACUGACAGUCCUAAGUCUGUAAAAAAUGAGAAGGGAAA +>LXGJ01000084.1/21313-21202 Bacillus sp. WF146 contig084, whole genome shotgun sequence. +CGCCTCTTTAACCGCAATCCCGTGAGGTTGCGAAGAGGTTTACGCGCTTTCCATGCCCATGGAAGGATGGAAGGAGTATGCCTCTTTGTGCCCGCACAAAGAGGTTTTTTGT +>MAVT01008674.1/885-718 Diaporthe helianthi strain 7/96 Scaffold_5759.1, whole genome shotgun sequence. +TATTATTCAATGGGCAATCCGCAGCCAAATACTAAGTTTAGGTGTAGTCTTATTTAGTATGCAGTTCATCGACTAAACGGGTGTTGGTTTAATTTAAAATATACTGTAGTTAATAGTAAACCTTAAATTAGGCTTAAGATATAGTCAGTCCTAATATGAAAATATTGG +>MCOG01001818.1/1-185 Neocallimastix californiae strain G1 LY90scaffold_1818, whole genome shotgun sequence. +CATACAAGAGGACCCCGGTTCAGGCGTGGAAGTATGTCCTGTTCTCGTCCTTGAATGATAACTTCAAATATTAATGAGGATAAATCCTTTGCAGACGACTTAAATTTATAAACTAGGTATTGTAAGCAGTAGAGTAGCCTTGTTGCTACGATCTGCTGAGATTAAGCCTGTGTTTACTGATTTGT +>GG665194.1/8635-8474 Plasmodium falciparum IGH-CR14 genomic scaffold supercont1.236, whole genome shotgun sequence. +NNNNNNNNNNNNNATGTTAACAATAATTCATGATGTAAAAATGTTATCCAGTGATGTTTTTATTAGAGGCTAAAAAAAAATGTTTATGCAATGATAAAACGAGTTAAGCATTTTTTTTTAAGTTGCCGACTCACCTGACATTGGAACAACCAAAATTATTGT +>AYCK01025824.1/19605-19691 Poecilia formosa, whole genome shotgun sequence. +ATTTGCTGCACGCAATTTGCGTACAATATAGCATAAAGTTACAGTTAGTATTTATGCTATATTGTACGCAAATTGCGTGCAGTTACA +>JOKI01000015.1/68827-69021 Rhizobium sp. R1-200B2 contig_15, whole genome shotgun sequence. +AGTCAGCACAAGGAGGCAGACATGGGACGCGCTTACTCTCTGAATGTCCTGGCAGTTGGTGTAGCATTCGTATTCGTGGCTTCCATGCTCTTCATTTGAGCGCCACAGTTTCACAACTACCGGTCATATCTGGCATCCGTGACAATCATATAAAGATTTGAAAGCAGGAAACGCAGCTCCATCGGGCTGCGTTTC +>URS0000D698DF_12908/1-132 unclassified sequences RT-16 RNA +CTAGCAAACCGTTTTTACGAAGTCAGCTAGTTATACGCTTATTTACTATGGGAGTTTACTCTTATAAAATGCAATCACGACACCTAATGTGTGAAGTGGTGGTGAAAACAAGAAGTAAATAAGCTAACTTGG +>AE009948.1/273558-273684 Streptococcus agalactiae 2603V/R, complete genome. +GCTGTTTTTTTAGCGAGCTCAAGGTAGTGAAAGTTGGGTAGAATAGGATGAATATTGGCACTTTTTAGTGAGTAAAAGTACAATCAAAAATGAAGTAATAAATTAGGGTGGAACCGCGTCTTTGACG +>GL830965.1/1574-57 Succinatimonas hippei YIT 12066 genomic scaffold Scfld66, whole genome shotgun sequence. +ATAATGAAGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCTTAATACATGCAAGTCGAACGGTAACATAGCGAAAGCTTGCTTTTGCTGATGACGAGTGGCGGACGGGTGAGTAGTATCTGGGAAACTGCCCTGAAGAGGGGGACAACAGCTGGAAACGGCTGCTAATACCGCATAAACCCTGCGGGGGAAAGGAAGGCAACTTCCGCTTCAGGATGTGCCCAGAAGGGATTAGCTAGTAGGTGAGGTAAAGGCTCACCTAGGCGACGATCTCTAGCCGGTCTGAGAGGATGACCGGCCACATCGGGACTGAGACACGGCCCGGACTCCTACGGGAGGCAGCAGTAGGGAATATTGCACAATGGGGGGAACCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGAAATTAAGTTAGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATAACTGGGCGTAAAGGGCACGCAGGCGGGCTGATAAGTAAGGTGTGAAATACCGGGGCTCAACCTCGGGGCTGCATTTTAAACTGTCAGTCTAGAGTATTGCAGAGGGAGACGGAATTCCGGGTGTAGCGGTGAAATGCGTAGATATCCGGAAGAACACCGGAGGCGAAGGCGGTCTTCTGGGCAAATACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGATTAGGAGATTGAGCAGAAGCTTGGTTTTCGGAGCAAACGCGCTAAATCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGACCTTGACATCTGAGGAATGCCTGAGAGATTTAGGCAGTGCCTTCGGGAGCCTCAAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCCTTTGTTGCCAGCGCGTGATGGCGGGAACTCAAAGGAGACTGCCGGTGACAAACCGGAGGAAGGCAGGGATGACGTCAAGTCATCATGGCCCTTACGGTCAGGGCTACACACGTGCTACAATGGGGCGTACAGAGGGAAGCGAGGCCGTGAGGCGGAGCGGAGCCCACAAAGCGTCCCACAGTTCGGATTGGAGTCTGCAACTCGACTCCATGAAGGCGGAATCGCTAGTAATCGCAAATCAGAATGTTGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGATTGCACCAGAAGTGGCTTGCCTAACCCGTAAGGGAGGGCGGTTACCACGGTGTGGTTTATGACTGGGGTGAAGTCGTAACAAGGTAACCCTAGGGGAACCTGGGGTTGGATCACCTCCTTA +>JH835900.1/331024-330895 Erinaceus europaeus unplaced genomic scaffold scaffold00612, whole genome shotgun sequence +CTCCATGAATCTTTGAGTCCTGTTGACTGTGGCAAATATCCTTCCTAGACACAGAAGAGCATATTCTTGTATACTGACATAGCTGCCATCAGTTAATTGATTTCAGTTCTAACTTTCACAAGTAACATTT +>AANH01013162.1/16565-16141 Gasterosteus aculeatus cont1.013161, whole genome shotgun sequence. +CCTCTTCAGACTCTACCTCGACTAAAGACTAACAAATTGTAGCACTTAAATTGTACTTGTAACGTGACTCATCTATAGCAAATTGTAAATTGGCTTATTTGAGGAAATTGCACTTTCTTGTTTCTTGTTCTCCTTTGTACCCTATGGTTGAATGCACTTATTGTACGTCGCTTTGGATAAAAGCGTCCGCTAAATGACATGTAATGTAATGATGGTGTCAAGCGCCTGGCTCAGACGGTGCGGTACACCTGTCAAACGGTAACGCAGGTGTCCAAAGGCGAGCTCAGGGAGGACAGAAATCTCAGAAGGGCAAAAGCTTGCTTGATCTTGATTTTCAGTATGAATACAGACCGTGAAAGCGCAGCCTCACGATCCTTCTGGCGTTTTGGGTTTTAAGCAGGAGGTGTCAGAAAAGTTACCACAGG +>ABLF02002078.1/866-1 Acyrthosiphon pisum strain LSR1 Contig2110, whole genome shotgun sequence. +CCGGCAAGCCTCGACGAGTAGGATGGCGCGGCGGTGTGCGTCGAAGGGCAGGTCGCGAGACCGCCTGGAGCCGCCGTCGGTGCAGATCATAGGTGGTAGTAGCAAATACTCGAGAGGGGCCCTCGGGGGCTGCCGTGGAGAAGGGTTTCTTGTGAACAGCCGTTGTCCAAGAGTCAGTCGATCCTAAGCCCGGGGAGAGATCCTCGTACCACGGGCGAAGGCGTTTTCGAATCGCCCTTGGGGCGAGAGGGAATCCGGTTCGTATTCCGGAACCCGACGCGGAACCGCTCCCTAGTGTTCGGGGCTCTTTTGTCTCGTCTGGGTAACCAGAATGAACTCGAAGAAGCCGCCGGGGGATCTGGGTAGAGTTCTCTTTTCTCTGTGAGCGTTGTACGTCCCTGGAATCCTCTAGCCGGGCGATAGGGACGCGAGCGCGAAGAGCACCGCTCGTTGCGGCGGTGTCCGTGATCCCCACGCGGACCTTGAAAATTCGAGAGAGGGCCACGCGGAGTCTTCGCGTCGGTTCGTACCGATATCCGCAGCAGGTCTCCGAGGTGAGCAGCCTCTAGCCGCATAGAATAATGTAGGTAAGGGAAGTCGGCAAAACCGATCCGTAACTTCGGGATAAGGATTGGCTCTGAGGAGCGTGGCTGCCGGGTTCGGGTCGTCGTAGAAGCGTAGGCGTTTTTGGCGACACCCCGGCCGTCGCCCGTGCGCCCGGTCTTCGGAACGGGAGCCTCGAGGCGGCCGCGGGCCCGTCGCCGTCCGCCGACCGTGGAACCACCGAGCTTCGGTCGCTGGCCGCGTCGCGGCCGGCCGACCGCACATTGGTGTCGGTTCGCCGTCACCGGGCGGTCCGGCCGCCG +>AYUG01116302.1/14860-14978 Fukomys damarensis contig116302, whole genome shotgun sequence. +CTCTAGCAAAGTAAGTTTCTTTACTTGTGGATGCACAGTGGCTTCACACAGCAACTCCTTTAGTTGTGTACACAGACTATTGTTTGTATGGGTCGCCCTAAGGGACCTTAAAGAAGTTT +>KK502427.1/433055-433166 Glossina austeni unplaced genomic scaffold Scaffold27, whole genome shotgun sequence. +GGCAAGGGCACTCTGTGACACTTGTTATTAATTTTAAAGTGTAAACAATTTGTTACCTTGCCAGAATAAATCAATTACGTAAAACCTTAACCAATGTCGTATTATAGATTGA +>CM000999.2/44792791-44793384 Mus musculus chromosome 6, GRC primary reference assembly. +TTCTATAATTCTTTCTATACGAGTACACATTTTCATCTTGCAAGAAACAACCAAAACTAATTTAAGAAATATTATCAAACATGTTAATAAAAATTGAGTGTTAATAAAAATAACTAAAATACAAAATTATTGGATACTTAGATGGTGAACTATGCCTGGGCAGGGCGAAGCCAGAGGAAACTCTGGTGGAGGTCCGTAGCGGTCCTGACGTGCAAATCGGTCGTCCGACCTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCTGAAGTTTCCCTCAGGATAGCTGGCGCTCTCGCTCTTTTCCCGACGTACGCAGTTTTATCCGGTAAAGCGAATGATTAGAGGTCTTGGGGCCGAAACGATCTCAACCTATTCTCAAACTTTAAATGGGTAAGAAGCCCGGCTCGCTGGCGTGGAGCCGGGCGTGGAATGTGAGTGCCTAGTGGGCCACTTTTGGTAAGCAGAACTGGCGCTGCGGGATGAACCGAACGAATTATATTTTATATAATGTATATGAAATATCAAATATTAAGGAATGACATTTGATTTTGTTGTGTAATTGTATCATGCATCTTTT +>MRAE01000082.1/2029-1 Clostridium sp. IEH 97212 scaffold_81, whole genome shotgun sequence. +CGCAAATAGGCAGAGATCCAGGGATTTCCGAATGAGGGAACTCACATGGGTAACCCCATGTATCATGCACTGAATACATAGGTGTATGAGGGTAAACCCGGGGAACTGAAACATCTAAGTACCCGGAGGAAGAGAAAGAAAAATCGATTTCCTAAGTAGCGGCGAGCGAACGGGAAAGAGCCCAAACCAGAAACTTGTTTCTGGGGTTGAGGATAGATCATAAAAGAAGAGGTATCTTAATCGAAAAGGGCTGGAACGCCCTACCATAGAAGGTAATAGTCCTGTAGATGAAAAGAGAAAACTTCGAGATCTAATCCAGAGTACCACGAGACACGTGAAACCTTGTGGGAAGCAGGGAGGACCACCTCCCAAGGCTAAATACTACCTAGTGACCGATAGTGAAGCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAATAGAACCTGAAACCGTGTGCCTACAACCGATCGGAGCACGTTAAAGTGTGACGATGTGCTTTTTGTAGAACGAGCCAGCGAGTTACGCTATGTAGCAAGGTTAAGTACTTAAGGTATGGAGCCGAAGGGAAACCGAGTCTGAAAAGGGCGAAAAGTTGCATGGTGTAGACCCGAAACCGGGTGACCTATCCATGGCCAGGTTGAAGCGAGAGTAAAATCTCGTGGAGGACCGAACCACGTTGGTGTTGAAAAACCATGGGATGAGCTGTGGATAGCGGAGAAATTCCAATCGAACTCGGAGATAGCTGGTTCTCCCCGAAATAGCTTTAGGGCTAGCGTCGTGTAATTGAGTAATGGAGGTAGAGCACTGAATGGGCTAGGGGCTATAGTAGTTACCGAACCCTATCAAACTCCGAATGCCATATACTTGTATCACGGCAGTCAGACTGCGAATGATAAGATCCGTAGTCAAAAGGGAAACAGCCCAGACCATCAGCTAAGGTCCCAAAGTGTAAGTTAAGTGGAAAAGGATGTGGGATTTCTAAGACAACTAGGATGTTGGCTTAGAAGCAGCCACTCATTTAAAGAGTGCGTAATAGCTCACTAGTCAAGAGATCCTGCGCCGAAGATGTCCGGGGCTCAAACTTACCACCGAAGCTATGGGGTGTACACTATGTGTACGCGGTAGGGGAGCTTTCTGTATGGGTTGAAGTCGTACCGTAAGGAGTGGTGGACTGTACAGAAGTGAGAATGCTGGCATAAGTAGCGAGAAATAAGTGAGAATCTTATTGGCCGAAAACCTAAGGTTTCCTGGGGAAGGCTCGTCCGCCCAGGGTTAGTCGGGACCTAAGCCGAGGCCGAAAGGCGTAGGTGATGGACAATCGGTTGATATTCCGATACCACCTATTTACGTTTGAGAGATGGGGTGACGCAGTAGGATAAGATGTGCGCACTATTGGATGTGCGTCTAAGCATTTAGGCATGCTTGATAGGCAAATCCGTCAGGCTAAGCTGAGATGTTATGGGGAGCCAAATGTGGCGAAGTATCTGATTCCACACTGCCAAGAAAAGCCTCTATCGAGTAAATAGGTGCCCGTACCGCAAACCGACACAGGTAGGTGAGGAGAGAATCCTAAGGCCATCGGAAGAATTGCTGTTAAGGAACTCGGCAAATTGACCCCGTAACTTCGGGAGAAGGGGTGCCTACGAAAGTAGGCCGCAGAGAATAGGCCCAAGCAACTGTTTAGCAAAAACACAGGTCTCTGCTAAAGCGAAAGCTGATGTATAGGGGCTGACGCCTGCCCGGTGCTGGAAGGTTAAGGGGAACACTTAGCGAAGCGAAGGTGTGAACTTAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAATGGCGTAATGATTTGGGCACTGTCTCAACAGCAAATCCGGCGAAATTGTAGTGCAAGTGAAGATGCTTGCTACCCGCGATTGGACGGAAAGACCCTGTAGAGCTTTACTGTAGCTTAGCATTGAATCTCGGTATTGTCTGTAC +>KV454051.1/1465-1655 Pachysolen tannophilus NRRL Y-2460 unplaced genomic scaffold PACTA_scaffold_41, whole genome shotgun sequence. +ACCTGTTTGCCAACACTCTGGTGCCGAATCAAAAAGATTTTATATATTTCTTTTTCGATATATTCGGTTCCTATTTTGGAGCAAACTAGATTGATTTAGCCAATTACTCACCATAATATTCGTGATTTATTTAAAAAAAATTTTTTTTTTAGATTAAGATGAATATGATGGTCCATTTCAGTGGCGTAAAT +>ACSJ01000007.1/1211646-1211440 Clostridium botulinum D str. 1873 CLG.Contig181, whole genome shotgun sequence. +CAATAAAATATAAAAATAGGTGTCAGTTATAATAAAAATTTTAATTATGAACTGGTGAAAAGGGAAGATGGGTGTAAATCCTACACGGTCCCGCCGCTGTAAATGAGGAGCTTTTTTATGTGTAACCACTGGTGTTATTTATACTGGGAAGGATAGAAAAGTGATGATACTTAAGTCAGAAGACCTGCCTATTTTTGTACACCGATG +>ALAR01116409.1/116042-115647 Tupaia chinensis contig116409, whole genome shotgun sequence. +AAAAGAGTAATGAAATTTCAAAACAAAATATAGAAGCTACATGGTCACTTTTACCAGCTTATGGTGAAATGAAAGGGAAAAAGGATGATTTCAAGAAAGAATTTATAATGAAAAGGGAATTAGGTTCAGTCCTCTGACTCCAGAGCGACCAAAATGGGCACTGCGGCGGGTCCAGTGCAGTGATGCAATCATCCTGGAGAAGCTGCTTGAGTCCCTGGGGAGAGTTCTCTTTTTTGTGGACATAGTGGGGTCACCCCGGGGAAGGGGTCCATGCCTTTAAAATGCTGTGGTTCCCGTAAGTTCTTACTGGCCCTTAAAAAATACAAGGGAGAAGGTATAAATCTACCACCAGGCCACACACATATCCGCAGCAGGTGTCCAAGATAAACAGCCTCT +>KZ248601.1/687242-687373 Danaus plexippus plexippus isolate F-2 unplaced genomic scaffold DPSCF300057, whole genome shotgun sequence. +GCTGGCTTTTATCGAAGCTCTCATATTTTTCCTATAAATATGGAAGTCAAACAAAGCCTATAGTGAAGATCTCTATCGGTCGCGGTCTAGGTAAATCATACCTCTAACGTATCACCAAGGAGGTCAACAGTT +>LRGB01001036.1/60242-60133 Daphnia magna strain Xinb3 scaffold01036, whole genome shotgun sequence. +TCCTATTGTACCGCAGCTGCTGAACACTGCCCAAGATTGGCGTGAACAATTCTAACGGAAGGCAACTCTTGTGCGTGTGACAGCGGCTATGGTATTCAGGAAATATCTTC +>AACT01048137.1/180-1 Ciona savignyi cont_48137, whole genome shotgun sequence. +TACCTGGTTGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCAAGTCTAAGTACGAGCTCTCGTACAGTGAAACTGCGAATGGCTCATTAAATCAGTTATGGTTCATTTGATCGTACAGTTTACTTGGATAACTGTGGTAATTCTAGAGCTAATACATGCGAGAAGCG +>ACJG01011252.1/789-1 Daphnia pulex DAPPUscaffold_852_Cont11252, whole genome shotgun sequence. +CGACCTGAGAGCAGGCAAGGTGACCCGCCAAATTTAAGCATATTAATAAGCGGAGGAAAAGAAAACAACCGTGATGCCCTTAGTAATGGCGAATGAAACGGGCAGAGCCCAGCACCGAACCGCCGGCCATCCAGGTCGCGCGGAATGTGGTGTTTGGGGGAGCCTCCTCGCGACGCGTCGGCCGGTCCAAGTCCACCTTGACTGGGGCCACGGCCCACAGAGGGTGATAGGCCCGTAAGACGGCCGATGCGTTGTGCCGGCTTTCCCCTAGAGTCGAGTTGCTTGGGAGTGCAGCTCAAAGTGCGTGGTAAACTCCACGTAAGGCTAAATATGACCCCGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGTTGAAAAGAACTTTGAAGAGAGAGTTCAAGAGTACGTGAAACTGTGTAGTGGTAAACGGAGGGGCTCTCGAAGTGGGTCTCGGAGATTCAGGTTGGCGGCCGGGCGGCCGGGGCGAGCGCGATCCGCGAGGACGCCTCGTTTCGGTCGGCTCGGTCGGCGGCTGCACTTCTCCGGGACTTGACGCGACGAACCGCTGTCTGCGGAACGAGGACCGGGGTGAAGTTCGTCGTCCTCACGGGCGGCGAGCCCCCGGCTCCTGTCTTCGCGGGCGGCGGGTATCTGAGTCGACTTGTATAGCAAGCCCTCTCGCTAGGGCGGTCGGCATCTCTGTCGCGAGTAGGTCGGCGGCCCCTCCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGTGTGCGAGCCATTGGGCGGACTAA +>CM000780.4/228503464-228503665 Zea mays cultivar B73 chromosome 4, whole genome shotgun sequence. +ATACCTTTGTCGACCTGTTGACTAAGATAAAGTGTAATGTTTGTTCTTACTAGTTTGATATCTGATATGTGGATCGTATGTTCACTTTATTAAATTTTATTTTTTTATGGGTATCAAATATGATTGTGTGTCTATCGGGGTGATAATTAGGGGTACCCAGATTATCCCTCCGAAAAACGCACTCAGGAGAAGTAAACACATA +>KN819335.1/889548-890013 Paxillus involutus ATCC 200175 unplaced genomic scaffold PAXINscaffold_13, whole genome shotgun sequence. +ACAGTCCGAAAGTTACGATGCTCACCACACACTGCAAGACATGTCAAAGATCGTGAGTAGACTAAGGTCTGAGTATTCTATTCTCAATCGACTCTTCCTGGGTTCATTCCTAACGGACTGCGCGATGTCCAGAAATGCAATAGCCAGTTTCCCCACGGTTACTGAGTTAGTAGGGACGGACAACTTTGAAAATGCGTCGCAGAGATCGGGTGAGCACCTTTCCTCACTTGATTCCCTGTTGCGGTAGACGTGCCCATCATTGCGCGCAACGTGATCGCGTTCTTCGTTCGCATTCATGTCCGCGTATTAGGACATCGGGTCCGACGAATCAACCGCGGCTCGTACTAGCAGTCATCAATACTACACCCCATCACGCGACTGCAACCAAGTCAACTCGATTATTTTTTCTCGTACGAGATTTTTCAATCATCTTTTGAAACTCGATTCAGACTACTCTTAGGACTGT +>AASG02001279.1/18109-18241 Ricinus communis ctg_1100012357581, whole genome shotgun sequence. +TGTCATGCTTTTCCACAGCTTTCTTGAACTTCTTCTTCTTCTTCTTCTTCTTCTTAGATTTCTTTCTCATTGCCTATATCTTTCTTGATGTGGCACAGAATAAGTTCAAGAAAGCTGTGGGAGAACATGGCAA +>JH835358.1/2695321-2695604 Erinaceus europaeus unplaced genomic scaffold scaffold00070, whole genome shotgun sequence +GGATCTTAGTGTGATCTGGCTGTGACATCTGTCACCCCATGGATAACATGGGTTGATTTGGCTGGTCTGGCTCGCTAGACGAGTGTCCTCTTCCTCCCTCACTGCTCCTTGTACGTTCAGTCAAAGAGGACAACCTTCCTGAGTCTTGGGTCAAAGGGTATACGAGTAGCTACACTCCCCTGCTAGAACCTCCAAACAAGCTCTCAGTAAGTTTTGCTCTTTATTTTTTTCCCTTTTGTTGCTTATCTTTGTTACTATTATTGTTGTTACTGCTGTCGTTGTTG +>CM001941.2/563785-564154 Chlorocebus sabaeus isolate 1994-021 chromosome 1, whole genome shotgun sequence. +GCCGGGCATGGAGATGTGCACCTGTAGTCCCAGCTACTTGGGAGGCTGAGGCGGGCGGATCACTTGAGCCCAGGAGGTCAAGGCTGTAGTGAGGCGTAATCACACTACTGCACTCTAGCCTGAGCGACTGAGACCCTGTCTTGGAAAAAAGAAAAAAAAGGATAAGATGGGACATTTTACATTATTTTTTTTTTTTTTTTGAGACGGAGTCTCGCTTTGTCANNNNNNNNNNAATGTAAAATGTCCCATCTTATCCTTTTTTTTCTTTTTTCCAAGACAGGGTCTCAGTCGCTCAGGCTAGAGTGCAGTAGTGTGATTACGCCTCACTACAGCCTTGCCCTCCGGGGCTAAAGTGACCCGCCCGCCTCAG +>GL018725.1/468056-468262 Oryctolagus cuniculus unplaced genomic scaffold chrUn0027, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGCAGAATCTCTGTTTCAGAGTCCCCCAGCCATCACGGCGCCTGCGGTCCCTTTTTTTTTTTTTTTTTTGACAGGCAGAGTGGACAGTGAGAGAGACAGAGAGAAAGGTCTTCCTTTGCCGTTGGTTCACCCTCCAATGGCCGCCGCGCTGATCCGATGGCAGGAGCCAGGTACTT +>MRDE01000088.1/1-303 Tersicoccus phoenicis strain 1p05MA scaffold90_cov825_read201, whole genome shotgun sequence. +GTGACGGCACTTCGCGTGCTCGAGCGGGTGTGGGCCGCAGAGACCAGGGGGAAGCGACTGTTTACTAAAAACACAGGTCCGTGCGAAGTCGCAAGACGATGTATACGGACTGACTCCTGCCCGGTGCTGGAAGGTTAAGAGGACCGGTTAGCGCCCCTCGCGGGTGCGAAGCTGGGAATTTAAGCCCCAGTAAACGGCGGTGGTAACTATAACCATCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGAGTAACGACTTCCCCGCTGTCTCAACCATAAACTCGG +>CM000380.2/94669007-94668751 Equus caballus chromosome 4, whole genome shotgun sequence. +TCGAAGTTTCCCTCAGGATAGCTGGCACTCTCACATGTGAACCCAGGCAGTTTTATCCAGTACAACGAATGATTAGAGGTCTTGGCGCCAAAACGATCTCAATCTATTCCCAATGGGTAAGAAGCCCACTGGCATGGAGCTGGGCATGGAACACAAGGGCCTAGTGGGCCACTTTTGGTAAGTAGAAGTGGCACTGCACGATGAACTGAACACCAGGTTAGGCATTGATAACTTGATAACTATAGTTTTATAATAGA +>CM000941.1/92177923-92177799 Anolis carolinensis chromosome 5, whole genome shotgun sequence. +ATTTTCCTGACTACTGAAATGCCCTCAATGTACCACATCCCATTTGATCTTGGAAACAATGCAGGATTAGTCCTGATTAGTACTTAGATGGGAGACCACCAACGAATACTAGGAACTGTAAAAAC +>LBBL01000003.1/104201-103670 Ceratocystis platani strain CFO contig_00003 mitochondrial, whole genome shotgun sequence. +GAGTTTGGTGATGGCTCTGATTGAACGCTGTCTAAGTGCTTGACACATGCTAATCGAACGATTAATACAGTTAAAAAAAAACTAAATTAATAGTGGTGTACAGGTGAGTATAAGATATTTTTGCCGACCTTAAAGTAAGAGGACAATAAGATCTCTTATAAACAAAAGGGTTGTACCGCTTTAAGAGGATGAGAAATATCATAGAGAGAGGTAGTTGTTAAAGTAATGATTTAGCTAGCCGCAGATTCTCTTAGTCGAAACTGAAAGGTTGATCGACCACATTGGGCCTGAAAAAATCCCAATGCAAAAACGTACAGCAGTGAGGAATATTGGTCAATGGTCTAACGATCGAACTGGCAACTTAGGGAAATGGATGATATAAAATAATTATATAATAAAGTTTATATAATAATTATTAATATGCAATAGTTGTGAAGTTTTGTCTACATATTGATAATGACAATATGTATAAACAGTCTCGACTAATTACGTGCCAGCAGTCGCGGTAATACGTAAGAGACAAGCGTTATTC +>CM000762.3/2300100-2300430 Sorghum bicolor cultivar BTx623 chromosome 3, whole genome shotgun sequence. +CTCCCAAGAAACCTCAGGGTCCCAATGGGCCTTCATCATGAATCGAAAAGGGCCCATGGGAGAGGGAAACAGCCCGGATCACCAGCTAAGGCCCCTAAATGACCGCTCAGTGATAAAGGAGGTGGGGGTGCAAAGACAGCCAGGAGGTTTGCCTAGAAGCAGCCACCCTTTAAAGAGTGCGTAATAGCTCACTGATCGAGCGCCCTTGCGCTGAAGATGAACGGGGCTAAGCGATCTGCCGAAGCTGTGGGATGTCAAAATGCATCGGTAGGGGAGCGTTCCGCCTTAGAGGGAAGCAAACGCGAAAGCGGGGGTCGACAAAGCGGAAGCG +>JSZA01002193.1/1101-1450 Candidatus Thiomargarita nelsonii contig_2193, whole genome shotgun sequence. +AGATCATTATGAGAATCCCCGTAATGTGGGCACATTGGATAAAGAGGATCCGTCAGTGGGGACGGGCATGGTTGGCGCACCAGCTTGTGGTAAATAACATTGCCACGTAATTCTGCTATATGCAAGAAACTCTCGTTAGGTTGTAGGTACTAATGTTTAACCAAACACGCAAAATAACAAAATAGTGTGCCCAAATACTTGAGTAAAATACTCAAGTATTAACCAGATGGGTTAGTAAAAACCCTACAAATAGAGACAATTTGCAAGGAAGTCGTGGTTGACCCTTCAGAGACTATACGCAGAACATCAATGAGATGAAGACATAGTCCGAACTACACGGAGACGTGTAG +>MKUE01000019.1/22195-22263 Thiobacillus sp. 65-1059 scnpilot_expt_750_p_scaffold_1345, whole genome shotgun sequence. +GAACTGAAGAGTTTGATCCTGGCTCAGATTGAACGCTGGCGGAATGCTTTACACATGCAAGTCGAACGG +>URS0000D699AF_12908/1-539 unclassified sequences ROOL RNA +AATCAACGCGAAGGATTGTTTCAACCATGTGTATTCACAATTCCATGTGGTCATGGACGTGTTCAAGGAGTTCCACTATGGAGGATACCCCATAGGTAGGCTTTACCAGATAGGTAGAAGAGATGGAAAATCTCAACCGAGCAGGCACGGTGCTGTGATGAAACGCAAGAAAATGGTATTGCTAACTGGTCGCTATCGCAATAGATATGAGGTACGCACCTCATTGAACCAAGTAGAGGATAGTGTGGCAGCTATGTCAATCGCTTGGAGTGCCATAAGATAGTTGTCCAATTGATGCTGGTAATCAGATATAAGACCAGACGCGAGTACGAGTAGCCCAAAGTTGGAATATATTAGAAGATTAATATGCTGAATGGTGGGTGAAAGTTGTTGGTAGCCAATCCAGCCATAGATTGACGTAAGTTGGGATGGAAAGATATGGGGTCGCTCCCTGTGTCTCAGCTCCATTTCCTATGTGACCGAATTACCACTACGTTTTATGAAGGTACGATGAAGATCGGAGACAATCTTTCGCGTTG +>CM001752.1/52724704-52726253 Gossypium raimondii chromosome 13, whole genome shotgun sequence. +CAAAAGAAGAGTTTGATCCTGGCTCAGAAGGAACGCTAGCTATATGCTTAACACATGCAAGTCGAACGTTGTTTTCGGGGAGCTAGGAAGAAGGAAAAGAGGCTCCTAGCTAAAGGTAGCTTGTCTCGCCCAGGGGGTGAGAACTGTTGAGAACAAAGTGGCGAACGGGTGCGTAACGCGTGGGAATCTGCCGAACAGTTCGGGCCAAATCCTGAAGAAAGCTAAAAAGCGCTGTTTGATGAGCCTGCGTAGTATTAGGTAGTTGGTCAGGTAAAGGCTGACCAAGCCAATGATGCTTAGCTGGTCTTTTCGGATGATCAGCCACACTGGGACTGAGACACGGCCCGGACTCCCACGGGGGGCAGCAGTGGGGAATCTTGGACAATGGGCGAAAGCCCGATCCAGCAATATCGCGTGAGTGAAGAAGGGCAAGGCCCGCTCGTAAAGCTCTTTCGTCGAGTGCGCGANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTGAGACATGCCGCTTAGAGTGAAAAGTCTTTGCAACCGAAGTGAGCCGACGGAGCCGAAGTGACGGGCCAAGCTCTTCTAATTGAGCGCCTGCACGTAAGCTGTGCTGTCAGTAAGAAGGGGAGCCCGCCGCCTTTCGAATTTGAAAGCACTTTTCTAGTGTGCGCTGTTTTTGATTGCAGCTAGCGAGCGAAGAAAACGGATGGCGCGAACGCGGCTTTTCTTTCGCCTTGCTTGTTGTACTAATAACATAGAAAGGGCTTTCTTTTCTCGCTTGTTTAGTAAAGTCAAGTTTTTGGCCTTATCTTGCAGGTGACGACGACGTCGAGTTGGCGGCGGAGAAAGACTCGGCATTCAGGCGAGCCGCCCGGTGGTGTGGTACGTAGTGGGTTTAGTACGCCCCGCCAAAACAACTCCGAAACAAACGAAAAGGTGCATGCCCCCCTTCCGAGGGACTGCCAGTGATATACCTCACGAAGGTGGGGATGACGTCAAGTCCGCATGGCCCTTATGGGCTGGGCCACACACGTGCTACAATGGCAATTACAATGGGAAGCAAGGCTGTAAGGCGGAGCGAATCCGGAAAGATTGCCTCAGTTCGGATTGTTCTCTGCAACTCGGGAACATGAAGTTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATATGTACCCGGGCCCTGTACACACCGCCCGTCACACCCTGGGAATTGGTTTCGCCCGAAGCATCGGACCAATGATCACCCATGACTTCTGTGTACCACTAGTGCCACAAAGGCTTTTGGTGGTCTTATTGGCGCATACCACGGTGGGGTCTTCGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGGGAACCTGTGGCTGGATTGAATCCTTC +>MCGO01000050.1/321272-322593 Rhizoclosmatium globosum strain JEL800 BCR33scaffold_50, whole genome shotgun sequence. +TACCTGGTTGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTAAGTATAAACTCGTTTGTACTGTGTGAAACTGCGAATGGCTCATTAAATCAGTTATAGTTTATTTGATATAACCTTACTACTTGGATATCCGTGGTAATTCTAGAGCTAATACATGCAATTAAAATCCTGACTTCTGGAAGGGATGTATTTATTAGATAAAAAACCAACCCGGCAACGGTTCTTTGGTGATTCATAGTAACTTTTCGAATCGCATGACTTTACGTCGGCGATGGTTCATTCAAATTTCTGCCCTATCAAGTTTCGATGGTAGGATAGAGGCCTACCATGCTTTTTACGGGTAACGGCGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCTAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGATTCAGGGAGGTAGTGACAATAAATAACAATCCAGGGCTTTTGTCTTGGAATTGGAATGAGAACAATTTAAATCTCTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAATAGCTCGTAGTTGAATCTTGGGCCTGGTTTGGCGGTCGCGCTTTAGGGCGTGTACTGTCGGCCGGGTCTTTTACTTGCGGGGAACGTGCGTGCCTCTCGGGGTGTGTACGGGAACCGTGGCTATTACTTTGAAAAAATTAGAGTGTTTAAAGCAGGCGTAAGCTTGTATACATTAGCATGGAATAATAGAATAGGACTTTGGTTTTATTTTGTTGGTTTCTAGGGCCGAAGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTTAATAGTCAGAGGTGAAATTCTTGGATTTATGAAAGACTAACTTCTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTCAGGGGATCGAAGATGATCAGATACCGTCGTAGTCCTGACCGTAAACTATGCCGACTAGGGATCGGGCGTTGTATTTCATGACACGCTCGGCACCTTATGAGAAATCAAAGTCTTTGGGTACCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACATAGTAAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGATAACGAA +>AP009608.1/824477-824563 Mycoplasma fermentans PG18 DNA, nearly complete genome. +CGGTAGTTGCTCGAGAGGCTGAAGAGGTTGGTCTCGAAAACCAATAATGGTGAAAGTCATTCAAGGGTTCAAATCCCTTACTACCGG +>CP001719.1/360474-360390 Methanobrevibacter ruminantium M1, complete genome. +GCCATGATGACTGAGTCAGGCTTAAGGTATCCGCCTTGAGAGCGGACGTATGAAAGTACCAGAGGTTCAAATCCTCTTCATGGCG +>LFJF01047615.1/1-2366 Macrostomum lignano unitig_47682, whole genome shotgun sequence. +ACTTTTTGAGCCCCGTAATTGGAATGAGTACACTTTAAATCCGTTAACAAGTATCTATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAATGTTGCTGCAGTTAAAAAGCTCGTAGTTGGATCTGAGGACTCGAATTGGTGGTGCACCCATACGGTGTTACTGCCCGATTCGGCCTACCTAGTCGGTGCTCGCTCTTGGTGTTCTTAATTGAATGCCCTGAGTGCCCGGCAAGTTTACTTTGAAAAAATTAGAGTGCTCAAAGCAGGCCATTAGCCGGAATACTTCAGCATGGAATAATGGAATAGGACTTCGGTTCTATTTTGTTGGTTTTCGGAACCCGAGGTAATGATTAAGAGAGACAGACGGGGGCATTCGTACTGCGGTGTTAGAGGTGAAATTCTTGGATCGCCGCAAGACGAAACAACTGCGAAAGCATTTGCCAAGAATGTTTTCATTAATCAAGAAACGAAAGTCAGAGGTTCGAAGACGATCAGATACCGTCCTAGTTCTGACCATAAACGATGCCAACTGGCGATCCGAGATCGTTTGCTTATTTGACCTCTCGGGCAGCCTCCGGGAAACCAAAGTTTTTAGGTTCCGGGGGAAGTATGGTTGCAAAGCTGGAACTGGCAAAAATTGAACGGCAAGTGCACAACCAAGTGGTGGAAGGCCCTTGCGGCTTTAAATTTGACTCAAACCCGGAGTAAGATATTTACTTCACTTGTGTGTCGTTAACTGTTCTCCATAACGAATCAGGACACTCCAGGATCAGCTCCCCTATGAGTGTTAGCAAAGTTCAAATTCAAGAATTATTTGATTGTCCATGAGACAGTTAGAATTGAAGAGCAATTACAAAATTTGTATTATGCTATGATATTCCTAATGGTAGGTTTTAACCCTTCTAAATTGCGGCAGTGGCCTGACTTTGAGTGTAACAGGGTAATCTGGTTAGAAAATGTTTAAAGTCACTGAGACCCAGTTGGCCTTAAGTCTAAATTTCCCCCACGAACCTATTGGCTTACTCAGCGACTATATGTTCAGAGCCGCTGGGCGATTAGATAAATTCTTGCAGGCTATCAACGATCGAAATCCTTTGACCTAAGGCTTCCTACTGCACATGGCGGTACTGGTGCTTGAAGGCGGCTCCAGGTTACGATGATCCAAGACAAAAGAAAGTCTAATTAAAAAAAATACTCTCATCACCTGTTAAGCCTAAAAGACTTTGAACCAAAAAATCCGTGTGTGGAAAGGCAAGAAACTGCCTACGTAGGTACCAAAAGCTGCCCGTACGACCTTTATCTGGCTCCATTACCCGGTTTATTGAGGATTATCTGGGCAAGTGTCTTGGTCGACCACGGCTGGAATTTCGCGAAAGGCCACAAAAAGGATCAAGGGAATTTTAGGGTAATAGAAAGGAATCAAGAACTGTTACACAAAGGAAAATAAGAATTTATCGCGGTTAAAGGCGCAAAAATTGAGGGAAGTCGCTTTTCTTTGATCAGAAGCTGCTCGTTCCAAGTCTCATCGGCTGTCGTGGTGGGAAATCACTGCGATTTCAGCTGCCGTTAAGCCACGGAAGGGCCGGAGTAAACGTGAACGCTCGGCTGCTGGGACATCTAAGCGCTTTTCGTAGCAAGGATTAGGGTCATTATATGAGCCTACGGGGTGAACCTAAGGAATATTGACGGGCCAAGGGCACCACCAGGAGTGGAGCGCGCTGGCGCTTAATTGACTCCCACGGCGGAAAGACTCACGTACCGGAATTAGGACAAGCAGGGACAATTGAGAGCTCTTTCTTGATTTCGCGTGGGTGTGGTGCATGGCCCTTTGGCTCTTTAGTTGCCCGTGGAGCGATTTGTCTGGTTAATCCGTATACGAACGACTCTCTAGCCTGCTAAATAGTACGCCGAATTTGCGTGCACTGACTAGACGGACAATTTGCAAAATTTGACCAATAAAGGTACTGTGACAGTGCGCCTTAGAGTTCGCGCACGGCGAGCAGAAACAAGGTCTTTTTTCCTGGTTCGAAGAGCGCGGGTAATCTGTTGAATTCCCTTCGTGACAGGATTCCGGGTTGCAATTATTCCCGGTGAACGGGAATTCCCTTCCCAGTAAGACGCTCATTACCCTGACCTACTTGAGCCGAACCGGTAACTGCCCTTAGAGATTGTTGACGCCGCCAAGGTCCTCCGGATTGGTTTGCACCCGATGGGCGACTCTCTTGGCCGACTTGGTGCAACACTAGGTCGGATACTGAAAAGAAGATCAAACTTGATCATTTAGAGGAAGTAAAAGTCGTAACAAAGGTTTCCGTAGGTGAACCTGCGGAAGATCATTA +>KZ248836.1/34641-34948 Danaus plexippus plexippus isolate F-2 unplaced genomic scaffold DPSCF300292, whole genome shotgun sequence. +ACTGGGAGCGTGGCGCCTCTTGTAATCCGTGCTACTCGGAGGTCGGGGTCGAGGGATGGTTTGAGGTTTGAGGTCCTGGGACTGAGATGGCCACAACAACCGGATGGCCACATTCAAGCCTAGTATGACTTTGATCTTCTGGAAGAGTCTAGACTCTAGAGGGTGCATTCTACGGAGGGATAACAGTTCAGGCCCAGGGAGACAACTCAGGGGCCTAGGAATCCCTTCGTACCGGGCTGGAGTGGAATTTAGCCGGGAGTGAACTAACTCAGTAACAACCTAACCGATATAACCAGACCCTTCCCTAT +>CP001899.1/298032-298087 Ferroglobus placidus DSM 10642, complete genome. +GCCGATGATGACCCCTCCCCTAGCTGAAGAGTGATGAATTTGCCGATTACTGAGGT +>FAOM01693974.1/1165-1 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_693974_U_6BS-0.065204_1BS-0.034861 +CGGTGCGCCCCCGGCGGCCCATGAAAATCCGGAGGACCGAGTACCGTTCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGCCAATGGAACAATGTAGGCAAGGGAAGTCGGCAAAACGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGACTGGGCTCGGGGGTCCCGGCCCCCGAACCCGTCGGCTATCGGCGGATTGCTCGAGCTGCTCACGCGGCGAGAGCGGGTCGCCGCGTGCCGGCCGGGGGACGGACCGGGAATTGCCCCTTCGGGGGCTTTCCCCGAGCATGAAACAGTCGACTCAGAACTGGTACGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNAACGGGCTTGGCGGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCCCTCACGGGCGCAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCGTGGGTCGGAAGCGGGGCATGTCCCCTCCTTTTGGCTCCAAGGCCCGATCTTACCGGGCCGATCCGGGCGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTAGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGACAGTGTCGCGATAGTAATTAAACCTAGTACGAGAGGAACCGTTGATTCACACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGTGCCGGATTATGACTGAACGCCTCTAAGTCAGAATCCAAGCTAGCATGCGACGC +>AEAQ01007696.1/1567-1612 Solenopsis invicta Si_gnG.contig11298, whole genome shotgun sequence. +TTAATTGCTCCTTTTGGAGCAATAAATATTGCAATATAAAAAATTT +>CM003288.1/100477756-100477466 Salmo salar isolate Sally breed double haploid chromosome ssa10, whole genome shotgun sequence. +GGATGACGTGTCAGAGTTTGGGGTTCCTAATGGAAGTATCCACTCTGCATCATTTCCTCCTCATATCTTCCTTGTAGGGTACATAGTGGCCATCCTGTAACCAATTAGACAAGATATGCTCAATTTGTTCAGCATTTGGGCCGTGGTGCGGCCGGAAGCTTTGGCCTGAGGATATACGCAGCAGCTCTCGTTAAACTGAGGATCTGAGATAGTTTCTGACTTCACCATCTGGAATTCTAGTCTGGGGTTCTGCTAAAAGCTGCTGACCCACGATTCAACTCTTAAACTCAG +>AAVT01000001.1/231300-231180 Marine gamma proteobacterium HTCC2143 1100111000176, whole genome shotgun sequence. +CGCAAACCTAAGGGGTGGCTTTTGCCTGAGATGCCTTGATCTGCTTGTTACTGTCGATCAACAGCGAACCCTTGAACCTGATCCGGTTAATACCGGCGTAGGAATAGGTGTCCCCAACCGA +>MHIN01000011.1/1-803 Candidatus Buchananbacteria bacterium RIFCSPLOWO2_01_FULL_40_23b rifcsplowo2_01_scaffold_14059, whole genome shotgun sequence. +GAAGCTCCCAAGGGTTTGGCTGTTCGCCAATTAAAGCGGTACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTAGATTCGTGCTGTCTATAAATTCGGCTATATGCTGGAAAATCCGAGAATCTTATGATACTCATCCATAAAAATTGGGTAGTGAAAATTCATAAGTGCGGACAATCAGCAGGAAACTTAATAATAGTTTGTTATTAATAATATTATTTATGTTATTGCTAACAAAATTGTCGAGAGCGGCTTCTAATAAAAAAATTATATTATTAGAAGCGTTAAAATAGTAGTGATTGTAAATACAGTAGTGGTTTATAATAACCAATCTACATAAATTATTGCCGTAGACTCGAATTATTATGAATCCTCAGAGACTATACGCCGAAATTCCGATAAAAATCGGAAATAAGATATAGTCCGAACTGCATGGCGACATGCAGATTCCGGCAGAAATTGTCGGAACGCCATAGAGCAATTGATGTTTTAAGATATGGTTTTGCAAAGTAACAGATTGTCGGTCTCCTATCCACTGTGGGCGTTGAAATTTGAGGGGGCTCATTTTTAGTACGAGAGGACCAAAATGAATAAACCTCTAGTGTACCAGCTGTCCTACCAAGGGCACAGCTGGGTAGCTACGTTTAGTTTAGATAAGCGCTGAAAGCATATAAGCGCGAAGCTGTCCCCAAGATTAGATTTCGTTATAGGCTCCCGGGAGACGACCGGGTTGATAGGCGGTAGGTGTAAGGCCAGCAATGGCTTGAGCCGAGCCGTACTAATAGCCAATTTCTATTTAACCAC +>AP008230.1/3620544-3621014 Desulfitobacterium hafniense Y51 DNA, complete genome. +TTAATGCTAATGACGAGAAAGAGTACACCTTAGCCGGAATGTCCAAGAGAGTCAGCGTTGGTGAGAGCTGATACAAACCGTTTGGTGGAATGGGTCTCTGAAGCGCAAGCTGAACGAATCTGCATCTTGACTATCAGGATGGAGATATCAAGTAGGCAAGCCGGGGGTTTCCCGTTACAGAAACACGGGTATCGAGAGCATGGATCATTCTCTCCGCATCCGGTTAGAGGTATGGGACAGCTTTTTTAATTCCAGCGGCTTGCGCTGACCCATATAAATTAAGGTGGCAACACAGAAGTACTTTCTGTCCTTTACATAGGACGGGAAGTTTTTTATTTTAAAATAAAGTGCCGCCCTCTCCGGATGAACAAGAGATGAAATTATGTTTTCTCCGTACCTGATAGAGGTACTTGTAGATACACTACACAAGTACAAATTAAGGTGGCACCACAGAAGCTTTCTGTCCTTTGG +>CM003280.1/7976717-7976643 Salmo salar isolate Sally breed double haploid chromosome ssa02, whole genome shotgun sequence. +TGCCCCCGTGCGAGGAATCTAAGATAGAATTGGACTTTGCTGTGAAATTCTATCTTAGATTCCTCGCACGGGGGC +>MGZN01000446.1/306-243 Hydrogenophilales bacterium RIFOXYA1_FULL_63_33 rifoxya1_full_scaffold_3877, whole genome shotgun sequence. +TCGGGGCGCCAGCCCCCGATGTCTGAGCACGATGCTCACAAGACGGTGTCCCGTCCAAGCCTGG +>LZPO01097937.1/23658-23530 Neotoma lepida isolate 417 scaffold_12034, whole genome shotgun sequence. +TTTGCAGGCTGATGGAGTCAGCAAGGAAGAGGTTTATGAACAGCAGCCACTCTGCATAGGATGGCTGCAGGGAATGTTCTCATGCTTGCCCAGAGAAGTCTGCCAGGGTCACTGAGATACCTCTGAGAT +>CP011974.1/3783475-3783356 Bacillus endophyticus strain Hbe603, complete genome. +AGACCCTTTAACATCAGTCCTGTGAGGCTGAGAAGGAAACGGACCGCAGATGCAGCAGGCGTCTGCAAGCTTACTATACCCGGCATCCTCTCAGTCACGGACAAAGAGGATGCTTTTTTT +>JXSO01000068.1/6302-6422 Achromatium sp. WMS3 contig-199_67, whole genome shotgun sequence. +TAATTTTTTTAAATATTTCACATATATACCGACACAAAACGTAGGGTGCCTTAATTACCTTTAAATATTAAAGTGAATACCTGTTAAAAAGGTTACGTTTTGGGGCATATAGAGGCAAAAC +>CM002304.1/542199-542383 Ogataea parapolymorpha DL-1 chromosome V, whole genome shotgun sequence. +CACTCCTGTTTCTGCCTCATATTCCCTTGCTCCATGGAATAATGGGTTCTGGTGATGGAGAAGATCAAGCCCGTCGTCGTCTCTGCGATTTGATACTTTGTTGAGTTCGAGGACGGGATCGTGAAAACGCATATACCCAGGGCTGCCAGACAGGTTGGCGGCTCTGAATTGTCGTTTCTACATCT +>ABJB010136869.1/1-805 Ixodes scapularis strain Wikel colony gcontig_1108379663008, whole genome shotgun sequence. +CATCCGCAGCAGGTCTCCAAGGTGAACAGCCTCTAGTCGATGGACCAATGTAGGTAAGGGAAGTCGGCAAAACGGATCCGTAACCTTGGGATAAGGATTGGCTCTGAGGACTGAGCCGGTCGGGCTGGGGACCTGAAGCAGGAACGGCACTGCACCGGGACTGGGCGGGGCTCGCCGTTCACGCGGCGCGGCCAAGCCCGGACCAGCGTCGGGACCTTCCTGTGGAAAGCCTCAGCTGCGCGGCGTCTGAGGGCTTCGTGCCCAAAGTGCTATGCTTCGGCCGGCAAAAAACAGTCAACTCAGAACTGGCACGGACCGGGGGAATCCGACTGTCTAATTAAAACAAAGCATTGCGATGGCCGCTGGTCGGTGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAACGTGAAGAGATTCATCAAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTGTGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTATCTACTGGGAAGGAAGAAGAAGACCAGACCTCCTAGACCATCAGATTGTAAGCTGTATCGTTCCAGTAATTTTTCTTTAACTTCTAGCCATTATTTCTTAAAAACAACCTAGCGGTAGGATTTCTAAGAACTAGCGATCACCCTGTTATCAAATTTAAGACTGTTAACCCATTAATTTTTCTTAAAATACACCTTTGGAATCACTGTTTACACTGCGGCCATATTGCCACGGTTGTAGATGTTGAACCCCAAATTTGAAAATAACT +>CVUF01000026.1/144661-144885 Staphylococcus capitis strain CR03 genome assembly, contig: BN1517_Contig_4 +TTTTTATTCATAAGGCATCTCGGTAATTCAGTTTAGTGAAGTTTATTCAATGATAGGAAAGTGCCTTATATTTTAAAGTATATCGATGTGAAATTACATGGTAATATGTAGTATCTTTGACGAGATTCCTGAAGGAGCAGTCCCAGTCCTAAACCTAGATTGAGACGGACACACTGCGACACGAAACCATACTATACGAAGTAATGAATATAAAAGTAGCAGTAA +>KC954775.1/132832-132944 UNVERIFIED: Cronobacter phage S13, complete genome. +GGGGTGATCGTCTAGTGGTAGGACGCTTAAAGACGCAAACTGATAAGTTTGTATTCAGCATTTAACTTTCCATTCCAAGGAAGAAACGCGTGGTTCGAATCCCGCTCACCCCG +>URS0000D67EE2_12908/1-83 unclassified sequences c-di-GMP-I-GGC riboswitch +AAUAAAAAAGGUACAUCUGUCGAAAGUUUGGGGCGCGAAGCCGCGGAUUUAAUACGACAGCUGCGAUGAGCGGGCUACCGUGG +>KE355093.1/339-1 Streptomyces afghaniensis 772 genomic scaffold STAFG_scaffold694, whole genome shotgun sequence. +GCGCAAGCGGCGGAGGCATGTGGCGTTAATTCGACGCAACGCGAAGAACCTTACCAAGGCTTGACATACACCGGAAAACCCTCGGAGACAGGGTCCCCCTTCGTGGTCGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCCCGTGTTGCCAGCAGGCCCTTGTGGTGCTGGGGACTCACGGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGCCCCTTATGTCTTGGGCTGCACACGTGCTACAATGGCCGGTACAATGAGCTGCGAT +>ALWS01100951.1/21533-21438 Pteropus alecto contig100951, whole genome shotgun sequence. +ATTTTCAGTTATAAGATAAGTAAGTTCTGCTAAGCAGGTTGGACCTGGTTAGTACTTGGATGGGAGACCACCCAGGAAGACCAGGTGCTGTAGGCA +>CP019433.1/1335117-1334970 Jeotgalibaca sp. PTS2502, complete genome. +AATATTGAAAGAGGATGCGAAAAAAATCAGTAGGTTTCGAAAGGGTTTTTCGCCGAAATGCAGCTTAGCTGTGTTGGGGTCCGTTTGAATAAGACGGGAACTGCCTGATAGTCTTGCCCAAAGACTATTAAGGAGTGCTGTCATTGTT +>CM001241.2/28956953-28956880 Oryza brachyantha chromosome 1, whole genome shotgun sequence. +GTGAGCCGTGTAATAGGCGACTATTTCGCGCGGTTCGGGGGGCACTTGAAATCTTGAATAAGCCGTCAGCCCTC +>ALWZ044178298.1/15950-15905 Picea glauca, whole genome shotgun sequence. +TCAAAGGATTCCTTCGAATCCACCATGATCATATTTCGAAAATAGT +>CP012413.1/1770895-1770659 Piscirickettsia salmonis strain PM15972A1, complete genome. +AAAGTTCAGCCCTGAAAATGCAGCTCAGCATATCAGGTACCGAGCCTTGAGTAAGTACTGGTAACAGTGCGTGCTAAGCGTAGGCAGGGAAATAATAGGCCGTAAGCCAAAGAGCTGAAGTGATTGAGCCTCGTAAACATAATACTGAGATAGCCGATGGTTTGGAATGTATCAGAAGGCAATATCGAATAGGACGTTAAGAGAAGAAATATTCGACATCTCCGGGGTCTTAGAGCA +>AGTP01050901.1/2323-2414 Ictidomys tridecemlineatus contig050901, whole genome shotgun sequence. +GGGGATGTAGCTCAGTGGTAGAGCACCCTTGGGTTCAAATCCCAATACCTAACAGGGGTGGGGGTAATGGTGGTAAGGTCCCTCCATTACCT +>KE346365.1/91830-91967 Capsaspora owczarzaki ATCC 30864 unplaced genomic scaffold supercont2.6, whole genome shotgun sequence. +ATCTTTGTGCAAGGGTGGTGCCATCGTGCGTGAGGGAATTCCCGATGCGTGGCTTTTTGCTGATTGCAAACTAAACATCCAAGCCCGCGACATGTGAAGCTTGCTTCCTGTCGCAATTTTTGTAGCTGGCCCAGGTCG +>ALWS01164951.1/7774-7926 Pteropus alecto contig164951, whole genome shotgun sequence. +ATCACTTCTCGGCCTTTTGGCTAAGATCAAGTGTAAAATTGCCTAGATGTAAATATGTGTATATGTGCATGTTTGTACCTGTAAATATGTGTATATGTGCACGTTTGTACCTCTATGCGCGTGCGCGCAGGCGCGCGCGCGCGCGCACACACA +>GL883275.1/454-1 Melampsora larici-populina 98AG31 unplaced genomic scaffold MELLAscaffold_189, whole genome shotgun sequence. +TTCTACCCACAAGGAATATCCGGGTGGCTCCGCCACCCGGGGCGCGTCTCCGAAAAAAAAAAAAAAATTAGAGGGCTTGGGAATGTAATGTTCTTAACCTATTCTCAAACTTTAAATATGTAAGACGTACTTGTTTCTTAATTGAACTTGTACATGAATAAAAGTCTTTAGTGGGCCACTTTTGGTAAGCAGAACTGGCGATGTGGGATGAACCAAACGCAGAGTTAAGGTGCCGGAATATACACTTATCAGACACCACAAAAGGTGTTAGTTCATCTAGACAGCCGCACGGTGGCCATGGAAGTCGGAATCCGCTAAGGAGTGTGTAACAACTCAACGGCCGAATGAACTAGCCCTGAAAATGGATGGCGCTCAAGTGTATTACCTATACTCTGCCGTTAGTATTCTTTTAAAGATATTAACGAGTAGGCAGGCGTAAAGGTTGCGTAGAAGC +>AYZS02020768.1/14673-14528 Beta vulgaris subsp. vulgaris Bvchr7.sca021.con0307.1, whole genome shotgun sequence. +TTGGGTTCACAATATAGTTAGGCAAAAAATGGTGCTGATTAATAAATGGGCATTGTTTTAAAAAGTGGATCCGAAAGTGAATTGTTCCCCTCGCTATCCAGTGTAGAAATTTCTTTGCTACATTTGGACGTTGGGAAACTATATTT +>KE159628.1/947698-947606 Lachnospiraceae bacterium COE1 genomic scaffold acPFN-supercont1.2, whole genome shotgun sequence. +AGCAGTTCCTTAAGTGCCTTGTGAACAGGGAGTTGTCACAGGGACGAAAAAGCCCTCTGGGGCTTTGCGGTACGAGGTTCGCATCCCGCTGCT +>MGUZ01000016.1/78253-78409 Elusimicrobia bacterium RIFOXYA12_FULL_49_49 rifixya3_full_scaffold_62, whole genome shotgun sequence. +TTGTCCCTGCGATGTTGGTGTGGTATTATCTGATTTGAACCGACAAGTTCCTTTCAGGGAGTTGCAGGTGAGCTATACGCCTTAGGGCTATAGACCCGGACACCCACTTAATGAAAAGGGCTCAATCAGATGAAACTCACGGCAGAGTGGGGATTTT +>AE017283.1/720172-720358 Propionibacterium acnes KPA171202, complete genome. +GCTAAAATCCTCGCGTCAGGTTGCTGGTGACCACACCAGCGCTGGAATCCGGTGAAAAGCCGGAGCTGACGCGCAGCGGTATGACTGATCCGCCCCGACTTGAACCACTGGCGCCATGCGCACTGGGAAGGCGCCGGGAACGGAGACGAAGTCGAGCCCGAAGACCACCTGACGACGCCCTGTTGTT +>AOTI010241097.1/1-750 Triticum urartu cultivar G1812 contig241097, whole genome shotgun sequence. +TTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCCTCACGGCGACGGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCGTGAATCGGAAGCGGGGCGTAGCCCCTCCTTTTAGATCTAAGGCCCGTTCGCGGGCCGATCCGGGCGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCAGTACGAATACGAACCGTGAAAGCGTGGCCTATCGATCCTTTAGACCTTCGGAATTTGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGACAGCATCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGTGCCGGATTATGACTGAACGCCTCTAAGTCAGAATCCAAGCTAGCATGCGACGCCTGCGCCCGC +>LADO01000055.1/61648-61600 Peptococcaceae bacterium BRH_c4b BRHa_1001649, whole genome shotgun sequence. +GGTTGGCCCCGTGAGGGGTTTCAAGATCCGATTACTTGGGTGGGTAGTC +>AAQR03071181.1/131-221 Otolemur garnettii contig071181, whole genome shotgun sequence. +CCCTCAGGAGGACTGTGCCGGTCAGCTCCATGGAGTTTCAGTCAAGGAGTTTCTGAGCCTATGGATCTACAATATTTGACTGCCTGGGGCA +>KE951434.1/4972-1857 Actinobaculum sp. oral taxon 183 str. F0552 genomic scaffold Scaffold35, whole genome shotgun sequence. +GTTGTAGGTGTTGTAGGGCGTTCGGTGGATGCCTGGGTACCGGGAGCCGAAGAAGGACGTTGCAGCCTGCGATATGCCTCGGGGAGCCGGCAAGCGGGCTTTGATCCGAGGGTGTCCGAATGGGGGAACCTGGCCGGGGTTGTGCCCGGTCGCTCGTGCCTGAATTCATAGGGTGCGGGTGGTGACGCGGGGAAGTGAAACATCTTAGTACCCGTAGGAAGAGATATTCCGTGAGTAGTGGTGAGCGAAAGCGGAGGAGCCTAAACCGTGGGCGTGTGAGAGCCGTCGGGTGTTGCGTGTGCGGTGTTGTGGGAGATGATCGTGATCATGCCGACGCGTGGTCGCGCAGTGATAAACCGTGGGGATAGGCGAAGGGTCTGGGAAGGCCTGCCGGAGAGGGTGAGAGCCCCGTAGCTGAAATTCTCGTGGCTGTGTGATTGTGTTCCCGAGTAGCATGGGGCCCGTGGAATCCCGTGTGAATCTGGCAAGACCACTTGTCAAGGCTAAATACTCCTGGTGACCGATAGTGGAGAGTACCGTGAGGGAAGGGTGAAAAGTACCCCGGGAGGGGAGTGAAAGAGTGCCTGAAACCGGGCGCCTACAATCCGTCAGAGCCTCCGTGGTGGGGGTGATGGCGTGCCTTTTGAAGAATGAGCCTGCGAGTTAGTGGCATGTGGCGAGGTTAACCCGTGTGGGGGAGTCGTAGCGAAAGCGAGTCCGAAGAGGGCGTGAGTCGCGTGTTCTAGACCCGAAGCGGGGTGATCTACCCATGGCCAGGGTGAAGCTCGTGTAAGAGCGTGTGGAGGCCCGAACCCACCAGGGTTGAAAACCTGGGGGATGAGTTGTGGGTAGGGGTGAAAGGCCAATCAAACTCCGTGATAGCTGGTTCTCCCCGAAATGCATATAGGTGCAGCGTTGCGTGGTTCCTTCCGGAGGTAGAGCGACTGGTTGGCTGATGGGCCTTACCGGGTTACTGACGTCAGCTAAACTCCGAATGCCGGGAGGGTGGAGCGTGGCAGTGAGACGGCGGGGGATAAGCTTCGTCGTCGAGAGGGAAACAGCCCAGATCGCCGGTTAAGGCCCCTAAGCGTGTGCTAAGTGGGAAAGGATGTGGAGTTGCTGGGACAACCAGGAGGTTGGCTTAGAAGCAGCCATCCTTGAAAGAGTGCGTAATAGCTCACTGGTCAAGTGGTTCCGCGCCGACAATGTAGCGGGGCTTAAGCACACCGCCGACGCCGCGGCAGTCCATCGTGGTCCTAGCCTGTCCGTTGGGCGGGTTCAGGGGGTGGGCTGGGTAGGGGAGCGTCCCGCGTTGGGTGAAGTCTCGGGGTGACCCGGGGTGGACGGCGTGGGAGTGAGAATGCAGGCATGAGTAGCGAGAGGCGGGTGAGAAACCCGTCCGCCGATTGACTAAGGGTTCCAGGGCCAGGTTGATCCGCCCTGGGTTAGTCGGGTCCTAAGGCGAGGCCGACGGGCGTAGTCGATGGACAACGGGTTGATATTCCCGTACCGGCGCTTGACCGTTCAATGTTCGCCGGGGTGATGCTAACCATCCCCGATCCTGTGTGTCTCTTTCGGGAGGCGTGTGGGGGAGGGCGTGGGGTCCGAGCCTGGGTGGGCAAGCGTGGTAACAGGTGTGACGCAGAGTGGTAGTCCAACCGTGTCGTATGGCTGAGCACGGCTAAGGGTGCAGCCCGTCTCCCAGGTAAATCCGGGGGGCGTTCGGGTCAGGCCTGATGGGGACCGTTTGACGGGAAGTGGATGATCCTGTGCTGCCGAGAAAAGCATCGACGTCAGGGCAAGCGCCGCCCGTACCCGAAACCGACACAGGTGGTCAGGTAGAGTATACCGAGGCGTGCGAGTCAATCGTGGTTAAGGAACTCGGCAAAATGCCCCCGTAACTTCGGGAGAAGGGGGGCCCGGGCCTTGATGTCCCCGTGCGGGGCGGAGGGGTCGGGGCCGCAGAGTCCAGGGAGAAGCGACTGTTTATCAAAAACACAGGTGCGTGCTAAGCCGCAAGGCGATGTATACGCACTGACGCCTGCCCGGTGCTGGAAGGTTAAGCGGACTGGTCAGCCCTTCGGGGTGAAGCTGGGAAGTTAAGCCCCAGTAAACGGCGGTGGTAACTATAACCATCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAACGACTTCTCCGCTGTCTCGACCACGAGCTCGGTGAAATTGCAGTACGAGTAAAGATGCTCGTTTCGCGCAGCAGGACGGAAAGACCCCGGGACCTTTACTATAGCTTGGTATTGGTGTTCGGTACGGCTTGTGTAGGATAGGTGGGAGACTGTGAACCGGTCACGCTAGTGGGCGGGGAGTCGTTGGTGAAATACCACTCTGGCCGTGCTGACCATCTAACCTCGGTCCGTGATCCGGGCCAGGGACAGTGCCTGGTGGGTAGTTTAACTGGGGCGGTTGCCTCCTAAAGGGTAACGGAGGCGCTCAAAGGTTCCCTCAGCCTGGTCGGCAACCAGGTGGCGAGTGTAAGTGCACAAGGGGGCTTGACTGTGAGACTGACGGGTCGAGCAGGTACGAAAGTAGGAACTAGTGATCCGGCGGTGGCTTGTGGAAGCGCCGTCGCTCAACGGATAAAAGGTACCCCGGGGATAACAGGCTGATCCTGCCCAAGAGTTCATATCGACGGCATGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGGAGTAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGCTGCGCGCGTAGGAGAATTGAGAAGGGCTGTCCCTAGTACGAGAGGACCGGGACGGACGAACCTCTGGTGTGCCAGTTGTTCCGCCAGGAGCATGGCTGGTTGGCTACGTTCGGGAGGGATAACCGCTGAAAGCATCTAAGCGGGAAGCCTGCTTCAAGATAAGTTCTCCATCCAGCCTGTGTGCTGGGTGAGGTCCCCCGCAGACGACGGGGTTGATAGGCCGGACGTGGACGCCTCGTAAGGGGTGGAGCTGACCGGTACTAATGGACCGACCGCCTACACCAT +>AAAB01006367.1/1-1388 Anopheles gambiae str. PEST whole genome shotgun sequencing project, whole genome shotgun sequence. +TATTCGAACGAGCTCTTGGATGACTGAAGTGGAGAAGGGTTTCGTGTCAACAGCAGTTGAACACGAGTTAGCCAATCCTAAGCCGCATGGGAATCCAGTCGTAACCCATCAGTCGGCGAAAGGGAATCCGGTTACCATTCCGGAGCCTGTTGAGTACCCGTTTGCGCCAGCCTAGTAGGGTTTAGCTCGTCCGCACCCGAACGGTTAGTGTGTAGCTTCATGGCAACATGAATCCTTTTCTTCGAGAAGCCAACGAGAGGCATCGGAAGAGTTTTCTTTTCTGTTTTACAGCCACACCGACCATGGAAGTCACTCACAGAGAGATATGGTTGGACCGGTCTGGTAGAGCACGGCCGCCGCAACTGCCGTGTCGATGCACTCTTCTTGGACCGTGAAAATCGAAGACTGGGGCACACTTTATATGGTAATAACGCACACTCTCAACAGATTGTACCGAATCCGCAGCAGGTCTCCAAGGTGCAGAGTCTCTAGTCGATAGATCAATGTAGGTAAGGGAAGTCGGCAAACTGGATCCGTAACTTCGGGACAAGGATTGGCTCTGAAGGCTGGGTGCGACCAGCCGGGACCGGTGCTCCACCTGCCGCAAGGTAGGCTGGCCCGTGCCCGCGGTCGCACAGCAAACAGCCAATTCAGAACTGGCACGGCTGAGGGAATCCGACTGTCTAATTAAAACAAAGCATTGTGATGGCCCCGGGTGGGTGTTGACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAACGTGAAGAAATTCAAGCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCTCTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGATGCACTAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCTGGCATTGTAAGGCGATATAGGAGGTGCAGCATAGGTGGGAGGGCTTCCTCGTGGAGCTCGCCTCTGAGATACCACCACTCTTACTGTTGCCTTACTTACATGATTGGGTGGTACAAGCGCGGGCCCCAGGTCCGGATCGTGCGCGCACCTCCTCCGGGGGGCTGTGGCGGCGGTTCGCCTGCGCGCGCCCAATGCGCCGTGTTTCTCGCTCAGCGTCCAGTGTGTCGCTGGGTGGTGCCGCCGGGGAGACTGCATCGTAGCATCGTCGTGTGTAGCGTGTTACCCGCTTGTCCGACCGTGAGCCGTGGCCCGCAAGGGTACAAGCTTGCGTACGTCGGTGCATTCGTGGTGCACTGCTTCTGCGCGGTCGATCGTTTATGATGTCACGTTTGCCCCCGGTTCCGCGCGCCGC +>JH835377.1/4969955-4970252 Erinaceus europaeus unplaced genomic scaffold scaffold00089, whole genome shotgun sequence +GGATGTGAAGGCAATCTGGCTGTGACATCTGTCACCCCATTGATCACAAGGGTTGATTTGGCTGATCTGGCTGGCTAGGCAAGTTTCCCCTTCCTTCCTAACTGCTCCATGTGCATTGAAAATAGCCTTGCTTGAATCGAGACGGACCGGTCTTCATTGGAGGGTATACAAGTAGCTGCGCTCCCCTGCTAGAACCTCCAAACAAGTTCTTCAAGATATACTACAGAACAATTTGTTTAATAATCAGGAACCTAAAGGCAAAAAATATAGCAGATGAGATTCGGGAGGGTCTTCATTT +>CP014222.1/4334669-4334580 Janthinobacterium sp. B9-8, complete genome. +TTCAATGGTGGGGCGTGGTGGGGGCTACCTCGGTAGCGTCGGTTTACTATTTCGCCGATACGCCAACTCTGCCACGTTCCTACCTCCTTC +>FQXP01000006.1/145863-146131 Clostridium collagenovorans DSM 3089 genome assembly, contig: EJ35DRAFT_scaffold00004.4 +ATAAATGCTATGAAAAAGGAAAGTAGTGTATTGGAGGGTTACAGAGAGAAAGCGATGCTGAGAAGCTTTCACCTATAAGATATATGAAGTGCCCTTTGGAGCATGGATCCGAAATGGAGTTACACAATAGTTGAGTAACTTAAAAGTAGGAGACCACGGGTTCGCCCGTTAAAGCGATAGGGCATTATTATGTGCTTGAAGATAAAGTGAGATTCTTTTTGAATCTAATTAGGGTGGAACCACGGAGTAAACATAGCTTCGTCTCTAGA +>URS0000D6C44C_12908/1-87 unclassified sequences c-di-GMP-II-GAG riboswitch +GCGAGGGGUAGGAGCUCGGAACCGCGGCCCGCAAGACGGGCACUGAAGGGGCGCAGGGGGCUAGUGGUGCGACCGGCUACCGCUCCG +>URS0001A235AD_371731/1-41 Rhodobacter sp. SW2 L2-Alphaproteobacteria ribosomal protein leader +GGAUCCCAACGAUGGAUCCUUCAACUGACGGAAGACAGAAA +>FQUW01000011.1/34981-34776 Desulfotomaculum australicum DSM 11792 genome assembly, contig: EJ60DRAFT_scaffold00008.8 +CAATTGAATAATTGAACGGGTGCTCCCTTTTTCAAGGGATAGAGGGAAGTCAGTGCAAATCTGACGCGGTGCCGCCACTGTGAATGGGGAGCTGGCCACACAATGCCACTGGTCGGGCACCTGCATTGGCCGGTGTCCGGTTGGGAAGGCGTGGTTAAAGCGATGATCCATGAGCCAGGAAACCTGCCCGTTCTATTTCACCGTTT +>URS0000D6A184_12908/1-121 unclassified sequences Flavobacterium-1 RNA +CGAGATAGGGGTACAAGTTCTGCAGTATTGCGTTCCTCTGGACCTAAGCAACGACCTGAAAGGGTAGCGACGAAGCTCGGCGTTAGTGGAGAGAGTCCCAGACGTGGTGTCTCCACTGACG +>MUNX01000075.1/101357-101431 Flavobacterium sp. A45 NODE_7_length_112147_cov_12.4241_ID_13, whole genome shotgun sequence. +TTTTAGCCCCGATAGCAGTGTAAATCCTCTCTCGTTTTTCAACGAGAGAGATTGAAACGGATAGCGGGACTTTGC +>KQ948572.1/3318-23 Streptomyces longwoodensis strain DSM 41677 genomic scaffold PRJNA299227_s024, whole genome shotgun sequence. +GGCCAAGTTTTTAAGGGCGCACGGTGGATGCCTTGGCACCAGGAACCGATGAAGGACGTGGGAGGCCGCGATAGTCCCCGGGGAGTCGTCAACCAGGCTTTGATCCGGGGGTTTCCGAATGGGGAAACCCGGCAGTCGTCATGGGCTGTCACCCACTGCTGAACACATAGGCAGTGTGGAGGGAACGAGGGGAAGTGAAACATCTCAGTACCCTCAGGAAGAGAAAACAACCGTGATTCCGGGAGTAGTGGCGAGCGAAACTGGATGAGGCCAAACCGTATGCGTGTGAGACCCGGCAGGGGTTGCGTATACGGGGTTGTGGGATCTCTCTTTCACAGTCTGCCGGCTGTGAGACGAGTCAGAAACCGTTGATGTAGACGAAGGACATGCGAAAGGTCCGGCGTAGAGGGTAAGACCCCCGTAGTCGAAACGTCAGCGGCTCGTTTGAGAGACACCCAAGTAGCACGGGGCCCGAGAAATCCCGTGTGAATCTGGCGGGACCACCCGCTAAGCCTAAATATTCCCTGGTGACCGATAGCGGATAGTACCGTGAGGGAATGGTGAAAAGTACCCCGGGAGGGGAGTGAAATAGTACCTGAAACCGTGTGCCTACAAGCCGTGGGAGCGTCGGANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTCTCGTGACTGCGTGCCTTTTGAAGAATGAGCCTGCGAGTTTGCGGTGTGTTGCGAGGTTAACCCGGGTGGGGTAGCCGTAGCGAAAGCGAGTCCGAACAGGGCGTTTCAGTAGCACGCTCAAGACCCGAAGCGGAGTGATCTAGCCATGGGCAGGTTGAAGCGGAGGTAAGACTTCGTGGAGGACCGAACCCACCAGGGTTGAAAACCTGGGGGATGACCTGTGGTTAGGGGTGAAAGGCCAATCAAACTCCGTGATAGCTGGTTCTCCCCGAAATGCATTTAGGTGCAGCGTCGTGTGTTTCTTGCCGGAGGTAGAGCACTGGATAGGCGATGGGCCCTACCGGGTTACTGACCTTAGCCAAACTCCGAATGCCGGTAAGTGAGAGCGCGGCAGTGAGACTGTGGGGGATAAGCTCCATGGTCGAGAGGGAAACAGCCCAGAGCATCGACTAAGGCCCCTAAGCGTACGCTAAGTGGGAAAGGATGTGGAGTCGCAGAGACAACCAGGAGGTTGGCTTAGAAGCAGCCACCCTTGAAAGAGTGCGTAATAGCTCACTGGTCTAGTGATTCCGCGCCGACAATGTAGCGGGGCTCAAGCGTACCGCCGAAGTCGTGTCATTGCAGCATATACGGCCAACGCCGGCTGTGATGGGTAGGGGAGCGTCGTCTGCCGGGTGAAGCGGCACTGGAAGGTAGTCGTGGACGGTTGACGAGTGAGAATGCAGGCATGAGTAGCGATACACACGTGAGAAACGTGTGCGCCGATTGACTAAGGGTTCCTGGGTCAAGCTGATCTGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGACAGGCGTAGTCGATGGATAACCGGTTGATATTCCGGTACCCGCTGTGAAGCGTCAAACATCGAATCCAGTGATGCTAAGGCCGTGAAGCCGCCCTGATCTCTTCGGAGTTGAGGGGAGTGGTGGAGCCGCTGACCCGATCTGGTAGTAGGTGAGTGATGGGGTGACGCAGGAAGGTAGTCCAGCCCGGGCGGTGGTTGTCCCGGGGTAAGGGTGTAGGCCGTGCGATAGGCAAATCCGTCGCACATAAGGCTGAGACCTGATGCCGAGCCGATTGTGGTGAAGTGGATGATCCTATGCTGTCGAGAAAAGCCTCTAGCGAGTTTCATGGCGGCCCGTACCCTAAACCGACTCAGGTGGTCAGGTAGAGAATACCGAGGCGTTCGGGTGAACTATGGTTAAGGAACTCGGCAAAATGCCCCCGTAACTTCGGGAGAAGGGGGGCCACAACCGGTGATGAGTCTTGCACTCTGAGCTGGGGGTGGCCGCAGAGACCAGCGAGAAGCGACTGTTTACTAAAAACACAGGTCCGTGCGAAGCCGTAAGGCGATGTATACGGACTGACGCCTGCCCGGTGCTGGAACGTTAAGGGGACCGGTTAGCTCCATTTCGGTGGGGCGAAGCTGAGAACTTAAGCGCCAGTAAACGGCGGTGGTAACTATAACCATCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAACGACTTCTCGACTGTCTCAACCATAGGCCCGGTGAAATTGCACTACGAGTAAAGATGCTCGTTTCGCGCAGCAGGACGGAAAGACCCCGGGACCTTTACTACAGTTTGATATTGGTGTTCGGTTCGGCTTGTGTAGGATAGCTGGGAGACTGTGAAGCCTGGACGCCAGTTCGGGTGGAGTCGTCGTTGAAATACCAGTCTGGTCGTGCTGGATGTCTAACCTGGGTCCGTGATCCGGATCAGGGACAGTGTCTGATGGGTAGTTTAACTGGGGCGGTTGCCTCCTAAAGGGTAACGGAGGCGCCCAAAGGTTCCCTCAGCCTGGTTGGCAATCAGGTGTTGAGTGTAAGTGCACAAGGGAGCTTGACTGTGAGACCGACGGGTCGAGCAGGGACGAAAGTCGGGACTAGTGATCCGGCGGTGGCTTGTGGAAGCGCCGTCGCTCAACGGATAAAAGGTACCCCGGGGATAACAGGCTGATCTTCCCCAAGAGTCCATATCGACGGGATGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGGAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCCGCTGTGCGCGTAGGAGTCTTGAGAAGGGCTGTCCCTAGTACGAGAGGACCGGGACGGACGAACCTCTGGTGTGCCAGTTGTCCTGCCAAGGGCATGGCTGGTTGGCTACGTTCGGGAGGGATAACCGCTGAAAGCATCTAAGCGGGAAGCCTGCTTCGAGATGAGGACTCCCACCCACTTGATGGGGTAAGGCTCCCAGTAGACGACTGGGTTGATAGGCCGGATCTGGAAGCACGGTAACGTGTGGAGGTGACCGGTACTAATAGGCCGAGGGCTTGTCCTC +>MJAT01000005.1/39405-39606 Firmicutes bacterium MLFW-2 MLFW-2_Contig_13_85X, whole genome shotgun sequence. +GACAAGGCTACGATAAGGAAAGTAAAAAACGGAGCATTACAGAGAGTGGGCAAACAGCTGAAATTGCTTACATGTTGAAGTTTTTGAAAATGCACCTTGGAGCCGTGCAGAATGATTCTGCAACGGGGAAACCCGTTATTCGTTTGAGTGATGCAAAGGACTTTGCATAATCAGAGTGGAACCACGAGAAATCGTCTCTGTT +>LBSQ01000033.1/4164-6256 Parcubacteria bacterium GW2011_GWA2_37_10 US35_C0033, whole genome shotgun sequence. +GAGATCTTTGGAAAACACCATTAGGTGGATAACTAGGTTTAGTTTACTGATGAAGGACGTGGCAAGCTGCGAAAAGTCTTGGCTAGGCGCATGCAGCCTTTGAACCAAGAATTTCTGAATCAGACTTCTGAATCTCTTCGGAGATATGTTGGAAACAACAGGGAACGCAGGGAATTGAAGCGTCTTAGTACCTGCAGGAAAAGATATCAATAGATATGCTGAAAGTAAGGGCGACCGAAATCAGCAAAAGGCAAACTGAATCTGTTATTGAAAAATAACAGAGATGTGGTGTTTTAGGCTAATATTTAATCTTAACCAAAAGACCTGAAGTTTTCTGGAAAGAAACACTTTAAAGGGTGATAGTCCCGTAGGGGAAATTTGGAAAGATTGAGTTAGTACTAGAGTAGTGCTTACTGGATACTAAGCATGAATTTGGGAGGCATTAACTCCTAACTTTAAATATAAACTAAGTCCGATAGCACATAAGTACTGTGAAGGAAAGTTGAAAAGAACTTTTAATCAGGAGTTAAAAGACTTGAAACCTAATGGTAATAGAATATTACGGCTCTTAGGAGTTGTAATGTACGTTTCGAATAACGGACTAGGAAGTGTATTTGAGTGGCGAAGATAATCTTAATATTAGAGTATCTAAAGGGAAACCAATTTTCCGCAATTTATGAGGGAAAAGGTATGAAAATGCCTTTGAGTCACTTGAGTACGACCCGAAACCAGGCGATCTATCCTAGAGCATGGTGAAGTGAGATTTAAAATCTTATGGAGGCCAGAAGAGATACTACGTGCATGTGTTCTTCTGACTTTAGGATAGGGGTGAAAAGCCAATCGAGCCTGGTGATAGCTGGTTCCTGCTGAAATAGGCCGTAGTCTAGTGTTAGAAGAGATAACTAAGATTGTAGAGCTACGGATAGAGAGTTTAGGAGGAGAAATCCTTCGGCTTTCTGTCCAACTCCAAATGTTTTAGTATCGTAGAATCTAATAAACGGGGATGCGGGGTAAGCTCGTATTCCAAGAGGGGAACATCCCAGACCATAGTTAAGGTCCCTAAATGTTAGTTAAGTGTGAACGGGTGAAAGGTGTTCATAACCATAGACAGAGGGGAGGTTTGCTTAGAAGCAGCAATCCTTTAAAGAAAGCGTAACAGCTCACCCTTCAAGGTTATGTGCCCTGAAAATGGACGGGACTAAACTAACTACCGATACTATGGACTTCTTATAAAGAAGGGGTAAGCAGGCATTCTATTAGGGCAGAAGTTTTTTTGTAAAAGAAAATGGACCTAATAGAGAAGAGAATCCTAGTGGTAGTAGGATCTATATATGGTGAGAATCCATATTACTGAAAGGGCCAGGGTTTCTTAGCAATAAAGTTTAGCTAAGAGTAAGTCGATCCTAACTCAGTTCCTAACAGAAACTGGGGAAAGGGCAAAAGGTTAAGATTCCTTTACTATTTAGGTACTTATGGTAACATAAGTTTGATCTCTGACATTTTGGGTTAGATTGACATTTACTATCGTAAATGCTAATTAGAATAAATCAATAGAGTACTGTAATGGTGAGAAATTGATTAAATCTAAGAATGGTTGGCCTTATGGCTGATTTGATTGATACCTGGGATTGATAAAAAGGAGATTAAACGGATCCTAAATAATCGTACCTAGAACCAACACTGGTGCCCCTAGGTGAGAAGCCTAAAGTATTAGGGTTTAATCTAGTTGAGGGAATTCGGCAAGTTGGCTCTGTGACTTCGGTTTAAAGAGTCCCTGGGATTGTAATCGTATGATTGCAATTTCAGGGTGCAATGACAAGGGACGTCCGACTGTTTAACAAAAACGTAACTTATTGCTAATCTGTAAAGATTTATATAATAAGTGACATCTGCCCAGTACTAGTATCTCAAACTTCTTTTCAAGGAAGCTAAGGACTAGCAAACGGCGGGAATAACTGTAATTCTCTTAAGGTTAATTCGTAGCTTTAAGACCCAAAGTTAAACAGAATAACTAAAAAGATTGGGATAATAATTTGGCTATATGCTGGAAAGTCCGGGTATCTCACACTACCATAAATTTTATTAAGGTATAA +>MTYJ01000241.1/79877-79597 Hypsibius dujardini strain Z151 scaffold0241, whole genome shotgun sequence. +GCTTTGCATTGAGAGCAGACTGTGTGACCTAAAAGGCGAAAAAATGGGAGCACGCTGTAAGGATAAATAGGAACAGACAGGGGCATTCGTATTGCGGCGTTAGATGTGCAATTCTTGAATCATCATCGCAAGACGCGCTCCTGCGAAAGCATTTGCCAAGAATGATTTCATCAATCAAGAACGAAAGTTGGAGGCTCGAAGGCAATCAGATATCGCTCTGGTTCTAACCGTAAACGATGCCCACAGCACAAGTGCCCACAAGTTCAGCACAAATTTTGGCT +>CM001380.3/48396693-48396738 Felis catus isolate Cinnamon breed Abyssinian chromosome A3, whole genome shotgun sequence. +GCACAGGTTCCACTAGGAACTACACACATAATTTGGGAACATTTGG +>GK000025.2/32398425-32398628 TPA: Bos taurus chromosome 25, whole genome shotgun sequence. +GCGGCTTAATTTGACTCAACACGGGAAACCTCACCCGGCCCGGACACGGACAGGATTGACAGATTGATAGCTCTTTCTCGATTCCGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGATAACGAACGATTCATGTGGCATGCTAACTAGTTACGCGACCCCCGAGCGGTTTTACCTGC +>CP003316.1/1347629-1347568 Pyrobaculum oguniense TE7, complete genome. +AACACCCTGGGCAACACCCCTGTAGGGGGGGCGAATGAGCCTGGTGGGTTACCCCGGCCATA +>KI628545.1/15615-15455 Sclerotinia borealis F-4128 unplaced genomic scaffold scaffold00005, whole genome shotgun sequence. +GGCGCGATAGTTCAATGGTAGAACATCCTCATCCAACTCAGATCACCCCTTCCACAATTTCAGGAGTGCAGTTATGCGAATAACTGCACTATGTTGTATATTAGGAAGATGGTGGTCTTTGGATAGTGAGGGAGATGGAGGTTTGATTCCTTCTTGTGCCA +>URS0000D6D378_443218/1-79 Hoyosella subflava DQS3-9A1 hya RNA +TGCGTCACGCAAGTGGGCCGAGGGTCGACTCCTGTGACGAAGGGGCTTCGAGGCACTGTCCCGCCCCGGAAAGTGGCAA +>BDFN01002532.1/3650-265 Ipomoea nil DNA, scaffold: scaffold2532, cultivar: Tokyo-kokei standard. +CGACCCCAGGTCAGGCGGGATTACCCGCTGAGTTTAAGCATATCAATAAGCGGAGGAAAAGAAACTTACAAGGATTCCCCTAGTAACGGCGAGCGAACCGGGAACAGCCCAGCCTTAGAATCGGACGGCCTTGCGTTCGAATTGTAGTCTGGAGAAGCGTCCTCAGCGGCGGACCGGGCCCAAGTCCCCTGGAAAGGGGCGCCGGAGAGGGTGAGAGCCCCGTTGTGCCGGACCTGTCGCACCACGAGGCGCTGTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCCAATCGGGCGGTGAATTCCGTCCAAGGCTAAATACGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGGAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGATGGAGACCGGCGATGCGCCCCGGTAGTATGTGGAACGGTGAGAGCCGGTCCGCCGATCTACTCGGGGCGCAGACCAGCGAGGATTCGGGGGGCGGCCAAAGCCCGGGCCTTTGATACGCCCGCGGAACGTCGTCTCTCGGATCGTGGGAAGCAGCGCGCGCCCCTGGCGTGCCTCGGCACCTGCGCGCCTCCGGTCGCTGGCCTGTGGGCTCTCCATTCGACCCGTCTTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGCGAGTAAACCCGTAAGGCGCAAGGAAGCTGATTGGCGGGATCCCCTCACGGGGGTGCACCGCCGACCGACCCTTGATCTTTTGAGAAGGGTTCGAGTGCGAGCATACCTGTCGGGACCCGAAAGATGGTGAACTATGCCTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTGACTTGGGTATAGGGGCGAAAGACTAATCGACCGTCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCTGGCGCGAGAGTTCTATCGGGTAAAGCCAATGATTAGAGGCATCGGGGGCGTAACGCCCTCGACCTATTCTCAAACTTTAAATAGGTAGGACGGCGCGGCTGCTTCGTTGAGCCGCGGCCACGGAATCAACAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGGAAGCCGGGTTACGGTGCCCAACTGCGCGCTAACCTAGATCCCACAAAGGGTGTTGGTCGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCCTATACCCGGCCGTCGGGCAAGAGCTAGGCCCCGATGAGTAGGAGGGCGCGGCGGTCGCTGCAAAACCTTGGGCGTGAGCCCGGGCGGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGGGTCGGGGGAAGCCCGACAGACAGCGCGTTTTGCGCGTGCGCCGAAAGGGAATCGGGTTAAAATTCCTGAACCGGGACGTGGCGGTTGACGGCAACGTTAGGGATTCCGGAGACGTCGGCGGGGGCCTCGGAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGCACGTCGCGTGGTGTCCGGTGCGCCCCGGCGGCCCTTGAAAATCCGGAGGACCGAGTGCCGTCCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGCCAATGGAACAATGTAGGCAAGGGAAGTCGGCAAAATGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGGCTGGGCACGGGGGTCCCAGTCCCGAACCCGTCGGCTGTTCGGCGGACTGCTCGAGCTGCTACCGCGGCGAGAGCGGGTCGCCGCGTGCCGGCCGGGGGACGGACTGGGAACGGCTCTTTCGGGGCCTTCCCCGGGCGTCGAACAGCCAACTCAGAACTGGTACGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTAACGCAATGTGATTTCTGGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCCGAAAGGCGAAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCGTGAATCGGAGGCGGGGCATTGCCCCTCTTTTTGGACCCAAGGCTCGCTTGCGGGCCGATCCGGGCGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAGAAGGGTAAAAGCTCGTTTGATTCTGATTTCCAGTACGAATACGAACCGTGAAAGCGTGGCCTAACGATCCTTTAGACCTTCGGAATTCGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGACAGTGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGTTGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGACCGACGCATGCGCTCGTCGCCCGTTTGCCGACCCGCAGTAGGGGCCATTTGGCCCCCAAAGGGCACGTGTCGTTGGCTAAGCCGTCGTGGCGGAAGGGTCACGGTGGCCGCCTTGAATTACAATTCCGATCGAGCGGCGAGCTGAATCCTTTGCAGACGACTTAAATACGCGACGGGGTATTGTAAGGGGTAGAGTGGCCTTGCTGCCACGATCCTCTGAGATTCAGCCCTTTGTCGCTCCGATTCGT +>FR877557.1/2581256-2582181 Salmonella bongori NCTC 12419, culture collection SGSC SARC11, complete genome +ACCTGAGCTTCCATTTCACGGTCAGACAGGCCACCGCAGATCTGGATAATACGGTCAGACAGCGTCGATTTACCGTGGTCAATGTGAGCAATGATCGAAAAGTTACGTATGTTCTTCATAGAGATAAATTATTATGCCTTACGCCTGGTTGACCAGACTTTAGAGGTCGCTGTTCTGAGCTTAACGTCTGTTTTAACTGAAACGCCGCATTCTACACTACAACGCTAAGGCGAGGAAATGTTCATAATGTAAGGAGAGCGGGAACTGGCAAGCGTCTCACTTTTTACGTAAGTCACTGTAACGCCGAAAAAGCCCCTGATAGCGCAAGCTTATCGGCCCGACATCTCCTGCATGGCAGGAAAAAATGACCTTAGCAGACCAGCTAAACGCAGCGCTATCCGGCACAGCGTCTACTGGCGCGTTTCGATTGATGTGGTTTCGACGCGAACAAGCTCGGACGGGAGGGCAACGCTTAAAATCACCGGTTGCCAGGTATCGCGCTCCGCCAGTTTCCGGGAATAGCCTCGGGCAAGCAAAAAACCGCCAACGCCACCTAAAACAGCGCCGCTTAATGCCGCAAGGTCAGATCCAAACAATACCTGGAAAAGCACTGCAAAGAGAAATAACCCCGCTAAAGGCGACATATAGACCAACAATGCCGACCCTAAGAGGCTTTTTTCGGCGATGCCAAGCTCAACTTTCTGCCCCGGCGACAGCGGCTCCACGCTTGGCACCACAATTGTATGAGTCGTTTGCGGCCCTAATTTATTCAGCACGCGGCTGCCGCATCCCGCCCGGGAGGCGCAGTTGCTGCACGATGTTTTAACATCACAACTCACGACCGCCTGGCCATTCCGCCAGGAGACGACCGTCGCCCACTCTTTAATCATTGTACTGCCCTGAACTTGATACTGTCTGCAATACGC +>MFEL01000009.1/24516-24224 Candidatus Doudnabacteria bacterium RIFCSPHIGHO2_01_FULL_46_24 rifcsphigho2_01_scaffold_3549, whole genome shotgun sequence. +ATAAATGCGTATTAGTTTGCGCAAATTGCCACAGAGAATTACATGCAGGAATATCGCAGCTTCCGAGCGAAAGCTCGGTTGAAAAACGAGGTGAATTCGGGGAAGTCCAGCCCCACTTTTGAAAAAAGTGGAGCGGGATAATCCCGAGCCAAGCCCAGCCCCGGTTTTGAAAACTGGAGCTGGGAAGGTGTAGAGACTATCTCGAAAGAGAGTAGCCCCCGCCGCAGGCGAGGTCGAAGCGCCTCGGACCTTAAATGGTCATGATATAGTCCATCCCTAGAAGCAATTTTAGG +>AY765264.1/10602-10676 West Nile virus strain Rabensburg isolate 97-103, complete genome. +CAGTTGTCAGACCACACGCAAGTGTGCTACTCTGCGAAGAGTACTGTCTGCGTTAGAGCCCCAGGAGGACTGGGA +>CM007898.1/80153181-80153635 Helianthus annuus linkage group 9, whole genome shotgun sequence. +AAAAGGCGTAGCAAAAAGCTGTATTTTAACCATTCAAAGTAAGATATTCGAGAGCAAAAAGGTTGATACATTTTGAAGCAGCCAGGGCTCTTGAAAAGGAGGGACGCCTTCGGGAACGCGGACACAGGTGGTGCATGGCTGTAGTCAGCTCGTGCCCTAAGGTGTTGGGTTAAGTCCAGCAACGAGCGCAACCATCGTGTTTTGTTGCCATCATTGAGTTTGAAACCCTGAAGAGACTGCCGGTGATAAGCCGGAGGAAGGTGAGGATGACGTCTAGTCAACATGCCCCTTATGCCCTGGGCGACACACGTGCTACAATGGCCGGGACAAAGGGTCGCGATCCCGCGAGGGTGAGCTAACTCCAAAAACCCGTCCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGATACCGGAATCGCTAGTAATCGCCAGTCAGCCATACGACGTACTT +>CM000803.1/27767415-27767313 Oryctolagus cuniculus chromosome 14, whole genome shotgun sequence. +ATCAATTCTCCTTCTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTTTCAGTTTGAAATGTGTCATCAAATTACTGATTTCCCTCTTCAGTTCTTACCCCTG +>CM000014.3/49188721-49188634 Canis lupus familiaris chromosome 14, whole genome shotgun sequence. +TGGTCGATGATGATTCCCACATACGCATTCTTTGGAAGTCTGAACAAAATGAGTGAGGGGGAAAAAAAAAGAATCACAATTCTGCCCT +>MGNC01000058.1/1340-1465 Chloroflexi bacterium RBG_13_60_13 RBG_13_scaffold_216383, whole genome shotgun sequence. +TCTCCGAAAGGGCAAAGGCACGGGAAACCGTGTCGGCGCAAAGCCGCGGATCTAAGGTCTCCCGCTTCGACAGGGACGTTCACAGCGGCAGTAGGAGCGAGAGACTATGGTGGCCGGGCTACCGAA +>CM001394.3/25602295-25602396 Felis catus isolate Cinnamon breed Abyssinian chromosome F1, whole genome shotgun sequence. +GCCGAGTAATACTCCATTTTGTGTGTGTGTGTGTGTGTGTGTGTGTGTATATATATATATACACACACACACACACACACACACACACAAAATGTGTATATA +>URS0000D67331_12908/1-219 unclassified sequences RT-2 RNA +CGAGGTCATATGGAGTAGCGAAAGTGAAAGACGACCTTCGCAAAAGGAGATATACTTCCCTGGGTGAAAATCCTTAAAACTGCCTTACGACGATCACACACGGACGCTGCTTGCATGGCGAAGAATTGCGCTACCTTCGTTTCATGTGTGGGATCAAAGTAGTTTAGATGCGCACCTACAAAACAACTATGCGAAAGGCGAAAACTTATTATGACAAGC +>LQHI01000015.1/6633-6747 Hadesarchaea archaeon DG-33 contigWOR1_52_54_12788, whole genome shotgun sequence. +GCGGGGATAACTCAACCTGGGAGAGTGTCGGTCGTTCGAGTACAATCGAACGGGCAAAACTGAAGTTCCCAGAATAGATATCCGAATGTTGGGGGTTCAAATCCCCCTCCCCGCA +>AFCW01000383.1/1-68 Salmonella enterica subsp. enterica serovar Urbana str. R8-2977 Contig383, whole genome shotgun sequence. +CACACACTTAATTAATTAAGTGTGTGNNNGCCGCAATTCAGCATTAGTAACCAAGGGGTCTGCTCGTG +>AAQR03179128.1/9880-9794 Otolemur garnettii contig179128, whole genome shotgun sequence. +ATCCTTTTGTATTTCATAAACTACTGACTGTGTTTTCACACTTATGAGCAAACCTTGTTAGGATGTGGATACATTACCTGTCTGATG +>CCCW010025129.1/8929-12059 Brassica napus, WGS project CCCW01000000 data, contig: 19059 +CGACCCCCAGTCAGGCGGGATTACCCGATGAGTTTAAGAATATCAATAAGCGGAGGAAAAGAAACGAACAAGGATTCCCTTAGTAACGGCGAGCGAACCGGGAAGAGCCCAGCTTGAAAATCGGACGTCTTCGGTGTTCGAATTGTAGTCTGGAGAATCGTCCTCAGCGACGGACTGGGCCCAAGTTCCTTGGAAAGGGGCGCCAGAGAGGGTGAGAGCCCCGTCGTGCCCAGACCCTATTGCACCACGAGGTGCTGTCTACGAGTTGGGTTGTTTGGAAATGCAGCCCCAATCGGGCGGTAAATTCCGTCCAAGGCTAAATATGGGCGAGAGACCGATAGTGAACAAGTACCACAAGATAAAGATGAAAGGACATTGAAAAGAGAGCCAAAGAGTGCTTTAAATTATCGGGAGGGAAGCGGATGGGGCCGGCGATTCGTCCCGGTCGGATGCGGAACAGAGCAATCTCGTCTACCAATCTATTTGTGGCGTGGACTTACGCGGATTAAGGTGGTGACCTAAGCCCAGGATTTTGTTACACTTGCGGAGACGTCGCTGCCTTGATCGTGGTCTGCAGCTCGCGCCTCACGGCGTGCCTCGGCATCTGCTTGCTCAGGGCGTCGGCCTGTGGGCTCCCCATTTGACCCGTCTTGAAACACTGAACAAGGAGTCTGACATATGTGCGAGTCAAAGGGTGAGTAAACCCATAAGGCGCAAGGAAGCTGATTGGATGGATCCCTCACAGGTGCACAGCCGACCGACCTTAATCTTCTGAGAAGGGTTCGAGTGTGAGCATGCCTGTCAGGACCCGAAAGATGGTGAACTATGCCTGAGCGGGGCAAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTCACTTGGGTATAGTGGCGAAAGACTAATTGAACCATCTAGTAGCTGGTTCCCTCTGAAGTTTACCTCAGGATAGCTGGAGCTGGAAACGAGTTCTATCGAGTAAAGCCAATGATTAGAGGCCTCGGGGATGCAATGTCCTCGACGTATTCTCAAACTTTAAATAGGCAGGACGGGGTGGCTGCTTTGTTGAGCCATCCCACGGAATCGAGAGCTCTAAGTGGGCCATTTTTGGTAAGCAGAATTGGCGATGCGGGATGAACCAGAAGCCGGGTTATGGTGCCCAACTGCGCGCTAACCTAGAACCCACAACTCACCTGCCAAATCAACTAGCCCCAAAAATGGATGGCGCTGAAGCGCCCAACCTATACCTGGCCGTCGGGGCAAGAGAGAGGCCTCGATGAGTAGGAGGGCGCGAGCCCGGGCGGAGCGGCCATCGGTGCAGATCTTGGTGGTAGTAAGGGAAATGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCATAAGAGTCGGGGGAAACCCGTCTGATAGCGCTCTTCAAAAGGGGATCCGGTTAAAATTTCGGAACCGGGACATGGCGGTTGACGGCAACGTTAGGGAGTCCAGAGACGTCGGCGGGAATTCCGAAAAGAGTTATATTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGACGGAGGTAGGGTCCAGCGGCTGGAAGAGCACGGCACGTGGCGTGGTGTCCGGTGCATTCTCGGTGGCCCTTGAAAATATGGAGGACCGAGTGCCTCTCACGCCCGGTTGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGTCGATGGAACAATGTAGGCAAGGGAAGTCGGCAAAATGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGGCTGGGTTCGGGGGTCCTAGTTCCGAAATTCTCGACTGTTGGTGGGCTGCTTGAGCCGAACAGACCGCCTCGTGTCAGCCGGGGGATGGACTGGGAACGACTCTTTGGGGAGCTTTTCCCGGGCGTCAAACAGCCAACTTAGAACTGGTACGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTAACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCACCCAAGCGTGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATAAGTGATGCGCATGAATGGATTAACGAGATTCCCAGTGTCCATGTTTACTATCCAGCAAAATCACATCCAAGGGAATGGGTTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTCACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGAATAAGTGAGAGCTCCGGTGCAAGTGAAATACCACTACTTTTAACGTTATTTTACTTACTCCGTGAATGGGAGGCGGGGTACCAACCCCTTCTTTTAGACCCAAGACTCGCTTCGGCGGGTCGATCCGGGCAGAGGACATTGTCAGGTGGGCAGTTTGGCTGGGGCAGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGTTCAACGAGAACAGAAATCTCGTGTGAAACAAAATGGTAAAGCTCGTTTGATTCTGATTTTCAGTACGAATACGAACCGTGAAAGTGTGGCCTATCGATCCTTTAAACCTTCGGAACTGGCTTGTGGCAGCCATGCGTTCATAGCGATGTTGCTTTTTGATCCTTCCATGTCGACTCTTTCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGATCGTGAGACAGGTTAGTTTTACCCTACTGATACCCGCATCACAATAGTAATTCAACCTAGTACGAGAGGAACCATTGATTCGCACAATCGGTCATCGCGCTTGGTTGAAGAATAGTCAGTGGCGCGAAGCTACCGTGCGTTGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGAAGCGACGCATGCGCCCGCCGCCCGATTGCCGACCCTCAGTAGGAGCTTCGGCTCCCAAAGGCACGTGTCGTTGGCTAAGTCCGTTTGGTGGAAGCGCCGTTCGGACCGCCTTGAATTATAATTACCACCGAGCGGCGGGTACAATCCTTTGCAGACGACCTTTGTCGCTAAGATTCGA +>LZPO01045535.1/8544-8610 Neotoma lepida isolate 417 scaffold_13965, whole genome shotgun sequence. +GCTGGGGTAGTTCAAAGGCAGAACATTTGCCTGGTATGCATGAGAGCCTGGGGGTCATTCCCCAGTA +>AHJH02011678.1/302-41 Hammondia hammondi strain H.H.34 contig09893, whole genome shotgun sequence. +AGCGACAATCCTACCACTTAGAGTTGTCGGATCACTAAGACCGACTTTCGTCCTTGTTTAAGTAGTTACTCTCACAATCAAGCCTTTTACGCAACAGTGTTTTAAAAGATAATTATTGTCTAAAAAAAAACTCATATCTAATTAGCTAGTTGGTGAAGTAATAGTTTTACCAAGGCGAAGATTAGTAGCTGCCTTGAGAGGGGAAACAGCCACATAGAGATTGAAATACAGCTCGGCTTATCACACAGTAGGGTAGCTGCAG +>MTEO01000012.1/38100-38064 Desulfobulbaceae bacterium A2 Ga0073110_1012, whole genome shotgun sequence. +GTTTTCCGGGGCGCACGCGCCCCGGCCTCTTTGAAGC +>CP003050.1/1069873-1069696 Halovivax ruber XH-70, complete genome. +AAGTACCTCTGAGTCCGTCGGACGATACGTCCGCGGATAGGAGTAACGGCTGGTTGGCGCAGCCATCGACTCACCTGTTCGACAAGTCAACGGGTGGATTCCACCCACAAGAACAGGTTGTGTCGTAGACCTTAATATCCCAACTGCGGTCGGGAATCCTCGCCCTTCAGGACGGGAG +>JMFI01080173.1/8540-8495 Phalacrocorax carbo contig80173, whole genome shotgun sequence. +AAAGAGGTCTTCCTAAAGACCACACCAGCCTTTGAAGCACACTTTA +>LDZF01000115.1/1-68 Pluralibacter gergoviae strain JS81F13 contig_136, whole genome shotgun sequence. +AAACCCCTTTTGATTTGTTAAAACAGATTGCGGTCTGGCAACTGCAACGTTTAACAAGAAATCAAAAG +>AWGX01000534.1/1451-1535 Smithella sp. ME-1 CONTIG_7599, whole genome shotgun sequence. +TAGTAAATTTATTTACTTGACAAAAAAGTAAAGTTTTATTAAATAAAAATCGTTCGCTTGGATCCGTAAGGACTGAGACGAGAGG +>JMFL01092903.1/16205-16066 Opisthocomus hoazin contig92903, whole genome shotgun sequence. +CTGCATTCTTAACCCTCCTGGCAGCTCTGTTTATTAGCTTCCAGGATAAGAATGAATGCCAGAGAAAACTGTTGATTAATCCAAAATGAAGAGCTCTCCTCCCGTGGCTCTCCATTATTTCACGTCTTCAACATTGATTT +>JJRE01013351.1/703-1 Phoenicopterus ruber ruber contig13351, whole genome shotgun sequence. +AAAACAAGCGAGGTAGTGGTATTTCACCAGGGCCGGGAATGGCTAGCATGCAGGGAAAACAACTGGGCTCGGTAACACGACGCGTCATACGCCTGCCGAAAGACACCAATTGCTGGACTCGTCTAAGGTGGACAGGTCCCCTATGCTTAACCTGGAAAAGGAACATGTATAATTTTATATATGTTTGCTAAATAGCCAAATGCCTCGTCATCTAATTAGTGACATGCATGAATGGATGAACAAGATTCCCACTGTCCCCACCTACTATCCAGCGAAACCACAGCCAAAGGAACGGGCTTGGCGGAATCAGCAGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCTGGCGCTGGGAAGAGACATGAGAGGTGTAGAGTAAGTGGGAGGCCGGGTGCACGCTCAGCAGTGCGACCTGCCCACCAGCACCCCGGCCATCGGTGAAATACCACTACTCTGGTCCTTTTTTCACTTACCCGGTGAGGCGGGGGGGGGCAAGCCCCAAGGGGGGCTCTCACTTCTGGCACCAAGCGCCTGGTGTGCACCGGGAACAGTGGCAGGTGGGGAGTTTGACTGGGGCAGTACACCTGTCCAAGCGTAAGGCAGGTGTCCTAAGGCAAGCTCAGAGAGGACGGAAACCTCCTGCAGAGCAGAAGGGCAAAAGCTCACTCGATCTTGTTTTTTCAGTATGAATACAGCACACG +>MERU01000008.1/32885-32784 Burkholderiales bacterium RIFCSPHIGHO2_01_FULL_63_240 rifcsphigho2_01_scaffold_62, whole genome shotgun sequence. +ACTTTCGAGGAGCGTTGCAAGGCCCGTCCCGTCGTTGAACACGGCGCGAACCGCTGGCCCCAGGCTCGAAAGCTTCTCCTTTTGCAACGGCGCTCACCCGCA +>FQTV01000009.1/145137-144950 Bacteroides luti strain DSM 26991 genome assembly, contig: Ga0131163_109 +TATCTTTGTTTCGGTTTTGGTAACAAAGCTTATGCTTTAGGAGAAAAGGGAATACCGTGAAATCCGGTAACAGTACCCGCTGCTGTGATTCTCGAAGAACTTGAGTAACAAGCCACTGCATTTATTTGTGGGAAGGCACTTTAAGAGAGAGATAAGTCAGAAGACCTGCCAGAACTACACATTATAGA +>HG764815.1/187153-187284 Tetrasphaera australiensis Ben110 genomic scaffold, 2552_scaffold1 +CGCGTTTTCGCTCAGGCGGAGCTCGACCGCCGACTCAAGTGATCGTGGCCTATATCGACGCCTATCGGGGTCAGTTCGGCGCCCATGCCGATCTGTGCCGTGCTGACCGAGCACGGCATCACGATCGCGCCG +>MIJY01000003.1/25265-25023 Enterococcus termitis strain LMG 8895 11, whole genome shotgun sequence. +CAAAACACATATTCAGAACAAGTAGTCATCGTTCATTTCCTGACAGAGACTTTTTCATTCGCTGAGAGAAAAAGCTGGAAACCGTTGACGAACACATCTGTCTAGTCAGCTTCTGAATTTAGTAAGAAGCTGCGGCATTCTCCGTTATCAGAAAAGAATCTCTATTACTATTAGAGACTCTATGAGGTCACCATTGCGAAATCGTGACAAATTGAGGTGGAACCGCGAATCTTCGTCCTCTTG +>CM000999.2/135584192-135584306 Mus musculus chromosome 6, GRC primary reference assembly. +TGCTGAGTGCAGTTCCGGGCTGCTTCCATGTTCTGTTAATTAAACATTGAAATTGGCTGAGAGAGATGATTAAATGGAAAGTGTTATTCTGTTCATATACTGATAGCTCACATAT +>JXUM01069429.1/36725-36871 Aedes albopictus isolate Foshan contig69429, whole genome shotgun sequence. +TTCAGGCCATATCGAAGCAGGACAAAGGCCATTTCTTATGCCTGTTGTCCTGTCAAAAATTGGCCCAGAGTAAACGCTCCGTCGACGGTCATTGGAAGCCTTGACATCCGTGTGGTTTACCAATAACATATTTGGCGGTGTACAATA +>CM000999.2/123737012-123736886 Mus musculus chromosome 6, GRC primary reference assembly. +CCAGCTCCTAGAAGGGTTGCAAGTGTGGCTGCTGTGTCATTTCTGCATCAGGATGTGGCAGAGAAGAGAGAGACAAAAAAAAAAAAAGACCTTCAGTGTTCTGACCTATGATTAATAGCCTAACAGT +>AP012044.1/987471-987303 Oscillibacter valericigenes Sjm18-20 DNA, complete genome. +CGCTCAGATAGAGGCGCGAGGTTCATCAGTACCGCGAGCAGCCGGCAGGCAGCCGGCGCGGGAAAGGGGACATCGCCGAAGGGTTTCGGAGCTGCCTGCTCCGAGATACCTGGGCTGTCGGGGAATACCCGTCGGACTGTCACATTTTTTGTGAAGCGCTATCGATGGC +>ACPB03020461.1/16978-17135 Rhodnius prolixus Rhodnius_prolixus-3.0.3-473.8, whole genome shotgun sequence. +AGAGTCCTGGCGTCGAGGTTACCATGATCAACAAGGTGGTTCCTCCAGGGTGAGGTCTATTCATTGCACTAAGAATTGGCTGACCCCTGCGAATGTTCCAAAAAATATTTCTAATAGTAGAATTCATTAGTGCTATACTATTTTTGAAATAATATAAA +>AFYH01196721.1/7358-7251 Latimeria chalumnae contig196721, whole genome shotgun sequence. +ATGAGTCGGTGCATCCCCAAGAGGGGAGGTTGGGAGGGTATTGGTGTGGCTGTATGGAGTATCCCTAATACCCTCCCAACCTCCCCTCTTGGGGATGCACCGACTCAT +>KQ959571.1/48198-48573 Clostridiales bacterium KA00274 genomic scaffold Scaffold7, whole genome shotgun sequence. +GGGGATGTAAAGGCTTCGACAGGGTTGTTGAGATTGGAATAGCGGGTAGAGGATGCGCGTTGGCCTCTTTAAAAAACGGGCAAAAAATTTAGTTGCAAAAACTAATAGATTCGCTGTAGCTGCGTAAGCTTGGCGCACAAACTTGATGAATCTGCTAATTGAGTGATTGTGTTAGACTAGCAGACCTTGATCGTTAGAGGTCAAACTTTCAAATTTCAAGTTAAGCTTTGCCCTTGGAATTATCTATGAAGCTACTTTCATAAGCGATTGTTCAAAGTCTACCTTATGAGGGGAATTTAGAAAATTTGAACTGCACCCGGAGAAGTTCTGATTAAGGCGATTTTGGACACGAGTTCGATTCTCGTCATCTCCATTC +>CM000998.2/25188643-25188361 Mus musculus chromosome 5, GRC primary reference assembly. +GGATGTGAGGGAGATGTGGCTACATCTGTCACCCCACTGATTACCAGGGTTGATCACCTGCTTTGGCTAACCCGCCTCCCTCATCCTTCCACGTGTGCCCTTCTGGACTTTCCCTGAATAGAGGACGACCAGTCTTCAGTCAAGAGTACATGAGTAGATACATTCCCCTGCTAGAACCTCCCAACAAACTCTCAAGGGAGCTGAATTCTTATGCCACATGTCTACTACAAGATAGTATGCACATACACGGTAGGCAGGTGGGGCAGGGAGGGGCTTCTTTCGT +>AODH01000041.1/17134-17262 Brochothrix campestris FSL F6-1037 c41, whole genome shotgun sequence. +ATAACCTTTAACCTAGTCCAGAGAGACTAAGAAGGCATTGAATCGTATACAGGGGTAAAACTACCTTTGTAGAACAGTAGTTTGGCTACTGTTAAAAACGCTTATGCCCTCGCATAGGCGTTTTTTTTT +>GL010035.1/48904364-48904178 Loxodonta africana unplaced genomic scaffold scaffold_8, whole genome shotgun sequence. +TTGAACCGGTTCTTTCTGGTTCGACCCCCTGCTGAGATGTGAATTTCCACCCCAGATATACTGAATCAGAACCTACATTTTAACTATAATTTTAAAATTTTAACTATAATGTAGGTTCTGACTCAGTATATCTGGGGTGGAAATTTAAATTCTCAGCAGGGGTTCGAACCAGAAAGAACCAGTTCAA +>LQXD01000036.1/27026-26945 Anaerobacillus sp. NB2006 Ga0137927_1036, whole genome shotgun sequence. +AAAGAGCTATAACCGCTCATTAAAGGGTTTTGAAGTATTTGCTCTTAGCAAAACACCCCTCATGGCGAGTCTGAGTATATTA +>CGIH01000026.1/124551-124798 Syntrophomonas zehnderi OL-4 genome assembly, contig: OL-4DRAFT_scaffold-26 +TAAAATGTGATGAACAGGACAAGTAACCTGCCGGTAACCTTGCAGGGAGGCCGTATCATGGACTGAAAGTATGGCCAGGGGAAAGCAGTTGAATTCACCTGGGAACAGTAAACTGAAACATAGATATCTTTTTACCGTCTATTCAGTAGGTTTAACCGCAGGTCGGCGTTAAAGACATCAAGTGAACCGGTTGCGTTTGACATCGGTTAATCGGGGTGGTACCGCGGAAGCAAGCTTTCGTCCCTTGG +>CP011382.1/3084471-3084633 Calothrix sp. 336/3, complete genome. +AAAATTAAATATACCAAGCCGGAGACAGCAGGTGTCCTTGACTTAAATATCCTGCCTAGGTTTGCACTCCATTTGTTCCATGAAGACTCATAGTGGTTTGACCATGGCAAAAAGAGATTTGTAAAACCCCGGCTTGGTATAGCTGGGGTTTATTAATTGGGGA +>MFFM01000041.1/12342-12480 Candidatus Edwardsbacteria bacterium GWF2_54_11 gwf2_scaffold_564, whole genome shotgun sequence. +AAATTGAATCTCCGATCCCGTTTTTCTAAAGCTTAAATGCCATGGATGACGGGACGGTTCCCCCGAAAAGGGCGGACAAGGGTAGGACTGGAAACGGTCTTGCCTCCCGTGTTTGGAAAGGAGAGGTTGCGATTAACTT +>CM000237.2/27621459-27621601 Rattus norvegicus chromosome 7, whole genome shotgun sequence. +CCTGCCCCTAGAGGCATTGCAGCTACGACTGCTGTGTCATATGTGTGTCAGTAGGTGGCAGAGATGAGACAGGCTATGTCTATGCTCAGTGTTCGGACCTGGGAAACCCGGGGGTGCAGGTGGCAGGGAGTGAGCCTAAGACA +>CM000780.4/158285691-158285793 Zea mays cultivar B73 chromosome 4, whole genome shotgun sequence. +GTGCGAATCACAGTGCAGCTCTCCTCTGGCATGAAGGCTGTGAGAGAGGCATGACAATTTCTGGCCTTGCCCTGCCAAAGGAGAGCTGTCCTGCCATTCATTA +>CM000236.2/108598299-108597972 Rattus norvegicus chromosome 6, whole genome shotgun sequence. +GGGTGCAAAGGCAATCTGCCTGTGGTGTCGAGCACCCCGTTGATAACCAGAGTTGAATCAGCTGATCTGGAAAGCTAGACAGGTGTCCTCTTCCTCCCTCACCACGTTCCATGTGCCTCCTTCCTGGGGCTGTGTATTTGATGGCAAAGGAAGATCTTCTCAGATAGAAGAGGGCCAGCCGCTGTTAAAGATATCTAAGCAGCTGCTAGATCCCCTGCTAGAGTCTCCAAACAAAGCCCTCAAAGTCCAAAGGCACAAATGGTAAATTAAATGGCAGTAATGTTGATCGAAACCCTCTGTGTTTGAGGAGGTAGCTCTCAACTCTGAG +>FRBW01000003.1/337999-338120 Labrenzia suaedae strain DSM 22153 genome assembly, contig: Ga0131142_103 +TCGCGTCTCACCGAGCTACCTCCTCCCAAGCTCGAGACGTGCGACCCGGCGGAGCATCCTCCTCCCAGTTCCGCCAAGTCAAATGCGCCTGCCAGCACCTCCTCCCGCTGGCGGGCGTTTTG +>MNUO01000109.1/8594-8798 Candidatus Desantisbacteria bacterium CG1_02_38_46 cg1_0.2_scaffold_8344_c, whole genome shotgun sequence. +CAAGTCCGACTTAGGTAAAGGTTAGCCACCAGCCTAACACTTAATCTCACACTTTATTTGGTAACAAATAAAGTGGTGCGGGAAGCGGGAAATATCGAGCTATAACGCAAGTGAAGGAATTGAGCCCCGAAATAACCAGCGTGTCAGTGGTCGATACTCTTCATTAAGGAGCAGACAATAGTCTCACAACCGATAAAAGGCGAGG +>AAGD02011599.1/18221-19185 Caenorhabditis remanei strain PB4641 contig406.1, whole genome shotgun sequence. +AATTATGAAGTAAGAAGTAAGAAAGAAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAAAAATAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTTTGACATTGTGAAGAGTCATGAGAGGTGTAGCATAGGTGGGAGACTTCGGTCGACAGTGAAATACCACCACTTTCATCGACTCTTTACTTATTCGGTTGAAAGAGAATTGGCTTCACGGCCTTTTTTCGAAGCATTAAGCGGAGCCATTTTATGGCACCGTGACTCTCCTCGAAGACAGTGTCAAGCGGGGAGTTTGACTGGGGCGGTACATCTATCAAATCGTAACGTAGGTGTCCTAAGGCGAGCTCAGAGAGGACGGAAACCTCTCGTAGAGCAAAAGGGCAAAAGCTTGCTTGATCTTGACTTTCAGTACGAGTACAGACCGCGAAAGCGTGGCCTATCGATCCTTTTAATCCTGATTGTTTCAGGTAAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTCCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGCGAAGCAGAATTCGCCAAGCGTTGGATTGTTCACCCACTAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGTTGACTTGTTATTGCTAAAAACGACGATTTTCCATGTAAAAACACGTAACTTCCACTACGAACCTTCCTCGTCTATCAATCACTCCTTGTCTCGGATCCATCAGCCCGCCGAGCTTCGGCTTTCCGTTTTCGTAGATCTCTGGGAACTCGACATGAGCGACGGACATTCTTTTCTGCAAAAAACCAAAATCTTAGCCGTGTTTCCCGATTTTTCCGCATTACAATACGGTGCCGGATTTCTACACCGTCAATCGCTCTTCCGAGAGGAGTACACGGCCGGCGGCCTAGGAA +>ABLE03011848.1/1-1240 Caenorhabditis japonica strain DF5081 Contig9538.1, whole genome shotgun sequence. +GACTTTTGAAGAGAGAGTTCAAGAGAACGTGAAATCGCTGGAGTGGAACCGGAGACAGTTGATGTTGCTTGGAGACAATCTTGGTGGCTGATCGCTTAGCTGTGATCGCCGCCGGGAGTCGTTTCCTATGCTACGCCGACGGCGTTGGCCGCTCGTTCTGGCCCGACAGTGTTGCCCATCTCGCAAGAGACGGTGTCTTGTTGTCGGTCGTTGGTTCGTGGTGGCTAGCGTTTAGTTACGCTAGTGTGTGTGACGTCGGTGTGAAAGTCGACGACGTTTCCGACCCGTCTTGAAACACGGATTACGGAGTGTTTGTCTGCTGCGAGTCAAAGGGTGTAAACCTTGCGGCGCAATGAAGTGAAGGTTAGTCTCGAACTGACCGACGTGGGATCCGTGCTCTTCGGAGTGCGGCGCACCACGGCCCTATGCGTGTCACTTGTGACTGTGTAGAGGTTGAGCAGTAGGCAAGCGACCCGAAACGATGGTGAACTATGCCTGAGCAGGATGAAGCCAGAGGAAACTCTGGTGGAAGTCCGTATCGGTTCTGACGTGCAAATCGATCGATAGACTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCTTCCGAAGTTTCCCTCAGGATAGCTGGAACTCTTGCAGTTATATTCGGTAAAGCTAATGATTAGAGGCCTTGGGGACGTAATGTCCTCAACCTATTCTCAAACTTTCAATGGATATGGCGTCGCAGTTTCTTTAGTGAACTGCGGCGTGAATGCGAGTTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGCTGTGGGATGAACCAAACGTGGAGTTAAGGTGCCTAACTTCTCGCTTATGAGACCCCATAAAAGGTGTTGGTTGATATTGACAGCAGGACGGTGGCCATGGAAGTCGGTACCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCTGAAAATGGATGGCGCTTAAGCGAGAGACCTATACTCCGCCGTCGCGGCATGTGCGTTGTCTAGCGCCCAGGTCGCGACGAGTAGGAAAGGACGTGGCGGTTGCGTTGAAGGCTATGAGCGTAGGCTCGGCTGGAGCTTCCGTCAGTGCAGATCGTAATGGGTAGTAGCAAATATTCAAGTTCGATCCTTGAAGACTGAAGTGGAGAAGGGTTCCACGTGAACAGTAGTTGGATGTGGGTCAGTTCGATTCCTAAGGTACTGGCGAAAGCTTTG +>JH159154.1/6686760-6686937 Phytophthora sojae unplaced genomic scaffold PHYSOscaffold_4, whole genome shotgun sequence. +ATGCTTCCCAGGGTGACTACCGATTGGCCAAGAAATGCATGTATGAAAAATGAGAGCGTTGACATGAGCCGGAGCAGGCCCCTTGCACTCCGGTGCTGTAAGGGTTCAGGAATGCTCTTTTGAGTAATTCCACAGTAGAATTTTTGTCAGCGGGGGTGAGCGCGTGCGCCGCCCCCAC +>AAOX01000007.1/31274-31356 Bacillus sp. NRRL B-14911 1099999053126, whole genome shotgun sequence. +AAGAATATAGAACACTGTGATGAGCGGTTTTTATTTGCACTTTAAACCGCTTGGAGTGACTAGTGCAGCCGGCCAATGATCTA +>AZAQ01049668.1/23412-23144 Stegodyphus mimosarum contig49668, whole genome shotgun sequence. +GGCTTAATTTGACTCGACACGGGCGAACTTTACGCGGCCCAGACACAGGAAGGATTGAGAGATTCAAGAGCTCTTTCTTGATTCTGTGGGTGGTGATGCATGGCCGATTTTAGTTAGTGAAACGGTTTGTCTGTCCGATAGCGAAAGACTCTAGCTTACTAAATAGACGCTCCGATCCTTCGAGTCGGACGTTCTTAGAGCGACGTTTAGCTGCATGAGACAGAGCGATAAACAGGTCTGTGATGCCCTTAAGATGTCCGGGGCCGCAC +>CP002691.1/7079696-7079516 Haliscomenobacter hydrossis DSM 1100, complete genome. +ATTTTATAGAGAAGAGGGGAGAGAACGGGCTCTAAGAACCTCTGGCAACCATGCTTTTTTAAGCGAAAAGTGAAAAGCGAAAAGTGAAAAGTAAGATTAGCTGCTTTTCGCTTTTCACTTTTCACTTTTCACTAAATAAAAGTAACGGTGCCAAATCCCGCCATTAATGGGCATATAAAAT +>AB701766.1/10364-10418 Culex flavivirus RNA, complete genome, strain: Toyama71 +ACGCGCGCAAGGAAGGACATGGCTGTCCTTGGGTACTAACGACACCCCGCCCCCA +>LFJF01047439.1/12546-13056 Macrostomum lignano unitig_47506, whole genome shotgun sequence. +TATCTGGTTGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTAAGTACAAACCTTAATACGGTGAAACCGCGAATGGCTCATTAAATCAGCTATGGTTCCTTAGATCGTCTCATCCTACTCGGATAACTGTGGAAAATCTAGAGCTAATACGTGCTTACAAGCCCTGACCTCACGGGAGGGGCGCATTTATTAGATCAAAACCAATCGGGGCTTGCCCCGTCTGCTTGGTGACTCTGGATAACTTTTGTGGCTGATCGCATGGCCTCTGCGCTGGCGACGTATCTTTCAAGTGTCTGCCCTATCAACTTACGATGGTAGGTGATATGCCTACCATGGTTATAACGGGTAACGGGAATCAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCTAAGGAAGGCAGCAGGCGCGCAAATTACCACACTCCCGGCACGGGGAGGTAGTGACGAAAAATAACGATACGGGACTCTTTTGAGCCCCG +>KE124372.1/17462-21459 Plasmodium falciparum UGT5.1 unplaced genomic scaffold supercont1.10, whole genome shotgun sequence. +GAGGATAAAAATAGGAGGGCAAATCCGCTGAACTTAAGCATATAATTAAGCGGAAGAAAAGAAAATAACTATGATTCCTTTAGTAACGGCGAGTGAAGAAGGAATAGCTCAATAAGTAGAATCCTTCGAATCTTAATGATATATTTATACATAGAATAAAGAATTGAAGGAATTGTCAAGTTGAATTGTACTCTTGTAGGCCTCACAGGTGAAATGAATATATAGAAGTAAAGTAGGAATACTTCCTCATAGAGGGTGAAAGGCCCGTATCATATATCATTTCGTGGGCTTTGGAGTATTTATATTTTACTGAGTAGTGTTCTTTGAGATTGGAGCACAAATTGGTGTGATACATTTCACATAAAGCTAAATATGTACAGGAGACCGATAGCAAACAAGTACCGTGAGGGAAAGATGAAATAGTACTCAGGAATGAGCAATTAAATAGTACCTGAAATCGTTAAGATGGAACGGATTAAGAGAGAAAACAAGTAAAGAGGGGAATTTTTAATTTTTTTTGTTATAATTCTCTTCTTTATTAAAAGAAACATCAGTGATTAATTTAATTTCAATAAAGCAATCCCCTGAAATTCAAAATTTCTTTTAATTTTGTTTTCACTTTCTCCCCGCACTAATGTGGGGAAAACTGGCTTTATTTCTTCAATTATTTTTTTTGCTGAGGAATTTTAAAATTATTTGAATTTTTCTTCTTATAATTTAAGTTGTTTCTATATAGTACTTTCTTAACCCACTCGTCTTGAAACACGGACCAAGGAGTCTAGCAAATGTGCAAGTGTATATGATTCTTTAAACATTTCTCTTTTTAATATACGCATAATTAATGTAATATGTTTCTTTATTGTAGATTTGTGGTGTTTAATTTTTATTAAATCCCCACTTTGCATACAATACCGGTAAGCAATTATGCTTTATTGAGTACGAGCATATTTGGTAGGACCCGAGAGGCTTTGAACTAAGCGTGATGAGATTGAAGTCAGGCGAAAGTCTGATGGAGGATCGAGTTGATACTGACGTGCAAATCGTTCATTTCAATCACGTTTAGGGGCGAAAGACTAATCGAAAAGCCTATTAGCTGGTTATTTTCGAAAGATCTCTCAGGATCGCTGGAGTTGAGTTGATTATAATTTTATAAGGTAGAGACAATGATTAGAGGGTTTAGGGGATTAAATATTTCTTAACCTATTCTCAAACTTCCAATATGTAAAAAGGGTGATATATCTGAATTGTGTGTATTTCACTCTGTTTTAAATAAAATAACTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGAGGGATGCTCCTAACGCCTGGATAAGGTGCCTAAATATTCGCTCATGAGATCCCATAAAAGGTGTTGGTTCATAATGACAGTAGGACGATGGTCATGGAAGTCGAAATTCGCTTAGGAGTGTGTAACAACTCACCTACCGAATGAACTAGCCCTGAAAATGGATGGCGCTAAAGCGAATTACCGATACCGGGCCATAAGAAGGTAGAAATTATAAATGTTAATTTAGCTCAGATCTTTTTATGAGTAGAAAATCGTGGGGTTTGTGTTGAAGCGAAATACGTGAGTTTTCGTGGAACATCTCCCTAGTGCAGATCTTGGTGGAAGTAGCAACTATTCAAATGAGAACTTTGAAGACTGAAGTGGAGAAGGGTTTCTTGTCAACTATGTTTGTACAAGAGTTAGCCACTCCTAAGGGATAGCTGAAAAGTGTTTAAAAGAAGAAATTCATTATAAGAATTATATAATGAAACTTCATCTCGAAAGGGAAACAGGTTAATATTCCTGTGCCATAAGTAATAAGAGTGCAAACAGAGATGGTAACATACATATAAATGAACTCCTTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGTAAGGGAAGTCGGCAAAATAGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGACATTAGAAAAGAGAAGAAAAAAAGAGGGTTGAGAATAAAATTGCAGATTTATTTGCTTTTCTCTCTGATTTGCTTGTAAATTTTCTTTTTCTTTTTCTTCTTTTCTTTTTTTTTCTGTCCCTCTTTTCGTCTTCATTTTATTGTAATTTTTGTTACTTTAATTTGATACATATATAATGTTAACTCAGAACTGAAACGGACAAGGGGAATCCGACTGTTTAATTAAAACATAGCATTGTGAAAAACCATAACTGGTATTAACACAATGTGATTTCTGCCCAGTGCTTTGAATGTTAAGTTGATGAAAAATTCAATTAAGCGCAGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTACTTGCTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTTACTCTAGTCTGGCTTTGTGAAACGACTTAAGAGGTGTAGCATAAGTGGGAGTAGAAACTGAAATATGTTTTTACGACAGTGAAATACCACTACTTTTAAAGTTGTTTTACTAATCCATTGATAGGGATATATAAAACTTATAAATAATTTTTATTTTAAGTTACTTTTGAATTTAAGATATGTGTGCATTTATATCTATTAAATCCCATTTTGTATATATATATATATTATATATATGTGTATAATACGATTTTTTTTATGGAGACATAGTTAGGTGGGGAGTTTGACTGGGGCGGTACATCTGTTAAAAAATAACGCAGATGTCCAAAGACAAGCTCAAAGAGAACAGAAATCTCTTGTAGACTAAAAGGGGAAAAGCTTGTTTGATTTCTATTTTCAGAACAAGTAGAAAACGTGAAAGCGTGGCCTATCGATCCTTTATATTTGCAAAATGACGTAATAAATTACTTACTACTGTGCATATAGAGGTGTCTGAAAAGTTACCACAGGGATAACTGGCTTGTGGCTGCCAAGCGCTCTTAGCGACGTAGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGGGACGCAGAAGTCTCAAAGTGTCGGATTGTTCACCCGCTAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGAATTTTATTATATTTTTTATATATACATATAGTATTGTGACAGTAATCCAACTTGGTACGAGAGGATTAGTTGGTTCAGACAATTGGTACAGCAATTGGTTGACAAACCAGTGTTGCGAAGCTAAGTCTGTTGGATAATGGCTGAACGCCTCTTAAGCCAGAACCCATGCTGATTAGACAATTCTAAATTTGATCTTTTTGTTAAACGATAAAAATTATATATATATTTTTTTTATCTTTACTGCATAATGTAAAAGAGAAATTATACATATATATATATATATATATTAGAAAAGAAAAAATGATGTAATTAATTATTATTATTATTTTTTTTTTTTTTTAGTATTAATATATAATTATGAATATATAAATAATCCTATATCTTTATATAAAAATTAAATTTTTAATTTTATTAGAATTTTTTTTTTTTATATATATAGATTGTAATTTAACAACAAAAAGTATTAAGCCCAAATCGTAGACGACTTTTCTGTCTCAGAGTACTGTAAACATGAGAGTAAACTTTGTTTTACGATCTGTTGAGGTTTATCTCTTGTGACATTGAGCTAA +>MDLB01000098.1/10133-10486 PVC group bacterium (ex Bugula neritina AB1) isolate AB1-3 AB834_contig000098, whole genome shotgun sequence. +AAAGTTGATTGGATCATCGGTGCTGTTGATCTCAAGATATTGATTTAACAGTGCAGGAAAGTCTGGACTCCGCAGGGTAAGATGCTACTGTTATGGTTGTGAGGGTGACCTTAAGGAAAGTGCCACAGAAAAAAAACAGCCTATTGGAAACGACTCGTTTCGATTGATGGGTGATGGTGAAAAGGTGAGGTAAGAGCTCACCAGTTCTGGTTTGAAACCCAGAAGCTAGGTAAACCCCATCTGGAGCAAGACCAAGTAGGAAACGTGATAGTTACCCGCTATATGTTTTCGGGTTGGTTGCATTAGATGAATGATGGTCATAAACAGAATCCAGCTTATAGATCAACTTTGCCT +>JRRC01046601.1/9504-9338 Gossypium arboreum cultivar AKA8401 contig_129_9, whole genome shotgun sequence. +ACTTTTTAAGTTTGCTGTCAAATCTCAAGGCTCAACCCTAGACAGGCGGTGGAAACTACCATGCTGGAGTACGGTAGGGGTAGAGGGAATTTTTGGTGGAACGGTGAAATGCGTAGAGATCGAAAAGAACACCAACGACGAAAGCACTCTACTGGGCTGACACTGAC +>JH835603.1/135856-135729 Erinaceus europaeus unplaced genomic scaffold scaffold00315, whole genome shotgun sequence +AGCCCCATTCTAGATGAAAATGGGCACTGTTGCTTTTGGTGTTCAGAAACAGATGTGGCTATATTGATACAGGTTAAGCTTTCACCATAGTACCTTACTGTAGTGGTGACAATGAGGCTGCAACATGT +>KV428048.1/4065-3885 Sistotremastrum suecicum HHB10207 ss-3 unplaced genomic scaffold SISSUscaffold_45, whole genome shotgun sequence. +TTCGTGCGGCGTCACGGCTATACTTTCCCCATGTTGCTCACTTCTGCTGATCGTGCGGTGGTTCGAGTGTCAAGCCGTGTCCAGAATAATTTTCGTGGACGTCTTAGTGCCTTTTTAACCCTCCTTTTATGGCTCTTGTAGCCTTTTTGGGAGGAGGGTTGGGTCGGTGGTTCTTACACTC +>MGVC01000060.1/14949-14867 Elusimicrobia bacterium RIFOXYA2_FULL_39_19 rifoxya2_full_scaffold_498, whole genome shotgun sequence. +ACGTTATCCCGCTACTGGCGGATTTGTGGGCCTAAACCACAAGGGACCGGGATAATTTCAAGCCGACCGCCTGGGCAGAAGTT +>LZPO01057484.1/678881-679115 Neotoma lepida isolate 417 scaffold_0, whole genome shotgun sequence. +GGATATGAGGGTGATCTGACTTGACAGTGTCTCCTTTCTCCCTTATTCTTCCATGTGTGTCCCTCCCGAAGGTGCCCATTCACTGTTTTGAAGACTAAAGGAGGATTGGACAAGTACCTGTGCTCCACTGTTAGAGCCTCCAAACAAACTCTCAAGAAGAAAACCAGATGAGAACAGATGGCCAGATAGTTTATTGTTCATCACTCTAAATAGTAGACACAATTCAAATTATTCT +>AAAB01007393.1/1-1983 Anopheles gambiae str. PEST whole genome shotgun sequencing project, whole genome shotgun sequence. +ATACCATGAAAGGTGTTGATTGCTAAAGACAGCAGGACGGTGGACATGGAAGTCGTCATCCGCTAAGGAGTGTGTACAACTCACCTGCCGAAGCAATTAGCCCTTAAAATGGATGGCGCTCAAGTCGTTTGCCTATACATTGCCGCTGGCGGTATGGCGCATCGGGGGCTTAACCACCCTGCGATGAGACCCCAGTGAGTAGGAGGGTACGGTGGTGCGCGTCGAAGTGTTTGGCGCAAGCGGCATGGAGCCGCCACTGGCACAGATCTTGGTGGTAGTAGCAAATATTCGAACGAGCTCTTGGATGACTGAAGTGGAGAAGGGTTTCGTGTCAACAGCAGTTGAACACGAGTTAGCCAATCCTAAGCCGCATGGGAATCCAGTCGTAACCCATCAGTCGGCGAAAGGGAATCCGGTTACCATTCCGGAGCCTGTTGAGTACCCGTTTGCGCCACCTAGTAGGGTTTAGCTCGTCCGCACCCGAACGGTTAGTGTGTAGCTTCATGGCAACATGAATCCTTTTCTTCGAGAAGCCAACGAGAGGCATCGGAAGAGTTTTCTTTTCTGTTTTACAGCCACACCGACCATGGAAGTCACTCACAGAGAGATATGGTTGGACCGGTCTGGTAGAGCACGGCCGCCGCAACTGCCGTGTCGATGCACTCTTCTTGGACCGTGAAAATCGAAGACTGGGGCACACTTTATATGGTAATAACGCACACTCTCAACAGATTGTACCGAATCCGCAGCAGGTCTCCAAGGTGCAGAGTCTCTAGTCGATAGATCAATGTAGGTAAGGGAAGTCGGCAAACTGGATCCGTAACTTCGGGACAAGGATTGGCTCTGAAGGCTGGGTGCGACCAGCCGGGACCGGTGCTCCACCTGCCGCAAGGTAGGCTGGCCCGTGCCCGCGGTCGCACAGCAAACAGCCAATTCAGAACTGGCACGGCTGAGGGAATCCGACTGTCTAATTAAAACAAAGCATTGTGATGGCCCCGGGTGGGTGTTGACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAACGTGAAGAAATTCAAGCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCTCTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGATGCACTAGCGGGGAAAGAAGACCCTGTTGAGCTGACTCTAGTCTGGCATTGTAAGGCGATATAGGAGGTGCAGCATAGGTGGGAGGGCTTCCTCGTGGAGCTCGCCTCTGAGATACCACCACTCTTACTGTTGCCTTACTTACATGATTGGGTGGAACAAGCGCGGGCCCCAGGTCCGGATCGTGCGCGCACCTCCTCCGGGGGGCTGTGGCGGCGGTTCGCCTGCGCGCGCCCAATGCGCCGTGTTTCTCGCTCAGCGTCCAGTGTGTCGCTGGGTGGTGCCGCCGGGGAGACTGCATCGTAGCATCGTCGTGTGTAGCGTGTTACCCGCTTGTCCGACCGTGAGCCGTGGCCCGCAAGGGTACAAGCTTGCGTACGTCGGTGCATTCGTGGTGCACTGCTTCTGCGCGGTCGATCGTTTATGATGTCACGTTTGCCCCCGGTTCCGCGCGCCGCCCGGCTCGAAGACTCCTGGACAGGTCCTTTCGGTCCACGTCATGGACAGTGCCAGGTGCGGAGTTTGACTGGGGCGGTACATCTCCAAAACGATAACGGAGGTGTCCAAAGGTCAGCTCAGTGTGGACAGAAACCACACGCTGAGCATAAGGACAAAAGCTGGCTTGATCCCAACGTTCAGTACACTTCGGGACAGCGAAAGCTTGGCCTTACGATCCTTTTGGTTATAACGAGTTTTTAGCAAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCCGCCAAGCGTTCATAGCGACGTGGCT +>LCGI01000002.1/5713-5334 Parcubacteria bacterium GW2011_GWA1_43_27 UV92_C0002, whole genome shotgun sequence. +ACGTCAACCCAGGTGATTGCTCCGTATTTTACGGAGAGGAAAGTCCGAACACCACAGTGTTCCCGCTAATTTAAGGGAAGGGTAACTCCTAATTGGAGCCGTTGATCCGAGTAATCGGATCGCAGGACAAGTACAACAGAAAACAAACCCACTTTAATAAAATCATTGAAGATAGGGGTGAAACGGTGAGGTAAGAGCTCACCAGTATCTATGGCAACATTGATGGCTAGGTAAACTCTACCCGGTGCAATACCAAGTAGGTCCGCATCTTGGCGGACGGGTTGGTAGCTTGAATCCTGGTGCGAATCAGGATCTAGATAGATAATCACCGCCCTGCCTCGCGCAGGGTACAGAATTCGGCTTATAAGGTTGAGGTGAGC +>JPVT01000244.1/2256-2451 Tetragenococcus muriaticus 3MR10-3 WGS_Sequence244_061, whole genome shotgun sequence. +ATATCAATACACAGAAAACCTAGTACATGATTTTGACCTTTCAGAGAGCTGATGTTTGCTGTGAATCAGTAGGAAAAATGATGGAATCCAGTTTTTAATGTTTCTTTTAATAAAGAACCTATACTCTTTGGTTACAAGAGACAAGTGCGGTTAATAACCGAACTTGGGTGGCACCGCGAACTATTTCGTCCCAAGC +>MHLL01000003.1/8974-8834 Candidatus Lloydbacteria bacterium RIFCSPHIGHO2_02_FULL_50_13 rifcsphigho2_02_scaffold_10435, whole genome shotgun sequence. +AGTTTATCGCGAGTGCGGGGGAGGGAATTGGCCCTAGAATCCCGCCGGCAACCATTCTGAATGACTCCTACGGTTTTGGAGAACCGTAAGAACTTCAAAAAAGAGGTGCCAAATCCAAACCCTTAAGGGGAAAGATGAAAT +>ALAR01193235.1/10683-11037 Tupaia chinensis contig193235, whole genome shotgun sequence. +GAATATGAGGGCAATCTGGCTATGATAACTGTCATCTCGTTGATGGCCAGGGTTGGTTCCTCTGATCGGGCAGGCTGGATGGATATCCTCTTCTTCCCTCACTTCTCCATACATTTCCTTTCCCAAACTGTGTATCCAAAGAAGATGGCCTTTTCAGGTATACAAGGCCCATTGTTGGGCTGAGCTGCTTGGGTAGCTCAGCCCAAGAATGTGTTCCTCAACCAGAACCTCTGAACAGACTCTTCTACTTAGTACTACCTTTACTCACTCTTGTTTTTTATTCTGTAAAGGAATATTCTATGCTATTTCTTGTATATAGAAAATTTCCACAGCATCATTTGGTGGCATGATAGTG +>ANKR01173204.1/1886-2165 Myotis brandtii contig173204, whole genome shotgun sequence. +ACCGGGCGTGGTGGCGCGCGCCTGTACTCCCAGCTACTCGGGAGGCTGAGGCTGGAGGATCGCTTGAGCCCAGGAGTAGGGCTGTAGTGCGCTATGCCGATTGGGTGTCCACACAAAGTTCGGCATCAATATGGTGACCTCCCGGGAGCGGGGGGCCACCAGGTTGCCTAAGGAGGGGTGAACCGGCCCAGGTCGGAGACGGAGCAGGTCAAAGCTCCCGTGCTGATCAGTAGCGGGAAACCTGGAACCCTTCACTTGCAGGCCAATGCTCTATCCTCTG +>BA000039.2/281279-281411 Thermosynechococcus elongatus BP-1 DNA, complete genome. +GACAACTCAAGACTAAAACCGAAGACCGCAGGGGTCTGGCTGAGACATAATCTTCCTGCCGAGGTTTGCGAAGTCCATCCGTTGCGATTGGGCGATCGCCCCGGCACCCTTGCTGGGGTTTTTCTTTCACTGA +>ALWT01112214.1/10402-10542 Myotis davidii contig112214, whole genome shotgun sequence. +AGCTTTGCGCAGTGGCAGTATCGTAGCCAATGAGGTTTATCTGAGGCGCGATTATTGCTAATTGAAAGAAAAAAAGAAAAGAAAAGAGGGAGATGACTGGCGGTGGCCATCGCCCTGCCCACTGGTCACCCCACAGATGGG +>MHQJ01000053.1/3212-2967 Candidatus Sungbacteria bacterium RIFCSPHIGHO2_02_FULL_49_12 rifcsphigho2_02_scaffold_96412, whole genome shotgun sequence. +NNNNNNNNNNAGAAGCAATTCTCTTGTAACAAACTTGGCTATATGCTGGAAAACCCGCGCATGCAGAAGTACTTAAGTACTGTACAGTACTTAAGTGACAATCTTCTGCCGATGCGGACAATCAGCAGGCAACCTATAAGTTCAATAGACCAGTCTATCGAATTCATAGAGAGTCCCCAGAGACTATACGCCGAGCCCCCAAGTTTTGGGGTGATGATATAGTCCATGCCTTATGGCGACATAGGG +>DS989904.1/4377794-4377629 Synechococcus sp. PCC 7335 scf_1103496006895 genomic scaffold, whole genome shotgun sequence. +TTGTGTCGCTATGCGCCGTGCTAGGCTAGGTAGCCTGCATGGGGAAAGTTCGGTGAAAAACCGGCGCTGTCCCGCAACTGTGATGGCAATCTCTAACAAAGTTTCTTCAATATAGTTGCTTTCTTTTGCCTGAGCCAGAATGCCTGTGCGGGTTTTCGCTACACTC +>AFTD01105653.1/47017-47121 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +GGCTTGTTTGAAGGTAGTGAGTTATGTATTGCTCAAAGGCAGTTGCATATTAGACCCCTTTTCTATACTTTCTCCTGTCACACTATCACACCTGACAAGTTTAAA +>MGYS01000080.1/2479-2377 Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_57_10 rifcsplowo2_02_scaffold_5319, whole genome shotgun sequence. +TAACTCAACAACCAACGTCGCACATACACCGTCACATGTGTTTTGGGTGCCTTGAAATCCTCGCGGATTCGGGGTTAAACCATGGGGTGTGTGGAGGCTTAAC +>CP003219.1/1938094-1938153 Streptomyces cattleya DSM 46488, complete genome. +CGCCCGGTACGGACCCGTGGGGGGATCCGCTTCCGGGGCACGGGGGCGCCCCGCTCCGGA +>LJYW01000001.1/1800734-1800628 Prosthecomicrobium hirschii strain 16 C1, whole genome shotgun sequence. +TGCCAGTCCGAGGGGTGCTCCTGTGGGAGCTGAGATGGCGCTGCGGCGTCGGACCCTTTGAACCTGATCCGGGTCATGCCGGCGAAGGGACGGGATCAACCGGCTTT +>JH932293.1/704875-704772 Bergeyella zoohelcum ATCC 43767 genomic scaffold supercont1.1, whole genome shotgun sequence. +CGAGATATAAGCATTTTTTATCAATTATAAAAGTACCATTTTTTACCACATTGCCTAAAAATAAAACACCCCAAACCATCGTTTGGGGTGTTTTTATTAATCTA +>GL541731.1/40376-40515 Microbotryum lychnidis-dioicae p1A1 Lamole unplaced genomic scaffold supercont1.89, whole genome shotgun sequence. +TCAGTCTCTCTTCTGGACTGAGCTTAATCGGCATGCGTCTCTGGTAACGGGGGGGTATGAAGCCCGAGGATAACGTAGCCTCTTTAGCTTTTTACTCCTTTATTTTCGAAAATAAAGGCCAAAAGAAAAAAAAAGGGAGG +>LHUR01000022.1/308140-307852 Clostridium homopropionicum DSM 5847 CLHOM_contig000031, whole genome shotgun sequence. +AAATATATTAAAGCGCCAGAGCTAAGCAGGGAGCCTGAATCAAAGATTGTCTTATAGGAAACTCAAACTAAGGTCTGAGTAAGCTCGAATAAGCCAAATTAGCACTCTGTGTAAGTGACTTGCACCAAATCATAGATTTGGGCAATCTACTTAAGATTTGGATTCTCGCTTAGCTGACGAGGGTGGGGAGTATCGAAAATTCGGCGGATGCCCCACGGTATAGTGCTACCGATAAAGACTGGCAAAACTGAAAAGTAATTTTCAGTACAAATTCAGTCAGGCACTCACA +>CP008889.1/1694819-1694882 Dermacoccus nishinomiyaensis strain M25, complete genome. +GGAATGCCGGTGCGAATCCGGCAGCGGTCCCGCCACTGTGATCCCCGACGGGGTAAGCCAGGAC +>HF993839.1/17775-17516 Clostridium sp. CAG:127 genomic scaffold, scf188 +TAGTAGTTCGATGGACTGAGAAGTGAAGAACGAGGAGTTGGTTATGAATCTGGTAAAAGGAACAAGGATGTTGCGGAAGGATAATAACCCATATGGGGCACAGCCCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGTGAACACGAAAGTGGCTTGCCTGCAATTCCCATGTGTACGGGCGATAGAGGGGTTCGGATGAACCAGAGTACACCTACA +>CAJW010074381.1/2720-1779 Hordeum vulgare subsp. vulgare, WGS project CAJW01000000 data, contig: morex_contig_74381 +ATGGGGCACGTGGAATCCCGTGTGAATCAGNNNNNNNCACCTTGCAAGGCTAAATACTCCTAGGTGACCGATAGCGAAGTAGTACCGTGAGGGAAAGGTGAAAAAACCAAGTGGGTAATAAAAAACATCGTGAAACCTTGTCGAGCTCCCAAGCAGTGGGAGGGGAAAGTGATCGCTGACCGCGTGCGTGTTGAAGAATGAGCCGACGATTCATATGCAATGGCTTGGTTAAGGGAACGAAACCCACCAGAGTCATAGTGAAAGAAAGTCTTAATAGGGCGATTGTCACTTCTTATGGACCCAAACCCCTGTGGTCTATCCATGACCAGGATGAAGGTTGGACGAAACTAAGCAGAGGACTGAACCAACTGATGTTGAGTAATCAGCGGATGAGTTGTGGTGAGGGTTGAAATGCCACTCGAACCCAGAGCTAGATGGTTCTCCTCGAAATGTGTTGAGGCGCAACAGTTGACTGAACATCTAGGGGTAAAGCACTGTTTCGGTGCGGGCTAAACGATCGGTGCCAAATCGAGGCAAACTCTGAATACTAGATATGACCCAAAAATAACAGGGGTCGAGTCGGCCTGTGAGACGATGGGGAATAAGCTTCGTCGTCGAGAGGGAAACNNNNNNGATCACCAGCTAAGACCCCTAAATGAACGATTAGTGATAAGTAAGGTGGGGGGGGGGGGCAAAGACAGCCATTAGGTTTGCCTAGAAGCAGCCACCCTTTAAAGAGTGCGTAATAGCTCACGGATCGAGCACCATCGTGCTGAAGGTAAACAGGGATAAGCAAGGTGCCTAAGCTATGAGATGTCAAAATGCATTGGTAGGGGAGCGTTCCGTCTTAGAGGGAAGCAACCTCTTTCCTAAATATGTATCGGTTATATTTCATGGTCGAGGCTCATTTTTCTATTGTTTTACCATACATGGTTTGTTTCT +>FKLB01000042.1/73555-73404 Pseudomonas sp. 1 R 17 genome assembly PSEFL294_LIB5394, contig: PSEFL294_LIB5394_000042 +ATCCTTCCCAAGTGCCTGCTGACGTTGTCAGCAACATGCTCAGGGCAGCTTTGATCTAGAAAGCTGCAACGTACATACCGTACGCCGATCACCACCCAACCGCTAAAGCATTCAATTTGTGGTCACACGTCAGCGTTATCGACGTGGAATGC +>CM001665.1/38959911-38959726 Nomascus leucogenys chromosome 19, whole genome shotgun sequence. +ATTGCTTCTTGGCCTTTTGGCTAAGATCAAGTGTAGAAATCCATGAACACTAAAGGACTGCATTGACTTTTTCAGAGAGTAGAAAACAACTTAGTTTTTTTTTTTCCTGAATGCGTCATAGGCTTGTGAGTGATTTTTGTCCATTCAATTGTGCCTTCTTTGTATTACAATAAGATGGGGGTACTT +>CP011568.2/2789266-2789207 Pandoraea thiooxydans strain DSM 25325, complete genome. +TGTCTCCTCCACCTCCTCCTGGTGGATTTTATGGCCAGCAGATTGCTGGCCATTTTTTTT +>ARZA01000139.1/3294-3076 Caldisalinibacter kiritimatiensis strain L21-TH-D2 NODE_28, whole genome shotgun sequence. +ATATAAGCTGTGAAAGGTAATAGTAGATATTTAAGGCTTACAGAGAGGAAATCCTAGGCTGAGAGATTTCTAGCCCTCTGAATATTGAACCCGGCCTGGAGCTTCTAGACTGAAAAAAAGTAAGTTTAGACGGTGTTAGCCGTTATAAAATTAAGTGAGCCAATGAAATGTATTAATTGGTTAAATAGGGTGGTACCGCGGATAAACTTCGTCCCTTTT +>CAGP01000005.1/749-1 Helicobacter bizzozeronii CCUG 35545, WGS project CAGP01000000 data, contig: tsc_c98 +CTACTACTACACCGATAGCGCACAAGTACCGTGAGGGAAAGGTGAAAAGAACCGTGGGTAACGGAGTGAAATAGAACCTGAAACCATCTACTTACAATCATTCAGAGCACCATAGTGAATCCCCCTGAGGAATTGCGGGGGGGGGCTGTATATAACACTTATACGCCCTCTCCTCCTCCATGATTTCTCGATATCTTTTTTGGTAAGGAGTTTTCATGAAACCCCAAGACAATGCGTCAAACATGCAAAACCCGAATCGTGGGACTAGCGGGACAAATAGGCAATACGACCAAAATCAGGGGAATAGGGGAAGCCAACTAAACCCTAACAACCCCAACAACAGGAAATAGGTAAGGAGAGGTCTCATGGGAAGAGGACAACCAGATAACGACCCTAACGAAGCAGGCTATCCTTCCACGACAGGTAACCCAAGCGGTGGCGGTCGTGGCAATGATGACCCTGATGACGATTAGGTCTAACTAGGTCTCAAACAAGGAGGGGAAAAACTTCAATTCTTCAGTGGGATTCACTGGTGTGATGGACTGCCTTTTGCATAATGATCCTGCGAGTTGTGGTGTCTGGCAAGGTTAAGTGAAAACGAGCCGTAGCGAAAGCGAGTCTGAATAGGGCTATTTAGTCAGACGCTGCAGACCCGAAGCCAAGTGATCTATCCATGGCCAAGTTGAAACGAGTGTAACAGCTTGTGGAGGACTGAACCCGTGCCCATTGAAACGGGCTGGGATGAGCTG +>BDFN01001244.1/2524-2921 Ipomoea nil DNA, scaffold: scaffold1244, cultivar: Tokyo-kokei standard. +ATTCAAATGAGAACCCGAAGGCCGGTTCAGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGGGTCGGGGGCGCGCCCGACAGACAGCGCGTTTTGCGCGTGGCCGAAAGGGAATGAGAATAATTCGAGGGCGTTCGACCCGATGTTCTAATCATTGGCTTTACCCGAGAGACGGCGCGGCGCTCAAGAGTTGAGGGAAACTTCGGAGGAACCCCCCTGGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCACACGTCGCGTGGTGTCCGGTGCGCCCCCGGCGGCCCTTGAAAATCCGGAGGACCGAGTGCCGTCCACGTTCGGTCGTACTCGGTCCCGCAGGTATCCTGGTGAACAGCCTTGGTG +>JH815222.1/1813753-1813619 Clostridium sp. 7_2_43FAA genomic scaffold supercont2.3, whole genome shotgun sequence. +ATTGTTAAGAAGAAACAAAGCCGTTTCTCACCTTACGGCAGAGCTTAGTAAGGTAGTATATTCTTATTTTAATTTATTATTTAAATTAAACGTGAGTATTATGAGGACGGCATATTGCTGTCTTTTTTATTTTGT +>AACY023865031.1/116-206 Marine metagenome ctg_1101668672382, whole genome shotgun sequence. +CTGAGTTTCTTGCTTTTCTATAAGAGCAAGTGGTGCGCTACATCCGCGTAGTTTCCTAGTTCTACACAAAAACTAGGTGGCGAGCATATTA +>ANKR01167074.1/25401-25567 Myotis brandtii contig167074, whole genome shotgun sequence. +ATCACTTTTTGGCCTTTTGGCTAACATCAAGTGAAGCATCTGTTCTTATCAGTTTAATAAAATATTTGCTTCAGAAACTGCCACCTCTGAAGAGTCAAGCTGCCATGAAGCAGGTAAGTGCATGGAGCCACCATCAACAGCAAACTCATTTCTGGAGTGAAAGCTCA +>MHKU01000038.1/195-563 Candidatus Liptonbacteria bacterium GWB1_49_6 gwb1_scaffold_7743, whole genome shotgun sequence. +TTGGCAATTCAGATGATCGCTCTTTATCGCAAGATAAAGGGAGGAAAGTCGGGACACCCTGAGCCGAAAGGTTTATAAAAAAGTAGCGGCTAACAGCCGTCGTCCGCAAGGACAGAGGTGCGAGCAGTGACGCTCCGACGCGAAAGTATCGGAGGGACCCTATCCCAAGCTAGAAGGTCCAACTCCGCGATAGGGATAAGAAAGCGGAGGTGAAACGGCTAAATCCTTACTGGGTGCAAGACCGTACTCCAATGCGGAGCATTGGTTTGTGTCGCTTGAGCCCGCGAGCAATCAAGGGCCCAGATAAATGATCGCCGCCGCCGATAACAATCGGTGTGCACAGAATCCCGCTTACGAATTGCCGCAAAC +>MHXM01000167.1/11573-11672 Desulfuromonadaceae bacterium GWC2_58_13 gwc2_scaffold_6790, whole genome shotgun sequence. +CTTTGCTCAGAGCAAACCACGGGAAACCGTGGGGCGCAGAGCCACGGGACTTCCGGTTTGCAGGCAGGAACCTGCGACCAAAGTCAGCCGGGCCGCCAGA +>AAPU01011573.1/516306-516391 Drosophila mojavensis strain TSC#15081-1352.22 Ctg01_11574, whole genome shotgun sequence. +ATATTTTCTAATGATGATAACTACATAGCAAATCAGAGCAATAATGTTGAAATTTACAGACAATGCACTACCATCTGATTGCTATA +>KB916025.1/11687-8703 Neofusicoccum parvum UCRNP2 chromosome Unknown NP2_03_scaffold_387, whole genome shotgun sequence. +CCTGGAGATAGAGTGCACTTCTAGGGTATAATCTTCACAAAACCCCCCCTTGGTTCTAACCAAGGCAGTTGGTTCTACTAAACTCTTAGAGAAATTATATTAATAAACGAAGTGAATTGAAATATCTTAGTAACTTCAGGAAAATAAATCAAACGAGATTCTATGATTAGTGTGAACGAAAGTAGAAAAGCCTAAATATTAAGCAAGTAAAATGGATTAATCTGTTTGAATATAGGGGAACCTTCCTCTAAGGCTAAATATGATATATAAGCGATAGTGAATGAGTACCGTGAGGGAAATGTTTTGAAATAGTAGTTTTATAAGCAGCTCGAGTGAAGTTTAAATAAAAAACAAGAGCGTACCTTTTGTATAATGGGTCAGCAAGTTAATATTAGATGCGAGCATAGCACTATGCCTAGATAAACCGATTATGAAATAATGAATAAGTATCTAGTATTAGACCCGAAGCCTAGTGATCTTACCATAATCAGGATTATAAAAGTCCGAACGGGTTATCGTTGTAAAGATATCCGAAGAATTGTGGTAAGTTAGTGAAAGACAAAACTGACTAGGATAGCTGGTAAAAATTAGTGTGAGCTACTAATTAGGCCAGTAAGTAGAAGTGAACCTTCTGCTATAGACCATCAAATTGACGGGAAAGCCCTAAAGCAAATTCAACCAAACAAATGTGGTAACACATTTGTGGCGCAGGTAATGACTCGCGGTAAGGTAACATCGAAATTGATAGCGAAAGTGAATGGGTAATCCGCAGCCAAGCACCTTATGGGTGTGCAGTTCATCGACTAAATGTTGGTTGGCGCAAGCTTAAGATATAGTCAAGCCTCATCCAAAAGGATGCAGAATAATAAAATACTTTTTTTATTTAATTTTCCGCCTTTAAGGCACATATCTAATCCTTTATTACCTTCAAATAGACTTAGGTTGTACCTTTTGTATAATAGGTAAACAATCCTAAAGGAAAACATATCTTCTAATGTTTTACATTAGAGGTATGAATCCGAATCTTTTTTTTTAATAGCCGATAAACTATCACAAGTAAATACTAATACAGAATTAGAATATGCAAGTTTAACTGATGCAGCTAAGGCTATAGCTGTTAGTAGAACAGCTGTAAAAAAAGCTCTTGACACAGGTAGAACTGTAAAAGGATAATATATAGTAGCCACAAAAAATTAAATAAAAAAAGTATTTTATTATTTGTAAATGGATAGCTAATAGCTATTTAGGGAGAAGGACCTCAGCTCGGCCCTTTAAAGTTTTATTCATATTCACAATAAAAAAAATAAAGGCTAAAGATGGTCATATCTGTTTCCGCGAAACCTATATAAGTAGGTAATTCAAGTAACATCTTAGCAGGTACAGAACTGTGATCTCAGGTAAAATTATATTATTTTAGAAATCTAAAATAATAATTTTGCATACATCGGGGGATCGTGAAGATTTTATCGGTGAGTATTTGCTCTCGGAAGGGCAAAGATGATTATTGAATAATCAGACATAGTACGATAAGGTTGTATGTCTAAAGGGAAACAGCCCAGAACAAGTGTTTAAGGTTCCAAAATTATTGTTAAGTGAAATTAAGGAAGTATTTTTCAAATACAACCAGGAAATAGGCTTAGAAGCGGCCATTTTTTGAAGACCTCGTAACAGAGCACTGGTTCAATTATAAATTAATATAAATTTATACAAGTTAAAAGCGCCAAAAATATAACGGATCTAAAACAATATACCGAAACCTTGTCCATATTTATAAATATATAGGAAGTTAAAGATCTGGGTGAAATCTTTATTTTTTTTTTTGAAATAAAGATTTCACTTTTTATAGTAATAATAATAATTAACAAATCTTTAAGCTTCATGCTTCAATATGTAGCAAAGATATTGTATTTATGGGGTAGCGGAACGTTGGGGAAATCTTAGATTTTTACTTTTTAAGTAAAAAAATTAGATAACCCAAGTGAGAATGCTGACATGAGTAACGAAAAAGGGGAATACCCTCGCCTTAAGCTTATGGAATTTCTTTAAAGTAACGGCCTCTAAGTTTACAGACCTGTCCTAAAGGATTAAACGATGAGAAAATCTTCCTTATGTATGACAACCTTAGAATAATAGTTAATCTGTTTAATAGATAAGAAGATTTTGTATTAACAGTTAATGCATTTGAAGATTTTGTATTAACACTGTTAATGCATTTGAAGGTCATGTTAAATGCGCCATGATATATCAAATCTGGTCTACTAACCAGATTTGATATACCGACCAGTAAAGCTGGATACTCTGTCACTGCTTGCCACAGGGCCTATGATCGTTGCAGGCCTACTGGTTCTTATTTTTTAGTATTGAATTATATGGCAAGTATTTTCAGTATATCCCTTTTCCCTGCAGAGGAAATATCCCCTCTAAAGGAAACTTAGGGAAATAAACTGTATAGTAACAAAGGATGCTAGACAGATATTAAATAGATTAATAGTTGAGAGTACTAAGCGTTCTGGAAAAAGACATAAGGGTAAAACCGTACCTAGAAACTACCACCAGTAAGCAAGTAGAGAATACGAAGGCGTTTGAGCTAACAATCATTAAGGAACTCGGCAAATTGACTCCGTAACTGCGGGATAAGGAGTGCCATTCTAACTGGATAATATCAGATTTAGAAGAGGAGGCACAGAATGGTGTTGTACGACTGTTTAATTAAAACACAGCACTTTGCGTAAGATGACAAATCGAAGTATAAAGTGTGCCGTCTGCCCGATGATGGATGGTTAACGAATTTATTTAGCTGACTAAAATAGGTTAGGTTTTGAAGGAACCCCCATTCAATGGCGGCCTTATCTATAAGGGTCCTAAGGTAGCGGAATACCTTGGCCGTTAAATGCGGTCTTTGCATGTTTTCTCTTTAGTTTAGGTAACTAAAGTAAAGGATTAACCAATAAAAAAAAATAAATAAGGGAGAAATCTCTCCAAGCC +>LJSX01000001.1/215848-215664 Rhizobiales bacterium HL-109 ITZY_scaf_5, whole genome shotgun sequence. +TGGCCCCTTGCCGTGGTCGGCGCCCTTTCGGGCCCAACAGGGAAACCGGTGCGAGACCGGTGCTGCTCCCGCAACTGTAATCGGTGAGCCCGTCCGAAAGCCACTGGTGCCCCGCGCACCGGGAAGGTGGACATCGCGGTGATGACCCGAGAGCCAGGAGACCTGCCGACGTGAAGCAACCCTGA +>NATL01000046.1/9039-8946 Candidatus Omnitrophica bacterium 4484_70.1 ex4484_70.1_scaffold_5627, whole genome shotgun sequence. +AGCGATAAAGCCAAACCCAGGGAAATCTGGGGGCGGAAAGCCACGGGTCCTCAAAATCAGGATTATTATTGAGGGGATAGCCGGGTTGCCGAAA +>CP000248.1/722861-722994 Novosphingobium aromaticivorans DSM 12444, complete genome. +CCCCAACATCGAGAGTTGGGGTGACGCTCCAACGCCAACCTGCCGTTCCGGGCAAGGTGGTACCCGATCCGCAAGGCGGCCCCGGCCGAATTGCGAAAGGGGATGTGGCCGATCCGGCAACCAAACGGACACGG +>DS562862.1/42992321-42992756 Cavia porcellus supercont2_7 genomic scaffold, whole genome shotgun sequence. +AATGGCGGTGACCTCTGGTCCCGTCTGTCTCGTTTGTTCAGTCGTCCGTTGGTCAGTCGGTCGGTTGTCCCCCTCCCTCTGAGACGCGAGCTCAGATCAGACGTGGTGACCGGCTGAATTTAAGCATATTAGCCACCAGAGGAAAAGAAACTAACAAGGATTCCCTCAGTAATGGCGAGTGACCAGGGAAGAGCCCGGCGCCGAATCCCCGCCCTGCGGTGGGACAGGGGAAATGTGGGGAATGGAAGACCCGCTCCCTGGCGACACTTGTGGGAGGCCCAAGTCTTTCTGATTGAGGCAAAGCCCATGAACGGTGTGAGGCTGGGAGCGGCCCCCTGCGTGCTGTGTTCGGGGGAATCACGAGATGGATACTTAAATACCATAAGGGAAAGTTGTAAAGAACTTTGGAGAGAGTTCAAGTGGGCTTGAAACTGTT +>CAFZ01000031.1/6993-6912 Piriformospora indica DSM 11827, WGS project CAFZ01000000 data, contig: PIRI_contig_0034 +CCACTCTTAGCTCAGTTGGTAGAGCGTGCGGCTGTAATTTCCCTAAACCGCAAGGTCGCTGGCTCGAATCCGGCAGAGTGGA +>JPZU01000001.1/1721226-1721354 Lachnospiraceae bacterium TWA4 TWA4_scaffold00001, whole genome shotgun sequence. +ACGAAACGATCAGCACCGCCGAAGACAGCAGGTGCCGTATGGCGTAAGGTGTAACGCCTGCCGAGACGATTTTAAGGAATGCCTTATATACCTCTCTGTCTTTGGATAGAGAGGTTTTGTTTATATACA +>LQBR01000004.1/128232-128109 Microbulbifer sp. ZGT114 ZB100003, whole genome shotgun sequence. +TAGCTGGTCTGTAAATATGCACGGGCCAGCCGAATCTTCAAAGCATATTACGACGAGGTAATTCGTTATGGCACTGACTGCAAATGAAAAAGCAGCCATCCTCAAAGAGCACGGCCAGTCTGAA +>CP009505.1/1989432-1989301 Methanosarcina sp. MTP4, complete genome. +CGGTTGCTTGCAAGCGGACCTCGAAGCCTCATTTCACACACACACACGAGAATCACAACGATTACTCTAGATGGATAGGTTCATCCCTTCTTCCTGTCCGTTCCGTTCGCTTGTGAGTACCACCCCATCATA +>CP021112.1/3034288-3034406 Pseudorhodoplanes sinuspersici strain RIPI110, complete genome. +TTTTATTTCGTGGACGCTTCTCATCGTAGGAAGGCGCATCGCTGGGGGTGGTTGAAACCACCTATGCCGGGCGATGCGCTGTTCAGGGGGCCTCACGGGCCCTTTTTTCTTTTCCCGGA +>AYZV02091783.1/3282-3039 Spinacia oleracea cultivar SynViroflay scaffold22748.con0008.1, whole genome shotgun sequence. +AGTAGAGTAAGAGAGCTTCCTTCAGCCCACTCATGGATGGAAAAAAGGGGTATTGAATTATCTGCCGACTCATTCATTCAAACACTGAGTAGAACAAACAAGGAATGTACAACACGCATGCGTACAGGGGGTGCAAGTGCAAGTGCAAGTGCAAGTGCTACTGTGATTGCGTGAATGATGCGGGAGATGATTTCATCCTTGTCTCTCCGTGCTTGGACTGAAGGGAGCTCCCTTTCTCTATTCC +>URS0000D6BD70_684738/1-44 Lactococcus lactis subsp. lactis KF147 DUF1646 RNA +GGTTGGGCGCAAGCTTCAAGACATATCTCCAAGGGTGAGGAGAT +>ASAF01269073.1/1229-1323 Nicotiana sylvestris Nsyl_contig269073, whole genome shotgun sequence. +CGGAGCCGTATGAGGCGGAAGTCTCACGTATGGTTCTCTAAGAAGGGAGTGACTACCTACAGGAGCTTCGACCAAGCACCACCGGTCAATTCCGC +>JNGA01002875.1/199-1 Arabis alpina cultivar Pajares Aa.chr2_contig_422, whole genome shotgun sequence. +CGACGGATCGCATGGCCTTTGTGCTGGCGACGCATCATTCAAATTTCTGCCCTATCAACTTTCGATGGTAGGATAGTGGCCTACCATGGTGGTAACGGGTGACGGAGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACACGG +>FP929041.1/559079-558959 Eubacterium cylindroides T2-87 draft genome. +ATAATGAGACTCCTGTCCAGCCACAGTCCGAGCGTGATATGCCCTGCTTCAGGGTGATGCCGTCGCAGGCAATGGGGGCAGCCGATTTGTAGAGATCCTACCGGGGGTGCAATTCCCGTGG +>CM001383.3/68159736-68159614 Felis catus isolate Cinnamon breed Abyssinian chromosome B3, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATTGTTATAAGTCAAAATTTAGAAGAGTAAATCACATTCAAGCAAAAAGAAGCAAAAATAGATCTTGCTTCATAGATCTACACAAA +>AACT01034500.1/16165-16123 Ciona savignyi cont_34500, whole genome shotgun sequence. +GACTTCGAATCAGAAGATGAGGGTTCGAGTCCCTCTGTGGTCT +>CP003005.1/936847-936934 Myceliophthora thermophila ATCC 42464 chromosome 4, complete sequence. +GGCCGTGTGGTGTAGTGGTAGCATACTTGCTTTGGGTCGTGAGATTTCAATCTGCAAGTGGTCCCAGGTTCAAGCCCTGGCTCGGCCC +>MCOG01000628.1/21312-21242 Neocallimastix californiae strain G1 LY90scaffold_628, whole genome shotgun sequence. +GGAGGGTTGGCGCAATGGTAGCGCGTCCCCTCCAGAGCGGAAGGTTGGGTGTTCGAATCACTCACTCTCCA +>KB319013.1/681-1 Rhizoctonia solani AG-1 IA unplaced genomic scaffold scaffold1318, whole genome shotgun sequence. +GCAGCTCGAAAGCCGCATTTGCTCGCCACGCACGTGCCGATTTACTCGGCGTCTCGCGAGCGGGCTAAGGTCTGAGCATTCTAGTCCCCTTGTACGTGTGTCTAGCCGGCACCGGCTCCAACAGGGCCGAGCAGAGTATCAGACATGCGCTCGGTGCTGCTTGTTCCGCCCAGAGACCCGCAAGGGGAGGGCACAGCAGCACGTGAGCTTGGAACAACTCTGCGGGGACAGAGCCGTCTACTTGCCTCCCCGTCCCGAGTCTCTTTTTGTCCTCTTTCCCACCCGTGCGCTAGCCTCGAGAACTAGCGCCCAGTTTTTTCAGAGACTGAGCATCATGCATCTGACTCTTCCCTCGCTCCGCAAGGCACGGAGCAGTGTACGGCCTGGGTTGGCTTCTGGGCGCCGATCGAACCTGGGGATCTCACATCGCTACGACTGGCGCGGCAGCGCTGAGCACTGGGACTCCCCATGCCCGGCAAAATGCTCCGCGTACAGGTAACGAGCTCTTGTTTTCCTTTTATTTCCTGGATATTCCTGGAGAGGCCACGCTGGTGGTTCGATTGGTTGCGGTGATCGAGGAGGACGATCGGTCTTGGACGGGGAACGGGCGGCTCTTGAGTTCACTTTGCGGCTCGCAGTCATTCGCTTTGGCGATTGCGAAACTCGATTCAGACTACTCTT +>AFSB01087678.1/359-79 Heterocephalus glaber contig87678, whole genome shotgun sequence. +GAATGTGAGGGCAATCTGGATGTAACATGTTACCCCATTGATGGCCAGGGTTGATTCAGCTGTATGGCTGGTAGGCAGGTGTCCCCTTCCTCCCTCACTGCTCCAGGCGCGACCCTCCCTAAGCTTCGAGCACAGTTAAAGAGGATGACCACTGTTTCCTTGGTCAAGGGTTTACAAGTAGCTGTGCTCCCCTGCTAGAACCTCCAAACAAGCTCTCAAGATTTAAAAACTAAAAGGAGAATGGGAGTTGGGATATAGCTCAGTGCAAAGGCCCAAGATTT +>MKUQ01000060.1/39144-39044 Burkholderiales bacterium 70-64 SCNpilot_expt_1000_bf_scaffold_93, whole genome shotgun sequence. +CGATCTGCTCCGGGGTGCGCAGCACGCTGAGACGGGCCCAGGCCTGAACCCGAGAACTTGATCCGGTTAGGACCGGCGAAAGAAGAGCGATCCGTCGCCCC +>CM007893.1/130149511-130149874 Helianthus annuus linkage group 4, whole genome shotgun sequence. +TGTGTCGTAGACTAAGCGTGCATGACGGATGAGTCGTGCAGGCCGCCTTGAAGTACAATTCCCATCAAGCGATGGGTAGAATCCTTTGCAGACGGGTGACGGGATAGAATCCCCTATCAACTTTCGACGGTAGGATAGTGGCCTACTATGGTGGTGACGGGTGACGGAGATTTAGGGTTCGATTTCGAAGAGGGAGCCTGAGAAACGGCTACCACATCCTAGAAAGGCAGCAGGCGTGCAAATTACCCAATCCTGACACGAGGAGTTAGTGACAATAAATAACAATACCAGGATCAAACGAGTCTGGTAATTGGAATGAGTACAGTCTAAATCCCTTAACAAGGATCCATTGGAATAAACCATA +>AFEY01266293.1/3612-2555 Sarcophilus harrisii ctg7180002245042, whole genome shotgun sequence. +CCACATTCAGGGCCCCAGGTGGGGCAAGATGGCAGCCGAGGTTACACCCAGAGAGTCTTTAGAAATTCAATAGTAAGATATGATCAATTATCCAAAAGGCAATTGGATGGAAGAAGGAGATTATACAATCAATCAGCCAAAGGGCAATCAGAAGGTAAAAGGGGATTGAAATTAGGAAAAACAGAGTTGTATGCAGTAGAGACTACTGAGATATCATCCCCTGGAGAGGTGAAATCTGTTCCTGTCCAGCTTATAGATCCCTTGCCTCCAGGCACAGTAGGCTTGACCATTTCACCTCCTGAGGGTGCTTACAAAACAGTGGCCATGGACATCGGAATCCTCTAAGGAGTGTCTAACAACTCACCTGCCGAATCAACTAGCCCTGAAAATGGATGGCACTGGAGCATTGGGCCCATACCTGGCCGTCGCTGGCAATGGGCACAAAGCAGGAACAGAAACGTGTTGTTTCCTGAGAACAGATTCCGCACAAGGGAGGAAGGCACGAACTCACTCCTCAGGGGCTAGGCCACGATGAGTAGGAGGGCTGCTGCGGTGGGCCTGGAAGCCTAGGGCATGGGCCCAGGTGGAGCTGCCGCAGGTGTAGATCTTGGTGGTAGTAGCAAATATTCAAACGAGAACTTTGAAGGCTGAGGTGGAGAAGGGTTCCATGTGAACAGCAGTTGAACATGGGTCAGTCAGTCCTGAGAGATAGGCAAGCGCCATTCCAAAGGGACAGGCAATGGTCTCTGTTGCTCTCAGCTGATCGAAAGGGAGTAGCGTTCAGATCCCAGAATCTGGAGTGGCAGAGATGGGCCCTGTGAGGCATCCAGTGCAGTAACGTGCCTGATCCCAGAAAAGCCGGCTGGAGCCCCGGGGGAGAGTTCTCTTTTCTTTGTGAAGGGCAGGGCTGCCCTAGAATGGATTTGCCCTGAGAGTGGGCTTGTGGGCTTCTATATCTCCCAGAGTGCTCCTGGCTCTCAGTCTCCCAGAGTGCTCCTCTCTGACTCTTGTTGATGTTTCGAAGTAACTAACCCAAAGCTAAGAGCCTCTTTATACAT +>LGSR01000020.1/1425329-1425226 Escovopsis weberi scaffold00001, whole genome shotgun sequence. +GGCAGAGTGGCCGAGTGGTTAAGGCGATGGTCTTGAATCGTGGGTTCCCATGATAAAGCCAACCATTACGTTCGCGTGCGTAGGTTCGAATCCTGCCTCTGTCG +>JENH01053621.1/966-1 Agrilus planipennis Contig53639, whole genome shotgun sequence. +TTTAGTATAAATACTCTGTAAATATTGAAATAAAATTAGTCTAACACCAGGCTCACTCTTATTCTGATGCTGATAAAGTGTCAACCCTTGGGATCCTCAAAGATGCAGATAATGTATCCAACGGTATTACTAAATCGGTTCTTCTCAGAACCCCAACTTTGATAGTCACATCTCTCATCATATACGACTACAGAGAGTGGCTACAGTTGTATCATTTATTACTATTTATTATTTTAACGATTGACCATCTCAGGCTAGACCTTTTTCATCTAATAGCTTGACTCTGTGATATAAGAGTTGTGATATTTATGTGTGTGCGCCGTCCTAGTTTATTATTTTAGGTGACAGCTAGTAACCGATACCAGTGATGCGAGTCCTGGGTTTCAGTCCTGTGTGACGTGGGCCGACTCAGGGCGGCGAAGCGGTTGCTTAACGGCGTCCCAGACGTCTCCGGCGAATTCCGCTTTCTCAGCCAGAGAACTTCGCTTAACGATTTTTCCAAGGCCCGTATATGCCGATACTCCCTTTGAACAGGTCAAGTTTGACAGGTTTCCTCGGGCCAGGAGTCGTTAGTTCTATTGGGGGCGAGACTTAGATGACTCTACAAGGCATCGCTTTGGTACTCGAGGCGAAGCAGATGAGCCAAAGCTACTCGGCAAGGCTCATCGGAGCCGGGGTGCCGAATTAGGGCTTATGCTTGTCTAAGCCCTGTGGCAATCACGCCAGACCACCGTGGAAAGTGTGAGATCGCGGTCTCATAGAAATAGCCAAAAGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACCAGATTCTCTGTGACCCTACCCACTATCTAGCGAAACCACTGCCAAGGGAACGGGCTTGGAAAAATTAGCGGGGAAAGAAGATCCTGTTGAGCTTGACTCTAGTCTGGCACCGTAAGGAGACATGAGAGGTGTAGCATAAGTGGGAGACGGTA +>AAPU01006125.1/5918-6168 Drosophila mojavensis strain TSC#15081-1352.22 Ctg01_6126, whole genome shotgun sequence. +GGTCCATCAGGATAAGGATTGGCTCTGAAGATTGAGATAGTCGCGCTTGATTGGGAAACAATAACATGGTTTATGTGCTCTCTAAATAGAGATCTATCATTTTATGGTAGTTTCTAGTTCCCCGGATAGTTTAGTTACGTAGCCAATTGTGGAACTTTCTTGCTAAAATTTTTAAGAATACTAGCCGGGCAACCGATTAGTTCTTTTAAATTATAACGATTATCAATTAACAATCAATTCAGAACTGGCAC +>LBPO01000002.1/47954-48343 Parcubacteria (Magasanikbacteria) bacterium GW2011_GWC2_34_16 UR53_C0002, whole genome shotgun sequence. +GGTTGTTGGTGGATGATCGCTTTGCCTGTAAAGGCGGGGAGGAAAGTCCGAACACGCCTCTAGCGAAAGCTAGAAAGGATAGCGGGTAACGCCCGCCTGGAGCAATCCACGAGGTGCGAGCAGAGACGTCTAGGCTTGAAAAGGTCTAGAGAGCTAAACCCTGTATTCTTGATTAATCAGGAATAATAGCTTAATCCTGGCCATAGGGAAATAAGGTCAGGGGTGAAACGGCTAAATCCTTATCTGCGTGCAAGAGCAATGTTTCCTGTTGTTTAGACGGGATTCAGAAAGTTAGCTCGCTTTGATTCTAATGGAAACATTAGAACTAGATAAATGATCGTCGCCCAATTTATTGGGATACAAAATTCGGCTTATAGCCAACAATACCCT +>CM000856.1/137442353-137442632 Callithrix jacchus chromosome 1, whole genome shotgun sequence +GTCAGGTATGATGGCGCATGCCTGCAGTCCCAGCTACTTGGGAGGCTGAGGCAGGAGGAGTACTTGATCCCAGGAGTTCTGGGCTGTAGTGTAGTATAGCACTGCACTAAGTATCTGCACTAAGTTCTGCATCAATCAGGTTGCCTAAGGATGGTTGAACTAACCCAGGTGGAAACTGGAGCAGGTCAAAACTTCAGTGCAGTGCTGATCGGCAGCAGGATCTCACCTGTAAGTAGTCACGGCCCTCCAGCCTGGGCAACATAATGAGATCCCATCTCTA +>CP009129.1/1068541-1068746 Planococcus sp. PAMC 21323, complete genome. +TTAATGACAGCGAAGAGGACTAGTAGTTTGTGTATTTTCCACAGAGAGCCGGCGTTTGGTGCAAGCCGGTAAAATGCGCAACCGAACTCACCTTGGAGTCAGTGTATGTGAAACTAAGTAAGATACACCGTTTTCCGCGTTAAGGAGTCAAGTTGAGCGAGCAGTCGCTAATTTGGGTGGTACCGCGGGAAAATCCCGTCCCTTAT +>JTDY01000669.1/96851-97292 Operophtera brumata OBRU01_Sc00669, whole genome shotgun sequence. +GGTCATTATCACCACAATAGATGGCGCTGTTTGCAACTTTATACCAGGCTATACCTATATATATACATATCGACTTTGTTTTATAACTCAAGAAGTGGGCCGACAATTTTACTTTGAACAAATTAGAGTGCTCAAAGCGGGCTCAAAATGCTGCTTGAATATTTCGTGCATGGAATAATAGAATATGATCTCGGTTTTATTTTGTTGGTTTTCAGAACTCCGAGGTAATGATTAATAGGGATAACTGGGGGCATTCGTATTGCGATGTTAGAGGTGAAATTCTTGGATCGTCGCAAGACGAACATCAGCGAAAGGTGTTTTCATCAATCAAGAACGAAAGTTAGAAGTACGAAGGCGATTAGATACCACCCTAGTTCTAACCGTAAATATGTCATCTAGCGATAAAATTGACGCAATTTTGAAAAAAGAAATGAATCTTTAT +>FRBH01000005.1/40291-40383 Chishuiella changwenlii strain DSM 27989 genome assembly, contig: Ga0131172_105 +AAGTAGCGACAGGGATTGACGTGAAAATCCTTTTTACAACTGAGATTCTCTCGAAGTTTAGTAAAAAGATTGTAACAAAAAGCCCGCTCGGTC +>FQWL01000004.1/126785-126917 Spongiibacterium flavum strain DSM 22638 genome assembly, contig: Ga0070522_104 +TGGTTATCGAGAAAGGCGGAGGGACTAGACCCTGTGAAGCCTTAGCAACCCTTAGCACATCCCATCATCTGGGATTCTGAGAAGGTGCTACATTCTACCTAACATCGGTACATGATGATGGGATGGATAACGA +>KQ758491.1/45269-45062 Bacillus enclensis strain SGD-1123 genomic scaffold Scaffold10, whole genome shotgun sequence. +GGATATTCAATGATGAAGAGAGTAATTCCCGCGTGGATCTAAAAGCGAACCAGGGACGGTGCAAGCCTGGTGTGAAACCCGGAATGAAGCGCACTTCTGAGAAGTCTTTCCCCAAATTTCAGTAGGGAAAGACCGGGTAAAACCGTTAATTTATGAGCGCCCTTTCTGGGAATAAGAGTGGTACCGCGAGTCAAAACTCGTCTCTACA +>AHIQ01000233.1/47283-47180 Brettanomyces bruxellensis AWRI1499 AWRI1499_contig2762_scaffold53, whole genome shotgun sequence. +AAACCTAAARATGATGATTGAGAATTAACGCATAGTTCAACTGRTATCTATGAAGAAAATATTTCCATCAATATAGTCTTTCACCCCTATCTGATTTTAGGCTT +>URS0000D685E2_12908/1-80 unclassified sequences type-P1 twister ribozyme +AUGUUAAUGCGACCUAGUUACUGGUAACCGUAAUACCUAGUGCUAGAGGGUGGCAAGUCCCUUUAACGCAGAGUCGACAU +>CM000801.1/33200308-33200628 Oryctolagus cuniculus chromosome 12, whole genome shotgun sequence. +GTTAGCTCGGGCCGGGAGGAGCCGCCACCGCCGCCGCCGGAGGAGGAGGGGGAGGAGGAAGGAGAGAAGGAAGAGGAGAGGGGGCCGCGGTGACGACTCGGCGCCGGGGAGCCGGGCTCATGGACGGGTGAGGCGGCCGTGTGCGCAGACAGTGCTCCAGCCGCGCGCGCGCCCCAGGCCCTGGCCCGGGCCTCGGCTCCGGGAGCAAGAGGAGCTCGCGGAGGCGCCGAGGAGAGCGGGCCGTCCCGCAGCCCGAGCAGGAGAGGGAGCGCGAGCCGCGCCGGCCCCGGCCGGGCCTCCGAAACCATGAACTTTCTGCTT +>KB456266.1/1688805-1688699 Sphaerulina musiva SO2202 unplaced genomic scaffold SEPMUscaffold_7, whole genome shotgun sequence. +GCCCGCTTAGCTCAGGGGTAGAGCGCATCACTCGTATACCTGGATGGCTGTAAATCACCTGGTTTGGTGGGATGATGAGGTCATTAGTTCGATTCTGATAGTGGGCT +>CM001381.3/152175418-152175578 Felis catus isolate Cinnamon breed Abyssinian chromosome B1, whole genome shotgun sequence. +ATCGCTTCTTGGCCTTTTGGCTAAGATCAAGTGTAATATTAAAAGTTAATATTTCTGTAGTGCTTCCATTGCACAAGGTACTATTCTAAGTATTTTACATATATTGACATATTTACATTTCTAAAAACCTTAAAAGGTAGTCACCTTTTAAGGAAAGTATT +>AASG02000564.1/14627-14791 Ricinus communis cultivar Hale ctg_1100012361959, whole genome shotgun sequence. +GCCTTGGTGGTGAAATGGTAGACACGCGAGACTCAAAATCTCGTGCTAAAGAGCGTGGAGTCCTCGGGTAGTCTCCTCTATAAAGGCATTCCAGCTTCAGAGGTAGGTGAGCCAGGTCAGGAAGGAGTTTGACTGCTGGGATAGGATCGGATCCTATTCGAAGCA +>AZIM01000830.1/116066-116143 Ophiophagus hannah scaffold831.1, whole genome shotgun sequence. +CGATCTGGCTGCGACATGTGTCACCCCATTGATCGCCAGGGTTGATTTGGCTGATCTGGCTCCATGTACATCCCTCCT +>MUXU01000055.1/10129-9985 Moraxella caviae strain CCUG 355 355T_ctg_0000055, whole genome shotgun sequence. +ATTTGCTTGACGGAGTGCGGTTTGAGACCGCTGAGATTGCGTCTTTGGTGGGTGCGCCATTGGTGTTCCACATGAAACTTATAACGCAAAATCCGTTGAACCTGAACAGGTTAGTCCCTGCGTAGGAATCAAGCACGTCCGCCAT +>FQTY01000030.1/12262-12128 Tissierella praeacuta DSM 18095 genome assembly, contig: EK13DRAFT_scaffold00030.30 +TGTTAATTAAATAGATTGCCGTAGACAGTAGGTACCTTAAGGTTTAATTTCCTACCGAGGTTGAGATTAATCTAATTTATAAAATTGAAATTAGGATCTCTCTGTGTCTACGGAGGGATCTTTATTTATTCGTCC +>JH835452.1/508250-508573 Erinaceus europaeus unplaced genomic scaffold scaffold00164, whole genome shotgun sequence +GGATGTGAGGGAGATCTGGCTGCAACATCTGTCACCCCATTGATCAACAGGGTTGATTCCTCTCATCTGCCTGGCTAGGGGGGTGTCCCTTCCTCCTGCACTGGCAGTGTGTCACTAACAAAGCTGCGGGCTCTGTTGAAGAGGACGGCCTTCCCGGAACAGAGACGGCTAGGTCTTCGGTTGAGGGCATATGAGTAGCTGCTCTCCCTTGCTAGAACCTCCAATAAAGCTCTCAAAATGTGTTCAAAATATTTTCGGATTACAAACAGAATTACTCTTCACTAGCAGACACGCAAAGACAATACATTATAGGAATTTCGTTGT +>HE999757.2/3449466-3449336 Carnobacterium maltaromaticum LMA28 complete genome +TTAGGTTAATAAATATTACCGAAGACAGTAGGTGGCGTAAGCCTTAAAATACCTGCCGAGGATGAATATATGTGAAAGCATACAACTATCCCTCTATGTCTAAGGTGACATGGGGCTTTTTGCTTTGAATC +>KZ114138.1/13605-9139 Helianthus annuus unplaced genomic scaffold HanXRQChr00c0817, whole genome shotgun sequence. +GCCCAGTCTTTCAGATGGGCTTGGCCCATTTCTGTAAAACGTATTTATACGTAAATGCACGTAACCGGCTGTCATTCTTCAACCCTAGCTCCTTGTGTGTGTGACGGCAGACCCTCACATCCGAAGCCAAATCCCTTTTGTTGATCATCCTTAATCTCGGTTAGTATCTGATATCGTATTACTTTTAATTGATTGCTGGAATGATTGATGTTAATTAGTGTGCTAACCGGCCGGACGTGGCTGTTGATCGGCCGGATACGGTTGATAACTGGCCGGACTTGTAATCATTAACCGATCGGATGTTGTTAACCGGGTATTGCTTATATGATAATCGAATAGTTGTTCGGATTCGTTATATGATGTTTGATTGTTAGTATGTTCATTCAAGATTTCGGTATGTGTTCATATGTTATGTTAATAAGGTTCGATAATGTGACATACTATGTTAATCGGCTTGGTGTACGCATAAATTAGGGATCACGATGGGTATTAGTATTATGATGATTGCATGATGATTTGATGATGATCCTATGATTGCTGCATGATTGTTGTTTGATCGATAATGTTGTTGACGGCTGTTAGCATGTTTAGGGTTTCTGAAATTGTAACTGTTGTTGACGTAACTGATATGTGTCGAAAGATACTTGTAGTCGAAACATAGTTGTCGAAACATAGTTGTAACCGAAAGATATCTGTTGACCGAAGGATAGATTTGACCGAAACATAATTAGGTTGACCGAAAGATGCCATTTGGTCGAAAGATGACTGGTGGTTCGAAACATAACAACCAGTCCGAAAGATAACTGTGAAAACTTGTAAGTGTCGAAAGATTACTGATGTGTCGAAAGTTAACAGTGGATCGAAGGATAGTGGCAATTATAAACATCCTTCGAAGGATGGAATGTATACATGAACTATTTGACATGCCATGCTTGATGATGAATGTTTACATTTGTAATTGTGTGCACTAGCTGATGAGTAACTAGGAAATGGTACGTGTTGCGCCGATGTACAAACTGACTGTTACGTGAACATTATATTGCATGCGAATCATTGTGAACATGAACTGATTTGTTATACATGCATACAATAGGACGTGATTAATTACTTGTGAGTACATAACCTAGCATACCGAGCAAACCAAGGTGAGTTCACACTCTTACTAAGGCATGGGATTCCCGGGTTGTGGGAATGGGTTAAAGGCTTGATGATAAACTAATAACGTACATACACTACGCTTTTCCTAGACTATCACCTATCATAGTCCTCGGATGTCAGGACGGTTCCGTAGGTTGGAAAACACCTACGTGGTTCCGTAGGTTGGGATAACACCTACGTGGTCAGATGCCAATTACTATCCTCGATACAAAGGATACGCACGTAAGACATACGTGTACGCATTACTTACTTCTTCCGTAGGTTGGGATAACACCTACGTGGTCATATGCAAATTACTATCCTCGATACAAAGGATACGCACGTAAGACATACGTGTACGCATTACTTACTTCTTCCGTAGGTTGGGATAACACCTACGTGGTCATAATACGAATAGTCTAGTGGTCACTTAACATGGGAAGCCCCCACCTGTATAACTTACTATTGGCCCGGTAGAGCCACCCGTTACTTACTATTACGCATTTACGTACTGTGAACTCGCTCAACTATTTTGTTGATCCTTTCTTTTACATGCCTTGCAGATCGTTAGGTACTGGGAGCTTGCACTGGAGGCGCGGACGTTGTGGACTTGGATCGTGAACATCATATGGAACCCATATGATACTTGATACACTTTTACATTGGATATTTTTATATATACGCTTCCGCTAAACATTGATAACTGGCTTATGTTTTGGAAACACCTTTCATATGGATTTGTTCTGAATTATACTGCAATTACTTTTACTTTATACAATGTTCTATATGATTGGTGGCTTGGTCCTGGTCAGTCACGCTCCCAAGCGGTGATACTCCGCGTGTGGATTTTGGGGGTGTGACACAACGGGTGAGTAAACCCGCAAGGCGCAAGGAAGCTGATTGGCGGGATCCCCCTCGTGGGGTGCACCGCCGACCGACCTTGATCTTCTGAGAAGGGTTCGAGTGTGAGCATGCCTGTCGGGACCCGAAAGATGGTGAACTATGCCTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTGACTTGGGTATAGGGGCGAAAGACTAATCGAACCGTCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCCCGGGTGCGAGTTCTATCGGGTAAAGCGAATGATTAGAGGCATCGGGGGCGCAACGCCCTCGACCTATTCTCAAACTTTAAATAGGTAGGACGGCGCGGCTGCTTTGTTGAGCCGCGCCACGGAATCGAGAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGGAAGCCGGGTTACGGTGCCAAACTGCGCGCTAACCTAGAACCCACAAAGGGTGTTGGTCGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCTACACCCGGCCGTCGAGGCAAGTGCCAGGCCCCGATGAGTAGGAGGGCGCGGCGGTCGCTGCAAAACCTTGGGCGTGAGCCCGGGCGGAGCGGCCGTCGGTGCGGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGAGACGGGGGAAGCCCGTCAGATAGCGTGTTTCACGCGAGCTTCGAAAGGGAATCGGGTTAAAATTCCTGAACCGGGACGTGGCGGCTGACGGCAACGTTAGGGATTCCGGAGACGTCGGCGGGGGCCTCGGGAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGACTCAGTCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGCACGTCGCGCGGTGTCCGGTGCGCCCCCGGCGGCCCTTGAAAATCCGGAGGACCGAGTGCCTCCCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGTCGATGGAACAATGTAGGCAAGGGAAGTCGGCAAAATGGATCCGTAACCTCGGGAAAAGGATTGGCTCTGAGGGCTGGGCACGGGGGTCCCTGTCCCGAACCCGTCGGCTGTCGGTGGACTGCTCGAGCTGCTTCCGCGGCGAGAGCGGGTCACCGCGTGCCGGCCGGGGGACGGACTGGGAACGGCCTCTTCGGGGGCCTTCCCCGGGCGTCGAACAGCCAACTCAGAACTGGTACGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTAACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGTATAAGTGGGAGCCCTCGGGCGAAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCGTGAATCGGAAGCGGGGCAACGCCCCTCTTTTTGGACCCAAGGCCCGCCTCGGCGGGTCGATCCGGGCGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTAGAACAGAAGGGTAAAAGCTCGTTTGATTCTGATTTCCAGTACGAATACGAACCGTGAAAGCGTGGCCTAACGATCCTTTAGACCTTCGGAATTTGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGATAGTGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGCTGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGAAGCGACGCGTGT +>FR881992.1/3645-4018 Firmicutes bacterium CAG:238 genomic scaffold, scf351 +GGGGATGTAAAGGTTTCGACGGGGGTGTAGAAGCCGGATAAGCGAGCGGTAGTTGGCTCAGACTACCTTAAAAAGGGCCCGTTAAATATAAACGCTAAAAATAACAACAATTTCGCATTAGCAGCATAGTTCTGCAGCGCCTAAGGCGCGACGCGCGTCGGCCACAGCTCACCCGTAGGCTGTGATACCGGCGTCGACTATACGGGAAAACCTGCAGGGAGTTCTCGGTACCTCGCAGGGAACAACGAGATAGCCGACATGGCAGCATGTTAATGGGCGGCCACGGAGGCGAAATTTTAAAACATTGACTGCGCTCGGAGAAAGTCCTGTGGAAATGCTTTCGGACGCGAGTTCGACTCTCGCCATCTCCACCA +>AWUE01008835.1/507-1 Corchorus olitorius cultivar O-4 contig08862, whole genome shotgun sequence. +CAATAAGCAAAATAAGGGCGCACGGGGGATGCCTGTGGCTCTCAGAGGCGAAGAAGGACGTGATAAGCTGCGATAAGCTTCGGGGACTGGCACACACAGATTGATCCGAAGATTTCCGAATGGGGCAACCCGGTATGTTGAAGACATATCACACCGATAGGTGAGCAAACCCGCTGAACTGAAACATCTAAGTAGGCGGAGGAAGAGAAAACAAAAGTGATTCCGTAAGTAGTGGCGAGCGAAAGCGGATTAGCCCAAACCAGAGTTGTTACGGCAATTTTGGGGTTGTAGGACTGCGAGATTTCATGCAAAGGGAACTGGAATTAACTGGAAAGTTAAGCCATAGAGGGTGATAGCCCCGTATAGGTAACCGATGTAATGGATAGCAGTATCCTGAGTAGGGCGGGGCACGTGAAACCCTGTCTGAATCCGGCGGGACCATCCGCCAAGGCTAAATACTCCTGAGAGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAG +>URS0000D6AF63_12908/1-91 unclassified sequences DUF3800-VII RNA +GGCAGGCAAGCGCTAGGGGTATCCCCGAGTTACCTTCGGGCAGCAGCTGTCGGTGAGACAGTGGTACAGGGGCCTAGGGGTCTGCCGCTCT +>LL014082.1/6803-6907 Trichobilharzia regenti genome assembly, scaffold: TRE_scaffold0014079 +TCCAAGTGCTCTGAATGTCAAAGTGAAGAAATTCAATCAAGCGTGGGTAAACGGCGAGGGTAACTATGACACACCGTCGAAAAATTAGTTCATCCTTCTAATGAA +>BAUT01000003.1/65796-65988 Bacillus wakoensis JCM 9140 DNA, contig:contig_3. +TTGAATATCGAGCAAATAGGTTTTTAGGAACGTTTCGTTCTAAACTAAGAGGGAAGTTGGTGCAAGTCCAACACGGTCCCGCCACTGTAAACGATGAGGAAGATTAGTATCGTCCACTGTGCGAGTTAGCATGGGAAGGATAATCGACAATGATTCGTAAGTCAGGAGACCTGCCTATTTGTCTTTAAGCTTC +>AF221911.1/108-513 Chelydra serpentina telomerase RNA gene, sequence. +TGCGGCGGCAGGTGGGGGCTCAGTCTTTCTAACCCTAAGCGAAATGTGACCCCTCCCCGCTGCAGCCGTCCGCTGTTTTACTCGCTGACTTTCAGCGGACGGGGGGAGCGGGTGGAGACGCCAACCAAAAAACGTCAGCGAGGGGCCCTCCCCTCCCACGCCGACCTGGGCCTGTGGTGGGGCCCGCCAGCGAAGTCCCCGCCGCCCCGCCCCGGTGAGGCCGCGGTCAGCCGGCTCGCGCCACTGCTGCCGCGAAGAGTTCGTCTCTGTCAGCCTCGGGGGCGGCCGGGGTGGAAGGGCGGGTCCCGAGCCCGTCGGCCGGGAGAGCAAACGTGAGCGGCAGCCCCTGCGCCACCGCCCTCCCCTAAGCTGTGGGGCCCGCGGTCGGGGCTGCGCTCAGACACGC +>AFSB01201159.1/18941-18806 Heterocephalus glaber contig201159, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAAAGATGTTGATATCTGATTTTAATTTTTAAAAATTCATTTATCTATTTTATTAGTACATGTTTCCAGTACGTAATGATTACATTTATCACAGGGAGTTACT +>AFSB01036238.1/931-791 Heterocephalus glaber contig36238, whole genome shotgun sequence. +TTAATGGCTTTGAGGCTATCTCATTTTCATTATACCAGAAGCACAACTGATTAGATACAATCAGCAACACCATAGCATTAAGTACATCTTAGAAAATGACAATTTGTAGTAGTTATTAATCTATCACCTTTAACTCTGTGA +>MFMU01000019.1/4604-5929 Candidatus Kaiserbacteria bacterium RIFOXYD1_FULL_47_14 rifoxyd1_full_scaffold_6810, whole genome shotgun sequence. +CATGAGAGACATAAGAGTACACGGTGGATGCCTTGGCCTAGGACGGCTAAGAAGGACGCGACTAACCTGCGAAAAGCTTCGGGGAGGCGGTTTGTAGCCTTTGATCCGGAGATATCCGAATGGGGAAACCCTCCAATTTTAAATTGGAATCCGCGGGGTAACGCCTGCGTGAAGCGAACCCGGGGAAGTGAAACATCTCAGTACCCGGAGGAAAAGAGAACAATATGAGTTGCGTTCCGTCGGCGCGTATGTTCGTGCTGATGGAACGCAACTCGCGTGATACCCTGAATAGCGGCGAGCGAAAAGGGAAAAGCCCAAACCTCATTTTTCGAAATGGGGGGTTGTAAGATATGAACGGCGTACTTGTACGCGAAGAGTTATCAATCGTCTTTATAGCAGAAGCTGCTGGGNNNNNNNNAGGTGAAAAGAACCCCGAGAGGGGAGTGAAATAGAACTGAAACCGTGTACTTACAAGGGGTCGGAGCGGTGAGTTTATTCGAACCGTGACGGCATGCCTATTGAAGAATGAGCCGGCGAGTGTGTGTATCTTGCGCAGCTAAGCCCTTACGGGGCGGAGCTTTAGGGAAACCGAGTGTGAATAGCGCGTCTGTAGGATACATACGACCCGAAGCCAGATGAGCTTGCCATGAGCAGGGTGAAGTTTGTCGAAAGACAAATGGAGGCCCGAACCCGTAGGTCGTACAACGCCTTGGGATGACTTGTGGTAAGGAGTGAAAAGCTAATCGAATCTGGGAATAGCTGGTTCTCTCCGAAACAGCTTTTGGGCTGGCGTTGCCATATCGCGTGCGTGGGGGTAGAGCACTGGAAGGGACCAACAGGGAGAAATCTCGTGGTTCCTATCAAACTCCGAATACCATGCACTCGGGCAGCAGTTAGAAGGTGGGGGCGAAGCTCCATCGATCGAGAGGGGAAGAGCCCAGATCGCCAATTAAGGCCCCAAAATCGACGCTCAGTACATCACAAGGAAGTGAGGACTCATAGACAGTGAGGATGTTGGCTTAGAAGCAGCCACCATTCAAAGAAAGCGTAACAGCTCACTCATCGAGAGTCCTTGCGCCGAAGATGATCGGGGTTAAGCGTCGTGCCGAAATTGCGGGTTTAATCCGTATTTATATAGATTAAGCGGTAGGAGAGCGTTCTGTTCGCGATGAAGCTTAAGGGGTAACCCATGGTGGAGCGTACAGAAGTGAGAATGCCGGTACAAGTAACCACAATGCGGGTGAGAACCCCGCACATCGAAAGACCAAGGTTTCCTCAGCTATGGTGATCAACTGAGGGTTAGTCGGGCCTAAGGGGATGGCGAGA +>CM008309.1/24191905-24191844 Astyanax mexicanus chromosome 10, whole genome shotgun sequence. +GATTATGATTGTGCAAGCAACTCTAGTGTATATACACTAGAGTTGCCTGCACAGTCAGAATC +>LODT01000020.1/379504-379185 Dictyostelium lacteum strain TK GAOABQK02G6SYV, whole genome shotgun sequence. +TTGTGTTACGTGAAGAATTGATCATAGAAGCCAACAAAACGCCTAGTTGCTCTGTCAACTATAAAACAACCAGATTTTCAAATCAAAATGCTTTTGGAAAAGTCCCCAGACCCTAGAACAGAAAGTGTTGCCCGTTAAGGTTATGATCAAGTTTTAGTTCACTCGACAGAGAAGGTATAAGATTCAAGTTTAAGTATTTGTGCTCTCTACCCGAGTCATTGGTGAAATTACTTGGTCACTGGTCACAGTAAAAGTAATATGAAATTAAGAATTTTAAATAAATATTCTCTACAAAATGGGGCTTACTCTCAACGTACACC +>DS562862.1/33829905-33829809 Cavia porcellus supercont2_7 genomic scaffold, whole genome shotgun sequence. +TGTGAGGGTGCCCTGGCTAGGACTGCTGTCCACCACTGAGCCCCAGGGTTGATTGGGTTGATCTAGTTGGGAGGGTGTCCCCTTCCTCCCTCATCAA +>CM002922.1/12055086-12055241 Cucumis sativus cultivar 9930 chromosome 1, whole genome shotgun sequence. +GTTTGTATTCTTCCACAGCTTTCTTGAACTGCATCCCTTTCCTGAACTCAATTCGCTCTTAATTTCCCCTTTCTCGATCTCTCTCGATCGATCTCAAAGCGTTTTTTGTTCATCAATTTTGTTGCGGTTCAATAAAGCTGTGGGAAGATACAGTCA +>CAJI01053789.1/175-1 Cucumis melo, WGS project CAJI01000000 data, contig: 53789 +AATTAGCAAGGACCACCTTGCAAGCCTCTGACGGGGCTCCTGACTGACCTATAGTGAAGTAGTACCGTGAGGGAAGGGTGAAAAGAACCCCCATCGGGGAGTGAAATAGAAGATGAAACCATCAGTTTCCAAGTAGTGGGAGGAGACCAGGACTCTGACCGCGTACCTATTGAAG +>AEAQ01060326.1/1-120 Solenopsis invicta Si_gnG.contig39779, whole genome shotgun sequence. +ATGAAGAACGCAGCTAATTGCGCGTCAACTTGTGAACTGCAGGACACATGAACATCGACATTTTGATCGCACTTTGCGGTCCACGTATACAATTCCCGGACCACGCATGGTTGAGCGTCG +>ADWL01010905.1/30966-31223 Oryza glaberrima chromosome 5 Oglab05_0141_29, whole genome shotgun sequence. +GTGCCATGCATCTCTCTTATCAAGTTATTTCTGACAGCGGGGAATTCATTGACTGACTTGGCCTTGATTGATGATCCATCAACTCGTGGCTTTGCGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAATGCCGCGTGGAGGTGGAAGGCCCACGGGTCGTCAACTTCTTTTCTCGGAGAAGAAACAATGACGGTATCTGAGGAATAAGCATCGGTAGTCTCGCCCTGCTTCAAAACTACAGGGCGCA +>LN554852.1/2943365-2943181 Moritella viscosa genome assembly, chromosome: 1 +CTCCTAAGTAGAGGTGCGCAATTCATAAGTAGTGTTATTTAGGTAGCTCCAATAATAACAACACAAAAGGGAATTGCGCCGAAGAATGAATTTTAAGCTAAAAAAATTCATTCTGGTGATGTGTTCGAATAGAGACATCACTGTCATAGTCAATTTTATATTAACTATGGGGCGCTACTAAATAG +>KB706892.1/31142-31033 Eutypa lata UCREL1 unplaced genomic scaffold EL1_03_scaffold_1554, whole genome shotgun sequence. +TGGGAGTGGGACTATGTAACGAACAGCCCTCTTGCCTTTTACCAGATGGCTCCTTGCATAGCCCAAAATACTCCATTCCCTTAATCTTTGGAACCACTTCTCTGGAGCAT +>AEXM01000026.1/37053-36910 Anaerococcus prevotii ACS-065-V-Col13 contig00011, whole genome shotgun sequence. +AAAAACAAAGAAGCGCCAGATCCCTAGTGGATGACGAGGAAGACAGTTATCGAAAGTTCGGCGGGAGCTGTCTGGGTTCACAGCCCTAGTATTAGACAAAACATTTGAGCAATCAGATGGACAGAGAAGATACAGTGGCCTCAT +>BARX01000002.1/207412-207105 Agarivorans albus MKT 106 DNA, contig: contig00002. +TAGATTCCGTATAGTTGTTTGTGCACGGAGGCACTGACGTTTATCAGGATGAGAAACGTAGCAGGAGCTAAAAAGGAACAGCTACAGGAAGTAGCAAGGGACACCTCCTAGGAAGGAGACGTGCAACTGGTATGGATGACCGGTTATGCCATAGAAGGCTAAAGGACAGCTCAAAGGATTTGAGAAAAGGATAACTACAGGACGTAGTAACACAGTCAAAAAGGATTGCAGGGAGCAACTACCCGTTCACGGATTTGAGCGATATGACTACTAGGGGCGACACGAAAGTGTCGCCCCGACCTTTTTCT +>FR853096.2/50293108-50292759 Gorilla gorilla gorilla genomic chromosome, chr3, whole genome shotgun sequence +GCTGGGTGTGGTGGCACGTGCCTGTAGTCCCAGCTACTCGGGAGGCAGAGGCAGGAGAATTGTTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCAAGATTGTGCCACTGCACTCCAGCCTGGCGAGAGAATGAGACTCCGTCTCAAAAAAAAAAAGAAAAAAAATGTAGGGAAGTTTATGATTTGTAAATCAAACCAGGATGCTTGAAGATGAACCTTGTGGGTTTTTTTGTTTTTGTTTTTTTTTAAGAGACGGAGTCTCGCTCTGTCACCTAGGCTGGAGTGCAGTGGCACGATCTCGGCTCACTGCAACCTCCGCCTCCCAGGTTCATGCAATTCTCCTGCCCCTC +>MFUA01000016.1/12713-12896 Candidatus Nomurabacteria bacterium RIFCSPHIGHO2_02_FULL_37_13 rifcsphigho2_02_scaffold_5465, whole genome shotgun sequence. +ATAAGTATATACTAAAAGGGTTCATTAAAAAATCATGAAAAGTGATTGGGGAAACTGGTGACCTACCCGAAATGTTGCGCATAATGTTGCAGGCGGGGATTCCAGTACAGTGCCGCTACGGTAAGCCCACGACGTAAAAAATCGGGGACAAGTCCGAATACCAATCATTTTGTGTGTTTCCCGA +>CP001700.1/9933843-9933644 Catenulispora acidiphila DSM 44928, complete genome. +GTCGGGGCACCGCCGAATCCGTGTACGTCGCGGAGCCGGGGAACCAGGTTCGTCGGCGCGGCCCGCGCGGTAAGCGAGGGTGGCGCCAGTGGGGTGAATCGGTCGGCGTGCACTCGCCGTCGTGTGTGCGCGTGCGACCGTAGGGCTACTTCTTCAGTCCGAATCCGTCAGCTAACCCGGTAGGCGGACAAGGAGGAGAT +>JH930370.1/159056-159130 Tolypothrix sp. PCC 7601 strain UTEX B 481 genomic scaffold FDUTEX481_Contig13, whole genome shotgun sequence. +GTCCAGGTCGCCAAGTGTTTAAGGCATCGGCTTGCAACACCGACTGCTTCGTGGGTTGAAATCCCACCCTGGACT +>FCNR01000023.1/21709-21816 Eubacteriaceae bacterium CHKCI004 isolate CHKC4 genome assembly, contig: {contig23} +CAGCATTACTCTGGAGAGTCTTCACCGGCTTCGGCATACGGTGAAGCGCCGAAGGTGTACGGCAGATAGTTCTGCCAATCTCTCAGGCAAAAGGACAGAACACGTAAA +>KB016992.1/120673-120603 Camelus ferus unplaced genomic scaffold scaffold726, whole genome shotgun sequence. +TGGAGCAATGATGACTGCTGTGACATATGGGACCTACAGGATTAATCCCTGTCCGGAACGCTGAGGTCCAG +>CM001006.2/22879507-22879377 Mus musculus chromosome 13, GRC primary reference assembly. +TCTGCCCCTAGAGGCATTGTGGATGTGGCTCTTGTTCACCAGTAGGTGGCAGAGAGGAGAAAGGCTGTCTAAGCTCAGTGTTCTGACCTATGACATCTTTAACATTTCCTGAAAGAAACAAGCCTGACACC +>CP002734.1/2242961-2242819 Pseudopropionibacterium propionicum F0230a chromosome, complete genome. +GGCCCGCCCCACCGGGCTGGCGGCATTCAACGATGCACAGGGGAACCCGGTCGGATTCCGGGACTGACGCGCAACGGTGGGTGGACGCCTCCGAGGAGACATGCCACGAGTCCGAGCACCTTGCCAGCCCCCGTAAAGAGCCT +>KE695978.1/687932-687680 Alligator sinensis unplaced genomic scaffold scaffold505_1, whole genome shotgun sequence +TCAGCATCTCAGCCTTTTGGCAAAGAACAAGCAGTTTTGGCACCAAGGAGAGGGTTTCAGGGCTGGCTCTGGCCTTCCCAGTGCTGACCTGATATTGCAGTACCTCCAGGCCTGGTGCTAGTTCCCTGTGGAAGGAGGTGGGGGAAAGGTTCCCATCAGCATTTTTGGCATCAGCGGAGGGTGTTGAAGCTTGCTCCAGCTTCTCCACGTGCTGGCCTGGTATTGCAGTACCTCTAGGCCTGGTGCTTATTCC +>LL012517.1/9492-9054 Trichobilharzia regenti genome assembly, scaffold: TRE_scaffold0012516 +CTGGTTGATCCTACCAGTAGTCATATGCTAGTCTCAGAGATTAAGCCATGCATGTCTAAGTACATACCTTAAAACATGAAACCGCGAATGGCTCATTAAATCAGCTATGGTTCCTTAGATCATATATACTACATAGATAACTGTAGTAATTCTAGAGCTGTTACATGCAATTATGCCCTGACCCGCAAGGGAACAGGTGCATTTATTAGAACAGAACCAACCAGGGGCAGTTTCGGCTGTCTCAGTCGGCCTTGTGTCGGTTACGGATCTTTCAAATGTCTGTCCTATCAATTTGTTGGTAGGTGATCTGCCTACCATTACAATAACGGGTAACGGCGAATCAGGGTCAGACTCCGGAGAGAAGACGGCAGCAGGCGCGAAAAATACCCACTGCCAGCACGGGGAGGTAGTGAAGAAAAAATATTGTAAAGTGTAGTCG +>NNAY01029724.1/129-174 Trichomalopsis sarcophagae strain Alberta scaffold29957, whole genome shotgun sequence. +CCATCGGCCCTTTTCAGGGCCACAAAAACATCCATACGTATCGCAT +>CM002290.1/17870538-17870716 Phaseolus vulgaris cultivar G19833 chromosome 3, whole genome shotgun sequence. +TGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCTGGAAACAACGAAAGTGAAATACCACTACTTTTAACTTTATTTTACTTGTACCGTCCCGTATCCGGGCGTTGACAAAGTCAAGGTCAAAGTCAACGTCGGGGTCAAAGTCAACATA +>MKTJ01000058.1/456830-456745 Chloroflexi bacterium 54-19 SCNpilot_cont_500_bf_scaffold_42, whole genome shotgun sequence. +GGGCCGGTGTCAGAGCGGTTAATGTGCCTGTGTGCTAAACAGGTGTGGCCGAAAGGCCACCGGGGGTTCGAATCCCTCCCGGTCCG +>JH815307.1/89016-89141 Simonsiella muelleri ATCC 29453 genomic scaffold supercont1.8, whole genome shotgun sequence. +AAACAGCATTCAGAGTTGGATTTTCCATGCCAACCTGCCAACATTCAATCATGCTGGTAAGGTGGATAACGGTTTTAAGATCGTTGATGTGGTCTATTTTTAAAATAGGCAATCATGACGAAACTC +>HG917868.1/2308269-2308036 Clostridium bornimense replicon M2/40_rep1, complete genome, type strain M2/40T +TAATAAGCTATGAAAAAGAAAGTAGATTTAAGGAATAAAGTAGGGAGAAAAAGCCAAAGACTGAAAGCTTTTTTATTAGGAATTAAATCGAAGTTCACTTTGGAGCTCTCTAGGGGAAGTTATAGTAGTCTAGAGCGGTATTATAAAAGCCGATATTTTTTAATGAAGTGGATAAGGGTATGGATTATGCTCTTATCAACTAGGGTGGTAACGCGGATATACTCCGTCCCTTTT +>MNDT01000042.1/12913-12775 Archaeon 13_2_20CM_2_53_6 13_2_20cm_2_scaffold_3200, whole genome shotgun sequence. +GGGGCCGTCGTCTAGCTTGGTCAAGGGATTAGCCCCGCCCAGAGGATACCAGAGTCCGATTATGGACGGTGACCCTGGGGCGCTGGCGACCTCGAGAAATCGAGGCCAGAGGTCGTGGGTTCAAATCCCACCGGCCCCA +>JH210461.1/2478657-2478034 Pelodiscus sinensis unplaced genomic scaffold scaffold75, whole genome shotgun sequence. +ACCACTGAATTTAAGTATATTACTTGGTGGAGGAAAATAAACTAACCAGAATTCCCTCAGTAACGGTGAGTGAACAGGAAAGAGCCCAGCGCTGAATCCCCATCCCGCAGTGGGGTATGAGAAATGTGGTGTACAGAAGGCCCACTCTCCCCAGTGCCACTCTCAGGGGCCCAGGTCCTTCTGATAGAGGCACACCCTGTGGACAGTGTGAGTCCGGTAGCAGCCCCTGGCTTACTGGGACCAGGTCTTCTCGGAGTCAGGTTGCTTGGGAATGCAGCCCAAAGAGGGTGATAAACTCCATCTAAGGCTAAATACTGACATGAGACCAATAGTCAACAAGTACCATAAGGGAAAGTTGAAAAGAACTTTGAAGAGAGAGTTCAAGAGGGTGTGAAACCATTAAGGACATATAGGTGATCTAAATCTTTAATGCTTGAATTGGGTTGAATAAATGAATGGTACATTGACTAATACATAATAAAGGCATAGGAAAATGCATATTCATGCACTGAGAGTGAGACAGTCTTGTCACTTTTTATTTTCAAGATGGGAAATGCTATTCCCCTCCCTCAATTACTGGACTAATTCATACTTTTAATTAGTTTAACAATTTTTCAAAGAACT +>JHTR01000147.1/10830-11400 Villosiclava virens strain UV-8b Sca_147, whole genome shotgun sequence. +AAAAGCTCTTAAGGTAGCCAAGGGTAAGTCACGTGGGTATCTAGAGGTCACGTGACATTGGGCAAGTCACGTGGGATTACAGAAGGAAGACATAGGCCCACTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAATGGGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTTTGACATTGTGAAAAGACATAGGAGGTGTAGAATAGGTGGGAGCTTCGGCGCCGGTGAAATACCACTACTCCTATTGTTTTTTTACTTATTCAATGAAGCGGGGCTGGATTTTCGTCCAACTTCTGGTATTGATTAATAGGGACAGTCGGGGGCATCAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAGGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGACGATGTTATTTTTTGACTCGTTCGGCACCTTACGAGAAATCAAAGTGCTTGGGCT +>MEPC01000031.1/22924-22691 Bacteroidetes bacterium RIFCSPLOWO2_12_FULL_37_12 rifcsplowo2_12_scaffold_5312, whole genome shotgun sequence. +CCTTTGCAGGCAATCAAAGGTGACATCCTATTTCTTTTCCAAGAAATTATTTGTCATAATAGGGAACCGGGTGAGAATCCCGGATAGTACCCGCTGCTGTAAACTCTAAAAAGTTTTATGCTTACGCTGGATGCTCAATCCGGTAGCCACTGTTAATCCTTTAATTTAAAGATAACGGGAAGGTGCAGAAAACGAGAGTAAGTCAGAAGACCTGCCTTTGAATTTATTTTTATT +>JXRR01000017.1/5494-5709 Jeotgalibacillus campisalis strain SF-57 contig00017, whole genome shotgun sequence. +CCTAATGCAATGATAAGGACCAGTAGATAATGCTGATACGAAAGAGATCGGAGTTCAGCGGCTGAAAGACTCCGACGTGCCTCACATTATTGAACCTGCCTTTGAGCGACAGGAAAACCTGTCCGTTCTCCCTCGTTACGGGTGAAGAAGAGTGCCGGATTATTCATGTTCGGCAAATTAAGGTGGTACCACGGAAGCAGCCCTTTCGTCCTTTTA +>DS544962.1/17936-20730 Physcomitrella patens subsp. patens PHYPAscaffold_73 genomic scaffold, whole genome shotgun sequence. +ATTTAGGATTTAGGATTTGTTTAGGATTTAGGATTTAAGATCTACTTAAGGTTTAGAATTTAGGATTTTTTTAGGATTTAGAATTTAGGATTTGGCCTAAGATTAGATTAAAGTCTATTAAGGTTTTAACCAAGATTAAATTAAGACTTGGTTAAGATTTATTTAAGATATATTTTTTATTATTCTAATAATTTTTTAGGATTTCTTAGGGATTCTTTTAAGGTTTATTGTAGATTTCTTTTGATTGCTTTTAAGATTTCTTATTCTTTCTTTTATGTTTTCTTTAAGATTTCTTTTGAATTTGATTAAAGCTTATTTAACATTGTTAAGATTTAATTAGAATTTATTTAATATTCTATTAGAGTTAAGATTTTGTTATTGTAATTTCTATTCTACTTTCTACAACTATGAGCCTAGTACATTCTTTAGCAAGACTTTATGTAATATAACAATGTTTTCAAAAATCTTCATACAAATTGAATTTTCTTATCTAATATAATATCTTTAGATGGTGAACTATGCCTGAGCAGGACGAAGCTAGAGGAAACTCTAGTAGAGGCTCGTAGCGATACTGACGTGCAAATCGTTCGTCAGACTTGGGTATAGAGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGTTAGAGCTCGTATAAGAGTTTTATCAGATAAAGCGAATGATTAGAGGCATCGGGGGTGTAACACCCTCGACCTATTCTCAAACTTTAAATAGGTAAGCCGACGGGGTTGCTTGGTTGAACCCCGGCACAGAATGAGAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGAAAGCCAGGTTACGGTGCCAAATTGCGCGCTAACCTAGATCCCACAAAGGGTGTTGATTGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGTCCCGAAAATGGATGGCGCTTAAGCACGCAACCTACACCCGGCCATTGGGGCGAGTGTGAGGCTTCAATGAGTAGGAGGGCATGGGGGTCATGGAGCAGCTTTGGATGTGAGCCCGAGTGAAATGGCCCCTAGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGACTGAAGTGGAGAAAGGTTCTATGTGAACAGCAATTGGACATGGGTTAGTCGATCCTAAGAGATGGGACAATCCTGTGTCAATGGCGCAATGTGCGTCGTGCATCGAAAGAGAATCGGGTCAATATTCCTGAATCGGGACATGGCAGTGGACGGTGACGTGGCTGAATCCTGAGACGCCGACGGGGGCCCCTGGAAGAGTTCTCTTTTCTTTTTAACAGCCCGCCCACCCTGGAATCGGATTACCCGGAGATAGGGTCCAGCGGCTGGTAAAGCACCGCACGTCTTGCGGTGTCAGGTACATCCTCGGCGGCCCTTAAAAATCAGGAGGAGCGATTATTGATCATGCTCGGTCGTACTCATAACCGCATCAAGTCTCCAAGGTGAACAGCCTCTAGTCGATAGAACAATGTAGGTAAGGGAAGTCGGCAAAACAGATCCATAACTTCGGGAAAAGGATTGGCTCTGAGGGTTGGGCCTAGGGGTCTGTGCCTTGACCCCGTAGGCTGTCGGAGGTCTGCCCGAGCTGCTCTCGCCGCGATGGCGGACCCCTGCGTGCCGATCAGGCGACGGATACAGAATGAGGTCTAGAGGGTGGGTGACTGCCCCCCTGCCTCGCTTTTCCCTAGGCAGTGAACAACCGACTCAGAACTGGTACGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTTCCCACGGATGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACGAAGTGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTATCTACTATCTAACGAAACCACAGCCAAGGGAACGAGCTTGGAAAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTAAGAGGTGTAGAATAAGTGGGAGCCCTCAAAGCGTAAGTGAAATACCACTACTTTTAACGTTATTTTACTTATTCCAAGAGGTGGAGGCGGGACTCTGTCCCTGCTTCTAGTCTTAAGGCGCGCCCCTCGGGTGCGCCGATCCAGGTGGAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAATGCAGGTATCCTAAGATGAATCAACGAGGACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGTTCATTTGATTTTGATTTTCAGTACGAATACAAACTGTGAAAGCATGGCCTATCGATCCTTTAGTCTTTCGAAATTTGAAGCTCATGAATATCTATAATAGTTATAAATCTATTTTTACTTCCATTAAAAGTAGCATTTACAATCTTTCCTTCTATAGACAACTCAAACAACTTCAAAAATTTAAATTAAAAGAAGATAATCTACAACCTTTAATATCAAATGAAAATTTCTACAAAGAGAGATAATCTATTTTTTTAAGAAAAAAAATAGTGTTAAAAAAACTACACTATTTATTTAAAGGTGAGTAGTCTACAACCTTCAAAATATAATAATAGAAGTAGAATAATCCACTCACTTCTAAAACAAG +>LOEY01000035.1/5228-5158 Lutibacter sp. BRH_c52 BRHa_1002952, whole genome shotgun sequence. +TATCTTTGCCAACTGCAAACCAAAAGGTTTAGCAATACATAAAAATTATTAATAAAATTAATGTTAGCATG +>MEEQ01000424.1/3292-3474 Bacterium SCN 62-11 ABS71_C0424, whole genome shotgun sequence. +GGTCGCCTGCAGAGTAGGTGTTGGAGCTTACAATCCTGGGCCAATGTAACAACCTCGGATGTGATGAGCTATCCCTGTGTCGAGTGCCGCGGTGCGGAGTCCTGACGGGGTAGCCCAAGGTCGCGTCCACCTGCTTTGAGCAGGTCCAGGGGTTCAAGCTCGCCACCGCTCAGGTGGGTCCCT +>CM003505.1/6777488-6777685 Vigna radiata var. radiata cultivar VC1973A chromosome 2, whole genome shotgun sequence +TCCAATATGCTGCCTTTGCCTGCATTTGCACCTGCACTTTACTTGCTTTTCTCTCTTCAACTATCTACCTGAATTAGTCCCTACAAAACACACATTTTCATGGAAAAAAACACAAGATTACGTTGTGTATGTGTGTGGGAATGGATGAGAAACCAAGCACGAGGTGCAGGTGCATCTGCAGGCGAATGACATCTTGGA +>KQ435782.1/726561-726383 Melipona quadrifasciata isolate 0111107301 unplaced genomic scaffold scaffold99, whole genome shotgun sequence. +ATTGCTTGACGAGAATAAAAGTTATCTGTTCTTATCAGCTTAATATCTGATATATGTACTTCCCATAGAAAAGTCAGAATATTAACCTAATTTTTAAAAACCGGTGGAATTGGCCAGGCTCGCTCTTCTTCTGTCATAGATTGGCCCAGTATTGCAGTGCCATTGCCAAGCTGTGTTTT +>ADNT01000040.1/13066-12970 Aerococcus viridans ATCC 11563 = CCUG 4311 strain ATCC 11563 contig00050, whole genome shotgun sequence. +ATAAAAAGAGGGAATGAGGTTCTCCCTGGTCAAGTAGATGGTGATTTTAGGCCATCCCATACCGAACCGCTGAAAAGCTGATGACTTCTGCAAGTAA +>LK941638.1/22456-22528 Angiostrongylus costaricensis strain Costa Rica genome assembly, scaffold: ACOC_scaffold0001535 +GCCTCATTGTCTCAGAGAGTAGAGGGTCAGCCTTTTGAACAGGAGGTCTCTGGTTCGATTCCAGCAAGAGGCA +>NBLS01000022.1/6421-6598 Desulfobacteraceae bacterium 4572_19 ex4572_19_scaffold_9363, whole genome shotgun sequence. +ATCATTATATTATCATTCAGCAAACGGAACACGGTGTAAATCCGTGGCATATCCCGATGCTGTAACCCTTTTTGTTTTCTTTGGCATTTTTTAGTCACTGTTGTAATGTTTTTTTACAATGGGAAGGCTGTCTAAAGATGGGGAAGCCAGAAGACGTGCTGAATGATTAAAACAAGTT +>CAGS01000178.1/3560-3832 Nitrolancea hollandica Lb, WGS project CAGS01000000 data, contig: 00259-1568 +GCAACGGCTATGACGGAAACGAGTACGCGGAACACCACGTTTAGCGAGTCCGGGGCCGGTGGAAGCCGGATAATGTCGGGTTTCGCGGAAAATCCTTCCCGAGCCGCCACCTGAACCGTCTGATTTGGACGTAGTAAGCATGGCCGGGGTCGTCGCCCGTTATCGCGACGGAGATGCCGGAGCATCCTTCATCACATCGCGCGGCATCTCGGAAAGTGGGTTCCGTTTACCGGACCAACTGAGGTGGTACCGCGGGTTATCCCCGTCCTCAAC +>AADN04003456.1/8626-12973 Gallus gallus breed Red Jungle fowl, inbred line UCD001 Contig3860.1, whole genome shotgun sequence. [11-NOV-2016] +ggacctcaggtcagacgtgcgacccgctgaatttaagcatatagtcagcgggaaaagaaactaacgaggattccctcagtaacggcgagtaagagggaagagccccagcgccgaatccccgcccccgccgtggggccgcgggaggtgtggcgtaccggaagccccccatccgccgcgcccgctctcggggggcccaagtccttctgatcgaggcccagcccgcgacggtgtgaggccggtagcgccccccggcgcgccgggcccggggcttctcggagtcgggtgcttgggaatgcagcccaaagcgggtggtaaactccatctaaggctaaatacccggcacgagaccgatagccaacaagtaccgtaagggaaagttgaaaagaactgtgaagagagagttcaaagagggcgtgaaaccgttaagaggtaaacgggtggggtccgcgcagtcgcccggaggattcaacccggcgggccaagtcggccggcgcgggcgccgtcgatccccgcctccgcctccccctccgtccctccccttcgccgggcggggcgggcccaggggggcgggcgggccggggaccgccgcccgccgcgtccggccccgtcggcgcattcctccgcggcggtgcgccgcgaccggctccgggacggctgggaaggctgccggcgggcaggtgcccggcgccggcgcgagcggccgccgggtgttaagccgccgggcccggatcgtcgccgaatcccgggccgaggagaggaccgccgccgcccctcccccgagggcggccccccggagggccccccgcgccgaccgcgtcgggccggccgcgccgcgcgcgcgtccgcgccgccgccgtacgccgccgccgctctctctccgttccccgccccgggtccgtccgggcgcggggcgggggggtcgggtgccggcgcggctcggcgcggcgccgcgcgtgtggcgcgcggcctccagcccggcgcgggcgaggccgcgggggcgccgggggggaaccttcccccttctgtcgggccgcctccgttcccgcggggcggcccgttcgggggacgggcccgccgccccgcgcgctgtccgaccaggggcggactgcgctcagtgcgcccgaccgcgcggcgccgccggccgggccggccacgccagcgcccgggtccgcggcgacgtcgctaccccccgacccgtctgaacacgaccaaggatccagcacgcgccgcgagtcgcggctcgcgcgaaagcccgcgcgcaatgagggagggccgcgcgcgccgctgagtgggatcccgggcggcaggccggaaggcccggcgcaccaccggcccgtctcgcccgcctcgccggggaggtggagcatgagcgcgcgtgctagacccgaaagatggtgaactatgcctggcagggcgaagccagaggaaactctggtggaggtccgtagcggtcctgacggcaaatcgtcgtccgacccgggtataggcgaaagactaatcgaaccatctatactggttccctccgaagtttccctcaggatagctggcgctcgggcggcggtgcagtttacccgtaaagcgaatgattagaggtcttggggccgaaacgatctcaacctattctcaaacttcatgggtaagacgcccgctcgctgcgtggagccggccgtgaatgcgagcgctcagtgggccacttttggtaagcagaactggcgctgcggatgaaccgaacgccgggttaaggcgcccgatgccgacgctcatcagagcccagaaaaggtgttggttgatctagacagcaggacggtggccatggaagtcggaacccgctaaggagtgtgtaacaactcacctgccgaatcaactagccctgaaaatggatggcgctggagcgtcgggcccatacccggccgtcgccggcggtgcggagccgcggggctaccgccgcgacgagtaggagggccgctgcggtgcgcctggaagcctggggcgcggccgggtggaggccgccgcaggtgcagatcttggtggtagtagcaactattcaaacgagagctttgaaggccgaagtggagcagggttccatgtgaacagcagttgaacatgggtcagtcgtcctaagcgataggcgagcgccgttccgaagggacgggcgatggcctccgttgccctcagccgatcgaaagggagtcgggttcagatccccgaatccggagcggcggagacgggcgccgcgaggcgcccagtgcggtaacgcaagcgatcccggagaagccggcggggagccccgggagagttctcttttctttgtgaagggccgggcgccctggaacgggttcgccccgagagagggggcccgcgccttggaaagcgtcgcggttccggcggcggtccggtgagctctcgctggcccgtgaaaatccgggggaggagggtgtaaatctcgcgccgggccgtacccatatccgcagcaggtctccaaggtgaacagcctcttggcatgttggaccaatgtaggtaagggaagtcggcaagccggatccgtaacttcgggataaggattggctctaagggctgggtcggtcgggctggggcgcgaagcggggctggcgcgcgccgcggctggacgaggcgccgcccgcccccgccccccctttccccgctcccgctcgccggggcgccgggggggggtcagcgggcggcgcggcggcggcgactctggacgcgccgccgggcccttcccgtggatcgccccagctgcggcgggcgccgctcgcccccctccttgcccctccgcccccccgctcccggcgcccctcccgtcggccgtcgtcccggccgccccccgtcccgagcgccctcctccgcgaggggcgcgaggggcggcggcggcggccgcgggcgcggcggcggcgggggggggggccgccggcggcgccgggcggggcggtcccgggcggggggggtctccgggccggcgccccgctcggccggcgcctagcagccggcttagaactggtgcggaccaggggaatccgactgtttaattaaaacaaagcatcgcgaaggcccgcggcggtgtgacgcgatgtgattctgcccagtgctctgaatgtcaaagtgaagaaattcaatgaagccgggtaaacggcggagtaactatgactctcttaaggtagccaaatgcctcgtcatctaattagtgacgcgcatgaaggatgaacgagattcccactgtccctacctactctccagcgaaaccacagccaaggaacgggcttggcggaatcagcgggaaaagaagaccctgttgagcttgacctagtctggcgctgtgaagagacatgagaggtgttagaataagtgggagccccgcggtcgcgcgacccgcgccgcggcccggccgccggtgaaataccactactctgatcgttttttcacttacccggtgaggcggggggcgaccccgagggctctcgcttctggcgccaagcgcccggcgcgccggcgcgacccgctcccgggacagcgtcagtggggagtttgactggcggtacacctgtcaaagcgtaacgcaggtgtcctaaggcgagctcagggaggccagaaacctcccgtggacagaagggcaaaagctcgcttgatcttgattttcagtacgaatacagaccgtgaaagcggggcctcacgatccttctgactttttgggttttaagcaggaggtgtcagaaaagttaccacaggataactggcttgtggcggccaagcgtcatagcgacgtcgctttttgatccttcgatgtcggctcttcctatcattgtgaagcagaattcaccaagcgttggattgttcaccccactaataggaacgtgagctgggtttagaccgtcgtgagacaggttattttaccctactgatgatgtgttgttgcgctagtaatcctgctcagtacgagaggaaccgcagttcagacatttggtgtatgtgcttggctgaggagccactggagcgaggctaccatctgtgggattatactgaacgcctctaagtcagaatcccccctaaacgtagcgataccgcagcgccgaggcgcctcggtgggcctcgcgatagccggccgccgcccccctcggcgggcggtcggtgcggagcgccgctcgtggtcgggacccggagcgcggacagatgtggcgccgcctctcccccgccgcgtaccgccatgttcgtggggaaccccggtgctaaatcattccgtagacgacctgattctgggtcggggtttcgtacgtagcagagcagctccctcgctgcgatctattgagagtcagccctcgacacaaagctttgt +>KE695965.1/2672926-2673057 Alligator sinensis unplaced genomic scaffold scaffold337_1, whole genome shotgun sequence +GCATCTAAATCTTTCCTGTTCCTTGCAATACAGTGCAGGATTGGGGACACATGGTGCTACAGCAAAGCAGAGTGAATCCAGACAGGTTTCTTCACTTATACTGGGACTTGTCTCTACAACTCTGCAACATTT +>LNAL01000007.1/177069-176668 Cytophagales bacterium MC1A Contig_23, whole genome shotgun sequence. +GTGATGCGCCGCCCCACCGCTGCGCCCGCAAGGGCGGAGAGGAAAGTCCGGGCAACGCAGAGCACCCTGCTTCCTAACGGGAAGGACGACGGCGGGAGACGGCCGCCGGACAGCCAGTGCCACAGAAAACTACCGCCTAAGCTGCCCTCGGGCAGCCGGTAAGGGTGAAAAGGTGCGGTAAGAGCGCACCAGCGGGCGGGCAACCGTTCCGGCTGGGTAAACCTCAGGGGTTGAAAGGCCAAATAGGCCGGCAGGCGGGGCTTCGGCCCTGCAACGGGCGGCTCGTTCGTTGTCGGCGGGTAGGCTGATGGAGCCCACGCGCGAGTGTGGGCCTAGATAAATGGTGGGGCCGCTGCCCTTCGGGGTGGCGGACAGAACCCGGCTTACAGGCGCATCACCAAA +>ACPB03012429.1/2213-2327 Rhodnius prolixus Rhodnius_prolixus-3.0.3-164.10, whole genome shotgun sequence. +ACTAACTTTAGAACTGTATTTACTATCTTTGTGGGAACGATACAGAGAAGATTAGCAAGGCCCCTGAGCAAGGATGACACCGGCAGACGGAACTCCCATGCCGCAGAATGTTTTT +>GK000028.2/19825245-19825332 TPA: Bos taurus chromosome 28, whole genome shotgun sequence. +GAGTTGGACACGGCTGAGCAACTTTCACTTAAATTACTCTAAAAGAAATGAATCCTAGATGGTTTTCCATCCAAGTCAAGTGTCTTGT +>JJRV01059395.1/8054-8163 Calypte anna contig59395, whole genome shotgun sequence. +AGTATTGATTTCTTAAAACAAAAAGCAGTGCTGCAGTAATTTCAGCAGCTGGCATTGTTGGTTTTCATGCAGATGTGCTGGTTAAACTTGGTATCGCTGCTGAAACAATT +>MGZC01000016.1/20791-20922 Gemmatimonadetes bacterium GWC2_71_10 gwc2_scaffold_12486, whole genome shotgun sequence. +GGAAGCCGGTGGAACTCCGGCACGGCCCCGCCACTGTAACGGGTTGGGAGCAGTTGCTCCCCACGGCGCCTCACATGCCACTGGCCTCAGGCCGGGAAGGCGAGGCGGCCGCGACACCCGAAGTCAGGAGAC +>KB915673.1/27675-28419 Neofusicoccum parvum UCRNP2 chromosome Unknown NP2_03_scaffold_35, whole genome shotgun sequence. +GGAGCCTGCGGCTTAATTTGGCTCAGCACGGGAAGATTCACCAGGCCAAGACACAGTAAGGACTGACAGATTGAGAGCTCTTTCCTGATTTTGAGGAAGGTGGAGCATGGCCGTTCTTAGTTGGCAGAGTGATCTGTCTGCTTAATTGCGACAACGAACGAGATCTTGACCTGCCAGGCCCGTTTTGGCGGATCGTCGGCTTCTTAGAGGGATGATCGGCTCAATCTCATGGAAGTTTGAGGCGATAACAACTTAACCATTACACGCATGTGATAACGGGGCCCCGACTTACTTTCGTGGGATTTTCCGCCAGTCGATCGTCCGTGACCGTTGGGCAAGCGCCCTAGTATCCAGCAGTCGGGCTGCTGAAGGGCAGCCTAGGATACAGCAAGACAGCCTGGTTTTGGGACTCCAGTTCAGGCTGATCAATCCCGAGGCAAGTTACTATAGCGAGCACCCGTTATAATGCTAAATCCTTATTAATAGAGCTCGTAAGAAAAGGCCTGATACATCGAAGCGTACGGGAGTCACCGAGCAAGGTGGCTGACATGAATTGTTGTTAAGCTCTTAGATTTTCAGGGCCGCCTGCACGCTACGCCAACAGAGTAAACGAGTTTGCTACCCTGGCCGGAAGGTCCGGGGGATTTTTTGAAACTTTCCCGTGCTGATGATACAGCACTACAAACTTCTCAGAGTGTCTGGTGTGCTATAGCCGGCCCTGAGATTAGCGGCACTTGTGTAGAAT +>KB822693.1/397760-397927 Marinobacter nanhaiticus D15-8W genomic scaffold super1, whole genome shotgun sequence. +ATCTCCATAGACTCAATAGCAGAGGAGACTCTGACATGTATATGGATGCTGTCGTTTTCGCAGGTATCGCTACCGTCGTCCTGATATTCGGCTTCTTTGGCGGTGTGGGTTATTTCATTTACAAGGACTCCCACAAGAAGTCAGACGAGAAGCACTAACCGGTTCCAG +>ALWS01089583.1/31226-31330 Pteropus alecto contig89583, whole genome shotgun sequence. +ACATATGATTTTATTTTCTTCAGAAAAACTTAATTTTATAAGCAGGGTCGGGCCTGGTTAGTACTTGGATGGGAGACTACCTAGGAAGACCAGGTGCTGTAGGCA +>FRAG01000030.1/20374-20550 Clostridium caminithermale DSM 15212 genome assembly, contig: EJ27DRAFT_scaffold00030.30 +TTAAGCCTAGGATGTTCGTTAAAGCCTTGAAATTCAACCACCAATAAGCATCCGGGAGTCCAGGTTTTTATGGCGATGACGGGCCTCAATATAGTGGAAGTCAGAACTATAGAATAGGACACCCACCTAGGTGATACCGGGTGTGAATTTACAAGGTAACGACATCTTGGGTATATA +>LM154274.1/11133-10866 Schistosoma mattheei strain Denwood, Zambia genome assembly, scaffold: SMTD_scaffold0004766 +TGTGGTCGCACATAAATCGGGTATGATAATCCAAACATTTCATCATCTAAATACCTGAGAGGGAGCCTGAGAAATGGCTACCACATCCAAGGACGGCAGCAGGCGCGAAAATTACTCACTCCCGGCACGGGGAGGTAGTGACGAAAAATACAAATACGGGACTCAGTTGAGGCTCCGTAATTCGAATGAGTGCAATCTAAATCCTTTAACGAGGACCAATTGGAGGGAAAGTCTGGTGCCAGCAGCCGCGGTAACTCCAGCTTCAAAA +>GL378999.1/3793-3024 Volvox carteri f. nagariensis unplaced genomic scaffold VOLCAscaffold_724, whole genome shotgun sequence. +NNNNAATGTATGCGAGTTGGCGGGTTGAAAACCCGTAAGCGCAAGTAACCTGACTGGTGGGATGGCCTGTGCCTGCACCATCGACCGACCATGTTGCTTTTGCGAAAGGTTTGAGTGCGAGCATACCTGTTGGGACCCGAAAGATGGTGAACTATGCCTGAGCAGGGTGAAGCCAGAGTAACCTCTGGTGGAGGCTCGTAGATGTGCTGACGTGCAAATCGCTTTTCAGACTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCCCAGGATAGCTGGAGCTTGATCAGTTTTATCGGGTAAAGCGAATGATTAGAGGTTCGGGGGATGAAACATCCTTCACCTATTCTCAAACTTTAAATAGGTAAGACGTGTCGGTTGCTTAACTGAACCGTCACATTCAATGTGAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGATAGTCGAGTTAAGGTGCCAAACTGCGCGCTAACCTAGATCCCACAAAGGGTGTTGATTGATATAAACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAATTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCTATACTCGGCCATGGATGCAAGTGCGACGCGTCCATGAGTGGGTGGGCGTGTCTCAAAGATTAAGCCATGCATGTCTAAGTATAAACTGCTTATACTGTGAAACTGCGAA +>LWSG01000002.1/200085-200211 Bacillus litoralis strain C44 Scaffold10, whole genome shotgun sequence. +TTAAACAAGTAGAGGCACCCGCTTCTCACCTGATTGACACATCCGTTTGTAGTTGGCAGGTTACGATGATCTTTTATGTATACAATCGTAGTGTGGGTGTCTAAGGCATCCACACTTTTTTATTTTC +>URS0000D696C4_12908/1-84 unclassified sequences c-di-GMP-II-GAG riboswitch +GGGAGCGGGGGAUCCAGGGCACGACGCCCAAAACGGUCGCCUGACCGUCGUGCCUAGCGAGCGGCGAGACCGGCCCCACCGUGC +>MNYX01000050.1/4741-9257 Candidatus Nomurabacteria bacterium CG2_30_43_9 cg2_3.0_scaffold_4245_c, whole genome shotgun sequence. +TAACAGGAAATATAAGAGCATATGGTGGATGCCTTGGTTCTAAGAGGCGATGAAAGACGTAGCATGGCTGCGATAAGCTTCGGGGAGGTGCCTAGCAACCTTTGATCCGGAGATTTCTGAATGGGGAAACCCCATAACCGTAATAGGTTATGACCTACATTTAAATGTAGGAGTATACCCAGGGAAGTGAAACATCTCAGTACCTGGAGGAAAATAAAAAAAGCCGCCGAATGGCGGAACATTTCCTGAGTAGCGGCGAGCGAAACGGAAATAGCCCAAACCTACTATTTATAGTAGGGGTTGTAAGGCAGAGACGTCGTATTTATACGAGAGGAGTTACAAAATGTAATGTTAGTTGAATATGCTGGAAAGCATAGCCCTAGACGGTGATAGCCCAGTAAACGAAAACCTTACATCTTCTTTGTCTTTGTTCTTGAGTACTTCGAGACACGAATAGCTCGGGGGAATCTACCAGAACTAACTGGTAAGGCTAAATACTCTTAGAAACCGATAGTGAACTAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGTGAGGGGAGTGAAATAGAACTGAAACCATATGCTTACAAGGAGTCGGAGCCCCCCACCACTCGTGGTGGGGGGTGACGGCGTGCCTATTGAAGAATGAGCCAACGAGTTAATGTATACAGCGTGGCTAAGCCCTTGTCGGGTGGAGCCTTAGGGAAACCGAGTGTGAATAGCGCGTTTGTTGTATGCATTAGACCCGAAGCCAGATGAGCTTACCATGAGCAGGGTGAAGTTTGTAGAAATACAGATGGAGGCCCGAACCGGTTGGCCGTGCGACACCATCGGATGACTTGTGGTAAGGAGTGAAAAGCTAATCGAATCTGGTAATAGCTGGTTCTCTCCGAAATATGTTTAGGCATAGCGTCTAGCGTACCCTCTGGGGGTAGAGCACTGGAAGGACTGAACAGGGAGCAATCTCGTCAGTCCTATCAAACTCCGAATACCAGAGATAGGCCCACCACATAATAATTTTTCGTTGCGAAACGAAAATTTTTAGCGGAAATCATGAAGCGTGATGAGCCTATGCGAGCATAGGCGACGAGCGATGAATGATTTGTAGCAAAAATTTTAAGTTGTAGCAGAAAAGATTGTTGTGTGGTGGGCCCAAATACTAGGCAGTAAGACTACGGGGGCGAAGCTCCGTCGGTCAAAAGGGAAACAGCCCTGATCTCAAGTTAAGGTCCCAAAATTTACGCTAAGTGTACTTAAGGAGGTGGAGTTTCTCAGACAGTGAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAACAGCTCACTCACTAAGAGACTCTGCACCGAAGATAATCGGGGCTAAGCGTAGTACCGAAACTGAGGGTTCTCTCGTCTTTCGAGATGGGGGAGCGGTAGGAGAGCGTTCATGTCTGCGCTGAAGGAGAAGTGTGAGCAACTCTGGAGCGGCATGAAGTGAGAATGTTGGCACAAGTAACCACAATGCGGGTGAGATCCCCGCACGCCGTAAGAGCAAGGTTTCCTTTGCGATGTTGATCAGCGAAGGGTTAGTCGGGCCTAAGGTTATAGCGAAAGCTGAAGCCGATGGACATAGGGTTAATATTCCCTAACTTTTTATTTGTGCGATGGAGTGACGAAGGTTAGTATGTCTTGCGCATTATTGGATTTGCGTTTGTGTCATCAGTGTGACTCTTAGGTAAATCCGGGAGTCTGGTTTTAATACCGACCGCAAGTGAAGCAGAAATGCATGGGTTCGCCCAGTGCAGATAAGGCAAAGCAATTTTCCGAGAAAAGCTTCTAAGCATAACAAATAAAAAACCGTACCTAAAACCGACACAGGTGCTCGAGTCGAGTAGACTAAGGCGAACGAGTGATTGCTTCTCAAGGAACTCGGCAAAAAAGCAGCCGTAACTTCGGGATAAGGCTTGCCTCCACCACTTTGTCTTTAAAGACGCATAGATAAAATTACTTCATTAGCGACGTAGAGCGAGAGAAATGAAAAGGTATTTTTTCATTTCCAAGCCGAGGAGCTAATATAAGAGGTAACCCTGCTTTTATTTGCATCGTTGAGAAGAATTTTTTCCTCCACGCAATGTACACTTGTACATCTTGGTCGTAAAAAATTCTCCCCGCCTCGCAACTAAAGCAATTTAATCAATGCTTATGCAATAGTGATGGAGTCCGAAGAATTGAGTGTATCGAGACCGTGTTTAGTATCAGAGCTGATACTAAACACAAAAAAGTATTTGAGAAAGTGAGTGATTGTGGGTTTCGTAGAGGGGGGATTCTGGATTTAAATAGAGAAGATAAGATTCGCAAGAATCAAACGACACTCAGGTGTCAACTTCGTTGGGTGCTACCATCCACTATTTCTTTGAATAATCTTGTCAGACGGGAAACCGCATAGACTAAAAGATCGTAATTAGATCGATTCGAAGGTTAACCATGAACTCTCTCCATTCTATGAAACTCATAATCATAGATCGTATCAAATACAAAAATGTTGACTAATTTTTCTAGGACTTAGACATCATCTCTCAAAAATCATTTCGCATATCATCAGTAAATTTCTGCTGTGACTTTGAGAAAAATTTTATTCGAACCTCGGTTCGAGTCAAATTTTTCTCTTCGTCTCGCTAGAAATTTCCCTGAAGCTAAGCGAAGCATTTTATGAGAAATGATGTAGCACCGCTTTGAAAATAAAGTGGTGGAGGCCGCAGCGAAAGATTTCCTGCCAACTGTTTACCAAAAACACAGCTCCATGCGAACTCGTAAGAGGATGTATATGGGGTGACGCCTGACCAATGCCAGAAGGTTAAATACGGGTGGTGCCGAGCACCATGAAGTTAAGTAGAATTTCGTTGAATATTTTTGTTCAGTGGTTCTATTTGAAAGCATGGTGCTCGGTGCTGGCTTGTATAAGCCCTGGTGAATGTCGGCCGTAACTATAACGGTCCTAAGGTTCCCTGCTTATCAATGATGAGCAGGGAAGGACTAGGACTGTTATAGAAAAAAGTAAACAATTAATTTAAATTCATTACATGTTTAAGCTACCTGGCACGCAGTAATGTGTGTTAGTCCAATCATGATAAACGAGAGACCAACGTCATGGACCCTACTTTTAAGGAAGAGGGTAAAGATAGAGTCCAACTGAGAGGAATAGTTGAGCGTAATTCCTTGTCTGGTAAGTTCAGACGTGCACGAATGGCGTAATGAGTGGGAAACTGTCTCGAGAAGCAGCTCGGTGAAAATACAATACCGGTGAAGATGCCGGTTACCTGCAGATAGACGAAAAGACCCCGTGAGCTTTACTATAGCTTAATATTGAACATGTTTTGTTTCTGCGTAGCATAGGTGGGAGGCTTTGAAGCGACCGTTTCGGTGGTCGTCGAGCCAACAGTGAAATACCACCCTTAATTGAGGCATGTTCTAATCTGTAAGGAAAAAACTTACGGAGACAGTATTTGGCGGGTAGTTTGAGTGGGGCGCTCTCCTCCTAAAAGGTAACGGAGGAGTCTATTAAGGTCCTCTAGGCGCGAATGGAAACCGTGCCGATAGCGTAATGGCAAAAGAGGGCTTAACTGCAAGACGGACATGTCGAGCAGGTGCGAAAGCAGAGCATAGTGAACCGACGACACGCTTTAGATGCGGTCGAAGATTAACGGATAAAAGCTACCACGGGGATAACAGGCTAGTTCTGCCCAAGAGTTCATATCGACGGCAGAGTTCGGCACCTTAACATAATCGGGGTGCGTCAGGAGTAATCCTGTAGCGACAAATTTATAATCGTCAATAAATAATATATAAACAAGAAATCTTGGCTTATAACGGTGAAACCCATTTGCATGAACAATAAATGGGCAATACCGTGGGAAGTTTGCGTGTAAGAAAGCGATCACTCTAAATTTTTAGAGAGCTGCTACATCCTTTGTGGATGTGATTATACGTATAACCCTGTAGAGACTTGTCACGTTAGCGCGTAGAGATGCAACTAACAAAGTGACGGAGTTATGAGAAAATCATAGCTAATACGCCAACGCCTCTTTTGATCGAGAGGGTGAAGATATAGTCCGATCCTCGCAGTAATGCGAGACAAATACGACAGCGATGTCGGCTCATCTTATCCTGGAGGTGGAGAAGCTTCCAAGGGTTTGGCTGTTCGCCAATTAAAAAGATACGTGAGCTGGGTTCAAACCGTCGTGAGACAGGTTGGTCTCCTATCTTCTGCAGGCGTTGAATTTTGAGGGGATTTGCTCCTAGTACGAGAGGACCGGAGTGAACTGACCTCTGGTGTGGCTGCTGTCCTGCCAAGGGCACCGCAGCGTAGCTATGTCGGGAATGGATAACCTCTGAAAGCATCTAAGAGGGAAACCAACCCCAAGATCAGAATTCGTTTGAGGCCCGTAAGAGATGATTACGTTGATAGGCTCTATGTGTAAGACGAGTAATCGTTTCAGCAGAGGAGTACTAATACGCCGATTCCTGGTGGG +>AYYY01000070.1/37374-37142 Lactobacillus vaccinostercus DSM 20634 NODE_168, whole genome shotgun sequence. +TAAAAAACGATGAAAAGATGAGTAGCAGTTAACACCTTTTTAGAGAGCCTCTGGTTGGTGAAAAGGGGTAAGGTTGGTGATTGTGAATATGGTCTTGAAGTGAGGAATGTTGAGCGTATGCGAGGCATTCATGGGGACGCCCATTACCGCGTGCGAGTATGATTGTACTCAGCGAGGGAGTGTATGTGAATACATTCTAAATTAAGGTGGTAACACGAGAGATCGTCCTTACT +>AAQR03042857.1/1-1187 Otolemur garnettii contig042857, whole genome shotgun sequence. +GCCCCAGTGCTGCCAGTCCCTGTGCTGTAAGCCCATCTGCTGCCGCCCCAGCTGCTGCCAAACCACCTGCTGCAGGACCACCTGCTGCCGTCCCAGCTGCTGTGTGTCCAGCTGCTGCAGGCCCCAGTGCTGCCAGTCCCTGTGCTGTAAGCCCAGCTGCTGCCAAACCACCTGCTGCAGGACCACCTGCTGCCGCCCCAGCTGCTGCTAGGGACCTGCTATAGAACAATCTGTTGTTGTTCCACCTGCCAGACCACCTCTTGCTGCTGAGTGTCCTGCTCCAGATCCATGAACTTTCATGACCCTTCCTTTAGTCTAGTTAGAGAGGATCTAGTCACTGAAGACATGAACTTCCTGGGGCTATGGACTTAACAAACAGACCCATGGATGAATTTGCAAAACCCTGGTTTCTATATTAGTATTTTCTCTATTCTGTAGGTATATTTCATTATTATAGCAAATCAGTATTTACAGCCAGATTCTGCATCAAATTGCTTTAGTATTCCTAGTTCTGATTCAAAATACAGGAGTCTTCAAATGTTCTCTTCATAGATATTTTTATAACATTTTCAGTAGAATCCATTGTCATGTGGAATTATTGCTCAATGTTGCCAAATAAAAGTTCTTAGCATCCAAATGCACCCAAATTGGTCATTTCTCATTATTAACAAAATGTTCCTGTCTCTTTTCTGCACAACACTAGAGCTCATGTTTTCAGGAGAACACACAATGGAAACATTAAATTGGTCTTCTCCAGTGACATTGTTATCAAAACCTGAATTCACCCCCCAACTTCTAAGAAGGACAAGTGGTGTTAAGCCACCCAAGATTGAGCAATAACAGGCCTGTGATGCCCTTAGATGTCTGGGGCTTCAATGACTGGCTCAGCATGCAGGCACTGGTAACCCGTTGAACCCCATTCATGATGGGGATCAGGGATTGCAATTATTCCCCATGAACGAGGAATTCCCAGTAAGTGCAGGTCATAAGCTTGCGTTGATTAAGTCCCTGCCCTTTGTAGACCCTGCCCGTCGCTACTACCAATTGGATGGTTTGGTGAGGCCCACGGATTGGCCCCAGTGAGGTTGGCCCTGGTGGAACGCTGAGAAGATGATCAAACTTGACTATCTAGAGGAAGTAAAAGTCATGACAAGGTTTCCATAGATGAATCTGAAGAAGGAAAAATT +>KQ042022.1/603975-604625 Larimichthys crocea isolate SSNF unplaced genomic scaffold scaffold95, whole genome shotgun sequence. +CCTCACGCTTAAGCCCGGCTTCGGGACCCCCCCACAGCACCCAATGCACACCGCGGCTACCGCGGTGTGCATAGTGACGAAAAATAACAATACAAGACTCTTTCGAGTCCCTGTAATTTAAATGAGTACACTTTAAATCCTTTAACAAGGATCAATTGGAGGGCAATTTTGGTGCCAGCAGCCGCGGTAATTCCAGGTCCAATAGCGTATCTTAAAGTTGCTGCAGTTAAAAAGCTCATAGTTGGATCTCGGGATTGAGCTGACAGTCTGCCGCGAGGTGAGCTACTGTCGGTCCCAGCCCCTGTCTCTCGGTGCCCCCTCGATGCTCTTAGCTGAGTGTCCTGCGGGGTCTGAAGCGTTTACTTTGAAAAAATTTGAGTGTTCAAAGCAGGCCCGGTTGCCTGAATACCGCAGCTAGTAATAATGGAATAGGACTGGCCAGGGGAGGTGCCGCTAGAGGTGAAATTCTTGGACCAGCGCAAGACGGACGAAAGCAAAAGCATTTGCCAAGAATGTTTTCATTAATAAAGAATGGAAGACGATCAGATACCGTTGTAGTTCCGACCATAAACGATGCCAACTAGCGATCCGGCAGCGTTATTCCCATGATCCGCCAGGCAGCATCCAGGAAACCAAAGTCTTTGGGTTCCG +>GL897038.1/2640067-2640202 Mustela putorius furo unplaced genomic scaffold scaffold00141, whole genome shotgun sequence. +AGCTTTGCGCAGTGGCAGTATCGTAGCCAATGAGGTTTATCCGAGGCGCGATTATTGCTAATTAAAGCAGCAAGAGAGAAATGAGACCTTATTTATAAGGCAAAAAAATTAGAATGACAGTGAATTTCCCATCAAA +>AWHE01044218.1/1319-1427 Amborella trichopoda AMTR_V1.0_contig_44218, whole genome shotgun sequence. +GTGCCTTAGGGTTGAACTAGTCCCGGATATTTAATCATTCCCACCAACTTCACATTCTCAGTGAAGTTTTTCCTTGTTGTCTTATCTGATAATTCAAGATGGAAATATA +>AFSB01019533.1/7909-8012 Heterocephalus glaber contig19533, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGCAGTAGGAAGAAGGATCCAGTGTGGAGTCATAAATATATAAATTTTATTATTTATCAATACATTAATTTAT +>AYUG01084532.1/52955-52729 Fukomys damarensis contig84532, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGGAAAATAGAAAATTTCATACGTAAGCAAAACAATTTCTCCTAACCCTATCTCACCAAAACAAAAACTTCTCACATTTTTTCACAAGTATTTCAATTACGTGCCTCTATTTATCCTAGAGCTCTCTTGCAAAACAGGAACAGATCCAAACTGAGAAAGAATTGCTTTTCAGTTTTAGTGCAGTTGACGTTTA +>LLXS01000009.1/35786-35931 Stenotrophomonas maltophilia strain JCM 9942 contig_17, whole genome shotgun sequence. +CTTGGTGTGTGACCACCAATAGCCTGAAGTGGCGTGCGTCTCTGGCAACGGAGGGGTGCGAAGCCCACTGAACAAGTCCCCCGCAAGGGGCGCAACAACCGCGAGGTTTTCGCGCAGATTCCGGTAGCAGCAGACCGGATGAGGGG +>CCCW010015579.1/1-2359 Brassica napus, WGS project CCCW01000000 data, contig: 28609 +ACGGACAGCCACAGACGTCCTGTATCTGCTGGCGGACACCCACGGATGTCCTGTGTGTACTGAACAGACAGCACACGTGGGCCAAAATCTCCGGAACAGTCCACGGGAAGGGTCAGCGTGCTAAGTCCAAGGACCAATGTGCTGATATGTGTACTGATGGACAGCCACGGACGTCTTGTGTGTGCTGACGGACACACACGGACATCCACGGACGTCCTGTGTGTGCTGATGGACACACACGGACGTCATGTGTGTGCTGACGGACACTTGGTCGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCGCTAAGGAGTGTCTAAAAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTGAAGCACGCGACCTATACCCGGCTGTCGGGGCAAGAGCCAGGCCTCGATGAGTAAGAGGGTGTGGCGGTCGCTGCAAAACCTAGGGCACGAGCCCGAGCGGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCCAATGAGAACTTTGAAGGCCGAATAGGGGAAAGGTTCCATGTGAATGGCACTTGCACATGGGTTAGTCGATCCTAAGAGTCGGGGGAAACCCGTCTGATAGCGATTATGCGCGAACTTTGAAAGGGGATCCAGTTAAAATTCCGGAACCGGGACATGGCGGTTGATGGCAACGTTAGGAACTCCGGAGACGTTGGCAGGAATTCTGGAAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTTGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGTACCGCACGTCGCGTGGTCTCTGGTGCATTCCCGGCAGCCCTTGAAAATACGGACCGAGTGACGCTCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGATGAACAACCTCTGGTCGATGGAACAATGTAGGCAAAGGAAGTCGGCAAAATGGATCCGTAACTTTGGGAAAAGAATTGGCTCTGAGGGCTGGGCTCGGGGGTCCCAGTTCCGAACCCGTCAACTGTTGGCGGGCTGCTTGAGCTGTTAACGTGGCGAGAGCGGACCGCCTCGTGTCGGCCAGGGGAAGGACTGGGAACGGCTCTTTCAGGATCTTTCCCTGAGCGTCGAACAGCCAACTCAAAACTGGTACGGATAAGGGGAATCCAACTGTTTAATTAAAAGAAAGCATTGCGATGATCCCAGTAGATGCTAACGCAATGTTTTTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGTGCGGGTAAACGGCAGGAGTAACTATGGCTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAAACACACCAAGGGAACGGGCTTGGAAGAATCAGCGGGGAAAGAAGACCCGGTTGAGCTTGACTCTAGTCCGATTTTTTGAAATGACTTGAGAGGTGTAGAATAAGTGGGAGCTCCAGCGCAAGTGAATACCACTACTTTTAACGTTATTTTACTTACTCCGTGAATCGGAGGCGGCGTAATAACCCCTTCTTTTAGACCCAAGACTCGCTTTGACGGGTCAATCCGGGCGGAGGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACGAAGGGGTCCTAAGATGAGCTCAATGAGAACAGAAATCTCGTGTGGAACAAAAGGGTGAAAGCTCGTTTGACTCTTATTTTCAGTACGAATACGAACCGTGAAAGCTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACCAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGCTCGTGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGCGCGAAGCTACCGTGCGCTGGATTATGACCGAACGCCTCTAAGTCAGAATCTGGGCTAGAAGCAACGCATGTGCCCGCCGCCCGATTGCCGACCCTCAGTAGGAGCTTCGGCTCCCAAAGGCACGTGTCGTTGGCTAAGTCCGTTCAGCGGAAGCGCCGTTCGGACCGCCTTGAATTATAATTACCACCAAGCGGCGGGTAGAATCGTTTGCAGACGACTTAAATACACGACGGGGTATTGTAAGTGGCAGAGTGGCCTTGCTGCCACGATCCACTGAGATTCAGCCCTTTGTCACTAAGATTCGA +>MNRN01000197.1/5697-5757 Clostridium sp.CAG:217_53_7 isolate CAG:217_53_7 Ley3_66761_scaffold_9517, whole genome shotgun sequence. +GGAGAGGTACCGAAGTGGTCATAACGGAGCGGCACCGTGGGTTCGAATCCCACTCTCTCCG +>LIZX01000155.1/9306-9787 Candidate division WOR_1 bacterium DG_54_3 WOR1_52_54_19713, whole genome shotgun sequence. +AGAGCAGGCCAGATGATCGTGCCTCGACTCACTTCGTTCGCTCGGCACAAGCCCCTTAGTCTGAGGGGTTTATACCGAGCGAGGCCGAAGGCCGAGTCGAGGTAAGGAAAGTCCGGACTCCGCAGAGCAGCGTGGTTGCTAACGGCAACTGAGGGCGACCTTAAGGAAAGTGTCACAGAAATTACACGGCCCACTCTGACCCTAAAGGTCAGAAGGCAAAGGTGAAATTGGGAGGTAAGAGCTCCCACAGGACTGACCGGTGACGGTCGCTGCGGTAAACCCCACGCGGAGCAAGACCAAATAGGGAAATGGGTGGCTCGCCCGCCCTGCCCGCAATGCTACGCATAGCGTTGCAGGCGGGTATAATCCCGAGTAGGTCGCATTGAGGCAGTCAGCAATGGCTGCCCCAGATAGATGATCATCGAACCCAGCACGGTATGGTGCTGGGTGAACAGAATCCGGCTTACCGGCCTGCTCTTTTT +>MFJD01000004.1/58273-58056 Candidatus Gottesmanbacteria bacterium RBG_16_52_11 RBG_16_scaffold_141, whole genome shotgun sequence. +ACAGAAGGCTCAATTTGGGCTCACTGAAAACTATTTTAGTGATAGTCCGGCTGTATCGGTGAAATCCTGAGCTAGCCGAAGGACAACACCGAGGCAATCCCCCTTCCGCATAAAATATGGGGGCGAGTCCGTAGAGACTATACGCCGGACCCCGCCTACAGTTGATAACTCAATTGTTGGCGGGGAAGATATAGTCCGACACTCTCAGTAATGGGAGA +>GK000003.2/42786018-42786224 TPA: Bos taurus chromosome 3, whole genome shotgun sequence. +ATCACTTCTTGGTATTTTGGCTAGAATCAAGTGTAGTTTCTGTTCTTATCAGTTTAATATCTTCTCCCACTGAAAAATGTGGCTCTGCTATGTTGGGGCCAGGAGTAATTAAACCAGTGTTAGGAGGAAAGAAAGTGAAGTCACTCAGTCGTGTCTGACTCTTTGTAGCCCCATGGACACCGGGCTCCTCCGTCCATGGGATTTTCT +>LFZU01000001.1/2811527-2811462 Bacillus sp. FJAT-27231 Scaffold1, whole genome shotgun sequence. +CAAAAAGGAACGACGGCTAAAGACGCGACACCGTGTCGCAACGCCCTCACTAGCACATCATGTGCG +>GL637602.1/252614-252701 Caenorhabditis tropicalis strain JU1373 unplaced genomic scaffold Scaffold630, whole genome shotgun sequence. +TGTCCACTGATGACAACCTTACATACACCATTACGATCTCTGAAGACTTCGTGCTGAACATGTTTCCATGCAACACCAACTGAGGACG +>LL029687.1/1-1177 Trichobilharzia regenti genome assembly, scaffold: TRE_scaffold0029590 +CTCCTTGTGTTTAAAGTTAGTGCTTACAAGAAACAAATGATTATCAGAACAGAACTGTAGGAGATCAGTATCAGTTCTTTATTAATCAGCTTCAACAACAATACATCTCATCCAGTTCTGCTTTAATATTCTCCGTAGGCAAATGAGACAAGTACGCTAAGTATCCCAAAAATGCCTAAGCCCAGTAAGAATGCTAAAGCACCGACGGCGGTGCTGTGCAGTCTACAAACAAACAAAAAGTTGTATTCAAATACCACCAGAAACTTTTCACTCAATCTATTCCACATTCTCAAAATACTTCCGAAGGTTGCAGAACCAGTGCCATTCAATCATTTCACAGAGATGGACACTCCACATTAAGTTGTACAATAATTCCTATCCCTAAATTAACTTAAACTCTGAGATATGCACTGAATGAAGCTAATTTGATCATCAAATGTGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCGACAAGAGCATTGATATGACAGACTTATCTCCTGTAATTTCTGTTTCTGCGAATGGTGAGCGGACAAAAAGACTGAAACTCCAAGAACTTCATTATTCGCGTTAAAAACACCACGTTAGCGATTTTAGATAGAACGTACGGACAACTATTGTAAAGTGTGCAAACAAGGTGAAAAGAAACGGGAAATCGGGGTTCGATTCCGGAGAGGGAGCCTGAGAAATGGCTACCACATTCAAAAACCGCAGCAGGCGCGAAAATTACCCACTCCCGGCACGGGGAGGTAGTGACGAAAAATACGAATACGGAACTCAATTGATGCTCCCTGGTTCGAATGAGTACAATTTGAATCCTTTAACGAAAACCGATTGGAGGGCAAGTCTGGTGCCATCAGCCGCTGTAACTCCAGCTCCAAAAGCGTAAAGTTGCTGCAGTTAAAAAGCTCGTAGTTGTGTGGTCGCATGCCATTGGTTCTTCGCGGCTTTGGTTACGATCAGAACTTGTGTTCGGCTCGGTGTAGTGGCTGTGCAGCCTTTCAGTCATATCTGTGTAAAGGGGTGCTGACGGAGATGGGTGAGCTTGTCTTGCCCGCTATCTGTTGGCATGCTTCCGGATGCCTTTAACCGGGTGTCGGGAGCGGACGGCATCTTTC +>JYDL01002072.1/1-274 Trichinella nelsoni scaffold2457s, whole genome shotgun sequence. +TTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGTGATTAAACCCGTAAGGCGCAAGGAAGCTAATGCGCGGGATCCCTTTACGGGTGCACCGCCGACCGACCTTGATCTTCTGAGAAGGGTTCGAGTGTGAGCATGCCTGTCGGGACCCGAAAGATGGTGAACTATGCCTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTGACTTGAGTGTAGGGGCGAAAGA +>DS562881.1/23395652-23395568 Cavia porcellus supercont2_26 genomic scaffold, whole genome shotgun sequence. +AAATCATAATCCAACTCTAGCATTAGCCATGGGTTTAGCATTCCTCTTGAGGAAAGCAGGGGTTCCTCTTTTGCCCCCCATTGGC +>FAOM01514816.1/33945-33090 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_514816_6BS +CTGTATGATCCTGCTAGTAGTCATATGCTTATCTCAAAGATTAAGCCATGCATGTGCAAGTATGAACCAATTTGAACTATGAAACTGTGAATGGCCCATTAAATCAGTTATAGTTTGTTTGATGGTACGTGCTACTAGGATAACTGTAGTAATTCTAGAGCTAATACATGTAACAAACCCCGACTTCTGGGAGGGGGCACATTTATTAGATAAAAGGCTGACGCGGGCTCTGCTCGCTGATCCGATGATTCATGATAACTCGACGGATCGCACTGCCTTCATGCCAGCGACACATCATTCAAATTTCTGCCCTGTCAACTTTGGATGGTAGGATAGGTGCCTACCATTGTGGTCACGGGTGACGGAGAATTAGGGTTCGATGCCAGAGAGGGAGCTTGAGAAACGGCTACCACATTCAAGGAAGGAAGCATGCGTGTAAATTACCCAACACTGACATGGGGAGGTAGTGACAATAAATAACAATACCGGGCGCATTAGTGTGTGGTAATTGGAATGAGTACAATCTAAATCCCTTAACAAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGTCGTGGTAATTCTAGCTCCAATAGCGTATATTTAAGTTGTTGTAGTTCAAAATCTCATAGTTGGACCTTCGGGCCGGTCGGCCGGTCCGCCTCACAGCGAGCACCGAAATACTCGACCCTAGCCTTAATTGGTCGGGTTGTGTTTTCGGCATCGTTACTTTGAAGAAATTAGAGTGCTCAATGCAAGCCATCGCTCTAGATACATTAGCATGGGTGTCACGCCCAAGATGCGACCCTATCCTAAAGGAACTCGAAGGTCCCACTAAGGATAGAAGCACATCTT +>GG700527.1/116493-116761 Anaerococcus vaginalis ATCC 51170 genomic scaffold SCAFFOLD1, whole genome shotgun sequence. +AATAAAACTTTGATCAGAAGTAAGTAAGTTTTATAAATCTTTTATAGAGAGCTTGTGTGTGGTGGAAACAAGCAAAGAAGTAAAACCGAATGGATCTGAGAGTGCTAAGGTGAAAAAAGTACCCGAGGCCGTCTTCCCACGTTATAGGGATATGATATGAAATTATTTTAAATTAGTATCAGAATAAAGATATGTAGGATTTATTAATTTATTGAAATTTATTTTACATAAAAAGGATGGCACCGCGAATTCAACCATTTGCTCCTTTG +>CM007396.1/65217892-65218035 Nicotiana attenuata strain UT chromosome 6, whole genome shotgun sequence. +TGTAAAGGTTTCCTCGGGCCGGACGGAGATTTACCCTCGAGTGTAAAGGCAGAAAGGAGCTTGACTGCAAGACCCACCCGTCGAGCAGGGACGAAAGTCGGCCTTAGTGATCCGACGGTGCCGAGTGGAAGGGTCGTCGCTCAA +>AFSB01270989.1/241-552 Heterocephalus glaber contig270989, whole genome shotgun sequence. +AGATGTGTGGGACAATGTGGCTATGACATCTGTCACCCCATCGATCACCAGGGTTGATTCGCCCGATCTGGCTGGCTAGGCAGGTGTCCCTTTCCTTCTTCACCACTCCACGTGTGTCCCTCCCAAAGATGCACAATAGGTCGAAAAGAACGAACACCCAAGCTACAGGAGGACAATTTCCTCATCAAGGGTATATGAGTAGCTACACTCCCCTGCTAGAACCTTCATACAAGAGCTCAAGAATACTCCACTATAGGACCCGGATGTAGCTCAGGGGTACAGAACTTGCCTAAATGCACAGGTCTTGGCTTT +>FN543502.1/2725931-2725592 Citrobacter rodentium ICC168, complete genome +TTTGGCGACGTCCACCTGCTGGATTTGGGCATACAGTTTGCCGACCACTTCGGCGATCGACGGATGCCAAGAGACGGCGCGATTGACCGCCTGAGAAAGTGTAAGTTCGCCGGGGGCGGCGCTGTCGCCGGTTAGCGGCATTGGTCCATTCAGCGAGGGCAGCTCCTGCTGCTCAACCCACTGCTGCGGGGCGATGCGGGGTGACTCTTCGGCGGCAATGGCCGGAAACGCGCACAGGTTTCCAGCCAGCCACCAACAGGTCAGCTGTCGTTTTCCCATTTTTTACTTCCCTAAGCTGGCTTCTTTTCGCCCCGGGCGAACGTGCGCCCGGGGTCGTTGT +>CM000685.2/82594813-82595002 Homo sapiens chromosome X, GRCh38 reference primary assembly. +AGGCATGTGATCAATCAGGCTGAGACATCTGTTACTGCATTGATTGACTTGGATGATCAGGCTTGTGAAATAGGTGGCCCCATCCTACTTTGCTGCCCCCAAGTACATCTGTCTCAAAGCTTACACTGCTGGAAGGGGATGACCATCCCTATTAGAGGACAGTCATTCTCTGGTCAGGAGTAGAGAAATA +>DS995940.1/1722-1546 Penicillium marneffei ATCC 18224 scf_1105668340736 genomic scaffold, whole genome shotgun sequence. +GCTGGCGACGGCGACCCGGGAGAAGCCCTGGGCCGCTGGCTGGCGGATTGCAATGTCACCACGCGCGGGGATAAATCCTCTGCAGACGACTGAAGTGACCAAGCGGGTCATGTACGCGTACGAGTAGCCTAGTTGTTACGAGTCGCTGAGTGTCAGCCCGACCTTGGCTCGATTTGT +>MLHJ01000044.1/15422-15261 Rodentibacter rarus strain CCUG17206 contig_44, whole genome shotgun sequence. +TTTATCGCATAACTCCGAGCTTGTTTAGTCTAAGTTCCTCTTTGGTGAAAATACTTGGGTGAGGAATATGACGGCAATGCCAATAACGCTATTTGTTATTCAGGGATACGCTGGAAACGGCTTGTCCTCTCCATTTTAGAAAGGTGTCACATGCAATCTATT +>MAVT01007669.1/869-1028 Diaporthe helianthi strain 7/96 Scaffold_4854.1, whole genome shotgun sequence. +ACACGCATGAGCCGGTGCCAATCCGCCCGTGCCAGGTCCGAGAGTCCTGCTTCAGCAGCACTCAAAGTGATTTCGGCGCGACGGCGGAGTTGCTGAGATTACACGGCTTCGGAACTTGATCTTGGATAATACCAGCGAAAGGATCATGCGTCTCCCCCCC +>CDMY01000201.1/99855-100012 Vitrella brassicaformis CCMP3155 genome assembly, contig: scaffold135 +AAACTTACCTGGCTGGGCCTCGGGGGCGCTCACGAAGGTCCCTGTGCTGTCGTGGAGCTCCCATTGCATTCGGGGGTACGTGAAGCGGCATGGGGGGGCTATGCTCCTGCCAACAGCGGAATTTCTGGCAGAGCTGGCTTGCGTTCGCGCAGCCGGCA +>CM002822.1/201709819-201709930 Capsicum annuum cultivar Zunla-1 chromosome 11, whole genome shotgun sequence +GTACACCCCAAAGGAGTGTACATGAGAACACAAGTGTATTTTAGTTTTTTACAATTTCAATTTCTATATCTAAAATGTACTTGTGTTCTCAGGTCACGTCTTTGAGAACACC +>MGVN01000036.1/14680-14207 Elusimicrobia bacterium RIFOXYB2_FULL_49_7 rifoxyb2_full_scaffold_1450, whole genome shotgun sequence. +CTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCTGTGTTACCAGCGGATAATGCCGGGGACTCACAGAAGACTGCCTCTTTTTTGAGGAGGAAGGTGAGGATGACGTCAAGTCCTCATGGCCCTTACGTCCAGGGCTACACACGTGCTACAATGGCCGGTACAGAGGGTCGCAATGCCGCAAGGTGGAGCTAATCTCAAAAAGCCGGTCTCAGTTCGGATTGGAGTCTGCAATTCGACTCCATGAAGTTGGAATCGCTAGTAATCGCGGATCAGATACGCCGCGGTGAATACGTTATCGGGCCTTGTACACACCGCCCGTCAAGCCATGAAAGCCGGGAGTACTCAAAATGGTTGCCTGAACCGTAAGGAGGGCGCCCCTAAAGTAAAACCGGTGATTGGGGCTAAGTCGTAACAAGGTAGCCGTACCGGAAGGTGCGGCTGGATCACCTCCTTT +>LVVY01000041.1/1-81 Devosia sp. S37 DIN_R1_(paired)_trimmed_(paired)_contig_135, whole genome shotgun sequence. +TATGCCACTGGCGCAAGCCGGGAAGGCGCCCGCCGGGGATGATCCCAAGTCAGAAGACCGGCCAGATGACCTCTTGAAGCT +>ANKR01162454.1/9860-9985 Myotis brandtii contig162454, whole genome shotgun sequence. +TAACCTCCGCAGGCTGGCTGGCCCTCAGGCTGAGCTGGGTGAGTATCTTTTCTGTTTTGGGAGGACGGGGAAGAGGGGGGACCCAATATCTTTTTGAGAGGCTCGCCCTCAAGCACAACTAAGAGC +>LGPB01000006.1/253-1 Bacillus galactosidilyticus strain PL133 scaffold000006, whole genome shotgun sequence. +GATTAAGTTGTTAAGGGCGCACGGTGGATGCCTTGGCACTAGGAGCCGATGAAAAGGGACGGGGACTAACACCGATATGCTTCGGGGAGCTGTAAGCAAGCTTAGATCCGAAGATTTCCGAATGGGGGAACCCCCTACCTTTAATGGGGTAGGATCCAATTCTGATTCTGAATACATAGGAATTGGAACCCGGGGAACTGAAACATCTCAGTACCCGGAGGAAGAGAAAGAGAAAGAAAAATCGATTCCCTAA +>CAQQ02314174.1/33-1 Megaselia scalaris, Durham, NC isolate 2 -- Noor lab, WGS project CAQQ02000000 data, contig: ctg0000314174 +AAACCGGTTCTTTTCAGAACCACCAATTTTTTT +>LL082930.1/890-2011 Trichobilharzia regenti genome assembly, scaffold: TRE_contig0003919 +GACTGATGAGCAGGTTTCTTTTAAAGTGAGTTCATTTAACCTCTTTTTGTATTCTATTCTATATCCGCCATTTTTCTGAAAAATTTTTGAGTAATATCACCATTCATCTATTCGTTTTATTATTATTATTATTGTTAATATTAACTCACCTCCATTTCAAATTTATTTAAGCGAAAGTGTTCATACTACTAACATAGTCTATTCAGTAGTATTCATTTTAAAATGTATATTTTTCGAATTGAGGTGCATTAAAACAACAGGTGTTATAGTAAAGAAAAAGAAGAAGTTTTGAAGGGAGGACGAATAACTCAGTGGTGATGTGATTTATATCAGATGTCTTTGTATTACCGTCGTTGGATAGACTTTATCGAAAGCATTTGCTAAGAATAATTTCATTGATCAGGAACGAAAGTCAGAGTTTCTAAGACTATCGTTTCAGTTCTACCATTAAACAATGCCAACTGACGATCTGTGTTGGTTCTTTAATTGTCAATGAACGCACTATCCAGGAAAACTTCAAGTCTTTCAGCTCCGGAAGAAATATGGTTAAATAGCTGAAATTTACAGGAATTGAAGGAAGGGTACCACCAGGAGTCGAGCCTGTGGTTTAATGGAACCCAACATGGGAAAAATCGTTCGGCACGGACATATTCAGGATTAACAGATTGAAAGCTGTTTCTTGATTTGGTTGATGGTAGTGCGCGGCCGTTCTTATCTGCTATCTGTTGCTTCTTAGTGGAGTAGTGTGATCGTTAACTGGAGAGTATGGTACCAGCTTTTGTCTCTTAAACAGACAGACTGCACACTGAAGTCGTACGACATTGAGCAACAACAATTCTGTGATGCCCTTAGACGCCCAAAGCTACACCTGCGCTACAATGACGGTGCCAGGGTTAAGCCACCTGTTTTATCACCGTCGTGACTGGGAACGCTACCTGCAATTGTTCTCTGTGGAAGTCATAAACATCTACTGATGACGTCACTGCCCCTTGTACACACTGCCCGTCTCTATTACCGATTGAATACTATTCATAAACATGAACAATTGAGAATGGTTGGCGTTAATGTTTAATATATCGCCAAATTTGTCTTGATTGATGAGTAGACAGAACGAAATCAAAG +>FWFV01000002.1/64217-64338 Palleronia marisminoris strain CECT 7066 genome assembly, contig: 0002 +GTGACATACGAGCACCCACCTCCTCCCGGGCGCCTCGTATTCGGCGACGACACCGACCTCCTCCCCGGTGTCGTCGCCACAGATTACGCAGCGCCGACCTCCTCCCCGGTGCTGTGTTTCAG +>MNVI01000024.1/6358-6450 Candidatus Micrarchaeota archaeon CG1_02_55_41 cg1_0.2_scaffold_10394_c, whole genome shotgun sequence. +CCCGCAGTAGCTCAATTTGGCAGAGCACCTGACTGTAGTTAGAAAATCCGAGTGGACATCAGGGGGTTGCCAGTTCAAATCTGGCCTGCGGGA +>AAGJ05017846.1/1565-1174 Strongylocentrotus purpuratus Contig17846_fixed, whole genome shotgun sequence. +GAGACACTGGCCGGGGCCCCGGGAAGAGTTGTCTTTTCTTGTTAAGGAGCGGGATCCCTGGAATCGGTTCGACCGGAGAGAGGGTCTGCGGCTCCGTAGAGCGCCGCGTCTACGGCGGCGTCCGGTGCGCTCCGGCTGGTCCTTGAAAATCCGGGGGAAGTGTTGGGACTCTCGCCTCGGGTCGTACCCATGACCGCAGCCGGTCTCCAAGGTGAATAGCCTCTGGCCGATAGAACAATGTAGGTAAGGGAAGTCGGCAAGCCGGATCCGTACCCCCCGCAGGGATGGATTCCACCCCTCTGTCACATCATCTCTCTTTACTATAATACCCTCCTCTCCCTTTTCTTTTAAAACCAATGGATGATGTATGGGTCCCCTCCCCTTCCCCTCGT +>MOOB01000036.1/196011-195921 Penicillium nalgiovense strain IBT 13039 PENNAL_contig0036, whole genome shotgun sequence. +ACTACGTGATGATCAATTTTGAATTTGCAATCCTGACAACCACCTATCATATGTGAGGTTGTGTGTTGACTCTTCTACACTTGATCTGACC +>CP002770.1/704081-707325 Desulfotomaculum kuznetsovii DSM 6115, complete genome. +GGTCAAGCTGGTAAGGGCATACGGTGGATGCCTGGGCGCTTTGGGCCGATGAAGGACGTGGCAAGCTGCGAAAAGCCACGGGGAGCCGCAAGCAGGCGTAGATCCGTGGATCTCCGAATGGGGCAACCCGGCGGGGGTGAACCCCCGTCATCCCGTACTGAACACATAGGTACGGGAGGGGCACCCGGGGAACTGAAACATCTTAGTACCCGGAGGAAAAGAAAGCAAAAGCGATCCCCGTAGTAGCGGCGAGCGAAAAGGGGACAGCCTAAACCCGGCACTCAACTGAGTGTTTATGTTATGCATACAACAAGCTGATGCATCCGGGAAGTGAAAGTTGGGGTAAGAGCATAGCGTAAACACCGAGTTGAGTGCCGGGGGTTGCGGGACTCCCGTTGACGTACTGCGGAACTTAGCCGAAGCGGGCTGGAAAGCCCCGCCGCAGAAGGTAAAAGCCCTGTAGGCGAAAAGGGAAGCAGTGCGGGGAGGATCCCAAGTACCGCGGGGCACGTGGAATCCTGCGGGAATCAGGGAGGACCACCTTCCAAGGCTAAATACCCAAAGCGACCGATAGTGGACCAGTACCGTGAGGGAAAGGTGAAAAGCACCCCGGGAGGGGAGTGAAATAGGACCTGAAACCGTATGCCTACAAGCAGTCGGAGCCCAGCACTCAACTGGGTGCTTACCTTAGGCTTTAGAGGGGCTGATACATTCCGGGAGGGAAGGGCCTGTTTAAGGCAACCGTAAGCACCGAGTTGAGTGCTGGGTGACGGCGTACTTTTTGTAGAACGGACCGGCGAGTTACGTTCAGCGGGCGAGGTTAAGGCTGGGAAGGCCGGAGCCGTAGCGAAAGCGAGTCTGAAGAGGGCGATAAGTCCGCTGGAGTAGACCCGAAACCGGGTGAGCTACCCATGTCCAGAGTGAAGCGTAAGTAAAGTTACGTGGAGGCTCGAACCAACCGTCGTTGAAAAGGCGGTGGATGAGGTGTGGGTAGGGGTGAAATGCCAATCGAACCCGGAGATAGCTGGTTCTCCCCGAAATAGCTTTAGGGCTAGCCTCATACGAGAGTACCGGAGGTAGAGCACTGACTGGGCTAGGGGCCTTCGCGGGTTACCGAACCCAATCAAACTACGAATGCCGGTTACTTGATGTATGGGAGTCAGACTACGAGTGCTAAGATCCGTAGTCGAGAGGGGAACAGCCCGGACCGCCGGCTAAGGTCCCGAAGCGGTGCTAAGTGGGGAAGGATGTGGGGCTGCGAAGACAACCAGGATGTTGGCTTAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTGGTCAAGTGGCCCTGCGCCGAAAATGAAACGGGGCTCAAGCACCGCACCGAAGCCGCGGATCTGAGAGGTGAGAGGTGAGAGGTTGGAAGTGGGAATAACGATTCTCACATCTCACTTCTCACATCTCACCTCTCAGGTGGTAGGGGAGCGTTCCCACCGGGTAGAAGTCACACTGGGAGGTGTGGTGGACTGGTGGGAAGTGAGAATGCCGGTATAAGTAAGCGAAAAGGCAGGTGAGAATCCTGCCCGCCGAAAGCCTAAGGGTTCCTGGGGAAGGCTCGTCCGCCCAGGGTAAGCCGGGGCCTAAGCCGAGGCCGAAAGGCGTAGGTGATGGGGAATCGGTTGACAATCCGATGCCACCGGTAGGCCGATTGAGGATGGGGTGACGCAGGAGGGTAGGCCAAGCGCGCGGCTGGAAAGGCGCGTCCAAGCCGGTAGGGTGTGGGGCAGGCAAATCCGTCCCACGGTAAGCCCGAGAGGTGATGGGGAGGGAAATAAGAGTACCGAAGTGGCTGAACCCAAACTGCCGAGAAAAACCTCTAACGAGGAATACCGGTGCCCGTACCGCAAACCGACACAGGTAGGCGAGGAGAGAATCCTCAGGCGCGCGAGAGAACCCTCGTTAAGGAACTCGGCAAACTGACCCCGTAACTTCGGGAGAAGGGGTGCCCCGGTAGCGTGAAGGTATGAACTGCTGGAGCGCGAGGGGGCCGCAGAGAAGAGGCCCAAGCGACTGTTTACCAAAAACACAGGTCCCTGCGAAATCGAAAGATGAAGTATAGGGGCTGACGCCTGCCCGGTGCTGGAAGGTTAAGGGGAAGGGTTATCCGAGAGGAGAAGCTCTGAACCGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAAAGGCGTAACGACTTGGGCGCTGTCTCAACGAGGGGCTCGGCGAACTTGTAGTACCCGTGAAGATGCGGGTTACCTGCGACGGGACAGAAAGACCCCGTGGAGCTTTACTGCAGCCTGACATTGGACTTCGGTATTGCATGTACAGGATAGGTGGGAGGCAGGGAAGCCGGGGCGCCAGCCCTGGTGGAGCCGACCTTGGGATACCACCCTTGTGGTATTGGAGTTCTAACAGGGTACCGTGGAGCCGGTACATGGACAGTGTCAGGTGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAAGGTAACGGAGGCGCCCAAAGGTTCCCTCAGCGCGGTTGGAAATCGCGCGTAAGAGTGCAAAGGCAGAAGGGAGCTTGACAGCGAGACTGACTGGTCGAGCTGGGACGAAAGTCGGGCTTAGTGATCCGGCGGTAGCGAGTGGAAGCGCCGTCGCTCAACGGATAAAAGCTACCCCGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCATCGCATCCTGGGGCTGGAGTAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGTGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGCAGGCGCAGGAAACTTGAGAGGAGCTGTCCCTAGTACGAGAGGACCGGGATGGACAGACCGCTGGCGTACCAGTTGTCCCGCCAGGGGCAGCGCTGGGTACCCAAGTCTGGTGGGGATAAGCGCTGAAAGCATCTAAGCGCGAAGCCCTCCTCAAGATAAGGTTTCCCACCCGGCACTCAACTGAGCTTGTCAGGCCAATCCACTTTAAGGAGAGATTGGCACGCTCAGTTGAGTGCCGGGGTAAGACCCCTGGAAGACTACCAGGTAGATAGGCCGGGCGTGTAAGCCGGGTAACCGGTTGAGCGGACCGGTACTAATAGGTCGAGGGCTTGACCAG +>CM002293.1/9210050-9209896 Phaseolus vulgaris cultivar G19833 chromosome 6, whole genome shotgun sequence. +ATACTTACCTAGATAGGTCAATGGATTATCAAGAAGATTCATGGTTTATGAAAGTAACTTTCATTGCAATTTGGATGGATGCGTTTCTGATTTTGTCAATCTTCATATAATTTGTGACCGATGAAGTCTGAACTTTTGAAAGTTTCACTTTCATT +>FP929055.1/3038167-3038356 Ruminococcus torques L2-14 draft genome. +TGATTATGAATGATCAGAGGAACGACGTGGGAAATCTGGACTGGTGAAAAGGGAAACAGGTGAGAATCCTGTACGAACTCGTCACCGTATTTCGTGAGCTTGTGTTTTGAGACCACTGGGAGACCGGGAAGGTGAAGCAGAAGCATTTGAACGATCAGCCGGGAGACCTGCCTTTCGCAGTACAGGAATG +>ALWZ042737980.1/1504-1133 Picea glauca, whole genome shotgun sequence. +TGAAGCTTTACTATTTCCTGGGAATAAATATGGATTCTTCTTTACATTTTTGGTGGACAGCAAAGAAGTTCCTTTAATGTGGGGCTTGAGCCATAACTGAGATACAGCTCTAGCAGAGTTAGAATTCCAACCTGTATTAGGACCCATGTTCCAAGGGGATGATCTTGGGTAAATAATTTCTATGGGGCGTAAGACTCAAAAGGTAATGGAGGCATGCAAAGGTTTCTTTGGGCTGCGCAGAAATTGACCCTTGAATGTAAAGCAAGAGCTAGCTTGACTGAAGAACCCACCTGTCAAGCAGAAGCAAAAATTGGCCTTAGTGGTTCAGCAGGATTGAGCAGAAGTGTCATTGCTCAATGGTAGAAGGTACTC +>CM001000.2/104264790-104264683 Mus musculus chromosome 7, GRC primary reference assembly. +GTGTTCTTGCTCAGGCATCATATGTGCCCAAAGTAGAATGATCAGGGAATGTTAATATGGCCCCTGCTCATGGATGACATGCGAGTTTATGAAGCATTCCATATTTTT +>ACTA01010209.1/17005-16720 Ailuropoda melanoleuca scaffold917_80, whole genome shotgun sequence. +GAGTGTGTTGAGGATCTTTCCACATCAGTTACCCTCCTAATGGCTGGAGTTGACTCGGCTGATGGGGATGGCTAAGTGGTGTCCCCTTCCTTTTTCACTACTCCATGGACATCCCTCCTAAAACGAAGTGCTTTTGGATGCAGAGGACAGCCCCATCGAAGTTGTTTTGTCAAGAGAAATTGATAGCTACACTCTGCTATTTGAATCTTCAAATTTAACACTTGCTTTTCTGTGCTTTCTCTTTGTTTCTCTTAAAAATATTATATATGATAACACATTTGGAAAG +>CM001415.1/8836720-8836132 Lepisosteus oculatus linkage group LG12, whole genome shotgun sequence. +AAGGAGCAATGACACAAGAGTTCCTGTCACAAGTCAGACTCGGTCCAGGGATAATGCTGGGTGGGGAGGGCTAGTATTAAGGACAGTGGGCTGCACAGGGCGACATCACTTTTTGATCCTTTGATCCTTCCTAGAACTGTGAAGTAGGATTCACTTAGTATTGGATTGTTCACCCTCTAAATGGGAATGTGAGCTGGGTTAGACACTCATGAGACAGATTAACTTTACCTCATGGCTTTACCGATGATGCGATGTTGCGATTGCTGTTGTGATCTGCTGCTCTTTATGAGAGGAACCACAGGTTCAGACACTTGATGTCTGTCTGTGCTTGGCTGAGGAGCCAATGACACAGAACCCACAATTTGTGGGATTATGGTTGGATACCTTCATGACAACCCCAACGCCTTAAAAGGTGTAAATGTTCTGCGACACAGAGTTACAAAGCAGATTAAGATTTCACAGCAAATCACCAAAGAGACACCTTCTTCACCGTTCTAGAAAATCCTTTTCTACATTAAAGTCCCTGAAATAAGGAAGATCCTTGAAGGTGCTAATTCTTGCACAACAGACACTAGTGCAGTCAATAAGG +>FR799005.1/397220-397284 Leishmania braziliensis MHOM/BR/75/M2904 complete genome, chromosome 30 +CCGCTGCATCAGTACAGCGACATCATCTTTTCGAGTGGTGATGCCTGCTGGCGATGTCAGCAAGA +>AUSU01007329.1/5457-5644 Genlisea aurea contig_12937, whole genome shotgun sequence. +TAGGGGTATAGAGAGCTTTCTTCAGTTCAACCACAGGAGAATTAGGATTCAATCTGCTGCCGATTCATTTAAACAAACGATGTACGGATTTATCGAGTACTTCGATTGAACGAATGATGCGGGAGTCAAGTTGAATTCCATTTGCTTTTCTTGTGTTTGGACTGAAGGGAGCTCCCTTTTTTCTTCTT +>GL871722.1/1-494 Dictyostelium purpureum unplaced genomic scaffold DICPUscaffold_800, whole genome shotgun sequence. +CTCTGGGGTTAGAGTGCGGCAACGTATCTTTGCTTCAAGGAGTGTGTAGTCTGACTTGATAGGTACGTTAACAAAAAACTTCTTAGAGGGACTACCTGCCTCAAGCAGGCGGAAGTCCGAGGCAATAACAGGTCTGTGATGCCCTTAGATACCTTGGGCCGCACGCGCGCTACAATGCAGATAGCAAAAAGGTTCCTGGTCTGGAAAGATTGGGTAATCAATTGAATTTTCTGCGTAACTGGGATTGATCTTTGTAATTATTGATCATCAACGAGGAATTCCTTGTAAGCGTAAGTCATTACCTTATGCTGAATATGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATCGAATGATACGGTAAAGTTAACGGATAGTTTTTTTGTGGCAACACAATTAAAATTAAAAGTTATTTAAATCTCATTGTTTAGAGGAAGGAGAAGTCGTAACAAGGTATCCGTAGGTGAACCTGCGGATGGATCATTT +>CM002821.1/68112919-68113024 Capsicum annuum cultivar Zunla-1 chromosome 10, whole genome shotgun sequence +GACCACGTGATTAGGGAATTGATTAATTTATCATTCAATCATTGCCATACTTCATACAAAGGTTCACCATTGAGTTGGCAGAACTTTATTATTCAATCTCTAGGTT +>AYYE01001153.1/1824-2049 Tannerella sp. oral taxon BU063 isolate Cell 1/3 contig_2519917771, whole genome shotgun sequence. +ATTTTTGCCGCCGTTTTCGGTGACGCCAGGTCGGACGGTCCCGTCCGCGACGTGAAAAGGGAATCCAGTGAAAGACTGGAACAGTGCCCGCTACTGTAACACCCCACCTATCGAACGAAGGAGAGCACCCGCAAGACGTGCCACTGCCGCCACTGAGGCGGTGGGAAGGCCCACAGCCCTCCTTCAGGGTGAAGTCAGGAAACCTGCCGGAAACAACAACGTATAC +>AZNC01074805.1/442-855 Glycine soja cultivar W05 scaffold3126_15, whole genome shotgun sequence. +GACTCTGATGCTATATCAATAAATGTCCATATAGGAAATGGCTATCCTAATGGCTCGAGTGGCATAAACGAATGAGAGGTAACAAAGGCTTGCAAGGGTTTCCTCGGATCAGATGGAGATTAGGCCTTTAGTGTAAAGGCAAAACAAAGTTTGATTGTAAGACCCACCCATCGAGTAAAGATGGAAGTCAATCTTAGTGATCTGATGGTGCCAAGTAGAAGGATTGTCCCTCAATGGGCTATAGGGATAACAGACTCATCTTCCCCCAAGAGTTCAGATCGACAAGAAGGTTTGGCACCTCAATGTCGGGTCTTCGACATTTGAGGTTGTAGTATGTTCAAAGGATTAAGTTGTTCGCCCATTAAAGCGGTATATGGAAAATGCAAGTTCTGTAAGGCACATAAGATTGTGTTA +>MCGE01000002.1/764806-764528 Absidia repens strain NRRL 1336 BCR42scaffold_2, whole genome shotgun sequence. +AGCAACGAAGAAGATCTGCATGTTTGACGCACCACACACACGGGGGTTTTATACTCATTATAAATTGCGTTAGGGAAGTTCTCCAGACATGTGTACCTGTAATGGGTTATTGAAAGCAGCCTTTCTTAAGGTTGTGGTATTCAATTATGCCAAATTATCAGCTAAGATAGCTGTGGTATGGTTGGGTATCCAATAGTTCTTGTCATAGGAATAGGTATTGCGGATCTTGGTAAAATTTATTTTATCATGAACTCAATGGAGGCTACTCTCTTTTGTTGC +>ASAF01079751.1/2035-2138 Nicotiana sylvestris Nsyl_contig79751, whole genome shotgun sequence. +TACGCAGGAGAGATGATGCTGGATAATGGACCATCCCTGCTTAGCTATCTCAAGAGATTGGAGGGAGCTTTGATTATTTAGCCAGCATCATACTCCTGCATATT +>JXLN01013749.1/1932-192 Sarcoptes scabiei Contig13748, whole genome shotgun sequence. +TATCTGGTTGATCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTAAGTACATACCGCATTAAGGTGAAACCGCGAATGGCTCATTAAATCAGTTATGATCTATTGGATGTTGACCAATTACATGGATAACTGTGGTAATTCTAGAGCTAATACATGCCGAAAAGCTCCATCGCAAGGTGGGGTGCATTTATTAGACCAAGACCAAAAGGTGGAAACACCTTGTTGTGGTGACTCTGAATAACTGCAGCTGATCGCATGGCCTCGTGCCGGCGACATATCCTTCGAGTGTCTGCCTTATCAACTTTCGATGGTAGGTTATATGCCTACCATGGTTGTAACGGGTAACGGGGAATCAGGGTTCGATTCCGGAGAGGGAGCCTGAGAGATGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCTTGGAACAAGGAGGTAGTGACGAAAAATAACAATACGGGCTTCGCTTACGCGTTCTCGTAATTGGAATGAGCACAGTTTAAATCCTTTAGCGAGGATCAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGTGGTTAAAAAGCTCGTAGTTGGATCTCAGCCCAAGTGCATTGGTCCATCATGACGATGGTTACTGGTGTGCTGGGCACTTTACCGTTCACGTGCTATGGTGTTCTTAACCGGGCGTCATAGTCGTACGGTAGTTTTACTTTGAAAAAATTAGAGTGCTCAAAGCAGGCATCATCGCCTGAATACTGTTGCATGGAATAATAGAATAGGACCTTGGTTCTGTTCTGTTGGTCTTCGGATCCGAGGTAATGATTAAGAGGGACGGACGGGGACATTAGTACTGCGGCGATAGAGGTGAAATTCTTGGACCGCCGCATGACTAACCAAAGCGAAAGCATTTGTCAAGAACGTTTTCATTAATCAAGAACGAAAGTTAGAGGTTCGAAGGCGATCAGATACCGCCCTAGTTCTAACCATAAACGATGCCAACTAGCAATCAGCCAGAGTTCGTTTATGACTCGGCTGGCGGCTTCCGGGAAACCAAAGTTTTTCGGTTCCAGGGGAAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTNNNNTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCTAGCCTACTAAATAGCAATCGGAATTCGTTTCGACTTCCGATCCAAGCTTCTTAGAGGGACAAACGGCGTTTCAGCCGTATGAAAAAGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCGGGGCCGCACGCGCGCTACACTGAAAAGATCAGCGTGCATATGTTACCTACTCCGAAAGGAGCGGGCAACCCAGTGAAACTTTTTCGTGATTGGGATTGGGGATTGTAATTATTGTCCATGAACGAGGAATTCCCAGTAAGCACAAGTCATCAGCTTGTGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGGATGTTTTAGTGAGGTCTTCGGACTGGCCAACGTAGCCATCCTCGTGGTGGCCATGTTGTGCGGGAAAGATGACCAAACTTGAACATCTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTA +>CM001648.1/54674393-54674536 Nomascus leucogenys chromosome 2, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTATCAGTTTAATCAAGAAATGAAGATGGAATATTATTTTACAATGTCTTGATAAGTTGGGGAGCCTCATTATGAAAATATGGGAATCATAGAATCTCT +>CP001720.1/2579904-2579665 Desulfotomaculum acetoxidans DSM 771, complete genome. +TCACAAGTGATGATAGGGAAGAGTAAACCTGTACTGTTTACAGAGAGAAGCCGCCTTGGTTGAAAGCGTCTTTAAAAGAAGGCAGGTTAAAAACCACCCTTGAACTGCATAGCCGAAAATTTTAATCCTCAGGGGATTATAGATCAGTAAGCTTAGCCGGCGGCAAACGTTAATTGCTCTGAAGTGAGGAAATTTTATTTCCTAATTTGGGTGGAACCACGGAATAAGACCGTCCCTATT +>JMCC02000032.1/46273-46035 Enhygromyxa salina strain DSM 15201 ES-Contig_32, whole genome shotgun sequence. +ACTCCGAGGTCGAGGCTAACAATGGCCCTCCGGCGCGCGAGCGCCGGCTGAAAATCGGGTGAATTGCCAGAAACTCCGGGGACGGACAACCGGCAGCCAAGGTCGAGACGGCGGTGCAGCGATGCCCAAGGGCTCGGCAAGGTTCAGAGACTAGGGCCCGAGCGAAAGCGGTGATGGCCCCACGAGCGCCCGACATCTCCCGCGGGAGATGATGAGATAGTCCGTACTGCCGCGATAAT +>LPNI01000102.1/691-2685 Bacterium P201 scaffold_101, whole genome shotgun sequence. +GCGAAAGAAAGTTAGGGCGTCTGGTGGATGCCTTGGCTCTCGGAGGCGATGAAGGACGTGATAAGCTGCGATAAGCCATGGGTAGGTGCAAATAACCTTTGATCCATGGATTTCCGAATGGGACAACCCAGCCGGCTGAAGGCCGGTTATCTCTGCCTATGCAGAGAGGCAAACCTAGGGAACTGAAACATCTTAGTACCTAGAGGAAGAGAAAATAAACAATGATTCCCCCAGTAGTGGCGAGCGACCGGGGAAGAGCCCAAACCGCATGTGTAGCAATGCATATACGGGGTAGTAGGACCACGTCGTGGCATGCTGATCGTGAGAAGAATGTTCTGGAAAGTTCAATCATAGAAGGTGACAATCCTGTAGTCGAAGCGTGATGCAGCCTAGTGGCATCCTGAGTAACGCGGGGCACGAGTAATCCTGCGCGAATCCGCCGGGACCATCCGGTAAGGCTAAATACTCCCGAGAGACCGATAGCGAACCAGTACCGTGAGGGAAAGGTGAAAAGCACCCCGACGAGGGGAGTGAAAGAGTACCTGAAACCAGTCGCCTACAAGCGGTCGGAGCATGTTTATCATGTGACGGCGTGCCTTTTGCATAATGAACCTACGAGTCACCATCACAGGCGAGGTTAAGTCACTAAGTGACGCAACCGCAGTGAAAGCGAGGCTGAAGAGGCCGTTTAGTCTGTGGGGGTGGACGCGAAACCGAGTGATCTACACATGGTCAGGGTGAAGTCCCGGTAACACGGTATGGAGGCCCGCACCAATAAGCGTTGAAAAGCTTCTGGATGAACTGTGTGTAGGAGTGAAAGGCCAATCAAACTCGGAGATAGCTCGTACTCCCCGAAAGGCATTTAGGTGCCGCGTGCTGTGTTCACCCTGTGAGGTAGAGCGACCGATAGGTCAAGAGGGCTTCACCGCCTATCGCGACCTGACGAACTCCGAATGCACAGGGTCCGTAGCAGTGCAGTAAGGGTGCGGGTGCTAAGGTCCGTGCCCGAGAGGAGAAGAATCCAGACCGCCGTCTAAGGTCCCGGAGTTCTGCCTGAGTTAGTCTAACGAAGTCTGGTCTCGATGACAGCTAGGATGTTGGCTTGGAAGCAGCCATTCATTCAAAGAGTGCGTAACAGCTCACTAGTCGAGAGACCGGGCGTGGATAATAATCGGGTATAAGGCAGACACCGAAGGCGCGGGATAGCAAATAATAAAAGTATCGGTAGGGGAGCATTCCATCTGCGCCGAAGCAGACCGGTGACGATCTGTGGAGCGGATGGAAAAGCAAATGTAGGTATAAGTAACGATAAGGGGCGTGAGATCCGCCCCCGCCGAAAGACTAAGGTTTCCCGGGCGATGTCAATCAGCCCGGGGTCAGTCGGGTCCTAAGGCTCAGCCGAACGGCGAGGCCGATGGCTGACACGGTTAATATTCCGTGACTTCCCATTGGGGCGATGTGGTGACGGAGCAGTGGAACTGCCGCGCGGCGACGGATGTCCGCGTTAAAGGGTGTAGGCGTTGATTGGGGCAGGCAAATCCACCCCAAGAGCTGAAACCTGAAAGTACGGGACTCTCTTCGGAGAGACCTGACAGAGCAGGTAATCATACTCCCGAGAAAAACCGCTAAGCTTAACCTTTTGGGAACCCGTACCGCAAACGGACACACGTAGTCGGGTAGAATATACTAAGGCGTTGAGAGATTCGTGGCTAAGGAACTAGGCAAACTGACCCTGTAACTTCGGGATAAAGGGTCCTCGCTTATAGCGAGGCGCAGAGAATAGGTCCAGGCAACTGTTTAACAAAAACACAGGGCTGTGCAAACTCGAAAGATGATGTATACAGCCTGACACCTGCCCGGTGCCGGAAGGTTAAGAGGAGACGTCAGCCTTAAGGTGAAGCGTTGAATTGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGG +>LXWF01000040.1/121949-121803 Rothia nasimurium strain PT-32 scaffold4_size309601, whole genome shotgun sequence. +ACAAAACAAAAATTATCAGGCAGAAGCGGGGGACCCACCTTTCGGGCTCACCACCTAGGAGCCCTTGGGGTTAAGTTGCAGGCAACTGTGACCGAGTGACTTCATACTCGAACCCGACAGCTCACCTCGTTCGGCAATGGAGGAAAA +>AFTD01062031.1/43354-43570 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +AATCAGTTGTATGTATGTACTCTTTTGCATGCATGCACACGCGTGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCGCCTTTACAAAACTTGGATTAACAAAATCTTTTATGTATGTTGCTTGTTTGGTTTGGTGTTTGTTGAGACAGGGT +>CM000665.2/44861892-44861973 Homo sapiens chromosome 3, GRCh38 reference primary assembly. +CAGCGGGTGCCAGGCACGGTGTCAGCAGGCAACATGGCCGAGAGGCCGGGGCCTCCGGGCGGCGCCGTGTCCGCGACCGCGT +>GL010031.1/37115110-37115156 Loxodonta africana unplaced genomic scaffold scaffold_4, whole genome shotgun sequence. +AAACAGGCTCTCTAACAGAGCCACAGAATGTTAAAAAAAAAAAAAAA +>FQXS01000031.1/44397-44023 Desulfofustis glycolicus DSM 9705 genome assembly, contig: EJ46DRAFT_scaffold00031.31 +CGCCGCCGGATAACAGGCGCATCGTATCTGGTTATTAAGAGGTCCGGTCGAAACATCACATGATGCCTCGGCTCTACCACAAAAGGGGTTCACGAAAGAACCCTGCAAAAAGGAGTAATTCAACATGGCTGAAGGCACAGTAAAGTGGTTTAACGATGCGAAAGGTTTTGGTTTTATCGAGCAGGATGGCGGCAAGGATGTGTTCGTGCACCATTCGGCCATCCAGGCTCAGGGCTTCAAGTCCCTGACCGAGGGTGCTCGCGTATCCTTTGACGTTGTCGACGGCCCGAAAGGACCGGCGGCAGCCAACGTCGTCCAGCTCTAAGAGCCGGATACGGTTGTTGTGGACCCCGCACCCTGGGTGCGGGGTTTTCT +>LCFB01000050.1/5945-6029 Microgenomates (Gottesmanbacteria) bacterium GW2011_GWA1_43_11 UV59_C0050, whole genome shotgun sequence. +GCCGAGGTGATGAAATGGTAGACATGCAGGGCTTAGGACCCTGTGAGCCTTAAAACTCGTAGAGGTTCAAGTCCTCTCCTCGGCA +>AFOY02000015.1/191187-190961 Pseudomonas fluorescens HK44 Contig15, whole genome shotgun sequence. +CCTACACGCCTTGTTACGGGTGCCCTTCACAGGGTGAAACGGGAAACCGGTGAATCATGTGCTTTACTCAAAAGCCATGTCAGTCCGGTGCTGCCCCCGCAACGGTAAGCGAGCGAAGAATCAGATCCACTGTGCCAGAAGTTCGGCATGGGAAGGCGATTCTTGCAGGTTCGGCGAATGCCAGCCCCTCGTGAGCCCGGAGACCGGCCCGCAACACATAGTGCCTT +>AAAB01000498.1/1506-345 Anopheles gambiae str. PEST whole genome shotgun sequencing project, whole genome shotgun sequence. +TGGCGGCGGTTCGCCTGCGCGCGCCCAATGCGCCGTGTTTCTCGCTCAGCGTCCAGTGTGTCGCTGGGTGGTGCCGCCGGGGAGACTGCATCGTAGCATCGTCGTGTGTAGCGTGTTACCCGCTTGTCCGACCGTGAGCCGTGGCCCGCAAGGGTACAAGCTTGCGTACGTCGGTGCATTCGTGGTGCACTGCTTCTGCGCGGTCGATCGTTTATGATGTCACGTTTGCCCCCGGTTCCGCGCGCCGCCCGGCTCGAAGACTCCTGGACAGGTCCTTTCGGTCCACGTCATGGACAGTGCCAGGTGCGGAGTTTGACTGGGGCGGTACATCTCCAAAACGATAACGGAGGTGTCCAAAGGTCAGCTCAGTGTGGACAGAAACCACACGCTGAGCATAAGGACAAAAGCTGGCTTGATCCCAACGTTCAGTACACTTCGGGACAGCGAAAGCTTGGCCTTACGATCCTTTTGGTTATAACGAGTTTTTAGCAAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCCGCCAAGCGTTCATAGCGACGTGGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAAAATTCACCAAGCGTAGGATTGTTCACCCTTTCAAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGGTGTGTGCTTATAGTCGCTATCTTAACGGAATTCCTGTGCAGTACGAGAGGAACCACAGGTACGGACCACTGGCTCATACTAGTCCGACCGGACTTTGGTATGACGCTACGTCCGCTGGATTATGCCTGAACGCCTCTAAGGTCGTAGCCAATCCGAGCTGATAGCGCTTCTCAAACCCATTAGGTGTTCGGAAGCTAGCGGGCCTAACAACCCTCTGAGATCCGTTGGAGTCTGCGTCTGCAGCCCGGCGTCTCATCCCGCTATACCTAGGCCGCAACGAGTGGAGTTCGCTGCACGTGTTAGTACCGTAACTGGGAACGCCGTTGGCTTGAGCTCTGCCCAACGTGGATATACCTAGTTTCGACACCTATCAACCGCCCGCAAACGACGGGACTTCAGGCTGGGAGCTGCGAGTTGTAGAGATGCGTTCGCATCGATCCTCTCAGGCGACCCATGCTTGGTGGTTTGTC +>URS0000D6AEAC_12908/1-95 unclassified sequences Rhodo-rpoB RNA +GGGTCGGAGGGCGGCCAGTGGGACGGCCGCCTCGGATGGACCCCTCGACGTCCGCTCTCATGGGGGAAGGCGCCGCGGCCCCGGCGGCGCCCGCC +>CYSP01000003.1/255745-256067 Propionispora sp. 2/2-37 isolate 2/2-37 genome assembly, contig: 2/2_contig3 +GTATACGAGGGAACGCTGTACATTGTGCAGAGGAAAGTCCGGACAGGCACGGGCTGCGATGCCCGTAGTGATTGCGCGTGACCTAAGAAGTCACGGAAGGAAGCTCATTCCTTACGGCGGCAAAACCGACTCTGTCTGAGTTGGCGGTAGCCTGAAAGTGCCACAGAAACGAAACGTTCCGGCGACGGAACGATGCAAGGGTAAACCCCGCAAGCCTGAAACTCAAATTACGGTAGAGGAACCCTAGGAAGGGAATAAAACCAGATTAGGGCGCATGAAACTGCGAGATAAATGTTTCCTAAAACAGAATCCGGCTTACGGTA +>KI669466.1/623363-623809 Kwoniella mangroviensis CBS 10435 unplaced genomic scaffold supercont2.9, whole genome shotgun sequence. +AGTCCAATCTCATCTCACACTCGCGAGCGGGCCAAGGTCCTGGAATTTCAACCCCCCTTTCATCTTATTTCCTTATGGAAGAAGATGTCTGACCGATCTTAGCGGATCCTTGAGTTAATTTCAAACCAAGTAATTCCCGACCAGAAATGCGTCCTCTCCATCTTATCCGTAAAGGAAACCCATAGAAGCGTTTGACGTGGAGGGTATGGATGGAGATATTTTGGACTTGGTATGGGAATGGTGAGGTAGCCTTATATCGATGTTCTCTATCCTCGATGCCTGGATAAAGAGTCTCTGAAATCAAAGAGAAGTGTTTTGGTCATAGACCAAACCCCGATATACATAAAAAGGCTTTAGTGCAATTTGGTGACGTCCTCATACTCAAAAACCTTCTTTGATCTCAAGTTGAAGAAGGGAGGATAACTCGATCAGGACTACTCTGGGACT +>LT629734.1/2109114-2109055 Agrococcus carbonis strain DSM 22965 genome assembly, chromosome: I +GCCGCCCGTCCTGACACAACGGATCGTCCGGCACGTGCCTGCCGGTGGAAGGAAAGAGAC +>X51710.1/1-45 Dengue-2 virus RNA for capsid protein, partial, from a case of dengue fever (M3) +ATGAATAACCAACGAAAAAATGCGAGAAAAACGCCTTTCAATATG +>JH835393.1/4707706-4707998 Erinaceus europaeus unplaced genomic scaffold scaffold00105, whole genome shotgun sequence +GGATGTGAGGGTGATCTGACTACGAAATCTGTCACCCCATTGATCACCAGGGTAGATTCGGCTGATCTGGCTGGCTAGGCGGATATCCCCTTCCTCCCTCACCACTCCATGTGCATCCCTCCTGAAGCTGTGCACCGGTCTTCAGTCGAGGGTATAGGAGTAGCTGCGCCCCCCTGCTAGAACCTCCAAACAAGCTCTCAAGAAAGAGCAGAGCCCTACTCAGCTCTGGCTTATGGTGGTGCTGGGGATTGAACCTGGGACTTCAGAGCCTCAGGCATGAGAATTCTTTGCAT +>AWUE01002803.1/746-1 Corchorus olitorius cultivar O-4 contig02805, whole genome shotgun sequence. +AGCTTACCGACTCAAAGCTTTAAGGCCTTAAAGCCCGTTCGCCCTGGATGATTCTGAAAAAATTGAGGATTTTGGTCTTGAAAAAGAGTAGTCGATGATTAACGTTGGATGATTGGAGTCGCGCGAGTACCGTGTGGAAGGGTGAAAAGAACCCCCGTCGGGGAGTGAAATAGAACATGAAACCGTAAGCTACCAAGCAGTGGGAGGAGCCCAGGGCTCTGACCGCGTGCCTCTTGAAGAATGAGCCGGCGACTCATAGGCAGTGGCTTGGTTAAGGGAACCCACCGGAGCCGTAGCGAAAGCGAGTCTTCATAGGGCAATTGTCACTGCTTATGGACCCGAACCTGGGTGATCTATCCATGACCAGGATGAAGCTTGGGTGAAACTAAGTGGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGGATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGCTGGTTCTCCCCGAAATGCGTTGAGGCGCAGCAGTTGACTGGACATCTAGGGGTAAAGCACTCTTTCGGTGCGGGCCGCGAGAGCGGTACCAAATCAAGGCAAACTCTGAATACTAGATATGACCTCAAAATAACAGGGGTCGAGGTCGGCCAGTGAGACGATGGGGGATAAGCTTCATCGTCGAGAGGGAAACGGCCCGGATCACCGGCTAAGGCCCCTAAATGACCGCTCAGTGATAAGATAAAGGAGGTAGGGGCAGAGACAGCCAGGAGG +>AZST01000551.1/9313-8979 Rhizoctonia solani 123E scf_551, whole genome shotgun sequence. +CTCTTGCCATTGTTGTGGGCAGATATAGTGAATGTGGGCGTCGACCCCCCCAGCTGTGATGATCAGTTTCTCGCCTGCGATCACTTCCGTGTTGGCTCCAGCTACCAAGTCAGGGTCGACTCCGTCCATAATGTCAGGATTCCCCGCTTTTCCAATTCCAACTATCTTCCCGTGTCGTATTCCAATATCAGCCTATGCACGTCGTGAGTATTGACGCAGGGAAAACTGAGCGATGCGAATACCTTGTAAATTCCGGACCAGTCGATGATGAGTGCATTGGTGATTAAGAGATCAAGGACCTCGTATCGCTCTCCGCAAGCCCGGCCCTCTCCGTG +>LGUE01000001.1/1373798-1373578 Bacillus marisflavi strain JCM 11544 scaffold1, whole genome shotgun sequence. +CAAAAGGCTGTGACAGGGAGAGTACGTTTCAGCAATAACCTTTATCAGCGAATCGGGGGCGGTGCAAGCCCGGTAGGGAAATGAAGCGGAAGATCACCCTTGAGCCCTGTCTGTGAACAAATGCTAGCAGACGGCGACTGATCCATGTTACGGATTTTCGAGTGAGGGCAATTATGCCCTTATGAGGGTGGTACCGCGGGAAAAGCTTTCTCGTCCCTTTC +>AEDQ01000029.1/68978-69146 Atopobium vaginae PB189-T1-4 contig00020, whole genome shotgun sequence. +ACGTAGTTTCAGGGCGGGGCGAACATCCCCACTGGCGGTAAATAAACGCACTAGCTGCACTAGCTGTACTAACTGTAATAAACGCGTTTACAAGCCCGCGCGCCACACTGTGGCTGATTTGGTGAAAGTCCAAAGCCAACGGTTATAGTCCGGAAGAAAGAAACGAGGA +>JMFP01072321.1/1087-1 Pygoscelis adeliae contig72321, whole genome shotgun sequence. +AACGCACGCTGGAGTAGAGGAAACAAGAAAGATGCAAGGAGAATTGGAGGAAGAGACTAAGAAGCAAGGAGTAGCAGAAAGAAACCATTATGCACTGACCCCAGCCTCCTGCACATTGCCTCACCAAGGGGACTGAGTGTGATGTGCGGTGTTGGCCTGAAGTCAAGCCTGGGAAAGAGGAGGAAATGCATTTCCCTAAGTGTTTGTCTAGTTATCTTCGTGGGAGTTTGGGTTTTTTTTTCTCAATACCCAAATAGGTAATTAAAAGTTTATGTTAATTTGCAATACATTAAATTAGCTGAAATTCCCTGAGTCGAGACTGTTCTGCCCATGACACCTACCCATCCCAGAAAATAACAAGAAGGTTTGACCAGTGATTAGTGTTAAGAGCCTGCTTTGTGCAGCCTTTCACTTTGACCATGATGAAGTTACTTGGTCTCCCGGAGCTGCATTTTCCCATTTCTAAAATGAACACGTCTTTCAAAAGAGACATTGTAAATCTATTTCATTTTTGAGATGCTGAGGTGGAATGGGAAATCATCTGACAATAGAGTGGGGGAAGACCCCCAAGTTGGTCGGCGTCCAACTTCTTAGAGGGACAAGTGGCGTTCAGCCACCCAAGATTGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCGGGGCCGCACGCGCGCTACACTGACTGGCTCAGCTTGTGCCTACCCTCCGCCGGCAGGCGCAGGTAACCCGTTGAACCCCATTCGTGATGGGTATCGGGGATTGCAATTCTTCCCCGTGAACGACGAATTCCCAGTAAGTGCGGGTCATAAGCTCGCGTTGATTAAGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGGGTGGTTTAGTGAGGTCCTCGGATCGGCCCCAGCGGGGTCGGCCCCGGCCCTGCCGGAGCGTCAAGAAGACGGTCAAACTTCACTATCTAGAGGAAGTAAAAGTCATAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACCGGGGGTCGGGGTCGCGCCGGGCGTCCGGCCGCGCCGCCGACTCGATTCGCCGCTCACCCGCGCCCCGCCG +>LHQN01016515.1/4388-3427 Habropoda laboriosa contig16515, whole genome shotgun sequence. +GAACATATGGAGAATGTCTACTCCGATGCACTTACGACCATCGTGTCTAGGGAATCCGGTTCCTATTCCGGAACCCGGTAGCGGAACCGAAATCCATTCGGGCCCTCATTGAGTGTTCGTCGGGGTAACCCAAAATGACCTGGAGACGCCGTCGGGAGATCCGGGGAGAGTTTTCTTTTCTGTATAAGCGTTCGAGTTCCCTGGAAACTTCTAGCAAGGAGATAGGGTTTGGAACGCGAAGAGCACCGCAGTTGCGGCGGTGTCCGGATATTCCCCTCGGACCTTGAAAATCCAGGAGAGGGCCACGTGGAGGTGTCGCACCGGTTCGTACCCATATCCGCAGCAGGTCTCCAAGGTTAAGAGCCTCTAGTCGATAGATTAATGTAGGTAAGGGAAGTCGGCAAATTGGATCCGTAACTTCGGGATAAGGATTGGCTCTGAGGAGCGGGGCGTGTCGGGCTTGGTCGGGAAGCGGGTCTGGCTGACGTGCCGGGCCTGGGCGAGGTGAACCTGTGGTGTCTCCGCATGGGATCCGAGCTCGGTCCCGTGCCTTGGCCTCCCGCGGATCTTCCTTGCTGCGAGGCTTCCGTTGGCGGCCTGCCGTCGGCGGTCGTCCTCTTCGGCCGCCATTCAACGCTCAGCTCAGAACTGGCACGGACTAGGGGAATCCGACTGTCTAATTAAAACAAAGCATTGCGATGGCCCCCACGGGTGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAACGTGAAGAAATTCAAAAAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTTGCAAAGACTTTCGCTCTCCGAGGTGGCGTCATCTGTTCGTCCTGGGGACTATCTTGCCCTCCAGATTGCTAGGGCACGTAGGTGCCTTAGCGATCACGGCGAACCCATCGACACCCCTGCGAAGGAGTCGCGCCGTTGGGCTGCGGC +>AEWC01017985.1/26701-26812 Solanum tuberosum cultivar DM 1-3 516 R44 scf00126_13, whole genome shotgun sequence. +ATTCCATGAACAACCAGGAAATAACAAATAAAACTGGAATGACATAAAGAAGATTAGCATGCCTATGGGCAAGGATGACATGCCCAAATCAAGAAATAACAAATAAAATCTT +>CCCW010003393.1/857-2271 Brassica napus, WGS project CCCW01000000 data, contig: 40795 +AACCCGTCCTGGAGGAGTGTTGTTAAAGGGTGAAGACCTGGGTTCGAGTCTCACCAACAACCTAATTATGGAGTCAGAGAGGACTCATAATGGAGGGGTTGGGGTCGGTGCGCTGCAGCGCTGTGAACCTAGGTTCCTAGTGAGAGGATGGGTTGTCACACTCTGCCCGTTGCTCTGATGATTCATGATAACTCGACGGATCGCATGGCCTTAGTGCTGGCGACGCATCATTCAAATTTCTCCCCTATCAACTTTCGATGGTAGGATAGTGTCCTACCATGGTGGTAACGGGTGACAGAGAATTAGGGTTTGAGTCCAGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGTAAACTACACAATCCTGACACGGGGAGGTAGTGACAATAAATAACAATACCTTAACGAGGATCCATTGGAGGGCAAGTCTGGTGCCAGTAGCCGCGGTAATTCCAGCCCCAATAGCGTATATTTAAGTTGTTGCATTGAACCTTGGGATGGGTCGCCCGGTCCACCTTCAGTGACCACCGGTTGGCTTGTCTCTTCTGTCGGCGATATGCTCCTGGCCTTAACTGGCTGGGTCGTGCCTCCGGTGCTGTTACTTTGAAGAAATTAGAGTGCTCAAAGCAAGCCTACGCTCTGTATACATTAGCATGGGATAACTTCATAGGATTTTGATCCTATTGTGTTGGCCTTCGGGATCAGAGTAATGATTAACAGGGACAGTCGGTGTAGAAACCCGTTAAAAAAAGAGAGAATGGTTGAGTATCTTTGTGTTGGTCGAGTCGCGGGTGATACTTATCGATCGAGAAGTTTTGAAGTACGAGGTGGGCGAAGAAGTGATCGTGAGTGAACTGTGAGTCGAATAAGTTGCTCGACCATAGTTACAAAATGTCTTAGATTAACGAGACAGACGTTTTGGAAGCATAACATTTTTGGAAGTACGACGGTTTAGAAGCTCGACGTTTTGGAAAAATGACGTTTCTTCAGCACGAAGTTTTCCGCGAAAACTCGTATCAGCGGAATATTATTTCGAAGACATTGGAAGGAGGACGGGAATTAAGCACGATGGGCAGCAAGCACGACAGGATCGAAGCACGACGGGAAAACCCAAAATTGGACGAAAACCCTAATTTCGGTATTATGAAAGTTTTCGATGAAGCCAAAGGATCTAGAAATGTTTACTGCCAAGGTCATAGTTCAGATTGGAGTTTATTAAAAATATTCCGCTCATCAGAATGGGAGCAGAAAGTATTCGGGATTAATCGCGGGTCAGAAATTTACCGGAATGACCGTAATCAGACAAATAGACCGAGAAGCTCGAGGTGGCTCGTTGCATGGGTTCAGAACGTGGTGTCAACCATCTAAAATGCTGAGTGTCTCCAGAAGCTCGAGG +>GL637601.1/12317752-12317884 Caenorhabditis tropicalis strain JU1373 unplaced genomic scaffold Scaffold629, whole genome shotgun sequence. +ATCCCACTGATTACAAATTTCGCTGATACCTGCCCACCCGAAAGCCTGGAGGCCACAGGGAGTGGGGTCCCGCCGGTCGATGAATGGCTGACAACGGTGGGAACCATGATACAGATTATGAGAGATGAGGGTT +>AARH02006624.1/20544-20687 Populus trichocarpa scaffold_19_contig_351, whole genome shotgun sequence. +AATAACCAAAAATAAAACTTGGGCTAAGGGTAACGTTGGTAATTGTTCTTACATCTCCCACCCCTGGAAACCAGGTATCATATACGGGCCCAAAATAAGGAGCTTTGAATATCTAAAATTGTCGTAATTTTATTTCTCTTTCCA +>JRES01001669.1/266737-266612 Lucilia cuprina strain LS Scaffold353, whole genome shotgun sequence. +TAACAAAAAAATAAAAATAAACAAACTAAGTACTGGTGCAGCAGGAACTATATGGAGCTAAATGCTGTTGCTCCATTTAGTTCCTGCTGTACCAGTACTTAGTTTGTTTATTTATAAGAACAAAAC +>DS981450.1/8754-8822 Bacteroides coprocola DSM 17136 Scfld_02_23 genomic scaffold, whole genome shotgun sequence. +ATGCAGACGCTTAAAACACTTGGATGTATGTGAATATGTGTAAGTGTTACCTGTTCCAGAAGTGGAAAA +>AJXZ01000015.1/19268-19422 Nitratireductor aquibiodomus RA22 Contig15, whole genome shotgun sequence. +ATAACAAGAGGGTGAAGCTGAAAATTCATCCTCACCACGCGGTCAAAGTCTTGGGAGGATGCGGTCCAGGCGCGGTTACACGCAGCCGCCGACGATGATACGGTAAAGGATCGGACGCGTTGAGTTAGCAAGGCCTCTTGGCCTTGCATTTTTTT +>KQ034000.1/288106-288014 Lactobacillus apis strain Hma11 genomic scaffold Hma11_scaffold2, whole genome shotgun sequence. +GGTCAAACATAAGACATGCGAGATTGTAAATAACTTTTGAATCGGAATACTATTATTTAGTTAATAGGATCCATATTCATTGCGATACGTCTC +>GG729934.1/356366-356523 Oribacterium sp. oral taxon 078 str. F0262 genomic scaffold Scfld1, whole genome shotgun sequence. +AAATTCCAGTGTCATAAGGAGCTGTCCCCCCATCGTGCTTGCACGAAGGGGGGACAGCTCCTTATGACACGCCCCCTTATGAGCATGCAGCGGAGGTTTTTCCCGCGGAATGCGAATAAGGGACAGCATGGCGAGCTCAGCGATGCCATGCGGAATTT +>ALXA01000123.1/6897-6525 Pseudomonas putida S11 PPS11_c212, whole genome shotgun sequence. +CCACCCAATGCGCCACCTATACCTGCTCCGGTATTGCCGCCTGCCGACGCAACGCCGCTCAGCAGGCCAAGTGACAACAACAGAATCGAGGAGTACTTCATTTGTAAAAAGCCTCAAAGGGATACGGAGGCGATCCTGAGGCTCTGGACAGGGCCTTACAATGGAAATCCGACGAGTGACACGACTTGGAAAAATTCTCCAAGTTATTGTTTTCCCGATGGAAACTTAAGGGATTTTCAACGGTCACAGGCTGATTGCAAAAAGCCTTTCCAGTGGTGGAGAAGCCTTTTATTTCTACCCGTCACCCCGTGCCTTCCCCTCCAAACTCACTACCCTTCTGCCCCAGACCTTGCTTGCCCCAAACCGCTGGATC +>AFSB01219390.1/2517-2353 Heterocephalus glaber contig219390, whole genome shotgun sequence. +ATTCCTTCTTGGCCTTTTGGCTAAGATCAAGTGTAATATTCTAGTTCCTAAAGTAACTATATGCTTATAAAAAAATCTTGCCTTTTGGGGGTCTTAAGAGAGTCTAATGATCTTGTGCAGTGTAAAAAATGCATTATGACTTCCTTGTTATGTTTTGCATTCTCT +>FR892523.1/19058-19295 Prevotella sp. CAG:592 genomic scaffold, scf208 +GCAAAGTATATCGCAAGCGGTTTGCCCTCACGGGTGATTAAAAGGGAATCGGGTGGAAATCCCGGACAGTCCCGCTGCTGTGAGCCGCCCCTTATGAAAGGGTCGAACAATAGCCACTGGAAATTCTTATAGCTCCAATCTGTTATTATGAAATGTCTAACGATTGTTGGAGGTTAACGGGAAGGCGTTCGATACCGGGCGGCAAGTCAGAAGACCTGCCATTGCGACACATGGCGTA +>KB202646.1/8509-7967 Lottia gigantea unplaced genomic scaffold LOTGIsca_5069, whole genome shotgun sequence. +NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTCGCGGTCCTGCCTCGTTTTTCTCCTTCCGGGAGAGAACCCGCCGCATTTTCTGTCTACCTTGAAAAAATTAGAGTGCTAAAGGCAGGCTAAAACCCCGAGCCTGAATATTTCGTGCATGGAATAAGCGGGGATGCTCTTTTCCGGAGGGCGGTCCGACCGACTGGCGACGTCGCTTTCGCTGTCGGTTTCGCCGGAGAGCTAGGATTCGAGAGGAACGGTGGGGGGCGAGCGTACCGGGCGGGGAGAGGTGAAATTTTGTGATCCGCTCGGGACGACTCGAAGCGAAAGCGCTGGCCCCGGACGTCTTCCTTAATCCAGAACGAAGGTGGGTGGAGCAAAGACGATCAGATACCGTCGTAGTACCGACGGTAAACGCTGCCGACCGGGCCGCGGACGAGGCTCGAGAACAGCGGTTATGGACCCGTCCGTGGCGGCTTCGGGCAACCTGAGAGTTTACGGGT +>AZGB01000027.1/63184-62919 Lactobacillus ghanensis DSM 18630 NODE_73, whole genome shotgun sequence. +TAAAAAACAGCAAGAAGAGTAAATGGAAAAATTGTTTTAAGCGAGTCGTTGGTTGATGAAAAACGATAACAATTGACTGTTGAAGATGGTCTTGTTGAGAAGTTCTATTGCTGAGTTGTGCTGAATAATAAGGCAATAGCGGGAACTCCCGTTAGCGAGTCGAAGTATCTTCTGGAGATAAATAAGAATGTACTTTTGAAGGAATAGTTTGTGAGAACTATTTAAATTAAGGTGGTAACGCGAAAAGCAGTCTTTTCGTCCTTAGC +>CM001425.1/10442330-10442236 Lepisosteus oculatus linkage group LG22, whole genome shotgun sequence. +CCCAGCAGCCATGTCGCTCTGCCACTCAGCGGGTGTGAGCCTGGGCAGTACCTGGATGGGAGACCTCCTGGGAAAAACTGAGGTTGCTGCTGGAA +>AP013066.1/2828303-2828212 Sulfuricella denitrificans skB26 DNA, complete genome. +AGAACCCATGCGGGAGAGCGTGCGATTATTTTCGCACCACCGAAGGCGCAACCACCCGTAACCGCTCAGGTATCAGGAACCGCATGGAACAC +>CM000251.2/46867717-46868010 Rattus norvegicus chromosome X, whole genome shotgun sequence. +GAGTTTTCTGGCTTGGATATCTGACATCCCATTGATTGCCACAGTTGATTTAGCTGATCTTGCTGGTCGGCAGGTGTCCCCTTCCTCCTTCACTGCTTCATGTGCATTCCTCCTGATGCTGCGCACTCCGTTGAAGATGATGAACCTTCCCTGAAGGGAGAAGGTCCAGTCTTTGGGCAAAGATATTCGAGTAGTTGTGTTCCCCAGATAGAACCTCCAAACAAACTTTCAAGGAAGAAAATTTTAGTTTGGTTTCTGGTTCCAGATGGTGGGCATGCTGGCATGACAGCAAAC +>FNHO01000002.1/3411-3594 Pseudomonas balearica DSM 6083 genome assembly, contig: Ga0056079_102 +CAGCTAACGGAAAAGTATTCCAATTCGGTTTAACGGCCCGGCAGATCCGGTCGGCAGAATCCGAAAAACGGACTAATACTTGAAATCACTGGCGAGACATTCCCCCCACTGTCTGGCCAGTCGAGACCGTGAGGACCGCGTTCTCGAAACTCCTAATGGTCTTGACCCGGCTCCCTCAGGCCGG +>JH836242.1/293875-293781 Erinaceus europaeus unplaced genomic scaffold scaffold00954, whole genome shotgun sequence +CTCCGGCGCAGGGCGGCCACTGCCCCCCGCACACTGCGCTGCTCCGACCCACTGTGCGTGTGACAGCGGCTGTCCTGTCCTGGCAGCGCGACCGG +>CH672395.1/1696787-1697001 Leeuwenhoekiella blandensis MED217 scf_1099517004314 genomic scaffold, whole genome shotgun sequence. +ACTTCGCAAACGTATTTTGGTGGTGTTTTTTGTTTTTAAAAACACCTTAAAAGGGAATCAGGTGCTTCTTTGTAAAAATCCTGAGCTGTTCCCGCAACTGTAAGCTTAGTTCGTAAAAGAACGGTAAAGATCGTCTTACACCACTGTCAATATTGATGGGAAGGTTTGATCTTTATACGCGAGCCAGGAGACCTGCCAGAAGAAACTAATAACTA +>AZAQ01029315.1/12443-12290 Stegodyphus mimosarum contig29315, whole genome shotgun sequence. +ATACTTACCTGGCACTGGGAACGCCTTGATGAACAAAGAGGCTTCCCGAGCAGAGGGCTCCCGTTGCACAGCGAGAGGTTGACGTTCGCTACACTCGCCGTAAATTGGGCAATTATTTCCTAGCGTACATGGAGTAGCATCAGATGCCAATGGA +>ALWZ045079265.1/261-1397 Picea glauca, whole genome shotgun sequence. +AAGATTTTGTGCGTTTCTCTCTCTACGTTCCGGATTTCGTAGTGACGGATTTATGAGTAGATTCGATCGAAGAAGTTACAAATTGTATGATGGAAAAACCAAAGTGAACCCTAGGTACACCTCATTTCGGTGGTCCCGAAATCAATAGGGTAGTCCCGGGTTATCACTGATAATTTCGAGATGAATTCTCCGTAATTGTGTGTTCATCGGAAATAGCTGGTTTTCCGCGAAATCCATTTAAGTGGAGCGTCTAATGTTCAGGCCCGAGGTAGAGCACTCAATGGGCTAGGGTGGCCAAAAGCTTTACCAATCCCAACGAAACTCCGAATACAGGTCTCTGCAGTTAGTACAGACAGACTTTGGGTGCAAAGATCCAAGGTCGAGAGGGAAACAGCCCAGATCGTGCGCTAAGGTCCCAATGCAATTACTTAGTGTCAAAGGTAGTGATCGCGCGATGACAACCAGGAGGTAGGCTTGGAAGCAGCCAGCCTTTGAAGAAAGCGTAATAGCTCACTGGTCCAGCTCCGTAGCACCTAAAATGTATCGGGGCTAAAGTAATTCACCGAAGCGACGAGACTAGTCTCCGAGATTGATAGCTCGGGAAAGTGAGAACCTTGAAAGCACACAAGTAGCTCACGTAGTCTATATGGTCCAGATAGTGTCTAACTAAGCTTATTCAAGGGTCAGTAGCGGAACGTTCCGTATATCGGAGAAGGGGCTACACCTGGAGGKATCAGAAGTGAGAATGCTGACATGAGTAACGATTAATCGTGTGAAAAACACGATCAGTTCACGGGTTTTCACGTTCAGTCAATCTACGTGGAGTGAATCGGTCCCTATAGTGGGAGATGTAAGCACGAGTTACTCCGGCAGCTGTTTTATGGCCCCCGCTGATAGACTAGGGGCTAACCTGATCTTTCTACTGTTGCCACCTATACGCAATTGTTTATTAAAAACACAGGACTCTGCTAAGTGGAAACACAATGTATAGAGTCTTACATCTGCCCAGTACTGGACATCGTATTATGGGTTTCTGTCACTTTTCCCTAGGGAATAAAACTAGATAGGTCAGTTATTATAAGTAAATTCTTGGAGATTTCCTGATTCCGAAAGCTGCCGGTGCACTTGGCCACCTTC +>GL945483.1/1284982-1284843 Serpula lacrymans var. lacrymans S7.3 unplaced genomic scaffold SERLA73scaffold_10, whole genome shotgun sequence. +GGCCGACTAGCTCAGTTGGTTAGAGCGTCGTGCTAATAACCTAGGCACAATGGATCAGACCACCATGCATTTGCATGGTGGTCTGATCGCTGGCCTTGTGTCATACGCGAAGGTCTTGGGTTCGATCCCCACGTTGGCCA +>URS0000D6AED6_12908/1-65 unclassified sequences c-di-GMP-II-GAG riboswitch +CGGGAAGCUCUGACACGCGGUCCCGGCCGCCGGGACCGCGCCGAGCCACUGGCGAGACCGACCCG +>ALWT01224760.1/3828-4038 Myotis davidii contig224760, whole genome shotgun sequence. +ATCGCTTCTCTGCCTTTTGGCTAAGATCAAGTGTAGTACAAGTTCTGGTACATAGTAGGGTTCTGCAAGATAGCAGTGGCCATTACTATTATTATGATTAATCATGACCATTGCTATTAAGTTTTCATTGCAAAGTAATGGTATTAGGTGATGAGGAAAGGTGTGTATCTGGTGTGGGAAATGGGTGGGACTTACATTTATTATATGCCTA +>KV453843.1/252671-252748 Tortispora caseinolytica NRRL Y-17796 unplaced genomic scaffold CANCAscaffold_3, whole genome shotgun sequence. +GACAGTGATGAAAAAAATTACTCACAGACCTGTACTGAACATTTCATGTGGATAAAGCAATATTGCCTTTTTCTGAGT +>ABCM01000001.1/368790-368897 Pedobacter sp. BAL39 1103467000516, whole genome shotgun sequence. +TACTTATAAAGAAAGACTGAGGGAAAGGCCCTGTAACGTCTTAGCAACCTGTACTAGCCGGAAGTAAAAGGTGCTAATTCCTACTCTGTAGAAAGAGAAAGATAAGTT +>CP002512.1/771378-771640 Aerococcus urinae ACS-120-V-Col10a, complete genome. +ACACACCCATTGATAGGGAGAGTAAGTGTTAAACACTTTGAAGAGAGGTTCCGTTTGGTGAGAGGAACCAAGTGAAAGGCGCTGAAGATGGCCTTTGAGGGTATCTTGTCAATAAGTAGACAAGGTCGGCTGGGCTCGGTCGATAGAAAGAGCGCTAGTCTAGGCATTATCGCCTATGGCTAGGTCGAGGGAGTAGCTACTACTATACTTATTAACAGTAGTACTCTGAACAAAAGGTGGTAACACGATGCGTCGTCCTTTAC +>CP017623.1/2830701-2830798 Candida albicans SC5314 chromosome 1 sequence. +TTGGCTATGATTATTTGCATTATATTACCAATTGTTCCAACTGAATATCCCGGGTTGACAACCGCATTATCGTTAAGTTTCAGCCTTGTCTGAGCCTT +>ALWZ041464526.1/1-432 Picea glauca, whole genome shotgun sequence. +ATAACCGTAGTAATTCTAGAGCTAATACCTGCACCAAGTCCTGAATATTTGGAAGGGATGCATTTATTAGATAAAAGGCCGGTGTGGGCTTGCCTGCTTCTCCAGTGAATCATGATAACTCGACGGATCGCACAGCCATTGTGCTGGCGATGCTTCATTCAAATTTCTTCCCTATCAACTTTAGATGGTAGGATAGAGGCCTACCATGGTGGTGACGGGTGATGGAGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAATGGATACCACATCCAAGGAAGGCAGCAGGCGTGCAAATTACCCAATCCTGACATGGGGAGGTAGTGACAATAAATAACAATACTAGGCTCATCGAGTCTGGTAATTGGAATGAGTACAATCTAAATCCCTTAACGAGGATCCATTGGAGGGTTCACTGTCCCCTCCTCT +>ABDH01025731.1/1497-1292 Termite gut metagenome tgut2b_Contig26382, whole genome shotgun sequence. +TCCATCGTGAGGTGGAATCTGAAGGAAGCCGGAGGCAAAGTCCCGGGCCGACGAACAGAAACCGCATATAAGGCAATGCAAGGCGGACGAGTTTGCATAACAAAACGAAGTCCAAAAAGGCCGGGGAGGAAGAAAACAGACTCCGGTTTTACTGCCCGAACCTTGCAGTGTAGATGCGGCGGCTATATGGGATGAAGGTTATCAGC +>AFFK01018367.1/6133-5846 Strigamia maritima strain Brora ctg7180001228879, whole genome shotgun sequence. +AGGCGTGTGTCTGAGACACATCTGAACATTGATCGCTGTTATTAGGCAGATCTGCTCAGAGGTAGTGTCCCTTAACCACACAAGACCATATTGAGTCGGTATTCCCGCTGCCACAGTACGCACGGTACGAGTACCTTCTCACACAGTTGCGCCCCAAGCGCATATCAGGGTATAAATCTGGCCGTTCTCCTAGCTTAGCTGTTTCAAAATTGGGGAAGTTTGCTAGCATCTTCCATGATTTAAGACGCCACCAATAAAGGCGCTGAGTGTGTCAGCCTGCCTTTTAAT +>CCCW010037878.1/9850-6604 Brassica napus, WGS project CCCW01000000 data, contig: 6310 +TCTTTTCAAGTTTCATGTGATCAAAACTCAACATTCCTCCAAATACGTATTCTCCCAAAAGCTTGGTTTCAGATTCTGACTTTTACACTCTTGACAATTTTATTCCGAAGGGCGGGGTAATACAGACTGGGCCCTAGTTCCCTGGAAAGGGCGCCATTGAGGGTTAGAGCCCCGTCGTGCCTGGACCCTGTCGCACCACGAGGAGCTGTCGACGAGTCCAAGTCTGCCGATCGGGCGGTAAATTCCGTCCAAGGCTAAATATGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGTAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGATGGGGGCCGGCGATGCGTCCCGGTCAGATGCGGAATGGAGCAATCCGGTCTGCCGATCGATTCGGGGCATGGACCTACGCAGATTAAGGTGGTGACCTAAGCCCGAGCCTTTTTTACGCCCGCGGAGACGTCGTTGCCTTAATTGTGGTCTGCAGCACGTGCCTCACAGCGTGCCTCGGCATCTGCATGCTCAGGGCGTCGGCCTGTGGGCTCCCCATTCGACCCGTCTTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGTGAGTAAACCCATAAGGCGCAAGGAAGCTGATTGGCTGGATCCCTCACGGGTGCACAGCCAACCGACCTTGATCTTCTGAGAAGGGTTCGAGTGTGACCATGCCTGTCGGGACCCGAAACGTAGTGAACTATGCCTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCGATACTGACGTGCAAATCGTTCGTCTGACTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCTCGGAAACGAGTTCTATCGGGTAAAGCCAATGATTAGAGCCATCGGGGATGCAACATCCTCGACCTATTCTCAAACTTTAAATAGGTAGAGCCATCGGGGACGCAACATCCTCGACCTATTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGGAAGCCGGTTACGGTGCCCAACTGCGCGCTAACCTAGAACCCACAAAGGGTGTTGGTCGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCCCTAAGGAGTGTGTAACAACTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTGAAGCGTGCAACCTTTACCCGGCCGCCAGGCCTCGATGAGTAGGAGGGCGCGGCGGTCGCTGCAAAACCTAGGGCACAAGACAAGGCAGAGCGGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGAGTCGGGGGAAACCCGTCTGATAGCGCTTATGCGCGAACTTCGAAAGGGGATCCGATTACAATTCCGGAACCGGGACGTGGTGGTTGACGGCAACGTTAGGGAGTCCGGAGACGTCGGCGGGAATTCCGGAAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCCTGGAAACGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGCACGTCGCGTGGTGTCCGGTGCATTCCCGGCGGCCCTTGAAAATCCGGAGGACCGAGTGCCGCTCACGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGTCGATGGAACAATGTAGGCAAGGGAAGTCGGCAAAATGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGGCTGGGCTCGGGGGTCCCAGTTCCGAACCCGTCGACTGTTGGCGGGCTGCTTGAGCCGCTAACGTGGCGAGAGTGGACCTCCTCGTGTCAACCGGGGGACGGACTGGGAATGGCTCTTTCGGGAGCTTTCCCCGGGCGTCGAACAGCCAACTCAGAACTGGTACAGACAAGGGGAATCTGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTAACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGCGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTACCACAGCCAAGGGAACGGGGTTGGTAGAATCAGCGGGGAAAGAAGACCCAACTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAGGTGTAGAATAAGTGGGAGCTCCGGCGCAAGTGAAATACCACTACTTTTAACGTTATTTTACTTACTCCGTGAATCGGAGGCGGGGTAACAACCCCTTCTTTTAGACCCAAGACTCGCTTCGGCGGGTCGATCCGGGTGGAGGACATTGTCAGGTGGGGAGTTTTGCTGGGGCGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCAGTATGAATACGAACCGTGAAAGCGTGGCCTATCGATCCTTTAGACCTTCGGAATTTGAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCACTGTGAGACAGAATTCAACAAGTGTTGGATTGTTCACCCACCAATTGGGAACATGAGCTGGGTTTAAACCGTCGTAAGACAGGTTAGTTTTACCATATTGATGCCCATCTCGCAATAGTAATTCAACCTTGTACGATAGGAACCGTTGATTTGCACAATTTGTCCTCGCGCTTGGTTGAAAAGCCAGTGGCGCAAAGCTGCCACTAAGTCAGAATCCGGGCTAGAAGCGACGCATGCGCCCGCCGCCCGATTGCCGACCCTCAGTAGGAGCTTCGGCTCCCAAAGGCACGTGTCGTTGGCTAAGTCCGTTCGGCTGAAGCGCCGTTCGGACCGCCTTAATTTATAATTACCACCGAGCGGCGGGTAGAATCCTTTGCAAACGACTTAAATACACGACGGTGTATTGTAAGTGGCAGAGTGGCTGATGTGCCCCAGTCCATGGACCAGACCGATCAGAACGTTCTAGACGTCCCA +>ACJG01006097.1/11398-11489 Daphnia pulex DAPPUscaffold_154_Cont6097, whole genome shotgun sequence. +GCCTGGCTAGCTCAGTCGGTAGAGCATGAGACTCTTAATCTCTCGCATGAGAATCTTAATCAGGGTCGGGGGTTCGAGCCCCCCGTTTGGCG +>CM000231.2/255777208-255777080 Rattus norvegicus chromosome 1, whole genome shotgun sequence. +CAGCCTATTTCCAAGGATAGAGCTGGGTGTGGCTATGGGATCTCCAACTGCAGGCCAGAGTAATTGGAGAGACTTTAACAGCAGAGGTCAACACAGTGCCTGCGGCTGCCACTTGCTTTTCCTGTATGT +>CYZX01000011.1/96755-96903 Clostridium disporicum strain 2789STDY5834856 genome assembly, contig: SCcontig000011 +AACTAAATCAAAGATTTAGGATCTCACTTAAGTTGACGAGGATGGGGAGTATCGAATTCTTCGGCGGGTGCCCCACGGTATCGCACTACCGTTAACAGTTAGTAAATCTATGAAGTGATTTGTAGGACAACACTAACTTGGTGTTAAAA +>KN838613.1/75725-74394 Laccaria amethystina LaAM-08-1 unplaced genomic scaffold K443scaffold_78, whole genome shotgun sequence. +TACCTAACAGAATTTACAGGTATTCAAGTAGCGTTGATTCAGTCAGATGGTTGGGGTTTGGTATGTCGGCTGGACCGATTCACCATGGTCGTGGCTTTGTATGTCAGCTGGGCTGATCATCACACATGCATACTAGGTCTTATTAGGAGTTATATGTGGTATACTACATTCCAAATGACCGGAAACTGGCCTGGGTGAATAACTTTTCTACCTGGCATAAGTCTGGCGCGGCCTCTGGAAGGGCCTGAATTCCCCTGGTAACAGACGGAAATGTCTGAATTCAGAGGGGACACCTCATGTAGCCAGGTACGAAATCTTGGTGTCTGTCGTACCTGATTCATCTTGTACCAGGTAAGCCAGACACGTGCACATTTCCTGATGCTCTTGGTGAGCCGGCGTGCCCTTTATTGGTGTGTGTTGGGGAACCAGGACTTTTACCTTGAGAAAATTAGAGTGTTCAAAGCAGGCATTTGCCCGAATACATTAGCATGGAATAATAAAATAGGACGTGTGGTTCTATTTTGTTGGTTTCTAGAGTCGCCGTAATGATTAATAGGGATAGTTGGGGGCATTGGTATTGAGTCGCTAGAGGTGAAATTCTTGGATTGACTCAAGACCGACTATTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACAAAGGTTAGGGGATCGAAAATGATCAGATACCGTTGTAGTCTTAACAGTAAACTATGCCGACTAGGGATCGGGCGACCTCAATTATGATGTGTCGCTCGGCACCTTACGAGAAATCAAAGTCTTTGGGTTCTGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGATGGAAGGGCACCACCAGGTGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACATAACTAGGATTGACAGATTGATAGCTCTTTCATGATTTTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGATAACGAACGAGACCTTAACCTGCTAAATAGCCAGGCCGGCTTTCGCTGGTCGCCGGCTTCTTAGAGGGACTGTCAGCGTCTAGCTGACGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACAGAGCCAGCGAGTTTTTTTTCCTTGGCCGGAAGGTCTGGGTAATCTTGTGAAACTCTGTCGTGCTGGGGATAGAGCATTGCAATTATTGCTCTTCAACGAGGAATACCTAGTAAGCGTGAGTCATCAGCTCGCGTTGATTACGTCCCTGCCCCAACCGACCACTC +>AFEW01015811.1/2627-2450 Jatropha curcas cultivar GZQX0401 scaffold191_29, whole genome shotgun sequence. +TGTCATGTTTTTCCACAGCTTTCTTGAACTTCTTTTTTCTTTTCTTTAATTTTTTCTTTCAAGAATCTCCCTCATTTTAATATGTATGAAAGAGATTCTTAAATGGAAGAATTAAAGAGGAGGAAATGTATACGTGTATTGTATAGGAGTTCAAGAAAGCTGTGGGAGAACATGGCAG +>JH226135.1/756984-757073 Exophiala dermatitidis NIH/UT8656 unplaced genomic scaffold supercont1.6, whole genome shotgun sequence. +GCTCTCTTAGCTCAGTGGTAGCAGCGCCACACTAGTAGTTCCTAACATTACGAGATGTGGAGGTCACAGGTTCAAGTCCTGTAGGGAGCA +>AZGY01000051.1/130-3252 Aschersonia aleyrodis RCEF 2490 scaffold_51, whole genome shotgun sequence. +TACCTGGTTGATTCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTGAGTATAAGCAATTATACAGCGAAACTGCGAATGGCTCATTATATAAGTTATCGTTTATTTGATAGTACCTTGCTACTTGGATAACCGTGGTAATTCTAGAGCTAATACATGCTAAAAATCCCGACTCCGGAAGGGATGTATTTATTAGATTAAAAGCCAATGCCCTCTGGGCTCTCTGGTGATTCATGATAACTTCTCGAATCGCACGGCCTTGCGCCGGCGATGGTTCATTCAAATTTCTTCCCTATCAACTTTCGATGTTTGGGTAGTGGCCAAACATGGTTGCAACGGGTAACGGAGGGTTAGGGCTCGACCCCGGAGAAGGAGCCTGAGAAACGGCTACTACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACTCGGGGAGGTAGTGACAATAAATACTGATACAGGGCCCTTTCGGGTCTTGTAATTGGAATGAGTACAATTTAAATCCCTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGTGGTTAAAAAGCTCGTAGTTGAACCTTGGGCCTGGCGGGCTGGTCCGCCTCACCGCGTGCACTAGTCCCGCCGGGCCTTTCCCTCTGCGGAGCCCCATGCCCTTCACTGGGCGTGGCGGGGAAGCAGGACGTTTACTTTGAAAAAATTAGAGTGCTCCAGGCAGGCGTATGCTCGAATACATTAGCATGGAATAATGAAATAGGACGCGCGGTTCTATTTTGTTGGTTTCTGGGACCGCCGTAATGATTAATAGGGACAGTCGGGGGCATCAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACAACTGCGAAAGCATCTGCCAAGGATGTTTTCATTAATCAGGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGACGATGTTATTCATTGACTCGTTCGGCACCTTACGAGAAATCAAAGTGCGTGGGCTCCAGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACCAGGGGTAAACGTGCACTGTCTAAGCCGCAGTCAACTCTGCTCCAGAAAGCCGCCCGAAAGGGTCGGTGGTCGCCCCCCAACGCTGGCTAGTCCCGTCCGCCACCGCGCGGCGGGGCAACACCCTCAAACTGCCGGGGAACTCCTAAAGCCCTCGCTCCGGACGGCGCTGGGAAACCAGCGTCCGCTCACCAGGTTAACGACCTCGGGCATCGGAAGCAACGCGGGGGATGCTACAATGGACGATCCGCAGCCAAGCCCCTACGTGCGACAGCATACGGGGAAGGTTCAGAGACTTGACGGGGGTGGGTCGGGGACGCATGTCGGGACGCCTGAAGGCGCTGGAACACCGGCACGAGGGCGCTGGAGTCTCGCCCGCGAGGGGCTGGCACCTCCGCCTGAAGAGCGCTGGGATCCCGGCGACCGAGACGCCCGCATCGCCCACCGGCTTGAGGTAAAGTCCGCTGTCGCGCCAAAAGCGCGCCCCATGCGATGGATCATCGCTCGGCAACCACAACGGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTTAACACAGCGGGCAACGCTTGTTGCGTGTCTGGGCCTGGAATAGTGAGAGCCCGCCAGGGGGCGGCCTCGCTAGTATTCGTCCTTAACCCGCGCGGGGGGAGCCCCCCTACTCTGGGCGCAGGGAGCGGTCGCGCTACGGCGCGCCGCTTGGGCGGTGCAACACCAGCTGGTACAGGGAACGCCGACTACCCCTCGGGGGGCAAGGGCCGATCCTGTGGCGAGTCCGGGCTGCGCCGGACCGTCGCAACGCACGCCAAGCGGTGGGCTGGCTCAGGCTGGCTTAAGGTACGTGCTAATCCCACGGGGCAACCGTGGCCGCCCTGAATAGTTCCGAGTTTTACGAAGCAGGGCGGGGGCGCACCTCCGGGTGCGCTCGTCCGAGTCCACAGCGGGCTCGAGTGCCAGACACAATGAGGATTGACAGATTGAGAGCTCTTTCTTGATTTTGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGCTTAATTGCGATAACGAACGAGACCTTAACCTGCTAAATAGCCCGTATTGCTCAGGCAGTACGCCGGCTTCTTAGAGGGACTATCGGCTCAAGCCGATGGAAGTTTGAGGCAATAACAGGTTGACCTACACAGGCCTGTAGTAGTGGCGCCTCCGGTGGGACAGAGGGAAGAAGACCGCTAGTCCAACAGCATAACCCCCGTGAAGGGAGCCCTTCGGAATCGGGCGGGGGGGCGGCCACTGCCCGTGGCCGCTCGCTGTGGGCGACACCACCTGGTACAGAAGACGCCCACGGGGCCAATTCTGTGGCGAGTCCGGGTTGCGCCGGACCGTCGCAACGCGCGCTAAGGGGTGGGCCGGCGTCCTCTGCGGAGGCCCGGCTTAAGGTACGTGCTAATCCCACGGGAAGGAGAAACCGTGCCGACACACAGAGCCCCGATCGGCGAAGTGTGCCGGGGCGTCCCTGCGCAGCGTCGCAGGGCGCCGGTCTCGGGGGCACACAGGCTGCTTCAGCATGTCCTGGCCCCCCGAGGAAATGCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACGGAGCCAGCGAGTACGCCCTTGGCCGGAAGGCCCGGGTAACCTTGTTAAACTCCGTCGTGCTGGGGATAGAGCATTGCAATTATTGCTCTTCAACGAGGAATCCCTAGTAAGCGCAAGTCATCAGCTTGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGAATGGCTCAGTGAGGCGTCCGGACTGGCCCAGCGAGGTGGGCAACCACCACGCAGGGCCGGAAAGCTCTCCAAACTCGGTCATTTAGAGGAAGTAAAAGTCGTAACAAGGTCTCCGTTGGTGAACCAGCGGAGGGATCATTA +>CP022437.1/2870568-2870713 Virgibacillus necropolis strain LMG 19488 chromosome, complete genome. +GTTACCTTTAATTCAGTCCTGTGAGACTGGCAAGGTGGAACAGATGAAGATCTGTTTTATAAATAAAACTCGGAAAGGTTTCTTCCTTTTGCGAGCCTTTTATTTGTACACTACACCTTGCCAGAATAGGCAAGGTGTTTTTTTGG +>GL385398.1/3795320-3795665 Gaeumannomyces graminis var. tritici R3-111a-1 unplaced genomic scaffold supercont2.4, whole genome shotgun sequence. +ACATACGACCATACCCACTGGAATATACGGGATCCCGTCCGCTCTCCCCTANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCAAACCAGTGAGGGCCGAACTAGTACTCAGGTGGGTGACCACTGGGGAATCCTCGGTGTTGTATGTT +>AFEY01233609.1/1-1134 Sarcophilus harrisii ctg7180001910850, whole genome shotgun sequence. +CCAGCCCCTGCCTCTCGGCGCCCCCTCGATGCTCTTAGCTGAGTGTCCCGCGGGGCCCGAAGCGTTTACTTTGAAAAAATTAGAGTGTTCAAAGCAGGCCCGAGTCGCCTGGATACCCCAGCTAGGAATAATGGAATAGGACCCCGGTTCTATTTTGTTGGTTTTCGGAACTGGGGCCATGATTAAGAGGGACGGCCGGGGGCATTCGTATTGTGCCGCTAGAGGTGAAATTCTTGGACCGGCGCAAGACGGACCAGAGCGAAAGCATTTGCCAAGAATGTTTTCATTAATCAAGAACGAAAGTCGGAGGTTCGAAGACGATCAGATACCGTCGTAGTTCCGACCATAAACGATGCCGACTAGCGATCCGGCGGCGTTATTCCCATGACCCGCCGGGCAGCTTCCGGGAAACCAAAGTCTTTGGGTTCCGGGGGGAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAACCTCACCCGGCCCGGACACGGAAAGGATTGACAGATTGATAGCTCTTTCTCGATTCTGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCTGGCATGCTAACTAGTTACGCGACCCCCGACGTGGTCGGCGTCCCAACTTCTTAGAGGGACAAGTGGCGTTCAGCCACCCGAGATTGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCGGGGCTGCACGCGCGCTACACTGACTGGCTCAGCGTGTGCCTACCCTACGCCGGCAGGCGCGGGTAACCCGTTGAACCCCATTCGTGATGGGGATCGGGGATTGCAATTATTCCCCATGAACGAGGAATTCCCAGTAAGTGCGGGTCATAAGCTTGCGTTGATTAAGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGGATGGTTTAGTGAGGTCCTCGGATCGGCCCCGCCGGGGTCGGCCCACGGCCCTGGCGGAGCGCTGAGAAGACGGTCGAACTTGACTATCTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTA +>MEQV01000070.1/1472-1355 Betaproteobacteria bacterium RIFCSPLOWO2_02_FULL_62_17 rifcsplowo2_02_scaffold_16404, whole genome shotgun sequence. +TAGCGGGTTGAAGTCCCGTCCGGGGAGTTGTCCGTACGCCCCGGTAGCTGAGGAAGCGGCGCCGTGGCAACACGGGGTCGTGAGTTTGCAAACAGCAAGAGAGCAGGCCGTAACGCAA +>GG738884.1/92380-92084 Naegleria gruberi genomic scaffold NAEGRscaffold_40, whole genome shotgun sequence. +CTGGGCTACTGTAGGGAGGTAGCTGTTATGGTTCTCTGCCACAGCGTCAGGCAAAGGGATGGTTCTTCAGACTCATTCCTTTGTTAGCAATATGGTGACGATGTTCTGTCTGACCAATAGCGGTGTGACCATAGTATCTCCCCATGAATAAGGAGAAACTAGGGTCCTAATGAAAGGTGAACCGGTTGAGGCAGGATAACTGAGCAAATCATAGCCTTCACACTGTAGGATGGTCAGATTGCAGAACTGAGCATGAGCTATCAGAGAGTGAAATCTGGGAGTCAGACTAATGTTTTT +>GL349550.1/1-552 Thecamonas trahens ATCC 50062 unplaced genomic scaffold supercont1.118, whole genome shotgun sequence. +TTTTGATTCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGCGTCGGATTGTTCACCCGCAAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACCGATGGAGCGTTATTGGGCAAGTAGAGCAACTCAGTACGAGAGGAACCGTTGTTCGACAGAATTGGTCTTGCGGTTGGTCGAGGGGCCACGCCGCGCAGCTACCCTGTCTAGGATTACGGCTGAACGCCTCTAAGCCGGAAACCATGCTTAGGCAAGCAGTAACGGGAAACTGGATGCAAGTGGCGAGCGGCGCAGAAGCGCAGAGTAGGGCAGTGCAAGCTGTCGGCAACGCGGGGGGGAGACTCGGTCCTTGCCTTTTTCATGAAGCTGTGGGGCAAGGGCTGGTCTTTGAGATGTGGAGTACGCGGTAGTCACTTGCGTGGATCCTCTGTAGATGACTTTGTTCGCATGGGGAGTTGTAGGAAGCTGAGTGGCCGAGTTTGCCACGAACTTTTGAGACCTTGCCCTATCTTTTTAGAGT +>MJEQ01002762.1/109736-109880 Nicotiana attenuata strain UT scaffold02762, whole genome shotgun sequence. +AAAATAAGTGCCTCTTAGAAAGCCTCGGATGATGCCTACAATACCATTTTGTAGGATCATAAGCCTTTTAATTTGAAGTTTAAAACCCTACATAAATTAAGGTTTTAGGCAAGTCATCCTTGGCTATCAAAGCAAGCTCTTTATT +>FAOM01049750.1/126257-125942 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_049750_1BS +TTTTTTTTAAATGTGCCATGTCATGCACATGTATTTTGTAAAAAAGAATGTCAGCATTAAAAATGCAATGTGTGTGATGCCTTGAACGTGATTATAAAAACACTATTGTTACTGACATGTGGTGACGGGTGACGGAGAATTAGGGTTCGATTCCAGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAAAAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACACGGGAAGGTAGTGACAATAAATAACAATACCGGGCGCATTAGTGTCTGGTAATTGGAATGAGTATAATCTAAATCCCTACATCATCATAA +>AFYH01012672.1/16268-15971 Latimeria chalumnae contig012672, whole genome shotgun sequence. +ACTCAATCTGTTATCATTTTTTCACTTACTTGGTGAGCCAAGTCCCAAGGGGCTCTCAATTCTGGTAACAAGTGCCTGGCTCAGCAGGGTGCGGCCCACTCCAGGGACAGTAGCAGGCGGAGAGTTTCACCAGGGCAGTACATCTGTCAAACAATAACACAGGTGTCCTAAAGCAAGTTCAGGGAGGACAGAAACCTCCCGTGGAGTAGAGGGTTTTGCCTCTGAGTCGGAGGGTTGCAGGTTCAAATCCACCTGGGGACCTTGGGATCTGTCAACTCCCCAGTATGGTATCTGGGGG +>KB846873.1/2237147-2237221 Nelumbo nucifera unplaced genomic scaffold scaffold00090, whole genome shotgun sequence +GTCTTACACTTGATCTCTAAGGTAAGTTCATGTGTTGACAAGTACATAGAATAGAAAAAGCTCTGAAAGGTTGCT +>LKHD01000187.1/27860-29827 Candidate division Hyd24-12 bacterium Vib_1 contig65, whole genome shotgun sequence. +AATGAAGCTACCAAGGGCATACGGTGGATGCCTTGGCACAGGCAGGCGATGAAGGACGTGGTAAGCTGCGATAAGCTCCGGTGAGGTGCAAGCAACCTTTGACCCGGAGATCTCCGAATGGGAAAACCCACCTGGAATAAAAGACCAGGTATCTCCTTACTGAACACATAGGTTTGGAGAGGCTAACCCGGGGAACTGAAACATCTTAGTACCCGGAGGAAGAGAAAGCGAAAGCGATTCCCTGAGTAGAGGCGATCGAAACGGGAAGAGTCTAAACCGAGCGGTGCGTGATAGCTGCGCAAGCGTTGCACCGCCGGGGTAGAGGGAAGTGTCCGGAGGATGCGTCACCTCGGATCGAAAAGCATGCTAGCAGAAGCTTCTGGAAAGTTGCTCCAAAGAGGGTGAAAGGCCCGTACGCGAAAGCATGCTCTGGATCTGGGACACTCTCCCAAGTAGCACGGGGCACGTGAAATCCTGTGTGAATCCGGGCGGACCACCGCCTAAGACTAAACACTCGCCTGTGACCGATAGTGAACTAGTACCGTGAGGGAAAGGTGAAAAGCACCCCTGGCGGGGAGTGAAATAGTACCTGAAACCGTGTGCCTACAAGCAGTCGGAGCAGACTTGTTCTGTGACGGCGTGCCTTTTGCATAATGAGCCGGGGAGTTGCTCGTACGTAGCGAGGTTAAGGCCGGGAGGCCGGAGCCGCAGGGAAACCGAGTCTGAACAGGGCGATTCAGTTGCGTACGGCAGACCCGAAGCCAGGTGATCTATCCATGGCCAGGCTGAAACTTGGGTAAAACCAAGCGGAGGGCCGAACCCACTAACGTTGAAAAGTTAGGGGATGAGCTGTGGATAGGGGTGAAAGGCCAAACAAACCTGGAGATAGCTGGTTCTCCTCGAAATAGCTCTAGGGCTAGCGTCGATGCAGTGTTCCGGAGGTAGAGCACTGGATGGGTTAAGGGGCCTACAAGCTTACTGACCCCAACCAAACTCCGAATGCCGGAACATGGTCTACGGCAGTCAGGCCGCGGGGGCTAAGCTCCACGGCCGAGAGGGAAACAACCCAGACCGCCGGCTAAGGTCCCCAAGCATACGTTAAGTGTATCTAAGGAAGTGGAGTTGCTTAGACAACTGGGATGTTGGCTTAGAAGCAGCCATTCATTTAAAGAGTGCGTAACAGCTCACCAGTCAATGCGATTCTGCGCCGATAATAATCGGGGCTCAAACGTATCACCGAAGCCGCGGACTGTCGCCTTGAGCGACAGTGGTAGAGGAGCGTTCCGTATGCGCTGAAGGTGTCCTGTGAGGGATGCTGGAGTGTACGGAAGTGATCATCCCGGCATGAGTAGCGATAATGCAGGTGAGAAACCTGCACACCGAAAGCCTAAGGTTTCCTGGGCAAGGCTGATCCTCCCAGGGTAAGTCGGGTCCTAAGCACAGGCCGAAAGGCGTAAGCGATGGGAAGCAGGTGAATATTCCTGCACCATTGTGTGTGCGTTCGAGCGATGGGGTGACGCGGAAGGTAGGGCCATCCGGGTGATGGATGTCCCGGTTTGCACCTGTAGGAGGGAGCGGCAGGCAAATCCACCGCTCCAACTCCGAGGGGTGTGACGAGAGCTTCGGCTCGCAAAGTGGTCGTGTCCATGCCGCCNNATCCTCAGGTGTTCGAGCTAACCCGGGTTAAGGAACTAGGCAAAATGGTCCCGTAACTTAGGGATAAGGGACGCCCGGTCTGGTGACGGTGTACAACCTGAGCCGGGCTGGGCCGCAGAGAAATGGCCTGGGCGACTGTTTACTAAAAACACACGTCTCTGCCAAGTCGTAAGACGACGTATAGGGACTGACACCTGCCCGGTGCTGGAGCGTTAAGGGGAGAGGTCAGAATACGCCTAACCGTGTATTCGAAGCTTTGAACCGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGA +>AMYB01000001.1/3357429-3357616 Mucor circinelloides f. lusitanicus CBS 277.49 MUCCIscaffold_01, whole genome shotgun sequence. +CGTATCTGCCTTAGATCCTTTGTCAAGGTTTTGATGTTTATCATCCTAATCTACAGAGCTTATGTTTTGCTTTTCGTTGACAAAGCTTGAGTCATTCAGATACAAGATTACCTATACCTCCATCTCGGTCCAGTTTTATGGCTTCTTGGCTGTCTGTACTCTGTAGATTTTGCTTATATGGATACTTG +>BBIW01000001.1/9239-9376 Paenibacillus sp. TCA20 DNA, contig: PspTCA2nb01. +GACTGATAACTGCCGAATTCTCGCACCAAGAAGCGGGGGACCCGACCATTTATGGGTGAATTGATCAATATTAAAGTGATCATAGGGAACCTTCAACCGAATCCTTAGCTAACCTCGCAGGCATTGGAAGGAGTATTA +>ALWS01013471.1/7379-7260 Pteropus alecto contig13471, whole genome shotgun sequence. +TCATACGGATAACTTCCAATTAAAATTCAGGACTACAGCCTGATCTCAGAAGCTAAGCAGGGTTGGGCCTGGCTATTACTTGGATAGGCGACCACCTAGGAAGACCAGGTGCTATAGGTG +>LOER01000038.1/6182-6000 Desulfitibacter sp. BRH_c19 BRHa_1005201, whole genome shotgun sequence. +ATAATCCTGCTAAGTTCGTGTTAGGGCCGGTTATTTTGAAACCAACACTAAAACATTGGGAATTCGGTGTCTGGTTGAGTATGAAAAGCCTTCTGGGAAAGGAATTCAAAACCAACTAGCAGAGTACCCACCTGCGTAGGCAGGTTTCTCAAAATTCCGGCAAACGGCTAGAGCGGGAGATGC +>GL378346.1/56514-56307 Volvox carteri f. nagariensis unplaced genomic scaffold VOLCAscaffold_25, whole genome shotgun sequence. +TGCATTCACCGTTTTCGAAAACTCGCAGGCCGACAGCCCCAAGCAGGCCATCAGCAATGCGAACATTGTTCACGACTAAAATATCTGCCCTATCCACTTTCAATGGGAGGATTGAGACCTACCATGGTGGTAGCGCGTGACGGAGGACTAGGGTTCAATACCGGAGAGGGAGCTAGAGAAATGGCGAACACAACCAAGGAAGGCCGCA +>CM000392.2/29331781-29331980 Equus caballus chromosome 16, whole genome shotgun sequence. +AAGGACGGAAACAGTGTCTTCTGCTTGATCCAGAAAGACGTTCCTCATAAAAGTCCGTAGAAAATTAAAATCTTCCACAAGAAGGAGGGGCGGCGTTCTCTCCTGAGTGTGAAGCCAGCTCTTGGTGTTGCTTCACTGCAACTGCCATTTGCCATTCATGGTCTTGGGGAATAAGAGAGAGAGGACAGAGTCTGAGTGAT +>MNYG01000183.1/3075-2991 Deltaproteobacteria bacterium CG2_30_63_29 cg2_3.0_scaffold_12261_c, whole genome shotgun sequence. +CTTGCCCTCCGCCACGACCAGCAAACAGAAGACGGCGCCGAATTCGGCGCCGTCTTCTGTTTGCTGGCTGACGCGGCACGTCAGC +>LJSX01000027.1/46243-46357 Rhizobiales bacterium HL-109 ITZY_scaf_197, whole genome shotgun sequence. +CACTCTGGAAAGAGGCAGGTCGAGACAGGCCTGCCCACCGAAGGGCGTAACTCGGCAGTTTCGAAACCTGGTTTCGAGGGTTCCGAGGAAATCTCTCAGGTTACGGGACAGAGGG +>KL543181.1/848-2043 Capsicum annuum cultivar Zunla-1 unplaced genomic scaffold scaffold24819, whole genome shotgun sequence +CGACCCCAGATCAGGATGGATTACCCGCTCAGTTTAAGACTATCAATAAATGGAGGAAAATAAACTTACAAGGATTCCCTCAGTAACGAAAAGCAAACCAAGAATAGCCAACCTTAGAATTGAGCGGCTTCATCATCCGAATTATAGTCTGGAGAAGCTTCCTCAGTGGCAGACCGGCCCAAGTCCCCTGGAAGGGGTGCTAGAGAGGGTGAGAGCCCCATTGTGCTCGGACCCTATCGCACCACAAGGCGCTATCTATGAGTCGAGTTGTTTGGGAATGCAGCCCAAATCGGGCGGTGAATTCCGCCCAAGGCTAAATACGAGCGAGAGGCCGATAATGAACAAGTACCGTGAGGTAAAGATGAAACTGAATTTGAAGAAAGAGTCAAAGAGTGCTTGAAATTATTGGGAGGGAAGCGGATGGGAGACGATGATATGCCCCAGTCAGATGTGGAACGGAGATGAGCCGGTTCGTCGTTCGACTCAGGGTGTGGACCAGCATGGATTGGGGGAGGCCAAAGCCCGAGCTCTTGGTACGCTCGTGGAATGCCGTCTCCTCAATTGTGGCAGGTAGTGCGTGCCTCCGATGTGCTTCAACATCTGCGCACTTTGGATGCTGGCCTGTGGGCTCCCCATTCAACCCGTCTTGAAACACAGACCAAGGATTCTGACATGTGTGCGATTCAATGTTCGAGTAAACCCATAAGACGCAAGGAAGATGATTGGTGGGATCCCCCTGAGGGGTGCATCGCCGACCGACCTTGATCTTCTGAGAATGGTTCTAGTGTGAGCATACTTATCGGGACCCAAAAGATGGTGAACTAGGCCTGAGCTGGGCGAAGCCATAGGAAACTTTGGTGGAGGCCCACAGTGATATTGACGTGTAAATCGTTCGTCTGACTTGCGTGCACCACATGCTAAGTGCACGGATTCACCAATGAACCATGGGCAAAATGGCCACTAAGGATTATGTGCTTGGCACCCGTATGCCCGTGCACCCACTGTGAGCACACTATGTATTCGGCACTCGCACACCACAACACCAATAAAACACCATGCCACATGCCCCAAAATGGATCGGCGACCCCTGCACCATGCAAAAATAAAAGGAACATAAACATGTGAGGGTTCATAACTAGTAACTTCGACAATTACAAAATAAATGCTTCCACCAAGGTTCGTTCATCCTAATACTT +>LQOK01000039.1/11515-11571 Mycobacterium bohemicum strain DSM 44277 contig_44, whole genome shotgun sequence. +CCGGGCCCGGTTCCCGCTGGCCGACCAGGTGCAGCTTGCTGCCCGCGACCCGGCCCC +>CP010951.1/2115046-2114927 Ramlibacter tataouinensis strain 5-10, complete genome. +GCCGCTGCTCCGGGGTGCGAGCGGCCCTTCGAAAGAAGGCCGGTATCGCTGAGATGGTGAGTCCAAACCCGTGAACTTGAACCGGTTCGTACCGGCGTAAGAAGAGCTGACAGTGTCCCT +>JH835735.1/956530-956203 Erinaceus europaeus unplaced genomic scaffold scaffold00447, whole genome shotgun sequence +GGATGTGAGGGCACTCTGGCTGCGACATCTGTCCTCCCATTGATCGCCAGTGTTGATTCGGCTGATCTGGCTGGCTAGGTGGGTGTCCCCTTCCTCCCTCACTGCTCCATGTGTGTCGGTCCCGAAGCTGCGCGCTCGGTCGAAGAGAAAGAGGACAGCCTTCCCCGAATAGAGACAGACCGCTCTTCAGTTATACGAGTTATACGAGTAGCTGCACTCCCCTGCTAGAACCTCCAAACAAGCTCTCGAGAAACCTTGGGGCCTGGCGGTGGTGCACCCAATAAAGGACACATGACACAGTGTGCAAAGAACCTGGTTTGAGCTCCTG +>CP000517.1/489591-489403 Lactobacillus helveticus DPC 4571, complete genome. +TTGGATTTAGTATAATTTTATCCGTAGAAAAGCTGAAGCGGTGGCTATCCCTCAAGGAGATGGTACTTATGAGTATTTTTTAACTCGTATTCCTATCTTAAAAGAAAGGAGAAGCCCTCGTGTCTGTATCAGATGCGTTACAGCTAATACTAGATTTCGGCTCATTTGTCGTTATACTAATCTCATTAA +>CM000798.1/58059981-58060079 Oryctolagus cuniculus chromosome 9, whole genome shotgun sequence. +ATCACATCTTAGCCTTTTGGCTAAGATCAAGTGAGGAATTTTTCAGATTTAATTTTCATTACTACTATAAGTAGTAAAACTATTAAACTTGTAGCCTTC +>LM151543.1/11334-11803 Schistosoma mattheei strain Denwood, Zambia genome assembly, scaffold: SMTD_scaffold0002192 +ATGTTAGTAGTACAAAATAAGATGACGAATTCCCAACTGTTATTCAGGCTTGACTACTCGTATGATCCCTCGTTCAATAACTTATCGTCATTAAGTGTTAAATTTTCATCGATCTGTAAGCATCTGCTACGAAACCAGTATTTTTTTAGTGAAGTATAGTTTCGAATTGTTGTATTGTGCGGTTTGGGATACGCTGTTTATTTCATTTATTTATTTGAACACATAAATATTAGTTTAAAAGGGTACCGAATACATATGCGCCACACAAGTCAATTGATTTGTGTGTGAGCTGTGATACTACCCAGGTGCTCAGACCGAATGTTTTCATTGATCAGGAGCAAAAGTCCGAGTTTCGAAGACGACCAGATACCGTCGTAGTTGTGACCATAAACGATGCAAACTGACGATCAGCGTTTGTTCTATGATTGACATCGCGGGCAGTCCCCGGGAAACCTTTAAGTCTCTGGGCT +>EU622808.1/288-49 Bacillus phage Nf, complete genome. +CAAGGTGCAACACTTCCTATAGTATGGCACATGATTGGGGTATATCCTGATTGAGTTCAGCCCACATGTCACGGGGATTGATAACCCTCTTACTAAAAGTGATTGTTTCTTTGTCCTTTGTAACAATGCCACTGACGAAACGTTAAAGCGTGGGTTTCAGTGGTATTTTAATTTGTTCACAGATGTAGTAAATTATAGGTACATAGATGTATAAATATGCAGTTACAACCCTGCCCTAAT +>FR853100.2/134335079-134334871 Gorilla gorilla gorilla genomic chromosome, chr7, whole genome shotgun sequence +GCTGGGTGTGGTGACACGCGCCTGTAGCCCCAGCTACTTGGAAGGCTGAGGTGGGAGAATTGCTTGAACCTGGGAGGGAGAGATTGCAGTGAGCCAAGATTGTGCCACTGCACTCCAGCCTGNNNNNNNNNNCAGGCTGGAGTGCAGTGGCACAATCTCGGCTCACTGCAACCTCTGCCTCCTGGGCTCAAGCAATTCTCCTGCCTCAG +>CM000316.3/76140660-76140798 Pan troglodytes isolate Yerkes chimp pedigree #C0471 (Clint) chromosome 2B, whole genome shotgun sequence. +TTATCAGCTTGGGATAATCTTTACCTGTTCCTTCTTTTGGAGGGCCAAATTAAGGACATGATTGGCGGTCTCACATCAGTATGCGATTAACGTCTCTGAGTAGATCAGGAACTTCCAGTACCCTATTGTGCTATCTGAT +>KE713303.1/22354-22189 Biomphalaria glabrata isolate BB02 unplaced genomic scaffold LGUN_random_Scaffold3540, whole genome shotgun sequence. +ATACTTACCTGGCATAGGCGGACAATGATCACAAAGGTTGTCCTCCCAGGTCGAGGCTCGTCCATTGCACTTAGGGCGGGCTGAAGCCTGCGACCACCCTTATCTTTTTTTATTCAAATTAAAAGCGCTTTTTTTTAATAATGATATCTTTTGAATGTAAATTTGC +>CM001013.2/117960327-117960221 Mus musculus chromosome X, GRC primary reference assembly. +GATGCAGTCCCGGGCACCATCTTGGGACTGCTGCTGTAAGACCCCCTTTCGGGGACCCCCACTCTAGTATTGGGAGTGAGAGAGCACTCAAAGAAACATGAGAATCC +>MHZW01000213.1/12164-11957 Rhodocyclales bacterium GWA2_65_20 gwa2_scaffold_6804, whole genome shotgun sequence. +ATGAATACAACAGACAGCGGCCCGGCTATAATCCGCCCCGATTCGGCCAAGAGAACACGGTGCAAATCCGTGGCGGGCCCGCCGCTGTAACCGGGGACGAACGCCGCCTGTCGCGAGACGGCCACTGCCGGGGACCACCCTGGCGGGAAGGCGCGGCGCTTCGGACGATCCGGGAGCCAGAAGACCTGTCGAGTCCTTTTCTCGAAAC +>LMSD01000007.1/142068-141895 Paenibacillus sp. Soil750 contig_15, whole genome shotgun sequence. +TGTGCCTTTAAAAACAGTCCAGAGAGGCTGGCAAGGTAAAACGATAAGAAAAGTCGGGTAATGCTGAATCGAGAATTCAGTAAGCTTACGGATGTGCGCATCCTACAGCCCCGCTCTATCTCTTTATGCACTCGTAAACTCCTTGCCAAGAATTGGGCAAGGAGTTTTTTGGTT +>FWYF01000005.1/72068-71837 Reichenbachiella faecimaris strain DSM 26133 genome assembly, contig: Ga0069982_15 +AGATTTGCGGCAATTATTGGTTTTCGAAGGAAACGTATCCTGAGAAATTAAAAGGGAATTCGGTGAAGTGCTTAGCGCTCATTCCGAAGCTGTTCCCGCAACTGTAATTCGAAGATATCCTTGTGATATCATTTTTGATCTACCATTGCCACTGTCCTAATGAATCGGGATGGGAAGGCCGATCAAAAGATTTCGAAGAGCCAGGAGACCTGCCAGTAGTTATTATTTATCT +>CBUT010022175.1/1809-1930 Eimeria mitis, Houghton, WGS project CBUT01000000 data, contig: Emh_contig2519_2 +GCTGCTGCTGCTGCTGTTGCTGCTGCTGCTGGTGCAGCAGCAGCAGCAGCAGCAGATGAAGAAGGAGATAGGCTTCGGCTGCTGCAGCTGTGTGACCATTTGCTGCTGAAGAGACACACAGA +>CM001945.1/16929330-16929657 Chlorocebus sabaeus isolate 1994-021 chromosome 5, whole genome shotgun sequence. +GCTGGGTGTGGTGGTGCACGCCTGTAATCCCAGCTCCTCAGGAGGCTGGGGCGTGAAAATAGTTTGAACCTGGGAGGCGGAGGTTGCAGGGAGCTGAGATTGCACCACTGCACTCCAGCCTGGGTGATAGAGCAAATGCTCTGGCTATTGTGTTGGCAGCAGATTGGAGGAAAACAAGAGTCGGAGGGTGAGACCTCTGAGCGAGTTACTTATGTTCAGACAGCAGTCCTGTCCTGAACTGCTGGAGTGCCCAGGCTGGAGTGCAGTGGCGTGATCTCTGCTCACTGCAACCTCTGCCTCCCAGGTTCAAGCTATTCTCCTGCCTCAG +>MTYJ01000796.1/4174-1035 Hypsibius dujardini strain Z151 scaffold0796, whole genome shotgun sequence. +AGATAAAGCTACTAAGGCATAGGTGGTACCTTGGGGAAGTAGAGGCGATGAAGAGACGTCGGTGTACATCTGCGGATATTTGCTTCGGGGAGCTAGGTAAATAAGCTTTGTATCCGGAGATTCCGAAGTGGGGCAATCCCCTTTACATGAGATGTTGTAAATGACACTGCATGAGTTCAAGTAGTGCTGATGAGTCGACGCAGGCGAATGAAACACTCTAAGTTACCTGCAGCTGAGTAGAATCAAACGAGATTTTCTTGCAGTAGCGGCGAGCGCAGAATCGCAGAAGAGCCCAAAACCATTTGTGCGTGCACATTGGGGTTGTAGGATCTCGTATCAAGGGGAGTTAGTTAGCAAGAACGGTTTGGGAAGGCCGGCATAGAGAGTGAAAGCTCGTATAATACGAAAACTAACAACACCTGGCACGAGTATTCCCTGAGTAGAATCGGGGCACGTTGAAAACCCTGTTTGAAACTGGGGGGACCACCCTCCAAGCTACAAATACTACCTTACTACCACCGTAGTGGAGCTAGTAAACGGCGAGGGAAGGTGAAGAAAGAACCCCGATAGAGGCGGAGTGAAATAGATTTTTTGAAACCGTATGCTTACAAACAGTCAGGAGGGCTATTGTTAAAGCCTGATGACGTAACCTTTTGCATTTGATTCAGCGAGTTTATGGCTATGTGGCAGGTTAAGCCGTTGCGAGGGTGTAGCCGTAGGGAAACCGAGTACTGAAGTAGGGCGTTAAGTCGGCAGTGCTTGTAGAGCCCGAAACGGGATGACTGCTATCATGTTGCGGCAGGCTTTTTGAAGCGGAGGGTAAAACTTCGTATTGGACCTGGGACCGAACTCTTTGAAGGTTAAACTTTGGGATGACTGTGGATTAGGGAGTGAAAGGCTAATACAAACTTCGGAATAGCGGTTCTCTCCGAAAATCTATTTAGGTCATGCGTTCTAACGTATTTTCGGGGGTACAGCACTGACTATGGATAGAGGGTCACGCGTAGCTTACCAAACCTATTCAAACTCCGAATACCAGACGAGTCGAGCAGTGAGACAGATGCGGATGCTAAGTCCGTGGTCAAGAGGGAAAGAAACCCAGCCGCCAGTAAGGTCCCAGAAGATACATACTAAATCTGGACATGAAGTGAGCGAAGGTTGAAACTGACAGTCAGGAGGTTGCTTAGAAGCAGCCCACCCTTTAAAGAAGCCTCGTGAATAGCCACTGGACTTGTGGTTCTGCGGCCGAAAATGTAACTGGGCTTAAGTGTTCGTACGAAGCTACTGGACTTTTTTAAGTGGTAGGAGCACTTTGTGTGTGCCTTGAATGAAGGCGTACCGTACAGGAGCGTTGGGTCTCCACAAGAGCTTGATGCTGAATGAGTAGCGATTAAGGACGAGCGAGAATCTTCTCCCCCGTAATAATCTGGAAGGGTTCCTGGGCTCAGGTGGAATCCTCCCAGGGTAAGTCGGTTTCTAAGGCGAGCGCCGAAAGGCGTAGTTTCGCATGAACCATCAGGTTAATATTCCTGAACTTGTATGGTAAACGTTTGACTGGAAGGAGTGACGGAGAAAGATAGCAGATCTGGAGCATTGTTGTTCCAGATGTGAGGGTAGTAGGTGTGTGAGATAGGCAAATGCCGTCACAGTATATCACAAGGCCTTTGATTGCCGAATGCGCAAGCAGAGTCTGTTACTCTACGCCTTCCAAGAAAAAGTTCGCTAGGGAGTTATGTATTAATCCGTCGCTTAAACCCGACACATGGGTTATAGATGAGGAGAAATCCTAAGGTGATTGGATGAACTCTACGTTAAGCCCGCCCCTCTGGCAACTTAGATACTGGTAACTTCGGGAGAAGGCGCTGAATGTGAAGTCACTTGCTGACGTAGCATTATGAGGGTTGCAGTAAATGGGGTGAGCGACGTGTTTTTACCAAAAACAAGGGCCTTACTGCAACACGCAAGTGGAAGTATATTGGGCTGAGCGCTGCCGCGGTGCTGGAAGGTTAATGAGGTGGGTTATGCGCAAGCGCGCAAGCTTTTAAATTTTTGACAGTCCCAGTAAAACGGGCGGCGTAACATATACGGTTCCTAGTAGCGAATTTCGTTAGTCGGGTAAGTCGACCTGACGAATCGGCGTAACGGACTCCCCCTGTCGTCGAATCTGCGAGATCCAGCGAAATTTTGCGGTTGTGAGCGTCTGTGAAGAAACGCGCTTCGACCGCGCGGAGGATCCGAACAGAGGACCCCGTGAGCCTTTACTTGGTAAAAAAACCTTTTTGGTGGGGGCATTTGGGTTTATTCGGGAAAATAAAGGGGCCATGCGTCTAGGATAGGTGGGAGTTTTTGATCGTGCGTTCCGGCGAATTGAGCGTTCGGGGAGAACCAACCTTGGAAATACCACCCTTGCTTATTTTGGTAAGTCCATAACCTGCGGTCCTAATTCGCGGGCCGGGGGACAAATTGTCTGTGTGGGCACGTTTTGACTGGGGGGCGGTCGGCCTCACTAGAAAGAGTAACGGAGGCGCCGAAGGTCCTCTGAGCAGTTGGAAATCCGGCGAAAGGAGTGTAAACGCATTAAGGGAGCTTGACTGCGAGACAAACACGTCGAGCAGGAACGAAAGTCGCGGCTTAGTGATCCGGTGAGTTTGCCGAGTTGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGCAGGTCCCAAGGGTTTGGCTGTTCGCCAATTAAAGTGGTACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCTACTGTGGGCGCAGGAAATTTGAGGGGGTCTGTCCTTAGTACGAGAGGACGACCGGAGTGATGAACGAAACTCTGGTGTACTCGGTTGTCACGCCAGTGCATGCCGGTAGCTAAGTTCGGAAGATAAACCGCTGAAAGCATCTAAGCGGGAAGCTAGCCTAAGATGAGTTCCCTAGCACCCTTGAGTCCTAAGGCCGTTCGAGACCAGACGTTGATAGGTGGGGGTGGAAGCGCTAGTGTGAGCTACCATACTAATTCCGTGAGGCTTACCTAT +>KQ483358.1/2572342-2572106 Curvibacter sp. PAE-UM genomic scaffold Scaffold1, whole genome shotgun sequence. +CGTAAAATCTACAACGTTGGTGCTCGCGGTGTGGTTCACATGCCGCAGTTCAACGGGAAGCAGGAAGGTGAGCCGTCATGGCGAGCCCAACCTGCGCTGCCCCCGCAACGGTAAGTGGACGAGCCGCAAGGCTCCGCTTTCATCACCCAGCCACTGGATGCCCTGAACAAGCGTCCGGGAAGGCGATGAAGGTTGTTTCCATCAGCCCGGATACCGGCCAATGAAGTGGTGTCGCGC +>AOLZ01000036.1/1-202 Halobiforma lacisalsi AJ5 contig_36, whole genome shotgun sequence. +GTACCGGTTGTTCGAGAGAGCACGTGCCGGGCAGCCACGCACCACGGGGTAAGAGCTGAACGCATCTAAGCTCGAAACCCACCTGGAAACGAGATACCGCCGAGATCTCTCCTAGAAGAGGAGTTCGATAGACTCGGGGTGTACGCGCCAAGGCAACGAGGCGTTGAGCCCGCGAGCACTAATCGATCGAGCCACACACTCA +>AYZS02054104.1/146-603 Beta vulgaris subsp. vulgaris contig144508.1, whole genome shotgun sequence. +GCATAAACCAGTTACAGCAATTGATGGATGCCTTGGCTTCATCAGGCGACGAAGGACGCAGCAAGCTGCGATAAGCTTCGGGGAGCGGCACGCACGCTATATATCCGAAGATTTCCGAATGGGGAAACCCGGCACCTCTCATAGGGTGTCACTTCGATCTGAATACATAGGGTCGATAGAGCAATACGTGGAGAAGTGAAACATCTCAGTATCCACAGGAAAAGAACGAGAATCGATTCCGTAAGTAGTGGCGAGCGAAAGCGGAAGAGCCCAAACCGCCGGGATTTATCCTGGCGGGGTTATAGGACCATAATGTGAGACCACAGAAGTTAGACGAACACTCTGGAAAGTGTGACCATAGCGGGTGACAGTCCCGTAGTTTAAAACTCGAGTGGCTCTATTGGTATCCTGAGTAGCACCGTACACGTGAAATTCGGTGTGAATTCGTGGCGACCACG +>JPJR01003066.1/1-928 Pseudogymnoascus pannorum VKM F-3808 contig_3066, whole genome shotgun sequence. +GACTGTGAAGGAAACCCCGATCAATGGCGGCCTTATTTTGAGGGTCCTAAGGTAGCGGAATACCCTGGCCGTTAAATGCGGTCTTGCATGAATGATTTAACGATACAACAGCTGTCTCAATGATTGGCTCAGTGAAATTGGAATAACTGTGCAGATACAGTTTACCTCTAGTTAGACGAGAAGACCCTATGCAGCTTTACTGTTGCTAGTTATTGGATATGATTGAATTAATTTTAGTAGTATAAGGTAATTGGTTAGATATAATTGAAATACCTTTATTGTGTTTGTCATATTGATAGATTTAATCTATTTTCTTATCTAAAGATAGGAAATGACCCCTACTATGTTAGGGGAACAATGGCTAGGAGGCAGTTTATGCGGGGCACAGATCCCATAAAAAGTACCTGGGTGTATCCAAAGTTAATTTTGTAAAATTGACATGACTTACTTCTAAATTTATAATTTGGAAATAAGTTTTCATGACTAATAATACATTATATATTTAATGTATTTATTTTTAGTTTGTTATTTGGTATAGCTTATGCTATAACTAATCCAGCTATTTATCTATTAAGTTAGAAATATTTTTTTATCCAAGTAAGATTTTATCTATATGGAAAATAGATGTAATTAAAACATTGACGTAGATATCTTTCCAATGTTTTTTAATTTTTTTATTAGGTGTATTTGGTGAAACCAAACTACAAATTGCTAATAAGACAATTATGTTTATTACTTGTCAAGTTTAATGGCTTAATCTTGCTTTACTGTTTGACTTACACGTCTATCAGTCGCGTAAGCGGGGCATATGATCACAAGATGCAGAAAGGAAAGGTCTTGGATTTATGAAAAAGCTACGCTAGGGATGTTAGTCCTCCAATGTTTAAGTCTACTAATATTTATTATTGGGTTAATTAGACTTAAACTC +>CP009129.1/1242075-1242156 Planococcus sp. PAMC 21323, complete genome. +TCATTGCTGCAACCGCTCGAATCAGGTTACGTTAAGAAGATGCTTCGGCAGATCACCTGAATAGGCGAGTCTTAATCTAGAG +>KM349742.1/1-304 Betacoronavirus HKU24 strain HKU24-R05005I, complete genome. +GATAAAGTGTGAATCGCTTCCGTAGCATCGCACCCTCGATCTCTTGTTAGATCTAATCTAATCTAAACTTTATAAAAACACTAGGTCCCTGCTAGCCTATGCCTGAGGGTTTAGGCGTTGCATACTAGTGTCTTAGGAATTTGACTGATAACACTTCCCTGCTAACGGCGTGTTGCACTCTCAGTCTAAGCCTCCCACCCATAGGAGGTATCATGGCTAAGCGAGTCAACAAATACGGCCTCACGCTAAAATGGGCCCCAGAATTTCCGTGGATGTTTGAGGACACAGAGGAGAAGTTGGGTAA +>MFFM01000046.1/175782-172748 Candidatus Edwardsbacteria bacterium GWF2_54_11 gwf2_scaffold_695, whole genome shotgun sequence. +GGTCAAGCTACAAAGGGCACATGGTGGATGCCTTGGCAGATGAAGGCGATGAAGGGCGTGGTAAGCTGCGATAAGCTTCGGGGAGGTGCAAACAACCTTAGATCCGGAGATGCCCGAATGGGGGAACCCGTTCCGAGTCATATCGGAACACGCCGGGATGAAAACATTAGGAAGTAATCCTGGAGAGCTAACCTGGCGAACTGAAACATCTAAGTACCCAGTGGAAGAGAAATCAACCGAGATTCCCAAAGTAGCGGCGAGCGAAATGGGAAGAGTCTAAACTCGGTCCTGCGTGATAGCTGATACGCGTTGCAGGACGGGGGTATCAGGGTCGTTACGGATCCCGTGTATCAACCGGGGTCGGGGAGTCAAAAAGTCGTTCCTTAGCCGAAAGGTCTGGGAAGTCCTACCATAGACGGTGAAAGTCCGGTAGGCGAAAAGGAAGCGATCTCCCTGGTTGCGATTCCTAAGTACCATGGGGCACGAGAAACCCTGTGGGAATACGGGGGGACCACCCTCCAAGACTAAATACTCTCATCTGACCGATAGTGAACTAGTACCGTGAGGGAAAGGTGAAAAGCACCCCTGGCGGGGAGTGAAATAGTACCTGAAACCATGTGCCTACGATCAGTCGGAGCCTCGATTTATTCGGGGTGACGGCGTGCCTTTTGCATAATGAACCGGCGAGTTGCTTGTATGCAGCAAGGTTAAGTCCTTCTGGGACGTAGCCGAAGCGAAAGCGAGTCTGAATAGGGCGATTCAGTTGCATGCAGCAGACCCGAAACTGGGTGAGCTACCCATGGCCAGGCTGAAGTGACGGTAACACGTCATGGAGGGCCGAACCGGTGAATGTTGAAAAATTCTCGGATGAGCTGTGGGTAGGAGTGAAAGGCCAACCAAACCCAGGGATAGCTGGTTCTCCTCGAAATATATTTAGGTATAGCCTCGGAAAGTATGTGGCGGAGGTAGAGCACTGACAGGGCAAGGGACCTTACCAGGTTACCAACCCCTATCAAACTCCGAATGCCGTGCACAGGAATTCCGGGAGTCAGGCAGTGGGGGATAAGCTTCATTGCCGAGAGGGAAACAACCCAGATCGTCAGCTAAGGCCCCTAAATATCAGCTAAGTGAGAAAGGATGTGGAATCTCATAGACAACCAGGATGTTGGCTTAGAAGCAGCCACCATTTAAAGAGTGCGTAATAGCTCACTGGTCAAGTCATTCTGCGCCTACAATACACGGGACTATTAAGCTGATTGCCGAAGCTGCGGACTTGATTGATGTTCGCATCAGTCATTTGGTAGAGGAGCGTTCCACAGTAGGATGAAGCGGTGCCGTAAGACACCGTCGACGAGCTGGAAGTGAGAATGCCGGTATAAGTAGCGATAAACCAGGCGAGAAACCTGGTCACCGAAAACTCAAGGGTTCCTGGGGAAGGCTAATCCGCCCAGGGTAAGTCGGGCCCTAAGCCGAGGCCGAAAGGCGTAGGCGATGGAAATCCGGTTAATATTCCGGAACCACTGGTAAAGCGTTATCACCTAAGGGGGGACGCAGGAGTGAGATCCCATCCGCGATTGGAAGTGCGGGTCTAAGCTGGTAGGGGGATCCTGTAGGCAAATCCGCAGGGTCGTTAACCCCGAGAAGCGATGGGGAGTCCGTAAGGACATAAAAGGGATCGAATCACGCTGCCAAGAAAAGCCTCGTAGGGAGTTTTGCCGGTGTCCGTACCGTAAACCGACTCAGGTGAGTGAGAAGAGTATTCTAAGGTGCTCGAGATAACCTCCTTTAAGGAACTAGGCAATTTAGCCCCGTAACTTCGGAAGAAGGGGTCCCCGATTCTGTTAGGTAAATTCTTGCTGAAGCAGATTTGGGGCGCAGTAAATGGGCTCGAGTGACTGTTTATCACAAACACACGACTCTGCTAAGCCGATGAGGCGAAGTATAGGGTCTGACACCTGCCCGGTGCCGGAAGGTTAAGAGGAGAGGTCAGCCGCAAGGCGAAGCTTTGAATTGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGTGTAACAACTTGAGCGCTGTCTCAAAGGAGGACTCGGCGAATTTGTAGTGGCGGTGAAGATGCCGCCTACCCGCAGATGGACTAAAAGACCCCGTGAACCTTTACTGTAGCCTGGCATTGAATTTTGGTAAGGCATGTGTAGGATAGGTGGGAGACACTGAAGCTGGGGCGCTAGCCTCGGTGGAGTCGACGTTGAAATACCACCCTTGTGTTATTGGAATTCTAACCTAAATCAGTGAATCCTGGTTGGGAACCGTGTCAGGTGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGAGTAACGGAGGCGCGCAAAGGTTTCCTCAGCGCGGTCGGTAATCGCGCTTATAGAGTGTAAAGGCATAAGGAAGCCTGACTGTGAGGGAGACATTCCGAACAGACACGAAAGTGGGCCTTAGTGATCCGGTGGCTACACGTGGAAGCACCATCGCTCAACGGACAAAAGGTACTCCGGGGATAACAGGCTGATCTTGCCCGAGAGTTCACATCGACGGCGAGGTTTGGCACCTCGATGTCGGCTCATCGCATCCTGGGGCTGGAGAAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCTCTATCCTCTGTGGGTGTAGGAGATTTGCGAGGATCTGTCCTTAGTACGAGAGGACCAGGATGGACAAACCTCTAGTGTACCAGTTGTTCCGCCAGGAGCAATGGCTGGGTAGCTATGTTTGGTCGGGATAACCGCTGAAAGCATCTAAGTGGGAAACCCACCTCAAAACTAGATCTCCCTTCCTGTTTATTCAGGACTGAAGGCTCCCTGTAGACTACAGGGTTGATAGGCCACCGGTGTAAGATCCGTAAGGATTTCAGCCAAGTGGTACTAAATTGGCCGTGCGGCTTGATCAT +>CM001436.1/1586328-1586399 Methanoplanus limicola DSM 2279 chromosome, whole genome shotgun sequence. +GTCCCGATAGGGTAGTGGATATCCTAGAAGCTTGCGGAGCTTTTGACCCGGGTTCGAGTCCCGGTCGGGGCG +>HG764817.1/91383-91181 Clostridium ultunense Esp genomic scaffold, CULT_3033 +AACTTCATATCTCTTTTAGGTCACTTAGTTGACTCGCTAAGTGTTAATAGGGAAGTCCGGTGGAAATCCGGCGCGGTCCCGCCACTGTAAGCAGGGAGAGACGTTTAGGCCGAAAGGCAGCCACTGTGTACCGTCGTGCATGGGAAGGTGAACGAATCGAGGAACTGCAAGCCAGGAGACCTGCCTAAAAGAACGGCAAGTTC +>FOGW01000010.1/58334-58502 Lachnobacterium bovis strain S1b genome assembly, contig: IE07DRAFT_scaffold00007.7 +TAAAGAGATAGAGGTTGCGCAAGTCAAAAGTACTTTGCTAGATGAAGCAAATCAGATGACAGTAGAGGAAAGGGGCAAGCGCCGAAAGGGTTATTTTTGCAGAATAATTCTTGGGCATAAAGTTAATAGCTTTATGACTGTCATCGTAAGATGGAGTGCTATCATATAA +>FR883370.1/19793-19582 Clostridium sp. CAG:221 genomic scaffold, scf18 +TATTGAAGGAATTAGTATGGTGCTTTTAGTTTATAAATATAAATAGGCAAAAGTTAAAAGGGAATGTGATGAAATTTCACAACAGCCCCCACTACTGTGATAGAGGATGAAAGCTAAAATTATAAATTCCATTGAGAGATTTTCTTGAGAAGGAGTTTAGTGAGTAAAGAGATTCTTAAGTCAGGAAACCTGCCATAACTTTAATAGTGTTT +>CP013068.1/4601278-4601164 Pannonibacter phragmitetus strain 31801, complete genome. +ATACCCTACGGAGCGCCTGGGTCCGCCGCATCTCCTGGGTCCGTGGGGCAAGGCCGGCGCGGTGTCTGCCCGATGAGTGGCCTCCTCGGATTGGCAGTCCCGCGCCGGCCGCCAC +>AOCG01000006.1/51721-51599 Listeria aquatica FSL S10-1188 c5, whole genome shotgun sequence. +AGATCCTTTAAATGTAGTCCAGAGAGGCTGAAAAGGTTAACGCTCATTTTGGAGAAGGTTCTCCATTTTAATTCGTGAGGTACGTCTATACCCTTTGCCGCTTTGGCAAAGGTTTTTTTTGTA +>AQHR01000110.1/102878-102980 Lunatimonas lonarensis strain AK24 S14_contig_28, whole genome shotgun sequence. +TGCCCATCGGGTGATGGGGTGCCACCCAAATATCAGGGACTTATCCGAAGTTTTCTGATTTTTTGAACCGCTTCGCAAGAATGCTGATGACTCCTACTTCAAC +>FXAQ01000027.1/27875-27818 Paracoccus sp. J56 genome assembly, contig: M511DRAFT_scaffold00027.27 +CATGGAGCAGGGTGAAATTTCCGGCTGGGTTTTCCGGCCGCCTGTCCGCCGGACAACC +>HF986872.1/13619-13817 Firmicutes bacterium CAG:555 genomic scaffold, scf18 +CAAAACCGATAGGTATTCGGCTCTGGGCCAGCTCGATTAAAAGGGAATCCGGTTCGAGTCCGGAACAGCCGCCATTACTGTATTTGACACAACGGGAGTCCATTTTGCCATTGGTGCGGCCTGTCCTTCGGCGGGCGCATCGAGAAGGCGGGCTTTCCGGTCATAAGTCAGGAGACCTGCCGTGCTTTTTAGGTTTACA +>CM009307.1/3068679-3068534 Populus trichocarpa isolate Nisqually-1 chromosome 18, whole genome shotgun sequence. +TTCAAAAGCTATTGGGTGTGACTGAGCAGCCGGATCCAACACTATTGGATCTTGTCATGTAGACCCTAAGCGATTGGGTTTTGTTGGGCAGCAGATTCCAATGTTGTTGAATCCTGCCAAGCTAGACTTAATAACACTTTTTGACT +>JSDP01000122.1/5559-5705 Aphanizomenon flos-aquae 2012/KM/D3 spades_262_len_T:9526, whole genome shotgun sequence. +CACTCTCTACAGTCAGAGTTGATAGGAGGGATTCTATCAAGCGTACACCAGAGAGTCCAAACTCAAACCCAGTGATGTGGGTGACTATATCCAAATATAAAACCGAGCCAGTTAGCTTGGTAGGGAAACCGAAGACTTAACTGGCTC +>AYZS02017825.1/46586-46515 Beta vulgaris subsp. vulgaris Bvchr6.sca027.con0066.1, whole genome shotgun sequence. +GTCTCTTCAAAGACATCTGATAAAATTGGAACGATATAGAGAAGATTAGAATGGCCCCTGCACAAGGATGAC +>CCCW010005528.1/2486-80 Brassica napus, WGS project CCCW01000000 data, contig: 38660 +CGGCCAAAATCACCCAAACAGTCCACGGGAAGGGCCAGCGTGCTGAGTCCAAGGACCAACGTGCTGATATGTGTACTGATGGACAGCCACTGACATCCTGTGTGTGCTGACGGACACACACGGACACACACAAACAGCCACGGACGTCCTGTGTGTGCTGACGGACACACATGGACGTCGTGTGTGTGCTGACGGACACCCACGGACGTTGTGGCTGCTTTGATAGCTGGAGCTCGGAAACGAGTTCTATCGGGTAAAGTCAATGATTAGAGGCATCGGGATGCAATTTCCTTGACCTATTCTCAAACTTTAAATAGGTAGGACGGGGTGGCTGCTTTGTTGAGCCATCCCACGGAATCGAGAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCCATGCGGGATGAACCGAAAGCCGGGTTATGGTGCCCAACTGCTCGCTAACCTAGAACCCACAAAGGGTGTTGTTGATTAAGACAGCAGGACGGTGGTCATGGAAGTCGAAATCTGCTAAGGAGTGTGTAACAGCTCACCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTAAAGCGCGCGACCTATACCCGGCCGTCGGAGCAAGAGCCAGGCCTCGATGAGAAGGAGGGCACGGCGGTCGCTGCAAAACCTAGGGCGTGAGCCCGGGTGGAGCAGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCTATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGAGTCGAGGGAAACCTGTCTGATTGCGCTTATGCGCGAACTTCGAAAGGGGATCCGGTTAAAATTCCAGAACCGGGACGTGGCGGTTGACGGCTACGTTAGGAAGTCCAGAGACGTCGGCGGGAATTCCGGAAAGAGTTATCTTTTCTGTTTAACAGCCTGCCCACCATGGAAAGGGCTCAGCCGGAGGTAGGGTCCAGCGGCTGGAAGAGCACCGTACGTTGCGTGTTGTCCGGTGCATTCCCGGCGGCCCTTGAAAATCCGGAGGACTGAGTGCCGCTCACGCTCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTTGTCGATGGAACAATGTAGGCAAGAGAAGTCGGTAAAATGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGGCTGGGCTCGGGGGTCCCAGTTCCGAACACGTTGACTGTTGGCGGGCTGCTTGAGCTGCTAACGTGGCGAGAGCGGACCGCCTCGTGTTGGCCGAGGGATGGACTGGGAACGGCTCTTTCGAGATCTTTCCCCGGGCGTCGAACAGCCAACTCAGAACTGGTACGGACAATGGTAATCCGATTGTTTAATTAAAACAAAGCATTGTGATGGTCCCTGCGGATGCTAACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGAATCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCACATGAATGGACTAACGAGATTCCCACTGTCCTTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAATGACTTGAGAAGTGTAGAATAAGTGGGAGCTCCGACGCAAGTGAAATACCACTACTTTTAACGTTATTTTACTTACTCCGTGAATCAGAGGCGGGGTAACAACCCCTTCTTTTAGACCCAAGACTCGCTTTGGCGGGTCAATCCGGGCGGAGGACATTGTCAGGTGGGGAGTTTGGCTGGGGTGGCACATCTGTTAAAAGATAACGCAGGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTTCAGTACGAATACGAACTGTGAAAGCATGGCCTATCGATCCTTTAGACCTTTGGAATTTGAAGCTAGAGGTGTCAAAAAATTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGTGTTCATAGCGACGTTGCTTTTTGATCCTTCAATATCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTTGATTGTTCACCCACCAATAGGAAACGTGAGCTGGGTTTAGACCGTCGTGAGACACGTTAGTTTCACCCTACTGATGCCCGCGTCGCAATAGTAATTCAACCTAGTACAAGAGGAACCGTTGATTCGCACAATTGGTCATCGCACTTGGTTGAAAAGCCAGTGGCGCGAAGCTACTGTGCGCTGGATTATGACTGAACGCCTCTAAGTCAGAATCTAGGCTAGAAGCAACGCATGCGCCCGC +>ALAR01193061.1/17763-17860 Tupaia chinensis contig193061, whole genome shotgun sequence. +ATCCTTGGGTGGTTTATGAGTGTGATGGTTGGGCGTTCACACCATGTGTGAGATGAGTTCCTGAGCCTTGTTATGATGTGGCGCTGTCACGTCTGATG +>AAIZ01015480.1/2116-801 Drosophila persimilis strain MSH-3 cont1.015479, whole genome shotgun sequence. +AGTCGGGCTTGATTGGGAACAATAACATGGTTTATGTGCTCGTTCTGGGTAAATAGAGTTTCTATCATTTATGGTAGTTACTTGTTCCCCGGATAGTTTAGTTACGTAGCCAATTGTGGAACTTTCTTGCTAAAATTTTTAAGAATACTAATTATGTTAAACCAGTTAGTTCTTATTAATTATAACGATTATTAATTAACAATCAATTCAGAACTGGCACGGACTTGGGTAATCCGACTGTCTAATTAAAACAAAGCATTGTGACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAAGTAAGCGCGGGTCAACGGCGGGAGTAACTATGACTCTCTTACGTGAAGCGGAACTTTTTCGTCCCCAACACGGCTGGGTGTGTCAGCCCACGCGTTTGCTAACAGGTCAAGATTACCGAAACGGTATCAAGCTGCGAATAAATGTCCTACCATCGAGGTCTCGTACCACGAGGGGCAGAAATGAATTGGAACGGCAATGTCGTGCAGGTTGTGATGCTCCCGAAACAACAAACCACATCCTGCAAAATTGTTACCGTACGCATGGGAGGCGGGTAGCAGGACATAACTGTGTAGTCAATAACCTTCAGAGGATTCTTGAGGAGAAGGGCCACACAGTGCACGTCGAACCAAGTTTGCAGCTGGAAACCTCGGTAAGTAAACCAGACCTGGTGTGTATCCGTGACAATCACGCTTGCGTGATTGATGCGCAGATTATAACAGATGGACTGTTTCTCGACGATGTGCACCATCGCAAAGTTGAGAAATATAAAAGACCTGAAGATATTTCTGCACTGCGGAGAGAATTCGGAGTGTCGGGCAACGTTGAAGTCCTAAACGCGACGTTAAACTGGCGTGGGATCTGGAGCAATCAATCCGTTAGAAAATTGATAGCAAAGGGTCTCATCTCATCCGGTGACAGCAATGTCATCAGCGCCAGAGTGGTAACAGGCGGACTATATTGCTTCAGACAGTTCATGTATCTCGCAGGTTACACGCGAGATTGGACTTAGCCTATACACTATGTTGGAGAGAAGACGCTTGCTACCTAGGCATAATGTGAAATTAGGTATAAACATCGTGGTTGTAAAACTTGAGGTGGGTTTTTAGTACGTATGCGTGATTACTTCGTAATCATGAATCGTGCATGCTAGTGGGGTTTGGCCTCCACTACTATCTTTGAAGATTTTCCTTCCTCAGCGATAAAAAAAAAAAAAAAAAATAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAATGAGATTCCTACT +>CP014135.1/3524579-3524757 Pseudomonas agarici strain NCPPB 2472 genome. +ACCCCGGTATTATTGCTGTCATGGGTTTTAATCGAGCTTAGCCTTGTTCATTTTTTTACACAACACCCCATAAAAGATCCTACACGGCCCGCTCAAGCCTGCAGGACCCAAAGAGACGCAGAGGCAAAAAACGCCCAAAAACGCCTGAAAAAAGGCTCTGCGGTGCTTTCTCAGCACAA +>AFFG02002037.1/1014-1 Drosophila ficusphila Contig2037, whole genome shotgun sequence +AGATCAGAAGAGATTTTAGATAGATCTCGCTCCTCAGCAAGGGGGAGTGTTTGCCCGACAAGCACACACTCGAATTGCTACCGGGATAGTTGCTACGTACATAGCTGTAGCTTCTATTTTGGGGCGTTGGTCTGGCGCTTAATCTAGACACATGCACTATATACATGGGTATATAAGAGTGTCGTGGCTGTACTCCCTTCAATGTGGAACACGCCACGTTAAATAAAACTCGGAGGGATCCGATCCACACCTGTCCCTATCTACTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGAATAATTAGCGGGGAAAGAAGACCCTTTTGAGCTTGACTCTAATCTGGCAGTGTAAGGAGACATAAGAGGTGTAGAATAAGTGGGAGATATTAGGCTTCGGTTTGATATCGCCAATGAAATACCACTACTCTTATTGTTTCCTTACTTACTTGATTAAATGGAACGTGTATCATTCCTAGCCATTATACGGATATATTTATTATATCTTATGGTATTGGGTTTTGATGCAAGCTTCTTGATCAAAGTATCACGAGTTTGTTATATAATCGCAAACTAAATCTTTAATAAAACGATGCATTTATGTATTTTTGATTTGAAAATTTGGTATAACTCCAATTACTCAGGTATGATCCAATTCAAGGACATTGCCAGGTAGGGAGTTTGACTGGGGCGGTACATCTCTCAAATAATAACGGAGGTGTCCCAAGGCCAGCTCAGTGCGGACAGAAACCACACATAGAGCAAAAGGGCAAATGCTGACTTGATCTCGGTGTTCAGTACACACAGGGACAGCAAAAGCTCGGCCTATCGATCCTTTTGGTTTAAAGAGTTTTTAACAAGAGGTGTCAGAAAAGTTACCATAGGGATAACTGGCTTGTGGCGGCCAAGCGTTCATAGCGACGTCGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAAAATTCACCAAGCGTTGGATTGTTCACCCATGCAAGGGAACGT +>URS0001A23A8E_12908/1-67 unclassified sequences L31-Actinobacteria ribosomal protein leader +GCGGUUCCGGUUCACGCCACCAAGGGUCGGCCCGCCCCAUGACGGGUGACCUGGCGACCCGGCGACC +>URS0000D6C5EB_12908/1-87 unclassified sequences GA-cis RNA +GACAGGCGAAATATAACAGCTCGAAGAGCTGTATTGTAATACATTTCGCCGCACAGCCGCCGAACGAAGTGAGGGGCAATACCGCTG +>MEDQ01000009.1/7811-8223 Bordetella sp. SCN 67-23 ABS43_C0009, whole genome shotgun sequence. +AGAGCAGATCAGGCAGTCGCGGTGCCTTCGGGCATCGAGGAAGGTCCGGACTCCACAGGACAGGATGGCGGCTAACGGCCGTCCGGCGATCGCTGGGGCGCAAGCCCGGGCGCGAAGCCGAGGAATAGGGCCACAGAGACGAGTCTGCGGCGAGGGCGGACGATGTTCGCACCGGTACGGCCACTCCGTACCGTTCGCACGGGCAACCGTGCGAGTCGCGGCAGGGTGAAACGCGGCAACCTCCATCCGGAGCAACACCAAATAGGCATGCGCGCGGCTTCGGCCGCAATAGGGCGGTCCGCCCGAGCATGCGGGTAGGTGGCTAGAGCCGTCCGGCAACGGCCGGCCCAGAGGAATGACTGCCCGCGGGCGACGCCCGTGTACAGAATCCGGCCTATCGATCTGCTTTGCCT +>URS0000D69D6E_12908/1-58 unclassified sequences RAGATH-30 RNA +GTAAAAATAAGATTTTGCCGAATATATTCATATAGATGAATCTGTTATGAAACAGAAA +>JH835302.1/8483619-8483740 Erinaceus europaeus unplaced genomic scaffold scaffold00014, whole genome shotgun sequence +AAGACAGAGAAATAGAGAACATTAAAAACTAATCTGTATTTTTTGTAACTGGCGATAGCAATGCCATATTACAAGCCTTAATGACATTGGGGTCTTTAAGGTCCCTGAAAGTGGCTATATGA +>URS0001A239EB_186490/1-52 Candidatus Baumannia cicadellinicola L31-Gammaproteobacteria ribosomal protein leader +CGUGUGGCUUAUAGUUAAAAUCGUCGAUAGCGACACAAUCUGACGAAUAGGU +>JH417673.1/4548-4310 Flavonifractor plautii ATCC 29863 genomic scaffold Scfld77, whole genome shotgun sequence. +TTAAACGCAATGAGGGAGAAGAGTACTGCGGGGACTCAGTCCCAGCGAGCGGGGGATGGTGAAAGCCCCGCACAGGAGGCCGCGGGAAGAACGCTCCGGAGCGGAAACCCGAACGCACCGCGCCAGTAGGGGGAACGGGCTGCGACCGTTACATCGCGCCGACTTGTCAGAGCCGGAAAAGGGGCCGCCGTCCGGCGGCAAATTAGGTGGCACCGCGGAGCGCAGCATTCGTCCTAATC +>MHBP01000260.1/25988-25933 Lentisphaerae bacterium RIFOXYB12_FULL_65_16 rifoxyb3_full_scaffold_468, whole genome shotgun sequence. +GGGTGTAACGGCACGGGGGTTCGTTACAGGCGCTCTGGGTGGTCGGGCCGCCATCC +>URS0000D65EAA_12908/1-173 unclassified sequences malK-I RNA +TCCAACCCCCGCGTCTTACTCCACCTATGTAATCCACGGGGGAAATAAAGAAGGAGGAAAGTTTTTCCGCCTGACCGGCGGTGCGGCAGTGTGGAGACCTGTCGTAAGGCAGCGTGGCGGCTGCGAGGCTCCGTTTCGCGGAGGCGGCGGGGCTACGGTCAAGCATTATGGCA +>CAJW010157214.1/4791-4634 Hordeum vulgare subsp. vulgare, WGS project CAJW01000000 data, contig: morex_contig_157214 +AAGGAGAAGTGTGATAAGCTTTGAATGGAAGCCCCGGTAAACGGCGGCAGTAACTCTAACTGTCCTAAGGTAGCGAAATTCCTTGTCGCATAAGTAGCGACCTGCACGAATGGTGTAACGACTGCCCCGCTGTCTCCGACATGGACCCGGTGTCGTTT +>CH966573.1/1-1154 Drosophila willistoni strain TSC#14030-0811.24 scf2_1100000007260 genomic scaffold, whole genome shotgun sequence. +GAAGTATTTAGGTATCCGGTTCGCTGTGGATGGGCGGGCTCGGTATAGTCCAGCAGACGACCTCGGTCCGAAGCTGTTAAGATTAATAAGAGCCCCTCTGAAACCACAACAGAAGTTATTTGCACTTAGGACTGTCCTTATCCCACAACTCTATCACCAACTAACACTTGGGAATTTGATGATAGGCGTCCTAAGAAAATGTGACAGATTGGTACGGCAATTCGTAAGGAGATGGTTAGATCTCCCACTGGATGTACCAGTTGCGTACTTTCACGCCTTCCACACTTGTGGGGGTCTCGGGATTCCGTCAATTAGATGGATGGCACCGATGCTGCGTCTGACGCGATTGAGCATGATTAAATGGCCCCACCTCGAACAACCCGAGGTAGCTAGCTCTTACATTGACGACGAATTGCAAAGGGCTTGAGATAGATTAAAGGCGGAAAATGTGCAGTTGTGTTCGCGTCCAGGCAAACATTGCCAGGTAGGGATCGGCCTATCGATCCTTTTGGTTTAAAGAGTTTTTAACAAGAGGTGTCAGAAAAGTTACCATAGGGATAACTGGCTTGTGGCGGCCAAGCGTTCATAGCGACGTCGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAAAATTCACCAAGCGTTGGATTCTTCACCCATGCAAGGGAACGTAAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTAATGACAAAACGTTGTTGCGACAGCATTCCTGCGTAGTACGATAGGAACCGCAGGTACGGACCAATGGCACAATACTTGTTCGAGCGAACAGTGGTATGACGCTACGTCCGTTGGATTATGCCTGAACGCCTCTAAGGTCGTATCCGTGCTGGACTGCAATGATAAATAAGGGGCAATTTGCATTGTATGGCTTCTAAACCATTAAAAGTTTATTTTATAAACGACAATGGATGTGATGCCAATGTTATTTGTAACATAGTAAATTGGGAGGATCTTCGATCACCTGATGCCGCGCTAGTTACTTATTAAGACATTATTTAATACAATGACAAAGCCTAGAATCAATTGTAAACGACTTTTGTAACAGGCAAGTGTTGTAAGTGGTTGAGTAGCTGCCATACTGCGATCCACTGAAGCTTATCTT +>JXUM01182853.1/1550-1 Aedes albopictus isolate Foshan contig182853, whole genome shotgun sequence. +ACTGGAGAGTTCGTTATCTGCCGTAACCGGTCGCTGGTTCAAGTTCAACTAGAATGTGGCTTTTACTCCCAGAGAGGGTGATAGGCCCGTAGAGCGGAGCACCGATGGTAGAAGATCTTTCCATGGAGTCGTGTTGCTTGATAGTGCAGCACAAAGTGGGAGGTAAACTCCTTCTAAAGCTAAATATCACCACGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGTTGAAAAGCACTCTGAATAGAGAGTCAAAAAGTACGTGAAACTGCCTAGGGCTCAAGCCCGTTGAACTCGATTATCCGAGCGGAGACATTCACCTGCGGTTGGCCGGCGACGGCACGGCCGCAGGGCACTTGTCTCTCGCACTAGCCAAGAGGACACTGCGATCCATTACGAAACAGCTTTCGCGCCGCAAGGCGCAAGGTCGCCCGACAACTGCCCCTGGTGCTGGTTGCTTGCCCCACAGTAGCGACGCTCAGTTCTGAAGGCCTGTGCCGCGAGGTGGGGCTTACTGCACGTGGTGTTTTGCAGTCGGGCGCGTGATGGATTCCCCCGGACACCGGGTGGTCTTCCCGTAAGGGGCCACCGGACTGTCGATCGGCAGTGAAAGAATCGAGGTACCTTCGGGACCCGTCTTGAAACACGGACCAAGAAGTCTATCTTGCGCGCGAGCCAATGGTCGTCCTCCGGAGCACCAAAGGCGCAGAAAACATAACTTGAGTTGTGCGGGATTACGGGCGCGGCTCTCTGCTCGTCCCTCCATCCCCGGGTGTTGTAATCGGCATGCGGCTACCGGGACCCAGGCTTCACGGCCCCCGGCACCGTGCCACAACATACCGTGAGTGTGCAGGATGTGACCCGAAAGATGGTGAACTATGCCTGATCAGGTTGAAGTCAGGGGAAACCCTGATGGAGGACCGAAGCAGTTCTGACGTGCAAATCGATTGTCAGAATTGGGCATAGGGGCGAAAGACCAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCACGCAACGTTTCGAATGCTATTCTTATCTGGTAAAGCGAATGATTAGAGGCCTTAGGTTCGAAATGATCTTAACCTATTCTCAAACTATAAATGGGTACGTACCATAGCATTCTTGCATGATGCTGTTGCAAACGTTGGTAAACGCCGGGCCGTCCCCTGTCAGGGCGTGCCACGGCGTAGAAGATATCTGTGTGCTTAGTGGGCCAAGTTTTGGTAAGCAGAACTGGTGCTGTGGGATGAACCAAACGTAATGTTACGGCGCCTAAATAAACGACGCATCATAGATACCATGAAAGGTGTTGATTGCTACAGACAGCAGGACGGTGGACATGGAAGTTGTCATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAAGCAATTAGCCCTTAAAATGGATGGCGCTTAAGTCGTTTGCCTATACATTACCGCTGGCGCACAAGTGGGGCAGCGCCCCTGTAGCGCGTCTGCCCTTTGAGGCGCCAGCGAGTAGGAGGGTCTGGTGGTGTGCGTTGA +>CP009227.1/527376-527281 Treponema sp. OMZ 838, complete genome. +GGCGGCATGGATGCCGCTCGTATTAAGCAGAAGCAAGTTTGACACCGGTCAAACTTGTGTTCAGCGAAGTACATGGATGTGCTTCGCTGAACGAGT +>FQVI01000001.1/71074-70885 Lactonifactor longoviformis DSM 17459 genome assembly, contig: EJ64DRAFT_scaffold00001.1 +AAAAAGAATAAACGGTATGGTCTGTGCTCAGCAATGAGTCAGTTTACAGGGAATCCGGTGAGAATCCGGAACAGCCTTTCTCTACTGTGTGAGGGACGAAAGCAGCGTAAAACCACTGGAACTATCCGGGAAGGTGCTGCTGGTAGGAAGAACTCAAGTCAGGATATCTGGCATACTGCGTGAAAAAAGC +>MTEJ01000117.1/16469-16381 Thiothrix lacustris isolate A8 Ga0073116_1117, whole genome shotgun sequence. +ATCGGGTTAAATAAACGACTGACTAAACATGTAGTAGCCTTCAGATGGAGGGTTTGCGGACGCGGGTTCAATTCCCGCCGCCTCCACCA +>LJIY01000004.1/279997-280249 Psychrobacillus sp. FJAT-21963 super7, whole genome shotgun sequence. +ACATCAAATTTTGAAGGGACGATGGGTGGCCGATGAAGTTTTAATCTTATTTCTCAGTAGAAGTTTTTCTGCGATATATTTGCGCAGTAACAAAATAAAACTTTACGAAACCGGAAATAGGATTAGTCTGCCCATTTTTCAAAATTACTGCAAATAATTCTCTACAATACGCTAACGCTTTGTAGTGGTTTTTTGCATATTCATTTAATGGTCAGTATGTAATCCTACCGTTTAATATCGGAGGGATTTTTTT +>CP011058.1/4424379-4424646 Paenibacillus beijingensis strain DSM 24997, complete genome. +GCTATCGCTATGACGGGCACAAGTAGTACTGCGAACGACGCTTTCAGAGAACCGGTGGACGGTGCGAACCGGTACGCGGCGCAGCATGAATTACCGCCTTGAGCTGAACGGGGGAAAGCGGGCCGGTCCCACTGGGGGCAGTGTCCGGCCGGTAGCCCGTTTCCGGAAGCATCCGCTTCCGTTATCAATAATGAAGTGAGAGCCTAATCTGCCCCGGCAGCGGCTCTAACGAGGGTGGTACCGCGAGCAAATCCTTCTCGTCCCTTGA +>LL009840.1/12805-13384 Trichobilharzia regenti genome assembly, scaffold: TRE_scaffold0009840 +CTCCTGGAAAAACCAATATCCAGCCAATGCTTGTGTCAGAGATTAAGTCGTGCATGTCTAAGTACATACCTTAAAACGGTGAAACAGCAAATCGCTGATTAAATCAGCTATGGTTGCTTAGACCACATATGCACTACATGGATAACTGTAGTAATTCTAGAGCTAATAAATGAAGTTATGCCCTGACCCGCAAATCAACAGAAAATTTATTAATACAGAACCAACCGCGGGTGGGGGGGGTAGTTTCGCCTGGATAGCTTTAATGTGATCGCGATCGGCCTTCCATTGGCGATGGATCTTATCGTAGAAGGAAACAACACAGAGATTCTGTTTCACCGATCAATTTAGAAGGTTAAACAACATTGGAATAAACACAGGAGTCAGACAATGGTGCTTATTATCACCAATTATACTTCATTCACTTACTTATCTAGGGAGCATTGTCTCAACTACAGGAAGTCGGAGAGGACGAGGATGTCAAATCGAGCTAGAATCGGGAAGGCAGGCGAGAAACATATTCATCAACCTGAAACAACCAATCTGGAAATATTCGTCACTCAGCCAGAATCAACAACAAAAT +>JRRC01447532.1/91-1 Gossypium arboreum cultivar AKA8401 contig_57480_1, whole genome shotgun sequence. +GCTGTCTACGAGTCGGTTTGTTTGGGAATGCAGCCCTAATCGGGCGGTAAATTCCGTCCAAGGCTAAATACGGGCGAGAGACCGATAGCGA +>GG692400.1/806114-806247 Candida tropicalis MYA-3404 genomic scaffold supercont3.6, whole genome shotgun sequence. +GCCCCCTTGGTGCAGCCGGTAGCATGAACGATTCCGGTTCGACTCCTGTTTCGAAGCTTTAAAATACTTTAAAGGTTTTTGAAAGGAGAATTGGAACTAGCGTTTGGTCGCGGGTTCAAGTCCCGCAGGGGGCT +>FOVK01000004.1/141686-141486 Proteiniclasticum ruminis strain ML2 genome assembly, contig: Ga0073291_104 +ATATAAACGATGAAAAGAACCAGTATGGAAGTCCTGCCTTCATAGAGAGAGGGGATTGGTGAAAGCCCTCAAGGAAAGTTTCCAGAACCTGTCTTGGAGTTTCTCAACCATTTGAGCGGGGAAAGCCGTTATACTTTAGAGTGGATACGTTAGGAGAAGTATCAATAAGGGTGGTACCGCCGAAGAGATTTGGCCCCTTTT +>LAKY01000004.1/16245-16356 Clostridiales bacterium PH28_bin88 ph28_547, whole genome shotgun sequence. +TGATCCTTTAAGCCGGTCCCGCGAGGCCGGTAAGGAGCTACGGTCAGGGTATGCCCGTGTAGACGTGGGATATCAAGGCCTCCTTGCCGCTGGGACAAGGAGGCCTTTTGTT +>CM000878.1/138264228-138264130 Callithrix jacchus chromosome X, whole genome shotgun sequence +CTGCCTCGAAGTCTGNNNNNNNNNNGCAATGGCTGCAAACAGCAGCTTCCTTGGTAGTGTTCTTTGTATGGGTTGCTCTAAGGGACCTTGGAGACAGGC +>FAOM01307123.1/40010-39638 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_307123_4AS +TTTTGCAGTTTGCGAGAAAGTTGAAAGTAAAGGGAGAACAACATATAATGAGGTTAGTGCTTTATTAGTTTTTAGCTCAAAATTCCTGTTGTTATTTTTTCATCATTTGTGTGGGCTGCATGCGTTTTGCCATATATTAACCAGAAACCAGGCTGCAACTCGCCTGCATGAAGCAGGAATCGCTAGTAATCGCCGGTCAGCCATACGGCGGTGAATCCGTTCCCGGGCCTTGTACACACCGCCTGTCACACTATAGGAGCTGGCCATGTTTGAAGTCATTACCCTTAACCGTAAGGAGGGGGATGCCTAAGGCTAGGCTTGCGACTGGAGTGAAGTGGCCATAGTTTGATATGTGACCCTATTCCTTCGCATA +>JMFQ01059681.1/962-834 Aptenodytes forsteri contig59681, whole genome shotgun sequence. +TAGGCCCTGAATGAAGACCACCGGTTTGCTGTAGCCGTTGGTTTCAAGCAGGAGCCCAAAGGAAACGTCTCCCGGTCTGTGGGCGCTCCCATCCCTGTGGAACGGCCAATTCGTGTGGGAGCGACACTA +>LFJN01000024.1/399316-399149 Phialophora attae strain CBS 131958 Contig24, whole genome shotgun sequence. +GGTGAGATGGCCGAGTGGTTATGGCGCTAGTTTCAGGAATACCTGGAGCCTTCGCTTTCTGGTTGAAAGTACTAGTGGGTGTACGTAAAACCATCCTACAGTACCCTCAAGAGCACTACTGACAATTTCCTTTAGAAAACCGCGTGGGTTCGAGTCCCACTCTCATCA +>AFSB01069799.1/15973-16145 Heterocephalus glaber contig69799, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAATAGTAGCTGCCGTGATTCTGTTAATACAAGTTAGATTGTTTCTTTTCTCTGCTTAAAACCCTCCAATGGCTTCCCATGTCTCTTAGCAAAGCCAAAATTTCTCAAGACTTATGACGTGTGAGTGATTCTGAACCTCT +>GL378325.1/524376-524459 Volvox carteri f. nagariensis unplaced genomic scaffold VOLCAscaffold_4, whole genome shotgun sequence. +GAGGTGTGATGATTTGAAACTTTTGGTCCGTGTTTCTGAGTGCCTAGCGCACCTCTGACGACTACAGTTTCTTCGTCTGACCTC +>GG749280.1/539059-538827 Selenomonas noxia ATCC 43541 genomic scaffold SCAFFOLD3, whole genome shotgun sequence. +TCATATTGAATTGGATCAAGTGCAGGGGTTTTGACATCATCAAAGCCTCAATGCTTCATAGGGAATCCGGTATAGGAATCATTGATTTCATAAGCCGGAGCGGTCACGCCACTGTAACAGGGAGTGATTCCGCACGCCAATTGAGTTGGCAGTCACTGGAGAGCGATCTCTGGGAAGATGCGGAAGAACGATGAACTGGAGCCAGGAGACCTGCTTGATTAACAATCACCGAT +>GL988045.1/3052953-3052577 Chaetomium thermophilum var. thermophilum DSM 1495 unplaced genomic scaffold scf7180000011820, whole genome shotgun sequence. +TCCTCTTCAACGCTGCGTTTCTATGCCACAAACGGAGAGCGCTTGCGCAAGCAGCGCTTTCAAATCCATCTTTCTCTGGCATATGAGAAATTCGGAGAATCGGCTTCACTCTTGGTTTGTCCATTCCTCACTCTCGGGTGTTGGATGGGTTACGAGCTCTGCCGGTGACGGCTTGGCGCGAATTCGCGTCTGTAATTGGCATCAGAAAAGCAGGGCTTAGAGGCCAACCTTGTGCTTTTGCGAGGGGAATTGGTCATCTAGGTTCCTCTGGGAGGGCCGTTACGAAGCTTGTGAGCAATCACTTGAGTGCAATACGCAGCGTGTGGCCTGCCTTCTGGGCAGATCACACAATTCGATTCCGATTATCCTGTTGAGGA +>CM002820.1/173650899-173648878 Capsicum annuum cultivar Zunla-1 chromosome 9, whole genome shotgun sequence +AGGCTTACGGTGGATACCTAGGCACCTAGAGATGAGGAAAGGCATAGTAATCGATGAAATGCTTCGGGGAGTTGAAAATAAGCATAGATCCGGAGATTCTCGAATAGGGCAAACTTTCAAACTGCTGCTGAATCCATGCGCAGGCCAGAGACAACCTGGCGAACTGAAACATCTTAGTAGCCAGAGGAAAAGAAAGCAAAAATGATTCCCGTAGTAGCGGCGAGCGAAATGGGAGCAGCCTAAATCGTGAAAACGGGGTTGTGGGAGAGCAATACAAGAGTCGTGTTGCTAGGCGAAACAACCTGAATGCTGGCGAAAAACCAGTAGCCAAAAGCATTACTAGCTTACGCTCTGACCCGAGTAGCATGGGGCACGTAGAATCCCGTGTGAATCAGCAAGGACCACCTTGCAAGGCTAAATACTCCTGGGTGACCGATAGCGAAGTAGTACCGTGAGGGACGGGTGAAAAGAACCCCCATCGGGGAGTGAAATAGAACATGAAATCGTAAGCTCCCAAGCAGTGGGAGGAGCCAGGGCTCTGACCGCGTGCCTATTGAAGAATGAGCTGGCGACTCATAGGCAGTGGCTTAGTTAAGGGAACCCACCGGAGCCGTAGTGAAAGCGAGTCTTCATAGGGCAATTGTCACTGCTTATGGACCCAAACCTGGGTGATCTATCCATGACCAGGATGAAGCTTGGGTGAAACTAAGTAGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGAATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGGTGGTTCTCCCCGAAATGCGTTGAGGCACAGCAGTTGACTGGACATCTAGGGGTAAAGCACTGTTTCGGTGTGGGCCACGAGAGCGGTACCAAATCGAGGCAAACTCTGAATACTAGGTATGGCCTTAAAATTAAAAAAGAGGGGTCAAAGTCGGCTAGTGAGACAATGGGGGATAAGCTTCATCATCGAGAAGAAAACAGCCCGGATCACCAGCTAAGGCCCCTAAATGGCCGCTCAGTGATAAAGGAGGTAGGGGTGCGGAGACAGCCAGGAGGTTTGCCTAGAAGCATCCACCCTTGAAAGAGTGCGTAATAGCTCACTGATCGAGCGCTCGTGCGCCGAAGATGAACGGGGCTAAGCGATCTGTCGAAGCTGTAGGGTGTAAAAATACATCGGTAGGGGAGCATTTCGCCTTAGAGGGAAGCCTCCGCATGAGCGGTGGTGGACAAAGCAGAAGCGAGAATGTCGGCTTGAGTAACGCAAACATTGGTGAGAATCCAGTGCCATGAAAACCTAAGGGTTCCTCCATAAGGTTCGTCCACGGAGGGTGAGTCAGGGCCTAAGATCAGGCCGAAAGGCGTAGTCGATGGACAACAGGTGAATAGTCCTGTACTACCCCTTGTTGGTCCCGAGGGACGGAGGAGGCTAGGTTAGCCAAAAGATGGTTATCGGTTCAAGAACGTAAGGTGTCCCTGCCCTTTTTTCAGGGTAAGAAGGGGAAGAGAAAATGCCTCGAGCCAATGTTCGAATACCAGGTGCTATGGCGCTGAAGTAACCCATGCCATACTCCCAGGAAAAGCTCGAACGGCTTTGAGCAAGAGGGTACCTGTACCCAAAACTGATACAGGTGGGTAGGTAGAGAATACCTAGGGGCGCGAGACAACTCTCTCTAAGGAACTCGGCAAAATAGCCCCGTAACTTCGGGAGAAGGGGTGCCTCTTCACATTACAAAGGGGGTCGCAGTGACCAGGCCCGGGCGACTGTTTACGAAAAACACATGTCTCTGCAAAGTCGTAAGACCATGTATAGGGTCTGACGCCTGCCCAGTGCCGGAAGGTCAAGGAAGTTGGTGACCTGATAACAGGGAAGCCGGCGACCGAAGCCCCGGTGAATGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCAGGTAAGTTTCGACCCGCACGAAAGGCGTAACAATCTGGGCACTGTCTCGGAGAAAGGCTCGGTAAAATAG +>URS0000D6A535_12908/1-73 unclassified sequences RAGATH-1 hammerhead ribozyme +AAGACAGUCUAGGAGUCUAUAAAAUUGUUACUGAAGAGACUAGAACGAAACUUCUUUAAUUAGAAGUCUAACA +>AYMY01S001259.1/103935-104737 Nicotiana tabacum cultivar TN90 Ntab-TN90_scaffold1259, whole genome shotgun sequence +ATTTCAAAATTTTGTAGCTTGTTTCGGGCAATAAAATGACTGGTACCATCCTAGTCAAATTAGAAAAACTTTTTGATGAAGGTGCCATTATAAGGCGGACCGGGCCCAAGTCCCCTGGAAGGGGGCGCCAGAGAGGGTGAGAGCCCCGTTGTGCCCGGACCCTGTCGCACCACGAGGCGCTGTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCAAATCGGGCGGTGAATTCCGTCCAAGGCTAAATACGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGGAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGATGGGGGCCGGCGATGCGCCCCGGTCGGATGTGGAACGGTGNTACCGCGAAGGAAAGATGAAAAGGACTTTGAAAAGAGAGTCAAAGAGTGCTTGAAATTGTCGGGAGGGAAGCGGATGGGGGCCGGCGATGCGCCCCGATCGGATGTGGAACGGTGTTGAACCGGTCCGCCGATCGACTCGGGGCATGGACCAGCGTGGATTGGGTAGACTTTTGATTTGGGTGAAGTTACTTGTTGATTGATAGAGCTTAGCTTCTTAATTAGCTTATTCCTAAGACATTTCCTTTTCGGACTTCTTAAATTCTAACTATGTTTAGTTGAATGTTCTAAAGCATACATAGAACAATTTGTTGCTAAGTAGAATAATCCCCTGCTTCACACTTTACCCACAATTCAGTTTGCATTCCATAGTAAAAGTACTATTTTGGGGTTCAAGAAAAAATTTGAAACCTTT +>CM000024.3/41982868-41983007 Canis lupus familiaris chromosome 24, whole genome shotgun sequence. +ATCGCTTCTCGGCCTTTTGGCTAAGATCAAGTGTAAATAAAAAAATACATTATTTTAAAAATCTGATATGAAATGATATTTATTGGGGCTTCTGGGCAAATCAATCACCCTTGTGCTAGAGTGTTAGGATATGTAGAGTG +>CM000400.2/42839630-42839710 Equus caballus chromosome 24, whole genome shotgun sequence. +TGGACCTCTCATGAACCCACCATGACGCCTGGTGGCAGATGTCATAGGTGATGAACATGTGTCTGGAACCCTGAGGTCCAA +>MNVL01000027.1/1734-2078 Candidatus Hydrogenedentes bacterium CG1_02_42_14 cg1_0.2_scaffold_12826_c, whole genome shotgun sequence. +GGGGGCGCAAGGTTTTGACGGCGACGGAATTGTCGAGGTGGCGCGCTGGGGCATGCTTAGTTGCCTCGTAAAAAATACTGAGCAACTTTTAACTGCCAACACTGAATTGGCTCTAGCCGCGTAAGCGGCAGACTGCATAGGCGACGCCCGCTGACTCTTGCAGTCCTCATAGCGGGCTGGCTTTCGGTTATGTACCGGGGATCGGGAGCGAGGAGAACACTCGGACTAGCGGAAAGGGAAGCCTGTCCATGGGCCATCTTTTTGCGAAATTAATACACGGACTACGCGCGTAGAAACCCGATGAAACAGTTGTTCGGACGTGGGTTCGATTCCCACCGCCTCCAA +>JRRC01272952.1/16470-12774 Gossypium arboreum cultivar AKA8401 contig_2968_9, whole genome shotgun sequence. +TCACTTACTTAAATACTTACTTACTTAATCAAATTTATTAATAAATTTTACTTACCTTTTTTTTTATCAAGCATACATGAACATTATATACTTACCTTTGCTCTTCTAGCATGAACTTGTCTTACCTTTTTAGTATAACTCGTCTTACCTTACCTTACCTTGATATTCTCTTTAAATTATTTCCCGTTGAACCACTTGGAATACTAAGGATACATGGGTACCTTACCATTGCCATGACTTGTCATGGTCTTACGTGGTGTCCTTTTGAAACTTACCATTGCCATGCCTTGGTATGGTCTTACATGGGACTTTTGCCTTATAGTAACTTATTAATGCCTTGTCTTGACATGGTCTTACATGGTATCCTTACCTTAGAAACCTTACCAATTGAGATGCCTTGGCATGGTCTTACATGGTATCCTTAAACCCTAATGTCATGACATTTGTATCCTACACATTCCTAAGGTTCAACCAGGACTTTCTGAAATTACTTCTCCGTCAATTCATGCTTAAGTCTTCTTCGAATAATTTCATAAAATAAATATACACATGCTGGAAATTAGCAAAATTAACATAAAATAATAGAATATTGCATTTATTTACCGCAAACTTACCTCGAAACAAAATACGATCAATTATATCGATTTAGTCCACTATCTTTTTCTTTCCCCGATCTAACTCCGAATTTTTTTCTTCTTGATCTATAATAACAAATTTAGCTTATTTAATACTCACATTTATTAAAACAGTCATTGACTCAAACTTTGGCAAAATTACACTTTTACCCTAAACTTTTACATATTTATACTTTTTTCCTAAGGCTCGGAAATTAAACTTCATCCTATTTTCTTATGTTTTATGACATTCTAATCATTTTTCCCTTCTATGGAAACATAAAATTCTCACTCTAACATGTAGTTATGAACATTAGGTATTTTTACCGATTATGTCGTTTTACTCGTTTTCACATAAAATCGCTTAGCAAAAGTTGTTTAACATAATTTCGAGCTTCATATTCTACCATAAAATATCAAAATAAACACATTTCACCTATGGGTAGTTTTCCAAATATAAACCCTAGGTTAAATTATTGCTAGAATAAGCTTAATCAAGTTATCGGGACCCTAAAAACGTAAAGAACATTAAAAACGGGGCTTAGAATCACTTACTATAGAGCTTGGAATCTTGAAACAAATCCTAGCTACGGGGAACCCTTGAAGATGAGCACATTTTTGCCATTTTTTCCCTTTTTAATTCTTTTATTTGACACTTTACTAAAATGCCCTTTATTAAAATTTTTTAGTTATTTTTACCTATGTATATCCATTTTTGTCCATGAAAATATAATGGTCTAATTCCATTTAAGGACCTCTACTTCAATTATGCAATGACCAGGATGAAGCTTGGGTGAAACTAAGTGGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGGATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGCTGGTTCTCCCCGAAATGCGTTGAGGCGCAGCAGTTGACTGGACATCTAGGGGTAAAGCACTGTTTCGGTGCGGGCCGCGAGAGCGGTACCAAATCGAGGCAAACTCTGAATACTAGATATGACCTCAAAATAACAGGGGTCGAGGTCGGCCAGTGAGACGATGGGGGATAAGCTTCATCGTCGAGAGGGAAACAGCCCGGATCACCAGCTAAGGCCCCTAAATGACCGCTCAGTGATAAAGGAGGTAGGGGTGCAGAGACAGCCAGGAGGTTTGCCTAGAAGCAGCCACCCTTGAAAGAGTGCGTAATAGCTCACTGATCGAGCGCTCTTGCGCCGAAGATGAACGGGGCTAAGCGATCTGCCGAGGCTGTGGGATGTAAAAATGCATCGGTAGGGGAGCGTTCCGCCTTAGGGGGAAGCACCCGCGTGAGCGGGAGTAGACGAAGCGGAAGCGAGAATGTCGGCTTGAGTAACGCAAACATTGGTGAGAATCCAATGCCCCGAAAACCCAAGGGTTCCTCCGCAAGGTTCGTCCACGGAGGGTGAGTCAGGGCCTAAGATCAGGCCGAAAGGCGTAGTCGATGGACAACAGGTGAATATTCCTGTACTACCCCTTGTTGGTCCCGAGGGACGGAGGAGGCTAGGTTAGCCGAAAGATGGTTATCGGTTCAAGGACGCAAGGTGCCCCTGCTTTTTCAGGGTAAGAAGGGGTAGAGAAAATGCCCCGAGCCAATGTTCGAGTACCAGGCGCTACGGCGCTGAAGTAACCCATGCTATACTCCCAGGAAAAGCTCGAACGACCTTCAACAAAAGGGTACCTGTACCCGAAACCGACACAGGTGGGTAGGTAGAGAATACCTAGGGGCGCGAGACAACTCTCTCTAAGGAACTCGGCAAAATAGCCCCGTAACTTCGGGAGAAGGGGTGCCTCCTCACAAAGGGGGTCGCAGTGACCAGGCCCGGGCGACTGTTTACCAAAAACACAGGTCTCCGCAAAGTCGTAAGACCATGTATGGGGGCTGACGCCTGCCCAGTGCCGGAAGGTCAAGGAAGTTGGTGACCTGATGACAGGGGAGCCGGCGACCGAAGCCCCGGTGAACGGCGGCCGTAACTATAAGGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAAAGGCGTAACGATCTGGGCACTGTCTCGGAGAGAGGCTCGGTGAAATAGACATGTCTGTGAAGATGCGGACTACCCGCACCTGGACAGAAAGACCCTATGAAGCTTCACTGTTCCCTGGGATTGGCTTTGGGCTTTTCCTGCGCAGCTTAGGTGGAAGGCGAAGAAGGCCTCCTTCCGGGGGGGCCCGAGCCATCAGTGAGATACCACTCTGGAAGAGCTAGAATTCTAACCTTGTGTCAGGACCTACGGGCCAAGGGACAGTCTCAGGTAGACAGTTTCTATGGGGCGTAGGCCTCCCAAAAGGTAACGGAGGCGTGCAAAGGTTTCCTCGGGCCGGACGGAGATTGGCCCTCGAGTGCAAAGGCAGAAGGGAGCTTGACTGCAAGACCCACCCGTCGAGCAGGGACGAAAGTCGGCCTTAGTGATCCGACGGTGCCGAGTGGAAGGGCCGTCGCTCAACGGATAAAAGTTACTCTAGGGATAACAGGCTGATCTTCCCCAAGAGCTCACATCGACGGGAAGGTTTGGCACCTCGATGTCGGCTCTTCGCCACCTGGGGCTGTAGTATGTTCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGTGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCATATCCGGTGTGGGCGTTAGAGCATTGAGAGGACCTTTCCCTAGTACGAGAGGACCGGGAAGGACGCACCTCTGGTGTACCAGTTATCGTGCCCACGGTAAACGCTGGGTAGCCAAGTGCGGAGCGGATAACTGCTGAAAGCATCTAAGTAGTAAGCCCACCCCAAGATGAGTGCTCTCCTATTCCGACTTCCCCAGAGCCTCCGGTAGCACAGCCGAGACGGCAAGGGGTTCTCTGTCCCTGCGGGGATCGAGTGACAGAAGTTTTGAGAATTCAAGAGAAGGTCACGGCGAGACGAGCCGTTTATCATTACGATAGGTGTCAAGTGGAAGTGCAGTGATGTATGCAGCTGAGGCATCCTAACAGACCGGTAGACTTGAACCT +>JPUW01000003.1/58274-58063 Lysinibacillus sp. BF-4 contig00003, whole genome shotgun sequence. +AACGATGCAATGATAAGGAAGAGTAAAAAGTACGCGTAGGCAAGAGAGGGAACGGTAGCTGAGAAGTTTCTACTAAAGCGCTTTTGAAGGTAGCCTTGGAGCAACATTTGTGAACAACAGTAGCAAATGTCGGCAGCTAAGCCGTTATGTATTGAGTGCTAAGCTTCGGCTTGGAATAAAGGTGGTACCGCGAAAGCTCCTTCGTCCTTTTT +>ABWE02002692.1/6421-6661 Hyaloperonospora arabidopsidis Emoy2 Contig279.1, whole genome shotgun sequence. +TTTAAAAAATGAAAGAATCTAACTCTAGTACGAGAGGACCGAGAAGGGTAAATCTCTGGTGTATCGGTTGTTGAAAAGCATCGCCGAGTAGCTAAATTTATTTTGGATAATTACTGAAAGCATCTAAGTAAGAAACCATTCTTAAATTTTTTTTATATAAAAACTGTAAAAGATCATTACATTGATAGGTTTAAAGTGTACGTATTGTAAAATATTTAGCTTAAAAATACTAAAAGTTTAA +>CM000842.2/19036600-19036948 Glycine max cultivar Williams 82 chromosome 9, whole genome shotgun sequence. +GCTTGTGGTTTAATTTTACTTAACATGAGAAAACTTACCAGATCTAAACATAGTATGATTGACAGAATAAGAACTCTTTCTTGATTTTATGGGTGTTGTTACATGACCATTTTTAGTTGGTGGAGTGACTTGTCTAATTAATTTTGTTAACAATGAGAACTCAGTTTGCTTAAAAATGTTTTTGTTGAATAATTGTTCTTAAAAATGTTATGATTCAAGACAAATTCAGATTTAATTTAGAAGTAAATAGTAACTAAATGTTAAACCAGAAAACAAAAGGAATGCATTCAGCAAAATAAAAATTAATGCAAACAGAATGGGCCTCAAATTTTTTAGGTTACATGAGGAC +>MNRE01000021.1/40-1 Clostridiales bacterium 41_21_two_genomes Ley3_66761_scaffold_14658, whole genome shotgun sequence. +GGATCACTCCATTTGGGGTTAAGGCCATACGGACAGCCGG +>KI927239.1/392135-395996 Plasmodium falciparum Palo Alto/Uganda unplaced genomic scaffold supercont1.2, whole genome shotgun sequence. +GAGGATAAAAATAGGAGGGCAAATCCGCTGAACTTAAGCATATAATTAAGCGGAAGAAAAGAAAATAACTATGATTCCTTTAGTAACGGCGAGTGAAGAAGGAATAGCTCAATAAGTAGAATCCTTCGAATCTTAATGATATATTTATACATAGAATAAAGAATTGAAGGAATTGTCAAGTTGAATTGTACTCTTGTAGGCCTCACAGGTGAAATGAATATATAGAAGTAAAGTAGGAATACTTCCTCATAGAGGGTGAAAGGCCCGTATCATATATCATTTCGTGGGCTTTGGAGTATTTATATTTTACTGAGTAGTGTTCTTTGAGATTGGAGCACAAATTGGTGTGATACATTTCACATAAAGCTAAATATGTGTAGGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAATAGTACTCAGGAATGAGCAATTAAATAGTACCTGAAATCGTTAAGATGGAACGGATTAAGAGAGAAAACAAGTAAAGAGGAGAATTTTTTACATTTTTATTTTTGTTTTATAATTCTCTTCTTTATTAAAAGAAACATCAGTGATTAATTTAATTTCAATAAAGCAATCCCCTGAAATTCAAAATTTCTTTTAATTTTGTTTTCACTTTCTCCCCGCACTAATGTGGGGAAAACTGGCTTTATTTCTTCAATTATTTTTTTTGCTGAGGAATTTTAAAATTATTTGAATTTTTCTTCTTATAATTTAAGTTGTTTCTATATAGTACTTTCTTAACCCACTCGTCTTGAAACACGGACCAAGGAGTCTAGCAAATGTGCAAGTGTATATGATTCTTTAAACATTTCTCTTTTTAATATACGCATAATTAATGTAATATGTTTCTTTATTGTAGATTTGTGGTGTTTAATTTTTATTAAATCCCCACTTTGCATACAATACCGGTAAGCAATTATGCTTTATTGAGTACGAGCATATTTGGTAGGACCCGAGAGGCTTTGAACTAAGCGTGATGAGATTGAAGTCAGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTATTCGCTCATGAGATCCCATAAAAGGTGTTGGTTCATAATGACAGTAGGACGATGGTCATGGAAGTCGAAATTCGCTTAGGAGTGTGTAACAACTCACCTACCGAATGAACTAGCCCTGAAAATGGATGGCGCTAAAGCGAATTACCGATACCGGGCCATAAGAAGGTAGAAATTATAAATGTTAATTTAGCTCAGATCTTTTTATGAGTAGAAAATCGTGGGGTTTGTGTTGAAGCGAAATACGTGAGTTTTCGTGGAACATCTCCCTAGTGCAGATCTTGGTGGAAGTAGCAACTATTCAAATGAGAACTTTGAAGACTGAAGTGGAGAAGGGTTTCTTGTCAACTGTGATTGAACAAGAGTTAGCCGCTCCTAAGGGATAGCTGAAAAGTGTTTAAAAGAAGTAAGATATTATATGGAAATATATAATTAGATCTTCGTCTCAAAAGGGAAACAGGTTAATATTCCTGTGCCATAAGTAATAAGAGTGCAAACAGAGATGGTAACATACATATAAATGAACTCCTTAACATAGATTTTACTCATGGGGTGCGTTATCTTTGCACTTTAATTTTATAACAAACCTTGGAATCAATTTATTTGGAGAAGAGGTTCGTTGAACTCAATTCAAAAAAAAAAAAAAAAAAAAAAATTAATTATAGAAGGAAAGGATTTTCGGATCCTTTGTACTTTTTTTTTTTTTTTTTTTTTTTTTTTATGTTTTGTAGCAATAGTAATTCATTTCTTTTGAATTATCCATAGTGGTAAAAACTATCCATGAAACAAGGAGGGAACAGCAGCAATTATATAATTTTTGGGGTTCTTTGAATTCCTTATTATTTTTGCAATATTCTTAATACTTGTACGAGCGTACCAATAACCGCATCAGGTCTCCAAGGTTAGTAGCCTCTGGTTAAATAGAAAAAAGTAAGTAAGGGAAGTCGGCAAAATAGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGACATTAGAAAAGAGAAGAAAAAAAGAGGGTTGAGAATAAAATTGCAGATTTATTTGCTTTTCTCTCTGATTTGCTTGTAAATTTTCTTTTTCTTTTTCTTCTTTTCTTTTTTTTTCTGTCCCTCTTTTCGTCTTCATTTTATTGTAATTTTTGTTACTTTAATTTGATACATATATAATGTTAACTCAGAACTGAAACGGACAAGGGGAATCCGACTGTTTAATTAAAACATAGCATTGTGAAAAACCATAACTGGTATTAACACAATGTGATTTCTGCCCAGTGCTTTGAATGTCAAATTGATGAAATTTAATTAAGCGCAGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTACTTGCTATCTAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAAAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTTACTCTAGTCTGACTTTGTAAAACGACTTAAAAGGTGTAGATATAAGTGGGAGTAGGAAAATGAAATACGTTTTTTACAATAGTGAAATACCACTACTTTTAAAGTTGTTTTACTAATCCATTGATAGGGATATATAAAACTTATAAATAATTTTTATTTTAAGTTACTTTTGAATTTAAGATATGTGTGCATTTATATCTATTAAATCCCATTTTGTATATATATATATATATTATATATATGTGTATAATACGATTTTTTTTATGGAGACATAGTTAGGTGGGGAGTTTGACTGGGGCGGTACATCTGTTAAAAAATAACGCAGATGTCCAAAGACAAGCTCAAAGAGAACAGAAATCTCTTGTAGACTAAAAGGGGAAAAGCTTGTTTGATTTTTACTTTCAGAATGAGTAGAAAACGTGAAAGCGTGGCCTATCGATCCTTTATATTTGCAAAATGACGTAATAAATTACTTACTACTGTGCATATAGAGGTGTCTGAAAAGTTACCACAGGGATAACTGGCTTGTGGCTGCCAAGCGCTCTTAGCGACGTAGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGGGACGCAGAAGTCTCAAAGTGTCGGATTGTTCACCCGCTAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGAATAATATTATTATATTTTTTATATACAATATATAGTATTGTGACAGTAATCCAACTTGGTACGAGAGGATTAGTTGGTTCAGACAATTGGTACAGCAATTGGTTGATAAACCAGTGTTGCGAAGCTAAGTCTGTTGGATAATGGCTGAACGCCTCTTAAGCCAGAACCCATGCTGATTAGACAATTCTAAATTTGATCTTTTTGTTAAACGATAAAAATTATATATATATTTTTTTTATCTTTACTGCATAATGTAAAAGAGAAATTATACATATATATATATATATATATTAGAAAAGAAAAAATGATGTAATTAATTATTATTATTATTTTTTTTTTTTTTAGTATTAATATATAATTATGAATATATAAATAATCCTATATCTTTATATAAAAATTAAATTTTTAATTTTATTAGAATTTTTTTTTTTTATATATATAGATTGTAATTTAACAACAAAAAGTATTAAGCCCAAATCGTAGACGACTTTTCTGTCTCAGAGTACTGTAAACATGAGAGTAAACTTTGTTTTACGATCTGTTGAGGTTTATCTCTTGTGACATTGAGCTAA +>KI925462.1/351230-352057 Heterobasidion irregulare TC 32-1 unplaced genomic scaffold scaffold_09, whole genome shotgun sequence. +ACAGATCCAAGGCCACAATGCTCGTCCCGCACAGGACGTCTGAACGACAGTTCTGGCTTCCATCTTTGCGAGCGGGCTAAGGTCTGAGTGTATAGCTCCCTCGATCGACTCTCGCAGGGTCCGAGTCTAACGGCTCGAGCAACATACAAGAAATCCGTCTGCTTCACCTTGTCCGAAGACACGCTATCTGTTTCTCTAGATTCGGCGGCGTCGAGGGTGGTGAATGTAGGCTTGAGATATGTTGCGGAGTTTGGGCAGTACGTTTTGTCTCATCTATCCTCCGAGTCGTGGGTCGGAGTGCCCTCGATGCCCTATCGCACCTTTCGTCTGTGTCAGACGATCAGACATCAGGCAGTGTCTGAAGTGTTGTCAACTCGCTTCATTGCGACACAGACAGGAGTATATGACTCTGGGAGCACACCACTCCGATCAGAGCCTCCGGGAGAACACCACTCCAGTCTGATTAGGGAACACCCTTCTCCAAGTCGAACCTCTTTCCTGGACGAATGTTAGCCCTTCAGTCATGATCCGTGGCGAGAAGCGGGGGTCATAACTCACACCTGCCGCCTTTACCCAACGAGATCAGAAGACATAACCTGTCGCTGTTGTGGCTAATACAGGAAAGAGTGTCTGCCAAACCCTGGTGGGACGTGGACCTTGTCCAGTTGCGTTTCGATGGTCATGAGTTGATGACACTGGTGTATGAGGGGTTGGGAGTTTGTGAGGTGCACATCGGTACTGTCCTTCAGTGCAATTTGTGGCTCGCGCCTTTCGTTCTCCTTCTGGAAACGAAGGCGTGAAACTCGATTCAGACTACTCTGGGTCTGT +>ALWZ046142499.1/4049-4180 Picea glauca, whole genome shotgun sequence. +GGTTCCTTGGTCTAGTGTTCAGGACATTGGACTCTAAATCCATTTTTGAATGTTGTGTACAAATCCATGGTCTAGTGTACATGACATTGGAATCTGAATCCAATAGCTTGAGTTGTAATCTCGATGGGACCT +>LATL02000069.1/39931-40100 Limnoraphis robusta CS-951 contig069, whole genome shotgun sequence. +GTCAAGAACTCGCCGCTAAACCCTATGCGCTTTTCGCGCAGCAGGCTTCGCCAACGGGTTAAGCGCGGGAGCTTGTAAAAAGGCTCTAACTTGACCAGACTCAGCCCTTTTTGGGGCTACGTTATTTGGCTCACGAAACCCATGAATGCGTGCCAGTTTGCGGCTCTTTC +>CM003279.1/134475214-134476476 Salmo salar isolate Sally breed double haploid chromosome ssa01, whole genome shotgun sequence. +AACTCTTATGATTCAGAGTGGTTGGGTTAAATGTGGAAGACACATTTCAGTTGAAGGCATTGTTGTACAACTGACTTGGTATCCCCCTTTCCCTTGTAAGGAGAGACGATGATCCCTCTCATTTGCAAAGAGTTGGGATATGATAATATTCATAAATGGGGAATCAGGGTTCGATTCCAGAGAGGAAGCCTGAGATGCACCTACCACATCCAAGGAGGGCAGCTGGCACGCAAATTACCCACTGCTGACTCAAGGAGGTAGTGATGAGAAATAACAATACAGGACTCTTTAGACGCCCCGTAATTGAAATAGGTACTCTTGAAATCCTTTAATGAGGATCCATTGGTGGGCCAATCTGATGCCAGCAGCTGCGGTAATTCAACCTCCAATAGTGCATCTTAAAGTTGCTGCAGTTAAAAAGCCAGTAGTTGGATCTCGGGTATAAGCTGACGGTCTGCCGCAAGTTGAGCTACGGCCTTTCTCAGCCCCGGTACGCTTAACTGACTGTCCCTTGGGGTCTTAAAAAGTGTTCAAAGCAGTCTGTCGCCTGAATACCGCAGCTAGGAATAATGGAGAAAGACTCTGGTTCTATTTTGTTATTGTTTTCTTCTGAACTGGGCCAATGGTTAAGAGGGACTGCCGGGGGCATACATATTGTGCCGCCTGAGGTGAAATTCTTGGACTGGCGCAAGAATGTTTTCATTAATCAAGAATGAAAGTCGGAGGTTTAAAGACTTTCAGATACCGCTGTAGTTACGACCATAAGCGATGACAACTAGCGATCCGGCGGCTTTATTCCCATGACCCGCCGGGCAGCGTCCGGGAAACCAGATTCTGGGTTCCAGGGGGGAGTATTGTTGCAATGCTGAAACTTACAGGAATTGACGGAAGAGCACCAGCAGGAGTGGAGCCTCCGGCTTAATTTGACTCAGGAAACCTCGCCCGTACATGAAAAGATTTGACAGCTCTTTCTCGATTCTGTGGGTGGTGGTGCATGACCGTTCTTAGTTGGTGGAGTGATTTGTTTTGTTAATTCCAATTACGGACATGACAACTAATAAACTTTAAACTAGTTATGCGGCCAGAGCGGTCGGCGTCCAACTTCTTTGGGGGACAAGTAGTGTTCAGCCACACGAGATTGAGCAATAACAGGTCTGTGATGCCTGGGGCTGCACGCGCGCCACACTGAGCCGGTTGGCGTGTCTACCCTTCGCCGAGAGGCGTGGATTGGTTTCCGTAGGTGAACCTGTGGAAGGATCATTA +>HE978326.1/163659-163887 Kazachstania naganishii CBS 8797 chromosome 13, complete genome +ATCCCCCGTGCCTCGCTCGGCCAGCTGCGTGTCTTCAGGGACACTTTGATCTGCTGGTCTTGAGCTGGACGTGTTTCCCCTCGCGGGAAGCTGGTGGGGGGATACTGAACTTCAGTGACGACTTTTTGAGTACAAGGGCGCCCGGGATACTTCGTATCCCGCACAATGGTGTCTTCAAGATTTAATACTTCATTTTAAATTGTATTGTAATTAGTACGTTCATACATGT +>LCMH01000002.1/67321-67516 Microgenomates (Amesbacteria) bacterium GW2011_GWC1_46_24 UX46_C0002, whole genome shotgun sequence. +ACGGAAGGCTAGTAGTATGGGCCCCGCCGGTAGTAATACCGGTGCGCAAACTTGGCTATATCGGTGGACATCCTGAGCTTGTCGAAGGACAATACCGAGGCAACCTCGAAAGAGAGAGTCCGTAGAGACTACACGCCAAGCACCCCGACGTTATGTCGGGGTGATGATATAGTCCGACTCCCCGAGTAATCGGGGT +>GL636099.1/5798-5944 Serratia symbiotica str. Tucson genomic scaffold scaffold00192, whole genome shotgun sequence. +TAACAAAAAAATACCGAATACGATTCCTATATTCGGTCTAGGGAAATGGCTCCTAGGAGAGCCATGCGCTAAAAGTTAGCGTTTAGTGCATAATTTATCCAGTCATACTGCACTAAGCGTAGCCTATCACACTATTTTTGCCAGCTA +>JH711579.1/1959477-1959901 Coniophora puteana RWD-64-598 SS2 unplaced genomic scaffold CONPUscaffold_7, whole genome shotgun sequence. +ACGTCGTCTGAAGAATCGCCATCGCAGCACACGCACAAGAAACGTCCTCATACGATGCTTTCTACCCTACGCTGTGGGAAAAGTCCCCGGAGACACAGAGTCCCCCTCGTGGGGCCGGCCCCCGTTCGCTAACGGAAAGCCCTGGCTGCAACCACGCCGAGGAAGGGCGGGGGATCGGTCGGGCGAGTTCACCCTGCTTGCTTCTCTATTCCTCTCGGATGGGAATGCAAGCTCGGCTCGCCCAGCTCTGTTGCGCTGCCCGACGTCCCGCGGTCTATCGCGAAGACACGAGCCTTGGCCGCGCTTTTGTGGGCGGAGGGCGCGCACGTCGTTGCTCATAGACATAGTTATGCGATTGTCGGCTTTCGCGGTTCATTCTTGTGGATCGCGGCCGTCATCTCAATGGGGCTTACTCTCATTCGACG +>ABLE03011845.1/1131-1 Caenorhabditis japonica strain DF5081 Contig9535.1, whole genome shotgun sequence. +TACCTGATTGATTCTGTCAGCGCGATATGCTCAAGTAAAAGATTAAGCCATGCATGCTTTGATTCATAAATGAAATTGCGTACGGCTCATTAGAGCAGATATCACCTTTCTCGGAATCCTGAAAAGGATAACTGCGGAAATTCTGGAGCTAATACATGCGACTATACTCCAACGCAAGGCGGGGTGCAATTATTAGAACAGACCAAACGTTTTCGGACGTTGTTTGTTGACTCTGAATACCGTCGTTTACTGTCAGTTTCGACTGACTCTATCCGAGAAGGGTGTCTGCCCTTTCAACTAGATGGTAATCTATTGGACTACCATGGTTGTTACGGGTAACGGAGAATTAGGGTTCGACTCCGGAGAGGGAGCCTTAGAAACGGCTACCACGTCCAAGGAAGGCAGCAGGCGCGAAACTTATCCACTGTTGAGTATGAGATAGTGACTAAAAATATAAAGACTCATCCTTTTGGATGAGTTATTTCAATGAGTTAAATATAAATTATTCTTCGAGTAGCAAGGAGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCTCCTAGTGTATCTCGTTATTGCTGCGGTTAAAAAGCTCGTAGTTGGATCTAGGTTACGTGCCGCAGTTCGCAATTTGCGTTAACTGTGGTCGTGACTTCTAATTTGCTGGTTTGAGGTTGGGTTCGCCCTTCAACTGCCAGCAGGTTTACCTTGAATAAATCAGAGTGCTCAATACAGGCGCTTGCTTGAATAGCTCATCATGGAATAATGAAACAGGACTTCGGTTCTTTTTGTTGGTTCTAGAATTGATCTAATGGTTAAGAGGGACAAACCGGGGGCATTCGTATCATTACGCGAGAGGTGAAATTCGTGGACCGTAGTGAGACGCCCAATAGCGAAAGCATTTGCCAAGAATGTCTTCATTAATCAAGAACGAAAGTCAGAGGTTCGAAGGCGATTAGATACCGCCCTAGTTCTGACCGTAAACGATGCCATCTCGCGATTCGGAGGGTTCATGCCCTACCGAGGAGCTACCCGGAAACGAAAGTCTTTCGGTTCCGGGGGTAGTATGGTTGCAAAGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACAAGGCGTGGAGC +>MELN01000046.1/18551-19023 Actinobacteria bacterium RBG_16_64_13 RBG_16_scaffold_3124, whole genome shotgun sequence. +GCAGCTCGGGTAGCCGCAGGGGCTCACCAACCGTGAGTTCTTGAGGAAAGTCCGGACACCATAGAGCAGGGTGCTGGATAACGTCCAGCGGGGGAAACCCCAGGGAAAGCGCCACAGAAATTACACAGCACGCCGGCGCAGCCGGTTGCAAAGGTGAAATGGTGCGGCAAGAGCGCACCGGCGTCGTGGTGACACGGCGGCCAGGCAAGCCCCACCCGGTGCAAGGCCGAATAGAGAGGCGTCTGAGGGCTGCTCGCCCGAAGCCTCCGGGTTGGCCGCATGAGCCGTCCGGCAACGGCCGGCCATAGATAGATGGCTACCCAAGAGGCTGCTGGGGAATGAGGCTCGCCGCCAGGGTGCGATTGGCATGCGCGAGAGAAGGACGCACTATCGGGCCGCCTAGTGCGGTCCGGCGGCCGGGGCCTTATTTCCCAGCAGCCTCAGGACAGAATCCGGCTTACAGGGCTGCTACC +>CP009284.1/1108194-1108485 Paenibacillus sp. FSL R7-0331, complete genome. +TCACACGCAATGAACGGGAGCAGTAGATGATGAAGGTGTGCAGAGAGCTGCGGGCTGGTGCAACGCAGTCACCTGATAGGCATTGAATCTCGCCCGGGAGCGGAGCGGCGGAAACAGGAAGTACGCCGCAACGGAAGTCCCCGTTACCGGACATCTGTATTTGCCGGACTATACCCGTATGGGGATGAGCCGGATACGGGGTGAGCTGGGCGCAGCTTGCGGTTTATCAGGAAGGTAAGCCGGATGCGTCAACAAGAGTGGTACCGCGGTGGGGTGACCCGCCGTCTCTTAT +>KE695927.1/3217556-3217637 Alligator sinensis unplaced genomic scaffold scaffold391_1, whole genome shotgun sequence +GCATGGAGCTGGCTGCTCCAGGGAGCAGGTGGGAGCTGGATTCCCAGCCTCTGTCTGCTCCCTGGAGCAGCCAGCTCTGACT +>KQ414443.1/2085-2243 Termitomyces sp. J132 unplaced genomic scaffold C252961, whole genome shotgun sequence. +ACACTGATGGTGAAGTGGTTATCATGCTTGCCTTCCATTGCATAGAAGCTATTGCATCTGTCTGAAGCAAGCGGCAGGGGTTCTGCTTGCCTTCCATTGCATAGAAGATATTGCATCTGTCTGAAGCAAGCGGCAGGGGTTCGATTCCCCTTCAGTGTA +>FJ872372.1/9644-12466 Uncultured Verrucomicrobia bacterium clone 106 genomic sequence. +ATTCAAGCAAACAGATGGCACATGATGGATGCCTTGGCGTTGATAGGCGATAACGGACGCGACAAGCTGCGATAAGCCATGGATAGCGGCAAATACGCTTTAACACATGGATCTCCTATGGGGTAACCCGAGGGCTCAGCCCTCATCCTGCCTTTTACAGGCAGTGAAGCGACACTCGGTGAAGTGAAACATCTCAGTAACCGAAGGAAAAGAAAGCGAAAGCGATCCTGTGTGTAGCGGCGAGCGAAAGCAGGACAGCCCAAACCGGCGTTAAACCCGGGGTTGTAGGACCAGGCATAAGCGATGTGATCAGGTTGGTTCAAAAGGCTGGAAAGCCTTCCGATACCGGGTGAAAGGCCCTTAAACCGACTCGGCCCACATTGCGCCTGGCTCCTGAGTAACGCGACATAAGTGAAACTTCGCGTGAATCAGCGCGGACCACCGCGTAAGGCTAAATACTCATCAACGACCGATAGTGAACAAGTACCGCGAGGGAAAGGTGAAAAGAACCGCTACAAGCGGAGTGAAATAGATCCTGAAATCATGTGTCTACAAGGTGTCAAAGCCCTTCGGGGCGATGGCGTGCCTTTTGCTTAATGAGTCTGCGAGTTATCTTCAGTGGCCAGCCTAATGTCATTTGACAGGAGGCCCAGCGAAAGCGTGTCCGAAATGGGCGTCAATAAGTCGCTGGAGATAGACCCGAAGCGGAGGTGATCTACCCATGGTCAGGATGAAGCGCGGGTAAAACCGCGTGAAGGTCCGAACTGGTGGACGTTGAAAAGTCCTCAGATGAACTGTGGGTAGGAGCGAAAGACTAATCAAACCCCGTGATAGCTGGTTCTCCCCGAAATAGCTTGAGGGCTAGCCTCTTGTTCCTCCTTCCGGAGGTAGAGCACTGGATGAACTAGAGCCCATACCCGGGTATCGAACTCAATCAAACTCCGAATGCCGGAAGATTTAAACAAGGGAGTCAGTCGGCGAGGGATAAGCTTCGTCGGCGAGAGGCAAACATGCCAGACTAGCAGCTAAGGTGCCCAAATGCCGCGTAGTGCAAAGGCTGTGGCGATACACAGACAATGAGGATGTTGGCTTAGAGGCAGCCACCATTTAAACAGTGCGTAATAGCTGACTCATTTAGTGTCTCCGCGCCGATAATGATTGGCGATCAGCGGTATACCGAAGCTCTAGGATAGTACGTCCGAGAGGATGTGCGATCGGTAGGGGAGCATTGTTGTCTGTATTGCCGTGGCGTAAGCCGCGGTTTAAGAACAACAAGTGAGAATGCAGACATGAGTAACGATAGCCCTGTTGAATCCAGGGCCGCCGAATACCCCAAGGTCTCCTTGGCAAGGATTGTCCGCCAAGGTCTAGTCGGATCCTAAGTTGAACCCATACGGCTACAACGATGGAAACCAGGCTAATATTCCTGGACCGCCGATATTTAACCCATCCTTGGTGCGCAGGTGCAAGCAGGCCGTCGAATGCCTGTCCCGAGAGGGCGAGTTCCAGCTCTGCTGGAGCGAAGTTGTCATGACGCGCACCGCAAGAAAAAGATGGCGTATAATCAGGTGTCCGTACCAAACCGACACAGGTGGGGTCGCGCAAGAGCGCGAAGGCGTAAGAGTGAAACCTCGTTAAGGAACTCGGCAATCTAACCCCGTAACTTTGGAATAAGGGGTGCCCTCGCAAGAGGGTCTCAGTAACCGGGTCAACCGACTGTTTAACAAAAACACAGCACTCTGCCAAGTCGAATACGACGTATAGGGTGTGACACGTGACCAATGCGGAAAGATTACGGTAAGGGGTTAGCCGCAAGGCGAAGCTCTGAGCCCAAGTCCCCGTGAATGTCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATCGTGTAACGAGTTGACCGCTGTCTCGACGAGGAGCTCAGTGAAATTGTAGTGGCGGTGAAGATGCCGCCTACCCGCAGCAGGACGGAAAGACCCTATGCACCTTTACTGTACGCTGTAACTGTGGTCCTTAACCCTTTGCCTAGAGTAAGTGGGAGACTGTGAACCTGTCCCTCCGGGGGCAGGGGAGTCGCCAATGAAACACCACCCTTAGGGTTGAGGGCCTCTAATCTGGATTTTTCTCCAGAGAACATTGCAGTCGGTCAGTTTTACTGGGGCGGTATCCTCCTAAAGAGTAACGGAGGAGTGCGAAGGTTGGCTCAGCCCGGTCAGCAATCGGGTGACGAGTACATGGATATAAGCCAGCCTAACTGCAAGACCTACAAGTCGCGCAGATGCGAAAGCAGGCCCAAGTGATCCGGTGACGGAATGTGGAATCGTCATCGCTCAACGGACAAAAGGTACGCTAGGGATAACAGGCTGATCCTGCCCAAGAGCTCATATCGACGGCAGGGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGGAGAAGGTCCCAAGGGTCCGGCTGTTCGCCGGTTAAAGTGGTACGCGAGCTGGGTTCAGAACGTCGCGAGACAGTTCGGTCCTTATCCGCTGTGGGCCCAAAAGAAGTGAGAAGTTTAGATTCTAGTACGAGAGGACCGAATTTAACGGACCAAGGGTGTTAGAGTGGCCGTGTCAACGGCCCGGCTCTGTTGCTATGTCCGGAACGGATAAACGCTGAAAGCATCTAAGCGTGAAGCCACTTTCAAGATTGCTTCTTTATTGTAGGCGTGGGAGACCACCACGTTGATAGGCCAAAAGTGCAGATGCAGCAATGTATCGAGCTAACTGGTACTAATCCGACAAATGCTTGAATGA +>CP001720.1/3486540-3486319 Desulfotomaculum acetoxidans DSM 771, complete genome. +GAAATCCCGTCTGGTAAGACTCTAGCCAAGTCACCAGTAGCGAGTCTTGGACTCGATGGAGTAATTCATAGAGTTAAGCGTAGACAGGTAGGTAGTAGGCCTGAATGTGATTGAGCCCCGTAATGGGCAAACGGGAAGGTTGACGGTTTCGAAACTCCGGAAAACTATATCTTGGTACGCGATATGGCGAGTGTATTGAGACTTCCTCGGGGTCTAAGAGCC +>AFTD01223909.1/154-1 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +GAATGTGAAGACAATCCTGTGACGTCTTTCACCTCATTGGACTTCAGGGTTAACTTGATTGATGGGGCTAGAGGGCGTGTCCCCTCCTGCATCACTCCAAGTGCATACTTCATGGTGCTGTGCACTCAAACAGGACAACCTTCCCTAATGGAGT +>MGPA01000055.1/20568-20297 Coxiella sp. RIFCSPHIGHO2_12_FULL_44_14 rifcsphigho2_12_scaffold_6640, whole genome shotgun sequence. +CCCGATCACTCATTGAGAGGTTTCATTAAGTTGAATTAAAAGGGAATCCGCACGCTTTGATACAAAATCAGAATGAAAGCTAATGCCATACAAAACGGCTGTGTATTTATTCTGCATCATGCTAAAAGTATTAAAGCAATTGGAGCTGTCCCCGCAACTGTATGCAGCAAGTGCTGTTCTATAAACCACTGGCACCCTTGGACGGGGCTGGGAAGGTGGATGGCACGTTTGAGCTGTTAGCCAGTAGACCTGCCTTCGATGAATAATTAGCT +>CP001472.1/654493-654256 Acidobacterium capsulatum ATCC 51196, complete genome. +TATTCGTAAACGCTTTGGGATGTTCGGGAAGGCGGTGAAAATCCGCCACTGCCCCGCAACTGTAAGCGCGTTCGTGTGCTTTCTCGTCTGTTGAATACAGAGGGCACACAGAGGTCCGGGCGTAGGATGCCACTGGAGCAGATGCTCCGGGAAGGTGATTCCGCGATGCCGCCCGGCTTCGATTCCACAGGGAATGAGCGCCTAAGTCAGGAGACCGGTCCCATGCGCCTTTTTCACC +>JRRC01082395.1/3124-5153 Gossypium arboreum cultivar AKA8401 contig_15521_1, whole genome shotgun sequence. +GTTCAAACGAGGAAAGGCTTACGGTGGATACCTAGGCACCCAGAGACGAGGAAGGGCGTAGTAAGCGACGAAATGCTTCGGGGAGTTGAAAATAAGCGTAGATCCGGAGATTCCCGAATAGGTCAACCTTTCGAACTGCTGCTGAATCCATGGGCAGACAAGAGACAACCTGGCGAACTGAAACATCTTAGTAGCCGGAGGAAAAGAAAGCAAAAGCGATTCCCGTAGTAGCGGCGAGCGAAATGGGAGCAGCCTAAACCGTGAAAACGGGGTTGTGGGAGAGCAATAAAAGCGTCGTGCTGCTAGGCGAAGCGGTGAAGTGCCGAACCCTAGATGGCGATAGTCCAGTAGCCGAAAGCATCACTAGCTTACGCTCTGACCCGAGTAGCATGGGGCACGTGGAATCCCGTGTGAATCAGCAAGGACCACCTTGCAAGGCTAAATACTCCTGGGTGACCGATAGCGAAGTAGTACCGTGAGGGAAGGGTGAAAAGAACCCCCGTCGGGGAGTGAAATAGAACATGAAACCGTAAGCTCCCAAGCAGTGGGAGGAGCCCAGGGCTCTGACCGCGTGCCTGTTGAAGAATGAGCCGGCGACTCATAGGCAGTGGCTTGGTTAAGGGAACCCACCGGAGCCGTAGCGAAAGCGAGTCTTCATAGGGCAATTGTCACTGCTTATGGACCCGAACCTGGGTGATCTATCCATGACCAGGATGAAGCTTGGGTGAAACTAAGTGGAGGTCCGAACCGACTGATGTTGAAGAATCAGCGGATGAGTTGTGGTTAGGGGTGAAATGCCACTCGAACCCAGAGCTAGCTGGTTCTCCCCGAAATGCGTTGAGGCGCAGCAGTTGACTGGACATCTAGGGGTAAAGCACTGTTTCGGTGCGGGCCGCGAGAGCGGTACCAAATCGAGGCAAACTCTGAATACTAGATATGACCTCAAAATAACAGGGGTCGAGGTCGGCCAGTGAGACGATGGGGGATAAGCTTCATCGTCGAGAGGGAAACAGCCCGGATCACCAGCTAAGGCCCCTAAATGACCGCTCAGTGATAAAGGAGGTAGGGGTGCAGAGCTAAGGATACATGGGTACCTTTCCTTTTTAAACTTACCATTGTCATGTCTTGACATGGTCTTACGTGGTATCCTTGCATTATGAACTCACCATTGCCATGCCTTAGCATGGTCTAACATGGGATCTTTGTCTTATCGTAGTTTATCAATGCCATGTCTTGACATGGTCTTACATGATTTCCTTGCCTTGTAAAACTTACCAATGACATGCCTTGGCTTGGTCTTATTTGGTATCCTTAAACCCTAATGTCATGACATTTGTATCTTGCACATGATATTTCGTACGGCCCTATGAACCTCGGACTCAGTTTGCCCTTACGGCCAAATCTGAGTATCTTTTTCAAAGGTGAAACTTTAAGAAACACTTTGTCTCCCACCTGATACTCAATATCTCTTCGTTTTAAATCCGTGTACTACTTCTGATGATCTGATGCTGCCTTCAGACTTTCACAAATTATTTTTATTTTCTGCTCAGTATCTTTAATCAAATCAACTCTGAAATTTTACTTTCACTGAGCTCAGTCCAAAACAATGGTGTACGGCATTTACGACCGTACAAAGCCTCGTAAGGTGCCATCTTAAGACTTGATTGAAAACTATTGTTGTAAGCGAATTCAATCAAAGGTAAATACCGCTCCCATGAACCACTAAACTCAAGGATTCAACATCTCAACATATCCTCGAGTATCTGAATTATTCGTTCGGATTGACCATCGGTCTGAGGATGAAAAGCGGTGCTAAAATGCAACTTGGTACCCAAAGCTTCTTGCAATTTCTTCCAAAATCGTGAGGTGAATCTCGGATCTCTATCCGACACAACAGAAATCGGTACCCCGTGGAATCGCACAATCTGAGAAACGTACAATTCAGCTAGTTTATCCAATCAAAAATCCGTACGCACGGGGATAAAGTGAGCCGACTTAGTCAGTCTATCAACAACAACCCAAATCGCATC +>MEZX01000002.1/385086-385203 Candidatus Berkelbacteria bacterium RIFCSPLOWO2_01_FULL_50_28 rifcsplowo2_01_scaffold_16, whole genome shotgun sequence. +GTTGGTGCTTTTTGCGGTTGGGGTACACCTCGTTACATTCCGAACCGAGCAGTTAAGCCAGCCAGCGCCGATGGTACTTACGGCATTCAGCCGCCGGGAGAGTAGGCCAGCGCCAACA +>LNFO01001542.1/1-433 Phytophthora nicotianae strain race 0 contig1542, whole genome shotgun sequence. +AACAGGCTGATGACTCCTAAGAGCTCCTATCGACGGAGTCGTTTGGCACCTCGATGTCGACTCATCACATCCTGGAGCTGAAGAAGGTTCCAAGGGTTCGGCTGTTCGCCGATTAAAGTGGTACGTGAGTTGGGTTTAGAACGTCGTGAGACAGTTTGGTTCCTATCTTCTATAGATATTTTGAAAAATGAAAGAATCTAACTCTAGTACGAGAGGACCGAGAAGGGTAAATCTCTGGTGTATCGGTTGTTAAAAGGCATCGCCGAGTAGCTAAATTTATTTTGGATAGTTACTGAAAGCATCTAAGTAAGAAACCATTCTTAAAAATTTTTCATATAAAAACTGTAAAAGACGATTACATTAATAGGTTTTAAGTGTAAGTGTTGTAAAATATTTAGCTTAAAAATACTAAAAGTTTTAAAAATTAAAATAT +>CP012602.1/5017483-5017399 Bacillus sp. FJAT-18017 genome. +ATCTGACAAAGGCAAACCTGTCTAAAGGCAGGGACGCAAAGCGATGGGCCTACCCGGGAAACCGAACGGCTGCCACGCCGCCGGA +>KI391971.1/1387979-1387852 Granulicatella elegans ATCC 700633 genomic scaffold supercont2.1, whole genome shotgun sequence. +TGAGCGTCATGATGGTAATAATCATCTTGCGGTTGTGAGATGAGAAGTCTGAGGCTACTGTAAAGTAGCCTTATTCTTTCTCATGATTATTTAGTCTAGCTCGCTGTCTCCCCGCCAGCGTTGGCGGG +>CAIX01000365.1/7381-7448 Albugo candida, Ac Nc2, WGS project CAIX01000000 data, contig: AcNc2_CONTIG_365_length_25035 +AGGGATGTAGCTTGTCGGGAAGGCGTTCGCTAATCGAAAGGACCCGGGATCGAAACCCGGCTTCCCTT +>HG322950.1/5060379-5060502 Pseudomonas knackmussii B13 complete genome +TCTGAGATGGCGCAGGACGCGCCATCCGCGCAAACGCGCCGCCCGGGCAGCGGTTGCGGACGGGGCAACGTGGAGCCCCGCGGCAGACCGTGGCGACCAGGGACGGCCGCCTCGGAGTGCACTT +>DS562870.1/37046228-37046111 Cavia porcellus supercont2_15 genomic scaffold, whole genome shotgun sequence. +TTGTGTCTAGATGTAGCCCCAAAACCTTATGCTCAAACTAAAGAGATGTCTTTCTATGGTCTGTTGGCCATTTCAGAACTTGGGCGTGAAGTGGTCAATTCATCAGAAAGAAACAGAT +>AGTP01080057.1/11891-11451 Ictidomys tridecemlineatus contig080057, whole genome shotgun sequence. +TCTGTTGAAGTGGATGCTCATCAGGGACCCCCTCCTTAGCCAATGGCACAAGCCATCGTGGAAACAGTGCCAGGTGGGTGGTTTGACTGGGGTGGAACACCTGCCAAACAGTGATGCCGGTGTCCTAAGCCAGCTCAGGAGGGCAGAAACCTCCTGTGGTGCCGAAGGGCAAAAGCTCACTAAGTCCTGGTTTTTCAGGATGAATACAGGCGGTGAAAGCAGAGCCTCATGATCCTTCTGATCTTCTGGCTTTCAGCAGGAGGCATCCGAGAAGTTGCACAGGGATAAGTGGCTGACGGCAGCCAAGCCTTCATAGAGCTGTCACTGTTGGACCTGGCCGTCTGCTCTTCCTTTCGATGTGCAGCAGAATTTGTCAACCACTGGACTGTGTGTCTAGTGACCGTGAATGTGAGCTGGGTTTAGACCATCCTGAGACAGGAC +>BDFN01001543.1/367-1030 Ipomoea nil DNA, scaffold: scaffold1543, cultivar: Tokyo-kokei standard. +TATGGGGTGTGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCTCAGCCTGCTAACTAGCTATGCGGAGGTATCCCTCCGCGGCCAGCTTCTTAGAGGGACTACGGCCTTTCAAAGCCGCGGAAGTTTGAGGCAATAACAGGTCTGTGTCCTATTACGTTGGCCTTCGGGATCGGAGTAATGATTAACAGGGACAGTCGGGGGCATTCGTATTTCATAGTCAGAGGTGAAATTCTTGGATTTATGAAAGACGAACAACTGCGAAAGCATTTGCCAAGGATGTTTTTCATTAATCAAGAACGAAAGTTGGGGGCGAAGACGATCAGATACCGTCCTAGTCTCAACCATAAACGATGCGACCAGGGATCGGCGGATGTTGCTTTTAGGACTCCGCCGGCACTTATGAGAAATCAAAGTCTTTGGGTTCCGGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTCCAGACATAGTAAGGATTGACAGACCTGAGAGCTCTTTCGAGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTTA +>HE616749.1/573542-573633 Torulaspora delbrueckii CBS 1146 chromosome 8, complete genome +AATAATGATGAAAAAATGGTCGCTTATCAATGCTTCAGATCTATCTGTGATGGAAACAAATAAATTAACCATTCAGAACCGCTACACTGATT +>CP022657.1/1323203-1323416 Tumebacillus algifaecis strain THMBR28 chromosome, complete genome. +AAATAGGCAATGATGGAGCGAGTAGCGTTTTGTAGGATTGTGCAGAGAGCCGGTGGTTGCTGTGAACCGGACAGTCCGATCACGTGAAGTACACTCCGGAGCCGCTTGGAGGCAATGCCAAGCCGGTCGCGCGAGTGATCGTTACGTCAATGAAGGAGTTTCTATTTTTGAAACTGCTTAGGGTGGTACCGCGAGTTCAAACCTCGTCCCTATT +>CP011601.1/33522-33359 Kluyvera intermedia strain CAV1151 plasmid pCAV1151-296, complete sequence. +TGGTGCTGGAGGCTTTTGCCCCAGCCAGCGGTAACACTGTTTGACTGTGGTAAAAGCAGAAAGCCCCGAGTAATTTTTCAATTAACCTGTACTGCACCCATTTTGTTGGACGATGAAATGGAATAGTCCCTGATATGTCAAAGCCAAAATACCCCTTCGAAAAG +>AMPR02000442.1/14789-14883 Cupriavidus sp. HPC(L) contig68, whole genome shotgun sequence. +CACTCCGAGGAGCGTTGCAACGGACGGCGCGCGGGCCCAACCCCGCATTCTGCCATCCGCCAGGCTCGGAATGTCTTCAACGGCGCTCGCTGAAC +>CM000811.1/53837939-53838120 Oryctolagus cuniculus chromosome X, whole genome shotgun sequence. +ATCACTTCTCGGCCTTTTGGCTAAGATCAAGTATAGTAATCTTAGGAAATGTCCCTGTCAAATAGCAAGAACTCAGAAATTATAACAATGTTTAGTGATATTAAAGGTTCTAATGTACCTGTCTCATACCTAGGGAGCTTGTATGCTTTTTCTACTTTTGCAAAATTTCTCTAAAGACTTCT +>KQ059250.1/49614-45799 Gossypium hirsutum cultivar TM-1 unplaced genomic scaffold scaffold2565.1, whole genome shotgun sequence +CGACCCCAGGTCAGGCGGGATTACCCGCTGAGTTTAAGCATATCAATAAGCGGAGGAAAAGAAACTTACCAGGATTCCCCTAGTAACGGCGAGCGAACCGGGAAAAGCCCAGCTTGAGAATCGGGCGCCATCGGTGTTCAAATTGTAGTCTGGAGAAGCGTCCTCAGCGGCGGACTAGGCCCAAGTCCCCTAGAAAGGGGCGCCGGAGAGGGTGAGAGCCCCGTCGTGCCCGGACCCTGTCGCACCACGAGACGCTGTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCTAATCGGACGGTAAATTCCATCCAAGGCTAAATACGGGCGAGAGACCGATAGCGAACAAGTACCGCGAGGGAAAGATGAAAAAGACTTTGAAAAGAGAGTCAAACAGTGCTTGAAATTGTCAGGAGGGAAGCGGATGGGGGCCGACGATGCGCCCCGGTCGGATGAACAAGTACCGACGCGGGTCGTGGCGGCGGCCCAAGCCCGGGCCTTTGATACGCCCGTGGAGACGTCGTCGCCTCGATCGTGGGATTCAGCACGCGCCGCCTCGGCGTGCTTCGGCACCTGCGTGCTCCGGGCGTCGGCCTGCGGGCTCCCCATTCGGCCCGTCTTGAGCCCCGGTCGGATGTGGAACGGCGAGAGCCGGTTTGCAAATTGGCTCGGGGCGTGGACTGACGCGGGGCGTGGCGGCGGCCCAAGCCCGGGCCTTTGATACGCCTGTGGAGACGTCATCGTCTCGATCATGGGATCCAGCACGCGCCGTCTCGGCGTGCTTCGGCACCTGCGTGCTCCGGGCGTCGGCCTGTGGGCTCCCCATTCGGCCCGTCTTGAAACACGGACCAAGGAGTCTGACATGTGTGCGAGTCAACGGGCTGGAAAACCCGTAAGGCGCAAGGAAGCTGATTGGAGGGATCCCTCACGGGTACACCGCCGACCGACCTTGATCTTCTGAGAAGGGTTCGAGTGAGAGCATGCCTGTCGGGACCCGAAAGATGGTGAACTATGCTTGAGCGGGGCGAAGCCAGAGGAAACTCTGGTGGAGGCCCGCAGCAATACTGACGTGCAAATCGTTCGTCTGACTTGGGTGTAGGGCCGAAAGACTAATCGAACCGTCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGAGCCCTTAGTGAGTTCTATCGGGTAAAGCCAATATTAGAGGCATCGGGGGCGCAACGCCCTCGACCTATTCTCAAACTTTAAATAGGTAGGACGGTGTGGCTGCTTCGTTGAGCCGCCCCACGGAATCGAGAGCTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGGAAGCCGGGTTACGGTGCCCAACTACGCGCTAACCTAGAACCCACAAAGGGTGTTGGTCGATTAAGACAGCAGGACGGTGGTCATGAAAGTCGAAATCCGCTAAGGAGTGTGTAACAACTCCCCTGCCGAATCAACTAGCCCCGAAAATGGATGGCGCTTAAGCGCGCGACCTATACCCGGTCGTCGGGGCAAGAGCCAGGCCCCGATGAGTAGGAGGGCGCGGCGGTCGCCGCAAAACCCAGGGCGCGAGCCCGGGCAGAGCGGCCATCGGTGCAGATCTTGGTGGTAGTAGCAAATATTGAAATGAGAACTTTGAAGGCCGAAGAGGGGAAAGGTTCCATGTGAACGGCACTTGCACATGGGTTAGTCGATCCTAAGAGACGGGGGAAGCCCGTCCGATAGCGCGTTCAGCGCGAGCTTTGAAAGGGAATCGGGTTAAAATTCCTGAACTGGGACGCGGCGGCTGACGGCAACGTTAGAGAGTCCGGAGACGTCGGCGGGGGCCTCGGGAAGAGTTATCTTTTCTGTTTAACGGCCTGCCCACCCTGGAAACGGCTCAGCCGAAGGTAAGGTCCAGCGACCGGAAGAGCACCGCACGTCGCGTGGTGTCCGGTGCGCCCCCGGCGGCCCTTGAAAATTTGGAAGACCGAGTGCCGTCCGCGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGTCAATGGAACAATGTAGGCAAGGGAAGTTGGCAAAATGGATCCGTAACCTCGGGAAAAGGATTGGCTCTGAGGGCTGGGCACATCGTGTGGTGTCCGGTGCGCCCCCGGTGGCCCTTGAAAATCAGGAGGACCGAGTGCCGTCTGCGCCCGGTCGTACTCATAACCGCATCAGGTCTCCAAGGTGAACAGCCTCTGGTCAATGGAACAATGTAGGCAAGGGAAGTTGGCAAAATGGATCCGTAACCTCGGGAAAAGGATTGGCTCTGAGGGCTGGGTACGGGGTCCCAGTCCCGAACCCGTCGGCTGCCGGTGCACTGCTCGAGCTGCTTCCGCGGCGAGAGCGGGTCGCCGCGTGCCGGCTGGGGGACGGACTAGGAACGACTCCTTCAGGGGCCTTCCTCGGGCGACGAACAGTCGACTCAGAACTGGTACGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGTCCCTGCGGATGCTCACGCAATGTGATTTCTGCCCAATGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTGTCTACTATCCAGCGAAACCACAGCCAAGGGAACGGGCTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTCACTCTAGTCTGACTTTGTGAAATGACTTGAGAGGTGTAGGATAAGTGGGAGCTCTCGGGCGAAATTGAAATACCACTACTTTTAACGTTATTTTACTTATTCTGTGAATCGGAGGCGGAGCACGACCCCTCTTTTTGGACCCAAGGTTGGCTTCGGCCGACCGATCCGGGCAGAAGATATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTTAAAAGATAACACATGTGTCCTAAGATGAGCTCAACGAGAACAGAAATCTCGTGTGGAACAAAAGGGTAAAAGCTCGTTTGATTCTGATTTCCAGTACGAATACGAACCGTGAAAGCGTGGCGACGATCCATCCTGGCGATGATCTGGCGAGCCATCCCAGGATATACAAAACGGCGCAACGAGTCCCCCCCCGGAATTTGAAGCTAAAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCAATCATTGTGAAGCAGAATTCACCAAGTGTTCGATTGTTCACCCACCAATAGGGAACGTGAGCTGGAGTTAGACCGTCGTGAGACAGGTTAGTTTTACCTTACTGATGGCCGCGTCGCAATAGTAATTCAACCTAGTACGAGAGGAACCGTTGATTCGCACAATTGGTCATCGCGCTTGGTTGAAAAGCCAGTGGTGCGAAGCTACCGTGCGATGGATTATGACTGAACGCCTCTAAGTCAGAATCCGGGCTAGAAGCGACGCACGCGCCCGTCGCCCGATTGCTGACCAGTAGTAGGGGCCTTTGGCCCGCAAGGGCAGTGTCGTAGGTGCAGCGACCACGACGGACAAGTCGCGGGCGCCTCCTTGGAGCGTAATTCCCATCGAGCGGCGGGTAGAATCCTTTGCAGATGACTTAAATACGCGACGGGGTATTGTAAGTGGCAGAGTGGCCTTGCTGCCACGATCCACTGAGATTCAGCCCTTTGTCGCTTCGATTCGT +>ATMG01007873.1/439-612 Angomonas deanei Cont7876, whole genome shotgun sequence. +CCCGGGGGGTACCCCCCGGGGGGGGGGGTAAAAAAACCCGGGGGGTTAAAAAAAACGGGGGGGGGGTTAAAAAAAAACCCCCCGGGGGTTAAAAAAAAACCCGGGGGTTTTTTTAAAAACGGGGGGGTTTAAACCCCCGGGGTTTTACCCCCGGGGGGGGGGAAAAACCCCCCC +>GL010040.1/62122050-62122364 Loxodonta africana unplaced genomic scaffold scaffold_13, whole genome shotgun sequence. +GGATGTGAGGGCAATCTGGCTGAAACACCTGTCACCGCATTGATTGCCAGGGCTGACTGGATGATGCTGCTCACCCTCATCCCTTAATTTCTCCTTCTGTGTCTTTCTGGAAGCCTTGGGCTTGGTGAAAAGGGAAGACTTTCCCAAAGACAGGAGGCCATTCTGCAATTATTAAAGATATGTGGGTAGTAGGTTGACCAGCTTTCCCTTTTTACCTGGGACTGAGGGTTTCCTGGGATGCACGACTCTAGTGCTAAAACCAGGAAACCCAAAAAACCCAGTGCCATTGAGTTGATTCTGACTCATAGTGACCCT +>LFJF01048753.1/46-1 Macrostomum lignano unitig_48821, whole genome shotgun sequence. +ATACTTACCTGGCGCGGGGGATACCGTGATCAAGAAGGCGGTGCCT +>URS0000D694FA_12908/1-95 unclassified sequences DUF3800-IX RNA +TTCCCCTCGGCGAAAGAGTGCCCTCATTGGGCGCGTGCCAGGTGGTTGAATGCTCTGCATAAGAGCCATAACCTGGATAGCCGAGGCGGTTTTAT +>GL896944.1/3131193-3131114 Mustela putorius furo unplaced genomic scaffold scaffold00047, whole genome shotgun sequence. +GGAACTTCAAAAAGGGTCGTCCTTCCTGTGCTTGCTTTACTGATGGTGCATTTTTGAAGTGCGTCCCATTTTTCAGAATC +>AZAF01012014.1/4245-4334 Dictyocaulus viviparus strain HannoverDv2000 D_viviparus-1.0_Cont414.7, whole genome shotgun sequence. +TATATTCACACAATCGGCGAGCGGTTTTCACTGTGATCTGAGAGTTCATACTTCTGAGATCATTGTGAAGGCCACTTGCCTTGTGCCGAT +>AP006878.1/1476852-1476910 Thermococcus kodakarensis KOD1 DNA, complete genome. +ACCGATGAGGAGTGTCATCCCTCCTGATGTCGAGATGATGACATTATCCCCACCTGAGG +>CP004044.1/1196775-1196896 [Clostridium] stercorarium subsp. stercorarium DSM 8532 chromosome, complete genome. +ACAACAAAGTAGAAGTGTCCACTTCTCACCCTGTGTCCTGTTGACTTCAGGGTTTAAATCGTAGCAGTATGTTGCTGTGATTTAACGCAGGTGAAGTGGCTTACCTGCTTTTTTATTTGTCA +>JMSN01000007.1/154622-154723 Tilletiaria anomala UBC 951 K437scaffold_7, whole genome shotgun sequence. +GGCCAATTGGCGCAATGGTAGCGCGTTGCTCTCCTACATGTGATGATTGCTTCATGCGCTTGGGGCAAGCAGAGGTTGCAGGTTCGACCCCTGCATTGGTCG +>LOHF01000026.1/9999-9927 Pseudomonas caspiana strain FBF102 scaffold00026, whole genome shotgun sequence. +TGGCCTGAAGCATTGGCGGTTGATGCACTGGCCTCATAAGCCAGCGAAGGGGGTTCAAGTCCCCACAGGCCAA +>AFTD01049056.1/8014-8294 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +GGACAGTGTGGCTGTGATATCACCCCATTGATTGCTAGGGGGTGGTCCTGATGTCCTTCTCATCACAGCTCCATGTATGTTCCCTGAAGCCACTTGCTGGTTTGAGGAGGACCTTTTTAGGGGAGGACCAGTGTTTTGTCAAAGATGTACAAATAACTACACTCTCCAGCTAGAACCTCCAAACCAGCTTTCAAGGTCCATTTGTAGGGAAATGTGGTGGTCGAGCTTCGAAGACTCAGGGCATACCAAGTGAGGCAATGCGTGGCAGTCTGCCTTCCTTT +>CP000102.1/1672674-1672743 Methanosphaera stadtmanae DSM 3091, complete genome. +AACAAATAAGGTGATGAGGTTCCACCTATTTAACTGCCAGTGATTACTGGATGATGACTTCTATTTTTAA +>LM433890.1/66331-66460 Nippostrongylus brasiliensis genome assembly, scaffold: NBR_scaffold0000505 +ATGCGTGATCTCAACACGCGTACTGCCTCCTACGGCGTACGTGTCTGTAATGCACGCTAGAACGAATGCGCCGGATTTCGCTAGCACCGCGTCCAGTGACCGGAGTTTGATAGTAGACCGGGGCACATTA +>KV440972.1/762318-763371 Phycomyces blakesleeanus NRRL 1555(-) unplaced genomic scaffold PHYBLscaffold_2, whole genome shotgun sequence. +GGTCCGTACTTTGAGCGATTCTACCTGCATTTACTGCAGTGGAAAAGAAACCAAAAGGGATTCCGTCTTGGACTTTATTGTTTGAGATGGAGAAGCTCCAATGTTTGAACCGGAGTAGTCTTTTGACTGCTCCGGATTGTGAACTAGTGAACTGCTTTTCCAGACATACCAACAAGTCAGTAGCCTTCACTCCCTGGAAAAGGTTACTGGAGGGTGCAATCCCCTCACCTTGTCTTGAGTTCTTGTCTTTGTGTTAAGTAGCTTCCGATGAGTCGGGTTGTTTTACAAACTCCCTAATCCTGGTGAAAAGTTTCATCGAAGGCTAAATATACTTATAAAAAACCAACTGAACACAAGTACCGTAAGGGAAAGTAGCTCTTAGTGTAGAGCATACTGGACGTTAAAGACCTTCCTGAGCCACTCATATGAAGGCGAAAGCCGGATGAAATCCACGTCAGTTTTTTCTGTGTTGTGCGGCACATAACATGGAGAAGACTGAGGAACGCAGAGGTAGCTTTATGCTATTTTCTTAGGACGTTGGATATTGGCTCTCCAGATTTTGTCCTTTGGGGCATGTCAAGATTGTCACATAAAGGTGCAAGTATAAGGGTGTATCACCTGGATGCGTAGAGTTTTTTAAATTCGTTGAGCACCTGGACGTGAGGTAATACAGGTAGATTCCAGCAGAATCGACAGATTACCCAGTACAATCGCCTGTATTTTACTGCTTCCTGTTGAAATGATCCCTGTGCTTTTCAAGTCCCTCATTGCTTAGACTTTGATACTTGTAACCCACGCTCTGGTAAACAGAACTGGACATGAGGGACGAACCCGAAGCAAAGTTAAGGTGCCTAAGTAAATGCTATGCTGTTCACTTGGGTGTCTCAGACACCTGTCCCGAGCAGTTTGGCATTAAAGCATTTCACCGATACTTTGCCGTCATGGTAAATTTGATGCCATGCCGAGTAGGCAGGAATGAGGGTTGTTGAGAAGCTTGGGTGTAAACTTGAGTGGATCGGCCTTCAAGCGCAGGTCTTGACAAAAAAATCTTTGT +>GL010085.1/8876859-8876953 Loxodonta africana unplaced genomic scaffold scaffold_58, whole genome shotgun sequence. +TAGCCTGGGCGGCGGCGGGAGCCTGCGCGGCCAGGTGGGGAGGCGGCAGGGCCCGGGCGGGCGCCTGCTGTCTGCCCAGAGCCGGCCTTTGTACA +>HF997045.1/49466-49290 Roseburia sp. CAG:50 genomic scaffold, scf107 +ATATCAAATAGAGGCGCGGTTTACCGGGTAGCAGCAAATGATAAGGAACATTATTTCCAAGGTTGTCTGTGAAGGGGTGGATCGCCGAAAGACCGGATCTGTAATGGGAGAAGGACTTGGGGCAAAGGCGGACAGCTTTTGCACTGTCATGTGAAAACGTGGGGCGCTATTCATCAG +>CP002734.1/423330-423196 Pseudopropionibacterium propionicum F0230a chromosome, complete genome. +AACTGGCTAGGCTGTCCCGCGACGACTGACCATTCAGCTTGCCGACAACGAAGGAATCCGGTGCGAATCCGGAGCGGTGCCGCCACTGTGACCACCCGGGTGGGAGCCAGATACTTCGGGCCAGCCAAGACCGAA +>AFYH01035016.1/408-649 Latimeria chalumnae contig035016, whole genome shotgun sequence. +GTGCCGCACCAGAGACTGAAGTCCTCTGTTTATCCACAGAACAGGTACAGCAAGGGCAGCGGCTGTGCAGGCTTCCCCTCGTATTGTAGAAAAGGCTTTCTCTCATTTTGTACTTATGGCCAGATCCTTTCTGCAGTAGGGCCCATTGCCCTGGCAGTGTGCCTCAACCCTGTCCTGGTGGGACTGCCTCTACAGGGTGAGAGGATAGTTCAGTCTCTATGCCCATTCACTCCTTGGCCTCT +>AAQR03046981.1/275629-275572 Otolemur garnettii contig046981, whole genome shotgun sequence. +CAAAAGGCTCTCTCTTTCCTCTTTGCAGAGAGCCACCCAAATTGTAGTAAAATTATAT +>CM000866.1/73130079-73130313 Callithrix jacchus chromosome 11, whole genome shotgun sequence +GAATGTGAGGGTGATCTGGCTGTGACATCTGTCACCCCATTGATCACCAGGGTTGATTTGGCTGATCTGGCTGGCTAGGTGGGTGTCCCTTCCTCCCCCACCTCTCTGTGTTCATCCCTCCCAATGTGACCATCCTTGATACAGGGCATATGAGTAGCTGTTATCCCCCTGCTAGAACTTCCAAACAAGCTCTCAAGGTCATGAGAGAATGGGGCAGATCTTGTCCAGTATAGTT +>AKKU01000011.1/303476-303556 Alishewanella agri BL06 contig011, whole genome shotgun sequence. +GGATTTTTAGCTCAGCTGGGAGAGCACCGCCCGCTTTTTACAAAAATACGGTTGCCACTGGTTCGAACCCAGTACAATCCA +>JPDO01000048.1/47729-47855 Acidomyces richmondensis BFW scaffold_48, whole genome shotgun sequence. +GCTTCGATGGTTTAGTGGTAGAATTTCACCTTCCCAAGGTGGAGGCACGGGTTGTAGGTTGCTCACCTGATTCTCGTAAATTTCCGCATCATACTTATCAATGTTGCAGCGATTCCCGTTCGAAGCA +>URS0000D6D023_12908/1-115 unclassified sequences EGFOA RNA +GACTGCCCAGATGTGCGAAAGCGACCGTCCTAGTCCACGAAAGTGGAGGATAATGCCCTGAAAGGTGAAAGTCCTTGCTCTGTAAAGCTAGACCTGGGGGAGTTAGAGGGGTAGC +>CM002905.2/43709859-43709995 Danio rerio chromosome 21, GRCz11 reference primary assembly. +AGCCAAAGCGTTGAGTTCAGCTCTGGGTTTCTCCCCAGTTCTGCTAATTAATCTTTGGTACAGAAAATGGCTGAGTGGTGATCAACATGAAGGGGTTATACTTTGACCTCCTTTATTAAACCCTTCAGCCGACATGA +>FWFW01000005.1/209292-208875 Pacificibacter marinus strain CECT 7971 genome assembly, contig: 0005 +ACGGATGGCTGGATGACCGCGGGTTCTGGGCGCGCAAGCGTACTGGGACGCGAGGAAAGTCCGGACTCCATTGAACAACAGTGCCGGGTAACGCCCGGCGGGGGCAACCCTAGGGACAGCGCCACAGAGAACAGACCGCCCTACGCGCGCGCAAGCGCACGCTGGGGTAAGGGTGAAACGGTGGAGTAAGAGCCCACCGCGCGAGCGGCAACGCAAGCGGCACGGCAAGCCCCACTGGGAGCAATGCCAAATAGGGGTTTCGTGTGAGGCACTGCGTTCGCGCAGAGTGATCATAGGGAGGTTCAAGCCCGAGAGACCCGGGTTGGCAGCTTGAGCGTATTGGTAACAATGCGCCTAGAGGAATGGTCATCGAGGGGGCAACCCCAGACAAAATCCGGCTTATAGGCCATCCGTGCAT +>AGTP01074074.1/1268-1332 Ictidomys tridecemlineatus contig074074, whole genome shotgun sequence. +TCCTTGTTCAGATCTGTGTCCAAATGATTTCCTGTACTTGCAGGGGACAGGTGGGGTTTCAGAAG +>FRCC01000012.1/1582-1684 Flavobacterium flevense strain DSM 1076 genome assembly, contig: Ga0131122_112 +TTTGCGTTAGGGATGGAAGCGGCATCCTTTTGTGAGAGCAGTAATTTTCAGGTTTAAACTACTATTACCCGAACAAAAGATACAGCGTACAGCCCGACCTTGT +>CM002818.1/210608794-210608329 Capsicum annuum cultivar Zunla-1 chromosome 7, whole genome shotgun sequence +AAGGTAGACGTTTATGACATTTTAAGACAATGAACCTGTACAATTGACCACTCTAAAAGGGCTAGAATTCTAACATTATGTTAGGACCTGAGGACCAAGAGATAGTCTCAGATAGACAATTTTTATGGGGCGTAGGCCTACTAAAAGGTAATGGAGGCATGCAAAGATTTCCTCGGGCCGAACAAAGTTTGTCCCTCGAGTTCAAAGGCAGAAGGGAGCTTGAATGCAAGACCCACCCATTGAGCAAGGACAAAAGTCTGCCTTAGTGATTCAACGGCGCCGAGTATAAGGCCCGTCGCTCAACTGATAAAAGTTACTCCTACAGATAGCAGGTTGATCTACCCCAAAAGCTCACATCGATGGAAAGATTTAGCACCTCGATATCGGCTCTAAGCCACCTAGGGTTGTAATATGTTTCAAGGGTTGGGCTGAAAATCAAGACCGGGCCGCTTTGTGGGACACTAGG +>AGTP01053200.1/11304-11443 Ictidomys tridecemlineatus contig053200, whole genome shotgun sequence. +GGGGATGTGGCTCAGTGGTTGAGTGCCCCTGAGTTCAATCCCCAGTACCAAAATTAATTAATTAATTAAAATAAAAAATAAAGGACTATGGATGTAGCTCAGAAGTAATGCACCCCTGGGTTCAATCCCCAGTACCCCCA +>AYUG01121489.1/14996-14569 Fukomys damarensis contig121489, whole genome shotgun sequence. +TTATTGGTTGATGTCATGATAGCAGCCATTCTTTCTAGGGTGAGGCGGAATCTCAGAGTTGTTTTTATCTGCATCTCTGGAATGAATGACTAGTAACTCAAAAACAGCTCATTGAACCCTGCCCCCTCAGCCTGGTGGAAGGGAGGGGGAGCAGGAGCCTGCAGCTTGGGTGACTCTAGATAACTTCAGGCTAATTGCACAGTGTGCACAGACACACACACGCGCACGCACCCCGAGGTGGCATCAACCCATTTGAACATCAGCCCTATCAACTTTCCATGGTAGTCATCATGCCTACCATGGTGACCTCGGGTGATGGGGAATCAGGGTTCAATGCCGGGGAAGGAGCCTGAGAAATGGCTACCACATCCAAGGAAGGCAGCAGGCATGCAAATTACCCACCTCTGACCCGGGGAGGTAGTGATGAA +>JJRU01010803.1/22820-23049 Picoides pubescens contig10803, whole genome shotgun sequence. +GTGCATGCTGGGCTACACTTCATGAAATGGAGCTCAGGAGCAACCAATTGCTTAGCTCCTCCTAACATGTCCAACTGGCTATGAAAAGCTGGAGGTGCTGCACAGAACAATGAAGAGGAGCTATCCCACATATTAATCTGCTTATCAAGGATTGCCTTCTGTATAGGTTAATGGGAAGCATGTAAAAGGGGGGGGGGGGGGGAAGAGGGGGGGAAAAAAAGGGGGGGAAA +>LM550152.1/1576-1768 Onchocerca flexuosa genome assembly, scaffold: OFLC_contig0009332 +AATGTTGTTGCGATAGTAGTCCTGCTCAGTACAAGAGAACCGTCAGATCATTGGGTCATTGGGTTCATGTGCCTGACCGATTGGAAAATTGTACGAAGCTACCATCTGAGGGATTATGACTGAACGTCTCTAAGTCAGAATTCCTTTATCAAATTTTGTATTTTGCGTTACAAATAAAACCGAAAAAAAAAAA +>AAIZ01025588.1/144-25 Drosophila persimilis strain MSH-3 cont1.025587, whole genome shotgun sequence. +CGACGATCGGGTCTTTCGAGTGGAGGGGAGAGTGTTGGAGTTGGCGGACATGGAGTGTTCCACCATGAACCTCGTCTGCCACTCTCATCTCGTCCACCCGCTCGAGAGGTTGCGATCGTC +>BX284602.5/14617143-14617209 Caenorhabditis elegans chromosome II +GTGCGATGAAGGTTAATGATAAGTTTCGGCTGACTCAAATTGATGACACCTTTAATATGCTGAGCAC +>NHBU01000111.1/1-68 Bacterium TMED15 isolate TMED15 146485, whole genome shotgun sequence. +TGACAAACATGTAGTAGCTTTTTTTGAGATGTTTTCGGACGCGGGTTCGACTCCCGCCACCTCCAATT +>AACT01044066.1/1177-1 Ciona savignyi cont_44066, whole genome shotgun sequence. +AAACTTTGCATTAATCCTGAGAATTTGGTATTTTTGTATGATTATGACTTTAAGAGCTTTAAGAATCTTAGCAAAGAACAATTGACAATTACACTTGTGGATCATCATCACATACAAAAGTGAGTATTTGTCGTCAAAAAAATCCTGGGTTGAACTACAACAATAGTAATGTCTCAACCATGCAATAAGCTGCAATAGCTCTGGTAATCATGCAGTAAGCACTAGGTATTTTTGACTTGCTGTGTGATAATGCCTCTTGTGTTTTTTCATTTACATTCTTTTAATTATTCCTTTTAATAAAGAGAAAACTCATAAAGGTTTTTTCTAATTTTTTGTGTTATGTTAATAGTTCCCATGTGCTTCATGGGTGTGAGATCACACATGACAGAAATATTGGATCATCGCCCACAAGAATATGCTACTGCACCTGGCGTTGAAGTTTCTATTTGTAAAGTGGGTTCATGCAGTACTCTAATTGCTACGAGGGTTTTGCAGAATTTGAGAGAAGATCAACTTCTACCCGAAGTCGTCACTTTGCTGTTAGGTTGGCGCACTAGCGTCGGACGAGGGCCGCGACCGGCTGGGCGGCGGGCAAACGGCTCCGGGCAAGGTAACCCCGCTTCGGCGGGGTGCTACAGGCCCGGTGCGCGCAAGGGTCGCCGCCCGGTCGAGGAGAGATGCGCGCCGCACCTGCCCCGTTCGCGGGGCCGGGGAAGCCGTTCGAGCAGCGTCGTGTCGCGGTCCGGGACTGTCCTCAGTCCCGGGTCGTCTCGGCGCGGTTCCGAGCGGTCGCTCCCTCGCGAGGTGCCGCGGGTCAGCGGCTGACGCCAGCCACCTTCCCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGTGCGCGAGCCGCGGGGCAGTACGAAACCCGTAAGGCGAAATGAAGGTGAACGCCGGCGCGGTCCGGCGGAGGTTGGATCCCGTCCCGTCGGGGCGGGCGCACTACCGGCCGATTTTTTCCGCCCTGTCGGCGAGGTCGAGCGAGAGCGTGCAAGTCGGGACCCGAAAGATGGTGAACTATGCCTGAGGAGGTTGAAGCCAGAGGAAACTCTGGTGGAGGACCGTAGCGATTCTGACGTGCAAATCGATCGTCAAATTTGGGTATAGGGGCGAAAGACTAATCGAACCGTCTAGTAGCTG +>KV454486.1/94097-93978 Ascoidea rubescens DSM 1968 unplaced genomic scaffold ASCRUscaffold_12, whole genome shotgun sequence. +GCAATATTCTACGGGTGCCTCATGATTTTAATTTCTAATTATGATCTATGGCTGAGATTATACCGTCTACTGGAACTCGATCAAGTTAATACTTGCGTGAGGAAGTAATATTGTTATATT +>URS0000D69B4B_12908/1-89 unclassified sequences c-di-GMP-II-GAG riboswitch +CGGCGATTGGACACTTTGACCCCCGGGTGCGGGCAGCAGCGGTCACCAGGTTCCGGGGCGAGTGAATGGTGAGACCGGCCAATCTGCCG +>JH835753.1/1489368-1489540 Erinaceus europaeus unplaced genomic scaffold scaffold00465, whole genome shotgun sequence +GGCTGGGCTGTTCGCAGTGCAGGAAGCCAGCTGTTCTGAGGGAATCGAGGTGTCACCAGGAGCCTTGCTATTGCAGTGGGTTGTGGTCACAGGCTGAGTCCCAGGGCAGCCTCCATCCAGGCCTCTTGTGCTGAACTGGAGAGCAGCCTGAGGACTGACTGGGGCTCCCAAGG +>CP004349.1/2893589-2893441 Polaribacter sp. MED152, complete genome. +AACTAGCTTGCATGAGCGATAGAAACGACATCCTTTTTATGTATAAATTGGTTCTAAACTTTTTTTAGATAGCTTTAACCTTATAAAAAACCAGATACTGATACAAGTTCTGCATAAATAAAAAGATACAGTGAATAGCGCAGTTTTTG +>LAZP01002266.1/658-335 Ophiocordyceps unilateralis strain SC16a Contig_2342, whole genome shotgun sequence. +AATTGGGCGAAGCTACCATCTGCTGGGTAATGGCTGAACGCCTCTAAGTCAGAACCCGTGCTAGAAGCGTGGACGATTTTTTCTTGCTTTGCAATTAGAAGTGCAGAAATAGGAAGTCTTCGGGCTTTCGTGTGCCATAAATTTGAGGGTCCTGGTATCTTGAGCGGAAAGGCTTGGGGTACCTGCCTTCGTAATTACAACGAAAATATGCGGGCAAGGGAGGATCTCTTGCAGACGACTTGAATGGGAACGGGGTGCTGTAAGCAGTAGAGTAGTCTTGTTACTACGATCTGCTGAGGCTCAGCCCTATGTTCTTAGATTTGT +>MTEJ01000052.1/21539-21679 Thiothrix lacustris isolate A8 Ga0073116_1052, whole genome shotgun sequence. +AGTTTGCAGCGCTGTTTAGGTGCGCTCATTGCGGTGAGCGTTAAACGGGAAGTTGGTGCAACACCAACACTGCCCTCGCAACGGTAAGCAGGTTATGCCAATCTGATAAGTCCGACACCGGCCTGACAAGGCGCGACTCTA +>LGKD01099238.1/4615-4769 Octopus bimaculoides Scaffold8256_contig_7, whole genome shotgun sequence. +ATAGTTTTCTTGAATTCCTGGGGTTTGCTGAACCCAATCAGAGACCATCGATATTAAACTGATTTTTAGAACGAGGCGAAGAGTTAGGGGCTTGCTCCGCCTTTGTCACGGGTTGGCCTGGTATATCAGTACTTCTAGGATTCAGCCCATCTCCC +>MKVI01000100.1/16871-16982 Legionella sp. 40-6 scnpilot_expt_750_p_scaffold_1464, whole genome shotgun sequence. +TGCCTTGGTAGAATGATCGCCTTTAACGAATACTAAGTAGTTCCGGGAGTGAAGAATGTCGCTAAGTAGCGCAGATAAAGCAGCAATTGTAAATGAGTTCAAGCGTGATGAC +>LBRP01000004.1/36699-35151 Parcubacteria (Nomurabacteria) bacterium GW2011_GWF2_36_19 US08_C0004, whole genome shotgun sequence. +AAAGTATCTCTGGCAACTGTTTATCAAAAACACAGCTCCCTGCGAACTCGCAAGAGGATGTATAGGGGGTGACACCTGACCAATGCCAGAAGGTCAAATATCGGTGGTGCATGGTCGCAAGATTGTGTGCTGGCTGATATAAGCCCTGGTGAATGTCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAGTACCTTGTCGGGTAAGTTCCGACGCGCACGAATGGTGTAATGACTGGAGAACTGTCTCGAAGACCTGCTCGGTGAAAATACAATACCGGTGAAGATGCCGGTTACCTGCAGATAGACGAAAAGACCCTAGAAGCTTTACTGCAGCTTGATATTGAGTATATTGTTTTAATGCGTAGCATAGATGGGAGAGGTTTGATGGTTAGGGTCTCGGCTCTGATCTACTCGTCAGTGAAATACCATTCTTTACAATAATATGCTCTAATCTCTAAGGCAAAAACTTAGAGAGACAGTATCTGGTGGGTAGTTTTACTGGGGCGGTATCCTCCTAAAGAGTAACGGAGGAGTTTATTAAGGTTAGCTAGGCGCGAATGGAAACCGTGCCGATAGTGTAATGGCACAAGCTAGCTTAACTGTAAGACGTACATGTCGAGCAGATACGAAAGTAGAACATAGTGAACCGACATTTCGCATTAGATGCGGATGAAGATTAACGGATAAAAGCTACTCTAGGGATAACAGGCTAGTTCCGCCTAAGAGTTCATATCGACGGCGGAGTTCGGCACCTCGATGTCGGCTCACCTTATCCTGGTGGTGGAGAAGCTGCCAAGGGTTTAGCTGTTCGCTAATTAAAAAGGTACGCGAGCTGGGTTCAAACCGTTAAGATCATAAACGATTGTGATTTTAACAGTTTGAACCGTCGAGGAAAGTAAAGAAATCTCGTATATTTCTTTCAATGTTTTAATCTGAGATTAAGACCGCTATACACAGTTGTGTATATCACGGCGGCCCCGCCAATAAAACGACGGGGAGAATTTCACTTATATCGGTGAAGTCCTACTTTTATAAAAGAGGATAATACCGAGGGAAGCGTAAGCACCCGTAGAGACTAAATGTGAAATATTTTTTGAGAAATCAAAAGAGAAAGTTATAGTCCAATCCCACAAGTAATTGTGGTTCCCATTTTTGTATTTAAACGCGCAAAAATGAAGAGACTAAATCATTTTTAGTAAAAAATGATCGTCCGAACTTTTGTTTACAAAAGTTTTAGGAAGTAAAATATAGATGCGTGAGACAGGTTGGTCTCCTATCTACTGCAGGCGTTGATTCTTGAGAAGATCTGCTCTTAGTACGAGAGGACCGGAGTGGACTGACCTCTGGTGTGTGGGCTCTACTGCCAAGTGGACTGCCCAGTAGCTATGTCGGGAATGGATAAGTTCTGAAAGCATCTAAGAACGAAGCCAACTTCAAGATGAGGAATCGTTTGAGAAACCTAAGAGATGATTAGGTTGATAGGCACTAGGTGTACAGACAGTAATGTCTTTAGCCGAGGTGTACTAATCGTTCGATTCCTATTAGGAA +>CM000244.2/78118522-78118698 Rattus norvegicus chromosome 14, whole genome shotgun sequence. +AGCTTTGCACAGTGGCAGTATCGTAGCCAATGAGGTTTATCTGAGGCGCGATTATTGCTCATTGAAAACTTGCTCACAACCTCCGGTTCCCCCACACACACATACACACTATAAGCCCAGTATCGATGAGCTGTGCCCTGTCCCCTGCGTGCCTCATTTTCTGGCCCACAGCTCTGT +>CH476646.1/112655-112774 Sclerotinia sclerotiorum 1980 scaffold_26 genomic scaffold, whole genome shotgun sequence. +GGTCGTGTGGTCTAATGGTTATGATATCTCGTTCACAAACATGTGTTCATCAATTCTGATTTCGATTGTACCCGTTATCTGATTCCGAGATGGTTCCCAGTTCGATCCTGGGCACGATCA +>MLBF01000159.1/890-1 Desulfosporosinus sp. OL contig00159, whole genome shotgun sequence. +CGACTGGAAGAGCACGTCCAAGCAGTGAGGCTGAGTTTACAGGCAAATCCGTAGACTTAAGGCTAGGCTGTGATGGCGGGAAGGAATTATAGTACCGAAGTCACCGATCTCATGCTGCCAAGAAAAGCCTCTAGTGAGGAATGGGGTACCCGTACCGTAAACCGACACAGGTGGGTGAGGAGAGAATCCTAAGGCGCTCGGGAGAACTCTCGTTAAGGAACTCGGCAAAATGACCCCGTAACTTCGGGAGAAGGGGTGCCTCGATAGGGTGAAAGCCCGAGGAGGCCGCAGTGAAAAGGCCCAAGCGACTGTTTAGCAAAAACACAGGTCTCTGCAAAACCGTAAGGTGAAGTATAGGGGCTGACGCTGCCCGGTGCTGGAAGGTTAAGGGGAGAGGTTAGCGTAAGCGAAGCTTTTGAACCGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCAGGTAAGTTCTGACCCGCACGAATGGCGTAACGACTTGGGCACTGTCTCGACGAGAGACCCGGCTGAAATTGTAATACCTGTGAACGATGCAGGTTACCCGCGACAAGACGGAAAGACCCCATGGAGCTTTACTGTAGCCTGATATTGAATTTTGGTACGATCTGTACAGGGATAGGTGGGAGCCAGAGAAGCCGGACCGCTAGGTTCGGTGGAGGCAATGGTGGGATACCACCCTGATCGTATTGAAATTCTAACCTACATCCCTAAACGGGATGAGGGACCGTGTCAGGTGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGAGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGCAGAAGGGAGCTTGACTGCGA +>DF087494.1/2012-1880 Oryzias latipes DNA, scaffold4344, strain: Hd-rR. +GGCTTAATTTGACTCAACACAGGAAACCTCACACGAAGGATTGACAGACTGATAGCTCTTTCTCAATTCAGTGAGAGGTGGTGGAGTGATTTGTCAGGTTAATTACCCCTTGTGCTATCTTAGATGACCCCAC +>BA000039.2/1466104-1465982 Thermosynechococcus elongatus BP-1 DNA, complete genome. +TTGGCGACGTTCACTGTGAGAAGCAGCCTGTAGGGAAAATCCAGTGCAAGTCTGGTGCTGTGCCGCAGCTGTGATGGGAATCTTCCCTCAGCCAGAATGCCTACTTGCTGTGGTTCACTCTAT +>LCPG01000034.1/4881-5287 Parcubacteria bacterium GW2011_GWA1_48_11b UY24_C0034, whole genome shotgun sequence. +TGAGGGCGTAATAAGAGCGTATGGTGGATGCCTTGACACAAAATGGCGATGAAGGACGTAGCGTAGCTGCGAAAAGCCCCGGGGAGGTGTGTAGCAACCTTTGATCCGAGGATATCCGAATGGGGAAACCCTCCGCGGTAAACCCGCGGAACCAGTGCGTTGCACTGGAATGACTAATTCCTAATTGACCTAATTCCTAATCAATTTCTAATGCCGAAATGTCCAATGTCTAAAATTATTTTAGTCATTGGCTATTAAATCATTGGGGGTTTATTTAGAAATTAGAAATTAGAGCTTAGAAATTCCACTGCAGCGCAGTGGCGTGGTAGGAGAGCATTCTTAATGCTGCGAAGGAGGATCCGCGAGGACCTCTGGAGCGTTAAGAAGAGAGAATGTTGGTATGAGTA +>JPKY01000002.1/344887-343367 Acremonium chrysogenum ATCC 11550 scaffold2, whole genome shotgun sequence. +CAATGCGCGTCGCCTCCCCCACAGTCCTCCGATTCTCGTTTTCCGCAAGGAATGTCTATCGTAGACCCCCCTCACAGGCTGGTTTGCCCACGGTGTGCCGCTCTCGAGCCTGTATCAGGACCTCGCTGCCAGCCGCATTTGGATTCACCGTGGTCTCTTGCCGTCGATTCCTCGAGGTCCAGCCTAGCCCGGGGGAACGATGTTTCGGAACTTAACCCTAAGTATACACGTGGTTTTCAGTTTTGCGCTCTTGTCGTTCGAACCGCCTTCTAAGTTGGCCGGGTTGTACCAGGAGACCGACACCGCTGAATAAGCGGAAGGCTGAACGGAACACCTACGCCGACGGACTGCCGGGGAGGACAGCCCAGTCACCTCACGGTGCGCAAGAGGGGGGATGCCATGAGCCGTATCGGTAAGAGCCTCTGGTCTGAGGACGCTCGTCGGCCCTGCCCGCTGGAACTAGCACAATGGTCAAGAGTAGGCCGTCCAGGAGGTGCTGTCGGTTTGAGGGTGCGGAAGTTGCTGGTCTGCTATGAGCTTGACCTCCGGGTCGAGCCTTGGCGGCAAAGGCGTCGGAAGTACGAGAAGAGAGGGTTTGAGCACAGAACTGGCCACAAACAATCAGCCAAGCGTTTCGACATTCTCCGCCCTGAAATGCTGCTTTGCCGGAAAGCCCACTTGCCCGCGAGCCAGTTGGGTTGCAAGGACTTCAGGCTACACACGGAAACGAAAACGGCTGATCATATCCTTCGCCATTCTGCGAAAGCTCTCGGTACCCTCAAACTCGTACAAGTCCCGTCGTCGCTGTTCATGGCAACCACTGCAACCAACCTGCACTTCTTCCCGTGGCTCCCTGTACCGCACCACAGCAGTAGCTACCGGTGTGTGATGCTGGTTGCATCTGGCCTGGCCAAGCGCATTAACGTCCGGCCGTAGGCTCCGTCCTGCGGCTCAGGAAGGCGCCAGTCACTTGTCGCGGTCGTCCCGATTTGCGACAGCTCCCTCCGGTTCGCACTCTTGTGGTGTACCTGGAGACGATAGCTCGGCTTTTATGGATGTCTTTTGGCCGTGCGGAATGCCCTCCTTGCTCGCTCTGTGAAGAGCATCTGGAGAGGAAATCAAAAACCAATCCTTGTTGGCAGCGCAACACAAACAGAAGGAGCTCTCGGTACCGGTCCTGGACTCTTGGAAGGCTATGGCGCGACTGCGCGGAAAACATACGACGGCATCGGGATTTTGCGATACTTGTTTGGGAGAGGCGATACCGGTACATAGGCACTGGCGTCTCTGGGTGCTTATTCCTCGTCACGATTGCTTGCATCACTGGGACCCATCTCGTGTTGGAGTCAAAGTTTCGTACTTGTCCGGCGGTGTTGGTACTGTGGCGTAAAGGACCTGCTCCCAGGATCCTAAGCCTCGTCCCGTCCTTTCATATTGGATCAAGGGGCAAGCCAAGCAGGGAGGCAGCCCCGGCTGTCCTCGTGCCTGAAATGGTGGGAGGACAGCCCCCCTATGGTGAGG +>CP010557.1/4001542-4001177 Raoultella ornithinolytica strain S12, complete genome. +TATGGCCGGAGCAGGGGTGCGAGCAGCAAACCTGTCGCAGTTCCTCGAAGCCGGCGTAAAAGAAGTGCACAGCTCCGCCGGCCAGTGGCTGCCTTCGCCGATGCGCTTTCGTAATTCCAGGCTGTCGATGTCTACGGATGCCGAAGCAGATGAATATTCACGCTATGCCGTTAACGGCGCAGCGGTGGCGGAAATGAAGAGCATTATTTCCGCCTGAGTGCCCGCATTGTTTGCGCGCAGCCTGCGGGCTGGTCAGCACAACGGCTGCGGGCAGAGAGAGAAAACCGTTTTTTGCTGCACATCATGTCGCCCAATATGATGATTGCCCGTACCAGGCCCCTGCAATTTCAACAGGGGCCTTTTTTT +>ALWZ043173632.1/1-308 Picea glauca, whole genome shotgun sequence. +GATGGGGAATCCTTGTATCAAGGGTGCACTCTGCATGAACATCGAAAGAGAATTGGGTTAATATTCTCGAACCGGGACATGGTGGTGGACGACAATGTTAGGAAATCTAGAGATGTCATCGGGGGCCTGGGAAGAGTTATCTTTTCTTTTTAACGACTTTCCCACCCTAAAATCAGTTCAAATGGAGATAGGGTCTGTAACCTACCCACTACTTAAATCAAATTTTTCCAGTCCTCTGTCAGACTCGATCTCCTAAATAACCACAGAGATCCAACGTAAACTAGCTCTTTCTATTTTCTTCCCCATTC +>JJMO01001155.1/572062-572450 Vigna radiata var. radiata cultivar VC1973A scaffold_43, whole genome shotgun sequence +ACGAGGAAGGGCGTAGTAAGCGACGAAATGCTTCGGGGAGTTGAAAATAAGCGTAGATCCGGAGATTCCCGATATAGGTCAACCTTTCGAACTGCTGCTGAATCCACGGGCAGGCAAGAGACAACCTGGTGAACTGAAACATCTTAGTAGCCAGAGGAAAAGAAAGCAAAAGTGATTCCCGTAGTAGCGGCGAGCGAAATGGGAGCAGCCTAAACCGTGAAAACGGGGTTGTGGGAGGGCTATACAAGTGTCGTGCTGCTAGGCGAAGCAGCATAGAATGCTGCACCCTAGATGGCGAGAGTCCAGTAGCCGAAAGCATCACTAGCTTACGCTCTGACCCGAGTAGCATGGGGCACGTGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN +>HG722747.1/1-1525 Eimeria necatrix Houghton genomic scaffold, Enh_scaff2711 +AGTGACTGACTATACTCCCCGAGGAAGGTAGGCTTTTCGTGGGCTGTTATAGCCTCTGGGTTTGTGTTCAGTTGTTCACTGAGGTGTGTTTTGTTTGCGTTCGTCAGCTGCACTTTCGAGTACTGGCGTTCTGCGATGCTGTCCTTAACGGTTTCAACCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATATGTGCGAGTATGCGGGCAGAACCCCTGTATGCACAATGAAAGTGAGAGTAGGGAGAGGTTTTGTTTTTTTGGCAGGCCTCGCACCTACGACCGACCACGAGCTTTGCGAGAGGTTTGAGTTGTAGCACATCTGTTAGGACCCGAAAGATGGTGAACTATGCCTGAGTAGGGTGAAGTCAGGCGAAAGCCTGATGGAGGCTCGTAGCGATACTGACGTGCAAATCGTTCGTCAAACTTGGGTATAGGGGCGAAAGACTAATCGAACCGTCTAGTAGCTGGTTTCTTCCGAAGTTTCTCTCAGGATAGCTGGAGTTCAGTTAGTTTTATCAGGTAAAGCGAATGATTAGAGGCCTCGGGGGCGCGTTGCCCTCGACCTATTCTCAAACTTTAAATGGGTAAGATCCAGCGGTTACTTCACTGAACTGCTGGGGTTAATATGAACTCCANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTAGGGTTGACTGGTTGGTAAAGCTTCCTGGCTTCCAGGGAGTCCGGTGCGCTCCTGACTGCCCTTGAAAAGAGGAGGGAAAGTTGTTATTTGCACCCCTGGCCGTACCATTAACCGCATCAGGTCTCCAAGGTTAGCAGCCTCTGGTCGATAGAAGAAAGTAGATAAGGGAAGTCGGCAAAATGGATCCGTAACTTCGGGAAAAGGATTGGCTCTGAGGGCTGGGTGCATAGCGCCAGTGCGTTCTTCGTTGGTCGGAGCTGTGCGGGCCCGTTCGTGCTTCGCGGCGCGTCTGTGGACCGCCGGCACTGACTGCGTTGTGACCCTTGGTCTGCGTGCACAGTGAACAGCTAACTCAGAACTGGAGCGGACAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGCCGCAAACGGTGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAATGTGATGAAATTCAACCAAGCGCGGGTTAACGGCGGACGTAACTATGACGTGGAAAATTTTGCTTGCTGGGTTTTTGGAGTGAGTGGTCCTCCCCAAAGAAAAAGGAAAGAGATAGTTTGTAGGGAGCCTCAGCTCCTACGGCACGCCCAAAGTCTAGGGCCAACCGTTTTCACTCGCCATAACATACATCTACTACCGAGAGTGACTAAGTATAAGTGCATCATTTGTGTACTATTCACTGCATGTTGGCTGTGCGAGAGCGATTTCCTCCTCGCGCCCGCCTTGATCCATTGTCAGCCACGTGAAAACCCCAGAT +>AVBC01000026.1/54293-54503 Halomonas huangheensis strain BJGMM-B45 contig41_scaffold4, whole genome shotgun sequence. +TGAGCGCACACCGTCTCGGCTTTCCCGCAGATGTGTTGGGGTGAAACGGGAAGTCGGTGATATTCCGACGCTGCCCCCGCAACGGTGATCGAGTTAAATACGGCCCATGAACGCCACTGTGTACTGCATGACAGTCACGGGAAGGTGGTCGTATCCAACACCCTGTGTTGACTCGTCAGCCCGGAGACCGGCCTGAGATTCCATGCCAGGG +>URS0000D67C52_12908/1-206 unclassified sequences RAGATH-7 RNA +ACUAUACCGCUUUAUUAUGCACAAAUAAAGUUAAAGAUUGUAUAGUAAUCCACGUGGUAGAGGCACAGUUAGGUUCGCUGUGGUGCAACUCUUAGUAGCAACUAAUCUAAAGCAAGUAUGGGAGAAUAGGUUUAAACUAUUUUUAGGUAGUUAAAAAUACGUAAAAUCCGAUCCUAAUAAGGUAGCAUGAUAGUAUUAGUGCAGAU +>CM000812.5/30921558-30921482 Sus scrofa isolate TJ Tabasco breed Duroc chromosome 1, whole genome shotgun sequence. +GCTGTACATGATGACAACTGGCTCCCTCTACTGAACTTCTATGAGGAAACTGCCATGTCACCCTATCTGACTACAGC +>HE717023.1/2219309-2219667 Halobacillus halophilus DSM 2266 complete genome +TTCCCATAGAAGTACTCTGGAGTTTATTTTTCCGAGTTTCTATGGATTTTTTATGTTCTTATCATCATTTGTGAATTATCACGTATTACGTGTAAGAAGTTTTTAGGAGGATTCATATCATGCAAAACGGTACAGTAAAATGGTTTAACGCGGAAAAAGGTTACGGCTTCATCCAAGTAGAAGGTGGAAATGATGTATTCGTACACTTCTCTGCAATTCAAGAAGAAGGTTTCAAATCTCTAGAAGAAGGTCAAACCGTTTCTTTCGAAATTGTTGAAGGCGACCGCGGACCACAAGCAGCTAATGTTGAAAAACAATAAATAAAATCCAAAGCAGCCTCTATAGAGGCTGCTTTTTTT +>CM002888.2/48184797-48184945 Danio rerio chromosome 4, GRCz11 reference primary assembly. +AGACAATCGCGGCTTCTCGTTGGACAAGAGTCTACAGTCTACAGTTACCATTGCACGTTCCCTGGGCAGATGTCTGCGAACTCCCCAAATGTGGGAATCTCGACTGCATAATTTCTGGTAGTGGGGGACTGCGTTCGCGCTCTCCCCTG +>LXTC01000002.1/1795932-1795468 Metschnikowia bicuspidata var. bicuspidata NRRL YB-4993 METBIscaffold_2, whole genome shotgun sequence. +ATGCCAGTATCAATACCAACACCAGTGTCGAATCAATTAATACCAACACTGAATACCAACACTAATGAATAGCTAAACCAGGATAGACACCAACAAATACCAACACTAAAGACCAAAACTAATAAATACCAATACAAGTATCAATACCGATAAATACCAACACCAATAAAAACCAATACCAATAAATACCAATACCAGTACCAACACCAATATCAATACCATTACCAATTCAACACCATTATTGGTATTCAGTTGTAAAAGGTGAAATTCTTAGATTTTCCAAAGACTAGCTACTGCGAAAGCATTTGTCAAGGACGTTTTCATTAATCAAGAACGAAAGTCAGGGATCGAAGATGATCAGATAGCGCCGTAGTCTTAACCATAAACTATGCTGACTAGGGATGGGGCGACGCCTCATGTAAATGACAGGCCCAGCACCTTACGAGGTATCAAAGGTTTTGGGTT +>AVOS01044062.1/5145-5403 Chaetura pelagica isolate M959 contig44062, whole genome shotgun sequence. +CATTAGGGAGGGAGAAGATCATGCTTCATTTCAGACCTGCTTCTCGGTTCAGGATTTTGTGAGATTTGGTAGTTTAAATTTTTTTTTATGTCTTATTTGTCAGCTACACTGACTGGCTCAGCTTGTGTCTGCCCTCTGCCGGCAGGCATGGGTAACCCATTGAACCCCATTTGTGATGGGGATTAGGGATTGCAATTCTTCCCCTTGAACAAGGAATTCCCAGTAAATGCGGGTCATAAGCTCGCATTGATTAAGTACC +>GL433863.1/231672-231585 Chlorella variabilis unplaced genomic scaffold CHLNCscaffold_29, whole genome shotgun sequence. +GCACCTATGGTGTAGTAGGTTATCACACTCGCTTAGTAGTGCTCTGTTGAGTAGCGAGAGGTCTGCGGTTCGAATCCGTGTGGGTGCA +>LCQF01000020.1/16551-16970 Parcubacteria bacterium GW2011_GWA2_49_9 UY50_C0020, whole genome shotgun sequence. +CTGATGGGAAACAAGGGCGTATGGTGGATGCCTTGGCTTAAGAAGGCGATGAAGGACGCAGCGTGGCGGCGATACGCTCCGGGGAGGTGCCGAGCAACCTTTGATCCGGAGGTCTCCGAATGGGGAAACCCTTCCGTGTAAACCACGGAAGCCGTGTCTTACACAGAATGTCTAATTTCTAATTAACCTAATTCACCTAATAAAATTCCAAATACCAATACCAAATATCCAAACCGGACTTTGTGATTGAGCATTTCTTTACTTTGGGTTTTTATTAGAAATTAGAATAATTAGATGAATTAGGAATTCCGCGTAGGACGCGGCGCGTACCCTGGGAAGTAAAACATTTCAGTACCAGGAGGAGTAGAAACCAATAAGTATTCCGTCAGTAGCGGCGAGCGAACGCGGAGAAGCCCAAAC +>LCPW01000021.1/2447-2376 Candidate division CPR1 bacterium GW2011_GWC1_49_13 UY40_C0021, whole genome shotgun sequence. +AGCGCGGAAGCCGAGTGGTGAGGCGGACGGGCCGCAACCTGTCGGATGAAGGTTCGAATCCTTCCCGCGCTT +>JXRR01000014.1/312777-312893 Jeotgalibacillus campisalis strain SF-57 contig00014, whole genome shotgun sequence. +AACCTTTTTAATTAAAGTCCAGAGAGGCTTTCAAAAGGGAAGAGCAGCTGCCGCTAAATGTGATGCAGTGTATCTTTTGAACACCTTTTGAGGGCTTTTCTCAAAAGGTGTTTTTTT +>JH207677.1/46913-46403 Pelodiscus sinensis unplaced genomic scaffold scaffold782, whole genome shotgun sequence. +GTTTTCACTTTTTTTGATTGTATCCCTTTCGTATATACGGTCATGCCAATTTTCTTCCACAATTTCATCTGAGGAAGTGGGTCTGGCCCACGAAAACTCATCACCTAATAAACCATCTTGTTAGTCTTTAAAGTGCTGCATAGTCCTGTCTTTTGTTTGAGAAAAAAAAAACAGGTTCCAACTAAAGTAAAAAGTTTGGGAAACCCTGGTCTAGCCAGCTTTCTCTCCATCTTACAGTCCATTTATCCAATCCATACTCCCTTAACTTGCTGGCAAGGATATTGTGGATGACCGTATCAAAAGCTAGAGGTGAAATTCTTGGACCGGCACAAGACGGACCAAAGCGAAAGCATTTGCTAAGAACGTTTTCATTAATCAAGAACGAAAGTCGGAGGTTCGAAGACGATCAGATACCATCGTAGTTCCGACCATAAACGATGCCGACTCACGATCCGGCGGCGTTATTCCCATGACCCTCCAGGCAGCCTACAGGAAACCAAAGTCTTTGAGT +>URS0000D6955D_12908/1-88 unclassified sequences c-di-GMP-I-GGC riboswitch +GUUGAAAAAGGUACACUAUCCCAAAGGGUAGGCCGCGAAGUUUUGGGUCUAAAUCACUUUUAGUGACAUGAUUGCCAAGCUGCCGAUU +>CAWC010010349.1/2261-2560 Onchocerca ochengi, WGS project CAWC01000000 data, contig: 07842_10349 +TAGCATAGATCCGAAAGATGATGAACTATACTTGAGCAGGATGAAGCCAGAGGAAATTCTGGTGGAAATCCGAAATAATTTTGACGTATAAAACGATCGTCTAACTTTGGTATACAGGCGAAAGACTAATCGAACAATCTTAGTAGTTGATTCCTTTTGAATTTTCCCTCAGAATAGCTGGAATATGTAATGAAGCTGTTATATTCGATAAAGTGTTTGATTGGAGGAATAGTGGGACGAAAAATTTTCAGTCTGTCCCCAAACTTTCAAATGAATATGATATTTCGTTTGCTTGAATGA +>URS0000D6BF5F_12908/1-247 unclassified sequences ARRPOF RNA +CTAAACCCTACAAGAATATTTTCAAAAAATTTCATCATACAATTTGTGATGAGCTGATAGGCACTAATCAGTCCAAGTCTTTTAAAGGTTGGTAGGAATTGTTGCAACGTGAGGACAACGGAACAAAGGTCAGGTGGTTTATTGTTTTGGGGTGTCTTTTATACCTTTATAAAACTGAATGTAGGCAGTTAAGGTCGAACACGTGGGCAATAAAGCGTGGATTGTATCAAACAAGTAAAAGGCAAGT +>CAWC010018757.1/493-342 Onchocerca ochengi, WGS project CAWC01000000 data, contig: 15636_18757 +TCGTTGCGATGGTAGTCATGCTCAATATGATAAGAACCATTGGTTTAGACATTTAGTTCATATGCTTGGCCGATTATACAATGGTGTGAAGCTATCATTTTCGGTACTATTACTGAGTGACTCTAAGTTAGAAATCCTTCTGCACATGATGA +>AASG02003498.1/19751-18974 Ricinus communis cultivar Hale ctg_1100012349913, whole genome shotgun sequence. +TACTTGGTTGATCTTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTGTAAGTATGAACTAATTCAGACTGTGAAACTGCGAATGGCTTATTAAATCAGTTATAGTTTGTTTGATGGTATCTGCTACTCGGATAACCGTAGTAATTTTAGAGCTAATACATGCAACAAATCCCAACTTCTGGAAGGGATGCATTTATTAGATAAAAGGTAGACGCGAGTTTTAAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCCCAAATTAGCCAATCCTGACACGGGGAGGTAGCGACAATAAATAACAATACCGGGCTCTTTGAGTTTGGTAATTGGAATGAGTACAATCTAAATCCCTTAACGAGGATCCATTGAAGGGCAAGTCTGGTGCCACCAGCCGCGGTAATTCTAGCTCTAATAACATATATTTAAGTTGTTACAGTTAAAAAGCTCGTAGTTGGACCTTGGGTTGGGTCGACCGGTCCGCCTAGCAGTGTGCACCTGTCGTCTCATCCCTTCTGCCGGCGATGCGCTCCTGGCCTTAACTGGCCGGGTCGTGCCTCCGGCGCTATTATTTTTGAAGAAATTAGAGTGCTCAAAGCAAGCCTAAGCTCTGTATACATTAACATGGGATAACATCATAGGATTTTGGTCCTATTCTGTTGGCCTTCGGGTAAAAGAAATTATGGCACAGCTAAGAGTTGATTGTACTTCGTCAATTAAGAGCATCAGATCTTGCAGTCTAATGAAACCTTAGCAGAACAATG +>ABGB01000728.1/1246-78 Enterocytozoon bieneusi H348 ctg01_1523, whole genome shotgun sequence. +TGTGTGGAAGTTCCGGAGCAGATCTTGGAAGTAGTAGCATCATTTGTATGTGCCAATGGAGGCGGGTTTGTCCTTTTAATAGAAGGAAGTGATACGAGCCTAGTAAAAGGGAATATAGTAGATATTCTATATAGATGTACCTATGTGGCGACACGACAGCGACCCCAACGACGTGTGCCGGTGAGAATTTTCCGGGACACCCAGATCTTATGAGCGTCACGCTGAGACTAAGAACGAGTTGGGCGGTGAAAATGAAGGAACATCCTCGTACCGAACCGCAACAGGACTCCTAGGTGAGAAGCCTAAGGCATAATTGTAATGTGAGCAAGGGAAATCGGCAAAATGGATGAAAAACCTCGGGATAATCATTGGCTCTAGCATGCTAGAACTGGGCTTACAAGGGGAATCTGACTGTTTAATAAAAACATAGCTTTGTGTGTACGCAAAGTGAATTCTGCCCAGTGCTTGGGACGTTAAGGAAGTAATTTTAAGTACGCACCTGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCGCCTAATTAGCGACGCGCATGAATGGAGCAACGAGATTCCCACTGTCCCTGCTCACAGATTTGCGAACCTACAGCCAAGGGAACGGGCTTGGGACATGCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGCCAAGCACAGGCCTCTGTGACTATATCGTAGCGAGGTGGGAGAAATGTGTGAGACCACTGACATAGTCGGCGGGGGCACTCGCAAAGCTTGGTGGGGAGTTTGGCTGGGGCGGCACGACTACTAAAACATAACGTAGACGTCCAAAGGTAAGCTCCGAGGGGATGGAAACCACTCCGAGAGTATAAGGGCAAAAGCTTGCTTTAGTTATTAATGTAAATTAATAATACTGGAAACAGGGGCCTAGAGATCCTCTATGAAACTAAGCATAGAGGTGACGGAAAAGTTACCACAGGGATAACTGGCTTGTGGCGGCCGAGCGTCCATAGCGACGCCGCTTTTTGATTCTTCAAGGTCGGCTCTTCCGAGCATGGGGGAATATCAGCCACCAAGTGGTGTGATTGTTCACCAACTTACAAGGGAACGTGAACCTGGGTTTAAACCGTCCCGAGAAAGGGTAATTTTTACCCTACGGCATTCCCTT +>CP006019.1/170272-170332 Palaeococcus pacificus DY20341, complete genome. +ACCGGTGATGACTTTGCAGGGTAGCTACTGAAATTGATGAAGAAGTCGCTCCAGTCTGAGG +>LDJP01000070.1/64830-64953 Stenotrophomonas daejeonensis strain JCM 16244 contig_70, whole genome shotgun sequence. +CGATGAAGGCGAACAGCTTCCAGCACGAATCCAGCGCCGCCCGGCAGGCCACCGGCATGACCTCGCGCGCGCGTCGACCGGAACCCCACATCCTCGCTGGGTAACCGGAGCTTCGTGCTGTCTG +>CP001043.1/1023491-1023327 Burkholderia phymatum STM815 chromosome 1, complete sequence. +ATGAGTGCCTGTTCACATACTTTTTTCCGCAGTTGCGCTGCAGATCGCGTAGTCGTCGTCGCTGACCACAAGGCAGTGACAACGGCAATGAAGCGAGCCACGAGGCGCCATGCGATGACCGAAGTCGAGCCGCTTGCCCCGGTTGCCGGGGCGGCGGCTTTTTTA +>URS0000D6A032_12908/1-68 unclassified sequences type-P1 twister ribozyme +AAUUUAACCUCGCCUUAUUAUUUAAGAUAAUAUGCUGGUGACAAGCCCAGAUAAAGAGGGAGUCAAAU +>MHIB01000050.1/15016-14517 Candidatus Buchananbacteria bacterium RIFCSPHIGHO2_01_FULL_39_14 rifcsphigho2_01_scaffold_9139, whole genome shotgun sequence. +CAAGTAAGCAAGGTGGTCGCCCCCTCACTTGGTCCGATGATTAGTATTTAGGAAACATAAATACCTTATATATTTAATCATTAAGCCAAGTGAGGGGGAGGAAAGTCCGAACACCATTCCCGATTTAATGTCGGGGTAAAATGGCAACTCCTAACGGGAGCCGAGAGTAACAAAAGAGTAGAAGCGCTTAAGACTTCTGCACTTTTGCCAAGCTTAGGGCAAGTGCAACAGAAAATATACCGCCTAAGTCCTCCGCAGTTGCGGTGGAACGGTAAGGTTGAAATCGTGGGCCCACCTTTGGGTGGGATACCCTCGCTTCGGCGAGATAAAGTAAGAGCCCACGGCCGACAGACTGGTAACAGTCGGGTTGGTAAACTCCTGCCTGGTGCAATGCCAAATTAGGTAGGCAGCTTGATCCCGACGGCAACGTCGGGACCAGATAGATGACCACCCCCCTTAAAAGTGGGTGACAGAATTCGGCTTATTAGCTTACTTGGATA +>AFTD01027444.1/26113-25813 Cricetulus griseus cell line CHO-K1, whole genome shotgun sequence. +GGATGGGAGGGCCATATAGCTGTAGCTCCTTTCATCTCATTGACTACCAGGACTGATTTGGTTGGTCTGACTGGATTGATAGGTGTCCCCTTCCTCCCTTGTTGTGCATCTCTCTGGAAGCTGTTTGCTCAGCTGGTCAAAGAGGATGACTTTTCCCTTAATAGAGGACCAGTCTTTGGTCAAGGGCATACAGGTAACTACCACCTCTGTTAAAAGCTCCAAACAAGCACTCAAGAGCCTGCCTATATATTTGAAAGAGATCAGACTTTGCCTCTAGGTGGTGCCTTGAATGGCTGTAAGA +>NGMM01000004.1/415496-415725 Enterococcus sp. 9E7_DIV0242 scaffold00004, whole genome shotgun sequence. +AAATAGACAGAGAGCAAGAGGAGTACTGTCAGCGGGATTTTTAGAGAGAAAATCGGCTGGTGAAAGATTTTACGATCCTGACAGGAAGGTAGCTTGTGAGTCAATCATTTGAACAATTTTCAGTAGGGTGGTTCGAGTCGTGATCGTTATCTCACGTTGAATGAAGAGGTAATTGATTTATTTGATCAATTACAAATTAGGTGGTACCGCGTAGTATTTACGTCCTAAAA +>HF991826.1/221174-221022 Clostridium sp. CAG:678 genomic scaffold, scf125 +ATCAACTACTCAGTACTAAATAATTGAGCCTATCTCAGTAACAATGGTGCGTTCGTTTGAACAAGTTGACTACCCTAAGTCTTGAAACAGAGGCTACGTTATACAAGAATATATAGTCACCGGTGGGCATTTGCCCTAACCTGCCGCTCTGAG +>LK878649.1/3737-3610 Ascaris lumbricoides genome assembly, scaffold: ALUE_scaffold0006683 +TTACTAACCTTCATGGCGAGGCTTGGTCATTGCACTTTCGACCAGGCTGACCCGTGTGGCAGTCCCGAGTTGGGATTGGCCAACAGCATAATTTTTGCGTTTGGGGACAGCGTTCGCGCTTCCCCGCT +>ALWZ041214672.1/20-119 Picea glauca, whole genome shotgun sequence. +ATATTTTTAAAAATTAACGTGATAGTACAATTAAGCATGCTCGAGACAGAGTAGTATTAGGATGGGCGACCGCTAGAGAAGTCCTAGTGTTTTACATGTC +>JH601103.1/54151-54248 Dolosigranulum pigrum ATCC 51524 genomic scaffold supercont1.1, whole genome shotgun sequence. +GAAGCACAAATCTGAGCAAGCGGTGAATAGGTGACTATTCATGCAGCCCGGCTACTAAACGTAGCAGCAGAGTGTTAAGGCACATCTGTGAGACAGTT +>LVLJ01000773.1/73947-73799 Marchantia polymorpha subsp. polymorpha scaffold3569, whole genome shotgun sequence. +ATCTTTGCGCGTGGGGCAATGACGCAGTTAGTGAGGTGAAACCGAGAGACGCGTCAATTGCTGGTTGAAAACTATTTCCAAACTATTTGCATACTACGAGTTCGTTTTAGTGCAATTTCTTCTTTTCTCCCTTACAAAAGCGTAAGAAA +>AGUA01000030.1/104638-104479 Staphylococcus pettenkoferi VCU012 contig00012, whole genome shotgun sequence. +GTAACAAGGGGATAACGAATAAGGTGATTTAGGGGTAGGCTATTACATAATATAATAGTTACAATCTCTTGTTCGTATGCGTTACTATTCAAACATCTTCAATATTTATTACTTACTTTCCTTTCTATTTGCCGACTAGCGATGACTAGTCGGTTTTTTA +>JH205222.1/90660-90343 Pelodiscus sinensis unplaced genomic scaffold scaffold192, whole genome shotgun sequence. +GTCTAAGTAAACAAGGGCGTTACAGTGAAACTGCAAATGGCTCATTAAATTAGTTAGGGTTCCTTGGATCGCTCCAAGCCTTACTTGGATAACTGTGGTAATTCTAGAGCTAATACATGCTGACGAGTGCTGACCTCCGGGGATATGTGCATTTATCAGACCAAAACCAACCCGGGCTTGCCCAGCTGCTTTGGTGACTCTAGATAATTTCGGGCCAATCGCACACCTCCATAGCAGCAACGATGCATTCGAATGTCTGCCCTATCAACTTCAAGAGATGTCCCCATGGGTACTTCACATCTAAGGCTTCATTTTGTT +>GG700633.1/173169-173635 Leptotrichia hofstadii F0254 genomic scaffold Scfld1, whole genome shotgun sequence. +GGCGGGCGAGAATCCCGCCGGCCGGAAGTCCAAGGTTTCCAGGGGAAGGTTTGTCCGCCCTGGGGAAGTCGGGACCTAAGCATAAGCAAAATTGTGATGGCGAATGGAAAACAGGTTAATATTCCTGTACCGCTGTTATCGCCTGAGAGACGGAGTGACGCAGGAAGGTATGCGGGAAGGCTGACGGAATAGCCTTTCTAAGGGCGTAGCATGGGCATGCAGGAAAATCCGCATGCCTAAATGTGAGACCTGACGGGTAAGTGCATCTTGCATAAGCCGCAGATCCTACACTGCCGAGAAAAACTTCTATCGATGAGAGCCAGCGCCCGTACTGTAANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTATAGCGGAGCCGAAGGGAAACCCGAGTCT +>DS990197.1/12350-12464 Ruminococcus lactaris ATCC 29176 Scfld_02_34 genomic scaffold, whole genome shotgun sequence. +GGATGCCAGGGTCAAAAGGTCTAAACCCACATGAGCTTGCTCATAGGTGGGTGAAAGACCTTAGGACCCGCCCCGATATGAGCATCAAAGTCGGGGGCTTTTGACCCCGACATCT +>CM003380.1/18255055-18254968 Vigna angularis cultivar Jingnong 6 chromosome 10, whole genome shotgun sequence. +ATGAATGCTGATGCATGCACTGGGCTCTGAGAAGTTTTAACCTCAACTTTTGATGAAAATGCACGGCCTTGAAAGCTATTTCTGATAC +>CP000673.1/1358718-1358907 Clostridium kluyveri DSM 555, complete genome. +TATGTGGCAGTGAATAGAAGAAGTAAATATATTCTTATATGTAAAGAGAGGAAGTAGAGGGTGTAAAGCTTCTCATATGAGGTTTATTGAAGGCTGTCTAGGAGCCTATTATGGTGTTTGAGAGATATGGATTTTATAATTTTAAATCTATATAATTAGGGTGGTACCGCGAAAAACTTTCGTCCCTTTT +>MKSM01000113.1/13291-13495 Nitrobacter sp. 62-23 SCNpilot_cont_300_bf_scaffold_662, whole genome shotgun sequence. +CTTGTTTGCGGCGTCATCGGTGCCTCCCGAGGGAGGTGAAACGGGAACGCGGTGCGGGGATATGACCCCAACGCCGCGGCTGCCCCCGCAACTGTAAGCGGCCATCCGCGTCCATTCCGCTGCCGAACATGCCGCGCATGTGAGGAAAATCGGATCCGGATAACGGCCGCGAGCCAGGAGACCGGCCGGCGACGCCTTCGGAGCA +>CP011125.1/5773983-5773818 Sandaracinus amylolyticus strain DSM 53668, complete genome. +AAGAGGGAAGCCGGTGAGAAGCCGGCGCGGCCCCCGCCACTGTGACCGGGGACGGCGCGGACGCGGTGCGAGCGCACCGAGTCACCACTGCGCGTGCTCGTCGTGTGAGCGGCGGGGCGCGGCGGGAAGGTGGTCCGCGACGGACGATCCGGGAGCCAGGAGACCT +>CM009294.1/24125792-24125654 Populus trichocarpa isolate Nisqually-1 chromosome 5, whole genome shotgun sequence. +TAATTTATTTGGGGAAGATTTTCATCTAGTTGTAATATATTTATATTTGATTGCTCAGAATCATCAGTTATTATAAAATTAACTATATCATTGACCCTTATAAAATATATTTAGAAAAAATTGTTTATAAAATCATGAT +>ALWZ044874107.1/2364-1677 Picea glauca, whole genome shotgun sequence. +GGGTTTTTCCTTTTGTGGAATTTGAATTTTTATGTTTTTTAATTTTTTATTATGTTATAATATATATAATTATAACACACACACACACACACACACAATATAACCTTATAATAGTCGACTCAGAGCTATTTCAGACAAGGGGAATCTCACTATTTAATTCAAACAAAGAATTGTGATGGTCCTTGTGGATGTTGACGCAATGTGATTTCTGCCCAATGCTCTAAATGTTAAAGTGAATAAATTCAACCAAGCACGGGTAAACGACGGGGGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGCCATCTAATTAGTGATGCACATGAATGGATTAACTAGATTCCCACTATCCCTATCTACTATCTAGTGAAAACACAACCAAGGGAATGGGCTTGGCATAATCAACACGGAAATAAGACCTTGTTGATATTGACTCTAGTCCAACTTTGTGAAATGAATTGAGAGTTGTATAATGATCCAGATTATTTTTGGCACGAAACGAGAGCGGAGATATAACACAAAAATATTCAGAGATATTGCAAGAGAGACAAAAATATAACAATGATATATCATAAATATAACAAGAGTCACATATATAAAGTAATACATGATTTCTATTAATGAAAGAAATGTACAGAGATTGTAAAAATATAGAGTGAAAGACTTGCTAGAATGGTGGCAGCTT +>JH835382.1/3324878-3324510 Erinaceus europaeus unplaced genomic scaffold scaffold00094, whole genome shotgun sequence +GGATGTGAGGGCGATCTGGCTGAGACATCTGTCATGTCATTGATCATCAGGGTTGATTTAGCTGGTCTAGATGGCTAGGCAAGTGTCCCCTTCCTCCCTTGCCACTCCATGTGTGTCCTTCCTAAAGACTTTGGGTCTTTGGGACCTATGTGTGCTGGGTCGAAGAGGAAGGCCTTACCAGAATAGTGACTGACCGGTATGCTCGGTAGAAGGTATACAAGTAGCTGTGCTCCCCTGCTAGAGCCTCCATACAAGCTCTCAAGAAAGTTGCAACTGTACTGAGTTTGTAATTGCTTTGATTGATGGCTACTATCTCTGGCAACATTCTGCCTCACCTCAGGCTGGGCTCTCACACAGATGCTCTCTCCT +>KI930470.1/1116-1201 Candidatus Entotheonella sp. TSY2 genomic scaffold TSY2_scaffold00655, whole genome shotgun sequence. +GAGAGCCGGATGCAGCGACAAGTTGCATGTCCGGTTCGGAGGGGGTTTGACGCCTAACCTCATGGGCTAGTCGCTTACTACCCTAC +>AZIM01000385.1/98908-98846 Ophiophagus hannah scaffold386.1, whole genome shotgun sequence. +AATGGTGTTTATGACATAGTTAGATTAAAGCCTTTGGGAAGTCTAATTGCTGATGTTGCCATT +>AZFW01000017.1/10903-10974 Lactobacillus harbinensis DSM 16991 NODE_20, whole genome shotgun sequence. +GCGAATGTAGTTCAGTGGTAGAGCAACAGGTTTTCCAACCTGTGGATGTAGGTTCGACTCCAACCATTCGCT +>AACY023338535.1/830-742 Marine metagenome ctg_1101668145886, whole genome shotgun sequence. +TTTCCTTTACACTTCTCAAACCGGGATCAAGAGAAGCAAAGCATCCCTCATATCCACGATGGAGGGTGTCGTGGAGTATACTGTACCAA +>CAJW011240374.1/263-1 Hordeum vulgare subsp. vulgare, WGS project CAJW01000000 data, contig: morex_contig_1240374 +CTCGAGCCGAGGTCCGAGTACCAAGCGCTGCAGCGCTGAAGTATGAGCCCCGTGGACTAGCAATTGCTTCTCCACGAGGCTCATACCAGGCGCTACGGCGCTTAAGTATGTAACCGATGCCATACTCCCAGGAAAAGCTCGAACGACCTTCAACAAAAGGGTACCTGTACCCGAAACCGACACAGGTGGGTAGGTAGAGAATACCTAGGGGCGCGAGACAACTCTCTCTAAGGAACTCGGCAAAATAGCCCCGTAACTTCGGG +>ACTA01130975.1/19881-19796 Ailuropoda melanoleuca scaffold1408_79, whole genome shotgun sequence. +GATCACGGTGATGGCTGACCAGGGCTCCTTGACCTATACAGACCTCTGCTATGGGGGTGATGGCCAGTCCTGGTGTCTGAGTGATT +>ABAV01023618.1/749-1 Nematostella vectensis strain CH2 x CH6 NEMVEscaffold_317_Cont23618, whole genome shotgun sequence. +ATTGCTGACTCTATGGGAGACAAGGATGACCTAAATTTTAACAGATTAAGAGTACTGTAAGTAATATTTGAAAGGTTTACTTCTAAAACTTGTGATTTAGACTCATAATATATATTACAGAATGGCAAAGTTAAATTAAGAAACAGCAGGAACTTGGTTCCATTGCATCAATAAATTATGCTCAATTCATTTTCAGACAGTCTTGAGGGCCCGTTTCTTGTCAAGAGAATCAAAACTCTTCCAAAGACTGGCCTTCTCAAAACCTTGGTAACCGAAGCCGGACAGTGAATGCGAGTTCCTAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGAACGCGCGGTTAAGGTGCCAAAGTCGACGCTCATCAGACCCCACAAAAGGTGTTGGTTGCTCTAGACAGCAGGACGGTGGCCATGGAAGTTGGAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAAGCAACTAGCCCTGAAAATGGATGGCGCTCAAGCGTCGCACCTATACCGTGCCGTCGGAGCAGATGCGAAGCTCCGACGAGTAGGAGGGCGTGGGGGTCGTGACGCAGCCTCTGGCGCGAGCCTGGGTGAAACGGCCTCCAGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAGCTTTGAAGACCGAAGTGGAGAAAGGTTCCATGTGAACAGCAGTTGGACATGGGTTAGTCGATCCTAAGAGATAGGGAAATTCCGTTGCAAGCG +>AWWV01004333.1/1226-446 Corchorus capsularis cultivar CVL-1 contig04341, whole genome shotgun sequence. +GGGCCAAGGGACAGTCTCAGGTAGACAGTTTCTATGGGGCGTAGGCCTCCCAAAAGGTAACGGAGGCGTGCAAAGGTTTCCTCGGGCCGGACGGAGATTGGCCCTCGAGTGCAAAGGCAGAAGGGAGCTTGACTGCAAGACCCACCCGTCGAGCAGGGACGAAAGTCGGCCTTAGTGATCCGACGGTGCCGAGTGGAAGGGCCGTCGCTCAACGGATAAAAGTTACTCTAGGGATAACAGGCTGATCTTCCCCAAGAGCTCACATCGACGGGAAGGTTTGGCACCTCGATGTCGGCTCTTCGCCACCTGGGGCTGTAGTATGTTCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGTGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCATATCCGGTGTGGGCGTTAGAGCATTGAGAGGACCTTTCCCTAGTACGAGAGGACCGGGAAGGACGCACCTCTGGTGTACCAGTTATCGTGCCCACGGTAAACGCTGGGTAGCCAAGTGCGGAGCGGATAACTGCTGAAAGCATCTAAGTAGTAAGCCCACCCCAAGATGAGTGCTCTCCTATTCCGACTTCCCCAGAGCCTCCGGTAGCACAGCCGAGACGGCAAGGGGTTCTCTGTCCCTGCGGGGATCGAGCGACAGAAGTTTTGAGAATTCAAGAGAAGGTCACGGCGAGACGAGCCGTTTATCATTACGATAGGTGTCAAGTGGAAGTGCAGTGATGTATGCAGCTGAGGCATCCTAACAGACCGGTAGACTTGAACCT +>LWDE01000750.1/11196-11290 Tilletia controversa strain DAOM 236426 scaffold_750, whole genome shotgun sequence. +GACGACGTGCCGGAGTGGTTAACGGGTGCGCCTGCTATTCTTAGCATGTCAGTGTATAGGCTCTGCCTGCGTGAGTTCGAATCTCATCGTCGTCG +>MGWF01000052.1/10424-10220 Firmicutes bacterium GWF2_51_9 gwf2_scaffold_5678, whole genome shotgun sequence. +GCATAAGCTGTGAACGGGAGTAGTAAACGTCACGCTTCATTCAAGAGAGCCGCTCCTTGGTGCAACGCGGTATGAAGCAACGTCGAACGTGTCCGGGAGCTGGTCGTGCGAAAGTTGAGTGCGATCCGTCGTCGGCGTTAACGAACAGAGTTGCCGGGAGAAATTCCCGGAAGTTAGGTGGTACCGCGTCAATCACGTCCTTTCA +>CM001219.2/34740290-34740361 Medicago truncatula strain A17 chromosome 3, whole genome shotgun sequence. +GTGAGTTTAGCCCAGTTGGTAGGGATATTGCATATTATATGCATGGGCCAGGGTTCGAACCCTGAACTCTCC +>CBUS010004920.1/7915-7704 Eimeria acervulina, Houghton, WGS project CBUS01000000 data, contig: Eah_scaff963_1 +TGAACGATCCTAAGTATTGCTCCACGAGTGGCAGTTACTCTAGGGATAACGCGTTGATCTCCCCGGAAAGTTCGTACTGGCTGGGAAGGTTGGCACCTTAATATCGGCTCGTCGAATCGTGAGGCTAAAGTAGGTGGGAAGGCTTGGCCTGTTCGCCCAATAAAGCGCCACGTGAGCCGGGATCAGAACACCGCGGAATAGCTCGGTCCATA +>DS563006.1/382953-382865 Cavia porcellus supercont2_151 genomic scaffold, whole genome shotgun sequence. +GGGTCAACAATGACACCCCAGCTGCATTCCCTGGAGCTGAATAAAATGGTGCGAACACTAAGCCATCATTCCCAGCAGGCCTGAGGTCC +>LMSO01000009.1/146994-146864 Arthrobacter sp. Soil782 contig_4, whole genome shotgun sequence. +GGTAACGAGTGACAGTGCGGCAGGTTCCACCCGCCATCAGCCCCGGCTTGCTGTCCGGCAACCCTCCCTCGCGGCGGGGTGCCCCGGGTGAAGACCAGGCCCTGCATGCAGTGCAGGAGCAAGCGCGATTC +>BBWW01000001.1/3012297-3012404 Leptolyngbya sp. NIES-2104 DNA, contig: contig1. +GGAGAGGTTGCTATAGGTAGGGCAAATCGTTTGCTAAACGAACACCTTCGGTGCAGCGAAGCTAGCGAGGATTAATCCCCTCTGTGGGTTCGATTCCCACTCTCTCCG +>LCQR01000039.1/11318-11692 Parcubacteria bacterium GW2011_GWF2_50_9 UY62_C0039, whole genome shotgun sequence. +ACGCTGAAATAAGCGTCTTGTTGTCCCTTCTATCAGTAATGATAGAATTAGTATGCGGCTTATAACGGTGGAGCGAGAATCGGTCTTTCCTCAAAAGAGGTTTTCGTATTCTCGTAATACCGTGGGAAGTCCCACTACTTAAGTAAAGTGGGACCCCGTAACGACTGGATTCGAGTCCCGCCAACAGGCGAGATAAGATGAAGATAGTGGATGCCCGAGTGCTCGATGTTCGAATAGCACCGCTATAATACGCCGCCTCCAGCCGTAATTTTTGATTGGGCTTTAAGGTTCAACCTTCTTCCCGATTCAAGATTGAACCTTGGAATCAAAAATTACGGCTGGATGAAGATATAGTCTAATTATCGAAAGATAAAT +>CM001001.2/99651431-99651489 Mus musculus chromosome 8, GRC primary reference assembly. +TGACTCAGTGGTCTGGAGTGATTGCTTTACAAGCAACAGAATCTGAGTTTAGATCTCAG +>KN847319.1/4624885-4625042 Exophiala xenobiotica strain CBS 118157 unplaced genomic scaffold supercont1.3, whole genome shotgun sequence. +GGGGATGTGGTCTAGTGGTATGACGTGTAAGCATCGCACCACACAATTGAACGAAGCACTCATCTAATATGACAACAGTTCCTTAGCAGAAGTTGAATCCTGAAAGGATTGCCCACAACATCTGGAAAAGGTTCTGGGTTCGATTCCCAGCTTCTCCA +>JARO02016333.1/3903-2330 Scleropages formosus scaffold16338, whole genome shotgun sequence. +TGGTTTTAAGGTGGCGGGTGGACTGGGCCCTTGTGTGCAGCCGTTGAAAAATACGCACAGGGTATAACATCTTTTCCTGTGTCTCTTGAATTTAAATGTCTATTGGCTGGGTCTCTCCAAAGTTCCCCCTCAGAAGAACATTCACTATCTTGTTGTTTTACCTGGTAAAGCAAACTTCTTGAGGTGCTGGGGCCAAAATGGCATGAAGGCTTATTCACATCACCTGAGACTAAGATCTCAATTTTATTCTGATGAGATCCCAGAAGATCCCATAAGATCTCATCTTTATCCAAAATGTTGACATACTCAAACACCTGAGAATCCTCAACAGTTTAGCATTAGTGTCTTATTGCTCTCACCCAGACTCCCCCCCCCCAATCATTTGCCAAGTTGGGCTCCAGAAATGGTTCCCTAAAGGGTTGTTGGAGATATCATTTTTATTTGCAGATCAATCATTGTTGAATTTGTCTTTTAAGAAATAATTTTAATCTACCCAATGCAAACTGTCATTTAAGGGGATGTGGTGGCGCACTGGGTTTGGCCAGGGTCTGCTCTGTGGTGGGTCTGCGGTTTGAGTCCTGCTGGGGGTGCCTTGTGGCAGACTGGCGTCCTGTCTGGGGTATGGTCCCCCCCGCATCATTTAACTTCTGCCCTAGAAAAAGAAGATTATGGTCAGAATTTTAAAAAGTTCAGTAGGTAAGCTAACTAGTCTTGCATATTTGGCAAAGAAATGTACTTTGTGGAATGCAAGTCACCTAGTGGGCAATCTTTGGTATGTAGAACTGGTGCTGTGGGATGAACCAGATGCTAGGTTAAGACACTCAATGCCAATGCTCATCAGACTACAAAAAAAGGTGTTGGTTGGCATAGACAGCAGGACGGTGGCCATGGAACTCAGAATCTGCTAAAGTGTTTTAACAACCCACCTGCAGAGTCAACCAGCCCTATAACTGGATGGCACTGGAGAGTGTCAGGTCCATCGTGGCAACAGGAGCCGCAAAAGCTAGGACATGACAAATAAGACAGCTGCTGCGGTGAGCTATCCTAGAGTGTAGGCTTCAGTGGAGCCACCACAGGTGCAGATGTCGGTGGTGGTAAGAAATATTCAAACAAAAACTTTGAAGGCTGAAGTCCATGTCAACAGCAAGTGAACACGAGTCAGTGGTTGTAAGATGCAAATGATGGTCAGAGGGGGCCGGCAATGGCCTCTATTTCCCCCTGCTAATTGAAAGAGAATCAGGTTGGGACTCCTGAATCTGGAGTGGTGGAGACAGATACCATGAGGCATCCAACAGAGTAACGTGAACAATCTCGGAGAAGCTGGAGAGAGCCCCAGGGAGAGTTTAGCCTCCTTTGTAAAGGGTAGGGTGCCTCAGAAGGAGTTTGGCTGGAGAAAAGGGCTCCAGCCCTGGAAAGCATTACAGTTTCAACAATGTCTAGTGATCTCTTATTGATGTTAAATCTGTGGACATAGTGTAAATCTTGCACCAAGTTGTACTCATATCTGCAGCAGATCTCCCAGGTGAGCAGTCTCACATGTGTAATGTCAGATCTGTAGCTTTGGGATAAGGATT +>URS0001A24131_12908/1-50 unclassified sequences eL15-Euryarchaeota ribosomal protein leader +ACGGGAUCCGUCCCGGAGAGGAAUGUGGUCCUUCUGGACUGAACCUAGGU +>FAOM01224274.1/16511-16416 Triticum aestivum genome assembly, contig: Triticum_aestivum_CS42_TGACv1_scaffold_224274_3B +AGGAGCCGTATGAGGTGAAAATCTCATGTACGGTTCTTCGTCGTCGTGGAGCTCGTTATGCCAGGGCTCCGGGTGAAAATCTTTGTCTACACGGAC +>JH835471.1/1830309-1830596 Erinaceus europaeus unplaced genomic scaffold scaffold00183, whole genome shotgun sequence +GAATATGAGGGTGATCTGGCTGTGACATTTGTCACCCCATTGATCACCAGGGTTGATTCAGCTGACCTGGCCGGCTAGGCAGGTCCCTTTCCTCCTTCACTATTCCATGTGTGTCCCTCCCAAAGCTTTGAGCTCAAAGATGACTGAATAGAGACAGGCCCAGTCTTCAGATGAGAGTCTACAGGTAGCTGTACTCCTCTGCTAGAACCTCCAAACAAGCTCTCAAAGCCCCTAATCTCAGGATGTTTCTTCATATGACGCTATATACTCTTGGGGTAAATCTTCTGA +>HF997179.1/95514-95443 Ruminococcus gnavus CAG:126 genomic scaffold, scf59 +GGATACATAACTCAATCGGTCAGAGCGGCAGCCTTATAAGCTGTGTGTCACGGGTTCGATTCCCGTTGTCCG +>AKWO02000047.1/149928-149814 Leptospira borgpetersenii str. 200701203 ctg1130286793315, whole genome shotgun sequence. +AAATAGATCAGTATGGACATATCTGGGAGCAAAATGTATTTACTCGAAGAAAAACAAACACAACTGAAAGGGGATCAAACCTTGACTTGCGCAGGATGCAGATCAAAAGTCACGC +>LFJF01019852.1/9646-11555 Macrostomum lignano unitig_19906, whole genome shotgun sequence. +CCCGCTGAATTTAAGCATATTATTAAGCGGAGGAAAAGAAACTAACAAGGATTCCCCTCTAGTAACGCGAGTGAACGGGGAAGAGCCCAACACCGAATCCCTTGGCGCAAGTCAAGCGGAAATGTGGTGTTAAAGGTAGCCCTTCGTGTCAGTCTAGGCGTCCTCAAGTCCACCTGATTGTGGCTCAAGCCAGAAGAGGGTGTAAGGCCCGTAGAGACGCCTCCGACTGATTCCTGGGGTTTACCCTACGAGTCGGCTTGTTTGGGAATGCAAGGCCAAAGCGGGGTGTAAACTCCATCCAAGGCTAAATACTGGCACGAGTCCGATAGCGGACAAGTACCGCCGTGAGGGAAAGTTGAAAAGAACTTTGAAGAGAGAGTTCAATAGTACGTGAAACCTGCTTAGAGGCAAACGGATGGTGGCTCATACTGGCCTGAGGAATTCAACTGTGACGGGGCTGGACGAGCTGGCGTTCCGATCTCTTCTTTTGGGACGGGCGTCGGTTTGGCTATCAGGACTCTGACATGGTGCACTTTCCTTGGTGCCTCCGCCGACGACCGACGACACTGGCTACCCCGCGGCTCGGGGTAAGGTGACAAACCTGCTTCGGCATTTGTGTTATAGACCCCGGGGCGTCGGACATGGTTTGGCCAGGACGTCGAAGCTTGCGGCGCCCGCTCGCTTGTGGCTCGCATGTTGGCTACTTGGCTGCGCCGATGCTTGCACTGGAGACAACCAGTACAGGTGACGGTTGTGGTCTTGTCTCTAGTTGGCCTCTGCGAGTTTGGCGCCTATAGTCTGTGGTGTACTTGTGGGTAGACTCTATCCGACCCGTCTTGAAACACGGACCATTGAAGGAGTCTAACATGTGGCGCGAGTCATGGGGATTCTACGAAAACCCAAAGGCGCAGTGAAAGTAAAGGCCTGCTTCTCGTAGGCTGAGGTGGGATCTCGTGGCATCGCATCGCGATTGGCGAGCGCACGCACCGGCACCGTCCTATCTGTCTCTGTCAGTGGGGCGGCGCAAGAGCGTACACGTTTGGGACCCGAAAGATGGTGAACTTATGCTTGCGCAGCTCGAAGTCAGTGGAAACACCTGATGGAGGAGCGCAGCGTTTCTGACGTGCAAAAATCGATCGTCCAAAACGTGAGTATAGGGCGAAAGACTAATAAGGGGGCGAGACGTCATAAGTAGCAACCATCCTTGAGCTGGATTCCCTTCCGAAGTTTCCCTCAGGATAGCTGGCACTGCGGGGAAAACAGTTTTATCCGTAAAGCGAATGATTAGTAGGCATTGGGGGTCGAAAACGACCTCGACCTATTCTCAAAACTTTAAATGGGTAAGGATGCTCGTCTCGCTTAATTGGAGGCGGGCTTCACGCTCTCTAACGTGAATGTGAGTGCCCAGTGGGGCCATTTTGTTGTAAGGCAAGAACTGGCGCTGTGGATGAACCAAACGCGGCGTTGAAGGCGCCCAATGCGGACGCTCATGAGACACCACAAAAGGTGTTGGTCGATACTGACAGCAGGGACGGTGGCCATGGAAGTCGAACGGCCGCTAAGGAGTGTGTAACAACTCACCTGCGCGAATCAACCAGCCCTGAAAATGATGGCGCTGGGAAGCGTCCGGCCTATAGGATCGGGTTGACCTGGTGTGACTCGATGTGGGGATAGGATAGCAGACAAACTAATCTTGTAGGTATGTCCACTAACGAGTAGCGAGGGTAGCCGTGGTGTAGCGCAGAGTGATGTCAGCCGCACGTAATTGTGAGGCCAGTGACTGGAGCCGTCCAACGGGTAAATATTCCGCGGCGGCAGATCTTGCGGTGGTCAGTACAATACTCAGCAAGATAGAAAGCGTTGAGGACTGTAAAGTGTTTGAGAGAGGGTTCATGTGAAACAGCATAGTT +>JSYM01000001.1/27642-27547 Flavobacterium sp. AED Contig01, whole genome shotgun sequence. +TTTTAGCCCCGATGGGAGCGATATCCTTTTCGAGTCTTTTCTCGTTCCTAAAACGAGAAAAGACTCGAAAAGATAAAGAGGACAGCGGGACCCATG +>AP014808.1/1488830-1488748 Lactobacillus acetotolerans DNA, complete genome, strain: NBRC 13120. +TAATATAAAAAGAAGCCCTGTGAATAACAGAACTTCTCATGTAGAGCCGTAAAAGACGGTGGCATGATAATAATTACTAAAAA +>FR889406.1/108529-108414 Firmicutes bacterium CAG:449 genomic scaffold, scf101 +TTTAATAGTTCCAATATACCAAAGACAGCAACGGCTATTAGCTTAATAATGTTGCCGAGGTAAAGTAAGTTATTTATAAATAATGACAAGCATTACTCTTGTATATTGTTGACTAT +>AGTP01109286.1/18627-18514 Ictidomys tridecemlineatus contig109286, whole genome shotgun sequence. +GTGTTGTATGAAAGAAGACAAGGTTATTCTGTTTTGTCAAGGATGGAAGAAACCCTTAGGCCTGACCACACGCATATTGTTAAGATATCACATAGCATCTAACCATTGACTTTT +>CP001014.1/1643612-1643672 Thermoproteus neutrophilus V24Sta, complete genome. +CGGCGGCGGAGAGCCCCGCGCGGGGCGCCGTGAAGCTACCGCAGTCGGTCCCCCTTGTACA +>MNDA01000091.1/220-1 Ktedonobacter sp. 13_2_20CM_53_11 13_2_20cm_scaffold_5687, whole genome shotgun sequence. +GGGGATGTCGGGTTTCGACAGACGAACAGATTGTTGAATTGCAGGCCGAGGTGTCGGTATGCACTCTCGTTAAACAACCGACAAAACAATAGATGCCAACAAACAGGCACCTGCTTACGCTTTCGCTGCTTAATAACCAGTAGGCGTCGTCCGCCCAGTTTTTTCTCGTGGGATTGGAACCGGGCGTCGAAAACACGAGGTGCTATGACGGTGACCGCCC +>ACTA01034202.1/35881-35939 Ailuropoda melanoleuca scaffold919_18, whole genome shotgun sequence. +TGCTCTGATGAAATCACTTATAGGAAGTGCCGTCAGAAGCGATACTAGCCATTCTGACA +>DS028111.1/11289-9911 Coccidioides immitis RMSCC 2394 supercont1.19 genomic scaffold, whole genome shotgun sequence. +GGGCACATGGTGGATGCCTTGGCATCAAGAGCCGATGAAGGACGTTGGAGCCTGCGATAAGCCCTGGGGAGTTGGCAACCGAGCGTTGATCCGGGGGTGTCCGAATGGGGAAACCCAGCACGAGTCATGTCGTGTTACCTGCGCCTGAATCTATAGGGCGTTTGGAGGGAACGCGGGGAAGTGAAACATCTCAGTACCCGTAGGAAGAGAAAACAATAGTGATTCCGAGAGTAGTGGCGAGCGAAATCGGATGAGGCTAAACCAACTGCGTGTGATAGACGGCAGTCGTTGCGTAGTTGGGGTTGTGGGATATGTCTGTCATCGTCTGCCGGCGGTGAGCTCAGTAAGAAACCAAGCATGAAGGTGAACCAGTTGGGAAGCTGGGCCGTAGCGGGTGATAGCCCCGTAATCGTATGTGTTTGGCTGGGTTGATGTACTCCCAAGTAGGACGGCACTCGTGGAATGTCGTGTGAATCTGGCGGGACCACCCGCTAAGCCTAAATACTTCTTGATGACCGATAGCGGACCAGTACCGTGAGGGAAAGGTGAAAAGTACCCCTGGCGGGGAGTGAAATAGTACCTGAAACCGTGTGCCTACAATCCGTCAGAGCCCGGCCGGCTGTTTACAGCAGTGGGGGTGATGGCGTGCCTTTTGAAGAATGAGCCTGCGAGTTAGCGGTGTGTGGCAAGGTTAACCCGTGTGGGGTAGCCGTAGCGAAAGCGAGTCCTAATAGGGCGATTGAGTCGCGCGCTCTAGACCCGAAGCGAAGTGATCTAGCCATGGGCAGGTTGAAGCGCCGGTAAGACGGCGTGGAGGACCGAACCCACTTCAGTTGAAAATGGAGGGGATGACCTGTGGTTAGGGGTGAAAGGCCAATCAAACTTCGTGATAGCTGGTTCTCCCCGAAATGCATTTAGGTGCAGCGTTGTGTGTTTCTTGCCGGAGGTAGAGCACTGGATAGCCGATGGGCCCGACCAGGTTACTGACGTTAGCCAAACTCCGAATGCCGGTAAGTGAGAGCGCAGCAGTGAGACAGTGGGGGATAAGCTCCATTGTCGAGAGGGAAACAGCCCAGACCATCAGCTAAGGCCCCTAAGCGGTAACTAAGTGGAAAAGGATGTGGAGTCGCAGTGACAACCAGGAGGTTGGCTTGGAAGCAGCCACCCTTGAAAGAGTGCGTAATAGCTCACTGGTCAAGTGATTCCGCGCCGACAATGTAGCGGGGCTCAAGTTATCCGCCGAAGCTATGGCACTCCGGTTTTCCGGGGTGGGTAGGGGAGCGTCGTGTATCGGGTGAAGCAGCGGAGTGATCCAGCGGTGGACGGTACGCGAGTGAGAATGCAGGCATGAGTAGCGAATGATGTGTGAGAAACACATC +>LN902847.1/6110633-6109254 Echinococcus multilocularis genomic scaffold, pathogen_EmW_scaffold_07 +TAAAATACTGCAGATGGGGGAAGTCGGGATTCTTAATCCATAACATCGGAAAGAGGATTGGCTCTGAAAGCTGAGCGGAACAGGCTAAGGAAAGAAACAAGCTAACTCAGTTTGCTGATGGACGGGCTGGCTAACTGTTGATACACCGCCTCCACCGCCGTCGTTGCGGTGGTGGGTGGGTGTGGAGCATGCAGTTGAGCCCATCCCTTGGCTGGAGGCGAGTAGGGTGAACCGTGGGCGGACCCAGATAAATGTGCACCTCGGTCGATTGATTGGTTAGTTAGTTGTCGATGATGCTGCTTGTTGGCTGTTAGTTGGCGAGTGTTGTGGTGCTCGGCACTGCTACTGGTTAGCCTCGTTGGGGGGTGCTTGTTTAGTGCCAAACACCCAACCCAGAACTAACATGGACCTGAAAAATCCGACTCTCCAATTAAAACGTAGTTTTGTGATGTCCGCTGGTTTGTTCTAGTGCAATGTGATTTCTGCCCAGTGCTCTGAAGTCAAAGTGAAGATTTTCAACCATACGCGGGTAAATGGCGGGAGTAACTACGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAACTAGTGACGCGCATGAATAAAATTAATGAGATTTCTATTGGCCCTGGCTACCATCTAGCGAAATCACAGCCAAGGGAGCAGGCTTGGCAGAATCAGTGGGAAAAGAAGACCCTGTTCAGCTTGACTCTAGTCCGACTTTGTGAAGAGATATGGTGGGTGTAGCAATAAGTGGTTCAACTGTGGCTTTCTATGAGATAGCTGTGCTTTTCATCTTTGTGCTCAGCATGCACATCACCTTGTTAGCCCGCCAAATCTAACATTTACTCTTTTGCGCTTTTACATTCCTGTCATCAGGAGGTAGATAGAATGCTCGTAAATGCTTAAATAGAAAAATGATTTAAGACAAGGAAAATTGGTTTGGGCATTTCCAGTTCATGTTGTACCTAGTCATTGATTTACTTCCTTTAATGGAAGCTGCGAAGAGGTGGTTTGAGAGCACTAAAAACCTCTAATTTTGTCTCATCAACTGGGCATATAAGCATTCGTTCATTTCCAAAACTTCTGACAAGCCCGCTTGACGCCTCATGTTATTAATGGGTTAGTGTTTGCAATCAGTGGTAAATGAAGTTGATCCATGAAGGTTAAATATGCTTTGCAAATTGCAGTATAGTCACCACAATTGAACAAATTTCACATGCCAAAAAGAGGGGTCACCCATAAATCATGCGATTCATTACAGTCTACAAGGTTAGTAGAACTACTAATTTATCGAAGCGTATGTTTTAGAAAAGGTTGCAGACTAATGTCCATCCCATTCATTCTGCCAATTTTAAAGCATTTCTCTTTTCGTCTGC +>LZPO01055098.1/393046-393292 Neotoma lepida isolate 417 scaffold_519, whole genome shotgun sequence. +GGACGGCTAGGCAAGTATCCCCTTCCTCCTTCACTATTCAAGTGAGTTCCTCTCAGAGCTGCATGTTCTGTGCAAAACAATGATTTTCCCCAATAGAGGAGCACCATTCTTGGGTCAAGGGGATCTGAGTAGCTGTGCATCCTTGCTAGAACTTCCAAATAAGCCCTCAGGTGCTGGTGGCCATGTCAGAGGAGTAGCAAGTAGCAGTTGAAGTTCAAGGTGTCAGCCCACCAGGAGGAAACTCTCT +>AURB01000101.1/106632-106430 Alicyclobacillus acidoterrestris ATCC 49025 contig_19, whole genome shotgun sequence. +TGAACGGCGTTGAAAGGGAGGAGTAAGGCGGTTTCGATTGTCCAGAGACGGTGCAGCGCGCTGAAATGCACCGCTTTCGTCCGTCTGAAGGTCGCCCTTGAGCTGCTTACCCCGGGTCATTCCGTTATCGATGTCGAGTGTTTCGTTCGTCTCGCGATGAGCGGAAAATTCAGGTGGTAACGCGGAGCCTATCCGTCCTGAGG +>CM004482.1/68495215-68495614 Xenopus laevis strain J chromosome 9_10L, whole genome shotgun sequence. +TGATGACTAACATGTCCACGAGAAGGAATTTCATATATGAATGGAATGCCGATTGCCCTGTCCAAAACCCCAGTGTTAGGACCATATTAACCAGCAAGAAAGAAAAAATTGCCTATATACTTGTCAGATTTGCAGTAGTGAGGGGACAACAGCACAAGTACAGTATGATTAACTGCATCATCAACAGTGCCATGGGCAGCACCAAAACCTATAATTGTGACAATACATTCGGATGTCTGCCCCATGAACATTCGATGGTGCTTTCTGCAACTACCATGTTGACCACAGGTAATGGGGAATCAGGGTTCAATTTCGGAGAGGAAGCCTGAGAAACTGCCACATCCAAGGAAGGCAGCAGGTGCGCAAATTACCCACTCAGAACCTTCTGTGAATAAATATG +>AJMR01000139.1/797-1134 Pseudomonas pseudoalcaligenes KF707 = NBRC 110670 strain KF707 ctg1510, whole genome shotgun sequence. +CCGCCCAGCGCGCCACCAATACCGGCATCGGTATTGCCGCCGGCAAAGGCGCTGCCACTGGCGAGGCCAAGAGACAGGAGAAGGATCGAGGTGTACTTCATGGTGAGGATCGCCTCAGTGGTTTTGGTGAGGCGATATTTACTGTGGGATTTGTCTTACGCAAGTGTCTGACGACGAAAAACACGAACTTTTATTATTTTTTTTATTGGGCGATTCGACAGAAGAACTTTTTCCCTTCAGGGGAGTCAGAGGCTGGTTGAAACCCCCGCTCCATGCGCGTCTTGCGCTTTCTGGTACTGGCACTTCGCCTAATAAGTTCCCTTTGAAGTTGGAACTTT +>MNIQ01000128.1/3562-3838 Ktedonobacter sp. 13_1_20CM_4_53_7 13_1_20cm_4_scaffold_29355, whole genome shotgun sequence. +TTATAGGCAACGAAGGAACGAGTAGGTCCCCATATCTTGTCGAAGAGAGCCTGGGGGTGGTGTAACCAGGTCAGGATCGTGAGCCGAAAATCATTCCAGAGCCGCTAGCCGAAACAACAAAGTAGACCTGGCCGGGACCTTCCCGTTATCATGAAGGGCTGTATGGATCCTCTCAATTGGGGAGTTACAGCTAAACCAAGTGAGCCATATCTATCTCACACCTCGTGAGAATGTGGCTAATAAGGGTGGTACCGCGGGAGTTCCTCTCGTCCCTATG +>BARX01000007.1/79604-79779 Agarivorans albus MKT 106 DNA, contig: contig00007. +CAGCGCGCTTTTGGGGAGTAGCTGCCCATATCAATAAGGTATGGGGCATTTATCAACATACTTAGTGCTCATCACTATGGTAAATGCAGCCTTTATTGGCCTAGCAAGACCAAATGCACATTAACGCCATAAAGAGGTGAGCTGCGTTGTGTGCATTGGTTTATTCGCTCGCCTCA +>CM001383.3/74376359-74376250 Felis catus isolate Cinnamon breed Abyssinian chromosome B3, whole genome shotgun sequence. +CCTCGATGATGAATTGCCATGCTAATACTGAGTCACCAGGTGGGGCAGTGTTGCCCTGGTTTGGGTGCCAGTGAGTTTAACAAAACTTCTCACATGGAGACCTGAGGGGC +>AOKF01002516.1/2805-2760 Pseudomonas syringae pv. actinidiae ICMP 19096 scaffold552, whole genome shotgun sequence. +TTGGCTTTTAACCAATTGGTCGTAGGTTCGAATCCCACACGACCCA +>AWUE01016600.1/22634-22748 Corchorus olitorius cultivar O-4 contig16633, whole genome shotgun sequence. +GGGTGCAATCATACCAGCCCTAATGCACCGGATCCCATCAGAACTCCGTACTTAAGCATGCTCTTGGAGTTGGCTATCATCAAAAGTGTCATTATTCTAACTACTTTTGCAAATG +>JH835377.1/3849674-3849364 Erinaceus europaeus unplaced genomic scaffold scaffold00089, whole genome shotgun sequence +ATGTGAGGGTGCTCTGGCTGTGACATCTGTCACCCCATTGATTAGAAGGGTTGATTCAGCTGATCTGGTTGGTTAGGAGGTGTCCCCTTCCTCCCTCACCACTGAATGTGCTTCCCTCCCAAAGCTGCAGTGCTTGGTGAAGAAGACAGCCTTCCCCAACAGAGATGGACAGGTCTCGGTGGAGGGTATCAGACTAGCTGTACTCCCCTGCTAGAAATTCCAAACAAGCTCTCAAAATGTCTCTTGGAAATTTGCCAGATTTCATATGAAAAGAGTCATTCTATATTTTTCCTATAGAAAGAAGATCATTT +>URS0000D6B09B_12908/1-98 unclassified sequences skipping-rope RNA +CATGCCGGAGGTGGGAAATTGTGTTGCACCCACGCACCTTGCGTACATGACGTAACGGTTAAAAGAGATGGAGCAGATTGCAACGGCTCCCCGGCATA +>CP000108.1/2027693-2027787 Chlorobium chlorochromatii CaD3, complete genome. +CGGCATCCCCATTACCTATGGTCACGGTGCTGGAAGCTCTGGGAAGGGTTACCCTTCCAATGGTGAATTGATCAGGAGAGCTTTTCCGTGTCCCA +>LCZI01000091.1/60703-61080 Emmonsia crescens UAMH 3008 supercont1.108, whole genome shotgun sequence. +GCGTAGGCGAAAATCATTTTACTACATACATATAAAATTCAATTACCCCAATTTGTATAATATTAAATTATGGCTATCTGCAGTTAATGCCGTGAGACATGGTTAATTCTTTTAATGAACCCAAACCCTAACTTTCTTTATTTCTCTATATAAAGTAACTTGCTAAAAATTGGTTAGAGAATAGGGACCAAGACAGGTCATCATGACCATAAATAATATTATGGGCTATAGACGTACCACACACGCCTTAACAAAAGGATGCTATATTGTAAAATGGAGCTAATCCTTAAAACATAATATAATATGAGGTGTTGTCTGTAACTCGACAACAGGGACAAAAAAGTACTAGTGATCGTGAATCATCACGCCACGGTGAGT +>CP016199.1/1032825-1032926 Mogibacterium pumilum strain ATCC 700696 genome. +TCCTTATTAAGAGCGAGTGAGGGAATGGGCCCGGCGAACTCGCGGCAGCATCGCATATTGCGGTTGTGCCAAGTCCCACAGGCAAAGCCTGAAAGATGAGGA +>DS562928.1/6888831-6889130 Cavia porcellus supercont2_73 genomic scaffold, whole genome shotgun sequence. +GATTCCAGCAATCTGCCTGTGACGTCTGTCACCCTTGTCATTGTGTGGGCTGGTTTGGTTAATCTGGCTGGGGAGGTGGGTGTCCTCTTTCTCTTTCACAGCACCATGTGCATCTCTGTTGAAGCTGTGTGCTTGGTGGAAGAGGAGGACCTTCCCCGAAAGGATCAGGACAAAGATACATGAGTAGCTTCACTTCCCTGCTGGAACCTCCAGACAAGCTCTCGAGGATAGGATTTACCATGTGACACAGTAGTGGAGAATTTGAACAAAAGTCTATGTTGCTCATCATGGTAATTCAGG +>CM000236.2/126073376-126073451 Rattus norvegicus chromosome 6, whole genome shotgun sequence. +GAGGGGCTCACAGCTCCGGTCCTTGGAGCTCCAGAGAAAATGTTGCTCCGGGACTGAGTTCTGTGCACCCCCCTTG +>APWO02002148.1/5885-5949 Astyanax mexicanus Unplaced_Scaffold4491, whole genome shotgun sequence. +GTGTTTTTCTGCAACTGAAAAACTCCTCTGTAGCTCAAAAATGAGCTTTTTAAGACTGAAACACA +>CM001883.1/35529231-35529093 Theobroma cacao cultivar Matina 1-6 chromosome 5, whole genome shotgun sequence. +AATGCCTCCAGAATAACCAGAAGGTTAGAATATGATCCGACGCCGTCTTGGTTCAGACAGAGGCTTAGAGCAATTCGAATCCGTTTGAGGGTAAGGAACGATTTTCCTCCGTTCCTTTCCTAGATGTCTTCGAATATTT +>JH711575.1/1398613-1398696 Coniophora puteana RWD-64-598 SS2 unplaced genomic scaffold CONPUscaffold_3, whole genome shotgun sequence. +GGGCGTTTGGCACAGTGGTAGCGCGTATGCTTTGCATTTAAGCAACTTGCATAAGGTCGTGGGCTCGAATCCCATTCATCTCCT +>FQVZ01000030.1/1153-1 Fibrobacter sp. UWB8 genome assembly, contig: Ga0136280_130 +TGGAGGTCGCAGGGAAACGGCAGAAGCGACTGTTTACCAAAAACACAGGGCCATGCTAACACGCAAGTGGACGTATATGGTCTGACACGTGCCCGGTGCCGGAAGGTTAACAGGAGGGGTCAGCGCAAGCGAAGCCCTGAATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATCGTGTAACGACTTCTGCACTGTCTCCTCCCGGGACTCGGCGAAATTGCAGTGCCGGTGAAGATGCCGGCAACCCGCACCTGGACGGAAAGACCCCATGAACCTTCACTGTATTTTGACATTGGTTTTAGGGCCCGCATGTGTAGGATAGGTGGGAGGCTTTGAAACGGCGACGCCAGTCGTCGCGGAGCCGCCCTTGAAATACCACCCTTGCGCGCTTTGAGATCTAACCTCGTCCCGTCATCCGGGACAGGGACCGTGTCTGATGGTCAGTTTGACTGGGGCGGTCGCCTCCTAAAAGGTAACGGAGGCATCCAACGGTTCCCTCAGCGCGGTCGGCAATCGCGCGTAGAGCATAAAGGCATAAGGGAGCTTGACTGCGAGGCGGACACGCCGGGCAGGTACGAAAGTAGGGCTTAGTGATCCCGCGGTACAGCGTGGAAAGGCCGTTGCTCAATGGATAAAAGGTACTCTGGGGATAACAGGCTGATCTCCCCCAAGCGTTCATAGCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGGAGAAGGTCCCAAGGGTTTGGCTGTTCGCCAATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGGTGTGGGCGTTCGAGACTTGAGGGAAGCTGTCCTTAGTACGAGAGGACCGGGACGGACGTACCTCCGGTGTACCGGCTGTCGCGCCAGCGGCATTGCCGGGTAGCCGTGTACGGATCGGAGAAACGCTGAAGGCATCTAAGCGTGAAGCCGTTCCCAAGATCAGGTCTCGCGGGGGCAACCCCATGTAGGGCCGTCGTAGACTACGACGTCGATAGGCCGCAGGTGTGAGCGTGGCGACACGTTGAGCCGAGCGGTACTAATAGCCCGGTAGAGCTTTT +>AAPE02046865.1/69583-69781 Myotis lucifugus cont2.46864, whole genome shotgun sequence. +GAATCTGATAATCAACAGGGTTAAAAGACAGTTGAACACCTGAAGTACATTATGATGATTTAAATAATGTGCAGTTTGCCCAAAAACGTTCGGTCCCTGGCGTATGTCTTAGAGATTTCTATGCGGTATGCAATGTGTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACTCGCATGAATGAATGAACGAGATTC +>HF998428.1/32618-32277 Coprococcus eutactus CAG:665 genomic scaffold, scf147 +GGGGTTGACTGGTTTCGACAGGGGTTTTGAAGCTATGGAAGCCATCCGTGGACCAGAGCCACGCTAAAAGCTGGACAAAAAATAAACGCTAACGATAATTTAGCATACGCTGCCTAGTTGCAGCCGTCATCCTTTAGGAACGCCGAGCCTTTAGGAATGGCGTCGACTTTCGGCAAACTCCTGCATCTAAGCTTTGCGATGTAGGAAAATCCATGAAGCTACTAAGGTCTATAGCATGTTAGTGGGCGATAGGCTGAGGGAATGTTAAAGCACTGACTGTGATGGAAGAAACTGTAGTGAATGAGCTTTTGGACGGGGGTTCGACTCCCCCCAGCTCCACTA +>FJUW01000012.1/748132-747973 Rhynchosporium commune strain UK7 genome assembly, contig: RCO7_scaffold012 +GGCCGAGTAGTGCAATGGTCAGCATCTCACATCCATAATGTTCTGGATTGCGAGCGCGCGTGCGTGTCATCGGATCTTGTATCGTTTACTGTATTCTTATTGCTTCGGCGTTTGGGTGTAGGATTATGTGAGGATGGAGGTTCGATTCCTTCCTTGGCCA +>CM001586.2/2047421-2047222 Ovis aries breed Texel chromosome 5, whole genome shotgun sequence. +ATCACTTCTCGGCCTTTTGGCTAAGATCAAGTGTAGTATCTGTTCTTAACAGTTTAAAATAGTATGTTCCAGACCCTGGCTGCTGAAATGTATCTCTCAATCTCTAAAATCCCTGTGGGTTGCTGAATCATAAGGGCTTGGTTCCTGGTGCATTTTAAATTTTGTCTTTGTTTCTGACACCGGAGGATGACTCACTCTTT +>AP008955.1/1357281-1357003 Brevibacillus brevis NBRC 100599 DNA, complete genome. +TTGATGGCAATGAGGAAGAAGAGTAGTCATTTTACGAGACTTCAGAGAGCTGATGGTTGGTGCGAATCAGTGTTAAGGAAATGATGAATGGGCTTCCGAGCTCCAAACCAAACCCGCTACTCATGGCGGCAGTAGGCTTTGGCGTTACGTCCGTACGTTACAATGGACACCGTATCAAGCTGTCTTACACAGAAACGGTACGGATTAAAGAGATTTTGCGTATGGATGATTCCTTGCGCGAAATAACAAGGGTGGCACCACGGTTCATTCGTCCCTGTC +>ADKL01000252.1/892-837 Hot springs metagenome ctg_1106426166129, whole genome shotgun sequence. +CTTGATGAGTACACTCTTTGCTGATTCAATGAGGAGAGTGGCCAGGGCTGAAGAGG +>MIDV01000105.1/1073-1170 Xanthomonadales bacterium RIFOXYA1_FULL_69_10 rifoxya1_full_scaffold_59073, whole genome shotgun sequence. +ATCCCCCAGACATGCCCGCCGGCGTTGCCGGTGACATGCCCAGGTAGCCATCGATCTTCAAGGCTGCGGCGCGGCTTGTCCGCGTTGATCGAAACCCG +>FPAA01000006.1/128109-128175 Marininema halotolerans strain DSM 45789 genome assembly, contig: Ga0104500_106 +GTGTTGGTAGTTTAATTAAAATTCCGACCTTTCAAGTCGGCGATGAAGGTAAAATCCTTCCCACACG +>MJEQ01037189.1/69339123-69338966 Nicotiana attenuata strain UT chromosome 7, whole genome shotgun sequence. +ATACTTACCTAGACGAGGTCAATGGACGAACGATAAGACTCATGGCCTAGGTTGGGGACTTCCATTGCACTTTGGAGGTGCCCGCCTATGGTCGACCCAAGTGTCTGAACCTACGTCATAATTTGTGGTAGTTGGGGCTTACGTTCGCGGGCCCCTAC +>KV423970.1/63913-63812 Calocera cornea HHB12733 unplaced genomic scaffold CALCOscaffold_57, whole genome shotgun sequence. +GGCAACTTGGCGCAGTTGGCTAGCGCATCTGTCTAACAAGTTGCCTCTCCAGGCAGGTCCTTTGTACACAGAAGGTCGCAAGTTCGAGCCTTGCAGTTGTCA +>ALWZ040150818.1/688-1 Picea glauca, whole genome shotgun sequence. +CATCGAAAGGAAATCGGGTTAATATTCTCGAACCGGGACATGGCGGCGGACGACAACGTTAGGAAATCCGGAGACGTCGTCGGGGGCCCCGGGAAGAGTTATCTTTTCTTTTTAACAACTTGCCCACCTTGAAATTGGCTCAACCGGAGATAGGGTCCAGCAGCTGGAAGAGCATCACACGTCTTGCGGTGTCTGGTGCGCCCTCGACGGCCCTTGAAAATCTGGAGGACCGAGTACCGTCCATGCCTGGTCATACTCATAACTGCATCAGGTCTCCAAGGTGAACAACCTCTGGTCAATAAAACAATGTAGGTAAGGGAAGTCAGCAAAACGGATCCATAACTTCAGGAAAAGGATTGGCTCTGAGGGCTGGGCCTTGGGGTCTGCGTCCTCAACCCGTGGGATGTCGGCAGTCTACCCGAGCTGCTATCACGGCGAGGGCGGGCAGTCGCGTGCTGATTGGGCTACGGACGTAGAATGTCCTCTCGCGAGGGCTTTTCCCTAGGCGACGAACAGTCGACTCAGAACTGGTACGGAAAAGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATCGTCCCTGCGGATGCTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATATCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTT +>AYUG01104772.1/8786-9026 Fukomys damarensis contig104772, whole genome shotgun sequence. +GGATGTGAGGGCGATCTGGCCGATCTGGCCAGCCAGGCAGGGGTTCCCTCCCTCCTGCGCTGCTACAGAAGCTGCATGCTTGGTCGAAGAGGATGACCACCCTGATGGGGGAGACCGTGTCCTCTGTCAGGGAATCTGAGTAGCTGCACTCCCCTGCTAGAACCAAACAAGCTCTCAAGGAAAGTGAGCCACAGCACTCACCAGAGGCAGAGCTGGGATTTGAACCCCGGCCTCCTGGCTC +>GL344173.1/24246-24358 Anolis carolinensis unplaced genomic scaffold chrUn0991, whole genome shotgun sequence. +ATCTAGGAGTACAGGGTTGTTGTATGTCTTTTGGGCTGTGTGGCCATGTTCCAGAACATCAGAACTTCTGGAACATGGCCACACAGCCCGAAAGACATACAACAACCCTGTGA +>URS0001A24820_12908/1-49 unclassified sequences eL15-Euryarchaeota ribosomal protein leader +GCGGAUAAUAAUCCGUAGGGAUGUAACCCAAACGGGGUUGAACCGCAAA +>MNWA01000007.1/20574-20446 Candidatus Pacebacteria bacterium CG1_02_43_31 cg1_0.2_scaffold_487_c, whole genome shotgun sequence. +ATATGTTAATTTAACAATGCTGTGGAATGTAGTGAAAATCTACAACTGTGCCGCAACGGTGTATTTTTGGTATTTTCCAAAATAAGTCCGATCTTCAGCAAAAAATTTTTAAACTTGCTTAGGCAAGTT diff --git a/flax_model/alphafold3/test_data/miniature_databases/rnacentral_active_seq_id_90_cov_80_linclust__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/rnacentral_active_seq_id_90_cov_80_linclust__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..cabca6afb2e397654181cbdd1c12348c2b41f913 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/rnacentral_active_seq_id_90_cov_80_linclust__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>URS000254B5FC rRNA from 1 species +ATGGAAGTCGACAGAGCCCCGGCCGCTGCCGCGGGAGGAGGATCCTCCTCTGGCGCGATGGCGGTGGACGCGGCCGGCGGCGTGGAGAAGCCGCGGTTCGACGCGCTGATGCCAAGCGAGATGAGCGGCGGGAGGCCACAGTACCGCAAGGTCCAGGTGCCGCCGCACCGCTTCGCGCCGCTGAAGAAGGCGTGGCTGGAGATCTACACCCCCGTCTACGAGCACATGAAGGTCGACATCCGCATGAACCTCAAGGCAAAAAGGGTCGAGCTGAAGACGAGGCATGATACACCAGATGTGAGCAACCTTCAGAAGTGCGCGGACTTCGTGCATGCTTTTATGCTTGGATTTGACATTGCCGATGCCGTTGCCTTGCTTCGTCTTGATGACCTGTATGTGGACTCCTTTGAGATCAAGGATGTGAAGACACTCAGAGGGGAGCATCTGTCACGTGCCATTGGGCGCCTGTCAGGGAAAGGAGGCAAGACCAAGTATGCCATCGAGAACTCTACGAGGACTCGCATAGTTATCGCTGATACGAAGATCCACATACTTGGATCCTTTGTTAACATCAAGGTTGCCAGGGATTCACTCTGTAGTCTTATCTTAGGTTCTCCTGCCGGCAAGGTCTATTCTAAGCTTAGGGCTGTATCTGCTAGGTTGGCAGAAAGGTATTAG +>URS0000B78375 rRNA from 1 species +GTGGGGAATATTGGACAATGGGGGGAACCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTTTGGTTGTAAAGCACTTTAAGCGAGGAGGAGGCTACCGAGATTAATACTCTTGGATAGTGGACGTTACTCGCAGAATAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCAAGCGTTAATCGGATTTACTGGGCGTAAAGCGCGCGTAGGTGGCCAATTAAGTCAAATGTGAAATCCCCGAGCTTAACTTGGGAATTGCATTCGATACTTGGTGGGTAGAGTATGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAAAGCGTAGAAATCTGGAGGAATACCGATGGCGAAGGCAACCATCTGGCCTAATACTGACACTGAGGTGCGAAAGCAAGGGGAGCAAACAGGATTAGATACCCCTGTAGTCC +>URS0001CC990C rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACGGACGAGAATCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAGCACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCAAAAGTGAAAGACGGTCTTGCTGTCACTTATAGATGTATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTACAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGAACTGGGCGGAAGACTGACGGAGCAACGCCGCGTGAGTGATGAGGGTCTTCGGATCGTAAGACTCTGTTCTTAGGGAAGAACATATGTGTAAGTAACTGTGCACATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS00013D39E1 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGGTCTTTAAGTCAGGGGTGAAATGCCAAGGCTCAACCTTGGAACTGCCTTTGATACTGGAGATCTTGAGTCCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGGAACTGACGCTGAGACGCGAAAGCGTGGGGAGC +>URS00023ED20D lncRNA from 1 species +TCAGAATAAGCATAGCTAGGAAGGAATGTTTGAATAATGCACTATTTTTTTCCTCATGAGATAAAAAAAGAAGAAGAAAATATTCTTTTAGAGTAGCAGCAGTGGATGAAAAAAACTCAAAAAAATTGGAAACGTGAAAAAGTGCAAAACCAGAGGGTGAGGAACGTGTCGGTAGAAGAAGGGCTGGCTCGCTCTCGTTCGATCAGATCAAATACTACCGGAG +>URS00017AA725 rRNA from 1 species +TACGGGGGGAGCAAGCGTTGTTCGGATTTACTGGGCGTAAAGGGCGCGTAGGCGGCCACCGCAAGTCGACTGTGAAGTTTCCGGGCTTAACCCGGAAAGGTCAGCCGATACTGCGGGGCTAGAGTGCAGAAGGGGCAACTGGAATTCTCGGTGTAGCGGTGAAATGCGTAGATATCGAGAGGAACACCTGCGGCGAAGGCGGGTTGCTGGGCTGACACTGACGCTGAGGCGCGAAAGCTAGGGGAGCGAACGGG +>URS00023C6B8F lncRNA from 1 species +GTCATACTCAATATAAATTAATAGTAATGGATGCAAATGACAACGGTGCTCTCCAACAGGTGCTTTTTAATAAAAGGATGATGACTCAACATAAAAATAAATAGATAGGCCCTACGCAGAGGGAAGCAGGGATTTGTAGAGGTGCCAGAGCTCGATTTTTGAATAGAGATAAATAATATTTTGAGCGGCATACTTTCATTGTTAACATAACAACCGAGAGATCTCGATATCTTCCATGCTACACACATTATAGGCGGTTCCCAAACATAATGGTAAAGTTTATACTCCCCCTCCACCAACAATCATCAATTCATGGCTTTCCCGAAACAACGGGTGCCTCCAACTAACAACAATCCTAGGGGAGTTTTGTTTGCAATTATTTTGATTTGATTTGAGCATGGGACTTGGCATCCGATGACCAGCCATTTTCTCGTGAGTGAGGAGCGGAGTCCACTCCTCTTGAGAATAACCCATCTAGCATGGAAGATACAGACAACCCTAGTTGAGACATGAGCTGTTAAAGCATACAAAATAGAATTTCATTTGAAGGTTTAGAGTTTGGCACATACAAATTTACTTGGAACGACAGGTAGATACCGCATATGGGAAGGTATGGTGAACTCATATGAAATAACTTTGGGGTTTATGGAAGTGAATGCACAAGCAGTATTCCCGCTTAGTACAAGTGAAGGCTAGAAAAAGACTGGGAAGCAACCAACTAGAGAGCGACGACAGTCATGAACATTCATTAAAATTAATAGACATTGAGTGGAAGCATGAGTAGGATATAATCCACCATGAACATAACATCGTGGAGGCTATGTTGATTTTGTTTCAACTACATGCGTGAACATTTGCCAAGTCAAGTCACTCGAATCGTTCAAAGGAGGATACCATCCTATCATACCACATCACAACCATTTTAATAATATGTTGGCATGCAAGGTAAACCTTTATAAACTCCTAGCAAATTAAACATGTCATAAGAAACTATAATCTCTAATTGTCATTGCAAACATGTTTATTCATAATAGGCTGAATCGGGAATGATGAACTAATCATATTTACAAAAACAAGATAGGTCAAGTTCATACCAGCTTCTCTCATCTCAATCAGTCCATCACATATCGTCATTATTGCCTTTCACTTGAACGACCGAACGGTGTGGATAATAATAATAGTGCACGTGCATTGGACTAAGCTGGAATCTGCAAGCATTTGATACAAGGGAGAAGGCAACGTAATATGGGCTTTTGGTTAAATCAACAATAATGCATATGAGAGCCACTCAACATTTTCATCATGGTCTTCCCCTCTCGACCTCCAAAGAAAAGAAAAGAAATAAAACTATTTACACGGGAAAGCTCCCAACAAGCAAAAGAAGAACGGAAAATCTTTTTGAGTTTTCTTTTAATTACTACTACTACAGGAATGGAAAGTAAACTATCTAATAGCTATAACTAATTTAAATTTTTGGTTTTTTCTTAAAGTTTTTCAAACACACAAGAAGAAAGCGAGAAAAAGAAAATAAACTAGCATGGATAGCACAATGAAAAAGTATGAGCACCGACAACTGGAATGAATGTGTGAACATGAATGTAATGTCGATGAGAAATACGCACTCCGCCAAGCTTAGACTTTTGGCCTAAGTTGGTCTATGCCCATGGATTGAAGCTACTCTCTCCGGTGTACTGAGGAATGTCATCAGGGTGCCACTGGTTGGCAATCTCCTCCGAATACCACTTATAAATGGAGCGTCGATAAGGGTCCAGTGGTGGTTCCGGCTCAGGCTCTGGAGCTGGTGTTAGGCTCCGGTATGCGTAAACGGCCTCCGGCAAGATGAGGTACGTGCCTGAAAATATGTTAAGCAAAGATGGTGCAGGCAAGATAATAGTCTCACTGTGAGTTTTATTAAATCCCAAATTATACTCAAGCATCATCTTCTTATTTTTAACAATAAATTCATGTGCTACCATACTCTTATAATCTAGAAAATAGGGGGC +>URS0001774F8E rRNA from 1 species +CCTACGGGCGGCAGCAGTGGGGGATATTGCACAATGGGGGGAACCCTGATGCAGCGACGCCGCGTGGGTGAAGGAGTGCTTCGGCATGTAAAGCCCTATCGGCAGGGAAGAAGCAAGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATCCGTAGGGGGCGAGCGTTATCCGGATTCACTGGGTGTAAAGGGAGCGTAGACGGCCATGCAAGCTAGGGGTGAAACCCCGGGGCCCAACCCCGGGACTGCCCTTGGAACTGTGCGGCTAGAGTGCGGGAGGGGCAGGCGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGCGGCGAAGGCGGCCTGCTGGACCGCGACTGACGTTGAGGCTCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCCGGTAGTC +>URS00018E4F15 tRNA from 1 species +ACACCAGTGGTGAAACGGTTATCATGCTTGCCTTCCATTACCGTGAGCAAGCGGCGGGGGTTCGACTCCCTCCTGGTGTA +>URS0000B64D6B misc_RNA from 1 species +TGAAGATCTCTCCCTACACACCTCAGCAGTTGCAGATCAAATCTCTGGTTCAGCTAACCAAAGAGTTGAAATTGAAATGGAGATTCTTTCTCTTGGTCAAATGTTTGGGCCTTTGACAAACGGTTCCATCGGTGAAAAAGAGAATTCTTATCATGCTAAGGCTGAATACACAGAAAAACAGCTTCTCTTAAATGTTTCTGCTCAACTTAG +>URS00011ACD89 rRNA from 1 species +TACAGAGGTGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCTTGTAGGTGGCCAACTAAGTCAGACGTGAAATCCCTCGGCTTAACCGGGGAACTGCGTCTGATACTGGATGGCTGGAGTGTGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCGGTGGCGAAGGCGGCATCCTGGACCATTACTGACACTGAAAAGCGAAAGCCAGGGGAGCAAACGGG +>URS0001176963 rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGTTTAAAGGGTGCGTAGGTGGTCTATTAAGTCAGTGCTGAAATATCCCGGCTTAACCGGGAGGGTGGCATTGATACTGATGGACTTGAGTAAAGTTGAGGTAGGCGGAATTGACGGTGTAGCGGTGAAATGCTTAGATATCGTCAAGAACACCGATAGCGAAGGCAGCTTACTAAGCTTTAACTGACACTGAGGCACGAAAGTGTGGGGATCAAACAGG +>URS000182FF44 rRNA from 1 species +TGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGAAGGCGTTGTGGTTAATAACCGCAACGATTGACGTTACTCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCCGAAACTGGCAGGCTAGAGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACA +>URS0000745C0A rRNA from 1 species +CCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAAGCCTGATCCAGCCATGCCGCGTGCAGGATGAGGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAACGAAAAGACTCTGGTTAATACCTGGGGTCCATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTATATAAGACAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTTGTGACTGTATAGCTAGAGTACGGCAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAANCANCCGATGGCGAAGGCAATCCCCTGGGCCTGTACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTGGTTGTTGGGTCTTCACTGACTCAGTAACGAAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTGNAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGTTTAATTCGATGCAACGCGAAAAACCTTACCCACCTTTGACATGTACGGAATCCTTTAGAGATAGAGGAGTGCTCGAAAGAGAGCCGTAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGCCATTAGTTGCTACGAAAGGGCACTCTAATGGGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATG +>URS0001C47DC8 misc_RNA from 1 species +AAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTAAAGTGTTTCGGAGCCTGGCTCGGGCATCTCACCTCGAGGTGTCGGTGTCAGCGCCCCCACACGTGTTTACTCAACTTGGTTGCCTTGGTGAGCCTGCCCTCGTGGCTGCCGGGGATGCCTCACGGCGTTCCGGGCTCGTGCTCACCAGTGGATCATTTGAACTCTTCTGTGAAAATAGCCAGTCTGAGCATTATGCAAATTAAATAAAACTTTCAACAACGGATCTCTTGGTTCCG +>URS0001C9BECE rRNA from 1 species +GATGAACGCTAGCGGCAGGCTTAATACATGCAAGTCGAGGGGCAGCATGAAGTAGCCATACTTTGATGGCGACCGGCAAACGGGTGCGGAACACGTACACAACCTTCCTTTAAGTGGGGAATAGCCCAGAGAAATTTGGATTAATACCCCGTAACACAACTAAGTGGCATCACTTTGTTGTTATAGTTTCGGCGCTTAATGATGGGTGTGCGTATGATTAGATAGTTGGCGAGGTAACGGCTCACCAAGTCTACGATCATTAGCTGATGTGAGAGCATGATCAGCCACACGGGCACTGAGACACGGGCCCGACTCCTACGGGAGGCAGCAGTAAGGAATATTGGTCAATGGACGCAAGTCTGAACCAGCCATGCCGCGTGAAGGATTAAGGTCCTCTGGATTGTAAACTTCTTTTATATGGGACGAAAAAAGGTCTTTCTAGACCCCTTGACGGTACCATATGAATAAGCACCGGCTAACTCCGTG +>URS0000FFB7EB rRNA from 1 species +TACGTAGGTGACCAGCGTTGTCCGGATTTACTGGGCGTAAAGAGCGCGCAGGCGGTCGTTCAAGTCGAGTGTGAAAGCCCCCGGCTCAACTGGGGAGGGTCACTCGATACTGATCGACTTGAAGGCAGGAGAGGGAAGCGGAATTCCCGGTGTAGTGGTGAAATGCGTAGAGATCGGGAGGAAGACCGGTGGCGAAGGCGGCGCTCTGGAACATTTCTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGG +>URS00002FFC52 rRNA from 1 species +TTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGATCAATATAACGGTCATGCCGTTGGTATGCACTGTTATAATTGATTTCTCACCTTCTAAAGAACCGTAATGCCATTAATTTGGTGTCACGGGGAATTAGGACTGTTACCTTGAAAAAATTAGAGTGTTTAAAGCAGGCTCACGCTTGAATACATTAGCATGGAATAATGAAATAGGACATCCGATTCTATTTTGTTGGTTTCTAGGATCGATGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGGCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTTAATGACTCATTCGGCGCCTTACGGGAAAC +>URS00002B11A3 rRNA from 1 species +TGGAACTTGTTCTGGTGGATTAGTGGCGAACGGGTGAGTAACACGTGAGCAACCTGCCCAAGACTTTCGGGATAAGCCTGGGAAACTGGGTCTAATACTGGATATGACCTTTCATCGCATGGTGTTTGGTGGAAAGATTTTTTGGTTTTGGATGGGCTCGCGGCCTATCAGCTTGTTGGTGAGGTAATGGCTTACCAAGGCTTCGACGGGTAACCGGCCTGAGAGGGTGACCGGTCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGTCAGGAACAAGCCACTTGTGGTGAGGGTACTGGCAGAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTATCCGGAATTATTGGGCGTAAAGAGCTTGTAGGCGGTTTGTCGCGTCTGCTGTGAAAGCCCGGGGCTTAACTCCGGGTCTGCAGTGGGTACGGGCAGGCTAGAGTGATGTAGGGGTAACTGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCACGAAGAACACCGATGGC +>URS0000D07B33 snRNA from 1 species +ATACTTACCTGGACGGGGTCAATGGGCGATCAAGAAGACTCATGGCCTGGGCTAGTGACCTCCATTGCACTTCGGAGGGGTGCTTGCTTAAGGTCTCCCCAAGAGGGAGAGCCTACGTCATAATTTGTTGCAAGGGGGTTTGCGTTCGCGCAGCCCCCAC +>URS00007AB434 rRNA from 1 species +CCTACGGGGGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGAATGATGAAGGTCTTAGGATTGTAAAATTCTTTCACCGGGGACGATAATGACGGTACCCGGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGCTCGGAATTACTGGGCGTAAAGGGAGCGTAGGCGGATAGTTTAGTCAGAGGTGAAAGCCCAGGGCTCAACCTTGGAATTGCCTTTGATACTGGCTATCTTGAGTATGGGAGAGGTATGCGGAACTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCATACTGGCCCATTACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAGTGCTAGTTGTCGGCATGCATGCATGTCGGTGACGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGAATTAAAACTCAAAGGAAATTGACGG +>URS0000128881 rRNA from 1 species +TTGACGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGCCTTGACATGCAGAGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAACTCTGACACAGGTGCTGCATGGCTGTCGTCAGCCCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTACCAGCACGTTATGGTGGGCACTCTAAGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGGCCTGGGCTACACACGTGCTACAATGGTCGGTACAAAGGGTTGCCAAGCCGCGAGGTGGAGCTAATCCCATAAAACCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGAATCAGAATGTCACGGTGAATACGTTCCCGGGCCTT +>URS0000FA1FD2 rRNA from 1 species +ATTGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGATCGGTAACGCGGGGGCAACCCTGGCGACGAGAGGCGGACGGGTGAGGAACGCTTGGGAATCTGCCTATCAGCGGGGGACAACACGGGGAAACTCGTGCTAATACCGCATACGCTCTACGGAGGAAAGCCGGGGACCGCAAGGCCTGGCACTGATAGATGAGCCCAAGTCGGATTAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGAACTGAGACACGGGCCAGACGCATACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGAAACCCTGATCCAGCGACGCCGCGTGGGTGAAGAAGGCCTGCGGGTTGTAAAGCCCTTTCGGTAGGGACGAAAGCTCTCGACCTAACACGTCGGGAGGTTGACTTAACCTACAAAAGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAAGAC +>URS000258AA4F rRNA from 1 species +ATGGCCGCTCGTGTTAGCGGGCTCGCGGTGGGCTTCCTCTGCCTGCTTGCAATGTTGTCGCCGTCCGCGCAGCAATCCCCGCCCCCAGACTCCCCAGATTTAAAGTCGTCAATAGACACAGACACCCCACCTCTCCCTGACATACGCCCGCCCCCGAGCTCCCCGCGCGGCTACGAGTTGGACGTGCCCCCCAGGAACGTCACGTGCAAGGATACCGACGGTAAGCGGCCGGGGTGCACGGGAACTTGCCCTCGCCGCTGCCCCCAGTGCATCGTCCTCTGCCCCGACTGCAAGACATTATGCCATGACGAGGTACAGATGCCAAGGCCCGTGCCGCCACCTGCCATGTTGGTGTTCGGAGATGGGCAGTTCGACAACGGTAACAACGGATACTTGGAGCCCCCTAACTACCCCTACTCTGGCACCGGCAGGCTTAGCAACGGGGCCAACCTTGCCGATGCCATTGCATACACTATCGGATTCCCGCAAAGTCCTCTACCCTTCATGTCGTTGCGCGGCCGGATCAGCATGTGGGGCGCCAACTACGCTTCCGTGGGCGCTGGGATTCGGAACTCCACGAACGGAGAGCGGAGCATCCCTCTTTCGCAGCAGCTGGAGGACTTCAGGACGACGAGGGCCCTTATGGGGATAATGCTAGGGGGTGAAGCCAAGCTGCGCGCGTACCTGTCCAAGTCCATCTTCCTCCTCGGCATCGGCAGTCAGGACCTCGACCCAAGATGGAACATACACCTCGCAAATTCGACCGAGATCCAGAGCCTCGTTGCCCTATACGGGGAGGCCGTCACGTCCCTCTACGACATGGGCGCTAGGAAGCTGGCCATCGTCAACGTTGGGCTCATCGGCTGTGCGCCCCAGATCTTTGACTACAGGTACGGTTGCGACGAGAGCCTGAACGACCGCGCCGCCGCGTTCAACGCCGCCCTCAAGCCCCTCATGGCTGGCCTTGCGTCAAAGAAGAAGGGCCTTTTCTACTCCATCGGCGACTTTCATAGCTTCACCACCACCGTCTTCGCCGACCCGTCAGCTTATTGGATGGTGAACATCCGGGACTCGTGTAGCTTCACGGACCACCCAGAGAGGACGTGCTCTCCCCAGGAAGAGCACTGGTTCTGGGATTCAGAGTTCATGACGGATCAGGCATGTAGGCTGACGGCCACTGCATTTTACTATGGACCGCCTCAGTTTACCGCCCCCATGACCTTCAAGGCACTGCTGGAGAAATAA +>URS0001D7E6BA misc_RNA from 1 species +GATGAAGAACGCAGCGAAATGCGATAAGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATCCCGAGGGGCATGCCTGTTCGAGCGTCATTTCAACCATCAAGCCCCAGCGCTTGTGTTGGGGGCCTGCGGCTGCCGCAGCCCCCTAAAAGCAGTGGCGGGCTCGCTATCACACCGAGTGCAGTAGTTCATCTTCTCTCCGGTCTTGTGAGGCGGGTTCCGGCCGTGAAACACCCCACTACATTCAAGGTTGACCTCGGATCAGGTAGGAATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS0002341CEB lncRNA from 1 species +GGCAACGTGTTCCGGTCCTCTTCCACATCACGGAAGATTTGCTCTTTCCTCTTTGCGATGAATCTTGCTGCTGGTCACCCTTTGGGTCCACACAGCATTTATGAGCTGTAACTTTCAGTGCGAAGGTCTGCAGCTTCATTCCTGAAGCCAGCGAGACCACAAACCCACCGGGAGGAAAGAACAGCTCCAGGCGCGCCGCCTTAAGCGCTGTAGCACTCACCGCGAAGGTCTGCAGCTTCACTCCTGAGCCAGCGAGACGACGAACCCACCGGGAGGAACGAACAACTCCAGGCGCGCCGCCTTAAGAGCTGTAACACTCACTGCGAAGGTCCGCAGCTTCACTCCTGAGCCAGCGAGACCACGAACCCACCAGACGGAAGAAACTCTGAACACATCCAAACATCAGAAGGAACAAACTCCGGACACGCCTCCTTTAAGAACTGGAAAGACTCACCGCGAGGGTCCGTGGCTTCATTCTTGAAGTCAGTGAGACCAGGAACCCACCAATTCCGGACGCACTTCCTCCGGACTGTTGGTGCACTGAGTGATCTGAAGTGCTCCCTGGCCACCATGAATGTAAGCAGAGATGGTGTCTCACTTTGTTGTGCAGGCTGGAATGCAGTGGCACAATCATAGCTCACTGCCGCCTCGAACCCTTGGACTCAAGCAATCCTCCTGCCTCAGCCTCCCAAAGTACTGGGATTACAGGTATGA +>URS0000160626 rRNA from 1 species +TCTAACACATGACACGTCGAACGGTAACAGGAATTAGCTTGCTAATTTGCTGACGAGTGGCGGACGGGTGAGTAATGCTTGGGAATTTGCCTTTGCGAGGGGGATAACAGTTGGAAACGACTGCTAATACCGCATGATGTCTACGGACCAAAGGGGGCTTTTAGCTCTCGCGCAAAGAGAAGCCCAAGTGAGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCTCTAGCTGTTCTGAGAGGAAGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGTTGTGAGGAAAGGTTGGTAGTTAATACCTGCCAGCTGTGACGTTAACAACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTCAAGCGAGATGTGAAAGCCCCGGGCTTAACCTGGGAATTGCATTTCGAACTGGCAGGCTAGAGTCTTGGAGAGGGGAGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAACATCAGTGGCGAAGGCGACTCCCTGGCCAAGACTGACGCTCATGTGCGAAAGTGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCCCACCGTAAACGCTGTCTACTAGCTGTGTGTGC +>URS000188CCB0 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGGTCTTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGATCTTGAGTTCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATGACCTTGTA +>URS00019B19CC lncRNA from 1 species +GTCAGTATGAGCATGGAACTTGCTTTAGCCAGTGAAATGTGAACCGTGTACCCTGTACCACTCTCAGGAGGAAGATTTGCAAGCCACTAAGTGGACCTGCCTGACCCCTCCCTTGATGAAGTTACCTTTGCCCCACGTTCTAATCAACCTATACCCCGTAGGCCATCCTTACACTTCTGCTGGGGGTCTGGGTGGACCCCAGGTCAGACAACAATTCATGCTAAGCTGCTTATGAACAGCAGACCACCTGCTGCAGAATCAGGCAGGACATGTGTAGCCTATTTCCATCAAACCTTCTGAAATGGAAACCCCAGGAGTAGAGTCCAGCATCCAGGCCCACAGGATTCCCAGACATACTCAGGTATAAAAATGCCACTGAGTCCTCTGTTAATTATTGACTCCAAAACATTTCTTTGCAGAAGATGATGTTTTCTAAGACAGTGATCTGATTTTAAATTACCAAGACACTGAGTCCTTATTTTATATTCTTTTTCATCTTTACACAAATTTTCTTAAATTAATGCTCTTTAAAATAAGCTCATTTAAAAAAAATGGTGATAAATCTCCAGGTTCTACAGATGGAAAGACTGAAAATAAGACACAGGTATCAAAAACAGAATAAGTGGATCTAATGCAGGGATGTCAGGTGTGCCTCTGGGCCCTCATCCATTCCAAATCCCACTCCACACCTACCTGTCCATTCTCAGATTAAAGAACAGAATGCCCAGACTGCAAAGAAATTAACATGCCCCTTCGTTTTTATTAGCTTTTATTTTAGGCTCATTATCCATACCTCTGTGCATCCCTATTCTGTGTCTGCACTCATTTAGAAGCCAAATACCAGTAGGCCAATCAGCACATT +>URS00021FE078 rRNA from 1 species +GCAGCCCCCTGGGCCAATACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTAGTTGTTGGGGATTCATTTCCTTAGTAACGTAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGATTAATTCGATGCAACGCGAAAAACCTTACCTACCCTTGACATGGTCGGAATCCTGCTGAGAGGCGGGAGTGCTCGAAAGAGAACCGGCGCACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCCTTAGTTGCTACGCAAGAGCACTCTAAGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTATGGGTAGGGCTTCACACGTCATACAATGGTCGGAACAGAGGGTTGCCAACCCGCGAGGGGGAGCTAATCCCAGAAAACCGATCGTAGTCCGGATTGCACTCTGCAACTCGAGTGCATGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTTTACCAGAAGTGGCTAGTCTAACCCGCAATGAGGACGGTCACCACGGTAGGATTCATGACTGGGGTGAAGTCGTACAGGGTTAGCCCGTAATG +>URS0000794101 rRNA from 1 species +CTGATAATTGGAATGAGAACAATCTAAATCCCTTAACGAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCTGGCAGGAGCGACCGGTCACACACTCTGTGTGTGAACTTGTGTTGTCTCTGGCCATCCTTGGGGAGATCCTGTTTGGCATTAAGTTGTCGGGCAGGGGACATCCATCGTTTACTGTGAAAAAATTAGAGTGTTTAAAGCAGGCTTATGCCGTTGAATATATTAGCATGGAATAATAAGATAGGACCTTTGTTCTATTTTGTTGGTTTTTAGAATTGAGGTAATGATTAATAGGGATAGTTGGGGGCATTCGTATTTAACTGTCAGAGGTGAAATTCTTGGATTTGTTAAAGACGGACTACTGCGAAAGCATTTGCCATGGATGTTTTCATTGATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCCTAGTCTTAACCATAAACCATGCCGACTAGAGATTGGAGGTCG +>URS0000E403FD rRNA from 1 species +TAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGCGATGAAGGCCTTCGGGTCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTGCTAGTTAAATAAGCTGGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGAAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCAAGTGTAGCGGTGAAATGCGTAGAGATTTGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCCGTAGTCC +>URS00003FB220 rRNA from 2 species +TTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGCAGAACCTTACCAGCCCTTGACATACCGGTCGCGGACACAGAGATGTGTCTTTCAGTTCGGCTGGACCGGATACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGCCTTTAGTTGCCATCATTTAGTTGGGCACTCTAAAGGGACTGCCAGTGATAAGCTGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACGGGCTGGGCTACACACGTGCTACAATGGTGGTGACAGTGGGCAGCAAGCACGCGAGTGTGAGCTAATCTCCAAAAGCCATCTCAGTTCGGATTGCACTCTGCAACTCGAGTGCATGAAGTTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGTTCTGCCCGAAGGCACTGTGCTAACCGTAAGGAGG +>URS0000583501 sRNA from 1 species +TCAAAGTGATCTCCCGCAGGCGGACTGCCA +>URS0001BC1447 sRNA from 18 species +CCGCGCCCGCUGCUUGAGGGUCAAGGCCCUCUUGCCUGUGCGCAAAAUCUGGUCGAGCCGCUGACUUCUGGGUCACCGCCAUGCGCACAACAGAUACCGCCGGUCUAAAGCGUCCGCGUAGGUCUCGCGCAGUUUCCGAACUGAUCGGCAAUGCCUUCGGUUUGGCGAUGUAGAUAGCUCGACAGGUCG +>URS00018C39BD rRNA from 1 species +TACGGAGGGTGCAAGCGTTATCCGGATTCACTGGGTTTAAAGGGTGCGTAGGCGGATAGGTAAGTCCGTGGTGAAATCCTGCAGCTTAACTGCAGAACTGCCATGGATACTATCTATCTTGAATGTCGTGGAGGTTAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGAGATGATATAGAACACCCATTGCGAAGGCAGCTAACTACGCGATAATTGACGCTGATGCACGAAAGCGTGGGGATCAAACAGG +>URS0001C413C7 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACGGACGAGAAGCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCAATAGTGAAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCCGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTGGGGAAGAACAAATGTGTAAGTAACTGTGCACATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS00023022DC rRNA from 1 species +TGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTATGGTTGTAAAGCACTTTAAGCGAGGAGGAGGCTACTTTAGTTAATACCTAGAGATAGTGGACGTTACTCGCAGAATAAGCACCGGCTACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCAAGCGTTAATCGGATTTACTGGGCGTAAAGCGCGCGTAGGCGGCTAATTAAGTCAAATGTGAAATCCCCGAGCTTAACTTGGGAATTGCATTCGATACTGGTTAGCTAGAGTGTGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGATGGCGAAGGCAGCCATCTGGCCTAACACTGACGCTGAGGTGCGAAAGCATGGGGAGCAAACAGG +>URS00003F74AF piRNA from 1 species +TCTGACCTTCACACCTACACCGT +>URS000219B0C7 rRNA from 1 species +TGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCTAAAGAGTAACGGAGGAGCACGAAGGTTGGCTAATCCTGGTCGGACATCAGGAGGTTAGTGCAATGGCATAAGCCAGCTTGACTGCGAGCGTGACGGCGCGAGCAGGTGCGAAAGCAGGTCATAGTGATCCGGTGGTTCTGAATGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATACCGCCCAAGAGTTCATATCGACGGCGGTGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGTAGGTCCCAAGGGTATGGCTGTTCGCCATTTAAAGTGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCTGCCGTGGGCGCTGGAGAACTGAGGGGGGCTGCTCCTAGTACGAGAGGACCGGAGTAGACGCATCACTGGTGTTCGGGTTGTCATGCCAATGGCACTGCCCGGTAGCTAAATGCGGAAGAGATAAGTGCTGAAAGCATCTAAGCACGAAACTTGCCCCGAGATGAGTTCT +>URS0000670AD8 snoRNA from 2 species +CCTGCTCCTGGAAGTGTTGCTGGTGTGGCTGCTGTGCCACATGTTCGCCAGTAGGTGGCAGATAGGAGAGAGGCTGTGTTTATGCTCAGTGTTCTGAACTGTGAACTGTGAATGATTCGTAGCCTAACAAT +>URS0000C73CE8 ncRNA from 1 species +GTGTCCGAGGAGCGTTGCAAGGCCGGTCGATTCAGGCGACCGCCCCAGGCTCGGACCCCTTCCCACAGGCAACGGCGCTCACCCGTC +>URS00002A852C rRNA from 1 species +AGGACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGGAAAGGCCCTTCGGGGTACTCGAGCGGCGAACGGGTGAGTAACACGTGAGCAACCTGCCCTTAGCTCCGGGATAGCTCCGGGAAACCGGAATTAATACCGGATATGACCTAGGCCGACATCGGCTGTGGGTGGAAAGTTTTTCGGCTGGGGATGGACTCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGGGGGATGAAGGCCTTCGGGTTCGTAAACCCCTTTCAGCAGGGACGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCGCCGGCTAACTACGTGCCAGCAGCCGC +>URS0002550A56 misc_RNA from 1 species +TCCGGTTTAGCACCGGCAGTCTCCCTAGAGTTCCCGGCTTTACCCGCTGGCAACTAAGGACAAGGGTTGCGCTCGTTGCGCCACTTAAGGCAACACCTCACGGCACGAGCTGACGACAGCCATGCACCACCTGTGCAGGCTCCGTAGAGCGCCGGCTTTCACCGGCTTTTCCCACCATGTCAAACCCAGGTAAGGTTCTTCGCGTTGCGTCGAATTAAACCACATGCTCCGCTGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTTAGCCTTGCGGCCGTACTCCCCACGCCGTAAACGATGGGCACTTATCGCGTTAGCTACGGCACGGAAGGGGTCAATACCTCCCACACCTAGTGCCCAACGTTTATAGCGTGGACTAC +>URS00023AAB80 lncRNA from 1 species +TTTTTTTTTTTTTTTTTGCAGCGCCCCGTGGTGCACCTATTCCTGCTCCAGGTATAGATATATTCATAAATCCTTTGAAAATATAAACCATCAATACAAACTGAATTCTATTTGCTTATTAGTTTATTTATTCGTTTGACAGGTCCAGTCTCTCTAGCACCCAAACTCTCCCCTGGAGCTTCACCATCTTTAAGCCCCCAAAGTCCCATTGTGCCGGAACCGACACCATCTGCCGAGGTGCCTGATTCCGGCACCACACCGGCTCTAACTCCACCATCGTCCACAGCAGGTTCGGGAGCCCCGACGGCCGCAACGGGGAGCCGCCCTGTTCTCACCCCATCAGCTGCCAACCCCGCTTACAGTTTCTCACCATTCCTTTTGGTGTTCACATTGGGATTTGTGATTTTCAAGTACTAATTATATAATATGTATTGATTGATTTGTTTGGCGAGCGGTATTCTTTTAGTGGCTTGAACTGAAAACCATTGTTTTGCCTTTTAAGAGCTAATATTGGGTGACTTTACATTTTATATAAAATATACATATTAGTGTAATTTTTATTTATTGAGTAATAATTTTTTTTTATTTCTGCAATGATTATTTTTTAGGGTAAACTACACATATAGTCACTTTTGTTTACTTTAGGTTACATTTTGGTTACTTATGTTTAAAATATTACGTTTTAGTCACTTACGTTATCGTGTTGTAACATTTTAATCACTGAGCCGTTAATTTCCGTTAACGGTGTGACGGTAAGCTGACGTGGCACGTTAAATCATCATTTCAAACAAAAATTTTAGGTTAAATTATACAACTGATCCCCATATTTTTTTTGGGCAATTTAATTTTTTTCTTTTATATTCTTTAAACCTTACTCTCTCTTTTTCTCTTTATTTTCCATTATCTTCTGTTTCTCCTTCTATTTTCCTACCTTTTCCATGTCTTTTAACATATTAAGAAGTCGAATTGGCAGTGAAGAAAGAAGTAGGAAGCCGAAAGCCATCATTGCCTATAATCAAAACCCATAAACCCGTACCATGATTCTTTCTTCACTGCCAATTTGACTTCCTGATATGTTAAAAGAAATGGAGAAGGTAGGAAAACAGAGGGGGAAGCAGAAGAAAATGGAAAATAAAGAAAAAAAGAAAGTTAAAAGAACATAAAAGAAAAACTTAAATTGCTCAAAATGACAAAAATATGGGGACCAATTGTATAATTTAACCTAAAATTTTTGTTTGAGATGATAATTTAACGTGTCACGTCAGCTTACCGTTACAATGTCAATGGCAATTAATGGCTCAATGACTAAAATGTTACAACATGAAAACGTAAGTGACAAAAATGTAACATTTCAAACATAAGTGACTAAAATGTAACCTGAGATAAACAAAAGTGACCATAGATATAGTTTACCCTATTTTTTATTGGTTAATTTGATGTGAAAAATGGGAAAAGATCATAAATTATTGGTACATTACTGATCTTCTATTATTAGCAAATTAAGTTGTTTATTAATTCCATTTGAGTAATTCTCAAGGAATTCAATATGAGATCCCAGAGGTTTTTTTTTTATCATGTTATTTTTAAGTTTTTTAGAATCAAGATTAAATAGATAGAATGCATAAATTTAAGGGTTAAATTTGTTGAATTTTTAGAATTAGGACCAATTTGATAGAATTTGTAAACATTGTAGGGTTAAATTTGTTGATTTTTTTAGAATTAAGACCAAATTGATAGAATCTGTAATTATTGTAGAGCTAAATTTGTTATTATGTAAATAAAATAGATCACGTCAGCATCCAAATAATAATTTAACAAAGGAGTGATCAAAATATTAAATGTCAATAATGTTAATGACTAAATCTGAAATTTTTGGAGATGGGTGACCAAAACATAAATATGCTAATAGTTGGGTGATTGCGAGTGTGGTTTACCCTAAGATTAACAGTAATAAGAGGATCAGATTGTGATAAATTAAAGTATAGAGACTAAATATCCAAATTGAGTATACAATAAGGATGTAACCGCAATTTAACCTAATTAACTAAAATGATTTATTAGGCCCCTCACTAACGGCCATTCCCGCCATATTCATTTCCAATTTACTTAAATACCCTCTCCCTAACAGATTTTTAACTACCATAATCAACCGTCTCTCACTTCCTCTCACCGCCATGGCAGCGAACATCTTCATATTGCTCCTCCTTGGTGTGGCGGCGCAGCCACTTCCACCAGCACCCCAGCAACCAGGCTGCGTGGAGGAGCTGGTGGCGTTTTCGCCTTGCCTGCCCTTTGTATCAGACCCACCAAACAACGCCACAGACTCAGTTGCTCCACAGTGCTGCGACGTCTTCAATTCTGCTTTCGAATCCGGCGACGGTTACTGTTTCTGTTACATCCTCCGGCAGCCGCGGATCTTTGGGTTTCCGTTGAACAGAGAAAGGGTTGCTTCACTGTCTTCCTTTTGCATGGCCAAGAACGGCGTTGCTTCTCTAGACTCGCTCTGCTCTTCAGGTTTTTCATCTTTTCTTAAACCCAATTGTTTAATTCACGGATTTCCGGATTAAGAATTTCATCAGGTTCAAGGCCATTTTAATCTTTTGATTAAAAGAAAAAATAGTTATTTAACGCTTTGATTGATGTAATTATGCAATTCTTAATTAGTATTATGCATTAGGTGCACCAGCGCTGCCGCCATTGCCAAGCACCACAGATTCAGGGATATTGAAACCATTCAATTCTCGTAAGTAAAGTCCGAATATCTTTTCTTTTTTATTTTTTCTCCTTTCGGAACCGAATCGGCGGTCAAACCTTACTACCTTAGTAGTTCTCGATCAGACTAATTCAATGATCAGACTGGTTTTAATTAAATAAATCATTTAAAAATTTATAAAATTTTTGAAAAGTAAAATATATTAAAAAAGTATAAAACTTGGTTCAACCGGTTTGCAGGTCAGTCAGTTCTTTCCCTTACTCTAGACTAGTGTACCAGCTGGTTCCCGTCCAACCGGCCAACCTTGCATTTTGTTCTTCCATGGCTGTAATAAAAGATTACCTAAAAGGAAATGTTCATTTGCAGCGTTCTTGCTTGTAGATTGACCAAATATAAGCCTAAATTATTTGTTTTAAAGATAGACCGGATTTTAAAACTCGTAAAAGGCCGATACCAAAAGCATATCAAGGCAATGGCATTATCAGTGATCTGTTATTGGTGGTAGAATCCTTATGAAAACTATTCTACAGGTTTAGATAATGATTCAACAAGCTCACCCCCAGAATCTGCGGTCAAGTCGCTAACTCCGCCAAGTTCCTCAGCAGAAGAAGCTGTTTTTTCTTCTGCAACAAACCAGATTTACAAGCATATCACTTGGTTCCTACTTGGAATGGTGATTTTTCTGCTTAATCTACATTCATTCTTGGTCTGACAGTAGCTAAGATTTTCCCGATTTCATTCGATTATACTTACTGATACGATAAACACTTTGTAATCAGCAAAATGATATGATGGAAAGAGTTTTATTAGCAGAAAAACATCATCAAAAACAGATGGTAACAGTGTACGAAGATCTCTCCTCTTTTCGTTTGCTTTTACCACTATGCCGTCGTACTGTCTCTTGAAGTGAACAGGTAAGTTCATCACATTCGCTACTGTGAAAACAAAAGCATAAAAAAGCAAAAGAATCATTGTAGGATGCGTGTATTTCATTTCCACCCATCGGACCACTCAGCTTCATCCGTGAAAGGAATGAGATTTCCAATTTCCTTGGTATCTTCACCCCACATTTCAGCAATGCTGTTTTCATCATCGACCCGACAATCCTCCGGAGTTGAAACTTCTGCATCATCTTCATACTCTTGCCTTTCAGGCAGAGCACAACCCAGGTAAGAGTTATGATCGGCACAACGCCATATAAGCTGACTCCAGTAAGGGTCCTGCCATTCATTTATTATCAATGATTAAAAGCCTTTGGTTGTAGACATTAGATGATAATCACAAGTGAAGATTGGTACCTTGGAAATTATGTGAGGATTTCCAACAATAACAAGTAAAGCTATGGCGCGAGTAACCGCCACATTAAACCTTCTAGGATTGCTCAAAAACCCGAGACAGTGGGTTCTGTCGAACTCATTGTGTTTGATTGTTGATCGGACGGTAGATATAACGATAACTTTTCGTTCTTGGCCTTGAAATTGTTCGACGGTGCCAACCTTGACATCTGGTATGTCGAGATTCTCGAAGGCCTTCATTAGTTTAAGGACTTGCTGCCTATAGGGGGTTATCACCCCGATATCTTTCTCGTTCAGAATCCCACTTGCTGTCAAACTACTAACAATTTCTACAACCTTGCTGGCTTCAATCCGATTGAACCATGACGGATTACTTCCTTCCCTCTCATCACAACCTTGTATACCAAAGAAAAAAACAGGGTAGTCCTTATTAGGAAGAAACTTTACTGAGTTCAATAATGAACCTATGTCATCTTTGCAAGGGATCAATTCATCATTGTAGAAGAGAAGTGAAGGGAGATAGAGGATCTCCGGGTGACATCGATAGTTTCTAACCAGTTTTGTCACATAGTTTTCATTGCCATTAGAATAAAACTCGTGTTCAAACAACCTTTCTAAGTATGACTTCCCCAGTCCAAAATTCTCGGCTTCTTTGGAGTATATAACTGGACCTAACTGCTTTGGATCCCCAGCAAGAACAACAACAGTCTCTCTTCGGCAAAGGTTCGCTACAGGGATCATGCTTTCTGGCTCTGAAGCTTGACCTGACTCATCCAAGAAAATATGAGAGAAATGGCCTTTACCAACACTTTCTGCATACAGAAGGGAGGAACTCATGTAAGTTGAGATGATGATTCTGTAGCAGGCGAGAACACTAAGTGGAGGACATTTGAAAACAAGCTCATCAAAGAAGCAAAACCGGAGAAAATCCGGGTTGACGTCGTAATATGGTCGTGTAGCTGCATTTAGTCTGAATATTTCATTCTCTTTAATCTCAACAGACTCCTCATTAAGGAGTCTCTCTAGTATGAAATCAGCCGCGCTATTTGAAGGTGCACACACAAGAATTCGAGAAGATTTTTGGGTTGAGTAGAGCTGGAGGATTGCCTCCACTATTGTCATGGTCTTCCCTGTACCTGGTGGCCCAAAAATCACATAAGGAGGTCCTCCTTTGCAGCCAAGGATCATCTCAATTGAACACATCTGCTCCTCGTTAAGTGTACAACATATGGGCACTAGTGGAGTGGTTTCAATCACCCTACTTTTGGGTGACCCAGATGGAAAAAGGAGACTTACATTTAGGCTTTTTGCTGCATCAATGGCCTGGTATTGCCTCCGCATATTGATTCGGTTATAGGTGAACTGCACATTATAAAGATTCTCATCTATGTGATTCGAGTGAAATTCTGGTGCAAACTTCAAGTACACTTCATCAGCTTCTACCCGATGGATACAACCCTGAAAATCACCACATTCACTTGTCAGAAAGACAGAAATTCTCCAAAAGAAATAGAGGCCATGGGACTGGAAAGACTAAAATGAACACAAGGGAAAGAGTATACAACAGAAGATACCGAGATAAATTTAAGCCAAAGAGGAAGTACTTCAATGATAAAAGGATAAAGCATATAGTATTTTTCGTGTAAAGCAGACCTCATAAACTCTGTCTGATCCACTAGCATCTTCACATGCAAGTTTAGCAAAAATATGATCTCCATGGACAAGGGAAGGCCTTTTTTCAGCGAGCCCAGGGACCTGAAGTGATAAATAATTCCCTCTCTTCCTCATGTTGATATTCTCCATGTTATAGGCCCTCATGTCCTCCTGAAGCCAAAAAAAGGGAATTTCTCAGTTTTGTAACACGAATATCAACCATCTAAGCTACCGAAGGTTAGAATTACCTCGAGTTGTAACTCTTCCAAGATTAAGAGATGTTTGAAGTAAGATACATAATTATCCCTTGTAAGACCTGCTTTAATAGCATCAGTAGTCTGCTTATTCTCAACCAGTTCTCTAATATCCTTCGGAATGTCATATGGGAGAAGCCTGTTTCGAACACCTCGACCCATTGCCCTTACCGGGCGTGGCCCTGTAACAAATTCATCCACTGGAAATTGCTTCTTTCTTTGAGCTCTGGAATATGGCTTCTTAGAAGCCAAAGATTGTGAGATCTTATCTTCAACCAAGAGAAAGACCATTCTTTCCAATCTTTCACCCTCCACATCAAAATGCACTATGGTAGTATGCAACCCAATTTCCTTTGCTTTGCAAGACAACCAAATGGTTAAAGTCTCTCCAGGCTGTATCATTCGGTCCTCTAAATCGAAAAGCTCGACAAACCCTTGGCTCATATCGTCTTCAGAATTTGCCGATGGGGGTTTCATCAAAGAAAGAACGAAAGAATCCTTAGGCGTTGATGCGTAAATTTTAGTCCACAACTCAACCGGTTCACTAGTGGTGTTTTCGATACTGATCAAATCAAATGCAGTTGCTCCCACGAATACAGATTGAGGATTCCCTTTCGAAAATGGGAATGGTGCAGAAATTATGAGAGGACCCCCCTCATGATTGTAATCACAAACAGATTTGTTGTTTGCATAATCGATGAAATTGATTTCGCGTTTGTCCCCGATGACCGAATACTCATCATCGGATTTGTCACCAACTGTTCCCATCACTAACTAGAAAGGGAAGAACTGCTTTGCAACAAAATCCACAAATATGCAATCATTAAAAAACCCTTATACAAGCAGGAACACACTTGTAAGATACAGTACACCACCATATATATATACCGATAAAATAACACTTTTAAACACGATTATGACGCAACAAAATACACGAAATTAACACGAATGCATAAATAAAGCAGGATGATAATCAAGTTTAAGCATTTTCAAATGTCATAAAAAAAAAGAGAAAAAGAAACCCAGCATTTCAATTTTTGCAATGCAACATAATACAATCATAGATAGATAGATAGTACAATACGTGAATCATAGGCAATAACGATCATTTAAAATTCATGATCAAAAGCAAAAACAAGGTCACAAAGCAGAAATTAACAAAACCCAGAAACAAGATAGTGACAATGTAGAAAAAATTAGAAAAAAATATTATTCAAATTCACTGTGCCAAAATTATAAACATTTAGAGTACGTTAGCATGAACTACTCTATGGGTAAAAAAAAAAAAAAGGAAAAAGAACTCACCTCAGTGAATCATAAACCAAAGCTAGAAACTACCATATGAATGAGAGGTTTTCCTTTTTTTTAAATGCAGAGAAATCAAATGAACCTTGAATTCAGTTTTTTAAAGTTTTTTAATTAAAATCAAATGAAAGAGACAATTTTTAAAGAAAATAAAAATAATATGACCCATCACAATCAGCAGATTTTGCCCTACAAGCTGCAAATAAAAAAAAAAACACATAGGTTCATATATTTCATTTTTTTGGCAAAAACAGGGAATTCATAAACAGACGAGGAAGTTAGTTTCACTTATCTATCACTTAAAATAAAGTATAAAAAATGTAAATTTTAATTAAAAATGGTATAAACAATTTAGATATTAAAGGTTTAATTTTTCTTTCAATCCCTCTAGTTTTTAGTTTTTTTTAATTTAATCCCTTTATTTATTGGATTTAAATTAACTTCAACAAAAATAAATTAAAGTTGTTATTAATTTAATTTTAATTTTTAAATCAAATAAGATACTAAAAAGAGAATGATTAAATTTTAAAAATATTGATAATGGGGAAATTGAGAGTACAATTAGAATTAGGGGTGAGAGTTCGATCGAATCAAGTGAAAAAATTTTGAGTTAATCAAGTTCACAAGTCCTATTTTATCATCTTAACTCAATTTAAATTTTTTCAAATATAGTCAAATTGAGTGAAATTATTCAAGTTAAATTAAAAAAATTAAACATGTTAAATAAAAATATTGTTACAGAATGACTAATTTTATGTTAGAGCATATAAATTTGAAACCATATATATTTGAAATAATTTTCAAAGCAAAATAATAATAATAATAAGATACTTGAGTATGATAAATTTGAATCATTAATTAGGTCTCTAAAATTATTATTTTATAAAATTTTTAGAATTTTTTAAAACTTTTATAATTTTTTAAAAAATATAAAATTTGAAATTTTTATAAATATTTTGAATTATTTTGTAATTTTTGTTGAGAGAAAAGCCAATTTATTTATTTCCAAAGTTGATAGGGACTAAAAGGTATTTACACCATTATTCGAATTGTGAAATTCAACTAACTTGAACTCAAAATTTGAATCGAGTTATTCGTGTTAATGCAAATCATTTAAAATTCAAAATTAACTCGATTCAATTAATTTGAAATTTAAAATTCTTTTCGATATTTTTAAATACCCTGATTCAAACTATTAAAAAGGAACTCATAAATATAGTTGAAAAAATTTACAGAGAAAATTTCTTCTTACATATTTTTATTTATTCTTACTAATAAATCCCATTGGCTTATATGACTCTTTTAGCCAATTGGCTTTCTCAGTGATAGAGACAGTTAATTTCCATTTTGATGAATGTATTAACTAATAATTAGAACTGACGTGGCTAAACCCTATTGGTTATTATGACACTCACCAATTGGCTTGTGAAGGGGTCCAAAAAATTTTCTATTTTTTAGTAATGAAATTAAAATAAAATGAGTTTTAAATTTTCTTTGATTTTTAATTGTATCTATTTTTTTGTAGGGGAAATTTATAGGAGTTTCTCTCCTAGTTTTTTTTAATAAATAAATTTTCTTTTTAATTTTGTTCTTTCATGAAATTGAAATCTTTTTAAAAACCGAATTCATCCAATCCGCTCCTATTCCTGTTGTGATCTTAACATAAATAGTGAGACAAATAACATGCCAAAGCTTCTCTACCTTTATGCAATAATCCTTTGTCTACCAAGTCCGGGGCGTAGTTAGGGGCTTCCCTCCTTTAAATTTTTTTAAATTTTAAATTAGTAAAGATAAAATTATATTTTAATCCTCTAAAATTGATAAAAATTTTTATTTAATTCTTTAAAAATTATAAAGATATAGGTTGTGAAATTATATTTTTACTATTATAAAAATTACAATTTAATTTTGACCCTCCCTAAAATAATTTTCTGGCTTCGTTCCTGACCAAGACCCTTATAAGATTCCAATTATCAAAAATTAAATTTCAGCCCCTCAAAAACTCGGTACTTTATTATTGGATTCAGATATGAAATATGCATATATTATTCTACTAGCTAAGATATATCAAAGCAAGTTAAAAAGGAATAAATCTTAAAAAATACATACCAGAATGAGGGAGCTATATAACCTTTCAGGGAGATCCTTGGAAGAGATGATCTTCAAATATACAAAAAAAAGGGTTGTTTTTTTCTTTTTCTTTTAACACCTGGGTAATTAGCATAGAAGTTTAATATATGTAAGTGATATTTTCGAGCGCGTGAAAATAATCAATTTATATAGAAAGCGAGAAACTTAATTTGGTATGTCCAGTAAGTAACCAAAAGTAATATAAATGAATAAATTTAGAATATTGGGATATTTTTATAATTAAAATATAAATTTAAATGATTTTAAATATGGGTTGTTGAAGCCTCCTCATTTTAAAATATTAATAAAATTATTTGTATATGTAATATATAACTGTAAAAATTATATTATATTGATAATAATGTTATTAATAATTTGTAAAAAAATTTGAATCTAATTATTTTAAACTTTAAATTTTTTTTATGTGAATCTATAATTTCAAAATAACAATTGAATAATCTATTTTATCTAATTTAATAAATAAAAATGTGTGACAATCCTTTTCTTTTACCAATAAATTAATAGAACTCAAATATAAAAAATATGCTACTAAGAGATTAGAAACATAATTCAAAGATCTTTTGCTCTCCATAAAAAATTTCCATCTCAAAATACATTGGTTAAGATGTGGCAGCCACAAATTGCTGTACTCTTTTGAAAGTTTAAATGTTAACTTCTTTATTTTTATTTTGAACAACTTTTATTTAAAAATAATAATTTTTCTATTTTTCAAATTTTAAAGTTCAAGTCTAACCATTAATATTAATATTTTTAAAATTCAAATTAATTATATCTTTTTTTTTAAATTATATGGCTATCAAGTAAGTTTTTTTTTATTTCATAATATCACACTAACAAATTTTAAAAAAAAAGTTAAACAATATTTAATAGTAGAATTTGAATTGTGAAATCTGAAAGGTAAAAAAACTAAATTCCTGAAAAAATACAAAGCTTAAATTTCAATTTTTTGAGAAGTATAGAGACTAATGGCATACTTTAATCAAATACAGTATCCCTACATCCCCAGATTTCGAACACCATCACAGCAACAACTTAGTTTTTAATATAAAAGGTTTGGCTGCTCAAGTCAAACATACTGTTTCCTGTCGTTAAAATGCAAATTAAAACATTCATTATGAAAGAGCAATCAAGGATAAAAATCTTTCAAGCTGAAGCAACTGCAGCATCCTTGACCGATTCACGCCAGGCATACTGCCTCGCTCCATCTTTGTCGACGATCTTGATAACAAAGTTTGGAGGTGCCACAACAAGTCGTGACCTTATCTCCATTATGCATTTATCTACCAAGTCGATGGCTTCTTCCACAGTCATGCCGCTGTGGTAGTGCCTGTCCATCATAGAGAGAGAAAAATAGGATCCGTACCCGAATGCTCCCTTATCAACTTTGTGAAGTGTAGCGATGTAGTCAATGTAGTAAAGTGAGGGGCCTGTCTCTTTGTCGTAGCCAGCAAGAAGAATGTTCACGAAGTATGGGTTCTATAAAAAACCAAATGCCATTGTTAATAATAATGATAGTAAGACGAACACGCGGGTGAGCAGAGACCTTAATTCAGCATTCTCATGTCAGACAGGACAAGAAATAAATAATAATAATAAACTCACTGCTAGAAGGAAAATATGCATAGGCAACCTAATAAGGAACTTCAAAACTAGATTTGCAAGATCCAAGAACCGCAAAGACCAATAAGTGCATTGAGCATCAAGCATGGCAGCAACAAAGATCAACAGAGATTTGAAAAGAAACTACATGTGCCAAGAGTCATCATCGGAACTCCAAAAAAAAAACACAGAGTATTGTAATTGTACTTTCAAAATTCCTTGGCCTTATTCTAATCTGATCTTCCTATCCAAAACAACAGCAATTAATCCATAAAGCTTGACAAGAAGTTCTATCAGAAACTACACCTTAAATTGAAATAAAATGTCATATGGTAATGGTCTCGTGCCATAAAAGCATCAACTCCTTTTTGAATCCTATAACAAGCTTACATATTTCATTATAAATTTCAAGCTCAAAAAATTTTAGTTCGAGCAAGCACAGCTGATTGTCTAGTGGAAATCTGAAGGAATATTTTCCTAGATTGTTTAATACAAGATGTAACCCATCTTTTCTCGGCTGAAAAGAATACCTTTACAGGAATCTCATTCAAAAACATATGGAATGGGAAACCACTAACTAGAAGACCCACAAACCAGACACAAAATCTCAGTGAAGGTACCACTAGTATTGCCAAGGGATGGACCTAGGCATTCCATCTTAGCGTCAAAAGATAAAAGAGCCTCAGATCTCTTCAGGCCAGGTGCATTTGATCAGGCACATGCTTGATGTGCATAAGCATACTTTTAAAGTTCCCTTTAATTTAACTTTTTTTAAAAAACATTTTCACTGGATATACATTTATTAGTAAGAAAAGGGAATTAATCAAGGGCTAAGATCCACTCCATTACTTTTTCATCCATTAATATCCAATACAATGATTATCACCATTCAAATGGTAGGACCCATCTATTAAATGTGAAAATCAACTTGTGAATGATGATTAAACGTGCATTGGATATTAATAGATGAAAAAGTAATTGAGTGGAGCCAAACCCATAAATCAAAACCTCTACTTCCCAGTATTGGAGAACTCGACAACAAATATGGGACCGTAAGGGAATCAAGCATATTGGCCAATAAAAATAAAAGAAAGCTTTGCATGTTTTATAGATAAATTGCATCAATCTTTAGAGTTTATTATCATAATTACATGCCTCAAGCTTTATATATACACAAAGACATAAAATTGCGCCTTTACTCAGTCAAGTGCTTTTTTTGTGCTTTGTGTCTTGGGCAATATAAGGGTTCTAACACTAGAGTGCCCCATGTGCTCTTGACAACACTGGGTAGAGATAGAAGGCCAAATAAAACCTTGAAGCCAAGATGAATAAGACAGTCTCTTAGTGAGGTAGCATCCAAACTTTGCACCAAAAAACAAATCCACAGGTTAACACTAAATGTTTAAGTAAGCAAAGGAAATGATAGCCCAGCAACTTCAAAACTTCCTGTGGTTTAGCTAAGCACTCAATAACTCAGCTGGCCCCAAAAGTGGTTACCATCACCCAGGAATCCCAAAAAAAAAATCGGCTTTAACATAACATATGCTTATCTTAGGTACTAGTTCAATGTCCTATGCTGTAAATCAAGCAAAGAAGTGATTGCAATCGGTTCTGGTAAAAGAGGGACCAAAGCACATATCAAGCTACACCAATCGTCGCACATTTCAGGGCATGGTAAAGCTATATCAAACCACTTTGCTTCCAATTCTAACTCATCTAACCCTTCCAGCATTGCTCTATACAAATAGTTTCCAAACCGGAAGCTTCTTCAATTATCGAATATCACCATAATGAGAAATCAAGCAGAGGTAAAACACAGATTATAGCTAATATTTCAATCCCAACGCACAATACATCATTTGAAACTAGTGCAAACCCTAACAAATATTGTATTCCACATAGATTCATTACTCTTCGCCGGTAAAATTTCCACAAGCAAGTAAATTGCAATTAAAGAGCATAACCCTTAATTGAAACTATATAATTGAAACTATATATATGACTAGTATCGATACCTTCCTTAATGCAGTGGCAAGCTCACCGCGAGTGAAATTGGCAGCGGCGGCAGTTGTCAAAGGAATACCATTGCGAAACTGATACAAAGCCACGTTTTTCTGTATATACTCCGTGAATTGCACTCTAGGGAAAAGGAAAAAAGGTTATATAGGAGGAAAAGAAAACAGGGAAGTATATACGTAGATTTATAGGGAGAGAAAGAAAAAGGGGGAAACCTGTCACCGGATTCACCGCTGGCGGCGATGAGTTTGTGAGAATCGAGGACCATGATCTTGTCTTCGTTGGATTTGTGGACGAGGATGCTGTGAACCGCCGATGTGTCCGCCGCCACTACGGCAAAGCCATTGCCTACGAAGCCGAACACGCACTCCATTTTCACTTTTTTTTTGAGGTTTGATTTTGAGGCTTTTGATTTTTTTTTTTTTAAAGCTAATATAAGTTAGTAGAACTGCCTTGAAGAAAAAGTTGTTCTTAGAGTGGGAAAATGGGGAATTTTGGGGAAAGATCGAGGGCTATTTTGTCATAGAAAGAACACTTGGTTTATTGTAACACGCGGTGCTATTTGCAAGGTCGGATTAAGACTCGATTTTAAAAAGATCCCAAGCCTAGCTCGACTAAGCGAATTCAAAATTTTTATATTCTTTTTTTAAAAAAATAATAAAATAATAAAATATATTTATATTTATATATTTTATAATTAAATTTAAATGAAGATATTTAAAAATCATTCTATTAACAATAAATATATTACTATAGTTTTCAACAAGTAGCATCTTATATTTCATCAATAATACATAAACTTAGGAAACTTATATCCTGATGTTGTCAACTTCAAGTATCAGTCATTTGTTCCAGCCTAGTTTTTAAACCTTCATAGACACAACCCCATAACTCCAAGCTCCAATGCTACGCTGCGTGAGAAGCCCATGATCCAAGTTCCATTTCTGTCTCGAAGCAAGCCTCCAATTACAGCCATCCATATTCAATTTGGTCCAGCAAATCTTTCTTCTCGCCACCCTCCAAAGTGTACTTGCCTAGATCCAGCATTAAAATCACCTGAACTGACAATAATGGAGTTCCTTTGTTCCCAGATTTTCCATACAATAATGTGCATTGTTAAACAATAGCCCATGCAGTCTTTAAATAAAACCAACTTTAATCTGAATTTTATCACTCTAAATGTAATCTATCTGATTATTTATTTATGTACTTCACTCACTCATATTTTATTTTAATAAAAGGGAAAACACAAGATTATGTTAAAGGAAAAAGTAAAGATTTCCCTCTTATTTTATTCCTTAAAACCAAAGGACTCCAAAACACACAACAAAACAAGGCTCTTCCTCTTTACATAGGCCACCCTTATTTTATTCCACCATTACATGCCTTACAAAACTACTACTTAGAACAAGCGTGCAAAGTCCAGGAACGGCGATAAGGGGTTATTACTTCCCCTCCTCTCATCAAATCCACGCCGACTCTGTCCAGACACGAAGTAAGATTCTTGCGGGTTGTTGTTGAATACCTCATCCACCAACCTTGACTCCACCCCAAACGCCAGCTCCTTGGCCTGGCGATCCCATTGTCTCACATTGTTGGTTTTCCCAGCCACGAAGATCCTCTTGTTGTCTTGGCCGTTGTAGAGTCCGAACCCGAGCAATCCTAGGTCCTCGTTTTGGGAGGCAACGAATGTGACTGGATGGCCTGCTGGGACTACAAATAGGTCACCGGTTGATAACTGGGCTCTCACTCTCTTGTATTGTCCACTTCTCCTTTCAACTTCTTGTTCTTCTTGTTCTTCTTCCTCTCGGGAGGACCAGTGTGAGCTCTGCCTAGAAAGGTGAGGGCAGACCATTTCGACGTGGCCGTTTCCTTCG +>URS0001836490 rRNA from 1 species +TGCGTAGGCGGATTTTTAAGTCAGTGGTGAAAGCCCGGAGCTCAACTTCGGAACTGCCATTGATACTATTAATCTTGAATACAGTTGAGGTGGGCGGAATGTGTAGTGTAGCGGTGAAATGCTTAGATATTACACAGAACACCGATTGCGAAGGCAGCTCGCTAAACTGTTATTGACGCTAAGGCACGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCC +>URS000010477A piRNA from 1 species +GAATATCCCTTTTGAGCTTGCTTG +>URS000188E1BA rRNA from 1 species +ATACGTAGGGTGCGAGCGTTGTCCGGAATTACTGGGCGTAAAGAGCTCGTAGGTGGTTTGTCGCGTCGTCTGTGAAATTCCGGGGCTTAACTCCGGGCGTGCAGGCGATACGGGCATAACTTGAGTACTGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCAGTAACTGACGCTGAGGAGCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGGTGGGCGCTAGGTGTAGGGGTCTTCCACGACTTCTGTGCCGTAGCTAACGCATTAAGCGCCCCGCCTGGGGAGTACGGCCGCAAGGCTGAAACTCAAATGAATTGGCGGGG +>URS00023A7F2B lncRNA from 1 species +CCGGCTATACTAGTTAGAAATTTTCCAACAGTATAGTCGCACGGATATACAAAATTGCTTTTCTCATCCAACGAAGTAGTTTTTCATTCTTATTTTTTTCGTAATGGGGCGGGTCAGGGAACTAATTCTGCAATGAAGGCTGGTATGGGCCAATGGCGGATTGAAGACCGGCATATTCTGAATATGGGCACCAATATACCGGTCGACTAGTTCTCCAAGCCAGTGGCAGTGGTTGCAGTTGATTTCCCCCATTATCACCTATTGGACAACCTTTGCCTTTTCTGTGTCTTGGTGTTTCACCATTTTGGCCAACCATAGTCTCCAGTACCTCGGCCATACTTAATTCCAGTCACCTTAAATGTAACCGAAAATACTTGCTCGAACTCATTCATTTTGGCCCGCCCTAGTTGACTCCCATTTATTTGTCTGCTATTCTAGATCTAGTCATTATCAATCACCATAATAAAGCTCCACTCTTGTAGTTTCAGTTTCACCTGTGCCTTTGATTATTTAGAACAATTTAGACTTTAATGATATGGTCACGGTTACAGCACAAAAGACAAATACCAAAAGCGGCCCTCGTGAAGAAGGGTATGGTCATTGGTCACCCTCAGTTTCACCTGTGCCTTCTCATCACTTTCATTCTCGCCTCCTCATCACTCTCTGTCGTCTGTGGTGCTCAGGAGCACCACCACCACAACGGCATTATCAGCCATGGAGCTCTCTCCGACACCGAAGCCCTCTACATCAAGCAGCGCCAGCTTCTCTACTACGGGGACGAGTTCGGCGACCGAGGCGACCTAGTCACGGTCGACCACCATCTCTGGTTTTTGAGAACCAGAGAATCAGAAATGCTTACATGGCTTTACAAGCTTGGAAGCAAGCCATTCTCTCCGACCCGCTTAATCTCACGGGTAATTGGGTCGGATCTAATGTCTGCAACTGTATTCAATTTAATCAACTGTAGGATTCATTTACAAGGCGAGTGGAAGGAGTCATCAATTTTGAATTAACAAGTTTCTACTTTAACGTATAACAACTATGTTCATATTTATTGGCTGGATAACTTGTTATATTCAGCCAATTACTTGGATAACGTATGCACTTAAGGTGCAAGTGCTTTGACATTTGTGCCACATAGAATTACATTCCTTTTTAAATATTTTATGATATAATTTTTTTTTTATTTTTAAAATTTTGAAATCATTTTTTGGTCCAATGTTACCCCTTATGACTTGAATTGGGTAATAGTCATTTATGTCATATTGCCTACTACCTATTGCATAGGTATATATATATATATATATTTTTTTTTTTTCATATTTTCGACAATGTGTCATAGTATTTTATGTACCTTTTTTTAATAGGTAACATATAATTTTATTTTGTCTATTTTTGTATCTGACTTATGGGTAGTCTTCTAATTTATGTTCCTAACTTATAGATAACACGATTTATCACTAAATATTTTTCGTTGCTAATAATAACACTATTTACTTGTATGTCATGTACATAATTTAATATGGGTGCTTGTCTGATCGATTGGTATAATATGTGGGTCTTTACTTTTTATTAATTAAATCGTATTTTATCCATATATTAGGAATATTATCAAAGAAAGAATTTAAATTTTAAATTATGAAATTCAATTACAAGGAAATAATGCATTAAATTTAGATTTTCAATGTGGTTTCCTTATTTGCCTCAAAGGGTAAAATTGACACAACAAAAAAAAGTAATAAATGTCAAAGGACTTACGTCTAAAACCAAAAACGCGAGCACTAAACCCAATGATAGCTAATCGTTTTGGGCCTAGATCTAAGAAGCCCTTTTATTTATTATCTAACATCGTTGCATGCCATTGATAGTGTGCCTATGGATGAGGAAGAGAAAGTTGTGCTTGACTGATGATTGACGGAAACTTTCGCAAGTAAATCCTCGATGCTACTGGTTGAAGGCCCTTTGATGTTAAAGTTAGCTTAAGGGGATGAGCGCAAGCTATCGACAATGCAAGGGCATAAGTGTCAAGTAGCAAGTCTTACCCTGTATCTAGGGTAAGGAGTTATATATATAGGGAATTCTGGGTTTTTTTGGGTGCTTAGTTTCGATGTGGGACTCGTGGGAGTGCCTTCCAAGGCTAACACGCGTCCCAGCAAATATCCTAGCGATGAACTCAAGAACATCCTGCAAGATGCCTTCTAAGGCGTAGAATTTGGCAAGGCATGCCGAACACACTTACCGGTCGTGGGCCGATCAGTGAACAATTGGCGAATGGAGCTAGAAGCGTCTGCCGTTTGTAGGATTAGACCTACCAGGATGGGTTACAGGGCCATGTTGTGCGTAGAATCGGTCGTGGGTGCCGAAAAGACCTACCGATTAGTACTACTGGGCTTGCCAGGGCGGGCCATGGAGCCTTCCTTCACGTGTCATGGCATGAGATGCGGGTCAGGTATGATACAAACAAACTTAAATTAATTAAACCCATCATGCAATGCATTCCCTTTCAATTTTTTGTGATAAACTCATAGATAATTGACTAAATAAACATCATCCAAAGTTTCAATAAAAATTACCAAGTTTTTTTTACAATTTCCGTAGTTTTTATTCAATTTTTATCGATATCGATAATATCCCGATATTTCCATCAAAATTTCCGTGTTTTTGAACTATCGATATTTTTAATACCATCAATATTTTATACCTTGGCTGTAGGCATTGATTATCAAACTAATTATCAGGGGACCAGTTGTTGGATGACACTTGGGCCAGATTAGAAGTGCATTAAATGTTTCCTTTAGTAATTCTTGGAAACCTGTGCAAGCTAGATTGCTTATAGAGGCGATCTGTGGTGGATTTTCCAGTTGTTTTTTATTTTCTTATGCTTGATTTAATCAAGAAGTGTGAAGGAGTTATTATCTAACATCGTTGCATGCCATTGACTATGGATGAGGAAGATAAAGTTGTGCTTGACTGATGATTGACGGAAACTTTCGCAAGTAATCCTCTCTAGCATTGCTCGTGCCGGAAGTGTAATTGAGGAGCTGTATGGGTTTGGTGTTGTGTGATGAGTATATTAAGGCGTATCAAGGGTATTTTTGGTAGTTAAATAGGATGTACTTAGTTAATTTTATATTTTAATTTAAATATTTGGGTGTACTTAGATCATAAGGTGTACTCAGTTAATTTTAGAATTCGTTTAACCACACTATATTATTATTAATAGTTTTCTATCAAAACAAACCCTTAAGGTCCTTAACTATTGGCTTGCAGCCACATATAATTACTGTGGTGACCTTCTCGAATCATCAATTTTTATTCATTTAAGTTGTTGATCAACTGCTGCAGGCAAGTTATTCTCCTGAACTCGAGTCCCATCAAGAGCGGGTCAAGGGGGTGAGTAATTGTCTCAATTCCACACGTAAACAAACAAAGGCTCACAAAACTCTCCAAAATATACGCATTAATTCTTTGCTTCTTTTCCCTTTATAAGAAGAAGAAAGCCGTCTAATTCATCATCACCAACACAAGCAAACTCAACATCAACAATGTCGACAAAGTCTAGCATTACCGTCCTTGCCTTTGCCTTTTGTTTCTTGTCCCTCCTCAGTTTCGCTTACTCCAACACCACCGACGACAAAATCTCTACCTCACCGGCCTGGTCTACTGTGACAACTGCCAATTGAAGTCTATGACCGAGATGAGTAAGATGATAAGATTTGAATATGAGATTTATGCATGCATGCATGCACATTGCCCATTGATCAGGTGCACATCTTTTTATCTTTTACTTTACTAATTCTTAATTAAGATTCAATTTAGGACCTATTTAAAGAGAAGAAAAATACGATTTAAAATATATCTTATAACCTAATAATCTCCTAATCAAAATATTAAACTTTTAAAATGTCACATATCAATTTAGCCCTTAATTATACTAAGCTTAAATTCCATGGTCCATACTAGTTTGATTTTTATTTTTTATTTTGGTGTGAAAATTTGGTATTTTCTTTAAAATAATGTGCTTGATAGCGTGAAAGTAGCAAATAAATAATGATGTGTTCAAATTGGATTTGAACACACATCACAACCCATATCATCATTAAGGCCCTAAAAATTAAATCATTATGTGCTTGGTTAATACGTTAAGTAGTTTATGAAGTGATTAAGATCAAAGAGGATCCATGACTTGTAATGGATCACTTGTTCATTTACTTAAAAATAAATAAATAAATAAATAAAAGCAAAGGACCCACTAGTGTAGTGGTTTGGAGTATTTACTCCCTTAGGTAAGGTCCTGGGTTCGAGTCCTAGCATCCGTGTTGTGTGTGTGAGTTTAATATGCTATCGCCCCTTTCAATAGGAAAGGACCTCAAAAAAAAAAAAAATAAATAAATAAATAAACTCGCAATACCGACTCCATTCGTAATTCCATCAATTACGCGACCAAAACTTCGTCGCTCAAAGTCTTGCGCGACGAAAAACAATTCGTAGCGCAAAGTCACTTCGCGCGACAAACTTTTGCGCGACGACAATACATCGTCGCTCAAAGTCTTGCGCGACCAAATTTTGCTCGACGAAAAAAATTCGTCGCGCAAAGTCACTTCGCGAGACAAACTTTTGCGCGACAACAATACATCGTCGCTCAAAGTGACTTTGCGCGACGAAACAATGAACTTCGTCGCGCAAAGTCCTTATAAAAATAAAATATATATATTTTAAAATCTTTGCATGACGTAATCCAAATATTTCGTCGCCTAAACTAATTTATTTTTGTTTTTTATTTTGTATGCATAACACTTAAGAAATTAAACAGTATATATATTTATTAAGTAGCTTTAAATTTATTATTTTAGATCAGATCGGATTTTTGTTAGAAAAATATATTATTGTTGTTCAGATTGGGTTTTTGTTAGAAAATATATATTTTAAATTGACGATCGAATTAGTTCATTGTATTCATATATGGTCAAGGAGTGTAGCTATAAAAAGCATCAAAATTGGAGTTAAAATAACCGTTAAATCGTGATTTTTCATTATAACCGTCGAAAAGTTTTGTCCCATTACTTGATCTCTGAATGTTTATTTTTTCTGATTTTTGGCGTATATGATCTCGAAGTATAAACAAACAAGTTTGACGGTTGGATCGTTGAAACTAGTTTTGGTGAATGCATATGCCATCAAAACAATATATTCACTAACAGTTAAGAGTTTATTTATACGTTCGTTAAATATAACATAAGATTTTGTGGTATCCACTAGTGTAAATATTTTAAATTGAAGATCAAATTCAGTCGTTGTATTCACATAGGGTCAAGGAGTGTAGCTGTAAAAAATCATCAAAATCGGAGTTAAAATAACCGTTAAATCGTGATTTTTCATTATAACCGTCGAAAAGTTTTGTCCCATTACTTGATCTCTGAATGTTTATTTTTTCCGATTTTTGGCGTATATGATCTCGAAGTATAAACAAACAAGTTTGACGATTGGATCATTGAAACTAGTTTTGGTGAATGCATATGCCATCAAAACAATATATTCACTAACAATTAAGAGGTTATTTATACGTTCGTTAGATATAACATAAGATTTTGTGGTATCCACTAGTGTAAATATTTTAAATTGAAGATCAAATTCAATCATTGTATTCATATATGGTCAAGGAGTGTAGCTGTAAAAAAAATCATCAAAATCGGAGTTAAAATAACCGTTAAATCGTAATTTTTCATTTATAACCATCGAAAAGTTTTGTCTCGTTACTAGATCTCTGAATGTTTGTTTTTTGCGATTTTTGGGGTATACGATCTTGAAGTATATACAAATAAGTCTGACGGTTGGATCGTTGAATGGTGTGTGTATATATATTTATTTATTAAGTAGCTTTAAATTTATTTATTTTGTACGTATAACACTTAAGAAATTGAATAGTATATATATTTATTAAGCAGCTTTAACCTTATTTATATTTTAAATTGTAAAATAAAATAATTTTATTTTTATTATTCCTAACAATTATTTTTATAAATATTGTGTTACGAACCAATTTTTCGTCTCTCAAAAGTTTGCGCAACCAACAGTTTGTCGCGCAAAACTCTAAAAATTTGGACGGGTACCAAAAATGGGACGCGGGATTTTTAAAAAAAATAAAAAAAATTTAGACTTTGTGCGACCAATATTTTTTGTCGCTCAAAACTTTGCGCGACCAATATATATTTTTCGTCTCTCAAAAATTTGGGCAGGTACCAAAAATGGGAAGCGGGAATTTTTTTAGACTTTGCGCGACTAGTATGTATTTTTCGTCGTGCAAAAATTTAAAAATTTTGGCAGGTACCAAAAATGGGACGCGGGGATTTTTATTTTTTTAAATAATTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAATTTAAAAATTTTGGCGGGTACCGAAAATGGGACGCGGGGATTTTTATTTTTTTAAATAATTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAATTTAAAAATTTTGGCGGGTACCGAAAATGGGACGCGGGGATTTTTATTTTTTTAAATAATTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAAATTAAAAATTTTGGCTGGTACCAAAAATGGGACGCGGGGATTTTTATTTTTTTAAATAATTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAATTTAAAAATTTTGGCGGGTACCAAAAATGGGACGCGGGGATTTTTATTTTTTTAAAATATTTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAATTTAAAAATTTTGGGGGGTACCAAAAATGGGACGCGGGGATTTTTATTTTTTTAAAATAATTTTTTTAGACTTTGCGCGACCAATATTCCTATATTCGTCGCGCAAAAATTTAAAAATTTTGGCGGGTACCAAAAATGGGACGCGGGGATTTTTATTTTTTTTAAATAATTTTTTTAGACTTTGCGCGACCAATATTCTTATATTCGTCGCGCAAAACTTTGCGCGACCAATATGTTTCGTCGGGCAAAAGTTTGCGCGATCAATATTCCAATATTTTTCGTCGCACAAACCTTTGCGCGACCAACAATATTTTTCGTCGCGCAAAGTGATACGGTTTTTAAAACCGAAATAACTCATCCACCATTTTCTCAATGCCTTTCTCTACTCTTACCTCTCCTTTCTCTTTCCCTCTCCCCAAATCCCACCATTTCTCTCACTTACTCCTCTCACTTAATCTCTCATCTCTCTCTCACTCACTCTCTCATCTCTCTCACTCACTCTCTCATCTCTCTATCACTATCTTCTCTAATTCTCTCACACTCACTTCTCCCTCTCATTCTCATTCACTCTCAATCTTGCCAAAAGGTATATTCTCTCCAAATTTTAAATTTTTTTCATTAATATGTGTTTTTGGAGTTAATTTTGAGTTTGTGTGGGTTTTAGGGTTGAGTAAAGGGGAGGGATTGGAGTTTGGGTTGGATTTGTGGTATAACAATTTTAGGGGAGATTATGCCTTCTTTTTTTTTTTTTTTGTGGTTATTTGACCATATTTATTTTTTTTGTAGGGAATCATCGAGACTTTGACGGCTAAAGTTGAGGATTAGGAAGCTATCAAAACATCTCCTCTGCCACTACCACCACAATACGCTTGTATTAGGGTTTTATTATTGTACTTTGTTAATTTATGTGAACATTTTGAATATTATATATATATATATATTTATTGGATAATTTAATCACTATTTTTCATATGTAATTTTATTTTGAATATGTCAATTTAAATTAAAGTAATTAAAAAAATCATACAATTAAATTAAATTTAAAAAGTAAAAATTAATATCAATTTAAATTAAAGTAATTTTAAAAAGAAATCATACAATTAAATTAAATTTAAAACGTAAAAATTTGAAAAAATTCATATAAATAAATTCATATTAAAGAAATAATAAAACAAAAAGTCAAAAATCTTGCGCGACAAAATATTTCGTAGCGCAAACTATTAAATTAGTTTATTTTAAATTAAAAACATTTAAAACAAAAAATATTTCGTCGCGCAAAACTCAAAAAATTTGGGCAGGTACCAAAAATTGGACGTGGGAATTTTTTAGTTTTTTAAAATTTTTTTTAGACTTTGCGCGACCAATGTTTTTCGTCGCGCAAAACTTTGAGCGACCAATATATTTCGTCGCGCAAATCTTTGCGCGACTAATGTATTTCGTCGTGCACAACTTTGCGCTACCAATATTTTTCGTCGTGCAAAGTCACTTTGCGCGACCAATCTTTTTCGTCGCGCAAAGTCGCTTTGTGCGACCAATATTTTTTCGTCGCGCAAAGTCACTTTGCGTGACCAATGAAAAAATTCGTCGCGCAAAGTCTTTCTTCACGATCTTTGCGCGACGGATTCTGCGCGACGAAGTTTCTGTCTCGCTGAAATTTGTGCGACTACAATGTATTTTGCGCGACGAAATTCTCTTCGTCGCGCAAAGTGTAAAATGTAGTAGTGGTACCAGTTGTGCTTATTTACTTTTTACCATGGCTCTCACAAATCAAGAGACCTCTGCTTAGCTTTTCTTTTTATTTTGGCCATTTGCTCCTCTCAAGCATCATCTCACTAAATTTATGATGAGACTGGATGGCTCAATTTGGGCCAGTTTTTTTTATAAGGATGCTGAGGAGAAGGAGAGGCGATTCATGATAGTCAAGGCCAACTTGGAGTTCATTAAGGCTTTTAACAAACACATGAGCCAGAACTACTTCACACTAAGCTTAAATGAATTTGCAGACCTAACCAATGAGGAGTTTCGGGAAATTCGTAATGGTTACACGAAACGATCCTCCAAATCGATCATGTCCAATTCCACGAAAGCTACATGTTTTAGATATTGAAATGTCACTGATGTGCCACCTTCAGTGGATTGGAGAGAAAAGGGTGCAGTGACACCTATCAAGGACCCAGGCAAATGTGGTAAGTATTAAACAAGTTGTTAAATGATGACGCATTCACTGTTTCACAACCTAACATGTTATTGAATGATGAGGCATGTTATTTCAATTTTATAGGGTGTTGTTGGGCATTCTCAGCAGTGGCAGCTACAAAAGGGGTTAACATGCAAGCTCAAAGCCAGAAACTTAATCTCACTATCAGAGCAAGAGCTTGTGGATTATGACACTACAGGTCAAGATCATGGCTGTGAAGGTGGTCTAATGGATGACGCTTTTCAATTCATCCACGCAACAAAGGCTGACAACTGAAGCTAATCACTTCTACCAGGGTTACAACACTCAGAAGGCTGCATCCCAAACAGTGTCCATAAATGGGTACGAGGATGTGCCTAAAAACAACCAAAATGCTATGTTGCAAGCCGTCGCTAACCAACCAATTTCTTTTGGAATTCAGACTATGATCTGAATTATAACTTGCCTTCTACAAATACTACTGAATGAGTAAAGGTTTCAGAGAGATTTTCAGAATGAGAGAGAGCTCGAGGAAAGAGCAAAAAGATGAATTCTATTCTTCTTCTCACGCACACACTGTGCACTAATAACAGTTGGAACAGGAAATTCCCAAATTACATCATTCAAATCTAGCCATCCATTCTTCTATTCTAAGATTACATCTTAGCTGTCCACTTGGATTGTAATCCAAGGGCTCACATTTAAATCTGTAAATTTGAACTAAATACAACATCATATCAGCAAAAACAGTTATATTTCAACACTCCCTTCTAAGTGTTTAGCTGAGATTACTCCAAGCTTTCTTCTCAGGTATTCAAACCAATCTCTTGCTAGAGCCTTAATAAAGATGTCTGCAGTCTGCTCTTCAATTTTGCAACATAGTAAATCAATCTCTCCATTTTGCAAAGCATCTCGGATGAAGTGAAACCTCCTGTTTATATGCCTTGTCTTATGATGATGCACATGATTCTTGGTTATGGCAATAGCAGAGGTATTATCACATAGAATTGTAGTAGCACCCACATGTTCTTCACCAATGTCTGAGAGAATGAAGCGCAACCAGATTGCTTGTGCAGTAGCTTCTGCTGCACTAACATACTCTACTTCTACTGTAGACAGAGCTACACTACTTTGCTTGACTGAAGCCTAGGAAAACATACCTGATCCAAGATTAAATGCAAATCCAGAGGTGCTTCTCATGTCATCCTCGCTCCCCGACCAATCACTGTCACAGTAGCCAATGAGCCTTGCTTCTTTGCCTTTCTCATATGCTATGCCACAATCAAATGTGCCTTGAATGTACCTCAATACCCTTTTGGCAGTTCCCATATGTTTTCTAGTAGGTCCATGCATAAATCTAGCCAAAAGACTTGCTGCAACCATGATGTCTGGCCTTGTTGCAGTCAAGTACAACAGATTTCCAACTATCTGCCTATAAACCCCTTCATCAGCTTGTTCACTTCCATCTTCCTTGGATAGCTTTTCATTCATTGCAAGAGGAGTAGCCACTGCTTTATAGTCCTTGAAGCCAAATTTGTCTAGCAATGTCTTAGCATATTTCTTCTGGTGCAAGAAAATGTAAGACTCAGTTTGTATCACTCCTAACCCCAAGAAATGGTGAAGCAAACCAAGATCAGTCATTTCATACTGCATCACCATTTCAGTTTTGAACTCCATGATCAAGGCTTTTGAGCTTCCAGTGTAGATAATATCATCTACATATAAAGAAACAATAATAATACTACTTTCTGCAGCCTTTACATATACTGTTGCCTCACTAGGACTTCTCTGGAAACTTGCCTTGATGAAGTAAGAATTGATTTCTTCATACCAAGCTCTTGGAGCTTGTTTAAGTCCATATAATGCCTTCTTGAGTCTATACACTCTATCCTCTTTGTTCTTAATCATAAAACCAGGAGGTTGATCCACATACACCTCTTCATGCAATACTCCATTCAAGAATGCAGACTTCACATCTAACTGAAATAGTTTCCACCCCTTTTGTGCAGGCAATGCCACCAATGTTCTAATGGTATCCAGCCTAGCAACAGGTGCAAATGTTTCATTGAAATCTATCCCTGGCTTTTGAGAATAGCCCTTTGCCACTAGCTGAGCCTTGTCTTTTTGAACTGTACCATCTAAATTCAGCTTGGTTTTATAAATCCATTTGACACCAATTACTGGTTTATCAGTTAGTCTATCAACCAACTCCCAAGTTTTGTTCTTCTCTATAATTTCTATCTCATTCTCCATTGCTTTCTGCCATGCTTCATCCTTAACAGCCTCTTCAAAGGTCTCAGGCTTGATAATACACAAGTTACATCTTGCATACACTTCTGCAATACTCTTGTATTTCAGAGGTGTGTGATCAACATCCAGTGATCCTGAGTCAGGATCAACATGCCCCTCTTCTGAAATCTCTTCTTGACTCAGGCTAGAATCATTAGATTCCTCTTCTCTCTCAGTGAGTGTCTCATTAAGAGGTATTGAGATATCACATTCCTTTTGTGCATTTCAATCCCAAATAGATGCCTCATTGAATATCACATCCCTGGAAATAATCATTTTTTTCAGATGCAATGTTATATAGTCTGAAGCCTTTTCACAGTTGCCATACCCTTCTGCCTTTGTTGATTTGGAACATGTGCATAGCACAAAGAACCAAACACTCTTAAATGCTTAACTCCTAGCTTTCTACCACTATAAGCTTCAAATGGAGTTTTCTTGTCTAAGGCCTTAGTTGGACATCTATTCTGGACATACACTGCAGTGTTTACTGCCTTAGCCCAAAATTCTAGAGGCATCTTCTTCTCAATCATCATGCATTTAGCCATCTCCATAATTGTTCTGTTCTTTTGTTCTGCTATTCCGTTTTGCTATGGTGAATATGTCACAGTTAGCTGCCTTTCCATTCCCATGTCTTCACAAAATTTGTTGAATTCATTGGAAGTATATTCGCCCCCCTGTCACATCTTATTTTCTTCAATTTATATCCACTTTGCAGCTCAACAGTGGCTTTAAATTTCTTAAAGACATTAAGGACTTTTGATTTGTATCTCAAGAAATAGATCCAACACATACGAGTACAATCGTCTATGAAGGTAAGAAAATATCTATTTCCAGCTTTGGTAATAGTCTGCATTGGTCCACATACATTTGTGTGTACCAACTCGAGTGGGATTCTGGCAATCCAAGTACCATTCCCTGATCTTGCAGCAGCTTCAAACTGGTGAAGTTTAAATGCCCCATTCTTCTATGCCAAACTAAAGTTGATGACTCTACATTTGCTCTTAATGCAACCTGTAAAGTTGTGTGAAGCTTCAAAGGAAAACTTATGTCGCCTTTCAGTTGCACCTTAGCAACTAGATTTGATAAAGAACAATCATCATAAATTTCAACCTTATTAGCTCCAAAAATCAGAACATATCCATGCTTCATCATTTGCCCTACACTGAGCAAATTCTTCTTGAGACCAGCAACTAACAGCACTCCTTTGACATACCTTCTTCCCATCTTAGTGTCAACAACAAGATTTAATTTCCTTTTCCAACAACATTAACCAATTGTCCTGTCCCCATTGCAACTTTTGCAATTATATTCCTATCAACATCAACTAATACATCTTCTCTCCCAGTCATATGGTTGCTAGATCCGCTATCCAAATACCATATTGTTCACCCGTTTTGTGTTTGTTCCTGTGATGGTAGGGCAAAATTCCCCATTGCCTTGAAAATCATTGACTGGTCAACAAGTCAACTTTCTTTAGTGTGCGAGCGTGCCACTACTAGCAATGAGAAATCCTAGAAGACTTTAAAAATAGATAACTTGCACCCCAAGTTACTGATTTCTAATCAAACAGTTGTGAATTTGGGTGAGGAATATCTCCCAAGTAAGTTCTTTTCTTGCCTCAGACTGGTGAGTACTTCATAATTTTTCACAGTATAAAACTGGTAGTTCTGGCCAGAATAAATGATGAGAAAATGAACTGTTTTGAGGTAGAATTGCCTTTTACAAAACTCAAAAGGGAAAAGCCAACTCTAGAAAGACAAAAAGAAGGCTGGACTTCCATTTCTGCATGGATAGATGCTTCTGATCCAGGCTGGACTAGACTATCAGCAACTTCAACTGTCAAGTTTCAGCTGTAAATCGATACCAACGTTCGAGTTTGGCAGAGCTTTAATCTATTTCAAGCCCTGGAAGGCTTTTTGAACGGACAGAATTACGGCCTATTCAGTCTGAAGGGTGCAGAAGTGGCTGGACTCAAGGATTATTGAGCTGGAACTGCATTGTGATACTTGTTCTACTTGATCAGGGTTCTCCATAAATTTGTTGAGGTTTTCATTTTTGTGAAAACCCAAGCTCTGCTTGTTTTGGCTTTTGCTGAACCAAATTTGTAACAAGAGAAATCTCATTTTAAATGACTTTTCTCTAAGTCTGAAATTGATTTGTAGTTGGCTTCTTTCTTCTTGAAATTGATTTGTAGTTGGCTTCTTTCTTCTGGCTCAATGAGCTTTTGGTTGCTTCAGTTTGTTTGAAGGTTCTTTGAGATCAAGTGATCATTTTGAGTTTTTGTCTTTTGACTGATTTTTTGGTTGTTTGATTGATTGTCTGATCTTTTGCTCTGTTCACCCTCTCCTATATTTATAAGAGATGCTTTGTAGTGGTGCTTCTAATTCTTTTAATAATGGGCGGAAAAATTTCTCAAAAGATCTTTCATTTTTAAATGCAAAGAAAAAGGGTTTTTATCAATTCTGGCAGATAAGCTTTCTATAGTCAGTTCCTAAGGCAGTCACTTCCCTGTATTTCTTGAAAAAGAAACCTAACCCTTCTTCCAATTTAACTGCTCTTTGTAAGAGTTCAAACTGTGATGGTTTAGTTTTGATCTTCCAGATGAACAACTCCCTGCTTCCCACTTATCTTTTTAGAAAATATGGCCTGCTTATCCCTTGGAAATGATATCTAACGAATTTTTTTGGATATAGAAAAGGATTCTGATCTTTTAGCCCCAAAGTTTCAGGGAAGTCTCTCTGCTAATGACCTGCTTTCATTAATTACCAATCTACTCTCTTGTGACAGTTGAAATTGTTGACTTTTTAAAGTCAGGTATTCACGTGGGCTCTGAGAATAGACTTTCCAAAAATCAGCTGATCTTATACTCCGTGTTTTGAGATAAATGGTGAGTACTTAGATGCTGGGCCCAATCCAATTCTTTTTTATCTACTTTAGTGGTCAATTGCCACTTAATTTGGCCTTCTTTTTTTTTTTTTACAACTTTGCCATTTCGTAAAAGACGTGGGCCTTTCTTCTTTTTTAATTATGCCAAGCCCAGTTTGAGTTGAGCTATGGGCTGATTTCTTTCTTTTCTTCCTTTTCGAAGCCCAAGTTTATTGTCGTGGTTTCGATAGATCACGGGCTGGGCTTTTTTGAATTTTGGGCCCTCGATTCCTGTTTATTTTGCAAAGCCCAGACTGCTTGGGCCCTGTGGCTTTATTCTGGGCTCTATAGTGTTGGGCTAGGTGCACAGGATTTTGGCCCCAACACATACATCATCACATCCTTTTACACTAGCAGAACCTTTATTACTAGCATAAAACATGGTTGGTGTGGATTCGGTCTGAGTAGCATAGTTGAGCTGTTGTGCTGGTTTCTTGCTATAGCAATCTTTTGCAATATGACCAAATTTGTCACAGTTGTAACATTTTGGTTTTCCCTTAAACCGAAAATCACCAAAATGTAGTTCGCCACAATGTTTGCAGGGGTTTCTGGCTCCATCAGTTGATATATTATCCCACTTTTTGCCTTTTGTCCTCCAATTCCTTTGATCCCTAAAACCACTTTGACTTCCACTGTAATTTTTTGATTGGGATTCACACAAAGACTAGCAAATGCTTTCTCAGTCTTATCTCCAAAGTGCCTATCTAGCCATAATTCAAAACTCTTCAAAGAGGTTACCACTTCTTGTACCTCAATTTCATCCAAATCCTTAGAATGCTCAATAACAGAACAGATTGAATCATAAGCTGATGGCAAACTGATTAGTAATTTTTGAACAATCCTTGCTCTAGCTAAATCCTTTCCATAGCTCCTCATTTGGTTTATCAGATCAAACGGTTTGGTAAGATAAGCAGAAAGGGACTCATCATCTCTGATTCTTGTATATTCAAATTCTCTACATAGACCTTGCAATTTAACACTTCTAACCTGTTTATCACCATGGAATTCCTTCATCAAGATATCCCAAGCTCCCTCAAAGGTTTCTTCATGAGAGAATCGAGGGAAGATCTCATCAGACGCTGCTCCTTGAATAAGACCCAGAGCTTTAGCATTCTTCATGAGTAGCTCAGTGAGAGTCATCTTCCAAGCACCACTCGATTCTTCCTTTTCTTTCTTCTTTGCATCAGATTCTCCAGCTCCCTTCGAATTTGAGCACTCTATTCCCTTCTCAACCAATTCCCAAAGCCCATGAGATTTGAAAATGGTTTTCATTCTTATGCTCCAATTTTCGTAGTTATCACCGCCAAAGATCGGCACTCTCAGCTCACCACCTCCATACCCTGCCATGTTAGACACAAATCGCGAAACCACTTTTCCAAATTTCAGCTAGTTTTCTTCACAGATTTAATCGCCCAAAGTTAAACAATAGAACCTGGCTCTGAGGCCATGTTAGAATTCAAACTATGATCTGAATTATAACTTGCATTCTACAAATGCTACTGAATGAGTAAAGGTTTCAGAGAGATTTTTAGAATGAGAGAGAGCTTGAGGAAGGAGCAAAAAGATGAATTCTATTCTTCTTCTCTCGCACACACTCTGCACTAATAACAGCTGGAACAGGAAATTCCCAAATTATATCATCCAAATCTAGCCATCCATTCTTCTATTCTAAGATTACATCTTAGCTGTCCACTTGGACTGTAATCCAAGCGCTCACATTTAAATCTGTAAATTTAAACTAAATACAACATCATATCAGCTAAAACACTTATATTTCAACATTTCGGTTGCCATTGACGCAAGTGGCTGTACATTCCAGTTTTATTCAAGTGGTGTGTTCACTGTGGTATAAACTTAGATCATGGTGTTACCGCAGTTGGATACGGGACTAGGACTAGTAGTGATGGGACTAAATACTGGCTGGTGAAGAATTTTTAGGGCACATGGTTGGGGGAGGATGGATATGTGACGATGCAAAGGGGCATTCCTGCCAAGGAAGGACTCTGTGGCATTGCTATGGAAGCTTCTTATCCAACCGCATGATTAATTAAAATGCATATATGTCATAATATAGTGTGGTGTATAAAATATGTATAATTGAATAATATAGAAAGACGCTAGCTATGAGCTGCTATCCTTCCACTTTGAAATCCATGCCTCAAAACATAGAAACAATTAACCCATGACGTGGATTTGCTCTTAAAATCTCACTCAATGAATTAGCAGCTATAGCTATGAGGTTGACATGTTTTCATTACCATTGCAAGGTTAAATCAAGTTAGATTAAGGGTGCATATTTTTGCTCACCATCATTCTTAATATTTGACATGTGTCTATGGGTATAACCATATAGTTCTATAAATATATAACTATGATTATGTCAATGAACACGTGTCAAGTGTTAAAATGGGTAGTGAGAGTACACATTTGGTTAAAGTGGTGAGTAAATATATTCCCTTAGAGTAATCACATGATCATGTCACTGATCCTACAAGGTAAAACTGTGAAACGACGTCATTACACTTGTTCGGAGGTGGCATGGATTGGAAACACGTAATTAACCATATATATAACATCAATTTACAACTTAATTATACTTATTCTTAAAGCCATTTCTGATCGGACATTTTTGGAGAAATTAATTTCTCAGGCAAGTAAATGGCAGCAGAAGAGGACCGGAAAATTTAGGTGCCAGTAGAAGAGAAAAACTCTCTCGCACGTACCTGGTTTATGGAAGTTTGCTGTAACAGGAGAGCTAGATAAAACTTAATTTGAAAAATTCTAGGATACGTAACTAGAGCTTACAAGGTGGTGTTGTTGACTGGCTACAACTTCAAATACAAACCGTTGAGCTAGCTTGCTGTGCGCAGTATATAAAGATTATTTAGGACTAGCTAGGCTCATAATTAATATATACATATATATATAATTACTTTATATTTTTAAAGAGGGGGAAGTACAATATTATGATGAAGAGATGAGTCTTTTTGCCAATTAAAATGCACCATTTATATATTCTGTATCCAGATTACCTTTTGCATGATCTTGCCATGAACATCCAAAAATGCACCAATCTAGTTAAAATTCAAAACAAATTTAAAGATTTTTACATCGTAGTTAAAGGAAATTCATTGTTCCTATAACTTGTGCTTCCTATACACACACAAATTCCATGAATCAATTGACAATGTGATATTAATATTACCATATAACATTTTCAACATTTTCATCTCGTCCTAGCATTCAAGTAAAGAAAAGAATACACGTATACTTGGATTGTTGATGTCTAACTTTGACTCAACGGATTAAGATCGTAAAAACGACACATTCACATCATGACACACACTCAAGTCAGGCTACGTCCATAATATACAATTAGTGAACTGAATTACATGAATCTACAAGTACGGGATATAAAAGCTACAAGCCCTACATGCTACAATATCTGTCCTATTTTTGGGTCAACTGTTCCTTATTCTCTTTGATAGTACAATCGAGTTTACATGTTAGGATCCTAACGGGGATATTAAATGCTGAAAAGGAAATAATCAATTCCCAATAAGCCCTTAAGATCGTCTAACCAAGATACAAGCCTCATATATATCTTAACAAATCTTTCTAGTTCTTAAAGGTTATAGCATCCATCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTATATATATATATATATATATATCCTCTCATATAAGTCCAAATTATCATGATATTTGTCTTTAAAGAATTAATTAACATACTTATCACCGCGCAGAAAATTAATTTATGTCTTCAAGATGTCTATAGAGCATTATTAAACTAATCCTAAAATAAATAAATATTTTTATTCTTAGTGCAATGTGGAAATATCTTTAAAGAATAGAATATTTCACCAATATAGAAGAGCGGCTATACTCAACAAATATAAATTTTCAATAGTCTAGCCGAGTGGCTGTACTCTATAAATATAAATTTTTTAACAGTACAACCGCATGGCTATACTCTTTAAATAGAAATTTCAAAATTATAGCCGTCCGGCTATACTAGTTAAATAGAATTTTTCCAACAGTATAGTCGCACGGATATACAAAATCGCTTTTCTCATTCAACGAAGTAGTTTTTCATTTTTATTTTTTCTGTAACGGGGCGGGTCAGGGAACCAGTTCCTTAATAAAGGCTGGTATGGGCCAATGGCGGATTGAAGACCGACATATTCTGAATATGGGCACCAATATACCGGTCGACTAGTTCTCCTAGCCAGTGGCAGTGGTTGCGGTTGATTTCCCCCATGATCACCTATTGGACAACCTTTGCCTTTTCTGTTCTTGGTGTTTCACCATTTTGGCCAACCATAGTCTCTAGTACCTCGGCCATACTTAATTCCAGTCACCTTAAATGTAACCCAAAATACTTGGTCGAACTCATTCATTTTTGCCCGCCTTAGGTGGCTTTTGGCAGCGCTTAATTTTTTTTAAAAGCAACTTTAATACAAATTTGGCATGAGTTGGGTGTTTGGTAAACCCAAAAAAACACGCTTATTTTAAAAACACCCATCATAAAAAGCAAAAACTCAACGTCAGGTATATGGAGCTTTCAAAAGCTGTTTAAAAAAAGAGCTGGTTTTCTTGTTAATGAAAGTTTCATTATCCCTATAGTACCCCTAAGTATTTCACAAAATGACAACGTTTGACCCTCTCACAAAATAGATCTCGCGACCTTCACACTTTCTGACCTCACTCTCAGACTGCTCTTCTCACTATTCTTCTTCTTCCTCCCCCTGCATCTCAAAACTCCATCTCAATCAAGGACTTTAATTGCCAACAACAATCAGCTACTTATCAGTGAGTTCATCTTCCCATTACATTTATGATTTTTGGGTTTATATATGTTATGAAATTAGGTTTTTCATTTGGTTCTATGCAATTGGGGGCTTTGTGTTCTTGAGGCTTTAAGGGGAAAATACGGGAGAGACAGAGAGAGAGTTTTGCTGCAAGTTTTGTACTGGGTTTGTCTCTCCTTGCTCTTTGACAAGGAGAGATTTCTCCCTAGCTTGGTTCAATTGGCCTTTGGGTCAGATACTTCTCTCTCTGTTTCTATTTCTCTGAAACATGTCTGTCCTGGATGCTTTTTTTCTATAGATTACACAACCATCATTGTTCATAGATTTACTCATTGTATAGTTTGGTACAGTTCCAAAATATCAAGAACAAAACCCGTTATGCTAATCTGGTTCTTTATATACATAAATATAAATATAAATAAATATATATATATATATATACAGTCCCCTTCTATTGAGAGATCTCTCAAATAATTTTATTTGAGGGACGCCCTTAGGGTACCCTACAATTTTCTTTCCAATGATCCAAACCATCTATTTTTTAGGTCTTCATTCATAAATCATCCTTACAAAAAATTAGATAAATCGGAAACCGTTTTGACATCCAATTGTATCTTACAAAATCAATGAACACGTTCCTTCAAGAAAGTACTAAAATTTCAATAACTCAAATGAGTGGTCAAATGATATCATATTCGAGTAATTTTTTTGTAGAGATGATCTTTGAATGAATATCTACAAAATAGACTGTTTGGATTAGTTAAATACAATTCGGAGTGGGGCCTATAAGGAGTGTCCCTCAAATACTTATTTGAGGGATCCCTCAATGGAAACTCTCTGTATATATATATATATATATATATATATATATATGATTGCAACCCAAGTCCCCAAGTCAGGTCCGTGTTGATTTTTCCATTGTCCTAACCTTGTTGTCTTCAAGCTCAAACATAATTCCTTTGGACTTTAGTTTTAGTTCTCTTTTAGTTAGAAGACAAGAAAAGAGTGAAGAAGCCATTAGCTCCAGATCTGGGGCTTCTGTTTTCTCAAGAATTTTTTTAAAAAAAAAAAAGATCCTATTATGTGAAACTGCTGTTCCATCTAAGTTGTCATCCATTATTGTGTTAGAAGATTTTTGGTAAACAAAGCTTTTATTTTTTAGTGGTCATAGTTTCAAGTTCTTCCTTATTATTATTTTTCAGTGTCGGTGGACTTTATTATTGTGTTAGAAGATTTTTGATTGGGTAATGGTTTGAAGTTCTTCCTTCTATTTATATTTTTTTGTGTTGGTGGGCTTTATCAAAAGTGATTGTAGCATGCTGGTCATTGTGGTGGGGAACTCATAAACTGACATATGGTTGAAATATAAAAATTTTGTAAATTGGTATGAAATTGCATTCTCAGTAAATTATGGGAATGCAATATCATCTTGCCTTAGAACATATGATAGAAACAAAACATTTTAACCACAACACAGACTTAAGAGATTCAATAAACTGTTCCCTAGTAAGCTGGAAATATTGGCTAAGACTTTATGTTATCTTTGTCTCCTCTTGGCAGAATAGGCTTGCTAGTTCCTCAAGTAATATATGTTAAAGATTAGGAAAATTATATAGTTCTTGTTCTTAGGTCAATTGTGAAGGTGATCAGTTTATTTTCATGTGTGGATTCTTTTCGTTCTTGGTTTTCTTTCATGAATCATTAGGAATACTCTATGCTTGGACTCTTTGTCCCTTGTTGAGAATGAGAAGTGGGTTTAAGGAAGTTTTGTTGGGAGCCATCATCATTTTTAAACATATAGCATATAGTGGATAATATAGATGAATATTCATACCTGTGGGAAAAGGAAAGTTTGTTATTTTTATGCTTTTAGTATAATGTATATCTTGGGACAATTATTTGCTATTATCTATTTCTCATACTCAACACATATTGCTTTAGTAAGGATGGGAAAGAATGTGAGAAGTTCATCAAAAGCTCCAGCGACATGGAATAACCATAATATATCCATATTCTGTGATTTGTGCATCAAGGAGATATGCCTAATTATCCATTCAACAAGCAAGTGAAGATAGTCATTGCTACAATGACACTTCATAATTATATAAGGAGGCATGCCCAACGTGATAGACATTTTGATGCTTCAAATGATATCTTAAGTGAAGAGATAGGTGAGGATGTTGATGTACAACAAGAAGTTCATAGTCTTAATGACAATGGAACACAAGAGATGGAAGCATTGAGAAATAGCATCGCTACAAGTTTCATGAATGCATCTAATTAGCTTCTTTTATATTGTAGTGATCCATTTTGGCATGTTAAAATTGAACAATTTTTGTATATTTGTTATGCTAACCCTCTCCGAAGCCCTCAAAACACATTGTTATTATTAATATAACAATATTTAGAACTACTTTTGTTACAATATTAATTTATAATTTATGGTAATATATGTGTGCTAATTGTAGATTACAAATTTTGATAAATTAAAAATGTGTAAATTAAAAAAGAAAACAAATTTATGTAGTGAAGTTTGTTTTCTTTTTTTTAAAGTAGAAAAAGAATGAAGAAAAAAAGAAACCGTTTCATCATCATGTCCTTTTCGTTCATTATACATACTAAAAGCACTTCTGATAAAAATTTACCGAACACTTCGACTACTCACAGCCTTTTTTCATATACAGTTTACCAAACGCCTAGCTGTTTTTTTTTCATAGCTGATTATTTTCGCAGCACAGCAGAAACAGTTTTTTTTTAAAGCACAACAATGCCAAACTAGCCCTTAGTTGACTCCCATTTATTTTTCTGCTATTCTAGATCTAGTCATTATCAATCACCATAATAAAGCTCCACTTCTTGTAGTTTCAGTTTCACCTGTGCCTTTGATTATTTAGAACAATTTAGACTTTAATGATATGGTCACGGTTACAGCACAAAAGACAAATACCAAAAGCGGCCCTCGTGAAGAAGGGTATGGTCATTGGTCACCCTCAGTTTCACTTGTGCCTTCTCATCACCTTCGCTCTCGCCTCCTCATCACTCTCTGTCGTCTGTGGTGCGCAGGAGCACCACCACCACAACAACATTATCAGCCATGGAGCTCTCTCCGACACCGAAGCCCTCTACATCAAGCAGCGCCAGCTCCTCTACTACGGGGACGAGTTCGGCGACCGAGACGAGCTAGTCACGGTCGACCCATCTCTGGTTTTCGAGAACCAGAGAATCAGAAATGCTTACATGGCTTTACAAGCTTGGAAGCAAGCCATTCTCTCCGACCCGCTTAATCTCACGGGTAATTGGGTCGGATCTAATGTCTGCAACTGTATTCAATTTAATCAACTGTAGGATTCATTTACAAGGCGAGTGGAAGGAGTCATCAATTTTGAATTAACAAGTTTCTACTGTAACGTATAACAACTATGTTCATATTTATTGGCTGGATAAGTTGTTATATTCAGC +>URS0000B8F910 rRNA from 1 species +GTGCCAGCCGCCGCGGTAATACGTAGGGGGCCAGCGTTGTCCGGAATCATTGGGCGTAAAGCGCGCGTAGGCGGCCAGACAAGTCCGGTGTGAAAGTCACAGGCTCAACCTGTGAATGCCGCTGGAAACTGTCTGGCTAGAGTCCGGAAGGGGCGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCTATGGCGAAGGCAGCTCGCTGGGACGGTACTGACGCTGAGGCGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCCTGTAGTCC +>URS0000C2AFAE pre_miRNA from 1 species +CAAGTACTCCCTCCGTCCAAAAATACTTGTCGCAGAAATGCATAAAAATGGATGTATCTAAAACTAAAATATGTCTAGATACATTCATTTTTTCCGACAAGTATTTCCGGACGGAGGGAGTACAAC +>URS00023A1339 lncRNA from 1 species +CAGCCTATAAACGGACGCAAGTTAATATCGGTACGGCCGACCATCGAATCACCGTCGAAACCAAATTCTACGGCGCAGGACCAGGTTTAAGAGAAGTAGTCATCATCGAACGAAACTCTTCAAAATTCACATTGCCATCACCATCGGCATCCACCGGCTTAATCATCGCCACACATCCATCAACCGAGCACTTAATTCCGAGCCTGTTCAACACCAAATTCAACTCCTCCGCCGAAATCAAGCCGTTCTTGTCCTGATCGTAGAGATCAAACGCCTCGCGGAGCTCGGCCTCGCCGGCGGCACCAGAGGAGGTCCGGC +>URS000118CADB rRNA from 1 species +CCTACGAGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGCGAGCCTGAACCAGCCAAGTAGCGTGAAGGATGACTGCCCTACGGGTTGTAAACTTCTTTTATAAAGGAATAAAGTGAGGCACGTGTGCCTTTTTGTATGTACTTTATGAATAAGGATCGGCTAAATCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGAGCGTAGATGGGGTGTTAAGTCAGTTGTGAAAGTTTGCGGCTCAACCGTAAAATTGCAATTGATACTGGCAGCCTTGAGTACAGTTGAGGTAGGCGGAATTCGTGGTGGAGCGGTGAAATGCTTAGATAACACGAAGAACGACGAGTGCGAAGGCAGCTTACTAAACTGCCACTGACATTGAGGCTCGAAAGTGTGGGTATCAAACAGGATTAGATACCCTTGTAGTA +>URS000006351C rRNA from 1 species +GCGGGGTAAAGGCCCACCAAGGCAACGATGGGTAGCCGGCCTGAGAGGGTGATCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATTTTGCGCAATGGACGAAAGTCTGACGCAGCAACACCGTGTGAGGGATGAAGCATTTCGGTGTGTAAACCTCTGTCGATGATGAATAATGTTTCGGGGAGTGGAAAGCCTCGGAATTGAAGGTAATCATGAAGGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGGGGGTGCAAGCGTTGTTCGGAATCACTGGGCGTAAAGGGAGCGTAGGCGGAACTACAAGACAGAGGTTAAATCTCCGGGCTCAACCTGGAACTTGCCTTTGTGACTGTGGTTCTTGAGTATGGTAGAGGTTGGCGGAATTTCCGGTGTAGCGGTGGAATGCGTAGAGATCGGAAAGAACACCAGAGGCGAAGGCGGCCAACTGGACCAATACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAACACTAGATGTCGGGAGGGGTTCCTTCCGGTGTCGTCGCTAACGCAGTAAGTGTTCCGCCTGGGG +>URS0000ECDE64 rRNA from 1 species +GGGCCCGCACAAGCAGCGGAGCATGTTGTTTAATTCGACGCGACGCGAAGAACCTTACCAAGGCTTGACATGCACGGGAATGTCGTAGAAATATGGCAGCCCTTCGGGGCTCGTGCACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGTCCCATGTTGCCAGCGTGAAAGACGGGGACTCATGGGATACTGCCGGTGACAAATCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGTCTTGGGCTACAAACGTGCTACATTGGCCGGTACAAAGGGCTGCAAACCTGCGAGGGTGAGCGAATCCCAAAAAGCCGGTCCCGGTTCGGATTGGAGGCTGAAACTCGCCTCCATGAAGGCGGAGTTGCTAGTAATCGCGGATCAGCAACGCCGCGGTGAATATGTTCCCGGGCCTT +>URS0000175B41 rRNA from 1 species +AGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTCTCAGTATAAGCAGTCAAATGGTGAAACTGCGAATGGCTCATTAAAGCAGTTATAGTTTATTTGATGGTTGCTGCTACATGGATAACTGTGGTAATTCTAGAGCTAATACATGCATCCAAGCCCGACTTTGCAGAAGGGTTGTGTTTATTAGATCCAGAACCAACCCAGGCTCCGCCTGGTCATGTGGTGATTCATGATAACTTGACGAATCGTGCGGCCTTGCCGACGATGCGTCATTCAAGTTTCTGACCTATCAGCTTCCGACGGTAGGGTATTGGCCTACCGTGGCAATGACGGGTAACGGAGAATTAGGGTTTGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCTAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACACAGGGAGGTAGTGACAAGAAATAACAATACAGGGCATCCATGTCTTGTAATTGGAATGAACAGAATTTAAATCTCTTTATGAGTATCAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCGGTTAAAAAGCTCGTAGTTGGATTTCTGTTGAGGATGACCGGTCCGCCCTCTGGGTGAGTATCTGGCTCAGCCTTGACATCTTTCTGAAGAACGTATCTGCACTTGACTGTGTGGTGCGGAATTTGGGACATTTACCTTGAGGAAATTAGAGTGTTTCAAGCAAGCGCACGCTTTGAATACATTAGCATGGAATAATAAGATAGGACCTCAGTTCTATTTTGTTGGTTTCTAGAGCTGTGGTAATGGTTGATAGGGATAGTTGGGGGCATTCGTATTTAACTGTCAGAGGTGAAATTCTTGGATTTGTTAAAGACGGACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTGATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCCTAGTCTTAACCATAAACCATGCCAACTAGAGATTGGAGGTCGTTACTTGCATGACTCTTTCAGCACCTTATGAGAAATCAAAGTCTTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTCCAGACATAGTAAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCTTAACCTGCTAAATAGTTACATGTAACCTCGGTTACATGGGCAACTTCTTAGAGGGACTTTGTGTGTCTAACGCAAGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTAGATGTCCTGGGCTGCACGCGCGCTACACTGATGCGCTCATCAAGTTTTCGATCTTGCCCGAAATGGCTGGGTAATCTTTTTAAAATGCATCGTGATGGGGATAGATCATTGCAATTATTGATCTTCAACGAGGAATTCCTCGTAAGCGCGAGTCATCAGCTCGTGCTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATTGAGTGATCCGGTGAATAATTCGGACTGACGCAGTGCTCAGCTTCCGGACGTTGTGTTGGAAAGTTTCATGAACCTTATCACTTAGAGGAAGGAGAAGTCGTAACAAGGTTTCC +>URS0001B743B1 rRNA from 1 species +CCTGGTTGATTCTGCCAGTAGTCATACGCTCGTCTCAAAGATTAAGCCATGCACGTCTAAGTATAAATACTTTACTTTGAAACTGCGAATGGCTCATTATATCAGTTACAGTTTATTTAATAGTCCCTTACTATTTGGATAACCGTAGTAATTCTAGAGCTAATACATGCGTCAATACCCTTCTGGGGTAGTATTTATTAGATTGAAACCAACCCCTTCGGGGTGATGTGGTGATTCATAATAAGCTTGCGGATCGCATGGCTTTGCCGGCGATGGATCATTCAAGTTTCTGCCCTATCAGCTTTGGACGGTAATGTATTGGATTACCGTGGCTTTAACGGGTAACGGGGGATTAGGGTTTGATTCCGGAGAGGGCGCCTGAGAGACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGTAAATTACCCAATCCTGACACAGGGAGGTAGTGACAAAAAATAACAATGGCGGGCCTTTCTAGGTCTGCCAATTGGAATGAGAACAATTTAAAAACCTTATCGAGGACCAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTGTGGTGGCGCCCGAGGTCCAATTGTTGGTACTATCGGGTGCTGCCATCCTTGGGTGGAATCTGTGTGGCATAGGTTGTCGTGCAGGGGATGCCCATCGTTTACTGTGAAAAAATCAGCGCGTTCAAAGCAGGCTTATGCCGTTGAATGTATTAGCATGGAATAATAAGATAGGACCTTGGTACTATTTTGTTGGTTTGCGCACCGAGGTAATGATTAATAGGGACAGTTGGGGGTATTCGTATTCCATTGTCAGAGGTGAAATTCTTGGATTTCTGGAAGACGAACTACTGCGAAAGCATTTACCAAGGATGTTTTCATTAATCAAGAACGAAAGTAAGGGGATCGAAGATGATTAGATACCATCGTAGTCTTTACCATAAACTATGCCGACAAGGGATTGGTGGGGTTTCGTTACGTCTCCATCAGCACCTTATGAGAAATCACAAGTTTTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACCAGTAGTGGAGCCTGCGGCTTAATTTGACACAACACGGGAAAACTTACCAGGTCCAGACATAGTGAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCGCTGCCTGCTAAATAGTCCAGTCAGTGAATTTCACTGGCGAGGACTTCTTAGAGGGACGTGCATTC +>URS0001EA0CFC rRNA from 1 species +ATAATAATCGGGCATAAGTATACCACCGAAGCTATGGACTTATTTTATAAGTGGTAGGGGAGCATTCTAGTTACGTTGAAGGTGCATGGCAATGTGTGCTGGAGTGGCTAGAAAAGAAAATGTAGGAATGAGTAACGATAATGCGGGCGAGAAACCCGCACACCGTAAGACTAAGGTTTCCTGAACAACGCTAATCGGTTCAGGGTTAGTCGGGTCCTAAGGCGCACCCGAATGGGGAAGTCGA +>URS0000169475 rRNA from 1 species +AACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGGAAAGTGGAGCAATCCACGAGTATAGTGGCGACCGGGTGAGTAACACGTGACTACCTGCCCTTGAGTGGGGGATAACCTTGGGAAACCGGGGCTAATACCGCATAAAATCGAAAGATCAAAGGAGCAATCCGCTTTTGGAGGGGGTCGCGGCTGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGAAGATCGGTATCCGGCCTGAGAGGGCGCACGGACACACTGGAACTGAAACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGCGCAATGGGGGAAACCCTGACGCAGCAACGCCGCGTGGAGGATGAAGCCCCTTGGGGTGTAAACTCCTTTCGACCGGGAAAATTATGATGGTACCGGTGGAAGAAGC +>URS00003DDD0E piRNA from 1 species +TNGGGCCTTAGTATCACTCTCAGTTACC +>URS0002242497 RNase_P_RNA from 1 species +GCAGTTGGACGGTCTGTCGCCGGCTCCTTTCGAGGGGCTGGAGGAAAGTCCGGGCAACGCAGAGCGTTCCACTTCTTAACGGAAGTTGTCGGCGACGGCAGGGTAACGCAGAAGAAAACAACCGCCGGTGCGACGTTGCGGGCCCCCGTTTCAAGTAATGTCCATCGGTAAGGGTGAGAAGGTGGGGTAAGAGCCCACCGGGCGACGCGGTGACGCGCCGTGCCGTGCGTCCTGGAAGTTGCAAGTTCATGTAAACCGGCGTCAGAGGGCTGCTCGTCCGAGCCGGAGGGTAGAACGCGTCAGATAAATGACAGACACCTCGCCTGCGCGGGGCACAGAACCTGGCTTACAGACCAACTGCCGTT +>URS0000AF82F7 rRNA from 1 species +TGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCACAGGTTTACCTGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGGAGGGAAACCGAGTCTTAACCGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACCTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAATTCATCTCCGGGGGTAGAGCACTGTTTCGGCTAGGGGGCCATCCCGGCTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCCCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAACCATGCACCGAAGCTGCGGCAGCGA +>URS00019A0A0A lncRNA from 1 species +GGGGGATGTAGGGATTCATCTTTGTCACATTTTCTCTCTAATTTAGCTGTCTAGGGAGCCTCCCTTGTTTTGCAGAAGTGGAAACATCCAGTTTAATTTCATCTTTTCTCAGACTGCAGTAGCTTGCTTCCTCAGAAGCCAGGGTCTCTCTCCATTTATTCTTAGTGTTTATCCCTTTAATTCTCCTACAGTTTCACAAGTGCTTCTGGTATATTTTGTAATTTTAGCTTATAATCACATTTTTCGAAGAGGCACCATCTGGTTCCTGACATGGCTTAAAATAACAATCTAACTAACACGAACCCTGCAGCAATGCTTTGCGCCCTTCCCAACCCAGTGTGAGAGTGTCCCCACCTATATTTCTTCACAAATGCTCCACTGTTAGGTTCCATCCCTTCCGATAGATCTCACAGAAAGCGGGGCCTTTTACCTCTTTCATCTCGAACCCAGTCGTTTCAGGCAGTCAAAATGGATGCGTTAAAAAAAAAAAAAAAAAACCTTGCAGCTAGGACAGCAGAGGATCTGCTGTGAACTGCTCAGTCAGAGACTTGGAGCTGGAGCTCACGTCTGTATTTCAGCTGCCCTCTGGTGCTTAGCACTGCAGCAGTACACGCCATCATCATGGCCCCAGTGCTTGGAGGTCCCTGCGACGGAGCAGCGGAAACCAAGCACAGCAAAAATTCCTTTGAAGACAGAAAAGTGGCCCAGTGCTGTGCAGCAGGGCTACGGTGCTGGAATCCAGCCCGGCCCAGTGCCGGCGTTGGCAGCGGCCTTCCCATTATATCAGGAAGGGCTGTATCCCGTCGCCACCATGCCCCAACCCCCCCGGCTCGCCTCAGCTGTCTGCGGGACGTGGAGCCAGGCAGAGGGTGCCCTGCAAGAAGCAGAGCTGTTGGTTTGAGGTGCGGAAAGCCGGCCAGTCTGGATGCGACTGCTGCTGCGTGGCGGACAGGAACTGACATACAGCTTCAGTGCTTCCCACCGCAAGGGCACTCCAGGATCCAGACTCTGGAGGAGAAGCTGTGGCTGTAGGATTGCTAATTGCAGCCGGTGCCAACGCTGCTGCCCGTTTTCAGGTGAGTGTGGTGGAGGGCACTGTAGAGACGCACGGCTATTCACAGAGCGTGCACTTCCAGCACCTGAACTGCTGGATCCGCTCTGACCGATGTACGGCAATTACATTTGGTGCTGCACTGCTATAATTTCACTGCACGTTAATAGCCACCTAGTGCAGAGGTAAAGGCCCTTCCCTCGCCCGGTGCAGAAGGAATGCCTGGATTTATTCAGCTGAGTAAAACGAGCTGTGATTTTCGGAGCAGATGGCAGAGGTTTTGTGTGTTGGAAAAGCGTTTGCCGGTGCAGTGCTGTTTCCCTGCACCCTGACGGGTGTGCGGGAGGCTCCTGGAAAAGTCCCATCCTCGGGTCCTGGCAGGGGGAGGGGAAGAGATGGGGATCATGTGCCCCATTTTGAGTGGCTCATCTGCTACCACCCAAACTCTGCTGCAGTCCCCCCCCCTCCCTTCAGCAGCTCGGCTGAGCACTGCAGGCGCTGTCAGATTTCTCTGGCAAAATTAGTGATCAAAACACCCCCCCCCCCCCACACACACACGCACACCTTCACTAAGGCTGGTGTTTTTAAGGTTGGGGGGGTGATGGGGCGCGGGTGGGAGCGCACGGCGAGGGTACGAGGAG +>URS0000B155C2 tRNA from 1 species +GGCTTCGTAGTTCAACTGGATAGAATGACGGATTTCGGCTCCGTTGGTTGCAGGTTCGAACCCTGCCGAGGTCACGA +>URS00025AB7F7 tRNA from 1 species +GCTGGTGTAGCTCAGTTGGTAGAGCAGCTGATTTGTAATCAGCAGGTCGCGGGTTCGACTCCTGTCACCAGCTCCA +>URS0000328ABF rRNA from 1 species +ACGCTGGCGGCAGGCTTAACACATGCAAGTCGAACGGTAACATAAAGAAGCTTGCTTCTTTGATGACGAGTGGCGGACGGGTGAGTAATGCTTGGGAATCTAGCTTATGGAGGGGGATAACTATGGGAAACTGTAGCTAATACCGCGTAGAATCGGGAGATGAAAGTGTGGGACCTTCGGGCCACATGCCATAGGATGAGCCCAAGTGGGATTAGGTAGTTGGTGAGGTAAAGGCTCACCAAGCCGACGATCTCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGGGCAACCCTGACGCAGCCATGCCGCGTGAATGATGAAGGCCTTCGGGTTGTAAAGTTCTTTCGGTAGCGAGGAAGGCATTTAGTTTAATAGACTAGGTGATTGACGTTAACTACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATAACTGGGCGTAAAGGGCACGCAGGCGGTGACTTAAGTGAGGTGTGAAAGCCCCGGGCTTAACCTGGGAATTGCATTTCATACTGGGTCGCTAGAGTACTTTAGGGAGGGGTAGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAATACCGAAGGCGAAGGCAGCCCCTTGGGAATGTACTGACGCTCATGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGTCGATTTGGGGGGTTGAGCTTTGAGCTTGGCCGCCCGTAGCTAACGTGATAAATCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAA +>URS00021F8B86 rRNA from 1 species +AGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTTGAGCGCTGAAGGTTGGTACTTGTACCAACTGGATGAGCAGCGAACGGGTGAGTAACGCGTGGGGAATCTGCCTTTGAGCGGGGGACAACATTTGGAAACGAATGCTAATACCGCATAAAAACTTTAAACACAAGTTTTAAGTTTGAAAGATGCAATTGCATCACTCAAAGATGATCCCGCGTTGTATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGATGATACATAGCCGACCTGAGAGGGTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGGTAGAGAAGAACGTTGGTGAGAGTGGAAAGCTCATCAAGTGACGGTAACTACCCAGAAAGGGACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTCCCGAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGTGGTTTATTAAGTCTGGTGTAAAAGGCAGTGGCTCAACCATTGTATGCATTGGAAACTGGTAGACTTGGGTGCAGGAGAGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCCTGTAACTGACACTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGATGTAGGGAGCTATAAGTTCTCTGTATCGCAGCTAACGCAATAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATACTCGTGCTATTCCTAGAGATAGGAAGTTCCTTCGGGACACGGGATACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATTGTTAGTTGCCATCATTAAGTTGGGCACTCTAACGAGACTGCCGGTGATAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGATGGTACAACGAGTCGCGAGACAGTGATGTTTAGCTAATCTCTTAAAACCATTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGAAGTCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGGGAGTTGGGAGTACCCGAAGTAGGTTGCCTAACCGCAAGGAGGGCGCTTCCTAAGGTAAGACCGATGACTGGGGTGAAGTCGTAACAAGGTAACC +>URS0002423514 lncRNA from 1 species +AGTGCTTAGGTCCTTTGACACCGTTGGCGGGAGACTTTTCGTCGTTTGGGGTGGGGATGAAAAACATCAGCGTGTTTATTCCTCAGGCAGCCCAGAAACCTTAGGTTTGCACCACCAGTAGCTTGGCAACGCGGTCACGGGTACACAGCACTGGCACAACATGACTGTGTGTGTGTGTGTGTGTGTGTGTGTGCTATGCTGTCCTATGCTCATGATGCTCTCATGGCCTTTCGCTACAACAGGTCCAAGGCCTTATCATTGCCGTCATGTACGAGAAATCCCGGGGAAGGCAGTCACGATGGGCGCCGTACTTGAACCTGATCCCGGACGACATGACCCACATGCCGCTGTACTGGAAGGTACGGTAATGTACGGGAAAGGTGGATCGTACCGTGGACACCGTGCCACTCGCCTCCCAAACTCTATGCGCCGTGGCGAGAGCTCATCTTCACGCACTCAGCGAGTTCTGGTCCCCCGCCCTTAAACCCCGTCTACGGACAGCATAGGGAGTTCAAGGAGCTGCGTGGTACGGCAGCGTACGACAAGATGATGGGCAAGGTGCAGTGTCCCGCCGACGCACCCACGCAGGTCGGTTAACACTTTGTATTGTATGGGGTTGTCATGTGCGTCGCATCACTGCTCTTTTGCGGATCGTGGTACGACACATCACTGCTTTCCCCCCTCCCCGTTGACCGGGCGATCTGCAATCCTCCGCTGTACTGTGCAGGTCCCCGTTCTGTGGAGTGAGGTGGTGGAGCCCTTCATCCAGGAGCACCCGGAATTAGAGCTGCCGGAGGGGAAGGCGGGGTATGACTTATACCGCTGGGCCACGTGCGCTGTGGCGTCGTACAGCTTTATCTTGGGTGATGACAAGTACCAGGTGGGCATTCCAGTCCTGTACGGCCGGGGGCTCGTGACTGCGGCTGCTGCAAATGATGTCGTACCATGAGCACCTTATCCAATCTAACTACGAAAGCCCCCTTCATTCTCTCCCCCCTCTTTTCCTCCCCCTCTCCCCCTCTCCCCCTCTCCCCATCTCTCTCCTTTCCTCCTCTCATTTCTTTCCCACATGCGTATGAAGCCCACCTCTAGGCGCCCTCCTGCTCACCCAGCACCCTCCTCCCCCTCCCCCTCCGTCCCCGCGCTGGCGGCCGCCCCAGGCGATGGTCCCCGTCTGGGACCTGCTCAACCACATCACAGGTCGGGTGAACGTCCGACTGCACCACTGCGCCAAGAGGTAAAGAAGAAGGGAGGAAAGGCGATATTCGGGGTGGCTGCACCCCGTAGGGCCCTCCTGGAGTGGGTGGACGGGTGGCGTCGCGGGCCCCAGGGGAGTGAGTACGACCGCTCGCTGCACGGGGCGAGGCCATGCAAGCCAATCGCCAAGCGTCCTTGCTAGGTTGGGGATAACCCAACCAACCAACCAACTCCGGGCCCTATATCAGTTGGCAACTTGCTCATTGGGTAACCGGTATATATGTATGTATATATATTATATAACCCCCGGACGACTGCTGAAGCCGGAAGGGCGGACATGGTGATCTCGTCGCATGGCAGCTGTCCCGTGAGCCCACGGAGTTGTGTGGGATGTGCCGATGAGGCGGCGGCATTTGGGGCGTGGCGTGAAGCGTGTATGAGGTTGGCTGATGTCGGCGCCTCACGCACCAAGAGCGCCGCCAGGAACGTACCCGCACCGCACGGGAGAGCGGGCGGGGAGCCGTGTCCGCGTTCTTATCCGGCGGGTCTGTCCTAACCCGCCTAACCTTACCCGTCCTAACGGGGCACCGTGCGCCACCCTGCTGGGGATGGAAGCACCCCCCAGGTCTCAGCAGCCACTGGATTGCGCTTCCCGCTTGCGGCGTTGTTTGTTGCGCCGGTACTGCAGGCACGTGCTTCACATGATTGCCACTCGGGACATCCTTCGCGGTGAGGAGCTGGTCAACAACTACGGTGAGCTTTCCAACGCGGAACTTCTGCGGGGGTACGGCTTCGTGGAGGCACGCAACCGGAACAATCACGTACAGGTCGGTTGGGGATTGAAGGAGGCTGCTGGTTTGGGAGGAGAGTTAATATGGCTGTGGAGCGGGTGCTGGAGCAAAGCGCGCTTCGCACATGACGAGGAGGTAGCGGGTGACAAGAAAATGAGGCGGGTCGGGGGCGGGTAAGGGGTGGGCCTCCCTCCCCCCAGCGTGCTGAGCCCGGGTAAACGCTAAGCCGCCAACCCCGTCACCAATGCCTACCACTATAGTTACCCAGTTACCGCCAGGCAAGGCTTGTCCGTTGAAGAGGGGCGGCTGCGGGGCCGACGGGGTGAGGGTGGGGATGCTGGCACCTGCGTTTTGGTTTTGGGAGGGGAGCCATACCCAGCCGCTGCCATTGGACTCCGGCTCGCCCACGTGGCCCTCCGCGCAACCTGCCTAGGTTCCACTGGGCTTTGTGGTCCGTGCGGCGACGGAGCTTCTCCGAGAGGACATCACGGCAGCGGCGGGTGCCGGCCCTGGACCCGGTCCTGGTAGTCAGTCCGACCAGGGGGAGATACGAGCCCGCGCATCTGCGCGGTTGCGCCTGGCTCGCCGGTGCGACCTGTTGCCACAGCACCATGTGTTCAAAATTTTCGAGGGGCGGCCACCTCCGCCCCCCATGACTGCGCTCATCCATCTGCTGCTGGCGTCGGATGCCGACATTCCGGCTGTGCGGGGTGCTGTCCGCCGTGCAGCCGCGGCCGTAGTGGAAGGTGAGGATGGCGCGGATTGCGGCAAGGATAAGGGCAAGGCCCGGCGGCGTAATGTCGCGGCAGCTGGGGCGGTTCTACAAGCACGCACAGCGGCTGCGGTGGCGGCAGCCTTGGCTGGGAACGAGACGGCGCTGGCGCGGGTCGCGAGGGTGTACGACATGATTGTGCAGCGCATGCTCGGCCGGTACAGCTGTGACCTCGCAGAGGACGACAGGTTGCTGGCGGAGGCGGAGGCAGGACGCCGAGTACTTCCGCCACGCTTACATGCGGCGGTGTTGGCTCGGAAGCCGGAGAAGGACGCGTTGCTGAGTTTGCGGAAATTCATCGGTCAGGAAGGAGCTTTGCGTCAATCCTTGGCTGTCAATTCCGGCAAGAGCTTGTCGAAGACAGTCTTCGGAATAGCAGGAGCAAAGGGGTCAGAGGAACAGCTCTCTGAACCGCTAAAATACAGTCGTGCCATGGCTAAGAGCTGTAGCGCTGCTCCTGTCAATAAGTTTGCCCCTGCTTCGTTTTCGTTCGGTTTCTCTCTGTAAGTTTTGAGTTCGACTTGCTTCAGTTCGCTTTAATATGTGAGGATTCAGCAAAACTGGGAGGATCTAGTAAAACCATTGCATCTCAGGGATAGCCGCTTCTGTTCAGTGCGTGCCATTACAGATTTTCGTATCCCCGTCGGCAAGCGCATGTTCCCATCTGCAATGGTACCCAACGCCCTCTTAGTGCTTAGCTGAGGATGACGGTCACAATCCATGGATCGCAGGTTACAGTGGCCAACGTGCCCGCAGGTATAAAGGTGTCACTCTTCTCCTTCAAACGGCCTACCGAACCGCCACGGCTCCAAAAAATGCTGGCTGTCCGAACCCGCAAAAAGACAACGAGGGCATAGCACCCGGCAACCTTAACCAGGACATAGCAGTCGGTCACAAACGCCAGAGCGACAGGCGCACATTCACGTATGACCGTGAAGACGTGCCGATATTGAACCGTCAGGTCGGGAACAGCCTCCCCATACCGCCTCAAATTGCTATTTGTACAGAGACTCAGGCCCAGACATCATCGCTAAGCACTTCCCTCGATGAAGCAGCAAAACGAGAGCCACAGGCGTGAGCGTCACGTGCAAGCACACGCTTCGGCGCATTTACGAGGAGGGAGCCTCCTTCTCAATGTACCTGAGCACGCAGAGATGGGGGCAATGAGGGGGGAAAAGAGATTACGGGGAAAGGAAATAGTTTTGTACACAGTAATAGTCGCATACATACAACTTCAAAAATCAAAATGTGTGGCGTCCCGACACCATGCTCCCAGCTACACCAGCACTCACACGAACAGCGTAGCCATTCCGATGGCTGGCAGAACCAGGCCAGTCAGGGGCACGAACAGCGAGGGAGCCCAGGCCGGGGGCACGAAGGGGTAGCCCTCAGCAGCGCTAGCAACGGTGGCGATGACCTGCGAGGCCTCAGCCTGCAAGCATACAAGTGGACGACGAAAGATCGGTAGCCTGGGAGAGCCTCCGCTGCACTTCAGCATATTCCCAGACAAAGATGCAAAATCTGATTGTGCAAACAGTACGCAGCCATATCTCTGAAGCTTGTAAACAGGACTGGACGGAAGCGCCTTCCCCATCAAACATAAACACATAAACCAAAATTAAGCGCTGAGTAGGAAATGTCAGTTGCCCTC +>URS0000054DFE rRNA from 1 species +GTAGTCCTGGCTGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCGGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGCTGGATCACCTCC +>URS000187D73E rRNA from 1 species +TACAGAGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCGCGTAGGCGGCCTGCTAAGTCGAACGTGAAATCCCCGGGCTCAACCCGGGAACTGCGTCCGATACTGTCGGGCTAGAGTGTGGAAGGGGCTACCGGAATTCCGTGTGTAGCGGTGAAATGCGTAGATATACGGAGGAACACCAGCGGCGAAGGCGGGTAGCTGGGCCAACACTGACGCTGAGGCGCGAAAGCTAGGGTAGCAAACGGG +>URS0002587220 misc_RNA from 1 species +TCCGGTTTACCACCGGCAGTCTCCCTAGAGTGCTCGGCTTTACCCGTTAGCAACTAAGGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCAGCACCTTGCACTCTGCCTAGGTTTCCCTAAGAGGCTCCATCTCTGGAGTTGTCAGAGGCATTCTAGCCCTGGTAAGGTTCTTCGCGTTGCGTCGAATTGAACCACGTGCTCCACCGCTTGTGCGGACCCCCGCCAACTCCTTTGAGTTTCAATCTTGCGATCGTACTTCCCAGGTGGGATACTTAATGCTTTCGCTCAGACACACACTGTGTATCGCGTATGTCGAGTATCCATAGTTTAGGGCGTGGACTAC +>URS0000A3D8A0 misc_RNA from 1 species +AATGTGATTGGAAAAGAAAATGAAGGAGAACTAATTAGTGGAGGGTTGAGGGTAAAGTGCTACAATTAGAGACTACAAAGTTAAATGTACAATGAACTAATGTTAAGATTAATGGGTCAAAGTTGTATGTAATGTAGATCCGGTAAACTATAATTCTTCTTTCAGATGCTCAACAGTATCATGTCTTGTCGTTACATTGAAGCTTCTCAATAACTTCCTCCAAGGGAGGATCTCCAGGTCTACGGAAGACTTGATCCCC +>URS000015B95D rRNA from 1 species +ATGGAAAGTCCGGCCTGCCCGGTGAGAGATTCTCTTAAACGGCAGTAGTAAAGTTCTTTAATCGTAGCTCAATTTTCTTGCCCTTTAATTGTGGAGCGATGTGAATGGTAAGACGAGGGTTCAACTGTCTCGCTGTTACGAAGTGAAAACGGAGTGTAGGTGAAAATACCTACATGGATTATAGGGACGACAAGACCCCGTGGAGCTTTAGTGTGCTATTTTCTAGCTGAATTTAGGTTACTTAGGCTGGGGCAGCCAGATGGGAAGCAAATACCATTTGAGAGACGCTTGAGGCGTGCGGGCTTTTAACGATCCACCTCCCTTGAAATAATGGGGAAAATTGTGTGTATGTATGCAGAAAGAGGTGAAAGACGGAACAACGTTACCCCGGGGGTAACAGGCTAATTTCGCTCTGAGAGATCCTGTCGATGAGCGGGTTTGGCACCTCGATGTTGGCTTAGGGTATCCCGAAGATGCAGGGGTCTTCAAAGGTTGGTCTGTTCGCCCATTAAAACCCT +>URS0000B01B68 rRNA from 1 species +TGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCCACGCCGCGTGGGTGATGAAGGCCTTCGGGTTGTAAAGCCCTGTCGGGAGGGACGAATACTGACGGTACCTCCAAAGAAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTGCTCGGAATTATTGGGCGTAAAGCGTACGCAGGCGGCCGTACAAGTCGGGTGTGAAAGCCCGGGGCTCAACCCCGGAATTGCGCCCGAGACTGTACAGCTTGAGTGCGGGAGAGGGAAGCGGAATCCGTGGTGTAGAGGTGAAATTCGTAGATATCACGGGGAACACCAGTGGCGAAAGCGGCTTCCTGGCCCGACACTGACGCTCATGTACGAAAGCGTGGGGAGCAA +>URS000211E027 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGATCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGGAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATCCCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS00004A1422 rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGACCTTCGGGTCTAGTGGCGCACGGGTGCGTAACGCGTGGGAATCTGCCCTTGGGTTCGGAATAACTCAGAGAAATTTGAGCTAATACCGGATGATGACGAAAGTCCAAAGATTTATCGCCCAGGGATGAGCCCGCGTAAGATTAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGACGATCTTTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCCTTAGGGTTGTAAAGCCTTCTTACGA +>URS0000110120 piRNA from 1 species +TGAGAAAACAGATTTTGAAACTGTCAGTCTT +>URS0000B33149 rRNA from 1 species +GTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTATCCGGATTTACTGGGTTTAAAGGGTGCGTAGGTGGGCAGTTAAGTCAGTGGTGAAATCTCCGAGCTTAACTCGGAAACTGCCATTGATACTATCTGTCTTGAATATCCTGGAGGTGAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGATATGACATAGAACACCAATTGCGAAGGCAGCTCACTACGGGGTTATTGACACTGAGGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCC +>URS00002664CE rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGTGACCCAGGGCTTGCCCTGGTGATCAGTGGCGAACGGGTGAGTAACACGTGGGGCAACCTGCCCCTGACTTCGGGATAACTCCTCGAAAGAGGAGCTAATACCGGATACGACCACTTCGGACATCCGATGGTGGTGGAAAGTTTTTCGGTCAGGGATGGGGCCCGCGGCCTATCAGCTAGTTGGTGGGGTAATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGAGGGATGAAGGCCTTCGGGTTGTAACCTCTTTCAGCAGGGACGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCA +>URS0000049829 rRNA from 1 species +GCCAGACTGGAACCGGGAGAGGTAAGAGGTACTACAGGGGTAGGAGTGAAATCTTGTAATCCCTGTGGGACCACCGTGTGGCGAAGGCGTCTTACCAGAACGGGTTCGACGGTGAGGGACGAAAGCTGGGGCACGAACCGGATTAGATACCCGGGTAGTCCCAGCCGTAAACGATGCTCGCTAGGTGTCAGGCATGGCGCGACCGTGTCTGGTGCCGCAGGGAAGCCGTGAAGCGAGCCACCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCACAACAACGGGTGGAGCCTGCGGTTTAATTGGACTCAACGCCGGACAACTCACCGGGGGCGACAAGCAATATGTAGGCCAAGCTGAAGACTTTGCCTGAATCCGCTGAGGGGTGGTGCATGG +>URS00022BB341 rRNA from 1 species +CCCAAAGGTGGGTGGTAAACTCCATCTAAGGCTAAATACGTGCACGAGTCCGATAGCGGACAAGTACCGTGAGGGAAAGTTGAAAAGAACTTTGAAGGGAGAGTTCAAGAGTACGTGAAACCGCATAGAGGTAAACGGGTGGACCCGCAGCAGTTCGACCCGGGGAATTCAGCTCGGCGGCTAGCGGCGCCGCGGCCGGTACTCAAGGGGATACTCCCGTACCCCGCCGGTCGTCGACCGCGCCTGCCGCCGGGTGCACTTTCTCCGGGCCGAGAGCCACGACCGGCTCCGTCGGCGGTCAGAAGCCCGGCTGGGAAGGTGCCCCGAGCCCGGACGCTTGCGTCCGGCGCGCCGGGAGTTACAGCCCGCCGATGGTGGACACGTCGCGGGGCCGAGGAAGCCTTGCGCCGCCGGTCTCGGTCCTCCGGTGCCCCTCGCCCGTCCCGACCTCCGCGTCACTGCCTCGTCAGTGCGCGGAAACCGCGGAGCGGGGGCCACGCCGGGGTGTGCCAGGCCTGTGCGAAGGGTCGGTGGCGAATCGGTCGGTGCTCCACCCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACGTGTGCGCGAGTCACGGGGACTCGACAAACG +>URS0002354398 lncRNA from 1 species +CCAAGTTCAAGCCTTTGCTTGGGTATATTTTTGTTTTTAATTGAATAAACCCCTATCTCTAGTCAGTAGGCTTAAAATAAATATTGGAAAAATATGTCAGAATGGTCCTACTGGTCTGGTGGTTAAGTGGTGTGTTGGGGTCTTGAGTTTGAATCTCTATACGTGTTAGGGGGTTTTTTTGTACATGTGTCGTGAAGGAGTTTGAAATGTGGTAAAATTCTGAGTATTTGAGGAGTGTGAGGATGTTGTGGCCGAT +>URS00025EA52A lncRNA from 1 species +GTCTAGCATTGTCTTGCATTAGGAGGAACCCAGGGCCAACCGCACCAGCATATGGTCTCACAAGGGGTCTGAGGATCTCATCTCGGTACCTAATGGCAGTCAGGCTACCTCTGGCGAGCACATGGAGGGCTGTGCGGCCCCCCCAAAGAAATGCCACCCCACACCATGACTGACCCACCGCCAAACCGGTCATGCTGGAGGATGTTGCAGGCAGCAGAACGTTCTCCACGGCGTCTCCAGACTCTGTCACGTCTGTCACAGCGTCGTGTAG +>URS000112801C rRNA from 1 species +TACAGAGGGTGCTAGCGTTGTTCGGAATTATTGGGCGTAAAGGGCGCGTAGGCGGCGCCACAAGTCACCTGTGAAAACTCTGGGCTCAACCCAGAGCCTGCAGGCGAAACTGTGGTGCTGGAGTATGGGAGAGGTGCGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAGGAACACCTGTGGCGAAAGCGGCGCACTGGACCATAACTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACAGG +>URS0000474C22 rRNA from 1 species +GAGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAGCGGGGTTGAAGCGAGGGGTAACTCGAGTTTCTACCTAGCGGCGGACGGGTGAGTAACGCGTGGGCAACCTGCCTCAAGGACTGGGATAACAGCTCGAAAGGGCTGCTAATACCGGATAAGCCTATGGCCTCGCATGGGGCCATGAGCAAAGGGGAAACCCGCCTTGAGATGGGCCCGCGTCCCATCAGCTAGTTGGTGAGGTGAAGGCTCACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGGGGCAGCAGTGGGGAATCTTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGCGAAGAAGGCCTTCGGGTTGTAAAGCTCTGTCTGGAGGGACGAAGGAAGTGACGGTACCTCCGGAGGAAGCCACGGCTAACTACGTG +>URS00019BDD9E misc_RNA from 3 species +TAACCCTCAAGCCTAGCTTGGTATTGGAGTCGCTATACAGCGGCCCCTAAAATCAGTGGCGGTGCCTATAGGTTCTACGCGTAGTAATTTTTCTCGCTATAGATCCCTATAAGTGCTTGCCAACAACCCCAATTTTTTCA +>URS0002519978 rRNA from 1 species +ATGTCTGGAAGCACGGGAGAACGTTCTTTTGCTGATATTATTACCAGTATTCGATACTGGGTTATTCATAGCATTACTATACCTTCCCTATTCATTGGTTTGTTATTTTTCAGTACATGTTTAGCTTATGACGTGTTTGGAAGTCCTAGGCCAAACGAGTATTTCACGGAAAGCCGACAAGGAATTCCATTAATAACCGACCGTTTTGATTCTTTAGAACAACTCGATGAATTTAGTAGATCCTTTTAG +>URS000071DEB1 tRNA from 1 species +GGGGGTGTAGCTCAGTGGTAGAGTGCTTGCCTGGTATGCATGAGGCCCCGGGTTCCAGCCCCT +>URS0001088F60 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGCGCACGTAGGCGGATCGTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGGCGACCTTGAGTTCGGGGGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGG +>URS00008DF95F rRNA from 1 species +CGCAGGGCCTTGCGCTGGSGATGTTTCATTCAAATTTCTTGCCCTATCAACTGTCGATGGTAAGGTATTGGCTTACCATGGTTACAACGGGTGACGGAGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCTGACTCAGGGAGGTAGTGACAAGAAATAACAATACAGGGCTTTTCTAAGTCTTGTAATTGGAATGAGTACAACTTAAATCCTTTAACGAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCGGGACGGGCCGGCCGGTCCGCCGCAAGGCGTGTTACTGACCGGGCTGTTCTTCTTCGCAAAGACTGCATGTGCTCTTAGCTGAGTGTGTGTAGGACTTGTGACGTTTACTTTGAAAAAATTAGAGTGTTCAAAGCAGGCCAGCGCTTGAATACATAAGCATGGAATAATGGAATAGGACTTTGGTTCTATTTTGTTGGTTTCTGGAACCGAAGTAATGATTAAAAGGGACAGTTGGGGGCATTCGTATTTCGTTGTCAGAGGTGAAATTCTTGGATTTACGAAAGACGAACTACTGCGAAAGCATTTGCCAAGAATGTTTTCATTAATCAAGAACGAAAGTTAGAGGATCGAAGACGATCAGATACCGTCCTAGTTCTAACCATAAACGATGCCGACTAGGGATCAGAGAGTGTTATTGGATGACCTCTTTGGCACCTTATGGGAAACCAAAGTTTTTGGGTTCCGGGGGAAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACATAGGAAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCTTAACCTGCTAAATAGTTACGCGAATCCCGATTCGCGGCTAACTTCTTAGAGGGACTGTTGGTGTTCAACCAAAGTCAGGAAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACGATGTCAACGAGTCTCTCCTTCGCCGAAAGGCGTGGGTAATCTTCTGAAACATCGTCGTGCTGGGGATAGATCATTGCAATTCTTGATCTTGAACGAGGAATTCCTAGTAAGCGCGAGTCATCAGCTCGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCG +>URS00023E717A lncRNA from 1 species +AGTCCAAGCTACATTATTGGCGCTGGCAGGGCTAAAACGCCTAGATATGACAGAAAATGTCACTTCCATTCTTCCTATAGAGGATATGCTACCGGCAGTTGCTCAGGGAGCCATTGGTATTGCATGCAGAAGTGATGATGAGACAATGGTATTCACATCGTTTCTTCCATAAATATAGTTGCTTCTATTGCAGTTCTCTATTCGATGACGAGACAATGGTATTCACATCGTTTCTTCCATAAATATAGTTGCTTCTATTGCAGTTCTCTATTATTCTTTAATGAAAAACTTCAATCACAGGCCAATTACATTGCCTT +>URS00007532CF rRNA from 1 species +TGCTCAGGATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAATGGATTAAGAGCTTGCTCTTATGAAGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCCATAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATAACATTTTGAACCGCATGGTTCGAAATTGAAAGGCGGCTTCGGCTGTCACTTATGGATGGACCCGCGTCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTGCTAGTTGAATAAGCTGGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGCAGGTGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGAGACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACACTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGAGGGTTTCCGCCCTTTAGTGCTGAAGTTAACGCATTAAGCACTCCGCCTGGGGAGTACGGCCGCAAGGCTGAATCAG +>URS000255B89B rRNA from 1 species +ATGGCGCCATCGACCAAGCTCTTCCTCCTGCTCCTCGGCTTGAACCTGATGGTCGCCGATGTGCACGGTGGCTGCGGAGCCCACTGCCCGACTCCGCCGCCACCGTCGACGACCAACGGCTCGTGTCCGATCGACACGCTGAAGCTGGGCGTGTGCGCCAAGGTGCTGAACCTGCTAAAGCTTGGGCTCGGTGTGCCGCACAGCGAGACGTGCTGCCCGCTGCTGGCCGGTCTGGCCGACCTGGACGCCGCGGTGTGCCTCTGCACCGCCACCAGGGCCAAGGTCCACGGCGTCATCAACCTCAACGTCCCCATCGACATAGTGCTCCTGCTCAACCAGTGCCACAAGACCTGCCCGCCCGGCTTCACCTGCCCGCTCTGA +>URS00017EA271 rRNA from 1 species +TACAGAGGTCTCAAGCGTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGTGGCGTGGTAAGTCGGATGTGAAAGCCCCCGGCTCAACTGGGGAGGGTCATTCGATACTGTTCGACTCGAAGGCAGGAGAGGGAAGTGGAATTCCCGGTGTAGTGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGACTTCCTGGCCTGTTCTTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS0001FED583 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACATCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGCTCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAAACAGAAAGCCACGGCTAACTACGTG +>URS0002417CDE lncRNA from 1 species +AGAGACAAAATCATTGGGACACCAAATCTGTTAAAGCAGGCATCACTCTTGTTTCAATGTGGTTTTCACAGCATCTCAATGCCGTTTCATGCTGTTTAGAAATCATAAACAGCTCTGGAGACGTGCCTCACTCAGTCGTGGGAATCTCCAGTCATCAATTCAGGAGACAATAACACCAAATTTGTTCAATGTGCGTTTAACAACATTCTGAAACGTCATAAGTAATGCAGGCTGTCTCGCATGCAGTCTTTCAGCACTGAAACGTTGTAGAGTCGAAGTGTATAGCGCTGCCTTAGTCCAGACAGCATGCTATTGTGAACTTGTCTCCAGTCAATTGGCTCGATAATTTTGAGCTCTCGTGCATGCAGCGGCATACATCTGAGGGACATGGACTTCCATGGGCCAACGATGAATATTACTCTATTTTCTCATAGGTCACAGCCACGGAAGAATGCGATGCCGCTCAATACGACCTTGGCCAACGATGAATATCACTCTATTTTTTCATAGGTCACAGCCTAGGAAGAACGCGATGCCGCTCAATACGACCTCTATGAGTGGTATTAGCACTTGGTGCTCATTCCCTTGAGGAAGGAAAGGTGACATTGCAAGGGCATATTGGCAAGCATATCGATGGCCATCAAATTTTCATTTTAAGGTTGCATTGCATTATATGATTTCAAGA +>URS0002158408 rRNA from 1 species +GGTTTCCTGGGCAAGGCTAATCCTCCCAGGGTCAGTCGGGGGCTAAGGCGAGGCCGGGAGGCGTAGCCGACGCGCAGCAGGCAGACATTCCTGCACCGCGCACGCGGCGCTACGACCGACGGGGCGACGGATGGGGGTGGCTCGGCGGGGTTCTGGACGTCCCCGTGATGGAGCGCGGCCCGCGGACCAGGGAAATCCGGTCCGCACGAGGGCGAGGCTCCGGACGAAGCGATTGAGCGAAGCGAGTGAGCCCGAGGTCCCTAGAAAAACCCCTAGGCAGGCGCGTGCGCGCCCGTACCGCAAACCGACACAGGTGGGTGGGTAGAACATACCGAGGCGATCGGGTCAACCATGGTCAAGGAACTCGGCACAATGGCCCCGTAACTTCGGGAGAAGGGGTGCCCGCGCGTACGTGAACCGGCTTGCCCGGGGAGCGGAGGCGGGCCGCAGTGGAGAGGCCCAAGCGACTGTTTACCAAAAACACAGGACTCTGCAGAAGCCGCAAGGCGACGTATAGGGTCTGACGCCTGCCCGGTGCCGGAAGGTCACGCGGAGGAGTTAGCCGTCAAGGCGAAGCCCCGAAGCCAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGCGCAACGACTTGGGCGCTGTCTCGACCATGGACCCGGTGAAATTGCACTGGTCGTGAAGATGCGACTTACCCGCGGAAGGACGGAAAGACCCCGTGAACCTTCACTGCAGCTTGGCATTGGCCGCTGGTCCCGCGTGTAGAGGATAGGCAGGAGGCACAGATCCGGAGGCGCCAGCCCCCGGGGAGCCGCCCTTGGAATACTGCCCTCGCGCGACCGGCGTCCTAACCCGAGGCCGTCAACCGGCTCGGGGACCGTGCCAGGCGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGGGTAACGGAGGCGCGCGAAGGTCCGCTCGGGACGGTCGGCAACCGTCCTTTTGAATGCAAGAGTACAAGCGGGCTTGACTGCGAGGCCCACAAGCCGAGCAGGTGCGAAAGCAGGCTCTAGTGATCCGGCGGCCCCGAGTGGGTGGGCCGTCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATCTTGCCC +>URS0000E09CF4 tRNA from 1 species +GCCGGTGTAGCTCAATGGCTAGAGCACTTGACTGTGGATCAAGGGGTTATGGGTTCAAGTCCCGTCGCCGGTA +>URS0000BDAE45 snRNA from 1 species +GAATGTTGGGCTAATTTGGCTGAAGCACCTGTCAGCCTACTGATTGCCAGCATGGATTCAGCTGATCTAGCTGGCTAGGTGGGCGTCTCCTTCCTCCCTCACTGCTCTATGTGTAACCCTCCTGAAAGTGGTCAGAGGACACCTTTGTGGAATTGGTTCTTTCCTCTTTCCTTGGGTTCCAGGGGTCAAACTCAGGTCAGTAGGCTTACACAGAAAGCTCACCATCTCT +>URS0000B28382 lncRNA from 8 species +TGTAAACAAAACCAAAAAAAAAAAGGCATAAGATTAATAAAGATGTATTAAATACATAAGATTAACACATAAATTTCGTTATACAAAAGCATTTTGATAAACCGAACCAAATCATCTAGATAGGAAAATTGAAAACATGTGATTGAATATCTTGTTTTATACTTTATTTACATATAAAACTTTAAGAAACATGAAAGAGATATTTGGCAGATTTAATCATGCCAACAAAGATTGATTTATCTAATAAATATCTATTGTGTCCCTGGGTACTGGACATTGTTATTAGAGAAAAGAAATAATATGAAACCTCTACCGTAATATCATAGAGTCTAGGAAAGAAAATTCATCTATTCTTCTATCCAGATTAGACTAAGAG +>URS0002201BE9 tRNA from 1 species +TCTCCTTTAGCTCAATAGTCAGAGCGTCCGGTTGTTAACCGGAGGGTTCTGGGTGCAAGTCCCAGGGGGAGAT +>URS00014BEA7C rRNA from 1 species +TACGGGGGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCTCGTAGGTGGCCAACTAAGTCAGACGTGAAATCCCTCAGCTTAACTGGGGAACTGCGTCTGATACTGGATGGCTTGAGTTTGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAATACCGATGGCGAAGGCAGGTCTCTGGGCTGACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS00023B1992 lncRNA from 1 species +GACTACGAATCGACATTGTAGCTTAGGAAAGTTTCATTTCATCCGTGGATCCTGAAGAGCAAGGTATCCTCTCTCCGTCGTACCTTTTTTCACATCGATTCGTTATATATTTCTTGCATTTTTGAACTTAGGGTTTTCATGCAAATGTAGGATGCCGAGGCGTGGAAAAGCTAAGAAACTAAGGTAATCTCAACGCCCGTAGTTATGTTATATACTCATTGTTGTGTATCAAATGAAAAAACCTTAAATGTAGGTTTATTCCTAAGTGCGTTTGATTCATAGAACCAAATAAACAAAATTGTAGTTATGGCGCTAAGAAGACCGGAAATGCGTTCGATCCATTGCCTCTGCCTAGTGGTGTTCCAGTGCCGATGTGCTTTTGCGGCGATCCTTGCAAGGTAGCCAAGTCCGAAGAACATGCC +>URS0001EBED66 rRNA from 1 species +CCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTGGATCAC +>URS00006566BF snoRNA from 5 species +CTGCATGATGAACTCTTAATTTCGCTGTGTTCTTACCGAGGCACACTTTGAAGAAACAAAATATCACCTTGGAGAACTGACAC +>URS00006E3F2F snoRNA from 1 species +TATGCTGTGATGAGATTAAGCACCATAGGGTGTATTGGGCAGTGGAAGAAGGTTTAAAAGCCTTCTCCGTGAGCTTATTAATTAACGACTTCTCCTTCCACTGAGCATC +>URS00000BBF13 rRNA from 1 species +AGAGTTTGATCCTGGCTCAGGATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGAGATTTTATAAAATTACTTTTCGAAGGAAGTTTTATAGATAAAGCGGCGGACGGGTGAGTAACGCGTAGGCAACCTACCTTATACAAAGGGATAGCCTCGGGAAACTGGGATTAATACCTTATAATACTTTGGGATCGCATGATCCTAAAGTCAAAGATTTATCGGTATAAGATGGGCCTGCGTCTGATTAGCTAGTTGGTGGGGTAACGGCCTACCAAGGCAACGATCAGTAGCCGACCTGAGAGGGTAATCGGCCACATTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGCGATGAAGGCCTTCGGGTCGTAAAGCTCTGTCGTGAGATGGGAAAGAATGACGGTACAATAAGAGGAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAACGTTGTCCGGAATTACTGGGCGTAAAGGGCGAGTAGGTGGTTTGCTAAGTCAAAAGTGAAAGGCTACGGCTTAACCGTAGTAAGCCTTAGGAACTGTAAGTCTTGAGTGCAGGAGAGGAAAGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGACTTCCTGGCTTGTAACTGACACTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGGTGTAGAGGGTATCGACCCCTTCTGTCGCAGCTAACGCAATAAGTATCCCACCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGACGCAACGCGAAGAACCTTACCAGGGCTTGACATCCTACGAATCCTTAGGAAACTAGGGAGTGCCCTTCGGGGGAACATCTAGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCATTAGTTGCTACGCAAGAGCACTCTAATGAAACTGCCGTTGACAAAACGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCAACACACGTACTACAATGGCCGATAACAACGGGAAGCAATACAGCGATGTGGAGCCAATCCCAAAAATCGGTCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGAAGCCGAAATCGCTAGTAATCGCAGGTCAGCATACTGCGGTGAATACGTTCCCGGGCCTTGTACACACC +>URS0001DD25E8 rRNA from 1 species +ATTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGCAGCACAGGGAGCTTGCTCCTGGGTGGCGAGTGGCGAACGGGTGAGTAATGTATCGGAACGTGCCTGGTAGTGGGGGATAACTACTCGAAAGAGTGGCTAATACCGCATGAGATCTTTGGATGAAAGCGGGGGACCTTCGGGCCTCGTGCTACTGGAGCGGCCGATATCAGATTAGGTTGTTGGTGGGGTAAAGGCCTACCAAGCCTGCGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATGTGGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGCAGGACGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACAGAACGAAAAGTCTCTGGCTAATATCTAGAGATCATGACGGTACTGTAAGAATAAGCACCGGCTAACTACGTG +>URS000170AD9B rRNA from 1 species +TACGTAGGTGGCAAGCGTTTGTCCGGATTTACTGGGCGTAAAGAGCGCGCAGGCGGCTGGGCAAGTCCGATGTGAAAGCTTCCGGCTTAACTGGAAAATTGCATCGGAAACTGCTCGGCTTGAAGGTGGGAGAGGGTAGCGGAATTCCCGGTGTAGTGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCTACCTGGCCCACTCTTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS000204CED6 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGATGAAGGGAGCTTGCTCCTGGATTCAGCGGCGGACGGGTGAGTAATGCCTAGGAATCTGCCTGGTAGTGGGGGATAACGTCCGGAAACGGGCGCTAATACCGCATACGTCCTGAGGGAGAAAGTGGGGGATCTTCGGACCTCACGCTATCAGATGAGCCTAGGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCGTAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGTCTTCGGGTTGTAAGGCACTTTAAGTTGGGAGGAAGGGCAGTAAGTTAATACCTTGCTGTTTTGACGGTACCAACAGAATAAGCACCGGCTAACTTCGTG +>URS0000E460B3 rRNA from 1 species +CGGCGAGTGAAGCGGCAACAGCTCAAATTTGAAATCTGGCCTCGGCCCGAGTTGTAATTTGCAGAGGATGCTTTTGGTGCGGTGCCTTCCGAGTTCCCTGGAACGGGACGCCACAGAGGGTGAGAGCCCCGTATGGTTGGACACCAATCCTGTGTAAAGCTCCTTCGACGAGTCGAGTAGTTTGGGAATGCTGCTCTAAATGGGAGGTAAATCTCTTCTAAAGCTAAATACCGGCCAGAGACCGATAGCGCACAAGTAGAGTGATCGAAAGATGAAAAGCACCTTGAAAAGGGGGTTAAACAGTACGTGAAATTGTTGAAAGGGAAGCACTTGTGACCAGACTTGGGCCGGGCGGCTCATCAGGGGTTCTCCCCTGTGCATTCCGCCCGGTACAGGCCAGCATCGGTTCTTACCGGGGGATAAGAACGGCAGGAACGTGGCTCCCCCTCGGGGGAGTGTTATAGCCTGCCGTACGATACCCTGGCGGGGACCGAGGTTCGCGCTTCCGCAAGGATGCTGGCGTAATGGTTACTAGTGACCCGTCTTGAAACACGGACCAAGGAGTCGTCCATTAGAGCGAGCGTTTGGGTGTCAAACCCCCACGCGTAATGAAAGTGAAATTAGGTGAGAGCTTCGGCGCATCATCGACCGATCCTGATGTTCTCGGATGGATTTGAGTAAGAGTTTTAACGGACGGACCCGAAAGACAGTGAACTATGCTTGTATAGGGTGAAGCCAGAGGAAACTCTGGTGGAGGCTCGCAGCGGTTCTGACGTGCAAATCGAT +>URS0000657173 tRNA from 1 species +GGGGATATAGCTCAGCTGGTAAAGTGCTTGCCTTCCATGCATAAGACTCTGGATTCTATCCCCA +>URS0001FC8B0A rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGAACGCTGAAGGAGGAGCTTGCTCTTCTGGATGAGTTGCGAACGGGTGAGTAACGCGTAGGTAACCTGCCTGGTAGCGGGGGATAACTATTGGAAACGATAGCTAATACCGCATAAAATTGATTATTGCATGATAGTCAATTAAAAGGTGCAATTGCATCACTACCAGATGGACCTGCGTTGTATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATACATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGGAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGGTTTCGGATCGTGAAGCTCTGTTGTAAGAGAAGAACGAGTGTGAGAGTGGAAAGTTCACACTGTGACGGTATCTTACCAGAAAGGGACGGCTAACTACGTG +>URS00009B8067 lncRNA from 7 species +TTTGTAGCGGTGCCAGTGAAGAAGAGGACACATGAAGACTTAGCATTCCCTGCAGAAAACGCCCCTTCCCCGTGTGTGTGTGACAGCGTGTATGTAATGGCTTCTGATATCTGTGAAAGCTGCCAGGCAACAAACTTCTTCTACTGGAAATGTCCCCAGATCCACAGCAGGCACACATGTTCCCAAGGGACCAGGGGTTGTATGCATTCTGACTGTGTGCTTCTTGTTCTCTGTGGTAGGTCATGGGAAGAGCCCTTTTGATCAACTTGGAGGGCTCTTCAGCTAACCCCCCAATGGCTGCTTTGAACTTACTCAGGAAAGCCAGCCCCTGGAATATTGTGCAAGTCAACACTATCACTTCCTTAGGAAGGTTCTAGAACATCTCGAAAGGATATCAGTTTTCCTTACCTGCAAACAGAAAACAAACCCACTTTGTTTGTACTGAAGCTTAAAGCAAATGTGGCCAAGTGGGGCCAAACTGACTCAATAGGCAGTCTGTCATAGTCCAGTTCTGCCTCTGTGAAAAGTGTTAGGGCAACTGGGTTAAAATAGGGTTGGAGAAAGAGTCCAGAGCTAGAAAGAAGATATTTTTAGTATGTGAGGTTATCTAGGACTTAAGTTTCATAATTCAGTGCTGTGGAAATGGGAAAATGATTGAAAAGGTAGAAAGGAAATGACCTTAAGGACTGGGGTGAGGCACAGAAATCTGATTAAAGGTTGAAATCAGTGTTTCAGAATTCAGATTGCCTCAATTTTCCAAAATGGTCACTAAAGCATCTGATAAAACCCAGAATTCTTCGGCCAGCTGTGTGGATTAACAGGCCTGTCACAACATAAAAGGCTGGCATGTATATTGGCAGGTGGAGATTGTCACTGTAAAACTTAGCAGTTTCACTCCGAGGTTAGTCTATGGTGGTCAGTGCACTGTGAGGGGAATCCTTGTCCCTCCCTGGCAGCTAGCAAACATTCCTCTATTTACTATAATTGGAATCCTCCCTTCCCCTGCAGCAGGCCGTCAGCTCACCTCACACAGCCCAGTTTTCTCTTCATGTAGCATGTCCAGGCATGCTCCAGAGCTGGGTTTCCTGGCCTTCCCACACTCCCAGATCACAGTCTCTTACAACCATGCTTTTCAGGATCCAGGAAGTAGTAAGTGTGCTGGGAGATACCCAACTAACTGCAAGCTCACAAGCACCACATCTTCTTGAGACATCAGTTTTTCTTTCCAAATGATTTGAAGTCAAGAGATGACCATATTTTTTAATGGAACAAATGCTTATGTTATACAAGAGAATGTTCATACACCTAAAGTGCTAAACTAAAATAGGAAACTTGGAAGGAAACTCATATTTGTAAGTGGACAGTGATTCTATCTCCTCTGCTTGTGTGGTATTTCCATGTTCACTTTGAGATTTTGTCTGAACTGGATTCAGGCAGCCTTGGGGTTGCTGTTGATCAAGGTCTAGACTTCCAGATCCAAGGAGTCCACCTTGGAGTAGTACATCTCCCTTTTCCTGTCAGCCAGCTTGCCTGTGTACTTATCACAAAGCTTTAGGGGCAGCTAACATGTGTATGTACAGGATAGTTCTGAGGCAGAAACAGCATAGACTTATTGTAGGAGTCCTATTTATGTCATTGTTCAGCCCTGTGCATGCTAGAAAATGATTTATCCCTTTGAGGCCAGGAAACTGCCAAGCCACTCTGCTGTAGGCTAGGATTACTGAAACTCACCACACATACAAGGATATTGGGGCAGAGCGGAGTGTGAGATCTAAAAATATGTATACTTTCCCCAGCTGGTGGCTAGTAGATGGCTTAGACAATTTTGGTGTCTTACCATCTGTCTGCAAAGACTGGAGAATTTAATACATCTTGAGTTGACAACCTCCAGTGATATCCTGTTCTGCCAAAATTTTAAAAGAAGGGCCACTGTAGAAAGAGTGTAAACTATCACAAGATTGAAAAGACTTGACAGTTTGGAAGCTTGTCTTGTCTTTCTCAGTAATCATTGATCTTTACATGTTGACCTTATATTAGCAATGAACAGATCATTGCCTCTCCACCCAATCATGCTATTTCTTTAAATCAGTATTTGGGGAATGCAAGCATTTATGCAGTGGTTATAAACAGAAATATAAGATTTGCCAACCTGTCTCTTTAAATTACCATCTCTCTGAAATCCTCAAGGAAAGCATTTTCCCTTTACTTAGTAAGGGTTTCAGATTCACTTTATGGGCTCCTGCTGTCTTCAACACTGATAAAACTTTAACCAGAAAAGCATTAAACACAGCACAGCAGCCCCTAGCCCAGATCCCTAAGTTCCTAGTGGCAGCATTTATCAATGTAAGAACAAGAATACTTTCTGTACTGGTATCAGCTTCGTCCTCAAAGCTATGACCTCTTACTTGGCCTTGTGCCCCATAGTGAACGAAGCTTCTTGCCTTTCCAGGTCAGTGTGAGTTAAGATTGTCAGAGTTGTATGTGTCCTGACAGACTGTGGACAGCAGGGTTTGCCCAAATCATCAAGTGATACAGGTAATGAATGTCTCTAAAATAAGTTGGGTCCTCCAAACAAGTCCTGGATACCTTCTGAATGTTAAGTTTCTGAGTGCTGAGAGTAATTTGTTCATTGGTTTGGTTTGATACCGTTATATCTATCTAGGGCAGTTCCAAGAAGTGCTTGACTTCTCAGCTCTAACAGCCAGTAAGAGTAAGTAACCTTAGTACAGGCAATGAGCCTCTGTAGATGTGCAGAGGACAAGTCACTTGTCTGTAGTTGCTAACAAACAATGGAACCAGTTTTGAGCACAGCACTCCCTGCTCTGCAGTCAGCCCTCTGCCCCACACCATGACTCACCTACAGATTGAGAGAGAGAAAGGCTTTCAGTTCCCCCAGTGTAGTATGCCCATTCACACTCGGAATTCTTTTTCAAAGACATCAAGATGGCCTTAGTACTCTGCTCTAGTAGATGTTGTAAGTATTCATTGTTCCTTCCAGGAGCTGGATTTTTGGTACAGTCCCCACAAAGGAAAATAAAGGCCTTCAAGAGTGTAAAGTTTTTAGACAGAGTTGGAGGTAATGGTAGTCTTCTAACATTATCTAAATATCTCCTGCTTCATTACTATAGAAAGCAACTCTTCATGTTTTAGGAAACCCAGCTACCATGTTTGTACTCTGAGAAGGTGCCAATACAAATCACTAATTTTGGACTCCCTTCCTGGAGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTAAATGAGAATGAGATTTGTACACACCCACATATTCTATACCACTTAATTAAGAGTTAAGTGAAGTTCAAAGCAGCCCCTGGTGATCTTACTTAACACCACAAAGTTTTCTACTAGGTCCATGAAAGTATAAACAGATAATTGGAGTGTGACTGCTGGCTTTCCAGAATAACCCACTTGTGGTAGATGTCAACTCTTACAGCTCCAAGCCAAGGTGACGACAACCCAGCCCTCTTCCACCATGTCTAATAACATGGGACATGGTAGATGCCTTGTCATTTGGTGACCTGGATCTGGGCCCGAGTTTAGAGCTGCAGAATTTATAACCTTGTAGTAGTCAGTGGTCTAAGAAGTCCTCTCTCCCCACAGAGAAAATGTCTTGCTGATTCCTGATATTCTACTCTCATAAGCTGTTCAGTACACACTTCTCAGTCAATTGGTTGCTTGTTTACTATGTGCTGAGCACATCTAGATTTTTTGTTTGTTTAAAGTTAAAAGTCCCATTATAAATCAAGTCTAACCCTGCCCTAAGAGAAAAGACCCACAGAGACTGCACATCTCACTGACGCTGCCTTCACCCATTAGTGTTTGAGGCCCACCATCCTATGGAGCCAGGTATTCCCACATCATTCAGATCACTGGTGTTTCCCATTACTGTTTGAGGCTGAGCAGAAACACTAACAAGGACCAGAGCAGGAACGGGAAAATAAATGAAGACACTTGGAGTGCACTGTTGAGAAAATAGCCAGAGTCCATGCTGGGCTTGATGTGGCTTTAGGGGACCAATCATATATACTTTATGGAAGTTAAACCTGACCAGTCTTTACAGTGACAGGCCACAGCGCGTGAGTGGGTAGAACCAACAAATCCATTGTCTTCTGCCTGTTTTTGTGTGCACAGTCACATTCCCTCCTTAGTCATCTTCCCCTTCCACTCTTTACACTAAACAAGGGAACACTCAATCTTTCAAGGGAATTACATATCTGAGTTAATGTTTCAGTATATCATTTTCATACTGTAAATTATTTTGTAAGAGAGATTTACTGCTATCCCAGGATGTTCGGACTTGGCGCCCCTGTGCATTTGGAAATCAATAAACTATTACTGGAAATACC +>URS0001E92C0D rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGACGCTCTTCCTTCGGTGAGGTGACGGAGCGGCGAACGGGTGAGTAACACGTGGGCAACCTGCCCCTAGCTCTTGGACAACACCGGGAAACCCGTGCTCATACCGGATACGGCATCGAGCGGCACCTCTCGGTGGGTAAAAAGTTTTCGGGTAGGGATGGGCCCGCGGCCTATCTGCTTGTGGGGGGGGGGTTGTCGCACCCAGGGGCGGACGGGGGGCCGGGCTGGGAGGGCGGCCAGACAGACAGGGACTGAGACACGGCCCAGCCTCCGACGGGAGGAGGGAGGGGGGAAGATTGAGGAACGGGCGAAAGCCGGACGAAGCGAGGCCGCGGGAGGGATGCCGGCCTTCGGGTTGTAACTCTCTTTAAGCAGGGACGAATTCAGACGGTACCTGCAGAAGAAGCACCGGCCAACTACGTG +>URS00002FCF40 rRNA from 1 species +TAAGTCACTTTGTCTTAATGGCAAATGTGAGATGCAGTGTATGGAATATCTTAATATCTAGTATGAGAAATTAACGATTTAAGTCCTTCTTAAAAGAGGCCATTTACCCATAGAGGGTGCCAGGCCCGTATAACGTTAATGATTACTAGAAAGATATTTCCAAAGAGTCGTGTTGCTTGATAGTGCAGCACTAAGTGGGTGGTAAACTCCATCTAAAACTAAATATAACCATGAGACCGATAGTAAACAAGTACCGTGAGGGAAAGTTGAAAAGAACTCTGAATAGAGAGTTAAATAGTACGTGAAACTGCTTAGAGGTTAAGCCCGATGAACCTGAATATCCATTATGAAAAATTCATCATTATATATGTAATATTAATTGATTAATATTATAATAATAGTGTGCATTTTTTTCATATAAGGACATTGTAATCTATTAACATAAAAAGTATTTATCAAAAGATCATTGGCTTTAAGTTTATTTTAATTAATTTGCTTTATTGCTTTTTAACATTAAATAAATGCCTAATGATTTGATAAAGTGTTGATAGATTTATTATATATAATGCTTAAATTCATTTTGAATTTTACAATAATGTTATAAACATTGATTTAAAAATTAATGTACGTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCTTGAAACACGGACCAAGGAGTCTAACATATGTGCAAGTCATTGGGTTATATATATAAACCTAATGGAGTAATTAACTTAACTAATTTAATGGGATTAATTTTTAGTCTATTTATAATAGTCTATTAATTCAATCCCGGGGCGTTCTATATAGTTATGTATAATAATAATTTATTATTATTTATACCTCTAACTGGAGCGTACCTTGAGCATATATGCTGTGACCCGAAAGATGGTGAACTATACTTGATCAGGTTGAAGTCAGGGGAAACCCTGATGGAAGACCGAAACAGTTCTGACGTGCAAATCGATTGTCAGAATTGAGTATAGGGGCGAAAGACCAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGTGCATTTATATATTATGTAAAATAATCTTATCTGGTAAAGCGAATGATTAGAGGCCTTAGGGTCGAAACGACCTTAACCTATTCTCAAACTTTAAATGGGTAAGAACCTCACCTTTCTTGATATGAAGGTTGAGGTTATGATATAATGTGCCCAGTGGGCCACTTTTGGTAAGCAGAACTGGCGCTGTGGGATGAACCAAACGTAATGTTACGGTGCCTAAATTAACAACTCATGCAGATACCATGAAAGGCGTTGGTTGCTTAAAACAGCAGGACGGTGGACATGGAAGTCGTAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAAGCAACTAGCCCTTAAAATGGATGGCGCTTAAGTTGTATACCTATACATTACCGCTAAAGTAGATGATTTATAATACAATTTCGATTGAATTATAAATTTTGAAACTTTAGTGAGTAGGAGGGTACAATGGTGTGCTTAGAAGTGTTGGGCGTAAGCCTGCATGGAGCCGCTATTGGAACACATCTTGGTGGTAGTAGCAAATAATCGAATGAGACCTTGGAGGACTGAAGTGGAGAAGGGTTTCGTGTGAACAGTGGTTGATCACGAGTTAGTCGGTCCTAAGTTCAAGGCGAAAGCCGAAAATTTTCAAGTTTTAATGCAAAGAAATAACCAAACAATTAAAAAAAAAAAAAGAAAAAAGTAAACTTAAAGAAAATGAAAAGAACAATTTTAAAACTTTATTAATAAAAAAATAATTAATTACTACTATGTTTTTTCATTTTTTGTTTAACTTTTTTTCTTTTTTTTTAAATTGAAATTTTTGAATTTTTAAACACTTGAATAATTTTGAACGAAAGGGAATACGGTTCCAATTCCGTAACCTGTTGAGTATCCGTTTGTTATTAAAAATGGGCCTTGTGCTCATCCTGGCAACAGGAACGACCATAAAGAAGCCGTCGAGAGATATCGGAAGAGTTTTCTTTTCTGTTTTATAGTCGTACTACCATGGAAGTCTTTCGAAGAGAGATATGGTAGATGGACTAGAAGAGCATGACATTTACTGTTGTGTCGATATTTTCTCCTCGGACCTTGAAAATTTATGGTGGGGTCACGCAAACTTCTCAACAGGCCGTACCGATATCCGCAGCTGGTCTCCAAGGTGAAGAGTCTCTAGTCGATAGAATAATGTAGGTAAGGGAAGTCGGCAAATTAGATCCGTAACTTCGGGATAAGGATTGGCTCTGAAGATTGAGATAGTCGGGCTTGATTGGGAAGCAATACCATGGTTTATGTACTCGTTCTGGGTAAATAGAAAATTTCGATTTTTGTTCCCCGGATAGTAGTTACGTAGCCAATTGTGGAACTTTCTTGCTAAAATTTTTAAAGTTATATACATTTAATAAAATGTATATTCTTTTTAAATTATAACGATTATCAATTAACAATCAATTCAGAACTGGCACGGACTTGGGGAATCCGACTGTCTAATTAAAACAAAGCATTGTGATGGCCCTAACGGGTGTTGACACAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAAGTAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCACTGTCCCTATCTACTATCCAGCGAACCACAGCCAAGGGAACGGGCTTGGAATAATTAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCTGGCAGTGTAAGGAGACATAAGAGGTGTAGCATAAGTGGGAGATATATAATTTCGATTATTTATCACCAATGAAATACCACTACTCTTATTGTTTCCTTACTTACTTGATTAAGTGGAACGTGTATCATTGCTTAGCCATATTAAGGATTTATTTATAAGTCTTATGGTATTGGGTTTTGATGCAAGCTTCTTGATCAAAGTATCACGAGTTTGTTATATAATTGTAAACATATTTTAATGAAATGATAACATTTCGGTGTTATTATAATAATTAAAATTTGGTATAACTCCAACACTCAGGTATGATCCAATTCAAGGACATTGCCAGGTGGGGAGTTTGACTGGGGCGGTACATCTCTCAAATAATAACGGAGGTGTCCCAAGGCCAGCTCAGTGCGGACAGAAACCACACATAGAGCAAAAGGGCAAATGCTGACTTGATCTCGGTGTTCAGTACACACAGAGACAGCAAAAGCTCGGCCTATCGATCCTTTTGGTTTAAAGAGTTTTTAACAAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCGGCCAAGCGTTCATAGCGACGTCGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAAAATTCACCAAGCGTTGGATTGTTCACCCATTCAAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTAATGACAATTATTATTGCGACAGCATTCCTGCGTAGTACGAGAGGAACCGCAGGTACGGACCAATGGTACAATACTTGTTCGAGCGAACAGTGGTATGATGCTACGTCCGTTGGATTATGCCTGAACGCCTCTAAGGTCGTATCCGTGCTGGACTGCAATGATAAATATGGGGCAATTGCATTGTATGGCTTCTCTAAACCATTTAAAGTTTATAAATTTTATTTATAAACGACAATGGATATATGTGATGCCAATGTTATTTATAACATAGCAAATGCGGGAGGATCAAATATCACCTGTATGACGCGCTAGTTATATATAAAAACATTATTTAATACAATGACAATGCCTAGAATCAATTGTAAACGACTTTG +>URS0000ADD968 rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGCAGCACGGGAGCAATCCTGGTGGCGAGTGGCGAACGGGTGAGTAATACATCGGAACGTGCCCAATCGTGGGGGATAACGCAGCGAAAGCTGTGCTAATACCGCATACGATCTACGGATGAAAGCAGGGGATCGCAAGACCTTGCGCGAATGGAGCGGCCGATGGCAGATTAGGTAGTTGGTGAGGTAAAGGCTCACCAAGCCGTCGATCTGTAGCTGGTCTGAGAGGACGACCAGCTACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGCAGGATGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAACGAAACGGCCTTTTCTAATAAAGAGGGCTAATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTATGTAAGACAGTTGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGTGACTGCATAGCTAGAGTACGGTAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGACCTGTACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS0001CBEDC2 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGATGAGGAGCTTGCTTCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTAACTGTGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS00020C5C01 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTTGAGCGATGAAGATTGGTGCTTGCACCAATTTGAAGAGCAGCGAACGGGTGAGTAACGCGTGGGGAATCTGCCTTTGAGCGGGGGACAACATTTGGAAACGAATGCTAATACCGCATAACAACTTTAAACATAAGTTTTAAGTTTGAAAGATGCAATTGCATCACTCAAAGATGATCCCGCGTTGTATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGATGATACATAGCCGACCTGAGAGGGTGATCGGCCACAGTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGCGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGGTAGAGAAGAACGTTGGTGAGAGTGGAAAGCTCATCAAGTGACGGTAACTACCCAGAAAGGGACGGCTAACTACGTG +>URS00025F86BA lncRNA from 1 species +TGCGAATCATAGACGGCGCGACATCATAGTCTTCCCTCATGGCAGCCTTTTGGCGCGAAGAAAAGGAAAGTTTGAAAAAATTACCATATCTTTGAACTGTTTTAATAAAGCAAGAAATTATATTGTGCAAATCTGGATGCAAGATAAAGAAACTCTTTGATTTTGTTCATTCTACATTATTTATCAGTTGAAGATCTGTAGTATGATGACACCGTCGATGGAATGTTCGATCAAATCTTTCTGGGTCTTGTCCGTTAACAGGAGCACGGAGATGTGAAGGCATGGAAGTGGGGATGATGTCCTTAAAGAGGCACGGTATTAATCCTGGAGGACTACTTTGGTGGACGGACGTTGGAAGACAACTGATTTCAGGTGTTTTTTCCGTTTTCTCTTGTTATTCCTCTTGGGTTTTTTCCATGAGGTCAGGTGGTTGTTGTTAATGGTCTGGCGTCCAATATGAGCACTCTATCGAAAGTTCCGGGTGACACATCGCTGACTAGCTGGATCCTCCTCAACAAGGAAACAACTCCGTGGGAAATAAATTTTATGGCTTTTAGCCTAACTTGATAAAACGCTCAAAGTTAAGAATTTTTTTAATAATGAAAGTTTAAAATAACACTTTATGGGGAGTCTGTCCCTCACATATATTTAATAATATATTAATTTGTTTAGAGACAGATTAACAACTTGCCTATGATAGAGATTAAAGTATAAATAACTGGAATTTTCATTTTACTTTCATCATTGAAAAAAAACACTATATACATCATGAAAACATTTATCATGGTTGATTAGATTTTTCTATTAATTAAATATTGAAAAATTACTCTTCAAAGCTTTTCCTTAACATATGATTAGTAGCAGTGGTTATTTTTGTGTTACTTGAGTCATTATCAGTTCAGTTTATGTTTAATTCATTTACCTTTCTTATTTTGCTGACAATTAAGTTATCTCTAGGAATGGATCATTTTCATTTTTCTGCTAATTCAGCTTTCTTTGGAAATGAAAATCCTTGTACTTTCGGTCCAGTCAGATAGTTGCCTTTACGCAGGGGCGCCACTAGCTGTTTGAACGCCCGCGTGCAATACCGATTATGTTGCCCCCTGTTTAACTACGATTACTTATGCTGAGCTTGCCAGAAAGGCTCTTTGCCGCCCCCTGGACGTGCCGCCCGCGTGCGGTGCACGTCTTGCACGCCCGCTTACGGCGGCCCTGCCTTTACAATCGGTTATACAGCACTTGTATGGGCATTTTGCATGACCTTATCACATTTACAAATCCCTAATATTTATAAAATGCTTTTGTAACACAGTCAACAAACAAAAAAACCCAAATATTCTAAGAAAATTATCCAATATTTCAATTTAATTACAATAATTGAAAGCATGAGAACTTAACAGCATATGGCTACTATTGTAATAGACAACAATTACCCCATGAGCACTCAGGCCTGATTATGTAGGTGGCATTAATTAGTTTTACCTTTAACATGGAGAAGACCTCATGCGTCCACTTTTGTTAAAGACATGGTATGCACCTTGATCCTGAAACTCACTGAAATGGGATTAAAATTCCAATAGTCAATGAGGCCATGGCTATCAAGGCCTGTTCTTAGCTTCTTGATCCCATTGGAGTGTGTCAAGGCAGTTTCATGATAATGTTGATTAGGGGCTGTTACAGACCATGGAATATCATTTATTACGTATGAGTTAGAGTGGAAAAAAATAAAAAATAATTTATTGTCACACTTATCTTTCAAAAGTCTATGTCATATCTATAAGACTGTGATTTTATTTAACTATTCTTGAGAAAATTTATTATTTTTTGCTATTAAAAATATAAAATAGTAAAAATATGCTTTACTCAAAAACTCATTTGCACATGTATGAAGCCAACTGCATTTAAAGGAAAAAAGCTTCATTGTTTTTTTAAAGGAATAATTACATAATAGATTAAGATATTTTTAATATCTTTCTTGTTACAGGTGTATGGTTTGTTTACACTTTTATTTATCTTGTCACTATTTTTTTGGCAGTGGTTAAGAAGTAATATTTTACATAATCTTGAAATTAATAGATTGGTGATTTCTTTTGGGTGAGTCTCCCTGCCACATCCACATTGAAGCCAAGGGATGAGACACACACAATGCTTTAGTTGCATTCTCAATTTAAACAAAATTTTTTGTTGCATTGGTAATTTGTCTATGTGATTTTTCACAGCTAGGACCATTCCAGTAAGTCTGAGTTGAGGATAATGGAAGCTTCTTGTCCTGAAATCTAATCATGTCGTTTGTTGATGATGATGTCTGGCTCTCTATAAAATTTTCTGTAGCCTGTCTGCATTTGTGTGTCTAGCACAACATGACACAGATAGCCTGCTACTATACCAGTGGCCCAGAAAAGTGAGATATAGGGAAATAACATTGAAAATCAACCAATATAAAATTACAACTGCCTGACTATTTAAAAGGCTACTGATGTTCAGCTTGCATTAATTATGAAAATTGAAACTTATTGGTTCAAGAATTATTAAGTTTCAATAGGTAAATGTTAAAAACAAAAAAAAATCTACTAATCCATGGATATAAAAAAGAATTTATTTTAAA +>URS0001859E2D rRNA from 1 species +TACATGGGGTGCAAACGTTGCTCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTACTCAAGTCGGATGTGAAAGCCCTCGGCTTAACTGAGGAAGTGCACCCGAAACTGAGTAGCTAGAGTACCAAAGAGGGTCGCGGAATTCCCGGTGTAGAGGTGAAATTCGTAGATATCGGGAGGAACACCGATGGCGAAGGCAGCCCCCTGGGTCAACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS0002165809 rRNA from 1 species +GGGGAACCGCCTGAACTGAAACATCTAAGTAGGGCGAGGAAGAGACATCAAACGAGATTCCGTAAGTAGTGGCGAGCGAACGCGGAAGAGGGCAAACCGAAGGTAGAAATACCTTCGGGGTACGGAGCGCATTTAAGACTCAAGTTGTTAACCGAACGGCATGGGAAGGCCGGTCAGAGAGTGTGAGAACCACGTAGGTGAAAACGGAAAGAGCTGCGCAGATTCCAGAGTACGGCCAGACACGTGAAACCTGGTCGGAAGATGGGGGGACCACCCTCCAACCCTAAATACTACCCAGTGACCGATAGCGTATAGTACTGTGAAGGAAAGGTGAAAAGCACCCCGGGAGGGGAGTGAAAAAGAACCTGAAACCCTGTGCCTACAAGCACCTAGAGCACGTCAAAGTGTGATAGGGTACTTTTTGTAGAACGGTCCGGCGAGCGATTGTATGCAGCAAGGTTAAGGACTTAAGGTCTGGAGCCGAAGCGAAAGCGAGTTTGAAAAGGGCGTTAAGTTGCATATAATGGGCCCGAAACCGGGTGACCTACCCATGGTCAGGTTGAAGTGGAAGTAAAATTCCATGGAGGACCGAACCGACCTCCGTTGAAAAGGCGGCGGATGAACTGTGGGTAGCGGAGAAATTCCAATCGAACCCGGAGATAGCTGGTTCTCCCCGAAATAGTTTTAGGACTAGCCTCAAGTTAGATACCTGGAGGTAAAGCACTGAATAGCCTAGCGGCCGAGAGGTTAGCGAAGCTTATCAAACTCAGAATGCCAGAGTATTGATGCTTGGGAGTCAGACAGTGTCAGATAAATGTCATTGTCAAAAGGGAAACAGCCCAGATCTACAGCTAAGGTCCCAAAGTCAGGTTAAGTGGAAAACGATGTGAAGATACGCAGACAACCAGGATGTTGGCTCAGAAGCAGCCACTCATTCAAAGAGTGCGTAATAGCTCACTGGTCGAGCGTCTTTGCGCGGAGAATTTAACGGGGCTAAACCTGACACCGAAGCTTAGGCAATCCAGTAATGGATTGGGTAGGGGAGCGTTGTATACGCGGAGAAACAGTAGCGTAAGCGGCTGTGGAGTGTATAGAAGTGAGAATGCCGGAATGAGTAGCGCGAATGCAGTGAGAATCTGCATGGCCGAAAGCCTCAGGTTTTTGGAGGAAGGTTCGTCCGCTCCAAGTTAGTCGGGAGCTAAGGTGAGGCCGGAAGGCGTAGCCGATGCACAGACGGTAGAGATTCCGTCACCACCAAAAGAGTTAAGCACAGGGACACATTTGAAGTCTCAGAGCCGGGTGTTGGTTCCGGTAGAGATCGAGGGAAGTTAGTACCGAAGTCTGGGATGGAAGATGGCGAGAAAAGCTGTGTGTATTTCTGAGGTGCCCGTACCGCAAACCGACACAGGTAGGTAGGAAGAAGATTCTAAGGCCAACGGGAGAAGGGTTGTTAAGGAACTCGGCAAATTGACCCCGTAACTTCGGGAGAAGGGGTGCTCCAGAGATGGAGCCGCAGAGAATCGGCCCAAGCAACTGTTTACCAAAAACACAGGTTTGTGCTAAATCGAAAGATGACGTATACGAGCTGACGCCTGCCCGGTGCTGGAAGGTTAAGAGGAGATGTGCAAGCATTGAATCGAAGCCCCAGTGAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCAGGTAAGTTCTGACCCGCA +>URS000003CBAA rRNA from 1 species +GTTTCTGCTCAATGGAACTCTAAATAGCCGCAGTACTCTGACTGTGCAAAGGTAGCATAATCAATTGGCCTCTAATTAAGGTCTGGAATGAACGAACTTATGGGTAGCAACTGTCTTAAAATAGTTAATTAAATTGATTAATAAGTGCAAATACTTATTCAGTTACATTAGACGAGAAGACCCTAGAAACTTATAATTATTTTGTTGGGGCGACAGAATTACATAAAAACTAATTTTATTTTACAAGACGTAAAGCAGAAAGAAAAAGTTACTCTAGGGATAACAGCATAATTTTTAATAGCTTGTGACCTCGATGTTGGACTAGGTAGATAGTTTTTTAGAAGAAAGCTTTCTTGGCTCTGTTCGAGCAATTTTAACCT +>URS0001415BDF rRNA from 1 species +TACGGGGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGTTCGTAGGTGGCTTGTTAAGTCAGACGTGAAATCCCTCGGCTCAACCGGGGAACTGCGTCTGAGACTGATGAGCTCGAGTGCAGGAGAGGAACGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCGGTGGCGAAGGCGGCGTTCTGGACTGACACTGACGCTGAGGCGCGAAAGCTAGGGTAGCAAACGGG +>URS00008DF9B1 rRNA from 1 species +ATACGTAGGGAGCAAGCGTTATCCGGATTACTGGGTGTAAAGGGAGTGTAGGCGGGAGTTACAAGTCAGATGTGAAAACTGTGGGCTCAACTCACAGATTGCATTTGAAACTGTAGTTCTTGAGTGAAGTAGAGGTAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACATCAGTGGCGAAGGCGACTTACTGGGCTTTAACTGTACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGATTACTAGGTGTGGGGGGACTGACCCCTTCCGTGCCGGAGCAAACGCAATAAGTAATCCACCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGCCCCACAAGCAGTGGAGTATGTGGTTTAATTC +>URS0001F9E606 misc_RNA from 1 species +AAGTCGTAACAAGGTAACCGTAGGTGAACCTGCGGTTGGATCATTAAAAAAAATTGAAGCTTCAACCCTTTCAAGGGTAGAAGCGTCAGTGCTCCTCTAACAAGGAGCTTGACTACTCCAATTTTGTGAACTTGCAACCAAAAAATGTTTTGATAGTGGTGAAAGATTTGGGCATTACCCGCCCAAGTTTTTCCCTTCTTGAAAAAATTGTTAACCCTGAAGAAATAACTTGTCTTTACCGTTTTTTATAAATAAAAATTAATAAACAACTTTTGACAACGGATCTCTAGGCTCTC +>URS00023BEA17 lncRNA from 1 species +GTAAAGGCTGCACAGGAATCGATGGAAGATGCTTGAAAAGCCTCATTCCCAGAAACATCTCCAGCTGCTTTTGCCGTGAACTATCAACCATTGCATTTTTATATCTTCTCTGTAAGGTAATTTTCATGTTTTTCTGTGCTGCAGAAAACTGTTTAAACGCTCCTGACTCTTCACTGAAGATATTGAGAACTTGGCTGTGCATAGCTTTTGAGCCAGTATAGAGAGTTGCATGGATATCACCTTGTTGCAGAAAAAGATCTGCGAGCTCAGACACAGGAGACAAGATAGTTGATCTCTTAAACTCCTCAAACCTCATGTCAAGTCTCTTCCATGGTTTATCAGGACATGGATGACTCCATGTTGTTGTCTTAGTATTGTGATCAATAAAATAAGATTTTCCAGTGACTGCATCAGCTCTTTTCTCCCATCCCGGTGGAAGCGGAGCAGTATAGCTACTCCCAGAATTATAACCATATCCAATATCAGTATCAAGTGATATCCCCAGCCTTCTACATTGCTCAACGAACACTTGAAGACCTATAGAAGTAGCAGAGCCATCAGCAAGACTTCCACCTCCATTCGCGTTGTCCCTGGAGTAGGATTTTGAAAGCAGAACCGCTCCTCTTCCGGCACAACAAGACTTGCAAGCTTTCTTCCTACACTGTAAACATAAGAACACTGAGCCTGGCTCTCCCCCCAAACTCTTGGTAGTAGATCCAACTGAATTTTTGTTGACCTCGGCTCTGACTTGACACACTCCACCGTTACAACCCTCACCAATTCCGTTAATATTCCAGAAATCTATCACACTATTTTCCAGCTTCTCTAAATCAATAGAAGCTATAAGTTTATCTTCAAGAGAAGCCTGGCCAAGAACTGCAAGTGCATTTGCTATTCTGCATAATCTTCCAATATATAACTCGTCGTGTGAAGAGTTCGGATTAATTGTAGCAGGATCAATTCCAATTGATAACAGTGCCCTATCTCTTTCTGCTGCAGAAATATTCAGACGTAGCCGTTCAATTTCAAGTTTAATAGCTTCTATAAACTCAAGCTTCCTTCCCTGTATTATAATAGACATGCAGAAATTAAGTTTACAATTAAAATGGCAGTTTAAGAGGACATATAACATCTGAGATGAATAGCTGAACCAAGAAAGGAGTCATAAGATCAGAAATGGTATGTGACAAGATGAAGTAACATACCATGTTTGGACCCATAACGGACTTCAGACAATTTAAGTACAGATGAGAACCACTCTCTCTAGAACTTTTATCTTGTGAAGAAGACATGCTGGGAACAGTTTCAGGACCACTATATTGAACAACTGCTTGGTCTAAGAAATCAAGCATGTCATTTCCTCCACTTGCAACACATTCCACCGCTGGTTGTGGGAAGGGGTCAGAAGCAGAAACCTCTCCTGTCAAAAGGTCAAGCAGATTACTAGGAAACGGATCATTCTGTTGTACTGGTGTGGACACAGTTTCAGCCTGTAAAGATTTTGCGGCAAAAGGATTCGAGTCAGAACAAGATGAAAAAGGAACTTCATCTTCTTTTGTTTTCCCTGCAATCTCAGCCAATCTTCCTCCGGTACGTTCGCTAGTAAACATTCCTTTCCATGGAAGAGAAACTCCAAGGACTTCTATCTGTATCACAAACACAATGCAGAAGAAGTTTTGTTTTAAACTGTTTTGCTTTCATGTTGGCTAGTCATACTATTAGATAAATCATTAATTTTAGTCCAGAAAGTAGTTATTACCTGACCAAGAGTCATGGGGATTTTAAGAGAACCAGCTGGATAAAATGTAACAGAAACTACACGGGTCAAGAAATCCAGTTGTCCTTCTAGTTCTTCAAAATCATACAGCAGTGAAAGACTTGACGTATCTTTTTCATGGAGACGCGCACCAGCTCCAGTAATAGCAATATCCTCATCACGAATTGGCCCTGGTAAGGGTATCAGAAGATTTGTACCATTCGCACACCGCGGTATCGAAGCATCCTGTCCAAAAACCAGAAATACAGACAATCGTCATCCAGTTGAACTAGCTTGCATGCACGTCTACATGATACAATAAAAGAGAAGGGACAAGAGAGTCAGTCAACCTGAACAACTAATTTAAGGTCCTCTAAGTGGCGTCCAGTTTTCACGTTCACAGTGGATGGACATGTCAAATCATCCGCACCGTGTGATATTGTCAGTACAAGTTGACATACATGGCAAGGCTCACTGAGGTAGATAACTAACTCAACAGCATCTGCAGCTTGTGGACATAGCTGCAAAGTATATAAAAAGCAGGGGAAACTTTTAGCTCAAATTTTTGAGGGATGAGAACAAAGAGGTAATGTTTTATCCAAAAGGAGGTACCCAAGTTATGTCCTTCGTCTTGATACTCAGCAGACTGGACCCATCATTGGAAGTCTCAGACATGCTCGGTACAGGTTTCAGAAAGAAACCACCTGGCCGAGAAAGTACCTGACATGAAAAAAAGTTCCAGTGAGCAGTAACATTAACATAGCTGCAGTGAAAAATTGTATTAGTTTGCTTACATGTAAAGGCTGCACAGGAATCGATGGAAGATGCTTGAAAAGCCTCATTCCCAGAAACATCTCCAGCTGCTTTTGCCGTGAACTATCAACCATTGCATTTTTATATCTTCTCTGTAAGGTAATTTTCATGTTTTTCTGTGCTGCAGAAAACTGTTTAAACGCTCCTGACTCTTCACTGAAGATATTGAGAACTTGGCTGTGCATAGCTTTTGAGCCAGTATAGAGAGTTGCATGGATATCACCTTGTTGCAGAAAA +>URS00000FB6E5 piRNA from 1 species +TAATAACAGGTCTGATTGCTTCATTAAC +>URS00021C6D14 lncRNA from 1 species +CTAGATTTAGTTTTATCTGATATTAACAAAATTTCTGATAATATTATTTGTTGTTTGAATAAAGCACAAAAGTGCTGATTTTATGAGAAAAAAAATCCATGTAAATATCTTATTGAATTTAGATTCATTTGAAATCGAAGTGAAACATAACTGATGTTTACATTTGTGAAATTAGCTTTTGTGCATAACTGAAATTCACAAATTAATGTTTATTAAGTAGATGTACACAGTTATGTGGATATATTTGATTGGGCGAGTATTCATATTGACTTGACATGCAGATAATTGTTTGAACGAATTAATGTATTGACCGGAGATGTAGATAAATGTTAGGACGACTATTTAATGATTGGACGGATCTATAAATGAATTGACGAATGTATATACTGATTGACATATACAGTATAATTGGATGAATATATAAACGAATTGAAAGATATTTGAACGATTGACAGATGAATAAACGATAGACTGATATATGTATGATTAACGGATACGTTCATGATTGACGGATATATACATGGATAGACGGATATATAAATGATTGACAGATACATGTATATGCATGGCTAGACCGTTATATAAATGATTGACGGATATATGCATGGATAGACGAATATATAAATGATTGACGGATATATGCATGAATAGACGGATATGAAATTGATTTGAATGGTTTTTGAATGATTTGACGAGTATATTAAAAATGATTGAATGGTTTTTGAATGATTGGACGAGTATATTAAAAATAATTGAATGGATATATTTTTGATAAGATGGATATATGAATGGGAATTTGACGGATATATGACTTGACAAATAGATGCATGATATAACGGATATATGATTAATTTGACGGATACATGATTAATTGGACGATTTATAAATAATCGGATAGTATAAACCTCGATATGGGCGATATATTCATATACATATATTTGTTAAATGCTAGATATTATATATCATTCATCGGATGGATATTTTTTGTTTGCAAGGACTCATGATTGAGTAAATGATATTTGGTTATTTGTAAGAAATCCTTTTTTTATTTTTACGTTGTACGAGGTAGTTGCTTATAGTTTTAATATGTTTTTGTATGTTTTTTTGTTATGTTTTT +>URS00000D240F rRNA from 1 species +CGTGTAGGCGGCCAGGTAGGTCGGTTGTGAAAACTGGAGGCTTAACCTCCAGACGTCGACCGAAACCATCTGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCTAAGGCGGCTCTCTAGTACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACA +>URS000210495B rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCGAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCTTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAAGCAGAAAGCCACGGCTAACTACGT +>URS00023FD586 lncRNA from 1 species +GGAAGATCCAGCCTCGACAACGGTGGAATTCGGTAGAAGGTCACGGAGGTCAGTGAAGCTTCGCCGGTAGTTAAAACCAGAGGAATGTTCTAGAAACTGCAGAGGAGACGAAGGAATCGAATCCGTCTTGTGAACTTCCTCTTCCTTAACACCCTCCGTAATAGCTTTGTTGTTGTTGTTATCTTCTTCACCGTTTACCTTAGCTTTGATTTTACTAATCTGCAACCAAAAACTTTAAAAATCAAACCTTTTTGCATTTTCGTCTCTGAAGTTTCAATTTTTATGGTTTAAAGTCTCTAATATTGTACCTCTTGGAGAAGGGAATCATTGTCACGGCGGAGAGAATCGAAATTGTGGCGGAGAGAATCGTATTGACCCTTAAGAACACCGTAATCTTTTTCAAGCTGTTTTGTTTTCCACCGTGCACGACGGTTCTGAAACCAAACAGCTACTTGACGAGGTTGAAGTCCAAGCTCTTGTGCTAATTTAGTTTTCCTCTCAGGTTCGAGTTTATTCTCAAGTTCGAAATTCTTCTCAAGAGCTTTGACTTGGTCAACTTTTAATCTTCTCTTCTTCTCCGATAGACCCATGTGGTGGTGGTTGCCGGAATATTCCTCGATTAGTGTAGCATCTTCATCGTAACCTTCAAGCATAGATTGGTAATTACTTCCGTACCCTCTTGGACTCTGTTCATCTGTTGTGTAACCAAATGAATCTTGTCAATAAAAGAAACAGTGGAAAGTGAAGAAAGGATCACATGGGTTTTGTCTGACATTAGCAAAAAGTAGAAAGAACAAAGATGGTAATAAGAACCTGTAGAAGTGGAGATTAGACCACACATTGAATCTGAGCTGCTTAGTCTCTTCATGATGACACTTTAAAATAGTTCTACTCCAGCTTTTTCTTTATTATCAGAGAAATTCTTATGAAGTTTTGAAATTACAACAATGTTGTAAACATAATTGAGCTTCTTCACTTGAACAACAACATGAACAAAACGAGGAGACTTTAGAGGCTCAAATTAGAAAAAACAGAGAGAGGGATATGGATTGAGAAAGTCCAAAAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAGCTTTTAATCTAGAGAGCAATGGTTCTTTTCAATATGAACAAGTTGGTTTCACACTTTCTCTTTCTTTAAATAAACCAAACTTATCTTTCTTTAAATAAACCAAACTTAGAGAAAGGGTTAAAATGTAACTAAGGTTAAGTTTGAACCAATAGTTATACGGCTTGGCTCGGCTCGGCTTAGAACAAGTGGTGGAGTCTGTGATACGTCACCGTATGGGTTTATTTTTGGTAATGCTTAACCTTATTTTTTTTAAGGGTGTTTCTATTTTCTTAAACTTAAAAATTCAGAGAAATTAATAAACAGCGGATAGTAGAGAGATACGTAAGATGCATTTAAAAAGTAGATTTTTAAAATATAACATCCTCTGAAAAACGTCAGAAGGTACGTCACAGAAGATTTGATGACAAAATGATAAACTATAATTTGTTTGTTGATTAATGAAACCAAATGTAATTTTCCTGAGCAAACTTAAAATTCGATAGGATAAGTTATAAAATTATACGGATGGCATATTTAATCCCATATATTAGATGTGGGATATATTATTAAAAACATTAGTGTTATATGTTATTGTTGGCAACGCAGGGGAGTGGAAAGAAAGACTTGTGGGTGGGGGAACAAGACTGACGCAATTTGGGTTTGGTTCATTGAATTGTCCAAAAACTATGGGCTCGAACGGCACCGTCAAAAAATATCAATTCTTGTTTTGAA +>URS0000538100 piRNA from 1 species +TGCTGGCTGCTGGGTGGAGCATGTAGGG +>URS0000D6DD09 lncRNA from 1 species +AACTACGAGTCCCGACGTGCCGCGCGCGGCATGCAGAAGCTTCACTGAGCGGGCACTGGAGGTCGCGAGCACGTTGCTAGTGGGCGCGGCTGGCGGGGCCGGGGGCGGCAGGGGGCTAGCGTCCGGCTGAGCCCGGCGGGTTCCTGCACGCGGACCCACGCTTTGTCGGGCTGCTCTGCTGAGTGACACCGCCGTGGCATCCGAGGAGCTGTGGTCCAGCCTGCGCGGCGGGAAGCGGCGGCGGCGGCTCCAGCGTCCTAAGAGATTGCAACACCTGCTCGGTATACCGTGACTTTGGGAGGAACATCTGTCACTGTGAAGTATCTGCGCAGTCATGGCTACATGTCCACGCCGCCACCCGTCAAGGAGTATCTGCAGGACAGGATGGAAGAGACAAAGGAGCTTATCACAGAGAAAATGGAAGAAACAAAAGATAGACTCACTGAAAAGTTACAAGAAACCAAAGAAAAAGTTTCCTTTAAGAAAAAAGTGGAATAAGGTGCCTTATATAGCAGTATAGAAAATTCCTGCACTTTAACCCTTTGGAAACTATGGGCAAAGATACATGTGTCTGATTATTTTTTTGGTTAGTTGCCGAAATATACTAGTTCTCTGAGGGTTAAAGAAGTAAAATACCTTTTTAAAGTTAAATATCACTAGAAAAATCAGTGTTATTACAAGGGAAGAAATGAACCCAGTTTAAGAATTTGCCATCAGTAGCAGTATTAAGCAGTGGTTAATGTCTTAGAAGTCAGACTTCTTTTTCAAGGTCTTCAGAACCACACTTGATTTCTGTTTTGTTGCAGCTGTAATTGACACATACTAGGCAGCTGACTCCTTGAATATCCAGTGTGACCCATAAAATAGTCTGTTAATACCGGATCTTAATTTTTATGTTATTCATTAAGATTTTAACTATATTCAGTACGTAATTTGGAGACAAACTAGCATCATCAAAACTGCCTGTAAATAAGGTGTTTAGTCTTTCTATAAAAACAGAATAGAGCAGTTACCTACCAGTTAAAATATCTTATATGAAGAAAATAGAATAAAGATCCAGTCATATATGTAAATAAGATGTACTGATTGTACGTA +>URS000037851E rRNA from 1 species +TTCAGAGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATACGATCTGACCTCGGCATCGAGGATGGATGAAAGGTGGCCTCTATTTATAAGCTATCACTGAAGGAGGGGATTGCGTCTGATTAGCTAGTTGGAGGGGTAACGGCCCACCAAGGCGATGATCAGTAGCCGGTCTGAGAGGATGAACGGCCACATTGGGACTGAGACACGGTCCAA +>URS00003C52C3 rRNA from 1 species +ACCGGGGCGACGATCAGTAGGGGTTCTGAGGAGGAAGGTCCCCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGAAGGCAGCAG +>URS0000E650A4 rRNA from 1 species +GGTTGTCACAATACCATGTGCTGAGATCCTCTAAGCTAAGTAGCATTGGATCTGGTTATTACTTGGATGGGAGACCTCAAAGGAGCATGTAGGATTACAAGTA +>URS00007CE4A8 rRNA from 1 species +ACATGCAAGTCGAGCGGGGTCCAACCGGTGGCAACACCGGGGACGGCCGAGCGGCGAACGGGTGAGGAACACGTGAGCAACCTGCCCCGAAGTCCGGGATAACACCGGGAAACCGGTGCTAACACCGGATGTCCTCCCTCTGGCGCATGCCAGGAGGAGGAAAGGTTACGCTTCGGGAGGGGCTCGCGGCCTATCAGCTTGTTGGTGGGGTCACGGCCCACCAAGGCGACGACGGGTAGCTGGTCTGAGAGGACGGCCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCAACGCCGCGTGCGGGACGAAGGCCTTCGGGTTGTAAACCGCTTTCAGCAGGGACGAAACTGACGGTACCTGTAGAAGAAGCCCCGGCCAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGCTGGGCAAGTCGGGTGTGAAAACTCCAGGCTCAACTTGGAGACGCCACTTGATACTGCCCTGGTTTGAGTCCGGTAGGGGAGCGCGGAATTCCTGGTG +>URS0001630D6F rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGCAAGCCTGACCCAGCAACGCCGCGTGAAGGAAGAAGGCTTTCGGGTTGTAAACTTCTTTTGTCAGGGAAGAGTAGAAGACGGTACCTGACGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTACTGGGTGTAAAGGGCGTGTAGCCGGGTTGACAAGTCAGATGTGAAATCCTGCGGCTTAACCGCAGAACTGCATTTGAAACTGTTGATCTTGAGTACTGGAGAGGCAGATGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGTCTGCTGGACTGTGACTGACGTTGAGGCCCGAAGGCGTGGGGAGCAAACAGGATTAGATACCCCAGTAGTC +>URS0000B3F91B rRNA from 1 species +GAGACCCTACGGGGGGCAGCAGTGAGGAATATTGGTCAATGGGCGCAAGCCTGAACCAGCCACGTCGCGTGAGGGATGACGGTCCTATGGATTGTAAACCTCTTTTGTCGGGGAGCAAGGCCCGCCACGTGTGGCGGGAAGGAGAGTACCCGAAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGGTTTAAGGGTGCGTATGCGGAAGGGTAAGTCAGC +>URS0000D2A1B2 rRNA from 1 species +ACGATGAAACCGCGAATGGCTCATTATATCAGACATAGTTTATTAGATCCCCCTCCCCCTACTTGGATAACTGTAGTAATTCTAGAGCTAATACATGCACCAAAGCCTTTACTTTTCGGTAAAGGCGCAGTTATTAGATCAAGACCAACCGAAGCTTGCTTCGTTGTTTTGATGACTCTGGATAACATTAGCCGATCGCATGAGCTTGTCTCGGCGACGTATCTTTCAAATGTCTGACCTATCAACTTTCGATGGTAGGTGATATGCCTACCATGGTTGTAACGGGTAACGGGGAATCAGGGTTTGATTCCGGAGAGGGAGCCTGAGAAATAGCTACCACATCCAAGGAAGGCAGCAGGCGCGTAAATTACCCACTCCCGGCACGGGGAGGTAGTGACGAAAAATAACGATACGGGACTCTTTCGAGGCCCCGTAATTGGAATGAGATCACATTAAACACTATGTGGAAATCTATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAACTCCAGC +>URS00023D0B22 lncRNA from 1 species +TATTACAGATCGTGCCCATCCCACTTCTCTCTATCATAACCGAACATAACAACCTCAATCACAGCCTGGCATGCCCACCCCAGCTGGGGGTCCTCTGTCCATGCCTGCCCCGGCGGGGGTTTGCAGGCTAAAGGAGCCCGCCCCGATGGGGGTATAGGAGTTTAGTTTTTTAAATCCTATTACAGATCGTGCCCATCCCACTTCTCTCTATCATAACCGAACATAACAACCTCAATCCCATGAATCCTCTCCAAATCGCCCACTTCCCATAGAAATTGGCCCACTTACACTCCCATATAAATCCAACTCCAATCTCTTCCATTCTATACCAAATCCACATCACACTTCAGATTTCCATCAAAAACCTAGGGTTTCTCATC +>URS00009F6D70 rRNA from 1 species +GGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCCTAGGGTTGTAAAGCTCTTTCAGCTGGGAAGATAATGACGGTACCAGCAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCAAGCGTTGTTCGGAATCACTGGGCGTAAAGCGTACGTAGGCGGATATTTAAGTCAGGGGTGAAAGCCCGAGGCTCAACCTCGGAACTGCCTTTGATACTGGGTATCTTGAGTCCGGGAGAGGTGAGTGGAATGCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGCGGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGGTACTGACGCTGAGGTACGAAAGCGTGGGGAGCAAAC +>URS0001120C71 rRNA from 1 species +TACAGAGGTCTCAAGCGTTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTCGGGGCTTAACTCCGAAACTGCATTCGATACTGCCGTGATTGAGGACTGGAGAGGAGACTGGAATTTACGGTGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGGTCT +>URS0000F57DDE rRNA from 1 species +GTGTCAGCCGCCGCGGTAATACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGTTCGTTAAGTCTGATGTGAAAGCCCTGGGCTCAACCTGGGAATTGCATTGGATACTGGCGGGCTAGAGTGCGGTAGAGGATGGCGGAATTCCCGGTGTAGCAGTGAAATGCGTAGAGATCGGGAGGAACATCTGTGGCGAAGGCGGCCATCTGGACCAGCACTGACACTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGAAACCCCTGTAGTCC +>URS0000092071 rRNA from 1 species +CAAGTCGAGCGGCAGCGACAACATTGAACCTTCGGGGGATTTGTTGGGCGGCGAGCGGCGGACGGGTGAGTAATGCCTGGGAAATTGCCCTGATGTGGGGGATAACCATTGGAAACGATGGCTAATACCGCATGATAGCTTCGGCTCAAAGAGGGGGACCTTCGGGCCTCTCGCGTCAGGATATGCCCAGGTGGGATTAGCTAGTTGGTGAGGTAAGGGCTCACCAAGGCGACGATCCCTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCAGTGAGGAAGGAGGTATCGTTAATAGCGGTATCCTTTGACGTTAGCTGCAGAAGAAGCACCGGCTAACTCCGTGCCAGC +>URS0002572490 rRNA from 1 species +ATGGCGGCGGCGGTGGACCTGGAGGATGCGTTCGGCGCGGTCTTCGGCGAAGCCAAGCCGGAGGGCCACCCCACCGCGCGCCCCGTCCTCTTCCGCGCCCACGCCCGCTCCGCCGCCGCCCTCCGTGTCGTCGCCACCGACTGCCACTCCCTCGCCTGGGACTGCTCCCTCTCCGTCTCCGACCTCGACGACCTCAGAGACGATGTTGGAATCGGGGGCTCCTGGGCCGACTTTCTAGATTATCTCAAGTCCTCCTTGTCCTCCGGCGAGGTGAAGCTGCTCTTCGCCACCGACAAACTCCGCAAGTCAACCGGTTCTGATGGTGCAAAGCTTGTGGCTACCAAGGCAAAGGGCCTGCCTCGCATCACCATTTCTCTCCATAGTGTTACTGGCGCTACGACGAGTGATATCATAGCCGAGTTCTCGCTAGCGCTCTATGGAGCTTATAGGACTGCACGGGAGCTTGTATCCAAAGAACAAGAACAAATGTCACAGCTGATGGGAAATCTGTCAACTGAAAGAGAAAAGAACGAAATCATGCAAAAACAACTCGAATCTCTTTCTTTCCTAGACAAAAGAAAGGCAACAAAGCCAAAGCTGTTGGCTGATCAGGTTCCAAGTGTGTCTGCTGTGACTCTGGTCTCTGACCAAGTTACAGCTCCTGTGCAGCAGCAAATATCAGTACCTTCACCTAGTAAAGCCCCTCCTGCTAAAGTCACGAAGAGGGTAGCCCCCACGTCTCGGAGGGCAAGAGTGCGAGGAGCTCTGCTGCAAGATAATGAGGATGAGGATGACAACTGA +>URS00013FFE9F rRNA from 1 species +GTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTCACCGGTGAAGATAATGACGGTAACCGGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCACGTAGGCTGATATTTAAGTCAGGGGTGAAATCCCGGGGCTCAACCCCGGAACTGCCTTTGATACTGGGTATCTTGAGTATGGAAGAGGTCAGTGGAATTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAGGAACACCAGTGGCGAAGGCGGCTGACTGGTCCATTACTGACGCTGAGGTGCGAAAGCATGGGAAGCAAACAGGATTAGATACCCCTGTAGTCC +>URS00004AF1E8 rRNA from 1 species +ACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCTGGGCTCAAATGTATGTTGACGTATTCTGAAAGGGTAATACTTCTTCGGACAATATACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCGGGTTAAGTCCCATAACGAGCGCAACCCTATCATTAGTTGCCATCAGGTCAAGCTGGGGACTCTAAGTGAAACTGCCTACGCAAGTAGTGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTACGTCCAGGGCTACACACGTGCTACAATGGCCGGTACAAAGGGCAGCTACCTGGTGACAGGATGCTAATCTCAAAAGCCGGTCTCAGTTCGGATCGGAGTCTGCAACCCGACTCCGTGAAGCTGGAATCGCTAGTAATCGCGCATCCGCCATGGCGCGGTGAATACGTTCCCGGGCCTT +>URS0000EEE034 lncRNA from 1 species +GGCTTAGGGGAAAGTCCCCTTAGGGAAGTCCCTATTGACCCAGGAAGTCCAGCCAACTTAGCCACTTAGTCCCTCAGCCCTGGCTTGTGGAAGCAGAGATTCCTAATACGGCCCTCACTTCTCCACTTTCTCCACTGGGGTTGGAAGCAGTAGGAGTAGCTATAGAGGATGTATTAACACCAATTTACAGAGATCCTATTGAATTTACATCTCTCCAGCAGGTGTGATGCAAGGAAAACAAAGCTAATACCCAAAGTCTTTGAGCGTGGAAAGAGAGAAAGTCCACTTTAAGCGATGGAAAATCAGCCCCAATTCTGAAGGAACAACCATGAACAGATGATTTAAGGAGAATCAATTCTTTGCTCTTTGCAGAAGGAGCCAACAGAGTGAGATGAAGGGGACAACTTCAGATACTCAGGCAGAAGCATAAGTCCCCACCTGCTGACCTGCTGCCTGCTATCTTAACACGAATTCTTCATCTGAATGGATGAGCTTTTCACAGAGTTCCAAACTAAGGAATCCAGGAGTGGCCAATCCAGAGATTCATTCCTTATCTTTGACGAACATCTGAACTCCTGGCTCATCCTGTGGAATTCAGGCCATACAGGAGATCAAGGTCATTTGCTTTGGGTTAAATGAATGTTGCCAGGTGGAGGTTGCTAGAGGGAGAGTGCTATGTGAAAGTGCTGTATAAACTGCTTGCTTTTCACAAACAGTAGTGATTCTTTATCCTGTCCAGCCTGCCACAACTGGACCATCCTGTATGTAAGTCCCCTTAATAAATCCTGTGTCTCATTCACTGGCTTCAAGTCTCTTCCTGGGCCTCTTGAACGTGGTGCCACCTGTATTGAAGTCAACAGAAGTTCAGCACAACACAGGTCAAAATGAAGATTCTGACTCAGTAGGTCAGGATGTTCTAACGAGCTCTAGCTGACATGATACGTCAGGGCTGCAGACTAGCTTTGAGCAACAAGGTGCTAGAGAAATACCTATAGAACAACAGAGATGCAAGACAAATGAGTTGGAAGTTAAAAGATTTAAATTCTTGTCTTAGTTTTCTCATTAAAGAAAAGCTGTGTGACTATGAAAAAAAATGGCTCTCTGAGACTTTTGTTTGCTCATCCAAGATGAAAATATTGAAATGTATTATACAATAAACATTTGCAAACAG +>URS00017D46D8 rRNA from 1 species +TACGAAGGGGGCGAGCGTTGTTCGGATTTACTGGGCGTAAAGGGCGCGCAGGCGGCTCATTTTGTCAGGCGTGAAAGCCCCGGGCTTAACCTGGGAGGTGCGTTTGATACGGATGGGCTAGAGTTCGGGAGAGGAGCGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCGGTGGCGAAGGCGGCGCTCTGGACCGAGACTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS000151634F rRNA from 1 species +GTTGTATGGTTAAGTGACTAAGCGTACACGGTGGATGCCTTGGCAGTCAGAGGCGATGAAAGACGTAGTAACTTGCGATAAGCCCAGATTAGGTAGTAACAACCATTTGAGTCTGGGATTTCTGAATGGGGAAACCCACGTGCATAAGCACGTATCCTTACCTGAATACATAGGGTAAGGAGGCGAACCGGGGGAACTGAAACATCTAAGTACCCCGAGGAAAAGAAATCAACCGAGATTCCGAAAGTAGCGGCGAGCGAAATTGGACTAGCCCTTAAGCTTTACACGCGTTAGACGAACGGTCTGGAAAGTCCGACGATACAGGGTGATAGTCCCGTAGTTGACGACGTGTGTTCAGTGAAATCGAGTAGGGCGGGACACGTGATATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTACTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCTGTGAGGGGAGTGAAATAGAACCTGAAACCGTGTACGTACAAGCAGTAGGAGCACCTTCGTGGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCAGTGGCAAGGTTAACCATCTAGGGGAGCCGTAGGGAAACCGAGTCTTAACTGGGCGTTCAGTCTCTGGATATAGACCCGAAACCAGGTGATCTAGCCATGGGCAGGTTGAAGGTTGAGTAACATCAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACTTGTGGCTAGGGGTGAAAGGCCAATCAAACCTGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGGACGAATACTACTGGGGGTAGAGCACTGTTAAGGCTAGGGGGTCATCCCGACTTACCAACCCTTTGCAAACTCCGAATACCAGTAAGTACTATCCGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGGAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAATTACTACTAAGTGGGAAACGATGTGGGAAGGCTCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAGTAGTAAACCGAAGCTGCGGCAATGTGCTTTTGCACATTGGGTAGGGGAGCGTTCTGTAAGCGGTTGAAGGTGTGTGGTAACGCATGCTGGACGTATCAGAAGTGCGAATGCTGACATGAGTAACGATAAAGGGGG +>URS000043C123 rRNA from 1 species +CTACGTGCCAGCAGCCGCGGTAATACGTAGGTCCCGAGCGTTATCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGTTAGATAAGTCTGAAGTTAAAGGCTGTGGCTTAACCATAGTACGCTTTGGAAACTGTTTAACTTGAGTGCAAGAGGGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCTTGTAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGGTGTTAGACCCTTTCCGGGGTTTAGTGCCGTAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACTCTTGACATCCAGA +>URS0001C76D33 rRNA from 1 species +AAATTGAAGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGTAACAGGAAGAAGCTTGCTTCTTTGCTGACGAGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGATAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTTGTTGGTGGGGTAACGGCTCACC +>URS00012CC989 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCTTAATACATGCAAGTCGAGCGAGCGGCGGACTGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAAAGGTAGCTAATACCGCATACCATCAGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAATGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGCGTTACTCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATTC +>URS000186D9C0 rRNA from 1 species +ATTGAACGCTGGCGGAATGCTTTACACATGCAAGTCGAACGGTAGAGGGGGCAACCCCTCGAGAGTGGCGAACGGGTGAGTAATATATCGGAACGTGCCCAGTCGTGGGGGATAACGTAGCCAAAGTTACGCTAATACCGCATACGATCTAAGGATGAAAGCGGGGGATCGCAAGACCTCGCGCGATTGGAGCGGCCGATATCAGATTAGGTAGTTGGTGGGGTAAAGGCTCACCGAGCCAACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTGCGGGAGGCAGCAGTGGGGAATTTTGGACAATGGACGCAAGTCTGATCCAGCCATTCCGCGTGCAGGATGAAGGCCCTCGGGTTGTAAACTGCTTTTGTACGGAACGAAAAGGTCTCTCTTAATACGGGGGACTCATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCCGCCGCGGTAACAC +>URS00000166F6 tRNA from 1 species +CCTGGTTAGCATAATTAGTAATGCGATTGTTTTGTAATCAATAGACTGTAAGTGCAAGTCTTACACTGGGCTA +>URS000226E0A8 rRNA from 1 species +TGGCAGGTCGAGCGAACAGGATAAGGAGCTTGCTCCTTTGAAGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTACCTATAAGACTGGAATAACTTCGGGAAACCGGAGCTAATGCCGGATAACATATAGAACCGCATGGTTCTATAGTGAAAGATGGTTTTGCTATCACTTATAGATGGACCCGCGCCGTATTAGCTAGTTGGTAAGGTAATGGCTTACCAAGGCGACGATACGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGCGTAAGTAACTGTGCGCATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGAAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACGCTGATGTGCGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAAATCTTGACATCCTTTGAAAACTCTAGAGATAGAGCCTTCC +>URS000163AA4F rRNA from 1 species +TACAGAGGGTGCTAGCGTTGTTCGGAATTATTGGGCGTAAAGAGCGTGTAGGCGGTCAGGTAGGTCCGTTGTGAAAACTCGAGGCTCAACCTCGAGACGCCGATGGAAACCATCTGACTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCTAAGGCGGCTCTCTAGTACGGTACTGACGCTGAGACGCGAAAGCGT +>URS00008DBA8C rRNA from 1 species +AACAGCCAGAAATGGGCTGCTAATACCCGCATAAGACCGAAGCGCCGCATGGCGCGGCGGCCCAAAGCCCCCGGCGGTGCAAGATGGGCCCGCGTCTGATTAGGTAGTTGGCGGGGTAACGGCCCACCAAGCCGACGATCAGTAGCCGACCTGAGAGGGTGACCGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAAGGATGAAGTATTTCGGTATGTAAACTTCTATCAGCAGGGAAGAAGATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGCGATGCAAGCCAGATGTGAAAGCCCGGGGCTCAACCCCGGGACTGCATTTGGAACTGCGTGGCTGGAGTGTCGGAGAGGCAGGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCCTGCTGGACGATGACTGACGTTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTA +>URS0001561C6B rRNA from 1 species +CCTACGAGAGGCAGCAGTGGGGAATCTTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGAAAATGACGGTACCTGATTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTCCTGGGTGTAAAGGGAGCGTAGACGGCAGCACAAGTCTGGAGTGAAATGCCGGGGCTTAACCCCGGAACTGCTTTGGAAACTGTGCAGCTAGAGTGGAGGAGAGGTAAGTGGAATGCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACTGTAACTGACGTTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCTGGTAGTC +>URS0000A47F93 rRNA from 1 species +CAGAGGGCGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGCGTAGGTGGCCAGCATAAGGCCGCGGTGAAAGTCCGGAGCTCAACTCCGGATCTGCCGCGGCGACTGTGCGGCTTGGGCACTGTAGAGGCAGATGGAATTCCGGGTGTAGCGGTGGAATGCGTAGAAATCCGGAAGAACACCGGTGGCGAAGGCGATCTGCTGGGCAGTGGACCGCAAGGTCCAATAGCCGACACTGAGGCGCGACAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGGCACTAGGTGCTCCGGGGAGCGACCCTTGGAGTACCGGCGCTAACGCATGAAGTGCCCCGCCTGGGGAGTACGGCCGCAAGGCTG +>URS0001DD09C6 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGTTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGCGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGCCGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS0000594F9C rRNA from 1 species +GCAAGTCGAGCGAACGGACTAGAATCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCATAAGTGGAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGATAGTTGGTAAGGTAACGGCTTACCCCGGCAACGATGCATATCCGACCTGAGAGGGTGATCGGCCACGCTGGATCTGAGACGCAGGATCCAGACTCCTACTGTAGGCAACAGTAGGGAATCTTCCTCAGTGGGCGGAAGCCATGAACCGAACAACGCCGCGTGAGTGATGAAGGTCTTCGCATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTATCTGTGCACATCTTGACGGTGCCTAATCAGAAAGCCACGGCTCAGTACGTACCAGCAGCCGCGGTAATAGGTAGGTGGCAAGCGTTATCCGGAATTATTGGTCGTAAAGCGCGAGTAGGCGGTTTTTTAAGTATGATGTGAAAACCCACGTCTCATCCGTGGAGGGTCATTGGAATCTGGAAATCTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCGGTGCCGAAGGCGACTTTGTGGTCTGTATCTTCCTCTGATGTGCGAAAGCGTGGGGATCAAACACGATCAGATTCCGTGGTAGTGCTCGCCCTAAACGATGAGTACTAAGTGTTAGGTGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTC +>URS000230E4F6 sRNA from 1 species +GACCAATATGATCATCACAATAAATTAGTATACGCAGTAAGGAAAGTGACCGATGATCAAGTATATCACTTCGACTCTAATCAAGGAAAACACAATAAAGTAGTTTAAGCTACCGGCTGTAGCACTGAGAATTCTTTATTAAGAAAGAGGCATTATTTAGCGTTCTCTTTCAATCCACTTCAACTTGCGAAATATCTCTTAACAATCTCAATTTTTTCTTCTTTTGTAATAAAAACATACCAGATGTACCAAATCCAATCCTTGGATGCATAATTTGCTTGAGGGTGGCATAATCTTCAGCCTTAATCAATTGTGAAACTTCATTCCTCGTAGTTTCATCCTAATGCGTTCAATCTGTTAGTTCCACAGTACTTCCATAGTAAATATAGTCCTAATACTTACTTGATCTAATTTGAACCACTCATCTACTAATTCTTGCAAAATCGGATCCATCTTGCCAAATGGGAATTGTTACCATTTGTTTGCTACACACACAATACACGTATCTCATCACCTCGTTTAACGCGTCCTTACGCCGTGGTATTTCGTATCCGTTTTCTTACAAAAATGATTTTAATAAAATAGACTCAAAAACAAAAAGTAGTAATAATATTATACTCATGACCTCCAATTATTCTAGAGAATTTCTTAAAACATTAGCTGCAAAAAGAAGCCTAGTAATTTGAAAGCAGCAGTTAATTACGATATATACCGCTTACAAAAAGGAGAAATTGGAAGAATTCAAGACCTGACGTCAATTCGCAAGCTGAATCGTTTTAATTAATAGGCGTCGGACAATGGGATTCACTTAGGCTTGGCGACGTTCTTGTCTAAAAATTGCTTGTCGGAATGTGTCATTGAACCGAAAAGGTTTGAAGCTCTTGACTAATAAACAACAGTAACTGATGTTAACTTTTTATAGAATATCCCAGGTTTCAATTCAACACGTTTATTCATAAATCTCAATCTATGTTATGCAGATGAGATTGAAAATCAATACCATCAAGTACAACTTCTCTAAACTGAACGGGTTAAGTATGGAATGGTTTAAAGTTTTAAGTACTGGATCACTCCAAGCTTTGAGATACGATAAGAAAATTAGTGTTAGTACATTTGTGGCTTTAATCACACCTTTTCCATAACCAGGAACTAAGTTTTCAAAGATCTACTATTCGATGATGAAAAAATAGCATTCATAAAGTTGATAACAGCATACATAAATGAAACTGAAATATTGAGGAGGTAAGGCAAACATGATGACCATAGTTTCAATTGACTATGTAATACGTACTATGGCTCATTAAAACCTATCAAAGAAAGAGAAATACGAATAAGAGGAAATTCAAGCCTGTTTAGAATGAGAAGAGAATAAAGATTGGGTTTTGGCGAAGGATACGCTGTTGCATTAAAACAGCCTTAAATAGGTTCTATAAATGGTTAGCATGTAAAAAAAATTAAAATTGAATCATGAAAAAATATTAAAAAATAATAAAAAAACCTACCACTTAAGAGCTTGTTCAAATTGTTGAGACGAGAACCAACACTGACATCAAGAATATTATCACCAATTTCAACAAT +>URS000119B5B9 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGCGTGGCGGACGGGTGAGTAATGTCTGGGTAACTGCCTGATGTAGGGGGATAACTACTGTACACGGTAGCTAATACCGCATACCATCGGATGTGCCCAGATGGGATTAGTTAGTAGGTGGGGTAAAGGCTCCCCTAGCCGACGATCCCTAGCTGGTCTGCCAGGATGACAAGGCAAACTGGAACGGAGACACGGTCCAGACTACGACGGGAGGCAGCAGTGGGGAATGTGGAACAAGGGACGCAAGCCGGATGCAGCCATGCCGCGTGGAGGAAGAAGGGCGTCGGGTTGTAAAGTACTTTCAGCGGGGAGGCGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATAC +>URS00021073CB rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACGGACGAGAAGCTTGCTTTTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCAAAAGTGAAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGGGTAGCCGGCCTGAGAGGGTGACCGGCCACAATGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATAACGGCCTTCGGGTTATAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAGTGGGTAAAGAAGCACCGGCTAACTACGTG +>URS0000A0DC81 rRNA from 1 species +TAGTCCACGCCGTAAACGATGGATACTAGCTGTATGTCTACTTCAGGTAGATGTGTGGCTAAGCGAAAGTGATAAGTATCCCACCTGGGGAGTACGATCGCAAGATTGAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCAGGGCTTAAATGTACGTTGCATGATTTAGAGATAGATCTTTCTTCGGACTACGTACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCAGGTTAAGTCCTATAACGAGCGCAACCCCTATCGTTAGTTGCCAACAGGTTAAGCTGGGAACTCTAACGAGACTGCCTGTGACAAACCGCGAGGAAGGTGGGGATGACGTCAAATCATCACGGCCCTTACGTCCTGGGCCACACACGTGCTACAATGGCCGGTACAGAGAGCACGCCACTCCGCGAGGAGGAGCGAATCTAATAAAACCGGTCTC +>URS0000C91A8A tmRNA from 1 species +CAGGTTTATATCCATTACAAATAGACTTATATTCGTGCTGCCGGCTTGCCGGCTATAGCGCTAAACGGTTTGCGGAATAAGCGTTGCGGACCCGGGGGCGGTACCCGGCGCCTCCACCAGTTTTGTGGCTTTCAATACATCACTGGGGTATTTTTGGGGGCGAAACAGGATCGACGCGCGTGGTAAAGGCAGACTTTGTGCTCGGCATGGTACCACCGTTATCGGGCTATAGTCGTTAAATGCCAACGACAACTTTGCGGGCGAAGCCCGCCTCGCTGCTTAACTTAGGTTAGGTAAGCGCGGTTCGGGGGGCACCGGGCAACAGAAGCCCCCCACT +>URS000232319A pre_miRNA from 1 species +GGGGGGAGGTCGGATTCTTGGCTATGTCCCCGGCGCCCTGTGCTCCTGGGCCTGTGCTGTTGGATTCGTGCTCCTGGCCGGACAGCCCCCT +>URS000259C9B7 misc_RNA from 1 species +GTGAATCATCGAATTTTTGAACGCAAATTGCACTCTCTTCTGTGAGTATGCCTGTTTGTGGTTCAGCCTAAGAAAAATCGACATATTCGCTGTTTCGCGGTTTCTTTCGTTTGCAGTTTTGTCATCTTAAACCTTTTTGTTTTAAGCGGCTTAAAATTTTCTTTACGTTTCCACTAACTTTTCTAACATTTACTTACTCTTTTAATGTATCGATCTTTATTAGACGTGGCCGTTTCATCGGATCGCGTCCATATATATTTCGTTAACTTA +>URS00009D7A85 rRNA from 1 species +GATGAACGCTAGCGGGAGGCTTAATACATGCAAGTCGAACGGTAACAGGTCTTCGGATGCTGACGAGTGGCGCACGGGTGAGTAACGCGTACGTATCTACCTTGTACACGGGGACATACACTGGAAACGGAGTAAATACCCGATAGTCTGGAAACAGTAAAGCTACGGCGGTACAAGATGGGCGTGCGTCTGATTAGCTAGATGGTGAGGTAATGGCTTACCATGGCGATGATCAGTAGGGGGCGTGAGAGCGTGATCCCCCACACGGGTACTGAGACACGGACCCGACTCCTACGGGAGGCAGCAGTAAGGAATATTGGACAATGGGCGGAAGCCTGATCCAGCCATCCCGCGTGTAGGATGACTGCCCTATGGGTTGTAAACTACTTTTATATGAGAAGAAGCGCCTTTCTGCGGAAGGGTTTGACGGTATCATATGAATAAGCACCGGCTAACTCCG +>URS0001E0D339 rRNA from 1 species +TACGGAGGGTGAGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGCTAGATGTGAAAGCCCCGGGCTCAACCTGGGATGGTCATTTAGAACTGGCAGACTAGAGTCTTGGAGAGGGGAGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACATCAGTGGCGAAGGCGTCTCCCTGGCCAAAGACTGACGCTCATGTGCGAAAGTGTGGGTAGCGAACAGG +>URS000061A91B rRNA from 1 species +TAGGGTTTGATCCTGGCTCAGAACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGATCCCTTCGGGGATAGTGGCGCACGGGTGCGTAACGCGTGGGAACCTGCCCTTAGGTTCGGAATAACTCAGAGAAATTTGAGCTAATACCGGATAATGTCTTCGGACCAAAGATTTATCGCCTTTGGATGGGCCCGCGTTGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCATAGCTGGTCTTAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCCTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGAGCTAGCGTTGTTCGGATATACTGGGCGTAAAGCGCACGTAGGCGGCGCCGTAAGTCAGGGGTGAAATCCCGGAGCTCAACTCCGGAACTGCCCTTGAAACTGCAGTGCTAGAATCCTGGAGAGGCGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAANGCGACTCGCTGGACAGGTATTGACGCTGANGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGATAACTAGCTGTCCGGGCTCAT +>URS00023F57E9 lncRNA from 1 species +GGATCTGAATCCTAGACCCTTTTAGAACGCCAGGGTCGTAGCCTTTCCGCCAAGTCACCGGAGGAGAACCCATTCCCCCGCCCTTCTCTCCACCGGCCTCCTGCTCCAAACCTCTCTGCTCTGCGCTCTGGGCGTCACCCACTCGATCGATATGAAGAGGCCGAGATGTGTTCTTCTTCCCGGGATCTCGATTTTTCGTCTCGTCCTCATTTCTTGCGTCTTTCTGTGCTCTATTCCTAGTAAAGCAAACCAATTCTCTTCTTTTTCTTTAAAAAAATGTTATTTGTAAATATTTTGCATGGATTTCCCTCTTATTTAAAGACAGGAAAGAGAATAAATTGACTGCATGCATTTGGAGAAGTCTATCAAATTTTCTTGGGAACAGTTGGGAGATTTCACAGGTTTCTAATTCATATCGTGAGAGAGAGTAAGAAAGGATAGAGGTTGGAAACTGCTAAAATCTAGTTGAATTTTAGATATGATTTGCAGGAGTAACAGAAATAATTAAGAAAATAAGAGTTGGCTGCCAGTTTGGATAATAATGGTAAGAGGACAGGTTTTGTTTAGGATAGGTGTGAAATTATTATCGTTCATCAGATTCTTTATTGTTCATGAGTTTTTTTCTCCTCCGAAAAAAAACTTAAATATGAGCTGGAGGGTGTTTCCTAGGTTTGTTTTTTATGAATTGTTTTTCGTTTTCTTTGTGCTATTGCAATGGTTGATTTTGTCCCCCAATTGCAAATACATTATTTTCAGTTCCTTGAAAATTAATATAGGAATTTGAAGCAATGAGTCAGAAAATGAAGATCAGCTAAAATTTTTTGGAGCATGCTTTTCAGAGTCAAAGCATACGACTATGCATGTTGACCTACAGTGCTTGATTGTTGCATGGGTAGTTTCTTTACCTAGAGAAATTTGTGGCTTACTATATCAACTACAAACATTATGGAAGTTACATCCAATCCAAGAGAGAGAGAGGGGTCATGGAATACTAGGAAACATTTGGATATTGAGTTATAAAGGAATTTGTGGTAGTTGATAGAATAGACGAAATAATTCAGTGCAAATGGAAAAGGATATTTGCTTTTATTTTTTTTTGTTCTTGCCATATGTATCTGTTGATTTATTAAAAGGTTAAAATTTGCAAGCACAATAAAGATTCATGGTTCGTGTGGTTTGATATCTTTCCATAAAATGCTCTCAAGTTGTCAACTTTAATAGTATTGGCTTCTATGATCATGGGTGAAGGTTTTAGAGTTTTCAGATTGGGG +>URS0000642F76 tRNA from 1 species +GGTGGCTCAGTGGTAGAGCGCTTGCCTTGCATGCATGAGGCAGGCCCTGGGTTCGATTCCTCAGCACCA +>URS0000D63273 lncRNA from 1 species +CTGTCACTTAAATCTTTGAGCTGTGTAGCCCACAAACTATTGCTAGAAACCAATGACGTTGTAAAGCAACTTTGAATTGGGCTTCCAGGTGGTGCCTGTTAGAAGGGCCTAAGAGCAAGGCATCATGGGAGACCGGGCGCCATGAATGTCTCGCTGTCGACTGGGAGGTTGCAAAGCGGCTGCTGCTGTTTTCCTTCCAATCCCGGAGCCAGCTGTCTGGCCCACAGCTCCAGATATATCAAGATTGAGACACATTTCCAAGCACCAAGAGACTGCTGGGATCTCTCTCTGAATTGGTACCTAAGTACTTTGGCCACCTCAAGCGAAGAGTTGACTGATTGGAAAAGACCCTGATGCTGGGAGGGACTGGGAGCAGGAGGAGAAGAGGACGACAGAGGATGAGATGGCTGGATGACATCACTGACTCGATGAACGTGAGTCTGAGGGAACTCTGGGAGTTGGTGATGGACAGGGAGGCCTGGCGTGCTGCGATTCATGGGGTTGCAAAGAGTCGGAC +>URS00007413E9 rRNA from 1 species +TACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGGCCTTCGGGTTGTAAAGTACTTTCAGTCGTGAGGAAGGTGTTAAGGTTAATAACCTTAGCAATTGACGTTAGCGACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGGGCACGCAGGCGGTTAATTAAGTTGGATGTGAAATCCCCGGGCTTAACCTGGGAATGGCATTCAAGACTGGTTAGCTAGAGTCTTGTAGAGGGGGTAGAATTCCATGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAATACCGGTGGCGAAGGCGGCCCCTGGGACAAAGGACTGACGCTCATGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACC +>URS000236D244 lncRNA from 1 species +AGGCGGTTAGTGAGGTAAGCGCTAGCATGTAACTCAAGGGATATGATAACATAATGACATGTCCAAAAACCAGTCAAAACCATAATGTACACATTTATATACATATATATAAGTTTTCATGATAGGGAACAAGGTTAAAGCATGAGGTTATCATTAACTTGGACTGTGTAGCTCTAACCATTCTAAAAACACCTATGAGCTATATGGGTCTGGATCACCCCACTGAAAGGGCCCTAGTGTATGTTATCCACATGAGCCAGAGAATTCTAAGGAAAGCCCAGGGAATCTATGACCCTACTCTAATCATACGTATATATATATATATATATCAAATAAGAACTATGCACACAGTCATGAAGGCCCCCACACGGAAAATATGGTTTCTAGTATAGGTCGCCCCTAAGGCCTCC +>URS0002273E9A tRNA from 1 species +GTTTATGTAGTTTATAAAAACATTACATTTTCAATGTAAAAATAAAAGGAATCTTTTCATAAATA +>URS00015EFEAA rRNA from 1 species +CCTACGGGTGGCAGCAGTGAGGAATCTTCCACAATGGGCGCGAGCCTGAACGAGCCACGTAGCGTGAAGGATGACTGCCCTACGGGTTGTAAACTCCTTTTATAAAGGAATAAAGTGAGGCAAGTGAGTCTCTTTTATTTGACTTTATGTATTTGGATCGGCTAACTCCGTGCCAGCAGCGGCGGTACTACGGAGGGTCCGAGCCTTGTCCGGATTTATTGGGTTTAAAGGGAGGGTAGATGGGTTGATAAGTCAGTTGTGAAAGTTTTCGGCTCAACCGTAGAATTGCATTAGATACTGGTGGACTTGAGTACAGTAGAGGTAGGCGGAATTCGAGGTGTAGCGGTGAAATGCTTAGATATAACGAAGAACTCCGATTGCGAAGGCAGCTTACTAAACTGCCACTGACGTTGAGGCTCGAAAGTGTGGGTAGCAAACAGGATTAGATACCCGAGTAGTC +>URS00016A3A0B rRNA from 1 species +TACAGAGGTCTCGAGCGTTAGGCGGAATTACTGGGCGTAAAGCGCGTGTAGGCTGCTCAGCAAGTCGGATGTGAAAGCCCTGGGCTTAACCTAGGAAGTGCATTCGAAACTTCTGAGCTAGAGTTCTGGAGAGGAAGGCGGAATTCTCGGTGTAGAGGTGAAATTCGTAGATATCGAGAGGAACACCGGTGGCGAAGGCGGCCTTCTGGACAGTGACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS0001B06EC2 rRNA from 1 species +AGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGTAACAGGAAGAAGCTTGCTTCTTTGCTGACGAGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACCGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCTGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTGAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTC +>URS0000A96D3A lncRNA from 14 species +CAATTCCCAATGTCCTCTGAAACCTTGAATACTCCTTTCTGCCTTACACACTTCTTCTCACACAGGTCTGCAGTATTCCCTCCAAAATGGCCCAGCAAGCTTTGATTACAGCTTCAAAGTGTTGCTCTGCTAGCTGCCCCCCCTCCCCATTCTTCCAGTCCCTCCATAAACCAGACCTCAAGGCCTGTGGACCAGATGTTCAGGTTTCTCACAGGGAGTGGCCCACTCCCAGGACTAATTATCCATATTAGTGCAAGTTTTCACTGCTTTGAGACAATATCGACACCAAGCGATTTACGGGAGGAAAAGACTTTTGTTTTGTTTCCACAGATTGAGGAGAATGAAGTTCATCATGTCAGGGAAGCCGTGGCAATGGGCGGCTCTGCTGGGCTTGCGTGTCTGTCAGAGAGGAGGGAGATTTGGGCTGAGACCAGCGATAGATTGGTCGAGCGCGGGAAGAAAAGGAAGAGGAGCGAATTAAATAGGAGCGCCG +>URS0001F14516 rRNA from 1 species +GATGAACGCTGTCTACAGGCTTAACACATGCCAGTCGAGGGGAAACGACGGGGAAGCTTGCTTCCCCGGGCGTCGACCGGCGCACGGGTGAGTAACGCGTATCCAACCTGCCTCTGACTGAGGGATAACCCGTCGAAAGTCGGCCTAATACCTCATGGCATCGTCTGCGGGCATCCAACGACGATTAAAGATTTCATCGGTCAGGGATGGGGATGCGTCTGATTAGCTTGTTGGCGGGGTAACGGCCCACCAAGGCTACGATCAGTAGGGGTTCTGAGAGGAAGGTCCCCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGGGAGCCTGAACCAGCCAAGTAGCGTGCAGGATGACGGCCCTATGGGTTGTAAACTGCTTTTATGCGGGGATAAAGTGAGGGACGTGTCCTTCATTGCAGGTACCGCATGAATAAGGACCGGCTAATTCCGTG +>URS000021B5FE rRNA from 1 species +GAGTTTGATCCTGGCTCAGATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGCAGCATGATCTAGCTTGCTAGATTGATGGCGAGTGGCGAACGGGTGAGTAATACATCGGAACGTGCCCTGTAGTGGGGGATAACTAGTCGAAAGATTAGCTAATACCGCATACGACCTGAGGGTGAAAGTGGGGGACCGCAAGGCCTCATGCTATAGGAGCGGCCGATGTCTGATTAGCTAGTTGGTGGGGTAAAGGCCCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTCCGGGTGTAAAGCACTTTGTCCGGAAAGAAATGGCTCTGGTTAATACCTGGGTCGATGACGGTACCGGAAGAATAAGGACCGGCTAACTACGTG +>URS0000E81CC4 lncRNA from 1 species +TTCCAATTTCTGTCTTGCGTCTCTGTCCACTTCACACTACTCGTCTATAACTGCCAGTGTTGGAGGAAGCAAGTAAAGGAATAGGGAAGGCCTTACAATTTAGAGTATGAAAAGTATGACCCCCAAGCTGATTATGAGGATCATCTCTATCTCTCATCATCCCCACTCTGTTAAGTGACAAAGAATTTTAGGGGAGTTGTAATTCATGGCACCTGAAGGATCAGAGGAGGAAAAGGAGGAAGAAGGACATTTGAATTCACTTACTTCAGAGAGAAAATGGTTTGAAAACTTCCTAGGCACTAAGAAAGCTTTCAGTGACATCCTTTACCCTTGGAGGACATGCTGCCAAACTCTGAATTCATGGAACATTTATATGGTTCCATTAATTACAAATTAATATGACCTGTACATGGAGTCAGTCTGGAGCATCTCAAGGTAT +>URS00004DE10A rRNA from 1 species +GAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTTTCGGGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGGGTGATCTGCCCTGCACTCTGGGATAAGCCTGGGAAACTGGGTCTAATACTGGATAGGACCATGGGATGCATGTTCTGTGGTGGAAAGCTTTTGCGGTGTGGGATGGGCCCGCGGCCTATCAGCTTGTTGGTGGGGTGATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGTGTCCGGCCACACTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGGGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGTATCGGCGAAGCTTGCGGGTTTTCTCGCAGGTGACGGTAGGTACAGAAGAAGCACCGGCCAACTACGTGCCAGCAG +>URS0001FF2370 rRNA from 1 species +GACGAACGCTGGCGGCGCGCCTAACACATGCAAGTCGAACGAGCGAGAGAGAGCTTGCTTTCTTGAGCGAGTGGCGAACGGGTGAGTAACGCGTGAGGAACCTGCCTCAAAGAGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATAAGCCCACGGTGCCGCATGGCACAGAGGGAAAAGGAGCAATCCGCTTTGAGATGGCCTCGCGTCCGATTAGCTAGTTGGTGAGGTAACGGCCCACCAAGGCGACGATCGGTAGCCGGACTGAGAGGTTGAACGGCTACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAATCCTGATGCAGCGACGCCGCGTGGAGGAAGAAGGTCTTCGGATTGTAAACTCCTGTTGTTGGGGAAGATAATGACGGTACCCAACAAGGAAGTGACGGCTAACTACGTG +>URS0000F8DDB5 rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGTGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCAAGTGTAGCGGTGAAAATGCGTAGAGATTTGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACACTGAGGCGCGAAAGCGTGGGGAGCGACAGGA +>URS0001627BDD rRNA from 1 species +CACGGGGGGAGCAAGCGTTGTTCGGAATCACTGGGCGTAAAGGGCGTCTAGGCGGTCAGATAAGTGGGATGTGAAATGCCCCGGCTCACCCGGGGACCGGCATCCCAAACTGTCTGGCTTGAGTATGGGAGAGGATGTGGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0002226441 misc_RNA from 1 species +AACAAGGCGTACCTGCGGACCTGCGGAAGGATCATTACGAGAGTGTCACCACTCCCAACCCATTGTTTACCTACCCGTCCACCGTGCTTCGGCAGGCAGCCCTGTGGGACAGAGCCTCGCCCCCTTTCGCGGGGGGTGCCTGCCGCTTGCCAACCAAAACTCTAGCTGTTTTAGTACCATCTGAGTCTTCCACAAATGAACAAAACTTTTAGCAACGGATCTCAGATCGGAAGAGCACAC +>URS00002E10EA rRNA from 1 species +AGGATGAACGCTGGCGGTCTGCTTAACACATGCAAGTCGAACGGAGTAGCAATACTTAGTGGCGGACGGGTGAGTAACGCGTGAGAATCTACCTTCAGGACGGAGACAACAGTTGGAAACGACTGCTAACCCCCGATGTACCGAAAGGGCAAATATTTATAGCCTGAAGAAGAGCTCGCGTCCGATTAGCTAGTTGGAGAGGTAAAAGCTCACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAAGACCGCGTGGGGGAAGAAGGCTCTTGGGTTGTAAACCCCTTTTCTCTGGGAAGAACACAATGACGGTACCAGAGGAATCAGCATCGGCTAACTCCGTGCCAGCAGCCGC +>URS000137F4FF rRNA from 1 species +CCTACGGGTGGCAGCAGTGAGGAATATTGGTCAATGGCCGAGAGGCTGAACCAGCCAAGTCGCGTGAGGGAAGACGGCCCTACGGGTTGTAAACCTCTTTTGTCGGGAAACAAAGCGAGTCACGTGTGCCTCATTAAGAGTACCCGAAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGAGGGATGCGAGCGTTATCCGAATTTATTGGGTGTAAAGGGTGCGCAGGCGGAGGTGCAAGTCAGTGGTCAAATTGCGGGGCTCAAACCCGTACTGCGGTTGATACTGCATCCCTTGAGTGCGCGAGAGGTATGCGGAATGCGTGGTGTAGCGGTGAAATGCATAGATATCACGCAGAACTCCGATTGCGAAGGCAGCATACCGGCGCGCAACTGACGCTCATGCACGAAAGCGTGGGTATCGAACAGGAGTAGATACCCGAGTAGTC +>URS0000A3AF07 rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGTCTTTTAAGTCAGTGCTGAAATACTCCAGCTTAACTGGAGGGGTGGCATTGATACTGGAAGACTTGAGTGTAGTCGAAGTAGGCGGAATTGACGGTGTAGCGGTGAAATGCTTAGATATCGTCAAGAACACCGATAGTGAAGACAGCTTACTAGGCTACAACTGACGCTGAGGCACGAAAGTGTGGGGATCAAACAGG +>URS00010B2DDF rRNA from 1 species +TACGGGGGGAGCAAGCGTTGTTCGGATTTACTGGGCGTAAAGGGCGCGTAGGCGGCGTGACAAGTCACTTGTGAAATCTCCGGGCTTAACTCGGAACGGTCAAGTGATACTGTCGTGCTAGAGTACAGAAGGGGCAACTGGAATTCTCGGTGTAGCGGTGAAATGCGTAGATATCGAGAGGAACACCTGCGGCGAAGGCGGGTTGCTGGGCTGATACTGACGCTGAGGCGCGAAAGCCAGGGGAGCGAGCGGG +>URS0002390407 lncRNA from 1 species +GACAAGAAAACAAGGGGAAAGAAGTACCTAATGAGATTATGAAGGAAGAAACTGACCGTGGACTTGCACAAGACCGACTGGACTCTGATTGCTTCGAGGTGGGTAAAAAATTACATTAAGAAATCGTCCCTACTAGGAACGATTAGTTAATGTAAATTTTGGGCTCAACTCGTACCTTGAATCCAAAATTTTGGATTTGGAATTAACGGAATTGGGCAGGTTTTTTGGGGGAAAGGTTACTAAATTGGTATAAAGGGGAGGGTGGAGAGTGTATATGGTGAACTTGGGTTAGTTTAGAGGAGTTATGATTTTTGGTTTGAATCTTAGATCCGAAATATGAGCAATTTAGCGGGGATTTGGGAAAAAATAATTGGGGATCTAGGATGAGGAGGGGGTGAGGAACCGCCATAGGGCGATTTCCAAAAACTAATTTGGAGCATGGGAACCGTCGTGGGGCGATTTTCGGCGGGTGATTTGTGGCGAGGCAGCAGGGGAAATCCTAGGCGGCTAGAGTTTGATCTGTTTATAGAGATGAGAGTAAAAT +>URS000226779B rRNA from 1 species +AAACTGGAGAGTTTGATCCTGGCTCAGAACAAACGCTGGCGGCGTGCTTAACACATGCAAGTCGTACGAGAAAGTCCGCTTCGGCGGATGAGTAAAGTGGCGCACGGGTGCGTAACACGTG +>URS0001472A94 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGAATCATTGGGCGTAAAGCGCGTGTAGGCGGTCCGGTAAGTCCGCTGTGAAAGTCGGGGGCTCAACCCTCGAATGCCGGTGGATACTGTCGGGCTAGAGTGCGGAAGAGGCGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGAGTGGCGAAGGCAGGTCTCTGGGCCGACTACTGACGCTGGAGAAGCGGAAAAGCATGGGGGAGCGAAACGGG +>URS00006461F6 tRNA from 1 species +TCCCTGTTGGCTCAGATGGTAAAGCATCTGCCTACAATGCAGGAGAACCAGGTTTAATCCCTGGGTCAGGAA +>URS000199F6C3 lncRNA from 1 species +GGAACCGCGGGCACGGCGGGGCAGGGAGCGCGCCCGGGGCTGGGAGACTCAGGGGCGGGGCAGCCCCGGGACAGCGCCGGGACAGCGCTGGGATTGGACTGGGATAGCCCGGGACAGCGCCGGGACAGCGCCGGGACAGCGCTGGGATTGGACTGAGGAGGGCCAGAAGGAATGAAATCCATCGTGGCTCAGCCTGGGCTGGTGAAAGCGAGCTGGGAAAGGCAGGAGCAGGGATTCCAGCATTTCCCTGAACCACAGGAAAATCCTGGGAACGGAGAGGAGCAGAGAGGGGGAGATTCCGAATGGGGATTTGGAGCATCCAGCCAGTTTTACTGGGACTCCTTTCAAGGGCTGCCCGGAGCCCCCCGCGGTAAATAGTGCACAGCTCGGGCCAGGAGGATTTCCTCACCGCTGGGACTCTTAATGTCGAAAGCAGAGGTGTCAAACAAGGGGCTCAAAGCCCCGTGGTGGCCCCGGAGAGTTCCACATCTGGCCTGGATCTCGGTGCTTAACACGTTTTAACTCTTGCCCCGAGCAGCTCCGGATTTCCCTCGGCAGCCCGGGTTAGGTTTGATTTAAGAGGCTGCAAGGAAAAGCCAAAATAAAAA +>URS00021F6806 misc_RNA from 1 species +CGGAACTTCATTTCCCAGCCATGGATGTGGACGTCAATCCCTATCCTGGTGCACGCATTCCTGCTGCCTCACACGCTCGCCCACCAGTGTCGTCTTCACCTAGCGCTCGACCTCCAGCTCACCTCTGCCCTCTCATGCTTGCCGAGCTGCTCTCAGATGGTTGCTCGCGAGTTTCTTCCTCCCCAACACCGTCAGCTTGCCGCGTCTCTGGTCCAGCTCCAGCTCGTCGAGTCCCTCTCTGTGTGCGCCATGCAGCTCGCTCGGCCGCGACCTTGCCGAGCTCCGCCCCTGCTCCACGTCTCCTGGTCGGGCTCTCGTTCTGCGCGTGACGCCGCTGTTCCCTGGTGCTCCCTGCTCGACCCTGCTTCTTCTTCCTTGAGCCTCGCCGTGCGAGTTCTCCCTGGCTCATGTGCCTACCGCCGTCGGCCCCAGTCTCTCGCTCGCAAGGTCTTCCCAAGCCGTCGTCTCCTGCCTCTGGCTGTCAAGCGCGACGAACTCGTCCCGAGCTCGTCACAACGTCTCAGCCCTGCGTGTCGCGCTAGCTCGCGTCTATGGTCGCGTCCGCTGAACTCGCCAACGCCCTGTTGCCAGTCCGACTATCGTCGCTACTGCGTGCCTCGCTGCGCGCTCGTTGGTGGTGCCGTCTGTTGTGCCCCTGCATCCGCCCTTGTCGCTAGTGCCAACTCCGGCCGTCGCGGTATCTGCTCCGTCCTGGCGCCCTGCGCTAGTGCTCTGCTTCCTGGCCCCGCCTGGCCTCCAGCTTGCTCAACAGTACTATCCATTTCGTCGTCATACGTCTCCGCGTCATGTACAATAACGTCGTCGACCATGCCTTCGCCTGCTTTGACGCGTCGAGCTCCTTCCCGTTGTGACTCGCGCACCATCTATTCATCAAAATGGAATACTAATGAGCTCCTCGCGACGCAGTTTCTCTGTGTCGTCGTTCGCGCCGGTAAGATCCACGGTTCTGCTTTGTTCCATTAAATTCTCTTCTAGCACTATTTTGGCTAGGTGTGGATTTATGTGTATATGTGTGGATCTGTAAAGGAAGACGAAAGGGAAGCGCCAGTGCAACTTGTAACACCCCAGGTGTTTGCCTTAAATTAAACTGCAATTATGGATCCTTAAGAAAAATATCAGTTTGGATCACTCGAATTAGCGAATGTAAATTTAGGAAGCACTTGTATTTATAATTCGGACCTCACTAGTTTGGATCGACGTGTATTCAATTCAAATTAAATTTAAAATTAAG +>URS00014751E2 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTTTGTCGCGTCGAATGTGAAAACCCAGGGCTCAACCCCGGGCCTGCAGTCGATACGGGCAGACTAGAGTGCGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0001C1925D rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGACCTTCGGGTCTAGTGGCGCACGGGTGCGTAACGCGTGGGAACCTGCCCTTAGGTTCGGAATAACTCCCCGAAATTGGTGCTAATACCGGATAATGTCTTCGGACCAAAGATTTATCGCCTTTGGATGGGCCCGCGTTGGATTAGCTAGTTGGTAGGGTAAAAGCCTACCAAGGCGACGATCCATAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTG +>URS0001957C9E lncRNA from 1 species +CCCACATTGTCCATAACAACTGACTGAGGTTCTTGTACCCAGGGCTCTAACCTGAATTTTTTGCCTGACTTTCTGTCTTCCCTAATCATTTTATATTTGCTAAAGTGGGTCTTAAAGACTTGCTTGTTCCTTTCTTACTTTAAATTCTCAACCTCCAAGATTCCTTGTGCATAGATGCTGGGTTATGCATTCCTTTTTCCAATTTTTATTTTGTTTTTCTAAGTGATGCTATTTTACTATCCTTCCATGACAGGATCCCATCAGGCCTCTACTGCACAAATAACAAGAAAAAAAAGAAAAGAAAAGAAAAGAAAGCAAACAAGTGTAATTTGTAAATCTAATATTCTTGCACAAGGAATCCACTGGATATTGTAGGCAATGGCCTTGTCATCTTAGCCACTAGAAGACTCCATCTATCAGAAGCTGGCAATTCTGAATTTTGTACAGCAAGCCGTGAGTATGGAAATGCAAGTAAGAGTTGACATTGCAGTTTTGATTCCAAATTCCATAGCTAAGCAAGTTAGAAACTCAGGTAGTATTTCTATGTTGCAGTTTTGAGGCAGATTCCTCTTCCTTCAGGAAACCTCAGTGTTTGCTCTTTAGACCTTCAGCTAATTGGATGTGACTCACCCACATTATGCAGGGTATCTAGCTTATTGCAGGTCTGCTGATTAAAAAAAGTGCCTTCATAGCATCAAGACATCTTGTTGTTAATGAAACAACTAGATATCATAACCTCGTCAAGTCGACACACACAATAAACCTTCAAAGGAATATTTTATTTAATAACCT +>URS000133998B rRNA from 1 species +TACGTAGGGGGGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGTCCGGTAAGTCGGCTGTGAAAGTCCAGGGCTCAACCCTGGGATGCCGGTCGATACTGCCGGACTAGAGTTCGGAAGAGGCGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCAATGGCGAAGGCAGCTCGCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGAGCAAACAGG +>URS00011EADB4 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGCCATACAGGTCAGCTGTGAAAACTCGAGGCTCAACCTCGAGACGTCGGTTGAAACCGTATGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAAGAACACCCGTGGCGAAGGCGGCCTGCTGGGCAGTTTTGCTGACACTGAGGCGCGACAGCGTGGGGAGCAAACAGGG +>URS0001797414 rRNA from 1 species +TACGAAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGTAGGCGGTTGTTTAAGTCTGCTGTGAAATCCCCGGGCTCAACCTGGGAATGGCGATGGATACTGGCGAGCTAGAGTGTGTCAGAGGATGGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGAGATCGGGAGGAACATCAGTGGCGAAGGCGGCCATCTGGGACAACACTGACGCTGAAGCACGAAAGCGTGGGGAGCAAACAGG +>URS00012E3FAA rRNA from 1 species +ATTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGTAACAGGTTAAGCTGACGAGTGGCGAACGGGTGAGTAATGCATCGGAACGTGCCCGATCGTGGGGGATAACGCAGCGAAAGCTGCGCTAATACCGCATACGATCTGAGGATGAAAGCGGGGGACCGTAAGGCCTCGCGCGATCGGAGCGGCCGATGTCAGATTAGGTAGTTGGTGGGGTAAAGGCTCACCAAGCCAACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGAGACGGCGCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAGCCTGATTCAGCAATGCCGCGTGCAGGAAGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAGCGAAAAGGCTCTCTCTAATACAGGGGGCTCATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCCGCCGCAGTAAGAC +>URS000218DCF5 lncRNA from 1 species +TATACTAAACCTCATCTAATAACCCACTCAGGAAACTACATGAAAAAAGTCACTACTGACGTGTAAAGTCATATACATACATACATATATACTAACCTCATCTAACAACCCACTCAGGGAAACTACATGAAAAAGTCACTAATTGATGTAGTAAGATCATATACTACATACATATATACTAAACTCATCTAACTAACCCAACTTCAGGAAAACTAAATGAAAAAGTCCTACTGATTGTAGTAAGTCATATACATACATACATATATACCTAAACCTCATCTAATAACTCACTCAGAACTACACAAAACGAAAAAGTCACTACTGATGTAGTTAAGTTATATACATACAAGACATATATACTAAACCTATCTAAACAACCCATTCAGGAAACTACAAACGAAAAGTCAACTACTGACGTAGTAAGTCATATGCCTACATAAAATAATATACTAAACTCATATAAACAACCCACTCACGGAAACTACAATGAAAAGTCACTACTGACGTAGTAAGTCATATACATACATACATATATACTAAACTCACTACCAACCCACTCAGGAAACTACATGAAAAAGTCACCTACTGACGTAGTAAGTCAATATAACATACATACATATATACTAAACCTCATCTAACAACCCACTCAGGAAACTACATGAAAAAGTCACTACTGATGTAGTAAGTCATATTCATACATACATACTGTATTACATATATGTTAGAAATGAACTAATTTTTTCGACGTATTTGTTCATGTGAATTTTGCAATATAAAGAGTTGTTTCAAATGTGGCGGTATTGAATCTTCTTTTATATACTGTGGATTCATTATGATTATTGGGATACCAATTTTCATAGAATTTGTGGGTATTTGTAAACCACAAGGAAATGTGATATAATTGCCAATGAGACAACTATCCAATGCTGGCAGACAGTTAACATGGGTTGATTCAATGGTTACTGCCTAAGATTTAAGATGAACACTTTATTCATTTATCCAAAAAAGGAGAAAGAGGATGGTTAAGACTTATACAAAAGACTTTTTTAAGTAGTAAAGTACTCCTTAACTAGCACAATAAGAAAAGGCACAAATATCAATTAAAAAAAACTGTTAAATTTTAGTGAAAATTAATTAGCAATTTTAATAGAAATTTTATTTAACATCATGAATCAAAATTTTTAAAAAAAGTAACGCTCATGTATTCTTGTTTAAAAGTATGAACAATTTGTATCTTCCAGGCAGTAGATCTGTTACTCCAGCAGTTAACATCTTCACTGGATGAAGACTTGGCCGATGTTGATGAGTATGAAAGAGGCGTTGATGATGTGAAAAATACGATAAAAACTCCTATCATACCCAGGACTATACAGAAATATTGAG +>URS000051BDF4 rRNA from 1 species +ATAGCGTATACTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCTAATCTCTCTTGGGGTTCCTTTTCTAAAGAAATGTGCGACCATTCAAGAGAGATTATCCTCGTGCCTAGCCTTTCTCACTTTCATTAGTCAGGAAGGGGACGCACGTCATTTACTGTGAGCAAAATAGAGTGTTCAAAGCAGGCTTAGGCCATGAATATATTAGCATGGAATAATAAGATAGGACTTGGGTCTATTTTGTTGGTTTGCAGACCGAAGTAATGATTAATAGGGATAGCTGGGGGTATTTATATTCCGATGTCAGAGGTGAAATTCTTAGATTTTCGGAAGATAAACTTATGCGAAAGCATTTACCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGATGATTAGATACCATCGTAGTCTTAACCATAAACTATGCCGACTCAGGATTGGTGAACGTTGATTTAATGACTTCATCAGCACTGTATGAGAAATCAAAGTCTTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTA +>URS00021995E3 rRNA from 1 species +GGTTAAGCGACTAAGCGTACACGGTGGATGCCCTGGCAGTCAGAGGCGATGAAGGACGTGCTAATCTGCGATAAGCGTCGGTAAGGTGATATGAACCGTTATAACCGGCGATTTCCGAATGGGGAAACCCAGTGTGATTCGTCACACTATCATTAACTGAATCCATAGGTTAATGAGGCGAACCGGGGGAACTGAAACATCTAAGTACCCCGAGGAAAAGAAATCAACCGAGATTCCCCCAGTAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCTGAATCAGTGTGTGTGTTAGTGGAAGCGTCTGGAAAGGCGTGCGATACAGGGTGACAGCCCCGTACACAAAAATGCACATACTGTGAGCTCGATGAGTAGGGCGGGACACGTGGTATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCACGCTTAGGCGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGAAGGGAAACCGAGTCTTAACTGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACTTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAATTCATCTCCGGGGGTAGAGCACTGTTTCGGCAAGGGGGTCATCCCGACTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCCCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAACCATGCACCGAAGCTGCGGCAGCGACGCTTATGCGTTGTTGGGTAGGGGAGCGTTCTGTAAGCCTGTGAAGGTGTGCTGTGAGGTATGCTGGAGGTATCAGAAGTGCGAATGCTGACATAAGTAACGATAAAGCGGGTGAAAAGCCCGCTCGCCGGAAGACCAAGGGTTCCTGTCCAACGTTAATCGGGGCAGGGTGAGTCGACCCCTAAGGCGAGGCCGAAAGGCGTAGTCGATGGGAAACAGGTTAATATTCCTGTACTTGGTGTTACTGCGAAGGGGGGACGGAGAAGGCTATGTTGGCCGGGCGACGGTTGTCCCGGTTTAAGCGTGTAGGCTGGTTTTCCAGGCAAATCCGGAAAATCAAGGCCGAGGCGTGATGACGAGGCACTACGGTGCTGAAGCAACAAATGCCCTGCTTCCAGGAAAAGCCTCTAAGCATCAGGTAACATCAAATCGTACCCCAAACCGACACAGGTGGTCAGGTAGAGAATACCAAGGCGCTTGAGAGAACTCGGGTGAAGGAACTAGGCAAAATGGTGCCGTAACTTCGGGAGAAGGCACGCTGATACGTAGGTGAAGCGACTTGCTCGTGGAGCTGAAATCAGTCGAAGATACCAGCTGGCTGCAACTGTTTATTAAAAACACAGCACTGTGCAAACACGAAAGTGGACGTATACGGTGTGACGCCTGCCCGGTGCCGGAAGGTTAATTGATGGGGTTAGCGCAAGCGAAGCTCTTGATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAATGATGGCCAGGCTGTCTCCACCCGAGACTCAGTGAAATTGAACTCGCTGTGAAGATGCAGTGTACCCGCGGCAAGACGGAAAGACCCCG +>URS0000E9EAA2 lncRNA from 1 species +CCCATCTCCGTGGCTGAGGGCCTAGGGAGGAGGGAAAATCCATCCTCAGACACACTAGATCCTCAGCGAGACCTGCTGTGGAGAGCATCAAACGGACCGCACGCGGACCCACCTGCCTTCCAAAGTTTGGGGCGTGAGGAAGCTGAGGCACGTGGCGTTTGGTTATGGCACAGCTGAGGGGTCTGCAGGAGACCCCAGAAAATGCCGCTGAGGACGGATTCACCGACGTCATCAAAAGCCGCGCTGGTACTGACAAGACATTGAAATTGCTGCCGAAGTAAATGACTAGAGGAATAGGTAACTCTTTTTATTTTGTAACCTATTATTTTTCTACCTTTCCTAATAAAGAGAGAGAATTGACAAATACTGATTTAGGAACTGTGGGCTAGTCTAATGTGTTGTTGACAGAAGTTGAAGAGGGTAGTGAAAAAATGATCACGAATTATCGCTAAAGTTAAATTCAAAGTAAATTATTTTCTAACTTCAAAACAAAACTTTATAAACATCTCTAGAAAATGTTCTCTTAGTTATGCCCATTTTGTTTACAGTTGATTAGAAGTAGAATAGAAAAATGACAGAGT +>URS0000292678 rRNA from 1 species +GCCTAACACATGCAAGTCGAACGAAGGCTTCGGCCTTAGTGGCGCACGGGTGCGTAACGCGTGGGAATCTGCCCCTTGGTTCGGAATAACAGTTGGAAACGACTGCTAATACCGGATGATGACGTAAGTCCAAAGATTTATCGCCGAGGGATGAGCCCGCGTAGGATTAGGTAGTTGGTGTGGTAAAGGCGCACCAAGCCGACGATCCTTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGAGCTAGCGTTATTCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGCTTTGTAAGTAAGAGGTGAAAGCCCAGAGCTCAACTCTGGAATTGCCTTTTAGACTGCATCGCTTGAATCATGGAGAGGTCAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTGACTGGACATGTATTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGATAACTAGCTGTCCGGACACTTGGTGTTTGGGTGGCGCAGCTAACGCATTAAGTTATCCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCTGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGCAGAACCTTACCAGCGTTTGACATGGCAGGACGACTTCCAGAGATGGATTTCTTCCCTTCGGGGACCTGCACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGCCTTTAGTTGCCATCATTTAGTTGGGCACTTTAAAGGAACCGCCGGTGATAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACGCGCTGGGCTACACACGTGCTACAATGGCGGTGACAGTGGGCAGCAAGCACGCGAGTGTGAGCTAATCTCCAAAAGCCGTCTCAGTTCGGATTGTTCTCTGCAACTCGAGAGCATGAAGGCGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCAGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGATTCACCCGAAGGCGTTGCGCTAACTCGTAAGAGAGGCAGGCGACCACGGTGGGTTTAGCGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGGGAACCTGCGGCTGGATCACCTCCT +>URS00013010D6 rRNA from 1 species +TACAGAGGTCTCAAGCGTTGTTCGGATTCATTGGGCGTAAGGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTTGGAGCTTAACTCCGAAACTGCATTCGATACTGCCGTGCTTGAGGACTGGAGAGGAGACTGGAATTTACGGCGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTCCTGACGCTGAGGCACGAAGGTCAGGGGAGCAAACGGGG +>URS00004F080A rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACGGACGAGAAGCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGTAGCTAATACCGGATAATATTTTGAACCGCATGGTTCAAAAGTGAAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTAACTGTGCACATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTTTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGAAAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACGCTGATGTGCGAAAGCATGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAAATCTTGACATCCTTTGACAACTCTAGAGATAGAGCCTTCCCCTTCGGGGGACAAAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTAAGCTTAGTTGCCATCATTAAGTTGGGCACTCTAAGTTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGATTTGGGCTACACACGTGCTACAATGGACAATACAAAGGGCAGCGAAACCGCGAGGTCAAGCAAATCCCATAAAGTTGTTCTCAGTTCGGATTGTAGTCTGCAACTCGACTACATGAAGCTGGAATCGCTAGTAATCGTAGATCAGCATGCTACGGTGAATACGTTCCCGGGTCT +>URS000069B5BC tRNA from 1 species +GCCTGGGTGGCTCAGTCGGTTGGGCGTCCGACCTCAGCTTAGGTCATGGTCTCATGGTTCATGGGTTCGAGCCCCACCTCAGGCT +>URS000209731F rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTGCAGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGGGTGATCTGCCCTGCACTTCGGGATAAGCCTGGGAAACTGGGCCTAATACCGGATAGGAGCCATTTTTAGTGTGATGGTTGGAAAGTTTTTTCGGTGTAGGATGAGCTCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGGCGACGGGTAGCCGGCCTGAGAGGGTGGACGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAAGATTGCACAAGGGGCGCAAGCCTGATGCAGCGACGCCGCGTGGGGGATGACGGCCTTCGGGTTGTAAACTCCTTTCGCTAGGGACGAAGCTTTTTGTGACGGTACCTAGATAAGAAGCACCGGCTAACTACGTG +>URS0001E64AC9 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGAACCTTTCGGGGTTAGTGGCGGACGGGTGAGTAACACGTGGGAACGTGCCTTTAGGTTCGGAATAACTCAGGGAAACTTGTGCTAATACCGAATGTGCCCTTCGGGGGAAAGATTTATCGCCTTTAGAGCGGCCCGCGTCTGCTTAGCTAGTTGGTTGAGGTAATGGCTCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGAATGATGAAGGTCTTAGGATTGTAAAATTCTTTCACCGGGGATGATAATGACGGTACCCGGAGAAGAAGCCCCGGCTAACTTCGTG +>URS0000A2C0F7 rRNA from 1 species +CACCGCGGTTATACGAGAGGCCCAAGCTGACAGCTACCGGCGTAAAGAGTGGTTAATTCACCCCCACAAACTAAAGCCGAACATCTCCAAAGTTGTAAAACGCACTCGAAGGTATGAAGATCACCCACGAAAGTGGCTTTATAACCCTTGAACCCACGAAAACTAGGGAA +>URS0000BA4FCD rRNA from 2 species +CGTGGGAATACCTGCCCAGTATGCGGGGGATAACTATCTGAGACTCAGATGCTAATACCGCATAACAACTTCGCCCGCATGGTCCGAGTTTGAAAGATGGCTTCGGCTATCACTTCTGGATGGTCCCGCGGCGTATTAGCTAGATGGTGAGGTAACGGCTCACCATGGCAATGATACGTAGCCGACCTGAGAGGGTAATCGGCCACATTGGGACTGAGACACGGCTCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGAAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGGTTTCGGCTCGTAAAACTCTGTTGTTAAAGAAGAACATATCTGAGAGTAACTGTTCAGGTATTGACGGTATTTAACCAGAAAGCCACGGCTAAGTACGTGTCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGTTTTTTAAGTCTGATGTGAAAGCCTTCGGCTCAACCGAAGAAGTGCATCGGAAACTGGGAAACTTGAGTGCAGAAGAGGACAGTGGAACTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTGTCTGGTCTGTAACTGACGCTGAGGCTCGAAAGTATGGGTAGCAAACAGGATTAGATACCCTGGTAGTCCATACCGTAAACGATGAATGCTAAGTGTTGGAGGGTTCCGCCCTTCAGTGCTGC +>URS00004CE42D rRNA from 1 species +GATCAGGCTCAGGATGAACGCTAGCTACAGGCTTAACACATGCAAGTCGAGGGGCAGCATGGTCTTAGCTTGCTAAGGCCGATGGCGACCGGCGCACGGGTGAGTAACACGTATCCAACCTGCCGTCTACTCTTGGACAGCCTTCTGAAAGGAAGATTAATACAAGATGGCATCATGAGTCCGCATGTTCACATGATTAAAGGTATTCCGGTAGACGATGGGG +>URS0000251C9B rRNA from 1 species +GACCAAGGAGTCTAGCATGTGCGCGAGTCATTGGGACATAACTAAACCTAAAGGCGTAATGAAAGTAAAGGTCTGCCTTGCGTAGACCGAGGGAAGATGAGCGGTTTGCCCATAAAGTGGCCGCTCCGCATTCCCGGGGCGTCTCGTTCTCATTGCGAGAAGAGGCGCACCAAGAGCGTACACGCTGGGACCCGAAAGATGGTGAACTATGCCTGGTCAGGACGAAGTCAGGGGAAACCCTGATGGAGGTCCGTAGCGATTCTGACGTGCAAATCGATCGTCGGAACTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCTCCGAAGTTTCCCTCAGGATAGCTGGCGCTCGTTGCGTACGAGTTTCATCCGGTAAAGCGAATGATTAGAGGCATTGGGGTCGAAACGACCTCAACCTATTCTCAAACTTTAAATGGGTGAGATCTCCGGCTTGCTCGAACTCATGAAGCCGCGAGACTCGAATCAGAGTGCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGCTGTGGGATGAACCAAACGTCGAGTTAAAGCGCCTAAATCGACGCTTATGGGATACCATGAAAGGCGTTGGTAACTTAAGACAGCAGGACGGTG +>URS0000A30B64 rRNA from 1 species +CTGGCGGCGTGCCTAATACATGCAAGTCGAGCGGAATGATGAAGAGGCTTGCTTCTTCTGATTTTAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTACCTTGTAGATTGGGATAACTCCGGGAAACCGGGGCTAATACCGAATAATCCATTTTGCTTCATGGCGAGATGTTGAAAGACGGTTTCGGCTGTCACTATAAGATGGGCCCGCGGCGCATTAGCTAGTTGGTAGGGTAATGGCCTACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGGCAGCAGTAGGGAATCTTCCACAATGGACGAAAGTACTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTCGGTATCGTAAACTACTGTTGTAAGGAAGAACACGTACGAGAGTAACTGCTCGTACCTTGACGGTACCTTATTAGAAAGCCACGGCTAACTACGTG +>URS00015CBD71 rRNA from 1 species +TAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGACCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGTAGTAACTGGCCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAAGAATAAGTCTGATGTGAAAGCCCTCGGCTTAACCGAGGAATTGCATCGGAAACTGTTTTTCTTGAGTGCAGAAGAGGAGAGTAGAACTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAATACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATG +>URS0001547F59 rRNA from 1 species +TCGGGAATTTTGCTCAATGGGGGAAACCCTGAAGCAGCAACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTTCTCAGGGACGATGATGACGGTACCTGAGGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTACTGGGCGTAAAGAGCGCGCAGGCGGTCGTGCAAGTCGAGTGTGAAAGCCCCCGGCTCAACTGGGGAGGGTCACTCGATACTGCTCGACTCGAAGGCGGGAGAGGGAAGTGGAATTCCCGGTGTAGTGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGACTTCCTGGCCCGTTCTTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACG +>URS000083C0E2 tRNA from 1 species +CAGAACATAATTAAATTAGAATGCTGGCTTTGGGGGTCAGTTGTGGGGGTAAGAGTCCCCCTGTTCTGA +>URS0000ABDE67 miRNA from 1 species +TTTGGTTTGAAGGGAGCCCCT +>URS000003005D rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGGACAGATGGGAGCTTGCTCCCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATGCTTGTTTGAACCGCATGGTTCAAACATAAAAGGTGGCTTCGGCTACCACTTACAGATGGACCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTACCGTTCGAATAGGGCGGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGCAGGCGGTTCCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAATCCTAGAGATAGGACGTCCCCTTCGGGGGCAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCAGCATTCAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGACAGAACAAAGGGCAGCGAAACCGCGAGGTTAAGCCAATCCCACAAATCTGTTCTCAGTTCGGATCGCAGTCTGCAACTCGACTGCGTGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGAGGTAACCTTTATGGAGCCAGCCGCCGAAGGTGGGACAGATGATTGGGGTG +>URS00020EF123 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCATTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTCGACTTTGGGATAACTTCAGGAAACTGGGGCTACTACCGGATAGTAGCTCCTGCTGCATGGAGGGGGGTGGAAAGTTTCGGCGGTCGGAGATGGACTCGCGGCTTATCAGCTTGTTGGGGGGGTAGTGGCGTACCACGGCTTGGACGGGTAGCCCGCCTTGGAGGGGGAGCGGGCACATGAGGACTGCGATACGGCGCAGTGTGGAACATGGGGCAGCAGGGGGGAATATTACGCAGCGGGCCGGCGCGTAATGCAACAACGCCGCGTTCGGAATGACCGTCTACGGGTTGTAAACCGCTTAAGCCTGAGACGAAGCGTGATTGACGGTAACGGGTAAAGAAGCACCGGCTAACTACGTG +>URS00000CB0F4 tRNA from 1 species +ATTAAAGTGGCAGAGTAGTGCATTAGATTTAAGCTTTAAACATAGAGAAGTTCTCTTTAATA +>URS0000AF4368 rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAAGATTTATCTTAGTGGCGAACGGGTGAGTAACGCGTGGGAATCTGCCTTTCAGTGGGGGATAACTCAGAGAAATTTGAGCTAATACCGCATACGACCTTCGGGTGAAAGATTTATTGCTGAAAGATGGGCCCGCGTTAGATTAGGTAGTTGGTAGGGTAAAGGCCTACCAAGCCTACGATCTATAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGAAACCCTGATCCAGCAATGCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAACTCTTTCAATGGGGAGGATGATGACGTTACCATAGAAG +>URS000012F352 misc_RNA from 1 species +TGTACTCGATCCAGAATCATTCCCAAAAGGTCGGAACGAGGTATGTGGCTTTCAAACTAGGTTCTGGGTTCATAAAAGACCTGAATCAGGAACAAGGGATATTAGCTCAGGTGGTTAGAGCGCACCCCTGATAAGGGTGAGGTCCCTGGTTCGAGTCCAGGATGGCCCACCTGCACAGGTGGCAAAAACAAAAAAAACAAGCGAGGAATCCCCACCTTATCTTACTTATATAGTAAGAAAGAATGCTGGCTCTGAGTACAGAGTCCGAAGGAACCTTGAAAACTGCATAGAGCTAGGTGAAAAAGCCAAAAAAAAGGACCGCAAA +>URS000182AB58 rRNA from 1 species +TACGTAGGGGCCTAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGTTCGGTAAGTCAGGTGTGAAATCTCCACGCTCAACGTGGAGGCGCCACCTGAAACTGCCGTGACTCGAGTCCGGTAGGGGAGTGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGAGAGGAACACCTGCGGCGAAGGCGGGTTGCTGGGCTGACACTGACGCTGAAGTGCGAAAGCTAGGGGAGCGAACGGG +>URS0001D66A4A rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCCCTTTCGGGGGAGCGGCGGACGGGTGAGTAACGCGTGGGAATATGCCCTTCTCTACGGAATAGCCTCGGGAAACTGAGGGTAATACCGTATACGCCCTGTGGGGGAAAGATTTATCGGGGAAGGATTAGCCCGCGTTGGATTAGGTAGTTGGTGGGGTAATGGCCTACCAAGCCGACGATCCATAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTAGACAATGGGGGCAACCCTGATCGAGCCATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTCAGCTGGGAAGATAATGACGGTACCAGCAGAAGAAGCCCCGGCTAACTCCGTG +>URS000233F9F7 lncRNA from 1 species +CAGCTCAAGGCTGTAGGAGGAAGAAAAATCTAGTCCCTGGGGGTACTGATGAATCAGTTGGATGGTGGGCGTTGGACTGTGAATTCCTGATGCCTCTGGGTAAACTCTGGAGGAAATTCTGTTTCATTACTTGCACTCAGCCCTCCTATTTTGTACTAAGGTATTCTTGAATACAAGTGCACCGGCCAAAAAAGTAAACTTACGCATAAAAAGAAAGGCTCTCTTCCTTCCAAGAATGCTGAACACCTTTGAAGTCTCTGTTGCTGCCTCATCTTTTAGATACAATCATTGATTATGTATTTTTGGCATCGTCCTGAACTTTGTTTCATTTCCTTCACAGTTGAATGTGCAGTTGGCTTTGTCCACTCAGTGATGGTCCTTGTGACTGTTCTTGGCTTTTCTGTTGTTTTTCCATCTTTCTATAGGAAGCTTGAGACCGATACTCATCGTTTGCTTTCAGCACCTTAATTTTGCTTTGTTCATTTTTGTAAAGTAAGGGCAAATGGCCACCGGAATGTACAGTGATTAAAGAAGCAAACTCTGTCAAAGATGGTGATTAGTGGCCAGCCAGTCCCTCTCAGGATCACTGTATTAAAAAGTGCTCATTTGCCAGTGACATTTTTTTTTGGTTTTGGTTTTTTTTTTTTTTTTTTTTTTTGAGACTGAGTGTCACTCTGTCGCCCAGGCTGGAATGCAGTGGCCTGATCTCAGCTCACTGCAACCTCCACCTCCCAGGTTCAAGTGATTCTCGTGCCTCAGCCTTCTGAGTAGCTGGGACTACAGGCGCCCAATACCATGACTGGCTAATTTTTTTTTTTTTAAATTTTAAGTAGAGATGAGATTTTGCCATGTTGGCCTGTTTGGCCTTATACTCCTCATCTCAGGTGATCCACCTGCCTCGGCCCCCCAAATGCCAGTGACATTTGTAGGTGGATTCAGATTAAGGTGGGTAGCTTAGTTGAGGCGTCTCAACCCTTTTCTGTGCACTCTCTCAAGATGATTTCTGAACACACAACTATAAGTGCATGAGAACTTAAATACGTGTGCTCTTATGCTAATTATACACAAAGTAAAAGTTTTTTCACAAGGAGAATTTTTTTCTCCAGCAAATAGCTCGCTCACCCTAGGGGTACATACACCCCACTTTAGAGACCCTCAAGTTACAGTGGTATCATTAAACGATCCATAAAGGAGTGGGTTTAAGAAAGCTGATACAGGAACATGTTTGAAATAATACATTTTCTCAAGGGTGTCCTCCAACCATTTTCTTTGATAAATTATATTTCTGCCCATTGTTGACTTGAAATTGTCCTCACCCCTCTACCAAGTTCACCCAGTGTATTCTGAAGGAAAATGAATGAATATGGAAACCTCTCTCATCCTAGGCAGTAGAGCGAGGGAAGCTGCACTGGCTGAGAGGCTGTGGAACCGGATGAAAAAGCAGCCCCTGAGTCCTGTGGCGTTGGCTGTGAGTCGGCCACGTGCTTGCTGTGTGCTTTAGGAAAGTTACTTAATTTCTCTGAGCTTTAGTTTTCTCCCTCATAAGTAGGCTTGCTGTGAAAATGAAGTGAAATCACATTAATCTGCATGAGCATTTAACACGGTGCCTGGTGTACATCAGGGGTGTGACAGTGAGTGCTGGCTGCTGTAGTAATTGAATGCTTAGCTACGTGCCGGGCCCTTTGCCAGCTACAGCTCATGTGAGACCTCATGTTCAGTCTTGGCAGTAACCCAGCAAGGTAGGCATTTTACATGTGAGGAGCCTGAGAAATTCAGTCTTGGCCTGGATCACAGAGCTGGTATCCAAATTCAGGTCCGAGGCCAAAGCCCAGATCTTTGCACTACACCTTGTTGCCTGGCACAGGTGAGAGTGCCCAGCCCATAGTGGGTGCGCAATATCTGTTTCTATTTGAATGACCCAGGCAGGCGGTTAATAATGCTTGTGATTTCTTTGAGAGAGAAGTAAGTTCTTGTCTTTGGTGGGGGAAGCATCAGGTGACCAGCATTTGTCCAGAGCCTGGTACCCATCCTCTCCCAAGCCCAATCAGTGGTGCTTTCTCAAAAAGAAACCATCTCCTGACCACTTTGGCCATATTGGGCCTTTGCTCCTCTTCTGTAGCTATTGATAAGAGGGCTGTGGGCAGTTAGTGATAATCAAGGTCGTATCCCAACTAAGTGACAGAGCTGAGACAGTTAAGTTCCAGGACAAGTGTGTTGATCTCTGTACCCACTTGTGCCAGGTGCCTGGGGAGGTAGGGGCATGGCTGTCTGAGGGTGGAGGGGTGAGTAGGGGGCCTGCAGTGTGCTGTGACGCCTGGGAAGGGGATTCTAAGCCATTTCCCATCAGCCGTTTACTAAGTAGCCTGGGGATCTTGTTAAAATGCAGATCCTGATAGATTAGGGCTGGGGTGCTGCCCAAGATTCTACATTTCTAAGAGTCCCTGGATGACGGTGGCATTCACAGACCACAGCTTCTATGTGAGGGAGAGCAGTTGGGTTTCTGTCTGCCTGCCGCACCTGATCAGTAGTTAGTGCCTGCATGTGTGGCGGCCAGAATTTTACTTGGGGAGACGCTCGGCTCCTAGCACCCTCTGTGGTAGGGGTTTTCCAGAGTGTGGGCATTACCCCAACTGTCTCTGCAGACGGCTTCCTGCATGTTTCCCACAAGCGCTCAGATGGCTGAATTGGCAAGTCTGTGGTGCTGCTCTTTGGGGCCACCTCGTTCTTTGCCTTTCCCTCCCCTTAGCGATGTGTCCCATCCGTTGCCTACAGTCAAGTCAGTCCACATGTTTAGGCTAAGGTGGGCATGACCGAGTGGCCTTCCCCCGGGAAGACCAGTGTCGTAACTGGAATTAAGTTGTGGAACATAAGAGTCAAGGCTCGTGTCTGCTGTGAACTGGAGTTGAGGGAATGTTTGGGGATCCCACCTGGTATCAGTAAGGGAACCATGGCGACGGCCAGCCTTGCCCATGTGAGGCATTTGCTTTGTCAGGCCTTCTCAGTAGTGGAGAAGGGAGGAAGGAGAATGCAGCTCTTTCAGTGCTGTCTAGCAGTGCCCAAGAGCCGTGATTGGGCACCTCACTTAACGTCTAACTTCAGATTCACTCTTGGGCATTCCTGTCTTCCTCTCCAATCTTGAATGGATGTTGGCTTCGATAATGTCATCCTGAAGTTTCTTTGTCCACACAGCCCTGGCTGGTTGTTAATAAGCTGTTAATGCAGCCTTGCACTCAGGAAGCCCTGATGTTTAAAGGAACTGTGTCTTTGTTCTTCCTCTCTTCCCTCTTTCTCTTAGTCCCACTTTATCTCTTCTTTCTCTTCCTCTCCCTCCTCCTTTTCCCCTCTCCCTCCTACTCTCCCCCTTTCTCTCCTCCTTCTCTAAGAAACCCAGTCTTAATTCCACACAATGCATGCACATGCAGTAGCTTCTCTGCTTGAGTGAGCTGGTGTGATTAGGTTTTCTAAACATGCACATTGGCCTTGCTACTTGTCCTTTTATTCCCTTCCCACAGACCATAAACCAAGAATTATTTTTATTTGTATTATTTTGATTTTTTTAAAGTAAAATATTAACTTTTCCTCTTTGAAATAAATTCCCATTTGGAACATCAGCATACAGTTTGAACATTTATTCGCCTCCTGAGCTTGTACAACAGTCGTGGGAGTTGCTGCAGAAGCAAGCGAAAAGCCAGATGAGCGCTTCTAAACTTAGAGAGAGGGAGAGCGCCTCATCTCTTCCATTTTCCAGGTATTCCTGAGATGATTTATTGGAGCTCAAAGCTTTGGGAGAGTTGGGGCCTTCCATTCCCTCCAGTAAATACTTGTTTTTCTTCCACCGCTGAGGCAAATGCGGGGTGGCTGATCACCTGGCAGACATCTTAGGAAACAGGAGCACCGGTCTGGGAAACTGCTGGCCTGGCCTAACACCTGGCGCTGTGGTGCAGGCAAGAGGGCAGCCACTGAGGATTCTTGAGGAGAGAGAGACCATAGAATGAATGAAAGAGTTGGAAAGACTTTAAAGCTCTGGGAGGCTGAATCCTTTATTTCGCTGGAAGAAAAACTGAATGCCAAGAGGGCCTCACTTTCCCCAAAGCTATACAGCCATCAGGGGCAATGCTGGGATTCCCCCATGGATCTCTTGACTCCTAATACAGTGCTCTTTCTGATATGCCATCTGGCTCCATAATGAACATTGTGTTCCAGGAAAATCAGTCTGCGCTGAACAGGATGGAATTGGGGCAGGACGTCCAGTGAGGAGGACATTGAGGCAGTAGAGCAGTTGATTGCCGAATGACCACCTACCCTGACTTAAAAGATCAACCTCAGGGAGGATTGGAGCTTTCTAGAGTCTCTTGGGACAGCAGAAGCACAGGCCGGGTTGGACTGAATCTTTAAGTGGACATGAGGGACAAAGTACCTCCTGTTGGTAAACATCTCACCACCAACCCACTGTGGTGGCTAAAATCCCACCTTTAGTCCCAGCAACATATGAGCATGTCACCAGGAGGTCTTCACAGGCCTGTCTGCCACCTGAGTGTAGACATCTTTTGGCCCTGGAGCCCAGAGAGGCTGAATGTGGAGAGGGTGGAGAGAGGTCTGTAGTCCTCAGAGAAGACTTGCAGCTTTTTCAGAGCCACCAACCCATAAAAAAAAAAATCCCCAAACAGAAAAATCCTAACTGTGGTGACCAGGTACCTCCTGAGACATGAAGCCTCCACTTACCTGGACCCTGGAGGCCTCTCCGGGCACAGCTGCCAATGTTGATCTTAGATAAGACCACCAGCAAGTAAACATCCACTGTGCAAAGCTGTGTTATCTTTGGGGAACTGAAATGTCCCCTGGGAGTTGGAAACTCCCCTAGCCACATACCACAGAGTTGAGGAAGGAAGAGCTGATGGACGGAAGAACCATGGCGGGAGGAGTCATCCGGAAGCTACCTCGCTGCCCTGTCAGTTACGGAACAGAGGAGAGATGCCGGCTGGAGGACACAGCAAATTTGAACCAAGAGGAGCTTGGAGGAAGCCCGAGCGACCTGGAGGGGACTGGCTGACCTTCCTCATTCTTTTCAAGTGTGAATAATAACCAAGCCCAGTTTGGCAACTCCTTGAGGGTGAGGACGAAGCCCCATTCTCCTTTTTGGAACTTGGTGGGGCTCAGGAAGCAGGTTCTCTCCAGTCGGTGGCTTTCCTTTCTGTTGCGGGTCTCTTGAGGGCCTGCCTTCATGAAGGCACATGAGTGACTCATCATTTGTGAATTAATTGCTATATGTGAAGGGCATCTGAGAACAAATTATCTTCATAGACTTTTCATTATAATTTTATTTGTACTGATAATTAGTTGGTTTAGCAAGCTCTTTTTTCATAGATTTGGCTAAACTTCAGTCTGAAAGAGGCAAATTCTGGGGTTCTAGAAAGAGATTTTATTCTTTGATATAGGGCTATTTGGTGGGGTTGCTTTTTGTCCTAGTTGTAGCTTTTATAATTTCGAGATTCACATTTTGCAATAGAAATATACAGGCATACCTTGGAGGCATTACAGCTTTGGTCCCAGACCACAATGAAGCAAGTCACACGAATTTTGTTGGTTTCCCAGTAAATATAAAACGTATGCTGATACCATACTATAGTCTAAGTGTGCAACAGCATATGTCTAAATGAATATACATATATATTTTTTTGAGACAGGTTCTTGCTCTGTCACCCAGGCTGGAGTGCAGTGGCACTATCATGGCTCACTGCAGCCTCCACCTCCCTGGACTAAGATGATCCTCCCACCTCAGGCTCCCAAGTAGCTGGGACTACAGGTCACACCACCACACCCAGTTAATTTTTGTATTTTTTGTAGAGACAGAGTCTTGACATGTTGCCTAGGCTGGTCTTGAACTCCTGGCTTAAGTGATCTGCCTGACTTTGCCTCCCAAAGTGCTGGGATTACAGATGTGTAGTCTTTGAAATCCAGTGTGTGTTCTTACAGTGCATTTCAATTTGGACTAGCCATGTTTCAAATGCTCAGCAGCCACATGCGGCTCATTCTAGATAGGCGGCCATCGCTCTTAAATCCTCCCTGACCTTAGCCATGCTCTCTCATCCCTCCTCTTCGCCAAGCTCTGCCTCTCTCACTGGGGCTTCCCTAGCCTCCGGCCATCTTGGGGCCAAAGCTCTAACACTTTGCCTCTCTCGTGTCTTCTGTTCCCCTCCAGTGGCTTCTGCTTTCTGCCTTAAAATACACCCAGGTTCCTAATCCTGAAAACGTCTGTTGTGCACCGATCCCACCCTCCCCTCGTGTTACCATCTCCATTTCCTTCCCCTTTCCTTGTGTCCTCTTCTTTGCTGTGTCCTGGCCCCTCAAAACTTGACCTTGCCTCTCATCCCCACTGCTGTACTGAAACTGTTGTCTCAGCGTTGCTGATCATCCAGCCTTTTAGTCTATGGACCGCTAAGAGCCATAGGACGACCTCAGGGTGGGACGTGGCTTGGAGGGCCATCTCGTCTCAATTTCCAGATACAGACCTGTGTTGGGTTGTGTTGGATTCATGAGGAAAGCTTCATAAGTTTTATGCACGTTTATAAGACTCCATCCTTGGATTCTGATCCAGTAGCTCTGGCGTGGGGGCTTTAGAATCTGTTTCAAGTATCTCAGGTAATTTTGATTATAAATTACCAAGTATCCCAGGTAAATTTTGATTATAAATGCTTGCTTCCAGCAGAAAATATAAACATATGGAAGATGAAATCTTTCTCTCTGAATAACCCAATTCAGTTTCCACTCGTGAATATCTTATATAACCGTAGTACATTTATCAAAATTAAAACACCAGTGTTAGCACATTACTGTTAATCTCCAGACTATTTGTAAGTCACCAATTTTTCCATTGTCCCATCTGTTCTTCCTTTTCTTTCTCTTGTCATAACCACTTTTAGAGGGTTTTGAATGGTATCATTTTGTCTTCACCGTCGGCTTATTAGCTATACTGTACTGTTCTATTCTTTGAGTGGTTGCTCTAGGATTTACAAATATGACTTCAACATATTGCAGAATACCTTCAACAACTACGATATCCTTTCACAGATAGTGTAAGAACTGCACCACAGAATGCTTTCATTTCCCCACTTCTATTCTTTGTGATATTATTGTCACACATTTTATTTTTACTTAAGGTATGAGCCCCACAATGCATGTTAAATAGCCAAAGTTTTTAGACAGATTAAAGAAATTAAGAAAAAGTCTTATGAACTCAGGTATTTACTATCGTGTTGCTCCTTATTCCTTAGTGCAGATCCATTTTTCTTTTCTTTTTTATTTGAGACAGGGTCTCACTGTGTCACCTGTGGTTGAATGCAATGGCGTGATCTCAACTCACTGCAGCCTCCACCTTCTGGGCTCAACTGATCCTCCCACCTCAGCCTGTAAAGGGATATTTGCAAAGGGATATCGGAGTTGTTGAAGGTATTTGCAATATGTTGAAGTCATATTTGTTTTTTTTTTTTTTTTTTTTTTTTTTTTGAGATGGAGTCTTGCTCTGTTGTCCAGGTTAGAGTGCAGTGGCGTGATCTTGGCTCACTGCAACCCATACCTCCTGGGTTCAAGCAATTCTCCTGCCTCAGCCTCCTGAATAGCTGGGACTACAGGCATGCGCCACCACACCCAGCTAATTTTTGTATTTTTGCTAGAGATGGGGTTTTGCCATGTTGGCCAGGCTGGTCTTGAACTCCTGACCTCAAGTGATCCATCTGCCTTGGCCTCCCAAAGTGCTGGGATCACAGGCATGAGCCACCGCGCTGGGCCTGAAGTCGTATTTGTAAATCCTAATTTTTGTATTTTTTTTTGTAGAGACAAGGTCTCACCATGTCGGTCAGGCTGGCCTCACACTCCTGGGCTTAAGCAATCCTGCTGCCTCAGCATCCCAAAGTGCTGGGATTACAGGTGTGAGCCGCTGTGCCCAGCCTGTTTTTCATCTAGTATTTTCCTTCTGCCTGAAGGAAACTTCTTTGACATTTCTTGTAATGGCAGCTCTGCTGGTGATTAATTCTTTCAGCTTTTATTTGAAAGAGTCTGTATTAAAATATATATATATTTTCACTAGGTATAGAATTTGAGGCTGACAGGTTTTTTTTTTTTTAATTTTTTCAGTACTTTAAAGATGTTAATTTTCTTATGGTTTGCCTACTTTCTGATGAGAAGTTGGCTGCTGCTCCTTTTTTTTTTTTTTTTTTTTTGAGACAGAGTCTTGCTCTGTCGCCCAGGCTGGGGTGCAGTGGCGTGATTTCGGCTCACTGCAACCTCCACCTCCCGGGTTCAAGCAATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCACCTACCACCATGTCTGGCTAATTTTAGTAGGGATGGGGTTTCACCATCTTGGTCAGGCTGATCTCGGACTTCTGACCTCGTGATCCACCCGCCTCAGCCTTCCAAAGTGTTGGGATTATAGGCGTGAGCCACGGCGCCTGGCCTGCTGCCACTCTTATATTTGTTCTTCTGGATGGAATGTCTCTTTTTTTTCTGGTTGCTGGGAACATGGGCTATTCCCACCCCTATGTGAGCTCCAGCTGCTTGGTCTATTGGTTTCACCCTTCATATATGAAGGTTAGTACTTGTCCAAAGACTCCAGGAGACTCTTCAGCTCTCAGGAGCTTGCTCTGTGCAGCTTCCTCCTCTCGTCCTCTTCTGCCTTCAGTTCTGCCTTGGTCTTTTTTGTTTGTTTGTTTGTTTTTTGAGACAGAGCCTTGCTCTTTCGCCCAGGGCAGAGTGCAGTGGTGTAATCTTTGCTCACTGCAACCTCCGCCTCCCTGGTTCAAGCAATTCTCCTGCCTCAGCCTCCCGAGTAGTTGGGATTACAGGGGTGCAACACCACGCCCGGCTAATTTTTGTATTTTTAGTAGAGACAGGGTTTCACCATGTTGGCCAGGCTGGTCTCGAACTCTTGATCTCAGGTGATCTGCCCGCCTTGGCCTCCCAAAGTGCTGGGATTACAAGCGTGAGCCACCGCGCCCGGCCTGCCTTGGTCTTCCTGAACTCTGACTTCTGTCTCTTCAACTCCTGGAGACTACTAGACTCTGGAGTCTCTCTTTACCTTTTGGCCCAGAAACTGCTTCTGGGTAGTAGTAACCTGGTGCATTTGTTG +>URS000117373B rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGAGCGGCGGACGGGTGAGTAATGTCAGGGAAACTGCCTGATGGAGGGGGAGAACTACTGGAAACGGTAACTAATACCGCATACCATCAGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAATGGCTAACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCAACCTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGCGTTACTCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATTC +>URS000199CEE7 lncRNA from 1 species +ATGAGCCTTGACAAAACTGTGGACAGCATACTGCTAAGCCTCACATTGTTCAGCCTTCTGATTTTCCTTGGAAGTTTGCTGATATGTGCGTGTAGAAGGTATAGATTCCTGGAAGTTATAACCATGCCCTTTCCAGCTCCTACAGATAAAGTTACAACGTGGTTAGCTACAGATGAGACTCACCATCAGAAACAAAATTCAGTGCAAATGGAGATGCAGTCAGAGGTCATACTGAGAATATCAGAAGATAATGGAGATGAGGACATTCAACAACATACACATTTGAAAGAATCTGAAGACCTGAATTAATGCCTCCTTAGAGGAACTTGGTCAAAGCAGGGACTAGACAGGCAAAAGAGTAATGCATGTGTGTCAGACTGGAGTTTCCAAGACTTGCTGAAATTTTAATAGATCTTCCTGGCATGTGTAATGGATAAATGAGTGAAAGAAGCTAACCCAAGAAAAGTGAACAGACAGATCAAAACTGGTACCACATCATCTGGCTGGGGACTTTGCTAATGTGACAAAACTGATAAGAGTCTATAGCAGCATATAGATGTCCAGGTAATACAGGAGGAAATACATTCTAGTGCTACCTCTTGTGTAACAGCCTCCTCACCCACTTTTCTCTGCCACAGAAGGCCCGCTACTTCTGCCTCTGATGTGCGGACAGAGGTGGCTAATGTCATGTGAGGTGCACCAAGCATGCGGAGTGACAGGAGCAGGTCTTATTAGTAAGTGGGGAGGAGGCAGGC +>URS000005DFD5 sRNA from 1 species +CGGCGCTGTGGCGCCGGTTCGTTGCGGAGGATGCCGGCCGAGCGATCAGCCGGCATTCTCCGTTTCTG +>URS00017CC290 rRNA from 1 species +CACGTAGGGTCCGAGCGTTGTCCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTGGGTCAGTCGCTGGTGAAAGCCCCACGCTCAACGTGGGAATGGCCAACGAGACGGCCCGACTGGAGGCAGGGAGAGGCCGGTGGAATTCCGGGTGAGTGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGGCGGTTAGCTGGCCTGTAACTGACACTGGAGGCGCGAAAGGCTAGGGGGAGCGAACAGG +>URS0002351B0D lncRNA from 1 species +CTTGTGTTCGATTGATTGATAGATGTCTCATTACAAGGCCCTAGGGTCTACATTTATACCCTGCTCAAAGAGCTATAATCAGACTCGACTAGGACTCGAATTCCAAATTAAACAGAATCCATATACAAAACAAATTTAAATAACTAAGAAAAACATAAAACCACCACTTCGTAACCGACCGGAACACCGCCACAGATCAATCGGCAACCTCCACGCTTCCCTTCAGATTCATCGGCAGTCTTCCTGTTATAGCCATCGGCAAACACCAATATTAATCATCGGC +>URS0002307C0E misc_RNA from 1 species +AAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTAACGAGTTCTGAAAGGGGTTGTAGCTGGCCTTCCGGGGCATGTGCACACCCTGCTCATCCACTCTACACCTGTGCACTTACTGTAGGTTTGGCGTGGGCTTCGGGGCCTCCGGGTCTTTGAGGCATTCTGCCGGCCTATGTATCACTACAAACACATAAAGTAACAGAATGTATTAGCGTCTAACGCATCTAAATACAACTTTCAGCAACGGATCTCTTGGCTCTC +>URS000259D3E0 sRNA from 1 species +GTCCCAAGTTACCCCAAGGACGCCGGTGGGCATTCGCTCCCTCCTCACCCAGCTGTCAGGGCGCCGCGAAGCCGGTGCGAACCTGCGGAGGACGTTTTCAACGTGCCAGAGGGAGCGCAAACTCCATGGAGATTCCTAGCGCAGAAGGAATTCCTGCGGTCGGGAATTTCTTGAAAAAGATTCTTCGCAGGGGCCCTGAGCCGATAATGCTGAAATTAACATCTTTGGATATACAATTCTCTGCTTCTGAAGAATGAAAAGATAAATAACAGAGCTAAGAAAGGGACTGATGAAACAACAGCAGGTCTCAAATTTTTGGTCTCAGGACCCCTTTATGCTCTTAAAAATGATTGACAGCCTCCAAGAGCTTTTGTTCATGCTTTGGTAAGGCTGTGAGAGCACAGAGCTGAATTAGGGATCTTGGACTTCAAGTTACTGACTAGCCCCAGCACTCGCCAAGCTCACAAAGAAGACAGAAACGAGGTAAACATCCAACCATGTTTATGGAAGAGTTCATCTCTCTGTCAGCATTACGT +>URS000094A37D SRP_RNA from 2 species +GCCAGGCGTGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCAGAGGCAGGTGGATCACCTGAGGTCAGGAGTTCGAGACCAGCCTGACCAACATGGAGAAACCCTGTCTCTA +>URS00004E1280 rRNA from 1 species +TCATGCGTCGCATTAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCGACGATGCGTAGGGGTTCTGAGAGGAAGGTCCCCCACACTGGTACTGAGACACGGACCAGACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGCCGCAGGGCTGAACCAGCCAAGTCGCGTGAGGGATGACGGTCCTATGGATTGTAAACCTCTTTTGTCAGGGAGCAAAGGGCGCCACGTGTGGCGCTTTGCGAGTACCTGAAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGCAGGCGGAATGTCAAGTCAGCGGTAAAATTTCGGGGCTCAACCCCGTCGTGCCGTTGAAACTGGCGTTCTTGAGTGAGCGAGAAGTATGCGGAATGCGTGGTGTAGCGGTGAAATGCATAGATATCACGCAGAACTCCGATTGCGAAGGCAGCATACCGGCGCTCAACTGACGCTCATGCACGAAAGCGTGGGTATCGAACAGGATTAGATACCCTGGTAGTCCACGCAGTAAACGATGAATACTAACTGTCCGGGCAGAATGATGCCTGG +>URS0000355545 rRNA from 1 species +TTCCGGTTGATCCAGCCGGAAGCTACTGCTATCGGGATTCGATTAAGCCATGCGAGTCGAGAGGGTTCGGCCCTCGGCTGACGGCTCAGTAACACGTGGATAACCTGCCCTCAGGTAGGGGATAATCTCGGGAAACTGAGGACAATACCCTATAGACATCCTTTGCTGGAATGCTTGGATGTTCAAAGGCAACGCCTGAGGATGGGTCTGCGGCCTATCAGGTTGTAGTGGGTGTAACGGACCCACTAGCCTACGACGGGTACGGGCCTTGAAAGAGGTAGCCCGGAGATGGACTCTGAGACACGAGTCCAGGCCCTACGGGGCGCAGCAGGCGCGAAAACTTCGCAATGCGGGAAACCGTGACGAGGGAATCCCGAGTGCTCATACAATGTATGGGCTTTTATGATGTGTAAAAAGCATTAGGAATAAGGGCTGGGTAAGACCGGTGCCAGCCGCCGCGGTAATACCGGCAGCTCTAGTGGTAGCCACTTTTATTGGGCCTAAAGCGTTCGTAGCCGGTCAGGTAAATCCTTGGGTAAATCGTACAGCTTAACTGTGCGGATTCCGAGGAGACTGCTTGACTAGGGACCGGGAGAGGTTGGAGGTACTCCTGGGGTAGGGGTGAAATCCTGTAATCCTAGGTGGACCACCGGTGGCGAAGGCGTCCAACCAGAACGGCTCCGACGGTGAGGGACGAAGGCTAGGGGCGCAAACCGGATTAGATACCCGGGTAGTCCTAGCTGTAAACGCTGCAGACTTGGTGTTGGAGATCCTACGAGGGTGTCCAGTGCCGAGAGAAGTTGTTAAGTTTGCCGCCTGGGAAGTATGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCACGCAACGGGAGGAGCGTGCGTTTAATTGGAATCACGCCGAAATCTC +>URS0000A75A1F rRNA from 1 species +TACGGAGGGAGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGTTATTCAAGTCAGAGGTGAAAGCCCGGGGCTCAACCCCGGAACTGCCTTTGAAACTAGATGACTAGAATCTTGGAGAGGTCAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGACTGACTGGACAAGTATTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGATAACTAGCTGTCCGGGTACTTGGTACTTGGGTGGCGCAGCTAACGCATTAAGTTATCCGCCTGGGGAGTACGGTCGCAAGATTAAA +>URS00009F80D5 rRNA from 1 species +GACGAACCGAGCGAACGTTGTTCGGAATCACTGGGCTTAAAGGGCGCGTAGGCGGGCTGTCAAGTCTGGGGTGAAATCCCACGGCTCAACCGTGGAACTGCCTCAGATACTGACGGCCTCGAGGGAGGTAGGGGCGAGCGGAACGGGTGGTGGAGCGGTGAAATGCGTTGATATCACTCGGAACTCCGGTGGCGAAGGCGGCTCGCTGGACCTTTTCTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS00007B79EE rRNA from 1 species +AAAACGACTCTCGGCAACGGATATCTCGGYTCTCGCATCGATGAAGAACGTAGCGAAATGCGATACTTGGTGTGAATTGCAGAATCCCGTGAACCATCGAGTCTTTGAACGCAAGTTGCGCCCTAAGCCTTCTGGCCGAGGGCACGTCTGCCTGGGTGTCACAAA +>URS000123EF67 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAAGTGGCGAACGGGTGAGTAACGCGTAATCAACCTGCCCTTCAGAGGGGGAAAACAGTTGAAAACGACTGCTAATACCGCATACTGAAGGAGGGGATTGCGTCGGATTAGCTAGTTGGAGGGGTAACGGCCCACCAAGGTGATGATCAGTAGCCGGTCTGGAGGGATGGACGGCCACAATGGGACTGGGACCCGGCCCAGACTCCTTCGGGAGGGAGCAGTGGGGAATCTTCCGCAAAGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGACGGCCTTCGGGTTGGAAAGCTCTGTTAATCGGGACGCGGTACCGGAATAGAAAGCCACGGCTAACTACGTGCCAGCCGCCGCGGTAATTC +>URS0000638341 rRNA from 1 species +GTCTACGGCCATACCACCCTGAACATGCCCCATCTCGTCTGATCTCGGAAGCTAAGCAGGGTCGGGCCTGGTTAGTACTTGGATGGGAGAAATGTTAACTAAAAATA +>URS000020D105 rRNA from 1 species +AATACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCGTAGGCGGTTCGTTAAGTCTGTCGTGAAAGCCCTGGGCTCAACCTGGGAATTGCGATGGATACTGGCGAGCTAGAGTACGGTAGAGGATGGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGAGATCGGGAGGAACACCCGTGGCGAAGGCGGCCATCTGGACCAGTACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGCGAACTGGATGTTGGGCACACTTAGGTGCTCAGTGTCGAAGCTAACGCGTTAAGTTCGCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGTATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGCCTTGACATGTCCGGAATCCTGCAGAGATGCGGGAGTGCCTTCGGGAATCGGAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCCTTAGTTGCCAGCACGTAATGGTGGGAACTCTAAGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGGCCAGGGCTACACACGTACTACAATGGTCGGTACAGAGGGTTGCAATGCCGCGAGGCGGAGCCAATCCCAGAAAGCCGATCTCAGTCCGGATCGGAGTCTGCGACTCGACTCCGTGAAGTCGGAATCGCTAGTAATCGCGAATCAGCATTGTCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGGTTGC +>URS0002194E4A rRNA from 1 species +AGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGTAACAGGAAGAAGCTTGCTTCTTTGCTGACGAGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTATTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTGGATCACCT +>URS0001BA8378 rRNA from 1 species +ATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCACGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACACGGGGAGGTAGTGACAATAAATAACAATATAGGGCCCTTTTGGGTCCTATAATTGGAATGAGTACAATTTAAATCCGTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAACTTCAGACCTGACCGGGCGGTCCGCCTAACGGTGTGTACTGTCTGGCCGGGCCTTACCTCTTGGTGAGCCGGCATGCCCTTCACTGGGTGTGTCGGGGAACCAGGACCTTTACCTTGAGAAAATTAGAGTGTTCAAAGCAGGCTTACGCCGGAATACATTAGCATGGAATAATAAAATAGGACGTGCGGTTCTATTTTGTTGGTTTCTAGAGTCGCTGTAATGATTAATAGGGATAGTTGGGGGCATTTGTATTGCGTTGCTAGAGGTGAAATTCTTGGATTTACGCAAGACAAACTATTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAGGTTAGGGGATCGAAAACGATCAGATACCGTTGTAGTCTTAACAGTAAACTATGCCGACTAGGGATCGGACGACCTCAATATTATGCGTCGTTCGGCACCTTACGAGAAATCAAAGTCTTTGGGTTCTGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACAGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACCCAACACGGGGAAACTCACCAGGTCCAGACATAACTAGGATTGACAGATTGATAGCTCTTTCTTGATTTTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGATAACGAACGAGACCTTAACCTGCTAAATAGCCTGGCCGGCTTTTGCTGGTCACCGGCTTCTTAGAGGGACTGTCAGCGTCTAGCTGACGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACAGAGCCAGCGAGTTTTTTTTCCTTGGCCGGAAGGTCATGGGTAATCTTGTGAAACTCTGTCGTGCTGGGGATAGAGCATTGCAATTATTACTCTTCAACGAGGAATTCCTAGTAAGCGTGAGTCATCAGCTCGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCATCGCTACTACCGATTGAATGGCTTAGTGAGACCTCCGGATTGGCTTTGGGGAGTCGGCAACGACACCCCGTTGCTGAAAAGTTGGTCAAACTTGGTCATTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAG +>URS0000DCA084 rRNA from 2 species +TGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTTGACTGGGAGCAAGCCCTTCGGGGTGAGTGTACCTTTCGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTATCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTTCGTCGCGTCCGGTGTGAAAGTCCATCGCTTAACGGTGGATCCGCGCCGGGTACGGGCGGGCTTGAGTGCGGTAGGGGAGACTGGAATTCCCGGTGTAACGGTGGAATGTGTAGATATCGGGAAGAACACCAATGGCGAAGGCAGGTCTCTGGGCCGTCACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACA +>URS0001D81814 misc_RNA from 1 species +ACAAACTTGGTCATTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACAAAGCATGGCGAACCTCGTGTTTCGCGAGGTTTTTGCGTCCATTTTTCGTATTTAAAACATCCACTCTTTTAAAAATTTATCTAATGATAAAATAAAAAAGATCACTTTCAACAACGGATCTCTTGGCTCTCAGAGACAGACAAACTTGGTCATTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACAAAGCATGGCGAACCTCGTGTTTCGCGAGGTTTTTGCGTCCATTTTTCGTATTTAAAACATCCACTCTTTTAAAAATTTATCTAATGATAAAATAAAAAAGATCACTTTCAACAACGGATCTCTTGGCTCTCGCATCGATGAAGAACGCAGC +>URS00022FF30A rRNA from 1 species +TGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGCGATGAAGGCCTTCGGGTTGTAAAAATCTTTTGTATGGGAAGAAAATGACAGTACCATACGAATAAGGACCGGCTAATTACGTGCCAGCAGCCGCGGTAATACGTAAGGTCCGAGCGTTATCCGGATTCATTGGGCGTAAAGCGCGCGCAGGCGGCTCTTCAAGCGGAACCTCTAACCCCGGGGCTCAACCTCGGGCCGGGTTCCGAACTGGAGGGCTCGAGTGCGGTAGAGGCAGGCGGAATTCCCGGTGTAGCGGTGGAATGCGCAGATATCGGGAAGAAAACCGATGGCGAAGGCAGCCTGCTGGGCCGGCACTGACGCTGAGGCGCGAAAGCTAGGGGAGCGAACAGG +>URS00012276C6 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAACGCAGTGGGGATGGGTGAGTAACCCGTGGGTAACCTCCCCTCAGACGGGATAACACTTGGAAACAGGTGCTAAACCGATATTGATTGATGGACTCGCGGTGCATTAGCTAGTTGGTGAGGTAACGGCGCACCAAGGCCACGATGCATAGACGACCTGAGAGGGTGAGAGGCCACACGGGGACTGAGACACGGCCCAGAAGCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTGGTAGAGAAGCGGTATCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATAC +>URS00022361F8 tRNA from 1 species +CGGGGCTGTGGTAGCCGGCCATCCCGGCACCGATGCCGACGGTGGGCAGTCCGGCGGCGGCGTAACGGCGGTTGTCCGAGGCGACCGGCCCCGCC +>URS0000016AA7 rRNA from 1 species +GGGTCTCGAGCTGATCGGGCTCCGGCCCGATCCTCCCACCCTTTGTGTACCTACCTCTGTTGCTTTGGCGGGCCGCGGTCCTCCGCGGCCGCCCCCCTCCCCGGGGGGTGGCCAGCGCCCGCCAGAGGACCATCAAACTCCAGTCAGTAAACGATGCAGTCTGAAAAACATTTAATAAACTA +>URS00023DAE2E lncRNA from 1 species +GTCTATGTCAAAAGTTTGCATATAGATAAACTTGTTTCTTGGTCCATAGTTGTTTAAAGGTTACTGATTCTATCATGCTGAAGAACATAAGATGCTCATCAACAGTAGGGCATTCCTTTTGGAAAGAAGTTTCTTAGAGAAGGAACTGATACCTATCAAGTTGAACTTGAAAGTTTGACTTGTAAAAAATGAACTGACATAATCTAGTAAACCTACAGAATCGGATTTGATTAGATCAAACTCGGAGCCCATTAAAGTAACACCTTTAAGG +>URS0001703742 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGCCATACAGGTCAGCTGTGAAAACTCGAGGCTCAACCTCGAGACGTCGGTTGAAACCGTATGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGCGGTACTGACGGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0000241E50 rRNA from 2 species +TTAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTGATACGTAGGGTGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGGGCTCGTAGGTGGTTGATCGCGTCGGAAGTGTAATCTTGGGGCTTAACCCTGAGCGTGCTTTCGATACGGGTTGACTTGAGGAAGGTAGGGGAGAATGGAATTCCTGGTGGAGCGGTGGAATGCGCAGATATCAGGAGGAACACCAGTGGCGAAGGCGGTTCTCTGGGCCTTTCCTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGCTTAGATACCCTGGTAGTCCACGCTGTAAACGGTGGGTACTAGGTGTGGGGTCCATTCCACGGGTTCCGTGCCGTAGCTAACGCTTTAAGTACCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGCCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGTAGAACCTTACCTGGGTTTGACATGGATCGGGAGTGCTCAGAGATGGGTGTGCCTCTTTTGGGGTCGGTTCACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCACTGTTGCCAGCACGTTATGGTGGGGACTCAGTGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTTCACGCATGCTACAATGGCTGGTACAGAGAGTGGCGAGCCTGTGAGGGTGAGCGAATCTCGGAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCTCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGGCTTGTACACACCGCCCGTCAAGTCATGAAAGTTGGTAACACCCGAAGCCGGTGGCCTAACCGTTGTGGGGGAGCCGTCGAAGGTGGGACTGGTGATTAGGACTAAGTCGTAACAAGGTAGCCGT +>URS00009FA0E6 rRNA from 1 species +GTCCACGCCATAAACGATGAGGACTAGACGTTGGAGGCTTTAGGCTTTCAGTGTCGTAGCTAACGCGCTAAGTCCTCCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCATGGAATCCCGCAGAGATGTGGGAGTGCCGTAAGGAACCATGAGACAGGTGCTGCATGGCTGTCGT +>URS00023F6A50 lncRNA from 1 species +CTTATCCTAAATAAAGAAAAATTTGATGTCGACGTCATGCCCGACACAATATTTACAGACTCAATATTATTGGCAAAATTAGGACTGTTGACAACCAAAAAGAATCTTAACAAAGTGGTAAAGGGTTTGGTGGATGATTCTTGAGCTCCCAAGGTCGAATGCTAGTTGATTCATATTTTCAACTAAGTTTATTTTTTTAAAAAAATAAATGAAAGAGATAGAATGCTATCATTCTCTCTACAAAAAAAGAAAAGAAAAGAAAATTTA +>URS0000783EF6 rRNA from 1 species +TACGTAGGTGGCAAGCGTTATCCGGATTTATTGGGCGTAAAGGGAACGCAGGCGGTCCTTTAAGTCTGATGTGAAAGCCTTCGGCTTAACCGGAGTAGTGCATTGGAAACTGGGAGACTTGAGTGCAGAAGAGGAGAGTGGAACTCCATGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGCCTGCTGGACTGCAACTGACGTTGAGGCCCGAAAGCGTGGGGAGCAAACAGG +>URS0000768CC5 rRNA from 1 species +GCATATCAATAAGCGGAGGAAAAGAAACCAACCGGGATTGCCTTAGTAACGGCGAGTGAAGCGGCAAAAGCTCAAATTTGAAATCTGGCGTCTTCGACGTCCGAGTTGTAATTTGAAGAAGGCGACTTTGTAGCTGGTCCTTGTCTATGTTCCTTGGAACAGGACGTCATAGAGGGTGAGAATCCCGTGTGGCGAGGATCCCAGTTATTTGTAAAGTGCTTTCGACGAGTCGAGTTGTTTGGGAATGCAGCTCTAAGTGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGACAGCGAACAAGTACAGTGATGGAAAGATGAAAAGAACTTTGAAAAGAGAGTGAAAAAGTACGTGAAATTGTTGAAAGGGAAGGGCATTTGATCAGACATGGCGTTTGCTTCGGCTTTCGCTGGGCCAGCATCAGTTTTAGCGGTTGGATAAATCCTCGGGAATGTGGCTCTGCTTCGGTAGAGTGTTATAGCCCGTGGGAATACAGCCAGCTGGGACTGAGGATTGCGACTTTTGTCAAGGATGCTGGCGTAATGGTTAAATGCCGCCCGTCTTGAAACACGGACC +>URS0000555B9E rRNA from 1 species +AGAACGAACGCTGGCGGCATGCCTAATACATGCAAGTCGAACGAACTCTTCGGAGTTAGTGGCGCACGGGTGCGTAACGCGTGGGAATCTGCCCCTTGGTTCGGAATAACAGTTGGAAACGACTGCTAATACCGGATGATGACGAAAGTCCAAAGATTTATCGCCAAGGGATGAGCCCGCGCAGGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCAACGATCCTTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATATTGGACAATGGGCGAGAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTACCCGAGATGATAATGACAGTATCGGAGAATAAGCCCGCTAACTCCGTGCTAGCAGCCGC +>URS000075F11E ncRNA from 2 species +GTGAGTGCTGGGTAGAATGGGAAATGAGGGATGGAAGCTGCAACCGAGGGGCTATAGGCTCAAGCTGGGCTTGTGATGCTCTCTGTAGAGCATCCTCCTCTCGGCCCCTGTCACTTTCTACTCTACCTTCTACTCAG +>URS0002564330 rRNA from 1 species +ATGGCTGTCAGCACTGGTAGCTTCTTGGCCATTGCCATGGCCCTCGCTCTCCTTAGTGGCGACATGGCCCACGCCGGCCGCCTCCTGGCCGACACCACGGAGGCAGCAGCGCCCGCTGCAACGCCTGCCGCTGTCCCAGGCATCCCCGCGCCGAAGCCGCCCGTGCCCACCATGCCTACAATGCCACCCGTGCCCGCGCTCGCCGTTCCCCAGTTCACGGTACCCCCCATGACGGCCGTGCCCGCGATCACCGTGTCCCAGGTCACGTTGCCGCCCATGCCGGCCGTCCCTGCGGTCACCGTGCCCAAGGTCACGTTGCCGCCCATGCCCGCAGTTGTTGTGCCGAAGGTGACGATGCCGCCAATGCCTGCAATTCCATCCATCTCCATACCCAAGGTGGCATTGCCTCCGATGCCTTCCATTCCCACTGTGAACGTGCCGATGCCAACCCTTGCGCCACCTCCTTCAGCATAG +>URS0000DAC67E ncRNA from 1 species +ACACGCGATGCGGGAGAGCTCGGTTCGCCGAGCACCGAAGGAGCAAGCCTCCCCGCCAATCTCTCAGGTTCTGTACCGCATCGAACTG +>URS00004A01BA rRNA from 2 species +ACTGCTCAGTAACACGTGGACAACCTACCCTTGGGTCTGGCATAATCCTGGGAAACTGGGTATAATTCCGGATAGGTCACAGATGCTGGAATGCACTGTGGCCGAAAGCTCCGGCGCCCAAGGATGGGTCTGCGGCCTATCAGGGTTGTAGTGGGTGTAACGGACCTACTAGCCTACGACGGGTACGGGTTGTGAGAGCAAGAGCCCGGAGATGGATTCTGAGACACGAATCCAGGCCCTACGGGGTGCAGCAGGCGCGAAAACTTTACAATGCGGGAAACCGTGATAAGGGAATCTCGAGTGCCAGCATATAATGTTGGCTGTCCAGATGCCTAAAAAGCATCTGTTAGCAAGGGCCGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCGGCCCGAGTGGTAACCGCTTTTATTGGGTCTAAAGGGTCTGTAGCCGGCCAAGTAAGTCCCTTGGGAAATCTGGCAGCTTAACTGTCAGGCTGCTAGGGGATACTGCTAGGCTTGGGACCGGGAGAGGTGAGAGGTACCTTGGGGGTAGGGGTGAAATCTTGTGATCCTCGGGGGACCACCAGTGGCGAAGGCGTCTCACCAGAACGGGTCCGACGGTAAGGGACGAAAGCTAGGGGCACGAACCGGATTAGATACCCGGGTAGTCCTAGCCGTAAACGATGCTCGCTAGGTGTCAGTCACGGTGCGACCGTGATTGGTGCCGTAGGGAAGCCGTGAAGCGAGCCACCTGGGAAGTATGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>URS00021D2EAF rRNA from 1 species +GCGATAGTACCAGCACTAATGCACCGGATCCCATTAGAACTCCGCAGTTAAGCGTGCTTGGGCGAGAGTAGTACTTGGATGTGTGACCCCCTGGGAAGTCCTCATGTTGCACCCC +>URS0000A1EE98 rRNA from 1 species +CGGAGGATCCAAGCGTTATCCGGAATCATTGGGTTTAAAGGGTCCGTAGGCGGTTTAGTAAGTCAGTGGTGAAAGCCCATCGCTCAACGGTGGAACGGCCATTGATACTGCTGAACTTGAATTATTAGGAAGTAACTAGAATATGTAGTGTAGCGGTGAAATGCTTAGAGATTACATGGAATACCAATTGCGAAGGCAGGTTACTACTAATGGATTGACGCTGATGGACGAAAGCGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGATACTAGCTGTTGGGAGCAATCTCAGTGGCTAAGCGAAAGTGATAAGTATCCCACCTGGGGAGTACGTTCGCAAGAATG +>URS00008B5885 lncRNA from 1 species +GCAGTTGAGCAAGATCACGCAAAAACCTCTGCCAAGACAGAACGTGCATCAGCTCAGCAGGAAAACAGTTCAACGTGTATAGGGTCGGCCATCAAATCAGAGAGTGGGAACTCAGCTCGGAGCTCTGGCATCTCCAGTCAGAATAGCTCTACAAGTGATGGAGATCGATCTGTTTCCAGCCAAAGCAGCAGCAGCGTTTCCTCTCAGCTGAATAAACCACATCAAAGGAAAGGGACCACAGTATTTGAATGTTTGAAAGTCTGTAAAGCTTAAGGTTTTAAAAATGTTGCCCGTAATGTTGAACGTGTCTGTTAAAAAATAAAAGAAAAAATAGTTGCTTCAAACTA +>URS0000F1E2A3 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTCTGTCACGTCGACTGTGAAAACCTGGGGCTCAACCCCGGGCCTGCAGCCGATACGGGCAGACTAGAATTCGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATATTGACGCTGAGGAGCGAAAGCGTGGGGAGCAAACAGG +>URS0000D90CA0 rRNA from 1 species +AACTTTTAATAATAGATCTTTTAGTTTTAATATTAATAAAGAATATAGTAAAATATAATAAGTAATATAAATTATAGAATTTAATAAATTATTAAATCTTTAAACGTATATTACGCTTATTAGTATTTTAATAAGTATACCTATTTAAGCGTTA +>URS00023A597C lncRNA from 1 species +TTGTTTTTTTTATTTTCTTTTTAATTTCAGAATTTATATTTAATTGCTTTATTTTGTTTAATTCATAATAATTTCATTTTTAATCCAAAAAATATGGGACTTTCACCAAAAATATTTTTGGATTTTTCTCTTTTATATTCTGAATTAAAATTATTTTTCGGATTAATTTTGATATTTTTCATGAATTAAATATTTTTGTGTATGTTTTTAATTGATTAAAAATACTTCTGATTTTTCAAAAGTGATGATTTTTT +>URS0000BE2407 tRNA from 1 species +GCCTTCGTGGTGTAGTGGTCAGAACGTATTCGAGAGGTCCGTGGTTCGAGTCCCGGTGAGGGCA +>URS0000E01B97 lncRNA from 1 species +AAAAAGTTTCAGAGAAGTTCAAATTGTGAAAATTAAGGTACTGAGAAATGTTGCCAGAGGTTATGAACTGCATTTTTTTTTTTTTTTAGCGTGTTTGGAGTAAGGATTGGAATGACTGTCTTTTTCCTTGTAGCTGATGAAACTGAATGGTTTGAATGGTGTCCAGGTAACAACAGACAGATGCTGACTCCAGAATGAATGACTGCAGTGATGGAATACTCAAGCAAAGACTGCCAAGCCTCCACACGGGAGTCCGTGCCTGAACGCGAAATAAAGAGGGATCCATGGAATGATTGTCCCACGATGGTAACTTCGTGATCATCTTTACAAAATACGAACATAGGCCCATGGAGAGAGGAAATCAAAC +>URS0000762E71 miRNA from 1 species +CGTTTGTGCGTGAATCTAACA +>URS0001E5F21C rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGATCCTTCGGGGTCTAGTGGCGCACGGGTGCGTAACACGTGGGAATCTGCCCTTAGGTTCGGAATAACAGTTAGAAATGACTGCTAATACCGGATGATGACGTTAAGTCCAAAGATTTATCGCCTGAGGATGAGCCCGCGTAGGATTAGCTAGTTGGTGTGGTAAAGGCGCACCAAGGCGACGATCCTTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCCCCGGCTAACTCCGTG +>URS0001C02308 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGTGAAGCGAGTGCTTGCACTCGTGGATCAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCATCACTCTGGGATAAGCACTGGAAACGGTGTCTAATACTGGATACGACCAACCCTTGCATGGGGTGTTGGTGGAAAGATTTATCGGTGATGGATGGACTCGCGGCCTATCAGCTTGTTGGCGGGGTAATGGCCCACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGTGAAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGCAGGGAAGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCACCGGCTAACTACGTG +>URS0001E5A028 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACATAGGGAAACTTACGCTAATACCGCATACGACCTATGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS00012AECC2 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGAAGTCTTCGGACTTAGTGGCGGACGGGTGAGTAACACGTGGGAACGTGCCTTTAGGTTCGGAATAACTCAGGGAAACTTGTGCTAATACCGAATGTGCCCTTCGGGGGAAAGATTTATCGCCTTTAGAGCGGCCCGCGTCTGATTAGCTAATTGGTGAGGTAAAGGCTCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACATTGGGCACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGAATGATGAAGGTCTTAGGATTGTAAAATTCTTTCACCGGGGACGATAATGACGGTACCCGGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCCGCCGCGGTAAGAC +>URS00015A0908 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGAAAGAGCTCGTAGGCGGTTTGTCGCGTCGAATGTGAAAACCCGGGGGCTCAACCCCGGGCCTGCATTCGATACGGGCAGACTAGAGTTCGGTAGGGGAGTCTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGACTCTGGGCCGATACTGACTGAGGAGCGAAAGCGTGGGGGAGCAAACAGGG +>URS0002375287 lncRNA from 1 species +GCGCAAAACCAAAATTGAGTGGGTCAGTAAAACAATTCTTTTCCAAATCCAAACATTTCTCAAAACGTTGTAACCCCTCTCCGTAAAACCTGTATACTTTCCCAGAAATATAAAATATAAATATACATATATATATTCTCAATACTTCAATTCATTAACTCAACATTTTCATCATAATTATGCCATGCCACATCATCTCAACATTTCTCATATTAATTATGCCATGCCACATCATCTCAACAGTAATAAGGTATGAATGCATCAACATAAATCATATCAGGTGCAATAAAGTAATCAACCGGAGGCCCTCTAATAGCCCTGTACGGTTGAACCTAGAGCTCAAAATCTATCACTCTCACACTCTGCCGGAGTCACTCCGCGTGACCTGTACGGCCTTCTGCACATAAGTTACGCTCTAGTGCTTCTCATAAATCATCTGTGCACATAATCTAAGGTTACCCACCAGTCGGAATCTCACTAACACTCTCGCGACTGGCCTGTCGTACCCACTCCGCGTGGACTGTACGACTAGCATCTACTTGGATCCAAGGCGAGCGTGCGATGCGGTGAATACTATAAGCACTAAACTATGGTGCAGGATTTGAGCTCAATATACATCAACATCATCATAACAGAAATAACTACTCACCTGTGCGTCCATCGCACCATTTCATACATATGCATCATATCAATTCTTACCTGTGCGTCCACCGCACCAATTCATACATATGCATCATAAATCAATTCTTACATGTGCGTCCACCGCACCAATTCATACATATGCATCATATATTAATTCATGCATGGCATTTCAACTCACATTTCTATATACTTTTCATATCAATTCTATGCATGGTATTTCACTTCCCGTTTTTCCACATAACTCATATGCATTTCATTTTAAACATATTTTCATTTCAATTCAATTTCTGGGAAACGTCAAGTATATATATATACGGAAAACAAAACTGCCCACTCACCTGGAGTTCATCCAACAACTCCCTAGCACCACACATCAAGGCGTCACGACGATCGCCGCCTAGAATAGTAATCAAATCCAACCTCAGAATTCATATCGATAGAATATATAACTTATATAAAATACGTCCCTACGTAGATC +>URS0002362E6B lncRNA from 1 species +AGTCAGGTCCAACCATTAAATGATAGGGTTAAGTCTAATCAACTAATAGATGACCAAGCCCGAGTGTAGCTCGACTCACCTGACCGCCTATTGAAGGTACACTTAACTCATCATATATTGAATGACAATTCCAATGCTTGATAAGTACCAGGCGTGTAGCACCTCCAATAATTATCAAAACATTGGACCCATTATCACCCAACTTAATGGAAGGCTATGATCTAGTTATCTCCATAACCATTCATTTTAAGAACCTAATAATTTTAGAGGATTTCATAATTAGGATAGATGAGAAGATCCGGTTAGTC +>URS000199E9B9 lncRNA from 1 species +GGTGTCATGGGAAAGGAAGTGGTGTAATGCAATATATTCACCATCTCCTGACAGTACCACAATGAGATACCTTTTTCTGTAGGTGGTTCAGATGTATGTCAGTAGATAGTGCCGATAAATGCTCTTCCAGCCTGATCCTGCTCGACCTGATGTGCAAATAGATGCAAAAGATATCCAAGCCCATGGAGTGAAACAGTGGTGCTTGCTGCTCGACATGAAAGATGTATCTTCTGTGGGAGCTCATTTCTTTTGTTACAGCAGAAAATAAAAAGATTTTCATAAAAGTGAAGATAAAACACTTGATAATATGTCTGTGAACATAGTTCCATTTTACCTCAGCTGTGGCATGAAAGACCATGAAATATCTTCAACTGGCTCTTCATTAAATCACACTATCTTTAAACATATTTCAAGGAAAGTAAGGAGTTTCAGATATTAAAAAACATATACAAATATTTCATAGGTACTGTATGTGAAGGTTCACTCAATCATCCAAGGCCAAATTACTTGAAGAACTGTTAAATTATTATGATTTTAAAAATAATTACTGTAATACTTTGGGGAATACATTTGTCATAACAAATACAGAACATATTTTCTAATTTCTATTATGGCTGTCAAGGTCATTCGGTGACAGAATGCAAAATCTTATTTTTCTCATTCAGATATTGTTAGATGCATAAATTCTTTAGCTAATGTAGAAAAGCATTTAAAAATTTAAATTAATTAATGAAGAAATTGTCTTTGCCTGATATCACACAACCATTTTTTTATCTTGTGAACAGAATTTAACAATACACAGGCTCAGGCTGGCTTTATTCCACTAATACATGCCATTTCCAAAAGTGTGTTGCCTATGTATTAAACACCATGCACACACAAGTATTTTAGCATTCCTTGAAAATGATTTTTAAATCCACATTTATTGTAAGTGCTTTGGAGGCAAGAACCATCTTTTGTTATTGAACAATGCAAATGGGATCTTGGTCCATAATTGGGGCTTCTAAGCACCGTGAATTCTTTCACTAATGTTTCTCATTCTCTTTTTCCCTCTCTTTGTCCCTCCGCAGATTTGCTAGTGTTTAAAAAAGTTAGGATCCCTTGCATCCTCACCAGTCTTTACATTTGCCCAAGAATCAGATTCAGTTTAGCCCAGCATTCTTCACAAAGATAAAAGGGTGACAGATCCTGACACACTTGTAATTTTCAAAACCAGAGAAGCTGATTCCTAAAACAGCATCCAAACTGAAACTGTACCAGTGTTGGTA +>URS00023F5E43 lncRNA from 1 species +TTTTTTTTTTTGGTAGGTCACGGGGAGAAAAGCTCTCCCCACAATTTATTAAGAAACTAAAAAACAAAAATCAAATTCGGATATGCTTTGGAAACGCAGTTTCTCAGTCATCATCCTCTACAAATGACGCCACAAAGGGTGGAGCAACATCTAACAAATGAAACCATAAAGGGAAAGAAAATGCATAGTTCGCTAACCCGTCCGCAAGACGGTTAGCTTCTCTATAAACATGAGTAACATGGACTAACCAGTCTCTTGATAAGAAGCCATGGCACAATCGCACCAGGAACGATAAAGGATGAGTATCACTAATCCCCCTCGTTAAAAAACCCACCACCAACTCTGAATCAACCTCCAACTCCACTCGCCTAAACCGCCTCTCCCAAGCAATATAAAGCCCGTAACAGACACCAATATTCAAGGCGAACCCACCGCACCAACGACCTTGACCATCACGCACAACTCCTCCTACTGTAGCCAATCCCGGATTTCCCCGTGAAGCGCCATCAGTGTTAAGCTTCATCCAATCTTCTTTCGGTCATTTCCAGGCCACCATTCTCTCCATTTGAGTATTCGATCTGCCCGTATAGCGATTCAGTTTGTGAGCTTGACTTACTTGAGAAGCGAAGTCCTTAACAAACTGAACTCTATCTCTACATTTACCAATCTCGCCAAAAACGTAGCCACACCGCCACTTCCAACTCCACCAAACCACAATGGAGAACAAGGTTGCCCATGAATACCCGACCTCATCATTCACCATTCCCAGATTCAAATATAACCAACCAAGAAGAGACCCATTGAAAAAATCATGTCTCCTGCGAACCGGCACTAACCTTCTCCAATGCAAGACTCGGGGTGAGTCTCACACGGGGATAGATATGGTGGCTTCACAAGCTGGCGATCGCTTCTCTCTTGTGAAGGAAAGATGGTCGAAGGTGGAAATCTGACACGCTAGCGGTCGCTTCTCTCGTGTGAGATCAAATCAGGGTTTTGATGGTGGATTGATGATCGCCACTCAAAAGTGTGAAAGCCTTTGTGATAAGATCACGAACCTTTGTCTCAAGGAATCCACACAAGAGACATTGATTCACACGTTTACTAAGTAAAGGAATCTACCTAACTTAAATAAACAAAAACAAAGCCTAAGCTTTAGAGAAAACTCTTTCTATTACTTTCAAATTTCGTGGTCCTTTACAATGAAACAAATGAGCTTTTTATAGCTCTTACATGACTAAGCTACATTAAAAGAAAATATTCTAAGTTAAATACAAATCAATCGATATAATAGAGAAAGCGTGATTGGTGGTGACGATGAGGAACAAATCGTGGGCATTGATGGAGCTTTATCTCTAGATGCATTCTCTGGATTAAATGGTGGATCAAGGATTTCGAGCAAGCAATACTCCTTAGCAATTAATGCTAATTTAATTACGTCGAATAACGAAAGTTTATTTCCTTTGAATTTCTCTTTGATTCCTTTTGATATTCCGGCCAAAGATGTTTTGCAAGCTTCTTCTTCATTTGGAGGGTTTGAAATCTCCAACATAAACGATCCAAGGTTGATGGATGATTCACTTTCCTTGCTTGGTTCGACGTGTAGTAGTTCAGGAAGTCCTTCAGCAAGTCTTTCAGGAAGTTCGTCAGAAAGTCCATCAATCAGTACATCAGCAAATGTGATGTCCGCATCATACTCTCCTTCTTGAGAAAGTTTTGTCCTCAAAACTAATTTCATTTTTTTTTTTTTTTTTAAATCACAGAACAAGAAAAAAAAAATTTAATCGAAGAAAACAAAACAGAAGCAAAAACGATTGATGATATAGGAGCTTTGAGCTCTGATACCAAATGATGCAAGACTCGGGGGTGAGTCTCACACGGGGATAGATATGGCGGCTTCACAAGCTGGCGATCGCTTCTCTTTTGTGAAGGAAAGATGGTCGAAGGTGGAAATCTGACACGCTGGCGGTCGCTTCTCTCGTGTGAGATCAAATGAGGGTTTTGATGGTGGATTGATGATCGCCACTCAAAAGTGTGAAAGCCTTTGTGATAAGATCACGAACCTTTGTCTCAAGGAATCCACACAAGAGACATTGATTCACACGTTTACTAAGTAAAGGAATCTACCTAACTTAGATAAACAAAAACAAAGCCTAAGCTTTAGAGAAAACTCTTTCTATTACTTTCAAATTTTCGAGGTCCTTTACAATGAAACAAATGAGCTTTTTATAACTCTTACATGACTAAGCTACATTAAAAGAAAATATTCTACAAATTACATACAAATCAATCGATATAATAGAGAAAGCGTGATTGGTGGTGATGATGAGGTACAAATCGTGGGCATTGATGGAGCTTTATGTCTAGATGCATTCTCTGGATTAAATGGTGGATCAAGGATTTCGAGCAAGCAATCCTCCTTAGCAATCAATGCTAATTTAATTACGTCGAATAAGGAAAGTTTATTTCCTTTGAATTTCTCTTTGATTCCTTTTGATATTTCGGCCAAAGATGTTTTGCAAGCTTCTTCTTCATTTGGAGGGTTTGAAATCTCCAACATAAACGATCCAAGGTTGATGGATGATTCACTTTCCTTGCTTGGTTCGACACGTAGTAGTTCAGGAAGTCCTTCGTTCAGCAAGTTCTTCAGGAAGTTCGTCAGAAAGTCCATCAACCAGTACATCAGCAAATGTGATGTCTGCATCATTCTCCAAATGCCCGCTATTGACGGACAATCCCTTCGCACATGCAAGATTGGTTCGTCCCCACCTTTGCAGACCTGACAAACACTTGACTCTCCAATATGACCTCGAACTCGTTCCACATTCGTCATGATAACCTGTTGAGTAACCAACCAAAGAAACGTTCTAACCCTTTCCGGAGCCATCACCTGCCACAGTCTAGCAAAAAAGGAAGACATATCTGTTCGGCACTCAGAATTTTCCATCAACATCTCATAAGCCGACGTAACCGTAAAAGCACCATCGGCAGAGTACCCCAAGATAACCTATCCCGCACGCCAGTCACGTTATCTAAAGCAATAGAGGCTAACTCCAACTGAGTATTATGAGAAACGTAGGGCAAAATTCTGTCAAGTCTCCAACCCATGCCATCCACCCATAGATTGTGAGCTCGCAACTCCTTATCTGTATTTGGTATCTCTAGAACTGCTCTTTCAGAGACTGATACGATAACCATTTATCCGCCCAAAAACGAATTTCTTGCCCATTACCAATCACCCATCTACTACCCCGAGTAGCCACTTCTCTTAACCCTGCCACGATGCTTCTCCAAGTTGACGAGCATGGCCTTTTTTTCTCCATCCAAGTTCGATCATGAATCTCTCCCACTTTATACTTTTTGCGCAAGATTCTAGCCCACAAACTCTGCCGATCATGAATAAGCCTCCAGCCAATTTTAGATACTAGAGCTTTGTTCATAAACTTTGACTTTTGAATGCCAAGACCCCCCTCTCTCTTTGGCAAACAAACTCTATCCCAAGCTACCAAATGCATCTTCTTTTTCTCTAACGAACTACCCCACAAGAAAGCTCTCGCCAGCTTATCTAATCCCTCCAACGTTGACTGTGGTAAAGAGAGAGTACTCATTGTGTGTATCAGAATAGAGGAGAGAACCGACTTGGTTAGAGTTAATCTCCCCGCAAAGCTTAAAGAACGGCCTTTCCAACCCGCTAGCCTTGAAGCCACTCTTTCAAGAACCTCTCCAAACGTATCTTTATTTATCCATCTTTCGAGAATAGGCATTCCAAGATACTTCCCCAACTCTCTTGTTGATTTAATCCCACTCTCATTACTAATCAACTTTTCCAAGTCTCATGAAACATTCTTTGAGAAAAATATCTTATATTTCTCCAAGCTCACTTTTTGTCCAGAAGCTACACAAAACGTTTCCAAGATTCTTCGTATAACCCTTATTTGAGAGACCGTTGCTTCTGCAAATAGAATTAGATCATCGACAAAACAAATATGTGAAATCTTCGGCCCTCCCTAAGACAGACCAATAGGCTTCCACTCTTTTGCAGCTACAGATCGATCGATCATGTGACAAAGTCGCTCAAGATAGAGAACAAATAAGTACGGAAACAATGGATCTCCCTGTCGAAGCCCACGTGACGGTTTAAAGCTAGCAGTCTTCTCTCCGTTCCAAAGGATACTCATAGACAGACCAGTGATGCATTGCAAAATCCATTGGACCCATCTCTCCTCCATACCCGCAGCCCGTATCGTATCCTCCAGGAAGTCCCACCGAATACGATCATATGCCTTCTTCAAATCCAGTTTCAAAAGCATCTACCCTTTTCTCCCTTGTTTCCTTCTCATCGAGTGAACAGCTTCTTGCACCACAATAATGTTGTCTAAACTGAGCCTCTCCGGGATGAAGCTAGATTGTGCTGGACCAATTAGCTTTCCAATAACTTGCTTTAAGAGTAACACTAACATCTTAGTAAGCATCTTAAAAAGAGCATTGCGCATCTTAGTATGTGCCAAACTTCAAGACTTGTAGAGTTTTGACGAGTGGAGTAGAAGACTTGGATTTTAGGATCCTCCAGACAGTAGAGACCTTCAAGTGTTCTTCCCATTATCAGCAGCTTCTTGGTTGCCTTATCATTTATACGAACACTATCAACATCAAACTCAATAGAGCACGGGTAGTCACTTGTGAGTTTTGAAACAGACAAAAGAGATTTAGCAATATCATGGCAAGCAAGAACTTCTTTTAAAGGTATTTTACCTGAAGAGGAAGCAATACTACCTGAACCAGTGTGAGTAATGGGCAAGAAGTTACCATCAACTACCATTATAAAATCAGAACCATGATAGGGTTGAGACTATTGCAAAACTTGGTGATTATTGGTAACATGAGCTGTAGCTGCTGAATCTGGAATCCACTTGTGGCCATGATGGTTTGTAACATTTGTAATGCGCATTGTACCAAGAGTCATTGGTAAGTCTTCGTATTGATAGTTGTTGTCAAACCTATGCCAACATTTCAGAGCATGGTGACCAGCTTTACCACAGATTTGACATACCACACTTGAGTTTTCCGACTGAGAAACAGATGAAGATAAAATTTGTTGATGAAAATCATGTCCTCTAGTCGAGAATGAACTCCTGCCACGGCTAGAGTTTGACCTTTCTTTTCCTATGTTGTTGCGAAATTAGCCATTGTCTGAGTGAGTGACATTGAAAGCAACATGAGGAGAGATAGATGCTTCAGTCACATAGCTTTGAAGACGGTCATCATAGCCTTTTAACTTAGAAGCAACTTCATCAAGAGAAAGACTTGGAGTAGAGTCAACAGAGTTTTCAATATTTGTTTTAATTGGCTCATACTCTCTTCCAAGACCATTCAAAGCAGAAAAGATTTTCATTTTCTCTGGAACATGGTTACCAATAGAGGCTAACTGATCAAATATATATTTCAGATCTTTGAGAAAAGTTTCCATGATGTTATGTTTCTTTTCCAGAGTTTGCAATCTTCTTTGCAGTTCAAACAAGCGAGAGGATGATACTCTATTAAAGTGATTAGCAAGAGTCATCCATACCTGATGAGAAGCGAAGCAGTTGACCACCACACTTAAGATATCTTCAGCAAACGAACCAAGTAACCAAGACTTAACAACTTGGTCTGGTTGGTGCCAAGTGTAAAACTCCTGAATTTGTTCTTCAAAGGTGACACTGTTGTGAGTAGCAGTCCGAGTTTGCGTCAGAGCAAAGATAGAACCAATGACAAAGCCGACCAGCCCTTGACCAGATAAAAAATTCTCGAACTAGCTCTTCCTTCTAGAGAATGTAGTTTTGTTGGTAAAGAGTAATGGTGAAACAGTTGGAAATATTGAGAACTGGGTGGAATTGTATAAGGTGCCATGGATCTTACTTCTATGAGATCTGATACCATGTTGACATTTCTAAACTAAGAATGGTTTATGCTCAAATGAGCTTATTAACATAGAAATCTAAAATTGGAAAATACAATAGTTCAATGAGCTTTATTGAAATATAAAGAAGAAAAAGAAGCTTTAGGTTTTGTCACCAAGAACACTTAGAAGAAAAATCCACCATTTTCAATGGAAGACAAAAATCCAATCAGATTTCCCATAAAAACCTAACTCTTCCTCAAGTCATTGAAGAGCTAAAAGAGCTCTGGGCTATGGTTTTACCAATCATAGCAATAATTTTTATATGTATTAGCGTTCTTGGTGAAATAAGAATGAAGCATAATTGTTGTAAATCAGTGACAAATCTAATATACTTCATTCTTTTTTCTCCAAGAATGCTAATATATATATAAACTCGTCAAACAATCTAAACTATTGTTTGTTAATTGAACTTCAAGCAAGCATTATGTATAAGTTTGACATGTTCACAAAACATGTTAAATTCATTTGGTGGTTGGTTGAGGAAGTTTTGCTCACCTATGTTCTTTCAAACAATTTCAACAACACATTTGATGGCACGTTGAATTAAATCTAAGATCATAATCTCGGTGATCAATCTACACTACGCAATAAGAACCACCATAGATGTATAACCATATATGTATTTAATATTAATCTTATTAATTCTGAATTTTGTTGCTTTCAACTCATTACCCCGATAGTATTTAGAAAGCGATGTTGTTTAAACATGAATTAATTGATTCAACATCAAAATTCTGGTAAATATTGGTTGGTAAATTGTTCAAAATCGTGGGTAGAAAATTAACAACATTTCTTCGTTTATAAACTAAATTGCACGTTTTTATTAGTATGTGTTTTATTTTACATAATATAGTTTGTCATACTTTTATTATATACACTATACATTATAACCGTAATTCCATACGAAGAAAACACATATTATAACCGTAAACCCAAATACATAATCTATTATTCAACTATACGAATTTCATTCAATATATAAATTTTATTAAAAAATTGTCAAAATCTAGTTATTAATATTAGAACTTATAAGATGAGGACCCAAATAAGGGTATTAGAAAGTGAAGATCACTTAAACTCTCTCATACACAATGATCGAGGCAGCCTTATCGAACCCTTTCTCCGACGTCGATGAAGCCATGGCTCGCCGGCGTCGGGATTTGTCTTCCCTTTACTACGTTGTTTCTCTCCCAACACATCCAAATCCTTTCTCGGCCCATGTCCCACGATCTCCCATGCCCACTCCTTGCGACGATTCCTATATATCTGAATTTCTTCAAGTTACAATCGTCTTCCTCTGCTATCAAACAACACCGTTTGATGCGGCTCAGCCCACTCCTGAAACAAGATCTTCTCCCTCTAAACCTTTTGTGATTCCTGTAAATCGTCCCTCTCAATGGCTCCCCTTGAAGTCAAGACCTGCATCTCACAACTCCTTTCTTTGGGATTCAATTCCCCCCACCTAGTGTTTTTCTTGGTTTCGTTTGGACCGGAGCTCTGCTTTGACGCCGGAGCCGATGAGGATTTCGACGACGGAATCTTCAACCCACTCCTCAGCTTTGGCAACGCTGACTCGACTAGCTCTATTACCAAGAAAACTCACCGTCGGCGTGCGGCCACCGTTGACGAATAAGGGAGGTAGCTTCCTAACCCTAATGTTGCTTTTCCTTATTTGGTTTGGGCCTAGCCCAAGAACTGTTTACCCTCCCTCCAATCCATTTTTCAAGTCCTCGAAGCCCATGAACAGTTTTTTTAGGTTAAGCCCACATCTTGTTTGGCCCAGGTTAGGTCTTTATTTCACTCTAGCAAACCCAAACGTTTTGATTTCTTTCTCGTCTTTGGAGAGTAGCTACCTTCCGAGATTAGTTGTGATGGTCATTGTTTGGTTTTGGTTTTCTCTCCCACAAAGTTTGGCAAATAGGTTAGCTCGTTGGTTTTATGTTACAAATCTGATCTCAAAAAGCTTTGGGCTAACTCCACTTTTGAAGTGTTTTAGAGTCTTGATGCCCATGATCCGTATTGTTATGTTTCTGTCAATTACAACCCCTATAGCACCCTTTAACTTTGTTTTGGCTGGTCGTGGACTCCACGCTAACAGAGTAACAGTTCTTTTAGGCTGTTTTGATAGATACTTTTGTCGAGGTCATTTGTTAATTTTGTTTCGAACCCTATTTGAGACTATCATCCCAAACCTTTGGCAATGTCCAAAAGAGTGAAGAAGAACGCCATTATGATCCCATCTCCACGGAGCGGTGGTTACCGAAGCTTCTTCAACTCTCTACCTCCTTACCCGCCAATTACCAAGCTCCTTCAAGGTATCTTCAAGTATACGGATAAGTTGCAAATCTGTGAAAGCTTGGCAAAGAGCGGCGTTATGATCTACCCTTTATTTTCTCCCGTGGAGCACCTTTTCAAAGGCTCATATGCATTGTTTGCAATAGCCGTTTATGACCACACGTTGGTCGAGGATTTCGCGAAGCCCGTCTTCATGGTCGAATCCGCCAAAGCCTCAACAGATTTTTCAAACCTTGTAAACTTTTTTAAAAGTGAACACCTCTTTGCAAAACTCATGAAGCCTCTATCTTCATTTTCTTGTACTATCTTAGTTCTAATTTGTATGAACTTCCCTTTTTTTAGGCTTAAGTGAATGAAAATTATTGTTTGAGAAAAAAAAAAAATAAGATGAGGACCCAAAAGCTCATAGTTCGTCATCTGTAACATGCTGCATTTTTCAGGCAAAGCAATCCGACTAAAATCAAGGAGATGTGGAGGGGAGAAGCTTCCGCCTGATACCAACGGTAAGAGCTCCACATGCGGTGTAGCGATGCAGAGTAGAAAAGGGAGATCTACGGCGAAGAACGAGAGAGACAAGTAGATAGATCTGAGACCGAAAATTGTGGCGGTTCCACGAGATCTTTGTCGATGGGGGAGGTATATTTGATCCGGCAAAGCGAAGCCAACGTCGAAGGTCTCTGTTTTCTATTCCCTACTATTTTCTCTCTTTCATGACTGAGCAAGGATCTCTTCAACAAAAACGAGATCGGCTCTCTTCCTCCTTCTCAAAACAACTCTACAGTGGCGGCATGGCAACAAATTTTGGATCACCATCTCGTTTGGCTGTCCTATTTCAGCGAGAATCTGCAGTTTTGGACGGCGGCTCGATCATGTTTTTTGATTGAGATTAGGGTTTTCAATCTTGGTTAGTTAAATTCGGTTTGTAAATTTGAGATGGCTTTAGTTTTGAGCTGCTTTGTTTATTGTATTGAAGTTTGTGGATTGGGTTTTTGCGATTTTGTATATGCTCTATCTAGAAATAGCCCATTAGACATTATATATAACAAAAAAAAAACATGAAAAACACTAGAAATCATACAATCAAATCCGCATACCTGAAACTTAAAAGACTGGCACATTCGCTAATAATGAAACATGCATCAATGGTCTCTCAAGAGTCATATTATTTGCATAAGTTGATTTGTCCCTGCAAATTCCAATACAAAGCCTTGTGGACTTAATTAAGATAATAGATGTGAAAATTCAAACACATGAATCTGTTTAAAAGACAAAATAAACGTGGCATTATATCAAACATCTTGTAATTTCATATACATAAATATCAAATTGATATTTCCCTCTCTTTGAGAACTGTCCTTACGAATTCGTTTCTAAATAACATGTTTTAGATCCTAACTGTTTGTGTTCTTATGTGATGGTTTTTTAGGGACCGGTAGGTACAACGTGACTCATTCTTGTGAGAATCCAAGTTTTGAACTATGATTTAAAGTCACAATATATGGTTACCATCTCAAATTTTATGTAGAGTGCAACTTTTTCTTGAATTGGCGTGTGTTTGGTCTTCTCGAACTTGCTTCTAACGCTATTTCAAACTTGGAAAATTTTGATTTTCACTCTTTATCATCTTGTTTGTTCAATGAGATTAGCCGTTTTGTTTGTATATTGGGTGTGTCCAATTATGCTCTTTTCTTATGTTATTGTTTATGAATAACTTGTTGAACATTTTACTTATCAATTCACTCCAATATATCCTAAAATTGGGATATGCTCAAATCACATCTAGATCTCATGATTCATATTTCTATACCATTCTTTCGATTTTGATCTTGTTTCTGTCTACACCTCCTGTAAAATATATTTTTTACACAAAATGTATTTAAAACCCATTATACAAAATAATAAACTCCAGTAAAGTGAAGAATTACAAGTAGAAGAAAAAAAAAAGACATCTCGTACAAAGTCAGAATTGAGAGAGCCCTAAACACAAGGAAAAAAACAAGAACAACAAGAAAAAGTCCACTTTGTTTGGTTTTAGACAAAAACAGTAACTTACTTTTTTGGTCAAACTCTGTAGAAAGAATCAATCTCCCTTGTAAATCTCACCCTCCTGTCACCATCTTCCCTCCGTCACTTTCCCAATTTAATTTATAATCAGAAACCCTACATATACACCTAGGTTTAGGGTTTCGCTTTTTCAGAGAAAAATAGTTTCTTTTTCTTCAAGTTAAAAAAAAAAAATTATTAATCTGGTACGCTACAGTGCACCGAAATCCCATAGATGTATAATACTCTGAGCCGTTGATGAAGCTGACGCAACCGCCACATGTCTATCATCGGCAACAATGGCGTCAACTTCTCCTACTCTCTCCCTAATACTGTACAGATACTCTCCTCTCTCTACCTCCCACACGCGCATTATACCACCTGCGCACATTAGCGCGTGCAGTCTATTAACACAACCCATTACTCTTCTCTGCGCCGCTCCACTAACACGGAACTCACACACCGTTTGTTGCGTGTTCACCCTTCGCACGCTAGCGTTTCCTCTACTGTCCAATCTAACGTACGCTTCGTCGTTGGCATCGAAGCCTGTCACTATTAGTCCTCTACGTTGCTCTTCGTCTTCTCCGATGATCACTCCTTGGTTTCTTAGATCGATCACCATGATTCTCCATCTCGTGCATGCTACCGCCGTCTCGTTACCGGAGATTCTGAGACGGCCAAGGGACGTTGTTAGCTCTGTTAACGTGTGCCATCCCATGACAGCTTCAGGGTCGGTGAGTGTACCACCGACGAATGTTGTCTCTTCGCTGTTACAGTCCCATATGTGAAAGGCACGACCTGGCACACCCGCGAAAAGACCGACCCACCAACGTCCACAGCCAGTGAAATCTACCAACGCACCGTCGTTAACTATATCTCCTGCGTAAGCCGTGCGTGTGTGACCAACACCGTCTATTTCCGCCACGTGGATGTCTCCGTCCATCGTAGCGAACGTGAGCCTTGAGTCGGAGATAACAATGCCTGAGACGGCTCGTGAGAATCTACCAAAGCGGTCACGTAGAGGTGGCCGTAAGGTCCTGACGTGGAGTCGGTTGTTTAAAAGAAAAAGCCGGACGGTTCCGTCGGCGAACCCTGCGGCTAAGTAGAGGTCTGAGAGGGTGAGACAACGGCAAGAGAGACTATCAGGCTCGTCCACATCAGACGGGTCAAATTGGAGAGTGAAGTAGGTGTGAGTACGCGTCCGGAAGTTTCTAGCCGTCCGATGACGGTAGATGAACTCGTCCCGCCACGTGTCGTGCATCAAATGTGTTCTTGCCCAAACTTGGCGAGATAGTAGTTGCCATAGATGGTCGGAGCGAGAGACAGCGTGCCACGTGGTGCAAACCTGCGATTAAGAAAAATTATTATAAGTTTTAACAAATATTATAATTAGTAGCTTAATTAATAAATGTATAAATAAGGGAGAGAGTAAAAAAAGACATAGAAAGAAGATAAGTAGGCCTGCAACGAAGCATGAAAGACTCTATATATAGGGACTAGGAAGATGGAAAGACAACGACAGACTCAGACACAAGCTCTGCGTAATATTTGTCTTACTCATCGAAACACACAACTCATTTTTATAAAAATCTATTTTATGACATATGTTCAATTGACGGGACTAATCAATCTCTGGAAGCTATAGATAGAGATATAACAACAGAAGCCCTAGTGTAAAAGGAATAATGAGAGGAAGCCCTAGTCCCATGTCAAAAGAACAAAAAACAAATCAATGTGACAATAATACAAAACAGATGATATGTTAATTTATTAGGACAGATGAGAAGACTTTAAATGAGTTAAGCTGAACATGAGATTCCGACTTTGCCAACAAGCGTGCCCTTCTCTCTTTCATTTCCAAGAAAGGATAGCTTTTAAGCCTTTGGTCTTGTTAAAAGTAGAGCTTCCCATAAATACACAAATATTACACTTATATATAGTAGATGTTTCTCTGTCTCTCTCATCCCTCTCCAACAATCCGTGGACCTACATTCTCTACATTTACGTTTATATTGTTATTTATTGTACATCTTTATTCCTCATTAAACGCAAAGTAATGTATTTGACTTCGTACTCTAGCTCTATAGTACAACCTAAAATCAAATATTTCGAATTCTATACGAAAAGAAAAGATATCTTGTCAAACCAAAGGTTTAATGTCTATTAGTCAGATAATCATTATAAAAAAAGAATAATCTAGGCACTAGGGCACGAAATGTAACATAAAATAGATTAGTACAACAAATAACATATGATGGAATGGCAAATCCTATTTATTATTATGCAAATTACCAATCACATCAATATGATATACTTCAAATAAGAAGGGAAAGAAAGTAGTTCAAATATTCCTGAGTTCTAAGATGACCAGATTCAGAATATCACTTTTGTATTTTAATGTGTGATATATCAAATGTAAGAACATAGTATATAATCTATAGACACCACTGCACGTGCTCTAAGAGACCCTTAACATTGGGTTCCATGTGCTTTTCGGCATATGTATGCCCATAATGTCGTCTCTTTTGACTGAAAAAAATTAAGGAAAGAAAAAAAAAAGATAAAAACCCACTTCAATGGAAAAGATGAATCGAGTCAGGAAAAAAGATAATTCCATGATCAATTTCAAAGTAAAAAACAACAATGAAAACTCTAGACTTATAGCCTTAATTCTCTGACAAAAGTGTTATGCTGTAACTACACTGCAGTTTCTTAAAATTTTAGGGCAAATTTGAAAATTCAATTAATTAGAAAATATTATGGGATTTAATAATGATTTAGAATTATCATGTATACATAGAGAAGTGAGATAAAATAAGAGAATGAGAAGTTGTCAGAAGCTCTGCATGCATTACTCAGTGGATCATAATATTGGCAGAGAAAAAAATAACAAAAGCAGGACGCAAAAAATGTACATATGTACTTATATACTATTCCTCGTTACTATATATGAGAAAAATCTTCAGCATAATATATATATGTATTATTTGTTTTTTTATGAACAAAAGAAAAAACAGCTATTTTCATATATAACATAGGATTATTAAAAAGAATAATATGAATGCCTGATATAATACATGGATCATATATCTGTTGATGAATAGAGTTTTCATGTATGTAGAAAATAACCTAATGTGGTAATATAGGACTAACATTGGCAAGGCAAAAAGACAGGACCTTACTTAGGTTTCTTTTCATTCTCTTTTTAGATGTTGTTAAATGTGCAACGACATTTTCTAGTTTTATGAGTCTGTCGTGAGAGGTCACTTTCTATTATTATAATTTTAAAACAATTAGCAGATAAATACCGTTATAATTATAATTCTAAAAAATATTAAATCTATTGGGCATTGGACTAAAGACTGTGCCTAATGTCTATCAACCAATATTTGGAGACAAGAAAGTGTTTAATTTGATTATTATTGTAAGAACTTTTGAGTCAAAAAGTGGATTTCTTGATCTTAAAAAAGGGCTTTCTACATGCCAAGAAAGGAAGATTTAAAGCCAATAAAATAAAATAAAACCTTGATTTTGTGCCCTAAGGGATCCAATTCATAATATAATATTAATATTAGAGTTACTATGCCCAAATGTTGTACAAAGATTACACAAACGAGATGGGGTTGTATGGTCTCCTTAGAGGATCCAAAAATAGACATTAAAAGGTATCAAAAGTAGACGAGAGAACAATGAAAAAGAAATAAACTTATTGGGTAAAAATGGAAGACAAAAAGTTTCTAAATACATAAAAGAAAAACAAAGTCCCCAAACTATATGATATGTGAAAGAGACATCAAATTAATGTCGTCTTGTTAGACATAAAAGTTGGACTTGGACCCATCATAGAAACACAGAAAGGGCGGTTACCTTTCCAAAGGTCAGTTTTTTTTTTTTTTTGTCTCTTCAGAATCCCAACCTTACAAACTAATATCACATTCAATCGAATTGAAGTAACATCATCACTTAATTATGATCTAAAGAGTAAGAATTCGTTATACCAAAAAGAATTAGAACGGCAGAATCAAATCTAAGCTTAGAAACAACTAAAGTACAAGACACTTGAAACAAGCAGTACATTTGACTAGACCAAGATTGTGTCCCTCCACTTAAGTTATTATAGACCCACGACTACTTTGACTTTGTTTTGTCTGCATAAGATCTATGTCTCACTATTTTCAAGTTCAAATATAAGCTAATAAACGAATTCAGATAGTGTAACGAAAATATTACTTTACTACCTGAAGTACATATATATATAGAGAGACACGAGATAATTGATGTGTCTCGACCGTTACAAAACTAAAAGAAGGTATTCAAAGAACGTTAGAACTGACCCGAAAAACGTTGGCAAGAGCCGGAGCTGCGGCGAGGAGGCCGGCGGATGTGGAAGCGTTAACGGCAACTTGAACGGCGAGAGATTCAAGAAAAGGCTCCGGCCAAACATCGTTGGCTCCGCGGCGAGGGCGGGATGGAGATGGGGCCTCGAAAACGCCGCCGCTTCCACCGGCTCCGTTGTCGGAAGAAGAGGAGGAGGTAGACATGAGACGAGAGGGGTTATAAGAGGAACAGGGGAAGAAGAAGAAGCGGAGAGAGGAGAAAGAATGGTGGGGGAGAGAGGAAACAAAGGACAAAAAGTGTAGATAAAGACATACTTCTCCGAGGTGGGGGACCCAGGTTGTGAAGGTATGTTTTTTTCCTATTTTTATTTTCTTTTGTCAAGATTTGTTATTATTTGTTTTTGTTTATTCTTAATAGATGCAGATTTGTTTGTGAAATAGCTTCAATTTTATATTTTTTAGGAAAAGTATTGGTTCAGTATGGTGACATATTTCAAAATTTCTTTCTTTTGATATGCAGATTTTGAATTATAATGGCAATATAACAGCTATATTATTATAAATCACTAGATTTATATTTTGACGATTTTTTATATTTAAAATAGTGTTATATATCATTAAGAATTCAACAATATATTTGCTAAGTTTATTTCCTTCCGCGAACATTAGTAAATTTTTTGTATATGGTAAACTATTGGCTAAACACAAATATTTGTAGATCGATCCATTTTAAAAATGAGAAATAAAATAATATGTATACGCAAAAAATTTGTCAGAGAGATCAAACTCGTAGCACCAAATCTCGACTTTCATACCAGTAGTAAAAACTTTTAAAGCATAGTTTAACATATTTTTTTTTCCCAACATACTATTGTCATTATAAGTAAATAATTTTTGGAAATCTGGTTAAGCATATTCTTATCATTACAATCCTCAAACCTAGAATTCGCCATATTCTGTCATCACAAAACTTAACCCTACTTTTTCTCATATTGCAGCTATCACGATCCTCAAAACCACGGTTCATCGTGAACTTTAGTCCAAACTCATCACAAACCAACACATGAGCATGCGATGCTTTTAAGTTTATTCCTCAATCTAAATATAGAAATATTTACATTTTCTGAAAATTATTCATATATATAGTGCTTTTATATAATTACAATTAACATTTTTGATTAGTATTTTTTAGTTAAAACATTTTTATTCTTTTTTAATTAAAAATAATTAACGAAATAATGATGAATCACGTTATTAAGAGAGAAAAAAAAATAAAGCCACATTATTAACGTCACTAAGAGGAACATTTTGGTTTTCCTCCCAGACATTGTTCATCTTGGGAAAAAAAAATGTCTTCTCTTTTACTAGGTGTTTATCCGAAAACGAAGAAAACCTATTTCTCGTGGCTATTCTCTCTTTCTCTCGTCTCTTCCGCCCGAAACTTTTAACGTCGTTGTCATCGAGTCACATTTCGTCTCAACTCAACTTGTTTCGATATGTGTCAAATCTTTATTTCGATTTTTCCGACAATAATCAGACATCTAAGTTCAATAGCAAGTGATTCCCATGATTAAAACCATTTTCTAAAACCACTGTTATGATATTGATGGTTTTTATCGACGCTTATTACGGCTGATTTTTGCCGTCGATTTACATATGGTGGCTGATTTGTTATTTCTATTCGATTTGATGGCTGAGTTATTGTATGCTTTAGGACTGATTTATGATTTATTAATGCATATGTGGTTGAGTTTGTTTTGTGTTGTGGCTTGGTTACTGTATGTTTTATGACTGATTTATGATTTATCAATGCATATGTGGCTAGGTTTGTTTTATGTTGTGGATGAGTTATTGTATGTTTGACTGAGTTATGATTTATCAATGCATCTGTGGCTAAATTTGTTTTATGTTGTGGCTGAGTTAATGTATGGTTATGGCTGATTTATGGTTTATTAGATGGCTAAGGTTATTTCTGAAGAACAAGCAAAGGATTACCCTCTAAGAATTTACGCAGAAGGAGAGTCTAATCTAGAGAATAAACTCATTAATCACAATATCAAGATGACATATTTCTATGGGATTTAGAGAATTAGTATGATAAGATGTGTGGGATCAAATGAAGGAGGCACCTATTGGAATAATTACTAAGTTATCGAATAGTCAATTCGTGTGGTCTCGTAAGACTGTACATTTTCTATTAAGTAGACAGTTAATAATACTTTTGAAGGAGATTTGGTGTCTCGTTGGTTAATGCTATAAAGATGTTGAGGCCTATTGGAAAGTCGTACACCATCAGTGGTATGGTTTTCATGTTACAGGCTTGGGCATATGATTCAGTCAAATGCTTTGGAGAGCGATATAGGAACGTAGTCAATAAGGATGAAATATCGTTGCTTAGATGGGGTGGAAACCGTACACGTACAACAATGGAATTTGATGTAGGTCAAATTGCTCTAAGTTTACTCCCTCAAATAAGAGATCGTCGTTAGTACTTAAGGGTAAAATTCCACAAAACTCTTTTGTTCACACAATAGGCTAAAGTATCAAAATCAAGCTAGATAGATGATAAGAAAATAAAAAGAAAGCAAGTAAGTAGATAGTGGATTGTGAAGTTGTAAGACAAGATAATAAAAACGTTAGGTTTAGGGTATTCTCAGGAAATAGATGATAAGAGATATAGAAATAGCTAGGATGTTATCGAATCGTTCTTAAACTCAAACCCTAATTACAGAATAAGCGGTGGTTCGCCGTGCTACTCAATATGCCTAGGGCTAAAGATTCCCAGCGGTCGCTTGGCAAATCCCTATATTAAGACATGCATGATAAACGAGTTTGATAAGTTCACCTAAATAGATAGGCCGATTCTTATTTCACATCTATAAACTTGGCTCATCAAATAGTATTTCTGGTAACATATACCTTTTTGGGCATACCTATTATTTAAGATTAAGTTCTAATTAGTTACTCTAGAACTAGCATTAAGAATAACCAAAGATGAAAAATCCTACATATATCCTAGCAGGTGAACAATCTACTAAATCATCTAAATCCCTAATGAGAAACCCTAACCCTAACAAGTAGACTACTCATACATGATGGATGAAACAAACAACATTTATGAATGAGAAAGCATAAACAAAATCAATAAGAAGAAAGAGTTAGAAAATATCTCTTCGGTATTATTGAAATCTCTGATAAAACTCAGAAAAATGAATCCAATGTATAAATAGCTTATAAAATGCTTTAGAACAAGTTAGGTGGCTAAAAACTTGTTAGGTCACAACAATGACCTTAAAACTATATATATATATATATATATATATATATATAACCTAAAAACGTGTAGGTTACATTATTAGGGCGCAACTGGTGTCGATCGACACCAAGAGTGTGTCGATCGACACTCTCGACTTGATCTGAAACTAAATTCGTCATTTGGCTTAGTTTCTTTAGCATTTGCTCCAAATTGTCTCCTTAACTCCATTCTTGTCCCAATCCAAAGAATACCTTAAAAGACTCTAAAAGGACTCTAAAACCTATATTTAAATCATAGTTAATGTTGGTGTCGGATCCCGCATCATGGGCTCGGATCCGGCCAAAGATTGCTACGTGGGTAAAAGAAGCCCATAAGAGAAAGGCCCATAAACGTCCTCGAGGTGAGAGTATGGATGAGGTGTTGAGTTGCGAAGTGAATACATCATCGAAGTCAAGACTACCCGGATTGAAGAGGCCGAATGGGCCGAAAGGTGAAGTCAAGAAAAGCTCGGAGTGGATTCAAGTTCCAACGTTCAAATAGTTAATTCGAAGGCTAGAAACGGACACATTTAAGATAGAATGATTGTGAGTAAATAGGTATTAAATGTATTCTTTGGGTATAAATTGTGGGTCAAAGACCATGTAAAGACAGACGCATTTCTTGGTGCAAATTAGCTATACACACTCTTTTACAATACTCATAGTTTTCTCTATAGTCACTTGTCTATTTTCTAGTATATTTGTCCTCAAGAATAATCCTTCCCACTAAATAAATAAATACTTGAGTGTGCGAATCCGACATCCACAGTTAAAAACAGTAAAAATAGGGTTATATCAGAATCGACCATTGCTAAAGATATCTAAGTGCATGGTGAGATAAGGTTTTGGCTGTGTTGTGATAGTTACTGATTGAGTTATGATTTGAAATGGCTGATTTATGGTTTGTGATGGCTGATTTATATTTTATGATGGATGATTTATGGTTTGTGATGGCTAAGTTATATTAGTGATGGTTTAGTTTTGATTTATTGATATTTGAGTTATATTTTAGTGATGGCTTAGTTATGGTTTAGTGATGGTTGAGTTATGGTTTAGTGATGTCTAAGTTATAATTATTGATGATAGAGTTTAAACTAACTAATGTGTTTTATTTTGTTATAGTTGCGTGTGAGTAAAATGGTTATGAAGGATGATGTAAGAGAGTTATTTCATACGTGGCCAAATCAAGTAGAAGACCCAACACTTGATCACTTGATCGAAAACATACATGAGAATAAGTTTGTTAAAGGTTATAGGGATGTGAAGAGAAATGAGAAGAAGAACAAACATGTAAATGGTAAAGTAGCGGTTGAGTCTGAATCTCACGCAAAGAAGCAGAAAGTCTCCCACAGTGAGGGTGGTGAATATTATGAAGGACATGCACAAAGGAAGAAGAAGAAAGAAAGAAGCAAAGGTAGTGATTTGTGAACAAAAGTGAGGCTGGTGAATCTGGTGAAGGAGATGCACAAAAGATGAAGAAGAAGAAGAAAGAAGCTAAGGTAAGTTATATGGTCTATGGTGAGTTTATATTTTATGTAATGTTTGGCTAGCTTGTTAGTGTTTGTTTTTTTGTATGTATTGCATGGTGTTAGTGAGGAGGATGATGTTCTCGAAGATGTGTTGGTTAGAGCAGTCGTGGATATGGTGTCCAAATTAACTTCAAGTTTTAACACTGTTGATACAAGCATTAGAGAAATGTCTTCAAATCTAGAGAAGGTGATTGGAGATAGAGTGGAAGCGAAGATGGATGCAAAGTTGGAAAGCGGATTTGGATATATTGATAGTGAGTTCAAACAGAAGAAAGAGCATTTGAATGTCATGGCCATGGGGGTAGAGCAAACTGACCAAAAAGCTAATGATTACGAGAACTCAGAATTCAAAATTACAGATCTACTCAGTATTTAGAAGCAGCGAGATCAGCTACTATGACAACAACAACAACAAAAAACACCAAAAGGTTCAAGAAAACCTCGACAAAACTACTATGTTACTAGTCCTCCTCATGTAAGCTAATAGTGCAACACATATGTTTGAATTATAAATACATTGCGGCTGATTAATAATTTTCTTATTTACTTACGGCTGAGTTATCATTATCTTATGACTGAGTTATCATAATGTTTATACAGGCGAAGGATATTGTCGATGTAGTAGAGAAGGATAATGGTATTGATGAGGTCAATAAGAATATGGATAAAAAATTTGTGAAGGCCATTGATGGGGTCAATAAGAATATGGATAAAGAATTTGTTAAGGCCATTGATGAAAAACGATGGTGATATTGGTTTCATTGAGAAGTCTCTTGGTTATAGGAAATTACGCCCTACGACGAGGAGAAATAACAAAGAGAATGAAGAGGTAAAGAAGAAATCCGTCAAAGAGCAAATCATCAAAGAGCCAACCGTGAAAGGTAAGAGAGGTAGAAAACCTGTAGAGGCGAAAAAGTTGACCATATAACTACATCCTGCTCTTGTTATTAATGAGAAGGGAGAAGCTGATGAAACAAAATTACCTGCTCTTAATGTGAAGAGAGAGTGTTGTTGTCTCCAAAAAAGCTGAGGAAGTCACTGACAATGATGGTTAGAAGGAAGGTGACAGTGACGTATGAGATGTCACATACCAGTTTATCGGTGAAAACGGAAGCACGTTCCCTGAGTCTGATGATGATGAGGATTGATATAATCGAAGCTTTAAAGACGCAGAGTATTAAGCTGTCTACGGATGGTAGTGCATTGAATCCACTCTTTAATCTCTCAACACGGGTTTTTCCTAATACTGGAGACAACAGACTGAAGTGCATGAGGAAGAATTGTGTGCCTTCAGCTGGAATATATGATCCTCTATCACCGGCTGATACAGCCAAATTGTAGAAACTTAAGGATTACTTATCCCCATTCTAGTATGACCCTTTATACCTTATTAAGTTGTTAATTACAACTTGTTAACATTATTTCTGTATATTAACTTGTGTTTATTTGTTAGGAATCTCCCATTGGGCAGGGCAACAAACGATGTTGATTTCTACAGGGTTATCATCTCCGAAAGAAAGCACTGACCAACCAGAGAATATGGATGGTTGTTCGATAGTGTAAGTATTACATTAGCAGAGTTATTAGTGTGTTTTGTCAGAGTTTTACTACATTATGGCTGAGTTATTGGTGTGTTATGCTACATTATGGCTGAGTTATTAGTGTGTTTTGTCTAAGTTATGTTATATTGTGTCTGGGTTATTATTTTGTTTTGTCTGAGTTTTTTTTTTGTACAACATGTGGCTGCGTTATATAGAGTCCTCAGGAATAGGTACAAGCGAAATCTCTGCCCATTCCACAACAAACGCATTGCATTTCTAGACACGTGATTCGTGTCTTTTTGGGTTAGAGAGTATGTACAGTGCAAAATATAAAAGAAGATGTTTAAATTCAAAGACACCCCGTATGAAAAGATAGTTAATGGTTTGCTTCCAGATAATCAACAGACAAATATGAAGTGAATAGAAGATGTGAATCACTTGTATTTGATTCCCCAAACCAGAGGCGATCACTAGGTGGCACTACACATGGACCAGATTAAGGGGCACATTGATTGCTATGATATCATTGTGGGATAAGTTACAAGAAACTGAATAGAATTGATTAGAATGTTGTAGGCCGTTTACGAGAATGATTCCAGCAATGATGAACGTGCTAATTCCTACTACAATCGGTGAACATAGGTTTGAGCAGTTTACATTCAAAAGGAGTAGTGTCTCCAGGGTCCCTCAAAACGTACAAGTTGGAGCTGCGGCGTGTACTCGTGTTAATTTTTTGAATGTCTAACGCTTGGTATAACTTTCAATGACATATGTGATTTCAACCTATACAGGTTAAGATGGCAGCATATATCTACAATAAGGCACCTAATCTGCTTGGACAGTTTAGGATTTTGACTTGGGATAATTATATTAACTTTTGAATCGTATTTTTTTCAACAATCCATAAGACCAATGAATTTTGTTTTCTTTATAATGGTTTGATTTCAAACTAATTTTCATATCTTGGCATTTTCAGATAATTAAATTGGAATTTTACATTACAATTATTCTTCTCATAGAATCAAAATGATAAATCTATATTAAATATGTTACTATATTCCAAACTTTTTTGGTTTAGTTTTATGGACTTACTATATTGTGCATAACTCAAATTAAATTAAGACATTTTCACTTGGGATCACTATATTAATTTTTGAACCGTATTTTTTTCAACAAACTATAAGGCCAATGAATTTTGTTTTCTTGTAATGGTTTGATTTTAAACTAATTTTCATATCTTGGCCTTTTTAGATAATTTTATATTAGAACTATTCTTCTCATAAAATCCAAATGATAAATCTAAATTAAATATATTGCAAATCTTCCGAACTTTTGTTTGGTTTAGTTTTATAGACTTGCTATATTATGCATAACTCAAATTACATTTAAAAACTCCATTTGTCAAACATTAGGTTTTAACAAATACCTCCATAATCCCCATGTGGCTTTCTAGTACAATTATTTGTCAAACCTACGATCTATCTTCATTTTAGAATTTCTGAGATTTCTCTCACAGCCTATAAATCAAGTACAACATTAGGTTTATAGCATGATCTCCAACATTAAGAATAATCAAGTTTTTACCATTTGTTGTTATTTCCAACTTAACATGATCAAAACTAAATGCGTGGAGTCTTTATGTCCTCGACATAACATTATGTAAATACTTTTTGACTAAAAATAGTACCATTCACCCTTCTAACTCTATGTCAATTTGACTACAAAAACATTTTGACAAAAAAATGAACGATTACAAATTACACTGATGGAAAATATACTTAGTCGAATAACCACCAACGGTTGAATGTAAATGTGGAGTTCCAATTATTAATCATTTTTTTCGGCACTCAATTCACGAATGTGAATCACCACTAACGCATCTAGGAATATATATAGTAAGGTATACAACTTATTTTTTAATCAAAACAAAAAAATATTTGTAGATTTTTGGGACCTTTGGTTTTCCTTAAAATAGATAAGGGAATATTGGAGGATAGATATGAATCTATATGAATTAGAATTTAAGGTCTTAAATCCCTTTGTGATAAGGTTTGGGATACCTATATTTTAGGATCTGTGTTTATCTCCTGTGGAAACTCTCTTGTATAAATACGAACGTGAGTTCATCAATAAAAGCAAGTCACTTTGATAACCAATTCTACATGGTATCAAAGAGCTGAGATCATCAAAATCATCTTCAAAAATTTTGTGTTCTTAAGTTAAGAATTCTTAAATTGTTTCCTTTCTCTGTTGAGTTGATAGTCTTGTGTGTCAAGTAACAATGACAAACCCAACGTCTGGTGATGGATCTTTGTCAACCATGTCGAGTTCTATCGGAAAACAACCAGAGGTGGTGACGTCGGCGGTGACAGTGTCACCGTTCACTCTTTCTAGCTCCGATAATCCGGGGGCTATGATTCCATCGGTCATGTTGACTGGTGACAACTACAATTCTTGGTCGACAGAGATGCTAAACGCTCTTCAAGCCAAACGAAAGACGGGTATCATTAACGGTGCAATACGTAAACCACCTGCTGATGATCAAAATTTCGAAAATTGGACAGCGGTGAATTCTATGATAGTTGGATGGATCCGAGCTTCCATCGAACCAAAGGTGAAATCCACCGTGACTTTCATCTCAGATGCTCATCAATTGTGGATTGATTTGAAGCAAAGATTTTCTGTGGGCAACAAAGTGCGTATTCATCAACTCATAGCACAGCTCGCGACATGCCGTCAAGATGGACAATCTGTTTTAGATTACTATGGACGGTTGAGTTCGTTGTGGGAAGAATACCAAATTTACAAACCCATCACTACGTGTACGTGTGGTTTGTGCACTTGTGGTGCCACATGACAACCATCCAAAGAACGAGAAGAAGAGAAGATTCATCAATTTGTGTTGGGACTTGATGAATCTAGGTTTGGAGGAGTTAGTACCAATATCATATCTATGGATCCTCTTCCAACTCTTGGTGAAGTATATTCGAGAATCATAAGAGAGGAGCATTCTTCTCGCAACAACGAGCAACATCGAGAGTCAGTTGGTCTGTTTACTCGACATGACCAGTCTGCTTCAGATGTCGCTGCCTACTTTGGGAAATCAGATGTGACTGCTTTAAACAGACCTGAATCCTCAATCATCAAACCCCGAGATTGTAACGTGCTCTGTTCGCATTGTGGACGAGCTGGGCATGAAAAACAGGAGTGTTGGCAGATCGTGGGGTTTCCTGATTGGTGGAAGGAACGAGAACGTCTTCAAAAGGCTAGTGGTCGTGGAGGAGGAGGACGAGGAGCAGGACGAGGAAGAGGACAAGCTTTTACAGCTCATGCCACAAGCTCACATTCCTCTGTTTTTCCTGACTTTACACCGGAACAAATAAAGGTTCTTCAACAAATGGTCACCGAAAAATCAAGCACCAATAACGTCGACAAGTTGTCGGGTAAGAGAGCTCTTGGTAATGTGATACTTGATACAGGGGCTTCTCACCACATGACGGGAAACCTTTCTCTATAACATAACATCAAAAATATTTCGCCATGTTCGGTGGGATTCGCAGATGGAAGTAACACATTTGCCTTGAGTATGGGAGTGTTCCCATTGTCTGACACGGTTTCGTTAACCGATGTCCTATACGTACCATCTTTAAATTGCACACTTATCTCAGTTGCTAAGTTCATAAAACAAACCAAGTGTGTAGCTTTGTTTACTGAGACCTTGTGCGTTTTGCGGGACCAATTTTCGAAGACTTTGATTGGAAGCGGTGAAGAGCGTGATGGGGTTTACTACTTTACGGATGTTGTTTCACCAAAGATACATAGCGTGGATGTTGTTTCTGACAAAGCGTTGTGGCATCGGCGATTGGGACATCCATCATTTTCTGTTCTTTCAACTTTGCCTATGTTTCTAGTTCTTCGAAATCTGCTACTCCAAGTCCTTGTGACATTTGTTTTAGAGCTAAGCAGACTAGAGAGGTTTTTCCAGAGAGTTTTAATAAAGCAAACGATTGTTTTTCTTTAATACATTGCGATGTTTGGGGGCCTTATCGGGTTCCATCTTCATGTGGAGCAGTTTACTTCTTGACTATTGTTGACGATTATTCAAGAGCGATGTGGACATATCTGCTTCTTCAAAAGTCAGAGGTACGAAATGTGTTGACAAACTTCATTGCATATGCAGAGAAACAATTTGGAAAAACAATAAAAATCGTTAGGAGTGACAACGGGACTGAATTTATGTGCCTCTCTTCTCACTTTAAGCAGCAGGGTATCATACATCAAACATCTTGTGTTGCGACGCCACAGCAGAATGGTAGAGTTGAGAGAAAACATCGCCACATTCTTAATGTTGCTAGGGCATTGTTGTTCCAAGCTAGCTTACCTATCAAGTTTTGGGGAGAAGCAATTCTTACTGCAGCATATCTCATCAATTGCACACCCTTTTCAGTTAACAATGGTCGTTCCCCATATGAAATTCTACACAACAGCAAGCCTCCCTACGATCAACTCCGAGTGTTTGGTTCAGCTTGTTATGTTCATCGTATGGCTCGAGACAAAGATAAATTTGGAGAAAGAAGTAGACTTTGCATTTTTGTTGGTTATGCTTATGGAAAGAAGGGATGGAAGGTTTATGATTTGGAGAAAAATGAATTTTTCATATCTCGTGTTGTTATTTTCCGGGAAGATGTTTTTCCATATGCAGCTGGTGATGTTAATTATGTGCATGTTTCTTCAATACAAGTCATTCCTGATGAAGACTGGCTGGTACCTCCGTCTATAGTTGTAAGGGGGAGCTCAGAGTCTCAAATCGACTCTGTTCCAGCAACTCAAGCGGCTCCTCAAATCGACTCTGTTCCAGCAACTCAAGCGGCTCCTCAAATCGACTCTGTTCCAGCAACTTTAGCGGCTCCTCAAAACGACTCTGTTCCAGCAAGTCCGGTTTTGCTTGAAAAATCCACGAGTTCGTCTCCTGTTACAATTACACCACCAGCTTCTCCGAAAATAAGAACATCGTCTTCTTCACCAACACTAGCGCCACTTGTTGATGTTTTAAAACCTGCAGATTCGCCTCATCCTATTGTGGAATTGCGTCGAAGCAAACGAGAACGACAGGAATCTGTTAGACTCAAAGATTATGTGGCTCATAAAGTAGTATGTTCTTCAGAAACCCATCACGCTCTGCCCATCACTGCCTCTCCATCATTGTCTTCGTCAACGGTCTAAGGTACGTTTTCATCTGAATATGAGTCTCTGTATTCGTTAACAGATTTTATCTCGGATGAACAATTCTCACTAGGACATCGTGCGTTTTTGGCTACCATTACAAAATCGGTTGAGCCTAAGCATTTCAAGGAAGCTGTTCAAATAAAAGTTTGGAATGATGCTATGATCAAGGAAGTTGATGCTCTTGAAATTAACAAGACGTGGGATTTGGTTGAGCTTCCTCGCGGAAAAATTGCACTTGGAAGTCAGTGGATTTACAAGACGAAATACAACTCGGATGGTACGATAGAACGGTATAAAGCTCGTCTAGTAGTCCTGGGTAATAATCAGATCGAGGGAGAGGATTACAAAGAAACTTCCGCCCCTGTCGTGAAAATGACTACGGTTTGTGCTCTTCTTCGACTCGTTGCTGCTAATCAATGGGAGGTATACCAAATGGATGTCCATAATGCATTTCTCCACGGAGACTTGGAAGAAGAGGTATACATGAAACTCCCTCCAGGCTTCCGTCATTCACACCCCGATAAAGTTTGTCGACTTAAAAAGTCTCTATACGGACTTTAACAGGCTCCACGTTGTTGGTTCAAGAAGTTGTCTGATTCGTTACTTCGATTCGGGTTTGTTCAATCATATGATGACTACTCTTTATTCTCTTACACTCGTGAAGGTATGGAGATCCGAGTTTTGATATATGTCGACGATCTCCTCATTTGCGGGAATGATAATTATATGCTTCAAAAGTTTAAAGAATATTTGAGTCGTTGCTTTGCAATGAAAGACTTGGGGAAACTCAAATATTTTTTGGGGATAGAGGTGAGAAGAGGACCAGAGGGTATTTTTCTGTCACAGCGCAAGTATGCTTTGGATATTGTGGCGGATTGTGGAACTCTCAGTGCTACAGCTGCTGCAACTCCTCTTGAACAAAACCATCACTTAGCTGATGACGATGGTCCCTTACTGGCTGAACCAAAGAAGTATCGAAGGCTGGTAGGACGCTTGATCTATCTCACTCACACACGACCCGAGTTAAGCTATTCGATACACGTTTTATTTCAATTCATGCAAGTTCCACGTGAGGCTCATTGGGATGCTGCTCTTCGTGTCGCTCGTTATCTAAAGGGAGCTCCTGGTAAAGGCATTTTGCTCAAAGCTAATCCGGATCTTACTCTTACTGTCTACTGCGATTCAGATTATAATTCTTGTCCTCTAACAAGGCGCTCTTTGAGTGCTTTTGTTGTTTTGCTTGGTGGCTCTCCTATTTCTTGGAGAACAAAGAAACAAGACACTGTCTCTCACTCTTCCGCTGAAGCTGAGTATCGCGCAATGTTTGTCGCTCTCCGTGAGATAAAATGACTTCGAAAACTCTTGACAGGATTGGGTATCAAACTCACTGCGCCAGCTCGTTTCTTTTGTGATAGTTAGGCTGTGATTCACATTGCGGCAAACCCAATGTTCCACGAACGCACCAAGCACATCGAATCAGACTGTCACTTTGTCCGAGATGCTGTCCGAGATGGACTTATCACTACTTGTCATATTGGCACTACGGAACAGCTAGCAGATGTCTTAACCAAGGCCCTTGGACGTGTTCAATTTCTTACCTTAATGTCCAAGTTGGGCATTCAAGACCACCATGCTCCAACTTGAGGGGGAGTATTGGAGGATAGATATGAATCTATATGAATTAGAATTTATGGTTTTAAATCCCTTTGTGATAAGGTTTGGGATACCTATATTTTAGGATCTGTGTTTATCTCCTGTGGAGCTCTCTTGTATGAATACGAACGTGAGTTCATCAATAAAAGCAAGCCATGATAACCAATTCTACAGGGAATTTTAATAAAATGTCAAATCTCTCAAATTCATTTTGTTTTGTGGGTACTTGAATTCAGCAAACGATTTGTCATTTAAAAAAAAAATCCTAAGCAATCAAAATTTATGGTTTTTAGCTAATTTGATTTGCGTGGCAACATTGTATTTACCGATTCTGTGCAAATTTGACTTAGGCCTTGTGAAACCCCAAACAAATAGGATGGCAAATAATGACAAGAAAACCTCATTTTGCTGTATGATTGATACATTTATTTTGCAAATGTCTTTGTAGTCAAACCCGACCATACAACTAAATATAAAATTTGATTGGATCAGAAACCATATATTCTCTCGCTGGACTCTTGTAAGAAAACTAAAGATAATCTAATACGATTCAGGTGAAAAAAACTAACATCACATTATTTTTGTATAAGTTAATATTGAACTATATATATATATATATATATATATATATATAATCCTTTTACAAAAAATATATTTTATATATATATATATATATATATATATATATATAAATCTAAAGAAGAAAAACACATGCCTCTTTTCTCGAAATATAGATGAGTGTTGCCATAAAACAAATATGCAAATAAGTATGTACAAACTTAAGTATTTTTTACCAAAAAAAACATAAGTTTTTTGGTCAATTATTTATAATAAAAGATTTTCTAGTTCATATCATTGTGGAGGATGGGCTTTAAAAAGTATTAAAAAGATATTTAAGAAATGAAAAATAAATGGCAGTAGAAAAAAAGAAAAAAGAAAAATAAATGATGGCAAATATATCTAATGAAGAGGAGGATTTAACAAGATTTATGAAAAACTATAAAACGTTATATAGTGTGTAAAAAGGTAATAAATAAGTAATTTTTAAAATTAGTGAAATTTATAATAATAATTTTTAAAATTAAGATTAAATTCTATTATAATTATAAGAGGATAATATAAATCAATTCTTAAGAAATTATCAGAATTGGCAATGGATTCTGTGTATTATAATTATAAGAGGATAATATGATTCATTTAGATTCAGTCAGCGACTCTAAAAAATTATACTTTACAACAACATAATAAATCATAAGAATTGGCAATGGATTCTGTCTACCGAAAGATGTGGGGTGAATTCATATGACGAAATAAGTGGTGCAATTTCGTAATAATCGAAAGATATGGGGACTAAATCTTAAATAGAAACGTTAACTTGATCACAACGGCTATAATTAGTTACTAATCACAGTAATTAAACCACTAAACTCAAAAGAAAAATGGAAACAACAAAAAGCCCTACCCTCTTTCCTTAAAGAGAAGGCAACTTTTTTCTGCATTATTCGATCAGCGGCTCTCCATCTTTCTAATTTCCTTGTTCCTCACGACTTCATTCTCAGAGCTTTCGAGTCTTTCGGTTCCATTACAATGACTATGTACGATCTCACGGATTCAGGGAAGGATATGTGTTCGAGTCTTTGTTTACTGGCCGAAGTTGCGGTTATGGTTGCGGAAGAAGAACAATTTCGTCGTCTTCTAAAGACTGTCTCTAAAGAAGAAGATAGCGACAAGAGTTTCTTCTATCGTTTCCCGAGAAAAATCAGATCGTCTTTGGTGAAGAGAAGATACACGCAGCAAAACCCTAACGGGGCTTCTACTTCTTCAGCGGTTCTCGATCTGAACCTAATCACCACTGATTACGACTTGAAAACCCAACAAAACCCTAGTTTTGATGAGCCGTTAGTTGGTGTATAATGGGGCTTCTGCGTCTTCATCGTTCTTGAACCTTCGTTGTTATGATCCTTCGTTACCCTTGGATTACAACACGGCTAAGTTGGGGAAGACAGAGAAGAAAAACCTAACAAACCCTAATTACCAATCTTCATCTTCGTCTTCATGCCTAACGGAGAACAAAAGCCGCAAGAGGCGTGCCGTGCAGCAGAGGAAGAGTGGTAAACTCAAGAAAGCGAGGGTTGTTTCTTTGCCAAGGATGTCTATAGAGACGCCAGAGTGGGTTTTCCAGGTGATGAGATACATGAACGCTGATGCTGAAACCCCGAGGCTGATATTTGAGAGGACTCTGTTCAATAGTGATGTCAAATCAGGCCTGAGCCGTCTCTTAATCCCTTTCCAGCAGCTAATCAGAAACGACTTCTTGACGCCTGCGGAGTGTAGAGCCATACAGAAAGACGAAGACAACGAAGATGACAAGAATATTGGTGTGGGAACGATTCTTGTGAACCAAAGATCTAAAATGTGGGGTTTGCGTTTCAAGATATGGGCGATGGAGAAGGACTCTGGACACGGAACATTGAATTACATTTTGAATTGGGGTTGGAACGATGTAGTCAAAGGTAACGGCTTAAAGGCTGGCGACAATATCAGTCTTTGGACTTTCAGGTGCCGTGGAGTCCTCTGCTTTCCTCTTGAGACATAGTAGCTCTCTGATATTTTCATTTGTCTCTTGAGGTTTCATTTATATAGTTTCAAGTGATTCTTGAGGTTTTTGCCTTTTTAGCATAGTAGTAACTTGTTGGAAGTGTTAAGTAACTTGTCTGTCTCCTCTGTTGTCTCAGTTCTTTATCATTGTTTGAAAATAAACTATTTTGTCATAAGTATGGTTTGTTGTTTTGTCTACTTAAGTTACTGCATTGTTCAATATACCTTTGTGTTATCTCAGATCTCTCCTCTAAACCTGTTGCAATGATGGAAATGGTCTATTCCTGCAAGAGTTTTGGTACATTCCTCCGAAATGCTCGATTTAGAACCAAAAACAATCAAAAAATGTCAGAGAAAAAGCAAGTTTTGGTAACAAGGATTTATCTACGCATTGATAATATCGACAAGTTAGTTTACTCATATTAACACCAAATCATATTGTTTCTGTCGAAAGCTTAAGCTTCTCCAAGATCTCCCCATCTCACATTGTACTTAGATGCAAGGTAATGTGCACCAACAGGACCTCTGCTTCCATATGGATAGAGCTCAGGAATGATTTTCTTCTCCTCTAGTTCCTTCAAAGCCGGTGTGAATAGATCCCATGCTGCATCTAGCTCATCACTTCTGATAAACAACCTCCTCTCTCCTTCGATTGCATCGAGAAGCAGTCTTTCATATGCATCTGGTATCTCTCTTGGATACCTATCAACCCCAAAAGAATATAAATAAATAATCTCTATAGGAAAACTAGAATCAGTAGTATGCATTGTTGTACCTGGATCGATATAGAAGGTTAAGGTCGCTGCGATCTAGTCTCATTCCAAGACCAGGAACTTTGTTGTTGATCCTCAGGTATATCCCTTCATCAGGCTGAACTCTAATCACTAGTTCATTTGTTGCATTGTCTAAATTAGTAGCAAAACTTTTCTTGTACAAGTTTCCTGGGACATGTCTGAACTGAACTCTGATCTCTGCTCCTCTGGTATGGAGAGCTTTTCCAGCTTTCATAAGAAAAGGAACACCGTCCCATCTCGCATTGTTGATGAACATGGCTGCTGCAGCAAATGTAGGAGTGAGACTGTGATTTGGAACCGTTGGATCGTCTGTATAACCTGGATAAGTTTTTCCTCCCTTGTTATGGCCTTTGTATTGACCAACAACCACATCTTCAAGCCGCAACGGTTTCATTGATCTCAAAACTTTCACCTTACAGGAACACATAATCATCGGTATAGTATTTTATAACCAACCTAAAGCTTTTCTTCTTAGTGAAAAAAGTCTTACCTTTTCACTTCTTATGTCCTCAGCATCTAAGCTCACTGGCGTCTCCATTGCAAAAAGTGCAAGTATTTGCAAGAGATGGTTTTGCATGATGTCTCGTATGATTCCATATTGATCAAAGTAACTGCATCGATTTAACATTAGTAAGGTGTTCAGTGTCATACTGATCAAAGGTGTTCAGTGTTCATGCTTTGTAAGTTGTTTATGAAAGCTTACCCTCCACGCCCTTCTGTTCCGAAATCCTCAGAAAAAATCAGCTGAACGTTGCGTATGTAATTTCTTGACCACAGAGGCTCGAAAACAAGATTTGAGAATCGGAGCACTGAAAGGTTCTCAACAAGCTCCTTTCCCAAATAGTGATCAATCCTACGTATGTCACATAACATTGCAGTTAAGTTCCAGCTTAAAAATGAATGGCAGTGATGGCTGTTGGGCTAAGGAAATGGCTAACCTGAAGATTTGCTCCTCTGTAAGATACTGTTTCAGACATCTAGTTAACTCTCCGGATGATTCAGAGTCACGACCAAATGGCTTTTCCACAATGACCCTTGTCCAGCCATTCTCTGAGGAGGCTCTAAGACTTGCACACCTAACCACATCAACGAATATGTTTGGGGGTATCGACAAATAGTACAGCCTGTTTGATATCTTTCCTGCCTACAAAGCAGAAAGGAATTAGAAATGTGCTTCGTGCCATTGGTACAAGAAATAAGCATAGAGAGAGTGAAAGAAAATTACCTCTTTCTCTTTGAGCTTCTTGTTTAGTTCCGCAAAATCCTCTTCCGAGTTATACTGACCCGAATGGTAAAAGCATCTTTTCAAGAACTGCTCCATCTTATCCCCACATTTTTCCCTGTTGATTCCAACTTTTGTTCATATAACCAAAGCATAAACTTTAACTAAAACATACACTAAAAACGTATAGCAGAATATACCTCTGATCAATCCGGCAAGTTAAAGTACTACTAATCATGTCACGAAGCTCTTCATGAGTGAGTTTAGTCCGAGCATAACCAAAAACAGAAAAGTCCTGAGGAAGACAACCCTCATAAAAGAGAGCAAACAATGCAGGAAATATCTTCTTCTTGGCTAAGTCCCCTGACGCTCCAACAACTGTAATACTAAGAGTAGACTCTCCTTTTGTAACATGTTCCTCTGTAAGTTGATCTCCAGCTGAAACAATTTGGTAAAAACCATCCTCCAAAGAATCAAAAACACAAACAAAAGCTACAAAACTACTTCAATTCATAAAAAGAGAGACTTTATCAACCAAATTGCTAAACCAAACCCTCACTACCTCACAATCACTCTAATCTACTACATTCAATCCTAGAATACTCAAAGACATAATCCTTAGATGAGAAATGGTATCCTTGAGTACAAAAGATACAATCTTGAACTACTTTCTTCAATCGTCAAAAACACAGACAGAGGCTACAAAACTACTTCAGTTCATAAAGAAAGAGACTTTATTAACCAAATTCCAAAACCAAACCCTTACTCATTGCTATCTAACCAACTCACAATCACTCTAATCTTCTACATTCAATCCTAGAATACTCAAAGACATAAACTTTACAATCAAAGATGGTATCTTTGAGTATAAAAGGTCATAAAGATACAATCTTGAACAACTTTCTTCAATAGACATAAAACTGTTACAATCCTAACAACACAATCAACGACAGGTACAAGAAACTTCATCAAGAATTCTATCAAAAACTAATCTAGTCACATAGAAACTGGAGAAGAAACTCACAATCTTGTAAAGAAGCGAAATTAGTGGCACACCCATTTGAAGTATCAAGCTGAGAATGTTTCTCGGCGAAGAATCTCAAGCGAACCTGAGAAAACAAGGATTTTCTCGGGAATGTGAGAGATCTACTAAAGAGTGGTAGAGTCTCTTTAAACGGAGACGCAGCAGTAGCGAGAGACGAGGAAGAAGAAGAAGGAGAAGGAATGATCATAGAATGTGTCGCCATGCAAATTTTCTTGGAGCGTCAAAACAAATGTGATGATGATGATGATGCCATTGTTTTTTGCCTTATGAGGCTATTTGTATCGTCTCTTACATTATCCACAACAGTAGTTTTATTATATAGTTTTCGATATTTCTTATCTCTCACATTATCCACATATCTTATTTGTCAAAAAAGTTTTATTTTTCTTTGCATAAATTCTTTTTTTCTCAAGAAAGTAAACCGTATTAACATCCATCTCTGGTATAGCTTAACCGGATTATTCCATTCGAACGACCACAATTCGCTGGAAAGGTGATTTTGGTTTAGCAGTAAATTTCATACTTTATTCATTTTAGTACTCTCTTATGCACACTTTATTAATTTACTAGGTGAATATCCGGGATTTTTCGTAAATGTTTTACTTATAACAACAACAAAGGAAAGTTGTTTTATGTTATCTCTTTCTAGCCTTTTTGGCTTTTTCTAAATATACTGCATAAGCTGACTTCTCTGATTAACAAAGACTCCAATTTAGCATGATGAATAATGAGCATCATTTATACAAATATTATTTCTAAGATTCTATTTTCACCTAATTTAACCACATTTTGTAGAATTACTTACAATAAAAATTTAAAAAACCTATTCATTTTGTTTAAAATATTTTACTTAATTAAAATTTTATCATTAATCTTTCTGTCATTTACTTTTTGAGTATTATTGATTTTTATAAATCATATCAAAAAAGTTCAAAATATTTTTAATCTAAAAAAAACAAAGTATAAGAAAAATTTTAATGCCTAAAACTTATGAATACTTAAACTTTTTCACATTTATTTAACTACTTTAACTATCTTAAAATTACATACAAACTTATTAAATAGTACACATGCTTGACGACATTAAAATATATTCTCCTACTAAATATACAACAATCACCCAAAATAATAAAACACAGGTTGAATCCTAGTCATTATTTAGAATGATCATCTCTTGTGTCCCTTTTGTGGGACAACTAATCTGCAAAACCACTTTAGAGTCTTCCTATCTCCTTTGAGTTAATGAATTGTGTTAAGACGAATTTACCCCTGTATTTTATTTTGAATGAATAATTAATATTTCTAGAAAACATTTTGAAAAAAAAAAAAACGGAAAAAAAAAAAAAGCTCGAGCTCGTTCTTCTTCGGGCTTCTTCCTCCGGCGAGCCGCATTGTCGTTTTTCTCCTCCTGCAAGCTGCATCAATCTACTAAGTCCAGGTATGGAGAGAGCTTCAAAAGCTTTGAATTACATATTTTGAGGATTTTGAAATTCAATCAAATTAGATTTGGATTATTGTGTTTTAGCACCTACATTAGAAGTTTAAGTATAGATTTAGGCTTCATTTGGTCTGTTAATGGGTAAGCAATTGATTTCACATGCTGATTCATACTAAATTGAACTCAAATCGAATATTTGTTCTTGTCGCGAAAATAATACTGGTCGCACTAACTATAGTAGTACCGTAATTTATATAGATAGTATGTTTTAATAGCACCAATATTACTTAGACACGTAGTATTTCATATATGTAATAGTATTACTCACACATGTAATATTTCAGAATTAGTAATAGTATTACTGAAAATGTACTAGAATCGATAATACTAGTAATATTGACTGAGTATGTGTATTGTTTTGGCAGGTTACAATGAAAGAGAACGTGATCATATATTTTAAATTCCAAGGTCGCATGTATAATGTGATGATGAAGACATTAGGGGAGAAGATTACTCTCTCAATGTTAGAAGATAGGATAATGACGAAGCTTGGATTAGATGCAAATAAGGTAAAATTGCATATGAGGTACAATCCACGGTTGTTCGGAGTAGAGGAAGAAATGAACGTTTGTGATGATGAGGATGTCTTTGTTTATGTAACATCCGCAAAAAATAACTGAAGAAGTGTTTTGGTTGTGGAGGAGATCTCTAAACCGCCCGAGCCGGAGCAATTGCCCGAGCAATTGTCTAGAGTTGGTAAAAGTTCTGTTGGTAAGAACTATACAGAGGAGGATGAAATGAGAGTGGATGATGGTGCACTCATCGTCTTATTAGAAGAGGAACAAGGAACTCAACATCAACTTGAGGCAATAGTGGAGGATCACGGGACTCAACATCAACTTGAGGCAATAGTGGAGGATCACGGAACTCAACATCAACTTGAGGCAATAGTGGAGGATCACGAGACTCAAGAAGATGAAACACGCTATGATGAGTCTATGGATGATTCTGATAGGGGGGAACAGTATGTTGAGTCGCCACCTGTTGTAGAACCGGGTATGTTTAAGAAAGAATGGGAAGACGGAATTGGGTTGACCTTACGTCAAGAATTTCCAAACAAGGCGGCATTGCACGAGGTGGTGGATAGAGCTGTATTTGCTACCATTTTTGGTTATGTGATTAAGAAGTCGGATAAGGAGCGCTATGTCCTAAAGTGTGCCAAAGAGAGCTGTTCTTGGCGTTTACGAGCGTCCAATATCAGTAATATTGATATATTCTCGATTAGAAGGTATAATAAGATGCATAGTTGCACTCGGCTAAGTAAAGGTAGTAGTAGGCTCAGGAAAAAAAAAGGCAACCCACAATTAGTCGCAGCTCTCCTTCATGATCATTTTTCGGGACAGTTGGAAACTCCGGTTCCAAGAATTATCATGGAGCTAGTTCAGACGAAATTAGGTGTGAAAGTATCATACTCGACAGCGCTAAGGGGGAAATATCATGCGATTTATGATTTAAAAGGTAGCCCGGAAAAAAGCTACAAGGATATCAATTGTTATTTATACATGTTGAAGAAGGTAAATGATGGTACAGTTACTTATCTGAAATTGGATGAGAATGATAAATTTCAGTACATATTCGTAGCTTTGGGAGCTAGCATTGAAGGTTTTAGAGTGATGAGGAAAGTTTTAATTGTGGATGCAACACATTTGAAGAACGGATATGGCGGAGTGCTAGTGTTTGCCTCGGCTCAAGATCCTAACCGTCACCATTACATCATAGCGTTTGCCGTACTCGACGGTGAGAATGATGCTAGTTGGGAGTGGTTTTTCGAGAAGCTAAAAACGGTTGTACCCGATACTTCAGAATTGGTTTTCATGACGGACAGAAATGCAAGCCTCATAAAGGCCATACGGAACGTGTATACCGCGGCTCATCACGGGTATTGTATTTGGCATTTGTCCCAAAATGTGAAAGGTCATGCTACTCACACCAACCGAGATGTACTCGCATGGAAGTTTCAGGAGTTAAGTCGGGTCTACGTCGTGGCAGACTTCAACCGAGCGTATGACGGGTTTAAGTTGAGATATCCTAAGGCGACCAAGTATTTGGAGGATACAACCGTGAAAGAAAAATGGGCAAGGTGTTGTTTTCCCGGAGAAAGATACAACTTAGACACAAGCAATTGTGTGGAATCTTTGAACAATGTGTTTAAAAACGCAAGGAAATACTCGTTAATACCAATGCTTGATGCGATCATCAAAAAAATCTCCGTTTGGTTTAATGAACATCGGATGGAAGCCGCGTCTGGATCCTTAGAAAATAAGATGGTGCCTTTGGTCGAGAATTATTTGCATGATTTGTGGGTTTTTGCCGAGAAGCTAAAAGTGGTGGAACTAAACTCATTCGAGCGTGAATATGTAGTCACATGCGACAAAGGAATAGATTATACGGTGAGCTTGCTTTTGAAAACTTGCAGTTGCAAGGTTTTCGATATCCAAAAATATCCTTGTATTCATGCATTAGCCGCTTTCATTAACATTATGGATGATGAAGATCGGAGAAGAGGTTTGGAGTAACATGATTTGGTTACAAAATATTATTGGGCGGAGTTGTGGGCATTGGCCTATTATAGGACTATTTATCTTGTTCCGGATAGGTCGCAGTGGGAAGTACCAGATGAAGTAAAGGCGTTGAAGATAGTTCCGCTGTCTAAAAAACCGAAGAAAGGAAGCAAAAAAATGCTAAGGTTTCCATCAACCGGGGAAAAGCGGCCAAAACGACAAAGGACGCAAAACAAAAGGCGTCCAAGGCAATCGTGTCAATGGTTATTATTTGGGAATACGCCTATCTGAGTTTTTTACTTTGTTTTTGCAGTGATTTGTTGTTTTTATGGTATGGACTTACTATGTAATACTGTATTTCCCCTTCTATAGTACTATGTCTGTTTCTATTGTTTTTTTGTAATACTGGTTATAACAAGTAATATCATGTCTGTTTCTGTCGAATTTGTGGTCATATTAGTACTACTGGTAATACTAAGTTGGTGTTATGGAGTTCGAATTTGTTTACCTCAAAAGTCAATGAAAATGAATACAGTGAGTTATTAACAGATAAAAATGTATTATTAATCATTTATACTTAATTAAATTAGAAATTTTAATATTAAATCGTTTTAACTTATCTTTAGTAGACTCAATACAACATTTCCCTTATACTTTTAAGCTCACTTTTAATATTATCACCAACTTAAAATGAAAAATTCATATTGCTACATATATTTAATTTATAATTACACAAAATATTTAAACCTCTATATTTATAAAGTTCAATCCAGTGTACTACTAAATAAATAAATTATAAATATAGGAAATACTGCTAAACATGAAAAACATGGAAAGTAATACTATTTGAGAAATTGGCACTACCAAAACCTTAGGAAATACTATGCTGTAAAAAGGCTGCGCACATGTCAAAAATCTCCAAAAAACGGCGCACACGTGGGAAATTAATTTTTTTGGTTTTCCTCCAAATTTTTTGGCGCCTAACAAATTTTGAGATTCCCTCCAAAACCAAAAATTTAACTTTTTTCTTTTTCCTCTTTCTTTTTCGATCTCTTCTTACAACTTTCTTTCATCTCTCATCTCTCTTCTCCCACATCTATCATCTCTCTCTTCGACTCGAATTCTCTCACATCTCTAATCTCTCTTTCATCTTTCTACCATGGATAGACTGTGTGAGAGAGACCCCTACTACGTTGATATAAAAGTGGCGAAGAGAGCCATTGAGCAAATGGAAATGGTTGCGATGATGGAAGGGATTCCTAAGTTTTGTCCATGTGGTGGTAGCATTGTCGACACTCGAAAGGATGAAAAGAGATACTATCAATGCGAGAAGTTTAAGGTATGTTGATGTAGAGCACAAGTATTTCAAGTTTGTGTAGATCTAGATCTAGATATATTTGGTATTCCAGAGTATTTCCCGTTTTGGTAATACTGCCTAGAACAAGTAATACTGCACAAGTTTTTCTAGTTTTTGTAGATCTAGATCTATATTTGATAAATATTTGGTACTTTGTAGGATAATAGAACTGATTGTATGCACATCCGTAAACTTTGGGATAAGGCTATAGAAGAAGAGGTGAGTAGCTTAAGGGAGAGTGTTGATTACAATCAGAATAAAGTTCTAAGTCATGAGTATCTCATAGAAGAAATGCAAAAAGAATTGAAAGCCCACCGTGCAGAGATTGTGAACGTGAGCAAAGTGGTATTCCGTAATCCTATGGCTCCCAAGAAGTAATGTGTTATCCTATTGTTCCTTAATCTTATTGTTAATTTGCTTGTAAGACTTTCCCTATGCTTTATAAGACTTTCCGTATGCTTTGTAAGACTTTCCCTTCGATTGTAAGACTTCTCTTTGATTGGTAATACTATGGTTGTTCAGTTTGATATTTCCAGTATATCTCTTAGTAGTAATAGCACGAGGTATTTCCCGTATTATTGTTAACAATATCATAAAATATCCTAATACATTAATTGAATCCAAACATAGTCTTACGAGTACTTGCGAAATCCTAAAACAAAGTCAAAGTACAAGAAATCAAAATACAAATCCGGAGAAGTTACACGAATAGTTTTCACACGTCACTAGACTTTGCACGGGTTGAACGGCTCACTCGTTTGGGCACAACAGGAGCAGCCGCATTTTCCTTGATTGTTGATTCCTCCTCATCTGGTGGGTTCTGAGACATCTGCATTGTTAATTTAGTTAAACCTTGGTATTACGCGATATTACCAATTATGGAACAGTATATCCGGTATTACCCAGATTTACCTTGGCTTTCATCTCATCCATAAATGCTTCGAACGTTGCTTGTTTTTCCTCCATTTCCATAAGCGCCAACAAAGCTTCATTCAGCTTGTCATTGATGGAATGAAGCTTCTCCATTACATCAACTAACGTCGGGTCTCCCGGTCCAACAGCTGTGGGAACTTCCTCTTCATTTGGGGCTTCCATTCGTGCCTGCACATCCTCGTTGTACACCTCTTCAAATCTAATTTAACGCCCTTGACCAAGACGCTTCATCCAACTATCAATTACAACATCGTGCTTATCAACATCATCCTCTACTCCCGTGATTTCAGCCAAAAGAGGTACTTCTTCAGCCTTCTCTCTAATTATACTCTCAATGACCTATGGAAATAATAGACAATGAAATATTAGAAAGAAATAAAATCATATTTGCTCAAGGAATAATAGGAAATACTAACCTCAGTTGTTCCGAGTACATGGTTGATTTGCTCAAGGGTAAACCCTTTCATCTCGGTCCTCTTGAAATTCACCTTGCACATCCTTGGACAACCGGCATGTGCACCATCTTTTTCTTCTATGAATCTTTCCCTAAGTGATGGAATGGCCTCAAATGCTAAAAGCTACACAAAACACATGAAATTTAATTGTTAGCTTCAATTACGAAAATGTAACAAGGATAAACATGTGACTTACCTCAAGCGGCACACAGAATCCGGGAACAGGCCATGGTGACTGAGTGTTCGGGACGACACCGTTAAAATGATCCAATGTGTGTGAGATCGATTTTAACATGTACTCAAATGAATATCTCCCCCATGGAAATGTCTTACAAAACGTAAGATCACTTGCAGCCCTAACACAGAAATCATCAATTGGACTAGCCCTTTCTCCAGTCTTAGTAGGCACGGCAATGATGCTTGTTAGAAAATAGAGGACCGCCATCCGCAACCTATCCTTTGATCTAGCCGGTTCCATCTCCATTAGCTTGGTTTTCACGTCTTCACGTCTAATTACCCCGGTTTTGAAGTACCTGTTGGCGAAGTTCATATTACCAGCGCTCTGATAATTAGCTGGATGGGCCTTGCAGTTGAAACTAAAGATCAAAGCATGCTCCCTAATACCATAGCGGATGGGAACTCCATTAACAACGAACCAAACCTCCTTCTTCTTCTCAATAGATGCCGTTTGAAGAAAAAACATCCACATCCCCATTAACTTGTGGGTATATCCGAAAGGCAGGTGGTAGATGTGCTTGAAACTCGGATGCTCCATAAAATAATTCTTCTCAACATGCGTTAGAGGATGTTCCAAGTCAGCGAAGGTCTTCAACACCTCCGAGATATAACACCTCGTTGCTAACTTCATCTTCTTGGTATACTCCGACGCCGGGAAGTACATACCAAGTGGCTGCATTGCCATCGCTTCCTCCATATCCTGAAAAAAAAAAACATTCATTCATATATCACTCAATTGTAAATAGTACTGCACAGTATTACTCTGTATTTCTCAGAAGTATTCCCCGTAATTACCAGTATTACACAGATACTCCTATTTTACTATGTAGTATTTCTCAAAGTTACTAGTACTAACTATCGATAAATCACAATTATAGTATTACTCTAAGGTATTACCCACATCCGCCAATATTACCTAAATATCAACATAGCATTTCCCAATGTTACTAGTACTGTCCACAGTTCACAATTGCATTATTACCCAATTAGATCGGTATTACGAAATGGAATACTTACCACATTTGCGATGTCCTCGTCTATGGTCCTCTCCTCCACGGGTTTTGCCACTATCACGTCCTTGTCTCTCTCGTCCTCGTTTCCCTCCTCCTCCACGGACTTTTCCACATTGACGTCCTCGTCGCTCGCGGAGCTCCTCTCCTCCTCCTCCTCGATAACGGCTAGGCCGTCATCTTGTCTCTCCACCTCTTCCACGGGATTAGCACACGCGAGTTCTTTGTTTGTCTCCGTCTCCTCTGAATCGGAATCGGAGCCCAAGGTTCGGCTACTCTTCCCTGATTCTTCTTCTTCACTTGCTTCTTCTTTTTCATTTTCATCTTCCACCTCATCAGTTTGCATATTCTCTTGAATTTCTTCAGTAGGAATATGCTTCAAAGCATCATAAAACGTAGAATCATCAAGCATCGGGCTCTCTGTCGTTGGAGCCGTCGTTGGAGCCGTTGTCGTTGGAGCCGCTGTCGTTGGAGCCGCATTGGTTGCCATCGCCGTCGCAGTCGTTTGTGCCGGCGCCTGCTCCTCAGCCGGCACTTTCTCTTTATCTTTCTTCGCCGACGCCTGAACCTTCGCTTTCTTCGCCGGCACCTTCTCCTTCACTTTCTCCGCCGACGCCTTAACTTTCTCTTTCTTCATCGGCGCCGACGCTTCTATCTCCTTTCTTTTCCCTACCTCCTCCACGCGTCTTAGGCGGCATGACTGATTTCGAATCGGAAATAGAACGGAAATACTGGTGAAAGGAAGAAGAACGGTCGATTGAATTTAAAGAAATATGGAATGTTGCGGTTAATTTCAGCGGTTACTAAGGAGAAGAAGAAGAAAAATCGAAAACGGTTGTAATGAGAAAAAGAATGAAATTCGAATAAAGAGTAAAGGTTCCCTAGGCCCTGGAAATATTAGGTTTTTTTTTGGATTTTCAAATAAAGAGTAAAGGTGGTTCGGGTGGTTTGGTTCGGAAACGAACCATGGTTTTTCTGGTAATTAATAGGTTCAGATGGGGATATACTAGTAATATCCATATATTTCAAATTAAAAAATAAATAAATTATTTTTGTTTTTTACAAGGATTTTTTGGCTTCCTCTTTGAAAAAAAGGGACTGGCCAGACGACCATCATAACTACAACATATTTATAAACACAACAACAAAAATGAAACTTGATAATGTTGTAATACGAACAAGAATCGAAGTTATTTTCAGCACATTCTTCGATTTTTTTTCCTGGAAAACCGAAACCAACTCAACATAACCCATTGAAACATTTTGTACCTGGCAGGCACTTGGTAGCAATGCCTTTGTGTGTTTTAAGTCTGGTTTGAGAGGACCACTGTGGAAGAAATGTCTTGGGCAGAGTTGAATTGGGTTTGACCTGAAGAAAGAGAAGAAGAGTCGTTAAAAAGAGATCTTTGGATTTTCTTTAGTTCTTTGACAACTTCCACCATCGTTGGAACTTCTTCACTAGGACCCATGCATCTCAGTGACAACATTCGGAAAGCTTTCATTTGACAAAGCTCTTCTTCGGAAATTTGACCCATCTTTTCTATCATCTTTGGATCTGCAATCTCTTCCATTGATCGGTCTTCCTTTAATGTTGACAGCAAATTTCGAGCATGTCTTTTCATCTTCCTGTCAAATCCACCTTCACTTTCTTCTTCTTCTTCTCCTCGATAATGCTCGAAAAAGCTTTCCTAATAGAAGCCTTATACCCATAAACATTCCAAAGCCAAAGACATCTGTTCTCTCTGAGACTACGCCACTGCTAATGTAATTATCGGCAAAGTAACTATAGAATCCCTCTGCTGCCTCAACCTGGACAAATGTGTCTCCTTCTGGAATTCAGACGCAGTGAGAAAAATCAGTCAGCTTCGCGACCCCATCTTCATCCAATAAAATATTCCAATGAGACAAAATCCTATATACAAAGAGCCTAGGGAACGCAGTGTGAAGGTAAGCTAAAGCAGTAGCAATATCTTCAACTATCTTCATTCTCCTTTTCCATGGATGTTCACTTATTTCTAATTTGTAATGTTTCTTAACACCATGATAAACTTTGACTGAATCTTCAAACTCAAGACAACATCCAACCAATTTCAAAAAGGTTTTGTGACCACTCACCATCGATGAAACTGCTATGTCGCGGCTCAAAAGATCTACTTTGAAGAGACTCGACAAGCCAAGATCTTTCTTAATGAGAATCATGGGATGGTTCTCGTTCTTACCTGAATACCAGTGGTAGTAAAATTCTTTTCGAGAAACAAGATTAGTCGCTGAAATTGTTGGTGGCATTGCGGATCTCATCACCAGAGAAGAATTTGATGGGATTGGATTTGCCATGGCCGAATTCGATGAGCTCTTCTAACAACTTGGCCCCTCTCTTGGCCACTCTACCGGAAAGAAAGCTTTATTTTTCACATAACTCAAAATCTAAGAATTAACGGAAAGAAAGCTTTATTTTTCAATCAAGTGAGCAAAAGTTTCGAGACGACCTCACACTTTCTTGATAACTAAATTCTTGTTGAGTGTTGACTATTCAACACAGATGTCCTTCTGCGAAAATCAGAAATAAACATTTTAATGGATTTTGTGGAAGTTAGAGTTGGAAGAATTGATATCATCCTATTATAATAAATCACCAGTCACTTCCCAAATAACTGCAGCTCTATATATTTGACACTTGTCCTAACTCCTAAGTCTCAAATTCTATTATTTTACTTTCTTTTATATCCTAATTTATGACAATTTTATTATAATAAATCACAAATAACTTCTCAAAGAATTGGCTCTATACCTTTAACACTTGTCCTAAGTCTCAATTTCTATTATTTTACCTTTTTTTTTTCTTTTTATCCCAATTTACGACAATAAAAAAAAAAAATGTTATTCTTCCCCATCTTCTCCACGATCACTATAATATCCAAGCAAACAAAATACAAAATTTTTAAATCTCAAAACTACAAATTATAATTGGTTATTTTACAATTGGAACAGCCATTCAAGCATCTTCAACGTCTCCTTTAAGTTTTTTTAACAAAAATTCTCAATCACAAAAATCATCATCATCGTCACCAAATAATTTTGCAAAATAAATTGTTACACTGATTTGACCGCGTAAAGCGCAGGTTATTAAACTAGTTTTATGATATTAAGGTGATTTTCTACGATTTTTTGGCCATGCTTTAGTTATCAATTCAAAATTATAAACGGTTGTCTTTTTTTTTTAACCGTTGTTATTAATTGTTTAGTGAATGGTCTTCAAAAGCTCACACACTCGGCTGGGATTAGATCATCAATTATTACTATAAATCAATCGTTAAGATTCTCGGTTGCTACCTTTTCCAAATTAAGAAAATATGTTCCGTAAATTTATTCCTCTTCTCTTTTTACCAAATATTTTTCAGCTTTACTGATACTGAGGTAAGCGATTTTTTTCTTATTTGATATAGCATCTGTGTAGTATATGCTAAAAGAATGACGATTTTAGGCTGTGTTGTGTGATTTTAGGATTTTATTGTTTGTGAGTTGAGTCTCATGTATTAATAAAGTTATGTGTATTTATTATTAATTCTGTTGTGTTTATTATTAATTGTATTATGTGTTTATATCATATTGTATTTAAAGGCTTTTTAAATGTACTTCCTCCGTCCCATTAAGATAGATTTTTAAAGAAAAAACTGTCCTACAAAGATAGACATTTTATGTTTTCAATACAAAATTTAGAGTTTTTTTCATATTTTTCTCATTCGTGAGACTGGTCTTCTCCATTAACTAAAAGTACATATTCCAACATTCTCCTTCCTCCATGCACCGAGATTATATAAGTACAACATTTTGTGTCATCATTTTTTTTATTTTCAAAACTAAAAGAAAAATGTCTTCTTCTTCAAATTCATTAAGTCTTTGGGAAACGTGAAAAAGGAAGAAAAAAACAAATGAAGAAGGAAGAAACACATCGTGAAGTTTATATCAATCATGAGCTGGACTTGAACCAACTTTCTATCGAAACCACTATATTAACCATGCTCAAGATAATGTTTCCAAAATATTTTTAAATTTGTGTAAGTTATTTTAAGAATATGGCGTAAGCCTTTTTTTTCTTTGTAAGTTGGCTTAAGATTTTTGTAGTCATGATTTTAATTTTCTAGTTCTAATACAATGATCATGATAATGCTATATTTATTCAGATCTTATTGTAAGATTAATATTTTTGGTTTGAAATCTAAACCTTTTATTTCGGAGCATAGAGGCAAAGCAAAGAATATTCTTATTGATATACATTAACAATCATTTCTTTTTTCATGAACTATTCATTTTTTTGTGGTGATATTGATCTTGTTTTATGTGTGTGTATTTTTAGATGTTTTGACTATTAAATATTGTAAGTCAAAAATAAATTCTCATAAAACAAAATAATAATAATAAATTCTAAAACAACAGATACAATCATTGAAATAAACTCGATTGACCAAATTCAATTAGGAAAAAAACAAACACACAAATCTAAACATAACATGTTCTAAAATAATAAACTTGCTAAAAATTCCATTACACCTCTCACCAAAAATAGATCACAAGAGATTTGTATAGGTAGACGACCTTCTCTTTCCAATGAACCCTTCTTCATATGTAGAATTTTGTACTTATTTGAGCCTTTGGCTTTCATGATCTCTAACATGCAAGATTGCAAAGTTAAAAAGATCTGATTCACCTGTTTGCGGGGTATTCGTCAAATGATGTCTCTGCCGCCGACACAAGTTCTTCTACCGTTGTTGGACATACATTGTGTTGTAGTGATTGGATAGCATTAAAAAATCCAAGATCCAATATATTCAAATCCGGTGAATTCAGTGGTTGACACATCAAGCGTATATCAAACCCAAACTGTGAAGCAATTGCTTGAAATTGTGCATCTCTCGTATCCACATGCGTTCTTGCATTATCTTGTTGAACGAAAATAGTTTTCCCAAAATCTTCTCTTGACCACTTTTCGCGAATTTTTGAGATCACTTTTTCAATCAAGCATCTCTTTATATCCTCTCTCTTGATGGAGACCATCGGTTTCAATTCCAACATTCCCGCTTCTCTATTTATGCTTCGTCGCTTAGACAATGAAGCACAAACCAAGCCCGCTAGCAACTTAAACCCAAGTAAAACTTCATTGGGTGTTGATTGTTAATTATTAGGAATTAATTGTTAAAATATTATAAGATGTGTTGTGTGATGTTATGCGTTAGGTTGTTAGCGTGATATACATGTTGATTTGCTTGACGTCTTTAAGACGTATTTTTAAATAAAAATATAAAGATAAATAAAAGAGAATAATGATATTAAAGAAAGGATAAGATTGAGGATGTTGGACTGTAATGGAACTGACGGGTTTATTACAGGTCATTAATCGCTGACGAGCAATGAGAGGAAGGATCGAGCTACGGGCCGTGGTCTTCCATAATTAGGCTTGAGGAGCCATAAGTTAACGTATGTTAAAAACTAAGAAAAGAAAGTAAAAGATCTTGCGGTGAGCAAGACGGAAGCTTGTCTGTTATAGCTTACTAGGAAAGTTTAAGCTATATGCTTGTTGTTTGAGTCTATGCTTATGAAATAGAAATTGTGTGAAAGTATAATCGTGTTATTGTGATTCGGTGGACAGTTTTGACTGCCTTCACTGAATAATTAATTACTCACCCCCTTTTCTTTTCCCTCAGGTGAGGAAGAGAATGTTGAGTAGCTGCTCGCTTGGTGTTATTTCGGGGACTTTGGGTTTTATTTGATTTATCGTTATTTCTTATATTTCTAAACATGGTTTCTTTATTCATTTTTATCCAACGATTTTAATTTATTTATGCTATTATTTTGAGACAATTTATTTCTGATTCTTAATAAAAGAAAGTTTCCCAAAATTTTGATATTTTATTTCAAGATTTGTTTTGAAGAAATTGAATAAATGAATGGAAAGGATGAAAGTACGCCGTCTCAAGGTTGAGAGAGACGGGTATTATAGAGGGACACCTCTGAAGACACTTTACACCAAATGAGTAGTCGTATTCATTATTTATAACTAATATATTTATATCAATATTATGAGATGTCATCAGTAGCGGAGGCAGAATAGTTAGTCATAGGAGTCATATTTTTTTCTAAGCCAAATACAAAAAAAAAAGTTGAGAAAAAATGACAATATCATAGTTTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGAAGATAAAATGAGAAAGAAAAAAATTGTTCTGGTAAAGTAAACACTAAAACTAAGGTAATTTATAATGTGTTAAACAATAATAATGAGATTAACCTAGTTTAATGGACTTATGTTTTTATTTATAAAATTAATTGGGTTAACATGCTGTAGGTTTTATTTTTTTATTAGACTATATTTGGATATATATATTTGATGGGGGTTAATAATACTTTAGGAAAAGGGTCAATCTATAAAAATTAACAAAAAATAAACATATTTTCTAAAATCCATGGAGTCAATTGACCTCCATGGTTAAACACTCCCTCCGCCACTGGATGTCATTGATAATTTATTTTCTACCATAAAAGTTTTGTAACAATTTATAGCCACGAAGACTTTCACGTTTTCGCTCAATTCTCAATATTTCAGTTTTATATTATTCTGATTTTGGGTCCAAATGAAATTTAAGATCACAATTTATGGTGTTACAATTGACTTCTAGGTGTAGTTTTCAAATAAATTTGGAAAGTGTTTCACTTAAATACCAAAGAAACGTACATGCATGATGTTTTGAATTCCTTCTTTTATCAAACATGTTCAGCTTGTCATTAAATTCATTGAAAAGTTCACGTATCCTTTTATGTATTTAAAGTTTAATTTATTTAAAAGTAAATAAGTAATGTTAAAATTGTCATTATATATTATCTCTTAAATAACGTAAAATTTCTAAAAATTCATATTTGTGGGACGGAAGAAGTTTTTTTTTATAATAATAATTGTTTTTATTTTCTTATTTCAAAATTTTTACTAAGAACATAAATAACTAAAAATAGTTATTAAAAATTATGTCAATTTTTGTTAAGTTAGTTTAATTATAGTTGATATTTTAACAATTTATCTACAGTTATTATTAATATGCAATCACAAAAATATAAATATATAAAAAAATATAAAATTGTAAAATAATTAAGATAGAGTGTTGAATTTTATTAAACAAAACTAGTGTAATGTTTTAAAAAGTAAGTGGGTGTTGAATGATAATGTGGAAGAAATAGAAAATGATGTGGAGTCTTAAAAAATGAAGCTTGAAAATATTCTAACGGAATGTAAGAGTAAGACCATCTTCTGTTAAAGTTTGGTTGTTTGTTGTTAGCTTCCAGCATCTTCCGGCACATCTACAAGTAAAAAATAGAATGTTTACGATTAAGTTAGGTTTCATCTCTTATTAAAAGAAATGACCTTTAGAGATAAAGTAAAAAAACGGTAATGTTATTAAGTACCAACAAATATCACCTGTTCATCGGCCAACACCAACTCAAGCTTCTCGCTGGTACTCATGGTATATTAGCACCACAATTATAGGATTTATACTTGCACTCAGCCACGCAGTTTTGTATGGGTGTAAGTCCAGATAAACGAAAGAAGCAACCATAAAAATGATAAATGTTTGTTTGTTGGTTATATGCAATAGTTGCTTTCAGATTTGGTGATGTTAGAAGATGCAAATGATGGGATTATTTATAGTGGTTTAGAAGTCGATAGGGGATGGACATGAGTTAGTAGAGAAAATCTTGGTGAGCAAGCAAAAAAAAGAAAAAAAAATCACCATTATAAAATAAAATAAATGATTTAGAGACATAAAAATCTTTTTAATCTCATAAATTTCTGAATTTCGTCCAGATGTATTTTACTAGACCTGCTTGTAATTCATGATGTAAATTTGAATCACGTAACTCGGATCTAGCACGCACATGACTTGCAAATTCTGGTAACACCTCAATTGAGAATGGTTGTGGTGTACTAGAACCACTTGCCTCAGATTGATTATAATCGGACCAATGTTGAGCATATGTCTCTCGTTCATCATTAACAATCATATTATGCAATATGCAATGTTGAGCATTAGGTGAACGATCTAAAACATTTAATTATATCATTCAATGTGCCTGGACACCTAAAAAAGGCATGCCAGATCTTTTGATCATGAGATGCAACTCCTTCAAAAATAACAATGGTGGTTCCCTTATCTCCCTGAGTAAATTGGTCTTCCCACGCTGTATGAAATTTTTTCTACTCCTAGTGCATGCAATCAATACTCCCAATCATCCTTGAAAACCCCCACAACTCGCTAACACGCAGAATTCTTTGCAGGTTGTCTTGAGGCGGAGCTCTAAGATAATCTTCTTCAATTTTGTTGTGACACACTCTAATCCAGTTGATGATATACCTCACTTCAATATGAGATTATCTTTTATAAGCTTCGATATTGAAAGGAAATTCTGATTGATCCATTGGATTTTTTATTTTAGTAAGATGATCTTTGTGATATTAATTCATTAATAGAAGAATGAGTTTTCATTTATAAAAAATAGAGTGGTTGAAAGAGAAGGATAAGAGAAGGATTTGATTAAAAGATCATGTGGTTGAAATCCAATACTCAACAATTTTACCCCAGTATGATTCACTTTTTTGGTTTTTGCCAACAATGATGTATGTTCCATAATACATCCACTTAATAACACTCAAATTTTGCTCAATTCTCCATTTGAGGCTTTTCCGGCGAGTAGAAGTTGATACATCATTATTTGGAGTATTTTCATTAGCACTGGTCATACTTCCAAGAGTCATTTGTGTTGAAAATCCATGAAATTCAGGAGGCAGTTAAGATGAATATGTCATCATCGATCCATAATATGGATGATATTTTGGAACAGATGATGACATAGAAAAATTTGGTGGTAAACTATAATTTGGGACATTTTGAGATTGGTTGAAAGATGGACTTTGAAATTGATAATTATTGGGATTTAAATAGGGAAAAGGATAATTGGTAGAATTTTGGATAGAATTATTGTTGGAATTTGGATAGGAAAATGGAAAATTTATAATATTTGTGAAGGATTATTTTAGAATCTATTTCACAAAATAAAATAAAAAATAGAAGCAAGAGTTTATTAGAGGATAATAAAGATATTATGATAGAAATGGTGTTTTTTGTATGTATCTGAATGAAATGAATCAAGTTTCCTTTTATAGAGCTTAAAAAGTAATAAATATCCATATAAATGTTTTAAATTTTTTTTTATTATCTATATATTCATTTACATGGGATTTTTGCGTTAATTCCCTTAAACCCGGCTTTAATTCATTTGGGTTGGGTTTCGATCCGGTTTTATCGTATTCAGATCTTGAATAGGATATTTGGGTCGAGATTTCTTTTGTTCGGATCGTGTTTAGGAATAACATGTGCATCTTTAATCGAGTTAAATTCTTCTTTTAATCCACGTAATTATTTCCTTAGATTCTGTCCACCATATTCGGCTTACTACGACTTATCCTTATATATTTGCAATCTTAACAATTATATTGCTACCTACTGAATCTACATATACATTTTTACAGGAATTTTAGCAATTAAATTCTCAAGTTAGAACTTATTTACAAGGAATACCATTGACATTAATTATTATCATTTAATTAATATTCCTAATTATTAGCATTTTCTTATTTAATATATTTCCATCAATTCTAATTACTTTTAAAAAGGAGAAATCTTAGGACTTTATTAATATTATACTTTATTAAAGATAAATACTATAGTTATTTAAAGTTTATAAAATGTTTAAAATATTTAACGAAAAAACTTTTAGAATATATATATTATATAAAATCTATAAAATTAAATAACCATTTCAAAATAAAACTTTTAAATTGATTTGAATTATAAATTTTTTGATAAAAATATTATTAAAACAAACAAAAAAATGTTTAATTTTACGGAACTGGATTAGATGGTGGAACGGGTTTAGAATATTATAATGTATGTATTTTATAACAATTAAATAACCATTTGAAAGAAAAAATTTGTATTAATTTGAATTATATGTTTTTTAAATTAAAATATTATTAAAACAAAAATAACAAAAACAAAATGTTTAATTTCATTGCACGGGGTTAGATGGTAGGACATGTTTGGGTCGACAGTAATACGAGACGGTATACCACGAGTGAAATCCATTAGATATGTTTAGTTTCACTCAACGGGATTAAATGGTAGGACGTGTTTGGGTCGATAGTAAAAAGAGTCGGTATATCACAGGTGAAATCCTAGATATAACAATCAAAATACAATTATATTATCTTAAGAACTAAACAAAACAAATAATATTAATAAAATAAAGATAATTAAAATTTAAATTATTTAGTTATAATCTAGATTTTAAATTAATGAACTGTACATTATTGTTCATATATTTTTAAACAGTAAAAATCAAACATATTAATTGTATATTGAATAATATACATATATAAGAGTTGTACATACATAAAATACAAAATATGAAATCATATATATTCTTAATCGACTAAATAAATTAAATTTTTATTCTTAAAAGAACAAAATCGTCATGCAATACATCGCGGGTTAAAATCTAGTCTTTCTATATTCTCGTTATACTCTGCAACTAAATATACTCCCTCCGTCCCACTAAGATGAACTTTTAAAAAATTTCACATTCTTTAAGAAATATTGTATAAAGATAATTTTAACCTCTTAATATACTTTAAAAATAATAATAAATATTTATCTAATTATTAGTAAGGGTAAAACGGGAAAACAGTTTTAAAATTTGCATTGGAAATATAAAACTTCTATCTTTGTGGGACAAATATTTTTCCTAGAAAATTTATCTTTATGGGACAGAGGGAGTATTTTCTATCATTCTAAAAAGTTTAAACTATCAGAAATCTTTGTGCCACTTATCATATTAGAAAGAAGTAGCCTGTCCATTTCCCACTGCCACCTTACAAAGCTTGTCTATCTCCCTTATGCATGCACGAGGTAGTCTACAAGCTGCAAGCCAAAAATTGCATATGCTCCACAAAACCCAACTGATCAGATTTAAACGTCCAGCAAAAGAAAGAAATCGGGACGTCCAAGATTCAATTTTCCTTGTAATCTTTTATAACAGGGGAAGACAGCCAGATGCTGTGAATCGCTTAGTGACCAGAGGGAGTCCGAGATACCTCACTGGTAACTGACCAACTTCGAAAGGGAACCTTTGGGTTATCTCATGGTGGACTGAATCTTAAATTCCCGTCAGATACATTGTCGACTTTTCCTTGCTTATTTTTAGTCGTGATAATTTTTGCAAAATCGTTTAACACATGAACTATTCCTCCTATTGATATGACCTTTCCATCGGATAGGATCTTAAGGTTATCAGCAAAGCTCAAGTGAGTTAAGCCAAGACTTCCACATTTCAGATGGTAACCAAATTGTCTAGCACCTGAAGCTTTATCCAACATTTTAGAGAGAACATCCATACTAATGACGAATAAGTATGGAGAGAGAGAGCATCCCTGTCTTTAACCTCTTGCACTGTTGAAAAAAACAACTAATTCCCCATTAACTTGAACCGAGAAGGAAGACGTAGCTATGCAGAGGGTAACCCAATGAATAAAGACTGAGGGAAAGTCCATGGCTGTGAGAACTTTGGTGAGGAAGTCCCACTGTACCGAGTCAAACGCTTTTGATATATCAATTATTAGAGCGCAACGGCTAGAAATTGAGTCATTATGGTAGTCCTTGACTAATTCTGTCGCCAACAACACATTCTCTATCAATAGACGGTCCTTTACAAACGCTGACTGATTTCCCGCTATGAATTGAGGAAGAACCAATTTAAGCCGGTTTGCAATTATCTTGGAGATAACTTTATATGTCACATTGCAGCATGAGATAGGCCTATAGTCTTTAATCTCTTTCACATTTTTCTCTTAGGAATAAGTGCTAATATCGTGGAGTTGATGCCTTTAGGTAAGAAGCCTTCAACAAAGAAAGACTGAATCGCCAATACAAACTCATCTCTGGTGATTTCCCAAGCTCCTTTATAGAATTCTGAGGTAAATCCATCTGGTCCCGGAGATTTATCATTAGGCATAGAGAACAAAGCCTTTTTAATCTCAGCTGCAGTGACTTCATTGGTAAGCATCTCTTTTTCTATTTCCATACAACAAAAGGGTAGTAACTCTTGAAGCTCAGCCACTGAAATACCTTCGAAATCATTAGGAACTAGCTGCAAAAATTCTCTAAAGAACCGTTCAGCCTCTGTTGTGATTTCCTCCTCTTGTGCCGTCACAGTCCCATGTTGGCATTGAATCTCTCTAATTGTGTTCCGTGCCTCCCGCGTTGTAACAGCTCTATGAAATGCTTTATTGTTTCGATCACCAATCTTCATCCAATGTAATTTTCATTTCTGCTTCAAATATATTTCTTCCAGAGCTGCGACCTTGTCCCAAGTGTCATACGCCTCATTTTCTTCTTGCATTGAGCTTGTGGTGGGGTTAGACAAATTGGCCTCCTGCTTCTGACACAATTTCTCATACGCATCTTTTGTTAAAAAACACATTTTGATTTTCTTATAAGAAGTTTAAACATTATAAATACTAAAACTTTATATTACGGGTGAAATCTTAGAATTAACGAGTATGAGTCAATATTAATATAGGATGATATACCACCTGTGAGATCCTAAAATTAATAATTAAAATACAATTATAAAATCTTAAAACACTAAATAAAGTAAACATTATTAACAAGACAAATACAACTAAAAATTTCAAATATTTAGTTATAAAATATAGTCTATCTTACATTAAAACCAAACAAAACAATAACATATATCTACAGAATTTGTTTTAACTAAAATATATGCATGCGGTGTATCACGGGTTCATATCTAGTATGCTACATAATAATTGATTGTAAATAAATAAGGTGAGATAAAAATCTCCAAAATCTCAATTGCCAATAACATTACAACAAGTGTGTCTCTCAATAATTTCTTTCTTTTTTGAACAAATAATAATAGAAAACGCTTTACTTGCGAGCTAGGTGTGTGAAACATCTTCCAATCATATGGTGATACGTGGCATGGGCGAACCCAAATAAATTTTTTTCTATATGTTGAATAGATTCAACACCTAAAAATCTAATGCAAATTTTTTTTCAACAGGTCCAATGCAAGCAGTTTTAGTCACATGCAGTTAAAGTATTAAATCCTTCTACTTATAAATATTTTATTCCTACTTAATAGCATGTATGTATTTTGGCAAAAAAATGCTAAATCGGAGATGAAGTTAAAATATATATTGTGCGCTCTAATATCAAATTAAGAATTATATTTCGTCCAAGCTACTTAGTACGTACATGTTGTATTCACTAGTTGTCCTTCCTTTCTTCTTTTCCATGGTCACAATTTGGTTCATTGTTTCTTCTAAGGGATTGAGCAATCACGGTTTTTCGGGAGAGTGTTTTTTGGGCAATATCTCTTTATATATTTAAGAATGCTAAAATGTAGTATTTTTGTTGGTTCTTGTTTCATTGCCAACATTGTACGAGGCGTGATGAAGGCAGTGAAGAGAATAAGGGTAGTTTCGTAGACATAGTAGTTGAAGAGCTAAAGCTAAGAGAAGACGAATAACACACATACATGTTGCTAAGAAAGGAGCGTCTTCGCAAGGGAGAAATCCGAGGTGATTCGAGCTAGGCAAAGAGGATGGAAAGATGTAATTGTGTTTTCAAATCATATATATGAAAGGAGGTGACCTATCTCCATATGAATGACATGTTACACCATAGAGATGATATTTTCTGTATTCTCTCATCTTATTCGGAAACCTAAAAAGGTATGGTGAAAAATATAAGAATAGAAGAATGAGAAAATGGAGGCTTCTTAAACTAATTTTAAATTGTATTTGCTTAATTTAGGACTTGAAAATATATTCTGTATATTTTGAAGATTAGTGAAATTAATGGGTAATTTTCTCAGACATGGAAATCTTGTTTTATTGTTTTTCCTTTATGACTTTGCAAATATAGTAGGTTTCAGGAATTTTTATGAACTATTTTATCTTCAACTAGAATTAATACTCCAAGTACTTATATATATATATATATATATATATATATATATATATATATATATATATATCATATTTAAATTCATATTAATTTGAAAGTGTTAAAAATGCCCTTGAAGATGACAAACAACTGAAACAAGACATTTGAGCAAACAACTTGAGATGCTAACAAATGGTTTTAGTAGACATCTAAACAAATCCAAATTCTAATAAGATTTATTTTGTTAGTCATGTACATATACCCTATAACCCTAATATGGAAACCAAATAAATAGGTCACTATGGATTATGTATTTTGACCAAAAAAAAAAAAAGAAGAAGATGAATAATGTATTTTTCTGTCTCTACATACAACGAAACATAGTTAAATGTTTAAAGTTCAAAATCTACTAGAATTTGGCTACTCAGAATTATAAAAGAGATTCAAGACATTTATGTAGTACCTCTGTTGAAACATTTTTTGAGAATTTATAGTGAAAAGTGTAGTCATTTTGTGATCTTTTCCAGCTTCCTATATTTCATGCGTTTTAGCTATATACTATCCTACTATATTATTTGGGAAGTACATTTTAAAATTTAACCTTAATTTTTATAACTAATTACATGACAATGCCATTAAAAAAATCTAATCAAAGACAAAATTGTTTCAAATCATTAAGGTTAGTAAAATCATTTAACGATAATATCCATCTACTAATCACACAAGTTAATGGATATATAAACGGGTTAAATATTTTTCTGCCATTTATTAAAAATTTTCGTCAATTCATATTTGTAAGATTTTTTAAACAATAAGATCTTTTTGTTACCAGGTGGAGAATAAGTTGGAACACACTTATATAGTTTCCTTTGAAAATCAACAAAATCTTAGCCACTATATCGATTCCTATCACCATATCTCGCTGTTATAATATTTCTCATCACTATATTCCGGTTAACAAGTAATATTCCTTGAGCTACAATTTTTTTAAATAATCTTCTTTCTATCAAATAATCTATCTTAAACAATTAACTACTAACTGATTTAATTAGATCTTCAATCTATTGAATTCACCCATCAGTATTATAAATAAGCAGATAACCATCATGATGTCTGTACCTTCTCACATACACACCTATCAAAAACTTAAAACCTTTCAAAACCTCTTGGTATATTCATATTAGGATTCTTCATTCATGGAATCATTATTCCAAGGGTTTTGGGATGTCTTATGAAATAATTTTGGCAGAAGAGTATGTAAAATTTTTTGAATAAAAAGTAGTCAGCAAAACTTTTCTTTTTTTGGACTTTTTAGATAATTAATTTAGAGAATAGGGTTGGGCATATGATTAACCCATTCGAGTTCGGGTAGAACCCGTTCGAGTTTGGGATTAATGGGTATTGGATTTACTACTTAATACGGTAATTCTAAATATTCGGTTCGGTCGGGTCCAGTCGGTTTTCAGTCAGTTTGGATAAAAAGTTTCAGGCCATAAAAATACCCAAAAAAATAGAAACGGGTATTTTGTATGTAGATAGCGGATCCCCAAACAAAAAAAACTTTTAAATTTGTTAAGTTTTAAGAAATTTAGTTATATTTGAATATATTTTACTAAATTTTGACAAACATAACAAATGATTTTTGAATAGTTTAGTTGTTTTGGATATTTAGGTCCAACATTAATTGACATATTTAAATTTTTTTTTTTTTTTGTCAACCGATATAAATTAAAACTCAAAAGAGCCAATCCCGAGGGATATTGTTTACATACGTGACATGATGCGGTACGGTACGAATCTTTCGTGCCAACTTATCCGCTTTTACATTTGCACTACGAGAAATTAAAGATAAAGAGAAATTTGTGAATTCTTCCCTATCACTCTGCAACTCCTCCAAATACACTGAAAACGCCGGCCATTCGGTTGGAGAAGACACCATCTTCACCAAGTCTGAACAGTCTGTAAAGAAAGCTACGTTCTGGTTATCTGCTCCAATCATGCACTTCATCGCCCAAAGAAGAGCTTCCATTTCGGTATGTAGAGGAGATAGACTTCTACGAACGTTGGCGGCTCCCATGGTTGGCGACTCTCCAAGAGATGATAGACAGAACGTTGGAGACATATTTAGATTTATAATTATAATCTTAGATAATTAGATTATATTAAGATTAAATATATTAATATTTTGGATATTAAATAAATGTTTGGGTTTTCGAATACCTTTTTGGGTAACGGGTAATCTCCGGACCAATCGGATACCCACGGGTTTACTAAAACTCTATCCAATAAGGAAAATTTATTAAAATTCTAACCTGCCCTAACCCGATTTTTTGGTTCGGGTATTGGGTTGGTTATCTGGTCTGTTTTTTTGTCAGCCCTATTAAAGATAATCTAATATAGGGCCCAATTAGGCCACAAATATAACCAAAATACTATACAAATACTAATTCTAAGTTAGGCCAAAAATTAGATCCTCTATTACAAACGAAACATGTTTCTTACCAAAACAACTTGTATACAAATTTTACACATTTACTTAAAACTACATATGTTGTATTTATTATAAAAATGACATTTTTAAACAAAGTTAATCCAATGCAGCATTATATCCAAATAGCAAAAAACATTGAAAAATATTATGGCATCACTTTTACACTATACTATTTTTTATGTAATTCAAACAAAGTATACAATTTAGTTTATACAAAATATTAATGCCTGTGCTATATAGCACGGGTTATGATCTAGTCTACTTAACATTTTTGAAGTACAAAATAAAGAATTTTTCGGGTCGGTTTTTTTTTTTTGTTTTACCCGGTTTTTTTGACCCACATCCTATTATTTTAAATGCTAATCAAATCTTACCAAAATTAATCGCTTTAAATACGATTTAGTTACAATTAATTATTTCCGTTCAGCAAAGTAAATCCGACTTATATGGAATGAATATATTAACATTGCAAAACAAATCCGACTTAGGTAACTTAGTATTTATCCGTTCAGCAAAGTAATTACTCGAGTAAATATTCTATTAACTACGAAATCTTCAAGTTAAACGAAATCAAAATCTGCATTCCACTACATAATTTTCGGAGATCTTAAGAACTAAATTAAAGCATATTCCTAAGCATAATTTAAAAAATCTCGCTACACAATTTCCTAATATCGCAATAGTCAAATCATGGGCGAAGATTGTGATTATCATATGTTCTCTATATAAATAAGGAATTTGAATTGAATTTCTATGCTAAGCCATTTGCCATAAAAATCTCAACAAAATATTGAATTCATTATCTCTACAATCTCGACAATAGAAACTATATGATTGTATTAAAAAACGGATTTGGTGCATATTCCTTGAATATTCGATTAAGAAGATTTGATTTAATTTAGTTAAGGTGCAAATAATTTGTTATGGCCCCAAACCTAATCAGAACTCGCCTATATATATTCTCTAGCTTTACCTCTCATCACATTATCAAACACACAAAGCTCATCACATATCTTTGGATTTTGAGACAGAAAATAAAAAATATGATTCAGGTTGAGAGAGTTACTGAATTCATCACGGAACCACAGAAGCGATGCAGTGGTTCATCGGAGAAGCCTGAAACGGCTTCAAAAGTTTCTAGAGAATATCAGAAGATCCCAATCTCTAATCTTCATAGTGAAGATTAAATAGAGAGAGAGAGAAAGAGAGATTAGATGTACATCACGTAAGATTGGCGACAAAGGAATCGCTAAGGGGTCGAGTGGTTTAATCGGAAATCGTATTCGATAATATCAATGAAGCAAAATGAAAGTAGCACACATAGGTTTGTATGGTGAGACTTGAGAGCATCTTCGACCATCAGAGAGGGACAACTTCATGAGAATCGATGGAAAAAAAAATTAGCTTCGAGGAAGAAGCAATGGTTTGACGAAAAACTAGATGGTCACAAATGATTGGTAGGCATCATGTTCAAAAGCTTAGCTTGCTCGAGAAGTCACCGACGAACGTGGAGTTGGCCGGAGTTTCTGTCATCAAAACCGCGTTCAGTTTTGCATTGCAGAAATCAAAGAAGATGCTTCGTTATTATCGATGGGGAAGAAGCATAAAAAAAAGTCTTCCTCTGATGTTAAAACTAGGCCAAGTATTTGTCATGCCCATAGAACTTGCAACAGAAAGCAACGTTAGTCTTTGGATAGAAAACAATTACGGTATTTTTTTATGTGGTTTATACATTACACTAATTATGTTAAATATTTTTCAATAGTATTAACGAGAAGCACAATCTATATATATATATTTTTGGAGAAACTTTGGGTCAAATCCTTTTATAATTTCTTATTTATACATTTAGTCCTTATAAAATAATCTGATAAAAATATTGTCTTAAGCAATTTTGACAAATAAAATTTAAGTAAATAACATTAATTAGTTATAGATGATTTACGGCAATATTTCCTAAGAAATAAAAAATTTGCGACATTAATGCTATTAGAAAAGAACTAAATAAAAATCTTCAATGGTATATTTCATTATTAATTCGCTTTATTCCTAAAAATATTTAAACAAAATTTAGTCATTGATTTGCAAATACAGAAATTGTATATGTAGTTATAACAAACAAATATTTTCAAATCAAATGATTTTCTATTTAAATGCTAGAAAAAACATAATAAGTTTTTAATGTCATATCTAAGAAAATCAATAAATTGATATATTATTTTAACAAATCAATATCTAATGCTAACAATAAATTAATTTGATACACGTTTTTAATTTAATGCTAATAAAAAAATAATTTGTTCTAACGCTTCCTATTTAAATGCTAGAAAAACGTAATAATTTTTTTAATGTCATATCTAAAATAAACAATAAATTGATATATTGTTATAACAAATAAATATTCAATGCTAACAATAAATTAATTTGATACACGTTTTTAATTTAATGCTAATGAAAATTAATTTGTTCTAACGTTTTTAATTATGGCATTAAAGATTTATTGTCAAAAATAAAATTAAAGTACTTGATAGTTTGTATATATATTAAATTACTTAAAAGTTAAAATTAATGTATATATAAATATAATAACAATTAAAGTACATAAACAAACAATCTTTAGTTGTTATATACTATTAGTAAAAAGAAAAATGACAAAATGATTTTTATTTTAACAGACGGGGTTATATGGTAATACGGATTTTAGTCGATATTAATAAGAGACGATATAGCACGGGTGAAATCCTAAAATTGATAGTCAAAATATAATAATAAAATCTTAAAAAAGAAAACAGACAATTATTTAATTATATAATTATACCGGACAAGGTTATATAGTATGACAGCTTTTGGTCGATATTAATACGAGATGGTATACAACGGGTGAAACCGAAGAATTAACAATCAAAGTACACTTATACAATCTTAAGAATCAATTGCCGGACAATAAACAATATTAGTAAAACAAATACAAATAAAATTTAGTTATAAATTAACCCGCGGACTGGAGCACACCGCGGGTCATATCCTAAACAATAATTTCTTTAGGATAACTACAATTCCATATAAAAAACTAAATTTAAAACAATTTTTTTATAATAATGTTATTTTAAACAAAACAAAAAACAATATAACAAAAATGTAATAATGCACCATAAAATACACACTCTATATAATGATGCGTATAATAAATATGTTTTCTTAAATAAATAAAATTAAATCAAACACATACTAATATAACATCAAAAATGAATAGATATAAAAGGTAAGGTGATAAATTAAAAATATAACTTGATTATTTAGATAAAAACGATATCGAATTAAAAAAATAATTTAATTTCTAACACAAATAATCAACTCGCGGTACACCGCGGGTCAATATATAGTTAAATTAAGGTTAGAAACTTAGAATTAAGAGATTTATAATTATAACCGGTGCCGTGGTCATGGACTCATGCGTATATATCGGTATTTTAAAGACAAAAATAACGAAAACGGCACGCAGTTTATCCCTCAACACCCGAGACAACACTTCTCGTAGTCCGTGCTTAAATTCGCCACGTAGTTCACTTTATTCAACTTAAAAAAGCATGACGTTTTGGTGCATCTATCTTCTTCTTCCCCCTTCCTCTCTTAGCTTCTCTCCCACCACTAAGGAGAAACGTTCCAAAGATCCCTCTCTCAGAAAAATCTCCAAGAAAACGAAACCCTAATGGAGAATCATTCTGATCCCTGAAACTTTTGGCTTGCGGCTGAATCGATTTCAAGATTGCAAGTATTGCCTAGTGTGAATATGCTGTTGCTGTGTGATGCTTTGGTTAAGGAAGTGACTGTTGAATGCTGAAAGGACGACTTGGAACCTTATCTCGGGTTGCATTACTCGGCAAACTTCGATATTTCTTTATATGAGAAACAAGGTTACGATGATTTCAAGAACTGTGCTAATCTTTGCCCAAGATTTACATGTAAATGGTACTGATTGAGTGTTAAAAGGAAGAAGCTTCATACATACAATATACATTGATCGGATATAGTTTTAGAGTAGGTTCCGAGTTCCAAAACAAAGTGAACTATACTGAGTATTTCAACATAGAAAAGTTATAAAATTGACATCCTTTGCAAAGTAAAAGCCATATCATAACAAAAAAATCGGAACATTTAACCGAAAACAGAGACAACCCACAAAAGAAGAAGAAGAATGCTAAAATTGAGAAGCACTGATGGAGTTGGTCGAAGGGGACCAAACGGAAGGGAATATATCTTCTATAGACTGCTTACGAGTTATGAATTGAGTTGCGTCAACGTGTGATTCTGATCCGGCTGAAGGAAAGGCCGCTTCATGTGAATACGCACATGGTTCCTTGTACGCCTCTCTTTCCGAAACGTTGGCTGCAACTTCGTATGATTGTATTTGTAGCGGGCCTAGCGGCATTAGTTTCAGATGGCTGATGATTTTCTTGAAATTTTTTGGTGGAAGCGAATTAGAGATAACATACTTCGGAGGATATGCATTTTAATAACATATTTATAAGTTTTGAGTATCGCATATTACGAAAACGAAAGCATTTGAAAGATTCGAGATTTCACTATCGAAAGTGGGGGAAGACACGC +>URS00006236D2 tRNA from 1 species +CTCCCCATAGCTCAACAGGATAGAGCAGCCGCCTCCTAAGCGGCCGATAGAGGTTCGAGTCCTCTTGGGGAGG +>URS0000187CC4 rRNA from 1 species +ATTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGCGAAAGCCCTTCGGGATGAGTAGAGTGGCGGACGGGTGAGTAACGCGTAGGAATCTATCCTGTAGTGGGGGGATAACGTTTCGAAAGGAACGCTAATACTGCATACGCCCCAAGGGGGAAAGCGGGGGATCTTCGGACCTCGTGCTATAGGAGGAGCCTGCGTCGGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACCGGAACTGAGACACGGTCCGGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCCATACCGCGTGTGTGAAGAAGGCC +>URS00023B9165 lncRNA from 1 species +GATAGAACACACTTCAAGCATTAGATTTAAGAAAATTTATATCTTCTCTCATCTTTTGATTTTCGGTCTTGAATTCGAGTTTGAGAAAGTTGGAAGTTAGAATCTTGACGTCGAAGTTCTAGTTTGCTGCTCTACACAAGGTCAGTAATCTCGTTCATTTGGTTCGTTTTCAAGGATTGGTTATTATAGTATGGAACATTTTTGTGTTGTTATTCTCTGATTTAAATATGCACTGAAATATGTCTTGCTGTATTTTAGTTAGAAATCAGCTTGCAACAGGTTAAATGAGTTTCTTAGATTAAGAGAATTGACT +>URS0000F2E397 rRNA from 1 species +CCTACGGGTGGCAGCAGTGAGGAATATTGGTCAATGGGTGGGAGCCTGAACCAGCCAAGTCGCGTGAGGGAAGACGGTCCTACGGATTGTAAACCTCTTTTGCCGGGGAGCAACGGGGTCCTTGCGAGGTCCCAATGAGAGTACCCGGAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGAGCGTAGGCCGGTCTTTAAGCGTGCCGTGAAATTTTGTGGCTCAACCATGAGAGTGCGGCGCGAACTGGAGACCTTGAGTGCGCGGAAGGCAGGCGGAATTCGTGGTGTAGCGGTGAAATGCTTAGATATCACGAAGAACCCCGATTGCGAAGGCAGCCTGCCGCAGCGTTACTGACGCTGAAGCTCGAAAGCGCGGGTATCGAACAGGATTAGATACCCTTGTAGTC +>URS0000620B57 rRNA from 1 species +AGAGATCATGGCTCAGAGTGAACGCTGGCGGCAGGCCTAACACGTGCAAGTCGAGCGGCAGCGGGTCCTTCGGGATGCCGGCGAGCGGCGGACGGGTGAGGAATGCGTCGGAATCTGCCTCTTTGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCGGGGGACCTTCGGGCCTCGCGCAGGGAGATGAGCCGACGCCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAGCTCTTTTGTTGGGGAAGAAAAGCACTGGTTTAATACGCTGGTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGTTCGTTAAGTCTGATGTGAAAGCCCCGGGCTCAACCTGGGAACTGCATTGGATACTGGCGATCTGGAGTGCGGTAGAGGGTGGCGGAATTCCCGGTGTAGCAGTGAAATGCGTAGATATCGGGAGGAACATCCGTGGCGAAGGCGGCCACCTGGACCAGCACTGACACTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGCGAACTGGATGTTGGGTGCAACTTGGCACTCAGTATCGACCTAACGCGTTAAGTTCGCCGCCTGGGAAGTACGGTCGCAAGACTGA +>URS0000D14622 rRNA from 1 species +AACAGCTCAAATTTGAAATCTGGCCTCTTCGGGGTCCGAGTTGTAATTTGTAGAGGGTGTTTCGGGCGCGATGCCGGTCTAAGTTCCTTGGAACAGGACGTCGCAGAGGGTGAGAATCCCGTACGCGACCGGTGATCAAGTCTGTGTGAAGCCCCTTCGACGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGGTGGTAAATTTCATCTAAAGCTAAATATTGGCCAGAGACCGATAGCGGACAAGTAGAGTGATCGAAAGATGAAAAGCACTTTGGAAAGAGAGTCAAACAGTACGTGAAATTGTTGAAAGGGAAGCGCTTGCAATCAGACCGGTCCGGAGGCGATCAGCCGCTGCTCGTTCAGCGGTGCACTCGCCTCCGATCCGGCCAGCATCGGTTTGGGCGGCGGGATAAAAGTCCCGGGAATGTAGCTTCTCTCGGGGAGTCTTATAGCCCGGGTCGCAATGCCGCCCGCCTGGACCGAGGACCGCGC +>URS0001D2993E rRNA from 1 species +GCTAAGGCCCCCAATTCATGGCTAAGTGGGAAAGCAGGTGGGACGACCAAAACAACCAGGAGGTTGGCTTAGAAGCAGCCATCCTTTAAAGAAAGCGTAACAGCTCACTCATCAAGCGATCCTGCGCCGAAAATGTAACGGGGCTAAAGCCATTTACCGAAATTGTGGGCTCGAAAGAGCGGTAGCGGAGCGTTCCGTAAGCGGATGAAGCCGAAGGGTAACCGACGGTGGACGTATCGGAAGTGCGAATGCTGACATGAGTAGCGACAAA +>URS000241757C lncRNA from 1 species +CTACTAAAAGCATACTGCATAAACAGCTTGAGAGCATCATTGTTGTTTAAAAACTCGGGCTCATATATCTCATCACCAAGTCTGCTTAGTGACTGTTTATCTCTAGTTGTTATAATGATTCGACTTCCGCCACCAAATGAAGGTTGCTTTCCAATTAAGGCTTCAATTTGGGATGAACTCTCCACATTATCCACAACAACAACAACAACAACAAAGCCTTTTCCCACTAAGTGGGGTCGGCTATATGAATCCTAGAACGCCATTGCGCTCGGTTTTGTGTCATGTCATCCGTTAGATCCAAGTACTCTAAGTCTTTTCTTAGAGTCTCTTCCAAAGTTTTCCTAGGTCTTCCTCTACCCCTTCGGCCCTGAACCTCTGTCCCGTAGTCACATCTTCAAACCGGAGCGTCAGTCAGCCTTCTTTGCACATGTCCAAATCACCGGAGCCGATTTTCTCTCATCTTTCCTACAATTTCGGCTACTCCTACTTTACCTCGGATATCCTCATTCCCAATCTTATCCTTTCTCGTGTGCCCACACATCCCACGAAGCATCCTCATCTCCGCTACACCCATTTTGTGTGTACGTGTTGATGCTTCACCGCCCAACATTCTGTGCCATACAACATCGCTGGCCTTATTGCCATCCTATAAAATTTTCCCTTGAGCTTCAGTGGCCTACGACGGTCACACAACACGCCGGATGCGCTCTTACACTTCATCCATCCAGCTCGTATTCTATGGTTGAGATTTCCATCTAATTCTCCGTTCTCTTGCAAGATAGATCCTAGGTAGCGAAAACGGTCGCTTTTTGTGATCTTCGCTAGATTGCTCCGGTCATTAGTGTGGATAAGTATATATAAATGGATAGAGATAGGAAAGCAAACACAAGATGTACGTGGTTCACCCAGATTGGCTACGTCCACGGAATAGAAGAGTTCTCATTAATTGTGAAGGGTTTACACAAGTACATAGGTTCAAGCTCTCCTTTAGTGAGTACAAGTGAATGATTTAGTACAAATGACATTAGGAAATATTGTGGGGGAGAATGATCTCGTAATCACGAAACTTCTAAGTATCGGAGTGTGGTGTCGTCTTGACTTGCCTTATCTGTCTCATAGGTAGATGTGGCATCTTCTCTGGAAGTACTTTTTCCTCCATCCAGGGGTGGTATCTTTAACTGGTGGAGATGCACAAGGTAATGTATCAATTTCACTTGAAGCTTACTTGTAGTTTCAGGCTTGGTCAAGCGCGATACAAACCATGTAGTAGGAGTCCCCCAAGTCGCCGAGCTAGGGGGTCTGCTGAAAGAGGTGACAGACAAGGTAAGCAATCAGAGCTCCGACTGATTGTTCACCTTCTCCCCATCTTGCAGCAGCATGAAGGATAAAGAGAAGAAAAATGAGAAGAGATGATATGAGATACTTTTGCTTTTGAAGAAGTAACTTTTCCACAGGCTTATTCTTGAACTGAGCTGGAGGGTTTTCTGGTTTCCTCCAGAGTATAAGGCCGACTGAAGAATTTGAGGGTCAAAACAAGTCCATCAAATCTAGAGTACGTTCCACCCTGCTGATATGGGATACTTTTGCTTTTGACAGAGTAATGGATGTATCGGCACGTGTGCTGTTACGCTTGTCTCCACATGCTTCCTTGTATCCTTCGCACTTGCCCTATCTGTTCCTCAAGCAGATGCGGAATCTTCCCTGGAAACATAAGATGTTGAAGATGAGTACTCGAGAGCAATGCCAGGTAAGTAATCAGGTAAGGGGTTCCAGGCAGTCAGTTCCTGGCTGGAAGCTTGATTCCAAGTGCTGACTGATTGCTCTCTTTCTCCTTGTCTTGCAGGTAAAAACAAGGCCAAAGGAAAAGACAGGGAAAAAGCATGATATGGGATACTCTTGCTTTTAACCCTGATGATATGAGATATTCTTGCTCTAGTATAGCTTGTTTGCAGAGGTATTATCGGGGGGAAAGAAAGCTGAATATTTCGAAAGGCTTCGTTGGGAGTGCCCTCTCAGATATGATGAAGGGTTGAGCATTTTTGCAGGTCTGCCTGTCCGTTGGGGATGGAGGTCGACATATATAGGAGTCTCCCTAACAACAAGTAGTAATGCTATTCCTTTACCCTGCTTGGTCATAGCACGGTAGTGGGAGCTGCCAGTTTCACATGTTTTAACTCTGTCAGAGCACTTTGAAAAAGTGGTCTGTGGTATCTGGCTCTCGAGATTCGGAGAACGATGCCTCTTCGATTTTTGAGAAAGCAATCATGCTGGGGGTCTGGCTCTCGAGATTCGGAGAGCAGTGTCTCTTCGATTTTTGAGGAAGTAATCATGTTGGGAGTCTGGCTCTCGAGATTCGGAGGGCGGTGCCTCTTCGATTTTGGAGCAAGCAATCTTGTTGGGAGTGTTGTCTCGAATGTGAGTAAAGGTTGGGCATGTTTGCTAGTCTACCTTGCCACGAAGCACAAAGGTTGACACACAGGGACTTTCCAATTATCCAGCAATGGTACTGTTCCTTTACCCTCTCTTCGATTTTGAGAAAGTAGTCATGTTGGGAGTCTGGCTCTCGAGATTCGGAGGACGGTGCCTCTTCGATTTTGGAGCAAGCAATCTTGTTGGGAGTGTTTTCTCGAATGTGAGTAAAGGTTGGGCATGTTTGCTAGTCTACCTTGCCACGAAGCACAGAGGTTGACACACAGGGACTTTCCAATTATCCAGCAGTGGTACTGTTCCTTTACCCTTGTGGGTAATAATATGGTAGCTAGACCTTCAAAATTTATGTGTCTAAACTTTGTTAGTGCTGTTTCTTTGCTATTCTTTTACCTTTCTTGGTCAGAGCGATGTAGTGGGAGCTGCAAGCTTCACGTGCTCAACTTTGGCAGAGAACTTTGGCAAAGTTATCTGTGGTACCCATGAGCTATTGTTGCGTGTGGGAAGTGGGTGATTGAACAGTAAGATTCATGTGCTTTCTACTTCACCAGAAGTCTTCGACAGAATGCCCATAATTTCTGCAAAGCTGAGTGTGCGTGTGACAGGTGCTGACAAGGCTAGAAAAGTAGGTGCCTCTTCGATTTCTGAGATCGGCCCTCGTGGTCTCTGAGCAGCCCAGCTTTTGAGAAAGCGAGCGCCTCTTCGATTGATTCGGAGAACGATGCCTCATCGATTTTTGAGAAAGCAATCATGCTGGGGGTCTGGCTCTCGAAGATTCGGGGAGCAGTGTCTCTTCGATTTTTGAGAAAGTAATCATGTTGGGAGTCTGGCTCTCGAGATTCGGAGGGCGGTGCCTCTTCGATTTTGGAGCAAGCAATCTTGTTGGGAGTGTTTTTCTCGAATGTGAGTAAAGGTTGGGCATGTTTGCTAGTCTACCTTGCCACGAAGCACAGAGGTTGACACACAGGGACTTTCCAATTATCCAGCAATGGTACTGTTCCTTTACCCTCTCTCTTCGATTTTTAAGAAAGTAGTCATGTTGGGAGTCTGGCTCTCGAGATTCGGAGGACGGTGCCTCTTCGATTTTGGAGCAAGCAATCTTATTGGGAGTGTTTTCTCGAATGTGAGTAAAGGTTGGGCATGTTTGCTAGTCTACCTTGCCACGAAGCACAGAGGTTGACACACAGGGACTTTCCAATTATCCAGCAGTGGTACTGTTCCTTTACCCTTGTGGGTAATAATATGGTAGCTAGACCTTCAAAATTTATGGGTCTAAACTTTGTTAGTGCTGTTTCTTTGCTATTCTTTTACCCTTCTTGGTCAGAGCGATGTAGTGGGAGCTGCAAGCTTCACGTGCTCAACTTTGGCAGAGAACTTTGGCAAAGTTATCTGTGGTACCCATGAGCTATTGTTGCGTGTGGGAAGTGGGTGATTGAACAGTAAGATTCATGTGTTTTCTACTTCCCCAGAAGTCTTCGACAGAATGCCCATAATTTCCGCAAAGCTGAGTGTGCGTGTGACAGGTGCTGACAAGGCTGGAAAAGTAGGTGCCTCTTCGATTTCTGAGATCGGCCCTCGTGGTCTCTGGGGAGCCCAGCTTTTGAGAAAGCGAGCGCCTCTTCGATTTCTGAGATCGGCCTTCGTGGTCTTTGAGCAGCCCAACTTTTGAGAAAGCAAACGCCTCTTCGATTTCTGAGATCAACCCTCGTGATCTCTAAGCAGCCCAGCTTTTGAGAAAGCAAACGCCTCTTCGATTTCTGAGCAGGCGCCTCTTCGATTTCTGAAGCTCCGTCGAGTGCAGATTTTTATATAGGGGCTGGCATTAAGTTCCAAAGCACACTTGAATCTCCACCAGTAGAAGCTTCATTCTTGCACTTCTAAGATCTTGATTTGTCCGACCTCTTCTCTCTTCAACACCTTTGAAAATGTCTGGCCCCTCCGACCGTCGTTTTGACTTGAACCTTGTTGAAGAGGCAGCCCCGCCTTCTCCAGACAACATATGGCGCCCATCCTTCGTCTCCCCTACTGGTCCTCTTACCGTTGGGGATTCCGTGATGAAGAATGATATGACCGCTGCGGTGGTGGCCAGGAACCTTCTCACTCCCAAAGATAACAGACTACTTTCCAAACGGTCTGATGAGTTAGCTGTTAAGGATTCGCTGGCTCTCAGTGTTCAGTGTGCAGGTTCTGTGTCTAATATGGCCCAACGCCTATTTGCTCGAACCCGCCAAGTTGAATCATTGGCGGCTGAAGTGATGAGTCTCAAACAGGAGATTAGAGGGCTCAAGCATGAGAATAAACAGTTGCACCGGCTCGCACATGACTATGCTACAAACATGAAGAGGAAGCTTGACCAGATGAAGGAAACTGATGGTCAGGTTTTACTTGATCATCAGAGATTTGTGGGTTTGTTCCAAAGGCATTTATTGCCTTCGTCTTCTGGGGCTGTACCGCGTAATGAAGCTCCAAATGATCAACCTCTGATGCCTCCTCCTTCTAGGGTTCTGTCCAGTACTGAGGCTCCAAATGATCCCCCTCCGGTGCCTTCTCTTTCTGGGGCTCTACCGACTGCTGAGACTTCTCCTAAGCAACCTTTGTGAAGGCTCCCTCTTGTGTGTTTATTTTGACTCATGTATATGTACATATTTGTAGCTTATCGGGGATATCAATAAATAAGCTTTCCTTCATTTCAACGTATTGTGTTAAATACACCAAAGCCTTCTTCGCTAAGTTCTTTGAATTTTCTTTTGTTGAAGCTTGTATGTTGAAGCTTTCTGAGTGGAGCATGTAGGTTGGGGTAGTGTTCCCTTAATTTCCCGAGTGAGGAAAACTTCTCGGTTGGAGACTTGGAAAATCCAAGTCACTGAGTGGGATCGGCTATATGAATCTTAGAACGCCATTGTGCTCGATCCTGTGTCATGTCCTTCGTTAGATCCAAGTACTCTAAGTCTTTTCTTAGAGTCTCTTCCAAAGTTTTCCTAGGTCTTCCTCTACCCCTTCGGCCCTGAACCTCTGTCCCATAGTCGCATCTTCTAATCGGAGCGTCAGTAGGCCTTCTTTGCACATGTCCAAACCACCGTAACCGATTTTCTCTCATCTTTCCTTCAATTTCGGCTACTCCTACTTTACCCCGGATATCCTCATTCCTAATCTTATCCTTTCTCGTGTGCCCACACATCCAACGAAGCATCCTCATCTCCGCTACACCCATTTTGTGTACGTGTTGATGTTTCACCGCCCAACATTCTGTGCCATACAGCATCGCCGGCCTTATTGCCGTCCTATAAAATTTTCCCTTGAGCTTCAGTGGCATACGGCGGTCACACAACACGCCGGATGCACTCTTCCACTTCATCCATCCAGCTTGTATTCTATGGTTGAGATCTCCATCTAATTCTCCGTTCTTTTGCAAGATAGATCCTAGGTAACGAAAACGGTCGCTCTTTGGCATTTCTTGATCTCCGATCCTCACCCCTAACTCGTTTTGGCCTCCATTTGCACTGAACTTGCACTCCATATATTCTGTCTTTGATCGGCTTAGGCGAAGACCTTTAGATTCCAACACTTCTCTCCAAAGGTTAAGCTTTGCATTTACCCCTTCCTGAGTTTCATCTATCAACACTATATCGTCTGCGAAAAACATACACCAAGGAATATCATCTTGAATATGGGGTATGGGCGGTATAAACTATTTTAAAATGTAAAATATAAAATATAAAATTAATAAATAATAATTAATAAAAATTGACTGTATTATGTACGATGAATAATTACGATCACGGAATCCCTAGGATCCCAAAAGAAAAATTCGGTGAGAATCCTTTTCCAGAATTTTTAATCCAACCGTTTCTTGTGTTAAATTTATCCCAAAAATTAGTTTTGACCAAAAATTGATTTTTAGTCCAAGGGTTGGAGCAAATTGAGAGAGTTAAAAAACTAAAATTTAAGCTAAAGTCCAAAGATTTGAGTTAGTCTAACAAATACAAATGAGAGAAAGTAACATTCATATTTTATTGCGGCTTTTAATTTTTATTTAAAATGGTATCTAAACTTGGTATAATTACTTACTTTTAAAATTGATAAAAATGGTCTTTGAGATTGTCTACCATCAATCATTTTGGTCATTCTGTGAAAAATCTTAATTAAATTAGAGGTATTTTTATCAATACCTTTGAATTGATGATTTCTTCAATTTAATGAAATATTTTCACAAATCATGGTGCATATTATTGGTGGTCCTAAGCTCCTTTATATGTGTAGCGTATGCTTATGTCATGATCTTTCTGCTTCTACTAAATATCAGATGATTTTGTTTTTACTATTTGTTTTACTTTGTACATGGGGTGGCTTTTAGGTTCCCCTGTTGTCTTACTTGCTATGTTATTTCCTCAACAAGGTTTGCTTTTATGTTTCCCTCATTTGTAAATTTCCTTTTTTTTTGTTTTTACTTTAATATGATAATGGGATGCTCGGTGAGCACTATTACCCCATGATTTTCACGCATGCACACAAAAAAAAAAAAATTTATCGTCACAACTAGCATATTTATCAAAATACTCGAAAAGTTAGAGTTTCTAGTCACAACTAACATTGCCATATAGTCAAAATGCTCAAAGTATAGAAAAGAAATATAAAGAAGATATCAAGTTAGATCAGTTACATAGAGAGAGTCATTCCCATGGGATTGCATGATTTCTCTATCATTGCAATGTATTTTTCATAAAACTTCCTTTTCATGATTAGGGACTACGATCCTTGGTGCTATAAATTCAGCAGTTGACTCAAGCACAGAAGTTATCTACAGTGAGAATCCTGATGGTAATTTTGTAAAGTCAAACAACTTTGCATATGCCATTGTTGTGGTTGGCGAGTACCCTATGCTGGGACTGCGGGAGACAGCCCAAACCTTACGATGGCGGAACCTGGCCCAAGTGTCATCAGCAATGTGTGTGAAAGTGTAATGTGCATTGTTACCATAATAACTGGAAAACCTATTGTAATAGAACCATACTAGAAATTACGCCCGTTGTTGCGGAAACCAACTGTTACAGGCGTAATCGAATTAATAAAACACATTTAAGTTGAATAAGAATGTCCCCATGATTAGTCTTCTCGTTTATTTTTCACAAACCAATCACATATTAAAAATCCAAGTACGAAAGCTTTGCAAAGATAAATAAAAAATTTATATAACTAATTAGACTTTGAACATGCAATCAAGGCACATACTCGTATACCTAAAAATAGCAAGGAACCGGCTTCTTCCTCCCACAACCAGAGTTCCTGAAATTTCCAAAGAAAGTAAATCCGTTAGCAATTCAGAGAAATTGGAAGACCAAATCGTATTACATTTGAGTTAAATGAGCAAAGGTAAACCAATTAAATGAGATACTAAACACATTTCGAATCTATGAAATAGAAGAATAATCATGTTAGGACTCCCAAGATGGTGTCCTAAGCACAAAATTATAGGTTAAGAAAGGTAAATCCCAATCCAAAGCTCCAACCTTTTAACTGAAAATGAAACAAAAAAGCATGGATCATATATTTCAGTTTTATTATTAGATTTTCTAAATCCCCAATTTGAATGTGTTGTAAAGACCTGCTAAAGATAATACCACCAACTAAGGGTGGCAATCTGACCAGCGTTGTGCATGTCATGTCGACTCTATGCAACTTAATATATAACATTTAAGCAGCATTAGACGGTCTCCTAAGCATCTACAAACCATTTAACATTATTTCCCCAATTTTATTTCCCAATTTTATCAAATGCTGCATAAACGATCACAATTTACTCCCTTACAATTTCCACCTAACTCCGAACAAACAATATTGATAAATCTTTATCATCACCTTTAACGAAACAGATTACAGCGAAAAGAAAAAAAAAGTTACTATGAAATCAAATTCTTCTAGATGTCCAACCTAACCCATCTATGGGAAGGCAAGCAATCGGACGTGCATTTAGACCAAGCAAAATAAATTTTACAATTTATCAAAACAGCAACTGATTCTCCCAAAGAGAACACAACATACCAACATATTATTCACCATATTCTAAGCTTTCATTTTCGTTCTATCTCTTTCGTTATCTAAACTTATAGTTATCAAAACAGCAATAAAATCATAGACAAACCTTCAATCATTTATCAAAACTGAATTAATTAAACTTCTGCTCCGCAGTCCGTTAATTTTAATTGCAACTCTCATTCTAAAAATTTAAAATTTTGCATTGAATAATCAAACGCACTTGCACGTTACATTCCTTTTATTGGTTCTTGACATAATACATTTTAGGATTGATGTAATAATATCACTACAAACATGAATTGCGATAGATATAGAAACCAAACTTGCACACAAATGTTTGACTGAATTCAGAACCACTTAATTCAACATAAAAAATTACCTCACATGCTTGCTCCCCTTCTGCTCTCGCATCGTCGGCTCCGCTACTAAACGATTAATGAAGTCCCAAAGCAAAAACAGAACAAAAAACATTTACCAATCCAACATTTCAACACATGGTTTTGGCAGGTATAACATTTCAACATAAGCATGATATAGAAAGAAAGAAATCCACATGTCACTTTGTTTTTTCAGAATCAACAAAAAGGGCAACTAGAAGAGAATGTAACCAATTTTAAAGAGTAAATCAGTCTCCCAATAAAGGAGAACAATGCTGGCGGTAGACCAAGAGTAAGTACAACCCGACTGCAGCAACAAAAACACAATTGACTTTCACACTACAGAAATAAATAATAAAAAAACACATACCTGCACCCAATGCATTGTTTTTTTTTTCCTCTGCAGTATAAGAATAAAAAAGAATAACATTCCCCTGAAACCAAATTCATCCCCCAATTTCTTGCAACAAAGAGGGAGACCAACCTTGTGTTCTTGGAGAACAGTATAACAATTAGACACAATCAGACTAATCCAAGTTCCCACTATGATAATGAAAAATTAAAATTAATAAAATAGCTCAAATCATATCACAGTATGTCACAAAGTACACCATTTGATAACCAATAAATTTAACAAAAATAGATTCAATAGTCTATATCAATTAATCAATAGTCTAAAGTATGAAAAAAATTGATTTCAAAGCCTTCCTTAGGAACTTCACAACGTATCAACAGACATTATGATATCGATGATGGTATCCATGAAACCCCAAGCTGCAAGCAAATACTGCCTTTGGAAATTTTCAATATAAATGGTTTTGCAAACCAGCCACTAATGAAACATCTAATTTCAAACAAATAATAAAAGCTTTCTTTAACTGACACATTATCCTTCTTCTTTCCTCCCATTTACTTCCCACCCTCCCTATTAATCCCTCCATTTTGAAACTCCTATATTCTTCCTATTCTGTACAAAACCTGCCAAATCATTTCCTCACTTCTCAAAACCCAAATAATCACTTAAAATGCACAAAATTACAATTAAATCAATATTACATTACACAAAATGACATTCAAAACCACAATACACTAAAACCAAGCGTGAATTCTACACCCTCAATAAGTGGAAGCATTCGTACCTCAAATGAATTTGCAACTTAATTTTTTGCTGAAAAACCTTGACCTACAAAACCAAATTACATTTAGGGTAAATTACAAAAAATTATCTCAACTATTGGTGGCACGACACTTTCATACCTCATCTTTTAAAATTGACAATGTCATACCTCATTTTACGAATTTATGCCAACGTTATACCTTCCGTTAGCTTGGCATAAATTTCTCAGTTAAATGTTGATGTGGCTTGATCTGGGGCCCATTTTCTGTTAAAAAAATTATTAAAAACTAAAAAAAATCATTTAATTTTTTTTAAATATTAAAATAATAAAGAAAAGTTATATAAAATAAAAAAATAAAAAAACCAACCAACACCCAGTTCGTCCCCTTCCCCCCCCTTTCTCTCTCCTCCCCATCTTCATCTTCTTCCCCCTTCTTGCAACTGCAACCCAGAAAAAAGAAGAGAAAAAAAAAACCAATTTGTCTTCCCCACACCCACTCTCCGCACCCATCTTCATCTTCTTCCCCCTTCCAATTGCAACCCAGAAAAAAAAAAAAAAAAAAAAAAAACCAATTTGTCAATTTTTTTTTTCTTCCTCCTTTCTGGGTTGCAGGAAGATGGGGAAGAGAGAAGGGGGAGGGACAAACTGACCTAAGGTTTTATTTTATTTTATTTTTATTTACTTTTCTTTATTATTTTAATATTTAAAAAATACTAAATAATTTTTTAATAGAAAGTGGGCCCCGATTCAAGCCACGTTAGCATTTAACTGAAAAATTCATGGTCAAGTAACGGAAGGTATAACATTGGCACAAATTCGTAAGATGAGGTATGACATTATCAATTTTAAAAGATGAGATATGAAAGTGTCGTGACACCAATAGTTGAGTTAGTTTTTTGTAATTTACCCTTACATTTATCAACAAAAAGGAATCAATGTAAGAAAGCAAACACAATACAGAAAAAATGGCCATTCAAGTCAGCTCTATTTAGATTATAATAACTCTCAATTTAAGAAAGCAAATGCAATACAGAAAGCAAATATAATCCAAATTACCTTGAACACCACCATCATATTTTTACTCCGTTACGTATACATGTCCTTTTCTTTCTAGATAAACTTTATTTCTTTGAAGTTTCTGCAGGGTGCATTCCAATTTAACCCTTTAAATGTTTGTATAAAACTTAGGGTGCGATGGCAAGTGCCTTCGCCCATAAACGGTAGATCTCGGGTTCGAGACTTGGGAGCAGCCTCTCCATAAATGGGGATAAGGCTAGCCGACATTCACCTCTCTCAGACCCTGCGTAAAGCGGGAGCCTTGTGCACTGGGTACGACCTTTATATTCTCGCCTGCTTGCAAGTCAACTAAGTCAACTATTCAACCTTCACATATTGTTTATTAGTTTTCTTGATACTAATGTATGGAAAGGGCTTAAATCCTTCAATGTATGGAAAGGGCTTAAATCCTTCAATTATGGATATACTAATGTATAATCCTTTGTTCTAGACCAATTTTGTTCTTAGTTCTTAGTTTTCTTGATACAAACTTTTTTTTTTGTATTAATATAAATTTGTTTGCACCAAGGGATGGGGTGGGAACATATCTTGAAATATGGCCACGTCCACATTTGCAGCTGAAGAACACTTCAATATAAGTTTAATTTGGTGCAACTTTAGGTTTAATTTGGGTATGTTCCACCACTTAAAATTTGCAATACTAATTTTGAACAATGAATAAGAAAATTCTACCAAGAGAGAGTAAAATAGTAAATCAACTTAATTTCTGTAAAAAAAAAAAAAAAAACTTGCAAAAATTTCATGAAATTTTGGTAAAAACGGAAAAGAAAAGGGTTAAGACAATCAAGACTAATGGAAAATTTGATATTGTTTTAACATTAACTTAGGTTGATTTTGTTCACCAGCATTAATAAAACGAATGACTTTAACTTGGGCAAGCAAACAATTAAATTAGACGTAAGCCAAGTAACTTAGAAGTTAACCATATGAAAAAAGGAAAACTAATGAAAAAAGCTTGAAAACTTTGAGTTTTAATGATAAGGACAAAATAAAGGGTAAAGTGAATAGTACCATGATTGACTTTTTAGTGTAAAAATGTGGTTTTTCGTTAAAGTGAATAGTACCGAGTGCTTTTCGTTAAAGTTCCCTATGAAAAAAAGCAATGACAATCAAACTGACCTCTTCTTTCATATGAAGTATAATCTGTTCTCTATTTTGCCTTTGTGAAGAATGCACTTTTCACTTCCTACACACAAAATAGCATACATTGAAAATGCTCCGTAGCATTATAAAAACTATAGATATACAGTACTGTATATGTATCATATACTATATTGTGTACGTAGTTGGACATAAGGTATAAAGATTTACTAACATAATTAAGCTTAAATTTAACAAAAGAAGTAATTACAAATTGAAATCAAACGATATTCTAGTTATTCAAAAAAATTCTGGCTAAATTTTACAAATAGTATTATAAATTGTTAAAAAAAATAACACAATTGAAAAAACTCACCACTCAAATCTGCAATTCTATTAAAAACACATCACTAAAAATTAACTCCAACAAAAGGGGATTAACAAATTATACCTTTTTAAGAGTTGGAATTGTTTATCTATATCTTGAGCTGGACCCGCTGGATTTGAATCCTCAGTTGACTTAGAGGGAGGATAGGCATGAAAAGAAGTGTAAGGTTCACTGGATCATATTTTTAAGAGATAGAGAGAGTTCTACTTTTCAACAGCGGAGAGAACATATTCAATCTTGGGCATAAAAAGAAAAAATAGAAGCTTCATAGCACAATAATTAACCACAATCCTCTGTTTTTCTAAATGCAAATAGAAAAAAGGAATCAAAATATTCAACACAAAATCTTCACATTAGCTCAAGAACTATATTATTTCCAGTGCTTTCCAATTTTCCAGCACGGAACAACAAACATAAAAGCATTAAAAATATATAATTGCAAAAAAAAAAAATAGCAATTCCAAGAAACTAAATGCGAAGTTAGCCAGATCTGCACAGTAACACAAACCCATTACTTGAATTAAGAGCATTGTGGCTCACCCTGAAAACACCCATTTTGCAATGAGGAAGAGAGACACTGCTGCTCTGGCTGCTGAGTGCTGCTGGCTCCAAAGCAGTTTGTCTACCAGAACTTTATAAGAGCAAGTCCAACCCTTCAAAGCCACTGTAAATCGCCAAGGATTTACATCATTCTGCTTGCCTAAAAAAAGCAAACAAAAAAGAAAAAAATGGAAAGTATAAAATTCAAATGACCCTTGATGAACATAACCCATAAATTTTCCTTGTATTCCATAAATGCAATAAAACAAAAGTCAGTGTCTCCATTTTCCAAAAAACCAAGCAAGCAAGCAACAAATTTCGAAAACCCTAATTCTAACCAATTTAGAACTATAACCAAGTAAACCACTTAATCAACAAAACTCACTAATTTTCTCAAAAACCCAACAAATTTAAAGGATATCCAGATGATAAATCCCAGTAAAATCCCAAATTTGAAAACCAGAAGAAAAAAAAAGACAAAGAGGCTTATCTTTCTTCACTAATCGGGCACTAACAGAAAAACCTTAATTCATATTATTCAGATTACAAATACACAGGGACCAAATAGCTAATAATGCTGGACAATTTGTCCCCAATCCAACACAAAAATTGTTCTTGTTATACATACGATACCCGCCTAAAATATCAACCAATTCCAAATTAAAATGGAAAATGAAACGGAGCATCATAAATTGAATACAATTTGGAGAAAATTATCTCACTTGGGGCGCCGAATCTCCAAGAGGTCCCAATCCGAGCAGGCTCCAAATTGGGTTGTTGAAAATGGTGATCAAGGAAGGGTTTTGGAGGTGGGTCTGATCAGAACAAAGCCGAAGCCATTAGGTTTGGGGGGAGAGGAACAAAGAGCCACTGAGAGAGAGAGAGAGAGAGAGAGAGAGCATGCGTTGTCCTTTTCTTCTATCCGGCCACTGGATCGCAGTTCCTTCACAAAAATTATACACGTGTGTTACTTTTTCAAGTTCTAGTTTTGTAATCACCTAATCGATCATAACACCATTCGCAAATATGACAAACATAAACAATTAAGTCAGCAACATGATATGCCATTCCTTTCATATTGCACATATAAAGAAAAAAGAAATGAACCAAAATAAAATTATACTATAATCCAATTATATGAAGGCCAAACTTGAGTTGGGGCTGGTGGCCGTTGACCACATCATCGCCTCCATTTGAGAGAAAAGGGTTTGTTTGGCTTTTTTGTCCAATTATTTACACTAACCATATATAAATGAAGAAGGACAACATCTATGTTGCTCCCTTCTTGTGATCCAAATTTGAAGAGGGCCGATGGGGAGGGGCAGTTATAAGTGTCATCCTCTTTGTTTCTCCTATCCCTGCATTATCAACCAAAAAAACATCAAACCAAGTGCAATACAATCCAATTTAATGCTCACAAAATTTGAGCTCCAAACAAGGTCACAGGTCAGCAATCGCCTAATCGATCATAACACCATTCGCAAACATAAACAATTAAGTCAGCAACTTGATATGCCATCCCTTTCATACAAACACAGATTGCAATTCATATATGCCGCATTATTTACAAACAATTACAAATCAAGAAACAATTAAATCATCATCATGAATTATAGTGTAATAACAGCATCATCAATTAGAAGAGACAGAGCTACATGGCAATAAACATATAGAGAGTAAACATACAGAGAGGAACTGCTTCATATCCTTCCCAAAAGCAATCTTCCGCAGGATAACAAAAGAGCGGTTGATCTCTGATCTAATTGCAGACGCAATCTGCAGAACCGACTTCTATGGAATTTTAACTTGTGAAATGTGGGGTGGAGATTTGAATGTAACAAATTGGTGTTAAGTGAATAATTCCAAACATATGAAATTTAGATAATCACATCCGAACGCAAACAGAAGAATTAAATAAAGAATCAAAGGCATATGCAATCTAATTAGACAAATAAGTGAACTTTCCCATGCCAAAATCCGAAAGGCCAACAGATATCTCTCATTACAGGACTTAATACATATCTTAAAAGACAAAACTTAAAATAACAAAAATTAGGTGAAACAATTGAAGAGAACATAATCCTTGTAACCAATCCGGAAAAGATGCTTTTAAATCCCAGAAAACAAATTATGAGAAGTTTTTAAAAAAACCATCATTTCAATTATTTTCCAGTCTTACATTTGGGAATAAACAGAAAATATAACTAAAATGCCAACTTTCTCAAAAAACTACAACTACTTTAACAAATTTCCATCACTCAACACTGAAAAATGAGAATCACGAAGCAACGAAGAACGGAACACGCTAGAAATAACAACAAAGCCTTTTCCCACTAAGTGAGGTCGGCTATATGAATCCTAGAACGCCATTGCGCTCGGTTTTGTGTCATGTCCTCCGTTAGATCCAAGTACTCTAAGTCTTTTCTTAGGGTCTCTTCCAAAGTTTTCCTAGGTCTTCCTCTACCCCTTCGGCCCCGAACCTGTCTCGTAGTCACATCTTCGAACCGGAGCGTCAGTAGGCATTCTTTGCGCATGTCCAAACAACCGTAACCGATTTTCTCTCATATTTCCTTCAACTTCGGCTATTCCTACTTTACCTCGGATATCCTCATTCCCAATCTTATCATTTCTCGTGTGCCCACACATCCCACGAAGCATCATTATCTCCGCTACACCCATTTTGTGTACGTGTTGATGCTTCACCGCCCAACATTCTGTGCCATACAACATCGCTGGCCTTATTACCGTCCTATAAAATTTTCCCTTGAGCTTCAGTGACCTATGACGGTCACACAACACGCCGGATGCACTCTTACACTTCATCCATCCATCTTGTATTCTATGGTTGAGATCTCCATCTAATTCTCCGTTCTCTTGCAAGATAGATCCTAGGTAGCGAAAACGGTCGCTTTTTGTGATCTTCGCTAGATTGCTCCGGTCATTAGTGTGGATAAGTATATAAATGGATAGAGATAGGAAAGCAAACACCAGATGTACGTGGTTCACCCATATTGGCTACGTCCACGGAATAGAGGATTTCTCATTAATTGTGAAGGGTTTACACAAGTACATAGGTTCAAGCTCTCCTTTAGTGAGTACAAGTGAATGATTTAGTACAAATGACATTAAGAAATATTGTGGGAGAATGATCTCGTAATCACGAAACTTCTAAGTACCGGCGTGTGGTATCGTCTTGACTTGCCTTATCTGTCTCGTAGGTAGATGTTGCATCTTCTCTGGAAGTACTCTTCCATCCAGGGGTGGTATCTTTAACTAGTGGAGATGCACAAGGTAATGTATTAATTTCACTTGAAGCTTACTTGTAGTTTCAGGCTTGGTCAAGCGCAATACAAACCATGTAGTAGGAGTCCCCCAAGTCGCCGAGCTAGGGGATCTGCTGAAAGAGGTGACAGATAAGGTAAGCAATCAGAGCTCCAAGCAATCAGTCCTAGATCAGAACTTTGATTTCGAGTTCCGGCTGATTGTTCACATTCTCCCTATCTTGCAGGCAGCATGAAGGATAAAGAGAAGAAAAATGAGAAGAGATGATATGGGATACTTTTGCTTTTGAAGAAGTAACTTTCCACAGGCTTATTCTTGAACTGGGCTGGAGGGTTTTCTAGTTTCCTCCAGAGTATAAGGCCGACTGAAGAATTTGAGGGTCAAAACAAGTCCATCAAATCTATAGTACGTTCGACCCTGCTGATATAGGATACTTTTGCTTTTGACAGAGTAGTGGATGTATCGGCACGTGTGCTGTTACGCTTGTCTCCACATGCTTCCTTGTATCCTTCTCACTTGCCTTATCTGTTCCTCAGGCAGATGCGGTATCTTCCCTGGAAGCATAAAATGTTGAAGATGAGTACTCGAGAGCAATGCCAGGTAAGTAATCAAGTAAGGGGTTCCAGGCAGTCAGTTCATGACTGGAAGCTTGATTCCAAGTGCTGATTGATTGCTCTCTTTCTCCTTGTCTTGCAGGTAAGAACAAGGCCAAAGGAAAAGACAGGGAAAAAGCATGATATGTGATACTCTTGCTTTTAACCCTGATGATATGAGATATTCTTGCTCTAGTATAGCTTGTTTGCAGAGGTATTATCAGGGGGAAAGAAAGCTGAATATTTCGAAAGGCTTCTTTGGGAGTGGCTCTCAGATATGACGAAGGGTTGAACATTTTTGCAGGTCTGCCTGTCCGTTGAGGATGGAGGTCGACATATATAGGAGTCTCCCTAACAACAAGTAGTAATGCTATTCCTTTACCCTGCTTGGTCATAGCACGGTAATGGGAGCTGCCAGCTTCACATGTTTTAACTCTGTCAGAGCACTTTGAAAAAGTGATCTGTGGTATCTGGAAAGCTGATGTTGCGTGTGAAGATTACAGACAAGCTTTATCCAAGGAGATCCAGCTCTTGAAGTTGGGAAAGTGGTGCCTCTTCGGTTTTCGAACAAGTAATCCTGTCGGAGATCTGGCTCTCGAGATTCGGAGAACGATGCCTTTTCGATTTTTGAGAAAGCAATTCTGTTAGGGGTTTGGCTCTCGAGATTCGGAGAGCGGTGTCTCTTCGATTTTTGAGAAAGTAATCATGTTGGGAGTCTGGCTCTCGAGATTCGGAGGGCGGTGCCTCTTCGATTTTGGAGCAAGCAATCTTGTTGGGAGGGTTTTCTCGAATGTGAGAAAAGGTTGGGCATGTTTGCTAGTCTACCTTGCCACGAAGCACAGAGGTTGACACATAGGGACTTTCCAATTATCCAGCAGTGGTACTGTTCCTTTACCCATGTGGGTAATAATATGGTAACTAGACCTTCAAAATTTATGTGTCTAAACTTTGTTAGTGCTGTTTCTTTGCTATTCTTTTACCCTTCTTGGTCAGAGCGATGTAGTAGGAGCTGCAAGCTTCACGTGTCTCAACTTTGTCAGAGAACTTTGGCAAAGTTATCTGTGGTACCCATGAGCTAATGTTGCGTGTGGAAAGTGGGTGATTGAACAGTAAGATTCATGTGCTTTCTACTTCACCAGAAATCTTCGACATAATGCCCATAATTTCCGCAAAGCTGAGTGTGCGTGTGACAGGTGCTGACAAGGTTGGAAAAGTAGGTGCCTCTTCGATTTCTGAGATCGGCCCTCGTGGTCTCTGAGCAGCCCAGCTTTTGAGAAAGCAAGCCTCTTCGATTTCTGAGATCGGCCTTCGTGGTATTTGAGCAGCCCAACTTTTGAGAAAGTAAACGTCTCGTGGTCTCTGAGCAGCCCAGCTTTTGAGAAAGCAAACGCCTCTTCGATTTCTGAAGCTCCGTCGAGTGCAGATTTTTATAGAGGCTGGCATTAAGTTCCAAAGCACACTTGAATCTCCACCAGTAGAAGCTCCATTCTTGCACTTCTAAGATCTTGATTTGTCCGACCTCTTCTCTCTTCAACACCTTTGAAAATGTCTGGCCCCCTCCGACCGTCGTTTTGACTTGAACCTTGTTGAAGAGGCAGCCACGCCTTCTCCAAACAACATATGGCGCCCATCCTTCGTCTCCCCTACTGGTCCTCTTACCGTTGGGGATTCCGTGATGAAGAATGATATGACCGCTGCGGTAGTGGCCAGGAACCTTCTCACTCCCAAAGATAACAGACTACTTTCCAAACGGTCTGATGAGTTGGCTGTTAAGGATTCTCTGGCTCTCAGTGTTCAGTGTGCAGGTTCTGTGTCTAACATGGCCCAACGCCTATTTGCTCGAACCCGCCAAGTTGAATCATTGGCGGCTGAAGTGATGAGTCTCAAACAGGAGATTAGAGGGCTCAAGCATGAGAATAAACAGTTGCACCGGCTCGCACATGACTATGCTACAAACATGAAGAGGAAGCTTGACCAGATGAAGGAATCTGATGGTCAGGTTTTACTTGATCATCAGAGATTTGTGGGTTTGTTCCAAAGGCATTTATTGCCTTCGTCTTCTGGGGCTGTACCGCGTAATGAAGCTCCAAATGATCAACCTCTGCTGCCTCCTCCTTCTAGGGTTCTGTCCAGTACTGAGGCTCCAAATGATCCCCCTCCAGTGCCTGCTCTTTCTGGGGCTCTACCGACTGCTGAGACTTCTCCTAAGCAACCTTTGTGAAGGCTCCCTCTTGTTTGTTTATTTTGACTCATGTATATGTACATATTTGTAACTTATCGGGGATATCAATAAATAAGCTTTCCTTCATTTCAACGTATTGTGTTAAATACACCAAAGCCTTCTTCGCTAAGTTCTTTGAATTTTCTTTTTGTTGAAGCTTGTATGTTGAAGCTTTGTGAGTGGAGCATGTAGGTTGAGGTAGTATTCCCTTAATTTCCCGAGTGAGGAAAACTTCTCGGTTGGAGACTTGGAAAATCCAAGTCACTGAGTGGGATCGGCTATATGAATCTTTGAACGCCATTGTGCTCGGTCCTGTCATGTCCTCCGTTAGATCCAAGTACTCTAAGTCTTTTCTTAGAGTCTCTTCCAAAGTTTTCCTAGGTCTTCCTCTACCCCTTCGGCCCTGAACCTCTGTCCCATAGTCGCATCTTCTAATCGGAGCGTCAGTAGGCCTTCTTTGCACATGTCCAAACCACCGTAACCGATTTTCTCTCATCTTTCCTTCAATTTCGGCTACTCCTACTTTACCCCGGATATCCTCATTCCTAATCTTATCCTTTCTTGTGTGCCCACACATCCAACGAAGCATCCTCATCTCCGCTACACCCATTTTGTGTACGTGTTGATGCTTCACCGCCCAACATTCTGTGCCATACAGCATCGCCGGCCTTATTGCCGTCCTATAAAATTTTCCCTTGAGCTTCAGTGGCATACGGCGGTCACACACAACACGCCGGATGCACTCTTCCACTTCATCCATCCAGCTTGTATTCTATGGTTGAGATCTCCATCTAATTCTCCGTTCTTTTGCAAGATAGATCCTAGGTAACGAAAACGGTCGCTCTTTGGTATTTCTTGATCTCCGATCCTCACCCCTAACTCGTTTTGGCCTCCATTTGCACTGAACTTGCACTCCATATATTCTGTCTTTGATCGGCTTAGGCGAAAGACCTTTAGATTCCAACACTTCTCTCCAAAGGTTAAGCTTTGCATTTACCCCTTCCTGAGTTTCATCTATCAACACTATATCGTCTGCGAAAAGCATACACCAAGGAATATCATCTTGAATATGTCCTGTTAACTCATCCATTACCAACGCAAAAAGGTAAGGACTTAAGGATGAGCCTTGATGTAATCCTACAGTTATGGGAAAGCTTTCGGTTTGTCCTTCATGAGTTCTTACGGCAGTCTTTGCTCCTTCATACATATCCTTTATAGCTTGGATATATGCTACTCGTACTCCTTTTCTTCTCTAAAATCCTCCAAAGAATGTCTCTTGGGACCCTATCATACGCTTTTTTCCAAATCTATAAAGACCATGTGTAAATCCTTTTTCCCATCTCTATATCTTTCCATCAATCTTCGTAAGAGATAGATTGCCTCCATGGTTGAGCGCCCTGGCATGAACCCGAATTGGTTGTCCGAAACCCGTGTCTCTTGCCTCATCTATGCTCAATGACTCTCTCCCAGAGCTTCATTGTATGACTCATTAGCTTAATACCCCTATAGTTCATGCAATTTTGTACGTCGCCCTTATTCTTGTAGATAGGCACCAAAGTGCTCGTTTCGCCACTCATTTGGCATCTTCTTCGTTTTCAAAATCCTATTGAAAAGGTCAGTGAGCCATGTTATACCTGTCTCTCCCAAAACTTTCCACACTTCGATTGGTATATCGTCTGGGCCCACTGCTTTTCTATGCTTCATCTTCTTCAAAGCTACAACCACTTCTTCCTTCCGGATTCGACGATAAAAAGAGTAGTTTCTACACTCTTCTGAGTTACTCAACTCCCCTAAAGAAGCACTCATTTCATGTCCTTCATTGAAAAGATTATGAAAATAACCTCTCCATCTGTCTTTAACCGCGTTTCTCTGTAGCAAGAACCTTTCCATCCTCATCCTTGATGCACCTCACTTGGTTTAGGTCCCTTGTCTTCTTTTCCCTTGCTCTAGCTAGTTTATAGATATCCAACTCTCCTTCTTTGGTATCTAGTCGCTTATACATATCGTCATAAGCCGCTAACTTAGCTTCTCTCACAGCTTTCTTCGCCTCTTGCTTCGCTTTTCTATACCTTTCACCATTTTCATCGGTCCTATCCTTGTATAAGGCTTTACAACATTCCTTCTTAGCCTTCACCTTTGTTTGTACCTCCTCATTCCACCACCAAGATTCCTTTTGGTGTGGGGCAAAGCCCTTGGACTCTCCTAATACCTCTTTTGCTACTTTTCGGATACAACTAGCCATGGAATCCCACATTTGGCTAGCTTCCCCCTCTCTATCCCACACACACTGGGTGATTACTTTCTCTTTGAAAATGACTTGTTTTTTCTTCTTTTAGATTCCACCATCTAGTCCTTGGGCACTTCCAAGTCTTGTTCTTTTTTCTCACTCTTTTGATATGTACATCCATCACCAACAAGCGATGTTGATTAGCCAAGCTCTCTCCTGGTATAACTTTGCAATCCTTACAAGTTATACGATCCCCTTTCCTCATTAGAAGAAAATCTATTTGTGTTTTTGACGACCCACTCTTGTAGGTGATCACATGTTCTTCTCTCTCTTCTTAAAGAAGGTGTTGGCTAAGAAGAGAGATCATATGCCATTGCAAAATCCAAGATAGCTTCCCCATCCTCGTTTCTCTCCCCAAAACCATGGCCACCATGAAAACCTCCATAGTTGCCTGTCTCCCTGCCCACGTGTCCATTTAAATCTCCTCCTATAAATAACTTCTCCGTCTGAGCAATTCCTTGCACCAAGTCTCCAAGGTCTTCCCAAAATTTCTCCTTCGAACTCGTATCCAACCCTACTTGAGGTGCGTACGCACTAATCACATTGATAAGTTCTTGTCCTATTACAATCTTGATTGCCATGATTCTATCTCCTACCCTCTTGACATCTACAACATCTTGTGTCAAGGTCTTGTCCACGATGATGCCAACACCGTTTCTCGTTCTATTTGTGCCCGAATACCAAAGTTTAAACCCTGAGTTTTCTAGATCCTTTGCCTTAAGACCAACCCACTTAGTTTCTTGTAGGCACATAATATTTATCCTTCTCCTCACCATAACTTCCACTACTTCCATAGATTTTCCCGTTAAGGTTCCTATATTCCACGTTCCTAAACGCATTTTGCTCTCTTGAACTCTACCCTTCTGTCCTAGCTTCTTCACCCTCCCCCATCTAATAGGATCAAAGTACTTCTTTTGTGTGTTCCGTGTAAAGTTGATAGGAGCATATGCTTCTAAACAACTTTGAGTGGAGTCGTTCGAAAAGAAGTTTCTATGGCCCCCTTGCTCATTTAACACTGCATCCGGGTGCCGATGGAGATACAACGACCCTTGCTCACTTATCACTGTGCTCGGGCCACACAGCGCGCCACTTACTGGTGACACCCTAGCTTTAGCGCAATTTCGTTCTGGATTCATTTTCATAAGGATTCGACGTAATCATGGAGTGCCGGCTGTCGACTACCTGACGCCCTCCCCCTCCTCCTTTATCCAGGCTTAGGACCGGCAATGTAAGATAAACTTACACAGGCGGAGTTAACGGAACACGCTAGAACTGAAACATTAAAAACAACATGTACCCATTTCAAAGACCAAAAATCCTGCAAGGACAAAAAAAAAATCCGAGAAAATCAGTACATCAGTACTCCCTGCAAAACCCCAAAATCAGAAAATTAGAAAAAGAACCCAAATCAGTGGCATGGTCCTTGTTTCTCCATTAATCAGTAGGTAATGACCTAATGAAAAAGAACCCAAAACAGACGGCTTAAATTATGGAAAGTGCTTATAAAGCTCATGAATAACTTTCAAAGCCTGCATTCCACAGTGTGCACACGCACAAACATAAAATATACATGCATAGTTAATTTTAGACAATAATACCTCAGAACATAAGTTGCAATTTGGGACTATTTGGTTGACTCAAAAGAAATTGATGGGTTAGAAAACCACAAAAAAAATACAAAGACGGATGTTTTTATGTCGTTCATTTCTTACGTCGACAAAACACACACACCTGTGTTTTAATGCTCCTCCAATACTCAATGAGAAGGCACCAGGCAAAAAGAAGGTCAAGGCTGGAAAGAAGCTTCCAAAGAGAACAATATATAAAGCAGACCACAAAAATTAGACAAAACCCAAAAACTAAACAGTAGAAAAACCTCTAAAATATATAAATATATATATAATTAAATAATTTAAAAAAAAACTAAACTGCAAATACTCTAGAAATCGTAAAATGAACTGCAAACCCGTCAATCATTTCCCAAAACCACATAACCAAAGAGTAAAAAAGGGAGTACGGGAGAGAGAAGCAGCCAAAATACAGAGAAGATGGCAAGAGAGAGAGAGAGAGAGAGAAAAATGAATTATTTTGGTGCCTCTGGTTCCTGCCTTTGTTCTTTGTTTTTCATTTATTTATAGGTAACTTGCTCAAGTCCAAAGGCAATTAAACATGATTAGTAAAGCACCATAATAAAGCATGAGAGATATCTATTTTAATTAAATCTGTTGTGGGCTCACTGTGATTGTACATCATCATCATAAATAATGCATGCTTGAACCCCATTTTAGTTTCATGCCTATCATAATTAAATCATGGATGGTCAAGAAGCATAGGACTGAGAAATCAGAGCCTAATTTCCAATATCAAAAGAGTACAAATTATTCAACTTAAACGCTAATTTCGTTAACGAAGATTAAAATAGGCGTGAAATCCATACAATTTATACGTTACCATTGATTCAAGTTCTGGTAGGTATCCATGGAAACTATCCGTTGCCACTCTCTCAGTTCCCATATTTTCTGTATGTTTCATTAAACAATATAAACTTTTGATGCTCTTCCATCTGGAGCTAAAACAGATTACCAATAATAACAAAGAGGTCTAAATAATAGAAATCAAAATTTTGATTTTTGCGGACTTTAGAGAATCTGCAAACTTTAGCCTAACATTATGTGATTGCCTCACTTCTTCAGTAACTCAGAGGAGGTGAATTACTCAAAGTATGGAGGACTTCTGCTAACATATTTCAAGCACTTGTAACATTAAATGTAATGACAGGTTGACATTATTATTATTTTTTTTTTGTAAAGAATTGTTGCAAGAAGTTTGACCCTTTGTCTTTTTATTTCTGTAAGGATTTATAGGTACATATAAAATCCATATTATATATGGTTCACAGATGAGAGTACTTCAAACACCAAATATTCATTCATGATTGGAGATAAGAAAGCTTACTAAGAGGCAATCGCCTTTGTGATGTTTACTTTTGTGCTTATCCTTTGTCTTCTTTTCTGAGGCAAAATATGTCAATGTGATAAGTAATTTCCCATAAAGAATATCATCCTCAATAGGCTAAACAACTACAATGGTTAGTCAAATAATGTACTTTCATGTAGTTAATCTCCTCGGTTTGTGTTTACTTTTTCAATATCAAAACATCTCGAAGAAACAACGTTTTCCCTTACTCTACAAACACCGAATGTGCCCGATAAACCACTAACAACGCCATTACTCTAATTCGACTGCAGAGTGAGAGTTAAGATAAGAAGATACTCACAGGCCAAAACGGATGACATCACCAACACATAAATCCAAAAGCCACAACCAAATTTAATTTTGTTTTTACGTTGAATTTTTTTTTCTTGAATCCGTTTGGATGCTGAGAACGTGTGGTATGGGATTATTAATTACCGGCAGGGAAAATGACGATTTCTCCTATTTGCATTTGCAGGTGGAGGAATCATAGCCGAGGGATTGCAGTTCGTCGGTGACCATCTTCCTCAAATCGTCTTTTTGTTTGAGATTCTTGTTTGCTTCGACGATCCTCGCCGTATCAGCCAGGAGGTTTCTCTCCGAGACGCTCACGCATGGAATCAGACTCTGATTAAACAATAATTAAGCAAACAATCAATCACCCATATTCATATTCTGTGTTTGGTTGCCAAGAAACCGCGAGAAATGCAAAAACAATTTACTAATAAAAAAGTGTAATCAAAGCAACCATTATTTATACTTTTGTACCTTAAGAATATCTGAGGCGTCGCCACCGAACGAACCGGAGGAGATTGAATCACCGAAACCTCCACCGAATATATCGAACTCGTCGTCGGAGCTGTCATTGCTGTTGCCGTGAAAGCAATTGCAGCGGTTCCGTCCACATTTCGGCGGAGGTTGCTTCTCGTTGCTTTCTTCGATGAAATTCTGAACCATCTTCGCCAAGCAGACCGAACTTGGCTTGAACTCAGGCCGCGGCGCTGACGGTCCCTTCATCCTTGCTGATATTGAGGCCGCAGGAGTGGCGAGTTGTGATGTGGACTCAGGCCTCTCGGCCTCTGGGTTTTACGGAGAAGGGGAAGATGGTGAGGGTTGAGAGAGATGCAGAGTCTGAAAGAGAGTGAAAGAGAAAGGGTTATAAGAGAGGTTGAGTGTGACAGAGACGATTGAAGCAAAACGCACGATGATAAACGCGTGTGCTCGGTTCAGAATGGCAAGCCCGTAAATACCCAATGACAGATTTGTAAATAAAATGAAATTCACTTCAAAATACTGTTCATTTTAATAGTGCCTATTGAAAACCTTACTTTAGACTAAAGTAACTAAAAATTATGTTTGCGCGTTGCTACTAGAACCAACTGTTTCAAACGTAATTGGATGGACAAAACACATTTAAGTTGAATAAATTCAAAACAATTACGAACAAACAGAAGGATACATGAGTGCATGAGGCCGGTAAGATCAGCAGTTTTGCTTTTGTACACTTGTAAGTGAGTTGACATATAAACACATTGCACAATGAGTGAGAATAAACTCTACGTGTTTGAAACTTCATTTTAAACTAACATTCACACAATCCTAATCATTTGTGAATTACCATATTCTTATCATTATTCCAATATCTCTTCATGTAGATGGGGTGAGCTCATACCAGTCACTAAGAGCATTTTTGATACTCTACTTGAATCCAACTTTTTAAATTCAAAAACAATTTTCAAGTTTTAAGCCTTAAAAACTTGTTTGGTAAGATTATTTTCAAAAATTGAACTTAAGATTAACTCAAAACTATAGTTTACTCTCTAAAAACACAAAATGTAAATTTTTAGAGTTTTTAAACTTAAACTCACTCATTTCTTTTCTCTCCCTCCTCCTCTCTCACTCCAAATCTATCTCTCTTTTCTTCTTTCTATGTCCCCCTTTTTTTTTTTTTTTTTACCTTTTTCGTCTCTCATCCAATCCGCTCTCTTCATTATCTCGATTCTTTTTCTCACTTATCTTCCTCTATATCTCCTCCGATCCTCTCTTCTTTCTCTTTCCTTCAATCATATCTTACTTTCTTTCCTCCTCTTTCCTCTTTCTCCCTCGACCCCCTCTTTTTGGATCTCTTTGTCCAGTTTAAGTTGTAAGATTTAAAAATTTTAAATTACATACCAAACAAGTTTTTTAGTCTTAAATAAAATTATTTTTCAAGAAAAATTCTTAAAAAATGTTTTGAGAAATGATAAAAAATTTCAAATAGGATACCAAACAAGCATTAAAATTGCTAATGTATTTAGTGATTATACAGAGCAACTTAACTATAGAAACGCTCCTCAAATCACTCTATACGTTTCCATTTTGCTTTTCAAATTAGCATGTTTATATATTGACATTAGAGAAAACGAGAATGCTGATGAAAATTGGATTATTAGAGGTTAAACGGCAGCGACCCCCCCCCCCTCCCCCCCCCAAATCCATTTTTGTTGGTTGACATTCTGAATATTGACGGTTTACCTTGTCCTCCTTAATTTCCTATAATCGGTAGTATAGGGGCGACATCTTGGCATTTGTTGCAGTGTCGTATCCATCTGTACCCCCCTCCACTACCTTGCTTGTCTCCTTTAGTTTATCTGTTGCTTGCCTCCCTTAACGAGCAGAAACCAAACAAGAACACCCAATTTTGACACGTGTACAACACACTCAAACATCATCAGCGTCCAAGAAGGCTAGGCGCCATATCACAGAGATCCATCTTGGCCTAGGTCCCTCTCTAGTTTCTTGCTAATCAAAATTCAAACCCAATTTTTTATTCGGAAATAAATTTCAAAATTTAGGAAATTTTATTATCTGAAAAAGAAATAATTTTCAAGGGTTACACTGTGACTGTGCTGATAAACACATGGATACCAAGCTCTGTTGTGATTGCTTCCCTTTACGTTTTTTCGCCAATCTTTGTGCACCATTTAGACATTGATAGTGATGCCAGTTTTAGCTGTATCCTCACATAAAAATTGCCAAATATACACAGATGTCAAAGATCTTGAAGTTTGGTTCACATGCTTTGTCAGGGAAGATCAATGTATGCGATTGGGTCGTCTGGAATTAGCAGTGTAAAAGGTGTTGGTATACGGTCCAGCCCATGATCAATGTTCTAGATTATTCTAGTAAGCAAGAGATGAGGCTGGAGCTTGCTAGACAATTCTAGCATGTTATTAAGTTGATGGAAGAAGCTAGAGAGTACTAGCTTCCTTGGTTGCAAATGGAAAGATCTAGAAGCTACAAGTATGTGGCTAGTCTAGATTTTTCTATACTAGAGGTTTGAAGAAGGAACTAGAAACTAGTAGAATGCCAAGCCCTCACCTATAAATATGGGTGTGATGTAACCAATTGAAAATCAAGAAAGAGTGAGTAGCAAAGGATCAAGTCCAAAGCTAGAGTTCCACTCCAAGAGTGAGAGTGAGAGTGTTCCACTACACATTGTGTGAGTGAAGTTTAGAGTGATAGAAAGTGTGTGTTATACTTTCTTGTATCCATCAAGCCTTGTCTTTGGCTTGGTAAGACTACTCTTGTTGTATTCATTTTTTTCATATAGTGAAGATTGATCCTTGTTTGGTGGACGTAGGCATAAATTGCCGAACCACATAAATTCTTGGTGTCCATTTTCTACTTTACCTTGTGCATTCTCTATCTTGTAGTACTGACATTCCTAACAAGTGGTATCAGAGCCCGGTTGGCTCGTACTACGAGATGGAAGGAAGTGGCACTATGATCAAACTCACCAACTCCAATTGGGTAACATGGAAGCCAAGGATGGAGGACATTCTCTATTGCAAGGATTTGCATGAGCCAATTGAAGGAGATGCCGCTAAGCCCGAGAGCATGTCCGATGCCGAGTGGAAGAAGATGAATCGCAAGGCTATTGGCACAATTAGACAATGGGTGGATGATAGTGTTTTTCACCATGTGTCTAATGAAACCAATGCTCGCGAGTTTTGGACGAAGCTTGAGTCCTTGTTCGAGAAGAAGACCCCAGCCAAGAAAGCCTTCTTGATCAAAGAGCTCATCAATGTGAAGTACAAGGATGGTTTAAGTGTAGCAGAACACTTGAACAATTTCCAGAATATCATCAACCAGTTGGCTACTATGAAAATGACGATCGAGGACGAGCTACAAGCGCTCTTGTTACTTGGATCCTTGCCAGACAGTTGGGAGACCTTTGTGGTGAGTATAAGTAACTCTGCTTCTAATGGTGTTCTTACTCTTGATAATGTTAAAAATAGCATGCTCAATGAAGAAACAAGGAGAAAGACTTCTGGCACAGATAGCAGCCAAGTATTTGTCACAGAGAACCGCGGAAGAAGCAAGAGTAGAGGGCCTAGAGGTCATGGCAGGAGTCCTAGCCGATCCAAGTCAAGGTTCAGGGGTGCATGCCACCATTGTGGCAAAGAAGGCCATATGAAGAAAAATTGTCGAGTTTGGAAGAGAGAGCAAAAGGAAGGAAACAATCAGAAGAAAGATGATACTGGCAATACCACTGCTGTCATATGTGGTGATGTACCAGAAATATTGTCTGTTGGTGAATGTCTGCATATGGGCAACTCTGACAGAGACATTGAATGGATCTTTGATAATGGAGCTTTCTTCCATGCTACGTCCAAACGGGAGTTCTTCAGTACATACAAAGAAGGTGACTTTGGCATAGTGAAGATGGGGAATGAAAGCTATTCCAAAATTCTTGGAATTTGGTGATATCTGCTTAAGAACTAATCTCGGCTGCCAATTGATGTTGAAAAGATGTGAGACATATTCCTGATATACGTCTCAATCTGATATCCATCGGTACCCTTGATCGACAAGGATATTATCACCATATTGGCGAAGGAAAATTGAAGCTTACTAAAGGCTTAATGGTGGTAGCAAGAGCACGACTTTGTTGTACGTTGTACCGGTCAAATGCCAAGGTTTTGAAAGGTGAGTTGAATGCTGTGGAAGACTCATCTCTAGACTTGTGGCATAAGAGGCTAGGCCACATGAGCGAGAAAGGCCTACAAGTTTTGGCAAAGAAGTCTCATATTCCCTTTGCCAAAGGTACGTCGTTAAACTCTTGTGAGCATTGTTTATTCGGAAAACAAAGAAGAGTTAGTTTTTCTGTTCCATCTACAAAGAAAGGAAACTTGTTAGATCTTGTTTATTCAGATGTGTGTGGTCCCATGGAAGTCGAGTCACTTGGAAGAAATAAAATATTTTGTTACTTATATTGATGATGCTTCACGAAGGGTGTGGGTGTATTTGTTGAAATCCAAAGACCAGGTGTTTCAGACATTCCAGGAGTTCCATGCCATGGTGGAGAGGGAAACTGGGAAACCTCTCAAGTGCCTTCGTAGCGACAACGGCGGCGAATACACATCTCACCAGTTTAGAGAGTATTGTGTAAAACATGGCATACGTCATGAGAAGACAGTTCCTGGAACTCCACAACATAACGGTGTTGCTGAAAGAATGAACCGAACCATCATGGAGAAAGTCAGGTGTATGTTGAGGACTGCAAAGTTATCTAAGCAGTTCTGGGGTGAAGCTGTAAGGACAGCCTGCTATTTGATCAACCGATCTCCATCAGTACCATTAGGTCTTGATGTTCCAGAGAGAGTATGGACTGGTAATGATGTGTCTTACTCTCATCTGAAGGTGTTTGGTTGCAAAGCTTTTGTGCATGTGCCCAAAGAGCAGAGATCGAAGTTAGACTACAAAGCTACACCGTGCATCTTTCTTGGTTATGGCGGTGAAGATTTTGGTTACAGATTATGGGACCCATACCAGAAGAAGTTTATCCGAAGTAGAGACGTGGTCTTTTATGAAGATCAAACAATTGGGGATTCGGATAAAGAGGCACAACCAGATGGCGCAGTCAGAGGAGTTGATCCATTAGTTTCAGATGAAGAAAGTCACGATGACATCCCTGAAGCAACTGCCAATGAAGTGCCTGCAGAATCAGATAATGCTGATCAAGAGGAGCCTGATCAAGATGTGCCAGACCATGAGATTGCTGATCAGGGGGAGCCTAGTCAAGAAGAGCAGATTCAAGGAGAATCCAATCAGGGGGAGCCTCTAGCCCCGCAAGAGAATGAAGATCAGGTCAGAAGATCCAGCAGAAGTCGAAGACCGTCTACCAAGTATTCTTCATCAGAGTATATCATGTTGACTAATTATGGAGAGCCCGAAACTTATGAGGAGGCCAGAGCTCATAACGACAGTGATAAATGGATGAAGGTAACTTGGAGTCATGATCGGAATTCCTCCCTCATGGACTGGAGGGGGAGATTGTTGGTATACGGTCCAGCCCATGATCAATGTTCTAGATTATTCTAGTAAGCAAGAGATGAGGCTGGAGCTTGCTAGACAATTCTAGCATGTTATTAAGTTGATGGAAGAAGCTAGAGAGTACTAGCTTCCTTGGTTGCAAATGGAAAGATCTAGAAGCTACAAGTATGTGGCTAGTCTAGATTTTTCTATACTAGAGGTTTGAAGAAGGAACTAGAAACTAGTAGAATGCCAAGCCCTCACCTATAAATATGGGTGTGATGTAACCAATTGAAAATCAAGAAAGAGTGAGTAGCAAAGGATCAAGTCCAAAGCTAGAGTTCCACTCCAAGAGTGAGAGTGAGAGTGTTCCACTACACATTGTGTGAGTGAAGTTTAGAGTGATAGAAAGTGTGTGTATACTTTCTTGTATCCATCAAGCCTTGTCTTTGGCTTGGTAAGACTACTCTTGTTGTATTCATTTTTTTCATATAGTGAAGATTGATCCTTGTTTGGTGGACGTAGGCATAAATTGCCGAACCACATAAATTCTTGGTGTCCATTTTCTACTTTACCTTGTGCATTCTCTATCTTGTAGTACTGACATTCCTAACAAAAGGAGGATTGATGAATCTGAGAAAGAGGATTGAAAGCAAAAGAGATGAGAAGCTGAATGGAAAACGTCGCTCCAGCTTCCTCTTTGATTCAATCTCGCCCACTGAATAAAAATGAGAGAGACAACGCAAGAAGGAACCGTTACAAACTTCACATGCATTACACACCTCTCATACTCGCAAACCTCTATCCAGTCTAGTAAGGGCTTTGAAGCAGCTTCTAAAACGGACTAAGGGCTCGTTTAAGCATAATAAAAAATTGGGTTTACACCCCCCTTGTGTACCTGGTAAGCCCCTCTTCACATTGGATCTAAGCATATATTCTTAGCTTTTGAAGCATCCGACAAATAAGGAGGATAGGTTTTTTTAGAAGTTTCTGACTCTTCTTCAAATAAATCCATTTTATCGGGATTAAAAATAGGAATTGGTAAAAATCTCAAAGACAACACAAGAAGGAACTGTTGCAAACTTCACATGCATCACACACCTCTCATACTCACATGTCTTGCATGTGTATATCTAAGACAAAGTCCGCTACTATGACAGCTGGCACAATCCGAACCTATGAGCTAGTCTAATCTCAACCATTTAATTTCAATTCAAACAAATAAGGACAAGACTATGGAACTTGAATTCTAAGAAATCAGCTTCAAGGCTTAATCACTAACAATACATACCTGATCAAAAAAGAAAGAAAAAACACAACTTTACAATACATACGGATAAGTAAATACTGTCCACGTACTAACCGCAGGTGAAGAAAGAAATACGCGAAAAAGCAAAAAACTAAATAGAAGAGCTCTCAGAATAAAGAAACCAACTCAAAACACAAAAGAGTGATAAACTCTACCACACAAAATCACCATTTATTCCACCTCCCATGTCCCCAGTCTTACTACATATCAGTGATGATGCGCCAAATACCTCAATCCCCATTACCCCGTGACCCACAGATACAACCCCATATTCTCCCACCTCTCCTTGATGCTGCCACCGCCTTCTCCTTCTCTTCCTCATGGCTCGACTGCTTGAGATAACTCAAAATTGCCTCAACAGCCACCGCCTCCTTTTCCTCGCAGCTTGAGTCCACCGTCACAGTCAACGGTGCGGTGCTCTGATTCTGATCCAAATTCCCAGAAGTGCTGAAACTTTGTCGTTTTGGGTGGGAACCCTTTGATCCATGATTGCTGTCCTGATGTATACTAGTTCCCTCTAGTGTACTCTCTGCCTCAAGGAACTCCAAATCTCGCAGCCTCATCTCTTCCCCATAACTTGACTCCTCATGATCTGTCAAAATTTCTGAACCATCGCTCCAGGGGAGGAGGGATTCCCCATCAGCCACCGCTTCATTTTGCTCATTGTTTGGGACCATGGCAATGATGGCATTAATCATAGGTGCAGTGCTTCGAAACTGAGCCAAATCCGCCAAAGTGATGAATTGTTGTTTAGGGCGGTAACCACGTATACCAGTTCCCCCTATGTGAAGGTTCTTCAAATACCGTAAGTCTTCAGGCAACTTCGAAAGTTCTGAGCACCCATGGAGATTGAGCCATTCGAGACTCAACAAATTGCAGATACTGTCCGGAATATAGACCAGGCTTTTGCACTTTTTCAGATTTAACGACACTAGCCCCTGAAGCCGTTCAATTGATGCAGGAAGCTCTCTGATAGATGTTCGATCCAAATCAAGGCTGGCTAACCTTTCCATATTTTCTAATATGTCTGGAAACACCTCAAACTTTGTACAACCAGAAAGAGAGAGATAATTTAGGGACTTGAGTTGACAAATGTTGCTTGTAAGACTCTTAAAGTCTTTGCTATACCGTAGCGTCAAAGTAGCAAGTCCCGTAAGACTATAAATTATGGATGGCAATTCTTCAATTGCAATCCCTGAAAACTCAACAATTTTTCGGCGGCGAGAGGCTTGCTCACGTTCAAGCTCTGTAAGATTTTTGAATGTTGATGAATCTTCTGTAAATATAGTCCAATCGAAATTAAGCTCTGTTAGGTTCTCCATACCTTCTAGAAACTCTGGAAAATTCTTCAGATTTGAGCAGCCAGAAACATTCAGGACTTGAAGAGATCTCATATGAATGCTGCCTGGAAAAATCTTTAATCTTCTGCAATCCTTCAGGCTCAGGGTAACGAGTCCTGTAAAATTTTTTATGGACGAGGGCAGTTCTGAAATTGCAGTCTCATCTAAATTAAGCTCTAATAGGTTCATAACTTCAGGAATTTCTGAAAAATTATCCAGATTTGAGCAGCCGGAAAGATTAAGGGTTTGAAGAGATCTCATGTGAATGCTGCTTGGAAGGCTATGAAGTTTCTTGCACTGCTTTAGACTCAAACTCTCAAGGTTTTCAAGAGAATAAATTGATGGGCAAAGGTCTTCAACAGATGTCTCATCCAAGCGAAGCTCTCTTAATCCTTCCATATTTCCGCCATTTTCTGGAAAGGCTTTGAGCTTTGAACAACCAGAAAGATTAAGAAATTGCAGGGACTTGAGTTGAACAATGCTGTTTGGAAGAATCTCAAGTTCTCTGCAATATTCAAGATTCAAAGTAACAAGCCCCGTAAGATTGTTAATTGATCGAGGCAGTTCTTTTATTGCAGTCCCTTGCAAATAAAGCTTTGAAAGCTTCTCCATAATTTCTGAAATCTCTGGAAACTTCTCAAGTATTGAGCAAAAAGAGAGATCAAGGGTTTCAAGAGATTTCATACAAATGGTGCTTGAAAAGGTCTTGAGTTTGCCGCACCAACTTAGATCCAAGAGGACAAGTTTTTCAAGGGCAGAAATGGATGGGTGAACCTCATATAAACTTTGTGCATCCACCAAGAATTAGGTTCTCAAGATTCTTTGCCTCAGTGAAGTCAGGTGTTTCCTTAAGACGATAAGAGCCTTTTAAGTTGATAATTTTCAACTTTTCCAGAGGCTGTCAATATACAACAAGGAAAATATGTGTTACCTACATAATAAGGCATTTAAAAACTAAACAATTTAAAAGCAGTATATAGGCAAATGATGAACGTACCTGAGTTCCTTTCCAGAGGTGTTCAACCCAACTATATTGCATGTCAATGTCAACAAGATTCTCTGGGTTAAAATTGGACGATAAAGACTTTAGAGGACATTTGTGCCAGAACAAATAACTTAATTTTTCAGAGAGAAACTTTAGATCCTTGTATTTCCATTCATCATCGGATTCCCTGCCCGGTGGTTGTAAATAGTGGGTATGGACTCTGAGTAGTCTTAGTTTTATCATTTTAAAAAAAGCGGTGTCTAATTCCACCACATTGTTTGAGTATGGCCAACGCACAATTATGCTTTCAACTGCTTCTGTAGCCTGGATAACCAAAATTGCAAATTGAATGAGTACAAAACTTAAGATTATAACTTCTAAATGCACATGTTTCTCATTAATTGGATTTTGGTCAAAGTTGAAGCTTTATACTTTTTATTAATATTAATAATAATAATATTATTATTAACATTATTATTATTATTATTATTATTATTATAATTATTACTATTATTAAATTTACTAATATTAATGTGAGAGAGAAGATTCAAAGCAATTACATTAATGGAAGGGAGGGAGTGCGTTTCTCACCGTTTCTCGACTTAACACATGATGAACATCTTCATAGCTCCACAACCTACTGCGCCTCCCAGGCTCTTTTATAGATTCCTGGCGTACGATTTCGCGACCCATTTCCTCTAGTAAATCATGCATCTCGAGTACACCATCAGATGAGACAGTGACAAGAGCTCTACCAACTAGAACGTCTAATCCGGTATGGGGATGGAAGTCACAACCCTCCATAATCCTTGTTGCAAAGTCTTTCTTCATTTGTTTAAAGAAACATGCAATATCAAGAAATATTTCCTTCTGCAAACCATCTAGTCCATCAAAGCTTGTTCTAAGGACTGTCTGGATTCCCAGGTGCGGATTTCTCGCTATTTTCTTTAACTCATCTTTCCACACAAGTACACTTTTGTTATCGAGGAATGCTCCCAAGACTTTGAGTGCTAAAGGCAAACCTTGAGCATATTTTATGAAATGGCCTGACAAATCAACGTATTCTTCTGTGGGTTGCTTTGTACTGAAAGCATACTGCATAAACAGCTCGAGAGCATCATCGTCATTTAACAACTCGGGCTCATATATCTGATCACCAAGTCTACTTAGTGACTGTTTCTCTCTAGTTGTTATAATGATTCGACTTCCGCCACCAAATGAAGGTTGCTTTCCAATTAAGGCTTCAATTTGGGATGAACTCTCCACATTATCAAGAACAAGTAAAACCTTTTTCCTACCAACTCTTTCCATCATCTTCTGAAAACCATTTCTCAAAATCTCTGAACTCCCCACCTTCATAT +>URS0000222F4A rRNA from 1 species +ACGGGGTGCAGCAGGCGCGAAAACTTCACACTGCGCGAAAGCGCGATGAGGGAATCCCAAGTGCTTGCACGTAAGTGTAAGCTGTTTCTATGTCTAAAACGCATAGAGAGTAAGAGCTGGGTAAGACGGGTGCCAGCCGCCGCGGTAATACCTGCAGCTCAAGTGGTGGCCGTTATTATTGGGCCTAAAACGTCCGTAGCCGGTTTATTAAATGCCTGGGTAAATCGGGCCGCTTAACGGTTCGAATTCCGGGTAGACTGATAGACTTGGGACCGGGAGAGGCTAGAGGTACTCCTGGGGTAGAGGTGAAATTCTGTAATCCTAGGGGGACCACCAGTGGCGAAGGCGTCTAGCTAGAACGGGTCTGACGGTGAGGGACGAGGCCCTGGGGCGCAAACCGGATTAGATACCCGGGTAGTCCAGGGTGTAAACGCTGCTTGCTTGATGTTAGTCGGGCTCCGAGCCCGATTAGTGTCGGAGAGAAGTTGTTAAGCAAGCTGCCTGGGAAGTACGGCCGCAAGACTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>URS0000E1B154 rRNA from 1 species +TGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCCTAGGGTTGTAAAGCTCTTTCAACGGTGAAGATAATGACAGTAACCGTAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGTCCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGATATTTAAGTCAGAGGTGAAATCCCGGAGCTCAACTTCGGAACTGCCTTTGATACTGGGTATCTTGAGTATGGAAGAGGTAAGTGGAATTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAGGAACACCAGTGGCGAAGGCGGCTTACTGGTCCATTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACA +>URS00022EEFAF misc_RNA from 1 species +TGGCTCTCCCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACCTTGCGCCCTCTGGTATTCCGGAGGGCATGCCTGTTTGAGTGTCATTAAATTCTCAACTTCAAAAGTTTTTATTGAATTTTTGAAGCTTGGATGTTGGGGGCTTGCTGGCGTCTTTAGATGTTCGGCTCCCCTTAAAGTTATTAGTGGGAATGTCTTTTATTAGGCAATCCTTGGTGTGATAATTATCTACACTTTGGATGGTTTAATGGTTCCAATGAGGCTATTGGTATTGCAATTAAGTTTGCTGTACCTTGGGTCTTAGGGGAAAAGATAAGTCTTGCTTTCTAACCGTCTGTGTTACATGGACAATTTATTGACTATTTGACCTCAAATCAGGTAGGACTACCCGCTGA +>URS00001F1239 rRNA from 1 species +TAAAGGTATTCCGGTAGACGATGGGGATGCGTTCCATTAGATAGTAGGCGGGGTAACGGCCCACCTAGTCTTCGATGGATAGGGGTTCTGAGAGGAAGGTCCCCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGAGGAACATTGGTCAATGGGCGAGAGCCTGAACCAGCCAAGTAGCGTGAAGGATGACTGCCCTATGGGTTGTAAACTTCTTTTATAAAGGAATAAAGTCGGGTATGGATACCCGTTTGCATGTACTTTATGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGAGCGTAGATGGATGTTTAAGTCAGTTGTGAAAGTTTGCGGCTCAACCGTAAAATTGCAGTTGATACTGGATATCTTGAGTGCAGTTGAGGCAGGCGGAATTCGTGGTGTAGCGGTGAAATGCTTAGATATCACGAGGAACTCCGATTGCGAAGGCAGCCTGCTAAGCTGCAACTGACATTGAGGCTCGAAAGTGTGGGTATCAAACAGGATTAGATACCCTGGTAGTCCACACGGTAAACGATGAATACTCGCTGTTTGCGATATACGGCAA +>URS000107D7B1 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGCCCGGTAAGTCCGCTGTAAAAGTCAAAGGCTCAACCTTTGAATGTCAGTGGATACTGCCGGGCTAGAGTCCGGAAGAGGCGAGTGGAACTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAAGAACACCGATGGCGAAGGCAGGTCTCTGGGCCATAACTGACGCTGAGAAGCGAAAGCATGGGGAGCGAACAGG +>URS0001943432 rRNA from 1 species +GTGAGGAATATTGGTCAATGGGCGAGAGCCTGAACCAGCCAAGTAGCGTGCAGGATGACGGCCCTATGGGTTGTAAACTGCTTTTACACGGGGATAAAGTGTGCGACGTGTCGTTCATTGCAGGTACCGTGCGAATAAGGACCGGCTAATTCCGTGCCAGCAGCCGCGGTAATACGGAAGGTCCGGGCGTTCTCCGGATTTATTGGGTTTAAAGGGAGCGTAGGCCGTCTGTTAAGCGTGTTGTGAAATGTAGATGCTCAACATCTGAATTGCAGCGCGAACTGATAGACTTGAGTGCGCAGGAAGTAGGCGGAATTCGTGGTGTAGCGGTGAAATGCTTAGATATCACGAAGAACACCGATTGCGTAGGCAGCTCACCAGACCACAACTGACGCTGAGGCACGAAGGTGCGGGGATCAAACAGGATTAGAAACCCTTGTAGTCC +>URS00007057CD snRNA from 1 species +AAAATGAGGGCAATCTGGTTGCGACATCTGTCACCCCACTGATCACCAGAGTTGATTCGGCTGATTTGGCTGGCTAGGCGGGTGTCCCCTTCCTCCCTCACTGTTCCATATGCGTCTCTCCTGAAGCTGCATGATTGGTTGAAGAGGACAACATCCCAGGTATAGAAGGAGTGTACTGAGGTCTCCAGTCTTCGATCCCAGATATACTATAGCTGCACTCCCCTGCTAGAACCTCCAAACAAGCTCAAGGCCCATATCAAAGTCCATAATGGTGGCCCCTAAGTTTGTCCTCAACTTATACATGTGGTGGACTTATA +>URS0000B96F2F misc_RNA from 1 species +TTGTTATAAATAATAAGCAGAAGAAAAATATATTGTTTACCTAGTTTACTTTTAAACGATGAGAATTGCAAAATTTGGATAAAATTGTGAGATTTGAATTGCAAATCATCAATTTGCTTATGATTTTGATCAATTTCAATTTGCTTATGATTTTGATCAATTTCAATTTGCTTGGTTTGAATTGATTGAGACTTGATTTGGTTCAATTTTAATTGTGAACTTTACAATTCTTGTAACTGTGCCATGTCAATATGTGGATCTCTCTTTGCTGAGCCCTTCTATGCGGCTATGCTAGAGTATGCTAGAGTTTCATCATCATAAAGGTGTGATACTTGGGATAAAAACTACACTTGATACCTGCACGTTAGTCGAGTAACATATATCACCTTTTGACAAAGCTTGTTGTTTCTTTATGTGAAACAAGAAAATGGAGTGGCTGAAGCTCTTTTAGTGGGTGCCACTGCTTCACCCTAAATTAAGTGATTAGCTTTTTCCATTATATCCTATATATCAGTAGCTTTATGTCTTCAGAATCTATTCCCAACATTTGATGTTGTTTTGAGTTTAGAATAGGGGATGGAAAACTATGTGCCGCTTGTTGCTTGTCGCTTGATGTAACAAACTATAAGGTTAAGTGTTCTCAAATCTCAATTTATTGGATTCCATGGCTTATGTTGCTAGGCATTGGCATGAATGGAAAGCGGTCTTTGTACCATAATACATATGGGTACTCCCAATATACATATAGCCCCTTTGGGACTGGTGACTGGTCATATTATATGGTCTTCATGTTCCCCTTGTCATCATTACTGGAAGTCTGGAATGAATGCACAAGCAATGCAATTCTAAGATCAAAATTCTGTCCTTTTTTTCTTTAGTAATAAGTTGACTTAAGTGAAGCCAATTTATTTTTCTCAGTATAATTTTTTGAACTTGGTTAATTTTGCAAATGAGCCCATTGCCACCAATCATTATTCACTATTGGTGTAGAGATTATTGCACATGCTTGATTATCTTGATTTTTTTCTCAAGTGCAAGTGCTTTGGATTCTTTCCTATTAACAGCTTTTCATCATGGATGAAAGAGAATTTCTCTGTTTTTTATTTGATGCATTGTGCCTGTCTTTCTTCTTCTTTTTTAAACTGAGCCAATCTGTATGCATTCGAAAATTGTATTGTAGGCTATAAAATGGAGAATTTTCACATGCTAACTTGCAACATGTGTTTTTATTAAGCGCTGCCAGCTAAATTATGATCTTGCATAAATTTTGTCCTTGTTTATGACATCATATGGCCATTAATTTTTTTTTCTTTTATAATTAACCCTGTTTTTGTCAATAATCTTTTTAGACGGTCTCTCCTATGTGGTCGTTGGTGGTTTTTCTTTCTTTTTAAAGCAGCTTTGAAGTTTTCAGGGATTCTTTGATTTATATCTTAAAGTATCCATATTCTATCTATCCTAATCTATGCTTTGAACAAGTTATGCCATCCAATACTGTCATTACAGGCAAAGTGGAGGCAAGAAGTGA +>URS0000D729CC rRNA from 1 species +GGATGCGATCATACCAGCACTAAAGCACCGGATCCCATCAGAACTCCGAAGTTAAGCGTGCTTGGGCGAGAGTAGTACTAGGATNNNNNNNN +>URS00003FE27D rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAGGTCCACCGCGTAGCAATACAAGGGAAGACCTAGTGGCGAACGGGTGCGTAACACGTGAGGAACTTGTCCCGGTCTCTGGGATAACAGTTGGAAACGACTGCTAATACCAGATGACGTCGGAATCTCGCATGGGATACTGACGAAAGGGTTACTGGATCGGGAGAGCCTCGCGGCCTATCAGCTTGTTGGTGAGGTAACGGCTCACCAAGGCGTCGACGGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCAACGCCGCGTGCGGGAAGAAGGCCCTCGGGTTGTAAACCGCATTCAGTAGGACGAAAATGACGGTACCTGCAGAAGAAGGTGCGGCCAACTACGTGCCAGCAGACGCGGTAAAGTAGTCGTGT +>URS00023E9193 lncRNA from 1 species +CAATGTTGGAAACGAAGTTGGATTTGCTCCTAACATCCAGGTTAACCATAGTTCTTGCGGCTTCTCCGGCATTGCACCACCGCCTCCAAACAGACCCCAGTTATGGATCTTGTGATTACCCATCTTCCACAAGGAACAGAAACATTTGGTCAAGTTTCTTGCTCTGCATCTGCGATTACGTCAGCAATGTTTAAGTTATCCTTTCTCAGTGCAGGGAATAAAAAAAAAAACAAAAAGTCCAAACAATTCAGTCGAAGAATACTCGCAGAGAGAGAGACCTAATGGAGGAAGGGCTCAACGGAAAGGAGTACTTGCTCAAGGTGGTGCTGATAGGCGACTGAGATCTGGGACACCGCCAGCCAAGAACGCTTCAGGGCCGTCACCTCTGCTCACTCTCTCTCAAAGCCCTAATCTTTAACCATCGGCCGTCACCTCTGCTCACTCTCTCTCAAAGCCCTAATCTTTAACCCTAAAAAATCCCCAAATCTCTTCATCTCCTTTCCCCCGCACGTACAACGATGGCTCTAATGAGACCCTAATCCGGAAACCAACCCCC +>URS0000805F26 rRNA from 1 species +AATAGATACCCCGGTAGTCCATGCCGTAAACGATGAGTACTAGCTGTCTGGGGTATCGACTCCCTGGGTAGCGCAGCAAACGCGATAAGTACTCCGCCTGGGGACTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCAGCGGAGCGTGCGGTTTAATTCGAAGCTACGCGAAGAACCTTACCAGGGCTCGACATGTCCCTGACCGCCGATGAAAGTCGGTTTCCCTTCGGGGCAGGGTCACAGATGCTGCATGGCTGTCGTCAGCTCGTGCCGTGAGGTGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTCGTGTGTTGAATTTTTCACACGAGACTGCCCGGAGCAACCGGGAGGAAGGCGGGGATGACGTCAAGTCAGCATGGCTCTTACGTCCTGGGCTACTCGCACGCTACAATGGGCAGTACAGACCGTTGCGATATCGCGAGATGGAGCTAATCGGACAAAGCTGTCCTCAGTACGGATTGCAGGCTGC +>URS0000ACA7F0 rRNA from 1 species +AATGAACACTGGCGGTAGGCTTAACACATGCAAGTCAGACAGAAACGATGAAGTGCTTGCACTTCAGGCGTCAAGTGGCGGACGGGTGAGTAACACATGGGAATCTACCTATAGTTGGGGACAACATATGGAAACATATGCTAATACCGAATGTGCTCTAAGGAGTAAAGGAGCCCTCTCTTGAAAGGTTTCGCTATAGGATGAGCCCGCGTGAGATTAGCTAGTTAAGGTAATGGCTTACAAGGCAACGATCTCTAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACACAGCCCAGACTCCTACAGGAGGCAGCAGTGGGGAATATTGCACAATGAGCGAAAGCTTGATGCAGCCATACCGCATGTGTGAAGAAGGCCCGAGGGTTGT +>URS00012146AA rRNA from 1 species +CCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGACGAGAGTCTGAACCAGCCAAGTAGCGTGAAGGATGACTGCCCTATGGGTTGTAAACTTCTTTTATATGGGAATAAAATGTTCCACGTGTGGGATTTTGTATGTACCATATGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGAGCGTAGGGGGATTGTTAAGTCAGTTGTGAAAGTTTGCGGCTCAACCGTAAAATTGCAGTTGAAACTGGCAGTCTTGAGTACAGTAGAGGTGGGCGGAATTCGTGGTGTAGCGGTGAAATGCTGAGATATCACGAAGAACTCCGATTGCGAAGGCAGTTCACTGGACTGCAACTGACACTGAGGCTCGAAAGTGTGGGTATCAAACAGGATTAGATACCCGAGTAGTC +>URS0000767CA2 rRNA from 1 species +GATGAACGCTGGCGGCATGCTTAACACATGCAAGTCGGACGGGAAGTGGTGTTTCCAGTGGCGGACGGGTGAGTAACGCGTAAGAACCTGCCCTTGGGAGGGGAACAACAACTGGAAACGGTTGCTAATACCCCGTAGGCTGAGGAGCAAAAGGAGGAATCCGCCCGAGGAGGGGCTTGCGTCTGATTAGCTAGTTGGTGAGGTAATAGCTTACCAAGGCGATGATCAGTAGCTGGTCCGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAATGCCGCGTGGAGGTAGAAGGCCCACGGGTCGTGAACTTCTTTTCTCGGAGAAGAAACAATGACGGTATCTGAGGAATAAGCATCGGCTAACTCTGTGCCAGCAGCCGCGGTAAGACAGAGGATGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCTGTAGGTGGCTTTTCAAGTCCGCCGTCAAATCCCAGGGCTCAACCCTGGACAGGCGGTGGAAACTACCAAGCTGGAGTACGGTAGGGGCAGAGGGAATTTCCGGTGGAGCGATGAAATGCGTAGAGATCGGAAAGAACACCAACGGCGAAAGCACTCTGCTGGGCCGACACTGACACTGAGAGACGAAAGCTAGGGGAGCAAATGGGATTAGATACCCCAGTAGTCCTAGCCGTAAACGATGGATACTAGGCGCTGTGCGTATCGACCCGTGCAGTGCTGTAGCTAACGCGTTAAGTATCCCGCCTGGGGAGTACGTTCGCAAGAATGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAAAGCGAAGAACCTTACCAGGGCTTGACATGCCGTGAATCCTCTTGAAAGAGAGGGGTGCCTTCGGGAACGCGGACACAGGTGGTGCATGGCTGTCGTCAGCTCGTGCCGTAAGGTGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTGTTTAGTTGCCACCATTGAGTTTGGAACCCTGAACAGACTGCCGGTGATAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGCCCTGGGCGACACACGTGCTACAATGGCCGAGACAAAGGGTCGCGATCCCGCGAGGGTGAGCTAACCCCAAAAACCCGTCCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGAAGCCGGAATCGCTAGTAATCGCCGGTCAGCCATACGGCGGTGAATTCGTTCCCGGGCCT +>URS0000BE21C0 hammerhead_ribozyme from 1 species +GTACTGCTGACGAGTCCAAAACAGGACGAAACAGCTGTGCAGTGC +>URS00023CDC16 lncRNA from 1 species +GAGATGATTCTACTTTTCAGCTGGAGAACTTAGCAATAAGTTGTGGTAAGGAGATAAAAATTCCTAAGCAATGGCTACTTCAATTAGATAATCTGGAAAGCTTGTCACTGCATCGCTGTTGGTCAGATGAGCTGAAATCTCTACGTTTCCAGAGATTGAAGAAACTCACACTTGGTCAACTTAGTTGCTTCACTGTTTTCTCATTCCCAGACTTTGAAAGACTTCAACAGCTCAGAGAATTACGAATAGCACATTGTGATTCATTGGAACATATCGTGGAGGTTGTTAATGGTGAAGAAGCTTCTGGCATGGATACGGAGACTGCTGCACTAGTTCAGCTGGTAAAAGTCTATCTTGAGGGTTTGCCAAAACTCAGAAGTTTTACACACACAAAGTCTAAGAATCTTATGGCCAGTTTAGAGCAGGTGGAAGTGGAGCCCTCGATTCTTTTCAGGTGCCCTGTCGTTGGAAATCTCCAACAGCTCAGATGGTTAGACGTGACTGATTGCAGATTGTTGGAAGGCATTGTGGAGGTTGCAAGAGGCTATCAGACTTCTCACAGGAATGACCACATTATCACATTCCCTCAGCTCTATTCCATTAAACTTAGAAATTTGCCCAACCTCCAAAATTTCAGTCCCACTAAAAGCTATAGTTTCAAGATGCCCAAATTAACAGGTTTCGGTCTGTTCTATTGTCCCCGGATGGAGAATAAACCCTTCATGCAAATAATCGCAGAAAGGGTACATTTTTCTTCCGAGGAGCGTCGACGACTGATAATAGTTGAAAACCTCAAGGACTACACACTTAGAAAAATAAACAAGCTCGAAAGCGTGGGGGAATCAAGTAACAGCAATCAGGATGTGGAAACAGAAACAATGAGAGTTGAACAAGCGGAAGCCATAGTTGTTCAACAACGGGAAGAGGGAGTTGGTGCAGAAGAAGACGACTTTTTCTTCTTAAGAAAGTCTCAGACTTCATTGTTTTTCATTTTGTTTTTGTTTTTGGTTTTGGTTTTGTGTTTGAAGGAGGTCTGAGCGTCTGACACTGAATTGTAAGTTGTGAAAAGCGACAACTGAGGATGCGGGCTGATTGGAGGCCCAGTTCCAGTAATACAATTTCAGGTCCAATATCTATGGCCTGCATAATTTTTAAGAGTTAAGTTCCATGTAGTATATTTATGTAGTACTGTAGGCCACGTATATTCTGCAACTATAAAATGACATAAAAACATTGCAAAATATATGAAACTTGTTATTTTGTGAAATACATTCTATAAATATCACTATTTCATGAAAAATATTGAAAATCATTTATGTTCGACAAGTATAACACATATGTTCAGTAATATGTAAATATGTTCTGCAAACCTAACATGTGTTGCAGAATAATGTGTTTTTCACTATTTAACTTGTGGAATGTTTAAGATTGTCAAAAATTTTAACAAAATAATGATATTTATAGAACATGATTTGCAAAATAACACAGTTTGCAATGTTTTTATGTCATTTTATAGTTGCAGAACATACGTGGTCTACGGTACTACAGTAAATATGTGGATTACATGGAACTTTGTTCTAATTTTTAATGTATATATTAATTTCAAAGCACTTCATCCAAATTATGTATACACACAATATATATTACATTTTATTATTTATTTTATTGATCTGTTAATTAGAACCTATAACCTAGACTGCAATCGTCAACCTTCAATTTTGATTATTTTTCTGCCAAAAAAATAAATTTTATCAAGTTCAAAATTTGTCAACTTTTATCATGGCGATACTAAATACTCCCTCCGTCCCAAATTAATTGTCCAGTTTGACTTTTTGATGGTCAATTTGACCCAACTTTGATTGGAAATTAAAAATTATCCTTTTACAATTTTACAAAACTGAAAAATATATTCAAAAATAGATTTGATAATCTTTTCAATGATATATATTTCATAATTTTATTCAATTATTTAATATACATATTTTTCAGTCAAAGTTGAGTCAAATTGACCATCGAAAAGTCAAACTGGACAGTTAATTTGGGACGGAGGGAGTAGATATTAAGCAGTTTCTTGATTTGATTATGCCTATAAATTATTTGTTTTTTCATTTAATGATTCCTTCCGTTAATTAGAGGCTTTAATTTAGAATGTATTATTAAATTTTTATTTCTCAAATATTTCTTAAATAAACAATTGAATAATGTTTTTTTTGAGAGAATTGAATAATGTTATGTATCCCAAATTTTATTCTCAAAATTTTTATCAAGTGGAGAAGAACCAATCAAACAGAATTTGGAAACACTTTTTCAAATACCTAATATTTTCCAGTTTCAAAAAAAATACCTAATATTTCCTAAATAATTTATGGGCCAATATACCTCTTTTTAACATTTTTATTGCAATAATACAATTTTCTCCCAAAAATTGCATATTTACTTTTTTTTTTTAAAAAAGCTACAAAGTATTTGCATATATACGACTATGACTATGAACTGCTTCCTGGAGTAAGTGAGAGAGAGAAACAAGCGAACCCGTTCTTTGTTCTTGCCTCACCCTTCCTCCTCTGTGGCTCATTTTGATCTGTCTCTCTCTTTAATTCCCTCTCTCTTCTGCCTCCATCTCTCCTCGCTCTCTCTATCTTTTTCTTCGATCCATTGATTATGTCAGCCGTACATTCTCCGATCACGAAGCCCTAGGTACTCATAGGGAGTACAATCTTAGTGGTGTTCTTGATGATTGTTGGATCGGTGATTATAGCGGATACACACAAGATGACTTTAAAAGAAGGGAGAAACGTCGAAGTAGAAACTCCTAAACATGGCTGCTGATGTTGATTTTATGTGAATATATTTTTGTTTTTTGTTATGCTTCATCTCTGTAGAAGTTTTGGTTAGCGCTGGTTACTTGTGGTTGCAAAACTTGTTGATTCTTTTGGCCCCGCAGGGGCATTTATTTTTCTGTCTTTGCAACTAGTTGCAACTTATTATGCAACCTAATATAATTTTAGCATTTTTTAAAAAAAAAGTTACATATGTAGTTGAAAGTATGGTTGCTCGCAGTTGCAGATTTGGTTACATATGCAAAATCGTATTTTTGCAAAAAAAAATTGAATGATAGAGTTTTTTTTATTTTAAAAAATGATAGTATTTTTGCAAAATTTCTTTTTGACTTGGGTATTTATTAAAAAAACCCATAATTTATTCCTATAAATAAAGAATGTCAAACACATAAATATTTAATTCTCAGGTAGCAAAGAAAGGTTACTCGCAATTATTTAGGAGCCCAAACTAAACCAAGGCACAATTGACAATACCAAACAGCAAAGAACACGCTCCCAAACATAAAAGCGCAAAGGAGCAAATAGCAATTCAAGATCATATTGTACTCCAACCATTGACTAGCTAGTCAGACAAAAACTATCTAAACTTCAACCAATATACAGTATACTTGGGACATAAACATCCACTTAACAAGATCAAAAAGGTCCTGGTTGATATTACTCCTCTTTCTCGACTCTCGAGGAAGTTGGGGTTCGAGTTAGGGTGATTCCATGTTTCCATTGTTGTTACTCCATTAACCATTGATGCAAAGCTGAAGCTGTGGTATTGCTGAATTTATTACATTAAATACTAGTCAGTATTTACTGTATGCCTTAACATGGCTTGATGCAATCAAATAAACGAAATCCTTGCAACACAAACGAATTCAGTGATACAAAACCATAGCTACTAATATATGGGCAAGGCAGACAAAAATAGATGCTACAAACAGTTGGAATACGTCGGTTCTTTATGAACTACCTAAACCAATGACTAATTGTGCAGTCGCATAAAAACTGAAACCGCGTCATTCAAACACAACTGGTGCCAACTCCTACCAGAGATAAAACATGATATATCTATATTAATGAGCTCATGATGCAACTATTTAGTAGTTCCCGAGCTATATTGTTTTGAGATGCACAATATTATTGTAAGAGCTTAGCTGGATTTCATAAAGATCTGCACGTTGAGCCACAGTACAACTTACCAAGCTCTCAATTTCTTCGTGCAATGCTGATTAGCCCAAGGATGTTCTTTCAAATTTTTTAAACCATCTAGTTTCACTGATGAATGATGATAGAATATGGAAACAACTTCTTGTATTGGTTTGGGCCGAAGCCCAGGATCGCTGTACCTGATCCAGATCTTATTAGAGAGGTTTTGATGAATTCCTTAGGCCGAGTTGTTGCTTGGAGATGGACTTGTTGGATATATTGACCGGTGAGAAATGGCCTGTTCTGTATTCTTTTTTAAGATTGCATAGTGGCTTGTTTTTATGGTGTGTGTGTGTGTGAGAAGTGTGTGTTCTGTTTTAATGTCAACACTCCTAAAGTACCAGAGCCCAGGTTAGAATTCAGTACTTAGTTCAGGGAGATGGATTTCCAGACTCTGGAGCTAAATGACAATCAGCTAGGCAGTTTCTGAAACAGTTTCCTGTAGTTCTAATCTAGTTATGTGGCATAGAGGGCAACTATTGCCTGTGATCTCACTTGATCACAAGTCTATTTTAAGAAGGGGAGCTATGTTATATTTTCATTTATATTTTATGTATGTCATGTCAACTCTTACAATTTTGCTGGATAATTAATTAAGTACTCCCTCCGTCCTTTTTTACATGTCCATTTTGATTTTTGACCAGTCAAATTAACTATATTTTGACTGAACTTTACACGTATTAGATAATTGGAAAAATTAATAAAAATTATATTACTAGAAAGTATATTTAATCTATTTTAATATGCAACTTTCAGATTATAAAAATAACGAGTAGATAATTTGTAATGTTTAGTCAAAAATTGGTGAATTTGGCTTCTCGAAAAGCAAAATAGACATGTAAAAGGGGACGGAGGGAGTATTTATTTGCATCTCGGTTTAGTTGGATCGCCATCAATAGAATTTATTTTATACTTCTTCCGTTTCAAAGTAAGTGCCGTTTTAATTTTTGTCACGTGACTTGAGGTGGAATATTTATTTCGTTTACCAAAGACTTTGACCTTTCACCCATGCATACCGGGTAGTTGTTGTTGACCGTTCTTATAAAAAATAAAATATCAACATTGTCACCTCTATTTTTGATTTTTTTATTTATTTCTGACCTATGATCGGTATCTTAGTATTTTAAATTTCACGTGTATCATTGTATCTTATTTGCAATTTAAATAAATAAATTAGTTAATTATTGAAACCTCATTTTTTTTTGCACTTTGGACATCTATAATGATTTACTACTTAAAAGTTGCAATCATAAACTATTTGAATAAATTGAATTTTAAAAATCCAGAAAGTATTTTAAAGAATATTCTTCATTATACTTTGTACTATCAATTTTTTTAGTAAACTTTTTATGTGATATCCTTACCATTGAAGTATGACTAATATTAATTAGTATATTAAATTTGAAATACAATAATATCACCGAAAAATTTAATGAATAAAAAATGATAAGAAAGTCAGAGGCAGAAGGAGTTTTCTTTAAGAAAATTTAATCCTCTTGTGCATGACTTTAAATCTTCATATATCACGTAAATTCGACATGTTTGAGCGACACAAATAACATGCATCGAGCACGATTGGATAGCTCAAGTGGTGGGTTTATCCTCTGTTGTCCCGGAGACCCGAGTTCGACTCTGCCTCATCCGAACAGTATTAGAACGGATACTCATTTGTAAGGCATATAAGATTCTATTATCAAAAAAAGTAAAAAATAAAAAAAATTAACATGCATCATTGCCAGTCGCCCTGAGTGAGGGATGCGGTTGTTATTCTTTGTGAATCATATACGTAAGCTTTTAGTTTCTTCTTTGTCAAATTGATTTCAGTTTTTCTTAATGTTATTGATTTTCTTTTTATTGTTTTGATTTTTTCAATATGTTAAATGAGTTCTCTACTTCTCTTGCCTTTTTATCATGTTAAAATGATTTTTTCAATATATTAAAATGAGTTCTCTTGTGCACTTTAGCGTCGGTTAGAAAAACCGACGCAATAGAGACTACTCTATAGCGTCGGGTTCATATACTGCGCTGGACTGCCGACGCTAAAGGTCTTATTTGACTTAGGCATTTTTGTACTAGTGTAAAATAATAAAAAGTAAAATGATTATTCTACTTTCCTCAGCTTTCCACAAATGGGGACATTTTTTTAGTAATACGAAAAACTCATTTCCAAATATATATATTTCAAATGGACATAATATCGGTTGTCATTTTAAATTTTCTAACTTATTCAAACAATATAATATTCGTGAAAATAGTATACTAGCATTTGGATTGTCATTTGAGATTTTAAATTAAGATTAAATTCCTCATTTCTTACCTAACATATCATGCATCTGGCTAAATATATAATTTGGAACAAACTGTAATTTCCAAATAAGTACTAGAATTTCTTTCTTTATTTTCTTTCCAAACTTTTATCGATGATTTTGTCTGCCCTCTCCGTCAAATTGATTTCTTTCTTTCCTTTTATCTCAGGTTAAAGATTGACCTTCTCATGTGAAATACTTACAGTATGTTACTATGTTAGTATTGAACTGATTTCGTAACAAGTGAAATTTCTTTTTGTGTTTACAATAATATTTGATAATTTAGCACTGAGAAAATGTTTTATCACATGTGGTGATAGGACTCGTATTAAAATATTAAATTAAATATCTGAAAGTAACTTGTCCAAAAGTCAATCTTTCTATAGGCCAATCAAATACAAACAAGTGACACCGACTATATGTGCTTGTTGGTGACAGTCTTTCTGTGATAATTACACCTTTCCTACTACCATTAGTCACATTGACGACTATATATGAAGGTATCAGAGATGACTGTTGAATGGAGGTTGTTTTTTTTTCATAGCAAAAGACGTTAGAGCAAATCCAATGCAAGATGTAAAATAGTTATAGATATTGTTATAAATTAGTATTAAAAAGTGTTTTTCATTGTTGAAATAGAACTTCAACTCCAATGCTAGATGCATTTTGCATCCAAATAATTCCAAATTTAAGTAACTTTAGTCCCTCTCTCTTAAATTTTATTTAAAGTTCACCATTATATATACCAATTATAGTTAATTGATGATGTGTCATGGATGCATAAATGCATATTTGGTTTCAAATTTAGAATTAAAAAGTGTTTTTCATTGTTGAAATAGAACTTCAACTCCAATGCTAGATGCATTTTGCATCCAAATAATTCCAAATTTAAGTAACTTTAGTCCCTCTCTCTTAAATTTTATTTAAAGTTCACCATTATATATACCAATTATAGTTAATTGATGATGTGTCATGGATGCATAAATGCATATTTGGTTTCAAATTTAGAACCAAAGATGCATAAATACATATTTGGTACGAGTAAAGGCCGTTTGACGTGATTTAAAAATAATGTTTATTACTTATAAATGAGAAGTTAATTATAAGTAAAAAGTAACTTTTATCTTATGAGTTGGGATATATTTTTTGGTGTTTATAATTAAGTGGGTATAAAAATTATTAATATAATAATAAATTATCTTTTAAAATGATCTTGTACATATTTGTAAAATCAAGTAAAAAAAATAAAATAAAATTATCAAAAAAAGTTGAGATTTCCAACTTCTCAGATTATGACTTATAAGTTGGAAATGAACTTATAAATTCGTCATACAAATAATAGGAACAAATAAATTCAAAAACTGGGTTTATAAGTGGAGTCAAACACAACCTAAGTCGCTTGTGATTTATAAGTCAAAAAACTGACTTTTAAAATACAGTTAAACTGCCTCTACTATTCAAATTAGGTTTAAAATAATCCATTGACCTAATATAAATACTAAGTTTCCCTAATATAATTGAAATTAGCTGTACTAAGCTGAAATATGTCAAATTCATTCTATTTTACTAAAGAGCATGACGTTTCTCCAATGCATAATTGTTTGAATAACTTATCTTTTAATATTATAAAGAAATAATCCTTTGTACGCGTGAGTTACTTCTTCAAATAGTTTTTGATATTTTTGCACCCCGGGCCTGGGATCGTCTCAGACTCCTCAAGGGGCGGCTAGCATCTGAGGGTTTTCAGTAGATGTTCCCTTTTGCTGTTTTTATATCCTTGATGTCTAAATACTAAGTACTAAGTAGCAAGCTTTTGTTTTCCTAGGTTTGTCTACATGCTTGCATAGTTGCATGACTTTCTTGGAGTCTCTTTCATTTCTATGTAGTTTGGTGCTCTATGACTGGTTCTATGCTTTTTTGTATTGGCTTTGCTAAGTCAATATGTAAGATGTTCCGAGATTGATTTATAAACAGATGTATGGCTGGCTTTATGCTTTTTTGGGTTTTTTTACAATCGGAAAATATTTTTGTAAAATTTTTGTAATTTTTGAAGAAAATTTGCAAAAATATAATTTTACAAATAAAAATTGAAACGATACTAATTTCTGAATTCAATTTTGCAGAAATACGGAAGTTTCATTTGATAAAAAAAAAGAGTTTGTTGACATGATTTCAAATGAAACTTTCGTATTTCTACAGAATTGTTATATACACAATCGTAAATACATAGAAATTTATATTTGCAATTGATTGGAAAAAAGGAAAAATGAGTGTACAAGGTCAATGCTCATATCACATAAAAAATCACAAAATCAAACAGCAGTTGTTGAACTCACAGTTTGTTAAGCTAACATGGAGAGAGAGAACAGAAAAGTAAAACTTGTATTCAACTAACTGAGTCTTACAGAGTGGCTTCACTACAATATATACAAGCAAGCTAACTAATTCTCTAACAAACTATATGCTGTTGACAGGCTGTATGTACACGTGTAGTATAGAGAATAAATATTAATCATGTAATGCCAACACCCCCCCGCAAGTTGGAGGGGAGCACACCCAACTTGGACATAATGTTCTGATGTTTAACACCATTCAGGGCTTTGGTGAACACATCCGCAAGCTGTAATGTAGTAGGAGTGTAGGAAAGTGAAATAAGACCAGAACTTAGTTTTTCACGAACGAAATGGCAGTCCAAATCAATGTGTTTCGTTCGCTCGTGGAAAACTGGGTTCTTAGCTATGTATATTGCAGATTGACTATCACACTTCACTGGAATAGGTGTCACATCTGGAACAGAAAGTTCATTTAGAAGACGAGATAGCCAAGCAAGTTCAACAGTAATGCGGCGGATAGAACGGTATTCAGCTTCTGCTGAAGATAAGGAAACAGTGTGCTGCTTCTTTGATTTCCAGGAAATAATGCTGTCACCTAGCATAACAACAAAACCACTCACAGATTTTCGAGTATGTGGGCAAGCAGCCCAGTCTGCATCGCAATAGGCAGTAAGATTGTATACTGGATTTGAGTTGTAAAATAAACCTTGACTGGGAGTAAGCTTAAGGTATCTGAGAACATGTAAAGCTGCTTCCCAATGTGGAACTCGAGGAGAACTCATGAATTGACTAAGGTGTTGGACAGCAAAAGATATATCAGGACGTGTGTTAGTGAGAAAATTCAGTTTGCCAACCAACTTTCTGTATGAAGAGAAGTCAGAAACAGGATCGCCTTGATCATGGATAAGTTTAATAGTAGGATCGAGGGGACTGACTGCAGGTGGAGCATCGAGACAATCAAATTCTTTGAGTAAATCTTGAGTAAATTTGGTTTGAGACACAACCATACCAGATGAAACATTCTGAAATTCAAGGCCTAAGAAATAACTCAGATTTCCCAAGTCTTTGATTTTGAAGGTGTCGTTGAGAAAGGCTTTTACAGCAGTAATCTCAGTTAAGTCATCCCCAACCAGTAAGATATCGTCAACATAGACAGCTAGAAAAACAGTAGAAGATCCTGTTTTCTTGTAGAAAAGTGAGTAGTCATTCTTGGAATAAGAATATCCCCGTGACAAGAGAGCACAACAAAGTTTGTAATTCCAATTTCTGGATGCTTGACGAAGTCCGTAAAGGGATTTAATGAGTTTGCAAACTAATGTGGAATCACTAACTTCAAGACCTGGAGGTAATTGCATATAAACATCTTCAAATAAATCGCCATGTAAGAAGGCGTTGTTCACGTCTAGCTGGTACATGTGCCATTGTTTCTTAACTGCAGTAGCAACAAGAGTTCGAATAGTTGTCATCTTAACAACTGGAGAAAAAGTTTCAGTAAAATCAATACCAGCCTTTTGAGTGAACCCTTTAACAACTAGTCGAGCTTTGTAACGCTCGATGGAACCATCAGCATTATGTTTTACTTTGAAAACCCAACGACAGGAGATTGCCTTTTTACCAGGAGGCAAGGGGACTAACTTCCAGGTATTATTGGCTTCTAATGCAGAAAACTCAGCAGCCACAGCCTGCTGCCATTCTGGGTAGATCATTGCTTCTGCAAAAGATTTAGGCTCTGCAACTGGTATTTGGAGAGGAAGTGGTGTGGGAATAGCACAGCAAACAGATTGAGGAGAAAGCAATGAATTAAGAGGAATACAATTTGAGGTAATGGTGCATGAACACAAAGAATCTGAACAAGCATTATGTACAGAATGAACATAATCTGTTAGATAGTTTGGCAGTTTTGAAGTTCTGGTTGATTTTCTGAGAGGTGGTGGCTGTGGTGAATCTGAGACAGAACTTTCAGATTGTTGAAATGAAGAGGAGGACTGTATAGGTGTATGAGAGACTGTAGGAGTAGAAGAGTGTATGGGAGACTGTGTAGAAAGTTGTGAAGGGATAGACTGTGATGATGACTGTGATGGTGACTCAACAGTAGGAGTAGATTGATCAGGAATAGGAAAGTCAGGGACAGGTAAGGGAAAGAATGTAGAGGAGTTAACATCTACATATGGAAAATGGTTTTCATAGAAAACAGCATCTCTGGAAATTAAAATTTGCTTTGTTTCCAGACTGTAAAATTTATAGGCTTTCTTGCCCTGTGGATAACCAAGAAAGACACAAGTGATTGCTCTGGGGGTGAATTTATCCCTGACAGCATCTCTGGAGATTAAAATTTGCTTTGTTTCCAGACTGTAAAATTTATAGGCTTTCTTGCCCTGTGGATAACCAAGAAAGACACAAGTGATTGCTCTGGGGGTGAATTTATCCCTATGAGGTTTTGGAGTAGTCACCAGGCTTAAACAACCAAAAGGTTTTAAGTGATCAAAACTGGGTTTTTCCTTGAGTAATACTTCATAAGGGGAAAGATTATTTAAAACTCTGGAAGGAAAGAGATTAATAAGGTGAGTGGCTGTAAGGATGCAATCACCCCAGAACTTAACAGGAAGCTGTGATTGGAAGAGAAGAGCTCTGGCTGTCTCTAGTAAATGCTTGTGTTTTCTCTCCACAACTCCATTTTGTTGTGGAGTAAAAGCACAAGAAGTCTGATGTTGAATGCCTTTAGATTTAAAGAAATCTTTAGCAGCATGACTGAGACCAATTTCTAAAGCATTATCAGACCTTACTGATTGTACAGGTAATTTGAATTGTTTCTCAGCTAAGATAATGAATGATTTAAGGAAGTCAAACGCAGAGCTTTTGTTAGCAAGCAAATAGGTCCAAGTAGCTCTAGAAAAATCATCTACTATGGTAAGAAAATATCTGAATTTGTTGTAAGTGGGAACCTTGTATGGGCCCCAAACATCAACATGAATTAATTGAAAAGGACTTTTACTGTGAATATGACTGACAGGAAATGGCAACCTTTGTTGTCTTGCCTTAGCACAAACAATACAAGGTACATCAAGCATAGAGTCAACATTACAAATATGTAATGATTTAAGTTTGTCAAAAGGTAAATGACCTAATCTGGTATGCCACATCATGCATTCTTTATTATTACTAGCAAAAGTCTTACTAGTATTAGCAATAGAAGCAGAAATGACATTTGGAAAGGTGACAGAAGTGTCTGATGAAGATGATGAAGGTGCAGAGCTGGAATATGAAAGAAGATACAAGCCTTTAAATGCTTTACCAATTTCCAGTTGTCTCTTCTGTGAAGAGTCCTGCAAATAACAAAAGTCATTAGTGAATTGTAAGGTACAATTCAGCTGACTTGTTAATTTGCTCACAGAAAGAAGATTGAACTGGAACAGTGGAACATATAAGACATTGGCAAGAGTGATATCATGTGATATTGGAACAGTGCCAATGGAAGTGATGTGTAAAATGTGACCATTAGGCAGAGATATGGTTAGAGGTGTGTTTAAGATGGTAAGTGAACTGAATAAATGTTTCTGTGAACACATATGATCATTAGCCCCACTATCTATGATCCAAGTAGTAGAGTCAGATTGTGACATACAAGCAACTATAGAGTCTGAACAGAGAGAGTTACCAGCAAAGTTTGCATAAGAAGTATCTTGATCTGGTGGCTTAGTAGTTTTGAGAAGCTGGAGCAATTGAGAGTACAATTCTGGAGTCATAGCTGGAGCAGAATTATTTGATGAAGTTGTAGAATCTGCAACTGTGTCAGGAGTAGAATCATGTTGGAGGACATCAGCATTTGCAGCAAACCTTTTAGTAGACTTTGTGAACTTGAAATCAGATGGGAAGCCATGAACTCTGTAACATTTGTCAATAGTGTGCCCTGTCTTCTTGCAGTATTTGCAAGTAAGATTAGATTTCTTGAATTGACCCTGAGAAGCCTGAGAAGTCTGAGAAGAAAATGGCTTGGAATTGACATGAAGTGATGTAGAATCTGTTATCAGATTGTGAGAAGAATGAATTTCTCGTTGAGCTTCTTCCTGTAGAAGAAGATTGTACACTTGACTGATGGATGGCAGAGGATTGGACATCAGAATAGAACCTCTCATCACATTGTAAGATTCATTTAGACCCATAAGGAATTTGACAACTCGTTGATTCTGACGCAAAACAGCATTCTTAGGTGCTGCTTCACAGGTGCAAACAGGAGTGAGGCAAAGAGAATCAACATCATCCCACAAGACTTTCAATCTAGTGAAGTAATCAGCAACAGTGCTATTTCCTTGACGTATTTCACAAAGATCCTTTTGCAAAGCAAACAGTTGTGTTCCATTAGAGACATTATAGCGCTCATCAAGTTCTTTCCACATTTGATAAGCCGAATCAGCACGACTAACACTACGAGCAATGGTCTTGTCCAAGGCACCAAGAATCCATGAAATTACCATGTCATTACAACGAGACCAGCTGGTAAACGAAGGAGAAGAAGGATCTGGTTCTGGAATCCTTCCATCAACAAACCCTAACTTGTTGCGAGCAGATAAGGCAATTCTCATTGATCTTTTCCAACTACTAAATCCAGTTCCATCAAAACAATCACTCACAAGTTTCATTCCTGGACTGTCTGATGATTGCAAATGCAGTGGATTATCTTGAAGAGTGGTAGAATTGTGATCGAAAACATGATTGTTTGAAGAACTCATGATGTTACAACTCAAAACAATCAATCAATTAAGAAGGGAAGACTAAATCTCTGAATTAATCGCTATGGTAACGAACAATCACCAGAGTAAAACGAGCAAGATTGAACAATCACGAATCAACAAAACAATCTAAAGATGTTTACAAACAAATATGTACAGTAACAGAGAGGAATAACGAAGTAAAGTGAGAAACGAAATCACCGGAGAAATCACCGGAGATGAACAAGCAGCGGAGATGAAGGAACAAGCAGCGGAGTTACAGCGGAGATGAACGGAGATGAGTAGATCGGTGTCGCTCTGATACCATGTTGAACTCACAGTTTGTTAAGCTAACATGGAGAGAGAGAACAGAAAAGTAAAACTTGTATTCAACTAACTGAGTCTTACAGAGTGGCTTCACTACAATATATACAAGCAAGCTAACTAATTCTCTAACAAACTATATGCTGTTGACAGGCTGTATGTACACGTGTAGTATAGAGAATAAATATTAATCATGTAATGCCAACAGCAGTAAATCAGATCTTCAAATCTGAGATTATATTTTTGTTATTTATACAAATATTTGAGATATAATCAAAAAGAAAATTTGATATATTTTAATAATAAAACTTGTTAAACTTGAAAACTAGCGCTTGATTTCTCTGAATTTTAATAAATTTATAATAATCAAAAAGAAGTTTTAATAAATTCTAAATTTGTCAAACAGAGTTTTATCGTCTACCTAAACTATTAAAAGAATTTAACCATTTCATTCTCGTACTATAAATAGTATTCTGCAGGAGCAAATAATTCACCATCTCGACTTTGCAATTCCACTCATTGTATTCTCAAACTCTTCCCTTTTCTTTTTACTATTCATAACATATATACAAAAACAGAAGTTGAAAAAATCATTATGGATCCAACTAGCATTCCCGTTGTGGGAAAAATTGTGGAGAAAATATCCGATATAATCGTGGCAGCTTTGTTTAGCCATCTAAACTATATGTTTTGCTCCAAGTCTCTTGTTGAAGATCTCAAATCTGAGAATGAAAAACTTGAGATCGTGGAGAATGTGATGTCCAGAAAAGCTGATGAAGAAAGTAACAACAGCAGAATAATGGAGAAGCATGTGGTGGACTGGAAAAAAGCTGCCAGACAAAACCAGGAGAGTGTTAAAAGCTGTTTGGAAAAATACGATAACCGTCCTTCAGGGAGGTGCTTCCGGGGCTCCTTCAAATTACTAACCACCCGGAACAAAATCTTTACAAAACTAACCACCTTTTTTTTCACTTCACAAAACTAACCACCCTAATTCATAATCATCCAGAGGCGAACACCACACAAAATATTTTTGCAGGAGGCCCTTCCCAGGGGCGAACAACAAAGAATTTTCCTTATATGTTCGCCCCCCCCCCACGGGCGAACATAGTAGGGAAATTTTTTGTTCGTTTGCTCAAAAATTCTTCACTTTTCAGTTCGTTTATTTAATTTATAAAAAATTCAAAAAAAGGGAAAATTGTGATAATTTATATTATTATATTTTATAATATTATATTATATAATGATATAATATTACAAAATTATTTTATATTAAAATATAATATTTTAATATTTAAGTTCATATTTAAGCTCATAAAAGATAAATAATATTGTTATTGTTTTATTTTTGTTAATCCGAAAACGTCATGTAATATCTTGTCCCGAATGCATTTGATCAAACACAGCACTTTTATTCATAGAAGATATTAAAACAACGATAACACGACTTAAATTGAAAAGCAGAAAACAATCACGACGAAACTACAGACCACTTAATCGTCCTCGGACGACATTACACTATCAGAATAATAATCCGGAGTGGTGACCAATGCAAGGTATTGTTGTTCCTTAAACCGGTCCCCTTCTTCCCGAAACATCCTAGCATCATCGTATAGACTATGACGATGCAGTCGCAGATTCATGCGATTCTCCTCTTCTCTCGCTCTGAGAGGGCGGCCGTCCACGCTGCTGCGGCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTCCCGAAAGGACGGGTCCTGGGTGAAGTGGGGGAGGTGTGTGATCCTCTAAGAATGACATGTCAGGACGATATACATATGACTCTGACAAGTGATCCTGTGACGGACCCTCATCGTCCTGTGCCTCATCATCCCCTAATCTGCTCCTTTGGGGCCATGGAACCCCCTCAGATGTAGAAGGCTGAATGAATGGAGACCAACCACCAGCCTCAAAAGTACCTGCTCCATCATGACCTGCAGAATGTGAGGTGCCTGCAAGGTGTGAGCTACCCACATGGGTGTAGTAAGTGCCCTCTTCGGGCACTACCGGTGTGACTGGTGGTCGTCCCCTACGCCCTGCAGGAGCCCGTGCCCTAGGTCTGGCAGGGGCCTGTTCCGTAGGTCGACGCTGTACACGAGTAACCATATCCTGTAAAATATGGTTTGCCAGACCCAAATCAGGAGCATAAGGGTCAATGGCACGCTGCATAGCGGATAACTGCTCCTCCTGTTTACAAACATGTATATTTAAGTCAGAACAGTGTACAAAACAAGCTGAGAACATGTATATTTAAGCATGTATATTTAAGCATGTATATTTAAACATGTATATTTAAGCTGTATATTTACCAGTTCCGGTGTCGAGAGCTGTGTTCCCTGGAAGGCACCCTCCTGCTGTGGCCAGTGTAAGGGGTTAATGATGATTCGACGTGTGACCCTGTGGAACCATGGCAGGTATGAGGCAGTGCAACCCTCGCCATGCATAAGTGGAGGAGATGCGAGGGCACGCTCCATGCGCGAATCCCAAAGATCAACAAATGGCTCCCTCGCGTACATCCAATCAACCTGCTCGTTGTAGTGGTCGTGCGATTTGCAAAAATAAAAACTGCAAATAAAAGTACATTTGATAAGTTCGAGGTCTTTAATATTCTCAATCCTGAGTTATGTCGACATAATAGTCGGAATCATAATCTTCATCATCATCTTCAGCATCAGCGGCCACCGAGGTATGCTTTTCATAGGTAAATCAGCATATGGCCTCCATCGAAACTGTCGGGGTGTCAACGCATCCAACTCATATTGTGTCATGCGGCTCTGCGCATGCGGCACCTGACAACGCCTAAGTGGCGCCTTCCACCTACAGTGGAAGTTGGCATAAGTGCTCAGAGGTTATACATGCAACAAATATGAATTGAAGTTAATCAACAAAAGGAGTGACAACATACCTCAGCGCCAGCGGGTACTCGAACAAGGGTTGACCCCTGTGCCTAGGCGCTAGTGACGGAAAGCGCTCGTAAATCCACACCTAGCGGCAAGGTTAGTACAAGTGCACATGATGAATAAATAATACAACAATAAAGACGAGAAATAAATATTACTTAATTTTAAATTCGAAATAATTATCTCTAACTATTTTTACAAATCTGATTTTTTTAATTTAAACTAGTAATCTAAACTAAAATTAGCACTACCACTACTAATCAACAACAATCATCACCAACTACTAATCTATTTAATTTAATGGTGTCAAGTTTACTTTTAAATTCGATTTAATTTAATTTCATTAAATTCAATAAAAGCTAAAATTAAATTGATTACTGATGATTAGGGTAGGGAGAGGAATATGGTACACCCTGCATAAAACCAAACTGCCTCGTCACCCTGTCCGTGTAGCACCACTCGACGTAGGACATGTACATCATGGGGGCGGGAGCCGTCCAACGCAAGTACACAGTGGCCTCCGGGTGATGCTCTGCAGGTAAATCAGCATATGGCCTCCATCGAAACTGTCGGGGTGTCAACGCATCCAACTCATATTGTGTCATGCGGCTCTGCGCATGCGGCACCTGACAACGCCTAAGTGGCGCCTTCCACCTACAGTGGAAGTTGGCATAAGTGCTCAGAGGTTATACATGCAACAAATATGAATTGAAGTTAATCAACAAAAGGAGTGACAACATACCTCAGCGCCAGCGGGTACTCGAACAAGGGTTGACCCCTGTGCCTAGGCGCTAGTGACGGAAAGCGCTCATAAATCCACACCTAGCGGCAAGGTTAGTACAAGTGCACATGATGAATAAATAATACAACAATAAAGACGAGAAATAAATATTACTTAATTTTAAATTCGAAATAATTATCTCTAACTATTTTTACAAATCTGATTTTTTTAATTTAAACTAGTAATCTAAACTAAAATTAGCACTACCACTACTAATCAACAACAATCATCACCAACTACTAATCTATTTAATTTAATGGTGTCAAGTTTACTTTTAAATTCGATTTAATTTAATTTCATTAAATTCAATAAAAGCTAAAATTAAATTGATTATATTTAATCTACTCTTAACGTAAATAATACAACAATCATCACCAACTACTAATCTATTTAATTTAATGGTGTCAAGTTTACTTTTAAATTCGATTTAATTTAATTTCATTAAATTCAATAAAAGCTAAAATTAAATTGATTATATTTAATCTACTCTTAACGTAAATAATACAATAATCATCACCAACTACTAATCTAAACTAAAATTATCACTACCACTACTAATCAACAACAATCATCACCAACTACTAATCTAAACTAAAATTATCACTAACATAAGCTACTACCAAATACCAACTAACAAAACCCATTATAAATTATCAAACAAATTACTAATCAAGTCTAATTTTTAATTCATTCAAAATATGAGATCTACACTAATTTTCCCAATTTTATAATTCGAAAAAATTGTACTATATTTAGGATTTTTTTATGCAATATTTGTTATTAAATTCGAAAATTATTTTAATTAAATCAAATAATTAAAACGCTAGTGACGGAAAGCGCTCGTAAATCCACACCTAGCGGCAAGGTTAGTACAAGTGCAAATGATGAATAAATAATGCAACAATAAAGACGAGAAAGAAAGTTGTGGTTGGTTTAGTATTACCTGTACCAATGTGGCGTAGCCACAGAAATCAGTACAGTTAGCCCTGCTAGAAGAACATAGCTTCTGGTATAGGAAGCCAAGAACAGCACTACCCCAGCTATACCGACGCAGCTGGTCCATGTCCCTCATTAACCATAGAAGGTCAAGCTGCACGCGGTTCCCGCTGCTGTGGGGGAACAATGATCCAATAACGCATAGTAGGTGCGCCCGAATATGGTAGGTAACCTGTACACCATAACCTATATCCTCTGGATCCAACTGCTCCAACCGCTCACAAGACCCGAAGTTATCCACAAGCCATTTGATCTTTAAACCACCTCGGTTAACATCGTCCTTGGCTTCTGGTAATAGCCCAAGAAATTCGCCTACTAGCACGCGCCTTTCCTCCACGCTGGTACTCGCTCCACGGAGGATCAGTGGATCCACCCTCAGGTACGGGTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNAATTCCAAAATCGAAATAATTCAAATTAAATTCGAAAATGTGAGATTGCTTATTTTTATTCTATTTTTTAACGTAAAACACCCAAATTTAATCTACTAACCTAATTTCTAAATTTAATCTACTAACCTAATTTCTAAAATTAACATAATCTACTAACAAATACCAACTAACAACATTCATTATAAATCATCATACAAAATTACTAATCAAGCTTGTCATATAATTTGTAGCTACTAGCAACTAAGAACAATCATTATAAAATTTATAAAAATACATGCATGCAATTTGATGAGATTGAGAATGGTGGAAAAACCTTGAAAATGGGTGAAATTGATTAATTTGATCCGGTGAAAGTAGCAAAGCAAGCTCCTTTTTCCCCCCTTTTCTCTGTCCGGATCACCCTTTCTTCTAGAAATTGAAGCTTGCAATGTGTGAAAATCTGAGAAGAAGCTGTTTGCTGCGGCGAAGATGAAGAAGAAACAAAGGGGTTGGGGTTTTGAGGGGTAAAAGGGACACGTGGCCGCCCCTGACTGGGCCGGACACGTCAATGCTTCACAGGTATGTTCGCCCGTGGCAGGGGCGAACACACTTGCCTGGAGTTCTTCTGTTCGCCCGTAGCAAGATCTGGGCTTAAAAAAAAATTTCAGCTGTGTTCGCCCGAGGGGTGTATGAATTAGGGTGGTTAGAAATGTGAAGTGAAAAAAAAGGTGGTTATATTTGTAAAGCTTTTGTTCAAGGTGCCTAGTAATGTGAAGGAGCCGTGCTTCCGGTGTCTCCCAATTCCTCATCCCTTCTCCCGTTACAGATTAGGCATGGAGGCGGAATCGATAGCCAAGACAACAACTGAATTAGCTACTTCCGGAAATGGCTACCTGGCTCACCCAATTGCATATCTCCCACTGGATATGAAAGCACCAGTAACTGAATTTCATGAATTCAAATCTAGAGAAGAGGCTTATCAAAAGCTGGAAGGGCTAGTCACCGATTCTAGTTCTTCAATCCTTGGGATATACGGAATTCCAGGAACAGGAAAGACTCGATTAATGGAGCGAATCACGACAGAAGTTGGTAAGAAGGGAACCTTTGACAAGGTCGTACGAGCCAATGTGAGGAACGCGAAGTTGGATGTGATAGGCATACAACAACAGCTTGCAGGGAAGCTAGGTTGCGACTTTGAATCTGAAACTGATGTGGAACGTAGAGCTGGTCAGCTGAGATCTAGTTTAAGGCAGGGAGGTAAGGTACTCGTCATACTAGACGACCTATGGAGTGAAATTCCTTTAGATAGAATCGGAATTTTGTCTGAAGATGGTATGAGTTCCAAGGGCGGTAAGATTCTGTTGACATCACGAAGTGAGGAGGTATGCAAGAGCAACAAATGCAAGCATCCAGTCAAAATACAACCTCTTACATTTCCCGAAACTTGGGATATGTTCAGCAAAACAGTTGGTGCTGATACAATCAACTCTTTGCAGAATAGATCCCTTGCCTAGGACATCTGTAAGAGATGCGGGGGTTTACCACTAGTCGTTCTTGCTATAGGTAAAGCGCTCAAATTTAAGCGTCTTGCTTCATGGATGGATGCACTCAATCAACTTAAAAATTCCAATATTGAAGAAGTTCCTGGAATAGGTAAAGAAGAGTATGCGTGTTTAGAGTTGAGTTTTGATAACTTGGAGCACGACGATGCAAAGAAATGTCTCTTGTTGGCTTCTATGTGCCCTGAAGATGCTGACATTCCTACGAGGATGGTGGTTCAGTTAGCAAGAGGCTCCCAGCTTGTGAAGGGTGATGAAATAAAATTAAGAGTACATTCAATGATATCTATACTGCAGTCAGCCTCGTTGTCGCTTCAAGGGAAGGATGGTGATCATATCAAACTACATGACATCATAAGGGACATGGCAAGATCCATTGCCAAGAAACACCACGGATTCTTATTCGCAAGAAGTAGGTCGTTGCCCAATGATTCAGCTGAGTACTCTGGTCTGAAAGTTCTGCATTTAGATGTAGAGGAGACTCATTCACGTTTTCCAAGTGATGTGGAGTGCCCAGACCTGCATCTACACTGTCACTACATTCATCATCATCTACATATATTGACCCAACACCGATGCAGGTATTCATAGACTGTTTTACATATTCACTCAATTGATGATAACTATGATGATTAGTGTTATAGAACGTAAATTGGGACCTTGTAGCACTTTTAAGCGGTTGAGTGAACGTTTAAGTAGAATTTTGAGGCGCTCAATAGCGGATCAATAATATATAATTAAATATTTAATTGCAATATTAATTTAGTTAAAACTAAAGTTATCTATTGGTTAGAATTTAAATTTATAATATTTTTTATAATATATATATATATATATTTTTAATTTTTAATATGACTATAGTTATATTGTAAAAATTATTTTAAAATTAAAAAATTAACAAGTCAACATCATTTTGACCGCTTAATGATCGTTTAATCAATTTATTGTCCGCTTAATTTTCAAAACCACGTAATCACTTTCATACAAAAAATTAGGCGGCCTCTTAATGTGACACAACTGACGATAAAATAAAAATAAATGATTTTTACGGTTCATCAATCAATGCTATCGTCTAGTAATATTAGCTGTATCAATATTTTATAATTGTTATAATATAATTATATATAATTTTACTAAAATATAATATAAACAATAAGTTATAAATCAAGTCATGTTTTAGTGGAATTGTATAATATCAAAAATTAAATATATTTTTGAGTGTATAATTTTAAATATGAACTAAAAATAAAATAATATGTGATACATAATATTTGAATCGGTTTAGTTGTTTATATTAAAAAATTTATTTATTTTAATCATGATCAATTATCAGGTTAAATAATATATATCTGCTACTTAATATATCAATAAAATTAATTTTATACAAAAAAATAATTATTGAAAAAGTATTTCAGTTAAAGAAAAGATTTTATCTTGTACAAATCCCTCTAAATTAAGTTACATACGAACTAAACACAAAATATTAAATCTTGTAATATTTATTTATAAAATATTAAAGTTATAAATAAAGAGTGCCAGTTAATATTTATTTATAAAATATTAAAGTTATAAACCGTATAGAATTGATTGGGACGGAGGGAGTATGAATTAGACTTGTTCATTGAATGACCGTTCAAGGATTAATCAAATAATTGAATCATTAATCAGAACTAATTAAATATTATTTATAAAATTATATATAATTTGGAAGTTAAAATTTAATAAAATAACTTAAATTTATATAGGATAAGTTTTTTTTATTATATATACAATTATCATCAAGAAAATTGACCAAAAATAAAAAAAATTTAACAAAATCATATATGTATATTTAAGCTTATTTAAATTAAATTAATTTTAAAATTTCAATTTTTTATTTATAATTGATCAACTTTTGATCAATCAGATTTTTTAAAAATTATTTTTCGACACGATTACTCAATTCAATCAAGACAGAATCGGTCAATTAAACATCAACTCTAGAAGTTTAAAGGAACGCCTCCAACACACAACTATATTTTCCACATTCACTTTTATGATTTTTTTTATATGTCACTTTTGACTTGTGTATCTAGGTGTATTGACTTGATAGTAAAAAATTATTATTTTTAATTGATTCTTTTTTGAATTAAAATTTTGATTACGTATTTTTTTTCAAAAAAGAAAATTTCAAAAATAATATTTTTAATTCTCCGGTCAAAATACTTAAAAGTGTGTGCTAAAAAATTAAACGTCATATATTAAAAAACATAGGGAGTATATTCATAATGTGTTGTTCAAACGATATTCATCCTCGTCCTTTTTATAAGTCACTTGGACTTTTTACACATAATTTTATATTTTTACCACTTATTTAAAATTATCTTTTCTAATTTTTTTCTTAATTAAAATATGAAACTTATACTTTTATTAAAAAAATTAAAAAATATTAATTCGAAGTATGTGGTCAAAATCAAAAAAGAAAAGAAGTCAAAGTGACTTATATATAAAATTAGGAGGAGTACATGTAAATAAAAAAAAAATAAAAATCACAATTCTTTACAAAAATTTCAGGAATGGATTGGTCAAGGTCAGCAGCTATTTGCAAATCTCAGGTTCTTGGTGCTTGTGGAGTTTAGTTGGCCGGAGAAGTTCTCTCTTGAATCCTTAGACAATCTTAAAACTCTTTGGTTCATCACATGTGACCTTGTCCATTTTGGGAAGAGCGAAGTTGGATTGCTTCCGAAAAAAACTAGAAAATCTTTGTTTTTGGGATTGTGATTTTTCAAAAGAGCTGAATTTAGCAAAACTAAATCATCTTCGCAAGTTAGAGATCTATATCAACACGAGACCTTGGTTGTGGGAAGATAAAATCATTGTGAAGCAGAATACAATATCAAGACTATCCGATCTAGAAGAATTAAGTTTCCCACTGAATTCTACATCCGTGAAGAATGTGCAGAAGATGGATCATTGCCGATATTAGACGAGGTCTGTAAATTGTCACGCTTGACAAGTTTAAATATTTGTTCCCGAGAATCCAAGTCAGGTAAACTTGCAACTATATTTTGCAACTTACGTGAATTCCATTTGTTTGTTGGTAAAAGACCAGATTTTTGGTCTCCGGGAGTGTCTTCGAGGACCAATTCAATTACATTGTCCAACCACGATCTCATAGAACACTACAAGCCTCTGTTTGAAAAGGCTGAAGAGGTGATATTGTGTGGTACTAACTTCACAGGGAGTAGCATTGATATTAGAGACACTAAAGAATTTATCAACTTGAAGTACATGAAGATTCAGGATTGCCGGTTCATTGAGTATTTGGCTAGGATGTCACCGGGTAATAAGATTGGTGGAAGTCTTCCCCAGTCAATACCTTTTTCTAACCTTACCAAATTGAAAATCAATAATTGTCACAGCTTAAAATACCTCTTCTGCAACTCTGTTGCAAGATGTCTTAACAAAGTGCAAAAGCTCAAGATAGAGAATTGTCATATGATGGAAGAAGTCGTGCTCGGAGAAGGCACAAGTGATGGAAATATGAGTATGCCCGAATTACGAAAAATGACCTTAATTGATCTGCCAAGACTCATACATTTTTACAAGGATAACACTTTCTCCGGGCAAATTCAACCTCTCTTTAATCAAACGGTATGCTTGCTTAACCCTTAAATATGTTATAATTGTATTCAAGCGAAATTAGTAAATTATATTTTCAAATATTTAAGCTACATTTATTTCATTAAAAATAAATCATTTTGTTTACTTCATTGAGGCAATATATTTGTTTTCTAGGGATTAAAGTTCAAATTGTCCACCTCAAATATTAGTAATTGCCCATTCTTGATATTTATATAATTTTCATAAACATATGAAATCATTGGCTTAATTAACTTTCTACTAAGCTACATATGAAATATTAGTAATTGTAAATATTGTACAAAATTGGGATAGGGCCACTGTGTACAAAACATGTGAGAAAATATGATTCCCTCCCCTTCGAAAATATCTACTTTCTTATATAGACTAGTACTCTCTGCACAGAGATGAGTACTGGAGTATATACTCTCAGGAGTTATACTTATACATGGCACTTGGAGTGAGTTAGAAATAAGAACCGAACCAAATACCCCTTTCTCTGATGGTATGTTTTGGTTGACTATTTGAGCAGGTTGAATTCCCTTTATTGGAAGAGTTGGATATTAGTGGTCTGGAAGATATAACTGATATTTGGGGAGATAATAATGGCAATGCCTTCTCCTTTTTCGAGCTTAAGAAGTTGAATGTATGGAACTGTAATAAGCTTAAAAATGTGATCCCACCTGCCAAGTTGCCTAGTTCACTCACCTCTGAAGTTGACACTCTTGGAAGCAACACAGATTCGGTCGCTGGCAGAGCTTCTGAAGGACAAGTGAAGGCCATGAATTCTCATAATCCAAACAAAAAATTACAAATTTTTTTGAAGAAAACTGTGCTTGTGTCGAAATCTGTATGCAGGAGGACCCCGACGATAACAGAAGAAAATTTGAATGATCCCTCTGATATTTTAGTTCAAGTTCCGTCACAGAACACAAGGGTATGTCCATTGGTTGAAATGAGTTTACAGAAATTGCCTTGTTTGGAAAAGACAGGGTTGAACTTTGAGGATCCATCTGGAGTAGTGAGTACTTACCCATATCTTGAAAAATTAAATATATGTGAATGCAACAGATTGGAAAACGTGTTCATATCTTCTCGTGATGCAAATTTTAAGAATCTTGAGGACATGTCCGTCACTAATTGCATTATAATGAGAGAGATAATCGGGGCAGGTGACCAAAAAATTGCCAATGGCATTGTGTTCCCTAAGTTATGTTCTGTTAAACTAACGGAGTTGTTAAGTTTGACCAGTTTTTGGGGGTACCCGAGTGAAGAAGCTAACAGCCACAAGGTATATTTACATTTACTGCCAAATGAGTAACATTGATAACATGCATTTGTTTGTGTGCTTGAGTATATATATAAATGCTTAATTCTCTTATGTATGGCTGATAAAACGCGATATTCAGGACCTGATTTTCATGTATATATACTTAAAATCTTCATCTAGTTAGAGCTCCTGTTTGCTGTAAAAGTTTTTAGGTAAAGATTTTCTAAAGTTAGGCATATGCATTATCATAAAGAATGACATTGTTTTGTGTAGGTTGAATTCCCAAATTTGAAGAGTTTTGAACTCAGCTGTGGCAAAATTACTAGCTTGGAAATGATAGAGTTTGGCAGCAGAGATGGCTCTATTTTTCGGCTGGAGAAGTTAGATATAAGTTGTGATGAGGAGATACAAATTCCCAACCAATGGCTACCTCATTTGAATAATCTGGAAAGATTGTCACTGAGACGCTGTTGGTCAGATGAGCTGAAATCTCTACATTTCGCAAAATTGAAGGTGCTCTTACTTCAAGAACTTAGTTGCTCAACTATTTTCTCATTCCCAGACTTTGAAAGACTTCAACAGCTCCGAGGATTAGTGATAACAAAATGTAATTCATTGGAAGCTATTGTGGAGGTTGTTGAGGGTGAAGAAGCTTCTGACATGGATACGGAGACTGTTGCACTAGTTCAGCTGGAATCAGTCCATCTTGAGGGTTTGCCAAAACTCAAAAGTTTTATGCACACAAAGCCTAAGAATCTTATCCCCAGTTTAGAGCATGTGGAAGTGGAGCCCTCCATTCTTTTCATGTGCCCTGTCTTTGGAAATTTCCAACAGCTCAAAAGGTTACAAGTGATTGATTGCAGATTGTTGGAAGGCATTGTGGAGGTTGCAAGAGGCTATGAGACGGATGACAGGATTATCACATTCCCTAAACTCTCTGACATTCATCTTAGAGATTTGCCAAACCTCCAAAATTTCAGTCCCACTACAAGCTATAGTTTCAACATGCCCAAATTATTTCATTTTCATATGTTTCGTTGTCCCCGGGTTGAGAATAAACCCTTATTACAAATAATCGCACAACGGGTACTTGTTTATTCCGATGAGCATCCACAAGGGATTGTCATTCTAAACCTCAACGAGTACACAAGAAGAATAAAAAACCTCGAAAGCGTCGGGGAATCAAGTAACAGCCATCAGGATGTGGAGATGGAAACCATAACAGTTGCAGAAGAGGAAGACAGAGTTGTTGAACAAGAGGCAGAGGTAGTTGTTGTAGGAGAAGAAAGAGGAATAGAGGAAGATTCGTAATTCAATTGTTTTTCATCAACTCAGCTTTCTTTTCCTTTCTTTCTCAAATGTCTCAGACTGTGCATTGTTTTGTATTTGTTTTTCAAGGAAATCTGACGCTGAATTGTGAGATGTGAAAAGTGTCAAGCTCTTAGCTATTTGAATTACAAGATCAACAGACAGGCCTTGTCTTGGAGGTTCTTCGACTCAAGTAACACATTCTTCGTTACTACTTTATTCACATAAGTCATTACTTTTTTTATCTTTTGATAGCAACATATAAATCACTGGATAGGTTTGTCATTAGGTTAGGTTCTGCGTTTTTAACAGGTATGACAGATTTAACAGGTTAGGCTTATTTCCAGATTTCCTCCCTTGCAACTTTTTTAGGCCTCCCTGAAAAGTTACGGTCCGAAATGTGTACTTACTTACTTTGTTGATGTCTCGATATAAGAATCAAGAAAGTAAGGAACAGAAACTGAGCTCCGAAAAAATATTCAATGATGAATGCAAGACATTCTACTTTGCGGGTAAGGAAACGAATGCTAAACAATCTTGTGTCTGTGGAGAGAGTTCATCTCCAAGTGCTGATAATTTAACCGACTTAAAGATTGTAAGTCATATTTTCATTTCATACTGCTTTTTTTAAATTTGTTGTTTTCATAGAATTAACGACCTTTTTGAACTTCTAAAATTAACTAGAAGTGATAAATCTAAATGGATATCCTTGCATTCAACATTGGGAGAGTGATAATTAGTAATACCCGAGTGGATAAAATGCCTGAATTGTGTGTGTTTGTTGGCAGATAAACATGATTCTGAATGAAACACTTCGACTCTACCCACCAGATGTGATGCTAACGAGGGAGACGAATAGAACTGTAAAGCTAGGCAACCTCCAAATTCCAGCTGAAACGCAGCTCTATTTGCCTATGACTGCAATTCATCATGACACTGACATATGGGGAGCAGATGCAAAAGAGTTCAATCCTATATGTCCATGCTCCAAGGCAGTTGATGACCATGCAACCTCAATTTGGGGCACAAATACTTTTTACTAGAATTCCCTGAGTGAAGCCTATAAAACAGACCAGATTATTGTTTTCGACTAATACTTTTGTCTTGTAGAATATTATGACAGGTCAGCTCAATATGTATGTATAACACAATATGAGTGGCAACAAGCCTTCTAATTATATATTTCAAGATTTTTTAAAATGCGAGTTTGAACGGTCTTCTACCAAAGGCACAGGAAAAACGAACCTAAAAAGTCGATCTTCATTTATATTTTGACCATGTAATGTTGATCTTACAAACTTTGTCAGATCATGTGTTGTTGGATTGAGGTCTAGTACGGTGGTCATCACTAAAATTTACTTTAAAGAGAGATTTTAAAGAATTCATCTGTTCCCCAATGAACTCTGGAAAACCCCTGCCGGGATTCTGTTATATTTATTGTTGATGAACAAATCTTTGTTCTTTTGTACTTGAGGGTTAAATTTTATGCGGTGTTTTAGTATGATATCGGTCCTGGTTCTATGGAGTTGGCGGAAATTTCTTATCTTTTTGGATCTATAGGGACTCAGCGCTTGTTGGTGACACTCTTTATTCTATGGTCTGTGGAAGTTACTCACATTGAAGATGGAGGTATGAGATCAGTGTTAAATGGAGGTTGTTTGATACGGTTCGAATGCATAGAGAATAGGCCCATAAATGTCAACAAAAACAGTGACTCCACGTCCACGAGACGGAAGTTCCTGACTATGAAAAATTGATTTTTTTCCCTTTTTCTATAAATCTTTGTGAAGGTGGGGAATCTCTTTTTACTTAAAAAAATACGGTTGTTTTATGGTGGGCACACACTAAACACTAATTTTTATGATTTTGGTGCATTCTTATTGGTCATGTAATCATAAATATGAATGCCTCCTACATTTACACCAAATCCACCAATTAAAATCCACTAAACTCATCAAATTTAGTGCTTAATGTGTGCTCTTGGACACACACTAGAAAGATCCCAAAAAAATATACTCCCTCCGTCTCGTTAAACTTTTCCTGTTTCAAATGTTGGGACTGTTCATAACATGAGACAAATTATTAATTTACGTCTAATCTATAAGACTAAATATAGTCATGAGTGATCTTGTTGGATTCGTATTTACGAGTACTTTAATACAGTGAAATTTTTATATTTAATGCTAATACGAAATTAAAGATATTAACGATTAAAAATGTGCGTTGGCAAACGTGTCCGGTCAAAACAGGAAAAGTATTTAGAGACGGAGGGAGTACAAAGTTGGTTTGGATGTTTGGCGATACCGCCGCGAAGCACGACCTTGACAATTAGTTTATTATAACATAAAGATTCTAATATTATTATAGAAATGATACTCCAATGCTAAATATGCTTTTCATCTTATAAACACTATAAATTATTAATCCTTTTTAATTTATAGTAAAGTAGCTGTATAATGTATAAAATAATTACTAATGATTCGAAAGGCACTAATAATTCTAAAGGCGCCCGCCATAGTTGAACTGCCCACTTTAGTCCAGAGAGCATTCAACAAACAATACACCAATGCATTGAATAAACTCAGCCGGCTGATTCCTTTTTCTTAACCTTTAGAATTATTAGTGGTTTTTGAATCATTAGTAATTATTTTATAAAAGACACCCACCCACTAATGACCAATCAAATACAAAAGACGCCAACTAATCTTCCACTAATGTCAGTTTACCAACCCGGGAGCATCTTCTGCTTATTTCCTGTCATCTAAAAAAAAAAAATATTTTCATAATTCTAAAATATAAAAACTAGGAATTAATGATCAGAACAATTATATTGAATAATTATTTAGTTTTACGAAGTTTCCTATCAGTCTAATCGCAATCTCCTTCCCTTGATAACTGTTATCGTCTCCCATTATCATTAACTTCAGCCTAGAAACTGGAAAATAAAATATTAATGATTATTCAATTCTATTCCAGCCTCTATCCTAATTTTACATACAGATTTTATAGTGTGTGCTGAGCACATATTAAAATCCACTTTTTAATTAGGTGTTGTATATTGACTCGCATCCCTTTAACAATGATGGTCATCTTCCTCTTAATTAAAAAGTGTACCGACCCTTTTCCATACTCCTTCCGTCCTATTTGATTGTATACAGTTTCTTTTTTGGATGTCCCATCAATTGTATACATTCCAAAAATGGTAAATTTTTATAATATAAAAAACTTAACTACACTCACTGCCTTCTTCCACTACACCCGCTTTATACATTAAAAATTAGTAGGTTCCACCATTTTACTAACCCTACACTTATTTTACACATTAAATATTAATGGGTCCCACTATTTCATCCACTTTTCTTACTTTCGTGCCACTTCCCATACGTATACTAATTACTGGGACGGAGGGAGTATAACTCTTGTTAATAAGCCAGGCATACGCAAGGGTCATACGTACCTAACCTTGCTATCTACTCCAATATTCTCAGTCTAAAGACTCCAAACGGAACCTTTCAAACATAAACTGTTACATACAGATATAATATATATTTGATCATAGTTAAAAATTCTAAACGCTACTGGTGAGTGGTGATTGGAGAACTTGTACGATAAATACTGCACACTAAGGGAGAATTCTGAAATTCTTTTTCCCACTCATCTTATTGTCTGATCATCAACTCGCTTCTAGCTTTCCTCGCTATATTATTGCCGCCCAGCTCTTTTCTACTTCTCTCTTGTTAGTCATTGTTGAAGTTTAAGCAATTTCATCAGCATCTTTCCTCTCTTTTCACCATAAAAAAAATTTGAAAAAATCATGATAGATCTGAATTCCATTCCATTTGTAGGACCGTTGGTAGCTAAAATTTCCGACAAGACAATAGAAGCACTGTTCCGACATGTAGAATATATGTTCCGTTACAAGGGTCTTGTTAAGGATCTGAAATCTGAAAATGATAAACTTCTGGCTGAGGAGACGAAGATGTCCAGAAAAGCTGAGCAAGAAAGTAACAATGGTAGAATACTGGAGAAGTATGTGGTGGAGTGGCAGAAAGAAGTCCAAGAAGAGCAGGAGAAAGTCACGAGGTGTTTGCAAGAAAATGAGAAGCTAAAGAGCCAACAGCAAAACTGTCCTCGCTACATCCGCTATATCCCACTTCCTCATCCCATCTCTCGTTATAGATTAGGCAAGGAGGCGGCCAAGGTGGCCAAGAGCACAACTGAGCTTACTGCAACCGGAAGTCACCACCTGGCAAGTCAAATTGCATATCTTCCTCTGGATATGAATGTACCTGTAACTGCATTTCAAGAGTTCAAATCTAGAGAAAAGGCTTATGAAAAGCTGGAGGAGCTAGTGACAGATGGAAGCTCTTCAATCCTTGGGATATATGGAATTGGAGGAGCCGGGAAGACTCGATTAATGGAGCGAATCACCACAGAAGCTGGTAAGAAGGGAACCTTTAACAAGGTCGTCCGAGCCAATGTGGGGAATGAGAAATTGGAGAACAAGACCATCATAAGCATACAAAACCAGATTGCAGGTAATTTAGGTTGCGTTTTTGAACGTCAAGATGATGTGGGACATAGAGCTGGTCAGCTGAGATCTAGTTTAAAGCAGGGGGGTAAGATACTCATCATCTTAGATGATGTATGGAGTAGGATACCTTTAGGTACTATCGGAATCATGTCTGCAGATGGTATGAGTTCCAAAGGAGGTAAGATTCTTTTGACGACACGAGATCACGAGGTATGCCAGCGTAACGACTGCGGGGATCTAGTCAAAGTAGAACCTCTTACACCTGCCGAAGCTTGGGATATGTTCAGTGAAACAGTTGGTGCTAAGATAATCGACTCTCTGCAGAATATATCCGTTGCCGAAGACATCTGTAAGAGATGCGGGGGTTTACCACTAGTCATTCTTGCTGTAGGTAACGCCCTCAAATTTAAGCCTCTTGATTCATGGAAGGATGCACGCAATCAACTTAAATTTTTCAAAATTCAAGAACTTCCTGGAATAAGCAAAGACGTGTATGCGTGTTTAAAGTGGAGTTTTGATAACTTGGTGGACGATGCGAAGGCATGTCTCTTGTTGGCTTCTATATTCCCTGAAGATGCTCACATTTATGTTAGCGAGTTGGTTGAGTTAGCAAGAGGCTCCCAGCTTATAAAGGCTGATGATATAAGAACAAGAGTATATTCAATGATTTATATTCTCAAGTCAGCCTCGTTGGTGCTTCAAGTCCGTTGGGGTATTATTGAACGTATCAAACTACATGACATAATAAGGGACATGGCAAGATCCATTGCTACCAAAGACTACGCATTCTTATTCGCAACAAGTAGCTCGTTGCCCAAGCATCCTGCTGATTACTCCGGTCTGAAAGTTCTGCATATAGATGTCGAGGAGGAGACTAGTCTACGTTTTCCAAGTAATGTAAAGTGCCCAGAACTGCATACACTGTCGCTATATTCATCATCATGGACATCATCATGGAAAACACCACGTACACTGATACAGCAGGTATTCAAAAACTGTTTTACATATTCGCTCAATTTTTGATTTATGATAACTATATATCTGATGATAGAATAAAAATAAGTGATTTGACGACAGATAAGTTTAAACGATATGAATTGTTATGAAACAGGATTTATGAGTCACATTTCATTAATTAATGCTATCGTCTAATATAAGCGTTATTTAACTTTTATAATTATTATATTATAATTGCTATAAAATTTTACTAAATTCTGATGTAAATAATAAATTAAATATTGAGTCATACATTAATCAAGATTGTGGAATTGTATAATATCAAAAATTAATTATATTTTAGGTGTCTAATTTTTAATATAAATTAAATTAAGTAATATGTGATTTATAATACATGAACCCGATCCACTTGTTTATTCTAATGAAAAAATATTTATTTTGATCTTGATTAATTAACGAGATAAATAAAAATATATACTAATTTAAATATATTAATTAAATTAATTTTTTTATTTATGCTAAAAGATTAATTATTTAAAAAGTATTCCAGTTAAAGGGAAAATTTTATTCTTGTACAAATACCTTTAAAATAAAGTTACATATGAACTAAATACAAAATATTAAAGTCTATAATATATATTTAAAATATGAAAATTATAAGTAAATATTAAAAATTTGTACAGGGAAATACTCAGTTTAAAAGGAAGGCCTCCAACAATTGACAAAGGCCAGGTATTTTGGACATTCTCAAACATACTCGTATGATGTTTTTTGAACAAAAAGAACAATCTTATAATAACATATTATTAGACAGTGTTATTTGATTTGAAAATTATATATGATTGAATTTTTGGAATGATATATATTTAATATCCCGTGAAAACTTCTCACTGTTAATATTGTTGTACTGATTTTTACAAAGATGACTTATAATACATATCATAAAAAAGTTTAGTTTGATAACTAAAAAATTTATGAATTTTTTATAGTCTTCTACTATAAATTTGAAATCTTTTATATTTATTTTCGATTATCGGATAACTCTCTCTCGTAGGCTTTTGTTTATCAATGTTTCTAGATTTCTTAATCATTCTCTCACAGTAGTATGGATCGATGATTATGTATTTTATATGTATTATAGTTTTAAAAATTTTGTTTAGCCAAATCTTTAATTTATCCTCAGTTTTCATGGTACCTCTGTGCATGAGGTATTTACCTCAAAACAAATTTGATTAAAAATAGATCTAATTTTATTGTTTGGTTCAAATAGGTATTTTAAATTGTTTATTTTGCATATAGCTAAGTTTAGAGTGTTGTTTATAATTGGGTGCCGGCCCACTCTAAATTTATTTATATTATACATATTCTACATCCTCTTTTATATCAAATTGTGCATGTCTTTTATTATTTCAATTCACCAACTATCGGATAATTTAATACAAAGTAGATGTAAGGGAATGCATAAATCACCACCCTTGTTATTTTTATAAGAAAATAATACAAAAAATAAATATGATTACTCTAATGTTAAATTTGAAGAACATGTACGAGTTCTTTAAAATTTAGTTGTTGTATTTAAGAGCATTCACATCCGGACCCAACCCTCAATCCCAAAAATTTACTAAAAATATTAATTCCTCAAAAAAATTACAAATTTTTAAAAGTTTCTTACATCCCATTCCCTATATTCAATCCCTATTCTCATAGAAGTATAAGATAAGAATTGATATTTAATAAAATTATAATGAAATGATAATGAAATGGAGGATGAATAATGTATGAGGTACAAATAGTGAAACTCCAAATATGGGGATTTATTTCTAGTCCCAAAACCAAACCTTATTTTGGGATCTGAATGTAGACTACGTTTTTACAAAAAATAGTAGATTTCTTTAAAATAAATTATGGAGATGCGGTTGGCTTTGGGGGTTAGGGATGTGAATGCTTGATATGATTGATCCAAAATTTTGTTGTGGAATAATTGATATGGTTGATCCAAAATTTAGTTTTGGAATGATTGATATGATGATTGCTCCAAAATTTAGTTTTGAAAAAATTAGTACTATTGATTTAAAATTTAGATATTAGCTTTAATTGATTAAAAATGAATTAAATTTAACCGGAAGTTAGTTAAACTCAATAAAAGACAAGATCCAACCAATAAATTTGATTGGTCTAAAATTTAATTATGATAGTTTAAAATTATTTCAAAAATGGGTCTAAAATTTAGGTGTGAAGATTAAAAATAAATCAAAATTCACGGTTATATATCTCAAAAGATGAAGACTTAACATTATTGATCTAAATTTAACCGTCATATCAAATTATCTCAAAAATCACTAATCGGTTAAGTCAATGATTCAGGAGACTCGTGTCTTTGTAATTATCTTCCTATAATTTTGATATGAATAAAATGATTATTTATTCTTTTTTTAAGCAACATATACAACACATAACACATTTCATCCTTATTATTGGTTAGCTTCCTGAAAAAGCGAATCAGCGTGATCTTTGCAAATATGATAACTACACAGTTATAATATTTGTTCGTAAAATTTATACCTTTAAACATTTGATTAGACGTATATGTGAGGTAGAGTTACCTATCAATCCTTATATTTGTTCCCATATTATTATTTTAATAATAAATTTGAGAGACAAAATAGAAAATAGACAAAGACCAAGAAAGAAGAGGAGAGATGAATTTTTTATTCATAAATATTAAATATGTAATGACCAATAATTATTTAAAAATAGATAATGGATACCGTATCTAAATATGAGTTTAAGAACTTATTTAACTAATCTATTGGACTCTTTAAGATCTCATCCTCTTCTGTAAGGCCATAAGTAGTCATATTTGTCAAAGAAAATAAAAAAGCTGTTATTTTGAAAATTCTAATTATGTCTGCACTTGATGCATGTTATATGCTGGTGAAATAAAACACAAAAAATAACGATTCTTGCTTAAATTTCAGGACTGGATCAACGGTAAAATATTTACAAATCTCATATTTCTGGTGCTTGTGGGGTTTTCCTGGCCAAAGAAATTGTCTCTCAAATCATTGGGTGAACTTAAAACGCTTTGGTTCGACAATTGTGACCTAGAGTTCTTTGGTGAGACGGATGTTAAAATTCTTCCAGAGGGACTGGAAAATCTTTGTATTTGGGGGTCTCGTATGCCAAAACAGTTGAATGTACCAGAACTGAGCCATCTTCGAAAGCTAGACATCTATTCCAGTTCCGGAGGTAGATTATGTATGGTGCCAAATACCATATCAAGACTATCCACTTTAGAAGAATTACGTTTGCCATCTAATTTCTACATCAATGAAGAATGTGCAGAAGGTGGATCATTGTCGGTATTGGACGAGATTAGTGAATTGCCACTGACAAGTTTACATATTCGTTCCCGAGTATCCAAGTCAAGTAAACTTGCAACTATGTTTTCCAACTTACGTGAATTCCATTTGTTTGTTGGTGAGCCGCCGGCTAATAATCGGTCTATGAATCTGTCACCTGTTTCAGTGACGAAGTCAATTAAGTTGGTCAACCACGATCTTGTAGAGGGCTACCAGACTCTATTTCAGAAGGCTGAAGAGGTGATATTGTATGAGACTGATTTCCCAGGGAGTAGCATTGGGATCAGAGACACTAAAGAATTTATCAACTTAAGGTACATGCAAATTGAAAATTGCAAGGCCATGGAGTATCTAGCAAGGATTTCATCACCACAGGGTGAGATTCAGGAAAGTCTTCAGCGATCAACACCTTTTTCTAACCTGATCAAATTGGAAATTAAGTGTTGTCTCAGCCTAAAATACCTCTTCTGCGACTCTATTGCAAGATGTCTCCTCCTACTGGAAGAGCTCCACATAAGGGACTGTCCTTTAATGGAAGAAGTTGTACGTGAGGAGGGCAAAAGTGATGGAAATATCATTAACATGTCCAAATTACGAAAAATGAGCTTAATTAAATTGCCAAGACTCGTACATTTTTACAAGGACAAGATTCCCTATGCGCAAATTCAACCTCTGTTTGACAGAATGGTATGCTTTGCTTACCCCTCATCAATCATCATCATCATATTAATAATATTACTTACACTGTGTAATGATTTCAGGCAAAGTCAATAAACTATTTTGCACATAATTGATTCTTTTTGGTTACTTCTTTATGTCAATATATTTGTTTTAAGGGATTAAAGTTCGGAACTTGTAATCTTTACATTGTATCATGTACTCTCACAAGTAATAATGGCACTTGGAGTAAACTTTGGAAATAAGAACCTAAACAAACACCCTCGGAACTTGTAATCTTTACATTGTATCATGTACTCTCACAAGTAATAATGGCACTTGGAGTAAACTTTGGAAATAAGAACCTAAACAAACACCCGTCACGTATAAAAAAATATGTTTACGCTGTTCATGTAATATAATTTTAAGATTTTTAATACAGTAGTAACTTTTTATTACAAGTAGCACTTGGTTACAGTGTCCTTTCTGTTCTCTGATGGTATGCCTTTCACTGACTATTTGAGCAGGTTGCATTCCCTTCCTTGGAAATGTTGGATATCAGTGGTTTGGAAGACATAACTGACATTTGGGGAGATAATCATGACAATGCTTCCTCCTTTTCCCAACTGAAGACCCTGAAAGTAAAATTCTGTAATAAGCTTAAAAATGTGATCCCACCTGCCACGTTGCGTAGTTCACTCACCTCTGAAGTTGACACTCATGGAAGCCACACAGATTTGGTTACTGGCAGAGCTCCCGAAGGACTTGTGAAGGCCGTGGTTTCTCATAATCCATACAAAAAATTACAAATTTTTTTGAAGAAAACTGTACGTGCGTCGAGATCTGTATGCAGGAGGACCCCCACAATAACAGAAGAAAATTTGAATGATCCCTCTGATATTTCAGTTCAAGTTCCGTCCCAAAACACAAAGGTATGTCCATTGGTTCAAATGAGTCTAGAATGGTTGCCTTGTTTGGAAAAGACAGGGTTGAACTTTGAGGACCAATCCGGAGCAGTGAGTTTGTACCCGGATCTTAAAAAGTTAAATATAAATATATGCGAAAGATTGGAAAACGTGTCCATCATACCTTGTACCAACGGACATTTGATGAACCTTGAGGAAATGTCCGTGAGGCAATGCATTACGATGAGAGAGATAATTGGGGCAGGACCGGCAGGTAAACACAAAATGGCCAATGGCATTGTGTTCCATAAGTTGTGTTCTCTTCAACTAAGTGACTTGCCAAGTTTGACCAGTTTTTGGGGGGAGGCCAGTGGGGAAGCCAACAGCCACAAGGTATATTTATATTTAATTGCCAAATGAAAAAAATTTAAGATTCATAACATGCATCTGTTTTTTTTTTCGCGCGAGAGTGAGAGTATAGATCTATTATTGCTTTTATATCAAACTGACCACTCGTTTCGTCAAAATTTCTCACTTGACCCATCCATTTAATTTCAAACTCAAGCCACTATAAACCAAATACTATATATATTATTTTACCCACATTATTATTCATATTTCTTCACTTAATCATTTATCAAAAATCAAATGTTTGTTTTTTTTACCACAAAATCACTTCGAGTACTTTCATAATTGTCTCTAGTATATATCAAAATAATTTGGAAATTTTTAAAACAACATTACTATGTAGTTTAAAAAATATAAAGTTATAAATATATAATTATATGATCACCTTAGCTATGTTATTTTAAAAATTCCCAAATTATTTTGATAAATACTAGAGACAGTCATGAAAATACTCGAAGTTGTTTTGTAGTAAAAAAACAAACGATTGATTTTTGATAAATGATTAAGTGAAGAAATATGAATAATGATATGGGTAAAATGATATATATTTGGTTTATAATGACTTAAATGAGTCCGAAATTAAATGTGGGTCAAATGAGAAATTTTGACGAAATGAGTGGTCAGTTTGATATAAAACCCGATCTATTACTGTATCAATTTAACATTTCTGAGGTAAAGACGTTAAAGTGAGGAAGGCGCATTCACCGAGTCAGATTGACATAATGTATGGGATTGTTTTTTGTAGGTTGAATTCCCAAACTTGAAGAAGCTTCAACTCCGTTGTGGGGAAAATACTAGCTTACTGGAAATGATAGAGTCAGGCAGAGATGGTTCTACTTTTCAGCTGGAGAACTTAGCAATAAGCTGTGGTAAGGAGATACAAATTCCTAACCGATGGCTACTTCAATTAGATAATCTGGAAAGCTTGTCACTGGAACGCTGTTGGTCAGATGAGCTGAAATCTCTACGTTTCCAGAGATTGAATAAACTCACACTTGGTCAACTTAGTTGCTCTAGTATTTTCTCATTCCCAGACTTTGAAAGACTTCA +>URS0000AE3A4B tRNA from 1 species +GCTCCGATCGTCTAGCCCGGTCCAGGACAATGGCCTTTCGAGCCATGAACACGGGTCCGAATCCCGTTCGGAGCA +>URS0001D9EE47 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGAACCTTTCGGGCTTAGTGGCGGACGGGTGCGTAACACGTGGGAACGCGCCTGTAGGTTCGCAATACTTCAGGGAAACTTGTGCTAATACCGAATGTGCCCTTCGGGGGTAGGAGTTATCGCCTGTAGAGCGGCCCGCGACCGATTAGCTAGTTGGGTGGGGTAATGGCTCACCACGGCGTGGATCAGTAGCTGGTCTGAGAGAATGAGTAGCCACATTGGGACTGAGACACGGCCCACAATCCTACGGAAGGCAGGAGAGGGGGATCCAGCGCGATGGGGGACAGCCTGACGCAGCCATGCCGGGTGAATGATGAAGGTCTTAGGAAAATGAATTTCTTTAACCGGGGGCGATAATGACGGTACCCGGAGAAGAAGCACCGGCTAACTACGTG +>URS000212D443 rRNA from 1 species +TCAAGTGAAGAAGCGCATACGGTGGATGCCTTGGCAGTCAGAGGCGATGAAAGACGTGGTAGCCTGCGAAAAGCTTCGGGGAGTCGGCAAACAGACTGTGATCCGGAGATGTCTGAATGGGGGAACCCAGCCATCATAAGATGGTTATCTTGTACTGAATACATAGGTGCAAGAGGCGAACCAGGGGAACTGAAACATCTAAGTACCCTGAGGAAAAGAAATCAACCGAGATTCCCTTAGTAGTGGCGAGCGAACGGGGACCAGCCCTTAAGTTGTATTGAGATTAGCGGAACGTTCTGGAAAGGACGGCCATAGTGGGTGATAGCCCTGTACGCGAAAATCCCTTTGCAATGAAATCGAGTAGGACGGGGCACGAGAAACCTTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTACTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCGCGGAGAGCGGAGTGAAATAGATCCTGAAACCGTATGCGTACAAGCAGTGGGAGCCCACTTTGTTGGGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATTTTCAGTGGCGAGCTTAACCGAATAGGGGAGGCGTAGCGAAAGCGAGTCTTAATAGGGCGTCTAGTCGCTGGGAATAGACCCGAAACCGGGCGATCTATCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTACCGTTGAAAAGTTAGCGGATGACCTGTGGATCGGAGTGAAAGGCTAATCAAGCTCGGAGATAGCTGGTTCTCCTCGAAAGCTATTTAGGTAGCGCCTCATGTATCACTGTAGGGGGTAGAGCACTGTTTCGGCTAGGGGGTCATCCCGACTTACCAAACCGATGCAAACTCCGAATACCTACAAGTGCCGAGCATGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAAAGGGAAACAACCCAGACCGTCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCTTAGACAGCTAGGAGGTTGGCTTAGAAGCAGCCACCCTTTAAAGAAAGCGTAATAGCTCACTAGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTCAAACCATGCACCGAAGCTACGGGTATCATCTTTTGATGATGCGGTAGAGGAGCGTTCTGTAAGCCTGTGAAGGTGAGTTGAGAAGCTTGCTGGAGGTATCAGAAGTGCGAATGCTGACATGAGTAACGACAATGGGTGTGAAAAACACCCACGCCGAAAGACCAAGGTTTCCTGCGCAACGTTAATCGACGCAGGGTTAGTCGGTCCCTAAGGCGAGGCTGAAAAGCGTAGTCGATGGAAAACAGGTTAATATTCCTGTACTTCTGGTTATTGCGATGGAGGGACGGAGAAGGCTAGGCCAGCCTGGCGTTGGTTGTCCAGGTTTAAGGTGGTAGGCTGAGATCTTAGGTAAATCCGGGATCTTAAGGCCGAGAGCTGATGACGAGTGTTCTTTTAGAACATGAAGTGGTTGATGCCATGCTTCCAAGAAAAGCTTCTAAGCTTCAGGTAACCAGGAACCGTACCCCAAACCGACACAGGTGGTTGGGTAGAGAATACCAAGGCGCTTGAGAGAACTCGGGTGAAGGAACTAGGCAAAATGGCACCGTAACTTCGGGAGAAGGTGCGCCGGTGGAGGTGAAGCATTTACTGCGTAAGCCCCTGCCGGTCGAAGATACCAGGCCGCTGCGACTGTTTATTAAAAACACAGCACTCTGCAAACACGAAAGTGGACGTATAGGGTGTGACGCCTGCCCGGTGCCGGAAGGTTAATTGATGGGGTTAGCGCAAGCGAAGCTCTTGATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAACGATGGCGGCGCTGTCTCCACCCGAGACTCAGTGAAATTGAAATCGCTGTGAAGATGCAGTGTATCCGCGGCTAGACGGAAAGACCCCGTGAACCTTTACTATAGCTTTGCACTGGACTTTGAATTTGCTTGTGTAGGATAGGTGGGAGGCTTTGAAGCGTGGACGCCAGTCTGCGTGGAGCCAACCTTGAAATACCACCCTGGCAACTTTGAGGTTCTAACTCAGGTCCGTTATCCGGATCGAGGACAGTGTATGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCTAAAGAGTAACGGAGGAGTACGAAGGTGCGCTCAGACCGGTCGGAAATCGGTCGTAGAGTATAAAGGCAAAAGCGCGCTTGACTGCGAGACAGACACGTCGAGCAGGTACGAAAGTAGGTCTTAGTGATCCGGTGGTTCTGTATGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATACCGCCCAAGAGTTCATATCGACGGCGGTGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGCCGGTCCCAAGGGTATGGCTGTTCGCCATTTAAAGTGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCTGCCGTGGACGTTTGAGATTTGAGAGGGGCTGCTCCTAGTACGAGAGGACCGGAGTGGACGAACCTCTGGTGTTCCGGTTGTCACGCCAGTGGCATTGCCGGGTAGCTATGTTCGGAAAAGATAACCGCTGAAAGCATCTAAGCGGGAAACTTGCCTCAAGATGAGATCTCACTGGAACCTTGAGTTCCCTAAAGGGCCGTCGAAGACTACGACGTTGATAGGTTGGGTGTGTAAGCGCTGTGAGGCGTTGAGCTAACCAATACTAATTGCCCGTGAGGCTTGACCAT +>URS0001E7BB53 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCATGTCGAGCGAACGGACGAGAAGCTTGCTTTTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCATAAGTGAAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTAACTGTGCACATCTTGGCGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS0001963736 lncRNA from 1 species +GTCCAGCCTTCAGCCCGGTTCGGTTTCTAGGTTGGACCCAGGGCAACTCCAGCCGTTTCCAGACCCGGTTTCGGAAAAGAAATGATCAAATAAAGCCTCGAAAGCTCCTGAGGTAAAAGCCGCAGAGGATCTGAGCGGGACGGCCCAGCCCCTCCGGAGGCAGCGAGCGCGTGGAGGCGGTGGCTCCGGCTCAGGAAAGAGAGAAGCTAACAAGAAAAGCCACTCTTCTTGTTTCCATCTCCACAGTGGAAGAAATGCCCTCTTTTTTAGTTAAGAAAACAGAGAGTCAAAAGAAGATGGGAGACCTCTGCACACTCAATCAGGAAATTCCTGGAATACCAGACTGTTTCCATCAATGGTAGGTCATTGCTTTTATCAGCTTGTATTGCTGAAATGCAGTAAGCACTGATTACACAAGCACTAAATGCCAAGCAATGCTCATAAATCTTGGTAGGAACATGAGCTTTAGAGTTGAGGTCTCGGATTTTCTTTTTACCTTGGTACTGAGTCAAAAAGAAAGATTTTAGAATCAGGGTCTTCTTCCACCCCTAATAAAATGCTCTCTTCACTCTCTTTGTGGAGTATT +>URS00015412A1 rRNA from 1 species +TACGTAGGGTGCAAGCGTTATCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTTTGTCGAGTCTGTTGTGAAATCTCGAGGCTCAACCTCGGGTCTGCAGTGGGTACGGGCAGGCTGGAGTGCGGTAGGGGAGAGTGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGTTCGCTGGGCCGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS000242BE45 lncRNA from 1 species +CTAGAGAAAAATCAGAAACAACGCCCTACTGTTCCTTCATCTTCCTCAGATTTCAACTCACCTCAACTCGCCCGAGTTCACTCAAATGGTCCCCTTCCCTCCACGTTATTTGATTCCCAACAGTTTTTGTTAGAAAGAATTCGAATATTCTCTCAAAATCGCACAATTTTGGGTACGAAAGAACGATTTGTTGGATGAATGGGAGCTGTGGATAGATGTAAGTCGATCCACGCCCTCCATTTGTCCCAAAATTGTTCAAAAAACTCGAAGATATTTGGATTTTTGGGCAGATTTTTGAGATTTTTTGAAGGCTATATATATGAGGTAAGTTCTATGTGCTAGGTTAGAGGGAGATCAGAGAAAAATCTTCAGAACTTAGCCGAGTAATTTTCTAGGGTTTTAGTTGTTATCGTCTTCAAGTCTACTTTTTCTTCAAAAATAAAACATACCAAAAAGAGCACAATGGTCTGAGTTCAATTTTTCTAGTCGAGTTTACTTTATTTTTTAGAGAAAAATAAAAAAAAAAATCACTGAGCACAGATATGTCTTAGTGCTTGTTCTTTCTTTTGAAGTTCTGTTTTTCTCAAGAGAACTTGATTTTGAAAATTCAAGTTATAGTCGAGTTTGTTTTGGAGTTCAAAATTTCGGTTAGTGGCTCAATTCAAGTTGGTTGATTCTTGTCTTCTTGTTGCTGTTCGTTTCAAGCTCTAAGCCGCGGTTTTGCTCGAGTCGATCTAGTTGCTGTAATCCCTGAAGTTTTTTGTTAATTAAAAGGTTCATCTCTTCACTCCTTCTTAATTTGTTCTGGTATTGATCAAAATGTGATGATGGCTGAGACTTTGCTAGATTGGAAGTGTTTATGAGCTGGTTCATGAGAAACCAGTCTGTGATGCAGTTTTTTTTTGTTTTCTTTCTTGGCTCCGGATACATCTCCCTTATTCTATTCGTTCTGTGTGCTCCAATTCATTCGGGTTATACCCTGTGTTGCCTTGTTATTTACTGGTGAATGGTGTATAAATTCATTTTTCTTTACCATACAGAATTCATGTCTGTTCTTGAATTGATTAAAATTTCCAAACATTGAATGCTAAGGTTGGGTATGGTCTGGATAAGCCAACAGCTTTATAAAATATGAGTGTCACACAGTTTTTAATGAAATACACTAACTTCCACAAGCAGCTTGTATTTAGTTGAGATCCACATTGTCCTTTTAAGAGATACTGTTGATGTTAGTAAGTAGTTAAGAAAAAAAACTTTTAAGTCATGAATCATGATTCTTTTAATTGCATTTGAAGCAAAAACATCAATGGTGAATAATGAAACAAAACTGGAAAGCAGAGAACAACTAGAGCAGTTAGCTTCACTGATTCTCTTTGAGCTCGAAATGTACATGTGAGAGAATGCAAAGCAATGACTACATCAGAAGAAAATTGTTCTAGAGTTAACTTTCTTTCCTTTTTGATGTATTGGCTATCTGTGTATGGTGAACGTGATATCAGGAAATGTGTGTCTTCTATCACTATTACTCCTTGTTAAGTCATATGTAATTGACTTGTTATGATATCAGTAGACTTACTTATGTTTAGACATAGTTTAAATGTTTTCTTTTGTGCTGTTTTGTTGCCTATACGGCCCTGCCATTCAAGAGAACATGGTGATTTCTTAGGCTTGCATATCACTGTTGAAATGCATCTATCTTAGTGTTTGACAAAAGAATATGTCACACATAGGATTAACAAGATGACTGAAGTTGGTTAAAATTAAGTCAAATTGAATGTTAGTTTAAAGTCATTTACCTGCTACATGCTAATATTTTTATATAACAGTGTGACGACCCGACTAGTCATCGCATGAATTACCGCCCTGTTTTTCCTATTTTTGCTTCTTTATGCTTCGTTATTCGTGTTTTATGTGGTCGAGTTGATTGGTTTGCATTTGGTGTGATTTTAGTAAGAAATGAGACACTTAGTCTCTTTTAAGAAGGCTTAAGTTGGAAAAGTCAACTAGATGTTGACTTATGAGTTAGAGGGCTCGGATGTGAGTTCTTATGGTTCGGTTAGCTTCGGGAGGTGACTTGTGACATAGGAGTGTGATCGGAAGTGGTTTTGGAGGCCCAGTGTAGAATTAGGCTTGAATTGGCGAAGTTAGTATTTTGGCAATTTCTGGTTGATAGGTGAGATTTTGATCCGGGGATCGGAATGAAATTTCGAGAGTTACTGTAGCTTTGTTATGTCATTTGTGATGTGAGTGCAAAATGTTAGATCATTCGGACACGGTTTGGTTGGGTTTTGATCAAAAGTGTGTTTCAGAAGTTTCTAGAAAAGCTAGGCTTGAATTCGATGTGAACTGATGTATTTGGTGTTGTTTGAGGTGTTTTGATGATTAGAACAAGTTTGAATGAGGTTTTAGGATGTGTTGGTACTTTTGGTTAAGGTCCCGGGGGCCTCGGGTGGTTTCGGATGGCTAACGGGAAGTTTTGAGTCATTGGAGATTGCAGAAAATGCAGCAGCAGTTGCAGAGGATTTTTGGCCTTCGCGATCGCGTGAGGTCCCTCGCGATCACGTAGAAGGAAGTTGGGTGGCCCTGCATTTGTGCTTCGCATTAACGTCTGCTGCCTCGCATTCGCGAAGGGGCCTTGAGGTTATGCTTTGCGTCCGCGTGATGGGTATCGCGTTCTCATAGTGGAGATGGGCACGTGAAGGTCGAGGAGCTATTGCTCTTCGCGCTCGCGTAAGTGGTATCGCGTTCGCGTAGGTTCAAAGTTCCAAAGCATCGCATTCACGGGTGTGGTGCCGCATTCGTGAAGGGTTATTTGTGGTTCAAGGAAAATTGTGCATCACGAACGCGTGGGTTTGACCGCGTTCGCGAAGGAGGGATTTCCAAAACTGAACAGTGAAGTTTTTAAACATTTCCTCCGTGAGTTTTAGTCTTTTTTCCACCATAGTTGAGTATTTTGAGAGCTCTTTGAGGGGAATTGAAGAGGGATTCAAGGAGAATTGGTTGGAGGTAAGTTCTATGAACCACAAACGTGATTATATTGTGAAGTTAACCTAGAAATTCATGGAAATTTAGCTAAAAATAGAAGAACTAGGGCCTGGGATTTTGAGATTTTAAATTGGGATTTGAAGGGACATTTGAGGTCGGATTTGAGAAATTTTGATATGTATGAACTCGTGGCGAGATAAGGAACCCGTTGATGTGAAAATTTCTGAGTTTCCAGAAGTAAACCCGGGGCTCGGGTTTTGCTAATTTCGGGATTTTTGATATTTTTCGATTGTTTTCGCTTGGCCTTTTTCCCCTTAGCATATTGTGACGTATTCGCTCTGGTTTTGGTTAGATTCGATGTCCGAGAGGCTGATTTGAGAGGCAAAGGCATAGCGAGCTAGAGCTTTAGCCGGTTCGAGGTGAGTCATGAATGTAAATGATATCCTGAGTGTTTGAAACCCCAGATTTGCACATCGTAGTGCTATATTGAGGTGAGACACGCGCTTGATGATGAGAGTGGGGTCATGTACTATTGAGGATTGGGACTTGGTCCGTCCTGAGTGTTGTTTTTACCGTGCATTTTGATTGAAGCTTATTTGTTATCATCATTGTTTGGACTAATTGCCATACTTGGACTTCGTGCCAACTATTTGAACCCTTCGGGGAGTTTTATCACTATTTCCTCACTGTTTTGACTTACTACTTGAACTTACTCGTACCGTTTTCCACTGTTTTACAACTCAACCACTTTTTACTCGGTTTTGAAACTAAAATGATACATATTAAATGATATTTTGGGCTGAGAACTACTGTTTTACTAATGCCCGAGGGGCTTATATGATTTCTGGACGGAGTACGGCCAAAGGCCAGATGGGAGGATACTATGGGATCGGGCTGCGCGCTGCAACAGTGTTATACTGATATTGATACGAGGCTGAGGGCCTAGATTTGATGCCACGAGATGACTTGATATTGTGCTTGGGCCGTAAGGGGCCCCTCCCGGAGTCTGCACATCCCCAGTGAGCGCCGTCAACGATAAATGTATGGATCGGGTTACACGCCGTAGCAGGTACTATAGGGTACCGTTCTATGTGTTGATTTTCTTTATATGTCTGTCACCTAACTGCTTATTTGTGGTAGCATTTCCACATTTCGTTTCCATTGGTTTATTACTTTCATATTACTTATTTAAAATGCTGCATTATAGATTACTCTGTGTTTCTTCGTGATTTCTTATTCTCAGTCATTATTTATGCTTATTACTCACTGGTTCGGAGTACTCACATTACTCCCTGCACCTTGCGTGCAGATCCAGGTGCATCTGAGGCTAAGTGAGGATTTTTAGTTGAGAAGCGCATATCCGGGAGCATCGAGGTAGCTGCATGGCATCCGCAACCCTGATCTCTCCTTTCTATCCTTTTGTTTTATN +>URS0000BE1683 snRNA from 1 species +TAACTTACCTGGAGGGTAAGTCCAGTAGTCAACTTCGCTGGACTTATTGGGCATGATGGGGCATTGCACATCCCGTCCGGTCGTGTTCAACGAATGTCATTACGGCATCTCGGCCTTATAATTTCTGGTTTGGATTCCTCTGGCTTGCCGGGGAATCCC +>URS000002E6E7 rRNA from 1 species +AACGAACGCTGGCGGCGTGGATAAGACATGCAAGTCGAACGGGATTATTTTTGTAGCAATACAGAAATAATTCAGTGGCGAACGGGTGCGTAACACGTGGGCAATCTGCCGAAAAGTGGGGGATAGCTCGCCGAAAGGCGAATTAATACCGCATGTGGTGAGGGACGACATCTTCCTGAATCCAAAGCCGGGGCAACCTGGCGCTTTTTGTAGGAGCCCGCGGCCTATCAGCTTGTTGGCGGGGTAACGGCCCACCAAGGCTATGACGGGTAGCTGGTCTGAGAGGACGACCAGTCACACTGGAACTGAGACACGGTCCAGACACCTACGGGTGGCAGCAGTCGAGAATTTTTCTCAATGGGGC +>URS0001E82C61 rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGACCTTCGGGTCTAGTGGCGCACGGGTGCGTAACGCGTGGGAACCTGCCCTTAGGTTCGGAATAACTCCCCGAAAGGGGTGCTAATACCGGATAATGTCTTCGGACCAAAGATTTATCGCCTTTGGATGGGCCCGCGTTGGATTAGCCAGTTGGTAGGGTAAAAGCCTACCAAGGCGACGATCCATAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCGACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATACAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTG +>URS0001712CA9 rRNA from 1 species +AGAGTTTGATCCTGGCTCAGAACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGCGAACGTTTCTTCGGAAACAAGTAGAGTGGCGGACGGGTGAGTAACGCGTAGGAATCTGCCTAAGGGTACGGAATAACGCCGGGAAACCGGTGCTAATACCGTATACGCCTTAAGAGGGAAAGCGCTATGTAGCGCCCTGGGATGAGCCCGCGTTAGATTAGGTAGTTGGTGAGGTAATGGCTCACCAAGCCTATGATCTATAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGAAACCCTGATCCAGCGATGCCGCGTGAGTGAAGAAGGCCCTAGGGTTGTAAAGCTCTTTCAGTAGGGAAGATGATGACGGTACCTACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGAGTACGTAGGCGGTTTGATAAGTTGGGAGTGAAATCCCGGGGCTTAACCTCGGAATTGCTCTCAAAACTATTAGACTAGAGTATGGTAGGGGACAGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCAGTTGCGAAGGCGGCTTACTGGTCCGGATCTGACGCTGAGATGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGGGTGCTAGGTGTTGGGTAGCTTGCTATTCAGTGCCGAAGCTAACGCGTTAAGCACCCCGCCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGCAGAACCTTACCAGCCCTTGACATACCAATCGCGATTTCCAGAGATGGATTTCTTCAGTTCGGCTGGATTGGATACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGCCTTTAGTTGCCAGCATTTAGTTGGGCACTCTAGAGGGACTGCCGGTGATAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTACGGGTAGGGCTACACACGTGCTACAATGGCAGTGACAATGGGTTGCGATCCCGCAAGGGCTAGCTAATCCCCAAAAACTGTCTCAGTTCGGATTGTTCTCTGCAACTCGAGAGCATGAAGTTGGAATCGCTAGTAATCGTGGAACAGCATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGTTTTACCCGAAGGTGGTGCGCTAACCGCAAGGAGGCAGCCAACCACGGTAAGGTCAGCGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGGGAACCTGCGGCTGGATCACCTCCTT +>URS0000F24664 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGCGCACGTAGGCGGCTTCGCAAGTCCCATGTGAAAGCCCACGGCTTAACCGTGGAAGTGCATGGGAAACTGCAGAGCTTGAGTACTTAAGAGGATCGCGGAATTCCCGGTGTAGAGGTGAAATTCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCGATCTGGGAAGATACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGG +>URS00003B973F rRNA from 1 species +CGACGAGTTTGATCCTGGCTCAGATTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGTAACGGGGACTTCGGTCTGCCGACGAGTGGCGAACGGGTGAGTAATATATCGGAACGTGCCCAGTAATGGGGGATAGCTCGGCGAAAGCCGGATTAATACCGCATACGCCCTGAGGGGGAAAGTGGGGGATCTTCGGACCTCACGTTATTGGAGCGGCCGATATCAGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCTGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAGCTCTTTCAGCCGGGAAGAAAACGCATGGGTTAATACCCTGTGTGGATGACGGTACCGGAATAAGAAGCACCGGCTAACTACGTG +>URS00019E32A1 tRNA from 1 species +GGATATAGTTCAGCTGGTAGAATGTGTGCCTCACATGCACAGGCCTGGGGTTCAATACCCAGCACCA +>URS0000ED2EE6 rRNA from 3 species +CAAAATGGTGCCGTAACTTCGGGAGAAGGCACGCTGACACGTAGGTGAAGTGATTTACTCATGGAGCTGAAGTCAGTCGAAGATACCAGCTGGCTGCAACTGTTTATTAAAAACACAGCACTGTGCAAACACGAAAGTGGACGTATACGGTGTGACGCCTGCCCGGTGCCGGAAGGTTAATTGATGGGGTCAGCGCAAGCGAAGCTCCTGATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAATGATGGCCAGGCTGTCTCCACCCGAGACTCAGTGAAATTGAACTCGCTGTGAAGATGCAGTGTACCCGCGGCAAGACGGAAAGACCCCGTGAACCTTTACTATAGCTTGACACTGAACATTGAGCCTTGATGTGTAGGATAGGTGGGAGGCTTTGAAGTGTGGACGCCAGTCTGCATGGAGCCGACCTTGAAATACCACCCTTTAATGTTTGATGTTCTAACGTGGACCCGTAATCCGGGTTGCGGACAGTGTCTGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCTAAAGAGTAACGGAGGAGCACGAAGGTTGGCTAATCCTGGTCGGACATCAGGAGGTTAGTGCAATGGCATAAGCCAGCTTGACTGCGAGCGTGACGGCGCGAGCAGGTGCGAAAGCAGGTCATAGTGATCCGGTGGTTCTGAATGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATACCGCCCAAGAGTTCATATCGACGGCGGTGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGTAGGTCCCAAGGGTATGGCTGTTCGCCATTTAAAGTGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCTGCCGTGGGCGCTGGAGAACTGAGGGGGGCTGCTCCTAGTACGAGAGGACCGGAGTGGACGCATCACTGGTGTTCGGGTTGTCATGCCAATGGCACTGCCCGGTAGCTAAATGCGGAAGAGATAAGTGCTGAAAGCATCTAAGCACGAAACTTGCCCCGA +>URS00025C3F13 lncRNA from 1 species +CTTGGGGATTTGCAGCTAATGTAAGAACCAAATGCTATTTAAAAAAAAAAATGTTTTTTAATACTTTTAAGTGTTTTTTGCACACTTTTGAAATATATTTTTACTTTATCTGCACATGCAAAGATAGGTCACGTGTAATAATGATTTCCTAATATAAATAAAGAGGGAACTAGTTAAAAAAAAAATTGAATAAGAATTCCTTGAGAAGGGGAGATGATTAGTCTGAAATGGGTCCACGTATAATGAGCAAAAACCTCCCAGGCGAGCAGCCCCAGGGCCAGAGAATGGGAGACAAGCCTTAAAGTATAGCTGTAGTTGAGACGGTCCTATTTGGGCAGGGGTGAAAAATGCTCCATCGGGAGATCTATATTCAGAAAAATCATGAGATGTATTAAGATAAACAAGACTAAAACTGAAAATATGTTAACCTATCTTTGATCATTAGTCCTTAAACAACAGAGAAGTACTTCTGTTGTCAAAAGTTCAATCAGGTCACAAGCACACCAGCTGCATTTGCTGTCAATCGTCACTGGAATGAATGATTTGAGTTTTCTGGGCCAATGAATGTTTCAGTAGAGTCGGCGAAAACTTAGATAGTCCAGAGATATGCCTAGCTTAAACACAGTGGCATCGCTAAGGGAGCCATGGTCCACCGATCATCATGCCGTGCCTCCAAGTGACGACGCTGTTTCATGGGCCGGCCTTAGGGTTGAGCTCACACAGCTACCCGGTGGAAGATTTCATTATTCTCCACCCGGGATTATTAAAAAACCCAAAACATTGTGACAGGGGCGGTGCATACCAGGAAGCAGAGGTGTGGCTAAAAG +>URS0000978C1D SRP_RNA from 2 species +GCTGGGCATGGTGGCGCATGCCTGTAATCCCAGTTACTCTGGAGGCTGAGGCAAGAGAATCGCTTGAACCCGGGAGGCAGAGGTTGCAGTGAGTTGAGATAGCACCACTGCACTCCAGCCTGGGTGACAGAGCCAGACTCTGTCTCAA +>URS000131FCF1 rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGTATCAGGTCTTCGGATGCTGACGAGTGGCGAACGGGTGAGTAATACATCGGAACGTGCCTAGTAGTGGGGGATAACTACTCGAAAGAGTGGCTAATACCGCATGAGATCTACGGATGAAAGCAGGGGATCGCAAGACCTTGTGCTACTAGAGCGGCCGATGGCAGATTAGGTAGTTGGTGGGATAAAAGCTTACCAAGCCGACGATCTGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGGGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGTAATGCCGCGTGCAGGATGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAACGAAAAGCCCTGGGTTAATACCCTGGGGTCATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCCGCCGCAGTAATAC +>URS00013B03C6 rRNA from 1 species +TACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGTTGTTAAGTCTGATGTGAAGCCCTGGCTCAACCTGGGAACTGCAGTGGATACTGAGAAGCTAGAGTGTGTCAGAGGATGGTGGAATTCCGGTGTAGCGGTGAAATGCGTAGAGATCGGGAGGAACACCAGTGGCGAAGGCGATCACCTGGGATGTTCTGACGCTGAGGAGCGAAAGCTAGGGAGCAACGGGG +>URS000157F4D5 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGAGTGGCGGACGGGTGCGGAATACATCGGAATCTACTCTGTCGAGGGGGATAACGTAGGGAAACTTACGCTAATCCCGCATAAGATTGTATGAGCCGATGTCGGATTAGCTAGTTGGTGGGGTAAAGGCGCACCAAGGCGACGCTCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGTAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAAGGGGCGCAAGCCTGATCCAGCCATGCCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAGGCGGTACCCAAAGAAGAAGCACCGGCGAACTTCGTGCCAGCAGCCGCGGTAATAC +>URS00000C806B tRNA from 1 species +TTTTAAGTAGTTTATGGATAAAATATTAAGTTGTGGTCTTAGAGAAAAAGATTGCTTTCTTAAATG +>URS00008F77FE rRNA from 1 species +TACGGAGGGTGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGCGTAGGTGGCTTGGTAAGCGTGTGGTGAAAGCTCGGGGCTCAACCCCGAGTCGGCCATGCGAACTGCCGAGCTTGAGCACTGTAGAGGCAGACGGAATTCCGGGTGTAGCGGTGGAATGCGTAGAGATCCGGAAGAACACCAGTGGCGAAGGCGGTCTGCTGGGCAGTTGCTGACACTGAGGCGCGACAGCGTGGGGAGCAAACAGG +>URS000080C6B8 rRNA from 1 species +TACGGAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGTTTTCCAAGTCAGAGGTGAAAGCCCGGGGCTCAACTCCGGAATTGCCTTTGAAACTGGGAAACTTGAACACGGGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCTCACTGGACCGTTGTTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGG +>URS000134990F rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTACCACATGCAAGTCGAACGCGTGGCGGACGGGTGAGTCATGTCTGGGAAACTGCCCGATGGAGGGGGATAACTACTGGAACCGGTAGCTACTACCGCATACCATCGGATGTGCCCCGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAAGGGGCGAAAGGCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGCGTTACTCGAAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATTC +>URS0000B4737C rRNA from 1 species +TTGCCTACGGGGGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGCGATGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGAAAATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGTCCTGCAAGCAAGATGTGAAAGCCCGGGGCTCAACCCGGGGACTGCATTTGGATCT +>URS00000D2088 rRNA from 1 species +AACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGAGAGCCTGAACCAGCCAAGTAGCGTGCAGGATGACGGCCCTATGGGTTGTAAACTGCTTTTATGCGGGAATAACGTTCACTACGTGTAGTGTTTTGCATGTACCGCATGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGAGCGTAGGCGGAGGATCAAGTCAGCTGTGAAATGTAGACGCTCAACGTGTGCACTGCAGTTGAAACTGGTTCCCTTGAGTGCGTAAGAGGCAGGCGGAATTCGTCGTGTAGCGGTGAAATGCTTAGATATGACGAAGAACTCCGATCGCGAAGGCAGCTTGCCGGGCCGCAACTGACGCTGAAGCTCGAAGGTGCGGGTATCGAACAGGATTAGATACCCTGGTAGTCCGCACAGTAAACGATGGATACTCGCTGTCGGCGATATACGGTCGGTGGCCAAGCGAAAGCGTTAAGTATCCCACCTGGGGAGTACGCCGGCAACGGTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGAGGAACATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCCGGGCTTGAATTGCTAACGACGGTTACTGGAGACAGTTTCCTTCCTTCGGGACGTTAGTGAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTAAGGTGTCGGCTCAAGTGCCATAACGAGCGCAACCCTTGCCGTTAGTTGCCATCAGGTCATGCTGGGCACTCTATCGGGACTGCCATCGTAAGATGTGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTATGTCCGGGGCTACACACGTGTTACAATGGGGGGTACAGAGGGAAGCCACCTGGCGACAGGGCGCGGATCCCGAAATCCCTTCTCAGTTCGGATCGGAGTCTGGAACCCGACTCCGTGAAGCTGGATTCGCTAGTAATCGCGCATCAGCCATGGCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCAAGCCATGAAAGCCGGGGGCGCCTGAAGTCCGTAACCGCGAGGATCGGCCTAGGGCGAACCTGGTAATTGGGGCTAAGTCGTAACAAGGTAGCCGTACCGGAAGGTGCGGCTGGAACAACTCCTTT +>URS00016E4775 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTTCGTCGCGTCGGCTGTGAAATCCCGAGGCTCAACTCCGGGCCTGCAGTCGATACGGGCAGACTGGAGTTCGGCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGGTCTCTGGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0002360704 lncRNA from 1 species +TTTTTTTTACTTTTTTCTGTATTTCTTTTTTCTTTTTGTTTCTTCACTCGTTTTCTTCTGTTTTTTATATTCTTTGTTTTTTCACTGGGTTTCTTCATCTTTTTGTTGGGTTTTATTGTTTTTCTTTTATTTGCTTTTGCACGATTTTCTGTGTTTCTTTCTCGATTTCATTTTTTTTCCTGTTTTCTTTAGTTTGTTTTTATTTTATTTGTGTGGTTTCATTTGTTT +>URS00018D31DC rRNA from 1 species +TGCCAGCAGCCGCGGTAATACGAAGGGACCTAGCGTAGTTCGGAATCATTGGGCGTAAAGAGAATGTAGGCGGAATTATAAGTCTGGTGTGAAATCCCACAGCTCAACTGTGGAACTGCATCGGATACTGTTTTTCTTGAATTGTAGAGGGGGTCGCGGAATTTCTGGTGTAGAGGTGAAATTTGTAGATATCAGAAAGAACACCGGTGGCGAAGGCGGCGACCTGGCTATTAATTGACGCTGAGATTCGAAAGCGTGGGTAGCGAACAGGATTAGATA +>URS0000E7B100 lncRNA from 1 species +ACATAAGCAGTAGGTGTCTGAAGGCTGGATTTTCAATACAGGCATAAAAGATAGTATTTAAATAAAACAGAAAGCAGAATTTGAATTGTCTTGGCTCAGGTTGGGACATCCACTGAATCTGATGTTCCTGGTACTGAAGACCCTTGGACCCACCTAGCACGGCTGTAGACTTTGCGGTCTGGCATACACTGGGATATCTGTGGACAGAACTCCCCTGCATGGTGAAGCTTTTTTGTTGGCTGCACAGGAGAGTGACTGTACAGTTGGCTCTAGTGTGGCTGCACACTAGACTGTCTCTCGAAAGGAGCTGAGCTTCATTCCTATCCCTAGGAAAACTTCAGCTAAAGTTAACTTGGTTGGATGCCATGTCTGCTTCCTTTCATTTCAAAGTAGGAAAAGTCAGAATGAGAACACTAGTTCTTCACTTCAGTTCTGCTGTCATGAGGATCGAGTACCTGTAGAGCTCTATCATAGGGCTACAGGTAACACTCTTGTATAAACTGGAGCAAAAATGTTTGCCACAGTCCAGACCCTGAAATAAAATGGACATTTAGCAAAAGATGACCATTTTCAAGGTTACATCCGGAGTGGGAAGAAAACACCACAGATTTTGCATCTTTGTGGCGTATCTTGAAGATGTTCCAGCAAAGTCATCAGTTTGGACTGTGCCCAACAGATTTGTACAAGGGGAAAGAATAAGAGGAAAGAAAATGAACTCCTTATTCTATCCCACTCCACCAAAATGCAATCACATCCATGGATTTTGTCAGAGG +>URS0001BF4730 lncRNA from 10 species +ctggtccctaagcccttccagcccaggagccagacctgtgagcaaacaagcctttagtgattccaggctctggctggaaccttgagtcttctcagctTGGGGCATGCACCTCAGGGGGAGCCAGCATCAGTGTCCAGCCCCAAGAGCTTCCCTGTACGTCTCAGTGAGTCTTCACATGCCTCCAACTGCCTGGACAACCACACGTGATACCTGTCCTGCCAAACGTGtcctgaacccataaaatccagagaaaagaaaatcgttttaaactgctgaggtttggggtctttcctgtgctgttttcgtgatagtgaatgagtgtcacgagatccgatggttttaaaaacgggagtttcctgcataagctctctctctgcctgctgccatccatgtaagatgtgactcgctcctccctaccttccgccgtgattgtgaggcgtccccagccatgtggaactgtaagtccattaaaccttcttcctgtgtaaatta +>URS0000115D96 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAATGGATTAAGAGCTTGCTCTTATGAAGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCCATAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATAATATTTTGAACCGCATGGTTCGAAATTGAAAGGCGGCTTCGGCTGTCACTTATGGATGGACCCGCGTCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTGCTAGTTGAATAAGCTGGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGC +>URS00009CA41E rRNA from 1 species +GGCGGACGGGTGAGTAATGCTTAGGAATCTGCCTATTAGTGGGGGACAACATTCCGAAAGGAATGCTAATACCGCATACGTCCTACGGGAGAAAGCAGGGGATCTTCGGACCTTGCGCTAATAGATGAGCCTAAGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCTGTAGCGGGTCTGAGAGGATGATCCGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGGAACCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTATGGTTGTAAAGCACTTTAAGCGAGGAGGAGGCTACTGAGACTAATACTCTTGGATAGTGGACGTTACTCGCAGAATAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCGAGCGTTAATCGGATTTACTGGGCGTAAAGCGTGCGTAGGCGGCTTTTTAAGTCGGATGTGAAATCCCCGAGCTTAACTTGGGAATTGCATTCGATACTGGGAAGCTAGAGTATGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGATGGCGAAGGCAGCCATCTGGCCTAATACTGACGCTGAGGTACGAAAGCATGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGTCTACTAGCCGTTGGGGCCTTTGAGGCTTTAGTGGCGCAGCTAACGCGATAAGTAGACCGCCTGGGGAGTACGGTCGCAAGACTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGT +>URS0000EF3AE3 lncRNA from 1 species +CCCTGATGGTGCAGAGACTGTCACGTAAACTGCCTCAGCTTTCTGGGGACTGTTCTGGAGTGCTCACCTACACTAGGCTTGGGGACCATGTTGGTGCCATTTCCCCAGACTGGGTACTGACCTCTTCACAGTTCCCGTGGCGCCTGAAGGACTGGAGAGTTTATGTTCCCATGTCTCCTCTGGGTGTTGGCCAGAGCTGTGATCACCATGACGGGAATCCTCCTTATTTGCTCCTTAAGCAAATAATCCTTGTGTTTTTGATTATGCCCTTAATCTTTGTCCTGAACTGCTGATCTTCAGAGGGACCCAGGAGAAGATGAGTCCAC +>URS000081BA44 rRNA from 1 species +ATTGAACGCTGGAGGCATGCTTAACACATGCAAGTCGAACGGCAGCATGATGTGTAGCAATACACATTGATGGCGAGTGGCGGACGGGTGAGTAACGCGTAGGAATCTGCCTTGAAGAGGGGGACAACCCGAGGAAACTCGGGCTAATACCGCATAATATCGAGAGATTAAAGTCTGGGTGGTAACACCTGGAGCTTCAAGAGGAGCCTGCGTCCGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGATGATCGGTAACTGGTCTGAGAGGATGACCAGTCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGGACAATGGGGCCAACCCTGATCCAGCGATGCCGCGTGTGTGAAGAAGGCCTC +>URS0000CE0126 antisense_RNA from 1 species +TCCTTCCCTTCCGGAGCCCGGGGTAGGCGAGAAGCAGGCAAGGGCGCGGAGGATGGAATCTCGCTCTGTCTCCCAGGCTGAAGTGCAATGACGCAATCTCGGCTCAATGCAGCCTCCGCCTCCCAGGTTTAAGCGATTATCCCGCCTCAGTCTCACAAGTAGCTGGGATTACAGGTGCCCACCACCACGCCCAGAAGTGCATTTCGCCTCCCGCCATGATTCTGAGGCCTCCCCAGCCCTGTGAAACCGTAAGTCCAATTAAACCTCTTTTTCTTCCCAGTCTCAGGTATGTCTTTATCAGCATCATGAAAACGGACTAATACACTATTCTTAATTGATATGCCAACACAAATATAGAGACACATAGCAACATATATACACAAAATGCAAACAAAATTACTTGCAGCTTTAAGTAGATCTAAGTATACTTTTCCTTCTTCAGTGGGAACAAAGGTGTTGTAATTG +>URS00006C0526 Y_RNA from 2 species +AGCTGGTTCGAAGATAGTGTTATCTCAATTAACTGTTCACAGTCAGTTACAGATCAAACTCCTTGTTCTACTCTTTCCCCCTTTCTCACTACTGCGCTTGACTAGTCTAGA +>URS00015EBCF0 rRNA from 1 species +TACGTAGGGTGCGAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCACGTAGGCGGATTGCTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGGCGATCTTGAGTCCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGGTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS00016A2BA6 rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGGAACCCTGATCCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGAAAATGATGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGTTGGCAAGCGTTGTCCGGATTTACTGGGTGTAAAGGGCGTGCAGCCGGGAAGACAAGTCAGATGTGAAATACCGCGGCTCAACCGCGGAACTGCATTTGAAACTGTTTTTCTTGAGTATCGGAGAGGTAATCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAAGAACACCAGTGGCGAAGGCGGAGTACTGGACGACAACTGACGGTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTC +>URS000112369F rRNA from 1 species +TACGGGGGGAGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCGCGTAGGCGGCAAGGCAAGTCAGGTGTGAAAGCCCCGAGCTTAACTCGGGAATTGCATCTGAAACTGCTGTGCTTGAGTTCTGGAGGGGGTAGTGGAATTCCCAGTGTAGCGGTGAAATGCGTAGATATTGGGAGGAACACCTGCGGCGAAGGCGGCTACCTGGACAGAAACTGACGCTGAGGCGCGAAAAGCTAGGGGGAGCGAACGGGG +>URS00022A0584 misc_RNA from 1 species +GAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGTATTCTGGCGGGCATGTCTGTCCGAGCGTCATTTCAACCATCAAGCCCCCGGGCTTGTGTTGGGGACCTGCGGCTGCCCGCAGGCCCTGAAAACCAGTGGCGGGCTCGCTGTCACACCGAGCGTAGTAGCAATCACCTCGCTCAGGGCGTGCTGCGGGTTCCGGCCGTTAAACAGCCTTACAAAACCCCAGGTTGACCTCGGATCAGGTAGGAAGACCCGCTGAACTTAAGC +>URS0000E790F2 lncRNA from 1 species +ATGCAAACTTTGCCCGAATTTTGCTACTTAAAATGCCTTAGCGATAAAGTAAATGTTACTAAAATTATTAACCGAAATATAACAAAACTAAAGCTAGATGGATTTATCGAATTGGATCGTGAGATAGAGGATTTTACGAAATTAAGAAATTCAATTGTTAATGAACAATATAAAGGGTTGACAGAAAAATTATTTCAAGCACACAAAGAATATTTATTTTATTTTGATACTTTTTTAAAAAAAAAACTATTAAAAGATGAAAATAAAGTATTATATACTAATGATTGTTTTGATAGAACAAAAAAGGTTGAATACAATTTTGAAAACGAAATAGTTATTGTTATATATAATATAGGTTTTATTACTACAGCTATATTAAAATCTAAAAAAAAAGACAAGGATGTAAAATTATTAAATAAATTGTCACAAGAAGCAATAAATATTTTTAATTACTTATTCCAAAGTATTATTAATGAAACTTACAATGACTTAAGTGACATAAATTGTTTAAGTTGTTATGTATTTTTAAATTTATCATTAGCTTATCATGAACATTTATTTTATAATACAGCTTTGGCAAAAAAATATAAAAGAAATTTATTAGCAAAAATATCATATAATATATATAGTTATTTTAATAATATGTTAAATTGTTTAGATGGTAAAAAATTAGATGTATTTACAAAAATGGATGCATTTGTTAATGCAAAAAATAATCTTATATTAACTCTTCGAAATAGTAATAGTCTTCTTTATAACTTTATATATGTAAATAAATTAATTTTTTTAAGTATTACCAATTATCAAACAACTTTAAAATACTGTCAATTAAACCCAAATAGTGAAGAAGTAGTAATACAAAAATATGAAGAAGAAAAAATAGGAGAAATTATATCTAGATTACAATTTAGTACAGAAAATATAAAGAAAGCAGAAGATTTAAGTAAAAAATATAATTTACATATTAATGCTGAAATGTTGAAACAAAAAATAAACAATGCTTTAGTTTTTTTTGAAAAAGATAATAAAAATATATATTTTGAGTCAATACCAGAATATAGTACCTTAGACAGTTTAAAAGGAACAGAAATTGTAAAAATACCAGATCCTAATATATCAACTATTTATTTGAAAAAAGAAATCAGTAATAATTTAAAATTATTATTTAATGAAAAAGCAAAAAATATATTTGACGAATATAATACAGAGGCTTGTAAAGTACATGATTTATATGAAAAACATCTTAGCAGTTTAAAAGATCAATATAAATTAATTAATTTATCTTATCGAAAAAATATATTTACAATTCTTAATAATGTACTTTTAAATATATATAATACATTAAAACAATCATATAATCCTACTATATATGATAAAAATTTACATTTTTTAATGGATGTTGAAAAAAATTTAAATTTAACACTAAACCAAATCGAAACAAGTTTAAACACAGAAAATTCTAATCACTTGAATTTCCAAAAAATGTATACCAATATAGGCGTTAACCAAGACTCGTTAAATTCTTATAAAAAATATGTTTACCATTTAAATAACTTTAAAAAAATATTAACCGAAATAACAACTAATATAGTTGAATTTAAAAGTTTTCTTGAAAATAATTATTATTATTTACAACTATGTGAAATGAATGTTTCTAATTTTTTTAAACATATGATAGACGAACTTAACTCCAATTCAAATACATGTGTTGAATCCTTTGATAGCGATTATACATTTTATAAGAACTTATTATCAGAAGAAAAAGAAAAAGAAAACGAAGAAGAAACAAAAGAAGAAACAAAAAAAATGAAAAATAATACATCATCAACAACAACAGCAGCAGAAGCAACAACAACAGCAGCAGCAACAACATATATGAACGAACAAAAAGTAATACTACCAGCTTCACCACCACCATCACTTACCAATAATATTCCTAAATTAACATATTCTAACTTTCACAAATTTTTAAAAAAAAACAATATATCAGTTACTGCGTCAAGTAGTATTAATAATAGTAGTAATATAAAATATTTTGAAATTTTAAAAAATTATATAAATATACATTCAGAAGAAAAATTATATTTTACAATAAATGCTATTTACTTTTCTATGAATATCCAATTAGAACAATTTTCAAACGACCTTGCAGAGATTAAAGGATATATGCAAAATTCATTTTTAAATTTAATAACGGTAATGATATAA +>URS0001C1D8E2 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGATAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGACGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS000183E284 rRNA from 1 species +TACGAAGGGAGCTAGCGTTGTTCGGAATCACTGGGCGTAAAGCGCACGTAGGCGGATTTGTTAGTCAGGGGTGAAATCCCGGGGCTCAACCTCGGAACTGCCTTTGATACTGCAAATCTCGAGTCCGGAAGAGGTGGGTGGAATTCCTAGTGTAGAGGTGAAATTCGTAGATATCAGGAGGAACACCGGTGGCGAAAGCGGCTTCCTGGCCCGACACTGACGCTCATGTACGAAAGCGTGGGGAGCGAACAGG +>URS0000164332 rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATACCGCGTGTGTGAAGAAGGCCTGAGGGTTGTAAAGCACTTTCAATGGGAAGGAATACCTACCGGCCAATACCCGGTAGACTGACATTACCCATACAAGAAGCGCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAGGCGTGCGTAGGCGGCTTGTTCAGTCAGATGTGACAGCCCCGGGCTTAACCTGGGAACTGCATTTGATACTGGCAGGCTAGAGTTTAGTAGAGGGGAGTGGAATTTCAGGTGTAGCGGTGAAATGCGTAGAGATCTGAAGGAACACCAGTGGCGAAGGCGGCTCCCTGGACTAAAACTGACGCTGAGGTACGAAAGCGTGGGTAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCAACTAACTGTTGGGTTCTTAAAGAACTTAGTAGTGGAGCTAACGTATTAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACCCTTGACATGTAGTGAACTTTCCAGAGATGGATGGGTGCCTTCGGGAACACTAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTATCCTTAGTTGCCAGCGGGTAATGCCGGGAACTCTAGGGAGACTGCCGGTGATAAACCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGGCCCTTATGGGTAGGGCTACACACGTGCTACAATGGTCGGTACAGAGGGCAGCAAACTCGCGAGAGCCAGCAAATCCCAAAAAGCCGATCCTAGTCCGGATTGCAGTCTGCAACTCGACTGCATGAAGTCGGAATCGCTAGTAATCGCGGATCAGAATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGT +>URS00013EF64C rRNA from 1 species +GACAGAGGATGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCTGTAGGTGGCTTTTTAAGACCGCCGTCAAATCCCAGGGCTCAACCCTGGACAGGCGGTGGAAACTACCAAGCTGGAGTACGGTAGGGGCAGAGGGAATTTCCGGTGGAGCGGTGAAATGCGTAGAGATCGGAAAGAACACCAACGGCGAAAGCACTCTGCTGGGCCGACACTGACACTGAGAGACGAAAGCTAGGGGAGCGAATGGG +>URS00016C3B12 rRNA from 1 species +TACGAAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGGGTGCGTAGGCGGTTCGGTAAGTCGGATGTGAAAACTCAGGGCTCAACCCGGAGACGCCATCCGATACTGCTGTGACTTGAGTCTGGTAGGGGAACACGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCAAAGGCAGTGTTCTGGGCCAGTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCAAACAGG +>URS0000F147F0 rRNA from 1 species +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGCCAGATGTGAAATCCCCGGGCTCAACCTGGGAATGGCATTTGGGACTGCAAGGCTGGAGTACGGCAGAGGAGACTGGAATTCCTGGTGTAGCAGTGAAATGCGTAGAGATGTGGAGGAACACCGATGGCGAAGGCAGCCTCCTGGGCCAGCACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS0000104AE7 rRNA from 1 species +GAGCTCGTAGGCGGTTTGTCGCGTCTGCCGTGAAAGTCCGAGGCTCAACCTCGGATCTGCGGTGGGTACGGGCAGACTAGAGTGATGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGGTCTCTGGGCATTTACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGTTGGGCACTAGGTGTGGGGGACATTCCACGTTTTCCGCGCCGTAGCTAACGCATTAAGTGCCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGAAGAACCTTACCAAGGCTTGACATGTTCCAGACCGCCTCAGAGATGGGGTTTCCCTTCGGGGCTGGTTCACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTTCCATGTTGCCAGCGGGTTATGCCGGGGACTCATGGGAGACTGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGTCTTGGGCTTCACGCATGCTACAATGGCCGGTACAATGGGTTGCGATACTGTGAGGTGGAGCTAATCCCTAAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCCCATGAA +>URS0000D394E6 rRNA from 1 species +CACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGAGCTTAACTTGGGAACTGCATTTGAAACTGGCAAGCTAGAGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGAAAATTTGACGGA +>URS0002160948 rRNA from 1 species +TGCTGGAGGTATCAGAAGTGCGAATGCTGACATAAGTAACGATAAAGCGGGTGAAAAGCCCGCTCGCCGGAAGACCAAGGGTTCCTGTCCAACGTTAATCGGGGCAGGGTGAGTCGACCCCTAAGGCGAGGCCGAAAGGCGTAGTCGATGGGAAACAGGTTAATATTCCTGTACTTGGTGTTACTGCGAAGGGGGGACGGAGAAGGCTATGTTAGCCGGGCGACGGTTGTCCCGGTTTAAGCATGTAGGCTGATTGTCCAGGCAAATCCGGATAATCAAGGCTGAGGTGTGATGACGAGGCACTACGGTGCTGAAGTAACAAATGCCCTGCTTCCAGGAAAAGCCTCTAAGCATCAGGTAACATCAAATCGTACCCCAAACCGACACAGGTGGTCAGGTAGAGAATACCAAGGCGCTTGAGAGAACTCGGGTGAAGGAACTAGGCAAAATGGTGCCGTAACTTCGGGAGAAGGCACGCTGGTGTGTAGGTGAAGTCCCTGCGGATGGAGCTGAGACCAGTCGAAGATACCAGCTGGCTGCAACTGTTTATTAAAAACACAGCACTGTGCAAACACGAAAGTGGACGTATACGGTGTGACGCCTGCCCGGTGCCGGAAGGTTAATTGATGGGGTTATCCGTAAGGAGAAGCTCTTGATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAATGATGGCCAGGCTGTCTCCACCCGAGACTCAGTGAAATTGAACTCGCTGTGAAGATGCAGTGTACCCGCGGCAAGACGGAAAGACCCCGTGAACCTTTACTATAGCTTGACACTGAACATTGAGCCTTGATGTGTAGGATAGGTGGGAGGCTTTGAAGCGTGGACGCCAGTCTGCGTGGAGCCAACCTTGAAATACCACCCTTTAATGTTTGATGTTCTAACGTTGGCCCCTGACCGGGGTTGCGGACAGTGTCTGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCCAAAGCGTAACGGAGGAGCACGAAGGTTAGCTAATCCTGGTCGGACATCAGGAGGTTAGTGCAATGGCATAAGCTAGCTTGACTGCGAGCGTGACGGCGCGAGCAGGTGCGAAAGCAGGTCATAGTGATCCGGTGGTTCTGAATGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATACCGCCCAAGAGTTCATATCGACGGCGGTGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGTAGGTCCCAAGGGT +>URS00025841D4 rRNA from 1 species +GCGCAGATGACTCGCTACTGAATCAACTAAAACATAAAACAAAATATTTAGTTGATAATGTAAGAAGAAAATAATGATATTATCTTATGTTTAGTGTCGTCTAAAACTGGTGCCAGAAGACTCGGTAAGGCCGGAGACGCAAACGTTAGTCATCCTTATCAGGCGTAAAGGGTTTGTAGGCTGCTTTGAAAGTTTCTATCTTTTAAATTAATTAAAAAATGGGGCGAAGCTCGGTTATAACTAATTATCTTTAAAATATAATAAAATAGAAATAAATTAAAGCTAGAATCTAATAGAGGTTATATTGAATAATACTTAGTTTAGGTCTAATATCCTAATAGATTAAGGGGAATATTAAAAGCGAAGGCTTCTCTCCACTATAGATTGACGCTGAGAAACGAAGGTGAGGAAAGGAAATAGGATTAGATACCCAAACTACCCCTCACTGTCAACGATGAATGGTAGTCATTAGTGCATATTAGTGACGTAGTTAACACAATTACCATTCCGCCTTGTTAGTAAGACTGCAAAGTTAAAAACAAAAAAATTAGTCGGTTTCGGAGTAAACGAAGTGAAGCATGTTATTTAATTCATTAAATCCGCAAA +>URS0001424B59 rRNA from 1 species +CTACGGGCCGCAGCAGTGGGGAATATTGGACAATGGGGGAAACCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTGCGGGTTGTAAAGCACTTTCGGTTGGGAGGACTGCTTCTAGCACTAATATTGTTGGAAGTTGACGTTACCTTCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGCTAGATCAGTCGGGTGTGAAGGCCCCGGGCTTAACCTGGGAACTGCATCCGATACTGTCTAGCTAGAGTACAGGAGAGGAGAGTGGAATTCCACATGTAGCGGTGAAATGCGTAGATATGTGGAGGAACACCAATGGCGAAGGCAGCTCTCTGGCCTGATACTGACGCTGAGGTGCGAAAGCGTGGGGAACAAACAGGATTAGATACCCCTGTAGTC +>URS0000AE892D rRNA from 1 species +TCGAGAATCATTCACAATGGGGGCAACCCTGATGGTGCAACGCCGCGTGGAGGATGAAGGTCTTCGGATTGTAAACTCCTGTCATCTAGGAGCAAGACCTGGCGCTGAATCGTCGACAGGGTTGATAGTACTAGAAGAGGAAGGGACGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGTACCGAGCGTTATTCGGAATCACTGGGCGTAACGGGAGCGTCGGCGGCGTGGGCAGCAAGATGTG +>URS0000ECDF55 rRNA from 1 species +TAGATACCCTGGTAGTCCACGCCGTAAATGGTGAGTGCTAGGTGTCGGGAGTCAAATCTCGGTGCCGACGTTAACACATTAAGCACTCCGCCTGGGGAGTACGCACGCAAGTGTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCAGCGGAGCATGTGGTTTAATTCGATGCAACGCGAAAAACCTTACCAGGACTTGACATATGGATGCCCGGTATAGAGATATACCCTTCTTCGGAACATTCAT +>URS000188AE03 rRNA from 1 species +ACTACGGGTGGCTGCAGTGGGGAATATTGGGCAATGGGCGCAAGCCTGACCCAGCAACGCCGCGTGAAGGAAGAAGGCTTTCGGGTTGTAAACTTCTTTTCTCAGGGACGAAGAAAGTGACGGTACCTGAGGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGATTTATTGGGTGTAAAGGGCGTGTAGGCGGGAGCGCAAGTCAGATGTGAAAACTCAGGGCTCAACCCTGAGCCTGCATTTGAAACTGTGTTTCTTGAGTGCTGGAGAGGCAATCGGAATTCCGTGTGTAGCGGTGAAATGCGTAGATATACGGAGGAACACCAGTGGCGAAGGCGGATTGCTGGACAGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCGTGTAGTC +>URS000107BACB rRNA from 1 species +TGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGCGGGAAGAAGGCCTTCGGGTTGTAAACCGCTTTTGTCAGGGAAGAAATCTTCTGAGTTAATACCTCGGGAGGATGACGGTACCTGAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGACAGAGGTGAAATCCCCGGGCTCAACCTGGGAACTGCCTTTGTGACTGCAAGGCTTGAGTGCGGCAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGGCCTGCACTGACGCTCATGCACGAAAGCGTGGGGAGCAAAACCAGGATTAGATAGCCCCTGGGTAGTCCACGCCCTAAAACGATGTCAACTGGTTGTTGGGAAGGTTCCTTCTCAGTAACGTAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTGAAAC +>URS00003DBB63 rRNA from 1 species +AGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGGTTTCGGCTCGTAAAGCTCTGTTGGTAGTGAAGAAAGATAGAGGTAGTGACTGGCCTTTATTTGACGGTAATTACTTAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTTGGCGTAAAGCGCGCGCAGGCGGATTGGTCAGTCTGTCTTAAAAGTTCGGGGCTTAACCCCGTGATGGGATGGAAACTGCCAATCTAGAGTATCGGAGAGGAAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAAGAACACCAGTGGCGAAGGCGACTTTCTGGACGAAAACTGACGCTGAGGCGCGAAAGCCAGGGGAGCGAACGGGATTAGATACCCCGGTAGTCCTGGCCGTAAACGATGGGTACTAGGTGTAGGAGGTATCGACCCCTTCTGTGCCGGAGTTAACGCAATAAGTACCCCGCCTGGGGAGTACGACCGCAAGGTTG +>URS0002247035 tRNA from 1 species +GCACCGGTCGTATAGTGGCTAGGTATTTAGTACCACACAAATTATCTCGGCCTTCCAAGCCGATAACCCGGGTTCGAATCCCGGCCGGTGCA +>URS0000B6A44E rRNA from 1 species +GTGTCAGCAGCCGCGGTAATACGTAGGCAGCGAGCGTTGTTCGGAGTTACTGGGCGTAAAGCGTGCGTAGGCGGCAGTCCAAGTCTGGTGTGAAATCTCCCGGCTCAACCGGGAGGGTGCGCCGGAAACTGGGCTGCTGGAGTGCGGGAGAGGTAAGCGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAGGAACACCTGCGGTGTAGACGGCTTACTGGACCGCCACTGACGCTGAGGCACGAAAGCGTGGGTAGCAAACAGGATTAGATACCCTGGTAGTCC +>URS00008315DC rRNA from 1 species +GTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGGGAAGACGGTTTTCGGATTGTAAACCTCTGTCTTTGGTGAAGAAAAAAATGACGGTAGCCAAGGAGGAAGCTCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGAGCGAGCGTTGTCCGGAATTACTGGGTGTAAAGGGAGCGCAGGCGGGAAGACAAGTCAGCTGTGAAATACATGGGCTCAACCCATGGACTGCAGTTGAAACTGTTTTTCTTGAGTGGAGTAGAGGTAGGCGGAATTCCGAGTGTAGCGGTGAAATGCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCCTACTGGGCTCTAACTGACGCTGAGGCTCGAAAGTGTGGGGAGCAAACAGGATTAGAAACCCTAGTAGTCC +>URS00014517AB rRNA from 1 species +TACGTAGGGGGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGTTGGGTAAGTCGGGTGTGAAAACTCAGGGCTCAACTCTGAGACGCCACTCGATACTGCTCTGACTCGAGTCCGGTAGGGGAGCGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCGCTCTGGGCCGGAACGGACGCTGAGGAGCGAAAGCGTGGGTAGCAAACAGG +>URS00009B6ECF lncRNA from 8 species +GATCATCTGAGGTCGGGAGTTTAGACCAGCCTGGCCAACATTGTGAAACCCCATCTCTACTAAAAATACAAAAATTAGCTGGGTGTGGTGGCGCACACTTGTAATCCCAGCTACTTGGGAGGCTGAGGCAGTAGAATCACTTGAACCTGGGAGGCGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTGCACTCCAGCCTGGGCAACAGAGGGAGACTCCATCTCAAAAAGAGAAAATAATTATAAAAGTTGCTTTAAAATCCTTGCTGCTAATTCCCAAGATTAGAAATTCCAACATCTGAGTCATAACTTTTTCTCTTTGGGAGTGAGTTTTGAGTATGATTCCATTTTCTGTTTCTTCATATGCCTAGTACTTGTTTATTGTAGCTGGACATTGTCAAGACTATGGATTTTGTTATGTTCCTCTGAAGAGTGTTAATTTTGTTCTAACAGGCAATTAACCTGGTTGGACTGAAACTCCAATCTTTGTGAAAGGCAGTAGCTGGAATTCCTACTCTGTTCTTGCTCCCAGCTGCTGATTTTACTGGGACTCCTGGAGACTCCTGCGCATATGTGCAGTTGGACAACCAAGGATTTGGACAGAGTTTATATACAGATTTTGGGACTTGTTTGCTCTATAGAATTTCTTTCTGTGAGTTCCCTCTTAATTTTCCAGCCACACTTCTCGCCTAGAACTCTGTACTCGGCACCTCAAACCAGTAAGACCGTAGCTTTCTATGCATTTCCACCTCCCACACAAATTACAGAGTGCCCTCACACAAATAACCACAAAAATATAAGTCTAGTACAGGGCAGCTCCCACCTTTCAAGAGTTGATTTTCCTCACATTTCTAATTGCTGTTAGGTGTTCTTTAGTGCCTTCAAATATTTGGGTTTGGTTGTTGTTTATTTTATTCAGGTTTTTGGTTTTTTGTTTTGGTTTTGTTTTGAGATGGAGTTTTGCTCTTGTCGCCCAGGCTAGAGTGCAATGGCACGATCTGAGCTCACTGCAACCTCTGCCTCCCAGGTTCGAGTGATCCTCCTGCCTCAGCCTCCTGAGTAGCTGGGAATACAGGCATGCACCACCACGCCTGGGTAATTTTTGTATTTTTAATAGAGACAGGGGTTTCACCATGTTGACCAGGCTGGTCATGAATTCCTGACCTCAGGTGATCCACCTGCCTCGGTCTCTTAAAGTGCTGGGATTACAGGTGTGAGCCACTGTGCCCAGCCAGGTTTTTTGTTGTTGTTGTTATTGTTTTGTTTTTAAGAGACAGGATCTTGCTTTGTTGCCCAGGCTGGAGCACAGTGGTATGATCATAGCAAACTGCAGCCTTGAACTCCTGAGCTCCAGCAATCCTCCTGCCTCAGCCTCCCAAGTAGCTGGGACTACCAGCGCATATCACCATGCCTAGTTAATTTTTTGAAAACTATTTTGATAGAGATGGAGTCTTGCTGTGTTGCCCAGGCTGGTCTTGAACTCATGGCCTCAAGCGATCCTCTCACCTAAGTCTCCAAAGGTGCTAAGATTACAGGCATGAGCCACTGTACCTGGCCTTGTTTCAGGTTTTTTTTTGTTTTTGTTTTTGTTTTTGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNACTTCCTGGGTTCAAGTGATTCTCCTGCCTCAGCCACCCGAGCAGCTGGGATTACAGGTGTGCACCACAAGCCTGGCTAATTTTTTGTGTATTTTTAGTAGAGATGAGGTTTCGTCATGTTGGCCAGGCTGGTCTCAAACTCCTGACCTCAAATGATCTGTCTTCCTCAGCCTCCAAAAGTGCTGGAATTACAGGCGTGAACCACGGCACCTGGCCCTTGTTTCAGTTTTATAATTGCTATCTGAGGCATGATTATTCTGACCAAATTATTGTGCTATTAGGGAAACCATTTGTTTAAGTTCACATAGCTAGTTTGTGGAAGAGCCAAAATCTAAAACCAGTCAGATTACATAATCCTATGCTTGCTCCAGTTCACCACTATTCCTAAACACCTCAAGGTGGTTTGGATTCCAGCCTAGAGCCCTCTGGAAAGTATTTGGGGCTGGAAGGAGGAAAGAGCCCTCAAAACTCCTATTCAGGCTAGGGCAGTAGTTGCCCAGGCTGGAGTGCAGTGGAACAATCTTGGCTCACTGCAACCTCTGCCTGCCGGGATCAAGCAATTCTCCTGCCTCAGACTTCTGAGTAGCTGGGATTACAGGCGTACACCACCAAGCCCAGCTAATTTTTGCATTTTAATAAAATCACAAAGCCAGACTTAGATAGTTGAAAGTGCCCACCTCTGTTCCTGAGAGTTGGGCCTGAGACAGAGGATTCTAAGTGGAAACCACGCTCAACTAAGAGGACCCAAGAAAGGCAAGTTCTTTTTAAAAATTTTTTTTTCATTTTTTGTCTCTCTCTGTCACCCAGGCTGGAGTGCAATGGTGCAATCATGGCTCACTGCAGCTTTATCCTCCTGGGCTCAAGCCATCTTCCCACCTCAGCCTCCCAAGTAGCTGGGACTACAGGCACATGCCACCATGCCTGGCTAATTTTTATATTTGTTGTAGACAAGTTTTCACCATGTTGCCCAGGCTAAGTCAAACTTTTCTTTTTTTTCTATTTTTTATTTTTTTTAATTATTATTTTTTGAGATGCAGTCTCGCTCTGTCGCCCAGGCTGAAGTGCCATCTCTGCTCACTGCAAACTCCACTTCCTGGGTTCCTCAGCCTCCCGAGTAGCTGGGACTACAGGTGCCTGCCACCACGCCCAGCTAATTTTTTGTATTTTAATAGAGACGGGGTTTCACCGTGTTAGCCAGGATGGTTTCGATCTCCTGACCTCGTGATCCACCCGCCCGCCTCGGCCTCCCAAAGTGCTGGGATTACAGGCATGAGCCACTGCGCCTGGCTCAAATTAGATTTCTATATCCAGTAACAGTATCCTTCAAAAATGAAGACAAAACAGAGACATTGTCAAATAAACAAAAACTGAGTTT +>URS00011F5567 rRNA from 1 species +GATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGTGAACGAGGGAGCTTGCTCCCTCCGGATCAGTGGCGAACGGGTGAGTAACACGTGAGCAATCTGCCCTGGACTCTGGGATAAGCGTTGGAAACGACGTCTAATACCGGATACGAGACGCGAAGGCATCTGCAGCGTCTGGAAAGAACTTCGGTCCAGGATGAGCTCGCGGCATATCCGTGAGTTGGTGAGGTAACGGGTCACCAAGCCTACGACGGGTAGCCGGCCTGAGGGGGTGACCGGCCACGCTGCAGCAGAGATACGGCCCAGACTGCTACGGGAGGCATGAGTGGGGAAGGTTGCACAATGGGCGCAAGCCTGATGCAGCAACGCCGCGTAGGGGACGACGGCCTTCGGGTTGTACACCTCTTTTAGCAGGGGAGACGCGAAAGTGACGGTACCTGCAGAAAGAGCACCGGTTAACTACGTGCCAGCCGCCGCCGTAACAC +>URS0000FFF241 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGCTTCTTAAGTCGGTGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTCGATACTGGGAAGCTCGAGTCCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGG +>URS0002017531 rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGACCTTCGGGTCTAGTGGCGCACGGGCGCGTAACGCGTGGGAACCTGCCTTTAGGTTCGGAATAACTCAGAGAAATTTGAGCTGATACCGGATGATGTCTTCGGACCAAAGATTTATCGCCTTTAGATGGGCCCGCGTTGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCATAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGAGATGATAATGACAGTATCGGGAGAATAAGCTCCGGCTAACTCCGTG +>URS0000DCAE13 sRNA from 1 species +GCAACCCGATGTCGGGGGCTTGGGCGGAAGCCCACGTTGCCCGACAAAAAACGTACCCCCGGCGCGGTCTGCGCCAAGGAATCGAAATGAAGCAACGTGAGCAGTCCGCCCCGTTCGCGGGAAGTGGACGGCAACACGGTCTTCCAATGTATACTAAACGACTCTCGGCAACGGATATCTCGGCTCTCGCATCGATGAAGAACGTAGCGAAATGCGATACTTGGTGTGAATTGCAGAATCCCGTGAACCATCGAGTTTTTGAACGCAAGTTGCGCCCGAAGCCATTAGGCCGAGGGCACGCCTGCCTGGGCGTCACGCGCTCCGTCGCCCCGCAACCCCGAACCCCGAAACGGGCCAGGGTACTTGTGGTGCGGAGATTGGTCTCCCGTGTGCCTTGCTCGCGGCTGGCCTAAAATTGAGTCCCGGGCGCTCTGTTCTGCGGCCGACGGTGGTTGAGAAGCCCTCGAAATTGTGCTGCTGCAGTGCTGCCCGATGCGGACCCTGTGACCCTTGCGCGACCTCTCCCCTTGGGGTGAGGGAGCTCCATCTGA +>URS000109E99B rRNA from 1 species +TACGAAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGTGAGTTAAGTCTGTCGTGAAAGCCCCGGGCTCAACCTGGGAATGGCGATGGATACTGGCTCGCTAGAGTGCGGTAGAGGAGAGTGGAATTCCCGGTGTAGCAGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0001484F89 rRNA from 1 species +CCTACGGGTGGCTGCAGTGGGGAATATTGGGCAATGGAGGCAACCCTGACCCAGCAACGCCGCGTGAATGATGAAGGCCTTCGGATTGTAAAGTTCTTTTCTTCGGGACGAAGAAAGTGACGGTACCTTAGGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGAGGCAAGCGTTATCCGGAATGACTGGGCGTAAAGGGTGAGTAGGTGGTTGGACAAGTTAGACGCGAAATTCCGGGGCTCAACCCTGGAACTGCGTCTAAAACTGTTGGTCTTGAGTGAAGGAGAGGCAGTCGGAATTCCGGGTGTAGCGGTGGAATGCGTAGATATAAGGAGGAACACCAGTGGCGAAGGCGGATTGCTAGACTGTAACTGACACTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCAGTAGTC +>URS0002155384 rRNA from 1 species +TCAAGTTACTAAGGGCATGTGGTGGATGCCTTGGCGCCTGGAGCCGATGAAGGACGTGGCGTGACTGCGAAAATCCCTGGCTAGCTGTCAAGCGAGCTTAACCGGGGGTATCCGAATGAGGCAACTCAGCTCAATTTTATTGAGTTACCGCTGATTGAACACATAAATCAGATGGAGGGAACCGGGGGAACTGAAACATCTAAGTACCCTGAGGAATAGAGATTATTCCCTTAGTAGCGGCGAGCGAACGGGGAACAGCCCAAACCGTCTTCTGCGGAAGGCGGGGTTGTAGGACAGTTCATATGGAGTTACAAATTGTTTCGATAGCTGAAGCGCCTGGGACGGCGTGCCACAGATGGTGACAGCCCAGTAAGTGACATTGAAACAACTCCGAGCTGTATCCTGAGTAGTGCGGGACACGAGAAATCCCGTATGAATCTGGGAAGACCACTTTCCAAGGCTAAATACTCCAGGCGACCGATAGCGTATAGTACCGTGAGGGAAAGGTGAAATAGTACCCCGAGAGGGGAGTGAAATAGTTCCTGAAACCGCATGCTTACAAGCAGTTGGAGCCAGTTCGTTCGCGAATTGGTGACAGCGTGCCTATTGAAGAATGAGCCAACGAGTTACGTTCAGTGGCAAGGTTAAGCGATGAGAGTCGTGGAGCCGTAGCGAAAGCGAGTCTTAAAAGGGCGAAAGTGGCTGGACGTAGACCCGAAACCGAGTGATCTACCCATGGGCAGAGTGAAGCGGGAGTAATGCCCCGTGGAGGCTCGAACCTTCCTGAGCTGCAAATCAGTTGGATGACCTGTGGGTAGCGGAGAAATTCCAATCGAACTCGGAGATAGCTGGTTCTCCTCGAAATGTATCTAGGTACAGCCTCGTGTGTTTTCTTCTGGGGGTATGGCTCTGAATGGACTAGGGGGCATAGCGCTTACCAAACCCAATCAAACCGGGAATACCAGAAGATTAGAACGCGGGAGTGAGACTGTGGGAGCTAACTTCCATGGTCAAGAGGGAAACAACCCAGACCCCCGGCTAAGGTCCCTAAATCCATGCTCAGTGTGCAAGGATGTCCAGTTGCATAGACAACCAGGATGTTGGCTTAGAAGCAGCCACCATTTAAAGAGTGCGTAACTGCTCACTGGTCGAGTGGCCGGGCGCCGACAATGTAACGGGGCTCAAGCATGGTACCGAAGCTAGGGGACCGCTTTTTAGCGGTCGGTAGAGGAGCGTTCTGTATGCGATGAAGCTGTGCGGGTGACCGTCGGTGGAGCGTACAGAAGTGAGAATGTTGGCATGAGTAGCGAAATTCAGGTGAGAACCCTGAACGCCGTAAGCCCAAGGGATCCTACGCAAAGCTAATCCGCGTAGAGTTAGGCGGGCCTAAGCCGAGGGCGAGAGCCGTAGGCGATGGACAGCAGGTAAGTATTCCTGCCCCACCATATGGGCGTTTGAGATGTGAGGTGTGACCCAGAAGGATAGACAGAGCGGGCCCTGTGGACATGGTCCGTCCCTACACCGTAGGCGTCTGACGATAGGAAAATCCGTTGTCAGGTTAAGCGGAGGGTGAGGGGGGCAGTGGAGACTTCGGTCAAAACGACTCTGTTGAGTCCATGCTGGCTAGAAAAGCATCGGCATCGAGTGCATATGGTGTCCGTACCGCAAACCGACACAGGTGGGCGACGGTAAGTACCGTAAGGCGAACGAGAGAACCTTCGTTAAGGAACTCGGCAAAATAGCTCCGTAACTTCGGGAGAAGGAGCGCCCTTGTGAGTGAAACACTTTACGTGTGGAGCATCACGAGGGCCGCAGTGAGCAGGCCCAGGCGACTGTTTAACAAAAACACAGGTCTCTGCGAACCAGTAATGGGATGTATAGGGGCTGACGCCTGCCCAGTGCCGGAAGGTTAAGGAGATGGCTGAGAGGCCAGAACTGAAGCCCCGGTGAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAATGGCGTAACGATCTGGGCACTGTCTCAACGAAGGACTCGGCGAAATTGAGATGGCCGTGAAGACGCGGCCTACCCGCAGCAGGACAAATAGACCCCGTGGAGCTTTACTGCAGTTTTGCGCTGGCGTATGTGATTAGTTATATAGTATATGGGGGAGGCTTTGAACCATGACCGTCAGGTTGTGGGGAGCCGTCAGTGGAATACCCCATTTCTAATTTTGTACTCCTCACCAGTGAGCAAGCACTGGGACAGCGCATGATGGGCAGTTTGACTGGGGCGGTCGCCTCCGAAAGAGTAACGGAGGCGCGCAATGGTTCCCTCAAGGTGGATGGTAATCACCTGTCGAGTGCATTGGCATAAGGGAGCTTGACTGCAAGACAGACAAGTCGAGCAGGGGCGAAAGCCGGCCAAAGTGATCCTATGGTCCCGAGTGGAAGGGCCATGGCTTAACGGATAGAAGCTACCCCGGGGATAACAGGCTGATCCTTCCCAAGAGTTCACATCGACGGAAGGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGAAG +>URS000254E3BB rRNA from 1 species +AACGGCTATACCATGCTGAATATACCGGTTCTCGTTAGATCACCAAAGTCAAGCATCAGTGGGCGCAGTCAGTACTTGGGTGAGTGACCATCTGGGAACACCGCGTGCCGTT +>URS00000821D9 rRNA from 1 species +TGCGAACGTTTGCGGCGGGCCTAACACATGCAAGTCGAACGCACTAGCAATAGTGAGTGGCGCACGGGTGCGTAACACGTGGGTAATCAACCCTTCAGCCTGGGATAACGACTCGAAAGGGTCGCTAATACCGGATACGGCGCGAGAGGCTTCGGCTTCTCACGAGAAAGCCACGCAAGGGGCACTGAAGGACGAGCCTGCGGCCCATCAGCTAGTTGGTGAGGTAAGAGCTCACCAAGGCTAAGACGGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCCACGCCGCGTGAGCGATGAAGGCCTT +>URS00005A9635 rRNA from 1 species +GGGGCCTGCGGTTAATTTGCTCAACACGGGGAAACTCACCAGGTCCAGACACAATGGGTTGACAGTTGATAGCTCTTTCTTGATCTTGTGGTTGGGGGCATGGCCGTTCTTAGTTGGTGGGTGATTTGTCTGGTTAATTCCGATAACGAACGGCCATCCCCTGCTAAATAGCCGGCCGGCTTTGGCTGGTCGCTGGCTTCTTAGAGGGACTTTTAGCGTTTAGCTAAAGGAAGTTGGTGGCAATAACAGGTTAACGTCTATAATCACAGGCCTGTAAAAGCGGTGGTGCCAACTTATAAGTGCTAGTGATCTAGTGCTACAAAATCCGCTAGTCCAAGAGGTTAATCGATGCGGAAAAGCTTTCCATAGTCGGGCATCGAGAGTGTTTTAACTAACACTTGCTTCTGGGCGACACAACCTGGTACAGGGAACGCCAAACAGGTAATGCTGAGGTCGATCCTGTGGTGAGTTAGAGTAGCGTCTAACCATCGCAACGCGCGCAAAGGTGTGGGTCTTATCTGTGGATAAGGCTTAAGGTACGTGCTAATCCCACTAGTAATAGTGGTTTGCTTGAGAGCCCACAGCTAAATCAGTAAAGGGTTTGGACTTTAAGTTCAGACCGAATCCATTA +>URS0000F720C2 rRNA from 1 species +ACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGAAAGCCTGACCCAGCAACGCCGCGTGAAGGAAGAAGGTCTTCGGATTGTAAACTTCTTTTATGAGGGACGAAGGACGTGACGGTACCTCATGAATAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCAAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCTGTGCGACAAGTCAGGGGTGAAAGCCCGCCGCCCAACGGTGGAACTGCCTTTGATACTGTCGCGCTGGAATACGGATGCCGTGGGAGGAATGAGTAGTGTAGCGGTGAAATGCATAGATATTACTCAGAACACCGATTGCGAAGGCATCTCACGAATCCGTCATTGACGCTGAGGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTA +>URS0002411ED0 lncRNA from 1 species +AGCATTATATCCCCACGTTTGGCACATTAATCAACCCAATGTCAATCAAACCAATTGCAAAAGTCCTTTTCTTGGGTAAGTAAGTCTCCTACAACTCGCTAACCCTTTCTAATTGCTACAGGTTTTGTCTTAGAAGCACATAAGGGTATGGACATAGTCATGGATACGCATGTCAAGGAGGACACGTGTGTCCATAACGCGTCCCCAATGAGTCCAATAAAAAAAATAATTAAAAAATAGACAAGCCAAGTGGCATGTCAGTGTTCGACACGTGTCACACAC +>URS000239296D lncRNA from 1 species +TTTTTCCAAAACAGCAAAGCACGTCTCCTTAATAAAAGCACCAAGAACTTTACATGAATGTATTTATCGAAGATTCAGTAGCAAGGGCATTATTTACAAAAGGGACCATTTTGCCCCTTACAGGAGACAAAAAACAAACCCATTGAATTGGCATGATCTCAGAACAGCTCCATAATTTAATGAAACTCATGGATTCTCTTGAACTCCCCACCGCCCAAACCAAAATTGAACCTGACAAACAAGTACTGCAAATCACAAAAAAATAACCCACTCTTACTGGCTATTTTCACGCTTGTTTTTGCTGCTTCCACTCTCTTCCCCCTCCCCTGTGGCGTGACCTGTAACCACGTCTATTCAAAAACAAATTTGGAAATAGCAAGCTAACGCCGGTAAAAGAAACAGCAAAAAAGGAAACAAATAACCCTCTTTGATATTTAATACTTGATGACAACGTCAAGATTTCTTTAAAAACTACTGTTACTGTTATTTCCACGCTTGTTTTTGCTGTTTCCACTACCTTCCCCTGCCGCACCCTGACCTGTAACGACATCTCTTCAAAAACAAATTTGGAAATAGCAAGCTAACGCCGATAAAAGAAACAGCAAAAAATGAAACAAATACCCTCTTTGATGTCTAATACTTGACGACAAGGTCAAGATATCTGAAATTGAAAAAAATATGCAGAGAAAAACAGAGTTCTTGCCAAATCCAGATGAAAAAGCATGAAATTGTGGGAATTAGACATGGGTTTTGCTTAATTGTGAAGAGGGTTGGGGCCGGAGGGGACTAGTCTCTTCTCAACGCCGTATCTTGGATCGATTTCGTCGATTGGCGGCAGCGGTGGTGACAGAGGAGGGCCGTGGGGGATTCTTGGAAGGTTGTAGTAGCACATGGTGTTGCAAGAACGGGGTATATGGTGGCAGTGGTGGTGGCGGCTTTGGCTTGAAGAGGTTTCCCGCGACTTTGGGTTTGGTAATACTTGGGCCGATGATGATGATGGGACTATGAGTAGAAAAATTGTGAGAATCTGTAGGTGGCTAATGAGTGGCATGGTTGAAGAGAGAGAGAGCTCTTCACGGCTTGCACTCTGTGCTTAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGGAGTGGTGGTGGTGTTTATAGGAGGAGACGGGAAACTTGATTAATTTCAATCTTGATAGTAAAGATGACAACAAC +>URS00025DB68B rRNA from 1 species +ATGAGCATGCAGTTGATGGTAGCCACTTTCAATAACTACCAGGAGTTAGTAGATCGTGCGCTTATGATTGAAGGAAAGCAGCAGCAGATTGACAATCGTAAGAGGAAGTATGCACAGGGGAAGTACAATTCTGGAGCTCAGCAGAAGCCACGTTTTACCCCAAAGTCAGGGGACACTTTCAGCATACTCATGGAGGAGGCAGCTCGCACAATCATAATGGCACAAAGAATGGAAACGGAAATGGAGGAAGCAATGGACAAAACCGCACCAACCCGTCAACACCATCCAAGGCAGACCTGA +>URS0000382751 rRNA from 1 species +GATCGACCGCAGTCTACGAACCATGACTGCATGTACCGAACGATCGGGTAAGAAGCTCATAAGTACTGTAGAGAACGAGTCTATCATTGTGACGTACTAGATAGCCCGCTACTACGTCAGCAGCGCGTATCGGTAGTCGAGCGTATCGATTACTGCGTAAGCAGGCAGACGTATAGCAGATGTGAAATCCTGCTCAACTGGAACTGCGTCTGAACTGATAGCTAGAGTGGTCAGAGGGGGGTAGATCACGTGTAGCAGTGAATGCGTAGAGATGTGGAGGATACCGATGCGAAGCAGCCCCTGGATAACACTGACGTTCATGCTCGAAGCGTGGGTAGCAACAGGATTAGATACCCTGGTAGTCACGCCTAAACGATGTCGATTAGCTGTTGGGCAACTTGATTGCTTAGTAGCGTAGCTAACGCGTGAAATCGACCGCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGATTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATGTACGGAACCTTCCAGAGACGGAAGGGTGCCTTCGGGAGCCGTAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCATTAGTTGCCATCATTTAGTTGGGCACTCTAGCGAGACTGCCGGTAATAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGCTGGTACAACGAGTCGCAAGCCGGTGACGGCAAGCTAATCTCTTAAAGCCAGTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGAAGTCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGAGGTAACCGTAAGGAGCCAGCCGCCTAAGGTGGGATAGATGATTGGGGTGAAGTCGTAACAAGGTAGCCGTATCGGAAGGTGCGGTTGGATCACCTCCTTC +>URS000256CAD8 rRNA from 1 species +ATGTCATGTGCATTCCCTGTGCCCATTATTTGCTCACATGACATGATTGCCATGATTTCTTCTAGTGTGTTGCATTTTCGCTCCACTAGTTTGCACGACTTGATTACTATGCTTCCTTATGTTGCATCACCAATGACTCATACTTGCTCATTTCATGCGGTTGACGACAACCATCTATATGCTTTGCACACGATTCATATTGCTCCTTGTCATATCTCTCCATATGTTGACTCCCTCATGCTAGATGATTTGCCATGTATTGAGTGCAATTATGCCTTTATTCCTTATAATGAGTTTGCCCCCATAGCGCATTCTCACATATATTTGGAGATTTTGACATATTCCTTGTGA +>URS0001407240 rRNA from 1 species +GACGGAGGATGCAAGTGTTATCCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGCACTGTTAGTCAGGCGTGAAAGTCCTGGGCTCAACCTGGGAACTGCGCTTGATACGGCAGAGCTAGAGGATGGAAGAGGCTCGCGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCGGTGGCGAAGGCGGCGAGCTGGTCCATTACTGACGCTGAGGCGCGACAGCGTGGGGAGCAAACAGG +>URS00021EF7D7 rRNA from 1 species +ACTTACGGCCACACCGCCTGGTTCACGCCCGATCTCGTTTGATCTCGGAAGCTAAGATAGGTTGGGCCTGGTTAGTACTTGGATGGGAGACCGCCTAGGAATACCAGGTGCTGTAAGGC +>URS0000188C7A rRNA from 1 species +GAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGTGATTTTTGTGGAAATTCTTTCGGGAATGGAAATGAAATGAAAGTGGCGAACGGGTGAGTAACACGTGAGCAACCTACCTTACACAGGGGGATAGCCGTTGGAAACGACGATTAATACCGCATGAGACCACAGAATCGCATGATATAGGGGTCAAAGATTTATCGGTGTAAGAAGGGCTCGCGTCTGATTAGCTAGTTGGAAGGGTAAAGGCCTACCAAGGCGACGATCAGTAGCCGGTCTGAGAGGATGAACGGCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGGAACCCTGATGCAGCGACGCCGCGTGAGCGAAGAAGGTTTTCGAATCGTAAAGCTCTGTCCTATGAGAAGATA +>URS0000626BAC rRNA from 1 species +TGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAAGGAAGAAGTATCTCGGTATGTAAACTTCTATCAGCAGGGAAGATAATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGGCGGCGGAGCAAGTCAGAAGTGAAAGCCCGGGGCTCAACCCCGGGACGGCCTTTGAAACTGCCCTGCTTGATTTCAGGAGAGGTAAGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACTGACAATGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATACTAGGTGTCGGGGCTCATAAGAGCTTCGGTGCCGCAGCAAACGCAATAAGTATTCCACCTGGGGAGTACGTTCGCAAGAATGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGCCTTGACATCCTGCTGACCGGTGAGTAATGTCACCTTTCCTTCGGGACAGCAGAGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATGTTCAGTAGCCAGCATTAAGGATGGGCACTCTGGACAGACTGCCGGGGATAACCCGGAGGAAGGCGGGGATGACGTCAAATCATCATGCCCCTTACGGCCTGGGCTACACACGTGCTACAATGGCGTAAACAAAGGGAAGCAAGAGGGTGACCTGGAGCGAATCCCAGAAATAACGTCCCAGTTCGGACTGTAGTCTGCAACCCGACTACACGAAGCTGGAATCGCTAGTAATCGCGAATCAGCATGTCGCGGTGAATACGTTCCC +>URS00017894DA rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCGTGTAGGCGGTCCGGTAAGTCAGCTGTGAAAGTCAAGGGCTCAACCCTGGAATGCCGGTTGATACTGTCGGGCTAGAGTCCGGAAGAGGCGAGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAGGAACACCAATGGCGAAGGCAGCTCGCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS00003589C1 rRNA from 1 species +CCGCGAATTCGCCCTTCGGGGTGCACCAGGCGCGAAACCTTTACAATGCTGGCAACGGCGATAGGGGGACCTCGAGTGCCAGGTTACAAATCTGGCTGTCGTTGTGTCTAAAAAACACGATATAGCAAGGGCCGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCGGCTCGAGTGGTAACCGTTATTATTGGGTTTAAAGGGTCTGTAGCCGGCCTGGTTAGTCCTTTGGGAAATCCGGCAGCTCAACTGTCGGGCTTTCAGAGGATACTGCCAGGCTCGAGACCGGGAGAGGTAAGAGGTACTTCAGGGGTAGGGGTGAAATCTTGTAATCCTTGAAGGACCACCAGTGGCGAAGGCGTCTTACCAGAACGGATCTGACGGCAAGGGACGAAAGCTAGGGGCACGAACCGGATTAGATACCCGGGTAGTCCTAGCCGTAAACGATACTCGCTAGGTGTCGGCCACGGTGCGACCGTGGTCGGTGCCGTAGGGAAACCGTGAAGCGAGCCACCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>URS00024242CB lncRNA from 1 species +CTAGGTCTTAGTTAATAATTGTTTTTATATTTTCAACTTATACCCCATTGAAAAACCCAACAGCCAAGCGGCTGGGTTTAATTATGGTAGTCCAACAGATTTTTTTTTATTAGTTTTTATTTTAATCCTAATTTTTAATCTATCTTGATTTATATATCCAAGTTGTTGTTGTAAATAATAACTAGTCATGAATGGCCTAGAGGAGAGAGGGTAGTTTCTAGGTCTTTAGTGGAGTGGGTTCAATACCCACATTTGTAGCATTTTTTTTTCTTTTAGCATTTTATTTCTTTTAGCATTTTTTATGTTTATGTTTT +>URS00010F895C rRNA from 1 species +ACGAACGCTGGCGGCGCGCCTAACACATGCAAGTCGAACGAGCGAGAGAGAGCTTGCTTTCTTGAGCGAGTGGCGAACGGGTGAGTAACGCGTGAGGAACCTGCCTCAAAGAGGGGAACAACAGTTGGAAACGACTGCTAATACCGCATAAGCCCACGACCCGGCATCGGGTAGAGGGAAAAGGAGTGATCCGCTTTGAGATGGCCTCGCGTCCGATTAGCTAGTTGGTGAGGTAACGGCCCACCAAGGCGACGATCGGTAGCCGGACTGAGAGGTTGGACGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGGAGGAAGAAGGTCTTCGGATTGTAAACTCCTGTTGTTGAGGAAGATAATGACGGTACTCAACAAGGAAGTGACGGCTAACTACGTGCCAGCCGCCGCAGTAAGAC +>URS000253A30D misc_RNA from 1 species +TCCGGGTTTCGCCCGGCAGTCTCCCTAGATTATTCAACATAGGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAACCATGCACCACCTGTGTACGGCCCAAAAGGACACCGTATCTCTACGGCTTTTCCGTACATGCCAAACCCAGGTAAGGTTCTTCGCGTTGCCTCGAATTAAGCAACATGCTCCGCCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTTAGCCTTGCGGCCGTACTCCCCAGGCGGGGCACTTAATGCGTTAGCTACGGCACAGATCCCGTTGGTTGAGACCCACACCTAGTGCCCAACGTTTACGGCGTGGACTAC +>URS000078C8E8 rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGCAGGGACGAAGCGCAAGTGACGGTACCTGCAGAAGAAGCGCCGGCCAACTACGTGCCAGCAGCCGCGGTAAGACGTAGGGCGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGCTTGTCGCGTCGACTGTGAAATCCCGCGGCTCAACCGCGGGTCTGCAGTCGATACGGGCAGGCTAGAGTTCGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGGTCTCTGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGTTGGGCGCTAGGTGTGGGGGACCTCTCCGGTTCTCTGTGCCGCNGCACGCATAGCGCCCGCCGTCGGGAGGTACGGCCGCGACGACGTAAACGTTAAATAGAGTTAGACGGCGTGAGACGTGACCGACGGACGACGACGAGGGAGGTTAGG +>URS0000E2B2B0 rRNA from 1 species +CCCCTAGTAACTGCGAGTGAAGCGGGAAGAGCTCAAATTTAAAATCTGGCAGTCTTCGATTGTCCGAGTTGTAATTTAGAGAAGTGTTATCCGCGCTGGACCGTGTATAAGTCTCCTGGAAGGGAGCATCATAGAGGGTGAGAATCCCGTCTTTGACACGGACTACCAGGGCTTTGTGATGCGCTCTCGAAGAGTCGAGTTGTTTGGGAATGCAGCTCTAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGAACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGCTGAAAGGGAAACGCTTGAAGTCAGTCGCGTTGGCTGGGGATCAACCTTTCTTCTGATTGGTGTACTTCCTAGTCGACGGGTCAACATCAGTTTTGACCGTTGGATAAAGGTTAGGGGAATGTGGCATCCTCGGATGTGTTATAGCCTCTGATTGTATACAATGGTTGGGACTGAGGAACTCAGCACGCCGCAAGGCCGGGTTTTTAACCACGTACGTGCTTAGGATGTTGGCATAATGGCTTTAATCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGCCTGCGAGTATTTGGGTGGAAAACCCATATGCGTAATGAAAGTGAAAGTTGAGAACTCTGTCGTGGAGTGCATCGACGCCCAGACCAGACCTTCTGTGACGGATCTGCGGTAGAGCATGTATGTTGGGACCCGAAAGATGGTGAACTATGCCTGAATAGGGTGAAGCCAGAGGAAACTCTGGTGGAGGCTCGTAGCGATTCTGACGTGCAAATCGATCGTCGAATTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCTGCCGAAGTTTCCCTCAGGATAGCAGAAACTCATTATCAGATTTATGTGGTAAAGCGAATGATTAGAGGCCTTGGGGTTGTAACAACCTTAACCTATTCTCAAACTTTAAATATGTAAGAACAAGCCGTCTCTTGACTGGACCGCTTGGCGATTGAGAGTTTCTAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGAACGCGAGGTTAAGGTGCCGGAATTCACGTTCATCAGACACCACAAAAGGTGTTAGTTCATCTAGACAGCAGGACGGTGGCCATGGAAGTCGGAATCCGCTAAGGAGTGTGTAACAACTCACCTGCCGAATGAACTAGCCCTGAAAATGGATGGCGCTTAAACGTGATACCCATACCTCGCC +>URS00007CECD4 rRNA from 1 species +ACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGAATGATGAAGGTCTTAGGATTGTAAAGTTCTTTCGCTCGTGACGATGATGACGGTAACGAGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAA +>URS00004EF8E6 rRNA from 1 species +GAATCTGCCTGTGGGTCGGGGACAACCACTGGAAACGGTGGCTAATACCGGATGAGCCGAAAGGTAAAAAATTTATTGCCCACAGATGAGCTCGCGTCTGATTAGCTAGTTGGTAAGGTAAAAGCGTACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGAGCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAAGACCGCGTGGGGGAGGAAGGTTTTTGGATCGTAAACCCCTTTTGTCAAGGAAGAAGTTCTGACGGTACTTGACGAATAAGCCTCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGAGGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCTGTAGGTGGCCAGCTAAGTCTGCTGTTAAAGATCACAGCTCAACTGTGGGAAGGCAGTGGAAACTGGCAAGCTAGAGGCTGGTAGGGGTAAAGGGAATTCCCGGTGTAGCGGTGAAATGCGTAGATATCGGGAAGAACACCGGTGGCGAAAGCGCTTTACTGGGCCAGACCTGACACTGAAGGACGAAAGCTAGGGGAGCGAAAGGGATTAGATACCCCAGTAGTC +>URS0001F5106B rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCAAATGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS0001EC9022 rRNA from 1 species +ACGAACGCCGGCGGCGTGCTTAACCCATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS000222C3C5 misc_RNA from 1 species +AGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAGCTCGTAGTTGAATTTCGGGATCAATATGTTGGTCGTGCCTCGGTACGTACTAGCATATTGGTTTCTCCTTTCTGAAGAACCATGATGTCATTTATTTGGTGTCGTGGGGAATCAGGACTGTTACTTTGAGAAAATTAGAGTGTTTAAAGCAGGCTCACGCTTGAATACATTAGCATGGAATAATGAAATAGGACGTTTGATTCTATTTTGTTGGTTTCTAGGATCGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTAATGTACTCTATTCC +>URS0002325A80 pre_miRNA from 1 species +AAAAAGACAAACCCTGGTTTCCGTGCCCAACGTTTGACCGTCTGTCTTATTTAAAAAAATTATGAAAAAAATTAAAAAGACAAGTCATGCATAAAATATTAATCATGTTTTATCATCTAACAACAATGAAAATACGAATTATAAAAAAATTTCATATAAGACGAACAGTCAAAGTTGGACACGGAAAACCAGGGTTTGCCTTTTT +>URS000130A086 rRNA from 1 species +GTAGGTGGCAAGCGTTGTCCGGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTCTTTAAGTCTGATGTGAAAGCCCACGGGCTCAACCGTGGAGGGTCATTGGAAACTGGAGAACTTGAGTACAGAAGAGGAAAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGGCTTTCTGGTCTGTAACTGACGCTGAGGCGCGAAAGTGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGCCGCAAAGGCTG +>URS00002466F2 rRNA from 1 species +CCCCTACGGGAGGCAGCAGCGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGGGGGTGAAGGCCTTCGGGTTGTAAACTCCTTTCGCCCGGGACGAAGCCCACCTGGTGGGTGACGGTACCGAGCGAGGAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATGGGG +>URS00012DC715 rRNA from 1 species +TACAGAGGTCTCAAGCGTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTCGGAGCTTAACTTCGAAACTGCATTCGATACTGCCGTGCTTGAGGACTGGAGAGGAGACTGGAATTTACGGTGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTCCTGACGCTGAGGCACGAAGGTCAGGGGAGCGAAACGGGGATTAGA +>URS000259BFCE rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGATCTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGGTCTTGAGTTCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCTCACTGGCTCGATACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGG +>URS000164E0EC rRNA from 1 species +CAGTCGCCACGGTAATACGGAGGGAGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGTTACTCAAGTCAGAGGTGAAAGCCCGGGGCTCAACCCCGGAACTGCCTTTGAAACTAGGTGACTAGAATCTTGGAGAGGTCAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAGGAGCACCAGTGGCGAAGGCGGCTCACTGGTCCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCCCGTAGTCCCTGTCTCTTATAT +>URS0000370A15 rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGGCAGCACAGCAGTAGCAATACTGTGGGTGGCGAGTGGCGGACGGGTGAGGAATACGTCGGAATCTGCCCAGTCGTGGGGGATAACTAGCCGAAAGGTTAGCTAATACCGCATACGACCGAGAGGTGAAAGCGGGGACCGCAAGGCCTCGCGCGATTGGATGAGCCGACGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTTCGGTTGTAAGACGACTTTATTCAGGACGAAAAGACGTT +>URS00019773DC lncRNA from 1 species +ACACTTATTGAAGATTTATCTTGTATAGATTCTTTCTAAACTGCTTTATATATTCACTCATGTCATCATCACATAAACCTATGATGCAGGTAATAGTATTATCTCTCTTTTACAGATAAGAATACTAAAGCATGGAGAGATTGCTAGCACTAAATCACTTAGCTAATAAATGTCAGGATAAGAATTTGAGTACAGGGAGTCCAGGTCCAGAGTCTGTCCACTTAGTGCTGCCAAGTTGTGTGCGTGTTGGGGGCAATGGGTAGGTTAGAGGCAAAGATAGAGATATATAGATAGTTTTCAAGAGTTCCTGCCATGCCTCAGTGGAAAAGAATCTGACTAGTATTCATGAGGACACAGGTTCGATCCCTGGCCTCGCTCAGTGGGTTAAGGATCTGGCATTGCTGTGATCTGTGGGGTAGGCCATAGATGTGGCTTGGATCCCATGTTGCTGTGGCTGTGGTGTAAGCCGGCAGCTATAGCTCCGTTTTAACCCCTAACCTGGGAAAATCCATATACTGAGGGTGTGGCACTAAAAAGACAAAAAAAAAAAAAAAAAAAAAAAAAGAGAGAGAGAGATAGTTTTCAGATTCTTAATCTTGGTTACATTGGTGAATGGAGTTGGGCATAAAAGGTTGTTGCTTAATGTGGGATGTGATGAGTTTTTTTTTAAAAAACAGCAAGCAAGAAAGAAAAGTTTCACTTATAATTTGATAATGATTAAATTTTTATAATCTGCATCATCACTTTTACCATAAAAATTTCAAACCTGAAAAAATATTCTTTTTTCCTTCAACACATTTAGAAATACTGCTTTTGATTCTAAAAACAAAAAGAATGTAGATGTGGGCGTTCCCGTCATGGCGCAATCCAACTAAGAACCACGAGGATGTGGGTTTGATCCCTTGCCTTACTCAGTGGATTAGGATCCGGTGTTGCCGTGAACTGTGGTTCAGGTCATAGATGCGGCTTGAATCCTCCATTGCTGTGGTTGTGGTGTAGGCTGACAGCTGCAGCTCCAATTCAACTGCTAGCCTGGGAACCTCTATATGCCACAGGTGCAGCCCTAAAAAGCCTTAAAAAAAAAAGAATTTGTCTGTACTACAGGCCCAGTTTGCCACATATACATCTATGTCCTTGGGTCTTGACTTGACCACACCATGCTTTAGTTTCCTCTCCTGCATAAAAGGAATCATGATCCGTCCTCCCCCACTGGCTTGTGGTGAGTATCCAGTAACATCAGAGTTAAGTGCTCTGTGCAATGCCTGGTGCTTTATTCATCTCTCTCAACATTAGCTACCATAGTCATCATTGCCAGGCTGAACTCTTATTGCCCCTTCTCCTGGCCATTTGGAATTAAGATTGCAAACTGATTAAGTCATCTGAAGCAGTCAAGATACCAGGACAATGACGTTGGTGTGCTGAATAGAGAGTGTAAGTATACATGAGAGACTATCCTCAAGTAACTACTGATTAAAAACTGTTAAGTAGTTGTCAACTGGAAAACAAATGCACCATATGAGTTGTGAGTTAAGCTGGGGCAAAATGATGACTATAGCCTGGGAGAAAGCATTTCATATGGCTCTGAAAAACTGCTTTGAAGAGGTAGGAGAATAATATCAGTATATATGTGGTTTTGGTGAAGGGGAGGTACATGCAATCAAGCACAGATTTTGCAGAAGGTCACTGCTAGTCTTGTGAAGGTTACTGCTAATCATGAGGAGCAGATGTATCCACTAATGATTTCATTGCTTCTTTAGATATGAGAAGATGCAAGAATTCAGCGCATAAAATCTTTTAAAAATATCTAACTATCTGAAGGCCTGTTCTGCCAGGGATTCCCAGGCTGCCTCAATCCAGATCTCTACCTTAAACTCTTTCCAAGGGGTATTGAAGGTCAGGGGCTGCAGTGGCTTGTGCCTTAATCCTTGTAGAGACAGATGGCAAGTACCAATTTTTAGTAGTCAAAGGCTTGACCTGCAATGGTGACCTTGACAATGGTCCACCCCCTGAAGTGCTCCAAGCATTGGAGTTTTAGAAATCCAACCTCTGCCCATCAGCTCTCAGAATAAGGGGTCCCTTTTGTTCAAAATGGTGGTGTCTGCCATTGCTCCTTGTTTGCTCAGTAAGGATGAAAAAAGCCCAATAACATTATAAACCCTTCTTAACTCCTGCCTTTTACTTTTGAGGGAAGACTATGTATTCAGGAAGTGCTCATGGCAAAGCCTATTTAAGAAATAAAAAGAACAATAACAAAACATCTCAGAAATTCCTTTTGAAAACAAGAGCCCAGAACTTGCCTGAGACTTAATTGCCGCACACACACACACACACACACACACACGTGCACACACATACAGAGCTTGTCTCCTACATTTTCAGACTGTTTTAAAGTACAAGGCACAACCAGGTTAATAAAACATGCTTGAGGCTATGTTCTGTTTGTTCATTACACTATAAAGCATTTTAAACCTACAATTAATTTTAGATAAATTAAAGATTTGACACAGCCATGGTACTCGTGCAAGAGCATTTGTGTTAATATCTTATATTTTTCATACTCAATCACCCTGCTGAAAAGTTTAACAGCCTTCCATATTTATAACTGCTTTCTAGATTCTTCTTTCTTTTTTTTTTTCCTACCTTAGTTGTCAAAAGCATTAACGAAGCTGGCTTTGGGGAAGAATTCCAATTCAGAGTTATTTTTCCATGAGGTACTTAAGACTCCACACGGCAGCTTGTGATTATGTTGGCAGTGGCTTTGCATAACTGTTGGTTTCCTGTAGTATAAATAAGTGAACAGCTAAGAATGCTAATGTTTTGCTTTGACTAAGAAAAAGCTCTCAATAAATGACAAGGAATTACCCTCATTGGACTACTTAAGTTTTTCTTTCTCCTTCCTTTAAAGGGGTAAGTTAAACCAAAGCAATAGAGATAAGTGATCACATAATACTTGCTACCGCTTTAAGATCATTCTTCAAGTTGCAAAAAAAAATCAAATTGTTTCATTCCCAAAGTCCTTTCTAGTTGAGAAATTGAAGTGGGAGAAAGGCCATGAGGATCACTGGAAAACGCCAATGCAAGCAGTGTCCAATTGCAGCTAAATACAGGGCAAAGAAAGTCAGAGCCTTTGCCCTCTTGAGATTTGGACCAAAAACAGGAAAAAGATGCTTTGGCTAGGAGAAAGGACAGACAGAGTTTAGGGAGGAAAGGTTGCAGAGGAGAAAGCTTGGCAAAAAAGGTGTATGCAGATGGAATTCTCAGGAGCAGCTCCTGAGAGAGGCTTTGCATCATGTCAGCTGTCATGGTCAGGAGCAGGACAGGGACTCTGTGGGATGAGATATTATGGACCTTGCACAGAGCCCTGGGCCTTTGGCTAATTCCACATCCTCCAAAATCTCGAGTACTAAATGTTCCCATCCAGTCTCATCTGTTTTCACTCTTTCCCTCACAGAAGACAATCCCAATAAATGGAGTAAAAGCCAGAGAAATGTCCTCCCAGGACACCTGGCAGCTACCATTGCCCACAAGCTTCTCTGATCCCCACCTACCTTCTACCCAGTGAAGACTCAGCCTTCCAGCTGCCATCCTTCTTTCCAGGACAGGTTGACTGCACTGCCTTGGTGGATGAGCCATTGTTCACTTGGCTGCTATTCTGCAGTTCTGTGTTTCTCCAAAGGGAACCCTCCTGCACTGCTGGAGGGAATGTAAACTGGTACAGCCACTATGGAGAACAGTTTGGAGATACCTTAGAAATTTATACATAGAACTTCCATATGACCCCGCAATCCCACTCTTGGGCATCTATCCGGACAAAACTCTACTTAAAAGAGACACATGCACCCGCATGTTCATTGCAGCACTATTCACAATAGCCAGGACATGGAAACAACCCAAATGTCCATCGACAGATGATTGGATTCAGAAGAGGTGGTATATATACACAATGGAGTACTACTCAGTCATAAAAAAGAATGACATAATGCCATTTGCAGCAACATGGATGGAACTAGAGAATCTCATCCTGAGTGAAATGAGCCAGAAAGACAAAGACAAATACCATATGATATCACTTATAACTGGAATCTAATATCCAGCACAAATGAACATCTCCTCAGAAAAGAAAATCATGGACTTGGAGAAGAGACTTGTGGCTGCCTGATGGGAGGGGGAGGGAGTGGGAGGGATCGGGAGCTTGGGCTTATCAGACACAATTTAGAATAGATTTACAAGGAGATCCTGCTGAGTAGCATTGAGAACTATGTCTAGATACTCATGTAGCAACAGAACAAAGGGTGGGGGAAAAAATGTAATTGTAATGTATACATGTAAGGATAACCTGACCCCCTTGCTGTACAGTGG +>URS0000B9BAF2 tRNA from 1 species +GTCTTCGTGGCTCAGTTGGTTAGAGCGTTGGTCTCATAGTATGATCCAATCTCAGGTTGGGATATCCAAAGGTCGTGAGTTCGAGTCTCACCGAGGACA +>URS0000679C41 pre_miRNA from 1 species +CTTTTAATATAAGTATGTCCCATGAAATATTTGGGATATGCTTATACTAAAC +>URS00004B7CE6 rRNA from 1 species +GGCCGCGGGAATTCGATTCAGGCCTAACACATGCAAGTCGAGCGATTCTCTTCGGAGAAGAGCGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCCTGTACACACGGATAACATACCGAAAGGTATGCTAATACGAGATAATATGCTTTTATCGCATGGTAGAAGTATCAAAGCTCCGGCGGTACAGGATGGACCCGCGTCTGATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATCAGTAGCCGACCTGAGAGGGTGATCGGCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAAGGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGCGATAGAGGCCTTCGGGTCGTAAAGCTCTGTCCTCAAGGAAGATAATGAC +>URS0000D1B51B rRNA from 2 species +AAGTCGAGCGGACCGACGGGAGCTTGCTCCCTTAGGTCAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATGCTTGATTGAACCGCATGGTTCAATCATAAAAGGTGGCTTTTAGCTACCACTTGCAGATGGACCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAACTCTGTTGTTAGGGAAGAACAAGTACCGTTCGAATAGGGCGGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAA +>URS0000C4FCDB tRNA from 1 species +GCCTTCGTGGTGTAACTGAAAGCATACTAGACGTGTATTCGATAGGTCCAGGGTTCGAGTCCCGGCGAAGGCA +>URS00022EE1E1 rRNA from 1 species +CCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGAGATCGGTTTATTGGTCGTGCTATTGTACGTACTGGTATTACCGGTTTCTCCTTTCTGACGAACCTTAATGCCATTAATTTGGTGTTTTGGGAAATCAGGACTGTTACTTTGAAAAAATTAGGGTGTTTAAAGCAGGCTCACGCTTGAATACATTAGCATGGAATAACGGAATAGGACGTTTGATTCTATTTTGTTGGTTTCTAGGATCGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTTAATGACTCATTCGGCGCCTTAC +>URS00003E1810 rRNA from 1 species +ACGGGAGGCAGCAGTGGGGAATACTGCGCAATGGGAGAAAGCCCGACCCAGCAACGCCGCGTGAAGGAAGAAGGCCTTCGGGTTGTAAAACTTCTTTTAAGAGGGACGAAGAAGTGACGGTACCTCTTGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCGAGCGTTATCCGGATTTACTGGGTGTAAAGGGCGTGTAGGCGGAGCAGCAAGTCAGAAGTGAAATCTCTGGGCTCAACCCAGAAACTGCTTTTGAAACTGTTGCCCTTGAGTATCGGAGAGGCAGGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCCTGCTGGACGACAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAATACTAGGTGTGGGGGGACTGACCCCTTCCGTGCCGCAGTTAACACAATAAGTATTCCACCTGGGGAGTACGATCGCAAGATTGAAACTCAAAGGAATTGACGGGGGGCCCGCACAAGCAGTGGATTATGTGGTTTAATTCGACGCAACGCGAAGAACCTTACCGGGATTTGACATCCTGCTAACGAAGTAGAGATACATTAGGTGCCCTTCGGGGAAAGCAGAGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATTGCCAGTTACTACGCAAGAGGACTCTGGCGAGACTGCCGTTGACAAAACGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCTTTATGACCTGGGCTACACACGTACTACAATGGCGTTTAACAAAGAGAAGCAAGACCGCGAGGTGGAGCAAAACTCAAAAACAACGTCTCAGTTCAGATTGCAGGCTGCAACTCGCCTGCATGAAGTCGGAATTGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGCACTCACCGCCCGTCA +>URS0000E780C0 lncRNA from 1 species +GGCGAGGGGGACACCGTGGAGGGGGGTTGGGGGGGACGAGGCCGGGCAGCTCTCCCGCAGGGGGCCGGGCAGGGCAGCGGGGGTGGGCTCTGCTGGGCGTCATCCCCCCCTCCCCTTCTCCCCGGGGAACCGGGGCGGTGTGGGGGGGGGGCCGCTCCCGGAGCATCCCCCCTTTGCCCGGCTCCCCCCCTCCTCCTCCTCCTCCCCGCTTCCTCCGTTTAAAGGCCGGGTCCCGGCGGGGCCGAGCGGAGGAGCAGCGGCCGCTCCGCAGCCCCAGTGCCGCGGCGGGGGCGCGCAGCGCACGGGGCGGGCGCTGGATGCGGCGCCGGGGGCGGGCGGGCGGCAGCCGAGCGGCTCCGGTCCGGTGCCCGGTCCCCGGTCCCCTCCTCCCGTCCCCCCCAGCGGGTCCTCCCCGCGCGGCGGCGCGGAGCTGGGAGCGATGAGCGCGGCCGGAGGAGCCGGCACCGCGGCGGGCACCGCCACCTCCGCCCTCTGCCTGCTCCTCTCGCTCACCGCCGTGGCCGTCTGCCTGCTGCTGGGAGCCAAAACGGCGGAGCTGCAGGGCCGCCTGGCAGCCCTGGAGGAGCGCGGAGCCGCCGGTCCCGGCCCGCTGCTGGAAGCGCTGCAGCCCCGCCTGGAGCAGCTCCTCCGAGAGAAACTGGGTGAAGGACTAGCTAAGCTGCGGACAGCGAGAGAGGCTCCGTCAGACTGCATGTGCCCCCCAGGCCCTCCGGGGAGGCGAGGGAAGCCCGGACGGCGCGGAGAGCCCGGTAAGCATCGCGGTCACCCCACCGCTGTCACGGGGCTGGGCACAAACATCCCGGTACCGCTACCATCACCTCTCTCTGACGGGCTGGCTCCTGGTTAA +>URS000240ACFD lncRNA from 1 species +AACCTGTTAATATGATTAATTATTGCAGTCAGAAGCAATCAATTTCCTGAGAGAAAATAAAAGTATTTAGTATTTCCTGAGAAAAGAACAATAAGTACATAAATTGAAATTACAACAGCAATGAAAGGTGGAAACCAAATCAGAGAAGAAGATAAAACTGGCAGAGGAGTGGAGATGTTTTGCCGCACGAAAAAAAAAAGTCAACAAAAAATACCGCATTAAACGTAAGATGATCCTTCGGATATGGTAAATAAATATATCCGATGAGATGAATTCAAACTATTATTGCGACTGTAGAGGAATTAACATGCTGGAACGAAGTCGCCCTAATTTTTCGTCTAGGGAGGGCAACTCGGGAGTCGAAGCGACGCTAGAGATGAAGGTGGAATGAAAAGTCTCTGAAGGAATTAAATGGAAAGAGAATGAGAAAAATAAACTGATGGGTGGGATCCATGAGCAAATAAGTTAAGATGACAATTGACTTCCCATAAAAGCCAATATTTTAAGATGGTAGGTAGGTCCCACAAAATTTTTTTGAAAAGTCTCTTAACCAATTAAAAAAAAACTGATAGATAGGCCCCAACATAAATCCACAATTAAGCAAAATATATTAGGCTGACAGGTAGGTTCAACAAAGATTCAAATTAAGCTAATATCGTCACGTGGACAAAAGGATATGGGATTTTATAGTAGTTAGTAGATGAGATGAATCCAAACCATTATTACGACCGGAGAGGAATTAACACGCTAGAACGAAGTCGCCCCAATTTTCCGTCTAGGGAGGGCAACTTGGGAGACGAAGCGACGCTAGAGACGAAAGTGGAATGAAGAGTTTCTGAAGGAATTAAATGGGAAGAAAATGAGAAAAATAAACTGAAGGATCGGTCCCATGGGCAAATAAGTTAAGATGACAGTTGACTTCCCACAAAAGCCAATGTTTTAAGATGATAGGTAGGTCCCACAAAATAAAATTTTGAAAAGTCTCTTTACCGATTAAAACAAAACTGACAGATGGTCCCCAACATAAATCCACAATTAAACAAAATATGTTGGGCTGACAAGCAGGTCCCATAAAGATTCAAATTAAACTAATATCGCTACATAGACAAAAGAACATAAGATTTCATAATAGTTAATAAATAACTCGCTAGCATTAATTTTTTGGTTTTTTTTTTGTTTTATTTTAGAATTATGTAAATGCATTTTAATTTACTCTCAATCAAACAAAGTTACATTTTGAATATTTTAAAAAACTTTATTTATTTTATAGCATGCGACAGGTGAATGTTCGCTTCCTCGATCTAAAAAGTATGAAACAAAAAATGTCAAATTTTTTTTTCACATGAATAATCGTTTATCTAGTCATCGGTGGGTTTAGTTTTAAGAAAAGAGGAATGCTTCAATACACCGGCTAAATTAAATCTAGCCGTTCATATTTGAGGGGCAAGATTGACTTTTGCATAATAGTTACCTGCTCAACAAGTTACCATTCGTAAGGGTACACTACAACAAAAATAGTCTATAGCTACACTTTTAAATATAGGTACATGTCAAAAAAGTGCTGTTAGCTAAAATTACCGACACTTTTAAAAAGTGTTGCTATACGTGGGGTCGCTAGATATATAGTGACAGTTAAAGAGTGTCGCTATAACCTAAAAGAGTGCTGCTAATTTACCAACACTTATTTGTTGGATTGGGCTTTATATTTAGGCATTAATAGATGTTTTTTTAAGTTTTAGCAAAAATGGGACACTTACTCAAAAGTGTCCCAAATATGTGTCCCTATAACCTAATTCTGTTGTAGTGGTAATATGGGAAAACAAATACAAGCTAATTACCAAATTTGATTAACCCTATACA +>URS0002381478 lncRNA from 1 species +ACTTACATAGCACTCGTACAATCGACTTGACAAGCAACAGAAAAGTACCCAATTAGTGTAGAATCAAGTATCAAAGCAAACAAAAAGGTAAAAATATAAAAAGAAAAACAAAGGAAATAAAGAACAAGGAAAGAACAAAAAGAAAAGAAAAGAAATGATAGAATTAGTTAGAAGGATTTAAATTAACTACCAACCAGCCTCCCGACGTTTAACAAAAATATTTCTCTATCGCATATAATGGGTTTTGAACTTGGAACCAAATAGAATACAAATATATGCTTAACCAGTGAACCAACAGGTTCATTCTTAACATAAATTTACACAGAATTGCACTTAACTATATAACACGGATAGGGGTTTTTTTTAAAAACAAAAAACAAAACTTCTAACAATGCGACTCGAACTCCCAATTTTTAACACAATAGAAGAACACAGAATCACAGATACAAAATTTTAATTACTGCAGATTCTCACAATTAAATTCTCAAATTTTTAGGGCGTTACACCACCACCCTAAGCTCTCAACAATGGACCTGTTGACTCTCATCCAGCACTCAACTGTATGATTATTCAATCACAAAGCAATATTTATAAACCAAGAAAAATTAGTCATTTTAATACTACTCTTTTCCAATTACTTTAAGGCACAATGTGTGTTTTTCCGTAATAAAACACATTTCCATAGAAAATTATGTCTCTTTATCTTGATACTTTTCCATAAAATTTATTATTTATATTATTTATATTATGTATCTCTTTGTAATGTGGGAACACTAACATTGGAAACTATTAATAGATTTTATTAACAAATTGAAGCACCAACTGAAGTTGTAAATGATTCAATCATTAAGTCAAAAGAGATGGTCAATAGAAAGAAAATGGTAATGATTAAAATAAAATAAAAGAGTTTATATATCATTAAAATAATTATTAAGTATATTTAAAATTATCATTATAAATATTTATATATGTGGAGTGTTTCTTGCATTTTTTGTTCAAATTAGAGTCAAAGTAGAGGCGACGTTGCAATGAGGAATCACGCGACGTCGCAACGAATCGACGACATTCGAAACAGAGGCAATGTCGTGACGATACGACGAGTTCCAAACTTAAAGTAGTTACGTATTAGACTATCAACAAGGTTACTTTTCCTAGTTAAACTCTGATTACATTAGAGATATTATAGTCATATTAGAACTCTAATCTTAGCCTATTTAAAGGGCAATAACAATCCTAAAATCGGAAGAACATAACACAGCATTAGAGAGAAAATCAAGAGAGAGTTTTAGAGAGCTTTAAGGGAATTTTGTGTTTTTAGCCACTGAGAGCTTTGTATTATGGGTTAAGGTTTGTTTTGAATTTCTCCATCTTGAATTCTTTGTTTGTTTGCTCATTAGTGAAGTCTCCTTTGCCTATGGTTTTTTATTCTCTTGATTGGAGGGATTTTTCCACGTAAATTTGTGTGCCTAGTTTTCTCTATTCCTTCTTTCTCGTTGTTTATACGGGTTGATCCCCAACAATATTTAGTATTTTATTATTTTATGTATTTTTATAATTTTTCATTGAAAAAAATATAAATGTTTTAAGTTTTTTTTTTCAATTTTTGAATTTTTTAGAATTAAGATTAAATTGTTAGAATGTGTAAATATTAATACCTAAACTTGTTAAGTTTTTAGAATTAGGATCAAATTGATAGAATGTGTAAACATTGGAGAGATAAATTCATTATTATGCCAATAAAAAATCACATCAAACTTCCCTTAACTATTTAAAGACAGAGTGACAAAAAAATCAAACTTAAAAAATGTTAGTGACTAAATTAAAAAATTTTATAGTTGACATTTTCTTTATTTCTATTCATATTCATTTTACAATACATATAGGATTGTGGGTACCTCCCAACAATGTTGTTTTCAATGTTTAAACTTGTGTTCTTCTCTTATGAATACAATATGTCTTACCACTCCACCAAAAACATGTATATAATAGTAATAAACTTTTTTTTCTCTCCATGCGATGCACGAGTTGCTTGTGTGTATTAATTAAAATATATGTAAAAAATAGAATGTCAGTAATGACAATATATCACAAAGAAAAGAGAAATAAAAATAAAGAACACACCAATTTTTACGTGGAAACCCTTTTGGGAAAAAACTACAGGTAGAGGAGAAAAAAATTCACTATGTCGAATTCGAATGATTACAAGAGGAGTAAACTATGTCTATTTATAGGCTTTGTAAAACCATATTCTAATAGGAGTGTAGTAAGATTGAAACACCTTATTCTAATCAATATCAAATAGATAGAGTTTAATAAGGTTTAAAAAACCTTATTCTAAAATAAAATAAAAGAAGTATAATTCTATAGGGATTTTACTTTTATTTTATTTTACCACTGTATTCTATTTAAATAAGGATTCGGGTCACTTAATTCTAACAATATATTATATTAAATTTTAAAATTTATACATAACATATTATAAATATTATTATTAAAAATTAAAAATAATATAAATATTTAATTTTGTAATGATGATAATTTAAAATATAATCAATATAATTAAAAAAAAATTTAATAAAATAAAATAGTTAATATTACTCTCAATTATGATTTCCGCATTACTTAAAAAAAATGCACAACTAATGGAAATATTTGAGTACAAAAATCTGAATATTAGGATAATGAAATTGTTTAGCAAAAGTCAACAATGATTAAGCATTGACACCCATAAACTTAAAGCATAATGAATGGGGTGTTTAAATTTAATTTTTTTAACATTTACTTGTGGAAAAAAGTATTAACCAATTAGGTAAATATTCAATTTTCAGCGTATTTATTTATTTAATGTAATGCTTTGTAATTTTTTTACTACAAACCATAGTCATAGGGAATACTAACATATTCTTATTCAAATGAAAATTTAATGCTTCATTAAGATAATTTTAAGCATTTAAATGTTAAATTAAATTATTATTCAGTTTACAACTTTTAACAATACGTACACATTAATGTGATAAATGTCATGTTTTAAATATGCTACATTGAATTAGCTGCTTAAATTGTAATTGTATATATATGATGTCATCTCCTACCGACTTAAGAAAAACTCTCAAATCCAAAATAAATTGAAATCTAAATCTAAATACAAATATGCTGAAACCTGCTTGTTTGCACTTTAATGGATCTTATAAACTAGTTGTGGGCCTGTATGTATCAAACCTCCTTATCCAAATGCAAAATAAACCCTAATTCATTTAGAAATAAGTACAGAGAGATCTGGTTATAAGCTTCTTAAGATGGAGGACGCCACATATGCCCCAGAAAAAAGTCCAAAGGCATCGCTTGGTACTTGGTACTCCCATTTCATTCTTTTGGTGGTTTGTTTCACTGAGTTTAATCTTAAATGGTTCCTTATTCACTGTTAATTTCGAATCGTCTATTTGGTTTCAACAATCAGTGATTGGCCGTGATGACACAAAGGCCGGACTTACGGCTGCTACTGCTCTTCCCTTGTGTGGTAGTAGTATGATGTTTGTTGTGATAAGGTGTTTGTGCTGAGCCACTTTTCTCTCTACGCTTTCTCTATTTTACTTGAGATATTTATACTGTGGATTTCTAGTTTGAATACAATTTTTTTGGTTATAGTAAACATGGGTTTGTTTTTGGTGAGCCTGCCCTGAATTTGTGTGGGATTCCCTTTGTAGTTCTAGGAATTAGTTTACCGATTCTACAACTGACCCTTGAAGAATTAAGTATTCCTTCATTTTCCTCATCTTATGCAGCTGATCAGCAATGATTCCTTTTAGGCTTGTTCTCTTCTGAACTTCAAATTACATCCTTTATAAGAGATTTGGTCAAGCTATTGTGTAGGGTTTGTAAGATTTTGCATTTTATTGGCTTTTGCATTGCATCATTGACACATGGTTCCATGTAAATTCTGATATTTCAACTTCTAACAAAGCATTTTTGGCTGTGCCTCAATGCTATGTATGGAACACTACTGGTGTTGTTTTGCCTGCTTTTTTGTTTTTACGAATTATGTTTAAAAGCCTTGTTTTGCTCTCAGTCCAGGATCAGCAGTTAGACATTTAGATCACATCGATGAATGTAGGTCTTGATAGTTGTTGATTCTTTACATGCATAGAAGCTAAAGAAAAAAGTTCCAATTGAATTGCCATGTATCTTTGTCACAAAGACATGATTTTTCCTACATTTGTAGAGTGTATGAGTTGCAATTAACTACTATCATAAGGGCAAACCATGCAACTATTACCTGCAAAAGAAAATGTAAGAGCATTTGAAGTGATGACTGCATTCTATAGCTGAGAATGCAACAAGGCCATAAGAAACAGTTTGTTCAACTTGATAAACATCATAACTTCTCTTGTTCCTATGTGATGATTGTCTGTGGAAGATTAGACCTTTAGAGTTGGCAATACTTAGAAGGTTATTGTTCCATTTAATATTACTCTCAAAGTTAGGCACCTCTGTTGATTTCAATCCTTCATGAAGTTTAACGGACGATCCGAATATCCCTCAAGTCCTGGATCTTCAGAAAAGGACCGACCAAAGTCTCCATGCATTAGAATTGATATGGATATCAAAGAGGGTCAAACAATAACTAGATGTTAACTTTGCAAGCAACCTGGTCTTGTTGGAAAAGAATACACCGAAATGTTCTGCAATTTAATGCACAAAGGTAAATTTTATTTTAATGCTTAAGCCATGATCATTTTAGTTATTTTATATTCTCTGGTCTTATATGTCAATATGCATAATTTTTGTTAAACGAAAAATATGTACAATGCCAAAAAAAAAAAAAGATTATTAGATGTATTTTTTCGCTATTCATAATTCTTCTTTTCGTTCATTTATCAATTGGCTTACAAGTTATCCTACAAAATTAGCTGGGGTGGTTATTTTTTCTGGTTCCAGAAAAATTCAAGATTATCCTTTGAATAGATTTATTTTTATTTTTTATTATCTTATATCAACCTGTTTATATAAAATGTAAACTGACAAGAATTGTTATTGTTTTATTTTGGGATAATGTCACTTTTGATACTTGTACTTTCACAAAATATTTAATGTGATATTTGTACTTTTAAAGATGTATATGTGGTACTTAAACTCAATATATGTTTTATTATAATACTTGTCCTTTCGTAAAATGTCCAATGTGTTACATGTACTTTGAAGATGTCTAATGTGGTACATTAATTATCAATATATGTTTCATTATGGTACTTATTAACAACGATAGTAAATTGCTAAATTAACCAATAAAAATGTGACACAATCTTTTTTCCAAATCATAAAGACTACATGAATAATTTAACATTATGCAAAAAATTAAATAAAAAAATTAAAATTAAAAAACAAGTAACCATATGGTTGATAAAGAAATAAGTAAATAGTAAACTTACAGAAAAGTACATGTATTTTCATGGTAAAAAAAATCATTTCAAAAAGGAAAATTTTATATAGAAGATGATGTTTTTGTTTATGTAAGTTTAATGTTTATTTCCTTTTTATTAATTGTATGATTAGTTATTTGTTTTTTTAATTTAATTTGATGTGTTTTCTTTATTTACTTTCTCACATAATGTTATATTATCTGTTTGGACTTGATGATTTGATAAAAAAATTACGTGTTGAATTTTCATTGGTTGGTTTAGAAATTTTCTAACAGTGCTATTAGTAGGTACCATAATAAAACACATTTATAATTTGAGTACCACATTGAACATTTTATGAAGGTACAAGTATCATAAAAAAATACTTATTAATAGTTTAGGTATCATATTGAATTTTTCAAAGTATAGATACTATATTTTTGAAAGTATAAGTACCAAATGTAGCATTATTCTTTTTATTTTTTATTTATAAAAAGCTTACACCACACGGATTTGTTTGTCTTGGTACATTTTCAACTATCTAAAATATTATTTTCGATAGTCTTTTTTTTTTCTCCGACATCAAACTATTTTTTTTTGTGACTTCGAAGATAAAAAACAAACACAAATTACAAATACTAGCCCAATTCCCCAAGTGGAGATACTTCAAAAATTCACAACTCATGGCTTTCCCTATGTACCAGCTTGACCAGTCTGTCAGTCTCCTGATTGTCTTCTCTAGAAATATGTGAAACACTCCAATGATTAAACTGTGTCAGCAATTGAAAAATCCTCTTTATCAAGGTCGAGTTAAATCCTTCTGTCAGACTCTTTTGAATAATCTTAATTGCTTCAAGACTATCAGTATGAATAATCATGTGATCATAACCCCGATCAATTAAAGTACCTAAATCATCCAAGATTCTCCATAGCTCAGCCTCAAACACTGAGCAGCTCTCCAAGAATCTATTGAAGCTAAAAATTCACTCCCCATTTCGGTTTCTCACAATTCCCCCTGCAGCAGCAGAACCACTTTCATATATGATAAAGCCGTCATTATACAAACACGCCTAGTTCCCAACCAAATGTATAGAAGAAGTCAGAATTTGAGTCGAATAATTTAAAGTCATACCAGATGAGGCAAAATGTTTGGCCCAACAATGAGAAACTTTGATGGACTCAACATTACTCCAAGAAACATCTTGGAATATGAAGATATTACGATTCTTCTATATACACCAAATAATAATCCCAAAAAAGCATTGCCAAATTATGATGATTTTGTAAGTTTGAGGTGAGCCAGTCCTACAGATTGTTAGAATAAAATGTCTTGTCAATCAATGGGAATTAATAGATTCTAAATGTTACACACTGCATTACAGTCCCTGATAGCATGCAGTACATCTTCTGAGATATGTCCACAAACCCTACACAATGAACTGTGCTCGAGACCTCGACGAACCCTTTCCACATTTCTCATCAGCCTCTACTTGAACGCAAGCCAAATGAAGAATCTAACCTTCTGGGGTCCTTGAAACTTAAAAGGAAAAGTGCTACACATCCTACTTTGGTTTCCAAGATGATTCCCAAAGTTTACCATATGCTTTTAACAGAAAAGGAGCCTGTCGAGGTACTTTCCCATATAATTCTATCAGTACCTACTGCCAAATGCGATGGGGGAATCCCTATAATCTTACAAATTATCATCTTAGGCAACCAAAGTTGAAACAAATCTAGATTCCAAGTGCCATTACCAAGAACCATATCACTCAAAACATAGTCCAAATCAAGGTTCATGTGACTAGGAATCATTCAAACAAGAGGCCCCACACCTAGTACCCACGAATCCTGCCAGCATCTGACACTTTTCCCATCTCTCACTAACCAAAGCAGATTCTCCAAGTAAGTGGCCAAACCTTTATAAGGGCTCTCCACAAAAACAATCATCTGTTGCGCGATAATGAGTCGGGCAAACTTTTGCAACCTCATATTTAGCTCGGAGAATCTAGACCCAAAGAGTTTTAGAATCTGTCACAAGTTTGTACCTTAAATTCATTATAAAAGACGTGTTAGAATCTTGAAGCTTCCGAAAACCAAGACCTCCATGATCTTTAGGCTGATAGATATCTTCCTAGCTAATCAAAGCCATTTTCTTGCCACTACTCGAAGATCCCCAATCAAATTGATACACCATATGTTCAACTTCCTCACACAAACCTTTGGGTATCATCATTGACCGCATAAAGTAACTAGGGATCACCAGTAAGACTGATTGAGCCAGAGTAGCCTTACTAGCTAGAGATAACGAGCTTGCATCCCAACATCACAATTTGCTCTGAACCTTGTCAACAACAAACCACAAAGTGTTATTTGTTACTTTTTCATGGAACAAGGGCACATCCAAATATTTCCCAAGATTTTGGACTTTTCGAAAGCCAAGAAGATTGCAAAATCTATCCCCCATATCCTCACACCATCTGAAAAAAAAATATTAGTTTTATTAGCATTAATCTTATGTCCAGAAAAAACATAAAAACTATCTAGGATTCTCTTCAGGACTGTGGCTTGATCCTCTTCTGCTTGGCCAAACAAAATCAGACCATCTGCAAAAAAATAGGTGAGACAGGGGAGGACCTGATTGAGCCAAGTGAATAGGCATTCAACACCTAGAATTGACACTCGAATGTATATTGTGGTCGAGCCATTCCATACATAGAATGAACAGGTACGGTGAAAGTGGACACCCTTGACGTACCCCTTAGTTGGACGGGACTTCTGTGTTGTTGTGTCATTCCACAAAATTTGCATGGTGGAAGTTTTGATAGCTAACATAATAACATTAATTAAAAAATTTGGAATACCTGCAGCTTGGAGAGATGCTTCAATAAACTCTCATCGCACACGATCATAGGCATTCTCAAGATTAATCTTAACTGCAAACCAGTTAATAGACTTTTTCTTAATCCTTATAGAGTGAAACACTTCCTGAGTAATAATAATATTATTTGTAGTGCTCCTTCCTGTAATAAAACCAATCTACTCTTGGCTGATAATTTTTGAAAAAACCAACTTAAACGGATTGACAATGATCTTCATCACCAACTTATAGAGAACCGAGCACAAACTGATAGGTCAAAACTGAGAAAAACATTTTGGAGTTTGAAACCTTTGGAATGAGAACAATTAAAGTATTGTTGAGCTGCGGGTCCATTTTTCCCCTAGCAAAGATATTTTTGATCCATGCACAATGTAACACCCCGAAAGTTGCTACAGTAAGAAAGTGAGATATTATCTTTGATATAGTAAAATAAGAAAATAAAATGAAAAAAAAGGGAAAAGTTTGAGTTAGGTAAACAAAATCTGTTTAGGAAGTATATTATGATGTATTAATTCAAGAAAAGACTAAATAGCAAAAGTGAGAAAAGTTTTGTGACCTAAGAGTAAATACTCAAAATTTGATGGGTTAAAGTGTAAATTTGAAAAAGTTGAAGGACCAATAGTGCAAATATTTTAAGGGTAGAAGGATCTAGAAAATAGGGAAAATGGATGAATTAGGACCAAATTGAATAAGTGGAAAAAATATAAGGGGTTAAATTGCAATTTTACTAGAATGAGTAATGACTCAATGGAGGAATTTTGAAAGATCATAAAGGGCAAAATAGTTATCTAGCAAGAAAGATATTTGAAGAGTAATGATGATGTTGGTGATATTTTAGATTAAATAAATAAATATTAGTTTATTAATATTTTGATTTGACATTTAATTATATTTAATTATTATATTTAGTATATAAGGAAAGAAAGATGAAGAATTCTCTTCATCTTTCCATGGTTCCAACGTGAGAAGAAGAAAAGAAAGAAAGAAAATTTTTCTTTCCTTTACAATTTGGTCATTTCACCAAAAATCCTCCATTTTCATTTTGAAATCAAAAGAATTTCTATAGCCACCAAGAGAGAAAAATAATAAGGAGACTATGGGGAGCTAGAATATCAATTTAGATTCGAGAAAATAGAAGTTGGAGGAGAGAGAAAGTTAAGTTAAAGTTTGGTTTCATTAAGTTGATGTGAAAAAAGAGATAGTGGAATTAATTATGTGAATTAAGTGAGATGTCAAAGAAAAATTATGTAATAATGAATAGAGAACTTTTATGAAAAAAGGTGATTAAATTGGAAAGTTATAAAAGTTTACAAGAAAATATTGATAATAATGCACATAGTGAAAAATAAAAGAATATATGAATATTGTAATCCAAACTAAAATTATTTCCTAAGTTGTGGAAATTAATGGTTAAATCGTAAATTTGAGAAAATTTATATTAGAAATAGAAAAGTGAAGTGCATAACAATTAGAATGAGAAAAATTGATGTTGTAGTGAATTTTGGAATATTAATAAGTATTGAATTATGTTATATGTGTTATTAAAAGTAAATATATTGTTATACGAAATATTGTGCTAATAACTAAATTACAAAATATTAAAAGTGATATGTGAAATACATGATAAGGATTATGAGAGAATTATGGATGAATATTGAATTTAGTAATATATTACATGTATTAAAGATAGTGAAGATATAAGTATATGGATTATTGTTATAAGGATTAAATTGTAAAGTATGTAAAAGCATTATGCGAAAAGTGTAAAAGTGATATGTGTGTATGATATAAATTGCCCAAGTAGACGAGATTAGAACTACTAGGATATTAGTGGCATGCCATTAAGGGACCCTAGCGCGCTCTTCGATTATTAGTACGTCAGTGTTATCTGATTAGCACATTTGTGCTCTTTGTATAGCACTTTAGTGCTCTCTGTTCAATAGTGCATAATAATGCACCTCTGTATCAGTTTCATATATATTAAGTGTTCTGTTTAGTCTACTGGGCCTTTGCTAAAAAGGTAAACAATTTTCGTTACAAGGTAAAGGTTTATCTTTGATTCATGTTTGAAATAATGAATTAAAATAAATTGTGAAAGAAATAGTGAGAAAATCATGAAAAATTACACTAAATGGTGAAATATGATACATGTATAAAAAGAGTAGTAATTTTTATAAGTTTATTTGAGGACTTAAGGACTAAATTGTGAAATATGTAAAAAGTTACAAATGAATATGATAAATAAACAAAGAAACGAGATATTGGAAATTAAGAAATTTAATAGAGTTTAAATATCATGGGTACTTACTAAGTCTTCACTGACTTAATGCGTTTATTTTCAACGCGTAGGTACAGTGCTTTTGAAGAGTTGTAATTGAGGTCATGGACATCCATCTCATCACATCTCCAAGTATCAAGAGGGTATGTTTCAAAATTTTGAATAGAATGACATGTACTTAGGAAGATCAAGCGTGTTCCAAGTAGTAGGGACTAAAATATAAGTTATGAAAACTTTATTTTTTTTAATGTTCAAACATATTAGTGATTAGCCAAAATCACTTTGGCACCAAATGTAATATTCCTATATCAAGTTCCTTTGGGTCAAACCGGGTATAGGGGTGTTACACATAAATCGAGCCCCCAATATGATCTCACTGACTCTGGAAGAAGAGAGCTTGATATCCATCACTTTCTAGAGCCTTTAGAGGGTCCCATATCAAACAAAGTGGTCTTTATTTCCTCATCAGTGATGGGCTTCAAAAATTGGGTCTCGCCATCCTGAAGTTGCGAGAAAGAACTAGTAGGAAGTCCCTTCATCGGTCCTGGGTCTTTACCATATAAATTGTTAAAAAATCAAATCGCCTCATGCCGCAAGTTTTTATCATAAAAAATCCACTCTCTTTTATTATTTTTCAGAGCCACAATTTGACTTTTCTTTCTTCTTCTAATAGTATGGCTACAAAAAAATTTTGTATTTCGGTCCCCCAAAGAGAGCCAATCACATCTCGTCTTCTGTTTCTAGAGAAGTTCTTCGTGATACAAGACCTGTTCCAGTTCCTCCCTAACTTCCAAATCCAACTGAAATAGAGAATCCGACTAAGAATAATCCAAATTATGCTGAATAGAATGAAATTTATGAAGCAACCTTTTTTACGAGACCCAATGTGACCATAAACCTGTTTGTTCCACTCTTTTATTTGACTTGTAAAGTTAGCCACTATATTTGACATTGAGCCATGAAAATTCCAACTCTTCTATACAAAGTCAGTAAACTCTGAATGTTCAACTCATCCTGCTAGAAACTGAAAAGGACATCCCATAATAGAATTAAGCCTAGGATGAAGTGATAAAAACAAAGGCCTGTGGTCAGACTTGAGTCTAGGGAGGTGAGTCACATAACAATTTGGAAAAGACACAAGCCACACACCATTCTTGATAAATCTGTCTAACTACTCATAGACTCTACCTTTATACCACGTGAAAGGAGCCCCTCTGAATCCAAAATCATGAACCCCAGTCGTATCCATAAAATCCCCAAAGTAAGAACATCTTTTCCCACTAACTCGCCCACCTTTCTTTTCGCTAGAGGCTTAAAGCGTGTTAAAATCTCTAACTACCACCCAAGGAGAACCATTACTTGGAAAAGTCGCATTTAGAGCGTCCCAAAGCCGTTTTCGTTTACAACTATTAGAATTATAGTAAACAAAAATAACAAAATGGGATGCTGGGAAGAACTATCGAAAACACGAGTTAAAATAAATTTAGGATGGCTTCGAAGAATTTCGACTTGAAGTGACTTCTTCTATCCAATCCAAATACCTTTAGAGAAACTGATTGCTTCTACCTGGTGAGAACATTGAAAACCAAGATTAAGGATAACCGAGTCAACTTTTCCACCACTAACTCTTATTTCTAACAGACGCACAATATCTGGTTTATATTCTCGATTATATTCATGAAAAATTTGCAAAAACTTGCTACTAGCACACATTTGAAAATTCCAAGAAAAATAGAAATAGTCAAATAATAATAAAAAATAAAGAAGGTAAAAAGTAACTATAAATACTAATTAACAACCTCTTTCACAATTTTTTCCATCATGGTTCAAACTTCCCTTCTCAACCTCTTTCTTGATCTACGAGCTTATGAGTTTGGCCATAGAATTCATGGAGTTTAATAGCGGAACCCTCGCATTACCTGAGTTTTTAAATCATTCCCCACGGTCCCAAACGATTTTGCTAATAGCGTCGCCACTTCAGATAGAACCACTTTTAGCCCCTGAACCCTTCCTTTTGAAATCATTATTCCTTTACCTCTTCCAAAAGAATCAACACCTTCATTTGAACTGATATTTTTAGGTAGCTCATTATCCTTGAAAATAATAACTAAATGTCTCATAGGGTCAAGGACCTCGCTATTGAGTTTCACCATTGACTCAATAGGATCGTTGAAGGTAGGGTTAAAATGGGAATTCACACCCATCATGATTAGATCATCCATAATATGCGAAGCCCCCAAAACTTGATTTTACTTCATACCGTCTTCTTTCAAAGGCAAAACAATATCCAATTTATTCCCATTTCCAAGCTCACATTGACCAGTCTCTGTTAAAATTGGGTCTCCGCTTATTGCATTTTCTATAACCCCCGAATCTGTGTCAATACAAGGTGGACCATTTTGTATACTCGTATTTGCTCCAAGCCCAACCTCTATTAGAGTATCAGTCTCAGGGTGAGTTTGGATGGGTGGTACGTTTACCTGCGGTTAGTGTAAAAACAACGGTGGCGGTGAGATTAGATACTATAGCGATACTGTAGTGTGAGACAAAAAGTAAGCTAAACGCACCACACCGCACCCAATCACCCATCCAAACCCACCAGCATCTATGGCCCAAAAGCCTCTATCGTCTCCACCACCTTATATTTTTCCAATGAGACTTCCACTGCCGAGACTCTATCCACCTCTGTAATGTTCGTTGAGCCGGAGCTAGGACAAAGATTCTGCATGTGTCCAAACCTGCCATAATAGAAGCACACTAACGGGAGCGATTCGAATTCAACCCTCTGAACCACTTTCTTAACCAGGATCTGTGAGATCAGAAGTTTTCCCAGATCGATGAACACTGCCATTTGGGTAAATTTGCCTCTCGAGCCCTTGTCCATCTGAAAGTCGAGTTTCGTGACTTTACCTATCAGACTCCCTATCTATTGCAAAACACACTATTTGTAAAGGTCACTTGGCAGACCAAGCAACCAGACCCAGACCATAGTGCTACTGGGAAAGTCTTGAAGGGGATTAAACTTTGGGGGTCCACGATTGAACAGTGAGGTACTGTCTGATCACGATCCACGACCCTTGGGGGAGAACTTTCTTGTAGTCCTCTCGGCTTTGAAATCTAGCTAGGAAATATCCATTTTCAACATCCATGAGATGGAACTATTGTGAGGGTTTTCAGAGGTTGTGAATCCTATTTTGTAGGAGGGTGTAGGATAAGTTCCGACCTAATAGTTTAACCACCACTGTGGTCGTCATATCTCTAACGACAATTTGTTGGATCCTTTCGGAGAAATTGATTGCTGGAATTCCATTGACATTAGTCCTCATGATATCTCATTCTATAAAGTCAAAGTCCTCATCGCAACCAGATCCAGAAATCCCTCGTCCCAGAACTTTGTCTATCCAAGACATTCCCGATGTTGGTGTTGAATCTACGGCCATATCGCTATTCGAATTTGAATCCAAGTCCTTAAAACGAACTTTTTTGGTGTTCCGATCAATCGAGTTGTCACCTCCGCCATCCTCAGTCATCTATATCAGTTGATTTTATTTTCTCTTATCAGTGCTTTGATTAAATGATAACGATGTTCACATCAACATATATTTTAATGTTTTAGTAGGTACCTAAAAAAGCATAAAGTTAGTTTATGTTTTCCAAGTTTTTTTTCTTTTCTTTTTTAAGTATATATAATTCAACACAATTCAAATTTATTTTCATTCATATTTATATATTTGATAAAAGCATCTTTATTATAACTAAATGACCATAAAATCAATGGGAAAGACCTTGCTTATGCTTGTTATTAGTGCACCCCTCGATCATGACCTTGATTACCTTAGCACAATTGGGTTCGACCACCACCTATCATAATTTATCTCCCTTAACCACGCCATAACTTCTGCAAGATCAGGTGCCAAGCTTCCTAAATTGTGCCCAGTACAACATTTCACCAGAATGTTGATTGCGTCCCTGTTACGCGCCATCCACCCCGCTGCATTTTCATTCTCCAAAGTGATTGCATCAACATTACATTTGGTCCAACAACTAATTTACCTTTTAAATCACCCAACTTATCATTTAGTTTCACATAGATCATAAATCTTTAATTTAATAATATCACATCATTTGACTTTTAATACTGGCAAACTGTTGAGAAGCATCAAACGGTTGAATTCATTTCACAATAAGCTTATGTTAGAATTAAGTGACCCAAATCCTTATTTAAATAAAATACTGTGGTAAAATAAAATAAAAGTAAAATCCCAATAGAATTATACTTCTTTTATTTTATTTTAGAATAAGGTTTCTAAACCTTATTAAACTCCATCTATTTGATATTATTTGAATAAGGAGTTTCACTCCTATTAGAATAAGGTTTACAAGCCTATAAATAGGCATAGTCTACTCCTCTTGTAATTAAGTTTTTTCGACATAGTGAATTTTCTTCTCCTCTGCCCGTGGTTTTTTCCCGAAAGGGTTTCCACGTAAAATTTGTGTGTTCTTTATTTTTCTATTTCTATTTTTCTTTGCGATATATTGTCATTACCGACATTATATTTTTCTCAAATTGGTATCAGAGCTTCCGGGTTGTTCATCTCAATCACGGTAATGACATTTTTAACCTCCTAACTATATTTAACAACTAACCAACTATATATAACTAACATCACTACATTCCCCCTCAAGTTGTGCCCCCAATTTGGATAAAAGATATTTATGTTGTTGAATTCCCAGACCTTTTGATAATATGTCAACTAGTTGTTCCTTTGTTGTGACATGTTTGGGCTAAATGGAGATTTTCTCATATAAAGTGAAAATAAATTTCTATATGTTTAGTTCGCTCGTGAAAGATATGTTGGATAATTTGAGTTGAGATGATAGATCTGGAGACAATATAAAATTAAAACAGTAGACTTCGAGGCACGAGTGACGCTTTCCAAATAGAACAATTTGCCCCCACACAATTTCTAGAGGGTTAAGAAAAGGTCTTTTCGGGACATAATGAAGACTTTTTATTTCTTTTGGTTAGCAAAATCGAGGAATTCCCTAACTCTTACTCTAATTTCTAAATTTGGATTGATTGTAATAATAATGTTTTGAGCTCCATAGTCCCTCTATTTATACGCACTAAATGGAAACTATTAAAGAGCCACAACCATTCATATTGGACATACTTTTTAGAAGAAACATATCCCATGGAAATAAAATGTATCCATTGGACGAATGAATCATCACTTTTTAATCCAAATAAGTGCTCATGAATCACACCAAGTGATCCATTAATAATATTTAATGAATTTGAAATCTACAATTTCCAACAATCCCCCACTAGATTGCTAATTCCAGAAAATAAGTACACAACGATCATGCATAAAGAAGGGTGTCCACAGATTGAACCTTCCTTTAGTGCAAACTCTTAAAGTATCAACAAAGATAATGATGGCTAGTCACTTGAAGCATCACTCGTCAATACCGAAAAAATTACACACATAACCATAAAGTATTAGAGTAAGAATTTATTTGCTTTAGCACTGTTATGCTCATGTGGTCATCCCGTTTCATGAACATGTACGAGAGAAAACCATAAAGAAAACTCTCGTTGAAGTAACACCACTTCATGTCCATGTAGGTGGATTTCATGACAATAAATGTCCATCCATTAAGAGTAAAACTCATCCTCTTAAAACATAAACACTAAATCCTGATTCTTAGTGCACGTTGTCATTCGATAACTTGTTATTACCCTTTGAACCTCGAAACTAACTTTTGGCTAGAAGAAAGTAGGGTTTCCATTATCAATGACGCGATTAGAATGATTTTAATCCTATCTTAGTGGTGGTACTCTTAACCAAATCCCTCGACAAACCTTTTGTTAATGGATCCACTAAATTGCCCATTGACTTAACATAGGTAATAGTTATCACACCGTCCCTAACCAGTTGTTTCACATACTCATGTCTCAAACTTATATGTCTAGACTTTCCATTATACACCTTATTGTACGCTCGAGACATGGTGGATTCACTATTACAATGTACGAAAATAGCAAACCTACGTTGTGGCCATAACTTTAGATCTAGCAAGAGATCTCTTAGCCATTTCGCTTTATTGCCAATATCCGCCAACACTATAAATTCAGCCTCCATAATTGAATGTGAGATGCAAGTTTGTTTTTTGGAGGCCCAACTAATGACTCCACCTGTGATTGTAAAAATCCATCTCGATGTGGACTTATTGTCACTTAAACTTGTAATCCAACTTGCATCCGAGTAACCTTCTAGTATCACGAGATAATCACTATAGAATAATCCCAAATTTTTTGTTTTCTTAAGATAGTAAAAAATCCTACTAATTCCTTTCCAATGATTGATACTAGGAAAACTTGTAAATCTCGCCAATTTGCACACAATAAATGTTATATCGGGTTTAGTGCAATGTATTGCATACATTAGACTTCCCATTGCGCTGGCATACTCAAGTTGCACTATAGCCTTGCCATTATTCTCATTTAACTTGAAGTTCAAATTGAATGGAGTTTTCGAATCCTTAATATTCAAGTGTTTGAACTTCTCCAATAATTTCTCGATGTATTGAGATTGCTTTTGTACAAAGCCTCTTTCATGCTTTTGCACCTTTATACCTAGAATTGTATCTACCTCGTTGAGATCCTTCATCTTAAAATTCGAGGCTAGATACTCTTTGGTCTCACGAATGCCTTCCAAGTTCATCCCAAAAATCAACAAATCGTCTACATAGAGAAAAATAATTACACTGTACATATCGCTGAATTTAGTGTAAATACATTTATTCGCACCATTATGTAAAAAACCATATGACAAGATAATCGAGTCAAATTTCTCATGCCACTTTTAGGTGCTTGTTTTAAACCATATAATGACTTGATCAACTTACACACCTTATGTTTATTCCCAGGAAGCGCAAAGCCTTCTGGTTGCTCTATGTAGACTTCATCTTCGAGATTACCATTCAAAAAAGCTGTCTTAACATCCATTTGATATACATGTAACTTATGGATAGATGCAAGTGCCATGAGAATTCGAATGAAGGTCATTGTAGCCACCAGTGCATAGGTGTCAAAATAATCTAGGCATTCCTTTTACCTGAATCCTTTTGCCACCAATCTAACCTTAAAGGTTGGAGAACCCCTGATTGGATTATTCTTGTAAACACTCATTTACACCTGATAGACTTTGATCATTGAGGAAGATAAACTAGGATCCAAGTATTGTTGGACAATATTGAATCCATTTCATCATTGATCACCTCTTTCCAAAATTCTGCATCCTTAGAAGTCATGGCTTCACCATAGGATTATGGATCACCATCCACATTAAACATTATGAGGATCTTTCTAGTTATGGATTCTCCATTTCCCTCAATGAGGAATGCTAGATATTGCGAGAAAATGAAATCGATACCAAAGTCCTTTACTTTTCTCACTCCTTGACGTTTCCTCAACTTCGTATCATTATTGTCACAAAGACATCTCTTGGTTTGATCACTTGAGATCATTGGTTGATATTCTTTTCCGAATCTGGTGAATCATCGAAAACTTTATTTTTAATGAATACAACATCTCTTATTTCAGTTATCGTATTTGACACTAAGTCAAGAACATTATAAGCCTTAGAGTGTTGGGCATATCCAAATAATGCACCTTTGATGGCTTTTGGTCCTAACTTTTTTCTTCGTTGGTTGAGAACTCTATAGTAAGCCAAACACCCCTACACTTTGAAATAATCTAATTTTGGCATCTGACCCTTCTATAACTCATATGAAGATACTTAGAATTTTCTTGATGATATTCTGTTAAGATATAACATGCAGTCAATAATGCTTTACCCTATAGATTATATGGAAGTTTAACATTTAACAATATCAAGTTAACCATATCCATTAAAGTACGATTGTTTCTTTCTGCTAAACCATTTTGTTGCAGAGTATAAGGTGGGGAACACTCATGTACTACACCTTGTTCCTCACAAAATACATTAAAATCATTTGAAAAATATTCATCCCCTTTATCACTACGAAGCACTTTTATTTTCTTACTAAACAAATTCTTAACCTCATTTTAAAAATGTTTTAACATATCAAAAGCATCCCCTTTACTTCTCATGAGATACACATAAGTAAATATAGAGAAGTCATCTATAAAAGTGATAAAATATCATTTTCTATCTCTTGTTAGAGTTACATTTAATTCACAAACATCTGAATGAATTAAATCTAACACTTGTGAATTCCTTTCACATTTATTAGGAAACAGTTTCTTGGTAATTTTTGATTGAATATAAACATCACATTTATTTACAAACTCATCGTTACTTAGACTGATACAACCATTCTTTTGTATATATGGCAAAGTTTTAAAATTAAAATCTGCTAGACGTGCATGCCGCAAATGAAAAGATTCAACAATATGAGTAAAAGAATTGACTTTATTCATATCAATGCTCAACTTGAACATGCCTTCGTTACAATATTCTTTTCCCACATATATATCACCCTTAAGCAGGACTAACTTATCGGATTCCAAGATAACCTTGAACCCTTTATTACACAGAAGACTTGTGGACACTAAATTCTTTCTCGCATTGGAAACATGCAACAGATTGATCAAATTCAATTTCTTTCCAGATGTGAAGTTAAGTTCCATCGTCCCTTCATCGAGCACCTTAAAATTGATTAGTTGCCCATAAGCACTTCACGGTTTGCCATTAGTTCATAACTCTAGAATTTTTTCGGTCATTACACACATTGACAGTAGCTCCGGGGTTGAGCCACCAATTATAAGACATATCAGTCATGGCTATGTTGAGTTCGGTAATCATACCAATTTTCAAACTCTCGATCCCTTCTGTAACCATGGCCACTAAGTCCATGTCCTCCACCATACTAGCTTTGAAAGTTGTGACATCTTGCTTCTTTTTGAGAAGTTTACAATCCTTAATGTAGTGTCCTTTCTTATTGCAATTATAACAATTACAAGATTTTTTCTTCTTGTCTTGTATGTTCTTGGTTTTGAATGTGGCCTTTCACTTACTGTTTCGAGAGTTCTTGGACTTACTCACATAGTTCACTTTATAACTTTAGGGAAGATACACCCCATCACGCTTTTGATTTTCCTCTTCAATACATAAATGCCTAAGTATTTTCTCCACAGTGAAGTCCTCTTCCATAAGCAGAAGTTTATTTCGATAATTTTTCCAAGACAAGAGAACTTCAAGATGATAGCCCCGACTTGTAACAATTCTGAAATAAAAAATTTTAGGTCACGAAGCCTACTTACAAGGACTTGATCCATGTTTGGGATACTATCGAGCATTTTGAATTCGAAATACTTCATTATTAAAAATTTATCGGTAACTTGTTGCTCGGTGTTGTATTTCTCTTCAAGAGCTTTCCATATTTCCACCAACGATTGCATTCACATGTAGAGATCATACAATCAATTGAACAAGGTGTTAAGGATGGGTCCACAACATGTGAAATTGTCTTCCTCGTGCTTCTTCTTGAGTTTGTCCACTTTCGTAATTTCTTGAGGTTTGTATTAGGGGTAGGATCCTCTATGGATTGTAGGTTTGGGTCCAGAACTTACGCTACATTCAAGATGGTAAGAAGGAAAAACATCTTGTCCTTTTAGTGATTGAAGTTTGAGCATCAAATCGGTCAAGTTTCACAAACTCTTGGTTCATCACTTTGAATATGGTGGTAACCTGCATTGCCATCTCCTAAATTGTTCTATTTGATTGTTGGATAATTTGAGTGGAGACGATAGATCTAGAGATAATATGGAACTAAAATAGTAAACTTTGAGGCACGGGTGACACTTTCCAAAAAGAACAATTTTCCCTCACACAAAATTGTTAGAGGGTTAAGACAAAGGTCTTCCCGGGATATGGACCTTTTTTTATTTCCTTTAATTAGAAAAATTGAGGCATTCCCTAAATCTTACTCTAATTTTTGAAAGTGGATTGATTGTAATAATAATTTTTTGAGCACCATAGTCCCTCTACTTATATGCACTAAATGGACACTATTGAACAGCCACAACCCTTCGTATTAAACATACTTCTTACAAGAAACATGTCTTATGAAAATAAAATGTATTCATTGGATGAACAAATCGTCACTTTCTAATCCAAATAAGTGCTTATGAATCACACTAAGCGATCCATTAATAATATCTAATGAATTTGCAATCTACAATTTCCAACAAGATAGGATTTACAGTTATTTGAATTGTTACTTTACTATCACAACACAACATAGGTGATCCTTTGTGCCTGTCACATCCCGAGATCAGGTTCGGAAGTTTTGGCCATACGAAGTTAAGGTTCACCATCAAAACTTGGGCGAACTGGGGGTTCACCAAGGTTCAAGCGAGCTAGGTGTTCGCTAGGGAAGTTTTAGCAAAGGGGTTTGCTAGCAGCATTGCACTTCAAATGAAGTGGTAAGGGGTTCGCCAGTTCCACTGCGAGGCAAGTTCATTAATGTGTTTGGCAACTTGAGATCCACCAGTCTGTGTGATGAACTGTGTTCGCCAGGTAAGTTGCGAACTGGGTTCGCTAGTCAATGTGCAAACTGGGTTGGCCGATCAAAGTTACAATCAAACTCAAATTAGGAAAAAAGTGATTTACCGTATCTAGGAATACTTTATGTACAAGAAATAAATTTCTTAAGTTAGGTTTTCCAAAGATATCTAGGATTCTTAGGTCTATAAATATGACCCTTAATTCTGTGAATTCTTTACTGAATATTCTGCCATTAAAGTCCCTGTTCTAAGTTCTGTCCGTAGCAATTCGAGTAAGTCTGTGTCTTGCTTAAGTTGATCATCTCTAAAGTTGGGTTCGCTTGTGTGTGTGATGTCTGTATGTTCTATTAGTAATTTGTTTGTTTGTTAATAACCAGCTGGACCATCTTCTAGCAAGGACAAAGCCAAAGCCAAACTCTTTTAAGTTTCTCTATTTTTTGATGAGTGATCAAGTTCAGATATGAATATGCTAACTGTCATGTTTTTCAGTTTATTCTGATATGTTTTTAAGAAATATGTTCCGAAACAAGTTCAAAGGCAGGTTTTCTGAAAAGCTCTGTTCTAAGCTACGAAACTCTGTTAAAAAAGATTTTTAAAAGATGATTTTAAAGCACTATTTAATGCGAGCTTCTATGCAAGCTATTGATAATATGAATGTTTTGAAAGAATGGTTTTAAACTGTGTATTTGAAAGGCACTTAACATGAGAGTTTTTTTAAGCAAACAATTTGGCTTTGCTTTGTACAAGCTCTCTAATTAGCTTTGCCTTAGTATGAGCTTTCTATTCTGTGTGCTCCTTAATGAGCCTTGTGATTGGTATAACAATGGTGTGAATACTCACCCTGTTAAGTCTCACTTTGGTGGTCCTTTGAGAGCATGAGCCTTTGTAAGCCTCACTCTACGTGTTTATTGAGAGCATGGGCTTTTGTGAGATTTGTGATATGTCTCATTCTGTTTGCTCCTTACGAGCTAGGTTGAATATAACTTATTCAATGAGATATGTCTTTTGTTTGATGAACCAGTTGTGTAAACTAAATGCCGACTCTATTCTTAATTTTTGATATGTACGAGCCGATCTCACGGCTTTATTCTAAACTCAAATTCATTTGTTAAAAAGAAATATAGCCTTGCACGATTTTAATGCGAGTCCCTTTTAAAAGAAATTTTTCGAAGGAAAAGATTTGTAAACATTGCTTTTAAACTGTCTTCAAAAAAATTGTTTTCAGATGCAAACTGCTCTTGCATTCTCAACTGCGAACTTAGCACGCAAAACATTTTCAAATTAAAGTTTTCTACTGTTTTCAAATATTTTTTAAGGCATGATTTAATGGTTTCTGATTATTCACTAAGTTCTCCCTGAACTCACCCACTTTTCTCTTACCTCTCAGGTAAGTAGATTGCGAGTGGCATTGGAGAGGTTGATGATTTGGCGAGACACCTAATTGGTATCGACGAACCATATAGATGGGCTATGGGTTGTTATATGATTTTTTTTCTAAGAATAGTTATAACATTGATTTGGTTACCCGAAAAATTTGTTTAAGGATTAGTTTAGTATGTTTGATTTTAAATTAATTTTATTATTGCGAACCATGTCTTGAAATACACATGTTCTTTTTCACTATCAATAGAATGATGTTATTCATGTACGTTTATTTTGTTTACTATTTATGGTTATAAATTACTTGTGTACTCTTGTATGATACATTATTTGCATAAGATTCAAAATTATTGTACATGATCCGCTGAATCCTGTGAACTCATGTTGTTGTGTGAGCCTATATTAAACTGCGAACCTATGGTTGTGTGTTTATCTGTAGCCTTTTATGTTGGTAAAAGTTTGGGAGCTATGTTTGAATGTTTTGCTTGATGTTTTAGAGTAGTGCGAACCTATTGATATTTTTAAGTATTTAGAAGTATTGCTTCACACAATTATATACTCTGATGTTTTGTGCATGCGAACCCTTTTGGTTTGTGTAAGAGTGTTTTTTGCGGCCTTGTTAAAGATTAACACTATGTTCACGTGCTTTATATATATGTATAAGTTGTGTGTTGGAGGTTAGGTTGGGAGTTAATAGAGAGTCACTTCGGTGGCTAATGTGGCACGCCAAATTTGGGTCGGATCTTTCTGACCGAGTTTGGGGTGTGACAGTGCCCAACACCAAGTTCCTTAAGCAAGCCACTTAACTGCACTAGTACAACCATTATTGAAGCAATACTTCAATATTTTGTTTCTATCGAAGAGCATGACATAATGCTTCTTTTTTTACTTCCATGAAAGTAAGGGATCCCCAAGCTTAACATAAAACCCCGAGACAGATTGTCTTGACATGGGACATGATGCCCAATCAGAATCATAATACACCACCAGTTGTATATCATCTATTGCTGGAATAAACAACCCTTGACCAAGATTCTTTTTTATGTACCTAATCACCCAAAGAGCTACATCGTAATGTGACTTCTTTGGCCACTGCATAAATTGACTAAGATGTTGCACCATAAAGTTATTTATAGCCTTGTGTCTATTAAGTATAACAACCTCCCAATAAGTCTTTGATAAAGAGTAATGTCAACAAACTCATTATCATCAGAATTTGCTTTTATAAATTCATCATACTTGCATGATGTCAAATTCTAACTTTGTTCCAAAAGAGTGATTGTCGTCTTAGATCCCCCTAACCTTGCATCATGAATCAACTCTAGAGCATATTTTCATTGGTTCCATAGTATACCAGCCTCGAACTGTGCAACCTCAATACCAAGAAAATACTGAAGATATCCCAAATATATCATTTTAAAATTTTATGCAAAATATTTTTAAGTTCAACTACAAGGTCACTATCATTATTGATTATTAAAAGGTCATCTACATATATAAGCATGAGACTAATTTATCTCAATTTCTCTTAGTGAATAAAGAATAATCATGTTTCCTCTAAACATAATCATTGCAAAGAAAAGCTTCAGTAAGCTTGATATTCTAATTTTGAGAGGTTGCTTCAAACTATACAAGGATTTGAGCAATCGACACACTCATGTCTCCCGCTAATTGTGAAAACCCTAGGGAAGAGTCATATACACTTCCTTATGCAAGTCGCCCTGTAGAAAGGCATTGTAAACATCCATTTGAAATAAAGGACAACCTAACCAAACATCAAAAGCAAGAACGAGATGGGCAATAACCTATTTAGCAACAGGAGAAAATGTATCATAGAAATCAATACTCGGCTATTGAGTATACCCTTGACCAACGAGATGAATTTTAAATTGTTCGATAGTTCCATCCAACTTGTACTTGAACTTATAAACCCATTTACAAACATAGGGGTCTTACCTCGAGGTAAAGGCCTCCAAATCTTGAATCTCGTATTTCACAACATTAACCCAACTAGGGTCCCTAGCTGCTTCTTGATAAGTATTTGGTTCAACAATATCGGATAGAGAAGCAATAAAATATTAAGCATGTAAAGGTAAATGATAATTAGTGATACATTGATAAATGGGATATTAAACTTTAGCAAGTGAAAAAGATGAAGAAGATTGAGAAGAGAAAAAAAAGTCTGTCAACCATGATGGCGGTCGGTTGGACCAGGTAGAATGACATAAGGGTGAAATTGGATTAGACAAAATAAGAGTAGGAGAAGAGGGAGGAATGTTGCAAAAAAATAGGATGAAGAAGATGGGGTGAGAGAAGGTAATGAAGTAAAAGGATGAAACAAGTTAGCAGGTGGGTCAAAAGGTAAGCTAGAACCTAAGGAAAGAAGTTAACGTAAAAATTATAGGAAGAGGAAATGGGAAATAAATGTGGTGTAGTAGACTAACATTAAAAAGGAAAAATCGTCTTATGAAATTTAACATCACAATTAACAAAAAAATGATTGGTAGCAAGATTGAACAAAAGATAATCCTTTTGAACAATGGAGTAACCCATAAAAGTAAAAGGTATAGATTGAGGTTGAAATTTATCTAAAGAATGAAGGACTTTAGCATAGCAAAGGAAACCAAAGACCTGTAAGAGGGACAACTCAAGTGGTTTATTATATAAAATTTCAACGAGTCTTCCAACCTAAAACTGAGGTCCGTAAATGATAGATAATAAAAAAACTAGTGAGAATAAATTCATCCAAAAATTTAGTAGGAACAGTACATTGAAATTTAAGGACTCTAGCTATTTCCAACAAGTGACAATGTTTACCATTAGGTATACCATTTTGTTGGGGCATACAGACACGAATCTTGATGAAAAATACCCAAATAAGAAAACAAAGAATTATACTCGACAATAAAAAATTCAGTAACATTATCATTACGAAAAATTTTATAATAATGAAAAATTGAGTTTTACCAAGGTAATAAATTGCTTTAAAGCAAAAAATAGCATCACTTTTGAGTGTAAGAAGATACGTACAAGTTGCTCGAATATAATCATAAACCATCGTAAGAAAGTAAAGATCCCACTATGTGTGGAAAATTTATATGGCTTTCGCAAGTCAAGATTGACTAAGGAGAATGATGTTTCAACTCGAGAATGACTAAAGGGAAAAGGTAAACGTGTTTGTTTAACTAGTAGAAAAACATGAAAAATATGAATATAACCATTGTTCAAAGGATTATAATGAAAATGGTCCATTTTGTTCATTTTGGAAAAAGGAGGCATGACCAAAGAAATGATGCATCGATTGTGGACAAAAAATAAGAAACTAAAGAAGGTGTAGCCTTAGTTGAAGAAAAATGTGGTAAGAGTAGATAAAGACCATGCCGCACTCTACCAAACCTCTTCACCTATCAATTGCAAAGGTCTTGTAAAAGAGAAATATGAATATAAAAAGAAACAAAAAATGTAAGTCACGAGTCAATTTTTAGATGGAAATCAAATTAAATTAAAATAAGGGATATAAAAAACATTGGTAAGCTTGTGCGAATGTGAAAAGGCTCGAGTACCCATATGAGAAATAGAGATAGACTTATCAATAGGAAATAAAAAAGATGATGGACAAGATGCATGTAGAACTAAAGAATCCAAACAGTGGATATCCGATGTCATATAGTTGGTAGCACCAATATCCAAAATCCAACGAGAAGCAAAAGGCTGTGAAACTATATCTGTTGTAACAACCCGATTTTTAGTGGTGCCAAAAAGGGTAGTTTTGGAACCCCATATTCGTAAAATGGGTCCATAAATATTAAATATAGAAATTTATGAAGTTGGTATAAAAGTTTATTAAAGTTTGGACCATCAATTTTGTTTATTAATTGTTTAATTAATGTACAAGGACTAAATTATAAAACTGTTATCGTTATAGATTTTTAATTGGCAAAAGGCTTAAGGACTTAAATTGTAATTAACCAAATATCCAAAATAGTAATTAAACTATTTTGTAACATGGAATAGTGGCATATGATGACATTCCCTCTAACTTTGATTAATGGTTAATTAATTAAGTTTAAGATAATTAATAAAATTTAGTTAATCCCTAATTATACTATATAAACTAAATTAAACAAAGAAGGAAAGAAAACCCTTATTGAAGGTCAAACTTTCGATCCTCAATTGGTGAGTTCAATTAAGTCATTTTCTTGTAAGTTATATGTTTTGAGGTCATGGGAGCTTGTTTTAGCTAGCCTATGTACGAATTTGTGAAACTGTTAAATTTTTTTAAGTTTCCATTGCTGATTTCTTGAATAAATTGGTCTTAAATTGATAGTTTTTAAGCTTAGATGTGAAAAGGATTAGATTGTAAAGTTTAACTATTAGTTTTGCACAAAAGGAATAAAGGGAATAAATTTTAAAAAGCATGTGAAATATCTAGAATAATAGATAGTAGGGAGTCCCTAAGGGGTGTAATTGAGATCGATTTTAAAATCGAGGCTTAAAATTGAAAGATATTTTTATTTTGGTTTTATGGACTAAATTGAATAAAATACAAAAAATTAAGGGGCATTTAAAAAATGGAATTAAATAGGTTCATGAATATCATGGAGTGATATAAATATGTTTGATATTGATGCATTGTCTAAAATAATTGTTTAGATCAAGAATTGAATCTAATCGGTGATAACCGGAGAACAACAAAATTGTGGAAGTCTTTGAAGTTTCAACTTGTTGTTTTTGCCAGGTAAATTCATATGAAACTTACTAATTTATTTGATGTTATGCTGAATTGTGTTTATTTCATAAATATGTTTAGTTTAAGGTGAATTTGGCATATTTTCATCAATTGGATTGAATTTCAAAATATAGAAATATTGTTTATTACGAATAGGTACAAAGTACAAAAATGAAGATGTTTAACATTGAATTACATGTGCTTGAATATTTTATTGTAAATTGACGATCGGGTCGAGCGAGGGGAGTTACATTTAGTGGTATCAAACCTACGGTTTAGTCAATTCTAGGACTGAAATGTAAAGCATGTTGAGTCTAGAAATACATGCCACAATAACCTGTGATAGTGTGATGTCTTCTGATTCGAATTGACTTTTTTTCCATATAGCTAAACCATGTCAGCCGAATCAAATCGAGTTGTGTCTAATGAAGTTGAAAGTAATATTTGTGCTTTCAAACAGGGAGCTTCCCGAAGTTTTCCCATTCCACAACGGCTAGGGAGTGAGGCAAGAGATGCCTTCTTCCAAATGATGAACTAGTGGTTCACCCAATATATGGGAGCTACCCCTTCCGCTCCACAACCTCAAATGCACCTTCCTTCCCCGATTGTGCCTCCTGTGGTACCCTTTCATCCTCAAGTTTCTAATTCGGTACCCATTAACCATCCTCTGATATATAAAATTTGTAAATGTGGGGCAAAATAATTCAAAGGCAAGAAAAAGGATGAACCAAAAAAAGTTGAGTATTGGATAGAAAACACTAAGAGGGTTGTTGACAAGTTATTTTGTATTCCTGATGATTTTTTAGGATGTGTCGTATCATTGCTCAAAGAAGAAGCATACCAATGGTGGATGACTCTAACGTTTGTTGTTCTGAAAGATCGAGTAAACTGGGAGTTCTTCCAAATTGAATTAAAAAGAAGTATGTTAGCCGACTATATCTTGAAAATAAAAAGAGAGAGTTTATGAAACTGAAACTGAGAGATAGGTTAGTAGTTGAATATGAATGAGAATTCATTTGCCTCAGTAAATATGTCAGAGAGCTTGTATTTAGTGAAGCTGAAATGTGTACTCGTTTTGAGTGGAGATTGAACGAGGACATACAAATGTTAGTAGGAGGTGTGGAATTGGAAAAGTTTGTTATTCTATCGGAGAGGGCTCAGAAAATGGAGGAAATGCATAAGGAGAAAAAGTAGACCAAACCTAAGATATGAGATTCTAGTAAATGGTGTATGGCCATATCTTTCCCAACTCATCCATCTAAAAAGTCAAAATATTTGTAAAGTCGTTTCTCTACTCCATTAGGGATTTTTGAGAGAGATGGGCCGAGACCGAGTATTCTGCAACCTCAGACTACGTCGGTAGCTAGTGTCAAAAGTGTTCGTAATGCAAATAGACCAATTTGATGACATTGTGGAAGAAACATAATGGTGAATGTAGATTGAAAAATGGAGCTTGTTTTCTATGTTGTTCCAAACAACATTTAAGAAGAGATTGTTCGAATAGGCCAGATCAAAGCAAGGAACAAAGTGTAAAGCCAGTGTCGACTCTGTAGAGGATTAGAAGACCAGGAACTGGTAGCAGCGCTGGTGCTAATCGAGGTGGAACTAGAGATAAGTTATGAGATTCGAGGCTTGTGCACCTACTAGAGCTTATGCTATTCGAGCCAGAAAGGAAGGTACTGCTACTAACATTATTGCTGATACATTTTTCTCTATTTGATGCTTTTGTGCCTGCATTGATTGACTCTGGGTCAACATATTCATACATCTACACCTCATTAGTAGCTTAAAAAATATACTAGTAGAATTGATAGAATTTGATGTTTGGGTAACCAACCTGTTAGGTTAAAGTGTTCTTGTCAATAAAAGTTGTAATGACTGTCAACTGGAAATTTGAGGCCGTAAGTTTTTAGCTAATTTGATGTTATTACTTTTTGATGAATATGAAATATTTTTCAGAATGGATTGGTTGACTTTTCACGATGTAGTGGTCAACTGTAAACAAAAGTGAATATCATTGCGGTGTCAGGATGGTGAATTGATAAATGTGAAGGCTGACAGATCTGATTGCTCGACTAACATAATATCAATGATGTTAGCTCGACTAACATAATATCTATGATGTCAACTCAATAATTAATCAAAAAAGGGTTTGAGGCATATTTAGCCTATATTCTAGATACTAGAGTGACAGGATCTAAAATAGAGCAAGTTTCGATGGTTTGAGAATTCACATACATGTTTCCCAAAGAGTTGTTAGGTTTCTCGCCTGAGAGAGAAATTAATTTTGTTGTTGAAATAACACCAAAACTATTTCGATTTCTATTGCATCATACAGGCTGACTCTGATTAAATTAAAAAAATTGAAAGCTCAGTTGCAAGAACTGTTAGATCAGGGATTTATCCGACCAAGTGTGTCACCTTGCTCCAATATTATTTGTGAAAAAGAAAGATGGAACCCTAAGATTGTGTATCGACTACTGGTAGTTGAATAAAGTGACCATAAAGAACAAGTATCTAATGCCCTAAATCGATATTTTTTTATCAATTGATAGGAGAAACAATGTTTTCTAAAATTGACCTTTGGTAATCCATTTGGGGTTACTAATGCTGTAGCCGATTTTATGGATTTGATAAACAAAATATTTCAGCAGTATCTGGAAAAGTTTGTTTTTGTGTCAACATTTCAGAATTGTATTACAGACTTTTCGAGAAAAGCAATTATATGCAAAGTTCAACAAATGTGAATTTAGGTCACGAGAAGTGGGATTCCTAGGTTACATTATATTAGCTAAAGGCATTCAAGTGGATCCGAGTAATATCTCAACAATTGTTAACTAGAAACCTTCGAAGAATATCACTGAGATACAAAGTTTTATAGAATCGGTCTGATACTATCGACAGTTTGTTAAAGGTTTCTCGATAATAGCCCTCCTATTAACAAAATTGTTACAAAATAATATCAACTTTGTTTTGTCAGGAAAGTGCCAGCAAAGTTTCAAACAGTTGGAAGCAATGTTAACAGAAGCTCTAGTTTTAAGTTAGGCTGAATCTGGAAAAGAATTTTTTGTGTTCAGTGACATGTCACTCAACTGTTTGGGTTGTGTACTAATACAAGAGGGAAAATTAGTTGCTTATGCTTCTTAGAAACTTAAGCCACATGAGAAGAATTATCCTACACATGATCTCGAACTTTCAACAGTGGTTTTTACTCTAAAGATTTGGAGACACTATTTGTACGTGGAAAAATGCCACATTTTCATAGATCACAAAAGTCTAAAATACTTGCTGACACAGAAAGAATTGAAATTGAGACAACGCAGGTGGCTTGAATTGCTTAAAGACTATGATCTGATTATAGATTATCATCCTAAAAAAGCTACCATTGTAGCTGATGCCTTGAGTCAAAAGTCCCTATTTACTTTAAAGGTGATGAATACCCGTTTGGCTTTGGAACGAGATAGTTCTATTTTAGCTGAGTTGATAGTTAAACTTATTTTTCTTCAAAAGATTCAGGAGTTGCAAAAAGATGATTCCAAGTTGTAAGCAAAATAGAAACTTGTTGAAGATAATCAGAGCAAAGAGTTCAGTGTTGATGATAACGTAAATCTATATTTTTGAAAGTGTTTGTGTGTACCGAATAATTTAGAATTGAAATGAGACATTTTGCACGAAGCTCATAATAGTACTTACATGATACATTTGGGCATCAATAAGATGTATAATGAGTTGAAACTGTTTTATTGGTGGCCGAGAATGGAAAGATAGAGTACTGAATACAAGTGGAAACACAGAAATATACACACTTTTTCATGCCTTTTTTAACTCAAATTCATGTAGTTTCAGTAAAATTCTTATCGAAAAAATATATAATAATTATAAAATACTTAAGTTGCACTCAAATTATGGACATGTTTAATTTTAATTAATTTTATATAAAATTTTGATTATTTTTTATTATTTTTGACAGATTTGCACAAAGGGCAAAAAATGGCTCGACAGACACTGCTAAAAGCACAAAACCGAGAAGCAATTTTGAAGCATGAAGGCGAAATAATTTTTCAGCATAAGATGGTCAAAATTATGTGTATTAATTCATAATATAATTAATTTTAATTTTAATCCAATTTAATTTGGGTTAAATAAATTACTATTAATTAATTATGAAAAGGGGCCCAATTGAGCTGAACCGAGAAAATTGAACCAATCGAGCACTGGGCAAGCCAAAATCGTCCAACATGCTGACCCAATCAGCTTGCTTGGCTGGTTATTTGGCTTGAAAAATGGCTCTTGAAGACTCCTTCAAATTTCATTCAAACCCTAGTATTTCTGCCTTTCTAGATTTGCCCCAACCTTAAAATAGCAAGTTTGAAACCTTAAAACTTGCCACTAGTGTGGTCGGCCATGGGGGGACTCTATGGCTGCTGATTTTTGCTAATTTTGGAAGCCATCTCAACCTATAACAAACCCCTTGGCTAATCACTTCAAGCACATCTTAAACTCATTCATTTCTTTACTTCTTTTTCATTTTTTTCTCTTCATTCCCTTCCATTGTTATTCATTTTCATCCCCTATTCCTATGCCGATTTCACCTCTTGAAAAAGAGTCCTTCAACCACCATTTGGAGTAGCATTCAAGTGTTCGTGGAAGCCTCGATTTAACAAGAACAAGCAGAGAAGGAGGAGCGGAGCAAACTAGTCAAGCCTCGGAGAAACACCAAATTTGATTCTTGTTCCTTATCTTTTTAATTTAATTGTTGTTGTTATGAACATGTTTATGAATATTTGTGATGTTGATATGTTTAATTTAGTTCATATAGCTTAAATTTAATTCGGGTTAGGTTGATTGCATTTCGTCTACTTGAGTTATTAAAATCGTGTTTGTGTTGTTACAGGCCTCGTTAAGATGTTTGATTAAGTAAAACCATGACTAAGTTATTCTTGCATTACAATTGTAAGGTAACTAATGAATTAATTATTTAATTGGATTTAAATTGTAATTATTGACACGATACTTAATTAGTGCATGTTTAATCATCTAAGGTAGCTGAGGGTTAAGTTAGCAACGGTATCTAACGATACATTAGCCTTGCATAACTTGCAAGATTATTGTGATTAAACTGTTTGAAGGTAGAAATACATTGTTACCTCACGTAATCCTTTATGTGCTTATGAGATTGAATTAATTGTTTGAATTGACATACAGATATGTACAAGAGATTATTTTAATTTCATAGGTATGTATGTGTATTAAAATATTTTCTTATTAAAATTTGTTTATTCAGTTGAATTGACATAGAGATATAGTCAAGAGATAAATGGATTTTGGTATGTAAGTATGTTCATAAGTTAGAAATTACCGAGTTACCGTGAATTTATTCGTAACAACATAAACATGAGTTTAATAATTCTAAGTTAAGAAATGTAATTAATCTAGCACAATTATGTCATTTTGAGTAAAATCATCTTTTGAAATCATGCATTGGAACTTTTATTTTAATTTTATTTATTTTACTTAGTTAAAATATTTTTCTTCACCAAAGTGTTTTTAAAATTGCATTCATAAATATTTTTTTTCACAGTCCTTGTGGGTACGATAACTCTACATTTACTTGTCACTTTATTACTTGTTGCGATTGTGTACACTTGCACATTCCTGTCGTTTCAAGTTTTTGGTGCCGTTGTCGGGGGACAACTTTAAAAATTCATTATTTGTGAATTTGTTAATTTTTCATTTTGGTTTATTTCTCTATTCAATTTTAACTTAATTAATTTTTCTGTGTTTTTTTCAAGTGTTTATGAGTATTGATCGAATTATCGATTTACTCCATGTAGACCCTGAGATTGAAAGAGCTTTTCGACAGCGGAGAAGACAAGCAAGTCAAAGAAGGACCGAAGAGATGAACTTCAAAAATCTGAATCAAGGAAATAGAGCAAACACTGCCCAAAATCCTATCCTTATTGCTGATGATAGGGATAGAGCTTTAAAACAGTATGTTGTGCCAGTGTTTCATGATCATAATTCGGGTATTAGGGGACCCAAAATTGAGGCACAACAGTTCGAGCTGAAGCCATTCATGTTCCAGATGCTTCAGATAGTGGGCTAATTCAGTGGAATGCCTACCGAAGATCCTTAACTTCACTTAAGACTATTCATGGAGGTGAGCGATTATTTTAAGTTAGCTTGAGTACCCGAAGATATGCTACGATTAAAATTGTTCCCATATTCGTTGAGGGACAGATCTCGAGGCCGGTTGTACTCATTGCCCCCGAATTCAATTTCCATATGGCAAGAGTTAATAGAAAGATTCCTCATGAAGTATTTTCTACCTAGCAAGAATGCTAAGTTGAGGAATGAGATCACTGCTTTCTAACAAATGGATGATGAGTCCTTGTATGAGGCATGAGAAAGGTACAAAGAATTATTACTAAAATGCCCTCATCACAGAATCCCATATTGCATCCAACTTGAGACGTTTTATAACGGTCTCAATGCCCACACGAGGATTGTAGTGGATGCTTTTGCTAATGGTGCTCTCCTTTCTGAGTCTTATAATGAGGTTTATGGAATCATTGAGAGGATTGCCAGCAAAAATTATCAATATCCAACCAATCGAGTAACGTCAGGAAGACGAGTTGCTGGAATACATGAAGTAGATGCTCTTACTTCACTCACATCTCAAGTATCCTTAATATCCTTAATGCTTAAAAATTTTACCACTAATGGGTTTAATAGTTTTGCAGCACAACCACCGCACCAATTTGAAAATGTAGCCTGTGTCTATTGTGGGGAAAGACATATGTTTGAAGAATATCCATCGAACTCAGAATCCATTTATTACATGGGTAACTAGAACCAAAACCGAGGAAGGCAGGGAATACAATCCAATTCCTACAACCCATCGTGGCGAAACCACCCTAATTTCTCCTAGAGTAACTAAGGGGTTGGACCCAGTAACACATATGCCCAACCTAGACCGACCCAGCCACCTATTTTTACCCAATAAGTTCAGAAACAACCTCAAGCTGAACCATCCAATGGCTTAGAAAACTTGTTGAAGGTATACATAGCCAAGAATGATGCCTTAATCAAAATCCAGGCAGCTACATTGAAAAACTTGGAAAACCAAATCAGCCAGCTTGCAACTGAACTCAGAAACTGACTACAAGGTGCTTTACCTAGTGATACGGAGAATCTGAGGAATTCTGGGAAGGAACATTGTAAAGCGTTGAAATTGAGAAGCGAAAAGACATTAGAGCCCAACACACTCGAAGTTTAAAAGGAGCCAACTGATGCTCAAGACTCAGGGGAAGTTCCATCGAGTGTTGAAATTCCAGTTACACTAGAACCAGAATATGCCAAATCTGATAAGGTAACTTCTTAACCACTTAATTTTGATAAACTAACAAATTCATTAGATGCAGAATTGCCACAGAAGACGAATAAACCAGTTCCAGTAAAGAAGCCTCCACTACCCTACCCTCAGAGACTTCAGAAGTAGAAGAACGAAGTTCAATTCTAGAAGTTTCTAGACATACTCAAGAAACTTCATATCAACATTCCATTGGTTGAAGCACTTGAATAAATGTCGAACTAGGTCAAATTCATGAAGGATATCCTGTCAAAATAATGAAGACTTGGAGAATTTAACACGGTAGCCTTGACAAAGGAATGCAATGCATATCTTTAAGACAAAGTACCTCCAAAGTTGAAGGATCCTAGATGTTTTACCATACCTTGCAACATTGGAGCAACATATTGTGGTAAGACACTATGTGTTTTGGGCGCGAGTATCAACTTGATGCCCATGTCAATATTTAGGAAGTTGGGGATAGGTGAAGTTAGACCTACTACGGTTACACTTCAATTAGCAGATCGGTCCTTAGCACGCCTAGAAGGAAAAATTGAGGACGTGTAGAAAAAATTATTTTTCTTACTGAATTTGTTATTCTAGACTTTGAAGCAGACAAAGAAGTGCCAATCATACTAGGAAGGCCTTTCCTAGCAACTAGAAGGACCCTTATTGATTTGCAGAAGGGCAAGCTTACCATGCGTGTCCAAGACAATCAGGTAACATTTAATGTTTCTAGGTCCATGAAAATTTCCTAACACAATTGATGATTGTTCTACAGTGTTCGATTTAGAAGAATTAATCATGGAAATTTAACTCAACTATGTTGAGGACCCATTGGAACAAATTTTGACATCAGAACCTCCAAGTGATGAAGAGGAATATGAATACTTAGCTTTGCTAGAAGCTAATCAAAGGGGATTTAATCTGTAATCCCTCTTTGAATCTTTGGAGTCAGAGAATTGAAATTATGCCCAACCAAAAGCGTCAATTGAGGAGCAACCTAAATTAGAACTGAAGGTACTTTCCTCACATTTAAAATATGTTTATTTAGGTAATGCTTCTACTTTGCCTGTGATTGTTTTAGTGGAATTAACCGTTGAGCAAGAAGGCTATCGGATGGACCATAGTCAATATTCACAGTATTAGTCCATCTGTATGCATGCACAAGATCATCGTGGAAGATGGCGAAAAAGGGATGATTGATGGACAACGAAGACTGAACCCCATCACGGAGGACGTGGTAAAGAAAGAAATCATCAAGTTATTAGATGAGGGTATAATTTACCCCATCTCAGATAATTCGTGGGTAAGTCTGGTCCAGTGCATGCTAAAGAAAGAAGGTCTTATAGTCATTGAAAATGATAATAACCATTTGATACTGACTAGAACGGTTATGGGATAGAGAATTTGCATCGATTACCAAAAGCTAAACAAGGCGACTAGGAAATATCACTTTCCTTTGCCATTTTTGGACCAGATGCTGGATAGACTCACAGGGTGAGACTATTACTGTTTTCTCGATGGATACTCGGGGTATAATCAGATTACAGTAGCACCGAAAGATCAAGACAAGACAACATTCACCTACCCATATGTATTCAGAGATACATATGATGATTGCCTAGCCAATCTAGCCAAGGTACTAAAGCGATGCAAAGAAACAAACCTCATACTCAAATGGGAAAAGTGCCATTTCATGGTACAAAAAGGTATTGTTTTAGGGCATTGGATAATGAGACATGAAATTGAGGTAGGTAAAGCAAAAGTAGACTTTATTGAAAAACTCCCACCTCCAACATCTGTAAAGAGTGTTGGGGCTTTTTGGGCCATGCCGGTTTCTATCGAAGATTTATCAAGGACTTCTCCAACATTATTTAACCCTTATACAAATTATTGGAGAATGACACGCCATTCAAATTTGATGAAGAGTGCTTAAGAGCTTCCAAGGATTTGAAGAGTCGATTAGTTTAGGCACCCATAATTGTCACACTAGACTGGGGTTTTCCATTTGAATTGATGTGTGACGCAAGTGACTTCGCGATAGGAGCTGTCATGGGCCAGCGAAGGAATAAGGCTTTTCATCCCATCTACTATACAAGCCGGACTCTTACAGGTGCTCAACTGAATTATACGGTAACAGAGAAAGTGTTACTTGCTATTGTGTTTGCTTTTGACAAGTTTCGATCTTATCTTGTAGGTACCAAAGTGATTATCTATACGAACCATTCAGCAATTAAGTATTTACTTTCCAGGAAAGATGCTAAGCCAAGACTGATTTGATGGGTTTTTCTATTTCAAGAATTTGATCTAGAAATTCAAGATTGAAAGGGAGTAGAAAACCAAGTAGCAGACCACTTGTCCAGATTAGAGCCGCAAGAAGGGAATTCTCCACTTATACCCATTCAAGAGACATTTCTAGATGAACACATACTAAATGTAAATCATGTCCATAATACCCCTTGGTTTGCTGATATTGCTAACTTTTTAGCTTGTGGTTTGATGCCGATTGATAAGACGTATCATCAAAAGAAAAGGTTTCTTCACGATGTGAAGTACTATTTCTTGGAAGAACCATACTTCTTTAAAAAGTTTACAAATCAAATGATTAGGAGATACGTGGCAGAAGATGAAGTGCATAAGATTCTATATCATTGTCACTCAATTCCGAGTGGGGACACTTTAGAGGTACACGTACTGCGGCCAAAGTATTGAAAGTTATATTCTTTCGGCCAACACTATTCAAAGACACATATGCTTCCATAAAGAGTTGTGATCGAAGTCAAAGGGTTGGAAACGTCACCAAAAGAAATGAGATGCCCCAAACAAACATCATTGAGGTAGAATTATTCGAGGTTTGGGGTATTGAATTTCTCAGTCCTTTCCCTCCATCTTTTGGTCACAAGTACATATTGATAGCAGTAGACTACGTGTCTAAGTTGGTTGAGGCCGAGGTATATCCAACAAATGATGATAAGGTTGTGATGAAGTTTTTGCAGAAGCATGTGTTCACAAGGTTTGGAACCCTTAGAGCTATCATTAGTGATGAAGGGTCTCATTTTGTGAACAGATGGTTGAAATGGTTACTCGACAAACATGGAGTGAAGCATAAGGTTTCCACAGCTTACCATCCGCAGACGAATGGGCAAGCTGAACTAGCAAACAAAGAGATCAAAGGCATACTCGAGAAGGTAGTTTGGCCGAACCGATGAGATTGGTCCAAAAGACTGGATGATGCTTTATGGGCCTATAGGACAACATACAAGGCACCTTTAGGGATGTCACCCTATAGGTTGGTCTTTGGGAAAGCCTGTCATCTGCCCTTGGAGTTAGAGCACAAAGCTTACTGGGATCTCCAACAACTCAACTCGGATTTTAAGCTTGCTAAAGAGAAACGAATGCTCCAACTCAACAAGTTAGAAGAATTCCGAATGTTCTCATACGAGAATGCCAAATTACTCAAGGAAAGACTTAAGAGATGGCATGACAAGCACATTCGAGTTCGAGAATTTGAAGTAGGTCAGCAAGTCTTGTTATTCAATTCTAGATTAAGGTTCTTTCTAGGTAAGTCAAAATCACGTTGGTCCAGTCCATTTACGATTCACCGATTTTATCCATACGGAGTTGTCAAACTTCAAAGTAAGGTAGGTAATTTTCGAGTCAATGCTCAGTGCTTAAAACATTACTGGGGGATAAAATTGAACGGGATCAAATTTCGTTCGTTTTATCAAATATTTAATTCTTCTTGTTTTTGTTTTTTAATAAATGATTTAGGGTATATTTTTGGGATTAGTATGTTCAAATAAATTCTGTCTAGGAGATTAGAACTTAAGCGGGACCGATTGTGACCCCTCCAATCTTTCCTAGGAATTGATTTTAACATAATCTTTTGAGAAATTTCCCTAAATGGCAAAATAAATTTTTAGTTTTAAAATAAAAGGGTCAATTTTGATCTACGTTTTAAATTGCAACTCAATTTTGAATTTTCCTTAAGTCCAGGTACTTAATTAAATTATTTTCAAAATTTGGTTTCTCTTTTTGTAAGTATTAAAAATTAGATGTCTCTTTTTGTAAATATTTTCAAAAGGCATCTAGAATAAATGTTTTTAATTTAATAAATAAGATGATAATTATTAATATATAATTATGTCCATTATAATATATATTAATTATTATCAACTTTGCATAGAATTAGGATTAGTTTAAATTTGATCATATTTTATTTAATAAGTTTTATTTTAATAAACTAATAACAAATAATAATTTAATATACATTATATTAATTATTAATTTTTGTTAACTTTATGTAGAATTAGAACTTAGAATATTTTAATTATTAATTTGTTCTAAGAATTCTAATTAAACTCCTACTCCTTTCATTATAAATTTCACCCACCTTTTCCATTTTTTCACTCATCCCTCAATTAAATCCTAGCATCCACAACTCACCAAGCTCCAAATCACCTAGTGCCAAAATCTCTAGCCGCAACACCGCCTAGCTTCACTCGGCACCCTCACCCATTCGGCCAGCAGCCCCACGCATGTACCCAGCAACCCCACGCACAACGTGTGCGCCACCAGCCGCTCTGTGCCGTTGCACCTGCCACTCGTCCGGCTCTAGTAGCTCGCCAGGCCTGCTCGACTCACTTGCTTACTGACCACTACCCTACATCCGAGCGGCACACACATGCCCTGCTACTCCTTAGCATGCTGTTGCCGCCTTGCTACTCACACCACACTATCAAGACACCCTACAACCATCCCTAAACCAACCTCTTTTGCTTTTGCTTTAGATTTATTTTCTTTGAGTTCTTAACTTTTATAAAAAGGTGGTAAGACAAATTTTTCTCCTAAAATTTCAATTTTATTTAATTATTTAAAATTTCAAATTATTGAATTATTAATATTTTATACTAATTAAATTTTTGAGAAAATATTTTTTCTATCTTATGATTAGGTTAATCATGCCTCGTAAAAGAACTCGTGCCTCTACCCAAATTGACGAATCACAAAACAAATTCCACTATGAAGAAGCTAAAGCGAGATACGAAAACATTTTCAAGAATCAATAGATGCACCCAGAAAAAGGCTTTACGCTGAAAAAAACAACTATATTGATTTCATGGCATGCATTCGACAAGTTGCTGAAGCTCTCAATTGGGAGTTGTTTTGTGAGAAAAGACCTAGTGTGGATGAGGAGTTAGTCCGTGAATTTTATGCGAATTTAATTTTAAGCGATTTGATGGAAGTTTCTGTTCGCGAAATCAAGATACCAATAACCTGAAATGCTATTAATGAATTCTTTGAATTACCTAATTTCAAAAACAACGAATATTATTCCTTGATGAGCAATATGGAGTCTAAAAATCTGCAACAAATTCTCGAGGAACTTACAGTTCCAGGTTCTAAGTGGACAGTGTCAAAGTAAGGAATTCACACTTGTCGCAAAGAATATTTGACACCACTAGCGAAGGTATGGTTATATTTCATTCGATTCAGCCTTATGCCTATTTCACATGGGACTACAATTTCATTAGAGCGAATGGTCTTATTATACTCGATTTTAACTGGAAAGACCACTGATGTGGGAAAAATCATCCTGAGAGAAATACAAAATTGTGCCTCTAGACGTTCTGGCCCAGCTTACTTCCCCTTACGATAACAATTTTGTGCTTGAAAGCTAAAATTCTTGCAAACGTAAAGAAAACAAGTTATAGCCAGGGCACAATCACAGATTGGGACCTCTACGGGATAGCCAGAGACTCAGTTCTACAGCAACGAGTTGAAGAAAGCGAGGATCCCGAATAAGAAGAAGAAGATCCCACAGAGATCAAACCGATGCAATCAGCTGAAATCCCTGATAAGGCAGAACCAATGGAACCAGTAGCCGAACCTGATGTCACAACTTCAATGTTTAGAACTCAATCGTCTTGCCTAGATCTTCGAGATGAGCTGTCAAAGTTGATGGACATAATGCAGCATATGCAGTGGCAGCAACAAACTTACTAGAGATATTCAAAAATACGGGATGACTCAATGAGAAGCGCTCTTACGAAAATATACAATAACCCGTTTATTTTTGTTCCTGATTTTCCATATTTCATATTTGAACCATGGAGTCCACTATCGAAGAAGAAGCAAAGACGACGGAGCAAAAGATGAGTCAAATTCGGAAGGATCTGCAAATAAATAAAAGGGGGAGATCTTGACTTTATTTTATTTCTATTCTTAGGTTATTTAATGTTTTAGGATTAGGTTCAATTGGGATTTTTATTTTTCGCATAATAAAACAAGAGGTGGAAATCATAAATAAAAATGAGCAAGTTGCAAAATACAAAGTGTGTCAATAGATATATACATGTCTAAGATTGGATCTAGAGAGAGCTTGGTACTTTGAAATTTTTCTTCTCAGAATAAATTTTTCTTTTAATTATGATTAGTATATATTTTGTTCAAAAATTTGAAATTTTGTTAAGTATGCTAAACTTCAGTATAAATAAAGTTCGATTATTTCAATAATTACTATGTTAGCTTAATAATGACATGAATGTATTTTTAATAAAAATATTTTAGCTCCTTAGGAAAGTTAGGCATGCATGAAAGTTTAAGTCTCTACAATTGGCTTAGTAGTTTCTTGAGGCGAAATCCTAGGAAGCATGGAATGTTCAAAATGATTTAGGCAACTTGTTTTTGGACCGTTTGAGCTTTTCAAGCCAACCATGATGAATTTTTATCCCTTGAAACCCAACTTTGAGACTATATGGCCTAATTTTATTTGAACCCTTGCAATGTTTAGCCATCACTTCTCTCTTAATTATCTTTAAATTATCCGAAACACTAGACTCAGTACTATTTAGAATATTCTTTGAAAATAAGTTTGGAGGAGTTGAAAAGAAGTATCAAATGCTAAAAAAAATTGTAGTGCATATAGTAAAATGATCATGTTAAAAAAAAGAGAGCATATGTACTTGAAAGAAAATAGATGAACAAAAGAGCATGTGAAAGCAAAGTAAGTTGGTGTGTTGAAGGTAATTATTTCGAAGGTCCGATTGAAGCTGAGTCTAGGGTTTTTAGCCTAAATTTATCTATCTTTTACCTACCCCTAGCCTAGCCATGTTACAACCTTTTTAAAGACCTATTGATTCAAGTTTCTATGCTACCTACATTAGTGGAGAGAAGTTGCTATGATCAACATATGAAGGCATAAGTTAAACTTAATGGTTGCAACTTAATCTTGAATAAGAGAATAAAATCAAATTCGCAGGGATTTAACATGTCCAACTATAAATAGATGCCTCTTCCTTCATTGTAAAGAGGGGAAGTGGGGAGTAATAATAATTCTTAAGAGTATTTACTCAAATTTCTCTCTCTCTTGCGTTCTTATTTTGTTAATTTGTGTATAATTTATTTATTGATTTGTATATTATTGATTTCAAATCTCTTTTTCCCTTATTATTCATTTTCAAATTCATTATTTTCAAATTTGTTTACATTTTATTTTGCCTTATATTTTTTTTTGATACTCTTTGTTTTAAATTCATTGGTCTTTGATTATTGATGCTATTTAATCCTCTATTTGTTATTTTAGTTTTTCTTATTATTAAATTAATTATTTTAATATTATTAATACTATTATGTGCCATCATTAATCTTGTATTATTATTATTATTATTATTATTATTATTATTATTATAATATTCATGCGCATGCATCGTTTTTATGTAATATATATATTGTTTTATATATAGTATACGTATGCTTATATATATTTTATACATATGTTTTTGTTTTTATTTTACTTCCTAACTTTTATATACATATATATACTTTTATATTTAGTTTCAATTTTTTTTTACTTTTGTATATATGTACATGTATGTATTTATATATTTTTTCTAATGAATATTTATATATATATATATACGCACATGTCTATGTTTTTTAATTGCTTAAATACAAACTTAAATTTTCAACACATATGTTATAATGTATATATGTATATTTATATATTTTTCTTTATTTTCATAAATGCATTATATATATTTTGTTATAAATTCTATAGTCCAAAATTTTATATGTAAACCCATGTGTATGTATTTTATTCTTTATAATTTCATGTATATATTTTGTACCTTTTTTTTCTCTTTATATTTTTTTGTTTATTTCTTTCATTTGCTTATTGATTTGTGTTTTCATTTATATTGTTCATTTGATACTTTACATGTCGTTGTTTTTTATGTACATTAATTTGGTTTATTTCTATGCCATTGTTGTATTTATTATTGTATTTTACACTTAATGTAGCATTACATCATTTTTTTACTCGATTTTAAAATTTTCAAAATTGAGATAATACTCGTATTTAGGATTTTCAAGGAAATTGAGCCCTAACGTATTGGGTTCCAATTTTCTTCGTTAAATCTAACAATCGAGAATTGCTCATTAATCAAAAACTAAAATGAAAAGCTTGTTGTCGGGAATTTAATATGTTGTATCCTAACGTATTGGATGTGACGTATTGATTTCTCGAGACAAAGATTTTTTTTTTAAAAAATAATAACAAAGGAAATATTTCAAGTTTAGGATTTTGAGAAATTGTGCCCTAACGTATTGGGCCGCGATTTCTTTATAAATCTTAAACAAATGAATATTCTTTTAAATTTTATTACACGAGTATTTTGGACTAATTCATTTTTGAGGAATTAGAATGTCGTGCCCTAACGCATTGGGTGTGACATTTTCTTTCTTCGAAATGATAAGAGTCTTAATAAGTAACGTTTTTTAAGTTTTTATTAAGGATCATATTTTTAAATTTTCGACATTAAAGTACTAATTAATTAACTAGGTACCAATTTTGGGCATTACGAGGGTGCTAATCCTTCCTCGTACGTAACCGACTCCTGGATCCATTTTTCTAAAACTCGTAGGCCAAAGCTATTTTTTAGGTGATCCAATCACACCTCAATAAAATATTGGTGGCGACTCCCAATTTTTGTTTTTTTAAAGTAGACAACTAATTTTTGTTTTTTTCCAAAATAAAAGTTAGTTTCGACAGCTTGGCGACTCCGCTGGGGACAAACACGAGAGTCGAGCCAAAAATTGATTAATTTCTGTCTTATGTCGAAAATTTTTTTGAGATCCTTTTGTATTCATTATTTTCTTGCTTAATTGATCTTTGCATTATACATTGCATGAGTTGAATGATTTTACCCCTCTAAGTGGGAGTGAGAAACTAGTCCTTCGTGATGTTTTCACCTCTGTGCAGGATAGTGGATCTCTTTCGGGATACATTCGTACCTATGTCTTCGTGAGATTTTCATCTCCGTGTAGCCATAGGGAAATGTATCCCCTTGAACTGAACTCGGTCTGTATGAGCCTATAATGGGTGAGGATTGAGAAATCTGCTGGTTCAGGTACCCTTACTTCAGAACCGAACCGCATATAGAAGACCTTAGGAGCTCACCCTAGGTAGAGCCACTTCAAACCCCTAGTGGTCACCCGAATAGACGTTTTATTTATTCTTGCTTGTTTTTGCTTTGTACTAACCTGTTTCTTTTTTGTTATGATTGCATTACATTTTCATCATAAAAAAGAGGTGTTGATTCACGTTCAGTTGTGAAATAGAGAGCTTGTCATAAGAAAATGAGTTTCTTGATAAAATGGAAGACAATATGGTTGTCCGAATATGGTCCAAGAAAACATGGTAAGAGAAGGATGACAGTTTAATGGAGGATTACACGACTATGGCTCCGTTGCCCAAGGATTCAAGATAACAAAGATTATTCGAGAGCCGCTAAACTTTCTTAAAGAGAAGCCAACGAGCATCACGAGGATGAGTGAGCAATGATTTACAGCCCGGATCAAGCAAAGAGGAGATGGAAGAGACGTACCTTTTGAAGAGTTCGTGAGATTTATCTTAACGCTCGAATGAAGAAAAGGATCGAATGTCTTCGCCTATGAGGGCAAGGCCATATAAATATCCATTTTATGCAAAGAGATTTATTTTCTAGAAAAGTTTTCTAAATGAAATTGAATCAAAATTGACGCCTTTTTGCATTCATTTCATGCATTGCATTTGCTTCATATATATTAAAAAAATACTAAAAAATTCTATTTAATTTAAGTCATTCCTCAGATAATCTAGAAACCAACCAACCTACCAAACACCGCTACGGTACTCGATCGAAAACTAAAGACATGGAACAAAGGCTAGAACAGTTCCAAAAGGAAATGCAAGATCAGCTTCAACAACAAATGAATGAGCAGCTTGAGAAGATTCAACAAAAAAGATGGACAAAATGATGGAATCTCAAGGGAATATGATGGTTAAGTTGACTCAGTTGCTGACTGGAGGAATTGATAAAGGAAAAAGCTCTGTGCTTAATGTTGAAGAAGGAGACAGTGAGGGACCTGTTTATCCCCTAGGCTTTACCCCTCAGCATGTTGAGGTATATCCACGCAAATCTTCTGTCACCATCAAGCCCCAGCAGTTTCAGGCCGGTGCTGTAACACCAATGAATTTTCAAGCAGGATCAGGCTCTAACCCCGGAGACAACATTGTTAATCCTGCTATCCCTAACTTCGACGAAACAGCTAAAAAAGAGAAAATGAAGGATGAATTGCCAAAACAGCTAGAAAAAAAGTACAAATGGCTGGAAGAGAAATTTAAAGCGATGGAATGTGTTGAGAGCTACTATGGGATTGATGCTAAAGAATTAAGCTTGGTTCCAGATTTAGTACTCCCTTACAAGTTCAAAGTGCCAGAGTTTGAGAAGTATAATGGAACTAGTAGTCCTGAAGCCCATATTACTACGTTTTGTAGGCGGATGACTGGGTATGTTAGTAATGACCAGTTGCTGATACATTGTTTCCAGGATAGCCTCACAGGGGCAGCGTCCAAGTAATACAGTCGACTAAGTCATGCCAAGATTAATTCATAGAAAGATTTAACATAGGCATTCATAAAGCAGTACAATCATGTAACTGACATGGTACCAGATAGAATCACTCTACAAAACATGGAAAAGAATCCCGGTGAAAGTTTTAGGCAATACGCATAGAGGTGTAGGGAGGTCGCCGTCCAAGTTCAGCCACCGCTCTTGGAAAGGGAAATGACAATGCTATTCATAAATACATTGAAAGCTTCGTTCATCACACATATGTTAGGGAGTGCCACAAAAAGATTTTCTGACATAATCATGAATGATGAAATGATTGAAAGCGCCATAAGGAGAAGAAAGATTGATGCTGGAAGGCAAGCCTCAAAAGAAAAAGAAAATGAGGTGAACAACGTGAATACATACAGCAAATCGATTGCTAATCAGTAGGGTTCATCAAGACAAGAATCATGTGTGAAGCAAGATACTGAAAAACTCCAGTTCACGCCAATTCCAATGTCGTACAAGGAGTTGTATCAAAGTTTATTCGATGCGCATGTTATTTCTCCTTTATATGTGAAGCCTCCATAGCCTCCGTATCCCAAATGGTACGACGCAAGTGCACAATGCGATTATCATGCTGGAATTACGGGACACTCAATAGAGTTTTTTTAAAAAACTCTAACGATTATCATGCGGTTTTGCCTATTGAAGATAAAATTCTTTCTAAGTTTTTGAATCCAATTCTGATTGAAAAGAAATGTTCAAAGTTGTCCATCATGGTCAAATGTGTCAAAAGCAAATGATGCAAGTTCACAAAAAAGGTCCGTCCTAAAGAATTCCTTGAGAGAGACCTGGTATTGAAGAAGATCCTTCCCATACAAAAAGAACTTCATCCCAAGCTGGGAAGGACCTTATGTGAAAGACCTTATTTGGAAAAGCGTCAATTTTGATCAAAAAGAATAACAATGACATGCATAATCCTATGATTTCAGATTCAATCAAAAATATTTCAAAATATAAAAAAAAGCAAAAAAAAAGGAAGAAAAGAAGAAAGAAAATGGAGAGCCAAGGTGAAAACCCGCAAAGGGCGCCTTGAGACCAAAGGGGATTTAAGTTGAAAACTCAAAAAGGGCGGCTCAAATATTGATCAGAATGGGGCATGAGGTGATCAGAGTAGTTCAAATTTTGATCAGATTGGGGCATATGATGATCTTGAATCAACAGGAAAGGGTAGACAACATCTTGGGACATCGACAGAGTACTGTAGATCTCCTAAACACATGTCAAACTCAGAAAGTTTGTATAGAGAAGTTCAAGCTGCGATATCTGGGGCATCCAATTTTTAAATTGAATTTGCTATTTTTGGAATACTTCATTCTTTTCCAAGATACACATTCCCAGTCAATTTCTTTGTTATCCTTATTTTTTGATAATCTATTCCTTTCGAGCTATGCTCAGAACCAATTGTATTCTCATCCATTGTTATACCCTTTTTGCAAGCATGTTGCATTGGAATAATGATTAATGGACTAATAAAACTTTCACAAGGGAAGTTTGGCATATTACTCTAGAAGTTTCTAAATAATACAGGAACCTGAAACAAGACTATTGTTTAGAACGCACCATGTTTAAATGTTGGAAATCTGAAAAGGAAGAGTCTAAATTAGGACTTTCTCTTTGGATTTTGTTGTTAAAAACATTGATTGAACAAAATGACAAAGCTAAAATAAACAAGTAAGCAATGATCACCGAACAGTAGGAAGAGGTTTTCTTGGAGAAGAAAGCCTTCATTTATGATTGAGCCTTTTGTACGATACCTTGGGAATGGTGTAAGGGACCAAAGAGATTTAGATCCTGTATCATTGAATTGTGATAAGAGAGGATCGAGAAAAAGCCATATATTCCTACCTTTGGGTTACAGTGGGAGAATGATGGTACAAATTTTGCGCCCCAATGGATTGAACTTTGAGGTTTATAGTGGGGGGCAACCTGACTAAATGTTTCTTCAAAAAAGCTAGCCAAGCAAGAAGGTGTCGTAGCACATCAGTGTTAAAGCCTTAATAAACTTCGAGCAATGACAACCTAAGTGGGATCATTCTCGGAAAAAAAATTATTAAAAAAATTATGCATTCGTGCAAACACCATTAAAAAATGTCTAGTTAGGAGCATTTGATTCATTTTATGCCATCCTAATCATTAGGCAAAATTAGGTTCATTAGACATGTCATGTTCCCCAGAGAGCAGATCAGTGAAGATAACAGATCTTGCCTTCCTACACTGACAGCAAAGCAGATTGAAGACACCAGCCTTGTCTCCCTGGGTTGTAGCGGAGCAGGTTAAAAATAGCAGATCTTGCCTTCCTGCACCGACAGCGAAGCAGATCGAAGACACCAGCCTTGCCTCCCTGGGTTGCAGCGAAGCAGGTTAAAAATAGCAGATCTTGCCTTCCTGCACGGACAGTGAAGCAGATCGAAGACACCAGTCTTGCCTCCCTGGGTTGTAGCGGAGCAGGTTAAAAATAGCAGATCTTGCCTTCTTGCACCGACAGCAAAGCAGATCGAAGACACCAACCTTGCCTCCCCGGGTTGTAGCGGAGCAGGTTAAAAATAGCAGATCTTGCCTTCCTGCACCGACAGCGAAGCAGATCGAAGACACCAGCCTTGCCTCCCTGGGTTGTAGCGGAGCAGGTTAAAAATAGTAAATCTTGCCTTCCTGCACCGACAGCGAAGCAGATCAATAACCCCAGCCCTATCTCCCTGGACAGCAGTGGAATAGGTTGAAGATTGTAAGTCCTATCTCCCTGGTTAGTAGTGGAATAGGTTGAAGATTGTGAATCCTATCTCCCTGAGCAACAGTGGAGTAGGATGAAAATAGCAGATCTTGCCTTCTTGTACTGGTAGTGAAGCAGATCGAAGACATTAGTCTTATCGCCTTGACGTTGCAATGGAAAAGATTGAAGCCACAAGGCAAATCTTATTTCCCTGGCGTTGTAGCGGAGCAGATTGAAGCTACGACGGTGAATCTTATCTCCTGAGCATTAAGGCTTGGATTATCTGAAGTGGAGCGGATTGAAGCTGTGTGCAGTGAATCCTATATCTTTGGCATTACAGTGGAGCAGATTGAAACCACGACGGTGAATCTTACTCCCCTGACGGTGTAGTGGAACAGATTGAAGCTACGACGGTGAATCTTGTTTCCCCAACATTGCAATTTAAAAGACTGAAGATGGCGAATCTTATCTCCCTGAAGTTGTAGTGGAGCAGATTAAAGCCAATAATCCTATCTCCCTGAAGTCACAGTGGAGCGGATTAAAATCACAAATCTTATCTCCTTGAAGTTGCAGTGGAGCAGACCCAAGAAAGCGAGTCTTATCTCCCTGAAGTTGCAGTGGAGCAGACTCAAGAAATCAAGTCTTATCCCTCTGAAATTGCAGTGGGGCAGACTAAATAAACAAATCCCATCTCTCTAAAGTTGTAGTAGAGTGGATTAGAATCTCTCTGAAATTACAGTAGAGCAGATCGCATCAAGTTCATCTTTAAAGTTGCAGCAGATCAAGTTGAAGCTATAAGTCTTATCTCCCTGGAGTTGCAGTGGAGCAGATTAAAGATAGCAAATTTTGAAAAACTACAACGTGCAAATCCTATCTCCCTGGCATTGCAGTGGAGTAGGTTGAAGCACCAGTTCCTATACCTCTAAAGATGCAGTAGGAAGGAATGAGGCTATTTGAAGAAGAAGAAGAAGAGTGCTAAAGTCTAGTACGACCAGCAAAATTGGTCATTTCTAAAGTCTTTGCTCCGTTCTTGTTACATGATAATGAGAAAAGAGGGGCAGCTGTAATAGACCAATTTAGCCCGGGCTCATAAAAAAATAATAAACCCAAAATAATAAAACAAAGTCCAAAATTATATCATTTGGCCCGATCGGGATGGCCCATTACTTGAAAAGGTTGAAGGTCTATCTACAAGCTTGATGCATATGGAAACATAATCTTCAATGATATGCAATCTTCGATATGATATGTAATCTTAGATATGATATGCAATCTTAGATATGATATGTAATCTTAGATATGATATGCAATCTTAGAAGATATGATTTTGTAATCTTAGAGATTTAATTTGTAGATACCTTTTAATCTTAGCCGTTGATGTAATTAATCTATACCGTTGGATTTGGGGAGGCTCAGCTATAAATAGATGTCTCTCCCTTCATTGTAAAGGGGGGAAGTGGGGAGTAATAATAATTCTTAAGAGTATTTACTCAAATTTCTCTTTCTCTTGCGTTCTTATTTTGTTGATTTGTGTATAATTTATTTATTGATTTGTATATTGTTGATTTCAAATCTCTTTTTCCCTTATTATTCATTTTCAAATTCATTATTTTCAAATTTGTTTACATTTTATTTGGCCTTATATATTTTTTATTTTATACTCTTTGTTTTAAATTCATTGGTCTTTGATTATTGATGCTATTTAATCCTCTATTTGTTATTTTAGTTTTTTTATTATTAAATTAATTATTTTAATATTATTAATACAATTATGTGCCATCATTAATCTTGTATCATTATTATTATTATTATTATTATTATTTTATATTCATGCGCATGCATCGTTTTTATGTAATATATATATTGTTTTATATATATTATACGTATGCTTATATATATTTTATACATATGTTTTTGTTTTTGTTTTTATTTTACTTCCTAACTTTTATATACATATATATACTTTTATATTTAGTATCAATTTTTTTTTTACTTTTGTATATATGTACATGTGTGTATTTATATATTTTTTGGACTAATTCATTTTTGAGGAATTAGAATGTCGTGCCCTAACGCATTGGGTGTGACATTTTCTTTCTCCGAAATGATAAGAGTCTCAATAAGTAACGTTTTTTTAAGTTTTTATTAAGGATCATATTTTTAAATTTTCGACATTAAGGTACTAATTAATTAACTAGGTACCAATTTTGGGCATTATGAGGGTGCTAATCCTTCCTCGTACGTAACTTACTCCCAGATCCATTTTTCTAAAACTCGTAGACCAAAGCTATTTTTTAGGTGATCCAATCACACCTCAATAAAAGATTGGTGGCGACTCCCAATTTTTGTTTTTTAAAGTCGACAACTAATTTTTGTTTTTTTCCAAAATAAAAGTTGGTTTCGACAATTGGTATGGCCTATCTGCGAACACCTTAACTTCGAATCGGTCTAGACTGTGAGGTCGAGAGATAAGTAGCTCTTTCCAACTCATTATTCTAGTGGAAGATCAGAAGATCCTACAAGGGTATCGACTAGTTGATTGAACAAGAAGCCCAAAGAGACAATTGATTATGATTAGTGAAGCGAGCTAATCACCCATGCTTAGATTTGATAAATTCTACTATTTGATTTCCTGCTATTTATTTATTTATGTTCTTTTATTATTATAAAAAAATCCCAAAAACCTTTCTTTATATTTTGATGTAATATAATCTATCTAAAGTATTAATTAGACATATTTGTGCTTAGGTTAGAGTTAACTTGCCTCCCTTGGGTATGATCCTCAGAGTACTTACCTACTCCGTTGTAACTATATTACAACCTGACCCGTATACTTGCGGTTACATCCTTTTTAAAATATTTTGTGCAGAATTTTTACTCTGGACGTTGGTACGTCTGGAGGCGGTCAATATCTTCTTCATTCGACAAAAATAAGGAACATAAAAGAAATAAGCTTGTATGTTACTCAACACCATTTTCGTGAGATAATCCAAAGGTTAATGAGCTTCTTCATTGAAATTTTTATTAGATTTCTACCCTATTATGATAGATGAAAATGACCCACTTGATAAATTAGAAATTGTCAAATTTTAGCTTAGTAACCATTAATGAAAGTTTGAATGCTAGTGACATAATGGTTGAACTTTGAGTAGTATTATGTTTATTGTTAATTAGATGTTCCTCAATTATAGTTTCAAAGTTGTATTTAGATTCGATAGGGTAAAATATAAAATATGAGGATTTCAAATATTAGAGCTATAAGGGACCTAATTAAAAAGAATGCATAAAAAGTTTAATTTAAATTTTTATAAGTAGGAGAATTTAATAATGTCTTTATACTTGAAATATTGAAAGATGCTAAAAACGAGGTTGGAACATTGAGGGACAATGAACAAGTAAGATCAGATAACAAGCAATGATGTCAATTTGTGCTACTATAATTAGATTTCAGTAATTTATTTTATTGAATAGCTAGTCGATATAATCTAGTACGAAATAAATGTCAAGGTAACTACATCTCTACTTAAAAGCTTTGAAATGATGAATTAGATGTGTTTGTGTAAATCATGTTATAAATGATTGATTTTAGGATATGATTCTATATACTCAATTTATAAGCATTGCTATATTGATATTTGACTATGATGATATATGTTATGATAATAATTATAATAATACTTCCCCATTAAACAATGTTAGATGTAGTTTGAGTGTAGTTGGCATGCCATAGGATTATTATCAGTGATTTTATTTAGCCCCAATTCCCAGAAGATCATGAGAAGTCCCAATTCCAAAGGGTCATGCACATATATTGATATACAAATTAGTAGCTTTAATTCCTAAAGAGTCGTGAGCAGTCCCAATTCCCTGAGGGTTGTGGGCAATTCCAATTTCTAGAAGGTCATGGACTTACTTTGACATGCATATTTGAGTATTCATTCTAGTGTCTACATTCAGTTAATAGGGGCTACACTGAATAAGAAATGAAAAGTGATATTTATTGAAATGTTATATGTTTGAATAGGCATTAATGCTTAATAATGAACTATGAAATGAAATAACCTAATATTGGGAAATGAGACAGTAACTATCTTGACTTATATGTAAACATGTTCTATGTTTGATTCATTTATATATAATTGTATTAATTTCAAATTATTGGCACAACTGAATATTCAATATGTAGCGTATAGATTTGTTTGTTTTCATGCGTAGGTACAAATTAGACTTGTTGGTAGACCGTAGGACCATCAAGCGTCCAACTTTTGACAACTCAGCTCAACTTGGTTAAATCTTGTGTTAGTTTTCTATAAAGTTAGTTAATGGCATCTATTTAACAACTCAATTTTTAGTGGTACTGGAAAAGGCAATTTCGGAACCCCACTTTTATAAAACGAGTCTCTAAATATTAAATATTTATATTTATGAGGTAAACATAGAAATATATCAAAGATTGGTCAATTTATTGAATTGATAGTTAATTAAGGTACAAGGACTAAACTGTAAAAGTTTATCTCTATAGGTTTTTAATTGGCCAAAGACTTAGGGAATTAGTTTGAAATTAACCAAAGGTATCAAATGAGAATTAAACCATTTTAATTTATATGTTAGTGGAGTATGATGAGAGAATCCACTTATATAAGTTAATGGTGGATTAAGTTAATAAAATGTAATTAAACTAATTAATTAAAGTGTAATTAAACTAATTAAACATCCTAAAAGTGTAAGGAGAAACCATGTTTTAGCTTAAACAATTCTGTCCCTAATTGGTAAGCTTTTCTAAGTCCTTTTTTCTTGTAATTTTTATGTTTTTAAGGTCATGAGAGCTTGATTTAGCTAGCCCATGTACCAATTCGTAAAAATGTCAAAGTTTTTAAAAGTTTCCATTGTTTATTTCTTGAAAAAATTGGTGCCAAATTGATAGATTTTAAGCTTAGATGTGAAAAAGGACTAGAATGTAAAGTTTAATTGACAGTTTTGTACATAAGGACTAAAGTGTATAAATTGTATAATTGATATGAAATTTTTGTTATAATAGATAGTATAGGGGTCCTAAAAGGGTGTGATTGAGATTGATTTTGAAACTGATGCTCAAAATCGAAAGTTATTGTTATTTCAATTTTAGGGGCGAAATTGAATAAGATGTAAAAATTTAGGGGTTCAAAAAATTGAAATTTTATAGGTTCATGCATATCACGGAATGATATAAAATATTTTATATTGATGAATTGTCTAAAATAATTGTTTAGATCAAGAATTGAATCAAATTAGGGATAATCGAGGAAAAGCCACAATTATTGAATAGCCCCTGAAGATTCAACTTATTTGTTATTTTTTTCCCGGTAAGTTCATATGGTATAAATGTTTTTAAGTTGTGGTTTATTTTATTTGTGATTATATGTGTTTGGTTGCGAATTGGTATTAAGGTGAGATTTGGACTAAATTGTAAAGAAATGTATATATGTGTTAAAAATGCTCAGGTGAATGATCTATCTTAATTTGATATGTCAAAGTAGTCTTCCCAGTTATAATTAAGGAGCTTGTTTTCAAGCAAATTAGTTTTGCGTAGTTTTCAGATTTTTTTTTTATTCAATAAGTGTTTAATGTGTTTTTGTGCTCATTTTGAGACCCAAATTGGACAAATGCGCCATTTGGACCCTAATGATCGATTAAGTGTTGTAAGAACTCAATGATGGCTCATTTTTTAGCGAAAACATCACCAAGGAGGGGTTATTACGATATCAAAGCATGAAAATCATGATACCCTTAACATTCCTAAAATGAAAAGAAAAATGAAGACCACCTACAGTGGTGTTGCGATACCTAATACCCAGCCTTCAAAGGGAACTCCTCATTTAGAAATTGCCAACGATATCATGATATCTAGACCATGGGTATTGCGATATCATTGTCATGAGGGGAAAAAAGTTAACATCAGAGGTAGTCTTTGTCCAACCGAAGCACCAATCAAAAAGACATGTTGAAGGGCATTTTGGTAAAAAAAGGGTCAAAATAGTTGCTAAAAAGAACCAAAAATTGGCTAAAGAGAGTGAGAGGAGGCATTAGGCATAATTTTTAGTCATCTTCTTAGTTGCTCTCCTTTATAGTTGTAGATATAATTTTCTACTAGTTTCCTCGTGTTTCTTTGCATTCTTAACTGTAGCTTAGGTTTATTTACACGTTTAGGACCTTTAACTTTCTTGTACTGACATTTTCATCTCTAGTTTAATGTTCTTTCAATATGTTTTCTTTTTCTTTATTAAAAATCTAATATTTATTATTCTTGTTCATTTATCTTGTTCTTAGTTTCTTTTCCTTTAATTCTTTCAAATTAAAAACCCAAGCTTTCATCTTTTTATTGAGTTTTATGTTCATGCCTTTCATGGTAGCTTCTTTGATGTTAGCTTAGAAAAGATAATGGTTAACTAAACCCTATGGGGGTTGGTTAATGGAGATGTAGGTAACTTATTTTTGGGTCGAGGAATAAATTGCAATAAATTGGACTAAATTGAATGAACTTAAAAACTTAGGATTGATGCCCCTAAGGGAAAATCAAGATAAGTGAGACTGAGAGGTAACCTTATTGGGAACCGATTCATTAATTCTTGGTTAATCAGGTGAGATTGAGAGGTAAACCGAACTAATTTATCTAACTTGGTAAAATTGAGACTGAGAGGTAAAATAGATCCATTTTAGGAGTTTAAGCAATTTAGATCCCTAATTCAATGATTAATAAACCGCATTGAAGTTAACCAACCACCGCTCATTATTGATTGGATAGTTTTATCACCTTGCATGCTTTACAATTTGGTCATTTTGTTAATTATTTAGCTAATTGGTTTAATAAAACTCAAATTCATGGTCTGTCGTACTATGTTATCTAGCGAATAGTTGTTTAAACTCTTTATTTGCATGTTTGTAGCTAGAATTCACTTAATCGTCGAGTTCTGTGGGTTCAATTCTTAGAACACTCATGTACCCCGTTGTACAAATTATATTACAACTGACCTGTCACACTTCTAGACACCACATGTACTTATTCTTGTAATGGCCCAAATTTGCCCAGCCCAAATCAGAAGTAAATAAATAATAAATATAAAACCAAAATTAAAAGTCCAAAATAGTCCCTTTACACCAGGCTCAATGTGGCCCAAACCAAACAGACCCTAAATCCCCAATCCAAGTTACAGAAACCCAACTAGCCTAACCCCAAAACCAAGCCCAAATACCCGCAGCCCAAAATAGAGAAAATCAGCAGCAAACCCTAGAGACCAAAACCCTAAACTAAGACGCCACAGCAGCCTCGCAACGCGCTGCCTTCGGCTTTCCTCTCTACGCGCGCCACGCCACCACCTCCGTACCCCCGTACCTTCAAACAAACAAACAAAAACAGCACAACAAAAAGAAAAAGAACGATTGTATTTTATTTTCGTTTTCGGCTATAAAAGAGCCAACAAAATCTGTAAAAGGTTCCCTTTTTTTACGATCAACAGACAGAGAGAATACGCAGAGATTGTATCAAAAAAAACAAAAATAAATACAAAGGAAAAGGTTTTTTTTCATTCTCTTTTTCGATTGCTTTTCTTTTTGGCTGGTTCGTTATTAATCGCATATAAGCATATATAAGGAAAATAAGAAAGAGAAACTTACCTGGTTGGTGTCGTTAACCCCCCGTTTTGCTCTGTTGAAATCGGAGTTAGAAAAGGTGGTCGTCTCTTGGCTGCAAACGGCGGAGCGGCGCAACATTTGGGGGCTGATGTTTAGTTTTTTTTTTTAAGTTTGTTTAAGGCTAATAGTTATTGATTTAGGGTTTATTTAGTTTTGTTTTATAACCAAAGAAACGACACCATTTTAAGACTGCTTAAGTGGCTTCAAAACGACGCCGTTTAGAGGCTTGCGACCCCGCGGTGACCCGACCCGGGGAAGGATCCGCGCGTTTTGGCCTCTGTTGGGAAATTTGCGCAGATAGTCCTCCACTTTTATAGAGCTTTCAAATTGATCCTTTTATTTCTTTTAAATTTGATCGCTCATTCTGTACTACATTTCAATTAGGTGTGTGCAAGGATACTGTGTATTGAGGGAAGGGATATTTACCCTTTTAGTCCCCAAGTTGTTCGCGCGTTCCTTTGTGGTCCTTAATGTTATTTTATTTTTATTTTCTCTTTTAATTTTGGAATTAAACGCAAGTTAGCCTGTTTTTGCTTAATTTAAATGTATTCAAAATTTTATTTTATTTTAATATTCATCATTTTTAAAATATATTTAACTTTACATCTAGCATTATTTTATGTTTAAATTTAGTATATTTTAAATTTATTACAATATTATTTTAATATTATAACATATTATTGTTCTAAACATATCATTAACATTATTTTAAATTTATCATGTACAATCTTATGCATTCTTGTTGCAAATTCAATATAATTTATACATATTTTACATCTTTATTTTATAATACATTTTTAACTACACTTATATAGTTCTTTGCTTTAAGATTTATACAATAATATTCTTACTTAATATTTTTCTATACATGTATATATAATTTGTGTTAAATTATTTTTATATATATACATAATATATTATCGATTTCATATTATTACATATCCTTTCATATATTTTTATGTATAAATAACTTATTTATTTCAAACCCTATTTTATTATATGTTTTACTTATTTCAACTCTTTTATCTATTATTATGTGTAATTTATTTATATTAAGTTTTCCACTCCATCTATTACTTATTTTAAAGTGTATATCATTCTTTTCTATTTTTGAATGTTTCAAGTTTGCAAATGTATTATTCATTTTAATTCTTTATTCATATACGTATAACCTATTATTGACGATTTCAAATATTTTATTTTTTCTCATCATTTTTGTTTTTGTTAGATGATTCCCTAATTACCTTTTAATTCATTTACCTTTCTAACATAATATTAATATTGGTTTAATGTGCGGTATGATTGCTTTTATGCTTATTGTATAACTTATTCGCATGAATTGATTCTTTGTAACTCGTTAGTATTGATTTTAGTTTGTAAATTAGCTTTTCCCGATGTACAATGTTATTTCGTTATTCATTCAAAAGATTACAAGTGTCAAAGTTATTTCATTCAAAAACTTTCAAAAATACTCGAAGTTTGGAATCCTCGAGAGAATTGAGCCCTAACGTATTGGGTTTCAATTTTCCTCGTCAAATCTAAATAATCGAAATTTTTTCAAACATACAAATTTCAAATAAAAACCCATTTTCGGGAATTCGACATGTTGTGTCCTAACGCATTGGATATGACGTGTTATTTCCTCGAGATGAGAATTTTTAAAATAATAATAAAGGTAATATTCAATATTTAGGAATTTAGTGAAATCGAGCCCTAACTTACTGGGTTTCAATTTTCTCATTTGACCTAAATGATCAAATATCCTTCTCAAAAATGCATAGGTTTTAAAAGTTAAAAGATAAACTTAATTTTGAAGATTAAAAATGTTGCACCCTAACTCACTGGGTGTGACATTTTATTTCTTTGAAATAAGAGTGTTTTATCATTCAATTTATTCAGGTTAAAAGAATCGTACTTTAAAATCTTTTCAAAATTTCGACACTAAGACATAAAATGATCAATTCGGTACCAATTTTGGGCGTTACGAGGGTACTAACCCTTCCTCGTGCGTAACCGACTCCTGAACCTATTTTCTCAAATCTCGCAGACCTAAAATTTATTTTAATGGTGAACCGGTCACACCTTAATAAAAGATCGGTGGCGACTCTCATTTTCATTTTTAACTCGATAACTAAAATATTTTGTTTTTCAAAAATGGTTTCGACAATTCTGATTTGATTGTTGTATTAGTTGTTAGCACCGTTGTCGGGGAGCTAGTGCTAGATTGAGTGACTATAGCTTTATTGCAAGATTTATAGGGAGATAGTTGACTAAAGCTTTATTTATAGATATGAATTTTTATTTTGTTTCTTTGCTTGTTATTTTGTTCAAAAAATTTATTGATTGTGTGAATCTCTTTTGCTTGTAGGAGGTAGTTTATGACTCAGACTAGTAATAAGATTGTACTATTTGAACCGAAATTGAAAAGAATCTTGACACATAGTCAACAAGAACAACTTTTGAGAAGAGCCCAACCTCCACCATTTGACAACCCAAGAGTTGAGGAACATCCACCACCAATTCATCAAAGACCGATGGCGGAAAGGACAATGAGAGACTACACCATGCGTAATCTTTACGCTGTGGAAGGAAGCATTAACCGCCAAGCGATTAATTGGGGAGGTCACAATGAACACAATCAATGTGAAGTTCAACTACTTATGAAATAAGGGGTACCTACAATCAATGGGGTCCTTACAATCAAGAAGTACCCAACTTCAACCCACCTAGGCCTAATGCACCATAACAAGCTCCGTAGCCATTTAGGGTAGCCCAAGAAACTATGAGAAAATTCGCCTAGAATAGCAACCCTCTAATACCCATTCATGTGAGTAAACTAGAGGAAGGCTTGCATTCGATGCAAGCAGAAGTGTGCCTAATGCAAGGTCAATTGCGCCAAATTTTTCATATGCTACAAAGTAGTGCTTCCTTTAGCATATCAAGAAATATTGAACCAAACCCGAAGAGGGAAGGGAAAGAACATGCTACGACCATTACCCTTAGATTTTGAGTGGTGGTTAAAACCCTATTAGACTGGTGAATGGAGAAGAGGTAGTAGAGAAGGAAGAGAACACCTACACTCCTAGTGGTGGACATAGGGTAGGAGAGAGAGTAGAAGCAGAAGTTGATCCCAAACAACCCAAACCTCAGGATAGGCCCATTGCACCCTCAAGTCAAGTACCCGTACCTTTTTTGACCCGTCTTGAGGAAAAAAAAAGAAAAAGAAGAGTAAGGAATTTCCAATTTTCATTTACATGTTTAAGGCGTTGAGTGTTAATCTCCTGTTATTAAAGCTCTTAGAAAAATTTTGAAATATGTTAAGTTTCTAAGGGAAGTTATGTTCCAGAGGAAGAAGATTGGGAGAGGAAAACATATTGCTCTTAACGCTAAGTGTTGTGTGATTGTGCCCATAAAATTTCCCCTAAAACTCAATGACCCGGGCAGCTTCAGAATCCCTATAGAAATAGGAGTGAATTACGAGAAAGCCCTTTGTGATTTAGGGGCTAGTATCAACCTCGTGTCATTATCAATTTATTAGAGGTTAGTATTAGGGAACTTTAGGGAGACCTCAATGACTTTGCAACTTTTCAATTGCCCTTTTTTTCCTTCCTAAGGGAGTCTTTGAGGACGTATTAGTTAGATTTAGGCAATTCATCCCATCAGTGGACTTTATTGTGTTAGACTTTGAGGAAGACCTAAAAATCCCTATCCTACTAGGAATGCCATCTTTGGTAGCCTCTATGGCAACTATAGATGTCAAAAAAGGGGAGTTGACGATAGACAGAGATGGGGAGGTCAAAATCTTTAAGTGTGTTGACCCCAACCTTAGTTCTAATGAGTCATCACTCTCTCAAGGGTATGAGTGTTAAGCAGTTGAGATAATATCCTATCATGCCACTGATCTTGCAACTATTATGAAATGATGTGAACTTAAAGTTTTTAGCTCAATGTGAAAAAAAAAGATCCAAAAACGAAAGAAATTTAGTAAGCCATGGCGATCCTAAAGTAGCCTCAGTCAGGTGATGAACAAGATGTGAATTAAAGTATCGAGCACACCACATTAGTACCACTTCGGGGGCATAACTGATCACCTTGAAGCTAATTTGTAATTTTTCTAGAAGGTAATTCAAATTAAGTTTGTAAATATTTGAATGATCCGAGCACGGAGTCCGTTTGTTTTCCTTGTTTAGTTTAGGTTTAAATTTGAGCATGTTTAATTTTTGCACTTGGTAGGGTAGATTTTGGATAATTGGGAGATTAGATGATAATTTTGTATGTTTTTTGGGCACCCTTCTAGTCGTATTGCGATATCCAAGAGGGAATATCACGATAACCTTAACAGTCTAGGGGGATGCTCAAAATTTTCTAGATATTGCAATACTGGTCCCTTGGTATCGCAATATCCCTAGCTATTTCAAAAATAAAAAAATTGTCAAAGTTATAATGGTATTGTGATACCAGTATCTCGGTATCTCGGTATCGTAGTAGTTTCAAAATAAAGGGTACAAAGTGAAAGGGGTATCACGATACCCACCTTCAGTATCGCAATATCTATGTTAGGTCGTGATCCCCAAGGTTTGGAGGCTTTTTAAGCCTCCAAACACCCTAACACCCAGATCTCTTTCATTCTTATGCCCTATTCGTTTTCAAAACACTCCCATCTTCATCTTCTCCTCTATTTTCCTTTTTAACCTTCATTTACTTTTCTCACAAATTTGCCTATTTAGTATTATTTCTTCTTCTTTTCATTCTTATTTGTAGGTTTTCCTTCTCCTTGCCTTGGAACAATAGTACTACATCCCCTCCAACCGCTTTGCCATTGCCATCAATACATTTTTATCGTGTCAAATTCCTTTTCCCTTTGTTTTCTTTGAAATTTTTATTTTTTTAGTGTTGCACTATTGATTTGTCTATTGGTTAGTTTATTATTTGTTAAAAAGCTTGATTAAATTGTGAGGTTAGTAAAATGTCGCCTAGACAAACTAAACGAACTAGGTCTCAATCGAACCCTCTTCTACCATCGGCGGTGGTTCTAGAGTGATTTACAAATAAAGAGGTTGAAAATTATTTTATGTCAATCCAAGGCGAAACATTTATTCTTGAGCATGGTTCCGACCCAATTGCTTCTCTTTGTAATGAGATTTGGGACTTTGTCTATTACCATGGATGGTTCAATATTTTTCTAGTCCCAAAATCGACTGTGGTTATCCCCACTGTTCTTGAGTTTTATGAAAATTTAAAAGTTTATGTTGAAGCTGCGTACTGGTTCAGGGAATAGAGATTGACATTTCCCTAAGTGCTATTAGCGAGCACTATGGTGTTCCATGGTATCAACAAGATGACATTGAACAAATGGATTTAAAATTTTATAAAATGTCGACATAGACCTCATTCTCGCCTACCTAATGTAAGGTCAAAGGGAATAGAAATGGGAATAGTACAAAAACCTTCCTCTATCTTTTAATCAAGTAATAATATTTTCCTTAGGAAAAATATAGATTCAATTTATCTCGACCCGTGTTAGTCTCATGCTCAACACTAACACAGTTAACAATTTTGTAGCAGTTTTTTTTTCAATTTTGTAATGGAAGCGAGTTTGTCTTGGGATGTGGATAAATCATTAGATGAAGAAGTGTCTTAGGGAGCAAAGTTGGCATGTACTTCCCTCATCTGATTATGGACTTATGTCATAAGAAGAGGGTAAAAATGAACCTGACTGAGTAGTTTCACCGCCCCACTTAGGGTATTATAGGCAATACCATGATACTTTAGCTTCACAAGTTGGAGTGGTAGAAAATTTAGGAGTGGAATCAAAGGCGCAAGCACAAGATGGAAATGCCTACGACCCTAAAGAAGAAAACCACAACAAAGAAGGTGTACGAAGGTACATAGTGGCAACGTAAGTTGTTTGATAAGGTTCGCTACAACACTCGACTACTCGAGGCGATAAAACCATTTATAAAAATATTTTTGATGAGCCAAGGGATAGAGGGCCCACAGTGGCCCGAACGATTGACCAACGCATCCTTTAGTGGCGAGGAGGAACAAGAAGAAAGAGAGAAATTGGAAGAGGAAGCAGATGAGGATGATAAAGAGATAGAAGATGATGACCCCGCACTGTATATTGATGATTTTGACGCGATTTTCGCTCCCGAGTGACCTACCACGACCAAGTTAATCTTCAAAGGCCTGAGACCACCGAGGCATCAGGGCTACTAAAGGTTGGCCAACAAGGGAAAATGGAAGGAGATAGTTAGACCGGAGTCGGGCTCTCATGATGATTAGTTACATGTTTTCACATTCTTTTCTTTT +>URS0000BE9894 tRNA from 1 species +GGCTCCATAGTATAGTGGTAGCACATCTGCTTTACATGCAGAAGGTCCTGGATTCGTGCCCCAGATGAAGCCA +>URS0000C75118 pre_miRNA from 1 species +GAGATACTCCCTCCGTCCCAAAATTCTTGTCTTAGATTTGTCTAAATACGGATGTATCTAACGTAACTAGATACATCCATATCTAGACAAATCTAAGACAAGAATTTTGGGACGGAGGGAGTATATG +>URS000029BCEB rRNA from 1 species +GACGAACGCTGGCGGCGCGCCTAACACATGCAAGTCGAACGGGGAAGTTAGCAATAACTTCTTAGTGGCGAACGGGTGAGTAACGCGTGGACAACCAACCTTCTGGTGGGGGACAACACTTCGAAAGGAGTGCTAATACCGCATGAGCTCTATAGGCCGCATGGTCTGCAGAGGAAAGGAGCTTCGGCTCCGCGAGAAGACGGGTCCGCGTCTGATTAGCTAGTTGGAGGGGTAACGGCCCACCAAGGCAACGATCAGTAGCCGGTCTGAGAGGATGAACGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTCGAGAATAGTCTACAATGGCCGGAAGGCTGATAGTGCGACGCCGCGTGTGGGAAGAAGGCCTTCGGGTCGTAAACCTCTGTCATGGGGGACGAAGGAAGTGACGGTACCCCAAGAGGAAGCCCCTGCTAACTACGTG +>URS0000023D8D tRNA from 1 species +ACATTTTTAGTATAATAGTACATTTGACTTCCAATCAAAAGGTCCTTTCCAAGGAAAATGTA +>URS00018C1C85 rRNA from 1 species +TACGTGAGGGTGCGAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTCTGTCGCGTCGGGAGTGAAAACTCAGGGCTTAACCCTGAGCTGCTTCCGATACGGGCAGACTAGAGGTATGCAGGGGAGAACGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGTTCTCTGGGCATTACCTGACGCTGAGGAGCGAAAGTGTGGGGAGCGAACAGG +>URS00017FF56C rRNA from 1 species +TGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGAGGAGGAAGGTGGTGAACTTAATACGTTCATCAATTGACGTTACTCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTTGAAACTGGCAAGCTAGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACCGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAAACGATGTCGATTTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAATCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGTC +>URS0000142B05 siRNA from 1 species +GTCAAATAACCTATCGAAAGTGT +>URS0001228231 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGCCAGGTAGGTCTGCTGTGAAAACTCGAGGCTTAACCTCGAGATGTCGGCGGAAACCATCTGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGATACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0002355A6F lncRNA from 1 species +AAGAACTGTACGCCACTCAACTCTCACAGCTACAAGAAATGGGTTTCTTTGATACCCGAGAGAATATACAGGCGCTGATAGCCACTGCAGGGAATGTTCATGCTGCGGTGGAGCGGCTATTGGGGAACCTTGGTCAGTAGATAATAATCATTTGTTATTGTCCTATTCGTCGCAACATTTATTGTCAGTCGGGCCCGATGAAATTGGTTTGGACCGGACTAAAGAGGATTTTTCAAAACCTATCTTGGCTATGAATTAAAAATACAGATTCGATGTTTTGAAGTTCTTGGCATAAGGTATGATCATGGGAATACCCTCTTCTATTCCCCACCCCAATAGTAAAGCGAGTGATATGTACATACACTATTATGATTGTCTCTCGTAATTTTTTTTATTTGTAATACAAATTTTTCTATTTTTTTTTGGGTGGGTGGGTAATTTACTTTTTCTTTACCCTACGCTGGGTGGGTGAATTCTTATAATTATACTTGATCTGATGTACTGTTTCGTTTTTCTGCACTTTGTTATCTAGATGCAAGTTTCCGATTGCGGAAATGGAGGTGGAATAACTGGGGATCGATATAGTTTTTCTGCCGAATGCGATGTGGTTATTTTCATAGGCAATTGTTATATTATGATGTGTTTTAAAATTAGTGATTATGGTTGGTTGGTTTTTTATTTCTCCTTTTGAATCCCATGGCAACCAGATGGCATTGGAACCCGAAGGGTAGATTAAAATCCATTTTCATAGATAACCAAGCAAATAATAATAAAAAGGGAGCTGCTAATGCCTCGTTGAGAAGTTATGGAGCCATGCACAAGTAGTCAATTTGACATATTTACCCTCGAATCATTTTCAGTCAACTCTCTCTGCAAATTACGTTCCTTTATCCTCCATCAGTTTCCTCTCTCTCCCCAAAACCAGATCACTCTTCCTCAGTTGTTATAAAATTCTCCTTTAAAATATTGTAAACTCGCTAAAGAAATTGAACAATCTTACAAATATCATTTACACTAGGCAAGGCAAATGAGAATCTGACTTTTGACACCCTCCCTGTGATGATGGAATCAACCAGATCCAACACCACCCATCAAAAACCTAACATGATCCCGTCCACAGAGTTAAATTACGCTGCGGATTGTACATCTTTATAGACTTGATGATCATCGGCCTTCACCTGATCAGCCCTTGGTTTCCGGGCTGCCTCTTAGGGTAAGCCAACGGTTTCTTTCATGGTTTTCTAATCCAACCAACAAGATGAAGAGAGTCGCTCCATTTAGAACCATCCTCCATTTCAGAGGATTGAATTTTCATCCTACAGACGTGACGGATGAAAGAAAAAAATAGAAAATCCTTCATTTCACGATTCACTTTTTTAAATTTTCTAAATTGCTCTCTTCAACTCTTTGATTTTAAATTTGAACACCAATTTTATTCTTCTTATTTTTTATTGCTTTCTGATAAACTACATATAACTTTTAACATAGACATTTAAGTTTTATAAAATTAACATGGTTGAATATACATGGACTATACCTTTAAAATGATACCCATATTCAATATATTCTCTAACAATTTGAAAATTGGTTGGACATATAAAATTTCTTAGAAAAACAATGGAGGAAAATTTTTAGAAATGGAAGTAGAGATTTGTGGTTGGAGTTGAATAAAAAAGAATATTTTGATCTTCTAAATTGGGTTGGAGATGCTCTTAGATGGTGTTTGGTGATGCTTATTAGCAATAACTTATTCTTTTTTCTGTTTTAAAAGTTGTATCAGAGTACTTATCACAATTTTTATTTATATTTACGAGCTAAAAATAACTTAAAAATTGATTTTTGCAAAGCTACATTATTATTGTGATACTTTTTTACTTCTATTTTTGAATAATTACTTTTAATATAATTTCAGGTACAACAAACACTCTTAATTTAAATTAGACCAATAAGCCCCATCTAATGAGAAGAAAAAAATTAAAGTACAAAGAATAATGCGCATGATAATAAAAACTTGCAGGAAATAACTTGTTATTATAGAGGACTCATTTGTCTTTTTACATATCGTCACAATATTTTACAAAAAGGCGCTTGAGTATAGCCGTTAGTTCTCGCCTCCACCATCCGGTCCCAGTTGCGATTCCCTACCCACTCACCACCCAAAACTCGATGCACCGGATCACCAACAGCCTCAATCATCACGAACCGTACATTTTCATTATAAAAACAAAAAAACGGACGATCCAAAATCAAGGGACGCAACCTTTTGAAATGAGTTAGATACATTGGGAGTAGGTGAATATAACGGCCAATTCAAAAGTTTCCCACCAAAACTATATATATAACCACCTTCCTATTCCTTCCGCATCCAAATCTCTCTCTCCACAATGACTAACCCCAATGATTCCCCAAACCAATCCCCCACCAACAAAGCCCCGAAGCCTCTCTTCGCCTGATAGGGACCCTTTGGCAACACTCCTCCTCCCCTGAGTCCTATCGAAGTCAGTCTCTCCCGGTAACCTCTTCAAGGCTTCAAAACTCATACTACCACCGTGATTGGCGGCGGAGGCGGTAGGGGCGGAACCAAAATTTATGTTCAGTGGGGTCAAAAGAGTCAGAATTTATATTAGTGGTGTCAAAATTATAAAATTTATAAAATTTAGGACAAATTACTAATTTTTATGAAATCAATATGTATTTATGATAAATTATATTATAAAAAATAGCGTGCTTTTTTTCTGACCTCAATGCCCCTATGTAGCTCCGCCACTAGGGGAGGTGATGCCACCATTGGAGAGTCTTCTTCTGGTGGTGGCGGCGGTGGTGAGACTATACTGGTGTTTGCAAGTTTAGCCCTACTAGCAATTGGTGGTAGTGGGGATAGTGTGGCGGCCGCTGCTGGTGGAGGCAGCAGCATTGTTCGTAGGAAGAGACCCCAAGACTGAGTGCTGCCGCTGGAAGGCCAGCCATTGCAATGCCCAGTGTGCGGAAGGTGTTTTCCTTCTAATCGTAGCTTAAGTGGGCATATGAAGATACACCCCGACCGTGGCTGGCGGGGGATCCATCCACATCCAGTTTTTAGCCGCAACGAGTTTGGTGACATTCTCGGACAGGCGGAGGAGGAAATGGCGGCAGCGATGGTTGTGAATGAGGCCGAGACTGGTGGTGACAAGGAGGAAGAGGAGGTGGTGGTTGCAGCGGTGGCGGAGGGGAGAGAGGAAGTAGCGGCGGAGAAGGGCAGGGATGGAGTTGATCTGAAGGAAGAGCCACCGCGAAAACTGCTGGACTTGAACAGGCCTCCTTCACCGGATGAGTAATATTGGTTTTCTTAATTATTATTGGGTTGTTTCTCTATTTATTAATTACAAAGTTTTTCTTGTTTTTGAATGATGGTTTGGTGAATGGATGTTGTTATGAGGTTGTTTTTTCTAAGTATTAATTACACAGAGTTTATGTCTGTTAAACATGGATTATTCTATGGAGGATTTTAAATTTGGGAGATTAATATTGAGTTCTCTGTATTTTTTGATGAATAATTACATTATTCAATTCTATTTAAGTCCCATGCTTAATTGAACACAGGGAGAGAGAGAGAGAGAGTCTGATTATTAATGATCAACTGTTATGATTATTAATAATTACACTTTCCTCTTTTTATTTGTATTTATCATGATGAATTTACTCAAAATATTACTATTTAAATAAAAGTAAATATTTTAATAAAATTATTCTACTAAAACAAAAAAAATGGGTGCAATTACAGAAAAAGTGAGTGTAAAAATAGCATTTTTAAAAATAACTTAACCGAGTGATTTTCAAACTTTTTTTCAACACTCGTAAGTTTTCTAATTAAAAATAATAAAAAAAGTTATAAGGGAGATAAACGATCCAATCTTTTAACAAACTAAACTTTAATATTTTTTTAAAGTTTGTTAATATTTCAAACAAGCTTGAATACTCTACCATTCATTTCCATAAGTTGTTTAAAAAATTTAAATTACTAAAGGTCAGCAGCACGCTTGAGACCAATATAAGCTCGATTATAATTTTAAAACCTCGTTAATATTTTAAACCAAAATTAAACATTTCGTTAATCAATTCTACTGATTTCCCATGCTTGTTTACTGTGCAAACAAATCCTTAGGTCATGAATCATTGTTTAAATTACAATGAGAATCCTTGTTTCAAAAATCAGGGCGAGCAGTTGCTTTAGTCGGCTATCAACCGTTAGATCCTCAAATGAAAACCCTAGATTTTTGTTGCCTATATAATCACTTCGGGAGAGAAGAAAAAAAGAAAATAGGGTTTTTGTTGTAGAGAGATAAAGAAAGAGAGCGAGCGATAGAGAGCGTCCCGAGACAGAGTTTGTGTGCTACAAAGAGAGTTGCGGTTGAGAGAATTGATTTGATCACTGATTCCGTTAATGCAGTGAGTATTGAGTAATTGCTTCTTGTTTTGAATTTAGATCATCAGGTTTGTTGTTTGATTCTTGTGGTTTTACTTTTTTTTTCTTATTTCATATCATCATCTGTTCTTGGATCTTCGATTCTGTCTTCGTAATTAGGTATTTTGAGACTGATATAGATTTTTATTGCAGTTTTAGTGAAGATATTTGCGTTTGTGTAAGTTCTCCTTGTTTTGATTTCAATTATCAGGTTTGTCTGTCGATTGATTCTTGTGGTTTAGCGTTTTTTTCCTTTTAATATGATCTCCAATTATTTCATATCATCATCTGTTATTGGATCTTTGATTCTGTTTTAATAATTAGATGTTTTGTCTTTTTTTTTTGAGACTGATTTAGATTTCTATTGCATTTGCAGTGAAGATTTTTTTGCGTTTGTGTAAGTTCTCCTTCTTTCATACTTCGATCATCAGTTTGTCCATTTGTCCTTAGATTCTTGGGGTTTTACTTTTTTTTTCTTTGAATTTGATCTCCAATTATTTCATATCATCATCTGTAGATGGTTGTTACCTATAAATAATGCGATTAATTCCTCCATATCACGTCTAGTAGCGATTTGTCTCCCTTCTCTCTCCTTCTCTCTTTGTGTTCTGCGATTATCAATCCAAAACCCTCGCAAGCAATGCAATTCGTGGAATCATTCAATCTACGAGGAGAGACACACGTGAGGGATTGTTAATCTTCTCGATCTTTCTCTGATCTGCTAGCGATTGCCTAATTTGTTATGTAATTTATTTAATTTTTTATGTACATCCATTTATGTAATTGCTTCAAGGATCTTCCTTCTTGTATCAGTACATGCCGATTTGATTCTTCCTGTTCTAATGAATTTCTATGAAGATGTTGTTTTCACTTGCATCAATTAAACTCCAAATATTGCAGGCGTTGAAAAATATCAAAGTGGCTGCACTTTTTGATTGGATAGTCACAATACGAATCTTGGATCTCCTTGAAGTTCTGTCACAATCAGTAGCTCTCTCTCCCCTCTCCTCCTCCTCTTCTTCTTCTTATGATGATGATGAGTTTTCTATGAATATATCATTTTTTTCTTATGCCCATTAAACTCAAATATTGCAGGTGTTGAAAGAAGTTGAAAGTGTTTACTATTCTTGGTTGGATAATCGCAATATGAATCTGGGATTGAATTCTGTCTTTGAAGTGAAGCACTGTCACAATCAATAGCAATCTATCTCTCCCCCCCCCACTCTCTTCTTTTTTTTGTACTGCTGAATCTTCTATTTGTTTTCTCAACCACCAAGTATTTTGTTTCCACATCTAAAATTAACCTAGTGTTAATCTGCAACAGAAGGGCTGTTCTTGGAGACTTGAACAAAAGGGGAGTGTGAAATCACTCATCTATTGAACAATATGATTTCGTTTTTCCTTGAAAAGAAAATAAACAAAAAAGAAGGCTTTTCCTGATTTTAAAACCTCACGGAAGTTATTGCACAAGTCTGAGAAATAATATATTTTTATTGTAGAGGAAATATCAACAAAAAATTATATAGTTTGCTCCCTTTAAGACCTTCACATAATCATGCAAGGGCTCTCTTTTTCCGTCTTTATCCTTTTTTTTCTTCTATTCAGTGTACGGTTTGAATATTGAAGTAGCTTATTATTACTCAGAAATAGGAGAGCAGTTACTTTCTTTTTTGAACAAGAGGAAGGCGTGTTTACCATCTTAGCTAAAATTTACGAGGATGGTGTCATTAACACATGATAATATTCTTGGACCTTCACTTCTTATTATTACCAATGTGGTGAGTATAAATAAAATGACATACTATTGGAAACTAAGGATCTGTTCATAATATTTAACTGATGACATTAAAGGTTGGCTTATTCTTTTTCCTTTTTTAGGTTGGGAGATGGGGCTTGAGGGGGTGGCGCTGCCTGCCATTGCATATAGAGACTGCAGTACATTTTCTACCTCCACATGATAGGCTGGGCTTCTGATTGTTTGGGGACATAAAATGTTTTGGGGGCTATCAAGTGATATAAATGAAGAAACATCTGATCAGTGAGAGAGAAATAAATCTGTGTGGTCGCCCCTGGAGCTGTATTAATCGACACTTGTTGAGAAGCGAATTGATTGTGGGAGGCAGATGCGTCGAGATTCTGTGGTGATAATTAATTGGTTTTATCAGCCCTAGTGGTTTTCCGTTGTTTTTTGGCTGGGGTTCGGGCCTTGAGTTTTCAATATAGAATGGAAGATAGAAAAAATATTAGCTTGGTTTTACAGAGAATCATAGGGTTTGACTGCTTTTGAGAGTGTTTCAGATAGTCAATCGTTGCCTTGAAATTTCTGGCTTTCTTTCAGGCACATTATTAGTTTTATTTTCCAGAATATGCTTTTTTTTTCCTTTTCTTTTCATGTTGCATATTCCTTGATTGTAGACTTCTAGCTTTTCAGTTTGTTATACTTTAAAATTCAAATGGTTAGGCTTTGCATGCCACAATCAAGTAATTAGCCTTTTTATCTATGCTACATCATCTTTCCGTGTTTTCTTTTCATTAAAGTATGTACATGCTTCTGCTTTAGTATTGATTTTACAATTTGGATGCATTCTGCTTTGTATGGATTGAATCTAACATCTTTAAACCTTTTAAGTAACTTTCAGTTCCAGAACTGTATGGCAAGGAGGTGGAAATTGTCATAAATATTAAAGATGATCTTGAGGATTGTTTGATGCTTAAAATTTTTATGTGCCATTTAACAAGACTCCGAAATGTTTATTTGCATGGTTACTAATAGGTTTTTACATATTTTCCGCTGATGGCGGGTTTCTGTTGCTTCAATATTTAAGTAACTCATGGAGCCCTTTGGTAATGCATTCTTGTGACTAAAATTTAAATTCATATTTGAGGATGTTTTTGTTTTCCTCTCTATCCTTTGCGCTTTCTACTGCTCAAATGAATCTTAATTAGTTTTATACCTACGTTGAGATTCTCCACTTCTTAATCTGACTGATATATTTATATTGAATCTTAATGAAGTTTACCAGCCACCTTATGATTCTGCAATTATCGCTCTGATTGAAAAATTTATCATAAATGGTACCTTTAGTCTAAGGCCACCAGTGGGCTTGATTATTATGGCAGTGTCTTGATTCAGCACAATTTCTTTAGCAGGGAAGATGCTATCTTGGAGAGCAGGGAGTCCTTTGAATGACAATGTTGTGGTAATGGAATAGTTACTGTTTCTGACTATCATTCTTTGATTTATCACTAAAGTGTTTCCGTCAGTATATCCTATTTAGTTATCAGTTGGACAGAGTGCTCAGCTGCTCTGTCTTATTACCAGACAAGGAGGAATCCATCTAGTTTATTACAGTGTGCTGGACACTTGTGACATTAAACGGAGATGCTTTTGCAAAAAGCCATTGACCAAATAGATATCTTGTTAACCTCGTAGTAAGAGTTGGTGAACTTTTTGAACTTGTAATTTTACAAAAATAAGCTGGTTTCTCACATCAGCTTCCAGTCCTTTTTAAGTCCATTTCCTTGTCTCTCAATGGCTGTTAGGGAAATCTTTTTTCTATGAGTTTACAGAATATCATAATCCCACTCCCCCCAACCCATCCCCCCACCCAAATGCAATGTGCACCCAAAAAGGAAATCACCTTCAATCTTTGTTCCAGTTTCTTGGTTTCAACTATGTAGATTCGTTTCCTCTGGTAGCGTTCGTTAAATACCAAATTCTTATTTAAGTTTAAAGTATTATGCCATTCTTTACCGTCTCAAAGATGTTCACTTTGTTAGGATGGTTATGTTCAATATTATTCAGTAAGAATCAAATTGTGCTTGGTAACTGCAGAAGACTACTCAAAGAAGTGCAAGTCTTTCTGGAGATGTTGAACAATTCCCGGGCCCAATGTGGGCAGCATGGGTTGTACATCTGATGTGATGTGTTTTTCGGTAACACATCCAAATGCAAGAAATTTAATATTATCATTGTAGAGGTTGGTCAAATGGAGTTTCTTGAGGTAGGCGTGTTTTCAAGGTTTATTTTGTGACTTGAAATTGTGGAGAAAGAATTAGCTAATCGATTGTTGACCCATGTATTATTGTTCAATACTATTTTGTTGACAATTACAATAAAAATGTGTCTTGATTTTTTTTTGTTTATGTTTACTACTATTGATATTTTATTAGTATACTTGACACATTTGTTTGATATTTTTTAAATATTTTTTATCTTGATTCAATCGGTGGTAATATATCTTTGGTCCGTTATCTAAAAATCTATGAGAAAAATACTTTTTTAAATTTAACATGTTTGACAACTCGCCTATTCACAATGTATAGTCGAATGATTTATATTTTACTCTATTTTATAATTATTTTGGTATTTGATTATAATTATATTTATATATTTGTCAAAAAGTTTTTTTCTACTTGCTAATACTTTCTCCTAATGTTTTTGAGCGTATTGTATTTCATCGTCTAAGTTGATTCTCTGTTTTACATATAATTTGCTCAAGTAGTCCATTGTAAGTTTTATCCATACCAATTCCTCGGATTTTTGAAAATCGAATGAGTTTTCCTTAATCGGTACGTAAAGTTTTTTAAAAATTACGTTGTCGTGTTAAATTATTATATTTAGGATATTTAACTTGTAAATTATTACATTTTGAATTGACATCGTTTGTGTTTCATTTGACTTATCATTTCTATTGTTGATTGGGTCTTGGGTAAGTAGCACAATTGTGATGTGATTTACACCCCTTTATAGACGATCTCTTTAATTTATTTCATTTGTGTTTTGTTACCAGGTAGTCTCCTCACATTTGCGTATGCTTTAGGAACTTGTTACGTGCTTGGATGAGTGTTCCTTCATCGTTCCGTGAAGTGTTTAAAACATTGCATAATTGTGAAATAGTTTGATTGTTTAATATACTTGTAATTTGATTTACCCCTACCTTTTTCGATAATATCTCTAATTGACTCGGTTTTAAATTTTTATTTCCAGGTCGTGACTTCTTGGTTATGTAGCTAAGTGGTATTGATCTAGTAGTGCATGGAAAGTGTTATACTTACGATTCTTTTGGTTTTTAAAAATCATAAACAATTTTAAAATTGAGATCCTTGGGGTATTTTTATAGTTGCGATGTGATTTACTGCTAATTTCTTCAATTTTGTATTGTCTTTGCAGGTGATGTCTTCCACATCTACAACTACTTTGGGACCTTGGTCTTGTGCTTGGAATCAATTTTCCTTGTTCCGTGAAGTGTTTTAAAATATTACATAACACATGGATTATTAAATTTGTTTTTTTTAATGTTCTTGTAATGTGGCTTACCCCATGCTTCTTGATAATATCTCTAATTAGCTTAGTTTGAATTTCATTTGTAGGTCGTGACTTCTCATTTCTATAGTTGTGTCGAGCTTACTCAATTAATGCATTGTAAGTGTTATACTTGGTGATTCCTCTGTTTTTTTGAAATTCATAAGCAATTGTAAAGTTTATATTAGGATTATTATATTTTGAGTTTTCTTTGTAGGTGTGTCTTCTCATTTCTATTGCCTCTGCTTTGAGGCACAGTCTTGTGCTTGGAGTGGATTTTCCTCAGCGGGTTCAATGAAGTTTTTAAAATATTGCATTTCATTAAATTATTACTTGTAGGATTTTTACCCATGTGCTTCTCGATATATCTCCAATTGAGGCTTAGTTTGAATTTCTTCTGCAGGTCTCGACTACTAGTTTCTGAAGTTGGTTGAGAGTAGCTTTTGTAGTACATTATAAGTGTTACCCTTAGTGATTCCTTGGATTTTAGTTTATTTCGTTTTGTTGTGATGTGATCTATGCCATTTCGTGGACGATTTCTCTGATTTATTCAATATTGAGTTCCCTTTTTAGATGTTCTCTTCTCACTTCTGGAGATGCTTTGTGACCTTTTCAAGTGCTTCGAACGAGTTTTGATTAACCGTTTCATGAAGTTTTTTCAAAATTTTCAAATTTATTATATTTATTTTTTTAATATACTTGTCTCTAATTTGTAAAATTTTGTATTTCTGTTGTAGGTATTGTTTTGTCACTTCTGCAGCTGCTTTAGGACCTTGTCATGTTTTTGGAATGTTTTTCCTTAACGGTTTTGTTGTGTTTTTTAAAGAATATTCATAATTGTGAAATATTTAGCTTGTTAAATGTACTTGTAATTCGATTTACCTCTACTCTTCTCGATCATATCTCTAACTAATTTAGTTTCAGTTTCTTGTGCAGGTTTTGACTTGATCATTCCACTAGTTTGTTTGGACTTGCTCTAGCAGTGTATTACAAGTGTTACCCTTAGTGATTACTTTATTTTTGAAATTCTTAAGCAATTGTATTATAAGTTTTTTCAAAATTTTTAAAATTTCAAATTTATTATATTTGTTTTTTTAATATACTTATCTCTAATTTGTAAAATTTTGTATTTCTGTTGTAGGTGTTGTTTTATCACTTCTGCAGCTGCTTTAGGACCTTGTCATGTTCTTGGAATGGTTTTCCTTAACGGTTTTATTGTGTTTTTAAAAAATATTCATAATTGTGAAATATTTAGGTTGTTAAATGTACTTGTAATTCGATTTACCTCTACTCTTCTCGATCATATCTCTAACTAACTTAGTTTCAGTTTCTTGTGTAGGTTTTGACTTGATCATTCCACTAGTTTGTTTGGACTTGCTCTAGCAGTGTATTATGAGTGTTACCGTTGGTGATTACTTTATTTTTGAAAGTCTTTAGCAATTGTAAAATTGAGATATTTGGGTTATTCAATTTTTAGTTTCCTTTGCAGGTGGTCTTCTCATTTTTGCAGTTTCTTTGGGACACATGGTCTTGTGCAAGAATGGCTCTTCCTTAATCAGTTGGTGAAATTTTTTAAATATTGCATTGTCTTTAAACTATTATTTTTAGGATTTTTAATATACTTGTAATGTGATTCACCCATTCCTTTCTCGATATCTCTCTTATTGAACTAATTTGAATTCTTTTATAGCTTGTGACTTCTCGTTTCTATTATTGCTTGGGACTTGCTCACTTTGTGCATTGTAAGCATTATCTGTGGTGATTATTTGGAGTTTTTTAAAATGTTAATCAACTTTAGTATTGAGATCTTTAGCTTATCTCTTACAATTGTGATGTAATTTATGCCACTTCGGGGACGGTATCACTGGATTATTCAGTTTTTTATTTCCTTTTGCAAGTGTTGTCTCCTCACTTCTGCAATTGGTTTAGGACCTTGGCATGTGCTTGGTATGAGTTTTTCTGAATCTTTCTATGAAGTTTTTAAAATATTACCTAGTTGTGAAGTTTATATATTTGGAGTTATTTAATATCATTGTAATATGAGTTAATTAAATGGATTGTTACTAATATATATTTAACTTATTTGAACCTGGCAGTTGGAATTGCTGAATCCAGCTAGGGATGCTAGGTTGCCGATAATTGGTGGCCTAAGTGGGTTTTGTCTCCCAGAGGTTGAGAGCATTTTGTTCCAAACAGAACATTGCTTCATTCATTCAGTTTACGCAGAACTCAGCTCTGTGCTCTTTGCACGTCACTTTCATGGATTTGCAAAAAGGATTGAGTACATTCTTTAGGCGGCCCTTTACGAATCTGTTGGGTTGATATTGTGCTTCTTGGACGGTTGGACCTACAACATTGACGCAAGATCACTAAAGCTTAGTACGAGGAGATCAAGAAGCTTATGGAGGAGCTTCATTTGGTTATGTTCTTGCAATTGGTTACTAAGGAGGTTCTAGACTGCAGTTATACTCTCCCATTTGACAAGGCAAGTGAAAATTATCCACTTCCTGATTGATTGAAAACTTGAAATACATGGGGCCCAGTGAGAAGTGGGATATATCTAGCCGTATCCATATTCTATTCTCGTAGGTCTTACCATATTGATGTACCCTCATTGTACCTGTACCCATAAACGTGCTTCATAGCTTTTGACGCATGCACGCGCACAAACACCAATTAATATAGCTTTGTAAACCAATTAACTAGGTACTAAAAGTGTCCTCATGTTTTAGGGATAACACTGATGGAGACTTGGGGAAAATGGCAACTTAGAATTAGGTTTTGGAGGGTGGGGTAGCGTTGAATGGAATTTTTATAGAATTTGAGCATGAATATTGCATTTGGCATTAAAATACTTTAGGAGGACAAGAAGTGTAAGCATGCAGCCGAGCCCCCATCTGGAAGTATTGTCCACTTAGGCCTGGCTAAACAACTTCCCTCAATGGATTGTCCCTCTGGCATCCTAGCCCAAAAGGCACCTCCAAGTTGGAAGTGTCTTTCGCTGTCTTGTTTGGTCATCGCGGGCATTGTCCGCAATCCATGTGAGATTCCCACAAGAAGCATAGAAGTGGATACTCGGACCATAGCCTCTTGTAGGTAAGTTTTTACCTTTTCTTCTTTTTTAGTTTTCCATGCTGATGTAATACTCAATGTGCTTTTATTGATTTTATACATTATAGGATCAACTTTTTGAGTTGCATATAAGAAGTTTCTAAAATTTAGTCTCTTTTTCACAAGGCAGGAGTTGTGTCTTAATAATGAATTCTGTAGTTGAGGCTGTAACTATATTTATTGATTCTTGTAGTTTCATTATGCAAGTTAACTACATCATATGAAGTCTGAACTTTTATTCACTTAATATAGAAATTGCCAAAATGCTTTTGTAAAGTGTTCTTCCAAACCTGGAGTATACTTGAGCCTCTTTCATTGCATTTCCTGGACTTGTTAGATTGGTATGAAACTTTTATTTAGGAGAATAAACAACCTTATGCTTGGAGTTGGCGAGAACTGTGTCTCCACCCCTTCTATGCGTGCGTTCACATAAACCCTATATGGTTGTATCTTCGTGGATTATATTAGTTTACATTACTACGATTTGGATGGTATGCTAGGATGGGGAATAAAAAAGTACGCGTAGTTAGTACCCATAAAAGGTGTCTAGGAGGGATAAATTGGTAAAAACTTGACATTTGACAATATATGCACAAAGTGATTGTCGTCAGGAACCTACAACCTCAGGTTTAGTATGCCATGTTTTAACCACTGAACTAATGGATGGATGGTATGCTAAGAAGGGAAATACGAATGAATATTCATAAAAATCGGGATTGCTTAAATTAATGGATTGAGAGAAGGGGAAAAAACTATTACGAGGCTTGCATCTATATCTATACTTCGACAAGTGCTCTGAAGAATCGGAGTAGAATTAGGCATCGTTGCCAAATCCTAAACAAAGGAAACCTTGCTATCCAAATGTAGTTTTGTGGCTCAGCCGCCACCTCACAAATTATAGATCTAATTGAAGTAACATTACTGTTCATCACCCTTCCCTGTGCCATTTTTTTTTATTCAATGGAAGTCCCTGTGCTATTTTTTTTTTCATCCAAAAACAAATTTGTCCTTTCATTAGGGGATGATGTTTGCAAAAACTGTGTATAGCATCTTCACTTTATTGGTATCATTGAAGTAAACTGTTTGAATAACGGTAAAATATTGATTTACATTTTAGTTATCATGCACTTGTTACGATAAGCAAGATTGCCTGGCCTACATCTTAAAATATGATCGGTAGTGAAGTTTAATAATGAAGTATGTTTTAACGAATTCCTTATGCATTTTTTTTTACAAACTGGTTGTGCCTTTTCACCGTTTTGTTCGACGGAGCCCTGTTATATAAGTTTGTATGTATATCCATGTATAGATGTTGGTTTTATTTCAAAGTCATTTTAGTTATGTTGCATTAACGACTTCAACCATAATATAAGCTGGTTTTTTAGATGAAACTCTTTGCCTTTGCACAGGTTAGTAGTTCCTGAAGACCCTTTTGCCCTGTTCTTTAACACCCTTAAATTCCATATCTCTTCTGCATTTAGTTTACGGACTGGTTGTGCTTTTCACCCTTCTGACTTAATAGTTTCTTGATTGTTTTTTCCCCATATATAAATCTAGCTTTTCTTCTTGGCTAGCACCATTGGGAACTGTCCACATATTATACCTAAACCTGAACTATATTTATTTATTTTCCTTGTATCATGGACAGGATTGGTGGCAGATCACACTGTTCACTTGGTTCGTGGTTTCGCTCCAACTGTACCAGTCACCACTGCATGTGCAACCAACACTGGAGTTCCAAATTCTACTCCAAGTGGCGTGGCGTCTGTTGGTTCTGACGAAGGGGCATTGGGAGGAACTGGTTTGGGCTCTTCGCTCTTTCCTGGACTTGGTTTTAATGGATTAGGCAGCAGCAATGGATTATATGGAGCTGGACTTCCAGAAATTGAACAAGTGCAGCAACAGTTGACTAAGAACCCCAATCTGATGAGAGAATTAATGAACATGCCTCTTGTTCAGAACCTAATGAATAACCCAGACATTATGCGGAATATGATAATGAACAACCCACAGATGCGTGAAATCATTGATCGAAATCCAGAGCTTGGTCACATACTCAATGATCTTAGCACTCTCTGTCAGTCATTGGAGACTGCAAGAAACCCTGAACTCATGCGTGAGATGATGCGCAATACTGACAGAGCAATGAGCAATATCGAATCTTCTCCTGAGGGATTTAACATGCTGAGGCACATGTATGAAAATGTCCAAGAGCCTTTTCTAAATGCAACAACCACGGCTGGGGATACTGGAAATAATCCAGGATCAAACCCTTTTGTGGCTCTTTGGGGGACTCAAGGTGGCTGGCAGGGCAGAGATCTGGATACTAATCCTTCTAGCACTGGTTCCAAAACTAATACCAATTCTCCTGCTTCAAACACTAATCCACTTCCCAATCCGTGGGCCTCTGGTGGAGATAAGTTAAGCTCTCTCTTTAGTCCTCTTTTTCTTCTTTAGGATTTTGAATGTTTTGGTGTTGAGATACATGAATTTGAGGCTGTACTTATCCTTATTATCCTTTGCTCTGCTGCTTCATTTTGTTTGGGTTAAATTGTGGCGTTATACGTTGCTGATGTCAGCATTTTTAAAAATAAAAAGTTGGTTTTTATCTATACTTTTCTCATTTTTATTCAGTGTAGGTTGGAAGGATATCTTGTTTATAAGCTAGTCATATTAATAAGAGAGCCAACATATGACAAAAGTATTAGCATTCATTATAGGCATAGACTATTCAAGTTGAAAAACTTTGCTGCATCATATGTGATATGTGTAGTCCTACTAATTAGAATATCATCCCCAATTTTATTGTTCCTGTTCAATTTTTTAAAAGGTGTCACCGTTTTTCCCTGAACTTCATTATCTGAAGTTGACTTTAAATAAATTATATGGATTGTTACTAATGTTTAACTTACTTTGAATTTGGCAGCTGGTGGTGCCCAAACAAACTCCACTATGAGATCGAGTCCAGGTGGGGATGCTAGGTTGCCGACACTTGGTGGCCTAAGTGGTGTTGGTCTCCCAAGACATGTTTGGTTTCACACAAGACAACGCTTCATTCAGTCAGTTTATGCAAAGCCCAGCTGTATCACAGATGATGCAAAGTCTCCTCTCCAACCCTCAGTACATGAATCAGGTAGTACTTTTAATTTTTTACAATGTAGTACGTGTTTATTACCGCTTTCAGGGCTTGCTTATAGTTCGTTTGGTGTTTCTGTTTGTTGCAGCTTTCTAAAACAGCTCATGACCCTGACTTGAATATGACTATCCAGAAGCACACTTATGGATGCTTTTGGCTTCCGCTTACAGATTATCAACTTTCAGATTTAAATAAGATGAGACCAAACTGCCTCTAATATGGTTCATTTGACTATGGCTTTTCTAATTCTAATATGTATTTCAATTGGTAGATTCTTGGGCTGAATCCCCAGCTGCGCAATATGATGGATTCCAATTCCCAACTTAGAGAGATGATGCAAAACCCAGAATTCCTTCGCCAATTGACTTCCCCTGAAACAATGCAGGTACGATGCTTGAAATCCCACGTCCCTCTCATGCACTCTGTCTCCCTATATTTGGAAATGAAAATGAGACTTGCATATTATTGATATTGGTGTGATTAAAATAATGAAGGGCTGTATTGAGTCATTGACATCTCTCCAAGTGAAATCTGTTCCATTTTAGCATTTTAAAGTATTGTTTTGCAGCTTCCGACAATTATTTAGGAATTTAACATTTCTCTAATATCTTTCAAGAACTGCTTCGCTATAACCATCCCCTTGTGGTTGGTGAAGGGAGGGCCTCAGAGCCCCTATTGGTAGAAAAAAACCCACAATCCCTTGAGGTCCTCCTGAAGAAGAAAACGGATTAAATTCAGTGATAATTTGATTCTTTGTTGTTGCTTAACACATGCCAGTCTTACGAGCCGAAGTAGCTCTGCATGGTATTGTCATTTTACCTATAATAAATTGGTTTACTGAATAAGATTCAATTGGCCGTCTCTTAGGAACTGACCAAAGAGTTAAGGAGTTACGATCATCTCATATTGAGAAAACGTCATTGATAGCTTCCGCTACCCGACCCAGCCTTTGCTTTTTATTTAGGGTAAATTTCATTTATGACAAATGCAACTACCTCCTTTGTAGTTTTAGAAATAGTGTTGACCTCCCTTTCTTTTGAATCTAATGTCAACATTCCACCTGAAACTAATTTTTGTGCAAAAATGACAAATTTGCAATTTGATTTAGGGATTCCAATTTTTTTTTTCTCTATACACATTAAAATAAATAAATATTTTCTTCTTTTTCTCAAAATATCATTTACTTGTAAATAATTTTATTTTTATTTTTTATCACTAAGTAATTTTTGTAAAAAGGATTTTGATCTAAACAGTTTACTTTTTAAGTGCTCCAAATCTAAACATTCTTAAAAAATATTTTTTTTATCATTTTTTTAAAAATAATAGAATGTTTATTTATTTTAATGTGTGTTGAGAAAATAAATTTGGAAGTCCTAAATATAAGGGCGAGATTGTATTTTTGCTCAAAATTAGCTTTCGGGGAGAATCTTGGCCATAATTTCAAAAGTAAGGGAGATTAGAGCTATTTCAGAAACTATAAGGGAAGTGGTTGTATTTGTCAGAAACATCAGGGGAGGTCAATGAAATTTATTCTTTTATTTATTATTGGAAATGGGAGGCTGAAGAGAGGTTTATGTTGTTTTTCCTTTTATTTTTTGAGATTTGTTTGTCAACGACTAGTTTGTTTTCAATCTGGCTGTACAAACTCTTTAAATTTTTATTTTTTACTTAGAAAGGGCTTTCTCCCTAATACTAGGCATTGGATTGGGTACTTATTATCAATTTTCTCATTTTACAGTTTACAGATAGATCAATTGCCATCATAAGTGTCTCGAGTTCTCACCCCTTACTCATTTAGGTTTCTTGTTTTTTGGAACATCATGAGCTAAAATTAAAGTTCCTCCCCACCAACTGCATGGGTTGTTATGGGAAAAGTAAATGATTCATGTAAGAAATATCTCAATAAGTAGCATAGTTTATTCTCTACAGCACACTATAGGCATATGGACCCACTATTCCCGTGGCTTATTGTCATTGGGCGGGGCTTGTAGGCAAGACAATGAACAAGTAAAACACCCGGTGTGGTGCTGTATGATACACGTTAGACAGTCCCGCCAATTTGCAAGCAATAAGTTGACAAAATGCCAAGGAAAAGGCTACTCAAGCATATGAAAGTGAGACATTCAAGAGCGAAATGACAGCTTTCCATTGATCAAAAAGGTGTATTACAATGTTTTAGCCATGCACCCAAGTACATAACTCAAAACAAACCATTGTCAAAAAACTAGTTAAAGACAATGGTTGGGCAAGTCATGAACCTGACCCTAATGGTTCGTCAAAGTAGCTTGTCCCATTTTCCCTCAAGGGACCTTCATCAAATGTTATGCGAGAGAGAATTCACCACACGATGACTTGGTGACAAGCCAAATCTCTGCATCAATCAGCCGTCATAGCTGGAAGGAAATCGAATCCGTTGTTTAACTGCTAGGACTGATCCATGCATTCAACCGTCGGCCAGAAAAGTGAATGGGCTCCAACTGGTTTGCCTCCTGGACCAACCCATTCTATAATTTGAAGGATCTGTTCTCCAACAGAAAGTGAAATCCTCTCCTATTGGGATCATAGATGCCTCACCAGAGATTGCCCTGGCTCCCATCCAGTCATTTTTCTCCTATAATTTTACACTATGTTAGAGCACCATTACTCGTAGGCTCCACCGCGTCATTTCCACAATAAAAAAATAATAAACTTCAGATTTAAGATTCTTATATCTATCAAATAACTTTTTTAATTTGGCAGGCACTTAATTTTTTACGAAACACATTTTCAGCTGACAAAATTCAGCATTCAGTAATTAGTTTTATCTAACGCCACCTATGTTACTTGATTCTTGTAGTTTCATGGTGTAAGTTAACTGCATCTAGTAAATCTTGAATGTCTGTCACTGAATATATAAATTGCCGAATTGCCTCAGTCGATGTGCTCTTCCAAATTGGGAACTACTTGAGCCCCATTTTGCATTCCATTTCCTGCACTTGTTTTGCATAGGAGAAGTCATGATTAATATGAATGAAGTGGGGGAAATAGAACAAATTGGAATGCAAACATGTGGTAGTTACATCTTATTTGAACTTAAGTGGGAACTTTCTTATTTGTGGAGAACTATTCAATATCAGCATGCATATATGCATGTGCATGTGCATGTTTGAGCCTTTTGTCCCTCCTTTTGTTTTAAAACGTATTAACTTTGTTCTTTATTACTTTATTTCCTCTGGGTTGGGCCACTTCTTCCAAGAATTATATATAGCTCGTTCATAAATCCACTTGACCACTCAGACTTAACGACGAAGTCCTTCTTCATTACTTTATTTCCTCTCGTTCTTAATTTTTATTTTCCCTGTTTCAGCAAATTTTGACCTTACAGCGAACTCTTCGTCTCAGCTTGGTCAGCAATCTTCAACCAGGTAAGTGATTTTGCTTCTAGATTTTGTACAGTAAAGGAAACCAATTTCAAGCCTGCTAGTCTTATCATTAACCATACGTTTATCAGTGTAACTCACTTTTTACTCATATAGCTGTATGTAAATGTTGACACAATCAATATGTTCACGTTACTGTCCAGATTATTTGAAACATTGATTTTTCTAGCCTTTTATACCTGGCGACCATATAGAATTTTGTTGATTAGATTTAACCCCTTTCCTTTTTTAATTTGTCTATTTGTAATTGCACTCTTGCAGGGAAGCAGGTCAAGGTGTTGGTGGGACAGGTACGTTATCTTGGAACTTGACATTCTAATTGCATATATTTAACCATAATGCTCAGTGATTCTGAAATCAGAGTGTCTATTCGTGGTAATGCAAGATTGCAGCTTGTCTTGCCTCATCTATCTCAAGTTGAAAATTCTTTAAGCTTAAACTTCAATTCTAAAATAGGGATCTCCCAAGGCTGTGTTTGGATCAAAAGGGAAAAGGTGGAGGATCCAATGGTCCCGAACGGTTGGATCCTCTAACTTTTCTATTTTCTTTTCCTTCACCAAATCCTTGATCCAAACACGGCCTATGAGCTTGAAGACTGTTCCTTTGTAATCTTTTGTTGAATGTGGAGGATTCTGGGATTGTGTCCTTCCATCAATTAAGCACAACATGCCTAATCTGAAATCTCTGTTGATGCTAACCCTGAACCCCATATTTATTTTGTAAAAGAGAAAGGAAAACCGAATAAACAAGACATGAAGATGGCATTATATGAAAATTTCCGGTTGTTTTCTTTAATAGTAGTTATTTAACTCACAGTGACGTGCCCTTGTTCTCTCAATAGCAGAGAAATTGATGGCATGGGGCTGGAGATGTTGATGAACATGTTTGACAGACTCGGGATCGCAATGCCTCCGTCTCTAGGGGTAAGCCAACAGTTTCTTTAATGGTTTTCTAATCCAATAAATAAGATGAAGAGAGCAACTCCATTTGGAGCATCTCCAACCCACCATCTATATCTTCAAAATGAGAAAATAGAGAATCTTTCATTTCACGATTCACTTTTTTAAATTTCAAATTTGCTCCCTTCAACTCTTGATTTTAAATTTGATTACCAATCTTATCCTTTCTACTTTTTATTGCTTTTTGATAAACTACATATAACTTTTAACATACATTTATTTTTTATAAAATTAACATGGTCGAGTATATGTGGAGTATACCTTTAAAATAAGACCAATATTCAATATATTCGCTAACAATTTGAAAATTGATTGGAGGAACTTTTTTAGAAATAAGAGTAGAGATTTGTGAATTGAGTTTGCTTGAATAATAAAAGCCTCTAAACTTAATTTTTGAATAAAAAAGAATATTTTTATGTTATTCTGATTATGGCAATTTTTGAAGCTAGTTATTGTTTACACTATATTTTTTTTTATTTGTATTTGTCAGGGTGAATTTATTTTAAATATTAATATTTGAATAAAAGTGGGTATTTTAATAAATTTATTCTAATAAAGACAAAAAAATAGTGCAATTGAAAAAAAAATGAGTATAAAAATAGCCTTTTAAAAATAACCTAGGCTATTTAAAAAAAATTCTATTTTAACTCGATAATTAGTAACTTTTTTTCTTTCATTAATTTTCTCCTACCGTTCTGAAATCTTATGCTTTCCGATACTATATTCTAAAATTGTAATGCAAGCATATATGAGAATCTTTCACATAATGGGGATTGGGGACCAACAAAGGCCAAACCTATCCGCCATAACAAATTCACGATCCTTCCTAATCTGGCAAATCTTCTTATTTACCAAAAGCAAAAAAATCAAAATTTATGAAAAAATACAAAAAAAAAGAGAAGTGAAAAAATTCTACGGATTCAATTGATCAGAAGATATCAAGATTTTTCAAAATGAAGCCATTGCATATAGGGTAATTACCTCTCCGAACCCAAAGCTCCCTCGAACACAGCCTGCAAAATATATGCCCAGAAGGTGTGAATGCAGCCCCCTTGTGCTTCTCCATACACACGCAAAAGTTTTGCATTTTCAAACCTCTCTTTTCTACCGTTGCACTTATTTTTTTTTCTTTATTATTTGTTATGGTAAATTTACCCAAATATGCTTTTATAAAATAATTTTTTTATTTTTTACTTTATTTTCCCCTTTAAAACGAAGGTATTTTTGTTATTTCACTTAGTCATTATTATATGTGTGATTTGGTTCAAGATAATTATAATTGAATAAGTTTCTTAATGGATTAGGCAACCCCCCAAAAATTATTCTAAACATATCTCAAATAGGAACTTAAACTTTGTTTGATAATAAATTTTGAGGGTGAAATTAGATTATTAGTTATGTGGGGCCTATTTTAATTATGTTTTAGTGCAAAAATTGATTTCTAGACTAATAGTTCATTGAGACTATTAATCTCCAATGAATAGATGATTAAGAATTCCATGGGGGTTGGTTTACTAATTCAATCCCATAAAACTATTAATTCAAAGGAATTAGAATTAGATTTGAATTGATAAACTCACTAAATTGAATTTTGTTATTAAACATGGCCTTAGACCCAATTTTCATATTGTTTGAAAGCCCCTAATATGTTGTTCACCTAAATAGAGAAAAATAAAATTTCAAAAATCAAAATTTCAATGCCCAAACTAGAAGAAAAAAAATCCCAACGCCCAATTTCCAAGACTCATAAATTTCCTAATTAAAGACAATGAAAAAAAGGTGTCATGATTTTCAAAATTCTATTTTGGCTAATTTACAAGGCTAATAAACGAATCAGGTTGCTTTGAGATTGCTTTTGTTCATCTCATTAGAAGCTCATAATTGGTTTGTTACTTTAACAAACTAAGTTTGAACACTATCACTTGTTTCAATAAGCTTGTGCTATTTAACAAAATTCAAGTTACTCGAGTTCAACCGATTACAACGCGCTTAAGATCAACCAAGCTCGAGCATAATTTAAAAAACTCATTAAGTTTACAAACTAAGCTTGAAAACTCTAATGTTCAGCTCTTAAATGAACCCTCTACGCTACACTGTAGGTGTATGGACCCACCATCCACATGGCTAGTAGTCATTGGATGGGGGCTTGTAGGCAAGGTGTGGTGCTTACCAATTCACTTTAGGCAAGTACCCCAAGCTCAAATCACTTGCATCTAGGTTGCAAGCAATAAGTAAAAACAATGCCACGGAGAGGGCTACTTTAGTAATATAAAAGAGATCCTCAAAAGAAAAATGGTAACATTTTATGAATTAAATGGTGCATCACAAATTCTTTAGACATGACCACAAGGTTACAACTCAAAACAATAGTTGAGCAACTCGTCAAGGTAACACTTGATGTAAATAGAATTCTTAACTTTTTATCGTCAAGGTAACACTTGATGTTTTGGGAGTCATAATTCCTCTTAAAAATCACTGAAAATAGAATAATAACAATTGGATATGGGCTAAGCATCACAAAATAATACATCAAATATACATTTGACCTTAGTTTGTGCGGCAAAAGGAGTTTGAATATATTTGTAAAAAGTTAAGAACCTCTCCAATAATAGCTCTTATTCTGTCCCTAAATTTTAACAAAAAAATACATTCTCTATTTTTAAGGGATCATTTTTCAACTACAAACTCCAACAATACTATCTACTTTTATCATATTTCTTTTAAATACTATTTTTTAATTTATAATATTCTCCTCCAACTTCTCTCTCCTCCCTTCATCTCTCTGCACCAACCCAAACATCCAATCTCCCTTTTGCATTAACCCAGACGCCCAATCCCATTGCAATTTTACATAAATGGCATGATCTTCACCTCTTTATTGTGATTTTTCACCTTTGATAGCTATAAATTGGTTCTTGATTTTCTCAATTTTTGCGGTCTCGGTGAGTGATTTCTGAATGGTATTCTCGATCTTGATTTGTGAACTTGGCAATATCTTCACCGATCTCGATGGGGGGATATCCAAGGATATCTTTGATTAGTTTGTAGAGATTCTAGAAGGACTTCTTTTTGTTATTTTTTCTTCATATTGAAGTCTCCAATGACAAAGCAACAAGGAGTTTTCACAACTCAGCGCACATAATCATAATCTCCACCACTTTGGTTGTCTGTGTTGTTATGTGGTTTGCTCGGGCGAGAGACGAAGAATGCTGTTCAATTTCAGTTCTGTGTTGTTTGGGACTTGCTCAATTAATGTATTGTAAGTTTTATCCTTGGTGATTCTTTAGAGTTTTTAAAATCTTAAACAATTGTAAAATTTTGATCTTTAGGTTATTCTTACAGTTGTAATGTGACAATATCTCTAATTTGTAAAATTTTGTGTTTATATTGTAGGTGTTGTTTTGTCACTTCTGTAGTTACGTTGGGACCTTGTCATAATTGAGTTACGTTGGGACCTTGTCATAATTGTGAAATATTTAGGTTGTTAAATGTGCTTGTTGGGACCTTGTCATAATTGTGAAATATTTGGGTTGTTAAATGTGCTTGTAATGCGATTTTCTCCTACCATTCTCTCTAATATCTCTAACTAACTTAGTTTCAATTTCTTGTGTAGGTTTTGACTTGATCATTCCATTAGTTTGTTTGGACTTGCTCTAATAGTGCATTGCAAGTGTTACCTTGGTGATTACTTTATTTTTGAAATTCTTAAGCAATTATAAAATTTAGATATTTGGGTTATTCAATTTTTAGTTTCCTTCGCAGGTGGTCTTCTCATTTATCCAAGAATGGGTATTTCTTAATCATTCGGTGAATTTTTGCGGTCAGTTGGGTTTCGAGATTGCAAAAGATTGTTGCTCTTTCTACCACAGAAGCGGAGTATGTGGCTGCTACCGAAGCTTGCAAGGAGATGGTTTGGTTGCAGAGTTTTATGAGAGAGTTGGGCAAGGAGCAATCGAATTGCACTATCTACAGCGATAGTCAAAGTGCAGTTCATTTGGCAAAGAATTCAGCATTCCATGCCAGAACGAAACACATCGACATTAGATATCACTTCATCCGATCACTCCTAGATGAAGGGTTGATAAGTTTGGAGAAGATCCACACAAATCAGAATCCTGCAGACATGTTCACAAAAGTTGTGATCATTGAGAAACTGAAGCTATGTGCAGCTTCAGTGGGTCTTCTAGTATGAGGGCCGTAATGCCACACCGTTTGAGTAAATATTGAAACAAGTGGGAGTTACCCGGAGGAGCAGTTTGGTGGTCAGCCTTCAAGTGGGAGATTGTTAGGTATGTGAAATGTGGAGCCTGACATTTCAATGTCTACAATTACGGTTGAGTCCAAGTCTCCGATTGCGGCAAGTCCAAGTCTACAATTGTGGCAAGTCCAAGTCTCCGATTACGGCAAGTCCAAGTCTCCGATTGCGGCTGAATGACATCATTGCTTAAGTCATCCTCTTCCTAGGTTTCTCTATAAATAGATGTTGAAGTCTAGGAGAATGATAAGAAGGTAGCTAAGGCTAAGAGAGAGAGAAAGAGTGAGGGAGAGATTGTAATCCTAAATTTTGTTTTGGGGAATTGCTACTCGGTGTGGCCGTGGATGTAGGCTTAATTGGCCGAACCACGTAAAATCTCTGTGTCCCTTTTATTGTTTGTTTCTTACTTGCTTGTTTGTGTTAGAGGTGCACAAAATACCCACCCGACCCGAGACCCGACCCGACCCGACTTCATTGGGTCGGTTTGGGTCGGTTTTTTCAAGTCCATGGGTCGGTTTCGGGTCTAAAAATTATAGACCCGAGCGGTTCGGGTCGGTTCTCGGGTCCCTAAGTTTTTTTACCCAGAACCGACCCGACCGGAACCGACCCGAGAACCGAAGGGTAGAACCAACCCGATCGGACCCGACTTGAGAACCGAAGCCTAGAACCGATTATATGGGCTTATAATGTACTCTACCACACTTGATTATTGCCTATTTTATATAGAATAAGTGAAAATATTTTTAAAAAATTGAAGAACTGACCCGACCCGACGACCCAACCCGAGAATCGAAGAACCGAAGAACCGAACCGAACCGAACCTGAGCGGGTCGGGTCGATTCGGGTCGCCGGGACATTCGGGTCGGTTCTGGGTCTAAATTTCTGGAACCGTTGATGGTCGGGTCGGGTCTGGGTTCGACACATACCCGACCCAACCCGACCCGTGTGCACCCCTAGTTTGTGTGCGTGTTATTATTCCCGATCCATTAGGGTGAAAATACGCATTGGTGTTTTTATCACAACACATTTCTCCAACAGAAAGTGAAATCCTCTCCTATTAGGATCATAGATGCCTCACCAGAGCGCTCTCTCTCTCCATAGATTGCCATGGCTCCCATCCAGTCATTTTTCTCCTATAATTTTACACTACGTTAGAGCACCATTACTCTTAAGCTCACATCCCATCGTACTCAACAATGAACCTTCCCATTTCCCACACATACCATGTAGCATTGCAAAGCAATTCAAGTGTGTATGTGAGTGTATAGATAGTTGCAAACTAGGTACAACTAAGTGTGATCCATGTTCAGGGCCGACATTAATAGAGTGAGCATGAATTTTGCATTTTGGCATTAAAGTACTCTACATGTCAGAGAAGCATAAAAGTGGAAAGCGGGGACCATACCCTCCTGGACATAAGTTTTCACCACATTTTGTTATCAACTTTTAGCTAACCTACAGGTAGCTATCATAGGAAGTATGCATCGATGTGCACCACTATCACACAATTACCATCGCCACCCTTCGACACAATCCCTATGACCACCACCACCACTCCACTCCCACCACCCTCCATCATCATCACCATAGCCACCACAATCATTAATTCCACTACCATTTCACCACAACACCAACACCAACACCACTACCTCCACCTCCACCCCACCTCCACCCACTCTCTACCTTTACCACCATTGTTACCACCATCCCTCCACCTCCACCACCATTGTCATTGTTGCCATAACTATCAACATCATTCTACTACTATTACCGTCACCACACCACCACCATTGCCACTCTACTTCAATCATCACAACTATCACTACCCTACTGCCGCCTTCAGCACCTCCACTATACCACAAACACAACCAGCACTGCCGCCACCACCGCGTCATCACCACAATAGAAAAATAATAAACTTCAGATTTAAGATTCTTATACCTATCAAAAAACTTTGTTAATTTGGCAGGCACTTAATATTTTGTGAAACTTATTTTCAGCTGAAACAATTCAGTATTTAGTTTTCAGTAATTAATTTTATCCAACACCACCTATGTTACTTGATTCTTGTAGTTTCATGGTGTAAGTTAACTGCATCTAGTAAATTTTGAATTCTCTCACTGAATATATAAATTGTCGAAATGCCTCAGTTGATGTGTTCTTCCAAATTGGGAACTACTTGAGCCCCTTTTGCATTCCATTTCCTGCACTTGTTTTGCATAGGAGAAGTCATGATTAATATGAATGAAATGGGGGAAATAGAACAAACTGGAATGCAAACATGTGGTAGTTGCATCTTATTTGAACCTAAGAGGGAGCTTTCTTATTTGTGGAGAACTATTCAATATCAGCATGCATATGCATGTGTGAGCCTTTTGTCGCTCCTTTTTGTTTAAAACGTATTAACTTTGTTCTTTATTACTTTATTTCCTCTCGTTCTTAATTTCTATTTTCCCTGTTTCAGCAAATATTGACCTTACAGCGAACTCTTCTGTCTCAGATTGGTCAGCACCCTTCCACTAGGTAAGTGATTTTGCTTCTAGATTTGTATGGTAAAGCCGTAAAGGAAACCAATTTCAAGCATGATAGTCTTATCATTAACCATACGTTTATCAGTGTAACTCAAGTATTACTCATATGGCAGTATGTAATTGTTGACACAATCAATATGTTTTTGTTACTGTCCAGATTGTTTGAACCATTGACTTTTCTAGCTTTTTATACCTGACGGCCATTTAGAATTTTGTTGATTTGTCTATTTGTAATTGCACTCTTGCAGGGAAGCAGGTCAAGGTGTGGGTGGGGCAGGTACGTTATCTTGGAACTTGAAATTCTAATTTCATATCTTTAACCATAATGCGCAGTGATTCTGAAATCAGAGTGTTTATTCATGGTAATGTGGTAATGCAAGGATTGCAGCTTGTCTTGCCTCATCTATCTCAAGTTGAAAATTCTTTAAGCTTATAAACTTTAGTTCTATGGATCTCCCAAGGTTGTGTTTGGATCAAAAGGGAAAAGGTGGAGAATCCAATAGTCCCGAACGATTTGATCCTCTAACTTTTCTATTTCCTTTTCCTTCACCAAATCCTTCATCCAAACACAGCCTATGAGCTTGAAGACTATTCCTTTGTAATCTTTTGTAAATCCTTCATCCAAACACGGCCTATGAGCTTGAAGACTATTCCTTTGTAATCTTTTGTTGAATGTGGAGGATTCTGGGATTGTGTCCTTCCATCAATTAATCACAACATGCCTAATCTGAAATCTCTGTTGATGCAACCCCTGGACCCCATATTTATTTTTGTCCAGATAAAAGAAAAAGGAAAACCGAATAAACAAGACAGAAAGATGGCATTATATGAAAATTTCCTGTCGTTTTCTTTAATTGTAGTTATTTAACTCAGAGTGACGTGACATTGTTCTCTCAATAGTAGGAACTGATGGCATGGGGTTGGAGATGTTGATGAACATGTTTGGCGGACTCGGGACCGGAAGCCCCGTTGCACCAAGCATATCCAATGGTGATTATTATTTCCTTTTCCCTCGAGCCTTCCGATCTATGTTTTTGTTGATTTGTTGGCTAAATTCTTTTGGGCTCAAGCCCAATGCTAATTCTAGGCCCAAGCTTAGGCCCAAGCCCACAGAGAGCCATTGTCAAAGTTGCAGCTTCTTCTCTTGTTGCTGCCGACAGAGGAAGTAGTCGGCCGAAAGAGGAAGAAGCCATTTGTCAACAATGGTGGCACCTCCCCTCCCAAGTCAAGCTTGGTGAGGTCATTGCTTAGGTAATTCTGTCCCTAGCCTTCTCTATATAAAGCTGCGCTGATAGAGTAAAATGGCAGGGCAGAAATTAGAGAAAAATCAGAGAGAGTAGAAGGGCAGAGAGCTTGAGAGAATTCTCTCAAATTGTATTTGTATTTGTTTCTCTCCATATAATAGAATTGCTGCCACCCGAGGACGTAGGCAACATTGCCGAACCTCGTAAATTGTGTGTTTGTGTTGGATTTGTTAGTGTGTGTTATCAGAATTTGTTATTCCGCACAACAATTGGTATCAGAGCCAAAATCGGCATTTCGGACCTCTGTAAAAGTGGTCGAAATTGATTTCTGATTGCACCACCTTGTTCGTCTCCTCGAGACGAAACTCTAGCATCAAACCGCGTCGAAATCGGACTCCGAACGAGCTCACACGAGTTGCGTGAAGTCGGTGACGCGTCTCTGTTTCGCGTCTCTGTAAATTTGAGGAAGACGAACTGTTCATTGGTAAATTACAGTTTCAACCCCTGAAGTTTCTGTTATTTACATTTTGGTCCTTAAAGTTTTGATAATTACAGTTTGGTCCTTATATTTTCTAAAATTATAGTTTGGTCCCTGTATTTTCTAGAAATTACAGTTTGGTCCCTGAAGTTTTAAAAATTACAGTTTAGTCCCTGTAATTTTTGAAAATTGTATTTTAGTCCCTGAAATTACTAAAAATTTCAGATTGGTCCCCAGGAGTTCTAATTTTGACAAATTGGCCCCACAAGTTTCTGATTGTGACAGATTGGCCCCAAAAGCTTTTGATTTTTTCAGTTAAGCCCTTCTTAAGTTTTTTCAGCATTCCGGACTCACCTGTGTGGTCAAAATTTGCATATTTTGATCCTATATATCAGTTTGGGTGGAGTTAAGTTGTTTAGATGGAAGAAGATAAAATCACTAGCACTTCCACTAGCACTTCCGGTAGCTCTGGGCATAGGACTACAATGTCCAATGCCAAATTTGAAGTTGAAAATTTGATGGGACAAATAACTTTGGCATGTGGCAATGCGAAGTTTTGGATGTCCTAATTCAACAGGACTTGGATATTACTCTGGAGGCCAAGCCAGAGGACATGTCAGAGAAAGATTGGGCAAAATTGAATCGCCAAGCTTGCGGTACGATCAGACTTTGTCTTGCAAAAGACCAGAAGTACTTTGTTATGAAGGAGACCTCAGCAAAAGAATTGTGGGGCAAACTCGAGAACAAGTACATGACCAAAAGCGTTGAGAACCGGCTCTATCTGAAGAAGAAACTCTTCCGGTTCCAATTCAAGCAAGGTACGTCAATGCATGAGCATTTAAATGCATTTAATAAAATTTTGGCTGATTTGCAAAATTTAGACGTAGAAATTGACGATGAAGATAAAGCTCTTTTATTGTTAAATTCCTTGCCTGATACGTATGAGCATTTGACTACTACTTTGCTGTATGGTAAAGATGAAATTAAGTTTAACGATGTTTCAAATGCTTTGATGAACAACGAGGTGAGAAAGAAGGATCAAGACGCTCACCGGGAATTAAGTTTAAATGCATTGACAGCAAGGGGTAGGACGAGTACCCGAAAATCTGGAGGGGATGGAAGTCTCGCTCAAAATCAAGGAAAAAATCATCCGAGAGACGGCAGCTTGCAAAGGATGAGTGTGCCTATTGTCATCAGAAAGGCCACTGGAGAAAAGATTGCCCAAAGATAGAAGGCAAAGAACCAAAAGCGAACATAGCTCATGATGCAGTCGAGAAAGATGACACTGCATTTACTGTTTCTTTGTCTGCTAGCCATTTTGACGAATGGATTCTAGATTCTGGTTATTCCTATCATATGTGTCCTCACAGGGACTGGTTCTCGAGCTTTGAAGAGCTCGATGGAGGAGTTGTTCTAATGGGAAATGACAACGCCTGCAAAACGATGGGAATTGGCACAATCAGATTGAAGATGTTCAGTGGAACCGTCAAGGTTCTTACTGATGTTCGCTATGTACCAGATTTGAAGAAAAATCTCATTTCATTGGGAGATTTTGATTCAAAGGGGTACAAGATTATCTTGGAAGGTGGAGTTCTGAAGGTTGTTCGTGGTGCTCTTGTTATTTTGAAGGGCACTCGTAGAGGAAATCTCTACTTCCTCGATGGGAGTACTGTCACAGGGAGAGCTGCTGTCTCCAACAGTTCAGACGAATCAGACACTTCCAGATTATGGCATATGCGATTGGGGCATACTGGAGAAAAAGCTTTGCAAACTTTGGTACGTCAAGGAGTTCTGAAAGGAGCTAAGACTGGAAAAATTGAATTCTGTGAGCATTGTGTGCTTGGCAAGCAGACAAGGGTGAAGTTTGGCACAACAATTCATCAGACTGAAGGCATTTTGGATTATGTTCATTCCGATGTCTGGGGGCCTTCTAAAAATGCATCTTTGGGAGGCTCACGCTATTTTGTAACCTTCGTTGATGACTTTTCTAGAAGAGTTTGGGTATACACGATGCGGCACAAGGATGAAGTCCTTGAAATCTTCTTGAAATGGAAGAAGATGATCGAAATCCAGACTGGTAGAAAGATCAAGAAGCTCAGATCTGATAATGGTGGAGAATACAGGTCAGATCCTTTCTTCGATGTTTGTTCCAAAGAAGGGATTGTCAGACACTTTACTATTAGGGGCACGCCGCAACAGAATGGAGTTGCAGAAAGGATGAACCGCACCTTAGTAGATAAAGTTCGATGTATGATATGCAATGCTGGTTTGAGCAAAGCATTTTGGGCTGAAGCAATAAACTATGCCGCACACCTTATCAACAGACTTCCTTCCACGGCTATTGAAGGAAAAACTCCTATGGAGGTATGGTCAGGAAAATGTGCTACTGATTATGATAGTCTTCACATATTTGGATGTCCTGCATACTTTCATGTAAAGGAAGATAAGTTGGATCCCAGAGCCAAGAAAGCTATCTTTGTAGGCTTTAGCACTGGGATAAAAGGATACAGACTATGGTGTCCCGAAATAAAGAAAATTATTAACAGTCGGGATGTTACATTTGATGAGTCTGTGATGCTGAAGAATTCTGAGAAAGAAAATCTGAGTCCTACATCCACCCAGCAGGTGGAGCTCGTGAGTCCTGTAGTGCCAACTAAAACTGTTCAGACAGTTGATATTCCTGACGAGGAATCTGATGATATCGACACTACACCAGATCTGAAAGAGGCTCAATCTTCACAACCAGCAGAATTCATCGCGACGAGTAGGCCACAACGAGTGATTCGTAGACCTGCTCGATATACTGATACTGTGGCATATGCACTTCCAGTGATTGAGGGAGTCCCATGTACTTACAAAGATGCTGTGCAGGGGACTGAAAATCCAAAATGGAAGAGGGCCATGGATGAAGAAATGAAGTCGCTTCACAAGAATCAAACTTGGGAGTTGGTGCCGCTGCCCAAAGGAAAGAAAGCGATCGGTTGCAAGTGGATATATGGCAAGAAGGAAGATACTCAGGGAGTCAGATTCAAAGCTAGATTGGTGGCTAAAGGCTACGCACAGAAGGAAGGAATAGACTACAACGAGGTATTTTCTCCTGTTGTGAAGCATTCGTCTATTCGCATTTTGCTAGCTTTGGTTGCTCAGTTTAATCTTGAGTTAGCTCAACTCGATGTCAAAACCGCTTTTCTACATGGAGATTTGGAAGAAGAGATTTACATGTCACAGCCAGATGGGTTCCAGGTGCCTGGAAAAGAACATTTGGCATGTCGGTTAAAAAAGTCTCGAAGACAGTGGTATAAAAGGTTTGATTTGTTCATGGACGAGCATGGGTATACACGGAGTCAGTTTGATCATTGTGTATATTTTCGCAAACTCCAAGATGGTTCCATGATTTATTTGCTCTTATATGTGGATGATATGTTAATTGCATCTAATAGCAAGGTGGAGATTGACCGATTGAAAGCTCAACTCAGTCGGGAATTTGAAATGAAGGATCTTGGCGAAGCCAAGAAAATTTTGGGCATGGAGATTAAGAGAGACAGAGTGAAAGGTACAGTTTGGTTGACTCAATCTCAATATCTGAAAAAGGTTTTACAGAGATTTGGAATTGATAGTTCAACTAAACCTGTTAGTACACCGTTGGCCTCTCACTTCAGATTAAGTGCTTCTATATCTCCTCACACAGAAGATGAGCGAAAGCATATGGAGAATATTCCTTATGCTAATGCTGTTGGTGCCTTGATGTATGCAATGGTTTGCACAAGCCCAGATATTTCACATGCTGTTAGCATGGTCAGCAGGTATATGCACAACCCAGGAAAAGTTCATTGGCAGGCCGTGAAATGGATTTTACGCATGGTTATCAAAATCGCGATCCGGATCGTAGGATCATACGATCCCACGATCCCAAATGGTTGAATCGATCCGGATCGATAAAATAATCGCAGTGGGATAGGATCGTGATAGGATCGTTACAGGATCGTATAGGATCGTATGGGATCGTATAGGATCGTGACAGGATCGTAGTAGGATCGTTAAAGAATATAAGAATAAGAATTCTTGAATTTTTGTACTTTTGAATTCTTATAAGTTCAAACTATTAATATTTTATATGTTACTTTAGGTGCATTCAAAGCAAATAAATCGTTGACACCAAAAAAAATTGAATGATTTGGTTTTTGTTTTGCACAATTTGAAATTGAGACAAAGGCATTTTTTTCTTTTTGATATTTTAACTATTTTTTATATAATTTATGTTCATTTTCTATTAATTTTGAAGTAATTATCATAAATTAAAAAAATTATTAACCTTTTGCTCCTATTTGGTAGGATCTTACGATTCTCGATCCGATCCTACGATCCGATCCGAAAGGCCCCAAAACGATCCAAGGTAGGATCCCGATTTTGACAACCTTGATTTTACGATATATTCACGGTACAGTCAATGTTGGTTTGAAATTTCAGAGGGACAATAAGTCAAGTCAATATTCAGTTGGGTATGTTGATTCAGACTATGCCGGAGATCTTGACAAGCGAAGATCCACCACTGGTTATGTGTTCACTATGGCTGGTGGACCAGTATGTTGGCGATCTACTCTTCAGTCTACAGTTGCTTTGTCTACTACTGAGGCAGAGTACATGGCAGTGACAGAAGCCTTCAAGGAAGCAATCTGGCTTCATGGTTTGATAAATGATTTGGGAATTGATCAGGAGCATGTTGATGTCTATTGCGACAGTCAAAGTGCGATTTGTTTGGCTAAAAACCAAGTTCATCATTCCCGCACCAAACACATTGATGTTCGGTTTCATTTTATTCGAGAAATTCTGAATGAAGGAGATGTACTGCTTGAGAAGATCAGCACCAAAGACAATCCTGCTGATATGTTGACGAAGGTCGTATCTGGAATCAAGTTTAAACATTATTTGAACTTGATCAATATTTCTGAGCAGCATGGCGCCTAACGGCGCATTGGTGGCAGCATCACTCAAGTTGGGAGAAGTTTCGCCAAGGTGGAGATTGTTGATTTGTTGGCTAAATTCTTTTGGGCTCAAGCCCAATGCTAATTCTAGGCCCAAGCTTAGGCCCAAGCCCACAGAGAGCCATTGTCAAAGTTGCAGCTTCTTCTCTTGTTGCTGCCGACAGAGGAAGTAGTCGGCCGAAAGAGGAAGAAGCCATTTGTCAACAATGGTGGCACCTCCCCTCCCAAGTCAAGCTTGGTGAGGTCATTGCTTAGGTAATTCTGTCCCTAGCCTTCTCTATATAAAGCTGCGATGATAGAGTAAAATGGCAGGGCAGAAATTAGAGAAAAATCAGAGAGAGTAGAAGGGCAGAGAGCTTGAAAGAATTCTCTCAAATTGTATTTGTATTTGTTTCTCTCCATATAATAGAATTGCTGCCACCCGAGAACGTAGGCAACATTGCCGAACCTCGTAAATTGTGTGTTTGTGTTGGATTTGTTAGTGTGTTATCAGAATTTGTTATTCCGCACAACAATTTTGTCACATACTCACCCTTTTATTTTATTTTTTTTCATTTTTAGTGCCCCCGGAAGAACTGTACGCCACTCAACTCTCACAGCTACAAGAAATGGGTTTCTTTGATACCCGAGAGAATATACGGGCGCTGATAGCCACTTCAGGGAATGTTCATGCTGCGGTGGAGCAGCTGTTGGGGGAACCTTGGTCAGTAGATAATAATCATTTGTTATTGTCCTATTCGTCTCAACATTTATTGTCTGTCGGGCCGATGAAATTGGTTTGGACCGGACTAAAGAGGATTTTTCAAAACCTATCTTGGCTATGAATTAAAAATATAGATTCGATGTTCTGAAGTTCTTGACATAAGGTATGATTGTGGGAATACCCTCTTCTATTCCCCACCCTAATAGTAAGGTGAGTGATATGTACATACACTATTAT +>URS000039472C misc_RNA from 1 species +TTGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACCGAGTGCGGGCTGCCTCCGGGCGCCCAACCTCCCACCCGTGACTACCTAACACTGTTGCTTCGGCGGGGAGCCCCCTAGGGGCGAGCCGCCGGGGACCACTGAACTTCATGCCTGAGAGTGATGCAGTCTGAGCCTGAATACAAATCAGTCAAAACTTTCAACAATGGATCTCTTGGTTCCGGCATCGATGAAGAACGCAGCGAACTGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAGTCTTTGAACGCACATTGCGCCCCCTGGCATTCCGGGGGGCATGCCTGTCCGAGCGTCATTGCTGCCCTCAAGCCCGGCTTGTGTGTTGGGTCGTCGTCCCCCCCGGGGGACGGGCCCGAAAGGCAGCGGCGGCACCGTGTCCGGTCCTCGAGCGTATGGGGCTTTGTCACCCGCTCGATTAGGGCCGGCCGGGCGCCAGCCGGCGTCTCCAACCTTATTTTTCTCAGGTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGAA +>URS00020CB488 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAGACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGTGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATGGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCAGAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGTGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS0000A7B684 snRNA from 1 species +GTGCATGCTACAACTTCTTGAATCCACATGCACATATACTAATATTAGAACGGTCTAGAGAAGATTAGCAGGCTTCTGTAAAAGGAAGACATAAAATTTCTGAAGCATTTCAATAGCAT +>URS0000077F17 rRNA from 1 species +CGTGTAGGCGGCCAGATAAGTCCGCTGTGAAAACTCGAGGCTCAACTTCGAGCTGTCGGCGGAAACTATCTGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAGCGTGGGAGCGAACA +>URS0000CF0C65 rRNA from 1 species +GTGTCAGCCGCCGCGGTAACACGTAGGAGGCGAGCGTTATCCGGATTCACTGGGCGTAAAGCGCGTGCAGGCGGTTTGGTAAGTTGATCGTGAAAGCTCCCGGCTCAACTGGGAGAGGTCGGTCAATACTACCGAACTAGAGAGTAGAAGAGGAAGATGGAATTCCCGGTGTAGTGGTGAAATGCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGATCTTCTGGTCTATTTCTGACGCTCAGACGCGACAGCTAGGGTAGTAAACGGGATTAGAGACCCCGGTAATCCTAGCCGTAAACGATGTGAACTTGGCGTCGGTGGCTTAAACACCATCGGTGCCGAAGCAAACGCGATAAGTTCACCGCCTGGGGACTACGGCCGCAAGGTTAAA +>URS00022DC966 tRNA from 1 species +GCTGCAATAGCTCAGATGGTAGAGCGGCTGCCTTGTAAGCAGCGGGTCGCGGGTTCGATGCCTGCTTGCAGCACCA +>URS0001ACB2BC rRNA from 1 species +AGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCATGCTTAACACATGCAAGTCGAACGAGAAAGTGGGCTTCGGCCCGCGATTAAAGTGGCGGACGGGTGAGTAACACGTAGGAATTTTTCCTGAAGTGGGGGACAACTCCGCGAAAGCGGAGCTAATACCGCATAATCTCTACGGAGCAAAGCAGGGGATCGCATTTCGGTGTGACCTTGCGCTTTAGGGTGAGCCTGCGGCGGATTAGCTTGTTGGTAGGGTAACGGCCTACCAAGGCGACGATCCGTAGCCGGTCTGAGAGGACGATCAGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTGCGGGTTGTAAAGCACTTTCAGTAGAGAAGAAATGCTCAAGGTTAATACCCTTGAGAGTTGACGTTACCTACAGAAGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCAAGCGTTAATCGGAGTTACTGGGCGTAAAGCGTGCGTAGGCGGATATTCAAGTCGAGTGTGAAAGCCCCGGGCTTAACCTGGGAAATGCGCTCGATACTGGGTATCTAGAGTATGGTAGAGGAAAGTGGAATTTCCGGTGTAGCGGTGAAATGCGTAGATATCGGAAAGAACATCAGTGGCGAAGGCGGCTTTCTGGACCAATACTGACGCTGAGGTACGAAAGCGTGGGGAGCAAACAGGATTAGAGACCCTGGTAGTCCACGCCGTAAACGATGAGAACTAGACATTACCTTGCACTTATTTTTATCGAATGGTGAAAATAAGTGCGGGGTAGTGTCGAAGCTAACGCGTTAAGTTCTCCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCTACGCGAAGAACCTTACCTACCCTTGACATCCTCGGAATCCTGTAGAGATACGGGAGTGCCTTCGGGAATCGAGTGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTGCCAGCCTCACTTCGGTGAGAGGAACTCTAAGGAGACTGCCGGTGATAAACCGGAGGAAGGCGGGGACGACGTCAAGTCATCATGGCCCTTACGGGTAGGGCTACACACATGCTACAATGGGTAGTACAGAGGGTTGCCAAACCGCGAGGTGGAGCTAATCTCACAAAACTACTCGTAGTCCGGATTGAAGTCTGCAACTCGACTTCATGAAGTCGGAATCGCTAGTAATCGCGAATCAGAACGTCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGAATTGTACCAGAAGCGGGTAGGATAACCTTCGGGAGTCCGCTCACCACGGTATGATCCATGACTGGGGTGAAGTCGTAACAAGGTA +>URS000199E147 lncRNA from 1 species +GGAAGTGGTTCTTAGAGGCAGTGTGTCTCCCTCTGGTGGCAGAAAAACTGGACCACAGGCTCGAGAGCAAACCACAGTCCCCTCTCGCTGCGTCCAGCTCTGTTATATAAAGCAAAAGAAACGATTTAGGAAAATAAAGACAAAGCGTCTCCTTTATAGACATATGAGCACCAATGAGCTGCGGCCTCACACCGCTGAAGGTAAATTTGTCCTACAAAGTTCAAGACTTCCTTTAGGTGACCTCAAATAAATGGAAAAGCTGTGTCTCACTTACAGAGAAGGCTTTTCCATGTTGTTTGTAAAGTAAATAACAGTCAGTGACCTAAACACGCTCACCTTCACCACGGATGCACAGTCCTCTGGATTTTTTACTTGCTAGCAACAAAATACTGAAAACATAGTGAGCTCATCTCCATGACAATGTATCAAACCTAAACCAACACATAAACACTTTAACACAGTACATTTGATAAAGCTCTAGATTTAATGCACATTCATGGGATTTTCTTTTATTAAACCTCTTATGCAGTCATATATAATAAAGCACTAACCTGAGGCTGATGCCATAAAGACTCCTGCCTGCTAGATACAACATGCCCGACTCCTTCAGCTCAGCCACTGCTTCAGGGGAGAACTTCACAACACAATTTGCATATAGCATAAGATCAGCCTTTTACTTTGTGCATGATGCAAACTTTAGTTTTCACTCTTTATTCAAGTAACAGGCCAGATGGCAAGAAAATCCACAGAGAGACACGGCAGCGGCACACCTCGCTTCCATGTTGTGACAACAGCAGCTTGTTTTAATGCTGAAACCTGCCCCTTGTAGGTGTGCACCAGGTAGGAGTCCTCTTTAAGACCTTCAGGTCTTTCAGGGAGCAGATGAGACACAGATGATCATGAGGCGGTTTTTCCGAGCACACCGGGACGAGGACTTCAGTCAGATCCAGTATCTGACGGCCAAGTGCACCCGCTTAGCTCATGACAAAGCGGTGTTGGACAGAGAGTTTCTGGTGTCCCGAGAGAGGGAGAGAAGGCTGCAGAATGATCTGGAAGCTGTGACCGCCCGACTCCTCGAGCAAGACCAGCTCAATATGGAACTCAGGATGAACCAGACCCAACTCATCAGCAGGATCCAGCAGCAGCAGGACCTGGTGAACCTGCTTCGGCAGCGCGTGGTCCTGCTAGTGGAGGCGAGCTCCCGGGATGCAGAGCTACTGCGGCAGGTCGGCGCAGAGCTGCTTTGCCTGCAGAGCTCTGAGGTGAAGCTGGAGGGCCTGGTGGAGGAGCTGCAGGCTGAGGCCCAACATAGAACTGAGGTGGCAGAAAATCTCCAGACAGAGCTGTATGCTGAGGCCCGGCACAGAGCTGCACTCACTGAGAGCCTCCACGCAGAGCTGCGCAGTAAGACAGTGGAGCTGGAAAAGCTAGAAGAAACTAACAGGACGCTGACAGAAGAGCTGACGGATCTGCGCAGAACTTATCAGAAGGAGGTGAGAGAACTGCAGCAGGAAAATGAGGGAAGCCTGAGGAAACTTCAGGAGACGGCAGAGCAGTTCGAGTGGCTCTGTCAGCAACAGCGTTACTGGATGTCTTGTGTGAAGAGGTTCAAAGACTGCCTCATGGAGGAGAGAGAAGCTCTGCTGCGACAGGTCAGCAGGTTGGAAAAGAAAGCTGAGAAACTAAAGCGTTCACACGACGGCAGTCCAACACGGAGGCTTGTCTGCCCCCTTCAGGACGCCGAGAGCTGTGACAGCAGTATAACATCATGGGAGGCAGATGCAGTGACCAACCTGGAGTCTCAGGTGGAGAAGTCAAACGTGCTGTATGAAGAGCTCCTCGACCAGGCAGGGAGCCCTATCAACGGATACCAAAAACCTCCATGAGGACAGAAGCCTGGATGTCTTTGCTTTCTTTTCTCACCTTCTGCAAGCCAGGAGATGCAATGTTTTATGTGTTTGTGGTTAGCTTACCTTCCAGTCATTGTTTTGAAAAACCAAACACCCTTGGAAAAACACACCCGTGAAGCCACACACGCATTGTTTTGTTTCCACTATTGTTCATTGTGATATATGACCGAATTAAAATACAATGTGCTCCTGTCCCGCTTTTGGTGTCACACATGCACATCACATGTGCCTCGAGTCTGTCTGGTCACATTTTTCAGTAATTGTCCATTGTTCAAACCTTGTAATCAACACCACTAACAAGAGCACAAGCACCTGCAAATGTTCTCTTTTGTTGTTTTGCCAATGAAACGTTGCAGGACAACCAGCAGCTGGCGTGCAGAGGAAGCAACAAATGTTCTTTTCAACAAAATGAAGCTATACTGATTATCCCCCCACTGGTACAGCTTGACTCTGATGATCAGATCTCTTCATTCATCAGTTTGCATGTGGCTCACATTAAACACAGTGACTCAGACGCTTTATCATATGTGAACCATATGATACACACATATTGCAAACGCAGTTTACACACGGTGAGCCAAGACTTTTAAAGTATGCATTGTGTCACACTACAAACATTACACTGCAATCAACATGAGGAGCTACACGTTTATTCAGGACTACAGCAAACTTTCAACATGCATAAGAAATCTTAACATCACTAAACCATTAATGACACTGGAACCATCATTATATTTCATCGGTGGTGCTGGGACAACATTTTTTTCTTTGCCCACCTTAAAGTTAGCATGACAGGGGTTCGTTTGACCAACAGTGGACAAGAAGGCCTGTGTGACTTAAGCTTTGACTCCATGATCAATAGGCTTTACACAAACTACACCACAGTCTCATAGCTTTAATGGCACGACCACCAAGCTCCTGCACTCAGTCCGATGATGCTGAATAGCAAACATTTGTTTGCAAATATCAAACATATCTAAAACTTTGGGTATGTTGCTACATTTTATGTCTAAATCTCACAACCAAAAACCTGCTGACTTCATGATGAGTGAACCATTACAGTTCTTACTGGTTTCAGGGCTTGATCCAGTATTTGAGGTAATCAGTTTTTAGCCTGGAAATATTGCTAATTCTCTATGTGAAATAAAAATAATGCATATATATATATGTTCATAACTTACATGATTAAGTTATGTTGGCCCATAGCCTATCAGATCATAAATTTACATGGTGTATTGCAGAGGAGAGATAGTTGGGCATTAACCTATGAACTTTGTTATAAAAATGAAATTCCACATTTCAGAACTGGAGGACATATTGCGACTAAATCACACCAGGACCACATTCATCTTAGAGCTCTGCCTTTGCTTCATTGTAAAACCCCCATATCGAAAGGTTTCTTGACTCTTTTGCTTAGTTGTTATGGTAACAAAGTGACAGAAAAGGCAGTGACTGAATTGGTAGTTTATGCTACCGTAGCATTCTTCCTTTTGCCAAATGAATGTTTGCTCTTTAAAAATGAATTAATAACAGGTTACAAGCCTGTCTGACAGCAAATAAAGCTCTTAACATCCACCTCAGTTCTATGAAGCAGAACTTTGTTTTGTCCAGGTAACTTTAGGGTAACCCTGG +>URS000201C513 misc_RNA from 1 species +GATGAAGAACGTAGCAAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGTATTCTGGCGGGCATGCCTGTTCGAGCGTCATTTCAACCCTCAAGCACAGCTTGGTGTTGGGACTCGCGTTAATTCGCGTTCCTCAAATTGATTGGCGGTCACGTCGAGCTTCCATAGCGTAGTAGTAAAACCCTCGTTACTGGTAATCGTCGCGGCCACGCCGTTAAACCCCAACTTCTGATTGTTGACCTCGGATCAGGTAGGAATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS00025EF403 lncRNA from 1 species +GTGTTCTTCACTTCATGATGGAAGGGCTACTGACCCAGAGTGGAAAGTTTAGCTGGTGTTTTGATCAGGATTTCTTACCTTTTTCTTCATTAGAGAGATTCTTCTTGCTGCTGTCCTGCTTCAGAGCTGCAAGGAACACTTGGGAATGACTAAAGCGGTGTCTGTGCTGGAGTCAGAGGAGTGGCAGAGCAGGAGGCACATCTGTCTGTCGCCTTGCCTGCTGAACAACAAAGGCAGTGCTTCATAGCAGCGTGGCTTTTGGATAGGTAGCCCAAAAAAAGCAACCGTGATCAGAAATCTGGGTCGTTGTGCTTCCCCTGAGCAAGCAAAGTTAAAGATAGCTTGGGAGACGTTTGCTGCTTCTCCTGCCTATTCCTGCTGACATCCGTGGGGATTTGCTGGCATAGTGAGCTACAGGCTGGTGCACTTCAGAAGAAAAGACTCTTCATCATCCGTTCCCCAGCTAGTATCCTGGGTGGCTCTCTTCTGCTGTGTTTCTCCACCAGTTGTGGTGCCCTACAGTGTGTAACAATTCTTGTGGCTTCCAAGTAATTATTTTCAAACGCATATGAAGTAACTGAAACTGTCTTGTAAGAAGAAAAAGAAGTTCCATGAAATCTGATGCTGTGTTTAGAGGATGTTGGTGTGTTCTCAGCAGGTGCGCTTTGCCTACATGTGGATCCTCAGGGTGGAGTTTTTAATTGTTAAATGATATATGACGAATCAAATAGCACGTACAAAAGACAAAGGAAAAGAAGACGAGAAGGTAGAAAATGGGAATTCAGGGACTGGTAAATGTTCTGCACACCAACTCACAGAGTGCATTTCTAGTTTGAATGCCAGTGCCTTGCATCAGCTGGAAGAATAAGTTGATAGCTTCCTGATGCTGCTGTTCATTTGCTTTTTATTTGAGTCTGTTTTCACATGGATTATAAAGTACTGCAATCCTTTTCCTGTAAGCCTGAATGCAGAATTACATCACTTGTTTGTATGCAGTACATAGAGCTAAAGTCTCCTGGGAAATGACAAGTCGTTAGCCTGACTACTTAATCATACTGTGATATGAAGAAAAATATTTGTAACTTCACAGTCTGCCATAGAACATCTTCATGCTTTATAATGGTGTGCTCCAAATGAGAAACTGCTTAACCTTGCTTTGCAGTTCTCTCATTGTTCTGGAATTGTTGTTTGAGCAATGAAACTTAATTTGCAGTGCAGAACTATTTTAATAATAAAGAACACTTGATTTCAT +>URS0000CAA0FA rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATCTTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGGAGGAAGAAGGTCTTTGGATTGTAAACTCCTTTTCTCGGGGAAGAGTAGGGACGGTACCCGAGGAATAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTTTCAAGTTCGACGTGAAAGCTCCCGGCTCAACTGGGAGAGGTCGTTGAAAACTGAGGAACTTGAGGCAAGGAGAGGGGTGTAGAATTCCCGGTGTAGTGGTGGAATGCGTAGATATCGGGGGGAATACCAGTGGCGAAAGCGGCACCCTAGCCTTAGCCTGACGCTCAGGTGCGAAAGCGTGGGGAGCGAACGGGATTAGATACCCTAGTAGT +>URS00005B6C50 rRNA from 1 species +TACGTAGGGGGCGAGCGTTGTCCGAATTTACTGGGCGTAAAGCGCGCGTAGGCGGGTCAATAAGTTGTGGGTGAAATGCCGAGGCTCAACCTCGGCGCTGCCTGCAAGACTGTTGGTCTTGAGGTATGGAGGGGAAAGCGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGATGGCGAAGGCAGCTTTCTGGCCATATCCTGACGCTGAGGTGCGAAAGCCAGGGTAGCGAACGGGATTAGATACCCCGGTAGTCCTGGCCGTAAACGATGGATACTAGGTGTTAGAGGTATCGACCCCTCTAGTGCCGGAGCTAACGCATTAAGTATCCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATACGTCACTAACCGTAGGACCTTACCCAGGCTTGACATCTGGAGTAAGTCCATGAAAGTGGCACCCCTGTATGGTAACATACAGCTCCAAGACAGGTGTTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCATTCCATGTTGCCAGCGTAAAGTCGGGAACTCTTGGAAAACTGCCCGTGTAAGCGGGAGGAAGGTGGGGATGACGTCAAGTCAGCATGGCCCTTACGCCTGGGGCTACACACGTGCTACAATGGACGTGAACAAAGGGCAGCGATACCGCGAGGTGGAGCTAATCTCACAAACACGTTCTCAGTTCGGATTGCAGTCTGCAACTCGACTGCATGAAGTCGGAATCGCTAGTAACCGCAGGTCAGCTAAACTGCGGTGAATACGTTCCCGGGCCT +>URS0001C9C972 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCCGAGAGGGTGGCCGGGCCCCATGGGCCCTGGGGACGGGCCAGGGCGCTACAGGGGGCAAGGGGGGGGAAATTTTGCCAAAGGGGCGGAGCCCGTAGAGAGCAACCCCGGGGGGGGAAGGCCGCCTTTGGGGTGGAAAACCCCTTTCGCCTGTACCGAGGCGGGGGGGCGGTTATTGGTGAAAAAGCCCCGGCTAACTTCGTT +>URS0001CC6C7B rRNA from 1 species +GTGAACGCTGGCGGTAGGCCTAACACCTGCACGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACAATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS0002105CC3 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGAGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGTAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTAGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS00025E055D rRNA from 1 species +ATGAGTTCCTTGCCCTGTGGATGCAAGTCACGGACATTCATCTTGACTGAGATGCCACAGACTCAATCTCCCGGTCTTGGGAAACTAGTGGTGACTTCTCTACCAAGACAACATACATGGCGAAGTTTTGGAGAAGACAAGTGTTGCCCAGGCCTGCCTTCACTTCGAAAGCAAGGGCCCCGTTGCAGTGCCATTTTTTTTGCATGGCTTGCACTTCTAACAGATGTTGGACTTCCGACCGCCTGGCATGCCGTGGCTTGGATCATCAGGAGAGTTGCCCTTTCTATGCATGGGAGAGGAGAAAACAATCGAACACATACTGCTTTAATGTGTCATCGCAAGGGAGGCGTGGACCATCATATGTCGAGCTCTAGGCAAAATGGATTGGGTACCAGAGATAGGATCAAAGTTGGTGGATTGATGCACAAACAAGCTTAG +>URS0000DB583F tRNA from 1 species +GGGTCCATAGCTCAGTGGTAGAGCATTTGACTGCAGATCAAGAGGTCACCGATTCGAACCCGGTTGGGCCCT +>URS0002538569 rRNA from 1 species +ATGAGCAGCCGGGCTCCCAAGTTTATGCAGAACGTGCGCAGCTTCCCCGATGGTAAGCGCAACTGCTACAAGATTCGGTCCCTGGTGCGCGGGCTCAAGTACATCATCCGAGCGTGGTTCTTGTACGGCAACTACGACGGCCTTAACACATCGCCCATGTTTGACCTCTACATCGGCGCAAACTTTTGGACGACGGTGAACATGTCAGGGGGGCCATCGGACACTTATTTAACTGTAGAGGCCATGGTGGTCGTGCCGGACGACTACGTGCATGTCTGCCTGGTGAACACCGGCGATGGGACGCCGTTCATCTCGGCCCTGGAGCTGAGGCCGCTTAAGAGCATGCTCTATCCACAGGTGAGCCCGAAGCAGGGCCTGAACCTGCACCGCAGGTTAGACCTCGGCACGGGGAGTAAAACGCGCGTAATAAGGTACCCTGATGACCCACATGACCGAATATGGAGACCAGTGGATACCACCGCAGAATACCCCAGCATCACAACGTTTAGAAGGGTGCAGAACCCAAACGATGACCTTTTCCAGGTGCCGACGGAGGTGATGGAGACAGCGATGACTGCCCGGAACGCCTCCGCGCTCATAGAGATCACCATGCACCCTCAGCCTCAGCGCAACAACCCGTCGCCCGGGTACATTGCTGTCCTGCACATCGCGGAGCTAGGCATTCTCAGAGGCAACGCCGTGCGCCAGTTCTACGTCAACGTCAACGGCAAGCGATGGTACCCAGATGCTCTCACACCGAAATACCTCTCCAGTGGTGCCATCTACGGTGCCATTGTTCCCGATCAACAAGGCACCATCACCATTTCCATCGAAGCCACTGCCGGCTCGACACTGCCGCCGATTGTCAATGCTTTCGAGAGTTTCTCCGTCATGCCCACCACTAAAGTCGACACCGAGTCCGAGGAGGGTACGCCCTCGCCCACTCCCACCACTAACGCCGGGTCCAAGGATGGTAACTTCGGCTCCAACAAGTCCGAGGATGACGTTTGCATCGGTGGCAGTTCATGCAAGAAGAGTAATAAGCTTGTCCTCTACATAGCCGTCCCTATAGCCGGGCTTGTGGTGATAGGATCGGCGGCACTACTAATCTTTTGCTTGCTAAGACGGAAGAAGCAAGGATCAAGATGA +>URS00008935E5 rRNA from 10 species +AGTCGAGCGAATGGATTAAGAGCTTGCTCTTATGAAGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCCATAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATAATATTTTGAACTGCATGGTTCGAAATTGAAAGGCGGCTTCGGCTGTCACTTATGGATGGACCCGCGTCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTGCTAGTTGAATAAGCTGGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGCAGGTGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGAGACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACACTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGAGGGTTTCCGCCCTTTAGTGCTGAAGTTAACGCATTAAGCACTCCGCCTGGGGAGTACGGCCGCAAGGCTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGAAAACCCTAGAGATAGGGCTTCTCCTTCGGGAGCAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCATCATTAAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGACGGTACAAAGAGCTGCAAGACCGCGAGGTGGAGCTAATCTCATAAAACCGTTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGGGGTAACCTTTTGGAGCCAGCCGC +>URS0000FCD8C1 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTTGTAGGCGGTTTGTCGCGTCTGCCGTGAAAGTCCGGGGCTCAACTCCGGATCTGCGGTGGGTACGGGCAGACTAGAGTGATGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAAGAACACCAATGGCGAAGGCAGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGCGGGGAGCGAACAGG +>URS000055AC24 piRNA from 1 species +TGACAAGTCCCAAGCGATAATACAGGCTA +>URS000027137F rRNA from 1 species +CCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGAGTTCTTGTGATTGAAGCTTCGGCAGATTTCACTTGAACTTAGTGGCGGACGGGTGAGTAACGCGTGAGGAACCTGCCTTCCAGAGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATAATGCAGCGTGGTCGCATGACCGTGCTGCCAAAGATTTATCGCTGGAAGATGGCCTCGCGTCTGATTAGATAGTTGGTGAGGTAACGGCCCACCAAGTCTGCGATCAGTAGCCGGACTGAGAGGTTGAACGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGGGCAACCCTGACGCAGCAACGCCGCGTGAAGGAAGAAGGTCTTCGGATTGTAAACTTTTGTCTTATGGGAAGATAATGACGGTACCATAGGAGGAAGCTCCGGCTAACTACGTG +>URS0001F1045E rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGCAGCACGGGTGCTTGCACCTGGTGGCGAGTGGCGAACGGGTGAGTAATACATCGGAACATGTCCTGTAGTGGGGGATAGCCCGGCGAAAGCCGGATTAATACCGCATACGATCCACGGATGAAAGCGGGGGACCTTCGGGTCTCGCGCTATAGGGTTGGCCGATGGCTGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTCGGAAAGAAATCCTTGACTCTAATACAGTCGGGGGATGACGGTACCGGAAGAATAAGCACCGGCTAACTACGTG +>URS00007CE013 rRNA from 1 species +TTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGTAACAGCACTTCGGTGGCTGACGAGTGGCGAACGGGTGAGTAAGACATCGGAACGTGCCTGGTAGTGGGGGATAACTACTCGAAAGAGTAGCTAATACCGCATGAGATCTAAGGATGAAAGCAGGGGACCTTCGGGCCTTGTGCTACCAGAGCGGCTGATGGCAGATTAGGTAGTTGGTGGGATAAAAGCTTACCAAGCCGACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGCAGGATGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAACGAAAAGCTCTCTTCTAATACAGGAGGGTCATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGACAGAGGTGAAATCCCCGGGCTCAACCTGGGAGCTGCCTTTGTGACTGCAAGGCTGGAGTGCGGCAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGGCCTGCACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTGGTTGTTGGGAATTAACTTTCTCAGTAACGAAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGTTTAATTCGATGCAACGCGAAAAACCTTACCCACCTTTGACATGGCAGGAACTTACCAGAGATGGTTTGGTGCTCGAAAGAGAACCTGCACACAGGTGCTGCATGGCCGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGCCATTAGTTGCTACGAAAGGGCACTCTAATGGGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTATAGGTGGGGCTACACACGTCATACAATGGCTGGTACAAAGGGTCGCCAACCCGCGAGGGGGAGCCAATCCCATAAAGCCAGTCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGTCACGGTGAATACGTTCCCGGGTCTTGCACTCACC +>URS00018E2463 rRNA from 1 species +GTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCAACGCCGCGTGAAGGAAGAAGTATTTCGGTATGTAAACTTCTATCAGCAGGGAAGAAAATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGGTGGTATGGCAAGTCAGATGTGAAAGCCCGGGGCTCAACCCCGGGACTGCATTTGAAACTGTCAGACTAGAGTGCAGGAGAGGTAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACTGTAACTGACACTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGAAACCCCAGTAGTCC +>URS000076782D rRNA from 1 species +CGGATTTCTGGGTACCGGTTAATGCGTAATATCAGAAGAACACCCATGGCGAAGCAGCCAACTGGGCCAATACTGACGCTGAGGTACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCTACTTGTCGTCGGGAGGGCTAAACCTTTCGGTGACGGAGCTAACGCATTAAGTAGACCGCCTGGGGAGTACGGCCGCAAGGTTGAATCTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAAAACCTTACCTGGCCTTGACATCCTGCGAACTTTCTAGAGATAGATTGGTGCCTTCGGGAGCGCAGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCTTTAGTTGCCAGCACGTTATGGTGGGAACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTATGGCCAGGGCTACACACGTGCTACAATGGTCGGTACAGAGGGTAGCCAAACCGCGAGGTGGAGCCAATCCCATAGAGCTGATCTTAGTCCGGATTGCAGTATGCAAATGGACATGTCATGAAGTCGTCCTCTATAGTGATTCGTG +>URS0002117D6C rRNA from 1 species +ATTGAACGCTGGCGGCGGGCCTAACACATGCAAGTCGAACGGTAACAGGAAGCAGCTTGCTGCTTTGCTGACGAGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTG +>URS0001747A8B rRNA from 1 species +AGTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGATGAGTGGAGCTTGCTCCACCCTTCAGCGGCGGACGGGTCAGTCATGCCTAGGAATCTGCATGGTCGTGGGGGACAACGTTTCGGAAGTAACGCTAATACCCATACGTCCTACGGGAGAGAGCAGGGGACCTTCGGGCCTTGCGCTATCAGATGAGCCATGGTCGGATTAGCTAGTAGGTGAGGTAATGGCCCACCTAGGCGTCGATCCGTAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGTCTTCGGATTGTAAAGCACTTTAAGTTGGGAGGAAGGGCAGTAAGTTAATACCTTGCTGTTTTGACGTTACCAACAGAATAAGCACCGGCTAACTTCGTGCCAGCCGCCGCCGTAACAC +>URS00004DFF5E rRNA from 1 species +GCAGCCGCGGTAATTCCAGCTCCAATAGCGTATGCTAATGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTTTAAGGGTGTCTGCTTCTAGTGTCCTACGTGACTCTAAAGTTGCAGACTCCCCTTATTTTGCCTCAGTGCTCGGTTGGGATTCATTTCTCGATCGGGCTTCCGGGGCGTGTTTACTTTGAGAAAATTAGAGTGTTCAAAACAGTCTTGTGATTGTATATCATAGCATGGAATAATAACTGATGACGTCGGTCATTTTTTGTTGGTTCGGATGGCTGAAGTAATGATTGATAGAGTTAGTCGGAGGTATTAGTATTTTATCGTTAGAGGTGAAATTCATGGATCGGTAAAAGACTAACAACTGCGAAAGCATTTATCTAGGATTTGCTCTTTGATCAAGAACGAAAGTTGGGGGATCGAAGACGATCAGATACCGTCGTAGTCTCAACTATAAACTATACCAGCTAGGGATTGGTGGGCGTTGCTTGACCTCATCAGAACCTTATGAGAAATCAAAGCATTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACAAGTTGTGGATCCTGTGGCTTAATTTGACTCAACACGGGAAAACTTACCAGGTCCAGACATAGCAAGGATTGACAGATTGATAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACTATTACCTGCTAAATAGTATGCCCGGGCCTTTGGCGCGGGCTTACTTCTTAGAGGGACTAGCCATCTGTTAAGTGGCTGGAAGTTAGTAGCAATAACAGGTCTGTGATGCCCAAGGGCGATTCGTTAAAACTGCAGGA +>URS00008EA5F3 rRNA from 1 species +GGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGATTGTAAACCACTGTCGCGAGGGACGAAAATCTGACGGTACCTCGAAAGGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGCCGGGTGAGTAGGGGGTGAAATCCCACAGCTCAACTGTGGGGCTGCCTTCTAGACTGCTTGGCTCGAGCACGGTAGAGGCTGGTGGAATTCCCGGTGTAGCGGTGGAATGCGTAGAGATCGGGAAGAACATCGGTGGCGAAGGCGGCCAGCTGGGCCGTTGCTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAA +>URS0000EF886C tRNA from 1 species +CGGCAATTAGCCGGTCTGAACAGCAGTTCTCAACGCCCTGTTTGAACTTTCTCCAGTACCAATGGTCAGAGTCGTCGTACTTTTCAGGAAACAGCAGACTTTCTGGGTTGTTTCTGAAGAACATTCCACGACCTTGCCTATCAATGCCAT +>URS0000B48067 misc_RNA from 1 species +ATCGCCTCCAGTTCAACCCACTGCTTGCTTCCTTATTGCCTATGCCCATCTCCCTACCTGCTCCCATTGGATCTGGGGCGCTGCCAAGTCTCAAATCCTCTTCTTTTAGCTAAGAGTTGTGTAGTTAGGGCCATAGAGAACAATGTTGTCGGTCACTAATCACTGCCCAATTTAGTTGCATTATAATTTTGAACCCGTGTTCAGACCCAGGTTGGTCCTGCCCTGCCGTCCTCGTCCTCACCATATTAGTCCATTTGGATTTTATTTGCCAGTACAAGTCATGGTCAAACTCGAGTCAAACTCTTCCTAAGCCTGTCCAAACAAGCTGTGCCAAAACAAGGACCAATAATCTCAATTTTCCCATAATACCCTCCCTTCAGACGACGTCGTTTCCTTCATTGCCTTTTGATATGCTGTGACCACATCACGTCACCTCTACTGCTCTCTTTATAAAAAGCCTAAACACGTGCTTCAACACCGCGATCCCGGAACACGGCCCTTCAGTGGCATCCTCGTTATTTGCAATCTTTTCGAGGTCAAATTCCTTACCTCTCTGTGTTTAGCTCACCTTCCCCGACCCACCCTTTCATATAACTACTCTTGCTGCCTCTTGACCAGAAACTCAGAACAAAACTTGAAGTCCGGTTCACCCTGTTTGCCTCTCGAGAAAATTTCTAATCGAGAAGAGTTTCTATCGATTAGCTTTTCTGGCTCTGTTGCAGTAGTAGTGTTGAGGGAGCTTCGTCGGAAAATGACGTCGGGGACGAGAATGCCGACGTGGAAGGAGAGAGAGAATAATAAGAGAAGAGAGAGGAGAAGAAGGGCGATCGCGGCGAAGATCTATGCTGGACTGAGAATGTATGGAAATTACAAGCTCCCTAAGCACTGCGACAATAATGAAGTCCTTAAAGCTCTCTGCAACGAGGCCGGTTGGACAGTTGAAGAAGACGGCACCACTTACAGAAAGGGCTGCAAACCTGTCGAACGTATGGACATTATTGGAGGGTCTGCGTCAGCAAGTCCGTGCTCATCCTATCACCCAAGTCCATGTGCGTCTTATAATCCAAGTCCTGGATCATCTTCTTTCCCTAGTCCTGTTTCATCCTGTTACACTGCCAATACTAATGGTAAGGCTGATGCCAATTCCCTCATCCCATGGCTTAAAAACCTCTCATCTGGCTCATCATCAGCCTCATCCAAGCACCCTTACCATCTCTTCACTCACAGTGGTTCCATAAGTGCTCCAGTCACCCCTCCATTGAGCTCCCCAACTGCTCGAACTCCGCGTGCCAAAAATGACTGGGATGACCCGGCGGCTGGTCCATCATGGGCAGGTCAGAATTATTCGTTCCTGCCCTCATCTATGCCGTCATCTACCCCACCAAGTCCTGGCCGTCAGGTCCTGCCTGATTCAGGATGGCTAGCTGGTATTGAAATTCCCCTAAGTGGACCATCATCACCCACATTTAGCCTTGTTTCACGGAACCCATTTGGCTTCAGAGATGAGCCTCTATCTGGTGCTGGATCGCGAATGTGGACTCCTGGGCAAAGCGGGACATGCTCTCCTGCTGTTCCTGCAGGTGTTGACCAGACAGCAGATGTTCCAATGCTAGACAGTATGGCAGCTGAGTTTGCATTTGGAAGTAACACAACAGGGTTAGTGAAACCTTGGGAAGGAGAGAGGATCCATGAGGAATGTGTATCTGATGATCTTGAGCTTACACTTGGAAATTCTAGGACCAGATGAGGGGGAACTGACAGAAAGGGTGAGAATGAATTATCCTCGGATTTCTTGATTTGGCTTCTTGCTTCCCTTTATGTTTCATGTCAATGACTTCATATTGTGCATGCTTCGGTTGGCAGAGAGCTGAGATAGAGGTACAGTGAGTAGGAGCACCTGTTCCTTTTTTCTTGTTCTATTATTTTTTACTTTTTGGTTTGCTTTTCC +>URS0000F753B8 rRNA from 1 species +TACGTAGGCAGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGAGCTCGTAGGCGGTTTGTCGCGTCTGCCGTGAAAGTCCGGGGCTCAACTCCGGATCTGCGGTGGGTACGGGCAGACTAGAGTGATGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGGTCTCTGGGCATTAACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGG +>URS00004B85F5 rRNA from 1 species +GATGAAGGTTTTCGGATCAAAAAGTTCTGTTGTTAGGGAAGAACAAGTACCGTTCGAATAGGGCGGTACCTTGTTGGTATTTTAACAGAAAGCCACGGCTAACTACGGGCCAGCAGCCGCGGTAATACGTAGGCGGCCCGCGTTGTCCCGGAATTATTGGCCGTAAAGGGCTCGCAGGGCGGTTTCTTAAGTCTGATGTGAAAAGCCCCCCGGCTCAACCGGGGAGGGTCATTGGGAAACTGGGGGAACCTTGAGTGCAGAAGAGGAGAGTGGAATTCCCACGTGTAGCGGTGAAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCCGCCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCCGCCCTGGGGGAGGTACGGGTCGCAAGACTGAAACTCAAAGGAATTTGAACGGGGGCCCCGCAACAAGCCGGTGGGAGCATGTGGTTTAATTCGGAGGCAACCGCGGAAAGAGCCTTACCAGGGTCTTGGACGATCCTCTGGACAGTCCTTAGAGATAGGGACGTC +>URS00022660AC lncRNA from 1 species +CTAGAATTACTTTTCTTAGTGAATTAAGTCCATAGGAAGCAGTTTGACGGAAGTATGAGTGCCAAGAATGGTTCCAAAAATTCTGATTGGAGAATAGGACTTTCACAAATATGCCATGTGAAAAGCAACCTGTTGAGCTGGATAATGATGTGCTGAGAGTTGCTGTTGAGAGAAATCCAGAAGCAGCAATCAAGGAATTGGTCACAATTGTCCATTCATTCATTTCAACTTTCAGAGGCTTCTACAGGACTTTGATTGTGTGTCAAAAATGGATAATGAGTTTCAGCCACAAAATCTGTGACCTAGCATGTAAATATTTGCATTTCCTTGCTCTCCCATGAAAAGAGAGAGTTGTTTTTGAAAAGAGTGGTTATGGGAAATAAAAAATGTTTTCACAAATGTCCG +>URS00003A7160 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGAACGCACAGGATGCACCGTAGTTTACTACACCGTATTCTGTGAGTTGCGAACGGGTGAGTAACGCGTAGGTAACCTGCCTGGTAGCGGGGGATAACTATTGGAAACGATAGCTAATACCGCATAAGAACATTTACTGCATGGTAGATGTTTAAAAGGCGCAAATGCATCACTACCAGATGGACCTGCGTTGTATTAGCTAGTAGGTGAGGTAACGGCTCACCTAGGCGACGATACATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATTTTCGGCAATGGGGGGAACCCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTAAGGAAGAACGAGTGTGAGAATGG +>URS0000C46E39 snRNA from 1 species +ATCTTTGCGCTTGGGGCAATGACGCAGTTGGTGAGATGAAACCGAGACGCGTCAATTGCTGGTTGAAACTTTCCAAACATCTATATTTAGAATGTCTAATCTACAAAGATCCGGTGATGATGGATATTTCACATGAAA +>URS0001CDBEA4 tRNA from 1 species +GCCGGGGTGGTGGAACAGGTAGACACAGGGGACTTAAAATCCCCTTCGCCGAAAGGCGAGTGCGGGTTCGATCCCCGCCCCCGGCACCA +>URS000118F557 rRNA from 1 species +GACGTAGGGGGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGCTCGATAAGTCTGCTGTGAAAGTCCAGGGCTCAACCCTGGAAGGCCGGTGGAAACTGTCGGGCTAGAGTCCGGAAGAGGCGAGTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCTGGAGGAACACCGGTGGCGAAGGCAGATCTCTGGGCCGTAACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGG +>URS00016F7E24 rRNA from 1 species +TACGTAGGGCGCAAGCGTTATCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGCCTGTCGCGTCGGGAGTGAAAGCCCACTGCTTAACGGTGGGTCTGCTTCCGGTACGGGCGGGCTGGAGTATGGCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGGAATGCGCAAATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCATTACTGACGCTGAGGAGCGGAAGCGTGGGGAGCGAACAGG +>URS00023D8557 lncRNA from 1 species +GATTCTTCTTCAGCTTGTTTTCTTTTCCTTTTCTTCTTCTCTCCAGCATCAGCATTTTCAACCGCATCAACATCCTCAGCTGAATGCTTCTTCTTCTTCTTCTTTTCCTTCTTCACGGGTTCCTCTTCTGCTTCCACATTTCCATTTATGTCATTTGACGCAGGCATGTCTTCATCATCAGCCTTCTTCTTCTTTTTCTTCTCTTTCTTATCTTCTCCAGCAGGTGTCGTTTGGCCAAGAACAGAATCTGCTGCGGGATTATATGCCT +>URS00020BFB22 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGACCCTTCGGGGTTAGTGGCGGACGGGTGAGTAACACGTGGGAACGTGCCTTTAGGTTCGGAATAGCTCCTGGAAACGGGTGGTAATGCCGAATGTGCCCTTCGGGGGAAAGATTTATCGCCTTTAGAGCGGCCCGCGTCTGATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGAATGATGAAGGTCGTAGGATTGTAAAATTCTTTCACCGGGGACGATAATGACGGTACCCGGAGAAGAAGCCCCGGCTAACTTCGTG +>URS000081A35D rRNA from 1 species +CTACGACTCTCGACAATGGATATCTCGGCTCTCGCTTCGATGAAGAACGTAGCGAAATGCGATACCTTGTGTGAATTGCAGAATCCCGTGAATCATCGAATCTTTGAACGCAAGTTGCGCCCGAGGCCTAGGCCGAGGGCACGTCTGCCTGGGTGTCGTGAAA +>URS00004E6ABB rRNA from 1 species +AGGAAGGAGAAGTCGTAACAAGGTTTCCGTAGGTAAACTTGCGGAAGGATCATTG +>URS0001751255 rRNA from 1 species +GACAGAGGGATCAAGCGTTATCCGGAATGATTGGGCGTAAACGCGTCTGTAGGTGGCTTTTCAAGTCCGCCGTCAAATCCCAGGGCTCCAACCCTGGACAGGCGGTGGAAACTACCAAGCCTGGAGTACGGTAGGGGCAGAGGGAATTTCCGGTGGAGCGGTGAAATGCATTGAGATCGGAAAGAACACCAACGGCGAAAGCACTCTGGCTGGGCCGACCACTGACACTGAGAGACGAAAGCTAGGGGAGCAAATGGG +>URS000100F795 rRNA from 1 species +TACGGGGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCTCGTAGGCGGCCAACTAAGTCAGACGTGAAATCCCTCGGCTTAACCGGGGAACTGCATCTGATACTGGATGGCTTGAGTTCGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGTTCTCTGGGCCTTACCTGACGCTGAGGAGCGAAAGCATGGGGAGCAAACAGG +>URS0001BD843F lncRNA from 10 species +TGGGTGCCGGAGAAGCTCCATATAGTGCTAGgcccaactattccatgagctccaaactagagcgtctcacaccccctgtgtcccgtcctcctggatagctaatggatgtcttggatgtgggaaacttatccaggccagcatgggactctggatctttgccctaaacctgctcctccccaggcttcaccttctcagcagtggcatcacatccagccagctgctccagcccaaatgtgatgagatcattttgattccccttctctccacatcctctccccatattcaattcaacagcaggtgctgtcagtgctgccccagcctctgtctccctcgtgtctctccagggctgcactgtgacaaggccacggtgtctacctggacggccacagggactcccagttggtcttcctgcctctactgccgcccccgttgctctattccaacagggaaagtgtgacctcgtaagtcctgctcatcccctcccaggatttttcactgcacatggaaaggatccacctttctgcaaggtcctgcgtgacctggcacttgcctcgttttctgacgtgacctccttccctgctgccccttgttccagctgcactggccatttctccaacacaacaaatcctttctcatcatgccgcattccctgccccagaccttcacctggtggctgcctcaggttcttcaggactcaggggagatgttgtctcctcagatgccttctgggaccacctgaccaatgtggcacctcaagcc +>URS00008EF1EE rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGGACGGGATTTATTCGACGAACCTAAGTAGTTTACTATGAGGGGGAGTTGGGTAAATTTAGTGGCGGACGGGTGAGTAACGCGTGAGGATCTATCCATTACTGGGGGACAACAGCTGGAAACGGCTGCTAATACCGCATAAGCCTTTGGGTGAAAGAAGCGATTCGGTATAGGAGGAACTCGCGTCCTATCAGCTAGTAGGTGGGGTAACGGCCCACCTAGGCGAAGACGGGTAGCCGGCCTGAGAGGGCGCACGGCCACACTGGAACTGAGATACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGAAAGCCTGACCCAGCGACGCCGCGTGAATGAAGAAATCCTTCGGGATGTAAAGTTCTGTTGTACGGGAAGAGCGAGAGACGGTACCGTACGAGGAAGCCCCGGCAAACTACGTGCCAGCAGCCGCCGTAACAC +>URS0001035ED5 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAAGTGGCGAACGGGTGAGTAACGCGTAATCAACCTGCCCTTCAGAGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATACTGAAGGAGGGGATTGCGTCTGATTAGCTAGGTGGAGGGGTAACGGCCAACCAAGGCGATGATCAGTAGGCGGTCTGGGATGAAGGACCGCCAAATTGGGAATGAGACAAGGGCCAGGATCCCTAGGGAGGGAACAGTGGGGAATCTTCCGAAATGGGGGGAAGTCTGGAGGAGCAACGCCGGGTGAGTGGTGACGGTCTTCGGGTTGTAAAGCTCTGTTAATCGGGACGCGGTACCGGAATAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATAC +>URS0001134E72 rRNA from 1 species +AGTGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAGAACGGAATATAGCTTGCTATATTTGTCAGCTAAGTGGCGCACGGGTGAGTAATGTCTAGATAACCTGCCCTTAAGAAAGGAATAACAGTTGGAAACGACTGCTAATGCCCTATATGCCTTTAATACATAAGTATGCAAGGGAAACGCTTTAGTGCTTAAGGATGGGTCTGTATGGTATCAGCTTGTTGGTGAGGTAATGGCTCGCCAAGGCTATGACGCCTAACTGGCTTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGACGAAAGTCTGATGCAGCAACGCCGCGTGGAGGATGACACATTTCGGTGCGTAAACTCCTTTTATATAGGAAGATAATGACGGTACTATATGAATAAGCACCGGCTAACTCCGTGCCAGCAGCCGCAGTAACAC +>URS000222E680 rRNA from 1 species +TACGGAGGGGGCTAGCGTTGCTCGGAATTACTGGGCGTAAAGAGCACGTAGGCGGGTATTCTAGTCAGGCGTGAAAGCCCCAGGCTCAACCTGGGAACTGCGTTTGATACTGGATACCTAGAGTCCGAGAGAGGGTGGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCAGTGGCGAAGGCGGCCACCTGGCTCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAAC +>URS00023D9DA4 lncRNA from 1 species +CCCTCACAGCATGTGTATTTTACACATACGCACCTCCATGTCCGATCTCACGCAATTCGGCACATAAAATATTAGATCTTTTCGCGATTTAACCGTTTTGCCAATTTGACCTCTCAGCGATAACTTTGCAAATACCGGAGATCCATCCGTCGAATTTTCGATCCGACAGTACCATTGCGTTCGGCACGTCGGGTGCATCGAATCTAGCATTTCGTTTCGTCCAATTTGACCCCCGATTCACGACGAAATCCGTCCGCTCTCCAATTTCAAAAACCACACACATATATCGATGTGTAATCCCGCTAAATCCTTAATTCAAATTCAAATTTGAATCTCCTACCACTAGTAGGTACAT +>URS0001FED5D7 ribozyme from 1 species +ACCTCGTGGAGAGCAATAAGGAAAAGCTGGTCCGTGCCCAGAGAGAGGAGCAGGAGCGGCAGATGGAGAAGGCGGCAGAGCAAGCCGGTCAACAGGCTGCAGTCCCTGACCTTGGATGGAACTCGCACCAGGGAATCGACCAGCAGATTG +>URS0001E7E931 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGATGAAGGGAGCTTGCTCCTGGATTCAGCGGCGGACGGGTGAGTAATGCCTAGGAATCTGCCTGGTAGTGGGGGATAACGTCCGGAAACGGGCGCTAATACCGCATACGTCCTGAGGGAGAAAGTGGGGGATCTTCGGACCTCACGCTATCAGATGAGCCTAGGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCGTAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACGCCTACGGGAGGCAGCAGCGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGTCTTCGGATTGTAAAGCACTTTAAGTTGGGAGGAAGGGCAGTAAGTTAATACCTTGCTGTTTTGACGTTACCAACAGAATAAGCACCGGCTAACTTCGTG +>URS00019E4D72 tRNA from 1 species +GGCTGTGGCTCAGTGGTTGAGCGTTTGCCTCGCACGTGTGAAGCACTGGGTTCAATCCTCAGCACCA +>URS00000CF716 rRNA from 1 species +CCGTGTGGCGGCCCCTGTAAAAAGGTTGGAANCAACTTGGGTGGAGGGATTTTAACCGTAGAGTCGGGTTGCTTAGTACTGCAGCCCTAAGTAGGTGGTAAACTCCATCTAAGGCTAAATACTACCACGAGTCCGATATTTGACAAGTACCGTGAGGGAAAGCTGAAAAGGACTCTGAAGAGAGAGTTCAAGAGGACGTGAAACCATTAGAAGCTGAAACGGGTGGAACTGTGAAGGTGGAAAGAGGGGATTCAGGCTGTGGGCATAGACATTGGCTTGAGTTTTTGTATTGTGAATGGACCCGGCATACGAGTGAGTTGCCGGTGCTTTTCTTGCCTTTGTTTTGTGTCGGCGGGCTTAATTCTCCCTCGAGTACTAAACGTGGCGACCCGCTGGACGGACCCCGAGGGCCCTTAAGGACTGGTAGCCTATATCTTTGGTGTGGGTGATGACCTTAT +>URS000006D2C9 rRNA from 1 species +AGAGTGGCGAACGGGTGAGTAACACGTGAATAATCTGCCTCCGGTGTTGGGGATAACAGTTCGAAAGGACTGCTAATACCGAATAAGATGGTAGGTACAAAAGTACTAGTCATTAAAGGTGGGGACCGCAAGGCCTACCGCCTGGAGATGAGTTCGCGGCTGATTAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCAGTAGCCGGCCTGAGAGGGTGAACTTTCACATTGGGACTGAGATACGGCCCAGACTCCTACTGGAGGCAGCAGTTAAGAATCTTGCGCAATGGGAGCAATCCTGACGCAGCGACGCCGCGTGAATGATGAAGGCCTTCGGGTTGTAAAGTTCGACAAGCAGGGAAGAATAAGTGTGGGGTAATATTCCACATGATGACGGTACCTGCCTAAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTATGGGGCGAGCG +>URS000108241F rRNA from 1 species +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGTGTGCGCAGGCGGCCGCGCAAGTCGGGTGTGAAATCCCCGGGCTTAACTTGGGAATTGCGCTCGAAACTACGTGGCTGGAGTGTGGCAGAGGAAGGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCGATGGCGAAGGCAGCCTTCTGGGCCAACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS0000A837F7 lncRNA from 1 species +NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCATCTAAGCTAAGGATGTCTTCACTGTAACCTCTGCCTCAGCAAGCTTTTCCCTTGCTGATCCCATCAGAACCATCCCCATTTGAGCTTCAGACTCCCCTCTGCCAACACTTAATCTTCTCTTTCAGCAAGAGTAAACAGATAACAGAATGTTCTTCCCTGAAGCTTACTAAAACTTTAAGTCCCGGTGTTATTCTCCAAAGGAAGCTGCTTTCTTCTGGCCACCAGGTCACCAGCTCCTATAGTGAGCTCTGAGCAGATTCTAGTCAGTCTCTTTAAGGGGCTGGGACTAATCGCTGTGACCTCAATCAAGCCTGCTGGTTTTATGATACCAGGAAGGCTCACCAGGTGAACTTCTGCTCCTTTTAGGAGGCTAAGCATCCCCCAGCCACCTTGGACTTGAGCAGTGTTACCTGCCAGCAAGCGCAACAGTGCCAACCACTGGTCTCTTCTTTTGGAAAACGTTTGACTTTTAACTTGCTTTCTTCTCTATTTCATCATTATCCTCCTTTCTGACTTTCATGTACTCCTAAAATTTTTGGTTGTAGAACTAAGCAAGAGAATGAGAACTGGGAAGAACCTTGGAACAATGCTGAGAGGCTGCCCAGATGCTCTTCTGTGTTCCACAGTACTGCCGAATCTTCCTTGTGGCTCTGGTACTGTACTGCCACTCAAATTTTGGTACAAACCATTGAAGTATTTTTTGCTTGTTTTTATTGGTCTACATAGTAATCTTAGTGTTCTGTTCCTGGAATAGTCTCTCAGTTAGCACATTCCCCCTTGTCCTGAGATCACCAAGACCTTCAAGATTAAGGCTCTTGCTTTCTACCCTGCCAGCTCTGACGCAAAGCAAACACCCTTTTCTACTCTGCAGTATGAAGTGCTCAGGACTGTGTTTTTAGCTGTTCAGAATGTTAGAGTTATTAATGTTGGTTAGTGGAGTTATCCTTCAGTGTAGAAAGAGAAAACTGCATGAAAAACTGGCACTAACTTAAGTGGCCTCTGACACCTTCCCTAACCCTGTCCCAGTTTGTGTCACATTCTACAATAGATGAGTGATCATGATCAGCAAAACTGTTTCTTTCTTTCCTTCATTTCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTCCTTTCTTCCTGTCTGTCTTTCTTTCTGTCTTTCTTTCTTTCTTCCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATCTATTTATTTTGGTGTTTGTTATAGCAGAATTTGATTCATGAGAAAATCATCAGGCAGCTGGCAAGTCCCAGCTTCTCCCAAACTCTATGTAACCTGTTCCCAGCCACCTATCTTGACCCAGTGTTCCTCATGTTTTAAACTAGCTGGCAAACACATTTGCACAGCCTTATTGTGGGAACATTCAACTTGGCAATAAGTACTTTGCTCTTGATAGGATCTCAAAGATTCCTTCAGACCAAGAGAGACTCCAGCAAGCATACAGTTACAGATACTGTTGCCCAACCTGCACATCTCTGTGCCTGCCTCCCAACACAAGTCAAATGTGGGAACCAATCCCCCACCAACTACACATACACACACAAACACACACCTCTGTCCTTTTTGGTATTAGTATTCCTTTTTTTTTTTTTTTTTAAATTTCACGCATCTCTTCAAAATCTGGACCTCTGGATCTACAGCCCTGGGTCGTCATAAATAGCTCAAAAATGAGAAATCATGACTTCGGCTTTCTTTTTTAAAATTACTTTAATAAATACCCCAACATGTTCACTATACCACTGTACAGACTTTATTTGTTTGTTTGTTTGTTTATTTAAGTGCTTCCAGACCTGTAGTTTGAATATATGTAGTTCAGGGACTGTTGTTTCTAGGCATTCTACCTAGGAGTTTGTGCCTGTGGAGCATGTGGATGCCCCACCCCTCAGCTACACCCAACCCATACAGAAGTGCTGACGGGACTGTTTCCAGAGTTCTAGCCTGTGGTATTAAGACTTTAAAAAAAAAAAAAAATGTAATGATTTTTTAAGCCTTTTCTTTTCTGGTTGCCCTTGCAATTAAATTAAATAAAAAGAGGCATATGTTCAAAGTTTTACTGTGGCAACAGTTAAACATACAACTAAGCCCTGTCAAGAAACAATCAAGTGGGGAGATAGATGCTTAAGTCTAGAAACTGCTGTCTTCGAGAAATGTGAAAGCAGAGACCACATACTCATGATCTCCCTCACTCCCACACGGCAGCAAAGGATTCCTTTCAGCTTTACTGATTCACACTGTGGATACAGAACATTCTAGAAGGCCAGCTCTTGCTTCTCACCTGTGTTTATTGTCCAGAAAGGACAAGTCTTTAGAGACAGAGGAGGCAGTATCATCCAGGATAAGTTATTAGGCCTGGCTTGCCATTCCTTTTAATCTAGTCCTTCAGGGAGGCTGCCATCAAGGAACAAAGCCAGAGAGAATGTAGAGATAGGGCCTCTCATGGCTGGAAAGCCAAGGCCTATTGCTTCAACTTGTGTCCTTGAGGTACTGTGTCTGTACAGAAATTAAGACCCCGAGAGGCCAACAAAAAATGCAATTTAAACTGCACCTAAGATAATAAAATTGGATGAAAAGTAAAAAGAAAAAAACAGATTTCCTGGTACTAGGGTTTCCTGTAAACACCTTGTGGGTACCTCATAAGCAGCTGAGATTATTAGTGTTTGGTCCTAGTGACTATTTCAGCTGCCTTATCCACATTAGCTGCTAAGAAGTGATAACTCCCCAAGTTCCCATATAAAGTCTCTCCTGCTACCGTATTACATGGCAAGGAGAACAGGGGCTTTTGTTTGTTTGCTTGCTTGCTTGCTTGTTTTACTTCCTTGAGGTTAAAACTAGAGTCCCACCCCCACCCCAGATTAGTCTAGAGTTGGGGCAGCAGTAATAAATTAGGACGCATTCAGGTGTGACAACACAGCTACCTTTGATGGTGAAGACCTAGAGTGATTTAGTGTATCTGTGCATTAAATTAGAAAATATTTAGCAGAAACATGTAGCATAGCCGCATTTGAAAACGAGATTGTGCACTTGGGAGGCAGAAGCAGGTAGATATCGGAGTTCAAGGCCACACGTGTTCTACAGAGTGAGTTCCAGGATAGCCAGGGCTACACAGTGAAACTCTGTCTCAAAAACTCCAAGAAAATAAAAAATAAAAAAATGAGATTGCGTTTTGAAAATACTTGAAGTATTTCCTGACCTCCAGGTACCACTTTAAGCATGCTAGATATCTAGGTTGGGAGTCACTGAAGCACACCCCACAGCTATATTGGCCAGTAATGGAAAGTCCACTTTGTAGGAAGTTGATAGTGCCTGCTCCACAGACGCTGTCATTTCTTAAGCCAATCTTTAGAATCCCCAAATGTTTGGGGCAGTGAAAAACAGTAAATATACTTTGTTAATTAAAAACAGACTTTCTTTTTTAATGATATACTTTTACATGACAAATGAAAAAAAAAAAAAACTTGTAATCTGTGTCTGTCACACTAAGACACCAGATACCACAGAGAATCTCTTAAATCGCCACCAAAGAAATGGAGAGAATAAATCAAATGTTTGAAAAAATAGAGAATGGCCTTGGGAGATGGCTCAGTATGTAAAGAACTGACCACACAACTATGGGAGCCTGAGTCAGGACCCTCAGAACAGATATACATCTGGGCAGGCATAACAGCTTCCTGCCATTCCCTTGTCTAAGAACGCAAAGACAAGTGACACCCCGCCCCCACCCCCTGCAACAGGGCAAGCTGGCTAGCTGGATTAGCTCTGGCTTCAAATGGAAGGCCCTGCTCCCATTTATAAAGTGGAGAGATATTAAGGAAGATATTTGACAATAACTTTAGGTCTCCAGAGATATGTGCACACATGTACATCCACACCCAAAGTCACACATGCAAAAGAAAGTGGACTAGAATCATAGTTAGTTCTTAGCACCTTACTGGAGTTCTTATAGTGTGGAACTCTTGTCTTATGGAACGAATGTGGTAACATTCCTACATACAGGAGATGGGTGGCCTCTCAGAGGGGCTCAAGTTTACCCAGAAGGCCAGTTAGTCTTTGAAGCTAGTCACTATTCAGTTTAATCCTTGGAGGCTAGTCTTCTTGACATGAACTGTCTGATTTTCGACACTATATATATAGAAATAGAAGTAGCAATCTATTCATTATGCCAACTTTATAGCTACTTCTGAAGACCTCATGTTGTGCTTGCCTCTCAGAAAGAGATGCCTACTCCTTACCTACTGCCTTCAGTAACAGCAGAGCTCCATGGGGCTGTCCTTCATGACATTATTCAATCCTGACATTCATTGTGGTATTAATATAAAGAAATTTAGTCTGCATACACGAGGTTTTGTGTTCCAACTTGTTTACTATCCTGAGTGTCCAGGTCCCTCATAGAGTCCAGAAGTCTCTGAAGGACTCTGAACATTGCCAAAGGCTTCAGTGAGGGAGTCTAACAGGTCACTACTAAATCAAGGCTTCTAGAGAAATGGTTTGCAGGGTGCTGCTTCAGTCAGATTATTTGCTGTTAGACACTGAGGCTCACAGTTTAGTGTGACTTAGTTCCAACTGTCCAGACTCCTTGGCTGGTAGATGTAATGCTCCGTTTTGTCATGTGAATTTGAAAGGTCACCAGGTGAGGGCAAATGAAAGCCATCACTGTGATTTGGAAATCAGCTCTCAGAAGCAGTTGAGTGACCATCCTTGGACCTTCTGCATGTCACAGTGCATTTTAGGATCTGTCATAGACAAGGCTTATGAAAGTAGCTTTTTGGGAAATTGGAAGGATAAGAGGGGTGGCTCACAGGAGCACAAATGCAGACCCACAACTCATATCAGAATTGAAACTGCTAAGTCCTCACTGCCAACTTCCCAGCTGGCTGGCTTGAAGATGACAACAGCTCAGGGAGCCTTTGAGCAAGTGAAGAAAATTAAATCCTCATTTCCCTGAAAAACTAAATTCTCAGGTGATTGCCTGACAGGGGGAAGGGGGGAATTTTTAAATCATGGCCTTTGTTGATGTTCTCTGGCTTTTTCTTGGGAGGCTGCTTCAAGCAATAACGTGAGGTATGAGGTAACCCTGTCAGGTGGTATGCTGGGCTTTTAAGTCTTGTGCAGGTTGCCTGCTTACCCACACAATTCACATAGGGGCTGAAAAGCTTAACTTATCAGGGATGGAACTAGGTTTTACAGAGTTCCTTTAACCAAATAGGCTTGCTACTTTTTCCTTTCTTCCTGCATCTGCCAAGTCTTTCCGACCATTTTCATTGATCTCACCAGATGAGTAACACTTTAAATTCCAAAGGCTTAAAAATCAACTCCTTGTCATTTTTTTCCAATTTAATTTTTCACTCTTTGTCATATTTTCATCTTCTTGCATTAGTTCCCATGGCAATGTGTCTGTTGGCAGAGAAAATTTAACTCTTTTAGTGTTGATCACAATGTAAAATCCTTTTTAGGCAAGTGCCACAAAAACAAGCAGAGACTGGAATTCTCTTGCTAATACGTTTTCTTATCTCTTATATTGATTTCCCATCCTATCCCCAAGCAAAGCTCTCACAGAAAAACATGCAGAGGCCTTTGAGGCAGCTACAGCTTCAAGGATTTAACCTTTGGCTTCCCATGGCTTCCCGTTCCAAGTGTTAAAAATATGAATGCATCTATCAGGAATGTACAGAAGACAACTTTCAATTTCTATCAGAAACACCCAGTGTATCTGAGGAAATACACACGTCCTAAAATGAGCCTCAAGTCAGGGTCTAATGGCAAGATGAGAGGCACTTAAGCAGATTTCCTCCCAGTAAGTAAATGGCAAAGAGGCCAAGCAAGCTCTAAGTTCTTGAAAGAAGCAGCAAAGACTCAGGTGGAAAGCAAATGACATGGTTACTTGTATGGGGGAAGCGGCACTTCAGTTCAGACAGTTTGTGATCAAGTATGAAAAAGCAAGCAACTGCATCAGGCTTGATGATGTATGCCTATGATTCCAGCAATGGAAGGTCAAAGGCAGGAGGATTACAAGTTTGAGGCCAGTCTGGGCTACATGGGAAGATCTTGCAAGGACTAGGTTTCAAGGTGCTAGGTTCAATTCCTAGGACCTAAAAGGCCTACTAAAGCCTTTAGAAATGCTTTAGAAATAGAATGTAGGGATAAAGGGAAGAGGACTATGCAGAAAGCCCAACCCAAGATTAAATGTTTGTTTCAAACTTTAGGTTCCATCATGGCTTGGCATTGGCAGCTCCTTCTACTGCTTCAGTATCCAGAAGCAACAGGTCTACTGTCAGAAATTGAACAGACTGACCCAAATATGTGTAGGATTTTTTTTTTTTAAGAAAAACTGATGAATTCAGGGGAATGAAATAGATATTAAATAAAATGTGGTTATCTTAAGTATAGTTAGGAAAAACGATCAAATGTAATTGATCTTCTTGCTTAGTCTAATGAGACACTTAAGCACTAAGCTGCTTGTATTGTATAAATGTATTTTTGGCTGTTCAAAGGTTATTTTCCTATATTAAGAAGTTTATTAAAACCTTTTATTGCAACTCAGGTTTTGTGTCTTTTAGACACACATTTTTCTTTGCTAGTTTGTTTTGCACAGCTGGAGTTTTGAGGTGGAATAATGCCTGGGCATGGCAGTCAGCTAAACTGCCTGATAGCGAGACTAAGGAAGGTACTTGACATGTGGACAAGCCACATTGTTGTTTCATAGCTCTCCATGCCTCCACTAAATACAGTTAGCCGGGAAATCTCACATGATTTTGTTTGTTTGTAAAAAGTCTCTGGAGAAACCAAGACGAATCTCTCAGGCAGATAAAGAGCTTTCCGTATTTGCCTAAACGTACTATTGAAATAAATATTATTTTCAATACTTGTTTTTCCACTCAGAGGGCACGCACTGGTCTCAGACCAGGGAGAGGACATCTGGCTTAGATCAGGACTGCTGAGTGCTGTGTAACTCTTAGGAAACTTTGTTTTGATGTCAGTGTCAACAGATTGCAAGGAATGGTTCGTATTTCTGCTCCCAACATTTCGATATTTCCTTTGCTTCCCTCCTCTGAAGAGCGAGCCTTACTGTGATATGTTTGGAGTAAAGACAAAGGCAATTGACAGGCAAACCGCACTTTTGTTGGAAGAGCCAGTTAAGTTCTCTTTGTACTCAGTGAATGTGAGGGACTGAAGGCAGATGGAGAATGTAAAACTGTTTATACATGAAGGAAGGGGCACTGTCCAGGGCTGGCAGGAAGCCAGAGGTAGATCTATTGAACTTCAAAGGGTAAGGTCATTGCAAGGTCACTACAGGTTATAGCAAAACCAGAATTTTCTTTCCTACTTACAGCCATGAAAGGGCACCTCACCATCAGCTGTGTATGAGAAACTCATACTGCAGTCTCATTCTTTTCAGGAAAGAAACATTAAGTAATTCAGATGGAAGAATAGAAAAGTAATTCTGACGGAAGACAATGGTGGGTTTACAAGAGGTTTGTAAAGAATTATACACACTACAGACTGATTTTTTTAAACACTCATGAAATTTATTTTTCACTTTCAAAACTATCAGATTGATGATTTCTTGCCCTCAGTAATTTGTGAGAGATGAACGTATTTCATTATTCTGTAAATGTTTTATGTGTCAAGCACATAAAAATTTTGAGGTCGTATTTGCCAGTTAACATTTCATTCTCATAAAAAGTCGTAAGAGAAATTCCTAAGTGGTGACGCAGCTTTGGGTCTCTTGACCATACTCTCTGATGGGATCTGGCTTCATTACCATAAGTGCGGTACCCGGGTAACAGATCTGCAGTAACCGCAGGAATCTTCCCTCAGAACCAGAACTGGGACCTCATTCCTAAATCTCCCATCTAGCTGATGACAGGTGGCAGGTGAGTGTTCCTTCTGTCCATCCTTTGCTGTCTATGTGGACATTCTGATATGTGTCAGTGAGCTGAATTCTACACGCTGTATATATTGCATGCATTTCACTGCAGTCTATGGACATGCCCTTTGTAGAGCTTTTATGGAAGAACCAAGAAGCCAAGGCAGTTTAGCAAACGAGGCTCAATATTTATAAACTGGGGCCTTTTCTGTCTCTTTGCTAGCCTAGGTGGCTGTATACAAACTGGGTGGGAGGGGCAGCAAACACCTCACACATCACATTTAGATTTTCTACTTGGGTGTACTCTAGCCAATTCAAAACAAATTGCTTACTTTAATAATAAAGTTTACCATTTTATATTAAAGAAAATCAAACCATGACATGTTTAATTGAACTGGCTGTATTGTAATTAATATTTTGAGATAATTGTGATTTTCAGCTTAAAATTATATATAAAAATTGTCATTTTTGTATGTGTTAAAAAAATGTACCATGATTAACAGTACTTTTTAGTTAAACTACATATTGGTGTAAATAAAACTGAATGAAGAAACACTTACTACTTTACTAACTTAGATTGTGAATGTACTTCATGGTTTTTTTGCCATATGAGACCATAACAACCTTGAAAGAAAGCTGTTTAATTTTATGTGCAAAGTCCCACTAACCTGTATTTCAACTCTGCCAAGCCAATGACTTTGCAAGTGTGATCTGTACTCTCCAGCTGTGTCTTACGTTCTGACACTATGGGTTAGGGGTAGGGTGTAGCCTGGAAGCATCTGCAGATGCGCTTTGTACAGATAATAGCGCTGTGTGGTGTATAGCAGAGCCATTTTTAGGTTCTGTTGTACTCAATTTTTTCAGAATTTAAAAAAGTGTTTTGAATAACATAAAAGTCTATTGTATAAATAATAAAATGTCACCTTATTA +>URS0000CDA9EC sRNA from 1 species +GTCTTAATTAAGGGAGCCCCGAGACCTTACTCTTTCACTTTACCTAGGAGTTTGGTTCCTAAACTCACCATTCAAATCCAGCAACAGAACTGATTGAAAGGAACCTTTGTCTTTTGTGTGAATGCTCATGAGGGGCCATCCTTACAGTGGAAACGCTCCTGAGGCTCCAGCGAATCAAGACTCTCAGACCCCCGGGCTGTCCCCACCCCATGACCACATGTTCCACAGGCACCCTCAGCACTGTGCCCTGCGTGTCACCCAGGCAGGTGTTTGTTTTCGAGCGCAGATTCTGCCTGTGGCCATAGCCATGTGGAGATGTTCACGCATGTACTTCCCTTTGTGATTTCAGCCGATACGGAAGATGTGTGCATCGTAGAGAGATTGTTCTCCAGCAGCCTAGTGGCCATTGTGAGCCTTAAAGCACCAAGGAAGCTAAAGGTTTGCCACTTTAAGAAGGGAACTGAGATCTGCAACTACAGCTACTCCAACACGATTCTGGCTGTGAAGCTCAACAGGCAGAGGCTGATAGTATGCCTGGAGGAGTCCCTGTACATTCACAACATTCGGGACATGAAGGTGCTGCATACGATCAGGGAGACGCCTCCAAACCCTGCAGGCCTGTGTGCGCTGTCAATCAACAACGACAACTGCTACTTGGCGTACCCAGGGAGCGCGACCATCGGAGAGGTGCAGGTCTTCGATACCATTAATTTGGTGAGATGCCTTTCCTGCTCGAATAGCTCTCTAAAGTGTGGCTTTTTCTTGAAGAGGAGCACTGTGGTGTCCCTGGCATCCTGACTTGGCTCAGCAATACAACCGCTGCACTTTTTTTTTGAGACAGGGTCTTGCTCTGTCGCCCATGCTGGAGTGCAGTGGTGCAGTCCTAGCTCACTGCAGCCTCAACCTCCCGGGCTCAAGTGATCCTCCTGCCTCAGCCTCCCAAGGAGTTACAGTCATGCAACACCACACCCAACTAATTTTTTATTTTTGTAGAGATGGAGTCTTGCTGGGTTGCCGAGGCTGGCCTCAAACTCCTGGCCTCAAGCCATCCTCCCGCCTTGGCCCCCTAAAGTGCTGGGATTACAGGCGGGTGCCCCGCGCCCAGCCCCGCTACTCTCTTCTCAGTAGCAGAGCAGGTCTGGCTCATTCTGCTTCTGGATCTGCTGCAGCGTTCAGACCAGTGCTGAGCTCCTCGCCATGGGAATGTTTGAAGGAACATAGAAAACCTTAGGGATAAACTGCTTTGCTTTTTCTAAATTTGGAGCAGCATTTCCTTGGATGCCCAGCCCCAGTAAATCAAGTGGGTTTGGCATTTGTTTGGACCGTAATGGTGTTTTAGGAATAGCTAATTGGCACTTGCGGACCAAGTGCCAGCCCTGGGGCGTGGGCGGTCACTGTGCGGCGGCCACGCTTTATTGGTGTCCCTTTTTCAGAGAGCTGCAAACATGATTCCGGCTCACGACAGTCCTTTAGCGGCATTGGCCTTTGACGCAAGTGGAACTAAACTTGCCACGGCTTCGGAGAAGGTGAGTCTGCTTTTCCCTGGGGGAGCGCTGGTGCCAAGGCGTCCAGAGACTTTTTCAGTTCTGTTCACACAGCCAGCTTAGAGGCAAGGTCTTATACTTACCAGCTCCGGGAGAAGCGAAGACAGCCACCCGCTTGTCAGGCCATGGGCTCGTGCTGCCCGAGAGTGAGCGGAGCTTGCGGTGTGTCACTGGGACGGGAGAGCTGGTCCACGTTTGTAGTAGAAAATACAGAAATGTCCAGAGGAGACGAAGTGCCGTGTGTAACCACGCCGCTCACCCAGTGTGTTTCTAAATGATGAAACTAACACGTAACAGTAAAGAACCCAGACAGTGATAAAACGTGAAAAAGCAAGGCCAGAATTCTATCCAGCCCGTCTGAACACATTTCAGTGTATTTCCTTTCATTTTCTCTTTAGTCAACAAAATTGGGATCTTACTATGGGTATAATTTATCCTTTTTCACTCTGCATGACATTTGTCTAAGTTCAAAAACACTTGTAATGGCCGTGCAGTATTTAGTTGTGATTTATGTCAACATCACCCTTTTGGGACTTTGTTTCTAATATGTTGCTGCCGTAGGTAGTAGTGTATTTAAGTCATGTATCAATCTTTTATATGTATTTCTAACTATGAATTCAAGAGATTCCAGTAAGAAGAATGTCTGGCTTTAAAGGAGATGGCCTCTAAATGTCCCCGTATACCTGTGACCGCGTGGCGAGGCTCCCTGGCCCCCAGGAGACTGAAGGCTCCTCGTTCTCTTCCTCACTTGGACTGTGCCTCTCTTTTCGTTTCAGTTCCTCTTTTCTTGAAAGTTCCGTCTTCTCTTCTTCTGTCTTGAGGTCGCGTCTGCTCTCCCGCCTCCGTTGTCTCCTCTGGATGCCAGTCTGCTCTTCATTGCCCACCGATGACCTTTACTTTGATTTGGATATGATTTTGCTTCTCATTGAAATCCTAAAATAGCCTCCCCTTTCAAGCCATCTCTCCCCTCAAACTATCGACCAGAGAAGATACAATAAAACGTCGGCTCACTTCCTTA +>URS0002144F5F rRNA from 1 species +GCGGAGGGATCATTACACAAAAAATATGAAGGCTGCAACCGCCAGTTTTGGCGGGGAAGCTGAATTATTTTTCACCCATGTCTTTTGCGCACTTGTTGTTTCCTGGGCGGGTTCGCCCGCCACCAGGACCACACCATAAACCTTTTTTATGCAGTTGCAATCAGCGTCAGTATAACAAATGTAAATCATTTACAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATACGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCTTTGGTATTCCAAAGGGCATGCCTGTTCGAGCGTCATTTGTACCCTCAAGCTTTGCTTGGTGTTGGGCGTTTTGTCTTTGGCTTTTGCCCAAAGACTCGCCTTAAAACGATTGGCAGCCGGCCTACTGGTTTCGGAGCGCAGCACATTTTTGCGCTTGCAACTAGCTAAAGAGGCCAGCAATCCATCAAGACCTTCTTCTCACTTTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGCATAT +>URS00023B0815 lncRNA from 1 species +ATACATTCCTAATGGAACTGTCGCTGATCATCTTCATGGAAGACAGTCGAACTCTGGTTTGCTCACTTGGCCTTTTCGGTTGAGCATTGCTATAGAGACAGCCAGTGCACTTGCATACCTCCACGCTTCAGATGTCATACACCGTGATGTCAAAACCAATAACATTCTCCTAGACAACGACTTCCATGTGAAAGTGGCTGATTTTGGTTTGTCGAGATTGTTCCCAACTGATGTTACTCATGTATCGACTGCTCCACAAGGAACGCCTGGATATGTTGATCCGGAGTATTATCAATGCTACCAACTGACGGACAAGAGCGACGTTTACAGCTTTGGTGTGGTCTTGATTGAGCTGATATCAGCTTTAGAAGCAGTGGACACCAATAGGCATCGGCATGATATTAATTTGTCCATCATGGCAGTGAAAAAAATCCAAAACCATGCTTTAAATGAGTTGGTTGATCCATTTCTTGGATTTGACAAGGATTTCGTGGTGAGGAAGATGGTAACATCAGTTGCAGAATTAGCTTTCCGGTGTTTGCAACAACAGAGG +>URS00021A59B7 tRNA from 1 species +GGGGGCGTAGCTTAATGGTAAAGCCTCAGTCTTCCAAACTGATTACGCGGGTTCGATTCCCGTCGCCCCCTC +>URS000061A097 rRNA from 10 species +GGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTGGATCACCT +>URS0001E193C8 rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCGCCCTTCGGGGTGAGCGGCGGACGGGTGAGTAACGCGTGGGAACGTGCCCTTCTCTGCGGAATAGCCTCGGGAAACTGAGAGTAATACCGCATACGCCCTTTGGGGGAAAGATTTATCGGAGAAGGATCGGCCCGCGTTGGATTAGGTAGTTGGTGGGGTAATGGCCCACCAAGCCGACGATCCATAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACCCGGCCCAGACTCCTAGGGGAGGCAGGAGGGGGGAACTTGAAAAAATGGGGGCAACCCGAAGCTGGCCTGGCCGGGGGGGGGATGAAGGCCTTGGGGTTGAAAAGCTCTTTCAGCGGGGAAGATAAGAAGGGACCCAGCAAAAAAAGCCCGGGCAACCTCCGG +>URS0000C56DA5 snoRNA from 1 species +GAGTGGAGTGATGATTGTATTTGATTCCCTATTGGTTTGATTGCCAGTGTGATGGCACGCATTATAATAGCTTTATCTGACCACTC +>URS0001BF6C2A lncRNA from 10 species +ccagcagtggcaacccgctagggtccccttccacactgtggaagctttgttctttcgctcttcacaataaatcttgctgcttctcactctttgtgtccacaccgcctttaagagctgtgacactcactgtgaaggtctgtggcttcactcctgaaatcagcgagaccatgaacccaccaagaggaatgaacaactctggacgcgccacctttaagaactgtaacattcactacgaaggtctgcggattcactcctgaagtcagcgagaccatgaacgcaccggaaggaatgaacagctctggacgtgccacttttaagagctgtaacactcactgtgaaggtctgcggcttcactcctgaactcagcaagaccacaaacccaccagaaggaagaaactctggacacatctgaacatctgaaggaacaaactctggacacaccatctttaagaattgtaacactcaccgcgagggtctgcggcttcattcttgaagtcagcaagaccaagaacccactggaagggaccaactctagacacattttggtgacccagatgggactattgcctatcgccaagcagattgaggccatcaagctacagatggtcttacgaatggaatcccaaatgagctcgactaacaacttctatagaggacccctggactgacctgctggccctttcacggcctaaagagttcccctctggaggacactatcactgcagggccccttctttgcccctgtccagcaggaagtagctagagtggtcatcgggtaattcccaacagcagttggggtgtcctgtttagaggggagatGgagaggtgaagccgactgggcttctgggtcaggtggggacttggggaaattttctgtctagctaaaggattgtaaacacaccagtcagtgctctgtgtctagctaaaagtttgtaaatgtaccaatcagcactctgtaaaaatggaccaatcagcactctgtaaaatggacgaatcagtgctctgtaaaatggataaatcagcaggatgtgggtggggccaaataagggaataaaagctggccacctgagccagcagcggcaacctgcttgggtccccttccacgctgtggaagctttgttctttcgctcttcgccgtaaatcttgctgctgctcactctttgggtctgcacaaactttaagaactgtaacactcactgcgaaggtctgcagcttcactcctgaagtcagcaagaccacgaacccaccagaaggaagaaactccggacacatctgaacatctgaaggaacaaactccg +>URS00022B9349 lncRNA from 1 species +TTCATTAGCTCAAATATATACATATGTCGAGGCACATTCCTAGGTAATATCTTCTCATTCAGATAAATAACTTCAAGTTAATATTAAAGTCATTATTCATTGATGCAGAAAAGTCTCTCCACTGTACTTTCCCAATTCTTGGGCATTCTACAAAAAATGCTCTTTCTGCAATGTATATCCCCTGAAACACAATGTTAAATTTGAAAAGGTTTAAATATTTTCCCAGCTCAAGAGAAATAAGGCAGATTTTCTATCATTGCTAGAATGAAAGGAGGTTTGTTTATCCTGTTCACTAAATCAACAACATACTTCCTGCTAATAGGATCAGAGAATGAGATGGGTAAAATGTGAAATCATTTGATTTCTTTGTTTTGTTTACACGTGTATGTTAACGAAGCATCAGATAAGAATGAGGTCTAATTTCCTCTTCTGCAGGTAGAATTTGAGTTAGGTTTCCAGAAGGACTTACCAAATTCTAGTAGCCATACACCGGTAAACAGGTCAACCTCTAGGTATTTAGAAAAACAAATGTCCTTTCCCAAACTTCTTAGTTACAGAGCCTTTCAAAAGCAGCTCATAATTTGTTCACATGTTGTTATTTGCCTAATGCACTTGATACATACTATCAGAACTGCACATAATGCCTGAGCTCTACAGATAAAAGCTAAAATGAAGGATACAATATATCTGATTTTCAGAGGCCTAGTATCATTTAAAAAGTCAGCTAACAATTCCAGACTATCTCTAGTTAGATTCTAAACACAAGAATCCATCCATCCATTCAATAAATACTTATTCAGCTAGACAATATGCAAAACCATCCCAAGGGGGTTGAGATTAAAAAAAAAAAAAAAAATCAAGATAAATCTGCCATCTTGCCACTAACAAAACATATCCAGGACAAAAAGTACTATAAGGGAAATGAGAGTGAAGAGCTTCAGCTTATGCAAAGACCCTGTACTGAATGAAAATGAGTAAATTTATGGGCCATAAAATGTAAATACATAGCATTGAAGAGAGGAAAATTCATGTAGTCCATAAAATTGGAATTCAGTAGATTGTGAGCCTTGCAAGAAAATCACTCACCATACAAGTCCTAGAAGCAAGAGGTACAGCTCTCCCATTAACCAGCTCTAGGACTTTAGATCAAGTCATTTCATTGCTCTGAGATTCTGTTTCTTCATCTGTAAAATGAGAGTTAAAATTTCTAAGCTACCTACCACTCATGATTGTCAAGGGATTATGCATGAAAAAATGCTTTACTAAACTAAATATCTCATATATACTAGTACTGGTTCAGCTTTTTTGGGGTCTTATTTTTAAATAAATAAGTTGAAATGATATTTTTTAAGATTGCATTTATTTGGGAGATTGTGCACAGACTAGCAAACTGGGTGGTGGGGGAGGAATAGAGGGAAGAGAGAGACTCGAGCAGATTCCACGCTAAGCATGCAGCTTGACACAGGGCTTGATCTCACAACCCTGAGAGTACAACCCCAGCCAAAATTAAGAGTCGGACGCTTAACCACCTAAGCCACTCAGGCACCCCAAGTTGAAAAGACTTTTAAGTTCTCTTTTTAGCACTGTAAGATTTTACGACCTAAAAACTAATCTTAACTCAATGAGTAACTAAGAGATTTCTAACTTCCTAAGCATTATTATTAGTAGCATCAATCAATAAATTACCACAGAAAAGGAGGTATGAGCTAAAACAAACTGTTCTAAAATATTGGTTAAAAAAGGAAGGGGGATGAGAATCAAAGGACATATGGAAGAAAGTTAAAATGACTATTAATAGTGAAGGAATCAAAAGTAACCCTGAGTCTGAGGGGAGAACCGAGATGACATTCTTCTGGCAATCCTTCACGACGGCAAACTATCAACTTTATAGGAAAAAGTTATTTCAATTGAAAAAGATTTCCCAAGCAAGTCTGGTGAATGAGCTTAGAATTCAAATTCATGATACAGCACTGATTCAAAAGCAAAATGTGCCAGAAATTGAGGGACAGGGCTCAGTATTTCCGAAAAGCGAGTTGTAAAAGGAAATTTCAGAAATCTGACTTCCGCAATTAATGCAGATGGTCTGTTAATGGTAACTCTATTTAGCACTCACTTTAATACATATTCTAAAATACTTCTTTAAAAATTACTACTACTACTACTACTGGCGATGGGTGGCTCAAGTGGTTGAGTCTGCCTTTGGCTTGACGTCAGGGTCCTGGAGTCCTGGGATCGAGTCCCACATCAGACCCCCAATGGGGAGCCTGCTTCTCTCTGTGTGTCTCTCATGGATAAATAAATAAATCTTTAAAAAGAAATTACTACTACTGTTACTTCACAATCAGACTATTCTATCATCCCTATTTTCCAATAATTAAGCATCTGGCTGGGAAAGCAAAACACAGTTAGTTACACAAAAGATAAGACAAAGGACCTACATTTCCAACAAAGCTAGACCGCATATTACACACCAACCCTCTTGCAATTAAAAAGTTAGACAAATGTATATTTTTTTTAATTCTTAAAAATATCAGAGGATATAAACTGGTGCAACCGCTTTGAAAAACTGATAGTTAACTACTGAAGCTAAATTATATCTACCAACAGCACCATACCCAGGAATACTTCCAAAAGAAGGAAGTGCATATCCGACAAAATACACATGTAAGAATGTTTGTAGCAGATTTATTATAGTAGTCCAAAATTGGAAATGATGCAAATGCCATTAAAAGTAGAATGGATAACCAAACTGTGATAGATCTGTATATGAGGCTACTACTATAGCACACTGTATTTTCCAATAATGGTGCCTACAATACTTCTGGTCTCACAAGCTCTTCCAGAACCTCAACTCCCCCCATCAAGAGGTAGAGTCCATTTCCCCTCTCTTTAAACCTCGGCAGGCTCATAACTGCTTCAAAGAGCAGAATACAATGGAAGGAAAATTGCATTAAGTTTCAAAGCCAAGTCATAAGAGGCAATCTAGTGTCTGTCTGGCCCATGGGCTCTCCACCCCACTCCACTCCCCACTGCCTGTGGGTGCAGGACACTAGCCCTTGGAACACTGCCACCGTACTATTAAGCACAGTCAGGCCACATTTAGGTGTTCCGTCATCAACCAGCAGACATGTGAGTAAACCTTCAAACACTTTTAGGCCCAGCCTTCAAACAGCCCTACTTGAAACCAAATGAAGCTAAGACAAGCATTGCACAAATTACAGTGTTGTGCAGAAAATATATGTTGTCACTGTTTAAGTCACTGAGTTGCTAGGCAATTTTTTAGGTGCTACAGTAACTACAAGTACAGTAACTACAAGAAACACTACTGCTATGTGCAACAACACAGCTGAATTTCACTGATACTATACAATGTTGAACAAAACAAGCCAGATCAGACACACGGGAGTAAAACATACCGTATGATACTATTTTGAAAAGAAAACTAAAAACTGCAAAACTGTTGACAGAAAACCAAGTAATTGCAACCTGCATCAGGAAAGGAAGATATAGATGGGGAAGGGGTGTGACAAGGTCTTCTGGGGTGGCAAAAATGTTCTACATCTTGAACTGGATATGATTACATATTTAGTTACATTCATAAAAATTCTTCAGGTTATACATTTAAGATTGGTGCACATTATTATATGTATATTATACCTTAATGAAAACGCAGGAGAGGATAGTAATCAAAGAGCTAACAAGGTAATAAGGAACTACTAGGCACAGTAGTCCAAGAGGACAGAGAGGAGCACAGCACCCTGGGGTCTCTTGTCCCCTGGAAATGCCTGCCTAATCAAAAAACTGCATGTAGGCAGGCTAGGAAAGTAGGAAGACAAAATGTCAGAGTACAAGATCCACCAAAGGAGCCATCCCTTGCTTTAGAATAAGACCCCAAAAAGCTGAATCCTGGAAGAGAGAACACAGAAGGAAACTAAACCAGTCATTGCATAGATAGACTCAAAAAAACAAACACAAAAAAAAAAAAAAAAAAAAAAAAAAAAA +>URS00023D8047 lncRNA from 1 species +TAGGGTTTGATTTAGGGTTTAGGGTTTGGTTTAGGATTTGTTTGGAATTTGGTTTAAAGTTTGTTTAGAGTTTGGTTTAGGATTTAGGGTTTGATTTAGGATTTAGGATTTTATTAGGATGTAAGATTTAATTAGTTTTGGCCTAAAGTTTGAATGAAGTTCAATAGGATTTTGACTAGAATTAAATTAAGATTGAATTGAGATGTATTTGAGTGATATTTGTGATCATTCTAATATTTCTTTAAGAATTTTTATTGTTGATTTGAAATTTCTTTGAGGTTTTTTTGTATTTGATTAAGCTTGCATAGCATTATTATGGTCTAATTAGAGCATTTTTAGTATTCTATTAGAATTAGAATTTTGTTATTGTAATTTCCATTCTTTCTTGTAGAGCTAAATGCCCAGAGCA +>URS0001D8C773 rRNA from 1 species +TCCTGGAAATAGCCTCCCTATTAGACCGTACCCGAAACCGACACAGGTGGTCAGGTAGAGAATACCAAGGCGCTTGAGAGAACTGCGTTGAAGGAACTCGGCAAATTGCACGCGTAACTTCGGAAGAAGCGTGACCCTCACTCACGCAAGTGGATGAGGGTGGCACAGACCAGGGGGTAGCGACTGTTTATCAAAAACACAGG +>URS00006048F4 rRNA from 1 species +GAAATCCCTCGGGATGTAAACTTCGCAAGAACGGGAAGAATAAGTAGGGGACAATACCCCCTATGATGACGGTACCGTTTGTAAGCTCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGGGGGAGCAAGCGTTGTTCGGATTTACTGGGCGTAAAGGGCGCGTAGGCGGCCAGCACAAGTCAGTTGTGAAATCTCCGAGCTTAACTCGGAAAGGTCAACTGATACTGTGCGGCTAGAGTGCGGAAGGGGCAACTGGAATTCTTGGTGTAGCGGTGAAATGCGTAGATATCAAGAGGAACACCTGCGGCGAAGGCGGGTTGCTGGGCCGACACTGACGCTGAGGCGCGAAAGCTAGGGGAGCGAACGGGATTAGATACCCCGGTAGTCCTAGCCTTAAACGATGAATGCTTGGTGTCTGGGGTTATAAAGTCCCCGGGTGCCGTCGCTAACGCTTTAAGCATTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAG +>URS0000A15EFB rRNA from 1 species +AGCAGAGCACGTCCTACGGGAGGCGAGCAGTGGGGAATCTTAGAGCAATGGGGAAACCCCTGATCTAGCCATGCCGCGTGAGCGATGAAGGCCTTAGGGTTGTAAAGCTCTTTCAGCTGGGAAGATAATGACGGTACCAGCAGAAGAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCATGCAGGTGGTTTGTTAAGTCAGATGTGAAAGCCCGGGGCTCAACCTCGGAATTGCATTTGAAACTGGCAGGCTAGAGTACTGTAGAGGGGGGTAGAATTTCAGGTGTAGCGGTGAAATGCGTAGAGATCTGAAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAGATACTGACACTCAGATGCGAAAGCGTGGGAGCAAACAGGATTAGATACCCTGGTAG +>URS0001056185 rRNA from 1 species +TACCAGCACCCCGAGTGGTCGGGACGATTATTGGGCCTAAAGCATCCGTAGCCGGTTCTGCAAGTCCCCCGTTAAATCCAGCTGCTCAACAGATGGGCCGCGGAGGATACTACAGAGCTAGGAGGCAGGAGAGGCAAGCGGTACTCAGTGGGTAGGGGTAAAATCCGTTGATCCATTGAAGACCACCAGTGGCGAAGGCGGCTTGCCAGAACGCGCTCGACGGTGAGGGATGAAAGCTGGGGGAGCAAACCGGGATTAGAA +>URS000182C5B8 rRNA from 1 species +ACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGGCGGAAGCCTGAACCAGCCAAGTCGCGTGAAGGATGAAGGTATTATGTATTGTAAACTTCTTTAGATGCAGAGAAATAAGCCCCTCGCGAGGGGTGATGCTAGTATGCATAGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGCAGGCGGCGCGTTAAGTCAGCGGTGAAATGCAGGGGCCCAACCCCGGCAGTGCCGTTGATACTGGCGTGCTGGAATGCGGTCGAGGCGGGCGGAATGTGGCGTGTAGCGGTGAAATGCATAGATATGCCACAGAACTCCGATAGCGAAGGCAGCTCGCCAGGCCTGCATTGACGCTCAGGCACGAAAGCGTGGGGATCGAACAGGATTAGATACCCTGGTA +>URS0002400B5F lncRNA from 1 species +TTTATTGATGAAGAAGGGTGTAGAAGTATTTTTGTGGTTTTTTTTTTGTAGAGAAAGGACAGGAATGTTTTTGTGTTTTTTGTTTATTATGACTGGGCCATATAGAATATGGTTGCCTACGTACTCCCGTGTATCAGGGAGATCAGGTCGACGTAGTTCACCCCTCAGGATGAATTGCAGTTGAAGAGAAGTGTGAATCCCATGTGCATGCTATACTGCGGGGAGAAGAAAGTTTGATACCATGATGGGGACAAACTGTAGGTTTGGAAAAAGTTTGATCCCGTCTTTAAGACAAACTGCAAGCGTAGAAAAGTTTAATCCCGTCTTCAGGATAAACTGCAGGTGTGAAAGGTTCAATTCCGTCTTCTGGATAACCGAAATTGTATGGAAGGTTTGAAATGAGGTGAAACTAGGCTGCTGGTTTGAAGTGTATATTTCCCTGAGGAGCAGAAGAGTATGTATAAAAGGTTAGAAACCGG +>URS00004FA46A piRNA from 1 species +TCTGAAACCAGAGGTACAGGTGTA +>URS000239D036 lncRNA from 1 species +AAGTGAGGGTTAATATAATTTTTCTACTCCTAATATTGGTTTTTATTTAGAAGAATCATAAACTACCGAAGTTTAAAGAGACTATGCTTTTAGATTCTAAGCCCAATGATTTGGGCATATAGTAATGGGTAAATCTTTTATGATTGGCACTGCATACATTAACGAATTGGTATGCATGCTACATATACAAAATTAATTTGCAGATCTAAATTCAGATGATGTGAGATTTATCTAACTTCATTTATACACTGACAGTATAGAAAAGTTAATCCATATTAATAGGATAAATCTTTTCTGTATCGACACTGTATACATTAGTGGATTTAGATGCATGCCACACACATAAAATCTCAGGGGTACCAAGTTATATTTCTAAAACCACAGGGGGCCAAGTGATGTTAAGAGAAACTTCAAAGGAGGTTTCTAATATTATTCCAACACATATTCAGTAGGCAAAAGATACTATTTCAATTATTTAGGTGGCAACGAGTTTTTTTTTGGCCTTATCACTGCATGTGATACTCGTGTACAAGGACAAAACTAGGGGATTAGGGCTGAAGTTTTATAGAATTCAATTTTCCTCCCTTACAAAATTACATATTGTCAAATCAAATAATCTTGCTCCCGAAAAAACCTAAAGATATTTATATTATA +>URS00001FA05A rRNA from 1 species +AGAGTTTGATCCTGGCTCAGATTGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGGCAGCATGAGATGGGGTAACCCATTTTGATGGCGAGTGGCGGACGGGTGAGTAATATGTAGGAATCTACCTAGAGGAGCGGGATAACTTAGGGAAACTTAAGCTAATACCACATAATCCCTACGGGGGAAAGCAGGGGACCGCAAGGCCTTGCGCCTTATGATGAGCCTACATCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGATGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGCAACCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTTAGGGTTGTAAAGCACTTTCAGTGGGGAGGAAGTTTATTGTGTTAATACCATAATGAATTGACGTTACCCACAGAAGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGGGTGTGTAGGTGGTTGCGTAAGTTAGATGTGAAATCCCCGGGCTTAACCTGGGAACTGCGTTTAAAACTGCGTAGCTAGAGTATTGCAGAGGATAGTGGAATTTCCAGTGTAGCGGTGAAATGCGTAGATATTGGAAGGAACACCAGTGGCGAAGGCGACTATCTGGGCAGATACTGACACTGAGACACGAAAGCGTGGGGAGCAAACAGGA +>URS0001FB0CF8 rRNA from 1 species +GGGCACCGGGGGGGTGCCTAATACATGCAGTCGAACGCGTTGGCCCAATTGATTGATGGTGCTTGCACCTGATTGATTTTGGTCGCCAACGAGTGGCGGACGGGTGAGTAACACGTAGGTAACCTGCCCAGAAGCGGGGGACAACATTTGGAAACAGATGCTAATACCGCATAACAGCGTTGTTCGCATGAACAACGCTTAAAAGATGGCTTCTCGCTATCACTTCTGGATGGACCTGCGGTGCATTAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGATGATGCATAGCCGAGTTGAGAGACTGATCGGCCACAATGGGACTGAGACACGGCCCATACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGGCGCAAGCCTGATGGAGCAACACCGCGTGAGTGAAGAAGGGTTTCGGCTCGTAAAGCTCTGTTGTTAAAGAAGAACACGTATGAGAGTAACTGTTCATACGTTGACGGTATTTAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGATTTATTGGGCGTAAAGAGAGTGCAGGCGGTTTTCTAAGTCTGATGTGAAAGCCTTCGGCTTAACCGGAGAAGTGCATCGGAAACTGGATAACTTGAGTGCAGAAGAGGGTAGTGGAACTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTACCTGGTCTGCAACTGACGCTGAGACTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGTGCTAGGTGTTGGAGGGTTTCCGCCCTTCAGTGCCGGAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCTACGCGAAGAACCTTACCAGGTCTTGACATCTTGCGCCAACCCTAGAGATAGGGCGTTTCCTTCGGGAACGCAATGACAGGTGGTGCATGGTCGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTACTAGTTGCCAGCATTAAGTTGGGCACTCTAGTGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGACGACGTCAGATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGACGGTACAACGAGTCGCGAACTCGCGAGGGCAAGCAAATCTCTTAAAACCGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGTCGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGAGAGTTTGTAACACCCAAAGTCGGTGGGGTAACCTTTTAGGAGCCAGCCGCGAAGGTGGAACAGGAT +>URS0001125F2F rRNA from 1 species +TACGGGGGGGGCAAGCGTTGTTCGGATTACTGGGCGTAAAGGGCGCGTAGGCGGTCAGCACAAGTCAGTTGTGAAATCTCCGGGCTTAACCCGGAAAGGTCAACTGATACTGTGCGACTAGAGTGCGGAAGGGGCAACTGGAATTCTCGGTGTAGCGGTGAAATGCGTAGATATCGAGAGGAACACCTGCGGCGAAGGCGGCATCCTGGACCGGTATTGACGCTGAGGCGCGAAAGCCAGGGGAGCAAACGGG +>URS00020FB289 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGATGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTCCCTATAAGAGTGGGATAACTTCGGGAAACCGGATCAAATACCGGATAATATATTGAACCGTGTGGTTCAATGGTGAAAGACGGTTTTGCTGTAACTTATAGATGGTTCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGGTACGATGCGTAGCCGACCGGCGAGGGGGATCGGCCACACGGGAACTGGGACACGGTCCAGGCGCCTACGGGAGGCAGCAGTAGGGAATGGTCCGCAATGGTCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS000014A96C rRNA from 1 species +AGCCATGCATGTCTAAGTATAAACTGCTTATACTGTGAAACTGCGAATGGCTCATTAAATCAGTTATAGTTTATTTGATGGTACCCACTACTCGGATAACCGTAGTAATTCTAGAGCTAATACGTGCGTACATCCCGACTTCTGGAAGGGACGTATTTATTAGATAAAAGGCCAGCCGAACTTTGTTCGACCTGCGTTGACTCATGATAACTTCACGAATCGCACGGCCTTGTGCCGGCGATGTTTCATTCAAATTTCTGCCCTATCAACTTTCGATGGTAGGATAGAGGCCTACCATGGTGGTAACGGGTGACGGAGGATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACACGGGGAGGTAGTGACAATAAATAACAATACCGGGCATTTAATGTCTGGTAATTGGAATGAGTACAATCTAAATCCCCTAACGAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTTAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCGGGTGGGTGCTAGCGGTCCGGCTCTGCTGTGTACTGCTAGTGCCTATCTTTCTGTCGGGGACGGGCTCTTGGGCTTCATTGTCCGGGACTCGGAGTCGACGTGGTTACTTTGAGTAAATTAGAGTGTTCAAAGCAAGCGTTCGCTGTGAATACATTAGCATGGAATAACACGATAGGACTCTGGCTTATCTTGTTGGTCTGTAAGACCGGAGTAATGATTAAGAGGGACAGTCGGGGGCATTCGTATTTCATTGTCAGAGGTGAAATTCTTGGATTTATGAAAGACGAACTTCTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTGGGGGCTCGAAGACGATTAGATACCGTCGTAGTCTCAACCATAAACGATGCCGACTAGGGATTGGCAGGTGTTTCGTTGATGACCCTGCCAGCACCTTATGAGAAATCAAAGTTTTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGGCGGAAGGGCACCACCAGGCGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTCCAGACACGGGGAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTGTG +>URS00019D9398 rRNA from 1 species +TGGCGGCGTGCCTAATACATGCAAGTCGAGCGGACAGAAGGGAGCTTGCTCCCGGATGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGAGCTAATACCGGATAGTTCCTTGAACCGCATGGTTCAAGGATGAAAGACGGTTTCGGCTGTCACTTACAGATGGACCCGCGGCGCATTAGCTAGTTGGTGGGGTAATGGCTCACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTGCGAGAGTAACTGCTCGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGAAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAACCCTAGAGATAGGGCTTTCCCTTCGGGGACAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCAGCATTCAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGACAGAACAAAGGGCTGCAAGACCGCAAGGTTTAGCCAATCCCATAAATCTGTTCTCAGTTCGGATCGCAGTCTGCAACTCGACTGCGTGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGCAACACCCGAAGTCGGTGAGGTAACCTTTATGGAGCCAGCCGCCGAAG +>URS0000FD7098 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGGTCTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGATCTTGAGTTCGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGTGCGAAAGCTAGGGGAGCAAACGGG +>URS000131717B rRNA from 1 species +TACGAAGGTGGCAAGCGTTACTCGGAATTACTAGGCGTAAAGGGCAGGTAGGCGGTTTGGTTAGTCTGTTGTGAAAGCTCCTTGCTTAACGGGGAGAGGCCAACGGATACTGCCAGACTTGAGTATAGGAGAGGGTACTGGAATTCCCGGTGTAGCGGTGAAATGCGCAGAGATCGGGAGGAACACCAATGGCGAAAGCAGGTACCTGGACTATTACTGACGCTCAGCTGCGAAAGCTAGGGGAGCAAACAGG +>URS000115C7E9 rRNA from 1 species +TACGGAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGCTTTGTAAGTTAGAGGTGAAAGCCCGGAGCTCAACTCCGGAACTGCCTTTAAGACTGCATCGCTTGAACGTCGGAGAGGTAAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGACCGGTACTGGCGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGG +>URS0000E4B3A6 misc_RNA from 1 species +GCGTCCGTTTCTGTCCTGTCGTCGAGGGAAGCGCTGGGATTTATCCCAGCCGTCCCTCGACGGTCGTGTTGAGGCGTCGTCCGGGAACGGGCGTCCCTTCAAGTGCGAA +>URS00023A6056 lncRNA from 1 species +TACTTTGGCTAAAGACTTCCAGAATCATCGATCTATGATATCACATAGGATGTTTGCTCTCCTTATTAGGAGTGACTGATCCCTCATTGATTACTCACAACCTTCATGCATACTTTACCACATCCAAAATATCCCATATAAGGATCAAAGAATCAAGTTAGGTAGTGAACCAAAATATGGATTCATGTACACAAGGTATTATGACGATCTCAGGTCAAAGGATCACTTACACAACTCCCATT +>URS0000CE10A7 sRNA from 1 species +TTATTACAAAAAAATGCTGTTTAATTTCACATGATAGAGTTATATGGTAGAACGGTTTGGATTGATATTATGGAATATATACCACGCGTAAAATCTTAAAATTAAATAT +>URS000013D6AF rRNA from 1 species +CAAATGACTCTCGGCAATGGATATCTTGGCTCTTGCATCGATGAAGAACGTAGTGAAATGCGATACTTGGTGTGAATTGCAGAATCTCGTGAACCATTGAGTCTTTGAACGCAAGTTGTGCCCGAGGCCTTGCGGTCGAAGGCACGCCTGCTTGGGCGTCATT +>URS0002063A20 rRNA from 1 species +TTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGATGAAGGGAGCTTGCTCCTGGATTCAGCGGCGGACGGGTGAGTAATGCCTAGGAATCTGCCTGGTAGTGGGGGATAACGTCCGGAAACGGGCGCTAATACCGCATACGTCCTGAGGGAGAAAGTGGGGGATCTTCGGACCTCACGCTATCAGATGAGCCTAGGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCGAAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGTCTTCGGATTGTAAAGCACTTTAAGTTGGGAGGAAGGGCAGTAAGTTAATACCTTGCTGTTTTGACGTTACCAACAGAATAAGCACCGGCTAACTTCGTG +>URS0001992F3F lncRNA from 1 species +CAGAACCGAAGATCGCTTACGTTTCCACACGGACCCGTTTTAGTGACGTACCCATCTGCCGTCAGCTTCTGTAAGTTTGGTGACTTGATTTTAATCGTGTTCTGTTCATTTACCTGCTTCCTAAACATAGGTGAACTCTTCTAATGTCTACCATAGAGACTTGCTGTAAGCTACAGACGTCTTTTCTGAATGGAGAAGATGGAGGATTATCCACTCTACTGCATCAAATGATTCCAGCATTACTGATCTGCACCCTAGAATATCCTGGAATAATCACTTGTGCAGTTTTGATGACATCTCTTGAAGTGTTATGA +>URS0001E8D186 rRNA from 1 species +TGAGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGCAGGAAGAAGCATCTATGGTGTGTATCCTGCTTTTGTACGGGAAGAAACACTCCTTCGTGAAGGAGCTTGACGGTACCGTAAGAATAAGGATCGGCTAATTCCGTGCCAGCATCCGCGGTTATACGGAGGATCCCAGCGTTATCCGGAATCATTGGGTTTAAAGGGTCCGTAGGCGGTTTAGTAAGTCAGTGGTGAAAGCCCGTCGCTCAACGATGGAACGGCCATTGATACTGCTAGGCTTGAATTATTAGGAAGTAGATAGAATATGTAGTGTAGCAGTGAAATGCTTAGATATTACAAGGAATACCAATTGCGAAGGCAGGTTACTACGAATGGATTGACGCTGATGGACGAAAGCGTGGGGAGCAAACA +>URS000118D854 rRNA from 1 species +TACAGAGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCGCGTAGGCGGCCTTCTAAGTCGAACGTGAAATCCCCGGGCTCAACCCGGGAACTGCGTCCGATACTGGAAGGCTTGAATCCGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGTTCTCTGGGCATTGCCTGACGCTGAGGAGCGAAAGTGTGGGGAGCGAACAGG +>URS00010E7D1D rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCGCGTAGGCGGTGCGGTAAGTCACCTGTGAAATCTCCTGGCTCAACTGGGAGCTTGCAGGCGAAACTGCCGTGCTGGAGTGTGGGAGAGGTGCGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCTGTGGCGAAAGCGGCGCACTGGACCACAACTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACAGG +>URS00009F8AF6 misc_RNA from 1 species +CCTGTTGAAGATGGAAGAGTTGGCTGAGATGCCACGGATGTGTTTGACCCTTTTGAAAAAAAGTTGCCTGGGACATCAGTTACAGGTTGAGCAGCAGATCCAGTTGAAGCTTGATAGCCAACTTGTGAAGCAACAGGGGCAGTAGAGCCTTGTGGGAAAATGTTTTCATTGTTAAACTGTGGAGTTGGTCCTATTGCATTTTGATGAGCAACTTGTAAGCCTACTGGGGCAGCAGAACCCTGTTGTTGGAAAAGGTTTCCATTGTTAAACTGTGGAGTTGGTCCCGTTGCATGGTAAGCAGCT +>URS0002410C40 lncRNA from 1 species +CAGTCTCTCTCTAACTTTATCCTGGTATAGCATCCGTCTCTTATCCTTTATCTCTGTGAATCTCTCTCGCTAACTCTTTCTCTCTCTTGGAGCATAAAAATCCATCCATCTCAAACTTAGTGGTTTACTTCTTTACTATGTTTTTAGATAGAAAAAGAACTTGGGTATTTTGTTGTTATAGAGAAGAAAGGAAGAATAAATTCCTAAGTTCTTTATCTTTCAAAGCTTCCGCTCAACTTTAGCTTTTAACCCAAAAGAATCTCTTCATTTTGACGCGCCCACAGCCACAAAAAACAGCAACAGTAAGTCAGTCACAGAGTTGGTGGCAAAAAATCTCTTCACATCAGGATTAGGTTTGGGGATTGGGTGTGAGAGAGAAGCAGCAGGCAAATATACAAAATCTCAAAGAAGATCGAAGGATTAGGTTTGGGGATGAGCCTTAATCTGTTTTTTTTTTTTTCCTAAAAATGTTAGGC +>URS0002280BA0 misc_RNA from 1 species +GAAATGCGATAATTAATGTGAATTGCAGAATTCAGTGAATCATCGAGTCTTTGAACGCACATTGCGCCCCCTGGTATTCCGGGGGGCATGCCTGTCCGAGCGTCATTGCTACCCTCAAGCACGGCTTGTGTGTTGGGCTTCCGTCCCTGGCAACGGGGACCGGCCCAAAAGGCAGTGGCGGCACCATGTCTGGTCCTCGAGCGTATGGGGCTTTGTCACCCGCTCCCGTAGGTCCAGCTGGCAGCTAGCCTCGCAACCAATCTTTTTAACCAGGTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGC +>URS00016372AB rRNA from 1 species +CAGTCGCCGCGGTAATACCGAGGGTGCGAGCGTTAATCGGATTTACTGGGCGTAAAGCGTGCGTAGGCGGCTTTTTAAGTCGGATGTGAAATCCCTGAGCTTAACTTAGGAATTGCATTCGATACTGGGAAGCTAGAGTATGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGATGGCGAAGGCAGCCATCTGGCCTAATACTGACGCTGAGGTACGAAAGCATGGGGAGCAAACAGGATTAGATACCCGTGTAGTCCCTGTCTCTTATAA +>URS00017BF492 rRNA from 1 species +TACGTAGGGTCCGAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTTTGTCACGTCGGGCGTGAAAACTCAGGGCTCAACCCTGAGCGTGCGTTCGATACGGGCAGACTAGAGGTATGCAGGGGAGAACGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS00019F2EB9 rRNA from 1 species +GGCGGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGAAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAACCCTAGAGATAG +>URS000031863D rRNA from 1 species +TTGGCGGACGGGTGAGTAACGCGTGAGTAACCTGCCTTCAAGAGGGGGATAACATTCTGAAAAGAATGCTAATACCGCATAATGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTTGTTGGTGGGGTAACGGCTCACCAAGGCGACGATCCCTAGCTGGTCTGAGAGGACGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCATG +>URS00002862DB rRNA from 1 species +CGGGTGAGTAACACGTGAGCAACCTGCCTTTCAGTGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATAACGTGCCGGAAGGGCATCCTTTTGGTACCAAAGATTTATCGCTGAAAGATGGGCTCGCGTCTGATTAGATAGTTGGTGAGGTAACGGCCCACCAAGTCGACGATCAGTAGCCGGACTGAGAGGTTGATCGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAG +>URS0002137456 rRNA from 1 species +GAAAGTAAGAAAGGGCGTATGGCGGATGCCTAGGCTCACGGAGGCGATGAAGGACGTGATAAGCTGCGATAAGCTTCGGGTAGGTGCAAATAACCCTTGATCCGGAGATTTCCGAATGGGACAACCTAGCCGTCTGAAGGACGGTTACTCAATCTTCAAGGTTGAGAGCTAACGCAGGGAACTGAAACATCTTAGTACCTGCAGGAAGAGAAAATAAATGAATGATTCCCCTAGTAGTGGCGAGCGAACGGGGAACAGCCCAAACCGTTGACGTCGCAAGGCGCCAGCGGGGTTGTAGGACCGCGACATTGTATGCAAATCGTGAACAGAACACTTTGGAAAATGTGACCATAGACGGTGATAGTCCAGTATGTGAAGCGAAATGCAGCATAGCGGTATCCTGAGTAACGCGGGACACGAGGAATCCTGCGCGAATCTGCCGGGACCATCCGGTAAGGCTAAATACTCCCGTGAGACCGATAGCGAACGAGTACTGTGAAGGAAAGGTGAAAAGAACCCCGAGCAGGGGAGTGAAATAGTTCCTGAAACCATACGCCTACAAGCGGTCGGAGCATCTTACGATGTGACGGCGTGCCTTTTGCATAATGATCCTACGAGTTACCGTCACTGGCGAGGTTGAGTGTCACGAGACACGTAGCCGCAGTGAAAGCGAGCCTGAACAGGGCGCATAGTCAGTGGGGGTAGACGCGAAACCAAGTGATCTACACTTGGCCAGGATGAAGTCCCGGTAACACGGGATGGAGGTCCGCACCAATAAGCGTTGAAAAGCTTCTGGATGAGCCGAGTGTAGGAGTGAAAGGCCAATCAAACTTGGAGATAGCTCGTACTCCCCGAAAGGCATTTAGGTGCCGCGTCGGATGGTCACCGTGAGAGGTAGAGCGACCGATAGGACAAGAGGGCTTCACCGCCTATCGAGTCCTGACGAACTCCGAATGCTCACGGTCTGCAGTCCGGCAGTAAGGGGGCGGGTGCTAAGGTCCGTCCCCGAGAGGAGAAGAATCCAGACCGCCGTCTAAGGTCCCGGAGTTCTGCCTGAGTTAGTCTAACGAAGTCTGGTCCCCGCGACAGCTAGGATGTTGGCTTGGAAGCAGCCATTCATTTAAAGAGTGCGTAACAGCTCACTAGTCGAGGAGTCGGGCGTGGATAATAATCGGGTATTAAGTTGTCTACCGAAGCAGTGGGATCATTAATATGATCGGTAGGGGAGCATTCCAGTCGGCGTCGAAGGCGTACCGTGAGGTATTCTGGAGCGTCTGGAAAAGCAAATGTAGGTATAAGTAACGATAAAGGGGGCGGGAAACCCCCTCGCCGAAAGACTAAGGTTTCCTGATCAACGCTAATCGGATCAGGGTCAGTCGGGTCCTAAGGCTCAGCCGAACGGCGATGCCGATGGCAGAAACGGTTAATATTCCGTTACTACCTTCAGGAGTGACGTGGAGACGCAGTAGTGACAGTGCCGCCATCTGACGGAATAGATGGTTGAAGGGTGTAGGAGTCGATCATGGCAGGCAAATCCACCATGAGATCCGAACCTGATAGTATGCCGCGTCCTTCGGGACAAGGCAATAGTGCGCGTAAGCATGCTGCCGAGAAAATCCGCTAAACTTAATCCTGCAGGTACCCGTACCGCAAACGGACACACGTAGTCGGGATGAATATTCTAAGGCGCTTGAGTGATTCACGGTTAAGGAACTAGGCAAACTGACCCTGTAACTTCGGGAAAAAGGGTCCCGTCTCGCAAGAGCGGGCGCAGAGAATAGGTCCAGGCAACTGTTTAACAAAAACACAGGGCTGTGCGAAGTTTAAAGACGAAGTATACAGCCTGACACCTGCCCGGTGCCGGAAGGTTAAGAGGAGACGTCATCGCAAGAGAAGCGTTGAATTGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGG +>URS000140E52B rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGCCTTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAAGGTCATTGGAAACTGAAAGGCTTGAGTACAGAAGAGGAAAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAATACCGATGGCGAAGGCAGGTCTCTGGGCTGACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS0001C1D63F rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGCACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATAGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGT +>URS0000AD8EAF misc_RNA from 1 species +TGTGGGAGCGGGCTTGCCCGCGATAGCGGTGTGTCAGTCGATAGCAATGTTGGCTGGCAGTCAGTCATCGCGGGCAAGCCCGCTCCCACA +>URS000009FFA8 rRNA from 1 species +AGTCTCAGATAGCCATGCATGTCTAAGTATAAACGCTTTATACTGTGAAACTGCGAATGGCTCATTATATCAGTTATAGTTTATTTGATAATCTCTTACTACTTGGATAACCGTAGTAATTCTAGAGCTAATACATGCATAAATACCTAACTTTCGGGAAGGGTAGTATTTATTAGATTGAAACCAATTGATCTCGGTCATATTGTGGTGATTCATAATAACTTTGCGGACCGCATGGCTTTACGCCGGCGGTAGATCATTCAAGTTTCTGCCCTATCAGCTTTGGATGGTAGGGTATTGGCCTACCATGGCTTTAACGGGTAACGGAGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAGACGGCTACCACATCCAAGGAAGGCAGCAGGCGCGTAAATTACCCAATCCTGACACAGGGAGGTAGTGACAATAAATAACAATGCCGGGCCTTTTTAGGTCTGGCAATTGGAATGAGAACAATTTAAATCCCTTATC +>URS0001F65059 rRNA from 1 species +GATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCTCCTGCTTGCAGGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGGGTGATCTGCCCTGCACTTCGGGATAAGCCTGGGAAACTGGGTCTAATACCGGATAGGACCACATTTTGGATGGTGTGGTGGAAAGTTTTTCGGTGTGGGATGAGCTCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGTCGACGGGTAGCCGGCCTGAGAGGGTGTACGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAGGCCTGATGCAGCGACGCCGCGTGGGGGATGACGGCCTTCGGGTTGTAAACTCCTTTCGCTAGGGACGAAGCGCAAGTGACGGTACCTGGAGAAGAAGCACCGGCTAACTACGTG +>URS000066A79F rRNA from 1 species +AGCTATGGCTCTGTTGTATTAGGGATGTAGGCAGTTTCTTTCTCGTCTGATCTCGGAAGCTAAGCAGGGTCGGGCCTGGTTAGTACTTGGATGGGAGACCGCCTGGGAATACCGGGTGCTGTAGGCT +>URS0000B505A9 rRNA from 1 species +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTCGTTAAGTTCGTTGTGAAAGCCCCGGGCTCAACCTGGGAACGGCAATGGAAACTGGCGGGCTTGAGTGCGGCAGAGGGGGGTGGAATTCCGCGTGTAGCAGTGAAATGCGTAGAGATGCGGAGGAACACCGATGGCGAAGGCAGCCCCCTGGGCCGACACTGACGCTCAGGCACGAAAGCGTGGGGAGCAAACAGG +>URS000084F4BB rRNA from 1 species +ACCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGGACAGAAGGGAGCTTGCTCCCGGATGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGAGCTAATACCGGATAGTTCCTTGAACCGCATGGTTCAAGGATGAAAGACGGTTTCGGCTGTCACTTACAGATGGACCCGCGGCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTAGGGAAGAACAAGTGCAAGAGTAACTGCTTGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAGGGTCATTGGAAACTGGGAAACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAACCCTAGAGATAGGGCTTTCCCTTCGGGGACAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCAGCATTCAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGACAGAACAAAGGGCTGCGAGACCGCAAGGTTTAGCCAATCCCACAAATCTGTTCTCAGTTCGGATCGCAGTCTGCAACTCGACTGCGTGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGCAACACCCGAAGTCGGTGAGGTAACCTTTATGGAGCCAGCCGCCGAAGGTGGGGCAGATGATTGGGGTGAAGTCGTAACAAGGTTA +>URS0002524E6B rRNA from 1 species +ATGGTCGTAGCAGTTGCGATATGGATCATAGGATTCTTTTCTGTTCGCCGCAGGAGTATTTTACCTGTAAAGTTGCGATGCCGATCAAAATGCTGCTTGTTTTCTCTTCTTCCCCACATGGCCACGCCCACCGGATCTTGGACTTCACACCTCTTTCCATTATTTTTAGTTCCCGTTGGAGCGTATCTGTACGTCTGCACCTCAACAAGAATGTTCTCTCACTGGTATTTGATTAATACTACCACTAGTTTTTTGGAGAATGTTTGGTAA +>URS00020B9359 rRNA from 1 species +GACGAATGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTGCAGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGGGTGATCTGCCCTGCACTTCGGGGTAAGCCTGGGAAACTGGGTCTAATACCGGATAGGAACCATTTTTAGTGTGATGGTTGGAAAGTTTTTTCGGTGTAGGATGAGCTCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGGCGACGGGTAGCCGGCCTGAGAGGGTGGACGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGGGGGATGACGGCCTTCGGGTTGTAAACTCCTTTCGCTAGGGACGAAGCTTTTGTGACGGTACCTAGAGAAGAAGCACCGGCTAACTACGTG +>URS000047804E rRNA from 1 species +GATCCTGGCTCAGGATGAACGCTGGCGGCATGCTTAACACATGCAAGTCGAACGAAGCCATAGGAAGCTTGCTTTCTTTGAAGCTTAGTGGCGGACGGGTGAGTAACGCGTGAGTAACCTGCCCTCGAGTGGGGAATAACATCGAGAAATCGGTGCTAATACCGCATAACGTCGGAGAACCGCATGATTTTCCGACCAAAGGATTTATTCGCTTGAGGATGGACTCGCGTCCGATTAGCTAGTTGGTGAGGTAACGGCCCACCCAAGGCGACGATCGGTAGCCGAACTGAGAGGTTGATCGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGAAAGCCTGACCCAGCAATGCCGCGTGAAGGATGAAGGTCTTCGGATTGTAAACTTCTTTGATTGGGGAAGAATAAATGACCTACCCAAAGAACAAGTCACGGCTAACTACGTGCC +>URS000041CA9B rRNA from 1 species +TCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTGATACGTAGGGTGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGGGCTCGTAGGTGGTTGATCGCGTCGGAAGTGTAATCTTGGGGCTTAACCCTGAGCGTGCTTTCGATACGGGTTGACTTGAGGAAGGTAGGGGAGAATGGAATTCCTGGTGGAGCGGTGGAATGCGCAGATATCAGGAGGAACACCAGTGGCGAAGGCGGTTCTCTGGGCCTTTCCTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGCTTAGATACCCTGGTAGTCCACGCTGTAAACGGTGGGTACTAGGTGTGGGGTCCATTCCACGGGTTCCGTGCCGTAGCTAACGCTTTAAGTACCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGCCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGTAGAACCTTACCTGGGTTTGACATGGATCGGGAGTGCTCAGAGATGGGTGTGCCTCTTTTGGGGTCGGTTCACAGGTGGTGCATGCCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCACTGTTGCCAGCACGTTATGGTGGGGACTCAGTGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGCCCCTTATGTCCAGGGCTTCACGCATGCTACAATGGCTGGTACAGAGAGTGGCGAGCCTGTGAGGGTGAGCGAATCTCGGAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCTCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGGCTTGTACACACCGCCCGTCAAGTCATGAAAGTTGGTAACACCCGAAGCCGGTGGCCTAACCGTTGTGGGGGAGCCGTCGAAGGTGGGACTGGTGATTAGGAC +>URS00016BE8EB rRNA from 1 species +TACGAAGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGCAGGCGGTCCTTTAAGTCAGGGGTGAAAGCCCAGAGCTCAACTCTGGAACGGCCTTTGAAACTAGAGGACTTGGGTACGGGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGTTACCGACGCTCAGGCGCGACAGCGTGGGGAGCAAACAGG +>URS000104102D rRNA from 1 species +TACGTAGGGTGCGAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTTGTAGGCGGTCTGTCGCGTCTGCTGTGAAAATCCGGGGCTCAACCCCGGACTTGCAGTGGGGTACGGGCAGACTAGAGTGTGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGGTCTCTGGGCCACTACTG +>URS0001017A28 rRNA from 1 species +TACGGAGGGTGCGAGCGTTGTTCGGAATCACTGGGCGTAAAGCGCGTGTAGGCGGCCTTGTAAGTCTGGTGTGAAAGCCCGGGGCTTACCCCCGGAAGTGCACTGGAAACTGCAAGGCTAGAGTACCGGAGAGGAAGGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGCCTTCTGGACGGATACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS0000908CE3 ncRNA from 1 species +CTGGTTAATTCCGATAACGAACGAGACTCTGTCCTGCTAACTAGGCGGGTAAACCCGGGTCGGCGTGTGCGCGGCGCTGGCGGTTTCGGCCGTCAGTGTTCGCGTACCCGTCGGCTCGGCCCGGTATCCCCGAACGCGTTCGCCCGTCGTCCACGGCGGTCGTCGGGCGCGGCCGCGCCATCCGCGTCCCGGCGTTCGGCGGGCGTATGTCGGCCGGGGGGCAACCTCCGGTCGGCCTGCGTCCGTCGTGCGTCGGGCTCCGTGGTGAAGCGCGCCGTGTTCGCGGCCGTCGCCGGCGGATCACGATACGTTACTAGGGCTACCGCCGGCTCCCAGGAGCTTAAACTCTTCTTAGAGGGACAGGCGGCGGACGAACATAGCCGCACGAGACTGAGCGATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGAAGGAATCAGCGTGTTTAACAATCCTGGGCCGACAGGCTTCCGGGTAACCCGCTGAACCTCCTTCGTGCTTAGGGATCGTGGCTTGCAATTTTTCCACGTGAACGAGGAATTCCCAGTAAGCGCGAGTCATCAGCTCGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGAACGGTCGCATTGAGGTCTTCGGAGTGGACGCGCGTTATTCGGCCCCCTCGGGGGCTGGGTCGTCGCGCGATCGCGAAGATGACCGAAATCGGCCGTTTAGAGGAAGTAAAAGTCGTAACAAGGTTTCCGTAGGTGAACCTGCGGAAGGATCATTA +>URS0001269AD4 rRNA from 1 species +TACGTAGGTGGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGCGCGCGCAGGCGGTGCGGTAAGTCTGTCGTGAAATCTCCCGGCTCAACTGGGAGGGTGCGGTGGAGACTGCCGGACTGGAGGCACTCAGAGGCCGGTGGAATTCCCGGTGTAGTGGTGAAATGCGTAGAGATCGGGAGGAACACCAGTGGCGAAGGCGGCCCACTGGGCCGGTACTGACGCTGAGGCACGAAGGCGTGGGGAGCGAACGGG +>URS00004A8CD5 rRNA from 1 species +CCTTGCCAGCCCGCTCAGAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGTATGTGGTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCCGGAGACCCTTAGGAAACTAGGGGGTGCTTCCATCTGGAAGAATCTGGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGCCTTTAGTTGCCAGCAGTTCGGCTGGGCACTCTAAAGGGACTGCCGGTGTTAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCTTTATGACCAGGGCTACACACGTACTACAATGGCCGATACAAAGGGCAGCGACACTGCGAGGTGAAGCCAATCCCGTAAAATCGGTCTCAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTTGGAATCGCTAGTAATCGTGGATCAGCATGCCACGGTGAATACGTTCCCGGGCCTT +>URS000236C264 lncRNA from 1 species +CTGCATCCTTCCAAACAGAGAAATAGGATGAGAATCAGTATGTCTGAACTATAGGCTAAAGCGGCATGAGGTTCAGGTGCATCAACATGATTCAGTTTCCATGACCAGATTGCTCATTACAAAAATCAAAGCAGAAATATATTCCCTACACTAAAACAGAGTAAAGAGTTAGAAATATCATGGTCTCCAAGGCCACAATCCAGTTATGCACTCAAAAAGTCCAATAACGTCCAGGCTAGCAATTAAACATGCTAGCTTTCAAGTTCAACGATTCAAAGTTTATTGATTTATAACGAATCTTGAGAAGTTCCAAAGGAAGCATGCAGTGCATCATCCTAATCATTAATATCCTAAAATAAGGCTTAAATCAACAACAGCTCCAAGTATGCAGGTATCAAGAATCACCTTTGACAGCTAAATACAAGACATTTCATCTCTAATTGGCAGGTATGCTGGTAAGCTATTACAGAATAACCGATGAACAGGGTAACTATTATTTTGCTTCTTAACTGCCAGGGGGAACCAACTGAAGCATGGCATCTACATAATGTCATGTCTTGTGCCTGCTTCAGTTGCGGATCACTGAAGTAAAAATTCTTTAACCTAAATTAATAAATATACTACCAGAAGCAAGAGAGTCAAAAATGAAATGGATTACTAAGTATTACCAATCACATACATTTCCAACAGTCATATCAGAAGCTTCAAATTAACTAATAGATTTAAGATTTCGAATATCTCCCTCATTCCTTTATAATATTTTGTAGGTCACTTGGAAAGAAACGAATAGGAGGGTTTTGATGGGCTTTATTTGGCCTTTTGTAGATATGGATCATTGGCTCCAAAATTCTCTGTTTTTTTTGCTTAAAGATCATCCTCTCTCCCCTAAGTAGGATCGTGAAGAGCTTGATATTTTGACCAGCTTGCAACCTATGGTTTCGTATATGAATGCCACTTCCTTGCTGTCTTGTTAATATACTTAAAAAAATAATAATAAATTTTTAACCTGCCTTGAGCAGGCTTAAATTTAAGGATTATAACAGCAAGAACTTATTTATTATTTTTAAATATTGATATTAACAATGGTACCAATGGGGCACCACCCATATATAATATATTTACATGTCAATTAAAACTTCAATGACATTTCCAAAATTTTCCGGCCTATTAATGTCATGACCCAAAACCAAGAAACCAAAAATATGAATTCATCTATCTCTAATATTAACAAACTCCCTTTTTATTTCTTCAAATGCTCTAACATTCCTTTCTTTCCACACGACCCAAAAAATAGATAAAGGAATCAGAAGAAGATAAGTTTTCTTTGTACATAAGCCCGCCCAAGCCCACAACTCATCTCTCGCCAACCCTGCAATCACCCAATTGATCCCTAGGAGACCGTACACCATAGACCAAATACCATACACCATTGGGCACCATAGCAAAATATGGTTACATGATTCTGCATCCATCTTAAATAAAAGCAGTGATTAACTAGAATTTTGCCCCTCCACCTCAGCCTATCAATAGTTAGGATGCATTCTCTACTCATTTCACAAGCAACCAAAAAACAATTGTTGGTGGTGCCTTCGTCTTCCATATCTATTTAACTGGATAATGGACAGTTTCACTCCTTTTTCCCCTAGTCAAATGCTTGTAGAAGGTCTTTACAGAGTAATCTTCTTGTTTCCTCAATTTCCACATCAACTGGTCCCTTCGATCATCTAATTGAATTTGAGATAACAGGAGTAATAAGGCTTCATACTCTTCGATAATTATTGAGATTTCTTGTGACGTTCATATTCCACCCCCTACTCCCGCTCGCTGTCAAGTGAGCCTCCTCCGCCACCATGTTCTTTGATGACACAATGGCGAAGATCGCTGGAAACTGATCTTTCAGCCTATCCTCACCAACCCATTCATTCTTTCAAAAATGAATTCTATCGCCCTTATCCACCTTCCTCTTTGTGCATTCAAGAAATTTGTGTTTCTCCACACTAATTTTCTTCTATTCACATCCCTGACGTCCTCACCCACTTCCCTCACACCCCACAGAGCCTCCACAACAAGAACTTATTTATAAGTTGCGAGTGAAATATCAACACCACCTTCCATACACTAAATTATTATTATTGGACATTTGCACAAAGAAGTACTCAAATTAATTTACCATGAAAAGGAAATAATGCTCATACAGTATAATGGCCATTAATAAATGCTATTTTAGAACTCATAAAAGCCACTTAGTGTCTAAAAATTGAACAAATTCAGCTTTCAGATATAAAAGAATTAGATATCCCAGCAAAAAGAGAGAATTTCATGTCATATTATTGTTAGAAACTTGGGACTTCTTGCAAGCATTTTAGCAAATATGAAAAAAATCACAAAAGAACTTTGCCTACTACCATCCTCAGTCTCATCAAACTCCATCCTAATGCGATATACATGACTATGTTGCTTCGGTTTGACCTTGTGCAAAGCCCTAGGCTCTCTATGGTTTTTGCTAAAAAAATGTGACCTGTAATTCTGTGTACAATCATCAAACAATAACTGCACTAAATATCATGCAAATACAAAAAGTTGTTTCCTATCAAGTATTTCACAGTTTCTCTCTCAAAAAGTTTTCCATAGTTTTTTATCTCATGTCATATCTCATTTGTGTAGCATGCATACATACATAATAGTCATAACTGCATGTAAAGAATTGACATGCTAGATACATGACTGAAATAACTTACTGAGAAAGCCAACATGAGAGAAAAACTAAGATGAAGCAAAGCAAAATATCCAGTAAATTTTACTACATCCCATACCTTATACTGGTCATGCTATTAATATGTAGGCAAGTAAAACGACAAGACCTAAGCATGCTTCTTAAAACCAGCTGAGAAAAATTAGACAAAATCTAGCAGAAATTATAATAGATCTATCTCCAAATTGTAGTTTCCTGTTTATGGATGCGAATCAAGAAAAATAAATGCCCAAACTATCATAATGACAAGCAAATGCAAGAAAACAAGTTCACAATACAAAATACAGAAGTACAGATCTATGATATTTCTTTTAAAGATAGGGAGGAAGAAAATATCACAAACAATGTAGAAG +>URS000135D842 rRNA from 1 species +GACGAACGCTGGCGGCGCGCTTAACACATGCAAGTCGAGCGAAGCGGCGGACGGGAGAGTAACACATGAGTAACCTGCCTCAGACATTGGGATAGCCGCGGGAAACCGGGATTAATAGCAAATGGTCTAAGATGGCCTCGCGTCTCATTAGCTCGTTGGTGAGGTAACGGCCCACCAAGGCGACGATGGGTAGTCGGTCTCAGAGGGTGGACGGCCACATTGGAACTGGGAAGCGGTCCAGACTCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGAGGGAGCTATGAAGATTCGATGCCGCGTGAACGAAGAAGGCTTTCGAGTCGTAAAGTTCTTTTATATGGGCAGTGGTACCATAAGACAAAGGCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATAC +>URS0002034EF4 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTGTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGATGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS00025BECD2 rRNA from 1 species +ATGCGGGTGGTTGGACTTGTGGTCATGGAAAGCGCTAGGAAAATACCAAGCTCTAGGGTCACTAACATTAAAGAGGGAGATGCCAACACCCGCTATTTTCACTCGAAGATCAATGGAATTCGGTGGAAAATCCTAATTCACCGCCTTAAGCATGGGAGTGGCGGGGTAACGGATCACGACTACAAGAAGGCCATTATCCATGCTCACTTCTCAGCTATGATGAAAAAGAGCAACCCACGCGCTAAGAGCGTCAATTGGGCTTCCATTCCTGCTGCCGACCATGACCTATCCCATCTTGGGGACCCCATCATGGAGGAGATCAAGGCTGCGATTTTTGCCCTCCCTAGTGACAAGGCTCACGGGCCTGACGAATTCACCGGGAAATTCTGCAAAGAATATTGGGATATTATCAAAGATGGCATCATGCTTGTGATCAATAACTTCTCGGGCCTCCACACGAAAAAAATTCACTGGCTAAACTCGACTAATCTTGCTCTCATCCACAAGAAAGATGGCGTCGAGGACATCACTAACTTAGGCATATTAGGCCCAAGGAGCTTGGAGGATCCATGCGCACTGGCGTGCACTTCCCCTGTTCAGGGCGCCATGACGCAGCCTTTAAAGGAGCAACCGGTAGTCAAGGACGACCTGGTTGGCCACGGCGTCACCGGTGGAGGACACTCGGAAGTTGATGGTGCGGATGGCGGGTGGGGAGGGGGGGTCACCGACGCCGGAGAAGAGTCTGAACCTAGAGGAATGGCGGGGGCAGCGGCAAGGCAATGA +>URS0002234228 rRNA from 1 species +GGTTAAGTTGTTAAGGGCGCACGGTGGATGCCTTGGCACTAGGAGCCGATGAAGGACGGTACTAACACCGATATGCTTCGGGGAGCTGTAAGTAAGCTTTGATCCGGAGATTTCCGAATGGGGAAACCCACTGCTCGTAATGGAGTAGTATCTTCACCTGAATTCATAGGGTGATGATGGCAGACCCGGGGAACTGAAACATCTAAGTACCCGGAGGAAGAGAAAGCAAACGCGATTTCCCAAGTAGCGGCGAGCGAAACGGAAGAAGCCCAAACCAAGAGGCTTGCCTCTTGGGGTTGTAGGACACTC +>URS0000D4A060 sRNA from 1 species +CTCCTGTCTGCAGGATTTACGCGCACGTTGGAACCGAAGAGAGCTCTGTTGTTGCAATGTTCAGCCCACAAGACCTTACTGGTGAAGGAATGGGACAAGACCCATCTTTATGCAAAGCCAGCGTTACAGTAATGTCCCAGCATCTCATAATCTATCCTGGGGAATTCAGCTGCCTCCCAGGGTGAATACAGGTATTCCTGATGACAGTCTGCCTTCTATCTTACAGAGCAGCTTGTTGCTATATACCATTGAAAAGCCTTCAGAGCTGAGAGGTTAGTTGATATTTTTTGTTCCTTACAGCTTATGCCACCAAGTAGGCAGTTTCTATGATGAATCAAACTAGCTCACTATGACCGACAGTGAAAATACATGAACACCTGAGAAACTGGAGAACGCAGGGAGTGGGGGGTAACCATGTCTGAGGAATCTTTCACCCACAGCTTTGTTTTTCTCTAGGTACTACTAACCAATAACCTGCTTGGCTCAAAGGGCCAGCACCTTCTCTCTAAAGCCCAAGAGGAGTTTGAGGTAAA +>URS0001621A90 rRNA from 1 species +ATACAGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGCTTGGTCAGTCGGATGTGAAAGCCCTGGGCTCAACCTGGGAATTGCATTCGATACTGCCAAGCTAGAGTATGGGAGAGGGAAGTGGAATTTCCGGTGTAGCGGTGAAATGCGTAGATATCGGAAAGAACACCAGTGGCGAAGGCGACTTCCTGGCCCAATACTGACGCTGAGGTGGGAAAGCGTGGGGAGCGAACAGGATTAGAAACCCTAGTAGTCC +>URS000183796A rRNA from 1 species +CACGTAGGGTGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCTCGTAGGCGGCTTAGTAAGTCGGGTGTGAAAACCCCAGCTCAACCTGGGGACGCCACCCGATACTGCTATAGCTAGAGTCCAGTAGGGGAGTGTGGAATTCCCAGTGTAGCGGTGAAATGCGCAGATATTGGGAGGAACACCAGCGGCGAAGGCGGCACTCTGGGCTGGAACGTGACGCTGAGGAGCGAAAGCGTGGGTAGCAAACAGG +>URS0001FEE94D rRNA from 1 species +GATGAACGCTGACAGAATGCTTAACACATGCAAGTCTACTTGAACTTCGGTTTGGGTGGCGGACGGGTGAGTAACGCGTACAGAACTTGCCTCACAGTTAGGGACAACATTTGGAAACGAATGCTAATACCTGATATTATGATTTTAGGGCATCCTAGGATTATGAAAGCTATATGTGCTGTGAGAGAGCTTTGCGTCCCATTAGCTAGTTGGAGAGGTAACGGCTCACCAAGGCGATGATGGGTAGCCGGCCTGAGAGGGTGAACGGCCACAAGGGGACTGAGACACGGCCCTTACGCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGACCAAAAGTCTGATCAAGCAATTCTGTGTGCACGATGACGTTTTTCGGAATGTAAAGTGCTTTCAGTTGGGAAGAAAAAAATGACGGTACCAACAGAAGAGGTGACGGCTAAATACGTG +>URS0001E248AA rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCCAGTCGAACGAGACCTTCGGGTCTAGTGGCGCACGGGTGCGTAACGCGTGGGAACCTGCCCTTAGGTTCGGAATAACTCCCCGAAAGGGGTGCTAATACCGGATAATGTCTTCGGACCAAAGATTTATCGTCTTTGGATGGGCCCGCGTTGGATTAGCTAGTTGGTAGGGTAAAAGCCTACCAAGGCGACGATCCATAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCAATGCCGCGTGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTTACCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTG +>URS00001C5077 rRNA from 1 species +AGAGTGGGGGATAACGCAGCGAAAGCTGTGCTAATACCGCATACGATCTAAGGATGAAAGCAGGGGACCGCAAGGCCTCGCGCTCATGGAGCGGCCGATGTCAGATTAGGTAGTTGGTGGGATAAAAGCTTACCAAGCCGACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGAAA +>URS000002F2FF rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGGTAACAGGGGGCTTCGGCCCGCTGACGAGTGGCGGACGGGTGAGTAATACGTAGGAATCTACCTTTTAGTGGGGGATAAACTTAGGGAAACTTAAGCTAATACCGCATAATCACTACGGTGGAAAGCAGGGGCTCGCAAGACCTTGCGCTGATAGATGAGCCTACGTCGGATTAGCTTGTTGGTAGGGTAAAGGCCTACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGGGCAACCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCC +>URS0000AD69CA ncRNA from 1 species +GACCGGAAGGCCGTGTGGACTGTATAGAAGAGAGAATGTTGGCATGAGTAGCGAGAGGTGAGTGAGAATCTCACCCATCGAAAGCCTAAGGTTTCCTGAGGAAGGCTCGTCCACTCAGGGTAAGTCGGGACCTAAGCCGAGGCCGAAAGGCGTAGGCGATGGACAACTGGTTGATATTCCAGTACCACCTTTAAACGTTTGAGAGATGGGGTGACACAGAAGGATAGACTATCGCACTGATGGAATAGT +>URS00025CD331 rRNA from 1 species +ATGGCCAATGGATTTTACACTTCGTCATCGGCCTACAAGGTGCAATTCGAGGGGACTGTGGCCTCCAACATGACACGGGTCGTTTGGGGCAATTGGGGGCCTCCCAAGTGCAAATTATTTGCGTGGCTTGTCATCATGAATCGGGTTTGGACGGCGGATTGGCTTCGGAGGAGAGGATGGCCAAATTATAACTTATGTCAACTCTGTAAGAGGGAGCCTGAGACGGCGGCGCACTTCCTCTTGCATTGCAGGTTCTCCACACGCATTTGGAATGCGGTTAAGTGTTGGCTCGTCGTTCAGGAGTTGGATATCGCCACCTGGGCTGGGATCCCCACGGTCAAGCAATGGTGGGAGAAGACCGTCCTTGGACGAGGTCACAGGAGGAAGGCCGTGTCCTCTCTTCTAATGCTTGTATCATGGGAGCTGTGGAACGAGAGGAATGCGAGGGTGTTCCAAAAGAAAGCCACGATGCCGACCGTTGTGGTCAATCGTATCAAGGCGGAGTCTAGAAATTGGGTTCTGGCCGGGGCAAAACATATGGGATATTTGATGCCGCGAGAGTAG +>URS0001ED03C2 misc_RNA from 1 species +CAAGAAGCCGAAAGGCTACTTAAAACCATCGCGAACTTATCCAAGTTGCTTCGGCGGCGCGGCTCCCCTCACGGGGGACCGCAGCCCCCGCCTCTCAGGAGGTAAGGGGCAGCCGCCGGAGGTACGAAACTCTGTATTATAGTGGTATCTCTGAGTATAAAATAAATAAGTTA +>URS0001607725 rRNA from 1 species +GCAAGTCGAGCGAGAAGCCATCCTCGGGTGGTAAAGAGCGGCGAACGGGTGAGTAACGCGTAGGTATCTACCTAGTAGTGGGGAATAACCATTGGAAACGATGGCTAAAACCGAACGCCCTGAGGGGGAAAACTGAGGTGCTATTAGAGGAGCCTGCGTTAGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCTATAGCTGGTTTGAGAGGATGATC +>URS0001D85733 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCTGCTTTCCCTTGTGGATTGCGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGAGTGATCTGCCCCCAACTTGGGTATAAGCCTGGGAAACTGGGTCTAATTCCCGATAGGACTGCAGGGTGGTGCCTGTGGTGGAAAACGATTTTCTAGTGGTTGGGGATGAGCTCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGGCGACGGGTAGCCGGCCTGAGAGGGTGGACGGCCACATTGGGACTGGGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAGTATTGCACAATGGGCGGAAGCCTGATGCAGCGACGCCGCGGGGGGGATGACGGCCTTCGGGTTGTAAACTCCTTTCGACCGCGAGGAAGCCACCTGGTTGGAAGGGTGGTGACGGTAGTGGTAGAAGAAGCACCGGCTAACTACGTG +>URS00025A5E17 rRNA from 1 species +ATGGGTTTCCGTGACATCCACTGTTTCAACCTGGCTCTGCTTGCAAAACAAGCATGGCGTCTCCTTGATAATCCTGACTCCTTGTGTGCTACTATTCTAAGGGCCAAGTACTATCCTAATGGTGATTTGCTGAACTCCAAGCCAAAGCATGGTGCTTCCTTCACCTGGCAAAGCATTATGGCAGGCATCACTACTCTTAAGCGAGGTTATATTTGGCGAGTGGGGGATGGACATAACATCAATATTTGGGAAGATGCCTGGATCCCAAATTGTGCCTCTAGGAAGATTATGACACCTAGGGGGGGGCATTTGTTATCAAAAGTCGTAGATTTAATTGACCCAGTCTCCAATAATTGGGATGAGGACCTGATTAGACAAACTATGTGGACCGTTGACGTACAACGAATTCTTTCAATCGCAATTTCGCAACATAATATGACGGATTTTATTGCCTGGAGTTATACGAAAAATGGTATGTTTTCGGTACGGTCTGCTTATTTAGTGGAGTGGAACTATCAATATGGGAGCAAGCTAAAATATTCCAATGGGATGGGACGGAGCACACCTAATCCTATATGGTGTCAGATATGGAAGTTGTCTTGTCTGGCTAAAGTCAATTTTTTTATGGCGGACACTACATGGCACTCTCCCATGCCGGGCAACACTCACTAA +>URS00017A11C2 rRNA from 1 species +TACGGAGGGTGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGCTTTTTAAGGGTGCGGTGAAAGCCCGGGGCTTAACCCCGGGTCGGCCGTGCCGACTGAAAAGCTGGAGCACTGTAGAGGCAGGTGGAATTCCGGGTGTAGCGGTGGAATGCGTAGAGATCCGGAAGAACACCAGTGGCGAAGGCGGCCTGCTGGG +>URS00012833E7 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGACCCTTCGGGGTTAGTGGCGGACGGGTGAGTAACACGTGGGAACGTGCCTTTTGGTTCGGAATAGCTCCTGGAAAGGGGTGGGAATGCCGAATGTGCCCTTCGGGGGAACGATTTAACGCCTTTAGAGCGGCCCGCGCCTGATTAGCTGGTGGGTTGGGGTAATGGCCCACCAAGGCTACGATCAGTAGCTGGTCTGAGAGGATGACCAGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCCGCAGTGGGGAATCTTGCGAAATGGGCGAAAGCCTGACGCAGCCATGCCGCGTGGATGATGAAGGTCTTAGGATTGTAATATCCTTTCACCGGTGAAGATAATGACTGTAGCCGGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCCGCCGCGGTAAGAC +>URS0001D3FFBA rRNA from 1 species +AGTGAACGCTGGCGGCATGCTTAACACATGCAAGTCGCACGGGCAGCAATGTCAGTGGCGGACGGGTGAGTAACACGTAGGAATGTGTCTTGAGGTGGGGGACAACCCTGGGAAACTAGGGCTAATACCGCATATGTCCTGAGGGACAAAGCAGCGATGCGCCTTGAGAGTAGCCTGCGTCCGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGGGTGAAGAAGGTCTTCGGATCGTAAAGCCCTTTCGGCGGGGACGATGATGACGGTACCCGCAGAAGAAGCCCTGGCTAACTTCGTG +>URS0000E6A59F rRNA from 1 species +ATCTACAGCCATACCACCCAGAAGGCTCCCAATCTCGTCTGATCTTGAAAGCTGAGCAGGGTTGGGCCTGGTTAATACTTGGATGGTAGAAAACAGTGTGAAGTCGAGG +>URS00000EB6A6 rRNA from 1 species +CTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCAGTGAGGAAGGTGGGTATGTTAATAGCATACTCATTTGACGTTAGCTGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCATGCAGGTGGTTTGTTAAGTCAGATGTGAAAGCCCGGGGCTCAACCTCGGAATTGCATTTGAAACTGGCAAACTAGAGTACTGTAGAGGGGGTAGAATTTCAGGTGTAGCGGTGAAATGCGTAGAGATCTGAAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAGATACTGACACTCAGATGCGAAAGCGTGGGGAGCAAACAGGATTAGATAACCTGGTAG +>URS000167F6B8 rRNA from 1 species +TACAGAGGTGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCGCGTAGGCGGCCTTCTAAGTCAGACGTGAAATCCCCCGGCTTAACCTGGGAACTGCGTCTGATACTGGGAGGCTAGAGTGCGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAATACCGGTGGCGAAGGCGGCATCCTGGACCGGCATTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0000D6C981 ncRNA from 1 species +AAAGGGCCAAAGGCGCCCGGACGAGGTGCGCCGTACCCGGCCAGCGACAAGACGGCGTAAG +>URS0000E05209 SRP_RNA from 1 species +GCCATGAGCGATGTCACCCACCTATAATCCAGCTACCAGGGAAGCTGAGCCTGGTAGATCTTTAGTTTAAGAGTTCTGAGCTTTAGTGAGCCATGTTGATGGGATGTTCACACTAAGTTTGGCATCAGTGTGGTGAGCCCCTGGAATTAGAGGACCACTAGGTTGTCTAAGAAGGGTTACAAATGGGAGCAGGTTAGAGCTCCCAGACCACTTAGTAGTGGGATCAGGCCTGTGAGCAGCCCCTGTACCAGTTCCAGCTCAGAGTGAGATGGAGAGACCCAGTCTTT +>URS0000BAE8CB rRNA from 1 species +CCTACGGGACGCAGCAGTGAGGAATATTGGTCAATGGCCGGGAGGCTGAACCAGCCAAGTCGCGTGAGGGAAGACGGCCCTACGGGTTGTAAACCTCTTTTGTCAGGGAGCAAGGTGCAGGTCGGGACCTGCTGTGAGAGTACCTGAAGAAAAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAAAACGTAGGGTGCAAGCGTTGTCCGGAATTACTGGGTGTAAAGGGAGCGCAGGCGGATTGACAAGTTGGGAGTGAAAACTACGGGCTCAACCCGTAACCTGCTTTCAAAACTGTCAGT +>URS00000F1EB4 rRNA from 1 species +GCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAACCTTCGGGTTAGTGGCGGACGGGTGAGTAACGCGTGAGAATCTGCCCTCAGGAGGGGGATAACGGTTGGAAACGACCGCTAATACCCCATATGCCGCGAGGTGAAATGAATTTCGCCTGAGGATGAGCTCGCGTCTGATTAGTTAGTTGGTGGGGTAAAGGCCTACCAAGACATCGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGGGATGAAGGCCTCTGGGCTGTAAACCTCTTTTATCAAGGAAGAAGATCTGACGGTACTTGATGAATAAGCCACGGCTAATTCCGTGCCAGCAGCCGCGGTAATACGGGAGTGGCAAGCGTTATCCGGAATTATTGGGCTTAAAGCGTCCGCAGGCGGTCTGTCAAGTCTGCTGTTAAAGCGTGGAGCCTAACTCCATTTCGGCAGTGGAAACTGACAGACTA +>URS0000D30CB5 rRNA from 1 species +GGATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGGGTGAAGAAGGCCCTAGGGTTGTAAACCCCTTTCAGCGGGGAAGATAATGACGGTACCCGCAGAAGAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGACCTGCAAGTCGGGGGTGAAAGCCCGAGGCTCAACCTCGGAACTGCCTTCGATACTGCGGGTCTCGAGTCCGGGAGAGGTGAGTGGAATTCCTAGTGTAGAGGTGAAATTCGTAGATATTAGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGCCCGGTACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAA +>URS00003ED92D rRNA from 1 species +AACTTCTGAATGTTGACCTCGGATCAGGTAGGAATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGAAAAGAAACCAACAGGGATTGCCCTAGTAACGGCGAGTGAAGCGGCAACAGCTCAAATTTGAAATCTGGCTCTCGGGCCCGAGTTGTAATTTGTAGAGGATACTTTTGATGCGGTGCCTTCCGAGTTCCCTGGAACGGGACGCCATAGAGGGTGAGAGCCCCGTCTGGTTGGATGCCAAATCTCTGTAAAGTTCCTTCAACGAGTCGAGTAGTTTGGGAATGCTGCTCTAAATGGGAGGTATATGTCTTCTAAAGCTAAATACCGGCCAGAGACCGATAGCGCACAAGTAGAGTGATCGAAAGATGAAAAGCACTTTGAAAAGAGAGTTAAAAAGTACGTGAAATTGTTGAAAGGGAAGCGTTTATGACCAGACTTGGGCTTGGTTAATCATCTGGGGTTCTCCCCAGTGCACTTTTCCAGTCCAGGCCAGCATCAGTTTTCCCCGGGGGATAAAGGCGGCGGGAATGTGGCTCTCTTCGGGGAGTGTTATAGCCCACCGTGTAATACCCTGGGGGGGACTGAGGTTCGCGCATCTGCAAGGATGCTGGCGTAATGGTCATCAACGACCCGTCTTGAAACACGGACCAAGG +>URS00001448B3 rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCCCAGCAATGGGAGCGGCAGACGGGTGAGTAACACGTGGGAACCTTCCCTATAGTACGGAATAGCCCAGGGAAACTTGGAGTAATACCGCATACGCCCGAGAGGGGAAAGATTTATCGCTATAGGATGGGCCCGCGTAGGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCCTTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCTTAGGTGTAAGCTCTTTGCCGGGGACGATAATGACGGTACCCGGAGAATAAGCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAAT +>URS000098BB64 pre_miRNA from 1 species +TTTTTAGTATCAGTATGTCCCATACAGTATTGGGGACATACTGATGCTAAAA +>URS0001061001 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGATTCATTGGGCGTAAAGAGCGTGTAGGCGGCCAGGTAGGTCGGTTGTGAAAACTGGAGGCTCAACCTTCAGAGGTCGACCGAAATCATCTGGCTAGAGTCCGGGAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAAGCGGCTCTCTGGAACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0000C64DF9 hammerhead_ribozyme from 1 species +ATCCAGCTGACGAGTCCCAAATAGGACGTGACGCGCGTCGTGTAT +>URS000215D057 rRNA from 1 species +TTAAGCGACTAAGCGTACACGGTGGATGCCCTGGCAGTCAGAGGCGATGAAGGACGTGCTAATCTGCGATAAGCGTCGGTAAGGTGATATGAACCGTTATAACCGGCGATTTCCGAATGGGGAAACCCAGTGTGTTTCGACACACTATCATTAACTGAATCCATAGGTTAATGAGGCGAACCGGGGGAACTGAAACATCTAAGTACCCCGAGGAAAAGAAATCAACCGAGATTCCCCCAGTAGCGGCGAGCGAACGGGGAGCAGCCCAGAGCCTGAATCAGTGTGTGTGTTAGTGGAAGCGTCTGGAAAGGCGCGCGATACAGGGTGACAGCCCCGTACACAAAAATGCACATGCTGTGAGCTCGATGAGTAGGGCGGGACACGTGGTATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCACGCTTAGGCGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGAAGGGAAACCGAGTCTTAACTGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACTTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAATTCATCTCCGGGGGTAGAGCACTGTTTCGGCAAGGGGGTCATCCCGACTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCCCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAACCATGCACCGAAGCTGCGGCAGCGACACTATGTGTTGTTGGGTAGGGGAGCGTTCTGTAAGCCTGTGAAGGTGTGCTGTGAGGCATGCTGGAGGTATCAGAAGTGCGAATGCTGACATAAGTAACGATAAAGCGGGTGAAAAGCCCGCTCGCCGGAAGACCAAGGGTTCCTGTCCAACGTTAATCGGGGCAGGGTGAGTCGACCCCTAAGGCGAGGCCGAAAGGCGTAGTCGATGGGAAACAGGTTAATATTCCTGTACTTGGTGTTACTGCGAAGGGGGGACGGAGAAGGCTATGTTGGCCGGGCGACGGTTGTCCCGGTTTAAGCGTGTAGGCTGGTTTTCCAGGCAAATCCGGAAAATCAAGGCTGAGGCGTGATGACGAGGCACTACGGTGCTGAAGCAACAAATGCCCTGCTTCCAGGAAAAGCCTCTAAGCATCAGGTAACATCAAATCGTACCCCAAACCGACACAGGTGGTCAGGTAGAGAATACCAAGGCGCTTGAGAGAACTCGGGTGAAGGAACTAGGCAAAATGGTGCCGTAACTTCGGGAGAAGGCACGCTGATATGTAGGTGAAGTCCCTCGCGGATGGAGCTGAAATCAGTCGAAGATACCAGCTGGCTGCAACTGTTTATTAAAAACACAGCACTGTGCAAACACGAAAGTGGACGTATACGGTGTGACGCCTGCCCGGTGCCGGAAGGTTAATTGATGGGGTTAGCCGCAAGGCGAAGCTCTTGATCGAAGCCCCGGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGCGTAATGATGGCCAGGCTGTCTCCACCCGAGACTCAGTGAAATTGAACTCGCTGTGAAGATGCAGTGTACCCGCGGCAAGACGGAAAGACCCCGTGAACCTTTACTATAGCTTGACACTGAACATTGAGCCTTGATGTGTAGGATAGGTGGGAGGCTTAGAAGTGTGGACGCCAGTCTGCATGGAGCCGACCTTGAAATACCACCCTTTAATGTTTGATGTTCTAACGTTGACCCGTAATCCGGGTTGCGGACAGTGTCTGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCTAAAGAGTAACGGAGGAGCACGAAGGTTGGCTAATCCTGGTCGGACATCAGGAGGTTAGTGCAATGGCATAAGCCAGCTTGACTGCGAGCGTGACGGCGCGAGCAGGTGCGAAAGCAGGTCATAGTGATCCGGTGGTTCTGAATGGAAGGGCCATCGCTCAACGGATAAAAGGTACTCCGGGGATAACAGGCTGATACCGCCCAAGAGTTCATATCGACGGCGGTGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGAAGTAGGTCCCAAGGGTATGGCTGTTCGCCATTTAAAGTGGTACGCGAGCTGGGTTTAGAACGTCGTGAGACAGTTCGGTCCCTATCTGCCGTGGGCGCTGGAGAACTGAGGGGGGCTGCTCCTAGTACGAGAGGACCGGAGTGGACGCATCACTGGTGTTCGGGTTGTCATGCCAATGGCACTGCCCGGTAGCTAAATGCGGAAGAGATAAGTGCTGAAAGCATCTAAGCACGAAACTTGCCCCGAGATGAGTTCTCCCTGACCCTTTAAGGGTCCTGAAGGAACGTTGAAGACGACGACGTTGATAGGCCGGGTGTGTAAGCGCAGCGATGCGTTGAGCTAACCGGTACTAATGAACCGTGAGGCTTAACCTT +>URS00016AAB81 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCTTAACACATGCCAGTCGAGCGAGCGTCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTCGCTAATACCGCATTCCATCCTATGTGCCCATATGGGATTAGCTAGTAGGTGGGGTAATGGCTAACCTAGGCGACGCTCCCTAGGTGGTCTGAGAGGATGACCAGCGAGACTGGAACTGAGAGACGGACGAGACTAGTACGGGAGGCAGCAGTGGGGAATAGTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCGTTCGGGTTGTAAAGAACGTTCAGCGAGGAGGCGTTACTCGCAGAAGAAGCAACGGCTAACTCCGTGCCAGCAGCAGCGGTAATTC +>URS00018C3972 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGAATCATTGGGCGTAAAGCGCGCGCAGGCGGTTAATTAAGTTGGGTGTTTAAGCCCGGGGCTCAACCCCGGTTCGCATCCAAAACTGGTTGACTTGAGTGTAGGAGAGGAAAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGCCTATAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGG +>URS00007617FE rRNA from 1 species +TACGTAGGGGGCGAGCGTTGTCCGGAATTACTGGGCGTAAAGAGAGCGTAGGCGGCACTACAAGTCTCATGTGAAATACCCGGGCTTAACTTGGGGGTTGCATGGGAAACTGTAGAGCTTGAGTACAGGAGAGGCAAGCGGAATTCCTAGTGTAGCGGTGAAATGCATAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTACTGGACGGCAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGG +>URS0000A668E1 tRNA from 1 species +TCTAAAATGACAGATGAATGTATAAGATTTAAGCTCTTACCATGGAGATTTATTCTTCTTTTAGAATC +>URS0001CAF6B7 misc_RNA from 1 species +GATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGACCGCCAGTATTCTGGCGGGCATGCCTGTTCGAGCGTCATTTCAACCATCAAGCCCCCGGCTTGTGTTGGGGACCTGCGGCTGCCGCAGGCCCTGAAAAGCAGTGGCGGGCTCGCTGTCACACCGAGCGTAGTAGCATACATCTCGCTCTGGGCGTGCTGCGGGTTCCGGCCGTTAAACCACCTTCATAACCCAAGGTTGACCTCGGATCAGGTAGGAAGACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS0001A89386 rRNA from 1 species +TAGAATTAGGGTTCGATTTCGGAGAGGGAGCATGAGAAACGGCTACCACATCTAAGGAAGGCAGCAGGCGCGTAAATTACCCAATCCTGACTCAGGGAGGTAGTGACAAGAAATAGCAAACCGGGAACCTCATGGTTTCACGGTATTGCAATGAGAACAATTTAAAACCCTTAGCGAGAATCAAGTGGAGGACAAGTCTGGTGCCAGCACCCGCGGTTATTCCAGCTCCACTAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAACCTCTGTCTGGGGCTAGTTTTGGCTTTGGTCAGGCTAGTTCTAGGCATCCGCCTACAAGACTTAGAGGGCATTCAGTTGTTCACTAGGAGTAGTAGGCATTTTACTTTGAAAAAATTAGAGTGTTTAAGGCAGGCAATCGCCCGCATATATTAGCATGGAATAATAGAATAGGACACTTTTCCATTTCGTTGGTTATTGGAATCGTGTAATGATTAATAGGGACAGTTGTGGGCATTTGTATTTAGTTGTCAGAGGTGAAATTCTTGGATTTATTAAAGACAAACTAACGCGAAAGCATTTGCCAAGGGTGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCAAAGACGATCAGATACCGTCCTAGTCTTAACTACAAACTATTCCGACTCAATGTTTGACTGGCTTATATAACCAGTTGAGCGTTGTATGAGAAATCAAAGTCTTTAGGTTCTGGGGGGAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGAGCACAACCAGGAGTGGATTCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTTAAAACAATAGTGGGATTGACAGTTTGAGAGCGCTTTCTTGATTGGTTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGCTTAATTGCGTTAACGAACGAGACCTTAACCTGCTTACTAGACTGGCGATCATCAATCGTTAGCTCTTCTTAGAGGGACTTTGGTTGTTTTAACTCCAAGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATATCCTGGGCCGCACGCGTCATACAATGACTAGTTCAGAAAGTTTTCTCCTGACCCGAAAGGGGATGGGTAATCTTGATAATACTAGTCGTGTTAGGGATCGATCTTTGCAATTATAGATCTTGAACGAGGAATTCCTAGTAAGTGCGGTTCATCAGACCGTACTGATTACGTCCCTGCTCTTTGTACACACCGCCCGTCGCTTCTACCGAGTGGGTGGTCCGGTGAGATAATTGAACTTCGCAGGTAACTGAGAGGAAAGATTATCAAACCTATCCACCTCGAGGAAGAAGAAGTCGTAACAAGGTT +>URS00018335DB rRNA from 1 species +TCTACGGGTGGCAGCAGTGAGGAATATTTGTCAATGGGCGTAAGCCTGAACCAGCCAAGTCGCGTGAGGGATGAAGGTTCTATGGATCGTAAACCTCTTTTATAAGGGAATAAAGTGTGGGACGTGTCCTATTTTGTATGTACCTTATGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCAGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGCCTTGTAAGTCAGCGGTGAAAGTCTGTGGCTCAACCAAGGAATTGACGTTGAAACTGGGGGGCTTGAGTATGTTTGAGGCAGGCGGAATGCGTGGTGTAGCGGTGAAATGCTTAGATATCAGGCAGAACACCGATTGCGAAGGCAGCCTGCCAAGCCATGACTGACGCTGATGCACGAAGGCGTGGGGATCAAACAGGATTAGATACCCGAGTAGTC +>URS00021B9194 rRNA from 1 species +GCTTGTCTCAAAGATTAAGCCATGCATGTCTAAGTATAAATAGTATACAGTGAAACTGCGAATGGCTCATTAAAACAGTTATAGTTTATTTGATAATTGAAAATTACATGGATAACCGTGGTAATTCTAGAGCTAATACATGCTATCAAGCCCGACTTCTTGAAGGGTTGTATTTATTAGACTTAAGCCAATATTCCTTGTGTCTATTGCGATGATTCATAATAACTGATCGAATCTCAAATTTGAGATAAATCATTCAAGTTTCTGCCCTATCAACTGTCGACTGTGATATAGACGCTCACAGTGGTTTTGACGGGTAACGGGGAATCAGGGTTCGATTCCGGAGAGGGAGCCTTAAAAACGGCTACCACATCCAAGGAAGGCAGCAGG +>URS0000AFABFB rRNA from 1 species +TAAGGAATATTGGACAATGGGCGGGAGCCTGATCCAGCCATGCCGCGTGAAGGATGAAGGCGCTCAGCGTTGTAAACTTCTTTTGGACGGGAACAATATCCCCGACTTGTCGGGGCTTGAGGGTACCGTCAGAATAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTATCCGGAATCACTGGGTTTAAAGGGTGCGTAGGCGGTCTTGTAAGTCAGTCGTGAAATCGCTGGGCTCAACCCATGCAATTGCGATTGATACTGCTAGACTTGAATGGGGTTAAGGCAGGCGGAATGTGGCATGTAGCGGTGAAATGCTTAGATATGCCATAGAACACCGATTGCGAAGGCAGCCTGCTGGGCCTTTATTGACGCTGAGG +>URS0001536541 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGATTGACTGGGCGTAAAGGCGCGTAGGCGGTTTGTACAGTCAGACGTGAAATTCCCGGGCTCAACCTGGGGGCTGCGTTTGATACGTGCAGACTTGAGTTCGGAAGAGGGTCGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCGGTGGCGAAGGCGGCGACCTGGTCCGATACTGACGCTGAGGCGCCGAAAGCGTGGGGAGCAAACAGG +>URS0000DB123A rRNA from 1 species +GGATGCGATCATACTAGTACTGAGGCACCGAATCCCATCAGAACTCCGAAGCTAAGCGTGCTTGGGCGAGAGTAGTACAAGGATGGGAGACCCCCGAGAAGTCCTCGTGTTGCATCCC +>URS00009B63B2 lncRNA from 7 species +CACACTCTGACGTTGAAACAGTTTCCATGCAGAGCGCCCCCTCTCCGCCTCCCAGTGCCCCAGGTGCCTCAGGTGTAGAGGGACTGAAGATTTTCGGGGGGCTAGCGGAATGTCAGCACTACTACTAGTGCCCATACGGCAGAATGAACTGTTTCCATGAAAACGGGGCCTAAGGAGTTGGCATCCTTATGACAGAACAGTATTTTAAAAGTCAAGGATGCCCTAAGAGCATTTCAGAAAGAGAAGATCACTTTGGGGTCCTCAAGATGGCTCACTGGGTGAGGGCACATCACCTCTAAGCATGGCAACAGGGGTTCAGTGCCTGCACCCCACACTGAGGAAGGAGGAAACGGACTCCCTCAAATCATCATCCGACCCCCACATCTGAGCAAGATCCGCCTCCCCCTCCAACACACGCA +>URS0000351846 rRNA from 1 species +AGAGTTTGATCCTGGCTCAGATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGTAGAGGGGCAACCCTTGAGAGTGGCGAACGGGTGAGTAATGCATCGGAACGTGCCCAGTCGTGGGGGATAACGCAGCGAAAGCTGTGCTAATACCGCATGTGATCTGTGGATGAAAGCAGGGGACTTGGTAGCAATACTGGGCCTTGTGCGATTGGAGCGGCCGATGTCAGATTAGCTAGTTGGTAGGGTAAAAGCCTACCAAGGCGACGATCTGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCCACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGCAGGACGAAGGCCTTCGGGTTGTAAACTGCTTTTGTACGGAGCGAAACGGTCTGGGTTAATACCCTAGGCTAATGACGGTACCGTAAGAATAAGCACCGGCTAACTACGTGCCAGCCGCCGCGGTAATAC +>URS000003707E rRNA from 1 species +AATGGCCTAACGGCTGAACCAGCAACTTGGAAGAATGTAGGTGTATTAATATTAATTAATGCAATAACGATTCTATCGTATAAAATTCTAAATAGATTAATGATAATGACTATTATCTGTTTATAAGTCTTGACCAAATTGCGTGCCAGCAGTCGCGGTAATACGTAGAAGACTAGTGTTAGTCATCTTTATTAGGTTTAAAGGGTACCTAGACGGTAAATTAAACCTTAACGGGTACTTTTTTACTAGAGTTTTATATGAGAAGGGGAGTATCCTTGAAGTAATGTTATAATATTTTAATAACAAGGAGACTGGTAAAGGCGAAGGCTGCCTTCTATTAAAAACTGACGTTGAGGGACGAAGGCTTGGGTAGCGAGAAGGATTAGATACCCTAGTAGTCCAAGCAGAAAATTATGAATGTCATAAGCTAGATTAGACTTTACAATTAAAACACTAATATATTCGGGATATTAGAAATAAAGAGTAGTTTAACTAAATAGGGTGTTAACTATAAGGAGGACAACCGCCTATAGGTAGTCTCTTCTAATGTAAGTAAATTTTAGCTTATAAATGAAAGTGTAAGCATTCCACCTCAAGAGTAAAATGGCAACATTTAAACTGAAATCATTAGACCGTTTCTGAAACCAGTAGTGAAGTATGTTAGTTAATTCGATAGTCCGCGAAAAACCTTACCACAATTTGTATATTATTAAATTATTACACGAGCTGCATGGCTGTCTTTAGTTAATGTCGTGAGATCTGGTTAACTCCTTTAATTAACGAAAACCCTCACCTTATTTATTTACATAAAGTGGTTCACCGCTATATTGGATTTGATAAGAGGGATTAAGACAAGTCATCATGGCCATAATATTGT +>URS00004A8811 rRNA from 1 species +CGGACGGGTTAGTAACGCGTGGGAACGTGCCCAGATCTAAGGAATAGCCACTGGAAACGGTGAGTAATACCTTATACGCCCTTCGGGGGAAAGATTTATCGGATTTGGATCGGCCCGCGTTAGATTAGGTAGTTGGTGGGGTAACGGCCTACCAAGCCTACGATCTATAGCTGGTTTTAGAGGATGATCAGCAACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTAGACAATGGGGGAAACCCTGATCTAGCCATGCCGCGTGAGTGATGAAGGCCCTAGGGTCGTAAAGCTCTTTCGCCAGGGATGATAATGACAGTACCTGGTAAAGAAACCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGGGTTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGATTGGTAAAGTTGGGGGTGAAATCCCGGGGCTCAACCCCGGAACTGCCTCCAAAACTTCCAGTCTTGAGTTCGAGAGAGGTGAGTGGAACTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGCTCGATACTGACGCTGAGGCGCGAAAGTGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACACCGTAAACGATGAATGCCAGTCGTCGGGCAGTATACTGTTCGGTGACACACCTAACGGATTAAGCATTCCGCCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGCAGAACCTTACCAACCCTTGACATCCTGATCGCGGTTAGTGGAGACACTTTCCTTCAGTTCGGCTGGATCAGTGACAGGTGCT +>URS0001995650 lncRNA from 1 species +ATGCCTCGGGGTCACAATGCAGAGAAGGAACACTTCGCTCTGGACGCCCGGAGAGGGACAGCTGGCCTGGGTGTGCCAGCTTCCAAAGGGCGGGAGGGACTTCATCAGGGAGACCATCCGTCCAGGCGGCCCCCAGGGTCTGAAATGGCCAAGGCGTCCAGGCGGCCCCCAGGGTCTGAAATGGCCAAGGCGGGGTCCCGTCCGCCCCCTCCCCCGCAGGGCAGCCCGGGTCCCCAACGTGGGCCGGGGCGCGGGGGCGGCAGGTTTCCGGCCGGTCCCACCCAGGTCCCACCCAGCCGACTGGCCGGGGCGGGGACCCCCCAACCCCCCCAACCTTCCCGGCCCCCCCCCCCCCCGCCGGCCTCCCCAGCCCAGCCTGGTCCCGGGTCCGGAGGCGGGCGAGAGGCAGGGGGGAGGCAGAGGGGAGGGGCGGGGGGGGAGCGGGGGGAGGCGGGCTGGAGGCAGGGGGGAGGCGGGCGGGCGGGGAGGGAGCAGGGGGCAGGCGGGCGGGAGGCAGGGGGGAGACAGAGGGGAGGGGCGGGCGGGGGGGAGCAGGGGGGAGGCGGGCGAGAGGCAGCGGGGAGGCGGGAGCGAGCGGGCCGCTGCCCGGAGGCCGCGCCGCCCCGGCGCAAACATTTCCTTATGTGGTGGCTCCGCGGGGCCGGGGCGGCGCCGGGGGCTGCGGGGACGGCGGCCACGCCCGGGGCCTCGCGGCCACCCTGGCCCTCGGCTGGGCCGCCGCGCCGCGCCTGCTGGACGAGACCAAGAGGGGAGGCCCCCGCCCCGCGTGTCCCCCGCAGCGCGTCCCTCGTTCCCCTGAAGGAGGAGCAGACCCTGTGGCGCCCCGACTTGGCCCGCGCTTGTGGGGGCTCCCGGGTCCGGACGAAGAGGGGGCGCGGGGTCCCCCGGCCCGCCACCTCCCTGCCCCTCCCCGGCGCAGCCGCCCAGCGCCGCAGCCTCCTTGGCCTTGGGAGCTGCATTTGGGGGTGGAGGGATAGCGGGGCGACGGCGGGGGGATGGCCCAGGGCCGGAGCGGCGAGTGCCTCACTGGAAATGTCGCGGCTCTCGGCGGGCTCCAGGCTCCAGGCTCCAGGCTGCAGCCCTCCCGAGAGAGCTCGGCCTCAAAACCTGGAGCCCGCGGCTGCCTTCCTGCGGCCAGGGCGTCCCGAGCCTGAGGAGTGCGACCCGGCTCCGACACCCCCACCCCCACCCCCACCCGAGCTTCGCAGGTGTCTGCTCCGACCCCCCAAACTGTCCTGGGGCCTCAGGCCGGCCTCCTCGCCAATTGCAGCCTTTGAGCCAACTTTCATAGCTGATAGGGCAGGTTCCCTATGGGATATTTATTAA +>URS0000856D3B rRNA from 1 species +TACGTAGGGAGCAAGCGTTGTCCGGAGTTATTTGGCGTAAAGCGCTCGTAGGCGGTTCCGTAAGTCGGGTGTGAAAAATCTGGGCTCAACCCAGTGGAGCACCCGATACTGCGGTGACTCGAGTCCGGTAGGGGAGTGTGGAATTTCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGACGGCGAAGGCAGCACTCTGGGGCGGTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCAAACAGG +>URS0001FB44EA rRNA from 1 species +ACGAACGCTTGCGGCGTGCCTAAGAAATGCAAGTCGAGCGGGGACAGCAATATCCTAGCGGCGAACGGTCGCGTAACACGTAAGCAACCTGCCTCAAAGACCGGGACAACATTCCGAAAGGAGTGCTAATACCGGATGTGGCCACCTTTTCGCATGTTTAGGTGATTAAATCAGGAAACTGGCTTTGAGAGGAGCTTGCGGCCTATCAGCTAGTTGGTGGGGTAACGGCCTACCAAGGCGACGACGGGTAGCTGGTCTGAGAGGACGATCAGCCGGACTGGGACTGAGATACGGCCCAGACTCCTACGGGGGGCAGCAATTAGGAATCTTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGGAGGAGGAAGTCCTTCGGGATGTAAACTCCTTTTAGGTGGGAAGAAACAAATGACGGTACCACCTGAATAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTGTCCGAAGTTACTGGGCGTAAAGCGCGCGTAGGCGGGTCGTTAAGTGGGAAGTGAAAGGCTGGGGCTCAACCCCATGCAGTGCTTCTCATACTGGCGGTCTTGAGTGAGGTAGGGAGAAGTGGAATGGCTGGTGTAGCGGTGAAATGCGTAGATATCAGTCGGAACACCGGTGGCGAAGGCGGCTTCTTGGGCCTTTGCTGACGCTGATGCGCGAAAGCCAGGGGAGCGAACGGGATTAGATACCCCGGTAGTCCTGGCCGTAAACGATGGATACTAGGTGTAGGGGGTATCGACCCCCCCTGTGCCGCAGCTAACGCATTAAGTATCCCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACTCTTGACATCCTGCGAACTTGGCTGAGAGGCTGAGGTGCCGAAAGGAGCGCAGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTACCATCATTAAGTTGGGGACTCTAAGGAGACTGCCGGTGATGAACCGGAGGAAGGCGGGGACGACGTCAAGTCATCATGGCCTTTATGGGTAGGGCTTCACACGTCATACAATGGTCGGTACAGAGGGTCGCCAACCCGCGAGGGGGAGCTAATCTCACAAAGCCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGCGGATCAGCATGTCGCGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTTCACCAGAAGAGGGTAGCCTAACCGCAAGGAGGGCGCTCGCCACGGTGAGATTCATGACTGGGGTG +>URS00021EF114 pre_miRNA from 1 species +GCTGGTTTCCGATGGTGGCTTAGAGTGCGGTCCTCCATCTAGCACCATTTGAAATCAGTG +>URS000103BC31 rRNA from 1 species +TACGTAGGGTGCGAGCGTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTTGGAGCTTAACTCCGAAACTGCATTCGATACTGCCGTGCTTGAGGACTGGAGAGGAGACTGGAATTTACGGTGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTCCTGACGCTGAGGCACGAAGGCCAGGGGAGCAAACGGG +>URS00005A39E1 rRNA from 2 species +GGGATGGGGGGCATGCTATACATGCAAGTCGAGCGAACTGATTAGAAGCTTGCTTCTATGACGTTAGCGGCGGACGGGTGAGTAACACGTGGGCAACCTGCCTGTAAGACTGGGATAACTCCGGGAAACCGGAGCTAATACCGGATAACATTTTCTCTTGCATAAGAGAAAATTGAAAGATGGTTTCGGCTATCACTTACAGATGGGCCCGCGGTGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTACAAGAGTAACTGCTTGTACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGGAACTTGAGTGCAGAAGAGAAAAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGGCTTTTTGGTCTGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCTGGTAGTGCACGCCGTAAACGATGAGTGCTAAGTGTTAGAGGGTTTCCGCCCTTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTCTGACAACTCTAGAGATAGAGCGTTCCCCTTCGGGGGACAGAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGATCTTAGTTGCCAGCATTTAGTTGGGCACTCTAAGGTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGATGGTACAAAGGGCTGCAAGACCGCGAGGTCAAGCCAATCCCATAAAACCATTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGAAGCTGGAATCGCTAGTAATCGCGGATCAGCATGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGGGGTAACCTTTATGGAGCCAGCCGCCTAAGGTGGGACAGATGATTGGGGTGAAGTCGTAACAACAGC +>URS000041F567 rRNA from 1 species +TGGATCCAGACTTTGATCATGGCTCAGGACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAAGCTTGACGAATGATTTCTTCGGAATGAATTCCGATATGACTGAGTGGCGGACGGGTGAGTAACGCGTGAGGAACCTGCCCTTCAGAGGGGGATAGTGTTTGGAAACGAACAGTAATACCGCATAATGTATTTTTACCGCATGATAGAAATACCAAAGATTTATCGCTGAAGGATGGCCTCGCGTCTGATTAGATAGTTGGTGGGGTAACGGCCTACCAAGTCGACGATCAGTAGCCGGACTGAGAGGTTGAACGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGGGAAACCCTGATGCAGCAACGCCGCGTGAAGGAGGACGGTTTTCGGATTGTAAACTTCTGTTCTTAGTGAAGAAAAATGACGGTAGCTAAGGAGCAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTACTGGGTGTAAAGGGGGCGCAGGCGGGAGAGCAAGTCAGTTGTGAAATCCATGGGCTTAACCCATGAACTGCAGTTGAAACTGTTCTTCTTGAGTGAAGTAGAGGTTGGCGGAATTCCGAGTGTAGCGGTGAAATGCGTAGATATTCGGAGGAACACCGGTGGCGAAGGCGGCCAACTGGGCTTTTACTGACGCTGAGGCCCGAAAGTGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACACTGTAAACGATGATAACTAGGTGTGGGGGGACTGACCCCTTCTGTGCCGCAGCTAACGCAATAAGTTATCCACCTGGGGAGTACGACCGCAAGGTTGCAACTCAAAGGAATTGACGGA +>URS000022D4E2 rRNA from 1 species +CGGACGGGTGAGTAACGCGTGGGGAACCTGCCCTGTACAGGGGGATAACACTTAGAAATAGGTGCTAATACCGCATAAGCGCACAGTATCGCATGGATACAGTGTGAAAAACTCCGGTGGTACCAGGATGGACCCGCGTCTGATTAGCTGGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCAGTAGCCGGCCTGAGAGGGTGAACGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGAAGGCAGCAG +>URS00023619E2 lncRNA from 1 species +AGCACAGATCCATTAAGGCTGACCACAAATTGATCATAATGTTTGTGAATAGATTTGAATGAATTTGAACTCTTAGCCTAAGCTTTTTTCTTTCTATCAATAAAAGAACAATATCTATAATTATGTTTACTGCTCCGTTCCTTCGATCTACACCAACAATGTTTGTATTTTTGGGGAGATCCGGTGCTTAAAGTAAAATTTTTAACGCAATGAATAGGGTGCATTTTTTTCTGATATTTTGGTTTCTCTGTTCCCTATTTATCCAAAATATGCTCACCCCAAATTCTTTAGTGCAAGAGCATGATGGAGCTTTCTCTTGCTGCTTTTCCTTGAAAGAAAGAATGGCAACCAGGAGGTGCTTGTAGCTAGCCACTTAAGTAGGCATGTGCCTCCCCAAAGCACACACTTAAAATAGAACAAGCTTGATCTTGAAGACTATTTAATCGACAAGATGATACATTTTGCGAGAGGAAGTATTAAGATAATAACAAGCTCGAAGACATCCGTACGTTGTCGGCTAGGATTCCTTTAGATTAATGGATTGGAGATCATCATCCCTCTTCACACCCTACATTCTCTAGATGCTCTTATCCTTGGCATCTGCACGAACAAGGATTTGTA +>URS00025F6FB7 lncRNA from 1 species +GTCACAGGAGGGAGAGAGCATTGTTAGATCCATGGACATGCAAGGAGAGGGATGCTCCTGCAGAAGCATGGTCCCCAACTATAAAGGCAGCATTGAATCACAGAATCATTGAAAAGGTTGGAAAGCCAATAAGAACATCTAGTCCAACAATCAACCCATGCCTGTGACTGCTCAAGACCATGTCATCCATGGATACAAAAGGGTTTTCCTTTCGGACAATATGAAACAAAGTGCTTGGTGGGATCAGACCAAGCAGCAGAGCCTTGCTTTGGAGCAGCTGCTCGTGCCACGTTGTTTTGTTTGCTGATGTCCTTGGGCTCTGCAACCTGACAGAATGCTGCATTCCTGGTGCTCCTGCTTTGCATTGGGATCAAACTGAAAGCTGGTATCTGGTGCCAAGAGGAAGGAGAGCTTTGGATTTTTGACCCTGAGCATGGAGCTCTCACTGTTGGGCTGTGAGCTCTTCACAGCATGAAGAAAGCACGATTCACTGCTGTAACGGAGTTCTTCAGAAAAAAAAACGTGTTGTATCCTGGGTATGAAATGCCTAATCAAATCATGTTTACTGCTCAGCACTACACTGC +>URS0000B25448 lncRNA from 8 species +TGGAGCCAGCTTATTCTAGACCAAAAGGGCCTGGACTGTTCTAGGTACAAGATGGTGCCATGAATGTGCCAATCTCGCCTCTTAAGAAAATGTTAAAACTAAAGTAAGTGCATAAACTATTAAACTAAATGCATGAGTCTTATTTACATATAGGAAATGGTAATTCAGAAAGCTAGCCTGTGAGATTATCAATCATCACCAAACCAGATCTTGATGACTGTCACATCTCTGCTATATTTTCCAAATAGGAAATCCCATTTACCAGGGCCCTCCTGAAATGCCTGGGATTATGCCAAGGATCGCTTCCCTAGTTATTTTTATGTGTAGACCTGAGGAGTGGCAGAGTATGTAACCTTTAAAGATCATTAAGCACCAGTCTTGGGCTCAGCCTGAATTCTCACTCAGCAAGAGTAATGTAATTGCAATTATAGAACTGATCCATTTTATCACTTTCTGAGAGATCAATTGTCAGAGATTGAGACTCTTAATTCATCCTGGGTTTTAAGGAATATTTAAATGAGAATAAGGAATAAATTGAAAACATCAAGAAACTGACACAAA +>URS000236373A lncRNA from 1 species +ATTTTATTTGTCTTGGACCAGCGTATCCTTTTGGGGGGAGGTGGGGAGACCTACGAATATTTGAGGAAGAAGCAGCTACCATATTTTTCATTCTCGCGCCAAGAATAAGGGCTCTGGAATTTGGACAGTCGATTGGCATTTGCAGATTCAAACTGAGGAGAAGAACACTAGCGCAAGAACATGAGTTCCGCGACACAAGGTGAACATTCTCGATCTTCTGAAATTTTCTGTTCTTGTTTGTAGCAGTCGCCGATTTATTTTTGATTGAATTTCTGAGACTTGTATTGTTTGACACGATTATGTTGGTATATATTATTTGCATTCCCATAGATGTTGATGGTTGCATCTAATGCGCCACAAATAGAGCGCATCTCGGCGAATTTTTTTCAATTTTCATAAAATATGTTGGATTTATGGAATATATGTCTCAAGCTTGTGTATTACTTGTCGCTGCATACTCAAATATTTTTCTATGGATAGTTGTAATTAATCAATAATTCATTGGGATTAGGTTTTGTGCAAATATCTTATGAATATTTTCTGTAAAATATAATGAGCCTCCTTGACAGCCTCTTGCTCTCTTGATAACTCATATAATTTGTGTACTTCTTGTTGGGGTTGATGGTTTGCAGATGGGAGCAACGGGTTTGTTCGTGGGGGTCGGGTAAACAAGACCGACAAGACTCGACGCAGTTGGTCTACTCAAGAGGAGGCAGTGCTGCTAGCTGCGTTGAAAGAATTGGTGGTGCAAGGATGGAAATCCGACAACGGATTTCGGCCAGGTTATTTGACTAAGTTGGAGGAGGCTATGAAAAAGGTATTCCCAACCACTGACTTGAAAGGGATGCCACATATAAACTCAAAAACCACGACATGGAAGAAGCAATACTATTCGCTAACGCAAATATTGGGGAATACTGGGGTGGGCTTCAATGTGAATGGCATGCATATGGTGGATTGTAATGACGAGCAATGGGAGCAAATCATCAAGGTTAGTAGGTGTTCATATTGTAATATTAAATTCAGGCTGTACAAGTTTTCTAATATGTCTAAATGAACTACAGAAAGATACAAACGCACGCACAATGCGTTACAAAAGTTGGCCCTACCTGGAACAGTGGGCTGAAATATTTGGGAAGGATAGGGCGACGGGAGATGTGGCTGAAGATCTTATGGAGGCCGCACATGACATGTATCGCAAGATTGATCTTAGCGAACCACAAAATGATGGTGACTATCATGTATCCCTCGATGACATGTTCGAGAAGACCGCAACCAATGACAGTGTCAGCCAAACACAAGAAACCGAGTCTGAAGTTCGTGTCAAGCGGAAGAAGAGAAAGCAAGGCGACGAGTTCGAACAAATGTTTCAGGTGTTGGCAGATATCCAACGCACAACCGGACAGCGACTTGTCACAATATCAAGTAGAATGGGCTACGACTTCGACGTATCCAAAGCGAGAAAGGAGGTCTTCGCACAACTAAGCTCAATTCTGGGTTTATCCCTCAAAGCGAAGTTCGAAGTCGCCAATTTACTTGCAAAAGAGGTGGAGATGCTCGATGTATTTACTAGCCTGCCCGAAGAAGCCAAGAATGAGTATGTCAACTTCCTACTCGAGGAGAAATATAAATAGGATTGCTTCGCTGCACCATAGGATCTTGGGTGTTTTTTGGTTTCAAATTTTATTTGCTAACAACTCCTTCATTTCTGGAATTATGTTAGACCAGTAGAACTGCTGTTTCTTTTTATTTTTGGTGTCTTGGAGCTTAGTTCAGACATATCTTATCAAGTGGCTGTATTTTGGAGTCTTGCAGAAGCCACTTGTCTTAAATTATGCAGTTGAAGCTCGACAGAACTTATTTGACATTTTATGTTGCTTTCAAATTTGAATATGTTGGTATGTCTGTTTCAGATTTGCTTATGTTTTATCTTGCGGTGGATTACAAAGGCTTTTGTATAATTTAAATTGTAGTTTCAATAGGGATTTATTTAAATTGCATATGAATCGAAAATTGCTAATTCAGATAAGTTCAAACACAGCTCCCACAGTAAGCACAAATTCATCATAACTAGAAATCATGAGAAAACCAACAAACACAATAGACAATAACAAAGCTGCCTTCATCTACGAGGCACCAAAATAAGAGAAACAACGGTAGACACTGGACCTAACAGCGTGCATCGACGCTAACAAAATGGGAGGGAATAAAATGCGGTCCACAAAAGAGAGTAAGCTCCGCTTACAAATTTATTTAAATGGAGAAGACGAAGCACATGAGCTCCCGCCATAACCGACGTCATCTTTCTTACCATCATTCGGTTTCACGGGAAAGGCGTTCTTTGGAGGAAAGGAGGACGTCGTTTGTTTTGAAAATTTGTTCTTGATGGTAGACCATGGGACGTAGACATGACCCTTATGCGATTTGGGAAACGAGGGAGACACACTCGAACATGCATCATCTGGCTGAACTACCAAGGCACACAGTGGTTGGGTTTTAGTAGACGGGGAGTTCACTTCGTCCTCCGATGAAGTGTCGGTGAAGCTTTCAAATGGAGGACTCTTTTCACCTTTTGACGAGTCCTCTATCACTATCACAGTGTGTGAGATCTCGGGCTTCACATCGTACATTCCGAAGAGGGAGCACAATTTTAGGTACTCGGGCTCACCCTTATGGTAGTAAGCTTTGTAGAACTCATTTTCCTACAACCGATAGTGACTTGTATTAGAAAGACTAGCACACAACAGATTTAAATGATTTAGAACAGCAAAAACAATAGTTATAAAGCATCTCACCTTGAAGAGTTGCTCCCACACTTCATCGCTTGCATGAAGAACATTTGTCGACGCGTCCCGATCGGTCTCCGGGATATTGCAAAGATACTTGAAACNAGCTCTGGAAAAGTCAGCTCTGCCTTTGGTCAGCTCTGGCGATTTTAGCTCTGGAAGTCGGCTCTGGCTCCGAAGTCAGCTCTGGTGACTTAGCTCTGGAACGTCAGCTCTGGCTTCTAAAGTCAGCTCTGGCATGTTGGCTCTGGAAAGTCAGCTCTGGCCTCCGAAAGTCAGCTCTGGCGATTTGCTCGGGAAAGTCAGCTCTGGCCTTCGAAAGTCAGCTCTGCTCTGGCGGTTTCCAGCTCTGCTCTGGAACTTCCAGCTCTGCTCTGGTGTTTCCAGCTCTGCTCTGGAATTTCCAGCTCTGCTCTGGAACTTCCAGCTCTGCTCTGGCATTTTCTAGCTCTGCTCTGGCATTTCCAGTTCTGCTCTGGCATTTCCAACTCTGCTCTGGCATTTTCTACTCTGCTCTGGCATTTTCTAGCTCTGCTCTGGCATTTTCTGTTCTGCTCTGGTATTTTCTGGGCAGAACGACGAGGGTTTCCAGTTTCCAAAACTAGGGTTCTTTGTCCTTTCTTGCCTCGATTCTCACTCGTACGTCGGCCCTAATCTATTCCTATGTGAGCATGCTGTGCTTGTTCAAGTTCATCTACGTTTAAAGCCTAAAGTTCTCGTCGTTTAATCAAGGTTTCAAGCCGTGGGTTCTACCGAAAAAGTGACTTAACATGCTTCTTGTGTTCGTGCGTATCTAGAGCCTAAAACATGCTTTCTACGAGCGTGTGATTCATGCTGAAAGGAGAGGTCGAGAGTTACCTTGATGTCGCGCGCTTTGGTCGGACAAGCACGATGGTTCCTCGCTTCTCCGATCGTCGAGGTTCAAGGTGTCGAGAGAGTGATGGAACTCTTGCTGTTGCTGCTGGATTTCAGAGTGCCGAAGGAAGAGGAAGGGTCACACAAAGGGGTTGAAGGGGAGTTTAAATAGGGTGTTCGGCTGATGCACTTGAGTGCCTAAGGGGAGAGCTTCGGCTGTAGCTCTGCACAGCGTGGAAGAGGGGTGCAGCAGGCGTGCTAAGCTCTGCTGTGGTGTTGCGTGGGGAGGGCTGCTGCTGCTCTGCCGGCGTGGAGATGGAGTGTGGCCTTTCGGCTGCTCGTCCAATGGAGGCTGCTGCCGTGGCTGCTCTGGTCTGGCGTGGAGTGTGGCGTGGCGTGGAAGAGGGGTGCAGCAGGCGGCCCTTCGGCTGCCCAGCCAATGGGGGCTGCTGCCGCACCTTTTCCTACTTTTCCTTTTCTCCATTTTTCCTTCTTTTCTTAACTTGTAGCGTTGGCAAGTGTTGGGATTGGGTGGCGTGAGTGGTGAAGTGATCTAAGAGAAGATCTAAATAAAATCCTTCAGTGTCGGTCATTCTCAGTATTAAAAATACTGGTTTCGTGCTTGCTAACATCGATAAATGCTAAATTAAATCCATAGACTCAATCCGTTCGTCATTCTAATACTTAAATTAAATCCGTAGATTTAATTAGCTTCAAAGTCGGAAATAATTCACGACTTAAGTAACAATGTGAAATAAACTCTATCTTGATAAATAACCCAACTTAGCTAAGTTGGTTATAACTTTGAAGAATAATAATTCATCGACTCAAGGATTCTCATCGCGGTCTTAAACACGCGAAGCTAAATAAATGCATACTTGCTAGTGTAGTGACTCTGTCTCCAAAATACGAAATTCATAAACATAGATGAAAACATGAAACGCTTCAATTACTGGCAGATAGAAAAATAAACATGCAAAAACTGAAATTAAATGATGATAAAAGAGCGGGTTGCTACAACTGAACATCGGGCGGAAGCTTACATCAGAACATACGAGGCAAATCATTATAATTCGGCTCAAAGGTATATACGTCAACATCGTTATAACTTCTTGAATATTAGAAATTTCAAGAAGAAAAGCAAAGTAGGTACAGCTTATTTTCCATAAGGAAACATAATATCAAGAGTACCACAGCAAAAGGCGTAACAATTATATGTATGAAGACATATAACCGCGAGTATATTGCTTGATTAGAAAGGAATAAGACATCATCTCACTAAGGTTTTATCAACATCAGAAGGAAAGCAAAGTACATCATCCTTAAGACTCTAACATCAAAGGAAAAACAATATAGAAACTTCATCAATGAAACCATCCCCACCAGCACCAGTCCAATCTTGCTCCATTGCTTAGCCTGCACATTTAGGCTATGTTTGGTGTCTGGTAATGGATTAGGCAATATAGTTTATTTTCGGCTACCTAATCTTGATTACAATGATATTAGTATGCTTTGTTGTTGTTTGATTATTTAAATAGTTACATAACAATCTATTTTGGTTGGTTTGGTGAGCAGTAATAATAGCACGATTAAAGCTGAATAGATGATAAAATGACTAATATACCCACCCATTTTATTTGTCTTGGACCAGCGTATCCTTTTGGGGGGAGGTGGGGAGACCTACGAATATTTGAGGAAGAAGCAGCTACCATATTTTTCATTCTCGCGCCAAGAATAAGGGCTCTGGAATTTGGTACAGTCGATTGGCATTTGCAGATTCAACTGAGGAGAAGAACACTAGCGCAAGAACATGAGTTCCGCGACACAAGGTGAACATTCTCGATCTTCTGAAATTTTCTGTTCTTGTTTGTAGCAGTCGCCGATTTATTTTTGATTGAATTTCTGAGACTTGTATTGTTTGACACGATTATGTTGGTATATATTATTTGCATTCCCATAGATGTTGATGGTTGCATCTAATGCGCCACAAATAGAGCGCATCTCGGCGAATTTTTTTCGATTTTCATAAAATATGTTGGATTTATGGAATATATGTCTCAAGCTTGTGTATTACTTGTCGCTGCATACTCAAATATTTTTCTATGGATAGTTGTAATTAATCTAATAATTCATTGGGATTAGGTATTGTGCAAATATCTTATGAATATTTTCTAGTAAAATATAATGAGCCTCCTTGACAGCCTCTTGCTCTCTTGATAACTCATATAATTTGTGTACTTCTTGTTGGGGGTTGATGGTTTGCTAGATTGGGGAGCTAACGGGTTTGTTCGTGGGGGGCCGGGTAAACAAGACCGACAAGACTCGACGCAGTTGGTCTACTCAAGAGGAGGCAGTGCTGCTAGCGGCGTTGAAAGAATTGGTGGTGCAAGGATGGAAATCCGACAACGGATTTCGGCCAGGTTATTTGACTAAGTTGGAGGAGGCTATGAAAAAGGTATTCCCAACCACTGACTTGAAAGGGATGCCACATATAAACTCAAAAACCACGACATGGAAGAAGCAATACTATTCGCTAACGCAAATATTGGGGAATACTGGGGTGGGCTTCAATGTGAATGGCATGCATATGGTGGATTGTAATGACGAGCAATGGGAGCAAATCATCAAGGTTAGTAGGTGTTCATATTGTAATATTAAATTCAGGCTGTACAAGTTTTCTAATATGTCTAAACGAACTACAGAAAGATACAAACGCACGCACAATGCGTTACAAAAGTTGGCCCTACCTGGAACAGTGGGCTGAAATATTTGGGAAGGATAGGGCGACGGGAGATGTGGCTGAAGATCTTATGGAGGCCGCACATGACATGTATCGCAAGATTGATCTTAGCGAACCACAAAATGATGGTGACTATCATGTATCCCTCGATGACATGTTCGAGAAGACCGCAACCAATGACAGTGTCAGCCAAACACAAGAAACCGAGTCTGAAGTTCGTGTCAAGCGGAAGAAGAGAAAGCAAGGCGACGAGTTCGAACAAATGTTTCAGGTGTTGGCAGATATCCAACGCACAACCGGACAGCGACTTGACACAATATCAAGTAGAATGGGCTACGACTTCGACGTATCCAAAGCGAGAAAGGAGGTCTTCGCACAACTAAGCTCAATTCCGGGTTTATCCCTCAAAGCGAAGTTCGAAGTCGCCAATTTACTTGCAAAAGAGGTGGAGATGCTCGATGTATTTACTAGCCTGCCCGAAGAAGCCAAGAATGAGTATGTCAACTTCCTACTCGAGGAGAAATATAAATAGGATTGCTTCGCTGCACCATAGGATGTTGGGTGTTTTTTGGTTTCAAATTTCATTTGCTAACAACTCCTTCATTTCTGGAATTATGTTAGACCAGTAGAACTGCTGTTTCTTTTTATTTTTTGGTGTCTTGGAGCTTAGTTCAGACATATCTTATCAAGTGGCTGTATTCTCGGAGGCACACAACAGATTCATATGACCATTTCCACAGCTGCATAGAGGGGTAGGTGTTGATGTCTCAGACGCGGCGTCCATCCTACAACACCAATGTATAGTATTTTAGTATTTTGACATGAGTAGCATAGAAATTGATAGAAAACTTATATGGCCATGACAAGCAGCATCGCAGCAAGATCAGATAAATATTAACAAGGGAATTAGCAAGAGACCACTAGAGACTACTATATTCATTGTAAAAATCAACAAGATTTTAAATTTTATTCACATCAATATCATCAACAGCTGAGATAAGGATTTCTTATGAATTAAAAAATTATTACAATTGTCGAAATCGAACACAATTAAATGGAATTTTATCATGTAAACCCAACATCATCAAAATCACAGCTGAACACAAGCAAATTAGAGATAGATGTCACCAAGAACTTGCTGCAACAGTTTAAAGACGAATTAACATGCAACATTCTAAAGAGAACACCTTAAATGAATGTAAAAATTATTGCAATCGTCACCTAATGATTATTCAAGTATTGAAGCCACATCCCCTCCGCCAATTCATCCCTTGCGGCATTCCATTGGGGAGAAGACTCGACCGTGGCAATGAACTCGTCATGATCGGCTTCAAGGCCATGAGCATTACTATTTGCCATCGCATCAAATTCCTCTTCTATTGGATCGACCGGCATTTGCATTCGAATAAAATTATGAAGTAAAAATGTTGCCATTATTAACCTATTTTGGACCTTAATTGGGTAGAACGTGGTGGACCGTAGAATACCCCACGCATTTTCATAATTCCAAATGCTCTCTCAATCACATTCCTCGCCTTACTATGCCTCAGGTTAAATAACTCCTCCTTGTTTTGGGCCTGGCAGCAGTGGGACCCCACTCCTTCAGGTGGTATCTAACGCCCTTGTAAGGCGTTAGAAAACCATCACTATTTGCGTAACCGTTGTCACACAAATAGTAATTTCCTGTTGAAGCCCCAACAAACCAAAACAAAAGAGTAATTTAGGTAAACTTTGATAAATAATCCACGTAAACACAAACGCTATTCGAATTAAAGAGCAAATAATTGGCATTACCCTTTGGCACTTTAAGACCGTGGGGTCTACTTATGGCATCCCTTAATATCCTAGAATCTGCAGCAGAGCCTTCCCAACCGGAAAGAACGTAGACAAACTTCAAGTTTCGGTCACATACACCTAACACATTCTTGGATATCTGTCCTTTCCTTGTCCTATAGCGTGCTTGGTCGTTAGTGCTCACCATCACATTAACATAGGTGCCGTCTATAGCTCCTAGACAACCCTAAGTTGAAGAGAGACATTTAAAAACGAGTTAGTGCTAATAAAATTTATGATCATACTTACTAGAATAACTACAAGGCTGCCCTACATACCTTAAACCACTGCCACCGGCCATCTGTACAGTCATTGGACACAGCTTCCGGTTTTGATAAAAAAATTTCGTGTATCTTCAATATTGCTCCTAACACGGCATGTACGTAGCGCGATATGGTTTGCCCAGAAACGACAAAAATCAAATCTTACAACTCTATTTTTCTTTGTGATGTGCTAAGACAGACAAGAAAATGGCTACTTGTTCCTCCACACTCACGTAATCACCATCAACTAAGCCTCCCAAACCCCGTAAAATGGTGCACAACCGCCCGAAGGTATTACGATCCATTCGCAAGTTCGCGATGCAATCGACATCATTGACACTTATCAGCCTACTTAAATATTTTATTTGGTCCGGCATTCTACTTATCATCCCATATTTTCGTGATCCAAACCCACGTTTTCTTTTTCTTGAGCTAGACTTGATAAAATATGTAATTACTATAACCAACTGCATTATATGCTGAAGCATTATTTCTTGCAATAGCAAGAACAAGATATCGGACATACGGGGACGTACACGGCCAGACATCTAAAATAGAAACAATAAGAGATAATTATAACTTATATTCACTGCATTTCACCACCATGGCAGATTTATTTAAATTAATTTCAGTTTGAGCAAGTGATGGCAGAAACAAAACGAACCATGAACATATCATCAATCAAAATGTAACTGCAACAAGTGTCGTACACCAAGAGACAATTATAACTTATATTAATTGCATTACCAGGCACTATGTCAGATTTATGCCAACAAGCCATTCAACAACCAATCAATAATTCATCACCACATTAAAACTGTACTACCGAGAAAAAATCCCAATAAGCAAATATTTTCTCATAAAAAAAAAGAATATGTCATGCATATCAGGAAGAGATACTATTCAGCCACAATAGGCACTCCGTTAATTCTTTCAGAAATCATATTATGTTATTGTTTATACATGCATCGATCGTCAATTTGATAGTTTAAAAGACATATACAACGAGTGTGATTTATATATATCCCTAGAGATAACAAGCAATCGGACAAGCACTAACCTTGGTCTGTTCACAAAGCCTTCGACGTGGAGACTGAGGCTGCTTTCCGATGAGCGTAGCGACCAGAAATACGGACAAGAAATCCCAAAGTGTTTTGGC +>URS0000A5EA3D rRNA from 1 species +TACGTATGGGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGAGTGCGTAGGTGGTTACCTAAGCGCAAGGTTTAATCTTGAGGCTCAACCTCATTCTGCCTTGCGAACTGGGCTACTTGAGTGCAGGAGGGGAAAGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTACACAGAACACCAATTGCGTAGGCAGCTTACTGAGCCGACACTGACGCTGAGGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCCGGTA +>URS00009D2B09 rRNA from 1 species +TACGAGGGGTCCTAGCGTTGTTCGGAATCATTGGGCGTAAAGAGTCTGTAGGCGGCTAGATAAGTCAGGTGTGAAATCCCCGGGCTCAACCCGGGACGTGCATTTGATACTGTCTAGCTTGAGTATGGAAGAGGCTAGTGGAATTCTTGGTGTAGTGGTGAAATACGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGCTAGCTGGTCCTATACTGACGCTGAGAGACGAAAGCATGGGGATCAAACAGG +>URS0000CEB689 lncRNA from 1 species +CACCCGCCCTGACACCGTCCTGATGGGGGTCCTGCAGAGAAGACTCCTTACTTAGCCCACAGTGCTCCCACCCACCCTCAATGTATAACTTCACGTTCAGAAATGTGTTACCCCCCTCCTCAGACCTCACACAATTCACGAATTTCCAAACAGCAGGAAACAGAAACTTCTAAGAAAGCAGAACCCTTGAGTCCAGGTGGGAGAAGGTGCCTGAGAAAACAGCCCTGCCAGAGACAGTACCCCAGCATCCGGACGTTACTCCACAGACGGCCACGTGAGAGACCGGGAACCACCCTTCCCACCGTACCCCAGCGTCCGGACGCTACTCCACAGACGGCCACGTGAGAGACCGGGAACCACACTTCCCAAGCCTTCTGCACTCCCAAAAACATCAGCTTCCCGGAAACCTGAGACATGCTCAAGGAAGAGCACGGTGTGAAGTCAGCTGTGGGTGGAGGATGACCCAGGTGCCCAGGCAAGAGACTGAAGGCACAAACTGTTTCAGTATAATAAAGCAAATAGAATAAGAA +>URS000155D742 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGGTCTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGATCTTGAGTTCGGGGAGAGGTGAGTGGAACTGCGAGTGTAGAGGTGAAATTCGTAGATATTCGCAAGAACACCAGTGGCGAAAGGCGGCTCACTGGCCCGATACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGATAG +>URS000074D688 rRNA from 1 species +TTTATTCAGGGTTCAAAATNAACTTNGGCGGCGNGNATTAGNCATNCAANTTNGTCCTTCCCCAAGGCAGGGCGAGGCNCAAGGGTGANTAAGGCGACGTAANCAACCCCGAGGATGGGCATANCCGCGGNAAANTGCNGGTNATTCCCAGCGACGTCGAGACGTGNCATCACGCTTCGACCCAAAGGTGTGAATCCCCTCGGGACGGNCCNTCGTGGTATCAGGTAGTTGGTGGGGTGATGNCCCACCAAGCCAAAGACGCCTACCGGGCGTGCGAGCGTGGCCCGGCACACTGGGACTGAGACACTGCCCAGACACCTACGGGTGGCTGCAGTCGAGAATCTTCGGCAATGGGCGCAAGCCCGACCGAGCGACGCCGCGTGGAGGACGAAGGCCTTCGGGTTGTAAACTCCTGTCGAGGGGGAACAAGGGGGCGTGAAGAGCGTCTCTTGAGTGATCCCTGGAGGAAGCACGGGCTAAGTTCGTGCCAGCAGCCGCGGTAAGACGAACCGTGCGAACGTTATTCGGAATCACTGGGCTTAAAGCGCGTGTAGGCGGAGTGACACGTCGGATGTTGAAAGCCCCCGGCTCAACCGGGGAACGGGCACCGATACGGTCGCTCTGGAGGGGCGTAGGGGGAGCTGGAACTTCCGGTGGAGCGGTGAAATGCGTTGAGATCGGAAGGAACGCCCGTGGCGAAAGCGAGCTCCTGGACGCCATCTGACGCTGAGACGCGAAAGCCAGGGGAGCGAACGGGATTAGATACCCCGGTAGTCCTGGCCGTAAACGATG +>URS0000AF452E rRNA from 1 species +CCTACGGGATGCACCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGAAGGCGTTAAGGTTAATAACCTTAGCGATTGACGTTACTCGCAGTTGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTCGAAACTGGCAGGCTAGGGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGTCCACTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTCGTAGTC +>URS000178FACD rRNA from 1 species +TACGTAGGTGGCAAGCGTTGTCCGGATTTACTGGGCGTAAAGGGCGTGCAGGCGGTTTGTTAAGTGCAGGGTGAAAGCTCCCGGCTCAACTGGGAGAGGTCCTTGCATACTGGCAAGCTCGAGGGAGGCAGAGGAAAGTGGAATTCCCGGTGTAGTGGTGATATGCGTAGATATCGGGAGGAACACCTGTGGCGAAGGCGGCTTTCTGGGCCTTACCTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS0000F98CBA rRNA from 1 species +TGCGTAGGCGGGCCCGTAAGTCAGTGGTGAAAGTTTGCGGCTCAACCGTAAAATTGCCATTGAAACTATGGGTCTTGAGTGTAAATAAGGTAGGCGGAATGTGTTGTGTAGCGGTGAAATGCCTAGATATAACACAGAACACCAATTGCGAAGGCAGCTTACTGGGATACAACTGACGCTGAGGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCC +>URS00020667BA rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGAACGCACAGTTTATACCGTAGCTTGCTACACCATAAACTGTGAGTTGCGAACGGGTGAGTAACGCGTAGGTAACCTGCCTGGGAGCGGGGTATAACTATTGGAAACGGTAGCTAATACCTCATAATATTGATTATTGCATGATAATTGATTGAAAGATGCTATTGCATCACTACCAGATGGACCTACGTTGTATTAGCTAGTAGGTGAGGTAACGGCTCACCTCGGCGAGGATACATAGCCGACCTGCGAGGGTGAGAGGCAAAACTGGGATTGGAACATGGCCCAGCCCACTACGGGAGGGAGACGTCGGGAACTCCTGGGAATGGAAGCAAGGCTGAACGAGCAACGACGGGCGAGTGAAGAAGGCTGTCGGATCGTAAAGGTCAGTTGTACGAGAAGAATGGGAGTGAGAGTGGAACGTTCACACTGTGACGGTACCTGAACAGAAAGCGACGGCTAACTCCGTG +>URS00019D34DB guide_RNA from 1 species +AAAACACGAGACAAAGTAAAGAGGGAGAATAGATAGAATG +>URS0000089A8C tRNA from 1 species +TCTAGAAGAATGGGACTTGAACCCACACCTAAGACTCCAAAATCCTTCGTACTACCACTATACTATCCCCTA +>URS00017CC75E rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTAGAACGCGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCCGATGGAGGGGGATAACTAATGGAAACGGTAGCTAATCCCGCATACCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGGGAGGTGGACCAGCGCCCATGGAACTTAGACACGTTCCACACTCCTACGGGAGGCAGCTGTGGGGAATATTGCACAATGGGCGCAAGCGTGGTGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGAGGAGGCGTTACTCGCAGAATAAGCACCGGCTAACTCCGTGCCAGCGGCCGAGGTAATTC +>URS0001993F25 snRNA from 1 species +ATGCTTGTTTCAGTAGCACATAGACTAAAATTGGAACAATACAGAGAAGATTTGCATGGCTGTGTGCAAGAATGATAAGCAAATTTGTGAAGCATGCCATATTTGG +>URS0001E9A07D rRNA from 1 species +GATGAACGCTGGCGGTATGCTTAACACATGCAAGTCGAACGGACTCTTCGGAGTTAGTGGCGGACGGGTGAGTAACGCGTGAGAATCTGGCTTTGGGTTCGGGACAACCACTGGAAACGGTGGCTAATACCGGATGTGCCGAGAGGTAAAAGAGAAATTGCCTGAAGATGAGCTCGCGTCTGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCAGCGATCAGTAGCTGGTCTGAGAGGATGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCGGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAATACCGCGTGAGAGAAGAAGGCTCTTGGGTTGTAAACCTCTTTTCTTAGGGAAGAACAAAATGACGGTACCTAAGGAATCAGCATCGGCTAACTCCGTG +>URS00019E5825 rRNA from 1 species +TGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGCAGGGAAGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCGCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGCGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGCTTGTCACGTCGGGTGTGAAAGCCCGGGGCTTAACCCCGGGTCTGCATTCGATACGGGCTAGCTAGAGTGTGGTAGGGGAGATCGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGATCTCTGGGCCATTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGGTGGGAACTAGGTGTTGGCGACATTCCACGTCGTCGGTGCCGCAGCTAACGCATTAAGTTCCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCAGCGGAGCATGTGGCTTAATTCGACGCAACGCGAAGAACCTTACCAAGGCTTGACATACACCGGAAAGCATCAGAGATGGTGCCCCCCTTGTGGTCGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCTGTGTTGCCAGCATGCCCTTCGGGGTGATGGGGACTCACAGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGCCCCTTATGTCTTGGGCTGCACACGTGCTACAATGGCCGGTACAAAGAGCTGCGATACCGTGAGGTGGAGCGAATCTCAAAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCCCA +>URS0000291A32 rRNA from 1 species +GCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTGATACGTAGGGTGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGGGCTCGTAGGTGGTTGATCGCGTCGGAAGTGTAATCTTGGGGCTTAACCCTGAGCGTGCTTTCGATACGGGTTGACTTGAGGAAGGTAGGGGGAGAATGGAATTCCTGGTGGAGCGGTGGAATGCGCAGATATCAGGAGGAACACCAGTGGCGAAGGCGGTTCTCTGGGCCTTTCCTGACCCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGCTTAGATACCCTGGTAGTCCACGCTGTAAACGGTGGGTACTAGGTGTGGGGTCCATTCCACGGGTTCCGTGCCGTAGCTAACGCTTTAAGTACCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGCCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGTAGAACCTTACCTGGGTTTGACATGGATCGGGAGTGCTCAGAGATGGGTGTGCCTCTTTTGGGGTCGGTTCACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCACTGTTGCCAGCACGTTATGGTGGGGACTCAGTGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTTCACGCATGCTACAATGGCTGGTACAGAGAGTGGCGAGCCTGTGAGGGTGAGCGAATCTCGGAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCTCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGGCTTGTACACACCGCCCGTCAAGTCATGAAAGTTGGTAACACCCGAAGCCGGTGGCCTAACCGTTGTGGGGGAGCCGTCGAAGGTGGGACTGGTGATTAGGACTAAGA +>URS0000A4E5B4 misc_RNA from 1 species +GTACCCTCCAGCCCTGCTGGGTGTTGGGCGTTTTGTTCCGCCGCGCGCGTGAACTCGCCTCAAATACATTGGCAGCCAGCCGTCCCGCGTGGGAGCGCAGCACATTTTGCGCTCTCCGCTGGGTGCGGCGGCGTCCACAAGCCTAATTTTTTACGC +>URS00007CA1EC rRNA from 1 species +TGGAATACAGCGTCATAGTGGTGAGAACCCAGTATATGATGTGGATGCCTAGTGCTTTGTGATACATTTTCAAAGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTRCCGTGAGGGAAAGATGAAAAGCACTTTRGAAAGAGAGTTAACAGTACGTGAAATTGTTGAAAGGGAAACGCTTGAAGTCAGACTTGCTTTTGAGTTTACTTGATGGCAGGCTAGCATCAGTTTCTGASAGTAGAAAAGGGTATTGAGAAGGTMGCAGCTTAGGTTGTGTTATAGCTCTTTACTGGATGTGCTCTTGGGGACTGAGGAACGCAACACGCTTTGTGCAATGTCTTCGGGCATTTCGTGTTAAGGATGCTAGTTAATGGCTTTAAACGACCCGTCTTGAAACACG +>URS0000B0FA7A rRNA from 1 species +TGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGAGTGAAGAAGGCCTTAGGGTTGTAAAACTCTTTCACCGGGGAAGATAATGACGGTACCGGAGAAGAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGGGCTAGCGATGTTCTGAATTACTGGGCGTAAAGCGCGCGTAGGCGGCTTGGTAAGTTGGAGGTGAAATCCCGAAGCTCAACTTCGGAACTGCCTTAAAAACTGCTTGGCTAGAGGCAAGGAGAGGAGAGCGGAATACCCAGTGTATAGGTGAAATTCGTAGATATTGGGTGTAACACCGGTGGCGAAGGCGGCTCTCTGGCCTTGATCTGACGCTAAGGCGCGAAAGCGTGGGGCGCAAACAGGATTAGATACCCCCGTAGTCC +>URS00001D86A5 rRNA from 1 species +GGGTCGATACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTNCACGCCCTAAACGATNTCAACTAGGTGTTGGTAGGGTAAAACCTATTAGTACCGTAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGATTAATTCGATGCAACGCGAAAAACCTTACCTACCCTTGACATGTCCAGAATCCCTGAGAGATTGGGGAGTGCCTTCGGGAACTGGAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCATTAATTGCCATCATTCAGTTGGGCACTTTAATGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTATGGGTAGGGCTTCACACGTCATACAATGGTCGGTACAAAGGGTTGCCAAACCGCGAGGTGGAGCTAATCTCAGAAAGCCGATCGTAGTCCGGATCGTAGTCTGCAACTCGACTACGTGAAGTCGGAATCGCTAGTAATCGTGGATCAGCATGTCACGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTTCACCAGAAGTAGGTAGCCTAACCGCAAGGAGGGCGCTTACCACGGTGGGGTTCATGACTGGGGTG +>URS000235E350 lncRNA from 1 species +GCTTAGTTTGCTAAATAAATAAATAAATGAAGTTTGCTATGAACCCTCATGATAAGCTCTCACATAAAAATGATGAATAGTTGCTCTGCCATTACTAGTTCTCAAAATTGAAATCTCTCTCAAGTTTAGGCATGACTGTTATGAATTAAGATTTGCTCTAAAACTGAACTTGTGGGAAGAGTACTTGATCAAAAGTCTATGTCGTTAACGGATACGATATGGGAAGGTTGAGCTGCTATTTATCTGTTCCTAGAGATGCTAGAATTCTAGAGAATTTTATCTTTGAAAATCTTTAAAATATTGCATGATGAGTTCCTGTATGATGAGTGTTTAAAATCCTACCACAGCCATATATACATGCTTATTAGACTATGAACCATACATTTACTTTTTACTACTTATGAGCATTGAGTGTGGTGAAGTTGTGTAGACCCTTAGGAGCTTGTCATGTGGTTAAAATCAAGATTCACTTGCACATTCACTCATACATGCTGCTTCTACTTCAGAAGTACGCATCTACATACATCCATTCATTTCCATCTCCAGATTCACCCAAAATTATTCAACTCCTATTCAGGAGAGAATAGCCAAAAACATTATCCTATCCCTGTAATTCCCCGTGAAATAAATGCTCTTGATATTTTGGTTACTACCAATTGCTACATTATTCTAGGAGGGTGAGTGCTCTGAAAAAAAGTGAATACGAGGAAATAAAAAGGGACAAGTGCCCGAAACCTCGAAGAAAAGAAAAAGTGAGACGAGAGGTAAAAATGGACAAGTGTCCGACAGTAGAATTAGGGGTACAAGATACCCACCTGAGAGAAAAGAAAAAAAGAGAAAATATAGAGCATCTCATTCCCCTAAAAAAAGCTTCAAAGTGCAAGAAAGGTATGTATCCCCTCAAAAGAGCAACAGTAGAATTAGACTTTCACCATTATCACCATCATCACCATACACCATTCATGCGCCACACATGCACATCTTGATTTGACTTATTGACTTGTTTCTTTGGATCCATGGTTTGACTATGCAATAAATGACTTGTAAGTATGTATTAGCTGTCTCCCACCTATGAGCTCCAGATATCAAAACCTTGTTAGAGTAGGGTGAGAGAGAGGGCAATATCATTATGCCTCATACCACAAATAACACATACTTTGAGAGAAGGCATATATCATCACTGCGTTGGTAAGGATCTAGAAATACCACAAAAGAGAGACTAGAGAGAGTCATACAAGGAATCTCTGAGTTTTATTTGAAAATTTGCAAAAACTCCAGAGCTATAGTTGATGAAAGAACAAGAGACATGGTGCTTGACTTGACCGTTCTATCTTTTAACTGCTCAAGACACAAGTGACGGTTGCAAGCCCCATGGTGGAAGGTAATATGAGTAATTTTAAATCTTAACAGTTTACCTTAACCCAGAGATGAGATTTTGTTTGAACGCATGTGTACCTTTAAGGCATAAAACCACTGAAGAAACTATTGAGTCCATCCTTGCTCAGGGACGAGCAAGAGGTATGCTTGAGGGAGTTGTTGACGGTCCTTAAGTACTAAATATAACGATCAAATAAATAAAGAAAAGGATCCAAATGCAACGAACACCCAGACTTAGGGTTTTATCTGACAGAATTCCATGAGTTTTGGTGTTTGTCTATTTCTGCAGGGGGTTATCAGGAAATATGGAGGAAAGGCCCACATGTCGGGTTTACATAGAGATATGAACGTACCGTGCAAATTTTTATCATCTAGAAGACTCTAGAAGCCACGGGAACGAACGGGAGGCCAAGCGGGCTCGGGGGTAGGGCGCCCGCCCTCCCCCCTTCGGCGCCCGCCCTATCCCACAGTCCAATCAGGACTCGCTTCGGGGATTATGCTCCACCGAGCTAAAGGATCAAGAATAACCGTTCAATCAACGTCGGTTTGATCCGACGGCCCAGATTCACTTGAGGGGACTATATAAGCAGACCCCTAGCCTCTGGAGGAGGCACCCCTTGATCCCTATTCATTATTCATAGATAGAGCAAAAGCTAGGGTTTGGAGATGAGAGCTCTCCTCTCATCTCTAAACTAGAGTAGATCTAGATAGTAGCGAGACGGAGAGCGAGGGAGGATTGGAGGAGAGGCCGGCCTGTCGATTCTTCCTCCGGTTGTACTTCGCCATGATCAAGCTCTAATCAAGCTTCCTCATGGGATGACTCTGGTAATCTACTTCTAATTCACTATGCAATTACTATTCATGTATGTTCTGGTTCACAACTCTTTTGTGTACTTCTAATCTCTAGGACCCTATAGGTTAGAGTTGTAGTATAGGTGTAAGCATGGTGCTTAGACCTAGATTACTTGTGAATATCCCCTGTCTAGCTGGATCGTGTGGTAGGCCGCGTAGGTGACAGTTACGTTGGTCCCCTGTAGTAAACCTCCTGTTAGCAGGACAGGTAGGGTTTATCGGCCTATGGATAAGCATCCTTTGTGGTGTATTCTTATCACGTAGTTCATCCCAGACATAGACATACCCCTTTGAAGTAGAAAAACCATAGTTATCATCTCTATTCTGCAACCATCGCCCATATACTAGAATGCTCTACTCTCTATTCCCATATTATCACCCATTGTTATCTTACCTTTAATATTGTTCTTATTCAATTCTACCATCTTTCCTATTTACACTTATCTATCTATCTTGGTTAAGTTAGAGCGTAGTTGGTTCTCCCGTTTCCCTGTGGATACGATAAAACCTTTAACCGGGTAAAAGCTACAACGGTATCCATGCGCTTGCAGATTTATCTGTGTCCGTATAAATACCATAGTACACTCTAGTGTCATGCTGGGGATGACAACCTAGTATTCAAGTGGTGTTAGCAAGTGTCAACAGTCGTCGGATGATGATCAAAGGGCTTAGGATTGGGTGGAGAGGTATTTCTAGTATTTGACTTCTGGCTAAGCTATCCTAAGTATATTTGAGAGTTAACTCCCTTCCTACTGTGGCCGATAGGTGAAAAGGGTGTGGCGAAACACTTCCCTAGGCAGCTACCATGCAAGCCAACTATTATTTGCAACTTGCCTAACAACACACTAAAGAGAACTCCTAATGTCCAGTAGAGGAATGTTATGCTTCGCTGCTGGTGTTCTTCAGGTGCGACAAGAAGTCCACAAGGGCAGACAAAGTCTAGACACCATGTCTACACTAATTCTACTACTCTAGACCCAGCTAAGGTTTCGAGCACTTCACACAAGGCAAAGCAATGTGCCAGATAGGCCGGTTGTATACTTAAAATAAACTAAGATAGAAAGTAAATACTGGAAATACTCAGATGAAAGGAAACTAGAAGGAAGACTTACTAGAAGACAAGCATCCGCTGAGGCACTCCTAGAAGAAGACTCCCGACAAGTCGGTGTTGACACTTGCTAACACCACTTGAATACTAGGTTGTCATCCCCAGCATGGCACTAGAGTGTACTATGGTATTTATACGCACACAGATAATCCGCAAGCGCACGGATACCGTTGAAGCTTTTACCCGGTTAAAGGTTTTATCGTATCCACAAGGAAACGGGAGAACCAACTACGCTCTAACTTAACCTAGATAGATAGATAGGTGTAAATAGGAAAGATGGTAGAATCGAATAAGAACAATATTAAAGGTAAGATAACAGTGAGTGATAATATGGGAATAGAGAATAGAGCAATTCTAGTATATGGGCGATGGTAGCAGAATAGAGAGAATAACTAAGGTTTCTCTACTTCAAAGGGGTATGTCTATGTCTGGGACGAACCACGTGATAAGAGTACACCACAAAGGATGCTTATCCTTAGGCTGATAAACCCTACCCATGCTGCTAACAAGAGGTGGACTACAGAGGACCAACGTAACCGTCACCTACGCGGCCTACCACACGATCCAGCTAGATAGGGGATATCCACAAGTAATCTAGGTCTAAGTGCCACGCTTACACCTATACTACAACTCTCACCTATAGCGTCCTATAGATTAAAGTACTCAAAAGAGTTGTGAACCAGAACATACATAATTAATAATTGCATAATGAATTAGAAGTAGATTACCAGAGTCATCCCATGAGCAAGCTTGATTAGAGCTTGATAATGACGAAGTACAACCGGAGGAAGAACCGACAGGCCGGCCTCTCCTCTAATCCTCCTTCGTTCTCCATCTTGCTATTATCTAGATCTACTCTAGTTTAGAGAAGAGAGGAGAGCTCTCCTCACTAAACCCTAGCTTTTGCTCTGTCTATGAATAATGAATAATGATCAAGGGGTGCGTCCTCTAGGGGCCAGGGTGTCTGGTTATATAGTCTTTTCAGATGAATCTGGGTCGTCGGATCAAACCGACATTGATCGTGTGGTTTTCCTTGAAGTATTAGGTCGGTGGAGCATGATCCACGAAGTTGAAGCTGATTGGTTACTGTAGCTGGGCGGGCACCCATGGGACTTGGGCGGGCGCCCTGCCCCCGGGCCCGATCGGCCTCCCGTTCGTTCCCGTGGCTTCTGGAGTCTTCTAGATGGTAGAAAATTGCGCGGCACGTTAATATCTCTATGTAAACCCGATGTGTGGGTCTTTCTTTCATATTTCCTGATAACCCCCTACAGAAATAGACAAACACCAAAACTCGTGGAATTCTGTCAGATAAAACCCTAAGTCTAGATGTTGATTTCATTTGGATCCTTTTCTTTGTTTATTTGATAATTAAATTTGATACTTAAGGACCGTCAACAAACTCCCCCAAGCTTACCTCTTGCTCGTCCATGAGCAAGGATAGACTCAGCAATGGATCAGAAGTTGTTGCAATATCTTAAAATTTTGATGGTACACATGCTTTTAAATAAGATCTCATCTCTGAGTTAGAGTAAACTGTCAAGAACTAAAACTTACTTACTTTACCTTTCACCATGGGACTTGTAACCATCACTTCTGTCTTGAGTAGTTAAAAGATAGAACAGTCTAGCCAAGTGCCATATCTCTTATTCTTGATCAGCTATAGCTCTGGAGTTTTTGCAGATTTTCAAATAAAACTCAGAGATTCCTTGTATGACTCTCTAAATCTCTCTTTTGTGGTATTTCTGGATCCTTACCAAGGCAGCGATGGTATATGCCTTCTCTCAAGATATGTGGTAGTTGTGGTATAAGGCATAGTGACATTTCCTTCTCTCTCACCCTACTCTAATAAGGCTTTAATATCTGGAGCTCATAGGTGGGAGATAAAGTATACATACTTACAAGACATTTATTGTATAGTTAAACCATGGATCCAAAGAAACAAATCAATAAGCCAAATCAAGATGTGCATGTGTGGCGAATGAATGGTGTATGGTGATGATGGTGATAACAATGGTGAAAGTCTAATTCTACTTTTGCTCTTTTGAGGGGATATATACCTTCTTTGCTTTTTGAAACTTTATGAGGAGAATGAGATGTTCTATCTTCCATTTTTCTTTCCTCTCAGGTGCGTATCCTGTACCCCTAATTCTACTGTCGGACACTTGTCCATTTTTACCTCTCGTCTCACTCTTTTTCTTTTCTTTCGAGGTTCCGGGCACTTGCCCCTTTTTATTTCCTCGTTTATTTATTTTTTTTTCTTTTCTTCTCTTTTCTTTTTTTTCAGAGCACTCATCTCTTGAGATAATATAGCAAGTGGTAGTAGCAAGATAACTTGAGCATTTATTTCACAAGGGAAAACAGAAATATTTTTGGCTATTCTCTCCCGGATTAGGAGTAGAATATTTTTGGGTGGTTCTGGAGATGGACATGGATGGATATATGTGGATGGTACTTTCAGAGTAGAAGTAGCATATATGAGTGAATGTGCAAGTGAAATCTTGATTTAACCACATGACATGCTCCTAAGGGTCTACACAGCTTGACCACACTCAATGCTCATAAGCAGTAAATAGTAAATGTGTGGCTCAAAGTCTAGCAAGCATGTATATATGGCTGTGGTAGGAATTTAAACTTTCATCATACCGGAACTCATCATGCAATATTTTAATGATTTTTCAAAGATAAAATTCTCCAGAATTTTAGCATATCTAGGAACAGATAAACAGCAGCTCAACCTTCCCATATCATATCCGTTAACAACTTAGATTTCAGATCAAGTTTTTATCCCACAAGTTTAGATCTAGAGCAAGCTTTAAATTATAACAGTTATGTCTAAACTTGAGAGAGAACTTCAAATTTACAAATTAGGCAGAGCAACTATTCATCATATCCATGCTAGAGTTTTATTATTAAGATTCAGATTAGCATAGCCACTTTATTTATTTATTAAACACACTAAGCAAAAGATATATATAAGCACAAAATCTTTATTTGGTTTTTCATAGTTTATGTATTTTAATATTCTAATATAATATAAGTATAAAGATAGTTAGAAATACTTAGCGAGATAAATGGGGGTGCTCTTCCCCAAGCTGAATTTTGACGTAATTTCTCTTGATGTAGCTAGCAGGTGGCAGAGGTGTATTTGAAAGTCAGTAGCATTCTGACAGCGATTAGAATGTCCTCCGTCTGCTAGTCTTCTTGATTCTTAAATTCTGTGGAGCTCAAATAGACAACAAAGCTTGTGGAACTAATTAAGTGTTAGCATAAATATCTAGCCTTCATCATGTTGAGCTTCGTCAATAAATATTACTCCCTGTTTTTATATTTTTATTTTATAAAGCAGAAAAGAAATATTTATTTTATTTTTATGCCACCACAGTGAAGGTACTTATGGGTTTTATGCCACTCGTATACTCACATGGGGCTTAGTATTTTTTAATATTTTTATTTTCTTTTCAAGATAGCATGATTAACTAATAATCTATTTAAGGAAAGTAAATAATTAAAGGGAAAAGGGAATGCAGAAAGGATAAATATGGATAACTACCGATCTTACCTTTCGGCGAGGGTTCAATGTTTTAAGTCTTCTTAACAAGACTTCTCACCGTGTTCATTCTTCAGGTGCGTCATTTGATTCAGGTGCGGACCTTGACGTCTGCACCTCTTCGTTTGCCCAGCAGTGGCGTTGGCAGTATCCTGCTCAGTGTGTTTGTGCTCGTAGATCCAGGTCCTTCACTTGGTAGAGTTTGAGAGTTACAAAACTTCTCTGTGTTTTGTTCAAAGTATACCTGCTCATAGAGACAAGGCAGAGATCATGTGCATGGGTCCTGTTGGTGGAAAACACCAACAGAACCTAAAGTGTATTTGTTCTTCTCTAACCCTAAGCATAGTGAGCAAGACAAAGTTGATGGATGAAAAGTTCATGAGTGTAGCACTTATAACATTTGTCAGATCAGATCGCTCAACCTTATGGAAAGATAATCTATCTATGTATAATGCTTTTTCTTTATATCTTCTCAAAGATTGAATGTATAACATTTTAGCTCATATGATTAGGAGTGTGGGATCATGGAGGTAGTACTAAGAACAAGGATTAAAGGACTAAACATGTTGAATCAGTTGGGTTGGTTAATATAGAGTTGTAAATCATACATGTTTGTCTCTTTTATTTATATGAACGCTAGAACCAAGGAGAAGCTTATAAAAGTGATAGTCAAGTACCTTAAGATGTTACCTTGCTTGAAGAGTGATGGTACAATATCACCTTGTGGAAGCTTTCCTTTCTTAGCGGTTGTGCATCGTGTTTGTGGCACCCTCCGTGGATCATCTCTCTATGATGAATGAGCTATGTCCTTCTTGTGCAAATTGTTAAACTTCATGTGTCACTCTCTTCGTCTCTGATGTGAGTTTATCTCAGGACTTCCCAAATCGATATTGAAAGTTTTTCTGCAGGGGTTAGTCCGACAAAAATATACCAATGTCTACACAAGCAGTTTTTAGTTCAATAACCGAACTAGACTCCATGTCTAATCAGATTAAGGAAGGCTGTTTAACTTAAGCACCATGCTTAATTTAAAAGCCAATAGAAGTATGTGTAGTACTTCCAAACTAACACTTACTAGGATAAACAAAGGTAGCGTGATGGCATTTATAGAGATCTACTCGAGTGGAGACGAAGTAGTGTGATTAGTATTTAACAAATTGAGCATGTCTTAAAGGTAGGGACAACCAACATAGCAACATGGCAAAGAATGTTTTTATGTAAAGTACTCCCCTAAGCTTGATTTTTGCAGAATTCAAGTTTGGATGAATTTAATTCAGTGTTGCATGATGATTGGTTGGACATACCTTGTACTTGCTTGTCATTCATCTGATCTTCTTGTTCCAATCCTGAAAAGGTTAGTGACAAGAATACCTGAAGGAATATTTTTACAATTATCCTTATATGCTCAATACACAAGGTAATGTTGCAAATAATTAAAAACTCATGTTACGATCTGATCAGTGCTTATTTTAGGACACTGAGCTTGTCCTTGGGAAACCATCAATTTATGTCGGCGAAGTGGTTTCCCTTCCAACGCTGACCTAAATCAAGATCAACTCAACGCGATCTGCAATATTTATTATAGACATATGCATCGACAACCACCCTTTTAAAGTTTTTATAAATAGAAAGGAAGAGGGGGTTGGAGATCTCAAATGTGGTGATGTTAGAGAGACCAATAGATTGGGAAGATGTTACATATGAGCATGGAGTAAACAAAGTGGCTATGAAATAAATTCCATGCTCATTAATGTTATCTTCGTCTCCAATCTGAATGTTCAGAGTTCCTCTTGGATTGGTCTAACTTATGTCCTCTTCTATAGTTGGATGAATCCCATCTTCAAAGGGAGTCAAGAACTCACCATTTGAAATTGAACCAAAGTCAGAATTCATTAAGGCTTCTTCCTTATCCATCCATTCTACACATTCTAGCCATTTAGAACTTGTGATCAGGAAAGGGGAGGTGTTAGAATTTTCTATATGGCTTAGCTCTCCTTCACTTGATATGTCATCCTTGACTTCTTCATAACAGGAACCAGGACATTCTCTAAGGATATGTCATCCTCGACTTCTTCATAACAGGAACCAGGATATTCTCTAAGAGAACCATTATTGCAAGGATTTGAATTATCCCTACTTGAAGGTCTCTTATGGAACCAGAAGTCTAAACCATCAGCATCTGAAAGATTTAAGGTCGGAATTCCTTCCTCCCTTCGACAATTTTGGGGTATTGATGGTTTAGGATTGATAGCTAAAGTTTGGAATTGAAGTGGTTGTGATCTGGCTATCGAAACTTCTTCTTCTTGTCTAGGAACTGGTTCTGTCTCTTTCTCAGGGATATAAAAGCTAGGAGACTTTCCACTTAATAAATCAATCAAATTCCAAGCTTCACTAGCAGGTAGGTGATAGAAGGATCCTCTAGAGGCTGTATTCAAGGTTTGCTTATCTTCCCTACTAAGGCCCTCAAAAAAGTGAATTAGAAGAACTTCTTCTGGAATAGAAAGCTTTGGGCCAGTGAGAGTAAGGTTAATAAAGCGGTCCCATGATTTGCCAAGAGATTCTTCTTCCAGTTGTCTAAAAGAAATAATCTCACGCCGAAGTTCCGCCACTTTGGAGATTGGAAAATACTTAGAAATAAAACTACTATATAACTCCTTCCAATCTCCATGAACACTCCCTATTTTGAGTTTGTACCAATGTCTAGCTTTTCCCGTTAAAGAGAACGGAAAGAGCTTCCATTTGAGGGTCTCATCGGACATTCCTTCTATGCGAAGGAGGTCACAGACTCGATAAAACTCTCTTAGGTGTGTCTATGGGTTTAGACAGAGCAAAAGCTAGGGTTTAGAGATGAGAGCTCTCCTCTCTTCTCTAAACTAGAGTAGATCTAGATAGTAGCGAGATGGAGAGCGAGGGAGGATGGGAGGAGAGGCCGGCCTGTCGGTTCTTCCTCCAGTTGTACTTCGCCATGATCAAGCTCTAATCAAGCTTGCTCATGGGATGACTCTGGTAATCTAATTCTAATTCATTATACAATTACTAATCCTGTATGTTCTGGTTCACAATTCTTTTGAGTACTTTAATCTATAGGACGCTATAGGTGAGAGTTGTAGTATAGGTGTAAGCGTGGTGCTTAGACCTAGATTACTTGTGGATATCCCCTCTCTAGCTAGATCTTGTGGTAGGCCGCGTAGGTGACAGTTACGTTGGTCCCCTGTAGTCCACCTCTTGTTAGTAGGACGGGTAGGGTTTATCGGCCTATGGATAAGCATCCTTTGTGGTGTATTCTTATCACGTGGTTCATCCCAGACATAGACATACCTTTTTGAAGTAGACAAACCATAGTTATCCTCTCTATTCTCCTACCATCGCTCGTATACTAGATTGCTCAATTCTCTATTCCCCTATTATTACACATTGTTATCTTATCTTTAATATTGCTCTTATTCAATTCTACCATCTTTCCTATTTACACTTATCTATCTATCTTGGTTAAGTTAGAGCATAGTTGGTTCACCAGTTTCCTTGTGGATACGATAAAACCTTTAACCGGGAAAAAGCTACAATGGTATCCGTGCGCTTGCGAATTTATCTGTGTGCATATAAATACCATAGTACACTCTAGTGCCATGTTGGGGATGACAACCTAGTATTCAAGTGGTGTTAGCAAGTGTCAACAAGCATTTTTGGCACCGTTGCCGGGGAGACGGTTGCTGAGTTGACTACGAACTAGCTTAATCATTTTATAAAAAAATAATAAAAAAATATATATTTTCCTTTTATCCTTTGCCTCATCTCTGCTATTCTTTCTTCTTATCTAATCCTTGATTTCTGGTCTATCATGAATGCAAACATGTCTATCTATGAATTTCATAGACCTACGGGCACACATCTCGAACCACCAAAATCTTCAAAGCCTATCATAGCATCTAGTTTTGAGATAGACCCCGAATACATAGAATTTGTTCAAAAACAACCTTTCTCAGGAGAAGGTGAGGAAAACCCATACACACACCTAAGAGAGTTTTATAGAGTCTGTGACCTGCTTCGCATAGAAGGCATGTCCGATGAGACCCTTAAATGGAAGCTCTTTCCGTTCTCTTTAATAGGAAAAGCTAGACATTGGTATAAACTCAAAGTAGGGAGTGTTCATGGAGATTGGAAGGAGTTACATAATAGTTTTCTTTTAAAATATTTTCCAATCTCTAAAGTGGTGGAACTTCGGCGTGAGATTATTTCTTTTAGACAACTGGAAGAAGAATCTCTTGGCAAATCATGGGACCGCTTTGTTAACCTTACTCTCACAGGCCCAAAGCTTTCTATTCCACAAGAAGTTCTTCTAATTAACTTTTTTGAGGGCCTTAGTATGGAAAATAAGCAAACATTGAATACAGCCTTCGGAGGATCTTTCCACCACCCATCCGCTAGTGAAGCTTGGAATTTGATTGATTTAATGAGCGGAAAGTCTCCTAGCTTTTTTATCCTTGAGAAAGAGAAAGAACCAGTTCCTAGAAAAGAAACAGAAGTTTCAATAGCCAGATCACAACCACTTCAATTCCAAACTTTAGCTATCGATCCTAAACCATCAATACCCCAAAATTCTCCAAGGGAGGAAGGAATTCCGACCTTAAATCTTTCAGATACTGAGGGTTTAGACTTCTGGTTCCATAAGAGACCTTCAAGCAGGGATAATTCAAATCCTTGCAATAATGTTCCTCTTAGAGAATGTCATGGTTCCTTTTATGAAGAAGTCGAGGATGACATATCAAGTGAAGGAGAGCTAAGCCATATAGAAAATTCTATCAGCTCCCCTTTCCTGATCACAAGTACCAAATGGCTAGAATGTGTAGAATGGATGGATAAGGAAGAAGCCTTAATGGATTCTGAGTTTGGCTCAATTTCAAATGGTGAGTTCTTGACTCCCTTTGAAGATGAGATTCATCCAACTACAGAAGAGGACATAGGTGAGACCAATCCAGGAGAAACTCCGAACATTCAGATTGGAGACGAAGATAACATTAATGAGCATGAAATTTATTTCATAGCCACTTTTTTTACTCCATGCTCATATGTAACATCTTCCCAATCTATTGGTCTCTCCAACATCACCACATTTGAGATCTCCGACCCCCTCTTCCTTTCTATTTATTAAAACTTTAAAGGGCGGTTGTCGATGCATATGTCTTTAATAAGTATTGCAGATCTCGTTGAGTTGATCTTGATATAGGTCAGCGATGGAAGGGAAACATTTGCCGACATAAATTGATGGTTTCCCAAGGACAAGGTGTTGGGTATTCTTAACATCACTACCAAAAGTAGACAGCTTTCTAATTCTAGTAACGGTGCCAAAAATGCCAAACCTATCCCTCATACCACTTAAGCCAAGTTATGATCCCCAGCATGACATGAGAGACGCGGTATTGAAATATGCAATTGCTCTTCTAAATATATAATGAATGGAGTCTGCAAGCGCACAGATTAATACCGATGTAGCATTTTAACCGGGAAGTATTCCAGGTATCGTTATTTATATTTTTACCACTGGGAAGGGATTAACAATCATCAATATTGATTACAGAATAGAATATGAGATTGAGTATCTATCATTGCATGTATAATTGAGAACATTGTATCTAATTCTTTCATATAGGGGTAAGTGTCACATAAAAGATATATGAAATAATGAATAGTGACAAAGGTAATTAGTCTGATCATAACTTCGCCACATATATATATGATAAGCACCTCAATTAGATACTCTAGAAAGTCATTAGCATGGTATTAGAACGAACTACAAGAATATTTCCTAAGTTATTCTCAACTATATAGTCTAGCATTATCATAGTTAGTGCAAGCATACTTAGCAATCATTGTGAGACAAGACTACGCCCATGCATAGTGATATTAGCAAGGTAAATGAGAAACATAGCAATCACTCCCCTGTAATAATGTTGCTCTGCTAGCCCGATACACGAGAGGGGGACTATATAAGAATCAATGAAGCTGTCACTATCACGAACTACCCCACGATCTGGCATATTGGGTACAATCACAGATAAATACGGTATAAGCACCACGCCTACACAATATCTATCATTTACCCATGGATCTGATGGATAAACGCTATACAATCCTAAACATGTATATAGATCCAATCTGTCGAGGGTATCAGTAAGGGGTACCCTCACCGATGCACATAACGAGACTACCCGTACGCAGGTCGAGGCCCTCAACTCGATGCCCTGGTCATACATATGCGCGGTCGTCGACGACCGCAGCCTCGAAGACGGAAATAGCGTCGAGCGAATCGATCAGGGTCGAGCGCCAGCTACCGTCGAATACGGAAACGGGCTCGCACGAACCAGGAGGCGTCGAGCGCAAGGACGCCGCCCGCCGCCTGACGCGTGCACGAGAGCCAGGGCATTTAATGCGCCTGTCGCTTTCCCACCTAATACGCTGGTCACGGGAAGCGTGATAGGGAACAGGCACCCGTCCCGTCGTTCTTTTTGCAGCCTTCTCCACCAAACGACCCACAGCATGTCAGGACGCGGGAAGCAGGGATGGAACGTCTAATGAGGACCCCCTCGAGGTAGCCAAGGTCAGCGCTCTGGATATCAGGGCATTGCACGGCATCCGACCCTCGATCAGACATGGTTCCTTCTTGGAGACGAGGTGGGCGTCGACTGACAACATCGCAACCACTCCGCCGGATCTGCCGCCATACCGTACAAGCGTGCGACCGGTGAACCAGCCCAAGACGGCGCGCAGAGCAGGATACAGGGGCACGCGTAATCGTCATCGAGCTACCAAGATGGGATGGCTCGAGACCACGCCAGTACGGAGGCCTCGAGTAGGTCAGCGCGCCATGCTTCTATCGACCCCTACTCTGACACCTATACATGTACCCTAGGTCTCTCCTTGGAGCTATAAAAGGAAGGACCCGCGAGTAGATAGACACACGCAACACTACACCCATACGCAGTAGAACTCCCATACTCCATACCACGCTTGTATTCGCCCCTGTACAAGCACTTAGGTGCAAGATAATACAAACTTCCCTCCCCCGCTGAACGTAGGGCCTTCTCTTGCCCGAACCAGGATAAATCTTTGTGTCTTCTTGCATCACCATCTGGGAAAGGGAGCACGCATACAAATTTACTCGTTGGTGTGACCCCCGTGGCGAAAACACCGACAGTTGGCGTGCCAGGTAGGGGTCCTGCGTGTTTTTTCATCGATTTCCCATTCCTTTCCAGATGGCCACTCTCGCCTCGCCGATTCCGCGCTCCACGGTGATTTGGTTTGGGAGTCTCGAGTTCATGTCTACTGGCTCCGGCTATGACATGATCTTGCTCTCGATCAAAGGACCGGGAGGAGCTCGCGTTGCGCCAGCACGGTTGAGGGCCCCGAGATGCCCTCGCCACCACGCCTCCCCGCCCAAGAAGAGGCGTGGACAGCACCATCGTCGCCCCTCTGCCTCGTCACGACCTGCAGTTTGTGCTAGGCAGGAGGTGACACAGGAGCCGGCAGCCCCGCGTGCCGGAGCCATGGACGTGCCGGCTCAGTGTCACATGACGACAAGAGGAGACGCACCTACCGCCAGGCTACTTCCACACGGGTTGTTCACTCCAAGAAGGGCACTGCCATTCGGATTGGACAACGTCGCGGCATCGCTAGCCAGAGCGATATGCCCAAACGCCCAGACGTACGTGGAGAGACCAATGGTCCTCCCATGTAACTCTAAAGCACAACAACCGACGTCCGAATTGCCAGATTTCTCCTAGGTACGAGGCCTCCGTCGCCTAGGCCCTGGACGGTACACGATCACCTCACTCAGGCAGCGGCTGCTGGAGGAGAGACGTGGATGTTTCTATGCCGCCAAGCCGGACTCCGATTCCAAGACCGATAGCTACGACCCTACTAGGGACTGCTATCACATCGACGGAGCGGTAGAAACTACCGACGAGACGCAGGATGCAGCTGCGGGCGGTCGAGCCCCTGCGGCAAGGGAAGACCCCAGGACGCCTGGGAACGACGGACAGGTCGACCCGCTTCCACAGGAAGACAGGGCTGCGCAGCTCGCGCAGCTACGAGAGCTCAAGACCAAGCTTGACGAGGATCGTGAGCGCCTCGTCTTGCTCGAGCAAATCCTCGAGCAAGACTTGCCTTACCCGCCTAGCGGGAGTGTCCGTAGGCGTGCTCGAGAGGTACACCGGCAAATCATCGGAGACGCGGAGCCAGAGCAACCCGTCAACCGCTTCCCTCGAGCAGGCCAGAATGTAGTGGCAGCAACAATGCTGCTACGCAACATGCCAGAGTCATCGAACTCCCAAGCTCGACGCATTCGAGACGAGGTGCAGACTTTGCTCCAGGTAGTGGCGGTTCAACAAGCCGAAAGCTCGGCTTCTCTATGACGAGGAGCCGCCACTGAAAAGCGCGATGAGCCACCCCAAAATGAAAAGGAGGTTTCAGTCCATCAACAGCCACCCCCTCGAGGAAGAAAGACCACTCTTGTCCTCCCTGTCGACAATCAGCGTCGACACAACGCGTGGCATGACATCGAAGAGAGTCGACGCCGTCGGTATGGGGACGCGGAAGAGCGTGGTTACAGCGCACATCGCGGTGGGAGGTATGACAGCGACGAGGACCGGATGGCCCCCGAACCACCAGGCCCACGGGTGTTCAGCAGGGCAATCCGCAGCACGCCTACCAGCATCGCAAAATACAATGGTGAGACCAAACCAGAGTTGTGGCTGGCCAATTTTAGGCTGGCCTGTCAGCTAGGAGGCGCTCGAGGAGATGATCGAGCTATCATCAGACAGCTACCGCTCTTCCTCTCCGACACCGCCCGTCGATGGCTCGAGGAACTTCTAGCTAATCAGATCCATGACTGGGTCGATTTGGTTAGAGTCTTCGAGGGTAATTTCAAAGGGACCTACATACGGCCCGGGAACTCGTGGGACCTCAGCAAATGCAAGTAGAAGTCAGGAGAAACTCTTCGAGAGTACGCTTGACGCTTCTCAAAACAGCGCACCGAGCTGCCACATATCCCCGACCACGACGTCATCCTGGCATTTGTCTCTGATACCACTAGTCGAGACTTGGTGCGGGAATTAGGTCAAAATGGACCTCAGACCATCGATGAGCTCATGGACGTAGTGGCAAACTACGCAGCAGGAGAGGAAGCAGTCGGTGCCTTCTTTAGTTGTGAAGGAAGGAAAGGCAAGCAGCCTGCCGATGAAGATGGGACCCCCAGTCGAGGGCTCAAGAAGAACAAGAAGAAGCAGAAAGTGCGGCAGTTCAAGTAGGAGAACTTCGACGACGACCTCGTCGCCGCCATGGAGCGGAAGAAACCTCGAGGCCCCCCAGATGGGGGTATCTTCGATAAGATGCTAGAGGAACCATGCCCTTACCATAAAGGAGGAGCCAACCACAAGCTCAAGGACTGTCGTATGCTGAAAAAGCATTTCGACGGCCTAGGGTTCAGAAAGGACGCGCGCGACGACCCAAAGAAGGAGAAGGCGGCGACAAGGAGGGCAACAAGGATGACGATGGTTTCCCTGCCGTCCACAACTGCTACATGATCTATGGTGGGCCCTCAACGCAGTTGACTGATAGGCAGCGCAAGAGGGAACGCCGTGAGGTCTTCGCCGCAAGAATGGCGGTGCCCCAGTACCTCAGCTGGTCGAGCACACCCATCACCTTCGACCGAGAGGATCACCCCGACAAGGTGGTTGCCCCAGGCGTCTACCCGCTCGTCGTCGACCCCATCATTGTCAATACCCGGCTCTCGAAGGTGCTAATGGACGGATGCAGCAGCCTCAACATCATCTATCTCGAGACCCTCGACCTCCTCGGCATCGACAGGGGACGGCTCAAACCAAGCGCTGGCGGTTTCCATGGCGTCGTGCCAGGGAAAAAGGCGCTGCCAGTGGGTCGAATCGACCTACCCGTCTGCTTTGGCACGGCAGCCAACTTCAGGAAGGAGACGCTCACCTTTGAAGTGGTCGGGTTCCGAGGCACGTATCACGCCATCATCGGGCGCCCGGGCTACGCCAAGTTCATGGCCATACCCAACTACACTTACTTGAAGCTGAAAATGCCCGGTCCCAAAGGAGTCATCACCGTCAGCTCCTCCTTCGAGCACGCTTACGAGTGCGACGTCGAGTGCGTCGAGTATGGGGAGGCGGTTGAAAACTCCACCCAGCTCGTCGCAAAGCTCAAGGCCCTGGCCGCTGAGGCTCCAGAGCCCAAACGCCACGCGGGCAGCTTCGAGCCAGCAGAGGGGACCAAGAAGATCCCGCTCGATCCTAACAACTCCGACGGCAAGGTGCTGACGATCAGCGCCGACCTCGACCCCAAATAGGAAGCTGTGCTTGTCGACTTTCTCCGTGCGAACGCCGACATGTTCGCATGGAGTCCCTCGGACATGCCAGGCATACCGAGGGAAGTCGCCGAGCACTCCTTGGAGATTCGAGCCGGTTCCAAGCCAGTGAAGCAACGGTTGCGCCGATTCGACGAGGAGAAGCGCATGATCATTGGCGAGGAGGTCCACAAGCTTTTGACGGCCGGATTCATCAAGGAGGTTCACCATCCCGACTGGTTAGCAAACCCTGTACTAGTTAAGCAAAAGAATGGGAAAATGAGGATGTGTGTCGATTATACGAGTTTAAATAAAGCATGTCCGAAAGTTCCCTTTCCATTACCATGTATTGATCAAATTGTTGATTATACTGCGGGATGTGAAACCCTTTCTTTTCTTGATGCATTTTCTGGTTACCATCAAATAAAAATGAAAGAGTCCGACCAGCTCGCGACCTCTTTCAAGACACCTTTTGGGATGTATTGCTATGTAACCATGCCGTTTGGGCTTCGAAATGCGGGAGCCACGTACCAACGCTGCATGCTTCACGTATTTGGCAAGCACATAGGGTCGACGTTCGAGGCCTATGTCGACGACATTGTCGTCAAATCAAAGCGGCGAGGAGACTTGATCCAGGACCTTGAGATCGCTTTTAGCTGCTTACGCGTCAACCAGATCAAGCTCAATCCCGAGAAATGCGTTTTCGGCGTGCCTCGAGGCATGCTCTTGGGTTACATTGTTTCCCAGCGGCATCGAGGCCAACCCCGAGAAAGTCTCGGCCATCACAAGAATGGGGCCAATCCGAGACATCAAGGGTGTGCAGAGAGTCACGGGATGCCTAGCGGCGCTGAGCCGTTTCATCTCGAGATTAGGAGAAAAGGCGTTACCACTGTATCGACTTCTAAAGAAGGTCGAGCGTTTTTCTTGGACCCCCGAGGCTGAGGAAGCCCTCGAAAATCTGAAGAGAACGCTGACCTCAGCACCAGTCCTGGTCTCACCTCAACCTGCGGAACCACTGCTCCTTTACGTCGCCTCGACGACCCAGGTTGTCAGTGCGGCGGTGGTGGTCGAAAGGCAGGAGGAGGGGCACGCATTGCCAGTCCAGGGGCCAGTATATTTCGTCAGCGAGGTGCTCTCGGAGACCAAGGCACGTTACCCCCAAATTCAGAAGCTGATCTACACCGTAATCCTCGCCCGCCGTAAGCTGCAGCACTACTTCCTCGGTCACCCCATCACGGTGGTCCCGTCTTTCCCCCTGGGCGAGATAATCCAGAGTAAGGAGGCCACGGGAAGAATAGCTAAATGGTCGGTCGAGCTCATGAGTGAGACTCTCACTTATGCGCCTCGCAAGGCCATCAAATCGCCAGCTCTGGTGGACTTCGTCGCGGAATGGACAGACTCCCAGCTTCCCCCGACCCAGGTCCAGGCGGAGCTGTGGATGATGTATTTCGACGGGTCACTCTTGAAAACAGGGGCCGGGGCCGGCCTGCTGTTCATCTCGCCCTTGGGCATCCATATGAGATACGTCATCAGGATTCACTTTGCCGCATCTAACAATGTCGCAGAGTACGAGGCCCACGTCAACGGTCTCAAGATCGCCATCGAGCTAGGAGTCCGACGCCTCGACGTCCGAGGCGACTCCCAACTCGTCATTGACCAAGTGATGAAGACTTCAAGCTGCCATGACCTGAAAATGGAGGCGTACTGCAAAGAAGTCCGTCGACTCGAGGACAAATTCCATGGCTTTGAGCTCGTCCATGTCGCCCGACGCTACAACGAGGCAGCCGACGAACTCGCCAAGATCGCGTCGACCCAAGGCACGGTGCCACCTGACGCGTTCTCGAGAGATCTTCACGAGCCATCCGTCGACTTGGGCTTGGGGGCTGGCGTCGATGCCGATCCTGCCCAGCCAACCGACATCGTCGACGCACTGTTAATGTCAGCTGAGGCGATGGAGGTAGAACAGCGGCCCGGTCGACCGTTCGACTGGCGCACACCATTACTCGACTGCCTAATCCGCTGCGAGCTGCCAGAAGATCGATCTGAGGCCCGCCATATCGCTCGAAGAGCCAAGTCATACGTGATTTATGGCGAAGACAATGAGCTATATCGATGAAGCCCGACGGGGATTTTGCAGCGTTGCATCACCGTGGAAGAAGGCCGGAAACTCCTCGAGGATCTGCACTCGGGGGCTTGTGGCCACCATGCTACTCCACGGACCCTTATAGGGAACGCCTTCCGACAAGGCTTCTACTGGCCAACGGCCGAAGCAGATGCCGTCAAGCTCGTACGCTCATGTGATGGTTGCCAGTTCTACGCCAAACAGACGCATCTGCCCGCCCACGCTCTTCAGATGATCCCCATCACATGGCCATTTGCGGTGTGGGGGCTCGACTTAGTAGGGCCCCTACAAAAGGCGAAAGGCTGGTACACCCACTTGCTGGTGGCCACCGACAAATTCTCCAAATGGATCGAGGCTCGACCCATCACCAACATCCGCTCCGAGTAGGCCGTCCTTTTCTTCACCGACATCATCCACCGGTTTGGGATTCCCAACGTCATCATCACCGATAACGGCACTTAGTTCACCGGCAAAAAGTTCTTGAACTTCTACGATCAGCATCACATCCGTGTGAACTGGTCTGCAGTAGCCCACCCTCGAACTAACGGCCAGGTCGAGCGTGCCAACGGCATGATTTTGCAAGGACTCCAGCCAAGGATCTACAATCGCTTGAAGAAATTCGGCAAGAAGTGGGTCGAGGAGCTTTCATCGGTCCTATGGAGCCTGAGGACAACGCCAAGCAGGGCCATAAAATACACCCCATTCTTCATGGTCTACGGCTCAGAGGCTTTCCTCCCCACAGACCTCGAGTATGGGTCTCCTCGACTCAAAGCATACAACGAGTAATCAAATATGGAAACTCAAGAAAACGCGGTCGACCAACTTGAGGAGGCTCGAGACATGGCCCTCCTCAACTCTGCCAGATATCAGTAGAAACTTTGACGCTACCACGACAAGCACGTGCGCAAGAGGGACTTAAACGTGGGCGACCTTGTCCTACGACGGCGGCAAAGCAATCAAGGACGCCACAAGCTGACTCCACCTTGGGAGGGCCCGTACGTGGTAGCCGAGGTCTTGAAGCCAGGGACGTACAAGCTCGCGGACGAAAAGGGGGCGATCTTCACCAACGCGTGGAACATCGAACAGCTACGTCGATTCTACCCCTAGAAGTTCAAAACTTTATGTCCCTATGTACATTCTGTACCAAGGCCTTGTAAATGAATAAATAAAGCCTTTCCCTCAAGCGATTTACTTTCTCACAAATCTCGATGCCAGAAGGGAGTACCAACTATGACCCATCATAGTCAATACCCCCTCGGGGGCTACCAGGGGGGCAACCCCCCCCCCAAGTGTCGAAAAAACCAAGAAATTCTCTCTTCCTTACTTAGTAAACCTTGCACGTTCGAGTAGTTGAGGCGCCTCGAGCCCCTTAAGGGCCGAGGGACAACGAGTCTGAGAACTCCTACGCCCCCGGGCTATGGAAACTCTACACACTTCCTCACCCTCGAGGTGACCGAGGCTGTTTTTAACAAAAGATCGAACAAGGAATACAAACGTAGGCGCAAAGGGAAATAAAAGAACCTCGAGCGGAAAGATAGATAAACATTTAACAGTCACAAAAAGACATTGTACCACTTATAGAGAAGTTAATAGAGTATTATACAAGGGGCCCTAGGCACCCTAAGCAGGCTCGCAGGCCTCAGTCTTCAGCACGATCCTCACCACCCTCGCCTACGCCCGAGCTAGTCTCAGGAGGAAGCACCTCAGGCTCAAATAGCTTGGCCAGCCTCTCTCCAGGAGCCTCCGCGTCGTCGATCAAGGCGTGGAGCCTCTCTTCGTTCTCCGCGTCGGTCTTAGAGATGTCGGTGACGAAGCCGTGGGACACCACCTCCATGTCGTAGGAGAAGACCGAGCAGACAACCGCCATCGCCCGCTTCACCCCGATGTGGAGGGCATCCCGCACCCGATCTCTCAGCGTCGCGCCTAGGTAGCACAGCTGGTCGACCAGTGCGTCGCCTCGAGCGTCCTCCTTCGACTCGTCCATAGGCTCGACCTCCCAAGAGGTCGAGAGGTCGTTTATCGCCGTCCGCACTCGACGGTTCAAAGCAATCTCCGCCTCAAGCTGGGCCTTAGCACTACGGGCCTCGACTTGGGCGGCCAAGAGTTCGTCCTTAAGCCCTATAAATGCCAATACAAGAAGCTTTAGAAAAAACCAAGCACACCTCGAAAAAGAAATCCGACAAAGGAAACGTACCGCGGACATTCTCCTCCAGGGCCGTGTTCTCGCCGATTAGTCTGGTGTTGGCCCTCTCGATCTCTTTGTTGGAGCGGGCCAGCTCAGTGTTGGCAACGCGGAGATCCTCGATCGCCTGGCCAGCCTGAGCAATGGCCCCACTCTTCTCCAACAGCTCTCCCTTCAGACGTTCGACGTTGTCAGAGAGACTGCGGGATCGAGCCCGCTCCGCCTCGAGGTCTTCGAGGGCCTTCTTCTTTGCGTCCTCGACGACACCTCTAGCGACCTCACTGTCCACATACGCCACCTTCATCTTCTGGAAGGAGTCTCGGAGGGAGTCCAGGTCGGTCTTGAGAAGGCCCTTCTCCTTGTCCAGGTCTGCAATGACGCTCTTGTAGGACAGGGCCTCCTCCCGGGCTTTGGATGCGGCCTCCTCGACCGTCAGAGCTCGCTCCCGCAGCAGCGTCATCTCCTCCTCTGCCTTCTTTGAGGCCTCTTGAGCCTCGACCAGGGCAGCCTCCCTTGCCTTCTTCTCCTCCTCGAGCGCTATGAGGTCTTTGTAGGCCTTAAGGAGCTTTTCTTGCGACTCGAGGAGTTGGTCCTAGAGGACGGGGAGCTGCTCCCAGCCTCCTCTTGTGGCGTGAATGAAGCTAGACTTGATACGGGAGGTCTCTTTCATGTCCTACGAGCCGGGGGTCGAACGGTTAGAACACGAAACCAAAGGATCTATGAGAATTAAGGACCAAAAAATACTTACAAAGTAGGCCGGCCCGAGCCCGTTGTTGATGACGTCCGATAGGAGCCCCACCACGTGCTTCATCCAAAGGCGGAGCTCCTCAACGTGTTCCCATTTCGCCGCCTCCTTCCTGTCGTCCAGGAAGATGTTGGGCTCGGACGGATCGGTGGAAGCCCGGATGCGGATCCGATCGGGGCACCAGTTCTCCATCTCCTGGTCAGCCCGCGCCTTGACGCCGCGGATAAGGTCCTCGACGGTCTCGAGGGAGCCCCCATGGCGCAAGAACAGGTCGACGAGGCATGGGAACCGTCCGTCGTCATCCACCGTCTTCCAGGTACCGTCCTTACTCCCCGACGTCCCGATCTCGTCCTCCTCAGAGGGAAAACGGTCCTCCCACGCCCGACGCTCTCGGAGGAACCCTGGGGCGATCCCATCCATGCCGTAGATCGTCTTCCTGATCTCGGACTCGGGGTCGGCGGGGGTGCGCATCATGCAGGCAAGTGCCACCACACTGTCCGCTCGCCCCGGCTCTGCCCGGATCGCGGTGGGCGCCCCCGGAAGGAGCCACGCTGGGGTTGGAGGGCCGTACACCGGCAAATCCTCTTCCTGTTCTCCGGGCTCTTGCGGCGCCGGTGGTACTGGTTGGGGCAGACCTTGAGGCAGGGGCTCGAGCGGTCCTTCTTCTTGGCCCCCCTAATGCTGTTGCTGCCCCTCGAGCATTTGCTGCTGTTGCTCCACCTGCTGCTGCTGCTGCTGCTCCTGCTGCTGCTGCTGTTGCTGCTCCTGCTGCTGCTGCTGTTGTTGCCCCGCGTGTTCCTACGACTCTTGTCAGCGGCCCTGCTCCTGCGGCTGCCGCCTCGCCTCGCGCTCCCGCTCCTCCTCCTCCTCCTTCTTCCTCTGCTCCTCGAGGGTGCGGAGACCAGCAGGCCAGGGCGTCCGTTCCACGACAAAGGAGGTCGACGCCTCCTCATCCATAGGGCGGGCATCCCTCGACGTCTCGTTGCCGCCAGACGTGTCGCAGATGGTGATGGGATCCCCCTCGACCCCCGATCGGGGAGGCTCGGGGGCTCCCTCTTGCCCCTGGGTCTGGGCCACCTCGACCCGTGTCGGCGGCGACGGGGCAAGCTCGAGACGAGGCGGGGCGCTCTCAGCGACGGCCGAAGGCTGAGAGTCGGAGGAGCCTATAAAGCCAAGAATAAAGGTCGGTCATTGTAATGACCAACGTAAGAACATCACAAGTCCCAGAGGTAAGTCACAAACCTGGCTCCTTGGAGGCTGCTCCCATTTTGAGCCTCTTCGCCATTGAAGGCTGAGCCTACTCGAGCGTCCACTTTAATCTGAAACAAAAGGAACAAGCGTAAAAAGACCGGCATACAAGAAAACACAGAGGAACAGGAGAACAAAAGTCACAACGTCGAAGAGCTTACCCCACGGGGAGAACAGCTCGCCTGCCGGTGCCCCGACCGGTGGGCCTCGAGCCACCCCGTGTCAAGGTCCCAGACCCCTCGAGGACAGGCGTTGGCCTTGGCCCAGCAACTTCCCCTTGGTGGGCACCGGGACTGGTGCTCCTGCGGCCAGTGTCTCCTTTCTCGGAGGCCGCGGCACGACCGCGAGTCAGTGGCCCCGTCGCCTGAGGCCTAGCATGGCCACCCATCTTGGGCGCTGGGGGAGGGCGCGGGGCAACCTGACCAGTCGCGGGCACCGGGGGGGTGTCGGCACGAGGGCGGTGAGTTCCGCCTGGTCCCTCTTTTGGTGTCCCCATCCGCGGGGCGTCGACGTCACCTCGAGGCGGACCCTCGAGGATGCGGTCGAGGCGAGACGCCATCCCCTCGGAGTCATCGCTGTCCTCATCATCATCTCCACCATCATCGTCGTTGGGGGACTCTTCCTCAGGCTCCCCCCTCTGCCTGAATTTAGACTGACGTGCCTCTAATGCTTGGCGATCGAGGTTTTTCTTTTTCTCCCCTTTCTTCTTAGAGTCCTTGGCGGACTTTAACTTCTCGGCGAACCGGCACCGCGCGTCGCGATCAACCTCGTCCTCCTTCACTGGAGGCCTCGAGGACCGGACATCAATCCGTCCCTGCCAGAACAAAGGTGGATTTAGGAAAAAGGGAAGAAAAGAAACCCAGAATCAAGGCTGCGCACGAGAAGAAAGCATACCAGATCGATCGAGCCTACATCTGGCCTCATGGGGAAGCCGTTAACATGCTCTGGCTTGATGTCACCAGCAATGGCGGCCCTGACCCTGGCCGCGACTTCGTCGTTCGCCGGAGCCTCGCTTGACATCCGGCATGCCTCGAGGTCCCAAGATGAGGCGCCAGGAGCCATCTCGTCCATCCTCAGCGGTCGAGACATCAACGGGAGAACTCTCCGGTGATGGACGGCCAAGAGAACGAGGGCGGCGGTAAAGCCCTCCGAGCGCAGTTTCTTCATGACGTCGAGGAGGGGGTCGAGCCGAGATTGATGAACCTGGACGACGCCGTACGTCCAATTTTCCGGACGCTCCGTGATCAGACGCCCGGTGTAGGCGGGCAGGAGGTCGTCGTCATTTCTCAAGTAGAACCACTAGGAATCCCAGCGGGCGTGGTTGGTCGACAGTCCCACCGGGATGTACTCGCGCGGCCTCTCCGTCTTCTCGGTCCTCAACACGAGGTTGAGGCAACCTGCCAGAACAGGCTTCCTCACGCTGGTGGTCCCAGTGGGGGCGTTGAAGAGCTCGCCCCTGTAGAGGTGGAGCCACAGCTCCCAGTGGGGCATCATCCCCAAATAGCCCTCACACACCGCGGCGAAGACCGCGGCGACGGTGATGGCGTTTGGGGAGAAGTGCTGGAGCTCCACCCCGTAGTGCTGGCAGAGCGCCCGCATGAAGCGGCTCGGGGGAGCGCCCAATCCATGGCGGTGGAACTTGGCAAACGAAACCACATAGCCCTTGGGCGGCCTGGGCTCCCTGTGGTCCGCCGGCGGCGCGATCCACTCCGGCGACGACAGCGAGGTGCGGCGGCGCAGGAGTCCCTCCCTCTCAAGCTCTTGCAGCCGGCGCTCCGTCATCGACGATAGGCGCCAGTCATCGGCGGCGACAAGCCTCATAGGCATTCTAGCCGGAAGGATGGCGGATCCGCTATTACTCGAGGGGGGCACGCGCGCATAGGATGGCAAGGGAACTAAGGCAATGAGAGGGCTAAGGCGAGAATGAAGACGGGAGGCAGAAGGGAGAACAGCGGCGACGCCAGGACACATTTATAGGCAGCTGTCCACCAATGGGCAGATCCGATAAAAGAGGTAGCTCCCCTCCGTAAATGCGCCGTCTAATGGTCCTTTCCCTCCTCTCAGGTGGAGCGCCCCGAATTCCACGCCAACGCAGTGTCATAACGTCTCCCACCTAAAAAGGCGCGCCCAACGGGCAAGAAGGCGAACTACCCACGGTCTTTTCCTTCCCTTGTAAGCCAAGGAGTGCACCCGTGGAAGCCTCGAGAGGTCGCAGGCTGGCCCACTGAAAGGGTTCGATAGCCGATCTCGAGCACCAGAGTCAGGGATCCCTAGCGAGAGGTCGAAGATCGAGGTCCGCCTCGAAGACTTACTGGGGATGTCCAAGGTAGGGTCGAGACAGTTGAGAGGAATGCCCCCGACGGGAGGCATCGAGCCGCCGGACACTATCGAATGAGACCGGTATCCCCGACCACGTCGACCCTGCTTTATGAGAACGCCTCCGGGCTACAGCTGACCCCCTCGAAAGGGGCACAGGTTCTCACTTGGACTACCCGCTAGGAACTCAATCTGGGGTGGAAGACGCTCGCTCTATCGAGAGTACGTCAAAACCTCCGCGCAAAACGAGCCAATCAGAACCTTCCACCACTGGTGTCGATAGCGTTTCTGCGAATTAGGCAATATAACCCTTGAAGGAGTCAAAAACTCCTCCAAGGGCTCGGGGGCTACCCCCGCGGGGTCGCTCGCGCGCCCCCATGGAAATTCGATCGCAAAACAAAGCCTCCACTCGAGCGCCAGCGCTCAAATGGAGACTCGGGGGCTACTGTCGAGGGTATCAGTAAGGGGTACCCTCACCGATGCACATAACGAGACTACCCGTACGCAGGTCGAGGCCCTCAACTCGACGCTTTGGTCATACATATGCGCGGTCGTCGACGACCGCAGCCTCGAAGACGGAAATAGCGTCGAGCGAATCGATCAGGGGTCGAGCGCCAGCTACCGTCGAATACGGAAATGGGCTCGCGCGAACCAGGAGGCGTCGAGTGCAAGGACGCCGCCCGCCGCCTGACGCGCGCACGAGAGCCAAGGCATTAAATGCGCCTGTCGCTTTCCCGCCTAACACGCTGGTCACGGGAAGCGTGATAGGGAACAGGCACCCGTCCCGTCGTTCTTTTTGCAGCCTTCTCCACCAAACGACCCAGAGCATGTCAGGATGCGGGAAGCATGGATGGAACGTCTAATCAGGACCCCCTCGAGGCAGCCAAGGTCAGCGCTCTGGATATCAGGGCATTGCACGGCATCCGACCCTCGATCAGACATGGTTCCTTCTTGGAGACGAGTTGGGCGTCGACTGACAACATCGCAACCACTCCGCCGGATCTGCCGCCATACCGTACAAGCGTGCGACCGGTGAACCAGCCCAAGACGGCGCGCAGAGCCGGATACAGGGGCACGCGTAATCATCATCGAGCTACCAAGATGGGACGGCTCGAGACCACGCCGGTACGGAGGCCTCGAGTAGGTCAGCGCGCCATGCTTCTATCGACCCCTACTCTAACACCTATACATGTACCCTAGGTCTCTCCTTGGAGCTATAAAAGGAAGGACCCGGGATTAGATAGACACACGCAACACTACACCCATACGCAGTAGAACTCCCATACTCCATACCACGCTTGTATTCGCCCCTGTACAAGCACTTAGGTGCAAGATAATACAAACTTCCCTCCCCCACTGGACGTAGGGCCTTCTCTTGCCCGAACCAGGAGAAGTCTCTGTGTCTTCTTGCATCACCATCTGGGAAAGGGAGCACGCATACAAATTTACTCGTTGGTGTGACCCCCCATGGGGAAAACACCGACACAATCTAACTAAGCCAAGTATATAACTATGATAAACTAAGAACAATATAATCTTGAATATAAGCAAGTAGAGCAAAGTCATAAGCAATATATTGAAATAGAACAAAATCATATTCATAATATTGAAGAACAAAGAAAATTAGAAGAACAATTAGAAGCACAATTAGAGAATTACCAAGAATCCTCTTGACAGATCCGGAAACCAATCGAAGATTAAGTCCTTCTAGTTCTAATCCTATGTAGCTATGCTAATCTAGATGTCTAATTGATGTGGTGGCTCTAATCTTGATGAGAGGCTTCTTCTCCCTTGAAGAATAATGAATTAGGGTTGAGAGGCTCTCTCCTCCAGGGGCCAGGGGGTCTGGTTTTATAGTCCCTTCAAGTGAATATGGGCCGTTGGATCAAACCGACATTGATTGAACGGTTATCCTTGATCCTTTAGGTCGGTGGAGATCTCCCCCGAAACAGAGTCCTGATTGGACTCCAATAGAGGGCGGGTGCCCTGGTTACCTGGGCCGGCGCCCAGGTCCTGGCCCCATTCGGCCTCCGCTTCCTTCCCGTGGCTTCTGGAGTCTTCTAGATGTAAGAAAATTGCACGGCACGTTGATATCTCTATGTAACCCCGACGTGTGGGCCTTCCTTTCGTATTTCCTAATAACCCGCTGCAGAAATAGACAAACACAAAAACTCGTAGAATTCTGTCAGATAAAACCCTAAGTCTAGATGTCGATTTCATTTGGATCCTTTTCTTTGTTTATTTGATAATTAAATTTGATACTTAAGGACTGTCAACAAACTCCTCCAAGCTTACCTCTTGCTCGTCCCTGAGCAAGGATAGACTCAGCTATGAAAGTTGTTGTAATGCCTTTAAAAATTGACGGTACACATGCTTTTAAATGATGTCTTATCTCTGAGTTAGAGTAAACTGTCAAGACTTAAAACTTACTTACTTTACCTTTCACCATGGCACTTGTAACCGTCACTTCCATCTTGAGTTGTTAAAAGATATAACAGTCTAGTCAAGTGCCATGTCTCTTATTCTTGATTAGCTATAGCTCTGGAGTTTTTGCAGATTTTCAAATAAAACTCAGAGATTCCTTGTATGATTCTCTTAAATCTCTCTTTTGTCGTATTTCTGGATCCTTACCAAGGCAGTGATGGTATATGCATTCTCTCAATATATATGGTATTTATGGTATAAAGCATATTGCCTTCTCTCTCACCCTACTCTAATATGGCTTTAATATCTGGAGCTCATAGGTGGGAGATAAAGTATACATACTTACAAGACATTTATTGCATAGTCAAACCATGGATCCAAAGAAACAAATCAATAAGTCAAATCAAGATGTGCATGTGTGGCGAATGAATGGTGTATGGTGATGATGGTGTTAACAATGGTGGAAGTCTAATTCTTTTGCTCTTTGAGGGGATACATACCTTCCTTGCTTTTTGAAACTTTATGAGGAGAATGAGATGCTCTTCTTTTTCTTTTCTCTCAGGTGGGTATCTTGTACCCCTAATTCTACTATCGGACACTTGTCCATTTTTACCTCTCGTCTCACTTTTTCTTTTCTTTCGAGGTTCCGGGCACTTGCCCCTTTTTATTTCCTTGTATCTTTTTTTTCTCTTTTTTTAGAGCACTCATCTCTTGAGATAATATAGCAAGTGGTAGTAACAAGATAACTTGAGCATTTATTTCACAGGGAAAAACAGAAATGTTTTTGGCTATTCTCTCCCGGATTAGGAGTAGAATATTTTTAGGTGGTTCTAGAGATGGAAATGGGTGGATATATGTGGACGGTACTTCCGGAGTAGAAGCAGCATATGTGAGTGAACGTGCAAGTGAAATCTTGATTTAACCACATGACAAGCTCCTAAGGGTCTACACAGCTTGACCACACTCAATGCTCATAAGCAGTAAAAAGTAAATGTTGTGGCTCAAAGTCTAGCAAGCATGTATATATAGCTGTGGTAGGAATTTAAACTCTCATCATACAGGAACTCATCATGCAACATTTTAAAGATTTTCAAAGATAAAATTCTCCAGAATTCTAGCATCTCTAGGAACAGATAAACAGCAGCTCAACCTTCCCATATCATATCCGTTAACAACTTAGACTTCAGATCAAGTTTTCATCCCATAAGTTTAGGTCTAGAGCAAGCTTTAAATTATAACAGTTATGTCTAAACTAGTGAGAGAACTTCAAATGTGCAAATTAGGAAGAGCAACTATTCATCATATCCATGCTAGAGTTTTATTCAGATACAGATTAGCATAGCCACTTTATTTATTTATTAAACACACTAAGCAAAAGATATATATATATAAGTATAAAATCTTTATTTGGTTTTTCATAGTTATATTTTAATATAGTATAAGTATAAAGATAGATAGATAGAAATACTTATCGGGATAAATGGGGGTGCTCTCCCCCAAGCTGAATTTTGACGTAATTTCTCTTGATGTAGCTAGCAGGTGGCAGAGGTGTATTTGAAAGTCAGCAGCATTCTGACAGCGATTAGAATATCCTCCGTCTGCTAGTCTTCTTGATTCTTAAAATTCTGTGGAGCTCAAATAGACAACAAAGCTTGTGGAACTGATTAAGTGTTAGCAAAAATATCTATCCTTTATCATGTTGAGACTCCTCAATAACTATTACTCCCTATTTTTATATTTTCATTTTTATAGAGCTGAAAAATATTTATTTTATTTTTATGCCACCATAGTGAATGTACTTATGGGTTTTATGCCACTCGTCTACTCACATGGGGCTTACTGTTTTTCAACATTTTTATTTTCTTTTTAGGATAGTATAAATATAACTAATTAAGTAAACTATTTTAAATAATTGAAAGGGAAAGGATAACTACCAAGTTTACCTCTTGGCAAGGCGTTCGGTATTTTTAAGTCCTCCGAACGGGACTCTTCTCTTTCTCCATTGTCCTAAGATTCGTTGGGTGGCGTAGTCGGTACTTCCGGCGGCGCCTCCTCTTCATGTATAGTTGTCTTCTCTTTCCATACCTGACTCGGTGCTACGGTCTCCTTTGGATAATTCTGTTTAAACTATACGTCTTCTAACCTTACAACTTCTCCATCATAGTCTGCCCATCCGTCCTTGATGATTTGCCTCCTCTGGTTGCGGTTGCGTCGTTTTCTTACCTGCTTAGATTCTTCAAAGATATATTTAGGGTCAGTAAAATAACGGCGTACCTTCTCTAAGGGGAAGTGCATATGGACTTCTCCAGTTTTAATGTAGATGATTGCTTTAACGTTGCTGAGGAATGGTCTTCCAAGGATGATGGGTGGATCGTACTCATCTTCTCCCATGTCAATAACCTAAAAGTCTGTGTAGACAAAATGATCGTCTATTTTGACTGGGACATCAGTTACTGTTCCTTTAACTTCTCGAAATGTCTGATCTGCCATCTGGAGCTGAGTGTATGTTGGTCTTAGGGGCATGGTTCCGAACAAGAGACGATAGGTGACTGCGGCCATTATGTTGACGCCTGATCCGGTGTCGCAAAACGTCTTGTAGAAGTTGTATCCATTTATGGAGCAATAGATGCTTGGCATTCCTGGGTCATCCTTCTTGGTCAAAAACGGTGACTTAAGTTGGTGATCTTGGCCTCCATGAACTACAGTGATCATCTTAGCTGACTCGGTCCACACTTGCTTGTTCCTGTTCCTCCTGTTGGTCCTCTTCCTTGATTCACGACTGGATTGATCTAGGATTTGTGTAGTCTTGTTCCTGAAGAAAAACGTCTCCTTCCTCCCTTTGAAGTAGAAACTGATCTTGGCAGCACTAGCGTAGATGATAGCTCCCGAGGTGTTCAAGAATGACCTCCCTAAATGATGGGTGCCCTCTCATCATTACCGGTCTCTATCACCACGAAGTCTGCTGGGGCATATAAGGTACCAACTCGGACACAAAGGTTCTTCAATATTCCTTTTGGAAAACTTAATGCCTGATCTGCAAACTGCAAACACATGGTTGTCTCTAATAAAGGATATGTAAAGAATTTTTCATAGAGTACCCTGGGTATAATGTTGACGCTAGAGCCAAAGTCGCAGAGTGCTTCTGGGACGTTCACCATGCCGATGGAGATCGGGAAGACGGGCGTCCTGGATCACCTCTCTTGACTGGCAGAAGGTCAGTAGTGAATTCAGTGATGGGGTTACTCCAGTTATTACCTGCATCAAACATGTCTACAAGATTTGCAGATTCTAATCCTTCCGGTTGTGATGGTATACCGGGGTTAGTAGCAGGAACAGCAGCAGATATTTGATTTAACTGAGATTCAATCATTTTATTAAAGCTAATTTGATTCTTGATGGAAGTAGAGAAATTATCCATTCTATTATTTATATTTTCTAGCATTTTATCATTATATGCCAATTTCTTAGATAGGTTATCCATTAGTTTTCCTTGATTAGACACTAACTCTCTCAGAGGTGGAAAATTATTATTATTACTGTAAGAATTGTTACCTTGATAATTACCTGAGTAGTTAGGCCTCTGTTGATTCCAACCTTGATTTTGTTGAGGACGGTTGTAATAGTTGTTGTTGTTATTATTGATGTAGTTCACACCCTCAAGCATCTCAGGACAGTGATTGCCTGAGTGTCCAGTATCTCCACACTCCTCACAAGTCATGTGAGAGTCGTAGATGTGCATAACTTCTTTCTTATCTCCAGCTCTATCGTCGAGCTTCTTCATGAGCAGGTCTAGCTTTGCAGACAGCATGTCTACCTCCTTGAGCTGATGCATACCTCCACCTCTCTTGCGTGTCTAGGTCCTTTCTTCATTCTAGCCTTGGTTGGACGCCATCTTTTCCACAAGAGCTGTGGCTTGTGGTATAGTAAGTGATAAGAATGCTCCTCCGGCTGCAGCATCCATGGTCTCTCGGGCACTGTTGCCGAGCCCATGATAAAACATCTGCATCAATAGCCAACTCTCCATTCCATGATGGGGACATTCTAGGATGTAGTCTTGAAAGCGCTCCCATGCTTCTGGAACGGATTCATCATTTTATTGCTGAAAACTTGTAATCTTCCCACGGAGAGCATTGGTCTTGCCCATGGGAAAGAACTTAGCCAGGAAGTTTGTTGAGCAGAGTGCCCACGTAGTATTCTTCTCCTTTGTAGCGTAGAACCACAGCTTCGCTCTTCCTAACAGTGAGAATGGGAAGAGGCGAAGTAGTATAGCATCTCTGGGGACTCCTGATATGGTAAATGTATTGCAAATCTCCAGGAAGTGTTGTAGATGAGCACTAGCATCTTCGTGTGCCTTTCCACAGAACTGGTTGGATTGCACCATGTTGATAAGTCCAGGCTTGAGCTCAAAGTTGCCATCGATCTCTGCAGCAGGTCCAGTGCGGATGTTGTCCGTAGTGGGAGCTGAGAACTCGCAGATTGATTTGTTCGCCATGGCTTCGAACTCTGAAGACAAGTTTCGGTGATCTTCTTGATTGGATGAAGCTTCTTGCTGAAGTGTTGATGATCTCTTCTTGAGCTTGGCTCTAGTTCTTTTGAATAACGCTTCGGGATTGTCAACAAAATTTCCTAGAAGATGTCTTCTATTCATACATTCCCCTGCATAAGATAAAATAGAAAATATCAGGGTAAAACTGTATGAGAGAATAGATAAGCTCAATCATATTAGTGATGCGAATGATAACTCAAAATCTATATCCATTCCTGATTAGTAATCAACCTTCCCCGGCAACGGCGCTAAAAATGTTTGGTGGGTATTCTTAACATCACTACCAAAAGTAGACAACTTTCTAATTCTAGTAATGGTGCAAAAAATGCCAAACCTATCCCTCATACCACTTAAGACAAGTTGTCATCCCCAGCATGACATGAGAGACGCGGAATTGAAATATGCAATTGCTCTTCTAAATAAATAATGAATGGGATCTGCAAGCGCACAGATTAATGCCGATGTAGCATTTTAACCGGGAAGTATTCAAGGTATCATTATTTATATTTTTACCACTGGGAAGGGATTAACAATCATCAATATTGATTACAGAATAGAATATGAGATTGAGTATCTATCATTGCATGTATAATTGAGAACATTGTATCTAATTCTTTCATACAAGGGTAAGTGTCACATAAAAGATATATGAAATAATGAATAGTGACAAAGGTAATTAGTCTGATCATAACTTAGCCACATATAAATATGATAAGCACCTCAATTAGATACTCTAGAAAGTCATTAGCATGGTATTAGAACGAACTACAAGAATATTTCCTAAGTTATTCTCAACTATATAGTCTAGCATTATCATAGTTAGTGCAAGCATACTTAGCAATCATTGTGAGACAAGACTACGCCCATGCATAGTGATATTAGCAAGGTAAATGAGAAACATAGCAATCTCTACCCTGTAATAATGTTGCTCTGCCAGCCCACGATCTGGCATATTGGGTACAATACATGAGAGGGAGACTATATAAGAATCAATGAAGCTGTCACTATCACGAACTACCCCACGATCTGGCATATTGGGTACAATCGCAGATAAATACGGTATAAGCACCACGCCTACACAATATCTATCATTTACCCATGGATCCGATGGATAAACACTATACGATCCTAAACATGTATATAGATCCAATCTAACTAAGCCAAGTATATAACTATGATAAACTAAGAACAATATAATCTTGAATATAAGCAAGTAGAGCAAAGTCATAAGCAATATATTGAAATAGGACAAAGTCATATTCATAATATTGAAGAACAAAGATAATTAGAAGAACAATTAGAAGCACAATTAGAGAATTACCAAGAATCCTCTTGACAGATCCGGAAACCAATCGAAGATTGACTCCTAGTTCTAATCCTATGTAGCTATGCTAATCTAGATGTCTAATTGATGTGGTGGCTCTAATCTTGATCAGAGGCTTCTTCTCCCTTGAAGAACAATGAATTAGGGTTGAGAGGCTCTCTCCTCCCGGGGCCAGGGGGTCTGGTTTTATAGTCCCTTCAAGTGAATATGGGCCGTTGGATCAAACCGACATTGATTGAACGGTTATCCTTGATCCTTTAGGTCGGTGGAGATCTCCCCCAAAACAGAGTCTTGATTGGACTCCAACAGAGGGCGGGCGCCCTGGTTACCTGGGCGGGCACCCAGGTCCTGGCCCCGTTCGGCCTTCGCTTCCTTCCCGTGGCTTCTAGAGTCTTCTAGATGTAAGATAATTGCTCGGCACGTTGATATCTCTATGTAATCCCGACGTGTGGGACTTTCTTTCGTATTTCCTGATAACCCCCTGCAGAAATAGACAAACACCAAAACTCGTGGAATTCTGTCCGATAAAACCCTAAGTCTAGATGTCGATTTCATTTGGATCCTTTTCTTTGTTTATTTGATAATTAAATTTGATACTTAAGGACCGTCAACACAAGCTTAGAGTCTTAAAATAAGCACTGATCAGATTGTAACATGAGCTTTTAATTATTTGCAATATTACCTGGTGTATTGTGCATATAAGGATAATTGTAAAAATATTCCTTCGGGTATTCTTGTCACTAACCTTTCCAGGATTGGAGCAAGAAGATCAGATGAATGACAAGCACAAGGTATGTCCAACCAATCATCATGCAACACTGAATTAAATTCATCCAAACTTGAAATTTTGCAAAATTCAAGTTTGGGGCAGTACCTTACATAAAAAAAACATCCTTTGTCATGTTGCTATGTTGGTTGTCCCTACCTTTGAGACATGCTCAATTTGTTAAACGCTAATCATTCTATTTTCATCTCCACTTGAGTAAGATCTCTATAATGCTGTTATGCTACCTTTATCTATTCGCAAGTAAGTGTTGGTTTGAAAGTACTCGACATACTTCCATTCGCATTTAAATTAAGCGTGGTGCTTAGGTTAAATAGCCTTCCTTAATCTGATTAGACATGGAGTCTAGTTTGGTTACTGAACTAAAAACTGCCTGAGTAGACATTGGTATATTTTGTTGGACTAACCCCTGCAGGAAAACTGTCAATATCAACCTAGGAAGTCCTTAGATAAACTCACACTGGAGACAAAGAGAGAGACACATCAAGTTTAACAATTTACACAAGGAGGACGTAGCTCATAAGAGATGATCCCTGGAGGGTGCCACAAACACGATGCACAACCGCTAATAAAGGAAAGCTTCCACAAGGTGATACTATACCATCACTCTTCAAGTAAGGTAACATCTTAAAGTACTTGATTATCACTTTTATAAGCTTTTCCTTGGTTCTAGCTTTCACATAAATAAAGAGACAAACAGGTATGATTTATAACTCCAAATTAACCAACCCAACTGATTCAACTTGTTTAGTCCTTTAATCTTTGTTCCTAGTACTACCTCCAAGATCCCACACTCCTAATCATATGAGCTAAAATATTACACATTCAATCTTTGAGAGATATAAAGAAAAAGACATATACATAGATAGATTATCTTTCTATAAGGTTGAAGGGATCTGATCTGACAAATGTTATAAGTGCTACACTCATGAACTTATCATCCATCAACTTTGTCTTGCTCACTATGCTTAAGGTTAGAGAAGAACAAATACACTTTTGGTTTTGTTAGTGTTTTCCACCAACAGGGCCCATGCACTTGATCTCTGCCTTGTCTCTATGAGCAGGTACACTTCAAGCAAAACATGGAGGTGTTTTATAACTCTCAGACTCTACCAAGTGAAGGACCAGGATCTATGAGCATAAACACACTGAATAGGATACTGCCAACGCCGCACTTCGAACTACTGGGCAAATGAAGAACATGGGTGACACCGTATCAAGAGGTGCAGACGCCAAGGTCCTCACCTGAATCAAATGACGCACCTAAAGAATGAACACGGTGAGAAGTCTTGTCTAGAAGACTTAAAACATTGGATCCTTACCGGAAGATAAAATCGGTATTTATCCATATTTATCTTTTCTGCATTCCTTTTCCTTTTTATTCCATCACTTGCATTAGCATATTTACCTTTCCACATTAGCATTAGAAAAGAAAACAAAAAAAATTTTGTTCATTGCACTGCATCATAAAATCTAAAGCATAGATTTGTGGTTTAAAACCCATAGGTATATTGACTGCGGTGGCATAAAATAAATATATTTTCATCTTACAATACAAATATAAAAATAATAAGTGCACGATCCTGCTAAATAAATAAAATTTATTAGGAGGAATCTCAATATGATAAAGGCTAAGAGATATTATGCTAACACTTAACCAGTTCCACAAAGCTTTGTTGTCTATTTGAGCTCCACAGAATTTAAGGATCAAAGAAGACTAGCAGATGGAGGACATCCTAATTGCTGTCAGGGTACTGCCGACATTCAAATACACCTCCGCCACCTGCTAGCTACATCAAAAGAAATTACGTCAAAATCCAGCTTAGGGGAGAGCACCCCCATTTATCCAGCTAAGTGTTTCTACTCGTGTTTATACTTTACTCAAATAATAAAAAGATGCAAAATCATAAAAATCCAAATAAAGATTTTTGTGCTTATATATATATCTTTGCTTAGTTTGCTAAATAAATAAATAAAGTTTGCTATGAACCCTCATGATAAGCTATCACATGGAAATGATGAATAGTTGCTCTGCCATGACTAGTTCTCAAAATTGAAATCTCTCTCAAGTTTAGGCATGACTGTTATGAATTAAGATTTGCTCTAAACCTGAACTTGTGGGAAGAGTACTTGATCTAAAGACTAAGTCGTTAACGGATATAATATGGGAAGGTTGAGCTGTTGTTTATCTGTTCTTAGAAATGCTAGAATTCTCGAGAATTTTATCTTTGAAAATCTTTAAAATGTTGCATGATGAGTTCCTGTATGATGAGAGTTTAAAATCCTACCACAGCCACATGTACATGATTATTAGACTATGAACCATACATTTACTTTTTACTGCTTATGAGCATTGAGTGTGGTCAAGCTGTGTAGACCCTTAGTAGCTTGTCATGCGGTTAAAATCAAGATTCACTTGCACGTTCACTCATACATGTTGCTTCTACTCCGGAAGTACGCATCCACATACATCCACTCATTTCCATCTCCAGATGCACCCAAAGTTATTCTACTCCTATCTAGGATAGAATAGCCAAAAACATTATCCTATCCCTATTATTCCCCGTGAAATAAATGCTCGAGATATTTTGGTTACTACCACTTGCTACATTATTCTAAGAGGGTGAGTGCTCTGAAAAAAAAGAAGAAAAATACGAGAAAATAAAAAGGGGCAAGTGCCCGGAACCTCGAAGAAAAGAAAAAGTGAGACAAGAGGTAAAAATGGACAAGTGTCCGACAGTAGAATTAGGGGTACAAGATACCCACCTGAGAGGAAACAAAAAAATAATATAGAGCATCTCATTCTTCTCAAAAATCTTCAAAGTGCAAGAAAGGTATGTATCCCCTCAAAAGAGCAAAAGTAGAATTAGACTTCCACCATTGTTACCACCATACACCATTCATTCGCCACACATGCACATCTTGATTTGACTTATTGACTTGTTTCTCTGGATCCATGGTTTGACTATGCAATAAATGTCTTGTAAGTATGTATTAGCTGTCTCCCACCTATGAGCTCCAGATATCAAAACCTTGTTAGAGTAGGGTGAGAGAGAAGGCAATATCATTATGCCTCATACCACAAATACCACATACTTTGAGAGAAGGCATATATCATCACTGCCTTGGTAAGGATCC +>URS000176A646 rRNA from 1 species +TACAGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGGGCTCGTAGGCGGCCAACTAAGTCAGACGTGAAATCCCTCGGCTTAACCGGGGAACTGCATCTGATACTGGATGGCTTGAGTTCGGGAGAGGGATGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCGGTGGCGAAGGCGGCATCCTGGACCGACACTGACGCTGAGGAGCGAAAGCCAGGGGAGCAAACAGG +>URS0001DA5C55 misc_RNA from 1 species +GATGAAGAACGCAGCGAAGTGCGATAAGTAATGTGAATTGCAGAATTCCGTGAATCATCGAATCTTTGAACGCAAATTGCACTTTCTGGTATTCCGGAGAGTATGCCTGTTTGAGGGTCAGTGTAATAAAAATAAATCGTGGTTGTTTGCCACCTTTTCGTGGTGACGCTTCGGAATTGAGTCGTCTTTACCCCTTCGGGTTAAGTGACTTAAAATTTTTTCATACGATTTCGAAACGTATTTAATGTATTATTTACGTTCACGAATATCGAATTTTTATTAGGTGCGGTCATTTTTCATGAATTCGCGTCTATAATTTTTTTTTTTTTTTGACCTCAAATCAGGTAAGAATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS00001B9A8C rRNA from 1 species +CACTGTCACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCCTAGGGTTGTAAAGCTCTTTCAGCGAGGAGGATAATGACGTTACTCGCAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGTTCGGAATCACTGGGCGTAAAGCGCACGTAGGCGGACTTTTAAGTCAGGGGTGAAATCCCGGGGCTCAACCCCGGAACTGCCTTTGATACTGGAAGTCTTGAGTCCGAGAGAGGTGAGTGGAACTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGCTCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAG +>URS0001494730 rRNA from 1 species +GTGGGGAATATTGGACAATGGGGGGAACCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTTTGGTTGTAAAGCACTTTAAGCGAGGAGGAGGCTACCGAGATTAATACTCTTGGATAGTGGACGTTACTCGCAGAATAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCAAGCGTTAATCGGATTTACTGGGCGTAAAGCGCGCGTAGGTGGCCAATTAAGTCAAATGTGAAATCCCCGAGCTTAACTTGGGAAGTGCATTCGATACTGGTTGGCTAGAGTATGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGATGGCGAAGGCAGCCATCTGGCCTAATACTGACACTGAGGTGCGAAAGCATGGGGAGCAAACAGGATTAGAAACCCTGGTAGTCC +>URS0000295BDA rRNA from 1 species +CCCTAGTAACTGCGAGTGAAGCGGGAAAAGCTCAAATTTAAAATCTGGCGGTCTTTGGCTGTCCGAGTTGTAATCTAGAGAAGTGTTATCCGCGCTGGACCGTGTACAAGTCTCCTGGAATGGAGCGTCATAGAGGGTGAGAATCCCGTCTTTGACACGGACTGCCAGGGCTTTGTGATGCGCTCTCAAAGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGAACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGCTGAAAGGGAAACGCTTGAAGTCAGTCGCGTTGGCCGGGGATCAACCTTGCTTTTGCTGGGCGTACTTCCCGGTTAATGGGTCAGCATCAATTTTGACCGTTGGATAAAGGTCAGGGGAATGTGGCATCTTCGGATGTGTTATAGCCCTTGGTCGCATACAACGGTTGGGATTGAGGAACTCAGCACGCCGCAAGGCCGGGTATTTATACTACGTTCGTGCTTAGGATGCTGGCATAATGGCTTTAATCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGCCTGCGAGTGTTTGGGTGGAAAACCCGAGCGCGTAATGAAAGTGAAAGTTGAGATCCCTGTCGTGGGGAGCATCGACGCCCGGACCAGACCTTCTGTGACGGATCCGCGGTAGAGCATKTATGTTGGGACCC +>URS0000468D61 rRNA from 1 species +GACTAACAATGGTTAGTTGAGTGGCTAAGCGAAAGTGATAAGTGACCCACCTGGGGAGTACGCTCGCAAGAGTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCAGGGCTTAAATGTAAGTTGCATGGACCAGAGATGGACCTTTCTTCGGACTACTTACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCAGGTTAAGTCCTATAACGAGCGCAACCCCTGTTGTTAGTTGCCAGCAAGTAAAGTTGGGTACTCTAGCGAGACTGCCGGTGCAAACCGTGAGGAAGGTGGGGACGACGTCAAATCATCACGGCCCTTACGTCCTGGGCTACACACGTGCTACAATGGTCGGTACAGAGAGCAGCCACTACGCGAGTAGGAGCGAATCTTCAAAGCCGATCTCAGTTCGGATCGCAGTCTGCAACTCGACTGCGTGAAGCTGGAATCGCTAGTAATCGCATATCAGCCATGATGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCAAGCCATGGAAGCTGGGGGTACCTGAAGTCGGTGACCGTAAGGAGCTGCCTAGGGTAAAACTAGTAACTGGGGCTAAGTCGTAACAAGGTAACCGTAA +>URS0001AC9055 rRNA from 1 species +TGAGAGAAAGGGGGCCTCTGCTTGCAAGCTCTCGCTATGAGATGAGCCCGCGTCCGATTAGCTAGTTGGTAGGGTAAAGGCCTACCAAGGCGACGATCGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTGCGGGTTGTAAAGCACTTTCAATTGGGAAGAAAAGCCTGAGGTTAATAGCCTCGGGTCTTGACGTTACCTTTAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATCACTGGGCGTAAAGCGCGCGTAGGCGGCTTGATAAGTCAGATGTGAAAGCCCCGGCTTAACCTGGGAATTGCATTTGATACTGTCTGGCTCGAGTATGGTAGAGGGGGGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCAGTGGCGAAGGCGACCCCCTGGACCAATACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTAGCCGTTGGGCTCATTTAAGGGTTTAGTGGCGCAGCTAACGCGATAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCAGCCCTTGACATCCAGTGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAGCACTGTGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTGCCAGCACATAATGGTGGGAACTCTAAGGAGACTGCCGGTGATAAACCGGAGGGAGGTGGGGATGACGTCAAGTCATCATGGCCCTTATGGGCTGGGCTACACACGTGCTACAATGGCCGGTACAAAGGGTTGCGAAGCAGCGATGTGGAGCTAATCCCGGAAAACCGGTCGTAGTCCGGATTGCAGTCTGCAACTCGACTGCATGAAGTCGGAATCGCTAGTAATCGCGAATCAGAATGTCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGTTGCACCAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACGGTGTGGTCAATGACTGGGGTGAAGTCGAAACAAGGTA +>URS000014146A rRNA from 1 species +GATGAACGCTAGCGGCAGGCTTAATACATGCAAGTCGAGGGGCAGCGGGGTAGCAATACCGCCGGCGACCGGCAAACGGGTGCGGAACACGTACAGAACCTTCCTTTAAGCGGGGGAGTAGCCCACTAGAAATGTGGATTAATACCCACTAGTAATGTTTAATGGCATCATTAGATATTTAAAGTATTTATCACTTAAAGATGGCTGTGCGGCTGATTAGGTAGTTGGTGCGGGTAACGGCCCACCAA +>URS0002127D47 rRNA from 1 species +TAATTTATTGGGGGTAGAGCACTGAATGTGCTAGGGGGCCTACAAGCTTACCAACCCCAATTAAACTCCGAATACCGATTACATGATGTACAGCAGTGAGGCTATGGGTGATAAGGTTCATAGCCAAGAGGGAAACAACCCAGATCATCAGCTAAGGTCCCAAAATTGATACTAAGTGATAAAGGATGTGGAATCGCCCAGACAGCTAGGAGGTTGGCTTAGAAGCAGCCATCCTTTAAAGAAAGCGTAACAGCTCACTAGTCAAGGGGTTCTGCGCCGATAATTTCCGGGACTAAGTATCATACCGAAGCTATGGGATTCATTCGATTCGAATGAATCGGTAGACGAGCGTTCTATTAACTTGTGAAGGTTGACCCGTGAGGGCAGCTGGAGGAGATAGAAATGAGTATGCTGGAATGAGTAGCGATAAAGCCTGTGAAATGCAGGCTCGCCGTAAGCGTAAGGTTTCCTGAGTAAAGTTAATCTGCTCAGGGTTAGTCGGACCCTAAGCCGAGGCCGAAAGGCGTAGGCGATGGAAAACAGGTTTAATATTCCTGTACCAGTTTAATATTGTTTGAACTATGGGGGGACGCAGAAGTGAAAGGAGATCCCGGTTTTGATTGTCCGGGTTTAAGAGTGTAGGGAGTTCTGATAGGTAAATCCGTTGGAATAATCCTGAGACTCGAATAGGAGGGCTTAGCCCACAAACTCTCCCTAATCCTGCTGCCAAGAAAATCCTCTATGTTAGATATTTGACTGACCGTACCGTAAACGGACACACGTACGCGAGGAGAGTATCCTAAGGCGCTTGAGAGAATCCAAGTAAAGGAACTAGGCAAATTAGCCCCGTAACTTCGGGAGAAGGGGTGCCAATTAAGGAAAAGAACTTCGCGTTCTGCTTTTTATTTGGCCGCAGTGACCAGGCCCAAGCGACTGTTTACTAAAAACACAGGTCTCTGCTAAGTCGTAAGACGAAATATAGGGACTGACACCTGCCCGGTGCTGGAAGGTTAAATGGAGAGGTTAGCTTCGGCGAAGCTTTGAAACGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAATGGTGTAACGATTTGGGCACTGTCTCTACTTGGAGCTCAGCGAAATTGAAGTGTCGGTGAAGATGCCGGCTACCCGCGGCCGGACGAAAAGACCCCGTGCACCTTTACTACAACTTATCATTGAATACTGATTCTGCTTGTGCAGGATAGGTGGGAGACTTTGAAGCAGTAGCGCTAGTTATTGTGGAGTCATCCTTGAAATACCACCCTTGTATTGTTAGTATTCTAATCCCATCCCGTGAATCCGGGTGAGAAACAGTGGTAGGTGGGTAGTTTGACTGGGGCGGTCTCCTCCCAAAAAGTAACGGAGGAACCCAAAGGTTCCCTCAGCATGGTCGGTAATCATGCGAAGAGCGCAAAGGCATAAGGGAGCTTAACTGTGAGGTCGACGGACCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTTCCGTATGGAAGGGCCATCACTCAATGGATAAAAGGTACGCCGGGGATAACAGGCTTATCTCCCCCAAGAGTTCATATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCATCACATCCTGGGGCTGGAGAAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGTGGTACGTGAGCTGG +>URS0000ADD2ED rRNA from 1 species +AAGCCACGGCTAACTACGTGCCAGCAGCCGCGGCAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTTTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGAAAACTGGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACGCTGATGTGCGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAAATCTTGACATCCTTTGACAACTCTAGAGATAGAGCTTTCCCCTTCGGGGGACAAAGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTAAGCTTAGTTGCCATCATTAAGTTGGGCACTCTAAGTTGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGATTTGGGCTACACACGTGCTACAATGGACAATACAAAGGGCAGCGAAACCGTGAGGTCAAGCAAATCCCATAAAGTTGTTCTCAGTTCGGATTGTAGTCTGCAACTCGACTACATGAAGCTGGAATCGCTAGTAATCGTAGATCAGCATGCTACGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGCCGGTGGAGTAACCTTTTAGGAGCTAGCCGTCGAAGGTGGGACAAATGATTGGGGTGAAGTCGTAACAAGGTAGCCGTATCGGAAGGTGCGGCTGGATCACCTCCTTTCTAAGGA +>URS0000EBB953 lncRNA from 1 species +GGAAGAGAAGGAGGAGGAGGAGGAGGAGGAGAAAGTGGCTCTCAGCGGCCGGTCGGATTAAAAGTAACCAGACTCGTCCAGAAAACTGCGTCCAGGAAGGAAGTGACAGAAGACGAATGGGAAAAGGAGAACAGCTCACAGCGTTTGAAACATCGCGGCACCACTTTCAGATAAAAACATAGACCTGAATGGCATCATCCAGTATCCAAGGAAACCATGTTCTCTAAACATGAATATGCCTTTGGGGGAAGACAGAAGAACATGGAAGCCATGTGAAAAAAACGGATCCTAAGGCAGTTTTGAACATCTGGAGGCCTGATTTATTGGAGATTGCAAATGTACAGTGTAACATAGCTGTGGAGAGCGAGAAGATCAGGATTGTCAATGCTGTCATTGCTTTTACTGGAATCCCCAGCACGAATTGAAGGTCTCACTTTGCCACCTAGGCTGGATGCAATGCAACGGTATGTTGATCTTGGTTCACTGCAGCCTCAACCTCCTGAGCTCATGTGATCCTCCCACCTCAGTCCCCCACGTCGCTTGGATTACAGGCCTGTGCCACCACACCTGGCTAACTTTTTTTGTAATTTTTGTAGAGACAGGGTCTCACTATGTTTCCCATGCTGGTCTTTAATGCCTGAGCTCAAGCCATCCGCCTGCCTCGGCCTCCCAAATTGCTGGGATTACAGGCATGAGCCACCATGCCCAGCCTAATTCTTCTAAATCTTATCCTAGTAATTAAGCCAGAATTTTTCTCTGCCAAGACCAATAGATGGACCAAGAAGTACTCATCCTTGTAAACTTTCTTTGGATAAATTGCTTACATATAATAAATTCAGAGTTAAGTAATAAAAATAATGAACTACTGTCTTG +>URS000194FCEC lncRNA from 13 species +ATCTCCAGACCCAGTCAGACTTTCAGACACTGAAGTTTTGGCTGACATTTTGACTACATCTTCGTGAGAGTGCCCAAGGCAGAACCACCCAGCCAAGCCACTCTGACTCCTGATCCATAGAGACAGTGTGCGACAGCACAGGATTATTGTTGTGCGAAGTCATGAGTATTTGAGGCAATTGTTATGTAGCTTTAGCTAATAGAGACCTATTCTGCGGCTTAGGAGGAAGTGAGAATAGAGCCAGTTTGGGGGCTCCAGGAACCTACAGTCTCCAGGTGACCAAGCAGACACTGACGAAATATGAAGGCGCTGGGGCTGGAGAGAGACGACGTCTACTGGGCCTGATAATGGACTCAAAACTACAGAAGTAAACACAGGAAGGAAAAAAGTACCGAGAGAGAGGGGTGAGCTGCTGACAGAGGCTTAGGGACCATTTGGAATCGCGCAGACCTGGATTCAAATCCTCACTCCATCACTTTAGTCTTGGGAACTCAAGCAAATTACTTAAACTCCTTATAGAGTCCCAGATTCCTGTAACAGCAGCATGGATCCTTGCTGCAATGAGGATTAAGCAGAATATGTCACTGAAAATGAAATGAAATGAGAAGCCCCTAACCCAGCCCCCTAGCTCATGG +>URS00011AB3B6 rRNA from 1 species +TGGCTCAGATTGAACGCTGGCGGTATGCTTAACACATGCAAGTCGAACGGTAGATACTTCGGTATCGAGAGCGGCGGACGGGTGAGTAACGCGTAGGAATCTGCCCAGTAGTGGGGGACAACCAGAGGAAACTCGGGCTAATACCGCATACGCCCTAAGGGGGAAAGCGAGGGATCTTCGGACCTCGTGCTATCAGATGAGCCTGCGTCGGATTAGCTAGTTGGTAGGGTAAAGGCCTACCAAGGCAACGATCCGTAGCTGGTTTGAGAGCGCGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCAATACCGCGTGTGTGAAGAAGGCCTTAGGGTTGTAAAGCACTTTCAGCAGTGAGGAAAAACTTAAGATTAATAACCTTAGGCTTGACGTTAACTGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGGGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCGCGTAGGTGGTTTGGTCAGTCGGATGTGAAAGCCCTGGGCTCAACCTGGGAACTGCATTCGATACTGCCTGACTAGAGTGTGGTAGAGGAGAGTGGAATTTCAGGTGTAGCGGTGAAATGCGTAGATATCTGAAGGAACACCAGTGGCGAAGGCGGCTCTCTGGACCAACACTGACGCTGAGGTGCGAAAGCGTGGGTAGCAAACGGGATTAGATACCCCGGTAGTCCACGCCGTAAACGATGTCTACTAGCCGTTGGGTTCCTTGAGGACTTAGTGGCGCAGCTAACGCATTAAGTAGACCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATATGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACCCTTGACATACAGAGAACTTTCTAGAGATAGATTGGTGCCTTCGGGAACTCTGATACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTATCCTTAGTTGCTACCATTAAGAGTTGGCCACTTTAAGGAGACTGCCGGTGATAAACCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGGCCCTTACGGGTTGGGCTACACACGTGCTACAATGGCTGGTACAGAGGGCTGCTAACTTGCGAGAGTACGCTAATCCCTTAAAGCCAGTCCTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGCTGGAATCGCTAGTAATCGCGGATCAGAATGCCGCGGTGAATTCGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTGGGTAGGCTAACCTTCGGGAGGCCGCTCACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAGCCCTA +>URS00016A699B rRNA from 1 species +TGGGGAATTTTGGACAATGGGGGGAACCCTGATCCAGCCATCCCGCGTGTGCGATGAAGGCCTTCGGGTTGTAAAGCACTTTTGGCAGGAAAGAAACGTCGCGGGTTAATACCCCGCGAAACTGACGGTACCTGCAGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTCGGAAAGAAAGATGTGAAATCCCAGAGCTTAACTTTGGAACTGCATTTTTAACTACCGGGCTAGAGTGTGTCAGAGGGAGGTGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAGCCTCCTGGGATAACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCAACTAGCTGTTGGGGCCTTCGGGCCTTGGTAGCGCAGCTAACGCGTGAAGTTGACCGCCTGGGGAGTACGGTCGCAAGATTAAAACTC +>URS0000BC3C0C rRNA from 1 species +TTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGCAAGCCTGACCCAGCAACGCCGCGTGAAGGAAGAAGGCTTTCGGGTTGTAAACTTCTTTTGACAGGGAAGAGCAGAAGACGGTACCTGTCGAATAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTACTGGGTGTAAAGGGCGCGTAGGCGGGATGGCAAGTCAGATGTGAAATCCAAGGGCTCAACCCTTGAACTGCATTTGAAACTGTCGTTCTTGAGTACTGGAGAGGTTGACGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGTCAACTGGACAGCAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGCC +>URS0002274C91 rRNA from 1 species +AATGCCGGATGCTCCGACTCCTCGCATGGGGTGTCGGGAAAGATTTCATCGGTATGGGATGGGGTCGCGTCCTATCAGGTAGTCGGCGGGGTAACGGCCCACCGAGCCTACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTTGATCGGGAGCAAGCCTTCGGGTGAGTGTACCTTTCGAATAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTATCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTTCGTCGCGTCCGGTGTGAAAGTCCATCGCTTAACGGTGGATCTGCGCCGGGTACGGGCGGGCTGGAGTGCGGTAGGGGAGACTGGAATTCCCGGTGTAACGGTGGAATGTGTAGATATCG +>URS0001B5E2EE rRNA from 1 species +GGGATAACTACTGGAAACGGTAGCTAATACCGCATAACGTCGCAAGACCAAAGAGGGGGACCCTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTTGTTGGTGGGGTAACGGCTCACCAAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTG +>URS00005D6907 rRNA from 1 species +TGCCCGAACGTAACACGACACCACCGTCCGCCAAATAACTACGAGTACAAACTTAAAATTTAAAGGACTTGACGGTATTTCACACTCAACCTAGAGGAGCCTGTCTACTAACCGATAACCCACGATTAACCCAACCGCTTCTAGCCCCCAGCCTATATACCACCGTCGCCAGCCTACCTTATAAAAGAAACAAAGTGAGCTAAACAGTAATACACTAAAACGACAGGTCAAGGTGTAGCTAATGAATCGGATTAGGATGGGCTACATTTTCTAACCCAGACTATACGAACCAGGCCATGAAACAAGCCTTCGAAGGCGGATTTAGTAGTAAGCCGAGAACATAATACTCAACTGAAACCAATGCAATGAAATGCGT +>URS0000822125 rRNA from 1 species +ACATGCAAGTCGAGGGGCATCGGGATGTAGCAATACATTGCCGGCGACCGGCGCACGGGTGAGTAACACGTATCCAACCTGCCTTTTACTCGGGGATAGGCTTTCGAAAGAAAGATTAATACCCGATGGCATAATCTTCCGCATGGTAGAATTATTAAAGAATTTCGGTCATCAATGGGGATGCGTTCCATTAGGTTGTTGGCGGGGTAACGGCCCACCAAGCCTTCGATGGATAGGGGTTCTGAGAGGAAGGTCCCCACATTGGAACTGAGACACGGTCCAAACTCC +>URS0001663DCE rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAACGCAGTGGGGACGGGTGCGTAACACGTGGGTAACCTCCCATCAGAGGGGATAACCCTTGGAAACAGGTGCTAAACCGATACTGATGGATGGACCCGCGGGGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCCACGATGCCTAGCGGGCCTGAGAGGGTGATCTGCCACACTGGGACTGAGACACGGGCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGTGTGAAGAAGGTTTTCGGATCGTAAAACTCTGTTATTAGAGAAGCGTTATCTAACCAGGAAGCCACGGCTAACTCCGTGCCAGCAGCCGCGGTAATTC +>URS00009B24CA lncRNA from 1 species +GGCCAGAAGAGCAGTTCTCCAGGCCCAGAAGTAAGCTACACCCACAATTCTGTATGCAGCTGTGAGAAAGGAGAGTGGAAATCCAAGTCAATGCAGTATCACCGTGTTCCCAATCACGAGTATTCCACTGGGCCCACTGGCTGCCAAGACATGGATGGGATCCAGTGGTGAGCCTGCCCCAGCACATGAAACACATGCTTGGGAAACAGTGCCTGACTGGATGGAGCCCTCTGGTACCCTCAAAGAGAAGCAACTCGCCTCATGACGGCAAGAACTGTAAAACAAAGCTAGGATTTTACCCCTACTGGGCCATCCACGCTTTTAGAACCACAGATTCTCAGGGAATGCAGCATTAACCTACATACAGCTAGAAAATTGACAGTAGCATATCTCAACCCAATTACCTTGAATCACAACTCTGGTAAAAGTTTTAGCAATGGAAGAGTTAAAATGATTCACTAGATGGAAGTTTTTGATAATTTGTTGACTTTAGCCATGGATAATTAAGAGTGATGGAATCCTCGTTTCACTATCAAGGAAGCTGCAGTCAAGGTCAAACAGATGAGCGCCCTGGAATTCCATGGAAGACAGCACAAAACCAATAAAACCACTGGTGTTCAGTT +>URS000183F9F2 rRNA from 1 species +GACGAGGGCGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGCTTGTTGCGTCAGCTGTGAAAACCCGCAGCTCAACTGTGGGCTTGCAGCTGATACGGGCAGGCTAGAGGTAGGTAGGGGAGAATGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATACTGACGTGGAGGAGCGAAAAGCGTGGGGGAGC +>URS00021C87A3 rRNA from 1 species +TCGCGTCGGGAGTGAAAACACCGGGCTTAACTCGGTGCTTGCTTTCGATACGGGCAGACTAGAGGTATGCAGGGGAGAATGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGTTCTCTGGGCATTACCTGACGCTGAGGAGCGAAAGTGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACACCGTAAACGTTGGGCGCTAGGTGTGGGGCCTATTCCATGGGTTCCGTGCCGTAGCTAACGCATTAAGCGCCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGAAGAACCTTACCTGGGTTTGACATACACCGGAAGCCTCTAGAGATAGAGGTCTCTTTGATACTGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTCGTTCCATGTTGCCAGCACGTAATGGTGGGGACTCATGGGAGACTGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTTCACGCATGCTACAATGGCCGGTACAAAGGGCTGCGATCCCGTGAGGGGGAGCGAATCCCAAAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCCCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACGTCACGAAAGTCGGCAACACCCGAAGCCGGTGGCCTAACCC +>URS00006073C1 rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTCAAACATGCAAGTCTAGCGGGCGTAGCAATACGTCAGCGGCGGACGGGTGCGTAACACGTGGGAACGTACCCTTTGGTTCGGAACAACTCAGGGAAACTTGAGCTAATACCGGATGTGCCCGAAAGGGGAAAGATTTATCGCCAAAGGATCGGCCCGCGTTCGATTAGCTAGTTGGTGAGGTAATGGCTCACCAAGGCGACGATCGATAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTTGGGAATCTTGGACAATGGGGGAAACCCTGATCCAGCCATGCCGCGTGAGTGATGAAGGCCTTCGGGTTGTAAAACTCTTTCGACGGGGACGATAATRRCGG +>URS0000627A27 tRNA from 1 species +GCAGTCGTGGCCGAGTGGTTAAGGCGATCGACTAGATATCCATTGGGGTCTCCCCGCAAAGGTTCGAATCCTGTTGACTGCG +>URS000100738B rRNA from 1 species +TACAGAGACTGCAAGCGTTATTCGGATTCACTGGGCGTAAAGGGCGCGTAGGCGGCCACTGCAAGTCAGTTGTGAAATCTCCGGGCTTAACCCGGAAAGGTCAACTGATACTGCAGGGCTAGAGTGCAGAAGGGGCAACTGGAATTCTCGGTGTAGCGGTGAAATGCGTAGATATCGAGAGGAACACCTGCGGCGAAGGCGGGTTGCTGGGCTGACACTGACGCTGAGGCGCGAAAGCCAGGGGAGCGAACGGG +>URS00004CBF81 rRNA from 1 species +AGAGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACGGTAAGAGCTTGCTCTTATGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACCTTTTGGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGCCCTTCGGGGAAAGCCGGGGACCAGCAATGGCCTGGTGCTGATAGATGAGCCGATGTCGGATTAGCTAGTCGGTGAGGTAATGGCTCAACAACGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCACGACCACACGTCGAACTGACGACACGGTCCA +>URS00017EC46A rRNA from 1 species +CCCTTAGATGTTCTGGGCCGCACGCGCGCTACAATGATGAATTCAACGAGTTTATAACCTTGGTTGAAAGGCCTGGGTAATCTTTTGAACTTTCGTCGTGATGGGGCTAGACCCTTGCAATTATTGGTCTCCAACGAGGAATTCCTAGTAAACGCAAGTCATCAGCTTGCATTGATTACGTCCCTGCCCTTTGTACACATTGCCCGTCGCACCTACCGATTGAATGGTCCGGTGAAATCTTCGGATTGAGACTTTGTTTTCTTCACGGAAAACGCTGTTTTAAAAAGTTGATTAAACCTTACCATTTAGAGGAAGGTGAAGTCGTAACA +>URS000026EF3C rRNA from 1 species +TAGGGAATCTTGCACAATGGGCGGAAGCCTGATGCAGCGACGCCGCGTGAGGGATGAAGGCCTTCGGGTCGTAAACCTCTGTCCTTGGGGACGATGATGACGGTACCCAAGGAGGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTGTCCGGAATCACTGGGCGTAGAGGGTGCGTAGGCGGCCTAGCAAGTCCTGTGTGAAAGGTCTCGGCTTAACCGGGGAGGGTCATGGGAAACTGTTAGGCTTGAGTGCCGGAGAGGGCAGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCAGTGGCGAAGGCGACTGCCTGGACGGTAACTGACGCTGAGGCACGACAGCTGGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCCAGCCGTAAACGATGAGTGCTAGGTGTTGGGGGTATCGACCCCTCCAGTGCCGTAGTTAACGCAATAAGCACTCCGCCTGGGGAGTACGGTCGCAAGACTG +>URS0001CAC1D5 rRNA from 1 species +AGCGAACGCTGGCGGCAGGCTTAACACATGCAAGTCGAGCGGGCCCTTCGGGGTCAGCGGCGGACGGGTGAGTAACGCGTGGGAACGTGCCTTCTGGTCTGGAATAACCCTGGGAAACTCGGGCTAATACCGGATACGCCCTTTTGGGGAAAGGTTTACTGCCGGATGATCGGCCCGCGTCTGATTAGCTAGTTGGTGGGGTAACGGCCTACCAAGGCGACGCTCAGTAGCTGGTCTGAGAGGAGGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGTAGAAGTGGGGAATATTGGACAAGGGGCGCAAGCCTGAGCAAGCCAGGCCGCGGGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCGTTTATCCGGGACGATAATGACGGTACCGGAGGAATAAGCCCCGGCTAACTTCGTG +>URS0000D28D64 lncRNA from 1 species +AAGAAGTCCTACCACTGAAAGGATGTGCGGGTAGAAATGAGCAATTGCAACTAGAAGAGCCTGTGTGCCCACAATCAGGGGTGAGGAGGAGTGTCATGGAGCAGCTCTCTACTGCCCTGAGAATGACATCCCCACTGTTCACCATGGCCTTAAATCCCCTGCGAATTCCACCTCATCCTCTGCCACTTCCCGTCACTGCTCTGAAGATGCCCTGATCTTGTTTCAGTCCCTTGGATGTACCCAGCTCTTCTCCATCTTTGCATGTGTCATAGCCTCTTCCTGGAAAACCCTTCCTGCTGCTCATCCCAGAACTGACTCTCCATGTATTTACTCTTATTTTGAGAGAAGGGGGCATTTCCACCACCAGAAGGGAACTTGCTATCTTGGTAGCGTTGTCCCCTGACACCTGGCACATCTACTCTATACAGTCACCATTCAAGTGGATGTTGAATGAGTACACTTGTTTCACAGTTTGGTTGGGTAAGCCCCAAAGCTTGGTTCCCGGTAGGATCAGGCTTTATGAGTGGGCTGAGTTTCTATAAAAGTCTCCCTACCAGTTTCCAATCTTGGTGAAACTA +>URS0000DCF6EE rRNA from 1 species +TAGGGAATATTAGAAATGGACGAAAGTCTGATCTAGCAACACCGCGTGTGCGAAGAAGGCCTTCGGGTCGTAAAGCACTTTTTGGAAGGAATAGGAAGGAATGTACTTCCAGAATAAGTCTCGGCTAACTACGTGCCAGCAGCCGCGGTAACAAGTAGGAGGCGACCGTTATACGAATTTACTGGGCGTAAAGCGCGTGTAGGTGGTTCTGTAAGTAGGGCGTGAAAGCTCCTGGCTCAACTGGGAGAGGCCGTTCTAAACTACAGAACTAGAGGATGGTAGAGGGAGGTGGAATTCCAGGTGTAGCGGTGGAATGCGCAGATATCTGGAGGAACACCAGTGGCGAAGGCGGCCTCCTGGACCATTCCTGACACTCAGACGCGAAAGCTAGGGTAGCAAACG +>URS000241AE0D lncRNA from 1 species +TGGTTCAGATTTAATATAAATCCTAGTCTAGTCCCCTTGGGTTGCAAAGGAATCTCTCTTTCAGTTCCTTGAAATTTTTTGGTACAGGTGTATTGATGTTGTTGAACATACATCAATATCTTGTCAAAGTATAAGTATCTTTCTGAGTTTTGATGCAATGTCTCACCAGTGTTTTTCTCTCTTTCATCTCTCTACTTATTACACAGTAATAGACTATACTTCTTGTTTGGTGTAGAACAAAAAGCTTGATAATAGTTCGATCAAAGTATGTTTATGTCATTAGACCTTTGATTGTATATATATATGACTTGAGAGAAGATCTTCTTGATTGGAGCAGATCTTTGAGAGATAGGCAATCCAAAAGAATTGATCCTTGAAATGAACCTTAATTGATTCCTTTCAGAAATAAGTTGGAACTTTCCTATACTTGGACCCTGAAGTACGGCGTGATAGATGTTGCTTCCTCGATCAGCGTAACTTGATATCTTTTGCAAATCTTCCATATAATGCGTCTGATATGATTGCCCTTAACTTTCGTGATTAAGAATTGAGACTGGATATTGATCTTCCTTGATCCCTGTGATTTGGAACTAAGAGCAGAATTGATTCTTCAATCTTAGCCTTCCTTCTTTGGATAGCTTCTGAATCATTAGTTGGCTCTTACTTCCTTCTTTGGATAGCTTCCAGATCCTTGATTGCCTGCAATAGAAATAAGTTATTGTTTACCATTAAAACTCAGATCTAACATTAACAAGTATGAGTTGGAAATGGTTTAAAGGTCTTTTAATTATATATTAGGCTATCAACTAGGTAATTGGCTGTAGCAAGTATGATTTGATAGCTTTAAGAAATAGAAAATATCCCATTATAGTTGGTTACAACATAGTAGTTAAATAAAATTTTAATGGGAAAAGCATAAAAAGAACCCCAAACTTATTTCGGATTACCAGATACACATTTAAACTTTGCGAGTGTCTTGTGACTCCCTTATACTATTTTGAACTAGAATTATTAACTCCCTAAGGAGTCGTTTGGTATGAGGTATAAGTACAAATAGTGTTGGAATAAAAATTTAATACCACCTTAATATTTTATTTGGTTAGCAAACCTGAGATAAGTTATCTCGGGATTAAAATAAATACCGGGATAACTTATACCTTGTAGGGTGTGGAGTAATTAGTGTCGGGATAGCTTATACCTTCTTCTTAGAAATTATGTAAATATCATTTTTAATACAACATACCAAACAGTGGATAAAAAATAATCTCAGCATAACTAATCCCAGCATAACTTATCCTAGCATAACCTATATTCAAACCAAACGACCCTTAAGTGTTGAGGCGGTAAAGAAAGTGTAATCCGGGACATTTTTGATAGCGTTTTTATGCTTTTTCCAGATTTTACGTTCGCAATGTCTATATATCAAATACAATTTTGAAAACCATGCCACTTGATGGTGTACATAACTTGTTTGTTTTCGAAATGAATCTGATTTTTGCACCAAATCTGCGCGAGTTCCCTGAATTTATAGCTACGGGACCTATGAATTTTCTATTTTTCAGTTTTCTTAATTCTGAGCTAGCACTAGGCAAAGAAACTTTCATGAAAGACCCATAGAAACCAAGAGAATAGCAAAAGATACACAAGAATTGAAGAAGTATACAAAATTCAATTTGATAATGAAAAATCTGTGACATAAGTCTAGAGGTCAATATGTGACAGTTCATTCATAGTATTATGAACTCATGAGTAACTTCATGGATACTGTTAAGTGGTCCTAGCATAATTGAAATTTTGCTATTTTTTTTATCAACAGTATTAAAAGTTATATGATTTAAAAAAAAGATGTGGATTTAATTTTGTGGGCATGGGAGGTTTCCAAAATTGCAAATTAAAATTAAAGTTATTCATCATGAAAGAAAATCAGATACTCCACTAAAATGACAATTTAATTTTTATCTTATAATGATCTATCGTTTTGAGTCAATGACTAAACTATTCTATTTGCTTCCTTCGGAAATCCCATTTATTTGGAGAAGAAATCAAAAAAACAGTCAACAGATTCTTAAAGTATGAAAAAGACAATATTTAAGAATTAAATTGCCATGAGATGGCTTAAGAGTTAAGACTCGTGGGAATTCACCTCTTGCTTGGTTTTTGTCCAAAAATAAATTAAATGAATAAATCTTGTTGCGTGCAATATAATTGTGTAAGAATGACATTAGAAAATAGAGGAAAACTAAATTATAACACAAATATTTGTTGTTATAGCGAATCTACGGTATCTTACGTGTTGATTGTGTTATCATCTTCTCTGTCGTTGGTGTCTTTCACCGTTAGTTCTGGATCATCCGATAAGTCGTCGTCTTCTTCTTGGAATGAAATGGTGTTTTTTGTCGTTGTGATAGAAATATCTGTGGTTAAGGTGTTTTTGTGATGGTGGTGTGGAGTGGTGAGGTTGTGTGATAACACGGGTATGCCCCATCTATGTCCGTGTATTTCTTGT +>URS000033F791 rRNA from 1 species +ACCGCCCGTCCAAGCCATGGGAGCCGGGAGTGCCTGAAGTGCGTGAGCGCAAGCAGCGCCCTAAGGTAAACCGGTGACTGGGGCTAAGTCGTAACAAGGTAGC +>URS0002366112 lncRNA from 1 species +TTTTAAAAGGCATCCAATAATTCTTGTGGCCATATATCAATTCATGTAAGTTTGATTGTAATTATTGGTGAAGGGGTTTCACTTCCCGTCTCTAAATAAAAATACTGATTCTTTAAGGTACATGCCACTAGGGATTGCGAGATTAACGAGTCTTTGGACATTGGAAGAGCTCCTTGTGAGTGGAGGAGGAGGTGTTGATGGTAGCAAAGCATGTGGGCAGTGGGCTTGAATCTCTTAAAAACTCGGAACTCCTCCAAGCGTAAGTATACGTATACTGGGAAATGTGTTAGATGTGGATGAGGCTAAGAGATTAGAGCTTGACAAAATGAAATACCTCTTTCATTGAGACTTAAATTTGATGGGGAAGAAGAAAAAGAAGAGGGAAGGAGGAAGAATGAGGATAATCAACTTGTTCTTGAAGCCTTGCAACCACCTCTGAATTTGAAGGAATTAGAGATTTGGTCATACAGAGGCAACAT +>URS00001A8944 rRNA from 1 species +AGAGTTTGATCATGGCTCAGGATGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAGCGATTTACTTCGGTAAAGAGCGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCTCATACACATGGATAACATACCGAAAGGTATGCTAATACAGGATAATATAAGAGATTCACATGGATTTTTTATCAAAGCTCCGGCGGTATGAGATGGACCCGCGTCTGATTAGCTAGTTGGTAAGGTAATGGCCTACCAAGGCGACGATCAGTAGCCGACCTGAGAGGGTGATCGGCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGTGATGAAGGCCTTCGGGTCGTAAAACTCTGTCCCCAAGGAAGATAATGACGGTACTTGAGGAGGAAGCCCGGCTAACTACGTGCCAGCAGCAGC +>URS0000D1F0EB sRNA from 1 species +GGGTCGCTGCGAACCCCGGCGTTCCGCGGTGGAGGGGTGCTATACTGGGATGCAGGCGCGGCAATCATGCCCTGGGAGCTAATGTAGAGCTTTGGATAATGCTTTTGCAAGTTGTACGAGAAGGGAAGTTCTTGGGGTTTCTGACCTCCTGCAGCCTCCTCTTGCCTCGGGCTGCCCAGATCTTGGCGGCTGAGGCTGGCTTACCTTCAAGCCGTTCCTTCATGGGATTTGCTGCTCCCTTCACCAACAAGCGAAAGGCTTACTCGGAGCGTAGAATCATGGGGTACTCAATGCAGGAGATGTATGAGGTGGTGTCCAACGTCCAGGAGTATCGTGAGTTTGTGCCCTGGTGTAAGAAGTCTCTGGTGGTATCCAGCCGTAAGGGTCACTTGAAAGCCCAGCTGGAGGTTGGCTTTCCACCTGTCATGGAACGTTACACCTCTGCAGTTTCCATGGTCAAACCTCACATGGTCAAGGTGAGGCCTGTATGGGAGGGATTGACAAGATTTTTTGTTTTTAGCAGTTTCATATGAAAGTGCTATTTTGGCCTTCCTTGTTAAGGACTTTATGTCCATGTGTCAAGTATTTCCCTAATATCAGAAAAGAAGGAAAATGGCTTTCAATTCCTTTATATTGTATCCTATACTTAGTAA +>URS0000B6CEE1 rRNA from 1 species +TTCCTACGGGGGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGGGGGATGAAGGCCTTCGGGTTGTAAACTCCTTTCGCTACCGACGAAGCCCTTTGGGGTGACGGTAGGTGGAGAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTGTCCGGATTTACTGGGCGTAAAGAGCTCGTAGGTGGTTTGTCGCGTCGTCTGTGAAATTCCGGGGCTTAACTCCGGGCGTGCAGGCGATACGGGCATAACTTGAGTG +>URS000200AAC7 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTGTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATGGGGACTGAGGTACGGACCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGGTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS00019A43BA pre_miRNA from 1 species +AGCAGAATTATTGAGTCATATGGTAATTCTATATTTAATTTATTAAAGAACTACCAAATTGTTTTCCACAGTAGCTACACCACTTACTTTCTTACCAGCAAT +>URS00012BF748 rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGTCCGGTAAGTCGGTTGTGAAAGTCCAGGGCTCAACCCTGGGATGCCGATCGATACTGTCGGACTAGAGTTCGGAAGAGGCGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0000AF9FF6 rRNA from 1 species +AGGATTCCCCTAGTAACTGCGAGTGAAGCGGGAAAAGCTCAAATTTAAAATCTGGTAGTCTTTTGGCTGCCCGAGTTGTAATCTAGAGAAGCATTATCCGCGCTGGCACGTGTACAAGTGTCCTGGAATGGACCATCATAGAGGGTGAGAATCCCGTCTTTGACACGGACTCCCAGGGCTTTGTGATGTGCTCTCAAAGAGTCGGGTTGTTTGGGAATGCAACTCTAAATGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGAACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGCTGAAAGGGAAACGCTTGAAGTCAGTCGCGTCGGCTGGGGATCAACCTTGCTTGCTTGGCTTACTTCTCCAGCTTGACGGGTCAGCATCAGTTTTGACCAGTGGATAAAGGTTGAGGGAATGTGGCACCTAGGTGTGTTATAGCCCTTGGTCATATACATTGATTGGGACTGAGGAACTCAGCAAACTCTTGTGCTTAGGATGCTGGCATAATGGCTTTAAGCGACCCGTCTTGAAACACGGACCAAGGAGTCTAACATGCCCGCGAGTGTTTGGGTGGAAAACCCGAGCGCGTAATGAAAGTGAAAGTTGAGATCCCTGTCGCGGGGAGCATCGACGCCCGGACCAGACCTTTTGTGACGGATCCGCGGTAGAGCGTGTATGTTGGGACCCGAAAGATGGTGAACTATGCCTGA +>URS0000C86EDA RNase_P_RNA from 2 species +GAGAGAGGAAGGGCGGCTCACGCACCGAAAGGTGTGAGGAAAGTCCCCCCACCGTTTGGACGCGCGGGCGTCCGCAAGGGCGCAGGGCGAGAGTCCTGGCAATTGCACAGAAACGCCACCGCCCCTCATGAGGGCGATGATTCCGAAAGGATGAGGTCGTGAGGCGGCGGATGAAACGGCAAACCCCGCGGGTGCAAGTGGGGAGTATGGTGGACGTCCAACCACCACCCCGTTGTACGCTAAGCCAAATGCCGCCAGAACAGAAGGGGGCTTACTCTCCTCACTC +>URS0000DA6093 tRNA from 1 species +GGTGGCTCAGTGGTAGAGCGCTTGCCTCGCATGCATGAGGCCCTAGGTTCAATTCCTCAGCACCA +>URS00017E371D rRNA from 1 species +GACGGAGGATGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCCGCAGGTGGCAGTTCAAGTCTGCTGTCAAAGACCGGGGCTTAACTTCGGAAAGGCAGTGGAAACTGAACAGCTAGAGTATGGTAGGGGCAGAGGGAATTCCTGGTGTAGCGGTGAAATGCGTAGAGATCAGGAAGAACATCGGTGGCGAAGGCGGCTCACTGGTCCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGG +>URS0000BEF9DA tRNA from 1 species +GACCTCGTAGCTTAGTTGGGAGAGCGTGCGCGTACAAAGCGTAGGCGGCGTCCATGCGTGGGTTCGAATCCCAAGGAGGCCA +>URS000130260F rRNA from 1 species +CCTACGGGGGGCAGCAGTGGGGGATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGGGTGAAGAAGTATTTCGGTATGTAAAGCCCTATCAGCAGGGAAGAAAGAAGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTATCCGGATTCACTGGGTGTAAAGGGAGCGTAGACGGCCGTGCAAGCCAGGAGTGAAAGCCCGGGGCCCAACCCCGGGACTGCTCTTGGAACTGTGCGGCTGGAGTGCGGGAGGGGCAGGCGGAATGCCTGGTGTAGCGGGGAAATGCGTAGAGATCAGGAGGAACACCGGCGGCGAAGGCGGCCTGCTGGACCGCGACTGACGTTGAGGCTCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCCAGTAGTC +>URS00023DD7C2 lncRNA from 1 species +GTACCACTTGGCGAGCTCATCGTCAGCAGGGGAGACAGCGGCAGCCTTAGCTTTGGCAGGAGCTGCAGCCGCCTTCTTTTTGAAAAGGGCAACAGTTTTGAAGGTAGCAGAGGAGGATGGAGATGGAGCAGCAGGCCTTGCAACACCGCTAAACTTGACCGGACTTCCGAGCATCTCGGAGACGTATAGAGAGGTAGCTGCAGCCATTTGTAGCTAAACGGTGTCGCTGGCAAGAGGTAAAAAAAATTGAGGTCGAGTTGATGATGAGAA +>URS00023CEA75 lncRNA from 1 species +GCCTCCGCTTCCTTCCCGTGGCTTCTGGAGTCTTCTAGATGTAAAATAATTGCGCGTCATGTTGATATCTCTATGTAATCCCGACGTGTGGGCCTTTCTTCCGTATTTCCTGATAACCTCCTGTAGAAATAGACAAACACCAAAACTCATAGAATTCTGTCAGATAAAATCCTAAGTCTAGATGTTGATTTCATTTAGATCCTTTTCTTTGTTTATTTGATAATTAAATTTGATACTTAAGGACCGTCAACAAACTCCCCCAAGCTTACCTCTTGCTCGTCCCTGAGCAAGGATAGACTCAGCAATGGATCAGAAGTTGTTGCAATATCTTAAAAATT +>URS0001CC7192 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGAACGCACAGTTTATACCGTAGCTTGCTACACCATACACTGTGAGTTGCGAACGGGTGAGTAACGCGTAGGTAACCTGCCTGGTAGCGGGGGATAACTATTGGAAACGATAGCTAATACCGCATAATATTGATTATTGCATGATAATTGATTGAAAGATGCTATTGCATCACTACCAGATGGACCTGCGTTGTATTAGCTAGTAGGTGAGGTAACGGCTCACCTAGGCGACGATACATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTAAGAGAAGAACGGGTGTGAGAGTGGAAAGTTCACACTGTGACGGTATCTTACCAGAAAGGGACGGCTAACTACGTG +>URS0000E5BE8F tRNA from 1 species +GCGGCGGGCTCCAGACTATATTAAGACGGGTATGATGACCTCTGGGATGATTGGAGTCTGGAGCTTTGGGATACCCGTCGGTCGTGGGTTCAAATCCCACCGGCCCCA +>URS0000E04A9A lncRNA from 1 species +CGTAGAGCTGCTGGTCAGAGATGTGACTTGGTGTTGCCACACTACTGACTTCACTCTGAAAAGGCCAGTTTGGAAAAGAAGCAGCCTCGTGTCGCGGGAAGCATTTGTTCCAAATTCTGTGCTGGTCTGGGACTGCTCTCCAGGTCAGCCGGGTAGACCGCATCCGTTTTGTTGAGTCAGGGCTCTGTAAGACTTGGTCCTTAGACGTTTTTCTTTCAGTCTCTGCTGCAACAAAGGGTAAATTAATAATGAGGTGCAGACAAATCGAGCCAAAGAGCTTTCAAGGGGAGCAACGTTATGGTTTCAGTGCTTACGTTCTACTTTCGGTCTCTGATTCTTCTGGGGTGCAAAACCACAAAAACCTTCTGTAGAGGCTGGAATCGGTTTCAGATTGTTCAGACAAGATCATCATTCTTATTCCTGACTCTTACCAGAGGCAGAGCTGAAGGTTGAGATATTTAAAGCTTTTCTTGTGGCCACATAGATGCTAAACTGTCAGAGATGGGGAGAGAGAATAATCAATTCATCTCTAATGTAAACCCACAGAAAAGGGCTTTTCAGTGAAAAGTAGTAAAAGTTTTACATTGACCGATGCCTCTGTGAGCTATTTGAGGTGGAGATAAACAACTAAAAGGGGAAGATAAAGACTTAAATAGGTCAATAGAAGTATTTTCAGAATTGTATTCCATATGTGAATATAGAACACTCAGAGGGAGCAGTCAACAGAAACAGCAGTGGTGCATCATTTTAAGCAAAAGACCTAGATGCATTAGTTTAGGGCATATTTTAATATGGTTTTACTGGTGAATAAATCAGTGTGGTTTTCCCTTATAGCA +>URS0000DD8E81 rRNA from 1 species +CCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCGACGCCGCGTGAGTGATGAAGGCCTTCGGGTTGTAAAGCTCTGTTGAGGGAGAAGAAAAAAGCTGGGAGTAACTGCCTGGTTCTTGACGGTATCCCTTTAGAAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAAT +>URS0000815E56 rRNA from 1 species +TACAGAGGGTGCGAGCGTTAATCGGATTTACTGGGCGTAAAGCGTGTGTAGGCGGTTCGTTAAGTCGGATGTGAAAGCCCTGGGCTCAACCTAGGAATTGCACTCGATACTGGCGAGCTAGAGTACGGTAGAGGGCGGCGGAATTCCGGGTGTAGCGGTGAAATGCGTAGATATCCGGAGGAACACCGATGGCGAAGGCAACCGCCTGGGCCTGTACTGACGCTGAGACACGAAAGCGTGGGGAGCAAACAGG +>URS0001E053E9 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGGGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTGCGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS000084AE89 rRNA from 1 species +AGGAAATAGATACCCTGGTAGTCCCAGCCGTAAACGATGCTCGCTAGGTGTCAGGCATGGCGCGACCGTGTCTGGTGCCGCAGGGAAGCCGTGAAGCGAGCCACCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCACAACAACGGGTGGAGCCTGCGGTTTAATTGGACTCAACGCCGGACAACTCACCGGGGGCGACAGCAATATGTAGGCCAGGCTGAAGACCTTGCCTGAATCGCTGAGAGGAGGTGCATGGCCGTCGCCAGTTCATACTGTGAAGCATCCTGTTAAGTCAGGCAACGAGCGAGACCCGTGCCCACTGTTACCAGCATATTCTCCGGAATGATGGGTACTCTGTGGGGACCGCCGATGTTAAATCGGAGGAAGGTGCGGGCCACGGTAGGTCAGTATGCCCCGAATCTCCCGGGCTACACGCGGGCTACAATGGATGGGACAATGGTCCCTACCCTGAAAAGGGCTGGTAATCTCACAAACCCATTCGTAGTTCGGATCGAGGG +>URS0001BF7771 lncRNA from 10 species +agctatgaggcaaataagaactagaacttgaacatttgaaaaattctcagtatacccatattgcaagaaatgatgaagcacgctctggaaagaacactaagggtgtcatgggactaacttttgctggagagattagacttgtgactcatgagttcactcaaccatctcagtagaacctctgccctcttggactgaaagggacagagatttgacaaaatgtaagaaggcagtcagacttctggaattcctgggtaggaaatgggctgaaagggctacttgacaatgaatacatatcatttttcaagaaaagcaaagcatgattttgagagtagctcagaggccagcagggCTGTGGAAGATctgcctacacactgattttggatttctagccttcagaactctgagataatacatttctgattttatacaacctagtctgtgataacttgttatggcagcactaggaaacAATGAAACCTCTCAGCGTCTTTTGATAGTGCTTAATATCATCTCAAAAATCCCTTTTACCATGACTTCTATTACACCAAGGCTTTGAGCTTGTTACTATTACTACCTGTTTTTAATGCATTTTCCATGTTGCAACCAGAGTGTTCCTTTAATTGCTTATGTAACAGTTTATTTCCAGTGATTCTGGTTACATGGAACTCCTGCATGGCTATCTGGTTTGTTtttgtttgtttgtttgtttgtttgtttgttttgagacagagtctcactctgtcacccaggcgggagtgtggtggcacaatctcagctcactgcaacctctgcctcctgggttcaagcaattctcctgcatctgccacttgagtatccgggattaaagccctgtaccaccacacctggttaattttttggtagagacagtttcaccattatggcaaggctagtcttgaactcctgacctcagatgatccacccgcctcggcctcccaaaatgctgggattacaggtgtgagccacctcgcccggccACATggctatctttacagcaatgattcagagaccaggttcctggcatcctgttgctccaccattatatagaaccacttattgatggagagggaataataagtgagaatgggggatcacgtattggagattttaatggatgggactgacctagaagcaatgcacatctatctcttcacatttcattgattagaattcagtggcattaccacacctagataaaaaagaaaaaaaaaa +>URS0000E4C665 rRNA from 2 species +CTGAATAGGGCGCATAAGTAACAGGTCGTAGACCCGAAACCAGGTGATCTACCCATGTCCAGGATGAAGGTAAGGTAATACTTACTGGAGGTCCGAACCCACGCACGTTGAAAAGTGCGGGGATGAGGTGTGGGTAGCGGAGAAATTCCAATCGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGAGGTAAAGAGTCATGGAGGTAGAGCACTGTTTGGACTAGGGGCCCTTCTCGGGTTACCGAATTCAGATAAACTCCGAATGCCATGTACTTATACTCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGACCACCAGTTAAGGTCCCCAAATATATGTTAAGTGGAAAAGGATGTGGGGTTGCTTAGACAACCAGGATGTTGGCTTAGAAGCAGCCACCATTGAAAGAGTGCGTAATAGCTCACTGGTCGAGTGACCCCGCGCCGAAAATGTACCGGGGCTAAACATATTACCGAAACTGTGGATGAACCTCTTTAGAGGTTCGTGGTAGGAGAGCGTTCTAAGGGCGGTGAAGTCAGACCGGAAGGACTGGTGGAGCGCTTAGAAGTGAGAATGCCGGTATGAGTAGCGAAAGAAGGGTGAGAATCCCTTCCACCGAATATCTAAGGTTTCCTGAGGAAGGCTCGTCCGCTCAGGGTTAGTCGGGACCTAAGCCGAGGCCGATAGGCGTAGGCGATGGACAACAGGTAGAGATTCCTGTACCAGTGCTAATTGTTTAACCGATGGGGTGACACAGAAGGATAGGGAATCGCACGAATGGAAATGTGCGTCCAAGCAGTGAGTGTGAGAAGTAGGCAAATCCGCTTCTCGCGAAGCATGAGCTGTGATGGGGAAGGAAATTAAGTACGGAAGTTCCTGATTTCACGCTGTCAAGAAAAGCCTCTAGGAAGAGTAGTACTGCCCGTACCGCAAACCGACACAGGTAGATGAGGAGAGAATCCTAAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGACCCCGTAACTTCGGGAGAAGGGGTGCTCTATTAGGGTGCAAGCCCGAGAGAGCCGCAGTGAATAGGCCCAGGCGACTGTTTAGCAAAAACACAGGTCTCTGCAAAACCGTAAGGTGACGTATAGGGGCTGACGCCTGCCCGGTGCTGGAAGGTTAAGAGGAGTGCTTAGCTTCGGCGAAGGTACGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCCGCACGAAAGGCGCAACGATCTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAGTACCTGTGAAGATGCAGGTTACCCGCGACAGGACGGAAAGACCCCGTGGAGCTTTACTGCAACCTGATATGGAATGTTTGTACCGCTTGTACAGGATAGGTAGGAGCCGAAGAGACGTGTGCGCTAGCATACGAGGAGGCAATGGTGGGATACTACCCTGGCTGTATGACCATTCTAACCCGCCACGCTTAGCGCGTGGGGAGACAGTGTCAGGTGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGAGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGATGGAAATCATTCGCAGAGTGTAAAGGCACAAGGGAGCTTGACTGCGAGACTGACAAGTCGAGCAGGGACGAAAGTCGGGCTTAGTGATCCGGTGGTTCCGCATGGAAGGGCCATCGCTCAACGGATAAAAGCTACCCCGGGGATAACAGGCTTATCTCCCCCAAGAGTCCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGTAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGCGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACACACCGCTGGTGTACCAGTTGTTCCGCCAGGAGCATCGCTGGGTAGCTATGTGTGGCAGGGATAAACGCTGAAAGCATCTAAGCGTGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCGGAAAGTAAGATCCCTGAAAGATGATCAGGTAGATAGGTTTGGAGTGGAAGTGTAGCGATACATGGAGCGGACAAATACTAATCGATCGAGGACTTAACCAAAA +>URS0000CB5B26 rRNA from 1 species +AATGGGGGAAACCCTGACGCAGCAACGCCGCGTGAGTGAAGAAGGCCTTAGGGTTGTAAAGCTCTGTCATATGGGAAGATAATGACGGTACCATAAGAGGAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCGAGCGTTGTCCGGATTTACTGGGCGTAAAGGATGCGTAGGCGGATATTTAAGTGGGATGTGAAATCCCCGAGCTTAACTCGGGGGCTGCATTCCAAACTGGATATCTAGAGTGTCGGAGGGGAAAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGAGATTAGGAAGAACACCAGTGGCGAAGGCGACTTTCTGGACGATAACTGACGCTGAGGCATGAAAGCGTGGGGAGCAAA +>URS0001773291 rRNA from 1 species +TACAGAGGTCTCAAGCGTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTCGGAGCTTAACTCCGAAACTGCATTTGATACTGCCGTGCTTGAGGACTGGAGAGGAGACTGGAATTTACGGTGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTCCTGACGCTGAGGCACGAAGGCCCAGGGGAGCAAACGGG +>URS0001DB2352 tRNA from 1 species +GCCCCAGTAGCTCAGCTGGTCAGAGCGGTAGCCTTGTAAGCTACAGGTCCCGAGTTCAAACCTCGGTTGGGGCT +>URS0002395A25 lncRNA from 1 species +AATTTGTTTGGTTATTACCCTCTTTATTCCTTAATTTCTCTTCCAAGTCACGTACAAGAGTTGATACCTCCCTGGTAAGTACTCCGACATGAGCCAAGAGATCAAAAAGTTTGTCATGATGAATAAAGTCCTTGGGCATATCAGAAAGAATAAGTAATAGGAACTCCATCATGACATGAATGTTTCGAGCCCCTGAAGTGCTAGGGTGAATAACAGTTATCATATGCTCTTGTAGTTGAATGATATATTCTCTGAGAATATCCGGTGAGGTTTCCAGGAGCTTCTTAATGAAGCGTCCAACTTCTGCTGAAGTTGAAGCTTTCAAGTTTGTATAACATATGTGCATAACCTCCATTTCAGTCGGAACAATCTTCAAGAGTAGCTGGAAGAGTCGAGAGTCTCTATCATTCTGATCATCCTCATCTGAGTCTTCATCAATCTGATCCTCCCAAAGGAAGTGTCCTACTCTTTCAGCCATCAGTTGAAACAGAGGTAAGACATTCTCAACCGTCTCATGCTTAATGCAACCATTCACTATCAACCCATGGAAGTCTCTTATGTTGCCACATACATTCTGAAGAACTTCATATTGAGTCACTTCAGGAAATATCTTTTCAGCGTGATGCTTGGATAGATGATACAGATTCAAGAGGAGGAAGTCCAATTGCTCATCCATCATGGTGGCATCTGATTTATAAGAACGATGATACAAGCTGATACAATCATCCATATTACTAGTGAGGCTAGTAAGGACATCATCATCCAAAAGTGGTTGAAGCAGATTCTCAACCTCTTGTCTTTTTCTCGTCATTATATCTTCAAACTGCTCAAAATTGGAATAAGAAAGTTGAACATATGTACAAATAAATGCCATTTTCAATTTTAGATTTTCAACTTCATCTTTGTCAAGAGATTTTTGATTTTCCTCATTCTCTAGGAAAACCAGAACATCGGCAATGTCCTTGTTAAGAGCAGAGAATAACACCTGCCAAAATAATACATTTTAAAGCCACATATCTATAATTCAATACTTTACGGTTTACTCTATAAAATAACATACCAATGAGTTGTTTGCTTCTTCATTATCTTTTCGTTTTTCCATGATTCTACTTTTTCTCTAGACCTGATGAATAAAAAGTAGATAAAACTTTAACAGGAGAAAGAAGATGAAAAGATAAGAATAATCAATAATATCACTATTTTCACACATAGTAATTTTAGACTCGCACAATTGGAAATGTCAATCTTAATCACACATCAAAATGTTTATGACATAAAATCACAAACATAAAATCTCACAACTGTTAAGTAAAATGTCATTAAATTAATAATCTCTCTAATAATATTTTTCTCCTATCTCCTTGGGCTAATGGAAAAAGATTACTCTTTTATTTTGATAAAAACTAGTCTTCGGAACTTGCATCGCACGTCTGTCCCCTAATTGATATTAGTAAATTTTAATTTATATAGCTATGTTCAAATGTATGTCCTTTCATATGTAAGTTTAACATAAGAATTTAACTTTGCACAAAGTGTAACATGAAAATCTTGTGTTAGATGTTGGAGGTCTGATATATTAAATACTTCATGAAAAATGAACATTTATTTTATCAGAGGAATTAATATATTTTAATTATTAAACATAAATTTTAATAATCAAAAAAGAAATTGTCTATAAAAAAGATACGTATAAAGAAAAATATTACAAAATGTTTGGGCGGTATACCATCAAATTTATAGAAAAAATTAAAATTTCAAACGAAAAAAAAAGAATAAATAAAGACGTCGCATCCATAAAAAAAGACATCACATTTAAATATATAGACAAAATATTTTCATACTAATTGAATTACATTTTGTTAAAAGTAGACTTATTCTAGACAAAACATGCCTTACTCTAGACGAAACATATCATATGCATAAAAAACTATAATCATATATAATAATAAATAAGACAAACAGAAAAGAAGACATGAATATGTTAAGAATAAAGATAAATTGTATTTCTTGAACTATATATATATATATATATATATATATATATATATATATATATAAATGAATTCTAAAATAATATTATTCAATATATCATTTAGTCATTTTTTACTATACATTATTTTATTTTATTTTTTTACTTTTGCACTTATTTTGTACCTCTCTATAACAATTAAGTGCATGAATTTTTTGAATATTTGAGATTACATATAAAAAGGAAAAAGTACAAATATGTTGGTTTAAAAAGATAAATGATTATCAAACAATGAAAAATACATAATTATTATTCTATGGGATTTAGCATGTTTACCCTCAAAATAATTAATGATAAATACAAAATGTGATTAGCTTTATTATATATATCCTAAAAATAGAAGAAAGGATGAATACAAAAATACAGTAATTAACTACAAAGTTATATTTAAAAACTCAAAATGATAGAGATGTGAAAAATAAATATTTACTTACAACTTCATGTTGGAGTATATTCATCTTGTAACTATCATAGTTTACATATTCCTCAACAAAAAGAAGATGAATATGTATGAAATTTTAAAGGATTAAATAAAATAGTAAGAATTCTTATATTTACAAACTGGTAATGAAAATTTTACAAGGGAGGTAGACTAACCTACTGTAGTATGCGAGATGATTATAAACTTGAATAAAATAAGGAATATATATAATGTGGTGTGAGCGTGTTTGATAGACTCTTCATTACCCCCCACTTATCTTACAAATTAAAGTTGAAAGGTTATTAGACTCTTCATTATCTACATTTAATTAGTACATGAATATATGATGCATTAAGATCTTATTTGACTTAATATTTAATTAATTAAATAGATATTAATATTAATTTATTTTAGAGGTAAAATAAGGTTAAAATGATAATTCAACTTTGAGGTTAGAAGCTTCTCACTTATAATAATAATATATGATAATAGTAAGATTTTTTGTGAGAGTAGCTGAAATAGAATCAATAGAGATCTCCGATTAAGCATGTTCATACCTTTTTGACATATTTTTGTTAGACAGGTTGAAGTAAGAGATTGAAGTCTAGATCTAGAATTGCAAGATTAATAAAATACAATTCATTGACTTCACAAGTCCTTTAAATACCAAAAGTGCTCACTTAATCATTAAGTTTAGCAAAGAAGAAGATGGTACCTTTACACAAGCTGAAGTTTAGCTACAGAACCCTTTGTTTGAGAAATAATGCTGAACCTATTGGAGAAAAAAACAAGTGTAGTAGTTGAAATATACAATACAAGTCTTTTAGTAATGAAATATTAAAACACAAACCCATAAGTCTTTTTTTAATCAATGTCTTTTGTCTTTCAATTTTTATACTGGCGAAGATAAAAACAAGTGGTTGTCATTTCATCAAACACATTGAAGACATTGGCAATTTCCACATTATAGAATTTAATACAAAATATCAAAACATGAATTCTTGAAATGGAGTATAATAATTATTTTCTTCACAATGAATATACGTACTATATGTGTATATGTTCAATATAACCGGAGAAAACATTGCCAGAAAAAATAAATAACAGAGTTTAAAATATGTACTCAAAAACAATAATTAATATCATAAGTATAAATTAATGAGGAAAAAAAATTATACCGCGATACGAAAAAATAGAACGAAAAAAATTGAGTCCACTGAATGCACAATGTCCTCTTAAGGAAACTACTATTTCCCTCCAATTCCGAAAATTTAAAGAATTACATCCTCTTAGGATGAACGATGTTATTCACCCATATGGGTTCGGCTCTGGTGGGCGCCCACCCAGTGACTCTAATTCCTAAATTCGTCTATACTGTCAGTAACTCATTCAACAGCATCAAAGTAAGTACATGAATATTTAATTTTGCAGAAATAAAAGAAAATGATTATAATTGTTTTTTGTTTTAAAATAAGGGTGTGTAGTATGAAGGAAAACATTTCTCGGAAAATATTTTTTCAATTTTCTCATATTTGGTTGGATGAAATCATTTTTCTCAAATTTAAAAAAAAAAAAGACTTCCTTTCCAAACTTAAGGAAAACATTTTCCAAAATTCTTTTCTAACCTTCCCCTACCCACCACCTGCTAGCCCCCCACCCATACCCCTAAAAAGTTTAAGTTTAGTTTTTTAAAATATTTTAACTTCACAATTTCTTTTTTTCACCCCTACCCTCGACCCCCAACCCACCCCCTACCACCCCCATCCCCAAAAAAAATAATTTAAGTTTGTTTTTTAAAAAATATTTTAAACTTAAAAAATTTATTTTTTCACCCCCTACCCTCGACTTACCCACTCCCTACCAGCCCCCCTCCCCCCACCCCCCCACCCCCTCTTCAAAAAAAAAGTTAAGTTTGTTTTTAAAAAATATTTTAAACTTCAAAATTTCATTTTTTCACTCCTACCCTCGACTCCCCACCCCACTCCACTAGCCCCCTACCAGCGCACCCCCACCACGAAAAAAAATTTTAAGTTTGTTTTTTTAAAAAAATAAATTCAACTTCAAAAATTATTTTCTACTCTAGTAAAAAATAAAGATATTTCTCAAAAGTATTTTTCATTGAAAAAACAAACACTAAAATATTTTTCTAGAAAATATTATCTACTGACCAACCAAACATCAGAATATAAGTAAAATATCTACCTGTTTTTCAGAAAAACATTTTCCAAGGAATTTCCATCATACCAAACACACCCAAGAGTATATTCCTCTATTTATAGACAACAAAAGGTAATGTGAACAAATATTTATTGTGCCTTATTAGAAAGGATAGAACTATTTGTAAAAATTGCAACCCTTCGGAAAGTTTATAACGTTTCATAAAAGTCGCAACTCTTCATAAAAGTCACAACTCTTCATTAAAGTCGCAACTATATACATATATACAAATCTTATAGGGATGAACAAGTTTGAACAAGTTTCAGTTTTGTAAACTATCTTGATCTTCGATTAATTTCACGGGATATATAGATCTAGATCTACATGTACAAATAGTTTATCTTCTTTTTTTTGAAAGAATTTTCTTGTGTATTATGTACGAGTATAAATATACAGGAAGAAATGCAAAATTTTAGCACAATATGAAGTGTCTAATCAATCTTGATATTTAAGCACCCAAATTCAGTATTTCGCTTTGATAGGTTCATAATTAAGAATCAAAATAATAATAGAGACTAAAATAAAATTCATTGACTTTTCAAGTCTTTTTCATCAATTTTGTAAATATGTATATTCATATTACAAGTTGATAGACTTGTGGAGATTGTTAATTAGCTTGTGAATGAAGATGATGTGTGTGTAGATCATGGATTTGAGCCACTAATGTTTCTATACTAATGTTGGGTGTAGGCTGCGTTCTTGTTAGCGGAAACGTGAAATTAAAGAATAAGGAAGAACAATAATGAAAATAAGAAAAGAAGAAGAGAGTTTTGAAGCATGAACTAATTACCTCTGCAATATTAGAAGCCCTGCTCCTTGTTTCAGAAACAGAGTAATTGTTTGCCAAATGATCCAATTAATGTAGTTGAAACAAGATCTGGACTTTATTATTATTATTATTATTATAAGTCTTGTTATTCACATAGGAAGATTCCTAAATGAGATTATTAATTCAACTGGCTAACAATGAATTAATTACTTGAAAGGCCAACTTAACAAGAATAAAATATATATATATATACATCTTGACAGTTTGTTCATTCATAATACTAAAATACAATTCATTGACTTTTGAATTATACATCTATCATCTTTTTGGTGCTTCTAATTTTGAGTGACAACGACATTATCATATGTTACTTTTCTATATTACTGAAGTGGAAAACTCCAAAAGTTAATTTTTTTAAAAAAAATAAATAAATTCCATTTCCAATTTTTATTTTTTTTTAAAAAAAGAACATCCTTCGTTTCAGAAAGAATGATCTAGTTTGACTTGGAACGGAGTTTAGGGAAAGAAAGAAGATTTTTTAGTCTTGTAGTTCTAAATTAAAATTATGTCATATGTACCAAAATGTCATTTAATCTTATGGTCTTAAACATGTTACATGAAAAATTAAAATTAAAATATTGTCAAAAAAGGAAAGGTGTCATTCTTTTTTAAACAAACTAAAATTGAAATAGGAACATTCTTTTTTAACAAGAATAATATATATATATATATATATATATACTAGTTTGTGAGGACGTGCTTCGCACGTGTGTTTCATGTGACTTTTTATAGATACGTTAGAATAACTAAAATCTCATGAAAATATATATATATATATATATATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTATGTATGTATGTATGTATGTATGTATGTATGTGTGTGTGTGTGTAAATTGTAATGAATAATAAAATGTAACAACTACAAAATTAAGAAGTCTAACAGAGTAAAAAAGATAAAAAGAAACACAATATTTAAGAAAAAAATACAATATAGACATTATTCTTATAAAATTGATGTATATATAGATGAAAAAATAAGTACAAAATTAGTACATAACTCTTTTAGAAAACTAAATTAAGAAGTCTAACAGAGTAAAAAAAGATAAAAAGAAACAGAATATTTAAGAAAAAATAAAATATCGACATTATTCTTATAAGATTGATGTATATATAGATGAAAAAATAAGTACAAAATTAGTACATAACTCTCTGAGTTTTTATTGATTCCTTTCATATCCTATCAAAATTCAAGAATCTTCATCATCTGTTTTTACTATAGAATAAAAATAATATCCTAATAATCTTGGTAGGGTTTCATGAGATAAAGAAGTTGAATTTATATAAACAGAATAGAAGGAATATCAAAAGATATCTTAAAGTTTTAGTTTAAATATTTGGAAGTTATGAATATGAAAAGATGAGAGTTATGAATATTAAGAGTATAAAAGTTAAATAAATAATTAGAAAATAATAATAAATAAATGAAAGAATATGAAAAAAAATTAAAGTTAGCAAACCATGTAAAAAGAACAACTAAAGTTCTTATCATGTAATTAAGCATTAATGAATTTAAATTTGTGAAGCTAGAGTCATTCTTTAATAATAATTAAGAGGACATTATTAAAGTGCATCTCCATTTTATAGATTTGCACCCTTTAAATTATTAAATTTAGTTATTTATCATAAAGGATAATACTTTATCCACAATTATATTATTCATGAGAGGGGTTAAGAAAAAAGTTATAAGAAAAGGAAAAGAAAAGAAATTTAGGTAAAGATTTTTTCTAAAAAAAATTATAATTATTATATACACATAGATTATAGATGATAAATATTAATAGATTAGATATTTAATTAGTAATTAATCTTAGGAAGTCCAAAAGTCATTAACATTTAATTAAATTTATACAATCAAATATTAAATATTTTATAACAATTTAATTTATAGTAAAGGTAAAAGCGTAATTCAACTTTCAACTTTTTTGTTCATGCTTTTAGTAATATATGATATATATATTGACGGTTTGTTCATTCATAATACTAAAATTCATTGACTTTTGAATTATACCTATCATCTTTTTTTGAGTTACCAACGTCAGGGGCAAATGTATATTGTCGAGACATGAATGATTTGGCTTTTAGATGAGATGGTCACATATATAATAACTTTAGGATCCACCCGAACCCAATGAGTCAATGACGATAGATTTTTCCTGTAATTAACTTTAAGGTTGATGAGGTGAAAGGAAATTTTACTCATTTCTACTTAATAAATTCAGTTGAGACTTTTATCAAACACATCTTTTAACATTAGCGGTTTTCACTACAAGACTTGATTTTTAAGCAGCAAAAATGGTTACTTATAACAATAGAGAACATGTTATAATGCTGCTGTCACTTAAATTATGCTCCATAATTTTCCTTTTTGATTTTTGTTAATCATGCTGACTGGATTAACTTGCACACATTTCAATCAATTTCACAAGATACCGTTCACTTTCAATTTGCATGCACTTTGACTAATTTCATGCTTAACTCTATTCGTCAAAGACATGGATAGATTATAGAAAAAAGGCAAAATACATAAATATGTCCTATTAACTTGACTTCAAATAACATTTATGACCTTCAACTTTGGGCATGCACAAATACACACTTAAACTTGTATAAAGTTTATCAAATAAACACACATGTCCTATATGATATCCTACATGTAATTTTTTGTCCTACGTGGTGTCCTGTAGGACTCGTGTGTTTATTTGTTCTATTTTATATAAGTTTAAGTTCTACTTGTTCATATTCAAATTAAAGTTGGAGGACATAAACGTAAAATGAGGTCAAGTTAAAAAGTACATTTATGTTATATGCCAATAAATCACCCTTTTCTTGCTGAACTGCATTGCTCGCTGCTCATGAAAGAGTATTAATTTCTTATTTTCCATGCTATGTATGATCAAATTTTGGACTATTTTGATAAAATAAAAGGTAAAAAAAGGCTCAATATGTTGAATATTTTTGGGTGTGGAGACGACGGGGCACTATCGATTTCTCACAACTTGAATTTTATTATATCAAAGTAAGAACCCGATACAGTCTTACAATCTTTACAACACTTGTTGTTTTCTTCAGCAACACTCTTTACTTGAGCATTCATTCTTGGTTGCTCTCTTGCTTTTATTACTTTGTTCTTGCTAGCTTGCCTACAACTCAAATGGACCACCTCTATTCACAGGAGGTGATAGAACAATCTAGCTAAACATATTTTTCTGCTATATCATAGAATATTCCTTTAATTACTTAATTCTAGAATTACCCTATCTAGAATACTAGTCTCTCTAGAATACACATTTAGAGATCTTCCTCAATTCTCCATAACTCCGGAATATTCTAGATTTTCTTGACTTGTCTTGAGTACATAATTAAGTTGGCGATGAATTCTTTAAAAAATATATTATCGAATTTTGAGAAAAAGTTTATTTATGTAGCTTGACTCATTTATGTCATTGTCGTTTGAGAAAAGACATATTCATGCTATTATTTTTTAGGCATATTACATGAATATGCCCTTTAACTTGATCTCCTTTCACATTTATGTCCTCCAACTTTGAATGTGCACAAGTACACACTTAAACTTGTATAAAATTAAACAAACAGACACAAACGTCCTACTGGCATCCTACATGAAAATTTGTGTCCTATGTGGTGTCTGTTAGGATTGAATTCACGCACTCACACTTGATGAATGAAGAACACAAGAACTTTCGAAAGAAAGAGATGAGAGATCTAGAGAGAGAAATATAAAATCCAATATTTCGTGGTAACACCCCGTGAGTAAACTTCCACGGTGGTGAGGTATATTTATATTAATAAATCAGAATATTTTTTATTGCAGAGAATAAATAGTAAAGCCTAAAATTTCCATAACCCCTGGCAATCTCACCGCGGAGGTTAAACCACATAAACAATTATATATATTAATCAAGCTCCACAACCTAACAGTGTCTTGCATGTATTATGACAAGTAGGACTCGTGTGTCTATTTGTTCGGCTTTACACTAATTTAACTGTCTTTTTGTGCACACTCAAAATTGAAGGACATAAATACAAAATAAGACTAAGTTAAATGGTATATTTATGTATTATACCTATTTTTTAATTCCAATTATGCAAAATCATTTTTTAAACCTGACCATTTATTATTCGACCACATCATTAATTTTAAAACGTGAATAATCTGACATATTGTCTTTGCCAATTTATCCTCCCAAATTGGGATGACACACCCAATTTTTATATTCTATTAATTGAGTATTGAGTACTGAGGTGATTTCTAATTAACATAAAATCATATATAAAACTATAAATATAGAAACATGTGAAATAAGATGATTATATGGTTACTAACATAATAAGATATGATTTGTAAAAAAAATTTATACACATCAATACAGTAAGGTTATTTGCTTTCAATTTCTATTACCACTTAACAATGAAATCAATTAATTAGCTATAAAGAGGCATATTTATGTAATTTCTAAAGAAAAATGGAATTGAGCATATTATTGTACTTATTTTATTATTTAAACCAAAAGTGACAAAACTTAAGGGACTAACTATTATATTTGAAGGGTACAAAATGGATACTATCCCTATACATAAGTGATAATTTTGTCTTAAAAAAGAACTCTGATTATTTCAGTTGCGATTTTGGTAAGCAGAATCTTGATCCTAAAAAGAAAAATACTTCATTATGATTTCTTCATTTTGAAGACAAGTTTGAGTTTGAAATTCTCATCGTGTTTGTCACCTACTATGTTTGAACTTCACCTCATAAGTTAAGTTCTATTTGTGTTTGTCGAACAATAATTGAATCAATGACATCTTTTGCCTCATATGCCACATCTAAAACACGTGGCCAGAGATCCTTGTACCATTCTTGCTCAATATTTCTTATCCATTCGAGGTCTTGTTTCACCAGCCCAACTTCTTCCTTTATCAAAGCAATTGAATAAGCATTGGAATCCAACAAATCATCTAAGTGTCTCTGTAGAAGATGCATGAAGAGAGGTCCATGAATGATAAACATGTTTGAGATAAACATCGTTCTACAACTTGATTTAGAACGATGTTGTGAGCTTATAATCAATATTATCCCTGAGGCTAGCAAAGGACACGATGCATGTCGTATTTACATGCAACGTTGTTGTCAACATAATATAAAATTGATTGAATCAGATTCTCAACCTCTCGTCCTTTGGCAGTCATTACATCTTCAAACTACTCCAAATCAGAACATTTCAGCTTTTCAACTTGATCCACATCAACAACTTTTTGATTTTTATCATTCTTCAATCTCTCTAGGAAATCCAGAACATCGATAATGTCCTTGCAAAGAGCAGAAAATAATACCTGCGAGAATAACACATATCAAATTTTTAAGGCCACACGATATCTACAATTCAATACTTTACTCTCTATCAAATACTAACATACCAATGAGTTGCTTGCTATTGTCGTTTTTCCATGATTGTAATTTTCCTTTCAAGTTCTGCATAAAAAGTACACACAAACTTTATCATGTAAGAAGTCACCCTGCTTCTCACCTAGTAAGAATTCACACTTACCGGATGTTTAATACCAAACTAATACAACTTATCATGGGTAGGTAATGATTTAATAAGGTGAATATAAACATTAACTAATCATAATTAAGTGATAATGTTGTCAGTGACGGAGTCAGAATTTTTGCCAAGAGTGTTCATACTTTAGGAAAAAACAGAATAATGAATAAAAAAATTGTCACACTTGGGCTCGAACTTGAAGCTAGAGGTATTCTTGCACAGCCTTAACTGCTGGGCTGACAACCTTTATTATGTCAAGGTTGTTCAACAATTAGTATATATCTAAAAAAAATCGATATTTAGTATATATTCGGAAATTTTTTTTGATGAAGGTTGTTCATCTAACCAACCTTGTCAAGCTATAGCTCTGCCCTGAATGTTGTGCATCTATTGATTTGTTGTAAATCGATGGTGTTAGTACGTATTTAATTCTCTCTCTTTCTCCTGCATTTTGTTTCTGTTTATAGATTTCATTTTCCTTGCATCATTTTTTACTTTTCGATAATTTTACTTCAATAGAGATGAGAGTAGCAACCTTTTTACTTGATGATGAAACTATATATCCTTTGCTTGCTTTGATATTAGATTTATAGTGCTCAAAATTCTTGAAGTAAACAGAATACGGTGAAAGAGAGTGAGCGCACTCTGCCTACATTCTTGTTCTTCAGGATATAACAATTCAATAACGTCGGTATAACTCAAGAAACTTCGAATTAATTTAATAGTCCAAAACTTCACAAAAAAAAATATTTTTCTTCAACATATAATTATTCTCTTTTATATAGTGAATATAGTCGAAGATTTTAGAGTATTTTTCTTTGTCTCGACTCTATTTTCACTATATTAATCTCAATATAAACACAATGTAGTATTCCTCGTCTTTTTCACTCCACATTTTCTTGTATATCTTTTGTTATCAAAACAAAGTAAGACCATCACTATTCAATGGTGATACTTCCTTGCAATAAATAAAAAGATTATAGAATAGTAAATAAAGTAAATAAATAGTCCAAAAGTTACACAAATTACAAACATAATGTATTCGAATAATAACATTCAAAATTCTTCTCTACTATATTAAACTTTGTTGTTTGAAATAAAGTCAAACCTTAAAATTTTGTGGATGCAAAATTCTAAAATTTAAAAATTACAGAGTACTAAATTAATAATTTTTATATATTCAATAAATTTCTTACTACAAATTACTCTTATATTAGAAAAGGCATGTTCAACATGCCTGCTTCATAGGTCTGAGGGTATTTTAGTCTTTTTAGTACTCCATTCTGGCTACGTGTCCTGTTGTTGTGCTTTCAATGTACACGTTACTGCAGACTACCGATACATCAAAAGTTCTCCTTTCTCCAGCATTCTGTTGAGGTAAGCTTCTTCATATGATTTCTTTGGTTTTTTTGTGATCTTCTTTGTTTTCCTCAAAATTGATGATTTTTTCTTCTTTTTCAGTTGGTTTTAGTGTTGATGTTCAATTTTTGTTATGTGGTTGTGTTTTTCCTGTTTAATTACTGATTTTTGCTTTGTTTATTACATGCAACAATTAATTTAGTCTGTCTTCATCATAATTCTTTTGAATCTTATCTGTTCATAGATGGTTCTTTGTCGAAATTAACTTTTTGGGTTCCTTAATTCCAGTTGTTTTTTCCATCATACTTCTTTTGGACTTCCTCTGTTTGTATATGTTGGTTTTCCATTGGAATTAACTTTTTGGGTTTCTTCATTTTAATCATATACTGTTGTGGGTTTCGCTTCGAGTTCTTTTTACATCATTGCATTAACTTTTTGAAATTATTTTAATTTACAGTGTGAAAATTTAAAGATCTGCAACTACTTATGCCAGAATTTGAACTATCGATGTGTCTTCTTAGCAAATTCAAGGATCTGGAACTACTTATACCAGATTTGAACTACGGGTATGTTCGTTGATGGTTTCTTACGCCCTTTATTCCGATTTTGCTCTTTGTCCTACATTAGATACGTCTATGAGCTTTCTTGCTAAAGTGCATCTTCATTATCTGAGTTGTGTGTACTGAAGGACCTGAGAGAATTAGAGAACCGATTATTATGGGTGCTTCGTTTGGTCATGGGGAGAAAGTCAATCTGCATCTAGCCAGGGAAGCTGGCCACTCCTATTGCCAAATTGTCCGTGCTGCTAATATGAGAGTCAGAGAGATAGAAAAGGCTCTTATTAGAGGCAATCATTGAGTATCCTACAACACACGTGTTTCAACACCATTTGCTATAGATTTGTTGACCAATCAAGTAAGTTTATTCATTTATAGCAACTGTTTGTGTTGGTTATTATGGAGAAAATTTTCTGTTCTAGCATCAATTTGGTCTGAAATGAAGGGTTGTTGCTTTAATCTAATCAAACTTGGAATTATTCTTTTGCTTATGTGTCATAGTTGATTCGAATGACATGCATTCAAACAATTGCTATGTTGTCGATGTCTTAAAGATATTCATGTATTATGATGTATGAATTTGTGTAGGTGCACTAACTATGATTCTAATGATGTATAAATGACATTTAACGAAGTTTCGACCCGACTATATGTGATCTGTATGTTGTGAATATTGTACAATGATTTGCATATGCTATTGGTTATGATACTTGACTTCATATGCATACCTGAAAAATATTAGATCTCACCTATATAAGTGCTCCCAAAAGCTCTATTAATTGGCAATATTACTTACTATTATTGTGTCTTAAAAATAAATTCTCAACAAAATGGGTTTTCAATGAGTTGTTGAACTTCTGCTTGTCTTACATTTGTATTTTCCTATTGGCTCATTTGTTTTTTTTAAAAAAGATTCATTGGCCTGTTCTGGTGAAAAATATTGTCAATAACTTAGAGCTATTGGAGTTAGCAATTTCTTTATTGAAAAACTGAAGATCTTCTCGAAATAGCTCTTATTACTCTTTTTATTAATCAAGTGGAGTGTCAATGGTATGATCAAAGAGAAGGTAATTGTATATGACGAGAGCTGATACATGAAAAATGCATTTTTTGAACTTGTCAAGTCTATCAGTGAGCCAAAATTGTGTTGTTGTTGTAGTTATAACTTATTATTCATTACAGCTGCATATAACTATGGCTATAGTATTATTGATGTAGTTACTTTGTGAAGAAGGTTGACTCATCATCCAACTTTATAGTGATAATTAAACAAGTTTATTTACTAGCTCTTCCTTTTGATTAAATTAACATAATTTTTTGTGTAGTTGTCCATATTAATTTTCAGGTTTTGTAAAAAATTGCATCCTTTATTTTCCTCTTTACTTTTTTTTCTATTTTTTTATTTGCTATTTGGATATTAATTGTTAAGTGTTAATTGCTATCATTTTTTATGCTATGCTTAGTTTGTGGACTAATAGTTCAAAGAAGCTTAGCAGTCGTCCCTATTCTAGAAATTGAATGGTAATTCTATATTTTATACTGTTAAATTTATATATTATCAGCTTAGCTTAGTAGGAGAAAGTTACAACATGTGGGAAATGAAAAGGCTAGAAATACTCAAAAATGAACCAAGCAAGTCATGGCTTTTGTTGGCTTCTGCAATAGGAATGAGATTACTATGCTAAAATAGAAAAATGAAGACCCCTTTGTAGAATGCAACATCATTATTTGTTCCTTGCATAAATAATCTAGCCCAAATTTTTTTGTTCCTTGCATAAATAATCTAGCCCAAATTTTTTTGTTCCTTGCATCAGTGTTATTATCCATGCTCTTGAATAATTAAAAGCATAATAGTTGCTCCTCTTTTTGGCACAAAAATACTGAATTCATATTATTGTGAGTTGTTTTTAGGAATATTATTAGTTGGCGAACAAACAATTAATTTTTGTTCCATATTTTCAAGACATCCATAAAGTTTCATCCCTTTAGAATATTGAAGGAAAAATATATCGCTGAGACATTTATTTGTTAAAGTAATTCATGGTTTGTAAACATCTTTTATTGAACTTGAAATCCTAATGTTTCTCTATTTAATTAAGGTAGAACAAAAAATGAGAAGGTATGTGCAGGTTTGGACAATGCGATGAGATGTGTTGTAAGAGTCATGTTCTGAAGGATTAACAATGGAGTGTTTATATTGTTCGTGCCCCTGACTCTACTTGCTATGTGAGGTTTGTCATCTCTCCGTTTTATCACTTTGAATTTATTATATGGATGGTTCCTCACTCTTTGAAAGTGTAAAATGTTTTTGTATTGATATTGTGCTGCTGTGACTATGTTTATTGATGCTCTTCTTATGGCCTTTTAGTTTCTATATTTGTAAGGAGTTTGAGATTTTTATTTCAGGGTTTGCCAATTGAGGATTTAGGAGTGCAAATGTATTCTTTCATTTCACAGCTGAGTTGAGCAGTCATATGTTATTGTTGTGCGAAATTCGAGATAATACGTGAAAATATAAACGCAAAAAACAAGACAACAGATTTACGTGGTTCACCAATAAATTGGCTACATCCACGGGGAAGAGAGGGAGCAGTTTTATTATGGAGAGGCAAAAACAGAATTACAGAATAGGGTTTGCCATAGCGTCTATATATAGTGCTAAGCTACGCCCTAACAGACTTGGGCCCAACATACAGAATTGACAGATAATTAAGGGCCCAACAGCGAGACCCCCGTCCTTTCTGTTGTAACGGGTCCGATTCAAGGCATTCAACAGTTATGATTAAATATTTCTATTTCAGATCCTCATACTACTTTTTAAATTACTACTGAAGTTTAGTAATTTGATTTCAGTCGTAGTTACGGCATGAGTGTGTTATCTAATATTTATATTCTATTTTTGAGTTAGTTTTTTATGTTAGTTATGTTGAAATTCATTTTATTAACATGATATTAAAATTATACCAGCACGTCCATGTTGTGTGATTTTCAATATTTATCGCCCTGCTGTGTTGGTGTGATAGGGTGTCTCCATAGATTTCCAGAGTGAAATGTTGTCTACAAATGATGGATAATAATATGCTGCGGCAGAAATGTTGAAGTAGTATATCAATTTCTTGCTCTTCATTATTAAAGAAAAATTAGTTAAGTAGTTTCCTCATTTAAATTTTAGTTGTTTAGTAATAATTTAGAATGCTAATACAAACTTTATACTTGCTTCACATGATGAGGCCTCAACAACATTGGTCTATAGAGAGTTCGTTTCAATGGTTTTCAACAAGGTGTTTAATTTGTTCCTACTCTAAAATGAATGTGTTAAAGGAAACTTAGACTGAATAAGAGGTTAGACGTATCTTCTCTTAGAAACACCCCTAAAAATTCAAGTTAGTGAGACTGACAATACTATCTTTGATTTGTAAATCAGTTTACTTTATTAGTGAATCGTGAATTTGTGATTAATAAGATTTGTAAATCAATTGTTCCAAGTAAAGTATAAAGAAACAATTTATATGCTACCAAACTTTGAACCATGAACTCCTCAAGCCATGTGTTGTGAAATATTGCTTTTGAAACTTTTGTATGTTGAAGTGTTTGTAACAGATGTAGGATGTGGACATGCTTTCTTCTCTTTATTTTTCTAGGGAAGTTGAGGCAGAATCTGAGAGTGAGAAAAAGCCTAAACAGATTTAAAAACTATTTATTTATTCATCATGTAGACTATTTAATTAAAAAGGAATACATCTTTAATTAAATGTAACTAAATCTGTTAGAACAATATCTAGGAGAAGAAGCTAAAATAGAATACAATAGACTACCAACTAAAAGGTTATACCATATAGAATTAACATCCTCTAAATAAATCAAAGTTACATAAGTTAGGAATTCCCTCTCCCAGCGCCAAAATGTGAGTCTAAACCTCTGTCTCCTACAATTTTATCTAATATTTAGTGTTAGTCCGCCTAAAAGATAATGAAATCCGCAGATTTGAACAGACCATAAAAGTTAATCCTGATGATGATGATGATGATGATGGTGATTCCAACACGGAAGACGATAGGGATAACAAAGAGAAGGCTGAGGAAGCTGATGATGGGAACAAAGACCGTAGTAATTGTAAGAGTGATCCGCTTATCACAGATCATGTTAGAGTCCTTTGGATGGATGAGTCTGAGTCTACAGAGAGTAGTAATAATGTCATAGTTGTCGATAGAGGATTTCTGCATGGTGATTATGTTGCTGCAGCTTCTGATCCAACAGGTCAAGTAGGACTCGTGGTTGATATCAATATATCTGTAGATTTATTAGCGCACGATGGCTCTATTTTTAAAAATGTCTCATCTAGAGAGTTGAAACGTGTTCGGGGTTTTACAGTTGGTGATTATGTTGTCCTTGGCCCTTGGTGGGGTAGAATTGATGATGTTTTTGATAATGTCACAGTGATGTTTGATGATGGTTCTGTATGTAAAGTTATGAAGGCTGACCCTTTACATCTTAAACCAGTTGGTAGGAATGGCCTTGAAGATGGACATTTTCCTTTCTATCCTGGTCAGCGTGTAAAAGCTAGCTTCATCGTCAGTTTTCAAGAATTCCAGATGGTTATCTGGCTCATGGAAAGCAAATAGGTTAGATTATGAATTCGACTCTGATACGTATATTATTTGGTAGGTCATTTTCTATTGACAGAATTATTTATATATATATATATATATATATATATATATATATATATATATATATATATATATATATAATTCAAAGAGTTATGTACTAATTTTGTATCTATTTTTTCATCTATATATACATCGGTATTATAAGAATAATGTCTACGTTGTATTTTTTCTTAAATCTGTTTCTTTTTGTCTTTTTTTTCTCTATTAGACTTCTTAATTTAGTTTTCTATGAATGTTTAATTACTGTAAGTCTTTACACTTATTTTGTAACCAGTTTCTGATAACGTGCATTGCACATTTGTCCCTTACGTTCATTACAATTTTTTTTATTTATTTAGAAGTGAGTTATAAGATATTGATATTGAAATTAACAATATTAATTTTACTATTTATTTTTTATTGATTAAAATAAATCATAAAATAGAATGGTGCATTTGCTATCAAACCAGAAAATGTGAATCATGACTTAAAATGTCTATGAATTCGTGATAGAAAAATAATAATAAATGTATCTAATGCCTTTAATGAAAGAACAAAGGCGCGAGACAAATTTATCAGAAATATAAATTTCAATTACACATTTTGCATTTTCTATAAAGAACATAAACATCGAAGCTTAACGACAATATGATAAGATTGTCTTGCGAACACAATTACTTGTGATAAGTCCATGGGTCTATATATGAGTATATTCTGATGATATGATGTTTCAGTATTCATGAAAAAATCATCACTCTATTCAAATAGTAAAAATAATTAATATGTTTTAGTTTTCAAATTTAATTTTTAATAAACAGAAAATAAATTAACAAAATAAAAAAAACAGACGAACCAATAATAACATTATAAACATGCTTATGATGAGTCATATATAATTTGAAGGAAACAATACTACAAATTCAAACTGAAGAGAAAATAATATCTAAGACATACTAAGATTAAAATATGTTCTCTAACTAAGATCTTAATCTTAATCACCCATAAATTAAATAGGGAAAGAAAAGACTCTTGTAAAAGAAATGATGATGTATACAATTTAAAAGCTTGTATGTGAAAATAAGAGAATAAATATATTGCATAAAAAAATTATAGATGCGAAAAATACCATGTGTGATTCTTAAAGGTAAAATTATTTTACTATTACCTGTAAATTATATACTTTCATCATATTTATTGTTGAAATTTCACCTTTTAAAAAATGAAAAACAAGCTAAGAAAAAAAAAGTAAAAAGGGTAAAAAGGAACAAATAAAGACTAATAAAATAGAGAAAGGAAAAAATCCAGTGAATATCCTGATTGAAACAGCGTTATAGAAATACTCGGATAAATCAATATACCTTGAATTTCAAGAACACTTCAAATTGCATCACATATAAATCTAAGAAGAGACATATTCTACAATAAGAGGAGGGGGGATGGGGGGTTGGAAGAAAACAACAACAAAGAAATAGTGTTAAAAATTTGACACCTTCCAATTTCAAAAAAGAAAAATGATGAAGGGTAGGGGATGCTGGAGGACTATGAGATTTCTAGGAACATAAAATCAGTTTCTCACCGTGTGGTTGTCGAGAAATCGCTGCAGACACCACACTTCATATGTTCTTCATGATTGTCTTAAAGTCTTCGATTTCTTAACTAAAATAACGTTCCTATATCTTCTATACCTTTTGAAATGTATATGAAAATGAAATAATTTACTTAAAGATAAACATAGTTTCTTTATTTACCTGAAGAAAGTCATTATTTCACTTGGAAAAAAGATTTATTACTTTCAATTGCCTTTTTGTTTATCCTATTCATGGTTATTTAAATGTAAGTTTAACTGTTGTCTTTTCATTTATCCTAATTATTGTAATTGAAGTGTGAATTTATTTTTTTCAGGTCATTAAAAATGAAAATATTATGCTTTTATTTTCATATAATGTTATATATATTCAAATAATGTTCAAGTGAAGGGTAAATTCGTAATTCAACTTTGAGCTAAAGGACTTCCCACTTATAATATAACTAGTCTCCGAGCACGTGCGTTGCACGTGTATCCCAAATAAAAATCAATAAAAAAATAAATGAAAACGTATATAATAAACTATTAGGAGAATTATGATGTTTTTTTCGAGTGTTCTTTCGATATTTTCGATCTACTGCACATTAGATAAGTCTCCAAAGCTTCCAAGAAAGACACATCAAGTTAAAGAATTAAAAAGGGAAAATGCGACGTTACTTAAAGTCATCTGGTATCCTTAATGTGTATCGTTACAAATGTAACTACTTCCTTAAAAACTTTCAGATATACCCAGACTTACATTTACAGGCTTACAACTACTATCCATCACTGTTAGAGAAGACTTGGAGTTGCTACATTTGTTGAAGAAAATGTGATATATTTTGCTAGCAAACAACTGCAATTTCAATTTATTATTAATAGTTTGAAAGTTTAAACATGGTTTCTTTTCTGTGGGAAGCTATGCGTAGAGAGTTTCAAAGAGAGTTGATCATCATTCAGCATCAAACCATATGTGTACAACAGCATTCAATTTTTGATATGTGTGATTATACCTTTCAAGCTATTTATTTTACCTATTAAAAAAATTAGAAAGTTATCATTCAAATGAAGTTAGCAAATCAAACGAAAAAATCTAGACTTAATAAGATTGTACCTGAAAATTAGAAGACATTTTTGTACCCACTTAACAATGGAAGCTTGTGTTGAATGACTAATATTGAGTATGTTTATGTAGTGTAGTCTTGGAGATTTGTTGATAAAAACTCTTTGATATTCCTCAATTACTTAATTTGATCCTTTTCAACTTCTCATAATTAGCAAAATACGTTTCAACTTCTATATTAATTGAAACTTTATTAGTGTTCATCCTATTTGGTTGTTTCACACATAGTAATTGAATAGACTGTTGAACTTCTTATTTTGTTCCTTTATTATGTAATTCAATATTACTATTTAATTAGATATTTAATTTATATTTGGGAAAAGTATTTTATTACTTTTTAATTTAGTATAGGGGCAAAGTAGTAATTCAACTTTACACTTTAGAGCTTCATGCTTATAATAATACTAGTTTCTGAGGACGTGTTTCGCACGTGTATTCTATGTGAATTTTTATAGATATGTTATAATGATAAAAAATTTATGGAAATATATATGTAAATTAATGAATAATATAATTTAACAATTACAAAATAAGAATAAAGACTTACGCAATAAAACATTCATAAAAAAACTAAATTAAGAAGTCTTATGGTGATAAAAAAAAAAGACAAAAAGAAACAGATTTAAGAAAGATCCAATGTAAAAATTGTTCTTATAAGACTGATGTATGTATAGATGAAAAATAAGTACAAAATTAGTACATAATTCTCTGTGTTTTTATCAACTCCTTTCATATCCTATCAAAATTCAAGACGTTTCTTCATCTACTTTAACTATAGAATGAAAATGATAGCCTAATAATCTTGGTAGGGATTTCATGAGATTAAAAAAGTTGAATTTATATAGATAGAATAGAAGGAATATCAAAAGATATATTAAAGTTTTAGTTTAAATATTTGGAGGTTATGAATATGAAAAGATGAGAGTTATGAATATTTAGAGTATAAAGTTGAATAAGTAATTATCAAATAATAATAAATAAATGAAAACTATGAAAAAAGAAGTTAAAATTAGCAAACCATGTAGAAAGAACAACTAAAGTTCTTATCACGTAATTAAGCGTTAATGAATTTAAATTTGTGAAGATAGAGTCATTCTTTAATAATAATCGAGAGGACATTATCAACGTGTGTCTCCATTTTGCAGATTTGCACCCTTTATATTATTAAATTCGTTATTTATCATAAAGGATAATACTTTATCCACATAAATTATATTATTCATGAGAGGAGTTAAGGAAAAAGTTATGAGAAAGAGGAAAATATAGCAATTTAGTAAAGACTTTTTTTTTAAAAAAAAATTATAATTATTATATACATATAGATTATAGATGATAAATATTAATTAATTGGATATTTAATTAGAAATCAATCTTTAGAAGTCTAAAAGTCATTAACCTTTTAATTAAATTTATACAATTAAATATTTAAATATTTTATAACAATTTAATTTATAGAAGGGGTAAAACTGTAATTCAACTTTCAACTTTTTTTGTTCATGCTTTTAGTAATATATGATATGATATGATTGTTACATTTTATTATTCATTACATTTTGCATATATATTTCCATGAAATTTAGTCATTCTAACGTATATATAAAAATTCACATGAAACACACGTGTGAAGCACAAAGATTTATATAATCAAAAATTCAAAATTGCTGATTTTCAAGATTATCAGCATAATTTCTTCCTCCCAAAGGAAGTGTCCTACTCTCTCAGCCATCAGTTGAAACAGAGGTAAGACACATTCAACAATCTCGTGATCAATGCAACCATTCACTATCAATCCATGGAAATCTCTTACGTTTCTACATACATTCTGAAGAACCTCATACTCCAGGAAACATCTTTTCAGCACGATGCCTCGCTAGATGATAGAGATTCAAGAGGAGGAAGTACAATTGCTCATCCATCATGATGGCATCTGATTTAGAATGACGATGATCATCCATATTACCGGCGAGGCTAGTAAGGACATCATCATCCAAAATTGCTTGAAGCAGATTCTCAACCTCTCGTCATTATATCTTCAAACTGATCCAAATCGGAATAAGAAAGCTGAACATATGTACAAATAAATGCCAGCTCCAATTTTCGCTTTTCAATTAGATCCACATCAACATCCTTTTGATCTTGTTCATTCTTTAATCTCTCCAGAACATTGGCAACGTCCTTGCGAAGAGCAGAAAATGACATCTGCCAAAAGACCAATCAAATTTACAAAGCCACATTTCTACCCTGCAATAACTGCTGACATGTTATATTTCAGTGCCCAAATATTTGACTTATACTTCCTCGATAGCTAACACATAGTCCAGTCACTTCAATGATATAAATAACGTTTGAACATTGGGACTGTACAACCATTCATTCTCAACTATAAATATTAATAGCCTACTATATGGCTTGTTTACCCAGAGTAATCGAAATTTAATTTGTAGACAAAATATAATGATACTAACTCGCTATATATTTAGTAGATAATGTGCTTGATTAAAATCTTACTAGAAAATGACATTTAGCTTGACTTCGGTGGATAATTGTGACCTTTAACTTTGCCGGTGCACAAGTATGCTTATCTGCCACAAAGGAAAGAGATAAGAAAGTTAATCAAACTTTCAATAGTCTCAGTTTGAAGTCAATGAAGTGATTGAGAGAACTCAGGTTCAAATTTCAGTGGAGTTATCTGATACCTGTTGCTGGTGCGTGTTTTCAATAGTCATGGCTCGATACATTAACTGTTTTTTTTCTGAGAAGGGATACATGAACTGTGTTTGTGATAAAAGAGATAAATTGATTGTTAGTTGTAAAACCAGAAGTTTCCAAGAGAAAGAACAATAATCCTAATTTATTAATTGTGTTGCTGCTTTTGATAAATGCCAGGGATAAATAAACAGTGTAATGAACTTCAGTGTTTAGTGAGATAACATAGTTAAACAATTGATGTCGAGTGAACTCTTTGAATAATTTAGTGGTCTGCCATATGAAGAATAACTTGATGTTGCACAAATCCTACATTTTGACAATTCATGTTTATCTTTCCTAGTTAGACGCTTCATTAGCTTTTGAGCTCTTCTTGTTCAGTGGCTCTTTTGCATAATTGGTTATCCAGCTTACGCTTTAAGGCACTTGGAATGGATGTGATAGAGGAGATTACCAACACTAGTAAGGAACTTCAAGATCTTAGGGTGTTTCCTTCTGATCCATGACCTAATGTATCCTTGACAGAGCAAGGCCTTGTAAGTGTCTCCATGGGCTGCCCTAAGCTTCAGTCAGTTTTATACTTCTGCCTCCAAATGATAAATGACGCCTTAGTTACTATTGCTAGGAACCGTCCTAACATGATCCAATTTCATTTATTATTGAGCCTCGAACTCCTGACTTGAACCACTTGATGCTGGTTTTGGGACATTGTGCAACACTGCAAGGAATTGCAGCAACTTTCTCTTTCTGGCATCCTTACAGATCGTGTGTTTGAGTACATCTGGGTCCATGCTAAGAAGTTAGAGATGCTTTCCTTAGCTTTTGCGGGGGATAGCGATCTATGTTAATCTTTCACCCGCGTATACTTGCTTGAGCCTTGTGTAGTTGTAGTGCTGGTTATGACCCTTTGTTGAGCGACTTTGCAGCAATATCATTTTAAAGTTCACTACACGGCCTAGCTTTTGTGATGAAAGTTCGCTGGGTTTGTTATAGAGTAGTATCAATATCGTTTTAAATCAGTACCTTGACTAAGCTTTGAGCATATAAATGGGACTTCAGACGAAGTTAGACATAAAGGAGGTTTGGACAGCCAAAGGCAAATCCACGGAGTAATCTATGAATTCATGTGAATCCCTCAATTTCTGTCAAAATCCTATACATATGTGAATCTAATTGTTATTGATATTAACATGAGGTCGCCACAAATACTTGTAAACATCAAATCCTGGATTCCTCTTGCATACGGATAATACAGATGTAGTAATATGCAGTCTACTAGAAAATTAATGTGTATGTGAATGGAAAGAAAAAAAATAAAGAGAGAACGACAATGGCAAACAACATAGCATAGGAATAGTAGTTTGGTATACAAGATTAATGTTTATAATATGAACTTCAGATAGTTACTTCAATCTGGACAAATTAACAAATGATACGTGTACTTATAAAAATTATATTTTTTGTTAAAAGAAACTAAGAGGAATCTCATAACAGGATATTTTAATCATATACAATATCACCCAGCAAAGTTCAACCATAATGCTACTTAAATAAGGGGATATTCTTCTGGCCAAGGATCTGAAGCTCGCTCCCTCCTCTCATATCTTCAGCGTATTCCTTAATCTTGAGAGCAGAATCTTCAAGTTGAGGACTCTTTACAATTTTGATAACTTTCAATGAATAAATATCTCCAAAACTAGGTGGAATCTCCTCAAGCTTACGACATCCCTGCAGTTTTAACTTCTCAAGATTGGGGAAGGATTCCTCTCCAACCTCCCACTTGGAAAGAGTCGCTAGACGCAAGTTCAAAAATTTGAGATTCTCAAAGGTGTCTTCCTCCCCCATGTTCCATTCTTCTCCCTGGATGATTGCATCATAAAGGGACAACTCTTCAAGGTTGGGCAGTCTCGCTATTGTTGATAGTGAATCGGATGTCAGAGGAAAGTCATGCAATGACAGTTGTTTCAAATTTGAAGGAAAGTGAAAATCCCACGGCCGATTTGTCTTTACAGAGGACCCACTGTGGTTTGTGTTTGAACTTTTAAAACCTACATTGAGTATTTCTAGTTCAGTTAGGCAATCCAATTTCGGGAACCAATGTTGCTCTGTTGAATAATCCCATGACTCCTTGAGTTCAAACTGAAGCATCTGAAGATTGGGAAACCTTTTGAAAATATTCTTTGTATCTTTCGAATAGGAAATCAACAGTTCCCCTAATATTCTCAACTTCTCTAACTTTGTGTCCTCTGCTATCAATATTGATTCATCTGCATCCATATCAAAGAAAGAACAAGCATCCGCGAACAGCACTCGCAGCTTTACAAGATCCCAAATTCTTGGTAATAGTATCAAGGTTGATTCTTTGTTTTCAACCCACAATAATTCTAGATTCCAGAGGTTTGAGAAAGACAAAGGCAGATATTTAACTTGTGTCCCAATTCTTAAGTACCTCAAATGATTCAACATGCATATTTCATTCAGCAAAGAATCGTTCACCATGATAAAAGAGGTATCCAGGACCAACACTCTAAGAAGCCTCAAGTGTCTTAGGTGAAATGTATCAAAAAGACTGTCATCCAGCTCGTCTCCAAAAATCCTCAAAGAATAGATGTGTTTACCAGAATGCCTTTTCTTATTTGAATCAAAAATGACAAAATTAAGCCCAAAGTGCTCCTCATCATCATCATAATCAATGGTAATTTGACGAGGCAACAAATCTGTTGGAGCACTTGATCTTATCTGATCAAACAAATTTTCCTTTCTTGCTTTTATCAAACAAAAGTCATGCACAAGATCATGAATTTGGAAATTCAGTGCATCACCTATCTCATTGAAACAAATTACCAAGCTACTGGAAATTAAATCATCCATATAAATCTTCACCACTTCTTCCATACTGTTCATCTCCGCCTTTCCCACAAATCCTTCAGCACCCAAATAAACATTAAACTCATAGATTGTCAATGAAGTGTCCTTCGGAAAACTTGCAAAATACAGCAAGCATGGCTTGAGGTGATGTGGTAAATGGTCATAACTTAATTCTATAACTTTCATCACTTCCACTTCACTGTTCAAAATAAAAGAACTCAAACTACTTTGAACTTCAAGCCACACACTCCTTTTCTTTTCCCTCCCAGCAATGACTCCAGCAATCAGATCAGCCACCAAAGGAAGCCCTTTACAATTTTCGGCAATTTCTTTACCGACATCTAATAGTTCATCAGGGCAACTCTCGTCCCCAAATGCCCTTTTCTCTAATAATTCCCAACTTTCATCAGGTCTTAGCAATCGAAGGTCAAGAGGATCAGTGTAGAGCTTTCCATGCAAAGCTACTTCCTTTTCTCGAGTTGTCAAAATAATTCTACTTCCTTTCTTAGCTTCAGGAAAAGGTCTTGTCACCTCATCCCATGTAGTAGTCTCCCACACGTCATCTAAGACAATAAGATACCTCTTTCCATACAGTTGTTTCCGTAGCTTATCAGGAACATCAATATTCTCACTCAATTTTGAATCTGAGTCACTAACTTGATTGAAAATTTTATTCAACAACTTCTTCTCATCACATCCTTGGTCGACCGTGCACCATGCACGAAGGTCGAAATGGCTAGAAACTGACTTATCATTGTATACTTTGTATGCCAAAGTAGTTTTACCTGAACCCGGCATACCAGTGATCGAAATGACATCTAGATCTGCCGGTCCACTGGTGAGCTTTCTAAGTATCAAGTTCGTCTCCTCCTCAAAACCTACAATTATTTTATTAGTTGTCAATGACTTTCTCTCAACTGGTTTCTTGGGAGAGTTCACAGCGATTAGACCTCTGTCCTTGGGAATGCTCTCATCTAAAGCAGAGATCTCTTCTTTGATAAGTTTGATCTTCTTTATGGTAATGGGAAGTGAGAAAATAAGATGTAAGAGACCATTATCTCGAACAATAATTGAATCTATGACATCTTTTGCCTCATAAGCCACATCTAGGACACGTGCCCAGATATCTTTATACAATCCTTGCTCAGCATCCACAAAGAATGATCTTATGAATTCCAGGTCTTGTTTCACCAACTCGATTTCTTCCTTTATCAAAGAAATTGAATAAGCATTAGAATCTAGCAAATCATTTAAGTGCATGTGTAAAAGATGCATGAAGAGTGGTCCATCACTCATGGGGAAGCAACATTGAGATGAATCCGGGGCTTTCAGATAAACATGTTTGAGATCTTTCTTGAGGAGTTCAATATTTTCCAGCAAGTCTAGGGTTGCACAATTTGTTTGGTTATTACCCTCTTTATTCCTTAATTTCTCTTCCAAGTCACGTACAAGAGTTGATACCTCCCTGGTAAGTACTCCGACATGAGCCAAGAGATCAAAAAGTTTGTCATGATGAATAAAGTCCTTGGGCATATCAGAAAGAATAAGTAATAGGAATTCCATCATGACATGAATGTTTCGAGCCCCTGAAGTGCTAGGGCGAATAACAGTTATCATATGCTCTTGTAGTTGAATGATATATTCTCTGAGAATATCCGGTGAGGTTTCCAGGAGCTTCTTAATGAAGCGTCCAACTTCTGCTGAAGTTGAAGCTTTCAAATTTGTATAACATATGTGCATAACCTCCAGTTCAGTTGGAACAATCTTCAAGAGTAGATGTGTTAGCTGGAAGAGTCGAGAGTCTCTATCATTCTGATCATCCTCATCCGAGTCTTCATCAGTCTTATCCTCCCAAAGGAAGTGTCCTACTCTTTCAGCCATCAGTTGAAACAGAGGTAAGACATTCTCAACCATCTCATGCTTAATGCAACCATTCACTATCAACCCATGGAAATCTCTTAGGTTGCCACATACATTCTGAAGAACTTCATATTGAGTCACTCCAGGAAATATCTTTTCAGCGTGATGCTTGGATAGATGATACAGATTCAAGAGGAGGAAGTCCAATTGCTCATCCATCATGATGGCATCTGATTTATAAGAACGATGATACAAGCTGATACAGTCATCCATATTACTGGTGAGGCTAGTAAGGACATCATCATCCAAAAGTGATTGAAGCAGATTCTCAACCTGTTGTCTTTTTCTCGTCATTATATCTTCAAACTGCTCAAAATCGGAATAAGAAAGCTGAACATATGTACAAATAAATGCCATTTTCAATTTTAGATTTTCAACTTCATCTTTGTCAAGAGATTTTTGATTTTCCTCATTCTCTAGGAAAACCAGAACATCGGCAATGTCCTTGCTAAGAGCAGAAAATAACACCTGCCAAAATAATACATTTTAAAGCCACATATCTATAATTCAATACTTTACAGTTTACTCTATAAAATAACATACCAATGAGTTGTTTGCTTCTTCATTATCTTTTCGTTTTTCCATGATTCTACTTTTTCTCAAGACCTGATGAATAAAAAGTAGCTAAAACTTTAACAGGAGAAAGAAGATGAAAAGATACGAATAATCAATAATATCACTATTTTCACATATAGTAATTTTAGACTCGCACAATTGGAAATGTCAATCTTAATCACACATAAAAATGTTTATGACATGAAGTCACAAACATAAAATCTCACAACTGTTAATTATTTACAAAAAAAGAAAAAGGAGTCCTGCTCGTTTACCATTACTTTTCCAACCTATACAAAGAAGAAAGTTATCGACTTAATAATTATAAATATGTGATTGTCAATCTAATTATTATTGATATTAATATGACGTCGACATAGAAACTAGTAAATATCAAATCCTAGATTCGTCTATGTGTATATGGCATATAAGGAGCCTACAAGAAAATTATTGTGCGTGTGAATGTAAAGAAAATAAAATAAAGAGAGAATGAGAATGGTAAACATCATCAAATGTATCTGTCTAACTTTTTTCTGCCAAAAAGTCTATAAGGTAAAGGTAAAGAAAACAGTAATAGGAATGATGTTTTCGTGTATAAGATTAATGTTTAAAATATCAGCTTTAGATTTGGCATCAACCTCAGATAAAGTTGTGTATGATCAAGTAGAAATCTATACTTGACATCGGTGTGTCTCATGGACATACTCATATGTGATGACGTGCCAAACGGACAAATCAACAAATGATACATGTTTTAAAAAACTTGTAAGTTTTCTAATCGAAACACCGAAAAGTCAAACAAATATGTAATCATATACAGATCTACTCATTAAAGCATAACTTACTGTCTATTCTGCTATGTTTCTTCTTTCTACTTTCCACCCATAATGCTTAAAAGCTAGTTAAATAACGGGATATTATTCCCTTATTTTGATTAAAATTAAGTAAAATGTCATTAGATTAATAATCTCTCTAATAATATTATTTTTCTCCTATCTCGACTTGGGCTAATGGAAAAAGATTTTTTCTGAGAGTAGCTGAAGTAGAATCAATAGATTAAGCATGTTCACACCTTTTTGACATATTTTTGTTGAAGTAAGAGATCGAAGAAGTAGTTTGGTTGAAAGGAGACTAATCAAATAGCTAGATCTAGAATTCAAACAAAGATTACTAAAATACAATTCATTGACTTCACAAGTCCTTTAAATACCAAAAGTGCAAGATTACTAAAATACAAATGAGTAGTTTTTGTTGAAAGGAGAACAACAAAAAGCTAGATCTTAACCATTTTCATGTTATTCTGCTGCGAATAAAGTTTAGCAAAGAAGAAGATGGTACCTTTACACAGGCTGAAGTTTAGCTACAGAACCCTTTGTTTGAGAAATAATGCTGAACCTATTGGAGAAAAAAACAAGTGTAGTAGTTGAAATATACAATACAAATCTTTTTGTAATGAAATATTAAAATACAAACCCACTGACTTCTCAAGTCTTTTTTTAATCAATGTCTTTTGTCTTTCAATTTTTATACTGACGAAGATAAAAACAAGTGGTTGTCATTTCATCAAACACATTGTAGACATTGGCAATTTCCACATTATAGAATTTAGGGAAAAGGGTCAAATATGCCTTAAAATATTTAAAAAGGTCTAGATATACCTAAAGTTTGTTCATTGATGGGCTCGCCATTCAATTTTTGGTCCAAATATGCCCTTATGACCACGTTAGTTGTCATGTTGGACATATCCAACTCATTTTTCATTTCTTTAAATGTCACTTGGAATTGTCATGTCATTTTGGTCTTACCACATAACATTTATATGAAAATGGAAAGATATTTGGACTCATAAACACCTAATCCGACCCTTAAATAAACCTCCTTTTAAATAAATTATCCGGCTAATTTTCAACAATTTTGTTTAATTTTTATTTTTTCAATACATTCAAAAAATGAGTAATTGTTAATTAAAAAAATAGGAAAATATGAAAAAAGTATAAGATTAACGCCAAAAATTCATAAATAATTATAGTAACCTAAATTCAATTTAGACACTTTTTTTAAAAAAATCATTTTTTTCGATAAATCCCGAAATGAGTAATTGATTAATAAAAAGTATGAAAAGATATAAAATTAACGCCAAAAATTAAAAAATAAATACCGTAACCCAAAATTCAACAATTTCAACATTTTTTTAATTTTTAATTTTTTCGACAAATCCCAAAAATGAGTTTATTAACAAAAAAATATAAAAATTACACGAAAAAATCAGAAATAAAAAATAGGAAAATATGAAAAAAAATATAAAATAAAAAAAATGGTTGAAATTATTGAATTTAAGTTTACTATATTTAATTGTGAATTTTGACGTATATTTTTTATTTTGTTTTCATATTTTTCCCTTTTTATTAAAAAATTACTCATTTTCGGGATTTGCCGAAAAATATAAAAAATTTAAAAAAATTGTAGATTGAAATGTTACTATATTTATTTGTGAACTTTTGGCGTTAATTTATATTTTTTTCCATACTTTTGATAATTTTTATTAATTAATTACTCATTTTCGAGATTTATCAAAAAATAAAAAATTTAAAAAAAATTGAAATGTTAGATTTAATGTTACTATATTTATTTGTGAATTTTTGGCATTAATTTTATATTTTTCATATTTTTTCTATTTTTTATTAATCAATTACTCATTTTCGGGATTTACCGCAATAATAAAAATTAAACAAAATAGTTAAAATTGGTTCAGATAGTGAATTTAAAAGGAGTTGATTTATGGGTCGGATTAGGTGTTTATGAGTCCGAATATCTTTCCATTTTCATATAAATGTTATGTGGTAAGGTCAAAATGACATGACAATTCCATGTGGCACTTAAAGAAATGAAAAATGAGTTGGATGTGTTCAACATGACAACTAACGCCCATAAGGACATATTTGGACCAAAAGTTGGACGGCGAGGGCATGAGTGAACCAAACTTTAAAAGGAGGATATATCTAGACCTTTTCAAATTGTTTAGGAGCATATTTGACCCTTTTCCCTAGAATTTAATATAGAATATCAAAATATGAATTCTTGAAATTGAGTATAATAATTATTTTCTTTACAATGAATATATGTACTATATGTGTATATGTTCAATATAATCGAAGAAAATTTTGCAGAAAAATAAACAACAGAGTTTAAAATATGTACTCAAAAACAATAATTAATATCATAAGTATAAATTAATGAGGAAAAAAAAACATACCGCGATATGAAAAAATAGAATGAAAAAAATTGAGAAAAAACAGTGTTGTCAGTCAGCGGCAGATCTATCAAGGCCCGTGAGGGTGCCACACAACCCACGAACTTCGAAGGAAACTCTATTTATATTTATATACAACATATGTATAAATAATAATAGTGCCACTTAGAGAACAAAAGTATTCTTTGGTGTAGTGGTAGACTATCAAGTTTACAAGCCATAGTCCAAGGGATCAACCCTATTGACAGCGCTTTTTTGTTTTATATTTTTCTTTTTAACCACATGCAGTGTTTCTTTTTTAAACTACAAGGCACATTCTCTTTTGATTTTGATTTTTTTTATTAACTTCTTATTAAGTATTAATCAATAATTATTTTTAACTAATTTAATTTAACTTTTTGATTTTTCTTTTATATGATTAAATATAATAAGAAAATTCTATTCACCGTTGAATTCTCCTTTTAACTTTGGAACAACAAAAGTTGTCGTTAATTAAAGCTTCAGGCTTTCATCCGTCGCTCAATCCTGCTCTCCTGTCCAGCCACAAGACGAATAATTCTATCTGAATCTAATATTGATTTTATCGATGAGTCTACTAAGCATTAGAGACAATTTAAAATTTGAAGATTTTGATGCACCAATACTATTTTAATTGAGATAGTTAACAAAATTTTTACTACAATTAACGAATAATGTAGTACTTGATTGGTTACTAATGGCTCGAATATGATTTATAAGCTAAACTTAAAATAAAAAATAATGAAATACGATTGAACTGTATTCTCGCGAGTGGTTCCTCTGGCTTGTAAACCAACTAAACAAGGGCACCTCTACGCTTCTTATGGGTGCACTGTTGATTATATCCTACTTTATGTCAGTATCTCACGATAGATATACATATATACATGTAATTTTTTTGAAGTTAACGGATGCACGTGCACCCCTATCAAATCATGTGGGTTCGGCTCTGGTTGGCACCCAGTGGCTATAATTCCTAAATTCGCCTCTGCTGTCAGTAAGTCATTCAACAGTAGCAAAGTACATAAATATTTAATTTTGCAGAAATAAAAGAAAAAGATCATAATTGTTTTTTGTTTTAAAATGAGGGTGTGTTTAGTATGAAGGAAAACATTTTTCGAAAAATATTTTCCAATTTTCTCATATTTGGTTGGGTCAAATATTTTCCAAATCAAATCATTTTCCTCAAATTTATGGAAAATGACCTCCATTCCAAACTTAAGGAAAACATTTTCCAAAACTCTTTTCTAACCTCCCCCTACCCACGCCATTCTACCAGTCCCCAACCCACCCCCTTCCAGCCCTCTACCCACCCACCCATACCCCTAAAAAGTTTAAGTTTAGTTTTTTAAAAATATTTTTAACATCACAATTTCATTTTTTTTTTCACCCCTACCCTCGACCCCCTACCACCCCCATCCCCAAAAAATAATTTAAGTTTGTTTTTAAAAAAATATTTGTAACTTCAAAAATTCATTTTTTTACCCCTACCCTCGACTTACCCTCTCCCTACCAGCCCCCCCCCCCCCAAAAAAAAATAAGTTTGTTTTTAAAAAATATTTTAAACTTCAAAAAAAAAAATTCACTCCTACCCTCGACCCCGCACCCCACTCCACTAGCCCCCTACAAGCCCACCCCCACCACGAAAAAAATTTTAAGTTTGTTTTTTTTAAAAAATAAATTCAACTTCGAAAATTATTTCCTACTCTAGTAAAAAATAAAAGACATTTCTCAAAAGTATTTTTCATTAAAAAACAAGCACTAAAATATTTTTCCAGAAAATATTATCTACTCACCTACCAAATATGAGAAAATCAGTAAATTATCTACTTGTTTTCCAGGAAAATATTTTCCAAGGAATTTCCGTCATACCAAACACACCCAAGAGTATATTCCTCTATTTATAGACAACAAAGGGTAGTGTCAACAAATTTTTATTGTGCCTTATTAGAAAGGATACAACTATTTGAAAAAATTGCAACCCTTCGGAAAGTTTACAACGTTTCATAAAAGTCGCAACTCTTCATAAAAGTCGCAACTCTTCATTAAAGTCACAACTTATTATAAAAGTCACAACTTTTCATAAAAGTCACAACTTTTGATAAAAGTCGCAACTTTTCATAAAAGACAGATTTTTTCTTCAAAGAGGAAGGCTCGTTTTAGAAATAAATAAATTTAAAAGAAAATTATTGCTTGTGGCGGCGCTACATAGGTGGTCCTAGGATTCTCTTTTATATAAATATATGAATTTTTTTATTAACGTGGTGTTCGGACCAACTTTCACACTTTGATCTGCTGAAATTTGAACCTAAAACCAAATGGTTCTCATTTCTCAGTCACTTCATGGACCATTAGGTCACACTGTTAGGTGCCCAGATATATTCATGTCCAAACATCCCTTGGCCAATTTCCATATACCATTATTCAACCTTGTATTATTAGTTTATTCTAATTTCACATTTTTAATGTTCAAACGCCCACTTATATTCTGCCTGTTTATATCAAAAAATTCCAACAGATTTGAATTCATGGCATACACTTGATATTTTCTCAAAAGTAAATACTTAATAGGGATAACGCACAAGTACCTCCTCAAACTATGACCGAAATCGCAGAGTCACACTTATACTATACTAAGGTCCTATTACCTCCTAAACTTATTTTATAAATAATTTTCTACCCATTTTCGACCTACGTAGCACTATCTTTTTGGCCCAGCGTGACATTTTTTTCTCAAACTGAAATTAAAATTTAAACTATTTTCTTTTAAAAAAAAATAATTTGAAGTTTTGATTTTTTTGGTTGGGGTGAGGTTTATCAGTTCTTGCAAAAGGCTTAGAATTATCAAAGGATCTGAAGCTAAAGGTTTAGCAAGTCTATAAAAACATGGACATATATATATATACACACATATATACAAATCTGATAGGAATGAACAAGTTTGAACAAGTTTCAGTTTTGTAAACTATCTTGATTTTCGATTAATTACACGGGATATATAGATCTAGATCTCATGTACAAATAGTTTATCTTTCTTTTTTTTGAAGAATTTTCTTGTGTATTATGTATGAGTATAAATATACGGGAAGAAATACAAAATTTTAGCACAATATGAAGTGTCTAATCAATCTTGATATTTAAGCACCCAAATTCAATATTTCGCTTTGATAGGTTCATAATCAAGAATCAAAATAATAATAGAGATTAAAATAAACTTCATTGACTTTTCAAGTCTTTTTCATCAATTTTGTAAATATGTATATTCATATTACAAGTCGACTTAGACTTGTGGAGATTGTTAATTAGCTTGTGAATGAAGATGATGTGTGTTGTGTCCATGTAGATCATGGATTTGAGAAGATCTAATATTTTTTTGGTAGTAAAACTTAACTAGTGAACTTAGCCGCGCTTCGCACGATCATAAATAACTCGCTTAATTTGTCAAAAAAAAGAATTAAAATAGTATTGATAAAAGTTTTGTGAAGGTTCTTTGTTGTGTTTAATTGAAATATATCATATTTGAAATCTTAATCAAGTTTAAATACTATTTAAGTTTTTGTATCCGTTTTAATTTTAAATCGCTTAAGCTAAAAGTTCACATTCAATGATCTCAGCCTATAATTTTATTGGATATGTGTAGCCCATGCTTTTATAATTTTATACAACTTTTTTAAAATCTATCTTTTATTTTTAGTATGTTTTTTGTTTTGTTTGTATCTTTCTCGCAAAATTGAAGAATTTAAACCCAAATAAACTTGTAAATTTTGAAAGCTCAAAACATCAAAATGTCATTATCCTCCTTGTTCATCAAATCAAAATAATTTTTAAATATTTATTGTGGTTCAAGAAAATCAATTATATTTTTATAAAATTACTCTTTTTCCTCCAAACATCGTAGTCTCTTACTATTTTCTTTTTAATGTTTATATTCTTCAAAAGTTGTTATCCTTTCGTCGATAATGATGAATCAACTCTCTTTTCATCTTTCACAAGTCATAAACTAATTTTTACTACAATGTAATATACTTATAAATTTATATATAAAAAAATATATTGAGAGACATAGAACCTCAATTACACAAAAAATGTAAAGTATTTGGAGAAATTAATTATTTGAAACAATCTCTTAAATGCATATAACAAATTTGAGAAATTCTTTTTAAACAAACTTTATCAAAATCCCATTGCAAGAAAGTTGAGTCTTTTTTATACCTTTTTTTTTTTTTTTGAAAAAAAAAGCTTATCTTGTAGCATATGCATACAAATTATATTATTTATTTTGAGATAAAAAAAATCAAATTTTATTGACTTGTCACGTGCATTTAAAGCATGAAGCTAATCATACTTTATCAATTTCCTTTTATTTTTCAAGGGAAAAGGGTCTGATTTACCCCTCAATTTTGTCATTTGGAGCTGATATACCCCTCGTTATAAAAGTGGTTTATATATGCCCTTACCGTTATTCAAACGGCTCACATATACCCCTGCCGTTACAAAATGGCTCACATATACCCTTCATTTAACGAAAGTTAAAAAATTAGTTTTAAATTTATATTTATTACTTGTAATTTTTTTTAAAAAATTATTTAGGGGTATATATGATTCTTCTATCAAAGTTCAAGGTATATTTTAATTTTTTTTCATACATAAATTATTTTTTGACTTCGCTTATTATAATTATTTGAGTTTCTTATTCTTATTTTGTTTTTTTCTTTCATTACTTAGTTTAAAGAAAAAAATTTAAACAATTTTTTTGTGTATTGTAATTTAATTTCGTATTCGAAGAAAAAATTTGGTCTACAATAAGTTTTACAAGAATATTAGTGAAACATAAACAAATTTGATTATCAAAATTATAATTATAAATTAGTCATTGAAACAAAAAAAATAAAAAAAAATATGTTTTACGAGGATTAAATTTACTCATATTAGATTATATATTTTATAAAATAAAAATAAAAATTTAGATTAAAATTATTTTTTTCATTTCCGTTAGAGGAAAAGGGTATATGTGAGCTATTTGTTTACAAGTAGGGGTATATATGAGTCACTTTCATAACAAGGGGTATATCAGCTCTAAATAACAAAGTTGAGAGGTATATCAAACATTTTTCCCTTTTTTCAATTTGTAAATTAAATATGAATTTAGTATGTCATGATTATTTCTATTAAATTAAGATATTATCTTGACAAACAAAATGTGAGATTACTATTTTTGAATTAATATTATAACCATAAATTTTATAACATTTTGAAAGAGTAGAGAATAGTAACAAAATTTGCATATGTTAATAATGACAGTGTGTTCATCAAACTTGAACTTAAATCTCAAATATTGTCATTTGTTCATTTTATCTTTCACCGTAAACAATAAAAATAATTCACATAAAAAATGAAGAATAAAAAGAATGAAAAAATCACCAACAATAATGAAGAAAATAACACAGACAAGAAAATAGAAGGAAAAACACTATAAATAAGAGACATCAACAAAACTAAAATAAAACAAATAATCTTATCTATTTTGTTTAAATTTTGAATTTGAATTCTCACAAACAACATAGGTATATGCTCATCCTATCTTTCATACAATAAACCAAAAAAAACTAATCACATATAATATAACATTATAAAATTAGGCATAACAAAGTGATGTACTTAAGTGTAAATATAATCAAGAAAAAAATAATTTCTTACCATTGATGAGGATGATATACTTTAGTATTTATAGTAATCAGTAAATTTGTAACTTAATTAAATAATATGAATTAAAAAAATAATATAGTAATAAATAAAATTGTAACTTATATTGATATTAATTGTTTTAATTATAATATAATAATATTTTTAAGAAGGAATAAAGAAAGGTTTAGGAAAAGGTGATAAATGGTAATGGTAGTGGGCTTAGTTTTTAAGTAACTGTTGGGCTGCAAGATTAATTACTCTTATTTACTGTGATATTTTAACTCATTTAGACATTTATACATTTTTAAGGGGGAAAAAGTCAGAATTTTTTTTTTTAAAAAAAGAAAAAACATATAACTGCAAATGCTGATCATTGGAGGGTGCCACATCAATAATTTTAGATTTAGCTTTATATTATTATATAGATTTCGCTCCCTTTATTGAAAACGTAAAATGTTAAATATTTTTTTATTCTTAATAAAGATTTTTAAATTTGAACCTTAATATATTAAATCATCTTTATTAGAAAAAACTTACTTCCAATTATAAAATCTCAAACACACAAAAAATGATAATTGAATGTTAATATATTTATCAAACATCGAGCGAGAAATGAAAAAAGAAGAAGGGAAGTATAGGTGCATTACTTAGAAAACGACCATTCACTAATGCTACAACCCCACAATGTGTAAATTGATTTGAACTATTGCTTTCAACTTCACTTTTTTAGTTTTTTTTTTCTTTACAAGAATAACAATTAAATCAAATGATTTGGTTTGAAAACAACACCAATTTTTTGAAAAGTATTCAGAAAATTATTTTTTCAACATTTAAACAAAATTTTAACTACTTTTTACTATATTCCAAAACGTCTCGTTAAAAAAGGAATATAAAATCTCAATCAGGTTAATTAATACAATAAGATTTTTGTATTTTTAGCTATAGTCATAGATGAATTTAAAATCATTTTAAAAAATTAAGTTATGAAAAATTATTCTATATATATATTAAAAAAGTTCTTACTAGAATTATTGAAAACTTTTAAGACCGTAAATCGTAATCAATCATCTAACTAGCTTTTATCCGTAATATTCGAATAATTTTCTTCGCTTTTCCAAGAGGAATATATGTTGTTTTATGTTAAAAAAACTTCTACATAAGATTATTATTATTTAGGGTTAATTATATATAGTGTGTGCATTAACAATGTCACAAACTCTCAATATTACAAAAAAAAATTAGAAATATAAATCCACGCAATTGTATAAAAAGGGGTTAATCAATATCCTAAAATAATAATAATGTAATAGCATTAACGTATGTTAATATGTTATATTACGAAATTCAAAAATATGTGAACTTTAAATAATATTGTCATCATTGTATGAAAGATTCACAATTTATATCACTTTTGTATAATTTATTTTTTTTAAAAAAAATTGATTGAATTAACCCTCTAATAGTAATAATAATAACAATAATTATACAAATTAGTATTTTAATTATGTCTATCTTAAATCATTTCAAATTATAATGTGTAATTGATTACTTTTTAAATCATTAGATTCCCTAAATTTCTAAAGCCAAAATCCATTACTTTTCGTCTCGTTATATTTATCGGACACGTGTCTATTCATATACAATGACATAATTGTCCCCACATAAAAAAAGTAACCCAAACACTTGACTCATCTTAACCATGGTTTCATTTTAACCCAACACATTTCCACCTCTTTTTGTTTTTTATAATATAAAAAATCGTTTGATAGCAGAAATATAAGTATTAAATTTTACATAAGTAATACCGTATTTAATAGTTGATTGAAAAAAAAGAGCTATTCATAAGAAAGTTTTAATCTTTTCATCTGGGGTTTAATACCTGTATTTGCTTGTAATTGAGGAAATGGTAGGTTTTGTAGAGCATTATTGCTTGAGTTCTTTAGTATTTACTGGTGAAAAAGAGTTCAAATCTTTGCACTGTTGTCTAAGTACTTTAGCCGTTGCCGGTGACTTCATTAAACTGATTTGATAGAACAGAAGGTTTTGTGGAACATTGGTGTCTGAGTACTTCAGCCCTTACTGGTTGGGATGAGTTTTAATCTATGCATCTGAGGAACTTTTCTTGCTTGTAATTGAAGCAGTGGGTTTTGTGGAGCATTATTGTGTGAGTACTTTAGTCTTTCTGGTGAGAAAAGTTCTAATCTTTGCATCTGGGGTTTGAATGTTTCTTGTTAGTAATTGAGGGTTTGAGGAAGTAGTAGGTTCTGTGAAGCATTCTCGTCTGAGTACTTTAGCCCTCCCACATTGTGTGAACAATCTCTTCTCATCGAGCATGCGTTTCCCCATCAGCTGAAGCAACACTGTTAATCTTTATCTCTGGTTGGTCGCTGATATTAAAGTTGGGGTTGTTATAACCAAAAAATCAGGGTACATTTGAAAATAAAATATAATTCAACATTCGAAAGCGGGTTATAAGTTGTTTTCCAAATTTGATTTACAACTTCGAACTTTTCGTACACAAACACTGGTTTTCGAATAAAGTGGACATTATATCAGAAAAAAAGTAAATAATATTTATGGGTCCTTAATTAAGTCTTTCAGTTCATTCCTCTGTTTTGCTTGATTGATGGTATTTCACAGTAGTTGGTGGCCATAGAGAAGAAATGCCTTAGTACTTTGAATCGCTTACTGGGTAAAGAAGCAAAAGCATATAGTGTATGACTTGGCTACAACAAACGAAAGGGATGTAAGAGGGCACAATTTCGTCCACCTTTAGAAACTAAGCATAAACTGAATCTAATTAAATTTTTGTTTTGATATGTGCACTTTACTAGCAATGTTGCACAGAAAGTGTGAACTACTGGTTCGGTGTTATAAGTAGTTCAATGATTTGAATTATTGAAAGGGTTGAATATCTTGTAACATGGTTATCAAATTAATGTTGCATTTTTATCTCTTTCCATTTGATTTATCACAACTCCTCTTATATTTGGACCTTCTTTTGCTGCTATTCTTGTTTAGCGCTGGGAATAAAAACTATAGAAGCAATGTAACTCGTTTTTTGCTGCAGGAACCTGAGAGAACTGGAACTGGGAGAAAGTGAAGCAGAAGACCTGAGTGGCCATTGGCTTAGTCATTTTTCTGATAGTTGTACATCGCTTGTGTCACTTAACATTGCTTGTTTGGCTTCTGAGGTCAGCTTCTCAGCTTTGGAGCGTCTAGTTGCTCGCTCTTCTCATTTTAGGACTCTTCGGCTCAATCGTGCTGTTCCCATTGAGAAACTTCCAAAGCTACTTCGTCATGCTTCGAAGTTGGTTGAATTTGGTACATGATCCTACTCTGCTGACATGCAGGCTGATGTTTCTGAAGTTTTCGTAAATGTATCTCAAGCATTTTCAGGCTGTAATCAACTTAAAGGCTTGAGTGGGTTTTGGGATGCTGTGCCAGCCTACTTTCCAACTATTTATCCAGTCTACTCCAAACTCACCTCTTTGAATTTAAGCTATGCTACCATTCAAATAGCTGATCTTTGCAAGCTCATTGGCAATTGTTTCAATTTGCAGCGGTTGTGGGTAGGTTCTAGCTTGTGTTTTACTTTTGTATACTTATCGAGTGTTTTCAATAGTCATGGCTCAATACATTAACTGTGTTTGTGATAAAATAGATAAATTGATTGATAGTTGTAAACACACAAATTTCCAAGAGAAGAACAATAATCCTAACTTAGTAATTGTCTTGCTAATTTTGATAATGCCAGGGATAAATAAACAACGTAATGAACTTCAGTGTTTACTTAGATAACATAGCTAAACAATTAATTTCGAGTGAACTCTTTGAATAATTTGCTGGTCTGTCATACAAAGAATAAGTTAATGTTGAATCCTAGTGTTGCACGAATCCTACACTTTGACAATTCATGTATATCTTTCCGGGTTAGACGCTTCCATTAGTTTTTAGGCTTTTCTTGTCCAGTGGATCTGCTGCATAATTAGTTATCCAGCTTACGCTTTAAGGCACTTGGAATGGATGTGATTGCAGGTTCTAGACTACATTGAAGATAGCGGTCTTGAGGAGATTGCCAACACTTGTAAGGAACTTCAAGAGCTTAGGGTGTTTCCTTTTGATCCATTTGCTCCAGGACCTAATGTATCCTTGACAGAGCAAGGCCTTGTAGCTGTCTCAATGGGCTGCCCTAAGCTTTAGTCAGTTTTATACTTCTGCCGCCAAATGACAAATGACGCCTTAGTTACTATTGCAAGGAACCGTCCTAACATGATCCGATTTCGTTTGTGTATTATCGAGCCTCAAACTCCTGACTACTTAATCCTTGAACCACTTGATGCTGGTTTTGGGGTCATTGTGTAACACTGCAAAAAATTGCAGCGACTTTCTCTTTCTGGCCTCCTTACAGATCGTGTGTTTGAGTAAATCGGGGTCCATGCTAAGAAGTTAGATATGCTTTCCTTAGCTTTTGCAGGAGATAGTGATCTAGGCCTCCTATATGTTCTCTCTGGTTGTGAGAGCCTCCGTAAGTTGGAGATTAGAGACTGCCCTTTTGGCGATGAGGCTCTGTTGGCTAATGCTGCAAAGCTGGAGAGTGGAGACCATGCGATCCCTTTGGATGTCTAATTGTTCAGTAAGTTTTAAAGCATGTAAGCTGCTAGCCCAGAAGTTGCCAGGCTTAATGTTGAAGTTATAAACGAGAGGGGTCATCCGGATACGAGACCAGAAAGTTGCTCTATTGAGAAACTTTATATACACAAGACAGTGTCAGGAAGGAGGTTCGACACTCCTGGTTTTGTTTGGACTAGGCTCCGGGCACGTGTATTCCAAATAAAAATCAATAAAAAAAATAAATGAAAACGTATATAATAAACTATTAGGAGAATTATGATGTTTTTTTCGAGTGTTCTCTCGATATTTTCGATCTACTGCACATTAGATAAGTCTCCAAAGCTTACCCATTTATAAGCAATTAAATGTACAGACAGTCATCAACAAGTAAAAATTCTAAGAAAGACACATCAAGTTAAAGAATTAAAAAGGGAAAATGCGACGTTATTTAAAGTCATCTTGTATCCTTAATGTGTGTCGTTACAAATGTAACTACTTCCTTAAAAACTTTCAGATTTACTCAGACTTACATTTACAGGCTTACAACTACTATCCATCACTGTTAGAGAAGACTTGGAGTCGCTACATTTATTGAAGAAAATGTGATATATTTTGCTAGCAAACAGCTGCAATTTCAATTTATTATTAATAGTTTAAAAGTTTAAACATGGTTTCTTTTCTGTGGGAAGCTTGCATAGAGAGTTTTAAAGAGAGTTGATCATCATTCAGTATCAAACCATATTGTACAACAACATTCAATTTTTGATATGTGTGGTTATACCTTTCAAGCTATTTATTTTACCTATTAAAAAAATTAGAAAGTTAGCAAATCAAACGGAAAAATCTAGACTTAATAAGATTGTACCTGAAAATTAGAAGACATTTTTGTACCCACTTAACAATGGAAGCTTGTGTTGAATGACTAATATTGAGTATGTTTATGTAGTGTAGTCTTGGAGATTTGTTGATAAAAACTCTTTGATATTCCTCAATTACTTAATTTGATCCTTTTCAACTTCTCATAATTAGCAAAATACGTTTCAACTTCTATATTAATTGAAACTTTATTCGTGTTCATCCTATTTGGTTGTTTCACACATAGTAATTGAATAGACTGTTGAACTTCTTATTTTGTTCCTTTATTATGTAATTCAATATTACTATTTAATTAGATATTTAATTTATATTTGGGAAAAGTATTTTATTACTTTTTAATTTAGTATAGGGGCAAAGTAATAATTCAACTTTACACTTTAGAGCTTCATGCTTATAATAATATATGATTATTGATGAAGATGCAACATCGACTCCATATAGCAATGGGGATTGCTCTTTGGCTTCTTCTTAGGAAGACTTCAGGTATTAGTTCTATGCTGATCTTTCACCTGCATTTACTTGCTTGAGCCTTGTGTAGTTGCAGTGCTGGTTATGGTGGCAGTGAAGCGCATGTGCCATTGATTTGACCCTTTGTTGAGTGACTTTGCAACAATTAATTACAAATAATGAGTTTAAACTCTTGTTGTTGTGCTATATCACTAAGGATAACTATTGTATTTTCAACTCTTATTGTTTTTTCTGTTGAAATGATGCTGTCAATGTACTTGTTGTCCTGTATTGTTGTAATTCTCCTTGAAGATAAATGGGAACCTTTCATTCATTTGAGTGCTGAAATCCGATTTAATTTGTTGAACGTTTAGAAGAAGGTATTTTATTGTTCTAGTACGAGTCAGCCTGATAAACAAACACTTACATAGGTATGATGACTGTTCATTTTCTCAATTTTATACCTACTCGTGCAAATCCAAAGTTAAAAGGTCATGTTTATGTATTATGCCAAATCTATACTCACATGTGTGCTTGCGATAAAAGAAATAGACAAATCAACAAATGATACGTGCATTTATAAAAATTATAATTTTTGTTGAAGAAACTTTGAGAAATCCACAAAAATATTTCATAACTGCAACAAAGTTTTCTTAATCATATACAATGTACCCTGCAAAGTACAATCTACTTTTCAACCATAATGCTACTTAAATAAGGGGATATTCTTCTGGCCAAGGATCTGAAGCTCGCTCCCTCCTCTCATTTCTTCAGCGTATTCCTTAATCTTGAGAGCAGAATCTTCAAGTTGAGGACTCTTTACAATTTTGATAAATTTCAATGAATAAATATCTCCAAAACTAGGTGGAATCTCCTCAAACTTACCACATTCCTGCAGTTTTAATTTCTCAAGATTGGGGAAGGATTCCTCTCCAACCTCCCACTTGGAAAGAGTCGGTAGACGCAAGTTCAAAAATTTGAGATTCTCAAAGGTGTCTTCCTCCCCCATGTTCCATTCTTCTCCATGGATGATTGCATCACAAAGGGACAACCCTTCAAGGTTGGGCAGTCTAGCTATTGTTGACAGTGAATCGGATGTCAGAGGAAAGTCACGCCATGACAGTTCTTTCAAATTTGAAGGGAAGTGGAAATCCCACGGCCGATTTGTCGCTACAGAGGACCCAATGTGGTTTGTGTTTGAACTTTTAAAACCTACACTGAGTATTTCTAGTTCAGTTAGGCAATCCAATTTCGGGAACCAATATTGCTCTGTTGAATAATCCCATGACTCCTTGAGAACAAATTCAAGCACTTTAAGATTGGGAAACCTTTTGAAAATATTCTTTGTATCTTTCGAATAGGAAATCAACAGTTCCCTTAGTATTCTCAAGTTCTCTAACTTTGTGTCCTCTGCTATCAATATTGATTCATCTGCATCCATATCAAAGAAAGAACAAGCATCCGCGGACAGCACTCGTAGCTTTACAAGATCCAAAATTCTTGGTAACAGTATCAAGGTTGATCCTTTGTTAGACACAAACAGACTTTCTAGATTCCAGAGGTTTGAGAAAGACAAAGGCAGATATTTAACTTGTGTCCGAATTCTTAAGTACCTCAAATGATTCAACATGCATATTTCATTCAGCAAAGAATCATTCACCATGATTAAAGAGGATTCCAGGTCCAACACTCTAAGAAGCCTCAAGTGTCTTAGGTGAAATGTATCAAAAAGACTGTCATCATAATCAATGGTAATTTTACGTGGCAATAAATCTGATGGAGCACTTGATCTTATCCGATCAAACAACTTTTCCTTTCTTGCTTTTATCAAACAAAAGTCATGCACAAGATCATGAACTTGGCAACTCGGTTCATCACCTATCTCATTCAAAAGAATTACCAAGCTACTGGAAATTAAATCATCCATACAAATCTTCAGCACTTCTTCCATACTCTTCATCTCCGTCTTCCCCACAAATCCTTCAGCACCCAAAAAAAACATTCAACAAATAGATTGTCAATGGAGTGTCCTTCGGCAAACTTACAAAGTGAAGCAAGCATGGCTTGAGGTGATGTGGTAAATGGTCATAACTTAATTCTATAACTTTCATCACTTCCACTTCACTGTTCAAAATAAAAGAACTCAAACTATTTTGAACTTCAAGCCACACACTCTTTTTCTTTTCCCTCCCAGCAATGACTCCAGCAATCAGATCAGCCACCAAAGGAAGCCCTTTACAATTTTTGGCTATTTCTTTACCGACATCTAATAGTTCATCAGGGCAACTCTCGTTCCCAAATGCCCTTTTCTCTAATAGTTCCCAACTTTCATCTGGTCTTAGCAATCGAAGGTCAAGAGGATCAGTGTTCAGCTTTCCATGCAAAGGCACTTCCTTTTCTCGAGTTGTCAAAATAATCCTACTTCCTTTCTTAGCTTCAAGAAAAGGTCTTGTTAACTCATCCCATGTAGTAGTATCCCACACGTCATCTAAGACAATAAGATACCTCTTTCCATACAGTTTTTTCCGTAGCTTATCAGGAACATCAATATTCTCACTCAATTTTGAATCTGAGTCACTAACTTGATTGACAATTTTATTCAACAACTTCTTCTCATCATATCCTTGGTCGACCGTGCACCATGCACGAAGGTTGAAATGGCTAGAAACTGACTTATCACTGTATACTTTGTATGCCAAAGTAGTTTTACCTGAACCCGGCATACCAGTGATCGAAATGACATCTAGATCTGCCGGTCCACTGGTGAGCTTTCTAAGTATCAAGTTTGTCTCCTCCTCAAAACCTACAATTATTTTATCAGTTGTCAATGACTTTCTCTCAACTGGTTTCTTGGGAGAGTTCACAACGATTAGACCTCTGTCCTTGGGAATGTTCTCATCTAAAGCAGAGATCTCTTCTTTGATAAGTTTGATCTTCTTTATGGTAATGGGAAGTGAGAAAATAAGATGTAAGAGACCATTATCTCGAACAATAATTGAATCTATGACATCTTTTGCCTCATAAGCCACATCTAGAACACGTGCCCAGATATCTTTATACAATCCTTGCTCAGCATCCACAAAGAATGATCTTATGAATTCCAGGTCTTGTCTCACCAACTCGATTTCTTCCTTTATCAAAGAAATTGAATAAGCATTAGATTCTAGCAAATCATTTAAGTGCATGTGTAGAAGATGCATGAAGAGTGGTCCATCACTCATGGGGGAGCAACATTGAGATGAATCCGGGGCTTTCAGATAAACATGTTTGAGATCTTTCTTGAGGAGTTCAATATTTTCCAGCAAGTCTAGGGTTACACAATTTGTTTGGTTATTACCCTCTTTATTCCTTAATTTCTCTTCCAAGTCACATACAAGAGTTGATACCTCCCTGGTAAGTACTTCAACATGAGCCAAGAGATCAAAAAGTTTGTCATGATGAATAAAGTCCTTGGGCATATTCAGAAAGAATAAGTAATAGGAATTCCATCATGACATGAATGTTTAGAGCCCCTGAAGTGCTAGGGGGAATAACAGTTATCATATGCTCTTGTAGTTGAATGATATATTCTCTGAGAATATCCGGTGAGGGTTCTAGGAGCTTCTTAATGAAGCGTCCAACTTCTGCTGAAGTTGAAGCTTTCAAATTTGTATAACATATGTGCATAACCTCCAGTTCAGTTGGAACAATCTTCAAGAGTAGCTTGAAGAGTCGAGAGTCTCTATCATTCTGATCATCCTCATCTAGCTCGGAGAGCCGAGAGTCTTCATCAGTCTGATCCTCCCAAAGGAAGTGTCCTACTCTTTCAGCCATCAGTTGAAACAGAGGTAAGACATTCTCAACCGTCTCATGCTTAATGCAACCATTCACTATCAACCCATGGAAGTCTCTTATGTTGCCACATACATTCTGAAGAACTTCATATTGAGTCACTTCAGGAAATATCTTTTCAGCGTGATGCTTGGATAGATGAAACAGATTCAAGAGGAGGAAGTCCAATTGCTCATCCATCATGGTGGCATCTGATTTATAAGAACGATGATACAAGCTGATACAATCATCCATATTACTGGTGAGGCTAGTAAGGACATCATCATCCAAAAGTGGTT +>URS00015E57C9 rRNA from 1 species +CCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGACGAGAGTCTGAACCAGCCAAGCCGCGTGAAGGAAGACTGCCCTATGGGTTGTAAACTTCTTTTATATGGGAATAAAACGGTCTACGTGTGTGAATTTGAAAGTACTGTACGAATAAGGATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATCCGAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGAATGTTAAGTGAGGTGTGAAAGGTGCGGGCTTAACCGGGGAATTGCATTTGAAACTGGCGATCTTGAGTGCAGGAGAGGTAGGCGGAATGTGTGGTGTAGCGGTGAAATGCTTAGATATCACGCAGAACACCGATTGCGAAGGCAGCTCACT +>URS0000C6D546 snRNA from 2 species +AGCCATGTGGTGAGCACAAAGCGAACTATTCTTTCGCCTTTTACTAAAGAATACCGTGTGCTCTCCACGCTAAGTGGCATACGCCTATTTTTGTAGGGTCTTGCTTTTAAGCGAGC +>URS0000C3F3E8 tRNA from 1 species +GACGTCGTGCCGGAGTGGTTAACGGGTGCGCCTGCTACTTTTAGCATGTCAGTGTATAGGCTCTGCCTGCGTGAGTTCGAATCTCATCGACGTCG +>URS0000B1CE7F rRNA from 1 species +TGGGGAATCTTGGACAATGGGGGCAACCCTGATCCAGCGATGCCGCGTGAGTGATGAAGGCCTTCGGGTTGTAAAACTCTTTCACCTGCGAAGATAATGACGGTAGCAGGATAAGAAGCACCGGCAAACTCTGTGCCAGCAGCCGCGGTAAGACAGAGGGTGCTAGCGTTGTTCGGAATGACTGGGCGTAAAGGGCGCGTAGGCGGCCAATCAAGTCAGATGTGAAAGCCCCGGGCTTAACCTGGGATGTGCATTTGATACTGGTTGGCTGGAGTACGAGAGAGGAAAGTGGAATTCCTAGTGTAGAGGTGAAATTCGTAGATATTAGGAGGAACACCAGAGGCGAAGGCGGCTTTCTGGCTCGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAA +>URS000118AF15 rRNA from 1 species +TACGGGGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCTCGTAGGTGGCCAACTAAGTCAGACGTGAAATCCCCAGGCTCAACTTGGGAACTGCGTCTGATACTGGCAGGCTTGAATCCGGGAGAGGGATGTGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCGGTGGCGAAGGCGGCATCCTGGACCGGTATTGACGCTGATGCGCGAAAGCCAGGGGAGCAAACGGG +>URS00008D4438 rRNA from 1 species +TACGGAGGGTGCAAGCGTTATCCGGATTTACTGGGTTTAAAGGGTGCGTAGGTGGATTGGTAAGTCAGTGGTGAAATCCCCAAGCTTAACTTGGGAACTGCCATTGATACTATTTGTCTTGAATACCGTGGAGGTGAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGATATGACATAGAACACCAATTGCGAAGGCAGCTTGCTACGCGGATATTGACACTGATGCACGAAAGCGTGGGGATCAAACAGG +>URS0000E895E3 lncRNA from 1 species +CTTATCTGGTGAGGGAGGTTTTCCTTTGTTTCTGGAGCTTGGTTAAAGTAAGCCAAGCTTTATTTTTCTAACTTGAACTCTGACTAAGTAAATAATATTCTGATTGTCCTTAAAGATGCAGAGCATCTTACTCCGTGTGTGTGTGTGTGTGTTACAGCAGGGGTTCCTAACCTTTTTATGCTGCAGACTGGCAAACTGCAGACCAGAGATGACAGTGGACTGGAAGTGACCACAGACTGACAAACTGCGGACCAGAGGTGACTGTGGACCAGCAAACTGCAGACCAGCAGTGACCAGCATACTGGTACCAGACCGCAGTCTGAGGGTTGGGAACCCCTGTGTTACAGTAAAGCAAAAGCACAAAGTAGGAGGCATACTCTTAATTGGAACCCAGGTCAAGGAGATGGGTACCACAATGGCAGATGTGTGGATGGGACCAACCATGATGAATATCTTGCACAAAATTCAGCCTTGGATGAAGATAAAATTTGCCTGCCCTGGATCAACCTGGTAATCAAGTCAGTCCTGGGATTTATACCAAATTCTGGTGTTAATGCACCATGGACTCTTCAGTGCATGTTGCTTGGAGCCTTTGGTTCCTGCTGTTCACAGAATGCTGCAGATGGCTGCCTCAGCAGGAAGCCCTTCCCCCTTCCTTAATGGAGCTCGTGGGAATGCAGGGATCCTGGAACTGAAGCCCTCCTTCCCTTCCAAACCTCCTCTCCAAACCCCTACTGAGTAAAAGGAAAAAAATCCCCACATCCCTGGAAACATTTTTGCCAGCCTGTTTTTCAGTAAAATCTTAAATTAACCACTT +>URS0000DD7A4F rRNA from 1 species +AGGGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTTTTCGGATCGTAAAACTCTGTTGTCGGGGAAGAACAAGTATGATAGTAACTGATCGTACCTTGACGGTACCCGACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCTCGCAGGCGGTTCTTTAAGTCTGATGTGAAATCTTGCGGCTCAACCGTAAACGTGCATTGGAAACTGGAGGACTTGAGTGCAGAAGAGGAGAGTGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAAC +>URS0001657D77 rRNA from 1 species +CAGCCGCCGCGGGAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGCAGGCGGTTTCTTAAGTCTGATGTGAAAGCCCCCGGCTCAACCGGGGAAGGTCATTGGAAACTGGGAAACCTGAGTGCAGAAGAGGAGAGCGGAATTCCACGTGTAGCGGTGAAATGCGTAGAGATGTGGAGGAACACCAGTGGCGAAGGCGACTCTCTGGTCTGTAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGAGACCCCTGTAGTCCCTGTCTCTTATAC +>URS0000010E3A rRNA from 1 species +TCAGTCGACTCCTACGGGGAGGCAGCATGGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTGTAAAGCACTTTCAGTAGGGAGGAAGGTAGTGTAGTTAACACCTGCATATTTGACGTTACCTACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCATGCAGGCGGCCTGTTAAGTCAGATGTGAAAGCCCGGGGCTTAACCTCGGAATTGCATTTGAAACTGGCAGGCTAGAGTCTTGTAGAGGGGGGTAGGAATTTCAGGTGTAGCGGTGAAATGCGTAGAGATCTGAAGGAATACCAGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGATGCGAAAGCGTGGGGAAGCAAACAGGATTAGATACCCTGGTAG +>URS00007A8810 rRNA from 1 species +CCTACGGGAGGCAGCAGTAAGGAATATTGGACAATGCTCGCAAGAGTGATCCAGCCATGCCGCGTGCAGGAAGACGGCCCTATGGGTTGTAAACTGCTTTTGAACTAGAGAAAACCCTTCTACGTGTAGAAGGCTGATAGTATAGTTAGAATAAGCATCGGCTAACTTCGTGCCAGCAGCCGCGGTAAGACGAAGGATGCAAGCGTTATCCGGATTCATTGGGTTTAAAGGGAGCGTAGGTGGACTGATAAGTCAGTGGTGAAATCTCCGTCGTACCGTAACGAAGTAAGTCGACT +>URS0001848EE8 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGAATCATTGGGCGTAAAGTGCGTGTAGGCGGTCCGGTAAGTCCGCTGTGAAAGTCGGGGGCTCAACCCTCGAAAAGCCGGTGGATACTGTCGGGCTAGAGTGCGGAAGAGGCGAGTGGAATTCCCGGTGTAGTGGTGAAATGCGTAGAGTATCGGGAGGAACACCAGTCGGCGAAGGCGACTACCTGGCC +>URS0001910395 rRNA from 1 species +CCCTTAGATGTCCTGGGCTGCACGCGCGCTACACTGATGCGCTCAACGAGTTTACGATCTTGCCTGAAATGGCTGGGTAATCTTTTTAAAATGCATCGCGATGGGGATAGATCATTGCAATTATTGATCTTCAACGAGGAATTCCTAGTAAGCGCGAGTCATCAGCTCGTGCTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATTGAGTGATCCGGTGAATAATTCGGACTGACGCAGTGCTCAGCTTCTGGACGTTGCGTCGGAAAGTTTCATGAACCTTATCACTTAGAGGAAGGAGAAGTCGTAACA +>URS00006E6EF3 rRNA from 1 species +TGGGGAATATTGGGCAATGGGGGAAACCTTGACCCAGCAACGCCGCGTGAAGGAAGAAGGTCTTCGGATCGTAAACTTCTATCCTCGGTGAAGAGGAGAAGACGGTAGCCGAGAAGGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTGTCCGGAATGATTGGGCGTAAAGGGCGTGTAGGCGGCTAAGTAAGTCTGGAGTGAAAGTCCTGCTTTTAAGGTGGGAATTGCTTTGGATACTGCATAGCTAGAGTGCAGGAGAGGTAAGTGGAATTCCCAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTGCTGGACGATGACTGACGTTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGACTACTAGGTGTCGGGTAGCAGAGCTATTCGGTGCCGCAGCCAACGCAATAAGTAGTCCACCTGGGGAGTACGTTCGCAAGAATGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCTGCTCTTGACATCTCCCTGACCGGACTGTAATGAGTCCTTTCCCTTCGGGGACAGGGATGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATCTTTAGTAGCCAGCGGTTTGGCCGGGCACTCTAGAGAGACTGCCAGGGATAACCTGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGAGCAGGGCTACACACGTGCTACAATGGCGTAAACAAAGGGAAGCGAGCCTGCGAGGGTAAGCAAATCTCAAAAATAACGTCTCAGTTCGGATTGTAGTCTGCAACTCGACTACATGAAGCTGGAATCGCTAGTAATCGCGAATCAGAATGTCGCGGTGAATACGTTCCC +>URS00022CA99A rRNA from 1 species +TGGGGGATTTTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGAGGGATGAAGGCCTTCGGGTTGTAAACCTCTTTCGCTGGGTTGAAAGGCCATGCTTTGGGTGTGGTTGATTTGAACTGGTAAAGAAGTACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGTACTAGCGTTGTCCGGATTTATTGGGCGTAAAGGGCTTGTAGGTGGTTTGTCGCGTCTGTCGTGAAATCCTGTGGCTTAACCATGGGCTTGCGGTGGGTACGGGCAGGCTTGAGTGCGGTAGGGGAGACTGGAATTTCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGTTACTGACACTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0000A0C1A7 rRNA from 1 species +GTGAATGCTGGCGGCGTGGATGAGGCATGCAAGTCGAATGGGTTTAGACCCATGGCAGACGAGGTAGGAACACGTAGGTACGTACCGGAGAGTCAGGGATAACCTGGAGAAATCCGGAATAATACTTGATGGTCCCGAGAGGGTAAAGATTTATCGCTCTCTGAACGGCCTGCGTTCTATCAGCTTGTTGGTAAGGTAACGGCTTACCAAGGCTACGACGGATAGGGGAGGTGAGAGCCTGACCCCCACCGATGGAACTGCGACACGGTCCATACTCCTACGGGAGGCTGCAGTCGAGAATCTTCCGCAATGGACGAAAGTCTGACGGAGCGACGCCGCGTGGTAGATGAAGTCCTTAGGGACGTAAATACCTTTTATGAGGGAAGAAGTTTATTGACGGTACCTCATGAATAAGGGGCTCCCAATTCTGT +>URS000254C320 misc_RNA from 1 species +GAAGTGCGATAAGCAGTGCGAATTGCAGAACCGTGAGTCATCAGATTTTTGAACGCAACTGGCGCCGATTGGTCCTCCAGTCGGCATGCTTGTTTCAATATCTTGTTCTCTCATCACCCAAATCTTAATGCTAGAGATACCCTTCTCTGGTTAAGTATGAAAGCACTCTGTACTCTGCAGGCAATCCTTCGGGAGTTGCACTCAATGCAGCAGTCACATTGATTACAGTGTGAACTCATTGAGAGTTGAGAACAGTTCAGCTATGCTGTTAGTGCTTAGATAACTAAACTTACTTGCATTTGAAATCAAGCAGGATCACCCGCTGAACTTAA +>URS000255DEA3 misc_RNA from 1 species +TCGCGGCTTATCACCGGCAGTCCCCTTAGAGTGCCCAACCTAATGATGGCAACTAAGGGCGAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCAGCACCTGTGTTCCAGCCAGCCGAACTGAAGGGGTCCATCTCTGGTCCCCATACTGGACATGTCAAAGGTTGGTAAGGTTCTGCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAGCCTTGCGACCGTACTCCCCAGGCGGGGTGCTTAACGCGTTAGCTAAGGCACCGCAGGGGTCGATACCCGCTACACCAAGCACTCATCGTTTACGGCGTGGACTAC +>URS000043B807 rRNA from 1 species +TCGAGACCGAAACACAACGAGCGATTTTGTGAACCTGTAAAAATAAGCGGTGGCTCTTGCTGCTGCGATAAAATCCACCCGAGTCATCGCCTCATCCCCTCTTTGGGGTGGGGACGTGATGAAGGATGGATGAACCCTCAAATCGGCGCAGCGTTGCGCCAAGGGAATCTTGAAGCACAAGCCCATAAATGGGTTTCGTGGGATGGGGTGCTGTCGCACGCCATATTGATTGACACGACTCTCGGCAATGGATATCTCGGCTCTCGCATCGATGAAGAGCGCAGCGAAATGCGATATGTGGTGCGAATTGCAGAATCCCGCGAACCATCGAGTCTTTGAACGCAAGTTGCGCCTGAGGCCAACCGGCTGAGGGCACGTCCGCCTGGGCGTCAAGCATTTTATCACTCCGTGCCTACTCTCCCATTCATGGATGTGTTGCTAAGGCTCGGATGTGCACGGTGGCTCGTCGTGCCCCTTGGTGCGGCGGGCTGAAGGGCGGGTCATCTTCTCGTTGGCTGCCAACAATAAGGGTGGATTAAATAAGGCCTATGCTATTGTGTCAAGCGCGCCCGAGAGATGGTCATACTTTTTAGGTGATCCCAATTCATGCGTTGATCCATGGATGGCGTATCGAAT +>URS0001EC40D3 rRNA from 1 species +ATTGAACGCTGGCGGCATGCTTTACACATGCAAGTCGAACGGCAACAGGCCGCAAGGTTCCGCCGAGTGGCGAACGGTTGCGTAATGCATCGGAACGCGCCCAGTCGTGGTGGTTAACTACGCGAAAGATTAGCTAATACCGCATACGACCTCTGGATGAATACGGGTGACAGTAAGGCCTCGCTCGACTTGACCCGCCGATGTCAGATTAGGTAGTTGGTGGGGTAAAGGCTCACCAAGACAACGATCCGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGAACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGCGCAAGCCTGATCCAGCAATGCCGCGTGCAGGAAGAAGGCCTTCGGGTTGTAAAGTGCTTTTGTAGGGAAAGAAACGGATCTGATTAATACCCGGGGCTAATGACGGTACCGAAAGAATAAGCACCGGCTAACTACGTG +>URS000126A115 rRNA from 1 species +TACAGGGGGTGCAAACGTTGCTCGGAATCATTGGGCGTAAAGCGCACGTAGGCGGTCTGTTATGTCGGATGTGAAAGCCCTCGGCTCAACTGAGGAAGTGCATCCGAAACTGGCAGGCTAGAGTACTAAAGAGGGTCGCGGAATTCCCGGTGTAGAGGTGAAATTCGTAGATATTGGGAGGAACACCAGTGGCGAAGGCGGCTACCTGGACCGGTGCTGACGCTGATGCGCGAAAGCGTGGGGAGCAAACAGG +>URS00016D22DE rRNA from 1 species +TACGGAGGGTGCAAGCGTTATCCGGATTCACTGAGTTTAAAGGGTGCGTAGGTGGCTTTGTAAGTCAGTGGTGAAATCTTAGAGCTTAACTCTAAAACTGCCATTGATACTGCTTAGCTTGAATCAAGTAGAGGTGGATGGAATAATACATGTAGCGGTGAAATGCTTAGATATGTATTAGAACACCGATTGCGAAGGCAGTTCACTATGCTTGTATTGACACTGAGGCACGAAAGCGTGGGGATCAAACAGG +>URS0000FAD9B3 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGAAGCGACTCAAAGTTTTCGGACAGAGAGTTGACTGAGTGGCGGACGGGTGAGTAACGCGTGGATAACCTGCCTCATACAGGGGGATAACAGTTAGAAATGACTGCTAATACCGCATAAGCGCACAGTACCGCATGGTACAGTGTGAAAAACTCCGGTGGTATGAGATGGATCCGCGTCTGATTAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCAGTAGCCGACCTGAGAGGGTGACCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAAGAAAATAACGGTACCTGACTAAGAAGCACCGGCTAAATACGTGCCAGCCGCCGCTCGTAAAAC +>URS000049D5CE rRNA from 1 species +ACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGGATGCGTATCGGAAAGCTTCGGCCGGAAGATACGTTATCTAGTGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCTTATGGAGGGGGATAACAGAGAGAAATCACTGCTAATACCGCATAAGCACGCAGTACCGCATGGTAGAGTGTGAAAAGATTTATCGCCATAAGATGGACCCGCGTCTGATTAGCCAGTTGGCAGGGTAAAAGCCTACCAAAGCGACGATCAGTAGCCGATCTGAGAGGATGACCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCCATCAGCAGGGAAGATAATGACAGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGAGTGGCAAGTCTGAGGTGAAAACCCTGGGCTCAACCCTGGGACTGCTTTGGAAACTGTTAATCTAGAGTGTTGGAGAGGTAAGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAAGAACACCGGAGGCGAAGGCGGCTTACTGGACAATAACTGACGTTGAGGCTCGAAAGCGTGGGGATCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAATACTAGGTGTCGGGGAGCAAAGCTTCTCGGTGCCGTCGCAAACGCAATAAGTATTCCACCTGGGGAGTACGTTCGCAAGAATGAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGAG +>URS000101C2DC rRNA from 1 species +TACGAAGGGGGCTAGCGTTGTTCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGTGTGTCAAGTCAGGCGTGAAAGCCCCGGGCTCAACCTGGGAACCGCGCTTGAGACTGGCACGCTCGAGTTCGGGAGAGGATGGTGGAATTCTCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCGATGGCGAAGGCAGCCATCTGGACCGACACTGACGCTGAGGCGCGAAAAGCGTGGGGAGCAAACAGG +>URS000172D02F rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAGTGGCGAACGGGTGAGTAATACGTGGGTAACCTGCCCTCTTTCTGGGATACGCCTTTGCAACGGGGACTAATACCGAATATAGGGGGATGGGCTCGCGGCCTATCAGCTGGTTGATGGGGTGATGGCCTACCAAGGCGGTGACGGGTAGCCGGCCTGAGAGGATGAGCGACATAAGTGGGAATGAGAAAAGGCCGAGAGTCGTACGGGTGGGAGCAGTGGGGGATATGGCACAATGGGGGAAAGACAGATGCAGCGACGCCGCGTGGGGGATGAAGGCAAGCGGGTTGTAAACCTGTTTAGCTATCGAACGGGTAGGTGGAGAAGAAGCGCCGGCGAACTACGTTCCAGCAGCCGCGGTAATAC +>URS0000A77429 sRNA from 1 species +TTTTTGGGTGATTAAAATCCATATATTTTGTTACACTAGTTTTCATTCTATTTGAGACAACACGTTTTGTATGTTTACACGATTGTACGGCCACCTCCAAACCACGGGTTCGATGACAGATCAGTGATCACCTCTTTATTGGTTTAGCAAACGACGGCCCTAACCTCGATCCTTTCTCTCGGTTCCTTCTCTAATGGGT +>URS00004E56CD rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGAGTTCCTTCGGGGACTTAGTGGCGAACGGGTGAGTAACGCGTGAAGAACCTGCCTTTCAGTGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATAACATATATTGTGGGCATCCACGATATATCAAAGGAGCAATCCGCTGAAAGATGGGCTCGCGGCCGATTAGCTAGATGGCGGGGTAACGGCCCACCATGGCGACGATCAGTAGCCGGTCTGAGAGGATGAACGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGAGGCAGCAGTGGGGAATATTAGGCAATGGGGGGCAACCCTGGACCTAGCAACGCCGCGTGAAGGAA +>URS000163D073 rRNA from 1 species +ATACGTAGGTGACAAGCGTTATCCGGATTTACTGGGCGTAAAGGGCGTGTAGGCGGTCTTGCAAGTCAGAAGTGAAATTCCTGAGCTCAACTCGGGCGCTGCTTCTGGAACTGCAGGACTTGAGTGCTGGAGGGGATAGCGGAATTCCTAGTGGAGCGGTAAAGTGCGCAGATATTAGGAAGAACACCGGTGGCGAAGGCGGCTATCTGGACAGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGGTTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATACTAGGTGTAGGGGGTATCGACTCCCTCTGTGCCGCAGTTAACACAATAAGTATTCCGCCTGGGGAGTACGGCCGCAAGGTTGAAACTCAAATGAATTGACGGGG +>URS00025C2B18 rRNA from 1 species +ATGGCGATGGAGACGCCCGGGCAGGAAGGGCTCGATCCGGATGAACCAGCTCGCACCGAGCCCGGCCGCCTCAACAGGAGCTCGTATCTCTGCCTGCCAGCGGCTCACCGGAGCCGCCACTGCCGGCGACTGCCTCCCTCACCTTGTGCCCCTCCTCCTTCGCCTTTCTTCCTCTCTTCCCCGAGGAGCGGGGAGCCGGCGAATCCATCGGTCAGGAGCTGGGCGGCGCCCTCCATCATCGCCGTTGTTTGGGGAGGGACGCGGTCCTGGTCGATGCGGTATGGGGCGGGCGACGCGGGGCAGGAGGTGGCGGCGGGATGGAGGTACATGTGA +>URS0001D99DCB rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCGAAAGTTCTTCGCTATGTGTAAAGCGGCGGACGGGTAAGTAATGCATGGGAATTTGCCTGGTAGTGGGGGACAACGTCTCGAACGGGACGCTAATACCGCATTAGCCCTACGGAGGCAAGGGGGGGTTCTTCGGACCTCTCGCTATCAGCTGAGCCCATGTCAGTTTGGCTCGTTGGTGGGGTAAGGGCCTACCAAGGCGACGATCGGTAACTGGTCTGAGCGGAGGATCAGTCGCACTAGAACGGGAACACGGTCCATACTCCTACGAGAGGCAGCAGTGGGGAATAGTGGACAATGGTCGAGAGCCTTGTCCAGCGAGGGCGAGTGTGTTGAGAAGGCCTTGGGGTTGTAAAGCACGTTCAGTGGTGATAAAGGTTTTTTACTTGATACGTAGGCAGAGTGATGGTACCTGCAGAAGAAGCACCGGCTAACTCCGTG +>URS00025F9C51 lncRNA from 1 species +TAGCTTTGAGAAACCTAGCCACACTTTCAGCACTCAGGCCTTTAGTGCTCATTGGAATAAGGTCCCCGCAATCCAATGTCGACCTACAAATGAAGTTTTTTACGGACAGGAGCATTTTTCTTCAACATGGAACTAACAGTCATGATTTTCTTCTCATAACGTAAATCTGAAAGGTCACTTGTTACATCCGACATCGGGCTGAAAATGTATACACATTGCATTGTGTTAAAAAGAATTATGATGGAAAAATAGTGAGATCTCTCTTTCTAGACTGTAGGGTGATGAACCTGTACCAATCATACTGTCTGTCTTATTTATCTGACAACTGTCCCGATACTGAAGAAAATGTTGACAGACAACACAATTAGGCTAGGAAGACTAGATGGTCAGTGATTCAAAATTACTAAATTTGAATTGTTACATAAAAAAAGTAACTGGTTTACAAATTATCCTAACAGTCAAAATTTGTTAAAGATATATTTTTAACCATTCAAAATTCAACTTTAAAGGTGGGGGGGGCAGAATTCATCACTAATGTCCTAGCTTCGAATCTAAGTAGCTCTGAATTTGATTGTAAACTACTTCATACTTAATCTCAAAATACTATTTTTATATTTGCTTATGTGTTTCATCCTGACATCTTCAGGGTTGCTAAGAACGGCATTCATACTCCAAAATTACAATTAAGTTCAGAACTTATTAGAAACATGTTTTTCTCAAGGGAAGTATGTGGCCTATTTGCCAAGAGAGAATTTTTTGTGTCAGAGCCTGTGCTCCCCCCCCTTTGGTTTTTGAATGCATTGTGCACAAGAGAAAACTTGGTCCAGAGCTTTCTCTATAAAACTGAGTGTTAATGTAAGAGAGTTGGCCAAAAAATAAGATAACTTATGTACAGGAATTATTGTAAATAAACTTGTAGGGTAGTACACTTTTTTTCTGCGTGTTACCTCTTGTACCCACATGATGATGATGTCAACTCTCTCCCTCTTGGCTTTACAACATTTTCATAATCCTATAATGATAAATATACATTACTCATTCAATTTTAACACAATACACTGGTAGATATGGTATTAATAGATTTAATTTTATATTAAAACACGATCCGAAAACACACACTGAACATGGTCACCAATACATTAAACAAAGAGAAGCAGAGAAATATTTGTTGCATATATAAGCACATGGATTAAATAGTTTGGTTCATTAAATAATAAAGAATCTACATCAAAGTGA +>URS00009B757A lncRNA from 7 species +AATTAGCCTCAGAGGTTTAAGACTTGCTTGCAAGTGTGCCTTCTGTTTATAGGTTAAGCTAGCTATTTTAATTCTATTATTTGTGAGTTCTCCATAGATGTAAAGTATGACGTAATTCATGTGCCAGGCCACATTGGAGATAGTCAGCTGCCATCGAGCCAGAGTTCCGCAGGCCCTCAGCCAGAGCTCCTCACCAGGGACCCTGCTAAACAGGCAAATCCGCATTCTAACACTGAGCAAAGATTCCTTTCTGAAGGTTGGGGAGTCTGGCATGCACCAATCAAAGGCCTTTCTTTATTGACCACAACACCCAAGACTGCCACCTGGGTAGCTTCCTTCCATACTCCTCACTTTAAATTTATAGCAGCAATTGCTTCTCAATGTAGTCACATGTGCTGGTATAATCTGCCTTTCTTTCTTTCTTTTTTTTTTTTTAAGATTTATTTATTTATTATATGTAAGTACACTGTAGCTGTCTTCAGATACTCCAGAAGAGGGAGTCAGATCTCATTATGGATGGTTGTGAGATGGTTGTGAGCCACCATGTGGTTGCTGGGATTTGAACTCCAGACCTTCGGAAGAGCAGTCGGGTGATCTTACCCACTGAGCCACCTCACCAGCCCGTAATCTGCCTTTCATAAGAATGAATTACAAGTAAAAATCTTGGGGTTTAGATTTTGTTTTGGTTTTTTTTGGTTATTTGAGGTAAGGTCTTATGTAGCTCAGACTGTTCTAGAACTTGCTGTATAACTGAAGCTGAACTTGAATTCCTGATTTGCCTGCTTCCACCTCCTAGGTACCACACAGAGGCCCTGTTTCTGTGGTGCTAGGATTTATTTTTATTTTATATACATTGGTGTTTTGCCTGCGTGTATGTATATCTGTTTGAAGATGTCAGATCACGTGGAGGTGGATTACAGATTGAACTTGCATCCTCTGGCCGAGCAGCGCCAATCTTAACCACTGAGCCATCTCTCTAGCCCTGGAAGCCAGGGCTTTATGCATGCTAGGCAAGTGCTTTCCAATTGAGCCACCTCTCCAGCTCTAGGGAATCTTAATATTATTTTATTCAAGGTACATTTATGCTTCTTTTGACTTAGATTAGATTTTATGAAGGTGTTCCATTTTCTAGTTTTTGGTTCACTCGTCTTAAAAACTTAGGAAGACTTTTAGTAATAATTTTCTACCTCTATATGAGACTTACTATTTTCAGAGAACTTTCAAGTTTCTATCTCATTTATTAATACTCCCAGAAAGACTCTGTGAAGCTAAGATGAACAGATATTTATTGCTATTATTGTTGTTTTCAGAATTTATTTACATTATTTTGCATGTATGACTACCTACATATGTGTCCATGGAGGCCAGAAGAGGTGTCAACACTTAAGACTTAAGAACTATTTTAAGGGGCTGGTGAGATGGCTTAGGGGTTAAGAGCGCCGACTGCTCTTCCAAAGGTCCTGAGTTCAAATCCCAGCAACCACATGGTGGCTCACAACCATCTGTAAGGAAATCAGATGCCTCTTCTGGAGTGTCTGAAGACAGCAACAGTGTACTTACATATAGTAGATAAATATTAAAAAACAAACAAACAAACAAACAAACAAAAAAAGAACTATTTTAAAAGCTATTTCAAAGGTTTGAATAGCTAAAACAAATCTAAAAGAGTTTAATAACTTAGTATAATAATATTAAGGTAATTATACTTTAACTAATCCACATAAACTGAACTTGGTTCTCTTTTTTTAAGATTCAAATAGATCTTAGTAACCTTTTTTAGTCTACCCTTCTTTCAAAGAAAGAAAATCAATATTCAGATAGGACCACAATATGTGATTCTGCTTGTTTATTCATTCATTTGTTTGATCACACCCATGCAGTTATTTATCCTGTATGTGCACATGCATGTGCACAGCATCTGTGTGGAGATCAGGGGACAGTTAACTTGTAGGGGCCTGTTCTATACTTCTGTTCTGTCATGTGAGTCCCAGGTATCACACTCAGATTATCAGACCTGGTAGTAAGCATTTAGCCCCCTGAGCCACCTCACCAGCCCAGATGTGGTCCAGTCTAATGCCACCATCTTATACCAGTTTCTGTGCAGAGAAAAACTTGATGTAGTTTGGGTTCCAATGGACTGGGCAGAATGTTCTCAGAGGCTTCGCAGTCGGCTGAAATGGGTCTCAGTGGAAGACATCACTCCTGAGCCCACTGGGGAGTGGCGTTCTCACCCATCAGTAGGACCTCCCAGCAGTATCTTCCAGAAGTAGAAATAAGTCACAAGGAAAGGAATTAAAGATGAAGTACAGTGAGGTGGCACAGCCCCTAGCCCTACCACTCAAGAGGCTGTGCGGTAGGAACACGGGAACTCCAGCGCCAGTCTGGGCTGTGAGCTCTTGTCTCAAAAAGCCAAACCATCGGTGTAAATGAAGTATAAAAGAGAATTTTATTTATTTCATTATTTTTTCATTTTCATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCTACACATGTACATTGCCTGCCATCCAAGGCTAGAATTAGAGTGGACCATGGTGCCTGCCTGGTGTTTGCTTATTCTTAGAATCCAGGCTTCTGTCCTCACTGTTGCATGGCAAATGCTTTAACTACTGAGCTGCTTCTACAGCTCCAAAGAGTATTTTAAAATCTATTGGCATTACAAAGCAACTGTAGCACAATGACTGGCATTATTTTAAAATGTGTATGTCGTTTTATTTATGACT +>URS000181443A rRNA from 1 species +CACGTAGGGGGCGAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGATTTGTAAGTCAGGGGTGAAATCCCGGGGCTCAACCTCGGAACTGCCTTTGATACTGCAAATCTCGAGTCCGGAAGAGGTGAGTGGAATTCCTAGTGTAGAGGTGAAATTCGTAGATATTAGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGTCCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGG +>URS00010F31BB rRNA from 1 species +CCTACGGGTGGCAGCAGTGAGGAATATTTGTCAATGGACGCAAGTCTGAACCAGCCATGCCGCGTGCAGGAAGACGGCTCTATGAGTTGTAAACTGCTTTTGTACGAGGGTAAACGCAGATACGCGTATCTGTCTGAAAGTATCGTACGAATAAGGATCGGCTAACTCCGTTCCAGCAGCCGCCGTAATACGGAGGATTCAAGCGTGATCCGGATTGATTGGGTTTAAAGGGTGCGTAGGCGGTCGGATAAGTTAGAGGTGAAATCCCGAGGCTCAACTTCGGAATTGCATCTGATACTGTTCGGCTAGAGTGTAGTTGCGGGAGGCGGAATGTATGGTGTAGCAGTGAAATGCGTAGAGATC +>URS00003180C5 rRNA from 1 species +GGGTGGTAAATTTCATCTAAAGCTAAATATTGGCCGGAGACCGATAGCGCACAAGTAGAGTGATCGAAAGGTTAAAAGCACCTTGAAAAGGGAGTTAAACAGCACGTGAAATTGTTGAAAGGGAAGCGCTTGCGGTCAGACTCGGGCGCAGGGTTCAGCGGGTGCGTGTCACCCGTGCACTCCCTGCCGCCCGGGCCAGCATCAGTTCTGACGGCCGGTCAAAGGCCCCCGGAATGTGTCGTCTCTCGGGACGTCTTATAGCCGGGGGTGCAATGCGGCCCGTCGGGACTGAGGAACGCGCTTCGGCTCGGATGCTGGCGTAATGGCCGTAAGCGGCCCGTCTTGAAAAACACGGAC +>URS00019A9808 lncRNA from 1 species +TGAGTTCTTGATTAGAATAATTATATTATATGTATGTATAATATGTCAAAATATACTCTAATATCATGTATACATTAAAAGAACAAAGGAAAAGAACATCACTGGAATTGAAAAGGGCATGGTGATACAAGCTAATGGTACTAAGAACTTTTCAGTCGAATAATAGAAAAAAATTTTTTAAACTTCAAGTATTAGGTGAACATTTAGGAGTCATATAGAACTAAACATATAAAATAGCAAAAAAATCTCTCTGACACATCATAATCAAAATGCCTAACATAGTGAATAAGAATGGAATTTTAAAACTGCAAGGAAAAATGTCAGAGCCAGGCACAGTGGTACACCTGTAATCCCAGGGGCTCAAGAGGCTGCTACTTCAAATCTAGCCTTAGCAACTTATCAAGGAACTAAGCAACTTAGAAAGACCCTGTCTCTAAATAAGTTACAAATAATGGCTGAGAATGTGGCTCAGTGGTTAAGTGCCTCTTAGTCCAATCCCCAGTAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAACATGTCAGCACACATTAGAGGTAAACCAGTGCAGACAACTCCTCAGTTCTTCACACCATTTTAAATCCAGGAAGGCATAGAATGAGGTTATCTGATCTCTGAAAGAAAATTCCCAACCAAGATCACTATATACAGCAAAACCATCCTTTAGAATCAAATAAAAAATAAAAACTTCCAAAAATGAGAATATACTAAAAGAATTCATGACTACAAGGTAGCACTACATAAAATACTTAAAAAAATACTATCCATAGAAGAATTTAAAAATAATCTCAACTTGCCTCTAATGTGGGCTGCCATTTTTCTCTTTCAGCTTTTAAAATTCTATCTTTGTTCTGTGTAGTAGATGGTTAATTATGATGTGTCTTGGGAAGGATGTTTTTTCATCTTATCTATTTGGGGTTCAAAATTCCTCTTGTATTTGGATTTCACTTCATTCCTACAGTTTGGAAAACTTTTTGATATAGTTTCACTGAAAATTTTATACATTTCTTTAGTTTGTGTCTTGGTGCCTTGTTCACAAAGAGTCTTAGAATTGAGCTCTTAATGCTATCTCTGATTTCTTGTATATTCTGGTCATGATTTGTTACCTTTCATTTATTGTTGACTTTGCTTTTAAAATTGTATACTTCATCTTTGATATTAGAAAATCTGCCTTATGTGTGGTCTAATATATTGGTGATGCTTTCAGCTGAATTTTTTATTTGATTTATTATTTCTGTTCCAGAATTTGTTCTTTTCAAAAATTTCTGTTTATTTTAATATTATATCATTTCTGGTATATTATCTCTTAGTTCACTTCATAGCTATGCCTTTAGTACACTGAAAAATTTAATTAGCAGCTGTTTTAATCAGCTTATTTTGCTACTGTGAACTCAAGACCCATCAAGAAAAATATTAGAGGAAGAAAACTTGATTTGGGGGCCAACGGTTTCAGAGGTCTCAATCAATAGACAGCAGGCTCCCATCCTCAGGGCTCAAGGTGAGACTACTCATCATTGCAAAGGGAAGCAGTTCACATGATGAACAAAAGGCAGAGAGAGCGGTCTCCACTTGCCAGATACAAATATATACCTCCAAACCATGTCCTCAATTCCCACCTCAACCAGCTACAACCCACCACTGCAGTTACTACTCAGTCAATACCTATTAAGGGATTAATTCACTGGTTAGTTAAGACTCTCACAACTCTATTATTTCTCCTCAGAACCTTCTTGCGTTTTCTCACACATAAGATTTTGGGGAACACTTCATATCCAAATCATACATAAATTTTCTAAATTCTTTTTCTGGCATTTCCTCCATTATGATATCAATGGGATTAGTTGTATTGTGGGGTATTCGGAATGACTTGATTCATTGCTTTCCATATTGTTAGTATTCCTTAAGGGATATTTATCTCTTTTGCTTTTATATAAAGGACATTTTCTTGTTATGCTGTGGGTTGGGTGAATGCCTTGAGGTCCACATTTTCACTCAATTTAAATTTCCTATTATGTCTAGTCTCTAAGAGGACACTGAGAGGAGAGAGATTAATTTCAAGTAGTTACAACCACTTCAGAACAATTTCATACTCATAAATCTTTTAAAAACGTATTACAAATGTTCTCCAGAAATCCACTAGTCTGAGTGGTAAATGGGGGTGATTTTATTTAATTGGTTGATAAATTAGTTA +>URS00020D7727 misc_RNA from 1 species +GACGAAGAAACGCAGCGAAATGCGATAAGTAATGCGAATTGCAGAATTCAGTGAGTCATCGAATCTTTGAACGCACATTGCGCCCCGTGGTATTCCGCGGGGCATGCCTGTTCGAGCGTCATTTCAACCCTCAAGCCTGGCTTGGTGTTGGGCTCTGCCGTCCGCGGCCGGCCCTAAAGACAGTGGCGGCGCCGCATGGCCCTGAGCGTAGTACATCTCTCGCTCCAGGGCCCCGCGGTGGCCTGCCAGAACCCCCAACTCTATGGTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS0002581D6F miRNA from 1 species +TGTGTATTTAGCAGTCTGTGTGTGTGTGTGTATTTAGCAGACTGTGTACTCAGCAGTCTGTGTGTATTCAGCAGTCTGCTAAATACCCATACAGACAGACTGCCGAGCAC +>URS00017F4189 rRNA from 1 species +TACGGAGGGTGCAAGCGTTATCCGGATTCACTGGGTTTAAAGGGTGCGTAGGCGGGCAGGTAAGTCAGTGGTGAAATCTCCGAGCTTAACTCGGAAACTGCCATTGATACTATTTGTCTTGAATATTGTGGAGGTAAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGATATGACATAGAACACCAATTGCGAAGGCAGCTTACGACACAATGATTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGG +>URS00025256B9 misc_RNA from 1 species +TCCGGTTTGTCACCGGCAGTCTCGCATGAGTCCCCAACTGAATGCTGGCAACATGCGACGGGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTGAAGGTGCCCCGAAGGGAGGCCGTGTTTCCACGACTGTCACCTACATGTCAAGCCCAGGTAAGGTTCTTCGCGTTGCCTCGAATTAAGGCACATGCTCCGCCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTTAGCCTTGCGGCCGTACTCCCCAGGCGGGGCGCTTAATGCGTTAGCTGCGGCACGGAACTCGTGGAATGAGCCCCACACCTAGCGCCCAACGTTTACGGCGTGGACTAC +>URS00002B3B99 rRNA from 1 species +GGAAAACCGTAGAGATACGGTCCCCCCTTGTGGTCGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTATGTTGCCAGCACGTGATGGTGGGGACTCGTAAGAGACTGCCGGGGTCAACTCGGAGGAAGTGGGGACGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTTCGACACATGCTACAATGGCCAGTACAGAGGGCTGCGAGACCGTGAGGTGGAGCGAATCCCTTAAAGCTGGTCTCAGTTCGGATCGGGGTCTGCAACTCGACCCCGTGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGCCTT +>URS00000C876E sRNA from 1 species +TGGAGAGGTGGTCCAGGGTTACGTAAA +>URS00005C10BC rRNA from 1 species +GATGAACGCTAGCGGCAGGCTTAATACATGCAAGTCGAACGGGATTTAGGGGCTTGCCCTTAATGAGAGTGGCGCACGGGTGAGTAACACGTACACAATCTACCTTGTACAGGGGGATAGCCTTGGGAAACTGAGAATAATACCCCATAGTTTTTAGTTATCGCATGATGATTAAAATAAAGCTGAGGCGGTACAAGATGAGTGTGCGGATGATTAGGTAGTTGGAAGGGTAACGGCCTCCCAAGCCGACGATCAATAGCTGGCGTGAGAGCGCGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATATTGGACAATGGGCGGAAGCCTGATCCAGCCATGCCGCGTGGAGGATTAAGGCCCTCTGGGTTGTAAACTTC +>URS0000CDD785 rRNA from 1 species +TTTAATTGAAGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGTAACAGGAATTAGCTTGCTAATTTGCTGACGAGCGGCGGACGGGTGAGTAA +>URS000241D8E8 lncRNA from 1 species +GAAACTTGATCTGAGTGAAACCGCAATTGAAAGTCTACCTGCAAGCATTGGTAATTTGGAATCTCTTGAGAACCTTGATTTGAGTGGAACCGCAATTAAAAGCCTACATGCAAGCATTGGTAAATTGCAATATCTTCAGAAATTTTATCTGAGTGGAACCGCAATGGAAAGCCTACCTGCAAGCATTGGTAATTTGAAATGTCTGGATAAACTTGATCTGAGTGGAACCGCAATTAAAAGCCTACCTGCAAGCATTGGTAGTTTGAGATCTCTTGAGAAACTTGATCTGAGTGGAACTGCAATTGAAAGCCTACCTTCAAGTATTGGTAGTTTGAAATCTCTTGAGAACCTTGATTTGAGTGGAACCGCAATTGAAAGCCTACCTGCAAGCTTTGACAATTTGAATTCTCTTGTGAAACTTGATCTGAGTGGAACCGCGTTTAAAAGCTTACCTGCAAGCATTGGTAATCTGAAATCTCTTGAGAAACTTGATCTGAGTGGAACCGCAATTGAAAGCCTACCTGCAAGCATTGGTAATTTGAAATCTCTTGAGAAACTTGATCTGAGTGGAACCGCTGTTGAAAGCCTACCTGCAAGCATTGGTAATTTGGAATCTCTTGAGAAACTTGACCTAAGTGGAACAGCAATTAAAAGCCTACCTGCAAGCATTGGTAATTTGGAATGTCTTGAGAAACTTGATCTGAGTGGAACCGCAATTGAAAGCCTAC +>URS00006EC10E SRP_RNA from 2 species +GCTGGGCGTGGTGGCACGTGCCTGTAGTCCCAACTTCTCGGGAGGCTGAGGTGGGAGGATCGCTTGAGCCCAGGAGTTCTGGGCTGTAGTGCGCTATGTCAATTGGGCGTCCGCACTAAGTTCGGCATCAATATGGTGATCTCCCGGGAGTGGGGGACCACCAGGTTGCCTAAGGAGGGGTGAACTGGCCCAGGTCAGAAATGGAGCAGGTCAAAACTCCCGTGCTGATCAGTAGTGGAATCGCGGCTGTGAACAGCCACTGCACTCCAGCCTGGGCAACATAGCGAGACCCCATCTCTA +>URS00007D8A7A rRNA from 1 species +TGAGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGTCTTCGGATTGTAAAGCACTTTAAGTTGGGAGGAAGGGCAGTTACCTAATACGTATCTGTTTTGACGTTACCGACAGAATAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATACAGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCGCGTAGGTGGTTTGTTAAGTTGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTCAAAACTGACAAGCTAGAGTATGGTAGAGGGTGGTGGAATTTCCTGTGTAGCGGTGAAATGCGTAGATATAGGAAGGAACACCAGTGGCGAAGGCGACCACCTGGACTGATACTGACACTGAGGTGC +>URS0001F1218A rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCCTTTGGGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGCGTAACCTGCCCTTGACTTCGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAATCCTTGCTGCATGGTGGGGGTTGGAAAGCTTCGGCGGTTTTGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCTGGCCTGGGAGGGCGACCGGCCACATTGGGACTGAGATACGGCCCAGACGCCTACGGGGGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCAGCAGGGGCGAAGCTTGTGGTGACGGTACCTGCAGAAGAAGCACCGGCTAACTACGTG +>URS000062BC82 tRNA from 2 species +GGGATTGTAGCTCAGTGGCAGAGCACTTGCCTAGCACATATGAGCCACTGAGTTCGATCCTCAGCCCCA +>URS000041D298 rRNA from 1 species +AGTCGAGCGAACGGATGAGAAGCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATTTTGAACCGCATGGTTCAAAAGTGAAAGACGGTCCTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTGGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAAACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTAACTGTGCACATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTATCCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGTTTTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGAAAACTTGAGTGCAGAAGAGGAAAGTGGAATTCCATGTGTAGCGGTGAAATGCGCAGAGATATGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGTCTGTAACTGACGCTGATGTGCGAAAG +>URS00020E5DB6 misc_RNA from 1 species +GATGAAGAACGTAGCGAAATGCGATAAGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCATGGGGCATGCCTGTTCGAGCGTCATTTGTACCTTCAAGCTTTGCTTGGTGTTGGGTGTTTGTCCTGAGGGACTCGCCTTAAAGTAATTGGCAGCCAGTGTTTGGTTTTGAAGCGCAGCACAAGTCGCGATTCAAGGCTATACACCAGCTTCCACAAGCCTTTTTCACTTTTGACCTCGTATCAGGTAGGGATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS0002614DC9 lncRNA from 1 species +GAAACAAGAGAGTGTGAGAATTGTCACGTGATCTCGATGACGCAACAGTATTAACCACTGTATTTAAGGCTTTTCTTTTGGCAATTGTGACAAATATTTGTGCCAGATGGTTTTCATACATCATGTGATGTACAAAACACGTCATTCTTTTATTAAGAAAGAGAACCTGACTTCAGTATCCTAGCGTACTTAGTAATCAATAGTTTCGTAAAGTTGTTCTTGTTTGTATACTTTGAGTGCGTGTTGTAATTATATTATAGTTGATAGTGGAGTATAATTATGAAGCTGAAGATCAAAGTAACATATTGTGGTGCCTGAGGGTACGAGCCCAAGTTCCAGAAACTTCAAAAGGAACTTGAGCAGAAATTTCCTGGAAAGTTAGACATTGTAAGTTACTACTTCATGCATTTGTGATTTGCAAAAAGGTTGT +>URS0000D36178 rRNA from 1 species +AGTCGTACGAACAGCGGAAAGTGCTTGCACTTTCCAAGTAAGTGGCGAACGGGTGAGTAACACGTGAATAACCTACCTCAAAGACTGGGATAACCATTGGAAACAGTGACTAATACCGGATAAAACCCAGTAGCACATGCTACAAGGTTAAAAGCTGCGTTTGCAGCGCTTTAAGATGGATTCGCGGTGCATTAGTTAGTTGGTGAGGTAAAGGCTCACCAAGACAATGATGCATAGCCGAGTTGAGAGACTGACCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCTGCAGTAGGGAATCTTCCACAATGGGCGCAAGCCTGATGGAGCAACGCCGCGTGTGTGATGAAGGCTTTCGGGTCGTAAAGCACTGTTGTATGGGAAGAACGGGTTTAAGAGGAAATGCTTAAGNAGTGACGGTACCATACCAGAAAGGGACGGCTAAATACGTGCCAGCAGCCGCGGTAATACGTATGTCCCGAGCGTTATCCGGATTTATTGGGCGTAAAGCGAGCGCAGACGGTTCGATAAGTCTGAAGTGAAAGCCCACAGCTCAACTGTGGAATGGCTTTGGAAACTGTCGAACTTGAGTGCAGTANAGGTAAGTGGAACTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAANGCGGCTTACTGGACTGCAACTGACGTTGANGCTCGAAAGTGTGGGTAGCAAACAGGATTAGATACCCTGGTAGTCCACACCGTAAACGATGGATACTAGTTGTTANAGGGTTTCCGCCCTTTANTGACGAAGCAACGCATTAAGTATCCCGCCTGGGGAGTACGACCGCAAGGTNANACTCNAGNAAT +>URS0001AD154A rRNA from 1 species +CCTGGTTGATTCTGCCAGTAGTCATACGCTCGTCTCAAAGATTAAGCCATGCATGTCTAAGTATAAATACTTGTACTTTGAAACTGCGAACGGCTCATTATATCAGTTTTAATCTACTTGATAGTCCCTTACTACTTGGATAACCGTAGTAATTCTAGAGCTAATACATGCGTCAATACCCTTCTGGGGTAGTATTTATTAGAAAGAAACCAACCCCTCCGGGGTGATGTGGTGATTCATAATAAGCTTGCGGATCGCACGGCTTTTGCTGGCGATGGATCAATCGAGATTCTGCCCTATCAGCTTTGGATGGTAGGGTATTGGCCTACCATGGCTTTAACGGGTAACGGGAAATTAGGGTTTGATTCCGGAGAGGGGGCCTGAGAGATGGCCACCACATCCAAGGAAGGCAGCAGGCGCGTAAATTGCCCAATCCTGACACAGGGAGGTAGTGACAATAAATAACAATGCCGGGCCTTTTTAGGCCTGGCAATTGGAATGAGAACAATTTAAACCCCTTATCGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTGTGGGTGGAGCGACCGTCCCGACGCTTTGCGTGGGTGATGGTCGTCTCCGTCCATCTTTGGGTGGAATCCGTGTGGCATTAAGTTGTCGTGCGGGGGATGCCCATCTTTTACTGTGAAAAAATTAGAGTGTTCAAAGCAGGCTTACGCCGTTGAATATATTAGCATGGAATAATGAGATAGGACCTGGGTACTATTTTGTTGGTTTGCGCACCGAGGTAATGATTAATAGGGACAGTTGGGGGTATTCGTATTCCATTGTCAGAGGTGAAATTCTTGGATTTTTGGAAGACGAACGACTGCGAAAGCATTTACCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGATGATTAGATACCATCGTAGTCTTAACCATAAACTATGCCGACAAGGGATTGGTGGGCGTTGTTTTGACCCCATCAGCACCTTATGAGAAATCACAAGTTTTTGGGTTCCGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACCAGGAGTGGAACCTGCGGCTTAATTTGACTCAACACGGGAAAACTTACCAGGTCCAGACATAGTGAGGATTGACAGATTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCCCTGCCTGC +>URS0000B34B7F misc_RNA from 1 species +ATAAAAGTACCTCAGGCTGAGAAGAATTTGCAGATGAATGATATATCTTTCTATTTGTTAGTGTCAGTGCAAAAGTTTGTTTGAGACTTGGCCACTTTAAGTGAACAAGATATAAGATTGATTTATGGCTTACATACAAGATCAATTGTTCAAAAATGTTAATAAAAAATATAAAAAATTTCATATAAGATAAATTCATTACTTGGCCAAAAACATAAACTCCATGAGAGAGTGTCAAGTACATAAGAACATTGAAAGAAGTAAAATGGGAAAAAAGAACCTGGCTTACTCTAGGTTTTATTGTTGTGAACATCCTCATTTAAGAATTTTAATTAGCGATAAGGTAGCCAACTATGCTTTATTTTTTTTCTTTTTTGAATGAATGCTTTAAATTAATTTAAAAAAAATAATAACTTCAATTAGCAACAAATAAAAGCAATAATAATACTAATCTAAGAGAAGATGTTTAGAATAGCCTGGGATATGTCGATCGAGGCACGCAAATTCTGCGCTGTCCTTAGAGGTTAGCTAAGCTACTCCTATGATTGTTTTTTCATATTTGTTTACTTGAACCACCCTTCAACTTAATTGTCCAAGTGTTCATAGAGATAAATCAAAACTGTAATCAAATTTATATGTAATTTACTTGTTTAAGAATCACATTTTTGAACATTAAAAACTTGTTAGGCTTCTGCACAGTGACAAAGCCCAAGCCCAG +>URS000228E453 misc_RNA from 1 species +AACTTTTGGCAACGGATTACTCGGCTCGTGTGTCGATGAAGAGCGCAGCCAGCTGCGTGAATTAATGTGAATTGCAGGACACATTGAACATCGATATCTTGAACGCATATTGCGGCCTCGGGCAATCCCGAGGCCACGCCTGTCTCAGGGTCGGTTGAACGTCAATCGCGAAGCTGCTCTCCTCGCTCGCGCATTGGGCGTCGCAGTCGCTACCAGCGGCTGCGTCGCCTCAAGTTCAGACGGGTTGCTCGGTCTTCGACGCGTTCGCCTGACCGGGACGGTGACTCGACTCTCGTAGAGCGCACCATCTCCCGGGTCGTGGCGATTGTCGCTGACGTGCGGCGACCGCAAACATACTCACACTGACTTCGACCTGAGATCAGACGAGATTACCCGCTGAATTTACGCATATCAATAAGCGGAGGCT +>URS0001A2104B lncRNA from 1 species +GTGGAGGCGAAGTCAAGATCGAGAGCCGGAAGGTCAACTTTAAGGAGAAAGCTCAGCCCAAGGTGAGCTCGATGGATAATGTTAATCACGAGCCCGGAGGCGGGAATGTCAAGGCTGAGGGGGCGCAGGAGACTGCTGAGGGCAGCGGGGCTCCCTCTAGTGGTGTCTCAGCAGGCCCTGCCCAGGAGAATGGGCTGAAGGAGGGCGCCCCCTGCAGGAGTGAGGAGCTCCGGGACCCGCAGGGCCTGGACTCGCTCATCCCTGAAACAAGCATCTAACTCGACTTTTTGCTATCACTCTGCCCTCTTCATTTCCCCCCCCCGACCGCTTCCTCTCCTCCCCTTCTTTATGTCCTGTCCCTCCTCTGTCCTGTCTTTCTCCACACTCTCTGATGCAGATTGAGTCTTTCAAGCTAAATTTCCGCGAGAAGGCCCGCTCTCGCACGGACCACGGCGCCGACATCATCACCTGGCCCGTCTCGGGTGACAGCCCTGCCCCCCCCCACCTCGCTCCGCAGCAGCGTCTCGCTCAACGACTCCCTCGCGACCGCCGGCATCCCTCGCTCTCACACCACCCCGGCCCTCTCCTCCTCACAGGAACAAGGCTCGCTCACCGGACTCTGGATATGATTTCTGTCTTTTCATTGGCCCGCTGCTCTCTAAACCCCGCCCCCTACCATTGCTAAGACTCATGTGATTGGTGTGCTCTCTGTTGACGTTCTTGATTCCTGATTGGTGAGGCTGTACAGATTACAGTCATCAGGATGCGCTAAAAAATGAAGGCTGCTGACCCGAGGGTCTGTAAACTCTGAGGTTACACTCTGAGTACATCCTGCTACATCACTTGTTGTAGATCTGATCACATGCAAACACATCTGGACATCATCTCTAGCTGCCTTCAAGTCCTCATGGGAAGTTCGTACTTACGAGTTGTTTACGATGCGATCGTGTCATGTGATTTTAGATGGAAAAAATCACTTTCTGACCAAACCAAGAAGCTTCTTTTAGTGCCAAAGCAACAAAATGAAGAGCAAAGCATGTGCATTAGATGTGTGCATTTGATCATTCTAATGAATAGGGAATGTAGTTTGGTTTTGTGAAGATTTAATTCACGTTCACACTACATTTCGAGCATGCAAAGTGTCTACAGATTTAAAATACACTGAAAAAAAATAAAATAAATTGGTGCACGAACAGTTTTCGCTCAGAAACGGCTTAATTTCACAAACAATTACAAAGAAACCGCATGCAACGCGTTTGAATTAGACGCGCAATTGTAAAGTAGAAGAATTGAAATATTTTCCTTTATTTACTACTATAAAAAGAAAAAAAAATTGTAAAATGGTGTTTTTTTTTAATAAAAATATGCAATCTGCAATCTACTGAAATATACTGCAAGTCTGCAGATTTAAAGTTTGCTGTTTTTGTTTAATTCAGCTAAGACGTCACTCCACGTGCATGAGCTTGCTTTTCCTCTCTCCACGTTTGCATGCGTGTGAATCGAAGTCAGTAGAACGTAAAGTGTAGTGTGATCGTCCCTTTATGCCTCAAAAATTGTCTAAATGAATATTATCTGAAACTTTTACATCTAAAATGGCTAACAACAGCTCCAACTCGGAAAGTCCCCCAACATCAGATGTCAGATTTGGGTGGCGCTCGTCTCGTAAGCACGATCATTTCTGCTTGATTTGAAGGCAGCATCATTCAGCATACAGGGCTGTCATGTGACCCTCTCTCACCTTCACCCTTGACCTCCAGCAGAGCTGTCATCGGAGCACATAGGCTTTCTGAATCTCTCTCTAAAGCTGTTTTGTGATGGTGTGTTTGAGTGAATACTGTAGCAATGAACCGCTTTCCTTCGACTCTTCGTTTTATTTTTCGTGACCAGCAGATGTTTCCTTTTCCTTGTTATTGTAAAGCAATATAACAGTCTCCTATAATGCCTATAAGACATGAAACTCCACTTAAACGCACAGTAAACAGCACTCAGTGTCAAACGCAGCTCCAGACGGCTTCAGGAACGTGTAGAGGGTCTGAGGTGGACGTGTAACGAAAAATACCCTTGTGAAAAAGAAGAAACAATAATATTAATGAAATAAAAGCCCACTTAAGTGTACTTACAGTAGGCCGTTTCCTAACACACTTAAGTACGCTTTGCAATATTGTCAAATTAATTGTTTTAAAGTACATTTTAAATCATTATGTTTTGATAATCTTTGAAGACGTACACTTATTTTGACGTGTTGACTGTCATACTAAAGCGCATGTGAAATACTTGATTATAATCGAACTGTAGTGTTATGCGATATTACATTCAAAGTTATTTTACTCGGCTGCATTCATCATTACAAATGTATAATTAAAAATTTATTTAAATACATGACTTACAAGTTTAGTTTACCATGCATGCTTGTCATTGCAATCAGCAATACACTTTAACCGTGTTTCAAAGACACTAGAAGTATTTGTGAATCTGCGTATAAAGATGTACTTAAATCCTACTTACAGTAAATGGCTAAAAAACACTATAAAGTTCAGATCATTGCATTTAAAATAAATTTGAACCATTATAGACTTCATTTCAATTAACATACATTCAGTTCACACTTACAGTAAGTATATTCGTCTAAAGTGCATTGCTGTAATAAGTATACTTAAGTGTACTTCTTTTTCACAAAGGCAAGGGAAGTGTGGAGACACTAGATGTTGACTTGATGCTTGAGGGGTTTCTGTTGGGATTGAATAGTTGATGTTTTGGCATCATGTACAGTAGGTACAGTATGTTTTAAATGGAAGTGAGGATCAAGTTCGTGCCTGATAGAAATCGCATCCCTTCGGAGGGACGCAGAGACAGAATGTCAAAGCTTGAAAGCTTTTACGTACTTTTAATAGTTGCTTTACGAGAAACCAGTGAAATTGCGAGTGAGTCTGGTGGTGGTTTTACTTCTCTTATTCGTTTCTGCAGGTCTTTTTTAGGAGTTAAAGTGTGATCATGTGGGTTGAAACGTTCCTGCGGGGTTTTAATGGTGGAGCTTAATTCTCTTGTAGCATTTTACAATAGTTTATCTTCAGATGGTCGCACTGAATCACATGCTTAACACGAATCTGCTTGGTTTAGTGTCCTTTTGGTGTAATAATGGGGTAAGAGGACGTGGCCGTTCTTTTAGTGTTCATTTTGTCATCAGCTGAGGGCGATATGGAGGTCCGACGTACATTTATTTTTTATGAGTATGACAAATTATTGTTGCATCTATCTTGTCAGACCGTTTCAATCCCAGAACATACAAAGCAATAAGACTGTCACACTGACAGACCCCAGATTTCGACTTTTAGAAACCTACATCGTGCATGACGGCGTAAAGCATTCAGATCATGAAATATTACGCGATTGATCGAAAAATTTACGAATGCATGGCCATGCTACAAAATCAAGTTTCTGAGAGATAGCTACCTTATCTAAGATACAGATGGTAGACAACCAAAATGGGTAATACCGCCGCGCGTACCGCCGCCGCAGGGCCGCGGCGTTAACTTCAAGTCAGTCAAGTGTTAAAATCCTTCGCGAAACTACCACCAGGTGGCGCAAAGGGACGGATTGCGAACTGAATGTAATTGTAAAATGAGATAAAAGGAGGAGGTAAAACAACAATAACATTATGATATAACATTGTACCATCTTTAAAAAACCATTAAAAAATGTACAGTGAGTTAATTTCAAAATGTAGGATAGTCTTAGGCTACAGTTTACTCA +>URS000030206D rRNA from 1 species +GTGGGGTAATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGCAGGGACGAAGCGCAAGTGACGGTACCTGCAGAAGAAGCGCCGGCCAACTACGTGCCAGCAGCCGCGGTAAGACGTAGGGCGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGCTTGTCGCGTCGACTGTGAAAACCCGTGGCTCAACTGCGGGCCTGCAGTCGATACGGGCAGGCTAGAGTTCGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGTTGGGCGCTAGGTGTGGGGGGCCTCTCCGGTTCTCTGTGCCGCAGCTAACGCATTAAGCGCCCCGCCTGGGGAGTACGG +>URS0000C8846A pre_miRNA from 1 species +GAATTACTCCCTTCGTTCCAAAATTTTTTGTCTTACATTTATGTAGATATGAATGTATGTAGTCATATTTTAGTATTTAGATACATCCATTTATAGACAAATCTAAGAAAAGAATTTTGGGACGGAGGAAGTACAAA +>URS0001332FF6 rRNA from 1 species +TACGTAGGGTCCGAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTTTGTCGCGTCGGGAGTGAAATCTTACAGCTTAACTGTGAACTTGCTTTCGATACGGGCAGACTTGAGGCATTCAGGGGAGAACGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCAGTGGCGAAGGCGATCTTCTGGACGGATACTGACGCTGAGGCGCGAAAGCTAGGGGAGCAAACGGG +>URS00019FE4B3 tRNA from 1 species +GGATTGTGGCTCAGTGGCAGAGCACTTGCCTAGCACGCGCTAGGCCCTGGGTTCAATCCTCAGCACCA +>URS00021AA98B tRNA from 1 species +GCGGGGTTGCCCTAGCCTGGTAGGGGGCAGGCCTGCTAAGCCTGTGGCCGATTTCGGCCGCGCGGGTTCAAATCCCGCACCCCGCGCCA +>URS000050F67C piRNA from 1 species +GCAGAAGCTCCACCACCACAGCAAAG +>URS000242CB14 lncRNA from 1 species +CGGCGAAGCTTTTCCGGTGAGTAATTGGACGGCACAGGGACGGTCTTCCGCGGTGGATTTTTCGGCGATCTCTACCGTTTTCCCCCAGAATTTCTCGATGAGAGGAGAGAGGAGGGTTCTCCTCCTTAAATAGGACTGGAGGGAGATCGTTTCCGACTCCGATTGGGAGCCGGCGAGAGGAGGAAGAAGACTCCCTTCGGGAGTCTTCTCCCCTGTTTTCTTCTCTTTTTTTTTTATTTTGGGCTT +>URS000242DE7D lncRNA from 1 species +TAAATCATCGAGCTCTTTTTGACTTAGTGTCAATACAATTTTATGAGATAATAATGTCTATTTCCTAAATCGGAAAAACGAAAAATACAAAAATAAAAATTTTTAAATACGATTTCGGATCTTAAGACTCTTTCCTGAATTGTCTTTCGACCTAAAGATAAATCAAGCTAAATTATAAATCAAACAACAATAAAAAAAATAATAAG +>URS00022EBB93 tRNA from 1 species +GGTGCCGTAGCCAAGTGGTAAGGCAAGGGTCTGCAAAACCCTTATACGTGGGTTCGATTCTCACCGGCACCTCCA +>URS00019F1EF9 lncRNA from 1 species +ATGGAAATATCTTGGATCAAGTTGGATCCCATTACCTTGAATCATCGACAAATTCTTTCACTTATCGCATTCTCAATCTTTTCTTTATTTTTTATTACAATACATATCGACATGCTTTTGAAAAATATATCATTTACATAAACAGTTAATTTTTTAATATATAACGTGATGTTATCCATTCATCATAATATTTTAACATGA +>URS0002545815 rRNA from 1 species +GGCCAGGGAAAAGGACACGGAGGCTGGGACAGCGATGTCCCCGCTCGGGGGCGGCCTGGTGGAGCGGCCGCAGCCGCCCACCTATTCCGAGGTGGGTGCGGCGACTCCCCTATTCAGAGGGGGAGTCGGAGCAGGAGTAGTCGGGGGCTATAAAGCGGTGAGAGAGCGGAGGAGTTACCAGGAGAGACAGCTCCCCCTCTTCGTCGGCTCGGGGGACAGCGGCGGGCGGCAGCGAGTGGCGCCACTGGCGGAGGGGGCACGAGGAGGCTAACCAAGTTGTGGAGGCGGCAGAAGGCGACGATGGAGATGCAGCTGCGCGCGCTCGGCCCTCCGTGGTGTCGTGGCCTAGCTCGGCAGAAGAAGGAGCCTAGGGGCGGCAGCCAGCGGCAGCTAAGTAAGCGGAGGTCGTTGGGGCCGGAGGGGCTCTACGAGAGGGAGAGGCGATGGGGCTCTGGCGACAACTACGGGGACACTAGCTGATGCAGCTGCTGCTGGGAAGAAGGCAAAGTCGCTTCGAAGGTCTACCACCTAGGGACCTTGGTCTACGGTGGCGGCTACCTACGACGATGTACTTCTGGCGGCTGCTGGTACTCATCAATCCTCCAGGGTCCGTCCTCCAGAACGGAGAAGCTAGCAACAACGAAAACACGATCGGAAGAATTCCGTAGGAACAAATTGAATACATATATGAGTCTATAACAACGAAGGCGACTGAGAACACATAGCTCGATACATAAACTCGGGAGCTCCGGGGACCGAACATTATATTTCGAACATAATAAAACTAAACACAGATCTCAACACAACACTATAGAAGGGCACTCAGG +>URS0002061C56 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGCGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGAGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS0000EFE3C8 pre_miRNA from 7 species +TTAAGGGAGTTATTGACTGGGCTTCCCACCACTTAAACGTGGTTGTACTTGCTTTAGACCTAAGAAAGTAAGTGCTTCCATGTTTTGGTGATGGTATGTTTTCCTTTATATTCATGCCTTT +>URS00025F4A4B lncRNA from 1 species +TATTTTTTACAATATATTTTTAATAAGAAAACTGTCAGTTTTCTTGTGGGGATTTTTGATGTTTTTATTGTATTAAAAACTATTGCAAATCAGCTTACAGTTTCAATGTAGGAAAAGGGGTCTGGCTCCTTAGGCAGGCCTGATGTGGGCCATAAATATGATACAAATTTTGAGAGCAGAAAAAATCACAGGGATATTTCAAACTTGCTGACTTTGTGTTACCCCGTAGGAAATGAATCTACCAATAATGGGCCTTATTATTCCACCTCCTGTAGACTAACAAGAGCAATTCTGGTTGTTTATTTAGATACACTGATTTTGCAGACTATACCTCGAGATGGTTGAGCTTAATGTGGTCATACTTATTTGACTAAGGGTAAATTTTTAGCTCTGGCAGAGAGCAGATGTAGCTGTCAACAACTTCCAAGCATAGCTGTCTTTAAGGGAGCTCTTTCTATTAACAGCAAACACTCAGTGAATGAGAGGGCAGTACTTGTACAGTGCATGTCCACAGTTACATGCATATGGCAAAGCATACTTCAGCTTTTGGTTTTGAAACTCATCTCCCACTAAGGCCAAAGCCCTGACATCCTTACTGCCGTGTGTCTGGGATTTTGTTTCAGCGTATGTCCAGTCTTATCTTATGAGCTGAACACCTTCAGTATGTATATGTGCAATTAGCAGTTTGTTCTTGCATGGGTCTGTCAGGGCTTGGGAGACATTCGGCATGTGCATGGGTAGGTTCCCCTGGCTTGATTTTTCTCTGTGAGGAACCTGGTTCATATGCATCGGCACTGCTCTGCAGCCAAGCCCTCATCTGAAAGTAATTGAGTGGCTCTCTTCAAACCTGCCTTGTTGCCCCAACCAAAACATTAGTGTGAGCCCAGTCCCTGACAGCTCACTGCGGTTGGCTCTCTGTGGGCTGATTTGCGTGCTGTGTTGACTGAGTTTCCTCTCAGCTCTAAAGACTGTGTATCATTTATCTATTTTTTTTACAGGTGTCATTATGCAAATTATGTATGCATACAAATATAAACACATATACACAAATCTTACGTGGATAAATATGTAAAAACAAACTTCAATTATACCTACAAACATCCATGTATATGTATATATTTGCCATAATATATTATTGCAAAGGTATTATCTCCACAGTTGATGATGGTCTGAATGCCATTGCAGCTACTGTTATTGTCCTTTGGTTGGAGTGATACCCGTCCAGCACTGCCCTTTATTAGAAGATTATCCGAACTTCTCAGTTATGCAAACAAACAAAAATGTATTCTGTAGGTTTGTTACATTGGTCACAATGTGAAGTGCATTTGTATGAATTGAAAGCACATGGGACTGCAAGCTATAGCTACATTACAAGTTTCCAAGGATATACTGCTGTCAATGTCATTTTTTTTAGCAAAAGTATCTTCACCAAACCTCAAACTACACCTCAAGAAGCCAAGAAATAATAATGGTGGTTTGAGGCATGAAACAAAGGATGGTATTGTTGTGTGGAGGAAGCAAGCACAACCTAGGTAGGTAAAGCATGGTAAGTCCAGGTGCAGTCTCACATCAGTGCCTGACTGCCTGCATTCCATTGGCTTCCTTGCTGCATTTATTTCTTTTCCTATGAGATGCCAAAGCCCCAGCCATGCTAGAGTGTGTGTCTAAGCAATGAGCTGCTCTGTTGATTAATCTGCTGTCGCTGTGGAGCAAATTGCTTGGCATGTTTTAGCTGTGACAGGTGGGTTTCTATTAGCCAGTGTTCACGTAGCTTGCACTATCCATCACATAAAGAATCATGTCATGTCAGAGCTGCATTGTGATCATGACAAGAAGACAGATCAGGTATCGTATAGGGGAAATAAAAATACATGCATGGTGCAAATAAAAAAAATCTTTAGGGTTTCTTTGTTTGTTTGCTTTGTAATTAAGAAGACACAGAGATGCAGGATGAAATTGGGAAATAGAAACTGATAACTGAGTTAGAGGGACATGGTTTTCATCCCAGAGGTTTTTACAGAGTACACAGGGATTAACTGAGTTGTTGAAGCTTGTACTCTCTCTTGCTAATTAAGCCTAAGTTCAATACAGAATAATTGCTTGTGCATTGCAGGTAAGGTGAAGGAGGGAACTCGTTGCTGTTGTGCAGTTCTGCAGCAGGCAAGACCTGAGCTGCATAAAAAAAAGCATTTATCTATGGTAATGTTTTTGTCACCTTTTTGATACTTTAGAAATATTCCTAATTCACTGTCTTCCAGGTAGAGAAGTTATTTCTATTATATAAATGATATTAAATATGTATATTAAAATGTAATGTCCTTTGGACAGTTCTAACTTGTGGGATGAAATGGCAAGGCAGATGGGGAAAATGTCTGTGGGAACAGGGGAGTAACTGGAAGATAAGTGAAAAAAACAGGATCTGACTATTAAAGACATCTGGGAGGTTTGTATGTCTAAAAAATTTGGGGATTTACAATCACAACATGCTATAAAACTGGAGTTGCAAATCAAACTTCTCTTACTTTATATGCCTTGCAGGGGGAGTGAGCCATGTTTTGTGAGTCAAACACAGAACAAAATAGAAACCCCCAAAACACCCCAAGCACACTGGGAAGTCACCCAGAGAGAAGAGATTACGTTTAGAAGAGCTTTTGTTCCCAGTGAGCTAAAGATATTAATACGCATCTGGTATACAATGATATCAGCATACTGAATTGCAGGAAGAGCAGGTTATTGGGGAGTCAGGATCTGTTGTTGAGATTTGTTTGTACTCAGTATTTAGCAAAAAGAAAAGGAATATAATTAGAAGACTGTGAACTGGGGTAAGAGTTGTTTCTTCTAAAGAAGAAACAATGAGGAGAGGATGTCTGCTGAAATAGTCTCTTCATGCAGGCAGCTCAGAGATGTCCACGGAAGGAAATCTGTTCAGTAGCCCATAATCGCTCTGAGTTCCATGTAGATGTTGATCTTTTGTTCAGCTGATTTCCTTTTGGTAGCTGTTTTCTGCTTTGCAATCAAGAGATAGAATAAACGGGACTCCTGCTTTTCCTTATTCTTATCGAACGACAGAGGAATCTTAAGGCCAGGTGTTGGTGTATGCTAGTTGCTCTCCAGGGAACAAAAGCAGCAAGCAGGTGGAGACAGAATGGTTCGCTTCCAAATGTTTCAGAGTTCTTGGGCTTGGGATGTGTTACCTCCTAGCTCAGTTCGACGCAAGGTGGTGGCTTGCAAAAGGAAGCCTCCCATGGCAGCCTTCAGCCAGCATAGCTTTACCAGGCTCCCGTTGAAATGAAGTGAGCGTTTAACTCAGATGATAACTGTGTGTCTTGTGGGTTCCTTCACATCTCCAGTCCGGTTACTGGGAAGTTTTCTCCTCCAACCACCCTTTGACTGTCTATAAATAAGTGTAACAAAAAGGGTACTGAGTACTAATTCACAGTGAATCACAGCTGAACAGTATGATCAGGTGAATCCCATAAAGAGAACTGACAGTGTATTCAGATCGGGTGTTTGCCATTCAAGGATCTGCACCTCTTATGATCTATTTGGGCCCATCTTTCTCTAGCCTTTAGAAAAGACTTCTAGAGTCTTGCTGGTTGTCTTATTAACATGTAGAGATGGCTAACTGGTGAATCACAGCTTCCTTTAAGTAGCCCCTGACATCTGTAGCATTTTGTCAAAGTGTAGAGGGAAATGAGATGAAAGGCTTAAAATGCTGTGTGGCTTTTCCAATTTTAAGTAATGTCAGACATTCTTTGAAGTAATTTGGCCTCTTGTGAAAAATGTTCCCTGTGTTCAAGGGCATCAAAACCAGGCAGCCCTCCTAAAAATAGTACATACTTATTTGTTGAGTTAAAAGTTTCACAGGTATCCTTTTTATGCATCCTACTTTGTTTATCTGTGAAGGTGCTCATTTGTTTGTTTTCCTTGCAAGATTCCTGAGAACGTTCTTATACTTCCAAACCACATTTCTCGAATCTGAGTATGGGAAGGGGGTAGTACATAGATTACTTGCTGAATATACTAAAACTCAATCATATTTAACTACTTTATGAAGTCTGTTTAAGTTTTGTAACATTTAACTACTTTAATTCTAGGCTAGATCCTCTTTTCTGCTAACTTGTTTTCCTAGTGAAAAAAGAGAAAATAATAGGTGCATTAATTGTTAGTTAAGGTAGCAGGCCATGGTGAACCTCTTAACATTCTCCTATTTTATGAGCATAAAACTTCTATTTTAATAATGCCTTGCAATAAAGGATCTTTTCATGGCAGCTAAATGATGTACAATGGTAATATTTCTACAAGAAAATTAGATTTTGATATTGCCTTGGTTTTCAGTGAAACAAAAGAATTTGTGAAGAACTTGAAAGAGAATACCACTCATCATCATGGACAGCTGATGAAGAAGACGGAACCAGGGAAGAGTGGTTGAGATTCTTTTTTTCTAGTTAAAGGAAGCAGGAGATGTTCTTGCTCTAGCAAACAGCACTGACATGATCAAGAATCTCTGAAAATCCCTGGAGAGATCTCTCCAAGTGAGCATTGAATTAACTTCCTTTCCTACTGTTCCACTCTGTACAAAAGAAGTCCTTCCTTCAAAAGTCCTTGGAATACAATGCTGTGTTTTGTAAGCAGAGTCCAGAAAAGCACAAACACCTCTAACAAAAGAATAGTAAATAATGGCTATTTCTACTCTCATTACCCTGGGCTGCACTTCCTCTGCTATCAGGCACTGTGACAGCAGGGAGGCAGGCATTCTCTTGCTACTTTATGATTCAGTAAGAAAAGGATGAGGTTCCAGAAGTGAAGGATGTAGAAGAGATGACTTCAGTTGGTGCACAAGACATTTATTTCAAGTAGCCGTTTCAGGGCTAAGACTTTGCCCACCATCTTCACCCCCTGCAGTACTCTGGTTTCTGAAACTTCAAGCCTGCTGAGCAAGCCTGTTAGGTTTCACAGAAGGAAAATTCAGATGTGTAGACTCAGGGGAGCTGGGGAGTCCTCTGCAAAGTGGACTTGAAAATACTTCTGCAATTTGCTGAAACAAGTAAACTGAAGTGCAGAAGAGAGGCTGAGACGTGGCAAGGAATCGGTTAATCCTGAAATGTAAAATATGTGAAAAATCTGCACTATTTTGATTTTTAGCATATATGGTATTGCTGGGTTAGGTTTCCTAGGGTTTCATATGTACAAAAAAATCACTCATCACAATACTGTGAAATAAATGCATTTACATGCCATACCAGAATCTGATATTATTTGCCTGTACAGGGTTTCATAAGGTGGACCTCTGTGGAAAATGACTTAAGACTTCCAGCAGTAACTTCTCCTTCTCTCTTGGAAGAGAAAGATATCCTTGTGCTCTTGGTTCTGTGTATTCTGGAGCTTTCCTGTCAGCTTGAGTGGATCAGAACAAGTCTGTCTCCATTGATCAGACTTCTGAAGATTAATGCTCAAACACTGAAACTTTCCCCACGCTGCACTGCTAAATTGATGCAGCAAAACACTTGAACACACACAATCAAACTGAAGTTTAAAACAAGTCACACAGAATTGAGTTTACCTTTGTATTAGTTTAAAATCTGCTTGAAGACCATTATCTTTGTGCATCCTTTCAGGAAAGCTTTATTAGGCACCAGAGGAAATTATTTCTAGACCAGATGTAACCTAAATACACTCCAGGATTGCTGCCCATTAGTTTTTGTTTTTAAAGACTGGAATAGAAAATTAAGTGCAAATGAAATGTTTAGGAAAGTATGACCATAACTACATCAATCTGATTATGCAATTAAATGGCCTTTATAATAATAAAAAAAAGACTGTGCTCTCTAAATGTTAGACATATGCCAGTAAACCAGTTTTACTTTCAGTTGCTGAATAAGAAGCGTGGGAGCGCATTGTTCCATTTCATTTTCTTCTCTGCTGCTTTCTGTTTAAAGTCAGACATAGCGAAAAAAGAGGAGCTCCTCAGTAAGAGCTGTAGTATGGTTTGTCCTTGATTTACACAAAGTCAATGTTGCTGTTTGAAACAGTCCCTCAAGTTGTTACTTTTAAATGTTAGCTTTAGCAACTCTAAAATTAGTTTTAGCTTAGCATGGTAACCAGGGGTTATTATTTTTCCCCTTCAATGAGAGGGAGTCTGAATATCAAATTCATACACTTTGGTCCTTCTTTGATTAATGAACAGGCTCTTTCAGTGTGTGGTTTAAAATGCACTTATAAAAATGAATTTTACAGCATTAATTTAAAAAAGTAATATATGAGTATGGAACTCCTGTTTCATCTTCCC +>URS0001447AD9 rRNA from 1 species +CACGTAGGGTGCGAGCGTTGTCCGGAATTATTGGGGCGTAAAGAGCTCGTAGGCGGTGTGTCGCGTCGGCCGTGAAAACCTGTGGCTTAACCATGTGGTCTGCAGTCGATACGGGCAGGCTAGAATTCGGTAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGATATTGACGCTGGAGGAGCGAAAGCCGTGGGGAGCGAACAGG +>URS00001955B1 rRNA from 1 species +CGGGGTGCAGCAGGCGCGAAAACTTTACAATGCTGGCAACAGCGATAAGGGGACCTCGAGTGCCAGGATACAATCTTGGCTGTCGCGATGCCTAAAAAGCATTGCATAGCAAGGGCCGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCGGCTCGAGTGGTAACCGCTATTATTGGGTCTAAAGGGTCTGTAGCCGGCCGGATAAGTCTTTTGGGAAATCCAGCTGCTCAACAGTTGGGCTTTCAGAAGATACTGTTCGGCTCGAGACCGGGAGAGGTGAGAGGTACTTCAGGGGTAGGGGTGAAATCTTGTAATCCTTGAAGGACCACCAGTGGCGAAGGCGTCTCACCAGAACGGATCTGACGGCAAGGGACGAAAGCTAGGGGCACGAACCGGATTAGATACCCGGGTAGTCCTAGCCGTAAACGATACTCGCTAGGTGTCAGCCACGGTGCGACCGTGGTTGGTGCCGTAGGGAAGCCGTGAAGCGAGCCACCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTG +>URS000146AAE0 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGAGTGGCGGACGGGTGAGTAATGTATGTGAAACTGCCTGGTGGAGGGGGATAACTACTGGACACGGTAGCTAATACCGCATACCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAAAGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTTGTAAAGCACTTTAAGCGGGGAGGCGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCCGCCGCGGTAATAC +>URS0001DA31B7 rRNA from 1 species +AGTGAACGCTGGCGGTAGGCCTAACACATGCAAGTCGAACGGCAGCACAGTAAGAGCTTGCTCTTACGGGTGGCGAGTGGCGGACGGGTGAGGAATACATCGGAATCTACTTTTTCGTGGGGGATAACGTAGGGAAACTTACGCTAATACCGCATACGACCTACGGGTGAAAGCAGGGGATCTTCGGACCTTGCGCGATTGAATGAGCCGATGTCGGATTAGCTAGTTGGCGGGGTAAAGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAGTGGGCGCAAGCCTGACCCAGCCATACCGCGTGGGTGAAGAAGGCCTTCGGGTTGTAAAGCCCTTTTGTTGGGAAAGAAAAGCAGCAGGTTAATACCCCGCTGTTCTGACGGTACCCAAAGAATAAGCACCGGCTAACTTCGTG +>URS00016B5AE1 rRNA from 1 species +TACGAAGGGGGCTAGCGTTGTTCGGATTTACTGGGCGTAAAGCGCACGTAGGCGGACTATTAAGTCAGGGGTGAAATCCCGGGGCTCAACCCCGGAACTGCCTTTGATACTGGTAGTCTTGAGTTCGAGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAACACCAGTGGCGAAGGCGGCTCACTGGACTGGTATTGACGCTGAGGTGCGAAAGCGTGGGGAGCAACAGG +>URS00023938D4 lncRNA from 1 species +TGGTCTATGTTAGTAGCTTGGACAATCTACATAGTACTTTAAAGAAGTTTTTTAAGTGATGGTTTGGACCGTATGTGGTAACAATTACTCATGATAATGTAACTTATTTGTTGCGGGAGTTAGATGGAACAAGGTTAAAAATACCAATTATAAGGAAGCGAGTAAAAATATTTAAATAAAAATATACGGAAATAAATATAGAAGACCTTATTGAGGACATAGATATTCATCAACAGGAAGATGAATTTGACTTGAATAACAAAAGTGATGAAGAGGATTTGAATGGAAACTTGAAGAACATATTATGAATCAAACAACAACTAGGTGATTTGGTGCATACCATTAGATGCACAGGTTCAGAGGGGATGTATGTCGTATTGTAACATGACTATATGATGAAAATATAAATTAAAAAGATTTTATTAATATTTAGTCATCTTGGATGTTAGAAATAGTGGCCAATTCCAGTACCAATATTCAAGGGCCAGTTAATGTCACTCTATTGTAAGTTATACCACCGTATGTGACATCAGCAATATGCTCTACCAACGTCATCAAATTTAGTATCCTCCATATCAACGGGACAACTAGAATTATTTTCTAACCCTATATGGAACAAGCCTAGTAGGTATGTACCGATGGAGACAACCAATATGCTTGATGGGGGTACAAGAAGACTATTTCGTTGTTTCTATTACAAACAGATTGGTCATTATGCTAATGAATGGTCCAATCCCAGACCCAGTGACAATTGTGCACTAGTGTGTGGGAATTGCAAGCAGTCAGAGCATACTTATTAGCAAAATAATGCTCCGTTCAATTTTAATAATCAAGATCCGCAAATCCAAAGTCAAGAAAGAAATTGAAGAGATAAATGGAAGACTCTAAGATTCTCTGATAAATTGAGTGGAATGTGTCTAAGCCGTTCTTACCGAGAGTCCGCAAAAGGAGATAGGACCAATTCAACAATTAG +>URS00018A4A88 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGCCAGGTAGGTCTGCTGTGAAAACTCGAGGCTCAACCTCGAGACGTCGGCGGAAACCATCTGGCTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAGCACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS0000CC585E snRNA from 1 species +TTGCTTTGGCAGCAAATAACTAAAATTGGAATGATACAGAGAAGATCAGCAGGGCCCCTGAGAAAGGATGACATGCAAATTCACACAGCATTCCATCACAGC +>URS0001480F9E rRNA from 1 species +ATTGAACGCTGGCGGCAGGCTTAACACATGCAAGTCGAACGAGTGGCGGACGGGTGAGTAATGCTTGGGAATCTAGCTTATGGAGGGGGATAACTACGGGAAACTGTAGCTAATACCGCGTACCATAGGATGAGCCCAAGTGGGATTAGGTAGTTTGTGAGGTAAAGGCTCACCAAGCCGATGATCTCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGGGAAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGCCTTCGGGTCGTAAAGTACTTTCAGTCGGGAGGCGGTACCGACAGAAGAAGCACCGGCTAACTACGTGCCAGCCGCCGCGGTAATTC +>URS0001FB3C4B rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAGACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGGCCAGACTCCTACGGGAGGCAGCAGTAGGGAATATTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS0000CF422D rRNA from 2 species +ACGGGAGGCAGCAGTGGGGAATATTGCACAATGGAGGAAACTCTGATGCAGCGACGCCGCGTGAGGGAAGAAGGTTTTCGGATTGTAAACCTCTGTCCTTGGTGACGATAATGACGGTAGCCAAGGAGGAAGCTACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTACTGGGTGTAAAGGGAGCGTAGGCGGGAAGGTAAGTTGACTGTTTAAACTATCGGCTCAACCGATAGTCGCGATCAAAACTGCCATTCTTGAGTGAAGTAGAGGCAAGCGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGGCTTGCTGGGCTTTAACTGACGCTGAGGCTCGAAAGCGTGGGTAGCAAACAGGATTAGATACCCTGGTA +>URS0000E65B77 lncRNA from 1 species +CTGATCTCTATTCCCGGATCTGCCTCTGGCTTCCTGCGTGACCTTGGGCTGGTCACCTACCTTTTCTTTTCTTTGGTTCCCAAATTGTAACATGGAAATAATTCTCTTCCTGCGGTGCCTCAGCCCCTGCTGCCTTTAGGGTGGTCGAGATCCTCTGACGGGAGGAAGGTAGCACGTTTCCACTGGAGAAATACTTACCCAGAGCACGGTAATTTGGGGGCGTGTTGGTGTTCACTCGGGTACAGCAGGGTGCGTGCTGCTGCTTGTGCTTTTTTTTTTTTTTAGTAGGCAAACCTGTGGTGGAAGTCAAATTCCGTTTGTGGTGGATGCAGAGCAACGTCAGCTGCAGCGTGCCCTTTCCTCACTAGGAGATGGTTACCTAGCCAAGGTCACTGCTGCTGCATGCCTGTATCACGCAGCGAGCCAGCCTCCTCTTCCTTCCACGGGCGCTGATCTCAGCGAGGCTTCCCCAGAGCCAGCTGCTCCCGGAATAGTTTGGGAATGAAATGTCACCGTTTGAAACTGCTGGATCCTAGCGCCTTCTCCGACAGGACTAGGTCGTATCTGTCTGACAACGCACCTACAGTGACTCTCTTAATTAAGTCTCCCTGCACTGCTGTGAGGGCAGCATTCTGTGTTCCTGCTCCAGCCTACGAGAGCCAGCCATTTCCACGCGGCAGCTCTGCCTCGTAGGCACTAAGAAATGGGCACCTTGAGCTGAAGTGCCATGGTTGTTGTAGTACTACTGGTGTACTACCGAGCGGTCCCGGGCGTGCTGACTGTAGCTGTCGCTGCCCCAGCCTGCTGCCAGAGGTTTGTG +>URS000031FA0E piRNA from 5 species +TGTAAACATCGTACACTCTCAGCT +>URS0001CC563E rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATGAGCAGAAATGGAAAGGAGAAAGCGGAAAGCACAGTCAGGGAGGAACAAGTGGGGAAAATGGGCGAAGGGGGGCAAGACTGAGACAGAAATAAAGAGGGGGTGAAGAAGGTGTTAGGGTCGTAAAACCTGTTTGTTGGGAAAGAAAAGAAGCCGGCGAATACACAGGTGCCGTGAAGGTACCTAAAGAATAAGAAAAGGATAACTTCGTG +>URS0002428F28 lncRNA from 1 species +GTGAATAGTGGCCTCCTGGGTAAATGAAGGTGGTGGCGAAATGCGGTCACCTCGCTGCTCCCAAATATGGACCTGCTGCTGGAGCCATCCATAAATATATTGTCCACCCTGATACGGTCATCCCGCTGATAGTGTGTAAGGGACCTATGAAGGCTCCCCTGGTATAGGATGGGGACAGTGAAACTAGCGAAGCACACGCTCTGTGGCATGATACTCAACCATATCAAAGAAGATCATCGGGACCGAGGTGGCCAAAGCAGTCGGTCGACTGAGCAATAATAGGGCAACTGAGCTAGCAACTCGTCGCTGTATGGCGTCCAGATGAA +>URS000018DC94 rRNA from 1 species +AACGAACGCTGGCGGCGCGCCTAACACATGCAAGTCGAACGAGAATCCGGGGCAACCCGGTAGTAAAGTGGCAAACGGGTGAGGAATACATGGGTAACCTACCCTTGAGAAGGGAATAACCCGCCGAAAGGTGAGCTAATACCCTATACGCTATCTTTTTTTCGAAAAGGATAGGAAAGCCGGGTCGAGGACCTGGTACTCAAGGAGGGGCTCATGTCCTATCAGCTTGTTGGTGGGGCAACGGCCTACCAAGGCTACGACGGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGCACTGAGATACGGGCCAGACTCCTACGGGGAGCA +>URS000019B6AB rRNA from 1 species +CCGTTGCCGGCGACCGGCGCACGGGTGAGTAACACGTATGCAACCTGCCCGTGGCAGGGGGATAAGCCGGGGGAAACCCGTCTAATACCGCGTAACGCGGCCTTGGGGCATCCCAAGGCCGCCAAAGGGAGCAATCCCGGCCACGGATGGGCATGCGGCGCATTAGCTAGTCGGCGGGGTAACGGCCCACCGAGGCGACGATGCGTAGGGGTTCTGAGAGGAAGGACCCCCCACACTGGTACTGAGACACGGACCAGACTCCTACGGGAGGCAGCAG +>URS000060EFE9 rRNA from 1 species +AGTGATTTTAAGTCATGCAAGTCGAACGAACCTTGTGTTCGTGGCGAACGGCTCAGTAACACGTGGATAACCTGCCCTTGGGACCGGGATAACCCCGGGAAACTGGGGATAAACCTGGATAGGTGATGCGGCCTGGAATGGTGCTTCACCGAAACACCCCTCGGGGTGCCCAAGGATGGGTCTGCGGCCGATTAGGTAGTTGGTAGGGTAACGGCCTACCAAGCCCATCATCGGTACGGGTTGTGAGAGCAAGAGCCCGGAGATGGAACCTGAGACAAGGTTCCAGGCCCTACGGGGCGCAGCAGGCGCGAAACCTCCGCAATGCACGCAAGTGCGACGGGGGAACCCCAAGTGCCACTCTTAACGGGGTGGCTTTTCAGAAGTGTAAAAAGCTTCTGGAATAAGGGCTGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCAGCTCAAGTGGTAGCCGCTTTTATTGGGCCTAAAGCGTCCGTAGCCGGTCTGATAAGTCTCTGGTGAAATCCCGCAGCTTAACTGTGGGAATTGCTGGAGATACTATCATGACTCGAGGTCGGGAGAGGCTGGAGGTACTCCCAGGGTAGGGGTGAAATCCTGTAATCCTGGGAGGACCACCTGTGGCGAAGGCGTCCAGCTGGAACGAACCTGACGGTGAGGGACGAAAGCCAGGGGCGCGAACCGGATTAGATACCCGGGTAGTCCTGGCCGTAAACGATGTGGACTTGGTGTTGGGATGGCTTCGAGCTGCCCCAGTGCCGAAGGGAAGCTGTTAAGTCCACCGCCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCACCACAACGCGTGGAGCCTGCGGTTTAATTGGATTCAACGCCGGACATCTCACCAGGGGCGACAGCAGTATGACGGCCA +>URS000043FDF3 rRNA from 1 species +AGCAGCCGCAGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCAGGCCTGGCTGGACGGTCCGCCCTTCGGGTGAGTACTGTCTGTGGTCGGGTCCTACCTTCTGGCGAAGCGTCATGGCCTTAACCGGCCGTGGCGGGGAACCAGGACTTTTACTGTGAAAAAATTAGAGTGTTCAAAGCAGGCAAATCGCTTGGATACATTAGCATGGAATAATGGAATAGGACAATGGTTCTATTTGTTGGTTTCTAGGACCGTTGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGAATCGGGCGATGTTGAAAAAATGACGC +>URS000076D469 rRNA from 1 species +ACGGAGGATGCAAGCGTTATCCGGATTCATTGGGTTTAAAGGGTGCGCAGGCGGAATGATAAGTCAGTGGTGAAATCCTACGGCTCAACTGTAGAACTGCCATTGATACTGTTATTCTTGAGTACACTTGAAGTGGGCGGAATGTGTCATGTAGCGGTGAAAAGATTAGAGATGACACAGAACACCGGTGGCGAAGGCATCACACTAAATTGTAACTGACGCTGGTGCGCTAAAGTGTGGGGATCAAATAG +>URS00025935AF lncRNA from 1 species +TTAAAATTAGCTAAAATTTGGTATGGAGCAGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGCTTAGGCCGGTATGGAGCAGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTATGGTTGGTATGGAGCGGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTCAGGTTGTGTGATGCTTTTGTGTAATACCTCTTTAATTGGAACTCAACTGCAGAATTTTCTGAGGGCAGGAACAGTAAGTTTCACCTCCTATTATATTGGAGTGAAATCAGTGGACTGTATCTTTAAATAATAATCAGGAAAATGCCAAGTTAGTTCCAACTTGAATTTTAATAATGAAGTTTTAGCCTTAGCAGCAATCCTTATTTGTCAACAGAGAGTTTAAAGAAATTAAATACTATAATTAATTGATATGACTTGCTTTCCTTGACAAAAGATTTACTTAACTTAGAAGCACTCTGGCACTGGAAGGGTTAATTCACCCAATGGAGGAAGAGGAAGGAGTCTCTTTTAACAAACTGCAGTTTAGTAGTGAGAGAAAGGAAGTCCGTTTGTCCAAGCCGAGGTCTGAGAGAGGAGAAGGTAGAAATCCGTTTACAAGCCGAGGTCTGGGAGAGGAGAAGGTAGAATTCCGTTTATAAGCCGAGGTCTGAGAGATGAGAAGGTAGAATTCCGTTTACAAGCCAAGGTCTGAGAGAGGAGAAGGTAGAAATCCGTTTACAAGCCGAGGTCTGAGAGATGAGAAGGTAGAATTCCGTTTATAAGCCGAGGTCTGAGAGATGATAAGGTAGAAATCCGTTTACAAGCCGTGGTCTGAGAAGTGGAGCCGGTAGCATCGAGTAGAGCAGCTGATCTCACTGCCGCACCTGAGTGAATAATCCAGCACTTTGAATCTGGCGCGGTCTTCCTAAGTATCGTGGAAAGACCGCGTCAGAAAAAAGGGGCGGAGCTAAGTGCCGTGAACCCGGAAGTGGGTTCCGGCGGCAGCATGATTGTTAGGTATACCTGACAGTACCCCCTTCTCATGGGGCATCCTCTGGGTGCACTTATTTCGGTTTAAAGGGGTAGCGTTTGTGAAAAGCATCAACTAATCTCTTAGCATGAACATTAGATGAATCTTCCCAGGTATCTTCATCTGATAAGGTATTGTAAAGAGCCACGGTGGATACAAGAATCCAAAATCTTATGAATTTCATATTCTTCTTCACCTTGGACGATGATAGGTTCAGGAGTTGTTACTATTTCTCTATGGAAAGGATCAGGGATGTGTGGTTTAAGCAAAGAGACATGGAATACTGGATGAAGTTTAAAACTTGGAGGAAGTTTTAATTTAACAACGTTATCATTGATGATTGTAGTTATTTGAAAAGGACCAAGAAAAAGAGAGCTCAATTTCTTTGAAGGACGGTTTGTGGTAATATTTTTTGAAGAGAGCCAGACAAGATCCCCCACTTTATAAGGAGGGGGAATTCTTCTATTATGGTCAAAAAACTTTTTCTGGTAGTTTTGGGCGAGTTGAAGATTCTCCCGTAATTTAAGGAATAGAGAAGACATAAATTCATTTTTTGAAGTAACCGTGGGATTGGATGAAGAATTAGATGGGATGGGAAATGAGGACGGATGAAAACCATAGTTGGAGAAAAAAGGAGTCATTTTCGTACTAGAATGAATGGTATTATTGTAAGAAAATTCAGCCATAGGTAACAAAGTGGTCCAGTCATCTTGCAGGTATGAACAATAACATCGGAGATATTGTTCCAAACATTGATTAACTCTCTCTGTTTGCCCATTAGTTTGGGGATGATAGGCAGAAGAGAGTTTGCGTTGAATTTGAAGAGAGAGACACATCTCTTTCCAGAATTTGGAGGTAAATTGTGTCCCCCTATCAGAAATAATTTCTTCTGGAAGACCATGAAGCTTTACAATATTATCAATAAAGACTTTGGACAATTCTACGGAGGAGGGTAATTTTTTTTTAAAGAGATGAAATGGGACATTTTAGTGAAGCGGTCCACAACAACAAGAATAGTGGTGAACTGTCGGGATGGAGGAAGGTCAACAAGAAAATCCATAGAAATGGATTGCCAAGGTTTTTCTGGAATAGGTAAGTTAAGTAGTAATCCAAAAGGTTGGTTATGTTCAGATTTGGACCTTTGACAGATAGGACAAGTTTTGACATATAATTCAATTGTTCTATCTTGGCGAGGCCACCAATAATATCGTGAAGTTAGTTCAAGAGTTTTCTTTATTCCAGGATGTCCAGCTAGGGGTGAATCATGAACCATTTTGAGTAATTTGTTCCTAAGAATGGGAGGAATATAAATTCAATTTTTAAAGTAAAATATACCATCCTTTTTTGTTAAATTAGGTGTTTTGGGAAGTTCAAAATCCTTTTGATTCAAGTTCCTTAAGTCATCCTGAAGAGAAGAGAGGATCCCTATTATTTTGTTAGGAGGATAAACATCAATAGAAGTTTTAGAAGGAATTCGAGAAAGAGCGTCAGCCTTTTTATTTCTAGTTCCAGGTCTGTATATTAATTGGAAGTTAAACCGGTTAAAAAATAGGTTCCATCTAACTTGTCTAGCCGTAAGGGTTTTATTAGTATAGAGATATTCAAGATTTTTATGGTCTGTATAGACTATGATAGGTTGATTTGTATCTTCTAATAGATGGCGCCAATTTTCAAAGGCAGCTTTAACACTTAATAATTCCTTTTCACCAATAGGATAATTTTTTTCAGCAGAGCTCAAGGATCTTGAAAAGAATGCGACTGGATGAAGTGGATCTTGAGGAGTCTTTTGCTGAGAAAGAACTGCTCCGATAGCTGAATCTGATGCATCGACTTCTAGGACATACAAGAATGTTGGATTAGGTAGCTGTAGAATAGGTGCAGTTGTAAATCATTTTTTTAAACTGTCGAAGGCAGCTTGTGCATCTTTATTCCATTTGAAAGGACGTTTAGTACTGTTAAGGAGGTTAAGTGGATGTGATACCTCTGAATAGTTTCTAATGAATTTTCTATAGAAGTTTGCAAATCCAAGAAATCGTTGCAATTCTTTTGTAGTAGTAGGAACGGGCCAGTTAATAATACATTCGATTTTAGAGTTATCCATTTTCAGAGAATGAGGTGAAATAATGTATCCAAGAAAGGAGAGTTCAGTAACTTCAAAAAGACATTTCTCTGGTTTAGCGTATAATTTGTGAGTTCTCAATCTAGATAGAACACATCTTACATGCTTCCTATGTTCATCCAAATTGTTAGAATATATTAGAATATCATCTAAGTAGATAATAACACAAACATCTAAAAGATCTCTAAAGATATCATTTATAAAATGTTGGAATGTTGCAGGGGCATTACAAAGCCCAAAAGGCATCACTAGATATTCGTAGAGACCATATCTAGTCCGGAAGGCGGTCTTCTATTCATCATCCTGTTTTATTCTAATGAGGTTATATGCGCCTCGGAGGTCGAGTTTAGTGAATATAGTTGCAGTTCTTAACCTTTCAATTAATTCATTTATTAGTGGAAGAGGATAACGATTTTTTATGGTTATTTTATTTAAGGCTCTGTAATCTATAATGGGTCGGATGGTTTGGTCCTTATTCCTCACAAAAAATATACTAGAGGCAGCCGGTGAAGTCGAGGGTCTGATGAATCCTTTACGTAAATTTTCATTAAGATATTCTTTTAAGGTCTGTAATTCCTTTTCAGAAAGTGGATAAATGTGTCCATAAGGAATGGGAGCACCAGGTATTAGATCTATTGGGCAATCATATGCTCGATGAGGTGGAAGTGTTTCCGCTTCTTTTTTACAAAAGACATCTGAAAAGTCAGAGTAGAATGGAGGTATAATTGATTCCTGAGTAGTTTGGAGAATAGGAATATGTTGGTTCCATTGAAATTGGCTGGATTATTCTGTGATGCTTTTGTGTAATACCTCTTTAATTGGAACTCAACTGCAGAATTTTCTGAGGGCAGGAACAGTAAGTTTCACCTCCTATTATATTGGAGTGAATTCAGTGGACTGTATCTTTAAATAATAATCAGGAAAATGCCAAGTTATTTCCAACTTGAATTTTAATAATGAAGTTTTAGCCTTAGCAGCAATCCTTATTTGTCAACAGAGAGTTTAAAGAAATTAAATACTATAATTAATTGATATGACTTGCTTTCCTTGGCAAAAGATTTACTTAACTTAGAAGCACTCTGGCACTGGAAGGGTTAATTCACCCAATGGAGGAAGAGGAAGGAGTCTCTTTTAACAAACTGCAGATTTAGTAGTGAGAGAAAGGAAGTCCGTTTGTCCAAGCCGAGGTCTGAGAGAGGAGAAGGTAGAAATCCATTTACAAGCCGAGGTCTGGGAGAGGAGAAGGTAGAATTCCGTTTATAAGCCGAGGTCTGAGAGATGATAAGGTAGAAATCCGTTTACAAGCCGAGGTCTGGGAGAGGAGAAGGTAGAATTCCGTTTATAAGCCGAGGTCTGAGAGATGATAAGGTAGAAATCCGTTTATAAGCCGAGGTCTGAGAGATGATAAGGTAGAAATCCGTTTACAAGCCGTGGTCTGAGAAGTGGAGCCGGTAGCATCGAGTAGAGCAGCTGATCTCACTGCCGCACCTGAGTGAATAATCCAGCACTTTGAATCTGGCGCGGTCTTCCTAAGTATCGTGGAAAGACCGCGTCAGAAAAAAGGGGCGTAGCTAAGCGCCGTGAACCCGGAAGTGGGTTCCGGCGGCAGCATGAATGTTAGGTATACCTGACAGGTTGGTATGGAGCGGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTCAGGCCGGTATGGAGCAGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTATGGTTGGTATGGAGCAGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTCAGGCTGGTATGGAGCAGGTTAGTAAGTAAAGCAGGAATGCAGAGTTGTTATGGTCGGTATGGAGCGGGTTAGTAAGTAAAGCAGGAATGCAGAG +>URS0001BC7D2F tmRNA from 13 species +GACGGGAUUUGCGAAGCCCUAGGAGCAUGCCGAGGGGCGGUUGGCCUCGUAAAAAGCCGCAAAAAAAUAGUCGCAAACGACGAAAACUACGCUUUAGCAGCUUAAUACCCUGCUUAGAGCCCUCUCUCCCUAGCCUCCGCUCUUAGGACGGGGAUCAAGAGAGGUCAAACCCAAAAGAGAUCGCGUGGAUGUCCUGCCUGGGGCUGAAGCGUUAAACUCAAUCAGGCUAGUCUGUCAGUAGCGUGUCCAUCCGCAGCUGGCCGGCGAAUGUAAAGAUUGACUAAGCAUGUAGUGCCGACGGUGUAGUAAUUUCGGACGGGG +>URS00004B6BEF rRNA from 1 species +CACGTAGTTAGCCGGTGCTTTTTCTGCAGGTACCGTCACTTTCGCTTCTTCCCTACTAAAAGAGGTTTACAACCCGAAGGCCGTCGTCCCTCACGCGGCGTTGCTGCATCAGGCTTTCGCCCATTGTGCAATATTCCCCACTGCTGCCTCCCGTAGGAGTCTGGGCCGTGTCCCAGTCCCAGTGTGGCCGGTCACCCTCTCAGGCCGGCTACCCGTCGTAGGCTTGGTGAGCCATTACCTCACCAACTACCTGATAGGCCGCGAGTCCATCCTTGACCAAAATTCTTTCCACAACCAGACCATGCGGCCAGCTGAAATATCCGGTATTAGACACCGTTTCCAGTGCTTATCCCAGAGTCAAGGGCAGGTTACTCACGTGTTACTCACCCGTTCGCCACTAATCCACCCAGCAAGCTGGGCTTCATCGTTCGACTTGCATGTGTTAACGCACGCCGCCAGCGTGTCCTGTAGCCAGGACGTCAAACGTCT +>URS00023C0FDA lncRNA from 1 species +GGAAATTAGAAATTAAAACTGTCACTAAAGGGCCCTATAGCGACAGAACCGTCGCTACAGGTGTTCTTGGTGTTCTTGATGCCTGCCCAGATCTTCAAGTCAGTGAACAAGGTAGGTGGTTTGACCGGATATAGATCTTTGGTCCTTACGTTTTCTGGGCTGCTAAAGTGTTAAGATTGTAGTACTTATGTAGTACTACAACTACAAACGACTGTCATGGCCATCATGCATCTAAACAGAAAGTTATAGGCCATCAAAATCCTTGTCAGACATGTTCTTCATTTTCTGGGTTACCCAGAAAATGAAGAACAGTCAAGGTACCTACTTTGGATCCTTATAGTTTGCAGTATAGGTCTTGTTTGTATAATATAGTGGTTCCATCATGTAGAAATAATGTCAGAGTACAACTACATACCCTCATATAAGTCTAATCAACATTACAGATGAGAGATTAAGGCCGGTCAAAGT +>URS000109A09B rRNA from 1 species +TACGTAGGCAGCGAGCGTTGTTCGGAGTTACTGGGCGTAAAGAGTGCGTAGGCGGTTTTCTAAGTTTGGTGTGAAATCTCCCGGCTTAACTGGGAGGGTGCGCCGGAAACTGCGAGGCTAGAGTGTGGGATGGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAGGAACACCTGCGGTGTAGACGGCTCTCTGGACCACTACTGACGCTGAAACACGAAAGCGTGGGTAGCAAACAGG +>URS0000E5769B tRNA from 1 species +AGCTCCGTGGTGAATAGATCATGTTGAATTGCAAATTCAAAGAAGCAGCTTTAACGCTGCCGGGGCTTC +>URS00026126AE lncRNA from 1 species +CCACAATGATGTTTTAGGGGCTCTGTTTTTTGTTGAGGCTTAAAATACTGTACTATTTGTTGATATATTTCAGACCACTGCGCCCCCAACCCGTGCCAGAACGGCGGTACGTGCCAACCATCAATCTGGCCCCACGAGCCCCACCTGATCACCTGCCAGTGTCCACCTGGGTTCGAAGGTCCTCTGTGTCAGTACACAGCTCTAGATCCTTGTAGTCTGCCTCTCAGCACAGGTTCTTGCTCAAGCAGAGAGTCGAGATGGTACTTTAACCAGCTCAGCGGACGATGTCAGAAGTTCACATATCTTGGTTGCCATGGCAATGCAAATAACTTTGCCTCCATTTTTGAGTGCCAAGAGAGATGCATCAAAGGATCATGCTGTACCCGCACCCCAAAAATTCGTAGTCAGAACATTGGATTTGACAGTCAAGGATATGATAAGTATGTCTGACTTTTTTTATGAGTTCTTCTGTGTCATTTTGTTGTTGGCTTATCATTGTGTTCACCTGTTTCAGTTGAAATATCTGCTGCATGAAAAAATAGAGGATGCAAAACAATTTTTGTGGTCTGTAATTTTTCAAAGTCCTCTGGGTTTTAAAAAAATAATAATTTAGGCGCAGTTTTCTTTGCTGTTTCTTCTTGAACACGTACAGTTTATTATAGTAGAACAGCCAAACCTGCCGTGATGGTCACCTGTTCTTGTTAAAAATAGATGGGTATTTTTTCACTAATCAACACGCTGTATGATGATACCAATAGCTCTAGCTATATGTCCAAATATTGATGAACGCCTGATTTCACCGCATCGTGACACATATTAAAATGATTCTGTCATAGAGGATGGCCTGTCTGAGATGACCACTTTTCTTCTGAGCATTGGGTGGTTATCTTGTAGGCCTACATTTGATAATACTTATATTTAAGAACTTGGTACCAGTATGCTGAAGTATGAATAAAGTAGTTCAATGTAATATACTGGTATACTACAGTACGAAAGTAGTCCAATATAATATTTTGGTAAGCTAAAATACGGAAATAGTCCTACATGATATTTTGGTAATCAAAAGAAATGGAAGTTGTGCTACACAATATTTTGGTAATCAAAAGTATCTCAAAATTCATCATTACTTTCCATTAGCTTTGAGTTTGTCTCATTCTGACTTGTTTGCTTGTCCCTTCTCAGTTGTGTTCAATTGTCTCGTGATACAGGTATGGATTCAATCAAGAGGGACTGAACAGATTTGGGGACAGGAGAAATGTTGACAACAGCTTCCCACTCAGTACCCGTCGCTTTGACGAGTCCGGTCTGGACTGGCAAGGTTATAACAGAGAGGGCTATGGTGAAGATGGCTTGAGCAGAGCTGGCTTTGACAAGTACGGCTTTGATGTGGACGGCTTCAACATCAGTGGGTACAGCCGTAGTGGAGAGTTTGACGGGATCATTGACTATGATGAAGAAGGATATGATCCTGAGGGATTTAACAGGTAATTCTTCCTTCTTTGTATT +>URS0001321690 rRNA from 1 species +CCCTTAGATGTTCTGGGCTGCACGCGTGCTACACTGATATTGCCAATATGTCATTCTTATCCGAAATGGATTGGGTAATCAAGTAATGAAATTTCATGCTTGGAATCGGTAATTGCAATTTTATCGTGAACGAGGAATTCCTAGTAAGCACTAGTCATCAGCTAATGTTGATTATGTCCCTGCCCCTTGTACACACCGCCCGTCGCTACTACTGATTGGGTGTTCAAGTGAGATGCTTAGACCCTTGTTGCATGGTTCATTATTGTGCTCCGAAAGGAAAAAGTTTCAAGCTTGAGTGTCTAGAGGAAGTAAAAGTCGTAACA +>URS00004F4253 rRNA from 1 species +GATGAACGCTGACAGAATGCTTAACACATGCAAGTCGATTCGATTTACCTTCGGGTATTGAGGATGGCGGACGGGTGAGTAACGCGTAAGGAACTTGCCTCTTGGTCTGGGACAACTGTTGGAAACGACAGCTAATACCGGATATTATGAGATTCTCGCATGGGAAACTTATGAAAGCTATATGCGCCAAGAGAGAGCCTTGCGTTCCATTAGCTAGTTGGTGGGGTAACGGCCCACCAAGGCGACGATGGATAGCCGGCCTGAGAGGGTGAACGGCCACAAGGGGACTGAGACACGGCCCTTACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGACCAAAAGTCTGATCCAGCAATTCTGTGTGCACGATGAAGGTCTTCGGATTGTAAAGTGCTTTCAGTTGGGAAGAAGAAAGTGACGGTACCAACAGAAGAAGCGACGGCTAAATACGTGCCAGCAGCCGCGGTAATACGTATGTCGCAAGCGTTATCCGGATTTATTGGGCGTAAAGCGCGTCTAGGCGGAAAAATAAGTCTGATGTTAAAATGCGGGGCTCAACTCCGTATTGCGTTGGAAACTGTTTTTCTAGAGTACTGGAGAGGTGGGCGGAACTACAAGTGTAGAGGTGAAATTCGTAGATATTTGTAGGAATGCCGATGGAGAAGTCAGCTCACTGGACAGANACTGACGCTAAAGCGCGAAAGCGTGGGGAGCAAACAGGANTAGATACCCTGGTAGTCCACGCC +>URS00003E0BF5 rRNA from 1 species +GCTCAGAAACTTAAATGACTTGAGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCTGGGCTCAAATGTATGTTGACGTATTCTGAAAGGGATACTTCTTCGGACAATATACAAGGTGCTGCATGGTTGTCGTCAGCTCGTGCCGTGAGGTGTCGGGTTAAGTCCCATAACGAGCGCAACCCCTATCATTAGTTGCCATCAGGTCAAGCTGGGGACTCTAATGAAACTGCCTACGCAAGTAGTGAGGAAGGTGGGGATGACGTCAAATCAGCACGGCCCTTACGTCCAGGGCTACACACGTGCTACAATGGCCGGTACAAAGGGCAGCTACCTGGTGACAGGATGCTAATCTCAAAAGCCGGTCTCAGTTCGGATCGGAGTCTGCAACCCGACTCCGTGAAGCTGGAATCGCTAGTAATCGCGCATCAGCCATGGCGCGGTGAATACGTTCCCGGGCCTT +>URS0001224666 rRNA from 1 species +TACGGGGGGGGGCAAGCGTTGTTCGGAATTACTGGGCGTAAAGGGCTCGTAGGCGGCCAACTAAGTCAGACGTGAAATCCCTAGGCTCAACCTAGGAACTGCGTCTGATACTGGATGGCTTGAATCCGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAATACCGGTGGCGAAGGCGGCATCCTGGACCGGCATTGACGCTGATGAGCGAAAGCTAGGGGAGCAAACGGG +>URS000137232C rRNA from 1 species +TACGAGGGGGGCAAATGTTGTTCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTCGGAGCTTAACTCCGAAACTGCATTCGATACTGCCGTGCTTGAGGACTGGAGAGGAGACTGGAATTTACGGTGTAGCGGTGAAATGCGTAGATATCGTAAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTCCTGACGCTGAGGCACGAAGGTCAGGGGAGCAAACGGG +>URS00009BFC8A lncRNA from 7 species +CACAAAGAGAAGCTTTAAAAATCTTGCCTTCTGCCCCCTCAATTTCTTCTCCCTTCCTTCTCTATTTCCCACTGGTTTAGCGTGCCTGTCTCTCCCATTTTACCCTGCTTCAATCTCCTCCCAGTTGCTTCTGCTAGAGTTGCCTTTTGTCCTCTCACATCCCTAGGTCATCCTTGTTAGGGCTCTCCTGGCCTGGTTCCTTGTCCGCTTGAATTCCAGGGAGTGTTACAAGGTTTGGAGGTTTTTGCTTTACACATGGACCCAGAAGGAGCTGCAGCCTACAGGCCTCTCCCAAGAAGGCCTTTTCTCTGCCTGACTTTGGACTTCTCCCCAAGGTCAGGACAGTGTCCAGATGGCCCTGCTGCAGAATCTTTGCCTCCACTTCCTTCATCAAGAGGCTGTAGGTACATCTTGAGTTCATCTTGTGTCCTTCTGAAGCATTGCAGAGGGCAGCGGCTGCCTGGCATGGCACCGGTCCTGGGCATCACCCATGGGCCACCAGTGTTTTAGGGAGTGGAGAGCCTGGCTTGGGCAAGGACCTCAG +>URS000260A6B2 lncRNA from 1 species +TAAGATCTGGTGTACCAGCCATTACCCAAGTGTTAAGGTCTGGTATATCAACTATTCCCCAAGTGTTAAGGTCTGGTGTACCAGCTACTACCTATTGTTAAGGTCAGGTATATCAACTATTACCCAAGTGTTAAGGTCTGGTATATCAAGTATTACCCAAGTGTTAAGGTCTGGTATATCAACTATTACCCAAGTGTTAAGGTCTGGTGTACCAGCTACTACCTATTGTTAAGGTCAGGTATATCAACTATTACCCAAGTGTTAAGGTCTGGTATATCAACTATTACCCAAGTGTTAAGGTCTGGTATA +>URS00002A34A8 rRNA from 1 species +GATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGACCTATGTTGAAACCTAGTGATATATAAGTTAGTGGCGGACGGGTGAGTAACGCGTGGATAACCTGCCATATACAGGGGGATAACACTTAGAAATAGGTGCTAATACCGCATAAGCGCACAGTTTCGCATGAAGCAGTGTGAAAAACTCCGGTGGTATATGATGGATCCGCGTCTGATTAGCTTGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCAGTAGCCGGCCTGAGAGGGTGAACGGCCACATTGGGACTGAGACACGGCCCAA +>URS0000F20FBF rRNA from 1 species +CACGTAGGGCGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTCTGTTGCGTCCGCTGTGAAAACTCGGGGCTTAACCCCGAGCCTGCAGTGGATACGGGCAGACTAGAGGTAGGTAGGGGAGAATGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCGGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACGGG +>URS000118C396 rRNA from 1 species +TACGTAGGAGGCGAGCGTTGTCCGGAGTTACTGGGCGTAAAGGGTGCGCAGGCGGTGGCCCGCGTGGGCGGTGAAAGCTCCTGGCTCAACTGGGAGAGGGCCGTCCAGACGGGGTCACTTGAGGGGCGGAGAGGGGCGTGGAATTCCGGGTGGAGCGGTGAAATGCGTAGAGATCCGGAGGAACACCAACGGCGAAGGCAGCGCCCTGGACGAGACCTGACGCTCAGGCACGAAAGCTGGGGGAGCAAACAGG +>URS00013DEF05 rRNA from 1 species +TACGTAGGGTGCGAGCGTTGTCCGGAATTACTGGGCGTAAAGAGCTCGTAGGTGGTTTGTCGCGTTGTCCGTGAAAACTCACAGCTTAACTGTGGGCGTGCGGGCGATACGGGCAGACTGGAGTACTGCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCTGGAGGAATACCGGTGGCGAAGGCGGCATCCTGGACCGACATTGACGCTGAACGGCGAAAGCTAGGGGAGCAAACGGG +>URS000057D191 piRNA from 1 species +TCTATTAGGAGCTGTCAGGTGTGTT +>URS0002185586 lncRNA from 1 species +TAACATGGTAGGAGCACAGGTTTTTGGGAATATGTGGAAACAGACTCTGTTTAGCAACCATAACCATTTTGACTTCAACTGTGAAGATAATGACAGACCGTAAAGGCCACACATTACCCATGTGAACTATCGTATGCTGCGTGTCATAAGTATGACGTTGACCTCCTGAACTCTCGGTTCTGTGTTGTTTGCGTTGCAGAGAATAAGGCAGTTGGAAGACATGATTGAGATGCAAAAGAGACAAGTAAAGGAAATAGAAGAAAAGTTTTTGTTCCTCTTCTTGTTTTTCTCTCTAGCTTTTATTCTTTGGCCTTAATGACACTGACATGGACCGACAACAGGTGCTAAGGTGCTCAGGTGGAGAGTGAGGAAGAGAAACACAACATTTTTTTTTTTTTTTTCATGCATTTATAGATGGTTCACAAACCTTATATGGCCTTTTTGATACACGTGCACTTTTGTGGAAAACATTTACCTGGAATGCAAAACAAAACCAGGACTTTGAAAAGTGAACAAATATCAGAGACATGTAAAAGAGGTATATCAGAGATTTTTTTTATTTTTTATAACGGAAATGTCCCCTACCATTTTTGGAAGTGGAACATTTAGCCAAACTCTAATGTGAGTTCTAAAAAGCAAGAACATTGTAACTGGAACTCTGAAGCAGGTCAATAAAGGAACAGAGCAACTGAGATGGAGACAGTGCCTCAGATGGATTTAGAGCCAGACAACGAAAGAGTGCAATCGTAGAGGAGGAGGAAGGAGGAGGAAGGAGAAAGAGTTGATTCAAAAAAGCAGGACGATTTCCAAACAGACGAGCCAAGTCCTGGGCATTCCCAGAAAGCTCAGTGCAGGAGGGTCTCCATGGAAACAGCTGGCGAAACGGCTGTCATGGCCAAAGTTCAATGAGCAAGAAGTGAAAGCTTTGTACTCCGGAGTAGAGCGACACCAGAGGACTACGGGGACAGAATGTGTCACCGGTCTGTGAAACACAAAGAATCCTCAATAGCTGTGACCTCCAGGTTTTGACCCATAGAGTGAACCGTCTAGAGCACAGCCTGAGAGACAACGTCAGCTCCTTTACTGAGTCTGAGAGCTTGCTGCACAACAGAGAGTTGGAGGTGCCAGAGCAGAGCCTGCTACAGAAGGTGGAGGACCTCACAGCACACTCAGTCCTCCACTGTCCCAGCATGCAGCGACGCCAGAGGCTGGACGAGCGGCTCCACGCGCTCAGGGAGGAGGTGCGCTTCATGGTGAGTAGAGACTGTACTGAGCTTTACATTAGCTTCAATGAGGCTTATAGAGTGAGAAGTACTCAAATGTACATGTCATGTAAGCTGTACTGTAAATTGTAGTATAAGCCTGTAATTATTGTGTAAGTGTAATTATTGTGTAAGTGTATTGTGAGTGTGGTTTAAATCTATCGTTTCTCAGGTGTAGTGCTATTGTGACTGTAGTCTCCCTCTCTGTTGCATTATATGAGATGTGTATGACATTACTCAGATGTGAGGAGTAACTGTGTCATAGTTCTATCATGACCGGTCCTTCCCAGTACCAGGAGAAGGAGCATAGGAATCGTGTGTGTGGAGGGAGAGGCTACAGTGCTGCCAGGCCCAGC +>URS0000A07E96 rRNA from 1 species +CACGCAGTAAACGATGATTACTAGTTGTTTGCGATACACAGTAAGCGACCGAGCGAAAGCATTAAGTAATCCACCTGGGGAGTACGTTCGCAAGAATGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGAGGAACATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCCGGGCTTGAAATGCAGATGACAGGGGCAGAGACGCCCCCTCCCCTCGGGGCATCTGTGTAGGTGC +>URS000257F2CE snoRNA from 1 species +GTTGCTTCATAATGGTGAAATCTCTCAAAATCGAATGAGAGAATCTCAAGTTTCCGGAGCATAGATTAAGCATTCTATCACCAGTATTAAACAGCTCGGTGCGTATACAATCGCAT +>URS000210DF6D rRNA from 1 species +AATTAATGAATTAATTATAATTAGTTAAATTTTATATGAAGTTCAATATTAAGTTTAGAAATATTGGCGGTGTTTTATTAAATTCTGAGAATCTTGCATAATTAAAATGATAGTACACAATTTATCTTATCTTAGTTTTGTTGGTTTATATATTGCTGTTTTATTTATGGTTTGGTTTTGATAAAATAGGTAAAAGGATTTTGTAGTAAGAAGTTCAAGTCAAAATATAGTTTTATTAAGGTTTATGTGAGTTGCTTTTGTTTAGAAAATAGGAATAATAAAGTAAAATGAAATTTTATATAAGAAGGGATTAGGTTGTAAGGGAAAAATTAATAAGTTTTCTTGATAAATTATATGAACATGT +>URS00014E047D rRNA from 1 species +GACGAACCGTGCGAACGTTGTTCGGATTCACTGGGCTTAAAGGGCGCGTAGGCGGACGGTCAAGTCAGGGGTGAAATCTTTCAGCTCAACTGGAAAAGTGCCTCTGATACTGATCGTCTCGAGGGAGGTAGGGGCATGTGGAACTTCCGGTGGAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGTGGGCTGGGCCGGAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS000238B563 lncRNA from 1 species +ATTCTCTCTCCATTTTAGAGAGAGAGTTGAGATGGAAATTATAATTTTCTCTCGATTTTAGAGAAACAGGTTTTTATTTTTTTGTGAGGCAAAGGATTTTGATTCGTGTCAATTTACGGCCTCTACCTCAATTGGACAGATGTGGCTCTCTTTACCTCTCTCAAAAATGTGTTTCTTCCTCCCTGTCCTTCCGGGTGAGAGTGTAAATAGATTTTGATCTGTGGTTTTTCGGCAGGAGATAGTTATTTGTGAGGGAGTCTCCATTTTCCTACCAAATAATTTGGTTGCATGTTTGTTTTCTTTTTCTCTTCCTTTGTGTTTTGCAGATGGAGGATTCCTGGCGGTGCTTTTTCTAGTTTGTTCTTCTGCCATTAGGAAACGATGGAGAGATCTATACTTTTCAATCTCGTAATCGACGCTTTTGTCCTAAGTTCTCATTCCTTGGCTCGAGAGGATGGTGGGTGGACTCGATTGCAAAAGTCTCTTTTCTCTTTCTATTGTATTCATCGTTCATCTCTCAACCTTGCTAGGGCTGCATGCGTTTTTCTGCTCGGTGCCATCCTTTGTTTCTATTGCTTTAGTTGCCGGAAAAGAACTACTGTTCGGAAAAAAAAAACTTATTTCCTCTTATCGGCCATGGCAACTGAGTTTTTGGGTCTTAGGGTTTCTATGTGTTTGAGTTGCCTCCAAATAAAAGTTTG +>URS00021B94DD lncRNA from 1 species +AGTTGGTGAACACAATAGCAAATCTTTTTAATAAAAATAACAGCAATAAAAAAATAACAAATATTTGAAATTTGATATTAAAATATGAACAATGACAAAAATACTGAAAGAAGTTACAATATTAACAAATATTGATATAAAACAATGGTTAAAAAATTGTCTTCATAAACAATAGCACGTGCATTTTTCTCGTGCAGTTACGTCAGGTGACCATGTATTCAGTGAATCACAAGTAATAAATAAACAAAAAATATGAGTGTGTCTTACCTGAGTTATACATGTTATAACCAACAAAAGTATTAAAAGTCTTAAAACATTTTTAAATATTATAATAATATGCCCTAGCAAGATACATAAACAATCAACCTTAAGAAAAACAATAACAAAAGTAAACCTAATTTAGGTAAACATGATAACATGGTACGCATTTAACAAAAAAAATTAAAAATTAAAAAAAAAATTCTGAAAAACTTGGATCATTTTTAGAACACAAAATATTAACATTGATGAAATAGTGTCATAGCCTATGAGGAAATCGTTTTAAAATCAAGTTACTTCCCAAATAACTGACATCTACTTTACATGTGTATATGTCTCATCCCCACTTTGAAGATGTAGATTTG +>URS0000350E7B rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAGCGGTAAGGCCCTTCGGGTACACGAGCGGCGAACGGGTGAGTAACACGTGGGTGACCTGCCTCTAGCTCTGGGATAAGCCTGGGAAACTGGGTCTAATACCGGATATGACTCCACGGCGCATGTTGTGGGGTGGAAAGCCTTGTGTGGCTAGAGATGGGCCCGCGGCCTATCAGCTTGTTGGTGGGGTGATGGCCACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATCTTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGAGGGATGACGGCCTCGG +>URS00015AB4C8 rRNA from 1 species +TACGGAGGATCCAAGCGTTATCCGGAATCATTGGGTTTAAAGGGTGCGTAGGCGGGTATGTAAGTCAGTGGTGAAATCCTGGAGCTTAACTCCAGAACTGCCATTGATACTATATATCTTGAATATTGTGGAGGTTTGCGGAATATGTCATGTAGCGGTGAAATGCTTAGATATGACATAGAACACCTATTGCGAAGGCAGCAGGCTACACATATATTGACGCTGAGGCACGAAAGCGTGGGGATCAAACAGG +>URS0000254467 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCTTAACACATGCAAGTCGAACGGTAACATGAAGAAGCTTGCTTCTTTGATGACGAGTGGCGGACGGGTGAGTAATGCTTGGGAATCTAGCTTATGGAGGGGGATAACTACGGGAAACTGTAGCTAATACCGCGTAGAATCGAGAGATGAAAGTGTGGGACCTTCGGGCCACATGCCATAGGATGAGCCCAAGTGGGATTAGGTAGTTGGTGAGGTAAAGGCTCACCAAGCCGACGATCTCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGGACTGAGACCTGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGCAATATTGCGCAATGGGGGCAACCCTGACGCAGCCATGCCGCGTGAATGAAGAAGGCCTTCGGGTTGTAAAGTTCTTTCGGTAGCGAGGGAAGGCATTTATGTTTAATATGATCTAAG +>URS0001ED777B rRNA from 1 species +TCATATGCTTGTCTTAAAGATTAAGCCATGCATGTCTAAGTATAAGCTTTTATACGGCTAAACTGCGAATGGCTCATTAAAACAGTTATAGTTTATTTGATGGTCTTTACTACATGGATAACCGTGGTAATTCTATGGCTAATACATGCGCACATGCCTCTTCCCCTGGAAGGGCAGTGTTTATTAGATACAGAACCAACCCACCTTCCGGTGGTCCTCAGGTGATTCATAGTAACCGAACGGATCGCGTTGACTTCGGTCTGCGACGGATCATTCAAGTTTCTGACCTATCAGCTTTCGACGGTACTGTATTGGACTACCGTGGCAGTGACGGGTAACGGGGAATTAGGGTTCGATTCCGGAGAGGGAGCCTGAGAAACGGCTACATCTAAGGAAGGCAGCAGGCAAATTACCCAATCCTGATTCAGGGAGGTAGTGACAAGAAATAACAACACTGGAAATTTCATTTCTAGTGATTGGAATGATAGGAATCCAAACCCCTTTCAGAGTAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGGATTTCTGCTGGAAGCAGCCAGTCCGCCCTCAGGGGTGTGCACTTGGTGAATTCTAGCATCCTTCTGGATTTCTCCACACTTCATTGTGTGGAGTTTTTTCCAGGACTTTTACTTTGAGAAAATTAGAGTGTTTCAAGCAGGCTTGTCGCCTTGAATACTGCAGCATGGAATAATAAGATAGGATTTCGGCCCTATTTTGTTGGTTTCTAGGACTGAAGTAATGATTAATAGGGACGGTTGGGGCATTCGTATTTAACTGTCAGAGGTGAAATTCTTAGATTTGTTAAAGACGAACTACTGCGAAAGCATTTGCCAAAGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGCTCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGAGATAGGAAAACGTCATGCTTGACTTCTCCTGCACCTTATGAGAAATCAAAGTCTTTGGGTTCTGGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGCGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACATAGGAAGGATTGACAGATTGATAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGGTTAATTCCGTTAACGAACGAGACCTTAACCTGCTAAATAGGATCAGGAACTTCGTGTTCTTGTATCACTTCTTAGAGGGACTTTGCGTGTCTAACGCAAGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCTGCACGCGCGCTACACTGATGCATCCAACGAGTTTATAACCTTGGCCGATAGGTCTAGGTAATCTTGTGAGTATGCATCGTGATGGGGATAGATTATTGCAATTATTAATCTTCAACGAGGAATGCCTAGTAGGCGCAAGTCAGCAGCTTGCGCCGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATTGAGTGTTCCGGTGAATTATTCGGACCGTTTTGTGGCGCGTTCGTGCCCGAAATGGGAAGTTTTGTGAACCTTAACACTTAGAGGAAGGAGAAGTCGTAACAAGGT +>URS00019AFD52 lncRNA from 1 species +GCTTAGGCCACCATGCAGCCTTATTTCTTGACCCTGCTTTAACTCCTACTCCTGATGTGAGCCGGAAAAGGACTCCCCATGTCCACCTTCTTTGGGTGTAGGTTCCATTTCTACCCCCAGTGGGGTCCAAAAAGGTTTCTCTTCGCCATTGCAGTTTCTTCTGCTGTTTCCTTGCATTCTGGGGCCCTGTTTGTGCACATAACCTTTGCCTCACCTATGTGGCCGCCTCTTGCCCCTGAGCGCTGGCCGTCCCTGTTGGACCGGCTAGTGACCTGACTCCATGGCCGCCCAGCAGTGCCATCGCAGGCCGGGCTGCCTTCAGGCAGACCCAGGCACACTTGCGGTATGTGAAAGCAAGCATTCCTGCCTTTCAGTCATGAAAAGAATGTCCTTGGCCTCTACGTTACGGTGACGCTAGTGGATAGCTTAGCCCGCACAACCCTGCCTCCTCCTCCCGGGGCCTGGGGCTGGCCCTCCTCTCCTGCCTCCCACACCTGGCCACCAGAACCCCTACCACCCTGCACCTGGTGGATCGCTCAGAGCGCACACCCCCTGGTGCTGACCAGTCGGGGAGCGCCTGGACGCAGCGACCTCTGGCCGGCTTTCGGTGTTCTCATGCGTGCGAAGAGAGCGCGTGAGGAAAGCCGCGCGGGGTCGGCAGGGTCGGCGGCCGGTGCGGACGCGCCTCGGCGGCGCGCGGCGGC +>URS00001839AB rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGAGTTGATCCTTCGGGATTAACTTAGTGGCGGACGGGTGAGTAACGCGTGGGTAACCTGCCGTATGCTGGGGGACAACAGTTGGAAACGACTGCTAATACCGCATAAGCGCACAGTACCGCATGGTATAGTGTGAAAAACTCCGGTGGCATACGATGGACCCGCGTCTGATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGTCGACGATCGGTAGCCGACCTGAGAGGGTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGGGCAATGGGCGAAAGCCTGACCCAGCAACGCCGCGTGAAGGAAGAAGGTCTTCGGATCGTAAACTTCTGTCCTAAGTGAAGAGCAGAAGACGGTAACTTAGGAGGAAGCCCCGGCTAACTACGTG +>URS00002AB1FD piRNA from 1 species +TGGAAATGAAACAGTCTTTAATGTCTA +>URS0001E049BC rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGGGCCTTGTCCCCTTTTTTTTTGGGGGTGGGGTTAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCCTCACTTCTGGATAACCGCTTGAAAGGGTGGCTAATACGGGGTGTTCTGGCCTGCTCGCATGGGTGGGTTTGGAAAGATTCGACCGGTTTTGGTTGTTTTGGTGGGGGATGGGCTCGCGGCCTATCAGCTTGTTGGTGGGGTGATGGCCTGCCAAGGCTTTGACGGGTAGCCGGCCTGAGGGGGTGGGCGGTCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGCGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCGACGCCGCGTGAGGGATGGAGGCCTTCGGGTTGTGAACCTCTTTCGCCAGTGAAGAAGGTCCTGCTCTTTGTGGTGGGGTTGACGGTAGCTGGGTTAATGAAGCGCCGGCTAACTACGTG +>URS0000DC40A1 rRNA from 1 species +AACTCAAATGAATTGACGGGGCCCGCACAAGCAGCGGAGCGTGTGGTTTAATTCGATGATACGCGAAGAACCTCACCCAGGTTTTGACATGCATGTGGTACCAAGGTGAAAGCTGAGGGACCCTTCGGGGAGCATGCACAGGTGTTGCACGGCCGTCGTCAGCTCGTGCCGTGAGGTGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGTCGCCAGTTGTATTTTTCTGGCGAGACTGCCGAGAAAACCTCGGAGGAAGGAGGGGACGATGTCAGGTCAGCGTGGCCCTTACGCCTGGGGCTACACACACGCTACAATGGGCAGTACAACGGGTCGCGAAGCCGCGAGGTGGAGCTAATCCCATCAAAGCTGTCCTCAGTTCGGATTGCAGGCTGAAACCCGCCTGCATGAAGCCGGAGTTGCTAGTAACCGCAGGTCAGCATTACTGCGGTGAATACGTTCCCGGGCCTT +>URS00009444FC ncRNA from 1 species +CATCGAGTTGGTGCGCTAGGCCGCGACGAGTAGGAGGGCCTCGGCGGCGGGCGTAGAAGCCTAGGGCGCGAGCCCGGGTGGAGCAGCCGTCGGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGGCCGAAGTGGAGAAGGGTTCCATGTGAACAGCAGTTGAACATGGGTCAGTCGACCCTAAGGGATAGGCGAAGGCCGTTCTGAAGCGGGGTGATGTTCGCGTCGCCCCGGCGGACCGAAAGGGAATCGGGTTAATATTCCCGAACCTCGACGCGGAGATTGGCGCTCCGGCGCCTAGTGCGGCAACGCAAACGAACTCGGAAACGCCGACGTGGGTCCCGGGAAGAGTTCTCTTTTCTTGGTAAGGGGCGGCGACCCTGGAATCGGTTCGCCCGGAGATAGGGACATGGGCCCCGTAAAGCAGCACGTCTCTTGTGCTGTCCGGTGAGCTCGCGTCGGCCCTTGAAAATCCGAGGGAGACGGTGTAATTTTCGTGCGAGGTCGTACCCATATCCGCAGCAGGTCTCCAAGGTGAACAGCCTCTGGCCGATAGAACAATGTAGGTAAGGGAAGTCGGCAAACTAGATCCGTAACTTCGGGAAAAGGATTGGCTCTAGGGGCTGGGTCGGTCGGGCTGAGGTACGAAGCGGGGCGCGGCGCTGTACCGGACTGGGCG +>URS0000B3F0C3 misc_RNA from 1 species +AATAAGATTAAATTTTGTAACAGATCAATGAGATCCAGAGCAGACATTCTTAAAGACAACTAAGAAAACAAAAATCATATGTAGAATCTTTCAATATTACAAATGAAAAATCAAGATTTCCTTATTGCTCATCTACCGGTTTGAATCCTTAACAAATCGCAAACCAAAGCTATTATGGAAACCACAAAGTAGTACTCCAGCTTTCGCCTTCTCGGGCTTTTCCTTCAAGCTGTGTCCAATTCCATTCATTCTCCTCCTCCTCCACAATCTTGCCTTTAAAAATTCACTCCAAGGGTTAACCATAGAAGAGCGACAATGAGTACGATCGGAGCCCAAGAAAAGAGCGGTGCCGGGGACTGGACAAATTTTCCTCTGTCTCGGCGGCGGCGACGTTCTTGATCCTCCAAGAGATGGCAGTATCATGAGATGGCGTTCAATATGATGGCAAAGTGACACCAAACTCATATGAGTCGT +>URS000206F7FE rRNA from 1 species +ATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCGACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACCCGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS00022DD3B1 rRNA from 1 species +CCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGGTTAGTAGGTTGGTCATGCCTCTGGTATGTACTGGTCTCACTGATTCCTCCTTCCTGATGAACCTTAATGCCATTAATTTGGTGTTTTGGGGAATTTGGACTGTTACTTTGAAAAAATTAGAGTGTTTAAAGCAAGCTAACGCTTGAATACATTAGCATGGAATAATGAAATAGGACGTTCGATCCTATTTTGTTGGTTTCTAGGATTGACGTAATGATTAATAGGGAGAGTCGGGGGCATTAGTATTCAATTGTAAGAGGTGAAATTCTTGGATTTATTGATGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAAGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGACTAGGGATCGGATGATGTTAATTTTTTAATGACTCATTCGGCGCCTTACG +>URS00017ABA52 rRNA from 1 species +CCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGCCGGAAGGCTGAACCAGCCATGCCGCGTGAAGGTCAGTGCCCTATGGGCGTTAAACTTCTTTTGTGCGGGAGCAATAATGGTCGCGTGTGGCCAGACGAGAGTACCGTACGAATAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGGGGATGCAAGCGTTATCCGGGTTTATTGGGTTTAAAGGGTGCCTAGGCTGGGAGGTAAGTCAGCGGGGAAATGCCCCCGCGCAACGGGGTGAAGTGCCATTGATACTGCCTTGCTGGAATGCGGATGCCGTAGGAGGAATGTGTGGTGTAGCGGTGAAATGCATAGATATCACACAGAACACCGATTGCGAAGGCATCTCACGAATCCGCGATTGACGCTGATGCACGAAAGCGTGGGTATCAAACAGGATTAGATACCCCGGTAGTC +>URS0001280152 rRNA from 1 species +GACTAACGCTGGCGGCAGGCTTAACACATGCAAGTCGAACGCATCCTTCGGGGTGAGTGGCAGACGGGTGAGTAACGCGTGGGAACGTGCCCTTCAGTTCGGGATAACCCAGGGAAACTTGGGCTAATACCGGATACGTGCGAGAGCAGAAAGATTTATCGCTGAAGGATCGGCCCGCGTCTGATTAGCTAGTTGGTGGGGTAATGGCCCACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACATTGGGACTGAGACACGGCCCAAACTCCGACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCATGAGTGATGAAGGCCTTAGGGTTGTAAAGCTCTTTCGTCCGGGACGATAATGACGGTACCGGAAGAAGAAGCCCCGGCTAACTTCGTGCCAGCCGCCGCCGTAA +>URS00025670D8 misc_RNA from 1 species +AACGCACATTGCGCCCCTTGGTATTCCATTGGGCATGCCTGTTCGAGCGTCATTTACCCCTTCAAGCTCCGCTTGGTGTTGGGCGTCTGTCCGCGTTTCCGGCGCGGACTCGCCCCAAATCCATTGGCAGCGGCTCCGCCGGCTTCTCGCGCAGCACATTGCGCTCTGGGAGGCTCTCGGCGGGGCCCGCGTCCACCAAAGCAACCCCCCATTTTGACCTCGAATCAGGTAGGGATACCCGCTGAACTTAA +>URS000223CBAB misc_RNA from 1 species +AGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCAGTTAAAAAGCTCGTAGTTGAATTTCGGGGTCAGCAGGTTGGTCGTGCCAATGGTATGCACTGGCCTTGCTGATTCCTCCCTCTTGATGAGCCGTAATGCCATTAATTTGGTGTTGCGGGGAATCAGGACTGTTACTTTGAAAAATTAGGGTGTTTAAAGCAGGCAAGCGCTTGAATACATTAGCATGGAATAATGAAATAGGACGTTCGATCCTATTTTGTTGGTTTCTAGGATTGACGTAATGATTAATAGGGATAGTTGGGGGCATTAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAA +>URS0000D99911 rRNA from 1 species +GGGTAAGTCGGGACCTAAGGCGAGGCCGAAAGGCGTAGTCGAAGGACAACAGTTTGAAATTACTGTACCACCGTAATCCGCTATGAGCGATGGGGTGACGCAGGAGGGTAGTGACGCGGACTGATGGATATGTCCGTCTAAGCAGTGAAGAGGCAGACCAGGGGAACTGAAACATCTAAGTACCCTGAGGAAGAGAAAACAATAGTGATTCCGTCAGTAGCGGCGAGCGAACGCGGAACAGCCTAAACCAAGGGGCTTGCCCCTTGGGGTTGTGGGACGTCTCACATGGAGTTACAAAGGAATATGGTAGGCGAAGAGGTCTGGAAAGGCCCGCGATAGAGGTAAAAGCCCTGTAGCCTAAACTGTGTTCTCTCCGAGACGGATCCCGAGTAGTGCGGGGCACGTGAAACCCCGTATGAATCCAGCAGGACCATCTGCTAAGGCTAAATACTACCTGGCGACCGATAGTGAAACAGTACCGTGAGGGAAAGGTGAAAAGCACCCCGGAAGGGGAGTGAAATAGAACCTGAAACCGTGTGCTTACAAAAAGTCAGAGCCCGATCTATGGGTGATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTACGTTTAACATGCAAGGTTAAGGTGAGAAGCCGGAGCCGCAGCGAAAGCGAGTCTGAATAGGGCGACTAAGTATGTGGACGTAGACCCGAAACCGTGTGATCTACCCCTGTCCAGGGTGAAGGTGCGGTAACACGCACTGGAGGCCCGAACCCACGCATGTTGAAAAATGCGGGGATGAGGTGGGGGTAGCGGAGAAATTCCAATCGAACTCGGAGATAGCTGGTTCTCCCCGAAATAGCTTTAGGGCTAGCCTCGGTGAATGGAGTGGTGGAGGTAGAGCACTGATTGGGTGCGGGGCCCGCAAGGGTTACCAAGCTCAGTCAAACTCCGAATGCCATTAACTTCTTGCCGGGAGTCAGACAGTGAGTGCTAAGATCCATTGTCAAAAGGGAAACAGCCCAGACCATCAGCTAAGGTCCCCAAGTGTGTGTTAAGTGGGAAAGGATGTGGAGTTGCACAGACAACCAGGATGTTGGCTTAGAAGCAGCCACCATTGAAAGAGTGCGTAATAGCTCACTGGTCGAGTGACTCTGCGCCGAAAATGTAACGGGGCTAAACACACCACCGAAGCTATGGCTAGATGCTTTGCATCTGGGGTAGGGGAGCGTTGTATGTGGGTTGAAGGTGTACCGTAAGGAGCGCTGGACAGCATACAAGTGAGAATGCCGGTATGAGTAACGAAAAGATCAGTGAGAATCTGATCCGCCGAAAGCCCAAGGTTTCCTGAGGAAGGCTCGTCCGCTCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAAAGGCGTAGTCGAAGGACAACAGTTTGAAATTACTGTACCACCGTAATCCGCTATGAGCGATGGGGTGACGCAGGAGGGTAGTGACGCGGACTGATGGATATGTCCGTCTAAGCAGTGAAGCTGATGTGTAGGCAAATCCGCACATCAATAAGGCTGGGCTGTGATGGGGAGCGAAAATTGTAGTAGCGAAGCTGGGGTAGGGGAGCGTTGTATGTAGGTTGAAGGTGTACCGTAAGGAGCGCTGGACAGCATACAAGTGAGAATGCCGGTATGAGTAACGAAAAGATCAGTGAGAATCTGATCCGCCGAAAGCCCAAGGTTTCCTGAGGAAGGCTCGTCCGCTCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAAAGGCGTAGTCGAAGGACAACAGTTTGAAATTACTGTACCACCGTAATCCGCTATGAGCGATGGGGTGACGCAGGAGGGTAGTGACGCGGACTGATGGATATGTCCGTCTAAGCAGTGAAGCTGATGTGTAGGCAAATCCGCACATCAATAAGGCTGGGCTGTGATGGGGAGCGAAAATTGTAGTAGCGAAGGTCATGATCTCACACTGCCAAGAAAAGCCTCTAGCCAGGAGAAGGTGCCCGTACCGCAAACCGACACAGGTAGGCGAGAAGAGAATTCTAAGGCGCGCGGAAGAACTCTCGTTAAGGAACTCGGCAAAATGACCTCGTAACTTCGGGAGAAGAGGTGCCTCGGTAGGGTGAATAGCCCGAGGGGGCCGCAGTGAAAAGGCCCAAGCGACTGTTTAGCAAAAACACAGGTCTGTGCGAAGCCGCAAGGCGAAGTATACGGGCTGACGCCTGCCCGGTGCTGGAAGGTTAAGGGGAGTGGTTAGGCCGAAGCTGTGAACCGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCAGGTAAATTCTGACCCGCACGAATGGCGTAACGACTTGGGCGCTGTCTCAACGAGAGATCCGGTGAAATTTTAATACCTGTGAAGATGCAGGTTACCCGCGACAAGACGGAAAGACCCCATGGAGCTTTACTGCAGCTTGATATTGAATTTGGGTACGATCTGTACAGGATAGGTGGGAGCCGTTGAGGCAGGAGCGCAAGCTTCTGCGGAGGCGCCGTTGGGATACCACCCTGATCGTATCTAGGTTCTAACCTAGTGCCCTTACCGGGTACGGGGACCGTGTCAGGCGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGAGTAACGGAGGCGTTCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGCAAAGGCATAAGGGAGCTTGACTGCGAGACCTACAAGTCGAGCAGGGACGAAAGTCGGACTTAGTGATCCGGTGGTACCGCATGGAAGGGCCATCGCTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTCCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCATCGCATCCTGGGGCTGAAGTAGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGTACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCTGTCGTGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGTACCGCTGGTGCATCAGTTGTTCCGCCAGGAGCATGGCTGAGTAGCTACGTACGGACGGGATAAGCGCTGAAAGCATCTAAGCGTGAAGCCCCCCTCAAGATGAGATTTCCCAATTAGTAAGACCCCTTGAAGACGACGAGGTAGATAGGTTGGAGGTGGAAGTGCAGCAATGCATGGAGCTGACCAATACTAATCGGTCGAGGGCTTATCCAA +>URS000235B2B5 lncRNA from 1 species +AACTGTTGCGGCAGCCATGCTTGTGAGCTTATGATGTGCCGCTAGTTTAGTTTGTCGGTTTCTGTGAACCGTTCTCTGTGATGTATGATGTATTGCTGCTGTTAGCTGTAAATGTGTTGTATGATGAGTTGACTTGATGGTTCGTTTGAGGCTGTCTTGTGAAGGTTACTGTTAGTTAACATGAGTTAAACAAATACATACACTTGCTGCTGTTAGCTGTAAACATGAGTTGACTTGATGGTTCGTTTGAGGCTGTCTTGTGAAGGTTACTGCTAGTTAACATGAGTTAAACTATTACATGCACTGGGACCCATTTGACTAGTGGACCCATTTAATAAAAATAAAAATGAAATTGTTTAGACAAAAAGGCCACGGCCCAACAATAAAAAAGGCTGCAACGTTGGGCTTGGCCCATGAAGTCGACCAAAAATTAACAGAAAAAGGCTGAATTGTTGGGCTCGGCCCATCTAAAGCAGCGAAATGGACCGGGCTGATTCTTATCAACGACCTTTTCATTTGGTCGCAATTTTGCCACGTCAGATTGCCACGTCGGATCCGACGGGGCCTGGGCAGAGAGCTAGCGACCAAAATAGAAGGTCACAGAATCAACGACCTTTTGTTTTGGTCGTGGAATTCCACGACATTCTCAAAGAGAAGGTCGTTAATTTCAATTTACGACCGCCAGCTTTTGACCATCTATTTTTGGTCAAAAAAAGGTCGCAAATGAAAATCAATGACCTTTCAGTGACCAATAGTGAGGATTGCAAGTTGACATATTTCTTGTAGTGAATTCCGGATAACTTCATAATATATTATGAAGCCTCTGCTTGGCTCAATGGATAGGCGTACAAGTCGCCGCCACTGTGTTTTGATTAACTTCAACAACCAGTTGGGATGAATCATCAGCTGGGTTATTGACACAGCCCATACGGGATCATTTATAACCCGCCGAGGGTTCCGCTGTTTAACAATATGTCGGTTTATATCACGGTCAAGTATGGAGAATCTCAAGACAACTCCTCGAGTCGTCTTAAGACTCGGGGGCTACAATGACATGACTCAGCAAATCCTGCCAGCTTCAGCTAATTCAAGAACCCCGGGTCATTGGAGGGAAGATAACCCGGTCCCAGAGGCTACTGCTATATTGATGAAAATTTAAAGGCCGTCAGAAAATTCCTGGCTTAAAATGAAGAATTCGGGATTAAAATCCAGCTCAAGGGAAATCTATCTCTCATAAAGCTTTGAAGCTCTCAACATCCGGTTTAAAATTCCGGTTCAAAAAGAATCCTTCTCTCGCAAGTTCGAGTTCAAGAAAAATTAAAGGTTGCCAAAGAGAACTCGCTACCATGATGCGCGGTTCAAACATGGGTATCCTGCCTTATTGGCTTATCACATTATTGATCACTTGGGGGCTTGCTGCTCATTGAGCATAGCTATGACTACCTTCTTAATCCGGCTTGTACGCCATGATTACAAAATACTTGGGGGCTTCCTGCTCATTGAGCATAGCTGTGATTACCCTATTGATAACCCACTTGGAGACTTGATGCCCGGGTTAAAGGTACCAAAGAGAGTCTATTGCAGAGCACAGCTCAAACATAGGTACCCTGCTTTGATGGCTCAATATATATCACTTGGGGGCTCCCTGTTCATTGTAACATAGCTTTGGTAACCATTTTGATTGGCTTGAAACGCCAGGTGTATACACCAAAAAATTTCAGTTGATCCTGCCTTTTACGTCTGCCACTTCGCTCAGGTAATCCTGGAATGACCCACCGAACTCTTAACAGTCAATCTTATTAAGACCCTGAACTTGTCAAGGTTAAAACGGCGGTTGGTCATGTGAGGCCCGACTTATAAGGTTTGAATGAAGGATTAACTTAGCGGTTGTGCAAGCCTATGAAAAGCACTTGATGATTGAGGCCTGGCCGCCTATGAAAGCCTTGATTTTTTGTTATTTGTTTTTGAACGATGTTTGAGTTCATACCTTTTTTGATATATGGTTTAAACTGATTCAGGCCATGTAGCCTTAATCCTTATGACTCGTATTTGAGCATATTTGGGGTTTGATAACCCAGCCTGGCTTTGGATGATAAGTCGCCAGTATGCTTTGATTGTGCGCTGATGTCTACTACGCAACCTTCTTCTTGTAGACGTTGTTGGGCCTCCAAGTGCAGAGGTTTGTAGGACAATAGCAAATTTCCCTCAAGTGGATGACCTAAGGTTTACCAATCCATGGGAGGCGTACGATGAAGATGGTCTCTATCAAACAACCCTGCAACCAAATAACAAAGAGTCTCTTGTGTCCCCAACACACCCAATACAATGGTAAATTGTATAGGTGCACTAGTTCGGCGAAGAGATGGTGATACAGGTGCAATATGGATGGTAGATATAGGTTTTTGTAATCTGAAAATATAAAAACAGCAAGGTAACTAATGATAAAAGTGAGCACAAACGGTATTGCAATGATAGGAAACAAGGCCTATGGTTCATACTTTCACTAGTGCAATTTCTCTCAACAATAATAACATAATTGGATCATATAACTATCCCTCAACATGCAACAAAGAGTCACTCCAAAGTCACTAATAGCGGAGAACAAATGAAGAGATTATGGTACGGTACAAAACCACCGCAAAGTTATTCTTTCCGATCAATCCATTGTGCTATTCATATAAGTGTCACAAACAGCCCTAGAGTTCGTAGTAAAATAACACCTTAAGACACACATCAACCAAAACCATAATGTCACCTAGATACTCCAATGTCACCTCAAGTATCCGTGGGTATGATTATACGATATGCATCACACAATCTCAGATTCATCTATTCAACCAACACATAGAACCTCAAAGAGTGCCCCAAAGTTTCTATCGGAGAGTCAAGACGAAAACGTGTGCCAACCCCTATGCATAGGTTCATGGGCAGAACCCGCAAGTTGATCACCAAAGCATACATCAAGTGAATCAATAGAATAACCCATTGTCACCACGGTTATCCCACGCAAGACATACATCAAGTGTTCTCAAATCATTAAAGACTCAACCCGATAAGATAACTTCAAAGGGAAAACTCAATCCATTACAAGAGAGTAGAGGGGGAGAAACATCATAAGATCCAACTATAATAGCAAAGCTCGCCATACATCAAGATCGTGCCAAATCAAGAACACGAGAGACAGATCAAACACATAGCTACTGGTACATACCCTCAGCCCTGAGGGTGAACTACTCCCTCCTCGCCATGGAGAGCGCCGGGATGATGAAGATGGCCAGCGGTGAGGGATCCCCCACCCCTCCGGAAGGGTGCCGGAACTGGGTCCCGATTGGTTTTTGGTGGCTACAGAGGCTTGCGGCGGCGGAACTCCCGATCTATTCTGTTTTTCGAAGGTTTTTGGGTATATTGGTATATATAGGAGGAAGAAATACGTCAGGGGAGCCACGAGGGTGGAGGGCGCGCCCAGGGGGGTGGGCGCGCCCCCTGCCTCGTGCCCTCCTCGTTGATTTCCTGACGTGCACTCCAAGTCCCCTGGATTGCTTCCATTCCAAAAATAACTTTCCCAAAGGTTTCATTCCGTTTGGACTCCATTTGATATTCCTTTTCTGCGAAACACTGAAACAAGGGAAAAACAGAAACTGGCACTGGGCTCTTGGTTAATAGGTTAGTCCCAAAAATAATATAAAAGTGTTTAATAAAGCCCATAAACATCCAAAACAGATAATATAATAGCATGGAACAATCAAAAATTATAGATACGTTGGAGACGTATCAGCATCCCCAAGCTTAATTCATGCTCGTCCTCGAGTAGGTAAATGATAAAAACAGAATTTTTTATGTGGAATGCTACCTAACATAATTATCAATGTAATCTTTTTTATTGTGGCAAGAATATTCAGGTCCATGAGATTCAAGACAAAAGTTTAATATTGACATAAAAATAATAATACTTCAAGCATACTAACTAAGCAATCATGTCTTCTCAAAGTAACATGGCCAAAGAAAGTTCATCCCTACAAAATCATATAGTTTGGTCATGCTCCATTTTCATCACACAAGAATGCTCTCGTCATGCACAACCCCGATGACAAGCCAAGCAATTGTTTCATACTTTAGTAATATCAAAATTTTCAACCTTCACGCAATACATGAGCGTGAGCCATGGATATAGCACTATGGGTGGAATAGAATATGATGATGGGGGTTATGTGGAGAAGACAAAAAAGGAGAAACTCTCACATTGACGCCGCTAATCAACGGGCTAGGGAGATGCCCGTCAATTGATGTCAATGCAAGGAGTAGGGATTGCCATGCAACGAATGCACTAGAGCTATAAATGTATGAAAGCTCAACAAAAGAAACTAAGTGGGTGTGCATCCAACTTGCTTGCTCATGAAGACCTAGGGCACTTGAGGAGGCCCATTGTTCGAATATACAAGCCAAGTTCTATAATCAAAAATTCCCACTAGTATATGAAAATGACAAAACAAGAGACTCTCTATCATGAAGATTCTGGTGCTACTTTGAAACACAAGTGTGGTAAAATGATAGTAACATTGTCCCTTCTCTCTTTTTCTCTCATTTTTTTGGGCCTTCTCTTTTTTTATGGCCTTTCTCTCTCTTTTTTTTATAGTCCTCACTTGGGACAATGCTCTAGAAAATGATGATCATCACACTTCTATTTATTTACAACTCAATGATTACAACTCGATACTAGAACAAAGTATGACTCTATATGAATGCCTCCGGCGGTGTACCGGGATATGCAATGAACCAAGAGTGACATGTATGAAAGAATTATGAATGGTGTCTTTGCCACAAATACTATGTCAACTACAAGATCATGCAAAGCAATATGACAATGATGAACGTGTCATGATAAACGGAACGGTGGAAAGTTGCATGGCAATATATCTCGGAATGGCTATGGAAATGCCATAATAGGTAGGTATGCTGGCTGTTTTGAGGAAGATATAAGGAGGTTTATGTGTGAAAGAGCATATCATATCACGGGGTTTGGATGAACCGGCGAAGTTTGCACCAACTCTAAATGTGAGAAAGGGCAATGCACGGTACCGAAGAGGCTAGCAATGATGGAAAGGTGAGAGTGCGTATAATCCATGCACTCAACATTAGTCATCAAGAACTCACATACTTATTGCAAAAATCTACAAGTCATCAAAAACCAAGAACTACGTGCATGCTCCTAGGGGGATAGATTGGTAGGAAAAGACCATCGCTCGTCCCCGACCGCCACTCATAAGGAAGACAATCAAGGAACACCTCATGTTTCAAATTTGTTACATAACGTTTACCATACGTGCATGCTACGGGACTTGCAAACTTCAACACAAGTATTTCTCAAATTCACAACTACTCAACTAGCACAACTTTAATATCACTACCTCCATATCTCAAAACAAGCATCAAGTATCAAACTTCTCTTAGTATTCAGTGCACTTATATGAAAGTTTTTATTATACCCATCTTGGATGCCCATCATATTAGGACTAGTTACATAACCAAAGCAAACTACCATGCTGTTCTAAAGACTCTCAAAATAATATAAGTGAAGAATGAGAGTTCATCTATTTCTTCAAAATAAAACCACCGCCGTGCTCTAAAAGGATATAAGTGAAGCACTAGAGCAAATGACAAACTACTCCGAAAGATATAAGTGAAGATCAATGAGTAGTCGAATAATTATACAACTATGTGAAGACTCTCTAACATTTAAGAATTTCAGATCTTGATACTTTATTCAAACAAAAAGCAAAACAAAAGAAAATAAAATGACGCTCCAAGCAAAACACATATCATGTGGTGAATAAAAATATAGCTCCAAGTAAAGTTACCGATGAACGAAGAGGAAAGAGGGGATGCCATCCGGGGCATCCCCAAGCTTAGGCTCTTGGTTGTACTTGAATATTACCTTGGGGTGCCTTGGGCATCCCCAAGATTAGGCTCTTGCCACTCCTTATTCCATAGTCCATCGAATCTTTACCCAAGACTTGAAAACTTCACAACACAAAACTTAACAGAAAACTCGTAAGCTCCGTTAGCGAAAGAAAACAAAAAACCACTTCATGGTACTGTAATGAAATCATTCTTCATTTATATTGGTGTTAAACCTACTGTATTCCAACTTCTCTATGGTTTATAAACTATTTTACTAGCCATAGAGTCATCAAAATAAGCAAACAACACACGAAAAACAGAATCTGTCAGAAATAGAACAGTCTGTAGTAATCTGTAACTAACGCAAACTTCTGGAACTCCAAAAATTCTAAAATAAATTTTTGGACCTGAGGAATTTGTCTAGTAATCATCTGCAAAAAGAATCAACTAAATAGCACTCTCCAGTAAAAAGTTTAGCTAATCTCGTGAGCGCTAAAGTTTCTGTTTTTTTACAGCATGCTCATAAAGACTTCACCCAAGTCTTCTCAAATGTTCTACTTGGCACAAACACTAATTAAAACACAAAACCACATCTAAACAGAATCTAGATGGATTATTTATTCCTAAACAGAACCAAAAAGTAAGAAACTAAAATTAAGTTGGGTTGCCTCCCAACAAGCGCTAATGTTTAACGCCCCTAGCTAGGCATGATGATTTCAATGATGCTCACATAAAAGATAAGAATTGAAACATAAAGAGAGCATCACGAAGGATATGACTAGCACATTTAAGTCTAACCCACTTCCTATGCATAGGGATTTTGTGAGCAAACAACTTATGGGAACAATAATCATCTAGCATAGGAAGGCAAAACAAGCATAACTTCAAAACTTTAAGCACATAAAGAGGAAACTTGATATTATTGCAATTCCTACAAGCATATGTTCTTCCCTCATAATAGTTTTCAGTAGCATCATGAATGAATTCAACAATATAACCAGCACCTAAAGCATTCTTTTCATGATCTACTTGCATAGAAATTTTACTACTCTCATAAGCAAAATTCTTCTCATTCCGAATAGTGGGAGTATCATAAGAGACTTGAATACTATAAATTGTTTCCACATTAAAAGAGTAATGTTCAGAAAAAGGGTAATCAGAATCATGACAAGTTTTATAAATATAATCATCACTACTTTTTATAGCATAAGTTTCATCACAATAATCAGCATAAGTAGCAACTGTGTTCTCATCATAATCAATTGAAACCTCTTCCGAAATAGTGGATACATCACTAAATAAAGTCATGACCTCTCCAAATCCACTTTCATAAATATTAAAAGATTCAACACCCTCCAAAATAGTGGGATCATTACTTCCTAAAGTTGACACTCTTCCAAACCCACTTTCATCAATATAGTCATCATAAGTAGGAGGCATGCTAACATCATAACAAATTTGCATATCAAAACTTGGGAGGCTAAAAATATCATCTTCATCAAACATAGCTTCCCCAAGCTTGTGGCTTTGCATATCATTAGCATCATGGATATTCATAGAATTCATACTAACAACATTGCAATCATGCTCATCATTCAAATATTTAGTGCCAAAAATTCTAATGCATTCTTCCTCTAGCAATTGAGCACAATTATCGGAATCCTTATTTTCATGAAAGATATTAAAAAGATGAAGCATATGAGGTACCCTCAATTCCATTTTTTTGTTGTTTTCTTTTATAGACTAAACTAGTGATAAGGCAAGAAACTAAAAGATTCGATTGCAAGATCTAAAGATATAACTTCAAGCACTCACCATCCCGGCAACGGCACCAGAAAAGAGCTTGATGTCTACTAAGCAACCTTCTTAGTGTAGACGTTGTTGGGCCTCCAAGTGTAGAGGTTTGTAGGACAGTAGCAAATTTCCCTCAAGTGGATGACCTAAGGTTTATCAATCCGTCGGAGGCGTAGGATGAAGATGGTCTCTCTCAAACAACCCTGCAACCAAATAACAAAGAGTCTCTTGTGTCCCCAACACACCCAATACAATGGTAAATTGTATAGGTGCACTAGTTCGGCGAAGAGATGGTGATACAAGTGCAATATGGATGGTAGATATAGGTTTTTGTAATCTGAAAATATAAAAACAGCAAGGTAAGTAATGATAAAAGTGAGCACAAACGGTATTGCAATGATAGGAAACAAGGCCTAGGGTTCATACTTTCACTAGTGCAAGTTCTCTCAACAATAATAACATAATTGGATCATATAACTATCCCTAAACATGCAACAAAGAGTCACTCCAAAGTCACTAATAGCGGAGAACAAATGAAGAGATTATGGTAGGGTACGAAACCACCTCAAAGTTATTCTTTCCGATCAATCCATTGGGCTATTCCTATAAATGTCACAAACAGCCCTAGAGTTCGTAGTAAAATAACACCTTAAGACACACATCAACAAAAACCCTAATGTCACCTAGATACTCCAATGTCACCTCAAGTATCCGTGGGTATGATTATACGATATGCATCACACAATCTCAGATTCATCTATTCAACCAACACATAGAACCTCAAAGAGTGCCCCAAAGTTTCTACCGGAGAGTCAAGACGAAAACGTGTGCCAACCCCTATGCATAGGTTCATGGGCGGAACCCGCAAGTTGATCACCAAAGCATACATCAAGTGAACCAATAGAATAACCCATTGTCACCACGGTTATCCCACGCAAGACATACATCAAGTGTTCTCAAATCATTAAAGACACAATCCGATAAGATAACTTCAAAGGGAAAACTCAATCCATTACAAGAGAGTAGAGGGGGAGAAACATCATAAGATCCAACTATAATAGCAAAGCTCGCGATACATCAAGATCATGCCAAATCAAGAACACAAGAGAGAGAGATCAAACACATAGCTATTGGTACATACCCTCAGCCCCGAGGGTGAACTACTCCCTCCTCGTCATGGATAGCGCCGGGATGATGAAGATGGCCACCGGTGAGGGATCCCCCCCCCCTCCGGCAGGGTGCCGGAACAGGGTCCCGATTGGTTTTTGGTGGCTACAGAGGCTTGCGGCGGCGGAACTCCCGATCTATTCTGTTTTTTGAAGGTTTTTGGGTATATTGGTATATATAGGAGGAAAAAATACGTCAGGGGAGCCACGAGGGGCCCAGGAGGTGGGCGCGCCCCCTGCCTCATGCCCTCCTCGTTGATTCCCTGACGTGCACTCCAAGTCCCCTGAATTGCTTCCGTTCCAAAAATAACTTTCCCGAAGGTTTCAGTCCGTTTGGACTCCGTTTGATATTTCTTTTCTGCGAAACACTGAAACAAGGGAAAAACAGAAACTGGCACTGGGCTCTTGGTTAATAGGTTAGTCCCAAAAATAATATAAAAGTGTTTAATAAAGCCCATAAACATTCCAAACAGATAATATAATAGCATGGAACAATCAAAAATTATAGATACGTTGGAGACGTATCATGCGCTTGGAGTTCTGTGCTCTAAGTTTTTGGGTTGTTACCCTTGCTGCGTATGGCGCTGTAAGCCGGCTGTATGAACCGATTTCACAGGCCATGTAGCCTTGATTGTATGACTCATCATGGAGCATCTTTGGGTTTGATAACCCGCCCTGATAGCGGATGTTGAGTCGCCAAGATATCTTTGCATTGAGCAATCAAAATTATGATATTACATGCCTACGGGTCAATACCCGTGACGGATTATAATTATTGAGGTATCACCAGGATGTCAATCTCCAGGTATGTTTTTCAATAATGGTATGAATATTTTGGGTTTGGTAACCCGCCCTGGCTATGGACTTTAAGTTTCTAGAATACTTTGGATTGCGCAATTGGGATTATGCGCTTATGAATACTTGGGATGTGGCTATGTAAGCCGGCAATTTGAGCCAAATTTCTAGGTATGTTTTTAAATTGTTGGATGAATATGTGAGGTTTGATAACCCGCCCTGGCTTTGGACATTAAGTCGCCAGTATATTTTGGATTGCACCATTGGAATCATGCGCTTATAAATTATTGGATTGTTACCCTCACTGGATATGGCGATGTACGCCAGCGGTATAAATCAATCCTACAGGTATGTTTTCCTGGTTATATGAATATACGAGGTTTGATAACCCGCCCTAGCTTTTGACTTTAAGTCGCCAGTATGTTTAGGCTTGAATGTCCTTGCTTAGTCTTTTCGGTAATTACATAAGACTATATTATGTTTGGGTTGTTGCCCGCCCTGGCTTTTGACGTTAAGTCGCCAGGGCATATGTTGTTTAAACTGTGTAGAACATGCAGAGCTTTACACATAAGTAAGAATACTGCTATTGCTCATATGAATCATTGCGTTTAAACCCATCATCTGGCCATCTGAAGATATTGCCGGGTTATCCGGCTCCGGGCTATATTGTTCAATATTGAGTTTATTGAGGCTATGAGCTGCCAAAGTGATCTTGTCAAAAACTGGACATGATTATGAGCCGCCATGGATGGGGTTATCAATTCTTGATTTTTACAAAGGCTATAAGCCGCTGGATTGCAAAGTCCCGGATTACAATGGATGCGCATTAAGTCGCCATCGACCAAGAGCCGCCGGGTATTTAAATTCCGGATTTACTTGTCAAACAGATAAGGTATTCAAATCTTTAATAGCCAAACTTGGCTGGAGTTTCATTATAATATTGAATGATTGAGGTTTTCATACCGGATTATATGACCCGGCCGGACATGGCGCCTCACCAGAAACCCGGTTGATACTTGGCGACTCACTAGAGACCCGCCCGAACCTCAGCGACTCATTAGTAACCCGGCGGGCGGGTCAGACGATCGACAAGACCCAACGGCCCAGAAGGCGACTCGTGGGAAGGCCGGCTCGTGTTATGGTGGGCCGGCTTAAGATGAAAGGCTAAAGAATATTCTCCTAGAAAGAAAGCAAGACTAGGACTGCACTTGTAATAGAGTAGTCCTAGTCCTACTAGGACTCCACATGTAACCCGCCCCTCCAACTTAGATAAGGAGGGACAGGGCACCCCAAGAGGGACAAGTTTTCACGAGTTGGACAAGTTAGGGTTAGACAGACAAGTCTATAGCTATCGAGATAGAGCACCCTTGTAATCGTGATCATCATCATCAATATCAATGAAGCAGGATGTAGACTTTTACCTCCACCGTGAGGGCCGAACTTCGGTAAAAAACCTCGCGTCTCTCGCCCCACTCAACCCCTCTCAAGCTACCACATAGATGCGTTGGCTTCATGACTAAGTCCTCATACTAGGACATCTGCCGTGACAAATCCACGACAAGATTCAAGTGGAGGCAACATGTGGTGCACATCGAAAGTTTGGATTAGTAGTATAGCTTCGAGATGCACCACATGCTGCCTCCACTTGAACCTAATCCACCTCCATTTCACACACTGTTATGGACATAATGATATATCAACCTCATAATTGGTCCTGTATACAAATTTGTACAACGGCGTATAAATACACTAAAAGTAAAAAAATAAAAAACAGTATACTGGTAGCGCTGGACCGGAAACACGCTACTACTAGCTAGTTAGATTAGCAGTAGCGTGTGTTGCACGGGCTACTGCTAAGGAATAGCTGTAGCGCCTTACTAGTAGTGCGGTGACACGCGCTACTAGTAGATCAACGTCTTCAGTGGCATGTTCAGCAGCTGGATCTTCTCCGCGGTGGTCGGCACTACCATCGGGTTCCAGGTGATCCTCGTGGAGTTGTTGGGCACGGTTCACCTGAACGGGAGGCTGTGACTCATGAGTGTGTTGATCGGGTCGGTCAGCCTGGTTATCGGCGCCGTCCTCAAGTGCATCCCTGTTGGTTCCGGCAACGCCTCGTCCGATCGTCACGACGGATACCAGCCCATCCCCACCGGCCCTAGTGCCATGTGATTTTGAAGAAGTTTTGGTTGGTTTGTTTAGGAAAGGGGAAGATGTATGAATCTTTTAGAATCAAACTTTGCAGCTTCAGTTTTTTGTAGGAGGTACCGGAACAATTTTTTTGGATTGAGAAAACCGGACATACTTGTGGTAATGACGGTTCTGAGAAATTTAAGTTTCTATTTTTTTTCGTTGTTTTTGTTTTGTGCTTTCTAGCCAAATAGGACTATGGATTTCCATTGTAGGATTACTATGCAATGATAAATGCAGTTGCTTACTATCTAGTATCTATACACAAATCTTCACATTTAGGGTTATACTCATGCGGGTGACATGTGATTTCTGGAAGATGTTCTTTTTATTTATTTTTCCTTTTGGAGGAAAAGAATGTAGTGTTAAATGAACTTTTAAGTACAGTTTGAGCTTTTTCCCCACTCAGGCAAATGAAGTTTCTGAAATTTTATTGTAGAATCCTTATAAACAACAAAAAAAAACTGAACCATGCAGGAGACTTACATGTACTCCCTCCATTTCAAAATATACGGTGTATTAGTTTTTTCAAAAATAAAACATGTGCAAGCTTGACCAAGGTTTAAGAAAAAATTATCAATATTTACAATACCAAATTTGTAGCATTAGATCCTTCACTAAACAAATTCATATTTTCTTTATTTGGTTTTGTAGAAGTTCATATTTTATTCTATAATCTTGGTCGAACATATATAAGTTTGACTTGCACGAACCTGATTCACCTTATATTCCGGAACGGAGGAAGTAATTCGGTAATAAAGAGATCAGTACAACGCCAAAGATGGCACAACCGTTACATCGCCAACACCATGACCAAACTACGACACTTACATCACCAACAATGGCGCAACCTAAACAACACAATGAGAATGACCCAATACAACTCGGACTAGGGCAAGCGTCCAACACCAGGCATAAAGAACAGAGAAAGATCCTCTGCAAGAGCCTGCACAATAGCCCGACACAACACTACCCCAACGACGACTACCACGTCAACGATTACTGACGTACAAGCAATACTATTTGCAGCAACATAGGCATGACGTCACGAATACAAGAGTCCACCTCAGGCTGTAAGTGGGACGCTCCGCGGGAGGCCCGCGTCCGCCCCACATCTGCCGCGTAGATTAAGTGGAATTCCCGTTAAAGCCTGCATATTATTATGTGGGATATGTGGGTTTAGTAGGATACCCACAAAATTCATACAGATGCTTCTGTTGAAAGTCAACTTGAGGTGGTGAGCTACAATGACTGGTTCGTCGGGAGCTCGAACAGCTCGTGTGCATGATGCGCACGTACAGCCGGCATGCCTTGGCCTTGCCCTAGTGCTCTTGTGCCGTCGATGGAGCCTCTTGGAGCAAGAAAGACTGCTCGCTGAAACAAACCCAACAGTTCAGATCGCTGAATCAACTACTCCCTCCGTTCGGAGTCATTTTTGTGACAAGTAATTCCGAACTGAAGGAGTAGTAACTAATAGCCATACATTTACAAGTTTTCAGTAGAGTAGCATTTATATACCAGGTTAACACCTCACACATACACAAACACAGACACAAATACAAGCGTCCATGGCTGGACGCGGCGCGGCAGCCGGTGCTGGCGATGCACGGAGACAGGCTGTCGACGTGGCCGTCCAACAGGCCGCGGCCCTCACGGACACCGACGAGCAGGCCTCGGTTCCACGGACGTCGCACACAGGAGTACGTCCTCGAGCCTGCAGGACCGTCGGCGAGCGCGCCCGGCGGCCGGAAGCTGCGACGGAGGTAGACGGCGGCACTGCGGCGCCCACGGCGGAGATGGGCGATGACGCTAGTGCGGCCATAGAGGAGGTCGACGGAGTCGCTAGGTCGTCCATGGAGGAGGTGGACGACGAGGTAGGCCGGCCATGGCTGGCGGCGACCCCTAATCCCCGCAGCGTGTCCAGATAAGTGGGTTCGATGTGGGCATCGTGGGATAACCCACATATTCCACATATTGTGGTGTATTGACCGTGGGTGTCCACGAACGCAAAATAAACGGGCCTTTAAGTGGGCACCGCGGGTGGCCCGTGTCCACCTACAGCCTGAAGTCCACCATTCCAACGCCGCCAGGCTAGCCTCCATCCAGACCATACAAGGAGAGTCATGGGGGTGGGCATGCAAAACCGGAGGGGGGCAGCGACGACCAACCAGGGGCGCTAGCGAGGAAAAGGCGACGCTCGCGCAAAACAAACACTGACTATCACTAGCCTTCCATCAACACCAGTCACCACGGGTCTCTCTCGAACTCTCCATAGAAGACAGAACGCGAGAGGAATCCCAGAGGCGTCCGTTTTCCCGGTCCTTCCGCCGGCGACCTCGCCGCTCCTCCTCGCCTCTGATGGCCGTTTTGGCCTCAGCAGGAGGGGGGAGCTCCGGGGAAGCCCGGCCGTCTAGGTAGGTTCCAGGAGGCGCCGTTTAGATGTCGGCGGCGGCACCGTGTCAGAATAAATGTCGCCTGGCTTCAGCCGTGTTTCGTCGGAGATCTTGTCCCCGGCGAGAAGCCCATGGGTGCGTGGTTCATGTTGAGGATATGTGTTATGTGCATATTGTGTATTGGGCTGGCTTCCTAGTTCCTTGTATAATTGAGGTATGTGGCTCATCTTTGTATATCATATATACGTGCCTATGCACAAAGAGCAATACATCATGCAATTCACATATTCTATATAGTATCAGTTTTTTAGGTTCTCTCGCTTCCGCTGCCGCCGCCGTCGTGCGTCTCCTCCGCGCCGCCGCCGCCGCCGCCCGATCTCCTTGCCGCCAACAGTCAATCCACGGCCGCCGCAGCCCTCTGCCACCCGTTCGCCGACGCCAACCCTCCCGACGTCAATGACATCCGCAACCTCAACATCTTCGAGCGGGTGTCGGTTCGTCTTTCGCAGGCGAACTCCTCCTACTACACGTGGAAGACCTACTTTTCCCTCGTGTTTCGGGAGTATCATCTTGTTGATCACGTGGACGGCACCGTCGACTCCAGCCTTGTCCCCGATTTCCATGAATGGTCCACCATCGACACCACGATCATCCGATGGTTCTTCCTCACCATCTCGCCAGACCCCTTCCAGGCGGTTGTCCAAGACGGTGATGACGCATGCGCCGTGTGGACCAACCTGAACGGGCTCTTCACCGACAACAAGCTCCAGCATCGCGTTTTTTTTGCAGCAAGAGTTCTTTGGGTGTCACCAGGACAACACCTCCGTCGACGACTATTGTCGCCGCCTGAAGACTCTCACTGACGAGCTCCGCGATATTGGCGCGAAAATTGATGATGACCTCCTCCTCACCACGCTGACCGCCGGGCTCAACGAGGATTTCGGCAACGCCGCGGCGAACCTCAGTCTCATCCCCAACCCGTCCTTCGCCAAGTTCATTGTGTACCTCCGCTTGGAGGAGCAGCGGATGAAGCAGGTGAAGGCGCGGGCCATCCACACCGCCCTCGCCGCCGGCACCACCCATGGCGGGTCCTCGGCGCCTCCCGCTGCCCCGGCCGCGCCCCTGCCGCAGCGCCACCTGGCGCCGCTGCCGTACCCGGCGCCCCAGCAATCGGGGCTGCTCCCGCTGCCTTATGGGTCGCCCGCCCCTCCCGCAGAACGGCGCCGCGGGGGCCGGCGTGGTGGGGGCCACCGCGGCGGTCAGCAGCAGCAGCCGCAGGGCGCCGGCCAGCCCCGTCAGCAGCAGCAGCAGCAGTTCCAGGTGCCCCCTCCGTGGGCCTCCGGCTACAACCCGTGGACCAGTGTTGTTCATACCCACACCATGCCGGTTCCACGGGCTCCTGGACCGACCCTTCCCGTGCCGCGCCCGTCGGCGCATCAGGCGTATTACGCGGCTCCGCAGCCGTACGGAGGATACCCACTGCTGCAGCTGAGCGGCGCCTACGGTCTTCCTGCGGCCCCGCCGCCGCCCTTGCCGGCCCTGCCGCCGGCGCCTTGGGATCCGGTGCTCCTCGCTGCGCTGCACACCGCGCCTACGCCGAACAACTACACTGGAGGCGGTGATTGGTACATGGACACCGGGGCTACGGCTCACATGTTTGCTTATCCTGATAATCTTGCCTCCTTCACTCCCGTCACCACCGATCGGCGCATCATTGTCGGCGACGGTTCCACACTCCCTATCACACATGTCGGGCACACTTCTTTTCCTTCTAATTCCATGCCTATTACTTTGTCTAACATACTACTGTCACCTCATCTTATTAAGAACCTTGTTTTCGTTCGTTGTTTAACTCGTGAAAATCCTGTTACTGTTGAATTTGATGAGCCTGGTTTTTGTGTCAAGGACGCTCGAACCAGGATGGTACTTCACCGATGTGACAGCCTCGACGAGCTCTATCCGGTGCATCCGCCGTCCACACCGGTTGCTCTCTCCGCCGGTGTCAATCTCTGGCACGCTCGTTTGGGTCATCCCAACCCAGTCACACTTCGTCATATTCTTAGGAGTTTCAGTTTCAGTTGTAATAAGATAGAGGATCACACCTGTCATGTCTGTCGTGTCGGCAAACATGTTCGCCTCCCATTTAATAACTCCACCACCATAGCTTCTTTTCCTTTTCAGTTGATTCATAGCGATGTGTGGACCTCTCCGGTTCCTAGTAATTCGGGCTATTTATATTATCTGGTTATCCTTGATGATTATTCTCACTATGTGTGGACGTTTTCTTTACGACGAAAGTCGGATGCACTCTCCACTTTGTCGGCTTTTTACTCCTATGTCAGCACGCAGTTGGGCATCCCATCCTTGCTCTTCAGACTGACCATGGAAAAGAGTTCGACAACCTTGCTTTCCGCACCTTTCTGTCGCACCACGGCACAGTTTTTCGTCTCACATGCTCGTATACTTCATAGCAGAACGGTCGAGCTGAACGCGTCCTTCGCACTCTGAACGACTGCGTTCGCACGCTCCTGTTCCATGCTAATGTGCCGCCTCGTTTCTGGCCAGACGCACTCTCTACTGCTTCAGTTCTCCTTAACCTTCGCCCTTGCCGCCCACGATGGAACTATGCACCTCACCATCTTCTCTTCGGTACGCCCCCATCTTATGACGGCTTGCGTATTTTCGGGTGCCTTTGCTATCCTAGCACTGCCGACTCCGCTCCTCACAAACTCGCACCTCGTTCTATCGCTTGCATCTTCATCGGCTACCCCTCCAACTCCAAGGGATATCGGTGCTACGATCCCGTCTCCCACCGTGTGTTCACCTCCCGGCACGTTTACTTTGATGAGCATGTGTTTCCGTTTCAACAGGTACCCCCGGCTGTTCCTCCCGCCACCAGTGACGTGGGCTCCTCGACTCCTCTCCCAGGGCGCTCACACGCCTCTCTTGGCCCGCCCCTTGGCTTTGAGGCGCGCCCCCCGCATGCAGCGGCTCCTACCGCCGCGGCACTAGCGCCCCCGACATTGGCGCCCGCGGCCCCCCTGGCGCCCCTGGCGTCCCCGGCCCCCCGGCTCCCTCGGCGCCCCCGACGCCCCCGGTGCCCGCGGCCGGTCCGGTCACCCGCGCCCGAACGGGTTTTTTTCGCCCGAGCTCGCACTACGCCTCGGATGATTACGTCCATGCGGCTGATGACCCACAAGTATCGGGGATCTATCGTAGTCCTTTCCATAAGTAAGAGTGTCGAACCCAACGAGGAGCAGAAGGAAATGATAATCAGTTTTCAGTAAAGTATTCTCTGCAAGCACTGAAATTATCGGTAACAGATAGTTTTGTGATAAGATAATTGGTAACGAGCTAGTTTTCATCACGCTCATATGATTCGCGTTCGGTACTTTGATAATTTGATATGTGGGTGTACCGGTGCTTGGGTGCTGCCCTTACTTGGACAAGCGTCCCACTTATGATTAACTCCTATTGCAAGCATCTGCAACTACAAAAGAAGTATTAAGGTAAACCTAACCATAGCATGAAACATATGGATCCAAATCAGCCCCTTACGAAGCAACGCATAAACTTGGATTTAAGCTTCTGTCACTCTAGCAACCCATCATCTACTTATTACTTCCCAATGCCTTCCTCTAGGCCCAAACAATGGTGAAGTGTCATTTAGTCCACGTTCACATGACACCACTAGAGGAGAGACAACATACATCTCATCAAAATATCAAACGAAAACCAAATTCACATGACTACTAATAGCAAGACTTCTCCCATGTCCTCAGGAACAAACGTAACTACTCACAAATCATATTCATGTTCATAATCAGAGGGGTATTAATATGCATTAAGGATCTGAACATATAATCTTCCACCAAGTAAACCAACAAGCATCAACTACAAGGAGTAATCAACACTACTAGCAACCTACGGGTACCAATCTCAGGCTATGAGACGAAGATTGGATACAAGAGATGAACTAGGGTTTGAGAGGAGATGGTGCTGGTGAAGATGTTGATGAAGATTGACCCCCTCCCGATGAGAGGATCGTTGGTGATGACGATGGTGATGATTTCCCCCTCCCGGAGGGAAGTTTCCCCGGCAGAACAGCTCCGCCGGAGCCCTAGATTGGTTCCGCCAAGGTTCCGCCTCGTGGCGGCGGAGTCTCGTCCCGCAAGCTTGCTTATGATTTTTTCCAGGGTAAAAGACTTCATATAGCAGAAGATGGACACCGGAGGCCTGCCAGGGGGCCCACGAGGCAGGGGGCGCGCCCAGGGGGTAGGGCGCGCCCCCCGCCCTCGTGGCCAGGGTGTTGGCCCCCTCTGGTATTTTCTTCGCTCAGTATTGTTTATAATTCCCAAAAATAACTTCCGTGGAGTTTCAGGACTTTCGGAGTTGCGCAGAATAGGTCTCTAATATTTGCTCCTTTTCCAGCCCAGAATTCCAACTGCCGGCATTCTCCCTCTTCATGTAAACCTTGTAAAATAAGAGAGAAAAGGCATAAGTATTGTGACATAATGTGTAATAACAGCCCATAATGCGATAAATATCAATATCAAAGCATGATGCAAAATGGACGTATCAGCGGCGTCCACCTCTGAGCCGTCATTGTTGCCGTCCTCTGTTCGAGCCGCTCTTCGTGACCCGCTCAGGATGGCTGCGATGCAAGAGGAGTTTGACGCCCTATTGCGCAACCGGGCGTGGCAGCTTGTTCCCTGTCCCCGGCGCGCCAACGTGATTACCGAGAAGTGGGTCTTTAAACACAAGCTCCGTCCTGATGGTACCCTTGATCGCTCTAAAGTGCGTTGGGTCGTTCGTAGCTTCCGACAACGTGCTGGCATCGACTTCACCGACACCTTCGCTCTGGTCGTCAAGCCCGGCACAATACGCACGGTTCTCCACCTTGCGGTCTCCCGTGCTTGGCCGGTGCACCAGATGGACGTCTCCAACGCCTTCCTCCATGGTCACCTCGAGGAGAAGGTCTTCTGCCAGCAGCCCACCGGGTTTGTTGACCCGGCGCTTCCCGACCACGTGTGCCCGCTTTCGCGGTCCTTGTACGGACTCAAGAAGGCTCCGCGCGCTTGGTACCAGCGCATCGCAGCGTTTCTCCACCAGCTTGGGTTCCGTTCTACCCGCTCGGACGCCTCGCTCTTCGTCTATCATCAGGGCTCTGACACGGCCTACTTGCTGCTCTATGTCGACGACATCATCCTGACGGCTTGTACGGCTGGTCTCCTCAGTCAGCTCAAGGCTCGTCTTCGCGCTGAGTTCGCCATCAAGGACTTGGGTCCTTTGCACTACTTCCTCGGTGTCGAGGTGGTGCGCCGTCCGGATGGCTTCTTCCTTCATCAGCGGAAGTACGCTCACGAACTCCTGGAGCGCGCCGGCATGCTTAACTGCAAGCCCGCCGCTACGCCTATTGATACGAAGGCCAAGCTTTCTGCCACGGATGGTTCTCCTGCTTTGGATGCCGCTTTCTATCGGTCTATCGTTGGTGCTCTCTAGTACCTCACTCTGACTCGACCGGAGATCTAGTATGTCGTGCAGTAGGTGTGTCTTCATATGCATGCTCCTCGAGACGTCCACTGGGCTGCCGTCAAGCGGATTCTCCGCTATATCTGTGGCACTATGGATCTTGGCGTCACGCTTCACGCCTCCGCCGACACCGCCCTCACCGCCTACTCCGATGCAGACTGGGCGGGCTGCCCTGACACTCGTCGCCCCACTTCGGGCTATTGTGTCTACCTTGGATCCTCACTTATCTCGTGGTCGTCCAAGCGGCAGCCTACGGTCTCTCGTTCCAGCGCTGAGGCTGAGTATCGTGCGGTGGCCAACGTCGTCGCCGAGTGTTCGTGGCTTCGCCAGCTGCTTAAGGAGCTCCCTTCCCCTATTGACCGTGCCAGGATGGTCTACTGCGACAATGTCTCGGCGGTCTACCTCTCCGCTAACCCGGTGCATCATCGACGGACCAAGCATATTGAGTTGGATATTCATTTTGTTCAGGAACAGGTGGCCCTTGGCCTAGCCTTCTAGAGCTTGTTGCATGCCACTGTTATCTCTCAAACGAAAGAACATATAAATGTATCGCGATCCGTGCAGGTTATCAGTGACAACAGGCAAGGATCTCAAAGCAATGTTGGAGGGATGAGGATAAGAGGTTTCATATAGCTCGGCCTGCACAGGAACTTTCTGTATCTCCATTCACCGTTGTGCCGCCCTTAAATTGTTTCCGTAGGGTTCAGCCCGCGTAGAGCTTGCCGATCTGTACGGCAGTGTATCCAGCAGGGACAATATGATAAGTGGATACAGTAGCTGCATTTCCGTGTACCTCCTATACCCAACATATTGCACCAGCCACCCCAACTCATACAAGTTGTCAATTCTTCACTTTTTCATTCTTGCTAGTTTGGGTGCTACTATCTTGATAAGATGCAGACGGTCAGGAGGCTATGAGAACATGACTCCATAGAAAGGATATCCTTTATAAGAGTTGTTCAAGTTTATAATAGGAGGAGTTGGTGAGCGCATTAGATATCCATAAATTGAATCTAAAATAGAAATAAAGTCTCAAGGTTTACTACTTTCTATTCAATGGTATTTGCGTTATGTCAGTAATTTTGATGATGGGGCATTGGCAAATGCATCCATGTTGAATTTAGTGACGATTAGTCCTACCACCATAATATAGGCTACCAAGGTGAACTCGAGAGTGATTATCATAGTGGTCAACATCGCCAAATGGCGCCACTCCGTGTAAATCAACTCCCAAAACTTCGTCAGTTCCAACTCACTGCCAGCATGGTGGCCCACATGGTCGACTTTAATTGTCTCCGCATATTTCACAGGTGCACTGAAACTAACTCCATTGATTATTCACGCTCACACATTTTTGCGATGTCCTAGCACTCTCTGAGTCCATTCACATATGTTTCGATGCGTGCTGTTGATGATCGTGTAGCTACTTTAGGTGAACCTAATCATAGACACCCTCAGCGCGTTCATAATACAGCTACCAACCAATACTTCCTCTGATCACCACGATGGATACCAGTTGATCCCCACCGGACATGGACAAAGTGTCATGTGATGATATTTTAAACATGTTTTGTTCTTGCTTCTTTGTAGGAAGAAGAAGAAGAAGAAGAATCTGTGCTTTACAAATTGACTTTCCATCTTTAGTTTTTCTTCTGATATGTGACACCGGAATGGATTAAGATGGTGATTACACTTCCGACTTATTTGAGACTTTTCGATCAAAGTTTTCATCCGATGCTTTCTAGGTAACAACATATCTGAAACTTCTTAACCATGTCGGTTTCCATCAACAAAGGATTAAATGTTTCTTACATATAGACAAAAATTTCTTAGTAGAAAATTCCACCCAGAAACTCCTTCGGTTTCCATCTAGTAGTATCCTTTCTTTGGGCTTGGTTATAAGTTTTTGATGCCTCTAGAAGCAAAAGTTTAAATGAACACCTAATTTTTAGTTTGCTCATGGGAAGCATTTATAAATAATGCACTACAATCAAGAAGCACGGAAATAGTGGCTTCTGCAAGGCCGTAACTCCTACCAGCTTCTATTTTTTTGATAAAGGACATTTTATTGAATTGATATATCGAGGTGATACAATCGCATCGAAAGAATGCCCGACCTCTGCATAACTCCATGCACACAGCCAAAAAGTCCAACCGATCCAAAAAAATAAAATCGTCTTACAACTTAAAAAGATAAATTAGTCCAGCCTATGATGTGGCAGATCCTATCCGGAGATCACACCGCCATCCATGGGGGAGAAAACCTCCCTGGCTATACGCTCCAGCCGCGTAGACGCCATCATAAAACGGTCCCTGTCCTCCGGCCTCTGCAGGATATACCAAGTACGGAGCCATCGCGTACATACATGAATAATCTGCATAGGAGATGAAACACATTTTTTATTAAAAACCACATCATTCCTGGTAAGCCACAATGCCCAACATAAGGCAGCCGCCCCCACAAGAATATGTGCACAAAATTGTTTATCAATACCCCTCAACCAGTTGCCGAACATGTTACATGCACTAGGTGGTGGGTATAAATTTGAAGCTACTCGAACTATGGCCCAAACCGCCCAAGCGAACTTACACTCAAAAAATAAGTGCTTAATAGACTCGTCGTGTTGGCAAAAGACACACGCCTTGGTGCCTTGCCAGTTGCGTCGTGCCAGATTATCTCTAGTTAAGATGACCCCTCTGTTTAGGAACCAGAGGAATATCTTCACTCTTAGAGGGATTTTAAGCTTCCACAATTTCCTGTTATTAACTGGAACATCACAATGAACCATTGCATCATACATGGATTTGACTGTAAACTTGCCATTCCGATGCAAATTCCATCAAAAGATGTCCGGTTCATCTGACGGCTGAATAGCCTCTAGACGTATGAGTAGCTCATTCCAAGCTGCCAGGCGAGGTCCTAAAAGGTCCCTACGGAAGGAAATATCAGGGTTTTCTTGTCCCAAAACTTGTTTGATGGTGACAAATTTATGTCTAACAATCCTATACAAACTCGGGTATTGCACCATGAGTGGTGTGGTCCCTAGCCAGGTGTCTTTCCAGAATCGAATCTGGGAACCGTCCCTAACCGAGAAAGTCCCAAATTGGAAAAAGAATTCCTTGGGCTTCATGACTCTAGACCAAAAATGTGAGTCACCAGTTTTCCAATGGACTTGAGAAATGGCCTTGGATTCCACGTACTTGTTACGAATGATTTCCTGCCACACTCCATTCTCAGTGAGTAGTTTATAAACCCATTTGCTGAGAAGAGCAATATTTTTAATCTCAAGGTCCTGAATTCCAAGTCCCCCTTGACTTTTAGGTCGACATAATACAGTCCACCTAGTCAGTCGATATTTCTTTGATTCATTATCACACTGCCAAAAAAATCTAGATCTAAAGTAATCGAGACGCTGAAGAACCCCTTTCGGTAGATGGAAGAACAACAACATATATAAAACCATGTTGCTGAGGACGGAATTGATCAAGATCAATCGCCCCCCATATGACAAGAGTTTGGCTTTCCAACTGGCTAGCCGTTTCTCAAGTCTCTCTTCCACGTGCTTCCACTCAGCGATAGTTAAACGCCGATAGTGTATGGGAATACCCAGATACCGAATCGGGAACTGCCCGAGCTGGCATCCAAAAATGTCAACATACTTAGGTGCATATTCTGCAGCATCCCCGAAGCAAAAAAGTTTGCTCTTATGAAAATTAATTTTGAGGCCAGAAAGTTCCTCAAATGCACATAAAAGCAGCTTGAGATTTCTTGCTTTATCTAGATCATGATCCAAGAAAAGTATCGTGTCATCTGCATATTGTAGGATAGATAAACCCTCTTCTACCAAATGAGGAATGACACCGCTAACCTGACCGGCCACCTTAGCCCGCTCAACAAGGGTAGCTAACATGTCAGCCACAATGTTAAACAAAATGGGTGATGCGGGGTCCCCTTGGCGAAGCCCCTTCCTTGTCTGGAAATAGTTGCCAACCTCATCATTAACTTTGATGGCCACACTACCTCCAGAAACAAAACTCTCAACCCATCGACACCATTTTGGTGAAAACCCCTTCATGCGTAAAGTTTTCAACAGAAAGGGCCATTTAACTTTATCATAGGCTTTTTCGAAATCTATTTTAAAGATCACTCCATTCAACTTTTTGCGGTGAAGCTCATGTACCGTTTCATGCAGCACAACCACACCATCTAGTATGTTGCGTCCTTGCATGAATGCTGTTTGAGTGGGCTTGACGACATGATCAGCCACCCCGTTCAACCGGTTAGTTGCGACATTCGTAAAGATTTTGAAGCTTACATTGAGAAGGCAAATCGGTCGATATTGTTGAATACGACTGGCCTCCTTAATCTTAGGCAGTAGGATAATCTCCCCAAAGTTTAAGCGGGAAATATCAAGGTCTTCGGTATGCAGTTGGTTAAGCAACTGAACCAAGTCCGCCTTGATCACATCCCAAAAGCATTGATAAAACTCTGCCGGAAAACCATCCGGTCCCGGAGCCTTGTTGTGTTCCATTTGAAACACCGCGGTTCGAATTTCCTCTTCAGAAAACGGAGATGTTAAGAATTCATTTTCCGCTTTCGAAACTTGAGGGATGTCATTTTCCTACCAGCTTTTATACCCTTGTTACATGAATGCTCTAAAAGTTGCTCTGACTTGTTGTATGTATACCTAAAATTCCATTACTACATATATAGACATGTTTATGATTAATTTGCCACCTTCCTTGTTGGCCCGTCATCCGTCAACCAGGTTGCAACCCCAACCTCCCTCCTTTCCCTCCAACTCAATTCACTGTTGCACACCACCCTTGAATTGTTTCCATGTAGTACAACCCACACATAATGGATTAGCAACAATATGCTAAGTCACTACAAAACACACGATTGTTAGTAACAAAAATCCTCATGACGGGAAAGGAACTGTCACCTAAAATCATTTTCCGTGATGGTGGTTGTCACAAACTAATGCCGGCCCGGGCATCTTAGGTGATGGTCCGGTCTGATTTTAGGTGACGCTTTCCAGTGTCACAAGACATATGCATGTTCGGTGAAGATTTTTAGTGTCACCAATATCTTGGATGGGTTAGTGAAGGAAATATATAAATAGAAAAAAATTGGTCTATGAAATTCGAACTCGTGACCTCCCACATTTGTGCATGTAGGACTCAAAGTTTGGTCGCTAGGCTAGTGTTTAATTAGTGATAATACTTTGTAGCTCTATTTTTAGTATGTAGAATGGGACTACATGTACATTTCAATGAAATAAATAAAACAAAAAACACCTTACCTTGAGACTAGTCTAATTAAAAAGAAGACCCCACATGTCATGTCTTATTTTGAAACCTCCAAAGGAAAAATAGGTGTTATTAATGAGGCCTCAACCATGGCCATGGGCCTCATGTGAAGAGAGAGAGGTTTATTACTGGGCTAGTGTTTTATGAGTGGTAACTTTGCAGCTCAATTCTTTTGTAGTATTTCCAATGGCACTACATGTGCATTTCCGTGAAAAATAAAAAAAATCGTGTTCACTTGAAACTATTCTAATTAAAAAGTGGACCCCATCTGTCTTGTTTTATTTGAAAAGTAGGTGCTACATATGGGATTTGAACCCTTGTCATGGGACTCATGTGGAGAGACAAAACACTAGCCATTTTATATATGTTGCCTTGGTGTTGAAATAAATGAAGTTGCCCTACTTGGGTGCATATGTTACTAAGACGTGCAGGGTTTCGGCCTCAAGGCGGCTTCAAAATGAAAAAGTTCTCAGCATGAAAGTTTTTCGCCTCGTCGAAGCGAACAACATAGCTTTTTCATCACCTTAATCTGGTATCACATGCAATCTCCACAGCCGATACAATGTGAAAACTTTTGACCTATGTGAAATTCTGGACACACTTGTCCGAATTTGAAAAACATTTGCTTACACGATATCGATACTTTTGCATGTGCTCATCTCATGGCTTAGGAGATAGGTGAAAAGTCACATGAGAGTTACTAAAACTCTCAATGTACTTTTCTTTGACTGGGTGGATCTACTAGGATGTTTCTTAGACATTCAAGACAAATTATGATGTTTCCAATAACCAATTGTTCTGTTTGTACATGTAACTTTAAAAATGGACTGGACCATGTACTTCATCATTACTACTGATAAATTTAGCTTCATATTGCCATTTGTCAAGTCATACAATGATTTTCCTACTTTTTAAATGTCTAAAAATGAGTACGTTAAGCACAATGTAAAAATGTTTATAAACCATGAACTAAACCATGTATTACAGATACTTTCTAGTTTTGATATTTTTCTAGATCTCAATTTCAATTTTAAGGCTTTAAATGCATTTTCTATGCATTTTTCATCAAAAATAGCAACCACCCAAGTTCTGATAAAAAATGTGAACATTTGCATCGACTGATATTATTCGTTTAGGATATAGGTGAAAAGTTTGGTGATATTTAAAAGTAATCTTGTACTTTGCTTTGTAATGGGTCGATCTACTAGGATAATTCTTAGACATTCAAGTCAAATTATGAGGTTACTAATGAAAAATGATTTTATATGTACATGTAACTTTATTTTATAGTGGACCATGCCATGAAGTTCATCGATAGTATTGAGAAACTTAACTTCATATTGCCACTTGTCATAGTCACAATTTCTTTGTCCTACTTCACAAATACTTAGAAATCGGTACCTTGTGAAGCACCTTGCACGGATATTTATCCAACATGTTCTAGACTTTTTGTACATGAACTAAACAACAAATTAGAGATAATTTGAAATTTATGGTTTTTAGATCCCATTTGCTACATTTTAGAAATGAAATGCACTCTTTGGTTTTTTAGTCAGAAAACAGAAACCAACCAAAAACTGCTCGAAAAGTGGTAAACTTTGCATGGGATCATGTACGGGTTTAGGAGTTAGGCGATAAAGTCTCACAAGATTTGACAAAAGTTTCCTTCTTCTTTGCTTTGTAATGGGTGGATCTGCTAGGATATTCCTTAGACATTGAGGTCAAACTATGATATTTTAATGTCATATCATTTTATATGTACATGCAACTTTAAAAATTGACTAGACCATATAGTTCATCGAGAGTATGAGAAATTTAACTTCATATTGCCACTTGTCATGTCATAATATATCTTTCCTACTTTGCAAATACTTACAAATAGATACATTGTGGAGCACCTTGTATTAATATTTATCCATCATGCTCTACACTTAAAAAAATGGACTGGACCATGAACTTTACCATTAGTCTTTTTCAAGATGCTCCACATCATTAGACTTTACCATTAGTCTTGAAAGACATAACTTCATATTATCACTATCATGTCATAATATGTTTTTTTGTACTTCGTAGATGCCTAAAACCTAGTACCTTGTGGAGCACCTTTCAAAAGTATCCATATGAAACACTCATCTGCCTTCAAGCATCTTCCTATGCCTTCACGCGTCCGCCTCTCTCATCTTCCTCTGCCTTCGTGTATGAGAGCCTGAGCCTCCAGCCTAGCCTTTCCTCCTTCACCTCTTCATGTGTTCGTCCACCGGGAGAAGGATCTCACCCACGGATCTGGCGCTCTTGTTCAAATCCAGCTAGGAGAGGCCTCGGGCCACATGCCGGCGAGGTCCCCTACTTTGTGCGGCAGGGTTGGCATCATCCTCGCCATATCCATCTCCACCATCCCTCCTCTCTCACCGTCACTTCATCACCGGCGTCCTGATCCTCAACAACAGCTTGTAGGATCTGGCACCAGGGCATGGAAGTTTCCATCTCATGAGGCCATGGGCTCCGTGTTCAGCGGTGCGGCAACAGTCGGCGTGACAAAAATGGCCTCTCGGGTGCGTGTGGATCTACATGCGGAGCTTGACAAGTTGACATCCAGTGGTCACACCATGCCTGAGATGCGCCATTCAATGGTCGTCCGGTGCAGGAAACACAATGGGCCGGCGAGGAGTTTTGATTTTGTTGGCTTTGGTATTTGGTATTTTCTCCATGTATAAACCAATGGTCAACTTATTTATTCAATGATTCTTCATATTATACATATATATATATATATATATATATATATGAATGGAATGGTATGTATTAGGCGAATTGCATCATGTCACTAGCCAGGTAAAAGAGCATACTTTTTTGTTTTGTGAATTGTTTACTGATGGCGTGCTGTCAATAAGTGCACATCATAGGCATGTGTGCTCATTTGTGATGGTAAGATTAAAGGCACACCACCAATATTCCTATTAGTAGTGGCGTGGAGGTTGGAGGCACACCACCAATATGTAAAATACTGATGGCAAGTGGGCCACATGCCACCAACAACCACTTATCAGTGGCGTCATATCGGTGGCTAAGGCCGTGGGGCCCCTATGCCACTAAAGTAGTTTTTGGCATGCCATTAGTAGGGTTTTCTATAGTAGTGACAATTTTTCATGCAATAGTCATACAACTCATGGGTTGGTGTGGGGCGTGCTGATGGGTTGTTGTAGCGTTGTGAACCATGGGCTAGGAACAACCCAACAAAAAATAGCGCGCGAAAGAAGAGAGAAAGTTCTGGTTGCATGCTTCATGGGCCGGCCCATTATGCGGTTTTCCTGTGTCTTTTTCTAGCCGGTTATGGGAACGTTTTATATCCTCCCCTAAACCGTTTTTTTTTTCACCTTTTCACTTGTTTCTTCCATTTTATTTTTTATTATTAGCATTTTTATTTTTAAATTCATGAATATTAATGTGTTTTTTCTTTCGGTTTTTTTGATTTCTTTCTTTCCACCAATTTTTCCTATTCAGTTTTTCCATTTTCAAATTCCGAAGAATTTTTGAAATTAGCAAACCTTTTTGAATTCATGAATATTTTCTAAAATTCACAAACATTTTTTAAAATTCTCTTGCTTTTATAAATTTGTGAACATTTTTTCACTCAACGAACATTTTTCATTATTTGGGAACAATTTCAAAATTCATGAAGATTTTTCAAATTTGCAAGCTTTTTCGAAATCCATGTAAATTTTCAAATTCATGAACACTTTTTTGAATTTATGAACAAATTTTGAATTGGAGAACATTTTGTTTGAAATTAATGACCTTTTTGTATTCCTGGATAGTTTTTGAAATTCATGAACAATTTTCAAATCATCATTATTTTTGAAATTAGGAAAAAAAATAGATTCATGATATTCTTTGAATTTTGACCGTTTTAAGACTTCATGGACATTTTATGAAAACCCTAGAGATTTTTTAAATCATGGACTTTTCTCGAAAGTCAGAACATTTTTTAAATCCTCAAAAAATTTGAAATTGAGAACTGTTTGTGAAATTTCAAATATTTTTAAAAATTATTCATGAAAAAATTGAATAAAAAGAAAAAACAAAAAAAGAAAGAACAAAAATGAAATAAGACAAGAGCGGCCAGGCCGCACATGAGCTGGCCTAATGCGCGATGGGTGAGCTGTGGGGTGCGCGATTTGTGGCTATCTGCCGACGCACACGACAAATACAAGCTCCTGTTTGGGCCATCCTTTTTCGAGCTATTTTGGTCCTGGTTTTCCCAAAAGGAAGAGAGGAAAGAAAAGGAAATGAGCGAACGGCCCAAGAGAAAATTCAAAAGAGGGAAGAAAGCGTTCTGGCCATGGTATATGTGGCATGGTTCGTTGAGGTTTAAAAGATGAAACAATAATAAAATAAAAATGGCCTCGAAAAATATGATTAAATTAAACTAAACATGAAGATTCCAATAAAATAGCAGTTAGGGTCAGCAACCAACTTAGGGTGCTTAGGAAATACTTTTAGCTACCATCAAGGATCTGGTTCAAAAACCTTAAATCATGCCACGAGGTGACCTGGTTGTCCAGGACTCTTTTTTCAGTCTACAGCCTGACCATGTCTATGGTGCCCTCTAAGATTAGCAGATGCGGAAATTTTCCTTCCTAATGTGTCTCATCCCCATCATGTATGGAGGCCACCGTCTATCATTATCTCCCCTTATTTCCTTTGAGTCTCCTATCTTGATTCATTCCTATTAGGAGGGGTTCCTATTACCCATGTGTTACCTGTTAAGATGTGGTATGTGGATTGTGTATGTAAAACGGTGGTCACTACATAGCACACATATTCACACAAAATGTCTATCTACACAAATAATGTAATTACCCACACAATTGCCTAGACATCACTATTTATACCAAGAGCACTAGCTACCAGTTTCAATACTATAGATGAAGTTCTATAATTGGTAGCAGGGCTAGGCCCACCTACCCAACAACCTAAGAGATTCTTTTCGAGCCTCGTAATAATTGTAGTTCAATTACGTTCTTGTACAATGTTGCATCTAATTCTCCCTTCTCGTATTTTATTAACAAACCATTTGCTAATTTCAATTCAATGGCTGAAAAACAGGATCAACTCATCATGGAAAGAAAATAACTCTATCGGGCCATGATGTGCACGCTGGTTAATTAAGCCTTCAAACACTTTTGTGCACTCATCAATAGATTCGAAAATAACTAAAGGCATGCCCATGCTTGAAATACTGCTCGCATCGCCGGAGGGGTGGGGGTTGAGGCGGCTCAGGTGAAACCCTAGCTGCCCCCACCATGTCACCTCCTTTCCTCACCTCCATCGTCACCTTCAAATGACGCAAGTGGGCAATGTCCTCTCGGCCGGCGATAATGGCGGTGATGCCTTCATGTGCGGTAATCTCTCGCACAAGGAGCTCTCCAGTCATGCGGTGCGGTGATCTCAGAGGTTGTGACATATTCAATGGAGCTTGGGTGTCGCAGCAACATCCCGGGGTGCCCTAAGTTGTTGTGATGCCACTATGTTGTGTCGGAGGCGGCCGTTGGCGCGGGAGGCCGCGTGTGATGATGGGCCTTTGTGCTTTGATCTGGCAACGGCACCTCGTGGACTAGTCGGTAGTGGCAACAACAAAGCGACAACGGTGGCGGTGACACAAACACATGCATAGGAAGGTCGGGGTGATGCGGCTAAGGCTTGTCGCAACCACAAAGTTGTCGCCATGTCTCTGCACTATTGTCCCCGTCTCCTCAGCACCTGATTTTTGAAGCAAGTGCGCGTAAGAAGGATTCTGGTGATGTTTGGCTCTCTCTGTTTTGTGAGAGTTTTATGCTCGCATGCACAGATTCGATCATGTGGTGATATCTACGCTAAGGATGTGCACACGAGCGGCTACCTTTGAGCGTGAGTTCCATCAAATGGTTGGGATATTGATTTTCGTTACCATGGTGTGTCGATATCTTTCCATGCAGTTTCTTCTTCGGCAAAGGGTTGTCTGCAACACATGGTGTCTTTGGATTGGTGCACTACAAAAAAAAGACACATCCGTGATGATACGCCTTTGTCAGGGTAGATCACATTTTCTGTCACTCATGTATATCCGTGACGGTTTTATGAAAAATCATGATAGCCATACTTGTGCTGTCGAGGATGTGTTACATGACAAAATCACTTTATTATCATGGAACTGTCCACTTCCATGAGATTAAGGGCCTGTACTGAAGTCCTCCCACTCCACGCTTCTCCAACTTCAGATGTGGAGTCGGACAGAACGTTTGAGCTCCGTGGAGTCAGCTTTAGGGCTTGTTTGGGACTGCTCCGCTTCACTAAAATCAGTTTCACTCCATCAAATTCACTTTAGAGCAGTTTCATACAGAAGTTATGCATACCAAAGAGAATGTTTGGCTTCCATGTAGCTCCAGCTTCAAGAATGGAAAATTTGGTGAAAAGGAAATATTTGATTGGATGAGAGGGGAGAAACGAAGGGGTATCCACTTACTGGTGGCAGTGGTGGGTAATTTCCCCCCAACTCCAGCTTCTAGAGTTTTTTGAAGCACCCCCTCAAGAGCTTCATAAAAAACTGGGAGTTGTACCCCAGATTCTAGTTTTTTTGTGAGCGGCATATCGTGGAGCTACCCTGTTTGGCTAATGTTTTCTGAAGCGTAGCTGAATTTTAAGAAGCAGAGCAGTCCCAAACAGGCTCTTAAGAAGCGGTACAAGTCTGTAGTGCAAATTTCTGAAGCTGCTAAAGCCCAGCTTCACAAAACAAAGAAGCGAGGAGCTCCTACTAATTACAAGAGGATGCCACCGCGAAGTATAGAAAACGATTCGCGAAACGGCTCCCAGCCGCTCGTGGTATGCTCGCCTCGCTAGTTTCCTGTGCGAGCGCACGTGGCCAGCCCTCCTCCACACAACGATACAAGGTGGACTGCCTCCATCCGGCCCAAACTGGCACCCAACAGGCTCCCAGCTAGGACAAATCGTGAAGAGAAGCTACAAACACTGTTGAACGAATGGAATCGCCAGGTGAAGTTCGAAGCAAGCTCCAGAAGCTGGTTTTGTGGAGTTTGAGAAGCCCAAAGAGGTTCAGAATAGGCTCTAAATAGCACATCATAATTATATTCGTGAAGGGTTACCAAAATCTGGCAGTGATATGTCTCCAACGTATCTATAATTTTTTACTGTTCCATGATGTTATATTATCATTATTGGATGCTTTACAATTATTTTATAGCAACTTTATGTCATTTTTTGGGACTAACCTATTGACATAGTGCCCAGTGCCAGTTGCTGTTTTTTGCTTGTTTTGTACTTCGCATGAAATCAATATCAAACAGAGTCCAAACACAGCGAAACTTTTTCGAGAATTTTTATGGACCAGAACACCCAGGATGGGCCAGAGAAGTACTAGAGGGGTGCCCTGAGGGGGGCACAACCCACCTGGACGCGCCTGGGGGCCCAGGCGCACCCTGGTGGGTTGTGCCCACCTCGGTGGCCCCCCACACTTCCTCTTCGCCCTATAAATTGTCAAATATTAAAAAACCAAGGGTACCCCCTAGATCGGAAGTTCCGCCGCCGCAAGGCTCTGTAGCCACGAAAAACCAATCTAGACCCCGTTCCAGCACTCCGCCGGAGGGGAAATCATCACCGGTGGCCATCTTCATCATCCCGGCGGCCACCATGATGAGGAGGAAGTAGTCCACCCTCGGGGCTGAGGGTTTGTACCAGTAGCTATGTGTTTAATCTATCTCTCTCTCGTTCGCTCGCTCTCTCTCTCTCTCCCCCTCTCGTGTTCTTGAGATGGCATGATCTTGATGTATCGCGGGCTTTGTTAATATAGTTGGATCATATGGTATTTCTCCCTCTCTATCCTGTTGTGATGAATTGAATTTTCCCTTTGAGATTTTGTTTTATCGGATTGAATACTTTTATGGATTTGAGAGCACTTGATATATGTCTTGCATATGAATACTCGTGGTGACAATGGGGTATTATATTGATTCAATTGAGATATGTTTTGGCACTCAACTCGTGGATTCTCGAGGTGACATTGGGGTAATCTATGCATAGGGGTTGATGCACGTTCTCGTCTTTTGTTTCTCCGGTAGAAATCTTGGGGCACTCTTTGAGGTTCTTTGTGTTGGATTGAGTATTATGAATCTGAATTTGCTTTGGTGTTATTTTAGTACGAACTCTTGATAGATCGATCGGAAAGAATAACTTAATGTCATTTTAGTACGAACTCTTGATAGATCGGTCGGAAAGAATAACTTGGTGTTATTTTAATACGAAGTCTTGGATAGATTGATCGGAAAGAATAGCTACAAACAATTTTTTTCTTATGTTCCCCGCTAGATAAGAACTTTGGAGTGATTCTTCATCACACGTTGAGGGATGGTTATATGATCCAACTAGATTAGCATTGTTGAAAGATTGCACTAGCTAAAGTACGGACCCTAGGCCTCATTTTCAAGCATTGCAATACCGTTTGTGCTCCGTTTTATCAATTGCTACTTTGCTGTTTTTTATTGTTCCTATTATAAAAAACCAATATCTACTATCATTACTACGCTTTTATTACCATCTCTTCGCCTAACTAGTGCACCTATAAAAATTACCATTATATTTGGTGTGTTGGGGACACAAGAGACTCTTTGTTATTTGGTTGCAGAGTTGTTTGAGAGAGACCATCTTCATCCTACGCCTCCCACGGATTGATAAACCTTAGGTCATCCACTTGAGGGGAAATTGCTACTGTCCTACAAAACTTTGCGCTTGGAGGCCCAACACGACTCTACAAGAACAAGTTGTGTAGTAGACATCAGGCAGCAACTGTAATGGGTCATCACTAAGCTATCAGGTGCGGGTTCCAGATCCAATACCAGTTAACAACCCCGACCAATGACAAATTTCCACATGTTGGCTTCTCATTTGTCAACGGAGCCACGCGTCAACTCTTCCTTGTGATAGGTGTCACTCATCCAACGGATGATATGCGCCTATGAAACGAAGACACATGGCATGGCCCAACATTGGCCAGTTATAATGGCCAGCCCAGTAGGAGGCCCACAAGATTTGGGCACAACTTAGCGGGTCAGCCCACTAACAACCCTCTTGCAGATAGCTCAATTACAACTCTAGTCCATACATCCTAGTGACAATTCGGTGCGTCACCGCCCCGTTGGGTCTTCAGCATCATTACGACCCTTTGGTAGTTCTGGCCCATTAACAACCAGCTTTGTCTTTGGCCCAATTATGACCCATTGTGTCTTCCAGCCTATTAAAGGCATGTGGTAGACTCAGACTCATTTGCTGCCCAATGTTTCTTTCGGCCTGTTAGCGGCTCGTGGTGGAATTGAACCGTTTTCTATGTGATGTGTCTTTCGGCCTATTAATGGCCTAGGGTACACTTGGGCCCATTTACAACCCGATGTGTCTTTCGGTCTGTTAATGGACCAAGGTACACTTGGGCCCATTTGTTTTCCGAAGTGACTTTCGGCCTGTTAAATACACATGGTATATTTTGGCTCATTAATAACATGAGTTGGCTTTTGGACTATTAATTGTTTGTGATGTAGTTTGGCCAATTAAGGCCTGATTTCATTATCGGCTTGTTAATTGTCCGTTGTCTTGTTGGTACGATATGCCTTTTGGACTGTTAAAGGCCCGTGGTATCTTCTGGCGCATTTTAACAACCCATGGTGTGTTTGGGCTAAATGTGGCCCGAGGTTTATTCGGCCTGTTCACAGGTACTGGTGCGTTTGGTCCGGCCATACATTTCGGCTTGCTAATAGTTCAAACTGATTATGGGCTCATTTAAATCCCATAGACCGTGTCGGCCCATGAATGGCTCGTGATGATTTTGGCCAAGTTAGATTGACCGATACTATTTTGTAGTTGCGTTAGGACAATTCGAACTGATTATGGGCCCATTTAAAGCTCCCGCTTCAAGTTCATGCGATAGCACATCGACCTTCTGATTGTTAGGTTACCAAAATTGTGGTGCTCGTGCCCTGGTTTGTGTGTTTAGCTCTTTCTGATTTGTCTTCTGATTTGTTTCTATTGGTGGGAGGGATGCAAACTCGATAATGGCAATGGCGGTCATTCACCGGGGTGATAATGTTCTCAGTTTTATGTTTGTTGTCATATTTCTTAGATTTTGAATTTCGTGATGGTGATTACTCAATAGTTTTTTAGTTCGTTAATCATTTACTGATAATTTTTCAGTCCCATTTAGCATATTAGTTTGTAAGATGATTAATAGTTTTTCACATTTTCTTATTTCAGTCTGTGTTCAGTTCATCAATTATCAGTTAAACTAGATTTCAGTTTGTAGTGTTTTACTTTTGATTTTTAGTCTTTGTTTATTTTTGAGTCTTAATTTTTCAGGCTTGTATGTCTATGTCTTAGTCATAGTTCTTTTTTCAGTTAGCAAGCTGATGAATAGTCAGTTAGTTTTCAATTTAGGTCATTAGTCATTACTTATTAGCCATGTTTAGTCATCTATTAGTTAGTTCATCAGTATCTTCAGTTAGTCAAGTGTGTTCAAATTATCAGCTCATTTCATTTAATCTAACCTTCACTCGTTGTATAGGTTATCATTGTATTTATTTTCAGTCTTTCATCTTCTTCGAGTTGATCAGTCCATATTGTCTCCCTTAATAGTTAAGTTATTTAGTCATCTATCAATTACACTGGTAGAAAATGGGCCTTTAGTCCCGGTTCGCAAAGGCCTTTAGTCCCGGCTGTGCAACCGGGACTAAATATGCGCGACTAAAGACCCCCCCCCTTTAGTCGCGCCTCTTACGAACCGCGACTAAAGGCCCGTCCACGTGGGCGCCAGGGGTCCGTCGGGGCGGAGGACCTTTAGTCCCGGTTCTCGTGGCTAACCGGGACTAAAGGCCCGTCCACGTGGGCGCCAGGGGTCCGTCGGGGAGGAGGACCTTTAGTCCCGGTTCTCGTGGCTAACCAGGACTAAAGGCCTCCTCCGCAGGTTTAGGGTTTTAGCCCCCCTAAACCTGGTTTCTTTTTAATTTGTAGTGTTTTATTTCTTTTATATTTTATTTTGTGTTTTATTTTAATTTTGATGAAGTTTCAGTACACATATTCTACGCTACTATATACATGCATATGAAATTTCAAACAAGAAGAATTCAAGAGGAATATATAATATATATTCAATCTCGGGTGACCATATACAACTTCGAACAAGTTTCCATACACAATTAGGATGGATGACCATATACAACTTCGAACAAGTTTAAATCTCGGGTATGCATATAAATTTCTTCGTCCTCGGTATAGTGTTCTCCTTTAGGATTGATGACTTCCCTCATGAAAAATCCTGCTAATTCATCTTGAATTGGTCGGAAGCGAGCTTCTGGACTAAGCCTCCTCCGCAAGTTATCCGTCGCCTTCCGCACGCTATCCGATGCCTTCCGCTCAGAGGTGTGTCTCCGGATGTTCTCACAAACATAGTATCCACATAGATTGGTCCCCGGTGGCTGCTTATCCACACTAACTAACCTTCTAAAATCTAGCTCATGTTTGAATTCACCGACAATTTCTTCTGAGAACTGTCTCCAAACCCTACAGGGCAAAGAAAATTAAATGAACAAGGGAGTTATTAGTTACTTGATATTAGGAAATGAACGAAAGAGACCGATCGATATAGAGCTCAAATGATTGAAAATAATTACTTTTGCAGCAGTTTTCTCATGTCGGCCCAACGCTTTGGATCCGAATCCATAGAGTCCATGATTAGAACTCTGGAGGTGTGAAGTTCAATATTTAGCAGAATCCAGTGGAACCTGCGGACACGTTACATGCACAGTCATGCATAACTCATCGATTAGACATACCATGCATGGAGTAAACACAAGAGAATGGGCACAAGAGAGAAACACTCACCCAAAATGGTAAGGAAATAGAATATGACTTTTGAGTTGATGCTTTCTAAGAAACTTGTACAAGTCTTTCTCCACGTCTTCGGGGTGATTTTGTAACACATGTCCATTAACGATATGTGGGTCAATGAACCCAACATCATGGATGTTTCTTATTTTGCATTCCCAAATCTTCAATCTGCATAATAGCGTACGCAACAATATAGTTAGGACAATATATATATATATATATATATATATATANNNNNNNNNNCAACGCTTTGGATCCGAATCCATAGAGTCCATGATTAGAACTCTGGAGGTGTGAAGTTCAATATTTAGCAGAATCCAGTGGAACCTGCGGACACGTTACATGCACAGTCATGCATAACTCATCGATTAGACATACCATGCATGGAGTAAACAAAAGAGAATGGGCACAAGAGAGAAACACTCACCCAAAATGGTAAGGAAATAGAATATGACTTTTGAGTTGATGCTTTCTAAGAAACTTGTACAAGTCTTTCTCCACGTCTTCGGGGTGATTTTGTAAGACATGTCCATTAACGATATGTGGGTCAATGAACCCAACATCATGGATGTTTCTTATTTTGCATTCCCAAATCTTCAATCTGCATAATAGCGTACGCAACAATATAGTTAGGACAATATATATATATATATATATATATATATATATATATATATATATATATATATTTATTTATTTATTTATTTATAGTGCAGGCAATGAAGAACGAGATGAGGTAGAAATAAATCACTTACAGAACGTAGCAACTCAGCATAGATTTGTCGAGGTCGCGCAGATTGAACAGCTGGAACAATTCACTCATATGAACTTGTACAGAGTACCGTTTGGTGTGATGCTCCTCTGTAACATCCGCATAAACATATTCTTTGTCGGCCCATGTTATGAATTGCTTGTACCAACGTAGCAGATTTCGCATTTGTGGTGGTAGACTCTTTTCCCGCGCAGGCTCGACGAGAGGCCCATTCCGCACATATTGTAATGCTATCTCACATACTGGCGCATCCTCAAGGCCTAAGAAGGCACGAAGAGTCAAACCCATCTCGGACGCTTGTTTCATGGCACTCGCTACAGTCAATCCAAGTGCTGCCGCAGCTGCTATGATCTCGGGGTCCTCTTNNNNNNNNNNCACTCACCCAAAATGGTAAGGAAATAGAATATGACTTTTGAGTTGATGCTTTCTAAGAAACTTGTACAAGTCTTTCTCCACGTCTTCGGGGTGATTTTGTAACACATGTCCATTAACGATATGTGGGTCAATGAACCCAACATCATGGATGTTTCTTATTTTGCATTCCCAAATCTTCAATCTGCATAATAGCGTACGCAACAATATAGTTAGGACAATATATATATATATATATATATATATATATATATATATATATATATATATAGTGCAGGCAATGAAGAACGAGATGAGGTAGAAATAAATCACTTACAGAACGTAGCAACTCAGCATAGATTTGTCGAGCTCGCGCAGATTGAACAGCTGGAACAATTCACTCATATGAACTTGTACAGAGTACCGTTTGGTGTGATGCTCCTCTGTAACATCCGCATAAACATATTCTTTGCCGGCCCATGTTATGAATTGCTTGTACCAACGTAGCAGATTTCGCATTTGTGGTGGTAGACTCTTTTCCCGCGCAGGCTCGACGAGAGGCCCATTCCGCACATATTGTAATGCTATCTCACATACTAGCGCATCCTCAACGCCTAAGAAGGCACGAAGAGTCAAACCCATCTCGGACGCTTGTTTCATGGCACTCGCTACAGTCAATCCAAGTGCTGCCGCAGCTGCTATGATCTCGGGGTCCTCTTCCGGACCGGCTTTCACTATGAGCGGGGGGATCGATTGTTTATTCTGCATCCCGAGCTGGTCAACTTGTTTCCCGCTTTTTTTACTTTCTTCTTTCTCCTCCTTCAATATTTTTGCTTGCCTACGAAGTTCATGTCCATAGTCGTCAGGCATATTCAGCTCGGCTTGGGACGGTGTCGTCAAAAAATCCTTAGCCCACTTCTTTTGCTTCTCAGTGAATACTTGCTTGGGCTCAGGCTCTTTTATCGCCTTCATATCCGCCTTCCATTTCTCATAATGAGCAGACGCGGCCAATTTGGTTTCAGCTTCACTAAGTTCCCAAGGCCTTGGGAGGAGAGGCTTCAGTGATGGCTCCGGTACCCTTGTGGTCTTAGGTACATAAGGGTCCGGGTTAATAGTCCAGGAGCGGGTTTCCTTGCTATCCGCCTGCTTCTGCTTCTTCGCCGGAGGTGGATTGGGGGGCGTCGTACCCGCCGGAGGAGGATTGGCGGGCGTCGTACCCGCCGGAGGTTGTGGATCGGGGGACGGCGTCGAATGGCGTGAAGGAGGTGTAGGTGAACCACCACGACCACCACCACCGCCACCACCACCACCACCACCATCGGAGGGGGGTGGACTTGTTAGCCTTGGCGCCTCGCCTGGAAACACTATGTACTTCTTTTTCCATAGAATGATCTGGCGCTTGACATCTCCAAGTCTTCTCTCTCCTTCGGGTGTAGCTTTGTCAATCTCCAGGTCCTCAAACCCTTGGACTATGTATTCCACCGTGACACGAGCATAGCCATATGCAATGGGGTTGTTGTGGTGGAGTGCTCCAGGTGTACAGGGTAAAGCACTGCCGCTAGCTACCTTCGTGGAAACGTTCCCCACGGGATAATGCAGATCACATTCTTTCATCTCCTTTACATCATCCACGGGGTAGTGAGGCTCCGGTGCACGAATCTCGATCATCAGTGCACTAGCACCAGGCGGGGCATCCGTGGAAGCCACGCTGCTTCTCCGCTACTGGCTTCCGCGATCCGCTTCATGATCTTCATGCGGCCCTGCAGCCGATTTTTCTTTTACTAGTTCATGCACGGTCGGCTTCAACTCATGGAGTTCCGATGCAAACTTCGCCATAAGATCTGCATCCCGGTCCGTCTTTCTCTTACGGCTTCTGTAACAGTACGGGTCATTGTCCTGGGAAAACCCTACTTTCCACGGAACTTTGCCTTTGCCTCGTACACGTCCTCCGTGTTCATCATTCCCGAGGGCTGTTGTCAGTGCGTCTTTCTCTCTGTTGAACTTGATCAAGCCCTCTTGAGCTTGGATCATTGCGTCAATAAGGGCTTGGGTGGGAGCAAACTTTTTCTTCCGGTGAACACACAACCCTGTCTCCGGGTCTAGTGATCCCCCATGCCCGTACCACCAGCTTTTGGCCCTTGGGTCCCATCCCTCTGTACCTAGAGGGATTCCTCGCACCCTCAGGTCCTCCTCCATCTTCTGCCACTTAGACTCCGAAAGGCGGTATCCTCCTGGCCCCATAATATGATGGAACTTTTTCTTACTCGCATTATCCTTATTTTTTTCGATATTTCCTTGAAATGCTCCGATTGCTTTTGCCTCACAAATTCTGGCCAATCATCTTTCAGTTTCTCATGTAGTCCATTGAAATCCGGAGTCTTGCCCTTGTTGACATAGTCACGGGTTAAATTTTTCTTGAAGTTCCGGAATGCTTCGCCCATCTTCTGAAAAGCGAACTCTTTAACTAGCCTCCTCCTCTCACGTCCACCCGGAACCTCGTTACCAAATTCATCGACTTTGTTGTATTCCGGAGGTAGAATGAAATGTTCCATAGCTTTCTCCAGCAATCCTTTTTCGTTCTCTTGTCGACAAAACTGAAACCAAGACGTGCCTTCTTTGGCTCCTTCCATTCCTGGACGGTGATCGGGACGTTGTCTCTAACAACGACTCCGCATTGGTTGATAAACTTTGAGGTGTGCTGTAGGGGCTTGCCGGTTTCACTGACAAACTCAATGGCATATGTTTCTCCTGTTTTCATCGCCTTGGATTTGCCACGCTTTGTCGTACTCGATCCGGCCGAGGGCTAAAAAAAGAAAGAGAGTCGCGCGCATTAATACATATGTATTCACATTTCAGTAAGTTTGTATCACGAGAGGCTCAATGTATATATATACCTCGCCGGAGGTGGTTGCTACTTGCAATTCGAGATCGTCGTTTGTTGACGGTTGACCTCCGTCGACAATGTCCGTTCCTCCACCTTCTTGATCATCGACAATGTCTGTTCCACCGTCAAGGTTCAGAAAAGAAGAGACTACATCCTCTTCTTGCTCATATTCTGAGCCCGGCACATAAGGAATCTCGTTGTTTATGATGCCCATTAAATAACGTTCAGCCTCCGGATCCCTAAGCGGCTCGGCTCTATCGTCCGCCATATGTCACTCCTGCATGTAGTAAAAATTAATTAAGTATAAAGGAATTAAAAAATAAGATTAAGGAGACATAGAGGAGGAGGAATTAAAAAATAAGATTACTGAGCACTGCCAAGTATTTTGTTTTTCCTTTTCTTTTTCCTTTTCTTATTTTCTTTTTCCTTTTCTTATNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTCTTCTTCCTTTTCTTCTACCTTTTCTTCTTCCTTTTCTTTTTCCTTTTCTTCTTCCTTTTCTTCTTCCTTTTCTTCTTCCTTTTCTTTTTCCTTTTCTTATTTTGTTTTTCTTGGTTTTCATTGGTTTTCTTTGTTTCTTTCTCGATTTTCTTGATTTCATTCCTTTGCATTGGTTTCTTTTGTTTTGTTTTCTTTGTTTTTCTTTTTGGTTTTCATTGGGTTTCTTTGTTATTCCTTATCTTTTGTCGATTTTATCGGTTTCTTTTTGCTTCAACACGTGTTAACTTTTTCAACCTTTTTCTTATACATCAGAAAGATTTTCATATATACATTTAACATTTTTAAACACATGATTAAGTTTTTTTTGAAAACTTATTTTTTTGGATGTATGGGTTTTTTTCATACACACTGTACATTTTTGGCATATATCTAATACATTTTCCTAATACATGTTTAACATTTTCCTAATACATGTTTAACATCTTCCAAACACATTTTAATATTTTTTGAACACATGGTCAACATTTTTCCTTCGTTTGTGGAGGCGGCGGCGGGAGGCGGAGGACGGCAGGCGGCGACGGGAGGCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNATCAAAAAATTCAGAAAAATAAAACTAATTCATTTTAAAACCTTAAAAATACAAATAATATATCAAAAAATTCAGTTCATCGATCCCTTGAAGGTTTGACAAAAGGTTTGATACATCATTCAGTTCATCGACCAAATACAAATCATCCGGATTCGCCATCGTACGTTTTAATTCACATGATCCATTCAACAAAGTTTGGTACAATACATTATTACACATCAATTCCTCCCTTGTGTCCCTGCTTGCTTACGATTGTGCCGTATCCATGGAGCATCCTCATCATTTAACTTAATGCTTGGGTCAGTGTTCACTTTGAAGGACAGAATTTCACCAAACATATTATAATCTTCTGACATGTCTGTCTTGTCCTCCACTCCCACGATGTTTCTTTTCCCTGAAAGAACAATGTGGCGCTTTGGATCATCGCATGATGTACTGATCGTTTTCTTATCTTTCTGTTTCCTCGGTTTGCTACTCATGTCCTTCAAATAAAAAACCTGAGCGACATCTTTGGCAAGGACGAAGGGTTCGTCAAGGTAACCAAGATTGTTGAAATCCACCATTGTCATTCCGTATTGCTCGTCCATCTTTACCCCACCTCCTGTTAGCTTGAACCATTTGCACCGGAACAAAGGGACCTTAAAGGAGGGTCCATAGTCAAGTTCCCATATCTCCTCTATGTAACCATAATATGTGACCTTTTGCCCATTCTCGGTTGCTGCATCAAAGCGGACACCACTGTTTTGGTTGGTGCTCTTTTTATCTTGGGCGATGGTGTAAAATGTATTCCCATTTATCTCGTACCCTTGGAAAATCGTTATAGTCGAAGATGGTTTCTTGGCCAACATGTACAGCTGATCTCTAACATCATTGTCATTCATTAAATGTTTTCGCAATCAACTGCCGAAAGTCTCCATGTGGGCCTTTCTAATCCAGGATTCAGGCTTCCCCGGGTTGTTCGAGTGTAAAATATTCTTGTGTTGCTCGAAGAACGGAGCCACCAAGCTGGAATTTTGCAGAACTGTGTGGTGTGCTTCAGTCATAGAATGACCGTCCATACATATCGTTGATTTCCTTCCGATCGTGCCTTTTCCACTTAGTCTCCCCTCGTGCCGCGATTGAGGAATACCAATCGGCTTAAGGTCAGGAACATAGTCAATACAGAACTCAATTACCTCCTCATTTCCATAGCCCTTGACGATGCTTCCTTCTGGCCTAGCACGGTTACGAACATATTTCTTTAATATTCCCATGAACCTCTCAAAGGGGAACATATTGTGTAGAAATACAGGACCGAGAATGGAAATCTCTTCGACTAGGTGGAGCAGGAGGTGCGTCATAATATCGAAGAAGGATGGTGGGAACACCAACTCGAAACTGACAAGGCATTGGACCACATCGTTCTGTAACCGTGGTAGATCTTCTGGATTGATTACCTTCTGAGAGATTGCATTGAGGAATGCACATAGCTTCACAATGGCTACTCGAACATTTTCCGGTAGGAGCCCCCTCAAAGCAATCGGAAGCAATTGCGTCATAATCACGTGGTAGTCGTGAGACTTCAGGTTTTGGAACTTTTTCTCCGCCATGTTTATTATTCCCTTTATATTCGACGAGAAGCCATACGGGACCTTCATACTGCTCAGGCATTCAAAAAAAATGACCTTCTCTTCTTTGGTAAGAGCGTAGCTGGCACGACCTTGAAACCATTCCGGATGCCGGCCATCTGGGTCTTTCAAAAGTTGCTGGTCCTGCCGTGCTTCCTTTGTATCATTTGTCTTCCCATACACGCCCAAGAAGCTTAGCAGGTTCACGGAAATATTCTTCGTAACATGCATCACGTCGATTGCAGAGCGGACATCTAGGACTTTCCAATATTCTAGCTCCCAAAATATAGATTTCTTCTTCCACATGGGTGCGTGCCCGTCAACTCCCCGCGGAACTGATTGTCCGCCAGGACCCTTTCCAAAGATGACTTTCAAATCCTTGACCATATCAAATATCTCAGCACCAGTACGTTCCGCAGGCTTTGGCCGGTGATCTGCCTTGCCGTTGAAATGCTTGCCTTTCTTTCTTACGTTATGATTTCGGGGAAGAAATCGACGATGACCCAGGTACACGTTCTTCTTACAATTAACCAAACGTACACTTTCAGTCTCATGTAAGCAGTGTGTGCATGCATTGTATCCCTTATTTGTCTGTCCCGAAAGGTTACTGAGAGCAGGCCAATCGTTGATGGTTACAAAAAGCAACGCTCGTAGGTCAAATTCCTCTCCTTTGTGCTCATCCCAGACACGTACACCAGGTCTGGCCCACAACTGTAAAATTTCATCAACTAATGGCCTTAGGTACACATCGATGTCGTTCCCGGGTTGCTTTGGACCTTGGATGAGCACTGGCATCATAATGAACTTCCGCTTCATGCACAACCAAGGAGGAAGGTTGTAGATGCATAGAGTCACGGGCCAGGTGCTATGGCTGGAGCTCTGCTCGCCAAAAGGATTCATGCCATCAGTACTTAGACCAAATCTTATGTTCCTTGCGTCAGCTGCAAAATCTTTGAACACTCTGTCGATCTTTCTCCATTGCATTCCATCAGCGGTGTGTCTCAACTCCCCGTCGGACTTACGGTCCTCTTTATGCCATCGCAACGACTTGGCATGCTTTTTGTTCCTGAACAGACGTTTCAACCGTGGTATTATAGGAGCATACCACATCACCTTGGCGGGAACCCTCTTCCTGGGTTTCTCGCCCTCAACATCGTCACCAGGGTCATCGCCTCTGATCTTATAACGCAATGCAGTGCATACAGGGCATTCATTCAAATTCTCGTATTCACCGCGGTAGAGGATGCAGTCGTTAATGCATGCATGTATCTTCAGAACCTCTAAACCTAGAGGGCAGACAACCTTCTTTGCTTCGTACGTACTGGAGGGCAACTCGTTATTCTTCGGAAACATGTTCTTCAACATTTTCAGCAAATTTTCAAATGATGAGTCACCTACACCTTCCTGTGCCTTCCATTTTAGCAAATCCAGTGTGCAGCCCAGCTTTTTCAGACTATTATCGCATCCTGGATACAACGACTTTTTGTGATCCTCTAACATGCGATCCAAATTCTCCCTATCCTTGTCAGTTTCGCAGCGTCTCCGTGCATCAGCAATGGTCCGACCAAGATCATCAGCGGGCTCATCATGTGCCTCTTCTTCACCTTCACCTAACCCTTCCCCACCTTCAGCATCATCCTCCATGAAAGTATCACCGAAATGATCATGATAGTTGTCATCGATATCATCCCCTTCTTCATCTTCTTCCATTCTAACCCCTCTTTCTCCATGCTTGGTCCAACAATTATAGCTTCGCATGAAACCGTGCCGAAGCAGGTGCATGTGAACGTCTCTTGAGGAGGAGTAACCCTTCTGATTCTTACAAACAGCACATGGACAGATAATAAAACCTTGCTGCTTGTTCGCATTTGCCACTACGAGGAAATCTTTCAAACCCGTAGTGAACTCGCCGGAGAGTCGGGGACCGTACATCCATTGCCGATTCATCTGCATTATTATTATATAAAGTATATAATTGACCATCATGCATTTGTTAAACTAACTAGCTAGAAATAATACAAATTAAACAATGAACTACACACATGCATATTTTATCAATGACACATGAAAGGTTCAAGTTGCTAACCGCGATCGCGAAGGAAAAATAAATGAGAAAGCTCAAGTGTGGCTCGGACACTTCGTATCATGTTTGTTTCAGGCTCTCAGGCATTTCATCGAACACCTTGTGTGCATAGGAGGAACCAAAAGCAAACCCGCCACCCCCTTCTGAATATTGTGAAGTGAGCTGAGTGAAGTGAAGTGAGCTGAGTCCTATATATAGGGATGGGCCTTTAGTCCCGGTGGCCTGGCCAACCGCGACTAAAGGCCTTCGGGGACCTTTAGTCCCGGTTGGCCAGGCCAACCGGGACTAAAGCCCCTCCCGTCCGCCAGCTGTCGACCGAGCGCGCTGGGCCCAGATAGTTGGTCGCGGGTCTCCTCCCGAACCGCAACTAAAGACCCCTTTGTCGCGGTTCGATTATTTTGGGGACTAATGGGGGCGTATGGAAGCCTCTTTTTCTACTAGTGTTAGTTCATCAATATCACTAGTAAGTTCAATGTGTTCTGTTCATTAATTAGTTCAATTTCTTTAGTATTCATTTGTTTATTCACTTCTTTAGTTTATATTACATCATTAATTCTTATAATTATCAGTGTTTTTTTTTGTTCTTTTCACATTCTCGTTTGGTGCACTATCTCACTACGACGAACAATGAACTACCATAGGTGGTATGTAGGGGTTTTCACGATTTCTTAGATATGTACTCTTCACAAATCATTATTTCATTATGCAGGCATGTCTATATATGTATCTTCACTCTTCACTCATTCTATATTTTGTCATTCATTCATCACTATTCACTTATCAGGACATTTGTTTCATCCTTTAAGTATTTTGTTAAGTCCATTCTCTATTCCTTAGTCATTTGTTCCATTTAACTTGATAACACAACATTTTATCATCGATTGGAACACTTTTTGTTCATGTGTAGTTCTGACCAGCTAATCAGTGATGGTCACTGCCTAGAACTAAGAATTAGAGTTATATGTACCTATGTTCTGATTCCAAATGTTTGAGTTATCATTAATACATTTTCATAGGTTTTTTTTATTTCCTATCATTCAAAGATCAGGACACTTTCAATCCATATTTTTTGGTGGAGTGTTGATGAATGGTGTGTGTCATACCTGGCCAAATGGCTCGGCACGGCCCGGCCTGCGGTAAACGTGCACGACACGACCCGCGACGGCACGACTAATAGCCGGGCCGTGCCGGGCCGGCCCACGGGCGGGAGCTCGCACCCTAGGCACGGCCCAGCTACTAATTGGGCCGGCCCACCTGAAGGAAATATGCCCTAGAGGCAATAATAAAGTTACTATTTATTTCCTTATTTCATGATAAATGTTTATTATTCATGCTAGAATTGTATTAACTGGAAACATGATACATGTGTGAATACATAGACAAACAGAGTGTCACTAGTATGCCTCTACTTGACTAGCTCGTTGATCAAAGATGGTTATGTTTCCTAGCCATAGACATGAGTTGTCATTTGATCAACGGGATCACATCATTAGGAGAATGATGTGATTGACTTGACCCATTCCGTTAGCTTAGCACACGATCATTTAGTATTCTGCTATTGCTTTCTTCATCACTTATACATGTTCCTATGACTATGAGATTATGCAACTCCCGTTTACCGGAGGAACACTTTGTGTGCTACCAAACGTCACAACGTAACTGGGTGATTATAATGGTGCTCTACAGGTGTCTCCGAAGGTACTTGTTGGGTTGGCGTGTTTCGAGATTAGGATTTGTCACTCCGATTGTCGGAGAGGTATCTCTGGGCCCACTCAGTAATGCACATCATTATAAGCCTTGCAAGCATTGTAACTAATGAGTTAGTTGCGGGATAATGTATTACGGAACGAGTAAAGAGACTTGCCGGTAACGAGATTGAACTAGGTATTGAGATACCGACGATCGTATCTCGGGCAAGTAACATACCGATGACAAAGGGAACAACGTATGTTGTTATGCAGTTTGACAGATAAAGATCTTCGTAGAATATGTGGGAGCCAATATGAGCATCCAGGTTCAGCTATTGGTTATTGACCGGAGACGTGTCTCGGTCATGTCTACATTGTTCTCGAACCCGTAGGGTCCGCACGCTTAAAGTTCGATGACGGTTATATTATGAGTTTATGTGTTTTGATGTAACGAAGGTAGTTCGGAGTCCCGGATGAGATCGGGGCATGACGAGGAGTCTTGAAATGGTCGAGACGTAAAGATCGATATATTGGACGACTGTATTCGGACATCGGAAAGGTTCCGAGTGATTCGGGTATTTTTCGGAGTACTGGAGAGTTACGGGAATTCGCCGGGGAGTATATGGGCCTTATTGGGCTTTAGGGGAAATAGAGAGGAGAGGCTGGGCGCCCCCCCAAGGCCTAGTCCGAATTGGACTAGGGGAGGGGCTGCGCCCCCTCCTTCCTTCTCTTCTCTCTCCCCTTTCCTTGACTCCTACTCCTACTACTTGGAAGGGGGGGAATCCTACTCCCGGTGGGAGTAGGACTCCTCCTAGGGCGCGCCATAGAGAGGGCCGGCCCTCCCCCTCCTCCACTCCTTTATATACGGGGAGGAGGGCACCCCTTGGAGATACAATAATTGATCGTTTGATCTTTTAGCCGTGTGCGGTGCCCCCCTCCACCATAGTCCACCTCGATAATACTGTAGCGGTGCTTAGGCGAAGCCCTGCGTCGGTAGAACATCATCATCGTCACCACGCCGTCGTGCTGACGAAACTCTCCCTCAACACTCGGCTGGATCGGAGTTCGAGGGACGTCATCGGGCTGAACGTGTGCTGAACTCGGAGGTGCCATGCGTTCGGTACTTGATCGGTCGGATCGTGAAGACGTACGACTACATCAACCGCATTGTGCTAACGCTTCCGCTTCCGGTCTACGAGGGTACGTGGACAACACTCTCCCCTCTCGTTGCTATGCATCACCATGATCTTGCGTGTGCGTAGGAATTTTTTTGAAATTACTATGTTCCCCAACAGTGGTATCAGAGCCAGGTTTTATGCATAGATGTCATATGCACGAGTAGAACACAAGTGAGTTGTGGGCGATATAAGTCATACTGCTTACCAGCATGTCATACTTTGGTTCGGCGGTATTGTTGGATGAAGTGGCCTGGACCGACATTACGCGTACGCTTACGCGAGACTGGTTCTACCGACGTGCTTTGCACACAGGTGGCTGGCGGGTGTCAATTTCTCCAACTTTAGTTGAACCAAGTGTGGCTACGCCCGGTCCTTGCGAAGGTTAAAACAACACCAACTTGACAAACTATCGTTGTGGTTTTGATGCGTAGGTAAGAACGGTTCTTGCTAAGCCCAGTAGCAGCCACGTAAAACTTGCAACAACAAAGTAGAGAACGTCTAACTTGTTTTTGCAGGGCATGTTGTGACGTGATATGGTCAAGACATGATGCTAAATTTTATTGTATGAGATGATCATGTTTTGTAACCGAGTTATCGGCAACTGGCAGGATCCATATGGTTGTCGCTTTATTGTATGCAATGCAATTGCCCTGTAATGCTTTACTTTATCACTAAGCGGTAGCGATAGTCATAGAAGCATAAGAGTGGTGAGACGACAACGATGCTACGATGGAGATCAAGGTGTCGCGCCGGTGACAATGGTGATCATGACGGTGCTTCGGAGATGGAGATCACAAGCACAAGATGATGATGGCCATATCATATCACTTATATTGATTGCATATGATGTTTATCTTTTATGCATCTTATCTTGCTTTGATTGACGGTAGCATTATAAGATGATCTCTCACTAAATTTCAAGATAAAAGTGTTCTCCCTGAGTATGCACTGTTGCCAAAGTTCGTCGTGCCCAGACACCACGTGATGATCGGGTGTGATAAGCTCTACGTCCATCTACTACGGGTGCAAGCCAGTTTTGCACACGCAGAATACTCAGGTTAAACTTGATGAGCCTAGCATATGCAGATATGGCCTCGGAACACTGAGACCGAAAGGTCGAGCGTGAATCATATAGTAGATATGATCAACATAGTGATGTTCACCATTGAAAGCTACTCCATTTCACGTGATGATCGGTTAAGGTTTAGTTGATTTGGATCACGTGATCACTTAGAGGATTAGAGGGATGTCTATCTAAGTGGGAGTTCTTAAGTAATATAATTAATTGAACTTAAATTTATCATGAACTTAGTCCTGGTAGTATTAGCATATCTATGTTGTAGATCAATAGCTCGCGTTGTTGCTTCCCTATGTTTATTTTGATATGTTCCTAGAGAAAAACTATGTTGAAAGATGTTAGTAGCAATGATGCGGATTGTATCCGTGATCTGAGGATTATCCTCATTGCTGCACAGAAGAATTATGTCCTTGATGCACCGCTAGGTGACAGACCTATTGCACGAGAAAATGCAGACGTTATGAACGTTCGGCTAGCTCAATATGATGACTACTTGATAGTTTAGTGCACCATGCTTAATGGCTTAGAATAGGGACTTCAAAGACGTTTTGAACGTCATGGACCATATGAGATGTTCCAGGAGTTGAAGTTAATATTTCAAGAAAATACCCGAGTTGAGAGATATGAATTCTCCAACAAGTTCTATAGCTAAAAGATGGAGGAGAATAGCTCAAGCAGTGAGCATATGCTCAGATTGTCTGGGTACTACAATCGCTTGAATCAAGTGGAAGTTAATCTTCCAGATAAAATAGTGATTGACAGAATTCTCTAGTCACGATCACCAAGTTAGTAGAACTTCGTGATGAACTATAATATGCAAGGGATGACGAAAGTAATTCCCGAGCTCTTCGCGATGTTGAGATCGACGAAGGTAGAAATCAATAAAAGAGCATCAAGTGTTGATGATTAACAAGATCACTAGTTTCAAGAAAAGGGCAAAGGGAAAGAAGGGCAACTTCAAGAAGAACGGCAAGCAAGTTGCTGCTCAAGTGAAGAAGCCCAAGTTTTGACCTAAGCCTGATACTGAGTGCTTCTACTACAAAAAGAACTGGTCACTGGAACAAAAGTATATTTGATATACATGTTATTGATGTGTACTTTACTAGTGTTTATAGCAACCCCTCGGTACTTGATACTGGTTCAGTTGCTAAAGAGTAGTAACTCGAAACGGGAGTTGCATAATGAACAGAAACTAGTTAAGGATGAAGTGACGATGTGTATTGGAAGTGGTTCCAAGATTGATATGATCATCATCGCACACTCCCTATACTTTCGGGATTAGTGCTGAACCTAAATAAGTGTTATTTGGTGTTTTGCGTTGAGCATGAATATGATTTGATCATGTTTATTGCAATACGGTTATTCATTTAAGTTAGAGAATAATTGTTGTTCTGTTTACATGAATAAAACCTTATATGGTTACACACCCAATGAAAATGGTTCGTTGGATCTCGGTCGTAAGTGATACACATATTCATAATATTGAAGCCAAAAGATGCAAAGTTAATAATGATAGTGCAACTTATTTGTGGCACTGCCGTTTAGGTCATATTGGTGTAAAGCGCATGAAGAAACTCCATGCTGATGGGCTTTTGGAATCACTTGATGCTTGCGAACCATGCCTCTTGGGCAAGATGACTAAAACACTGTTCTCCGGAACAATAAAGCGAGCAACAGATTTGTTGGAAATCATACATACTAATGTATGTGGTTCGATGAATATTGAGGCTCGTGACAGGTATCGTTATTTTCTGACCTTCACAGATGATTTGAGCAGATATGGGTATATCTTCTTGATGGAACATAAAGTCTGAAACATTTGAAAAGTTCATATAATTTCAGAGTGAAGTGGAAAATCATCGTAACAAGAAAATAAAGTTTCTATGATCTGATCGTGGAGGAGAATATTAGAGTTACGAGTTTGGTCTTCATTTCAAACAATGCAGAATAGTTTTGCAACTCACGCCACCTGGAACACCACAGCGTAATGGTGTGTCCGGACGTCATAACCATACTTTATTAGATATGGTGCGATCTATGATGTTTCTTACCGATTTACCACTATAGTTTTGGGGTTATGCATTAGAGACAGCTGCATTCACGTTAAATGGGGCACCATCGAAATCCGTTGAGACGACACCTTATGAACTGTGGTTTGGCAAGAAACCCAAGTTGTCGTTTCTTAAAGTTTGGGGTTGCGATGCTTATGTGAAAAAGTTTCATCCTGATAAGCTCAAACCCAAATCGGAGAAATGTGTCTTCATAGGATACCCAAAGGAGACAGTTGGGTACACCTTCTATCACAGATCCGAAGGCAAGATATTTGTTGCTAAGAATGGATCCTTTCTAGAGAAGGAGTTTCTCTCGAAAGAAGTGAGTGGGAGGAAAGTAGAACTTGATGAGGGAACTGTACCTGCTCCCTTATTGGAAAGTAGTTCATCACAGAAATCTGTTCTTGTGACTCATACACCAATTAGTGAGGAAGCTAATGATGATGATCATGTAACTACAGATCAAGTTACTACCCAACCTCGTAGGTCAACCAGAGTGAGATCAACACCAGAGTGGTATGGTAATCTTATTCTGGAGGTCATGTTACTTGACCATGACGAACCTACGAACTATGAGGAAGCGATGATGAGCCCAGATTCCGTGAAATGGTTTGAGGCCATGAAATCTGAGATGGGATCCATGTATGAGAACAAATTATGGACTTTGATTGACTTGCCCAATGATCGGCGAGCCATTGAGATTAAATGGATCTTCAAGAGGAAGACGAACGCTGATAGTAGTGTTACTATCTACAAAGCTAGAATTGTCGCAAAAGGTTTTCGACAAGTTCAAGGTGTTGACTACGATGAGAGTTTCTCACTCGTATCTATGCTTAAGTCTGTCCGAATCATGTTAGCAATTGCCGCATTTTATGAAATCTGGCAAATGGATAAACAAAACTGCATTCCTTAATGGATTTATTAAAGAAGAGTTGTATATGATGCAACCAGAAGGTTTTGTCGATCCAAAAGGAGCTAACAAAGTGTGCAAGCTCCAGCGATCCATTTATGGACTGGTGCAAGCATCTCGGAGTTGGAATATACGCTTTGATGAGTTGATCAAAGCATATAGTTTTATACAGACTTGCGGTGAAGCCTGTATTTACAGGAAAGTGAGTGGGAGTACTACAACATTTCTGATAAGTATATGTGAATGACATATTGTTGATCGGAAATAATGTAGAATTATTCTGCAAAGCATAAAGGAGTGTTTGAAAGGAGTTTTTCAAAGAAAGACCTCGGTGAAGCTGCTTACATATTGAGCATCAAGATCTATAGAGATAGATCAAAATGCTTGATAAGTTTTTTCAATGAGTACATACCTTGACAAGATTTTGAAGTAGTTCAAAATGGAACAGTCAAAGAAAGAGTTCTTGCCTGTGTTACAAGGTGTGAAATTGAGTAAGACTCAAAGCCCGACCACGGCAGAAGATAGAAAGAGAATGAAAGTCATTCCCTATGCCTCAGCCATAGGTTCTATAAAGTATGCCATGCTATGTACCAGATCCATTGTATACCCTACACTGATTTTGGCAAGGGAGTACAATAGTGATCTAGGAGTAGATCACTGGACAGCGGTCAAAATTATCCTTAGTGGAATAAAGATATGTTTCTCGATTATGGAGGTGACAAAAGGTTCGTCGTAAAGGGTTACGTCGATACAAGTTTTGGCACTGATCCAAATGACTCTATGTCTTGATCTGGATACATATTGAAAGTGGGAGCAATTAGCTAAAATAGCTTCGTGCAGAGCATTGTAGACATAGAAATTTGCAAAATACATACGGATCTGAATATGGCAGACCCGTTGACTAAACTTCTCTCACAAGCAAAACATGATCACACCTTAGTACTCTTTGGGTGTTAATCACATAGCGATGTGAACTAGATTATTGACTCTAGTAAACCCTTTGGGTGTTGGTCACATGACGATGTGAACTATGGGTGTTAATCACATGGTGATGTGAACTATTGATGTTAAATCACATGGCGATGTGATCTAGATTATTGACTCTAGTGCAAGTGGGAGACTGAAGGAAATATGCCCTAGAGGCAATAATAAAGTTACTATTTATTTCCTTATTTCATGATAAATGTTTATTATTCATGCTAGAATTGTATTAACCGGAAACATGATACATGTGTGAATACATAGACAAACAGAGTGTCACTAGTATGCCTCTACTTGACTAGCTCGTTGATCAAAGATGGTTATGTTTCCTAGCCATAGACATGAGTTGTCATTTGATCAACGGGATCACATCATTAGGAGAATGATGTGATTGACTTGACCCATTCCGTTAGCTTAGCACACGATCATTTAGTATTCTGCTATTGCTTTCTTCATCACTTATACATGTTCCTATGACTATGAGATTATGCAACTCCCGTTTACCGGAGGAACACTTTGTGTGCTACCAAACGTCACAACGTAACTGGGTGATTATAATGGTGCTCTACAGGTGTCTCCGAAGGTACTTGTTGGGTTGGCGTGTTTCGAGATTAGGATTTGTCACTCCGATTGTCGGAGAGGTATCTCTGGGCCCACTCAGTAATGCACATCATTATAAGCCTTGCAAGCATTGTAACTAATGAGTTAGTTGTGGGATGATGTATTATGGAACGAGTAAAGAGACTTGCCGGTAACGAGATTGAACTAGGTATTGAGATACCGACGATCGAATCTCGGGCAAGTAACATACCGATGACAAAGGGAACAACGTATGTTGTTATGCGGTTTGACCGATAAAGATCTTCGTAGAATATGTGGGAGCCAATATGAGCATCCAGGTTCCGCTATTGGTTATTGACCGGAGACGTGTCTCGGTCATGTCTACATTGTTCTCGAACCCGTAGGGTCCGCACGCTTAAAGTTCGATGACGGTTATATTATGAGTTTATGTGTTTTGATGTACCTAATGTAGTTCGGAGTCCCGGATGAGATCGAGGACATGACGAGGAGTCTCGAAATGGTCGAGACGTAAAGATCGATATATTGGACGACTATATTCGGACATCGGAAAGGTTCCGAGTGATTCGGGTATTTTTCGAAGTACCAGGGAGTTACGGGAATTCGTCGGGGAGTATATGGGCCTTATTGGGCTTTAGGGGAAAGAGAGAGGAGAGGCTGGGCGCCCCCCAAGGCCTAGTCCGAATTGGACTAGGGGGAGGGGCTGCGCCCCCTCCTTCCTTCTCTTCTATCTCCCCTTTCCTTGACTCCTACTCCTACTACTTGGAAGGGGGGAATCCTACTCCCGGTGGGAGTAGGACTCCTCCTAGGGCGCGCCATAGAGAGGGCCGGCCCTCCCCCTCCTCCACTCCTTTATATATGGGGAGGGGGGGCACCCCTTGGAGATACAGCAATTGATCGTTTGATCTTTTAGCCATGTGCGGTGCCCCCCTCCACCATAGTCCACCTCGATAATACTGTAGCGGTGCTTAGGCGAAGCCCTGCGTCGGTAGAACATCATCATCGTCACCACGCCGTCGTGCTGACGAAACTCTCCCTCGACACTCGGCTGGATCGGAGTTCGAGGGACGTCATCGGGCTGAACGTGTGCTGAACTCTGAGGTGCCGTGCGTTCAGTACTTGATCGGTCGAATCGTGAAGACGTACGACTACATCAACCGCGTTGTGCTAACGCTTCCGCTTCCGGTCTACGAGGGTACGTGGACAACACTCTCCCCTCTCGTTGCTATGCATCACCATGATCTTGCGTGTGCGTAGGAATTTTTTTGAAATTACTACGTTCCCCAACACCACCGACACGCCGGGCCCGCTATTTCGTCTGCTATTTGACGCATTGGGCGTTTTTAGCCTGTTTTACCTATTGGGCCATATAGAGATGTATAGAAAAAAAAACCGTAATCGATCCGTGCCGTGCCAGCCCGTGTGCTCAGGCTACCAGCCCAAGCACGGTCCAGGGCGTGCCGCATGCCGGGCCCGTTCCGTGCCTGGCACATGGCGGGTCGTGCCGGCATGCTCAGGGACCGGCCTGGTTAATTAGCCCGGCCCATTTGGGCAACTATAGTGTGTGTGTGATCACTGCATTTATATGTTTGGCCAAATAGTTGTCTATTTTTCGTAGAAGAGTTTCTGAATACACTTTATGTGTGTGTAATTTGTTTTTTTTAAAACGTGTGTGTAATTTGTTGGCATCTAGAAAGTACTAGAGGAAGTTGCTACGACCGTGTTGGCAGAAGCTGCAGCCAGCCATGGTGGAGCTAACCGGCTTCGACTCGTGTCACGACTGGCGGTGGCAAAAGCTACAACTGGCGTCGTCTCGTGCTATGACTTTTGGCGGCGGAAGCTACAACCGGCCACATTGACCGACATAGGTTTTTTGCTGGAACTAACGGTGGCAAAGCTGCAACCAGCGACGTCACTTGCTGGAACTGGCAACATTGAGTGTTGGCACTGGGTACGGCCATTTGCTAGAACCAGCCACATAGATTGTTGGGACCGAAAGGACGAAGCAAGCGGAGCAGATCCGACGGTTCACATTAGTCGCATCCTACGGCGCGGATTGCGACCGATCGAGGCTGGCGCCGATCGACCGGCGCCTGGCAATGGCCTAAACCAAAACGCACGTGCTTCTCGCAGTGGGGAGGTGGGGAAATGGCGTCGGTGAACAGTTGACCACTCGATCTATCCTCCTCACTTTTCCTATTTCCACTCCACCACGCGGTTCGGGCGCGCTCCAACTCCCAGCTCCATAAACTCCAGATCCATAGGAGTCGGCGCGCTGCAGCTCGTCCGCCGGCGGCAGCCCTCCCCACCGCCGCGGCCTGCCTTGCCCCGCCTTGAGTCGCCTTTCACCGCCGGGCTCCCCCCTTGTCTGCCTCCGGGCCCCTCCTTTTCTGCCGCCGTCGTCGACCATCTCCGCCGCCGTCCCCGACCACCGGACTCCCTCCTTGTCTGCCGCCGTCTTCCCCGACCACCGGACCACGCAGGCTGTGCGCCTCCTCTGCCTCCCCGACCACCTCGCATATCAACTGAATCACAGTAGGTGAGTGAAAAAAATTGCATTTTTCTTTGATTGGTACTAGTATTTTGCTGCGATGTGCTACGGTGGTGTGCTGCTGCTAGACTTGTGGATGGTCTGTAGGACTGATGATGTGCTAGGATGCTCATTTGGGGTTTGGGCGCTGGGGATTTGGGGTTTCGAGTATCAGATCTCTGGGCGATCTGGTCCGGCACTGGTGGTTGGTGGCGAATGCCGCCGGTTTTCGGTTAAGATCTCGCGAGCTTGGTGAACCCTTCGGATTTTTAGATTCACATCTGTGTGAAAGGTGCAAAATTTGCGGACCGAGATCTGATCCTGCTTACTCAAATCTCCTGGATCAGTGCAAATGTGTGGGCATTGTGTGTTCCGTTGGGAACCACATGATTACTTGATTTATTGGGACCAGGGGTTTAGTTTGTTCTTACTTGCAGTTGAGTTGTGCGTCAAAGCTTGGTCTCGTCATGCCTGAGGAAAACACTTAGCATTACGATTTGGTACATGGATATGTGTAAGATCAATCTCAATCCGTATACAATACAGGTCTCTATGGGCATGTTCATCTAGATTAGCATCTTTACTTCATAAACGGCGCAAAAATTCTGAGTATCTTGGAATGCTTTCTTTCCTTTTCTGGGAATGTGAAGGTTGTGACTGTGTAAACTGTGGGTCCTACAAATTGCAGTTTGCATTTAAAGAATAGTTGATGATAGTGTAGGATTCTAAATCTTTTTCTCACATTGCATAATGGTAAATGTAATATGCATGCCTTGATTCATCTAAGATCTAACTGAGCGGTGTTGGTTTTTCCATCTCCATTGAGCAGGTCGCTTGAGTTAATGTGCACCATATAGTGCTTTGTCTCTGTTAAATTGCTTATGAGATCAGTAAACTGCTATGGATATATGAAGCACAGCTGAAGAAGCCCATAGTGTTTCATACCAGTGAATGATCAATATTTTGTCTGTTTCAGATCTTAGTACCACTAGAGATGCAAGGAAGAATGACAGATTTATGGTAAACCCTGGTAAATATTCGTGGGAGGTCAACAAGTGGCGCCCTGATTAAGACTGCTACAACACTTTGTGGTTCATCTCTAATTAGTGATGGCGAGAATGAAGATCCCAAAGCGTTATGTCATAGTATTGCTGACATTCATCTGCACAAATGTTTGTTACGTTGAGCGTGTGGGTTTCTCGATTGCGTACACCGTAGCAGCTGATGCAATCAACGTGAATCAAGCAAACAAGGGCCTGATACTCTCCATGTTCTATTATGGTTATGTTTTGTCGCAAATTCCTGGTGGATGGGCAGCTCAGAGATTGGGAGGCAGACGTGTTCTGCTACTGTCATTCCTGTTGTGGTCTTTGATATGCGGTCTAATTCCACTGGACCCCAACAGAGCAGTCATTCTGGTCCTTTCTCGCCTTTTTGTCGGTGTAGCACAAGGTTTCATATTTCCTGCCATTCACACAGTCCTGGCACAATGGGTGCCACCGCAGGAGCGCTCTCGCTCAGTGTCATTAACAACCTCAGGGATGTACCTCGGGGCAGCTTGTGGCATGTTGTTTTTTCCAAGTCTGGTGAAGCACATGGGACCCCAATCTGTATGTTTAGTCGAAGCAGTACTTGGAGTAGCATGGTCTGTAATATGGTTGAAGTTCTCCAGTGAGCCACCTCGCACTGACCTTCCAAAAGTGGCAATGCCAAAAGTAGCATCTCGGGAGAAGATTAAGGCGCAATCAGTAGGGGTTGTTGCACCTCGCACTGTAAAGATACCATGGCGAAAGATTATCTTCAGTCTACCTGTTTGGGCAATTGTCGTGAACAACTTCACCTTCCACTATGCCTTGTATGTTATCATGAACTGGCTGCCTACCTATTTCGAACTAGCCCTTAAGCTTAGCCTCCAGGATATGGGATCGTCAAAGATGCTTCCCTATTTCAACATGTTTATATTCTCCAACATTGGTGGAGTGGTTGCTGATCACTTGATTACAAAAAGGATCTTATCAGTTACCAAGACAAGGAAGCTCCTTAACACCATTGGGTTTGTTGTCTCGGCTGTTGCACTCATGGCCCTCCCTTCATTCGGGACGCCCTCAGGGACTGTGATCTGTTCATCGGTGTCTCTTGGCTTTCTGGCTCTAGGAAGAGCAGGGTTTGCCGTGAATCACATGGATGTTGCTCCAAAGTTCGCCGGCATAGTGATGGGGGTTTCCAATACAGCTGGGACATTGGCTGGGATAGTTGGCGTTGGCCTCACGGGAAATATTCTGGAGGCTGCAAAGGCTTCTAACATGGATCTAACGAACTCCGAAACCTGGAAAACAGTCTTCTTTGTTCCAGCATACCTCTGTATTTTTAGTTCAGTCATTTTCTTGGTCTTCTCAACTGGTGAGAAGATTTTTGAATAGAGGATGATTATTTTTGCCTGTTCTTTTCTTGTCATTTACGGGCGGCGAGGCAGGATAGAAACACGGGAATCTCACATGTATTTTATTCATTATACCTGTCAGATTTCAGAGCTCAGACTGCATCCCACACATATTAAGACTTATGTTATGTTAGGAGGAATAACACTTGTCCGTAGTAAATTGTGTTATTTGGAATGATCCTATGACTCTGTTATTCCAGCTGGCTGGTTGGCCTATTTACAATACGTTGTGTAAGCTGGGCATACATCATCTTTGTTTTGTAAGTCATTTTCCTGGGGATAGGAAACAATGTGAATTGTGCAGCAAGAAGTCAGGATGACATGACAACATTTTGTTTGCTGGCAGGATCTGAAAAGAAAATGTGATTGGTCTACATTTGATCTAAATGAAATTTCTATTTAAAGGTAAATCTGACTGGAACATGGACGCTCCCTTTGGCTGTGTAGAGGCGCATTTTTATGTTTGATAAACCTGCTGGAAGATGTTTATTTCACTGTAAGTGAGCAGTAGAACCTGAAAAACCTGTGCCCACACATCCCTAGCAAGCTCCATTCCTTTACATTCACATGTTAGTTCAACTATATTGGGTAAAGTTGAGGGCCTCTTTGATTCATAAGGTTTCAAAAACACATTGATGTGCATAATTGGGTGTTTAATTCACAAGAATAGGACAAGTACAGGAAGCCTAAAATATTATGGTCAAATTAAGATTTAACCATATGCAAAGGTAAGATGAAGATATTATTATATGCTACTTAAGGCCTTTGCCTTGTTCTTCATGCATATGAATGTGAAAGAGAAATTTCAATGCTTTGAATCAAATGGATAAAATAGTAGGAAAAATCTTATTGATATGGTTTTCTTATGAATCACAGACACCATCAATGTAAAGTCTTGAGAAAACTACGCTTTGCAACCAGTAGTCATTACATATACCGCTGTCCATTGTGTCCTCTCGTGGAAAGTAGTAATCTAAACGCTTTTATATTAGTTTACGGAGGGAGTATTATTTTTGAACAAGAGCAGCAGGGCGGGATGGTGATCCTACCAGCTTACAATACAAGATACATTAACAAACAAACAAAAGGAATATAAAAAACAGAAATCTTGTCCACGCGTCGGCAAAGCAGAGACAATAGATTCATGGCCCTGTTTTCCCCAGTCATCTCGCACAGTTCAAGGTTAGAGTATATGCTTGTGGACTTTTATATAGAATATGAGAATGGGGAACTATCATTGAAAATCTTTTGTCAAGCCATCAAACGGGTGACAAGTGAAGTGTTTGGCTATTTTTGTGATTGTAAATGTTTATAGGGAAAAATATTTTTTGCCAGGTTTTTCATCTAAATATTCGATTATGAGCACTACTTTTTTTTCCGTTGCAGCTCAAATTTTTTTCCTATGAAAATTTTCATATCTATTTTTCTGTATCTTTCGATAACAGAAATTAATTTTCTATGGGAGTATGTCGCTCGGAGACATTTGGCAGTCTTCCTATTCTGAATTTCTTCCAGTAGCGTAGAGTTCAGACACGACTTGCTCTCTTATACTTTTCAAACTTCTGGCACTAACCTAGTTGCTGATGGCATTACCACTTGAGATATTTCCACCCCCAAAAGTACTGCTGCGAGCGCTGCCTTCAAGTTTCGGTTAGTCCAAAGCGTTTCAAGATGCCTCCCATTCCTAATGAACTACAGACGCACTTCCACTAACTTCTTCTATTTGCCATTCCTCTCACCCTCTCTCGAGGCTCTCAACTCAATTCTTGTTAACTAGGAGCTACTTGCTTCATAAGAAGAGCTAATATATGAGGTGGGAGGAAGACTACGGTCAAAAAATGGGTATGCAAGTATTGAGCAGGAGAAGGCAATGCATCCTTATATAAAGGCACGTGCCATAGGCCGAGAGTGTTCACCTCTTTTCTGAAAAAAGTATAGGAAGACACATGTACAAGAAAATAAAGTTGATACCTATGTGTGTTGCTTCAACTTTATAATGCGACCACAAGCACCTTACATAGTAGTATTGCTAGAATCCTAAAAAAAAATAGTATAGCTAGAAAAATACTCACTTCATTTCTTTATGTAAGGTGTATTATTTTTGGCACGGTGATCATGGCATAAAATTAGACAATTTCAGACAAAACTACCCTTGACAAATCATTGGTTAGTGGCAAGTAAATCAATTAGTCCAGGAAATAAAGAGGTATACACAATCAAGAGACAGATATTTTCCTTCTTTTCCTAGAAGGAGATATACATGCAATCATAAGAGAGATACTTTCCTATTTTCTGGAGGGCTAAGAACGGAATAAGGAGGAATTAGAACAAATGCACCTTAATTGTGAAATTTTATCAAAAAACAAATACAACTTTTTTTGATCGGTAACAAATACACCTTATATTAAGAAACAGAAGGAGTATATAACAATAGTAAAAGAAACAGGCCCAGCCCATTAAGAGAGGCAAGTCACGAACGAACGTGATCTCCTTTCTTTCGTTCTCTCCGATAACGCCGCTGCAATCTCATTCGTCTCCCAGTCTCTCCATATTTCTCTCCCCCAATTGATTGCCCCGAATTCCTAAGAGACTCCAACTCCCCAAGCTAATCAATTAATTTGTGTCACTGTCCCCATGGATTTCTTGGGTGTCTTTCATCATATAACTAACCCCAAAGCCATTAGTGGGCCGGAGAAGAGAAGCCGACGAGGACGCCAACCCGCGGCGTGGCCGTCCATCGTCAAGGCTCTGCCAGGGTCCGAGCCTCCGAGGGTAGTAGGCGGTGGAGTATTATGCTATATGACGAATTGATGCAATGATATTTGACCGGCTTGATCTTTTCTTTTACGTCAGTACAATGAGGTAGGTTCTGCTGTTTATGACATTGCTTGCATTTGGATTATTGGATAGCTGGAGCATGGGATTTCTTCCAATGTACTCCAAAATGAGTAAATTAACTGTTGGCCTAACTTATTACAAGTACCAGAGGAGTCTCGGGCAGAATAAAAGCTTTCATTACATTGGCCCAACTTGTTACAAGTACAAATGTTTACATTTGTTTTGTTGATTCTCATCTACCTCATGTGTTTTGCTCAAAGAAGTTTTTTTAACCCATGTGTCATATAATTTTACACGGAAACTCACGGATATTTTTATTGTTGTATCTCTTTTTTCCTTTCGATAAACTTTCAAATTCCAAAAAAAATCAAAATTTAAAAAACGTTTCATTTGAAAATATTTTCTCAAATTAAAAAATGCTTGTGGTTTTCAAAAATATAAAATTTGAAAATATATTCACAAACTAAAAAAATCGCTTTTAAAAATATGTTCAAAATTTAGAAACAATTTGAATTTAAAAAATGCTCATGTTCTCCTAATATTTTGCATTTTCAAAAAATATTATTTTTTTTCTAATTTTTTATCGCTTTTGTAAAATGTTCGCAAATTGTAAAAAAACTTTCACGTTTTCAAAGTAATGTCGTCCAATTTGAAAAGATTGTTCGTGTTTGCCAAAAAAGTGTAAAATTTGAAACACAATTCACGTTTACAAAAATGTTCATTTGAAAAATTCTCTCGTTTTCAAAATTTTACATTTTTGCAAAATGTGCAGAAATTTTAAATAATTGTTTCCGTTTTTGCAAAAAAAATATTCTAAAAAATTTCAATTTATATGCTGCAGTAGTCTCGTTGGTTACAGAATCCAGTTTCCTACAGGTCGGGTTGCTATAGTATCGGGTTGCTATAAGAAACTGGTGCGCTATATAAAACCCGACCCGCTACAATGTGTCTAAAGAAAATACCAAGAAGCCCCTTGAAGAAATTGGGGTCGCTACATGTTTTTTTTTTTTTGAGAATTGGGGTCACTACACGTGAGCGCGCCTCCGTGCGAGTGGGCTGGCCCAGGCGGGGCAGAGGGCACCTGTTTTGCACTGGCATTCATGTTTTTTTTTTTTGCTTGTGATTGTGCTCAAAAGGAACTGTGCTAATTTCATGGTATTTCACAACAAATCGAGTTACAATTTGCGTTTTCCCATCCTGTTTGATTTGATCTCACAAGGTCTTATGGCCTTAACCTTCACATATGTCCAGCATGTGCTGGTGAACTGGTGATAGGAAGCAACCGAGGCCTCCATTGCAACGGCAAGTGGAGGGACGTATTTCCGGATGCTTCCCATTTCCAACGCATCTGACCCCTCCTGTTATCATGTCATTCCCGTTTATCACTTTCTTCTTTCCATGTCTTAATCTCATTTGTGTCGATTTGGCGGCTTCAAATTGAGAAGCAGAGCTTGCTAAGATGGGTAGTAGGCTAAAGGAAAAGGAGTGCCCATCAATTGGATATATACTCAGCTGGGTTTGGAAGTATGAAGAGGAGCCATATACTTTATATATATGTGTAAATGGTGTGGGCCCGTGTAAAGATCGTCATAGTTTCTAGTTAAATATCTCCTGTGTACTACAACTCATCAATGATCTCTTGCTCTAGTAAAGTAGAGGATAGGTATCTCAGTGGCATTAGTGATATCTCAACTCATCAATTGTTTCTTGTTTCCATCTCCATGAACGTAGCAAGAAACCAGTTTCAAAAAAAGAAGTACCAATAAACCTACAGACACTTGCAGAGTTCTTTTTCTCACTACTCTGCTATTGAGGAGTAAATAGCAAAAAGCTACCACATTATAGGCTAGGGTTACAAAAAACTACCTCTTTTCTTAATTTCCCAAAATGCTAGCACAAATTTGGTTCGCTGTTCCAAAAAACACTAGTGAGTAAAGCGTTAACTTTTAACTGCGGTTATGACAACTTTGGCCCACCCGTCAGGTCTGATGTGGCATAAAACTCAACACCGTTAGCTTTGGCCGTTATGACAGGTGGAACCCACATGTCATTCACTTCCAAAAAAATAAAAAGCAATCGGGACCCTATACCTTTCTAGAAAAGCAATCGGATCACTGTAAATGTCTAAAAAAGCAATCAAGTCCCTGTAACTTTCTAGAAAAAAGCAATCGGGTCCTGTGAAAAAAATTAATCGGGTCCTGTGAAAAAATTAATCGGGTCCTGCTTGGCTGCCGGCGAGCTCATCCCTGCTTCGGCTGCCGCGGCCTAGGGTCGCCGCGCGCGCTGATCCTGGCTGCGCACCTTCCACTCGCCAGTGAGGAGAGCCAGAGAAGTGATGGGATGGCGAGGGAGCTCCAGCTCTCCCTTCATTGGCCTCCGCCGCCACTCCCGTGTATGTCCCTTCCCGCGCGCTTGACCGGGAGAGTCCCTCTTCTCCGGCACTGGTGACGCCAGCCCGGCCCGCTCACCCTCGCTTCCACGCTCCCCCCTTCCGATACCGACGCAGCAGTGAGTAGCAGCATGCAACGGCAGCGGCATGCAGCATCGGAGAATTGCGGCGGCGGCGGTGGAGAGCAGCAGCAACAACAACACACAGCAGCAGCGGTAGCTTCTGCCCATGGCGTTGGGGCTACGGGAGAGAGACAGAGCAAGGCGCATAGGGTGGGTGTCGTGATATAGAGAAGAGAAGAGAAGGGAGAGAAGAAGCTGACATGTGGGCCCCACCCGATCATAACCGTCAACTTAACTGTTTGTTTATATAACGGTGCTGACTTTTTTGCCACGTGGAACTGACGAGCGGGCCCTCCATGTCATAAACCAGATTAAACCATTCAGTCACTAGTGTTTTTGGAACAACAAACCAAATTTGTGGTAGCATTTTGGGAAGTTAAGAAAAATGTTAGTTTTTCGTAACCCTATCCCATAATGTGGTAGTTTTCTGCTATCTACTCTTTGTTTAAAAGGGGAAGTTAAGAAGTTGGCATCCATGTAATATATTTTTTGAAAAGGGAAATATATTAATATCACGAAGATGCCAATTTCTCTGTTTAAAATTTGCTCTAAAAGCCAAATCAAAATACACACATATTGTTTGAATGGATTATAATTTCCTCGTGGGCGCTGGAGCTCCACTCAGATCTACCCACACTCAGTCATACGAAGCCAAGGTCGGAATGCTGCGCCGTTGTAGGATCACAGCAATCACACATGCTAAGGTTGATCCTGTGTGTTGGTCCGGCTCTAGTTGATCCTCTGTGTCGCCATCCAAACTCGGGAAGGTCAAGTGCCCACTGCCACCATCACAACTCACATCATTGAGCGCCTACACTCGTCCAAGTACAAACATCATTGAGCGCCCAGTCAGACGAAGCCAAGGTCGGAATACTGCTCCATTTATAGGATCTGTCAGACCAGAGCCCTCCATCTCCTTCGCCATGGTCGCTCACTCGATCACAGTTGTAGCGCACGCTAAGGTTGACCCTACATGTTGCTCCAGCTCCAGTTGACCCCCTGTGTTGCCATCCAAACCCGGGACAGTGATGCACCCTCTGCTACCAGCATAAGCGACCGATCACCATTCACCCATCCCCACAATGCCGACGTCCCCTCCCACTAAACCCTCTCATGGCAACCCCAACACAAGCACCAAGAAGAATTAGTTCTCAGAGTTCGGTGAAGATGGCGAGCAGTATAGGGGAATAGGGCATAGCGCTAAATCACTCTTTGCATTGTTTGTCGTAGGTGTGAATTATAGCATGACTGATTGTCTTTCTTCCTGTTCATGTAGCTGGTCATTGGTACTTATCTTTACCATGAGTGGTAGTCTGTTATCTTGTTCTACAATTTGGCGTTTGCCAACTTGGTATACTGATCGTTGTAGCATTGCACTCTGCTTATCTTTAGTGAAATACGTGCACTGTGTGTTCTCGAAATCAGCATTGTACTCTGCTTCTCCTGGATTAAATATGTGTTCTTGGAAGAAACACCGGACTACTTTAAGTATTGCAATATATTTTATCAACAAGGTAAATAGGTTGCATGAAAAAAATTCAGTCAGTAGCCAAATTTAGTAAATCAAATATCGAGGAGGTAATTTTCTTTCAATTGGTTTTGGATGAAGATCTATTTCAGATTAAGTACTACTCATCTTATTAACTTGTAGTTCATGATTTTTTAATTGTATTCATAGATGTTGAATATTTTTTTTCAATAATACAGGAGATAACGTGAGTCTTCATTAAAAGCTGCATGATTAGTAACTCCCAGTATAGGAACATCTTCCCAATTTGGGCACTCGCAGAGTACCGGCACCGAGTCTTGGCTGGTGGCAGCTAGTACTTATGTGTTTAGGGGCAATGAATTTGTGCAGTCTGTAGGAATCTGCAGATCATTTATTTATTTATGTATGTTCATTGTTGATGAATATATAACCCAATATGTAAAACATATAATTTTGTGAGGGGTTCCGATCTCTTTAAAACATAAATCAATGCAATTCTAGATGGACAGATAGTAGAGTTCATCAGTTTATGTCATTGATAAGAGCGACTTTTTCAGAGAGCTGTAGTAATTTTCTGTAGATATATTTCCACCAAAGGGCAAATTAGGTTAATGCCGAAAATCAAATCAATTCTTTGGATGGAAATTTCAGTATATCGAAATGTGGGCTTGCAGCAATGGTACCGTCCTATGCACAATCCAGATCAAAGCAGCGCATTGTCCCCTTTGCTGAGCTCGCGGCCACCCCTAGTTGTGCCCAACCTGCACCCGCGAGATGAAAGCCGAGTTCCCTCTAGTCTTTAACCTTCACATCCTAGTCATTGCATATTCTGCATGTGGTGGAGAAAGGCAGCAATCGACGCCTCCGTTGCAACAGCAAGTGGAGGGACGTTTTTCCGGATGCCTCACATTTCCAGCACATTGCACACCCATCTAACCCCTCCTATTGTCATGTCATTCCCATTTATCACTTTCTTCTTTCCATGTCTAAGTCTCATTTGTGTCGGTTTGGCGGCCTCAAATTGAGAAGCAGAGCTAGCTAAGATGGGTAGTAGGCTAAAGGAAAAGGAGTTCCCATATACTTTATATATATGTGTAAATGGTGTGGGCCCGAGTAAAGATCGTCATAGTTTCTAGTAAAAAAGAAAATATCTCCTGTGAACTACAACTGATCAATGATCTCAGTGGCAGCAGTGATATCTCAACTCATCAATTGTTTCTTGTTTCCATCTCCATGAACGTAGCAATAGACCTCAAACGAAAAAAAAA +>URS0000F1BCF3 rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGATTCATTGGGCGTAAAGGGTGCGTAGGCGGCGCGGTAAGTCGGGTGTGAAATCTTGGAGCTTAACTCCGAAACTGCATTCGATACTGCGGTGCTTTGAGGACTGGAGAAGGAGACTGGAATTCATGGTGTAGCAGTGAAATGCGTAGAGATCATGAGGAAGACCAGTGGCGAAGGCGGGTCTCTGGACAGTTC +>URS0000D17570 sRNA from 1 species +TCCCAGCCGGGTTCGTGTCGCCATGGGGCAGATCGAGTGGGCCATGTGGGCCAACGAGCAGGCGCTGGCGTCCGGCCTGATCCTCATCACCGGGGGCATCGTGGCCACAGCTGGGCGCTTCACCCAGTGGTACTTTGGTGCCTACTCCATTGTGGCGGGCGTGTTTGTGTGCCTGCTGGAGTACCCCCGGGGGAAGAGGAAGAAGGGCTCCACCATGGAGCGCTGGGGACAGAAGTACATGACCGCCGTGGTGAAGCTGTTCGGGCCCTTTACCAGGAATTACTACGTTCGGGCCGTCCTGCATCTCCTGTGAGTCCCCGCCCTGCACCCCCTCTAGGGCTCAGGAGGGCTTGGAGCCGACCCTCCCCACTGTCCCACCGGCCGGGCTGCCTGGACAGGAGCCACCCCCACTTACCTCAGTGTTTTTCCAAACAAAAATTCGGGTCCCTGGCTCTGGCAGGGCCTGTGTCTGCTGTCTAGTGTGCAGGATTTGTAAGGATCCACTCCAAATCCGAGTAGCTCCGATCCGTCGCCACGGTCTGGGGTCAGCAGGCACTGCTGGGGGGTCTTGCCTGGGCTTCCTGGTAGGGTGGAGGGTTCCGTGCTGTGTGTCTGGTGGTTACTGCCGGCTGAGGCCAGGAGACCCACACGTGGCTGGTTCCTCCGAGCAAGTGCCCCAGAGCCACTAGTGTCCACATCAAGGCCGAGAACACCCAGGACCGAAACAAGCCCTGGTCCGCGCACGTCCCCTGGGTGTTCCTTGTGCTGAGACTTTGCAGCCCTGGGCCATGCACGTCCCCTTGGTCTGCAGTCTGCCTTGTCCTGAGACTTTGTGGCCTTGGCCCCCAGACCTGGGGCTCCGTTCCCCTTTCTGAGTGCCCTTCTGTGTCCCTGCCTCTCACCCGCTGTCCCCCAGGCTCTCGGTGCCCGCCGGCTTCCTGCTGGCCACCATCCTTGGGACCGCCTGCCTGGCCATTGCGAGCGGCATCTACCTGCTGGCAGCTGTGCGTGGCGAGCAGTGGACGCCCATCGAGCCCAAGCCCCGGGAGCGGCCGC +>URS00003EB83F lncRNA from 1 species +CAGATTTAGGGCAAAGTTAACACTTCAAAAATATCTCCAGTAATTGAGTAAATTGCTCATCTGTCAAATTGGCTCTTTGGCAAATTACTCTGCTTGCACATATTAATAGCCAAGCTTAGCCAACTTGAAATATGGAGATTTACTGGAAATCACAGTGAAGTGAAGAGAGAGGCAAGAGCAGAATTGAAATTCCCACCTGGCAGCAAAAGAGAGTTATGCAGAGCCTATCAGGACCCGTGTTCACACCAGCACTTAGTTTGGAGGAAGCACCTGGAGGAGATGCAGAGTCCAGATGTGCGCCCTCTGCCGGAAGCCTACTGCACCAGGACGTAGGCCTGGAGTGGCCCTTAACGCATTTGGAAATCAGTCTTCACTAAAAAAACTTCCTCCAAAATGTTCTTTAACAGCCCTTTAAAAGCCATTGTTTCAAAACAGTCCAAGGTGGTGAACAATTAATATTTTCGATTTACATGAAGACTCTGGAGTAGGAATTACCTGAGTTGGAAACTCAGTTCTACTCTATTGGTATCAGGTTGCATTCTGTATCATCATTAAAATTTTCAGAAAAACTCTC +>URS000039DFEA rRNA from 1 species +GAATCTAGCTTCAGGTCTGGGACAACCACTGGAAACGGTGGCTAATACCGGATGTGCCGAAAGGTGAAAGATTAATCGCCTGAAGATGAGCTCGCGTCTGATTAGCTAGTAGGTGGGGTAAGAGCCTACCTAGGCGACGATCAGTAACTGGTCTGAGAGGATGACCAGTCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTCCGCAATGGGCGAAAGCCTGACGGAGCAATACCGCGTGAGGGAGGAAGGCTCTTGGGTCGTAAACCTCTTTTCTCAGGGAAGAACACAATGACGGTACCTGAGGAATCAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCAAGCGTTATCCGGAATGATTGGGCGTAAAGCGTCCGCAGGTGGCTGTGTGTGTCTGCTGTTAAAGAGCAAAGCTCAACTTTGTAAAAGCAGTGGAAACTACACAGCTAGAGTGCGTTCGGGGCAGAGGGAATTCCTGGTGTAGCGGTGAAATGCGTAGATATCAGGAAGAACACCGGTGGCGAAAGCGCTCTGCTAGGCCGCAACT +>URS00007386F9 rRNA from 1 species +GCGGCAAACGGGTGAGTAATATCTGGGAATCTACCCAAAAGAGGGGGATAACTACTAGAAATGGTAGCTAATACCGCATAATGTTGAAAAACTAAAATGGGGGACCTTTTTAGGCCTCATGCTTTTGGATGAGCCCAGACGAGATTAGCTTGTTGGTAAGGTAAAAGCTTACCAAGGCTACGATCTCTAGCTGGTCTGAGAGGATAGCCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCTATGCCGCGTGTATGAAGAAGGCCTTAGGGTTGTAAAGTACTTTCAGCGGGGAAGAAAAAAATAAAAATAATACTTTTAT +>URS00008F63D8 tRNA from 5 species +GTGCCCATAGCTCAGTTTGGTTAGAGCATCCGACTCATAATCGGCAGGTCCTCGGTTCAAGTCCGAGTGGGCGCACCA +>URS00007B46A8 snRNA from 1 species +CCCACCCTGGAAACGGCTCAGC +>URS0000B49266 rRNA from 1 species +AGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGTAGCACAGAGAGCTTGCTCTCGGGTGACGAGCGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAATGTCGCAAGACCAAAGTGGGGGACCTTCGGGCCTCATGCCATCAGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAACGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGAAGGCGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCGATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATTCGAAACTGGCAGGCTAGAGTCTTGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGATTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAATCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACAGAACTTNTTGGTGCCTTCGGGAACTGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTTCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCATATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTATGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTAGATCAGAATGCTACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTGGATCACCT +>URS00003BE16A rRNA from 1 species +TGAACGCTAGCGGCACGCTTCATACATGCAAGTCGAGGGGCAGCATAAAGTACTTGTACTTTGATGGCGACCGGCGAACGGGTGCGTAACGCGTATGCAACTTACCTTTTACTAGAGAATAGCCAAGAGAAATTTTGATTAATGCTCTATACTCTTTTTAACTCACATGAGTTTTTAAGAAAAGCTCCGGCGGTAAAAGATGGGCATGCGTCCTATTAGCTTGTAGGTGAGGTAACGGCTCACCTAAGCTCCGATAGGTAGGGGTCCTGAGAGGGAGATCCCCCACACTGGTACTGAGACACGGACCAGACTTCTACGGAAGGCAGCAGTAAGGAATATTGGACAATGGAGGAAACTCTGATCCAGCGATGCCGCGTGAAGGAAGACGGCCCTATGGGTTGTAAACTTCTTTTATACAGGAAGAAACCTTTCCACGTGTGGAAAGCTGACGGTACTGTAAGAATAAGGATCGG +>URS00025B9EB0 lncRNA from 1 species +GGAGAATTGCAGTGATAAAAATGAATGTTTTACCGAGGCTACTCTACATATTTCACACAGCCCCACAGGTGATTCCGCAGGCATTTTTCAGGACACTCAAAACAGCAATCACACAATATATTTGGAGAGGGGAGAAGGCCCGCATTGGCTTTGACAAGCTCTGCTTACCAAGAAGCTGGGGAGGGTTAGCCTTGCCCGACATCAGAAAATACCACCAGGCTACAGTACTGCAGAGGCTCAAG +>URS0001DE2DB5 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTTGAGCGCTGAAGGTTGGTACTTGTACCAACTGGCTGAGCAGCGAACGGGTGAGTAACGCGTGGGGAATCTGCCTTTGAGCGGGGGACAACATTTGGAAACGAATGCTAATACCGCATAAAAACTTTAAACACAAGTTTTAAGTTTGAAAGATGCAATTGCATCACTCAAAGATGATCCCGCGTTGTATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGATGATACATAGCCGACCTGAGAGGGTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGACGAAAGTCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGGTGTCGGATCGTAAAACTCGGTTGGTAGAGAAGAACGTTGGTGAGAGTGGAAAGCTCATCAAGTGACGGTAACTACCCAGAAAGGGACGGCTAACTACGTG +>URS0001C397AE rRNA from 1 species +GATGAACGCTAGCGGCAGGCCTAATACATGCAAGTCGGACGGGATTCAGGAGCTTGCTTCTGATGAGAGTGGCGCACGGGTGCGTAACACGTATGTAACCTACCTTTATCAGGGGGATAGCCTCTCGAAAGAGAGATTAAGCCCGCATAAAATCACAGCACAGCATTGTGTAATGATCAAATATTTATAGGATAAAGATGGGCATGCGGAACATTAGCTAGATGGCGGGGTAACGGCCCACCATGGCGACGATGTTTAGGGGATCTGAGAGGATGGCCCCCCACACTGGTACTGAGACACGGACCAGACTCCTACGGGAGGCAGCAGTAAGGAATATTGGCCAATGGGCGGAAGCCTGAACCAGCCATGCCGCGTGCAGGAAGACGGCCCTACGGGTTGTAAACTGCTTTTATACGGGAATAAACCCAGATACGTGTATCTGGCTGAATGTACTGTAAGAATAAGGATCGGCTAACTCCGTG +>URS0000EF62B1 lncRNA from 1 species +GCTGCCACCTCTCTTGACTCCCTTGTGAGGAGATCGGCTCTTGCTCCTCCTCATGCCATGACTCTTTAATTTGCGGCTGGTCGACATGCCATTGTGACAAGGCACCATCAATCATCATGTCCCTTTACCAGGAGGGCCCGTGTCATAAGCCACTATATAAAGGGAATGATGGGTGGACTGCTTTGGACAAATGGACCTGCGGTAGGAGAGAGGGACAACAGTAGGAGCAGGCAGATCTTGCTGTTTCAACCAAAACCTCATGCTGACCAGAGTTGAGGAACAGAAGAAGATGGTGAAGGCCTGCAGGTATAGGTGTTCAGCATGTCATCTGAAATATTCCCCACAGAGGCAAAAAGAAAGGAAATTATCTCTGAAAAGGAATGGGAGGACAAGTCAGCAGAATATGTCAATGTTTTGGTTGAAGAAGCTGCTTGAATCTGGGCTTTTCTGTGCCATGTGTTCTCCCAGGGCCAGCACAAAGAAGGGCTTTTGGTGCAGGCCCAAGACCACCATAATCATCATTGATTATTCCTCTCCACGCCAGTGTCTCTAAATAAACTTTCTCTTCTTTCTCTGACAAA +>URS0002429CE1 lncRNA from 1 species +TTTTCTTGAATGGACAATAATGCGTTTTGTGTCCAAGTTTGCAACAAAAGTTGTATTTGCTTTGGTGTTGAACATGTAAGATGGGGCCTTTTATGAAGGTGGTTGGATTTTGGTGAGGACTTCTCACAAATCCGATTCCACTTCTTTTGGGAACGTGACCCTTGTTTGCAAGGATCATGTTCAGTGACTTGCTACCAACCTCGAATTTCTTCAAGGTGTCCTTAAGTAGCAAGTTTTCCTTTTGGAGAGTTTCTAGATCATGGCATTT +>URS0001CE0F72 rRNA from 1 species +GGGTTGTGAGGTTAAGCGACTAAGCGTACACGGTGGATGCCCTGGCAGTCAGAGGCGATGAAGGACGTGCTAATCTGCGATAAGCGTCGGTAAGGTGATATGAACCGTTATAACCGGCGATTTCCGAATGGGGAAACCCAGTGTGATTCGTCACACTATCATTAACTGAATCCATAGGTTAATGAGGCGAACCGGGGGAACTGAAACATCTAAGTACCCCGAGGAAAAGAAATCAACCGAGATTCCCCCAGTAGCGGCGAGCGAACGGGGAGGAGCCCAGAGCCTGAATCAGTGTGTGTGTTAGTGGAAGTGTCTGGAAAGGCGCGCGATACAGGGTGACAGCCCCGTACACAAAAATGCACATGCTGTGAGCTCGATGAGTAGGGCGGGACACGTGGTATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCACGCTTAGGCGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGAAGGGAAACCGAGTCTTAACTGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACTTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAATTCATCTCCGGGGGTAGAGCACTGTTTCGGCAAGGGGGTCATCCCGACTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCCCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAACCATGCACCGAAGCTGCGGCAGCGACGCTGATGCGTTGTTGGGTAGGGGAGCGTTCTGTAAGCCTGCGAAGGTGTGCTGTGAGGCATGCTGGAGGTATCAGAAGTGCGAATGCTGACATAAGTAACGATAAAGCGGGTGAAAAGCCCGCTCGCCGGAAGACCAAGGGTTCCTGTCCAACGTTAATCGGGGCAGGGTGAGTCGACCCCTAAGGCGAGGCCGAAAGGCGTAGTCGATGGGAAACAGGTTAATATTCCTGTACTTGGTGTTACTGCGAAGGGGGGACGGAGAAGGCTATGTTGGCCGGGCGACGGTTGTCCCGGTTTAAGCGTGTAGGCTGGT +>URS00003281C0 rRNA from 1 species +CTACGTGCCAGCAGCCGCGGTAATACGTAGGTCCCGAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGTTAGATAAGTCTGAAGTTAAAGGCTGTGGCTTAACCATAGTACGCTTTGGAAACTGTTTAACTTGAGTGCAAGAGGGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCTTGTAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGGTGTTAGACCCTTTCCGGGGTTTAGTGCCGTAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCCTCTGACCGCTCTAGAGATAGAGCTTTCG +>URS00016D14C4 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAATGGATTGAGAGCTTGCTCTTATGAAGTTAGCGGCGGACGGGTGAGTAACACGTGGGTAACCTGCCCATAAGACTGGGATAACTCCGGGAAACCGGGGCTAATACCGGATAACATTTTGAACCGCATGGTTCGAAATTGAAAGGCGGCTTCGGCTGTCACTTATGGATGGACCCGCGTCGCATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCAACGATGCGTAGCCGACCTGAGAAGGTGGTCGGCCACACTGGGACTGAGAGACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCGTCCGCAATGGACGAAAGTCTGACGGAGCAACGCCGCGTGAGTGATGAAGGCTTTCGGGTCGTAAAACTCTGTTGTTAGGGAAGAACAAGTGCTAGTTGAATAAGCTGGCACCTTGACGGTACCTAACCAGAAAGCCACGGCTAACTACGTGCCAGCCGCCGCAGTAA +>URS000090AB96 SRP_RNA from 1 species +GCCGGGCGTGGTGGCGCATGCCTGTAATCCCAGCTACTCGGAAGGCTGAGGCAGGAGAATTGCTTGAGCCCAGGGAGCGAAGGTTGCAGTGAGCAGAGATCATGCCACTGCACTCAAACCTGGGCAACAGGGTGAGACTCTGTCTCAA +>URS00023BAE1B lncRNA from 1 species +CTGAACCCTTATCAGTAAAAGTTTATCCGGAGTCAGAGAACAGGGAATGGCACTCGACGCAAAAATCGGGCGAGGCCCAGCCCTAGATGTGGGTTCATCTACAGTGTGGGGGTTTTGGGGGACCAAACAAAGGCCCTAAAAATCCTGGAACCACTAGAGGCGGAGGTACCGAAAGATATTTCAAACAAAGGCCCTAAAAATCCTAGAAAAATCAGGCGGGATAAGAGGTGAAAGGTTTGCGGGGGACCAAACCAGAGGAATGTGGCAGAAGAAAAATGGAGGAGAAAGGGCACCT +>URS00022ED730 rRNA from 1 species +TGGGGAATTTTGGACAATGGGGGCAACCCTGATCCAGCAATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTTGTCCGGGAAGAAATCGCACCTGATAATACCGGGTGTGGATGACGGTACCGGAAGAATAAGGACCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTCGGGTCCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTGTGCAAGACCGATGTGAAATCCCCGGGCTTAACCTGGGAATTGCATTGGTGACTGCACGGCTAGAGTGTGTCAGAGGGGGGTAGAATTCCACGTGTAGCAGTGAAATGCGTAGAGATGTGGAGGAATACCGATGGCGAAGGCAGCCCCCTGGGATAACACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGG +>URS00010F344E rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGGACGCAGTTGCGAACGGGTGAGTAACGCGTAGGTAACTACCTATTAGAGGGGGATACCTATTGGAAACGATAGCTAATACCGCATACCTGTAGATGGATCTGCGTTGTATTAGCCAGGAGGTAGGGTAATGGCCTACCTAGGCAACGATACATAGCCGACATGAGAGGATGATCGGCCAGACGGGGAGTGCGGCACGGCCCAGACTCCTACGGGTGGCAGCAGTAGGGAATCTTGGGCAATGGGGGGAGCCCTGACCGAGCAACGCGGCGTGAGTGAAGAAGGTCGTCGGATGGTAAAGCTCTGTTGTTAAGGGAGCGGTACTTAAAGAGAAAGGGACGGCTAACTACGTGCCAGCAGCCGCGGTAATAC +>URS0001F774E1 misc_RNA from 1 species +GATGAAGAACGCAGCGAAATGCGATACTTGGTGTGAATTGCAGAATCCCGTGAACCATCGAGTCTTTGAACGCAAGTTGCGCCCGAAGCCATTAGGCCGAGGGCACGCCTGCCTGGGCGTCACACGTCGTTGCCCCCCCATCTACTCCTTCGGGATTGCGGGGGGCGGATGATGGCCTCCCGTGCGCCTCGCCGCGCGGTTGGCATAAATGCCAAGTCCTCGGCGACGCACGCCACGCCAATCGGTGGTTGCGAAACCTCGGTTGCCCGTCGTGTGCGGTCGTCGCGCATCGAGGGCTCGAAAAAATTGCCGGGTTCCGGCTCGGCTTTCAACGCGACCCCAGGTCAGGCGGGGTTACCCGCTGAATTTAAGCATATCAATAAGCGGAGGA +>URS000076AF46 rRNA from 1 species +GGTTAAGCGACTAAGCGTACACGGTGGATGCCCTGGCAGTCAGAGGCGATGAAGGGCGTGCTAATCTGCGATAAGCGCCGGTAAGGTGATATGAACCGTTATAACCGGCGATACCCGAATGGGGAAACCCAGTGTGACTCGTCACACTATCATTAACTGAATCCATAGGTTAATGAGGCGAACCGGGGGAACTGAAACATCTAAGTACCCCGAGGAAAAGAAATCAACCGAGATTCCCCCAGTAGCGGCGAGCGAACGGGGAGGAGCCCAGAGCCTGAATCAGCATGTGTGTTAGTGGAAGCGTCTGGAAAGGCGCGCGATACAGGGTGACAGCCCCGTACACAAAAGCGCATGTGCTGTGAGCTCGATGAGTAGGGCGGGACACGTGGTATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCCCCACCACCAAAGCATTCTCTGGTGTTGAAGGCCCTGCAAAGCAGCATCGCGGTGGCGGAGCGTCGTTTGCGACGCCCAACACACAAAACAAGCGGTGAATGCTTTGGGGTGGGGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGGAGGGAAACCGAGTCTTAATTGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACCTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAATTCATCTCCGGGGGTAGAGCACTGTTTCGGCTAGGGGGCCATCCCGGCTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACAC +>URS0001199C7A rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTCTGTCGCGTCTGCTGTGAAAACTCAGGGCTTAACCCTGAGCTTGCAGTGGGTACGGGCAGACTAGAGTGCGGTAGGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCATTTCCTGACGCTGGAGGCGCGAAAGCGTGGGGAGCAAACAGG +>URS0000FE9A33 rRNA from 1 species +TACGGAGGGTGCAAGCGTTATCCGGATTCACTGGGTTTAAAGGGTGCGTAGGCGGGTTGGTAAGTCCGTGGTGAAATCTCCGAGCTTAACTCGGAAACTGCCGTGGATACTATCAATCTTGGATATCGTGGAGGTAAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGATATGACATAGAACACCAATTGCGTAGGCAGCTTACTACACGATCATTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGG +>URS0001565352 rRNA from 1 species +AACGTAGGAGGCGAGCGTTATCCGGATTCACTGGGCGTAAAGCGCACGTAGGCGGTCGGGTAAGTCGGATGTTAAAGCCCTTGGCTCAACTAGGGGAGGTCATTCGATACTGCTCGGCTTGAGGATGAGAGAGGAAAGTGGAATTCCCGGTGTAGCGGTGGAATGCGTAGAGATCGGGAGGAACACCAGTGGCGAAAGCGGCTTTCTGGCTCATTCCTGACGCTGAGTGTGCGAAAGCGTGGGTA +>URS000144CD04 rRNA from 1 species +CAGTCGCCGCGGTAATACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGTGTAGGTGGTTGTTTAAGCCTGTCGTGAAAGCCCTGGGCTCAACCTGGGAATTGCGATGGATACTGGGCGACTAGAGTGCGGTAGAGGATAGTGGAATTTCCGGTGTAGCAGTGAAATGCGTAGAGATCGGAAGGAACATCTGTGGCGAAGGCGACTATCTGGGCCAACACTGACACTGAGACACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCGTGTAGTCCCTGTCTCTTATAA +>URS00000D01ED rRNA from 1 species +AGGATGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGTCCTGTCTCGCAAGAGGCAGGGAGTGGCGGACGGGTGAGTACCACGTGGGTTATCTACCGTGAGGTGAGGAATACCGGCGAGAAATCGCCGACAAGACCGCATAGCCTCGGTGCAAGCCGAGGAAAGCTTTCTCGAGAGAGGGAGCGCCACACGAGGAGCCTGCGCCCGATTAGCTAGCTGGTGGAGTAACGGTTCACCAGGGCGACGATCGGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGATTGAGAACGGCCCAGACTCCTACGGGGGGCAGCAGTGAGGAATTTTCGTCAATGGGGGCAACCCTGAACGAGCAACGCCGCGTGCAGGAAGAAGGTTTTCGGATCGTAAACTGCTTTTCTCGGGAAGAGAACGGACGGTACCCGAGGAATCAGCCCCGGCTAACTACGCGCCAGCAGCCGCGGTAA +>URS0002347B5A lncRNA from 1 species +TTCTATGTAAGTATACTTCCGGGGTCTTGCCTCCCTTCTGCCCTGATTCTTCCCTTGTGGGTGTGCTGTCCGCATGCGCAGTGGCCTGCTAGCCCTTGGAAAGGAAGCATACGCAGTGTTTACTGGAGTTGTACGCATGCTCACTCCAGGCGTTCTTCCCTTACCTGCCGAATGTCCCTAGGAGGTCATATACCAGTTAAACTGCCCCATTTTGCCTCTTAGTGTACATTGTGAGCCCACTCAACCAGTTCCTGAGATACTACTGGGAAGCTGCTGATCACCAGTTTCAGGTTTTTTCCATCTGTTGGGAAACTGCCTATCCCTTGTGCTCGCTGCAACCAATTATTATTTTAGGGAGACAGTTAACCGCCTGACCATCACCCGATGATCGCCTGATGTTCATGCATCCATGACTACATAAACTTTTTGGCCGTTTGACCAAATGGGGACATCTGGCATACTGCTATCAACCAATATCACTTACTATGTCATAGGCACTGAACCACAAGCCTTCTGCAGGAATGATCTCATTTAATTCTTACAGCAATCCTATGAGATAAGTAGTACTGATATTACCATTTTACTAATTAGAAACTTGAAGCTTGGCGAGGTTAAATAATATGTCCAAAGTTGCAGAATGATTCAGTAGCAGAGGCTCATTGAGGGGCAAACAAGATCAATCCAATCCCATTCCTGTGTGAAGAAGACAGACATTAAACAATTAACCAAATAAATAATTGATGATAGCTGTAATGAGTGCTATGACAGGTGCTGAGCCAAGGCATAACTTCTGTTCTGAGGGTTCAAGGAAAGCATTGTTCCCTGACAAAATGACATTCAGTCATGGACTCCCACAGTGCTTAGGAGCTGGCAAGGCAAAGGCTTGGGTAGGATGGTTGGGATGAAAGTAAGAATGAGGAGTGAACAGTATTCTAGCTGGGAGGGTCCAAAGTGGGAAGGGGCATGGCAGACCATGGAACTGAGAGAAGGCCAGCAGGCAGGCTGCAAAGAGGGTGAGGGAGGAGGCAGCACCAGATGAGATTGGAAAGCCAGGTTGGGGTGTCATGATAGAGGCTTTGTAGCCATGAGAAAATGTTGGGCCAGGCCAGGTGTGGTGGCTCACACCTG +>URS000084D716 rRNA from 1 species +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTTTAAGACAGATGTGAAATCCCCGGGCTTAACCTGGGGACTGCATTTGTGACTGTAAGACTAGAGTGCGGCAGAGGGGGGTAGAATTCCACGTGTAGCGGTGAAATGCGTAGATATGTGGAGGAATACCGATGGCGAAGGCAGACCCCTGGGTCGACACTGACGCTGATGCGCGAAAGCGTGGGGAGCAAACAGG +>URS0000CD773A rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTTTGTCGCGTCTGCTGTGAAATCCCGAGGCTCAACCTCGGGTCTGCAGTGGGTACGGGCAGACTAGAGTGTGGTAGGGGAGATTGGAATTCCTGGTGTAGCGGTGGAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCAGATCTCTGGGCCATTACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGG +>URS00011E7DCB rRNA from 1 species +TACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTGTTAAGACAGATGTGAAATCCCCGGGCTTAACCTGGGAACTGCATTTGTGACTGGCAAGCTAGAGTATGGCAGAGGGGGGGTAGAATTCCACGTGTAGCAGTGAAATGCGTAGAGATGTGGAGGAACACCGATGGCGAAGGCAGCCCCCCTGGGTCAAGATTGACGCTCATGCACGAAAGCATGGGGAGCGAACAGG +>URS00002D8EF0 rRNA from 1 species +AGCGGCGAACGGGTGAGTAACGCGTGAGCAACCTACCTTAGTTACTGGGATAGCCCGAGGAAACTCGGATTAATACCGGATATTCTTATTTAATCACATGATTTTCTAAGGAAAGGTCAGCCGAACTAAGATGGGCTCGCGTTCTATCAGCTAGTTGGTAGGGTAACGGCCTACCAAGGCTACGACGGATAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCTGCAGCAGGGAATATTGTGCAATGAACGAAAGTTTGACACAGCGACACCGCGTGTGGGATGACGGATCTAGGTTTGTAAACCACTTTCAGGAGGGAAGAAAACGACGGTACCTCCACAAGAAGCCCCGGCCAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGTTCAACAAGTCGGTCGTGAAAGTTCAGGGCTCAACCCTGAAATGTCGATCGATACTGTTGTGACTAGGATACGGCAGAGGTGAGTGGAATTCCGAGTGTAGCGGTGAAATGCGTAGGTATTCGGAGGAACACCAATTGCGAAGGCAGCTCACTGGGCCGCTATCGACGCTGAGGAGCGAAAGCTAGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCTAGCTGTAAACGATGGATACTAGATGTAGGAATTGGTTTAACGATTTCTGTATCGTAGCTAACGCGTTAAGTATCCCGCCTGGGGAGTAC +>URS0000C7CC16 tRNA from 1 species +TCTCTGGTAGTCCAGTGGCTAAGGCATTGCACTGCCAATGCAGGGGACCCAGGTTCGATCCCTGGTCTGGGAA +>URS00000379BF rRNA from 1 species +GGCTTTTTGATAATAATTTAAAGTCTTACCTGCTCTATGATATTTTAAATGGCTGCAGTATTTTGACTGTACAAAGGTAGCATAATCATTAGTTTTTTAATTGAAAGCTGGAATGAATGGTTTGATGAAAAAATATCTGTCTTTATTTAATGATTAAAATTTTATTTTTAAGTTAAAAAGCTTAAATTTTTTTAAAAGACGAGAAGACCCTATAGAGTTTGATATTAATTTTTTTTTATTTTAAATTTAGAATAAATTTTTTAATTAATGRTGAATATTTGATTGGGGTGATTAAAAAATTAATTTAACTTTTTTTATTTTATTTCATAAATTAGTGTATATTTGATCCAAAATTTTTGATTATAAGTTTAAATTACCTTAGGGATAACAGCGTAATTTTTTTAGAGAGTTCTTATCGAAAAAAGAGATTGCGACCTCGATGTTGGATTAAAATTTATATTTGGTAGTAGAAGCTGAAATATTGGGTCTGTTCGACCTTTAAAATTTTACA +>URS0002047E1F rRNA from 1 species +CCTACGGGTGGCAGCAGTAAGGAATATTGGTCAATGGACGCAAGTCTGAACCAGCCATGCCTCGTGGAGGATGAAGGTCCTCTGGATTGTAAACTTCTTTTATTTGGGAAGAAACTCCCGATTTCCATCGGGCTTGACGGTACCAGATGAATAAGCACCGGCTAACTCCGTGCCAGCCGCCGCGGTAATACGGAGGGTGCAAGCTTTATCCGGTTTAAATGGGTTTAAGGTGGGCAGGGAAGGCAGTGTAGAAATCTCCGGGCTTAACCCGGAAACTGCCATTGATACTATTTGTCTTGAATACTCTGGAGGTGAGCGGAATATGTCATGTAGCGGTGAAATGCTTAGAGATGACATAGAACACCCATTGCGAAGGCAGCTCACTACGGAAATATTGACGCTGAGGCACGAAAGCGTGGGGATCAAACAGGATTAGATACCCTTGTAGTC +>URS000059B2B0 rRNA from 1 species +CTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGTGGTTTAATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGTTTAACTTGAGTGCAAGAGGGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCTTGTAACTGACGCTGAGGCTYGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAGTGCTAGGTGTTAGACCCTTTCCGGGGTTTAGTGCCGTAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACTCT +>URS00014BE65D rRNA from 1 species +ATTGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGATCGGTAACGCGGGGGCAACCCTGGCGACGAGAGGCGGACGGGTGAGGAACGCTTGGGAATCTGCCTATCAGCGGGGGACAACACGGGGAAACTCGTGCTAATACCGCATACGCTCTACGGAGGAAAGCCGGGGACCGCAAGGCCTGGCACTGATAGATGAGCCCAAGCCGGATTAGCTAGTTGGCGGGGTAACGGCCCACCAAGGCGACGATCCGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAGTATTGGACAATGGGGGAAACCCTGATCCAGCGACGCCGCGTGGGTGAAGAAGGCCTGCGGGTTGTAAAGCCCTTTCGGTAGGGACGAAAGCTCTCGACCTAACACGTCGGGAGGATGACTTAACCTACAAAAGAAGCACCGGCTAACTCTGTGCCAGCAGCCGCGGTAATAC +>URS00004D4C08 rRNA from 1 species +ATGCAAGTCGAACGATGAAGCCCTTCGGGGTGGATTAGTGGCGAACGGGTGAGTAACACGTGGGCAATCTGCCCTGCACTCTGGGACAAGCCCTGGAAACGGGGTCTAATACCGGATACGACCACTGAGGGCATCCTCGGTGGTGGAAAGCTCCGGCGGTGCAGGATGAGCCCGCGGCCTATCAGCTTGTTGGTGGGGTGATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCGACGCCGCGTGAGGGATGACGGCCTTCGGGTTGTAAACCTCTTTCAGCAGGGAAGAAGCGAAAGTGACGGTACCTGCAGAAGAAGCGCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGCGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGCCTGTCACGTCGGATGTGAAAGCCCGGGGCTTAACCCCGGGTCTGCATTCGATACGGGCAGGCTAGAGTTCGGTAGGGGAGATCGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGATCTCTGGGCCGATACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGTTGGGCACTAGGTGTGGGCAACATTCCACGTTGTCCGTGCCGCAGCTAACGCATTAAGTGCCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGCGGAGCATGTGGCTTAATTCGACGCAACGCGAAGAACCTTACCAAGGCTTGACATACACCGGAAAGCATTAGAGATAGTGCCCCCCTTGTGGTCGGTGTACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCCTGTGTTGCCAGCATGCCCTTCGGGGTGATGGGGACTCACAGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGCCCCTTATGTCTTGGGCTGCACACGTGCTACAATGGCCGGTACAATGAGCTGCGATACCGCGAGGTGGAGCGAATCTCAAAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCCCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCATTGCTGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACGTCACGAAAGTCGGTAACACCCGAAGCCGGTGGCCCAACCC +>URS000030D236 rRNA from 1 species +CATGCAGTCGGAGGTAACATTTCTAGCTTGCTAGAAGATGACGAGTGGCGGACGGGTGAGTAATGCTTGGGAACTTGCCTTTGCGAGGGGGATAACAGTTGGAAACGACTGCTAATACCGCATAATGTCTTCGGACCAAACGGGGCTTAGGCTCCGGCGCAAAGAGAGGCCCAAGTGAGATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCGACGATCTCTAGCTGTTCTGAGAGGAAGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGTTGTGAGGAAAAGTTAGTAGTTAATACCTGCTAGCCGTGACGTTAACAACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATCACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGCTAGATGTGAAAGCCCCGGGCTCAACCTGGGATGGTCATTTAGAACTGGCAGACTAGAGTCTTGGAGAGGGGAGTGGAACTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACATCAGTGGCGAAGGCGACTCCCTGGCCAAAGACTGACGCTCATGTGCGAAAGTGTGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCACACCGTAAACGCTGTCTACTAGCTGTGTGTGTCTTTAAGACGTGCGTAGCGAAGCTAACGCGCTAAGTAGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACACTTGACATGCTGAGAAGTTACTAGAGATAGTTTCGTGCCTTCAGGAACTCAGACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTAAGTCCCGCAACGAGCGCAACCCTTGT +>URS0000D53B79 miRNA from 14 species +TTTATTCTCAGTTTGTTGCTC +>URS00018E852B rRNA from 1 species +CAGCCGCCGCGGTAATACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTATATAAGACAGATGTGAAATCCCCGGGCTCAACCTGGGACCTGCATTTGTGACTGTATAGCTAGAGTACGGTAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGACCTGTACTGACGCTCATGCACGAAGGCGTGGGGAGCAAACAGGATTAGATACCCCGGTAGTCCCTGTCTCTTATAC +>URS0001DF4263 tRNA from 1 species +GGGTGATTAGCTCAGTTGGTAGAGCAGGTGACTCTTAATCACCGGGTCCACAGTTCGAGCCTGTGATCACCCACCA +>URS00007C3FF8 rRNA from 1 species +TGGGGAATCTTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGAGTGAAGAAGGCCTTCGGGTTGTAAAGCTCTTTTACCAGGGACGATAATGACGGTACCTGGAGAATAAGCCCCGGCAAACTTCGTGCCAGCAGCCGCGGTAATACGAAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGATTGTTAAGTCAGAGGTGAAATCCCGGAGCTCAACTTCGGAACTGCCTTTGATACTGGCAATCTCGAGTCCGGAAGAGGTTAGTGGAATTCCCAGTGTAGAGGTGAAATTCGTAGATATTGGGAAGAACACCAGTGGCGAAGGCGGCTAACTGGTCCGGTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCAGTAGTCCCTGAGCGGGC +>URS0000D54BB5 miRNA from 15 species +ATGGGTAGCACAAGGATTAATG +>URS000041BA98 siRNA from 1 species +TCAACCTAGGCTCTGATA +>URS00000BB073 rRNA from 1 species +GGCGGTTAGATAAGTNTGAAGTTAAAGGCTGTGGCTTAACCATAGTACGCTTTGGAAACTGTTTAACTTGAGTGCAAGAGGGGAGAGTGGAATTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAGGAACACCGGTGGCGAAAGCGGCTCTCTGGCTTGTAACTGACGCTGAGGCTCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTNCACGCCGTAAACGATGAGTGCTAGGTGTTAGACCCTTTCCGGGGTTTAGTGCCGCAGCTAACGCATTAAGCACTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCCTCTGACCGCTCTAGAGATAGAGTTTTCCTTCGGGACAGAGGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTATTGTTAGTTGCCATCATTCAGTTGGGCACTCTAGCGAGACTGCCGGTAATAAACCGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGCTGGTACAACGAGTCGCAAGCCGGTGACGGCAAGCTAATCTCTTAAAGCCAGTCTCAGTTCGGATTGTAGGCTGCAACTCGCCTACATGGAGTCGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCACGAGAGTTTGTAACACCCGAAGTCGGTGAGGTAACCATTNGGAGCCA +>URS00002C2482 rRNA from 1 species +TGCGCCTTGCCAGCCCGCTCGAAACTTAAAGGAATTGACGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGCCTTGACATGCAGAGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAACTCTGACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTACCAGCACGTTATGGTGGGCACTCTAAGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGGCCTGGGCTACACACGTGCTACAATGGTCGGTACAAAGGGTTGCCAAGCCGCGAGGTGGAGCTAATCCCATAAAACCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGAATCAGAATGTCACGGTGAATACGTTCCCGGGCCTT +>URS00007D10E7 rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATGCATGCAAGTCGCACGCAGCACTCTTCGGAGTGCTGAGTGGCGCACGGCTGAGGAACACGTGGGCACCTGCCCGCGCGTGGGGGATAACCCGGCGAAAGCCGGGCTAATCCCGCATACGCTTGGCTCCCAATAGCCAAGCAAAGCGGCAACGCGCGCGCGGAGGGGCCTGCGGCCCATCAGGTGGTTGGCGGGGTAACGGCCCACCAAGCCGGTGACGGGTAGCTGGTCTGTGAGGACAACCAGCCAGACTGGGACTGAGAGACGGCCCAGACTCCTACGGGAGGCAGCAGCAAGGAATTTTCCCCAATGGGCGCAAGCCTGAGGGAGCAACGCCGCGTGCAGGACGACGGCCTTCGGGTTGTAAACTGCTTTTCGGAGGGACGAGAGTGACGGTACCTTCGGAATAAGCCCCGGCTAACTCTGTGCCAGCAGCCGCGGTAAGACAGAGGGGGCCAGCGTTGTCCGGACTAACTGGGCGTAAAGCGCGCGCAGGCGGTCGGAGGCGTCGGTGCTGAAAAGCTCCCGCTTAACGGGAGACGGCGTGCCGATACGCTTCGACTGGAGGGCGGGCGAGGGTGGTGGAAGTGCCGGTGTAGTGGTGAAATGCGTAGAGATCGGCTCGAACACCAGTGGCGAAGGCGGCCACCTAGCCCGCCCCTGACGCTGAGGCGCGACAGCGTGGGGAGCGAACTGGATTAGATACCCAGGTAGTCCACGCCGTAAACGATGCCGACTCGGTCTTCGTGGAGCGACAAGCTCCGGGGGGGCCCGAGCTCACGCGCTAAGTCGGCCGCCTGGGGACTACGAGCGCAAGCTTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCAGCGGAGCGTGTGGTTTAATTCGACGCAACGCGCAGCACCTTACCCAGGCTGGACATGGAGCTGCACAGCGGGGAAACCCGCTGGCCTTCGAGGGTGCTCCACAGATGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCCGCGGCCAGTTACACGTGTCTGGTCGGACCGCCCTTCGGGGAGGAAGGCGGGGATGACGTCAAGTCCGCATGGCTCTTACGTCTGGGGCGACACACACGCTACAATGACGCCGACAGTGCGAGGCGAAGGAGTAATCCGAAGCGAATCGCCAAACGGCGTCCCAGTGCAGATCGGGGGCTGCAACTCGCCCCCGTGAAGGCGGAGTTGCTAGTAACCGCGTATCAGCCACGGCGCGGTGAATACGTACCCGGGCCTTGTACACACT +>URS00004C538B rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGANCGAACCCTTCGGGGTTANCGGCGGACGGGTGAGTAACCCGTGGGAACGTGCCCTTCTCTGCGGAATAGGCTCGGGAAACTGGGTTTAATACCGCATACGCCCTTCGGGGGAAAGATTTATCGGAGAAGGATCGGCCCGCGTTAGATTAGGTAGTTGGTGGGGTAATGGCCTACCAAGCCTACGATCTATAGCTGGTTTAAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGAGGAATCTTGGACAATGGGGGAAACCCTGATCCAGCCATGCCGCGTGAGCGATGAAGGCCTTAGGGTTGTAAAGCTCTTTCAGTCGTGAAGATAATGACGGTAGCGACAGAAGAAGCCCCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGGGCTAGCGTTGTTCGGAATTACTGGGCGTAAAGCGCGCGTAGGCGGACTATTAAGTCAGGGGTGAAATCCCGGGGCTCAACCCCGGAACTGCCTTTGATACTGGTAGTCTAGAGTTCGAGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCTCACTGGCTCGATACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGAATGCCAGTCGTCGGCAAGCATGCTTGTCGGTGACACACCTAACGGATTAAGCATTCCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGCAGAACCTTACCAACCCTTGACATCCTGATCGCGGTTACCCGAGAGGGTTCCCTTCAGTTCGGCTGGATCAGTGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTCGGTTAAGTCCGGCAACGAGCGCAACCCACACCCTTAGTTGCCAGCATTCAGTTGGGCACTCTAGGAGAACTGCCGATGATAAGTCGGAGGAAGGTGTGGATGACGTCAAGTCCTCATGGCCCTTACGGGTTGGGCTACACACGTGCTACAATGGCAGTGACAATGGGTTAATCCCCAAAAACTGTCTCAGTTCGGATTGTTCTCTGCAACTCGAGAGCATGAAGTCGGAATCGCTAGTAATCGCGTAACAGCATGACGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTTGGGTTTACCCGAAGACGGTGCGCCAACCCTTACGGGGGGCAGCTGGCCACGGTAAGCTCAGCGACTGGGGTG +>URS0000D271BB rRNA from 1 species +GAGGAGAGCTTGCTCTCTGATTTAGCGGCGGACGGGTGAGTAATGTATAGGGAGCTGCCCGATAGAGGGGGATACCAGTTGGAAACGACTGTTAATACCGCATAATGTCTACGGACCAAAGTGTGGGACCTTCGGGCCACATGCTATCGGATGCACCTATATGGGATTAGCTGGTTGGTGGGGTAATGGCTCACCAAGGCGACGATCCCTAGCTGGTTTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTTGTAAAGCACTTTCAGCGGGGAGGAAGGGGATGTGGTTAATAGCTGCGTCTTTTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGTAGGCGGTATGTTAAGTTGGATGTGAAAGCCCCGGGCTCAACCTGGGAATTGCATTCAAAACTGGCATGCTAGAGTATGTGAGAGGGGGGTAGAATTCCAAGTGTAGCGGTGAAATGCGTAGAGATTTGGAGGAATACCAGTGGCGAAGGCGGCCCCCTGGCACAATACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCTACTA +>URS0000CC6E85 SRP_RNA from 1 species +GCCAGGAGAGGTGGCTCGTGCCTATAGTCCCAGTTATTTGGGAGGCTGAGGTGGGAGGATTGCTTGAGCCCAGAAGTTCTGGGCTGTAGTGCGCTGTGCCGATTGGGTGTCTGCACTAAGTTCAGCATCAATATGGTGACCTCCCGGGAGCGGGGAGCCACCCAGAGGGGTGAAACTAAGGAGGCATGAACCAGCCCAGGTTGGAAACGGAGCAGGTCAAAACTCCCGTGCTGATGAGTGGTGGGATCATGCCTGTGAATAGCCACTGCACTCCAGCCTGGGCAACATAGTGAGACCCCGTCCCC +>URS0001C732DD rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGAGACCTTCGGGCCTAGTGGCGCACGGGTGCGTAACGACTGGGAACTTGCCCTTGGGTTCGGAATAACTCCCCGAAAGGGATGTTAATACAGGTTAATGTCTTAGGGCCAAAGATTTATCGCCTTTGGATGGGGCCGCGTTGGTTTGGCCAGTTGGTAGGGTAAAAGCCTACCAAGGGGACGATCCTTAGCTGGTGGGAGAGGAGGCTCAGCTACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGGAGGAGTAGGGAGTATTGGGCGATGGGCGAAGGCCTGATCCAGCAATGCCGGGTAAGTGATGAAGGCGTTAGTGTTGTAAAGCTCTTTTAGCCGGGATGATAATGACAGTACCGGGAGAATAAGCTCCGGCTAACTCCGTG +>URS0000BDC546 lncRNA from 1 species +GAACTTCCTACAGTCTGAACTGGCTGTCCTCGCTTTGTTTGTAGACAGCCACGGACATGAGTTAGGAGAGGAAGACTCGGAGGGATCACTGGCCCCAAGTGGAAATCGAGGAACCTTCCCGACCCAGGAGGGCCCCGAAGAACTCGAGGAGCAGGACTGCGGAGAACAACGGGCTGGGAGGTGCGAGCCCGCCGAGGGCCTCTTCCTGACCTCCCGTCAGGTGAGGGGTCACGGTCCTGGCTGGCATGAGTTTCTCTCAGGTCCTGGCTCACGGCTGCTCTACAGGTGCACTTTCCCGGGCTTATCCTGTCACTAGACATCTGGGCTATGACAAGAGCAGGACCTCCCGGTAGGAAGACAGAGCAGGACACAGGAGCCGGGAGCCAGCGTGAAGGGAGGAGGCAGTGAGCTGAAAGGGGTAAGGCCCTTGGCAGCGCATCAGCGTTTCTCAG +>URS0000DCD19B rRNA from 1 species +AACTTAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGTATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCCGGAGACCCTTAGGAAACTAGGGGGTGCTTCCATCTGGAAGAATCTGGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCCTGCTTCCAGTTACCATCATTAAGTTGGGGACTCTGGAAGGACCGCTGCGGTAACAACGCAGAGGAAGGTGGGGACGACGTCAAGTCAGCACGGCCCTTACGTCCAGGGCTACACACGTGCTACAATGGTCGGTACAAAGGGTTGCCAAGCCGCGAGGTGGAGCTAATCCCATAAAACCGATCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTCGGAATCGCTAGTAATCGTGAATCAGAATGTCACGGTGAATACGTTCCCGGGCCTT +>URS000122ED6C rRNA from 1 species +TACGAAGGGGGCTAGCGTTGCTCGGAATCACTGGGCGTAAAGGGTGCGTAGGCGGGTCTTTAAGTCAGGGGTGAAATCCTGGAGCTCAACTCCAGAACTGCCTTTGATACTGAAGATCTTGAGTCCGGAAGAGGAGAATGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTGGCGAAGGCGGCTCTCTGGGACGGTACTGATGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS000217E4C6 lncRNA from 1 species +AACAGCTCTCCCCATCCCCGACTTGCTGAGCAGCCCTGGGCAGTCTACTCTACAGCTCTCGACCTCCCTGAGGTCCATCTAGGGAGGACACAGGGACAATAATTCAAACAAATGCTTTCACGTCGGTCTGAGCTAACAGAGGGGGTGACTGGGGTGGGGGCCCCCTGGGGAGAGAAGGAGGGAATGGAGAAGCCTTCCCAGTGTCCAGAGTCACCACTTATTTCAGAGACGCTGGCTTCTGTGGGCCACCCAGATCTTCCTTCTCCTCTTCAGTGAATGACAGGCGGGGACCAAAGTCCCATCGAGCCAGAAGGGTCATTTGATAGTCCCATTCTCTATTACTGGTGCCTTTACAGGTGAAAAACTAGCCCAGCTCCCACTTACCCAAGAACACATCACAGGCCTTCCAATGTCTCTAAGCACTGCCGGGGCCCCAGGGCCTGATCGAGAGGGCAGGCCCTGCGGATGGCCGTCCACCACAGGGGAACCTTAGGGACTGTCTATGGAAACTGAAAAGAGCCACTGGCACCTGTCTTTGTCCAGCGAAGAAGGGAGATGAGCGGCCCCACCCAGCCCTTAGAGCTGCTTTCCTTCCCTTCCCCCACAGCCCGTGCCCTGACCCGGGGTGAGGGCTGCCCTGGGGCCTGGGCGCCGGCCTGCTCTTTGCCTGTGTGTGCCTGCGAGTGGGAGACGGAGAGAACACTTGGGAGCGAGTCTTTCCTTCCTGAACTTCTATTTCCTCAACTATTAACAAGGAAATTGCATTAGGTGATCTGTGGGTCAGGGCTTCCTCCTCTCCAGGAGGAGGATGTTCTAGTCTTTTCTCGCTGCACGCAGTCCTGAGCTCCACTGCAGAGAGAAACCGAGAGCAGAACGTTCATTCCTAAGAGTGAGGTGTCCAGTGCCCAGCTCTCCCTGGCTTTCCTGCTTGGAAAAGGCAGAGGAGAATGGCTTACAAACGCCAAAACCTGGCCGGCGATCATGCTGTGGTTTGCAGAGAATTAGAAGGCATTGTGGATCTCGCAAGGTGTTTGTAGCCAGAGCAGAAATGCCTTGGCAGGAGAAGCCAGGCGCACCAGCCCAGCCTCGTGGGTGGGCCTCTCTGTTGGCCACCGGACAGGGGCTGCCAGGACGTTTCTTGCCCCCAGCTGCCCTAAAGTCATGAGAGAAAATGGGTCAGACTGCAGAGGCTTATCCTTCTGGGACTCAGCTTTACTGCCCTGTGGCTCCAAGAGAAATGAAGAATATTAATCAGAAATTAAAAAAAAAAAATCAGCTCCATCAAAGGCCCCAAACTAGGCAAAAGGTTGAAGAATCTGCTCTCTGCTTGTATCTCTCTGTCTAGAGGGTATCCTCCCAGCAACAGCTTGTAGGGATGCTGTTATGGGCCCTTCTCCCAAATCCATATATCCTAACCCCTAATACTTCAGATGTGACTATGTTTGGAGATATGGTCTTTACAGAGGCAATTACATTAAAATGGAGTAACTAGGGTGAGCTCGAATCCAGCAGAACTGTAGTCTTTATCAGAAGGGAACATTTGCCTGCGGACGCACATGGAGGAGAGACACCAGGAGAAGATGGGCGTCCCCAGCCAGGGAGAGCGGGCCGGGGTGGATTCTTCCTTTGCACCCTCAAAAGGAGCCCACCCTGCCAACGCTGTGATTGTGGACCTCTAAGCTCTGCTGTTTAAGCCACCCAGTTTGTGGCACTTTGTTAGAGCAACTCTAGCAAATTTCTCCAGATGCTGCTCTGTTGGGAGGTCTGCACAACCTTGAGACTGCCTGGACTCAGAAGAATGAGTCCGCATGAGGGGAAGGGTTCTGCCCTTGCAGTGCAGCCTTATTTTAACATGAAACAAAACTGATCTATTACTCTCTTCCCTCAGAGCCTAGTCTTTTAAATTTTTTATTTCTTTTGGTATTGGTTTAACACGTTTTATTGTTTTAATCCCTTTAGTCTTTTTATTTTGTGAGTTTAATGAGTTTACTTATCTCAGTCATTTTTTAATCCCGTTTTTTCTTTCTTCTAGCTATTTTATACTATGTCTTTTATCTCATCTTCTAGATCTTTTGGTATTATATTTTTATTTTCCGTCTGTTATTTCTAACCCTTTGCCTTATCGTGCCTTTGTTCCATCTTTTAATTTCTTTTTAGCTTATTTTTTTTATTTTTAGTTCATATTGTCGCTTGCCTGCTGCCTTTTTTTTTAACTACTTTTTATTTCTTC +>URS000185AE94 rRNA from 1 species +GACGGAGGGTGCTAGCGTTGTTCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGCCTTGCAAGTCGGTTGGTGAAAGCCCGGGGCTCAACCCCGGAGGTGCGGCCGAGACTGCAGGGCTGGAGGCCGGAAGAGGAGGGTGGAATACCCAGTGTAGAGGTGAAATGCGCAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCTATCTGGACGGTTTCTGACGCTAAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS00013B9BDC rRNA from 1 species +TACGTAGGGGGCTAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGCTCGGTAAGTCCGCTGTGAAAGTCGGGGGCTCAACCCTCGAATGCCGGTGGATACTGTCGAGCTAGAGTGCGGAAGAGGCGAGTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCAATTGCGAAGGCAGCTCGCTGGGACGTCACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS00021EA825 tRNA from 1 species +GCCGAGATAGCTCAATGGTAGAGCAACCGCCTTGTAAGCGGTAGGTTACGAGTTCAAGTCTCGTTCTCGGCT +>URS0001B16A08 rRNA from 1 species +ACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCTACTAGCCGTTGGAAGACTTGATCTTTTAGTGGCGCAGCTAACGCGATAAGTAGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGACGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGAGAATCCTTTAGAGATAGAGGAGTGCCTTCGGGAACTCAGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCTTAGTTGCCAGCACGTAATGGTGGGAACTCTAAGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGGCCCTTACGACCTGGGCTACACACGTGCTACAATGGCCAGTACAGAGGGCTGCAAACCCGCGAGGGAGAGCCAATCTCACAAAGCTGGTCGTAGTCCGGATCGCAGTCTGCAACTCGACTGCGTGAAGTTGGAATCGCTAGTAATCGTGAATCAGAATGTCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTGGCTAGTCTAACCTTCGGGGGGACGGTCACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAGCCCTAGGGGAACCTGGGGCTG +>URS000113661D rRNA from 1 species +GCAGCAGCCGCGGGAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTCTGTCAAGTCGGATGTGAAATCCCTGAGCTTAACTTAGGAATTGCATTCGATACTGGGAAGCTAGAGTATGGGAGAGGATGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGATGGCGAAGGCAGCCATCTGGCCTAATACTGACGCTGAGGTACGAAAGCATGGGGAGCAAACAGGATTAGATACCCCTGTGTCCCTGTCTCTTATACA +>URS000018AC20 rRNA from 1 species +ATTGAACGCTGGCGGCATGCCTTACACATGCAAGTCGAACGGTAACGGGCCTTCGGGTGCCGACGAGTGGCGAACGGGTGAGTAATGCATCGGAACGTACCTTTCAGTGGGGGATAACGTAGCGAAAGTTACGCTAATACCGCATATTCTGTGAGCAGGAAAGCAGGGGATCGCAAGACCTTGCGCTGATTGAGCGGCCGATGTCAGATTAGCTAGTTGGTGAGGTAAAGGCTCACCAAGGCGACGATCTGTAGCGGGTCTGAGAGGATGATCCGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAAATGGGGGCAACCCTGATCAGCCATGCCGCGTGAGTGAAGAAGGCCTCGGTT +>URS0001022610 rRNA from 1 species +CAGTAGCCACGGGAATACGAAGGGGGCTAGCGTTGTTCGGATTTACTGGGCGTAAAGCGCACGTAGGCGGATCGATCAGTCAGGGGTGAAATCCCAGAGCTCAACTCTGGAACTGCCTTTGATACTGTCGATCTGGAGTATGGAAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAGGAACACCAGTGGCGAAGGCGGCTCACTGGTCCATTACTGACGCTGAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCCGTAGTCCCTGTCTCTTATAC +>URS0000FD5F85 rRNA from 1 species +CCTACGGGCGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGAGGGATGAAGGTCTTCGGATCGTAAACCTCTGTCAGCAGGGAAGAACGGTCACTGTGCTAATCAGCAGTGAATTGACGGTACCTGCAAAGGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTATTGGGCGTAAAGCGCTCGTAGGCGGTATGTCAAGTCAAGGGTGAAATCCCCGCGCTCAACGTGGGAACTGCCTTTGAAGCTGGCAAACTGGAGTGTGTGAGAGGATAGTGGAATTCCAGGTGTAGGAGTGAAATGCGTAGATATTAGGAGGAACACCAGTGGCGAAGGCGACTTTCTGGACTGTACCTGACGCTGAGGCGCGAAAGCGTGGGTAGCGAACGGGATTAGATACCCCAGTAGTC +>URS000184CF18 rRNA from 1 species +AACGAACGCTGGCGGCATGCCTAACACATGCAAGTCGAACGTGAAGGGGACTTCGGTCCCTGGAAAGTGGCGCACGGGTGAGTAACACGTGGATAATCTACCCGATGATCTGGAATAACACTTCGAAAGGGGTGCTAATACCGGATGAGCTTACGACGTCTTCGGACGACGCGGGAAAAGGGGGCTTCGGCTCCTGTCATCGGATGAGTCCGCGGCCCATTAGCTAGTTGGTAGGGTAATGGCCTACCAAGGCTACGATGGGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGCGCAATGGGCGAAAGCCTGACGCAGCAATGCCGCGTGAGTGATGAAGGCCTTCGGGTCGTAAAGCTCTGTCAGAGGGGAAGAAACTCCCGTCGGTTAATACCCGGCGGGCCTGACGGTACCCTCAAAGGAAGCACCGGCTAACTCCGTGCCAGCCGCCGCAGTAAAAC +>URS00020C60CA rRNA from 1 species +GACGAACGCTGGCGGCGCGCTTAACACATGCAAGTCGAACGGAAAGGCCTGCTTTCCCTTGTGGATTGCGGGTACTCGAGTGGCGAACGGGTGAGTAACACGTGAGTGATCTGCCCCCAACTTGGGTATAAGCCTGGGAAACTGGGTCTAATTCCCGATAGGACTGCAGGGTGGTGCCGGTGGTGGAAAACGATTTTCTAGTGGTGGGGGATGAGCTCGCGGCCTGTCAGCTTGTTGGTGGGGTAGGGGCCTACCAGGGCGGCGACGGGTAGCCGGCCTGGGAGGTGGGCAGGCGAAATCGGGCCTGATATAGGGCGGAGACTCCGGGGGGAGGCATCAGTGGGGGGGATGGCACAATGGGCGGAAGCCTGATGGGGGGACGCCGGGTGCGGGGTGACGGACTTCGGGTTGTAGGCGGGGATCCCCTGTGGTGGAGAGGGTGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTG +>URS00023F918D lncRNA from 1 species +CCATACATGTACCACTGCTACATGGTGCAGTAAATTCAACACACAACCTACCCCTTAAACCCTATGAGTTACAACATAGGCACCTGCACTATCAACTTCTCATGACTACTAACGAACATGTCACACAAGCATACAAGTTCAATGGAATACTTATAATAGGATTCTAAGCTCACATTGTCATAATAGTTACCATACATGTCATTCATATTATCAAGAAGATAAATACACATCTATATCACAATAAGGCATCCCATACATGTAGACTAAGATATATATATTACTTGGGATAATTCACTAACTGATATTGCCTGACTAAGCCCTACTTGGTCTTTAGTAATACTAATTTTAGTATTCAAGAACGATTAAGAACATTTTGATCAAAATCAAACCTAGTAGATCAATTAGGAAGATCCGCCCACTAGATTTTCAATCCGTAAATTCCTAAGGTCCTCAAATATTACATATAATAACATATTAAAGTTTGGTAACGATCTAACGGTCGGATCATCGATTGTTATAATATTCAAGTGGTGGTCTCTAACGAAAATATGTTCAAACGACGGGATTTCATCAATCGGATGACACATATTAACTCGAGGTATTGAATTTAGCATAGAAAGATAGAGTTGGCCCACTGGTTACTCACCGCCACATGCGGCGGTTTCTGGCAAACGAAAACCCAATTTTTTGACAAACTCCAAAAAATTACCAAATTTTATAGAAATGTAGAGCAAGTCAAGGGGAATAATTTTCATACCTGGGTCAAAGTTCAATTTGGCTA +>URS000228E004 rRNA from 1 species +GCATCTCTTGAATATCAAAGGTGAGCCAGTACAGGATGGACCCGCGTCTGATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCGACGATCAGTAGCCGACCTGAGAGGGTGATCGGCCACATTGGAACTGAGACACGGTCCAAACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGAAAGCCTGATGCAGCAACGCCGCGTGAGTGATGAAGGCCTTCGGGTCGTAAAACTCTGTCCTCAAGGAAGATAATGACGGTACTTGAGGAGGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCTAGCGTTATCCGGATTTACTGGGCGTAAAGGGTGCGTAGGCGGTCTTTCAAGTCAGGAGTGAAAGGCTACGGCTCAACCGTAGTAAGCTCTTGAAACTGGGAGACTTGAGTGCAGGAGAGGAGAGTGGAATTCCTAGTGTAGCGGTGAAATGCGTAGATATTAGGAGGAACACCAGTTGCGAAGGCGGCTCTCTGGACTGTAACTGACGCTGAGGCACGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCTGTAAACGATGAGTACTAGGTGTCGGGGGTTACCCCCTTCGGTGCCGCAGCTAACGCATTAAGTACTCCGCCTGGGAAGTACGCTCGCAAGAGTGAAACTCAAAGGAATTGACGGGGACCCGCACAAGTAGCGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCTAAGCTTGACATCCCAATGACATCTCCTTAATCGGAGAGTTCCCTTCGGGGACATTGGTGACAGGTGGTGCATGGTTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAGAGAGACTGCCAGGGATAACCTGGAGGAAGGTGGGGATGACGTCAAATCATCATGCCCCTTATGCTTAGGGCTACACACGTGCTACAATGGGTAGTACA +>URS0000E6547F lncRNA from 1 species +CCATCACCAACACCATGTCCTCCCTGGTGAAGGAGCTGCACTCGGCAGAGGAAGAAGACGAAGAAGAAACAGAGAAGCTGCAGAATGGGAAGGACCGAGGTGAGGAGACAAAGCTGTCTGAGAGCTCTGCAGCATTTTCTGACTCACTCAGGGTTCTCTGGCTCCCTTTGGAGCCCCACCAGGGCCTCTGGGTGCACGTGGGTGGCTCTGGGTGCCTCTGGATCAGATGGCTCTGGACCACATGGATGGCTCTGGATCAGATGTGCTGATGGGGTTCCATGGTGACCTCAGCTGGACACGTGTCCCTGTGCTGGGTCCCATGGTGTCCCTGTGCTGGGTCCCTCAGTGTCCC +>URS000193CF2E rRNA from 1 species +GTAGGTGGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGCGCGCGCAGGCGGTCCTTTAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAGGGTCATTGGAAACTGGGGGACTTGAGTACAGAAGAGGAAAGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATTTGGAGGAACACCAGTGGCGAAGGCGGCTTTCTGGTCTGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGTGCTAAGTGTTAGGGGGTTTCCGCCCCCTTAGTGCTGCAGCTAACGCATTAAGCACTCCGCCTGGGGATACGGCCGCAAGGCTG +>URS00011F5F41 rRNA from 1 species +TACGTAGGGACCGAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCGTGTAGGCGGCTTGCTAAGTCTTGCGTGAAATCTCGGGGCTCAACCCCGAGCGGTCGTGGGAAACTGGCAGGCTAGAGTGCGGGAGAGGAGAATGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCCGTCGGCGAAGGCGGTTCTCTAGTACGGTACTGACGCTGAGACGCGAAAGCGTGGGGAGCGAACAGG +>URS00005015FB rRNA from 1 species +TCTTCGGGATAGGTAGTAGTTAAGGTGATGGCTTAACTAGCCAAAAATTCTCGTAGTCGAAACTGAAAGGTTGATCGACCACATTGGGTCTGAAAAAACCCCAATGCAAGTTAGTACAGCAGTGAGGAATATTGGTCAATGGCCTAACGGCTGAACTGGCAACTTGGAGAAGTGGTAAGTCTTATTTTGATTAGATTATAATATATAATCTATAAGATTGTATTAATATTGAATAAAGCTTTGTTTATATATTGATAATGACAGTATATATATCGTGTCTTGACTAATTACGTGCCAGCAGTCGCGGTAATACGTAAGAGACTAGTGTTATTCATCTTAATTAGGTTTAAAGGGTACCTAGACGGTCAATATATCTTGTAAAATGTTAGTACTTGACTAGAGTTTTATATAAGAGGGCAGTACTTGAGGAGGAGAGATGAAATTCTATTATACCAAAGGGACTCGGTAAAGGCGAAGGCAGCCCTTTATGTATAAACTGACGTTGAAGGACGAAGGCACAGAGCACAAACAGGATTAGATACCCAAGTAGTCTTTGCAGTAAATGATGAATGCCATAGGTTNAGATTAA +>URS000156E271 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCTTAACACATGCAAGTCGAGCGGAGATGAGGTGCTTGCACCTTATCTTAGCGGCGGACGGGTGAGTAATGCTTAGGAATCTGCCTATTAGTGGGGGACAACATTCCGAAAGGAATGCTAATACCGCATACGTCCTACGGGAGAAAGCAGGGGATCTTCGGACCTTGCGCTAATAGATGAGCCTAAGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCTGTAGCGGGTCTGAGAGGATGATCCGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGGAAGCCTGATCCAGCCATGCCGCGTGTGTGAAGAAGGCCTTTTGGTTGTAAAGCACTTTAAGCGAGGAGGAGGCTACTGAGACTAATACTCTTGGATAGTGGACGTTACTCGCAGAATAAGCACCGGCTAACTCTGTGCCAGCCGCCGCCGTAATAC +>URS0001EFA8A7 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATAGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCGAAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCACGTCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS000127A0CB rRNA from 1 species +TACGTAGGGGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCGTGTAGGCGGTCAGGTAGGTCCGTTGTGAAAACTCGAGGCTCAACCTCGAGACGCCGATGGAAACCATCTGACTAGAGTCCGGAAGAGGAGAGTGGAATTCCTGGTGTAGCGGTGAAATGACGCAGATATCAGGAGGAACACCGATTGCGAAGGCAGCTCGCTGGGACGTTACTGACGCTGAGACGCGAAAGCGTGGGGAGCAAACAGG +>URS0000123E88 piRNA from 1 species +TGATAAGTGTCCTCCAAATGGCCAGTGAGC +>URS00015DB2A6 rRNA from 1 species +TACAGGGGGTGCAAACGTTGCTCGGAATTATTGGGCGTAAAGCGCGCGTAGGCGGCTACTTAAGTCGGATGTGAAAGCCCCTGGCTCAACTGGGGAAGTGCACCCGAAACTGAGTGGCTTGAGTGCGAAAGAGGGTCGCGGAATTCCCGGTGTAGAGGTGAAATTCGTAGATATCAGGAGGAACACCGGTGGTGTAGACGGCTCACTGGACCGTAACTGACGCTGAGACACGAAAGCGTGGGTAGC +>URS00006B5731 tRNA from 1 species +TCCCTGGAGGTCCAGTGGTTAGGACTTGGTGCTTTCACTGCAGTGGCTGAGGTTCAATTCCTTGTCAGGGAA +>URS0001521DBC rRNA from 1 species +CCTACGGGTGGCAGCAGTGGGGAATATTGCACAATGGGGGGAACCCTGATGCAGCGACGCCGCGTGGGTGAAGAAGCGCCTCGGCGCGTAAAGCCCTGTCAGCAGGGAAGAAAATGACGGTACCTGAAGAAGAAGCACCGGCTACCTACGTGCAAGCAGCCGCGGTAATAAGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGGGCGCAGACGGCGATGCAAGCAAGGAGAGAAAGCCCGGGGCCCAACCCCGGGACTGCTCTTGGAACTGCGTGGCGGGAGTGCAGGAGGGGCTGGCGGAATTCCTGGTGTAGCGGTGGAATGCGTAGATATCAGGAGGAACACCGGTGGCGAAGGCGGCCTGCTGGACTGCAACTGACGTTGAGGCCCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCCTGTAGTC +>URS0001374C98 rRNA from 1 species +TACGTAGGGTGCAAGCGTTGTCCGGAATTATTGGGCGTAAAGAGCTCGTAGGCGGTTTGTTGCGTCGGCTGTGAAATCCCGAGGCTCAACCTCGGGTCTGCAGTCGATACGAGCAAACTAGAGTGTTGCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGATGGCGAAGGCGGCTATCTGGCTCACAAACTGACGATCAGGCACGGAAAGCGTGGGGAGCAAACACGG +>URS00005F7B23 piRNA from 1 species +TCCGAAGTCACAAGTAGGCAAAGCTGGCCTT +>URS0000A2FBFB rRNA from 1 species +GACGGAGGAGGCGAGCGTTATCCGGAATTATTGGGCGTAAAGCGTCCGTAGGTGGCTGAGCAAGTCTTTTGTCAAATAGTGGAGCTTAACTCCATAGAGGCGGGAGAAACTGTTTAGCTTGAGTATGGTAGGGGTAGAGGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAAGAACACCAGTGGCGAAGGCGCTCTACTGGGCCATAACTGACACTGAGGGACGAAAGCTAGGGGAGCGAAAGGG +>URS00023F966A lncRNA from 1 species +CCATTCCAATCACATCTAATGCCTCCCTCGCTCGCCAGAGGTATGCCGACTCTTGCGAGGCTGCCATTAACGAGCAAATCAAGTAAGCATCCATCCATTAAAATCAAAAGCTCCCTTAAAATTTAGATATTAACAGAGGTTGAGGTTGATTTTTGGACAGTGTGGAATACAACGTGTCGTATGTGTACCATTCAATGTACGCCTACTTTGACAGAGACAACGTTGCTCTCAAGGGTCTTGCCAAGTAACTTTTTCTTACTACTACTACTGCCTTTCAATCTTAATCTAACTAAAGCAAAAATTTAATAATATGATAAAACTTGGTTCAGATTTTTCAAGGAATCAAGTGATGAAGAAAGAGAGCACGCTGAGAAGTTTATGGAGTACCAGGTTTCCCTCTCTTTTTTCCCCATTCTAGAAGTTGAAAAGAATATTGATTTGATTTGAGGGTTAATATATGTATGGTTTATGTATATGTGTGTAGAACAAAAGAGGAGGAAGAGTGACACTCCACCCTATCGTCTCCCCTATCTCTGATTTTGAACATGCTGAAAAAGGAGATGCCTTATATGGTATATATTTTTTTTTATACTTATACAAAAAAAAAAAACACTTTCTTTCTTGATTAATAAGTGTATACACAGATCTTGAAATGGTCTTATACTAATCTATATTATTTTCAGCAATGGAATTGGCCCTGTCTCTGGAGAAACTTACCAACGAGAAGCTTCTAAACCTTCACAGAGTATGTTCCCAAAACTTATCCATCTAAAGTCAATCAAATAAGGCATTCACTAATTTTAAAATAATAATTAAAAAAAACAGGTGGCATCAGAGAACAATGACCCACAGTTAGCTGATTTTGTTGAGAGTGAGTTTCTCGGAGAGCAGGTGTGTTTTTCTTTTGTTCGTTTTCTTAACTAGTGACTTGAAACTAGTACCCACTTTTAAATAAACATATTTTTCTCTCCCCCTTAGATTGAAGCAATCAAGAAGATCTCAGACTTCATCACCCAGCTAAGGATGGTTGGCAAAGGACACGGTACGCTGTTTGATCTAAACCTCCCCTATATTCAGTACTAGGACTAGAATTTCAGTAGTAATTTTTTTAGAAAAGCTTATTAAATTTTTATGTGTCTTTTGCAGGAGTTTGGCACTTCGACCAGATGCTTCTGAACTAGAGTGGGACCTCTATAAGTTCACTTTATGCTCTGGGGAGATTAAAAGAGAAGTAAACAGAAGAAGATTCTGTAAAAGTTGCTAGAGTGGAAGTTATTATTGGAGCAAAAATAAGATTTGTAGTACTAATAGTAGTAAGCTTTGTGTGTTAAGATGATGGGTTTTTTTTTGTAATAATTTCATAAGTTTAATCTATGAAGGTGGTTTTTGTTTCATATTTTCATGTTCTGACTATATATATGAACAAACGGAGACTTGAGTCCGATTAATAGGTAGAGAAACACTCTAACTAAACGCAATGCTGCAATTCAAAAGGTGAAAGAAGAGTTAAAAAAAAATAAGGAACCTGTGGATGAAGAACATGAAGCCTCGGTCACTCAGTGAGATAACTGAAAAGCAAACAAAGAAGAGTTAAAAAGAAAAGATATATGAATTGAGACTTTAACATAAGTGCAATGCAAGTTGTTTATATTTCCAAACAGTATGTTTGATCCAGAGCTAGTATCTGATGCCCTAACTTAGATTCTATCTTGAACACTAGACTAGACAGTCTTCT +>URS000010D699 rRNA from 1 species +AGGACGAACGCTGGCGGCGTGCTTAACACATGCAAGTGGAGCGACGAACCAGGGCTTGCCCTGGGGCAGAGCCGCGAACGGGTGAGTAACACGTGGGTTACCTGCCTCGATGACCGGGACAACCCGAGGAAACTCGGGCTAATACCGGATGTGCCCGCAAGGGGAAAGGAAGCTTCGGCCTCCGCATCGAGATGGGCCCGCGGCCCATTAGCTTGTTGGTGAGGTAACGGCTCACCAAGGCTTCGATGGGTAGCTGGTCTGAGAGGACGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGGGCAGCAGTGAGGAATTTTCCGCAATGGGCGCAAGCCTGACGGAGCAACGCCGCGTGCAGGAAGACGGTTTTCGGATCGTAAACTGCTTTTCTCGGGGACGAGAACGGACGGTACCCGAGGAATCAGCCCCGGCTAACTACGTGCCAGCAGCCGC +>URS00002998B4 rRNA from 1 species +GACGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGATGAACCGGAGCTTGCTCTGGGGATTAGTGGCGAACGGGTGAGTAACACGTGGGCAACCTGCCCCAGACACCGGGATAACCATTCGAAAGGATGGCTAATACCGGATACGACCACTTCGGGCATCCGATGGTGGTGGAAAGGATTCTGGTCTGGGATGGGCCCGCGGCCTATCAGCTTGTTGGTGGGGTAATGGCCTACCAAGGCGACGACGGGTAGCCGGCCTGAGAGGGCGACCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCGCAATGGGCGAAAGCCTGACGCAGCGACGCCGCGTGAGGGACGAAGGTCTTCGGATTGTAAACCTCTTTCAGCAGGGATGAAGCGAAAGTGACAGTACCTGCAGAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCG +>URS0000E6E834 lncRNA from 1 species +GCAGCAGCAGCCAGCACAGTGTCTTTGGCACAGCCCAGGCAGACAGGTGGAGGAGAACTGAATCCTGCTTCTTGACAGCCCATTCTATCAGCCTTCATCTCCAACTTGTTAAATTTCCAACAAGTTGCTTCGTGCTCTCCTTTATCCACTGCCCCCAAGCATGGGAGGAGTTACTGCAAGTAGCCACAGAGCCACCTTCTGTTCTCCTGCAGCTTCCTCCTGCAAAACCCAACCACCAGTCCAGGAACACAAATATCAGCCAGAAGTGGTATGTGATTGCTTCCATCTGATTTGGAGAGGAATTGCTTTTCCAATAGTGGATGATTTGATCCAGAACTGGAGAACCAACCTGGCAGTCAGCAGCTTCATGAGACCAAATCTGACCCAGGGCCTCAGAGCTCTGCCAGCTGCAGGCAGGTGATCACAGAAGCTAGAACAGAGCAAAACAAAATTAAAAAAAATCCATGAACTAAGTGTAGAATCCATCTGAATTCAGCAAGATGGGCTGTAACAGGAGAAGTTTTATTTATTCCTTGACCTGAACTCAGCTCACACCCATCAAAGTGACAAAAGGTGATAAATATCCTTTGGGGTTCCAGGTAATTTCTTCCCTTCTGCTTTACCTGGCAGGGAATGTTTTTGGAAGATTAATGAAATACCCAGAATTTTGTGCATGTATATGTGTGTGCGTATGTGTGTATAGCTATTTATTTACTTACTTATATCTATAAACCAGCATTTTTCATGCAAACTGAGAATTCATCGACATGGTATTGTTCTTGTTGCAACCCAGGGAATTAAAGGATGCCGACAATTAATGGAATCACAGAAGTACAAGATGGTTTGGGTTGGAAGGCACCTTAAAGCTCATCTTGTTCCACCCCGTGCCCTGGGCAAGAACACCTTCCACCAGACCAGGTGGCTCCAAGCCATGGAACATACGCAGAGCTGGGGCAGACACACATGGGGGCACAAACACAGCTTCTGGTTTTTATTTCACAGTTCTGAGTTGTGGGTCTGTTTAGGAGGAAATAACCCCCCACACACACAGTAAGTGCAGGGTTTTCCAGGCCCCCTCCAAACATCCCCTGCAGGCTCCCCCTGATCATCCCTGCCAGGCCAGCAGCCCACCCCCACTGCTGTATTCAGTGGTACCAGGACACCTCCAGCTCTGTATCTGTGTCCTCCTGTTCTCAGGGAAACCCATGAGGATCAGTTTGCTTTTGTATCAAATTTACTTCTTTGCTGGTACCATTTTCTCTGCTTACTCATAAACACACCGAGCACCACAAACACTTTGGAAACTCAAATGACTCCTTACTGTGAAAACTGGGAGCAGAGCCTAACCCCCATCTGGGTGCACCCTCCTGTCAATGAGAGCAATGGGAGAGTTCTTCCAAATCAGCCCAGCTGAGCACAGGTGTTTCCTGATGTCCCTCCAAACCTGCAAGATTAATTTTCTGCCCATTTAGTCCTTGTGCTGGCAGTGGAGATGTCCTGGTCACAGTTTTTAGATGTCTTCTCTAGACTGAGGAATCAGAGTTCAGGCATAAACCACCTTCTTTTGGGACATGAGGAATAAAACTTCCATATCCGCAGCCCA +>URS00019739F1 lncRNA from 13 species +ATGCAAGGTATCTGTGGAAGCCTGAAGACGCCAGAATTTTGTCTGCTTGTAATGAAGGTTTCAGGTCTTACAGATCCCTCGGCAAAGTCCATGCCCCCTAGCTACCCACAGTGTGACACTAGCGCTCTACCGTCTAGTTATGTCAGCATCACAGTAAGAATGCCCTCGCATCCGAACCATGATGGGAAATCAGCTGGCCACAGCAAGGCTGGAGAACCCTGTGTGTGCAGTCCTGCAGCACGGCCTTCTGAAGGCGCACCTCCTGCAGAGGTGTTGACGGGAAAGGCGAGGAAGAGGGGATAATGTGACCTGCTTTCACAGGAAGCTTCAGATCATTTCCCTTTGTCTCTGTGCCCCTTTGGGAGATTTTGATCCAATTTGCTGTGGTGAGAAGAAGCTCTCGACATTACAAGAGAAAAAAAAAAAACCCAAAACTTTCATTTTCCTCCTAAGAAATGAAATTTTATTTCTGGATGACAAGGGCTTTGGAAGGCCATGGTGTGGTAATGAGTGACCCTTTCATAGCTGTTGAACATCAGTAGGCGACACATCCAAAGTATAGAGGCAGCTCTTAAAATACCAGCTAAAGGAAGAATTTAGAGAACAGAATGTCTTTAAGGAACTGTGCGAATGTTATTGATTCTTTCAAATAATGGTGTAACCTCTGTGATACAGCAACAATCTTCATGAGCTGTATTTATAAGGAACTGAGCTCATGAAGACAGCATGGGGGGTCTGGCGATGCAGGGCCCTTTGTTAACCATTGTTCTATTATTAGTATTGTTAGCATTGCCCTGCACAAGTTATCCACTTTTTCTCCAGCCCCCTGGGTATTCAGCAGAAATGATTTAAGAATGCCTGTAACAGCTGGGTGCAGTGGCTCACACCTGTAACCCCAACACTTTGGGAGACCGAGGTGGGTGAATCACAAGGTCAAGAGGTGGAGACCATCCTGGCCAACATGGTAAAACCCCGTCTCTACAAAAAATTGAAAAAAAAAAAGTTAGCTGGGCCTGGTGGCGTGCACCTGTAGTCCCAGCTCCTTGGGAGGCTGAGGCAAGAGAATCACTTGAACCCAGGAGGTGGAGGTTGCAGTGAGCTGAGATTGTGCCACTGCACTCCAGCCTGAGTGAGAGAGCGAGACTCCATCTCAAAAAAAACAAAGAATGCCTGTAACTTAGTCTCCTACTTGGCATCACCTAAGAGTTCAGGAGTGCAGTGACAGGTTAACTGAGCTCTTGCAGAAAGGTGCTGTGGACAGCGAGGTATAAGTCAGAGGAGTGACATGTTCTATGATGGGAAAGAAGAAAGCTGAAATCCCAAGGTGCTCCCTGACATTTGCCACTCACATAAACTGATGAGAGAGTTTGTTATTAAAGGCCTTTTTGTTTAATTAGAAATCAAACCAGAAGACCCTGGTGTCATAATTTATTCTCTTGCAAAATTATGTGATCAGAAGTTCCAGCCATAACCACAGAGGCATTGGAAGTTGGTAAATGATGCTCTGACTCAAAAGCTTCAAAGACATAGGAGGGGCAGAGGGAAGGAAATGTATCATTAATAAACAGCCTGAGCAAGTGGGCA +>URS00014F887F rRNA from 1 species +TACGTAGGGTGCGAGCGTTGTCCGGAATTATTGGGCGTAAAGGGCTCGTAGGCGGTCTGTTGCGTCAGGAGTGAAAACCCGGGGCTTAACCCCGGGCCTGCATTCGATACGGGCAGACTCGAGTGTGGTAGGGGAGACTGGAACTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAAGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCACTACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS00019CB411 rRNA from 1 species +GGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAACGCGTTTCCGTTATTGATTTTAGATGCTTGCATTTAAATGATTTAACACGAAACGAGTGGCGAACTGGTGAGTAACACGTGGGTAACCTGCCCTTGAAGTAGGGGATAACACTTGGAAACAGGTGCTAATACCGTATAACAACCAAAACCACATGGTTTTGGTTTAAAAGATGGCTTCGGCTATCACTTTAGGATGGACCCGCGGCGTATTAGCTTGTTGGTAAGGTAATGGCCTACCAAGGCAATGATACGTAGCCGACCTGAGAGGGTAATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGAAAGTCTGATGGAGCAACGCCGCGTGAGTGATGAAGGGTTTCGGCTCGTAAAACTCTGTTGTTGGAGAAGAACAGGTGTCAGAGTAACTGTTGACATCTTGACGGTATCCAACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGTTTCTTAGGTCTGATGTGAAAGCCTTCGGCTTAACCGGAGAAGTGCATCGGAAACCAGGAGACTTGAGTGCAGAAGAGGACAGTGGAACTCCATGTGTAGCGGTGAAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTGTCTGGTCTGTAACTGACGCTGAGGCTCGAAAG +>URS000065A135 ncRNA from 1 species +TGTCTCCTCCAACTGATCAAATATTGGATTCAGCCCGCTGCCGCAAGGAAGCGGGCTTTTTTTT +>URS00000A33BD rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTAGAACGCTGAAGGAGGAGCTTGCTCTTCTGGAAGAGTTGCGAACGGGTGAGTAACGCGTAGGTAACCTGCCTCTTAGCGGGGGATAACTATTGGAAACGATAGCTAATACCGCATAAAAGTCGACATTGCATGATGTTGACTTGAAAGGTGCAACTGCATCACTAAGAGATGGACCTGCGTTGTATTAGCTAGTTGGTGAGGTAACGGCTCACCAAGGCGACGATACATAGCCGACCTGAGAGGGTGATCGGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATCTTCGGCAATGGGGGCAACCCTGACCGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTAAGAGAAGAACGAGTGTGAGAGTGGAAAGTTCACGCTGTGACG +>URS000054A298 rRNA from 1 species +GCTCAGTAACACGTGGATAACCTGCCCTAAGGTCCGGCATAACCCCGGGAAACTGGGGATAATACCGGATAAACCATAGATACTGGAATGTTCTGTGGTTAAAAGTTCCGGCGCCTTAGGATGGATCTGCGGCCTATCAGGTAGTAGTGGGTGTAAAGTACCTACTAGCCGACGACGGGTACGGGTTGTGAGAGCAAGAGCCCGGAGATGGATTCTGAGACATGAATCCAGGCCCTACGGGGCGCAGCAGGCGCGAAATCTTTACAATGCGGGAAACCGCGATAAGGGGACACTGAGTGCCAGCATATTATGTTGGCTGTCCACCTGTATAAATCACAGGTGTTAGCAAGGGCCGGGCAAGACCGGTGCCAGCCGCCGCGGTAACACCGGCGGCCCGAGTGGTAGCCACTATTATTGGGTCTAAAGGGTCCGTAGCCGGTTTGATCAGTCTTCCGGGAAATCTGACAGCTCAACTGTTAGGCTTCCGGGGGATACTGTCAGGCTTGGGACCGGGAGAGGTAAGAGGTACTACAGGGGTAGGAGTGAAATCTTGTAATCCCTGTGGGTCCACCAGTGGCGAAGGCGTCTTACCAGAACGGGTCCGACGGTGAGGGACGAAAGCTGGGGGCACGAACCGGATTAGATACCCGGGTAGTCCCAGCCGTAAACGATGCTCGCTAGGTGTCTGGGATGGTGCGACCGTTTCAGGTGCCGCAGGGAAGCCGTGAAGCGAGCCACCTGGGAAGTACGGCCGCAAGGCTGAAACTTAAAGGAATTGGCGGGGGAGCAC +>URS00002125CA piRNA from 1 species +TGCGATAGATATTGCTTCCTATCCTGGGCT +>URS0000BE8870 snoRNA from 1 species +AGGATCAGTGATGAGGACTGGTGGCGAACGAGTCACAGAGATGACTACACGTCTGCGACTCTGAGGTCTAT +>URS0001BC925D snoRNA from 16 species +GUCGACGUACUUCAUAGGAUCAUUUCUAUAGGAAUCGUCACUCUUUGACUCUUCAAAAGAGCCACUGAAUCCAACUUGGUUGAUGAGCCGAAGAACCUUUGUACCCAAGAGUGAGAAAAAAGAAUGUAUUAUUAGCUUGGUCCACAACCCUUAGCGGUUUGGCCAUCUACUCCCACAUUUUUGCUUUGCCUUUUGCAUAUGGUUUGUGUAUGGAUAGAGAACUUAGCUUGGUGGUUUAGAAGUAGGAAUUUCGAUUCUAUGCUUUUUGAACUUACCGGCUUUUUUCUUGUUUUAACUCCUGCAUGAACCGCCUUUUAAUUGGCGCGAUGAUCUUUGCCCAGUUUGUGGACUUCUUCGUGAGGGGACAAACGUAUUGGGUGGGUACAAAUGGCAGUCUGACAAGU +>URS000199981D lncRNA from 1 species +TTTGCAAACATAATTAAAACACAGACATGTTCACTAATACTATCTAAAAACATACAAGTGTCGTGAGTCTTTATTCACTTACTGTATGCTTGTTCTGTACTATTGCCACTTCCTATGGAGTAACGTCCAGTAGTAACACTGGCACATGGCACCTTCTCTGAGTCAGACTTTTATAATCAAAGTTGCCAATACAATGCCTGAGGTTGATAAGTAAGATACAGGGTTCTTCTTCTGAGTTATGTCAGTGGCTGTATAACTCTAAATACGAAAGAGATGTTTTACAAAAAAACAAAGGCAAGTGTTTTACATTAAATCTTATAAAACTGTACATAATAAAAGTCTACAACATGAAAACGGCCATTAAACTGTTGTGATAGTTACGAAATGTAGTAAATATAACAATGCTAATGTTTCATGTATTTATCATTAATCACTGTATTCATACAGTGCTGTTTGTATATATAAATATTCAATGGCACTGTAAACAGGTGTTGGAAAACACACATTTACTCTTAACCCATTAGAAGTTATTGTAGTACTTTTTAATCCAAAAGGTCAAAATGCATTAATGCATCATTGATTTAGAAAAATAGCCTTGTACTATGATGCACATTTTGACATTTTCTAGGGTAGCAATCAGGATGAAGCATAACAAAGAATGCCAGATTTCAGACTGGTTTACATTTACACCTACCATGACACAAAATTTTAAACATTAAATGTCATTAAATAATACACAGTTTATAAAACAGTTGATTTCAGAGATGCACAATACACAAAAATCTAGTTAGTGTCTAATGGGAGTTCCCAATAATTTATATCTCTGGGACCTTTATGAGAAATTTAAGTCTGTTTCTCTTTACCATCACGTAGGCAAAGTGAGTTTGAATTGAATTACCTTTTTCTTAGTCTGTACAGAGCTGCATTCAACTGGATAAAATATGCTTATTCATGTTTTCCACTGCTGGACATTCATCCAATAAGTCTTGAGCATATGCTTAAGCATCTGGTAATGGCATTTTGTGGGGCAAGGAAACTCACTATCTCTATCCCTCAGTAAACAAAGTGGTTCTAATTTTATCCATAGTTAAGGCAACTATACTGATATATTAGACACACCATATGCTTTTATGTTGCTGCCTACAATCTAAACGGTAAGAGCGAAAGGAAGTTTCAAACATGCTTTGATCTTCTTGACCACTCAGGAGTTTCATC +>URS0000E66266 lncRNA from 1 species +TCAACTTGTAACAGGTGCAGCATGTACCTTCCACTTCTTTTATTGACCGTGAATTGTCAAAACACAACTGCAGCATGATTCCGAATCAGGGCACGAGCTGGGGATGAAACCTTCACCTTCTTAGGAAGAAGATGAAGCCAGTAATCCAGAGGTCACCTGGTATGTGGGCCTTCTGATTTAAAGGCTTCTTTTGGGTCAGGAATTACTGGGGAAGCCATACGGAGTTAGTTACTCCACACAGAACTGAGAAGAGGTTTTGGACTTCCTCTTACAGCTGAAGTTTCTTCAACCCAGTTGTGCTGTTATTTAATTAGCATCGCCTAGGAAAGTCTGGTATGAAGTCTAAAATGTGTCTGAAAAGTGTAACCTTTGCATGTGCCATTGTAAATG +>URS000194BC91 lncRNA from 1 species +CCAGGGCCTGAACCCATGCCACAGCAGTGGCAATGCCAGATCCTTAACCACTAGGCCACCAGAGAACTCCCTTTTACTTGTTTTTTGGCCAATGTTCCAAGACATTAAAGGGTTAATCCTCCTAATTGAAGCTGAGATCTTTTTTTGTGGCATCATTTTTGACAAGAGAAAGTCCTCTAAAAAGGACTTGTTGAGCGTTAGGAGGTCTCCTCCTCAACAGCGGTAACAAATGTTCCCTTTGTTATAACTCGACCTCCAATTTTCTCTATTTTCAACCCTGCTATATAGACAGGAAAATTCCCCCAAGTAATCATCATGATGCTCTTTCAGATCCAAACTCCTTGGGCCTCTTCTCCGCAAAAAGTAACCTGGTATGAATTGTCCTCTAGAACAAGGTTAGAAGGGTAACTTGAAACCCAGTTGTACAAGAGCATAGAAGCTCCATGCCCTTTCTGAATAAAATTATAAAGACTTTAGATTTGGTACAGCCATACTGGAAGCCCTACTCCCGTGGGTCCTACTCCAGCGAAAGTGCCAGGAACTACAGACGTCAGCCCCATGTCCCTTGGTTGCATTGCAGCTAATTATTCACAACAGCAAAGAGGAAACAAAGATTTACTCTTTTCCTGAAAGTCTCCACCCAGGTTCCTCAAGAATCTTGAAGCGCCTTGTAGGTGCCTTGAATCCCGAGGCCAGCAGTGGCTATGCTGAGCTAAGTGATATCTTGGTCATCCTTCTGATCTTCCCTGGCTCTGTTTTAGTCCAGGACCCAAAGGCCATAGAGCTAGTGGTATTGAAAGAGCCAGGAATGACCACGAAGGATGCCCCGCTCCTAGGCTGCCTTCCTCCTTCTCTCCCTCTTTCTTGTTAAAATCTAGTGAACTACATAGATATTCTTCTATGGATATCTTGAAGGCTATTCCAGATATTCCTGAAAGGCTTTCCAATCAGCCCTGCCTACCCCTCTAATCTCAGTCTCCTGTCCTCCAAGTATTTCACCACTCAGAAATGTCAGACTTCCCCTTTCTTGGTGCATTTTAGGGATTTTTCGGTATCCCAAGGGAGGGATTCTGCACAAATCTCTTCTTCTTTTCTTGATTCCTAGGATGCCTATTCCTGGTTCAGCATAGTACAGGCTCAGACAATGGTACTCACTGTTGGACCGTTTATTTATAGCAGGTTGAGTATGAGTTGAGACATTGGACAGACGTGGCATTGGATCCTACCTCTTGTGACTTGCTAAGTTTGGGAACTAGGGAAAGTTATTTAATTTCTATGGACCTCATTTTCATCATTAGTAAAATGAGAATCCTTATGGCAAGTACTACTTTAGGATTATCGTAGTACCCGACAGACAGAAGGTTTCAATCCAGCTGTTATTAAGGGTCTGAAACTTGGAGTTCCCATCGTGTCGGATTCGTTAACCACTGCGCCACGGCGGGAACTCCAAAAATGAGTGATATTACTCCAAAGTTGCACACTTCCCCTGCGGCCCCTCATGCCAGGCTCCACTGCCTTGGTGGGGGCCACCTGCTCTTCTCAGGCCTGAGCATGGAGACCACCAAAAATGCCCCCTCACACCCTGCTCTCCCATCCTTCCTCTGAGCCCACTTTTCCCTTCTCTTCAGCTGAGGGAACTTCAGCCACTCACAGTATCTTAGAAGTATCTTTCACAACAAATAACAGTGCCTTTGAGAAGAGAGAACCCAAAACACTTTCCCTCATGGGTCTTTAAAACAGTCATTGGCTGTACCCACAGCAGGTGGAAGTTCCTGGGCTGGAGATCAAACCTGGGCCACAGCAGTGACCCAAGCCACTGAACTACAACCCTGGATCCTTAACCTGTTGAGCCACAGGAGAACTCCTAAAACACGATCATCTTCATGATCACGGAAGCAACATCCTCCACTATCATTTGCTATTGAGTGAACTAACATACATGAAATAGTTCTTAGGGCCTGACACATATTCAATGGGCATATATAGTACATATTAGCTCTTACCACTATCATGGGATTAAGTACATACTAAGTTTCAGGGTGCTATGCTGAATCCTTTCTATACCAAATCTCCTTTAATTGCTGTAAGAACTCCATGGGTGGAAGATATTTTATACCCATTTGAATTATTTACTTACTTAAAAAAATTTTTGGAGCATTTTATTTTACTTATTTTTATGGAAGTATAACTAATGTATAATATTATGTAAATTATAGGTGTACAATAGAGTCACAATTTTCAAAGGTCATACTCCATTTTTAGTTATTATAAAATAACTATAATCCCCATGTTGTACAATTAGTCCTTTTAGCTTATTTTATTTTATTATTTTTTGACTGTGTCCATAGCATGCGAAAGTTCCCAGGAGGGAACCCCATCCACAGCAGTGACAATGCCAAAGCCTTAACCACTAGGCCACCAGGAAACTCCAATTATAGCTTATTTTACACCTAACAGTTTGTACTTCTTAATCCTCAACCCCTTTCCCTCTCCCCACTGGTAACCACTACTTTGTTCTTTATATCTGTGAGTCTGCTGCTTTTTTGCTATATTCACTAGTTTGTTGTATTTTTTAGATTCCACATATAGGTGATATACAGTATTTGTCTTTCTCCAACTTATTTCACTTAGCATAATTCCCTCCCAGTCTATCCATGTTGCTGCAAATGGGAAAGTTTCATTTTTTTTCTTATGGCTAAAATATTACCTTGGAATACCCTTCATCTGTTGAGAGACACTTAGATTGCTTCCATGTCTTAGCAATTTTACACCCATTTTACAGATGAGGAAACAAGATGGTAAGAAGTCAAGTGCCCAAATTCATAGTGTTGATTCATTCTAGAACTGAATTCAAACCCAATCTCCACAGACTGTATTGTCTATCCCCGACGTCAACTGTGTTTGTGTTTAGGTGGGAATGACTTATGGGCAGTCTTTGAAAAAGACTGGGGAATCATCAAGCTGAAATGTTCTCTTGGATTTAAAAATTCTGTAATGAAGACTTAGATGGTTTACTAAAGGAGAAATACATCTGGGTTGGGGGGAGAGGAATAGAAGCAAGGAAGGAGAGAAGAAACATTTATTAGGTCTCCCAGTTGGCTTAGTGGTCAATTCAAACTTTATTTATTTGCTTTTTTTTAGGGCCACACCTGCAGCACATGGACGTTCCCAGGCTAGGAGTCGAATCAGAGCTACAGCTGCTGGCCTATGCCACAGCAACACCGTATCCTTAACCCACTGAATGAGGCCAGGGATCAAACCCACATCCCCATGGATACTAGTCAGGTTCATTTCCACTGTGCCACAATGGGAACTCCCCAATTCAAACTTTAAATCCAGGTTGGTCTCACCTCAGAGCCCAGCTTTCTGCCAAGGACTCCAGAGTTGTACACTTGTGCTCCAATTCTATAACTCCACTGCAAGTAATTTAACAATAATTTCATATTTTCCACTGAGACACTGAAACGTCTTATTGAAAGAGGTCAGGGAAGTCGCTTCCCCAGAGCAGAGTTGGAGAGACAGCTAGACAGTGGCACTGGGGGTGGGGGTGGCTTTCAGTGCAGAACTACGCAGAGGTGTGAAGACGAATGAGCTGGCCTTTTAGGTCTTTTCCAGTCCCCGAGCTCCAGGATTTATTTGGCCATGAAAATGTCAGGCTTTTTCTTCCATAAAATGATGTATGATGGTCTGAGTACATTCCCCAATCCCACCCCCACCTCCTCATATCTGATTAAAAAGCAAAGATTAAATCACTGAAAACAATGGAAAGGAAGGTTTTTCTCCAAGAGGGATGAGGTTTTCCTGAGACAAAGCAACAGGAGGAGCAGAGGGAGTACAAAGGAAAACGCAGGGGTCTGGGAGGGACAAGCTGAGCATAGAGCAGGTGGATGGATCCAGCAGAGAGTGGGGGCTGGGACAAAGGCCAGTTGCAGTTGGGTTATGAGGGCTATCAGCTTACATTAACCAACAGGCATGGAGTGGAAACCAGGGCTCTAGTTATGCAAACCAAATGAATGCATTTGAACAATTTGTGAACCATGTTTTTTATTTTTATTTTGAAAATTTTTTCTTGATATAGGATCTCAGTTTCCAGAGAAAGGACTGAACCTGGGCTGCAGGGGTGAAAGCACTGCATCATTATGACTAAACCACCAGGGAACTCTCTAGAACCATCCTTTTTTTGTTGGGTGTTTAGGGTTTTTTTTTTTTTTTTTTTTTTTTGGCTGGCTAGCAGCATGTGGAAGTTCCCAGGCCAGGGATCAAACCTGCAATCAATTGAAGTTCTCTTGTGGTGCAGATCTTTCACTTACTGCACTGCACGAGAACTCCTAGAACCATCCTCCCCCCACCTTTTTTTCCCCCCAGCACATGAAAGTTCCCTGGCCAGGGATCAAACCGGAGCTGGAGCTGCGACCTCCACCACAGGGGCAGCAACTCCAGATCCTTAACCCACTGTGCCAGGCCGGGGATTGAACTGGTGCCTCCACAGAGATAAACTGGATCATAATGCACTGTGCCTCAGCAGGAACTCCCTAGACCTATCCCTTTTTACCCAGGAGATATGAGGTCAGCCTTGAATCAGAACTCATTCATTCAACCAATACTCATCGCCGCCACTGTACCAGACAGAGTTCTGGGTTTGGAGGATACAGAAATGACCCAAGCAGTTCTAGTTCACTGCCTTTGGGAAGAGAGAAAATAAACACCACGATCAGTAGTAAAGCATGTGGTATTCTAGTTAGCATCAGGGACTAAGTAAAAAATAAAGCAGAGAGCCCAAGAGGAAACATCGGCGCAAGAGTCGGAGGTGGTAATGTTTGGGGGATTTGGCCAGGCATGATGCCTGACTGAGGGGGTCAGAGCAGAGGAAGGAAAGGACAGGGTGCTGATGACAGTGGGGCAGGAGGGTCCTAGGCAAGGGAGGGACAGTCCAGGTCCTGGGGTGGGAGAGGACCTGGTGCCTGAGAGACAGTGAGGACAACCAAGTAGCTGGGTAGGAGGTGGAGTCACAGAGCTCACAGGGGCCAGATCCTGCAGGGCACTGAATATACCTGAAAAGATTTTAGCTTTCAGATCCAGGGAGATGGGACTGCACCCTGGGAAAGGTAAAGCAGGGAGACCACCTAGGATGCTGTTGCAATAATCCAAGCAAGAGATGATGTTGGCGTAGACCAGCTGTAGTGGTAGCAGAGGTGGAGGAAAGTAGTTAATGTCTGGATATGTTAAAATGCTAGGCCTTCAGGGGTAAAAAGGAAGACAAGCCTCAGGAAAGGAGGGAAGCTCTTGCTAATGATCTGCCCTTAATACATCTGCCACCGTTTGTCATCTCAGCAAAAAAAAAACCCTGGAGGCTCCATTCAGACTGACTGTGCAATGGGACTCACTCATGCGCTTAGCTGGTTTCCACTGAGAGTTGGGACAAGGGGTTGTATTTTCCATATTTGCAGGTGACTGACTTCT +>URS000240C156 lncRNA from 1 species +GGGATAACTATCACTCCTCCATAATTGAATTCGGTTTTCATTTGTTTATTTATTTATTTTTTTTCCCACCTGTGGCATTGAGTTATTGATAATTGTCAAGTACTTTTCGGATTTGTATAATAATATAATTATTAATTATTATATGTTGGGGAAGAAGTTGTCGGTAAGGTCATTGTCTTAGTAACTTAAATGAGTTTTTAAGCAAAATAAGGACAAATATTTGTTGCCAGTGGTACTGATAATTTATTACAACTTTCATATACATGTATCTTTCATTGTTATAATAATCGCAAGATATTTCACACTGCTTGTTAATACTATCCAAAGAGTTGTTGACTCAAATGACTCTAAAACAGAGGTCTAAAGATGGATACACTACTTGATATATTTATTAAATTTTTTTATTTATTAAATTTTTAGTTTCTATTCTAAGATCCTAATTGATAAGAGTAATAAATCTTCATATTATTGTAAAACAGTGAACTAGCAGAGTATAAATGATAAAAGCAAGATCAATTCTTCACTACTGATTAATAAACAGATATGTAGATTAATTTTTTAAGTTGAATATTCGAAATTTCAACTAAATTTTTTCTTATTTAGTTAATTTTTTCCTGTTAAGCCAAGTGGGGGATTATGGTCAGTTAGTTCTTAATTTAAACTTAGAATCCCCCCCCCCCCCCCCTCCCCTTTCTTTAGCTTTCCTTTTTCAAGCTAACTAAAGATGCGAAGTTTATTTTGCCTTCTTCTGTTTTGTGGTGGTCCAGATTTGGTTTAGGTATATTGATTGAGAGTTATATAATTGTATAATTTTTGTTTGAAGGTATATAAATTAAGGACGCGTGCGATGTATTAACAATAATTTTTTGAAGTTACATTCGTTGTTGGTCGTTGATTGTTAAATGATAAATCTTTCCCATCAAACACTTTGCTCAGCGTCCATGCAATTATACACGAACGATGACACTTTTATTTTATTTTTTCTTTTTTATTATTATTATTTTTGGACCAATTAAGTTCATTACCCTAGTATTTTTAGCAAGACTTCGGTTCATACTTTGACTGGCAAAGAATTTTCAACTCAAATTTTAAGCCTAAAACAGAAGACCATTAACCCAAAAGAAAGAAACAAAATATGTTTCAGGAATTTGGTTAGATATCACAATCAAGTTATTATAAATATAATTTACTGGAGGGGCAACATTATCAGAGTCTTGAGTCATGGAGAAAAGCTGTGTCTGATATTTGATAATTTGAAAAGCAGGTATTAATTCTTTCCGTCCGAGGGTAACTAATACGGCACAGAAATTTTATTTTATTTTCTTTAAATATTATTATTTAACATTCAAACTCTTCATCCCTGATGACTTAATTTTGGGCTGGTCGGTTTCTAGATACAAACTATATATGGCATGTGTTAATCACGGAATAGTCTTCATGCAAATGGGAGACGTTCACACGGGAGCGGAGCCCACATTAAAATTTTAGGGACACAATTCTATATCACAAAATTTTAAAGAGTTAAAAAAATGGACTTAATTATTGGGTTAAACTGTTGAAATATTAAACTTGCATGATTGCATCGGTTAAATTATAAAAAAATCTCTCTTTTAAAAGTTAAATTTCTAAATTTATCATATATGTAAACTAAGTTTTTTTTTTTTTCTAAGACCAGCAGCAGGTGCCATGGCACCTAGTAGTTTTGCGGCAGCTCCGCTCCTGCTCACACACTTAGGTTACTTCTAAGTTACAGCTACTTTTTGTTGCAGACCATTTGTATTTTTATTTTTTAACATATTAAATTACAATCTAATAATATTCTAGTTTATACTTTGATAGTCTGATCATATGTTTCTTTTGATGAGTAAGAGACTTACTATGACCTCTTGACAAGTTTTACAATTTTCCCTCCTCCTATTGAGATTTCGGAGCAAAAAAAAAAAAAAAATCCACCAATATTTTTGGAAAAATAAATGTATTATGGATTAGATGGCTAATGTCAGTCTTATTTGCGCTTCTTTAACTTAAGTAACACCCTTTTGCAGCCTTCCCAACAAGGGTGCTGATACTTACCCTAAGTCAAACCCCGGACATTAGCGAATGACACATTTTTTTATAAAAATTACAACACAATTTTAGTTTGGATCTTTATAGAAATTAAAAAAACAAAAACTCATTTTCCTTAACACAATTCAAAAGCAACAAAACTCAATATACTGCTGCGAGTAACCAACCGTGGCCAAGCCACGAATCCCACTGTACCACTGCGAGCAGTCATATTCAAGCCACGACGTTTAAAATGTCTGTGCCTAGCTGTTCTAGCCACTGCTACTCGTGTAAGTTGAACTTGGGATTTTAAATATTTTCTGGAATTTTATGATTGAATTTATTATAGACTAATTCAGAGTGTTATTAGCATAAGAAATCTCATGGGAGTTCAAGAGAAGTTTCTTGTGCTCATAAAATAATTGGGATAATTAATTAATAAAACCAAGAAATTGCATACTTTTATGTTGTTATTTTGCAGTAGTTATTTTAAATATGATTTGAAAAAAAATTGATGTAGTAATGGAGAATTTGGAACAAGTGGATCAAGTCAAAGAATTGGAGGAATTGGAGGCATTAGACGAGTCTGATTTATAAGAAAATATTGAGTAATTCGAGGAGACCGAATTTGATAACAATGAAGATGTGAAAGAAAAAGTTGCTAAGCCTCAGGTTGGGGTGTGAAAGAAAAAGTAGCAGTGGCAATGGTTGATTTTGGGGTGCCGCTTTGTAAGTGGCCGTGGTTGTCGCGTGGTGGCTGTAGGCAGTGGCAGTGACAATGGCTGTGGTGTGGTGGTTTGGGTGATTTTGGGAGAGTGCTTGTGCTATGTGACTCTGGGGAGTATACTTTCTGCTTTGTGGTTGTCATTCACAACCATAAAGAATAAGAAAGTTTTTTATTTTATTTTATTTTGATATTGCTAAAGTTAGACGGTGCATTTTCATCCCAACAATAACTTTTGTAAAATTCTTCGTTTTGCGTTGTTTTACCTCTTAGTTTTTTCTGTTTGTATTGTTTGCATTTTTATATGCTACTTTTATCTCTCTCTCTCTCTCTCTCTACAAGGTAATTAGGATCATTACATACTCCTCTTATTTAAATGTTTTTTTTCCACTTTACTTTAATAAACTTCCCTTGTAGAGTTAAGATTTCACTAAAAAATTACTAATATTTATAGTCTGAAATTTGTTGTGGTTTTGTCTTGATAATTGTTTTTTTAACGCAATAAGATTTTGTCTCTAATACTTCGAAGGAAGTTTTAATAACATATACACAAAAGAGAATGTATTACCTTACTAATGGCGGGTGATTGCCAAGTCAATAAAACCATTATTTGTAAGTGCTATTTCACACTTATTATATAAACATTAACTTATTAACTAAAAAAGTTATGAGTAGATTTCTTTGTTTCTCCCTCCACTCGATACAACGGTAGCAATGTTTAAGCACTGGGAACTTGCCAAACTTTATTAAAGAGAAATCTCGCATTGAATTATTTGCATAATCAACGTAGATTCAAATAATTGGGCTCCCTAATGGGCCAATTGGGTTCCTCAATGAGCCTCAAATGGTCGAAGATATTTGTTAGGTCCAACTCTGTAGAAGTTCGGGCAAATCATATGCCATCCAATATTCCAAATCCTTTGAAAAAAGCAAAGGGTTAGACTACTGACACCCTTCCAATTTGGGGTATACAAGATATATACAATTGAATTCAACTCAATCAAATCAATTAATCCAACTTAAATTAATCTAATTTTATCGGACTGACTTTTTAATTAGATTAGATTATATTAGATTAGATTAGATTACAAAATAGAATATCTAATGTTATTATATTGGTAAATGGATCTATGTGTTAAAATCTAATATAAACTATTCTAACCAACTGATTCTCATTTTCTTTCTCTATTTTTTAAAAAGGTTACGTGGC +>URS00021E5558 rRNA from 1 species +GCTAAAAACCTAGCTCAAATTTACGCAAATGCCACAACCAAACAACTGTAACTAAACAAAACATTTTTAAATTTTAGTAAAGGCGATTGAAAAATACCTAGAAGCTATAACAATAGTACCGCAAGGGAAAGGTGAAATAAAAATGAAACAACTTTAAAGCAAAGCTAAGCAGAGACTTAACCTCGTACCTTTTGCATCATGGTCTAGCTAGTTCAACCAAGCAAAACGCAATTGTAGTTTGACACCCCGAAACTAGGTGAGCTACTTCAAAACAGCCTTTAAGGGCCAACCCGTCTCTGTTGCAAAAGAGTGGGAAGATTTTCAAGTAGAGGTGACAGACCTACCGAACCTAGAGATAGCTGGTTATTCAGGAAAAGGATTTAAGTCCTACCTTAAGTTTTTTTATACCACAAAATATAACAGTAGACTTAAGAGCTATTCAAATAAGGTACAGCCTATTTGAAACAGGAAACAACCTTAAACACAGGGTAATGATATTCTAAACGTGACCAAGTGGGCCTAAAAGCAGCCAACTTTTAAACAGCGTTAAAGCTCCATCACTTTATTTAACTAATAACATTAATATTACAAAACCCTTCACCACTACTGAATGACTCCATAACCATATGGAGAACACTATGCTAGAACTAGTAACAAGAAGAAGACCTCCTCCAAAATGTAAGTGTAAGCCAAAATGAACAACTCACTGGCACTTATCGTCTCTGAACTTAAAGTAGTAACTTCACAAGAAAATTCTACCCCCACAAACGTTAACCTTACACCAGAACATTACCGGAAAGATTAAAAAAAGAGGAAGGAACTCGGCAAATTTTAACCCCGCCTGTTTACCAAAAACATCGCCTCCTGAAATAACCATAGGAGGTCCAGCCTGCCCAGTGACAAAGTTAAACGGCCGCGGTACCCTAACCGTGCGAAGGTAGCGCAATCACTTGTTCTTTAAATGAGGACTAGTATGAATGGCATCACGAGGGTTATACTGTCTCCCTCTTTTAATCAGTGAAACTGATCTTCCCGTGAAGAAGCGGGAATACATCTATAAGACGAGAAGACCCCATGGAGCTTTAAACTCAGTATCAACTGCCCTCCCAATATATCCACCTAATTAAGCAGACATGACTACTAGTTTTCGGTTGGGGTGACCGCGGAGCAAAACAAAACCTCCACGATGAAAGGAATTAACCTCCTAATCAAAGAGCTACATCTCTAAGAATCAACAAATTGACATTTATTGATCCAATTTTTTGATCAACGAACCAAGTTACCCTGGGGATAACAGCGCAATCCATTTCAAGAGCCCCTATCGACAAATGGGTTTACGACCTCGATGTTGGATCAGGGTATCCCAGTGGTGCAGCCGCTACTAAAGGTTCGTTTGTTCAACGATTAAAACCCT +>URS00018C7DE1 rRNA from 1 species +TACGTAGGGTCCAAGCGTTGTCCGGATTTATTGGGCGTAAAGAGCTCGTAGGCGGTTCGGTAAGTCGGATGTGAAAACTCAGGCTCAACCCGGAGACGCCATCCGATACTGCTGTGACTTAGTCTGGTAGGGGAACACGGAATACCTGGTGTAGCGGTGAAATGCGTAGATATCGGAAGGAACACCAGTGGCGAAGGCGACTTCCTGGCTCATTACTGACACTGAGGCGCGAAAGCGTGGGGAGCGAACAGG +>URS0001E9E6F4 misc_RNA from 1 species +GATGAAGAACGTAGCGAAATGCGATACGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCATATTGCGCTCTCTGGTATTCCGGAGAGCATGCTTGTTTGAGTATCAGTAAACACCTCAACTTCCATATCTTTTTTGAAATGGGAGTTGGACTTGAGTGATCCCAACGCTTTTCCTCACCGAAAAGTGGCGGGTTACTTGAAATGCAGGTGCAGCTGGACTTTTCTCTGAGCTATAAGCATATCTATTTAGTCTGCCTAAAAAACAGAATATTACCTTTGCTGCAGCTAACATAAAGGAGATTAGTTCTTGTGCTGACTGATGCAGGATTCACAAAGACGGCTTCGGCCGACTTTGTAAACTCGATCTCAAATCAAGTAAGACTACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS000057C40D tRNA from 1 species +ATTATTTTGGCAGATTAGTGCATTAAATTTAGAATTTAATTATGTAAAATAAATTACAAATAATAC +>URS0001919D12 rRNA from 1 species +TACGGAGGGAGCTAGCGTTATTCGGAATTACTGGGCGTAAAGCGTACGTAGGCGGCTTTGTAAGTAAGAGGTGAAAGCCCGGAGCTCAACTCCGGAACTGCCTTTTAGACTGCATCGCTTGAATCCAGGAGAGGTGAGTGGAATTCCGAGTGTAGAGGTGAAATTCGTAGATATTCGGAAGAAACACCAGTGGCGAAGGCGGCTCACTGGACTGGTATTGACGCTGAGGTACGGAAAGCATGGGGAGCAAACAGGG +>URS000239B5F5 lncRNA from 1 species +GGAAAAGGAGACAGGGAGTTCTGAGGTTATCCACTGCCATGGAGCCATCACTTTTGGCCAATTGTTGAGATGGAATCCAAGACCAGGAGAACGGTACACAATGATGTTGCAAGCATTGCACTTCGTTTTTACCTCAGAGATGCTCGGCATACAACGGAGACATGGCCTGTCCATCATGGAGAAAGTTCTTTCTCCGTGAGACCCAGGCG +>URS000017EE1C rRNA from 1 species +CAGCAGGTCACGCAATTACCCACTACCCGGCACGGGGAAGGTAGTGACAAAAATAACGATACGGGACTCATATGAGGCCCCGTAATCGGAATGAGTACACTTTAAATCCTTTAACAAGGATCCATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGCGGTTAAAAAGCTCGTAGTTGGTTCTGCGTGCTACGCTGTCGGTTCGCCGCCTGCCGGTGTAACTGGCATGCCGTGGCATGTCCTGTCGGTGGTGTTCGGGAGCCTCGTCTAGGTGGTGCCCTCGGACCGCAAGGTACGAGGTGTTCACAGGCCGGAGGTCCCCCCGTTCGCCTACTCTATCCTACCTAGGTGCTCTTCACCGAGTGTCGAGGTAGGCCGACACGTTTACTTTGAACAAATTAGAGTGCTCAAAGCAGGCTGAAATTTCTGCCTGAATAGTGGTGCATGGAATAATAAAACAGGACCTCGGTTCTATTTTGTTGGTTCTTAGGAACACGAGGTAATGATCAATACGGACAGGCGGGGGCATTCGTATTGCGACGTTAGACTTGGCAAATGCTTTCGCGGTGAAATTCTTGGATCGTCGCAAGACGCACAAGAGCGAAAGCATTTGCCAAGTATGTCTTGATTGATCAAGAACGAAAGTTAGAGGTTCGAAGGCGATCAGATACCGCCCTAGTTCTAACCATAAACGATGCCAGCCAGCGATCCGCCGATGTTCCTCCGATGACTCGGCGGGGAGCTTTTTCCCGGGAAACCAAAGCTTTTGGGTTCCCGGGGGAAGTATGGTTGCAAAGCTGAAACTTAAAGGAATTGACGGAAGGGCACCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGAAACCTCACCAGGCCAGGACATTGGAAGGATTGACAGATTGATAGCTCTTTCTTGATTCAGTGGGTAGTGGTGCATGGCCGTTCTTAGTTGGTGGATCGATTTGTCTGGTTAATTCCGATAACGAACGAGACTCTAGCTTATTAACTAGGCGTTTTCCGGTGCCCTCGTCACCGGCGACACTCATTCTTCTTAAGGGGACAAGCGGCTTATAGCCGCACGAGATTGAGCAATAACAGGTCTGTGATGCCCTTAGATGTCCTGGGCCGCACGCGCGCTACACTGAAAGAATCAGCGTGTGCCTCCCTGGCCGAAAGGCCCGGGTAATCCGCTGAACCTCTTGCGTGCTAGGAATTGGGGCTTGCAATTGTTCCCCATGAACGAGGAATTCCCAGTAAGCGCGAGTCATAAGCTCGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGAATGATTTAGTGAGGTCTTCGGACTGGCGGTAATCCCTATCGACTTGTCGGTATCGATGAACGCTGGAAAGATGACCAAACTTGATCATTTAGAGGAAGT +>URS000219C8A1 lncRNA from 1 species +ACTGCCTCAACTGTTCGCTCAATGATTTCTGGACCCAAAATTCTGTTTTCCCCGACTTCATCCCAATGGATAGGGGATCTGCACTTTCTACCATAAAGAGCTTCATACGGGGCCATTCCTATAGTGGCCTGAAAACTATTGTTGTAAGCAAACTCCACTAACGGCAGGTGTGTCTCCCAACTACCTCCAAGATCCAAAACACATGCCCTTAGCATATCTTCCAAAGTTTGGATGGTTCTTTCTGATTGTCCATCCGTCTGAGGATGATAAGCTGTGCTAAACTTCAGTTTTGTCCCCATGGCTGTCTGCAAACTTTTCCAAAATTTAGATGTGAACCTCGGGTCTCTATCTGAAACAATGGTGACTGGGACTCCATGCAACCTGACTATCTCCTTGATGTATAAGTGTGCCAGCTGTTCCAAGTTAAAGTTTACTTTAATTGGAAGAAAATGGGCTGACTTCGTCAGACGATCCACCACTACCCAGATAGCATTGTGACCTTTTGCTGATCTCGGGAGGCCTACCACAAAGTCCATCGTTATGTGTTCCCATTTCCATTCTGGAATATCCAACGGTTTCAGTAATCCTGATGGCCTTTGATGTTCTGCCTTAACCTGTTGACAGATAATACATCTCTCCACGAACAGACCAATTCCTCTCTTCATGTTTCTCCACCAAAATACATCCCGGAGATCTCGGTACATTTTCGTACCACCTGGATGAGCAGAATAAGGGGTTGAATGAGCCTCTTCTAATATCTCATTTCTTATACTTTCATCCTTAGGTACACACAGTCTTCCTTTGAAAGTTAGCGCATTATCTGCAGATACTTCAAACCCTATATGTTTATCTGTACCAATCTCGGCCTTTATCTTCTGTAAAAATGGATCTTTATCCTGTGCCTCCTTGATTCGATCTCGAAGTGTAGGTTGAATCATGAATGCTCTTATTCTCGCTGAAATCTGAGTTGGCGGCGTGATAACTTCCAATCTCAATTTATCAAACTCCCTTATCAAGTGTTCCTGTACTGTGGGTAAAACTGCTAACTGTGTTCCTGTCTTTCTGCTTAGGGCATCTGCAACTACATTAGCCTTACCCGGATGGTAATGAATTGTGCAGTCATAATCCTTCACTAACTCCAACCATCTCCTCTGTCTCATATTTAGTTCCTTCTGTGTGAAAAAGTATTTGAGACTCTTGTGGTCCGTATAAATTTCACACTTCCCACCGTAAAGATAATGACGCCATATCTTTAAGGCGTGAACAACTGCTGCAAGCTCCAAGT +>URS0000884EE1 rRNA from 15 species +GGCGTGCTTAACACATGCAAGTCGAACGGAAAGGCCCTGCTTTTGTGGGGTGCTCGAGTGGCGAACGGGTGAGTAACACGTGAGTAACCTGCCCTTGACTTTGGGATAACTTCAGGAAACTGGGGCTAATACCGGATAGGAGCTCCTGCTGCATGGTGGGGGTTGGAAAGTTTCGGCGGTTGGGGATGGACTCGCGGCTTATCAGCTTGTTGGTGGGGTAGTGGCTTACCAAGGCTTTGACGGGTAGCCGGCCTGAGAGGGTGACCGGCCACATTGGGACTGAGATACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGGAAGCCTGATGCAGCAACGCCGCGTGCGGGATGACGGCCTTCGGGTTGTAAACCGCTTTCGCCTGTGACGAAGCGTGAGTGACGGTAATGGGTAAAGAAGCACCGGCTAACTACGTGCCAGCAGCCGCGGTGATACGTAGGGTGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGGGCTCGTAGGTGGTTGATCGCGTCGGAAGTGTAATCTTGGGGCTTAACCCTGAGCGTGCTTTCGATACGGGTTGACTTGAGGAAGGTAGGGGAGAATGGAATTCCTGGTGGAGCGGTGGAATGCGCAGATATCAGGAGGAACACCAGTGGCGAAGGCGGTTCTCTGGGCCTTTCCTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGGCTTAGATACCCTGGTAGTCCACGCTGTAAACGGTGGGTACTAGGTGTGGGGTCCATTCCACGGGTTCCGTGCCGTAGCTAACGCTTTAAGTACCCCGCCTGGGGAGTACGGCCGCAAGGCTAAAACTCAAAGGAATTGACGGGGCCCCGCACAAGCGGCGGAGCATGCGGATTAATTCGATGCAACGCGTAGAACCTTACCTGGGTTTGACATGGATCGGGAGTGCTCAGAGATGGGTGTGCCTCTTTTGGGGTCGGTTCACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTTCACTGTTGCCAGCACGTTATGGTGGGGACTCAGTGGAGACCGCCGGGGTCAACTCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGTCCAGGGCTTCACGCATGCTACAATGGCTGGTACAGAGAGTGGCGAGCCTGTGAGGGTGAGCGAATCTCGGAAAGCCGGTCTCAGTTCGGATTGGGGTCTGCAACTCGACCTCATGAAGTCGGAGTCGCTAGTAATCGCAGATCAGCAACGCTGCGGTGAATACGTTCCCGGGGCTTGTACACACCGCCCGTCAAGTCATGAAAGTTGGTAACACCCGAAGCCGGTGGCCTAACCGTTGTGGGGGAGCCGTCGAAGGTGGGACTGGTGATT +>URS0000B9E3AC rRNA from 1 species +GCGCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGAGGAAGAAGGACGGTACCTGAGTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGCGAAGAAAGTCTGAAGTGAAAGCCCGCG +>URS000252BD60 tRNA from 1 species +GATAAGATGGCAGAGAGTTAAGTGCATTAGATTGTAAATTTAATAATGAGGGTTAGATTCCTTTTCTTATTA +>URS000022CE74 rRNA from 1 species +TTCGGGGTGAGTGGCAGACGGGTGAGTAACGCGTGGGAACGTGCCCTTCAGTTCGGGATAACCCAGGGAAACTTGGGCTAATACCGGATAAGCCCTTACGGGGAAAGATTTATCGCCAAAGGATCGGCCCGCGTCTGATTAGCTAGTTGGTGGGGTAATGGCCCACCAAGGCTACGATCAGTAGCTGGTCTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTTAGGAATCTTGGACAATGGGCGCAAGCCTGACGACGCAACGCCGCGTGGAGGACGAAGATTTTCGGA +>URS00001AC001 rRNA from 1 species +CGTACTCCTACGGGGAGGCAGCAGTGGGGAATATTGCACAATCGGGGGAAACCCTGATGCAGCCATGCCGCGTGTGTGAAGAAGGCCTTCGGGTGTAAAGCACTTTCAGTAGGGAGGAAGGTAGTGTAGTTAACACCTGCATTATTTGACGTTACCTACAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGCATGCAGGCGGCCTGTTAAGTCAGATGTGAAAGCCCGGGGCTTAACCTCGGAATTGCATTTGAAACTGGCAGGCTAGAGTCTTGTAGAGGGGGGTAGGAATTTCAGGTGTAGCGGTGAAATGCGTAGAGATCTGAAGGAATACCAGTGGCGAAGGCGGCCCCCTGGACAAAGACTGACGCTCAGATGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAG +>URS000182260B rRNA from 1 species +ATACGTAGGTGACAAGCGTTATCCGGATTTACTGGGCGTAAAGGGCGTGTAGGCGGTCTTGCAAGTCAGAAGTGAAATTCCTGAGCTCAACTCGGGCGCTGCTTCTGAAACTGCAGGACTTGAGTGCTGGAGGGGATAGCGGAATTCCTAGTGGAGCGGTAAAATGCGCAGATATTAGGAAGAACACCGGTGGCGAAGGCGGCTATCTGGACAGTAACTGACGCTGAGGCGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCAGGTAGTCCACGCCGTAAACGATGAATACTAGGTGTAGGGGGTATCGACTCCCTCTGTGCCGCAGTTAACACAATAAGTATTCCGCCTGGGGAGTACGGCCGCAAGATTAAAACTCAAAGGAATTGACGGGG +>URS000010CDEA rRNA from 1 species +TAGGCCTAACACATGCAAGTCGAACGGCAGCGCGGGTGCTTGCACCTGGCGGCGAAAGGCGAACGGGTGAGTAATACATCGGAACGTGCCCTAGAGTGGGGGATAACTAGTCGAAAGATTAGCTAATACCGCATACGATCTACGGATGAAAGTGGGGGACCGCAAGGCCTCATGCTCCTGGAGCGGCCGATGTCTGATTAGCTAGTTGGTGGGGTAAAAGCCTACCAAGGCGACGATCAGTAGCTGGTCTGAGAGGACGACCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGAATTTTGGACAATGGGGGCAACCCTGATCCAGCAAAGCCGCGTGTGTGAAGAAGGCCTTCGGGTT +>URS000217ECBF lncRNA from 1 species +GGATGTTAAGAGAAGGGGTTGTTTAAGATAAAAGATAAATTCTATATTGATGTAAGTTAAATTTAAAATACTGATGGACTATCCAAGGTGAAGATGTCAAGTAGGTATTTGGGGAAATAGCAATCAAGTGCAAGAGACAGGGAATTTTCTTTTGGAACAATGAGAATTCTCCAAGCTTCCTCAACAGACAACTGGAAGTGGCAGCAAAGAGGCAGTGGAAAAGCAGCAGAATGGCAGTAGAATGGCAACAGCTGCACTGGGATCAGAGGCTGCACTGGGATCAGGGGCTGTGCTTAGATCGTGCTGAGTCATTGCTGGTGTTGGACGGAGTGACAGCGCGGAGGAGGATTACGTGTGCCAACTGCTGGATTTCCCAAGTTTGCCTGCCCTTGCCTAGGTGCGAGCTGAGGTGTGTGAGTGTCGGGGACTGATGGGTTTGGGGAGGCCTCAGCCCGGACGGCCCTCCGCGATCTGGGTCTGAAAACACGAGCCCCCGTCTCTTAGGAGGCGCGGGAAGGAAGGTACATGATAACTTCTGTAAAGAAAGATGGGATCAGACTTATGTTGAAAAAGGAAGCTGGTAAAATTCTCTGCTAGTGATTCATGTACCACTATGAAGCATTTGAGTCAATGGTTATGGATCTCAATCGACTCCACCATTTTCCAGGTCTCAGAACGGCTAGCGATTGGATGAACATTCTTTGATGTAACTGTTCTATTAATTCATTATATTAGTGGTGTAAAACTTTCTGGTTCTTGTTTGATCCAACTTTTATTTTCATTGTCCATTATTTTATTGTCCATGAAGATGACAAAACCTTTTCTACATTTTTCTGGCTTCAGAACTTCTCTTACCTCTGATTGCTTTGACTCTAAAGATGCTATAATAAAATTACTGATTGATATTCAACTG +>URS00016BEEAD rRNA from 1 species +TACGAAGGGTGCAAGCGTTACTCGGAATTACTGGGCGTAAAGCGTGCGTAGGTGGTTTGTTAAGTCTGTTGTGAAAGCCCCGGGCTCAACCTGGGAATGGCAATGGATACTGGCAAGCTAGAGTGCGGTAGAGGGTAGTGGAATTCCCGGTGTAGCGGTGAAATGCGTAGAGATCGGGAGGAACACCAGTGGCGAAGGCGGCTACCTGGGATGACACTGACGCTCATACACGAAAGCGTGGGGAGCAAACAGG +>URS00011B15C7 rRNA from 1 species +CCCTTAGATGTCCTGGGCCGCACGCGTGCTACACCGATGCATACAGCGAGTACTTTCCAGCTCCGCGAGGCAGCTGGTAATCAGCAATATGCATCGTGCTGGGGATAGATCTTTGGAATTATAGATCTTGAACGAGGAATTCCTAGTAAGCGCAAGTCATTAGCTTGCGCTGATTAAGTCCCTGCCCTTTGTACACACCGCCCGTCGCTCCTACCGATTTCGAGTGATTCGGTGAACCTTTTGGACAGCGTCTGTCCTCGTGTCAGATGCTGAAAGTCAAGTAAACCATATCACTTAGAGGAAGGAGAAGTCGTAACA +>URS000170A9F1 rRNA from 1 species +AACGAACGCTGGCGGTAGGCTTAACACATGCAAGTCGAGCGCCCCGCAAGGGGAGCGGCAGACGGGTGAGTAACGCGTGGGAACATACCCTTTTCTACGGAATAGCTCGGGGAAACTGGAATTAATACCGTATACGCCCTACGGGGGACAGATTTATCGGGGAAGGATTGGCCCGCGTTGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCAATAGCTGGTCTGAGAGGATGATCAGCCACATTGGGACTGAGACACGGCCCAAACTTCTACGGGAGGCAGCAGTGGGGAGTATTGGACAATGGGCGCAAGCCTGATCCAGCCATGCCGCTTGAATGATGAAGGCCTTAGGGTTGTAAAGCTCTGTCACCGGAGAAGATAATGACGGTATCCGGAGAAGAAGCCCCGGCTAACTTCGTGCCAGCAGCCGCAGTAATAC +>URS00021A8CBE lncRNA from 1 species +AATCATTTTGTTGTACAAGTCAGCATGAGTTATCAAAAGGACATGAAGGCACCCTAACATTATGGAAACAAAAATTTAAAAAATTTGCTGATTTAGTATGCTGGTATATAGATGTATGAATAAAAGTGCTCACATGGTCAGTTTTGGTCTACACTGTCAAATAATTTTGTTGCACAAGTCAGCAAGAGGTATCAAAACTACTGAAATTTTGTTACGTATCAATATTTTGAATAAAAGGAGGACATATGCTGGCACCCTAAATTTA +>URS00020CA31D rRNA from 1 species +GATGAACGCTAGCGATAGGCTTAACACATGCAAGTCGAGGGGTAACGTGTTGGAAGCTTGCTTCCGATGACGACGACCGGCGGATGGGTGCGTAACGCGTATGCAACTTGCCTCACAGTGGAGAATAACCCGGAGAAATCCGGACTAATACTCCATACACTCTTAAGTACGCCTGTACATGAGAGGAAAGATTTATCGCTGTGAGATAGGCATGCGTCCTATTAGGTAGTTGGTGAGGTAACGGCTCACCAAGCCGACGATAGGTAGGGGTGCTGAGAGGCAGATCCCCCACATTGGGACTGAGACACGGCACAAACTCCTACGGGAGGCAGCAGTGAGGAATATTGGTCAATGGAGGAAACTCTGAACCAGCCAAGTCGCGTGAAGGAAGAATGTCCTAAGGATTGTAAACTTCTTTAGCGAGCGAGTAAGGACTTCCACGTGATGGGAGTTTGAAAGTAGCTCGAGAATAAGTATCGGCTAACTCCGTG +>URS0002179DC9 lncRNA from 1 species +ATTACTTTGTTTAGAAAAATTAACATTTTTCTGGTTATGATGTAAGACACACAAATAGCTACTTTGATTTTTATTTAACAAATACATGAACCATTCCCCATGCTCCGAATAAGTCATCATGAGTCTATAAAATCTTGTAACTTTTTTTAATGGTACTTGAGACAGTTTACATTGTTTTATAGAACAAAATACAATACTTCTAATTCTCCTCATACTGCCTTTCAACTCTACGGTGAGAGCTGTGCATAAAAACATAGCAGCTTGGGTAGCTCATGGGTTGCAACATAATCTCCGCATTGGGTTGGGCTGGGGGATGGCAAGGAAGGCATTCTAAGATATAAGTTCTGAGAATAAAGAAACAGAGATTTCCCTCAAGAAAATTTATACTTGTCTCCTTTATAAGCACAGGTCCCATACAAAAAGTATTATCACTGAATTGCTCTGTCTGACTTATAAGCTATAATTAAGATTCCAGTCTGATGTGGAGCAGCTTAAAATAGCATCACACACCCTGTTGATTCTTGCCTAGTTGAAACAGAAACATAAATTTGAGGGAAGAAGGTGGAAATGATTATTATCAATTCCCCTTTAATAATACTGATATAGGTATCCATGGGCACAGAAAATTAAGTAAAGTAAGTATTCCAAATTATCTCCCTCTTCAAATCGCTTATACCTGATTTTGGCTGGGCAGAGATTTACTAATAAGGAGGTGAGGGTTTACTTCCAGGAAAAGCTATAATAGTGAGACAGAAGTTCAGGGCAGAGCAAGCACCAAATATAGGGCAGTACAGATAGTGACCTGCTTGGGACCTAGGAACTAGGTAGCATGTGGAGTAGCAGGAGGAGAGCCTAGAAGACAAGCGCTTGACCAGTAAAGTGAGAAGACCTGCTCAATTTAGAGAAGGATTTGCAAGTAAGAAACAGAACATTTCTTGAGTATTTACCTAATTCTAGGTTGATACTAGGTACACTTCATTTAAACCTAACTTTAAAAAGTCAGAAATATCCATCATTTCACCAATTCACTCATATGGAAACTGAAGCTATGAGGTTCCCTACCATAAATCCCACATAATGAAGCTGGGACTCAAACGCCCGCATAATTTAAAACTTTGTGCCCTTTTATGCTAAC +>URS00012349DE rRNA from 1 species +CAGCAGCCGCGGTAATACGTAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGTGCGCAGGCGGTTTTGTAAGACAGAGGTGAAATCCCCGGGCTCAACCTGGGAACTGCCTTTGTGACTGCAAGGCTAGAGTACGGCAGAGGGGGATGGAATTCCGCGTGTAGCAGTGAAATGCGTAGATATGCGGAGGAACACCGATGGCGAAGGCAATCCCCTGGGCCTGTACTGACGCTCATGCACGAAAGCGTGGGGAGCAAACAGGATTAGAGACCCCAGTAGTCCCTGTCTCTTATAC +>URS0000B93F3B rRNA from 1 species +TGAGCCTACGGGGGGCAGCAGTGGGGAATATTGCACAATGGGGGGAACCCTGATGCAGCGACGCCGCGTGAGTGAAGAAGTATTTCGGTATGTAAATCTCTATCAGCAGGGAAGAAGATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGGGGCAAGCGTTATCCGGATTTATTGGGTTTAAAGGGTGCGTAGGCGGACAGTCAAGTCAGCGGTAAAAATGCGGTGCTCAACCCCGTACTGCCGTTGAAACTGCATCCCTTGAGTGCGCGAGAAG +>URS0000854D01 rRNA from 1 species +AGAGTTTGATCATGGCTCAGATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAACGGTAACAGGAAGCAGCTTGCTGCTTTGCTGACGAGTGGCGGACGGGTGAGTAATGTCTGGGAAACTGCCTGATGGAGGGGGATAACTACTGGAAACGGTAGCTAATACCGCATAATGTCGCAAGACCAAAGAGGGGGACCTTCGGGCCTCTTGCCATCGGATGTGCCCAGATGGGATTAGCTAGTAGGTGGGGTAAAGGCTCACCTAGGCGACGATCCCTAGCTGGTCTGAGAGGATGACCAGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGCACAATGGGCGCAAGCCTGATGCAGCCATGCCGCGTGTATGAAGAAGGTCTTCGGGTTGTAAAGTACTTTCAGCGGGGAGGAAGGGAGTAAAGTTAATACCTTTGCTCATTGACGTTACCCGCAGAAGAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTAATCGGAATTACTGGGCGTAAAGCGCACGCAGGCGGTTTGTTAAGTCAGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCATCTGATACTGGCAAGCTTGAGTCTCGTAGAGGGGGGTAGAATTCCAGGTGTAGCGGTGAAATGCGTAGAGATCTGGAGGAATACCGGTGGCGAAGGCGGCCCCCTGGACGAAGACTGACGCTCAGGTGCGAAAGCGTGGGGAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGTCGACTTGGAGGTTGTGCCCTTGAGGCGTGGCTTCCGGAGCTAACGCGTTAAGTCGACCGCCTGGGGAGTACGGCCGCAAGGTTAAAACTCAAATGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTGGTCTTGACATCCACGGAAGTTTTCAGAGATGAGAATGTGCCTTCGGGAACCGTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTCCGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGACCAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGATCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTGGATCAGAATGCCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGGTTGCAAAAGAAGTAGGTAGCTTAACCTTCGGGAGGGCGCTTACCACTTTGTGATTCATGACTGGGGTGAAGTCGTAACAAGGTAACCGTAGGGGAACCTGCGGTTGGATCACCT +>URS0001C3A371 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACGGACGAGAAGCTTGCTTCTCTGATGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTGCCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATGATATTTTGAACCGCATGGTTCAAAAGTGAAAGACGGTCTTGCTGTCACTTATAGATGGATCCGCGCTGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCATAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACCCCTACGGGAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAACTCTGTTATTAGGGAAGAACATATGTGTAAGTAACTGTGCACATCTTGACGGTACCTAATCAGAAAGCCACGGCTAACTACGTG +>URS0001B15B4F rRNA from 1 species +CCTGGTTGTTCCTGCCAGTAGTCATATGCTTGTCTCAAAGATTAAGCCATGCATGTGTAAGTATGAATAAATTCAGACTGTGAAACTACAAATGGCTCATTAAATCAGTTATAGTTTGTTTGATGGTATCTACTACTCAGATAACTATAGTAATTCTAGAGCTAATACATGCAACAAACCCCGACTTCTGGAAGAGATGCATTTATTAGATAAAAGGTCGATGCGGGCTCTGCCCGTTGCTACGAGGATTCATGATAACTCGACGGATCGTACGACCATCGTACCGGCGATGCATCATTCAAATTTCTGCCCTATCAACTTTCGATGGTAGGATAGTGGCCTACCATGGTGGTGACGGGTGATGGAGAATTAGGGTTCGATTCCAGAGAGGGAGCCTGAGAAACGGCTACCATATCCAAGGAAGGCAGCAGACGCGTAAACTACCCAATCGTAGTTGCACTTTGGGATGGGCCGGCTGGTCCGCCTATGGTGCGCACCGATCGTCTCATCCTTTCTGTCGGCGATGCGCTCCTGGCCTTAACTGGTCGGGTCCGGTGCTGTTACTATGAAGAAATTAGAGTTCTCAAAGCAAGCCTACGCTCTGTATACATTAGCATGGGATAACATTATAGGATTTCGGTCCTATTACGTTGGCCTTCGGGATCGGAGTAATGATTAACAGGGACAGTCGGGGGCATTCGTATTTCATAGTCAGAGGTGAAATTCTTGGATTTATGAAAGACGAACAACTGCGAANCTGCGAAAGCATTTACCAAGGATTTTTTCATTAATCAAGATCGAAATTTTGGGGCTCGAAGGCGATTAGATACCGTCCTAGTCTCAACCATAAACGATGTCGACCAGGGATCAGCGGATGTTGCTTTTAGGAATCCACCGGCACCTTATGAGAAATCAAAGTTTTTGGGTTACGGCGGGAGTTTGGTCGCAAGGCTAAAACTTAAAGGAATTGACGGAAGGGCTCCACCAGGAGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTTACCAGGTCCAGACATAGTAAGGATTGACAGACTGAGAGCTCTTTCTTGATTCTATGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGCGATTTGTCTGGTNGATGGCTGTTCTTAGTTGGTAGAGCGATTTTTCTGGTTAATTTCGTTAACGAACGAGACCTCAGCCTGCTAACTAGCTATGCGGAGGTATCCCTTCGCGGCCAGCTTCTTAGAGGGACTACGGCCTTTTAGGCCGTGGATGTTTGAGGAAATAATAGGTCTGTGATGCCCTTAGATGTTCTGGGCTGCACGTGCACTACACTGATGTATTCAACGAGTTTATAGCCTTGGCCGACAAGCTCGGGTAATCTTTGAAATTTCATCGTGATGGGGATAGATCATTGCAATTGTTGGTCTTCAACGAGGAATTCCTAGTAAGCGCGAGTAATCAGCTCGCGTCGACTACGTCCCTGGGCTTTGTACACACCACCCATCGCTCCTACCGATTGATTGATCCAGTGAAATGTTTGGATCACGTCGACGTGGGTGGTTTGCTGCCCGCGACGTCCCGAGAAGTCTATTGAACCTTATCATTTAGAGGAAGGAGAAGTCGTAACAAGGTTTCCGTCGGTGAACCTGCGAAAG +>URS0002562826 rRNA from 1 species +ATGCCACCTGTTCAGGGAAATGGGCAAGCCCTAAACGGCAACAGTCAGCAATCTTCTCAGCAATTTCCAACGCCAATCTTGTGGCAGCCAACCAGCAACCACTCAATGCAACATGGCGAAGGATGTAGTCTGCCACCACCTAGCATGCCGAATCCATTGCCAGTAGCAGTTCCAGGATATTATCCACCTTTACCTGCTTTTGGACAGGACCACTGCACTAGTTTACCTAATGCAAGTTCTCAACTTGAATTTCGGAACTTCCCAGCGTACATGCCGTTTAATGATATTCCCCAGGGGAATTCCATTCTTGGATGGGAAGAATTTGTTGAAGATGTAAGTCATTCAAATGTCCGGCCACCAGTTGAAGAGCATTATGTAGATGCGTCATTTAGATGTAATCAAGTGCTACTTCAATGGGATGAGCCTCATATGGAGGTCAAGAAACGTTGGAACTTTCTTGATCAGCTCATGCCGCTGTATAGCACACAATCAGGGTTTTATAAAGAAGATTTCCCCAGTACGAGCCTCATGGATAAAACCCATAAGTTACTGGCCAGTATTTCATCAGACGATTCTGTTTGGAAGATAATTACCAGTGTTACGAGTCGAGCCACACAAACTCCTCAGAGGAGAGGTGTTCTCATTCGGCCCATTGAGCCATATGATTCAGATGATGGGCCACCAATTAAGAAGCAAAGGACCAAATATCAATTGCGATTTGTCAATACGGTGTGCAATGACTACTTCACACGGGAGAATATCAAATCAGAGGATGGAAATCTCTTAAAGGTGGCTTTGTATGATGAGAACAATCTGGTTGTCACATCTGGTCCGCTGTCTGCAGCTTTTGTGGAGATCGTACTACTTCATGGTGATTTCAATGCTGAAGGTCAAGATTATTGGACATCAGAGGAGTTTAGTGACTGCCTAGTGCATCCACAATCTGTAAAAGAACCACCAGCCTTGGGAGGTGATCGTGTCTTGACACTGACTGATGGAGAAGCAGACCTTGGTAATGTCTATTTCCGAACTTCCTCCTTCCATGCTAGAACTGAAAAGTTCAAGATGGGTGTTGAGATTAAAAATGTAAGAGAAGAGTGTGTTCAAGAAGGAATCACTAGCCCTTTTTTTGTGAGAGTTCGCCAAGGGGAAGAATCAATTGGCCAATGGATCACATCCCTCAAAGCATCGCTCAGAGTGAGCAAACAAGTCCCCCCGCTGGAGTGCGATGCTAGGAAATACGTCGACGCATTAGCAGTTAAAATGAGCACGGAGGAAAAATTCAAAACTGGAAAGCTTAAGGTAAAAAGGGAAAAAGATAAGAACAAATATGAGGAAGATCTCAGAATACTCATGGAAGACCACCAAGAGTTCACATTAAAAACCGAAGATATGCGAAAGGAAGGGCGTGCTGAGTTAAATCATTACATTCTATCTCCACCTCAGAGATCAATGGTTATCCAATCAACAAGATTTCGTCTAGTAATTGAAAATAGTGTGAGCAGAACAATTTACAAAAATAGTACTGTAAAGACCGAGGATGGCGGAGATCACATAAAAGTTGTCATGTACGATGGTGGCAAGCCAATTGCATTTGACCACCCTCTTGCTTCAATAACAGTTGACCTAGTTATCATTGAAGGAGGGTTCGATGAAAAGCGAGATTCGTGGTCTAAAGAGGAGTTTGAGGAAAGCATAATAGAACCAAGAAAAGGAATCAAAAGGCTAGTGAAAAATGGTACATTTGATTTGATTGATGGGAGGTGTGATCATCATGGTGCCATTATTATGGACAATTCACTACGAATGGAAGTTAAACTTGGAGTAAGGATCGCAGTGCATACAGACATAAGAGTTATTGAAGGGGTATCAAATCCTTTCAAAATGAAGGAAGTCCGGACAAGAGTACATGGAAAGAGTACTATTCCATACAAGGACGACGCGGTACATCGACTGAAGAAAATTGCCCTGAAGGGAAAACATTGGAACAATCTTGAGGATCAATATATTACCAAAGTGAAGCACTTGTTGCGCCATTATCACAAAGATAAATTTGGTCTCCAAAAGCTTGTTGACATGAAGAAAGAGGATTGGAATACCATGATTAATCATGCCACCATGTGTGTTCCTGGGGATGAGATCTATTCCTACTGTGTTCAAGAGGATAACTGTGAAATCCTATTCAATGATTTCTATGATCTTGTCGGTAAGATCACTGATGACTATGTTCCGTACAGTGTCAATGACGTCGATCAGTTTCCGCAGCTTAAAGTGAACAACTGGAAAAAGTCTGCGTATAAGAAGTTTGACGAGAGGGAGAACTCAGGGCTCTTTGGTCTTACTCCTGATTACTTCATGAACAATGGCCGCCCAGTCCGTGCAGCGCCCCTGAACAATGACGCAGGTCCTACTGTACAAGCATCTACATGGCAATATCCTAATGACAGGGCTGCACAACACGGCCTTAATAGAAGTGCAGTCTGCCAATACACAGATGCCTGGAGTCCGGCTTCTAAAAATACCAATCAAAATAATGTGATTCCTCCAACGACGACAGCAGATGGGAATGGGATGCTTGGGTCACTGACAATGGGGACAAGCAGCACCAGCGACATGAAGAAGAGCATGATGGAGGACGTTGCCAATGGTCTCTTCAATTGA +>URS0000051310 piRNA from 1 species +CAGGTCTTGTTTTAGTTGGACGAGGA +>URS0000A621CB tRNA from 1 species +AAAATGCCAGCTTTGGGAGTTGGTGATGAAGGTTCGACTCCTTTCTTTCTGA +>URS000113D973 rRNA from 1 species +TACAGAGGGTGCAAGCGTTGTTCGGAATCATTGGGCGTAAAGGGCGTGTAGGCGGTTTGGTAAGTCATGTGTGAAATCCCTCGGCTCAACCGGGGAACGACGCATGAAACTGGCAAGCTAGAGTACCAAAGAGGGCGGTGGAATTCCCGGTGTAGCGGTGAAATTCGTAGATATCGGGAGGAACACCAGTGGCGAAGGCGGCGATCTGGACGGATATTGACGCTGATGTACGAAAGCGTGGGGAGCAAACAGG +>URS00001901B3 rRNA from 1 species +TTAAAAGCTCGTAGTTGGATTTCTGGCAGGAGCGACCGGTCCGCCGCAAGGTGTGCACTAGGTCGTCTCCAGTCATCTTTGTGGGAACTGCTCTGGCATTAGGTTGTCGGGGTTAGGGAACACATCGTTTACTGTGAAAAAATTAGAGTGTTTAAAGCAGGCTTATGCCGTTGAATACATTAGCATGGAATAATAAGATAGGACTTTGGTGGTCTATTTTGTTGGTTTGCACACCAAGGTAATGATTAATAGGGATAGTTGGGGGTATTCGTATTTAATTGTCAGAGGTGAAACTCCCTTGGATTTATGAAAGACGAACTACTGCGAAAGCATTTACCAAAGATGTTTTCAGGGTAATCAAGAACGAAAGTTAGGGGATCGAAGATGATTAGATACCATCGTAGTCTTAACCATAAACTATGCCGACTAGGGATTGGTGGTCCGTTCATTATGA +>URS00005FFC84 siRNA from 1 species +TGACTTTGGAGCCATTCTTCCC +>URS00005C67CE rRNA from 1 species +TTAATTATAGTTAAATAGTATTGTGAAAGAAAATTGAAATAATTTGAAAAATTAATATTTTAAAAGAAAATTTAATTTATTGTACCTTGTGTATCAGGGTTTATTAATTAAAAATTATTTACTATAATTTTCTCGATTTTAAAAGAGTTAATATATTATAAAAGTTAATGTGACAAAATTATTTTATATAGTATATTAGAAATGAAATGTTATTCGTTTTTAAAGGTATCTAGTTCTTTAAGAAATAAATTTAATTTAGAAATATTATATTATTTAGTTAAATGTATTAATTAAATAATTATTTTATTTTAATATTTTATGGGATAAGCTGTGAAATAAATTATTAAAAATTTTTAAATAGTTTAATAAATATAAGCTTAGAAATAGTTATTATTAATGAAATTGTTATAATTTATTTTATAATATTTATTATTTATTAAATTTTAATTATGTATTAGAGTATTTATTTTAATTTAAAAAATAAAAAAATAATGATAAAATTAGTATATTATGATGTATAAATATGTGAAATTGATAAGTTTTTATAAAGAACTCGGCAAAAATAATGTT +>URS0001988726 lncRNA from 1 species +CACATGTTATGGACATTTTTATTTATTGACATGGTCAAATTAACAGGCAGCAGCATTTATTTTTAATGATAGCCTTGAAATCAGCCCAGGAAGAAAGTTAACATTGATGTTCAGAATACTGCATGCCATCCACATTTTTCCAGATGAAAGTATATTTTAAACTAATAATTAAATATTGTCACCCTAATTAAGTTACCTTGAGCAGGTGAGAGAAACACAGTTCTTAGTCATTGCAAATCTTGTTTGTCCTATTCTCAAGCTGTACAGAAAAACTACCCAGCAGGAGAAATTCGGCAAGCTCCATGGTTTAAAGTGTGCACTTAATTTAGGTGAATGATAAGCTGTGTCTATAAAGATTTGTGTTGGTCACCACGGAATGGAAGATTCCTGTGAAGTAGACAAGATGTAATTGCCAGTAAATATCAGTGCTAGCTTGGCCACACAACATTCACAGAGCAGGAGGGAATATCTTGGTATATTTATTATTACAGTGGGGAATTTTGACAGTCACCTTAATCACTCTTTGAGACAGGTAAAGAGAAAGGAACTGGGCAGCAGCACAGTTATCAGCTGGGTTAGAGAAAGCACACAGAGCAAAGGAGAATGAAGAGCATTTCACAAGGTATTTTAAACAGGTTTACATTGGGATGAAGATATTAGGAGTTTTTAGATATTAAGCACTTGTGGAAATTAAATCATTGCTTCATGCATTTAAAATTTACGCCCTAGAAGTACCTTCACAAACCAGACTGCCCACTTTAAAACTTCTGATCTACCCACCTTAAACAAGAATATTCTATAAATTACAAAGAAAGACTGGGAAATGATCTGTGTGTAATAGCTGAACCAAGCAATTTGCATATTTTCATGAATTACTGTAATGTGTTCTGCTTGTAATTTCACTTGTATACAAAGGATCACAGTTGCAAAAAGTACCAACTTTTCATGTTCAAAAGTGATTCAGGAGTCGAATTTCCTAGTCCAAAATGCTGAGACACTTAAAAATTAGAAGCTGAAATCATTGTTCTCTTCATTGCACTAGAAAGTTTTGCACTAAATCCTGCTCAGTGGCTTAGATATGAGCTGGAAATAATTTTTAGGAAAGCCCTGAACCAGGACACACTATTAGAGACTCCTTGGTTCTTTTGACTTGGCATTCACACATGTGCATGCAGATATGCAGATAGCCCTGTCATGATCTATTAAAAAAACAAACAAACAAAAAAATCTAGAAAAATCAATTTTCACTGAAAGATTCCAGTTTTTTTTCAGGGAAGAAAAGGTCTGTAAGCTTACCTGAGAAAAAGTTTCCACAGCAATTTTATTTTTTAAAAATGGTGATGAACGACCCACAGTGAACGTGGGAGAAGGATCCAATTTCTGCCCACGAGGGAGAAGAGTGTGTGCATGGTGGGCACCTCAGGCTGCAAGAGCAGGCACAGGATAGGGCATGGGCACGCAGGGCAGCTGCCTGCAGCTCCTGGCCAGTCTCAGCCTCTGTGGGGTCCCTTAGAGGGGTGAATTATTGTGCCCAGGGAGCTCCCCCCCCCATCCTGGCCAAGTCAGGATACATTTTTATAGCCCTTCTTCAAGTGATAGAAATATCAAGGGGAGGGCAAAATATATGGGAGGAGGGAAAGGGAGGCAGTTTCCAGTATTTGTCATTATTATAGGTTATATATACAGGAAGAAAGTTAATTAAGCTTTAAAAAATCCATCACACATCAATGGGTGCATTTTAATGAGTAGAAAAAGTTGAGATGTTTACTGCCAATTAAAGTGGTTTTTAAATAAGCATTAATTAACACAGAAATTCAGAAGAAAGTTATACCTTGTCAAAGAAAGGCCAGTGCAGTCTATGCCCACTTCTGCTCCCATTCATACTCAGATAGTAATTACCACCAACCCTATATTTTCCATAATAATGAGGAGAGGCTGTCATGGCTGTCAAACAAAAACAAAACAAAAAAAAAAAGAAAAAAAGGTGCTGCACAAAAATACCCTCAATCTGAAGTAAACTTTTGTTTTTAAATGTATAATAAAAAGCCACAGGAGACAGCAATATGGGGCAAGGCAGTGAGTGGGGCAGTCAGGCAGCCATGCCAGAGGCAGCTGCACACACATGGCTCCTTCCTAGGGAGCAGAGACTTTGGAACTCAGGATGAAGCCTCTCCAGACAGTCCAGCTGAAGAAAGACTGAAGAAAAGCCAAAGAAAAAGCAGTTCGTTCCTAGTTTCATCCCTAGCGCTGGAACTCGTGGAGGAGCTGATTCCCCTGTTAAAGCCAGAGGAGCTCGTTTTTTCCACAAACAAGTGCTGACAGACTAGCTCCATGCTTCCCAAAGTCAGATCAAAGCAACCACTGCAAATAAGTTCAGCTTGCATGTGCACTTCCAGCTGGAGCAACTGGTGACAGGAAAAACAGTACGACCCTCAATTCTGTCACTTCTCCATTCTTGCAGGATTTCTTAATAATTGTCAGGAGTTTCAGCTCTACTTCAGCTAGTGTCAAATCCTGATGGGACAGCAAAGGAAGTGATTTCTCCCATTGTTAGTCTGGTGAATGTTTAAATATCTTAGGAAAACCTTCCTTCCCCCAAATGCATCTTAGGCACCAAGTAAGATTTTCAAACTGCCTCATTGAGAATGGCTTCTCTCCTCACTTCCCCAGCTCCAGCTGTGGAGAGATAAAAACCCCACTGCCTTTTCAGACAGCAGAAGAGGCAGGTCACATAAAAATTTGTTAGTAGCCTAAGAAATTTTACAAAAATCTCTGGTGTAGTGTTTTTAAAGTTAATTTAAAAAACAAAACAAAACAAAACAAAAGAAGCAACAAAACACAGAAAAGAAGGCTGTAGATATGCACAGACTCCTGTTCCTAACCCTTGGCATTTCACTCAGATAATGTGCAGCCTCTCTGTAGCTTGTGTCTATCAGGGAGTATCTGGGAGCCTTTTTCCTACTCCATGTCCACAGGCAATATCTGCAGTAGAATAAAAAAAGGAGAGCATTAAATGCCATGGAAGTTTTGTTGAATGTAACTGGACAGGGCCTTCAGATCTTG +>URS0000ADFB99 rRNA from 1 species +TTCTAACAGAAATAATTGTTAGTAAATCCTGCTCAATGATTCGTTAAATAGCCGCAATAACTTGTGCTAAGGTAGCATAATAATTTGCCTATTAATTGTAGGCCAGAATGAAAGGATTAACATAAGAAATTCTTTATTCATTAAATAAATTTAACTTCATTTATAAGTAAAAAAGCTTATATTTTTTAGAAGGACGACAAGACCCTGTCGAACTTCACTAAAGTTTTACTGGGGCGGTAAAAAAACTAACACTTATTTTCCATTTACAAAATATAAACATAATGTTAATTCTAAACAAGTTACCGCAGGGATAACAGCATAATTTTTTCCTAAAGATCTTATTAAAGAAAAAGATTGTGACCTCGATGTTGAATAATTTATCTTATTGGGGCAGCACCTAAACAAGTAAGTCTGTTCGACTTTTAAAAAATTACA +>URS00009AD4FC lncRNA from 7 species +ACGCCGGCGTGAGAGGGCACGGGGAAAAAGGTGGCTCTGGCCGGGGCGGCTCTGTTTCCTGGGGTTATGTAGCAGGGCTTGTCGGCTCGCGAGACCTCCCGCTGCCCTCGCCCGTGTCCTAGCGCGGGGTTTCTGCTCCGGGCGGAGGCCGTGTTCAAGCCCGCCGCGCTCCCTCGACGTAGAGCTCGCTCGTCCGCCCGTGGGAGCGTCCCGGCCGAGCTGCGCTGAGGGGGGAGGGGAGGCCATTTTGTCCCGACCGACTCCCCGGAACCGGGCGGAGCGGCTGGGAGAGGCTGCGGAGCCGCGGGCGCCGCCCCTCGGAGGCACGGGCGCCGCCACCGTCGGGGCTTCCTCGACGAGGCCGTTCGGAAGGTCTCCTGCTCCGTCTCGAGAGCTGCTTTCTCCTTCCGCACACGCTACCCGGCTGCTGCGGCCCCAGAACGCCCGGGTGAGGAGTTGGTTGTAGTGAGCAGTTCCGATCCCTTGGGGCTACCGGCGGCGAGCGCCCGAGCCGCTCCTCCCAATGGCGAAGAAGACGTACGACCTGCTTTTCAAGCTGCTCCTGATCGGGGACTCGGGAGTGGGCAAGACCTGCGTCCTTTTTCGTTTTTCGGACGATGCCTTCAATACCACCTTTATTTCCACCATAGGTAAGACCTGTGGGAGGATGGTGTGGGGGCTCTGTAGCCGCGAGCCGTTTTCTTTTATTCCAGACATCTTGCTTCCCGGAATTTACGCCTTTGTTCCAGTGATTCCGATTCCAGACGACAGACCTAAGTTACTGTTGGAATCGGAATAGCCTTACTGGGGCGGGGTCTTCCCATGCTTACCATCCGGTCTCAAGTCTCCTTCTCTGTTCGGTGCCTTCTGGCACAAAATATGCAGCATTTAGCAGCGTTCCAGAATCCGGTTTCTTTAAGTGACTTGCCTGGCCTTACCATAATTGCATGAAGTTACTTGATGTGCTATTTGTAATAGACGTAATTTAGTGGTTGGGATTGAAGCAGTACTGGCTATGTGGCAAAGGCCCGAATTGGGGGTCAAAGAGAAAATATTCTATCTGACTGTAACTTGGAGTAAACTTGAGAGTTGCAGAATCATTAAGGAAAATGAGAGGGGCGGGGGAAAGTGAGTTGGCTGTCTTGACTGAACCATTGATGTGTCAAACAATCGGAGGCCCTTCGTGCTTGGGGTGGGAATCTGGCATGGTTGGCTCACAGTGCTTTTTCAAGACCTCAACGAAGCAGATGGACGGTTTCTGTTTTCAACCCAATGGAATCAAGTCAAGTTCTAATGTTTTACTTGATGTTAGAATTTACAGGAAAATCTTTCGTCAGTCATGGCTCTAAGGACTTCTAATGTACTACCACATATTTCGGAATTACTTGGTATGGAAATAAAAACTGACCTTTTAAATGGGTTTCCTGTTTCGGAAATGAAAAGGGAAGGTTTCAAGAAAGTCGTTTTGACGCTGGCACCAACATCAATTTTGTCAAAGTAACTGTACATGACCACCCCCCTCCCTGGTTTTTTAAAGTATCCGGTGTCTTTCATTTTTGAACCTCAGCTCCGGCATTAGAGCAGTGCAGGAAAACTTGTGATAAATGTAACTAGCTTCACGATGAGAAGCGACTCTAGTGGTTTTCCTTAAGAATTGTGAAAATCTTGTTTTAACCAATTTATAGTATAGGATTTCCTTAAGACATATTTGTAAGTAGCTTAAGCATATTTTCGCAAAATATGCTTAAGTTATACTGCAATTAAGATGAGCAAATTTTTATTTAAAATAGGTTGTTTTACCTTACTGGTGGGCAGGATTGTCAAAATATCACGAAGCTTGAACTTGTCCTCTGCTTAGTGGGTTAGCACTTACACAGCACTAAGTTTGCTTTGAAGTGTAGCTGGGTCAGTCAGGTGGCTAGATCAGCAAATATTTATTGAGCACCAAGTTCTAGGCACTGTTAAAAGCGTTGAAAATAAGTGGTCGATACAATAGACCCCTTGAGCATTCTGATAAAGAAGGCAACAACAGTGTGCAAAGCACTAGAGTGAGGAGAGGGAGGAAGGGGAGTAGTCTGAATTATGGGGAATCTGCTTTGCATGGATGTTTAAAACGTAGTCTGAAAGACAAGTATGAATTGGATCAGAGGAGAGGTAGCCTCTTTGAAAGAGAATTTAGTGTGCGATCCTTTTTTTTTTAACCTGCTCTTGAGAACGGGTAGGTGAAAGTAGGAAGTAAAGTTTCCTGGTGAAGAAAGCTACTTAGCCCCCCAGCTGCCTGTCCTCAGGTACTGGGCATTGACTAACCTCATGCGTGGTAGGCAAGCTGCTGAGTTACACCTCCAGTCCTCCTTGTATCCATAGTCTTCATTGTCCTTTGACTTAGGGAGATGGGTTGTTTCCCATGCAGCCTGCTGTTTTGAATTCCTGGCTCCACAGGAATTGCAACTTTGGCTACAGTGTCTTATTCGACAGTGCAAATGCCATGTATGGTGCTTGTGAGGATTAATACAGGTCAGCGAGAGCAAAGCACCTAACAATGGTGCCAGGTACTTTGTAGGAACACAGTGCAGATTTGTGCAGAATATATGGCCTTCCTGATACTGGTGTGTGACAGAATAAGTTGCTTTATGGATTGAATATGTCTTGTGTGTAATGGCTGCTTGAATATCTGTTGGTGCTCTGCTAAACAATTATACAATAACCTCTGACATTTATACATTTTGATATAAAAACATTTGATGTTTTGACACAAGATTTGAATAAAGTAAGCTAAGAAAATGAACAAAATTCTGACAATTCTTAGTCCAGCTCATACTTGACTCTTTGCAGATTTTGAATTCTGTTAGCCTCATAAACTTTGGTAGTC +>URS0000A9B0F3 lncRNA from 12 species +TTTCCTTCCTCTTTTCAAGCTTATTGAAGGAGCCAAATCATTCCAATTCAGCCTGGACTGACCTTTATGTGCTTCATTTTAGTTTAAAAGAAACCCAAACTTCAGTTCTCTGGGATTCTGGGCTAAACATTAAGGAATCCATTCAAAGGTTGTACCTTCCTCCTCATGGTTAACCATTTCAAAG +>URS00013E7246 rRNA from 1 species +TACGTAGGGCGCGAGCGTTGTCCGGAATCATTGGGCGTAAAGAGCTCGTAGGCGGCCTGTCGCGTCTGCTGTGAAATCCCGGGGCTTAACCCCGGGCGTGCAGTGGATACGGGCTGGCTGGAGGCAGGCAGGGGAGAACGGAATTCCCGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCCGTAACTGACGCTGAGGAGCGAAAGCATGGGGAGCGAACAGG +>URS0001D4A06F rRNA from 1 species +AACGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGCCCTTTCGGGGGAGCGGCGGACGGGTGAGTAACGCGTGGGAATATGCCCTTCTCTACGGAATAGCCTCGGGAAACTGAGAGTAATACCGTATACGCCCTATGGGGGAAAGATTTATCGGGGAAGGATTAGCCCGCGTTGGATTAGGTAGTTGGTGGGGTAATGGCCTACCAAGCCGACGATCCATAGCTGGTTTGAGAGGATGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCGTGGGGGAGGCGGCAGGGGAGAATCTAAGAAGTGGGGGGCAACCATGAGTGAGCACTGGCGGGTGAGGGATGAAGGCCTTGGTGTTGTAAAGCTGTTGACGGTGGGAATAAAATGGCTGTACCAGCAGAAGAAGCCCAGGACAACTCCGTGCCAGAAGACGAGTTAATAGTCAAAGACACACGTCTGAAC +>URS00022CCAAD rRNA from 1 species +TGGAAGCGTCTGGAAAGGCGCGCGATACAGGGTGACAGCCCCGTACACAAAAGCGCATGTGCTGTGAGCTCGATGAGTAGGGCGGGACACGTGGTATCCTGTCTGAATATGGGGGGACCATCCTCCAAGGCTAAATACTCCTGACTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGCGAAAAGAACCCCGGCGAGGGGAGTGAAAAAGAACCTGAAACCGTGTACGTACAAGCAGTGGGAGCACCCTTTGGGGTGTGACTGCGTACCTTTTGTATAATGGGTCAGCGACTTATATTCTGTAGCAAGGTTAACCGAATAGGGGAGCCGCAGGGAAACCGAGTCTTAATTGGGCGTTAAGTTGCAGGGTATAGACCCGAAACCCGGTGATCTAGCCATGGGCAGGTTGAAGGTTGGGTAACACTAACTGGAGGACCGAACCGACTAATGTTGAAAAATTAGCGGATGACCTGTGGCTGGGGGTGAAAGGCCAATCAAACCGGGAGATAGCTGGTTCTCCCCGAAAGCTATTTAGGTAGCGCCTCGTGAACTCATCTCCGGGGGTAGAGCACTGTTTCGGCTAGGGGGCCATCCCGGCTTACCAACCCGATGCAAACTGCGAATACCGGAGAATGTTATCACGGGAGACACACGGCGGGTGCTAACGTCCGTCGTGAAGAGGGAAACAACCCAGACCGCCAGCTAAGGTCCCAAAGTCATGGTTAAGTGGGAAACGATGTGGGAAGGCCCAGACAGCCAGGATGTTGGCTTAGAAGCAGCCATCATTTAAAGAAAGCGTAATAGCTCACTGGTCGAGTCGGCCTGCGCGGAAGATGTAACGGGGCTAAACCATGCACCGAAGCTGCGGCAGCGACGCTGATGCGTTGTTGGGTAGGGGAGCGTTCTGTAAGCCTGTGAAGGTGGCCTGTGAGGGTTGCTGGAGGTATCAGAAGTGCGAATGCTGACATAAGTAACGATAAAGCGGGTGAAAAGCCCGCTCGCCGGAAGACCAAGGGTTCCTGTCCAACGTTAATCGGGGCAGGGTGAGTCGACCCCTAAGGCGAGGCCGAAAGGCGTAGTCGATGGGAAACGGGTTAATATTCCCGTACTTGGTGTTACTGCGAAGGGGGGACGGAGAAGGCTATGTTGGCCGGGCGACGGTTGTCCCGGTTTAAGCGTGTAGGTGTGTGTTCCAGGTAAATCCGGTTCACTTTAACACTG +>URS0000B7FAC1 rRNA from 1 species +ACCTACGGGGGGCAGCAGTGGGGAATATTGGGCAATGGAGGCAACTCTGACCCAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATTGTAAAACTCTTTAAGTGGGGACGAAGAAAGTGACTGTACCCACAGAATAAGCCTCGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGAGGCAAGCGTTATCCGGATTTACTGGGTGTAAAGGGAGCGTAGACGGCTTGGCAAGCCAGATGTGAAAGGCTGGGGCTCAACCCCAGGACTGCATTTGGAACTGTCATGCTAGAGTGTCGGAGGG +>URS00001F4C6B rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAACACATGCAAGTCGAACGGGGGTAGCAATACCTCAGTGGCGAACGGGTGCGTAACACGTGAAGAATTTGTCCAACGGCGGGGGAGTAGCCGGCCCAACGGCCGGGTAATACCGCGTACGCCCTTCGGGAGGCATCTCCTGATTGGGAAAGCCGCAAGGCGCCGATGGAGAACTTCGCGGCCTATCAGCTAGTTGGTGAGGTCATGGCTCACCAAGGCGACGACGGGTAGCTGGTCCGAGAGGATGACCAGCCACATTGGGACGTGAGACACGGCCC +>URS000030270D rRNA from 1 species +CAGCAGCCGCGGTAATACGTAGGGTGCGAGCGTTAATCGGAATTACTGGGCGTAAAGCGGGCGCAGACGGTTACTTAAGCAGGATGTGAAATCCCCGGGCTCAACCTGGGAACTGCGTTCTGAGCTGGGTGACTAGAGTGTGTCAGAGGGAGGTAGAATTCCACGTGTAGCAGTGAAATGCGTAGAGATGTGGAGGAATACCGATGGCGAAGGCAGCCTCCTGGGATAACACTGACGTTCATGCCCGAAAGCGTGGGTAGCAAACAGGATTAGATACCCTGGTAGTCCACGCCCTAAACGATGTCGATTAGCTGTTGGGCAGCTTGACTGCTTAGTAGCGAAGCTAACGCGTGAAATCGACCGCCTGGGGAGTACGGTCGCAAGATTAAAACTCAAAGGAATTGACGGGGACCCGCACAAGCGGTGGATGATGTGGATTAATTCGATACAACGCGAAGAACCTTACCTGGTCTTGACATGTACGGAACCCTCCAGAGACGGAGGGGTGCCTTCGGGAGCCGTAACACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCATTAGTTGCCATCATTAAGTTGGGCACTCTAATGAGACTGCCGGTGACAAGCCGGAGGAAGGTGGGGATGACGTCAAGTCCTCATGGCCCTTATGACCAGGGCTTCACACGTCATACAATGGTCGGTACAGAGGGTAGCCAAGCCGCGAGGTGGAGCCAATCTCACAAAACCGATCGTAGTCCGGATTGCACTCTGCAACTCGAGTGCATGAAGTCGGAATCGCTAGTAATCGCAGGTCAGCATACTGCGGTGAATACGTTCCCGGGTCTTGTACACACCGCCCGTCACACCATGGGAGTGGGGGATACCAGAAGTAGGTAGGGTAACCGCAAGGAGCCCGCTTACCACGGTATGCTTCATGACTGGGGTGAAGTCGTAACAAGGTAGCCGT +>URS0001E386D7 rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGCTGCAGGGTACTTGCTCCTTCTTTCGGCTGCCGACTGGTGGACGATGCCTAGGTATCTCCCTATTTGTTTTTGCTTACGTCCTAACGTGGGCGCTCTTACCCCATACGTCCTTACGACCTACGTGTGGAATCTTCGGACCTTCCGCTCTCGCATGATCCTATGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCGTAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGGGTGAAGAAGGTCTTCGGATTGTAAAGCACTTTAGGTTGGGAGGAAGAGCAGTAAGTTAATACCTTGCTGTTCTGACGGTACCAAAAGAATAAGCACCGGCTAACTTCGTG +>URS0001DD23C1 misc_RNA from 1 species +GATGAAGAAGTAGCGAAATGCGATAAGTAGTGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCCTTGGTATTCCATGGGGCATGCCTGTTCGAGCGTCATTTGTACCTTCAAGCTCTGCTTGGTGTTGGGTGTTTGTCTCGCCTCTGCGTGTAGACTCGCCTCAAAATAATTGGCAGCCGGCGTATTGATTTCGGAGCGCAGTACATCTCGCGCTTTGCACTCATAACGACGACGTCCAAAAGTACATTTTTACACTCTTGACCTCGGATCAGGTAGGGATACCCGCTGAACTTAAGCATATCAATAAGCGGAGGA +>URS000221B86E rRNA from 1 species +TGATCCCGGCCCAGAATGAATGCTTGCGACAAGCCTAATACATGCAAGTCGAGCGCACTTTTAGAGTGAGCGGCGAACGGGTGAGTAATGCGTAAGAATCTACCTTCTACATAGCCATAAATAGGTAAAGGCCAAGTCCGGTAGAAGATGAGCTTGCGTAAGATTAGGTAGTTGGTGAGGTAAGAGCTCACCAAGCCAGAGATCTTTAGCTGGTCTGAGAGGTTGATCAGCCACACTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTAGGGAATATTGGTCAATGGGCGAGAGCCTGAACCAGCCATGCCGCGTGCAGGATGACGGCCTTCTGGGTTGTAAACTGCTTTTATATGGGAAGAAAAAGGTCTTGCGAGACAAATTGCCGGTACCATATGAATAAGCACCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGGTGCAAGCGTTGTCCGGATTTATTGGGTTTAAAGGGTACGTAGGCGGATTTTTAAGTCCGTGGTGAAAGCCTACAGCTTAACTGTAGAACTGCCATGGATACTGGAAATCTTGAATTCAGTTGAGGTAAGCGGAATTTATGATGTAGCGGTGAAATGCATAGATATCATAAAGAACACCTATTGCGAAGGCAGCTTGCTGGACTTGAATTGACGCTGAGGTACGAAAGCGTGGGGAGCGAACAGGATTAGATACCCTGGTAGTCCACGCCGTAAACGATGATTACTCGCTGCTAGCGATACACAGTTAGTGGCCAAGCGAAAGCGTTAAGTAATCCACCTGGGGAGTACGCTCGCAAGAGTGAAACTCAAAGGAATTGACGGGGGTCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGATACGCGAGGAACCTTACCTGGGCTAGAATGTGAGCGCTAGATTTAGAGATAGATCGTTCTTCGGACGTGAAACAAGGTGCTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCCTATCCCTAGTTGCTAGCAGTTCGGCTGAGAACTCTAGGGAGACTGCCGGTGACAAACCGGAGGAAGGTGAGGATGACGTCAAATCAGCATGCCCCTTACATCTTGGGCGACTCACGTGCTACAATGGTCGGGACAAAGAGATGCTACCCTGCGAAGGCAAGCTAACCTCAAAAACCCGATCTCAGTTCGGATTGCAGGCTGCAACTCGCCTGCATGAAGTTGGAATCGCTAGTAATCGCAGGTCAGCCATACTGCGGTGAATACGTTCTCGGGTCTTGTACACACCGCCCGTCACACCATGGAAGTTGGTAATACCCGAAATCGCGCGTCTAACCTTCGGGAGGACAGTGCCTAAGGTAGGATCAGTGACTATGGTGAAGTCGTAACAAGGTAGCCGTACTGGAAGGTGTGGCTGGATTACCTCCT +>URS00005DE4A8 rRNA from 1 species +GGCCCGCGCAAGCGGTTGAGCAAGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACCCTTGACATCGTGCGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAGCGCACAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGTAACGAGCGCAACCCTTGTCCCTATTTGCCAGCGATTCGGTCGGGAACTTTAGGGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGACGACGTCAAGTCATCATGGCCCTTACGGGTAGGGCTACACACGTGCTACAATGGCCGGTACAATGGGTTGCAAAGCGGCGACGTGGAGCTAATCTCATAAAGCCGGTCTCAGTCCGGATCGGAGTCTGCAACTCGACTCCGTGAAGTCGGAATCGCTAGTAATCGTGCATCAGAATGGCACGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGGAGTGGACTGCACCAGAAGTGGTTAGCCTAACTTCGGAGGGCGATCACCATCGGTTGTACATATCT +>URS00010C272E rRNA from 1 species +TACGGAGGGTGCGAGCGTTGTCCGGAATCACTGGGCGTAAAGGGCGCGTAGGCGGCCTGCTAAGTCGAACGTGAAATCCCCGGGCTCAACCCGGGAACTGCGTCCGATACTGGCAGGCTTGAATCCGGGAGAGGGATGCGGAATTCCAGGTGTAGCGGTGAAATGCGTAGATATCTGGAGGAACACCGGTGGCGAAGGCGGCATCCTGGACCGGCATTGACGCTGAGGCGCGAAAGCCAGGGGAGCAAACGGG +>URS0001E10DE4 rRNA from 1 species +GATGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAACAGACGAGGAGCTTGCTCCTCTGACGTTAGCGGCGGACGGGTGAGTAACACGTGGATAACCTACCTATAAGACTGGGATAACTTCGGGAAACCGGAGCTAATACCGGATAATATATTGAACCGCATGGTTCAATAGTGAAAGACGGTTTTGCTGTCACTTATAGATGGATCCGCGCCGCATTAGCTAGTTGGTAAGGTAACGGCTTACCAAGGCAACGATGCGTAGCCGACCTGAGAGGGTGATCGGCCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTAGGGAATATTCCGCAATGGGCGAAAGCCTGACGGAGCAACGCCGCGTGAGTGATGAAGGTCTTCGGATCGTAAAGCTCTGTTATTAGGGAAGAACAAATGTGTAAGTAACTATGCCCGTCTTGACGGTACCTACTCAGAAAGCCACGGCTAACTACGTG +>URS000163CC5A rRNA from 1 species +CCTACGGGGGGCAGCAGTGAGGAATATTGGTCAATGGGCGGGAGCCTGAACCAGCCAAGTCGCGTGAGGGAAGACGGTCCTATGGATTGTAAACCTCTTTGGGCGGGGAGCAATGCCGGGCACGTGTGCCCGGAGGGAGAGTACCCGCAGAATAAGCATCGGCTAACTCCGTGCCAGCAGCCGCGGTAATACGGAGGATGCGAGCGTTATCCGGATTTATTGGGCGTAAAGCGCTCGTAGGCGGTATGTCAAGTCAAGGGTGAAAGCCCCGCGCTCAACGTGGGAACTGCCTTTGAAACTGGCAAACTTGAGTGTGTGAGAGGATAGTGGAATTCCAGGTGTAGGAGTGAAATGCGTAGATATCTGGAGGAACAGCAGTGGCGAAGGCGACTATCTGGCACATAACTGACGCTGAGGAGCGAAAGCGTGGGTAGCAAACAGGATTAGATACCCCAGTAGTC +>URS0000FA15DB rRNA from 1 species +GACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAACGCAGTGGGGACGGGTGAGTAACACGTGGGTAACCTCCCATCAGAGGGGATAACACTTGGAAACAGGTGCTAAACCGATACTGATGGATGGACCCGCGGTGCATTAGCTAGTTGGTGAGGTAAAGGCCTACCAAGGCAAGGATGCATAGCCGACCTGAGAGGGTGATCTGCCACATTGGGACTGTGACACGGCCCAACCTCCTACGGTAGGCAGCAGTAGGGAATCTTCCGCAATGGGCGCAAGCCTGACGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTCAGAGAAGCGGTATCTTACCAGAAAGCCACGGCTAACTACGTGCCAGCAGCCGCGGTAATAC +>URS0000AF79E1 sRNA from 1 species +ACCCGCTGAATTTAAGCATATTAATAAGCGGAGGAAAAGAAACTAACAAGGATTCCCTCAGTAATGGCGAATGAAGCGGGAATAGCTCAATTTTGGAATCTCCGCTTCGGCGGCGAATTGTAGTTAATAGAGGTGTTTTCTCAGGATGCGGTGTGGTTTCTAAGTCCCTTGGAACAGGGCATCATAGAGGGTGAGAATCCCGTATGTGGAACCGCACTTGTCCCTTCGATACACTTTCTACGAGTCGGGTTGTTTGGGAATGCAGCCCAAAATGGGTGGTAAATTTCATCTAAAGCTAAATATTGGCACGAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGAAAAGAGAGTCAAACAGTACGTGAAACCGTTAAAAGGGAAACGATTGGAACTAGCAGTGACAGCATGTAATCAGTGGTTTGCTTGTGTTGTGATGGTTGTGTCTTTAAAAAAGCTCTTCTTGATCAGCCTTGTGGACTATGCACTTGCGTGTTTGTCGTGTCAATGTCAGTTTCTTCGGCGGGAGAAAACCGGGGAAAAGGTAGCTTGGTTCTTCCAAGTGTTACAGGTTCTCGGGTATATCGCCCTAGGGACTGAGGAGTGCGGGTCGTGCCTTTTGGCAAGGAAGCCTTTTGATGCCGGTGTATGTTTCTGCCCGACTGCTTGCAGTGGTGTGGTTGCATGCATGGTAATGCTTGGGGTTTTCCATTCACGTCCCTCAGATATTGACGAAATAGTTTCAACCGACCCGTCTTGTAACACGGACCAAGGAGTCTAACATGTATGCGAGTCTCTGGGTGTAAAACTCGTGGGCGCAATGAAAGTAAACGTAGGTGAGACGCTTCGGCTGCATCATCGACCGATTTGGATTTTTTATGAAAGATTTGAGTATGAGCATATATGTTGGGACCCGAAAGATGGTGAACTATGCCTGAATAGGGTGAAGTCAGAGGAAACTCTGATGGAAGCTCGTAGAGGTTCTGACGTGCAAATCGATCTTCAAATTTGGGTATAGGGGCGAAAGACTAATCGAACCATCTAGTAGCTGGTTCCCACCGAAGTTTCCCTCAGGATAGCTGGAACTTGTTCAGTTTTATCAGGTAAAGCGAATGATTAGAGGCCTTGGGGTTGAAACAACCTCAACCTATTCTCAAACTTTAAATAGGTAAGAAGTCTGACTTGCTTAACTGAAGCCAGACGATCGAATGTTGAGTTCCAAGTGGGCCATTTTTGGTAAGCAGAACTGGCGATGCGGGATGAACCGAACGCGGAGTTAAGGTGCCAAAATCAACGCTCATCAGACCCCACAAAAGGTGTTGGTACATCCAGACAGCAGGAAGGTGACCATGGAAGTCGGGACCCTCTAAGGATCGTGTAACAACTCACCTGCCGAATGTATTAGCCCTGAAAATGGATGGCGCTAAAGCGTTGTACCTATACTCCGCCGTTGTGTTAATAACGATGACACAACGAGTAGGTGGGCGTAAAGGTTTTTGTTCTTTTTGAACTTTTGTGACGAAGCTTTTGATGTGAATCTGAGTTGAACGGCCTTTAGTGCAGATCTTGGTGGTAGTAGCAAATATTCAAATGAGAACTTTGAAGACTGAAGTGGAGAAAGGTTCCTTGTGAACAGCAGTTGGACAAGGGTTAGTCGATCCTAAAAGATAGGGTAATTCTGTTTGAAATGGCTTTCTTGTAAAGCACCTTATTGAAAGGGAATCAGGTTAATATTCCTGAACCGGAATGTGGATATTTCTCTCTTCGGAGGGAATGTGTGGTAACGCAACTAAACTCGGTGACGCTGGCAAGTATCCCGGGAAGAGTTCTCTTTTCTTTTTAACGATTGCATTGACCATGAAATCAGGTTAACTGGAGATATGGTTAAATCGCAACCAGGGCCACCTTCGGGTAGCCGACGGTAAAGCACTGCAATTTTTTCGCAGTGTCCGGTGCATTCTTGACAGCCCGTGAAAAACCGAGGGAAATAATAATTCTCACATCCGGTCGTACTCATAACCGCAGCAGGTCTCCAAGGTGAACAGCCTCTAGTTGATAGAAGAATGTAGGTAAGGGAAGTCGACAAAAAAGATCCGTAACTTCGGGATAAGGATTGGCTCTAAGGGTTGGGCATGTTGGGGCCATCTCCTTTTTGGATTTGCCTGAAGCTCGTTGATTAGCGGGCGTGGATGCGCTTTCGGGTGCGTTCTGCCTGCTCGATTGACCTGTTGAGGGTGGTGGCTGAGGGGGGGGGTTTTTTCTCCTCTTCTCAACTGGCATGTAATTAGCAACCGACTTAGAACTGGTACGGACAGGGGGAATCCGACTGTTTAATTAAAACAAAGCATTGCGATGGCCGGAAATGGTGTTGACGCAATGTGATTTCTGCCCAGTGCTCTGAATGTCAAAGTGAAGAAATTCAACCAAGCGCGGGTAAACGGCGGGAGTAACTATGACTCTCTTAAGGTAGCCAAATGCCTCGTCATCTAATTAGTGACGCGCATGAATGGATTAACGAGATTCCCATTGTCCCTATCTACTATCTAGCGAAACCGCAGCCAAGGGAACGGACTTGGCAGAATCAGCGGGGAAAGAAGACCCTGTTGAGCTTGACTCTAGTCCGACTTTGTGAAAAGACATTGGAGGTGTAGCATAGGTGGGAGCTTCGGCAAACTTGAAATACCACTACTCTGATCGTTTTTTTACTTATTTAATGAAGCGGGAAGCGAGTTTTCACCGACTCAATTTTTGGGATTTAAGCTCCCCCTTTTTGGGGGGGTGATCCGAGTTAAAGACATTGTCAGGTGGGGAGTTTGGCTGGGGCGGCACATCTGTCAAAAGATAACGCAGGTGTCCTAAGGTGAGCTCAATGAGAACGGAAATCTCATGTAGAACAAAAGGGTAAAAGCTCACTTGATTTTGATTTTCAGTGTGAATACAAACTGTGAAAGCATGGCCTATCGATCCTTTAGTCCTTTTTTGAAATTTAAAGCTAGAGGTGTCAGAAAAGTTACCACAGGGATAACTGGCTTGTGGCAGCCAAGCGTTCATAGCGACGTTGCTTTTTGATCCTTCGATGTCGGCTCTTCCTATCATTGTGAAGCAGAATTCACCAAGTGTTGGATTGTTCACCCACTAATAGGGAACGTGAGCTGGGTTTAGACCGTCGTGAGACAGGTTAGTTTTACCCTACTGATGAGTATCTATGATATAGACCACAGTTGTTGCAATAGTAATCAAACTCAGTACGAGAGGAACCGTTTGTTCGGACAATTGGTATTTGCCCTTGGTTGAACAACCAATGGGGCGAAGCTACCATCCGTAGAATTATGACTGAACGCCTCTAAGTCAGAA +>URS0001793305 rRNA from 1 species +TACGTAGGGGGCGAGCGTTGTCCGGATTTATTGGGCGTAAAGCGCGCGTAGGCGGTTTGGCAAGTCTGATGTGAAAACCCGGGGCTCAACCCCGGGCGTGCATTCGATACGAGCAAACTAGAGTGTTGCAGGGGAGACTGGAATTCCTGGTGTAGCGGTGAAATGCGCAGATATCAGGAGGAACACCGGTGGCGAAGGCGGGTCTCTGGGCAACAACTGACGCTGAGGAGCGAAAGCGTGGGGAGCGAACAGG +>URS0000082604 rRNA from 1 species +GAGTTTGATCGTGGCTCAGGATGAACGCTGGCGGCGTGCTTAACACATGCAAGTCGAACGAAGCACTTTACCACGATTCCTTCGGGATGACGGTTTAGTGACTGAGTGGCGGACGGGTGAGTAACGCGTGGGGAACCTGCCCCATACCGGGGGTAACAGCCGGAAACGGCTGCTAATACCGCATAAGCGCACAGTACCGCATGGTACGGTGTGAAAAACTCCGGTGGTATGGGATGGACCCGCGTCTGATTAGCCAGTTGGCGGGGTAACGGCCACCAAAGCGACGATCAGTAGCCGGCCTGAGAGGGCGACCGGCCACATTGGGACTGAGACACGGCCCAGACTCCTACGGGAGGCAGCAGTGGGGGAATATTGCACAATGGGGGAAACCCTGATGCAGCAACGCCGCGTGAGTGAGGAAGTATTTCGGTATGTAAAGCTCTATCAGCAGGGGAAGAAGAAATGACGGTACCTGACTAAGAAGCCCCGGCTAACTACGTG +>URS00023E414C lncRNA from 1 species +CATGTTCACAATTTGGTAGCTGCTAGTTATTAGTCATTACATATAATATTTGAGATCAAAATATATTATTTTTTTAGGAAAAAAAAATCAAAGTATATGTAATGCAAGCTAGGAGGCCTAGCATGAGGTTCACTGTAATCTAGAGGAAGATTAAATTAACTAAGAAGGAATTAAACTAATTATAAAATAAAGAAAATATCAAACTCCAAAAATCTACGGGCA +>URS000233A4B4 lncRNA from 1 species +TGTTAACAAAAATAGAGTGGGGAATAGGGTTAGGCCATGACAGGCAATGATCCTAAGAGCTAGAGATCTCTCCCACCCCAACAGAGAGAGACAGAGAGACAGACAGAGAGAGAGAGAGGGAGACAGAGACAGAGAGAGAGACACACACAGAGAGAGAGAGACACACACGCACACACACAGAGAGAGAGAGACACACACACACACACACACAGAGAGACACAGAGAGAGAGAGAGACAGAGACAGAGACAGAGAGAGAGAACCCTAAGGTATTAATATTCCTGACTTGAATACCTCAGGCTTTTCCCAGCCAACTTCCACGTTGCTCTCCTATCCGTCTCCACACCTAATTCTTCTACCAAACCCTTCTGTCCACCCCAGGAGATTGTGAACTCAGGCACCAAATCCAACAAGCTCCCCGAGGAACTTACAACAGTCTGTTTTACAGAGAAGTAAATGTTGCTGAGAGAGAAAATTGTCAGGCCTCGGTGTTCCAGAGCAAGAGGCATTCCTTCATTCCCAGAGAGGCCCTGGGCCTCAGCAAGCAAGCCCGACAAGCCCTCCGCAGCCAGAATCCAAGCTTCAGGCTGCACCTCCCTCACCGCTGGGCCCTGGACAGTGAGGCTGCTGCTCAGAACCCCTCTCCTCAGAGGGAAATTCCTCAGGGCTGCCCCACCCGACCCGTTCTATCAGTCACTCAAGCCCTCTATCCTCTGTCACAGCCTGGCTCTGTCCCTTCCCATGCCCCAACCCCCAACCTCCCAGGACCCAGTATCTCAGGATTTCTGCCCTCCTCCAGCCCCGAGCAGCCTGGAAGCCAAGTGGCAAGGATGTAGTCAGCCGGGTGGGCCCTGAGAGCCGGTGGAATGGTGTCCATGTTGCAGGAAACAAGGGAAGGTGAGGGGTACAGGGGTGCCTGTGCCAGGCCACCACTCCACAGCTCATTCTTCTCTGAGGTTATTCCCCGACCCATACCCCTCTGGAGCCCACCCCAGCTGCTTCCTCTTCCTAGGGGTCTCCACCTGATGTTCTGTGAC +>URS0001C069FB rRNA from 1 species +ATTGAACGCTGGCGGCAGGCCTAACACATGCAAGTCGAGCGGATGAAGGGAGCTTGCTCCTGGATTCAGCGGCGGACGGGTGAGTAATGCCTAGGAATCTGCCTGGTAGTTGGGGATAACGTCCGTAAACGGGCGCTAATACCGCATACGTCCTGAGGGAGAAAGTGGGGGATCTTCGGACCTCACGCTATCAGATGAGCCTAGGTCGGATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCGACGATCCGTAACTGGTCTGAGAGGATGATCAGTCACACTGGAACTGAGACACGGTCCAGACTCCTACGGGAGGCAGCAGTGGGGAATATTGGACAATGGGCGAAAGCCTGATCCAGCCATGCCGCGTGTGCGAAGAAGGTCTTCGGATTGTAAAGCACTTTAAGTTGGGAGGAAGGGCAGTAAGTTAATACCTTGCTGTTTTGACGTTACCAACAGAATAAGCACCGGCTAACTTCGTG +>URS0000ECE6B7 rRNA from 1 species +GGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGATGCAACGCGAAGAACCTTACCTACTCTTGACATCCAGAGAACTTTCCAGAGATGGATTGGTGCCTTCGGGAACTCTGAGACAGGTGCTGCATGGCTGTCGTCAGCTCGTGTTGTGAAATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTATCCTTTGTTGCCAGCGGTTAGGCCGGGAACTCAAAGGAGACTGCCAGTGATAAACTGGAGGAAGGTGGGGATGACGTCAAGTCATCATGGCCCTTACGAGTAGGGCTACACACGTGCTACAATGGCGCATACAAAGAGAAGCGACCTCGCGAGAGCAAGCGGACCTCATAAAGTGCGTCGTAGTCCGGATTGGAGTCTGCAACTCGACTCCATGAAGTCGGAATCGCTAGTAATCGTAGATCAGAATGCTACGGTGAATACGTTCCCGGGCCTT diff --git a/flax_model/alphafold3/test_data/miniature_databases/uniprot_all__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/uniprot_all__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..318b0b77c80645da34d4d17e33cbdbec6b88e98a --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/uniprot_all__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>tr|A0A3A3JCS5|A0A3A3JCS5_SALMO Octaprenyl diphosphate synthase OS=Salmonella montevideo OX=115981 GN=ispB PE=3 SV=1 +MNLEKINELTAQDMAGVNATILEQLNSDVQLINQLGYYIISGGGKRIRPMIAVLAARAVGYQGNAHVTIAALIEFIHTATLLHDDVVDESDMRRGKATANAAFGNAASVLVGDFIYTRAFQMMTSLGSLKVLEVMSEAVNVIAEGEVLQLMNVNDPDITEENYMRVIYSKTARLFEAAAQCSGILAGCTPEQEKGLQDYGRYLGTAFQLIDDLLDYSADGEHLGKNVGDDLNEGKPTLPLLHAMRHGTPEQSAMIRTAIEQGNGRHLLEPVLEAMTTCGSLEWTRQRAEEEADKAISALQILPDTPWREALIGLAHIAVQRDR +>tr|K8XEW0|K8XEW0_RHOOP LexA repressor OS=Rhodococcus opacus M213 OX=1129896 GN=lexA PE=3 SV=1 +MKDDSSTDGSTPRVSGGSAAGLTDRQRRVLEVIRTSVNERGYPPSIREIGDAVGLTSTSSVAHQLRTLERKGFLRRDPNRPRAVDVRGLDEVAAGVAANASASAAVGLAAVKSGADGAPLPEPTFVPVLGRIAAGGPILAEEAVEDVFPLPRELVGQGSLFLLKVVGESMIDAAICDGDWVVVRQQNVAENGDIVAAMIDGDATVKTFKRTENEVWLMPHNPLFDPIPGNDAVILGKVVTVMRKI +>tr|A0A0P0EB71|A0A0P0EB71_9MICO 2Fe-2S ferredoxin-type domain-containing protein OS=Microbacterium sp. No. 7 OX=1714373 GN=AOA12_02545 PE=3 SV=1 +MPRVTYIQPDGASSEVEASRGDSVMSAAIAAGVPGIVADCRGGLTCATCHVFVDEEWLERVGEKEPEEEEMLELTAVPATECSRLSCQIVLVDELDGLVVTVPEEQE +>tr|A0A212KYF3|A0A212KYF3_9DELT Uncharacterized protein OS=uncultured Desulfovibrio sp. OX=167968 GN=KL86DES1_10311 PE=4 SV=1 +MNFPFIPKIVAFARQHTLALAAAVLVLIVFVVSFSGWRYYQYRQSSQYAYEILRDALKTGDTETIAELVDFNSLSRGLAKDLAQNYPFLKAGADQERQIGDMIQTALLKQSRTKQEPVKDEPDLKIRLKTALYALPPDFLAQLASSLSLQPPNDGTALLTAKVRHPLLDKNFLLILRMDQTPTGWRVRQLVNSPELVRQFREAQVERMTAQRQMILDKNAATEKRMKELFPLQPCSASAGLISDGSTLLVVVHVLARDIGTVSVNNMNLFTELSSATGELLLTRYLNAVQPTHPGEDFERNWTIELDGNSELGRRVLNGQPLQCKGAWKTLGLDNGEVLHISEAPAPIEEFQ +>tr|A0A5H1ZRJ3|A0A5H1ZRJ3_DANRE Transmembrane channel-like protein (Fragment) OS=Danio rerio OX=7955 GN=tmc2b PE=3 SV=1 +XSSSSDNNSDDESMSEGEMARLKEEVEEKKKLIATLRNKPWRMKRRLKCLKEAQEFVEKFEGALGKGKGRRLYAFKVMMTKKLIKFNRDFENFKTACIPWESRIKEVESHFGSSVASYFIFLRWMYGLNLVLFGFMFGLVVIPELLMGIPYGSIPRKTVPREEQDSAMDFSVLFEFGGYCKYSILFYGFYNNQRTIGFLQFRLPLSYLLVGVGIFGYSLMVVIRTMARNANEGGDGGDEGNFTFCWKLFTSWDYLIGNPETADNKFASTTTSFKESIVDEQENLKDENIHLRRFLRLLANVLILCCLAGSGYLIYAVVKRSQDFAKRDRNELTWLQKNEVEIVMSLLGLVCPPLFEAIAELEDYHPRIALKWQLGRIFALFLGNLYTFLFALFDEVNGKLENEKQIKNQTVWALKEYYANYTLQYNITENIPPPNIAPADVIRGPCWETEVGIEFVKLTVSDIQVTYLTILIGDFLRALIVRFLNYCWCWDLEAGFPSYAEFDISGNVLGLIFNQGMIWMGAFYAPGLVGINVLRLLSSMYYQCWAVMACNVPHERVFKASRSNNFYMGLLLLVLFLSLMPVIYSIMTLPPSFDCGPFSGKDKMYDVITETIDKDLPPFMADIFSYASNPGLIISVVLLMVLAIYYLNAVSKAYQNSNLELKRKMQMQRDEEKNRRNNKDSTNQVMKDLEDLLPNKSLIPPPSVEETEKPAEQPSKSSKVTGKPGAAASGKGVHVQKDVSLAAANPRAPVTRAPGPRQPGPLPGNPRGPPPGQGMGRGRGGPPPRR +>tr|A0A1H1BTM6|A0A1H1BTM6_9GAMM Short chain dehydrogenase OS=Pseudoxanthomonas sp. CF125 OX=1855303 GN=SAMN05216569_1554 PE=4 SV=1 +MTADPNLDQTLQLLEAIAADRTVLDMWPEEERVRLHKAIASIYHPEPKLRRKKTKELERERHAEKLRRADALLDQTGIRALRRAPVFTTPNYFPPAGFVAQDNVEERPEPLESPELRHCYVCKKKYTQVHHFYDQMCPECAEFNFAKRTELADLSGRVALLTGGRVKIGYQAGLKLLRAGAHLIVTTRFARDSAARYAQEPDFEQWGHRLEVFGLDLRHTPSVEAFCRELSAKYPRLDFIINNACQTVRRPPEFYAHMMEAETAALRDTPEHVRKLLGSYEGLRSHDLLPEASALQVAIKQGFPEVAGLTHAAELSQVPLLAEELLGQKHLFPEGRLDQDLQQVDLRGRNSWRLQMAEVPSVELLEVQLVNAIAPFLINARLKPLMLRTPERDKHIVNVSAVEGQFYRNFKTTRHPHTNMAKAALNMMTRTAAADYHGDGIHMNSVDTGWVTDEDPVELAARKTVQERFHPPLDIVDGAARIVDPIIHGINTGEHVWGQFLKDYRPTDW +>tr|A0A217EZB4|A0A217EZB4_9SPHN Uncharacterized protein OS=Croceicoccus marinus OX=450378 GN=A9D14_19100 PE=4 SV=1 +MAAPLALAACGSGDDTEMMDDTAMAEGQMADGQMPMDGGDMSMMGSDSAMQTASAEGTVTAIDADAGTITVDHGAVPAIEWPAMTMAFEADEELRQDVAVGDTISFDFTTDESGNAITSITKK +>tr|A0A1C5RVT8|A0A1C5RVT8_9CLOT Uncharacterized protein OS=uncultured Clostridium sp. OX=59620 GN=SAMEA3545292_01435 PE=4 SV=1 +MSGLYTITLNGVSEEVYNKAADYIQAHALRLNYRPEVSTIDCEFPDDLDPAKAPELSEAVIRKVHQQL +>tr|A0A2M7MVT7|A0A2M7MVT7_9PROT Uncharacterized protein OS=Hydrogenophilales bacterium CG_4_10_14_3_um_filter_63_21 OX=1974028 GN=COZ24_06435 PE=4 SV=1 +MRTWLDLNGLCARKREQGEHPRPFWTLMKRYLPQNYRWNIVHEDDSLIIAGIEHGLHGHLGPNGARGNPKNLRSVGKANTGHTHSAGITEGVYTAGVFGQLDMGYNKGLSSWSHSFILTYENGKRTICTIRDGRAWR +>tr|A0A1H5Q8D7|A0A1H5Q8D7_9PSEU Transcriptional regulator, LacI family OS=Amycolatopsis pretoriensis OX=218821 GN=SAMN05421837_101914 PE=4 SV=1 +MTTKSDDPEPCASRVTIARIAAETGVSVPTVSKVLNGRPDVAESTRARVEAVIGKYGYRRRADERSRRSRLLELMFHELESTWALEIIRGVEYVARENGMAVVLAESSGRHTPGQSWLESVLARRPVGIVSVCSDFTGGQLAKLRARDIPLVVVDPAGAPGPETPSIGATNWQGGLTATRHLVELGHRRIAMIGGPDGVLCSRARIDGYRTALETAGLAFDPALVRRGDFHVRSGYRELASLLTLPDRPTAVFAGSDLQALGVYEAARDAGLRIPDDLSVVGFDDLPVARWLTPELTTIRQPLQEMAAAGARLAISLARGTHPESHRLELATSLVVRQSTAAPARRAVPAGRG +>tr|A0A1I0W1D7|A0A1I0W1D7_9ACTN NAD-dependent protein deacetylase, SIR2 family OS=Nocardioides alpinus OX=748909 GN=SAMN05192575_101623 PE=4 SV=1 +MTLAPTDRVESALDLLTTRPLVVLTGAGLSTDSGIPDYRGPGSTARAPMTYQEFVGSAEAQQRYWARSHLGWQRMGRALPNDGHRALAALDPVLLITQNVDGLHEAAGSRHLVALHGRVADVICLSCRTTSSRDDLEQRLDDLNPGWLEQHGWVESRPDGDVDLDDTSDFVVPTCACGGPIKPDVVFFGENVPADRVARCYAAVESLGPDGALLVAGSSLTVMSGLRFVKRAAQGGTPIVIVNRGATRGDPLASYTLDVGCSEFLTRLAELAG +>tr|A0A4W2HU19|A0A4W2HU19_BOBOX Ubiquitin conjugating enzyme E2 L3 OS=Bos indicus x Bos taurus OX=30522 GN=UBE2L3 PE=3 SV=1 +EGAEARGDARPQQVALLPQLFDLLVLGQQRARLLRQVPRALVGQGLAKLQARAALSGHRRAHGPQELEEIRKCGMKNFRNIQVDEANLLTWQGLIVPDNPPYDKGAFRIEINFPAEYPFKPPKITFKTKIYHPNIDEKGQVCLPVISAENWKPATKTDQVIQSLIALVNDPQPEHPLRADLAEEYSKDRKKFCKNAEEFTKKYGEKRPVD +>tr|H2DDU6|H2DDU6_9BACT Exported protein KikA OS=uncultured bacterium OX=77133 GN=kikA PE=4 SV=1 +MNRKMTVVSASLVGALSLFSQTAKADDWGCQVLLCLSDPRGPTTESECKPPIHKLWDHLRKGKPFPSCAMATNSRTGKRSYAQLVYDPYDPCPDGTKPAGGYIAQSQSADRKDWRRLQYAFSTHGRRYDSGGAWNMYEGNGPRACVGNHLGSYSVYRGNDDSNISVQVYDQVVWQQPQNPRAIDVFIDEAFHHRVRY +>tr|A0A7D7KQY5|A0A7D7KQY5_9MAGN Maturase K OS=Neolitsea pallens OX=344110 GN=matK PE=3 SV=1 +MEELQGYLEMDGFRQQYFLYPFLFQEYIYALAHGHALNGSILYEPVENLDHDNKSSSLIVKRLITRMHQQNRLIISVNDSNQNRFVGHNNHFDSQMISEGFAVVVEIPFSLRLVSSLEEKEIAKSHNLRSIHSIFPFFEDKLSHLNRVSDILIPHPIHLEILVQTLHSWIQDTPSLHLLRFSLYEYWNSNSLITPKNAISLFSKENQRFFLFLSNSHVYECEFIFIFLRKQPFHLRSKSFGSFLERTHFYAKIEYLVVVLCNDFQKTLWLFKDSFMHYVRYQGKSILASRGARLLIKKWKSHFVNFWQCHFDLWSQPARIHIKQLYNHPFHFLGYLSSVRLNSSVIRSQMLENSFRIDTAIKKFETVVPIIPLIGSLAKAKFCNVSGHPISKPFRADLSDSEILNRFGRICRNLSHYHSGSSKKQSLYRIKYILRLSCARTLSRKHKSTIRAFLKRLGSEFLEEFFTEEEQALSLIFPTTSSPSHRSHRERVWYLDIIRINDLVSHL +>tr|A0A839YFJ7|A0A839YFJ7_9SPHN Glutamyl-tRNA synthetase OS=Sphingomonas sp. BK580 OX=2586972 GN=FHY05_001379 PE=4 SV=1 +MSATEINERAVVTRFAPSPTGFLHLGGARTALFNLLFARHHGGTFRLRIEDTDRARSTQPAIEAILNGMRWLGLDWDGEEVYQFARADRHAAVAHRMIEAGHAYRCYLTSEELDAMRAAAQAAKQPLRIRSPWRDRTDWPADQSYVVRLRAPTEGATTIHDRVQGEVTVQNAELDDLVLLRSDGTPTYMLAVVVDDHDMGVTHVIRGDDHLNNAFRQLPIYRAMDAIEGGWPDPVYAHIPLIHGSDGAKLSKRHGAVGIEAYRDEMGILPEALDNYLLRLGWGHGDEEIIAREDAVRWFDLDAVGKSPSRFDLKKLEHLNGHYIRASDDSRLADLVAEKLGLDRDDTRRAVLAAAMPALKPRAANLNELADGTAFLFATRPLVIDTEAAPLLAGEAPALLARLHAALDAVHNWDTETIEAAVRQVADAAGVKLGQVAQPLRAALTGRRTSPGIFDVLVLLGRDESLARIADHQA +>tr|A0A1B3Z9R2|A0A1B3Z9R2_9SPHN Uncharacterized protein OS=Sphingomonas panacis OX=1560345 GN=AWL63_09520 PE=4 SV=1 +MFDRCNDKALTVVSMCDDVPPAPERRSDARNLSILKAAILRTALGEELCLVRNISRGGLMAHIFSELEVGDPVKIEFRSSKIVRGRVVWRRPELMGVRFSQFIDIGEILTDPKPQPSHAARAPRVTVNVPARLRSGGRYQAAALGNISQGGARIYLSEPDRLGDDVVLSVAGLPVLTGSVRWRDDTAAGIAFSELLAFEDVGRWVSSHNIGVPPQLVE +>tr|A0A7V8Z0K8|A0A7V8Z0K8_9BACT 2,3-bisphosphoglycerate-dependent phosphoglycerate mutase OS=Blastocatellia bacterium OX=2052146 GN=gpmA PE=3 SV=1 +MHKLVLIRHGESEWNKENRFTGWKDVDLSEKGREEAQAAGKLLKAEGFTFDESYTSVLKRAIRTLWIILDELDLMWIPETKSWLLNERHYGALQGLNKAETAAQYGEEQVQIWRRSFDIPPSIMEETDERHLGKDPRYCEIEAGKFPGSECLKDTVARVIPYFETAILPKVKDGKRIIVAAHGNSLRALVKYLDGISDTEIVNLNIPTGIPLIYELDDDIKPIKSYYLGDNEAIRKAQEAIANQGKAK +>tr|A0A3C0TX47|A0A3C0TX47_9PROT Ribosomal-protein-alanine N-acetyltransferase (Fragment) OS=Alphaproteobacteria bacterium OX=1913988 GN=DCO82_10580 PE=4 SV=1 +VATHNEAAISLYKRQGFIAAGLRKAYYAPEPGQSTSTDALIMRCNL +>tr|A0A1M3DHD8|A0A1M3DHD8_9SPHN DUF4142 domain-containing protein OS=Sphingomonas sp. 67-36 OX=1895849 GN=BGO24_13795 PE=4 SV=1 +MKLAAMTMTAAALALTACGHKETTTTMTTDNTVVATNDIAAVPTPSGGQSFANTAAASDAFEIATSKLALDKSGSAAVKKFAQKMIDAHTGSTARLKAIAAGAVPAITPDPTLTAGQQATVDSLKNLTGPDFDKAYAAAQVDGHQKTLDALKAYAATGDVPAFKDFATNLVPTVTAHLNMAKSLKP +>tr|A0A661FLP6|A0A661FLP6_9GAMM ThiF domain-containing protein OS=Gammaproteobacteria bacterium OX=1913989 GN=DRR11_20880 PE=4 SV=1 +MTTDYTARFARQITLPQIGTVGQQRLADSHALIIGLGGLGSAASLYVANSGVGRLTINDFDRVDITNLPRQILFTEQDIDEFKTTATAKRLQQINPGIQIDEINQRLTEAALHEAVAASDIVLDCTDNFVTRGAINRACYAAQRPLITGAAIRFEGQLAVFRHDVPRGRHLPDNPCYNCLYTEEDENLEGCAGQGILAPVVGTIGCMMATEAIKLLAGIESLLNGKLWIYDALSVTTKTVRINARVDCPVCGVKA +>tr|A0A225NGS3|A0A225NGS3_9RHOB PMT_2 domain-containing protein OS=Marinibacterium profundimaris OX=1679460 GN=ATO3_21925 PE=4 SV=1 +MRLGVLAVLALTLYRVVLLAFASADLFVDEAQYWAWGQNLEFGYYSKPPLIGWVIRAFTEVAGSDAPFWIRLPGPLFHGAAALVVLATARRLWGDVAGAATGIAYASMPGVALGALLISTDTILLPFFALALFFWLKLTERSSAGVALAMGAAVGLGMMAKYAAIYFVLGALFSVIFVRGARISWRDAALAALAFLVVFAPNILWNLQNGLTTVSHTADNVDWINDPSTRLRLNFSGLAEFFGGQFGVMGPVFFAAYLVVVARKIVTGDWPARWLIWMSLPIILLVCVQAILSRAYANWAAPAYVAAVILTAPWLFDRARRIYCAALGINLALSLALPLAAVFATSWTLNDRLVLGRYVGRAEASARILSTAREAGLTDVVATSRDLLADLFHAAKGTGIAPWSVPFEGHVPHYYAQRFPYPTGQSAPALYADFADVPPLCAPGTEVTELTRWDIPGGAYRGRTLVAWRVGPGCWTD +>tr|A0A0E3SH12|A0A0E3SH12_9EURY Uncharacterized protein OS=Methanosarcina horonobensis HB-1 = JCM 15518 OX=1434110 GN=MSHOH_2470 PE=4 SV=1 +MIMNEHKTLWEKYFLNFRNVASPLRKPALFDWLYNSYRCLYLSCVDPSLVSRLTDLKTCLSMIGVAVDDSCDYALLREKNGGDKFSYEILSMLYNTDKIESGDYILLDAHLTNNMYIKTTIGIYSDLVRNQIASLPRYCDFRGEFLLAMRNVAESMEFSYLLNKNKIVYPFSHVVRSRAASTMIETHSLLDLMSSKNFDTSELGKAIVLFKLADIVAMLSNTINTWTREITERDYSCPVISLALEKKLIKFSDFERASTENLKEKLSPVSEVIEDELDKAILSMKEFAENSEIKSFDTSKFVNNYVNLYWQTDAMN +>tr|A0A6P1BJ03|A0A6P1BJ03_9BRAD Isoprenylcysteine carboxylmethyltransferase family protein OS=Bradyrhizobium uaiense OX=2594946 GN=FNJ47_21045 PE=4 SV=1 +MNETSNPPRINLRRAAFTFVGLGTLLFLAAGTMRWAGAWVFLLEITIGGLITEAWLARHDPGLLAERRTARGQAGWDRIITSIMPLLWLTWLPLMALDAVRYQTSFIPVWLQCTGALMIAASFYIAYRTYRENSYAAPVVKIQRERGHTAVTTGPYAYVRHPIYAGGLLTYLGTPLLLGSWYGLAIVPVMAALLGLRSMMEERMLTAELDGYADYIARVRYRLVPMVW +>tr|A0A7X6LY41|A0A7X6LY41_9NOCA Respiratory nitrate reductase subunit gamma OS=Nocardia veterana OX=132249 GN=narI PE=4 SV=1 +MTSTVWATLPYIAFTSFVLGHLWRYRNDQFGWTTRSSQIYESRLLRLGSPLFHFGMLGVIGGHVLGVLIPQSWTDAVGISEHLYHVIAVAAGSVAGVAVIAGIAILAYRRLRVPAVRKATTRNDVFMYVLLAAALITGLLNTVGSNLLWGTYNYRETVSPWFRSLFTAHPQPDLMVGTPWTFQAHGLIVLTLIAVWPYTRLVHMFSAPVGYLVRPYVVYRSKPVDTANKRKYARAWQTPVLPR +>tr|A0A508XB42|A0A508XB42_9HYPH Diguanylate cyclase OS=Sinorhizobium medicae OX=110321 GN=EMEDMD4_790360 PE=4 SV=1 +MELQESAIYAGPPIASPEVRSQLLRPAVMAEVERLLGGRTRDIRLKGELGRLFEERSWSRTAKIIRAWMIWVTLLDVLTLGLNAILLPNAVALSMLPPACILPPAALATAFIWRKPRGVGLQRVSLVAGLFLILLSVALVGVSAGGEFYERHLNIMLFVAITAIIIFSIPLAWTVAVASFALALYLIFQLRNPMLDTGSAVAGTLFFTSGIVATVVARRTMTILAQKTFLLELRDKRRVAELADANARLERLAKTDPLTGIANRRWMMETLNRLWGAGAERPAGTAMLMCDIDDFKSLNDRLGHAEGDRCLVKVAGIIQSSVRRNRDHVARYGGEEFLVVLPGADVQAALATAERIRASVEAASLPNPASRVAPYVTLSIGVAAQGAAGEIIEPEKLQNQADTALYLAKQAGRNRVVLFRPE +>tr|A0A820L477|A0A820L477_9BILA Hypothetical protein (Fragment) OS=Adineta steineri OX=433720 GN=OKA104_LOCUS48766 PE=4 SV=1 +VAYGGTTMHGIRHYCQFPFIYQGKQYTNCISDKPPHATPDQTVFDPWCSLTHNHDIDDQWGFCDIGVTDSTIYSICQNQLQTIQCSPGYVIDILTADYATKQDGTNSCNYNKNDCFQSDASTIENLCSGKTSCTVYHYAKTLVSCQNRLSTYLQIDYTCVPNDIETIMTYDICNNDSKPSGDIRRGFLISPNFPNVKNNINCIYDLHILKPHQD +>tr|A0A841MMF6|A0A841MMF6_9CAUL Two-component system response regulator FixJ OS=Caulobacter sp. YL-Caulobacter OX=2723104 GN=HDO15_004474 PE=4 SV=1 +MSDAAPIGAQVVHVVDDDESARESLAFLLESADFEVAAYASAPAFLDALADARPGVIITDVRMPEMSGQELVARLGALKVKMPIVMITGHGDIPMAVEAMRSGVVDFIEKPFSESRMLDALGRAFKSVEAAPASNDQTAILKRIETLSERERQVLDGVVAGHANKVIARELGISPRTVEIYRAKLMTKMQADNLAALVRMTLSARGE +>tr|A0A1E2YF14|A0A1E2YF14_PARBR GTP-binding protein rho2 OS=Paracoccidioides brasiliensis OX=121759 GN=GX48_00269 PE=4 SV=1 +MAQQQLQQLQTENVMRRYVDGKHLWSWKLVIIGDGACGKTSLLSVFTLGYFPTHYVPTVFENYVTDCRVDGRSVQLALWDTAGQEDYERLRPLAYSKAHVLLIAFAVDTPDSLENVRNKWIEEANERCPDVPIILVGLKKDLREDPLAIEEMRKKSLRFVSSKEGHDTAAQVGARKYLECSSLTGEGVDDVFEAATRAALLTFEKDRGSCCVIL +>tr|A0A6N9C681|A0A6N9C681_9BACT FRG domain-containing protein OS=Candidatus Poribacteria bacterium OX=2026781 GN=F4X33_06180 PE=4 SV=1 +MNTQNSTDLQDYYLNGLNKIINEIMEKSADGNYIYRGEPKCYPTIASQLYLNRYAESNQRLTPIDVAQAFEIVMASNYLDSEAEKEFFPIASELRHYGSPVNYLDFTTDYNIALYFACAKHFACAKLGEDGHGKDGRIVLLQRNKETKEKYQIKPVQDPPNRAKAQKSVFVEPPDGFILSNDKDVKTVCIPKELKQWILIHLHRFQCISYQTLYHDIYGYIAQKDLRASAEEKHKSHEGTERWHIAQIEHSPYSVRYYYDLACYYGKDMYKYDCAIETFSKAILLKPDSVFAHINRGISYARNNILDRAIQDFVKVIPMLFKFPFSDALFLVYKSLGQVYDIRGDCHSAIEYYQKAQQLRFDDPVVAAYLDKSKRPQLSKLEYYVR +>tr|A0A1H0ZCM6|A0A1H0ZCM6_9MICO DNA-binding transcriptional regulator, LysR family OS=Leucobacter chromiiresistens OX=1079994 GN=SAMN04488565_1638 PE=3 SV=1 +MNLEQLRGFVEIAQLGNFTRAAERLHLAQPSLSRQIAALETDLGVELLHRVRGHVAATPAGERLLPIARRMLADAETARHEMSDLAELRGGRIRLGATPTLCTSLVADVLAEFRARYPGIEIEILERGSRSLISALMEGALDLALIVTSVSSGAARAVLEREQILSERLVVVSDPNRPDPFAPEGAEARDPGRPVDLEELARVPQVLFPENYDLRATVDAAFRARGLTPLVAVAGAEMDAALSFARRGIGVAVVPAMVAADRPALRTAPLADDALARTVSVARRADMAPTRAGAALQAVIREIADRVTAPGAELSSLVTRVGEPAPLRSAAPPPA +>tr|A0A1G6ZFJ8|A0A1G6ZFJ8_9BACL Uncharacterized beta-barrel protein YwiB, DUF1934 family OS=Paenibacillus sp. CF095 OX=1881033 GN=SAMN05428987_0174 PE=4 SV=1 +MSNMRPVHIRLHSRYEGEDVLQEMQGEAVLKGSVLYVRYEEPQVGPEGGTTRTTLKLGGQSIKIIRHGEVESEQTFELNRKLPGFYRSPYMSFALSTHTQKLELSIQGLSARAAWSYDFYRFDEESGHFAISLHIQEEPIS +>tr|A0A654FXQ0|A0A654FXQ0_ARATH (thale cress) hypothetical protein OS=Arabidopsis thaliana OX=3702 GN=AN1_LOCUS20985 PE=4 SV=1 +METPGASHDSFRGSPRRNSILSASNIIQAPISTLLEYSGLFRARPSPSHEAETLVSDDSSGLSNGEVAIRIIGNTEQDAETDTNALREPGHSELLGSSATQVDPMGGASEGASQAAPGDPAAGDAASRDSPYQRYDIQQAARWIEQILPFSLLLLVVFIRQHLQGFFVAIWIAAVMFKSNDILKKQTALKGERHISALIGISVAFTAHVVGVYWWFRKDDLLYPLIMLPPKSIPPFWHAIFIIVVNDTLVRQASMIFKCFLLMYYKNSRGRNYRKQGQLLTLVEYFMLLYRSLLPTPVWYRFFLNKDYGSLFSSLMTGLYLTFKLTSVVEKVQSFFTALKALSRKEVHYGSYATTEQVNAAGDLCAICQEKMHTPILLRCKHMFCEDCVSEWFERERTCPLCRALVKPADLKSFGDGSTSLFFQIF +>tr|A0A7K9WNV0|A0A7K9WNV0_9PASS DMXL2 protein (Fragment) OS=Rhipidura dahli OX=667186 GN=Dmxl2 PE=4 SV=1 +LTGAQDGSVRMFEWTRPQQLVCFRQAGNARVTRMYFNAQGNKCGVADGEGFLSIWQVNQTTSNPKPYLSWQCHSKTTSDFAFITSSSLVATSGQSNDNRNVCLWDTLVSSGNSLIHAFTCHDHGATVLQYAPKHQLLISGGRKGYICIFDIRQRQILFTFQAHESAVKALALDPSEDYFVTGSAE +>tr|A0A7Y9UAN0|A0A7Y9UAN0_9CELL YCII domain-containing protein OS=Cellulomonas hominis OX=156981 GN=GGD73_001711 PE=3 SV=1 +MPSLWHERPEEPPVGHDAGMPIFAVRYTYDARTDLQDAIRPEHRAYLQGVAERGELLGSGPFPEGPAGALLVFRTADRDALDAVLTADPFALAGVIAETEVRTWNLVLGPWAEHPAG +>tr|A0A660XH96|A0A660XH96_9BACT TonB_dep_Rec domain-containing protein (Fragment) OS=Candidatus Marinimicrobia bacterium OX=2026760 GN=DRP89_06950 PE=4 SV=1 +AETFKSPELGDIEHRQLLAVIPGLSIRSYGGPAGITTLSLDGGPSSQTKVIVSGFDLTNAQNGEMDLSQLPGPFVENVSYIPQDENFYGSGSNESTIHLNPWSGKSGLSLSTGSYGHSSIHGTLNLHKNQWIGNFLIGKRHDDGNYPFKWRNESFKRENNYFDQKFISAQFNTVIQKRAFLRFLYLLSNQSRGIAGQSWNPSKNANRDDKLQIIGVKFGWTNKKGHGYIQTMYRYSWENYKNPMIAVNSFHRLSTWQFILNQEKKINEKIGVNLLFETKKDGLKSKDTNNHYRISYSTAITVPYFLSKTFKFQPAYCYDISPNLYYEHSYVLKLLTSLNFLFIKSLTIHQGRYFRYPTFNDLYWIPGGNPNLKPEHTDNVSLDINCHLIQDSDLEILLFYKSSDDLIQWTPISSYWQPKNIQHAVRKGYKIIYRWNSQNIPLEAFVHYSSNRTKDLSQGNCYGKPLRYAPEQTAAVGINWQPEPLSFHLQIHHTSERISMYSWPEDVILSEATLIFTSCAYTWKRPSGDIIIVFAMDNLTDKRYETIKGYPEPGRTFRMTISYQH +>tr|A0A2U0ZQI9|A0A2U0ZQI9_9BACT ATP synthase subunit beta OS=Filimonas sp. YR581 OX=2135469 GN=atpD PE=3 SV=1 +MSNKGKIKQVIGAVVDVHFENDHSLPEIYNALEITRPSGEKLVLEVQQHLGEDSVRTIAMDGTEGLVRGMEVIDTGKAIAMPTGPGINGRLFNVTGDPIDGLPALSKTTSRPIHALPPKFEDLSTATEVLFTGIKVIDLIEPYAKGGKIGLFGGAGVGKTVLIQELINNIAKGHGGLSVFAGVGERTREGNDLLREMIEAGIMKYGDKFIHSMEEGGWDLSSVDMEGLKESKATFVFGQMNEPPGARARVALSGLTIAEYFRDGDGTGKGKDILFFVDNIFRFTQAGSEVSALLGRMPSAVGYQPTLATEMGLMQERITSTKSGSITSVQAVYVPADDLTDPAPATTFAHLDATTVLSRKIADLGIYPAVDPLDSTSRILTPAVVGEKHYNTADRVKLILQRYKELQDIIAILGMDELSEEDKQIVSRARKVQRFLSQPFHVAEQFTGLKGVFVSIDDTIRGFNAIMDGEVDEYPEAAFNLVGTLEEAIEKGKKLLAQAQG +>tr|A0A231W898|A0A231W898_9BACI 2-dehydro-3-deoxygluconokinase OS=Bacillus sp. OG2 OX=1979526 GN=B9K06_14550 PE=4 SV=1 +MDVITIGETMVLFTPQTTGLMRYANQFSMTFGGAESNVAIGLTRLGHKAGWISKVGNDEFGKAMLSFISGEGVDTTQVLIDSEAPTGVYFKEPRRANDVRVYYYRKDSAASRLEPGDINEEYLSNANYLHLTGITPALSDNCRELVYEAVAMAKKHGVQVVFDPNLRKKLWPEDQARKVLLDLASKAAIVLPGIAEGEFMFGEKDPVKLGRLFLALGPAVVVLKLGEEGCMVFTKDLQAKVPGFPVDRVIDPVGAGDGFAAGFLSGMLDGLSLEDAATRANAVGAFVTMVDGDVEGLPEKDEILGMLENKFDDVSR +>tr|A0A0B7HH50|A0A0B7HH50_9FLAO Tetratricopeptide repeat protein OS=Capnocytophaga cynodegmi OX=28189 GN=CCYN74_100115 PE=4 SV=1 +MTKKYLLIFIIVALILTILAFVFLPKKDSYSKIEKVDIVTNQGYAGSHSCKECHEQEYAEWELSDHFKAMQHADDKTVLGDFNDVTYTADGITSRFFKKNGKFYINTEDENGKYRDFEIVFTFGHYPLQQYLTKFGGGKMQVFRQSWDSRENKWFHQYAGEKIPPGDYLHWTNAGQNWNLMCSTCHSTNLQKNYNPLKDTYKTTYDELTVGCESCHGPGKKHNDFMRSSDYQKGISKNFFITLGVNTPQKTELNTCMPCHARRGEVTQHHTASDEIMDNYIPEIPITNIYFADGQALDEVYKYGSFLQSKMYHVSIKCTNCHLPHSGKLRMQGNQLCLQCHTPNYATSAHTFHKENTEASDCKSCHMPTRTYMGNDIRHDHNFAVPRPDLSEKYGVPNACNACHNDKSAKWASQAVEKWYGKERRPHFAENLIIGSLQNEKSLERLNELLTNSATPDIIRATAVHYLGGIYTEQSLQLVKKELNNSDAQTRYRAVIALGNFPIHLYENELISLLSDKVKAVRIATAYVFLSQKGWEQSKLLTSFESARKEYETFVLSQADFPVGSATAADYFTHLGDTDKAILFYERAIKKDKTLNHVRLNLATLYNGKGQNDKAWQILHQAQNYAPENAQVYYFMALLSSEEKDYNQAKKYFEKAMQLGMNNENIQRNYQSVIQIINKKN +>tr|W2ZLA7|W2ZLA7_PHYPR Uncharacterized protein OS=Phytophthora parasitica P10297 OX=1317064 GN=F442_06838 PE=4 SV=1 +MQTRASIFAQHIPALHHVSSTLYRSQSAAVAASSPLSRVTSDRPAIRQQSRPDGDNG +>tr|A0A1F9MIM0|A0A1F9MIM0_9DELT Metallophos domain-containing protein OS=Deltaproteobacteria bacterium RIFOXYA12_FULL_61_11 OX=1797896 GN=A2284_00320 PE=4 SV=1 +MVPTAADLVPFSIVLVPDTQYYTSKQGNGEENTYWKQMRWIRDHRETENILMAVHLGDITGSNEPEQWEIASAAHRILDQADLPYSVVPGNHDYLGKSSASFRSRTFFDSHFPASRFSGRAWFGGSLGSSNVNNYTLFENGAQKFLVLSLEYAPRKDTLCLAEDLLARHPDRRVIVATHCYLTKGGAYAEGCPNPDYGTVGAAGETVWDEFVSRYSSIFLVVSGHVNESAHAPRTGNAGNTVQQLVVDYQAEAACNAKSPDQCNDHCKAGTYTGNGWLRQLVFDPAVGQVQARTFSVEDGNTSVFPGGHPVLFCSELNKQGNDDYPSDPLAPDHAFSFTYEPLWTKPFVREDLGRRSFLDRTVNSVGEGQQERPAVAMAENGDFVAVWEDDSSKADGAGNRDIFLRGFLAGGCQKFPAQVINGNQNGQQRHPAVAVDRDGRAVVVWEDDTDGNGVFQVKARGFHADGSERLPVFTVNSEASGQQRNPAIGMSSDGRFVVAWEDVAGGNGAQILVRGFNADGSPLFPDRSGHTDTAGQHLEPTVALDASGAFVVAWQDDTDGNGYYQIHARGFDSAGKERFPKIVVNSVDTGQQYRPSLSLDQAGHFVVVWEDDQDKDGNSNLLARGFNADGTARFSDFAVVAGAGTHAAPSLAAGTDGSFVVAWQDDGDGNGTSQIHAKAFRADGSEWQARWTVNLQSAGQQLSPSVALAGKTLVVAWQDDLDGNEVYQILARGVDLP +>tr|A0A1S7RCV2|A0A1S7RCV2_9HYPH Uncharacterized protein OS=Agrobacterium sp. NCPPB 925 OX=1631629 GN=AGR6A_Cc80407 PE=4 SV=1 +MSAEPVDTNDAYRPIMETVSTMVSSIDLSTRLTATRLALKAIKQQDDSSADQSSSTRTALLSSYGIDSSSSTNTRLAQLLAQYGEASGDDTQTEGTDTQPSSGDITKADFMKGLKGMLEELSKDPDKASQANAMLEALKAGTLTVSDPAEGARIKAWDVASDTETASKPSTEITTTGWSDFLKEHLKRDGSIYAKGASGAYVDTISGDNAFFGSVGSRYYYLTWPQAKNGTLTV +>tr|A0A5X5WLM0|A0A5X5WLM0_SALET Diol dehydratase reactivase subunit alpha OS=Salmonella enterica subsp. enterica serovar Corvallis OX=593905 GN=pduG PE=4 SV=1 +MRYIAGIDIGNSSTEVALARQDETGALTITHSALAETTGIKGTLRNVFGIQEALALVAKRAGINVSDISLIRINEATPVIGDVAMETITETIITESTMIGHNPKTPGGVGLGVGITITPEELLTRPADSSYILVVSSAFDFADIANVINASMRAGYQITGVILQRDDGVLVSNRLEKSLPIVDEVLYIDRIPLGMLAAIEVAVPGKVIETLSNPYGIATVFNLNADETKNIVPMARALIGNRSAVVVKTPSGDVKARAIPAGNLELQAQGRTVRVDVAAGAEAIMKAVDGCGKLDNVTGEAGTNIGGMLEHVRQTMAELTNKPSSEIFIQDLLAVDTSVPVSVTGGLAGEFSLEQAVGIASMVKSDRLQMAMIAREIEQKLNIDVQIGGAEAEAAILGALTTPGTTRPLAILDLGAGSTDASIINPKGEIIATHLAGAGDMVTMIIARELGLEDRYLAEEIKKYPLAKVESLFHLRHEDGSVQFFPTPLPPTVFARVCVVKPDELVPLPGDLALEKVRAIRRSAKERVFVTNALRALRQVSPTGNIRDIPFVVLVGGSSLDFEVPQLVTDALAHYRLVAGRGNIRGSEGPRNAVATGLILSWHKEFAYGQ +>tr|A0A4S1A4Z3|A0A4S1A4Z3_9BACT LPS biosynthesis choline kinase OS=bacterium M00.F.Ca.ET.156.01.1.1 OX=2563902 GN=EN799_28860 PE=4 SV=1 +MTDDLRAALATVPVLAGYDGPLERLGGLTNMVYRAGDVCLRIPGKGTEEYINRANEAVAAREAAKAGVSPEVLYADPETGRMATRFIAGAETMSPEKFKTRKGSAARAGEAFRKLHRSGAVFPFRFELFAMIDDYLKVLSTKDVALPAGYHDVVREAGSVRAALDAHPIELAACHCDPLCENFLDTGERMWIVDWEYSGMNDPLWDLGDLSVEGKFNEAQDEELMRAYFGGEARPAERGRVVIYKAMCDLLWTLWGLIQLANDNPVDDFRAYADGRFARCKMLMETAEFSGHLAAVRLG +>tr|A0A5B8NLP5|A0A5B8NLP5_9CHRO 50S ribosomal protein L35 OS=Euhalothece natronophila Z-M001 OX=522448 GN=rpmI PE=3 SV=1 +MPKLKTNRAAAKRFRATGRGKIRRRKAFKNHLLEPKKTSRKRRLSKLTFVNERDAEKVEQMLPYMK +>tr|A0A098VY33|A0A098VY33_9MICR ATP-dependent Clp protease proteolytic subunit OS=Mitosporidium daphniae OX=1485682 GN=DI09_143p40 PE=3 SV=1 +MQLIKAPVYTIAMGMAASMGSFLLAAGAPGHRKALPNSRIMVHQPSGGATGPAADIEIAAKEILRLRTLLNEIYARHTGQSLSTIERALDRDRYMTPEEAAGFGLIDGVLNATPSRQIL +>tr|T2IPC9|T2IPC9_CROWT Transposase OS=Crocosphaera watsonii WH 0005 OX=423472 GN=CWATWH0005_4898 PE=3 SV=1 +MGLCVVQIAKVLNLNYCYRIYPDSSQEKELLDWLEICRGVYNYALRERKEWINSRKCKVNACSLHSEYIIPADQPFPDYYKQKKALTQAKKEYPSLKRVQSQVLQQVMGRLDKAFNFFWKRSFGFPRFKKYGQYRSINFPQFKENPITGYQIKLPKIGSVRINLHRPIPDGFVVKQVQIVKKASGWYAVICIQSDVKVPSPQPQGKSLGIDLGLEKFIATSQQELIARPRFFVELQSKLQWLQRRLSKKQKGSKNWHKAREKVARLHEHIYNTRKNFHYQVAHHLCDQANIIFAEDLNLKAMSRGMLCKHTLDAGFGGFLEILKHVAWKRDVYFEKVDANLTSQTCPNCGMVTGKKDLSQRVHECSNCGFITDRDVAAAMIVEQRGLAALGLGVKLPVEDEVIGDVRKKSSRASRRSRKAS +>tr|A0A1G1DFT8|A0A1G1DFT8_9BACT Uncharacterized protein OS=Nitrospinae bacterium RIFCSPLOWO2_01_FULL_39_10 OX=1801683 GN=A2889_02485 PE=4 SV=1 +MVAVRRKLLTAQKMRKIYRRVKSVCLSVCLSVCLCKVDTILFIPHPPPSPQPSPRGRGREGQGEREYQ +>tr|A0A524FY20|A0A524FY20_THOAR Response regulator OS=Thorarchaeota archaeon (strain OWC) OX=2053491 GN=EU527_15255 PE=4 SV=1 +MALEDAGFDVVAEAEDTENLLIQCQGNRPAVVIIDFNMDQIEIVRLIEHLLDIDPIVAIVVISDIADGQTEMVLAAGARAFLQKPFSMYDMTDIVRKVKPVY +>tr|A0A853UB48|A0A853UB48_9MICO Uncharacterized protein OS=Dermabacter sp. HMSC06F07 OX=1581125 GN=HMPREF3157_09225 PE=4 SV=1 +MRGVSAKSLQSVLRRAAESTSANTPSTEIASELFEAVRVIDSSNQLVRLLSDPGRDEDLKADVVRRLFGGRVSEAALEVLLEASRCTWSEQNHLLEGIEFAGVSLVLDKARGRGTAHAVEEELFQVARLVEDTPELSEAFDSKRDDVPARVGIIERLLGGKVDEATVALAAQAVSFEPEAKVPARLLEFANFASAERDRRSGVVTSAIALSPEQQERLTRILSARYGGELSLNYEIDPSVIGGLRITIGDDLYDATIFGRVRDARERISA +>tr|M0J625|M0J625_HALVA Uncharacterized protein OS=Haloarcula vallismortis ATCC 29715 OX=662477 GN=C437_14607 PE=4 SV=1 +MSATEETVRVWLVERTYSDDEQNLIILTYATPDGDQYFRKERALTSFSDVRETTAAVDADPDNLGSVDDPDLQAQYAAEATRMAEKHDPDDAI +>tr|A0A2W5SS74|A0A2W5SS74_STANO Uracil-DNA glycosylase OS=Starkeya novella OX=921 GN=DI549_11565 PE=4 SV=1 +MASPSETLDDVLAAIRACRVCVEHPLGRPLPHEPRPVLHMGTRARILIAGQAPGTKVHGSGLSFNDRSGDRLRDWLGVDRETFYDGDSIAVAAMGFCFPGQDAKGGDLPPRRECARLWHDRLFAARPPFDLVVAVGATSQAYHLKRLGLERFATGGLTERVMRWREIWAASNQTRVLPLPHPSWRNTGWLKRHPWFEAELLPVLRQEVARIVGSAREGREPREPA +>tr|A0A3G8GEA2|A0A3G8GEA2_9BURK Acylphosphatase OS=Pigmentiphaga sp. H8 OX=2488560 GN=EGT29_00430 PE=3 SV=1 +MQELDSTAPLETVLVRVTGRVQGVGFRLATVRRAHLVGVGGWVRNNEDGSVEALVQGTPDQVDQMLEWMRQGPPQARVDDLASERQFIDRRFARFEQQ +>tr|W9AG96|W9AG96_9BACI Glutamate racemase OS=Oceanobacillus picturae OX=171693 GN=racE PE=3 SV=1 +MEQAIGVIDSGVGGLTVAYELMRQLPKEKLIYLGDTARCPYGPRSEEEVKKFTWELVDFLLEKNIKMLVVACNTATAFTLQELQEKLDIPVIGVIQPGARAAIKFTRNNNIGVIGTEGTIRSEAYTKALESIHSSIKVNALACPLFVPMVEQGILTGKKAQEVVESSLSPLMEGEMDTLILGCTHYPLLKQTIQNVMGEQVTVISSSEETARETSTILDVHNIIKTGDVIPVHEFYTTGELEIFIEIAKSIFKDPYLQMVTIKKAQLGQTQKT +>tr|A0A5D2YB87|A0A5D2YB87_GOSMU HIT domain-containing protein OS=Gossypium mustelinum OX=34275 GN=E1A91_A08G187300v1 PE=4 SV=1 +MARAISPCIFCQIAGSSNSTPLLHSVRSLDDKVVAFKDINPSAFRHYLVVPVEHIPTVNDLQRRNEDYTLVSHMINVGETLLRRDAPQSNQYRFGFHQPPFNSVDHLHLHCFALPFIPRWKQLKYMSLGPLGGFIEAEKLLEKIKPLSPIPP +>tr|A0A1L8DSH3|A0A1L8DSH3_9DIPT Putative ubiquitin carboxyl-terminal hydrolase 46 OS=Nyssomyia neivai OX=330878 PE=4 SV=1 +MGANISQLERDIGSDQFPPNEHYFGLVNFGNTCYSNSVLQALYFCRPFREKVLEYKAKNKRTKETLLSCLADLFYSIATQKKKVGSIAPKKFIARLRKEKEEFDNYMQQDAHEFLNFLINHINEIILAERNIKGKITTGNTETPPEPTWVHEIFQGILTSETRCLNCETVSSKDENFFDLQVDVDQNTSITHCLKCFSNTETLCSDNKFKCDNCCSYQEAQKRMRVKKLPMILALHLKRFKYMEQYNRHIKVSHRVVFPLELRLFNTSDDALNPDRLYDLMAVVIHCGSGPNRGHYISIVKSHGFWLLFDDDMVDVYIFLNCARKKN +>tr|A0A428EVY3|A0A428EVY3_STRIT Uncharacterized protein OS=Streptococcus intermedius OX=1338 GN=D8829_03240 PE=4 SV=1 +MTKRYNINKIFESIITSRTRETFEVTESLIELGKIVGTRPVAFKQLYKAYRSLETSFSYTPVIGAPISCRFDYDKEEATLAYLDLSADLSLADFTDFMGVIDSVYSSIYPIGTVVELDLDLLPPHLHRLFTDGPGALVTITGRKLPVRGKFGEYIVDYLARLWPFGELPGVAPIYVNNMMIRQVHQEGLRNDWEDEFTEDILRSNQLSAQLVSTAFMRKEDNAVYVQELLKEATHELSH +>tr|A0A436AXU5|A0A436AXU5_9HYPH Antibiotic biosynthesis monooxygenase (Fragment) OS=Mesorhizobium sp. M7A.F.Ca.CA.001.08.1.1 OX=2496691 GN=EN913_26470 PE=4 SV=1 +MSGFVVWVDFRLKPGARGRFRELVDANATASVRREAGCRRFDVTQARGEP +>tr|A0A4Q2S8K2|A0A4Q2S8K2_9ACTN Maleylpyruvate isomerase family mycothiol-dependent enzyme OS=Nocardioides glacieisoli OX=1168730 GN=EUA06_04035 PE=4 SV=1 +MTRLPSETYLDHLRTESARFREVLTACDPAARVPSCPDWSAADLLWHLATVQRWWAEVVAARPTRPEEVDPPRPESYDELLATFDEWSAELARVLEAADPAEEAWNWSDDHTVGFILRRQAHEALIHRVDAELAAGDRTDLEPLLASDGVHECLAVMYGGCPPWGRWEPGEDLVRVDVTDTGEEFWVRFGIFSGTDPESGTTYADEEDFHVVDAPEDDAVEPDVVVDGTAAALDLWLWSRSDDEELSVVGDEAVLDRFRAIVGSPIN +>tr|A0A2W5D315|A0A2W5D315_9PSED Recombination protein RecR OS=Pseudomonas kuykendallii OX=1007099 GN=recR PE=3 SV=1 +MSFSPLIRQLIDALRILPGVGQKTAQRMALQMLERDRSGALRLAHALNEAMERVGHCKRCRTLCEEELCPQCADPNRDDSLLCVVQAPMDVFAVDQTGFRGRYFVLKGHLSPLDGLGPEAIGVPELLARIAEGAFSEVILATNPTVEGEATAHYIAQLLIPKGLSVSRIAHGVPLGGELDLVDGGTLAHAFNGRKAITL +>tr|A0A4P6U3H2|A0A4P6U3H2_STRSO Catalase OS=Streptomyces seoulensis OX=73044 GN=D0Z67_28970 PE=3 SV=1 +MTDIPRTTTDSGAPVESDEHSLTVGPAGPILLQDAYLIEQMAQFNRERIPERQPHAKGSGAFGHFEVTGDVTPYTKAAVFQPGTRTDLVARFSTVAGERGSPDTWRDPRGFAVKFYTSEGNYDMVGNNTPVFFVKDPMKFQHFIRSQKRRADNNLRDHDMQWDFWTLSPESAHQVTWLMGDRGVPRTWRHMNGYTSHTYMWINEAGEEFWVKYHFKTDQGIEFFTQDEADQMASADTDYHTRDLFEHIRDGEHPSWTLYVQIMPYADAAEYRFNPFDLTKVWPHGDYPLIEVGKMTLDRNPTDNHAEIEQLAFQPNNFVPGIGPSPDRMLLARLFSYADAHRYRIGANYAQLPVNAPITDVHTYSKDGAMAYRKTSDPVYAPNSKGGPAADTAEFGKPPTWHTDGDITRTAYATHAEDDDWGQAGALVREVLDDDARDRLVDNVVGHLLNGVTEPVLERAFEYWTNIDPKIGARIAEGVRAKADAKDPKAADQGNPARSSMQHKA +>tr|A0A2U3P8A5|A0A2U3P8A5_9MYCO Endonuclease III OS=Mycobacterium numidiamassiliense OX=1841861 GN=nth PE=3 SV=1 +MNRTLAQAFPDAHCELDFRTPLELTVATILSAQSTDKRVNLTTPALFVRYTSALDYAQADRAELEELIRPTGFFRNKASSLIGLGQALVERFGGEVPSTMDELVTLPGVGRKTANVVLGNAFGIPGITVDTHFGRLVRRWRWTEDEDPVKVEHAVGELIERKEWTLLSHRVIFHGRRVCHSRKPACGVCLLAKDCPSYGLGPTDPLLAAPLVQGPETEHLLALAGL +>tr|A0A3S5CJ78|A0A3S5CJ78_9PLAT Uncharacterized protein OS=Protopolystoma xenopodis OX=117903 GN=PXEA_LOCUS6098 PE=4 SV=1 +MLNQYYKIKKKSESVHEDSRRKNRELLERHNADLRLFDSESTRLGINTDALLGANTVSELIPPGASHLNNLARHFSAMQSVVIDTSSTSSSCGSTGRAAPTASGETNSSGRLVFANRNSMIVLNAGNTAHMSGHHVSMSESDSPGQNQR +>tr|A0A1V2VH64|A0A1V2VH64_9BURK Aliphatic amidase OS=Herbaspirillum sp. VT-16-41 OX=1953765 GN=amiE PE=3 SV=1 +MRHGDISSSKDAVGVAVVNYKMPRLHTRGEVLENARKIAAMLVGMKQGLPGLDLVVFPEYSTHGIMYDRDEMFETAATIPGEETAIFSEACRIAGVWGVFSLTGERHEEHPRKVPYNTLILINDQGEIVQKYRKIMPWTPIEGWYPGDTTYVCDGPKGLKVSLIICDDGNYPEIWRDCAMKGAELVVRCQGYMYPAKEQQIMVSKAMAWMNNLYVAVANAAGFDGVYSYFGHSAIVGFDGRTLGECGTEEMGIQYAELSIGAIRDARRNWQSQNHLYKLLHRGYTGKINSGESPAGVAECPFDFYRTWVNDPQAARAQVEALTRNSAGTPECPMPGIPTEPAA +>tr|A0A370VY99|A0A370VY99_9ACTN ABC transporter ATP-binding protein OS=Streptomyces sp. M7 OX=255705 GN=DWC19_11045 PE=4 SV=1 +MIGVAPPAYDPAAPTTAHTLPVGAPATVRAYVAELFRRHRRAFLLLVLVNTVAVVASMVGPWLLGGLVERVSDGAAGRDLRLELTVGLFVAALLVQAAFVRQVRLRGAMLGERMLADLREDFLVRSVGLPPGVLERAGTGDLLSRITTDIDRLANAMREAVPQLAIGVVWAALLLGGLVATAPPLAAAVLVAVPLLVAGCRWYFRRAPSAYRSEAAGYAAVAAALTETVDAGRTVEAHRLGERRIEQSDLRIKQWTAWERYTLWLRSVLFPVINVTHVTVLSSVLLIGGVFVLQGWIGVGQLTTGALIAQMLVDPVGLILRWYDELQVAQVSLARLVGVRDIEPDAGDARLTPDGRDVHADRVHFGYREGVDVLCKVSLEVAPGTRLALVGPSGAGKSTLGRLLAGIYAPRDGRVTLGGAELSRMPAERVRAHVALVNQEHHVFVGSLRDNLLLARTGAGDAELWEALRAVDADTWARALDEGLDTEVGSGGFALTPAQAQQIALARLVLADPHTLVLDEATSLLDPRAARHLERSLARVLDGRTVVAIAHRLHTAHDADLIAVVENGRVSELGSHTELVAADGAYAALWRSWHG +>tr|A0A150FR67|A0A150FR67_CLOPD Uncharacterized protein OS=[Clostridium] paradoxum JW-YL-7 = DSM 7308 OX=1121328 GN=JWYL7_1169 PE=4 SV=1 +MGRLERTLEKKKNKKAKRVGYCIFILIIFMLILGVNIVDYRINTFMGNYNRALILRVYDFTKGLSLLQR +>tr|A0A7G6UKH5|A0A7G6UKH5_PSEMX Uncharacterized protein OS=Pseudoxanthomonas mexicana OX=128785 GN=H4W19_14390 PE=4 SV=1 +MAVRYYISLPDPARARGGDPAFSFDAHGADEFAAQLQHALRTSSLFERWRARQDDPDDVDPGLGAVDPDAAVAGQQDDLSILLVARSSIPGHVLKHRLRLLAGRAWELRDVAAA +>tr|A0A4Y8KC96|A0A4Y8KC96_9MICO Triosephosphate isomerase OS=Cryobacterium sp. Hb1 OX=1259147 GN=tpiA PE=3 SV=1 +MNINPRRTPLIAGNWKMNLDHLQAIAFVQKLAWNLKDAGHDTAAVEVAVFPPFTDLRSVQTLISADKLPLAFGAQDVSAHDSGAYTGEISGAFLAQLECQYVIIGHSERRTLHNESDEQVAAKVTAALKHNLVPLICVGESAEDLAVHGPSAVPVAQLRAALAGVTNAVDIVVAYEPVWAIGSGQAATPEQAEQVAAALRGVLSDTLGQDVADKTRILYGGSVKSTNIAAFMREPNVDGALVGGASLDIAEFSSIIRYQKHVGL +>tr|A0A328IIY1|A0A328IIY1_9MOLU Thymidylate kinase OS=Candidatus Phytoplasma oryzae OX=203274 GN=tmk PE=3 SV=1 +MKFIAFEGLDGSGKTTQINLLKVVLTKEYRKKVTVIQGLGSSIIGPMLREMFLYQTKITPFTRMWLSFANMEQTQTEIIQPALENNHIILADRWIASTYAYQVFGHYLDIPLKKFHKLHCSFFFQPAITFYFDIKPAIGLIRKQQKLDYEPDLFEKKGIAYFEQVKRGYDYFFKKDFLVKNYNADIPKSILFKKVITFLKEKKIIEFRI +>tr|A0A502MPE9|A0A502MPE9_9HYPH 4-hydroxybenzoate octaprenyltransferase OS=Mesorhizobium sp. B4-1-3 OX=2589889 GN=ubiA PE=3 SV=1 +METVQSKVIQGRVADAPSGHWVYRVLPRWVWPYAQLARWDRPIGWQLLLWPCWWSAALAAGAYPRPTDPLLTLLPAPWYLLLFFIGAVAMRGAGCTYNDLADEDIDNQVERTRSRPLPAGKVTRRQAWAFVIIQALVGLAVLLQFNSFAIPLGIASLAIVAVYPFMKRITNWPQFVLGLAFSWGALMGWAVEFGDIDDPAIMLYIGSILWVIGYDTIYAHQDKEDDAIVGVRSTARLFGDNTKMWLTGLYGGALICFAIAFASAQAPIVALAGLIAAGAHMARQIIRLDINNPDQCLKLFKSNNQVGWLIFLGLIGGSVWIWLKPLV +>tr|A0A3S1L2A4|A0A3S1L2A4_9HYPH Flagellar biosynthetic protein FlhB OS=Mesorhizobium sp. M1E.F.Ca.ET.063.01.1.1 OX=2496750 GN=flhB PE=3 SV=1 +MAEAVDKDSKTEEATEKKIRDTIEQGKLPHSRETAIFASFLAILVFAVFYAKDAVVDLGMFLSTFLEKPEAWPMDTETDVITLYEQVLIEIGRAVVSLLVLLVVAGIGASVFQNMPQLVGERIRPQLSRISIAKGWSRLFGVQGFVEFGKSLAKLAFAIAVLAFTLSEDHRRLLAGMITNPVSFGMVIRGIFVDILVSIVFVMGLIAVADIVWSRFHWRRDLRMTKQEVKDELKQSEGDPIVKSRLRSLARDRARQRMMTAVPRATLVIANPTHYSIALKYVREEDSAPVVLAKGQDLVALKIREIAREHNIPIFEDVALARSMYKQVSVDSVIPSQFYQAVAELVRIVYSKKAVRRVPS +>tr|A0A6P7RXF0|A0A6P7RXF0_MUSCR Pendrin OS=Mus caroli OX=10089 GN=Slc26a4 PE=3 SV=1 +MAGRGGRSEPPQLAEYSCSYAVSRPVYSELAFQQQRERRLPERRTLRDSLARSCSCSRKRAFGVVKALLPILDWLPKYRVKEWLLSDIISGVSTGLVGTLQGMAYALLAAVPVQFGLYSAFFPILTYFVFGTSRHISVGPFPVVSLMVGSVVLSMAPDDHFLVPSGNGSALNSTTLDTGTRDAARVLLASTLTLLVGIIQLVFGGLQIGFIVRYLADPLVGGFTTAAAFQVLVSQLKIVLNVSTKNYNGILSIIYTLIEIFQNIGDTNIADFIAGLLTIIVCMAVKELNDRFKHRIPVPIPIEVIVTIIATAISYGANLEKNYNAGIVKSIPSGFLPPVLPSVGLFSDMLAASFSIAVVAYAIAVSVGKVYATKHDYVIDGNQESTGGKTQVAGLISAVIVMVAIVALGKLLEPLQKSVLAAVVIANLKGMFMQVCDVPRLWKQNKTDAVIWVFTCIMSIILGLDLGLLAGLLFALLTVVLRVQFPSWNGLGSVPSTDIYKSITHYKNLEEPEGVKILRFSSPIFYGNVDGFKKCVNSTVGFDAIRVYNKRLKALRRIQKLIKKGQLRATKNGIISDVGSSNNAFEPDEDVEEPEELNIPTKEIEIQVDWNSELPVKVNVPKVPIHSLVLDCGAVSFLDVVGVRSLRMIVKEFQRIDVNVYFALLQDDVLEKMEQCGFFDDNIRKDRFFLTVHDAILHLQNQVKSREGQDSLLETITLIQDCKDPLELMEAEMKEEELDVQDEAMRRLAS +>tr|A0A1I3Q7I7|A0A1I3Q7I7_9DELT tRNA uridine 5-carboxymethylaminomethyl modification enzyme MnmG OS=Desulfomicrobium apsheronum OX=52560 GN=mnmG PE=3 SV=1 +MTIPTVPDIFDVIVVGAGHAGCEAAMAAAHMGMQTLLLTINADRIGHLSCNPAIGGLAKGHMVKEIDALGGMMGKWADQAGIQFRILNTRKGPAVRSSRAQIDRTEYVRVVQQDIFTCPNLFVRQETVASLTVEDGRVTGVVTTLGETIACRAALLTTGTFLQGLIHVGLDSFSGGRQGDPASHGLSPRLTELGFELGRLKTGTVPRLLKSSIDYSVMEEQAGDNPPRPFSFDSPGIKLRQLPCFVTYTTERTHEIIRTGFDRSPMFTGVIKGTGARYCPSIEDKIARFPEKDRHQIFVEPEGLTSHEVYPNGIPTSLPLDIQKALVTSIPGLEKAQIIRPGYAIEYDYVPPTQLKPTLETKLVRGLYMAGQINGTSGYEEAAGQGLWAAINAVLALRGEPELILTRSQAYIAVLVDDLVTKGTLEPYRMFTSRAEHRLLLREDNADERLTAIGRELGLVDDSRWQRFTRKQAAVNEIMTGLESIRVRPDAATKDLVEAMGGTIPQKSVSLKELLRQPELTIEVLAPLWPELENFDEEALEEAEIKAKYEGYLRRQQELVDRFEKMEQTALPEDMNYVGIPGLSREVTEKLTRIQPRTLGQAGRISGITPAALSCLEIQLKKIGRL +>tr|R6KI73|R6KI73_9CLOT Type I restriction-modification system S subunit EcoA family protein OS=Clostridium sp. CAG:265 OX=1262787 GN=BN573_01150 PE=4 SV=1 +MKKVRDKYKMTELGEIPSEWHIEVLGECSNVTKLAGFEFTEYIEYIDDGEIIALRALNLKNGKLNLEDIKKIDKKVSESLTRSKLYINDVLFSYVGTVGEVALIEENDKFHLAPNVAKLTFNDSVVPKFALQYLMSSNMRNEINRYVTTTSQPALSMENIRKLKIIVPKKEEQEKISFILSTVDEQIDNVDALIEKNKELKKGLMQTLFTKGIGHTKFKNTEIGEIPEEWDVKKIGDICEVKGGKRLPKGYQLEDEDNAFPYIRVADMYMGGIRQDDIKYVPKDIVDKIKNYKISKDDLFISVAGTLGIVGQVPYELDGANLTENADKLCNIQINKLYLMKVLQSNIVQSIIEAEQTKSAQPKLALTRIKEFLIPVPSDIEQVKIASILMEVDEKIGQYKNKKQKLEELKKGLMQQLLTGMIRVTV +>tr|A0A669D541|A0A669D541_ORENI Uncharacterized protein OS=Oreochromis niloticus OX=8128 GN=miga1 PE=3 SV=1 +VSVCCTQVMRAPNSENIHTVLRIRELPSHGQSVTMTHETLTSSQLSMRTAALRMVDLPLSVYSSLTQVRIVSTDTKKLVVATAFGAVSLLFLARRFQRRKGRKKVHPQHWEQAGLEFHPPAAGENDNTSQNITLSLNSKNGYSSDLVLSAGGYRKLSGSVMSLASVKSLNSSSSSTCANDSTCWDGVEDADSCSVLNLPVTTPENLYLMGMDLFEEALRRWEEALTFRSRQAEDDASCASVKTGAGDTIAEQSMEDVISAEFIHRLKALLHRAYRLQEEFEGVLGMSEPSSHMADILSREELDDACLRDSISIASTDSFVSAAEMSEHRELRSVFTLGHHPLYEEAHGNLYSVVIVPLTEMLECLGDLDFLAKLHCVRQAWQLILCDRTTWTFLADTGKKILSSIIVKAHKSPKRFEEVFEEMISFLEHTEHWENTELELATRGVKHLNFYDIVLDFILMDSFEDLENPPISIQNVINNRWLNSSFKETAVASSCWSVLKQKRQHMKVSDGFIAHFYSVCEQISPVLAWGFLGPKGSLHDLCCFFKDQVLHFLKDIFDLDKVRYCSVESLADDVLQLLHRRSELLLAYLGADSLRYLNGCNSPPVQLVPSALLEARVQ +>sp|A3CWV2|FEN_METMJ Flap endonuclease 1 OS=Methanoculleus marisnigri (strain ATCC 35101 / DSM 1498 / JR1) OX=368407 GN=fen PE=3 SV=1 +MGVAIRDILADCKETLTWDDLSGIAALDAHNALYQFLSIIRQPDGTPLMNGAGRITSHLSGILFRTVNFLEKGIRPVFVFDGKPPEFKQETINERREHRARADEAWKTALREGDMEEAYKQASASARIDSHTIASSRELLDLLGIPWVQAPSEGEAQAAYMARQGKVTYAVSQDYDSLLFGSPVLVRNLTVSGRRKTRGRTITVNPERIVLSSFLDRLGVTREQLVKIGILVGTDFNPGIRGVGGKTALKIVRNGEFESVIAEKQPDFNPAPIRDFFLNPPVTDDYTLEWRTPDVEGVVEMLCGRYDFSEERVRSALAKVSVKATQKTLDAWF +>tr|A0A3S4B8B4|A0A3S4B8B4_9ACTN MBL fold metallo-hydrolase OS=Streptomyces albidoflavus OX=1886 GN=EQK42_07550 PE=4 SV=1 +MRFIKKRHSCVRLEKESGTLVIDPGGFTEPDAALGADVLLVTHEHPDHFDEGRLRAALEASPAAQLWTLASVAEPMAAAFPGRVHTVGHGDTFTAAGFGIEVHGELHAVIHPDIPRVTNVGYLVDGEVFHPGDALTVPDRPVETLLLPVMAPWNKLSEVVDYVREVRPTRAYDIHDALLTDLALPVYERQIGALAGTDHHHLGPGTFTEV +>tr|A0A5J4FE44|A0A5J4FE44_MICAE Uncharacterized protein OS=Microcystis aeruginosa NIES-4325 OX=2569534 GN=MiAbW_03334 PE=4 SV=1 +MYQMNKTAIDQWLKGVGAFLFQNFGVHLFIENQNNLKKA +>tr|A0A5E7AN68|A0A5E7AN68_PSEFL Glyco_trans_2-like domain-containing protein OS=Pseudomonas fluorescens OX=294 GN=PS720_01060 PE=4 SV=1 +MASRKFGLNLVIVLAIAALFSGFWALINRPVTAPNWPEQISGFSYSPFQQGQYPQKDQYPTDDQMRRDLEIMSKLTDNIRTYSVDGTLGDIPKLAEEFGLRVTLGIWISPDLERNEREIQRAIEIANSSRSVVRVVVGNEALFREEITPEALIVLLDRVRAAVKVPVTTSEQWHIWEKNPQLAKHVDLIAAHILPFWEYIPMDKAGQYVLDRARDLKKLFPKKPLLLSEVGWPSNGRMRGGNETSPADQAIYLRTLVNKLNRQGFNYFVIEAFDQPWKVSDEGSAGAYWGVYNAARQQKFNFDGPVVAIPQWRVLAIGSVVLALLSLTLLMIDGSSLRQRGRTFLTFIAFLCGSVLVWIGYDYSQQYSTWFSVTVGILLALGALGVFIVLLTEAHELAEAVWTHKRRREFLPVEGDSDYRPKVSIHVPCYNEPPEMVKQTLDALAALDYPDYEVLIIDNNTKDPAVWEPVRDYCETLGPRFKFFHVAPLAGFKGGALNYLIPHTAKDAEVIAVIDSDYCVSPNWLKHMVPHFADPKIAVVQSPQDYRDQNESTFKKLCYAEYKGFFHIGMVTRNDRDAIIQHGTMTMTRRSVLEELGWADWCICEDAELGLRVFEKGLSAAYYHDSYGKGLMPDTFIDFKKQRFRWAYGAIQIIKRHTASLLRGKGTELTRGQRYHFLAGWLPWVADGMNIFFTVGALLWSAAMIIVPTRVDPPLLIFAIPPLALFVFKVGKIIFLYRRAVGVNLKDAFCAALAGLALSHTIAKAVLYGFFTTSIPFFRTPKNADNHGFWVAISEAREEMFIMLLLWGAALGIYLVQGLPSNDIRFWVVMLLVQSLPYVAALVMAFLSSLPKPAPKVELATAE +>tr|A0A7S1LF74|A0A7S1LF74_ALECA Hypothetical protein (Fragment) OS=Alexandrium catenella OX=2925 GN=ACAT0790_LOCUS8164 PE=4 SV=1 +MCEAQIQKDDGDQKKQGHTAFATATMARDLAREAGDLRAEAEALHAMALAQERLDCFEEALRYADEAMDLYLELKDKRREAGELLSMADLSLCLGDFKQALIHAEDAMSIYQELGSKSEVEAIQTVYRVLVCRGDFQAARKIANRGLKRFHDLGNIKAQSQMMFMLINLNCKEGEIEYLTDKTRNKYKDALEVTQKALRLMHQLGEKQIEARLLVVLSALCLRLDRLDGALLAGQQALKMIKETGDTPWTSSARYFIENNSGLSSSNMGDVLFTLSHAYMKKDQHEEALALAQDLQQYFRENSNRRGEAAALMTINTCYLKLDLKPEAMKVAMQAQMLFNEAGDAAGEAYVLRALMDAEWEREDYAAAVRLGERAAALFREVEDRRSEAGVLYGIAVNNIHMAVRMGARVGDGGAGQRYYGERTRAITEALAKAQRAAENGVRLCKELMQETSKAGQLLAASLATLAQVHMFNSKPATALECADEAVILFREQGDYHSEGSALLQSADALRVTGQYEEAKEAAEEALSLCQKYEDEAGVMVAK +>tr|A0A7R8YYH3|A0A7R8YYH3_HERIL Hypothetical protein OS=Hermetia illucens OX=343691 GN=HERILL_LOCUS11551 PE=4 SV=1 +MVAVPYLFNEVYDIFRKAPFYTVVLEVLLLISVVWVIFYNNKNKRKRYTPEQEEEIIAKWQPEPLVGDTPADHPALFPRIVEGRVGKRINVDGHDCLNLATHDYLGLLEDEGIRKAAITSLRKYGVGSCGPRGFYGTLDVHLELEERLAKFMEMEEAVVYSYGFSTIASAIPAYSKRVDIIFADEKVNFAIQKGLDASRSTIYYYKHNDMKDLERLLIEQQKRDEKNPKKAAKTRRFLVAEGIYMNTGEICPLPELVELRKKYKLRLFLDETISFGTLGENGRGLTEHFNVDRIEVDLIIGGLENSVASIGGFCVGSSFIVEHQRLSGLGYCFSASSPPLLTQAAICALDRFENEPKMFAQLQESTTKLHNKLGSLTHMSLGGNKISPVKHLYIKESRDVDTERALLKEIVGKCIEKGLAVIDAQYLEHIEKHCPRPSLRITANRLLEDKDIDFAFQTLEKVSSDILS +>tr|A0A3D9YZA5|A0A3D9YZA5_9HYPH TYR_PHOSPHATASE_2 domain-containing protein OS=Methylovirgula ligni OX=569860 GN=DES32_1626 PE=4 SV=1 +MPRIHVCSLFQIADVTAATGARSLITVINQGIYVDRPPAIAPERHLQVAISDVCEETEGHILADSGHIQSLIDFVRAWDQAEPLVIHCFAGVSRSTAGAFIAACTLNPQVNEAEIARRMRRASPTATPNIHLVSLADQALGRDGRMITAIREIGRGAECFEAEPFALELY +>tr|W1WC24|W1WC24_ECOLX Transposase_31 domain-containing protein (Fragment) OS=Escherichia coli DORA_A_5_14_21 OX=1403943 GN=Q609_ECAC02469G0001 PE=3 SV=1 +MSKKQSSTPHDALFKLFLRQPETACDFLAFHLPAPIHALCDMKTLKLESSSFIDDDLRESYSDVLWSVKTEQGPGYIYCLIEHQSTSNKLIAFRMMRYAIAAMQNHLDAGYKTLPMVVPLLFYHGIESPYPYSLCWLDCFADPKLARQLYASAFPLIDVTVMPDDEI +>tr|A0A811T4R2|A0A811T4R2_9EURY Uncharacterized protein OS=Candidatus Argoarchaeum ethanivorans OX=2608793 GN=EMLJLAPB_00228 PE=4 SV=1 +MIENEKEIIFHPYALYKMNKRNISKQEVIKTLKEPHSGMDGQYGRRISQRVYGHHVLRVIFEEYEDHILVITAYPAKAERYLGRM +>tr|A0A022PN75|A0A022PN75_ERYGU Uncharacterized protein OS=Erythranthe guttata OX=4155 GN=MIMGU_mgv1a007123mg PE=4 SV=1 +MLELRGMSELTEWLQAELRSAAPENDQRLVVFPRLEYLQIIYCRQLKSAPSHFPCLKELLIDGVESELPLVSICGINLISLTKLHIHSIDGLTCLPNCLFRKNQNLSMLVISGCRNLTHLVPCLEGGGTALRNLEIWDCPELRELPDDLHTLSALENLAIYGCSKLKTIPYPYETHNDDDDEQLLLGLSCLRRLFIEYCDELTNLPIELCAESLESLTLRGLMNLRMTMGTLIGYCMQKMPRLSELRIVDVPTTNNPWEIVGSVTLGNLRDLTISCDEYSVSAVDAILKASAKSLHRLTLLGTEHSRELPGQLQHLTALSELGLYDFGEMEELSDWLIGNNNNNNLSSSLQILHLSRCKKLRYLPSKEAMLHLTKLYISNCPMLHIKGGDSDYGSEWPKISHIPYVVLDWVQIPTHAQ +>tr|A0A0N0T8W0|A0A0N0T8W0_9NOCA Chaperone protein HtpG OS=Nocardia sp. NRRL S-836 OX=1519492 GN=htpG PE=3 SV=1 +METLEFQSEARQLLQLMIHSIYSNKDTFLRELVSNASDALDKLRLESFRDKDMVVDTDDLHIVIESDPAQRTLTVRDNGIGMTREDVVRLIGTIAKSGTAEFLRKAKEQQAGAGSDLIGQFGIGFYSSFMVADKVTLLTKYPHAEKGVRWESTGESTYTIEDVDDAPQGTSVTLHLKPSDDEDQLPDYTEPAKIREIVKRYSDFITWPVRLGGEEINSRKALWARPASEVTEEEYAEFYRHISHDWNAPLETIRMQAEGTFEYQALLFLPAQAPLDLFMRDGKRGVQLYVKRVFIMDDCAELMPEYLRFVKGVVDAADLSLNVSREILQQDRQIQLMRRRLVKKVLSSIKALMGSRPDDYAKLWREVGAALKEGLLSDADNRDAILEICSFASTHSAEAPTTLADYVSRMKDGQEHIYYMTGDSRTSVEHSPHMEALRAKGYEVLILTDPIDEMWVDAVPAFDGRQFQSVAKGQVDLETEEEKSAAKAKAEEFGDLLTWLQGLLEENVKEVRLSSRLTTSPACVVGDAHDITPTLEKMYKAMGQELPKIKRILELNPSHPLVEGLHKAFAAGERDALADTAELVYGLALLAEGGELADPSKFVKLVADRVQRTF +>tr|A0A4V3UMH6|A0A4V3UMH6_9EURO PKS_ER domain-containing protein OS=Aspergillus tanneri OX=1220188 GN=EYZ11_013270 PE=4 SV=1 +MQRARVRAGKPEKLEHSSPQRFNIGAENPRKISRTKRNTRKYATFPTNSSTLTLLQPDLSSTRLELVDRPIPIANPDANEHLIRVHCTAPCAGELGWYAYVSLPDREPVPCDDMAGTVVTAPPNSPFQPGDEVYARSTFNRPGCARDYTVVVTDELARRPQNLSWAESAATPLSAETAWQALFEQSGIGGFSSSAWKGKRILVTAASSSTGMWLVQLGRIIGAQIIGTCGPNNVDLVRGLGAVDVVNYRSQSLREWGQNEENKVDLVIDCIGGQSLEDAWRCVRDQGIVISICRSPNEVKPAEVTAKEVRGLFFIMTPRRSDLEEITKLVEAGECRPLVDSVWPLEQFQSVFDRVEGRHARGKVVMDLRLNRKLES +>tr|A0A1H5GDJ1|A0A1H5GDJ1_9ACTN Succinate--CoA ligase [ADP-forming] subunit alpha OS=Streptomyces sp. Ag109_O5-10 OX=1855349 GN=sucD PE=3 SV=1 +MAIYLTKESKVLVQGMTGGEGMKHTRRMLAAGTDVVGGVNPRKAGRTVDFDVPQCPNGLGGAPTAVPVFGTVAEGMAATGADVTVVFVPPAFAKAAVLEAADAGIGLAVVITEGIPVHDSVAFTSYARRNGTRIIGPNCPGLITPGQSNAGIIPADIAEPGRIGLVSKSGTLTYQLMYELRDVGFSTCVGIGGDPVVGTSHIDCLAAFEDDPDTELVVLIGEIGGDAEERAAAYIREHVTKPVVGYIAGFTAPEGRTMGHAGAIVSGAAGTARAKQEALEAVGVRVGSTPTETARLVLELLKAGS +>tr|A0A2P7YVD5|A0A2P7YVD5_9ASCO Uncharacterized protein OS=[Candida] pseudohaemulonii OX=418784 GN=C7M61_001726 PE=4 SV=1 +MSTWQAHTDHSATSPRSTLPATKQLDSDATPRMSHLPTPLGELKLLVNNDLLRKNPNFVTSEAALSSTIEQLDLETLKISAYARLDFENYTFFVQTLQVVLGRKAVEDAAPTHHAVDVHLSSKKAISRRHAKIFYNFGTQRFEISILGRNGAFVDDQFVETGITVPLVDNTKIQIGDIPFTFVLPSLEPPEKKNATPAKPFNPSDAINLRSNLYLNPASPNRKKSLTDEQKKARRNLRADIVRRLSNARRKSLASSTNDEITALLKELEDIGDDDESDPFDKEVNELLRLGNLEAEEDELDELVKQHNLLQGIGVEDKDRKDVDVDMSVLDQEIASLAPLIDGQHPEKDAIDNKQGVYGRHGTTLATDTADNKNAPLMGRPAGPRMGKPAQIQPPANRAYGRQPVGPMYGYPNSGAYPQGYNSPYGSPAGYPTGARNSMYHPMMMPTRPPPPKLEVEVETISTVPVKSATIPFKAISTGVGNVQRPPVCVFKTLDIPLNKPKIPLRRKDAPSIKRPKSQGNKDITDQYKSKPTVSITAMITSVLRGPNSRKSGFTFSEICDGIKEFYPYYQYCPDGWQSMITHNLKTHNMFKREFKGGLDSEHLWVIDDDYLAEKERVRKKQQEVAMAKAKEAALKAVELRLKQLTPQYGAVGRPFMTPYASSFGQPRYPTSRDLSPPMPNGAPGQKPKSIAELASEIKRDSPGALNQSSYLPRLSLSPTVNSAEQSNSIKDQLAANRSASASLTNITSDVKTERSSPTPQPVAAAAAAVSANTNSGLVSKLLPMNADTKKSLGYLQKELFTLYKARKLSYNTATTTNIITKALATTIAQVNTIGAKAGCGDNALSFLVEKAPQQVSKILDIALTKSIKEVEGKLSNPTSKESTPVPTASPAASNIGLVQKPPASIESTSSASRPATPNSPAGGTPKPSYSGGLSRPHFSGMARPQNPSKPGALLKGPLFLSNKPRQEKRPAEETGEDPLKSIKLE +>tr|A0A6P1IPK0|A0A6P1IPK0_9BURK AMP-binding protein OS=Hydrogenophaga sp. BPS33 OX=2651974 GN=F9K07_06005 PE=4 SV=1 +MTAQVATGWNLANIFDGVAARVPKDRPAIVHGDTVVRWGELDARSNRAARALLATGHTAGERVGFLSRNHPGYIEGFVACLKSRLIHVNLNYRYTVDELAGVLEDAGATALLYQQEFAPLVPALLERLPALRSRICLDGDGLGQATAQFQTMAAQGDASPLDASTREERDPLLLYTGGTTGRPKGVVWPGHHYRACQLESPLVQRRPANLGEHLDLVAANANPGRVLPACPLMHGAGISSTLAELLNGGTALLLAGARFDAHELWQLAERERASRVLIVGDVFARPMLAALDEQPGRYDLSSLKVISSAGLMWSEEVKAGLLRHMPWLVLADIYGASEAAGLGYAITTQDRATPTGRFEPGPRTVMVGDDGHIVPAGQEGEGWLARGEPLPEGYFGDPKKTAEVFRTIDGQRYAVPGDRVRRHADGSMQLLGRGSLVINSGGEKIYVEEVEEALKRLPGVDDVLVVGVPDVRWGSAIVALLRTDTPPDVQALRAGLAPHLAGYKMPKHFLAVDQLPRADSGKGDYKAARALAEQLLETT +>tr|A0A7D8UVQ1|A0A7D8UVQ1_9HELO Aspartate--tRNA(Asp/Asn) ligase OS=Lachnellula cervina OX=1316786 GN=aspS PE=3 SV=1 +MTIILRAARHMIVRNTRTAVYVSPWRGAAASLVSSWLPSRGFHVSYRLAKEERWGREVEKPEDKERRGRSLEEQGVVEEQEEVEAEALKPQSFWEEFKGTSFVNLYLDNVPPPTFPFEKRIPSHFMALRVTTVGFLTKIVRLSDALTFAHINRGTGPEVLQLLSKNKETTKKLQSMRLNSAISVTGVIHKKYKPKVASKRKELEFEEGWFYLEELELEIEEITCLNTFDKDIGYGPEHVYRPENRHLQIRFDTNLQKALLYRSDVAACAREELKDFYEIETPILFKSTPEGAREFLVPTRRPGFAYALPQSPQQYKQMLMASGIHKYMQFAKCFRDEDLRADRQPEFTQIDLEMAWADGEVVMARVEKLIRALYKKFAAPDTQLQPLFQTPFHRITYDEAMSHHGSDKPDFRIPGLIQQVDHIVPDQLGKMLTHIEYPIFEACKIRLNGHPERIKKFVSMFFSTPVGEVFGKNIDGGPGVAVFDSSRPLEGLQTFGFEGAEKLKALYSNLPQQAFHGKEAHENATTFDDGDLIIVQARKNLPHSGGSTALGRLRIALYRAALAEGLLEPDLYHHYLWVTNFPMFTLENGVDPGQEGTAGFSATHHPFTAPKTAEDVDLLRTDPLMAKADHYDLVVNGVELGGGSRRIHSAKMQRFVMQEVLKMNPRRIEDFSHLLKALSAGCPPHAGLAIGFDRLIAVMRGVDSVKDVIAFPKSSKGEDMLVKSPRRISRKEWKRYHLQKIDLRTENSHKPMEKDATEKPKESKWTRFWNIVTIRK +>tr|A0A1X1VYA0|A0A1X1VYA0_MYCGO Aminotransferase class V OS=Mycobacterium gordonae OX=1778 GN=AWC08_00950 PE=4 SV=1 +MREAFGEKFDVPAGYLDTAAIGLPFARVADTLVDTIAHWRAGALQVTDFDADVVAARNAWAQLVGVAPLDVVTGASVSQLVGLLAASVPDGTKVLTVHNEFTSVTFPFAAQQRRGITVTEARPAELLSQLRRHDLVAISAVQSADGFTVDLDELRAAAEAARVRVLLDVSQAAGWQQLRLHWAEFVVGAAYKWLLAPRGAAWMAVRRDVLADVVPQAANWSGAEDIWSGLYGLPLRLADNARRLDLSPVWFSQRGAAIALPWLAGLDLSAVRQHCVGLANATLAGLGLDPCNSAIISLGIAAEAAHRLVQAGAAISMRAGRVRLSFHLYNTMEDVELVLSALR +>tr|A0A0C5V338|A0A0C5V338_9GAMM tRNA 2-selenouridine synthase OS=Gynuella sunshinyii YC6258 OX=1445510 GN=selU PE=3 SV=1 +MSRPDTDDYAAIFLHDTPMMDTRAPGEFLKGAFPHTVSLPLMTDNERAKVGTCYKQQGQQKAIELGHQLVSGTLKEERIQRWLEFARAHPDGYLYCWRGGLRSQIVQQWLQQAGCDYPRIKGGYKALRRFLIDTQERIVSNTRFRILAGHTGCAKTDLLTAVPGSIDLEGLAHHRGSTFGKRPAGQPSQIDFENRLAIALLRQDHQYPGATILLEDESRLIGRCALPETLRRRMAEAPLIIVESTLEQRVEHSFRNYILNKLAEWQQARGAEEGFTAFAEDLTTSLFKIRRRLGGLRYQELSAILEQALKQQQQGDDSLHREWIRILLRDYYDPMYDYQLSQKQGPVEFRGTATDIKNYLLTH +>tr|A0A7K7XU01|A0A7K7XU01_9PASS SGSM2 protein (Fragment) OS=Mohoua ochrocephala OX=874463 GN=Sgsm2 PE=4 SV=1 +GVVEACLLHMLKRRAAGFLRTDKVAALFTKVGKTYAVAGDVCKKVQELQQQVESRKNQPNGQEPLKRQGSTTSKTPVLTPQAIKHIWVRTALIEKVLDKIVQYIVDNCSKYYEKEALLADPVCGPILASLLVGPCALEYTKLKTADHYWTDPSADELVQRHRIHGAHGRQDSPSKRPALGIRKRHSSGSTSEDRFAASAREYVESLHQNSRTHLLYGKNNVLVQPKDDLEAIPGYLSLHQSADSLTLKWTPNQLMNGTLGDSE +>tr|A0A4R6GLC2|A0A4R6GLC2_9BACT Coenzyme A biosynthesis bifunctional protein CoaBC OS=Sunxiuqinia elliptica OX=655355 GN=coaBC PE=3 SV=1 +MRLKGKHIILGLTGSIAAYKAAYLLRGLVKEGAEVQVVMTPAAKEFITPVTMSALSGRPVASEFFAANDGTWHSHVDMGQWADLMLIAPVTAATLGKMAHGIADNLLVTTYMSAKCPVYLAPAMDLDMFKHQSTLNNLETLRSYGDVILEPGEGELASGLHGKGRMQEPEQLVEEVVAFFHSKKKLLNKKVLVTAGPTYEKIDPVRFIGNYSSGKMGFALAEELAKEGAEVILVTGPVHLKTTHPNIHRVDVESAMEMHNACLEHFPATDAAIMCAAVADYRPKEQADRKIKRNAGEMNIELQATEDIAAALGQLKTPSQRLVGFALETNDEKQNALAKMQKKNLDFIVLNSLQDNGAGFGVDTNKITILSKDNNAQEFELKQKTEVAVDIVKKLIGELTND +>tr|A0A4S0Y8E6|A0A4S0Y8E6_9BACT UPF0102 protein EN806_46285 OS=bacterium M00.F.Ca.ET.163.01.1.1 OX=2563906 GN=EN806_46285 PE=3 SV=1 +MAERTLGHRRKAYRRGHRGEWLAALALMLKGYRILARRHRTRLGEIDLIARRGDLVLFVEVKARRTLIEAMEAIGHESERRIEGAADIWLSRQPDYGRLSLRFDMVAVLPWRWPVHVENAFYGRN +>tr|A0A3G5P5X5|A0A3G5P5X5_9HIV1 Envelope glycoprotein gp160 OS=Human immunodeficiency virus 1 OX=11676 GN=env PE=3 SV=1 +MRVTGILRNCPRWWIWGILGFWMVMSYNVVGKEDLWVTVYYGVPVWKEAKTTLFCASDAKAYEKEVHNVWATHACVPTDPNPQEMELENVTENFNMWKNDMVDQMNEDIISLWEQSLKPCVKMTPLCVTLECQDANFTKANLTNTVTNNSDSIITNGTMKDVMKNCSFNATTELRDKKNKEYALFYRLDIIPLSGENNSASGNYRLINCNTSTITQACPKVTFDPIPIYYCTPAGYAILKCNNKTFNGTGPCNNVSTVQCTHGIKPVVSTQLLLNGSLAEGEIIIRSENITNNAKTIIVQLNKSIEITCTRPGNNIRKSVRLGPGQAFYATNDIIGDIRQAYCIINRTDWSETLQGVGKKLKEHFINKTIVFSPHSGGDLEVTMHSFNCRGEFFYCNTSKLFNSNSTANESNIELPCRIKQIINMWQGVGRAMYAPPIAGTIQCTSNITGLLLERDGGNHNGTETFRPTGGNMRDNWRSELYKYKVVEIKPLGIAPTGAKRRVVERQKRALGIGAMFLGFLGAAGSTMGAASIALTAQTRQLMAGIVQQQSNLLRAIEAQQHMLQLTVWGIKQLQARVLALESYLKDQQLLGIWGCSGKLICTTTVPWNSSWSNKSQNAIWGNMTWMQWDREISNYTDTIYGLLEESHYQQEKNEKDLLALDSWQNLWNWFDISKWLWYIKIFIMIVGGLIGLRIVFTVLSIINRVRQGYSPLSFQTLTPNPRGPDRLGEIEEEGGEQGRDRSIRLVNGFLAIAWDDLRSLCLFSYHRLRDLILVTTRVVELLGRSSLRGLQRGWEVLKYLGTLVQYWGLELKKSAISLLDTIAITVAEGTDRILELLQRICRAICNIPARIRQGLERALL +>tr|F6HXQ9|F6HXQ9_VITVI Uncharacterized protein OS=Vitis vinifera OX=29760 GN=VIT_09s0002g00830 PE=4 SV=1 +MGVSFKISKTGSRFCPKVVLSDAPLNEEEEEIAKENSRIPDRNESLSNSTTRKLEADIIEGDEDVAGISGSSISSGGLLIPSDNEVSFTLNLFPDGYFIGKPSENETTHQAMLQDVPKLLHPYDRTSETLFSAIESGRLPGDILDDIPCKYVNGALLCEVRDYRKCASEPGFSVPCADGLPIVNKVCLRMSLENVVKDIPLISDNSWTYGDLMEVESRILKALQPQLCLDPSPKLDRLCEKPVPAKLNLSLSSVRKKRLRQMPEANITSSNKIHVKKISMDRAGESLNGRLRDSGPMSGAVMAQHVHENLAAQNVGPINILTPGPKSFVQDASNPALPLASPRSKYQVSVGNPKIMQDHGSGSVVNASGASSSIQDMMISYTDNVHGKRENQDDQLSPLSNMTKRQRLTAVGPEGIQQQHLVPHIDSFHGSDLQWKNAALLPHQLNARGNPYANTGIQKYPQQVFDGVLNQEAASASFAETEKLDRPELNRVKNDMHMGEIESNHLDPQQSRLQSRLPQQIPFMRSNSFQAPWNNITQHIEKDPRKERKLVQSPRVSAQGLVQSPLSSKSGEFSSGSLGPQFGPTATTAVLGASQKDKPAVTSVPPVVGTPSLTSSANDSVQRQNQMQIVPKRRSNSLPKAPAVGSPASVGNMSGPSNANSPSVATPPSADQTMLDKFSKIEIVVMRHQLNCKKNKVEDCPVKKPTFSPQELLGRLSMASHNEDIKDDTCKMPLSKSLAGGSMNVCKLRVLNFVQAERVVQGSVVSVVPRARSTMIMSEKANDGSVAVHHGDVVDGDFLSAEDYVSTLPNTHFADLLAAQFCSLMNREGYHLMEDRVQPKPARMNLASSNQSNAPGISPNNSAAEMQQYSETASGQPHNEVAKPTNSGNTPLNASQNLLANSRMLPPGNAQALQISQGLLTGVSLPTRPQQLNPQPLQQPQQQNPQSLIQQQHSQFQRSSLMLPTNPLSHLSAMGQNSNMQLGNHMVNKPSATLQLQMLQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQQPMQRKMMMGLGTAVNMGNMGNNIASLQGLGNVMGIGGARGMGSTGISAPMGSISSMGNVGQNAMNLNQASSVTNMLGQQFRNPQLGTMAAKIRMLNPAILGGRQAGIAGMTGTRQMHSHPGSTGLSMLGQNLHRPMNPMQRTGMGPMGPPKLMTGMNLYMNQQQQPQQQFHLQQMQQQQQHHQQQQLQQQQLQQQQQQLQQQHQQETTSPLQAVVSPPQVGSPSTMGIPQQLNQQPQQQQPQQQQASPQQMNQRTPMSPQQMNQRTPMSPQQMSSGAVHPMGTGNPEACPASPQLSSQTLGSVGSITNSPMDLQGVNKSNSVSNT +>tr|A0A7Y3TR66|A0A7Y3TR66_9FLAO IS701 family transposase OS=Flavobacterium sp. CLA17 OX=2724135 GN=HAV12_33835 PE=4 SV=1 +MPASRAARPTIHFVDEYCQLYEDLFPEVRSYEAFKLLHLGMISEIKRKSLPAIAKAVGLNNQQNLHHFLTESPWQVQQLRQKRLELTLKVLNGRSLILLIDETGDCKKGKSTDYVKRQYIGNVGKKENGIVAVTAYGLVDGMIVPLSFEVYKPRERLKEGEEYQSKPQIAATMIRQLQALGFEFELVLADSLYGESKVNFVDVLDELNLPYILAIRSNHALWLPQDQEVYQEPWQTFKRTFSNGTTETRHMAEVIYGKSHRKQYWLLTTDPDTLPDNSTSYVMVCAPAIKLKDIGDSYGFRTWIEYGLKQAKDALGWADFRMTRYEQIEKWWELVMSTFLMVSLFADPFNDSCPLAHQRFSQHPWWNNQSGWKNLLNNLRLVIQPLVCFNWLKHWLTVFPIASLQLGFEQLTQKMNQFICPRVHQLNLQLIFSSA +>tr|A0A7G3FQZ2|A0A7G3FQZ2_9BACT CsbD family protein OS=Roseivirga sp. XM-24bin3 OX=2133949 GN=DCO95_02490 PE=3 SV=1 +MSATTDKLKGNWNIIKGKLKQNYADLTDDDLTYTEGQEDELLGRIQRKTGKTKDEIKDFIDSI +>tr|A0A2T0UIC1|A0A2T0UIC1_9ACTN Acetolactate synthase OS=Glycomyces artemisiae OX=1076443 GN=B0I28_10654 PE=3 SV=1 +MSTPVKAPKPGPQAGSAGTQAAKAQPARPKAPRPAPPLGAPAAAPVLTGAQAVVRALEELEVEAVFGIPGGAILPAYDPLLDSEKVRHVLVRHEQGAGHAAQGYALATGRVGVCMATSGPGATNLVTPLADAHMDSVPIVAITGQVASTAIGTDAFQEADIVGITMPITKHSYLVTTGEEIPRVLAEAFHVASTGRPGPVLVDIPKDILSGSAPFVWPPKMDLPGYRPTTQPHGKQIREAAALIAEAKRPVLYVGGGVVKSGAHAELRELAELTGAPVITTLMARGAFPDSHPQHLGMPGMHGSVPAVHALQKSDLIVALGARFDDRVTGKLDSFAPEAKIVHVDIDPAEIGKNREVDVPIVGDCRAAIAAMTEAYADPGKERLKTWWETLDDLRGRYPLGYTDIDDGLLSPQYVIERLGALAPEDTIWTAGVGQHQMWASQFIKYETPGTFLNSGGLGTMGFAVPAAMGAKLGEMGRTVWAVDGDGCFQMTNQELATCAVEGIPIKVAVINNGNLGMVRQWQTLFYDKRYSNTNLSTHHSEASPRIPDFVKLAEALGCVGLRAETPEEVDAVIAQANAINDRPVVVDFTVGPDAMVWPMVPAGVSNDEILYARDVRPNFDDEGEI +>tr|A0A1Z2XRM7|A0A1Z2XRM7_9FIRM DUF3502 domain-containing protein OS=Acutalibacter muris OX=1796620 GN=ADH66_10645 PE=4 SV=1 +MSKKILCLILTLALLATCFVGCADKGESKKESSSTPESSAAESSETQSSDTGDKTTDEEPYTVHFAYYIAKESPNMGALSDAVNELAMKELNMKVDLQALTQGTYHQQIPMMLAAGEPMDVFISRASEVGTFIESQYILDCTPYLDKMENAKAALGDDIQACYIGDFLAGFGSMAERATPGAMVVRKDIFDELGFKKEDFDYTLPNMGVLDQITEMYAKVKEKYPDMICFDGTAVPASCAFCFVDNLSSSFGVLETPESTTVVNWFETDMYRRLCEAAMEWYNKGYSSKDIAVNTDGGDVKMKGGNCFSYFQSWKPGVETEKKSQTGYDVEMIQLIDAPKTSYNVNTRLWSIANSSEDPEKAAQFLDWTYKSGEFTDLINWGVPGTDWVLNDDGQADYPEGVTAATVGYHNDKGFSYPNQFNGTLWAGAPKDLWEQYETWHATLKESAAFGFAFNSMPVATEMATLQTVYDKYQKTVGFGTLPDLDAAIQEFNDALYEAGLQKVLDEKQKQLDEWLANK +>tr|A0A0Z8MB24|A0A0Z8MB24_STRSU Membrane protein OS=Streptococcus suis OX=1307 GN=ERS132461_01172 PE=4 SV=1 +MKKLLTNHFFYLTIAFLLILVIYFSGIDKRWIILASFLYFIPSQILYRRRLKERLQEDQPK +>tr|K8FB40|K8FB40_9CHLO ATP-binding cassette transporter OS=Bathycoccus prasinos OX=41875 GN=Bathy12g02760 PE=4 SV=1 +MSAVDHRKENVEDPTNRLEQYASLCRDELEAHGGKLPSVEIKCDFDYTLHLPANKIDRSIKTVPGVLTDVAMKIPNKVREKISGKENDATKMEPFRVLKDVDCCFKAGSLTLVLAPPGHGKTSLLKAVGQILPSAVLSGGKGVTYSKMTAEELKEKDIDANRMAMYVTQQDEHLPFLTVRETTKFSHENATPTPTNEREEDVHSRKIDSVHRLLSLENCLDTIIGNDLVRGVSGGEKKRVTIGEAMVTNARVFCMDEISTGLDAAVTHNIIAALREWTRITNGTVIVSLLQPTPEVYELFDDVLCLRDGTPVYHGDVDKVVDHFCGLGFDSENAKKGDVADWLLSVLVDPLAHSKTGASNQFASGDGLRKGWVENSNGLYKKSIGETDCVDKSDGKNMIDLRTPFAKAQYSTAYPKAWPSMYKSVIKRQFQITLRNKVFLSARMFGALITSVVLGSVWFDLPLDRGFERLGMLLFCVLHISFSNFSELTFSVEQKYVAYKQLDYKLFPTFAYIVSSIATQLPIAVLETAIFSCILYPMVGLSMEFENWLVFFINLTCANVAMASFFRVVALLAPNMEAAQTFPGPVIAIMVIFAGFLISPEKMGVLHFLYWISLFAYSLRSLCQNEFLSDQFKYKVPLDPTAAAVYVQGYTGDPKTMAEFCEENAFPCEDAGKITLSTIDISSDKKYFWAGPIFSIGFFCLMTAIGYRALSKIRIQRNIGSSRTSSSEKKKDGENAEEVSISISKVDAEASQRALSFTPMSITWEDLEYTVKVPGEDGKPLSGSKKILNSVTSAAQPSRMLALMGASGAGKTTLLDVIAGRKSGGEMRGTIKLNGHVVKKETFARLTAYCEQQDLHNAFTTVKEALEFSATLRLPSDVSKDARKAVVDEALDILELRGIENRLIGVAGSPSGLSPGQRKVLTVGVELVSNAPVFFLDEPTSGLDSRAALIVMREVKKVANLGRTVITTVHQPSKEIFNLFDDMLLLQRGGYQVYFGPCGVNGKTFVDYLQKIPNAHALPDGMNPASWMLDVLGGTDSSNAGEKSALKKSKSTAAGSLQPAMTMKRSGSGGALNGLLLVERFKASQEGAAGTRLVKELCAKGEKSEMFAFASPYARSFLAQLRCLIQRASLAHNRDVAYNLGRIGILFVLYLLFGFVYFDLDASNETGVQAMVGVIFMTSIFAGIIFMNSVMPVRVRERAVAYRERTSFMYDAVPYSLSHAICEVPWVLLVTFVTVTPLYFMVGLVPTFEHYIFHVLMVFTVSMAFMSLGQLIACLCATIQTAQAGASAFIPICFLFGGLYLPYPQIPVYWKWAYFIDPVAYAIQGVTAPQFEHRGCTGAYPDGDCPTIQAFRGTYFETVDTLAYVEEKYDVQLSQKWYMLIYVAIFVLCMQTLHIIAFKFKKVVAR +>tr|A0A0B7H5Q7|A0A0B7H5Q7_9FLAO Uncharacterized protein OS=Capnocytophaga cynodegmi OX=28189 GN=CCYN74_10172 PE=4 SV=1 +MNYILPFLSIITGFGTVLIFKPKNQRNIKLLLAFSGAFLLAMTVFTLIPEVFHSLEHSHEHDIHDHNTGKKIGLWIVIGILLQIILEFFSKGAEHGHMHHPHSELKNAFPWSLFISLSIHSILEGFPLHHHHHMVYGIFVHHLPIAMVLTIFFLDSGIGLKKTFIFLILFALMTPFGTLLAEFIPQLGRYHIQISAIVIGIFLHISSVILFETSENHKFNHIKLGTIILGFVAAYFT +>tr|A0A7I6VAI1|A0A7I6VAI1_AERCA Membrane protein OS=Aeromonas caviae OX=648 GN=WP8S18E04_21180 PE=4 SV=1 +MNLMLYVSTVLIWGSTWIAIAWQLGPIPIEVSVLYRFALAALALFALLTVSGKFPRLPWAGQRYAALLGALLFSTNFLCFYHATLYIPSGLSAVIFASASIFNGLNLWLFEGKRPGLRWLQGSLLGLLGTLLLFWPVLADAQLGANGWKGLLFACAGTLCFSLGNLVSARGQRQGYHVLQMVPWGMVYGVALLQGWVTVLGQSLTLPTDPRYLAAMVYLAIFGSVIAFTAYLTLVGRIGASKAAYATVLFPLVALTLSTFYEGFVWQTVSIVGVVVSLIGNLVIFAPPVKAWRWPLSRAANGTCP +>tr|H8X476|H8X476_CANO9 Histone-lysine N-methyltransferase, H3 lysine-36 specific OS=Candida orthopsilosis (strain 90-125) OX=1136231 GN=CORT_0C06550 PE=4 SV=1 +MNGNTKNSDYASPLFLDVEDKTEEALTKFQNLQISTYQSKSIAAPSNNKRPEYMTCDCEEEWDGEQEKNLACGEDSNCINRLTSVECTNRHCLCGDDCQNQRFQKRQYADVSVFQTELKGYGLKANKPISEGQFIYEYIGEVIDEGAFRQRMIEYDVKNYKHFYFMMLKPDAFIDATEKGSLARFVNHSCNPNAFVDKWVVGDKLRMGIFAKRKIAKGEEITFDYNVDRYGAQSQPCYCGEPNCIKFMGGKKQTDAALLLPEGIAEALGVTSRMEKAWLKENKHVRADQQKDDSTINEMFVQSLEVEPMQDADVSKVMAALLKSQQVSITRKLIMRMHMTDDPTVNSLMVKLHGYKTLSGVLQGVEDEDLIKMILEILSKWPAMTKNKISSSQIEDVVKEIEANSTNEEIRQLASDLLAQWSVLEMAYRIPKTQASDKSLMESYGRVSRSPEHSNGNTSGVINHDQSNFAQYSTNVSQVYSATLPKGPASVPNFGLPENWQAQFDPNTQKYYYYNVLTRETTWDKPGVSIPTRPKLPTGPSSMINQQPQTSHSSQYQNGPPSRNNNIEEEIARREEEKERRERESRAQELLNKERKLRELIEQAQSVKSTPEPEKKSKHKHKHEHKHRHGRTKSHEGKGTAALDDDARVSKESKHKSSSHQHKKKEVKETSLEAQWKHIMAKHVPNLLKSYVEEIGKDNVKGCAKEIVNNLASREAHKGVPPSSSKELDKHKLKKLKEYSDTYMDKFLSKYRSKHHGKRKLGEDEANATSREESRGIDSNVSLSNIDTNGEVESEENKKVKLDSGV +>tr|A0A5N5DU29|A0A5N5DU29_9PEZI Inner centromere protein mis6 OS=Lasiodiplodia theobromae OX=45133 GN=mis6 PE=3 SV=1 +MHATIDALRTASTLPAKQRGEKVNAVVDAVCSHAYQHGLSRDHLQSIVAIVTRRNHLDQTSLTNLIKNLYPADRVSSDIVLAIVGSLGHGQAKPSAATQAALLKWIIAVIDALQDATVLSKLYGVLFNMLDTMTLRTPLCHLLSLITRRKHVRPFRIQQLLEMVRGSGQDPALVGLLRVYKDYYPEIIVGNAASGRTSFASAAQDEWRQRLQVIQDANADSNEQLYAQQDGFKVIRRGAKRAKASILPDVHTSYANEKSVTLEEVNSADGLVKNLERIELPNQLLASFKDPLLQKYLILKPSDTAARRLELWLESYLRETLETISSGTKNPDHFDELLDGMLNYTKATKDFKEFKASYLNPAEAAIVTSGTVDAYDRLVTFYTALVQNWNHAANTSRPDSGDAANDLITSTDFTGLTTHISNTILSLLTSQSHTPISTTTTILTYYTTLSTLSSGLTPLTIPTAPTLYTLLFQPSLATLSQLCTLLATYKRAFEADLQDHTTTAANLPRAVTNAFNGYLMDVANLLWRSRALTSTDPNAMACLCAPGVAAALHAYISTTLPPVLIPSANDNTTAPAPGTGPDYTLAALFGLPHNALTAPLARAAFRDLEDAHHGTSGSSNAPRHPPGPVTQRTLHRLARAGNNGNGNGNGNGGGAAGGGGGGLELSWKAYRVCVLEWLAERGVRGLRDFMFVTMKDLMKESAAAAAAAAAKTGATTTTATA +>tr|A0A559MAT3|A0A559MAT3_9HELO VPS37 C-terminal domain-containing protein OS=Lachnellula willkommii OX=215461 GN=LAWI1_G004602 PE=3 SV=1 +MSSPSTAYPPYQPHRNSQSFDPNAPPAPPPKPSSQEVSRRSTPAGSQPLPPPPPPQPEGFGTYGASDDPRSFQQARFSSSEVLYAEQIQDPGERWLPKILEDKTFVTLRHKIKQDLADVLAKPDLLAALAHSTSTAHASIASAQEPLQAALTENIALASHLNELEARLAHLRSSTQAQLLSTHALERQWKQKQSDMDRALAPFSPSSLYQRLSQAVQEQEMVCRALEESFLEGDGGTATEREVVEWVRRYREATKVYYSRRERKERWDEGRVGGWR +>tr|A0A3D4HVI7|A0A3D4HVI7_9BACT Uncharacterized protein OS=Patescibacteria group bacterium OX=2052139 GN=DIV45_01950 PE=4 SV=1 +MAKQLKLFEKSVKKKQLTKKLVVLGKKKGNFSCQARVPFSEPVGSPNRRSGPEATKLRKYPLKSLPLKKGRRGGDVNLLAPSSPSPSSGRRGEKRHWHWTDYFVSSPLKITPKKKRKTPVVFVMMSGGVDSSATAYLLKEQGFEVVGVYMKNWSFPIKRIDECPLYQDYKDMVKVCKFLKIPYQVWSFEKDYRKRVIDPFFKGYEAGLTPNPDVMCNTEIKFDDFFKKAMKLGADYIATGHHIRSRCADPRFSRHSGESLGRLQNLIIRSWTSQDDDAKXXSG +>tr|A0A1X0VXM2|A0A1X0VXM2_9GAMM NGN domain-containing protein OS=Rouxiella silvae OX=1646373 GN=BS639_21155 PE=4 SV=1 +MKNWYLVYCNYNQEDRAIINLERQGVQVFCPMLSQDNHSPHKKGGYMFPRYLFCLFNPEVTSKTTINSTRGVSQLIKFGGRQEIIPNIVIESLMFYIERSPEAEFKGGESPNLKKLSEDLSAIIKGILSECESDKRVLLFFSLYSLIVRDIAKEIVKIPVKK +>tr|A0A1F1KDD4|A0A1F1KDD4_9MICC GntR family transcriptional regulator OS=Micrococcus sp. HMSC31B01 OX=1581073 GN=HMPREF3105_05090 PE=4 SV=1 +MSRTGIGTVSLGSAPVSKADRAYQAILEGIRDQRHEPGDRLVLSQIAAELGMSVVPVREAIRRLQSEKLVAYERNVGATVVGIDPVEYRHTMETLALVEGFSTAQCAPHVTAEDLAAAREVNATMRAMTESETAWDPVTFTELNRRFHSILFEHHQNEHVHDLVHRGWNRLAALRSSTFAYVPGRAVASVDEHEHLLRLIEDGARFEEIEAAARAHRLNTLRAYLEHSAEPSA +>tr|A0A7C4I6T5|A0A7C4I6T5_CALS0 TatD family deoxyribonuclease OS=Caldiarchaeum subterraneum OX=311458 GN=ENM30_04935 PE=4 SV=1 +MIDVHCHLTEEPLLSNLGEVIMEAKKSSVEAIITSGIGPADCEKVLSIVDGVYIYGSLGIEPYALEGYEKVIELIMRNRERVVAVGEVGLDYYWGKKETREMQAKVFREFIELAKSLDLPLVIHSRSAGKYALNILIEEKAERVVMHAFDGSAGEAERGAAKGYFFSVPPSVVRSEQKQKMVRRLGLENLLLESDAPVLGPERGVVNKPSNIAISAKAIASLKNIPLDKVVEKTTENAKNIFRI +>tr|A0A2E7SH61|A0A2E7SH61_9EURY Thioesterase OS=Euryarchaeota archaeon OX=2026739 GN=CMA77_02820 PE=4 SV=1 +MTSDEIGVQRKFAPTSICFGCGPANEKGLQINSTRIEDGLELWFTPSSEHQAFPGMINGGIIGTLLDCHGNWAAAMSIMDARGDSEPPCTVTASYSIQLRRPTPADIPLHVTARVIELQDDRADVEMELYAEGKLCAKGKGLFVAVNEGHPAYHRWG +>tr|A0A1J0GT11|A0A1J0GT11_9CAUD Uncharacterized protein OS=Arthrobacter phage HumptyDumpty OX=1913080 GN=SEA_HUMPTYDUMPTY_66 PE=4 SV=1 +MSLTRKERENNLVCRHCGRPIVRNTGPRHRWARALPKMEWLHNAKDFDPSKPIDCFTPEPKA +>tr|A0A7G9IUQ7|A0A7G9IUQ7_MACNE NADH-ubiquinone oxidoreductase chain 5 OS=Macaca nemestrina OX=9545 GN=ND5 PE=3 SV=1 +MIMYTPIMMTTLISLTLPIFASLINPSKKHPYPNYVKTTVMYAFITSLTSTTLFICLNQETTIWSWHWMMTQTLNLTLSFKLDYFSMMFIPIALFITWSIMEFSLWYMSSDPNIDQFFKYLLIFLITMLILVTANNLFQFFIGWEGVGIMSFLLISWWHARTDANTAAIQAILYNRIGDIGLILAMAWFLLHYNSWDFQQMLALNSNPSSLPLMGLLLAAAGKSAQFGLHPWLPSAMEGPTPVSALLHSSTMVVAGVFLLIRLHPLMETNVLIQNLTLCLGAITTLFMAICALAQNDIKKIVAFSTSSQLGLMMVTIGINQPYLAFLHICTHAFFKAMLFMCSGSIIHNLNNEQDIRKMGGLFKTMPLTSTSLTVGSLALAGMPFLTGFYSKDLIIEATNTSYTNAWALFITIIATSLTSAYTTRTILLTLTGQPRFPALTNINENNPALLNPIKRLTMGSMITGFLITNSIPPTSPLQPTMPLYLKLSALYATALGFLAALDLTLMTNKLKMKNPSQTFKFSNMLGYFPTTIHRMIPYQNLLMSQNLALLLLDLTWLEKSMPKMISQTHITTSMTVSPQKGMIKLYSLSFLIPLTLTLFLMM +>tr|A0A2D6YFP4|A0A2D6YFP4_9DELT Ribosomal RNA small subunit methyltransferase H OS=SAR324 cluster bacterium OX=2024889 GN=rsmH PE=3 SV=1 +MSEPRFRHLPVLLAEVLGSTPANSKNLLDCTLGGAGHSRALLGKFPKANLYGIDRDPAALAASRHRLAEYPGVTAIEQASFLELPYWAEKWRKPFDFILADLGMSSEQLAAPERGFSFLQEGPLDMRMDPFRQVETATQILQQRSEFEIRRLLQTYGEERFAPQIARAIVQHRANAPLVTTSELAELVERVIPRKFQKPNFHPATQTFQALRMEVNQEPQEINALLDFAIENLQPGGRLAIISFHSLEDRPVKQRFREWERPCRCPSDLPRCVCGLQALGVSLQRKPIVAGAEEIEKNPRSRSARLRVFERNAVCFPGXXKXSRN +>tr|G3NV60|G3NV60_GASAC G_PROTEIN_RECEP_F1_2 domain-containing protein OS=Gasterosteus aculeatus OX=69293 PE=4 SV=1 +MNNVSVVRFFILSGINETNDYRVTLFTFTLLYYCIILILNTSIIMIIILDQNLHEPMYILLCSFCMNGLYGTTCFYPKFLLDLFSSSQQISYEWCLLQAFVIYSFPCYELSILAVMAYDRYLAICRPLHYQSVMTKRKVSQLICFSWFTPFCILSINIVLTSRLKLCGVNIDRLFCVNWKIVQLACYESDTFSNNITAYFTMLIFISHGLFVVWTYMHLIRTCVKSKDDRVKFMQTCVPHLVSLVTFIVAVVFDLLHIRFGSKDLPQSLQNFIAIEFLLIPPVMNPLVYGFKLKKIRNRILVYCPDAEATASLPGVQKRTPSKTVMHLCNTSSQRTTKNQSCILILSH +>tr|S9V0M4|S9V0M4_9TRYP Npa1 domain-containing protein OS=Strigomonas culicis OX=28005 GN=STCU_11365 PE=4 SV=1 +MCTHGFFTHIIEDAADLLQEGSEAGMRLAREAIHTFETQFITSKSVSTHQKRAVLLGQRSILRLLVKALEYAPAAETAAQVLYRIIVELAESPSDYASSHLESVSGQGMPNYLLFTLLRQLRPKCSPLASHLVLFLLHTAPDLIRPFFARVSVHMTEEGGSTAMGRVAASTARVATLNVMTRILQLPLPYHLAARQATLEPVATKVRTFYTMSPREVADEICPAWVAEYVHRLVNGSTNLLMLTFAMQLTQAALIRAQAVMRVVAEIQEVARRPRGDGAGRALGGRRRRHAGRRDRLGGLQRPRACAAGGGGAQTRGVLAPHDAAAAAAADPARGGGRRRRREGAGEDGLCVPPHAPPHGPVRQGARAAAAVAERGARIAPAVHAVAAADRAGAAGRQRRFPVLAGDLHLGPLRAAHR +>tr|A0A096XL47|A0A096XL47_9HYPO DNA-directed RNA polymerase (Fragment) OS=Thyronectria aquifolii OX=1491451 GN=RPB1 PE=4 SV=1 +VKKILEIVCHNCSKVLADKSDPEFVAAINTRDPKLRFNRVWAVCKKKRRCENEDRSEKKEKEEEYAPGLKPFVVENHGGCGNVQPQVRQAALQLKAAFEVAQEDGPKKKESMPITPEMAHGILRRISEADLRNMGLNSDYARPEWMVITVLPVPPPPVRPSISMDGTGTGMRNEDDLTYKLGDIIRANGNVKQAIREGSPQHIARDFEELLQYHVAT +>tr|A0A1D5P1X9|A0A1D5P1X9_CHICK FHA domain-containing protein OS=Gallus gallus OX=9031 PE=4 SV=1 +MSVTSWFLVSSTGIRHRLPREMIFVGRDDCELMLQSRSVDKQHAVINYDKEKDEHWVKDLGSLNGTFVNDVRIPDQKYITLKLNDVIRFGYDILPL +>tr|A0A2J8WE22|A0A2J8WE22_PONAB ARL8B isoform 4 OS=Pongo abelii OX=9601 GN=CR201_G0011344 PE=4 SV=1 +MIRLASWVWLLPPAGVRPCRAGAPRSRWRVRAEARSCGSRRRRRSSVLLSVLAPGRHHAGAHLPPAGLVPFALLEGGDGADARGAAVLGQDHLRQCHRVRSIQ +>tr|A0A1V8U653|A0A1V8U653_9PEZI Uncharacterized protein OS=Rachicladosporium sp. CCFEE 5018 OX=1974281 GN=B0A51_10502 PE=3 SV=1 +MGEASVVASQWRMVEVGRVVLFSNGPFAGRLAAIVEIIDHKRVLVEGPSESKDLLVPRHSSPLAALSLTRIVIEKLPRGAGSAALQKLWQAQEVEGTWNKSTYALNKAKTMRRRELNDFERFKAMRLKKQVRFQHRKSFAAAKASA +>tr|A0A7L3JVW9|A0A7L3JVW9_9PASS LTK kinase (Fragment) OS=Drymodes brunneopygia OX=626378 GN=Ltk PE=4 SV=1 +WAGGGGGGGGATYIFRQKDGIFEPLLIAAGGGGKAYLKAQDNSLDDVPLEQFENSTAVPGVSGRTGAAGGGGGWQDESLLPQAGKSLLEGGEGGQACPQALAKLQWTTSGGFGGGGGACTSGGGGGGYRGKSAGA +>tr|A0A7J7IY04|A0A7J7IY04_BUGNE SLC39A1 OS=Bugula neritina OX=10212 GN=EB796_022902 PE=4 SV=1 +MKAATNTENTRRKSMLDRCISFLSCFAAGVFLGTCLLDLYPEVQTKLYSAVTLYISKDSKFACYPFGEAVMVAGFFLVLIVEQMVLALKEMSVESSTPANQNSQPGSSSQSKRVTYDSINSTTNEYAEHERLLRSNSRDNTQSRSRLGSLSSIRSIESRNNVHSQSDDQHEHSMHHDPSSHSPIRSLIMLAALSLHSVFEGLAVGLQDTEEGVLSIFGALILHKCIIAFSIGLNLVQSKLAVKAIIVSNAVFCFASPLGIAIGILITDFNSDADSSLLVNGILQGLACGTFLYVTFFEVLPHEFNKPKDRLLKLLFVIVGFAFVNGVLFLEMFLSKEPGCD +>tr|A0A7I6S0I5|A0A7I6S0I5_9ENTR DUF446 domain-containing protein OS=Klebsiella sp. WP4-W18-ESBL-05 OX=2675713 GN=WP4W18E05_35930 PE=4 SV=1 +MTRHDSLRDQLLLIETLLRQHQHWQDDAPHESAFASDQPFCMDTLEPLEWLQWVLIPRMHQLRDSGMPLPKDFAIAPYYEMALDAAHPLRAIILPPLEQLDAFFTSDPH +>tr|A0A2L2NMZ0|A0A2L2NMZ0_9NOSO Histidine kinase OS=Nostoc sp. 'Lobaria pulmonaria (5183) cyanobiont' OX=1618022 GN=NLP_1471 PE=4 SV=1 +MEPRHIDTEVTRLEALRQYQILDTEPEEAYDNLAQLAAFICGTPISLVNFIDENRQWFKAKIGLDVSEMPRNVGLSYLCQEQRNVVVISDTLADEKLASNPVVTGYPYIRFYAGVALITPKGDMLGTLCAIDQVPRQLSQKQVEALVGLSRLVIAQLELRRHVIEVSKVTEKLVAHEQAACAQSEATKTRITNLLESITDGFFALDQKWQFTYINGQAEQLLQKTRNELLGKNIWEMFPEIIGTTFDCEYHRAILEQVSVEFEEFYLPQQQWLKVHAYPAKDGLSVYFQNVTERRKTAEALRESEERWQLALNGNNDGIWDWNLKTNEVFFSTRWKEMLGYKDHEVSNRWDEWTKRIHPDEQDWVLQAFQDHFATKTPFYVCEYRVQCQDGSYKWILDRGQALWDTLGDIVRMVGSYTDITDRKRADEELKRQNLRSQLFAEITLKIRESLQIDEILKTSVTEVQKLLQADRVLIFRLEIDGSGTVVQEAVLPGWPVILGENIFDSCFKEEYIERYRQGRVSVMEDIEAAHIQPCHRKFLQQFAVRANLVVPILVRDGIWGLLLAHQCAAPRQWNQFETDLLQQLANQIGIALSQAQLLEKETQQSQELTRSNAELEQFAYVASHDLQEPLRMVTSYLQLLERRYKNKLDANADQFITYAVNGASRMQTLINDLLNYSRVSTRGQPFVPVDCSAVLEQVLANLQLAIADSKAVVTHDTLPQIMADATQLTQVFQNLIANAIKFCQNQQPRIHIGVARGDTNINGESLNVIPSADEWLFWVRDNAIGLESQYAERIFIIFQRLHGRGKYPGTGIGLAICKKIIERHGGQIWVESKPGQGSTFYFTIPDRALKQSSTL +>tr|A0A4S4NBC8|A0A4S4NBC8_9RHOB Alpha/beta hydrolase OS=Aliishimia ponticola OX=2499833 GN=E4Z66_11820 PE=4 SV=1 +MPNYFETAEGRRIAYHKTEGAGPTIVFLGGLKSDMEGTKAVHLEAWAKAQGRAFLRFDYSGHGESSGTFEEGCIGDWHQDTLAAIDNLTTGPVVPVGSSMGGWQSLLLARARPNRIAGLVTIAAAPDFTEDGYWAGFSEAQKALLDSQGYVELPSDYMEPYHVSKRMIEDGRTHLVLRTPLALPFPVRCLQGTADTAVSTETALRLLDHADCEDMRLTLVKDADHRFSDPRCLAMIEAAVSDVLGI +>tr|A0A6I4G232|A0A6I4G232_AGRVI Chemotaxis protein OS=Agrobacterium vitis OX=373 GN=GOZ89_08175 PE=4 SV=1 +MTARRSLGARSGFSSFAFYGVLLTLAVGGPVACAGQAYAAGPNTPASNGPSTAPVAGTTGPAKSLPAGGDSDNLPPYLMLRSLQFVQDSVVRGDHSAADMQRFLLTRIDKRLRTAVSSDFEDPRNVDAALIYTMSGGNPATLDYLVARDVDGHFDNRVSDMLRKYLSGKGVLVASSLGEMVPLYQNGRVGPYIALVAGNVTLVKDPAAALKFFDIARLVAPGTIVEEAALRRSFQIAMDTGQNRRAMAYANRYARRFLYSPYASQFADLLVQLVVDHFSELDKNDILATLATMDPDRQREVYLRIARRATINGNQALASLASSQAQSLAGLPDKNDPQALLYGGAALISTTDVKNALSTISQLPKDQLSASDNALLEAARAVAQEIITLPTAPQSPSASPSTPPPSGDYTAPDAPANVSDQQDPGAPANAKANVVPDAGVGTAPVSPASADAKQKPDPEFQTFMSGGRSKLEEIDKMLKGEGVTK +>tr|A0A4Q3Y2I0|A0A4Q3Y2I0_9PROT ATP-binding protein OS=Alphaproteobacteria bacterium OX=1913988 GN=EON59_07995 PE=4 SV=1 +MIVGLDEPAFREKLKALLTPAQPISKPEHLHGRDKKLMLIDRALNSPGKHIFIFGDRGVGKTSLARTAAAIHAADEEGFAFIACDQGTTFFDMVEDIYRQLHRLYSLGKFKMDGIELSVPFLKIKANEAFGLPALRTINDAIETLKTIAPKDGVTPVVVIDEFDQLRSDTEKKYIADLIKQLSDQRINLRLIICGIGSSLDELIGVHLSTDRYLATIPLEPLPHDARWQILRTASDALGVTLDRNSEVRIGQLSDGFPYYVHLMGEQIFWQVLDDPKPIKSVSMEHYATGIRASIEEAQTSLKQAYEIATQKHKNSEDYEQVLWAVADGGILKRQVSEIYEKSYLPIMDQFEGRNPLPKNLFYQRLNRLKKATHGSIVIGSSTGWYGFKENVVRGYVRLRAERAGVEIGVDHILG +>tr|A0A7C3NPT6|A0A7C3NPT6_9CHLR Dienelactone hydrolase family protein OS=Chloroflexi bacterium OX=2026724 GN=ENS08_10630 PE=4 SV=1 +MYQTHMYEGMLAETITHHGYQAEVINAYFARPLGAGPFPGMVVIHHMPGWDEWYREVTRKFAHHGYAAISPNLYYRAGHGTPEDVAAKVRAAGGVADDQAVGDIGGALQYLLSLPYINGKVGVFGTCSGGRHAFLAACRLKGFAAAVDCWGGRVVMSKEELTPMQPVAPVDYTQDLSCPLLGLFGDEDRSPSPEQVNQLEAALQAHGKVYEFYRYPGAGHGFFYYDRPNYRQEQAVDGWKKIWTFLEKYLKV +>tr|A0A699THK2|A0A699THK2_TANCI Retrotransposon protein, putative, Ty3-gypsy subclass (Fragment) OS=Tanacetum cinerariifolium OX=118510 GN=Tci_880515 PE=4 SV=1 +MRQRRWLELLKDYDTNIQYHLGKANVVADALSRKSGMIVGIKVEEEIIRDLERLDIELYVRGQHGYWASLRVEFRLDDDNVLWQNTRLVVPNDASLREAILTEAYSSLFSIHLGSTKMYHDLKLHFWWSGMKRDVATFVSRCLVCQLVKIEHQRASGLLQPLDIPVWKWDEISMDFVTG +>tr|A0A328S3F9|A0A328S3F9_9EURY GTP cyclohydrolase MptA OS=Methanosphaera sp. SHI1033 OX=1945632 GN=mptA PE=3 SV=1 +MSVPEFPDTQDKQPSAPISLTRVGVTGVKKLLKIERSGNKRPIILLPTFDAFVDLPSTQKGVHMSRNPEAISEIVDEATNEPEIHIETICANLVKKLLEKHEYAVNAETEAKSEYIINKLSPVTKKKTQETTQIISRAVAHKNEDGTINVKKMIGAEVVGMTVCPCAQESVEKDSKEKLLEFLDEETTEKVLKTVTFASHNQRGIGTILLEVSENQEVNVDDLISIIQESMSSPVCEILKRPDENRIVTNAHQNPVFVEDCVRNMVIGLLNKYPNLPDNSMVTIRQVNQESIHQHNAFAEKVASFGELRQENIQE +>tr|A0A433MDU9|A0A433MDU9_9BURK Phosphoadenosine phosphosulfate reductase OS=Variovorax guangxiensis OX=1775474 GN=EJP67_02995 PE=4 SV=1 +MSIDIERINAELGRNAQGLVDWALGLGQPAIVTTNFRPFEAVILHLVTQVKRDVPVVWMDNGYNTEATYRFADEVTKQLGLDLHIYLPRRSRAHREAVEGPTPALDDPRHAAFTEEVKLEPFARALRETAPKVWFTALRATDTAVRAQMDPVSINPDGLIKVAPLLHWSSKDLHEYCVKHGLPNNFDYVDPTKGEDNRECGLHLAH +>tr|A0A147H9Y5|A0A147H9Y5_9PSED Ribosomal RNA small subunit methyltransferase H OS=Pseudomonas psychrotolerans OX=237610 GN=rsmH PE=3 SV=1 +MNPVFHHVSVLLDEAVQALEIQPAGRYLDGTFGRGGHSRAVLRLLGGEGRLLGFDKDPQAIAAGQALAAEDARFEIVQRSFAELGDELVSRGWSGQVDGVLLDLGVSSPQLDDPERGFSFMQDGPLDMRMDPSRGQSAAAWIATAAEADIAQVFKEFGEERFAKRMARAVVQRREVQPFERTADLAKVLTEANPAWEKGKHPATRAFQGLRIYINRELSDLEQGLQAAYEQLAVGGRLVVISFHSLEDRIVKQFMRRLAKGEADQLPRDLPIRATVFEPSLRLLGKPIYASEGELAANPRARSAVMRVAEKLK +>tr|A0A2F0BA01|A0A2F0BA01_ESCRO Ubiquilin-2 (Fragment) OS=Eschrichtius robustus OX=9764 GN=ESR_40773 PE=4 SV=1 +MQQLIQRNPEISHLLNNPDIMRQTLEIARNPAMMQEMMRNQDLALSNLESIPGGYNALRRMYTDIQEPMLNAAQEQFGGNPFASVGSSSSSGEGTQPSRTENRDPLPNPWAPPPATQSSATTSTTTSSGSGSGTSSSSATGNTVAAANYVASIFSTPGMQSLLQQITENPQLIQNMLSAPYMRSMMQSLTQNPDLAAQMMLNSPVFTANPQLQEQMRPQLPAFLQQMQNPDTLSAMSNPRAMQALMQIQQGLQTLATEAPGLIPSFTPGVGVGVLGTAIGPVGPVTPIGPIGPIVPFTPIGPIGPIGPTGPAGPPGSTGSGAPPGPTVSSSAPSETTSPTSESGPNQQFIQQMVQALAGANPPQLPNPEVRFQQQLEQLNAMGFLNREANLQALIATGGDINAAIERLLGSQPS +>tr|A0A7U8PMI8|A0A7U8PMI8_BRUAO tRNA (guanine-N(7)-)-methyltransferase OS=Brucella abortus bv. 3 str. Tulya OX=520451 GN=trmB PE=3 SV=1 +MIDENHPMRAAGNFFGRRHGKPLRPHQSNLFEDLLPRLKLDLATPAPQDLRSLFEAPVEAVRMEIGFGGGEHLHHESGRYPQSGFIGVEPFINGMAKMLAALDQAPRPNLRLYDEDATAVLDWLPDASLAGIDLFYPDPWHKRRHWKRRFVSDANLDRFARVLKPGAKFRFASDIEHYVNWTLQHCRRHAAFDWQAESPADWNDAYEGWPGTRYEAKAFHEGRRAAYLTFIRR +>tr|A0A2S5CXJ6|A0A2S5CXJ6_LYSSH Single-stranded-DNA-specific exonuclease RecJ OS=Lysinibacillus sphaericus OX=1421 GN=recJ PE=3 SV=1 +MILSKKRWQVKRPDAQLVQTLQNDLQLSAIAAKILAARGCTTSADAESLLNMTEANIHDPFLMHGMAEAVARIQQALENNEKILVYGDYDADGVTSTTVMLHVLLDLGADVSFKIPNRFLHGYGPSEALFREAHEEGIQLIITVDNGISGIEPIRVAKELGLDVIVTDHHEPGEELPQADIILHPRVPEGHYPFGELAGVGVAFKLAHALYGELPTHLFEFVAIGTVADLVPLVDENRYLVKRGMEEMRRSLSPWIQAMCEVASAEQATINEETIGFYFGPRLNAVGRLGEASPAVELLMAEDTAKATALAKQLNGCNAERKDIVKSITDEAIAFIEADKKIGDSLVLVVAGEGWNAGVVGIVASRLVELYYRPTIVLSLDFEKGTAKGSARSIEGFHLYNELAKNRDILPHFGGHPMAAGMTLPLEHVDELRTRLDAQARACLTEEQLTPVLAIDIPLKIDEISADAIEEIATLGPFGTDFPKPVYVLEDVEIATMRKIGAAENHIKMELTDGLEKLDSVGFNKGHLYHELTYGIKVSFTGDLQINEWQGRKKPQFMIEDVQTTEWQLFDIRGIRQTSRWLHTVPKEEAVFFAFRLETISYYQSLLGVPIELVDVELSNVEQTDYIVLLDLPHNVQLLENVLSKTAPTRIYAHFYMPDSQYFNGIPTREQFAWYYKFLKQRPAFPLDMHLPDLAKHTGWPLEALKFMTQVFFELNFVKMESGLTTVNMNAPKTALTEAPSYKQRSEQIEIEQKLVYAPYIELKQWFDERLNLYANTVS +>tr|A0A0C2NMI1|A0A0C2NMI1_9VIBR Serine--tRNA ligase OS=Vibrio renipiscarius OX=1461322 GN=serS PE=3 SV=1 +MLDSKLLRTELDDTAAKLARRGFKLDVETIRTLEEQRKSIQVEVENLQSTRNSISKQIGQKMAAGDKEGAEEIKKQIGTLGSDLEAKKAELDALMAQLDDITLSLPNIPSDEVPDGKDENDNVEISRWGEPKAYDFELKDHVDLGEMADGLDFASAVKITGARFIVMKGQFARLHRAIAQFMLDLHTEEHGYTEMYVPYLVNSESLFGTGQLPKFGKDLFHTEPLAEKVNDEEPRKLSLIPTAEVPVTNLMRDTISDEADLPLKMTAHTPCFRSEAGSYGRDTRGLIRMHQFDKVELVQITKPEDSMAALEELTGHAEKVLQLLELPYRKVVLCTGDMGFGSHKTYDLEVWVPAQETYREISSCSNMWDFQARRMQARFRRKGEKKPELVHTLNGSGLAVGRTMVAILENNQEADGRIRVPAVLQKYMNGAEYIG +>tr|A0A0B4FII0|A0A0B4FII0_METAF Src-like protein (Fragment) OS=Metarhizium anisopliae (strain ARSEF 549) OX=1276135 GN=MAN_04425 PE=4 SV=1 +MPAPTVEAPAVALSFANNFWGKEDAGVGPLLERMQSAKTTSDELKSFYSARASIEDEYARKLLHLSRKSLGSHEMGSLKTSLDTVRVEVESMAKQHQSIAAQMKSELEEPLAAFAGGMKERRKIVQSTVEKLLKTKIQQTQQVNKTRDKYEQECLKIKGYLAQGHMVMGQEERRNKAKLEKTQISLATANTEYESAVKILEETTTRWNREWKAAADKFQDLEEERLDFTKSSLWTFANVSSTVCVSDDASCEKIRLSLENMEVEKDIIHFITERGTGQEIPDPPKYINFCRGDVNDGQSEVSEDDNYSVAQFPRSINPAFRSSSPQPSTFESHHDPNSMLANNLAHREPREPPQPTSREAIVTPQKAPPPMRNSVDEQRRGQGQQKPPQYDVNQHGPLAAVPHDPYPMDGMTMLCRTGPPGPQSDRSSQPHSARPSSRESHSDYSIPTSLSSVEPPSGQASPVKQEPVETRSPEKRVLKKKSGFFQNHSPFRRKSTKEVQAPSQNRSTWHVAPGRAELERTASPEPIDANASLALGVGQNVLPVTTPDTRRRPGQGREQDVDQSDPIAMALAELKDVNLGKQSSLRMSADHYHGIATPGPGADPRSGRSSGREAPPSYNTQASVSRLGVPPPAVTSRAMKEATKKATDQSRAVFGNAGNRGASPASRPATRGSDMPRAASPAPTRSASPQPRMSGDSRYRSASPNPYSGHHRNASQASVSQQRGSGQGYYGSGSPHGSTRGSVRGASPASFRGDYDRPRSSYGGGSDMAVQLAPAGDDRYGSQRGRGAVDLYDGGSRPRSKSVADPSRQYTRDGRPILHFARALYMYQAAIPEELGFAKGDYLAVLRHQDDGWWEAEVHGGNGRVGLVPSNYLQPC +>tr|A0A1H6SIL1|A0A1H6SIL1_9SPHN Uncharacterized protein OS=Sphingobium sp. AP50 OX=1884369 GN=SAMN05518849_101367 PE=4 SV=1 +MLRRRAQGWCPDTQRAFIDALSRCGVVAQAARSVGRSPRSAYHLRRRAGADSFAAAWDWALDMGLDESRARAIALIRGKRVRPIVRRGEVVGQRTDNDPRLMFAALNALGADQDGRRAAMPHRQRMALRHVITTLIDNGPFSPEEWARLVPALAAVAGASPRPDALS +>tr|M6A221|M6A221_9LEPT ATP-sulfurylase small subunit OS=Leptospira sp. P2653 OX=1218600 GN=cysD PE=3 SV=1 +MNRSRLTHLEQLEAESIYILRETASQFERPALLFSGGKDSITLVHLALKAFRPGKFPFPLVHIDTGHNFQEALDFRDELASKIGEKLIVRYVQDSIDQGKAVEEKGKFPSRNGIQTVTLLDTIAEFKFDACIGGARRDEEKARAKERVFSVRDEFGQWDPKLQRPELWNIYNGKIGPGENVRVFPISNWTELDVWEYIRKENIALPSLYFSHKRQVIYRENLLFPVSKFITIDSNDRVEDKVVRFRTVGDMTCTAAVDSQADNIDDIILEIQTTRTTERGSRLDDKRSEAAMEDRKRGGYF +>tr|A0A438U9M4|A0A438U9M4_HELPX 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine pyrophosphokinase OS=Helicobacter pylori OX=210 GN=folK PE=3 SV=1 +MMREILISRFFPSLFKKRLDFSNRVVLGLGSNLKNPLKILKNCFLYFKNHSKIGKIFSSPIYINPPFGYTNQPNFYNATIILKTSLSLRHFFALVFYIERRFGRARKRDFKDAPRTLDIDIIAFNQVILRQNDLTLPHPKWNERDSVLVPLALQQILFKKGEW +>tr|A0A4Y7J8A4|A0A4Y7J8A4_PAPSO Uncharacterized protein OS=Papaver somniferum OX=3469 GN=C5167_014818 PE=4 SV=1 +MSRGILVWFISSNLRFLDLDGGDCDNQLGAVEYVEEYFISSSKSQSLVRDYLGIHSLKSMRSGSLKLLGMSSMPIASEYEEIWAPEVEYLGIHSLRSMRSGAVALREVRLEKNSLFWKKCSSLTTLTKQATTQFRELRGAPPGSVNWEMQRQATARFCELSGGQMQLHTGLAFVFLLQIQLAELLKWNAGASWRCPAFGQRA +>tr|A0A2T0RHF1|A0A2T0RHF1_9ACTN Transcriptional regulator OS=Pseudosporangium ferrugineum OX=439699 GN=CLV70_12320 PE=3 SV=1 +MRVRLLGTVDVHAGDEFRQVPGLRRKAILSVLALNAGRTVSAGRLLELVWGDRAPATGLNTVQSHVSYLRRILGARSAIVSRSPGFLLDLPGDATDAATAERLIHAGLRAADPARAAEHLRAALGLWRGSPLQGVTELPWLAEQARRLSKLELEARRALAEARLALGEHAELVPELQALAAQHPFDEQIQAQLVLALYRTGRQSDALAVVREVRRLLATELGIDVGSALSELETAVLQHDVAPARERIEPAPVPPAGPELVGRGRELGALLRHLDHRRPSGAVVPVVSGDPGMGKTRLLTELAVRAGQSGRTVLWGRAAEFEQQVPFALVMDALADHLAGTDPRRLDAVAGTDRALLREILPMLPAPENRTAARQAVEAERYLLYRAFRCLLEALAAPPGLLLVLEDLHWADQGSAELLAYLLRHPPRGPVVVAVSYRPRQMRGPLRQALGRAIQDGSADLVDLDPLSPAEADTLLPAELAADRRQHLYALSGGNPLYLLALAREGAAGPGEDDRSLGEQDPVPAAVREALRGELDALSAAETVVARAAAVVGNLAEVPLIAATAGLPEAEVSRALDALVGHDLLRPVPRTGRFQFRHPLIRRIAYDMAGPGWRVAAHGRAAAALARQGASAPEQAHHIESSARRGDPAAIDILRRAAAEVLHSSPGTAAHWLGAALRLVTDDHPPEVAQQLLGLRAQSLATSGQLAESREVLHRLRQAIPAEVTPERARLASWCAGVERMLGRHREANALLRAELARVADADGPVAATLLLALGARYIQPVPPGEPDWPRRALAAARRAGTPWMVAEALLQCVYADQAAGTWDASTRERLDEAAALVDARPDGELLELLHMVVWLATAETVYERLDDATRHVDRALGLARAAGQMYVVPGIHLLFVGLHMARGDLPAASRSLDEAREAVALAGTDTMMSMVLSRECTLAALTGDGKLAHRAGTEAVALAGRRGDYAAGVAVQALATAHLQAGEPAMCSSLLDGTEELPSTPTTRGTLYETLALAWSAQDRPEVAATWADRAEREVAVCPTPRRAGLAELARAHALRPVSASASAARAAAAARLFAGVDDRLLGGQAHLHTATALAADGQPGRARRELDRARTLFLSCGATALVDRTDQEERRIRR +>tr|A0A4R4X727|A0A4R4X727_9ACTN Cupin domain-containing protein OS=Nonomuraea diastatica OX=1848329 GN=E1294_00855 PE=4 SV=1 +MRRLAAISGATAGSTRLWMGQTHVAPATRSSDHHHGASETAIYVVSGTPAFVFLEDAEEVRIEAGPGDYIYVPPYVPHREENPDPSQEAVVVIARNTQEAIVVNLPGLAG +>tr|A0A7W1Q9P6|A0A7W1Q9P6_9ACTN Response regulator transcription factor OS=Actinobacteria bacterium OX=1883427 GN=H0W90_11130 PE=4 SV=1 +MRVLIVEDELKMASLLRRGLVEEGHAADVAPTGEDAVWMAQSHPYEAIVLDVMLPGLSGFETCRQLRNVGVWSPVLMLTARDGVDDRVAGLDAGADDYLSKPFSFAELLARLRALVRRGGGERPTELQVGSLRLDPASRRAWRGQVEISLSPKEFALLEAFMRRPGQVLSRLQLLEHAWDFAYENRSNVIDVYVRYLREKVDRPFDTDSIETVRGVGYRLSEDSDA +>tr|G3MBJ6|G3MBJ6_9CAUD Gp134 OS=Bacillus virus G OX=1084719 GN=134 PE=4 SV=1 +MKSSKRVDERIVKDYRIIDSAWDEFSDYVGEHNIGTPLTVKQFEEIFSKLNRNNKFSPMKDYILESFRNDCYAWPFVEKNQ +>tr|A0A5B1MAL1|A0A5B1MAL1_9MYCO SDR family oxidoreductase OS=Mycolicibacter arupensis OX=342002 GN=E6Q54_00665 PE=4 SV=1 +MSVLDKFRMDGRVVVVTGASSGLGVYFAKAFAEAGADVVLAARRVEKLAQAADLVAAAGRVGLPVATDIADPDAATAMVEAAMERFGRVDVLINNAGIGTAHPATRETPEQFREVIDVNLNGAYWAAQACGRVMQAGSSIVNISSILGLTTAGLPQAAYAASKAGLIGLTRDLAQQWGGRKGIRVNAIAPGFFASEMTEQYRPGYLESVSGRIVLGKMGDPEDLAASVLWLASDAGGYVTGQTIAVDGGFTIN +>tr|U4PPA8|U4PPA8_9HYPH Putative pyruvate, phosphate dikinase regulatory protein OS=Rhizobium pusense OX=648995 GN=BN877_I0001 PE=3 SV=1 +MENKKSFFHLHLISDSTGETLMSAGRAVSAQFHASMPVEHVYPMIRNQKQLAQVIDLIDKEPGIVLYTIVDQQLAEFLDLRCHAIGVPCVNVLEPIIGIFQTYLGAPSRRRVGAQHALNADYFARIEALNFAMDHDDGQMPETYDEADVVIIGISRTSKTPTSIYLANRGIKTANIPVVPNVPLPESLYAATRPLIVGLVATSDRISQVRENRELGATGGFDSRRYTDRATIMEELKYARALCARNNWPLIDVTRRSIEETAAAILALRPRTR +>tr|A0A1G9FD20|A0A1G9FD20_9SPHI Peroxiredoxin (Alkyl hydroperoxide reductase subunit C) OS=Pedobacter sp. ok626 OX=1761882 GN=SAMN04487898_112159 PE=3 SV=1 +MAIVGKKFPSVSIDAMSEMGDDLKINIFEEAVSKEKKVILFWYPKDFTFVCPTELHAFQAALPDFEKRNTIVIGASCDTNEVHFAWLNTAKENGGIEGVTYPILADTHRHLANILGILDQDVEYDEEGNESFSGSNVTYRATYLIDETGKVFHESVNDMPVGRNVKEYLRLIDAYAHVQKHGEVCPANWEEGKEAMNANRTGVAEYLSAN +>tr|A0A2T6ZBV9|A0A2T6ZBV9_TUBBO Interferon-related developmental regulator-domain-containing protein OS=Tuber borchii OX=42251 GN=B9Z19DRAFT_1104137 PE=3 SV=1 +MSELRRKALGSGKTVSRKAASRQSSAASSRANSRNTSRAGSRAASRANTDDEGSLSDETTFSLGSVDELATIDAELDETTTLWQEELGDRVNQIIERKKSSSAGREESLTAYIRILCAKYAKDEILPKKSELLDAFVRSFKQGKTEKEALLAAKALAITIVTDPEDTLFDKLAPDFKRTITDHASLPLKNALIHALGAVTFYGGASAAETELIMDFLKDIVESDGHDIGAGDDAGVVAAALEEWGNLATQLDDAEEITRRSMSFLVDQLDSSEVLVQVAAGENIALLYEKSYTEAEEDEVVEDHSESGLGKNFIQKYKPYPRHDVLIHTLRGLSSGSKKYLSKRNKKTQHSAFVDILHSVENPMKGPRYSEALDKDNRVRGSRMTVRIHKKGLLRVERWWKLHRLQHLRRILAGGFLNHWIENPVIFESLSLFVEEI +>tr|A0A811ATS3|A0A811ATS3_9GAMM Alpha/beta hydrolase OS=Acinetobacter variabilis OX=70346 GN=RYU24_01130 PE=4 SV=1 +MSHPLSSLEYQPDILGEGYEQATLEFPPDTEGTVVATLIRKKTDQPTSKAVLYIHGFIDYFFQTEMAERFNQQGFDFYALDLRKYGRSYMSHQKLYNVYHLSEYDAEISQALEIIGQEGHDTVLLSGHSTGGLITTLYAAHHPDRPLIKGLWLNSPFYDFNMTPFEKKFLVPKLSRLGKRFPEMLFPSRLNRHYVPSLHISYQGEWHFDLEWKKPSYHWVRLSFVHAIHEAQKEIHQGVRLNIPTLLMHAHKTTYPLRFNRNAQTSDVILQVHDMIEHAQKIQGDVQLCSIQNGVHDLVLSEKPVREQVYQQLFQWLENKAL +>tr|A0A3N5TH00|A0A3N5TH00_9DELT TPM_phosphatase domain-containing protein (Fragment) OS=Desulfobacteraceae bacterium OX=2049433 GN=EHM30_15800 PE=4 SV=1 +SINKAESETSGEIAIMVLDSSDSYSEAETFGAFVLSGLFSLMLELIISYLIGSEPGWGHGGSGFPYGFLADAAKSASIWTYIPMVFVFYFAFKFLLSKAPEIKILFMSGRRIEETVRERAVMAFYEKGLYKTRDETGILIFISLLEHKVWILGDRGINAKIAPDFWEKIAAELSAGIGKKEYGKAACQAITKCGEELSRYFPIKKDDTNELTNEVIL +>tr|A0A6H3NV40|A0A6H3NV40_9LEPT ParA family protein OS=Leptospira bandrabouensis OX=2484903 GN=EHR08_11550 PE=4 SV=1 +MKIITVASLKGGIGKTTTALYLSQALRSLGKKILLIDLDQNNNLSNFMIKQFPKGNDLDEKNILNMLKGYAEISEFIWESSDGIDLIPAKKDIKNIDIEFATDPILGLRFRNDLKSLNYDFILIDAHPATNTGLRCAILASDEIICPVEPSVWSSQGIDDIEIERQNASKAMKNEIKLRALISKCTLKKAEELKPILKKKGYQVFQTAIVNSEAIKVSNDISEFLNEKTGKAFPMFLSLAKEILK +>tr|A0A2T6K4E5|A0A2T6K4E5_9RHOB NADPH:quinone reductase-like Zn-dependent oxidoreductase OS=Yoonia sediminilitoris OX=1286148 GN=C8N45_1303 PE=4 SV=1 +MKALVYQKFGPPENLVISDLARPEACSHEVLVRVAYAGVNSVDWKIGAGRIDHYRNAPFPLVTGRDFSGTVVEVGSHVRNFSVGDAVIGCLPGPGGSFAEYVATDALSLARAPSNLTLAEAASIPLVGLTCWQALVGSAKLSKGEVLYVLSGAGGTGSIAVQLGAALGAKVITTCSERNRDYVTGLGANYIFDYSKPNFTDDLIAEFPQGVDVVFSNVLGPLHRDAYRTLRPGGILVTIGESPLPAVAEKHGVDEIDLIVQPNGKQLTEIVTYLENGTIKPPSVSIHALVHGAHAMQNISEGHVRGKIVLQVS +>tr|A0A6G0Z856|A0A6G0Z856_APHCR Dopamine beta-hydroxylase (Fragment) OS=Aphis craccivora OX=307492 GN=FWK35_00015581 PE=3 SV=1 +MKKRSASQRSFGHRWTTVVAAVVVFLSATCLVGHAGAEGRRVYTAPLDDTGRTAVYWTVDYGSRTVKFEAHFSGSGSPFDWFAVGFSDRGNHSGADFCVMWVDWKGVTGMLDTWTNDAGRISVDERQDCEEFNVARFHGGGTALTFTRKFDTCDDERDYLIQDGTTHIVWMVGGGPLFAVEGLLVSQARAKGMQRVQLLKPETPQVKLPNKVSKIDVLASKVNIPAEETTYWCHVMKIPLDLSFKHQIVRFESVIEESSRGVVHHMEVFHCEANANSRIPLYSGPCFSEKRPYKTQVCKKVMAAWAMGAAPFVYPEEAGLPIGGPDFNNYIMLEVHYNNPGLRKGMVDSSGIRLYVTPNVRKYDAGVIELGLEYTDKMAIPPKLEDFTLSGYCIAECTAV +>tr|A0A7R9IK79|A0A7R9IK79_9NEOP Hypothetical protein OS=Timema tahoe OX=61484 GN=TTEB3V08_LOCUS7834 PE=4 SV=1 +MCQGLYRLLYVSWEGVTPRSRRTTRVTESLRVTEVSRRMEEPDSYYTSNYHLLEAGRILQPEGDDYKLVFISSDSSSKEEEGSYSDDADSSSTTSSVTGVPGFTLDDCDWDYFESSSMVRPVLKDWSWSNNKVSPLGADASVDQQQHSFGFDSPQLSSRRLIYSRPSRGDVDPMLETEEKKTPPARGVRSELSSSPLFLDSPLSSETGSSFLHRRRSPMNMSGGSYIEAPVSPSRYRRPLFQLSRGDSARSSGERSVEEITSSDHYYYGCPPPQQWKVRVGGEMEGKVEKCPPGGIVTEQRTSHSATTAERVRSPSCETCGGPSALFPPGVYGVPVPVPIPVPVPIPVLIPASLWSVGGQHATTTGDTVSVADIVYVGSSGAGDEPTNAGSVRIRIHSFQRPSHGLAGPWCAWPVDNSGVLISPMITDNSAALRGEAEKVPVGRVPDSDRELSDGVHSRGPQSEHLAGDGVHVHTLKTTSSNSHEGETITNSVNFDIMINSPFVELKESEVSCKVLLSVDKDRSDDSATAHECDKDVGDNKIKTNSSVLEQTEPEIEEMSAGKTLPTEPELNTSQSEICASYLTKVTYCEDILDSNMKTEPSDAVSEKSDDEHNSGIVLVNFKPIPSESYSDSLTERHRFIITPEPMSTSATGSDTDNDHPNRRKGYTADKNLLKTKKRRLRKCLHSNDDSKFLPRERMSSNCSSDSGSSADETCVKTPVKRKYYLAGGDMSESGDDAASDVSSDDSTAGHTTDNEEGHFSRVFVINSTQSTSEEENDDSDTGENKTIEECTVLMSESVDRSCDESNEVGVVVQLKHIMALSDEEDMSSHHSEVPKAISTSDTGIVVLKHVRDIPEEHSFASQVPWRSDETVQVLKTNNGVSRSEGKEETPERSTNCLNNICLPTAAGELNNSVNIDGEPEDKCFVHHNEVISKLVSDLKNEVDKMKCEFVARASSVSTGPDKRSITPEESGMVARLQEHLSSEHAGARLVLPPSGNSENLTPPPVDGWPSPPPDTATSLGEVESNQDPSSNVTERETSGIAASASEVDNILARSAVVINTSIKSDLSTFHEGSGDREVIKSEIGENCLSLQDICGGPCSRTNPNSSRDSGDSSPTSPAPTDNTDQTKSPVLHLENTPVENEEVTSETPGALVELYLIDEESPIAITKDTLGDQSAAITSGSSPADLIDEESPVAITKDTSGDQSAVITSESSPADVDTPNISVNTDDLNIPQIEKNIFSDITPVSQKSKEHNLEISSDQTVETLSNSSIRYICKESETGKSSKTIQNELPGSDHAAPSIELVGSESKSGPTDCETSITCDELSGTESFNDYKLKGSFKESSDIEDDRDIEHNLTTEEISCPQVVDSEETGVKFEGNISCNNDDVALDCSSVYSKSGSRDHSQSLEEVQTNTLEDKKGPSPVESFRSGGDTVTAAAESASVGRETTGEREVGCQGVLSVASEPLTVKQRRGDVCPEAGAAAVGSHLSRYTSLVMITQDNNSFLKSQETSPSVVSVVTSETTTVVPEERNGDIIVSHTNWEEDDDAIHEKVSGLAGYFTLTLETAGSTPSMKRPLVTKNKHFMNEYSPPLPAQESGEGESEDLVKVVTGGDTLSAVVCLEEGLADDDSWVEEMDDRNHEDEDFATTTPTEDSSSGDEACSSASYGDREAELRGYHRAALDFTLHTIVEESCEESDDGPAKRKKPRPTSASELEKYFFYELGGGSSGSPGSRNLNSFSDSCSSIYSESLESLRGDDVTGNGEDKRDPAEMASSRLEKYFLKEFMGFAGDNYRDSDGSGSVGSDSEGRPSPEQRRKRLVRARGTGRQHSSSLDNLVASEHSGSEQQTTDTLVESEGSSTETDTHDELGGSMTFEKPDGQFDTVKRKKKKRSVAGSSSPAISDLERRPTPTEFLEKTLTSSNVEDVPQAGGEEDMSSDEDGSKTPQPEFLLPADLSATRNKQQSRDSGFIGSCDDLLREQRSQSDSSSCSNSAEVAQKTKTGSDGSGSGSDHDPPSGERPVTDHAKSESKATQSNKNNRKPSISDDDKSQSCTLSMTSTSVPPTTALTRKDSFNNWSSDEETNLMMSKMRAFFKTMVIAANNTNGPQKTPQTSPSLRPRGMKPPQLVYFENELTRLMKTVPGIRDDQVKEIVEYLSSEDTWSDSYDSSDYTSSDLEGAAAYYQHAMNRSELQEEISASCQQIINKFDTSVEEDNEEDKNGKVSDKSVDNEPSGIRRDTAFVYQKLVASFNKMGSGEQSASSDTNSSPHSSPPLIDKVMHHIGSRLVALMHEVSGGEGAGEMTTSSPKVRYHHHRRLQHKMSVTSTTTEEEDDSHTDTESDSNARSGNELGHDLVGSSTYNPLLARSKSHDLLLEKESRNYSHYHPQHKESSSSGVSDIAEEREASDYERFSWRGSFESALMTSDSRTKLSLLSCGDGSTSSSALALAAKRRSAGDLLFASSSKSSSREQLDRVRSCGSIGGNNAGSVEDKIWGTCNRRNSIPDASAGSGASADGDDDDDDDDDDDDHDDDLRSGRSTTLPRSLQTSCSAGTNSLPRLPTTGPMSSSVPNTPNIHKAHSMHLFLQSQANVKSARYRPPGFNRPAAPKRAVSAPGMQPPHPRRDAARRRPQATSQVLETVKFYSSSKWLPIHDCEALLVYSLGYIPLSTDT +>tr|A0A6J2QCM0|A0A6J2QCM0_COTGO AP2-associated protein kinase 1 isoform X2 OS=Cottoperca gobio OX=56716 GN=aak1 PE=4 SV=1 +MKKFFDSRRELVSSGPGSGVGGGGAGSGGGGTFIGRVFTIGRYQVTVEEIVAEGGFAIVFLVRTHQAVRCALKRMYVNNEHDLQVCQLEIQIMRDLVGNKNIVGFLDSSITAVGAGDVWEVLILMDFCRGGQVVNLMNQRLQTGFTEAEVLQIFCDTCEAVARLHQCNTPIVHRDLKVENILLHDRGHYVLCDFGSATNRFQNPQTEGVPVVDEEIKKYTTLSYRAPEMVNLYGGMIITTKADIWAMGCLLYKLCYFTLPFGESQVAICDGNFTIPDNSRYSQDMHCLIRYMLEPDPDTRPDVYQISYIAFKLARRECPVPNVHNSPIPAKLPEPVRASDAVAKKSQSKARLTDPTPTMETSIAPRQRPKAGQAQPQPISGILPIQPALTPRKRPNVAAGGPQAIGVGINVPTPAAAAVQAAAPQPAQTANMLSQPTPQHQQLLMKQQQATPFLSPQSNQQRQLIQTLQQQQQTSSQAFTLLQSKDKPVPPVIALQLHHRQHLAPVHETAASHLTPIPESAVAGPAADPEMAGRVIHKVGSLTPPSSPKMAPKSGHRRILSDVTHSAVFGVPVSKSTLLLQAAAAEASLNKSKSASTTPSGSPCSSQQSVYHPGDGDAQLALTAPNIQPSWNPFGDDNFSKLTAEELLNKDFAKLAETAAPGEKVTGSSENLIPGINAFPEKLIEGLKSPETSLLLPDLLTLVNPFNSSAENSANVKSEVCVDSLIPGLEAPQAQRHSGQPELNPASMPDSLTGEDSLLGCDLLSLTSPHGNQSGSALPSSSSCSSAPPGCGSGSCLEELPPGQTASDSAFLMSCGEKGNGDEFDPIPVLISKNSNQDVQGESNGYSVLDEGRETELQEGDSQANESCVHSSDEEDDDDDDYEEEEEEEAHKEEQQDEGAIESHAAAHDCSGSRPLLLDSEDEEEPGPQLALHSSPHSSTVPTQPSTTFHQPTPSTFAQNHSQHVHEPAQGADAAAADVFLKAPFPIVQEESADVFANAPFPRAHTAAPQPFDVFSQAPFGKRKEATVAHPSYAVTPDQGVLGQVVQQPFRPQALAKYSRHFEGPVPQQPVAAHRVVSNVSRQAAVASVPVGPLHLWTSEVSAVDPFVSAPFHLKATQEKP +>tr|N2A2M6|N2A2M6_9LACO ATP-binding cassette, subfamily B, bacterial OS=Lactobacillus sp. ASF360 OX=97137 GN=C821_00970 PE=4 SV=1 +MDIFKKLGWFFKEEKKRYIIGVLFLALTSLANLVPPRVLGLMADELDKGHITWGQYGALILAIVAAAIVLYVLRYFWRKQIWGGAAELERKMRTRLFNHFMIMDKTFYQRHRTGDLMAHATNDVTAIQNVAGDGVLTLVDSLIMGLSTMIAMIVFVDFRLTIVALLPLPFLAWGAWKLGDHLHVAFDKSQAAFSRLNNKTQESVSGIKVLKTFGQGKEDTAAFEKMVDETIKINKHVFVWDSLFDPLGTLIIGLTYAITIIYGGFLVKQNILSVGQLVSFIAYIGNMVWPMFAIGYLFNILERGSASYDRVEKLLNEKSLITDENADETLTAKDIEGDLDYNIKSFAYPDEKDISVLKNIDFTLKPGQTLGLVGRVGSGKTTIIQLLLREFDNYEGKITLNGHDIREIPLNVLLRQISYVPQNNYLFSTSIQNNISFSQIDADNNQVVEAAKKSDLHNDVLQMPCAYQTLVGENGISLSGGQKQRMSIARALLKHSQILILDDALSAVDAKTENEILKSLKKERKGKTTLIATHRLTAVKNADLILVLKNGRIIERGSHDDLLQENGWYADMWRRQELEEKVGDENE +>tr|A0A1J5KGW7|A0A1J5KGW7_9PROT Peptidase_M14 domain-containing protein OS=Bacteriovorax sp. MedPE-SWde OX=1860085 GN=BM556_01360 PE=4 SV=1 +MNLLKNEFEFIEELVKRSPDIVDHEVLDSVKFKNKSYDIHSFSIGPKDPEVPVLALFGGVHGLEQIGSHVVIAYLNYVIERLHWDKNFAALFEKVRLVSIPIVNPVGFKNFRRSNGNGVDLMRNSPISSKEKVFPILGGQLISSKIPWYRGDTNQMEKESQLMCDFVKDNVINSKNAISIDFHSGFGFKDRLWYPYACSKKKFDGIDNLKRIESLLDRTLPHHIYKVEPQSDHYTTHGDLWDYLYFHKKEHHPTMNYLPLTLEMGSWIWLKKNPLQLFSKLGLFNPIKDHRFNRAMRRHFLMIDFFLKAAANPDEWTA +>tr|A0A6H1WSD3|A0A6H1WSD3_9BACT Ribonuclease 3 OS=Thermosulfurimonas marina OX=2047767 GN=rnc PE=3 SV=1 +MKELYPRLPELERRLGVRFRDPGLLVQALIHRSYAAEKKLPPGADNERLEFLGDAVLSAVITHLLFERFPEASEGELSRMRAWLVREERLARIAERLGLFEFVLVSRGEARSGGPKKASILAGALEAVIGAIYLDGGYGKVFECLRRLFARLLPQARRGMEADYRSRLQELTQALFRETPTYEVVSEKGPSHAPIFEVEVRVGERVLGRGKGRSKKEAAQEAARKALDILEKEK +>tr|A0A371WXQ8|A0A371WXQ8_9HYPH Transposase (Fragment) OS=Fulvimarina endophytica OX=2293836 GN=DYI37_19485 PE=4 SV=1 +MARGDLTDEEWAVIGELLPSERGRKSRPAYDNRRFLNGMLFVLRAGCPWRDMDERYEKWNSVYVRFRRWAEQGVWDALLETLVETGLTDDWQ +>tr|A0A7X8YS75|A0A7X8YS75_9BACT Uncharacterized protein OS=Acidobacteria bacterium OX=1978231 GN=GXY47_00410 PE=4 SV=1 +MARTMILLALIAAFCTTAAANTDATCDRACLEQWVDRYLAAMRDRDTSPEMFAPGLKFTEDGVRLPFGNEGLWHSMSGVGKYRFYVPDVEAQQVAFLGTVREKAPRSREESLSALALRLKIRNDRITEIEQIVIRPDSVNSSAGDFPPTGPAVEAMGAPHPVFAESIPEAERMSRKDLIETANHYFTGLENNDGKGYYPFTDDCVRFENGVDVLLNTNKETGEQTRTTCKQQFEEGVKGIVTRIRDRRFVAVDREKGIVFSFAFFDHDFIHWTWQLAELFKIENGQIRRIEAIFHRAPYGMNSGWSSFEKGISNEIQAP +>tr|A0A1L3I1X5|A0A1L3I1X5_9RHOB Glutathione hydrolase proenzyme OS=Phaeobacter porticola OX=1844006 GN=ggt PE=3 SV=1 +MKHLFWAGILLAATPAWAQEAADAVAPEGAAETADAGFAAISEEVAAAIEAKEEGTPVEADNWMVAAANPHAVSAGAEVLRAGGTAADAMVAVQTVLGLVEPQSSGLGGGAFLVWYDAATGEVTTLDGRETAPLAATPTLFQDDSGEPLKFYDAVVGGRSIGTPGTPALLEAAHRRWGRAAWPGLFTAAIDLAEDGFAVSPRLAGLIEKDADRLSRWSDTADYFLPGGTPLAVGSTLKNPAYADTLRRLAAEGARGFYSGPVAEAITSAVRGAEGNPGVLSAMDLALYQVKERPAVCVAYRAFEACGMGPPSSGALTVGQILGMLGNYDLAELGADNPDAWRLIGDASRLAFADRGRYMADSDFVPMPTQGLVAQDYLATRATLLSGDDALPAVNAGAPEFDHALLLADDESIELPSTSHISVVDQYGNVLSMTTTIENGFGSRLMAAGFLLNNELTDFSFRSHREGVPIANRLEPGKRPRSSMAPTIVLKDGEPVLAVGSPGGSRIIGYVAKTIIAWADWGMDVQQAVALPHAVNRFGTYDVEAGTSAEDMTQPLTDMGFEVNARDLTSGLHLIEIGDGLKGGADPRREGIALGE +>tr|A0A5B7FTI9|A0A5B7FTI9_PORTR Uncharacterized protein OS=Portunus trituberculatus OX=210409 GN=E2C01_042056 PE=4 SV=1 +MGWYEARSVGSLQELGMGMRMENFQQVAADIAELEEGGLERGWEVGEELVWDMVGTQ +>tr|A0Y2I9|A0Y2I9_9GAMM Uncharacterized protein OS=Alteromonadales bacterium TW-7 OX=156578 GN=ATW7_12101 PE=4 SV=1 +MHVYTFAFKNIVDLYLSIGFNQVLTYTADLHVLFDMYKHRNIVALEYP +>tr|W7X7N4|W7X7N4_TETTS Uncharacterized protein OS=Tetrahymena thermophila (strain SB210) OX=312017 GN=TTHERM_000096738 PE=4 SV=1 +MVMSNKINNVQDALLKIATFVINSNVVSNAKVDISYLTIHRFVLKIVELDIIYQIIMNVWRVIKLVSLAKVQQTQIAQLAKVIYISHLPAQNVHNAKTNNIQTIKIIVKVVSPFVRLVTAHQANNVQAVKISQLQAIYHLNVLLQINNIQNHYNIIFKMALSVLKYQVKI +>tr|A0A5S3TR38|A0A5S3TR38_9GAMM tRNA-uridine aminocarboxypropyltransferase OS=Pseudoalteromonas sp. S4498 OX=579562 GN=CWC29_08935 PE=4 SV=1 +MKRNTCPVCRFPTNTCVCSYIGNTISNTTQVIIIQHPSEVKVAKNTAKLLALQLDRFTLYVGENTADFEELINFCRLNHVAVLYPNSHAKTLTTEYNFDQTLDAIILLDGTWKKATKLYNLNPWLSQLPSFQFDSVNASEYTIRKSKHEYSLSTLEAAAQFLEIVDQCETADLYKLQAGMVKEQMKLMPDDVKARY +>tr|A0A859QKW3|A0A859QKW3_9HYPH DHA2 family efflux MFS transporter permease subunit OS=Ensifer mexicanus OX=375549 GN=FKV68_04155 PE=4 SV=1 +MNRIVPLILAIALFMEQMDSTVISTSLPAIAHDIGVGPITLKLALTSYMVALAIFIPLSGWMADRFGAKRIFRTAILVFIVGSVLCAISNSLIAFVLSRFLQGMGGAMMTPVARLVLVRGAPRSELVSAMALLTIPALVGPLAGPPLGGFITTYFSWHWIFLINVPVGIAGYVLSGIYLPAMERRNPPPVDILGFLLGGIAASGIVFGLSVISLPALPTSVGFASVSAGIAATLLYIVHARRHPAPVLDLKLFRNSAFRAATIGGTIFRISVGAIPFLMPLMLQIGFGLNPFESGLITFVGAIGAITTKFLARRVLAFAGFRTTLIVAAVVGGLLTFANGFFTPATPYLVMISILLLAGFARSFFFTSINALSFADIDDADASKATSMSAVLQQISLALGVAVAGAILEVQTSISGGPLGLEDFHIAFMIIAGANLLGAIPFLTMAKNAGASVSGHRLQMREAETTAGK +>tr|A0A1H3LQ38|A0A1H3LQ38_9ACTN RNA polymerase sigma-70 factor, ECF subfamily OS=Asanoa ishikariensis OX=137265 GN=SAMN05421684_0874 PE=3 SV=1 +MVSLRDGGDLDVVPGLGPPGQTSFEEFYAAHFQSLTIQLYAYTRDLPGAQDVVQEAFCRALSRWKHVVDYDDPAAWVRRVAWNLATSRWRRTRTAAQFLRQQRPEHVAEPSPDRVALARALAALKPDHRKALILHYLADLPIAEIARQEGISENTVKSWLHRGRAALATQLSEEEADSA +>tr|A0A0M1JIZ9|A0A0M1JIZ9_9GAMM Uncharacterized protein OS=Achromatium sp. WMS3 OX=1604836 GN=TI05_02375 PE=4 SV=1 +MTETTTPQIISIGPENTINEVVVFTSHAQIKRQITTPVQLGTNRFLIELHAFEVDADSLQAAVYGTGEIISVQYKEISVTEAETKQLDLNELKAQQHQLEDQRRTLKYTLEDCKKQRAFVDSALKQVETRDVLGKINIKELFENLQYMLEIVDTTYAKLSQQELDIFKKTQAIEEQLNLVQQQLATRPDVPSTHKIVEVLFNSKTSEKIKMEISYIVNYAIWKPFYKVDVTQDLTNLTIMMFAHIEQNTGEDWQQVKLSVSNAMPIQSTRLPELKSWHIQQPDIFECSTDPWDSNTQQAPLNGVQLDGSSNMEELTTSNLSDFPGSEVHTDDFASEADPLEEADLYIAYGRYEHAETVLLEYIKNHPNSNDAKNKLRALYLVTRNTQKLRELARNHPGKTYLQEILQHIENDDTAFPSSAPAATFIQAQDLQSSLAFEFQLPTLIDIPANGNETLLPLFTKIPKYGFFYYTIPKQDPLVYLVCQADLSNEWLPGRMNIHIGGRFVGNTILDEKQAGQELLINLGSVQDVKIKREKYLDEVSKRMFKGMLDRSNALRKVEIRIVIENLKEQEIQIKILDAIPVSSTDTIQIKDVTMTPEPTLKDWQSQQGVMQWDLNIAAKSVIEIRMQFIVKYPRNCQIAHLNID +>tr|A0A7K5B0S4|A0A7K5B0S4_9FURN IL8 protein (Fragment) OS=Furnarius figulus OX=463165 GN=Cxcl8_1 PE=3 SV=1 +AILEGNGNLSCRCAKTTSAYISPKKYESIEIRPVGSTCRRMEIIIKLKAAGKVCVNPEAPWVTKLLKRIAST +>tr|A0A842V0K5|A0A842V0K5_9ARCH Uncharacterized protein OS=archaeon OX=1906665 GN=GF352_04095 PE=4 SV=1 +MVKKTELMKEFEEETDQHAVWGGKVTKAFKEWKKERRLKKLVICPWCGKRVKNYTTHQCSRRRRWKG +>tr|A0A1I8IUJ6|A0A1I8IUJ6_9PLAT TGF_BETA_2 domain-containing protein OS=Macrostomum lignano OX=282301 PE=3 SV=1 +TACLPAHSEPPSLQSTPTPPGSRSSIKTRPVGGRGEDPLLSRLFHWCGGSFCLSDQTCLEFERSRCLCLAAAICLCGCLLCADSAPAPTTFATPEPLVSSSTEEDAVSFLHKEFYSNAGTTKDGRVISDIIREELRRINLKYEGLSNMTVSTWRKFLRDAYMGVYLKQQSMSDRVTNLLYENLGISKGDVLLDVSEKEDLLTRIPDAILTRVYKWNARPMTRKFEESIFIGTPKTIQDLAGREHHGWSFIIDRSISEQRITKLSMSVHLTPKSRPLVKAMRISVYQLSNASDTLLSPGATRTKNVILSAAAMDEISVDFSADVKPIITKFFSPQSGDQIELFFLIECPQCKTKSDLNVAYLVMDCKVRIRETTGPEDQQNDRQKREASREPWPFEVAAASLFNNVTSSKDITKTQKCILEKMRMRHGQVSCCMMDFTYDLIHQSAVLAPRQLQINYCTGECHGQSEVNNAHSSLLQIFSHSQTSQLSHATREEISLCCVANTYRDFQVLTVVRKPGGGSNVQLKTIKDLSAETCTCA +>tr|A0A0C4EGC0|A0A0C4EGC0_MAGP6 Uncharacterized protein OS=Magnaporthiopsis poae (strain ATCC 64411 / 73-15) OX=644358 GN=MAPG_11851 PE=4 SV=1 +MEDLGSGHESLGAASLVARLKALGGSVMAEKKARVRDNWAMRHDCLCFQVLTACAHMPCLPSASRCSPRRARQIREAVYDRVSPRHGHIRHGPVCAIQPRVEALDVHLQTPTGQRAVIARHVVQTTSVGFQQLYKPSLAGEHDYKGGGIHSPEYGGGGGELGQDGAGFEVVMTARSPRYMETLQNVTHPTTLGLYDIGVKEANGLAGLAAAGFPVVDGAPVASVATVAFA +>tr|A0A178C6C2|A0A178C6C2_9EURO Clr5 domain-containing protein OS=Fonsecaea multimorphosa OX=979981 GN=AYO22_04817 PE=4 SV=1 +MASADGSPVDRKSKISKRSSNSYTSEEWRRHRPLITQLYFEEGRTLKDVAEYLKREYDFAPTERMYKSRLHTWGLDKKKKEHEMLDLVRQGLQQKGDDKDKVFLVRGRQVTLADALHYFNRKGIKDPSSLLEPQRSVSGDISSPEDADVKTPLSSNDDMLNATQDASDLEMTRSPMEMSEPEKPTLALRLRTSDVAAERLAMLQQALNIPELPPMPPFRTLSVESSVAQVTASAEDQRYQDVIFQNMQNHYMNLFTTRNLSIRNTTGTWTATSDDALADRFYYSMYHGYSFLWNGQRDRAFDNFYKAFALIEGLLKDDHVGFMIYIFDLIIRHDGTGYEEPLLMLLQHLADMAKTVFESEDHPIYVIAMHMHDATASRAWLAESTLRRLLDFFQDSIGYFHPETIALLQTFASGLLNREHFAEAAVRFQQLVDAFETTVNKRCYEVCYALRSTSEAFFHMEDYMRALQAIKASLERSQTLPRTEEREIYVRCLRGLAEISNKLGRKDEANETMQYVVDICRDAFGPEHPFTNRARMHLKTILKGDASSVSAIPPVVYRLGRGGSAAKYIWISRSSPTRLQA +>tr|I2NKN2|I2NKN2_NEISI Proton-translocating NADH-quinone oxidoreductase, chain L OS=Neisseria sicca VK64 OX=1095748 GN=HMPREF1051_1935 PE=3 SV=1 +MNDMTLYLIIALVPLAGSLIAGLFGNKIGRAGAHTVTILGVAVSAVLSAYVLWGFIDGSRAKFDENVYTWLTMGGLDFSVGFLVDTMTAMMMVVVTGVSLMVHIYTIGYMHDEKVGYQRFFSYISLFTFSMLMLIMSNNFVQLFFGWEAVGLVSYLLIGFYFKRPSAIFANLKAFLINRVGDFGFLLGIGLVLAYFGGSLRYQDVFAYLPNVQNATIQLFPGVEWSLITVTCLLLFVGAMGKSAQFPLHVWLPDSMEGPTPISALIHAATMVTAGLFMVSRMSPIYEMSSTALSVIMVIGAITALFMGFLGVIQNDIKRVVAYSTLSQLGYMTVALGASAYSVAMFHVMTHAFFKALLFLAAGSAIIGMHHDQDMRHMGNLKKYMPITWLTMLIGNLSLIGTPFFSGFYSKDSIIEAAKYSTLPGSGFAYFAVLASVFVTAFYAFRQYFMVFHGEEKWRSLPEHHSDDHGEEHHGLGKNDNPHESPLVVTLPLILLAIPSVIIGYIAIEPMLYGDFFKDVIFVNADAHPTMHIMKEEFHGALAMVSHSLHSPVLYLAIAGVLSAWLLYVKLPHLPAKIAQTFRPVYVLFENKYYLDALYFNVFAKGTRALGNFFWKVGDTAIIDNGIVNGSAKLVGAIAAQIRKVQTGFIYTYAAAMVFGVLVLLGMTFWGLFR +>tr|A0A233RNA1|A0A233RNA1_9ACTN Uncharacterized protein OS=Streptomyces sp. 2R OX=1883452 GN=BEH93_02570 PE=4 SV=1 +MKPRARALAVLSVVAMSIGGVTATATPAAAVGGCPSGKLCLYEGTNYNRLAVTSTSTQACVYLRNFGSGFGTGIASYVNNLPVNAVVYNYRGSTDTFAVAGTIRPGGFSSNSLGANFGVSGAVCMGGVSPS +>tr|A0A1I9YL31|A0A1I9YL31_9BURK Polysaccharide deacetylase OS=Paraburkholderia sprentiae WSM5005 OX=754502 GN=BJG93_10115 PE=4 SV=1 +MKRCKALVKEMLAGFVVVSGLAWFTRKLLWRDRVAVLLYHDPDPDTLDRHLTYLRKLCEFVPLTDVSAPGRDRPRVAITLDDGHAGNAKLLPVFIKHNVRPTIFLCSRIVGRPRSHWWLHPGSLRIGHERLKRMTNDERLAALAAQGYQQDGDDRPTGLSIEQIQAMREHIDFQAHTRFHPILTHCSDAESAAEISDSRREIAALLQQPCEHFAYPNGNYGDREVEFVRAAGFKTARTCDIGWNDQHTDPYRLRTIIIDDAASTLRFAAQLSGIAVFLRYLREGGGWRGKFPQF +>tr|A0A8A5HS67|A0A8A5HS67_ECOLX Uncharacterized protein OS=Escherichia coli O89m:H9 OX=2810406 GN=JSU13_20360 PE=4 SV=1 +MSGTIRALCHRAHQSSTTRDVALDRHVPGCEDILKEVIWAFSDFVRDHRGVYDPEARYPAGNPWYPVTGQF +>tr|A0A0M1MZY3|A0A0M1MZY3_9MOLU 50S ribosomal protein L17 OS=Candidatus Phytoplasma pruni OX=479893 GN=rplQ PE=3 SV=1 +MGYSKLRRTTPQRKSLLRSLVSSLIVNEQIVTTFSKAKELRRVVEKSITLSKKNTLHARRQASLLMFDKKIDEDKTVLQKLFNELSSKYQDRPGGYTRIIKTESRKGDAAPMAIIQLV +>tr|A0A1G7QPU8|A0A1G7QPU8_9EURY C2H2-type domain-containing protein OS=Halorientalis regularis OX=660518 GN=SAMN05216218_11345 PE=4 SV=1 +MWGYDTGNLMPECNYCDASFEQEGAYLEHLHTEHDESELSRIDRRRVADHVGDDEEGEFPTGPAIIGGTLLLTVGILVYVVFFLNIGGGSGPAAASGSVGDVEQTPYGLQTVHQHGTIDVIIDGNTLDFSQQQYQLQADAFHFESGNGVRWHKHAQGVTLEYAMSTLSIGVTDSSVTFQGTTYNESDPDTNVTVAVDGNDVDPSSYVLQDDDRIRIVANSS +>tr|A0A4R2BCF3|A0A4R2BCF3_9BACI Histidinol-phosphatase OS=Mesobacillus foraminis OX=279826 GN=EV146_107111 PE=3 SV=1 +MVKDGHVHTHFCPHGTNDPFESYIEKALSLGYTEISFTEHAPLPLSFTDPTPLRDSAMDHSDLEEYFAEVNALKKKYGDKIKINAGLEVDYIEGYEKETAKLLDKIGPKLDDSILSVHFLKDPFGYSCIDYSPDHFRYMISAYGSIEQIHVNYYRTLIHSILADLGPYKPKRIGHITLVNKFQLKFPAPRTFSEEITQVLKAMKEYGYELDYNGAGTSKPLCREPYPPAEVIDQAVSLGIPLVYGSDAHRAKELGQGLDLMSKKLENRQ +>tr|A0A5E4KIF3|A0A5E4KIF3_9ARCH Uncharacterized protein OS=uncultured archaeon OX=115547 GN=LFW28011_00478 PE=4 SV=1 +MADFEGLELNFTMANLPEYPPDFLPGISFGPLSRYFSGSDQKPPGGAEIEGNYLCNPFCSSCFLVNLHPANRVYAILFLHLKL +>tr|A0A210RZX5|A0A210RZX5_9BURK Peptide methionine sulfoxide reductase MsrA OS=Polynucleobacter hirudinilacicola OX=1743166 GN=msrA PE=3 SV=1 +MNETLDKNQTTLERATLGGGCFWCLEAVYQQVSGVKSVVSGYAGGARPNPTYEAICTGVTGHAEIVDILFDPQVISFRDLLEIFFVIHDPTTLNYQGNDHGTQYRSVIFTHSDEQSNIAHEVVKELDDSKIYSRAVVTQIDVAPTIFPAEDYHQNYFVQHPNQGYCMAVVAPKLAKFRAKFKALIAPHYS +>tr|A0A0M8WET4|A0A0M8WET4_9NOCA HTH hxlR-type domain-containing protein OS=Nocardia sp. NRRL S-836 OX=1519492 GN=ADL03_23475 PE=4 SV=1 +MHTAGFRNDIGVDQVECDTVSLPYRIGDKWTAHVLRALSPRRRRFTELRAGLPPVTAKVLSETLRTMERDGTVARESFDENPPRVEYELTGQGRKVLALLDLCCEWARENLVET +>tr|A0A519KUV8|A0A519KUV8_9CAUL Uncharacterized protein OS=Brevundimonas sp. OX=1871086 GN=EON87_17510 PE=4 SV=1 +MRALILCAAAATALSACASTGENTYANSTAELAAQCRERGGILVPTGRPSTGRPETDNACQINGGASRIP +>tr|A0A416ETJ7|A0A416ETJ7_9FIRM Threonylcarbamoyl-AMP synthase OS=Lachnotalea sp. AF33-28 OX=2292046 GN=DWZ56_01980 PE=3 SV=1 +MDTKVYNVEETGRCQEIFMEAGRVIRSGGLVAFPTETVYGLGGNALDARASEKIYAAKGRPSDNPLIVHIADLEELPDLVAEIPPMAETLMNQYWPGPLTLIFKKSLKVPPETTGGLDTVAVRMPDHEAAAMLIRASGVPIAAPSANTSGRPSPTRAKHVQEDLSGKVDMILDGGEVGIGLESTIIDVTGSDPVILRPGYVSLDMVKKLFEGVRMDKACTEPLKEGERPKAPGMKYRHYAPKAGLTIVEGGRAEVSSFINNHIQEESLAGNKVGVLCTEETAGCYPGGICKCMGRRADEETVAHNLFAALREFDEEEVSQIYSESFYGGQLGQAIMNRLMKAAGYHLIQV +>tr|Q7P5J6|Q7P5J6_FUSNV Uncharacterized protein OS=Fusobacterium nucleatum subsp. vincentii ATCC 49256 OX=209882 GN=FNV0999 PE=4 SV=1 +MVGNLTDVMEKFDNNNVYSSLGLNRFKFDKNIGFYNLDANLFNLGETKDLSFTGKMSLVSDKKAYGLLVYDKIDDISYGSTIDHDLYTNLSLTKDNNKFRLNARYDYLYDMDPGSTSSDLMSRNERIGANFLLKENGLSISYDKRRGDDYRNFNFLEEDINTSARKRNVLGIDFSYTPTTVAKYEFNNFENIKASLGNYKVGNYTFTPSVSYNFLDRKLDTAKDTYRATVLGSNRLAEFNRFENIVYNNSLERRADLNLSNDNETYRIGFGKTTSEIWSREGLFDGTYRKYENKSKFYEIQLGRQNLPLGNIGTFGIDGTFRQDEFDGSSDKTNLINLKLNNDLYLYKAENLKVTNKFKAEIQKYNFSGNKNNEEGRLITKSDYIKFDNSLIFDGKSTVTTYNIGYKSSKNPYGKKNKSAEQFTTGLGIKFDENTNLSLKYTDDKRFTSKINSGKNVNDLSMKQYSINFETKKYDLGFANTDIDFVGDDFSTITDFREDINEHRIRAGYKFDNSKISLSYAEGKDKLKVDDGRYLDRKNRMYSVAYNIYGDVEQDFIGAFKTYRYGNTRIADDIRNTDVYSFSYAYRDKRFEQEELMKYATLEYEKPKDQITNDEIEQIRAILDRKSSFYNQFELARIQDETFRIGNYKKTLSAYVNLEKNNKRYSQTGNLKDSLSKFSGGLTVSYNRLGIGYTFTQKASWKNSGGSYKWSKDTKEHELSVYAKIGKPSQGWKIKTYAMFYDNKNDSTSSRNRKRSLDSIGVEIGKEMGYYEWAVSYENRYKTSSKDYEWRVGVHFTLLTFPNNSLFGIGAKNRGGTASTKPDGYLLDRPSQLKNSY +>tr|A0A4Q3CBA2|A0A4Q3CBA2_9SPHI Alpha-amlyase (Fragment) OS=Sphingobacteriales bacterium OX=2044944 GN=EOP54_25765 PE=4 SV=1 +PAMMENSVIYEVNIRQNSPEGTFAAFSKDLPRLKELGVKVIWVMPIHPIGVKSRKEGLGSYYSIQDYKGVNKEFGTLEDFKAMVKAAHQNGIYVIMDWVANHTAWDHAWVTAHPEYYTKDKDGKMISPFDWTDVVELDFDNKDMRKAMIADMEYWLKEADVDGFRCDVAGEVPVDFWDAAAKDLNNVKPVFMLAEAEKPELMKNAFDMAYGWESHHIMNDIAQGKKTVKDWDTYMATKDSLWEKDDFTMYFTSNHDENSWNGTEYERMGDAAETFTALTFMVPGMPLIYNGQEYDFKKRLKFFVKDQLTKEKGKMYPVYEKLGALKNNNPALNGGKDAASYKRIATSADAAMLAFEREKGSDKVTFIANLTKVPQVFTVPVEGTFTNYMTGEKVTLTKGQKHNLAPWQYWILTK +>tr|A0A2G2HQJ2|A0A2G2HQJ2_9PROT Pyruvate, phosphate dikinase OS=Robiginitomaculum sp. OX=2030823 GN=COA60_09450 PE=3 SV=1 +MTKWIYGFGGGTADGSASMKNLLGGKGANLAEMCSLGLSVPSGFTLSTEVCTNYLENQKTWPDGLQNQLAKALQVLEQQSGKSFGDAANPLLVSVRSGGRASMPGMMDTVLNLGLNQKTVEGLAELSGDRRFAFDSYRRFIQMYSDVVLGIDHDLFEEILDEHKDVQGFATEADTELAADDWEQITKLYLALVADELGHEFPDDPVDQLWGAIGAVFDSWTNDRAKVYRDLHDIPQSWGTAVNVQAMVFGNMGQTSATGVAFTRNPSTGESLYYGEFLINAQGEDVVAGIRTPQALTERAKAEIGDTEPSMEAAMPKVFAELTEVFKQLELHYKDMQDIEFTVERDQLWVLQTRSGKRTAKAALKIAVDMVAEGLITEREAILRVEPASLDQLLHPMLADGHNCPIICTGLPASPGAATGKVVFSSEEAVIMASRGEDVILVRIETSPDDIHGMHAAKGIVTARGGMTSHAAVVARGMGRPCVAGAGELKIDYSKGSFMVSGQTVHKNDVITIDGAKGHIFSGTATMVQPELTGDFGVLMFWADKVRRMKVRTNAETPVDVKTACDFGAEGIGLCRTEHMFFEESRIAAVREMILAKDKAGRIAALDRILPMQRDDFVEIFQIMGERPCTIRLLDPPLHEFLPHSEADVAQVSQATGIAVGELMSRAESLAEANPMLGHRGCRLGISYPEIYQMQARAIFEAQGKVKQQTGIMADVEIMIPLAATARELEILQGKIRQIAEQVTGDQGFAPEYKYGAMIELPRAALCAAELSEFASFFSFGTNDLTQTTLGLSRDDATSFLGDYICQGVFEKDPFVSLEQSGVGQLLEIATERSRQAKPDIKLGVCGEHGGDPASIHFFEGLGLDYISCSPFRVPIAKLAAAQAVLLREK +>tr|A0A395H0X9|A0A395H0X9_9EURO Uncharacterized protein OS=Aspergillus ibericus CBS 121593 OX=1448316 GN=BO80DRAFT_465679 PE=4 SV=1 +MAGHRRFASTLTSAAMDIGFYGSVRRRVDGALWLPFRDSSFYPERPQIRSPSLIFPWTAIVALPVRNVQMSSWTRTHSCASRLRSRLSFLHVVTVGAVISLCYLFYTFAVPQLHRLQLRTDLSWYDLGLYGFGPSRSYVSFEYESPAVQISEWESGCDSRYTFFAPRGDSVAQPGPMILDSKGELVWMKYNWDVTQDFKVQRYQDTDYLTYWEGGETEGRGYGAWYMLDSTYTQRYVISPVGNHGGDLHEFNITPEGTALVTIYDPLPADLTSIGGPELGWIYDGVFQEIDIATGELIFEWRASEHYPISITYEKLGKSGRLRSFAFDFYHINSVDKDDNGNYIVSARHTHTVSCIDKNNGQVLWTLGGKLNEFRDLSDGKATNFAWQHDARWHANNTLTLFDNARHSSNDPENESRGMAIELNVAAREASLRAAYHHPQQMLSVSQGNVQMLDDSGRVLVEWGHSAAFSEFSADGQLLCNTHFGASAFFGFGRVVSYRAFKGTWVGRPQTVPDAEVLGDRVYVSWNGATEVVAWRLEVWETDDVHDNSFRVVAQFPKDSFETEIEIPNLELPLFRLAALDSDGNVLGITELLQREQGGSFEQVINPQYWIIVMAFVMSGVGLFVGLYTCCGWGQYFRRCRSRSSEYQLVAFSDSEAPV +>tr|A0A828ZLR4|A0A828ZLR4_9BACI Uncharacterized protein OS=Lysinibacillus fusiformis ZB2 OX=1231627 GN=C518_0034 PE=4 SV=1 +MVFRPPYPYPMYPGGMRMPMPMQTPPQMSPQSFFPPGGFPVQPRIPGGFPMANGIGSFGGQMPMPPVQEASKVGSFLQQANSLFNTAKTYTPYIQQAMPMVKNIPSLLKLYKGFQGLPSAGGGATEAAGSDSKAAGSRRSSRQSASFTPPEPLPSKPRIFQPPM +>tr|A0A2K5HSM9|A0A2K5HSM9_COLAP Histamine N-methyltransferase OS=Colobus angolensis palliatus OX=336983 PE=4 SV=1 +MASSMRSLFSDHGRYVESFRRFLSHSTEHQCMQEFMDKKLPGIIARIGDTKSEIKILSIGGGADFLIWGSSRVLKQNSCFIFCRTCQNDKSVMRIHDEHSSELPFGAARLKGTSSFPSFLVSFSLF +>tr|A0A834YI29|A0A834YI29_9MAGN Uncharacterized protein OS=Tetracentron sinense OX=13715 GN=HHK36_028814 PE=4 SV=1 +MGRGRVELKRIENKINRQVTFSKRRNGVLKKAYELSVLCDAEVALIIFSSRGKLFEFGSAGNAVVAVMTKEELWLNSPEQIPSRPGDMGFVLILDLLSFPPISLSSLILFLQTHRSTYNLH +>tr|A0A3S3PID2|A0A3S3PID2_9ACAR Cell cycle control protein 50A-like protein (Fragment) OS=Dinothrombium tinctorium OX=1965070 GN=B4U79_11510 PE=3 SV=1 +MPVNFVYEVNSERELQELKNKQTARDALRRQRLPAWEPILTPTAVLSSILLIGFALIVIGIMLLITIEQVNEKVIDYTNCVSSVNIRENCSTVIARNIYEPCWCIQRFSLDEDFGADAFFYYRLSHYHQNLRRYINSKDSKQLLGYDHRKKVSKKCEPFEKNFDPLQGQVLPIAPCGAIANSLFNDTFKLYFIENMSLIPVEIIETDISWPTDKKHLYINPPNMNFEGFTKPPYWRKYVFELDLNNSDNNGYQNEHFIVWMRTSAFPTFRKLWGRIDHKNRFSRSLPKGNYVLQINYNYPVISFGGAKSVIISNTSWLGGKNYFLGYAYIVCGTLFVILDIALFAIYYLYGY +>tr|A0A3G9HIV9|A0A3G9HIV9_9PROT Porphobilinogen deaminase OS=Hydrogenimonas sp. OX=2231112 GN=hemC PE=3 SV=1 +MEKLIIATRGSQLAMWQAEYVKSELRKRFPEMEIEFEVVTSTGDKILDKPLALIGGKGLFTKEIEDVMLAGKAHMAVHSLKDVPTVMPEGLKLAAITKRDDIRDCFLSHKYRNIDDLPEGAVVGTTSLRRQMQLRAIRPDLKIKNLRGNVNTRLRKLAEGEYDAIILAYVGMKRLGLLESVPYHDPIDDNVMIPPSGQASLGIEIVDDERVAEIAAVLNDEDSALAARIERDFVSELEGSCQVPIAVNAKISAERVVVRAMVGLPDGTEILKEIIDAPKSEARDLGVRLADIMIEAGAKELLERAEAMAFKDERCERL +>tr|A0A5E4QBA8|A0A5E4QBA8_9NEOP Uncharacterized protein (Fragment) OS=Leptidea sinapis OX=189913 GN=LSINAPIS_LOCUS7231 PE=3 SV=1 +MKYVSFSLIATLIFAGYVINTIWNLAEIFIPPECSRGERCFTSYLASNPVQHLVLYTSIKENPYRGGISDAAVNKVHTSLKFDYRKPAKIDLTLKIPRRTRNNGTLFMHAVLLDERRLYDDFIDIFRNEAIYTLPLVTYMDQKDETFNLLQGNNGQEIKPKKIVKPYSHIFKVAPLSILTDDLQLPVKKIPGELYPYVRVRNEKFLPIIQHNVLKSRISDLELLRSNTSEVNVTVEISPTSYGVLRLALHVRLALLQLQSLGFSEKDVDDAKGIFADTNLYLLSATVLIASCHLLFDFLAFKNDVSFWRS +>tr|A0A093L9J8|A0A093L9J8_EURHL Melanotransferrin (Fragment) OS=Eurypyga helias OX=54383 GN=N326_02722 PE=4 SV=1 +AALGLERVRWCTISQQELSKCNDMSKAFGRAGILPPLECTAWGSAANCTQMIKEDLADAVTLDGRLIYQAGKEHGLKPVVGEVYDQEIGTSYYAVAVVRKNSSITIDSLKGVRSCHTGINRTAGWDVPVGYLTDSGRLAAMGCDLPQGKTVSDYFNASCVPGAIGVNYPSSLCQLCRGNSAGKSKCERNSQEQYYDYSGAFRCLAEGAGDVAFVKHSTVPENTDGRSLSSWAQRLRSRDFQLLCRNGNTADVTEWRTCHLARVPARAVVVRPDTDGAAVFQLLNQGQQRFNGVGTKFQMFDSAAYGAQNLLFRDSTMELVAITAQDYQAWLGEEYLRAVQALSCNPNTLPESLNWCVVSTEEIWKCGEMAIAFRKKNLKPAIQCISAKTKEQCMEMIQKKESDAVVLGGDDIYTAGKTYGLVPAAGESYSADDNSNAYYAVALVKRNLSNAFTISDLKGKKSCHTGLGRNAGWNIPIGILIKRGIIKTRDCDIPQAVSEFFSASCVPSAKLDSYPSKLCQLCVGDDSGNHKCSASSQERYYSYSGAFRCLAEDSGDVAFVKHSTVFENTDGKNTDSWAQNLNSSDFQLLCPNGARAEVTQFAECHLAQVPAQAVMVHPDTNVFALYGLLDKAQVYFGNSSNGNGFKMFDSSTFQGKNLIFKDSTVEIVPVEEKRTYAEWLGREYLESLEGMQTPQCSGAGNKIRPYLLVTVVSLLWCQAQGLD +>tr|A0A4D6WVR2|A0A4D6WVR2_9FLOR Photosystem I reaction center subunit PsaK OS=Gayliella sp. OX=2575623 GN=psaK PE=3 SV=1 +MYINILLNISSNTVNWSPKIALIMIICNLLCITIGRYSIQVRGLGPSIPLIGSEGPGLPELLATTSLGHVIGAGTILGLRSQGII +>tr|A0A255GDV3|A0A255GDV3_9ACTN Uncharacterized protein OS=Propionibacteriaceae bacterium NML 030167 OX=2016500 GN=CGZ94_12075 PE=4 SV=1 +MARERTEKRDRPEKRDRDKGDRDRLNTPGRESSRFPRIRMDGDTFGEFAEAFARFMGTAGFLMWMTIIIILWIAWNTLAPESVRFDPFPFIFLTLVLSLQASYAAPLILLAQNRQEARDRISVEDDRRQAAQSRADMDFLAREIASVRMNVGELATRDYIRSELRKELRELLAEHDEPAAGPERGSVGG +>tr|A0A1X6Z5H1|A0A1X6Z5H1_9RHOB Uncharacterized protein OS=Roseivivax jejudonensis OX=1529041 GN=ROJ8625_01941 PE=4 SV=1 +MDAAFIVPVLALITLLAGTVYALWSKHVTEQAKADPAHPKSRLAADTPSR +>tr|A0A4T0PB80|A0A4T0PB80_9BASI P-loop containing nucleoside triphosphate hydrolase protein OS=Wallemia mellicola OX=1708541 GN=E3Q18_02634 PE=4 SV=1 +MDTVTNSIFEEIKSEISALPEDQRYLVGIGGFPGSGKSSFTKHLTDKFTDSSIKAVAISMDGWHYTRDDPTAAFARRGAPHTFDAEAYTEFVQSLKLEPRVALEAPTFSHSLKDPTPSGTQVDTSVKVVIIEGNYVLLNEERWMKAANNLDKKIWVDIDEETTRQRLIKRHVESGICKDSQEAYDRAENNDLDNGRYARQNLVPDTQIIKSIEDEKFAI +>tr|A0A4Q9TDA8|A0A4Q9TDA8_9GAMM Penicillin-binding protein 2 OS=Pseudoxanthomonas sp. NML171590 OX=2527958 GN=mrdA PE=4 SV=1 +MTMSRRRPLKNAHAEADQFRRRAALGFLGVFVCLAGLGAWYFKLQVLDHAEYATRSEANRIKLRPVVPARGSIYDRNGVLLAENIPAFRLDVVPDQAGDPDEWLDALGKVVALDPEEVKHFLAARKVSRGFRGITIKPKLSEEEIAALAVDRWRFPGVEVVPYLTRHYPYGPLLAHVIGYVGRVDEADLAQLGEGNSALTHVGKTGLERYYEQQLRGKVGYEKVETNVEGRALGVVGRVPAQAGTDLKLSIDIKLQQAMTEAFGQYEGAAVAMDPRTGQILGMVSLPSYDTNLFVNGISTRDFKALNENPSRPQFNRLVLGGVAPGSTIKPLMGLAGLDSGTRRPQDKILSTGMFYLPGVSRGWGDSHRGGHGWTDLRKSIAQSVNTYYYKLAVDMGITQVDAYMTKYGFGAPTGIDLAGEIGGIVPSPAYKMKSRKEAWYPGDTVNIAIGQGDWKVTPLQLVRAISGVADGQLRTPRLVMDTRNGFDQPWQPIAPGPTKPISDRPDNLQWVREGMMDTMRPGGSGYAIAVGAPYQMAGKTGTAQVVSRKGLAAVDPRSLPMHLRHRSLFEGFAPAQAPTIALAIAVEGGGYGASTAAPIARKIFDAWLLGKMPGDTPDAPDIVVPEDGTDTGAAPPAPSEIPGAPGPTPPPAPTAAPVPAEAPREPQAAP +>tr|A0A1H3A3S6|A0A1H3A3S6_THIRO Uncharacterized protein OS=Thiocapsa roseopersicina OX=1058 GN=SAMN05421783_11845 PE=4 SV=1 +MTNAQCLYGHRPTPGWPGFARACRPSWRDDLCPTWIDLVVPPCSFRVFRDHEVAARRVVGHDGNDIPCFQAYDYRRLDLRSDDDEEYYLAVSYSESVSAWRLRDGRWLVHRRVELLGDEDAATSALSIDERMPR +>tr|A0A1L7CG91|A0A1L7CG91_9CORY Threonine--tRNA ligase OS=Corynebacterium aquilae DSM 44791 OX=1431546 GN=thrS PE=3 SV=1 +MSDQPEREFAPFNVPAGTPVGAAMRELELPNKGPEAIVCVKDADGQLKDLSFVPDTTAEFTPVPANTEEGRSVIRHSCTHVLAQAVQAEFPGTKLGIGPAIENGFYYDFDAAEPFTPEDLKRIEKRMKKIIKQGQKFERRVYADQAEAREALANEPYKLELIEDKGNVDPNSDEATEVGSGELTGYYNLNPRTGDVEWYDLCRGPHVPTTKYIPAFALTRSSAAYWRGDQSNAGLQRIYGTAWESTEALEEYQHMLEEAEKRDHRRLGTELDLFSFPDEIGSGFPVFHPNGGIIRLEMEEHSRRRHIASGYSFVNTPHLTKGDLFSKSGHLDFYADGMFPPMQLDGEYDENGNCTKQPQDYYAKPMNCPMHNLIFASRGRSYRELPLRLFEFGTVYRYEKSGVIHGLTRARGFTQDDAHIYCTEDQLEAELTSVLDFIISLLRDYGLDDFYLELSTKDEGKFVGSDEIWEKSTAILQRVADTSGLDLVPDPGGAAFYGPKISVQARDAIGRTWQMSTVQLDFNLPERFNLEYTDSDGSKKRPIMIHRALFGSIERFFGVLLEHYAGAFPAWLAPQQVVGIPVAEAFSPHLEEITARLRDKGIRATVDTSDDRMQKKIRNHTTAKVPFMLLAGARDVEAEAVSFRFLDGTQVNGVPVDEAVELISAWITARRNEQPTEANLRG +>tr|A0A7X7K3W6|A0A7X7K3W6_9CHLR Uncharacterized protein OS=Anaerolineales bacterium OX=2073117 GN=GX601_14875 PE=4 SV=1 +MVALRDDFAGELNRHWNTSLVGQGTLTMGESRMRLGVTGASSRRYSNAQIDDYQDLMRRRFPWAPPLRLSVRARFSGSAQTLRGTAGFGLWNDPFMMTGARPPNLPRALWYFFGSPPSNMKLDLHAPGHGWKAATIDALRPISLALGMIALPAVALMNVRPFYRALWPPIQRALHVQEAPLETDMAEWHTYEIEWSASHSYFRVDGTAVLTGAPSPRGPLGFVLWMDNQSLEITPWGRVRWGLLDIPDGQWMDVDWVELA +>tr|A0A4R2CCK3|A0A4R2CCK3_9ACTN Polygalacturonase OS=Kribbella sp. VKM Ac-2500 OX=2512214 GN=EV642_10991 PE=3 SV=1 +MVQDKFSRKNFLRMTAGAALLPTAAALTAGQAAAAAAGTPDATAPLGPDGHGGPGWGHVGEILRETRPPRFHDRDFPITAYGAVGDGSTDATAAIRAAIEACHLAGGGRVVVPAGTFLTGAIHLRSNVNLHVSEGATLLFSTDPAQYLPVVLTRFEGMELMNYSPLIYARDCDNIAVTGTGTLDGQATWETWWSWVGPSGPDAQALTDLADRGVPVPERIFGAGHFLRAAFIETYHCRNVLIDGVTLLRSPFWEIHPVLSRNVTVQNVHIDSRGPNNDGVDPECSQYVVIRNCTFDVGDDCIAIKSGRGTDGLRVNVPSENILIEDCTMNIRYGAITIGSEMTGGVRNVFVRNCRIGSGYQYFGLYIKTNSVRGGYAENVYLKDIEISNLTKEVVSCNFYRGEGDTGPLTPRVRNVELRNITVGHARNAFSMTGYPRLPIQDFRLIDCTFTSIDAASTIQDVDLSFENFFVNGQPITDPAQLL +>tr|A0A0A7RLM7|A0A0A7RLM7_9LACO Flagellar motor switch protein FliY OS=Liquorilactobacillus oeni OX=303241 GN=fliY PE=3 SV=1 +MSDSLSQAEVDALMAGNAVSKDEGQDNDNGMDEKTRQDIIGEVGNISMSQAATTLSSILNRRVSITTPHVSRMKFEEVLSAVHTPKVATVVEFKEGLAGSNLLLLEVKDAVVIADLMMGGDGNPKSSEFSELQLSAVAEAMNQMIGSASTSMATMINRKVDILPPAVKLWENASNIEYNGIVNAEEIYRISFSLSVEGLIESEIMQIFTKDMVDDITDAMLSDKATVIEREKAVSQPEQKEETKSAPKTASVDTKMMSKEQTKHVEVSKPEFQQLEENKVAEGDNLDLLLDVPLNLSVVLGRSEKTIRDILSFNSGSVVELDRLTDEPLEILLNGKPIATGEVVVINENFGIRITNILSPSQRIHRLK +>tr|A0A3N0E5U7|A0A3N0E5U7_9ACTN Non-specific serine/threonine protein kinase OS=Nocardiopsaceae bacterium YIM 96095 OX=2487137 GN=EFW17_17180 PE=4 SV=1 +MTDQEHPQVPVHGDPADGDMPDAVLGARRDVVTFVESANQPDQLVRLWWVTVVLQIAEQHIPNLRMTNGHKHSVKYPRRSYAINSTSSARRYSTTSGRVGRPRLRPRPVTLRHTPRFRPPQPCGKIPVSLAVPNERVVATVRGTPSSGRHSAGPYELVRELGRGGFGSVHLGRDSAGRHAAVKLLHLNQAESARVRADFAREVDAARKVNPFCIAQVLDADLDADEPWIATEYIEGPTLLEAVRADGPRTGADLQRLAVSMATALTAIHRAGIVHRDLKPGNIMLASDGPRVIDFGIARGFEGTEFSVSQMVGTPNYMAPEQLEGNRLTPAVDVYAWGAVIVFAATGRNAFTAPSQAALIRRVLLGEPDLDGTPETLLPLVRRCLAKAPEQRPNAHALLEALLDGATPGTEPGADTGGTATPAPLPNVGPESDGAPPRGPAEPAEPAPPFVFADDSYHSPGDLASAMRRNWSAAVRVFANDQERALLRTWLLEDIDDRTVDRALLRRPPEDPEAVLTEFIAQVRPDLPPTYRGRDMRLSALRQTLRNHSGQPPAELHGLGSRVLRALARHHCVEEDHTCASGAPCKEYQRIHSEFVTRVERVRAATEQVDRTLRAESPQLADTVDVPALAASVTTTLLPGLLHPADETWPPREQRPRTHTEWYTALATAVGSDIPPELHEDRGVTLLYDATATRIAGIQDTEQLRVHTLERDLDRLMAGWRQATKTVFVRTFGGWCAVTLVSLPFFPWTGVFPSGVALVVGLVVVIGTLMAAGRPYAAQRHSLHTPPPDPSWREGRIATWLDGEITQAKQRAGRLPRILAHMTGGSTTG +>tr|F1A946|F1A946_9CREN Acetyl-CoA carboxylase alpha subunit (Fragment) OS=uncultured crenarchaeote OX=29281 GN=accA PE=4 SV=1 +AMTDFVVMVEKAATMFVTGPDVVKTVLGEEVSFDELGGAMTHGTKSGVAHFVAKNEYDCMDIIKNLLSYIPQNNTESPPRVKTSDDPNRLDHNLLNMVPEDSLKPCDMKPIILSVLDDNKFFEIHELFAQNVIVGFGRMNGRTVGIVASHP +>tr|A0A497UYM2|A0A497UYM2_9FLAO Uncharacterized protein DUF4230 OS=Flavobacterium lindanitolerans OX=428988 GN=CLV50_0313 PE=4 SV=1 +MRRILIIAGIVVAVILAFRFCEFKKDDRSTIEYDTNLIQERIVNVGKLIVTEGHFAEVLTYKDQEKYLMDLISFEKKALVIVNADVTVSYDLRQMKYDIDEKNKTITIKYIPKEEIKINPDIKFYDINQSRMNPFTGDDYNKINKSVKANLAKKIEKSSLKTNAQNRLISELSKILITTNSMGWTLRYDGQTVNEESIDKVLL +>tr|A0A1V2ZGA3|A0A1V2ZGA3_9MICO SGL domain-containing protein OS=Rathayibacter sp. VKM Ac-2630 OX=1938617 GN=B0T42_04245 PE=4 SV=1 +MRRRAIAVPVLLAGALAGCTQAGDPAEEEAPPSVATAERVLQVTEVHEATGMTLLEGPAFGPDGSLYVVDVTAPPGEGKVLRIDLDDESVEPVWTDDSSALTSAQFGADGRLYVTDFLGGAVRSMTADGEDVREIAAGAVEGVPMQPDDLDFGADGALYVTDAAGAQDPYWEASGRVVRVDPATGSASVLADELPSPNGIAFSPDHRELWVSMNTGNRIDRLTLTGDGTEVATAFPAIHASPGIGQLDSIAVDADGNLYVGLHSRPEILVYDTAGALLQTVTVAESGLSSATNIAIRPGTTEAFATVSGSDGGFVHSFEALAEGMPQSNGG +>tr|A0A1D8NL70|A0A1D8NL70_YARLL Catalase T OS=Yarrowia lipolytica OX=4952 GN=B0I71DRAFT_163235 PE=3 SV=1 +MSKELYANSKDDAVYSYSFGVPYPHHPYSSQRAGPTGPLLLQDTYLIDALAHFDRERIPERVVHANGGGAHGYFEVTDDISDITYAEPFQKIGYKCPTTVRFSTVGGERGSPDTARDPRGFAVKHKTDWGNWDMVGLNSPVFFIRDPVKFIHVNHSQKRDPQTNLTAGDDASNYWNYLVQNPESLHQVVYMFGDRGTPNGWRHMNCFSTHTYKMINKEGKLTYVQFHYKSDQGVKNFTGPEAAEMAGKSPDHDQKDLFFAIDNGDYPSWTVSLQTMTPEQAEEWEYSILDMTKTWPYDKFPLRKVGKLVLNKNAENFFEEIEQAAFSPSNLIHGIEASDDPVLQARLFSYPDTARHRLGPNFNQLPVNQARTFQKGSGCPFMAGNFQRDGNMAIHNQGNRPNYLSTIRPIQSVSVPNEDFKNTHDYCGVVTKEMEDESFKVQAEAAKKHNEKIWESSSYLYLSGFQESDAAQPRDLYERVYDDAAKQRMIDNVVDHASTIKQHGLKEQVAKYFGRISDDLGKKIAEGLGVPY +>tr|A0A4R2XLQ7|A0A4R2XLQ7_9HYPH 50S ribosomal protein L2 OS=Rhizobium sp. GV031 OX=2135727 GN=rplB PE=3 SV=1 +MALKTFNPTTPSQRQLVIVDRSSLYKGKPVKALTQGLTKSGGRNNLGRITARFIGGGHKRTYRLIDFKRRKFEVEGTVERIEYDPNRTAFIALISYADGEQAYIIAPQRLAAGDKVIASEKAVDVKPGNTMPLQYIPVGSIIHNVEMKPGKGGQIARSAGSYAQLVGRDAGLAILRLNSGEQRLVPGSCLASIGAVSNPDHANINDGKAGRTVWRGKRPHNRGVVMNPVDHPHGGGEGRTSGGRHPVTPWGKPTKGKRTRSNKSTDKMIMRSRHQRKK +>tr|A0A6F8T1T8|A0A6F8T1T8_9GAMM Superoxide dismutase [Cu-Zn] OS=Legionella sp. TUM19329 OX=2708020 GN=sodC PE=3 SV=1 +MNKLTTALISSLLSFNALHAAPMTTTLYTTDTNPTAIGTVEFEETPYGLLISPNLIKLPAGLHGFHIHQLPDCGDHGMSAGGHYDPTNTKSHKGPYGDGHLGDLPVLYVSSDGKANTPTLAPRLKLKDLTGLTLMVHAGGDNYSDTPSLGGGGAREACGVIK +>tr|A0A3D0ZXQ6|A0A3D0ZXQ6_9GAMM LLM class flavin-dependent oxidoreductase OS=Gammaproteobacteria bacterium OX=1913989 GN=DEQ32_11910 PE=4 SV=1 +MKFGIFYEHQLPKPWSEGLEEKLFQDALDQVELADKLGIDYAWEVEHHFLEEYSHSSAPEIFLAAASQRTKNIRLGHGIRQVIANYNHPARTAECIATLDLVSGGRVDFGTGESSAILELGGFDIPVESKRQQYLESVEQICNMLAMDPYPGFDGQYFSMPCRNIVPKPVQKPHPPLWVACSNRDTIKMAARLGIGALTFAFVDPLEAQHWVDEYYSIIKSDECVPIGHTVNANICMVTSFSLHHNRAVAIERGLEGFEFFGYALGFLYGFGIHKPGRTDIFREFQAARNAKLVESPVEVGESLTGERGGIGTPDDMREHLRKFERVGVDQVTFIQQAGMNKHEHICESLEIFAAEVMPEFKSRETEREARKAEELAPFIEAAMARKQYMKMPKDDDIPVFPALGRSVVEGDADLTKKAVG +>tr|A0A7Y7XFB0|A0A7Y7XFB0_9PSED Acyl-CoA dehydrogenase family protein OS=Pseudomonas gingeri OX=117681 GN=HX882_17635 PE=3 SV=1 +MNLHQYAETHEVTNQPPSLDGTNLYRIDLPLQEWARRFGAGWAESRIEAYGALAGGPLMEAGFLANQNKPVFVSHDRYGHRQDLVEFHPAYHELMRTAVEHGLPSLPWTDPQEGAHVARAAMTYLHSQAEAGTGCPLTMTFACVPALRLQPEIAGQWLPSILSTQYDPRNLGIAHKTGATIGMAMTEKQGGTDVRANTTRAYPVGAGGPGQPYELVGHKWFCSAPMCDAFLTLAQTDKGLTCFLLPRHRPDDSRNQFYIQRLKNKLGNCSNASSEVEFRGALAWMIGEEGRGVPTIIEMVAMTRFDCMVGSSALMRQALTQASHHCAHRLVGGRVLAEQPLMQNVLADLALESEAALALSLRMGRALDRLGDDHEAKFARLVTAVGKYWICKRAPAMINEAAECMGGAGYVEDSILPRLYREAPVNSTWEGSGNVQCLDVLRSLSKEPGVLEVLFSELGDGHGDKRLARHIEHLKLAFTDTHDIQYRARQLTEDIALALQAKLLLEAGNAEVSDGFIASRLEAGGRVYGTLPRGVNVEAIVARSTPQGG +>tr|A0A218LFE2|A0A218LFE2_AGRCR 50S ribosomal protein L33, chloroplastic OS=Agropyron cristatum OX=4593 GN=rpl33 PE=3 SV=1 +MAKGKDVRIRVILECISCVRKGANEESTGISRYSTQKNRHNTPGQLEFKKFCRYCRKHTTHHEIKK +>tr|A0A7W2KV63|A0A7W2KV63_9PSED Cytochrome c-type biogenesis protein CcmE OS=Pseudomonas asiatica OX=2219225 GN=ccmE PE=3 SV=1 +MNPQRKKRLLLIVGLLVGVGVAVGFALSALQQNINLFYTPTQIANGEAPLDTRIRAGGMVEKGSVQRSSDSLDVRFVVTDFNKSVPITYRGILPDLFREGQGIVALGKLNADGVVVADEVLAKHDEKYMPPEVTKALKESGQAASGGEARP +>tr|A0A495JIB9|A0A495JIB9_9ACTN UDP-N-acetylglucosamine 1-carboxyvinyltransferase OS=Micromonospora pisi OX=589240 GN=murA PE=3 SV=1 +MPADLSAGVTAGVAADSTMADVDVIRVSGGARLAGEVHVVGAKNSALKLMAVALLAPGRSVITNVPRITDIAIMGEVLRRLGCEVSFGEDNGTSTGTIDGIPVVGVGDGVPAEVPPVDGAGPVRDVATTPSGEAQAAVDLGAAPGRARTVTIDVPAEPGTDADYDLVRRLRASICVLGPLLARRGYVRVAHPGGDAIGSRGLDMHVSGLARMGAEISGSHGFVIASAPNGLHGATIWLDFPSVGATENLVMAAVLAKGTTEIDNAAREPEIVDICAMLSAMGARIEGAGTSTIRIEGVSELRPVRHRTVGDRIVAGTWAFAAAMTQGDVTVTGASPGFLEIALDKVISAGGLVETRTDAFRVRMDRRPRAVDVVTLPFPGFATDLLPMAIGMASVSEGASLITENIFDGRFMFVNEMARLGADIKTDGHHAVVRGRERLSSAPVRATDIRAGAGLVIAGLCADGVTEISHVHHVDRGYPDFVADLRALGVEVERTTAPAEQAFTL +>tr|A0A1G3BE39|A0A1G3BE39_9BACT Uncharacterized protein (Fragment) OS=Planctomycetes bacterium RIFCSPHIGHO2_12_FULL_52_36 OX=1801980 GN=A3E19_05430 PE=4 SV=1 +MGICLSRTIPVRDLFTGLFSGRGAVAIAGFVNKVGSKWYGTARLRRITAYCLLALFLCGLYSAEGVLGAQSVENPYPLFKHDAQHTGRSTFLGAQKANVKWSYPTEDHIISSPTVGGDGTVYVGGMDGNLYAIRPDGHTKWFYPAQSAIFSSPAIAQDGTVYFGCRDKVLFAVGPDMKEKWKFRMGGEILSSPTVGPDGTVYVGNWDGKLYAINQEGALRWTYQTGDSIVASSPAIAHDGTVYVGSRDRQLHAIDPASGKKRWGFQAGDKVDTTPCVGPDGTVYFGANDGILYALSPQGDPKWKFETGSWIYSSPSLGADGTVYFGAKDGKVYAVSPQGQKKWAFQTGDSVSSSPTLGSDGTVYVGSWDGKFYALGPDGQLKWSYDAGASIASSPAIDAEGTVYVGCDSG +>tr|A0A552XCD5|A0A552XCD5_9LACT Carbohydrate ABC transporter permease OS=Lactococcus lactis OX=1358 GN=FNJ55_12300 PE=3 SV=1 +MKDSIGYKIFKVINAIILILIVIATVYPFWNVVVQSFSSENAITAGNVVLTPVGFNLETYKYVMSDPIFWINYKNTIIYTVVGTAISLFLTTTLAYVTSKKYLPGRKFFIGLSVFTMFFAGGLIPNYLLIKSLGWMNTMWAVTVPGALSIFNMLIMKSFFESMPDALEEAAIIDGATPFQILMRIILPLSKPILATMVLFYAVGAWNAWFGAFLYMDNKNLFPVSVYLRNLVKGATGAEAQSADEQSQVSSNIKAVTMVLTVLPVLIVYPFCQKYFVNGIMIGSVKG +>tr|X6GFZ8|X6GFZ8_9HYPH Oxidoreductase OS=Mesorhizobium sp. L48C026A00 OX=1287182 GN=X737_09625 PE=4 SV=1 +MILQGRIAIVTGAGSGIGQAGSEAMAREGATVIVTDRDLDAARGTVDSIAAAGGRGEAIRVDVTDDAAVVGVIQDVADRHGRIDILHNHAGVQVAGSVEEIDGAGFDHSWAVNVHAQFVACQAVLPVMKRQRGGVILNTSSNSGVFLDRAMTAYITSKAASITMTRQIALDVARYGIRINSLCPGWVDTPFNDPYTDQLGGRKALEHAIANIVPMGRFATTDEIAEVILFMVSDKSSYMTGHALVADGGESLAGGTNSGQSITR +>tr|A0A368JR03|A0A368JR03_9BACT Serine hydroxymethyltransferase OS=Larkinella punicea OX=2315727 GN=glyA PE=3 SV=1 +MSTLVTPITRDTQVFELIAKEQHRQESGIELIASENFVSKQVMEAAGTVLTNKYAEGLPGKRYYGGCEVVDEIEQLAIDRVKELFGASWANVQPHSGAQANTAVFVACLKPGDTILGFDLSHGGHLTHGSAVNISGKYFRPTFYGVEQETGVINYDKVEETAQRERPKLLICGASAYSRDWDYVRLRAIADSVGALLLADISHPAGLIAKGLLNDPMDHCHIVTTTTHKTLRGPRGGMIMLRNDFENPFGIKTPKGDLRMMSSLLDSGVFPGTQGGPLEHIIAAKAIAFGEALSDEFGDYANQIQRNAQAMAAAFVSRGYKIISGGTDNHLMLIDLRSKGLSGKLAENTLIKADITINKNMVPFDDKSPMVTSGMRVGTAAVTTRGMKESDMEQIVVYIDDVLMNHDNDAKIQVVKEEINSWMKAFPLYN +>tr|A0A1M3KRH6|A0A1M3KRH6_9HYPH Uncharacterized protein OS=Devosia sp. 66-22 OX=1895753 GN=BGO81_01360 PE=4 SV=1 +MVEVKQLLSFPLPRNPAIVSPGLREILMSGSSLSGLPSLYDGKDMFRSAGNRMLWPKPLPAPLYGGATKGRIFSYVAGVIFVPNTVKGVVKNIKKDFWDDSIGKVIKAQMLGIDFQAMTAPPWAGEPPEDISDAVEAVFDAIESGTGKVDENLLYATYWSYRWFSMQKRGAVFLPLTDLVEVSVQQTKGGFLEHFKYEVGEHIGLTFETASGQRSTYYATMSYPDEDERLLRFVPPADRKKEYQSRKLSTEEATALIFADQRIRADIRAVMRTLLDEHLGPGVLPAAYAELSKTRTQDWSRGLDVYYEALRSTDYNVWHAHGDVLARMGSTCVAFRALPFARHGFTNPIDSIERGEPMTWVSIT +>tr|A0A271J2M4|A0A271J2M4_9BACT Uncharacterized protein OS=Rubrivirga marina OX=1196024 GN=BSZ37_13095 PE=4 SV=1 +MGALADRVIVAAERQTGCEMPYLRTLADASGGAFARWMLAMPAAQFRQRAPRDAWHLARLGATVAQDCGTCVQIVVTVAQRDGMSVTTLRQALDDPGALYDDARAAYAFGFSISSQADDVADRVAEVEALFGHEAHVELAMAVATCQLFPVLKRGLGQSLACSLVTIEME +>tr|A0A368CC63|A0A368CC63_9GAMM Phosphoribosylformylglycinamidine cyclo-ligase OS=Candidatus Thioglobus sp. OX=2026721 GN=purM PE=3 SV=1 +MGLTYKDSGVDIDAGNALVTRIKQAVKSTHRDEVLSDLGGFGGLFELASHKYKQPVLVSGTDGVGTKLKLAQQMNEHSSIGIDLVAMCVNDVIVQGAEPLFFLDYFATGKLDVDVSEDVITGIAHGCRLAGAALIGGETAEMPGMYNDGEYDLAGFCVAVAEKSDIITGQGIQQDDLIIGLHSSGIHANGFSLVNKLLAENNSTLTQDFNGTSLGATLLTPTTIYAKPVLQMLSAFPIKGLCHVTGGGITENLPRILPANIRADINTHAWQRLPIFDWIQTQGNVAEQEMLRVFNCGIGMIIVVTAEHQTAVEQIAKTHNIASNVIGKMSTTDATSHVNYL +>tr|A0A1T1IFK7|A0A1T1IFK7_9PSED Gamma-glutamyltransferase OS=Pseudomonas sp. MF4836 OX=1960827 GN=MF4836_00365 PE=4 SV=1 +MLKFSAHEYPYPSQRQSVFARRGMVAASQPLAAEAGIEIMRQGGNAIDAAIATAAALTVVEPTGCGLGGDAFALVWTQGQLHGLNANGHAPAALSIEAVQAAGHQQMPLYGWEPVTVPGCPSAWAELSRRFGKLPFADLLQPAISLARDGFPLSPVVAHQWQIALDEFSPHRSALLEPWFDTFLIDGRAPRAGELFRNPAQARTLEELATSACESLYRGPLAQRMDAHSRATGGYLRATDLADYRAQWVEPIHINYRGVDVWEIPPSGQGLVALMALKILEGFDFDHRDSQQTWHRQLEAMKLAYSDGLHYITDPQHMRVAVADLLSDAYSARRREQIGEQAQPPKPGDPHASGTVYLATADAEGNMVSFIQSNYHGFGSGVVLPDSGIALQNRGQEFSLDPSHANCLAPGKKTFHTIIPGFLSQGGEALGPFGVMGGYMQPQGHVQMVMNLVDFGLNPQAALDAPRWQWLGEMKVGIEQGASRDLANALARRGHQVEIASDLTDYGRGQIILRDPDSGVLCGGTEPRADSHIAVW +>tr|A0A3M3ZGU4|A0A3M3ZGU4_9PSED Uncharacterized protein OS=Pseudomonas syringae pv. tagetis OX=129140 GN=ALQ32_04322 PE=4 SV=1 +MFSLKKIALVTAAAAMLGSGPVLAQPDLPAQLDEARQEGSIWTAFALNKHLSPFKIDVDVEQGTAILKGKVENEVDRELAERIALDTKGIEKVDNQLEIDPAVASDPGTRTNMAQRFEDATLVATVKSKLLWSSVTEALSIDVDSKDGVITLKGRAQSPEAKELAGSLASNTDGVVSVNNLISLSAADSIAAKTQPQSVIPTEEMSDAWITSKVKASLIYSRTLDGLNIKVDTNAGVVSLNGVVANFAEKELAVEIARNIRGVKGVNGDALKVMARSAG +>tr|A0A4R8QWY5|A0A4R8QWY5_COLTR Short-chain dehydrogenase chyC OS=Colletotrichum trifolii OX=5466 GN=chyC-1 PE=4 SV=1 +MARIFITGSSDGLGAIAAQKLVENGHQVTLHARNAQRAEDASKAVPGAEGVLVGDLSKLADVKKLAQEANSLGTFDAVIHNAGLFRGPFRKTDFGLPIMPSLTAVNVGAPYVLTALLNRPKRIVYISSGLHRGGDATFNDPTWVERGEARWNEDQAYSDSKLHVSTLASAVARLWPDVKSNSVDPGWVPTKMGGASASGSAEDGVATYVMLAEGADGGHVSGKYFKPGKQEDTPQPFTQDEKRQDQLLSLWGELTGVKFPAA +>tr|L0HHT0|L0HHT0_METFS 2-oxoacid:ferredoxin oxidoreductase, alpha subunit OS=Methanoregula formicica (strain DSM 22288 / NBRC 105244 / SMSP) OX=593750 GN=Metfor_2322 PE=4 SV=1 +MTRTEFWQGNTACAEGALAAGCNFFGGYPITPSTEVAELMAAKLPKKGGVFIQMEDEIASMASIIGASWTGARAMTATSGPGFSLMMENIGFAAMTETPCVVVNVQRGGPSTGQPTMSAQGDMMQVRFGSHGDYAVIALSPATVQEMFELTAKAFNLADKYRTPVFLMADETVGHMREKILVPDSVEKIGRKPFVPGTPPFKVTDPDLIPGFPTFGTGQHVHVTGLTHDERGYPAATNPPLHAALVKRLVDKIENARDEMADYDIVNPDAEQVFVAYGGPVRTVMQVMHDKKDTNIGFLRIRTVWPFPEKALAKFKNAQRFLVPEMNLGQIAREIQRHVKVPVVPIPKLGGELHTPAELVKVLEGKA +>tr|A0A0G0BS17|A0A0G0BS17_9BACT Sortase OS=Candidatus Roizmanbacteria bacterium GW2011_GWA2_35_19 OX=1618478 GN=UR68_C0020G0028 PE=4 SV=1 +MIVRTFYNPLVEETKYFVNKAANKQYIVADNFEANKIQPTIQENQSASKGILAKAFNIKPIEILSPEDPDFSIIIPKIGANSKVVPNVDTSDEKIYLDVLNRGVAQAAGTAYPGEGGHIFLFAHSTDYFWNVTTYNAIFYLLYKLEKNDEVDLFYKGQRYVYKVIGSEVVDPSQVQYLTRKTNREFLTLQTCWPLGTTLKRLLIFAVRVSE +>tr|A0A2S7ULD4|A0A2S7ULD4_9VIBR Probable membrane transporter protein OS=Vibrio jasicida OX=766224 GN=BTO01_24490 PE=3 SV=1 +MEMIEPTMLLVLALVAFVAGFIDAVAGGGGMLTVPALLSLGLPPHIALGTNKLAASFASSTAAYTYYKKRLFKPQCWGRAFVATLVGATLGTLFVDAISTEWLEKALPLIILAAAMYTVFHKPPQSTHQSPTPEPCPMLNKKQYMQGLSIGFYDGLAGPGTGAFWTVSSMALYRLNILLASGLAKAMNFTSNFTSLVTFAVLGHINWVLGLTMGVCLMAGAFVGAHSAIHFGAKFIRPVFVTVVSVLAIKLAYDAWFVGLT +>tr|A0A5E7K8T9|A0A5E7K8T9_PSEFL Uncharacterized protein OS=Pseudomonas fluorescens OX=294 GN=PS874_02483 PE=4 SV=1 +MRQPDIEIYLKDADVDYKAIAAWLGAALGPCTDWVQKGQTYKCKAGNVPVTWLPKAVGKWNSLFLESDQTPWEDDIACARAAFVALNVEVRCAPGTWVEEEGEETADRWMRISADGEEEITWKTA +>tr|A0A0H4KSG7|A0A0H4KSG7_9RHOB Transcriptional regulator OS=Marinovum algicola DG 898 OX=988812 GN=MALG_01290 PE=3 SV=1 +MSGAARELGIAQPALSKQMSQLEHELDAQLFQRHSRGVTLTRAGEKLRQEAAELIRRMEAIRQAIHTEAEDVTGKVVVAVISSLAPTLATELYPRLEQEYPGISLHIVDFPSERAGQALLNEEADLAVMPNAATEFPQLRSRPLFEESFHFLTKATPRAPARTIRLSEAAEHPLVLPFRSHDLRRRIEEAAGSIGVTLNVKYQTGSINVIDAMVERGMVASIVPMTHWLDRIASGQVSARLVTEPGVSRVHSLCHRPVRDLAPAAKVVHDVIMTEVQSLVAAGKLSGKPVRA +>tr|A0A7W0EWG2|A0A7W0EWG2_9DELT Uracil-DNA glycosylase OS=Desulfobacteraceae bacterium OX=2049433 GN=FP816_06960 PE=4 SV=1 +METCIHCKYYFITWDSKRPHGCKAMGFKSREVPCVVVRKSSQGLDCLQFKRKDDKSK +>tr|A0A174QDC4|A0A174QDC4_BACT4 RteC protein OS=Bacteroides thetaiotaomicron OX=818 GN=ERS852557_01330 PE=4 SV=1 +MKELLENILSEIDVEIDEIDLYGYDIVENSLSMVHRLQAVLNDLKTKLQTYSFPAKEDEITFFKTQKPEILGRLLFFYKIYRIETQCPNGSDDVIRSYINRELDNLTYFFNRNLDFYQYYRSHSTLYDEYYFVRGKSDLRLCTDSAQFDKDPNFSTGYDYKVAKIIANEMLRIYLNKRLVKLETNTQVEDNLQKCLKYPFRFTGKKVFLIELGYSLVSSGDINNGNVEIKEMMNFLGTVFQVELGDYYAAYIAMKERKKDRTAYLSRLQDSLVKRMDEDDSK +>tr|A0A6B0Z2B0|A0A6B0Z2B0_9CHLR LLM class flavin-dependent oxidoreductase OS=Caldilineaceae bacterium SB0664_bin_27 OX=2605260 GN=F4Y42_21435 PE=4 SV=1 +MKFGAQVNCYLTTWDNIRAVIEAMEAGRWDSLWFADHYMPSSPKREEELLPAYEGYTLIAAAASITERMRLGNLVLGNTYRNPALVAKMAGTVDQISHGRFTLSIGAAWFQREHEAYGFDFPPMKERSDRLEEACALLRALFTADGPVDFEGRYYRLDQAPLSPGGYNNRQIPIMVGGTGERRTLRTLARYGDIMNLDGWAGGPMTQEYYFHKVGVLERHCENVGRDPSEIKRTILMPVKVTDDPAEAEAFIASRSLGEGTAAGPKDYVIERIGQFMDVGVDEIMFAGLLTRDVEQYHYFEEEILSAFD +>tr|A0A5K1GDA5|A0A5K1GDA5_9MAGN Uncharacterized protein (Fragment) OS=Nymphaea colorata OX=210225 GN=NYM_LOCUS28356 PE=4 SV=1 +IVWAGRGADRKGETERGGVQTKKGKTAVGVREEREQVG +>tr|A0A3A8NX55|A0A3A8NX55_9DELT Uncharacterized protein OS=Corallococcus llansteffanensis OX=2316731 GN=D7V93_32740 PE=4 SV=1 +MRRSSLQRRLQRGQAMAEYGVITAAFFGFTVLSWPFLIQLLRALNTYFQSIYYIIQSPIP +>tr|Q8X4F5|Q8X4F5_ECO57 Uncharacterized protein OS=Escherichia coli O157:H7 OX=83334 GN=Z5883 PE=4 SV=1 +MQPDKLGAKKWMS +>tr|A0A4W6DJV8|A0A4W6DJV8_LATCA Uncharacterized protein OS=Lates calcarifer OX=8187 PE=4 SV=1 +IAAHEGSANVVELLLKHGSDPLISDHQGQTPLSLASRQGHVKVLSVLLEWAKSQKPEIAAQMMEHVDSEGWTALRSAAWGGHSEAVRLLLDAGADVDGCDGEGRTALRAAAWGGHEEIVLTLLNYGAEVNKADSKGRTPLIAAAYMGHHEAVEILLDRNAEVDLADGDGRSALSVAALCVPTAAGVKGYGEVASLLLERGADPGHRDHDGMTPLLLAAYEGHDEVVELLLEAGADVDETAGPDGNVPAAAAVTPLLAAAAMGHMKTVSRLLFWGAAVDAIDCEGRTALCLAAARGSTEVVRALLDRGLDENHKDDLGWTPLHAAACEGHRAVCAALTERGSMARVGEMDIEGRTPLILAAQEGHWSTVRLLLDRRSPIDHRAYDGHSALSATLLERPC +>tr|A0A2V8IIA6|A0A2V8IIA6_9BACT OmpA-like domain-containing protein OS=Acidobacteria bacterium OX=1978231 GN=DMF84_27170 PE=4 SV=1 +MNAVSEFIVALAVAATACIGATHSVSDADVRPQDAIDLILTAFQNYPLVALSDGAGHGQLETRDFFIGLIRDRRFPQTVRNIVIEFGNARYQSVMDRYVSGEAVTREELRHAWEDTTQVTGVWSLPMYEHMLAEVRAVNRPLPPALRIRVLLGDPPIDWSTVTSPADEDMNDWRDAHFAHVIEREIMNRTANALLFFGGAHLGRKVIFPNSLIHLLDARFPGRTFVLAALDAGRTDSRITKRLQGWTVPAGVSVRGTWLGKMDVQDIGFGFSRGVVEDDVDVVLLLSSAPPRQDEPPALTSSYGRELARRRALHQATLPFRGAKIRFEESRAAFATDADEPLQAVVSELFRDRGVRLLVKAFADPTESNAVALSTLRAELLVDWLAARGVERHRLVPKGCGALRPLTFGKTAADRAMNRRAELVRLTPTAGCEPTTATSPPHSGPPRRSSD +>tr|A0A140H1J1|A0A140H1J1_9VIRU Nonstructural protein (Fragment) OS=Mamastrovirus 1 OX=1239565 PE=4 SV=1 +TAKQLRDSGLPARLTEEQLHRIWRGGPKKCDG +>tr|A0A0C3DQN5|A0A0C3DQN5_9AGAM Uncharacterized protein (Fragment) OS=Scleroderma citrinum Foug A OX=1036808 GN=SCLCIDRAFT_63544 PE=4 SV=1 +AARKTTHKNVLYEVDSEDTVAWLRSPEGQRLFASKFGTEISLAYRPFSVLIEYVPIALELENPNVHRDIERRNNLPTRSIRSARWIKP +>tr|A0A534C027|A0A534C027_9GAMM Homoserine kinase OS=Gammaproteobacteria bacterium OX=1913989 GN=thrB PE=3 SV=1 +MSAAPPRTRASAFAPASVGNVAIGFDILGFAVEALGDRVTVTSTAAPGVTISAVRGIADELPQRAEDNTAGRALLAMQEALQPKFGFTLEIDKGIPLGSGLGGSAASAVAAVVAANALLAEPCGQLELLRFAMAGEAVASGGRHVDNIAASLYGGLVLTVGIDHPRVKRIPVPASVRAVIVHPHMYLATANARAILRRSVELSDFVWQTAHLAGFISGCYTDDLDMIRASLEDVVIEPQRQALIPGFADVRRGAMAAGALGCSISGAGPSMFAWALEATAPKVLAAMREAFARHSLATDEWVVELRSNGARVIG +>tr|A0A1N6JS24|A0A1N6JS24_9RHOB Ribosomal RNA small subunit methyltransferase E OS=Rhodovulum sp. ES.010 OX=1882821 GN=SAMN05444722_2370 PE=3 SV=1 +MTPMSDSRSAKIRLYVEQPLGEGQTVPLSRDQAHYLFSVMRLAAGDRVLVFDGRSGEWLARVAEAGKKGGTLVCEAQTRPLQPPPDLWLFFAPIKKARTDFIVEKAAEMGAARICPVQTDFTNAERIRRDRLQAHAVEAAEQCGGTFVPEVCEMRKLSEVLEGWPHGRRLMFCDEMLAGAGRALGDAAPGPWAILIGPEGGFSEAERDRLRALPFAHPVSLGPRVLRADTAAVAALTVWQQALGDWA +>tr|A0A6G5A2B5|A0A6G5A2B5_RHIMP Putative secreted protein OS=Rhipicephalus microplus OX=6941 PE=4 SV=1 +MNFEKFAILLMFRHLSVCVALHIKIYTLDHFKGCRNDIYFCKFNTNLCFTREYIIYIELPPRLSTADRKRTSLHRGFLGSLLNAPKPAC +>tr|Q3ZH33|Q3ZH33_9NEOB Rhodopsin (Fragment) OS=Exerodonta chimalapa OX=318317 PE=4 SV=1 +NFYVPMSNKTGVVRSPFEYPQYYLAEPWKYSVLAAYMFLLILLGFPINFMTLYVTLQHKKLRTPLNYILLNLAFSNHFMVLCGFTVTMYSSMHGYFVFGQTGCYI +>tr|A0A5F2E027|A0A5F2E027_9LEPT DUF962 domain-containing protein OS=Leptospira licerasiae OX=447106 GN=EHR05_01230 PE=4 SV=1 +MTENKKYETLQEFWPFYLREHSNKMNRVFHFIGTTCALVFIVSAIFYLNAWYLLGALFSGYLFAWIGHFFLEKNRPATFIYPFKSFVSDWRMYFYTITGQLGKELEKAGVK +>tr|A0A1H1IN95|A0A1H1IN95_9EURY DNA-binding protein SAMN04489842_3657 OS=Natronobacterium texcoconense OX=1095778 GN=SAMN04489842_3657 PE=3 SV=1 +MSERPDEEKLEELRQKKMEQLQERADGQDAEAQEAAQQQAEAQKKAVLRQHLTDDARKRLNTVKMSKPQFGEQVERQVISLARSGRIQGKIDDDKMKQLLKELKPDSKSFDIQRR +>tr|A0A7M3A1Y5|A0A7M3A1Y5_PSEAI Cold shock-like protein CspD OS=Pseudomonas aeruginosa OX=287 GN=cspD PE=4 SV=1 +MLSGKVKWFNNAKGYGFILAEGRDEDLFAHYSAIQMDGYKTLKAGQPVNFEIIQGPKGLHAINISPATATTAAPSAPAPQEEPQATPVEA +>tr|A0A2Z6N5H4|A0A2Z6N5H4_TRISU Uncharacterized protein OS=Trifolium subterraneum OX=3900 GN=TSUD_214070 PE=4 SV=1 +MKKLVIQVKRMNLTGFYITLFSNTYSHINRVLFYRERILSRESPSTVVHKIPESFQSATDYKNSFIPLLFEETRADLFSSLYGVSQAPFCEIANVSESRRLTTPFPEVQNQFIQFHHVLWLKSETTGNYKPVSGDLIALTHIRPKGLSELNTLESPYRIAYVKEARKEWKELPDRISVLTSKCMKMDIENDLGNNKELSSKCMKMEIRYDLWNNKELKLYAVHLMNMTTNVRIWDALNTISRVKIMKTMLGPSQIVAIRLHRLVMDSLEHDMYGLGDIVLFGHNKRMKLGSHTGLDNVFLDNRVEKLMQCFNPNTGWKTNLQYMIELLESMKESANNTESMKAFKEEFGKQREKLTFLMQILYTHISTSLISPEMVKEMLQALDLLRRLGISLSQAKFKIPANFQLLQISVILDEVCLKGL +>tr|A0A832LQC9|A0A832LQC9_9BACT S1 RNA-binding domain-containing protein OS=Phycisphaerae bacterium OX=2026778 GN=ENS20_04560 PE=4 SV=1 +MIPTSYSQEAWPMSESSNDPLKEKFRPEEDPQVKKEVDAALAGVDVEQLLGGDQAAAARAVADGSSRERRGKVVGIGADDVIIDLGEKAQGIAPLSQFDQVRIGEEMDFILDRFDEAEGLWILTRKGAVSQNVTWETLEPGQIVECEATAMNKGGLEVKVKTLRGFLPSGQVDVVYLKDISIFLGQRFKVQVMQVDREKKNLIVSRKKIVEREREELRAKLLAELAEGQVRRGVIRSVTDYGAFVDLGGADGLIHVSEMSHRRIRHPSEVVKIDDIVEVKVLKIDPETRKISLSLKAVGADPWADAAARYAPGTEVTARVAKIESFGAFLSVEDGIDGLLPVSEISWQRIRHPADVLKEGETIKVVSIAVEPQQRKLTFSLRQAVPDPWGVVADKYPRGTVTTGKVTKVLDFGAFVELENGVEGLVHISELAARHVKNPAEAVQAGQQVKVRVLEVDREKRRISLSIRRSEEPKPPEPPSPEELKRREEEAKRLARKKEQRSKLRGGLDF +>tr|A0A1J0GQZ4|A0A1J0GQZ4_9CAUD Uncharacterized protein OS=Mycobacterium phage Albee OX=1913041 GN=SEA_ALBEE_18 PE=4 SV=1 +MSASDRQPPGPYPEGFTEAVRPEDVDVSKCDHEFGVCFCVHDWRIHWGNLDRSGL +>tr|A0A3B9GZ83|A0A3B9GZ83_9PROT Aminodeoxychorismate/anthranilate synthase component II OS=Hyphomonas adhaerens OX=81029 GN=DCG58_11365 PE=4 SV=1 +MILVLNNRDSFVFNLARCLTLAGADVEVEDSGRITINDIIRRRPEAIVISPGPSRPEQAGVSIAAVQTFGADLPILGVCLGHQVIAAAYGGSVRRSLTPSHGRTANIMHQGRHLFRGLPSPLPVGLYHSLTVDLEPNETGLQVDATAPDGEIMALSHVEHPVFGVQFHPESILTEQGQGLLGNFLRQYRSVPCL +>tr|A0A349TMC4|A0A349TMC4_9GAMM UvrABC system protein B OS=Gammaproteobacteria bacterium OX=1913989 GN=uvrB PE=3 SV=1 +MSKPFQLESSFKPAGDQPAAIASLVEGLEDGLHAQTLLGVTGSGKTFTIANVIEQVQRPTLVMAPNKTLAAQLYGEFKEFFPHNAVEYFVSYYDYYQPEAYVPASDVYIEKDASINDHIEQMRLSATKALLERQDVIVVATVSAIYGLGDPNSYLQMVVHLDRGDRMDQRKLLRRLTDLQYTRNDMELRRATYRVRGDVIDIYPAESERHAIRIELFDDEVEKLSYFDPLTGALIKEVPRLTVFPKSHYVTPREKLLATLDDIKIELHERLKQLTSNNRLVEAQRLEQRTKFDLEMIQELGYCNGIENYSRYLSGRESGEPPPTLYDYLPDDALVVSDESHVSIPQLGAMYKGDRSRKETLVEYGFRLPSALDNRPLRFEEWESLTPQIIFVSATPGPYEEEHEGQQVRQVVRPTGLIDPELEVRPASTQVDDLLSEVNRVVALKERVLVTVLTKRMAEDLTDYLAEHDVRVRYLHSDIDTVERSEILRDLRLGNFDVLVGINLLREGLDIPEVSLVAILDADKEGFLRSERSLIQTMGRAARNLNGKAILYADTVTGSMQRAMDESNRRRETQLAYNEAHNITPIGVQKRVLDIMEGAYSAPGSRTRQRTRSVAEPQGDYGTLNFNDPYEIRKEITKLEAAMYEQAKNLAFEEAAATRDSIADLKQQLLRQ +>tr|A0A0Q7TC29|A0A0Q7TC29_9HYPH Protein-export protein SecB OS=Pseudolabrys sp. Root1462 OX=1736466 GN=secB PE=3 SV=1 +MTTTNGGQSQDFNPEQVPQLNVVAQYIKDFSFENPNAPKSLIGGEQPQISIQINVNAAPMSDSDIEVVLQLSGKAETGGSLMFSFDLAFGGVFRIRNVPQESMNAVVLIECPRLLFPFAREIIATTVRNGGFPPLLLDPVDFVALYRQKMAQLGGQAPAQ +>tr|A0A1H8PJE2|A0A1H8PJE2_9PSED Ca-activated chloride channel family protein OS=Pseudomonas sp. NFACC39-1 OX=1566195 GN=SAMN03159293_02848 PE=4 SV=1 +MFEFAWPWIFALLPLPWLMRLVLPAADSGEPALRVSFLGDLEGLVGRRARSNLPTWRQQAPFILLWLLLLIAAARPQWLGEPLPIAASGRDLLVAVDVSGSMDFPDMRWQDEDISRLALVQHLLGDFLESREGDRVGLILFGSQAYLQAPLTFDRRTVRLWLDEARIGIAGKNTAIGDAIGLALKRLRQRPANSRVLILVTDGANNGGEIDPLTAARLAAEEGVKIYPIGIGADPEESGTAGFVGVNPSLDLDEATLREIAQATGGQYFRAQDGQQLLAIKTTLDQLEPVTQQPTQARPAQALYQWPLAVALLLSVLLVARERWPDNPLQRLFTQPLFQPAEHSEWRRRLKRMRLGKRR +>tr|A0A1C3Z1D9|A0A1C3Z1D9_9LACO Citrate lyase alpha chain OS=Lactobacillus apis OX=303541 GN=GA0061073_0264 PE=4 SV=1 +MENKVKRNLPDELMSDMKLKPFESVEVGNPEIKRIAPKVHVTTGENKVVDSLEEVIKKTLKDGMTISFHHHFRNGDFAFNKVMDLIIKLGYQNLTLAPSSLTSVMNDKVIEAIQKGVITNITSSGMRGTLGDFVSHGGLKNPVVFRSHGNRARSIEEGEIKVDVAFLGVPNSDPAGNANGQEGDAVFGSLGYALIDAQYADNVVLLTDNIIDYPNTPASIKQTQVDYVVKVDQIGDADKIGSGATRFTKDPKELKIAEMVNQVIVNSPYYKEGFSFQTGSGGAALAVTRYLRQSMINDGITASFALGGITKPTTDLLDEGLVKKIMDVQDFDKGAAASMAKNRNQQEIDASWYADPHNKGAVVNNLDVAILSALQIDTDFNVNVMTGSDGVIRGAIGGHQDAANAKMTIITAPLVRGRNATVVPSVETVVTPGDSIDVLVTERGIAINPKRKDLIEAFSKVPDLNIVDITELQQMAEKQVGVPKPLEYTDRTVALIQYRDGTIIDTIKQVKD +>tr|A0A3S0XSH9|A0A3S0XSH9_9GAMM 10 kDa chaperonin OS=Legionella sp. km772 OX=2498111 GN=groS PE=3 SV=1 +MKIRPLHDRVVVRRMEEERTTAGGIVIPDSATEKPMRGEVIAVGAGKVLDNGDLRALAVKVGDVVMFGKYSGTEVKVEGKELVVMREDDIMGVIEK +>tr|A0A5S9Q0P4|A0A5S9Q0P4_9GAMM ATP synthase subunit delta OS=Zhongshania aliphaticivorans OX=1470434 GN=atpH PE=3 SV=1 +MAELSTTARPYAKAAFEHALAASTLGEWSAMLVTAAAVSQQPEVMKFLSSPAMTTAQQAQMFIDVCADTFNAGGENFIKILAENKRLGLLPTISELFDAQKAIQERTVDVELTTAFALDSESEKRLAEVLGKKLAREVHVHTTIDPLLLGGVIVKAGDLVIDGSVRGRLAKLAEAINS +>tr|A0A1H7GQD5|A0A1H7GQD5_RUMAL Uncharacterized protein OS=Ruminococcus albus OX=1264 GN=SAMN05216469_102219 PE=4 SV=1 +MKKFTMTNLYSYNELYLSLYLESEETLFVVHTERSECAGTPVTSISG +>tr|A0A699MW03|A0A699MW03_TANCI Reverse transcriptase Ty1/copia-type domain-containing protein (Fragment) OS=Tanacetum cinerariifolium OX=118510 GN=Tci_766510 PE=4 SV=1 +MQEELHEFERLEVWELVPRPDKEEGIDFEELFALVSRLEAIRIFLAYAAHKNMVVYQMDVKTAFLNGNLWEDVYVSQPNGFVDPDNANHVYKLKKALYGLKQAPHAWYDMLSLFLLSXELVPRPDQVMVITLKWIYKVKLDEERQRLTSGLQISQNPRSIFINQSKYALESLKKYGFESCDPVDTPMVEKSKLDEDKEGKVVDPSHYRGMIGTLLYLTASRPDLQFAIC +>tr|A0A1C4LAA2|A0A1C4LAA2_9ACTN Uncharacterized protein OS=Streptomyces sp. BvitLS-983 OX=1838282 GN=GA0115250_119211 PE=4 SV=1 +MTLFLGLGIAGIVLLVLSLIFDGVLEGFFGDFLDGLLSLPAIAGFVSMLGFGGAIVLGTTGLGVAGATVVGVLAGVVTGWVVLKLSKALMRDQTDATPRSADLVGTAGSVVTAIPASGYGEVLVYLGGQPLKLSAKSTAPLTRGTEIWVEASLSSTSVSVRPVER +>tr|T2KLF8|T2KLF8_FORAG Uncharacterized protein OS=Formosa agariphila (strain DSM 15362 / KCTC 12365 / LMG 23005 / KMM 3901) OX=1347342 GN=BN863_18780 PE=4 SV=1 +MFKVKLAFMIKVLINNTATKNIHDKKNYIYLTKHQLYGVLPRFC +>tr|E3RGL9|E3RGL9_PYRTT Uncharacterized protein (Fragment) OS=Pyrenophora teres f. teres (strain 0-1) OX=861557 GN=PTT_06956 PE=4 SV=1 +MLKDVIANNPDKTLTQCLDIVIDKLQLLHQAMTQQNGPSERALANQLISACQGVEACSAVLIRPASTFEA +>tr|A0A7J6B8G4|A0A7J6B8G4_AMEME Sodium/hydrogen exchanger OS=Ameiurus melas OX=219545 GN=AMELA_G00035750 PE=3 SV=1 +MGSERKHHAAKGAWGTLRLCVLASLSVCLCLCRAEDSSMENIVTEKKAEESHRQDSVDLLVFILLLTLTILTIWLFKHRRFRFLHETGLAMIYGLLVGVVLRYGIHVPRDINNVTLSCHINASPATLLVNVSGRFYEYTLKGKISSNDVKDVQDNEMLRKVTFDPEVFFNILLPPIIFHAGYSLKRRHFFRNMGSILAYAFVGTVVSCFIIGLLMYGCVMLMKYTGQLGGDFFFTDCLFFGAIVSATDPVTVLAIFNELQVDVNLYALLFGESVLNDAVAVVLSSSIIAYQPEGNNSHTFEAMAMLNSLGIFLGVFSGSFALGVATGVMTALVTKFTKLRDFQLLETALFFLMSWSTFLLAEACGFTGVVAVLFCGITQAHYTYNNLSPESQVRTKQLFELLNFLAENFIFSYMGLALFTFQNHVFNPVFIVGAFLAIFLGRAANIYPLSFLLNLGRRNKISYNFQHMMMFAGLRGAMTFALSIRDTATYARQMMFSTTLLVVFFTVWICGGGTTQMLSFQHIRVGVDPDQDNSIGPEGLERRSTKQESAWLFRIWYNFDHNYLKPILTHSGPPLTATLPACCSPLARCLTSPQACENEGQLKDDDSDLILNDGDISLTYGDITVNTDATGTRTISIPAGAAGVHSDDALDRELTFGDHELVIRGTRLVLPMDDSEPPLRHREI +>tr|A0A1I5AAM2|A0A1I5AAM2_9MICO VOC domain-containing protein OS=Mycetocola miduiensis OX=995034 GN=SAMN05216219_1297 PE=4 SV=1 +MFTPVHAFSGFSVDDIDAARSFYSEKLGLTVADDDMGILRITLPGGAEVIAYPKPDHTPATFTILNFVVSDVDAAVDELNGRGVTTKIYEDENLPTDEKGVMRDNGPTIAWFRDPAGNVLSVISQ +>tr|V4K2D3|V4K2D3_9CREN Uncharacterized protein OS=uncultured Acidilobus sp. MG OX=1410573 GN=MGAcid_05220 PE=4 SV=1 +MLSHTVELMKSSQGERPDGLPGRGYLLTCTPAPR +>tr|A0A1D6F6L1|A0A1D6F6L1_MAIZE Uncharacterized protein OS=Zea mays OX=4577 GN=ZEAMMB73_Zm00001d007456 PE=4 SV=1 +MLEPVDIGRDGKTVSCRIHDMVLDLISFLSNEEHFLTKVGEQQPISLDLPKKIHRLSLQISQEEEVKQLATMSFSHVRSLTVSTKVFQLMPKLSAFLVLRVLNLKKCKGVRNHHFKDICNMFHLRYLSLNAEFITEMPREIQNLQFLQVLDISNLGHKVKMPTIIHLRQLLRLCFRPMWGIRLPDGFGKLTSLQEVKGIITIKLPSMLHNLGCLTNLRTLAIDFCDWDESYEEPFIQCLSNLVSLKSMEIKGTMVSSLCSECDKLYPGPQHLCSIDIESTAVPRWMSSLCFLSSINIELLALGAQDFHVLGSIPSLRCLSIHVKETRDERLVIGKCYPFRCLTEMQIDYESMAVVFAPGSMQNLKELHLVFGVKEVMHKYGDCNFGLEHLMSLEHVSVKTMYSIMPEEVEAVKDEFQKSLDMNPGKPTLIVDYKYPIKRKIRSHAQAIRAAILFANAGRIPATEGL +>tr|A0A6A9K9T2|A0A6A9K9T2_PSEAI Exodeoxyribonuclease III OS=Pseudomonas aeruginosa OX=287 GN=xth PE=3 SV=1 +MDTLKIATFNVNGIQTRLAALLAWLEREAPDIVCLQELKTPDARFPAAALERAGYGAIWQGQSAWNGVAILARDSQPLEVRRGLPGNASDPHSRYLEAAVDGLLVASLYLPNGNPQPGPKFDYKLAWFEHLIRHAAELMESGHPVVLAGDFNVVPSDFDIYDTRSWKKDALLQPESRECFERLLRQGWVDALRQRFPDRRLYTFWDYFRQHWQRDAGLRIDHLLLSASLADHLEDAGVDRWVRGEEHASDHAPAWVSLRLS +>tr|A0A024VDL3|A0A024VDL3_PLAFA Uncharacterized protein OS=Plasmodium falciparum Vietnam Oak-Knoll (FVO) OX=1036723 GN=PFFVO_00427 PE=4 SV=1 +MAFMFKREGCYSKNRLNEVFRKNKSFVNQLMYDLTSFHYENYMKNKIHKNIMNNYNNIEKIQSMLNLINGEKENAYKIKTGYFYFRSGVPVITPHIEQTNEFAESNNYTYNFKNIKKKYLKEVYDSYKHKIGGTDPSVPHFYKHK +>tr|A0A1Z9W0I5|A0A1Z9W0I5_9GAMM Cysteine--tRNA ligase OS=Oceanospirillales bacterium TMED91 OX=1986769 GN=cysS PE=3 SV=1 +MSLQIFDTLAREKRVFQPLEAEKIGMYVCGMTVYDHCHLGHGRVMVAFDAIVRYLRFRGFEVNYVRNITDVDDKIFXRAAERQIPFSALTAEMIDAMHADEAKLGCQLPNHEPRATANIDSMLRLXERLLERGAAYQGDSGDVYFRVGAFPEYGKLNNRNLDDMVAGARVAVAKDKEHPADFVLWKSAKAGEESWSSRFGPGRPGWHIECSAMSMDALGETFDIHGGGPDLKFPHHENEIAQSESATGCQFAQYWMHAGAVRVKDEKMSKSLGNFVTLAELFREFHPQVIRFFLLQSHYRSAISFSDDALVQAGAAYTRLVQALPDQLTSPSSDAIFQFQQFMDDDFNTPRAIALLFDLAAEGSEESGSSLLAIGKVLGLFATDKVTFLAEQQQLKAANSGLSDAAINALIAARKQARKDRDFFTADKIRDDLVAQGVVLEDAAGGTSWHRK +>tr|A0A4U5PX20|A0A4U5PX20_POPAL Eugenol O-methyltransferase family protein OS=Populus alba OX=43335 GN=D5086_0000167450 PE=3 SV=1 +MASSIENHVSQVDEAKDENFGYAMQLALSSVLPMTLHTAIQLGIFEIITKAGPDVKLSAADIAAKLPTDNPDTPKMLDRILRLLASHQVLCCFVDGSERFYSLAPVSKYFVRNQNGVSLAPFMAMIQENVILQGWSQLKDAVLEGGVAFVRVHGVQAFEYPGLDPRFNQVFNTAMYNQTTIVNGHMLEKYDGFKNLKQLVDIGGGLGHTLKAVTSKYPQIKGINFDLPHVIEHAPAYPGVEHVGGDMFESVPKGDAIFLKWILHNWSDDHCLKLLKNCYKAIPEDGKVIVMESVLPITAKTSPAAKAISQLDVMMMMSQNPGGKERTEDEFMALATAAGFRGIKFETFVCHFWVMEFFK +>tr|A0A2T6GMZ3|A0A2T6GMZ3_9PSED Isocitrate lyase/phosphoenolpyruvate mutase family protein OS=Pseudomonas protegens OX=380021 GN=C5U62_08510 PE=4 SV=1 +MDAQSLRANVFKALHERAGAFVIPNPWDAGSARMLVGLGFEALATTSAGNAFSLGRPDAEGAVSLEDTLNNVREIVGASSLPVAADLENGFSDSPEGCAQALLLAAASGVVGGSIEDASGRADEPIYDFNLAVERIEACVVAARSLPFPFTLTARAENLLHGRDDLPDTIRRLQAFAEAGADVLYAPGLRSAEEILQVVRAVAPRPVNVLMSGGLNLSVAQLAELGVKRISVGSALARAAYGAFYRAAEDIRDHGRFDFAERAMPFRQINQLFKQP +>tr|A0A7R9P3G8|A0A7R9P3G8_TIMCA (California timema) hypothetical protein OS=Timema californicum OX=61474 GN=TCMB3V08_LOCUS1220 PE=4 SV=1 +MAGSEPASAWKESGKLFRENYLSSPDRDLNLDLFIAGSLAQHETSPLDNYATEATPEEIETSLDAALKAGYRHIDTAFAYKNEDAIGRVLKRWFDSGKIQRKDLFIVTKLPGTGNHAESVEKYIKLSLSALQMDYVDLYLIHSAVGKKDSDRGPAGSDHQAELDMNTDHVSVWKAMEAQVDAGRAKAIGLSNFNARQIKRIWSSARIKPANLQVELNVYFQQRELTAFCKALDITVCAYAPLGNPDFAKRISGKSDLKFSSPMEDPVVVKIAKKHNKTPAQVLLRWIIQRGIVVIPKSKTPSRIKANFEVFPSRVCIQRALLGVPREMEQL +>tr|A0A7K2SMN5|A0A7K2SMN5_9ACTN Gfo/Idh/MocA family oxidoreductase OS=Streptomyces sp. SID8350 OX=2690337 GN=GTY74_01910 PE=4 SV=1 +MARSQEQGTEAQTGTPAPPSGQALGTLGVGMVGYAFMGAAHSQGWRTAGHVFDLPVRPALAAICGRDRAKVDAAAARHGWAAAETDWRALIARDDVQLVDICTPGDSHAEIAIAALEAGKHVLCEKPLANTVAEAEAMVRAAEAARARGQVAIVGFNYRKVPAITYARQLIADGRLGTLRHVRASYLQDWLVDPASPLTWRLKREHAGSGALGDLGAHIVDLAQYLAGELLTGVSAVAETFVRERPLLAGAPAGLSGRADTAELGEVTVDDAALFNGRLASGALASFEATRMAAGRKNALRLEINGELGSLAFDLERLNELSFHDHTEPAATSGFRRILVTEPEHPYLEAWWPPGHGLGYEHTFVHQARDVIRTIVEGTEPRPSFADGLQVQRVLAAVEESAAKNSVHTAVPS +>tr|A0A6M1RBC6|A0A6M1RBC6_9GAMM Uncharacterized protein OS=Grimontia sedimenti OX=2711294 GN=G5S52_07050 PE=4 SV=1 +MQADQMRKGMIISKTCAVIAKGKSPQTTQPGYSLQSMRHGEPVNEDAIRAKAKQLGLDQQEQDLFVVIKRNLVHSKKVKDGQIAAFAKHVVQYCDSEADIYNALKGIEQQMAVMDHFIRYIHV +>tr|A0A533RQR5|A0A533RQR5_9ACTN Uncharacterized protein (Fragment) OS=Actinobacteria bacterium OX=1883427 GN=FDZ75_06060 PE=4 SV=1 +MLEMRIGTIKTPWFLALAVVVALVAIASFALVAVAEPPMAEQSSNDVAHHWTARSAGVAPYTELAPAEAAAIDTAKKALTQPPLGVIRNADHGYGAAQGALDTMKAVSTAAPIVAGHELVLSNGTKAVRVYVNQDGSVKPLGSGTLWVSATPNKALSDHNDFDAAEIARGALALHAALDPGTA +>tr|A0A2A8FPC4|A0A2A8FPC4_9BACI PucR family transcriptional regulator OS=Bacillus sp. AFS026049 OX=2033493 GN=CN563_06555 PE=3 SV=1 +MNTSITIEEILTRKHFNLTDIIAGSSGIKRQVKWVHCMEVTQISHLLNGNELILTTGLGWKDCDDTFLSYLRQLIECDAAGLCIEMGANTMAVPQCAIDLANERQFPIILFHEEVPFVEITQDIHSLIINKQYQMISNLENYSQQLNKNLLEIDHYEPILKFLHSYLHVQVILIFNENDIASIPKIKKKSTYQMVADIYEEKRKLDKTVLGQPIQVLGENYAELLICSNGRELTDFDSLILDRTATALAQHLLRELYIEEKKMSEESIWLTNWIEGEYSDEAIRERLSYIDPKMQLDGGIVCICKQHPKYNKNSAKLDGTYFKIMFRTVFEQYGFQIFSMEIQQHLVFILGDNRSSEDWKSRVTSALDRIMKMDVSGRNRMGLLSIGFGKHVQRLSEIYKSYETARETLLLQDTLPEDDRSFFYQDLHMHRMISLINKHGNLEETVYEYLGPVIEYDKQNNGELMPTLKTYLACNGSKQETSKQLFIVRQTLYHRLEKLEKLLGSDFMRSDKRLGLEFMIFALDFLQYSSRKISGKYVDKYIGR +>tr|A0A6N6RG02|A0A6N6RG02_9HYPH sn-glycerol-3-phosphate ABC transporter ATP-binding protein UgpC OS=Brucella intermedia OX=94625 GN=ugpC PE=3 SV=1 +MASIDIQSVRKSYGEHAVLHGVDLEIKDGEFIVLVGPSGCGKSTLLRMIAGLEDITSGQVQISGKRVNELAPKDRDIAMVFQSYALYPHMSVADNMSYSMRLRKTPKEKIASAIQSTAAKLGLEPLLERRPKALSGGQRQRVAMGRAIVRQPKAFLFDEPLSNLDARLREQMRAEIKKLHGELKATSIYVTHDQIEAMTLADRIVAMHGGVVQQVGSPLELYDRPANLFVAGFIGSPAMNFLDVTYLEQDGGPRLKLKDGTLIALPQPLNLKDGAKATLGIRPEHVHIEKSAGLPADVDLVEPTGFGIILHLSLHGLPFKIFTLDRDALHMQGSIQVSFPAQHLHLFDGDGNRVEPRAVQ +>tr|A0A522BP99|A0A522BP99_9BACT Transketolase family protein OS=Patescibacteria group bacterium OX=2052139 GN=EPN90_03525 PE=4 SV=1 +MELKPTRDGYGLGLVDAGKKDAKVVVLCADLSESTRSHWFKKEFPARFVQIGVSEQSMAAIASGLALAGKVPFISSYAGFSPGRNWEQIRTTITLNDANVKVAGAHAGVSVGPDGATHQMTEDLALMRTLPNMVVLAPCDMQETKKATVAVAGVYGPHYLRFGREKSPVFTTPATPFKIGRAEIFRFGRDVTIVACGILVHEALKAAEELRKKGIEAEVIDSHTIKPLDAKTILASIAKTGCVVTVEEHQVDGGLGAAVAEALGAARPVPLERIGVQNRYGESGEPIMLLEAFGLTSPYIAMAARRATARKAGKKVSEVPDYMAAAERRAVELKKQVISEALSRAPREWGGKKGNIKDLIKKSK +>tr|A0A852SI39|A0A852SI39_9MICO Putative membrane protein YkoI OS=Herbiconiux flava OX=881268 GN=BJ984_000542 PE=4 SV=1 +MQKKTKIIGGATLAAVLVLGGTGIAYAATDGFEGSDALTGGDLDRAATVASEEIGGGSVTSAERDDDGYELELKGDDGRYYEVELDGSFGVVSSSADDRVGDTGSSGSGSGSGSGESGESGESGTGEAGGPADGGDDEGDGAGAGSASVDPDDLQGEELEKASAAAIAEAGGGSVTDAETSDDADHAYDVEVRLDDGTEVDIDLDASFGVVRTEK +>tr|A0A0E0XWR4|A0A0E0XWR4_ECO1C Lipid A 1-diphosphate synthase OS=Escherichia coli O104:H4 (strain 2011C-3493) OX=1133852 GN=lpxT PE=3 SV=1 +MIKNLPQIVLLNIVGLALFLSWYIPVNHGFWLPIDADIFYFFNQKLVESKAFLWLVALTNNRAFDGCSLLAMGMLMLSFWLKENAPGRRRIVIIGLVMLLTAVVLNQLGQALIPVKRASPTLTFTDINRVSELLSVPTKDASRDSFPGDHGMMLLIFSAFMWRYFGKVAGLIALIIFVVFAFPRVMIGAHWFTDIIVGSMTVILIGLPWVLLTPLSDRLITFFDKSLPGKNKHFQNK +>tr|A0A2V7LM58|A0A2V7LM58_9BACT Non-specific serine/threonine protein kinase OS=Gemmatimonadetes bacterium OX=2026742 GN=DMD60_00570 PE=4 SV=1 +MTEGDPRPCARNHRRSVRMLLRPRDRTAQLARNLVYTPRGTEGPVTVDLLLPDLQRALAGRYVLERRLGRGGMGVVYLARELRLDRRVAIKLLPPERATQPTARERFLREARTAAQLSHPGIVPIFAVHEVSDFVYFAMAYVDGDTLGRRVRRRGPVPYATAARLLEEVARALAYAHDRGIVHRDVKPDNILLDQTTGRALVSDFGIARVGSATTTGPQRVVGTAEFMSPEQVLGERVDPRSDLYSLGVVGFFALSGELPFLGPDDMTVLARQVSDPAPPLASVAPHVPHRLAEAIDRCLAKDPAERFPNGEALAAELAAALDRRAAVAVRAFVTEARQLSTTTLFYGAFAAVALPLLVLRLLEPDDPPTRAALVGSVATVVAVPLVVMVLRVRRLSKAGYGQADLVDALSAELGHRREELAFLYGEGPSPLERALRRLCYVCVAAAGAIVAALERVPALAGALGVPTLFGVVTAAALVAAVAARARTEHRTNPKGERRLRFWSGPLGRWLFTLAGLRVKRRATPAPGVLSPVVTPVPEARDA +>tr|A0A1I3RF39|A0A1I3RF39_9DELT Glyceraldehyde-3-phosphate dehydrogenase OS=Desulfomicrobium apsheronum OX=52560 GN=SAMN04488082_103115 PE=3 SV=1 +MEKTRIGINGFGRIGRQVLKTIWQRHRDTLEVVAINDLFDTQTNAHLLRHDTSYGHFAAPVEADADTIRVGGEWEIKSFAQRDPKLIPWKSCGVDIVIESTGIFRTGPTAGQHLESGAKKVIITAPSKDEDLTVVIGVNEDKYDPAIHHIVSNASCTTNCLAPAVKVMHAKFGVAKGVLTTVHAYTNDQRILDLPHKDLRRARAAACNMIPTSTGAAKAVAKVIPEMAGRFDGYSVRVPVPAVSLVDFVAVLERDTTAEELKAAFKEASENELKGILGYAEEALVSSDFIADPHSGVVDADFTTVQAGNLAKVLIWYDNEWGYSCRVADLAHLMAQKGL +>tr|A0A401RBY4|A0A401RBY4_STRA9 TetR family transcriptional regulator OS=Streptomyces albulus OX=68570 GN=SALB_07941 PE=4 SV=1 +MERAERGERILEAAGELLVAWGYRRVTIDEIARRAAVGKGTVYLHWKTKDALLLAVVLRAKSRSLHAQLARMRADPREILPSRMMRGYYLDFLAEPVLRALYTDDVDVLGRLNDVAKKELAELMAFNDGILLRYLAVLREHGLVRTDIDVRHQQYVLMSTATGFFMAEAMLADHAPDTPEVRADLFAATIRSAVDMPVEGFGAQTVGPPGRSGAPRARTVEEALVAARRDVLPLYEQAEEYGAREMRRQLRG +>tr|A0A1X2LS66|A0A1X2LS66_9MYCO Dehydrogenase OS=Mycobacterium decipiens OX=1430326 GN=B8W66_16385 PE=4 SV=1 +MCVLRLLDMALERLCAEGLIKGPLRAGFGQEAVSIGAAAALGEGDITITTHRPHAQHVAIGGRLGPMVAAMTGSTAADIWGGDNQVLDAFPRGGLSAGPCVVKQSPSYAIGHAYRQWLADTGGITLCVTEDCDVNSAAFNEAANMAAVWQLPVVILVENIRCALSVRSDRHLREPQAYRRAAAYGMPGVSVDGNDVKAVRDCVTSAVLRARAGGGPTLVQAITYRTIDFSGSDRGGYRDLAGSEQFLDPLMFARRRLIAAGATRDRVAEEERAACQLVADAVAFAKAGSRRDSGARSQPPACV +>tr|A0A380JP96|A0A380JP96_9STRE Myo-inositol-1(Or 4)-monophosphatase OS=Streptococcus equi subsp. equi OX=148942 GN=suhB PE=4 SV=1 +MEDKYAFAKTIIKEAGLFIKDRMKDSLAIEIKTQHDDLVTNVDQETQDFLISKIKKAYPSDHMIAEEGDICHAITDGKVWVLDPIDGTVNFIVQKANFAIMMAYYENGIGKFGLIYDVMADQLFSGGGDFAVTLNDQVLASYQDKPLDLSLIGCNAGMLSRNEYNLHQLIDQTLGVRVYGGAGICMTKVLKQQLMAYFSYIQPWDYAAAAIMGESLGYVLLTLEGEQPDFQSRQKVMFVPKSKLATIQSLLHINENNQ +>tr|A0A2E6Z7C9|A0A2E6Z7C9_9GAMM DUF2061 domain-containing protein OS=Rheinheimera sp. OX=1869214 GN=CML21_09570 PE=4 SV=1 +MLKTTTFAIMHFTIAFAVTYAITGDLVLGGLVAVIEPAANTVAYFFHEKIWQRLQQKNTVQKSLTIFKKPALKW +>tr|A0A1D2SEW3|A0A1D2SEW3_9BURK Ribosomal RNA small subunit methyltransferase E OS=Lautropia sp. SCN 69-89 OX=1660104 GN=ABS56_13610 PE=3 SV=1 +MIRTLDARQSHHLVRVLRLAAGAPVEGFDGKGARFDARIERADPKACAIRLLAPIAACTESPLAITLAQGISAAERMDWTVEKAVELGAHAIQPIVCARTQVRLDAQRLQRRHEHWARIVEAACMQCGRDHLPELGVPLAFERWLAATDRRAARTRIVLDPRGAVRLAALRVDAAQPVDLLVGPEGGFDATELEAARAAGFQAVRLGPRVLRTETAGLAAIAALQAIAGDF +>tr|A0A1A8F559|A0A1A8F559_9TELE IK cytokine OS=Nothobranchius korthausae OX=1143690 GN=IK PE=3 SV=1 +MPETESYSNPLAPDDHELDDHRGGSQAKLTNDDFRKLLMTPRATPSSAPPTKSRHHEMPRDYNEDEDPAARRRKKKSYYAKLRQQEMERERELAEKYRDRARERRDGVNKDYEETELISTTANYRAVGPTAEADKSAAEKRRQLIQESKFLGGDMEHTHLVKGLDFALLQKVRAEITSKEKEEEDLMDKVQKETKKDLEPEEKIEFKTRLGRNIFRMVFRSGVSERNELFLPGRMAYVVDLDDEFTDTDIPTTLIRSKADCPSMEAQTTLTTNDIVISKLTQILSYLRQGTRHKKLKKKDKGKLDDKRAPEADLSIFDDIGDYIPSATSGTKPVKDKDRHRERERERERERNREDDSKSRRQSYFEKPRADEHQLMDVDAGPGSVRDQINMINEKFGGAAGSQWQGQEPGSQRRDSSKEHLGDFFGGSNSYAECYPATMDDLAVDSDEEVDYSKMDQGNKKGPLGRWDFDTQEEYSDYMNNKEALPKAAFQYGIKMSEGRKTRRFKETNEKAELDRQWKKISAIIEKRKKLEADGVDVKRPKY +>tr|A0A5C8LAV1|A0A5C8LAV1_9FLAO Uncharacterized protein OS=Mesonia sp. HuA40 OX=2602761 GN=FT993_07960 PE=4 SV=1 +MKKIDKKEIITSTAKSIFGAIPFGGAALDELFFEYNGRLKQNRLNRFVKILAENFTEESDINLDNIKTEDFNDLFESVLRKVVQTKSEAKLIRFKDVLLNELKKPTKQAEINELYLNLISELTEQEIEILYNHRFFTEEFEEEVNEMNRHRDNMKSLKNQMDKESIIVDESKFLKPYENVKAQFENKKSKIDKVLKYRNADFYNLNENKFMFFKQRLFSKGLLIDDRMKRIGTLPFQSMGITEFGVEFIDFIKTSEKKITVGNTVYNK +>tr|A0A1S6WTD4|A0A1S6WTD4_9HYPH 23S rRNA (Guanosine2251-2'-O)-methyltransferase OS=Bartonella sp. WD16.2 OX=1933904 GN=BWD162_004080 PE=4 SV=1 +MKEKVSKNSYFPHPRRQYRNTKSFNRMPSIHLKHRSTSSIQNIVYLYGIHSVKEALKNPKRVFNHLYATPNALQRLNITKSDLPCSLKLYPPKKLDELVGKDAVHQGVVLETETLKPRHLSELTNTNLIIVMDQITDPHNVGAIMRSAVAFKAGAIITTYRHSPQESGVLAKAASGALELIDYITVRNLAEALTEIHQAGFNSLGLDSESELPLETALTGKKIALILGSEGKGLRKKTRETVHSLARLNIPGDIKSLNVSNAAAIALYAAHNYLKH +>tr|A0A538MZI6|A0A538MZI6_9ACTN Peptidase_S8 domain-containing protein OS=Actinobacteria bacterium OX=1883427 GN=E6F93_02950 PE=4 SV=1 +MAMLRNGGRPGGQSRSSALWGTGNNDDSRSNALWGKGGRGLVTLMAAVLVLGIPLAASAGGDDNTGPETQTYVSPGMLANASKHPDKTIHVIVTANAGDLPKSRILDKTLGSVDRRLGLIDGIALDLRANRLDQLAKIPGLTITPDAPAHPTGSTFSSKQLWVPNTGIDKLWNAPVANSTKTQSDLAVPAIAVVDSGVDTSKAADFGARVVQQVNLTTLPNNSPGDGRGHGTFVAGIAAGQATGYAGASPRSNIVSLDVMDDTGTARTSDVIAAAQWILDNKDKYNIKVANFSLHASNSSSFTHDPLDKAVEKLWFSGVTVVAAAGNYGYANAPSGVKYAPGNDPFVITVGAADMDGNPSPNNDTAPSWSAYGYTNDGFAKPELAADGRYMVGPIPAGSTLASQKASNIVSPGYIMLSGTSFAAPIVAGIAAQIIARNPTWGPDQIKGGLMETARPTPNATPGSLGLGEVNALKAVLLSGAPNPNKALEKFLGPDPSGGNLPAFNAVSWSDTAKANVSWDAVSWGDVSWGDSALAAVSWADISWSDVSWADSLSSADVSWADISWSDSSYEDAAEGDGAGNTTDSFADPADLAAAAADPDLQLPSDLVALQPSATTSLP +>tr|A0A5E6PHC7|A0A5E6PHC7_PSEFL Alginate_lyase2 domain-containing protein OS=Pseudomonas fluorescens OX=294 GN=PS645_00335 PE=4 SV=1 +MIDLSTWNLTIPVGAPARVIETPRLVDGYSDAYFRAGNTLFFWAPVTGGTTSKSEFARSELRETYKDGELRNWKYPKADHRMTASLSVNQVPSEGRVVIGQIHIYQGKGPLLKVEYVYDKARQTGSVIANYRLKPGSADTKVVIAEDVDLNKRFTYEIRLSSAGYLHVISQGNRWGKQLSKSWQNKQLYFKAGAYALDNTGYKSEGAQVTFNKLEVKHSKG +>tr|A0A4S2D6C4|A0A4S2D6C4_9MICO Redoxin domain-containing protein OS=Microbacterium laevaniformans OX=36807 GN=E5344_10370 PE=4 SV=1 +MNHRALIATASVLLVVGLLAGCGSSESLAQQYRNGNEKGYIAGDFQIVEIPDPDRGEPVAFEGVTETGETVTSDDYRGGVLVVNFWYAACGPCIVEAPLLEEVWQDYQDQGVAFLGVNTYDQPATALSFARDNNVTYPSVIDVNDGRVKLAFAQVTPIQATPTTLVIDQDGRVAARIIGQLASASILSTLVADTLAEDSS +>tr|F2YA48|F2YA48_GLOPA Pectate lyase (Fragment) OS=Globodera pallida OX=36090 GN=pel1 PE=3 SV=1 +MLFVIISIVFAQLCQVHALCTFPASPKTTTVQSTINVASNTDYKYTTFVGGSGILNGGCDVKNGKMKYLMVLKNGVTIKNAIINTPGLGIYCEGNCVLENIYYKKLCYHATGFGYKSTSTSYTYQVIGGAGQGSPDKYFTQSGRGTTIIKNFCAEGKYGKVWCSCGNCIDQMPRSVQISNTKIQGPGLAIISANSNLGDKISISGLTLYGQGSPNTLTKYVCQTYNGLTKMATMQPTAKFRPTQAGTGTCAYSTSAIKIVN +>tr|A0A2K4FSF4|A0A2K4FSF4_9PSED Uncharacterized protein OS=Pseudomonas sp. MPBD7-1 OX=2075549 GN=C1892_11745 PE=4 SV=1 +MTSKKTATAVSDLTLSPAANGPEVSKPSSPPRPLSTQQYLYFTETNTDRILDNLDGLRDTVFPRPPHLVDDEYDRAQQEFPSVCLIGLGRCGSNIALDVAELVYNARKFYLNEFNAEDKGYSDKGYSPAQWIRNNLRLGTSKASKPVFLVEPLVMLGDLDKDIAGRIRFSRKGEKSGFLRDYSKMKIMDLSEVHAGGAGNAPILGQYLAKIILNKDTQRFSSPDWKMIHSYLIDSCGIKANQSRLYFSIFSAGGGTGSGMASEFGLAQQYSYMNKTFDTKPMDEHDSKSGHSFVFEPIFTSGICVLPNISDHRSEMSEALHINAGRLLCKYLSEEWDFSYNFANEDSSEASVMGRIRPWNAMMLISNDIMRYAEESDDGNIQNIDVNAMEKHANQYISQQIFNILTAQAVTTDYDQNYFRRAGIDIGETIRLDANDLFMSLAGPVAIAYAESVVPETPVPSGDKFKVFEKEPPRLNIDDLFFRSIDLPHFNKVTQAIEGISLLPIESKRYRASLEQYKNSGYDAAALHDLHFFKNCSSVVSIVSLPKDYKLSYMDLNRLKTHLNSLFPNTTLKRYALVIGASANLSLTTLIAKSPCLSDDFLTLIVAFIKRCFARTPYRFDETLDNSILDFIINEDFDEARIDDLLNEFENPAKILDTNWYAIKPMYEKKYRELINDKDKFVSINDIRLSRDCVKKSIKYLREIYRHRIGKTKVISLNNHTGRTY +>tr|A0A401T372|A0A401T372_CHIPU ENTH domain-containing protein OS=Chiloscyllium punctatum OX=137246 GN=chiPu_0015593 PE=3 SV=1 +MTSSSLRRQMKNIVNNYSEAEIKVREATSNDPWGPSSSLMAEISDLTYNVVAFSEIMSMIWKRLNDHGKNWRHVYKALMLMDYLIKTGSERVAQQCKENVFAIQTLKDFQYIDRDGRDQGINVREKSKQLIALLKDDERLRVERSHALKTKERMSSVTTAVGSNNQIMFGRGSSHPNLSTSQSDECGKIGGSPASYHGSTSPKISSELEQTRPQTSGEEELQLQLALAMSREEAEQIFKSATTAGSQPRNTVLTLSAQDEQHRRGDDLRLQLALEESRQKLQMPGMAPHKTETALLDLTDSTPSPLTQKSDPWGAPLPSTSTTKPDPWAAVSRPVSNDPWKQMAGSRLAAATSDPWGSSGRRLSGEQQSRSADPWGSAAAAPDRDPWAPTSPQVAPPFHSFSAADAAVTDEFSVFSHLRGSPRKVEGQGTGGRFEVLGDGLTTPATSVVTGCSDVFDMPSMSSTVPSKLPTPKHQPTTQKNPESFLGPNASLVNLDTLITHTTHPNVSTNPFLAQAVPVASANPFHSTPTQMSSSMMAVTQTPFGPVDVTATSFSAMPRVGAAPMVTMPAMQMPQSTGMQGMMGSNYVAMAAPPPTGQSASSTNPFLL +>tr|A0A318DIN8|A0A318DIN8_9GAMM Extensin-like_C domain-containing protein OS=Dyella sp. AtDHG13 OX=1938897 GN=BDW41_11025 PE=4 SV=1 +MSVVRYLGLLILMVGVFIALLVASGWRPPYRYNPWARLDLRAEPDWLTRFRLYRLQHHNDQCLAALAQAGAEYRAVSDRPLVDGCGWQGTVMLRGTGQATLATPTVVTCPLAASLVMLDAHVLQPRAASTFGSPVAVIEHVGSYSCRNIRGDDGSALSSHARAEAIDITGFRLKNGHDISVMRDWKRSVSGAFLHQIQAQSCGYFGVALGPDYNAAHAGHFHLQAGAMGWCR +>tr|A0A1R1WU44|A0A1R1WU44_9ACTN Uncharacterized protein OS=Streptomyces sp. M1013 OX=549798 GN=BSZ07_05050 PE=4 SV=1 +METLAQFGDGGPGPWILLFPVIWALVIGGGITLLRRTVWRGRRGPARPGAVEDNSPITVLGHRFASGEIDEDEYWRRLSVLDEQFGRTGKGGAA +>tr|A0A2S8IRD2|A0A2S8IRD2_BURCE Uncharacterized protein OS=Burkholderia cepacia OX=292 GN=C5615_17140 PE=4 SV=1 +MKKTTLKSVFLTGLLVLVPLAITLWVLGLIIGTMDQTLLLLPESWQPERLLGFHLPGIGAVLTLAFIFIVGLATRNFIGQKLVTWWNAVVRHIPVVGPIYTSVKQVSDTLLSSSGNAFRKALLIEYPRRGSYTIAFLTGTPGGDVLNHLTEEYVSVYIPTTPNPTSGFFLMLPKSEVIELDMSVDAALKYIVSMGVVAPPAPAPAPARRPVEPPL +>tr|A0A2T4IVX8|A0A2T4IVX8_9HYPH Integrase OS=Mesorhizobium helmanticense OX=1776423 GN=C9427_13580 PE=3 SV=1 +MLVGYARTSTAEQDAGLLAQQRDLREARVEKLFSEQVSSIGHRKELETSLDFLREGDTLVVTKIDRLARSTSHLLAIVDRLEEKKVGLRILDFGGASVDTKSPSGKLMLTMFAAMAQFEREMMLERQREGIAKAKLDGKYKGRKPTARARSGEVIKLHIDGVGPTEIAKRLGMGRASVYRILEAPGE +>tr|A0A8A6NMP5|A0A8A6NMP5_9ERIC InfA OS=Impatiens loulanensis OX=2822277 GN=infA PE=4 SV=1 +MKEQKWIHEGLITESLPNGMFRVRLDNEDLILGYVSGKIRRSFIRILPGDRVKIEVSHYDSTRGRIIYRLRNKDSRD +>tr|A0A7C6PFE8|A0A7C6PFE8_9RHOO Uncharacterized protein OS=Rhodocyclaceae bacterium OX=1898103 GN=GXX56_08515 PE=4 SV=1 +MQLPITIELHRSRLQPRILALLLSVALIVVLFYPLPVPLRLIGVTLLALGGGWMVRQLRPQVAALQLLADGSLGIRGTDWNHPEFVPARMLQGATVHPWLTVLRLEAQEGQPYRLLLTPDCLLPEDFRRLRVFLRWRSTVSASDAPV +>tr|A0A6P3QY80|A0A6P3QY80_PTEVA zinc finger protein 512B isoform X2 OS=Pteropus vampyrus OX=132908 GN=ZNF512B PE=4 SV=1 +MADPFCVGASRRLPGSSKSGPGKDGNRNEVRLPVRHDPPKLGLPVARGGQSVPSQAPLCFDPGSLASDRTEGKKKGRPKAENQALRDIPLSLMNQWKDEFKAHSRVKCPNSGCWLEFPSIYGLKYHFQRCQGGAISERLTFPCPFCEAAFTSKTQLEKHRIWNHMDRPLPAPKPGPVSRPVTISRPVGVSKPIGVSKPVTIGKPVGVSKPIGISKPVTVSRPVPVTKPVTVSRPVPVTKPVTVSRPVPVSKPVTVSRPMSVTKAVPVTKSVPVTKPVTTNKPVPMTKLVTVTKPVPVTKPVTVSRPIVVSKLVTVSRPIAISRHTPSCKMVLLTKSENKTRAAGRSSGKKRAADGLVACPIPPKQTRPENGEHGPSTLGQSSAFQLGTDPSGGPLSVGNRPSGGKEAPRAPGPVSPTEEGAERTKHRRKQKTPKKFTGEQPSISGTFGLKGLVKAEDKSRSYRARKQDGPSPEDVRKKAPAPASTVSKEVPAPTAHLAPGGPEEQWQRAIHERGEAVCPTCSVVTRKTLVGLKKHMELQDALKCQHCRKQFKSKAGLNYHTMAEHSAKPSDTEASEGSEQEERERLRKVLKQMGRLRCPQEGCGAAFSSLMGYQYHQRRCGKPPCEVDSPSFPCAHCGKTYRSKAGHDYHVRSEHAAPPPEEPEDKPPESEDLLGVERTPSGRIRRTSAQVAVFHLQEIAEDELARDWTKRRMKDDLVPETARLNYTRPGLPTLNPQLLEAWKSEVKEKGHVNCPNDCCGAIYSSVSGLKAHLAGCSKGDHLVGKYGCLLCAKEFSSESGVKYHILKAHAENWFRTSADPPPKHRSQDSLVPQKEEKSLAGGRKRGRKPKERPPEEPAPRTPPRQDDWPPGGRDKGVRGSAGRKVGAGKAPEK +>tr|A0A081RSK0|A0A081RSK0_PHOTE Chemotaxis protein CheW OS=Photorhabdus temperata subsp. temperata Meg1 OX=1393735 GN=MEG1DRAFT_03734 PE=4 SV=1 +MSAIEAFNKLSGETAGEGYLVFTLGDEEYGIEILKVQEIRGYDQVTRIANTPAFIKGITNLRGVIVPIIDLRIKFAQETVTYNDNTVVIVLNLLNRVVGIVVDGVSDVLSLKAEQICPAPEFAVTLSTEYLTGLGSLDDRMLILVDIEKLLNSEEMALVDSVAKN +>tr|A0A1V5AGS2|A0A1V5AGS2_9EURY tRNA (Guanine(10)-N2)-dimethyltransferase OS=Methanosaeta sp. PtaU1.Bin028 OX=1811687 GN=A4E47_00993 PE=4 SV=1 +MDGRDLKCGLEEAVASELWAFELSGEHATLPRSEALALLKVHSSSFKEVCLLDQCLIVRAPSIDAAALEARLAMSHRVLRVLAISSCSHSDLSFAASSIDIPRQTYRVRARSVGRSALSGYDVEVAVGRELFRRGYRADLSAPCQEIRCIVSQGLVVLGVEVARPDRSGFEGRRPHLKPFFYPGVLMPRMARALVNLTCVRPGERLLDPFSGTAGILVEAGLIGTRCVGLDVQMKIVRGSLANIDGIECSLLAGDARRLPFRDASVQAVVTDPPYGRSAAIRAASRDELLARSFEEMARVLQPGRRAVVVADHPIDDLLASAGFLQREIHSERVHRSLTRRIYISEI +>tr|A0A4V3XAK0|A0A4V3XAK0_9APHY Uncharacterized protein OS=Phlebia centrifuga OX=98765 GN=EW026_g3689 PE=4 SV=1 +MSDASDILPPSLDLPPHLSAQKYFFVCTLTVAAWDTLVLSPRSWRLFRTKGWPFLKIAYHFLRIFMPVEFTIVGVAFFDTKWSQETCSHFFLFEPICTAILLAVCSAVHVIRINAIYDKDRRVFTPMVALYAIQILITAICCGFYRSTPLLIGQGCIAEPKHSWVGIYWISATMLYTASFGLALSRAIRSLKIKKISYWKLMLRDGLNLYAAVFLVNLVNMLFWFIITPTGPEDPIRTIVTSMSAVLTASMTLRIILSVRGTLEKGGSTGPVLSLQQPGTGTFNVPLGATESKTHDWVDDKASDQMGMSEVKGEGDFPVESGLGTPTSEDAPKGVKITIDTETAF +>tr|A0A1M8A1H4|A0A1M8A1H4_MALS4 Similar to S.cerevisiae protein RKM2 (Ribosomal protein lysine methyltransferase) OS=Malassezia sympodialis (strain ATCC 42132) OX=1230383 GN=MSYG_0658 PE=4 SV=1 +MEQALAAYVARASGSPTLRVAVSDQVPAGRGLVTTGAVQAGETVLRLPPSVLLNPSQMARGRPVPWAPLRHAEEPCPNARPLSTHQLLACVLAQWRAARVAGPSTELSDRDAFFASMPSAFPTVPLSWALDGDTQLLSALPPRAARLHDKVQARFEADWRRLDALDEATRASIWASVSRPGIPAVRPRKADVLWGWLCVNSRCVYVDLRYVRHEDNFTLAPLLDMANHTFVQGKQCKVRYSAEGMELCAPAQCGLQAGDEVCITYGPHTNATLLTEYGFLLAPRDALRGASAWDGNPHAELAVDDAIAERFRAEGDEGAWKVQRLKEEGYSGDYTMHPEPAPAHVSHRLLMALWLLSMAMENKHTTQRLSLRARAALQAKQGLRCVYSPKEAARQWKQVTYGMPDSRHERPMRDVLCRLCTEMAEQRSALLEQLQGRHDEPASLVRLLLEEERDIAHRVQTSAERGEAW +>tr|A0A4V6I9D8|A0A4V6I9D8_9BURK Glycoside hydrolase OS=Burkholderiaceae bacterium PBA OX=795666 GN=MW7_007585 PE=4 SV=1 +MAGAPPCVHAETARSRAIDVPGPWTTYYGAASKLDLQQVARTYRLLVIDADPGQHNFTPEQIAQLRDGGRNRVLSYLNIGSCERFRTYWRTTGTAIPGCGANRRAQRGVYHGYPDEVWMDPSDPDHQRLVLDYLAPRLVAQGVDGFYLDNMEIVEHGVRTDNGPCGDACRRGGLELVYKLRARYPQLTIILQNTAGPVTRMGQAGGVPFPTLLDGIAHESVFAPQHDADADAQLALWRAWSSERPEQRFWIGTLDYVGKCENVDRARKAAARSRARGYVPAVSDASAGQQRICDWPQPLAE +>tr|A0A851NIW1|A0A851NIW1_9GALL PPARD protein (Fragment) OS=Penelope pileata OX=1118817 GN=Ppard PE=4 SV=1 +MEQLQEEVPEVREEEEEEEEAVTVTGGASDPSAGPDSSLPSSSYTDLSQSSSPSLSDQLQVGCEEAASGALSVECRVCGDRASGFHYGVHACEGCKGFFRRTIRMKLEYEKCERSCKIQKKNRNKCQYCRFQKCLSLGMSHNAIRFGRMPEAEKRKLVAGLTASEISCQNPQVADLKAFSKHIYNAYLKNFNMTKKKARGILTGKASSNPQPFVIHDMDTLWQAEKGLVWKQLVNGIPPYKEIGVHVFYRCQCTTVETVRELTEFAKSIPSFIGLYLNDQVTLLKYGVHEAIFAMLASIMNKDGLLVANGNGFVTREFLRSLRKPFNEIMEPKFEFAVKFNALELDDSDLSLFVAAIILCGDRPGLMNVKQVEEIQDNILRALEFHLQSNHPDAQYLFPKLLQKMADLRQLVTEHAQLVQKIKKTETETSLHPLLQEIYKDMY +>tr|A0A1H7HQ73|A0A1H7HQ73_9LACT Transposase InsO and inactivated derivatives OS=Alkalibacterium pelagium OX=426702 GN=SAMN04488099_103146 PE=4 SV=1 +MKIIGLAESTYHYHAKRMNQPDPDREWKTLITKIFLDKDKRAGYRSIHDILIFMGYTINHKKVQRIMQELGLKCHKFSRKSRSYSSYKGTVGKIAKNLINRRFHSTIPLQKLVTDVTEMKCAQGKKLYFNPILDLYNSEIISYSISDTPNVDFVMQALEEALPIINKHATYRTTIHSDQGFHYQNKRWVKKLKENKVFQSMSRKGNCLDNASMESFFGIMKQEMYHSEPLKTFKELKKEIEEYIIDYNESRLKRKLNRQSPVQFRKNQGYTYAV +>tr|A0A2D1KXX5|A0A2D1KXX5_9LACO 50S ribosomal protein L7/L12 OS=Lactobacillus farciminis KCTC 3681 = DSM 20184 OX=936140 GN=LF20184_09720 PE=4 SV=1 +MALDTQKIIDDLKDASILELNDLVKAIEEEFDVKAAAPVAAAGAAGGDAAAEKDSFDVELTEAGQEKVKVIKEVRGITGLGLKDSKDLVDGAPKVIKEGVAKADADDMKSKLEAVGATVTLK +>tr|A0A2E5T8Y9|A0A2E5T8Y9_9GAMM Glyoxalase OS=Alcanivorax sp. OX=1872427 GN=CL551_10510 PE=4 SV=1 +MFNHIMIGSSDIERSERFYTAVLGVLGAGEPMRXXSXSGHIRLFYRHDGNTLAITQPINNEPATGANGGTIGFKCESPEQVKEFHDVAVANGGTSVEDPPGLREGPMGALHLSYVLDPDGNKLCGIHRLK +>tr|A0A4R4X4E5|A0A4R4X4E5_9ACTN Uncharacterized protein OS=Nonomuraea diastatica OX=1848329 GN=E1294_04030 PE=4 SV=1 +MTTPDDYTYVRFGSMEQAYEELKKVVTELDRATDDLYADIKRELGPSWEGEAERFFEEKRQKWNAHEKAMGQQLFQAASAVNVANGNYQQAERRNIGIWTD +>tr|A0A401SWZ4|A0A401SWZ4_CHIPU Uncharacterized protein OS=Chiloscyllium punctatum OX=137246 GN=chiPu_0013380 PE=4 SV=1 +MAQDTRVMTFYMELRTDPPGHCAITPPGSLYHDEPSPAQSVANTRSPCFLSPIVPPCTQRRSLPPDTKMDFLGFPGCKKGTASLVRTQSETNPFREFAPASSGRSTAPSSPVCIRTHPFCPVTLENTMGGDTRGRSSVVTFSYIEKARVKTVVNPFNVSVLPQGVKLAGMGQGSSIGWKSPQTSHKVSHGIISMPTPMESFDTRVSTVSVGSCREPSNSLIPNRSLLSSVGSASQRYSDAAAQSPCPGGKRAQSGNELRQGYPSKQVCTKALDLGTDLMTVATPNKTSSNHSIAAIPCVNPIGREIPNSPGLTQVEACMLVGEHSERAQRIAKARREFFYGTLEPQIPEDKADSKTWQAPVNPDNNTTREIAESKDQGASANGSLDAKLGTLSQGSAKVVNDLKSAPLSNGTSTDYKARDQLRAMKYSETDLDAVPIRHYQETNLDEVMTDYNITSSDGQELTHLMNSTLDSVQMDHPVPSRGFGRDQTTGNHEVCREEQSKAAEDDVFSELSSAADERSLEVEVKNLLPPVATIPIARSLSEEGTDTFSKQFESILESHRDKGTSYTSLDSMETLPSPSRNQGNYFTFDFPSLTSEIQVQIKENARLIEEEWSSADGEGCTNSAKASDWPDSPGCQATRTERKLGVSPMVGYSKSENTLTRCQLYAEGNLLKRALEIGDDEPKSEYSSSDSNLNHLVMDSESEMDSTEQLALGSTDTLANGNKTDQEAAKRLAKRLYYLDGFKRSDVARHLGKNNDFSKMVAEEYLRFFDFTGMNLDQALRAFLKEFALMGETQERERVLIHFSHRYHQCNPGAISAEDGIHTLTCALMLLNTDLHGHNIGKRMSCSDFIGNLEGLNDGKDFPKELLKVLYSSIKNEKLQWTINEEELRKSLSELVDERTDPSLKAMNRISGGSNPFLDIVQDPNAATYKHGFLVRKVHADSDGKKTPRGRRGWKTFYAVLKGMILYLQKDEYKSDKQLSEDDLKNAISIHHSLAVRAADYSKKPNVFYLKTADWRIFLLQAPNAELMQSWITRINLVSAMFSAPPFPAAIGSQKRFSRPLLPTTLTRLSLEEQIKAHDTRLKSMTVDLTEHRSYPPDKKVKGKELDEYKQKEEYLEFEKMRFSTYVSLLRAKLKSGTDDLDKFESALFDNIESEGNGLTKSHSSPSLHQEPPVMAIRVKRNTSERRSYRHSANTKHKL +>tr|E3NQ34|E3NQ34_CAERE SUN domain-containing protein OS=Caenorhabditis remanei OX=31234 GN=CRE_07925 PE=4 SV=1 +MKYKTGAENKPFLRDVESPSDNPSNPFHFRKNEYFGNEKPIAKKESWHQVLNNRLRHYTVLEAFLFVFLVILLFKIYSLQSQIDTLERKLDSKKNAESHLMKTKEILEEKKVIHEIVQNVINPSSPFPKEKEGKVKLNSEFNAASLVLGASIETRQSSHSVSPGNSYFDIVSFALGSDQSAFSLLDRVELPVDKAWCTDDRKPVLTVNLADYIKPISVSYQHSKWNRTVPNGAPKLYDVVACIDGDCNQPLVSNCEYSKSGNQEQKCLISTGLPLVNKIQFRFHENHGNLNKTCVYLVRVYGEPSGSKEVKIQVKNQKEEEETAKICSRLAWFHDNIPVFYNGLASKNCSTLYSNNCCHECPNCCSECQINDSTLLNNLQFFIIFFVLFFILFPMYIAGISACCFGLKRFFGI +>tr|A0A1Q7VVJ2|A0A1Q7VVJ2_9ACTN Uncharacterized protein OS=Catenulispora sp. 13_1_20CM_3_70_7 OX=1805055 GN=AUG49_18720 PE=4 SV=1 +MSSPSKFLRDLAKKTNTASAARAVLRAAHVKTGPSRLGDPRAGLPASVLPAGGNRITVENAKPGSANWRMGSGRSRAATDYERQIKGYASTDSVALGSAIDFHVAVXYGVAGAGGRTAAGPHSGPGNGTDRRGMASRMDAGHPHGLGLRNICRCPG +>tr|A0A4R4JD96|A0A4R4JD96_PHOLU Flavin prenyltransferase UbiX OS=Photorhabdus luminescens subsp. mexicana OX=2100167 GN=ubiX PE=3 SV=1 +MKRLIVGLTGASGAIYGIRLLQVLQPVEGVETHLVISHSARQTLALETDYSLRDVQALADVVYDNRDIAAAISSGSFKTLGMVILPCSMKTLSGIVHSYTDGLVTRAADVVLKESRKLVLGVRETPLHLGHLRLMTQAAEIGAVIMPPVPAFYHQPQQIQDIIDQTVNRVLDQFDIELPHDLFTRWQGAKSVEI +>tr|A0A1E3ZHP6|A0A1E3ZHP6_9BORD Nitrate/sulfonate/bicarbonate ABC transporter ATP-binding protein OS=Bordetella sp. SCN 67-23 OX=1660091 GN=ABS43_07680 PE=4 SV=1 +MNTAPVLEARGVARRFPNGVDALSPIDLTVRAGEFVTLLGPSGCGKTTLLRIFAGLDAPTAGSLRRHGEVDELSYVFQDATLMPWASVATNVRLPLDLERGPRRQPMEARRGRVREALERVGLTDFAAARPSELSGGMRMRVSIARALATEPSLLLMDEPFGALDDITRQHLDDELLGLAARQNLTVVFVTHSIFEAVYLSSRVIVLSRRPGRIVADIPIEAPTRDAAFRVSPAFAMQAARLQAALLEGQQ +>tr|A0A2D4C9B4|A0A2D4C9B4_PYTIN Uncharacterized protein OS=Pythium insidiosum OX=114742 GN=PINS_010966 PE=4 SV=1 +MNPQQFASYVPQQQQMQGRVGSMGFAGQFATTGRVASSSSMASPVPIHAWTPPSPMEQQYFDMLFTMADEERRGAIGGRIAVAFFSRSNVDKTLLREQRSELSRNEFYVAMRLISMAQRGEAINVQRFYEMAAAPFPLPTLDGVPPPPSPQSSFVPGAPQPAVPTPSPMGGPQKGPFAITDEEKARYDGIFQQYDTDRDGFLQGGEAVGLFSKSGLDRMILRDIWAMADRTQDSRLDAKEFYIAMHLIVCISKRGLSMPTEAPQELLESPPVAPPAPEPKKDPMDAFAGLSPIQDSSDDPVDDGGAVGVNAGGPSAISK +>tr|A0A0C1QX44|A0A0C1QX44_9CYAN Uncharacterized protein OS=Tolypothrix bouteillei VB521301 OX=1479485 GN=DA73_0227160 PE=4 SV=1 +MYTIDLTVRNTAFPISVERKSAEDAEQLYQLILTAMRSGNPDIVELQSEGKTEKKIAVRASEIAGVQVIQKDGSAAGTGRPPGFFALASE +>tr|A0A7T0C4B3|A0A7T0C4B3_9BACT tRNA 2-thiouridine(34) synthase MnmA OS=Candidatus Nitrohelix vancouverensis OX=2705534 GN=mnmA PE=4 SV=1 +MTEKPKIVIAMSGGVDSSVAAALLKERGHEVVGISLQLWNYSGESDNRFGTCCSLDDLSDARRVAHKIDIPFYVLNLESEFRAEVVDYFVDEYLQGRTPIPCTLCNQKLKFDRLFQKAEAFGIERVATGHYASIVQVDGRYTIRRGEDRTRDQSYFLFNLSQSQLSRLEFPLADMAKTEVRRIATELDLVVAQKSESREICFVPDNNYAKFVASEAPHAFAEGEIVDKSGAVLGRHGGYPAFTIGQRKGLNIGGLKEPHFVTGIDPESNRITVGPKDDLIASEFYVSRANWCLDVTGPVEAEVQIRYRHSAAPAEVTPLENGRAKVSFYDPQLSITPGQAAVFYKDDCIVGGGWIE +>tr|A0A2S9KN53|A0A2S9KN53_9BURK Hydroxymethylglutaryl-CoA lyase OS=Burkholderia ambifaria OX=152480 GN=C6P77_27700 PE=3 SV=1 +MTFPTAVKIVEVGPRDGLQNEKTFVPTDVKIALVDRLSRAGFRNIEAASFVSPKWVPQMADGADVMAGIERRAGTVYSVLTPNLKGFENALAARADEVVIFGAASEAFSQRNINCSIAESIARFEPVAKAAKDAGVRLRGSVSCTLGCPYQGEVPVASVVDVVERFAALGCDEIDIADTIGVGTPKRTREVLSAVTRVFPRERLSGHFHDTYGQALANIYAALFEGIEIFHASVAGLGGCPYAKGATGNVATEDVLYLMQGLGIDTGVDLAQVVAAGDFISNAIGRANVSRAGRALLAKAQSATDAPSCV +>tr|A0A4U3MG24|A0A4U3MG24_9ACTN Winged helix-turn-helix transcriptional regulator OS=Herbidospora galbida OX=2575442 GN=FDA94_14520 PE=4 SV=1 +MSAVPPYDPDAPGPATYVYARVADHIAARILAGELVPGMRLPGERDLAAEYGVALGTARRAIEELRGRRLVVTLAAKGTYVARPEDIDPPTG +>tr|A0A7Y4Z391|A0A7Y4Z391_9BACT Uncharacterized protein OS=Bacteroidales bacterium OX=2030927 GN=HOO91_10445 PE=4 SV=1 +MNNKNQILPEEIKSILLKYYDGCTTIEEELLLKKYFAQNQIPYSNISDKALLSFVNDNELSIFPENEIWNKILVTEKKVNKQRKTIRILSSIAASVLILISLSIWLFYPTKRVEILTDSYSNPHDAYNAVQKYLGLVSTKLSYAYNEIKPIEKLTIPCDAMQAFSTIDKNVKRLQQFDKLGASAHELERFSIISDIVIVDKN +>tr|A0A257X4W0|A0A257X4W0_9PROT Uncharacterized protein OS=Methyloversatilis sp. 12-65-5 OX=1970398 GN=B7Z51_07255 PE=4 SV=1 +MSLSDIPDEMTLRLAADGRIECRRGTDAAAPAIRFDPAFFGQPESADAQRALGRFVFSLLQGMAPAAGTAAGPAIDGPASLLELAEKSLQQSAAAGFGQAIEALKDWPSVRTVADMLIARGPEQPR +>tr|A0A800G627|A0A800G627_9CHLR Uncharacterized protein OS=Dehalococcoidia bacterium OX=2026734 GN=EYQ67_00675 PE=4 SV=1 +MPRLHLNPNRMIKDRGQGGRLRRALENLRKQHQWGDISDDEYRRERGIIMRQLKVHTSTIVMPTHLPNLERAANFLEDLPALWLHPGVTHEEREALVRQVFLRITIAGKEFVDIEPKPEYASLFATMVTAQKIGYQELESSRSPVSLLLLPSGISVFGI +>tr|C8BFH5|C8BFH5_9HIV1 Reverse transcriptase (Fragment) OS=Human immunodeficiency virus 1 OX=11676 GN=pol PE=4 SV=1 +PISPIETVPVKLKPGMDGPKVKQWPLTEEKIKALVEICTEMEKEGKISKVGPENPYNTPVFAIKKKDXTKWRKLVDFRELNKKTQDFWEVQLGIPHPAGLKKKKSVTVLDVGDAYFSVPLDKEFRKYTAFTIPSINNETPGIRYQYNVLPQGWKGSPAIFQSSMTKILEPFRKQNPDLVIYQYMDDLYVGSDLEIGQHRTKIEELRQHLLKWGFTTPDKKHQKEPPFLWMGYELHPDKWTVQPIVLPEKDSWTVNDIQKLVGKLNWASQIYPGIRXKQLCKLLRGAKALTEVIPLTAEAEL +>tr|A0A2M9CET1|A0A2M9CET1_9CELL Uncharacterized protein OS=Sediminihabitans luteus OX=1138585 GN=CLV28_2224 PE=4 SV=1 +MREYDATPASTSRGQAALRWVLWIGGAALLAFGVLTALTTVPSTSQRINVLLWLAGGVVVHDAVLVPLALLVGVVVLPRVPPSWRPALRGGLLALAVLGIVAVALVAGAATRANPSVVPQDVGAALALAGIVLVVGVLVGMFLGGARRPR +>tr|A0A1Q5JW10|A0A1Q5JW10_9ACTN Lysophospholipase OS=Streptomyces sp. TSRI0107 OX=1703942 GN=AMK31_31985 PE=4 SV=1 +MDDAREHVLTGTRGAITVREWAHPRPRYTALLVHGYGEHGGRYTETAGVLAEHGAAVFAPDHAGHGGSAGERVLIEDFEDVVADVRQVAERARAAYPGVPTVMVGHSMGGLISARYAQRYGGDLAALVLSGPVIGTWETPARLLAHDAAHGEIPDIPISPAALSRDPRVQAAYAADPLVWHGPMKRPTLRAFVRALQDVAEGGDVGPLPLLWLHGDDDRLVPLAGSRTGVERLSGGALTERIFPGARHEVFHETNKAEAFAEVTAFLDRVLGA +>tr|Q87XS4|Q87XS4_PSESM Uncharacterized protein OS=Pseudomonas syringae pv. tomato (strain ATCC BAA-871 / DC3000) OX=223283 GN=PSPTO_4102 PE=4 SV=1 +MSAFFRLFLRFFAAQRHGLLEGVAHFVEAFVVQIVNAPGALCAQVDQFFIVAHGLPLSDTGKQCQ +>tr|A0A2I2FRI4|A0A2I2FRI4_9EURO Uncharacterized protein OS=Aspergillus steynii IBT 23096 OX=1392250 GN=P170DRAFT_441696 PE=4 SV=1 +MSVPTVRRAFGSISKQRSLYSVRDRLHFGILVHLFNIALALVLLPLNNTILLAAYTAGYLSFVLSRSDPIQRRQAALRDVQFYPKTILVTGVDTPHGLAVARSCYHQGHRVVGVSVTETAIPSGESMSKALGAFYRIPKTKYVSRLLDVINREKADVWVPCSEKASVLDDAMAKQVIEGRTECKCITMDTELASMFGRPATFRQYLVEKELPVVENHQVQSRDSIHKILHRSPTKTYRISRPDPVTRENKIITLPKRTLSLTYSEVSEIQISKESPWTLQQQSRLGEFLAEMLVVHGHVKAIKVRPADDQSTWGRSRLDEGLTMSIHKLMERFALKGGYRMTGHICVRVMVDEEVDANQVRYALHINGCTQGAGAVNDLLQDASEQLVRGYLSVEAPHLNGFMASDSVDALRIQAAQSIVSTTPRPKFSLYQKLKEHDDENLFTVLYPVAQHIDTLISGTERALMFWRDWRFSIHDPLPWWWDAHVYQPLKELESIVSGAEVKEA +>tr|A0A1Q5DAT6|A0A1Q5DAT6_9ACTN Nuclease SbcCD subunit D OS=Streptomyces sp. CB02058 OX=1703921 GN=sbcD PE=3 SV=1 +MRILHTSDWHLGRSFHRVPMLDAQAAYLDHLVETVRARSVDVVVVAGDVYDRAVPPLSAVQLFDDALHRLAAAGVPTVMISGNHDSARRLGVGAGLIARAGIHLRTDPADCATPVLLPDPEGGDVAFYGLPYLEPALVKDSLGASKAGHEAVLTAAMDRVRADLAARPDGTRSVVLAHAFVAGGEPSDSERDITVGGVAAVPAGVFDGVDYVALGHLHGCQTVTERVRYSGSPLAYSFSEHTHRKTMWLIDLGTGGDLVAERVECPVPRPLARLRGRLEALLEDPALDRHRGAWVEATLTDPARPDEPMARLLERFPYTLSLVFEPERTPDDPSASYAQRLRGRDDQQIAEDFVAHVRGGSGPSARERTVLRAAFDDVRVDDVTGEVSR +>tr|A0A7Z7ZTA3|A0A7Z7ZTA3_9MICO Type III secretion system (T3SS) chaperone YscW OS=Cryobacterium psychrophilum OX=41988 GN=EDD25_0264 PE=4 SV=1 +MDESDDDAQTVRGTIVFPPAQRPEEPFTVIVQLEDVSRMDAPSRILAEVRLANRDFGAGRGRELPFRLPFPTELLDPAKAGPLRLNLRVHVRHTAVSHEPASRGIMTHVDVTEGDFVSTQSHPVPRGGALVRIPVQRV +>tr|F9WTX3|F9WTX3_TRYVY Uncharacterized protein OS=Trypanosoma vivax (strain Y486) OX=1055687 GN=TvY486_0039130 PE=4 SV=1 +MLGKSCHQLQKNKKLIEMIDTRDECKSYTEKYSVSIRLSSYAEKLDEMNNLIEWKNEMVKLVGQTHKEVKSSAYRGNLWTVNDEKVKEVVQAIRNLTDKPVVTLELLETVRVSVVEANKTVNSTVNSMENVNKTMLSALEGNGTLLPQLVGQYSEVSAQLHERKGRLATTQGNINSTMKAIENALVDVAATESLVKYVNGLILLLSLFGYSSVSRQLRGAKIASETTHDTSDAKAAALMASELPGSAHSYASTAQVEIERETGSLESIKPQLMKHLNETGISISSLTTEACDKGLSKVFNGSLAVAFSRAAGLNSSGMAKAQEALKKLKAEAALVNAKLAYINGSLQQAEKAVQDVDQHDEAVMSTVKNSIVEVVSGAMKDLCETMKGLYTFRLASTSLNEEAEGILGNVSVLVGLSNVTRNKMNKAVKTVPNAAEYFGVANRELAVFARATNKIEKLHSTVQSDVASFLEEQMKRESHINTTHMPSL +>tr|A0A1V0RMR8|A0A1V0RMR8_9RHOB Uncharacterized protein OS=Roseovarius mucosus OX=215743 GN=ROSMUCSMR3_01389 PE=4 SV=1 +MTIFTPLTAATNADRLEPSHDTVYSIAFAALLPSLADFIEAERDLDDICHSYDPAYGVWHRDAQVARMRLDSTLRHVHGLRVERPEDQPLRRMALLADAMLKDGAPERPQYLHRQMKLVFFRQFQVQGFGPTAHSRNAMLIQARHLIDAMMRLPLFDYSPDCAIAPDASAPADDLSPAFF +>tr|A0A0J8BW32|A0A0J8BW32_BETVV Uncharacterized protein OS=Beta vulgaris subsp. vulgaris OX=3555 GN=BVRB_8g185090 PE=4 SV=1 +MRSKREREELTDGEVKRQRVEKDEEEEVSSPKTHAFENPLLPLASYNDDDEEEEEGNVKKAEVNGRKNEIVDDDEDDDDEEDFKFGQGKHNRLVVVRRDCPYLDTVNRQALDFDFEKFCSISLTNLNVYACLVCGKYYQGRGSKSHAYTHSLEAGHHVYINLKTEKVYCLPDGYEINDPSLDDIRHVLNPRFSKEQVEQLDKSKLWSRALDGSDYLPGLVGLNNIKETDFVNVTIQSLMRVTPLRNFFLIPENYQHCKSPLVHRFGELTRKIWHTRNFKGQVSPHEFLQAVMKASKKRFRIGSQSDPVEFVSWLLNTLHADLRSSKKNTSIIYQCFQGELEVKKEIQSKGTVERRLKGNDQNGGSENPNVITETSKMPFLMLGLDLPPPPLFQDVMEKNIIPQVPLFNILKKFDGETITEVVRPQIARMKYRVTKLPPYIILHMRRFTKNNFFVEKNPTLVNFPVKNLELKDYIPLPTPNDKEKSESKGNKKMQSKDHEKLRSKYDLIANIVHDGKPSEGSYRVFVQRKSEEQWYEVQDLHVSETLPQMVALSEAYMQVYELQQPH +>tr|A0A430LAB7|A0A430LAB7_9HYPO Uncharacterized protein OS=Fusarium euwallaceae OX=1147111 GN=BHE90_012892 PE=3 SV=1 +MDSKNSLLYKNFHKHPAALVESASGIYLHTSDGRKILDATSGAAVACLGYDNKEVQKAVVDQLVSVPYCHPGFYKTKSAEDLADFLVDSTNGQMSKAVLCGSGSEAVEVALKLAKTHFSHLAIPQTERCHFIARVGAWHGATLGALTLGDFKVRKDPFVQLISQNSSRVSACSTYRGLRKGETEEAYVQRLAQELDDEFQRVGPNKVCAFVAETVGGSASGCAMPVKGYFPAMKAVCEKYGALLILDEVMCGMGRTGSLHAFEQEDVVPDILVVGKGLGAGYAPISAVMLNTKLVESFQKSGKGFAHGQTYMAHPQAAAAGLKVQQVIRDTNMVAHVQRMGDYLGSRLKERLLPLPWVGDIRGRGLFWAVEFVIDKKSKDPFPYSLGLHGMLHSKGMSKGYEISLFNANGGYDGYSGDHFLICPPFIVNEADVDEIVDRTARVIEDTFSELVNSAVWEKIAIQMDISTEAPVTDISVGETLVSVN +>tr|A0A5I4QS92|A0A5I4QS92_SALET Mn2+/Zn2+ABC transporter ATP-binding protein OS=Salmonella enterica subsp. enterica serovar Agbeni OX=1967642 GN=znuC PE=4 SV=1 +MTSLVSLENVSVSFGQRRVLSDVSLELSPGKILTLLGPNGAGKSTLVRVVLGLVAPDEGVIKRNGQLRIGYVPQKLYLDTTLPLTVNRFLRLRPGTQKTDILPALKRVQAGHLIDAPMQKLSGGETQRVLLARALLNRPQLLVLDEPTQGVDVNGQVALYDLIDQLRRELDCAVLMVSHDLHLVMAKTDEVLCLNHHICCSGAPEVVSMHPEFISMFGPRGAEQLGIYRHHHNHRHDLQGRIVLRRGNGHS +>tr|A0A6H0AMT6|A0A6H0AMT6_9MICO Transport permease protein OS=Clavibacter michiganensis subsp. capsici OX=1874630 GN=GW571_05855 PE=3 SV=1 +MTAVRPARPAADRAPSLPGVVPLGIHRVRYEVRRYFRQTDTIIFTFLFPVIMLSIFSVAFGSSGNLGTAPDGSGGVSAAAYYLPGMIAAGILLSGVQNLAVDIAMERSDGTLKRLAGSPLPVLSYFIGKGGQVIVTSLLQMVVLLLVARFAFGVELPTDAGRWATFAWVYALGITSSAVLGIALSRIPRSGASATAVITPIVLVLQFISGVYLTFTMLPTWLQDVAAFLPLKWMAQGMRAVFLPDALASVERGGTWDLAGVAVVLAVWLVGGTIAAVATFRWIRRDS +>tr|A0A668RY45|A0A668RY45_OREAU VEFS-Box domain-containing protein OS=Oreochromis aureus OX=47969 PE=3 SV=1 +MAPHKQSHPVGLGSGGKPNGLYHHQPSSASMAAAKKPNMQLIQADHELFLQAFEKPTQIYRFLRTRNLIAPIFLHRTLTYMSHRNSRNNVKRKNYKVDNLLFKVEKMRGEQETHSLASNLQLTFTGFFHKAGKLSQDSENEQNSVSLEVLLVKVCHKKRKDVSCPVKQVPTGKKQVPLNPDTSAGVQAKLSSYPSLLVPSSEFEPSNSHMVKSYSLLFRVSRPGHPRTQINGLANGEIHHKEAVNRKRRSSALREEGETTFVAQMTVFDKNRRLQLLDGEYEVSMQEMEECPVGKKRATWETILDGKRLPPFESFSQGPTLQFTLRWTSDSADHSTAPVAKPLATRNSETNQDTRPSTLRATHTPTVKESVNTDVQTRREQVLSEPRQKLRIFYQFQYNNNTRQQTEARDDLHCPWCTLNCRKLYSLLKHLKLSHSRFIFNYVPHPKGAKIEVSINECYDGSYAGNPQDIHSQPGFAFSRNGPVKRTAVTHFLVCRPKRTKPSLSEFLESEDGDREAQRTYISGHNRLYFHSDSCLPLRPQEMEVDSEDERDPDWLKEKTVKQIEDFMDVNEGEKEIMKLWNLHGLFCLFMNEACLLFAEHHAAVIVKRNLCRNFLLHLISMHDFNLISTLTINQAMARLRLVESQSEASISDLPGTLSSTKGFLLAGSVCTCSVESRLRRLLGVKSAAVLQKEV +>tr|I6XM23|I6XM23_9CAUD Uncharacterized protein OS=Pseudomonas phage MP1412 OX=1204517 GN=MP1412_18 PE=4 SV=1 +MDLEKLRRDWAEDPQLKFYAFDTVEELAAHLRKVHTDMMNGEHGCFGYLYRQQTLRLRELMKELQDERERKASGR +>tr|A0A498P3D5|A0A498P3D5_LABRO VPS10 domain-containing receptor 3-like protein OS=Labeo rohita OX=84645 GN=ROHU_001246 PE=4 SV=1 +MRGRMIKMKDVLGFESSWTYWTLFCLCALLPLPASADITCASCFAPIRRNEAHAKPTAVVSRDFGSAKDGSTDKNWKWRLDGAQLSPEAHKKSPFVSRRQKLQNAHIPRAERTSPAGEKDGKVYPTWSPVETKVDRREKRSLSDSASGSRFEFRRTGGVDGTGKSPRQNEPHLITSTFALSGDAAHNQAMVLWSGHNSSEDGSQGSRVAEPVAVNTLTRGHIKPVKTHSGKTDARLFTVVYERVLRMFCQVILILTKLFDFNLGTVTESSLWRSVDFGTTYEKLTDKVMIRTMLSYLYVCPTNKRKILILSDPEVESSLLISSDEGATFQKFNINFYIMSLLFHPTQENWILAYSHDQRLYSSVDFGKKWILVHERVTPGRFYWALSGLDKEADLVHIEARTDSGQMQYITCRAQKCSEEGRQYPFSGRIDTNSLVVQDQYIFLQLTTAGRTTYFVSYQRGPFRTIQLPKYCLPKDMHIVSTDEGQVLAAVQEWNENDTYSLYISDTPGVYFTRSLPNLRTSRGLAGNLIVDVYKVAGVSGLIIANKKEDAQMRTYITYNKGQTWSLLQPPAKDTTGHDINCNLPSCSLHLHLQMSENPYTPDTISTKHSAPGIIVATGNVGPELSFANTGMFISSDAGNTWRQGEVCVMGERQVYMKRKPGTHCTLGREYSRVVSAEPCICTLYDFECDYGFERQASGKCAPAFWYDVSLPAHTCSHGQRYRNSTGYRKVLLNNCREGLKDTLSPRMQQCKPIAPSGLQLSTVNSQLTAVLGTNITFRVALQNPLITLEGSVSHTFTREGPNSVTVQVSAGGTVLQDVKIITVKDFFRSLLLSFSPNLEEHNPSVAEWRQDVGRVVRATLSQMSEVFMNALNQNLIQFDLKPDTRVTVSVSQLTLAPLVDSSVLPSGSAMLLLVSLGLVGLAILFIYKFKRKIPWIHVETEDTHEKEPEMISAVGQEKNGTRTTATSFTTCSTHTTHTPFPSNTGTHNSFSHLPPPRDLMEKELEAHNTGGLGVGERQRTRQIPNCTNV +>tr|A0A424MM85|A0A424MM85_9GAMM Tryptophan synthase alpha chain OS=Gammaproteobacteria bacterium TMED112 OX=1986734 GN=trpA PE=3 SV=1 +MQNSNLLTVNKNKTAFIPYLVAGHTSNEVFSAALKLLNDVGADLIEIGIPFTDPIAEGKIIESAHHHALKNNFVLSEVCKIVKEFRTYSDTPVIAMGYTNSFINPSSEYIATKLSESGFSGVLIVDLPASEKSIINSFTEKKLNLVQLIAPTTQLNLIESFLENDPALIYYITQRGITGSTNLDLAEISEKLSSIKKLSNKPVVTGFGIKTVEDVKNLKNLTDGIVIGSPIVEKINLDSSLNALKEYLKPIVKAIKE +>tr|A0A4P7QD82|A0A4P7QD82_9CORY Putative NUDIX hydrolase OS=Corynebacterium endometrii OX=2488819 GN=CENDO_01140 PE=3 SV=1 +MTFIPQPDAPGSNVTLRPEDSPAWMRPALGIDAAHAQRTMGDRAVTNGPWKKEAAVLVLLAGDSVEEGSVLLTHRSPRMRSHSGQIAFPGGRIDPEDLNAVDAALREAWEETGLDRSTVTPVEQWARLSIRATGNPVSPVLAHWHEPSPVGVASPNEADDVFTVPLADLIDPANRLTVGWGQWSGPAFHAQDYVVWGFTGGVLATLLERAGWAEDWDRDTVHPLHETLARSRNNERMR +>tr|A0A257QSR6|A0A257QSR6_9PROT DNA topoisomerase 1 OS=Rhodospirillales bacterium 20-60-12 OX=1970565 GN=topA PE=3 SV=1 +MTDIVVVESPAKAKTINKYLGDGYHVLASFGHVRDLPPKDGSVKPDQDFAMLWESDSRGEKQVGAIAKALKGAKILYLATDPDREGEAISWHVRAMLEDKKALKGVTVKRVTFNEITKSAVTTAMAHPRELDQPLIEAYMARRALDYLVGFTLSPVLWRKLPGSKSAGRVQSVALRLICEREAEIEIFKAREYWTIEAGMITPAGAPFTARLTHLQGKKLDQFDLPNEAAAMAAKAAVQAGDFSVVQVEKKRTRRHPPAPFTTSTLQQDASRKLGFSAQQIMRTAQQLYEGVAIGGETVGLITYMRTDGVQMAREAIMAVRDRVKANFGTDYLPATPREYNSKAKNAQEAHEAIRPTDFGLSPDQAGRYLNAEQSKLYELIYKRALASQMQSAELDQTSVDISDAAGTTLRANGSILAFDGFLRLYREDMDDVADDDDAKILPPLAKNDPLKRGEVKAEQHFTQPPPRYSEASLVKKMEELGIGRPSTYASILTVLRDRNYVRLEARRFIPEDRGRLVTAFLTSFFARYVDPDFTAGLEEKLDLVSDGKADWRQVLRDFWRDFSAAIGQTTELKISDVIDALDEDLGPHFFPSRADGSDPRACQACGTGRLGLQLGRHGSFIGCSNYPDCQYTRRLIVDGEEGADTLKEGMKILGQHPETAEDVTLRRGPYGLYVQQGEPVDKEKPRRSSLSRGMNADDLTLDQALGLLSLPRLVGPDPQTGQKIEAGVGRFGPYVKMGSIYASLDKDDDVLAIGLNRAVMLIAKKAEGIRNVGPHPKDGADVMVRKGRFGPYAQHGKTVANLPRGTEIADITLDEAVALLAERGKTLAPKGKAKAGAKKPAKAAKIMATGDAAPKLKPKARPPVKAAKPKAAPAGTAKPAAKAKPKPKAAPKAAAKPSAKKAAARAK +>tr|A0A087GHN3|A0A087GHN3_ARAAL RNase H type-1 domain-containing protein OS=Arabis alpina OX=50452 GN=AALP_AA7G126600 PE=4 SV=1 +MYIAESGTSVSAVLVREERGEQKPIFYVSKTLTDAETRYPQLEMLALSVVIAARKLRPYFKSHSIVVLSTFPLRSVLHSPSQSGRQAKWAVELSEYDIEYRGRSCAKSQVLADFLIQLLEGDVAKEDSSQEATLSGEWQLHVDGSSSKSSYGIGIRLTSPTGEILEQSFRLGFKASNNEAEYEAILAGIRLARAFNIEEISVFSDSQLVVNQFSGKYATKDERMEACLGLAKELAALFKKFMFTQIPRGENVNVDALANLASTSDPALKRMIPVEFIEFPSILPAVSLTIITRSQAARKIKVTQKRGENDGKDIVITDATKDNVEMSDATEDTPLTQTDPNPSRLPIANGSSYACY +>tr|A0A549YU05|A0A549YU05_9CORY MMPL family transporter OS=Corynebacterium silvaticum OX=2320431 GN=EU799_09205 PE=4 SV=1 +MFSRWGDFAYRHRRVVPVAIVVFIVAIYGIFGIRLADRMSQEGWDDPGSSSTQAANIEQEVFGRDNSGDVVLLFSSEDGIAKNKNFDEIKRYLSDLKALHPNQIADVTSYFDNRNAQLLSKDGKTAFAAVSLRGDHEQTLKDFRAIKGNLKPKFDGVTVQVAGATAVADALDSGMAGDIKRAEVVALPLVAILLLFVFGSVVAAFMPLIVGILSILGSLGVLSILAGFAQVNVFAQSVVTLLGLGLAIDYGLFMVSRFREEMDQGRDIRDAVRITTSTAGKTVVFSAAMVAVALSGLLVFPQAFLKSVAYGAISAVGLAALLSITVLPSIFAMLGTRIDKWTLRRTKRSARTLADTWWYKLPAWAMKRSKTVVVSVVFLLIALTVPLAGITFGGINETYLPPNSDVRKAQSTFDQEFPAFRTEPIKLVVSNATNDQLIKVYQQANTVTGLTDRFKPSTATKDGTTVLSAGIAERKDNESVVKQLRAIEVPEGVSVHIGGTPAMEVESIEALFEKLPWMAIYIVLATFILMSLVFGSMILPAKAIIMTILGMGATLGILTAMFVDGIGSSLFNFSAGPLMSPVLVLIMAIVYGLSTDYEVFLVSRMVEARDNGESTDEAIKYGTAHTGGIITAAALIMIVVCGAFGFSEIVMMKYIAFGMVVALLFDATIIRMLLVPAVMHLLREDNWWAPRWVKRASEAMGHNSAPEPLPVASRPVESGDKPARRVEPAQPRVPVSAYMDDTSTMAPVKEPPAPQRPAAPRPTPPRPMPPRTPPRTDAPAFNPKRTWGSTPATSHNAGGADTVEGQGSHTPKRKLHHSRRETLVSDTTVVDPRTAGRSGRIASEDNELVPFSELVKRLREEH +>tr|A0A662N443|A0A662N443_9EURY Thioredoxin-disulfide reductase OS=Thermococci archaeon OX=2250254 GN=trxB PE=4 SV=1 +MFSLTGLSTSGKDENKVRDVLVIGAGPAGYTAALYAARYGLDVDIISKDLGGQIALTDIIENYPGFPEGISGQELATRMYEQVKKLGVDVIFDEVVRIDPTECAYYEGPCKFEVKTKNGKSYKTKTVILAVGAEPRKLHVPGEDKFYGRGVSYCATCDGPLFKGKSVIVVGGGNTALQEALYLKSIGVNVSLVHRREGFRADKIVQDRFRESGIPMILNTVVTEIKGEAKVESVILKNLKTGETFEKKVDGVFIFIGYEPKTDFVKHLGITDEYGYIPVDMYMRTKVKGIFAAGDITNTFKQIAVAVGQGAIAAASAKELLEDWREKNLSE +>tr|A0A7U9R2R0|A0A7U9R2R0_9FIRM HTH-type transcriptional regulator YesS OS=Lachnospiraceae bacterium OX=1898203 GN=yesS_1 PE=4 SV=1 +MKAFHFFRHSRTYRRMFLHTYVLYAASSLLLLLAAGLFLFYQDSHTIRNNTLQAAANLAYYADDRLSACQKLSASVGQSERLLSLSSNAATDLDFSLLDSTTLFAAQHDLVSAKALNRFAATLGVYLYNKGFVVSDYGTLTLESFYQSIFNMSPNVFSEYLRPLGSGSYLFLPRGAVEETGTPQHPLIVLSVIDSNSRRYGNLFIFMDERQMREDIEQLLNNRDMEYYLFAGEGQLVVSNRCADPKELSRIYSGLMENDSYQSNTGKYSGWTAFAGYSDAYLRERLHRRLWILAAGLAFLLLSGLPLTHAICRKNYAPIRELAYIVSSPEQRSDNRDMEYEALKSIISSIFKDKSLLEEQLLIYRPLLVNSMLLELLEGAQPRKEVLPGLQKLGIRFPYPYHVCCCLLTARATQDFLMSLAQATRDGETGCLYITFRKHLGIFLISASSPEKCGDAVTRLLALLAEVNPDAFLGVSDAVDDLEQLGAACQQSRSALEYLPSDPFSRGIYWSRVKSSGILKLALPTCLASLPNAFGTGQFAEARNNLNLYFQTISRCGLTKKEHLTHARDRLLEAISRAEKEHGLLFDSASLLNWTPEQPHALKCLQESAFLACDRLERDMLESREQQSLNAAQNLMDYLQLHLRDEDLSLSKLAETFQLSESSISRRIKQITDYNFLEYVNRKRIEYACSLLSETDLSVNDISKASGYVNDITFRRLFKKYMGVTPGEYRRQA +>tr|A0A540WLW0|A0A540WLW0_9DELT LPS assembly protein LptD (Fragment) OS=Myxococcus llanfairpwllgwyngyllgogerychwyrndrobwllllantysiliogogogochensis OX=2590453 GN=lptD PE=4 SV=1 +MSLLVPLAAALLVSSAQIPLATQVQLPSGETVELAADFLTYEADKQLLTARGHCELRTGEMLLRSDEVTYDEANQVATATGNVMFVGPDGMAAVADDVHVDIRTFVATLKGGLFMQKKGVTQEALLTAKTPQELRAMGETPIILSGSRIRRTGPNAFVVDDLAFTPCECGPGTPTWRMEASSANVILGERATLTWPVVYIQSVPIFALPWVYLPLAERRTGFLFPSPQFSSLNGLGLEQPLFVTLGRSYDLTFTPGYYHGALVEKTHDPDGNSETKNTITYEEPRPNGVKGPRLLTEFRYVPSERTRGRATLGFLYDSRPKLDPTTLDFFRYPVDPNGIRKIIDAPRGLRGEASWQHFQDLGSGWYDRVDASVVSDGNYTRDLTADILVQGLDYLRSTATVFRRQEDSYAGLDVSLRQDIRWPYRFFQDNRVPAEVDPLRPDLPSPRTFQRLPGLVLSLPERPLLGGITGGLRAEFTRLAPIHEGFGDEGVDGIFRPNGNYLLLGVGDAPDPGQSNALFDSRDREARDRIDFTSRLSTSVALGDVARVTPSLSLRQDVWAGEYSGKSWQRGYPIGGLMLDTQLSRTWTGAKTSYRHSFAPSLELRYVPGGWG +>sp|B8CSY5|RL21_SHEPW 50S ribosomal protein L21 OS=Shewanella piezotolerans (strain WP3 / JCM 13877) OX=225849 GN=rplU PE=3 SV=1 +MYAVFQSGGKQHRVEAGHTVRLEKLEVATGETIEFDQVLLVADGETVHVGAPLVEGGKVVAEVVSHGRAEKVTIVKFRRRKHHDKKMGHRQWFTEVKITAISA +>tr|A0A815PV26|A0A815PV26_9BILA Hypothetical protein OS=Rotaria sordida OX=392033 GN=JXQ802_LOCUS53044 PE=4 SV=1 +MEELIRSVIQFDGALNQDVIQWLEYIEEVFDRVQLQTSNKYIAIQYFLTNSAATWFKYKKSNIPDWFTFKRELIEAFQSSSSFSSSHLLDRHQLIIKEEPQKLEQEQDILPVPASTSIISNKKNDSEDYQLDLVHDGSIKSLENLEVDDLEDKCLHEHEQGYYSSILVNTNDFDLDIQHQDADAADSCDTQQQGANVADVCDQLEQQGESVINSDSVQTDIEDTFEDFTRPMDSLTGNDSLINIVLPHDVQYLWSDKYKPRPPRILNKAHAVYNWNRYNKLHCNQDDSPPPTIQENQFNTVSTEWNYTYNHGLRFYFYNEMIQLRFSFQKTRKEVIVLRTLQHENIVGYKTVWCEHPPDDWQKKQEKSFQVPSSSEDSTTGFNTIHSISKESKSNQESNDDTSNPFHHSEKWVPLNANSDENKKAPEITNIRSEEEEDNNYEEQ +>tr|A0A444Z367|A0A444Z367_ARAHY Rep_fac-A_C domain-containing protein OS=Arachis hypogaea OX=3818 GN=Ahy_B05g076446 PE=4 SV=1 +MISLFKSLISNGVVYAFAYFRVYNNRGSYHTTSHHFRMFVQAIPTVRPSFCNAILLYSIKLVPFTKIMGYFSQHPFLVDVARVITGVEGERKYVKDGKLIDMLLNVAVLGEMVERIKDFVAAGEQQVPVVIFQFATVKTFRGLHRCHEKPPHVEEKDVTHRIEEGDDILSSLRLVAVAERGAPSSPSRLRVWGFEEREKLAEERETVCCREASQYLSILSSKLAYVAEDEVLYSIERKTIKELRAVGFYIVLATVLDVEPALIWWYKSCVCSVKAKANADTYFYDGCNKDVNHVVDMYKLDLLVFYGTATTTFVVFDKEATALFGWTCTEMVKELNEKGKAGKDPIGFKEFLFKVELKTTGWCDSYDVSLISFELTILARWRDTQGLVKSGIAPAGPTTHFDGDDFLIFEKKRSIEQLKLSKEFE +>tr|A0A379C7X7|A0A379C7X7_9FIRM Uncharacterized protein OS=Peptoniphilus lacrimalis OX=33031 GN=NCTC13149_01564 PE=4 SV=1 +MDKKTDAPTFTKEQFLNAKDPIGNVDALYAILEDGKEYTKEEALKIYEDFMNREVK +>tr|A0A2I0I053|A0A2I0I053_PUNGR Uncharacterized protein OS=Punica granatum OX=22663 GN=CRG98_042231 PE=4 SV=1 +MVKQGFEGRSRRNRSPRWCQRHPKSLVAMVWAAQQRREGVVKETHKTHRIGRFNGILLKTDRFNGSDGSKLQFRFSGESDRTWCRFSEPAGPDHGPSPPATAPARSRSGCSLRSTPARYTFEGVVCLFVGEHCHHRGDEVPGGP +>tr|A0A1L9V3M1|A0A1L9V3M1_ASPGL Chorismate synthase OS=Aspergillus glaucus CBS 516.65 OX=1160497 GN=ASPGLDRAFT_40709 PE=3 SV=1 +MSTWGQYFRVTTYGESHCRSVGCIVDGCPPGLQLTEDDIQPQLTRRRPGQSVLTTPRNEKDRAEIHSGTEFGHTLGTPIAIMVRNEDHRPRDYGGQTMEVFPRPGHADLTYLQKYGVKASSGGGRSSARETIGRVAAGAIADKYLRLVHNVEIVAFVSSVGREYLNPPTPEHPSGINPEFQQRLKGITRSIVDQFEPVRCPDQEASQRMIRVIERFRDEHDSIGGTVTCIIRNVPTGLGEPCFDKLEAKMAHAMLSIPATKGFEIGSGFAGCVMSGSAHNDPFVRQNRVLVTKTNHSGGVQGGISNGSAIYFTVAFKPPATIGRPQSTANYQLQDSVLEAKGRHDPCVVPRAVPIVEAMTALVLMDALMAQYARDAARGITGASGWGNKCV +>tr|A0A7N5JEP9|A0A7N5JEP9_AILME Lipocln_cytosolic_FA-bd_dom domain-containing protein OS=Ailuropoda melanoleuca OX=9646 PE=3 SV=1 +MPPNLSGYYRFVSQDNMENYLRALDINVALRKLVCLLKPDKEIIHTGDHMTIRTLTSLRNYIMDFDLGVEFEEDLGPVDGRKCQTTTQTR +>tr|A0A353MIV1|A0A353MIV1_9DELT DUF490 domain-containing protein OS=Geobacter sp. OX=46610 GN=DDY22_22195 PE=4 SV=1 +MRRAALYIGCALAGLLLLCLLGLFWLLDTTAGARFAVTALTGAAGFNISMQGVEGRLLDRLHLTGVRVSKPQLRAQIDRLDLAWEPRQLWNGHLQVHELAVSGVRVQDDRPATTEPPQLRWPRVSAPLRGLSAQLSRLKVKDLSYRHLEAAPLLVTELTGSLHFKDGLLSASQLSLLSPDGRVSGEIAAGLWHPSLRLDLAVVPAQPVQELDFFSLQARLLPGRLPEQLAGGIVVAGRSGGARRLELTGELGIAVNALNLRRLKLSRPGSRGTLTGDVSMLLSKPEPLFSLALRATDLDLAKELKLQLPTRLSGTVTFSGSLSNFLGSFDLANSGPGWQTASLAAQYRGGPTGVKLAPLTGKLLDGRLRGALEVAWSEGLRISGNLAGRGLNPGRLAAQWPGLVNLDLAGKLEMPEQGVARGELRGKLLESRLHGRDLQGELVAAFAGERLRIDRLLLRGRGFNLQGAGELDRRLNLAARVSDLSGLVPGAAGQLQADGWVRWRDGLFSGAASGQGANLAAAGVSAAALRLDARLGEGKSPPVYLDASLNRLRVGRFQADSALLTLQGTPASHTLTAKLSSSSFAEAPADSSAFAEASASAKTLAELRVALSGGYRDGVWRGELTRFSGRDGVGPWSLAAPTPLMLSAQRMRIAPLVINGLPGERVEVAGELERQPLSGAVRGAWGGLNLARANAWLDGVQLAGASSGDLSLRLLPGERLILTGRAEAKGTLVADGQRVDLERLAATLQGDAGGLRAAVDLTLAGGDGEAHLLFTSTDPASLALPKRGDLTLNWSEFDLALLRPVTPAGLIVDGRSAGLVRGKLLPGSKLELRGNAALDQGHLNWRAEGDELDASIDSAELSFSWRGGTQGAGKGGAGLLTLNARAAATGLYTSKGQRIALIRGTLRADADEQGSRAGLDLTLEEGGALRVDLSSDSPASLGIPETGDLAMEWGGIDPALLKPWLPGTLDLQGEFAGEASGRLLPGKRLEMAGQAEFSQGRAKWQGENGEVSANLRSANLSWNWRGETLSGALSLALAEYGQARGSFVLPIPARLPLLPDRNGALQGALAGRVQERGFLTAFLPGLVQESHGDLDLDLKLAGTWSDPRIAGSLQLSKAGAYLPTAGIRVSDVQLMARLEGDQVRIDNFRAVSGAGHIEGNLEARLEGWQVAEYSGTLSGERFQTVYLPELQMVTSPQLSFKGGGDSVTLRGELRVPEMLVSGPPVRQIVTPSGDVIMEGAPPASEGKPFPLALDGRIRVVLGEKVEVKASGIDAQLGGSMDLVLQGVDSITSSGEIRVVKGRYRAYGMDLEIVRGRVYYVDDPVDQPTLDILALRKVGDVRAGVTVAGFLKAPIVKLYSEPPMPEVDILAYMVLGHPLGASSEQGNMVAMAATSLFSLGESSSVQEQIKDRLGLSVLGVETVDTAGVGLMGYKEIPVTPTGEAQARPAAAESLLTVGKYLTPQLYLSYGRSLITGGNLFMLRYDISRRWQLETQSGSESGLDLYYKLEFN +>tr|A0A1R3FS38|A0A1R3FS38_9VIBR Diguanylate cyclase OS=Vibrio sp. 10N.261.45.E1 OX=1903177 GN=BH584_20360 PE=4 SV=1 +MKVTRKYILRFSIALAVVSMILSAVQFNRTEKSLLESNQLFFRTIVNASYDIVDTTVNEAIKTYLKGITDTVASHVWHATPEQEIEQVKQIASELHIGQSGYIYLMSPQGVHLYHPFLQGKKRGHLTHIQKQLSIDSGMSEYFHANPHEISRRAKVAYSMRLPSGNTLVATTYKEELMYLVDIEGLKDKLRKYAFGDSGYVYIIDLKGDLVLHPDYEHKSLQSLIGYSSQLLIDRIATKPEGHFSYSVSSDSGTSSKNVFYKFYPYLNWVISAGILEQELNRNHSLLFISLMALVVSLLCIIVVLVLYLRHRHLKILDVASLDYLTGLPSRRSFIEQLKLKIAQRSPNSLTNVGVILLDIDHFKRVNDQYGHAQGDRVICEVAKSLKRFVNRRRLIARYGGEEFILVTFDCDERELFELSEALRLCIQQLQGLVSPVTISAGCCHAQALTDIETAIDQADKALYQAKESGRNNTQMYRENEYRVAYM +>tr|A0A509DWZ7|A0A509DWZ7_9HYPH Uncharacterized protein OS=Thalassocella blandensis OX=2584524 GN=TDB9533_01798 PE=4 SV=1 +MQNKSSQATFENLTQFRTIRRKQMSGGTELPAMTPNEVTAKVVEDINFLRGRIDHIKKAKHANTNPSILKTYESMLESRETILAWLDENYHIQINQSAQVATASAKTSSN +>tr|A0A7C3D3X0|A0A7C3D3X0_9BACT Ubiquinone biosynthesis protein UbiB OS=Bacteroidetes bacterium OX=1898104 GN=ENK07_06575 PE=4 SV=1 +MAITSAPRKLKRTRQVMSTLARHGLGAFAAGARRWYTTVLPYRKARPGVEAIPVEVRVRIALEELGTTFIKLGQVLSMRPDLIPHSLAQELEKLQDKAAPLPFDVVEKELARALGPDFREQLGEIEPEPLASASIAQVHRATLPSGEIVVLKIRRPGIKRQVETDLAILHDLARMAERTVTELELIEPTRIVEEFARTIRREMDFIREARNVERFRRHFRNDSTIYVPQLYWKFCRENLLVMEWIDGIKVSDVEHLRKAGLDPKIIAIRGAQAILKQVFEHGFFHADPHGANVFVIKGNVIVPLDYGMMGSLDDRLVRQIEDLLIGIVRMDVDRIMTVLENLGSIRPGTDTRSLYSELYDFLDRYYHVPLYQLNTPELVGELLDIVRRYRLRLPPDLVLMIRSLMLAEAGGRRLYPEFDMMTLAKPYVKRIIMRRLSLKRRIKEAPDTLEEVETLVRLAPKQVQSILSKASQGELSVRVDPAGIPEILHELDRSSNRLAFAMICAALVIGSSITISAGFGPFLFGFPLLGVVGFGLAALLGFWLLFSIMRGGKL +>tr|A0A1Y0RNH2|A0A1Y0RNH2_9CYAN TonB_C domain-containing protein OS=Nostocales cyanobacterium HT-58-2 OX=1940762 GN=BZZ01_25955 PE=4 SV=1 +MSYVSLLKNIPEFLSQPTGIAAIASLGIHGAIALLLPIVPMASKPKQEQPSSKSSVGLVELSQAEQSRLPKPATPQLSLQPQAPVLPQVPPTNFANQSIPPLPPLPPPAASTELILPPLPKTDNLAVASLPKGQSLPILSKRDLQPDTSLRTKSRPFSPFVDRVKLGEPKPLESARIPDNIPPVQAANIPQEQDLVNTAAPMSSDQVATALPQGSTATQTTQPGDEVSQVARKQQLVTPVVQPPQARDSSIALGGQNLPQLPQGSNFTAPELPPLAAERSLSTPKTFAERFTEVKNQYPNLETKQPIAAIVDAKAGTEGNVEGDLVVNPQGQVESINFLDNSVASELKTSVREYFRQYFQSNPVQANGKPKFYPFNISFKLNSSNISKTPAQGLSTSSQVNQAQRSLVQRLRSVEVSSQPSKEPQKLNQVERLRSSSVNQQVSQTNQKTSAPQASQERQTSKQQVILRQTTSAPQTNKEEQTSRQQVVVRQSASSLQTNKEEQTSQQQVVVRQSTSAPQTNQEQTSQEEATNNQPSASIESSKKLLQQLRQIRDKRQTSNQEK +>tr|A0A3G1T1W8|A0A3G1T1W8_APPPP Immunodominant membrane protein OS=Apple proliferation phytoplasma OX=37692 GN=imp PE=4 SV=1 +MEANQQKKILIGVGSVVGALVLYLILAWSISFWPFSSQSKQEIFDDLSNKITFSTDLEETNTIFNKAATERKKQFKEGFIDNKVNKLVELANKLTTPKITDGDKKTSFDSASASLKEITDNQTLLLNHNDDFWKAETNKTTVQGEIKKIIDAYVQFKTQIKTALDLK +>tr|D4KZC5|D4KZC5_9FIRM Uncharacterized protein OS=Roseburia intestinalis XB6B4 OX=718255 GN=RO1_22070 PE=4 SV=1 +MGQSHNKSSFVLEKDRSAAKINHMEGMV +>tr|A0A261RL90|A0A261RL90_9BORD Uncharacterized protein OS=Bordetella genomosp. 9 OX=1416803 GN=CAL26_00210 PE=4 SV=1 +MFSWFKQGLGAYAPAPVGASRRDKILGALGALLGLSCTEWIARHALGEASPWFIAPMGASAVLAFAAPASPLAQPWSLMVGNVSAALVGVFFSHLIPAPGLAAACSVAAAIAVMFALRCLHPPSGAVALTAVLGGPSIAQLGYGYALYPVAVNSAVLLCIAVVFNGVLKRNYPHRHVQAAPAALNRAATPLGFTGADLDEALRSHDQLLDISREDLADIVLEAERRASLRRFGGLACGQVMLRDAVVVRDDEPLDAALRLLDRHRLAALPVVDGQGHLLGLLAHGDASARTVRLASAPGAPSRASLARDCMRSEVAYATPAMPAIELARPMASGIACVPVVDDARRLVGVIHASQLIDALYQLALASGDSAAGNPAARRALDVAA +>tr|U3PX63|U3PX63_POPTO Cytokinin dehydrogenase OS=Populus tomentosa OX=118781 PE=3 SV=1 +MAENPTITICLMAILFITRLASTLGKSKSWTGLLPPQIQTLDFARHLHVEPDAIKSVSSDYGIIVHENPAAVLYPSSIEDITSLIKFWYNNYTPFTVAARRHGHSVGGQAMASNGVVVDMTSLRNHKNGTGITVSKCPSLGFYADVGGELLWIDVLHSTMEHGFAPVSWTDCLYLSVGGTLSNAGISGTTFRYGPQISNVYEMDVVTGKGELVTYSSHTNSELFYAVLGGLGQFGIITRARIALEPAPNRVKWVRILYSDFSAFRRDQERLISINGRKQKNALAYLEGSLLMAQGPPNNWRSSFFPSSDIPKIMSLVTQHAIIYCLEVAKYYDDGTRHIVDQDLQQLLKGLSFVAGFMFEKDVSFVDFLNRVRSGEQKLHSQGLWDVPHPWLNLFLPKSRILEFNKGVFHDLVLKRNITTGVVLFYPMNRKKWDDKMSAVIPEEHIFYTVGFLHSSGFNDWQAYGHQNKDILKFCDTAGIEIKQYLPLYNSNKEWINHFGSKWRNFRERKAQFDPKMMLSPGQRIFNDI +>tr|A0A5B7BHJ3|A0A5B7BHJ3_DAVIN Uncharacterized protein (Fragment) OS=Davidia involucrata OX=16924 GN=Din_037375 PE=4 SV=1 +QRRTVFNSDGSSKSKLQIDGDAASEDVGFDKIYPVESFSSESEGEEMEENSSRSYLKEVEQSKKKAGLERRLSASSLDSAGNDSSTIKMSSNLHDKNEPLSKEIVFDESDDETGNDQDNIPWLKHHDSSSDKKSNLPINEFPKTRQYNAAADEKHLYSQHSDRDRKPASMRTRRVHRD +>tr|A0A327WVV0|A0A327WVV0_9BACT Outer membrane receptor for ferrienterochelin and colicin OS=Larkinella arboricola OX=643671 GN=LX87_02312 PE=4 SV=1 +MLVSIAAHAQAPVLFSGSVREITTQEPLQGVHVYVRDHRLGTVTNNAGYYTLALPARDSLTITFSSVGYQTVTRTISSHRPQPLDVYLIPGQTLNEVAIKAQAPLQKGSDLAQMSQIQLPIEQLNKIPALMGEKDVLRVLQLMPGVQKGSEGNAGVYVRGGGPDQNLITVDEAVVYNPSHLLGFFSVFNGDALKQVELTKGGFPARFGGRLSSVIEMSMKEGDRHDLHGTGSIGLIASRFTLEGPLQKGKSSFLLSARQCYLGALTQLLSPRPVSDLPSRSGFGDYNAKLSFDLGARDHVYVSGYTGSDQFRSQQTYDKQVLDAGLNWGNTTGTLRWTHRFSNRTSAHTALIFSQYRMRVVSEETVTAEAPGQPGAILRLEYLSSIRDLSLKQDWDLYAGSGHQLRFGFQITPHRFTPSAVVTAESQAASLSRTSDQAIQVVESGAYVEDFWQPTDRWRINAGLRLSYFWHKQTQYARPEPRLSVGYKLPGDWTLKGAYAQMNQYVHMLSNTGVGLPTDLWVPTTDRVKPQQSEQIALGVVKDINSDITLTVEGYHKTMKNNISYREGANFLVTDITATGDKARWEDNVTAGRGWSYGGEVMLQKKTGRLSGWIGYTLSWTQWQFAELNGGRRFFPRYDRRHDLSLVAVYELSKRINVSGTWVYGTGQALTVPLARYYASANNPEHTTTPAANPFIDTRNVKDYGEKNSFRAEPYHRMDVSLQFHTRRKSWENIWELSVYNAYNRRNPFYYSLEGKGGSEGIASKSVLYRYSLFPVIPTVSYRFTF +>tr|A0A364VAY8|A0A364VAY8_9CORY Coproporphyrinogen III oxidase OS=Corynebacterium heidelbergense OX=2055947 GN=hemG PE=3 SV=1 +MTPRVAVIGAGIAGVSAAWELRRQLGPEANIMLVEAYDRIGGKLKTVNFAGGPVDMGAEAFLAFRRDFVELVEQVGLGHQLRAPSTEYTSSLYCRGQLVDVPAATVMGIPARGEDVQAILPAEERRRIDEERGGEPMTWEPGQDAAVGQLVEARFGRAVVDRLVTPLLGGVYSCGADGLGVRSTIPQLAAALDRAGAGGAQFYLSDVVADLLAVRTAGGARRSGPVFQTLAGGFRSLLEQMVLQADPEILFNTAVESIGRSREGWYLEPIGTVDGVVLAAPAPTAALLLRDVADTAAGILSDIELSSSVVVGMRFASDHGIPERSGVLLGPDAPTEAKAFTFSSRKWPHIAEHGGAFVRASYGTYDQPWYVELPDRALINFAAEDLEAITGERKRPEEYFVQRWHGGLPRYGVGYAEALKVAMDSVAAVPTFALAGAMVDGVGVPATAASGIAAARRLAADLSPSPRP +>tr|A0A0N4SWJ4|A0A0N4SWJ4_BRUPA Uncharacterized protein OS=Brugia pahangi OX=6280 GN=BPAG_LOCUS6 PE=4 SV=1 +MTVRIKVENGFERITVDNNMYARQFRNTQHPVSGSIAVDGAAGEKNWSTGALRCIEARLTNQYCTSAAQRERRECRDASDARVEMRESC +>tr|A0A2D1UI31|A0A2D1UI31_9INFA Protein PB1-F2 OS=Influenza A virus (A/swine/Iowa/A02215363/2017(H1N2)) OX=2007353 GN=PB1-F2 PE=3 SV=1 +MEQEQDTPWTQSTEHTNIQKEGNGRQIQRLGHPSSIRLMDHYLKIMNQVDMHKQTVSWRPWLSLKNPTQGYLRIHALKQWKLSNKQGWIN +>tr|A0A7S3I079|A0A7S3I079_9SPIT Hypothetical protein (Fragment) OS=Favella ehrenbergii OX=182087 GN=FEHR0123_LOCUS5015 PE=4 SV=1 +MSIKCLAARQNKSAAINSYGELFMWGSSKNRSLMHASGNGHKDNLKLPTVFESETLLFTKVAVGNEHVAAITEDGRLFTMGTTEHGKLGHPPQELNEEEKQKERDRYKRAGYKPGGLDRSKPAFGFVEGELAGKKIVSVACGDKHTVCVTEDGAVYSWGNGRSGALGHSNTENSAEPKRVEGLSNIVRVDCGTDHTIALDSKGKLHSFGSNTYGQ +>tr|A0A1S1HUD1|A0A1S1HUD1_PROST Uncharacterized protein OS=Providencia stuartii OX=588 GN=A3Q29_01410 PE=3 SV=1 +MQFPPCPKCQSEYTYTDNDMYICPECAHEWNDAEPVVESDELIVKDANGNLLVDGDTVTVIKDLKVKGSSSMLKIGTRVKGIRLVEGDHNIDCKIDGFGQMKLKSEFVKKN +>tr|A0A369D4D8|A0A369D4D8_9BACI AsnC family transcriptional regulator OS=Bacillus sp. AG102 OX=2184001 GN=DEU45_10192 PE=4 SV=1 +MQLDRVDRKILNELYNDSRLSMRELAKRVNLSAPSTAERVRKLESEGVIQKYTIDIDYKKAGLVLDCILEITLKNGDTTRMQQFIQSYPSASFCYRVTGSLCYIVKISVPSLVELEEFINDVSSYATTVSHIVLSEVSLTPDIEHIFPED +>tr|A0A370DS84|A0A370DS84_9GAMM RNA polymerase sigma factor RpoS OS=endosymbiont of Escarpia spicata OX=2200908 GN=rpoS PE=3 SV=1 +MDEPNDANAAGEDSVSSDKPEVSPKPETAQKLKKPNARAAREPNDAQMDATRLYLNEIGISKLLTAEEEVYFSRLAQKGDQSARQRMIESNLRLVVKIARRYMNRGLALLDLIEEGNLGLIRAVEKFDPERGFRFSTYATWWIRQTIERAIMNQTRTIRLPIHVVKEINVYLRAARQLAQTLDHEPSSEEIADLLDRPIGEVKRMLGLNERVTSVDTPYGKDADKPLLDTIPDERASDPTVDIQNDGLNANLDRWLEKLNDKQREVVERRFGLHGYENSTLEQVANELGVTRERVRQIQMDALRRLRDILERDGFSVDTIFK +>tr|A0A2C5Z117|A0A2C5Z117_9HYPO Uncharacterized protein OS=Cordyceps sp. RAO-2017 OX=2004951 GN=CDD83_9509 PE=4 SV=1 +MKTDSLSPLFLLSVDASDGPRTTTCDRFVGCHRYDDCRQPTRRPTYANTIIIRTPPLPPAVMAGGRPTTPPTSIVPSPCVPRIMASLLPLISDTPSHGHARLGSGGDGRLAAARCCSSYRGRIRSHPACHRQSTRQNGRSWSVSPTETEMASF +>tr|A0A6J3K058|A0A6J3K058_9HYME zinc finger protein 271-like isoform X3 OS=Bombus vosnesenskii OX=207650 GN=LOC117231473 PE=4 SV=1 +MNSEQHALPATTQAQQEDVNAGQSGRPSYPGGLATTTSLGNVGSTPHSSADLRVSVYHHSHHNSSHRSSGGGEASSKEPASSLNQEMALTSSSHHQSTPTHHHHQPSVSSSSHHSSLQPNSQQIPVSLPGLNLDGAHIPASVSHLQAAHAQMQQMQAAQQQQLHQQQQQQPQQQQQQQQQQSHHQMQSHQNAQNSGPTAHNQNAQRDDNKVKDESGSCTTERCSDNQVHCQVQCDLQLQTSQDLQQSLMQQQQQQQQQIGVNISGNSSSEGGSQNNTEKPEKEKELRQLNMTQFQVPDLKPGGHMMDVRTADGSVVKISAGNEQDLAKTLGVEMVQNMYKVNVEDINQLLAYHEVFGKLQSEIAAGTTLVGSTVPTQTVTTIQNGTPIVQQVQLNKFDIKSSDGEATPGPSASPVSVGSHACEICGKIFQFRYQLIVHRRYHTERKPFTCQVCGKAFLNANDLTRHGKCHLGGSMFTCTVCFHVFANAPSLERHMKRHATDKPYNCTVCGKSFARKEHLDNHTRCHTGETPYRCQYCSKTFTRKEHMVNHVRKHTGETPHRCDICKKSFTRKEHFMNHVMWHTGETPHHCQACGKKYTRKEHLANHMRSHTNDTPFRCEICGKSFTRKEHFTNHIMWHTGETPHRCDFCSKTFTRKEHLLNHVRQHTGESPHRCGFCSKSFTRKEHLVNHIRQHTGETPFRCQYCPKAFTRKDHLVNHVRQHTGESPHKCQYCTKSFTRKEHLTNHVRQHTGESPHRCHFCSKSFTRKEHLTNHVRIHTGESPHRCEFCQRTFTRKEHLNNHLRQHTGDSSHCCNVCSKPFTRKEHLVNHMRCHTGERPFVCTECGKSFPLKGNLLFHMRSHNKGSNAERPYRCDLCPKDFMCKGHLVSHRRSHSDERPHSCPDCGKTFVEKGNMLRHLRKHAAEGPPTQVSTPSAIPQSGVLPIPAAAVLVGHPLAPPAPPVVPQHTVVVPTPPGVLTSY +>tr|A0A7V1JCS3|A0A7V1JCS3_9BACT Histidyl-tRNA synthetase (Fragment) OS=bacterium OX=1869227 GN=hisS PE=3 SV=1 +MNRPVQPPKGTRDFLPEEMLLRGKVIETLRECFALYGFIEIDSPVFEYFELLSRKCGSEIEKEIYTFDDKAKRKLGLRFEFTSPLGRYYAANRSRLVKPFKRYVIGKVYRYENTQAGRYREFYQADADIIGSYSMNVELELLNLAIFTLSKLGFGDYEIFINDRKILDGIVNAAGIGEDKKDTALRAVDKMAKIGEQGVIKEFAENGIAEDNYKSFMEFIELDKDLSDIGKLSALGGRINAAVKDEFIKNKALEGIEELLSILKNAEAIGLDFITYDPLLVRGLGYYTGPIFEIKSKDVSIGSFAAGGRYDNLVELYGARPEGACGISFGVERIIDIIKERDGKTLELQAFPVKLYVIYLSEDERSYAYKNAEALRLNGINTELCISNR +>tr|A0A0F0I472|A0A0F0I472_ASPPU Classical c SDR OS=Aspergillus parasiticus (strain ATCC 56775 / NRRL 5862 / SRRC 143 / SU-1) OX=1403190 GN=P875_00053022 PE=3 SV=1 +MTKITIPTTPPSRSLQGKTAIVTGAGCLGNGIGNGRAIAILLASDGCNVLCVDRNLEWAERTVDMIKAQAEDALVEGKSNYGHATAIQADVTIAADCESIVSTALTTFNRLDILVNNVGISGAAGTAVDVDMEAWAKSLEVNVSSMVLVSKYAIPAMMKNERDEYSGMCGSIVNLGSVAGLRGGTPHLLYPTSKGAVVQLTRAMAAHHASDGIRVNCVCPGMLFTPMMYGGGMSEEAREARRKRSLLQTEGNGWDCATAVVFLAGPHARWMTGVILPVDAGTTAAVGIGMPKSASVNG +>tr|M1EY39|M1EY39_9HYME Protein Wnt (Fragment) OS=Hypoponera sp. Mal1 OX=1157064 GN=Wg PE=3 SV=1 +LPAFRVVGDNLKDRFDGASRVMVSNSDRTRGNSNTITSNSASNSVHGHRDGPRRRHRYNFQLKPYNPEHKPPGPKDLVYLEPSPPFCEKNPKLGILGTHGRICNDTSIGVDGCDLMCCGRGYVREDVMVVERCNCI +>tr|A0A452QU07|A0A452QU07_URSAM Uncharacterized protein OS=Ursus americanus OX=9643 PE=4 SV=1 +AKQNKDKKDEIIKRKEAPPHEGLEIEEPSSLGLMVGGPDPDLLTCGQCQMNFPLGDILVFIEHKKKQCGGSLGACYDKGLDKGSPPPSSRSELRKVSEPVEIGIQVTPDEDDHLLSPTKGICPKQENIAEPPPRGLCSVQATVFASGPSSEPGRPRKGRGPWQPVFLRQDGTGTRVDEGSHPAGPAASWGQASVS +>tr|A0A4R6LBV2|A0A4R6LBV2_9FLAO Surfactin family lipopeptide synthetase A OS=Flavobacterium sp. P3160 OX=2512113 GN=EV143_10517 PE=4 SV=1 +MGYDLFTKLKKLNVTVKVTDGQLDIKAPKGVLDEELLIEIKTKKEDLINLIGKYTKDKANEKNQIPVAPKSEHYPLSSSQKRLWVLSQIDTANFSYNIPGLQVIEEVLNVNAFMLATQDLFNRHEILRTVFKSLDNEDVRQFVIAAEDFEFPFQQIDVDNDEVKLNEILAEVKNTIFDLEKGPLFKGVLVRVTDNKWVFSYNMHHIISDGWSMDIMINELLNNYILRRKDEFVSGLPLKIHYKDYAVWQQQRLADKEFDKEKNYWLTNLEGDLPTLAHFGDNPRPAIMTYNGSVVKRTIETLLIQRFKSFCQEQEGTLFMGCLSILNVLLHKYTEQEDFIIGSPVSGRTHKDLADQIGFYVNTVALRTQLEADNSFKEIFQQNKISTLNAIENQNYPFDELLDNLNVKRDLSRSPLFDVMISVQNENQLNQKADDLSYNEFLDRRVSKYDLTFTFVEKAASLTVELEYNMDIFSKETASTLLYHLENLLVEVLKNPSEEIKSINCLDSEEQFELLENFNNTEKQYPDTGSIVSFFREQVQKTPQNTALVYKDVSFTYLELDALSNQLSNYLEKQYLLDNEDFIAILLQKNEWQIIAILAILKAKCAYVPIASDYPESRIQFILEDTKCKLVITEEEIANFLNVQAEYSDVKTSSPLSPSHLAYVMYTSGSTGVPKGALIEHGGVIRLVKENNYVQLTGKEALLSTGSFSFDATTFEYWSMLLNGGKLVLCDENTLLSPHELSKIIKEEGITIMWFTVGLLNQIIDDNIELFEGLDTILAGGDKLSFTHIDRLQRSYPHLEIINGYGPTENTTFSLTHKIGILNNTNIPIGKPITNSTVYILDKNDNLVPKGVMGEICLGGAGLSRGYLNQPKLTREKFVSHIFKGNERLYKTGDLGRWLKDGTVEFLGRKDNQIKLRGYRIELGEIESVLSQHEAVNSSLVMVHQDNENEKVLVAYITVNTPVNISNLKQWLSERLPYYMVPNYLEVLDIFPLNVNGKVDRSKLPLPESINFDKREEYTEPATAFEKSLAKLWEEVLGISKVGLEDNFFDIGGHSLKATKLISKIHKEFQVKLKLKDLFVHASLQSQCKLIAEAQHSGYSKIPVLTKQNGYPLSLMQRRLWILSQHQAANIAYNMSGAYVFEGDLNVRILEEAFIQLIKRHEILRTSFKEDANREILQYVTEPENVSFTIKNIDLRGTEKLVLDKYLSEDLIAPFDLSSGKLFKANIYRISDNRWVFSNVIHHIISDGWSLGIIVNELLYLYNTLLTGGSVTLTPLNVQYKDYSSWQLKELSDSRLEFHKGYWINQFKGDLPVLDLSGGKQRPITKTYNGGVYNKIISAELSNKLAEFLKTEETTLFMGLLSAVNVLFYHYTKQEDITIGSPIAGRDHADLENQIGFYVNTLALRTIFLKNDTFKTVLAKVKEVVLGAHEHQLYPFDELVSSLNITRDMSRNPLFDVQVIVQNNQDTANTELKNLAVTAYQGELPQSSVFDLVFNFVESENGLATSIIYNSDVFDSERIEQFASHLEHLLAALLQDTELPIEEVKWLSEEEKQHLLSFNSKQMDYDQSKTVIEMVNDQVNKNPEAIAIAFEGTQITYLELHERSNQLAHFLLENYTIEPNDFVGIMMDRSELMFIGILGILKAGAAYVPIDPDYPVSRKEFILKDTNVKVLLTQSDYIFDLAYYQGEIFAMDLQMDTLTNSVTNSEINVLPEHLAYIIYTSGSTGNPKGVIVTHANLQHSLAPRNDVYVPIKCFLLLSSFAFDSSVAGIFSTLTNGGKLAITTNANIANVNFIADYIVAEKVSHLLTVPSYYKLLLMALQGKETALEEVTVAGETCPISLIEDHFKSKIGQSGCQLFNEYGPTECSVWSSVHKYEEGKPVTATIGKPIANTHIYILNDKEDLVPVGVIGELHIGGNGVTKGYLNNSELTNQKFVKDPFQKSGLMYKTGDLGRWNSEGEIEFLGRKDNQVKVRGYRIELNEVQYAIEQSGFIQSAVVLTKENKSGDNELYAYLVADEALNTSDLKNYLKDLLPGYAVPAHFITLSGFPATPNGKIDTKALLEIGDSDNRTGEDYVAPQTEEEIALVNIWQTVLDKEKIGVNDRFFDLGGDSIKVLKIVNGIYNEMRLEISISDVYTYANISKLADFIIHNKKSLDSRKAESTEARKDVVNYIDAIKNSVLESLDQNKSEAIEDLYPMSDIQKGMVYESLLYEGTSIYHDQIINQRQFVNFDISVFRLAMQLMVNKHEILRTGFNMHDYEQEVQIVYKNIEIPVVYQNLSHLDSLKEKEQVIGAFLQSELAKPFDLTSIPLFRMAAFNIGDDMIVFVSQCHHAIIDGWSDSMLLTELNNLYLNLLEDITFKPEKIKASYKNYVIEHEIDKKDTEIQSFWKEELQDSSKLNIFTNTPVSSIYGNILSENEVSELKLLASNSGTTVKEVSLSAYLYMLSILNADPDVVTGLVTNNRPSCEDGDKILGCFLNTIPLRFAINYEVTVKDFILEVQHKLIALKKYERLSLLQIASLSDNQQSNENPFFDVYFNYVDFYTYNKIKSEIKENSNPDKEEESVSLIGANKTNTFLDFNVNTTGDLYHASLSLTKILKSGLTVEQVNDLYFSILRSFIASPHQLLKSVDYLGAKEKHTLLHEFNDTKHEFPSETTLGELFIKQVKNTPDKIALVFQQKEFTFAELNEKSNQLAHYLKANYTLGANDLIAVALPRSEWMITAILAIHKIGGAYVPIDPKHPQDRIDYIVQDSASALIIDAKVLGEFQAVAENYSNENLTLINKPTDVAYVLYTSGSTGNPKGCILEHSGVVNRIQWMWEAFDYTNQDVILQKTTFTFDVSVWEIFMPLCWGTKMVLCSDEDVSIPQNIETLIKNHKVTCLHFVPSMLDVFIDSLFYEAYDFSNLSSLKQVITSGEALQLNTVKKWYEKLETPIQNLYGPTEASIDVTYYTTSKQDTVIPIGKPVWNTSIYILDANNNLVPIGCSGEIYLAGTGLARGYLNRPELTAEKFVANPFAPGEKMYKTGDIGKWTSDGNIIYAGRNDNQLKIRGFRIELGEIEQCLLEIETLDSATVLARKSASNEIDLVAYIVSNQELDVKGIKGTLKKKLPEYMVPNHFVKLETLPLTLNGKLDRKKLLAISTDSEGQTVEIVKPENDVEKKILQIWKEILSKEEISVTANFFEIGGHSLRAIKLQSMLKRKIGLDFSIKDIYNRPTIKRLASDKEKSNSLLIDLQINNRKNIIYFIPPLTGSSILYHPLAKVLSNEFDSVGFQYQGLEHGEEFSLSIKEMAKSFLDEIKNRQTHEPFIVLGYSMGAAIAFEIVRELEKYYSNIDLILVDRPTTVEADQLELQNMDHQANWLLAEYKKVIKLDEEQEKRTLAFLKNNLVLNNQYQLEGKISSNIYVFEATDNKYKGNMQNWQDYTNGDFKHHYLLGTHWDAVSEQNFESYRELFRSIYKKTSIETI +>tr|I4C7D0|I4C7D0_DESTA Uncharacterized protein OS=Desulfomonile tiedjei (strain ATCC 49306 / DSM 6799 / DCB-1) OX=706587 GN=Desti_2801 PE=4 SV=1 +MSGKCKMLGLVMLLGLGVTVHAWAVGYERLEVDATKTRTNVVSSNGPAASIAEKCPALLDEVAGVITDLLSQFGIINKKAP +>tr|M6VC02|M6VC02_9LEPT Acetylglutamate kinase OS=Leptospira noguchii OX=28182 GN=argB PE=3 SV=1 +MEKLLERVNHILEALPYITQYSGKTVVIKYGGAAMAKADLKESFAKDIVLLKYVGIHPVIVHGGGPEINRLLDNLKIPTEFVHGHRVTDTQTMEIVEMVLTGKVNKQIVSLINSQGGKAVGISGKDGNLAKATKAPVEIELEGKEKQLFDVGLVGKIESINPEILHNLQKEGFIPVISPVAENSEGESLNINADTFAGEIAGALKAEKLILLTDTQGILINQQLVTGLNRSKVKDYIRKGEISGGMIPKVECCLTAIDQGVRRTHIIDGRVAHSILIEIFTDQGIGSLIES +>tr|A0A7G5XKD1|A0A7G5XKD1_9BACT Copper chaperone OS=Lacibacter sp. S13-6-6 OX=2760713 GN=H4075_07020 PE=4 SV=1 +MELITFKTNISNERALQRVAPLLNNAVGSSNWQLDVSGAENKLMVYSPGSINEMQVIDAVHKAGFYAVNIEDFYAIF +>tr|A0A7X1L7W5|A0A7X1L7W5_9DELT Bifunctional protein PyrR OS=Desulfobacteraceae bacterium OX=2049433 GN=pyrR PE=3 SV=1 +MRKSEMVMDAKDIERTIIRMTHRILEVHKGAADLTLIGIQTRGVFLAKRIQDNIRAIEGTTVATGDMDITLYRDDWTRISHHPVVQATDILFSVDGKEIILVDDVLFTGRTTRAAMDAIMDFGRPDRIELAVLVDRGHRELPIQADYVGRFIETRRSEMINVGLRENDGEDKVLIEERQD +>tr|A0A3R6LV74|A0A3R6LV74_9CLOT TetR family transcriptional regulator OS=Clostridium sp. AF35-15 OX=2293013 GN=DWZ76_13300 PE=4 SV=1 +MEISGNTCSLLNYKLYLNNNGLPEEKSMQQGNTKERIVEAYIELESERPVEKITVTALVERSRITRKTFYYYFKDIYDLMEYRMEREMKRVMEETMSQTDPEKALTQLYMYIMENQKHIRALSESVQFMALRRQMGEKVYQYFYNHLERMGMFKNLTMSEAAMAVQIIIFSVMGVAFDAPFKNEADVKERVATFMSVIRKCTGCDPTRNR +>tr|A0A7C3N467|A0A7C3N467_9DELT Universal stress protein OS=Deltaproteobacteria bacterium OX=2026735 GN=ENV48_17320 PE=3 SV=1 +MYKKILVPLDGSQLAERALDPAEKLAQFFGSEIVLLQVIPFMPIYGAPELVTPLVVDEKHRESAERYLAALAEKLKAKGLQVSATVRTGQHVAGEILDFAKASAADLIVMNTHGRSGISRWFLGSVTLKVLSRSETPVLLIRSKP +>tr|A0A1I6UAS3|A0A1I6UAS3_9EURY GTPase, G3E family OS=Halostagnicola kamekurae OX=619731 GN=SAMN04488556_3691 PE=3 SV=1 +MVTSLSEIPITVISGPLGAGKTTLVNRLLNDPGERRIAVIVNDMGEVNVDAELIADETEEGVVDLSNGCICCRLQGDLVDQATRLAEERSFDYLAVEASGISEPIPIARALTDGTEADSLPDRFRLDTTVSVVDAYGFWKAFDSEESLPDAAPDPERPLTEVLVDQIEFCDVLLLNKCDMVPDDARESIEAAIRELQPRATLHRTTYSDVDPSAVLDTGSFDFEAARRQQGWKRALAGDTANEHPDHDHSDDAVSAAEAHGVESFVYRRDRPFHPERFDAWLDDWDGEIIRAKGFAWVASRPETVLGVSQAGPSVQAGPIGEWGDDDPVTRLVFIGSDLDEAAVTTELDDCLASFDERTDEYSTDPFPRKSN +>tr|A0A126S3A9|A0A126S3A9_PSEPU Heavy metal RND efflux outer membrane protein OS=Pseudomonas putida OX=303 GN=AWT69_001931 PE=3 SV=1 +MPIPRKIALLCLLLAGPAGAQGLSLDQALDAAFSQNPDFAAIGREIGIAEGERRQAGLIPNPELSWEVEDTRRDTSTTTVTLSQALELGGKRGARIEVAEAGQAIARLELERQRNSLRADVIQAFHAALRAQTALELAQQSQALTERGLRVVEGRVRAGQSSPVEATRAQVQLAQAEAAVRRARTERGVANQVLARLTGSAEARFDRLDASNLSPGPAPQAEPLLAKVEQTAEWRLAAAQIERGDASLGSEKAQRIPNLTVSLGSQYSREDRERVNVVGLSMPLPLFDRNQGNVLAAARRADQARDLRNAVELRLRSETRSALEQWGTAMGEVQAYDRTILPAAQQAVDTATRGFEMGKFAFLDVLDAQRTLIEARGLYLEALAQATDARAQVERIYGEL +>tr|A0A7L9UZJ5|A0A7L9UZJ5_BIFLN Response regulator transcription factor OS=Bifidobacterium longum subsp. longum OX=1679 GN=BL7055_06065 PE=4 SV=1 +MDNDPFALDAMCAMISAVSKDFRVMWSTGSPAVAIEHCHNPHTRPEVLVLDMALGGITGADVCRRIRRRTGGTGIVCVTSYSVDVYQREAIASGAQGLFAKERLRTDIAVAIR +>tr|A0A7W5LBF7|A0A7W5LBF7_9HYPH Diaminopimelate decarboxylase OS=Rhizobium sp. BK312 OX=2587080 GN=lysA PE=3 SV=1 +MNHFEYRDGILYAEDVPVPEIAKAVGTPFYVYSTATLERHYRVFAEAFDDVDAMVCYAMKANSNQAVLKTLGRLGAGVDVVSVGELRRALAAGIPASRIMFSGVGKTAQEMDAALEAGIYCFNVESEPELEVLNQRAVRAGKVAPVSFRINPDVDARTHAKISTGKKENKFGISWQRARAVYERAASLPGIKVTGIDMHIGSQITELQPFDDAFKLLRDLVETLRGDGHDIHHVDIGGGLGIPYRDDNNPPPLPDAYAEIVKNQLRGLNCKIVTEPGRLIVGNAGILVTEVIYVKDGGDKSFVIVDGAMNDLIRPTLYEAYHEIRPIAVGDVSTPRIKADVVGPVCETGDYLALDREMALPKPGDLLAVGSAGAYGAVQAGTYNSRLLVPEVLVKGNEFHVIRPRTTYEELIGLDSIPAWLEG +>tr|A0A2S0UY05|A0A2S0UY05_9GAMM dTDP-glucose 4,6-dehydratase OS=Colwellia sp. Arc7-D OX=2161872 GN=rfbB PE=3 SV=1 +MKKLLVTGGAGFIGANFVHYWMEKYSADKVVVLDALTYAGNIANLDSVKDEDNFTFVHGNICDQALIETLLVEHSIDTLVHFAAESHVDRSITGPDAFIETNIMGTYSLLKAAKKVWLDGESIVEGHRFHHVSTDEVYGTLSPTDPAFTEDTAYAPNSPYSASKAASDHLVRAYHHTYGLNVTTSNCSNNYGPFHFPEKLIPLVITNILHDKALPIYGDGQQIRDWLYVEDHAYGIDLVLQNGRVGENYNIGGDNEWANIDIVKTISKLVEQEFVKNKDLATRFPAAKAAMTQNTESLITYVKDRLGHDRRYAIDATKTNNELNYQPKESFETGIAKTVAWYLNNEAWWQSVMDGSYQNWIAEQYS +>tr|A0A7K9XDW7|A0A7K9XDW7_9GRUI KRBBB protein (Fragment) OS=Psophia crepitans OX=54359 GN=Klrb1b_1 PE=4 SV=1 +EDCVDRGAELVMPEDQDELGFLNEILQKPNRQFWTGLSVSPTGKGWTWLNGSRLDQSRFPLSPGDEGRRCGVLKGGRITSQNCSSEFQWICQKEATQL +>tr|A0A0R2NXL2|A0A0R2NXL2_9ARCH RNA-binding protein OS=Nitrosopumilus sp. BACL13 MAG-121220-bin23 OX=1655561 GN=ABR53_02015 PE=4 SV=1 +MKSNLISKSETASLLKKISDAWGIEFPKMKNVKVHQILSDAQIITGDGLKILKINEDYLPFLSETEILKKFPSVEVDMGAVKFMCKGANLMRPGIKKFTEFEKEKLVCIVEETHHKFLAIGKSMVSSSELENMEKGEIIQNLHYISDRFWETGKTIYN +>tr|A0A6I3FRK9|A0A6I3FRK9_9ACTN Uncharacterized protein OS=Actinobacteria bacterium OX=1883427 GN=F2575_05150 PE=4 SV=1 +MRLVHPLIWWLWALLLATFVIRADNILIAAAVACAVTLVVVKLKNDNYWSKSFALSIRLALLIIVVRMLIAITIGVPMPGQILFRIPSITLPSWMVGIRIGGDVTSQRLTSTFHEVIIIATVILLCGAANSLASPHRMIRSLPKAMYNLGVALSVATSVLPQIVKSIGRIQSAKRLRGQKTRGIRAWRGIALPLLEESLERALDLATAMEARGYGYHGKTTKYRAEPFTFIDLVMIASGVYLVLLSATLLSHFSVVVLALFSLVIVASPIAIVKR +>tr|D5EYN5|D5EYN5_PRER2 Uncharacterized protein OS=Prevotella ruminicola (strain ATCC 19189 / JCM 8958 / 23) OX=264731 GN=PRU_0725 PE=4 SV=1 +MGIVAVLAVVRAEFPQLAEPRIAESHVEVNADSVAAAMPHTDFSATATAKKHKIYSVPSFKACFPDTQSVQLAAAMKWGVKRVKNREDAEKRKSELVYVGANPYVHIDKLYSSIPYLVPRAAVLLQDVGQAFFDSLYVKGIALHRPIVTSVLRTEADVTKLRRHNGNATENSCHLYGTTFDICYNRYETVQDPDGPARRAVRNDSLKYVLCEVLRDMREQGRCYIKYEVKQGCFHMTVR +>tr|A0A0F8VXL6|A0A0F8VXL6_9ZZZZ Uncharacterized protein (Fragment) OS=marine sediment metagenome OX=412755 GN=LCGC14_3138660 PE=4 SV=1 +MYRGFRVLVDSALGTLAGAFATNSNRDRAGLLYDKNIAQHNGGVETGSNAYKNWDVLRGRVSANDDQVAVIGEGIVYEYTLGSTTWADASATARANDCFHIYFSCTAAQGASEIAKGGGDYGDTSGVKYIYEYSPWTALAATADIIVPNYYSLGAWANFRVPFPHNTYNTVSTIGDKFGNSTSPFEPATLDSNNFHLDHTGGTGFNQDNAEDFAPFTALELQGLIDYIVVSSGDGVALQADFKMRCTCYDTSDNVVVVDFTIPHRNNYFHVSLPLTQFKNYRARASRRWGDVISNLEPAELEIQEQFEWKNLCMISIQTQDSYDDQGRYFPEDGLFLK +>tr|A0A1C4Z724|A0A1C4Z724_9ACTN Potassium-transporting ATPase ATP-binding subunit OS=Micromonospora matsumotoense OX=121616 GN=kdpB PE=3 SV=1 +MREKAMTTSTPAPHGTADAATAGTPATQGNRGGGLLDPRQLLRALPDALRKLDPRTLWRNPVMLIVEIGAAFTTVLTVADPSVFALAITVWLWLTVIFANLAEAVAEGRGKAQAAALRRAKTDAVATRALDWSRGAAPGTYRTESVPAPQLRQGDVVVVEAGETIPGDGDVVEGIASVDESAITGESAPVIRESGGDRSAVTGGTKVLSDRIVVMITQKPGESFIDRMINLVEGANRQKTPNEIALNILLSALTIIFLLAVVTLQPLAIFSKNFQAAAPDSNAVTDGGVTGIVLVSLLVCLIPTTIGALLSAIGIAGMDRLVQRNVLAMSGRAVEAAGDVNTLLLDKTGTITLGNRQAAEFLPVDGLDAAGVADAAQLSSLADETPEGRSVVVLAKNEFGLREREPGLMPHATFVPFTAQTRMSGVDQGAQGGAGGARRIRKGAAAAVMKWVRDNGGHPTEQVGQIVDEISGLGGTPLVVAEHVDGQPARALGVIHLKDVVKAGMRERFDEMRAMGIRTVMITGDNPRTAKAIADEAGVDDFLAEATPEDKLALIRKEQEGGRLVAMTGDGTNDAPALAQADVGVAMNTGTSAAKEAGNMVDLDSDPTKLIEIVEIGKQLLITRGALTTFSISNDIAKYFAIIPAMFAGIYPGLDTLNVMRLSSPESAILAAVIFNALVIVALIPLALRGVRYRPGAASKLLSRNLLVYGLGGIVVPFVGIKLIDLLIQFIPGVS +>tr|A0A2V1NJD8|A0A2V1NJD8_9ACTN ABC transporter OS=Streptomyces sp. V2 OX=1424099 GN=DF268_33570 PE=4 SV=1 +MTSTTPHPDGALPRPAVQLTSVTRRYGPGVTALDDLSLTLPAGSFTAVMGPSGSGKSTLLQCAAGLDRPTSGSVRLDGTELTGLSERRLTLLRRAHIGFVFQSFNLLPSLTAAQNVALPLRLAGRRPSSARVREVLARVGLADRAGHRPGELSGGQQQRVALARALITRPRVLFGDEPTGALDSTTGREVLRLLRGMVDAESQTVVMVTHDPLAASYADRVLFLVDGRVHGELAGAGAETIAARMTGLTAAETPPGPRRTGPDPHGTADLHDTADPHGLRDPHDTGDPDSARPNPQGTPTARQETLPC +>tr|R8RZS5|R8RZS5_BACCE Methyltransferase OS=Bacillus cereus HuB4-4 OX=1053211 GN=IGM_02991 PE=4 SV=1 +MNELEYKSFYDKVGRLNGWDFSKIKCETVGDTWDFYSEVKERCKPSHILLDVGTGGGENVLNIASSAKLLIGIDNSNGMIATAHSNLKKSGVQNVEFLQMGSEALTFPHAHFDIASSCHAPFLASELAKVMKKGAFFLTQQVSENDKLNLKEAFGRGQCLGERDGTLKEKYMNELISAGFDLVQVREYDVTDYYSRSEDLIFLLKHTPIIPRFGEQEEDFTILQKFIDTYSFEKGIRTNSKRFMIIAVKP +>tr|Q8EYI3|Q8EYI3_LEPIN ABC transporter ATP-binding protein OS=Leptospira interrogans serogroup Icterohaemorrhagiae serovar Lai (strain 56601) OX=189518 GN=dppD PE=4 SV=1 +MIRIENLTISYYTKSGFGLKKSRIVAVDGVNLEIGKNEIIGLVGESGCGKSTLGRGLVKLLKPEFGSIYFEDKEITSLSSSEFFPFRKNIQIIFQDPYSSLNPRMTIAEILMEGLEIHEKTSREEAETKIKKILEKVNLSSDILSRFPHEFSGGQRQRIAIARALVLKPKFVICDESVSALDVSTGTQVLKLLVELKNEFGLSYLFISHDLGVVKSISDRIAVMYLGKIVELGNTKNIISSPAHPYTKALFQSTFDVYDRKKNRIPLKGEIPSIVNKPTGCHFHTRCPIARDLCKSEVPVWKEIRNGQKVLCHFPID +>tr|A0A5X0ZI55|A0A5X0ZI55_SALET Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzyme OS=Salmonella enterica subsp. enterica serovar Stanley OX=192953 GN=glnE PE=3 SV=1 +MTPLSSPLSQYWQTVVERLPEGFTETSLSVQAKSVLTFSDFALDSVIAHPEWLAELESASPQADEWRHYAGWLQEALAGVCDDASLMRELRFFRRRIMVRIAWAQTLSLVDDETILQQLSHLAETLIVGARDWLYAACCREWGTPCNPQGVPQPLLILGMGKLGGGELNFSSDIDLIFAWPEHGETRGGRRELDNAQFFTRLGQRLIKALDQPTMDGFVYRVDMRLRPFGDSGPLVLSFAALEDYYQEQGRDWERYAMVKARLMGDNDDAWSRELRAMLRPFVFRRYIDFSVIQSLRNMKGMIAREVRRRGLKDNIKLGAGGIREIEFIVQVFQLIRGGREPSLQSRSLLPTLDAIAALHLLPENDVAQLRVAYLFLRRLENLLQSINDEQTQTLPADDLNRARLAWGMKAENWPQLVGELTDHMANVRRVFNELIGDDEADTPQEEERSEPWREVWQDALQEDDSTPVLAHLADEDRRQVLTLIADFRKELDKRPIGPRGRQVLDQLMPHLLADVCSREDAAVTLSRITPLLAGIVTRTTYLELLSEFPGALKHLIMLCAASPMIASQLARYPLLLDELLDPGTLYQPTATDAYRDELRQYLLRVPEEDEEQQLEALRQFKQAQLLRVAAADIAGTLPVMKVSDHLTWLAEAMIDAVVQQAWTQMVARYGQPAHLDERQGRGFAVVGYGKLGGWELGYSSDLDLIFLHDCPMDVMTNGEREIDGRQFYLRLAQRIMHLFSTRTSSGILYEVDARLRPSGAAGMLVTSADAFADYQQHEAWTWEHQALVRARVVYGDPQLTSQFDAVRRTIMTTARDGKTLQTEVREMREKMRAHLGNKHRDRFDIKADEGGITDIEFIAQYLVLRYAHEKPKLTRWSDNVRILELLAQNGIMDEHEAQALTVAYTTLRDELHHLALQELPGHVAQTCFSKERALVQASWRKWLVAV +>tr|A0A846PBJ8|A0A846PBJ8_9BACT ATP-binding cassette domain-containing protein OS=Candidatus Latescibacteria bacterium OX=2053570 GN=GTO29_14730 PE=4 SV=1 +MNEPWIQLKNVHLSRGGRPVLKGVTADLAGRAIGLVGANGAGKSTLIGALLGVLKAESGMIHVLDLDLPRNAMQVRSRAGVMAEQAGVFPGGSGVDAVVFAAMLNGLSRRESLRKAHRALDALDVGEERYRPVRGYSTGMQQRCKLAMSLVHDPEILILDEPTVGLDPPGRTQLLNLIRDLRDEGRRILVSTHIMHDADFLCDELLLLEAGTVAFSGPIRDLIDTGVGVVVAAGEGLDAAFAETLGQRGYDIREQADEHITFEPNQDVELREFWQLAAERGAEVRALGRDLPSLESAVIRAMEHTDEQ +>tr|A0A7U8ZSQ3|A0A7U8ZSQ3_VIBCL Uncharacterized protein OS=Vibrio cholerae MAK 757 OX=412967 GN=A53_02263 PE=4 SV=1 +MRYLAVLMMGLLTFPAFALTRVNLYQAEVAVDPQQSNADAAARVRGMEEVIVRATGSQDALKNDAVQKALRQSNQYITQISTQQEGAQSVMRLQFSAQHIRSLLSQAQLPFWPESRSNLLVWLVEEANYDRSVSWEHADTPLLNQMKVRARIRGLPLTVPVGDFDDVTGVQVSDLWGGFINPISIASQRYPTDAVLVVRAQGSELRWTLFDQLANTMVSQPKAPISGQASGEQAVTEMIDEISDYYARKSAVVVSSESSQSVLAQFSPLDSAQDFFVVENKLKRLSSVASLDILKVQGTQVTFNVHLLASVEEFTNEVVRMGQAVLMEMPPEEPVSADNNLLENSSLENSASEMPVDPSNPNNAAAQPQPVQPKTLYFSWQG +>tr|A0A7W0QRE7|A0A7W0QRE7_9CHLR D-aminoacyl-tRNA deacylase OS=Chloroflexia bacterium OX=2448782 GN=dtd PE=3 SV=1 +MRVLVQRVREARVTVDDVEAGAIGPGLLLFVGIAATDGDGELRAMADKIANLRVFEDDAGRMNRSVLDLVAGGDPVGALVISQFTLYGDVRKGRRPGFTRAAAPEEAAPMIEAFAVCLANPGLVVERGVFGAHMMVSLTNDGPVTIWIDSDDLRQPRRGETSSAI +>tr|A0A7L4YJJ8|A0A7L4YJJ8_9ACTN Uncharacterized protein OS=Epidermidibacterium keratini OX=1891644 GN=EK0264_02370 PE=4 SV=1 +MEQTLINDGLPFLGSALPADLAGVELRRAITEHRVLRMMRNTFRDARVPDSREVRVAAIALHAPKDAIVADDTVAWLQGVDTNDPRDRFSFSPSLIVPNHACRPQHPGVRVREGTIDDCDVVEEGGLRLQTNLRATADMLRLKWRPNALATADAMCRHNLIDKGELAEFIRPLRRLPGIPQARALVRLVDPRSMSWGESVLKLRLVDAGFPMPALQHEVNDPRIGVRYLDCAYVAPRVGVEYDGKEFHTAESDREHDAERRELLSDILGWRWEIARRDDLIGTNDALEWRVGEKLGLTPRPRSW +>tr|A0A0P1FSG2|A0A0P1FSG2_9RHOB Uncharacterized protein OS=Thalassobacter stenotrophicus OX=266809 GN=THS5294_03520 PE=4 SV=1 +MRLLGAFSLVLGLLVAPEVAPAQGTSVVTGTGTGAVLRTLDKVTGAVFDVEVASGQTMGYGTLEITLSECRYPASNPAGDAFAHLTVMDGSKRQDIFQGWMIASSPALMALDHARYDVWVLRCITS +>tr|A0A1C4RDB8|A0A1C4RDB8_9ACTN Uncharacterized protein OS=Streptomyces sp. DvalAA-14 OX=1839759 GN=GA0115240_152365 PE=4 SV=1 +MPTAPRTIDELQQALMANQQLPYGRTRTVGAEELVDAAEQFAEPIALVRTLLELQSAYVYGSEPRKSPVVFARLLALFDEQPDLFDERLRHELFWRFKWVANALRQLPEMPLASIQQWLTEMRTRYEKAGLGLQPYYGQAFQLAAHVGQDIAPAYELWAARTRTPLSDCEACEICDRALYHLRGGDDERALESWEPVLTGTASCQEEPARSISYALLPLLRTGRTDRARELHLAGYRACRHRPSMSGEVGRHLEFCALTGNEARGLELLAENRGLFDEVESPHANFDFLTGVEVLLQRVGLLGHGELPAAGYAGRVWSVAELRAEVRARADDLAARFDARNGTTAHTDRRRARLDRAPLLDALELTLRSRTLDVVAQAAPADAAAGAPVSAPAGAPVPRTPAAVSDSLPELILQARDLDERAHPDANACWARLRALVAAPDYTHPDDPAVGSFVRLRADLLADEASRVHEKEEYAVAAALFTQAGDLYDEAGEPGHAAFARGYALLAEAEQVTEPVKPPEPAEPADAAEAADAAEAAGPAEAGQPAAPAEPAERAAGADGANGAEKAEKAEKAEKAEKADRTGPAAAVEARVAALTGVHAAAVRLQEDTPGLAPYQEARLLRLRATALGLRLQASGNEEHAAPVLAEADLLREFATRHGVVTQISGARFLRATTWAIRGDLPAAHTEVDGLLDELKERGPAWHLPRALGLRARLRLGLGEAQGAHDDLTEALRLAADWPAEAVHTSRLQGDLAEVCMHLGRPDEALRHLTRSAELELRADQRAEAFTTYGNAAALSLDLGRVEDSIALLDSLLAEPDAVAGELNDRLLAQLRLTRARALHAGEDLKAATAEFVALAAESAGWDDDPGSHAMIAAETAVLLGEAGEFGPARQAAEQALAAHARAPRYEQLSNALRELARLQAEQQGPDGLTDALAFLADAGRIADEARAAGFEARGRSLDTALAYEHGRVNAYAGAYEDALAALDKALDLIGEPAPEDDRVEEWAESVRLAGVVEGLYLKRTAPALARLDAAIARLTSLGHPKEATPLTSLAARLRDDK +>tr|F7Y857|F7Y857_MESOW SnoaL-like domain-containing protein OS=Mesorhizobium opportunistum (strain LMG 24607 / HAMBI 3007 / WSM2075) OX=536019 GN=Mesop_3059 PE=4 SV=1 +MNKNYEAIKAHYAGSDAMDLAAMMAPITGRTAWTEMAGFPYAGTYVGPDAIIAGVFKRIGEEWDGYNLKLEKLVDGGTTIVGIGTYSGTYKKTGKPMSARVVHVWEMEDGKVLSFEQFTDTRLVAAATA +>tr|A0A2V6GK08|A0A2V6GK08_9BACT Aminopeptidase OS=Verrucomicrobia bacterium OX=2026799 GN=DMF43_07280 PE=3 SV=1 +MHDIRFDNLAKLLVEYSIRLGRNEAVLIEAFDIPDEMTIALIQAARKAGGVPFAQIYHTRVNRALAFEASDRQLNLLASHELARMKKMDAYIAVRGSNNITELSDVPAEKMKLLNKKMRPVQDQRVKKTKWVVLRWPTPSMAQLAGMSTEAFEDFYFEVCTLDYRKLQPGMKALKGLMEKTDRVEIKGPGIDLRFSIKAIPAVICGGDRNIPDGEVFSCPVKDSVEGHVTFNAPSIYQGIGFDGIRLEFKNGKIIDATSNETKKLNKILDSDPGARYIGEFSLGFNPRVLQPMRDILFDEKIAGSFHLTPGQAYEEADNGNRSQVHWDMVSIQRPEYGGGEIYFDGKLIRRDGEFLPKQLHSLNRSRTR +>tr|A0A0F9KX35|A0A0F9KX35_9ZZZZ Uncharacterized protein OS=marine sediment metagenome OX=412755 GN=LCGC14_1274400 PE=4 SV=1 +MKPKNYKYLDGSGNQYNIQDDMRKTLEYVPVKPESSSSGIYDGGKYVKTEITIDQFNKIVSLLNSAIRKSEIHIKDRVKMSGMIIVEEEGNRNAYILDPYSEEKFSIETKLREIFEI +>tr|A0A1L9MTS9|A0A1L9MTS9_ASPTC FSH1 domain-containing protein OS=Aspergillus tubingensis (strain CBS 134.48) OX=767770 GN=ASPTUDRAFT_130501 PE=4 SV=1 +MRFLCLHGAGTNAEIFEIQSGGISYDLAKYGHTFKYYDGCMEAEVEPRTSPRPPHLKIRKLKGLFTGPFYNHYPRDRAPGEYLAPAMKHVYDIIEREGPFDAVMGFSQGAALACAMIVHHAKTHQEPLFKVAVFICGAAPFDSTGNEVIPDTSAEGEYPVKIPTANIVGKQDELYPSSMHLSRLCEPSKMSFHDHGSKHMVPFDVENTNAMVAAIEATVQKALRGE +>tr|A0A2V3TT51|A0A2V3TT51_9HYPH Flavin reductase (DIM6/NTAB) family NADH-FMN oxidoreductase RutF OS=Chelatococcus asaccharovorans OX=28210 GN=C7450_11941 PE=4 SV=1 +MADKTRLIVEGGDPAADPKAFRRALGSFPTGVSIITTPGLDAPAGVTANSFASVSLDPPLVLWSIAHTSRSHAAFRQSAHFAINILADDQVGVSQAFASASYDKFSLVDWHRGGTGSPLIDNALAYFDCVCEARHEGGDHTIMIGRVIEFGRSEGSPLAFSQGRYGITLDHPEVAAKARDRKFEEPGLDELPFLSLIAKAHYKEDADLEERRSAARYTQVGSKVLAGLYQSAPLTADELARRMYLDRREVDDSLNEFLADGHVAIFDGHRFALTESGKQRRRQMIEYLSRYQDEQLADINPADLIVATRVLKAFLTGPHQGKPDLHI +>tr|A0A532EZD0|A0A532EZD0_9BACT LPS export ABC transporter ATP-binding protein OS=Nitrospira sp. OX=70125 GN=lptB PE=4 SV=1 +MTQSIHAESEALVGPIAVQQGHCLRATGLVKSFRGRKVVKGVAVEVYAGEVVGLLGPNGAGKTTIFDMMVGLCQPDEGEITFIGESVTNLPMYKRARRGIGYLPQESSVFRRLSVEHNVLAILEMLGYARKERSQRVDALLKELDLIHIRKSMAYALSGGERRRLEITRALAATPSFMLLDEPFAGIDPIAVADIQQIITRLKEKGIGILITDHNVQETLSIVDRAYIINEGLILEAGSPEAIVQSPTARAVYLGEQFKL +>tr|Q08U50|Q08U50_STIAD Putative surface protein OS=Stigmatella aurantiaca (strain DW4/3-1) OX=378806 GN=STIAU_1615 PE=4 SV=1 +MNPAVPAQYTLTYNVTDSAANVAAPVNRTVTVQDTQGPTLVLNGPATAGLECGTPFNDPGATANDLCEGDLSGAVVRTGTLNQGAVGNYTLTYNVADQGGHTAAPVSRTVAVSDTLAPVVTINGPASLAVECGDNGFQDPGAMAEDACAGTLPATPSTEVDPAVPGVVAITYSATDPSGNTGVGNTGRTVTVEDTLPPTLALLGPANQPLECGTPYNDPGATADDQCAGDLTGSIQRTGSINNKQLGAQMVSYTVQDPGGRTAGPVSRTVTVDDSLAPAIAVNGPLDQVFECGSTYVDPGATANDLCATI +>tr|A0A1X0UNC0|A0A1X0UNC0_9NOCA Putative fluoride ion transporter CrcB OS=Rhodococcus sp. 1163 OX=1905289 GN=crcB PE=3 SV=1 +MIAPARPLHLRPRALALVFAGGVIGTAMRYGIEIAIPQVIQGWPVATFSINLLGAFVLGVLLENMARRGADAGVRQQIRLLAGTGFCGAFTTYSTFALEAVLLTRDGHLPIALAYGVSTVFLGALAAWAGIVVGASMHVDRSAR +>tr|A0A3N2GU17|A0A3N2GU17_9PSEU Uncharacterized protein OS=Amycolatopsis thermoflava OX=84480 GN=EDD35_2465 PE=4 SV=1 +MDPRDRADALLARAQSRGAFVVTPDAATSPMDASTTQQIPRNVVKEIDNDDPDTTAVVPSSVIESVQGSLAASKPDTHVNMTPVQPEEEVDGLVPTTKTQTGNSDFARRLEGL +>tr|A0A3P9I8G7|A0A3P9I8G7_ORYLA One cut domain family member OS=Oryzias latipes OX=8090 PE=3 SV=1 +MELTMENLHSVSAHSQAGDLMSSPHARPSQSPSSTPRNLVSHAPSARSAMVSGMASLLEGSGGDYRTDPSGLSGHLHPSISMCETGMSLSNTYTTLTPLQHLPPISTVADKFHHPHSHHHAAAHQRLSAGNVSGSFTLMRDDHRGLTSMSNLYSHYPKEMSGMGHGSLSPLSSGLGSLHNSQQSLSAYGHSAHLSDAKMISPVPGFESHASMLSRSDQEHLARSLGGHGHGMISNLNGMHHHPHSHLHSQANGAVMLGDRERHGHGASQGVSGSNIQAEEINTKEVAQRITAELKRYSIPQAIFAQRILSRSQGTLSDLLRNPKPWSKLKSGRETFRRMWKWLQEPEFQRMSALRLAACKRKEEDRGRERSQVPKKQRLVFTDLQRRTLVAIFRENRRPSKEMQLTISQQLGLELSTVSNFFMNSRRRCPDRWDTEEHGVHGHGPSGNSSASPIQPGISSANTFSKA +>tr|A0A3Q0S8Y1|A0A3Q0S8Y1_AMPCI Translocase of outer mitochondrial membrane 40 homolog (yeast) OS=Amphilophus citrinellus OX=61819 PE=3 SV=1 +MGSVLAAASPSPAPAAAGSGQGVPGLVSVPPGFTMPSVSSVPPASGSDQQTADAQSSLSNPGTYEECHRKCKEVFPLQMEGVRLLVNKGLSNHFQVSHTVTLSTLGDSGYRFGATYVGSKQTGPAESFPVLVGDMDNTGSLNAQVIHQLTTAVRSKIAIQTQQHKFVNWQCDVEYRGEDFTSAVTFGNPDILVGSGILVAHYLQSITPALTLGGELVYHRRPGEEGTVTSLLGRYTGENYVATLTLGGAGAHATYYHKANDQLQVGVEFEASTRMQDTTTSFGYQLDLPKANLLFKGTVDSNWVVGATLEKKLVPLPLTLALGAFLNHRKNKFQCGFGVTIG +>tr|A0A7K3UVX5|A0A7K3UVX5_RHILE DUF21 domain-containing protein OS=Rhizobium leguminosarum OX=384 GN=GR236_14365 PE=3 SV=1 +MAIEGALAFLETYWPEILSITALVLMSAFFSGSETALTAVSRSRIHTLEANGDERAGLVRQLIERRDRLIGALLIGNNLANILSSSIATSLFLGLFGNSGVALATLAMTVILVIFAEVLPKSWAISTPDRFALAIAVPAKLFVTVVGPVSTFVNAIVRQILSLFGINLSRETSMLTAHEELRGAVDLLHREGSVVKADRDRLGGVLDLSELELSDIMVHRTAMRAINADDPPEAVVRAILESPYTRMPLWRGTIDNIIGVVHAKDLLRALAEPNMEPQNLDIVKIAQKPWFVPDSTNLEDQLNAFLRRKQHFAVVVDEYGEVQGIVTLEDILEEIVGDISDEHDIEIQGVRQEADGSVVVDGGVPIRDLNRALDWNLPDEEATTIAGLVIHESMTIPEERQAFTFYGKRFVVMKREKNRITKLRIRPAGEDGAKPA +>tr|A0A6J5FC43|A0A6J5FC43_9BURK GAF domain-containing protein OS=Paraburkholderia humisilvae OX=627669 GN=LMG29542_08208 PE=4 SV=1 +MIGDPILAMTTSAENQLYALDEIALTLAQPCQRTAVYHTVEDVMQRLIGHRLFTLLAVLPGGHRVQRFWSSNETVYPPSGRKCLDSTPWGEVVLKNKKAWLGRNAADIRWAFADHALIASLGLGSVINVPIVVRGQLLGTMNLLHRENHFTVDDVTIAARVAPYLIPAFIEEVKTIEVS +>tr|A0A7C4RW34|A0A7C4RW34_9BACT Adenosylcobinamide kinase OS=Fervidobacterium thailandense OX=1008305 GN=cobU PE=3 SV=1 +MILITGGVKSGKSTFALLMALRYKKRAFLATGVPFDDEMMERIRKHKEERKNLFDTYEEPVDIATILQKIDRHYDVIVLECLTTYLGNLLHYNEDVESRFNILVDVVKTMVSQLIIVTNEVGWGIIPENNLARRYVEILGRWNNELAKIAQEVYLVISGIGVRIK +>tr|A0A221MBY2|A0A221MBY2_9BACI Cysteine desulfurase OS=Virgibacillus necropolis OX=163877 GN=CFK40_08985 PE=3 SV=1 +MNQIYLDHAATTPMATEVIDAMVPVYSEVFGNPSSVHAFGRKARHVLDQARRVFAKSIHADEKEIVLTSGGTEADNLALIGTALANKQKGNHIITTVQEHHAVLHAAEHLEGNGFEVTYLPVYEDGKIAVQDLRNALTDKTIVVSIMTVNNETGIIQPIHEVGELLNDHQAYFHTDAVQAYSLLTIDVKKDYIDLLTVSSHKVNGPKGIGFLYINKSVQVNPLQFGGEQERKQRPGTENVVSVVGFQHAVQLLIEQKEKRRETYTSYKKLFLETLEQAGVNFEINGEQSDAVPSIINISFPGTNVESLLTNFDLSGIAASSGSACTAGSVEPSHVLSKMYGANNDRTTNSIRFSFGLHNKKEDSIEAAERIASIVKRLISLQ +>tr|A0A841Y9U4|A0A841Y9U4_9LIST Alpha/beta hydrolase OS=Listeria booriae OX=1552123 GN=HB847_15185 PE=4 SV=1 +MKKCVTFIALLIFLLAGCSTDKTTEQDMKNLPNLSAQTALILVHGTGGSTDTFDGFSDVFIDDYHTSNERIKLHIGTDGALTYHGIFSKKALHPIVQIGFADSIDASITQQAVWLRLAMEDLQKKYKFAAFDGVGHSNGGLVLSTYAQKYAKTAPTLERLVAIGSPYNDLDQDDNKGDLAFTDVPKATPLLQKYEKNRSKINPDLLVLSIASNIDDGSFSDDIVPVLSAFSSRLIFKNEAKTYLESYYKGEEYDHRTLFANPDIQKKIAWFLYEYPGDKKEISLAKN +>tr|T0PB79|T0PB79_AERSA ABC-type transport system periplasmic substrate-binding protein OS=Aeromonas salmonicida subsp. pectinolytica 34mel OX=1324960 GN=Asalp_31750 PE=3 SV=1 +MIKKLILSTLLLCGLANAAAPASTLDAVLDRGVLRVGFDAGYQPFEMTNKQGQYIGFDVDLAKMVAKEMGVKVEFVNTAWDGIIPALLTDKFDVIMGGMTVTPQRNLRVNFADPYIVVGQTIVLRKDKAGEIKSFSDLNDPKYKIAVKLGTTGEQAVKRLIPKATLLQFETQDDAKLEVINGKVDAFVYDLPYNAIFASQNTGAVVHLDKPFTFEPLAWAIRKGDQDTLNWFNNYLRQIKGDGSYDRLYKKWFESNAWLNQLK +>tr|A0A6C2U970|A0A6C2U970_9BACT Uncharacterized protein OS=Pontiella desulfatans OX=2750659 GN=PDESU_04858 PE=4 SV=1 +MDIKRWISLVAVMAVAGTVQAADPLVYEGFEYDTTTGGIESASLGGGVGLSGAWGSSDAAGSFFNVTSGSFSLGSLTVSSNKLKRTNTGGVEAIERTISASLPSEFWFSVLHETSATTQFGIGGGAFGDGSSGNGNMATGPGFGFTHKGGNLGAAVWPAGSAVSVSVGGTVAKSDNNVLLLVGHVKRNVGGNDTVDLYEVDATLVLPGAPLSTVSQPTAAGSLNTLTISSNRGPGIDEIRVGATYNDVVPASAAFTFNLTPDDTQDLLADYPAVVVSNSILTEYANSSSGVEITALNVMSVSNAITAITATPFTLSTPSPAITALDFAFDASAIKAITSATEAFTTTGTVDIVYKNLDDNVLQTNTVALKGTFSNPPFQFSSDSSLGLTLVAPATLVSNDIAVSYVEGRPGYTNVVISEVNILDEQHPGAFSANNPGAIQTTDVITVTFDDSFVGLGNKQSSTCTVEVVYGEAGSSIDYTNTVSVAAFNYDLSTGSVIQQVFGNAVNLNGPLGGGTLPMNNFEAFTNNWNHNGNFTQETSAGSITLSSSGNTRSAYNLVEANTAGSDNFGAQDTHILTNGLYRYEFDYEVLNTDGANVIWSFNAYGLIDQQLFSTSSNPDKVVLDIATGASGGVDVDIQNDGNGYYSEHGDGILAGTGDVARTTGYVYLNVKDNQDALFVMHRSGKCDVRLYDLVLTRVGDYELPVNSTNAVLAAQFEDSAVTNSIVVVGATETNTNGVNNTWRGTGLSHVDRKLKSNAADTAVRATGTIIHRNTAGYDDVGLQDTIALTEGTYELSLDVQVDGTFPSNDSIARVEFWALDQDTSGTNNYVKWDHAPGTGEYLKTNGNAKVTLLGSKTYTNTVTETLVLSDLNVQADQDVAIVFYHRYGPDFFIDNVELLRTGDLPLEGYSLWAEDNGLTAGVNDGLEDDAENGGLGDGLNNLMEYALGGDPLVDDAATVSPQTSEAGGFFYHVYNERTDDPSLTFIVDLNGNLTIPGGWGSAGLEAEERGLDDGEFQSVTNSTDMLEAAEFIRLQVEKD +>tr|A0A2P9ADD5|A0A2P9ADD5_9HYPH Uncharacterized protein OS=Mesorhizobium delmotii OX=1631247 GN=BQ8482_111084 PE=4 SV=1 +MHRFCRAGKAAGVDDRDEGLQLIEIEWRFHRSHPSLVLMLKIRNIRWINQSNDGKFTTVHMTACESGPERPLFPAPIARLRPFEYEGD +>tr|A0A3G3A397|A0A3G3A397_9HYME Cytochrome c oxidase subunit 1 (Fragment) OS=Ceraphronidae sp. BIOUG12096-H04 OX=2463984 GN=COI PE=3 SV=1 +FLMIFFLVMPIMLGGFGNWLTPIMIGAPDLAFPRMNNMSMWLLPPSLMMLLMSMMTNTGVGAGWTLYPPLTLTPYHDGMSMDLTIYSLHIAGISSIMGSINFLVTIYKMKPSHQTLTSLPLFCWSIMITSLLLLLSLPVLAGAVTMLLTDRNLNTSFF +>tr|A0A7C1QH02|A0A7C1QH02_PSEAS AraC family transcriptional regulator OS=Pseudoalteromonas sp. OX=53249 GN=ENH79_16645 PE=4 SV=1 +MDVLSSVLSHFSLNANVFFSGNMCGTSDFSDDQGVGHLHLLRSGTLKVRSNSGFEVVLSTPSVIFFPHSTGHCLFSDKSDGADLVCAQISYQSGGHSPLLQALPFCLNYELTGNGLLEQSAFWIFEEAFKDASGKDLIIDRLCDVFLISVLRKVLKEGTIKSGMMAGLAHPQLAKVLIKIHQTPEQSWSLSAMAEECCMSRSKFADTFKRVIEQTPADYLADWRLSVAKKLILKNQNMDLVANQVGYENGSALARVFRKKTGQAPKEWLLSQQ +>tr|A0A511X4K5|A0A511X4K5_9BACI Uncharacterized protein OS=Halolactibacillus alkaliphilus OX=442899 GN=HAL01_23460 PE=4 SV=1 +MELMLEQFMSLNLLNQFWITLFLIIPMVLIARTVVAGTRYSPILIIVIFGLSMGYILVETGVAEPGIGAFPMVNMVASATIIALVVSFFVGGQELRKIFSNKPLTNEEMVIPSQEEAVLGTTRTQIVMIIRSFFLLIGIESSSRVLIGGSTSALSNVYPLIAYIGIVGAIIFIDNRATITNKSLYIRKGIIEIIAIIGILYLSSLIAGGIESLIALPQIFFAMIISAALGALLYRWSFGPTIKALLFAGIPVVLAGNFMVGGSRIGEAFTIDGVNSLILYGFFGQLFFMFGGISLIMYFAKNNHVRNLAPGMAGALSHSGLTGACTAGDLGKEAAQRAPIMINIPFFGHIFVFSVLAISAERGELWTLPSIAIVAIGVLFTIISLKQLKKANNESNKEVKALMQFSFGWQLVAVFGGLLLLSFSQIPFLFTGMAQASAISHFGLFAAVQGGMFGAESASLIPFIFSMPFLVHPVVFFMFGKAMKDDGLMPVKTVHAISFIGLIGVVVSLFIV +>tr|A0A7Z9M5B3|A0A7Z9M5B3_9CHLR Alpha/beta hydrolase OS=Dehalococcoidia bacterium OX=2026734 GN=EYN92_08525 PE=4 SV=1 +MPFYERGPVSIFYEEVGSGFPLMIIPGGGLNSSIASLDTSVPFNPMNTYKNDFRCIAADLRNADSGQSSGPLEIDRPWDAYSDDQLGLMDHLGIQEFLVMGFCIGGPMIHNLLRLAPGRIPAAALMQPSGFTSEHPDIFYQTNTERWGPPLCEMAPDITMDKVHDFLTNMYTNRADFVFTVSRDFVRSLQTPLLIAPDNIPAHPYETAMEVAELAPNAETTIFPWKDTPKNIDEAVKHARRFLKKHEPDISP +>tr|A0A7X7DHL1|A0A7X7DHL1_9BACT Uncharacterized protein OS=Lentisphaerae bacterium OX=1932692 GN=GX634_11015 PE=4 SV=1 +MNPFPARTRPVRLAMVPLMVLFLGSAIRVGAWESLTFDLPSGGRESLWRDELARHWHGQTEKRIEGGRIDVLTGEYAIEVEFPHKWHEGLGQALHYANATDRQGVLAIIAYARGEAYLHGKSRRRLELIEEQCSANNIKMLVLFPNRPEEFIRHVAPIWIE +>tr|A0A807R958|A0A807R958_PSEME 23S rRNA pseudouridylate synthase OS=Pseudomonas mendocina OX=300 GN=PSMEN_15330 PE=4 SV=1 +MTTPASPTSGVQLIEVAPDFAGQRIDNFLRTQLKGVPKTLIYRILRKGEVRVNKGRIKPEYKLQAGDIVRVPPLRLAERDEPEPVAQGLLERLEAAIVYEDKALIVLNKPAGIAVHGGSGLNYGVIEAFRQLRPDAKDLELVHRLDRDTSGLLMIAKKRSMLRHLHEALRGDGVDKRYMALVRGHWATAKKQVNAPLQKSNLRSGERMVEVDGEGKEALTLFRVLRRFGDFATLVEAKPVTGRTHQIRVHAKHAGHCIAGDSKYGDDDFTREIRELGGKRLFLHAYELHVPLPEGGVLKLEAPVDEMWAKTLERLSA +>tr|A0A2T6KQJ4|A0A2T6KQJ4_9RHOB DNA repair protein RecN OS=Yoonia sediminilitoris OX=1286148 GN=C8N45_101426 PE=3 SV=1 +MLRGLDIRDMLIIDRLELTFQPGLNVLTGETGAGKSILLDCLGFVLGWRGRAELVRQGAEQGEVTAWFDLPAGHAAFAVLADAGISAEDELILRRVNTKDGRKTAWINDRRVSGEVLRALSETLVELHGQHDDRGLLNARGHRQMLDTYAQLDDDIAEVRSAWRSLSRARKRLSEAEALVAEAKAEEDFLRHAVAELDKIAPEPGEEATLDTQRRLMQAAERIIQDIAKAGEALGLNGAEGMVSDASRWLVGVADKAEGQLDPTLAALEQVMASLDEAQQGVSACLDALSFNPHELEEVEERLFAIRGLARKHGVLADDLSDFADGLRARLAVLDDSAADLAALQASVDESAADFGTKSDALHRKRVSAAAALDAAMSAELAPLKMERAIFATRITEGTPGPEGADDVAFTVATNPGAPAGPLNKIASGGELSRFLLALKVCLTQADAGLTMIFDEIDRGVGGATADAVGRRLAQLAQEGQILVVTHSPQVAALGGHHWRVEKRQDAQSTTSTVVPLDASARVDEIARMLSGDKITDAARHAARALIEA +>tr|A0A2L0BX41|A0A2L0BX41_9CUCU Protein wntless (Fragment) OS=Cyclotoma sp. CSR020 OX=2055377 GN=wls PE=3 SV=1 +MALKTFFFPLVVGVIAWFWRRVHLVSRVPALLEYMLLSLGCTLAFLNCPIEYLTLWFDMPYMLLVSDIRQGVFYAMLLSFWLVFAGEHMLIQDNGEKNGIKLYWKHLSTIIIGCASLLVFDLCERGVQLVNPFYSIWITPIGSNLALTFIILAGISASIYFIFLCYMIWRVFKNISIKRSVLPSMSQARRLHYEGIIYRFNFLMMATVICAAITVIGFILSQVAEGQNKWDENMELELSSILH +>tr|A0A1J6PS54|A0A1J6PS54_CAMJU Uncharacterized protein (Fragment) OS=Campylobacter jejuni OX=197 GN=A8118_08150 PE=4 SV=1 +MFGAKKNNTEIIEQLEKKCNGLEDILRSIGNTMAVIEFTTDGVILEANQNFLTTMKYSLSEI +>tr|A0A4P8GRK2|A0A4P8GRK2_9MICC L-2-hydroxyglutarate oxidase OS=Arthrobacter sp. 24S4-2 OX=2575374 GN=lhgO PE=4 SV=1 +MVEDIGIIGGGIVGIAIARALSSRNLANVTVLEKEQRVAMHQTGHNSGVVHAGLYYAPGSLKAMLCQRGRELTRDYCREKDLPYRELGKLVVALTDDELPALADIERRSVANRVPGLRRLGAGALREIEPHVAGVAALHSPQTAVVDFVAITEALADDVRSSGGQILFGHEAIAISTGQGKVRVTTGRADLVFDRLIVCAGLQSDVVAGLVGASPAPRILPFRGEYWGLAAAKQHFVKGMIYPVPDPRFPFLGVHFTRGVYDTIHVGPNAVPALAREGYGWNRVSFKDTAASVMWPGARALAKQHWRMGAKEIAASLIKPLYYRQAHRFIPELQIGDLTAKTASGVRAQAWSLDGSLLDDFAIDQVGPVTLLRNAPSPAATSAMAIADHLLEHFIHLPK +>tr|I0SJ56|I0SJ56_STRMT Bacterial sugar transferase OS=Streptococcus mitis SK616 OX=1095735 GN=HMPREF1045_0997 PE=3 SV=1 +MYSILKRLGDISISLIAITLFCPVFILIAIAIKLDSEGPVIFKQKRFGIHKKTFYVFKFRTMKVESPKYVATRDLQNPEQWITRVGAFLRKTSLDELPQLCNILVGDMSIVGPRPVVVSERDVIETREKYGANDVLPGLTGWAQINGRDNLSTDIKAKLDGYYVKNRSLITDIKCIVRTIPYVLKRKGIVEGSKRES +>tr|A0A1F3KL50|A0A1F3KL50_9BACT Peptidase_S24 domain-containing protein OS=Bacteroidetes bacterium GWF2_43_11 OX=1797352 GN=A2X09_17370 PE=3 SV=1 +MAKRLDLKNALQTIKDFYYRNQRIPSLSETAGIFNYSSRNTALYLLNKLVETGYMTRGTKGRLLTTPKFHDKTKLLGSISAGFPAPEEEELRQSLSLDEFLIRKPSATYMLEVSGDSMIGAGILPKDFVLVEKGRTPAPGDIVIAQVDGEWTMKYYRMENGKAYLQAANAKYPDIYAKEELVIAGVVISCVRNYA +>tr|A0A1A0T4H8|A0A1A0T4H8_MYCFO ABC transporter permease OS=Mycolicibacterium fortuitum OX=1766 GN=A5751_24895 PE=3 SV=1 +MTVGLAVRTHAASRPSNTRPSRRRSVVARLGVLGWTLAGMGITAALWSVIVATGRFPRQLFPSVPEILAAGQTLWTEGLLAADVSASLSRAAVGFAIGAVAGIAVAVLTATTRAGRSLLQPVLRVFSPIPTIGLVPLAILWFGLGENSKILVIALGVFVPVWINSHSGLASTPVDYLKAARCLGAGRWQTLSRVVLPEAAPDIASGLRVGAAMAFVLIVVAEMTGTTMGIGYRISQAQLFSQADRLIFCLIVLGIIGALCDQLVASVTSPFTRWAHEER +>tr|A0A417V5I4|A0A417V5I4_9FIRM Deacetylase OS=Lachnospiraceae bacterium OM02-26 OX=2292908 GN=DXB19_04045 PE=4 SV=1 +MLRKITILILLILTVAQFTSSDSIQSAREFIQNNIYVWSETQEEKLPIYCVDTQKKQIALTFDTAWGNEDIQQILRILKQENVKATFFFCGDWISKYPTDIKTIYEEGHDIASHGDHHKYMTKLTDKQQQEEIQGVTQKIQGLLGIKIDLFRAPYGDYNESVVRNARKMNYYIIQWNVDSLDWQEPTKEQLIEKVCGHKNLSPGSIILMHTGTKCTKQALKQIIRNIKAKGYEFVSVSRLIYRSNYRIDPTGKQMKL +>tr|A0A1H1FUZ1|A0A1H1FUZ1_9HYPH Uncharacterized protein OS=Rhizobiales bacterium GAS113 OX=1884352 GN=SAMN05519103_00535 PE=4 SV=1 +MAGGQTPGSFSKNFAWGHTGLRKLHESIRLGFADVLEPVSRKLWRSQSQIDNPGLDLIPVNFFLHNAAGQLTVDELVYQAVSQPYSLRFDRLALFAFNLSQVGRPPLKGPGRPAAWANEFVKEALWQNGVWRRSALAKPAMGAFLKTHIKGQSYWKCQTNYRRLFGLCGYLTGTSPTVNSGAADCQSAWKKDPVSAPKRDPSRRRARRIDPARGAGRGCAARRDRCPVGRSVWVQARFLKRQLSLPVSTISQ +>tr|A0A0N0MN32|A0A0N0MN32_9ACTN Major facilitator superfamily MFS_1 OS=Actinobacteria bacterium OK006 OX=1592326 GN=OK006_1213 PE=4 SV=1 +MRTNACPTGSTTRYAAARRPSDTVTTVADQERPGTAAAPTAEHGRLGLALILVAAFMVVLDFSIVNVALSSIQRELGVSAATVQWVVTGYAIAFGGLLILGGRAGDLYGRRRLFLAGIAVFTAASLAGGLARDPVLLIASRVVQGSGAAMVAPAALSLITTGFPEGPRRTRALGLYGATASVGFVAGQVLGGVLVEFLTWRSVFLVNVPVGLAALLLAPRTLRESRSPRTGRHLDASGALLITLAVGALVFAVSRGGGTGIGSADVLVPLALSALAAAAFIANEHHHADPLMQPALLRLHGLRSAGVLMLLLGLWNGGEMLVLSVYLQQVLHMSPLAAGLTIAPQGVFGLATGLLGARLARHLGIQKVLVATGAAATIGFAALTRLPGSDGSHLPLAAVTLVGCGTAGMAFGSMVTASAGVADRDQGLVGGVINTSRQLGAAIGAALLPAVADAVDRTRHASTAVGDRAAMLAGLAAAALAPLVAMNAWRRSRHDGVARCAPRA +>tr|A0A2A7X0U8|A0A2A7X0U8_9BACI Helix-turn-helix domain-containing protein OS=Bacillus sp. AFS002410 OX=2033481 GN=CN692_02510 PE=4 SV=1 +MTELGKFLKEAREAKGLSIDDVQELTKIQKRYLEAIEEGNYEILPGQFYVRAFIRQYAETIGVDVSGFLSDKPVVEDTVEANTITEEVKHEEIPSRASKLKEPLNNVKSSRVMDYLPRILIAILIMGICIAIYMMLPSKNDEKSADTNQSQTNSNSEIEKPKNNALDQVKNDNKKQTEKAKNDETKQEPTQKITVDAAQGKRTSISLSGTDVFKLEVVANGESYVDLKNASGKMFYSGILKQGQTQNYDLTEENEVTVNIGASNNVELRINDEVFKYPVSPTNAVHQKITIKNLKMNQ +>tr|G3HRZ4|G3HRZ4_CRIGR Differentially expressed in FDCP 6 OS=Cricetulus griseus OX=10029 GN=I79_013619 PE=4 SV=1 +MELKKEEAARQRQRIAELEEMQERLQEALQLEVKARRDEEAVRLAQTRLLEEEEDKLRQLMHLKEEQERYIERAQQEKQELQQEMALQSRSLQHAQLQLEEVRQHRQRAGEDVEAAQRKLRQASTNVKHWNVQMNRLMHPIEPGDKRPTTSSSFTGFQPSPLARRDSSLKRLTHWGSQGSRTLAANSSERKSLNGGDETPILASASQEDKLDPAPEN +>tr|A0A4D9CK05|A0A4D9CK05_MASLA Uncharacterized protein OS=Mastigocladus laminosus UU774 OX=1594576 GN=BLD44_003515 PE=4 SV=1 +MAKVNYKLTGKYLPPQIFILGICFVPGVTEVSSEQLTEIRRFIKSDRLLQHYLEQKILIIQD +>tr|A0A1H9PEC9|A0A1H9PEC9_9HYPH Pseudouridine-5'-phosphate glycosidase OS=Rhizobium sp. NFR03 OX=1566263 GN=psuG PE=3 SV=1 +MTRPISHDLPIAYSAEVAAAKARGSAIVALESTIITHGMPYPGNLDMARSVEAIIRDQGAVPATVAVIDGTLHIGLDAELLEALAQTRGAMKVSRADLAFAIAERRTGATTVAATMIAAARAGIRVFATGGIGGVHRKAEETFDISADLEELACTGVIVVCAGAKAILDVPKTLEVLETRGVPVVTYDSEIFPAFWSRDSGLKSPLMLNSPAAIANFQRMRDRLGIDGGMLIANPVPEESEIPRDEMEIYIARALDNADRDKIIGKAVTPYLLQSIFELTDGRSLETNIALVENNARLAAEIAVALM +>tr|A0A151WTB8|A0A151WTB8_9HYME RNase H type-1 domain-containing protein OS=Trachymyrmex zeteki OX=64791 GN=ALC60_09730 PE=4 SV=1 +MLITPALPAYQNSYYSTCTNVSYLSLPPNILKNLDTIPQQNIQPIFEDTFQRVLARAIVFYTDGSKVDDGTYVGSAVYSPQLDLHFMFKLSSYASVFSSEAWAIYNALLFALHNDFSCIVIVSDSKSVLDSLAGFRNRTNNYIISYIRALIEEAKFCNTQVSFIWVPSHCGIQGNEIADQLAKKAIREGAESNFMTPYSDLFSIPRMRLSKAFDSYIERTSRITGEYYFKNCYSHNNKPWFHDLRFSRIMITTMNRLRSNHFNLNHSLFRKNLIDNPSCPCGAPSQDLAHVIFFCPLTESHAAPIRLALNDLDQDSSQDPITVIIRALCNPSAKICRLFVSFGLACDRLF +>tr|A0A2D1IHR8|A0A2D1IHR8_9ACTN Uncharacterized protein OS=Micromonospora sp. WMMA2032 OX=2039870 GN=CO540_27970 PE=4 SV=1 +MSGGGPRRGRRDNGLDAAEYAVAGDVDPRVGEHLLDVLAAGGIAAYLQPSADLNPVTRTTTVPARPVDRLYVDRSHLTTARDYLTQLADEGSDDPPRPDEPDIEAEWAKIVAGFHTTPTAGSHPWPAAEDVDDPVPPAGATAGRAEEPAGPTATDVRRLPYAADVSGVSLGRDRSDEPSLLDGLDTFGADLPGDAEEEHYTPPPPPPLPRFSKYAVLGVLCVVLGFLLFLSPTVVSLVDPAVVTLLGFTGILAGFVMLVWRLRPGDRDEDDPDNGAVV +>tr|A0A3S0HSP6|A0A3S0HSP6_9GAMM Phosphoribosylamine--glycine ligase OS=Halomonas nitroreducens OX=447425 GN=purD PE=3 SV=1 +MKVLIIGGGGREHALAWKVAQSPRVETVFVAPGNAGTAREPGLENVAIGVDDLDGLVAFARDEDVALTIVGPEAPLVAGVVDRFREAGLAIFGPTAGAAQLEGSKAFTKDFLARHAIPSAEYRTFVAVEPALAYLAEKGAPIVIKADGLAAGKGVIVAETVEEAEAAVRDMLEANAFGDAGARVVIEEFLEGEEASFIVMVDGETVLSLATSQDHKRAFDGDSGPNTGGMGAYSPAPVVSETVFERIMARVIRPTVQGMAEEGHPYTGFLYAGLMIDTEGNPKVIEYNCRFGDPETQPILLRLTSDLAELCLAGARGELAGHGCDWDERAALGVVMAAGGYPGSYRKGDAIQGLEAAEATGCKVFHAGTAEGESGEVVTAGGRVLCVTALGEGVSAARDLAYRGVAEIHWPEALYRRDIAHRAIARERGER +>tr|A7B7B1|A7B7B1_RUMGV DNA binding domain, excisionase family OS=Ruminococcus gnavus (strain ATCC 29149 / VPI C7-9) OX=411470 GN=RUMGNA_03477 PE=4 SV=1 +MNKQYVAICEKVALTIEEAAEYSNIGQNRISSLLKEPRCPFVLYVGTKKLVKRKEFEKFISESVEI +>tr|A0A059AXC2|A0A059AXC2_EUCGR Uncharacterized protein OS=Eucalyptus grandis OX=71139 GN=EUGRSUZ_H01175 PE=3 SV=1 +MVMKVHGSVFSAPTMRVLIALHEKDLEFEFVFVDLRAGEHKKEHFLALNLSLHHRPPPPFGQVPAFEDGDLKLLVEAHQFDPAASKLHWELVYKSKIGMATDAAVVKDADKEANLAKVLDIYEARLSQSKYLSCDCFTLADLHHLSALTSLMGTLVKKLLDARPKVSAWVADIVTPPALAKVLTMRNQQ +>tr|A0A2E3M894|A0A2E3M894_9RICK Diguanylate phosphodiesterase OS=Rickettsiales bacterium OX=2026788 GN=CMP19_12800 PE=4 SV=1 +MSQHHNSLATLPNRFAFIDTVSKCGVLHPSLSLMLVDVVRFSDVTTSLGINIGDRFLLEIANRIQSLFGGDIRLGRISGDVFGIAFLGTRSSGQMRDMFERLVEHFKTPMHHDGHAFIADFNVGVVTSEGQTFEITAFVSRGEAALKQAKENKYENFCLYNMQDKTDTGRSLALKADLKRALSQNELELYYQPKVNLQTLEVIGAECLLRWNHPLDGVLFPGPLIEAAESYNMMNELGYWTLEQAFRSLVDFDFHRLSLTLSVNISPTQLYDNHLIPSLKMLSKSYAMPLTRIELELTEDVALSNSLMVKRQLDELRALGVAISVDDFGKGYSNLAYIRDLDLSALKIDKTFVIELANHPVNRAIIEAAKIIGKAKNCDVIAEGVETIAQLHILREVGVTIGQGYLFSKAIPLNDFISLAQQEIIVGNSPLRA +>tr|A0A4Z1G3Z5|A0A4Z1G3Z5_9HELO Methyltransf_25 domain-containing protein OS=Botrytis hyacinthi OX=278943 GN=BHYA_0421g00010 PE=4 SV=1 +MATVAAGSQAGHDTFDALNIEYEKAYRDNPFKIAAIKKAITLLDPGSKVLDVGCGTGVPVSELLAEAGLEVVGFDIAPKMVEFAQKRVKGTFSVSDMVQFQVEDTFSGVFMIFAHLQLSYAAVHAAVYKYVSALKPGGVFVLGQMPSDSYVKGEGNAAYDETRTYVEDYDAPFMGEPLPTFMMSEQGQRNFLTSMGLEIVSETIDQFQPDNEKCEPEMQQYIIARRPVDGTIVEPQPLPKNK +>tr|A0A526YNJ2|A0A526YNJ2_9HYPH 3-isopropylmalate dehydratase small subunit (Fragment) OS=Mesorhizobium sp. OX=1871066 GN=E5Y60_26890 PE=4 SV=1 +MEKFTKLTGVAAPMPIVNVDTDMIIPKDYLNTIKRTGLGSG +>tr|A0A0A1TZ67|A0A0A1TZ67_ENTIV Uncharacterized protein OS=Entamoeba invadens IP1 OX=370355 GN=EIN_043770 PE=4 SV=1 +MVSRLEMVFLANVVLKLTNYIDIHNFILVSHNCYESVKSLKTTPKLSSAIDLSWFLSHFYLDTVDFDEVQIPVEKYISSVQCIRNPNFLEDAIAGKLTQSYADTIFPKVVSLSLLYPVYEKDDPCNNLIISNSKKFMSLRRLSGDLEQISLFLKNLTDNGEAIGTKYPNLIVIDSYLESTIVLNETTLNLLRSVELYLKKSYNEKVCYVVAEVPEDRSLIDFVKKGKFYCKNAGSVMCNKDDIFGVCGDFELSGEVERKGEDLKILNERIGANLDAASAFSLTHKYMSNTEYSLELPDSVREYNICVSSLPELVDANYFKYPINFNKIEVLKLVSVSNVSLEVTNALNCLELKSCDFCVFTNDEDSLIAIEEIFVEDSKHIRFLTHSEAIVENVHLFSDTEIDFNWSIKNTENVEIVESRNVGFVGGIFSASCIFHVERSTDTVIKNGEQIASYIKEVNVANFVIGNTGETKSCVLANKHFVCHSVDYLINNHFSCYNEVTENVRSFRPERIVLFTINNFNETSAKVPYFEVKEKGCMLSLGLYDTKGSALTNSTYPIHVGWENGSLGIHTDDWCLYGLDIGGEGENVNVAFDKFESCECVIGCGYNNTRKEVFFTLNGKIVKKIEIPWKNIGAAFAVQRLGTLFVNTGDQKFTFDIENYK +>tr|A0A7C0YEA6|A0A7C0YEA6_9FIRM Uncharacterized protein OS=Firmicutes bacterium OX=1879010 GN=ENF61_00215 PE=4 SV=1 +MKHKKEEEMVRRIKMFLMLLLGLGIFLAPLTFHVQDHRKGNGHLVKLDCFCGGDECGICIIPN +>tr|A0A2Z6P333|A0A2Z6P333_TRISU TFIIIC_delta domain-containing protein OS=Trifolium subterraneum OX=3900 GN=TSUD_213440 PE=4 SV=1 +MNSPSPLQSAMLMGSPCFPNAISWSQDNLIAVASGNIVTILRPDLPNGPRGLIKVLPREPLIVGFVHRKDVVSGCLMPTSLYRDDKPVVQSISWSPLGMAANSGCLLAVCTSEGHVKVYRPPFCDFCADWIEVVDITERLYEYLQYTEFKDAGVPSSDFSEVPRIRPCLQKNALGQADSITPNDELLENVPDNQLSPLISADEYASRSAMLYSLVVSWSPLLRVASEFSPDPNTSASVSLLAVGGKSGKVSFWIFYQPDCYTIEESKTPTAVKFVGFLQAHNSWITTMSWLLFSFDSSNPLIILATGSSDGSVKVWLGDNDKLLKSSAVDQTSFSLLKEVITVNAVPVSVLSVTVHVQYPSKMLLAIGKGSGSIEIWLCDIPSREFDKLGSYDAHYYVVTGLAWAFGGRFLCSSSQDNGLRGWILHERRLEEMTTFSEMPRSNDSTCPSRDAYDSCFGVAVSPGNLVVATVHCFDVVKLNRMYEGRILRAAIEYLWIGGLQVDVWLKSPSPCYIEELPSFPEKELTYWAANIIWSLNQYQCLDKPLVFWDIIAALLAFKDNNSKYVEYLVIKWLSLSYLGSRTNLPPEEVLSRVISRLSDVPSRLLHLLNIMCRRVMLAQLDADQITTINSKGQNLEGVCPVIEEKMTKWIEILLGSERELRERHVGFSFSAVKTTTSHLEETPSQPGRWYPVGLAQMEQWVALNQEQIRDQLKLIATKVTHGKRFKTKRCSAVEPCSYCSAPVPFESPEFGFCQSKNRSNGNVKPHKLSRCAVCMEVCPSSPLWFCVCCHRNVFRLAPEPLFRMPSCCLDSDSSNRTSSEAVSSKPLCPFCGILLQRKQPDFLLSPAPV +>tr|A5E9B7|A5E9B7_BRASB Hydrogenase maturation factor HypA OS=Bradyrhizobium sp. (strain BTAi1 / ATCC BAA-1182) OX=288000 GN=hypA PE=3 SV=1 +MHELGITRNIVKIVEEAAKGRRVKRVTLDVGQFSGVMPDAILFCFDIVAKGTLLDGALLDIQKIAGLARCRSCGEAFKTTSLYQACACGSRAIDRLAGEELKIREMEIEEAA +>tr|A0A0J0YQQ3|A0A0J0YQQ3_9NEIS Probable allantoicase OS=Neisseria arctica OX=1470200 GN=alc PE=3 SV=1 +MELPDFATRFVNLASADFGAEVLSCSDEWFAAANRMLQTAPPVFVVGKFDDHGKWMDGWETRRKRYEGYDHAIVKLGLPGVIKGVDIDTSHFTGNFPPAASLDACRCTGVPDESTEWVTLVEAVSLQGDSHRFVEVDDEREWTHVRLNTYPDGGIARLRVYGLPKVDWDALPKDEVYETSAVENGGRIVAVSNAHYGVPFRLNMPGRGINMGDGWETARRRVPGNEWCIIELGTKTLIEKIEVDTAHFKGNYPDTVSIQAADVTFGTDESLVTQSMFWQTLLPQTKTEMDKQHFYTQADFNDLGAVTHIKLNIHPDGGVSRLRVWGKPVR +>tr|A0A4S2D9L7|A0A4S2D9L7_9MICO Glyoxalase OS=Microbacterium laevaniformans OX=36807 GN=E5344_04275 PE=4 SV=1 +MTSIFVNIPTNDLERSVAFYRALGCAINPNFTDENAACVVWSDDIFFMVLRREFFATFTEKPVGEPREWAQASLSFSRGSRADVDAIVEAGLAAGGTEPHPAQDYGFMYSRDLDDPDGNSLGFLYMDPVAAEQGPPAEAS +>tr|A0A2R2WQG2|A0A2R2WQG2_XANCI Uncharacterized protein OS=Xanthomonas citri pv. aurantifolii OX=76802 GN=TP45_21175 PE=4 SV=1 +MSLLVNAYSTLRTPLWPDFLPQAAVQHRDYADPALVDHLHGFVGYVNQAGDGQMTQSRYHLMRHVQRVRQHFSFQVDDADFGALAQWAEQANAVCFLADGSVRDPHGRVLISQGEPAIDDDAQVPYPPDALQRRAQQSSLLTAQGIRVPPSLPPVPGEAEARVRDAAVVSRRMLALFAVALRAEILATGDTPPSLDEVETRLPGVAAALSPQERAFFAQAAPDAQALANFGWRYEALAAQRALDNAQAAERTTLARRPLPELLDTLDRHLRLHWAVRQAGRSGQPLPAGIVPGVVYERHYALNWLLHFEDAEWDEVETPT +>tr|A0A1M3MBX0|A0A1M3MBX0_9BACT Tryptophan synthase alpha chain OS=Paludibacter sp. 47-17 OX=1895899 GN=trpA PE=3 SV=1 +MNRINQLFKNKPSGIMSVYFTAGYPQLDDTLPILDALQANGVDLVEIGIPFSDPMADGVVIQESGHQALQNGMNLRMLFQQLTGMRSSVTIPLVMMGYLNPILQFGFHDFCRECRRVGVDGMIIPDLPMDDYLSEYKAIAEAFGLKFIFLITPETSDERIRIIDQQTDGFIYMVSSAAVTGTQQSFDSREEYFRRIESMKLKNPRLIGFGVSNKATFEMVNRYSSGAIVGSAFIKSLQSSCSVSEAVQALIQQLRS +>tr|A0A418ESL0|A0A418ESL0_9STRA Uncharacterized protein (Fragment) OS=Aphanomyces astaci OX=112090 GN=DYB26_008272 PE=4 SV=1 +MTTTRASSIAAAASASPTLATTPTTHDVNDDMEEGAPTPIADAVPTHDANDTLTPGTAPTATLGDDDMTAAAAHRLEEDFPELDGSKATTPPPVPATNPWNWAATTGADMSKPRADDIGFHPATDAQLATLLQLQEQGTWSYDAVLALESSPRREAVGHLIMRPGVSTAKVSENRLFQA +>tr|A0A7X8UWW0|A0A7X8UWW0_9BACT Methyl-accepting chemotaxis protein OS=Phycisphaerales bacterium OX=2052180 GN=GXY44_13280 PE=4 SV=1 +MSLKAKLFSSNMILAIVPVVLVSIIVHRTVRDGFRVSAAEAEAGLTTTIQTGREALIASGMTDLRHTAEHVYAMCAAQQEVLQQKVGYDLNVARDLLTQGGGITLMDEEIRWEAVNQFNRQTVSVSLPKMCVGTEWLGQNQEAGTTSPIVDRAQQLVGGTCTIFQRMNPEGDMLRVCTNVMGADGKRAIGTFIPARHPDGQVNAVVEAVRNGKPYLGRAFVVNAQYVTAYEPITDATGQVIGMLYVGVKEESAESLRRAIMSIKVGETGYVYVLNAKGATRGHYVISSQGQRDGEDLWMSKDADGHLFIQDICAKAITLKDNETVMVRYPWQNPGEPRPREKVVTLAYFAPWDWVIGVGSYEDEFFETVKAMEAEGAETLASLQEAGALAIGTVQKWSIGVGLAALVLSFFVAWFVSQGMSRALRRIIADLNEGANQVNAAADQVAGSSQHLAAGASEQASSLEETSSALEEMAAMTRTNASNAQQANGLADQARTAANQGDQTMEQLNQAMTGINDSSQKISKIIKVIEEIAFQTNLLALNAAVEAARAGEHGKGFAVVADEVRNLAQRSAQAAQETTQLIEDAVDKSHNGTQVATQAGQALAAIVKNVDAVTRLINDIAQASSEQAQGVEQVNMAISQMDKVTQQNAAGAEQSAAAAEELSSQSKVLKETVGNLVTLVEGRGAQIE +>tr|A0A258R204|A0A258R204_9PROT Thymidylate kinase OS=Hydrogenophilales bacterium 28-61-11 OX=1970529 GN=tmk PE=3 SV=1 +MNMTGKFITLDGVDGAGKSTHIAFVADWLRRQGREVIVTREPGGTPLGETLRELLLHRDMDADTELLLMFAARQEHLAQLILPALARGAWVLSDRFTDASYAYQCGGRGIAAERVAALEAWVQRGFSPDLTLLFDVPPEVAEARRSAARAADRFEREAELFYNRVRQAYLDRAQADPQRIRVLDARHTIAELQAEITRLLQELA +>tr|A0A6D1WBS5|A0A6D1WBS5_9PSED Arabinose 5-phosphate isomerase OS=Pseudomonas sp. JMN1 OX=2518650 GN=EXW70_13605 PE=3 SV=1 +MSQSSDLIQSAQRTIRLELEAVEGLLAHIDADFVRACEMILASKGRVVVVGMGKSGHVGNKIAATLASTGTTAFFVHPAEASHGDMGMITKDDIILALSNSGTTNEIVTLLPLIKRLGIQMISITGNPESTLAKAAEVNLNVHVAHEACPLNLAPTSSTTAALVMGDALAVALLEARGFTAEDFAFSHPGGALGRRLLLKVENVMHAGDELPHVQRGTLLKDALMEMTRKGLGMTVILETDGRLAGVFTDGDLRRTLDRTIDIHTATIDAVMTPHGKTARPEMLAAEALKIMEDHKIGALVVVDSDDHPIGALNMHDLLRAGVM +>tr|A0A2L2WP68|A0A2L2WP68_9BACT Ribosomal RNA small subunit methyltransferase E OS=Prevotella sp. MGM1 OX=2033405 GN=PvtlMGM1_1921 PE=3 SV=1 +MKETRFFYVPNASISEELPEEEALHALRVLRLNVGDEIVLMDGCGKYYNAEVTFASNKRCVYKILEEHPQKCQWARHYHIAIAPTKMMERMEWMVEKATEIGIDEFSFLNCKFSERRIIKLPRIDKIVISAIKQSHKAWKPQVNDMIAFKQFISTPRAGLKFIAHCYTEIPRKYFFDELKTQGQMDDVTVLIGPEGDFSIEEVRLAIDKGYVPVHLGESRFRTETAAIAALMMMQLSDKLNGK +>tr|A0A663BED7|A0A663BED7_9ENTR Crossover junction endodeoxyribonuclease RuvC OS=Klebsiella quasipneumoniae subsp. similipneumoniae OX=1463164 GN=ruvC PE=3 SV=1 +MVRTLLKLPANPQADAADALAIAITHCHVSQNAAQISETRLNLARGRLR +>tr|A0A803PXS8|A0A803PXS8_CANSA Uncharacterized protein OS=Cannabis sativa OX=3483 PE=4 SV=1 +MSGSNTNHQETKCKIRKRNCSSSSSSSLVRKYRFKRTILMGKRGGSTTPAVTMWETTSSPAPVSMAETGKGKEAAPGKSVSARKLAATLWELNQKKDGTAKLDKLPKLPSQSASLPPDPSYTPISDRRRDDHAERVGHHRTMSAVTQKFQLTDYYLGGLDSLSTASLMEVEDHARAKTHHHQHHKKCVTNNGGSNKTRLKEVSSGLATSKELVKLLNHVCGLEEQRSLSTSLFSALRFELDRALIHVDRFMREQRSKGGEIEFLVKQFAEEKAAWRSKERERIREAMSCVAEELKAEKKLRKQTERLNKKIGCELADAKAALSKAVKELEREKRAKEILEQVCDELARGIGEDRAQVEELKRESEKVREEVEKERQMLQLADVLREERVQMKLTDAKYQFEEKNAAVEQLRNELETYLLNMDNNSRSYRWSYACGEELNEDEDEESRRVSVDRDFKGRKSISEKIQWGSICLNKSDSGLELDFGNKSQGNSDGVVSQAKKQEFEDEFKRYRSSIKGLADQILSGSEMVPIHGLTSPSRQWGKT +>tr|A0A6N7L718|A0A6N7L718_SINTE DUF1109 family protein OS=Sinorhizobium terangae OX=110322 GN=GHK62_00935 PE=4 SV=1 +METHELIKGLAADSRRTGMPMNTAWWAAVLIAIAIAAAVFFALLGPRPDIAGAAQTVRFLFKFVVTIALAASAFVPLRMLSRPETDPRGGLLYLAIAPALILAGVAIELVVAPAETWLTRLVGTNSLVCLTFIPLIGVGPLALLLLALRHGAPSHPALAGAIAGLTAGGIAATFYASHCTDDSPLFVATWYTIATAILALLGTLGGRYVARW +>tr|A0A1Y4K2B0|A0A1Y4K2B0_9BACE Conjugative transposon protein TraK OS=Bacteroides sp. An19 OX=1965580 GN=B5F25_04455 PE=4 SV=1 +MVIKNLENKIKLVGIICVSVIIGCVIISLSSIWMARGMVADAQKKIYVLDGNVPVLVQRTSMEETLEVEAKAHVEAFHHYFFTLAPDDKYIQYTMEKAMYLVDETGLAQYNTLKEKGFYNNIMGTSAVFSIFCDSIKFDKEKMEFTYYGRQRIERRTSILMRELVTAGQLKRVPRTENNPHGLLIVNWRTLLNKDIEQKTKNNY +>tr|A0A7X5XVZ8|A0A7X5XVZ8_9SPHN Murein tripeptide amidase MpaA OS=Sphingomonas trueperi OX=53317 GN=GGR89_000656 PE=4 SV=1 +MSIQISAAFDSGNIRVVAIEGDRVDCEIVLDHQSDFFQWFHFRVAGAKGRTLTFRILNAGSSAYPFGWPGYKARWSADRESWRMTETDYADGILSFTHHFQTDLTWFAYFAPYSMERHHDLVSRIALQEGVTHRQLGETLDGQPIDCLTMGEGPKQVWLYARQHPGESMAEWWMEGALEFLTDEDNAVAQALRTKATFHCVPNMNPDGSRRGHLRTNAAGVNLNREWHTPTPERSPEVLAVRNAMDATGVDFAMDVHGDEAIPANFLAGFEGIPSWTDALGEKFYEFGRRLAAHTPDFQTELGYDKSPPGKANLAMSTNQLAERFGAVSMTLEMPFKDHDANADPEFGWSPTRSKLLAHACLETLAGMIDTL +>tr|C7LTP9|C7LTP9_DESBD Diguanylate cyclase OS=Desulfomicrobium baculatum (strain DSM 4028 / VKM B-1378 / X) OX=525897 GN=Dbac_0207 PE=4 SV=1 +MLNFFCGGQPVKERSSSRVSAPETAAQASFDPGRASWPSRIGIVRRVALLLFVLVLVPMGTTLAMLESGTVIDPVNMLVASLAVALGLLAPISRIGAHFLVLRDLRLLNEFCSQIQQGRYGARFPVGLEGDDEHEMLRLKRNMNWMAHHIETQTKKLHERLDESDLRKRFYEEMSYRDPLTGLYNRRYFDCFVPNALRDPARRQGVFLALLDCDGFKRVNDTHGHQVGDEVLATLGRVIGESVREGVDVGFRFGGDEFGVIFRTVDFSACLGACERIRVRFANSNADGCTVSIGLCAWSPALGHDMPDLVRSCDTCLYQAKGLGGNQVVTNETVSIPPRLSSPAPS +>tr|A0A3D3VBE3|A0A3D3VBE3_9PROT Cysteine synthase A (Fragment) OS=Rhodospirillaceae bacterium OX=1898112 GN=DIT35_08550 PE=4 SV=1 +AARKLARLEGIPVGISSGAALAAAAEVGSREEMTGKLMVVLLPSFAERYLSTALFEGV +>tr|A0A7X7I035|A0A7X7I035_9BACT DUF87 domain-containing protein OS=Fibrobacter sp. OX=35828 GN=GX639_08725 PE=4 SV=1 +MTFSPIEHNASLRIGSVEFVSPDELKVCLDLEAPDGISANAGIPRAFPRINSYVLIATEAGYIVAQVEWIAIEKTPFPKRKGFQDYGLVDLPYPTRKLRANPLGILKQNSNNQFEFQRGVQSFPSIGEPVLIPTDQQLQAIVESGKNRRIKIGSSPIAGNAEVMIDPDRLFGRHLAVLGNTGSGKSCSVAGLIQWSLAAARPKDSEPNARFIVLDPNGEYTKVFKDKGRVFHVGSDANSLQVPLWFWNSAEWCSFTQASAKAQVPMLKRALREIRSGGGRIASDVDLELRRKISSILISLRTQIRNGDNYEGWKFGPKLEAYKKDIEAFARHFSGHTTTLGEISNAITKALSFPHQTYIKKDGCIGYNDFPVVNIEPIENVIEKFLTTIGGLVFQNDFNEDIPLSFNSVQFADHIDNLAREDSNPHFFEFLVMRIRTMLADTHMQSILGDTVDMTLEKWLKTYIGDNNPTNGCVTIIDLSLVPAEIVHIVTSVISHMVFEALQRYHKHKKTSLPTVLVMEEAHTFVKKYKEEAENQSVSAMCCQIFEKIAREGRKFGLGIVLSSQRPSELSPTVLSQCNSFLLHRISNDKDQELVSRLVPDNLRGLLRELPSLPSQNAILLGWASELPIMVRMNDLNKSERPHSDDPDFWNVWTGKDECGNTVVRDVDWEKIAADWQGRIK +>tr|A0A1Q6MVU0|A0A1Q6MVU0_9FIRM Phosphoesterase OS=Coprobacillus sp. CAG:235_29_27 OX=1896995 GN=BHW13_05765 PE=3 SV=1 +MKILLVSDSHGYDDELKKVLENVKCNLKIHCGDSCFDKNSPFIKEFAAIVDGNHDQGFFPLTATLPTALGNILITHGHKFNVYAGYDYLVEYMNKADIHICFHGHTHVPHYEIYKNKIFINPGSIMFNRGQSQCGSYAIVSVDDKLHVDFFDSRTQKKIPQSLIDKDQDILNEFKRFACQK +>tr|A0A495SQH4|A0A495SQH4_9FLAO Helix-turn-helix protein OS=Chryseobacterium defluvii OX=160396 GN=BCF58_0976 PE=4 SV=1 +MKTSPKPYSILLFILLFHAVSSELRGQYSEFYQIRKRYEDRKENDTSALPLVQISIEKAKREKNYHELYNGYKFSGYFSESKNSKLIYADSAIEAAFLSKDEALISRAYMGKGIVYYYSFKKYKQALDQYLKAYEYSKKTKDQYQQNKLQYHIGVVKSYIGFYDDALDNLYPSKNYFYNESLKKDIHPNILFGIKRGYFNSLHQILVCYRNLRDYKRIDSLLALAVNDQNLKDNYTLEYGYFLKEKGINEFHKADFRSSITSLNQSLIPIKKAKDFAWESVCYAYLGKSYLRLNNEKKAIEYFTKVDSIFQKEEFMIPEVRDSYECLIQYYKTRGEAKSQLYYTGQLVKADNILNRKFPYLSSKIFREYDTSKLNETHHQEKKTLQREKVIFIGGTIFLLVIFLHRYWKEQNLQKNYRLLEERILNKNVKSNKTQDRQDNPYSLEIEKEILDDLLKKLEDFEKKNKFLESGITLYKLASKFQTNSTYLSQVINEYKGSNFKKYIGELRIEYITQKLYNDKKYLSYTIEGLAEECGIASRPNFSNLFQEYNGIRPRDFIKKRMEDLKNKENLEEGAISCE +>tr|A0A182RGG3|A0A182RGG3_ANOFN Uncharacterized protein OS=Anopheles funestus OX=62324 PE=4 SV=1 +MEEFLEAIQCGQYEVVRAALKNSDLDLDHQDPAREGNSALHLATIAKHNKTRLIELLIEAGADCDLRNHANLTPAELALDNGSQYVAEFTLCKELDAVPDDQALRRLIRRGSVELLKIFLEKRAFDIHTKMKLIANLLDELTVKGVPIDRSMRVFLEYELIAHSYEDGTEGNATRQRRLGASGGASSKRKADGKVQSSTGETEADRRIELVLSYTKYLTDRYDDDNLNDLDDEFVVRLRAICECLYYLDGLDCCARSDWKLLKLIPLGELAYLCSVLLSILEKSVGFEMYKLVLNKHQIVSFLRAVSAELGTLVKASTRTVRTDRSFQWTPQLLLDLIVCIREQKLSQYVGRRRRACEDLQRIATTTCPLGAAEHDRVLVELGRRELIALQDGVLERGTKWGVADYVAYLRDDHPLTVGQLWHRYHPKLRLSKRQVAYAASRRELLSKIRARRLDELSRNKTKLLERELGARELQGSPSARTVRRRHRTVFGHIRRTYEQIWQMHTVKKIAYYVENALVIDLDDRSNATLCLMAIQRVMQFIGEVSKESQQHQATFARMLANLLDHVLSPLCTTATLTDADDLRESFSARCSVGKYFLHETLTGEQVRTIQERLKAVYRFCLYVINIQLIEAYKTFLGTAYRLRNTNQLQSYARYIGEHNLHTLSHIKFEHVFYDEKETARIVQELKKMYLGMSNELKLLSFIEKNIHFRFYHMQYHQTRLRVTLSNFAIVYRALKANPDYGCVRRLLHSYLHQSYQKYDISRSISISDANLALKELLRPYSSISENEDTLKVVRHLEELQHLMDPDRLFGINPVHRTGGHSSLEAARYQKFTRKLLKDMNASTLNDEEFQQLHDKLSRMYYGNIFLVQQRYHTLEEFFRTKGVALDETDLLTRRESDEEMLQELFDSKVNDVVEILEKFECTDVQNLCEVIEQLPPVVQFALEYGLLELLEILTSVNAIGSNRWHSLQCSTAVLCGHNLKTFLTGGRESQVLESLTLKSNATIFLNAIIFKQRSYELYGGRVDGRHCSKSKLMVSCFADKFANRLQWLEQQRILYETIRTGEVKLSTLRRQVRDGVEIGGQRFGSLMPNEMCHYGLIDCAIAGDFRAMIDLLTETDSTAESGVSSSERHHLLRYLLRRTTKSHFIAEPLERMKQEDRHTLVLYLCLFLGDVALFRQQLVRYNAYDELHLFVNSEDHRFVQQLLSELPDYDWSRTDANGMTILQKLVNAGNQPAIEDLIRRMSPEQLNSLCSMKYTALNLAARLNLVEIVRVLASAGIDLNVMSEDEKLPVFWLIQYGNSRTVVQQTIDAATELTAFSSELCLLHRAIEYDNEDVLRYLIEDCKVDPTRIYSNCNNVLHVAAGFDRCRIMRYLLTIPGLRKIVNNCNLVKNSPLNVACKEGYIRSARVLLAQGGASTETCGEYGLNALAFAMYTNNVKLARCLFRYDASIGNPLSSDFQPINMAIRNRNIRMLELLLRRGVDVNSAPLCFINAVYAQSRDIVQLLIGRGVKHVNHRDEFCQTALHLCVERDEYEMARDLIRYGAHINAKNRSGMTPLHLAVQRGNVRLVQLLLDHKCSVDELNYHGETPLIRAVASNNTKLVKILLNNGASIERLRNSDPPVLLYLVQENHEEILDYLLEHYQFNANEQDAYGNTLLYVATQHNHINIVKLLVDKYHAKTNPTNHKKLTPLMIARVKEYKEIFHFLEARLVEE +>tr|A0A1S9BZC6|A0A1S9BZC6_9FIRM Oligoendopeptidase F OS=Oribacterium sp. C9 OX=1943579 GN=BXO88_02085 PE=4 SV=1 +MKFSEMPYERIDFTKLSKDFKELEERFEKAASGEEQYAVHEDFYKIYNHVMTESQIAMIRSDIDMSDEALLEEQQYFDENMPVFQNLVVSYRKKLFNSKFRPYLEERIGKVAFRNIELAMKSVDEKLIPLMQEENKLQTEYNKLLASARIPWNGEELNLSLMNPYLHNQDRTIRKEAWEKYSAFFVAHQEELDDFYDKLVKNRTKQGELMGHENYLPLGYARMNRNSFGRSDVEEFRKQVKKDFVPFAEKLHDIRRQQLGLSRLSYIDEGVYFTNGNPAPTGTPEEILAAGRKMYNELSPETGRFINFMCDSELFDVLGRKNKKTGGYMTMIPDYQAPFVFANFNGTSGDADVITHECGHAFQGYITAGDPVIEHNDITMEVAETHSMSMEFFTEPWMPLIFGNRAEDYVKMHFMDSVIFIPYGTMVDEYQDIVYSNPGLTPKARNEVWRDLERQYKPHLDYTGNEYFEKGGYWQRQHHIYDSPLYYIDYCIAGANALQYKVWMDQDYKAAWKSYLELCRLSASDFFDGLVKKSGLNNVFEDGCLRYVVKQLEEKM +>tr|A0A355Z3B3|A0A355Z3B3_9PORP Uncharacterized protein OS=Porphyromonadaceae bacterium OX=2049046 GN=DD424_00560 PE=4 SV=1 +MQLKSSLKQLLVESRANPGFTSLYVGGVAFAVAFTMIFAIIYYVHLAPLYPEYNRSSTYYINNLTVRNDKTGAMNQSSVGIPFVREFVEKSKNIEYSTIVFQMQGFIQPPDQSGDFSVNIIDTNPDFFKLYSYEFVAGRPFNEAETESAINNIVVDSSVADRLFGVSEQAIGKEISISYRPYRIVGIVRSGNPVAYMSYANVFRPYTIRTKSANTSLKGDKCDYLGDYSVPIKFKDSRQAERFREELTEKVRRINAADSTGQRLDIQSAPISHTLRILSQRSNGENLSMTEYLKPLLITLLVLLIIPAINISGMIGGQMDRRLAEIGVRRSFGATRGHLTRQVMFENLILTLFGGIIGFAIAWIIIAFGRNMLLKLIIPAWECIDAPAEISTEMMFAPLVFIAALLLCLVLNLLSAYIPVRLSLRRPIISSLNSKR +>tr|A0A195BT40|A0A195BT40_9HYME Uncharacterized protein OS=Atta colombica OX=520822 GN=ALC53_01728 PE=4 SV=1 +MAKNIGSILLLTFALSFVRADEYERQWNTPPELIPESIVKILDNEESQMRLLSLIPVTATVSLTGENNNAHSVSLDASLDGISFSESKIHDRPTGYETDGSSVSVSKSTTVSAGLSGISTAAAEAYNNGNNAKTESHSLSFGQSTATSFGTIENGQAITGAASSTGLSQSFTIGDNRRQFSQVGAVNMQYPTWSNIGPNNGYIDQRFKRPTLTISNIDPNNGYNDQRFNRPTLIISKPWDETNRPTLNIDVSDTSRQEQKPTIHIHKWQPNRRISRPDFSIKHQLHDIRNDRNHGSISLRIENKNFKQEYSGSDLISDLAQTVDKLFDIV +>tr|A0A5B7XNA0|A0A5B7XNA0_9ENTR Mechanosensitive channel protein OS=Leclercia adecarboxylata OX=83655 GN=ybiO PE=3 SV=1 +MPWILLLLISLFCLPAQAVSLPGMPAATAQTPPPAEPDVEQKKAAYSALADVLENDTSRQELINQLRSVAATPPQEPVPKITPPEIADEKTVLENVTDISRHYGDALATRFAQLYRNLIGSPHKAFNPQTFTAAAQQFLILAGLVFAFYWLVRLCAWPLYRRMGSWGRKKNRETSSWIHLPLTIAGAFIIDLLLLALTLFIGQILSESLNTGNPTIAFQQALFLNAFALIEFFKAILRLIFCPRVPDLRPFAINDSAAHYWSLRLSLLSGIIGYGLLVAVPIISNQVNVQIGALANVLIMLCITVWALYLIFHNKRAITEGLLHLADRSLAFFSLFIRAFALVWHWLASAYFIVLCFFSLFDPGNSLKFMMGATFRSLAIVGVAAFVSGLLSRWLAKTITLSPHVQRSYPELQKRLNGWIGVSLKVARILTVCVAIMLLLSAWGLFDFWNWLHNGAGEKTVDILIRIALILFFSAIGWTILASLIENRLSSDIHGRPLPSARARTLLTLFRNALAVIISTITIMIVLSEIGVNIAPLLAGAGALGLAISFGSQTLVKDIITGIFIQFENGMNTGDLVTIGPLTGTVERMSIRSVGVRQDTGAYHIIPWSSITTFANFVRGIGSVVANYDVDRHEDAEKAQGALKAAVDELLEREDIRGLIIGEPSFAGIVGLTSTAFTLRVSFTTQPLKQWTVRFALDSMVKKHFDLANVRMPVQMYQLLPSPTGENTQIQNRT +>tr|A0A1F1XSS9|A0A1F1XSS9_9MICO Esterase OS=Brachybacterium sp. HMSC06H03 OX=1581127 GN=HMPREF3159_00885 PE=4 SV=1 +MIRLRTDFFAESLGMGTSMVVLMPQAASGIGMEGSDAPGAGPSADGTADGGADAGGAGAADGPAVPVLYLLHGLSDDCTIWERRTSIERYATEKGIAVVMPEVRRSFYTDEAVGEAYWTFVAEELPRIVARTFRVSTAREDTFVAGLSMGGFGALKLALNHPERFAAAASLSGAVDLTSMDLDWTGTLAQRVWGGREIAGTADDLLGLLGKRDPAELPALFLDCGTEDQLIDQNRRFLAAAEQAEVEVASRLRPGAHTWEFWDEGIQDVLDWLPIRG +>tr|A0A2D8DKP5|A0A2D8DKP5_9GAMM Oxidoreductase OS=Gammaproteobacteria bacterium OX=1913989 GN=CMQ67_01330 PE=4 SV=1 +MSDTYNAFVVDEIEDQFKSSIKSLPLPELQDGFVLIEVLYSSLNXKXALSASGNKGVTKSYPFTPGIDAVGKIRQSKDNNLKEGDEVIVTGYDLGMNTNGGFGEIIHVPSGWVVPXPNNLSMEEAISFGTAGITAAASVDAVLSKIDAPEXPVAVSGATGGVGSIAVGLLSKLGXDVTAITGKENSSQFLKDLGAKNIXLRDDFCSEKIRPLDKTKFSAGVDTVGGEILSRIISQVDRHGVITCCGNVNSIKLETTVFPFILRGIALQGIDSAESPITYKKYLWDKIASEWQIGYSKSSIKIIKLNELAPEIDKILNGNQQGXVVVKHGE +>tr|A0A562L573|A0A562L573_9GAMM Aspartate--tRNA ligase OS=Luteimonas cucumeris OX=985012 GN=aspS PE=3 SV=1 +MRTHFCGLVDEALIGQTVTLCGWADVARNLGGLCFIDLRDHEGIVQIVAEPDADMAGNADVIAAASQVGYEDCLRVTGVVRRRQSVNDKIRTGQVEVVATKIELLNKAEPLPFHAHENAGEDIRLKYRYLDLRTPEMQRKMRTRIKLVQALRRWLDARDFQDIETPILTKATPEGARDFLVPARMHPGEFYALPQSPQLFKQILMVAGFDRYYQIARCFRDEALRADRQLEFTQLDMEFAWVGERDVQDTTEEMIRSVFREVMGVELASEFPRMTYAEAMRRYGSDKPDLRIALELTDVAELVRNCEFKVFSDWANHADGRVVALRAPGAAALSRKQIDDYAAHAAKHGAKGLAWMKIEDAAKGRDGINSPIAKFLDDATLAAIVSATGAQSGDAIFFGAATYKSASDFMGALRLKLGKDLGLVADGWAPLWVTDFPMFEWDDEEQRYVALHHPFTAPAVDDAADLRANAKTAVSRGYDMVLNGNEIGGGSIRIHNSQMQSTVFELLGIGAEEAEGKFGFLLDALRFGAPPHGGIAFGIDRIAALMAGTESIRDVIAFPKTTTAQCLMTGAPSPVPDKQLAEVHVSIRPKAQP +>tr|A0A830CSJ2|A0A830CSJ2_9LAMI Uncharacterized protein OS=Phtheirospermum japonicum OX=374723 GN=PHJA_002054300 PE=4 SV=1 +MAMRTFYNEIKGMKVKELPAHLKPMFTIDYAKNSVKRGLDNYHAKYIETSSVDPLFHICFGGMIFSYLVALPEERRHLEHAKEHGGGH +>tr|A0A5R2N5V0|A0A5R2N5V0_9HYPH 23S rRNA (Pseudouridine(1915)-N(3))-methyltransferase RlmH (Fragment) OS=Mesorhizobium sp. M2D.F.Ca.ET.145.01.1.1 OX=2563933 GN=rlmH PE=3 SV=1 +MKISVHAVGRMKAGPERELADRYFERFAKSGPAVGLEFAGITEIAEGRAQSASERQRDEGSRLQAQLQPGTALILLDERGKNLSSQDFASHIGQLRNGGRKALVLAIGGADGHDPPLRDQAELVMSFGALTWPHQLVRVMLGEQLYRVATRSEEH +>tr|A0A7G8J7C1|A0A7G8J7C1_9SYNE Uncharacterized protein OS=Synechococcus sp. SYN20 OX=1050714 GN=SynSYN20_02147 PE=4 SV=1 +MVVDCLDHLFLILWSFTTFIDLGFRDLMFFDRLLHAFCFC +>tr|A0A1L8E3I3|A0A1L8E3I3_9DIPT UDP-glucose 4-epimerase OS=Nyssomyia neivai OX=330878 PE=3 SV=1 +MSNGKTVLVTGGAGYIGSHCVVSLQEAGYQVIALDNFTNAVNNFKNESMALQRVAQITGKDVAFYKCDLLDKEALEQIFQQYKIDSVIHFAAMKAVGESMQQPLLYYKNNLIGMIHLLEVMKKHKVFNLVFSSSCTVYGEPKELPITEEKETGKVTNVYGRTKFFIEEMLRDISVAEEEWNIIALRYFNPVGAHKSGLIGEDPTKQFTNLMPYISQVASGKKDCLTIFGDDYDTPDGTGIRDYIHVMDLSTGHVKALEKLEKQHLRLKMYNLGTGKGVSVLELLQTFERVNNVKVPYVIEARREGDISSMYADPTLAETELGWKAECTLEEMCTDFWRWQTMNPNGYKTGIVNGH +>tr|A0A1M3I4N8|A0A1M3I4N8_9SPHN 3-oxoacyl-ACP reductase OS=Sphingomonadales bacterium 63-6 OX=1895846 GN=BGO57_05825 PE=3 SV=1 +MSISFEGRVAIVTGAGGGLGRAYALELAKRGAKVVVNDLGGARDGTGHSDAALKVVEEIEAAGGEAMSNGASVTEYAQMVEMVAKAKEKWGGVHVLINNAGVLRDKSFSKMEPEDFEFVVKVHLFGSAYATKACWELMREQNYGRVMMTASSSGLFGNFGQANYGAAKLGLAGLAKTLHLEGAKYNIRVNTLAPLAATRMTEDIIPEQIFPMFAPENVVPAALFLVSEDAPNNVIVGAGAGGYHSAWVTMNTPVILPEGERSVEGFAAHWDQISSREGDFVPVSGMEQTQRVLAAIQKAAAGG +>tr|A0A7C6JME1|A0A7C6JME1_9BACT ABC-F family ATP-binding cassette domain-containing protein OS=Petrimonas sp. OX=2023866 GN=GXX67_10465 PE=4 SV=1 +MATPILQIDKLTKSFGDLLLFRESSFGIAEGEKVGLIARNGAGKTTLLNILAGKEPYDDGRVVFRNDTRVAYLEQSPTFDPDLTVMEACFSSDNEVVRLIARYEEVIASGDTSNLEEVLTQMDFHNAWERELQVKQVLTWLNITDFQQKMGELSGGQVKRVALANVLISEPDLLIMDEPTNHLDLEMVEWLEERLTRSSVTLLMVTHDRYFLDRVCTRLLEIDDQQIYAYKGNYSYYLEKREERVMAQQAEVERARNLLRKELEWMRRQPQARGTKAKYRIDAFHDLAEKARGESAEQSVRFAAKGSYIGKKIFEAKNVSKRFGDIRITESFNYTFTRYEKMGIVGKNGTGKSTFVKMLLGEVKPDSGYFEIGETVRFGYYSQEGMEFDEQLKVLEAVQKIAEVIDLGEGYRLTASQFLQHFLFPPEKQYDYVYKLSGGEKRRLYLCTVLLKNPNFLVLDEPTNDLDILTLNVLEEYLAGFKGCLIVVSHDRYFMDKVVDHLLVFHGDAKIQDFPGNYSQYREWKAEEDRREAAEAKAEAVKIEAAKAEAINPGKGRVALPNGKTDELGVGSSGETDPETTDLTTHGSKKGEKKRLTYKERQEYESLEGEIERLEKEKESISELLSSGNLPAEELISQSERLSLLLEQIDEKMMRWLELSERA +>tr|A0A839T1V7|A0A839T1V7_AZOMA Ribosome biogenesis GTPase OS=Azomonas macrocytogenes OX=69962 GN=FHR87_000879 PE=4 SV=1 +MAKRQLNRRQSWRIEKIQEERANRAARRESRLVDELEGGDLGREQEGLVIAHFGVQVEVEARQDELAGQIFRCHLRANLPALVTGDQVVWRPGNQGNGVIVAQLPRRTELCRPDSRGQLKPVAANVDRIVIVFAPLPEPHANLIDRYLVAAEHAGIQPLLLLNKADLVTAENQVRLETLLAVYRALDYPLLEVSARQGSGMDELKARLDGHVSVFVGQSGVGKSSLVNSLLPGLDTRVGALSELTGKGTHTTTTARLFHFPGGGELIDSPGIREFSLGHVTRAEIEAGFREFDDLLGRCRFRDCHHEHEPGCALLKALEQGRIHPQRMESYRHILSSLPQTEY +>tr|A0A523ZWY7|A0A523ZWY7_9ARCH Transcriptional regulator (Fragment) OS=Candidatus Bathyarchaeota archaeon OX=2026714 GN=E3J20_08840 PE=4 SV=1 +HLYVVESADFLFLMRQTGMTFGNLSSHMSRLETAGYIDVEKEFVGKKPNTKLHLTEDGRAAFQEYRRNMRHVFGDLSS +>tr|A0A0B5IZ06|A0A0B5IZ06_9VIRU Uncharacterized protein OS=Pandoravirus inopinatum OX=1605721 PE=4 SV=1 +MSQARRVGWRSRRPDAPIHYFFLLHRQTIAGEKRWSSFFGIVSVVLAPLFFSDKRPRPAPPAALSNRTRHGQAARLHTRKAHKACLLRHNQKSIIPSEKEEAEQEKGKQ +>tr|A0A7W5U4L6|A0A7W5U4L6_9HYPH Surface antigen OS=Rhizobium sp. BK612 OX=2586988 GN=FHX13_001390 PE=4 SV=1 +MKLRTFFLVVPSLFAALALSGCSTTSSLGGGKSLFSSAKPPASATFINALDGGIVERTGIKLSDSDKQRALEAEYRALETSPLGQPVAWKGRNASGEVVPAAPYQVGSQNCRQYTHTVTVDGKPTTARGAACRNDDGTWTPLE +>tr|A0A382FFA2|A0A382FFA2_9ZZZZ Uncharacterized protein (Fragment) OS=marine metagenome OX=408172 GN=METZ01_LOCUS214166 PE=4 SV=1 +VDKNIIAAGDKTTVEAAKEILWLGGNAYDAAVAAVFTSMTAEPALTGPGGGGHFMAYPADGRAVLFDFFVDMPSGVIEPN +>tr|A0A835W1B8|A0A835W1B8_CHLIN Uncharacterized protein OS=Chlamydomonas incerta OX=51695 GN=HXX76_008806 PE=4 SV=1 +MEEARVAAVSVSGGVRQQPQVQAQAQTRAASPAASAADAGVGATAATAATPGFAAATATDSAAAATAVAASGPAAAGGGRRPSRSAAVRARSAITHQLHEEQLPLAKREKRDAEFSEQVSDVEGDGVAGTGAAPAAATTAAAEPCGSPPVGDAAAAKQRPRKLRLLPRAPNVICAACAKSCAARGGFFAQGTGAYTCSSCCSRNRIECGFYGPPGTHSLEEAGGRKHNAQQSRPRGISPSASASEGATAVRVVTAATAGTAATAAPGAKAPSGTAAVAGLAAAGGGQKAAAAKAAVARATARVHGAAGASTARKRLPPPPPRPPPPPPPLEDAVPAEDATPAGDATPAPAQPAPPKCTTCGAVRAPHKLTSPGFFARGTGAYTCHGCCVRNLKSAHGFYGPPGTRSLEEAGGRECAECGTQGANSTSWRLHPDRLGHYLCSSCSGRYESRKRKLDRSGGGGGGPAPKAQKRSLGGVVDKASGGGDAPAAAENATAPAAAGKGGSGTKRQRQLAEAAGAGSRSGADAAASSAAAAAPATPAATRQAQSQQPKRQGPTKAASGTVRQAAPAAAAPDGPPAGGGGGAAPAAAAGRPPPAPEPKCSGCSSSFKRTDNGLFGFFSHGTGAYTCHGCCSRNQHAQGFYGPLGTRSLEEAGGRACAGCGRQDATQWRPYPPRLGAYACAACISKHTRRMQQEAQDPEGLTAPADAPRRQTPQPPQQQQQQPKQQPKQQPKQQPKQQQSQQQSPGQGQRQSQPQASGSGPAHSCATPAAPQAQGRGARLGAAPSRAATSAAPAARAQASSQAGASTGLCGASDAAATAATASMSRSTNATAATAFTSSEWTSPAVDGIRCDFCGGRFVRAATGQFGFFARGSSVYTCHGCCCRNLSRYAFYGPPGTRSLQEAGGRECASCRTTQAERWLPHRFRLGLYLCRPCRCRQDKGTLPKVGGGARGNQQAAAAATKAAAPKAVAAKPVAAAGGSARAPPQRRTAAARSEHVVGSDDEELEEQAADGEEEVEKAEDEAEDEEAARSARQRLEQEAAARVRSSRALLAASVDASAVAVAGLIAAEQAAGRRGSSSSGNNSSSCRLPAPPKLEQVAGRISAWLQAHVCQQPLALLLGPSAKALGLDREDGLLGLEAEEQETWNVCRARVCGVWLRVAHQAMEPAAATSPAADAAATAAAAAAAAAAVEARAGAQPAAPSSPAAVQQFRMVAFRASTALASELARWLRSAPRLEVPRASPPPAAPLTPAHAPAARPVRPAGPAEAAQHTSAPGPSQCAAASAAGDGAAVSAGAEVGGGSGGGGSALPPRSPAGSASGSGPAAELPGEDIRVLEAALQPLLLRSVCEAMWLGLTEGSAGDGGVGGGRRRI +>tr|A0A7X4ZEP7|A0A7X4ZEP7_9CLOT Sugar isomerase OS=Clostridiaceae bacterium OX=1898204 GN=D3Z55_07300 PE=4 SV=1 +MRNRMGKLKRNSIVALAAQIVNIISAFILPRLILSTFGSDVNGLVNSISQFLQIIGLLELGVGAVVESSLYKPLSERNNLKLSQIMTSATKFYKKIAIVLLIYSVGLVMLYPATVGQAYPFFDVAILIIALSVNSFAQYYFGMVNALLLNADQRSYIVQMLSIIATIANTVISVLLIYSGCSIQAVKVVSSFVFLSKPIFLNNYIKRHYQINYHEVYEVEPIPQKWYGIAQHMAHIVLDSTDVVILTIFSSLSSVSVYSVYNLVTNGMRSLVLSVGTGMQSLLGELIAKKEKGKLDTVFARLDWLIHTVAVVCFGCTMALVVPFVQIYTSGVTDINYVQSLFAFFISLAQCFRCIRLPYNVVILAAGHYKQTQSNYIVAALLNISISIFTVIRFGLVGVAIGTLVAFVYQNIWMAHYISKHIVCWPFKNFIRQTLIDLITLACGYAVTRSLYLGELNYVHWMLNGMLTSVIWIALSMIINFIFYRERLREIYYRYIRRLIG +>tr|A0A7J5A9S6|A0A7J5A9S6_9FLAO RecQ family ATP-dependent DNA helicase OS=Flavobacterium luteum OX=2026654 GN=F6464_13185 PE=4 SV=1 +MQTALQILQKYWKHDAFRSLQNEIIDAVLNGKDTFALMPTGGGKSICFQIPGMMKEGICLVISPLVALMKDQVANLQKKDIKAIALTGGIKSEEMIDLLDNCEFGNYKFLYLSPERLQSDWILERLKNLPINLIAIDEAHCVSQWGHDFRPAYLKIAELKPHFPKVPFLALTATATPKVKEDIIAELNLLNPQIFQKSFARENIAYMVFEVEDKLFRIEQILRKNPQPSIIYVRNRKSCLEVSSQLQSLGIKSTYYHGGLSPKEKDKNMQLWMREEVQVIVATNAFGMGIDKANVKTVIHIQLPENLENYYQEAGRCGRDGEKAFSVILTSPSDIVQAESQFIAVLPDKSFLNTMYVKLCNYFQIAYGEGINEQFSFNLNHFCLKYGFPILKTYNAMQFLDRQGIISLSQEFTEKITLQFLISSKEVIRYVSLNPNDESIILNILRTYPGVYDMQTSFNLQLIAKKSNHSENEVLAVLHKLKEKEIIDYHSRNNDATLIFNEVREDERTINRVSKYLERQNNLKKEQLDAVLHYIQEKSVCRSKLILNYFGEKTDSVCGVCSYCISKNSKKRNTTTTTEAIIILLNKGDLNSREIEIKLKYNAEDIIFALQQLLDNDTIMVKPNNKYSIKL +>tr|A0A7K6EWN1|A0A7K6EWN1_9PASS F162A protein (Fragment) OS=Grantiella picta OX=266360 GN=Fam162a_1 PE=3 SV=1 +LASLHPLLSLPDRAVKLLGKNIPSILRMSEGVDPKISRRLSIKPQEDLQPKSRSASGVPGYKPTNWEKRFLLWAGHYKKPEDIPETVSIETVRAAMTKLRVKFSYVMIALTIVGCITMVIRGKQAMKRHESLTSINLEKKAQWKAESASAKP +>tr|B0YHV5|B0YHV5_ULVIN Ribulose bisphosphate carboxylase large chain (Fragment) OS=Ulva intestinalis OX=3116 GN=rbcL PE=3 SV=1 +ILAAFRMTPQPGVPAEEAGAAVAAESSTGTWTTVWTDGLTSLDRYKGRCYDIEPLGEDDQYIAYIAYPLDLFEEGSVTNLFTSIVGNVFGFKALRALRLEDLRIPPAYVKTFQGPPHGIQVERDKLNKYGRGLLGCTIKPKLGLSAKNYGRAVYECLRGGLDFTKDDENVNSQPFMRWRDRFLFVAEAIYKSQSETGEVKGHYLNATAGTCEEMMERGQFAKDLGVPIVMHDYITGGFTANTTLSRFCRASGLLLHIHRAMHAVIDRQRNHGIHFRVLAKILRMSGGDHLHSGTVVGKLEGEREITLGFVDLMRDDYIE +>tr|A0A2S8NPN6|A0A2S8NPN6_9MOLU Uncharacterized protein OS=Spiroplasma sp. ChiS OX=2099885 GN=C6B38_09260 PE=4 SV=1 +MKTLHEMIKDLTGIDVEQDKISDYLEEEVLYLHGAYLRYANLSCANLKGIKITKKQLDQLTVIEENE +>tr|N8Y4E3|N8Y4E3_9GAMM Uncharacterized protein OS=Acinetobacter gerneri DSM 14967 = CIP 107464 OX=1120926 GN=F960_03962 PE=3 SV=1 +MKLDPQTALVHAERKAPQYIETVQAPIYRASTIIFKNTSALFDRHWTDDYDYSYGTHGTPTTYTLADNIAQIEGGHYCLLAPSGLSAINLVNSCFLSQGDEVWVADNIYGPNMEHLQDLAKRYGVIVKVYNALDVDSFQPSDKCKLLWLEAAGSVSLEFPDLVQLVKKAQALNILTALDNTWGAGLAFSPFDFSSEHLKVDISVHALTKYPSGGGDILMGSVVSQDKALHHKLFQTHAIQGISVSGDDVAQVQRSLASMQIRYEQQAKSALTLLAWLKQQKQFAQVLHPADPDAAGHQFWQEVCQTQKSAGLVSVIFNDHYDLTDIRKFCDNLNLFKLGFSWGGPVSLAMLYDLKKMRALDYPHLKQGFLVRFCIGLEEPNDLIQDIENALNKMK +>tr|A0A7S0UZ86|A0A7S0UZ86_9CRYP Hypothetical protein OS=Hemiselmis tepida OX=464990 GN=HTEP1355_LOCUS251 PE=4 SV=1 +FWFGGEKEKVTDHCRSWRARSLAGGGRLGARLGGRPTGDLTRSRQLGMLFARLAGKAPFDSPGAWDSPSADADIGGADYGKPINLSIYKSIKDDQCSRRRTGCDWTVVGPVTARSRRWEFK +>tr|A0A015LJQ4|A0A015LJQ4_RHIIW DNA helicase OS=Rhizophagus irregularis (strain DAOM 197198w) OX=1432141 GN=RirG_229180 PE=3 SV=1 +MSESPSRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQPSSPQTMSDAMLESPNRNRNENNTPEREQHFSPQTMSDAMLESPNRNENENNTSEREQRRSLTQTISDAADSTRNFISNALGLRQEQDNMSTPTHLRTENYSNVHTPRNLLSPATVASSLATPRSISSPRTPRRSQISHDNTPRKSQTSTPRRRINTNPENLAENPDNDLLKEYYEGIKSGSATPRTPRRQQRRGDIHSARSAKRLIDLDIQKGDEDVTMLEAEEKITTDQIWGTTIKVEEVRKSFKKFLKEFKLSDLSRRNGRSDDDPFYIEYLKIIERTEEFKFNLDTQNLLAFEDTHKLYYQIVRYPQEIIPILDYVVAQMYTELHEKEPKEDIRVFRVRPYNLGISKNMRELNPSDIDQLVCIKGLLIRSSPILPEMAVAFFRCSICDKSVEVEVDRSKIDEPSRCPRKQCNSSGTMVLIHNRSIFKDKQVCRLQETPDCIPDGQTPHTISLCLYDNLVDIARPGDKIELTAIYRSSPIRVNNRQRTIKSLFKTYLDVVHIRRSENIHENGDNDFTQIYHGLEDENKEVENVQEGFSHDHFSRDQKRKQLTFTEADIQYFKELSKNPLLYETLAHSLAPSIFGMDDVKKGILLQLFGGTNKLFRKSGSPRFRGDINVLLVGDPGTSKSQMLQYVHKIVPRGIYTSGKGSSAVGLTAYVTRDPDTKQMVLESGALVLSDGGVCCIDEFDKMSDGTRAVLHEVMEQQTVSVAKAGIITTLNARTSILASANPIDSKYDPKKSIVRNIDLPPTLMSRFDLIYLVLDKIDKQADWELATHLVSLYAEDSPFSASVNILPVETLAKYIHYARIHYNPIIGNDEAHKALVDAYVSLRRLGQDPRSSENIVTATTRQLESMIRLAEAHARMRLSNTVEMADVEEAERLLREAIKLSALDPETGRIDLDLITTGHGSYERRLLTVMREAFQKMLNRRNITSINWKKALEDFNEQSDVKINEKQFETMVNSLEQEGILRLAGNGNDREIITLNEDDE +>tr|Q0V3S1|Q0V3S1_PHANO Eukaryotic translation initiation factor 6 OS=Phaeosphaeria nodorum (strain SN15 / ATCC MYA-4574 / FGSC 10173) OX=321614 GN=TIF6 PE=3 SV=1 +MAVRAQFENSNEVGVFSTLTNAYAIVAVGASENFYSVFEAELQDVIPICHATIAGTRIVGRLTAGNKKGLLVPTTTTDQELQHLRNSIPDSVKIQRIEERLSALGNVICCNDHVALVHPDIERETEEIIADALGVEVFRQTIADNVLTGSYMALSNQGGIVHPKTSIQDQDELSSLLQVPLVAGSVNRGSAVVGAGMVVNDWMAVTGLDTTATELSVVESVFRLGEGNGPSNINTTHKDAMVESFY +>tr|A0A816CJR2|A0A816CJR2_ADIRI Hypothetical protein OS=Adineta ricciae OX=249248 GN=XAT740_LOCUS50392 PE=4 SV=1 +MSIIDVDDAKNRLQEYCQQRNLPLPIYSLIEKTGPDHSPMFQVEVIVDGMTFIGDRSTKKRVAEKLAASEALDYINKPQSPPKKIVNQQTKDPFTLFQSLNLEDESTEIESMEYD +>tr|K1XWP4|K1XWP4_9BACT Site-specific DNA-methyltransferase (adenine-specific) OS=uncultured bacterium (gcode 4) OX=1234023 GN=ACD_80C00146G0003 PE=3 SV=1 +MAQLFWTGTIKSHTEILQWFDESKISLIKKLHQDWKNWLLAGETEYEQTFNQLFFWELLGYENRINRIPKGAVIGTGIADLTLWYFDEGKYSPDDIQIVCELKGAKTNLVKKQFWHGGLSAVGQWFSYKTGLKNCKRLIVSNFYEIRLYRDNQTDFEVWTLDELIDPKDNYSNLRKLYLLLHRENLLAHTGKSKTEDLLSHFREEQKEITVKFYKEYKQLRIELINDIKQHNPWISIEILIEKAQKIIDRLIFIFFCEDKGLLPDKKLKENIVRSREAGFSAWEVTKKFFGLIDKGSEQLGIPSGYNGWLFQKDDVLDNLEIGDSICKKFTDMTNYDFDDKLSVNVLGHIFEQSISDLENLKIDLLGQEVETWQLADTGKGRRKKDGIFYTPEYIVDYIVQNSVMKYLNEKEDELIKKYRGEKNDPKLVAKAEIEAYQAYQNILQNIKVLDPACGSGAFLVRVFDVLFEENKRVWSILNSLFDESETYKNILTNNIYGVDLNEESVEITKLSLWLKSAQKGKKLNNLDGNIKCGNSLIDDVFIAREKAFDWNVQFKEIMKNGGFNVIVGNPPYVRTQNLDKNSKSFFDEKYKVSYKNYDIYILFVEKAFSLLESDWVCSYIMPKKFINTDYWEKFKMFLYENNFIDSFVDFWTNQIFGDATTYTWIFVFTKGIKKTLNYKNIDDLNQFPPIWFDSINYSNLSWKDWILTNPKEKELFWKLQKESFLWEFTDRVFQGLVTGVDGIYIMEQKWNNLFSKENGKSYTFDCDIVFPLLKWTEIKRYSTPSANYKIIFPYKIVDWKAILIDEETMKNKYAEIYNYLKEFEIKLRTREWWKFDNQNWYSYSRNQNIALMPSKKILTQVLSNHSSLTLDEAWKYFFVWWWTAGWYWISIDSNWKLDYKYLLTLLNSSLLEWFLHKYASPFNGWYYAYSRATMEKLPIKEIPLSDQQPFVERADKMLALNKDLYELTGKFLHRIQDNLKIEKLTKKLEKFYELDFKYFLIELKKQKVLLTLAQQDEREPYFKECKEKILALKGEIERTDKEIDDMVFDLYGLSEEERKVVFNG +>tr|A0A6I4N661|A0A6I4N661_9ACTN Transcriptional regulator WhiB OS=Streptomyces sp. BA2 OX=436595 GN=whiB PE=3 SV=1 +MDWRHNAVCREEDPELFFPIGNTGPALLQIEEAKAVCRRCPVMEQCLQWALESGQDSGVWGGLSEDERRAMKRRAARNRARQASA +>tr|A0A2V5BXM8|A0A2V5BXM8_9GAMM 50S ribosomal protein L23 OS=Pantoea sp. AG1095 OX=2184004 GN=rplW PE=3 SV=1 +MIREERLLKVVRAPHVSEKASTAMEKTNTIVLKVAKDATKAEIVAAVEKLFEVEVKDVNTLVVKGKVKRHGQRIGRRSDWKKAYVTLKEGQNLDFVGGAE +>tr|A0A4Q4HXK7|A0A4Q4HXK7_ECOLX IS3 family transposase (Fragment) OS=Escherichia coli OX=562 GN=EWK56_27125 PE=4 SV=1 +ELPTYGYRRVWALLRRQAELDGMPAINAKRVYRIMRQNALLLERKPAVPPSKRAHTGRVAVKESNQRWCSDGFEFRCDNGEKLRVTFALDCCDREALHWAVTTGGFNSETVQDVMLGAVERRFGNELPASPVEWLTDNGSCYRANETRQFARMLGLEPKSTAVRSPESNGIAESFVKTIKRDYISVMPKPDGLTAAKNLAEAFEHYNEWHPHSALGYRSPREYLRQ +>tr|A0A455L1B7|A0A455L1B7_9REOV Non-structural protein 2 (Fragment) OS=Rotavirus C OX=36427 GN=NSP2 PE=3 SV=1 +MAELACFVSFSLTEDKVKWFPINKKAVKTMLCAKVEKDQRSNYYDTILYGVAPPPEFRNRFKTTERHGLDYESDQYSEVVNLLADVLNMVSMPTEKFQFDIVKTVVQVRHLENLLLRIKDMDDILNENVKLRVKAVMIACNLVNETETTPLTESNDIVYQDSYFTITRLDYSSHKLLPLMTEEYKITINTKTDIPERDQTAFAAYIRYNFNKFAAISHGKRHWRLIPHSQLMAHAERLDRKIKSDKKHGRQFAYDDGDMAFVHPGWKACIGQLCGGTTFDVAKTSLYSVKTSKTVRTATNKIESDLISMVGN +>tr|A0A2N9NG79|A0A2N9NG79_9BACT Glutaredoxin OS=Verrucomicrobia bacterium OX=2026799 GN=SBV1_130006 PE=4 SV=1 +MNKPKIVAYLKPTCGWSQGVRAIFRKYDLPYEDRDIINDPAQRQEMIERSGQMLSPCVEIDGSMLADISGEEVEAYLLAHNLVTPSNREADAPIDQPCAHEAPPSAPLHFRR +>tr|A0A1X0RRK1|A0A1X0RRK1_RHIZD Chromatin modification-related protein EAF3 OS=Rhizopus microsporus OX=58291 GN=BCV71DRAFT_229219 PE=3 SV=1 +MYFVHYKGWKQTWDEWITEDRVLKYTESNRQKQKQLQEMNARLKTSRTPTRESTEPRGRKRYRDSDIERQRAEEETRRTEFKLIMPETLKGILVDDWENITKNRLVLNIPGEYTVDRILDEYKNQYPVKDDVLDEFIKGIRLYFNKTLGSLLLYRNEYDQYTELCADKEPSSIYGAEHLLRLFVEMPNLLAQASIDAETQNELKSRFEDFLNYMQEHEKDYFLNDYQTKA +>tr|A0A1C3EUB3|A0A1C3EUB3_9PLAN Translational regulator CsrA OS=Planctopirus hydrillae OX=1841610 GN=csrA PE=3 SV=1 +MLVLSRKAGESLLIGQGLLGEGIQVTVVAVQGNRVRLGITAPAEVSIRRQEIVLDLPEVAGSEEPCAMSSESHSRTPEFV +>tr|A0A810P5E5|A0A810P5E5_9MYCO Uncharacterized protein OS=Mycolicibacterium sp. TY81 OX=2759662 GN=MTY81_06740 PE=4 SV=1 +MPSTNWFERLTGFTEVDYESTCSRLSVDGNQLVSLVNGARYGTGTLRTPTLAELRATVTISDRGRTTVTCTVGDVGAMHGEPEFEGALFQVASQFNLLEMTHYTVTPEDGVTRYAHDHTQGPACAIAAGAGTIYRNYFAPVNGVPGQTADRQLNMLERLGLSLSTHLGRPISSLWRMENGYALCTADGLAAISDYLAAASPQTRDSLAGELAIGLHLGVEVTGVEPLPRQAVSQAYCSALPVAYSDVPQRYWEGFARLVLDSAYEATLLAAAESAANGWSNIVLLTRLGGGVFGNDDEWIDTAILRALKIVECAGLDVRLVSYGSVHPNMRGIADRWAR +>tr|A0A2T0Q272|A0A2T0Q272_9ACTN Acetylornithine deacetylase/succinyl-diaminopimelate desuccinylase-like protein OS=Allonocardiopsis opalescens OX=1144618 GN=CLV72_105245 PE=4 SV=1 +MAEVSGEGVEGGRAEVEVVDLCRELIRIDTSNPGDHSGPGERVAAEYVAAKLDEVGLATQIFESHPRRTSVVARMEGEDPSRPPLLLHGHLDVVPADAADWSRDPFGGEIADGCVWGRGAVDMKDMDAMILAMVRERMRTGRRPPRDIVLAFLADEEAGGYFGAKWLVDHHPELFADCTEAVGEVGGFSFTVRDDLRLYLIETAEKGIAWMRLTATGTAGHGSMVNDDNAVTELAEAVARLGRHRFPLRLTKTVRAFLEEVCDAFGIEFDPDDEEAVAETVARLGPIATMIGATLRNSVNPTMLRAGYKTNVIPQTATAEVDGRFLPGLEDEYFATIDELLGPKVTRDSERQLPAVETDFSGALVAAMADALKAEDPAARAVPYCLSGGTDAKAFAELGIKGYGFAPLKLPPELNFAGMFHGIDERVPVDGLQFGVRVLNRFVDNC +>tr|W1INK5|W1INK5_9GAMM Uncharacterized protein OS=Xenorhabdus cabanillasii JM26 OX=1427517 GN=XCR1_1340019 PE=4 SV=1 +MTEAQRTAFTVASGHFDITFLYLVCVGFFLAILFLWAAWAAVDVWNGWANEKVRNQTISQFAMRTAILLVVAVWMFAS +>tr|A0A520JI48|A0A520JI48_SPHSX PIN domain-containing protein OS=Sphingomonas sp. OX=28214 GN=EOP67_16805 PE=4 SV=1 +MAGRMTTVVDASVAVKFSVEELGSAAASDLIRSEPRLVAPDLILTEAANAYWAMVRGSRLLMIHAERNLDDLPRYFDRLYPTGTLIQQALRIAFHLRHPVYDCVYLALATKLECRLITADRKFHLKAADHYPIDLLPFETD +>tr|A0A2R7W9K3|A0A2R7W9K3_ONCFA Abhydrolase_2 domain-containing protein OS=Oncopeltus fasciatus OX=7536 GN=OFAS_OFAS008407 PE=3 SV=1 +MSGLESIRVGRAIEVEYLRLRPEAGRERTAGRFSSNMDRRYKVSGTHKFSNIILCVMVLKAWFSVSKDLIVNQQHVNKAIDLLDSIIQVEKENGIPLNRMIIGGISQGGMLAIDAVYRSYPKVAGCIAVSSVILDSNIFEAAKTRSKNPPLLMCVGSEDNAIGVELARESFQKIFKAGVPAEWKEFLGAHHELTVEELELIYERVKQLIPEKNL +>tr|M4H1V8|M4H1V8_PLEBA Putative secretory peptide-20 OS=Pleurobrachia bachei OX=34499 PE=2 SV=1 +MRCFLILISLLALSSATAAWNPVVRDTFIPFDLESTPLQIKTDSTAGSEEQIWVRTYTADGSLVGGVGLKFTSSIQYAIGFCNNNLWVSLPVQPPEEVDKVWTIRKNTTAVSIECNGVEVLNYQLSESSDTRCVSTWGGDVVEKIMFHSSLDTASDSYRTAAVWCPVVRDTLIPFDLESTPLQIKTDLTAGSEEQITVDTYNIGSSFIGGVGVKFTSPIQYGISFCTTSWTVLPVQPGDEVDKIWTIRKTTTAVRIECNGLEVLNYQFSDSSASSCVSRWGGDVVEKILFYAYDTASDSYRVKPVKSVCPEFTVDGSVQESWNDTDIGQTVTINCQRKHVLDGSSERTCNAEGVWDSDAPLCRKLSEFRWEIEKLGVMGLRVFPYYS +>tr|A1JIE2|A1JIE2_YERE8 Putative membrane protein OS=Yersinia enterocolitica serotype O:8 / biotype 1B (strain NCTC 13174 / 8081) OX=393305 GN=YE0246 PE=3 SV=1 +MPAFVISLWRQIVLSSPLFVLLALGYGLVRFGQWPSTITDGLTRFVFSLALPAMLFRMMCDFSERPAVDARLLIAFFGSCLVVFVIGRIIASRVFHLDGVSGSVFALGGIFSNNVMLGLPIATIMLGEKSIPAVALVLVFNGLILWTLVTISVEWARNGSPTLAGFAKTARSVLTNPLIIGIISGTLFSLTGLQLPQFIDQPVTMLGQVAPPLSLIVLGMGLAEYRVSEGWQISSAICFLKLIVQPMVIWALAWAMNLPALETQVVVLLGSMATGVNVYLMSRQFNVLTGPAAASLVMSTVLAAVTTPLILTIIGVGMS +>tr|D5EZ65|D5EZ65_PRER2 Uncharacterized protein OS=Prevotella ruminicola (strain ATCC 19189 / JCM 8958 / 23) OX=264731 GN=PRU_0802 PE=4 SV=1 +MKATELAQQQIERAIRKIADKFPPTQEANVMTDIHFRVTQDTGELMAFDDNDEEINRCIIEDWIGDTSDNFFEEIPAVFRKCLDKMKDTIENMSILKPFSFVLENEDKESVAELYLVDDETVIFDPELMKGLDEDLDAFLKQLLAD +>tr|S9WGT7|S9WGT7_CAMFR Uncharacterized protein OS=Camelus ferus OX=419612 GN=CB1_001879002 PE=3 SV=1 +MASNDTFYITTENSEMSTNIVELRQIHMETIPVETIPVETIPVETMALESIEGCEDISGSWVHGGHHQLPLMALQPLVISSPNPGDHDQEMIMVQTQEEVVGYFESDNLQAGNVENQILIPVDDDAFQQTLASLAASASSSAHSHSRTRSSQGKKPSGKKSCAGSKAEAASSSKVVTKKWEQKQVSIKTLEGEFSVTMWSANNNTDLKTGQTEEHPAPNFSENMTEKKLPPEGIPGVDFSDPKQLAEFTRMKPQNTKDETPRTIACPHKGCMKMFRDNSAMRKHLHTHGPRVHVCAECGKAFVESSKLKRHQLVHTGEKPFQCTFEGCGKRFSLDFNLRTHVRIHTGEKPFVCPFDCCNRKFAQSTNLKSHILTHVKNKKSQ +>tr|A0A183M848|A0A183M848_9TREM Uncharacterized protein OS=Schistosoma margrebowiei OX=48269 GN=SMRZ_LOCUS12223 PE=4 SV=1 +MMVGGSQQETLDPGFLLLGTRHQGVPVILKKLVLPGGFDLVSLSFTVID +>tr|K9U3M1|K9U3M1_CHRTP Sulfate ABC transporter, inner membrane subunit CysW OS=Chroococcidiopsis thermalis (strain PCC 7203) OX=251229 GN=Chro_3349 PE=4 SV=1 +MNSRMNNSKAKSREQKSWVPTILIVVAIAYVSLVLYIPALNVFIQAFSRGVGPFFANLTRPEFLHAVQLTVMLAAIALPLNTVFGLCAAWALTRHRFPGRAFVLSLIDLPFSISPVVAGLMIVLLYGRQGWFGGWLQDRGLNIIFAFPGMVLATAFVSMPFVAREVIPVLEELGSDQEEAAKTLGANDWQIFWRVTLPNIRWGLLYGLILTNARAMGEFGAVSVVSGNISGKTQSLPLFVEDAYKQYETEAAYSAAVLLALLAVVTLVLKEILERKTRIKDVE +>tr|A0A090PRU2|A0A090PRU2_NONUL Uncharacterized protein OS=Nonlabens ulvanivorans OX=906888 GN=JCM19298_2278 PE=4 SV=1 +MVIMKRIIYILCAVVGFTAAAQQTPAPATNKSYTIMNATAHIGNGELIENSVIVIENGKITTVADATTVKMQPKGEVINASGLHVYPGIIACNTTLGLVEIDAVKASDDDREIGTFNPHIRSLIAYNAESRVVETMRLMVFLLLK +>tr|A0A4S0ZDT7|A0A4S0ZDT7_9BACT NAD-dependent succinate-semialdehyde dehydrogenase (Fragment) OS=bacterium M00.F.Ca.ET.156.01.1.1 OX=2563902 GN=EN799_58250 PE=3 SV=1 +MPLCLPMIRRLKSPHLFGAIDRLPALGRPVGNKTFEVVNPSTGEVLAELPDMGVEETRAAVDKAYVAQSGWAALTARERSDVLWRWHQLIIDHAGDLAAILTAEMGKPLAEAISEVSHAAAYLQWYAEEANRVYGETISAPSTDRRMLVIKQPIGVVGTITPWNFPASMVARKISPALAAGCTIVLKPAEQTPLVAGAMFALAHQAGFPDGVVNLIYASEGDRVGRELCTNSKIRKISFTGSTEVGRLLMRQCSDQIKKVSLELGGNAPFIIFDDADIDGAVDGAVQAKFRNAGQTCVSANRIYVQSSVHDEFVKKFVERIRHLSVGDGFDAGVDIGPLIDKHALAKIESHIADAIAKGGTIRCGGQRIGKNGTFFEPTVLTEISSVMAVAQEETFGPLAPIIRFNDAD +>tr|A0A5P2QPP3|A0A5P2QPP3_9RHOB Uncharacterized protein OS=Paracoccus yeei OX=147645 GN=FOB51_08200 PE=4 SV=1 +MQIVGICRFSLLGRGDWAAFRTIPQDKADENAEAVEARKASIFAPERLERRFTTFEHLTLASIRAQTDPDFTFVVLASELMPQPYRDRLAALCAAVPQVVLRFFPVIHAGTAQGQVFKELGIDYRQTLQFRLDDDDALCNVYIRRMRQAAGGIVPNAFPFAASFRDVLFCSVGGDHAGVYQWRSPFFSAGVALFHPSASIFGFGHYGMAERFTSISIPGHMSLVTHNGMNDTTLDEGRIRRQKMNLIDDEAATKAVERHFPYLTPEARAVAGLPV +>tr|A0A252DKQ5|A0A252DKQ5_9NOSO DNA polymerase III subunit gamma/tau OS=Nostoc sp. RF31YmG OX=1932668 GN=dnaX PE=3 SV=1 +MSYEPLHHKYRPKSFAELVGQEAIATTLTNAICSSKIAPAYLFTGPRGTGKTSSARILAKSLNCLGSGKPTAEPCGVCDVCQGITKGYSLDVIEIDAASNTGVDNIREIIEKAQFAPVQCRYKVYVIDECLTGDSLVLTDEGLLRIDDPNIKNKRVLSYNDSSEKWEFKQVVRWLDQGERQTLVIKTTKGEIRCTGNHLVRTDRGWVAAKDVKEGVKILSPVNVDAAASFTNLATVESVYLAGVEQVYDIEVEDNHNFVANGLLVHNCHMLSTQAFNALLKTLEEPPKHVVFVLATTDPQRVLPTIISRCQRFDFRRINLEAMVKHLSAIAHKENIQISLDAVTLVAQIAQGGLRDAESLLDQLALLSGEIIPDRVWDLVGSVSERDLLGLLDAIAQDHAEAVLDCTRNILNRGREPLTILQNLAACYRDLLIAKTAPNRHDLVACTQQTWQAFIGLAQKLDITTILAGQKHLREAEVQIKNTTQPRLWLEVTLLGLLPSANIPVQAASVAPRVSAPVVSPSQPPITSSPPAVASPPVSPLSPPANNISALKAVPSQPPETITVSQPPEEPQPLHPPVQPVTPAASPPVPELIEDTEADFTQVWQQVLSNIQQIPRRELLRQMCHLMEFDGAYARVGVKSAWYKKVQTDLQMITAAFQQTFQREVKVSLEIGNPSTSTSAKKESSANGSSKLKQPSPPSYDKQIPPPAPVQPTPTPAPTKTEPTPKGNSGVQTLPPPTPTTSGDWETDEVAIAAQRLAEFFQGQIIRLSDDAAAFSETMVGSDLLDESDLDDE +>tr|A0A0B2USS7|A0A0B2USS7_TOXCA Cullin-4B OS=Toxocara canis OX=6265 GN=Cul4b PE=3 SV=1 +MFRSTEEPGLILMEACDYSRKYLVEPPSNANFSSPVVSGRDLDGWDVGLEIFRDVIMNNDRVRMRTTSGIIKLIETEREGAQIDRQLVKSLLRMMSSLGIYQAVFERRFLETTTALYETEGRNLSRDLEVPAYLLHVKRRLDEESNRVDYYLDASTRKELMAVAEKSLIVDHMEAFIDKGVESMLSGNHCSDLKLMYSLLARTKNGLVLLKSAFAAYIKVCTDHIFASLMFTLLPGVESMLSGNHCSDLKLMYSLLARTKNGLVLLKSAFAAYIKVCTDHIGCGVESMLSGNHCSDLKLMYSLLARTKNGLVLLKSAFAAYIKKVGQAMVMDSARDKTLVADLLVMKSKLDNMLKSCFRNNEKFVQAEKDAFDYFINTRANKPAELVAKYLDSKLRSGNKESTDEELENLMDEVIVIFRFIQGKDVFEAFYKKDLAKRLLLGRSASVDAEKSMLSKLKQECGAGFTTKLEGMFKDMELSKDLAVAFKQYLDHGGPDRALQHSDGHIEFSVNVLTMGHWPSYEPMDVVIPPYLAEYQELFKRFYLSKHSGRKLQWQHSLAQVLLRAHFKPTVVKELQVSMFQALVLLLFNEKTEWAVEEISNATKIETNELERTLQSLACGKLRVLLKTPRGKDIKPKDRLTFNEECNDRLYRIRICQVQMKETAEEHSQTEEQIFQDRQYQIDAAIVRIMKTRKSLAHQLLISELFKQLRFSVKPIDLKKRIESLIEREYMCRDKDDCNTYNYVA +>tr|A0A3R9XIK9|A0A3R9XIK9_9ACTN Uncharacterized protein OS=Streptomyces sp. WAC05374 OX=2487420 GN=E2B92_01640 PE=4 SV=1 +MDRSVWDGVERLRQWLDAKAAPATAGDVRLLRVLKIGEEYGEVAEALHGALGANPRKGASHTWQDVEQELCDVIVTSMVALATINGDGARLLDERVRHLVRRALPDEPA +>tr|A0A0E1UTW8|A0A0E1UTW8_BURPE ATP-dependent endonuclease, OLD family OS=Burkholderia pseudomallei Pakistan 9 OX=595498 GN=BUH_4320 PE=4 SV=1 +MRLCRFEVRNFKCVEYASLEWEDLLVLIGENNAGKSTILSAIAAFLSGSAIKDPSLFRRHLTDVANAIELIGHFDGLSDEETTQVAVRGRMNGDRWVLKKRYWFEAGEDGESGGWKEALYSFSGAERFEGWPEADATWNAFPEEYQPLIAALPNRGVRPTNAARETLREAVRRQRPDLVAFGAPNWVPNPGGGGNWKSNANSILPRPILVRAVQEASDETNAKDASTYGKLVNLIVERSLAQRPEMVRLQEALDEVLALFRPDEANPQRQAQEVRDLQDRINRSLNEVVGGQALIRTEAPEIRSMVLPSTSLVIRDVEAGIDTDVGHQGHGLQRTLVITLLQSLADAQAQVVPGAALAPVRANILLIEEPELYLHPQMERLMRDVLYRLAEQASTQVACCTHSPVFLDIATKYRAIIRMFKTPQGDAAAHQVTQDLFPGQPLQADRQRLNTVARFDPTVNELFFAKRVVLMEEFSAIAAFERGAELMGLFERHLRLRREVSLVDCNGKSNIPAFQRVLNAFNIPYRVLHDEDPGNPAEQANNQNILALLVAGANQRHLVAPDLEGLLGYQAPRKNKPFLAVSTVEDLHAQGQLPAAFREAVCMAYFGQAVEPLPPP +>tr|A0A5A7S8C7|A0A5A7S8C7_9NOCA TetR/AcrR family transcriptional regulator OS=Rhodococcus cavernicola OX=2495913 GN=FOY51_19370 PE=4 SV=1 +MPRSGAETRSHLLKVAGELFYAKGIRATGVDLVAVEAGVAPTTLYRQFASKDDLVGSYVEGVDLAFRDRFASAIAAAGAEPRDQIFAIFDDAIAQAAQDHFRGCPAQMALAEYPDPASSAHANAVTAKSWLLNSIAAVTERLDVDDSVALARQLFVVWEGMLASTMSMGSTGPAQQSRRIVEALLPGE +>tr|A0A3A5ZLU0|A0A3A5ZLU0_9BACE Inorganic phosphate transporter OS=Bacteroides sp. AF25-38AC OX=2292924 GN=DWY55_04125 PE=4 SV=1 +MELLVIIIVLALIFDYINGFHDAANSIATIVSTKVLTPFQAVIWAAFFNFVAFFIAKCVIGGFGIANTVSKTVMEPYITLPIILAGVIAAIAWNLFTWWKGIPSSSSHTLIGGFAGAAIMAHGFEAIQLSIILKIAAFIFLAPLIGMVVAFGFTLLVLYICRRAHPHTAEVWFKKLQLVSSALFSIGHGLNDSQKVMGIIAAAMIAGHSEGLGMGINSIDDLPDWVAFSCFTAISLGTMSGGWKIVKTMGTKITKVTPLEGVIAETAGAFTLYLTEYLKIPVSTTHTITGAIIGVGATKRLSAVRWGVTKSLMTAWVLTIPVSALLAAGIYCIVSLF +>tr|D6CL53|D6CL53_THIA3 UDP-N-acetylglucosamine 1-carboxyvinyltransferase OS=Thiomonas arsenitoxydans (strain DSM 22701 / CIP 110005 / 3As) OX=426114 GN=murA PE=3 SV=1 +MDKLRITGQRTLQGVVQASGAKNAALPLIAAALLTAETVQLNNAPQLMDVRTLAKLLRSLGAQVEQDGGQIRLSAAAVNHYEASYELVKTMRASVLVLGPLLARFGQARVSLPGGCAIGARPVDQHIKGLQALGADIAVEHGYIVARVATPSGRLRGARITTDMVTVTGTENLMMAATLAEGETLIDNAAREPEIVDLANLLRAMGAQIRGDGTSQIRIQGVDALHGASHRIIPDRIEVGTFLCAALAARGDVTVQGAEPAHQDALLDKLREAGAQIDTGADWVRLRADALPGGRPRAVSVRTTEYPGFATDMQAQFMAVNCLADGAARMTETIFENRFMHVQELMRLGAQIDIDGHTCVVHGVPQLSGATVMATDLRASAGLVVAALAAEGETVIDRIYHLDRGYDAMEVKLRGLGAQIERISDRISGK +>tr|A0A150TBH6|A0A150TBH6_SORCE Uncharacterized protein OS=Sorangium cellulosum OX=56 GN=BE18_01125 PE=4 SV=1 +MKTHDGYVALLASGGKRKLRANSLLAYGDEESRFKAAVLFHEAAEIERRALSLLEDAAPETRLRAAVERCACLVMGLDVVEAARAFREVEEASAAVPQETANAHRDRLDPLYFAARQDLTELLKRAPVLVSSRFRWEEIAETDRSRARAELDALLQRFPGESTFHLVDARAALDERRFDDLGRAVRRAHRLCPDNPLLRAYMLLVTAQSIAYPGSATTREEAEAELDTAYQELNREPADGVVYLGFMTASLAAFLAAFYAGEDAAEAHGRRARWAAEIAAQRRSIISEDIGKYIEAAGPLIELLTTQPQMLTAIIENTLREALLNSDVGRASGESLQQPKAASLIRGVISQASRWLTPSAELAELSELALAA +>tr|H3BNA2|H3BNA2_HUMAN Coronin (Fragment) OS=Homo sapiens OX=9606 GN=CORO1A PE=1 SV=1 +MSRQVVRSSKFRHVFGQPAKADQCYEDVRVSQTTWDSGFCAVNPKFVALICEASGGGAFLVLPLGKTGRVDKNAPTVCGHTAPVLDIAWCPHNDNVIASGSEDCTVMVWEIPDGGLMLPLREPVVTLEGHTKRVGIVAWHTTAQNVLL +>tr|A0A7L4N192|A0A7L4N192_9AVES FA11 factor (Fragment) OS=Ceyx cyanopectus OX=390723 GN=F11 PE=4 SV=1 +SARTVRIVGGTDSSPGEWPWQVSLHVKLSRQRHLCGGSIISKQWILTAAHCITSLENLNIWRVYAGILKQSEINEDTPFFKVEEIIVHPQYKYAQTGYDIALMKLDKPMNFTDLQLPICLPSKEDANILYTNCWVTGWGYRKEKGRVQDILQKAAVPLMSKEECQARYRKRTIGDKVICAGYEEGGRDACK +>tr|A0A373A0Y4|A0A373A0Y4_9ACTN DUF3117 domain-containing protein OS=Kitasatospora xanthocidica OX=83382 GN=DR950_28830 PE=4 SV=1 +MAAMKPRTGDGPLEVTKEGRGIIMRVPLEGGGRLVVELTPDEAQALGEALKKACG +>tr|K9IQ04|K9IQ04_DESRO DNA polymerase subunit gamma-1 OS=Desmodus rotundus OX=9430 PE=2 SV=1 +MNRLLWKKVAGSTVVGPGPVPAPRRWASSSVSVPVSSNGQPQVRSSEGGQLRYNPLHIQMLSRGLHEQIFGLGAETPGEAAVRRSVEHLQKHGLWGQPDAPLPDVELRLPSLYGGDLDQHFRLLAQKQSLPYLEAANSLLQAQLPPRPPSWAWAEGWTRYGPAGEAEPVAIPEERALVFDVEVCLAEGMCPTLAVAISPLAWYSWCSRRLVEERYSWTSQLSPADLIPLEVPARTGSPAQRGQQEQLVVGHNVSFDRAHIREQYLVQGSLTRFLDTMSMHMAISGLSSFQRSLWMAAKQGKRKAQHDTQRAQKPRSKANGPVVSSWDWLDISSVNNLADVHSLYVGGPPLRKEPRELFVKGSMRDIRENFQDLMQYCAQDVWATYEVFQQQLPLFLERCPHPVTLAGMLEMGVSYLPVNQNWERYLAEAQSTYEELQWEMKKSLMDLANDACQLLSGERYKEDPWLWDLEWDLQEFKQKKAKKVKRKEPEATSPLPVEAAEAPGAPEDQEDPGPPSEEEESQRAVATRTCLEQLKGTTALLPKRPQHLPGHPGWYRKLCPRLDDPAWAPGPSLLSLQMRVTPKLMALTWDGFPLHFSERHGWGYLVPGRRDNLAHVPASTSPAPTGVTCPYRAIESLYSKHCLEQGKRQPEPQEAGLAEDFLLAEEWQMVEELGCLEVQAEAEVEPAEGAVAAQPPAPTGTGRPRGSQPAYHHGNGPYHDVDIPGCWFFKLPHKDGNSCNVGSPFAKDFLPKMEDGTLQAGPGGASGPRALEINKMISFWRNAHKRISSQMVVWLPRSALPRVVTRHPDYDEEGRYGAILPQVVTAGTITRRAVEPTWLTASNARPDRVGSELKAMVQAPPGYVLVGADVDSQELWIAAVLGDAHFAGMHGCTAFGWMTLQGRKSRGTDLHSKTATTVGISREHAKIFNYGRIYGAGQPFAERLLMQFNHRLTLQEAAEKAQQMYAFTKGLRRYRLSDEGEWLVRQLHIPVERTEDGFVSLRDLRKIQREASRKSRRKNWKVVAERAWTGGTESEMFNKLESIAMSDEPRTPVLGCRISRALEPSVAQGEFMTSRVNWVVQSSAVDYLHLMLVAMKWLFEEFAIDGRFCISIHDEVRYLVQEGDRYRAALALQIANLLTRCMFAYKLGLNDLPQSVAFFSAVDIDRCLRKEVTMDCETPSNPTGMERRYGIPQGEALDIYQIIELTKGSLEKRSQPGP +>tr|A0A2N8M530|A0A2N8M530_9GAMM Short chain dehydrogenase OS=Alcanivorax sp. MD8A OX=1177157 GN=A15D_00345 PE=3 SV=1 +MKTVLITGAASGLGWALAQQAFALGYRVILADMNEVLLEARVEALAARDAERVTSRVLDVTNSDAVTLLVPWLEKHGGLDLLVNNAGITHRSLAEKTAMSVFQKVMAVDWQAPVELSVACLPLLKKSRGGIINIGSMAGWMPVLGRAGYCSAKSALGQFFEVMRGEVSRYGIHILMAYPSFLDTPIEKNALGHDGKPAAHARSMVGNMRTPEWMAEQVFEAYGKGRKRLFPDRFTWFASVLWRVAPDLYQRLMLRKFASELEQ +>tr|A0A8A9J5M6|A0A8A9J5M6_SARS2 ORF1ab polyprotein OS=Severe acute respiratory syndrome coronavirus 2 OX=2697049 GN=ORF1ab PE=4 SV=1 +MESLVPGFNEKTHVQLSLPVLQVRDVLVRGFGDSVEEVLSEARQHLKDGTCGLVEVEKGVLPQLEQPYVFIKRSDARTAPHGHVMVELVAELEGIQYGRSGETLGVLVPHVGEIPVAYRKVLLRKNGNKGAGGHSYGADLKSFDLGDELGTDPYEDFQENWNTKHSSGVTRELMRELNGGAYTRYVDNNFCGPDGYPLECIKDLLARAGKASCTLSEQLDFIDTKRGVYCCREHEHEIAWYTERSEKSYELQTPFEIKLAKKFDTFNGECPNFVFPLNSIIKTIQPRVEKKKLDGFMGRIRSVYPVASPNECNQMCLSTLMKCDHCGETSWQTGDFVKATCEFCGTENLTKEGATTCGYLPQNAVVKIYCPACHNSEVGPEHSLAEYHNESGLKTILRKGGRTIAFGGCVFSYVGCHNKCAYWVPRASANIGCNHTGVVGEGSEGLNDNLLEILQKEKVNINIVGDFKLNEEIAIILASFSASTSAFVETVKGLDYKAFKQIVESCGNFKVTKGKAKKGAWNIGEQKSILSPLYAFASEAARVVRSIFSRTLETAQNSVRVLQKAAITILDGISQYSLRLIDAMMFTSDLATNNLVVMAYITGGVVQLTSQWLTNIFGTVYEKLKPVLDWLEEKFKEGVEFLRDGWEIVKFISTCACEIVGGQIVTCAKEIKESVQTFFKLVNKFLALCADSIIIGGAKLKALNLGETFVTHSKGLYRKCVKSREETGLLMPLKAPKEIIFLEGETLPTEVLTEEVVLKTGDLQPLEQPTSEAVEAPLVGTPVCINGLMLLEIKDTEKYCALAPNMMVTNNTFTLKGGAPTKVTFGDDTVIEVQGYKSVNITFELDERIDKVLNEKCSAYTVELGTEVNEFACVVADAVIKTLQPVSELLTPLGIDLDEWSMATYYLFDESGEFKLASHMYCSFYPPDEDEEEGDCEEEEFEPSTQYEYGTEDDYQGKPLEFGATSAALQPEEEQEEDWLDDDSQQTVGQQDGSEDNQTTTIQTIVEVQPQLEMELTPVVQTIEVNSFSGYLKLTDNVYIKNADIVEEAKKVKPTVVVNAANVYLKHGGGVAGALNKATNNAMQVESDDYIATNGPLKVGGSCVLSGHNLAKHCLHVVGPNVNKGEDIQLLKSAYENFNQHEVLLAPLLSAGIFGADPIHSLRVCVDTVRTNVYLAVFDKNLYDKLVSSFLEMKSEKQVEQKIAEIPKEEVKPFITESKPSVEQRKQDDKKIKACVEEVTTTLEETKFLTENLLLYIDINGNLHPDSATLVSDIDITFLKKDAPYIVGDVVQEGVLTAVVIPTKKAGGTTEMLAKALRKVPTDNYITTYPGQGLNGYTVEEAKTVLKKCKSAFYILPSIISNEKQEILGTVSWNLREMLAHAEETRKLMPVCVETKAIVSTIQRKYKGIKIQEGVVDYGARFYFYTSKTTVASLINTLNDLNETLVTMPLGYVTHGLNLEEAARYMRSLKVPATVSVSSPDAVTAYNGYLTSSSKTPEEHFIETISLAGSYKDWSYSGQSTQLGIEFLKRGDKSVYYTSNPTTFHLDGEVITFDNLKTLLSLREVRIIKVFTTVDNINLHTQVVDMSMTYGQQFGPTYLDGADVTKIKPHNSHEGKTFYVLPNDDTLRVEAFEYYHTTDPSFLGRYMSALNHTKKWKYPQVNGLTSIKWADNNCYLATALLTLQQIELKFNPPALQDAYYRARAGEAANFCALILAYCNKTVGELGDVRETMSYLFQHANLDSCKRVLNVVCKTCGQQQTTLKGVEAVMYMGTLSYEQFKKGVQIPCTCGKQATKYLVQQESPFVMMSAPPAQYELKHGTFTCASEYTGNYQCGHYKHITSKETLYCIDGALLTKSSEYKGPITDVFYKENSYTTTIKPVTYKLDGVVCTEIDPKLDNYYKKDNSYFTEQPIDLVPNQPYPNASFDNFKFVCDNIKFADDLNQLTGYKKPASRELKVTFFPDLNGDVVAIDYKHYTPSFKKGAKLLHKPIVWHVNNATNKATYKPNTWCIRCLWSTKPVETSNSFDVLKSEDAQGMDNLACEDLKPVSEEVVENPTIQKDVLECNVKTTEVVGDIILKPANNSLKITEEVGHTDLMAAYVDNSSLTIKKPNELSRVLGLKTLATHGLAAVNSVPWDTIANYAKPFLNKVVSTTTNIVTRCLNRVCTNYMPYFFTLLLQLCTFTRSTNSRIKASMPTTIAKNTVKSVGKFCLEASFNYLKSPNFSKLINIIIWFLLLSVCLGSLIYSTAALGVLMSNLGMPSYCTGYREGYLNSTNVTIATYCTGSIPCSVCLSGLDSLDTYPSLETIQITISSFKWDLTAFGLVAEWFLAYILFTRFFYVLGLAAIMQLFFSYFAVHFISNSWLMWLIINLVQMAPISAMVRMYIFFASFYYVWKSYVHVVDGCNSSTCMMCYKRNRATRVECTTIVNGVRRSFYVYANGGKGFCKLHNWNCVNCDTFCAGSTFISDEVARDLSLQFKRPINPTDQSSYIVDSVTVKNGSIHLYFDKAGQKTYERHSLSHFVNLDNLRANNTKGSLPINVIVFDGKSKCEESSAKSASVYYSQLMCQPILLLDQALVSDVGDSAEVAVKMFDAYVNTFSSTFNVPMEKLKTLVATAEAELAKNVSLDNVLSTFISAARQGFVDSDVETKDVVECLKLSHQSDIEVTGDSCNNYMLTYNKVENMTPRDLGACIDCSARHINAQVAKSHNIALIWNVKDFMSLSEQLRKQIRSAAKKNNLPFKLTCATTRQVVNVVTTKIALKGGKIVNNWLKQLIKVTLVFLFVAAIFYLITPVHVMSKHTDFSSEIIGYKAIDGGVTRDIASTDTCFANKHADFDTWFSQRGGSYTNDKACPLIAAVITREVGFVVPGLPGTILRTTNGDFLHFLPRVFSAVGNICYTPSKLIEYTDFATSACVLAAECTIFKDASGKPVPYCYDTNVLEGSVAYESLRPDTRYVLMDGSIIQFPNTYLEGSVRVVTTFDSEYCRHGTCERSEAGVCVSTSGRWVLNNDYYRSLPGVFCGVDAVNLLTNMFTPLIQPIGALDISASIVAGGIVAIVVTCLAYYFMRFRRAFGEYSHVVAFNTLLFLMSFTVLCLTPVYSFLPGVYSVIYLYLTFYLTNDVSFLAHIQWMVMFTPLVPFWITIAYIICISTKHFYWFFSNYLKRRVVFNGVSFSTFEEAALCTFLLNKEMYLKLRSDVLLPLTQYNRYLALYNKYKYFSGAMDTTSYREAACCHLAKALNDFSNSGSDVLYQPPQTSITSAVLQSGFRKMAFPSGKVEGCMVQVTCGTTTLNGLWLDDVVYCPRHVICTSEDMLNPNYEDLLIRKSNHNFLVQAGNVQLRVIGHSMQNCVLKLKVDTANPKTPKYKFVRIQPGQTFSVLACYNGSPSGVYQCAMRPNFTIKGSFLNGSCGSVGFNIDYDCVSFCYMHHMELPTGVHAGTDLEGNFYGPFVDRQTAQAAGTDTTITVNVLAWLYAAVINGDRWFLNRFTTTLNDFNLVAMKYNYEPLTQDHVDILGPLSAQTGIAVLDMCASLKELLQNGMNGRTILGSALLEDEFTPFDVVRQCSGVTFQSAVKRTIKGTHHWLLLTILTSLLVLVQSTQWSLFFFLYENAFLPFAMGIIAMSAFAMMFVKHKHAFLCLFLLPSLAAVAYFNMVYMPASWVMRIMTWLDMVDTSLSGFKLKDCVMYASAVVLLILMTARTVYDDGARRVWTLMNVLTLVYKVYYGNALDQAISMWALIISVTSNYSGVVTTVMFLARGIVFMCVEYCPIFFITGNTLQCIMLVYCFLGYFCTCYFGLFCLLNRYFRLTLGVYDYLVSTQEFRYMNSQGLLPPKNSIDAFKLNIKLLGVGGKPCIKVATVQSKMSDVKCTSVVLLSVLQQLRVESSSKLWAQCVQLHNDILLAKDTTEAFEKMVSLLSVLLSMQGAVDINKLCEEMLDNRATLQAIASEFSSLPSYAAFATAQEAYEQAVANGDSEVVLKKLKKSLNVAKSEFDRDAAMQRKLEKMADQAMTQMYKQARSEDKRAKVTSAMQTMLFTMLRKLDNDALNNIINNARDGCVPLNIIPLTTAAKLMVVIPDYNTYKNTCDGTTFTYASALWEIQQVVDADSKIVQLSEISMDNSPNLAWPLIVTALRANSAVKLQNNELSPVALRQMSCAAGTTQTACTDDNALAYYNTTKGGRFVLALLSDLQDLKWARFPKSDGTGTIYTELEPPCRFVTDTPKGPKVKYLYFIKGLNNLNRGMVLGSLAATVRLQAGNATEVPANSTVLSFCAFAVDAAKAYKDYLASGGQPITNCVKMLCTHTGTGQAITVTPEANMDQESFGGASCCLYCRCHIDHPNPKGFCDLKGKYVQIPTTCANDPVGFTLKNTVCTVCGMWKGYGCSCDQLREPMLQSADAQSFLNRVCGVSAARLTPCGTGTSTDVVYRAFDIYNDKVAGFAKFLKTNCCRFQEKDEDDNLIDSYFVVKRHTFSNYQHEETIYNLLKDCPAVAKHDFFKFRIDGDMVPHISRQRLTKYTMADLVYALRHFDEGNCDTLKEILVTYNCCDDDYFNKKDWYDFVENPDILRVYANLGERVRQALLKTVQFCDAMRNAGIVGVLTLDNQDLNGNWYDFGDFIQTTPGSGVPVVDSYYSLLMPILTLTRALTAESHVDTDLTKPYIKWDLLKYDFTEERLKLFDRYFKYWDQTYHPNCVNCLDDRCILHCANFNVLFSTVFPLTSFGPLVRKIFVDGVPFVVSTGYHFRELGVVHNQDVNLHSSRLSFKELLVYAADPAMHAASGNLLLDKRTTCFSVAALTNNVAFQTVKPGNFNKDFYDFAVSKGFFKEGSSVELKHFFFAQDGNAAISDYDYYRYNLPTMCDIRQLLFVVEVVDKYFDCYDGGCINANQVIVNNLDKSAGFPFNKWGKARLYYDSMSYEDQDALFAYTKRNVIPTITQMNLKYAISAKNRARTVAGVSICSTMTNRQFHQKLLKSIAATRGATVVIGTSKFYGGWHNMLKTVYSDVENPHLMGWDYPKCDRAMPNMLRIMASLVLARKHTTCCSLSHRFYRLANECAQVLSEMVMCGGSLYVKPGGTSSGDATTAYANSVFNICQAVTANVNALLSTDGNKIADKYVRNLQHRLYECLYRNRDVDTDFVNEFYAYLRKHFSMMILSDDAVVCFNSTYASQGLVASIKNFKSVLYYQNNVFMSEAKCWTETDLTKGPHEFCSQHTMLVKQGDDYVYLPYPDPSRILGAGCFVDDIVKTDGTLMIERFVSLAIDAYPLTKHPNQEYADVFHLYLQYIRKLHDELTGHMLDMYSVMLTNDNTSRYWEPEFYEAMYTPHTVLQAVGACVLCNSQTSLRCGACIRRPFLCCKCCYDHVISTSHKLVLSVNPYVCNAPGCDVTDVTQLYLGGMSYYCKSHKPPISFPLCANGQVFGLYKNTCVGSDNVTDFNAIATCDWTNAGDYILANTCTERLKLFAAETLKATEETFKLSYGIATVREVLSDRELHLSWEVGKPRPPLNRNYVFTGYRVTKNSKVQIGEYTFEKGDYGDAVVYRGTTTYKLNVGDYFVLTSHTVMPLSAPTLVPQEHYVRITGLYPTLNISDEFSSNVANYQKVGMQKYSTLQGPPGTGKSHFAIGLALYYPSARIVYTACSHAAVDALCEKALKYLPIDKCSRIIPARARVECFDKFKVNSTLEQYVFCTVNALPETTADIVVFDEISMATNYDLSVVNARLRAKHYVYIGDPAQLPAPRTLLTKGTLEPEYFNSVCRLIKTIGPDMFLGTCRRCPAEIVDTVSALVYDNKLKAHKDKSAQCFKMFYKGVITHDVSSAINRPQIGVVREFLTRNPAWRKAVFISPYNSQNAVASKILGLPTQTVDSSQGSEYDYVIFTQTTETAHSCNVNRFNVAITRAKVGILCIMSDRDLYDKLQFTSLEIPRRNVATLQAENVTGLFKDCSKVITGLHPTQAPTHLSVDTKFKTEGLCVDIPGIPKDMTYRRLISMMGFKMNYQVNGYPNMFITREEAIRHVRAWIGFDVEGCHATREAVGTNLPLQLGFSTGVNLVAVPTGYVDTPNNTDFSRVSAKPPPGDQFKHLIPLMYKGLPWNVVRIKIVQMLSDTLKNLSDRVVFVLWAHGFELTSMKYFVKIGPERTCCLCDRRATCFSTASDTYACWHHSIGFDYVYNPFMIDVQQWGFTGNLQSNHDLYCQVHGNAHVASCDAIMTRCLAVHECFVKRVDWTIEYPIIGDELKINAACRKVQHMVVKAALLADKFPVLHDIGNPKAIKCVPQADVEWKFYDAQPCSDKAYKIEELFYSYATHSDKFTDGVCLFWNCNVDRYPANSIVCRFDTRVLSNLNLPGCDGGSLYVNKHAFHTPAFDKSAFVNLKQLPFFYYSDSPCESHGKQVVSDIDYVPLKSATCITRCNLGGAVCRHHANEYRLYLDAYNMMISAGFSLWVYKQFDTYNLWNTFTRLQSLENVAFNVVNKGHFDGQQGEVPVSIINNTVYTKVDGVDVELFENKTTLPVNVAFELWAKRNIKPVPEVKILNNLGVDIAANTVIWDYKRDAPAHISTIGVCSMTDIAKKPTETICAPLTVFFDGRVDGQVDLFRNARNGVLITEGSVKGLQPSVGPKQASLNGVTLIGEAVKTQFNYYKKVDGVVQQLPETYFTQSRNLQEFKPRSQMEIDFLELAMDEFIERYKLEGYAFEHIVYGDFSHSQLGGLHLLIGLAKRFRESPFELEDFIPMDSTVKNYFITDAQTGSSKCVCSVIDLLLDDFVEIIKSQDLSVVSKVVKVTIDYTEISFMLWCKDGHVETFYPKLQSSQAWQPGVAMPNLYKMQRMLLEKCDLQNYGDSATLPKGIMMNVAKYTQLCQYLNTLTLAVPYNMRVIHFGAGSDKGVAPGTAVLRQWLPTGMLLVDSDLNDFVSDADSTLIGDCATVHTANKWDLIISDMYDPKTKNVTKENDSKEGFFTYICGFIQQKLALGGSVAIKITEHSWNADLYKLMGHFAWWTAFVTNVNASSSEAFLIGCNYLGKPREQIDGYVMHANYIFWRNTNPIQLSSYSLFDMSKFPLKLRGTAVMSLKEGQINDMILSLLSKGRLIIRENNRVVISSDVLVNN +>tr|A0A2S2NUK6|A0A2S2NUK6_SCHGA Uncharacterized protein OS=Schizaphis graminum OX=13262 GN=g.56950 PE=4 SV=1 +MPYSIGSGFTRYTVGPSVRDVFGENEKIVFIIKLFAEYPAPKRSRDAFRLLSNGDIFFSTVVKNHFSGYRFLSMKNMKLCEKKYQRLSECVLEKRGSCEATSKTVKKNK +>tr|A0A438P4J0|A0A438P4J0_HELPX DEAD/DEAH box helicase OS=Helicobacter pylori OX=210 GN=ECB92_03930 PE=4 SV=1 +MELNQPPLPTEIDDDAYHKPSFNDLGLKESVLKSVYEAGFTSPSPIQEKAIPAVLQGRDVIAQAQTGTGKTAAFALPIINNLKNNHTIEALVITPTRELAMQISDEIFKLGKHTRTKTVCVYGGQSVKKQCEFIKKNPQVMIATPGRLLDHLKNERIHKFVPKVVVLDESDEMLDMGFLDDIEEIFDYLPSEAQILLFSATMPEPIKRLADKILENPIKIHIAPSNITNTDITQRFYVINEHERAEAIMRLLDTQAPKKSIVFTRTKKEADELHQFLASKNYKSTALHGDMDQRDRRASIMAFKKNDADVLVATDVASRGLDISGVSHVFNYHLPLNTESYIHRIGRTGRAGKKGMAITLVTPLEYKELLRMQKEIDSEIELFEIPTINENQIIKTLHDAKVSEGTISLYEQLTEIFEPSQLVLKLLSLQFETSKIGLNQQEIDAIQNPKEKTPKPSNKKTQHEPARSFKKGHYREKGSKTNHHSKKPKRR +>tr|A0A5D4XPJ5|A0A5D4XPJ5_9GAMM Uncharacterized protein OS=Luteimonas sp. XBU10 OX=1132694 GN=FZO89_00285 PE=4 SV=1 +MKAVAVSTVLLSSSLTAFAAMPEQVQFVGSIQHDDLTPVTFDLHLPSKQSATLKLADGSTLELVTPGGQASPDGARIRLLSPAGEIMHAATVPDPSLASTSFAYRICDGQVTYMSPAPAVVPDCGA +>tr|A0A0W0TLV5|A0A0W0TLV5_9GAMM MFS domain-containing protein OS=Legionella geestiana OX=45065 GN=Lgee_2174 PE=4 SV=1 +MHTEKNKHYMWYAWFVCALGAVFYSYEYFLRISPSVMEEALRAHFELNSAGFGKLSAFYYYAYVPMQLPVGILMDRYGPRRLLTIACMICVLGTWMFAGTSVFWVAASGRFLVGLGSAFAFVGVLKLATLWLPEDRLALVSGLATALGTIGAMLGDNILGALVDSAGWQQTVNLTAISGILLVLVLWLGLRDHPDSDEESGSIENFRQSIRDLCIIARNRQIWINGLYGCLVYLPTTVLAELWGIPYLQHAHGMTRSNADFANSLLFLGFTVGAPMMGFLADKLHRRKLPMMTGALGAVIVMSIILYMPGLTAMQINVLMVLLGLLYGAQAIVFAVGRELSPDEAAGTAMAMTNMIVMLGAMFLQPLVGYLLDWSGDYRIALSVIPLGMLIAAVLVFFLKETHAHAPQ +>tr|A0A556AMN3|A0A556AMN3_9BURK Putative glutamate--cysteine ligase 2 OS=Verticiella sediminum OX=1247510 GN=FOZ76_12590 PE=3 SV=1 +MHAIEFTPSRYNTLGIELELQLLDPRTLDLSGQAASLLEHIAGHPSADHVKPELTRAMIELNSSVHEHPAGLLAEMRELRDLVCEAGDAIGVRVAGGGAHPFTSWRDCDIHDSPRYRRLADLYGYLARQFTVFGQHIHLGVASGDAACGLIHRLSPYVPHFIALAASSPFREGEDTLFACSRLHALHSFPLAGHMPEHIRDWYQFEAHYTQMRSLGLTESLKDLYWDIRPKPELGTVELRVCDTPLTVEKACQLAAFAQALAIAVQRASAPTAAFWMAYETNRFQACRFGLHANYVTRAGERVRLIEHLRGTFEQLMPVADELGTTDLLGALREDALRLGNDARWLRARHHELRELPAVAAAAADVWRGEPAGAAQAGPGRRRVRASSEPIVHGLPLLPEGTPANLPPRLH +>tr|L7JZ93|L7JZ93_TRAHO Uncharacterized protein (Fragment) OS=Trachipleistophora hominis OX=72359 GN=THOM_0239 PE=4 SV=1 +VHPVSPSDVVGLTMLICKTMMGFMGLRERVTSSHMVGPEGHELDLGITGPKFRRDTFITDIEVFAGLFSLTMPFPEPERVKCFNKHIDRSLFVKKFDSSRCEVDMQALVLYIDDFYTACRVTSSLCKYALGFISLCMRPEYGDFGSILSDSPTSLFVELEKFKATGMGSAPACALREPSDFLLWYDRLCSLRALFVNYLTTRNGRFRGLVEMCRIAKEVEKDIEKLESEYNAYLDSQEGFVQDYFRTWGLVGGRGPLFIHSVPMIDVYQACTDKFKNKVNSLVARDDSPVVALMQNLRENGGVLPPDLVERRERFWEWQKKIKKEQKPMRVPINDLLLEFQSEDSGAFVFERQMTFMNLHQAIIERVARCWLNSSLYNDDQSMCNMQ +>tr|A0A6A1VVY6|A0A6A1VVY6_9ROSI Peptidyl-tRNA hydrolase ICT1, mitochondrial OS=Morella rubra OX=262757 GN=CJ030_MR4G021223 PE=4 SV=1 +MAIMRTTTSVILRGVVHLPSFSVSRFSALPGVGGTIGYTHRGISFGRIQCAASDSGDGRKVSARLSQVQQLLQEAEERALSADDEPTPKITIALLLRPEDVALVPYSISPVWSWKKRGKGPRGGQNSSTNSCIAWSFERVVTAKSYIGTVIGQQRFQPTFGWITDNYEAQLHFLYFWLFDWLDDSTIGSLQIIWLDHVTVNFARSGGPGGQNVNKVNTKVDMRFNVKSADWLSDRIKEKIIQMEKNRINKDGELVISSTKTRTQKGNIQDALEKLQVLKTPHCIRPYLYSVLEAIIDAASYVPPPPTEEQKKKIAKLAAIGEQKRLKSKKVLSEKKAFRRSRDSWD +>tr|A0A2D5SZF1|A0A2D5SZF1_PSEAS Methyltransferase OS=Pseudoalteromonas sp. OX=53249 GN=CMK64_03795 PE=4 SV=1 +MSVCGLCGSDELQPYHQDKRRRYLQCTQCALVIVDERDRLSPEDEKAIYDTHENSLHDEGYRRFLSRAFEPTVERVPSHSKGLDFGCGPGPLLAEMFKEVGFEMACFDLFYANEPEVLTKTYDFVTCTEVIEHLSQPGEVLAKLLSLLDAGGPLVLMTKLIIDQNRFAQWHYKNDLTHIVFFSRETFNYVAAHFDCQVEFIGNDVIVLTKSKK +>tr|A0A091NFS5|A0A091NFS5_9PASS Leucine-rich repeat-containing protein 45 (Fragment) OS=Acanthisitta chloris OX=57068 GN=N310_05272 PE=4 SV=1 +GVKLLLHGLCSNTTVKSLDLKGNNLRTVGAEALGKLLRQNKSIRSLTLEWNSLGMWEEGFSFFCQGLGANNFLQRLDLRNNQINHQGAAELAMALTQNDSLQELDLRWNNIGLLGGRALLNCLQSNRTLKKLELAGNNVPGDILKAVEQALDHNRDRETILSEAQNQVSILSKEVMSLKDEKNKQFLDLMDTVDKQKEEKARSERMSAAQISQLQEALDEHYSIVNSLKAKLQMTEAALALSEQKVHNLGELLNAMKQEQTSVAESHFKELQQQRQESADREDKLLHDLSAASEKNLLLRNQVGNQVLGREDQLFQVKQDLTNTTAELKLRAVQAEERLEMEKRRFKQSLEDMESLRVKEVDHMTQHIEASERSMQDRIQRLEAIRISLEEELSQVKAAALAERGQAEEELMKVRSQARLEEQQRLEHLEEKLRLMTESRDEAQNCCLKQKEMVAEAQARAKQCSMQADGLRRRLEELQQDLNRKEEEKVTEVNKVKVELQEQIGHLQAERTAQDGLREKIAALERQLKALSNNHREALLDKEGEMSLLLEKLRMKEAEISRMREEEAQRASFLQNAIMAYVQGSPLGTHSSRK +>tr|A0A817VJW3|A0A817VJW3_9BILA Hypothetical protein OS=Rotaria sp. Silwood1 OX=2762511 GN=CBO169_LOCUS792 PE=4 SV=1 +MAYVCSPQHCYQKNLSREKNSSDPSLVVHVNKFDIVPKVLNDYTYRTEVYLQQREKQNIDKTSSSSTSATITTWKILKYQKEMLKNDQAEIDRALSTINSIHEIFNRSASIPYNQVYSSLYGDNNKSDHLMKTFCRCQNHFRKEDDDNHIQTISSSFVNFEDTDSDLDYNEDEEEKKKTYDSGYETFKLIPIDVDLHTQKNMEEHSTNHYDIPGLVLRRGQSFSFTVTFNKDYDIEQNQLYIRLAIGPRSMISKRTQIRLLVDGTPSGNGWSAKSIPIEDDDVKTKKKNCISLQINSPSDAIIGKYTLLLEVCPSKNDDKKFLNKQDPTLFLIEADLYFLFNPWNKDDACALSSSEQINEYVMNEHGQIYLGTSNKPQPIPWYFGQFERSTLLTALTLLDKAKLPAQNRIDPSIIIRILSSKICSNPGTNNGIFPSSYDTKVYSSENHGYTSSTGIFKQYLLSNCRSVQGGCGNNWQHAAILCSLSRSLGIPCRIVTIYNAACQTDGTEDNDTHWDTKQRPLHKLNFDLICSSHVWNECWMRRHDLPNDEQDWQIVDSTPVQMCDGIRRTGPCSVSSLKNDKLSFRWDSPFIHSTINGKKSHWIVYPDGHMELLDVQENIVGTKIITRSLDNEFEPSDITKNYKNLMKTYNKYDNITERINNDVDIELKIPDNIEFGDDITFELNANNKSNEIRTIATALTISILSNNDQKLIVSHDQPVQTLNLEAEKNDHIQLKVTSKQYASYGKQENIILKYYIHSLIKETDQTFTRDDNIVFNKYDIIKPILDDDVIEIGKPVLLKILIANTLSHPINSGQIYIDGLGINQIVHVNRSFAPKESTTLHIKLYPTRIGVSRLYVTFISNNVSSSTQTIPLEIIREPIKQQHERINAQEEPLLTTNTETSAETDEKIEIPSKEDKLVTQSNISDRQDETLIHEEEQHPLVQSPSSLSSSINIADEYQDDRTSNISQPKFELSTTEDDDDDIAELNLKKNQDESSPNPNTSSSLPHDSTLSLEKDKISVDSLDIAHDRRYGTNNNQ +>tr|A0A819KK27|A0A819KK27_9BILA Hypothetical protein OS=Adineta steineri OX=433720 GN=JYZ213_LOCUS36401 PE=4 SV=1 +MELNKDNGSWIIHVTFKMGLVYMKWGRYDSAIRHFQGVLDYSSSIQSFPLEVIATFHEHLAMAYEKQRKYKEALNHWEKLLEIQTKIFEPFSIEIADTYLSMAENYLMLLEFGRVIEMWHKVKSVHLNPLSPNYNAASFLFNQMENPDTSSPEYIKTLLLQLRSHSASVKLKAQPSYISEKTEL +>tr|A0A2P1NJ72|A0A2P1NJ72_9BURK GP-PDE domain-containing protein OS=Pulveribacter suum OX=2116657 GN=C7H73_05065 PE=4 SV=1 +MKRRAVFALLAGATLAACGGGGDDLEPDQSRPIVIAHRGASGYLPEHTLGGYELAMRLGADYIEPDLQLTRDGALVAMHDETLERTTNVAALFPPRSGGYKVADFTLAEIKTLAVKPTGTGKASYPGFAPGSATPWSVPTFDEVIRLAQSSRSLVGREVGIYPEAKQADPAMEDAILKALVQGGYSARSRVFIQSFSDQTLRSMHVKAQAQGNPLPQILLGAAVMGADGVARLGVIGQAAQPVLLTFKDVASFAQGVGVVINASAYPITKAYIDQAHAVGLKVHGWTFAQPEAGAAAAEYRRYLELGMDGMFSNYPDLAVKARDQYVRERQADWGARGPAHPH +>tr|A0A7J2PPS0|A0A7J2PPS0_9ARCH Uncharacterized protein OS=archaeon OX=1906665 GN=ENH77_08385 PE=4 SV=1 +MTLRSRNESKINRFRALNNFLQNKYIILVFIGHKNQIDQTSTVIDVVDEFKIGSRYAYKLLEELESGRFIIKKAKVLKHGIYYSNYIITETAKSELREILKIITSIL +>tr|A0A6T8JG47|A0A6T8JG47_9STRA Hypothetical protein OS=Proboscia inermis OX=420281 GN=PINE0816_LOCUS10274 PE=4 SV=1 +ETGLLVDMDPSDQEKAGENLASALQGLLEEPERAIRLGKRGHAHVTERFGLEPFRREWNEIVTGAIPKGATRVSLRAAKNSANSVKQRMRTLARLLAFVAVVYQYGGEGLAVIQRKAAEHFKVIGTILRMVVALIAVMAIRYRS +>tr|A0A6P7FQQ6|A0A6P7FQQ6_DIAVI farnesol dehydrogenase-like OS=Diabrotica virgifera virgifera OX=50390 GN=LOC114332982 PE=3 SV=1 +MVLSMKRWIGKVAVVTGASSGIGAAVAKQLVEEGLLVVGLGRRKEKIESLGNRLSGKQGKLFAVKADLTKEDDIKQAFKWATENVGPISILINNAGTHIRTGLLDGDTEAWKTTINVNLLALCIATREAIQSMRKNSIDGHIIHINSFLGHNVAPLPDLDVYPATKYGVTALTETLRVELNSFNLKTKITSISPGFVDTEIIADMKNNEEFKRNVPNLLNPEDIADGIIYALSTPPHVQVHELTIKPLGEKY +>tr|A0A2G2QTX8|A0A2G2QTX8_9GAMM Heptose kinase OS=Porticoccus sp. OX=2024853 GN=COB19_03790 PE=4 SV=1 +MSCWFVDRAILSEAAAERFSSLDSVFATTGRRVTRCPISELILTEIGEKSYYVKRYSRRGKVIRRWLGRSRVRAEWENLLFFRGLGLRVPPIAAYGESGARGVLITEEVPGAIDLHSLVRQRPELLRDRNWLDQVVVQVADVAKQLHANSFAHNDLKWRNILVAGEVTPEVYLIDCPMGQTWWGPLLAYKKIKDIACLDKVAKYCLNRTVRLRFYLHYVGRDRLTAADKTFIRKVLAFFAGRE +>tr|C7GZL0|C7GZL0_9FIRM Uncharacterized protein OS=Eubacterium saphenum ATCC 49989 OX=592031 GN=GCWU000322_00425 PE=4 SV=1 +MGYDDFFMDIGALFVVLIVAFLGNGLGEFSFKYVAREVFILALLSTAGAFVWTLILAYLKYKRSNNKSK +>tr|A0A4S1VTE3|A0A4S1VTE3_ECOLX 4-aminobutyrate aminotransferase OS=Escherichia coli OX=562 GN=gabT PE=3 SV=1 +MSSNKELMQRRSQAVPRGVGQIHPIFADRAENCRVWDVEGREYLDFAGGIAVLNTGHLHPKVVAAVEAQLKKLSHTCFQVLAYEPYLELCEIMNQKVPGDFAKKTLLVTTGSEAVENAVKIARAATKRSGTIAFSGAYHGRTHYTLALTGKVNPYSAGMGLMPGHVYRALYPCPLHGISEDDAIASIHRIFKNDAAPEDIAAIVIEPVQGEGGFYAATPAFMQRLRVLCDEHGIMLIADEVQSGAGRTGTLFAMEQMGVAPDLTTFAKSIAGGFPLAGVTGRAEVMDAVAPGGLGGTYAGNPIACVAALEVLKVFEQENLLQKANDLGQKLKDGLLAIAEKHPEIGDVRGLGAMIAIELFEDGDHSKPDAKLTADIVARARDKGLILLSCGPYYNVLRILVPLTIEDAQIRQGLEIISQCFAEAKQ +>tr|A0A4U1G485|A0A4U1G485_9SPHI Methyltransferase domain-containing protein OS=Pedobacter sp. RP-1-16 OX=2572196 GN=FBD94_20505 PE=4 SV=1 +MNQELEIIRDQQQEVWNKFSAGWKKWDTLTMDFLKPVGDEMIRLLNPKGNDMVLDIASGTGEPGLTIASMLTNGKVTLTDLSADMLEIARENGADRGIKNIETIVCDVCELPFEDHTFDVISCRFGFMFFPDMLLAIKEMARVLKPGGRIATAVWNIPEKNFWVTASMGVIRKNMDIPVPPPEAPGMFRCAEAGMMSDLFKQAGLINISEKEVAGKMNCGTTDTYWNLMTDVAAPVVAALSKADQATKDKIKAEVYETINQKYADGDVVIDSSAIVIYAEK +>tr|A0A6G2IRX0|A0A6G2IRX0_STREE PTS fructose transporter subunit IIA OS=Streptococcus pneumoniae OX=1313 GN=GRB29_07185 PE=4 SV=1 +MKYLILVSHGGFAQGLKTSLAMFAEDKMDQVIALGLKNGSSVDDFAKECHQAVDHLTEEDTVIVLADIVGGSPLTTALTVLEEKGKLDTTVVLGGMNLPMALTSVVMKDDLEGDDFVAAVLPEASAALQEFKVATTTDNDEDDDI +>tr|A0A847WTI5|A0A847WTI5_9BACI Geranylgeranylglyceryl phosphate synthase family protein OS=Amphibacillus sp. OX=1872500 GN=GX972_07265 PE=4 SV=1 +KQFGSMIDWSELTTEGYVILNPEAKAYQLTNCYLPDREDVIAYAQMAEQMFNLPILYLEYSGTYGDPELVRQVKQHLNKTQLVYGGGITTLEQAKEMAQYADTIVVGNSLYDNFAEAIETVHVKE +>tr|A0A7W5HC73|A0A7W5HC73_9BURK Uncharacterized protein OS=Massilia umbonata OX=864828 GN=FHS02_002507 PE=4 SV=1 +MVHEEARPPQAARLPLPAPVVAQEIASPPQAAELPLPLPVVVHEMALPPHAAALPVPLPVVVQDIASPPHAASLPAPLPVVVQERARPPHAALLPTPLPVVVQEIARPPQSAWLPAPLPVDAQLIAIPPHAARFPGPEPVVMHDIARPPHAAQLPGPLPVVVQVAARPPQAA +>tr|A0A085DW41|A0A085DW41_9GAMM Uncharacterized protein OS=Halomonas sp. SUBG004 OX=1485007 GN=DK37_25465 PE=3 SV=1 +MSLHQDLIERDRKVTFHASTHLRDFAHGDAPGRVITGGKGIHIVDKDGREFIDGFAGLYCVNIGYGRTEVAEAIYKQALELSYYHTYVGHSNEPQIELSERVLKIAGLNMSKVYYGMSGSDANETQLKIVRYYNNVLGRPQKKKVISRMRGYHGSGIASGSLTGLKAFHDHFDLPIDTIRHTEAPHYYLRAAEQHGLTELEFSAYCADKLEAMILEEGPDTVAAFIGEPVLGTGGIVPPPEGYWEAIQPVLDKYDVLLIADEVVCGFGRTGSDFGSHHYNMKPDLITIAKGLTSAYQPLSGVIVGDKVWKVLEQGTGEYGPIGHGWTYSGHALGCAAGLANLDIIERENLVGNAAETGAYFQQQLKATFEGHPLLGDVRGVGLMAALEFSPDAKQRLHFDPTLKVGPRVAAAAMEENLIARAMPQGDILGFAPPLTINRGEVDEMIGRAKRAIDRVTDELVRAGDLKTGQQEAAFTI +>tr|A0A6A3RIU8|A0A6A3RIU8_9STRA Uncharacterized protein OS=Phytophthora fragariae OX=53985 GN=PF001_g20766 PE=4 SV=1 +MANLIKPITSGHDLIALAAKCDLTTDAVLDSTEVTKPLPHDKTYLILQRPADMDIGHWTCVHNGKYFDSMGEGPPTK +>tr|A0A2A2IY53|A0A2A2IY53_9PSED Cell division protein ZipA OS=Pseudomonas sp. HAR-UPW-AIA-41 OX=1985301 GN=zipA PE=3 SV=1 +MDIGLREWLIVIGIIVIAGILFDGWRRMSGNKGKLKFRLDNSFGNLPDEDVDPNLLGPVRVKEKHAEPQLDEHDLPSMTATDGGKKRSEPFQGDLSLDEPVPTLLNPVDDEVKSESPREQVPVDEVLVINVIARDPEGFKGPALLQNILESGLRFGEMDIFHRHESMAGNGEVLFSMANGVKPGTFDLDDIDLFSTRAVSFFLGLPGPRHPKQAFDLMVAAARKLSSELNGELKDEQRSVMTAQTIEHYRQRIADHERRKLTQKR +>tr|A0A2M9EG28|A0A2M9EG28_9GAMM Efflux transporter periplasmic adaptor subunit OS=Xanthomonadaceae bacterium NML95-0200 OX=2032577 GN=CO610_06720 PE=3 SV=1 +MSSQLRPNPPKRRGFWMPAIVIAVLAAGALWWWQGKRSGSDEGAFRTVQIEQGDIRVAISATGTLSAISTVTVGSQISGQVTEVLVDFNSPVKKGDVLARIDPSTYRAQIAQGDAAIASAQAVLRQAEANLRNVRADFSRKNELGAQQLVSRSDVDSARASLEQAEAQVNVARAQIRQQTANTQTTRLNLERTVIRSPVDGVVLMRKIEPGQTVAASLQAPELFTIAEDLSKMKIELGVDESDIGQVKAGQGVSFTVDAFPNRQFRGVVEQVRLAATTSNNVVTYPVVVTVDNSDGTLLPGLTVNAEIEVSKREGVLKVANAALRYKPSEATQALLGEAAASGGSGNARRGMSEKLPKIAAGLRLQPAQQQVFDEALAAMRAAQAERQGATRSGNGSAGGPPMMMRSGSAPDPAMMAQIRARMRERMQRQFAQFRSTLDDEQRAQWDSAMDALLNSNRAPLYLLVDGRPRRVMARIGASDGSSTEISGDFRAGDAVISGERAASSAR +>tr|A0A2D7G1K4|A0A2D7G1K4_9GAMM Uncharacterized protein OS=Gammaproteobacteria bacterium OX=1913989 GN=CMP96_10680 PE=4 SV=1 +MDLLKELFSFLRARKKLWLAPIILIMVALGGLLVIAEGSVLAPFIYTLF +>tr|A0A5E4IWU6|A0A5E4IWU6_9ARCH Protein-synthesizing GTPase OS=uncultured archaeon OX=115547 GN=eif2g PE=3 SV=1 +MPQAEFNVGVVGHVDHGKTTLTSALTGKWTDTHSEELKRGITIKLGYADVVFKQCTRCGFSSTKERCPKCGAPTQATRKIAFLDAPGHETLMATVIAASSIMDGALFVIAANEKCPQPQTIEHLMILEAAGIKNVVIAQNKVDLVTRQQALEHYKQIREFLKGTTYENAPIIPTAANSGGNLDSLVSALLETIKPVPRESGKTRMLVARSFDVNKPGTNVEKLYGGIVGGSIVSGVLKNGEEVRILPGALRTHKGKEHYQELSTKIVGIRVGDETLEEAKPGGLVALATTLDPSLTGADVLVGCLLFPAKDEPPVVYQTFSLEITPLSRLLEKFPSSFTPNEPLVLGVGTATTVGFVTKQKKKICELMLKKPVCASKTDVIAVMRRANNRWRLYGTAKLVS +>tr|A0A209CHN7|A0A209CHN7_9ACTN Flavin reductase OS=Streptomyces sp. CS057 OX=1982764 GN=B9W61_33485 PE=4 SV=1 +MTATPDLAPAPTAATPELFRSVFRRHAAGVAVITAAGERPVGFTATSLTSVAAEPPLISFGVGTSSSSWPVLSEAAYVGVHILGEHQHELAATFARSGADRFGPSTEWSSGPEGVPLLAGVSAWLVCRVVTRVPAGDHRIVIAEAVSGAPSGAARPLVYHQGRFTALRD +>tr|A0A1A7C0Q9|A0A1A7C0Q9_9BURK Porin OS=Janthinobacterium psychrotolerans OX=1747903 GN=ASR47_1005274 PE=4 SV=1 +MPIMKKSPLSLRAHQGASLLFLAISGTAAQAASLPEWTLGGFGTAGLVHSSERQADYSANVINRGGAGRTDRWSGSVDSRLGAQLGVEFTPRWSAVLQVIAEHNLQNSWLPVVEWANLKYQATPELSLRLGRIALPIYLAGDYRKPGYALEWVRPPVEVYGSLPVSNSDGVDASYRWQAGATNNLTQVFYGHTSIETDDGGKRARGRQLAGLSNTTTYGALTIRASALTAELTVDLVRPLFDAFRQYGLRGGQIADRYDADHKRVAIANLGVSYDTGDWFLQAEGSRLNTRSFLGDKSSMYLGGGYRLGAWTPYATYAKVKANVPNRDAGIDSAQPGAAYLNGQLNALLQRISSQHTISTGVRWDFLPDRAVKLQYDRLRPTGASSGTLVNVQPGFRTAHPIHVVSIALDFVF +>tr|A0A124SC33|A0A124SC33_CYNCS Homeobox domain-containing protein OS=Cynara cardunculus var. scolymus OX=59895 GN=Ccrd_005381 PE=3 SV=1 +MEVARFEDEQQHKNKFFGFNSMSQDYIFNFSHGFERPSQDQQQQNHISHQIRRDKLRVQDFEPPAPASLVGLEQVDEGTGGAGGINPAVYETGAGMLSEMFNFPTGGPATELLENQINYQHHRNQRPNSATGDWYGNSTAQAMQLFLMNPSHESPSSQSSSHHHHHHNSSTSSSTLHMLLPNTVPSSTSTLHHQQSFGSTSGSGQGQFGPSTQFAWIPPGGTTHEGGGGGGDSHGLSLSLSSTLQHLEAAKVEELRIGDDPAATAMLYFNQSGSDPYRHLQLQGGGGGVMGSTHHPIHVGYGSSTVGVVKALRTSRYVKAAQELLEEFCSVGRGQFKINKSGSKPANNPNQNPSNSCGGASSASSKDHPPLSSAERIEHQRRKSKLLSMLDEANRLTKITIETKKSRWIGDTITTMVVNSFDLILGFGAAVPYTALAQKAMSRHFRCLKDAITAQLKHSCELLGEKDVGTSGVTKGETPRLKMLEQSLRQQRAFHQMGMMEPEAWRPQRGLPERSVNILRAWLFEHFLHPYPSDADKHLLARQTGLSRNQVSNWFINARVRLWKPMVEEMYQQESKEEADQHHNHSPHHRHQDDDDDDEDDDQEQEEDKENTKYHNHNHDQNQTDNDGHHHHHPPPQPSSAATQTSMHAPPPPLTSAPTYTTTTTTATDSAAKRSEINDSENDPSLLAINTQHCFSENQAMTYSYSNPIGGITTMAPPPPPPFDGDTCRRGSMLGAEYRTTTGNDAADIGSTLIRFGTTSGDVSLTLGLRHAGNLPEKTSFFS +>tr|A0A1B1T822|A0A1B1T822_9NEOB KIAA2013 (Fragment) OS=Afrixalus dorsalis OX=367642 GN=KIAA2013 PE=4 SV=1 +PSKLSSISQLLQLWDLWKLTLQKRGCKSLVMAGAHGLMQGMMLSFGGLQFTENHLQFQSDPHVLHNSYALRGIHYNKDLINLAVLLDQDEKPFLHVSVKFQDKLVKLYACEAGCLNEPVELTSEIRGHTFPVLVTQPLTPLLYISTELTHLQDLRHTLHLKEILAHEEHMAKQYPGLPFL +>tr|A0A251VB46|A0A251VB46_HELAN Putative pentatricopeptide repeat-containing protein OS=Helianthus annuus OX=4232 GN=PPR38 PE=4 SV=1 +MMNRIAFIKLRGNFTTSSFLLHSETPFSSFHIGLHSDTRNVSVNRSMFDKITNLNDALNLFDEMSHRHPLPSVVKFTRLLNVVTKMKHFTYALDLFKQMCSLGVPLDKYTLSIAIKCCCQLNRTKDGFAVLGSCFRRAIPPDVYIFSVLLDGLVLEDRILEAEMFFKKLIKQKLCEPDVVMYNTMIKGLCKFGNNVTAVALLRLMEQTNCKPSIVTYSTIIDSLCKDKMIDDAFKLFKEMVFDIGILPNVITYTSLICGLCKLGRWDEASKMLKEMEDENISPDVQTFNVLVDAFCKEGKVEEAEAVINIMIERGKVPNIVTYNALIDGYCLRGEMIKANTIFDSMTLRGLVPDVVTYSSLLNGYCKNLNIEKAEQMFHEMTVKGLKPDVVTYSTMIQGFFQVGRCVAARRLFDEMHARGQIPDQCTYGIVLDGLCNNHLVEDALSLFYLVGKSKLNSDIAVYNILIDGAGKNGKVEVARILFQGLIDKGLQPDVRTYNVMISGFCREGQLGEAKLLFLKMEESGCPPNNITYCVLLQGCLKNKHYDDVEMLLKEMDARGYSLDASTLSLFIDHIAAGLLDRSMLKLFNKLVPKELLDDPRLCDWESN +>tr|A0A258FT73|A0A258FT73_9PROT Uncharacterized protein OS=Caulobacterales bacterium 32-69-10 OX=1970503 GN=B7Y99_04785 PE=4 SV=1 +MRCVAASLCEDTTTTVAALLRSTAQEMASLSDMSNRLHDLVARQMGAAVIHEQSVEEAQSIDLLVQHLETIGRFLHLLADEVPSSLAVDFSPIRDRLPLAALADRLGGEAGRRRLDDGDPGDLDLF +>tr|A0A329S1R4|A0A329S1R4_9STRA Uncharacterized protein OS=Phytophthora cactorum OX=29920 GN=PC110_g12992 PE=4 SV=1 +MRATAAKQRHKRRRPTAGQDDEGTVAATAGDKNGADRGEDGDESHGVVIAAV +>tr|A0A6A3VWU9|A0A6A3VWU9_9STRA Uncharacterized protein OS=Phytophthora fragariae OX=53985 GN=PF001_g28857 PE=4 SV=1 +MALLNRRFDSEDSATAIENLTAKLKKGIQAASTHFFEQEFPHDTREAILCTLDPTKTPLTPVQSGQAIRDHLEAIGRSTSKT +>tr|A0A0D0XGW5|A0A0D0XGW5_9TREE Unplaced genomic scaffold supercont2.14, whole genome shotgun sequence OS=Cryptococcus gattii VGIV IND107 OX=1296105 GN=I308_04987 PE=4 SV=1 +MPFRKTPCLSKPIIQFKLPFSSFSYPPCTPPERGTPAQTPGLAMSQTSWPRAMAVSFMIVTPPGQYSTQFPSLYPTEYPAEAAIDESSESDDQSVEDLMSLVTENEDGQERRWDGKGQEPLEKDAICPGAPKLSPIDLPN +>tr|A0A4Q1BKZ0|A0A4Q1BKZ0_TREME Uncharacterized protein OS=Tremella mesenterica OX=5217 GN=M231_04342 PE=4 SV=1 +MTGLTLPPLTLFLFSLLLFLLVGPTLVIASPDPTSPNVKRERLVAQAPSNTEITPIETKNIERGITTLPVLPRNDHPTSPPRLPRQPNRLVPQPTKRAEALIENDSVERFIDDVKVERRDEIGIGKRDDACSIAININLSDKTAPAIDLPSCLDGLDLQLGINLDLTDDDGGDDDCELGGGNFLAHSETSSNTKPPASTSKSANPGKSTPGNGGNDSDNIVALSWHVFGGNGYDGPSCGKTLTIVTSKGKQATAVVADECASCPDMYHVDMSTGLFSALGLDKSTGEYVVKWQCPDCVFEEDPTIGGCKNNPGGQYC +>tr|A0A1S1XQS9|A0A1S1XQS9_9XANT Transcription-repair coupling factor (Fragment) OS=Xanthomonas alfalfae OX=366650 GN=BHL63_10710 PE=3 SV=1 +ISQRLAALHRLPGLTRGVVIVPVQTLLQQLAPLSYIVGGSFDLTVGQRLDLDAEKRRLESAGYRNVPQVMDPGDFAVRGGLLDVFPMGADTPLRVELLDEDIDSIRVFDPESQRSLDKVDAVKMLPGREVPMDDASVERVLACLRERFDVDTRRSALYQDLKSGLAPSGIEYYLPMFFAKTATLFDYLDKRVLPVIATGVSNAADAFWTQAQNRYEQRRHDVERPLLPPDELYQSPDALRERLNKLARIEVWASDHARIDEAAPLGDQPLPPLPVAAKDAPAGQALATFLSHYPGRVLIAADSAGRREALMEVLAAAQLKPELVADVPAFLAGTLRFAITVAPLEDGFALDQPQIALLTERQLFPERANQPRRTRRVGREPEAIIRDLGELSEGAPIVHEDHGVGRYRGLIVLDAGGMPGEFLEIEYAKGDRLYVPVAQLHLISRYSGASAETAPLHSLGGEQWTRAKRKAAEKVRDVAAELLEIQARRRARAGLALQVDRAMYEPFAAGFPFEETGDQLAAIDATLRDLGSSQPMDRVVCGDVGFGKTEVAVRAAFAAASAGKQVAVLVPTTLLAEQHYRNFRDRFADYPMKVEVLSRFKSTKEIKAELEKVASGEIDVIIGTHRLLQPDVKFKDLGLVVVDEEQRFGVRQKEALKAMRANVHLLTLTATPIPRTLNMAMAGLRDLSIIATPPPNRLAVQTFITAWDNTLLREAFQRELSRGGQLYFLHNDVESIVRMQRDLSELVPEARIGIAHGQMPERELERVMLDFQKQRFNVLLSTTIIESGIDIPNANTIIINRADRFGLAQLHQLRGRVGRSHHRAYAYLVVPDRRSMTSDAEKRLEAIASMDELGAGFTLATHDLEIRGAGELLGEDQSGQMAEVGFSLYTELLERAVRSIRQGKLPDLDAGEEVRGADVELHVASLIPEDYLPDVHTRLTLYKRISSARDPDALRELQVEMIDRFGLLPDPVKHLFAIAELKLQANALGVRKLDLGENGGRLVFEAKPAIDPMTIIQMIQKQPKIYTMDGPDKLRIKLPMPEGADRFNAARGLLAALSPG +>tr|A0A241PHY0|A0A241PHY0_VIBAN Coenzyme A biosynthesis bifunctional protein CoaBC OS=Vibrio anguillarum OX=55601 GN=coaBC PE=3 SV=1 +MRRIFEEKTMQTLAGKKILLGISGGIAAYKCAELTRRLIERGAQVQVVMTHAAKEFITPLTMQAVSGRPVSDSLLDPAAEASMGHIELAKWADLVLLAPATADLIARVAAGMGNDLLTTLILATNAPVAVSPAMNQQMYRNIATQENIATLKRRGMMIWGPAAGEQACGDVGPGRMLEPMQLVERCEFFFQTEVANNTLLAGKSLLISAGPTREALDPVRYISNHSSGKMGYAIAQAAAQLGAKVTLISGPVNLLTPPQVQRIDVESACDMHQQVMAQAQSHDVFISCAAVADYRPEIVADQKIKKTDASDHMLITMVKNPDIVASVAALNENRPFTVGFAAETQQVEKYARAKLLNKKLDMICANDVSVAGQGFNSNDNALTVYWQGGEQALPLSSKSALAHALMQLIASQL +>tr|A0A4V1XBV3|A0A4V1XBV3_9PEZI Oxidored_FMN domain-containing protein OS=Monosporascus ibericus OX=155417 GN=DL764_002426 PE=4 SV=1 +MASPMSQSRLFEPLQIANGKITLKHRVVLAPLTRNRGTPLNPNSTCENPNRIWIPNDLMAEYYSQRTTDGGLLISEGIPPSLEGNAMPGVPGIFIQEQVEAWKRVTAAVHAKGGIIYAQLWHSGRANIPHLTGTPIVGPSSLPWDDPEECYMYPIPHTDTRVKLADHPPVEMTMSKIKQTIDDFRRAARAAMDAGFDGVEIHGGNGYLPEQFLSSNVNRRTDEYGGSPEKRCRFVLELMAEVAGAIGQENLAIRLTPFGLFNQARGEQRLETWGHLCRELKRDLPHLSYVSFVEPRYEQVFSEAEKQRFLDSWGLPDVDLLPFRRIFGETPFFSAGGWNDANSWGVLETGDYDALLYGRYFISNPDLVERLRHGRPLAPYDRSRFYGPFEDNSIGYIDYPPYKEDNDPPCEEDNGDEDRARRLSVL +>tr|A0A1C5LQ41|A0A1C5LQ41_9CLOT 4-hydroxy-tetrahydrodipicolinate reductase OS=uncultured Clostridium sp. OX=59620 GN=dapB PE=3 SV=1 +MTKIILSGANGKMGKVIARCTEERNDCEIVAGVDLNTQAYSDFDIYPSFSECGESGDVIVDFSNPAVLDGMLDYALKTNTPVVIATTGYSPEQIEKIQKAAEQIPVFFSFNMSLGVNLLVSLAKKAAEVLGGQFDIEIIEKHHNQKIDAPSGTALMIADAINDTLDQTQKYMYDRHAQRKKRDKNEIGIHSVRGGTIVGEHEVIFAGHDELLSLKHQAMSKEIFAVGAVNAAVFLKGKPAGIYDMGKMV +>tr|R7KGB8|R7KGB8_9BURK ATP synthase subunit delta OS=Sutterella sp. CAG:521 OX=1262977 GN=atpH PE=3 SV=1 +MAELSTIARPYAHAMLLALQDANKGPEEAADLAAVLDGIAQVVTTPELVSVIGDPKLSSEQIYDLIIAGLGQTKLPEEAANLLKVVVENGRLEAVPEIARQFRELKNQSEGVADAYIESAMPMTQAEVDDLVAGLGKRFPGLKLTPVVTINEALIGGVRVRVGDRVLDGSIQTRLAQMQEALTA +>tr|A0A496GGQ1|A0A496GGQ1_HELPX Uncharacterized protein OS=Helicobacter pylori OX=210 GN=DD744_03805 PE=4 SV=1 +MRIKAYFLRFIALVLIVLLGFSACKNSQKSQDSQNNTTQQDSPKTYTAMDLNNQEYTITGDLDSLNISPDSNTPTLLVLSALDDFLKDYAPTFNILKKTFKDRLRVLILLNQPYSSDAIKDFIAPFQADLMILNPKDTALFDHLNHNALNHSFNMLLYHKHQLIKMYQGIVPAEMLQFDISNLKD +>tr|A0A847F664|A0A847F664_9DELT Uncharacterized protein OS=Sandaracinaceae bacterium OX=2510337 GN=GX614_10825 PE=4 SV=1 +MSSPCLRIALIALLFALPSLSSADDGDLRLLRESIGYIEVADAADDEDPFDFNLSLGFRHDRVSGNITREMLSPVDGSVMQKVGDYSATRSYLDVAAEIGLYRDLAVRLMVPVLLSYDQSITDIESAATPLLGSQDAVSPTRSGIPEIIVGLAWQPMNQMRRADRPNWTWLFNVALPTGKVMSPCLDVPGSSCASNAGVSTGVVRLLPEWRLSYRFRYVETYGGLKGEIPFPTASRDSLFTPGGQLLGYRKTRPSIRGGFIVGAALIPWERRATHQRLAIDMRFHAHYVSGGRDFSPLFDVLGDPNLSPTPRFPEICEDGSVAGTGGVCNPGDPYATRFTGLTTTQSHGNIGGRLTLEIKAARYITFYVSSGLQWITSHLLTTESECNASVDPHPQDAINCNVGRPNPHYQREIDMVGNRFGVGNLTNLDLVLRAQGTF +>tr|B4RA04|B4RA04_PHEZH Transcriptional regulator, Cro/CI family OS=Phenylobacterium zucineum (strain HLK1) OX=450851 GN=PHZ_c3099 PE=4 SV=1 +MPRPATDPAKAAQIKALRQQAGRWLKAAREAAGMTQAELAEKVGLRYYTFVSQVESGLGRLPIETQAAWATALGLDPGEFARTLLRYYEPELFRLLFETDSAQGRATA +>tr|A0A1V2CHU8|A0A1V2CHU8_9FLAO Vgr family protein OS=[Flexibacter] sp. ATCC 35103 OX=1937528 GN=BXU01_03190 PE=4 SV=1 +MTPPTIIFGIDSKKISHFTSIELVQVINDHHRFEILVPHAAVESPLAYTLENAQAWLGKVVHIVLEEKNNFLGVVTNIDFDQEMGHSGNQIIVSGYSKTILLESGEKLHSWEELTLKDIVKEVVKNGAGEQLQNEINPEYTSKMDYQNQYLETDFQFIQRLAKQFNEWLYYDGEKLIFGKPKSFDSPISLTYNSEISKLKISVQAVPNKFSAFTYNESADKRYTAKSKDTVGGLPKLGNEAFASSKEVFATPAYTHGIVSTGDDLVLESFLKKKQESAAADTNFVSATTKNSKLRIGSIVTIQSSVLENKSLITQEVGSFIITEISHYATHLGEYENNFRAIPSKVLSLPEPDVAYPIAQTQQALVESNTDPQNKGRIRVQMLWQQGTQMKTAWLRVMTPDAGSSDKVGTNRGMVFIPDVGDHVMVHFRYGDPNRPFILGSVFHGKSGGGGGKDNNKRSFATRGGTSLVLDEEKNTFTATDPSGNMIMLNGDGTMTIYAPNKVDIQSKEINLIADEKVSISGVNEVSVDSKKVLVSGTDEVTVKSDTQITDEAPSINIKGKNTILAEGTVVDIDGKTMTNVKGGVVNLN +>tr|A0A7X9ZH40|A0A7X9ZH40_STACP Pur operon repressor OS=Staphylococcus capitis OX=29388 GN=purR PE=3 SV=1 +MRYKRSERIVFMTQYLMNHPNKLIPLTFFVKKFKQAKSSISEDVQIIKNTFQKEQLGTVITTAGASGGVTYKPMMSKAEATEVVNEVITHLQEKERLLPGGYLFLSDLVGNPTLLNKVGKLIASIYMEEQLDAVVTIATKGISLANAVANVLNLPVVVIRKDNKVTEGSTVSINYVSGSSRKIETMVLSKRTLAENSNVLVVDDFMRAGGSINGVMNLMNEFKAHVKGVSVLVESKEVKQRLIEDYTSLVRLSDVDEYNQEFKVEPGNSLSKFS +>tr|D2PK46|D2PK46_SULID UPF0148 protein LD85_1482 OS=Sulfolobus islandicus (strain L.D.8.5 / Lassen #2) OX=425944 GN=LD85_1482 PE=3 SV=1 +MTNESEVGVKKAAELLRQGATMLEEACPICKMPLFKLKNGDVVCPVHGKVYIVKSDDEEKIVKRNLQLDEIESILIDGLYLSAKKMKEDPLDSERIIQIIRYLDALERLRKIKINSSE +>tr|A0A353T2J5|A0A353T2J5_9FIRM FAD/NAD(P)-binding oxidoreductase (Fragment) OS=Clostridiales bacterium OX=1898207 GN=DDW86_03375 PE=4 SV=1 +TTEQGEIRASYLVNAAGVYGEVVSEMVQERSFTIHPRKGEYLLLDKSQGNLVHSVIFQTPTKMGKGVLVAPTVDGNLLTGPTALDVSEKDDVGTTAEGLEKIRKEAGKSVPDIPFRDVITSFAGLRATPDTGDFIIEASGTVKGFLNVVGIESPGLTAAPAIGEYAVDLLGKEGLPLVPRGDFQPVRKPAVRFREQTDEEKQRLIRENPLYGNVICRCEIITEGEIVDSIRRPAGARSLDGVKRRTRAGMGRCQGGFCTPRVTAILARELRIPEERVTKKGKGSELLAEKRGPSC +>tr|A0A3D6A882|A0A3D6A882_9FIRM Guanylate kinase (Fragment) OS=Lachnoclostridium sp. OX=2028282 GN=DHU73_00550 PE=4 SV=1 +KSATGKDTLYKEILKRRPKLRTVTMYTTRPIREGETDGVEYFFTDREELERQLASGKVIESRTYQTIAGPWTYYTVDDGQFDVADDESCLMIGTLESYEKMCAYFEAGKMVPVYIEVPDGIRLLRAVKREENQKKPNYREVCRRYLADEKDFSEENLERLGITKRYQNTDMEMCVEEILRDLDK +>tr|A0A5P9EVH6|A0A5P9EVH6_9GAMM Uncharacterized protein OS=Microbulbifer sp. THAF38 OX=2587856 GN=FIU95_07605 PE=4 SV=1 +MKKITSKYPQYRAVLKNSIASFTLICASTLVQADTISTKIDLGEPFPFKMEDGVEYEVDLDIGYQFDSIDNACISTEVKGGNASKAFLELESEPAAGSFILGYSESHEIGMIYSFDFPTQENPNPVSELISFGFCAGRFNGSLLKRNFLDGEGKFTVSVSGGYVEFWDFKLVVEGDLSDIQLAIELDEPADFSVPSYGGRVNYDASIRNLDSSQSLITLDQWSVLTLPNGDNYPIHKSRDVVLNYSEAKDYTRNYLTIPEWFEAGDYELTWYVADPSTGVRVKDSLHFTKSAD +>tr|A0A161IP46|A0A161IP46_9BACI Uncharacterized protein OS=Fictibacillus phosphorivorans OX=1221500 GN=ABE65_012790 PE=4 SV=1 +MKRQCLHMLTGFLFILLLTACIGEDYDAGPPELRLSVEEDLYALKQANVDWKTEEKEFKNKVEHFLTLGSEQKEIKLSPNQSAELILLENKEDDGEYTNETLEISLWKENEKIELTTKSSTDYSFSFPSDPGQYVLEVNFRTSNGRSQYVGNITLK +>tr|A0A2W4W2P1|A0A2W4W2P1_9CYAN Uma2 domain-containing protein OS=Leptolyngbya foveolarum OX=47253 GN=DCF25_12600 PE=4 SV=1 +MIAAKDHPPKLTSEEYFAWEEKQLEKHEYIDGQVYAMSGGSVNHGRLAIRLTAMFDNHLEESSYITGNSDIKVNIVKTVDYTYPDASVTCDDRDQNTPNYFTYPCLIVEVLSDSTEAYDRGGKFRMYQNNPVLQDYLLVSSTRIEMDLYHKNENGDWLILTYQKGDMVTLKSIGLSFPIEQVYRGLSLQQPDQFY +>tr|A0A1B2E8Q8|A0A1B2E8Q8_9BACL Serine/threonine protein phosphatase OS=Paenibacillus ihbetae OX=1870820 GN=BBD41_01205 PE=4 SV=1 +MLWILVIPVLNIFYAVLNQAHMPVYSLMTDLDAQIPFVPMFIIPYLIWYPFIIIVLFMLCIRERSVYYRTLLTQCLGLVACYIIFYLFQTTVERPTTMGTGIFEGLVNLVYSTDNPYNCFPSIHVLTSYLMIKGATACASYPNWERTAVKVCAWMIIASTLFVKQHVLLDIAGAIAVVELLWYGVGKLPLGQQSKFKGEVVRQNLTAD +>tr|A0A044SS46|A0A044SS46_ONCVO Methionine--tRNA ligase OS=Onchocerca volvulus OX=6282 PE=3 SV=1 +LHLMIRSIKTICAIEGVSISSMRLKHFITTPIFYANGPPHIGHLYTALLADALNRWKLLKDGNIDSDNLLFTSGTDEHGLKIQRSATAAGYDPQSYCDNISGKFKDLFHVFGIHPNDFIRTTEVRHKEVVNHVWVTKELNKRGQIQLGKYEGWYSTIDECFYASDEVETLSGQTSTISKITGSVVEWVQEENYIFPLSKYLGTVRNWLNNCDVIRPKIYFPEALQHASIEGNLSLSRDRKRVTWGIAVPNDESQTIYVWFDALMNYLTVSGIFSNKKRINWPPTCQIVGKDILKFHAVIWPAILLALDLPLPKRIFVHSHWLVNGTKMSKSVGNVVDPFSVSKSLSEEGLRYFLLRQGTPQNDANFIMSKAVDVINTDLVNNVGNLLQRSLIEKLNPSQTYPTFYPDSFHNSLLELGEPLVKSVSCLAELYEEQFDELMIYKALEMLMEVMRQANGFFQFYEPWKELDNRKMSSLLYVCYEVLRICGILLQPVVPHYADHLLNRLGIKKNERGLDNVKFTIDSKYSGKPLGEYNGPIMDRIMCKTGTV +>tr|A0A4D6LT85|A0A4D6LT85_VIGUN Uncharacterized protein OS=Vigna unguiculata OX=3917 GN=DEO72_LG5g291 PE=4 SV=1 +MPNDQEALGQLEDPHGSDGHNNSTGSGRHDDPNGSSELDNQDGLARSTTKTGRVGWVNDLNGPNGPNDPNGRHRSNDPNGPDRPDDSNMPICLTILIGLTGPMI +>tr|A0A0S6UQD0|A0A0S6UQD0_9BRAD Sulfopyruvate decarboxylase subunit beta OS=Bradyrhizobium sp. DOA9 OX=1126627 GN=BDOA9_0130710 PE=4 SV=1 +MSKANLLDRRQVVSTLLANRKDVVAIGGLGASTNDMCAAGDHARNFYLWGGMGGAAMIGLGLALAQPKLPVLVITGDGEMLMGMGSLATIGLQKPANLSIAVLDNEAYGETGGQTSHTSAAADLVGIAKACGINDSRAVTTMADVEAFAKAVHDVSAGPRFANVKIDSANLERILPTRDGTYIVNRIRADLGFQPI +>tr|A0A3R0JE73|A0A3R0JE73_SHIDY Anaerobic sulfatase maturase OS=Shigella dysenteriae OX=622 GN=DL723_09995 PE=3 SV=1 +MHVTAKPYSFQCNLKCDYCFYLEKESQFTHEKWMDDSTLKEFIKQYIAASGNQVYFTWQGGEPTLAGLDFFRKVIHYQQRYAGQKRIFNALQTNGILLNNEWCAFLKEHEFLVGISIDGPQELHDRYRRSNSGNGTFAKVIAAIERLKSYQVEFNTLTVINNVNVHYPLEVYHFLKSIGSKHMQFIELLETGTPNIDFSGHSENTFRIIDFSVPPTAYGKFMSTIFMQWVKNDVGEIFIRQFESFVSRFLGNGHTSCIFQESCKDNLVVESNGDIYECDHFVYPQYKIGNINKSELKTTNSVQLTAQKKRISAKCLKCVYKPICNGGCPKHRITKVNNETVSYFCEGYKILFSTMVPYMNAMVELAKNRVPLYHIMDVAKQMENN +>tr|A0A1V2IM99|A0A1V2IM99_9ACTN Uncharacterized protein OS=Frankia sp. BMG5.30 OX=1834514 GN=BL254_17150 PE=4 SV=1 +MSAEPIILLDPATDAGLIVAATEHTFACQMQTFAWAAANTNLPASERAIARAMTGRARAVSPLTQAQMNAQLHQTGGSR +>tr|A0A7V4T793|A0A7V4T793_9DELT Sigma-54-dependent Fis family transcriptional regulator OS=Desulfobacterales bacterium OX=2044940 GN=ENK36_05755 PE=4 SV=1 +MENILVVDDEKNYTMIIGEILQEEGYTSITASSGMEALDILNNEIIDLILTDVKMPGMSGIQLLEKIKELNPDIPVIIMTAFGSVEKAVDAMHRGAYTFILKPFENQALIAHIAKALSVYKIVQENSRLRDAISSRYSFDNIIGKSRPMQEIYEIIKKVAPSNASVLIEGESGTGKELVAKSLHYNSPRRNKPLIVVNCSAFAETLLESELFGHEKGAFTGASALKKGRFEISDQGTLFLDEIGELPISLQTKLLRVLQEKIIERVGGTLPIPVDFRLIAATNKNLEDEVKNGNFREDLYYRLNVVKTVMPPLRERSEDIPLLIKHFMDKYTNEQQLESRVSGITSEAVKILCDYQWKGNVRELENILESCILLGSGDMITPSDLPLQVRQNTSSFLDLDGIPQDVGLAETLTAVERRMIRRAMKLSGNVQTKAAQLLGIGKSGLNQKLKKFNLG +>tr|A0A6G1U079|A0A6G1U079_9BACT Virulence protein E OS=Prevotella copri OX=165179 GN=F7D73_08405 PE=4 SV=1 +MNINIFNGYQSTEPAIIKFQQMVDIIRGDKQLAELTKRYRITHQREYKSQCYCFSVTCVFQGGKAKKDIIEVTGIGFSDFDHVPKEKLAELCAKLREDRHTLFFHITASGEGLRVLYRYEMKPGMTLEEQMKFYPTAFLHGNQYFSDLLGVEYDEHCCNLGRLMGAAYDPDAFFRPNAEPFSYDWLVARQQEKTLQDNATARLRREVKKIDRLYEDKLAKELEQEMKTYVAGSKNEYVSCLAYKLNAFGFSADAALEFICQEFPDYERPKAVVDSCYRQTEEHGKRKHELQNRRHEAGKSASVNDIIRFLGEHVDLRYNQITMRVEYRMKEESDGEDSSTPGLWQIINDRAVNTLWSEMSKTNRAAVQDFFRVIESNYVQPFNPFTDYLGSLPEWHEGDTDYIQQLADSVTIKGGEEQQKLWACYLRKWLVGMLAGWTLDDVVNNVIIVLIGAQGSGKSTWIAMLLPPELRQYFYTKTNASRLTKDDLLVLATYGLMLCEELDTMKPSELNQLKAAVTMLTIDERAAYAHFAEHRPHIASFAATGNNVQFLSDPTGNRRWLPFEVESIQSPREHPFDYPHIYAQALHLLRSGFRYWFTQQEIIELNLHNHKFEAPRLERELVALYFAHPTEEQHGIFMTASRALQIIGAGISQKLSAVYVGRAFCELGFRKVRVNHCWGYLVIERDGDMIKAQQVRLAMEAEDDYSQQETDPDLPF +>tr|A0A806DEP4|A0A806DEP4_HAEI6 Catalase OS=Haemophilus influenzae (strain R2866) OX=262728 GN=hktE PE=4 SV=1 +MSSQCPFSHLAATNLTMGNGAPVADNQNSLTAGPRGPLLAQDLWLNEKLADFVREVIPERRMHAKGSGAFGTFTVTHDITKYTRAKIFSEVGKKTEMFARFTTVAGERGAADAERDIRGFALKFYTEEGNWDLVGNNTPVFFLRDPRKFPDLNKAVKRDPRTNMRSATNNWDFWTLLPEALHQVTVVMSDRGIPASYRHMHGFGSHTYSFWNEAGERFWVKFHFRTQQGIKNLTDAEAAEIIANDRESHQRDLYEAIERGDFPKWTLFVQIMPEADAEKVPYHPFDLTKVWPKKDYPLIEVGEFELNRNPENFFADVEQSAFAPSNLVPGIGASPDRMLQARLFNYADAQRYRLGVNYRQIPVNRPRCPVHSNQRDGQGRVDGNYGSLPHYEPNSFSQWQQQPDFAEPPLRINGDAAHWDYRNDDKDYFSQPRALFNLMNAEQKQSLFNNTAAAMGDAPDFIKYRHIRNCHWCDAAYGEGVAKALGLTVEDALKARDTDPALGQGGLL +>tr|W7JTJ0|W7JTJ0_PLAFA Uncharacterized protein OS=Plasmodium falciparum UGT5.1 OX=1237627 GN=C923_00937 PE=4 SV=1 +MSLINKKNKENHNLIGKEEKIENDNTQDIKDNVYSSYSNDNNKYDNNNNTYDNNNNKYDNNNNNFNINTNYLMNICPLFYSFMIFFNQLNSRKKLMKIINIIDEEKCLDKDENEINKKILSSICHGGVWDELVTLYDPIYSSNYESFINRKKNDYNKIYDKPIEMNKNGQDMQSKGNYTTTKNSTTNYNNIQKNDLNKKFVDATTGNTYSDRITAQSYIHDNNDENNNIHNYIDEIDDMDNVHNVVNSCGVHLNDVHSFQKDREDNSSYSYRRNEHMSNNIDTICGSKNLLLNHKGTNQDNNIFERNKENVSNSSYNYINENNTFSEKNFSTCSILKRRNVYHNKDYRYCFSTSQQNDGKYLEQNKSNVLHNDDYNDYYNDEYNDDYYDADNVDVFHYINKNKSNSIISNNYPCDNTYNQNTNLNNDNCKTKNNINMPLNINYPYGISKDEMIHFKNYPYNYNDKYDFDEDISSLMKNLKTDDYTNDDIINIKKKKKKGSLINNKNITDITTYTNSSSSLYNKNNNNKNNNNNYYYTNTKDNFYYNYNQNYDIPKKTYDNISTSCEPNHYMKNSSNNSSHHHSVYEGRYTFNKLNKTNKYMYNSFLPNKQQSFFNNNYNNNYNNNNYHCDYSKFDSEDLIWKYYNNPSNNRNHIKNIHNLEKKYEHNINLASKVSSATWLIYLYELKRASFFINYYFYHLHLFIYFKNYFINYQKNYKLFQNNKWIILKRNYEKQKKKEKYWDMINMKEPEINVHTTCISKKLNDIKAKNVLNNNDHMNKEDKQKNVIDQENNNKQKSNKTHYDIFKRDMHEIIKCTVQNLNYCIDALFEKTKGDIYSLPFKIDKKNKNKNKKINNNNNNNNNNNNNNNNNNNNSNSSSCSSSCCCFNNTTNISPQLNNIHSFLNNKNCKQNNINKDSMTNSYGLILIEGKLIFVKFLYICIDKEKFWDESFLCRRDIRTVIHVKALDVLFISKNKLKKKIKKNIKKKAKNEKDNNLNNIINQNICNNDKKDIYFDIEQNLCTNNKSSQEFSSSNTSNIDNQFLSDDIIFCEQKNNLLKDSKLTHQQTYDINTNLQNNKNHFEEKISMYNNTHKKNDHYVNDDIINLWKCKQEKELSNNFIYNNKNNYIGILMEQNSNQDIFFKNNSKFIIKKNYIDQNNEHMDNMKTYQNDQTDMEKKKYNDENIFSINPCNFVTRINVKTIYVSGKHIHDDLKGTLLQKIDIKKEFKNDDEMNTFLQNQKDIYDEEIYCLRIISRNEIMRYKELIKIMKKGPYYYKNAKNILNNLNNLNNFNTPLQQTVPLCNFCGIKGMCNINTKHYKMSSIQEHVKNKFYTFMYHIFYKYKPKNQGGNIHNNNNNNNEDHLICNHSSKFKHINKEKRNKELPTNYENNIFNHTIVTSKDDQHNCLSDTNYRDNNLSDQCKNYSFHNIYNCDDHENKSELKNNREDKNDHDMYNIVEDIKHTQRNNQYNYKDIKVDNHYDNIIHMDKEKNIEKINIKSNYTKNNSEQYVNKIENFNDKKCESQNNIINNNNNINNINNNIKTELLHQNEINKNCINNNSTFPIKDKQIINNSKGIKNNILSEYYKIKKRQKSIDKISKLYKDEIKKKNNNDFIPHNKKIMRINNTINCLVGQRAQTNFLFLKKNHLNTTTENITTKIVTGAQNNNLNNVSLKKNNSGQMEENNTNDISYVPTFRKFQESKK +>tr|H6AA47|H6AA47_PINCO Tubulin_C domain-containing protein (Fragment) OS=Pinus contorta var. murrayana OX=1115831 PE=3 SV=1 +QVYRSLTVPELTQQMWDAKNMMCAADPRHGRYLTASAMFRGRMSTKEVDEQMLNVQNKNSSYFVEWIPNNVKSSVCDIPPKGLKMASTFIGNSTSIQEMFRRVSEQFTAMFRRKA +>tr|A0A7V8T8F4|A0A7V8T8F4_9GAMM Nuclease SbcCD subunit D OS=Pectobacterium versatile OX=2488639 GN=sbcD PE=3 SV=1 +MRIIHTADWHLGQYFYTKSRAAEHQAFLHWLIAQVEQHQVDAIIVAGDIFDNGSPPSYAREMYYSFVVALQRTGCQLIVLGGNHDSVAMLNESRELLACLNTQVIACASDDPAQQVILLETRQRQPGALLCAIPFLRPRDVLTSKAGQSGDEKQLALQEAITAHYLQCYQLACQKRDELGLPLPIIATGHLTTIGATASESVRDIYIGTLDAFPAQAFPPADYIALGHIHRPQRVTQSEHIRYSGSPIPLSFDELNSEKSVCLVSFAPDTPAQVEILPTPVTQPMQLIKGSLSDIEQQLTTFQNYQGEKPVWLDIEINTQDYLSDMQKRIQAMTEHLPVEVLLLRRTREQRLQAITQQDKETLNELSVHDVFERRLATETDMEDGRQQRVRTLFNQVIDELENSEPAQ +>tr|E2ZKL4|E2ZKL4_9FIRM Alkaline phosphatase family protein OS=Faecalibacterium cf. prausnitzii KLE1255 OX=748224 GN=HMPREF9436_02217 PE=3 SV=1 +MKREDHVMKENKISRRSFLKFGAAASAAGMMAAAPVAANAAQPDADAAADEENCLLGLFQKPKYIFLFIGDGMGTAQIQSARFYKGTVDNNGAVTEADLSFTSFPTVGSVTTYDSTSFCPDSASTATSIATGHKTESGVINMCPWTRDVPYETIAEKLHAQKGYKVGIISSVNIDHATPAAFYAHQKTRKNYYQIGVELANSGFEYFAGGEFQKVNGDGAGPNNHEVAAQAGYNVVTTQAGAAALTAGAGKTLIIAENLADGKAMNYAMDAAAGEWQLTDYVKKGIELLDNPKGFFLMTESGKIDWACHANDAAASIHDVLEMSNAVQAAVEFQQKHPNDTLILVTADHETGGMAIGYKTTNYDTFLTNLAHQKMSYAKFDSTYVQNYIANKTPFEAAMQDVKANFGLTLPSDPDAANAGKLLLTDYEVQNLRTAYERTLKVGSASQKDMSQQDYEMYGTYIPFSMAICHTINHKSGMDHTTYAHTGAMVNVYANGVGAEKFGGVFDNTEIYHKLADLTKVK +>tr|A0A8A6LC47|A0A8A6LC47_SARS2 Surface glycoprotein OS=Severe acute respiratory syndrome coronavirus 2 OX=2697049 GN=S PE=4 SV=1 +MFVFLVLLPLVSSQCVNLTTRTQLPPAYTNSFTRGVYYPDKVFRSSVLHSTQDLFLPFFSNVTWFHAIHVSGTNGTKRFDNPVLPFNDGVYFASTEKSNIIRGWIFGTTLDSKTQSLLIVNNATNVVIKVCEFQFCNDPFLGVYHKNNKSWMESEFRVYSSANNCTFEYVSQPFLMDLEGKQGNFKNLREFVFKNIDGYFKIYSKHTPINLVRDLPQGFSALEPLVDLPIGINITRFQTLLALHRSYLTPGDSSSGWTAGAAAYYVGYLQPRTFLLKYNENGTITDAVDCALDPLSETKCTLKSFTVEKGIYQTSNFRVQPTESIVRFPNITNLCPFGEVFNATRFASVYAWNRKRISNCVADYSVLYNSASFSTFKCYGVSPTKLNDLCFTNVYADSFVIRGDEVRQIAPGQTGKIADYNYKLPDDFTGCVIAWNSNNLDSKVGGNYNYLYRLFRKSNLKPFERDISTEIYQAGSTPCNGVEGFNCYFPLQSYGFQPTYGVGYQPYRVVVLSFELLHAPATVCGPKKSTNLVKNKCVNFNFNGLTGTGVLTESNKKFLPFQQFGRDIDDTTDAVRDPQTLEILDITPCSFGGVSVITPGTNTSNQVAVLYQGVNCTEVPVAIHADQLTPTWRVYSTGSNVFQTRAGCLIGAEHVNNSYECDIPIGAGICASYQTQTNSHRRARSVASQSIIAYTMSLGAENSVAYSNNSIAIPINFTISVTTEILPVSMTKTSVDCTMYICGDSTECSNLLLQYGSFCTQLNRALTGIAVEQDKNTQEVFAQVKQIYKTPPIKDFGGFNFSQILPDPSKPSKRSFIEDLLFNKVTLADAGFIKQYGDCLGDIAARDLICAQKFNGLTVLPPLLTDEMIAQYTSALLAGTITSGWTFGAGAALQIPFAMQMAYRFNGIGVTQNVLYENQKLIANQFNSAIGKIQDSLSSTASALGKLQDVVNQNAQALNTLVKQLSSNFGAISSVLNDILARLDKVEAEVQIDRLITGRLQSLQTYVTQQLIRAAEIRASANLAATKMSECVLGQSKRVDFCGKGYHLMSFPQSAPHGVVFLHVTYVPAQEKNFTTAPAICHDGKAHFPREGVFVSNGTHWFVTQRNFYEPQIITTHNTFVSGNCDVVIGIVNNTVYDPLQPELDSFKEELDKYFKNHTSPDVDLGDISGINASVVNIQKEIDRLNEVANNLNESLIDLQELGKYEQYIKWPWYIWLGFIAGLIAIVMVTIMLCCMTSCCSCLKGCCSCGSCCKFDEDDSEPVLKGVKLHYT +>tr|A0A6B9XTV0|A0A6B9XTV0_PICSI Uncharacterized protein OS=Picea sitchensis OX=3332 GN=orf05555 PE=4 SV=1 +MRCYGHWNVMVPHPAQQIFESHLLQVYTVFHNFYKLAAIEWGMPAIMNSPCLAIDFFLPVGEKTLHSADHTPLCGCNSLCHSYLFESRVSFFSYYSPQRAV +>tr|A0A2A4QF02|A0A2A4QF02_9GAMM Uncharacterized protein OS=Gammaproteobacteria bacterium OX=1913989 GN=COB83_09745 PE=4 SV=1 +MLKIIVGFIIVIILTGGVVTPSIEWINKVFHVKNGGIYLSIAFFICYFFLLAFRLIKKK +>tr|A0A418RSL3|A0A418RSL3_9GAMM Antitoxin OS=Methylococcales bacterium OX=2304002 GN=D0528_03225 PE=3 SV=1 +MINEVNTAVFQQNLGEMLNQVQYRHDSILIKEDGKPVAALVDAQLFDRIRRFKNRFDTLSNQIANAYESVPQEDGLNEIDAIVSEIRHSQF +>tr|A0A510B6M8|A0A510B6M8_9POAL Photosystem II reaction center protein L OS=Avena longiglumis OX=4500 GN=psbL PE=3 SV=1 +MTQSNPNEQNVELNRTSLYWGLLLIFVLAVLFSNYFFN +>tr|A0A2D5H536|A0A2D5H536_9PLAN Antibiotic biosynthesis monooxygenase OS=Gimesia sp. OX=2024833 GN=CME31_26170 PE=4 SV=1 +MFCLNVILTLKDAADAEEIQGLLTEACRLSRTEPGCLRFDVYQSEGEPATFVLVEHWESEDAWQTHREAEAYTQIYQPQILPRVERVPYRMKMLLE +>tr|A0A7L7BQ76|A0A7L7BQ76_9ENTR Alpha/beta hydrolase OS=Enterobacter sp. RHB15-C17 OX=2742619 GN=HVX06_10740 PE=4 SV=1 +MFSKLAYSTLALTVSLGTVISCQAEATGTDFATAFDHPQQINAGDLNVGYVDIGPKNGQPIILLHGWPYDIHSYAQVAPALAAKGYRVIVPSLRGYGTTRFLSDKTPRNGQPSAMAKDVVNLMDALNIKQAVFAGYDWGARTADIVAALWPERVKSLVSVSGYLISSQQIGKQPLPPKAEVQWWYQFYFATERGAEGYAKNTHDFARLIWSQASPDWKFSDATFDASAKSLDNPDHVAVTLSNYRWRLGLEKGERKYDSYEQKLATLPNITVPTITIEGGNNGAPHPAPQAYAGKFTGKYEHRTFGKTVGHNPPQEDPQDFVNAVVDADKL +>tr|A0A7N0VAI1|A0A7N0VAI1_KALFE Uncharacterized protein OS=Kalanchoe fedtschenkoi OX=63787 PE=4 SV=1 +MENAEAFEASTAPLSLHDFFERMRQPAAAEFVKAIKSFVVSFSNKAPNHERDSAAVQDFLSNMERAFREHPLWAGCSVEELDCAGEGLEKYVMTKLFTHVFASLPDDLEVDRQLSDKMALLQQFIRPENLDIKPNFRNEASWLANPPQLHSNLLYIQRYRHHPRLVAEYAYYFTNMLSVESFITNINAKALSMDETEFEMNMESARALNLGLSADTSDMSDQNEQNLENTSNKEAVEIKQGFSNFKTDHVTRPPPSVSKSGKIELRHTKAESSIRKIPSMSDLENKGAFMLLNENRLSRVFQEYPYLFSQVGDLTLDDVESLLNNYKQLVFKYVSLAKGKGSEPLPPPFISMSNSQSQRATPADAERESIEEPVAEKTNNRNEANSWTDEGSIEVSQVPELNSPDYKMPEVSSAQVEADHDHDNS +>tr|A0A3N0D1M1|A0A3N0D1M1_9FLAO NAD-dependent epimerase/dehydratase family protein OS=Sinomicrobium pectinilyticum OX=1084421 GN=ED312_22910 PE=4 SV=1 +MKVALIGATGFVGTNILKELVDRGHKVTAIARNPERSEIKGYHVTPVKADVLDTDRLAEILAGHDAVVSAFNPGWANPNIYDDFLRGAKAIQEAVKKSGVSRFVVIGGGGSLYLKPGLQVVDTPEFPAEIKSGADAARLYLEEIRKEKVLDWVFFSPALEMHQGITTGRTGKYRLGLENPVFDKDGRSVLSGEDVGVVIADELETPKHHRERFTAAY +>tr|A0A6P0AN79|A0A6P0AN79_RHILE Siderophore-interacting protein OS=Rhizobium leguminosarum OX=384 GN=GR232_16200 PE=4 SV=1 +MDNNQFKDQASSTPGIERIRHDTRRRLLTVESVVDITPSMRRVVLAGDDLADFISLGADDHIKIFVPVADGSEERRDYTPRRYDNIERRLTIDFALHEAGPVTKWAIDADPGDRLEIGGPRGSAVVSKTVKRWLLIGDETALPAIGRRIEESGAGTVVTTIAAVTGPLEEQTFETSAELHLHWAHRPLSQATSATALLKLLSTVDIQPETFIWVAAEASVTRDIRAYLLERGCPLGWIKASGYWVFGKADTTEKFG +>tr|A0A7K4JQ10|A0A7K4JQ10_GEOCA GT252 galactosyltransferase (Fragment) OS=Geococcyx californianus OX=8947 GN=Colgalt2_1 PE=4 SV=1 +VATDHNVDNTTAILKEWLKNVQNLYHDVEWRPMEDPQSYPEEIGPKHWPSSRFTHVMKLRQAALRAAREKWSDYILFIDADNLLTNPETLNLMIAENKTLVAPMLESRSLYSNFWCGITPQA +>tr|A0A673XYG3|A0A673XYG3_SALTR Gamma-tubulin complex component OS=Salmo trutta OX=8032 GN=LOC115201020 PE=3 SV=1 +MSEFRIHHDVNELLSLLHVRGGDGAEVFIDLLQKNRTPYITTTVSAHSAKVKIAEYSKTPEDFLRKYDELKSKNVRNLDPLVYLLSKLSEDKEVITYISHLITVLCYVPITFVCNRMPKKGLKRLLMRQQVQPLLSLQPSAEVTRKMLRDRHNKKNPTQPNPVFPNWVYDRPALIGDFITGATAAGDPEVAIGTMPLPAQEQALVDDLLFVLVGVDGRDITAQPVLGRQNRSFIVDPTLDMSIKELVNRILPVASYYSTITRFTEEKSSFEYGQVNHALTAAMRTLMKEYLILVTQLEHLHRQGMLSLQKLWFYIQPTMRTMEILASIASSVDKGDCMGGSTLSLLHDRTFNYTGDSQAQELCLYLTKAASVPYFEILEKWIYRGIIKDPYSEFMVEEHELQKEKIQEDYNDKYWDQRYTIVQHRIPSFLQKMADKILSTGKYLNVVRECGRDVTCPDAKEVLYTLKERAYVEQIEKSYYYASKVLLDFLMEEKELVARLRSIKHYFLMDKGDFFVHFMDLTEEELKKPVDDIVPPRLEALLELALRMSTANTDPFKDDLKIDLMPHDVITQLLRVLAIETKQEKAIINADPTEVALSGLEAFSFDYIVKWPLSLIINRKALTRYQMLFRHIFYCKHVERLLCNVWISNKTAKQYALHRAKWFATAFALRQRMLNFVQNIQYYMMFEVMEPTWHIMEKNLKSASNIDDVLCHHTSFLDNCLKDCMLTNPELLKIFSKLMSVCVMFTNCMQRFTQSMKLDREMNRLSLEHGTMEGPPTQSERTEEQEKKRLTSKFLAEHVDALQSDACFEATVSKFDSNFSTLLLDLLDKLSVYSTNDCEHSMINIIYRLDFNGFYTERLERMAIERSQKAAA +>tr|A0A5S5C3J5|A0A5S5C3J5_9BACL Uncharacterized protein OS=Paenibacillus methanolicus OX=582686 GN=BCM02_107172 PE=4 SV=1 +MTESNYKNWPTDEHARWIRMGHFFGKTLMEEVKGHAKERIDPASSVEERLAAEKAIRDTLYGFMMLLDGVIDSPIDQDHGVEFALVARVFNQDTREYLEEIELAPDGDGLCMGIHMWEDGEFE +>tr|M5BKI9|M5BKI9_THACB Septin homolog spn3 OS=Thanatephorus cucumeris (strain AG1-IB / isolate 7/3/14) OX=1108050 GN=BN14_01267 PE=3 SV=1 +MAYRHRGRKNAKKGIQFTLMVVGASGTGRTTFVNTLCESEVLAPKIADNAETAHVEEGIRIKPVNVELEEDGTRIALTIVDTPGFGDNIDNEFAFQEIVGYLERQYDDILAEQSRIKRNPRFRDNRVHALLYFIPPTGHALREMDIELMRRLSPRVNVIPVIGKADSLTPSELKGFKKRVMEDIEHYGIPVYNFPYDVEEDDEETIQDNSELRAMLPFAIVGSGDEVEIDGQPVRARIYPWGVVEVDNPKHSDFSRLRSALLNSHLMDLKSLTDDVLYETYRTEKLSRMVHADNTDDSILPEDLATQSVRLKEEQLRREEEKLREIELKVQREINEKRQELLAKEESLRNLETRLAAQGSQAEF +>tr|A0A6P8KJN9|A0A6P8KJN9_DROMA synapse-associated protein of 47 kDa isoform X6 OS=Drosophila mauritiana OX=7226 GN=LOC117143185 PE=4 SV=1 +MFSGLTNQFTSLVGAVKGGAGDEDVPAPTGDAPAAAPAASTSVEATASSAVDPEAAAAAGGEGLEGEEAGKSGWLGSAKGWLGNASIPSMPAMPSMPSMPAMPAMPSIPSIPGLRKGAGADGAEGAEGAVAGEGGAAASGAVSGGEDDDKSRYISATEGADSHPASGGGTPTGDEGQIGQGKGDEVKITTKVTQQAKHFGSFLSSAISKAGSKIKETVKDNTILDSFNKEQEAFIKGQGGVGNGAAPWIGHANEAKIKEEILGLSQDRRNFVRAPPAGVDFEFSYDTAYPTAIAIMAEDKALETMRFELVPKIITEENFWRNYFYRVSLIIQAAELGTLGADGVGQASSGEDANEVATKEKKSKTAQPAKGDSSVKAIAEQPKAVIEPEAQESDVQAAKSKAKAQAGKELGQKISESEFVSDDFQASSESDLAEIQDGMRKLGIDSMTQQALAPTDEEQWEKDLEAELKDYEVVDEGGTGGGGRRKGRKAGEDDTEADEDEPTISNLRTRSTNNDWEEYADLIEDTDDLKTLKCLKRTMLGYP +>tr|A0A3S6F4D4|A0A3S6F4D4_YERET Fimbrial protein OS=Yersinia entomophaga OX=935293 GN=PL78_17300 PE=4 SV=1 +MNKTLLMALLFTLPGVALAATSNNTIKFQGEVAEQTCQVDINGSANTPIVLLPTVASASLSGPNSVAGKTNFTINLTGCNVASKETKISSVFQGMNVTPAGNLGNTGTAQFVAIQLLDSTDRPVILTSGPVEVPGITLATGATSASQDLSVQYISESGNAVAGSVMASAQYAITYP +>tr|A0A2S1PWN1|A0A2S1PWN1_ORITS 56 kDa type specific antigen (Fragment) OS=Orientia tsutsugamushi OX=784 PE=4 SV=1 +GDRDFGIDIGNIPQAQAQAANPALNDDQRAASRIAWLYNCAGIDYRVTDPHNPIGPMVLIPTLLTIPKGNPNPAGNPPQRAHQPANFAILNHDLWRHLVVGLAALSNANKPSASPVKVLSDKITQIYSDIKPFADIAGIDVPDTSLPNSASV +>tr|A0A126E925|A0A126E925_9RICK Uncharacterized protein OS=Rickettsia raoultii OX=369822 GN=UQ52_02815 PE=4 SV=1 +MNSTNQLQNNSLTNSWLKLGILSLGFAGLYSIILVVLRTPQLSSFFPNPHIFKSALIIHVNLSVLIWLLSVTASVWGGETSLRGEAKPRRGNLMKQYKIPEIAKFSTFARNDVFRLYPKLAFLATLLIAISPIAGHNPVMNNYIPMLENIVFILGLSLFGVTLLLYAINILYFFDWTNLNSLVNFTVLSTIIMFILSFVCFGWSYNGLQNIMQIIPIEIEFYYELLFWSGGHLLQFIYTQILIFIWVSLFRELIARELKFQKFYLFLLYLNFIFGILTLFGHIFYDIIDGAFKVFYTNHMKYLGGIAPVLCLIGMGVELVWVFVIPQLDREIQTKYQNNVIDLAIKLRDDTVTINDRVIKTILLCSITLFLLGGLIAMNITGINVAIPAHYHGSIVGISIACMGCSYLGIGRYQRHCERLKRAWQSHEVIQKLPRLPRRYFVPPRNDNIINFTFYLLTFGQILHILGLAFAGGYGVMRKDPNSVMPMSAKLLMGMMGGGGFIAIVGGLMFVYICVKVMFFKSIKLAHE +>tr|A0A159KM53|A0A159KM53_9HEMI Cytochrome c oxidase subunit 1 (Fragment) OS=Corythucha sp. BOLD:AAG8847 OX=1793449 GN=COI PE=3 SV=1 +SWIIRXELSQPGPFIGNDQIYNVIVTAHAFIMIFFMVMPIMIGGFGNWLVPLMIGAPDMAFPRMNNMSFWLLPPSLTLLIMSSMVENGAGTGWTVYPPLSSNISHMGPSVDLAIFSLHLAGVSSILGAINFITTVINMRPSGMSLEKTPLFVWSVVITAVLLLLSLPVLAGAITMLLT +>tr|A0A4U5P1N6|A0A4U5P1N6_STECR Uncharacterized protein OS=Steinernema carpocapsae OX=34508 GN=L596_013647 PE=4 SV=1 +MKQRKNALWEMQKLIDCLQSTKWLNVCCYLETDVTSFSINHVMVGPNLTLILDVCLLQVRYRYFDIRYRTAVYWKRNSCFSAFPTYFDKQK +>tr|A0A3E4WUS6|A0A3E4WUS6_PHOVU Uncharacterized protein OS=Phocaeicola vulgatus OX=821 GN=DXC16_05095 PE=4 SV=1 +MDDKTGALEKLKAIMAKAEQVEMSSVKIGDIIYVPLDEEDGLILKDGYKDRNKYIVIIGFTPEGVAIGALLINSEIDSSKRSEELLDCQYPLMVRNYRDILDYDSWLDCSDIFELSKLKITEKNGKLKGCLISEDRERVMQFLRETEVFDNATKRRYGIIK +>tr|A0A1R4HFW4|A0A1R4HFW4_9GAMM Secretion ATPase, PEP-CTERM locus subfamily OS=Crenothrix polyspora OX=360316 GN=CRENPOLYSF2_460006 PE=4 SV=1 +MYDGFYNLSKKPFQLNADSDFFFNSAVHKRALAYMRYGLTQGEGFVVVTGKPGTGKTMLVKELVNSLNSNDITIGIMVSSQVGADDLLKIISATFGLPYDGEDKATLLTRIERFFIQQAVDGKRVLMIVDEAQNLPKDSLEELRMLSNFEMSGKALFQTFLIGQLQLGETLFLPEMEQLRQRIVATYQLKPLEEEETKNYILFRLEKAGWQQTPQFEEEVFNAICAYTQGIPRRINTLCDRVLLFGYLDELSVIGLNAVNKVIADIEEEASIVTDEFHDVVALSASSNVSYSDGFSPQMEERIVALEKTVENLRNVLGRERALLRKAILIQLDMNEVYDDLGE +>tr|A0A5D4XIW7|A0A5D4XIW7_9GAMM Integration host factor subunit beta OS=Luteimonas sp. XBU10 OX=1132694 GN=ihfB PE=3 SV=1 +MTKSELIEILTQRQAHLKADDVDLAVKSLLEMMAGSLAHGERIEIRGFGSFSLHFRPPRTGRNPKTGDAVALPGKHVPHFKPGKELRERVTAVIPLPAEE +>tr|W7W772|W7W772_9BURK Transposase OS=Methylibium sp. T29-B OX=1437443 GN=Y694_04599 PE=3 SV=1 +MAMLAKIRRMHLRDGLSIREVARRTGLSRNTVRQWLREEGVTEPKYPERSTASVLDAWAEHLEAALRADAHRPVRERRTAKALFEQIRALGYAGSYPRVVVWVRRWRERQASAPRRAAFVPMSFELGDAFQFDWSCEYVFVGGLRRRLEVAHTKLAASRAFWLTAYPAQSHEMLFDAHARAFEALGGVPRRGIYDNMKTAVDKVGVGKARSVNARFQAMCSHYLFEPEFCNPASGWEKGVVEKNVQDRRRQVWREAGERRWSDLASLNAWLAERCRQGWEETAHPEWSELSVADVLQDERTRLMPCPKPFDGYVEQPVRVSATALVHFQRNRYSVPTRWVNEVLSLRAYPEAVVLVAEGVEVARHTRSFERELTFYDWQHYIALVQTKPGALRNGAPFKAMPEVLQTLQRHLLRHAGGDRVMAQVLAAVPVHGLEAVLVAAEIALEAGRPSAEHVLNVLARLKDGAPALRELTQPAPTLKEEPRADVQRYDSLREAQQP +>tr|A0A6J6Q2H3|A0A6J6Q2H3_9ZZZZ Unannotated protein OS=freshwater metagenome OX=449393 GN=UFOPK2366_01453 PE=3 SV=1 +MFEWNEEQQMIRDAVRRFVDDEVRPHVEELEHGDLAPYDILRKLFATFGMDSMARDRFAKQIAREKSVAEMVARGETPPAPAAERSGGDGGGAAMSLIPIIELCRVCPGMVTAMGVSMGLTSAAIMSKGTIAQKERWALDLLTMDKVGAWAITEPGSGSDAFGSMRATARRDGDDYILNGSKTFITNGPYADTTVFICKLDDGGPIEQRKVVSFVLDRGIPGFVQSKRLRKMGMHSSPTGQLFLDDVRVGRDRLIGETEDQPAGGREGAKATFQQERSGVAAMALGIIEECLQLSVAYAKDRVQFGKPIGEFQLIQDKLARMEVARINVQNLVFRTIEMSAAGKTMSLAEASAMKLYSARAATEVALEAVQVFGGNGYMSEFRVEQLARDAKVLQIYAGTDEIQITHIAKELLRA +>tr|A0A1X0ZA11|A0A1X0ZA11_PSEPU Hcp1 family type VI secretion system effector OS=Pseudomonas putida OX=303 GN=hcp PE=4 SV=1 +MPTPAYIAIEGKTQGNITKGAFTSDSVGNIFVEGHEDQILVQEVNHRITVPTDPQSGQPAGQRVHGPLIFTCALNKAVPLLYSALSSGEMLPNVELSWYRTSVEGTQERFFTTKLIDAVIIDIDLEMPHVQDKDNSNFTQFFKVSMAYRGIEWEHITASTAGADDWRKPKETAV +>tr|A0A6I3MVR7|A0A6I3MVR7_9ACTN Uncharacterized protein (Fragment) OS=Actinobacteria bacterium OX=1883427 GN=F2940_05525 PE=4 SV=1 +MNTSPFRSVLIVCGVATFGLVACGAQESQPQPISFSLAASTRSASDVVGAPESSNSNSKIMAPNYSVEYVVDGKLADLGQEASSWRAQTNVVASDADLKKIATALGVKNTEVQTSSGDPYLSWYYSGAVSSEASSPPSVGMSDSDAETTAPDRTVVSPPVPENVPTKEEAQSIIQKMMAKMGVDVDDANIEINGDEYGIWATAWKTFDGMRSPMSWNIGLGANGAVTYAQGNFLKFDRGANYPVVNTTEAVKRLGNPRYSGWFGYGAVSSKEVLAKDSATIPSQEVVVQTIRLTKVSASLTPVIASDKTLWLLPSYEYLTSDGYTVSTLALDDKYIDQTPTSTVPDNDVNVTTPDAGSGSSGSSTGGTPAVDGGVVEPAPAPQTILPTEKDAKALVGLNEDEAVKIIEGNGWTYRIGSRDGEQFMLTEDYSASRLTLGIE +>tr|A0A067Z5I4|A0A067Z5I4_GLUOY Uncharacterized protein OS=Gluconobacter oxydans DSM 3504 OX=1288313 GN=GLS_c18640 PE=4 SV=1 +MMTMNNEERDLIARFVARVGGGPQVTGPGQPPAAPLPPIDPEADRFIAENFQKYPEARYRITQMAVVQEAALAQAQNRIRQLEFQLQQAQQQLAQVQQSGGSKPGLFGGLFSGGNRPQQSAPPPGWGSQAAPPPNFMPQQQYAYPPGYQPGMFQRGGSGFLGSALTTAAGVAGGMMAANALEGLFSDHHGAGGDAAGGWGAGGDTIINNYGSDASASDPFGGAGTDAGSFSDSDFGGGGDAGGGGDFGGGDGGGGGFDDMF +>tr|A0A4P7HFW9|A0A4P7HFW9_9NOCA 2-C-methyl-D-erythritol 2,4-cyclodiphosphate synthase OS=Nocardia sp. CS682 OX=1047172 GN=ispF PE=3 SV=1 +MRVGIGSDVHPIEAGRPCWMAGLLFDGDDGCAGHSDGDVAAHALCDALLSAAGLGDVGAVFGTGRPEWAGVSGAAMLKEVRRLLDEAGFEIVNAAVQVIGNRPKIGPRRGEAQQVLGELLDAPVSVSGTTTDGLGLTGRGEGVAAIATALLQACR +>tr|A0A5S4G1W4|A0A5S4G1W4_9ACTN HAMP domain-containing protein (Fragment) OS=Nonomuraea zeae OX=1642303 GN=ETD85_40700 PE=4 SV=1 +MSDPAVGTTRSAARTKRSRGPGEVGEPELRQLLAGLTAVRDGDFRTRLPDDADGLLGEIASVFNGMVDQLSLFTSEVTRVAREVGTDGRLGGQADVPAVSGTWKDLTESVNAMAGNLTDQVRSIAQVTTAVARGDLSQKITVHARGEILELKNTVNTMVDQLSSFADEVTRVAREVGTEGQLGGQADVKGVAGTWRALTDSVNFMAGNLTDQVRNISQVATAVARGDLSQSITVSARGEILELKNTLNTMVDQLSSFADEVTRVAREVGTEGNLGGQATVRGVSGTWKDLTENVNVMASNLTNQVRSIAQVATAVARGDLSQKITVEAKGEVAALAQTINTMVDTLGAFADEVTRVAREVGTEGQLGGQARVPNVAGTWKNLTDNVNSMADNLTNQVRSIAQVTTAVAKG +>tr|X0VWK7|X0VWK7_9ZZZZ Uncharacterized protein (Fragment) OS=marine sediment metagenome OX=412755 GN=S01H1_51379 PE=4 SV=1 +MAYSLTFGDVAENHIGNQQIGSICHDGFTKAELLYAKTQFEVKGCTCELVELHKDV +>tr|A0A439RUF8|A0A439RUF8_9HYPH PhzF family phenazine biosynthesis protein OS=Mesorhizobium sp. OX=1871066 GN=EOQ56_14750 PE=3 SV=1 +MLTRNYLLYDVFTTERLGGNPLAVVLDSKGLDTAAMQAIAGEFNLSETVFVLPPDNPKHRARIRIFTPDHEMPFAGHPTVGAAIALAEMAGDGDTAGIFVLEENIGPVRCAVSKHAGASFAEFDLAKLPEPLELSADPEAIGAALGLGPHEIGFENHRVSFWSAGVPYVTIPVADLEAAARIKLDNQAWSELAPRKSDWALASPYVYCRETVNHDSAFHVRMIVPGNPSYEDPATGSAAAAFAGAIMHFDGPREGVSQRWIEQGLEMGRPSRIRLELNVEGGKLAAARIGGHAVKVAEGKLFV +>tr|A0A669NV56|A0A669NV56_PHACC Membrane associated guanylate kinase, WW and PDZ domain containing 2 OS=Phasianus colchicus OX=9054 PE=4 SV=1 +SKFRPHKEGEVPGVDYIFITVEDFMELEKSGALLESGTYEDNYYGTPKPPAEPAPLLVNVTDQILPGATPGAEGKRKRNKSVSNMEKTGIEPPEEEEEERPVVNGNDVTVTPESSEHEDKSTGVSGEVSSTQPCPAPGYTQPEEAKEDMDVTKQTKPEENDDLGPLPDNWEMAYTEKGEVYFIDHNTKTTSWLDPRLAKKAKPPEECKENELPYGWEKIDDPIYGTYYVDHINRRTQFENPVLEAKRKLQQHNMPNAELGTKPMQAQGFREKPLFTRDASQLKGTFLSTTLKKSNMGFGFTIIGGDEPDEFLQVKSVIPDGPAAQDGKMETGDVIVYINEVCVLGHTHADVVKLFQSVPIGQSVNLVLCRGYPLPFDPEDPANSMVPPLAVMERPPVVVNGRHNYETYLEYISRTSQSVPDVTDRPPHSLHSIPADSQLDSTFPPPAHDDNVSMASSGATQAELMTLTIVKGAQGFGFTIADSPTGQRVKQILDIQGCPGLCEGDLIVEINQQNVQNLSHAEVVDILKECPVGSETSLIIHRGGFFSPWKTPKPVMERWENQGSPQTSLSAPAMPQNIPYPPTLHRSSFPDSTEAFDPRKPDPYELYEKSRAIYESRRPDYKELDVHLRRMESGFGFRILGGDEPGQPILIGAVIAMGSADRDGRLHPGDELVYVDGIPVAGKTHRYVIDLMHNAARNGQVNLTVRRKVLPTGEPCPENGRSPGSVSTHHSSPRSDYATYANSNHAVSSSNATPPEGFTSHSLQTSDVVIHRKENEGFGFVIISSLNRPESGSTITVPHKIGRIIDGSPADRCAKLKVGDRILAVNGQSIINMPHADIVKLIKDAGLSVTLRIIPQEELNSPASAPSSEKQSPLAQQHSPLAQQHPLAQQQSPVTQHSPVAQPTLPQPLQLQGHENSYRSEVKARQDVKPDIRQPPFTDYRQSSTDYRQPPLDYRHPPVMDYQQPPPLDYRQPPLLDYRQHSPDTRQYPLSDYRQPQDFDYFTVDLEKGAKGFGFSIRGGREYKMDLFVLRLAEDGPAIRNGRMRVGDQIIEINGESTRDMTHARAIELIKSGGRRVRLLLKRGTGQVPEYDEPSSWSAPAATSPGLQEVALSLDDIISPLSSSHIAPPSDPSHQISPEPTWDIKREHDGRKPKELSVNGHKKKRLGEQRERSASPKKADRSKHDEPSWKGYSEGKTKVTDGGRLTSESRAVGHSVMMEAGAREHVCAGSSDEQFGRKGHLHPISTRSTNTTVRKATVSPGPWKIPGSDKLPGVLKSGTSAMSR +>tr|A0A516QZI1|A0A516QZI1_9BACI Octanoyl-[GcvH]:protein N-octanoyltransferase OS=Bacillus sp. BD59S OX=2499213 GN=lipL PE=3 SV=1 +MSNSRSILSQPEWRIVDQSSLGPTFHALQSFAMDDTLCTSIGNGQSAATMRSWVHHNTIVLGIQDSRLPHLEEGISFLKENNFNVIVRNSGGLAVVLDEGVLNVSLLFQETEKGIDIDLGYDTMWHLIQEMLKDYDVTIEAKEIIGSYCPGSYDLSIRDQKFAGISQRRIRGGVAVQIYLCATGSGSERAALVRDFYNLAIQGEETRFTYPEIVPSTMASLSELLGETITVQDLMMRLLKTLQQFAPKLTPSQLTIDEIPLYETNLQRIIDRNNKALGLEK +>tr|A0A7C4ETP5|A0A7C4ETP5_9DELT Uncharacterized protein OS=Desulfomonile tiedjei OX=2358 GN=ENV54_02205 PE=4 SV=1 +MLIHDKKTFGLGLLLFITFLIVLGIMFSPFFSGENALKASDKLFNSIAKGSTYYIPDLLKKAQAMGGAKFEATIKLKSDELAQKAQKVLTASGSQVSAAGAQLNVKGALGDVLSAALKDSDSMFHNRDSEVAQRYGFSGREALFVWWSLLKEVEKELTRQSKFKDAAFVSTVVKKGVEVGYNFFGIAPESALSKAGILTFALVFYVVYTLWWGIAILFLFEGLGLEMKAGAKKEV +>tr|A0A0Q7FUL9|A0A0Q7FUL9_9GAMM 3'-5' exonuclease OS=Acinetobacter sp. Root1280 OX=1736444 GN=ASC84_16360 PE=4 SV=1 +MRLPVLVFDIETLTDLKSGAHLYGLDLPQDDLEQALAKLRRQESGMDFQRLALHEIVCISGLWIDENGVMKLFSFSREHYTETEILQKFLSIFDKRHPTLVSWNGSQFDLPVILFRAMYHGLSAPSLFDQGEIDTQKRYNNYQNRYHNRHVDLMDVMAMFNGRHFQKLDDVAHLLGYPGKRGISGYFVPEYVNTQQWLKLTSYCEGDVLNTWLIFLRWALLKGQISLQDHRLWIQASIHYLQGQTQQHEFLNVWRETSQRTEFTQADFSSTPD +>tr|A0A5K1MIC2|A0A5K1MIC2_ACIBA Uncharacterized protein OS=Acinetobacter baumannii NIPH 615 OX=1217641 GN=F978_03533 PE=4 SV=1 +MKIKEMPKIKVRNQVALSPLLHKGGMHETEKPRAQHRRNRQDTKQQLKKGVW +>tr|A0A7L3CZ56|A0A7L3CZ56_PLUSO MX protein (Fragment) OS=Pluvianellus socialis OX=227228 GN=Mx PE=3 SV=1 +QGEEHTLYNQYEEKIRPCIDLIDSLRALGIEKDLALPSIAVIGDQSSGKSSVLEALSGIALPRGNGVVTRCPLELKLKRIPATQAWKGKMCYRNSSVELQDASEVEKAIREAQNVVAGTRGAISGELISLEIWSPEVPDLTLIDLPGIARVAVGDQPKDIGEQIKMLLKKIIGCKETLNLVVVPCNVDIATTEALKMAQEVDPSGERTLGILTKPDLVDRGTEESIVNIIRNLVVPLKKGYMIVKCRGQQDIHDKLALTAAIQQERRFFENHKYFSLLLDEGKATIPCLAEKLTNELVRHIIKTLPTLENQVREVLQKTLQDLQKYRRGTPRTESERLIFLTDLIKLFNQDISQMMRGEEQLYGNEVRLFTKIRREFRTWEVTLLESAAKVKNNVPSKVWKYEDQYRGREFPGFNNYRTFEDIIKEQIIELEEPAVEIMSNVIGLVEEKFMEVTKRHFANFHNLNRAAKTRIEHIREKQAEEAERHIRTQFKMERIVYCQDDAYINDLQSVKQEGATKAGNEKGLLVGSVSNQETSFVQEMGASKRLCNQIPLIILSSALHDFGDQLQTTMLHLLQEKDKLSHLLQEDSEAAKQRTYLSQRVNRLTKACQYLRDFTLV +>tr|A0A1H2WI61|A0A1H2WI61_9ALTE Ribonucleoside-diphosphate reductase OS=Marinobacter mobilis OX=488533 GN=SAMN04487960_104173 PE=3 SV=1 +MSTAALAEPQSPASSLQVIKRNGTLVSFDPAKITVAVTKAFLAVEGDQVSGSARIHDSVARVTEQVVQAISRRLKAGGKVHIEDIQDQVELALMRAEEQKVARAYVLYREAHAQERASRAAPVEAHPSLTVKQRNGQVAPLDLGLMKFQVEQACGGVDGVDAAAVVNEALKGLYDGIPEADVLSALVMTARGRIEQEPGYSQVTARLLLEQLRMEAAGALALPLQASLPSVYPQALTAFVHAGIRYELLDEALAAFDLERLGAALKPERDGQFGFLGLQTLYDRYFLHWQGARLELPQVFFMRVAMGLALREDDPNARAIEFYNLLSSFDYMASTPTLFNSGTRHSQLSSCYLTTVGDDLEEIYGAIRDNALLSKWAGGLGNDWTPVRALGSHIKGTNGNSQGVVPFLKVVNDTAVAVNQGGKRKGAVCAYLESWHLDIEEFLELRKNTGDERRRTHDMNTANWVPDLLIERMRRDQDWTLFSPSDVPDLHDLYGNDFRTRYEEYEARAARGELPLHKTVPAKQLWRKMLTVLFETGHPWITFKDPCNLRSPQQHVGVVHSSNLCTEITLNTSAEEIAVCNLGSVNLAAHINGGELDVQRLERTVNTAVRMLDNVIDINFYAVPQARESNLRHRPVGMGLMGFQDALYQLKLAYSSPEAVEFADLAMEQISYFAIRASAELAAERGAYPTYEGSLWDQGILPIDSIQLLADARQDGDLSVNTEARLDWTPVRELVAKHGMRNSNVMAIAPTATISNIVGVSQSIEPAYQNLFVKSNLSGEFTVVNPSLVAELKAEGLWDNVMVNDLKYFDGSVQQIERIPAEIKARYATAFEMDARWLVEAGARRQKWLDQAQSLNLYMAEPSGKKLDALYQLAWERGLKTTYYLRSLGATGAEKSAPVQAAPAPQVCSIDNPDCEACQ +>tr|W6TAY6|W6TAY6_9LACO Terminase OS=Lactobacillus fabifermentans T30PCM01 OX=1400520 GN=LFAB_00210 PE=4 SV=1 +MIEYVDQVLSGQVLAGQKIKWACERFKRDLSRSKDDSFPFYYDEDKAAQAVKFIELMPKTDGSQLTMQPFQKWIISELYGWREKTTGNRRYDRAFISMARKNGKTYLASGMAANGLLRERQPARNRQVLFVSNALKQAKLGYDMLSSGLRQVRKQSKYMRQRIKVQKQAITDLETDSQALALASDTSTLDGYAGTTVILDEWHEAKDRKVYNVLKSGQAQEDNSLLAVISTSGLNLNVPMHAEYDMLTDVLKGKTEADRYFVAIWELDDREEVYDQANWIKANPLFSEPHVKQRMTEKIKADVDLAIKQNNLIPILVKNFNMWLQASEDSYISADDWAAGKLAKVPDLHNRDAYIGIDLSKSNDLTAVSWLVPIGNGQFYCDSHSFVGTKYGLDSKIKRDGIDYRSMERAGECSITRLDSGVIDYDELFDYVQNLVGKYNWKVKAIAYDPYNAQTLITKFEKLSYPLFEVRQGTKTLNIPTRNFRDQLYDDKIKHNGNKILAYAVNNAILKVLNNGWQLDKARNSNRIDPIAALINAFVAGMDYYQESEAQQHAEDYYKTATAADLF +>tr|C5LGB5|C5LGB5_PERM5 Subtilisin OS=Perkinsus marinus (strain ATCC 50983 / TXsc) OX=423536 GN=Pmar_PMAR016847 PE=4 SV=1 +MPSRVDYDLRNRRIDEKESKIEEILLTGSNGDNDDDAMEHKDNDIVIIKLEACIIDSFVDGEGDGAVIVAVIDSGIDYTHPDLVDNIWINKDEIPGSDNIDNDANGFIDDIYGWNFVHNTNNIMDDNGHGTHIGGIIGAKGSNNIGATGIAWDVAIMPLKFLNADGIGRVSDAMRALDYAIQMGATISQNSWTCHKCDDTTTTNYNAIKMAIQKAGNAHGSINFYATPVDIKNAIMNSVDTDPNLEMKCLSSGILNAYRALNTVIHNNNKNKKKKNDHLHKSKTSSSVINIIISTTTTMNDDYICGDAFCNKYVGSVMTVSDE +>tr|A0A2E9Q7Q3|A0A2E9Q7Q3_9SPIO Aspartate transcarbamylase OS=Spirochaetaceae bacterium OX=1898206 GN=CMN76_04620 PE=3 SV=1 +MFDQSKIHPLLKQPVVSRDGIRGIERPRHLLESIPEDAEPLRSLAGMHIVSARQFDRNKILQLGRLAASYETQPDLIHPPLRGKILVSAFYEPSTRTRLSFESAWHRLGGDIMSITDPNTTGIAKGESLADVGEMFNNYGDVVVLRDSSEDSVYAMLDSLRIPIINAGNGIDEHPTQALADIYAMLKWRPDFGSGNLSEEEKITIGVIGTPNRMRTVRSLLLLLSLFSDSIKKVYIVNPASDVLDKEQDEELRAAGLKLEVVHKLRDILPEIDVVYINSIAWVGDSYETLTGDIKLTSESQLKQGAIILHPLARGEELDESLDGTSHNWYFSQARGAVFIRMALLTCLVHRINLVVDSPVEQPDSN +>tr|A0A520KE24|A0A520KE24_9ARCH Uncharacterized protein OS=Candidatus Verstraetearchaeota archaeon OX=2250257 GN=DSO09_03215 PE=4 SV=1 +MKKSRIIPIMSIIFTLLLILIIIINQVQWQNHEYYYELRRTIGLPSIAIGTNYEGTRNPLLDIFVRALYDVPGGHDYVVSSSFIDTPLKLKDFFERIPGFNMTVMREGK +>tr|C4NUU6|C4NUU6_ECOLX Aminoglycoside O-phosphotransferase APH(6)-Id OS=Escherichia coli OX=562 GN=strB PE=4 SV=1 +MPPVFPAHWHVSQPVLIADTFSSLVWKVSLPDGTPAIVKGLKPIEDIADELRGADYLVWRNGRGAVRLLGRENNLMLLEYAGERMLSHIVAEHGDYQATEIAAELMAKLYAASEEPLPSALLPIRDRFAALFQRARDDQNAGCQTDYVHAAIIADQMMSNASELRGLHGDLHHENIMFSSRGWLVIDPVGLVGEVGFGAANMFYDPADRDDLCLDPRRIAQMADAFSRALDVDPRRLLDQAYAYGCLSAAWNADGEEEQRDLAIAAAIKQVRQTSY +>tr|A0A1Q7EW51|A0A1Q7EW51_9CHLR DUF218 domain-containing protein OS=Chloroflexi bacterium 13_1_40CM_68_21 OX=1805084 GN=AUH33_06650 PE=4 SV=1 +MTNDDGDLAEFPEVAVVLGGGMSASGVPSPSTAARAHAASQLAHHRPSLAVIASGSHGDDPAPAKSEAAVMADLISKAGVPRERIFLEERSRDTIGNGVEVAARYLAKIEPRPLYLVTSPFHLERALVVFRNVLGFAWQVQAVAAEQTDDDLARANSETTFLQETFAFFEGIRPGDFPAVEKRYRARQVR +>tr|A0A519RZM3|A0A519RZM3_9SPHI Ankyrin repeat domain-containing protein (Fragment) OS=Pedobacter sp. OX=1411316 GN=EOO86_13990 PE=4 SV=1 +MNIYQIEQAYIQGKSLDEIKELYQSEIVGITDEQQVEVWEQVCGFANVEMIDYLIAQGWRTAGVENRNGDTLLHFLATPLHSYDYFISEKRVFECTKKLLEAKVSPLRKNSEGNTALMLGAKVAYTEMLEAYAEIGAKIDFTDRKGNTTLHILAEYSYSAVSDFETALERLMIHQRESNFDENNQRQVQVRHELEWRHNVTKARFNQFITFAIVAREFGIDPFQKNNEGQTAVDIAIYRKSKSIGAILKGVDFDDQERASLYFNAGGMDVHQACVHKDVEALTALITLGENLNEAYDKENDKHNGMTPLAIAMMEHSYEITDLLLKNGADATLRDSKSWHPFRYLFTPNSSVNVNFERFKEKTFQRILKAYID +>tr|A0A429HFY5|A0A429HFY5_9ACTN YceI domain-containing protein OS=Streptomyces sp. WAC 05379 OX=2203207 GN=DMH26_27780 PE=4 SV=1 +MGLTARIRTRDGWAVSHAVVTVTDMTGTQVLRLEADTEGAVRDADPLAPGAYTVIVTAVGYAPAAASAIVTASGRAEVGTVTLARQGGTELPPPGPWTVDPAHSSVAAVAQHLGISSVHGRFTRFSGAIEIAPDDIAKSRVDAVIRADSIDTGNGMRDGHLKSPDFLDVERYPEITYRSTGLTAAAGTDRWTVHGELTMHGVLRPVDLDLAYLGTGADPWGGTRAAFRATTELHRDDFAMNYNQVVQAGIAAIGTTLKVELDIQAVQGETLPQA +>tr|A0A7K9HDP6|A0A7K9HDP6_9AVES NCF2 factor (Fragment) OS=Bucco capensis OX=135168 GN=Ncf2 PE=3 SV=1 +MSLVETIQLWQEGVCAADRKEWRAALDAFTAVQNPPAKICFNIGCIHLVLGKLAEAEQAFTRSISCDKHLAVAYFQRGIVFYQRQNHEKAIEDFKEALTQLRGNHLIDYKILGLRYRLFACEILYNIALVYATMEDWKKAEEHLALAVNMKSEPQHNKIDRAMEAILKQKVCELVTISAGKLFRPNEKQVAQLEKKDYLGKAMVVASVVDKDDFSGFAPLQPRASGPPPRPKTPEILRALQGQPHRVLYEFIPETAEELQVLPGNIVFVLKKEKDNWATVMFNGKKGIIPCNFLEPVELQNKLHIQEETPLEDEIPESPHSTAPEKPRRPAPVYHLQVVEAAVTSPYILKVHYNYTVTLQVKPGLSYMELLDLVCKKLELQPEHTQLRYKPVESQALVTLSMENLDVAWSQSKGNCLTVWCEITEGEGFLLPQEATLEMGPTQVVAQYSYEATQPEDLEFQAGDVILVLSKVNEDWLEGQCNGKIGIFPSAFVQ +>tr|A0A368E3B5|A0A368E3B5_9PROT SDR family NAD(P)-dependent oxidoreductase OS=SAR116 cluster bacterium OX=2024888 GN=DBW67_07180 PE=4 SV=1 +MFRYDNKIVVVTGCGSIAAGIGNGRAMAMAFARQGAKVIGTDRNLEAANQTLEMVHQEGGLMEVVGLDSLDDMSVLAFFEDVLAREERIDVLVNNVGQSEPGGPYDMALETWRGQFALNIDTAFMAIKHVLPSMRARKNGAIINVSSVAGMRYIGKPQVGYAAAKAALVQMTKTTAIIEAPHNIRLNCVVPGLMHTPLVQVLAQKYAGGDTEAFVAKRNNQVPMGRMGDAWDVAHAAIYLGSDEASYVTGTELVVDGGITATTP +>tr|A0A7L4KQA5|A0A7L4KQA5_9CORV Kinesin-like protein (Fragment) OS=Callaeas wilsoni OX=1347786 GN=Kif2c PE=3 SV=1 +AMDSRLCRNVHPGVIIKIQRSNGSIHKATVKVVNVEHSCVTVEWSEDGATKGKEVDINDVIAINPELLELPPADVKENVPLQDNVTLQKQKRRTTLSKIPAPREAVRGRSRMSAITESQCSFQEDEMAVDPCTSLQTRKYLLLPAGRTRASGLGCVPEASLSSVNGNTENHLPAARTSSSESPVRRRSNIVKEMEKMRSKREEKRAQISEIRIKRAQEYDSTCPNWEFARMIKEFRETLNCQPISISDPIEEHRICVCVRKRPLNRQELLKKECDVVTVPSKCVLMVHEPKQKVDLTKYLETQTFRFDFSFDETSSNEMVYRFTARPLVETIFEGGKATCFAYGQTGSGKTHTMGGDFSGRTQNASKGIYAFASQDVFLLLNQPRYRSQNLEVYVTFFEIYNGKVFDLLNKKAKLRVLEDGKQQVQVVGLQERPVGCAEDVIKMITIGSACRTSGQTFANASSSRSHACFQIILRRRGQMIGKFSLVDLAGNERGADTSSADRQTRMEGAEINKSLLALKECIRALGQNKSHTPFRESKLTQVLRDSFIGANSRTCMIAMISPGMSSCEYTLNTLRYADRVKELSPHDGGIDAQSQMETEEIETSTEGSGLQFSFSKDEEEELSPHIFSYREVMTQISEREEKVVEQLKELRQRMITELDYLLGMAEKPDYDLETFVSRAKYFVEDSSRNFLSVRETLDALGTAMQLEEQASKQIS +>tr|A0A2D9JC90|A0A2D9JC90_9BACT Protein translocase subunit SecA OS=Rhodopirellula sp. OX=2024855 GN=secA PE=3 SV=1 +MSESSARETTNPNELDSSGVPLSSSSTEETGPDPXWTPPDPVLSEATALDPLAPNEPLEDAGNXVETTQEAVVRRSSDPSANKKKWTKASNWRPRMVRWQRXLARVNALESTLQAEDDQTIRKRSLALRYRAMAGEKLSEXLPEAYAXCREAGRRSLSMRHYDVQILGGIALFEGHXTEMQTGEGKTXTATLPLYLHSXVGKGAHLATVNDYLAKRDAEWMMPLFEMLGVSVGIIQTEDDQGGRRKSYGAAITYGTAKEFGFDFLRDRLXLRAQNRMQTEMLGSGDGGFSNSGDQVVMRGMHFXLVDEADSILIDXARTPLIIGSIEDTVRDQIIETYKWAAENAPXFELDEHFEIDDETKRYELTARGRSXVRALPKSDLVRTMGLVDMYEYIERSXKTHREFLLNRQYVIRPSEKDPNVDEIVIVDEFTGRLAEGRKWRDGIHQSIEAKEGVEXSVPTGQAARITVQDLFLRYPHLAGMTGTAATSAGELRKIYRTPVVRVPTNRPPQRIQLPSRVFGTLNSKFEAIAKEVEEXHATGRPVLVGTRSIXKSVLLSKLLDDLGXEHEVLNANXVERXAEIVAEAGGRGKVTVATNMAGRGTDIKLSNDVEQIGGMHVICTXLXXAARXDRQLIGRCGRQGDRGSYRQYLSLDDDILKGGYGAIKYEKLKKRGEATSGSVDRLAAMFHKAQRKVERRHFRDRMVLMHHEKERKXMQREXGQXPYXDTPD +>tr|A0A256Z8B1|A0A256Z8B1_9ARCH Uncharacterized protein (Fragment) OS=Candidatus Bathyarchaeota archaeon ex4484_231 OX=2012512 GN=B6U79_02805 PE=4 SV=1 +MNKKLRLLSVFLLLLASFSPVVQAEASCTGSVRRWYSFRELAWGDMNSWADVDGNWVKDEQEIISPCILVSVTFGRGRVICIGDEGFLSNVLVNEADNLRLGLNIIAWLAEAEGNRHRVLFDSAHNEMQDIGSGDPWRGYSIFAGKLRKAGYTVEKNTA +>tr|A0A4Q8BRW3|A0A4Q8BRW3_9ACTN Xaa-Pro aminopeptidase OS=Streptomyces sp. CNZ288 OX=2512147 GN=EV377_6800 PE=4 SV=1 +MDKPLARPHTGSHDLDVSAALHTFMGSAWAPSPLPSGVRVPGYDALAGRRARLSARFPGERLVLPAGELKVRSNDCDHRFRPHSAYAWLTGLTGEDQAGHVLVLEPAGAEGHEAALYVRPRSDRSTDEFYRDRRYGEFWVGRRPDLGEAAELTGLACRDLDDLAKLTAGPRPPARVLAGVDARTDGLFDRGPHSAAEPDRDAELGTYLAELRLLKDEWEVGQLQLAVDHTAAGFEDVVRALPAALRHPRGERWIEGVFQTRARAEGNGTGYETIAASGAHACVLHWIRNDGPLDPGHLLLLDAGVETDTLYTADVTRTLPLSGRFSRIQRQVYELVLAAQNAGIAALRPGARFRDFHRAAMAVIAEGLYDWGVLRITPEEALAPDSGLYRRYTLCSSGHMLGLDVHDCAKARASQYLDGVLEAGQVLTVEPGLYLQPDDETLPPELRGIGVRIEDDLVVTEDGARLMSDALPRDPDAVEEWMGTLLDGFRPGA +>tr|A0A068CJ75|A0A068CJ75_9PLVG Protease (Fragment) OS=Human immunodeficiency virus OX=12721 GN=pol PE=3 SV=1 +PQITLWQRPLVTVKIGGQLKEALLDTGADDTVLEEINLPGRWKPKMIGGIGGFIKVRQYDQVPIEICGYKVIGTVLIGDTPVNIIGRNLLTQLGCTLNFPISPIETVPVKLKPGMDGPKVKQWPLTEEKIKALVEICTEMEKEGKISKIGPENPYNTPVFAIKKKDGNKWRKLVDFRELNKRTQDFWEVQLGIPHPAGLKQKKSVTVLDVGDAYFSVPLDEDFRKYTAFTIPSTNNETPGIRYQYNVLPQGWKGSPAIFQSSMTKILEPFRKQNPDMVIYQYMDDLYVGSDLEIGQHRTKIEELRQHLLGWGFTTPDKKHQKEPPFLWMGYELHPDKWTVQPIVLPEKDSWTVNDIQKLVGKLNWASQIYSGIKVRQLCKLLRGTKALTE +>tr|A0A2Y9SHQ2|A0A2Y9SHQ2_PHYMC Fibroblast growth factor receptor OS=Physeter macrocephalus OX=9755 GN=FGFR3 PE=3 SV=1 +MGAPACALAFFVAVAVVMTGAVSGSPGMEQRVVRRAAEVPGPEPGPRELVFGSGDTVELSCPLPAGAPPGPAVWVKDGVALAPSDRILVGPRRLRVFNASHEDAGAYSCRQRPSQGVLCRFAVRVTDAPSSGDDEEGEDEAEDTAGAPYWTRPERMDKKLLAVPAANTVRFRCPAAGNPTPSISWLKNGKEFRGEHRIGGIKLRHQQWSLVMESVVPSDRGNYTCVVENKFGSIRQTYTLDVLERSPHRPILQAGLPANQTAVLGSDVEFHCKVYSDAQPHIQWLKHVEVNGSKVGPDGTPYVTVLKSWISESVEADARLRLANVSERDGGEYLCRASNFIGVAEKAFWLRVHGPQAAEEELVEAGEAGSVYAGVLSYGVGFLLFILVVAAVTLCRLRSPPKKGLGSPTVHKVSRFPLKRQVSLESSSSMSSNTPLVRIARLSSGEGPALANVSELELPADPKWELSRARLTLGKPLGEGCFGQVVMAEAIGIDKDRAAKPVTVAVKMLKDDATDKDLSDLVSEMEMMKMIGKHKNIINLLGACTQGGPLYVLVEYAAKGNLREYLRARRPPGTDYSFDACRLPEEQLTFKDLVSCAYQVARGMEYLASQKCIHRDLAARNVLVTEDNVMKIADFGLARDVHNLDYYKKTTNGRLPVKWMAPEALFDRVYTHQSDVWSFGVLLWEIFTLGGSPYPGIPVEELFKLLKEGHRMDKPANCTHDLYMIMRECWHAVPSQRPTFKQLVEDLDRVLTVTSTDEYLDLSVPFEQYSPGGQDTPSSGSSGDDSVFAHDLLPPAPPGSGGSRT +>tr|A0A0R1W6U3|A0A0R1W6U3_9LACO CDF family cation diffusion facilitator OS=Lactobacillus suebicus DSM 5007 = KCTC 3549 OX=1423807 GN=FD16_GL000874 PE=4 SV=1 +MGGVFSGSLALLSDAFHNLGDSAAILLGYFAQLIGRHPETERRTYGYRRAEIIFALLNSIFLIVISVFLIFEAAKRFSHPQPINGELMLIVAVVGLLANLASAFLLQGGSKDSLNIKATYLHILSDALSSVGVIIGALFIWFTDISWIDPVITILVAIYICYETWPIIHQTLSILMQSSPELDYACIKKDIKQIDGITGVHHVHAWMIDEHRIIFSVHINLKDMKLSEVEPIYQRIETLLKNKYHICHITIQAEVERGIEETMFNTPADKATTSDEVE +>tr|A0A0B1R8M8|A0A0B1R8M8_9GAMM DUF262 domain-containing protein OS=Pantoea rodasii OX=1076549 GN=QU24_03595 PE=4 SV=1 +MANDDKTLNLFPIDYPFETLCSRMESNPVKLKLNPDFQRKYKWDQDGWQRSSKFIESCLMRIPLPSCYFAEENDGNHIVIDGVQRLTTIQKFFNDEFSLEGMTTFKELEGKKFSELGSLRSELESTTIRCIVLRKENPKALIREIFSRLNQGAVKLSDQEIRHALYPGGFDDLLNELGGIEAIKNFGLAETTTVKRDSREPDEQVLRFFAFYDDGFAEHFNNTLKDFLDDQMETFSTLEEDRLNEMREIFKSSLQKCEKIFGDDTFTNPTVRRKRKGLVHYDILMPTIGKLSDEVVNDKAENIRQAWEDLCSSNEFKRTLSGGLQNKSSVIRRRDSWTKLLKEVTDGKD +>tr|A0A3E4PQR0|A0A3E4PQR0_9FIRM DUF3794 domain-containing protein OS=Dorea formicigenerans OX=39486 GN=DXC93_09950 PE=4 SV=1 +MLNIYRQGKTFTDQFYVDEDYNVPDTKADIREVIESDAVMEEIDLKLVENYIRITGRLAFQVLYVADNSDNTLSSLEGKIPFEEMYYVDETLEETLFLKAAQTELTVNLIHSRKINVKAMAEVTMSSDSQVSEEVTTGIESGEQIYTKYQEKQILTLHTVKKDTYRIKEQLTISGTKESIGNILWKEVLSRRLDTRLEADTLKLQGELLVFCLYESVDGKTDWICENVPYEGQVECFGAEEGMYHQIYPILTDALLEPAMDEDGEMRLLGIEATLSMRFFLCTEEKIQILDDLYSLKTCCVPAYTQCKVENVLMQNHSKCKIAERLSLPEIKDDILQICYSDARIQVEQMTVQDTGIQIEGVLHIRFMYVRPDDQIPFALWQGMIPFSWLLESNEVQEDMTLDMMPSLEQLGISLLGNGEIEVKAVLAFRSFLRGKVTFRNIDSVEEKEIDYKVLEQRPGIIGYIVKEGDELWNLAKYYGTTKEGIMDINHMESEQLKCGDKLLIFKENASIL +>tr|A0A285F1R0|A0A285F1R0_9PSED 3-oxoacyl-[acyl-carrier protein] reductase OS=Pseudomonas sp. LAMO17WK12:I10 OX=1286371 GN=SAMN05660489_00338 PE=4 SV=1 +MTESILVTGSSRGIGRAIALRLAQAGYDLILHCRSGRSEAEAVQAEVEALGRQARILQFDVTDRASCKAVLEADVEAHGAYYGVVLNAGLTRDGAFPALSEDDWDTVLRTNLDGFYNVLHPLIMPMIRRRAAGRIVCIASVSGQVGNRGQVNYSASKAGLIGAAKALAIELGKRKITVNCVAPGLIDTAMLDENVPVDELLKMIPAQRMGTPEEVAGAVNFLMSAEAAYITRQVLAVNGGLV +>tr|A0A1B9FWL6|A0A1B9FWL6_9TREE Nuclear RNA export factor 1/2 OS=Kwoniella bestiolae CBS 10118 OX=1296100 GN=I302_07512 PE=3 SV=1 +MAPGTSNSNNNNSRGGRPTRGSNNARNPTGTPPIVKQLQTISGKAEREHSKSELTKKLHGEEMKEWIRKRVIADGVLDMSNLPNDPWLKENGILPPGHPNAPPNAGTVFWRIIEGVVQKGAGITVLTLSLANNNLEHLAQLSKLPLTLPDIRALDLSGNPIKNIGELDNLRAAGEKKGKATSGAGSLKSLVEIKLNDCFFRERMLQQPDGPNIYKHDILRRFPGLRILDGVELERIILPIDRKPKVRLTDEQKAAFVAKPFAFPCDVQGGFSEEGVKEAAMQFCAKYFTLFDNDRNALIPGYAPNALISISANTLPSRSAYQVEAQKTRANRPQPVSFEAWTNLPSRNFFRGITTIRARMDSLHNPADAERLLRWWNKVVPRTKHPLSDPERWCFDTWVLDGEGENTKLCLMIQGEFEEMPSGTYRSFSRTFILSPAPPGSLAANAGWPAIALSDTMTVHSYLGTFAFDERNRSLATHGVTIQPPSLPATAPVNGAATGNDALIAQMSQQTRMNAQFSTMCLEQNGWNFEAALKNFEEIKGSIPPEAFV +>tr|A0A1Q6Z6P7|A0A1Q6Z6P7_9ARCH Uncharacterized protein OS=archaeon 13_2_20CM_2_53_6 OX=1805020 GN=AUI07_07525 PE=4 SV=1 +MKKSSDPADMVLREIEEMGKKSFIPSIGPLKGRILADIVREHKPRLILEVGALYGYSAILIAKNSPAHAQITTVEKDPKNARITQENVARAGLDDMIEVIQGDAIIILPELPGPFDLVFLDAEKIQYLAYLKAIEAKLHQGSVIVADNVGVFRDQMMDYLNYVRTTGRYRSRTVETLLEFSETTKDAMEISEKRY +>tr|A0A7Z6L1Z8|A0A7Z6L1Z8_9NOCA Low molecular weight phosphatase family protein OS=Rhodococcus sp. AQ5-07 OX=2054902 GN=CVN56_03915 PE=3 SV=1 +MHVLFVCTGNICRSPTGERLARAYAAEAGVSGFTASSAGTRAMVGHPIEPTAARVLAGLGGDPTEFQARRMTTALASDADLILTMTESQRDKVLAMAPARLKRTFTLREAARLGSLADARTVEDLAAARPRFRAAEPEDVMDPMGKEENVFHEIGLEIADLLGPLLSRLRFGER +>tr|A0A5T8G289|A0A5T8G289_SALER Phage terminase large subunit family protein (Fragment) OS=Salmonella enterica OX=28901 GN=DQ454_26965 PE=4 SV=1 +PPTTGILSLYNRGDRRRWYWPCPHCGEYFQPSMENMTGYRDSADPMVASEAARLQCPHCHKLTEPQQKRELNNRGVWLREGQHIDRDGNITGEARRSRIASFWMEGPAAAYQTWAQLVYKLLTAEEEYERTGSEETLKAVINTDWGLPYQSRRSLEARSSDALMARAEDVSKRTVPDGVRFIVATVDVQGGKKRRFVVQMVGYGAYGERWIIDRYNIRYSLRVNENGESQPVNPAAMPEDWDLLRTDVLDKEYPLAGDPEQFMPVLAMAVDSGGEDGVTDNAYAFWRRCKRRGVAGRVYLFKGDSTRREKLITKTYPDNTERSDRKAKARGQVPLYLLQTNALKDRIAAALEREEPGANYIHFPDWLGPWFYEELTYEERGADGKWKKPGRGNNEALDLMCYAHALVIIRKYEQINWEKPPGWARLPEKGAAKTTQPVGARRQEQHEGGEKAVKARKKKILPAWGGGSGGGWL +>tr|W9B5Y0|W9B5Y0_9BACI 3'-5' exonuclease DinG OS=Oceanobacillus picturae OX=171693 GN=dinG_1 PE=3 SV=1 +MERFVVIDLETTGHSAVKRDKIIEVGIVVIEENEVVDSYGTFLNPGKSIPEFISSLTGIRDEDVKDAPTFEERAEEIAALFEDSYLIAHNVPFDMGFINAEFAAVGRELLQNPVLDTVELARVLYPKAPSYKLGQLAEYLGIHHEDPHRALSDAYVTAKLFLKLRERLDNLPYETITHLIRLEKMLKSDLFALLADRENELAFSTQEDPELETFQGLAFKKIKETKNTPQTRIGSYGDFLDAIYEEGGTLSQQMARYEKRTGQREMSETIYDAFQSRRHALIEAETGTGKSLAYILPAIYDAVISGQRLVISTFTTQLQTQLLEEEIPLIRNLLPFPFKVALLKGKSHYISLEKFERELLSTEKDNYDITLTKAMILVWLTETQTGDIDEVQLPSSGYLFFRRVSTDTEAHVDPQSPWFLRSYYQKARKAAQQADIVITNHALLATDIFNDYQLLPSYDKVIIDEAHHFEETASKHYGLKLDYMNMQYTLNQIGETNDPKFIGQLITKYRDFIEEEMIDRWDDLIIDAKYETDDLFRGIFQYVAEQNKHQKSLSDIGRTQYRFENSKEDTAKWDTILEMTNRLMFFLRDLIYILARLDQNLAKQYEDKYDKNEVEQYIEQLQQYMDHLESLFLAADSPKFVKWVEVETYGAKNAVYLYSEPTDISGFLSTDFFAKKESVILTSATLTMKNSFTFIKERLGLTDEEIETKKIPSPFSYKDQVQLMIPTDFPDIKHGNQDDFIYATCEAIFSLAEITSGRMLVLFTSYDMLKKSYYLLKEIMDTSTYALIAQGISSGSRSRLKKNFQTFDQSILLGTSSFWEGVDIPGEDLSSLVIVRLPFQPPDHPIFEAKSANLKENGKNAFMELSLPNAVIRFKQGFGRLIRSNTDRGIVFVCDSRIIQARYGKYFLDSIPEIPLTKDTTQQLMRKAEEWF +>tr|A0A0D3HJS1|A0A0D3HJS1_9ORYZ Uncharacterized protein OS=Oryza barthii OX=65489 PE=4 SV=1 +MATKATTALLLLAAAAAALLCHVHVAVAAADSEPCDPSDITIATVKTGRVVGGLPEFQVTIGNECSCPEGDVVLSCLDGVPAGVDRSKIHTAGNDGLCLVNDGLQIVKGSPVVFTYAASAPISLAFDNASPRCQR +>tr|A0A481QYF4|A0A481QYF4_9PSED Pilus assembly protein PilO OS=Pseudomonas sp. DTU12.3 OX=2073078 GN=C2E19_18930 PE=4 SV=1 +MRIPRLIVHEYLQGLGIPGLAGLALLLIAVAWALGGLLPGWQSLQHLSQQTQEATEYLAKVEDGSIAPPVVPQRQLDDFRNKLPAQPQATVAIDRIYALAAQEHITLARGEYALGVDPKTHLARYQILLPVRGSYPQLRRFVHALLGQLPAVVVEDLELQRKKIGDTDLNGRIRLTLFLSRS +>tr|A0A412E108|A0A412E108_BACSE Transposase OS=Bacteroides stercoris OX=46506 GN=DWY58_15645 PE=4 SV=1 +MEPSIKDKYIILGFIFVAICMISFFITIIIAASFNQDNFVRLIVFVCSNLLGWLLYLSFQTVIFDTYEIYRIKFGKKEMKEITTETVALQEEEPQNTIEPVTQIAEGASSDAHPIELNIDPKRHEEIRSSYKDEQDKENERRIRMVVEYIHFYMPRIADEETVNHVCNEVSNWMNKNNYKPKPIKRRLTQDISNIPLRHFIWNIAERCMYKRYYNGDNRARFVKELFPREFSETDIATIKNFKVDPLKSPIPIDEPEDGKPDFHYPNGYLRKE +>tr|A0A448JZC9|A0A448JZC9_PASAE Membrane-fusion protein OS=Pasteurella aerogenes OX=749 GN=acrA PE=3 SV=1 +MTKKRFFLLFIVIVALAAGYFYYGNKNDKTITYLTETVQRGNLQKTVIATGTIRAYNRVEVGAQVSGKIEKIYVTLGQKVKTGDLIAQIDSSTQQNTLDTATAKLASYQAQLKAKKVAYSVAKSSYDRLAKLYAKKSVSLDEFESAKDTLATAEAAIEEIDASIKQAEIEVNDAKTNLGYTKIVAPIDATIISIPVSEGQTVNANQTTPTIVQVADLSKVLIKPEISEGDITKVTAGMEVKFSTLSDPDKIYRATIDSVDPAMTTLTDNEYTESVSDTNAVYYYANVVVENPDNNLRIGMTTQNTITIADVKNTLLIPTMTLKKQNNKVFVNVLTTANQVEQREVQIGLNDDMNTQILSGLNEGEKVVSSQVAAGETVGTVRGPKMF +>tr|A0A1T0CT31|A0A1T0CT31_9GAMM Pilus assembly protein OS=Moraxella pluranimalium OX=470453 GN=B0680_01190 PE=4 SV=1 +MTVQKGFTLIEMLVVLAIIAVMAMVAIPAYHAMMQRFESQSSKRHIAEAIRRAKIEANLHQKDIILCPYGVNEQCDRLGQVGLLVFVDKNSNNRLDDADIVSMKQPLDLRYGLLSMRVSLGRHYIKFMSDNAKPRGHIGNIRYCNTEQNNSLSHLTTINMHGVVTAKSGDVVSIDCG +>tr|F8J9Q9|F8J9Q9_HYPSM DNA (cytosine-5-)-methyltransferase OS=Hyphomicrobium sp. (strain MC1) OX=717785 GN=HYPMC_1709 PE=4 SV=1 +MEKLKLLDLFSGIGGFSLGLEASGYFEPVAFCEIDTFPQSVLARRFVGVPIYGDIRALTAERLRADGIMVDAICGGFPCQDISVVVLDPFGGSGTTALAAETTERKWILIERDEEYAEKAMARIRDHVLGESHPAPAKKKRTPAALPKPTHEIAQVSLF +>tr|A0A1U8LF61|A0A1U8LF61_GOSHI tubby-like F-box protein 5 isoform X1 OS=Gossypium hirsutum OX=3635 GN=LOC107926834 PE=3 SV=1 +MIQMSLKSIMRELKELKDGIGNMSKRGDQSKLWRSRTRSHVAPDEAPLESQLSEQSPWANLPPELLLDIIQRVEESETAWPARAVVVFCAAVCRSWREITKEIVKTPEQCGRLTFPISLKQPGPRESPIQCYIRRDRTSSTFLLFYGLVPSEGESDKLLLAARKVRRATCTDFVISLVADDFSRASNTYVGKLRSNFLGTKFTVYDSQSPCDSRIQSTARPRRRFHSKQVSPRLPACNYIIGTVTYELNVLRTRGPRRMHCILHSIPVSAIQEGGTAPTPSALPQSLDEQLSPLHSSKGKEPIVDIISPSIQATPVFSPGSREPLALKNKAPRWHEQLQCWCLNFKGRVTVASVKNFQLVAAVEPSHNVSPEEQEKVVLQFGKIGKDIFTMDYRYPLSAFQAFAISLSCFDTKPACE +>tr|A0A212IWF4|A0A212IWF4_9BACT Chaperone protein htpG OS=uncultured Dysgonomonas sp. OX=206096 GN=htpG PE=3 SV=1 +MQQNGKIGVTTENIFPIIKKFLYSDHEIFLRELVSNAVDASQKLKTYASLGEFKGELGNLSVKVKIDKDNGTLTISDNGIGMTNEEIDKYINQIAFSSANEFLDKYKKDANSIIGHFGLGFYSSFMVSKKVEIITRSFKEGAEAVKWSCDGSPKYTIEAVEKAERGTDIILYIDDENKNFLEQGEIDKLLKKYCRFLPVPIVFGKKTEWKDGKSVETEEDNVINDTNPLWTRKPADLKDEDYKKFYQELYPFSDEPMFWIHLNVDYPFKLTGVLYFPQIKSNVDMNRNKIQLYSNQVFVTDSVEGIVPEFLTLMHGVLDSPDIPLNVSRSYLQSDQNVKKISNHITKKVADRLEEIFKNDRSRFEEKWDSLKIFIEYGMLTDDKFYERAQKICLLKNTDAKAFTFEEYKTLISSDQTDKDGNLIYLYASNKDEQYFYINTAKDKGYDVILFDGQLDVHMAGMLEQKFEKSKFVRVDADTIDNLIPKEDSKEVNLTDKQKEELNEAFTSQLPKIEKTEFIIDYKALDEKAQPIQITQNEFMRRMKEMSAMQTGMGFYGEMPNSFNLVLNIEHPLIKKIMGDIDNKDKEAVNLYATENRDIRQLIDLALLSNGMLKGEALNNFVKRNMENI +>tr|A0A1F0KNA7|A0A1F0KNA7_9MICC Long-chain fatty acid--CoA ligase OS=Rothia sp. HMSC066H02 OX=1739503 GN=HMPREF2999_09040 PE=4 SV=1 +MKVFSTPAEVLVDPSLNLTSIVERHRADSSNPVLYRRQMSPGNWQPVRAQQFHQMVTDLAKGMIASGIRPGDRVGIMSRTRFEWTVIDFAIWYAGAISVPVYETNAPAQAAWALAHSEATAIFVEDEKLLARIAEAEEFASTTQEPMQLKHRWVIENGDLDTLSTRASEVSDEQLEQVRSAAGCDDLATIVYTSGTTGRPKGCALTHGHFLNLSANTRLVEPEIANSRNSSILFLPLAHVLARLIQVLALDAGLVIGHSPNIKNLASDLDSFKPTMLLVVPRVFEKVYEGAMAKAAKGGKFNKSLFERSTDIAVRWSQAKVEGRVPLKLAAQYALYDKLVYSKLRAALGGELRYAVSGGGPLGERLAHFFHAVGVQVVEGYGLTETCAPIAVGRINPYQIGMLGPLIPGAEGYIAEDGELLVRGVGVISSYYKNPEEDAHAFTEDGWFRTGDLARFDERGYLKIVGRKKEIIVTAGGKNVIPGIAEGHLRTSPLVSQAMLVGDEKPFISALVTLDPDTLPEQLEHLGLPRSLSIPEAAVHPAVRAAIQKLVDEANQLVSRAEGIREFRIMNRDLTEEDGYLTPSQKLRRAKILQDFSSYVDEMYGKVSDSTSDSLARLQEYAAEQSEKFAELREQAAERLHEYADQQTERLAELREQAAEKFEELREQAVERMQKPQEDKTETKEDAERSEKTNDDSEHETATPAKGVEAKKADTQRSEGEDS +>tr|A0A370IAZ5|A0A370IAZ5_9NOCA Uncharacterized protein OS=Nocardia pseudobrasiliensis OX=45979 GN=DFR76_102294 PE=4 SV=1 +MKIALVGILAGLGLLTAAPAHAAALTPDYAQPPNGAGVDPGHNLTPVWSPIQVPALDDVDTASTTTITAHPYLAPWAHERVPIPAGTAVELRGAARVRIPEANGKTLVVNPNGHCYFDGPNAVSGDLTPTALTPVRIDTSAFQLTIEPTLYRH +>tr|A0A5K3FDK5|A0A5K3FDK5_9CEST Uncharacterized protein OS=Mesocestoides corti OX=53468 PE=4 SV=1 +MDSVWLLLCTIAKLVFTIIWLMLVVIFRTGKCAVRTAAWVIVKCARFVGIRRKRIHFALMGETQGLVEETTGPIAPWRLVREGLDPEKYRGNYPVLRTHVPPVTTPQPRLVCRSFRATGTGRQVRGRPGAGEIVLRGSTKYRSFAALH +>tr|A0A4U1DEZ0|A0A4U1DEZ0_9BACI Uncharacterized protein OS=Bacillus kyonggiensis OX=1037680 GN=FA727_10130 PE=4 SV=1 +MQTLERKGAGGVVVNPNRDKFLKEQRDLKQQYLGGARDNRTEMKSDPEYNNKNDTDISVGATGREVEEE +>tr|A0D4D9|A0D4D9_PARTE PUM-HD domain-containing protein OS=Paramecium tetraurelia OX=5888 GN=GSPATT00013372001 PE=4 SV=1 +MKSQIVNNQRYYSCQDEDGNSTRMLRNSNNSVRILTDIQLPQQMSKSTQDAYEKGESEMKNNIFDNVIKENIIGFSIDIYNHYIIQCILEKGLSEHKSYVLRQVVENMDLFCYRKYAYKIVQACLTQFQNNQIIQYIIDNIKRLQFDQYGNLIISTLLDTIQNDEQFAQIINKLQIDKIKYHQYGCVILINMVTCPKANHVGPIINKLIQESIQLSKSQFSNYIIQKMLKERTIEQNKVLINEFLIPNFVELSCNKFGSNVCEIMVTKSLAYQLQNLWNLVIKQYDFYLFQESEITFEQ +>tr|A0A1S1CB24|A0A1S1CB24_9MICC Uncharacterized protein OS=Rothia sp. HMSC061D12 OX=1715161 GN=HMPREF2682_07995 PE=4 SV=1 +MQYKARKHYETYYQKIAEAEKDPAVVKGENADGKTYILEKDKLAMVVGKNNEYIIFHQHDGNWSRLRPNGELELTYSDRAWVRVMPDGERIAVKASGNTNIAYHQGDVSEDIITSLKTPEVPAQVEGFASVPQKPVKPKKLGTVVGTK +>tr|A0A1Q4EHA6|A0A1Q4EHA6_9PROT Carrier domain-containing protein OS=Thiobacillus sp. 0-1251 OX=1895858 GN=BGP19_06145 PE=4 SV=1 +MDTRQTLADIAIKEFQCDPEKIKEDASIKDLGIDSLGLLEFIFRIEEVFAIRVDNEDAEKVQTLTDIANLVDRLRTMAAA +>tr|Q48M18|Q48M18_PSE14 Type III effector HrpK1 OS=Pseudomonas savastanoi pv. phaseolicola (strain 1448A / Race 6) OX=264730 GN=hrpK1 PE=4 SV=1 +MRISSSPSPALGSIVNQPTSGELAAETPLAKVSLTQSSAGGDQAFVQFGQANDNTSFFSDAEQSGSSLMSLLTRSSNSESTSSVDQDSDQVSPITSVLSTASASPAASASGPANAPSATDAAFLDNSEYSSPEALKRWDPMVAHLPPEEREQAAKELNRPIAAAWMAREHGPNADKAMAFINANPALKTAVDVGKDGGNADGKITNKDLKAFAKNMEKAADNADKDLAKYMEDNPGADPQSLEMVRSAAVMRANMPLATAADPHHAVGAPDKTDVDGNVSAEGLKALIKSNPGLSGTLKQSSNMWSQAGFLSQVDEAGLTGRKKAAHSPDQVFDASNMSEWIRKSAPKNGGQFASMLSDAATLNSVAGIDISKLNAQVFEKPKAYTGAQKAAVMIKLQQTQQSVIAGRDLRNTEKTEAGLNERIAQLQADPDVQEYLNKSIPEQERSLVSSDSALQKAVTEQVQNVNSGKALQTDLATADKAVGKHNPDPDYSGAITGLSAQLQLQKDLFPDAQVPTAQQVFNNQPDEVQTKIADSYVRNFSEGGALKQLLGQKKSDAGESLQTADNQKAAYESVLPADFVNGERESYTASTLSELQNSKKGRKLLEGKTDEEGGPSLAAQLAEQGIGGKAFNSVMGFASVSDRLASGDKLGAAQSIIDSSRLGAEAIKGGIDTGAKMMGREASAGLGRLGGQMIGRAVGLVAGEATGLAAGAALGAAIPVIGWAIDGAMALGFGISAIIDAVKKHKAQKAFDHNVDPVLDQFGIAKAH +>tr|A0A7C6ZKE3|A0A7C6ZKE3_9FIRM Ribulose-phosphate 3-epimerase OS=Syntrophaceticus sp. OX=2699755 GN=rpe PE=3 SV=1 +MQIKIAPSILTADFSKLGDVVKELEKCGADQLHLDIMDGHFVPNLTFGPPVVASLSQITSLPFDVHLMVEHPEGLFSAFATAGAKSLTVHAEACTHLHRTVQMIKDLGIRAGVALNPATPLSFVEYILPDLDIVLIMTVNPGWGGQAFITTMCEKIRKLRMMLKDSGSPAELQVDGGINQQTVKSVVEAGANSLVIGSALLMERDWGQAIEQYRSLAVEAARDSWWCSS +>tr|A0A089X985|A0A089X985_STRGA Uncharacterized protein OS=Streptomyces glaucescens OX=1907 GN=SGLAU_22790 PE=4 SV=1 +MSATPKSQLPVRGGDRKPARVRPYSLTGGRTRFGHVLLVETFVASTAALEAPEERRELTNGSLTTRVMPEMLAIVELCRRMRTVAEIAALLKMPLGVVRVLLSDLADQGKIRVYGTGTGHGTGRPNRALLERVLSGLRRL +>tr|A0A849PEY0|A0A849PEY0_9MICO Acetyl-CoA C-acetyltransferase OS=Calidifontibacter sp. DB2511S OX=2732509 GN=HK411_11245 PE=4 SV=1 +MPEAVIVSTARTPIGRAFKGSLKDIRPDDLAAQIVQAALAKVPGLDPTLVEDLYLGCAEPWAEQGSNMARVVAVLSGLDHVPAATVNRFCASSVQTIRMAAHAIKAGEGDVFISGGVECVSRYADFAGAGGSKADWQNPKFADAIKRTEQIAQDNTTWTDPREQGLLPDIYIAMGQTAENVATSRGISRQRQDEWGVSSQNRAEKAIADGFFEREITPVTLPDGSTVSKDDGPRAGVTLEKVSQLQPVFRENGTVTAGNCCPLNDGAAAVVVMSDTKAKELGLTPLARVVSTGVSALSPEIMGLGPVEASKQALARAGMTINDMDLYEINEAFAAQVLPSADDLGMDFDKLNVHGGAIALGHPFGSTGARITTTLLNGLQSTDGTFGLETMCVGGGQGMAIIYERLS +>tr|A0A415DY63|A0A415DY63_9FIRM Amino acid permease OS=Emergencia timonensis OX=1776384 GN=DW099_13175 PE=4 SV=1 +MDTKKHEGSFKKAIGPFSGISIVAGMVIGSGVYYLGSYVLERTGLSMGWSLVAWIVGGFITIVGGLCFAELGASMPVAGGQTVYLSKAYSPAFGFINGFSCFLLTGSGGVAALAMAAVTAYRTVFEISDIMVKVLAIAIILVLMVINLLGVREMTFYQNFSMVIRMVPILMIIIAGFVMGKESPDLSLSLAGTSAEGGGVTAVISMIGFATFASLWAYDGWYNLNTVAEEMKNPKKDLPFAIITSLIGVTLIYVLFYLAVYKVLPSEDIAEMINSGNLYLGNEVVSRTLGGTGIWILLICMTIGIVGSANVNTLCDPRTYYAMAKEGYFPKLFGHLSEKHGVPSYGIIVSAGMAVLLVIFNSLQELTDMLIFTTSILNLMTIYGVLIMRKKYPDIERPYKVWGGKFTIYLTSLMYVVLMVNEFIDAPKAAITGVGITVAGLIVYLYFKKKNGGEEYKGEGIE +>tr|A5I032|A5I032_CLOBH Putative non-heme chloroperoxidase OS=Clostridium botulinum (strain Hall / ATCC 3502 / NCTC 13319 / Type A) OX=441771 GN=CBO0840 PE=4 SV=1 +MGYYIRVEPNVKIYVEDLNPEGNKTIVFLHGWPGSHNLFEYQFNQLPKMGYRCVGIDTRGFGNSDKPWSGYGYDRLSDDVRCVVEALKLHDFTLLGHSTGGAMAIRYMARHKGHGVSKLALIDAAAPSLIKRPNFPYGLEKEDVIKIIQGTYNDRPKMLRDFGDTFFFQHITEPFSDWFFQLGLQAASWATAAIANTWINEVLFSDLETINVPTLIIHGIHDKVVPFELGEIQNKMIKHSKLIPFKYSGHGSFYDQRDKFNKELVKFIEE +>tr|A0A3D2U5H6|A0A3D2U5H6_9PLAN Tagaturonate/fructuronate epimerase OS=Planctomycetaceae bacterium OX=2026779 GN=uxaE PE=3 SV=1 +MTDIPGPCQTLGTIPSFGFGDRIGLATPGHVLAMQRSGQGILPIFPQQSIREMARTDRSPDDVMNDALTGMREAGWDGITGADADHLKTNTDAEITAEAGYTFFTIDPSDHVDEKADTYDEATLRERFAEIQHDLTWLGDYRGRKLTLETGARIECTEQACLRAGVKYGRAINHAIELAGHIAAVQGQAGRDYEIELSVDETDHPTTLAEHYIIADRCLVDGIRLISLAPRFVGDFEKGVDFKGDLEQLVRSLADHAALARHLGPYKLSLHSGSDKLAMYAMLAQATRGCYHVKTAGTSYLEALRVAARHDVSLFREVIEFSRGRFEIDRATYHLSATIDSAPPAEEISDPIELERLYLGLWSEVPVGEGFTGLGRQILHCTFGSVLTDSRLGPRLRSLLETHQDTYTEVLADHFGRHLDALQAGLSQSG +>tr|R7KQJ7|R7KQJ7_9BURK 50S ribosomal protein L11 OS=Sutterella sp. CAG:521 OX=1262977 GN=rplK PE=3 SV=1 +MAKKIVGYIKLQVPAGKANPSPPIGPALGQRGLNIMEFCKAFNARTQGVEPGLPIPVVITAYADKSFTFIMKTPPATILIKKAAKIQKGSSRPHTDKVGKITRAQAEEIAKTKMPDLTAADMDAAVRTIAGSARSMGITVEGL +>tr|A0A2G9V0G2|A0A2G9V0G2_TELCI Uncharacterized protein OS=Teladorsagia circumcincta OX=45464 GN=TELCIR_02714 PE=4 SV=1 +MHDIFDVVARIHVKWVRVVARTCSLILMVLDVMKPLKHKQLLEYELEGFGIRLNKQPPNIGFKKKDKGGINLTQLISLAELGSLEEEHFCFDVPTKALMNQMGETVLRITSKGHAADGVASTKSQRNTSANAAGLRKKV +>tr|A0A4Y1VGS1|A0A4Y1VGS1_BACUN Protein kinase domain-containing protein OS=Bacteroides uniformis OX=820 GN=Bun01g_11110 PE=3 SV=1 +MFTLAKRQQLGNYIITFQVKEGDYAETYRVKDADGKNRFLKLINCAKLHRTQFDANGNILEVQIAKTLNHPNVVKYHDNGEVVLDGRKFAYIVFDYISGETASQYIAREGSLSVYDAKTIVLGILNGIKFLHTQQEPIMHNDLTIQNVMLDMSKGTNVPRIIDFGYARYLSQGSSSFNKNGLSPFYLAPEALNGVFSVKSDIFSSGAILYNLIFGIPPYFVDLSDCKNDATAQREKIDAQRELPLHIPDNDKFELDEQIMNIMRKALASDIEERFKSADEFIRALNGDIKIARIDNQKKAKSGKTPTKKVSYSVPKGKGFSAIAGMEELKEQMRVEVIDALNSPEEYAKYGLTIPNGMLLYGPPGCGKTFFAKHFAEEVGFNFMLIKPSSLKSRFVNATQENIAQMFKDAEENAPTIIFIDEMNELVPNRDSDVHEMARSAVNEMLAQMDRTGERGVFIIGATNYPDMIDPAILRAGRLDKKYYIGTPDFKARSLMFELYLKSRPYDFGLDYEKLAQLTENYVSADLEMIVNDASRIALRQKSRITMVILEDVISKTKPSLTKSELDKYLRIKAAMAGEQIQQSRRRIGF +>tr|A0A3L6ZV02|A0A3L6ZV02_9MICO Multicopper oxidase family protein OS=Mycetocola manganoxydans OX=699879 GN=D9V29_08490 PE=4 SV=1 +MPNSISLRQQLSRRTFLSAGLSGAALLALAGCTPTPAFLSPTSARVAKTEAARKATGATTKVALRASTGAIDLAGTSAQTWSFGSIPAPIIRLAQGDELDATIQNTLPDATTVHWHGLALRNDMDGVPNLTQDAIAAGSSFRYRFTAPHPGTYWFHPHVGTQIDRGLYGALIIEDPREPLAYDDEWVVILDDWLDGVTATPEEVLAELSKGMKEMAGMEGMMMRMGNTLMGAESDALGGDAGDVYYPHYLINGRPPADPETYTSAPGKRVRIRMINAGGDTAFRVALAGHTLTVTHTDGFPVEPLDVDSVLVGMGERYDVIVTLGDGAFAFVAEAEGKNARAFAVVRTGSGATPASNVTVSEITGRLATADGLRAASEVVLPNKKPDRELTIRLRGSMKKYDWSLDGRPFTMDDPMIKPYSIAEGERVRVNFVNTTSMWHPMHLHGHTFQHAGGGPRKDTSIVLPDRTLTVDFDADNPGRWLAHCHNIYHGEVGMMGVFAYTG +>tr|A0A817XL60|A0A817XL60_9BILA Hypothetical protein OS=Rotaria sp. Silwood1 OX=2762511 GN=BAC187_LOCUS7404 PE=4 SV=1 +MAYLNLASAANSTTSSTSSPYSHVNSNGGVSTIPPSLVSNSPSIFGSVGGGKQWTTIGQPTSSSSSSTLTQQLLMKQQQNILNNQQTNPLSSSSSSSHFDSILGLTMASALASSSQTQIEKNFELQQEDFPPLPHRSNSHEPTSSSTNVQPLYQSQYSSSSSSSNLHQPITNGYSSSQQQQQQQQHSQSQSPISFKTSIDALSTLINRRQTSVNNKTTSLTNNSTSSTTNPQQISSTSTTNINGLPSSTITDQYGLVGLLQMIQQAEKNPETSTLLNYDLTTLGLSMESQNDLYPSFLSPFSDSQARPYEIDYQVPFEYQMGLQIRDKLPPLNFNTLNEDTLFFLFYLFGNDHVQLLAAAELYRRDWRYHKEERIWLTRIKNIMPDQKYDTYETGVYCVFDVQLWRKTHKSMRIDYEKLDVNPVLKQDLFASKLLQQQSPVQPQFAPVSSYNTNSSR +>tr|H6QSH4|H6QSH4_PUCGT Uncharacterized protein OS=Puccinia graminis f. sp. tritici (strain CRL 75-36-700-3 / race SCCL) OX=418459 GN=PGTG_11407 PE=4 SV=1 +MAGSLSLILLCLQVVSTVLGNSDPSAQIHRRSPQKPSKPPVSNTKANAKPVPFGFGSKVTGGGNAAPQTPKDPAELEAWLNDPAPRVILISKTYDFTSPNITKTSGW +>tr|A0A2U8VWI3|A0A2U8VWI3_9HYPH Uncharacterized protein OS=Methylobacterium sp. 17Sr1-43 OX=2202828 GN=DK427_22560 PE=4 SV=1 +MEHVSEGDPQAGPAFGRTASLLAEIAVILRVDPVIFFDGEIRKRVDQDLAVDELADLLALLRSVDGPDLRAAARDLIRALKRNEADED +>tr|A0A0B7NY01|A0A0B7NY01_PROFF Uncharacterized protein OS=Propionibacterium freudenreichii subsp. freudenreichii OX=66712 GN=PFCIRM138_07065 PE=4 SV=1 +MTEAKNPWLSHPAEPEPDTPVAIEEHVRPATGPVAPQRGVPAPDRADQLPLFDRRQNADVWWLGVHGGAGESSLSVVLPGSAAADHGWPQTPGEQPARVVLVARSNMRGLRAAQAAATQWASGLVPGVDVLGLVIVADAPGRLPRPLRDFAHLVGGGVPRTWTVPWIESWRLGEPPALSDAPREVRRLVDELHALIRPGADGTTN +>tr|D7SV11|D7SV11_VITVI Uncharacterized protein OS=Vitis vinifera OX=29760 GN=VIT_04s0008g06260 PE=4 SV=1 +MVGLSVGEKHFIQGGIAQDLRTDGRRRLTYRPFNVETGVIPQANGSARVRLGGTDVIASVKAELGKPSPSQPDKGKVNIYVDCSPTAAPMFEGRGGEELSTELSGALQHCLLGGKSGAGAGIDLSSLVVVEGKVCWDLYIDGLVVSSDGNLLDALGAAIKAALTNTGIPKVEVAVGASGDGLPEVDISDDEYLQFDTSGVPVIVTLTKVGRHYIVDATLEEESQMSSAVSVSVSGQGRICGLIKRGGAGLDPSVILDMISVAKHVSEQLMNKLDSEISAAEAFEEES +>tr|A0A352XE32|A0A352XE32_9CYAN Phosphoenolpyruvate carboxykinase (ATP) OS=Cyanobacteria bacterium UBA11367 OX=2055774 GN=pckA PE=3 SV=1 +MNQQNYAVESQRRNLHQAHQTSSPVHEQIERHSYTLGSLGMKNLGMVYHNLSVPQLIEKAVARGEGVFADNGALCVKTGKYTGRSPSDKFIVDEPSIHDEVDWNRVNVPLTQEKFDQLYRRMLAYVQGRDLFIFDGYVGADPQYRLSVRVINQLACQNLFAHQIFIRPTEEELQTHEPELTIIAVPGLQGDPDLDGINSEAFIVISFEKRIVLIGGSHYAGEIKKSAFSFMNYLMTKQGVLPMHCAANMDDDGNTALFFGLSGTGKTSLSADTTRHLIGDDEHGWSDRGVFNFEGGCYAKTLHLSHENEPQIWEAIHFGAVLENVILDEETREPDYDDESLTQNTRVAYPVEYIPNCAIPGIGSHPKTVIFLTADAFGVLPPIAKLTNSQAIYHFISGYTSKLAGTERGITEPQATFSCCFGKPFLPLCADVYGEMLYERLVKHNVDVYLVNTGWTGGSYGVGKRIAIQDSRAMVAAALNGELNRVRFYPDPIFKILVPEAVPGVDSDILDPRKTWSDSEAYEQQAQALAKKFVANFQQFNNVSQEIKQAGPSLD +>tr|G5ZW58|G5ZW58_9PROT Putative phytoene/ squalene synthase OS=SAR116 cluster alpha proteobacterium HIMB100 OX=909943 GN=HIMB100_00002480 PE=4 SV=1 +MRPMKLSAYSDLRRHAPRLALTLLFQTEEQKQILAFLLLFGLELDRISALASEPMLALIRLKWWEDQLEVKTDEAGPLAGYLHQQLSSAHLKKADVIKLIDLWTMSVQAGQADQSENWAELIDLMAAKVNVQSSELARQIGRAVALSRSGQPSGVIPSARDIHKACGQGAEFLICLAYLAAESQKRDLNSSPFLVLGLLKQVLFKPASR +>tr|A0A183VZ29|A0A183VZ29_TRIRE Uncharacterized protein OS=Trichobilharzia regenti OX=157069 PE=4 SV=1 +LCVHIFSCQTCGKEFIQPSNYSRHLRIHTKERPYSCKLCSAEFLYSTSLKRHQQRNHGVELLRCQLCQKTFLNESCLIRHRTGCELRACVKTADEGLCTQLL +>tr|A7LFU4|A7LFU4_CAPHI Galectin OS=Capra hircus OX=9925 PE=2 SV=1 +MDSLPNPYQQSVSLTVCYMVKIKANLLSPFGKNPELQVDFGTGTGEGGDIPFRFLYCDGMVVMNTLKDGSWGKEQKLHTDAFVPGQPFELQFLVLENEYQVFVNNKPICQFAHRLPLQSVKMLVVRGDIVLTSVDTL +>tr|A0A4R7X8B1|A0A4R7X8B1_9NOCA Uncharacterized protein OS=Rhodococcus sp. LP_11_YM OX=2485207 GN=EC908_103210 PE=4 SV=1 +MTLTTDITVGEVLPQLSIYGDPTFVVSAALATRDFQDVHHDRDLAQKRGSKDIFVNILTDTGLVQRFVTDWAGPRAVLTSIKLRLGVPWYAYDTLTLSGTVTSYDEDLVSLAVVGKNSLGDHITAQVTLAFPASGSNGDIENGDIE +>tr|A0A838UPM3|A0A838UPM3_9CHLR AAA family ATPase OS=Ktedonobacterales bacterium OX=2306968 GN=H0X24_05985 PE=4 SV=1 +MPGRTPTAKPMPGQTSDPLPGVQHRGGMCSLGKSSRFAMIPGGLCAIRCRDHEGKRRIEKISHAFSVPPLSMAKREGASAQGRSLCARAFPIWVHCQNFTSEPSQTTLLITQSATLAKELLHSNLDEAAARLAATWLKDGARFPTMVREYREEFEQGAFDFLAFFFHEIILSEKYRPLFQAANGLELLKTQQHMAHDVTAIRGMLELLINHQVPSREEERLGHLMTYLARGNNATSEEQTTAPHHLWKLRTPRQFVGRDADVHWLTQRLSTPPPGDRISGVRGIGGIGKTALVGHVVTRLQQGGAFPAGIVVVNCSELHDVRDIWAEVAQSFGCQVDSPLGGEQLAHLMHETLRERDALVVLDDVQGEVRFTELVQPFAGTTPQIVVTSRLAFGAFPPEALWEVRELSSDHAVDLFRQCYGQPVDADEAALLPQLVAALYHHTLAVRLAGCYAAECQRDLGELLAELRADPLALPAEDQNRMVALILEKSLQNIERIHPLCRQIFTGLAAFGTPEFSREAAVALATYLDHQAPGFAIDRLIRYGLLEAASPHAGSVKVHQSRLHLHPLLYTLALQHFTQADGAQQQPLYSTICRY +>tr|A0A1H9KCN1|A0A1H9KCN1_9BACT Uncharacterized protein OS=Lewinella agarilytica OX=478744 GN=SAMN05444359_12049 PE=4 SV=1 +MVAQTQQGRYELTPYAPHAYVFTTERGNTYIVRFIRYWQEEVVELYIKKELEVFEIYFEVMEIKDKGYDRRIQFTIIGAIVDFLAENDRVGFFDIKREDGRGLELLRVYRIWLKMYERNRKEKSIMLNRIVSIPDQFDSHIACLVHPNNKSFKGQNVDQLMDSVLKEIFPRATLTPF +>tr|A0A7J9HNJ9|A0A7J9HNJ9_9ROSI RIX1 domain-containing protein OS=Gossypium harknessii OX=34285 GN=Gohar_003306 PE=3 SV=1 +MARFDQLENMYDLGLKPVMLRSLIRQYLPAENHPLNLNNSCFELPSLVSIVQTHCLLSELDSQSIDPKLINTWKSAVDDWLSCLLSLLSSDMSDKCWVGICLLGVTCQECSNQRFLSSYSIWLNKLLSHIQPPADSQLVKIASCTSLADLLTRLARFPEVKKDGNLLAGKLVQPVLKLLNEDNVEAVWEGAANLLYALIAFFPASIHHYYDKVQLMVAGTGRSFFGGWGVKVLEKEDIGVMAYFLGCLNVEAAIASKILSGKYSTKTLKKLGYFLALLPKAKGDKDSWSLMMQKFLISINDHLNEAFQGVEEEAKSDEARRLLVPPGKDLPLPLGGASFKGTSSERLPTATISTLMFCCCKMLTSSYPVQVTVPVRSILALVERLLRVDGSLPHTMLPFMTSVQQELICSELPVLHAYSLELLIAIIKGMRRQLLPHSAYIVRVVTRYFKRCSLPELRIKLYSIIRMLLVSMGVGIAIYLAPDVIENASNDLNSLGGEDIETSPANTDPATGALPQLSNRKRKHGAKTGSLEEKQDAASPKVGESNTHQMTPITVKMAALDTLEVLLTVGAASKSESWRSSIDSLLMKTAINSCKRGWGNLESNIFLPHESASVWADFQFSSLRALLTSFLAPARTRPPYLSQGLELFRRGKQEAGMKLAQFCAYALFALEVLIHPRALPLDDFYSACHNSTDGASNRFLENIYSGSQKQNTSFLSAMRRTEQGGVESHDDDLYDRWLQNENENQNENENIPVEDMKDQTSRPNDPSFTNVLEVREQEPAAANADVHMRTENEIVMQPWHLEESVPKSQGVASAKAVMSPPVGTNPEGSEIESKTPLSASDRLNDTNHDMFSCVDKVDGFDHVAGKTSSTLPNAEKGSSSMVHLDSDSSMDSFPGIVDADPDTDADSD +>tr|A0A239QJE5|A0A239QJE5_9FIRM Redox-sensing transcriptional repressor Rex OS=Clostridiales bacterium OX=1898207 GN=rex PE=3 SV=1 +MRSSTLSKATMGRLPLYLQFIRTVQTENVSSATVARALGLGEVQVRKDLASICPAGMPKIGYPTERLREDLEAVLGMKQTIPAVVVGAGKLGRALMAYDGFREYGLEIAAAFDTRVTDSSHERKPILPMEEMTGWCREHEVHIGILTVPAGAAQEAADQMVNSGITAILSFVSVPIRVPDTVTVKHENIALSLACLKIVAGMSNETTEEDSHGSEDL +>tr|A0A1R4IEU8|A0A1R4IEU8_9ACTN Potassium channel protein OS=Luteococcus japonicus LSP_Lj1 OX=1255658 GN=FM114_01400 PE=4 SV=1 +MVPGNGTNDDTLLTAGITRAAGFVTAIDDDADNVHATISARALNPELFIVSRASTKAVMHKLEPAGADRAISPYVMAGRRAVQLATRPGAVTCPSAWRRSESMRSWMASPWPTCVVAGWQPWPSATTTATTRPTRPSTVCCAWGRR +>tr|A0A1D7XM32|A0A1D7XM32_9CLOT MBL fold metallo-hydrolase OS=Clostridium taeniosporum OX=394958 GN=BGI42_10650 PE=4 SV=1 +MDLRITTLIENNPDKDNLLLSEHGLSLYLEIDKIKVLFDTGKSGDFIKNAEKLKINLNDLDYVILSHGHYDHSGGFKSLVENTNKSFDLIVGNGFFNKKYKLLEEDKYKFNGNSFDEKFIDKNNISIRYVNNDLFKITKDIIFFSNFEKNTDFEMINKKFYIKKDNQYVKDDFLDEIVLAVKHEKGLIVVLGCSHIGVVNILKTIIKRTNMPIYAVIGGSHLIEADELRLNNTIEFFKENNIKLLALSHCTGENAIKKFQYEFGNNFIYNNTGNVIEII +>tr|A0A0P1BF93|A0A0P1BF93_9BASI Zn(2)-C6 fungal-type domain-containing protein OS=Ceraceosorus bombacis OX=401625 PE=4 SV=1 +MSHVTSSPIWHEGAFSAEQYRQSAPAVPLQMVPPNAQLRGRMPPSLGHARHFTTPIAAPAQGPTIAHDEARPSDSNGLTPSCSRCRQKKLRCDFQTPCSNCIGKGLQSECHKDVRIPRGRKRPKAESQLTDEEEIVKLRKRLAELEERAGGGRLTPSTSSANSLGGRVSTRSDKPLRHRHHATGPADDRSGGNSSPGSRSHLSSSFVTATRDIIGSQEGLSIHLPLSGSASSDSFRSVPHGSTVPSPHSASVNESVLMKPQTRTRSSKPLILSPLLPAERALRSLETVANPSAARTICGTSERDGLLKRLTGLSDDVPNAYWSDPANAEERIALFVEARAAIPDPIVVEELARTFLYRANHCGGHVVYTPWHKAATELLSIASPEQAVSAPMFQDVSNLGLWFLILSVGYHFHPNNGPTSHTRGFAAVHALRKSGIDPSVRWYGIAKRALAIEKDYVLKSLPALQCASLFLLLGRDDPAWLRMLRAMTIAGARDMGLPRLGSASYAREMTTNDFVRLETAVRVWNFLCVRDWCWSQRDGSYSLHPSQMTTRLPLNLNDADLEAGTTESKSSSNWTEMSFVIAQVGLAHCVREAADLRNANLDDTSRAVVECIDESFRRFLSAGLPHFYSVNSREATPPIMAPQRWMLHQQVFHQLLLVHRNHIASPVGRSTCLSLALGTLELFKQLRMMCPVIEGMYVNSHHLFAAGTLLLLDLFNDNVDDEHRANVRDKVSAAVQYMSPAPRAKQLLSTLLDEEAQYYEATRDRKAYVQRDRTLDLATLCDRVAEVIEQTPGLPRDDVNAIDDVRMPDHHLMPALIGLQSPTSDFNQTKPNLEHHLSQDKVGPNSAFEDPRFFGFDHRQGNTSASPSSRPNTGLMPRRGTVLSPALPSPAELARRAPRILAEGAITLPSIGVDHNLSSNQHNSFNIHPSFRSAVALYHQSRKAHLKNV +>tr|A0A5D8QFW2|A0A5D8QFW2_9THEO Stage 0 sporulation protein A homolog OS=Calorimonas adulescens OX=2606906 GN=spo0A PE=4 SV=1 +MDKKYRIAIVDDNKEFCTILKSYLEKEEDLEIVGTANDGNQGLKIIQEMQPDLVILDIIMPYLDGIGVLEKISSLDLIKFPRLIILSAIGQDTITQKAISMGIDYYIVKPFNMDTLLQRVREVLNIKESRTLKLYETSSSKYKWREEPNLEILVTNVIHEVGIPAHIKGYIYLRDAIIMVIENMDLLGAVTKELYPAIAKKYNTTPSRVERAIRHAIEVAWGRGKIETIDNIFGYTIQKNKGKPTNSEFIAMIADKLRLELKVS +>tr|A0A2W5ZP71|A0A2W5ZP71_9BACT ATP-grasp domain-containing protein OS=Candidatus Dormibacteraeota bacterium OX=2052315 GN=DLM67_22145 PE=4 SV=1 +MTEPAILFVNLRGVPSEDRSALIAARRLGYQVDLIGPSLPAHAAGLVREFRLADTDDPEQGLRAARALAERASPAGVVTWGDRGVELVALIGQELGLRALSPAAGRRARHKVAMKQAVAHLPGIVGSHVGVVERSDLAPALRQVGFPAVLKPAAAAGSAGIFEVRDRDQAEAAFDRLAGWLQGAPRPFRGDGQGELILEELIEGPEFSLEGWVHEGGVTIAGVTDKWTTDGFHLEYQHVHPSGRLDSEQSVLRKGAELVVRTLGLDHCAFHLECKLTPRGFRLIEVAGRTGGDYIGSHLVPLSTGLDFHGNCIRVACGFPPRMEPVDSLCAGVRFLLARNEGIFLGLDGLAEVLQMGDVEQVFIEVPVGSALRLPPDDYDLQRVAAVVARGPEHSAVIETLDRAARCCAPRVERWDGHR +>tr|Q1Q6C1|Q1Q6C1_KUEST Uncharacterized protein OS=Kuenenia stuttgartiensis OX=174633 GN=kuste2370 PE=4 SV=1 +MDLNEKIKEDLKSSMKAQDKMRTSVLRMMLADIKIAETSGKPRDQIDYAAVVQGYQKKLKKTREEYERLSLPEKTREIDNELAIVEEYLPKQLSDEDVQKIVDEVVDENKFTGKEFGVAMKLIMNKCGGTADGKKVLTILKQKLGC +>tr|A0A3A9BJV2|A0A3A9BJV2_9BACT DNA primase OS=bacterium D16-54 OX=2320104 GN=D7X87_23470 PE=4 SV=1 +MNVFEAVRENGITARQAAEHCGIKINRNGMAVCPFHKDKNPSMKIDRRYYCFGCGEKGDAIDFVAKFYGLGKKDAAVQIAAAFGISFDDNGGRKPPPIRKRKLSPEQRFERVEKKCFRVLSNYLCRLREWQEQYAPHKAEEEWHPLFCEALEKKDYIEYLLDVLLYAPLSERVELVTDYGEEVLKIERRLEQCTEGTAGGTGKNYEQDGAGGTAGNMV +>tr|M3NA57|M3NA57_HELPX Uncharacterized protein OS=Helicobacter pylori GAM244Ai OX=1159035 GN=HMPREF1407_01122 PE=4 SV=1 +MKIIKNGIMIGTLGALLLSGCSSFDAQRFACLPKDHSSKDASTKKEAQYIPKGFFDPYSSNLNHWDSTF +>tr|A0A0B8PB49|A0A0B8PB49_9VIBR Putative ammonia monooxygenase OS=Vibrio ishigakensis OX=1481914 GN=JCM19232_3271 PE=4 SV=1 +MKPALNSVSTLAIAFATSALFVLLSVPLGEMFGSIIAIILLSKWGIKTKVPTHTLIFVQLALGLSVGGLIPPSFFATGFPLTMLIGLVVCMSLQVLCGYWLLQRFSWSKSDSLLASIPGAMAAVMVLNESQKTPSARSSSYIPFD +>tr|A0A1A8U716|A0A1A8U716_NOTFU ATPase, Ca++ transporting, plasma membrane 1b (Fragment) OS=Nothobranchius furzeri OX=105023 GN=ATP2B1B PE=4 SV=1 +VYFAGQLYKKVPEPDLIPAKILDLLTLGIGVNCAYTTKIMPPERDGGLSRQVGNKTECALLGFSLDLHRDYQAIRNEIPEEKLFKVYTFNSVRKSMSTVLKNSDGSYRMFSKGASEILLKKC +>tr|C3DIS9|C3DIS9_BACTS Oxidoreductase, aldo/keto reductase OS=Bacillus thuringiensis serovar sotto str. T04001 OX=527026 GN=bthur0004_18590 PE=4 SV=1 +MKYTKLQKAGLNISKLGLGTNAVGGHNLYADVNEEEGKQLVEEAIQQGITFFDTADSYGVGRSEEMVGEVLKGKRHKLILATKGGIQPLLNGETYINNEPSYLRNAVENSLRRLQTDYIDLYYLHFTNSETSYIDSIGELTRLKEEGKIRSIGISNVNIEQLKEANQHGHIDVVQSPYNMLERTAEEELLPYCIEAGISFIPYGPLAFGILGGKYTEDFKLNEVDWRQNVNLFEENTYKSNFKKVEKLKGLAKENDIEVSHLALAWLLNKEGIDTVIPGGKRAEQIRESVKAVDVALNKRVMKEIQSILED +>tr|A0A659QZ73|A0A659QZ73_SALET MFS transporter (Fragment) OS=Salmonella enterica subsp. enterica serovar Wilhelmsburg OX=1960126 GN=C9F09_13540 PE=4 SV=1 +SDWPLNRGNSLSVARILPVICGMLLSCVIVIANYTSSEFVVIAAMSLAFFAKGFGNLGWCVLSDTSPKEVLGIAGGVFNMCGNMASIVTPLVIGVILANTQSFDFAILYVGSMGLIGLISYLFIVGPLDRITLTSSAA +>tr|G8G1N4|G8G1N4_9HELO NADH-ubiquinone oxidoreductase chain 4 (Fragment) OS=Phialocephala helvetica OX=242229 GN=nad4 PE=4 SV=1 +MLLTLLLLTPILGIFAISTGISYELS +>tr|A0A4Q2K9X0|A0A4Q2K9X0_9FIRM Uncharacterized protein OS=Candidatus Borkfalkia ceftriaxoniphila OX=2508949 GN=ESZ91_10490 PE=4 SV=1 +MIDFEALKRFIEAKRTPPRKVLRAAFKIDAECEPRALCGAAETDENALRERIGKRGKTFSEMLFYWIDARGEKDSDVYKRAGVDRKLFSKIRSDANYTPKKRTAILFAFALSLNEDQARDLLARAGYSLSDADTTDIIVQYFLQTDNHDLSELDEALVRFGEQPVYSE +>tr|A0A841U1R9|A0A841U1R9_9BACL Aldehyde dehydrogenase family protein OS=Cohnella xylanilytica OX=557555 GN=H7B90_11630 PE=4 SV=1 +MNGTATIDNYIGGWRPPASGRRVPSLNPARRSETVGLVPDSDRTDLDAAVAAAEAARRSWRKLAGSQRGALLFKAADLLESRMDEIGRAMTREMGKTIGEAKGETARGAAILRYYAGEGMRPIGDVIPSTDAEALMYTTRVPLGVVGVISPWNFPVAIPLWKIAPALIYGNTVVWKPAIETAVTAALVMECFHDAGFPAGTVNMVVGDGAAIGQGIAEHPGIHGVTFTGSNAVGKRVGQIALARGAKYQLEMGGKNPIVVAADADLDLAVDATISGGLRSTGQKCTATSRVIVVREVYETFKEKLLAKIKTLTVGDGLDAETWLGPCASEKQYETVIGYIRKGREEGAELLVGGERPSHPSLADGFFVTPAVFDRVTTGMTIAREEIFGPVLALMEAGDLKEAIELANDTEFGLSASLYTRDLANALAFAQEMEAGLIRINAETAGVELQAPFGGMKGSSSHSREQGQAAIEFYTAVKTVFVKP +>tr|S3MU72|S3MU72_9GAMM Pyridoxal phosphate homeostasis protein OS=Acinetobacter rudis CIP 110305 OX=421052 GN=F945_02860 PE=3 SV=1 +MNELHRARREVLEHIQKACEQANRSADEVQLLAVSKTHPSQAIEQLYQSGQRAFGENYLQEALDKIEALKALEIEWHFIGHVQRNKTKHLAEKFAWVHGVDRLIIAQRLSQQRPAGLAALNICLQVNIDQQDSKDGCAVADVVDLVREISALPNLRLRGIMVIPAPHNHQAFNAAAELFQQVKTEHVHAQDWDTLSMGMSADLQAAITAGSTMVRIGTALFGQRSYDLS +>tr|A0A7I7TGD8|A0A7I7TGD8_9MYCO Uncharacterized protein OS=Mycolicibacterium helvum OX=1534349 GN=MHEL_56620 PE=4 SV=1 +MAHSIELLIDQRADTAVRQMWHALADGGLPSRHRVPSGTRRPHITLVAAERIAPGIDRVLGGLAEELPLPVVLGAPLVFGTDRLTLARLVVGSAALLALHDEVYGLCRPFAFNVFAHSAPGRWTPHITLGRRFTPAQVGEALAAVDGIAADIRASIVGLRRWDGDAKREYLMVN +>tr|A0A4V2FIN5|A0A4V2FIN5_9HYPH Ribulose-bisphosphate carboxylase large chain OS=Rhizobium sp. BK696 OX=2512157 GN=EV569_4023 PE=4 SV=1 +MAQRFTVTYFIRGADAAEAKARALDIALEQTVEIPRAAVPKGYVEDVILGRLEGLEQVRDGRSGFLATISYSEDDVGGDFLQFLNIVFGNSSIKPGLKVEDIGLSSGILDLCRGPRHGIAGLRARAGIGQTPLLMSAIKPVGLSTKELASLAHDFAIGGVHFVKDDHGLVDQRTSPFSERLRACVAAVGEANAKTGGRTSFVPNITGPATAIVERAKEAQEAGAGGVMIAPALAGYDIIRTLAADQDFTLPVVSHPAFSGANVVSPDCGFTHRTFFGTLHRLMGADAVIYPNFGGRFGFSREECLSISAACAAEMGGLNTIAPAPGGGMTLDRVAEMRAAYGNDIMYLVGGALLVDPGGVIAACQRLVSKIYD +>tr|B4DA31|B4DA31_9BACT Uncharacterized protein OS=Chthoniobacter flavus Ellin428 OX=497964 GN=CfE428DRAFT_5771 PE=4 SV=1 +MADDSSRYERKDFSPKAVGLSGLGLIVVCVISAVLIRHFEKDLNQFFAYQGRATWTSSPTMQPPEPRLQTNSAREFAEMRAQEEAELHSYGWVDRQYGVIHIPIDAAIKIALERGLPVRKSTPTAAATPVPAPATPTPAPKSAQ +>tr|B1ZML6|B1ZML6_OPITP Stress responsive alpha-beta barrel domain protein OS=Opitutus terrae (strain DSM 11246 / JCM 15787 / PB90-1) OX=452637 GN=Oter_1073 PE=4 SV=1 +MSLTSRRQFLATSALATAAAVSPSHAAGTSAMPKLVHHVFFWLKNPSSKEDLATLLAGIRSLGAIETIRSIHVGVPASTEKRDVVEASYSASELLLFDDVEGQNAYQAHPVHQKFVQDCSGLWSKVVVYDSVSVDVPAGSKP +>tr|A0A4Q1QFK1|A0A4Q1QFK1_9GAMM ATP-dependent zinc protease OS=Idiomarina sp. 29L OX=2508877 GN=EST55_04790 PE=4 SV=1 +MTTIGWREWGHLPELGISNIHMKVDTGAKTSCLHAFQLEPFMKKGEEWLRIFVHPKQDSQEEHVCEAKVHDKRDVTDSGGHTETRYVIKTRLVLGSFDQKVELTLTNRDTMKFRMLLGRQAMRGHFLVNPDASHLLGDVK +>tr|T2C928|T2C928_9BETA U7 OS=Human betaherpesvirus 7 OX=10372 GN=U7 PE=4 SV=1 +MKNFETMAEQYKTLPCVGQLNDGLLRELKNLCRFTDFPGIRLLTERHRNECLSLIWPKNLWLRLAQPVDVAGYSEQQLAELNDHYQGFKENLCLIGAIQIGRKDVPIFVGKSSRIFCHDLEDDVLYYIAEDFDKFVRFGILGTNVITCSEPVYTRFYYDGPKFEKLETLKDLGLLQEPLNLNSSLRFNRKTALALKALRRNYISMLSELDELARCKTLAEIEHFVSINTGLKLRLETPIFTALILQDRKNIHCSTSDQKRFEEQEALFEKVVVLGFLNISAEDYGLRPILCIGETGAIYYYDWIDKVLTRIADCLLTFARIGFARYCGDFGYDKIGKVTARFGRLSTLGSAPVQQYSWYLKIVPVCNDVCIEPTPDLPSFDFAVELLLSSYGEGMEIVRNGIKCCLAWPPNYVLIFGEFYHFKCRRSVITYDWSNLVGADEFLCAVGYAHPNYREPDPDFDPFVMYCSSNKMLALDTVTDELYIIAESPAHFCSIGLRNFPPFARIELDIELDRLWYGETKCSGEEFVLLQKNIPALKNFVNRQCGQKIRIDAFQNFDLSFCSSNDIHYITGSGILEKILRRKYVVIGTCARCQVEPNCRAVILLGPNFHIYVYCDNKINKVARSIREFIRRGFEELLYKERYALNWHDDSLIYVSESEAENLNRMLNGESPILRKKPRHMYPRCDRLLKNMPSILFAVHSSEISNPLVQSVTKFLHPIIIPNGDTELKYIVPVTESRLINGLQASAAGRFGIKGLRLCSDGVIWNRLIDYEYEMFKYPSTFTRADKFLLQLRDLKFMEDFDPKWQCITKLAAVGFYSGASLFNLGAKPGIGYWCRYLCEYLSMLFFKLDGKLKELSKESKQKLGGFSCAFWSESFKTEMQNKTESFFRRDFFDRFQLYLLEHFLLFCGCEECRYNFFRFKNVGTMKKNPGSVKLHFFPALGKIDLPIFPHLSEKYSNLSMFVAKDLCLSFIEGQIEHSRFPISVTVDMGQDKRNLLNILSNIVFLLFIIQTLNSVLFTELKMYYDVYLDELKNLESSMECEMKLGSKGCMNNIVYFNMLKQVKDIVRNPGTSSNFIFNCLEVIKMSFEIPYYKNYDETNFMESFYLHHLYIQRQPAKHTDLVAANNLAPGFFIVNAKEKSFIDVLERSIVNIEAEYLSNTKNINGAMALFFSGLKYFGNFGNGNFQTSPEKDVRAVGYKLGGLDKIQNDLCYFANVETLACVGVDASDGNE +>tr|A0A5C4V3X6|A0A5C4V3X6_9ACTN Pyruvate dehydrogenase (Acetyl-transferring) E1 component subunit alpha OS=Streptomyces sedi OX=555059 GN=pdhA PE=4 SV=1 +MGRTQARTAAGKSTAGKTTAGKSTSGKAKPTARKSAAGNATANGAANGKPPAKKATTRKPAASGTAAKPAARKPAAKKPAAGKSPARGTAARTKPADGPEMVQLLTPEGERVEHPDYPLTVSHEELRGLYRDMVLSRRFDAEATALQRQGELGLWPSMLGQEAAQIGSGRALRADDYVFPTYREHGVAWCRGVDPTQLLGMFRGVNHGGWDPNSNNFHLYTIVIGSQTLHAAGYAMGVAKDGGDAAVMAYFGDGASSQGDVAEAFTFAAVYQAPVVFFCQNNQWAISEPTERQTRVPLYQRAQGYGFPGLRVDGNDVLAVLATTRAAAEQTRSGQGPVLIEAFTYRMGAHTTSDDPTRYRRQEELESWEARDPILRLRRHLDREGAADEAFHSELEAESETLARRVREAIRTMPDPDPIAMFDHIYADGHTLVDEERAEFAGYLASFADHEGN +>tr|A0A5B2V3L5|A0A5B2V3L5_9PSED Chaperone SurA OS=Pseudomonas brenneri OX=129817 GN=surA PE=3 SV=1 +MNVKIKLSDCLRPLMLGALFLGTAAAHAAVQPLDKVVAIVDNDVIMQSQLDQRVKEVQQTIAKRGGGVPPTSVLDQQVLERLIVENLQLQIGDRSGIRITDEELNQAVGTIAQRNNMSIDQFRAALARDGLSYEDARDQIRREMIISRVRQRRVAERVQVSEQEVKNFLASDLGKMQLSEELRLANILIPTPDSANAEQLNAAAAKTQAIYDRLKAGADFAQMAIAQSGSDNALEGGDMGWRKAAQLPPPFDRELSAMEVGGITQPARTPGGFIILKLLERRGGEASLKDEVHVRHILVKPSEIRTEAQTKELAQKIYERIEGGEDFATLAKSFSEDPGSALNGGDLNWIDPRALVPEFQQVMNDTPQGVLSKPFKTQYGWHVLEVLGRRATDNTTQAREQQALTVLRNRKYDEELQTWLRQIRDEAYVENKLPGAEPTGTDQAAQ +>tr|A0A1D1ZL49|A0A1D1ZL49_9ARAE 60S ribosomal protein L35a-4 (Fragment) OS=Anthurium amnicola OX=1678845 GN=RPL35AD PE=3 SV=1 +FLFSYTHPHISYKMGKAVRLYAKGRVLGYKRSKVNQSPNTTLVKIEGVTAKEETQFYLGKHIAYVYRAKREKAGSKIRIIWGRIARPHGNGGVVKARFRKNLPPKTFGASVRIMMYPSRI +>tr|X0K267|X0K267_FUSC4 Uncharacterized protein OS=Fusarium odoratissimum NRRL 54006 OX=1089451 GN=FOIG_02629 PE=4 SV=1 +MTALAQVALLRLGASRAMISLFDCQHQHIIAEATPALRISAHANPPSSGSDSLWLCGTAIPRSYGICDRVLVYPEFGGPQQASLASELPVTVISNLAENEEYRNTWYYKARPEHRFYAGVPIRTRRGINIGVFCILDNEPRETLDEASLQVMRDVSASILGQMELTRSGDGRRPGERMVRGLGSYVEGKTTISGWQNSSTHAFNTDASTEEGSLNQTQQKIQNQRDNAAAAADTESISTPDTFVLESPSQNRPTSPFHPTDKTPHSVPTGEESRSQQLNQIFSKAANILRESIEVEGVLFLDAGIGSFAGRIRSGSLRRNSRTHDRSSSSSSSSSSPGKGNISVSSPRNSADSRSSGAMCPILGFSTSVSSSINGEAPAGRSRTIPERQLQMLLRRYPKGKIFNFDGYGVMASSDPASEDSAMAVFQAQKARSIQEGQRGDNQKSRKVNDPYSRKNEGMAIRDVFPGARSVAFVPLWDSHRERWFSGCFVYTMTPTRIFTVQGELSYLAAFSAVIMADVAMMESSIVSLATTSLLSSLSHELRSPLHGIVLCAELLRDTALDVFQGDVLRSLEVCGRTLLDTINHLLDWTRINNFVKAPSGQSPNSGIAFVRGAQSNQRSGPTDGMMHITSNLDLDMLVEEVVECIYAGHTYQQQSLSLVHDDKPNEELNRDPFTRLDGMDVADSIKAGEKISNGAGPDAVLVMLDIDPAVNWAFHVESGALRRIIMNLCGNALKYTTRGYVKVSAYQDTPGQSRLRDRVVHIDITDTGAGIGQDYLNHRLFAPFAQENIHSSGAGLGLSLVRKFVRALGGSIHVQSKVGTGTRIAVKLPLEAVSVDSTETISDREEFQSQAIELSGLRVCINGFTPFGGGGSESQRWNSREFDERALLQKVCHDWLRMHVVDSLHNAEYLPDLILCDESHLETIANQPRDELSSPVVVVCRSAAVARSLDRSHRSQRKLNWGLFSFISRPVGPRKLAKAFVLCFRRWTKLQATAADRASVSTRLDEPPTVSTAETDLVQHGSDDKNRGYFDIAPTLSPKKRRAHWNDDGTRTPLPSMPALQLPTIPRDQRFLLVEDNAINMKILQTYMKKMGVEYDSASDGLQALECYKAQEGCYKCILMDISMPVMDGFEATRQIRGFEKASDLPRRHIVAISGLASKDAQEDAFANGLDLFLSKPVQLKELSRILKSRGLI +>tr|A0A813QIU7|A0A813QIU7_9BILA Hypothetical protein OS=Adineta steineri OX=433720 GN=IZO911_LOCUS5098 PE=4 SV=1 +MCGIKRCCRNCCPNGCCGFCKPPKQVQQQVDTLIHLKEAVTASETRYGFIKFYPGVRTVDNNYTCPMFAIHLYRQGKLNANMAQDNRTVTYAGRNHQQTHQGEKQFISTQNASAEEEVIMVPLEDVIHISYKADVKIGMQADIKSHVTPVHERSENCCDRCCAPIVNCCRKTRDCCCCHSRQEENKVAPFVQNTTTIINANSNRNEDYVEQDLPLPKVKESCWSKCCNPCRCWCCRKKRLVRLIKRTNTKAARQAERVITMTIQYSKYSNLDTASHTRLLSNQHQLEYFKAKFQPDAELEFYLINDTEFEPMNFDVKKNEAEVLCRTVMQLKGMKNRYPSADELDKILDQPQQRIFGTIFHEPILQLPSNAEIQRVT +>tr|I2FGU6|I2FGU6_9ANNE Cytochrome c oxidase subunit 1 (Fragment) OS=Megascolecidae sp. Esik120 OX=942496 GN=COI PE=3 SV=1 +TLYFILGIWAGMIGAGMSLLIRIELSQPGSFLGSDQLYNTIVTAHAFLMIFFLVMPVFIGGFGNWLLPLMLGTPDMAFPRLNNMSFWLLPPSLILLVSSAAVEKGAGTGWTVYPPLASNIAHAGPSVDLAIFSLHLAGASSILGAINFITTVINMRWSGLRLERIPLFVWAVVITVVLLLLSLPVLAGAITMLLTDRNLNTSFFDPAGGGDPILYQHLF +>tr|A0A2I7QPQ3|A0A2I7QPQ3_9CAUD Coil containing protein OS=Vibrio phage 1.034.O._10N.261.46.B7 OX=1881189 GN=NVP1034O_23 PE=4 SV=1 +MATVAAIAGVIGAVTGVVGAVQQRKAAKKATAEQKRQNALNNRVQEVNQRRDIRRSIAASRAQQAQLEQGGIDFGVQGSSIVAGAQGAAQTDLATSIGSGFANQGASAGFAASRNRQADAMLDVQNNIYTDVSNFAGNFTHAGVNEVYKSELTGLFS +>tr|A0A537DGT1|A0A537DGT1_9PROT Thiamine pyrophosphate-binding protein OS=Betaproteobacteria bacterium OX=1891241 GN=E6H40_11730 PE=3 SV=1 +MENERPLASPKQNEIWGSDAIAALLRELDIPYIALNPGASFRGLHDSLVNYLGNERPQLLLCLHEESAVAIAHGYAKASGRMMGVALHSNVGLMHATMAIFNAWCDRVPMLILGATGPWDAARRRPWIDWIHTSADQGALVRDYTKWDNQPASVPAAWEALLRAAQIANTAPRGPTYVNLDAALQETKIGPLPPLPDVSRYRAPEAVLPKAELIDAAAQLLSAAERPVILAGRFARTGAGWKSRVALAEKLQASVLTDLKAGASFPTDHPLHVAPPATFLHENAREALREADVVLSLDWIDTAGALKQAWGDAPIGAKVILVSPDAHAHRGWSMDYQGLPPADVYLMCEPDAVVPLLLEAVEPRAAAAAEQRAEETTTDKTLSLRALADGFNTATAGLNVCLARLPLGWNGAYRHFKHPFDYLGGDGGGGVGAGPGMIVGAALALNDSGRMVAGILGDGDFLMGVTALWTAAHYRIPCLLIVANNRSFYNDELHQERVAHERGRPVENKWIGQRIDEPDIDLASMAGAQGAFGIGPVTDLAELQPSLARAIELVREGNVCVVDVRVVPGYDSSVSGSPARR +>tr|A0A7L4GLY1|A0A7L4GLY1_PODST SESN3 protein (Fragment) OS=Podargus strigoides OX=8905 GN=Sesn3_1 PE=3 SV=1 +GRLEAVTQQMGYHPQYLDSFLKTQHYLMHMDGPLPFDCRHYIAIMAAARHQCRYLVNLHVLQFLRAGGDPQWLRGLDFIPPKLRNLNEINKILAHRPWLITKEHIEKLLKISEWSWSLAELVHAVVLLAHCHALASFVFGCGCEQDEGLGGRGLLKPLSPGNQCFCEATAGNGCSQELLRISRKRSLDSCMELDSLRERMQRIHVETEGREEMRLLQQDREEGEGQGAEVGHHSDPPAGLSPLADTDGEVTGATNLACYMQDPDFGYQDFARRDEDQTQVFRVQDYSWEDHGFSLVNRLYSDIGHLLDEKFRMVDGLQSSAMAKRQGCEPSVFKRGIWNYIHCMFGIRYDDYDYAEVNQLLERMLKVYIKTVTCYPEKTNPEMFDRFWKQFKHSEKVHVNLLILEARMQAELLYALQAITQYMI +>tr|A0A6A3AK87|A0A6A3AK87_HIBSY C3H1-type domain-containing protein OS=Hibiscus syriacus OX=106335 GN=F3Y22_tig00110462pilonHSYRG00339 PE=4 SV=1 +MYTSRHVVFDELQFPFAKLHEKVSNEYNTHASSSSLQIVAVVHKFQHVLAEGYDNNSMTNNSPATVSSNYFSSNVAATSNSQNEAQEDVVDSSSATQNDATQDDDAHEETVVPQSVNECTPSEGVNSDMPTNTHHMMTRSKCGVFKPKVRKETVQAEFDALLTNNTWTLVKLPEDRTAVGCYDFKDTYNPIIKFSILNIVLSIAVTRKWCIRHVDVNNAFLNGKLAEDVFMQQSPGFEKYAVDESVLVCKLNKALYGLRQAPRNWHDKLKTSLIRLGFTESKADVSLFVRIDADCRIYILVYVDDIIITGDSSPSIDSIVHALSRDFSLKDLRSLAYFLGIKVKRTEEAMLLSQRKYIIELLEKICLLNATPTVTPMIGASKMTQEVGALLSDAREYRSIVGALLYVCHTRPDIAFSVNKATQFMHAPRELHLAAVKRILKYLASTLNYSLTFSSNDVSQDVVAFTDADWGGSLDDRRSVSGHAVFLGHCLVIWCSKKQKIISRSTMEAEYRIIADAAVEVMWMSSLLCELGVKHRNMPVEWCDNTSTVALSTNPVYHSRSKLVDMDVHFVREKVAANQLQVNYVHASHQVADVNPTESGSSGQLLLDASNFPERPDQPECRYYMNTVTCKYGSDCKYHHPKEMIANSTINGIGPLWLPSRPPSSVFDSSALTYQRMSPTAHLSETPLPSKLTDWTGNTESVSKKHQNTEMKNSDDPAEQAALTHSLQISSKNSQDD +>tr|B6WSE8|B6WSE8_9DELT Tyrosine recombinase XerC OS=Desulfovibrio piger ATCC 29098 OX=411464 GN=xerC PE=3 SV=1 +MGRHIEKDTMEEELDPRTTLEIESFLAWLDVQRGLSPTTQIAYGTDLRQLALFLAQRGASLARPAEVSKKHIQAWLARLYALGEAKSTMARKLAAARTFFRYQQRMGRTENNVAAQVRNPKQEQRHPRVLNVDQAFAVLDTPDALAGTGSPRIPPATGDALAARDHALAELLYGSGLRISEALGLDVTDLRLDESVVRVFGKGARERMSPLSDTSVTALRAWLEQRGTLAPEGEKALFVGARGGRLDRREAMRRIERLCRNAGVEPVSPHALRHSFATHLLDAGADLRSVQELLGHQRLTTTQRYTRVSLERLMHLYDEAHPRAQKK +>tr|A0A6A7M004|A0A6A7M004_9PROT Uncharacterized protein OS=Rhodospirillales bacterium OX=2026786 GN=GEV13_06010 PE=4 SV=1 +MWVNAREVPRFYPNAVTLAHDDASIAEQLSNIEVLQKSNLPGRWAVKDSFQALDLSRRGFDVLQEASWIRSVMPTGSSATDIEWQRETQGKAPWPYDDPNFAMFTGRRGFSVVAGGMLYRAAGVAGLSNVVAEAADAVTVWRSLILLASRTFPRLPVVGYESGGELAAALDAGFEIGDPLKIWVRARD +>tr|A0A2T0N3A0|A0A2T0N3A0_9ACTN Uncharacterized protein OS=Nonomuraea fuscirosea OX=1291556 GN=B0I32_10527 PE=4 SV=1 +MTEKIPVDLWFDPSCPFAWVTSRWLLEVEKVRPIQPRWRQMSLYFLNEEKDVPADYLERAAKAMGSVRVIAAAAAKHGEHVIGQLYTGLGTRLHNQGLSKEPERLREVIEGALDDAGLERSLAEAMHSEEYDATIRASHDEGIGLVGQEVGTPVIRVGDNAFFGPVITRILRGDDAGKLWDGVLAVTQFDDFFELKRTRTRRPQFD +>tr|A0A3A6JJ78|A0A3A6JJ78_9FIRM Uncharacterized protein OS=Coprococcus sp. AF38-1 OX=2302943 GN=DW025_00330 PE=4 SV=1 +MAIRKDGPQKAVMREMMRDYLKNNDISIKDGTDVNSIMCDMMFVILEGALDEKLGYSKMTVELFTSFRV +>tr|A0A4R1JNC6|A0A4R1JNC6_9GAMM Ribosomal protein S18 acetylase RimI-like enzyme OS=Celerinatantimonas diazotrophica OX=412034 GN=EV690_2119 PE=4 SV=1 +MIQYRPMQINDYDSVMALWLQTEEMLLREADSQTNIAHYLARNHNLSFVAENENHEIIGAILVGTDGRRGYIQHLSVALECRSQGIGRDLIAKAVKALKEIGIAKTHLFVNIANENAKKFYQRLGWQVREEVRMYSFNSSEDTQI +>tr|A0A7S6MMK8|A0A7S6MMK8_9GAMM Flagellar assembly protein FliH OS=Gammaproteobacteria bacterium OX=1913989 GN=HRU78_01625 PE=4 SV=1 +MIASNFVPKEKLTAYQRWEMDSFEAPELSQEAQEAGKESNDQSDSQPQVSLPTEEEIAAVLRSAKEQGYAAGLQEGHTAGHAAGYAEGRALAESEVKAEVARMQTLLTKLDQDLQQMDQQVAASLLELAIALTKKMVTEALKLQPELIVPIVQEAIRNLPNATQHPRLFLHPEDAKLVLAHLHEQLEQDHWSIREDEQLIRGGCRIEAGGSEINGSLEVRWQRVLSTLGQTDEWLNKAD +>tr|A0A852D8G1|A0A852D8G1_PASAF PDIP3 protein (Fragment) OS=Passerina amoena OX=142471 GN=Poldip3 PE=4 SV=1 +QLAFSPLEGTKMTVNNLHPRVTEEDIVELFCVCGALKRARLVHPGVAEVVFVKKEDAITAYKKYNNRCLDGQPMKCNLHMNGNVITSDQPILLRLSDTPSVKKEGEPRRSSASASSNPPAEVDPETILKALFKSSGVSASVQPTEFKIKL +>tr|A0A2T7IVZ0|A0A2T7IVZ0_THEOR Uncharacterized protein OS=Theileria orientalis OX=68886 GN=MACK_00001413 PE=3 SV=1 +MDGKNPYEFESLVSLMRMNFASIVEKVKGMKVLILDSETSKIISLVYTHSYLLENEVLLTLNIDDGTIFNPDPNVTVDSNLKYLKGIYIVSPNXESLNXISSELKNPHFKEYYVYFTNKVKEDLLELMAKSDTLEIVKGVYEYFVDFYVLDECLFTLNIANLQSLYKDDVNMMLDFSVSKMVNSLFSVCCMLNQIPTVVYRRNNPILQTIANKLQADFNNNNLNLQSIIQSYNNYNSKNPTADHSGCVLLILDRREDCITPLMNQWTYRAMIHEMLKINNNKVMXEDTEYILGNNDDFYGKHLFDEFADVESDLNVLINENKPANSDIYKILESLPEQSKTLNDTTRHVKVLHELSKHIQKNKLLDSGILEQDIATNRRNVINELAEFLNDKTAPTYEKLRVALIFCLKNPGDTNKVNRVKDYLKMNRLDQHVGLVDLCLKLAKFRPVSKTNQDFTLSSLKDKFNKVSLESQSPYLQYKSQLHSTCYNLIKGKLDVELYATMPSAYDLGYTLKHKPASVSIKFFYSSRRTVGDVTYDRPHQITDEMPKVSELDVYKEVLSGEKRKSIRRSDFLKFTGGKRPLISSHLHANLIASGLVVWAVVAFFLTFKVMKPESYEWVENERRRIEAAKQKIALIKKDQENKALAQ +>tr|Q3JRW6|Q3JRW6_BURP1 Putative membrane protein OS=Burkholderia pseudomallei (strain 1710b) OX=320372 GN=BURPS1710b_2292 PE=3 SV=1 +MSTLTSPPLSVAAPSMRGRLNGVLFVGLFALAVTSVAQLPAVAHLGLSPLIVGIVAGALYGNLLREGMPASWAAGVDFSARKLLRIAVAFFGLRVSLQEIAQVGVPGLAVSALVVASTLAVGTWAGIKLMKLDRDTALLTAAGSAICGAAAVLAFESALRSKPHQSAMAVGSVVLFGTLSMFAYPLAYRAGWLHLDATGLGLFFGGTIHEVAQVVGAASDVGPEVARVATIVKMTRVMLLVPVLLVLGAWLARSARRSTAAGRGAPRKLAVPWFALGFLGFVIVNSLQMLPAAAIGTLNALDTFALTMAMTALGIETRMSQIRAAGPRALMTGLILYAWLVFGGYAIVWATQRWLG +>tr|A0A661D2Y2|A0A661D2Y2_9GAMM Uncharacterized protein (Fragment) OS=Gammaproteobacteria bacterium OX=1913989 GN=DRQ40_10815 PE=4 SV=1 +QDTDPEPEPEPEPEPEPEPEPEPEPEPEPEPENTDDSDELEPVPSNKLSDYLTKSLGGSISDKDNNSVDEVEVDPQTKIESDAGVESELGSEQDQLLSMVADIEAEEADPPIVEDAAESSDEQNQPEDTKSVYGSEIEALSAKVKARTSELKAEAEKAQIRLDSNLEVKTSFDVELQLDKGSELEPNLENDSNLSATDIDLVNDEDFNLEQPEEQPEEQPEEQPEEQPEEQPEEPLPSEEQLDSMLSEVRALEQDKTLKNEKAEEPVVAKSTQDELQAILSSIPSFSDMNKK +>tr|A0A6N6VZN6|A0A6N6VZN6_9BURK Magnesium transporter OS=Paraburkholderia madseniana OX=2599607 GN=FSO04_44420 PE=3 SV=1 +MATELLSAQNTDHFPLDRGYLFSGNGVGREIDANTAIEWLKHRDDDSTEFIWLYFHDIPTVPEGWPLQHVQVPEAFGDTLKEGSRSTRITHVYQTLIAVLNDVEYDLERKTSLKVATLWVNVGVHYLISVRNSPLRSVNQLRLAVEAVETFRSPMALLIHLLQEQADVLIGIVRTAAQAANDVDETLLAGRLPTRSGLGGIRRDLVRLRRLLAPEPAALFRLVSRPPHWVLEEDAQSLRQSAEAFSLTLRDMAGLQERIKLLEEEIADRVAEHTNRSVLILTAVAVIALPVNLISGLLGMNIGGLPFKYQPFQGLDQDVPPLARLSRRAVL +>tr|A0A063XZJ1|A0A063XZJ1_9GAMM Biotin synthesis protein BioH OS=Nitrincola lacisaponensis OX=267850 GN=ADINL_1947 PE=4 SV=1 +MLSIESLAGQGADLVLVSGWGSDSGIFDPLLPLLSPYFRVHRVLWQTSGWPADDGQLRYQLLNCLRRQAPSRAIWVGWSLGANLALTLADSFPEKVSRLVTLAFNPCFVQRDDWSCAMPQTEFLHFQQNFLTAPAATLKRFQALQVMGSVDRRQVIAALQSSPAHLPPARLSQLLQLLADDLRPQLKRLSQPQLHCLGAQDTLVPCASLLAAYPHLNPQVELRCYAQSAHLPFLSEASRWCEDLRQWCQA +>tr|A0A7V9MZW3|A0A7V9MZW3_9PROT Pentapeptide repeat-containing protein OS=Alphaproteobacteria bacterium OX=1913988 GN=H0U98_14635 PE=4 SV=1 +MMLPLPAMAADPAAVAKIHGGIVDCVGCNLAGADLSNTCVKDHDLHGADFTGADATLMCMSFANFTGVSFRGAELSGANLAGAKMDGADLTGAGTSITSFLGTDLTKVKGLTQKQLDIACGDATTRLPPGLNIHTCE +>tr|A0A3A5H6E9|A0A3A5H6E9_9ACTN Recombination protein RecR OS=Nocardioides sp. K1W22B-1 OX=2321396 GN=recR PE=3 SV=1 +MYEGIVQDLIDELGRLPGVGPKSAQRIAFHLLQADPADVRRLADVLIQVKAKVKFCSICFNVSEEEQCRICRDPRRDPSVICVVEEYKDVAAIERTREFRGRYHVLGGAISPIDGIGPDQLRIRELLIRLADGAVTEVILATDPNLEGEATATFLTRNLKPLGLRVTRLASGLPVGGDLEYADEVTLGRAFAGRRSADD +>tr|E9F284|E9F284_METRA Cytochrome b-c1 complex subunit Rieske, mitochondrial OS=Metarhizium robertsii (strain ARSEF 23 / ATCC MYA-3075) OX=655844 GN=MAA_06282 PE=3 SV=1 +MASLTSASRLCLRSAAKPAMPAVRALSTTAMRSDSAASSYQSPFKMGSDKGSSIPDFGKYMSKKGEGNNKLFSYFMVGTMGALSAAGAKSTVQEFLVNMSASADVLAMAKVEVDLNAIPEGKNVIIKWRGKPVFIRHRTQDEIDQANKVNVASLRDPQTDDERVKQPEWLVMLGVCTHLGCVPIGEAGDFGGWFCPCHGSHYDISGRIRKGPAPLNLEIPEYDFPEEGKLVVG +>tr|A0A2M7QIU8|A0A2M7QIU8_9BACT Restriction endonuclease (Fragment) OS=Candidatus Roizmanbacteria bacterium CG_4_10_14_0_8_um_filter_33_9 OX=1974826 GN=COY87_02155 PE=4 SV=1 +MLFKNDWEKTVYESENKIIDFENKLKNITQFPKGKERDCIVKSRINQN +>tr|B1KM11|B1KM11_SHEWM AAA ATPase central domain protein OS=Shewanella woodyi (strain ATCC 51908 / MS32) OX=392500 GN=Swoo_4641 PE=3 SV=1 +MDNNYINSMEQALSLSPDNFILRITLIQALYEHQQLSTALSLLKEVESCQVEQELHQILAAKIFIESGDGENALLFLSSNLPEVKILKAKAYQILNEFSLAREFYVEAVKENSSLEDIDFARELRVAKDALDNSKRIKLTVVANDDTDAVEVTRLIKPREEVISFSEVGGLADVKKQIRKKIITPFQKPSLFQRFKKKVGGGILLFGPPGCGKTLLARATAGECNATFINVVISDILDMYIGESEKKLHAIFEQARQNTPSVIFFDEIESLAAKRQHTREATSAKLVSQFLSELDGFAQNNHGVLILGATNVPWALDPAFRRPGRFDRVVFIAPPDVDARTDILKGLLKDRPGGESVDAQKIARLTSGFSGADLMNLVETAVDEAIDHSIESGEEVPLNQTFVKEALKEVNPTTLEWLTMARNYAKYANDSGQYNEVLAFLRKHGK +>tr|A0A2T7C6Y6|A0A2T7C6Y6_9POAL Glyco_trans_2-like domain-containing protein OS=Panicum hallii var. hallii OX=1504633 GN=GQ55_9G257400 PE=4 SV=1 +MAPTTVVGSSSQLSPHPNVLLLVPLPLVASRPPTPPPSAGRSYHHGITPTPTHPALSKPNRKKGARSQSCCTRAHPPPHSSLRSVRSKQGTQPARVPMPALAAAAAAWALRAAVWACLAASAMLVAEAAYMGLASLVAAVALWRRPGRRYRWEPMPGGVGGDVEAGPAAAAEFPMVLVQIPMYNEREVYKLSISAACALTWPPDRIIIQVLDDSTDPIIKELVELECLDWASKKINIKYEVRNNRKGYKAGALKKGMEHIYAQQCDFVAIFDADFQPESDFLLKTIPFLVHNPKIALIQTRWEFVNYDVCLMTRIQKMSLDYHFKVEQESGSFVHSFFGFNGTAGVWRVSAINQSGGWKDRTTVEDMDLAVRASLNGWEFLYVGDIRVKSELPSTFQAYRHQQHRWTCGAANLFRKMAWEIITNKEVSIWKKHHLLYSFFFVRRVIAPLVTFLFYCVVIPLSAMVPGVSIPVWGLFYIPTAITCMNAIRNPGSLHLMPFWILFENVMSMHRMRAALSGLLETARANDWVVTEKVGDPAKDDLDVPLLEPVKPTECVERIYIPEILLALCLLICASYDLVLGSHKYYLYIYLQAFAFIVMGFGFVGTRTPCS +>tr|A0A3N5TBJ3|A0A3N5TBJ3_9DELT NlpC/P60 family protein OS=Deltaproteobacteria bacterium OX=2026735 GN=EHM37_16680 PE=3 SV=1 +MGRLVRGTMILPFFVLMAAGCTPKYDYTIHKPRVVYQQPSRQALRTSLGEILGKKYVWAEEGPEAFDCSGLTYYAFGRMNLEIPRVSSDQAQGGVEVPRDALQYGDLVFFDTGKNFTGTVTHVGVYIGDEKFQQASTNYGKVVISSLNDSNYANRFLTARRYLTDAASPRQTPTGWARNHGY +>tr|A0A418MJS3|A0A418MJS3_9BACT Uncharacterized protein OS=Fibrisoma montanum OX=2305895 GN=DYU11_05040 PE=4 SV=1 +MKSALSKGLLVVAVLSLASCDYQKYNTIRQSDYRGNDPYVYGPNKDSAAIQSKYKYTPNPALEERTQKIREKLFGAGTIGEGA +>tr|A0A2Z5TXE8|A0A2Z5TXE8_9MYCO Putative lipoprotein LppW OS=Mycobacterium pseudoshottsii JCM 15466 OX=1136880 GN=lppW PE=4 SV=1 +MRARPLTMLTAAAAVALVVSLVLTGCEAKVQAKAYGTDDRESSRQQSQPQQQQLIELLLRAITPPEDPAALLPSAGLVGVQERIQRATEEAAAKGATITVAILDRATHQLVSNGKTSIIATASVSKLFIADELLLRASQGKNTLSAQDRQALENMLRSSDDGAAEQFWGELGGDAIVTEIATRYGLAATAPPSDGRWWNTFSSAPDLIRYYEMLLDGEGGLPLQSAAIIVNDLAQSTPNGIDGYPQRFGIPDGLYAEPVAVKQGWMCCIGADWMHLSTGIIGSDRRYIMVIESLQASDDATARETITQAVKTIFPAGRI +>tr|A0A839NTR2|A0A839NTR2_9SPHI Large subunit ribosomal protein L5 OS=Sphingobacterium sp. JUb56 OX=2587145 GN=FHR29_003793 PE=4 SV=1 +MTYVPRLKVKYAEEIRTALKEKFQYKSVMQVPKLEKIVVSQGVGAATSDKKLIDNALSELTLITGQQAVATKSKKDISNFKLRKGMPVGARVTLRDNNMYEFLDRLIAVSLPRIRDFRGINDKGFDGRGNYNLGITEQIIFPEINIDKINKIQGMDITFVTSAGNDVEALELLKQFGLPFKNQNTNNNG +>tr|A0A432QAS4|A0A432QAS4_9DELT Bifunctional 4'-phosphopantothenoylcysteine decarboxylase/phosphopantothenoylcysteine synthetase (Fragment) OS=Desulfobulbus sp. OX=895 GN=DSY50_03665 PE=4 SV=1 +PARYLSNRSSGKMGYALARVARRRGGRVTLVSGPVNLAPPPDVECVNVLTAAEMHQAVMERAADSSIIIKAAAVADFKPQESSPRKIKKSGADLTLELTANPDILAGLGKARTDHQLLVGFAAESDNHEDEGQRKLYDKNVDLMVVNDILGEKTGFDVDTNQVTLITRKNVLPLPFLSKEETAGRILDKILELSRK +>tr|A0A840G848|A0A840G848_9BRAD 3-carboxy-cis,cis-muconate cycloisomerase OS=Bradyrhizobium sp. CIR18 OX=2663839 GN=GGD65_001449 PE=4 SV=1 +MSTSLSPLLAPMLSSAAMRAVCDDRSTLQNMLDFEAALARAEAATDVIPASAVVSIEAACKADSFDMTALAEAATRSGNLAIPLVKMLTANVGKADTEAARYVHWGATSQDVIDTATMLTLRAGLDALDADLSRAIRGFAALARSHRNTAMVARTWLQHALPMPFGLKAAEYAASLARARCRLRRLSREGLALQFGGAAGTLAALGDKGLAVAERLAQELNLPLPEAPWHTHRDRIAEAASAFAILAGTCGKIARDVSLMMQTDVGEAFEPAGEGRGGSSTMPHKRNPVSAASALGAATMAPQLAATIFAAQVQDHERSAGPWHAEWPTLPQLMLVTSGALAAIVDIAEGLDVDAARMRSNLDATHGLIMAEAVTFALADKIGKSDAHHLIEAASKRAVAEKKHLREVLTADSQVTAHLSPEKIAALFEPMAYQGASQALIDRLLDSLDRK +>tr|A0A7N8WV28|A0A7N8WV28_9TELE Transducin-like enhancer protein 4 OS=Mastacembelus armatus OX=205130 PE=3 SV=1 +MYPPARHPVPHQPGQPFKFTVTESCDRIKEEFQFLQAQYHSLKLECEKLASEKTEMQRHYVMYYEMSYGLNIEMHKQVGNFFFFFLLECQQEVKPHYSRCQMNAQQQLQAQHLSHGHAIPVPLTPHPAGLQPPLPPGAGTASLLALSSALSHQLPLKDERKHHDNNSEHPRGKDCPVCVYLKIKCPSVCVCQESDGEKSDDNLVVDVSNEDPASPHGSPAHSPRENGLDKNRLLKKDAPLSPSSVASSSSTPSSKSKEINLKSTTPVSKSSTPTSRSDALTPSSTATPGLRSAPGKPSGVDTLAPGLRTPLAVPCSYPGPFGMVPHPGMNGELSGVGAAYTGLHNISPQMSAVAAAAVYSFVVGFDPHHHIRVPGLPPNLSGIPGGKPAYSFHVSADGQMQPVPFPPDALIGPGIPRHARQINTLSHGEVVCAVTISNPTRHVYTGGKGCVKVWDISHPGNKTPVSQLDCLNRDNYIRSCRLLPDGRTLIVGGEASTLSIWDLATPTPRIKAELTSSAPACYALAISPDSKVCFSCCSDGNIAVWDLHNQTLVRQFQGHTDGASCIDISNDGTKLWTGGLDNTVRSWDLREGRQLQQHDFTSQIFSLGYCPTGEWLAVGMENSNVEVLHVTKPDKYQLHLHESCVLSLRFAHCGKWFVSTGKDNLLNAWRTPYGASIFQSKESSSVLSCDISIDDKYIVTGSGDKKATVYEVIY +>tr|A0A3D9SW97|A0A3D9SW97_9ACTN Uncharacterized protein OS=Thermomonospora umbrina OX=111806 GN=DFJ69_4288 PE=4 SV=1 +MLTSKTKVAMGGVALGVIALWLIPGWILTLLVLGAIAVPVAAYLMLDPSQRRKVRARGRKRLGA +>tr|A0A2U3LCS8|A0A2U3LCS8_9DELT PC4 domain-containing protein OS=Syntrophobacter sp. SbD1 OX=2043167 GN=SBDP1_820009 PE=4 SV=1 +MAKEPQIVHSFPKNPLEEVRSSVTYYKGKQYVDIRIYYKGDDGEFHPSKKGVTLSVELFPELETGFQKLKEALEEEQ +>tr|A0A173RRC4|A0A173RRC4_9FIRM Auxin efflux carrier OS=Faecalibacterium prausnitzii OX=853 GN=ERS852582_00615 PE=3 SV=1 +MELALITAQQVAVLFLLIGTGMVAVKTGVLKLENKQALSNLLVYIIVPAMVVNSYRMEFSAQILHNLLAAFGMSVLSVLLGTVITLLLTARKTGSRMPIFRFACIFSNAAYMGFPLISALFGSEGLLYASAYVTVFNILLWTLGYGLVSGGSSVKEIARSLVRTPVLYAIVVGLGIYLLQIPLPALITQPLELLAGVNTPLSMLITGMLIAAGDVRSIVTDKHIWKLASVRMLLIPAATLALFGVLGFHGTATQVVTLLECCPAAAITSVFAVQFGHDEHFAAGSVVLTTLLSIITLPLCALIITMVM +>tr|A0A3M1TWK5|A0A3M1TWK5_9BACT Uncharacterized protein OS=Bacteroidetes bacterium OX=1898104 GN=D6730_19965 PE=4 SV=1 +MLIGQNPCVCIHKGFFFERKNRLPSAAHNNAAVGALSYRNVKNTGPMAPKGDKCLIFNFRK +>tr|A0A7C3Z4Q6|A0A7C3Z4Q6_9BACT Uncharacterized protein OS=bacterium OX=1869227 GN=ENW92_06685 PE=4 SV=1 +MSKFNETIRGIEDRLDLLQDNIQAIKDDLKILDSISTKIDVLTEQVKSHDIILNGNGSEGLKSKISRFEEIISVLKEKIDNIVTLLFGDLNNEGIKSKINLIDFKIGLISAIGGVAGAVAVTIMSDTIVNLIKKIF +>tr|A0A2T6RAW0|A0A2T6RAW0_HELPX Methionine--tRNA ligase OS=Helicobacter pylori OX=210 GN=metG PE=3 SV=1 +MQKSLITTPIYYVNDVPHIGHAYTTLIADTLKKYYTLQGEEVFFLTGTDEHGQKIEQSARLRNQSPKAYADSISAIFKDQWDFFNLDYDGFIRTTDSEHQKCVQNAFEIMFEKGDIYKGTYSGYYCVSCESYCAISKTDNTNDKVLCPDCLRETTLLEEESYFFRLSAYEKPLLDFYAKNPEAILPIYRKNEVTSFIEQGLLDLSITRTSFEWGIPLPKKMNDPKHVVYVWLDALLNYASALGYLNGLDNKMAHFERARHIVGKDILRFHAIYWPAFLMSLNLPLFKQLCVHGWWTIEGVKMSKSLGNVLDAQKIAMEYGIEELRYFLLREVPFGQDGDFSKKALIERINANLNNDLGNLLNRLLGMAKKYFNHSLKSAKITAYYSKELEKAHQILDNANSFVPKMQLHKALEELFNVYDFLNKLIAKEEPWVLHKNNESEKLEALLSLIANALLQSSFLLYAFMPKSAVKLASAFNTEITPDNYERFFKAKKLQDMILQDTEPLFSKMEKIERTEKAGEASPEKNEKEKKDRKEKAPLKQENYIGIEDFKKVEIKVGLIKEAQRIEKSNKLLRLKVDLGEGRLRQVISGIALDYEPESLVGQMVCVVANLKPAKLMGEMSEGMILAVRDSDNLALISPTREKIAGSLIS +>tr|A0A6P8YKE1|A0A6P8YKE1_THRPL Non-specific serine/threonine protein kinase OS=Thrips palmi OX=161013 GN=LOC117644815 PE=4 SV=1 +MEIVGDYEYNSKDLIGHGAFAVVFKGRKRKDPNYVVAIKSISKKSLAKSQNLLGKEIKILKELTELHHENVVALLDCKESPLQVFLVMEYCNGGDLADYLSVKGTLSEDTIRLFLRQLAGAMKALYAKGIVHRDLKPQNILLSHSGGKPCPQPQEIRLKIADFGFARFLQDGVMAATLCGSPMYMAPEVIMSLQYDAKADLWSLGTIVFQCLTGKAPFQAQTPQALKNFYEKNANLSPKIPAGTSPELRDLLLGLLRRNARERMTFDSFFTHPFLQREAEPTPAPPMPGELPPSPRALFQPPATQSPTHKARLDTCGSQPVPANIPSDHSSDSNPERPSRTRTSSASAASPPRPSFLPISEPIPVPTHRDAFQQRQSIHSQDNEPSKGSVPRSQPINMRRASDQRAANATPDLSSLSPPAVQFMIGTPPNGGCGQRRRSASGSSCETPPPVSTWQVTPTSSPLRRSGASSPLLSGPLAVLPSILGSPNRMSENNNMRQSPLMPFGSRAMTLPEISEAGNFQRLFQDANQPSNIDAPLTFLAPELPEETLLEREHNETLAKLHFVLALSDCVLELAGSRGTPLAALTESVNLGGGGSPNGSSNITGNGVISEGARRAEQLVLLVRALQLLSSGLSLATQQIRAGHLQPSSSVKSVVGIMNQKFRQCLADCKQLNTPGLLQKAGVDPATTNIAADKILYNHAIQMCQSAALDELFGNPEDCFQRYQTAQILLHSLSQQVHHQQDRALLTKYKDAVEKRLFVLQQQGFIYSTQCFTHLA +>tr|A0A151YSI4|A0A151YSI4_9GAMM Mandelate dehydrogenase OS=Acinetobacter lactucae OX=1785128 GN=AWW73_12870 PE=3 SV=1 +MSRKLINVEDYRLQAKRTLPRIIFDYLEGGAEDEKGLNHNRTIFDQFRLKPKRLVDISQRDISCKIFNKKWDAPFAIAPTGLNSSLWPHADSILAKSAAKANIPFMLSTASNMSIEAVAKSCDGEKWFQLYVVHQELAVKMVQRALSAGYTTLIITLDVGVNGYRERDIRNGFAIPLKFSPSLILDGMMHPGWSLRFLSQGMPKLANFESSEAHSLEVQNALLKRQMDTTFNLESLKKIRDLWPHTLLVKGLVRQEDALKAIEAGADGVILSNHGGRQLDCSISPMETLYEVSQTIEQPVLIDSGFRRGSDIVKALCLGANMVCLGRATLYGLAANGEAGVDDVIQLLKQDVDRTLAQIGCPSVSQLNKEYIT +>tr|A0A502DVG8|A0A502DVG8_9MYCO Uncharacterized protein OS=Mycolicibacterium hodleri OX=49897 GN=EAH80_27785 PE=4 SV=1 +MERTDRRKAQAAIIGGTALLAMGIIGGAAGGPGDGKTALVSGGSMQTGETTTLTYTGTIAPVKAVPSVKATPH +>tr|A0A6P7I339|A0A6P7I339_9TELE caM kinase-like vesicle-associated protein OS=Parambassis ranga OX=210632 GN=camkv PE=4 SV=1 +MPFGCLTIGEKKDYNSPSDVTDKYDLGQIVKSEEFCEIFRAKDKTTVKMYTCKKFMKKDGRKVRKAAKNEIFILKMVKHPNILQLVDVFETKKEYFLFLELATGREVFDWILDQGYYSERDTSNVVRQVLEAVAYLHSLHIVHRNLKLENLVYYNRLKHSKIVISDFHLAKLENGLIKDPCGTPEYLAPEVVARQRYGRPVDCWATGVIMYILLSGNPPFYDETDDDDYENHDKNLFRKILAGDYEFDSPYWDDISDSAKSLVARLMEVDQDQRLTAQEAINHEWISGGAASDKNIKENVCAQIEKNFARAKWKKAVRVTTIMKRLRAPEQSDSRSTSPAAGTPADTAAPPADPAAPSSAAVPEVSPAAVTELPAGAPPEAGAGAAAEEPQPPNPALQVAEPASRCNGEASAILHTAAEAGDEQG +>tr|A0A521F3G2|A0A521F3G2_9RHOB Do/DeqQ family serine protease OS=Ruegeria faecimaris OX=686389 GN=SAMN06265380_11652 PE=4 SV=1 +MRKVLCSLLLTVAAVSAKAETKVPQTQVEISLGFAPVVKQAAPAVVNIYAKIVREGRSNSLFSDPFFQDFFGGGFGEPRPRVQNSLGSGVILTDDGYVVSNYHVVGSATEIRVVTTDRREFSAEVVLGDQESDIAILRLKDAEALPSIDMRDSDLVEVGELALAIGNPFGVGQTVSSGIISGLARTGTATGNARGYFIQTDAAINPGNSGGALIDVNGDLIGINTSILTRSGGSNGIGFAIPANLVAEFLRQAQAGNDSFVSPWAGMAGQHMSADIAESLGLVIPQGVVISDLHALSPLAEAGLQVGDVVTHVDGDEVNSPAEMKFRMSVAGVGGTSVVTRLRGEDRAELEVALVKAPEVPAAEVTTLNDETVMPGLTVSRINPAVIARLGLLLSQTGVVVVDAGRYGGRSGLRPGDVVDGINGARVERPADVVKALTDPGRRINLDILRGGRPVSLRFRL +>tr|A0A1H9D944|A0A1H9D944_9BACT Monosaccharide ABC transporter substrate-binding protein, CUT2 family OS=bacterium A52C2 OX=1855383 GN=SAMN05216548_102373 PE=4 SV=1 +MKSIRSLAVALALGVAAVVSAQAEAADITVGFVPGTVSDPFFQAMKKGAQQAADRLGMKLNWQGSSGEYSPQQQLPFVDAMLANNVSVLIFCPTDPDSMQASVTKAQIQGIPVITVDTTVTDQSSVTSFITGDNVAGGRQAAQTLAEQIGNKGKVFIMATSPSATTNTLRRQGFEEEMKNHPDIKIVGIQYSQSQPDRATSAVNTVLLDQPDLAGVFALDGTNTQGAVAAIRNSGKTGKVKLVGYDAYQAEVDALKDGVVTALVAQRPSEEANMAMEFALAKVSGKDTDKIQKNAVIPNVVITKDNLSENEKYVYSE +>tr|I7C407|I7C407_PSEPT Sulfate adenylyltransferase subunit 1 OS=Pseudomonas putida (strain DOT-T1E) OX=1196325 GN=cysN PE=3 SV=1 +MSHQSDLISEDILAYLAQHERKELLRFLTCGNVDDGKSTLIGRLLHDSKMIYEDHLEAITRDSKKVGTTGEEVDLALLVDGLQAEREQGITIDVAYRYFSTAKRKFIIADTPGHEQYTRNMATGASTCDLAIILVDARYGVQTQTRRHSYIASLLGIKHIVVAVNKMDLKGFDEGVFESIKADYLKFAEAINLTPSSLHFVPMSALKGDNVVNHSEQSPWYAGPTLMEILETVEVSADRNFTDLRFPVQYVNRPNLNFRGFAGTIASGVVHKGDEIVVLPSGKSSRVKSIVTYEGELENAGPGQAVTLTMEDEIDISRGDLLVHADNVPPVTDQFDAMLVWMAEEPMLPGKKYDIKRATSYVPGSIASITHKVDVNTLEQGAASALQLNEIGRVKVALDTSIALDGYDSNRTTGAFIVIDRLTNGTVGAGMIIAPPVLPHGSTGHHGKQAHVSTEERALRFGQQPATVLFSGLSGAGKSTLAYAVERKLFDMGRAVYVLDGQNLRHDLNKGLPQDRAGRTENWRRAAHVARQFNEAGMLTLAAFVAPDAEGREQAKALIGKERLVTVYVQASPLVCRERDPQGLYAAGGDNIPGESFPFDVPLDADLVIDTQATSVDEGVKQVLDVLRQRGAI +>tr|A0A2P5F9R2|A0A2P5F9R2_TREOI Son of sevenless protein OS=Trema orientale OX=63057 GN=TorRG33x02_095620 PE=4 SV=1 +MARRTAQVLDSIHLMNTTQIFKESIRVILLHPTQFHSISIFLFSPLPISLFISHLLIHHFPNIPSSTISLTHNLFGFPLPKLFSKTMIHIIICFPSSITFSLLGRAAIVQAVSDIYNGINLDGRRLFMRSGLTWIKLLYTTFWEYLIVFGLLGVFALNLVIMPKMFHAFGICSEILGFWGVLGVLGIPFCVAFAHVMVVGNLARVLSVLEGNCYGFESLLKAKSLMEGRRQIALVMALLSNIGFRLVESLFEFRMCKGINLWEGPLLVSMYSSVLVFDTVMNVVFCYACKSFNDQ +>tr|S1PYQ0|S1PYQ0_ECOLX Starvation-sensing protein RspB OS=Escherichia coli KTE182 OX=1181728 GN=A13A_01543 PE=3 SV=1 +MKSILIEKPNQLSIIEREIPTPSAGEVRVKVKLAGICGSDSHIYRGHNPFAKYPRVIGHEFFGVIDAVGDGVESARVGERVAVDPVVSCRHCYPCSIGKPNVCTTLAVLGVHADGGFSEYAVVPAKNAWKIPEAVADQYAVMIEPFTIAANVTGHGQPTENDTVLVYGAGPIGLTIVQVLKGVYNVKNVIVADRIDERLEKAKESGADWAINNSQTPLGESFAEKGIKPTLIIDAACHPSILKEAVTLASPAARIVLMGFSSEPSEVIQQGITGKELSIFSSRLNANKFPVVIDWLSKGLIKPEKLITHTFDFQHVADAISLFEQDQKHCCKVLLTFSE +>tr|A0A0D8JWE6|A0A0D8JWE6_COCIM Uncharacterized protein OS=Coccidioides immitis (strain RS) OX=246410 GN=CIMG_11771 PE=4 SV=1 +MVHPEPDRIQTGIANDAPVNRLLLPSTSLLDTQFTRTPLGFRGGPDEFPADVDKEFTKSE +>tr|Q4S6C8|Q4S6C8_TETNG Chromosome 9 SCAF14729, whole genome shotgun sequence (Fragment) OS=Tetraodon nigroviridis OX=99883 GN=GSTENG00023347001 PE=4 SV=1 +LLLGLFVVCGLALLGLLAFVSWKFAGAARQPAKACCSGSSLSPERHPLQPPLPLPPSPQHPLVTMATEKVKDPAGSLGFLEAAVKISHTSPDIPTDVQLSMREHFLRRTQRMQRQTTEPASSTRHNSFKRHLPRQMQVGSLDLGNDYVLEKEEKSTSLGRIQPELYQQKDLESEDSSKNSSGKNCGSINFSLKYDYENQALLVDILKAVDLPAKDLCGTSDPYVKVYLLPDRKKFQTRVHRKTLNPTFSETFRFPVPYEELAGRKLHMSVFDFDRFSRHDMIGEVELDNLFDLSDLSRETNVWRDIQYATSESVDLGEIMFSLCYLPTAGRLTLTVIKCRNLKAMDITGYSDPYVKVSLICDGRRLKKKKTSIKKNTLNPSYNEAIIFDIPPDSMDHVSLHISVMDYDLVGHNEIIGVMRVGCNAEGLGRDHWNEMLAYPRKPVAHWHPLLEPKKSEKEWKARTASFDSQGSCPSPRPPASP +>tr|A0A4Y6N1A7|A0A4Y6N1A7_SALET AI-2E family transporter OS=Salmonella enterica subsp. enterica serovar Indiana OX=286783 GN=D4X88_10560 PE=3 SV=1 +MLEMLMQWYRRRFSDPEAIALLVILVAGFSILFFFSGLLAPLLVAIVLAYLLEWPTARLQAIGCSRRWAASIVLILFVGILLLMAFVVMPIAWQQGIYLIRDMPGMLNKLSDFAATLPRRYPALMDAGIIDAMAENMRTRMLNMGDSVVKYSLASLVGLLTLAVYLVLVPLMVFFLVKDKEQMLNAVRRVLPRNRGLAGQVWNEMNQQITNYIRGKVLEMVVVGVATWLGFLLFGLNYSLLLAVLVGFSVLIPYIGAFVVTIPVVGVALFQFGLGTEFWSCFAVYLIIQALDGNLLVPVLFSEAVNLHPLVIILSVVIFGGLWGFWGVFFAIPLATLIKAVVHAWPDGQVTDTSS +>tr|A0A265NA24|A0A265NA24_9BACI Serine/threonine dehydratase OS=Virgibacillus indicus OX=2024554 GN=CIL03_13610 PE=3 SV=1 +MVTVKNIYKAREQISDVINKTPILSSSQLSSICGNRMFFKAEHLQKTGAFKIRGATNKVKQAVKDGATFVTAASSGNHGQAVAYIANELGVPATIVVPEDVNPSKEAAIKAYNGEIERCGLTSAERLPRAEALAAENNGGVIPPYDDPLIIAGQGTVGLEILDQLDGVDVVVVPIGGGGLISGILTAIKEIKPSIKVIGVEPEKANDTYQSIQQGKITSIKEAATIADGLRTSQPGSLTFPIVQKYVDEIVLISEAEIRKALFFILQRMKQLIEPSSAVTVAAAMFDKLNVRDKNVVCVLSGGNVDLKQLGEMNPEK +>tr|A0A2A5WAU1|A0A2A5WAU1_9GAMM Sulfite dehydrogenase OS=OM182 bacterium MED-G28 OX=1986256 GN=CNF02_07660 PE=4 SV=1 +MGPKKQNRREFLKQGAAIAGGAAVGAASQSASAQLPGPEGFLHGRDDIVAYGQRSRFIESKRIPHGGRHSPDTFGLDFHIATPLQDQHGVITPSSLFYMGTTRGSYIPDIDPEKHRLMIHGLVDNPLVFTMEELKRLPSVTRMHFVECAGNRSNRRHTTVQETHGMTSNAEWTGVLLSTLLKEAGVKEGADWIVAEGVEEVKGASSIPMTKAMDDTLLAYSMNGEPVRPQQGFPLRMLAPGFEGIFNVKWLRRIKVVDQYYMTYNDYGHLTQDPATAALGYQIGPKSVIVHPSGGQTLPGAGYYQVSGLAWSGGGKVARVEVTTDGGETWFDAEIRGEPQAMAHTLFAFEWEWDGSPCELQSRCIDEIGQVQPSRAEVAEFWNQPADQPPRVRGQDNSIQPWRIESDGSIHNAIA +>tr|A0A1J5QM58|A0A1J5QM58_9ZZZZ L-cystine import ATP-binding protein TcyC OS=mine drainage metagenome OX=410659 GN=tcyC PE=4 SV=1 +MSPTEEPPPMGEVLLSVHGLSKSFGANPVLRSIDLTIERGRVLALIGPSGSGKTTLLRCLNGLELADGGTINTPGELTLDFTTPPTRSQLNALRDRSGMVFQHYNLFPHKTVLQNVLEGPLVVQRRPRAEATASALELLARVGLSEKTHTYPFQLSGGQQQRVGIVRALALQPQLLLFDEPTSALDPELVGDVLRLIKELAADGWTMVIATHELEFAREVAHEIAFLDAGTILERGHPSQLLRDPQHERTRQFLHRVLHPF +>tr|A0A0M0J7I6|A0A0M0J7I6_9EUKA Cyclin-y-like protein 1-like protein OS=Chrysochromulina tobinii OX=1460289 GN=Ctob_004972 PE=4 SV=1 +MGDEGLTLCARTWRPALLMAIVIASKVVYDEKVYLADYRDMLPEFCLDAASAQELELLKLVNYNTTVRRGQYARYYYALEDVARNQSSNQIFAARS +>tr|A0A7X6ZE57|A0A7X6ZE57_9FIRM Sporulation sigma-E factor-processing peptidase OS=Syntrophomonadaceae bacterium OX=2093811 GN=spoIIGA PE=3 SV=1 +MTGHKVYADLTLIINLLMDAVILWAAAKLAGFKFSYTRIFFTAMLGAIYAVGYLFYPMNIFYSFPLKIIFSCFLILLAFYPQSWKDLKRAFQYFYLINFIAAGAITGFASLTAGMKHINNISILWLLMGVIIVIGLGKWGQKYLVNRIIPQLLNYMVEIKFNGHQCSGSGFLDTGNMLRDPLTNRPVLIAEYAWLKNFLPLDLIEFFETGSSETEILSFAANSTWADRVRVIPFSSIGRHNGLLLGFRADEINVSLGDRNICHKNLIVAVYRSKLCQDGHYQMLVPAEILQSG +>tr|R6ZSV7|R6ZSV7_9BACE Putative CTP pyrophosphohydrolase OS=Bacteroides fragilis CAG:47 OX=1263046 GN=BN669_00524 PE=4 SV=1 +MKSIEVVAAVIRLGEKYLCVQRGQTKFSYTSFRYEFPGGKVEEGESLQEALQREIMEEMDYVIEVGEKLLTVHHTYPDFEITMHAFLCHPVGQRYVLKEHIAAQWLSTREMAILDWAEADKPIIRKISEQ +>tr|A0A535V1X9|A0A535V1X9_9CHLR APC family permease OS=Chloroflexi bacterium OX=2026724 GN=E6I76_01260 PE=4 SV=1 +MRGGRARRKEFDKVAEGYLQAKEESVKPTTQLGRLRRALLGRPLASKQQIHERLTKVKALAVLSSDALSSVAYATEQILLVLGAAGAAAYSYSMPIMVAILVLLIAVGLSYRQTIKAYPKGGGSYIVASDNLGPLAGVVAGSALMTDYVLTVAVSVASGVDSIVSAASAMQAYRVELCVAFVAILIVGNLRGIRESGSIFAAPTYLFIGGILLMLVVTGLRWGTGNVHEATPMLGKATQQVSIFLILRAFASGCTALTGVEAISDGVPAFKPPEWRNARTTLTVMVVLLATMFMGITISARATGARAYDSSDPNYQTVISQLAHTAFGSTFLYYYVIGATTAILVLAANTSFSDFPRLFFFMARDDYAPHLFKRLGDRLAFSNGIIVLGGLAILLLVVFRGRTDALIPLYTIGVFVAFTMSQAGMVSRWLRLREPGWQHGLAMNAVGMTLTAIVFVVTAGDKFTEGAWIVLVLIPLLVMTFFSIHRHYSEVTVDLATETPTSPDELKPVVIVPLADLNGPALQSLALARTLSDQVIAVHISDDPDEIARLKAKWEAWGDHVPLEVIESPYRSLVRPLLAYIDAIDRQRRDDTIVVVLPEMVATRWWHQVLHNQTALRLKAALLFRPGTVVVNVPYHLRRYQHQRRRLRARHGGDDAL +>tr|A0A7T7DGS6|A0A7T7DGS6_9BETA Cy128 OS=Cynomolgus cytomegalovirus OX=1919083 PE=4 SV=1 +METHLFSDLAFEQVFEEDPQLPLHVVLDPVDLSFAEAETVRYVYYRSDPDPVGRWRRAAFRVFLRPFELLTYLRDAGLMVAPTVRVVCHHALFTTLGIRCAEQRLSGAQMLYLRLVWNEERFRDWEFLVRDLLREEMSVCQSTEPADRPDPSLLMTDAMLELAKSSSTTAPFFEMPSSGTGNNNASSASAADESSQVERRVIQFLRGDSELTYHAGPLEPPSKIRGHEIVQPRIEVNPDVIYASGPHEDDRTSKTDEWQKGGVMRLGSVWDVRQRLRLHVLWYAQSFWRSRGLKYEDREEDLRLTLDSYFDRLSVEYQVLREVYREIKAVLRSDRMVAQKFSCHLSIETSWLLIWELFDRALELWRDQADVNSCIIKALAHKLRSKAQSSHGNSVSAGKTNPTETWYADVVRCVRAEVNLGLEVQVETCSQSGLWLVRGRDGQLRKWITQPQTYVLYATPGLVFHWVLPGGFAISSRVCLDGVGRDHFERFQMSAPVLTKRMLLETGWTRTEASGVPSCGL +>tr|A0A852XDT0|A0A852XDT0_9MICO GTP-binding protein Era OS=Microbacterium esteraromaticum OX=57043 GN=GGD75_001854 PE=4 SV=1 +MTEQTRSGFVTFVGRPNVGKSTLTNALVGEKIAITSEKPQTTRRAIRGIVNRPDGQLVIVDTPGIHKPRTLLGERLNDLVEQVLGDVDVIGFCVPATEKVGPGDRRIAASLDGYPRAKKVAIVTKTDAADKDDIVERLMEVDSLREDWAAVIPLSALTREQLDVLADEMLQLMPVGPRLYDEGVVTDESTDDRIAEMIREAALEGVRDELPHSIAVVIDDVEPRGDSDLTDVYASIIVERDSQKAIIIGHKGSRLRSVGATARAGIEELLGTRVFLKLHVKVAKEWQRDPKQLGRLGF +>tr|A0A7G9B3G3|A0A7G9B3G3_9FIRM MarR family transcriptional regulator OS=Oscillibacter sp. NSJ-62 OX=2763056 GN=H8790_11715 PE=4 SV=1 +MDKTERQTTKITREAAKLTLQTMRAEGGTAEFDFIHLVRHYPGITQAELREALKIDKGAAARRAAHLEAKGYLVRRENPADGWSQLLYATEKAEKLKNSKAGIESAFKRLIS +>tr|A0A2K6TWZ0|A0A2K6TWZ0_SAIBB DNA repair protein OS=Saimiri boliviensis boliviensis OX=39432 GN=XRCC3 PE=3 SV=1 +MRPLFCLSCEVNHPGDQPTDRMDLDLLDLNPRIIAAIKKAKLKSVKEVLHFSGPDLKRLTNLSSPEVWHLLRTASLHLRGSSILTALHLCQQKERFPAQHQRLSLGCPVLDALLRGGLPLDGITELAGHSSAGKTQLALQLCLAVQFPRQHGGLEAGAVYICTEDAFPHKRLQQLMAHQPRLRTDVPGELLQKLRFGSQIFIEHAADVDTLLECVNKKVPVLLSRGMARLVVIDSVAAPFRCEFDSQASIPRARCLQSLGATLRELSSAFQSPVLCINQVTEAVEEQSTVHGPPGFWDERISPALGITWANQLLVRLLADRLREEEAALGQPVRTLRVLFAPHLPPSSCSYTVSTEGVRGTPGTQSH +>tr|A0A2M7XMW0|A0A2M7XMW0_9BACT Uncharacterized protein OS=Candidatus Shapirobacteria bacterium CG_4_9_14_3_um_filter_36_12 OX=1974877 GN=CO168_02590 PE=3 SV=1 +MVETELLKNLKTYFGYDGFRALQEEVVGATLAGKDSLVLMPTGGGKSICFQLSALMLPGITLVISPLIALMKDQVDSLKNNGIKAEFINSSLTTGEILRIETEIIGGKIKLLYVAPERLVLPQFLEFLKTIKISLIAVDEAHCISEWGHDFRPDYRNLTILRQNFPSVPIMALTASATEKVRQDIGLKLNLNNHQLFISSFNRPNLYYTVLPKRNTFEQLLSLVEKYKNNSIIIYAFSRKETDELAVNLSTQGYQALAYHAGLESNIRREVQDKFIKDEVKIIVATIAFGMGIDKSDVRLVVHYSLPKSVESYYQETGRAGRDGEKSECVLFYSYGDTAKQNYFIRMMTDGVVRLNAQKKLREMVNYCELKSCRRQYLLKYFGEELGNNCQSCDCCVKSPPTPSLTKEGNLNLFEKLRILRKQIANQNKVPPYIIFSDATLREMVSFLPKNETEFLKINGVGAEKLKRYGRQFLETINSQNAPKVFLSGTYLETQKMWVAGLSIEQIAKNRGYTNETIINHLEKIIESGVQLNLDKIIFDPTRLKIIKDAFAQTNDTKLAPIKAILDDDYSYEEIRLGRLMVAK +>tr|B4ELZ0|B4ELZ0_BURCJ LysR family regulatory protein OS=Burkholderia cenocepacia (strain ATCC BAA-245 / DSM 16553 / LMG 16656 / NCTC 13227 / J2315 / CF5610) OX=216591 GN=BCAM2812 PE=3 SV=1 +MTEQSKNLQSGYAAHAYPLADLTRPLPPLAAIQSFVAAAQLGSVSKAADHLCRTQGAVSRQIQQLETHYRCALFVRHVSGLTLTAEGNALLTVAVNVLTQLVRHADVHARATSVLTLKLPSTFAVRWLLPRLPDIQRAMSGTELRISTSADDTPDFTTSDVDAVVVRGTGQWTGMEAIPLFAEMLTPMCAPALAASLRSVADLAQVELLHPGPSHAEWRCWLDHVGARQVDAGRGLVFDTLELTLAASMEGHGVAIGDPRMARDRLRAGSLVTPFEDVARDGLSYFLVYPPQRAAQPKIRALADVLLRLAREDR +>tr|E9HNJ7|E9HNJ7_DAPPU Uncharacterized protein OS=Daphnia pulex OX=6669 GN=DAPPUDRAFT_116105 PE=4 SV=1 +MPCSVVLNENVLHISWELALYGASRISFSDHSAHCFRRKLQCCPCHTPPGVSCGQQLGKCVYVREIFVLRFRSVYPSLAREWLPRIRRWCSWSDLKSVVDKFASLACCKLGYIIPHPKIMASRIGAYRSGSVLAGGRQAGVTVRPGIQYRLMGLGKLAILFAHECPPHLVHFVRFVWDGTGRSAVLRRHQGADGNVAAAGPASSGSLAEEHQRRRAAARPARRQGSRPGLHGEPATDVGDGPQQRRDDGQPDRQSNVGPVVDGSTSAFGRTQEPHRHSVSRLEDSATQTQMEESFFSENKDGTEIQLSSAGVRLSETESGLRRQRIRRRAQQRRFLTDPRPPPNDEEFRWKSRQRYSDDSGSESDDEQHLPGLRYHQQQQQQRPNLSQYVSDSGAPGTGGSGGDGSSQGLSNINTVHLEPLVKSSQVATDLAVRSQSILSNVGTESSGQNNSGFSDLVARSEEDINSSALSRRTDSAILLLDHIGSPSEQQMMNGPDGENLNRSSSSLNKKTTTHSPLMDDVESSRKRTKSERRSEHEGSSAHPPTATHPHSERIKYKAEIPISVIRAAQAKTRRYNLERKIFQQLLDWKQMQIRIGQANEHQLRLVQGGRTLLPLVDSATDREDAATTNGLKYGDVIETESANGTSRTTTTTMPVEKGTHTTQRCPHAMYACTTLPPALAARPCPALPLVISRFSMDVVVEPIDFDSFEGLLVSFLNDSAVPYHKHHRPVTQQHQQPQQPTNHPGTAKLTTENGRIILPKLNLNNNINGHQKSNAPANKGNH +>tr|A0A6P1MDY7|A0A6P1MDY7_9FIRM Type II secretion protein F OS=Aminipila sp. CBA3637 OX=2697030 GN=Ami3637_02060 PE=4 SV=1 +MLTYFIAFFAAILTYFIILLIKKNSGREFIENRLNKYLNKDAISRIQDQFYKEKIEKYKKKKDRNFKIASKEFSDYLAMSGIKLRASEFIYIWIIMTYLPILIISLSGLSIVTAAGFAIVGFIIPPLFIHKSRRKRQTEFNKQLGESLVVMSNCIKSGFTFQQSMESIANDMQPPISVEFTKTLREMRFGVNKNDALHHMVNRVQNNDLGLLVSAVITSEQVGGNLSEILDTISDTIKDRIRIKQEVRVLTAQGRMSGIVIGLLPIFIIILLMILNPQYFLSFFETSIGKIMIGVSILMELIGFVIINKIVDIEY +>tr|A1JPW7|A1JPW7_YERE8 Peptidoglycan D,D-transpeptidase MrdA OS=Yersinia enterocolitica serotype O:8 / biotype 1B (strain NCTC 13174 / 8081) OX=393305 GN=pbpA PE=3 SV=1 +MKKEPNPFRDYSAESALFVRRALVAFLGILLLSGILVANMYNLQIVRFEDYRTRSNENRIKLVPIAPSRGMIFDRNGTPLAMNRTIYQLELMPEKIEDLPATLNALRPIVDLTDEDIANFEKERKRSRRFTSIAVKTPLTEVQVARFAVNQFRFPGIEVKGYQRRFYPYGSALTHVIGYVSKINDKDVERLDKEGILANYAATHDIGKLGIERYYESVLHGKTGYEEVEVNNRGRVIRQLHEQPPQAGKDIYLTLDLHLQTYIEQLLSGSRAAVVVTDPRTGGILALVSNPSYDPNLFVDGISNKDYQGLLNDPNRPLINRATQGVYPPASTVKPYIAVSALSAGVITKNTSLFDPGWWQLPGSEKRFRDWKKWGHGRLNVTKALEESADTFFYQVAYDMGIDRLSSWMSKFGYGEYTGIDLSEERAGLMPTREWKQKRHKKPWYQGDTIPVGIGQGYWTATPIQMAKALMTLINDGAVKTPHLLQSTRIDGVLVPYKQEDSTQIGDIHSGYWEIAKDGMYGVANRPNGTGRKFFEGTPYKAAAKSGTAQVYSYETYNAHKVAEHLRDHKLMVAFAPYENPTVSVAMILENGGAGPAVGTITRQILDHILLGDNNTELPDAAPLPPGVEAD +>tr|A0A7K2NHN8|A0A7K2NHN8_9ACTN Indole-3-glycerol phosphate synthase OS=Streptomyces sp. SID5468 OX=2690295 GN=GTW54_22445 PE=4 SV=1 +MITTVLMIEKPLAPVDVQLVTTLHSDEAVSFVVLMQPRGDQERLLRALDDVALGELREAAREEEEPEGDQALAPAVHALEHSLKALRATGAEAVGQIVEEHPLDLLRSVVEQTGADEVIVLTAPHLVEEFFHRDWASRARHKVGVPVLKLYAHND +>tr|A0A132DP21|A0A132DP21_BURVI NAD(P)H quinone oxidoreductase OS=Burkholderia vietnamiensis OX=60552 GN=BvRS1_03110 PE=4 SV=1 +MKAITFKEFGDAEVLQLAEVAAPEVRPDDLLVRVHAAGVNRADLTHRRGGYGRPNFGDSTIMGLEIAGEVIETGSSVQGYKVGDRVMGVVGGGAYAERARIDWRMAMPIPATLDYVHAAAIPEVFVTAHEALLHLGRLQRGDAVLIHAAAGGVGSAAVQLAYATGATIFATAEASKLERIVQLGVDHAIDYKTQDFSEVVASRTGKRGVDVVIDFVGAPYFSRNVASLANGGRLVQVGILGGGGDVSVSLEQILYRHLQIIGTVMKSRDQSEKHAMVRRFREHWLDRFAGGAGLEPVVDSVFPLADAAAAHRRMESAVNVGKIILTMSEDS +>tr|A0A1G8CMD4|A0A1G8CMD4_9PSED Peroxiredoxin, Ohr subfamily OS=Pseudomonas panipatensis OX=428992 GN=SAMN05216272_101672 PE=3 SV=1 +MHSIKALYTATATATGGRDGRAVSSDGILDVKLSTPRELGGQGGAATNPEQLFAAGYSACFIGALKFVASQSKRQIPADSSITGKVGIGQIPGGFGLEVELNISLPGLDRTVAEELVAAAHQVCPYSNATRGNIEVRLNVAV +>tr|A0A1Q8LW97|A0A1Q8LW97_9PSEU Methyltransf_21 domain-containing protein OS=Pseudonocardia sp. Ae717_Ps2 OX=1885573 GN=Ae717Ps2_3992 PE=4 SV=1 +MTGPRLSFVGRSRVRARRLLARLLRAVPGRTVDWAHRHWITDDGRTDPRWAPVARLLFHRPLHQTVVTVPGSGGIRLHVVGARLERTLYWFGEQGYEPGEAAWWRLLCSRATAVLEIGSNIGWYTTVGAAAAPVGGYLAVEANPEAARATRRNLELNGLGHGAVLTAAAVGQGAPSSLYLALPDQESFSAAPTGSYLRGHTEGTADRAARRSLTVPTLSARHLITGRDLVKLDVEGAEAGILESALDIILRDRPILLVERMPDTPRLDRVLEQLVGGGYLVLRLGTQLQPAGPRPPVDEHYDVLLVPAERGAVPVHLGDLR +>tr|A0A165XXG3|A0A165XXG3_9BILA Cytochrome c oxidase subunit 1 (Fragment) OS=Keratella cochlearis OX=204738 GN=CO1 PE=3 SV=1 +TLYFIFGIWAGFIGLSMSLLIRLELGVVGPFLSDEHLYNVIVTAHAFIMIFFMVMPISMGGFGNWLIPLMLGVADMAFPRMNNLSFWLLIPSFTFLLLSSILDSGVGTGWTVYPPLSDSKYHSGISVDLAIFSLHLAGISSILGSINFLTTIICSRTTKVISLDRMPLMLWAISVTAILLITSLPVLXGAXSMLLTDRNLNTSFFDP +>tr|A3XB71|A3XB71_9RHOB Uncharacterized protein OS=Roseobacter sp. MED193 OX=314262 GN=MED193_21946 PE=4 SV=1 +MLWTTIQNAILVSMIDLYSAEPDFEAEITILRVEEGGRTVPPHNYIRWDFGYAEDNPLEPRRNLSANIYMIYPNFLNEDGVPIPKGVPLNGTYNAYMHILVRDMVDYHQSRLSVGTNFNCHEGSRIVARGTVTKLRAISP +>tr|A0A7V5NXA8|A0A7V5NXA8_9PROT RNA polymerase sigma-54 factor OS=Hellea balneolensis OX=287478 GN=rpoN PE=3 SV=1 +MALAPKLQQKQAQGLTMTPQLQQAIKLLAMTNLELQLFVEEQLQSNPLLERGTGTENRRGENVPEGKPDEAGPEELQLGEASPVALEALDVSAETLEPDSAPSDLPSSGGEIDWSRAGNGGSFNPSSGLDRLENTAAQKTLKQVLSEQLVIAFPSGQERLIGAHLIDQVDENGYLHASLSEMAERLGVEQTQLETILAKLQTFEPCGVMARSLSECLRLQLREKGELDGPMQRLLDNLELLARHDMQGLAKCCGLDREALGAYVKRLKALAPKPGLAYGSDVAQAVAPDVFVRARPDGGWAVELNTETLPQILVNARYYAEVCSSAKDEKVKSYMSECAQNASWLVKSLDQRARTILKVASEIVRHQDAFFAYGVNHLRPLTLKTIAEAIDMHESTVSRVTANKYMATSRGLFEMKYFFSNSISASDGGEGHSAESVKHKIKILISEETTANSVLSDEKIVRLLRDQGIDLARRTVAKYREMLGIPSSVARRRILKNK +>tr|A0A255T6L9|A0A255T6L9_9BACT Zinc ABC transporter permease OS=Prevotella sp. P2-180 OX=2024224 GN=CIK98_17110 PE=4 SV=1 +MDNDNIIIRLARPDEAEHVAKLIMTAMTEECCLWFCGKDHDIGDFHKVMTELVKQEDSQYSFLNTLCAVDSHDNIVGILTSYDGGRLHEFRQRFIEAAKMAWGIDHSNIPDETGPGELYLDSLAVEPSSRGKGIASKLIEASVDKARKMGLPFTGLLVDTSNPRAEALYTRLGFRVEGTNQWGGHPMRHMVKLTSNR +>tr|K7P3Q2|K7P3Q2_PINMU Uncharacterized protein (Fragment) OS=Pinus mugo OX=28528 GN=UMN_1037_01 PE=4 SV=1 +SSISPAAASSSENSTVTGTPSSSSSNSRVNTPAGDGTAGLYGFSLEVRDALTEQAHCSVTAEECSTVPVPAPYTGLVALDCGSLGTMDQQIHINPELLNSGDLLNSSSFSFGDLIGSSNLAGVTLADLQWKLQQ +>tr|A0A1C7MXD4|A0A1C7MXD4_GRIFR Uncharacterized protein OS=Grifola frondosa OX=5627 GN=A0H81_00337 PE=4 SV=1 +MERCAAPYLAESSRSEGCRSVEENWAPRAIVHTDVYRFLGYTNIHLLHCNAPERNTFSTGLLTNHLTQWLRHVTFVRVLTYLFSAQTDVKETVLYGVN +>tr|A0A439ZYD0|A0A439ZYD0_9HYPH Uncharacterized protein OS=Mesorhizobium sp. OX=1871066 GN=EOS34_27205 PE=4 SV=1 +MAPNARAHDALLTTAQPHGWTYPFACCSGYDCREVAENAIRERPEGYVIEDTGEVIAYTDSRIKNSPDGVFHWCSVAGANDGHTVCLFAPQRGF +>tr|A0A2E6K1T8|A0A2E6K1T8_PSESP Uncharacterized protein OS=Pseudomonas sp. OX=306 GN=CML01_16865 PE=4 SV=1 +MKISNHDHSSSNPGDEAPPGTPGTGENICPVCNGSGRTEAGECKNCGGTGKVIEGIGGA +>tr|A0A4V6KLH6|A0A4V6KLH6_SERFO Immunogenic protein MPT70 OS=Serratia fonticola OX=47917 GN=NCTC12965_00545 PE=4 SV=1 +MKKLLCTALCSSLLFSSVSMAAMMSDTVMVGGAAMYPSKNIVENALNSKDHTTLVAAVKAAGLVDTLQGAGPFTVFAPTNEAFAKLPAGTVDTLLKPENKAALTGVLTYHVVAGRYDMKQLEKKIKEGHGTAELKTVNGQPLWIMNNGPPQYSAQRWPRSYCQHQHL +>tr|W9XCM7|W9XCM7_9EURO MFS domain-containing protein OS=Cladophialophora psammophila CBS 110553 OX=1182543 GN=A1O5_01390 PE=4 SV=1 +MSEKITAPFLKLYRHLFPKGRNVQNDTAEKAIPPESLIVVLQDIGRVDEVIRRELQDISEEEILSIAKRIKRLLDVCLVSMAWIMFALNSFDRSSLGNARVMGLQKDLDMNSNQYGLAMMLLFIAYVLAQVPSNYYLARGRPSIYLPVVMVLWGCVCTATAFVTTPSQLYVVRFFLGLLEAPFCVGCLFLISSWYTRTELGLRSAILLTAPMMANAFSGLIAFGIYDTIDGARGLEAWRWLFIVGGVCTVFVACVGFYVLPDFPSNTRYLSEKEIAVAQLRMIANGVQDDESDYGRWRGLVMAVRCWQVWVFAGMFLLLAIGASVHNFFPSVVNTLGFSRNTTLWMTAPPYLIGVVVTIANSLCADRHRNACPHVVAPAALAMLGFLLFLLDQSSTRSGVWVRYAAAFLMIVGAHSGYPVVLSWAQKTIRGPKEMRACAIAIINTSGSISQLSMALIYVFTDRHIRTVSKPMGTEVYTVDVLEYHLRAGSDFTCDLHAPSNPCLKLRCDAKSVGCFDEISNWRANPLLISFPVF +>tr|A0A193ATP2|A0A193ATP2_9INFA Nucleoprotein OS=Influenza A virus (A/South Dakota/20/2016(H3N2)) OX=1866071 GN=NP PE=3 SV=1 +MASQGTKRSYEQMETDGDRQNATEIRASVGKMIDGIGRFYIQMCTELKLSDHEGRLIQNSLTIEKMVLSAFDERRNKYLEEHPSAGKDPKKTGGPIYRRIDGKWMRELVLYDKEEIRRIWRQANNGEDATSGLTHIMIWHSNLNDATYQRTRALVRTGMDPRMCSLMQGSTLPRRSGAAGAAVKGIGTMVMELIRMVKRGINDRNFWRGENGRKTRSAYERMCNILKGKFQTAAQRAMVDQVRESRNPGNAEIEDLIFLARSALILRGSVAHKSCLPACAYGPAVSSGYDFEKEGYSLVGIDPFKLLQNSQIYSLIRPNENPAHKSQLVWMACHSAAFEDLRLLSFIRGTKVSPRGKLSTRGVQIASNENMDNMGSSTLELRSGYWAIRTRSGGNTNQQRASAGQTSVQPTFSVQRNLPFEKSTIMAAFTGNTEGRTSDMRAEIIRMMEGAKPEEVSFRGRGVFELSDEKATNPIVPSFDMSNEGSYFFGDNAEEYDN +>tr|A0A270NRH6|A0A270NRH6_STEMA Uncharacterized protein OS=Stenotrophomonas maltophilia OX=40324 GN=CEK00_00720 PE=4 SV=1 +MLLVLLAPLVSRWLAQGHVAAAAPVAAMDHAMHAEHAQHAMEGHHDHHAMAMPHGETAKKPPADPHADHEMGVDCDYCLIAARLITLLVAAVLLLAPMVPVCRALRGAVQALPQRIGGTLGARGPPALMAA +>tr|A0A0S2CGT9|A0A0S2CGT9_9AGAR DNA replication licensing factor MCM7 (Fragment) OS=Hebeloma hiemale OX=91672 GN=MCM PE=3 SV=1 +LLQVNAYTCDVCGSETFQDISNKTFSPILDCQNENECKKNGIHGSLHMQTRACRFSPFQEVKIQEMPDQVPVGHIPRSMTVHVNGNLTRLMNPGDIVHIGGIFLPIPYTGFQAIRAGLLTDTYLEAHHIDQLKKQYSEMELTPEIEXKIAALQKDPNLYEMLASSIAPEIYGHEDVKKALLLLLVGGVTKVTGDGMKIR +>tr|A0A1S3XHK0|A0A1S3XHK0_TOBAC Chlorophyll a-b binding protein, chloroplastic OS=Nicotiana tabacum OX=4097 GN=LOC107765079 PE=3 SV=1 +MASMASMAATGSSATVVRATPFLGQTKYANPLRDVVPMGSAKFTMSNELWYGPDCVKYLGPFSAQTPSYLTGEFPGDYGWDTASLLADPEAFAKNRALEVIHGRWAMLGALGCITPEVLEKWVKVDFKEPVWFKAGAQIFSEGGLDYLGNPNLVHAQSILAVLGFQVVLMGLVEGFRINGLPGVGDGNNLYPGGQYFDPLDLADDPTTFAELKVKEIKNGRLAMFSMFGFFVQAIVTGKGPLENLLDHLDNPVANNAWLYATKFVPGS +>tr|T1TFT7|T1TFT7_HHV2 Helicase-primase primase subunit (Fragment) OS=Human herpesvirus 2 OX=10310 PE=4 SV=1 +ADPRRFHFHAPPMFSAAPREIRVLHSLGGDYVSFFEKKASRNALEHFGRRETLTEVLGRYDVRPDA +>tr|A0A7M4AVR9|A0A7M4AVR9_9ARCH RRM domain-containing protein OS=Candidatus Poseidoniales archaeon OX=2163009 GN=D7I13_00030 PE=4 SV=1 +FTATQDQLNALVASHATVNEVILAMGPGGKPKGFGFVFIAEKDKGEAVVAALNNSDFEGRNIKVDIAKAKGGKGGGRGGNAGGNNSGKSARELQALREEGEGGKKRKRRQRQKKD +>tr|A0A2G4HE61|A0A2G4HE61_9FLAO Phosphoserine aminotransferase OS=Flavobacteriales bacterium OX=2021391 GN=serC PE=3 SV=1 +MKKHNFTAGPCILAPEVLEGAAAAVQDFEGMGLSLLEISHRDKKVVAVMEEAQQRVLQTLGLGDDYAVLFLQGGASSQFAMVPFNLLRSEGKAAYLNTGTWASKALEEANKLAPGQAVELASSAEQNFSYIPKGFAIPSGLDYVHYTSNNTIFGTQMKAFPKADSLMVCDMSSDIFSRQLPFGQFDLIYAGAQKNLGPAGATLVVVRKEILGKSGRAIPTMFDYPVHIKGESMYNTPPVFSLFVSLLTLRWMDSQGGLLEMERRANARSAALYGEIDRNPLFKGSAAAEDRSPMNACFLLHDEAKYQAVFDALAKEAGLVGLPGHRSVGGYRASMYNALPQTSVDALVEVMREVERRA +>tr|A0A737VAW6|A0A737VAW6_SALET Putative transport protein YbjL OS=Salmonella enterica subsp. enterica serovar Sendai OX=363568 GN=ybjL PE=3 SV=1 +MNINVADLLNGNYILLLFVVLALGLCLGKLRLGSVQLGNSIGVLVVSLLLGQQHFSINTDALNLGFMLFIFCVGVEAGPNFFSIFFRDGKNYLMLALVMVGSALLIALGLGKLFGWDIGLTAGMLAGSMTSTPVLVGAGDTLRHSGIASTQLSSALDNLSLGYALTYLIGLVSLIVGARYLPKLQHQDLQTSAQQIARERGLDTDANRKVYLPVIRAYRVGPELVAWTDGKNLRELGIYRQTGCYIERIRRNGILANPDGDAVLQMGDEIALVGYPDAHARLDPSFRNGKEVFDRDLLDMRIVTEEIVVKNHNAVGRRLAQLKLTDHGCFLNRVIRSQIEMPIDDNVVLNKGDVLQVSGDARRVKTIADRIGFISIHSQVTDLLAFCAFFIIGLMIGMITFQFSNFSFGIGNAAGLLFAGIMLGFLRANHPTFGYIPQGALNMVKEFGLMVFMAGVGLSAGSGISNGLGAVGGQMLIAGLVVSLVPVVICFLFGAYVLRMNRALLFGAMMGARTCAPAMEIISDTARSNIPALGYAGTYAIANVLLTLAGTLIVIIWPGLG +>tr|A0A195DVT9|A0A195DVT9_9HYME Uncharacterized protein (Fragment) OS=Trachymyrmex cornetzi OX=471704 GN=ALC57_10841 PE=4 SV=1 +EGSRYDSHSAQSTQDRRKLLKRTRSLAVISEDDSRQDREAANFRLGQSTFDLPRRHQLIPRAKLIDRNSLKDRFILLTFYKRFKVIQMQILFKSNRSRGSLCSRLSKSQQHLSDSYERFNEAKSYHSRSTCGLYSISSGLESLPDPLSYTRKNRIDPDRLNILDWPDPPRRYRSVQNLDTVSGLVDIVEDNWPIEGNRSIDCIYTQFARYNDVSCLRSAVLGLLNILAGLRSLLPTLVKRKRKEHRSLDSILFEDDGELEYFDVLNLLPLSNIRLEYNETDLSSDSNFARKKIHGLRDLRVLEYNEPNEVSPTRSSNATDEEKCKEHEVNDESEKELRENLNSEGTSKRTDSNRRQHRETDESFGADSKINSVNQFTDQYSPSSSKIDHRRTDVENFVISCEEEDQKFEEIEDYKSIWISDENQNKMSRRPQVLKVVDNDVTRRRHRRSVVEIDAIVEDVPKDKRSQEITEEVNERLNASIITSINNVNEKDEGHGRKAKEATTPENAENGATVDDARNFLERKSTEKEAVRNKQNEGRFERIVKETSNILGKACSVVKGSLGFEARSESSDLGLGSESGSDSRRRSMDDGIEDDRPSKKVENSNNSATLRTDDSKKSHTNLTRSRSCVDSIECQDDGQEFDHVRYKIVKSHMFSKNMFNTARGDVTYEGLMQYLREYSFQELLMDNNVVIIEPVRAETIERKSSPLTRTEPKCKIAGAIQKKTENHERNGERSQSGGTAKSSRQSSIKKHFFYQPIRVNRELIDEELPDPDTVRNVRRMFENTLEKKKISDAEFSRDDKTRRSVSMKDLTTIDDNRYDEISDKTREESRSRCSSRAKDLTRLFETKSASSTISIAKEEIGSPRCESKTRILAQSFEARSGNTSPSGSNCSKNKIGRYHHHHHHHHHHHHQNWDSGSVSSGVSSDYPDTDPGSGAHCTSSDDEDVNCNDDDADTRGPGHYVSQDVLRKIRECGTSVTYYGGKVVNMHNGPLVSPLIGNGFKRIDESNDYVKFKLVKSNSCDSRLELTGRFVEGQSLRRTRDRCADLRQCTIAETPSIEITSIDSRQKDEVQRDEDVEQIEQMKREPPVVIGLEPKKEDSKESRKIFKADFKLGDLDDSRSNYPSKFMPSALTRWEVNSSWKVGNDFGKMEFEEFEVLEDSLNGISEQNKYTQAS +>tr|A0A7K9E8D5|A0A7K9E8D5_BARMA Beta-MPP (Fragment) OS=Baryphthengus martii OX=176943 GN=Pmpcb PE=3 SV=1 +QCVHAGTGRLRASRAATEVVLNVPETRVSPLENGLQVASEDSGLSTCTVGLWIDAGSRYENEKNNGTAHFLEHMAFKGTKKRSQLDLELEIENMGAHLNAYTSREQTVYYAKAFSKDLPRAVEILADIIQNSTLGEAEIERERGVILREMQEVETNLQEVVFDYLHATAYQKTALGRTILGPTENIKSINRNDLVEYITTHYKGPRMVLAAAGGVPHDELLDLAKCHFGNLPSAPEGGLPPLPPCSFTGSEIRIRDDKMPLAHIAIAVEAAGWSHPDTIPLMVANTLIGNWDRSFGGGVNLSSKLAQIACHGNLCHSFQSFNTCYTDTGLWGLYMVCEPSTVQDMVHFVQREWIRLCTSVTENEVARAKNLLKTNMLLQLDGSTPICEDIGRQMLCYKRRIPIPELEARIEAIDAQTIREVCTKYIYDKHPAVAAVGPIEQLPEYNKICSGMYWLRE +>tr|A0A498AHI4|A0A498AHI4_9ACTN Phosphoglucose isomerase-like protein OS=Micromonospora sp. M71_S20 OX=592872 GN=DER29_1292 PE=3 SV=1 +MIDGAAGVSGRREPDEALLDDPAALAEHDPGGMLRHTASAGAQVRETAALAAEANLQVLADEGRPRAVVIAGIGTAGRTGDVLATVAGPRCPVPVIPHRSAGVPGWVGAADVVIAVSASGRSPEALGAAEAAHRRGARLVAVGAPDSQLQSVAERARAPFIPVPRRAPARASLWALTVPVLLAARTLGLVKVNEADLAETAARLDAEADRCRPTAESFVNPAKSLALGLAGSVPIVWGSSPLATVAARRFGDTLSANARYPVVSGALGEAGRGRVGLLDGVFGGLAEGERDIFADPDAEAPSGTRLRLVLLRDGGLNPEDDADEPLDVEERRADAVQTLAERRGVRCDVVTAEGGSALERLASLVAVPDFASIYLALAHGLDPMAVPAITEMKELANQ +>tr|A0A3D8YU66|A0A3D8YU66_9BACL HTH domain-containing protein OS=Sporosarcina sp. BI001-red OX=2282866 GN=DVB69_12070 PE=4 SV=1 +MRTKVAIFGSEEFCQRALQFTEQRSDIILDLYPYTIPSEAPDLLKKLLPCDAILFSGSLPYVASTDVLQSIPVPAIYLKQDETEITTTLLAISIHHSLELEKMSIDVRDCSVLENVLADIKADEQRPLTYQLEKNYVLEEVVQFHASAYANSPSNVAVTSVHAVYDRLTEQGIPVFKMISVKSSFLKTIDRVCQEALLQKSETSKIAAGILDNSILTTEVKDIYKRLAQVLHAHCIHSEEGFLFYTTQGAIQSALHTPLFQQLAVQVSGQLAFGSGRTLTAAKENAVSALRYMQTEHNAGPYLLDEKKELHNLIQTNGSAIELRVIEPILTEIAEKTALSPAVLSKLVTFGQSQQSTQFTANDLASHLGVSRRTAERTIKKLLTSEYVNTVGEEMTYRQGRPRAVYELNFPVY +>tr|G9Q7I1|G9Q7I1_9BACI Uncharacterized protein OS=Bacillus sp. 7_6_55CFAA_CT2 OX=665957 GN=HMPREF1014_02623 PE=4 SV=1 +MIDKIKNAVEDMYEDEAKDLLQSILIQLNLLEENYSEDTIKNLMDIPKQLTSNPTYKRNVKESAHVHIAFDDSTAGCLKYMLSQEELFEESVVAFSEFFSIGPIYRLHTNEGQLARQKWLINNLTAYDSYFEEEYLSRFIATIEELHTIPVETPITIWKADNAHEHVGLSFVMAQLKDKKNIRVINTSEASREILKQEYDIRGTGELPPESLALFQKSFIKLPYLTEEKRMKFENEWDRLSESIECLRVWKENEVHSVQEDYFDQFIIECAKSVGADREFLKAPRVIGEALGLVEQLVGDTFLEYRLKQLIKQEVFEFEGSLDEMRFYSVKLRK +>tr|A0A5N7CTG2|A0A5N7CTG2_9EURO Uncharacterized protein OS=Aspergillus pseudonomiae OX=1506151 GN=BDV37DRAFT_266922 PE=4 SV=1 +MYLSVLSFVDSDSLTSKQQQHYALALYFDWKCAITGKIYQSHSDQTFHAVSKGKFYRAVMARFLDTKMLQFATLCQDLESFDWLTTTTSKMWSDNPNRTLEESFQILEAFDFISNFMLLHILEGPGTFADWVISSDEHQAFTQDPNDSFLNNWISLLRRLQPYLSPFDILVAFRMDEIDLQTLQYFNSLLSLEEYDLKSPIYEIEKEVCCKLSEEYDVADHVWKMYRNHGWRNGARGTSFNEHLSVGAIASEIIGFECHRRNWWELMKQSSKASPYGVRFSLPSCYLSTFNERMDEDEDIHFIITKDDLLTLNH +>tr|A0A210QLV9|A0A210QLV9_MIZYE Uncharacterized protein OS=Mizuhopecten yessoensis OX=6573 GN=KP79_PYT04528 PE=4 SV=1 +MVGQRGNRGGGRGGGAWGDDSQDMGAMGGSMLGGYGTQSDTSMYAQGGKKRSYNDSQDGYSMPNYYDSTSTDPYFRGMDPPASRFVKTESTQQPDQYASYYENWDSGYYNQGNDSQSSYSDYGSSPQQSGGGYNQSSDFSQDVDFPSNNTSGFNKGYNKNQQSWNKRGGGGGGGGGRGGRGQQQQQQQPWGRGGQGMRGGGRGNNRGNQGGGMMGKRGQQKPGFPPQKAFPGPMRGNKRGRGGRGGNAMVPPIHSLAKVSVPDVTKMSIAEKIRRFCLYLQAETNKVNSIQTIENALTGSKLGLKTEYEVEELMRVAGRWMYTGYLKLDSIFLTRSVGANKKEVKHDVYTKGLDIVKTKTVAEIFALKDPGVEAIRSELTNSLEVKKEGLGKTESLQVAKQAMEEMTNTYSTKHDGFDKLMTYLRESTNLPESQISCIEQGISASHCGLTHTFDGQMVRLPTGKLFFRGSLTIAEVVVAVGTGYKKKDAKVQTYERALEALRTKTMAQILKSVPEAEAVTGVVQEKVPTVPEKDRSSQTLLEKMTEITQLIKEAQFRENNINYLDVTAIHLGFTPTCIYRKLESEGNKTMIACELYLDSILMATGEAERRKDAQVETYNSAWDVLCTTAPDYILKEHKRLKPGDQDDPSVMDVWVKGSGKPNANTNMPGLKRNKMDPNEAWKTVDVIVLMEHEDWSFDRQRQAFCILNYSSTFNGMLLQWQTEHDGNMFKSTINLQHKMIGEASALGKNTSRNLAAACALFKLYETQHVIRISRRDDTKLWVEYPEIKTKAEALRVASGAPMEEVVATPTPADGEEKPSIPANKWVVQVAEQMITQHIAKQTLDELTFGPGMPFSESKEVRQIARNLDLKHDIRQQEGQSYLIIHKRMTPQEMIKILQANNSQSGKYSLVDKDTLPTYQNILPEIEKHEAMRNTGNTEGASKKKIKKEDISMTDLS +>tr|A0A7Y7LU15|A0A7Y7LU15_9BURK DNA-binding transcriptional LysR family regulator OS=Variovorax sp. SG517 OX=2587117 GN=FHT32_002399 PE=3 SV=1 +MDSEALATFLTVHRQGGVSAAATALSRTQSAISRRLALLEEELDAPLFERVGRGLRLSQAGEALLPHAEKVAAAMGDAVAAVQAAKSDAAGTVHIAAVGTLASSGLATVLAKLRQSLPGLDVRLQTATSAEVSEKVRASDVAVGLRYYEDPSPDLLCKVIHHEQLVVACAPSHPLAGTRLKSLVRLSKERWLAFPQPPRRTEPHAEAIFSQFLVRGVERIDWSAVDSLTAQKRLVEAGFGLAFLQESGIAEEVARGSLALIRIDDLDVRVPVACVVRRSAFLSRATRALLAELERAEL +>tr|A0A2A7QG65|A0A2A7QG65_9LACO ClC family H(+)/Cl(-) exchange transporter OS=Lactobacillus sp. UMNPBX18 OX=2042029 GN=CP369_02605 PE=4 SV=1 +MESRKEVFHRYNQFNQLIRAIIIGILTGLVVSVFRLIIQHFLQLVTASFAYFHSHPLWLIPWTIGSIILALLLGWLAQSYHDIKGSGIPQVEGQLTNQFDEKWWPVLWRKFLGGIFAIGSGLYLGREGPSIQLGATIGQGVEEKAKVGHLNRQIGIASGAAAGLSAAFNAPIAATIFILEEVYHNFSPVIWLATFVSSLCSNIISMQFFGLRPVLNVPYNHMLPNNLYWHLIALGILLGILGRLYQIVILHLNGWTARIPKLSPIAYPIIPFLLVIPIAWYFPITLGGGNELIIILRSLPFSLALFVGLFVLRFVFSMISYGSQLPGGIFLPILTLGAILGAVYCALMVRLGLMPVRYLPNFIIYGMAGYFACISKAPFTAILLITEMVGSLAHLMPLALVAVVAYLVVDALHGEPVYTAMFNAFIGNNPQPARHKEDVTMSITIYAGAQLDGCKIKDFPWPTDCIVMVVYRGEEKIIPNGQTKLQAGDTLILRANSATTRQAYHEISRAAHYAQG +>tr|A0A0R2BHK3|A0A0R2BHK3_9LACO Uncharacterized protein OS=Lapidilactobacillus dextrinicus DSM 20335 OX=1423738 GN=FC84_GL001267 PE=4 SV=1 +MRIIFIGDVMGPIGQETLTTYLPKLKAKYRPQLTIVNGENIAMGKGITKSLYKTILTAGADVVTMGNHTFDKDDIYEFIDDANKLIRPANFPAQHTPGKGYVLTKVNQTTVGVINLQGRVFLDSIDDPFAKVDEILAEIQAQCDYIFLDFHAETTSEKEAMGYYVDGRVTAVVGTHTHVQTNDAKILPKGTAYLTDVGMTGPYDEILGMRKERVIERFLNHRPVRFETPLSGRGQLNGCVIDFSSTKNAARKIELIQITPDQPFLE +>tr|T1BH73|T1BH73_9ZZZZ Translocation protein TolB (Fragment) OS=mine drainage metagenome OX=410659 GN=B1A_07070 PE=4 SV=1 +NSDSSINYDGSQIAMMQGNGNVYRIAIMDRKLDNQTRFISPGPMDGSPSYAPNGSMLLYAATDNNGKGVLYEVADNGSVRQRLSLVNGTVQSPSWGPYRVPPSTQP +>tr|A0A7W7F9L6|A0A7W7F9L6_9SPHN Spermidine synthase OS=Sphingosinicella soli OX=333708 GN=GGQ98_002410 PE=4 SV=1 +MLPRVLIDTAKIPGGGELRLIQRGTEFSIMLGANELMNSRLKGSEESLASLSCGKIQSRPQPRMLIGGLGMGFTLRAALAKLPADASVTVAEFVPSVVAWARGPMAHIFDGCLDDPRATVAVEDVADLIGDVRSHYDAILLDVDNGPDGLTHPDNDRLYSRKGLIAAREALRPGGILAVWSAAPDHAFKNRLIKVNFEVEETVVRTNGERRGARHIIWIATRPS +>tr|A0A1H5CGP3|A0A1H5CGP3_9MICO Peptidoglycan/LPS O-acetylase OafA/YrhL, contains acyltransferase and SGNH-hydrolase domains OS=Ruania alba OX=648782 GN=SAMN04488554_0368 PE=4 SV=1 +MVSTATQDRGRIEGLDGVRALAIVAVLIFHLRPLSLPGGYLGVDVFFVVSGFLITTLLVRELRANRELDLTAFWTRRARRLLPALATVVAASVALAFFAGDDLLVNIGRQVVGALTFSNNWLEISAGSSYFNATSPQLFVNFWSLAVEEQFYLLWPLLFVLIMATTRTGRQRVGVVLGLAAASALLMALLYTPGEDATRVYYGTDTHAFGLMIGAALALSAAGESWNLLAQTWYRRARVLLALGALGGLVALMLVLDPTQPMAYRGGILAASLLTALVLGALPGPTNLLHLIFRLRPVAWIGERSYGIYLWHWPVILLIAAFAPPTAPDSVASWVQRGAALVLTLAVSAASYRWIEMPVRRDGFRATGRRVLAALTAPGGLTPPRVAFLSTTAVLALFAVAVATAPDRSQVQIAMDEASGVVEASGGESGSVAGSTESPQTGSGETDGESSETDGGQTVDGAAEGPGAQISGFGDSMMYVAAPGLSATFPGMSIDAESNRQWPAVAETVAAALDEGTVRDVVVIAAGTNAGVREPEIVRETLDLLGPDREVVLVNIYGSSFWVEESNENLAEIAADYPNVVIADWHQAALDHPEDLQPDRIHPDMEGMYLYADIVQAALEELGVG +>tr|A0A5I0WZT4|A0A5I0WZT4_SALET Type II toxin-antitoxin system RelE/ParE family toxin OS=Salmonella enterica subsp. enterica serovar Oslo OX=1005394 GN=G4H23_002326 PE=4 SV=1 +MRIFKTRWFNREAKSHTIKDDELSEAINAVLQGKADNLGGGVYKKRLNQNRDRAIVLAKGGEHWFYTFLYAKQDMANISYRELAGFRELAKHYACLTEDQITALINNKELVEVRHVSKN +>tr|A0A2S8FEH7|A0A2S8FEH7_9BACT Uncharacterized protein OS=Blastopirellula marina OX=124 GN=C5Y96_14010 PE=4 SV=1 +MPLLVSGICLLVPSLLAAAPQADFEKILSPILEDAVRRSLPTSFKDESDWGSTHEFTKRLKVRGKWDSLKLERVREAKNHGDWVRYLGHIEDPNQHVRIWIENLSVGPTRSTCQIHARVEFQGEAEYQQWVRGVRLLGVSVVTEATVKIHLDVQLDSKWDMSSLVTSAELTPTVTGGQIELERFYVHRIGKAHGEVAEQIGEQLEGTLAKKLAKKEEKLVREANKAIAKELENGTVKLDLVDYLKKQLLK +>tr|A0A069RH84|A0A069RH84_PEPLI Putative transposase InsK for insertion sequence element IS150 OS=Peptoclostridium litorale DSM 5388 OX=1121324 GN=insK PE=4 SV=1 +MICETLSITRSAYYKYKKRVKPEKEKQDELLCSLILEYHAMYDGILGYRRITMFINRLNQTTYSENYVHRLMSYLGITARIRKKKVNRKRVKPDYVKDNILARDFTAKTPNEKWLTDVTEFSIPKDSRKLYLSPIMDLYDNSIIEYEFSFRNSNQLVFKMFDRAVANNPGARPIFHSDRGFSYTNNAFKSKIKNAGMIQSMSRVGKCIDNGPMEGFFGILKSEMFYGKIFKSLDDLVDKIKEYIVFYNERRFQKRLKCLAPIEYRNKALIA +>tr|Q1ZM26|Q1ZM26_PHOAS Uncharacterized protein OS=Photobacterium angustum (strain S14 / CCUG 15956) OX=314292 GN=VAS14_08110 PE=4 SV=1 +MTLIERLKDEQKAAMKAKDKPRLGAIRLVLAAIKQREVDEKITLNDDDVLVVLTKMVKQRRDSVAQYEAAGRQDLADVEHAEISVLAEFMPQPLTEEEISALMDEAIAATGAATMQDMGKVMGVLKPQIQGRADMGIVSKLVKTKLG +>tr|A0A1C1VV15|A0A1C1VV15_9PSED Phosphatidylethanolamine-binding protein OS=Pseudomonas sp. S3E12 OX=1873126 GN=BB029_27630 PE=4 SV=1 +MNIRSILPALSMAVTLSGYAADFSLTSRDIADNRPLTRREVFQGFGCDGGNTSPELSWKNAPAGTKSYAITVYDPDAPTGSGWWHWTVVNLPASTHSLPSGVGANLPAGAVQGRTDYGQPGFGGACPPVGDKPHRYQFTVWALKVDKLPLDNQASGALVGYMLNANVLAKATITSTYGR +>tr|A0A161XBG4|A0A161XBG4_9CELL Histidine kinase OS=Oerskovia enterophila OX=43678 GN=arlS PE=4 SV=1 +MRRRVLQATVAAVAVAVLLLGFPLAFLGAQFVLANEMDQLQGRVDTLARNIDNRLAQNEPIPQSVLDNASVGRPGELPAYVFVNLPDGEQMTAGEVVTGRANEAADRTDQNATVALSTSFAESYWKAAQIVLLVVAASVVAFAAGIAMAVWQANRLSAPLVYLAASAEQLGSGQVRPRLEPSGVEEIDLVAAELARSSDRLAGRLAAERQFASDASHQLRTPLTALSMRLEEISMASDDPAVQEEARISLEQVERLVTVVDDLLTQSRRAQGGTTEAVRLIEVVRQQEEEWVPTFAQAGRELVIDVPEGYQVLATPGALAQVLATLIENSLKHGAGTTTVRARPSGTSGAVAVEVGDEGEGVSDEMAPRVFERGATSGAGTGLGLALARDLAAADGGRLELAQRRPPIFALFLAGVPRTLDPRVVLPTGTLISARGGRRRRRGRGPEVEPR +>tr|A0A0D0Y6D7|A0A0D0Y6D7_9TREE Small nuclear ribonucleoprotein Sm D1 OS=Cryptococcus gattii EJB2 OX=1296103 GN=I306_06210 PE=3 SV=1 +MKLNNETVTIELKNGTVIHGTITSVDPQMNTHLKSVKLTLRSQPSSQPPLSLDSIAIRGNNIRYFILPDSLPLDTLLVDDAPKPKKKKEGAAARGARGAARGARGARGGGRGAPRPRGRGF +>tr|D0TP63|D0TP63_9BACE 4Fe-4S binding domain protein OS=Bacteroides sp. 2_1_22 OX=469588 GN=HMPREF0102_01363 PE=4 SV=1 +MNVAELDIDKCSGCGLCASVCSKHSISIVPDDSGFLRPIVDKNTCVDCGLCVKRCVIVNPRKQTIPQKTYAAIRQDKDRIALSSSGGVFAAVAEYVLLKKTNWVVVGSTLDETVSANHIIVDNVVDLKNLYGSKYVQSETTGIYKKIQILLDDSKSVLFSGTPCQVAAIQRYTNNHPNLWTIEVICHGVSNNKMFNSYLDMYKRNEIRMFYFRDKEQGWSFNNKIVYQNGKEKKINHRMSSYMTYFLKGETYRDCCYCCPYAKPERCADITIGDFWGILQTRPDLNNKIDIEKGVSCVLVNTDKGISMVGNAELELYDVEYDAIRKENGPVNEPSHHTVKRDLVLAEWGKKKDWTDVHTFWKKNDRKITFVLWSMIPVSLQHKIRVMLGKR +>tr|A0A2A2CDI5|A0A2A2CDI5_ECOLX Spermidine/putrescine import ATP-binding protein PotA OS=Escherichia coli OX=562 GN=potG PE=3 SV=1 +MNDAIPRPQAKTRKALTPLLEIRNLTKSYDGQHAVDDVSLTIYKGEIFALLGASGCGKSTLLRMLAGFEQPSAGQIMLDGVDLSQVPPYLRPINMMFQSYALFPHMTVEQNIAFGLKQDKLPKAEIVSRVNEMLGLVHMQEFAKRKPHQLSGGQRQRVALARSLAKRPKLLLLDEPMGALDKKLRDRMQLEVVDILERVGVTCVMVTHDQEEAMTMAGRIAIMNRGKFVQIGEPEEIYEHPTTRYSAEFIGSVNVFEGVLKERQEDGLVLDSPGLVHPLKVDADASVVDNVPVHVALRPEKIMLCEEPPANGCNFAVGEVIHIAYLGDLSVYHVRLKSGQMISAQLQNAHRHRKGLPTWGDEVRLCWEVDSCVVLTV +>tr|A0A168G2W8|A0A168G2W8_CORDF Sulf_transp domain-containing protein OS=Akanthomyces lecanii RCEF 1005 OX=1081108 GN=LEL_05631 PE=4 SV=1 +MATVLSGAAFGAAMIAAGFYNPAVVISQLKFENWHMVQAFLAATASSIAYYAISDRAGYASLQPRASSPIGLFGSTYDGNVLGGALLGAGMALSGSCPGTLFAQMAAGVHTGFYALAGAVVGGVLWTGILSKAVARARARAGSKPETVTVNQHLGVSKPAAMLLYEAGFAAVIIVTSLYTPRFPGTKMSGALGGFLISLSQLASIATRGSMIGISGSYGELGGLLWAGLAGDAASKPKSYPNVLFAVSAGAGALLLARLAPVLVEAPALEVAPAVAVLGGALMVVGARMAGGCTSGHGISGISLLSTSSLITIATTFAVGFVVATLVY +>tr|A0A3N2RNP2|A0A3N2RNP2_9ENTR Uncharacterized protein OS=Kluyvera ascorbata OX=51288 GN=EB837_25720 PE=4 SV=1 +MSEPRLGNLITVLLPARSYKINCALTTEKLMPGIEQFACRLLLIFDQLYPSELQNYFGLTDREREVLLDGLLANRLININPDGHIEASSFLRKHAASNGGKPSLVKYQERTEEVAFDLLTLSICKPQPNRRFTSGLPELLPRHQIGGDAAAVTEAFSSQFRHHLLLSRNSEYERQRTRLYKIMGCSSHEMVQLPIEIEVSYDASAGSIEPQKFTRSYEYLGNTRLPLSNELEAHIADFLGEHKLDEFGIDCEDFCKLANDKVLLQFANGYKFDYSGWIEAREQRKTGYGTSLTTGMLGAVYLPHNSKLFISMLHNALRDYVGKTAPKALWYSSKVPLWGANGSQLSRFNRDLGDILGNYADDKIARISLLHPSADEGEKRQERKRHLGRFPTGIGLTSEAKFDRLEILLIPDVIALVQYHGQPNSDSALTLPIGYITVEPERLELLKNLMIKRIEGVVATINWSESKLENLTSLLPVEFLIKLNKKSGEDVDAAIQKMQIANRAETARAILSLRK +>tr|A0A1A7ZNK3|A0A1A7ZNK3_NOTFU HFM1, ATP-dependent DNA helicase homolog (Fragment) OS=Nothobranchius furzeri OX=105023 GN=HFM1 PE=4 SV=1 +DTAVKTTCPVYKHARAGQHGTCVLTWYLPGHFNHWTTKANTTADLPKTLHVVLEQILNRHPPFGNQIRDSVRHLPKYSVTLEQLPRFGSDTAEVVARVNLKNQADLLSRRTAPGHHFVSLIIGDADNNVAFLQKITDSMLLKSGSWSKKIQVAKPVKGNEISVHLISSDYVGLDIQQRFTMQFSASRTFGSEIPYNTIEQRPQLTAQTPLSAAQRDKASPAEEQGSTYPGHKRQCNHLCKNKTLCAHDCCKVGVAVGRKRSTNHESSFSSYLTDLRNRSDALVQTPVKRLKMGNGPLAVSMQRFAFKPKENLSPVSCYSENEYKAGQMDLAADDSSQLKDISCLNDPDPGTFSDADGAENRTRTTQNPAATQQMFLKDSSARIMSRTGGEPLKSGVNQTKTSTSVHSNWSAATSEQEALQIPAVTFDLGNEWDDWEDFDEENLLHTAAALVPQCRTKPEPQIQQRVDYTSGCPTGSSPVFLSCSQTKCQGTTITTPLRSISAAASCEIRKFDPSPITNILNDEITGKTPEMFFKPPPETQVNRRCDFFHTVDVPLRSDLSLDRSKEEETFFGIFDGIF +>tr|A0A7C6JKA3|A0A7C6JKA3_9BACT 3-isopropylmalate dehydratase small subunit OS=Petrimonas sp. OX=2023866 GN=leuD PE=3 SV=1 +MEKFTTITSTCVPLPIENVDTDQIIPARFLKATTREGFGDNLFADWRYDKAGNPKGDFVLNNPTYKGEVLVAGKNFGSGSSREHAAWAIGGYGFKVVVSSFFADIFRHNALNNGILPVAVSEEFLGELFVSVKGNSKATVTVNLQEQTITNNETGKSESFNINAYKKECLLNGLDDIDFLLSNRDKIEAFEKQRVYSY +>tr|A0A7X6IU76|A0A7X6IU76_9PSED EscU/YscU/HrcU family type III secretion system export apparatus switch protein (Fragment) OS=Pseudomonas sp. BG5 OX=2722817 GN=HER21_45805 PE=4 SV=1 +GLMRVFGKQALWEGAKALLKTVAIGVALWIVVSGLVPVLMASGSHNITWLLEQAAGGAAALLQVAVVVGIILAALDVAVVMRRNRKHT +>tr|A0A7Z1UA43|A0A7Z1UA43_9GAMM Methyl-accepting chemotaxis protein-2 (Aspartate sensor receptor) OS=Erwinia sp. AG740 OX=2183904 GN=DFO54_1118 PE=4 SV=1 +MSVFGRYVRNLKVSHKLYGGFGIVLLLVVLASTFSSARFFAIRDLYIKSSIMNEMGNFIDLTRIARIKFTYTLNDDNLTNLNKYLQQARQLNDKAKALKWDETYQGDFKNVEQDFADYTQNIDRIKSSVEGMNEVTKGISALDQQAAPGDALYTLSNDINLLRQYHQTSVLYGQLVDKVHLLQKENSDAAFKAVKSAYDQAKKSFDSLNSTLPGEVKNSISELGDRIERYNQSGVKYNDKVNQLKASDSALRATGDKLISDIDGVLKKIGARNNDIINNSVFQTVICGITAVILGLLIAWSVTRQITRPVIANLKLAEKIASGDLSASVTVERHDELGQLTLAMMSMTEKLRQLIADIRHSVYSVAKASSEIAAGNHDLSSRTEQQSSAIVETAASMEQLTATVKNNADNARHASQISEQATDNANRGGDIIHRVVQTMGEISGSSKKISDITSVINSIAFQTNILALNAAVEAARAGEQGRGFAVVAGEVRNLAQRSSQAAKEIEGLISESVSRVNTGTVLVSDAGSAMDDIVASVKRVHDIMGEIASASDEQSRGIAQIGGAVSEMDSTIQQNAAMVHESSAAANSLEDEAARLSQLVSVFRLSAQDEPQTSGHTAMLASRLRRPEIANRQAALPGSNTTPGTIANTSADNWTTF +>tr|A0A810LQW6|A0A810LQW6_9ACTN Uncharacterized protein OS=Actinoplanes ianthinogenes OX=122358 GN=Aiant_38990 PE=4 SV=1 +MAGASDNGGWPPPDGGSSDDLPDLPEEWGVIVIPDDLSELSDEVEAVRAELHLAPPPNRWQRFARRPAVRRLRRAGALLLRAPVLIVSMAILVTVASLFASAWPGTPRQPATQRTSDTTTTPAKTLPALDLIGADGQAVPLLAHRPMVVIITDGCDCERLIAETVAAVRQDVSVLAVSTTAPSATASQGGLAPAQTPRADGKTVLYLQDPTGHLRERAGLTSARDGSAATFVVNKAGDVLRVCQHVVSVAAFEADLARI +>tr|A0A6B8MQP2|A0A6B8MQP2_KLEOX Helix-turn-helix domain-containing protein OS=Klebsiella oxytoca OX=571 GN=GJ746_00670 PE=4 SV=1 +MDNSINQVIDSFIKGQAVIGRVRFSTESRPASEKAVSVDFPRLEIMLEGQLRDPAIKSEYAQLTPHDVLYIPAGGWNDPQWLMPSTLLTILFDKQQLEFVLCHWDGNALNVLDKQQVPRRGPRVGSFLLQALNEMQMQPQEQHTARCIVTSLLSHCADLLGSQAQTSSRSQALFEAIRKHIDAHFAEPLTRESVAQAFYLSPNYLSHLFQKCGPMGFNEYLNHIRLEQARMMLKGHDMKVKDIAYACGFADSNYFCRLFRKNTERSPSEYRRQYHSQLTEKTSSAKN +>tr|A0A1Q3WCK3|A0A1Q3WCK3_9BACT Ribokinase OS=Spirosoma sp. 48-14 OX=1895854 GN=rbsK PE=3 SV=1 +MPGQILVVGSSNTDMVVQTTKLPAPGETVLGGTFFMNPGGKGANQAVAAARLTGNVTFVAKVGTDIFGEQAVAGFRQEGINTTYIQSDPDHPSGVALINVDAAGENCITVAPGANAQLRPAETNPALMSAEADALVLVQLEIPLDTVVHVISEAATRGLRVILNPAPAQPLPDELFPNLFLITPNETEAELLTGIRVDDLSSAGQAAQKLHAMGVSNVIITLGSKGAYLSTGTQSQLIATPPVKAVDTTAAGDCFNGALAVALAEGQPLPDAITFACKAASISVTRMGAQASMPRRNEVNE +>tr|A0A2D8DNN8|A0A2D8DNN8_9ALTE Uncharacterized protein OS=Marinobacter sp. OX=50741 GN=CMG78_10605 PE=3 SV=1 +MKLAKFIGSALVALTISAPAIAQQSPGGQPDQVAQLAQMVGLSEEQQTEIRGIIDDMQGEIGELRQDARSLQEDLQEQIKPDYDESAIRDNAAKLGDVTGEIAALSALMQAKVDAVFTQEQRDELDRRMKQMQQQMQQQRQMMQPQGQQ +>tr|A0A842MKE0|A0A842MKE0_9ARCH Uncharacterized protein OS=Thermoplasmatales archaeon OX=2268204 GN=H5T45_04690 PE=4 SV=1 +MKKIICLFIFLALMGCLKSEKEVEKETAEGFEVLSVFFSETEDYNTVLLNMKVKWVGKEKGAPRCDIYFPPQERLEMGIGPIENGPSIVEPLYQEGSEVKTAILKEFIARSFYPDYIAPEFGKSYYAQIKFYWPSLNETYEWQGNVGWSE +>tr|A0A7X3C2Y9|A0A7X3C2Y9_9LACO Xylose isomerase OS=Secundilactobacillus folii OX=2678357 GN=xylA PE=3 SV=1 +MAEDLWNMKNIEYAGNKDLGSGAQFHYYNPDEVIGGKKMRDWLRFSVAYWHTFDQRLVDPFGDGTAMRPYDKYTDPMDNALAKVDYAFEFYRKLGVDFLAFHDRDLAPEGDTLRETNKNLDKVVDKIVEYQKTSGMKVLWNTSNLFTNPRFVAGAGTSPYADIFAYSAAQLKHSLEIGKRVGSENYVFWGGREGYESLWNTNMKLEQEHAAKLFHMAKDYANEIGFDAQMLLEPKPKEPTTHQYDFDAATTIAFMKTYGLDKDFKLNLEGNHANLAGHTYQHEIRVAREAGLLGSLDANQGDKLIGWDIDEYPSNLYETTAAMYEVVQEGGIGPRGGLNFDAKPRRSSFEANDLFYGHIVGMDSFAAGLRVALKMKEDGVLDKIVADRYSSYKSGIGADIESGKATFKTLEDYTLDKTQADLRAATSSDHLEQIKDIINHYIVNVLGK +>tr|A0A5N6QTR5|A0A5N6QTR5_9ROSI Uncharacterized protein OS=Carpinus fangiana OX=176857 GN=FH972_006142 PE=3 SV=1 +MGTLVHDAQNVDSDIYLSLGLTELRKGVPAIPRVLSLLSSLLERSVQKNEILLEATQIKDVVTIFHGLRAPTLSIRQYIDRIFKYSGCSPSCFVVAHIYVDRFLQSTEVHLTSLNVHRLLITSLMLAAKFIDDAFFNNAYYAKVGGVSTAELNRLEMKFLFSIDFRLQVTIETFGRYCLQLEKETAEGLQIERPFKACGIKESWSNKDDSSCAPTVAQ +>tr|A0A0D6QGJ2|A0A0D6QGJ2_9DELT Putative ECF RNA polymerase sigma factor SigI OS=Anaeromyxobacter sp. PSR-1 OX=1300915 GN=sigI PE=4 SV=1 +MTDTGETFEAQRPALLALAYRMLGELARAEDVVQEAWIRWQRRPGEVDSPKAFLLTTVARLCLDELGSARARREESRSDRLPEPVELDRAGLGRVELLDRISMAFLVLLQRLTAAERAVLLLHDVFDMTHAEIAARLEKSEPACRQLLRRARENVATERRTLRTSRDEHQRLLAAFMEASARGDQGALLDLLAEDAVLVADAGPGVVRYGRIRNVGRPVVGGLKVAALLASVARQRVGPPLELRERTLNGEPAAVAFEGGRPVSAILLGVAEGKVRHVYLQADPERLRHVGSLD +>tr|A0A178W037|A0A178W037_ARATH (thale cress) hypothetical protein OS=Arabidopsis thaliana OX=3702 GN=AXX17_At2g00490 PE=4 SV=1 +MEACSRKRRRRRAYTTSTTGYAAVFFCGIFVFAQFGISSSALFAPDHYPSLPRKAGHFHEMASFQAPKATVSFTGQRREEENRDEVYKDDKRLVHTGPNPLHN +>tr|A0A1F8I579|A0A1F8I579_9PROT Rhomboid family intramembrane serine protease OS=Caulobacterales bacterium RIFCSPHIGHO2_01_FULL_67_30 OX=1797584 GN=A2795_02220 PE=4 SV=1 +MSDPDGRFAAPPNSEGPKSERLFNAPVAVVLIALSMPVLFFFQRQLPDMGASMAFAPIDLQNGRWGGLFTAMLLHGSWTHALMNAIGALAFGAPVARLFGDRIGPTVFLLFYIGCGVVAALGYGLVHWGSTEAMVGASGAVFGLIGAATRLMGGRGRVLSLFDRRVIGASIAWMAVNAVTGLIGYAPGADGARIAWEAHAFGFIAGLLVIGPLGRAFGKGPLPMGTSARPESDV +>tr|A0A3Q8V945|A0A3Q8V945_9ACTN DUF4132 domain-containing protein OS=Streptomyces sp. WAC 01438 OX=2203204 GN=DLM49_03910 PE=4 SV=1 +MGWLAAGEAYEVALVDGRVVARQATPDAPAGQEHTPRKTLPAEIRDRPEVVELQRFAQWLDRHAAECAAQVTTWMVSSLPVPAGLLARVWPDEAWRTALRDIVVVGDGPDETGFLRDARDTGELSVVNLDGETVRLNLPTVTMPHPVLLPDLEELRVFAAESGMVQGVEQLHRATWRKPEGIAPGTTRVTEFAEAEYRSWFHLTARATSLGYKIAGSAVVDRIRDAGRIVTASVGMSDPYSEEKAWTGHLTWGDADGQGTLPLTEVGPVAWSEGMRMAAALHAGRSEGTEGSR +>tr|A0A7Z7G4Q5|A0A7Z7G4Q5_9BACL Drug resistance transporter, EmrB/QacA subfamily OS=Paenibacillus sp. OK076 OX=1884379 GN=SAMN05518670_2026 PE=3 SV=1 +MSQARLKERDDVKKGPILFVMILGAFLATLNQTVMSVATPELMGDFNISAATAQWFTTGYMLVNGVLIPITAYFMQRFSTRQLFQASMFIFLIGTIISALASNFGTLLTGRMVQAAGAGIIMPLLMHVILTLFSPEKRGAAMGMVGFAIIFAPAIGPTLAGYILEHYTWQTMFYGMIPLTVIVIGFAFVYLKNVSERVKLKFDTLSVLLSTIGFGALLYGFSRAGSLGWSSAEVIICLAAGVVALGLFTWRQLASANPLLDLRAFKYNMFSLTTIINIAITMIMYADMMLLPLYLQNARGYTALESGLLLLPGALVMGFLMPITGRLFDRFGAKWLAIIGMVITIVTTIGFIDLTDSTSYTYLVLMSTGRRIGMALLMMPIQTAGLNQLPPRLGPHGTAISNTVRQVAGAVGTSLLVSVMTSRTTAHVQDMVATGAAKGLTQQQLGMESMIQGINDAYVVIIGIAVVGLLLSFFIKRTKQATEEDSKQPVRQKVSMNTN +>tr|A0A4Y7SBP5|A0A4Y7SBP5_9AGAR Uncharacterized protein OS=Coprinellus micaceus OX=71717 GN=FA13DRAFT_1647367 PE=4 SV=1 +MLGSAKLSRLGGHIAFLGDRFSLVQAARASIEKKAKALYYPVEPPNNEKYNPTRPPKYNLKDLPRRSQAHYWKVIELLNLAKTKTARATISRDSGIVALPACAASPAFLHPSYFPLDPFHLFYENITPFLWDLWTVDSTPGESVHVPSPKIARFGVLVAEAMRTLPPAFCGPVRNPHLKRQSQYKAYEWMALFHWYILPIGLELEFPPALLRNFSYLVEAVEIAMTVQSHSISDLQSLEDLIVDFLLQYEHLYVGDDPEKVQRCRLCIFQLIHVPIHIMWYGSIRLSSQATVERSIGEVGRKITSRKEPFAHLSNIIVEQEIIRVLSLYYPELTHKGATTTNTTRSDTRQKIRISKSENLSEELAHHLSAIFRDPFITWLTHLGQGRNSEGKTSGTLQPTNQHKQMFGEVISFYAITNADNETVEVAVYRPLVDVCQPLKTVIQGRWPSASAKVKIAAVEVESICTVVGIWAAPQSENIYILRKHPGLLMLTPLERGIQEDTERDEMDD +>tr|A0A1B4C1D0|A0A1B4C1D0_9BURK Esterase OS=Burkholderia diffusa OX=488732 GN=WI26_24630 PE=4 SV=1 +MRGSMNLVRAFWLLLLLAAAGPALAFQTRIVAIPSAAMNQTLKATVVLPDDYARPRHGPERSVERFPVVYLLHGSGGDHTDWTANTHIAALADRYRVILVMPDGGHESWYIDSPFDSGSRYETFVGDEVVSYVDMHFRTIATKGARAITGLSMGGFGALRIALDRSDTFGAVGSISGAVDPRCCEDEPGIDHVFGDPGRHPSFWNRNAIVENARAFVRAHLDLTIDCGRDDSFVGSNRTLHQRLVALGVPHDYAERPGGHTWDYWAHAIRYQMQFFAASFQHGGYA +>tr|A0A2E7H1W3|A0A2E7H1W3_9EURY Uncharacterized protein OS=Euryarchaeota archaeon OX=2026739 GN=CMB34_05090 PE=4 SV=1 +MLLSACEGISVADAYVKADRMTYEAIAPSYRAYVEADENLDEPSKQSRYRLLQTWELRINSNTKNK +>tr|A0A0E0KM68|A0A0E0KM68_ORYPU E2F_TDP domain-containing protein OS=Oryza punctata OX=4537 PE=3 SV=1 +MDGSTTIPLPQPPRPPPPAPAPAPPQVFLRRSVLPPPQTGPHRVAPAPPPPGAHVHYFRAASPIPIFRAAASSRPPRPPPTTAPAPPPPPAAPAVTPARPVAVAPPPPPATTTATATEEVAAPATGNPMANTADNEEKNEREAVQSEVPKGETVQGPDKECTTGTVKGIKRPRKPKGFKKGSLRSNEGDAGASLFSPNNCRYDSSLGLLTKKFINLLEGAEDGTLDLNKAAETLEVQKRRIYDITNVLEGVDLIEKTLKNMIRWKGFDMSKPKERERQISALKEEIESLYDEESRLDDEIMEAQEKLNALRVDEDRRKLLYVSKEDINAIPRFQGSTLIAVNAPRGTYIEVPDPNLDMDIYKDLDNQEKHYQIVFRSAMGPVDCFLISNHQETFNADQQMADDLDAAVTSGSSQALQQMDYVQAPEIGESNGVREHTSEPSKRDDPVPGIVKIVPSDDDIAADYWLSSDADS +>tr|A0A3N1VCH1|A0A3N1VCH1_9ACTN Hemerythrin HHE cation binding domain-containing protein OS=Streptomyces sp. 2132.2 OX=2485161 GN=EDE04_6244 PE=4 SV=1 +MDSEHVAPARPYGPAAADLTGVRVAHRAILADIERLAGLLAALAAAAEPAGPARAGAIAGYVHRFNDAVRGHHREDRTLWPVVLDAVPDAAEAAAGLAGFVADHEALDAVQADCDAAAARFAAEPGRHAGLLAGLLAVQRDLLAAHIEAEERHVLPVITRRVPGAAYAAARARVRRADRSPDPAWSRAWLLSHATEDETRRLLAVAGARPAAVEPELREYAAQASAVFAG +>tr|A0A2S6FD50|A0A2S6FD50_9PSED DNA topoisomerase 4 subunit B OS=Pseudomonas laurylsulfatiphila OX=2011015 GN=parE PE=3 SV=1 +MATPSASSYNADAIEVLSGLDPVRKRPGMYTDTSRPNHLAQEVIDNSVDEALAGHASSVQVILHADHSLEVSDDGRGMPVDIHPEEGVSGVELILTKLHAGGKFSNKNYQFSGGLHGVGISVVNALSTEVRVRVKRDGNEYQMTFKDGYKATELEIVGTVGKRNTGTSVFFAPDPKYFDSPKFSISRLKHVLKAKAVLCPGLLVSFEDKATGEKVEWHYEDGLRSYLVDAVSEFERLPDEPFCGSLAGNKEAVDWALLWLPEGGDAVQESYVNLIPTAQGGTHVNGLRQGLLDAMREFCEFRSLLPRGVKLAPEDVWERIAFVLSMKMQEPQFSGQTKERLSSREAAAFVSGVVKDAFSLWLNAHPETGMLLAELAINNAGRRLKASKKVERKRITQGPALPGKLADCAGQDPMRSELFLVEGDSAGGSAKQARDKEFQAILPLRGKILNTWEVDGSEVLASQEVHNIAVAIGVDPGAADMSQLRYGKICILADADSDGLHIATLLCALFVQHFRPLVDAGHVYVAMPPLYRIDLGKEIYYALDEAERDGILDRLVAEKKRGKPQVTRFKGLGEMNPPQLRETTMDPNTRRLVQLTLEDFEATSEMMDMLLAKKRAGDRKTWLESKGNLAEVLG +>tr|A0A3R7JJI1|A0A3R7JJI1_9EURY Helix-turn-helix domain-containing protein OS=Haloarcula sp. Atlit-47R OX=2282132 GN=DVK00_02090 PE=4 SV=1 +MRFIEEIVVDDFLPTFRSLLADALRERGLTQSEVADLLGISQSAVSKYVHGDVARQEDLLAHRGLEELVERLADGLADGDMSPVQALVETEVFIRELEQGGVLAQIHEDAVPELGDYDDEFAVHDPDSQLRAAERTLASVRRGLSVLENTSGFATLIPAVGSNLVQCLPDAESIEDVAAVPGRILDVKGRATIPADPEFGVSEHVATLLLAARTAGSDARAVLNVRYDDGVVAALREAGRTVVEFDAEERVEPAVAAALADDPGVDVLYHTGAMGIEPVVYLLGDDAVSVAETAREIL +>tr|A0A1D3UJH6|A0A1D3UJH6_TANFO Uncharacterized protein OS=Tannerella forsythia OX=28112 GN=TFUB20_01002 PE=4 SV=1 +MDIGQIRKDVHAYYHSIFNDKYGRYVRILELFPPIKESDCILDYGCGTGCVSQYFYNKYKCKVDAVEQSEIELTKAKISFQRGG +>tr|A0A4Q7MI29|A0A4Q7MI29_9BURK Enoyl-[acyl-carrier-protein] reductase [NADH] OS=Kerstersia gyiorum OX=206506 GN=EV679_2606 PE=3 SV=1 +MRSANLAGKKGLVVGIANDQSIAWGAARAMRASGAELAVTWYSDKSLPYVTPLFDEIGATLRLPLDVSDTAQQQALFDTLRERWGRLDFLVHSVAFAPRDDLHGRVLDSSAAGFAQAMDLSCHSFIRLARDAEPLMAQGGSMMTISYLGAQAVMPGYGIMGPVKAALEASVRYLASELGPRGIRVNAVSPGPLETRAASGIAGFDSLIKDSMERAPLRHTLDIEDAGALCAFLASDAARAISGSTLFVDNAFHILN +>tr|G5HTX5|G5HTX5_9FIRM Uncharacterized protein OS=[Clostridium] citroniae WAL-17108 OX=742733 GN=HMPREF9469_06037 PE=4 SV=1 +MGLFGNIIKPLQGKLTTKQEENMKKVAEVFKEKTGKDYQTAVVWKMTTKKKLTKTVYTYYNWIIGYGVNADHIPEIVFIPVDPKWEWIGDPIYCPKTNSEMVQDKKTTLFALKNSQLEDGKMDLQLISSMAMMSNYLMDVNYMFEYDKLNEYCLEHWVGK +>tr|A0A0Q8RTN2|A0A0Q8RTN2_9SPHN Uncharacterized protein OS=Sphingopyxis sp. Root214 OX=1736491 GN=ASE06_19140 PE=4 SV=1 +MPLDGSLGTTNAARATVTIEYSATDRSYTVTTDGRSQTFRPADIDAARSSAAATVYIRTNGGTADVLTLTKPGTSGRLTYQYVAGGFWERTVSGATSTSGSVDGFAYGVETPDAALPRSGTANYGIDLIGVMGYPNSAPSPLAGRGTLYVDFAKGSIVITGEADGGTTFNGTATIASASNNFSGRFEYYSLGSMTGQIDGRFFGPGAQEVGAAWHVKNNGGNAAAGIILGRKNPDTPVNSDFVNIANSQFFENSGVILKATYANGSNNSSNKLTQASDFLVHYDAGYKSYTIVAGDKAEFFGPDRVPDNAAPGSHWTKGIGTTRSTLQFLNGGTHVTGARYVFTDGDATSSFVTSNFFIYGFPTANADIVRSGTSFFKSSIAGSMTDQGYDSLLDIAGPGVIQVNFATGAIDIRGAFDIVYRPITGPRAVGNGSYTGTAQLASSANSFTGSIELAASDTYRGDLSGRFYGPAGKELGAIFKASDSGGDVAAGTITASLDPSANASTKALADLTETTVFISSKAQAGITVDQPSGRQFSLGPPSVSRTGLQPRITYDPQTGSYIVREFGGDHQDQLLETLRFGTADRDTAASDAKFDVFNVASGNTTHRISLLRPGAGNPAIQLTYASFIGLVSKTVEGAPINRDTTRYSYFALGTPTAETLMPRSGTGTYNGLATGYGTVRGIGFAEYDISGTSKLSVNFTSLATQLDLTLAGRNLADGTNFNFGDFIFNGALGYSLVDGQRLNQISMGLKRDTLPPGSSGDAFGHLYGPAGQEHVTPFGMQVRGADGSETVIGGVAYGKRD +>tr|A0A6N7CL63|A0A6N7CL63_9NOCA HTH-type transcriptional regulator IscR OS=Rhodococcus sp. T7 OX=627444 GN=iscR PE=4 SV=1 +MKISGGVEWSLHCCVVLSQAEGPVPTARLADLHGVSKSYLAKHLQSLARAGLVHPTEGRDGGYVLTRAPGDITVLDVVQAVDGDAPAFRCTEIRQQGLLAAPPEQCKTPCGIARVMADAERAWRSTLSGVTIADLAATLDVTVLKATLEASG +>tr|A0A678Y985|A0A678Y985_9INFA Polymerase acidic protein OS=Influenza A virus OX=11320 GN=PA PE=3 SV=1 +MENFVRQCFNPMIVELAEKAMKEYGEDPKIETNKFAAICTHLEVCFMYSDFHFIDERGESIIVESGDPNALLKHRFEIIEGRDRIMAWTVVNSICNTTGVEKPKFLPDLYDYKENRFIEIGVTRREVHIYYLEKANKIKSEKTHIHIFSFTGEEMATKADYTLDEESRARIKTRLFTIRQEMASRSLWDSFRQSERGEETIEEKFEITGTMRKLADQSLPPNFSSLENFRAYVDGFKPNGCIEGKLSQMSKEVNAKIEPFLRTTPRPLRLPDGPLCHQRSKFLLMDALKLSIEDPSHEGEGIPLYDAIKCMKTFFGWKEPNIVKPHEKGINPNYLMAWKQVLAELQDIENEEKTPRTKNMKKTSQLKWALGENMAPEKVDFDDCKEVGDLKQYDNDEPEPRSLASWVQNEFNKACELTDSSWIELDEIGEDVAPIEHIASMRRNYFTAEVSHCRATEYIMKGVYINTALLNASCAAMDDFQLIPMISKCRTKEGRRKTNLYGFIIKGRSHLRNDTDVVNFVSMEFSLTDPRLEQHKWEKYCVLEIGDMLLRTAIGQVSRPMFLYVRTNGTSKIKMKWGMEMRRCLLQSLQQIESMIEAESSVKEKDMTKEFFENKPETWPIGESPRGVEEGSIGKVCRTLLAKSVFNSLYASPQLEGFSAESRKLLLIVQALRDNLEPGTFDLGGLYEAIEECLINDPWVLLNASWFNSFLTHALK +>tr|A0A2N6J824|A0A2N6J824_9BURK Lrp/AsnC family transcriptional regulator OS=Herbaspirillum sp. BH-1 OX=2058884 GN=HBH1_03049 PE=4 SV=1 +MELDTTDLRILNILQENSSISNLELASRINLSPSPTLARVKRLETEGIISRYVALADPHLLGLKVNVFVKVILERQGAEALAQFETAVSAFDEVMEVYLMTGDEDYLLRIVVPDLLTLEHFIVDHLTKIPGIKNIRSSFALKQIKYKTALPTPKIKTRR +>tr|K2Q3C7|K2Q3C7_9HYPH Uncharacterized protein OS=Agrobacterium albertimagni AOL15 OX=1156935 GN=QWE_16493 PE=4 SV=1 +MATILLQAAGAALGSVFGPVGAAIGQAAGALAGSMIDRSLLSGTREVNGARLSSARISGASEGTVIPRLYGTARLGGTLIWATRFEEETVTERTGGKSSGGTRTTTYRYFANLALGLCEGPIAGVRRVWADGRELDTTEIEMRVYRGTESQPADPLIAAKQGADNAPAYRGLAYVVFERLPLDDFGNRIPLIQFEVIRPVGALEEKIRAVTMIPGATEHGYATVRISDAPSEGAKRWLNRNTLVAATDWQASLDELQALCPDLESVALVVAWFGTDLRAGDCRVLPGVEVGYRNEESRPWSVAGLARGDAYVVSRHSGGPAYGGSPSDESVIEAIRDIKARGLKVTLYPFVLMDIPAGNGLPDPYGGAEQAAYPWRGRITAYPPGSDKTASARAQVSSFVYRSDGYRRLVLHYAALAAAAGGVGAFLLGSELRGLTVLRDEANAFPFVEALVALAGEVRGLLGGGTAISYGADWTEYFGHQPPDGSGDVFFHLDPLWASPHIMAVGIDNYMPLADWRDEDLEAESPDGFTGADDAEGFARTLTSGEGFDWFYASEADRRARVRTPITDGAYGKPWVFRFKDLKSWWENPHFNRIGGVEQASPTAWVPRMKPFWMTEVGCGAVDKGANQPNIFVDAKSAESGRPYFSAGARSDSQQRRFLEAHLDHWTGSLLPPDMVDPSHVYAWTWDARPYPAFPQNMALWADGSNWRTGHWLNGRLGTATLADTIAAILRDHGFADFDVSEVAGDLGGYVKGDLTSARDLIEPLLELFQIDVIEDAGRLKFRTRPTASLAAREITVLADIADRPLWSETRGHDSDFASEALVTFYDPASDYVEASVRSRKVEAATDRQLARDLPAAMPEETALAAAEGWLRDNRLARRTVQLALGPQEIVVEPGDVLRFPEGPEGRFLVQGIDEGFERRLTLRAFAGKVSAPVPVVEPGRVVDGGGAAGFAPVVQFLDLPRLEGASHAGDASVAAYGRPWRRLAVSSSPEAEGYRLRLTLDRPATLGRLVEPLLPGPVGRFDGANALVVEVLAGAFASANRMAVLSGANRIAVRTGTGGWEVIGFVEAEEIAVGHFRLTGLLRGLGGTEDAMAAGAAAGAEIVALDEAVRSLGLANAERGAAQNWILEPMGLVSELSGPHVFAGGLRAETPLSPVHAKVRRQATGDLAITWIRRSRIEAEAWTEGEVPLDEAEERYRLEILDGGTVLRVVEVTEPAWTYAGADELTDFGVPQTALGLRIRQLGRLAAGMPLQAVVPID +>tr|A0A373NFP0|A0A373NFP0_9FIRM Histidine kinase OS=Ruminococcus sp. AF31-14BH OX=2293173 GN=DWZ26_10045 PE=4 SV=1 +MIETIMLIVVIFVLSGVFWYSFFYQKEKKLFNRLQQMLDCAIDGELERTEISEEKYSALENSMKQYIDSSFLAKKNQQEQKEVIQKLISDIAHQTLTPISNLKVYGEIISEMSNENQEEIATILEQTEKLDFLIQSLVKLSRMESGIIAVHPEDTAIAQMFASVQQQFNVKAMEKDISLSLFDTDLHAMCDAKWTVEALGNIVDNAIKYTACGGNVQIKTEQYSFFVKIDIIDDGIGIEKEEIPKIFGRFYRSLSVADQPGVGIGLFLAREIIQAQKGYIKVTSKRGKGSTFSVFLPIAKKE +>tr|A0A538LIU9|A0A538LIU9_9ACTN Alpha/beta hydrolase (Fragment) OS=Actinobacteria bacterium OX=1883427 GN=E6G01_13160 PE=4 SV=1 +EAAPIPGPNGKSLGPSELVDAGLIPTYEPAADSQFYDALSSALNDRPGQMLALAAAYQESVDYPLYASVECIDSPHPEGSAAFRAFAQELASLSPRFGAAIANELLPCAYWSAPVRSVVGPVTAPDAPPMLVIGTTGDPATPYDQAVRVAQTLAHGRLLTFVGDRHAAYGASQCAADAEAAYFVDLTLPPEGTTCTR +>tr|A0A7K0C3Y3|A0A7K0C3Y3_9ACTN Uncharacterized protein OS=Actinomadura macrotermitis OX=2585200 GN=ACRB68_61920 PE=4 SV=1 +MAVFGVDYAWGRPGAAALKRSGVRFACRYLSHDTGGKNLTRAEAAELSAAGIWLVVVWESTASRALSGRAGGAADAREAARQAAACGMPADRPIYFAVDFDATAGQQAAINAYLDGAASVLGRRRVGLYAGLGPVRRAFDAGKITYGWQTYAWSGGRWDGRAQLQQYSNDHTVNGVDVDYDRAVAADYGQWRVGVSPQEDDMPDYVSVGTTTAQPLPPGAWTTVVWDAEYSDAGRQHADKGGPGVLNGPARYSLTAAVRIVGVPAGTRIQARAIEADAGGFEAGAVQDFTSAGEETNLLYGISADSVAKDRSVRFQVLQHGAQAAAIGGGSAKLLYWRG +>tr|A0A173CWC4|A0A173CWC4_9NEOP Cytochrome c oxidase subunit 1 (Fragment) OS=Bucculatrix sexnotata OX=687279 GN=COI PE=3 SV=1 +IFGMWAGMVGTSLSLLIRAELGNPGSLIGNDQIYNTIVTAHAFIMIFFMVMPIMIGGFGNWLVPLMLGAPDMAFPRMNNMSFWLLPPSLLLLISSNIVEMGAGTGWTVYPPLSSNIAHGGSSVDLAIFSLHLAGISSILGAINFITTIINMRTNKMSFDQMPLFIWAVGITALLLLLSLPVLAGAITMLLTDRNLN +>tr|Q0JI52|Q0JI52_ORYSJ Os01g0823700 protein OS=Oryza sativa subsp. japonica OX=39947 GN=Os01g0823700 PE=2 SV=1 +MESATEKVRRTPSSCLLLRISDICKVRSVGVAPTVREKPKADGSATGESSEDGGAHLKVHPHHVSDHESVSECSSARCEEAFVERLLDAISGLKLSYVNLQQALVPYDPEEITIADERFTSELQETAGLKDLYVNMNKWRNPMYQCYVGSRIQEQQKLAVELQAGMCKRDSEIVCLRAELDELERKNMELEEKIGQSALQKEGSFAIGMGVSTDMFMELFELSTKSIHDFAKLVVRWMKLSRWNLGNLTSPIDNSVVYDKRSHKNYAVEAYFACMMLMGHKEEYLSLDVFDYVMSFSDPFDALMKAPDSCFGRFCREKYLAILPPSMEDSFFGNLDHRSFVENGGHPRTPFYQAFVTMSRYVWASLTVARSLNPRAEMFYVKGGTEFRSKHMECVPSKITKEGDKVSVGFTVMPGFKIGCTVIRCRVYLSMVNERNF +>tr|A0A7S0VQU1|A0A7S0VQU1_9CHLO Hypothetical protein (Fragment) OS=Polytomella parva OX=51329 GN=PPAR00522_LOCUS21823 PE=4 SV=1 +KGNQYTNRNYNPHHNDRGDGDEGNSSHCSSDDDGNVDRVATTLKKGNKDSELIDSSFHYREMEVKEERSDTWSGLSNLFHPIASPSAEQILEQLQMIGRTRQLERDRLKQGLQGEESSAESHVAS +>tr|A0A7N0VGN9|A0A7N0VGN9_KALFE Smr domain-containing protein OS=Kalanchoe fedtschenkoi OX=63787 PE=4 SV=1 +MASSTPPPHCSITTTNPRSHSRTKSNRVVSLTNPTPSAAAAGAPPCCASSKPLCPAKTHPLASASPSSPRNPNFPSLSDFSGRRSTRFVSKMHFGRHKPSPTSSRHTSVAEDALHQVIRVNATDHRALDAVLHAFAPNLSGSDDYTFLLRELGNRGDCSKALRCFDFAVQRERRKNEQGKLATAMISVLGRMGKVDLARKVFDDAAAQGYGNSVYAFSALISAYGRSGYCDDAIQVFEAMKKSGLRPNLVTYNAVIDACGKGGVEFSRAANILNEMLSDGVLPDRITFNSLLAVCSRGGLWEAAQNLFSEMIYRGVDQDIFTYNTMLDAFCKGGQMDLAFQTMSEMNSKNICPNVVTYSTMIDGYAKAGRLSEALNLLEEMKYAGIGLDRVSYNNLLTIFAKLGRFDEVVNVCKDMESSGIRKDTVTYNALLSGYGKQGKYDDVKKVFQAMRHEHISPNLLTYSTLIDIYSKGGLYQEAMEVFTDFKKTGLKADVVLYSALIDALCKSGMVETAISFLDEMTKGGIKPNVVTYNSIIDAFGRSAIKDFQTDSPAEASELQNESSSSTLPPARSQNGNRIGSGFIKILGHLAAEKPCYLKKYDGKPLEILCILAIFHKMHELEIKPNVVTFSAILNACSRCSSFEEVCMLLEELRLFDNKVYGVAHCLLMGCRGSVWVQAQSLFDDVKQMDSSTASAFYNALTDMLWHFGQKQGAQLVVLEGKRRHVWENLWSDSCLDLHLMSSGAARAMVHAWLLNIRSIVFEGHELPKLLSILTGWGKHSKVVGDGTLRRHIEALLNSLGAPFRLAKCNLGRFISTGINTYMIMMLPSL +>tr|A0A2V6QIG5|A0A2V6QIG5_9BACT 5,10-methylene tetrahydromethanopterin reductase OS=Candidatus Rokubacteria bacterium OX=2053607 GN=DMD80_16590 PE=4 SV=1 +MRLGLALPNASPEGRPLTGPALIAGTRAVERAGFDSLWCFDSIGRGSMIPDPLIAVSVAATVTERLTLGTGILQVPLRRPVELAHRILTAHLICGGRLLLGVGAGSTKADFDAVGVDFDTRMQQMEEALALMRRLWQGEKVGPAQLNPWPAALGGPKLLIGSWAGSRWIPRAAKDFDGWIGSGARSSVAALRDGIKRFREAGGQRAIATNIPVDLEAPTAPMPEEGQFHLRCDPTTAAQRLRMLADLGFDDAVLVTRRYGDADLAALRALWP +>tr|A0A7Z7G3P1|A0A7Z7G3P1_9BACL UPF0310 protein SAMN05518670_2319 OS=Paenibacillus sp. OK076 OX=1884379 GN=SAMN05518670_2319 PE=3 SV=1 +MNEQAKHDLMANNTEIQQTHTREFLSHQLDIEAESDEGNRYWIGVVSASHVEKGVEGGFAQLCHGKVASLRRMNAGDWLIYYSPRTSMQGGKVLQAFTAIGRIIDDQVYTYHVSDSFVPHRRNVHYYPCQQVKIADLLDQLILTRGQARWGYPFRYGHLQIQREDFLKIAVAMLGTEAENLLTGNKKN +>tr|A0A1I0CXW7|A0A1I0CXW7_9FIRM D-alanyl-D-alanine carboxypeptidase OS=[Clostridium] aminophilum OX=1526 GN=SAMN04487771_100922 PE=3 SV=1 +MKSNLFHWKRYLWILSAAGILTVSATPAVVFAAPETGAASTAAQSGSEASAIAETTETATKALYGTSPQQAQSARVASIAAQAAATAGTGEEASAAVASIAAAAAETAAQEVTEDAQAWPSDTGIFSEAGVVIDVDSGCVLFGQNMHQQKAPASITKILTALVVLEHVDNLDQMIPYSHDAVYNTESGSGNKYGLDEGDSLSVRDALYLMLLASSNQSANALAEYVGGTREGFVQMMNDKVAELGCRDSHFANPSGLNDDTQLTSCYDMALIGMAAYRNERLLEIGSTRSHKITTPTKNNPNGINVKMEHKLLITEDPNSENYYPFAVAGKTGYTSIAGQTLVTYAVKEGRRLIAVTMKSRQKTHYTDTINLLEFGFNRFENVPVAEQETAISQASGNVTLGDSTFDAADLSVEETVMTVPKNLSVTDLERTVLTGEDMPAPAPDGAAAYIQYSYRDRVTGGAYVTAESLRAKETGATGTEGNRRTKAESGDNIFSKAAKGIGSFFAGIGDAVRNLSVPGIIAIAAVAGLAILTVIAFFTYSVQKRRENERLERRRTRLREMGVSEEEFAEMVGRRRRSRGEKNSSRDFSAETYRVTEAGNSPADHHGRAEDVKSPAVPQTEALKTETPENPDDSFLDEDFGMDGELITEEDPEKRQPHV +>tr|A0A445NDM6|A0A445NDM6_STRNE Putative glycosyltransferase EpsJ OS=Streptomyces netropsis OX=55404 GN=epsJ_2 PE=4 SV=1 +MVKLSVIVPFFNVQTYAPDTLRSLRANARADFEFILVDDCSTDETPDILRRAERELPGAVLVRHEKNGGLATARNTGLERARGEYITFLDGDDWLAPGYYEQLLDVIEGLGVEFVRTDHVQCTARARTVHRVPHGRRGVVLSPRDAILPADRSTSVDYAYAWAGIYHRRLLDEGLLHFRHGLRTAEDRPWIWRLHREARTFAVAGLLGVFYRRGVASSLTQIGDVRQLDFLRAFDQVIDETSRDADAEILLPKAVRTYCAIISHHLGSIERFEPAVARTLRSKSAAALRRMPQDLLKDALNSMDDDRAARLRRLRRRPAPAGVTG +>tr|A0A1G5TNQ2|A0A1G5TNQ2_9HYPH Uncharacterized iron-regulated membrane protein OS=Methylobacterium sp. UNC378MF OX=1502748 GN=SAMN02799622_03000 PE=4 SV=1 +MSRARSFRQSMAWLHTWSGLVVGWVLFAIFVTGTASYYRTDISHWMRPELSDSSSDPAAAATRAGAFLQKAMPNAAGWSVRLPNAENPAVEVYWWPHPGGPYHHALLDPATGEPARVRDTRGGDFLYRFHFELSLPPIWGRWIVSVCAMILLIALISGIVTHRRIFADFFTFRRDRSAQRGWLDAHNVMGVLALPFHLMIVYTGLVTLSAMLMPWGMKAVYGNDPLRYYAEAGLATPGVAPAGRPGTPLPLGELVARAAAAGGAVPEVMLVTRPGDAGATVTAYFEEPMGLAHLHPQIAYGADTGSEIARVGEPGAATRTGAVMAGLHEAHFAAAPLRLLFFLCGLMGAATVASGLVLWTVARAPRGADPEGFGLRLVRLLNIGTIAGLPVGLAAYFLANRLLPLGLEARADWEIRVFFAAWITAAIAASLYPRRRAWSVALAVPACAFLVIPVIDAVLVGQPRFLAFDAAMAVVGLALVAGSRLAARPRPAESRLVEANLSRTVEA +>tr|Q71P98|Q71P98_9BRYO Protein PsbN OS=Homalothecium laevisetum OX=184649 GN=psbN PE=3 SV=1 +MLTLCTIILIKLIKNKPFFWNYLKMETATLVAIFISCSLVSFTGYALYTAFGQPSKELRDPFEEHED +>tr|A0A3B0J0J5|A0A3B0J0J5_9RICK Uncharacterized protein OS=Wolbachia endosymbiont of Aleurodicus floccissimus OX=2152762 GN=WBAF_0556 PE=4 SV=1 +MRLKLAYTNTIHLKHDFNIGDIETKKLCHSKIMLRFQEKAVSSQISCVTEINFGRIAIATANDKQASVYYIFKQNVKHMGNHVLFKVRVGRVATHIFVSDPNLAKIIKCLTIRVMIYIIMAII +>tr|A0A4T0N0J3|A0A4T0N0J3_9BASI Tudor domain-containing protein (Fragment) OS=Wallemia mellicola OX=1708541 GN=E3Q01_03257 PE=4 SV=1 +SAEEISQYELQLEQVKETLTADPTNAELIGLKDELSNLIDLLKASTAPAQTAPSTSEQPPQSKGKDSKDVKIFKAGEDIMAKYNDGKFYPAIVKAVSGIHPKIVYTINFRGYEGTQQVQPNQIKAMDPHTKISLTNKRQRDSQKSLTSIEDEKERERKRKKSEKKAEAREQKNSEMNNKQNNWQKFAKKANKKGIHIAGSEGRSIFKTPDNPYGRVGVTGSGKPMTEQKSVRDKHVFVPTLEDQ +>tr|A0A2I2A5J4|A0A2I2A5J4_9GAMM YigZ family protein OS=Hydrogenovibrio sp. SC-1 OX=2065820 GN=CYQ88_04895 PE=3 SV=1 +MAYLEPVNAVVEETEIKKSRFIAYAKKVVSRQQAMEYVSELRVAYPDARHVCWGYVIGDPNNSTNSGCNDDGEPSGTAGKPILSQIHYSNIGNVVVVIVRYFGGIRLGAGGLVRAYRESAQKGLKALQTEDYIPKLELSLDCPYEEEALIRRVMASLQGEITDAIYTTQVNLLVSIPTHSLTLLQDQLASLSATIIEN +>tr|A0A7W8SVI5|A0A7W8SVI5_9BURK Membrane fusion protein (MFP) family protein OS=Paraburkholderia sp. WSM4180 OX=2723099 GN=HDG39_006657 PE=3 SV=1 +MNFNIFKRGKKKAKLTKGDAAFMSDIRESLLTQSTPGSMIMLYVILTVLAGGLTWAYFARVEEITHGEGTIISKSREQVIQSLEGGILEQLDVREGDIVKKGQVLAKIDPTRAETSYREAWSKSVGLKATIARLRAEAYEQPLTFPDDVKAVPTVVKQETLAYNARRRALNDSVTALEKSYSLSNKEIGLAEPLAAKGLVSEVELLRMRRQANELRSQIVERRNRFQADANSELTKLELELAQTSETVVGRADVLQRTTVIAPVYGTVKNIRFNTIGGVIQPGEHIMEIVPLEDQLLVEARIKPSDVAFLHPDQPSTVKITAYDYGIYGGLKGTVQHISPDTLKDDQKAAAGRPDATYYRVLVLTDSSELHAGGKSLPILPGMVATVDIRTGEKTILDYILKPIFKAREAFRER +>tr|A0A421K520|A0A421K520_9GAMM Alpha-amylase OS=gamma proteobacterium symbiont of Stewartia floridana OX=1968599 GN=B6D75_05870 PE=4 SV=1 +MSVDELDTRLLGHLSLLYGEQQAATLLPKLHELIGRHIEVRQGKRLEIPRWDEKDSVLIGYGDSIQYPGMTPLASLKQFLDRRLNGVFSMVHVLPFFPYSSDDGFSVSDFRSVNPELGDWQDIRELGENFSLLFDLVLNHMSREHLWFVNFVHDEEPGRDYVVQVSPDENLSMVVRPRSTPLLSRVRTPRGMLDVWATFSNDQIDLNYANPEVLLEFIDILLDYIRRGARAVRLDAVAFLWKEIGTSCIHLPQTHEVIKLFRTLLDVLEPGAILLTETNVPHQENISYFDQGDEANMVYQFSLPPLILHAIMCQTTEFLVPWARSLEQETLPEGCTYLNFTASHDGVGLRPLEGLVPDEDLDELLDMMRRRGGYVSMRATTEGRDRPYELNISYFDAFAAEDDDVDPWHIARYMLSQTLPLSFRGIPAVYINALGATPNDPLGVERTGMTRSINRRKWDGAELERLIDLPLTDAGQVFPEYIRRLRIRSGIKAFHPDAPQRVLDMPDGILALERTSLDGGQRVYAIHNMTGDLRSVDISALGGASRRWFDALHQVVPDMDGDGVRFRPYQTVWLMAKG +>tr|A0A182WP14|A0A182WP14_9DIPT Uncharacterized protein OS=Anopheles minimus OX=112268 PE=4 SV=1 +MSPCVNFRLANLLSHKS +>tr|A0A6P5JSA5|A0A6P5JSA5_PHACI probable aminopeptidase NPEPL1 OS=Phascolarctos cinereus OX=38626 GN=NPEPL1 PE=3 SV=1 +MANVGLQFVASAGDGDPQSRPVLLLGQLQNLHRVPWSHLRGKLQPRVTEEIWQTALGTLNPNPTDSCPLYLNYATVAALPSRVSRHNSPSAAQFITRLVRNCLPGGTNRCILMVCERSEVFASACALARAFPLFTHRSSASRRTEKTVTVEFFLVGQNNGPVEVTTLKCLTSATEGVRLAARIVDTPCNEMNTDNFLEEIKKVGKDLGIVPTIIRDEELKQRGFGGIYGVGKAAVHPPALAVLSHMPEGATQTIAWVGKGIVYDTGGLSIKGKTTMPGMKRDCGGAAAVLGAFRAAVRQGFKDNLHAVFCLAENSVGPNATRPDDIHLLYSGKTVEINNTDAEGRLVLADGVSYACKDLGADIILDMATLTGAQGIATGKYHAAVLTNSEEWEAACVKAGRNCGDLVHPLVYCPELHFSEFTSAVADMKNSVADRDNSPSSCAGLFIASHIGFDWPGVWVHLDIASPVHAGERATGYGVALLLSLFGGASEDPLLNMVSPLGEDADPQGDMERDCKRRRLV +>tr|A0A5J6X1V6|A0A5J6X1V6_9GAMM Histidine kinase OS=Aeromonas simiae OX=218936 GN=FE240_18420 PE=4 SV=1 +MPRSLLSRMLLLLLLAILLSQTILTGIWMQQIQKRELDGMLSTTRNLAMSAASTVSFFKSLPLQYRHIALDQLRNMGGSRFFVSLNEEEIRINPIPDSERKTMVLSEVKAILGNKLSDTMAIKVNFSHPEDLHVFNNDTLLADLPSSWARYTLSLEPINPPVLVIQIEIKRGEWLYLAALLPAPYMTLDDTVMPANQVRFIALMTVFLCFFTFLLVRWQTRPLRRLAKAAVNLGKDIDQPSLKEEGASEIVAATRAFNIMQHRIRRYIGDRELLFSSISHDLKTPITRLRLRVELLDDETQITKFNKDLDELELMVKGALQTVKDTDIHENMAQIDVDGMLHQLAESLNLREERLTIEGHCKHPYRGKPLALKRCIANLVDNGIKYGKKVRIIILDDDEMLILFIMDEGPGLPEEQIERIFEPYYRFDTEKPGNGLGLGIARNIAHAHGGDLVLENRPTGGLQATLSLPRQ +>tr|A0A1Q6SWC2|A0A1Q6SWC2_9FIRM Aspartate--ammonia ligase OS=Subdoligranulum sp. 60_17 OX=1897022 GN=asnA PE=3 SV=1 +MSHITIPEGYQSLLGLYDTQKAIGLIKTIFQEKLCMALHLKRVTAPLFVMQGSGLNDDLNGVERPVSFDVPSLNEQAEVVHSLAKWKRYALYKYGFRPGQGIVTDMNAVRRDEELDNLHSIYVDQWDWERVITADQRTLEFLQETVRDIVDAVCATSDELRWKFPELKNNIHLGREVAFITTQELEDRYPDFTPKQRENAFAKEHGTVCIMQIGGRLKSGQPHDGRAPDYDDWTLNCDILFWHKPLDCALELSSMGIRVDADALRRQLDAAGCPQRAELPFHKLLLDGTLPLTMGGGIGQSRLCMLLLGKAHVGEVQVSLWDDATVQACRNSGVELL +>tr|A0A7W1W6Z4|A0A7W1W6Z4_9BACT S46 family peptidase OS=Acidobacteria bacterium OX=1978231 GN=H0X49_12420 PE=3 SV=1 +AAENLFNKFEGKERRSAEETFAESIAERENFDTPEKVIKLYDLSLSDLQKRYPNIVEFMTALGQEKSAVTARTAKFNGEIDRLRLLYQQGMAEMKGIQPYPDANSTLRFTYGNVRGYSPREAVTYSPFTTLRGMIEKDSGEIPFDVPQKLIDLQRTKDFGRFGVGDTVPVNFLATTDIIGGNSGSPIMNAFGEQVGIVFDGNYEGLGNDLFYNEAVGRTIAVDIRYVLFVTEKFGGAGWILGEMNIKGRTPVKARSAAAE +>tr|A0A1Z2QUG4|A0A1Z2QUG4_9ASTR Ribosomal protein L14 OS=Legenere valdiviana OX=2010882 GN=rpl14 PE=3 SV=1 +MIQPQTYLNVADNSGARKLMCIRIIGASNRRYAHIGDVIVAVIKEAVPQMSLERSEVVRAVIVRTCKELKRDDGMIIRYDDNAAVVIDKDGNPKGTRVFGAIAEELRQFNFTKIVSLAPEVL +>tr|A0A239R358|A0A239R358_9FIRM Exodeoxyribonuclease III OS=Lachnospiraceae bacterium OX=1898203 GN=SAMN06297422_103139 PE=3 SV=1 +MKLISWNVNGIRACVNKGFMDTFNTLDADILAIQESKMQKDQLILETPGYHQYWNYAKKKGYSGTAVFTKKEPLGVTYGMGIEEHDQEGRLITLDMGDYYFVCVYVPNSQNELKRLDYRMKWEDDFRKYLNDLKAEKPVIICGDLNVAHEDIDLKNPSANHRNAGFTDEERGKLTELLESGFTDSFRKLYPDMTDIYSWWSYRFNARERNAGWRIDYFLVSDDIKDKISEAGIHTDIYGSDHCPVELDIDL +>tr|A0A498QHK7|A0A498QHK7_9MYCO Uncharacterized protein OS=Mycobacterium attenuatum OX=2341086 GN=LAUMK136_05508 PE=4 SV=1 +MPHAESTVGPALMVAHSGASSHASAPGRDRLEPRAVSRELRASDPEVWQTGLHAASEDAPLRVVGNTPSGMFVDGRRKGSVTVSDKTIVRFGDPTGGKALTFEVVRPSNSPEEQRREQRPSDQSDGHTGEADPGVVRAGAAAAARRRELDISQRSLAADGIINAGALIAFEKGRSWPRERTRAKLEEVLQWPPGTIARIRQGESVGYQAPSPTAQADDEAQPTEGPASLIAQAVAAAVDTCSLAIAALPPPEDPEFTERAAPILADLRQLEGIAVQATRISRITPELIKALGAVRRYHDKLMTLGATAPGATLAQRLYAARRRANLSTSETAQAAGVAEEMIVRAEAEEALPAEAAEAIEALIHQIN +>tr|X0B5K4|X0B5K4_FUSOX Uncharacterized protein OS=Fusarium oxysporum f. sp. raphani 54005 OX=1089458 GN=FOQG_17891 PE=4 SV=1 +MVGRPKETSACSGKSGPGSRPDNPVGRGSVWGPEEGSSPARNRASARGTAGRLSMSSRSLYTGRRGRTRMSVGQEDGI +>tr|A0A345E3A3|A0A345E3A3_9EURY Sodium:calcium antiporter OS=Haloplanus rubicundus OX=1547898 GN=DU500_09665 PE=4 SV=1 +MRRQALTALGGAAALTLPWVVTYLSGMAHSLATGTVVLVSGLSVLGASFLLAWGAETAEKDVPRAFAIAVLAVLAVAPEYAVDALYAWNAGVHAGTARGVEAGNLAVANMTGANRILIGIGWAGIALFTVYRAGSGDDPAVESRSGFLADAVTLDHDIGLEIVFLFLATLWAFLVPLGGGIDILDMAFLVGLYIAYIAVILKGDVDPDEAHVGVPAYLQRFPKPYRAATVIGLFVYSGLMIFTAVEPFAHGLEQLGQNIGIPSFFMIQWIAPLASESPELIVVVYLVNKARSTAGFNALISSKLNQWTLLIGTLVVVYSIALGQYGALPFDQKQSGEIWLTAAQSFFAISLLVNFEISVREAIVLLVLFLTQVLSEFLLIRGILELPISDYQLLLVFTGIYIVLGTTLFVARRHALGSIVRDSAGTVSDAFSSSGEPRGAD +>tr|A0A1E5AGD2|A0A1E5AGD2_9RHOB Peptidoglycan-binding protein OS=Rhodobacteraceae bacterium (ex Bugula neritina AB1) OX=1868286 GN=AB838_08000 PE=4 SV=1 +MTPPRSLLRGRQAPPLLLALLATLAACVQPQPGGPGSETGRYAPPGAAPGTCWSKHTAPAVIETVTRQVLAEPEQQDANGRVIRPATFRTETRQEIVRPRQEQWIEIPCPAMMTPDFIRTIQRALTARGLYRGPVHGRMDAATRRAVQRYQAPLGPDSGTLTLTSARRLGLVAVPG +>tr|A0A0K0DCJ6|A0A0K0DCJ6_ANGCA Ge1_WD40 domain-containing protein OS=Angiostrongylus cantonensis OX=6313 PE=4 SV=1 +MGMGDPCVPADHLSPSLARIGAYTAQNDITITLLIIGRSCIVNLGAILFTSVSVIYSSTLDGSDGVIKFANGNNVRALKGRFLTVQGDLIAFRFFNEHTGDVIRIINRVSRNRRLIKGFSKAPVDLCFATHLPLLAVVDGESNLHVYSVASDCQDVETYINIMNWPGSTSNSTPRVVWCPYVAENPSDPSDVVNMLALSKKNSVYVVNLSILKERGSRMTFEEALAVEEAVLSVEMEEDVTAVCISPDSTAVAIARADGVVSFYVMNSNESGLKFAHTWNPQMNRPIVELFFLDGARHIKNQEQFWRHCLVVAEGGRRLALFECENWRCLGRVRFESSVEMATFAVHVDPQARYVHILDIDGSNVFCIELEYSDHPRFAGVTQVTFSHPIIAIVPYEHVYIFIEYSLDDEFDGDRTRNEVLAHYIAIGHRSLLQLDVHLELAELPKPNVDVVPLIKTDAGRDEAERNNEGPSNLLTMVHPPAMNSTSTITYEKLLELVKDMSDKIEQLSVRVERADIERRSAATNEHILSQLQCFKEEFSLREDRLLANVSDLIETNHRETINVVRNALNENSVAVENSIQANHKVFFSAVLCELFTYDMNITYLLLCFLKIVDNLKLPYCSSA +>tr|A0A1P8LAL0|A0A1P8LAL0_9INFA Polymerase basic protein 2 OS=Influenza A virus (A/Washington/101/2016(H3N2)) OX=1936961 GN=PB2 PE=3 SV=1 +MERIKELRNLMSQSRTREILTKTTVDHMAIIKKYTSGRQEKNPSLRMKWMMAMKYPITADKRITEMVPERNEQGQTLWSKMSDAGSDRVMVSPLAVTWWNRNGPVTSTVHYPKVYKTYFDKVERLKHGTFGPVHFRNQVKIRRRVDINPGHADLSAKEAQDVIMEVVFPNEVGARILTSESQLTITKEKKEELRDCKISPLMVAYMLERELVRKTRFLPVAGGTSSIYIEVLHLTQGTCWEQMYTPGGGVRNDDVDQSLIIAARNIVRRAAVSADPLASLLEMCHSTQIGGTRMVDILKQNPTEEQAVDICKAAMGLRISSSFSFGGFTFKRTSGSSVKKEEEVLTGNLQTLRIRVHEGYEEFTMVGKRATAILRKATRRLVQLIVSGRDEQSIAEAIIVAMVFSQEDCMIKAVRGDLNFVNRANQRLNPMHQLLRHFQKDAKVLFQNWGVEHIDSVMGMVGVLPDMTPSTEMSMRGIRVSKMGVDEYSSTERVVVSIDRFLRVRDQRGNVLLSPEEVSETQGTERLTITYSSSMMWEINGPESVLVNTYQWIIRNWEAVKIQWSQNPAMLYNKMEFEPFQSLVPKATRSQYSGFVRTLFQQMRDVLGTFDTAQIIKLLPFAAAPPKQSRMQFSSLTVNVRGSGMRILVRGNSPVFNYNKTTKRLTILGKDAGTLIEDPDESTSGVESAVLRGFLIIGKEDRRYGPALSINELSNLAKGEKANVLIGQGDVVLVMKRKRDSSILTDSQTATKRIRMAIN +>tr|A0A0A9C7I2|A0A0A9C7I2_ARUDO Uncharacterized protein OS=Arundo donax OX=35708 PE=4 SV=1 +MRSKSARMRRLVPPTTFSRYRETSSGGRRKQSVLTTTKDCSSMGLWAIRGEHSLVLCSTSFLWVPAVRRVSAAGPPLAFPL +>tr|A0A834SHI8|A0A834SHI8_9FABA Uncharacterized protein OS=Senna tora OX=362788 GN=G2W53_041746 PE=4 SV=1 +MVGSLKPSRITRRKTCCASEPNTSVRVVFAIRSGFDAPIGVVLAWEERGSCLDIFRTRNRGRISKTLMDYEAKDLLLGVVLAWEERGSCLNIFRMKNHGRISESFMNYEAKDLLRKSADHVLTYSGRQIMVGSQKPSRITREKTCCASESNTSVHVVLANRTGFDAPIAVVLAWEERGSCLNIFWMTNRCRISETFTNYVAKDLLRKSEDHVLTYSGRQIKVGSLKPSRITMQKTCCASEPNTSVRVLFAIRSGFDAPIGLVLAWEERGSCLNIFWTTNRGRISETFMNYEAKDLLRNESNTSVRVVFATRSGFDAPIGVVLAWDESGSCHNIFRTTNLGWISETLTNYEAKDLLRNRLGMGGTWIMSELIPDDKSRSDIRNLHELQGKRLVAQSDLRNLHELRGKILSAQVSQTRWFPLYLRTGVVLMLQLESSWHGRSVDHVLTYFRMTNRDRISETFRNYEAKDCCANESNTSVRVVFVNRSGFAAPIAVFMAWEERGSSLNLFRTTIRSRISETRPFVLYLRTIVVLLLQLESSWHGWSVDLDLTYFGRKSRFKISESFTNYVAKDLLRNRLGMGGVWIMPYHITDDKSRPDLRNLHELRGKRLVALVSQTRRFALYLRTGVVLMLQLESSWLGRSLYHVLTYSERQIMVGSQKPSRITRQKTCCANDSNTSVRVVFANHSGFDALIGVVLAWEERGSCLNIFRMTNSCWILETFTNYEAKDLLRN +>tr|A0A7T9DJD5|A0A7T9DJD5_9ARCH Uncharacterized protein OS=Candidatus Diapherotrites archaeon OX=2026736 GN=IPJ89_04390 PE=4 SV=1 +MSASFKVVIILTAEAHHAEVLSGIHKQFKDFFDYSEQAVYIYLDDHHVVWNKKFGELVGYATPAAAFKSKKHFLELFVDASSQKKLVKAFSNAMESGAGSSNTIVWKHKSGKKKKTTTILVPIPYDGHLLALHFIQ +>tr|A0A8B6DBA9|A0A8B6DBA9_MYTGA Uncharacterized protein OS=Mytilus galloprovincialis OX=29158 GN=MGAL_10B009134 PE=4 SV=1 +MTTVPTTSELTTEPTTSEMTTEPTTSQMTTEPTTTEMTTEPTTSESTTEPTTSEVTTELTTSEMTTEPTTSELTTVPTTSDMTTERTTSENQNRTTTSELTTEPTTSELTTEPTTSEMTTEPTTSDVTTVPTTSEMTTEPTTSELTIEPTTSDMTTEPTTSEVTTVPTTSEMTTEPTTSEMTTVPTTSEVTTEPTTSEVTTEPTTSDMTTEPTTSESTTEPTTSDMTTEPTTFEVTTEPRTSDMTTEPTTSELTTEPTTSEITTEPTTSEMTTEPTTSDMTTEPTTMR +>tr|B7M9W0|B7M9W0_ECO45 Uncharacterized protein OS=Escherichia coli O45:K1 (strain S88 / ExPEC) OX=585035 GN=ydgC PE=4 SV=1 +MGLVIKAALGALVVLLIGVLAKTKNYYIAGLIPLFPTFALIAHYIVASERGIEALRATIIFSMWPIIPYFVYLAALWYFTGMMRLPAAFVGSVACWGISAWVLIICWIKLH +>tr|A0A7X8AQI6|A0A7X8AQI6_9ACTN DUF2142 domain-containing protein OS=Propionibacterium sp. OX=1977903 GN=GX412_13535 PE=4 SV=1 +MSRLARALVAIAVAAAALVVGVAWSFASPPVSSPDEDYHLGSIWCPPPAEESGCRMGTVDGKPVVWVPEVMAQRPCYVGRLGDSAACQDELSATELVPSIRFDQGDYPGQYYRIMHAFVGPDLDRSVLTMRVVNVVVAVLLVGAALVLAQPHAGRAATYALFAGLVPTGVFIVASVNPSSWAFVGLTTLWIALNSLAQASGTALRVANGALAVSGAVLASVARGDTGPFVAVIVLALGLLHVRRRPDRGWLAVAAITLAVGAWSYLGSGQAGVAPTVTDVEGRNFGEVLAHNLVEILQVPAGILGVGPWGALGWLEIPMPTSVHVPTISLAGMLLFQGLRRLDRRKALALAVVAGALLALPFYMLMRNLEIAGIQPRYVMSLLPLLFALCLLHPGAVAAYRFTRAQAVLAWVMVTTAHSVALLTTLRRYVTGLDGSYLLGRGGEWWWSSGPSPLAWWLAGSAAYGLAALTLVATAGIERPAASVGRHE +>sp|P36783|VE2_HPV14 Regulatory protein E2 OS=Human papillomavirus 14 OX=10605 GN=E2 PE=3 SV=1 +MENLSDRFNALQDQLMNIYETAANTLESQIEHWQTLRKEAVLLYFARQNGVTRLGYQVVPTLAISEAKAKQAIGMVLQLQSLQKSQFGSEPWSLVDTSGETFRSAPENHFKKGPVSVEVIYDNDKDNANAYTMWKHIYYQDDDEQWHKSASGVNHTGIYYMQGTFRNYYVLFADDATRYSKTGHWEVKVNKETVFTPVTSSTPPESPGGQADSNTSSKTPTTATDSTSRLSPADSRKQSQQANTKGRRYGRRPSSRTRRTTETRQRRRSRSKSRSRSRSRSRLRSRSRSQSSERRSRYRSRSRSRQKEVSRITTTTRGRGRGSSSTSSKRSQRARGRGRGGSRGRRSSSTSPTSSKRSRRESESSRQRGISPSDVGKSLQSVSSRNTGRLGRLLDEALDPPVILVRGDPNTLRCFRNRAKQKFTGLYRAFSTAWSWVAGDGTERLGRSRMLISFFSFNQRRDFDQTVKYPKGVDRSFGSFDSL +>tr|A0A7Y4GUD3|A0A7Y4GUD3_9BRAD NAD(P)/FAD-dependent oxidoreductase OS=Bradyrhizobium australiense OX=2721161 GN=HCN58_21515 PE=4 SV=1 +MLNKVNKPKLVVIGNGMAGVRTVELLLDRAPDLYDITVFGSEPYGNYNRILLSPVLAGEKTVDDIMLNTEQWYDDNGITLRKGEMIEMIDRRTCEVVTREGARVPYDRLLIATGSNPIMLPLPGKDLPGVIGFRDIQDVEHMVQASTSYKNAVVIGGGLLGLEAANGLMKRGMNVTVVHLLDTLMERQLDQVAGGLLRKSLEERGMVFKMPAQTEAILGEDRVTGVRFADGEVIPADLVVMAVGIRPNVELARKAGLYCERGIVVSDTMQTYDGRIYAVGECVQHRRQTYGLVAPLFDQAKVCANHLAMKGFATYDGSVVSTKLKVTGIDLFSAGDFAPGADKEEIVMQDASRGVYKRIILRDKKIVGAVLYGDTIDGPWYFQHLRDGTDVSQMRERLVFGAANLGDGGHSGKNSVAAMSDDAEICGCNGVCKGTIVKAISEKKLFTIDDVRAHTKASSSCGSCTGLVEQVLAFTLGGDYSAAPKVKPMCACTDHSHDDARRVIVENGLKTIPDVMKFMDWKTPNGCHSCRPALNYYLLATWPGEYRDDQQSRFINERVHANIQKDGTYSVVPRMWGGVTTPDELRAIADVADKFNIPTVKVTGGQRIDLLGVKKEDLPAVWADLNDAGMVSGHAYAKGLRTVKTCVGSEWCRFGTQDSTGLGIKLEKFMWGSWTPAKVKLAVSGCPRNCAEATCKDVGVVCVDSGYEIHFAGAAGLHIKGTEFLAKAATEEETLEIIAALTQLYREQGWYLERMYKWCDRVGLDAIRNQVVDDVANRKTLFSRFTYSQQFSQSDPWAARAQRGVDRNEFTPLAELELA +>tr|A0A4P7ND20|A0A4P7ND20_MAGOR Uncharacterized protein OS=Magnaporthe oryzae OX=318829 GN=PoMZ_04838 PE=3 SV=1 +MAFAHQLGAARLLLRQHRFGLAQSSCRRNMATLSQKLSNEPAVIKPSAAEIKNKTLSSRNLEIAVRHLHADGLVVVEDAVPHADLDALNAKMVPDARYLQSLGENGPFNYNQGNLQQDPPPVAEYFFPSIFTNKIATQITSSILGPRPKWTFCSANSAMPPSSPDSPPQRQPVHSDADFDHPHHPFALVVNVPLVTMTLHNGSTELWLGTHHLSDLSAQEGAHGERASGRIKQRLLDARRSTRGPCQPVVKKGSVVVRDLRLWHAGMPNLSRDEVRVMLAFIHFAPWYRNPMRLRLGEDVKARIEDVAAELDVPVDWVGREEVLGEYLRRGFGNSYDFGQEA +>tr|A0A3D1Q1J9|A0A3D1Q1J9_9FIRM MFS domain-containing protein OS=Lachnospiraceae bacterium OX=1898203 GN=DER20_01345 PE=4 SV=1 +MAKNVERLQAREAKELIRREKQLGARSNKFYLIYLFMILSLIYITDEIASTISIQFQANIVTEFFVKNMGMEYGAGLSLFSAIGFISYPVTLLIIFYRPLADKFGRKPFLVINTLCMGLGLFLVYLSKDIYVYMIGGTLMGFMVSHDMQCVYILECSDAKSRARNYAIVKAVAILGTLLVPLLRATLMQNVSERWHVVYLVPAIVGFVMSLFALLFAKETNAFLIKRIEYLKTPIEEREQRSKEGREQNAQGGILTAVKFAFKHRQLRFLIIACCCFYLASLGTATYSTVMAKSALMTEEEITLALFLYPVGNALFTLISGFVSDKFGRKVTIVAMSCSALTCYLLFIFSGMFKWTPYLTGFAIGGFMGSYWGAGDTIGGIMFSESSPTNLRSSVTVINTLLNGVMGGLATVITMILLPIIPERMFGYMYLGLTVPGLVGAIVIMWLFVGETRGLDLKTVTGTEWDKPKKVKEEQQEGE +>tr|A0A484R0A0|A0A484R0A0_9ZZZZ Uncharacterized protein OS=plant metagenome OX=1297885 GN=ANDA3_0622 PE=4 SV=1 +MTPCLLLRGMCGDLMWAGRGRIAEKRGEMAPLRHRGKSLVSFAGAALRGTPAWCAMPRRRACRHRLRHQFGAGMSTR +>tr|Q5DYX4|Q5DYX4_ALIF1 DUF4123 domain-containing protein OS=Aliivibrio fischeri (strain ATCC 700601 / ES114) OX=312309 GN=VF_A0952 PE=4 SV=1 +MHEQSYLVVNPLEDKEVIERFYHYGGGNAFPLYLDTEFDAQKEIGPWLLPYPPKEFLAYFANKPSGFRIYFSDDIETHIQHWKSLTFAGLDGELVLFRYYDRVVLEAMLVSFNQKELSLFLGSSECIEIISSVGSLCSYENSASQVSYKSEPWWKIEKHHSSYSVERHAWITERLAWQRLPSLMKEIYEKNSDIQSQLINHLIEGRAHRLENEELEAYSMNMLIKDSKQQSHDIYEAWYLDSAQIKTVKQVENLVTRSELQQGTQI +>tr|A0A132B1M6|A0A132B1M6_9HELO S-adenosyl-L-methionine-dependent methyltransferase OS=Mollisia scopiformis OX=149040 GN=LY89DRAFT_633225 PE=4 SV=1 +MHDDEEDTNAIEAESSDGFDGDSAYAGSSAGSLTETLASTIARGIEEHGRTYAAYGNEEYGLPIDEEELDRIDMSHAKYSMLLEKRLFVAPINPQPQRVLDIGTGTGIWAIEMADKYPSAEVLGLDIAPTQPSWVPPNCIFQIDDVEMPWTLGVETFDYIHARDLLLSIRDWPRLVEQSFDHLKPGGYLELQCVYPRIRCDDGSTPPQTGLEQFSAHAQEASVRIGCPLDACTRYAEYMSSAGFEDVVEKRFKMPSAPWAKEKRMKLIGAFEMHNLLKGISGMSLRMFSKGYGWSREEIEVFLVQVRKDIQNLKYHTYYEFIVVYGRKPGGSGATANHSSV +>tr|A0A6H5HNS4|A0A6H5HNS4_9HEMI Uncharacterized protein OS=Nesidiocoris tenuis OX=355587 GN=NTEN_LOCUS22830 PE=4 SV=1 +MIDDLRFLRLSAIPPWETFTLSIVRLLNPFRPMGPSCVIAFKDVFSFHQSLVITCHFGSTWKLCTTAPFSPTNDPHNWIIIGLHWSHNEPYCGMEMIPASLHCRRVTALRKFTRWQQLKEPATISWRILVKTVVIAGLLSVFIDQCERETILNCKGSGAHGRSIWRVEFGHNGDRFLRPSLVVFEDDTDMSFDLDVEYLTPHGSTAPWNPLLVSHRCFLEALFHSSGTQSEVQNRFISEYAEGLKSWAVISVGIVSTVLLNLIMVKQNKKSEARLLDEQTNYEGEFPFPVPDSVFADVERRTSTKRATKNSSGDIINIEPPVKTDRRMSGDHAFTTDPLEEQARSSPRVVAWGPIDRKTPSQMSNINKDPTIQQNLEGITEMKGSPEIYPSKEFSRRISQEGPSGAQRPSNAMSPMVAANPKGVHTFTDSSKSSLGSQVTSDMSMSMTSLSWVDATVEREPFEYKDEQLPRERGNPTNRSV +>tr|A0A5W0I3M7|A0A5W0I3M7_SALTM Transcriptional regulator (Fragment) OS=Salmonella enterica subsp. enterica serovar Typhimurium var. 5- OX=1620419 GN=AT998_25380 PE=4 SV=1 +MRNVIIYGINWTNCYALQSIFKQKYPEKCVKTCNSLTALLHSLSDMPDAGLILALNPHEHVYLFHALLTRLQNRKVLVVADRLYYIDRCVLQYFGVMDYVLKDELSCAIRSEREKLRLPEAWLRFCHRPQKKTVAATYAFNAGETPEEVLFNINQYAWWNLPPGVTQAKYALLILLSSGHPAIELAKKFGLGTKTVSIYRKKVMYRLGMDSSPLSLFRGLKLDAHLQRTAFAHNPAVPDDNCALP +>tr|A0A177BXN8|A0A177BXN8_9PLEO Peptidase C45, acyl-coenzyme A:6-aminopenicillanic acid acyl-transferase OS=Paraphaeosphaeria sporulosa OX=1460663 GN=CC84DRAFT_1169559 PE=4 SV=1 +MDAQKQNLIITKITQAGKPTIVQVTEAGIIGKIGFNSSGVGTLLNAIKVHGVDASRMPVHFGLRAALESNTAREAVQKLESYGMAASAHILISDSSEALGLEFTKSTFAHCKADGKGRIAHANHLLLEHPGEVDTVWLKDSPVRVKTMTNNTEKLSTEPSWEDISRLFEDEHGFPHSICRQGQDGGSTTLFNIVIDLKAKKGVVRLGRPTQAEETVSLEL +>tr|A0A7R9KXX5|A0A7R9KXX5_9ACAR Hypothetical protein OS=Medioppia subpectinata OX=1979941 GN=OSB1V03_LOCUS10746 PE=3 SV=1 +MSKKPEDIVVSGMSGRFPLSVNTDEFAKNLFSGVDMVTEDDSRWPIGLYDMSGRMGKLDCYKDFDSPFFGLNDQIIAESDPQARLLLEVAYEAMMDAGVNPQELRGTKTGVYVGVSIYSMTDGYPEDGQPDLHESMQTLMVQTLANMKTLYSSRISFANDFKGPCLVVDTACSASLSALTLACNDLLLGNTDYAIVCGTHMDFEPFIFQFQQELGICSPDGMSRVLDAAANGFVKAEAVCCVFLQRRQCARRLYGHILTARMNVDGHKKMGMQRRLYGHILTARMNVDGHKKMGMFFPSSEAQEELMRMTYTDAGIDPKKMTFFEAHATGTKVNYMHSCYN +>tr|R5P6Y1|R5P6Y1_9BACT Uncharacterized protein OS=Prevotella sp. CAG:1092 OX=1262919 GN=BN465_01592 PE=4 SV=1 +MKQLLFLLIMITGACTFTSCDKSDDTVDPIKENLFNSKYIVNDAGCCVLDGLQPIRAEIINDEVKGYGWKVIGIYKIMDNGKLSQKDYRDMVYGSGYTDYWFKADNNLIGFLHGDVSGKNYINTEWSYDDSKGYIMRYSADLSISERYMQVLYVATLQGKEFYLYTIQKLGYTTIKNDTTKPFYGLVIYQRMTDKELAEIKKEYKLQL +>tr|A0A1Q2H2K3|A0A1Q2H2K3_9GAMM Acyl_transf_3 domain-containing protein OS=Pseudoalteromonas aliena OX=247523 GN=B0W48_18560 PE=4 SV=1 +MIRINYIDNMKAAGIILVVLGHAAWLNESIYILIYSFHMPLFFFMSGYLASRQHPIKKALIKLNHRLIIPFGFFFFVSFCVWLPLHFFGGGQASNMPWFDPLFRLITAQADSFHINGVLWFFPCLIVISVLQIVIFSKMKLITAFITSAVILSFLLVNVGLIKTRFYWCISIYKFVDTL +>tr|A0A416WAN5|A0A416WAN5_9FIRM Uncharacterized protein OS=Eubacterium sp. AF15-50 OX=2293103 GN=DWW50_03425 PE=4 SV=1 +MTNNEIWENIRHNNMKRDGVNNPIKVDNFVYEIYSLMKERDFSIIESDEIVKSLSGLIENDKKLILREPLKTVEKYNKEG +>tr|A0A7X1RI95|A0A7X1RI95_STRMT GNAT family N-acetyltransferase OS=Streptococcus mitis OX=28037 GN=GEZ71_00850 PE=4 SV=1 +MELRRPSLADKETVLEMMEEFEKYQSPHDGGFWDTENFSYEEWLESNQNQEMGINLTEGWVPAIQLVAFSVKGKAIGFLNLRLRLSNFLLEEGGHIGYSIRPSERGKGYAKETLRQGLQVAKEKNIKKALVTCSVNNPASRAVILANGGLLEDVRDGVERYWIEVANE +>tr|Q2VZI8|Q2VZI8_MAGSA Predicted membrane GTPase involved in stress response Membrane GTPase LepA GTPase-translation elongation factor Translation elongation factor EF-1alpha (GTPase) OS=Magnetospirillum magneticum (strain AMB-1 / ATCC 700264) OX=342108 GN=amb4183 PE=4 SV=1 +MELRNIAIIAHVDHGKTTLVDAMLRQSGTFRENQQVAERVMDSNDLEKERGITILAKCTSVEWKGTRINIVDTPGHADFGGEVERILSMVDGVVVLVDAAEGPMPQTKFVTGKALGLGLRPIVVINKVDRGDARPHEVHDECFDLFAALDADDNQLDFPTMFAVGRDGWADDSLDGPRKDLSALFDLIVAHVPPPRRDLEAPFSMLATTLEADPYLGRVLTGRIYSGTAKLNMQVKGLSHDGQLLDSSVSPSCWPSAASSAFRWKAPRRATSSPSPA +>tr|A0A5M4AG34|A0A5M4AG34_9BACT Uncharacterized protein OS=Prolixibacter sp. NT017 OX=2652390 GN=NT017_31240 PE=4 SV=1 +MKTINIFKAVAILFFTFAAFSCNDLFNWGTRDYSTQLEIGVTKGGAALKSATNDPIYYLDNCELITADAIRISIATPDPGGGDPIPIDDMQDKILPLHAVGNGVASDLIMLLPGTYVVTKFEVLQLVDAGNGGTKYETIMATPMQNSAFSGYVNTPLNYEFEVELYQKKRLLMEVLCFEPTDVASFGFVWTGVDVILGDEICLYVSQCTSNGTETWGPADYSATFYTMIDEQNVGEVYASSGTSSEGWICFPLWSGATDYGVGVHIVYDGSVEEDFIITAAEVNQILLDLQQEPVEAGTGYYLYEIPCPVVP +>tr|A0A1G2MCL2|A0A1G2MCL2_9BACT Uncharacterized protein OS=Candidatus Taylorbacteria bacterium RIFCSPHIGHO2_02_49_25 OX=1802305 GN=A2W52_04225 PE=4 SV=1 +MLEEQTPTQTYPPELKRIKTFQSDVEELIQKQQISKAAIALAESERRVKKEEVSAQPSAPAPAYSAKILTLSGGLPPAAPKWNTSTLLAVVVLVLAVLGMGTGVYFFLKQNAPLQISPPRVNVKSGTAITLNTKESREKIVEKIRSHVQALSVPQNEVRVIPIVLDGKTITTTELLEEIEASVPAALLRALGTEPVLGVHGFRGGQPFLLFSVHSYDHAFDGILSWEPNLLREVGPLFGISVRNILGRVASTTSDILENTLTIKDVIIRNKDARVVLGPGEEKIFLYSFLDKETLVLTTNTDTLQFLIGKAWGGRLR +>tr|A0A3Q0R773|A0A3Q0R773_AMPCI Interferon regulatory factor 8 OS=Amphilophus citrinellus OX=61819 PE=4 SV=1 +MSNSGGRRLKQWLMEQIQSAQYSGLQWEDESRTMFRIPWKHAGKQDYNQEVDASIFKAWAVFKGKYKEGEKAEPATWKTRLRCALNKSPDFEEVTERSQLDISEPYKVYRIVPEEEQKHGKSPMMAVTATTSSGEITDMDCSPELEELIKEEEGCSIQASPEYWSQGSINAFPLHQDPLPSSSLSSALCQMMISFYYGGKLMHSTLVTHPEGCRISPQQHLGRGALYSSDSMQSVYFPPAELIEFERQRYVTRKLLGHLERGVLVRANQEGIYIKRLCQSRVFWSGLGEVGSQYGSMPGKLDRDAVVKIFDTGRFLQALQLYQEGQIPAPDPTVTLCFGEELNDHNSAKSKLIIVQITAVNCQHLLETMNVRRSQPYCNNPNLEMPDEVVTDQMARIYQDLCSYSGTQRPACYRDNMPITA +>tr|A0A7L0PVY4|A0A7L0PVY4_9AVES EHD3 protein (Fragment) OS=Mesembrinibis cayennensis OX=1118748 GN=Ehd3 PE=4 SV=1 +MFSWLGTDDRRRKDPEVFQTVSEGLKKLYKTKLLPLEEHYKFHEFHSPALEDADFDNKPMVLLVGQYSTGKTTFIRYLLEQDFPGMRIGPEPTTDSFIAVMQGDVEGIVPGNALVVDPKKPFRKLNAFGNAFLNRFVCAQLPNPVLESISVIDTPGILSGEKQRISRGYDFAAVLEWFAERVDRIILLFDAHKLDISDEFSEVIKALKNHEDKMRVVLNKADQIETQQLMRVYGALMWSLGKIVNTPEVIRVYIGSFWSHPLLIPDNRKLFEAEEQDLFRDIQSLPRNAALRKLNDLIKRARLAKVHAYIISSLKKEMPSMFGKDNKKKELVNNLGEIYARIEREHQISPGDFPNLRKMQDQLQAQDFSKFQPLKSKLLETVEDMLANDIAQLMVLVRQEESQRPTQMVKGGAFEGTLHGPFGHGYGEGAGEGIDDAEWVVARDKPMYDEIFYTLSPVDGKITGANAKKEMVRSKLPNTVLGKIWKLADIDKDGMLDDEEFALANHLIKVKLEGHELPNELPSHLLPPSKRKITE +>tr|A0A815YX94|A0A815YX94_9BILA Hypothetical protein OS=Rotaria magnacalcarata OX=392030 GN=KQP761_LOCUS19763 PE=4 SV=1 +NNGTLVAGGNGQGSVLNQLNSPACLFVDRDHSVYVSDYSNNRVMKWVEGAKEGIVVAGGQGGGSALTQLNYPVGIFVDALGTLYVADSRNHRVMRWAQGAKQGTVIVGGNDQGAGANQFNTPIGLSFDRHGNLYVGDWNNHRVQRFSIE +>tr|A0A2V4LES8|A0A2V4LES8_PSEAC Peptidase OS=Pseudomonas alcaligenes OX=43263 GN=DMO17_00310 PE=4 SV=1 +MRSTTLRRWSFVHTWTSLICTLFLLLLALTGLPLIFHHEIEHLLGEAPQLRELPADSPRLSLQQLVEAAERHRPGEVVQYLGWEEDEPNGVVTIMAATAGTEPNSSHTFMLDARTGEAVEMPAANGGFMMLMLRLHVDLFAGLPGKLLLAFMGILFVVAMVSGVVLYAPFMRKLKFAEVRRDKSTRLRWLDLHNLIGIVTLTWALTVGVTGVISACADLLIEAWRNDTLATMVEPYRDAPPLTERAPADELLRIAGEAVPGMRPDFIAFPGTRFSSAHHYAVFMVGSTHLTSHLWTPVLIDARSLAVTAVGDRPWYMDALAMSQPLHFGDYGGRPMQILWALLDGLTIIVLGSGLYLWWVRRRAPRQALRDEVAA +>tr|J3LRP0|J3LRP0_ORYBR Uncharacterized protein OS=Oryza brachyantha OX=4533 PE=3 SV=1 +MRGGGRDDEEAAHKLKSMDVDKLENGANGADTPPRPALKYHGWRAMPFIIGNETFEKLGTLGTSANLLVYLTQVFHMRSVDAATLLNGLNGTTSLAPIIGAFLSDAYLGRYLALAIASVASLIGMFLLTMTAGAEGLHPAECGVGEACEKATSGQFAVLFISFAFLVLGSAGIRPCSMPFGADQFDPHTESGKRGINSFFNWYYFTFTSAMLVSATVIIYVQSNVSWPIGLGIPTALMFLACVLFFLGTRLYVRVTPEGSPFTSIVQVFAAAARKRSLKQPKDPKQDLFDPPHTSAIVTKLAHTDQFRCLDKAAIVAGPDEVRSAGGGGPAPANPWRLCSVQQVEEVKCLIRIVPVWSTGIIYYVAVVQQSTYVVLSALQSDRHLGKSFQIPAASFTVFAMLAQTLWIPIYDRLLAAAPPQGHRQGRGAHAPAAARHRHRALHGGHGDVGHRRGPEAAHRADAADAGDDHHRRRHLRHVQPVDGAAAHGAGPLRGVQPHQPDRVLLQGDPGAHAERRRRAGLLQPRARQLPQRLPRHHRAPDHRLRQQLAGAGPQQGEARPLLLDDRRHWHLQHRLLHDLRQVVQVQGSSQLRSESLFIWVVN +>tr|A0A177BWM7|A0A177BWM7_9PLEO SEC14 cytosolic factor OS=Paraphaeosphaeria sporulosa OX=1460663 GN=CC84DRAFT_1169075 PE=4 SV=1 +MAATGAKELTLDPKYDDYDYPTTAPTPQNGHPGHTTPEQDAQVHQLRAMLEQAGYTKNLDTLTLLRFLRARKFNVELSKQMFIDCEKWRASYADVGVEELVRTFDYKERPEIFKYYPQYYHKTDKDGRPVYIEQLGNVDLTAMAKITSQERMIQNLVCEYEKMADPRLPACSRKSGYLLETSCSIMDLKGVGIAKATSVYGYLQAVSAISQNYYPERLGKMYVINAPWGFSGVWSVVKRFLDPVTVNKIHILGSGYQKELLAQVPAENLPKLFGGSCDCPGGCELSDAGPWQDDQWVKPPKWAKKAEDKNVIDNTGVPAPTADAPQQPLTGAGPEGVEPAAAPAQNPNTANSA +>tr|A0A371GLZ4|A0A371GLZ4_MUCPR H(+)-exporting diphosphatase (Fragment) OS=Mucuna pruriens OX=157652 GN=CR513_26426 PE=4 SV=1 +MFPGATLFLFTEYRYLTMFMGVFGALIFLFLGSVKGFSTQSEPCIYNKGNMCKPALASAICSSVAFLLGALTSVLSAFLLVLYIAINLFKLYYGDDWEGLYHCITGYGLGCLSMTLFERVGGGIYTKAADIGADLVGEVEHSIPEDDPCNPANFICTSVFFLQYEILLTPGSPLLIPIPNKCWKQNLGGFYHPPIDQSFLFSLPRHTLDPCYRKLQEPVNSAPTKPGSTALIPVDRIGYCRQHRR +>tr|A0A5E8VDI2|A0A5E8VDI2_9BRAD ArgE/DapE family deacylase OS=Bradyrhizobium sp. LVM 105 OX=2341115 GN=D6B98_18630 PE=4 SV=1 +MNAETQQRILDAVDAGFEAQLATTRDFVAIPSTRGAEGPCQDMIGDLLRERGYEVDDWHIDVDDLKDLRGFGPIEHDFSKARSVVGTYRPQTNDGKSLILQGHCDVVPAGPLELWDTPPFSPVIKDGKMFGRGACDMKSGTIGALYALDAIKAAGFKPTARIHFQSVIEEESTGVGALSTLQRGYRADACFIPEPTGGKMVRSQVGVIWFRLRVKGHPTHVAFAGSGANAIMAAYHLIQALQKLEIEWNERAKADRHFKTLNHPINFNPGIIKGGDWASSVPAWCDVDCRIAVLPGWSIADHQKEIMACVAAAARNHRFLANNPPEIEWSGFLSEGYELTDAAAPEAAFAKAFGKVYGGVPEDLVFTALTDTRFYGLNHGIPSLCFGASGGEMHGFNEFVDLESLKKTTKAMALFIAEWCGLEKA +>tr|A0A498CZE4|A0A498CZE4_9GAMM Uncharacterized protein OS=Acinetobacter cumulans OX=2136182 GN=D9K80_11310 PE=4 SV=1 +MGVAIDLTNTERRVSTAEFAMRMNVSEKELYDRIRDGRIKAPAKDGRKNYWLNSYVLECITGVEDGASLLV +>tr|A0A853LVH8|A0A853LVH8_9MYCO Acyl-CoA dehydrogenase OS=Mycobacterium colombiense OX=339268 GN=A5628_13360 PE=4 SV=1 +MLLELDDDQRLWRETVRGALTKQCPPSLVRAIAEGGADGGDLWQWYIEQGWTELTSAESLVELTLLLEELGRASDPTPFLATTTQFAPLVGDRVPQDGAGAAVYSGVTACRDRGGWVLEGAARYVLDADRADQLAVVTPAGVFVVEAKAASSRRVAAIDPVLHLADLRFNEVHVSDAHRIASDTERAWHIALTGMAITIVGACQRIVDMVLEHLKQRYQFGVPIGSFQALQHKAADMHVAIERARALAYLSALTIVADDPRRRLFAAMAKAAAGEAQSLVVQHGLQCFGAMGFTWENDLQFAIKRAKAGELMLGDAAEHRALIAREYRAADF +>tr|A0A3B3U8V4|A0A3B3U8V4_9TELE DENN domain containing 3 OS=Poecilia latipinna OX=48699 PE=4 SV=1 +MAELPSGLLEACVVVGAPSDKLRELPQHTKSSELPLLDPEVLQVHAPPFVSIEANSNHVIGPAFSRVQRRRSFIKKKRRDRAAEGVSNGDSSSRHEASPVPATEDISVPKDLDLIALPQLCFPDGLQLASEQKDDAYHFLVFTDLFGNRTHGVVVHYYRAVQSFQDSVFQNGHRWNAPKSRLFAPFAVCIISKFPYYNALKDCLSCLLVQLRTVRQADLEETIREFSAKLSLVPLPPPGQLHVSFSLRPLQVVLPSRDDQDSPVVDLNLHLPLLCFTHTALLQVLSCLLQEQRIVFFSSDWARLTLVAESLLLYLQPLSWQQPYVPVLARGMLDFLMAPTAFLMGCHINHFEEIAAETEDLILVNVDDGFIQTSWSEAVDLPALPLAAAECFISRAESLQLQYDLELCHLGTGTDVNTLRSQRRGWQQKLNSQIQNIALELVVNIFRGVQDFLNHEHRVFNSEEFLRTREPDDQLFYRKVLETHIFHSFLRDRLNRKRDSFSRMEQMTQSHAHRNRAMTESPRRPPMSELSRAGPDRKLSKRLGASLPNLDQPINESVPLNANRLLSIRKISPDSGLKFLQKPLKVFRLPEFPPPLAYHYVQNYYSDMVASLGKAINATPPDESALLARYHYLRGLVNTVSNRRLDALEDFHSLYKTDAGIFPSQMVNSLIDSLPDVERVQADRRPEIKRLISRLKREQERERATQGTGQEDAAVKRFQLPKKYMHLEEFVKCVQESGIVKDQGTIHRLFDALTVGHQKQVGPDLFRVFYTIWKETEAEAQEVCLPASVLEHIDAAECVFKLSSSVKTSRGVGKIAMTQRRLFLLTDGRPGYVEVAQYRDLEEVRVSSAPFLVLRIPSLKIRVHGRKETFEANLKTETELWNLMIKEMWAGRSIADRHKDPQYMQQALTNALLMDAVVGSLQSSKAIYAASKLAYFDRMSLEAQMMVPSTTSETLKHKINPSVEFAVPQAVDVLLYTPGQLWVSVGGGKVMVYDASSWSLIQTCQVGNARLNCMLGVDRDQVWMGSEDCVIYIISLVSMVCNRQLTEHRAEVTGLALDNEKYCHKVAYSCSAEGTVMAWEVSTLQVKRHFRLSCDRLQSVYSCGGVLWCCARDGIMEVWRNGTLKQHINLPEQQRVTFSSALLITESEELWSVCVDSAEVYIWHIKNTSRPINRVMLQDCIGCYCMIQVKNQVWVGGMGRSSTKGKIYILDTERYEVLKELHGHIDKVTALCSAEDRYVLSGAAKHDGKVAIWKVEDRGLDSSKC +>tr|A0A6P9APX4|A0A6P9APX4_PANGU pentraxin fusion protein-like OS=Pantherophis guttatus OX=94885 GN=LOC117655567 PE=4 SV=1 +MVEASIIPVGDPNVAVGKLSSQSSTFEEKGESRKAIDGSLANIYTNGDCTLTKKDFEPWWMVDLISAFQVSAVVITNRGDCCESRIQGAEILIGDLPQKGGTMNPRCATINSMERGETMSFNCAGMQGQYVTITIPGRYEYLTVCEVQVLAYPWLRIVHGGRSPVLDSDTDSGLQGRVLSFPNESKDSFVIISPMQPFNLMEFTLCMRIAVEYLDEHEIILFSYHSQRDELRVLREAMGHFGLHMGGRSVRFALPDLSPLGSHICVTWESVFGLTAFWMNGKSSIRKVHNMGHILQAGGTAMLGQDQGAQNMSDQQKPHFVGEITDLYMWDYVLKSHDIQKVFQAHEFPRGNIFDWKILSYKIRGNVMVLPKG +>tr|A0A087WPU9|A0A087WPU9_MOUSE La-related protein 4B (Fragment) OS=Mus musculus OX=10090 GN=Larp4b PE=4 SV=6 +MTSDQDAKVVAEPQAQRVQEGKDSSHLMNGPISQTT +>tr|A0A4Q7AXS9|A0A4Q7AXS9_9GAMM Efflux pump membrane transporter OS=Acinetobacter bouvetii OX=202951 GN=EXE25_14110 PE=3 SV=1 +MSQFFIRRPIFAWVIALFIILLGVLSIPKLPIARFPSVAPPQISITAIYPGATPKTLNDSVVTLIEREMSGVKNLLYYSSSSDSSGTATITATFKPGTDVELAQVDVQNKIKAIESRLPQTVRQQGLMVDAASSGFLMMVGLSSPNGKYSEIDVSDYMTRYVIEELKRVEGVGKVQNFGAEKAMRIWVDPDRLISYGLSIKDVNTAIQNQNLPISPGRIGDVPALTGQQITIPLTAQGQLETVEQFKNISLRAQQNGANVRLSDVARVEIGAQMYNFAILENGKASTAVAIQMSPGANAVKTAEGVKAKIEQLSPALPDGMKFSIPYDTAPFVKVSIQKVIATLLEAMVLVFIVMFIFLHNVRYTLIPAIVAPIALLGTFSVMLLAGFSINVLTMFGMVLAIGIIVDDAIVVIENVERIMATEGLSPVEATSKAMKEITNPIIGITLVLAAVFLPMALAAGSVGIIYRQFTITMSVSILFSAFLALTLTPALCATMLKPIDLNHKKKGIFAWFDRSFEKLNNRYERSLFKVIQHKTIAMLCFLSIVIVLIFSFKQVPTAFMPEEDQGWFMTSIQLPADATQERTRKVVAEFQNHLDQETGIKDNMAVLGFGFSGSGQNTAMYFTNLLPFEERTITAQEVVNNANMAMAESSEGQTMSVLPPAIDELGNSSGFSLRLLDRGNIGMPALREAQDQLLALAAQSKLVADVYPEGLPDGSSVQLKIDRDKLQALGVNFSDVTDIISTSMGSMYINDFPNQDRMQQVIVQLDAKSRMSIEDILQIKVNSQSGKLVSMSEIITPIWQHSPQQYNRYNGRPSLSITGSPAAGMSSGQAMSEMENLIKQLPKGVGYEWTGISLEEKQSESQTLFLLLLSMLVVFLVLAALYESWSIPLSVMLVVPLGLIGAFLAVMLRGMPNDIFFKVGMITIIGLSAKNAILIVEFAKALRVEGMGLVEATVAAAKLRLRPILMTSLAFTCGVIPLVIASGASSETQKAIGTGVFGGMISATVLAVIFVPIFFIVVMSTVEKFSKRKAAH +>tr|M6TB98|M6TB98_LEPIR Transposase DDE domain protein OS=Leptospira interrogans serovar Bataviae str. HAI135 OX=1085538 GN=LEP1GSC170_1474 PE=4 SV=1 +MKNKLMPLVDKILLRKRAIIESVNDELKNICQIQHTRHRSFCNWAVNLLSGLVAYSFFPKKPSLNLRSKDNLQLLISP +>tr|A0A2D0KA88|A0A2D0KA88_9GAMM Adenosine deaminase OS=Xenorhabdus ishibashii OX=1034471 GN=add PE=3 SV=1 +MIDIQLPLTDLHRHLDGNIRPETILDLARQHNIPLPAYELEALRPHVQIIENEPNLVSFLQKLDWGVTVLADLEACRRVAVENVEDAVNAGLDYAELRFSPYYMAMKHQLPVEGVVEAVIDGIHSASQQHDIQIRLIGILSRTFGEQACTEELAGLLAHKQHITALDLAGDELGFPGHLFEQHFIRARDAGWNISVHAGEAAGAESIWHAIRELGATRIGHGVKAITDPTLMDYLAKNGIGIESCLTSNLQTSTVSSLPAHPLKQFLEHGILASINTDDPAVEGVEIRHEYTVAAPAAGLSPAQIRQAQINGLATAFLSEAEKQALKTKVANR +>tr|A0A2K6SAF3|A0A2K6SAF3_SAIBB 35 kDa nucleoporin OS=Saimiri boliviensis boliviensis OX=39432 GN=NUP35 PE=3 SV=1 +IQPPLSGFNMFSPASIGQPRKTTLSPAQLDPFYTQGDSLTSEDHLDDSWVTVFGFPQASASYILLQFAQYGNILKHVMSNTGNWMHIRYQSKLQARKALSKDGRIFGESIMIGVKPCIDKSVMESNDRCALSSPSLTFTPPIKTLGTPTQPGSTPRISTMRPLATAYKASTSDYQVISDRQTPKKDESLVSKAMEYMFGW +>tr|A0A0D6JIV9|A0A0D6JIV9_9HYPH Probable membrane transporter protein OS=Candidatus Filomicrobium marinum OX=1608628 GN=YBN1229_v1_3342 PE=3 SV=1 +MGRESVGDVGFMDIGMTWAGFSMLAFSLLAAGVIVGFLSGLLGIGGGGILVPVLYETFAALGVDPAIRMHMAIGTSLAVIIPTSLRALMAHSAKGVVDWVAVRRIGPWIVIGVVLGIMFADQVTGTTLKWVWVVFGTLFAAKMAFGRDTWRLGHDLPALPKLEIFSVLVGIISVLMSIGGAAFIVTFLTLYGRPILTAVATSSAIGPLIAIPGAIGMMWAGWGHPGLPPLSLGFVSLLGAALIVPSSVLVAPVGVRLAHGVSRRKLELAFAVFLVVIVLRFLSSLILE +>tr|A0A353GX24|A0A353GX24_9FIRM Aspartokinase OS=Firmicutes bacterium OX=1879010 GN=DDW50_18565 PE=3 SV=1 +MKVIVQKFGGTSVATREGRENVASKVKEALGKGLGVVVVVSAMGRNGDPYATDTLIGLARGVLKYIKPRELDLLMSCGENISTVVMVQTLKAHGIEASAFTGGQAGIITDHHFNNARIIEIKPDNLWKCLEEGKVAVVAGFQGVTKDGEITTLGRGGSDTSGSALGVALHAELVEIYTDVDGIMTADPRLVPQAKPLPVMTYNEVCEMAHLGAKVVHPRAVEIAMEGRIPLRIRSTFSNNLGTLISDGTSIGDIEIRNGKVVTGLAQIAEMALVKIISKVDLNQNGAVLKIFQVLAGAGISVDMIQVAPLNIAFIIKEDLVDKAKEALSPLGLELLVEKGYAKVAIVGSGMRGIPGVMARMVKGLQKEHIAIYHSTDSHTNIACLVKQEDMCGALQALHDEFELAE +>tr|A0A1N6LEK7|A0A1N6LEK7_9BURK Amino acid/amide ABC transporter substrate-binding protein, HAAT family OS=Paraburkholderia phenazinium OX=60549 GN=SAMN05444165_6866 PE=4 SV=1 +MAAKWGRVVAAALAAMVMTAAYAAGETGVPSSSAAPGGKPIQLALIEGMSGPFANAGAAVERNLRFGVEAVNAHGGVKLADGAHPLELVVLDSKGSPEEALLQLRAAADRHIGYVLQGNSSAVAAALIGAIDKQNSREPDNRELFLNYSADDPALTNAACSFWHFRFDAHAGMRMDALADVIQHDPSVRKVYLLNQDYSFGHDVSALARSALAAKRPDIAIVGDEFHPIGRVKDFAPYIAKIRASGADAVVTGNWGNDLTLLVKAAREQGLDTKFYTFYGNSLGAPAALGDAGVKRVIAVADWHPNAGGAASDAWYKAFRARYPAAQDDYPVLRMELMVEMLAAAMNKAGSAEPEAVAKALEGMKFDNGFHPSWMRAEDHQMIQPLYVMEMDKAGTPGVRFDNEGSGYGFRTVLALPPGRTVAPATCRMTRP +>tr|A0A850WM95|A0A850WM95_FREMA SIM1 protein (Fragment) OS=Fregata magnificens OX=37042 GN=Sim1_1 PE=4 SV=1 +KEKSKNAARTRREKENSEFYELAKLLPLPSAITSQLDKASIIRLTTSYLKMR +>tr|A0A482IAK4|A0A482IAK4_9DIPT Cytochrome c oxidase subunit 1 (Fragment) OS=Tipulidae sp. BIOUG26266-C02 OX=2544765 GN=COI PE=3 SV=1 +FIMIFFMVMPIMIGGFGNWLVPLMLGAPDMAFPRMNNMSFWMLPPSLTLLLASSMVENGAGTGWTVYPPLSAGIAHTGASVDLAIFSLHLAGISSILGAVNFITTVINMRSSGITLDRMPLFVWSVVITAILLLLSLPVLAGAITMLLTDRNLNTSFFDP +>tr|A0A2A8TFK0|A0A2A8TFK0_9BACI Transition state regulator Abh OS=Bacillus sp. AFS017274 OX=2033488 GN=CN380_26055 PE=4 SV=1 +MKSTGIVRKVDELGRVVIPIELRRTLGINEKDALEIYVEQERIILQKYKPNMTCQVTGEVSDDNMKLADGKLILSPEGAELLIKEIQASMEPAK +>tr|A0A531KVX5|A0A531KVX5_9HYPH M20 family metallopeptidase (Fragment) OS=Mesorhizobium sp. OX=1871066 GN=E5X43_21305 PE=4 SV=1 +MDTVPIDRWESDPFSGEQRDGRIYGRGSCDTKGSLAAMLIALSSLGERQPRATVVLAASIDEEYRKLGARAIADSGVTYEGAVVGEPTELELVVAHMGSVRWQIEVQGVPAHTSKPHLGVNAITGMAKVVLALDEHHRSLVSRAQHPLVGSAQLTVSLIEGGLELTTVPPVCRIWVDRRLIPGEQPQDALAEVESILEGLRQGEDKINVRSLLPALEDPPPISSESSRIAAVAAAACAHVAGTGEQKGATGGSDANQLSLAGIPCVIIGPGRTAQAHTNNEFVEIAQLIKAAELYQKIM +>tr|A0A2D5TAC4|A0A2D5TAC4_9GAMM Uncharacterized protein OS=Gammaproteobacteria bacterium OX=1913989 GN=CMP85_02235 PE=4 SV=1 +MTFDLVTDRNTCPLLDTRSFVMLRTTCRTHYRDDEAWALRTRDVLLRVSTLTPRQTLGLNYLYKYALQFDAPVGSTEWFQNIVNWLDFKSSIRIVHSFMFETRPKLLYSLDFGTLSPGPRMLWQRLWCRYERVYKKHLKKRKSDLFDVVPCKKRRVLCH +>tr|A0A833PV08|A0A833PV08_BURL3 HTH-type transcriptional regulator NimR OS=Burkholderia lata (strain ATCC 17760 / DSM 23089 / LMG 22485 / NCIMB 9086 / R18194 / 383) OX=482957 GN=nimR_1 PE=4 SV=1 +MTANDYAAGTTFPEHAHGRGQFAFASRGTISVSTPHGRWLVPPQRACWVPAGVRHEMTMTGPVTMLNTFVSGDAAQEAGLPEQCGVYGVSALLRQLIDDAIDLPALYDVDGRAGKLMALLVAEIATMPRLSLHAPLPADARLAKVCRHLLASPSIAADLDQVAADAGVSRRTFTRQFRAQTGVSFAAWRQQVCMLSAIARLSDGQPVTRVALDLGYASASAFTSAFRRILGDTPSRYLEIRR +>tr|V7PXT1|V7PXT1_9BACT Cupin_2 domain-containing protein OS=Parcubacteria bacterium RAAC4_OD1_1 OX=1394712 GN=O210_OD1C00001G0424 PE=4 SV=1 +MKKGFKENIEKLTEENNNFRKVLYTGASSQLVLMSLLPNEEIGMEIHNENDQFFRFEKGSGKVIIDTTEYEVKDGDAVVVPMGARHNVIAGEEGLKLYTIYSPAHHKDGIVRETKEEAEQNEADFDGQTTE +>tr|A0A1L8MN76|A0A1L8MN76_9STRE D-alanyl-lipoteichoic acid biosynthesis protein OS=Streptococcus bovimastitidis OX=1856638 GN=A9Q68_01415 PE=4 SV=1 +MNEKRKILMLFIGKTVLFYLIFILLIYIFDYLGHGQSAFIYNEF +>tr|A0A846M925|A0A846M925_9BACI 2,3-bisphosphoglycerate-independent phosphoglycerate mutase OS=Saccharococcus thermophilus OX=29396 GN=BDD39_000516 PE=4 SV=1 +MSKKPVALIILDGFALREETYGNAVAQAKKPNFDRYWNEYPHATLTACGEAVGLPEGQMGNSEVGHLNIGAGRIVYQSLTRVNIAIREGEFDRNETFLAAMNHVKEKGTNLHIFGLLSDGGVHSHINHLYALLRLAAKEGVKNVYIHGFLDGRDVGPQTAPKYIKELQQKIKEYGVGEIATLSGRYYSMDRDKRWERVEKAYRAMVYGEGPTYRDPLECIEDSYQHGIYDEFVLPSVIVREDGSPVATIKDEDAIIFYNFRPDRAIQISNTFTNEDFREFDRGPKHPKNLFFVCLTHFSETVKGYVAFKPTNLDNTLGEVLSQHGLRQLRIAETEKYPHVTFFMSGGREEKFPGEDRILINSPKVATYDLKPEMSAYEVTDALLKEIEADKYDAIILNYANPDMVGHSGKLEPTIKAVEAVDECLGKVVDAILAKGGIAIITADHGNADEVLTPDGKPQTAHTTNPVPVIVTKKGIELRKDGILGDLAPTMLDLLGLPQPKEMTGKTLIIKK +>tr|A0A5C3E0M0|A0A5C3E0M0_9BASI Related to MRPL44 - mitochondrial ribosomal protein, large subunit OS=Ustilago trichophora OX=86804 GN=UTRI_01617 PE=4 SV=1 +MSIAAASLKHITAMSFEFAPLSASQASRSMRLLLARLPTKAPMPGMDLPDISTKTVATDALQKIEITYKNKQKLVLDHVASETRLSDLVKKIEEPARALRLKEEGL +>tr|A0A812PJQ8|A0A812PJQ8_9DINO GrpE protein OS=Symbiodinium sp. CCMP2592 OX=631055 GN=grpE PE=4 SV=1 +MLDRVSAGPTDCLLGKCLCKDGYCADGDMCKPQVCFAGAEPPRFRPNRWLAFYSGMSDLEQFPEYEELEEEYVQFVLRISPVPLLFLLLGVVVSITTCACLCCGGSGYHFSMDFSDMTHDETKGFVSGTTGNAVIGDEEFARRAWKKRPSCFPMFCAALLIILLCFFGGLTRIVNAAWTEYIIVSSLDRAMDNAADIANASLTINETVTHLHDKLLELPLTCKTDSKAAKQVLYTFVHSALGAIDDYVEQVYFIVETVQPIPDQIGKFKQLTHRAKPFFASLPLAPLWLVAFICIGIVVEATCTTCCRSSSLARCVDVGLKLSALLFGLIVFVVAVLVCVETIVLIALSKFCEDVDHNVLSYVNSTTYNISYIIPEIANYYIRGGDRNPIDEYDTLAMKYINQIQDYYNQAAIGVAGLGMACPAFFDLDVNAIATKARGILGKARELLKGENIYPYYRKVIRAGICNVVISGVGHPS +>tr|A0A5C6ACY5|A0A5C6ACY5_9BACT Isoleucine--tRNA ligase OS=Rhodopirellula pilleata OX=2714738 GN=ileS PE=3 SV=1 +MTVPPPKPSSKPSLPSSVDLSSTSSAGGFRAADGSPSFPKLEEEVLAFWDANQIYEQSLARRADAPTFVFYEGPPTANGMPHPGHCLTRAIKDVFPRYKTMRGYRCERKAGWDTHGLPVEVEVGKELGIHSKEEIEAYGVEPFIQKCQQSVWRYMQQWQTLTRRLGFWVDLEKAYVTYHQSYVESVWWSLKNLFDRDLLYQGHKIVWWWAQGGTALSAGEVGQGYREVADPSVYVLFPLIDDNNKKTKRSLVVWTTTPWTLPSNMYAAVKADLDYAVVEDSETGEQLILAEALVETLAGKIKRELRTIETVSGRSLVGMRYVPPFENYRDTLADPVGELKDGGSDSLYWRVVAADFVTTDSGSGLVHLAPAFGEVDHEVLVEERMRFVDGQRPDLLCAVGPDGKFTDDFPSLKGEWVKAADKTLTRDLRERGLLLHLEQYLHDYPFCWRAEEDPLIQYPRESWFIRTTKFRDLMLKNNSKIGWQPEHIQDGRFGNFLESNVDWALSRERYWGTPLPIWVCQSTGRMEAIGSYDELLAKPGVEGTEVWAQAKAENPELVDDLRVHKPYIDAVTYASPFEDGARMKRVTEVIDCWYDSGAMPFAQWGWPHQNHDRFAEQFPADFISEAIDQTRGWFYSQLAISTMLFGEGASIGTDLNTDVPTVSTDAAQDYPHPFRNCIVLGLMLSQWYEAANESGPKTIVLTEEETAEHADLKFTKKTGKMSKSLRNYRSPSEIFDRYGADAMRWYFFANQAPWNSIIYADQAIRDSIPEFLLRLYNTFSFFTIYAEIDGFDPTLAADADDQLSPASLASATTYRDVSQRSEIDRWILSELNRTLEVVVERMDKLDNYNACQAITSLLDGLSNWYVRRSRDRFWGSDKASQDKLDAYWTLYESLVQLTKVIAPFVPFLADKLWQELTRPFGDRVLRSVHLTDYPTADSSRIDASLSESMKVLREIASLGRSARADAKLKVRLPLSKVEVILANDSQIGWLESHDQLVLEELNVKAVEYTTEGGDYVQYNVVPNFKRLGPKVGKNIPLVKKMLGEADGNELLGQLQTSGKVTLAMPDGPLELDNEDIEVRLKAREGWAAAQGTSCVVVLNTEVTDALRREGIAKDLIRAIQSQRKEMKCEYTDRIEVAIVSDDADTEAAIAAHREMICEETLAIRLADQPLQAIDATSIENGQLFVAKVPGE +>tr|A0A165E1C3|A0A165E1C3_EXIGL Uncharacterized protein OS=Exidia glandulosa HHB12029 OX=1314781 GN=EXIGLDRAFT_725429 PE=4 SV=1 +MSAPAAQDDADAMDVDATPTPKPARAPRRRRGRPQPPHVQTPRSATAPTTDAHVPFPTSAGPPSPTKSPTKQRSMPDHAFRRPSSPTKTRSSWFDASDTDLTSLGRSTSPTKSGSWASSRSSRSSSPSKSSRSSARPPSPTSLPWAEGRIPPSPSKTSLSSGPDSPQKVRNRPPSLRLHDNPDGIDPSTIVGKVLKRVHRGAAHPNLTLVFADDSVVQVKIEGYHPNARGLSKELEMDSSLDDFLASSAASTVDLLILDCALVRLTDKAFERSDSDASNDSRWSQDHLGLAFKFEGMPHRWYSVWATMQDFDDDGICRFRSYDDVFLSPVAQTPRRPRHARKNSKQIV +>tr|A0A7C1SJJ1|A0A7C1SJJ1_9SPIR ZIP family metal transporter (Fragment) OS=Spirochaetales bacterium OX=2026792 GN=ENI06_01135 PE=4 SV=1 +MIFTWFTNQHPILQALLATIFTWLVTALGSAMVFFFKEVKRKVLDSMLGFAAGVMIAASFWSLLAPAIAMAEESGAIPWIPALVGFLMGGLSLRLIDIFLPHLHLGLPMEQAEGVKTSWHRSVLLVLAITLHNIPEGLAVGVAFGALYHNLPGASLAGAIALALGIGIQNFPEGAAVSIPLRREGLSVSKSFWFGQLSGLVEPVAGVLGALAVVVMKPILPYALSFAAGAMIFVVVEELIPEAQMEKNTDIATMGAMLGFAVMMTLDVALG +>tr|A0A2M6W0D3|A0A2M6W0D3_9BACT Uncharacterized protein OS=Candidatus Magasanikbacteria bacterium CG10_big_fil_rev_8_21_14_0_10_43_6 OX=1974650 GN=COU33_04145 PE=4 SV=1 +MNVFRVWRKIQNTSNSEKTVLIIGDIKNKIKGLGGDYLSPIVFFLQKSGKLLFLANFVIMRV +>tr|A0A0K2J648|A0A0K2J648_PORGN RND family efflux transporter, MFP subunit OS=Porphyromonas gingivalis AJW4 OX=1403336 GN=PGJ_00014360 PE=3 SV=1 +MQLSGYRVVWLPFIFLMALSVVGCNGGKKKTADTSSGEDMELFTSGGDTIDVQIAELKLGPFDRQIVSHGKLRARETAVLQFEDSRQPLHRLYVRNGQHVVQGQKIAAVDDRTALLEVQKSEDEFKQRELDLQDVLVGMGYSPHDKSDIPADKLALACIKSGYNIAESNYKQAQLRLKHVCLTAPISGVVADLHAQEHTIPESGKPLCRIIGDNGFEVVFEVLESELSAIRTGERVEIRPVALRDVTAEGVLQEINPSVDDRGMVQVSAGLRNPSKNLFDGMNVEVRINQRMEERMVIPKSAVVLRSDKPVVFSVRNGTAAWNYVDIEAENAESYCIVSKTLKPGEMIVVDGNANLAHKTPVALRR +>tr|A0A2G5ISA1|A0A2G5ISA1_9ACTN Uncharacterized protein OS=Streptomyces sp. HG99 OX=1958787 GN=B1C81_17685 PE=4 SV=1 +MTTPPPQGQNPFAQGQQPYGQPPQGQNPYGQQPGQPGFPQQGAPYDPVPPQRPKRGIKQYLRIAVIVFAVIAAGVGWIASRDDANTAKVGDCMSISNPESTTDPGLEVVDCSSSKAKYKVEEKKSDNSGCDRTKYSEYTETGKNDFTLCLSEYSAK +>tr|B9YBS2|B9YBS2_9FIRM Resolvase, N-terminal domain protein OS=Holdemania filiformis DSM 12042 OX=545696 GN=HOLDEFILI_03279 PE=4 SV=1 +MDAQEVMHMTDYSKITALYSRLSVGDEDRDGGESNSIQNQKIFLENYARGQHLTNIRHYIDDDESGRFFDRSAYSRMMDDVENGKIGVCIMKDLTRWGRDYLQVGNAMEIFRRNNVRFIAVNNGIDSEKPDTLEFAPFINIMSEWYAKDISKKVKTGIKTKGMSGKPIVTEAPYGYVKDPDNKDFWIIDEEAAEVVRLIFRLFIGGKNRNQIAVHLKNEQIPTPTFYMKDRGRGTCKNKTLNEDNRCKWNKATLTNILTRQEYCGDVVNFKTTKHFRDKHNHYVDRSQWHITENVHEPIISRSDFETVQRILENAPVKRPNGDGEIHPLSGLLFCKDCGAKMHIRIDYRNGGKRHVAFCSEYHKGKAKNPKCHSPHIMDADLLMQTIAEVLKKIEDYSISNRAEFEALVKKNLAMQQTDQTKKQQKRIPQITTRLEQIDKVLNKLYEDNALGTIPQDRYEQMSQKYSEEYYALKAELATLQEQLSAYENAGGRAQKFLKLTERHAAFTDLTPAILNEFISRIEVHERDQKRARYAIQHISIYFNYIGKFENEVTQLAEPTEQEIRQMREEIEEAKKEKSRAYHRQYSREYRARNLEKQREYDRMKAREYRARRKAQAAAQPAQ +>tr|A0A317E7E7|A0A317E7E7_9PROT XdhC /CoxI family-like protein OS=Zavarzinia compransoris OX=1264899 GN=DKG75_13590 PE=4 SV=1 +MIEPDLFAKVYDLQEAETPFVLATVVRTVSVTAAKAGAKAVILADGTVAAGWIGGGCARGATLKAAQDSLADGQPRLISVQPDDQMEEQGLLNGETRDGVRYAHNHCPSRGTMDIFVDPVLPRPELLVMGTSPVARVLVALAGEFGFRVMAAAPAAAHGQLSLADRLIDGFVPPPANGLRYVVVATQGADDFAALSAAVALDVPYIAFVGSRRKAESLRGDLLDAGVPAARLAALKAPAGFDLGAVTPEEIALSILAEAVAVRRRGIASPAP +>tr|J9VWE8|J9VWE8_CRYNH Pre-rRNA-processing protein TSR4 OS=Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) OX=235443 GN=CNAG_06340 PE=4 SV=1 +MSPSSPAGSSSSSLCYTNTLLALPDGPIPSSHRDLISHTTSFIGGYPTFPALPSSSCSTKKVGNTPSEINCGICHKPIPLLAQVYCPPEDGENDRTIYVFACPRVGCQKREGSIRAWRASVRNEEYVRDVEEKRKAAEKAAQEERERARKNPFTVDEAARLNGSALFGTASPLFGGAAHNPFAPPNPVPAMATLSVSDDRPAPTPITSGPSRTFTPPIPAYHPVQYLSTIEEYIPPVDDDVSVASSDDDESPEQKAEWREEGWEKVLPRNVDEVFENFVRRLDQADGGKKQVLRYELGGMPLPYSSASPLTRKLFPGCEKPLAKDEELDLSALYTPKFIPTCPRCGGKRVFELQLVPSLINILRPHTISTTGEAPKASFPKAATEEERKKELAKLAAGVKEEASKDEEGEMEWGNVLVYGCERDCVGVGEEWVGVEWEATLEL +>tr|A0A2T0PRW1|A0A2T0PRW1_9PSED Flavin reductase (DIM6/NTAB) family NADH-FMN oxidoreductase RutF OS=Pseudomonas sp. NFACC11-2 OX=1566246 GN=OE22_101713 PE=4 SV=1 +MSSLCDTAFDTRAFRRALGNFATGVTVVTAATEDGRKVGVTANSFNSVSLDPPLILWSIDKRSSSHEVFEAASHFAVNVLAADQIDLSNNFARPKEDRFAAIQFETGEGGAPVFVDCSARFHCEKFQQVDGGDHWIMIGKVVAFDDFGRSPLLYHQGAYSMVLPHTRMTKREEGQSPSSHFQGRLSHNLYYLMTQALRAYQASYQPRQLCTGLRTSEARMLMVLENDAGLNLCDLQREVAMPVREIEEAVANLKRKGLVSDEGERVRLTAKGIDETEGLWAIAKEQQDKVFGQFSEEQVEHFKQVLKGVIRGA +>tr|A0A7H5EXY5|A0A7H5EXY5_9BACT Rhomboid family intramembrane serine protease OS=Lewinella sp. W8 OX=2528208 GN=E1J53_0011935 PE=4 SV=1 +MFFPIGDDQVHRGFTPFFSYGFIALNVMIFFYQSSLGEAGAEFIYNYGSIPLEFERGEDYHTLITSIFLHGSWMHLIGNMLYMWIFADNIEASIGNVPFLIFYFLGGLAASLCHIYFNAGSQIPAVGASGALSAVMGAYIVMFPKSNIRGYLLFFRINVAAWVFLGFWFFQQSQAGYASLGDTSGGIAWWAHIGGFVFGVLCGFFFRQRYGVPELDRGRDRYA +>tr|A0A1A3D3H4|A0A1A3D3H4_9MYCO Uncharacterized protein OS=Mycobacterium sp. 1245805.9 OX=1856862 GN=A9X00_01450 PE=3 SV=1 +MVQCASEISWDPADTDGLSEDWLDRLLDAVDGNTVVRTPVGMLFAGVSQIERLLAHPALKVPVVEQYELMGVSEAILERARRVILGLDGAPHTRLRRLVSRAFTQRAVERLAETMRSYLVPRLDDVDGEVDFIDEIVGDYPAAIIGGLLGLPAADLPHLTSIAQVITSSQFSLDVDRAHQYLAAAAECDAYLADLVTSKRKAPGDDILTHLTQVGVEGDSLSDAEIVSLCASLMNAGIDTTRNQISLGMTLFARLPEQWNRLRDESVLVGNAVEEILRFLPVTPLLTRLNTEALTFDGVDVPERTYISLGVAAANRDSTLNTGDALTFDVSRPNPRHFTFGHGAHFCVGAALARLEMRELLTQMVSRFVSVEVVGQAPRRSAMGVYGVKNLTLRLDRQRQNAS +>tr|A0A2P8DYT4|A0A2P8DYT4_9BACT Uncharacterized protein OS=Cecembia rubra OX=1485585 GN=CLV48_110110 PE=4 SV=1 +MRTLLSIFAISIFISSCVQQGVDKEAQRIVDQSIKAHGGALYQEALISFDFRERHYSIFKSPSKYEYIREFTDSTGFVRDVLNNDGFQRTVNDTPVDLPEDRIRAFSNSVNSVAYFAFLPYGLNDAAVIKTYLGETELEGNSYHIVKVTFRQEGGGEDYDDEFLYWFHKEKYTMDYMAYSYHTDGGGVRFRKAIKQHQVNGLLLLDFENYKPEEKNTSVDKMEGLYKEGKLELLSEIRMENIKVSF +>tr|A0A1U9N7G6|A0A1U9N7G6_9GAMM Muramidase FlgJ OS=Cellvibrio sp. PSBB023 OX=1945512 GN=B0D95_04590 PE=3 SV=1 +MQSIDTGIKVPQVQDNYFDPNSLNSIKAMGRDRDPQAIKEVAKKFEGLLVQQMLKSMREANDVFGEGSFLDSQTTRFHRDMLDQQMVLDLTSGPGIGLADHFYRQMMQNYGSTMRPEGGVKNTDSSALGEITPRTANKTSVAEQASVDALDDWIQDFMRMSDNVQMQALGDGDEQQVPAVPAINYALIPQLLSKQAIGTVRGGQKSSISPTQENFVMMLKPHAERAAAELQISPDVLIAQVALETGWGKHVIHDRSGNNSFNLFNIKAGGQWQGEKVNVNTLEYRNGIAAQEKSDFRKYNDYSESFSDYVRLMKNNPRYEKVLATGTNSSAYADALQSAGYATDPHYAKKIKSLLNSDVIKSLDLASVTENMQADLLQTGAQAILSLAASASRHIVE +>tr|A0A411GH85|A0A411GH85_ENTCL ABC transporter ATP-binding protein OS=Enterobacter cloacae OX=550 GN=sapD PE=4 SV=1 +MPLLDIRNLTIEFKTGEGWVKAVDRISITLAEGEIRGLVGESGSGKSLIAKAICGVAKDNWRVTADRMRFDDIDLLRLSPRERRKLVGHNVSMIFQEPQSCLDPSERVGKQLMQNIPGWTYKGRWWQRVGWRKRRAIELLHRVGIKDHKDAMRSFPYELTDGECQKVMIAIALANQPRLLIADEPTNAMEPTTQAQIFRLLSRLNQNNNTTILLISHDLQMLSKWADKIDVMYCGQTVETAPSEDLIGAPHHPYTQALIRAIPDFGSAMPHKSRLNTLPGAIPLLESLPIGCRLGPRCPYAQRKCIETPRLTGAKNHLYACHFPLNMERE +>tr|A0A7X8MBI3|A0A7X8MBI3_9BACT Type II toxin-antitoxin system HicB family antitoxin OS=bacterium OX=1869227 GN=GX408_15355 PE=4 SV=1 +MRTLKYTYWQDGNFYLGYLIDYPDYQTQAKSKEELIENLKDLLHDIESGDIPFIRKIEELVLA +>tr|A0A1V3S1A0|A0A1V3S1A0_9PSED Alkyl hydroperoxide reductase C OS=Pseudomonas sp. A25(2017) OX=1945865 GN=B0E42_23545 PE=3 SV=1 +MPIINSQVKPFNATAFKNGEFVPVSDADLKGKWSVVFFYPADFTFVCPTELEDLADNYAEFKKLGVEIYSVSTDTHFAHAAWHNTSPAIGKIQYTMIGDPTHVISRNFDVLIEEVGLADRGTFVINPEGQIKIVEINDGGVGRDASELLRKIKAAQYVAAHPGEVCPAKWKEGEATLAPSLDLVGKI +>tr|A0A2V9NH91|A0A2V9NH91_9BACT Uncharacterized protein OS=Acidobacteria bacterium OX=1978231 GN=DMG98_20865 PE=4 SV=1 +MNDEETIMKHKLTTALLLALCVPIASATTWYVNGVSGSNSNNCKSPTTACKTIGHAISLAVSGDSIIVAHAIYAENLAIGKNLTILGSGAATTIIDGGGTATVVTISNGTHVTLSKMTIRNGNASGVVVIGFMRAISGGGINNSGTLTLTNSTVSGNLAPIPCIHFFVFCEIRGGTAWGAGIYNSGALIISNSIISGNQAGGYCNATCSSFGGGIYNRGTLLMIKNSTLTGNIADTACSTSISCAVGVGGAFYTVGGTVTLNNSTVTANIADRCSGMCGGTGGAIVNGSGNLAVNNSTVSGNYPAGGIFNSGTATLQNSILANNSGRNCRGIITSHGYNLSSDGSCPFSNTGDLNNTNPLLGTLGNYGGSTQTIPLLSGSPAIDSGNPNGCTDGQGHLLKTDQRGKPRPDIEDTAGCDRGAFERQSD +>tr|A0A7D3VXP3|A0A7D3VXP3_9ACTN TPR repeat protein, SEL1 subfamily OS=Actinomadura verrucosospora OX=46165 GN=ACTIVE_7586 PE=4 SV=1 +MPVRPWSPEDLGRPTDGTWADVAFGLGEIYECEGDLGQAADWFRRAAESGHAAAALRLGAVLGRMADDGADGSAEDLLAEATRWLSGAQDIATPDAIELITDMLNRHQRQAARRGLEPAVATG +>tr|A0A370P2G6|A0A370P2G6_9BURK ABC transporter permease OS=Cupriavidus lacunae OX=2666307 GN=DN412_03430 PE=4 SV=1 +MKSIRLGHAVATVCVVQLLAASPYAVAQGKGSYSQDTVKIGVLTDMSGIFADLGGKGSVTAAQMAIDDFREQNTPPFKIELLQANHQNKADIGASRAREWFDVENVDMITDVINSGVALAVAKVAQNKNKMVMVTGSGTARLHDEDCNPNTIHYGWDARTFANAHVRAQTEQRRKSWFFLSVDYALGRSLEQDATAAIMANGGTVAGSVRHPLSAPDFSSYMLQAQSSKAQVVGIANAGADLVNAVKAANEYGVTRTKSLAGLAATITDVHAMGIDATQGMVVVEDFYWDLNDRTRAWSRRFFDKQKRMPNFVQAATYSAVLTYLKSVLAARSDDSNVVLKQMKQLTINDVFANNGKIRDDNKMVHDVYVMEVKKPQESKAPWDYYRVRRTVAGSDASQPLSASKCPMVKKGI +>tr|A0A1A8TK33|A0A1A8TK33_9GAMM Peptidyl-tRNA hydrolase OS=Marinomonas spartinae OX=1792290 GN=pth PE=3 SV=1 +MTGFKLLVGLGNPGSEYENTRHNAGAQWIEALARQSQCSLRTEKKFFGQFGKVSIAGEECYLLIPTTYMNLSGKAVQAVCQFYKIPPEQILVIHDELDIPPGTAKLKKGGGHGGHNGLKDIIARLSNNREFGRLRIGIGHPGHASQVANYVLKKASQDEYRKIEQTIDESLRYIDDIVGGNLNTVMNQLHSFKA +>tr|A0A373QD60|A0A373QD60_9FIRM Uncharacterized protein OS=Firmicutes bacterium AM55-24TS OX=2292896 GN=DXA10_01295 PE=4 SV=1 +MEEFFNRTDKKYKIIMLCVIVCIIIVAYIGSQLHDDNHLIVGRWEEVGDCWMDELEFFSDGTYSSDKDNYFGSYTIEDGRIRLGGVLMSDLVYSYKLDGDTLILYKKDIDDGDEYRRVK +>tr|A0A7K2JSV5|A0A7K2JSV5_9ACTN DUF2470 domain-containing protein OS=Streptomyces sp. SID5910 OX=2690312 GN=GTW67_25625 PE=4 SV=1 +QELEAAELDPLATSEAGMLTHFVDDHPELVPLLLRLVRPGPDRGVRRALPVGIDRYGLTLRLELARGHRDVRLPFNRPVRDIDHVGAQIHALLSAARRLSHPGHLLT +>tr|A0A6N9SLE2|A0A6N9SLE2_9PROT Cell division protein FtsL OS=Ferrovum sp. OX=2609467 GN=ftsL PE=3 SV=1 +MSRSDILLFVCVVVLALGVIHGQQHARRLFIDLQQARDQQVQLQTEGDQLQIEEGTLSASRRVEDRAIRGLKMQLPKSEQKRLVVLGQPGSTP diff --git a/flax_model/alphafold3/test_data/miniature_databases/uniref90__subsampled_1000.fasta b/flax_model/alphafold3/test_data/miniature_databases/uniref90__subsampled_1000.fasta new file mode 100644 index 0000000000000000000000000000000000000000..d68321dd92b82fb383248f92008f86ccb60a8bb7 --- /dev/null +++ b/flax_model/alphafold3/test_data/miniature_databases/uniref90__subsampled_1000.fasta @@ -0,0 +1,2000 @@ +>UniRef90_A0A8C0C0Z5 NADP-retinol dehydrogenase n=1 Tax=Buteo japonicus TaxID=224669 RepID=A0A8C0C0Z5_9AVES +MATLVPRIVLITGCSSGIGLAVAVRLAQDPQQRFHVIATMRDLRKKEKLEEAAGPALGKTLSIQRLDVCSDSSVAECMENIPGGRVDVLVNNAGVGHVGPVESISVEEMKRIFETNFFGVVRMIKAVLPDMKRRQSGHIVVISSVMGLQGIVFNDVYAASKFAVEGFCESLAVQLLQFNVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPAFRTQTNSLYTPLVALKYADPSGDLSVRTYYRLLFNYGTLFHLSMAALRCLTCGCFRRRVTPL +>UniRef90_UPI001863CDCB tumor necrosis factor receptor superfamily member 19L isoform X1 n=2 Tax=Megalops cyprinoides TaxID=118141 RepID=UPI001863CDCB +MMRNHLRCSALVLLSLLGLRGALATQCGWGKVLTSEGCVCLQCPVGQEPSKACGQAEGPEEVVRCQACSAGTFSDTYDSDLCRPHTSCAALNRLLMSPGSTERDATCGDCMPGFYSAAKEKSSSPDSCVRLIPRPLVRVLRNVGKGVARGTGRGPANATNVRSAEEKNTEYAVFALVPIFCVMGLLGILICNILKKKGYHCTAEKEGGDEEAPTPQKEGNSGPYIVDDPNEDTISVLVRLITEKKENAAALEELLLEYESKQMSISKASSIKFPVLPHLPHQFRSLPRLCPHQHHLHTINGLAPRAGNGSCCSRCSQKKWPELLLPPIDTHKTTTVGGKNPLPGEVTILSVGRFQVAQIPEQKALPAELTPPESSDTDSVDTSHTEAADEKSLLGVSSLSSSSTWTKSKQEDRKFVIRLGETNLVI +>UniRef90_UPI00049204AA adenosylmethionine decarboxylase n=1 Tax=Paenibacillus pinihumi TaxID=669462 RepID=UPI00049204AA +MEYSTFGRHVAVDTWGVDFELLNSAEFLQAQMVEAAESCGATVLSVQAKQFEPQGATVLVLLSESHLSIHTYPEKGFAAMDCYTCGETVDPQMAIDYMLSVLKPKTVHAKKLVRGMGELKVEEPVMQQAELV +>UniRef90_B8CVZ9 Putative CoA-substrate-specific enzyme activase n=1 Tax=Halothermothrix orenii (strain H 168 / OCM 544 / DSM 9562) TaxID=373903 RepID=B8CVZ9_HALOH +MGKYYLGVDVGSVSTDMALIDPFGNLIEKIYLRTKGQPIEVIKRGLKKLKENYGSIKVAGVGTTGSGRKLAGVMLGADVIKNEITAHAVAATHLVPDARTVLEIGGQDSKIIILKDGIAVDFAMNTVCAAGTGSFLDQQAARLGISIGEFSRLALKARSPVRIAGRCSVFAESDMIHKQQLGHDLPEIVAGLCEAMVRNYLNNVAKGKDIKPPVVFQGGVAANIGIKKAFEKELHTEIYVPEHNGVMGAIGAALLAMEEVRSRKKETSFKGFEVTEFKFKTTSFECKGCPNRCEIVNINQDGKTIARWGSKCLKWDMTEDKKKEEVNLNPS +>UniRef90_A0A7R9F0M8 BESS domain-containing protein n=1 Tax=Timema bartmani TaxID=61472 RepID=A0A7R9F0M8_9NEOP +MSSRSLVAGGGGSVRQPTPSSGVKLAGEDFNKDKMYEPKHTKRLVRVLTVVAYVFSVSLAAIMLSVYYVFLWNPRDARHPRLPPPTPPTCQPAQVISMYDNYSTEVGMRKEALQRLHLHGRRVVNHLVKTTFNRADWNLNPNLQQPARTTSASSVEDAEEQSAEDEVESQTDLGPNQLTERSKPTQNNQKSPVRNNTCELEFQLSQFMTLHKERQKDDPDKDDRAFFESLLPSLKSLDTDEKLNFRIHQLTLSLVNNRRAVFFTPSSHPAVLI +>UniRef90_A0A2A9MK67 Ras family protein n=1 Tax=Besnoitia besnoiti TaxID=94643 RepID=A0A2A9MK67_9APIC +MRDPSCWQFPSHSSSQESEAVAWAPPRGPGQSGAGRFEGEGGEATACSALSPAGCPLPPFSVPSASVSSSASLTPLCYAVRSVPSSPHSLPVPAPPPVPPPVAIAPSSFLSPPRSPSLLPSCPSSSSPPVQSSSPLVSPLHAFSPSWAPDLLSRSPSPAVCRKRTEEFSSVPPSPEWRAESRFPTSHRSLLDSPVCRPAVVAGGGVAAGGFLSEGEGAAPPGGEIGSEEEDDGASVASSSSDASTAFLRILVVGDQGTGKSFLLHSLCHSPDPQSEFQRPCPAHRGRRGLREQVDTRASDAGAADEKSAPRQDGTGSRLEHSGSRAQLRRGTPDRRDAVHGVGVRMDASEQLERDADAPFSSFASVELTEWPRRADAETGGTQAGRIRGLPEDGRPRAEPRASEPCLAESCVSAPSEQSGDSTSVPRSPSLSPSASPVPSPSSSFSFSLPTSFCPASSSRPPAPVAPPRAASSSSPASSSAAPVARAASAEAAAAAQPAACEDASRQRECTCEADEQQCPACRLPGSYEWTCGVRIFHMFWELPPRERGSKDRQRQSSPGSSSSESSADSLSERGRPAASYPLLPESDASCASGAAAARSAGAATRCLVEFWEVGGTEMLESVRSLAYGQEFDGVWVCFDSRSAASFHHAALWTRELCVHLHLPSSLLFPSSGPQAPLSLAPRSYEAAAPSSSLRSFLPAPAVFQSFACSRRVRRWRRHQEHNAAGEARQRSAEGAAHEVQSLTSFFQMLPTSTVGKVTRAAASAVVRLGSTVASPVVSLVAGERERETDDSATDREEDEMARLKPEREGRGRRKFSAKPSRPFRKGSRRTARFASSLLTSASSVRPPPGMPERDGEEEPREDGEGGGTSVEEKDVELGVLEGGRETLESPADAECRADTASAAKEGTAPTLEAAAFPKGQQGAGPGPEDPDGASSRAFANLEKELTHQQFAVRLLQGVCPVLLVGTKEDLLLSSTAARQTSNESAGGGCEVDEKGLSPFLKHLRSRASVLSGFLSSSSPEAAAGCAVGEDDEDGRGGEAACRASDPSCAAPALCLEEDIGGGTPSRLQTPFSRAYFTQNSFVKARDNIFARLCGTLGPRRVPSGDARLALDGDAGVKLNRRICHLLNSSPLVLTSAVGRTVDPAALSAFFSDALLCQTLFRERSREKKVRRRSKAKSRGARPPVDVMQHVEDAPALLSPLPSPSLRASPGVALSDSANVRRVGVGAGDAAKQTAPVGEAEDGGATPPHARGRAQQPCQDPRLGEERELSADPEPRESPVAEDRPAEERDGKLDGKSRPQTPFSDVAAAAVAAGAAAAAIQWLH +>UniRef90_M3EC79 DDE_Tnp_1 domain-containing protein n=1 Tax=Streptomyces bottropensis ATCC 25435 TaxID=1054862 RepID=M3EC79_9ACTN +MPDAPSARSSLFRAGDRLGPEPLRVLFATTVKPMATEATTGAFWRGLRLPAVDGTCWDPCGQRSRRGRLREAGQRPRDGPERVSPGADGRSGGGGHACGAGRGTRRLAAPGESPLVGRLPGSYGPGQLVLADREFLGTGLWWAFTTTGADPLGALSGGQAPEDC +>UniRef90_A0A4Y2GBA1 Uncharacterized protein n=1 Tax=Araneus ventricosus TaxID=182803 RepID=A0A4Y2GBA1_ARAVE +MSRPLFVIGAKKARNPRPQNKDERVSPHSLQPTTCPDGPEVANDRRARASTVHLRAPLMPKKEERAAACHLQMEIKREAVQFRFAGQSGAEYRLSRASHFGQVARGRHAPSVEKRGERGLTIFLRFLVSKMPWSPEAVRETHMPLCLRRPAMFGSCCFNLDGFGQMARYEGCRWGLRSRRAARGILANCAVMRAPGKGSSHRRFLKSCAEYPDDMQMSSGLFIAVCPVHELPLRFLLAVLLDLEEDVDRCIEHEDHQAKPFISVHELPLRFLLEVLLDLEEDVDRCTEHDGDEEHDGHQGEQIGQEDQVGLKHFSL +>UniRef90_UPI001E28E105 low molecular weight phosphotyrosine protein phosphatase n=1 Tax=Paracoccus sp. MA TaxID=2895796 RepID=UPI001E28E105 +MPPPSVLFVCLGNICRSPLAEAALRAAAKRAGAGLLIDSAGTGDWHLGHAPDRRAQAVAARAGIDISTLRARQVAAEDFRRFDHIVAMDRQNLADLRRIAPLDGRARLSLLLDHVPGRAGQSVADPYFGEAAGFETTWHDVTAGTQALLRLLLGPD +>UniRef90_A0A522C2W7 MBL fold metallo-hydrolase n=1 Tax=Frankiales bacterium TaxID=1909291 RepID=A0A522C2W7_9ACTN +MSTFRVEHLSTSGTFSLDGQTFDVDNNVWLLGNDHEVLVLDAPHDAAAIERAVAGRAVVAIACTHAHDDHVRYAPELAERLSTQVLLHPADRVLWDLTHPDRAPDGELRDGAVLEVAGTRVEVLHTPGHAPGAVCFSVPSEELLFSGDTLFAGGPGATGRSYSDFDTILGSIRSRLAPLPPATTVHTGHGPSTTIGAELPSYDEWVRRGH +>UniRef90_Q1PS67 Telomerase reverse transcriptase n=8 Tax=Oryzias latipes TaxID=8090 RepID=TERT_ORYLA +MTSGDLSSVLNILRSLYKRTRTLEEFADGVVFREGRRAALLQPSDTHSFKSFVRGVFVCSDEELQDVPSCNQTCTFPELLAFILNSLKRKRRRNVLAHGYNFLGVAQEDRDADHFRFQGDLSQSAAYIHSSDLWKKVTARLGTDVTRYLLGSCSVFVLAPPSCVFQICGVPAYDRVSMTTASSGFLLRPPSRKHKSFQVGKKTRSANLTKTGSVGDVEESRKRRRVESEVSTRKRKRESEEEESRERRRGVHHEERRQHEAVLDESTLSGKSGENDAAAVKPPPETSAAPPPLEGGPSWRSGAFPPLPSSQCFIRTLGFLYGGRGMHGFCLNRKRRTAAGPRRLQGQDLVRLVFFEGLPYLNGQERKPKKLPLRYFNMVPVFGRLLQRHRKCRYSSVLHRMCPVVELSRAAQGELSSLIPQHCAPHRVYLFVRECLTAVVPEELWGSDHNRLQFFSRVRGFLKSGKFERISVAELMWKIKVMDCDWLKLRRTAGRFPPSELAYRTRILSQFLTWLLDGFVVGLVRACFYATESVGQKNAIRFYRQEVWSKLQDLAFRRHIAKGEMEELSPAQVASLPKGTVISQLRFIPKTDGMRPITRVIGADSNTRLHHKRIRDLMSMLQARVRSAPALLGSTVWGMTDIHKVLRSLAPAQKDKPQPLYFVKVDVSGAYDSLPHDKLKEVITEALSPVQEEVFTVRHYAKIWADSHEGLKKAFARQVDFSDGSMGSTSMKGFVMSLQKSSKVHHAVLVEQAFGSNLRGKDALQFFTQMLTGSVVQHGKKTYRQCRGIPQGSVVSSLLCCLCYGHMENVLFRDIKNKGWLMRLVDDFLLITPDRNQAQSFLSILLAGVPQYGVVANPQKVVVNFQGSEGGGAFPDIRVLPPHCLFPWCGLLLDTRSLDVCKDYSSYAGLSLRYSLTLGSAHSAGQQMRRKLMSILRIKCHPLFLDLKTNSLESAYKNIHKLVLLQACRFHVCVQSLPFAQTVAKNPTYFQQMIWDMAHYANALIRRSNTGLVLGDGAQKGSVQYEAVELLFCLAFLRVLSKHRPVYKDLLPRLHKWKRRLERLLGDLRLARVRQAANPRALLDFLAMQM +>UniRef90_A0A6B3G495 Alpha/beta hydrolase (Fragment) n=1 Tax=Streptomyces sp. SID7982 TaxID=2706094 RepID=A0A6B3G495_9ACTN +MPRSLQAALILLHVLFVATLVGAIRALSTASSVDAVDGYLLGLLLYASLPGVAVFVLSLYVRHGGVRAWYGLLAVLAWIVLGALAELSGGGAEGQGVARLAVPVAVIVLLCRPESRRWFRSGLEQRAEQRLFSFARMMRLRRDGGQTALEYLGLVLVVVALVGGLMATGTGQQLTAEIRSAICELTGSSCPAPGRDVAAGGGSGDGGADGGGDRDTSSSGADGMSGEGESSLTGGTGSTGTTGENATSGTSGTTATAGSPGDTATTGSPGDTATTGAPNTPQGSTPFPQGDFIAPVDAGRPAGPHGGGFIGGFLGDGVGGDVRGVVGAVLRPGETGQRIADQWARDTRGAEQKWARGDYIGAAWDWNKAVGGAGAGLAIPGSGARVDAEVRDAERAHLGERIPQNATPAQRKAWWDGLSPEERERYIELLPERIGNLDGIPVLAR +>UniRef90_A0A833ECX2 Enoyl-CoA hydratase/isomerase family protein n=1 Tax=Caldiarchaeum subterraneum TaxID=311458 RepID=A0A833ECX2_CALS0 +MSRQYQDIIYDKSYHSHTALIQINRPHELNSYVLNTLREMIDAFDDAMWDDNIQFIVLTGAGDKAFCTGGNVREYAEIYNRKPSDWWKWGEIYGRFLDVIMHCGKPVLARVNGIVAGGGFEFVAASDLAVAAEHAKFISPGPRVGMTSIGGLSQWLPLHIGLKRTAQVVMTSDEIPARQALEWGIVNDVVPYEGLDDKVKEYIDRMLELSPTSLHYFKVHLNWWRDLVWRLTWEHAKEFFSLNIGGIEPAEGLHAFKEKRRRRYREIRGDIGRGVDPRYPHGPYMLSCNGCGAKYLPLASSYCLNCGKPIKG +>UniRef90_UPI00046BDA5A protein O-mannose kinase n=1 Tax=Eptesicus fuscus TaxID=29078 RepID=UPI00046BDA5A +MEMKPQDGRRSPPHREVPPVVGLLLALAVMNALLYLCLDRFFIAPRRSAPDPRHCPSGHFRVGRMNNCSAWLSCEELRTEVRQLKRVGEGAVKRVFLSEWKERKVALSRLTSLEMKDDFLHGLQMLKSLQSQHVVTLLGFCEEDNTILTEYHPLGSLSSLEATLNLSKYQTVNTWQQRLQLAMDYVGIIHYLHHSPLGTRVMCDSSDLPKTLSQYLLTSNFSIVVNDLDALPLVNRSAGALVKCGHRELHGDFVAPEQLWPYGEDVPFRDDLMPSYDEKIDIWKIPDVSSFLLGHVEGSDMVRFHLFDIHKACKSQTPAERPTAQAVLDTYQKVLSLLRDTVTSQTREML +>UniRef90_A0A0F9NQL3 HTH_7 domain-containing protein n=1 Tax=marine sediment metagenome TaxID=412755 RepID=A0A0F9NQL3_9ZZZZ +MKINVSIEKEYIKCPVCNGAGKIEEIHSDIKIKHAIVIKLFNEGYTYRKIMKLTGYKSTNSISDILIKNKMKLEKPIKNR +>UniRef90_UPI001866D008 ABC transporter permease n=1 Tax=Fluviibacterium sp. MJW13 TaxID=2720031 RepID=UPI001866D008 +MGARILNALFVTAVLLGLWQALVTLADLPPFILPGPVRVAQALWNNAGLIGWHALVTFSEVLAGLVLGSLLGIVTALQLATSGLARRLIRPALVLTQALPVFALAPILTLWLGYGLWSKVLMAVLIIYFPVTSAFFDGLMQTPRGYLDLAQTMQATPRQRLWRIRVPAALPGLASGLRLAAVYAPIGAVIGEWVGASNGLGYLMLLANGRAKIDLMFAALVVLACLTLTLHVLVSRACDRLTARMV +>UniRef90_A0A5C5WGI8 Periplasmic protein n=1 Tax=Botrimarina hoheduenensis TaxID=2528000 RepID=A0A5C5WGI8_9BACT +MPALSTPALAVPALADLAPLESRVQEALTGSPYLVASNRLRVEAGEGRVSLHGHVGSFFEKQMAQEVARRIDGVQQVENLLTVAWA +>UniRef90_A0A2K9F958 Lysine biosynthesis protein LysW n=1 Tax=Paracoccus tegillarcae TaxID=1529068 RepID=A0A2K9F958_9RHOB +MPAREAHQPITINCPHCGGESILADACARWNVETQEWELSTVYDDKTCADCGIEVSAEERSVQEGA +>UniRef90_UPI0014593CCD alpha/beta hydrolase n=2 Tax=Aromatoleum aromaticum TaxID=551760 RepID=UPI0014593CCD +MKTWVFLRGLTRESGHWGGFLETFACIVPDSRIVALDLPGTGARHRETSPGDVPRIAEDCRSTLFRLGVDPPYRLLALSLGAMVALAWADRHPAEIAECVLINTSLRTYSPFYRRLRPRSYARLLYLALRDDARACETMILRLTSGQRDERLVDEWVTLRVRHPVTLANAVRQLFAAARYRPPRDRPAPPVLVLASRNDRLVHVACSKAIAAAWNCSLRIHPYAGHDLPLDDGAWVAEQVRHWTDGGGA +>UniRef90_A0A0F8UN67 Cupin domain protein n=3 Tax=Aspergillus TaxID=5052 RepID=A0A0F8UN67_9EURO +MFIRPPLEIQVTSRQIPQWNCIPNTSIQSKPLMIYHQAFAASPEELKQHFRMVGEVTPGWVYTMYSQTHFHSTTHEVLGVVSGSAYLCFGGEGNPGRFETRVEKGDMIIIPAGVGHRLLHEPDLDKGSFKMVGAYPQNKTWDMCYGQSGDEEKCRNIESLGWFQADPLYGTDGPALRV +>UniRef90_A0A2C9GSP0 Glutamate-gated chloride channel n=2 Tax=Anopheles TaxID=7164 RepID=A0A2C9GSP0_9DIPT +MLDHASKAPKSAGWIKLNVFRMASGHFFCAIFYFACLCSASLANNPKVNFREKEKKILDQILGAGKYDARIRPSGINGTDDKATQVFVNMFLRSISKIDDYKMEYSVQLTFREQWLDERLKFDDIGGRLKYLTLTEANRVWMPDLFFSNEKEGHFHNIIMPNVYIRIFPYGSVLYSIRISLTLACPMNLKLYPLDRQVCSLRMASYGWTTADLVFLWKEGDPVQVVKNLHLPRFTLEKFLTDYCNSKTNTGEYSCLKVDLLFKREFSYYLIQIYIPCCMLVIVSWVSFWLDQGAVPARVSLGVTTLLTMATQTSGINASLPPVSYTKAIDVWTGVCLTFVFGALLEFALVNYASRSGFIVFLCETNTINVNNIFAHGQTSVATHRSVYHFRFYCIRSFILSPPTHPQLNRHTHFRFRITPVNQPPTAISPVTPSVKHSHNYERYLVLFVPHLGSFDAFSLFLEKQNLFSFEPPVPGILLFYNNQKFNYFHPFLFALNIRLLLGIVGLTFPLTFSPIWHVNI +>UniRef90_S5G9S1 1-phosphatidylinositol 4,5-bisphosphate phosphodiesterase gamma n=17 Tax=Percomorphaceae TaxID=1489872 RepID=S5G9S1_PAROL +MCAARFSGCLNGCAEEAAAGAAGPVMASRMMDWTEAGPRILHSLEMGTVMTVFYQKKSQRPERRTFQIRQDTRQIVWSRNPDKVEGEIDIREIRELRLGKGSRDFERYPEEARKLDSAHCFIVLYGLEFRLRTLSVAAFSEEEVNIWVTGLNWLMIDTQRAPAPQQIDRWLRKQFEVMDRNHEGSVTVKEVKALLPQVNYRVPNMRFLKDKLQEVEARSDLSYPNFAQLYRTLMFDAQRSIIEQLELAFPLRNVDRPELCQISLYDFQKFLQMDQKESWASELSRVREFLMGYMMGGPHPEPMLQLDEFLTFLFSKENSVCDPRLSPVVLDDMKRPLSQYWISSSHNTYLTGDQFSSESSLEAYARCLRMGCRCIELDCWDGPDDLPIIYHGHTLTSKIKFLDVLHTIKEHAFVTSEFPVILSIEDHCSVVQQRNMATHFKKVFGDLLLVKPVDNNAEELPSPHQLRRKILIKHKKLVEGTLYEEVTSASYSENDISNSLKNGILYLEDPIDHTWTPHYFVLTSNKIYYSEETSHYQTADEEEDDEGKEEHNNNNNNNEQHCAERWFHGKLGGGRDGRQVAEKLLREYCEGGAKDGTFLVRESETFVGDFTLSFWRSGRVQHCRIHSRQESGSTRFYLTDNLVFDSLYCLICHYRVTPLRCNEFEMRLGNPVPQPNAHESREWYHSSLSRVQAEHMLMRVPRDGAFLVRKRSEHNSFAISFRAEGKIKHCRIQQEGRLFMLGSSAEFESLVDLVSYYEKHPLYRKMRLRYPINEDTLGRMGTTELDYGALYEVRTPHFYVEANKMPTARCTVKALYDYRAQREDELCFPKQALILNVDKQEGGWWLGDYGGKKQLLFPANYVEEVPSSPTREQEDVSTENSPLGTFLKGFIDVPSGHVVVHKDGKNSRPYVSTIHSQHLSSHPVQTLDVAADSLEDLTSWVAKIREAAQNADARMQEEKQMERRKKIAVELSELVVYCRPVPFNEDKIGTERTCYRDMSSFPETKAGKFATRSRGKRFLQYNRRQLSRVYPRGQRLDSSNYDPLPMWLCGSQLVALNFQTPDKPMQLNQALFMLGGGSGFVPQPDIMRDDAFDPFDKDSLHVEPITIQLQVLGARHLPKNGRSIVCPFVEVEICGADYDGCKCKTDVVADNGLNPVWVQKQFVFDIHNPTFSFLRFTVYEEDMFSDPNFLAQATYPVRLLRTGYRSVSLKNSYSEELELASLLVHIEIVNAKEEDDENLYTSIQLLRDRTSELSSQVSVLERSGSADLSYQQSLEELRAAQDQLSELVEARNRRLTEKKRREKLRQQVAAKRS +>UniRef90_A0A3L6FD03 NAD(P)-bd_dom domain-containing protein n=4 Tax=Zea mays TaxID=4577 RepID=A0A3L6FD03_MAIZE +MEDTIMAPSTLIIKSMSSMVDQVAAAVRSPAQEFYIKSRLLLRDPEKALTLFGKQDESVLQGVTHVICCTGTTAFPSKRWDGENTPERVDWNGIRNLVSALPQTIKRLVLVSSIGVTKYNEIPWSIMNLFGVLKYKKMGEDFVRNSEYHSRLSCIQVFTEKFFGGSEIYSDMIQAVCRPGRLTDGPYTSYDLNTLLKATTGERRAVVIGKGDKLVGEVSRLVVAEACIQALDIESTEGQMRLIQ +>UniRef90_UPI000CE4C9A8 pyroglutamyl-peptidase I n=1 Tax=Arthrobacter sp. GMC3 TaxID=2058894 RepID=UPI000CE4C9A8 +MILLTGFEPFGGESFNPSWAAAQQAAASLTASGLPARALQLPVEFGTSADVLRRALATDPFDLVIAVGQAGGYGTLMLERVAINVDDALFPDNAGHSPVDEPVVAGAPAAYFSTLPIKACLQALQDAEIPARVSQSAGTYVCNHIFYALMNALADMPGVRGGFLHVPYSPEQVTDGKHPSMDVAQVARGLELMVRTSLATEKDLKLGAGTTH +>UniRef90_A0A1G2CBS7 POTRA domain-containing protein n=1 Tax=Candidatus Liptonbacteria bacterium RIFCSPLOWO2_01_FULL_45_15 TaxID=1798649 RepID=A0A1G2CBS7_9BACT +MPKENPVLWSDVRSREERRRARIFSSLVFLIISAFLIFGAWAVIYSPLFKIKSVEITGNKSVSDGDIMELATAEIPRGSFWKSVFGTGNILTWPDGFSGESLKFLPELKSFSVQKSYGQRKIKITVEEKKPFGVWCLLGARISADETQISADTKNNISENQPQNLRESAADCWWFDSSGVIFRKAIGVEGNLIASLDDYSQKNIGLNSKILPDEFIPNIFSIFRAVSASGLSVKEMRLNDLALQEIEVDTYNGLPADLSAIALATAEALAKAGPKIYFSLRFSADNVPEVIKSLKEKTTFGSLQYVDFRVENRVYYK +>UniRef90_A0A410GDA7 Glutamate--tRNA ligase n=2 Tax=Alcaligenaceae TaxID=506 RepID=A0A410GDA7_9BURK +MTTSTPTQVRTRFAPSPTGYLHLGGARTALFSWAFARHHQGVFVLRIEDTDLERSTPEAVQAILDSMDWLGMQPDEGPFYQMQRMDRYREVIARMLKEGTAYYCYSSPAEIEAMRDKARAAGLKPRYDGTWRPEAGKTLPSPPAGRKPVVRFRNPVDGVTAWNDLIKGPISFDNTELDDLIIARPDGTPTYNFCVVVDDWDMNITHVLRGDDHVNNTPRQINILRALGATLPEYGHLPMILGPDGEKLSKRHGAVNVMEYEGQGYLPEAMINYLARLGWSHGNDELFTREELVAWFDTRHLTKSAAQWDPKKLNWVNAHYIKTTTDADLAAHVAPRIRTRGGDPDAVDLLAVMALLKDRAETLEQLADGAMLFCAPFSPADPELQAQYLDDGAKSLLAAFAAKASDLAEWNTESLDGLIKELLTEHGVKMPKLGLPLRLAVTGQKQTPAIGAVLAIIGRERVLQRLAAA +>UniRef90_A0A481SX22 Putative ras-related protein Rab-2A n=1 Tax=Franklinothrips vespiformis TaxID=297892 RepID=A0A481SX22_9NEOP +MSYAYLFKYIIIGDTAVGKSCLLLQFTDKRFQPVHDLTIGVEFGARMITIDGKQIKLQIWDTAGQEAFRSITRSYYRGAAGALLVYDITRRETFNHLTTWLEDARQHSNSNMVIMLIGNKSDLETRREVKTEEGEAFAHEHGLIFMETSAKTADNVEEAFINTAREIYEKIQEGVFDINNEANGIKIGPQKSSTDPSLPSSGQGAGQGSGCC +>UniRef90_A0A2A5J168 GGDEF_2 domain-containing protein n=3 Tax=Rhodococcus TaxID=1827 RepID=A0A2A5J168_9NOCA +MSQPLNASPALLSIFWHSREDYSMAQWWIHFDLAGIQRYVFASRTLLDAIGRAAQVEDATDRAVLTAAAVLPEGVEVEFGAAGALILTTEATEFDNPEQPPQRVKDAVSAYTRWLYEVSDAFTPVVAIQYVRGGEEQQAQMAAADLLRQARHKRIPGVGSAVPPGVLRCALTGAPATDFLPPASEIPVAAEALTARRRGRTWHEAQQSKILASAPLPDGLSVDLPVQIDHLGRTEGASSHVAVLVIDVNDLGAALRTLPPDTLHARSAVADHLRALADELAEHLVHRVCSAIEITAGVPSIAGAPTALSFPLHQAPSPSRAAEPDALSCLTADRSTLDSPGEDLGQTAAPARWSLPLRPWVIAGDDLVLVCESRLAWDLATAAMNWIGEPATSGARTDLAGLGPAFGTGGRLSLTVGIGIAVVPVGYSLAAAHDLAAGLCKNAKKQRRDNKWTGHVLDWHRGPSAIADVLAHRARSDLRSGLRPYRYAPKQAPDESHTSTPTWSDVMTLLDADSPGSMRGPTVDEKSHGWASRRNWVKTDLLAAARSTGNNAVENALAAKNTREKVLTDAPMAELNIDGNSWQECDRANLIVDVIDLLDDHLDLTAAVSPS +>UniRef90_UPI0002377054 shikimate kinase n=1 Tax=Verminephrobacter aporrectodeae TaxID=1110389 RepID=UPI0002377054 +MQIRCALVGMPGSGKSTLGRQLAQHSGVPFIDLDQRLEQTLGCSIRSYFEVAGEACFRDLEAQALADVAQQPGGMLLSTGGGAVLRADNRDVLRRFGSVFYLHALPEEICRRVQHDRTRPLLQGGNPLKRLRALYAQRDGLYRETARHVIETGRSSVRTLVGMAALQLEQDLAADAAQRAAE +>UniRef90_A0A251XIF6 RibD_C domain-containing protein n=1 Tax=Clavibacter michiganensis subsp. michiganensis TaxID=33013 RepID=A0A251XIF6_CLAMM +MLDDAGTRTWLEDLYRPGSADHVRLNFVASVDGSVVGADGTSDSLSSVVDRRILGVIRELADVVLVGAGTVRAERYVLPAGRPWQSPPRRAIWRVTASTRTPRRAASSCSARRRRATAPSRRSTACRRRS +>UniRef90_A0A5F0LGG4 N-acetyltransferase family protein n=6 Tax=Herbaspirillum TaxID=963 RepID=A0A5F0LGG4_9BURK +MTTSIRPATTADAAAICEIYNHYVLTTTISFELEAVSTEEMAQRIVEVSAIFPWLVYEEDGRILGYAYATKWKARKAYQQSVESSVYMAKDSGGKGVGTKLYSALFAELKACGVHAVMGGIAQPNPGSIALHEKMGFVKVAHFAQVGRKFDQWIDVAYWQLIL +>UniRef90_A0A849U3X0 Glycolate oxidase iron-sulfur subunit n=1 Tax=Methylococcaceae bacterium TaxID=1933926 RepID=A0A849U3X0_9GAMM +MFEFMDMEYDQAVDASEQTGPYIPEAGECMRCGQCVSSCPTFRLFQIDEETPRRRIRTISKVLVENLPISDDERHHLDNCTQCRACETVCPSRMAYGQLFDLARAQFQAEPGSLAKLAFKLIENKSWRRRLMPLLAIYLKSGLQKPLRRIGLLKKLGLAEAEALVGNPALQALATSYSARAAMRGRVALFTGCIAEHFDRDTLLAAIKLLNAIGYEVLVPPQQGCCGAIHQHNGQSAVGLINNNIAVFNALDVDAVLHTASGCGAMLSEYQADDDAAAELFKQRLQDIYDFLLKHWPDDLQLMDSTLNVAVHEPCSQRNILKNQQSVYALLQKISTISITPLADNQVCCGAGGSYMLTHPDNSGQLRELKRQAIGAAQADLVVSSNFGCAVFLSSDSVRVAHPLILLAGQLQ +>UniRef90_A0A3R7NVI0 Saposin B-type domain-containing protein n=2 Tax=Trypanosoma rangeli TaxID=5698 RepID=A0A3R7NVI0_TRYRA +MRKDHQMRTFIITVCILVVLLFSSAVAAKKEKPLHIPFPKDAVDGISCGVCTFVVKQVYRDVLVLFNASIRRRVRMSEDDVLTALEDVCNPFAETGQWIRRITITHKRETAPFLGVEELQVYTKCKRTCSTVVEACEGVLDHESMDMLSPRLLHLTEYADADKFAEALCDRSPICTKRWGLTASRYDELTTMIDEDTMEEIDPKEMEVERMMDHMERKENRRHSIFYRDEIVKMQEAILRGDKEAVAKVDPSIADLSEEEFAAVQAMVRGKNNEKLRSGTHRADDEGKARDTQRRKHRESDGGEGDLENFELEQEDL +>UniRef90_W6KER4 Cytochrome b5 heme-binding domain-containing protein n=1 Tax=Phytomonas sp. EM1 TaxID=479712 RepID=W6KER4_9TRYP +MLSSLLGFNLWQKKWPLLSDEEICKHNNRMSLWIVSGNSVYDVTSFLNSHPGGDAILLRCGGGSKNCAEDFALHSQFGQRQWERLKIGEISEASTTKKSIFYGKEYSATDPEEEEEAALC +>UniRef90_A0A7W4J316 Amino acid ABC transporter permease n=1 Tax=Gluconacetobacter asukensis TaxID=1017181 RepID=A0A7W4J316_9PROT +MIDWHFIAIIMPRLLRACGQTMGISLCSLSLATILGLSVALLRLSPIRVLGTAAWTYVWLVRGTPLLLQLFALYYAVPLTGLRLDPWLAGVLALGFNSAAYFSEIFRAAIQSIPPGQSEAAIAIGMGPATTLWKIVLPQALRPALPPYIGQAITLIKNSSLVSVIAVPDLMQTAQSIYSVTFKVVEVMLATGVLYLFMTTLLQIAQTWLERRLNYYTVK +>UniRef90_UPI00174618E5 clostripain-related cysteine peptidase n=1 Tax=Phormidium tenue TaxID=126344 RepID=UPI00174618E5 +MYAQRLLRSSRLFDSDRQASFDQASRSASLFSSDSPRDTTRAGQRNRAAAAKSAKRQPRRQKTRSVGSAADWTVMVYMAGNTLERFGIQDFLEMANVGSDSRINLVVQFDRTAGGNTSYGNWTDTRRGLVRAGDMPNAFWGNGLGELNMGSTATLKNFVDWGTNTYKANRYALVMWGHGDGFNVSYDDNTGDGISGSELSSVLSSTGNKIELVGTDACLMATTEFAYQIADNASIFVGSQELEPGTGWNYTTTLQDLKANPTMSAAQLGSSIVTRYGQAYPTGNETFSAINLLALRSSNASSLTNTLNSFASTALTSATSSDLSILDSLRDYFANDFGDATYRGSEDLCDVGNLFSNLVNRLDISAAVRTAAQSVLTAYDSTVLQNYSATPGRSTGLSLYFSDRNSIPKSSYTSRLYGFLATTQWDEFLQGWLWN +>UniRef90_A0A1A2YYB8 MarR family transcriptional regulator n=1 Tax=Mycobacterium kyorinense TaxID=487514 RepID=A0A1A2YYB8_9MYCO +MGRIEDAPLGYLLYRVGAALRPEVAAVLRPLELTLPEFVCMRILSMYPGMSSADLARQTNVTPQAMNTVLRKLEDVDVVARPATVPSGRALPATLTTAGRALLKRAEAAVREADARILSKLSASEQREFKRMLEALGSD +>UniRef90_UPI0003641618 heavy-metal-associated domain-containing protein n=2 Tax=Streptomyces TaxID=1883 RepID=UPI0003641618 +MTAQTDTQGSVTTVYKVSGMSCGHCEGSVSGEISGLPGVSSVKAVASTGEVTVVSAAPLDDEAVRAAVDEAGFELVGQA +>UniRef90_R9J9S0 DNA repair photolyase n=1 Tax=Lachnospiraceae bacterium A4 TaxID=397291 RepID=R9J9S0_9FIRM +MKNLKEDYFNPFFSHIYVEKSVRNHARTQNILAKFPSAQIIEIGHYKDVFCRSRQNIRLQHCAQKLILAARQGTLLYEGAPVCQRFGNEHFYYVSCAMNCIFDCAYCYLKGMYPSANIVVFVNLEDIFAEVERVLENHPLYLCVSYDTDLLALEPLIGFVQEWCAFAAKHAQLTIEIRTKCANKAFVQSIVPMPNVIYAYTISPQAVIDAFEHHTASLSDRLFCAAALMRAGCPVRLCFDPMIYLPGWKTHYSEMMNQVYRSIAVDQLLDVSIGTFRISQDYLKNMRKQAKDSAVIWFPFQKEDGYCHYPAPLMEEMESFLTAQIAEKIDREKIFRWNV +>UniRef90_A0A6I6SRI0 Gamma-glutamylcyclotransferase n=2 Tax=Halomonas TaxID=2745 RepID=A0A6I6SRI0_9GAMM +MRLSHVVLAASAALLAIVGWLWLTMLSPLTYDRPDHLPEIDEGEHAVFVYGTLRFAPVRWVVMGRAGETEAAVLEGFRREGLDLAEAPDERVQGEIVVVDADELERLDRYERLGIRYQRVPMRLADGRVAWVYRRLNEITQASESPATD +>UniRef90_A0A373XTP8 Dihydropteridine reductase n=1 Tax=Ruminococcus sp. AF17-11 TaxID=2293150 RepID=A0A373XTP8_9FIRM +MNTDKIYAEQLANEYTPKDTSKVVALRKLDAKAKLPATIFTYTFGIISALIAGVGMCLSMKVIGSGSDAMFILGIIVGIIGFVGVAVNYPIYKKLLNKGKKKYAFEIVQLAKEISEKDM +>UniRef90_A0A366JGF4 FAD:protein FMN transferase n=1 Tax=Marinomonas rhizomae TaxID=491948 RepID=A0A366JGF4_9GAMM +MRKKILFSVFLLIAIAVVYRLSVFTPELASFSGPTMGTTYTVKFFTTKEVGDAWVVKEDVDAALVRVNSLMSTYDPNSELSLFNTLPAGQSAVISDDMAYVVDKALLISEMSGGEYDVTVGPLVNLWGFGPGKHEDKVPSQELIDEAKSRVGYQYLKLDGRRLMKEKDIYVDLSSIAKGYGVDAVARVLQDRGIESYLIEVGGEIVSKGLKPDGAPWRIAIESPAGGHDIAERIISVTDVAVATSGDYRNYFEKNGVRYSHTISPISGRPITHRLVSVTVVDKTTTMADGLATAVTVLGPDKGFEFVQKNGIAAYLLVKTDFGFEEHSSDAFKAYLK +>UniRef90_UPI0019100A88 hypothetical protein n=1 Tax=Aliterella atlantica TaxID=1827278 RepID=UPI0019100A88 +MVLIDNPNTRVTVRNIVQTLVFEDEEENTISETNGCLVGKLIEVRFGLLRSCGKEK +>UniRef90_UPI0013E3DCB5 hypothetical protein n=1 Tax=Streptomyces sp. B29(2018) TaxID=2485016 RepID=UPI0013E3DCB5 +MSNVDELRDLPALLQRVDFREEVVPHTAGAIEVFFGECREMPLRAVDPTKPRERHV +>UniRef90_A0A8C8YVF0 Actin binding LIM protein family member 2 n=1 Tax=Prolemur simus TaxID=1328070 RepID=A0A8C8YVF0_PROSS +MSAVSQPQAAHSPLEKPPSTAILCNTCGNVCKGEVLRVQSKYFHIKCFVCKACGCDLAEGGFFVRQGEYICTLDYQRLYGTRCFSCDQFIEGEVVSALGKTYHPDCFVCAVCRLPFPPGDRVTFNGKECMCQKCSLPTSVGSSAHLSQGLRSCGGCGTEIKNGQALVALDKHWHLGCFKCKTCGKLLNAEYISKDGLPYCEADYHTKFGIRCDGCEKYITGRVLEAGEKHYHPSCALCVRCGQMFAEGEEMYLQGSSIWHPACRQAARTEDKNKETRTSSESIISVPASSTSGSPSRVIYAKLGGEILDYRDLAALPKNKAIYDIDRPDMISYSPYISHSTGDRQSCGEGDQDDRSYKQCRTSSPSSTGSVSLGRYTPTSRSPQHYSRPAGTVSVGTSSCLSLSQHPSPTSVFRHHYIPYFRGSESGRSTPSLSVLSDSKPPSSTYQQAPRHFHVPDTGVKDNIYRKPPIYKQHATRRSDGEDGSFDQDNRKQKTSWLILKGDTDTRTNSPDLDSQSLSHSSGTDRDTLQRVQGDNFHSRPPYSKSDSLPGHGNNGLDHRNANLAPCGADPDASWGMREYKIYPYDSLIVTNRIRVKLPKDVDRTRLERHLSPEEFQEVFGMSIEEFDRLALWKRNDLKKKALLF +>UniRef90_UPI002036F24A dirigent protein 23 n=1 Tax=Beta vulgaris subsp. vulgaris TaxID=3555 RepID=UPI002036F24A +MNKFRLPTSFICVVLTFYIVNVSSAKTPSWAKTERYGHEHKTVIQFYFHDVRSGDAPTVALIAQPVEARSFASGFGNLFMADDPLTVSPDPNSKLVGRAQGFYGSASQESVSYIMGLTYGFVDGIYNGSSVVIFGRNSIVNRVREFPVVGGTGIFRMARGFAVAQTYFHNSTTHNAIVVGYNITVFHLELAMGRAGPDHGPGPRAEVEYGPGQARGP +>UniRef90_UPI000C85D657 HNH endonuclease n=4 Tax=Vibrio TaxID=662 RepID=UPI000C85D657 +MNWVIYVANATTKNFDIGLNQGIWGHKEIFSTVNTDKIKVGDTLYFVHHLTFMRDDNGNVIKGAPRVAAEHYKGSISTLVETRVTKGFYIDKKTVWPDDIYPNRYNFEVIEKHQNLPFSDEFFSSEFVQAVRTSTLTKGLAIELEGEHGEVYASNENIDLEYFEGNTVFRRHLVRERSTKLVNDKKRSVRDANLKLACEVCGFDFEDTYGERGYDYIECHHKNPLSESNGQKTKLKDLALLCSNCHRIIHRSRPWISVDELKEILNERASEATV +>UniRef90_A0A507FHA7 PRP1_N domain-containing protein n=1 Tax=Chytriomyces confervae TaxID=246404 RepID=A0A507FHA7_9FUNG +MFHKPAFAPDFLSKKPPPNYIAGLGRGATGFTTRSDIGPAREQAPEEVAPPAIGPMMGGPAIGPGMPGMPPGANGDAPKKPLDDDDEQFQDPDNETGLFNTAPYEADDEEADRIYEEVDKAMDERRRARREAREREELERYRKERPKIQQQFADLKRGLAAVSQEEWAALPDVGDLVRKKGTKKKLPDRYTPSADLITIGGGFGSTVSGGGDAASGFATSIDPRMMGGLSTPAGTASVAGDQSGILTDFVQFGQGRNKVLGLKLDQMSDSVSGQSTIDPKGYLTDLNSMVTKTDAEISDIKKARQLLRSVITTNPKHAPGWIAAARLEEVAQKIVAARELAAKGCEECPKSEDIWLESARLNSTENAKIILATAVRHIPTSVKIWLRAQSLEQDVKAQKRVLRRALEFIPNSVKLWKAAVSLEEDSDDARILLSRAVECVPLATELWLALARLETYENAKKVLNKARTAIPTSHEIWITAAKLEEQQGNIGSLDKIIPNAVTRLAQKGSTLDRDSWIKEAEECEKEGFVGTAQAIIKATIGIDVDDDDREGTWLEDAESSVSHGAIATARAIYAYALQVFPQEEGIWRKAAFLEKSHGTRESLEEVLQRAVKYCPQAEILWLMGAKEKWLAGDLPGAKGILASAFEANQNSEQIWLAAIKLEVETGEYGRAQALLLQARTKADTDRVWMKSAMLERQLGNLPVAMSLLEEAITKFPQFGKLWMIKAQIEEHQLSNVVAARDTLSKALKAVPKSSPSAVTLWLMASRLEERAGQLTKSRALLEKARLLNPKQPELWCEAIRVESRASNQAIADALISKALQECPTSGLLWSEAILSESRPQRKARSKDAWMKSENDPLVLVTVARLFWSERKVEKARNWFARAVKVNPDLGDSWAWWLKFESVQEGDTTKMVADIVAKCKAAEPHHGERWQACAKDLSNTGRSVEEILKMVASSLPVTV +>UniRef90_B2YJ48 Cpn60 (Fragment) n=2 Tax=uncultured soil bacterium TaxID=164851 RepID=B2YJ48_9BACT +ATILAQSIYREGVKAVAAGANPMALKRGIEKAVEAVVEDVKKLSKEVKDNETIAQVGTISANGDAEIGKTIADAMKKVGKDGVITVEESKTMTTELQTVDGMQFDRGYLSPYFITDPDRMECVLEDPYILIHEKKISNMKDLLPLLEQIARSGKPLLVIAEEVEGEALATLVVNKLRGTLNACAV +>UniRef90_A0A6I7QH38 Translocation/assembly module TamB n=1 Tax=Bacteroidia bacterium TaxID=2044936 RepID=A0A6I7QH38_9BACT +MVIIIMMPFIAYAFLQSSRVQTYLVGHLTDYFSRELQTEISVGSVDIRLFRSVILKDVIINDRQGDLILEMRKMRFELGKLSFQNRSLVIKELEFRDAFLNLFKDKQEENYNFQFLVDYFSSPTVANGHNRWEFTCEAFKLTNASFWHLDLNRKSGVNGFDPANFYVSGFYLAMNQIEIVDNTLSLALDYLYYNESSGFIIDYLSGNFLLKHGQLDIDNFIFRTDGSDLNFSLSAKYGSFTSLEELVADLRFQMDIGKSVLHLADLGHFIPGLYGVNDTMKIEGAFEVLGDTLTGDNVLVEYGLKSRFDGDFQLKNFLGGSDMRLEFTARTLQSNFNEIAALNLPVSLEKSKPEFPPFLYNLGDFEFSGRIYGGLHSFQSEGSLASSIGTTYANLLMQRDNESMPYQYQAKVNTRNLDIGRLFGIGASAGKATLELNIKGEGFHPDNLDLLVDGHIASVELASYTYNDISFQTEFLNQNLNGQLGVKDQNLLLDITANAQFDKEIPFFDVLVNIEHANMTKLALFQKDSLVESLLKTHIHFNGKVSSLDSFEGDLVFREIRYEEIPLEQDHHSSRYLVFTDSIFINSKKWSPDNQHIRLRSGFADADVHGKLHLTALPRNLKESVQNILPFGEPDLSGYTGTEYYQDQDIQFSFHFKDTRILSELFLPALSLSGNSWLNGHYRSADHHLIFIAHADTLALENRRFLDLNIGGTHGENNYSITFDSKRLMVSDSLHFDLVSLQSGWKEQSLDVKLEWQGTNGDESGIGVISGHANVYDKNHIEFSFLPSYALIHGDLWRINIDNKIIVDSSRIEVSGLMVYHGDQFIRADGVLSDHPRDRMMVSFSNFEVAYSDLFLGESNFKFGGILDGYVTFTALYQSPSIGAGLTIQNFAFNHQELGDLQLSSIWQFDKQAFLVDGKITSKADDQEHNLLTLSGSVYTGQNIGRYDLGISLHNMKMEVWRPYVQSFSENFKGLATGELHLGGPLNSPELTGQVRLMETSMHIPYLNVTYFLEDDVRFTKNAFVFEDVAIRDTLGNIAKASGAILHNSLRGFGLDLHIRPSNTIVFNTTAVDNSIYHGTGFVTGLAHLHGPVNDITMDITARTNRGTRVILPLNSAGEVRENHFITFVARNPENNLPLMPPPDLSGNITLNFDLEVTPEAEVLLMFSPPFGDIIRGRGNGNLKLEIPPDGAFNIYGDYVITEGEYLFNLQNIINKRFRIEQGSTIRWTGDLNDADVEMQAAYRLRTSLYDLFVGEGIDSETVEMFRRRVPVETLLILQDRLFNPTISFDIQVPGGDENTREMIERVITTEQEMNRQVFSLLVLNRFLPSREDQYNTALGFGVGSTSSELLSNQLSNWLSQISTDFDIGINYRPGDEITSQEVELALSTQLFDNRVTIDGNFGVAGNQTASGQPTQATNQIIGDVNVEVMITPEGKLRVKAFNRSNTFDIIHTNAPYTQGIGVFYRKEFDRLEELFRRNRIPEIPVDSD +>UniRef90_A0A6G6Z3X8 (2Fe-2S)-binding protein n=2 Tax=unclassified Bradyrhizobium TaxID=2631580 RepID=A0A6G6Z3X8_9BRAD +MFKRSDQDKRPSVQIFVDGAAIEARAGDTVSAALLASGRDVRRATAVNGAPRLPYCMMGVCFDCLVTIDGVGNRQGCLVPVTEGMQIEIQKGKREIGR +>UniRef90_A0A7K0PYB7 M50 family peptidase (Fragment) n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A7K0PYB7_9ACTN +MLGRSVSVMPGRYPSSPGLSPRRPGVVGWTAMTEIWDRVGATSPPLPPLWLGVTAVLALVLVVQRDLWRVTRNAVTIAHEGAHGVAALVTGRR +>UniRef90_A0A177HN16 Cell wall protein-like n=1 Tax=Streptomyces jeddahensis TaxID=1716141 RepID=A0A177HN16_9ACTN +MPSLKLAPLYLRAEEKGSDSVQRHSSLSGYASMIACRLAFGRGSDSPRAPRTLRMYVSSAPSSARTSVTSMPPSVSVPVLSRQTVSTRASPSIAGSSCTRHCFRPRRMTPIAKATEVSSTSPSGTIGTMPPTVRAIASLKPESSVSSASWLMIRPRAVGIIIHVTYLRIVEMPVRSSEWTSVKREASSASCAAYASRPTLVAVNAPPPATTKLPDITGSPGFLTTGSASPVSSDSSISSPSASATAPSTTILSPGPISIRSPRTISEVLISADTPSRRTVGLASPINARESSVFLARSSWMMPMPVLARIT +>UniRef90_UPI00083E5566 3-deoxy-7-phosphoheptulonate synthase n=1 Tax=Streptococcus himalayensis TaxID=1888195 RepID=UPI00083E5566 +MTFKALSQPINVKEVRSNYKLEGASLQRKEERDAALNAIIRGEDDRILLVIGPCSSDNEEAVLEYAKRLAALQETVKDRIFMVMRVYTAKPRTNGDGYKGLIHQPNATAAPSLINGIKAVRKLHYRVITETGMTTADEMLYPENLPLVDDLISYMAVGARSVEDQQHRFVASGADLVTGLKNPTSGNLTVMFNGIYAAQNKQSFLFGNTEVETSGNPYAHAILRGAINEYGKNVPNYYYDNLLDTIAQYEKMGLENPFIIIDTNHDNSGKQYLEQVRIVRQTLINRAWNEKIHRYVRGFMIESYLEDGRQDEPDVFGKSITDPCLGWDHTEQLVREIYETLGK +>UniRef90_UPI0003685307 undecaprenyl-phosphate glucose phosphotransferase n=1 Tax=Gayadomonas joobiniege TaxID=1234606 RepID=UPI0003685307 +MGKRGYLREHQHAFSSLYRVIDVVLICLTLFVSWDCFAGLDTKQHYFVAIVASLIFLYLAETFGLYRSWRLARFYQLARTITFVWSVTFLSTVFVAVLLEIPEGVSQLVFVSWGLVGTFLLSAWRYAYYVAIKKLRKKGFNTRSVAIIGHTRVGKELYKQIRLHSEAGLKFVGFYEDRMPQRYMGDKYSSDFIRGSAEDAIKAAQRGEIDQIYIALSLKQEDRISQLLVELGDTTADVHFIPDFFVFNLVQSRMGYVGNLTTLSVFESPYAGTNSWLKRAEDIIFSSIILFIISPVLLAIAIGVKVTSPGPVIFKQYRYGLDGKRIKVWKFRSMTTMDNGDKVVQAKKGDARITPFGGFLRRTSLDELPQFINVLQGRMSIVGPRPHAVAHNEEYRKKINYYMMRHKVKPGITGWAQINGWRGETDTLEKMEKRIEYDLHYIGNWSVWFDIKIIFYTVFKGFLDKNAY +>UniRef90_A0A7V0QHY8 3HCDH domain-containing protein n=1 Tax=Deltaproteobacteria bacterium TaxID=2026735 RepID=A0A7V0QHY8_9DELT +MMGGSMKEKILVLGRGEIARSLFDICKQTELSVTFLESADELGPQLRDTDIIVQFVADGLELPHLKESDFIGKYKVWLIEVIDQSVTRAAGRMGCSERIVGFSISKSFQERRFIEVIGGERTGSDAVTTARNLFERLQFTVVISKDHPGYILNRVVASMINEAIYVSMYGLAQMEDIDQMMRLGANFPMGPFEYADYLGLDRVLKTLEWLAEELGPQYRPCPLLRRKVEAGLLGKKTGKGFYEYGI +>UniRef90_UPI001106F8B2 antibiotic biosynthesis monooxygenase n=1 Tax=Eubacteriales TaxID=186802 RepID=UPI001106F8B2 +MICTLVRFHIKHGCGDRFLELARTSVEQTRLEKGNISYDMGPELGKTDTFIFFERWKNQESVDIHESQTYFQSFDRAAGELMDGPVEVFKMEPPF +>UniRef90_A0A2E6YUS8 SLT domain-containing protein n=1 Tax=Halieaceae bacterium TaxID=2026743 RepID=A0A2E6YUS8_9GAMM +MKNVLGIVTLVLSMGSLPGISLAASDDDRAALTTDLSKALTEDNEFQDRFDAEVWLVDMQQRLAPLVPDAQERLDLLTQVHQQASRVVLHPELVLAVIEIESHFDRYAVSRAGAQGLMQVMPFWKNELGRPEDNLTDTATNLQYGCHILRFYLDREDQHLSRALAAYNGSSGSERYPNKVRDAWQTRWRTQPIDW +>UniRef90_UPI001D0CC098 thioredoxin n=1 Tax=Roseitranquillus sediminis TaxID=2809051 RepID=UPI001D0CC098 +MLELGGRKEDAATDLIKDSTEATFMQDVVDASRDVPVIVDFWATWCGPCKQLTPALEKAVTEARGKVRLVKVDVDRNQQIAAQLRIQSIPTVYAFWQGQPVDGFQGAVPPSQIKEFIERLVKLGGGDDGDPLAEAVEAAETMLAEGAAVDAAQTFAAILGEAPTNAAAYGGLVRAHLAMGEADRAAQLIDAAPAEISGSPELEAARAQLELARQAEKAGPVAELQQAVEADPTNHQARFDLALALHAKGDVAGAVDQLLELFRRDREWNEAAAKTQLFTIFDALKPQDPIVLNGRRRLSSMIFA +>UniRef90_A0EUM8 Protein Nef (Fragment) n=1 Tax=Human immunodeficiency virus 1 TaxID=11676 RepID=A0EUM8_9HIV1 +MGGKWSKNSLGGWPKVRERMRRAEPAADRVEAEPAAVGVGAVSQDLAXXGAITSSNTAATNABCAWLEAQEDEEVGFPVRPQVPLRPMTYKAAXDLSHFLREKGGLEGLXHSQKRQDILDLWVYHTQGYFPDWQNYTKGPGIRYPLTFGWCFKLVPVEPEKVEEANEGENNSLLHPISLHGMDDPEREVLVWKFDSSLAFHHRARELHPEYYKD +>UniRef90_UPI0021B1B406 hemerythrin domain-containing protein n=1 Tax=Mycobacterium sp. SMC-2 TaxID=2857058 RepID=UPI0021B1B406 +MTSAWRSSDLAEAFREDHAVLGRGLHEVSEHLRAGNDQAAKARAERVDREAGAHIAFEEQFFYPALRRTLGDAEVDGLYEEHGEGLSVIKALAQLPEGAELTEADRRTLLQASELTESHVAECGELFGVMGRIPPDEQQALYRELLSLREESPRWTEFAARTKEG +>UniRef90_A0A7D4A833 Superfamily I DNA and RNA helicase-like protein n=6 Tax=Actinomadura TaxID=1988 RepID=A0A7D4A833_9ACTN +MTERHLVALTKPEPSPVLDPGEAATRAVDGVLADLGGGHRGVVVDSPPGAGKSTLVVRAAAHLAEAGERLMIVAQTNEQVDDLIERIATKHSQLTVGRLSASGYLPSERVLAHPSVRVAQKADDLAEHTIVIATAAKWATLSDGSWPWAIVDEAYQMRSDMLLRIAGRFERALFVGDPGQLDPFSTVEVERWAGLSWDPMRSAVSVLLAHNPGLPVHRLPVSWRLPASAAPVVSDAFYPFTGFRAGTSDGDRRLEYGARGMGTTYDHALEEAAATGWALYELPARHTLRTDSEAVRATAALAVRLLQRGPVAHSELGSKPVDATRVAIGAAHRDQVTAIRAALGEHGEGITVDTANRLQGREYDVTVMLHPLSGRRDATAFHLESGRLCVLTSRHRHACIVVARAGIPELLDAHPSTEPVHLSVPVKFPDGWEANQSILAHLARHRVAAD +>UniRef90_UPI00132F9BB1 sulfatase-like hydrolase/transferase n=1 Tax=Klebsiella pneumoniae TaxID=573 RepID=UPI00132F9BB1 +LRNSGSTFSLVYFSDHGLAFKERGKDVQYLAHDDKYQQNFQVPFMVISSDDKAHRVIKARRSANDFLGFFSQWTGIKAKEINIKYPFISEKKAGSIYITNFQLQKVD +>UniRef90_A0A554VFG8 AtpZ/AtpI family protein n=2 Tax=Flavobacteriaceae TaxID=49546 RepID=A0A554VFG8_9FLAO +MGGTIFLCAYGGKKLDAYYELEKQWFTMGLVLFGVTASIYLVIKQLNRINKSDR +>UniRef90_A0A7C1UAD0 CBM-cenC domain-containing protein (Fragment) n=1 Tax=Phycisphaerales bacterium TaxID=2052180 RepID=A0A7C1UAD0_9BACT +MNVRWRSQGDFCESTCSDGGRGHNNRGALSKRRTTMYKQLMFPICLTVVLGLTARASEPFGHWPFDGHVNDVAGSANGTFFGGSPDYVNGRIEQAIRFDGVDDYVEVMVENLDAYTITAWVMPDRVEPASIVVRTSPSGTTTHWSHQMRIAASGQFEHYVWDGAAQTALGTTQVEAGNWYF +>UniRef90_A0A6P0WQH9 Type II secretion system protein n=1 Tax=Caldora sp. SIO3E6 TaxID=2607806 RepID=A0A6P0WQH9_9CYAN +MNICELPQKLLPQKKTTQPNQSGFTIIESLVAIIVISILMLGLSPVIFLSVAARVQSRRVERGTEVARTYIDGVRSGAIPATNVVVGAATDRTLEAGPVPTALNPVDWSDPGGLYCVDLDASGGCEAGSMNDMVVQGFRTPGDADRGYLLGVRVYRAHAFSGGEPLQKGQTQSSFSGTLGNSKVPVVEMTTEIPPSGAFQDNFSEWCARLPNTNPISTCN +>UniRef90_UPI0006E338CE trehalose-phosphatase n=1 Tax=Streptacidiphilus griseoplanus TaxID=66896 RepID=UPI0006E338CE +MGIPEPTTPAGAEGLAALVADPAHSVIALDFDGTLAPIVPDPDQARAHPGVVPALARLAPQVGAVAVVTGRPAGVAVRHGGFAGVPGLEHLVVLGHYGAERWDAVTGEVRAPHIHPGVASVRAELPGFLDRIGAWEGTWVEDKGRAVAVHTRRTEDPDTALEQLRTPLLELAARHGLMGEPGRMVLELRPPGVDKGVALTGFLHERKARSVLYAGDDLGDLAAYDAVTRLRTEGVAGLLVCSAAEGEEPVGRLEERADLVVGGPSGVVGLLDALADEMGAPRP +>UniRef90_UPI001CB69EC9 polyubiquitin-A isoform X6 n=1 Tax=Frieseomelitta varia TaxID=561572 RepID=UPI001CB69EC9 +MQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDDRTLSDYNIQKESTLHLVLRLRGGMQIFVKTLTGKTITLEVEASDTIENVKAKIQDKEGIPPDQQRLIFAGKQLEDGRTLSDYNIQKESTLHLVLRLRGGQ +>UniRef90_A0A6M3XMR9 UDPG_MGDP_dh_C domain-containing protein (Fragment) n=2 Tax=viral metagenome TaxID=1070528 RepID=A0A6M3XMR9_9ZZZZ +ANPFGFVSEAREKQSKWLAKLIKREQERRKLPVVIMGLTFKHNTNLTTDSPAILLMEQLEDMGVKTSAYDPVVMPSRPKDVPSIYFIATRWVKFSTFPYAKGSLIIDPWGFFGVAPEGCELFSIGRNR +>UniRef90_A0A7W1P943 DUF4625 domain-containing protein n=1 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A7W1P943_9BACT +MKKPPLQRRTISVPVPELPPGKYKLVIIAESRGAVARSEVLAYEVR +>UniRef90_UPI001F566F06 DUF6516 family protein n=2 Tax=Shinella zoogloeoides TaxID=352475 RepID=UPI001F566F06 +MQARLILKTRRHIGEAMFADLVIWRVPEPLRGSRHPFKYRLAFVADGICVMRYDNEAGKGDHKHIGAEEQPYAFQSIEKLLLDFDADMKGWIDGNADRED +>UniRef90_A0A1I7GQJ1 Glycine--tRNA ligase beta subunit n=4 Tax=Burkholderiales TaxID=80840 RepID=A0A1I7GQJ1_9BURK +MTAPSNLLVELFVEELPPKALQKLGDAFAQVLLEQLTAQGLATGASQCTAYASPRRLAAHITAVLPQAADKAVSQKLMPVSVGLGADGQPTPALLKKLTALGADASAAAALKRVHDGKAEVLYFESTAKGALLAEGLQKALDEAVAKLPIPKVMRYQLQDGWSSVNFVRPAHGLVALHGASVVPVAVLGLQSGRATQGHRFEAAASPVALRDADSYAAQLRDEGAVIASFAERRAEIVRQLQAAADKVGGGVRPIEDAALLDEVTALVERPNVLVCQFEQEFLAVPQECLILTMKANQKYFPLLDAEGKLTHQFLVVSNISPQDPSAVIQGNERVVRPRLADAKFFFDQDRKKTLVSRVEQLAKVVYHNQLGTQGERVERVRAIAKAIGAQLFEALAAQHRIDGTQDAEVVQDYLMTCVDNAALLAKTDLVTDMVGEFPELQGIMGGYYAVNDGLPDDVAHAIEDHYKPRFAGDALPRNNVGLVVALADKLETLVGMFGIGNLPTGDRDPFALRRHALGVIRMLAERDLPLDLSALLAAATPAFGGKIEDATAQLADFIYDRLAGSLREQGYSAQEVDAVLALRPQRLALVPKQLAAVRAFAALPEAPALAAANKRVTNILKKAGEVDAHVNPELLQEQAEKDLYVALQRFVPEANAQFLAGDYTGSLQTLAVLRAPVDAFFDDVMVNAEQLDLRLNRQGLLKTLHDAMNRVADLSRLAA +>UniRef90_A0A835R703 Transmembrane protein adipocyte-associated 1-like n=1 Tax=Vanilla planifolia TaxID=51239 RepID=A0A835R703_VANPL +MMAYYGLIWIVSVLNLTWCILQAWQCTPTKEFSWNLLSLCTKSGMLFLEVSLISFLLQGNQAGDLEALTRTFVVSGVIVAVDVLLKAVYVFGFGVPMFLDGVGPSNHVKWGLWIVHKLLLAAVYVLILFMYHSKWREMLPAQPAFRNYICVMFSINALSLFSCLLMENGAGFGYWLLSLVTLCYHSLYLPFLYITFLADFFREEDMRLENVYYSEMKDAGFFDADWD +>UniRef90_A0A806X1Y9 DUF4091 domain-containing protein n=1 Tax=[Enterobacter] lignolyticus TaxID=1334193 RepID=A0A806X1Y9_9ENTR +MLNPCIDDPDEHLVFLDDGRVEPALINGQESRKGKASIQYLGLARAELLQMRARHRRTVIAAIRHTIAALEEGRDPGTDLDDLLTLLSSKEAYVAYTRTLVRTHMSAYIEALGL +>UniRef90_A0A1V9ZKS3 Secreted protein n=1 Tax=Achlya hypogyna TaxID=1202772 RepID=A0A1V9ZKS3_9STRA +MAGRERRAWCSWLLVLLYALTVRGNQLLVISQPATMTAGDMLSPPVLQIVDDTGLVLSDINTGTVTVSIETNPLMYAVLSGTSGLAFPIVAGVVTCSGLSINLVASGYTLSFVALSYGLQTSSNPFDIILGPPYQLSMYTYIGVAQGGTPFSPQPTVAIVDKGGNLVASVSSGSVSVAILNNPVGGILTPAIAHTVYFYEGFGKFYDLQIDKAGGPYTLKFTCDASLNLPGGNSYTTFPFTVAIGPPRTMFIAAYPLAAFGGEAFVTQPMIQLLDAGGNTLQTQPSMQIAATIYANPSGGRLYPATETSASVINGFASFKNLRIDLAGNNYMLRFAITMLNVLGVYAETGLAVVGPSLNVYLGALFSLQVLRPPESAIADGQPFYTQPVLVLRDRGNNTISTENLALVSVSMVPSLALYNNLIVSTANSPIATITDVTLLFSPFSAPFGAGTDLFINVTFSQQIMATGSIVLQMNSAPGALATCNTLLTWSNRLTFGYGITAGDAAAALNYASTSALTLQGGATLVDRLGVPASLILPAAGLRPAVVVDTTAPSIVSVGCVPPFVAGTYGPGQVVSLLVTFSAPVSIYSTLMPYLLLNTLPAQSAIYSSGNQTASLVFQYIVGPTDAVATLDVVAALNTNGGLLRRAGTALKQDALLQMPATASSRLPAQCPLVISSVVPAIDATVGVTSATPNGVYATGDRIFITVPFTALVAVSGIPLLALNTGRNAAYSSGSGSSVLTFQYIVQAGDSVAALDYASPAALMLNAGTIQRFVTAGSPLLDVNIDLTATTASNRNLGQTAALVLNGLAPTVVSVAFPVAPTTYTRGGTVAITVTFSYAVVVQGQPSILLNTGVAATYASGSGSTALVFNYRVQLGDATTDLAYAPTSTIVLNGGSILQQSSTPSLAAQLMLPWPPAIVNAPVTIDPALTAVTTVVSITADQVAGEYGQNQVIQITVTFSDAVQIVGGVRLALTTQTVAYASGSGTKALVFLYIVQPNDATSSLNIASASPFTCTAGGGCSIANANYLAANLDCTGLTLQPTAIVINTVAPSVVSVAALTPAPTINRGTFVVGDLIQILIVVSKAVDVQPSPSVFPTKVPTLLLNTGQVAYFTGYDNGDRTRLLFQYTVAVGDATPNLQYASTGALTLNYNQASIRRLATNPTTPMNLLLPVVANLGTNLVVDTSRTPIVINVASITADGTYFVGDVIAIRVTFSEYVVVSGIPVLLLNLGVYDRSAVYVSGSGSTSLVFQYTIGQDDFSKDLSYIDLRSLYNPPGASILFQSTNPTVAANCQLPLPGSAGSLSANSNLQVLGGTPYIVDIAFLSPNATYTVDNTIDVQVTFSAKVVVSGTPFLRMASGPSLRQAFYVPTVGASTTVVFRYRVQTGDVSMDLDYADTAAIQLNGGSILTAPTLLTSIPVQPANLQLNPPGGALTGTRTVQTVAGVVNYVNLGIDTMGLGYIFYFATATVVTSVQFDVTYSAVWEVRNAPLNEQNRGDRTGSSVDITTGVAVVGSAGAKARQYNVQVVTASGSATKYVNEIQYVQTTCVQRDAIQVLTSSAAPGSTLGGYFTLMLGAEGPTRRLAYNFDATQLKVALELDFGFDAAAVEVTRTPNTFCGCFDAYAWTITFHTDGEIPTLLARSYLTGVSATVGDGTGGASALVLSLPPVVNGQFALRYGALVTASMPSNVDATTMANRLTTDLNLPILSVQRSLPTVQAGYTWSITFYASATIFNPNELEPAPLLLTGNQVLLSVTTVQEGQAPLYGNFRLSIAGHTTPNIAVTASAGDVQTALQTLPEVTSVAVTRSAVNPSGGYSWTITFLQINLMSTYGLVLNSLGTLPPLTPMTLVNGAPILMGTSATIMVNYAGVNPSANSPAGFGNAPGESAGSVTIFVPRNLQWIQSANLLGSDTQSGDNFGAAVAINTAGTQVDRGRKEIQTLTCTADGGSFTLTFLGITSPPISFAATAATLQAAIARLLNVPLSQIAVSTYTNLCAGIGVAVTFATPDLSTETGNVPNLVPDGSSLTSSGGPGSIVVQEIAPGTYRLDGTEAKGATCGGAYFYQASAGMWSQMAKMLPMDGSEGTSSEFGASVALENTYAVVGAPAAADSVGEAYVYIFNGLTWSFFQKLTCAPYAGTKGDRFGEVVKVSGSTIAISAPGYASNLGAVFVYKLVSGVFLSHEKIQAGDLSAGDRFGSAIALDMAVSTLVVGTERQATATGAVYVYYSRDVYFALQQKLQGSDTRVNDGFGHSVAVVRNVLLVGANANFGATTPLTTRKAVQSIVTSATSPIRAGSTFLVGFRQFSIGFENDYVMSTPIPFDASAVLLQVILQRTLNTGALVVTRLGPDANNGYTWYVTFAGSTAAVTRFAVDGTGLKGSNADVAASVLVAVPPIVRSNTYVFTRTGTFWREQATLRPTNKQYFSLFGHSVALSRNGYHAAVGAPNADTLFTGVNSGAGYVFDLGFLDFQLSASAYSVLEGGTISIPVQRCGPLGLTCTMKSTSVEGFIDLDTGDAVTDRAGTNNVPSKMLKYIGPYQQLAMLDMAAVTSGAKYYPGIWGPEPYPQVPMGRYLLPSWVGTAESRAQFYGSAETRSLWIDSQFDYQGHSDYTPTDVAMAFAVNSITSTALIQTTDDMVFEYPDETINVRLSVPGMWPSYPSQFWSQITILDNGDGGFGTKSYTAILLSSATAPVAHGTAVALLDAFNLAAVGEPGEVHPTTRVACGAVLIYLATSGIWALEATLRPPTCIAGSGFGTSVAIDGSYGTVRLVVGAPSALTPTVFVYVRNSATATWNLETAFTEPAAASTSANYGGSYAVDIFGYNIVVGASGLECTFVYTYTTTGWLPAVVLRANDYATDVVYLQNVVHEFEFGAAVSIGQRSIVVGAPRANYGTSRQLDTTFLGTGAAYVYYLPAQVQTITLNIDVLVTAGQFVLSLGGASTSRLNYAISDVDMTTAIQALIPSVQVTRAGTTETGFTWRVTILSEVTTVPLLVATWRGYGCSTCIAFNTGYTADPGRQVDVTSTAALGTWTFHQRLTAADGNRADRFGAAVDLDGDSIIIGAYGSFSLTTTTWDFETGDLTGWVQTGTAFGSQPTFGENVRARASGYLSSYLKSASGILNFEGRYWVGTYEARPGAGRTQQYTPFSCAFMNDDCKATGYTTPDSSIAGSAQGDGPMGTLTSQPFSILGSAIRFRIGGGCNLATVYVELLVDGLSVRKATGRCRESLHRVAWNVTAFTNRTGQIRIVDDTDSVNWGHINVDDFQFDWPVQQPSTEKAGAAYVFYRSTSTTSYGVCQGVPKLQCAWMLQARLVASDKRDHDMFGFSVGINDALGMAVIGAYGQSIVNLNNSIAGGDDAGSLYLFIKTPALLDGVGSIITPQRWPAFETAKLQAVNKAPNAQFGYALSQSNGRVAVGSPGMQRGIGTAYVLDTQFIQVSFASDEVAVNENDVNGQAIVVLYRAGDTSAPLTIEYGGFVKAMNKVTMLARYATSDLTGAGVDATRFAQCMAMPIQNRIRCGRYQQTSGVATFPVGGTSLAIAVPIMNDWCYAEGQTHVAFHLNPPGGDVILGEQFTLRIRIDDDDFGRTAC +>UniRef90_A0A1W1Y6B4 EAL domain, c-di-GMP-specific phosphodiesterase class I (Or its enzymatically inactive variant) n=1 Tax=Oscillospiraceae bacterium TaxID=2485925 RepID=A0A1W1Y6B4_9FIRM +MTPVGTTYLENYTPAADVLVVAVCVVFVILIRSAYINRTRSFRYLRHMIYMAVVASVSNLIFHGILPRAATLPNILIYLPHLLFHASLYSILWLQVQYLKETVRLTFRENRLYTVLSSSGLVALIVLEIVQPLFGFGFYMGADNTLHREIPAFIFGYVFFVLLMLSMLLKYREMIFRAILVGILSSVSISFLLMLIQEWVGETSYTVFTFLFPIYALLYLAHSNPYDLEIGAVDERAFTDLVAISYEHKDELYLMSLYMHDYDGKGQHYPEELQKMIKHFVYKFFKHPTLFLISGGHMILVVRTSSDPGYLEGAEKMIEEFMKLYSEYKIDYKIVYTKNDVRLAEDNDVVNFIKYLHFDMDENSISKPGDKEIEAYLRYKYIVSELVDINNKHDLNDPRVLVYCQPVLNIKTGKYDTAESLMRLDLPKTGLIYPDEFIYIAERLKYIYTLTQIILNKTCLKIKEMLENGYYIQRISVNFSVYDIREPDFCETVEKIIRDSGVPYDKVAIEITETQNERDFENIKKRIDELKESGVRFYLDDFGTGYSNFERIMELPFDIVKFDRSLVIASGSGNKYKSMVSNLAMMFDNGDYSVLYEGVENDEDEKRCIDMNAKYLQGFKYSKPIPIERLTEYLDKGHED +>UniRef90_A0A7W3YDD2 Molybdopterin-synthase adenylyltransferase MoeB n=1 Tax=Lysobacter penaei TaxID=2759900 RepID=A0A7W3YDD2_9GAMM +MEIERIPPAEALRRQRAGTVLVDVRASHERAAGAAEGALGIVRETLEADPTAALPDREAPVMLICQMGGRSLKAAEALRAAGYARVASVEGGTERWRDEGLPLVRDEANADFYERYSRHLRLPEVAEAGQRRLQAARIAMVGAGGLGSPAAFYLAAAGVGTLVLADDDMVDRSNLQRQILHTEARIGTAKVESARIALNALNPSTRVEAFPERITAANVERLLEGADLVIDGADNFPVRYLLNDACVKLGTPLVYGAVHRFEGQASVFDAGRHRGEAPCYRCLFPEPPPAEAAPNCAEAGVLGVLPGLVGLVQATEALKLLLGIGEPLRGRLLQVDALSMRFRETRLGADPDCPVCAPGRPFPGYIDYAAFCAGG +>UniRef90_A0A8H6JB52 AB hydrolase-1 domain-containing protein n=1 Tax=Colletotrichum sojae TaxID=2175907 RepID=A0A8H6JB52_9PEZI +MAATKAPRSLGIVLIHGGFHQSTCFALAKSRLEAAGFSPVLGVDLTSVGTNPSVTLDDDARSIQAAIEPHIDAGREFLALAHSYGAGKKGGIRAAIYLTANMPPKKGASALSVLPPGLDIVDVGDDGLVRANAKAKAAFYGPDMSDETADACMAALLPQSSAALFGGASVGLDELTVPAYYILCEKDQTIAPATQQEIIATIPTLRRVLRNPGGHSAFITEVDRFVEQVVEIAEEVEREGEVEA +>UniRef90_A0A4Q9GHY3 histidine kinase n=1 Tax=Hansschlegelia quercus TaxID=2528245 RepID=A0A4Q9GHY3_9HYPH +MTSEPRLRDGSTLRRHDGAVRPLSASERKIEEAAHEIRTPLGGLLALADLLLAEDLTDAARGHAEAMKDAARHLFGVATTLLGGAETGAASLGMSRFLDRTVPPIAARAAVQSLSFQLLRGPGVPERVTADESWLRQIIDNLADNALRATRSGGIELAVDCIGEDANSALVRFAIRDTGPGLGDDPKALFARYAQGDEPGAAGIGLSLVARLAHRMSGRLEAANRPEGGAEVAAVVRLATQSEPVRHAGAQLKILIAEDNIVNQRVVATILNQFGHDYDIVGDGEAAVAAASTGAYDLVLMDAAMPHLDGLRATRRIRSMDTPAADVRIVGVTARAFAHEIADFIAAGADAVVTKPISIAELWRVIGADVRKAG +>UniRef90_A0A429S8T5 PLP-dependent aminotransferase family protein n=2 Tax=unclassified Streptomyces TaxID=2593676 RepID=A0A429S8T5_9ACTN +MANGRVVHTADRTIGSRQLAALLPPPVLARPGYRALAEAIRTLILDGRVALHIRLPAERELAECLGAGRATVTGAYDLLRESGYARSRRGSGTFTELPDGHRPVGAHALLGAGGSGGFLPDGDPGIDLAIAAMGAPDGALAEALAQAAPRLPAAARTPGYLPFGLPDLRAAVAERFTRRGLPTRPEQILVTAGAQQALTLVVSLLCRAGDRVVTENPTYANALDALRHARLRTAPVAVTDAGWDLEIAESTLRQTVPRLAYVIPDFQNPTGALMPEDQRLALLAATRRTGTWLVVDETLADIALDVPAPAPLAALAARGGADHVVTIGSLSKTHWGGLRVGWVRATAKLVAELTAVRAATDMTGSVLDQLVALPLLDGLERTLPARLEQLRVQRAALIEALQRHTPEWSWTVPPGGLSLWVDLGEPVSSALAERAAAAGVHIGRGARFGVDPGTFEHRLRIPYTLPPERLDEGVRRLAAAFHDGVPLAPAVDRPHWVA +>UniRef90_UPI001F223AC7 type VII secretion system-associated protein n=1 Tax=Streptomyces sp. GQFP TaxID=2907545 RepID=UPI001F223AC7 +MADFSHTDKQSIQTFIDGDLASFIGDLKKILAGDPSMKDFENGVYTDRTAGAIEKGKPIMMGRIDRNDLMTGTSFTDALSTSISTVVDVLTAQQDTFDEIDEGLRTTLHELFKTQGDNLGNISAEEFSTSMSDSGFDDSSSSGDSTGDNGSDSTDGESA +>UniRef90_A0A4S4FJ12 4-aminobutyrate--2-oxoglutarate transaminase n=1 Tax=Glaciibacter flavus TaxID=2565934 RepID=A0A4S4FJ12_9MICO +MTTIDAPARTVGGPDIVQERRLVTSIPGPLSRALMTRKTDAVAAGVGATLPVFAAAAGGGVVVDVDGNSLIDLGSGIAVTGVGNSHPRVVEAVKAQLDAFTHTCFTITPYESYVAVAEALNRLTPGDHLKRSALFNSGAEAVENAVKIARHHTGRQAVVAFDHAYHGRTNLTMGLTAKNQPYKNGFGPFAPEIYRAPLSYPFRDGGIDGVTAARTAILQIEKQIGAENLAALIIEPIQGEGGFIVPAAGFLPTLLEWSRANGVVFIADEVQSGFGRTGAWFASEHEGIVPDLVVTAKGIAGGLPLSAVTGRADIMDAAQVGGLGGTYGGNPLACVAALAAIESYASEGLIERAGDIGRLLIDRLTALQASDPRIGDVRGRGAMIAIELVDPETDAPDAALTARVASAAHAQGVIVLTCGTYGNVIRFLPPLTIGDDLLTEGLDVIAEALATA +>UniRef90_A0A7W5AC37 glutamate dehydrogenase n=5 Tax=Actinoplanes TaxID=1865 RepID=A0A7W5AC37_9ACTN +MAVADEAATDSDQTVLDDVPNAERLVAQAVEQAGDDHTTASLVGRFWRFAPDEELVGYTPQEMFAAAAEHRELARNRLPGELKLAITEPSGSQSHSVLRIVTDDMPFLVDSVIALLNAHNLQVYLTVHPLIVVRREPLGALAQLEAEVEPDDAIEGDLVESWIRIEIDPVRRPEAREQLLNEVRRVLTDVRDAVEDWPRMRQRALVISDELAAARGSKNPSPVPDKDLTDSIELLKWLANDHFTFLGYREYRLDDGVLSAVPGTGLGILRGASKPRRLAEEMAPEIYERAMEKRLLVITKANSRASVHRSAYLDYIGVKLFNEAGEVVGERRFLGLFSSSAYRTSVRELPVVRRKVQEVMDRSGLSPRGHSGKDLLQILETYPRDELFQIKTDDLYEAVIGVLRMAGRRQLRLFLRRDGYGRFISCLIYLPRDRFTTGNRLRMQEILLRELNGVGVDYTTRVTERMLARVHFIVRTDPAAPPGQLDPNELAERLADATRMWDDDFSLVLERKLGDEQARRLFQRYSAAYPESYKNTHTPYEGMQDLAKLELLEEPGQLAMHLFRRRRLGADGTPQPDERDVRFKVYRYGEPMMLSAVLPVLHSLGVRVTDERPYEIRRPDGTIYLYDFGLLPPAGHRELAEVRPQVENAFAAAWRGETEVDGFNELVLRAGLTWRQVVVLRAYAKYLRQAGNVFTQQYVESTFTAYPEIAGLLVRLFEVRFSPALPIGEAERTRRAGELRGRITELLDQVESLDQDRILRSYLTLIEATLRTSFYQRGAEGRPKSYVAFKLDPQAIPELPQPRPKFEIFVYSPRFEGVHLRFGAVARGGLRWSDRREDFRTEVLGLVKAQMVKNSVIVPVGAKGGFVLKQKPGDRDEAVECYKRFITALLDVTDNILSGKIVPPEDVVRHDGDDPYLVVAADKGTATFSDIANEISVRKDFWMGDAFASGGSAGYDHKKMGITARGAWESVKKHFRDLGTDTQSEDFTVVGVGDMSGDVFGNGMLLSQHIRLVAAFDHRHIFLDPDPDSSISYAERRRLFDLPRSSWADYDASLISEGGGVYPRSAKSIPVSPQVRAALGLGEASTISPAELMRAILKAPVDLLFNGGIGTYVKGAAESHAEVGDKGNDAIRINGSELRVKVVGEGGNLGLTQRGRIEFARAGGRVFTDFIDNSAGVDCSDHEVNIKILLGGAVVDGELSLPERDDLLAAMTGEVGELVLRDNYEQAMALGNARSQAHSLLPVHRRQLKSLEERGELNRELEALPSDLELAARYENGQGLTPPEFAVLLAYVKISLEREVLTDELVDEAWTTDVLSGYFPTPLRERFAGRMAGHRLRREIISTALVNEVVNRGGTSFVYRAMEESGASAADVIRAYVVVRDVFGLEEIWAAGEALDNRVPTSAQTLVFLETRRLLDRAVRWLVSTRRSPLDVPGEIAKLRPGISALLPLLPEVIVGAERRALFDRIAELVAKDVPEDLAAAVSRVFYGFGLLDVLETAAAIDRDAEEVAQVYFVLSERFGVDALLSHISRLPRGDRWQTLARMALRYDLYAALAALTAEVLHSTPSSAPPEDRVSEWEQVNAASIARASNAMGDVDDSPADLAALSVLLRQIRTLVKTSSAG +>UniRef90_A0A2E6Q8T7 Oxidoreductase n=1 Tax=Rhodospirillaceae bacterium TaxID=1898112 RepID=A0A2E6Q8T7_9PROT +MSVPLFTPIELGNVTLANRIVVSPMCQYSAVEGSATDWHLMHLGNYALSGAGLLIHEATAVVAEGRISHSCLGLYSDKNESALARVLEFCRGISDIPLGIQLAHAGRKGSCERPWEGRGPLSGENAWQTDAPSALAMADNWPTPNAVSIEEMKAIKAAFVTATERAIALDYDLIELHCAHGYLLHEFLSPLANAREDDYGGNLANRMRYPLEVFEAVRAAWPEGKPLGVRISATDFAEGGWEIADSVVLSDALKGLGCDYVTCSGGGVTFDQTIELEPGYQMPGAEAVKRETGMPVMAVGMIRDPKFANTAIADGKTDMVALARGFLYEPRWPWRAAYELGVDAAYPPQFERAAPSAWPEAFPDQSD +>UniRef90_A0A5F7ZVD1 Secreted protein n=1 Tax=Macaca mulatta TaxID=9544 RepID=A0A5F7ZVD1_MACMU +LPEAASLQSSHFYSVPCHNPTVHALCPNIHFLFFLFLLRLSFALVAQAGVQWHDLGSPQPPPPGFKRFSCLSRLSSWNYRHAPLHTPNFVFLVETGGFSMLVRLSRNSHVRRVGRSLFTDEEGNCSSESMTVWLR +>UniRef90_A0A5B9Q9U5 Glyco_hyd_65N_2 domain-containing protein n=1 Tax=Bythopirellula goksoeyrii TaxID=1400387 RepID=A0A5B9Q9U5_9BACT +MKIHLWEIVLFLLAISVANSVARESESELVWFDRPATHFTESSPLGNGRLGAMIYGGTIDETVVLNESGMWSGSTQEADRLGAAEFLPEIRRLLFLGKNVAAEKLMNEEFTCTGQGSGHGSAAELPYGSYQTLCKLQIKFLQNETAPSVQNYRRELDLHDAVVRIEYSRNGVDYLREAFVSFPDQVFLYRFTANKKNSLSFDVSLSRSERSNTKNVGKDELQIEGQLDDGKEGETGVGFCSRVRVLHDGGMVTTQDGTLKVRSANSVVLLVSAATDLEALVSQVDEDIYKATEVVLDRAAAKPFADLLKDHISDYQNYYNRVGLRLAPTRIDSRSKLPTEERLHANWRDTQDNSLAALYFNFGRYLLISSSRPGGRPANLQGIWASEIQTPWNGDWHANINVQMNYWPAEVCNLAELHEPLFRLIESLVEPGSQTAQIYYNARGWVSHVLANPWGFTSPAERVSWGSTNTCSAWLCQHLWEHYLFTQDREFLLSVYPIMKEAAQFYLDTLVEHPTQEWFVTAPSTSPENRFLLPNGEEASICIGATMDMQILRSFLYACREAANELDCDEVFRTQLSDVIGRLAPTRIASDGRIMEWDQEYPEKDPEHRHVSHLWGLYPGDEISNSQTPELAAAARKSLNVRGDSGTGWGLANKIAMWARLHDGDRAHRLLQQHLHPVTHGQRKQQWSGGTYPNLFDAHPPFQIDGNFGATAAIAEMLVQSSISDIDNIKHVNIELLPALPTAWPEGEVRGLCTRGGFEIALNWKDGKLGDVEIHSRHGLPLQLRYKSQEVTLTPARGEKVHFDGDLKLLSTPKSAVVPPSGSNK +>UniRef90_A0A417XX54 SCP_3 domain-containing protein n=1 Tax=Nocardioides immobilis TaxID=2049295 RepID=A0A417XX54_9ACTN +MPSRLRPADPVDVSRALAGVSGGTADRAELRLLTKHFLALLEERAPGRSVEVRVPPFAAVQVIEGVRHTRGTPPAVIETDAETWVALATGELAWADALASGRAQASGERTDLSPYLPLG +>UniRef90_A0A512JR32 Fusaric acid transporter n=1 Tax=Methylobacterium gnaphalii TaxID=1010610 RepID=A0A512JR32_9HYPH +MTLPGWRDWVFAIKTFGAAILAMYLAMWIDLPRPYWALGTVFITSQVLAGATRSKAIYRVCGTLLGAVVSVILVPNLANAPELLTIAIALWVAVCLYFSLLDRTPRSYLMMLGGYTAALIGFPAVGDPGTMFDTAVARAEEITLGILCASLANTVVLPQSVAPLIAGRLDHWLTDARGWIVSVLSHTSNAGDTQSKRLKLASDAIAFDALATPLRYDMSGAERSAEAMATLRQHMLMFLPIVSALSDRIEVMRRAGTMPSRLETLLDDVAAWLAAGRIDEIEAQGLRSRADALCPPMSQQASWTDLVLASLLARLNNFIDLRQDARLLQRHILDGTLTTERLAFSYTAAARTIRHRDHGMALLSAIGVFLSVLLSCTIWIATGWPDGAGAPMMAAVGCCFFAAQDDPAPSIVGFANSAIIGGIASAIYLFAVLPLATNFEMLTLALAPALLTCGVFMTQPKTAPIAMGAAVNGSAMIALQGSYTGDFAAFANSSIAVIAGMWVAALVTRLVRSVGAGWAAHRLRSVNRRSLAQAAERQGAQNGLELAAIMLDRVGLIAPRLTSLPPGDAEWTADLLAEVRVGINVVELRRNRRALSNEARKAVEALLAALARHFHAKALIPPTGLLADIDAALDAVIADRLHAARGVALMGLVGVRRALFPEAPDYKARRTATSEPGWAA +>UniRef90_A0A3D3L9U4 Heat-shock protein Hsp20 n=2 Tax=Verrucomicrobiales bacterium TaxID=2026801 RepID=A0A3D3L9U4_9BACT +MKITRFNPSLNLGRVADFDQWLRNPFAAFPLMGQLLGDFAPAFTSGRPATDVHEDKDNYYACFELPGVKKEDLKVEIHDRLLNVSAERKEKNGEQESSLTLCRSISVPEGVNAEGISARLEDGILVVTLPKQEHRKPKLIEIA +>UniRef90_M4NI99 Dipeptidyl aminopeptidase/acylaminoacyl peptidase n=11 Tax=Rhodanobacteraceae TaxID=1775411 RepID=M4NI99_9GAMM +MSSKTGSSRVLGALVMGALSAGVAAQARTLSADDYARAERFMSYNTVPLVDHAVPKVEWLDDGHFWYVDHDAAGDHFVRMDAASGKTAPLFDQAKLAVALGKAGGKPVDAKKLPVTGYEARPDGRVDIAVRGKHYVCDLAAVEASCVDRTALVKTGKEPGALSPDKQSEAFIRDWNLWLRDVASGKETQLTTDGVENFGYATDNAGWKHTDNAIVEWSPDSKRIATFQQDQRKTGEMYLVSTNLGHPKLEQWKYPLVGDKDVTMIERVIVDVAAKKVLRLQMPPDQHRSTLCDDVSCGPDGGWDDVKWAADGKTLAFVSTSRDHRHEWFRIADANTGKVRTVFEEVVPTYYESGNGAVNWRYLPETNEAIWFSERNNWGNLYLYDLTSGKLKRAITKGEGNVTELLKVDPKTRTVWFRGVGRTAGVNPYYQQFFKVSLDGGKPVLLTPEAADHTVTLSPDGRAFVDAYSTPTTPPVIVLRASDDGRKVASVATADIARLKAAGWVPPIPFTVKGRDGKTDLYGMMFKPTHFDPSKKYPIIDYIYPGPQTGSVRGRSFSAARADHQAMAELGFIVVAIDGMGTPWRSKAFHDAYFEHVEDNTLPDQVAGLKELGKQYPWIDLDRVGIWGHSGGGNATAAAMFHYPDFFKVGWAESGNHDNRNYEDDWAEKWQGLLVTNKDGKTNYDAQANQSFAKNLKGRLMLVHGTMDDNVPPYQTLLVADALIKANKDFDLLLIPNVHHGYAEATPYATRRRWDYFVQYLAGNTPPHEYQLKAWPWR +>UniRef90_A0A1B7P3P8 UDP-N-acetylglucosamine transferase subunit ALG13 (Fragment) n=1 Tax=Emergomyces africanus TaxID=1955775 RepID=A0A1B7P3P8_9EURO +MDSSKRARKLCFVTVGATAPFNALVLEVLGEPFLEALRINNYTDLRIQHGQMGESTFQEFKLQNGTMAKEKYGLDITGFDFNLAGLKNEMLDVKADVDANKAEGFIVSHAGSGTILEVLRLGIPLMVVPNPQLLHNHQDELAKQLAVSGYVIHGKL +>UniRef90_A0A2T5J629 Type I site-specific deoxyribonuclease n=1 Tax=Mucilaginibacter yixingensis TaxID=1295612 RepID=A0A2T5J629_9SPHI +MNEHEFQTYVAQIIGQLFPTLQEGQIEQEHAFSLKFGHHAVVIDGKEPGKYAKSAIYDILLKFQGKPFALLELKKPGNGIEPEDIRQGVSYARLTQPICPLTILTDGTTTQLINTFDGEPFKEEAMDIQFIENLFRQGLLLSANSLKNAISTLLEADHRVIFDVINTISHNAFEQLRGDPEDISKPIMRDFKVARSAERKIWDQLEKTPGVFLTGEPFVGKTNLLYQLFETAKNAGQALLYINAADQNYNIFRRLSNFITMRMRYPVTEERVKEWLLLSSNRSPQDRLVVVYDHFRHDTDEHLKADIAELFDVFEADNNRVILATDNANYDLLTTTAGRTTTNFYRERFARIRLKTFSSKEFELANQLLYDRYGGMVLPGGIFAGEYRNPRVWRLIAKAIRAERTQATALGIIEAVPSFQFLQLISNHWHFDAQTRQDFKALSVAFMESMPLRNEQGDLKLMALNLPVIAEQELKKHLENEVIERLKLAGLLERRLLPDDRWVFLPKLPELIAKNAGEHLKARFQPLLLADFHQHYPEFLEAYQYLPFGEIIAAQTIVHWGYQQELDLFSAFIRKLQSDKPEIETATGGGLVRLYLPEKGHITLPIEPGEEQKYIGNLFPYLILSHLVTLQFVDDSQHPDMERARCIAAVGQTNFQVRSLNVNTFYEPMPTNHEVGNIGNITHSGIGIVEPIVQAMQANIIQSPQVIDILFRHALEKKYYRLLHRIYIAARYSDGLGSPESDALCESIQARYMDHFNKMMAFAIADKGATRSERRKIEKGLRKRDRKQKK +>UniRef90_A0A841IL00 Beta-N-acetylhexosaminidase n=1 Tax=Nocardiopsis algeriensis TaxID=1478215 RepID=A0A841IL00_9ACTN +MRLPAPYALACVGLALSTAACTLLGEVNPSEEDGGSPTEESFEPVLAPRLLEEMDLGDKIGQLMVLTAQGTTAAENAALIETYRPGGLIYFDANLTGAEQIASLSAGVQEIAAEQGAGVPLFLGIDQEQGLVARLPVGTSFPDAMAVGATGDTGQAVLRATTTAAELNALGINLNYAPVADVNTDPDNPVIGIRSFGSDPALVSEMAVAEAGAYAEAGIVPVVKHFPGHGDTDVDSHTGLPVIDMPRDEWEAEHLPPFRAAVDAGVDAVMTAHVIMPQLDAGTDPATLSPAIIDGILRGELGYDGVVTTDALNMEGVRQDHTDGEIAVRALEAGVDQLLMLPDPAAAVAAITEAVEQDRLTEERIDESVLRVLVLKERRGVLEADPVDPAAAEAALSDPAHAEAAQTVADASATLVRNESGLLPLAAGARVRVEGTGADRLAGALAEAGLEVVTEGADAVVVGTNGARGSAEQSAPVEAARAQGLPVVVVAQGGPYDLEAFPGVEGFIAVYSSVDVSLAAAAGVVAGEVEPTGTLPVDIPGADVAAGTGLGF +>UniRef90_A0A5C6Q7Q0 OmpA family protein n=1 Tax=Colwellia sp. C1TZA3 TaxID=2508879 RepID=A0A5C6Q7Q0_9GAMM +MNYIMTILLTLAISGCSIQIQEMTPEPTVQKADLADIEADGIINARDQCQDSFVGASVANNGCGSDRIEELKHKLQVNFIPNSYTVEWRFLSEIKKLAEFMKDNPRAKLTIEGHTSKRGTKVLNQILSQNRAQAIQNILVNKFMVEQARITAIGYGFDRLLLAGDDEYIHARNRRIVAKLSREKLLTDMKWTIYSVDQAEE +>UniRef90_M3I5W0 Oxidoreductase, short chain dehydrogenase/reductase family protein n=2 Tax=Leptospira interrogans TaxID=173 RepID=M3I5W0_LEPIR +MASFNSSGKMNAFVIKHDVTNFDQVETVFQKAIKSMKGLDEIYYASGVMHNIKPDEFDVEKDISMLNTNLLGCVAWLNPAANLFQKQKSGKIIGISSIAGDRGRRGNPVYNTSKAGMNTYLEALRNRLSVLGVQVLTVKPGFIDTAMTKGMKGLFWLISAKEAAEIILKAADSGKENIYVPARWGLVGLIIRCIPSFIFRRLSI +>UniRef90_A0A3E0HEB5 Serine/threonine protein phosphatase PrpC n=1 Tax=Kutzneria buriramensis TaxID=1045776 RepID=A0A3E0HEB5_9PSEU +MSTAHDLTYGRRAAVATRRGVRDHNMDAPALFQASTGVVVAAVVDGIGNDPDGAATMHLIAETAVRIGATKGALAGVLAGAALVEDPGVENHMPDGVIVLALAVPGRPTHLAWVGDSHAYSWDGDTLSRRTDPHTMGAYLRGNGAVDLAPLHDSWVRVTLTSATVTNVAVSSIPANELVVLVSDGLDTLPHDELEALVREHQDNPDTLADAIVAAARETEDGYRDDATAIVLTTAG +>UniRef90_A0A6A5YPJ8 TauD domain-containing protein n=1 Tax=Lophiotrema nucula TaxID=690887 RepID=A0A6A5YPJ8_9PLEO +MAPIALPIVESIKETDTVQPKKDSLALPEPARKRLEDAGIDLSSGYPYRPAKPLYLDDVYNIRNEEREFVDAGSRADPEKKALLSAAKEVIHLTGHIGTEIVGLQLKDLTDQQKDELALLIAERSVVFFRDQDITPQQQKALGEYYGEIEIHVRIQPQVPSVPGVPGTTVIWPALQATEFAASFRQTGGASRWHTDLVHERQPAGITHLHNDTIPSLGGDTLWASGYSAYEKLSPDFRKIIDGKEAVYRSAHPYLDRKNPTAGPKFIERTHPLVRVHPATGWKALWVNRAMTVRIVGLDKAESDLILGYLYDVYERNVDIQVRFKWTQGTSALWDNRITIHNASWDYEGKEPRHGTRVTSLAEKPYFKADAPTRRQALGLAGPGDI +>UniRef90_A0A285NT28 Acetoin utilization deacetylase AcuC n=1 Tax=Natronoarchaeum philippinense TaxID=558529 RepID=A0A285NT28_NATPI +MRFGYSETCLDHDTGDRHPETPDRLRAIKEGLKRKHGVEYVEADSADVETVAAIHDREYVEEVREFCADGGGNWDPDTVAVEGTWDAVLQSAGLSAWAAERAMDGDSGRETPFALGRPPGHHAVVDDAMGFCFVNNVAVAAQHALDDTAAESVAIVDWDVHHGNGTQDIFYERDDVLFCSTHEEGIYPGTGGSGETGTGDGEGTTLNLPMPAGAGDADFAAAFERVVEPAVESFDPDLLLVSAGFDAHRHDPISRLRVSTDGYGVLTGRLRDLADETDTALGFVLEGGYGLDVLAEGVAMVHEVFDGLDPVQPDDDVDDDVEELLTGLRSRHPLLVGN +>UniRef90_A0A1A8J6Y5 Ectonucleoside triphosphate diphosphohydrolase 5b (Fragment) n=1 Tax=Nothobranchius kuhntae TaxID=321403 RepID=A0A1A8J6Y5_NOTKU +MKPTVLLLLLVLLAVSGPSRAQVRSSHLDLPRILPSLSRPANHSRIFYAVMFDAGSTGTRIHVYTFIQNGSEKLPVLDNEMFHSTKPGLSAYADSPETAGETVRRLLKVAKKAVPRLDWKRTPLVLMATAGLRLLPVEKAQALLDQVKGFTRHCRDPRWGCFYK +>UniRef90_UPI000DD31245 peptidylprolyl isomerase n=1 Tax=Paraliobacillus TaxID=200903 RepID=UPI000DD31245 +MKKLAIAATIAAGMITLSACSSDDSETVVETASGNITQEAFYEELKELSGSTVLEQMVTQTILEDNYEVDEDQLDEQLQVYKDQYGDQWETILTSSGYADEEAFREDLKLQLLQQEALIEDIEVTDEEIEQRYERMQTEIEASHILVADEETAIDIKAQLDDGADFATLAEENSTDTASAAEGGSLGYFTAGDMVAEFEEAAYSMEVDAISDPVETTNGWHIIQVTDKRDAEEAPEPLEDIRDDIRDEIALTKVDDTAAQEKLDQLMEDADIDVKIEEFEDLFTAEEETATE +>UniRef90_A0A6P0X9G7 AI-2E family transporter n=1 Tax=Okeania sp. SIO2D1 TaxID=2607792 RepID=A0A6P0X9G7_9CYAN +MQQILNQLKKWGEKYLHFDLISLFLIGYATAIILSIDNYIIRILTFFPLLLLLLVDLVILLFAPEKLREIYSKTTLFICTLTAALLLVWII +>UniRef90_UPI001B3ACF38 ribonuclease P protein subunit p14 isoform X1 n=1 Tax=Toxotes jaculatrix TaxID=941984 RepID=UPI001B3ACF38 +MSFIWRSVFNKPRLCLSSIAAALPPCRLLHVGQRASLTKAFSSHDVELFAKLTGDNNPLHLDPVYASSTSFEAPIVHGVLINGLISAVLGTKMPGPGCVFLHQEIRFPGPLYVGEEVLAEAEVLKIKMSFALITVKCSVKDKVVMEGEVMVMMPEDQQKRG +>UniRef90_A0A1M7FK69 Uncharacterized protein n=2 Tax=Flavobacterium TaxID=237 RepID=A0A1M7FK69_9FLAO +MNTYADNNKENKKQQTPSAIHKKDNRDTALPVTDSHLSSVAAQLQLQEIANNSPQVKQAFQLQAIANAHAALPIQKKDLITTQSVFQLQKLERGKLNVVGEHHSESNQRRGQEIDIAEREVGGEYWTENNFRIRETKSPGENAVRDTTGDPRILGDALYLRIVESIQYVYEAKNNFEKEWKHWTTQNLNKEELPILKGELQPLLVICKNHTLEANKLAKAYMYNEEFKTLPEFVSDQIVQMYKLLPETEKLFLILVETWKSYTLEQLILKKFLSSFNVFGSNIDILNIYAAQIGGASRTDTSKLRSYEMDNAADFAHDRIGVWKIGFDHVKDIKEDMQHNDTKNYILINREEFNHEYKELPILVEDQMVKQK +>UniRef90_UPI001FB4782B PTS system mannose/fructose/sorbose family transporter subunit IID n=1 Tax=Coprobacillus cateniformis TaxID=100884 RepID=UPI001FB4782B +MGALIPSVVNAKFAYTFTQGEVSIAVQELADKIMPSLAPCLVVLLTYWLLGRKKMNSTRVTLLLVVLGILAFNLMIFA +>UniRef90_A0A2T6FJL9 tRNA (guanine-N(7)-)-methyltransferase n=4 Tax=Cellvibrio TaxID=10 RepID=A0A2T6FJL9_9GAMM +MKPEFKPKSIRSFVIRAGRITVGQKNAFDKYWPGMGLSLFNGAINPDVVFGRQAPLVIEIGFGMGDSLLEMAANEPDKNFIGIEVHPPGVGRLISTASQQGLSNLRVYMADAMDVLEDCIPDGSIDRLQLYFPDPWHKKKHHKRRIVQPAFIQKLRPKLKMDGVLHMATDWQPYAEHMLEVMNSATGFATDFTETGFAPRPDYRPVTKFEKRGERLGHGVWDLLFKKTA +>UniRef90_UPI0012F6EEC0 DUF927 domain-containing protein n=1 Tax=Methylobacterium sp. WSM2598 TaxID=398261 RepID=UPI0012F6EEC0 +MSEALFATEMQRLDEAGVEEPSEVRANQERHGGIRWPKGFRMRADGLWYEPEGDEEAMRVSGPFRVPGLARDPAGSGWAVTIEWKDRDDRPHRGFVSYADLVGDGVDWLRPLAAAGLPVTIGTKALRLLKRALYELECTARVRLIRRSGWYRGAFVLPERTIGSAPGEEAVFEGRLDAARYASAGTLEQWVDAVAAPAAGNSRLLLALAVAFAGPVADLLEDEGGGVNLKGASSVGKSTLLVAAGSVWGGGARAGFTQTWRATGNGLEGVAKAHSGTVLILDELGELEAREAGSTAYLLVNGLGKARATRDAELRARHEWRVMLLSAGEVGLADKITEGGKRARAGQLVRLVDVTADAGRGLGIFDDTKGMEPAPFSNMIKSAALKVYGTAGVGFVSGLANDPDRYAAAARRRIAEVSRNLLVGLPEADGQATRAAHRFALIAVAGEMARAVLNLPWAEGEVDGAIKTCFDAWRATRGGDGPGELVAALEAIRSAIERHGEARFRNLDQHDGGAAPIRELLGYRQSRDGDVIYAFTATGWAETLAGTADPKSIVKMLFERGVLFAGRDRTHRHFVKFHGQPIGTYAVRASAVLDTEAA +>UniRef90_A0A7Y9LCB2 DUF2264 domain-containing protein n=2 Tax=Microlunatus parietis TaxID=682979 RepID=A0A7Y9LCB2_9ACTN +MSKPGESWTRDDLVQFTDRSLLALRRWATPGRARFDLPGPRVGSGPERDGLEAFARSFLAVGFRLSAAEIDSHDHAGWYAAGLAAGTDPESPEFWPSLRELPQARVEAAAIAIALHESRRWIWDALTPAVKQRVIDWLSGSVGIAYPDNNWRWFQNVTQAFLRSVGGPYDQAELDENLTFLDDCYLGDGWYSDGRPDRRTGNVDWYVGWVMHLFSLWYCRMSEGEPGIAELQARYAERLRPYLTDAADLFGADGAPLHQGRSLVYRHAVVGALWTGAVFDANPLPLGRLRRTALGAIRFFAERGAFDEDGLLSLGWLGRFEPMRQPYSGPGSPYWASLGLAGLVLPESHPVWAEPEQPTPIETGDVVRPIRPIGWLVSGTADDGIVRVINHGVDHSTATPAPENPYYNRYGYSSVTGPVPAPAGTADGAVDQQVALIDPDGRWSQRPMIERVAVDDHRASSRQRARFARTEPEQGFDDGPELTCVSLVRGSVEVRAVRFDDHDQASAALVISGYAVPRKPAEGARTGLHSAVTALTEGGSSGSSVHPVANAFGADLEVPWCRFEHPEPGRWYVIALCLGEREPAWPTLADTPSGPVITWPDGTTDPL +>UniRef90_A0A0S6VXT7 FGE-sulfatase domain-containing protein n=1 Tax=Candidatus Moduliflexus flocculans TaxID=1499966 RepID=A0A0S6VXT7_9BACT +MSNTTQTRIREKIIMIGISLFILISLGITWFVLYAIIAIKRQNAHRSAILEGLGFSPVANPPAAFVEYITTLHHHVKTSKPRLKLDHVFQQRIGNADVYLFELIDNGSEHSKHYEVVAYVSPSLRLPRFLLNPVLPTKEAKPDENSAIFKVLNSMFRYNHKVEFPDVPEFEERYTLSITDEQDDSEIQNTFTPPVTAGLLNSPSQYSMLGWGDTITERSRLKITTKTTIEEAKAMLEDILSLFLLFENQGASSTVNVRALDSSLSRNLAGKNEIPAALKTFEKSVKIIAALFAISFLLTGASFIFKAVSFQKEQAASQEEAVHEMPAPPIATPTPAPELPPKLPELTGFACAETNGHLECVEPLTGMILVNIPVAQSDMCGAKTEYWLGKYEVTQEEWEKLMGTNPSFFNRSKLGDGYKRHPVEQVSWDDAQAFLQVLNSRYKDKGVKFDVPSTAQYQRGCQAGMNAEWPYGTRDATQLDAYAYHNGNALGSSHIVGEKAGNAFGLYDIIGNIYEWSRDTNFTLKMTDGNAEFIPDKDGRKDLLGGSWKTDPDSQRCTMIPAELPAARRNDVGFRVAVEPVAP +>UniRef90_A0A7Y4V1B9 Transposase n=4 Tax=Mycobacteriaceae TaxID=1762 RepID=A0A7Y4V1B9_MYCFO +MQRPIEPAQYLSLAYTDRLIELGIAPSVGSRGDSYDNALAEAVNAAYKTELINRGKPWRGVDDVELATAEWMAWYNQERLHEALGYVPPAEYEAALKGASHPASQPTPALVPN +>UniRef90_UPI001490A0B5 MlaD family protein n=1 Tax=Muricauda amphidinii TaxID=2735167 RepID=UPI001490A0B5 +MKLTREVKTGIIVLAGIVALIFGLNYLKSSPFFENNKTFYAVYSHVGGLQPGTQVSINGLNVGNVQSIRFLDSSGKLVVTFTVGKDFDFSKNSVAELYDTGIIGGKGIQINPVFDKAPNAQSGDTLTSNIKPGITELVQQKLTPLQMKVEGAVSHADTLLMNVNEILDEPTKRDLKLAIGTLNEVVTSFKGSADKLNLLLENNKEQLDSSLKNVDNITSNFSKLSDSLANAGLAQTVSDFQTTVESLNTILSKIEKGEGTLGKLTHDEELYNNLSEVSRELDLLLQDFRLNPKRYVNVSVFGKKQKDYELPENDPAQKQD +>UniRef90_UPI001BCFD6CE universal stress protein n=2 Tax=Roseibium polysiphoniae TaxID=2571221 RepID=UPI001BCFD6CE +MSFKTILAVAEFTEDVKSRLKSAVDLARTQDAHLAVLLVGEVPSLPFYGYGGAGYTKVWMEEGEERAAALKAVQEDVEAALAKEGISFDVRAHQAIVAREDNLVARHAIYSDLALILRSGDGELNTVERQAIDGALFDSGRPLLFLPKPDVPQTVGQNILVAWNSRAEAAEALSDAMPFLVGAGKVTLLLVDPVSGPDDHGESPGADMALVLARHDVEVEVRQVSSNGSSIAEVLNREAKTLGADLIVMGAYGHSRMRQTILGGTTREMLEETACPLFLAH +>UniRef90_A0A6B0S860 PAN2-PAN3 deadenylation complex catalytic subunit PAN2 n=2 Tax=Bovinae TaxID=27592 RepID=A0A6B0S860_9CETA +MNFEGLDPGLAEYAPAMHSALDPVLDAHLNPSLLQNVELDPEGVALEALPVQESVHIMEGVYSELHSVVAEVGVPVSVSHFDLHEEMLWVGSHGGHATSFFGPTLERYSSFQVNGSDDIRQIQSLENGILFLTKNNLKYMARGGLIIFDYLLDESEDMHSLLLTDSSTLLIGGLQNHILEIDLNTVQETQKYTVETPGVTIMRQTNRFFFCGHTSGKVSLRDLRTFKVEHEFDAFSGSLSDFDVHGNLLATCGFSSRLTGLACDRFLKVYDLRMMRAITPLQVHVDPAFLRFIPTYTSRLAIISQSGQCQFCEPTGLANPADIFHVNPVGPLLMTFDVSASKQALAFGDSEGCVHLWTDSPEPSFNPYSRETEFALPCLVDSLPPLDWSQDLLPLSLIPVPLTTDTLLSDWPAANSAPAPRLRAPPVDAEILRTMKKVGFIGYAPNPRTRLRNQIPYRLKESDSEFDSFSQVTESPIGREEEPHLHMVSKKYRKVTIKYSKLGLEDFDFKHYNKTLFAGLEPHIPNAYCNCMIQVLYFLEPVRCLIQNHLCQKEFCLACELGFLFHMLDLSRGDPCQGSNFLRAFRTIPEASALGLILADSDEASGKGNLARLIQRWNRFILTQLHQDLQELEVPQAYRGAGGSSFCSSGDSVIGQLFSCEMENCSLCRCGSETVRASSTLLFTLSYPEGSNSDKTGKNCDFAQVLKRSICLEQNTQAWCDNCEKYQPTIQTRNIRHLPDILVINCEVNSLKEADFWRMQAEVAFKMAIKKHSGEISKNKEFALADWKELGSPEGILMCPSIEELKNVWLPFSIQMKMTKNKGLDVCNWTDGDEMQWGPARAEEEHGVYVYDLMATVVHILDSRTGGSLVAHIKVGETYHQRKEGVTHQQWYLFNDFLIEPIDKHEAVQFDMNWKVPAILYYIKRNLNSKYNLNIKNPIEASVLLAEASLARKQRKTHTTFIPLMLNEMPQVGDLVGLDAEFVTLNEEEAELRSDGTKSTIKPSQMSVARITCVRGQGPNEGIPFIDDYISTQEQVVDYLTQYSGIKPGDLDAKISSKHLTTLKSTYLKLRFLIDIGVKFVGHGLQKDFRVINLMVPKDQVLDTVYLFHMPRKRMISLRFLAWYFLDLKIQGETHDSIEDARTALQLYRKYLELSKNGTEPESFHKVLKSLYEKGRKMDWKVPEPEGQTSPKTCRALVDELEWEIAQVDPKKTIQMGSFRINPDGSQSVVEVPYARSEAHLTELLEEVCDRMKEYGEQIDPSTHRKNYVRVVGRNGKSSELDLQGIRIDSDISGTLKFACESIVEEYEDELIEFFSREADNVKDKLCSKRTDPRVRPPWLYSLRPPGYSELRRTPARLKGALRLAGRLLRLELPGLCAFRPTAGENLKDILADLIPKEQTRVKAFRQQHGKTVVGQITVDMMYGGMRGMKGLVYETSVLDPDEGIRFRGYSIPECQKLLPKAKGGEEPLPEGLFWLLVTGQIPTEEQVSWLSQEWAKRAALPSHVVTMLDNFPTNLHPMSQLSAAVTALNSESTFARAYSEGINRTKYWELIYEDSMDLIAKLPCVAAKIYRNLYREGSSIGAIDPKLDWSHNFTNMLGYTDAQFTELMRLYLTIHSDHEGGNVSAHTSHLVGSALSDPYLSFAAAMNGLAGPLHGLANQEVLVWLTQLQKEVGKDVSDEKLRDYIWNTLNSGRVVPGYGHAVLRKTDPRYTCQREFALKHLPQDPMFKLVAQLYKIVPNILLEQGKAKNPWPNVDAHSGVLLQYYGMTEMNYYTVLFGVSRALGVLAQLIWSRALGFPLERPKSMSTDGLMKFVDSKSG +>UniRef90_A0A8C0HHE9 G protein-coupled receptor 158 n=1 Tax=Buteo japonicus TaxID=224669 RepID=A0A8C0HHE9_9AVES +MPHKRKLPIPTQTSRPPPNASLLPPGTARPLRRANCSGRYELASLAGKSRFTSHPTLHGALDTLTHATNFLNMILQSNKSREQNLQEDLEWYRALIRSLLEGDPNISRAAITFSTEPFSSTPQVFLQASRHESQVLLQDLSSSAHRLANASVETEWFHSLKRKWRPHLHRKVLNTGPKTLENSWKRRESFTADKNHIRWSSPYLECENGNYKPGWLVTLSAAFYGLRANLLPEFRGVVKVDINLQKVDIDQCSSEGWFSGTHRCHLNNSECMPIKGLGFVLGAYKCICKAGFYHPNIFSVDSFQRKDAENRFSGGELSEEVYTCLPCREGCSYCTDDTPCYAQEDKYLRLAIISFQTLCMLLDFISMLVVYHFRKAKSIRASGLVLLETILFGSLLLYFPVVILYFEPSVFRCVLLRWVRLLGFATVYGTVTLKLHRVLKVFLSRTAQRIPYMTGGRVMRMLAVILLIVFWFLVGWTSAITQNLERNIPLIGQGQTSDHLIFNMCLIDRWDYMMAVAEFLFLLWGVYLCYAVRTVPSAFHEPRYMAVAVHNELIISAIFHTIRQVIYSKVSLMPFLEQWVMHSSGCLLDQTCSVHTSFAIHFALQDELKKLYAQLEIYKRKKMIANNPHLQKKRCSKKGLGRSIMRRITEIPETVTRQCSRDEKDLMEHSAVKNMATLRKNPQDSTSSAKPKEETLKNRVFSLKKSHSTYDHVRDQTEEPNSLTTESTEVIATENSLLDSLNGNKLTKNAPEKVEAVSTESVPLVCKSVSAHNLSADKKPLHPRTSVLQKSLSVIASAKEKTLGLTGKTQSLEESTKSHKSQQKGKEASKKHSASDKGEHKDSHRKNSTHSEETKKTHKSGIMKQQRVSQTPANPDTGPGKSLHKDNFNIGEVCPWEIYNQTPGPVPSDSKVQKHVSIASSEPEKNHPSQPKVKTHHKLKTPEGYQQSNQKSPEKVEAPTRETQEQQVFENEKKQSNSKSQVSPGLKCENVNRYTPNTCAGEREELPQKAPEKENLNKLAEQKKNASCEGNVLSSDSHKPSSYLQQPLASRAEVCPWEYDTPDLPNAERSVALSNTSAISANKTATPRK +>UniRef90_A0A2T6DUT4 Endoribonuclease L-PSP n=1 Tax=Opitutaceae bacterium EW11 TaxID=2161865 RepID=A0A2T6DUT4_9BACT +MDLTTPSPQPFLRSAQSLAEDLESEIYATPESEARSSWTHRGCRVEVRASERDSFAEFHVTGLVECAGSAAELAEIVLEEVASVLASRRIQPIQEKLYGLTAIRGEVMKRRETAYRRRRLDPSVPTTWIQGLPLLGCDFVGIQIWGVAPYGGETCVTTVENPSTGAGRLWKGRGFRMLHLPCVRGIQHDGKLAAGPASQADWMFTNAEQGLAAHGFSYSQVVRTWIYVDRLLDWYGDLNCVRTAHYRRLGFGTTGGPAFPASTGIQGRFEEEECLVDVLALETDGRHATAAPVTRSPRQDQSFNYGSAFSRGMTLDVEGRRTIHISGTASINTAGDSTHLGDAEMQSLETLMSIAAILQEQGGTLENITSATLFCKTREAWEAWRRVSQLLRLPAFPKVCVLADVCRDNLLVEMEAVAVI +>UniRef90_A0A8S9K9L2 Transcription termination factor MTEF18, mitochondrial n=1 Tax=Brassica cretica TaxID=69181 RepID=A0A8S9K9L2_BRACR +LEAACALSGFGFPWNKLGRLYREERSVFLQSGDEIGSLLGRLSGVGFSTVAVAGVCLAFPSVLRGGVEIGCLFVKVKRLFEEFGSEDVVEENVESWYAFGRKIRVFYDLGFESEEMWELMGRNRSLFIECSEEALMRKTDYFCRFGVGKEEAALLILRNPDVMSFDLEKPVISVKGVLKHFGLSEDEVDALSLKHPHVFGRNRMKNLPHVVRALGLHERIFDKLKNGTYHLLSSYSLMKPDEDIDREYQRGLEEIQNLRCKTHSFQKLDFLHQIGFAENGLTMKTLQHVHGTAVEIQERFQVLLDSGIDFSKACMLIRSSPKSLNQKPHSIQEKIRFLCEEMGDSLEYLEVYPAYLCFDLENRISPRFRFHKWLVEKGLSEKNYSIASIVATSEKAFIARLYGIHPAIPKHYFERFSYRKDRTTVS +>UniRef90_UPI000836FEF3 nuclear transport factor 2 family protein n=1 Tax=Rhodococcus phenolicus TaxID=263849 RepID=UPI000836FEF3 +MTTTPAESTGEAGIAERITRLEDLEAIRLLDARYCRHLDDGNWDALMDLFTEDGEFDGLSHPRGRTEMRAFFAGLAEDGLTAFWHFITNLEIDLDGDRATVRSFLWQPCVTDGVAGIAAGRYTDQVVKIDGRWLYKVKQVRFHFFGPLESGWDENLFALDSARRAAVRA +>UniRef90_A0A523XA31 Phosphomannomutase/phosphoglucomutase n=1 Tax=Candidatus Cloacimonetes bacterium TaxID=2030808 RepID=A0A523XA31_9BACT +MNKEIFRTYDIRGKADIDLTNEVVEILGKSYSIFLPSNAKRIGIGRDIRLSSERIKNNFVKGLLSTGIDVVDFGVIPTPLLYFTVHTHALDGGVEITGSHNPKEYNGLKMLVGKNTIYGDEIQEIRRIADKGVFRKGIGSYEEKETVNEYINDILDRISLGKRKLKIIFDTGNGTTGPVVKRLYSKLPFEFEILFEEPDGSFPNHLPDPTIPEYLNDLIQRVKESKADLGIAFDGDGDRIGAIDEKGRIIWGDKLLAIYSKEVLRKRQGAKIIFEVKCSNGLIEYIKEKGGVPLMWKTGHSLIKAKMKEEDAPLAGEMSGHMFFGDNYYGFDDAIFASLRLIELLSRTQNPLSLLADEVPSYFVTPEIRVDCPDSEKFKVVEDVKKTFEKEYNIIDIDGVRVVFPDGWGLLRASNTQPILVLRFEAKTEEALSRIKKSFTQILEKFPFIKI +>UniRef90_UPI00048A2204 TolC family protein n=1 Tax=Anaerovibrio lipolyticus TaxID=82374 RepID=UPI00048A2204 +MRNNRFKTLTALVISGVMTMSMAGTAMAETMDVDIEDCVNMAMANNHTVKSAIDDYDSAVWARHEARRMHGPTLNWTSAAQHIGGKFYDAHNVNSMYTNTVAVSMPIYTGGQLEGSIKAADLALDANELALEATKQGIKAKTQAAYYSALNCRNQIKVAQNSVKTLEEHLRNVNAQFGAGTVAKSDLLASQVQLSNAQLNLVSSQNNYDVAIATLNNVVGLPTGTELNLKDELGYVPYEISLDQCSEYAQLNRPDILAAEYKVKIAEAQLDVASSGNLPKVNATVSKTFAGEKPFSADERPVDNFYQQNTWYAGIGISWDIFDNNVTQAKVKQAKAAIEKAKEAAQEARDTGDLEVRTAYLNLTAAEKSISTAKVAMEKAQEDYTIAQVRYGAGVGTNLDVMDAEEKLTTAQSNYYNALYKYNSSKAALDKAMGLMVDLDVTQLQEKLAKN +>UniRef90_A0A0N8K910 Oligoendopeptidase PepF n=1 Tax=Bacteroidetes bacterium HLUCCA01 TaxID=1666909 RepID=A0A0N8K910_9BACT +MSEKKTSNGAETIYWDLSDLYTSGEDPNIRKDQHRLRDLASTFAARYRGTLATAHAGDLAEALRTYEEINDLLGKMGSFAYLQWSTNTENISYGQLMQQINEFSSELSQQLVFFDVEWLALEEERAAELIADERLKSWKHYLTASRRYKKHILSEKEEQILTAKSVTGSQAWVRYFDETLGAARFELDGEQLTEQEVLSKMHEPDRELRQRAADSLTRGFREHRRTLTFIFNTLLVDKFTNDTLRKYPSWISGRNLSNQIADDTVETLVESVQKFYPTVQRYYKLKKQLLGYDSFFEYDRYAPLLQTESRVSWSDAQTMVLDAFNGFNPEMGRIARRFFDENWIDAAIRPGKRGGAYSASTVPSVHPYVFMNYDGRLRDVQTLAHELGHGVHQYLSREQGILQADTPLTTAETASVFAEMLVFQKLLAELTDPREKLALLMGKIDDTIATVFRQVSMNRFEDAIHTARRQEGELSAERFSELWRKTQTDLYGDSVQLTENYDLWWCYIPHFLHTPGYVYAYAFGELLVLALYNRYENGAENFPQRYEQLLRAGGSDWPENLVSKLDVDIKDSTFWESGLAIIDQLVDQAEQLSAQAGMGQ +>UniRef90_A0A3M6WIU0 C3H1-type domain-containing protein n=2 Tax=Hortaea werneckii TaxID=91943 RepID=A0A3M6WIU0_HORWE +MAGKKPCHLFQLGRCKYGNGCKYAHVKDPSFKRKACINFAKGTCHRGKTCTYSHDQADIDLWGASNDQDTAANASGPSHVDNSQAMFKNWRYNIPQEVGTPTPLGINLGRFFKQAAELIDGDAGRMQEVIVLLASEGGVQRIIELLEQPLDKCHPDILPRLFNTQIICFLEIITHKHVTVSAILKPRLTTIYNIVWGEGGQQAMKLFSAVAQHLQTLRLMGQGEGSSTNTTAIHAIECALTALDKLTEVNTSAQVHDGLKRVAEAFAILFKEPMTDQVRFAVKPSQRHLRRVEQRLGLGQAIPTQSEGKQHKGERAFFTLERPGPGELNIDGVAPRYDNDHVDIRGISILPTTLEIQFAGAEYLPLTDPTQWHIGGLEGLLDRHFRLLRADTVGQLRDTAKTELARLQAPEARGPTQQNKQRTSRAFVYGNATIVDATFTSQNGIEFAISFDQPGKVQRKKKNERKDWWQNSKTLSDDALVCLLSSLGSAIFLTVVPEPKNPKKDAAKGEQQTSIHKQYDLWSNGQRAHVIVKPAQQDGIELILRELSSSGNARLSLVEFPSVLLPAFQPTLRAMQRLTETLEVPFAEVLAPVSTRDNPTREIEIQPPNYATRPGFQFDLSVVTTNGKALRFTPGRDIDGAAAELAQYSIVSSLSRSLALIQGPPGTGKSYTGVQLVKILLAHKKACNLGPILCSLERLLDEGVSNIVRIGGRSKSDRLANVNLREVAHRLDLTKTEKSERFRLTKEVEDEVTELKLILRSMSELGSQSSIEEYLREWQPQHHHQLFSNIDEEGFITVNRHQDSELQQWLNSVPWDQKKRRPVAELENADLRQMTARERRRLYRDWTAKAAHKVQEKFDRALTEYNNAKEQQDDIRTETDQRALRQANIIGITTSGLARNLDLLRRVNAKVLVCEEAGEVLESYLLTALLPSVEHAILIGDHQQLRPHVQNYDLSTESRGGAQYALDVSLFERLVQPQDILAHPLPFCRLQVQRRMHPSISQLVQETLYPNLQNAESVNPIPDVVGMRRRLFWMHHEQIEDHAGDGLKTSHTNSYEVEMTAALVKHLVHQGVYKSEEIAVITPYLGQLRLLRRKLASSFEIVLNERDDEELLKDAGNGIEGDPPSTDVPLRRPSVARGTLLNALRIATVDNFQGEEAKVVVISLVRSNRERKPGFLKTPNRINVLLSRAQHGMYIIGNSDTITGDAGSKAGSVEMWENVLDIFRTNDNFGTALELCCPRHQDTPMSVQQPSDFVRLSPEAGCNLLCDQKLSCGHACTSKCHSDMLHDAVFCSKPCYRLDQDAPIRAKRNACMVLIKDVNVQLECRHIHKSLRCFEYQDPSKVQCQVPVTWTVPGCEHQVKEPCSTDVYSDDYKCRAMCSAILPCGHLPATAKKSARRVQPSAKPVVFTVRVARHAVSLLQLSSRPSMPFALCRSLRLASLLEEVSSDIEVYFLDSKLLTSYCRCEKTLSCGCRCPSVCGEACPTSDFCQVHGSEHIESLNADLVMLCAYRDVDLDEDPCIFPPCGHVFTATSMDGTMEMAAHYEIDPLTGAFTALKSTSEPFSSQELKTCPECRGSLRSINRYGRIVRRALLDEGAKKLTAWANRTHHDLSERLANDQCRLLDSLEMARKPSQNVKLTNSIDDQLREVKRLKYSKRYRQTFAIRTAVKNFSDRLIVDEQPYQRVRDLVETRRRQQLASSSATDIAEFSFASEELQLHEHLQAMLLLVRTEIVILSDVIAMHDKADGPVKGILKLQFDANRLQCTELAEEAARTVNVRQEVEAHIFWAKFAAMECGTSMATEEEGDADVSDYLERLRDKAITHLDTAEAICKRFTANEPDPTSDLSDELAEVRRMLDEGISSSEMRMVVAAMAKEFRGTGHWYRCVNGHPFTVGECGMPMQLARCPTCGEGIGGQHHRPTAGVQHANDIEERFGRMAI +>UniRef90_UPI001FBC0094 HlyD family type I secretion periplasmic adaptor subunit n=1 Tax=Methylobacterium sp. E-016 TaxID=2836556 RepID=UPI001FBC0094 +MTHALVVPPPPIQMDWRKPVLTAYLVILLAFGGGAGWASVAKLESAAIAPGVVIAQSNKKTVQHFEGGIVREILVRDGDQVQEGQVLLRFDETQARASLDTIRSQQAVARIQEARLIAERDQTGKIILPENVASRAHEPAVARAIEDQQSNLRERATYLRSQVDVLNSKILQTEQEVRALTNDADSTKQQLVTIDQELGGLRQLLAKQLVPVSRVAALERERIRLQGMLDRAISDAKKGAQSIGETRLTIIQTQKQFLQQVSTDIIEVRKNLSDLIEKERVAQDVLSRLDVRAPRTGIVQSLKVFTIGAVIRPGDTILEIAPTGDQLTVSVQISPNDVDSVSEGLRAEVRFPTYHSRRVPIMLGKVRSVSYDRVTDAQNPQNIYFQGEVVVQASTVPSEIKDKLKPGMPAEAIITTGEQTPLDYFLGPLFDRVSHGLREK +>UniRef90_A0A7R8VGG4 JmjC domain-containing protein n=1 Tax=Timema douglasi TaxID=61478 RepID=A0A7R8VGG4_TIMDO +MHYLLNSGFDYPIVVDDPNGLEMAVPTNFNALQLLDYIDGMQQVKAIDVMSQNIITIYLIDFVDYFLSPYRWHPINLLSVEMSQTSLRDAIQPPLISRILDWSEIAWPADCSEPKSDVQRYCLVSTKRSFTDFHVDFGGSSVWYHVVKGEKILYLIKPTAANIQLFIQWTNTSKHNNSFFGDHVDDCFMLILTEGQTLFLPTGWIHAVYTPEDSVVFGGNFLHDLNIPLQMEIYKMEKATHTRQMYLYPQFEELNWYAGQHILQVICNTNIVGAVPRKYLMQGIRALIPMLNLWLTKNEDGQPFTSIMCQNLIRDLKRELKIGELNTKMLTTPRPGRESKRQRKKTFNADFYYFPAANKVASKASVAKVPLGGSTSPNQSNVSSQKIPLSLCSLPIMSHDLQEKGSSDSSSNKTSHSSSPTLSKDMIHAPETIQQNELKMLCSQIPNQLEEAHALFSTERVDSATILTQMSHQVSESLNSQTITRQKMESTSSQSKQPHTAREESSSFWQASVLGNVPTLKVVLNRLANVPEPVTYPYSTNSVTTKKHHTAACTITSRESQDNNCQPWFVQAHTLCSKKELKMKVKAVSDSSKQTTPRDVYDFHASEDENSLLIDDQSSIESWHTNMQSKVNRKSPNSSVSSPTLSLGSSTQSDSIGLPYVKVNRIDELLKASALTGSGGTSPSTRDAIQGMLSISCSGSSSTSKMPIKTRSKKQHYEMVDDAQELVDEVHRDDDFVYPSLDVSDGEEPLNKRSKKRNIDEAWNPSARIGRLVPRTDRPTRYIKKNQAIEKGLEAAAAKRANLPPPKRPYNKKKTSDTPIPSTPGTLPKKEMPKEIKGIKCKHRQMGEKVTRGERKRKREGRKRQKSQGTPQGQQRSMLETLLPSRSRPFQLLGDEARMRVIFTMLVSLPNSS +>UniRef90_A0A1K0ILZ2 SPOR domain-containing protein n=1 Tax=Cupriavidus necator TaxID=106590 RepID=A0A1K0ILZ2_CUPNE +MRVQSPASAPAPDAAPRSALPSATLAAACIEIGGFSAQAARRATEDLAAAALRVEAFARQEQVRWWVHLPAQPTREHAERKLAELRRRNVTEYSLVTAGTPEATTYTVSLGLFRERERAQQYLDSLRGHGVRTAMLTEAARPLTRQWLRVRDADHAARARLEAMRQRYGAEDVLACS +>UniRef90_A0A6H5GIQ7 Zonadhesin (Fragment) n=1 Tax=Nesidiocoris tenuis TaxID=355587 RepID=A0A6H5GIQ7_9HEMI +GGINHPGPSGTSCYRNQFSEVTLSANFDQIRSNSTSRSIQLRDQTRLRDQTQLQVQRQHRDRIQLRVQTQHRDRIQLIDQSQLRVQTELRDQIQLRIQTQLRDQIQLRDQSQLRVQTELRDQIQLRDQSQLRVQTQLRDQIQLRDQSQLRVQTQLRDQIQIRDQSQLRVQSQHRDRIQIRDQINFEFKLNFEIKFNFEFKLNFEIKVNFEIKFNFEFKLNFEFKVNIEIEFNFEIKVNFKIKVNFDFKLNFEIKFNFEFKLNFEIKINFEIKVNFEFKPNFEIEFNFKIKVNFKFKVNFETKFNFEFKINFEIKVNFEFKLDFEIKFNFKIKVNFKFKVNFEIKFNFEVNGSIVIVLKSRIGTELQKKLFLIHIYSESLPEQVSVCPFDNIFGCSPTNMYPEKIEKIIFYYLIRTPQFLCGRSSNFINTYLILLTGLTRQQFGGVRPCRDKHFSSRNLKKGRKPMPPQ +>UniRef90_A0A067KLY9 PPR_long domain-containing protein n=1 Tax=Jatropha curcas TaxID=180498 RepID=A0A067KLY9_JATCU +MAVKLSHSYFFNSYKPDDASFKQMGAPKRDLLVNPRIRKSNPTKKQMSETPKRGMIKPNSLSLTRSLCEFVDSGAMDNALYLFEKMNQPDTYIWNVIIRGFSNKGLFQEVIDFYHRMEYEGIGIDNFTFPFVIKACGRLLSFIEGKKVHGKLIKIGLDRDIYVCNSLIDMYFKFGFVEVAEKVFEAMPLRDLVSWNCMVNGYRVIGDGLKSLMCFKEMLGLGEKPDRLSMISSLGGCSIGCCVRGGKEIHCQVIRNGLELDIMVQTSLIDMYAKCGKVDYAERVFNEMTCKNIVAWNAMIGGYAINGHFLESFTCLKRMQEDNLIPDAITMINLLPSCSKFGTLLEGKCIHGYAIRKMFLPHLVLETALVDMYGKCGQLKFAECVFGRINEKNMVSWNAIIAAYVQNGRNEEALELFHCLRNQTLKPDAVTIASILPAYAELATVTSLVWSMKGGNCSIL +>UniRef90_A0A521B5K5 Uncharacterized conserved protein n=1 Tax=Saccharicrinis carchari TaxID=1168039 RepID=A0A521B5K5_9BACT +MSEKNLTVTSNKTGQLFDAKGQLLSPPSQWSFLPAGDAGVTRKVTANGKYWRVVFKKGRRIMSKGVWAPTQVIEMAKKEMEATRSTDDYLKKKEYNAKRRKKQQQAYEIEFCAEVEKFLNFHSDYAPVARAMAILVTRHAVPVGSGTVARTAMIPVHERAARAVIAWMRHQTTAYDHMKIARIKGERREVRRMLAQESTRLMNNYRRGLPIPFTCPLKKALDKIISP +>UniRef90_A0A517WN20 Putative adenylyltransferase/sulfurtransferase MoeZ n=1 Tax=Gimesia aquarii TaxID=2527964 RepID=A0A517WN20_9PLAN +MKWTCAVVFTLLITSMGFAVEHTKDSLATIKKNVESKKAVLVDVREKGEWDAGHVKGAIFLPLSSLQDGITAAEQKKLPQDKVVYLHCAVGFRAKIAASLLKKYNDKVRPLPQGYEELIESGFQKSK +>UniRef90_A0A0F5FR09 Serine hydroxymethyltransferase n=2 Tax=Devosia TaxID=46913 RepID=A0A0F5FR09_9HYPH +MSAATSLPLFPHFFSDSVAETDPELAKAISDELARQQGEIELIASENIVSQAVLEAQGSVLTNKYAEGYPGRRYYGGCQFVDVAETLAIERAKQLFGVGFANVQPNSGSQANQGVYQALLQPGDTILGMSLDAGGHLTHGAKPNQSGKWFNAIQYGVRKQDGRVDMDQVRQLAREHKPKMLVAGFSAYSRIMDWAEFRAIADEVGAILFVDMAHVAGLVAGGVYPSPFPHAHVATTTTHKTLRGPRGGLILTDDEDIAKKINSAIFPGIQGGPLMHVIAAKAVAFKEALSPEFKLYARQVVANARVLADTLVKGGLEIVTGGTENHLMLVDLRPKGLTGKATETALGRAHITCNKNAVPFDPEKPAVTSGVRIGTPAGTTRGFGEAEFRHVGELILEVLDGLAANGDENNAAVEEAVREKVKVLTDRFPIYGQ +>UniRef90_A0A6F8V0N0 Prevent-host-death protein n=1 Tax=Bosea sp. ANAM02 TaxID=2020412 RepID=A0A6F8V0N0_9HYPH +MARRDLNARLDQATHALCTRVERAHAVPAGATLRFRQGKPLAPVIFTILESADWDRSALPARDGYPFR +>UniRef90_UPI0014890022 alpha/beta fold hydrolase n=1 Tax=Ruegeria sp. HKCCD8929 TaxID=2683006 RepID=UPI0014890022 +MRFLPVLVAVVWLAACTDRSSFVLVPDAVDVGTPRTVFAASARAREADGSYGYRRADRLQFLELTVSIPPTHTPGSLNLSYGRPDPETQFVLAGQEVFASPEPLRQRLLNDQREHGSALREVTLFVHGYNATQNETAFRAAQLANDIEIPGSLMIYSWPSRARAFGYAYDLDSMLFARDGLEQTIRQLKASGAERIVLVAHSMGAALSMEMMRQAEIREPGWSDRMLEGVVLISPDLDVDVFRTQMDRIGTVPQPFVVMVSRKDPALNISARLRGTAESRRLGNIDSIDRIADYPVDVIDTTAFSGDAASRHFVAATSPALVTLLSSAPAMGEAFGPEETSFDFLIPGGVEVSGRAKEIILARPGENR +>UniRef90_UPI00049064DE HAMP domain-containing histidine kinase n=1 Tax=Paenibacillus sp. UNC451MF TaxID=1449063 RepID=UPI00049064DE +MRGLYRRFAFTFICITCGILLIASIVFILETHYHFALYQHQSMDMGADNAQLNAHFEQALVQSVIWTAVGGIALASVVSLYVAKRMTSPLLEMKAAAMKMAEGNLQARTKLVGNDEITDLGLSFNHLAEQLEKQEQLRKTMTADVAHELRTPLATLKSHMEAMIEGIWEPSAKRLKSCHEEIERLIHLVGDLEQLTHLDSPHFQLHMKSENMVSIASQCVQAMQAAFQLKGVQLTLHKPNEDIFAIVDRQRVCQIIINVLSNALKYTPVGETVAVTMAGDHRSSTATISVRDTGIGIESRELPFIFERFYRTDKSRDRKSGGSGIGLTIAKKLTEAHCGKIEIQSEVGRGTTVQIHFPIKSKKSSLSTQDLQKSRI +>UniRef90_A0A2J8RU61 MAP4K4 isoform 8 (Fragment) n=1 Tax=Pongo abelii TaxID=9601 RepID=A0A2J8RU61_PONAB +GRHVKTGQLAAIKVMDVTEDEEEEIKLEINMLKKYSHHRNIATYYGAFIKKSPPGHDDQLWLVMEFCGAGSITDLVKNTKGNTLKEDWIAYISREILRGLAHLHIHHVIHRDIKGQNVLLTENAEVKLVDFGVSAQLDRTVGRRNTFIGTPYWMAPEVIACDENPDATYDYRSDLWSCGITAIEMAEGAPPLCDMHPMRALFLIPRNPPPRLKSKKWSKKFFSFIEGCLVKNYMQRPSTEQLLKHPFIRDQPNERQVRIQLKDHIDRTRKKRGEKDETEYEYSGSEEEEEEVPEQEGEPSSIVNVPGESTLRRDFLRLQQENKERSEALRRQQLLQEQQLREQEEYKRQLLAERQKRIEQQKEQRRRLEEQQRREREARRQQEREQRRREQEEKRRLEELERRRKEEEERRRAEEEKRRVEREQEYIRRQLEEEQRHLEVLQQQLLQEQAMLLHDHRRPHPQHSQQLPPPQQERSKPSFHAPEPKAHYEPADRAREVEDRFRKTNHSSPEAQSKQTGRVLEPPVPSRSESFSNGNSESVHPALQRPAEPQVPVRTTSRSPVLSRRDSPLQGSGQQNSQAGQRNSTSIEPRLLWERVEKLVPRPGSGSSSGSSNSGSQPGSHPGSQSGSGERFRVRSSSKSEGSPSQRLENAVKKPEDKKEVFRPLKPADLTALAKELRAVEDVRPPHKVTDYSSSSEESGTTDEEDDDVEQEGADESTSGPEDTRAASSLNLSNGETESVKTMIVHDDVESEPAMTPSKEGTLIVRQTQSASSTLQKHKSSSSFTPFIDPRLLQISPSSGTTVTSVVGFSCDGMRPEAIRQDPTRKGSVVNVNPTNTRPQSDTPEIRKYKKRFNSEILCAALWGVNLLVGTESGLMLLDRSGQGKVYPLINRRRFQQMDVLEGLNVLVTISGKKDKLRVYYLSWLRNKILHNDPEVEKKQGWTTVGDLEGCVHYKVVKYERIKFLVIALKSSVEVYAWAPKPYHKFMAFKSFGELVHKPLLVDLTVEEGQRLKVIYGSCAGFHAVDVDSGSVYDIYLPTHIQCSIKPHAIIILPNTDGMELLVCYEDEGVYVNTYGRITKDVVLQWGEMPTSVAYIRSNQTMGWGEKAIEIRSVETGHLDGVFMHKRAQRLKFLCERNDKVFFASVRSGGSSQVYFMTLGRTSLLSW +>UniRef90_A0A1V5E6B1 LPG_synthase_C domain-containing protein n=1 Tax=Syntrophaceae bacterium PtaU1.Bin231 TaxID=1811718 RepID=A0A1V5E6B1_9DELT +MNFKKLEVADYAALKPYFDPIPYRLSIYSLPSLIAWGDCVFETRYAVEGDLLVIANESQLRPDDRHLILPVSPGGDPSPERLRAIALESGHRRYWCACGNYVERHRQGLEPLFHIEEQPEFEDYVYLAEDLAELRGNRFVRKRNLIHQFEREFMRNGSRASVEPITRESVPECLAFLEAWCVQRDCDVDGDIDLACERRAVITSLEQLEALDLRGILVRLDERVCAFGIASRLNGDTGILSYEKAFSDVKGLYQFLDRECAKRLFAGCRYINKESDMSLPNLAAMKRSYHPVLRVKSYRLTLR +>UniRef90_UPI000D0912D6 B3 domain-containing protein Os12g0592300 isoform X2 n=1 Tax=Rosa chinensis TaxID=74649 RepID=UPI000D0912D6 +MELEERPSFFKVLVDGFSQQLRIPRAFVKNFNGRVPRMCGLRGPCGNLWAVNLKEIKDRVVFHNGWQSFAKHHFLEVGDFLTFTKDDGSIFDVIIYDKSYCEKNVEAAKSRIGNVVDRTINNHIILGKRPALDLVEETSIGSISFNSENPFFTTIFTREFQAK +>UniRef90_A0A0N0N6B7 Amidohydrolase 2 n=1 Tax=Actinobacteria bacterium OK074 TaxID=1592327 RepID=A0A0N0N6B7_9ACTN +MFKEFVVSGDSHIIEPVDLFKTRLPKNLRERALWEEEFTLEEPIVPGGHTEFKKLHTIGFDGWTISKYRQTGGITPDGEPEHIIRDMNLDGVDASVMFPNLSLFVLFTDDHELSMAHAKVWNDWIAERYLQYKDRLRPTAAIPLTYIPDAVAEIERCSRLGIGAILLPDVPPELPYWSSEYDPVWAAADAHGMPVFFHVATGGVKVKESSSATATTVRGMVSSMNMGKGQLTDAMVASRTMSAGGSGAAGPQGIIADLVAGGVCERFPNLHFNLIEYSAGWLVSYMGFMDKLWKTGTGQDPDWWLGFWDDSRSPKDQPTMGRMFAVNQRWPWPLKPSEYVRRQIHVQFADDPTAVKCRNITGLSTIMWGNDYPHAEGTFRSSADCIAENFEGVGDEDRAAILGGTLADIVHFDKSKKLAPVAENA +>UniRef90_A0A4Q9KAX3 VWA domain-containing protein n=1 Tax=Propioniciclava sinopodophylli TaxID=1837344 RepID=A0A4Q9KAX3_9ACTN +MVPLISFFHPERLWLLALVPVLLLLYGALLQRSRTRSRTQGIDNLAKVMPKQAAWKRHIAVLAAVVSLAALVVAFAQPKDAVDVPRERATVVLAIDVSRSMEATDVDPNRLDAAKEAASGFVDLLPRGFNTSLVAFAGSSSIITPPTQDRGLVKRAIDNLQLAPSTAIGEGIYSALDAMLLVPQDPNDPEESTPGAIVLLSDGYTNIGRSSTVAARDAKEAGYPIYTIAYGTPNGYVVSNGRREPVPVNPAELNAVARESGGEAFQAGSREELQRVYASIARSVGYEKVDQEVTEFYAGIALGFAVLASLAVLSLAARWP +>UniRef90_UPI0004DC9B9D PE family protein n=1 Tax=Mycobacterium tuberculosis TaxID=1773 RepID=UPI0004DC9B9D +MSLVIVTPETVAAAASDVARIGSSIGVANSAAAGSTTSVLAAGADEVVSAAIATLFGSHAREYQAISTQVAAFHDRFAQTLSAAVGSYVSAEAT +>UniRef90_A0A2E4XJ01 Enoyl-CoA hydratase n=1 Tax=Acidimicrobiaceae bacterium TaxID=2024894 RepID=A0A2E4XJ01_9ACTN +MEEIQLTQEENIATVTINRPQVKNAVTSDMWDELQRVFTELGYRDDVRAVIVTGAGDDFCSGADVGGMGSRSEGPRLHQLDAMRKVGDCCLSLFNMPKVTIAKVSGVAVGAGMNLALSCDLVVASENARFSEIFAQRGLSVDFGGSFLLPRIVGMQKAKELVLLAEVISASKAHEMGLTNYVVPREQLDEKVLDLATRAASGPPRALAMSKAMLNKSFANSIQDALDQEGTSQTVNFTTKDVSEAMKAFQEKRSPRFKGW +>UniRef90_A0A7S1QCM4 Guanylate cyclase domain-containing protein n=1 Tax=Alexandrium catenella TaxID=2925 RepID=A0A7S1QCM4_ALECA +TSLAGGGDATVAREELVSECRHKLGRSPTNVHLAWSDPHWLIQPRGAWVIGHELQGHFRFNMSADPFAANAIDCRRFDLNTVVLIITGILTCLVFAVTYVHLRTYAVVAVSTTFISLACATGIFGVWMRWVDCRTSGLHDHNMVFRHLATSCFQVANFNGTMYANAMQKHGKLVIAFESNFRHVRQVSRSEVWFGSLSEAFLLVLVIAAHVTFRHKRMQTREARYELMCRRPRLVRCLLENISFLDQLPPRDRTMMAFTLKRVYDEDDGKKFSDLEERYREMLSMKPSPSDLDGVGSSFWPAAVYSLVRALIPSTYRQFIPTATTPGSGMQAYANAVPEENTLWMLSALLRVVMTFCVYLFVLFSIKEASRRYTRTMQVWLVFDSKWHFPSQTSLAGDPMTETVQVSMDDEGECLHMLDRNHQPPIGNFSSEHCCSPRDSEDDGNIVNTQEVKDKLTTWWAWREYLIIDYTDKRVRLEFHLVVAVAMLVVSAVLICVDDFKEGFRPPQLLDIDESMSWFRGHVNSLSFQTAWDLLFLTWPVLNAINTAATMNRLIESHLQKIKHLADLLNEAGIGLPVGADSSPAGQSDVSPQDDVGPSIRNIFRVAKAELASGGSNATRFLNIVPINRQTFAIAGTVLSLFTGGQFMEIFNNLLGAVNGS +>UniRef90_A0A193G2U0 General secretion pathway protein GspM n=2 Tax=Bordetella bronchialis TaxID=463025 RepID=A0A193G2U0_9BORD +MKVSARRAPRLLLPAPLLARCRDTAERASRYWTRLTPRERRLLRALGAILTAAAVFALGLRPAWRDIERWRDELPRLRAQAAAVDALVQEARALKREQGNRIPARDMEEALRASLARAALGGTQQVGKTPDDKAWRIAFDDASPAALFDWLAHAPAFLHLRVVQVHIVRPRDSLGRPIPARATGTLVLRDAGDAAIGARP +>UniRef90_A0A0B8NUT2 OMP_b-brl domain-containing protein n=13 Tax=Vibrio TaxID=662 RepID=A0A0B8NUT2_9VIBR +MIEAETMDHEIRATWTRQGVQPYFEFRSQANGAENAQGDSLVNNAFVFGASYGF +>UniRef90_A0A7S3J898 STI1 domain-containing protein n=1 Tax=Euplotes harpa TaxID=151035 RepID=A0A7S3J898_9SPIT +MLKSLDNLRAAHPGCRQQISLLPPQQMIRKIGDMKNDDPQMTMRGMDKEELSHMQRIMGSMESMAADRSMQFPQVPEDILRRDMEEDQDNSNHNEPEEE +>UniRef90_A0A653T2G2 Glycosyltransferase EpsD n=2 Tax=Microbacterium sp. 8M TaxID=2653153 RepID=A0A653T2G2_9MICO +MSQRSELRTHHRRDLLSDPELPPASAPRVAHLAHTTVAGGAELGLARMLRADAPWRASVLLPPVPAEDGAFAGLPASIPIHRIGVAQPHGASGASAMSAFSLGVRLVAQAVATRRHPSFRQADLIVANSTRAAAYGALAAFGSRKRFLVHLHDITDRETLGGFGLRMMTRIVLPRADGVIANSQATLASAEPYLRPDAVREVIAGASGLTGAARGAREPGPLRVGMLARIDPWKGQLLLLEAFAQAFPGGDEILEFAGGAPFGHADFAVELRDRARALGIADRVHLLGHVEDVDRLLRRWDVGVQASLRAEPLGFNVLEYLDAGLATVVAAEGGPVEWVRDGVNGLVVAPRDVGALAAALRRLGADAGLRSRLGDAARSTPGLATDHVVAQQHAAAYLRVIAQRR +>UniRef90_UPI001B319B05 hypothetical protein n=1 Tax=Bacillus suaedae TaxID=2822140 RepID=UPI001B319B05 +MAINYKQCINCESKNTLNLLYGMPTDDASKQAKEGKFKLGGCCVIVGGPEYCCNVCESEWNKEQAIDAAYEKIIGLNAYVGGFFGASYNVDLDLISGSAAWSHWENGEEVASECKALKETTVKKLIEELKIINFLNWKREYIEPGVLDGTSWSVELIREGRNLKRSGANKFPEEWDDFCKLVRRMTGKRFS +>UniRef90_A0A516GYM1 YdcF family protein n=1 Tax=Ferrovibrio terrae TaxID=2594003 RepID=A0A516GYM1_9PROT +MARKDRDDEESTPFFTRISRWLMLLATIGLLWLGGGIAYVERVESIPAPAETKTDAIVVLTGGAARLATALRLLNENKADRLLVSGVAQTATKATLLQAVLPTMPDAAQASSNWQGIDLQLLFDCCVDLGFEADDTAGNAAETASWAAARGYRTIRLVTANYHMPRAQVEFGRYLSGMTIVPHPVRSDAMRVEDWWQRRAATVFLLGEYSKYLAALLRARLGTQLTATLEQKPQTVPVQPAAAPTQEKPTEEKPQ +>UniRef90_A0A7C9L683 Alpha/beta fold hydrolase n=1 Tax=Sediminimonas qiaohouensis TaxID=552061 RepID=A0A7C9L683_9RHOB +MTVVQDPAANADLPVVVMIHGSGWHAQQFDRLAWALRDVAELRAVTLRGHGADPVRRGDVDYIGQLEDDLASAIGDVAPGRKVVMLGHSSGGGLVVRFAGGPHDGMIDAAILLAPFLKHNAPTTRTDAGGWARPLTRRIIGLSMLNMVGIHEFDHLTAIHFAMPKKVLDGPLGHTATTAYSWRLNLSYAPRRDYKADIAALPPFVLIAGADDESFRADEYEPLMSGVTDKGRYHVLPGVGHLGVVDAPQTETLIREALRAL +>UniRef90_UPI001BA7DB86 DUF2130 domain-containing protein n=1 Tax=Bradyrhizobium sp. AUGA SZCCT0177 TaxID=2807665 RepID=UPI001BA7DB86 +MTFKATASDAHEPVVRCPNCSHDIRLTESLAAPLLEENRRRFQEQIAQKDAEVARKSEVLLKERDDLARARDQVEEQIKQRLAVERNQLIAAEGKKAQEAAAVELQAKSTEAAELRRTLEANNVKLAEAQKAQADVLRKKRELDDEKRELDLTVEKRVQSSVEDVRVKARQEADDAARLRISEKDHTIESMTRTIEELKRKAEQGSQQTQGEVFELELEEILRGRFPTDMIEPVAKGELGADVVQQVNEASGQPAGIILWETKRTKNWSDSWLAKLREDQRRCGADVALIVSHALPKHVEYFDLIDGVWVAHPRCALPVAVSLRQALIAVSNTRLVQQGQQTKMEQVYQYLTGTKFKQRVDAVIEKFNDMRDDLDKERKFMICQWAKRETQILSVVESTVGMVGDLQAIAGKAMPEIPSLDLPLLEISDAAE +>UniRef90_UPI001447B9A0 helix-turn-helix domain-containing protein n=1 Tax=unclassified Cryobacterium TaxID=2649013 RepID=UPI001447B9A0 +MPEAATKKQTLAWLKTVSGELATATLKRLDDTLPWYREMPPGRRSAVGLVAQAGITSFMQWYDDPSSTPWIAADVFGAAPRELLRSVSLTQTLQLIKVTVEVVEERVKGRDESLREAILLYSREIAFGAADVYARAAEARGLWDARLEALVVDSILSGEYDDELPSRIAALGWHGHGEVSVLVGTAPKMLDVDMLRRTARHQDADVLIGVQGSRLVLVIGRAQPASVNEDEGTAPPKPFLDIAMELEPGFGDGFLVLGHEVPSLVDASKSAKAALAGFAVARSWRNAPRPTLADDLLPERALAGDPLARATLITRIYRPLQAHSTELLSTLWSYLDNGRSLEATARELFVHPNTVRYRLKRVSEVIGYDATGARESLILQAALIVGSIAEHDTPRRR +>UniRef90_UPI00131B79F4 3-hydroxybutyryl-CoA dehydrogenase n=2 Tax=Chachezhania TaxID=2603319 RepID=UPI00131B79F4 +MTIKSVGVIGAGQMGNGIAHVMALAGYDVLLNDISQAALDKARATIEKNMVRQVSRGAISEDEMKTAMGRMTTSMTLSDVGQTDLVIESATERESIKQAIFEDLLPSLKPNTILTSNTSSISITRLASRTDRPERFMGFHFMNPVPVMKLVELIRGIATDEATFNACKEVVARLGKTSATAEDFPAFIVNRILVPMINEAVYTLYEGVGSIESIDTSMKLGAAHPMGPLELADFIGLDTCLAIMNVLHDGLADTKYRPCPLLTKYVEAGWLGRKTQRGFYDYRGEVPVPTR +>UniRef90_A0A0B5L654 Gag polyprotein n=1 Tax=Human immunodeficiency virus 1 TaxID=11676 RepID=A0A0B5L654_9HIV1 +MGARASILSGGKLDMWEAIRLRPGGKKKYRLKHLVWASRELDRFALNPSLLETAEGCQQIMNQLQPALKTGTEELRSLFNTVATLYCVHHRIKVSDTKEALDKIEEIQKKQKTQQAVADAGNNSTVSQNYPIVQNAQGQMVHQSLSPRTLNAWVKVIEDKGFSPEVIPMFTALSEGATPQDLNMMLNIVGGHQAAMQMLKDTINEEAAEWDRLHPIQAGPLPPGQLREPRGSDIAGTTSTIQEQIAWMTNNPPIPVGDLYKRWIILGLNKIVRMYSPVSILDIKQGPKEPFRDYVDRFFKTLRAEQASQDVKNWMTQTLLVQNANPDCKSILRALGPGATLEEMMTACQGVGGPSHKARVLAEAMSQAQQPNIMMQRGNFKGQKRMIKCFNCGKEGHLARNCRAPRKKGCWKCGREGHQMKDCTERQANFLGRIWPSSKGRPGNFPQSRPEPTAPPAESFGFGEEITPSQKQEQKDKELYPSASLKSLFGNDPLSQ +>UniRef90_E1GWA8 Anaerobic ribonucleoside-triphosphate reductase n=8 Tax=Prevotella TaxID=838 RepID=E1GWA8_9BACT +MQNFTITKRDGSKEMFSLDKIMGAILKAFESVNAPTDLAAVSKILSDLTIHNDITVEDIQNQVEQALMKEGYYDVAKSFIVYRHQHSQDRETQDKIKFLTEYCGASNAATGSKYDANANVENKNIATLIGELPKQGFIRINRRLLTDRIKQMYGKELANEYLDLLTHHFIYKNDETNLANYCASITMYPWLIGGTTAIGGNSSAPTNLKSFCGGFINMVFIVSSMLAGACATPEFLMYMNYFIQKEYGKDYWKNADKVVDLSLRQRTIDKVITDYFEQIVYSLNQPTGARNFQAVFWNISYYDKYYFESLFGNFYFPDGSQPDWEGLSWLQKRFMTWFNKERTRAVLTFPVETMALLTENGECRDKEWGEFTAEMYSKGHSFFTYMSDNADSLSSCCRLRNEIQDNGFSYTLGAGGVSTGSKSVLTINLNRCIQYAVNKGEDYKLFLDHIIKLCHKVQLAYNENLKNFLKNKMLPLFDAGYININRQYLTIGINGLVEAAEFMGLDITPNEDYKHFVQGVLGLIEQNNKAFRTKEAMFNCEMIPAENVGVKHAKWDREDGYFVPRDCYNSYFYRVEDTGLTILDKFKLHGAPYIEHLTGGSALHMNLDEHLSKAQYKQLLTVAAKEGCNYFTFNIPNTVCNDCGHIDKRYLKECPCCHSKNVDYLTRVIGYMKRVSNFSQPRQQEAAKRFYAGSDKME +>UniRef90_A0A3S4JM46 imidazolonepropionase n=1 Tax=Klebsiella aerogenes TaxID=548 RepID=A0A3S4JM46_KLEAE +MVFSHKKITFPCAIVDFTGVMKINVYTTHDKLSAMTEATSELVIWRNGRLATLNPDHAQPYGLLERHALLVRDGRIAAIVAEDDVPSGRSIDLEGRLVTPGLIDCHTHLVFGGSRAQEWEQRLNGVSYQTISASGGGINSTVRATRDSSEAELLALAQPRLERLLREGVTTLEIKSGYGLDLPNERKMLRVARQLADHNGVELSATLLSAHATPPEYQGDANGYITLVCETILPTLWQEGLFESVDVFCENVGFSPQQTERVFQAAQALGIPVKGHVEQLSSLGGAQLVSRYHGLSADHNRVSDGRGRGGDARKRHRGSPAPRRVLLP +>UniRef90_UPI001653AF6D hypothetical protein n=1 Tax=Lewinella lacunae TaxID=1517758 RepID=UPI001653AF6D +MPRLKKILLTLLLLTVLAAVFRGPLYRTLVDYESVGASTNYTVKDEKLADLIASKVNRRTDLGITEAIKLSLSITSSQLHFTADNNDVDPNKLVTSKATHCVGYAAFFAATCKYVLSQQKLASSWTAEPQEGQLYFLGTNLHQYFHSAFLKDHDFVAIENHVTGEVLAVDPTIKDYFHIDFIRLRP +>UniRef90_A0A0T0M9T5 Peptidase C51 domain-containing protein n=1 Tax=Chryseobacterium sp. Leaf394 TaxID=1736361 RepID=A0A0T0M9T5_9FLAO +MFKENLILFAVFVMTLVSCKETEYRQKTNQKEPEKELSKKIPEKNILIVEAIKKFGPEISSTYEKAVCTELVIQIIEKFHHLEERDKFRIRIITDGNIQDLIKENSPIPKGVFYALTEKGIGIPIKKEDVLEGDFVQFWTPTWGHCGIVKSISLEKQEMELYSSFPSTKGYGIQKFKIPEYTFFVRVK +>UniRef90_A0A1Y4S3Z9 Hydrolase n=1 Tax=Lachnoclostridium sp. An131 TaxID=1965555 RepID=A0A1Y4S3Z9_9FIRM +MERLKYLFFDLDMTLLRDDKSISDEALAYLRDLKKRKDVRYGIATGRAWTAIEPLIERFGLDTLFDVIVMDNGSEIYDLAEGRRERLGIIQTEQMKQLLDAFGGYDFLAVAFHNPKGFFTTKISYRTERVLINNRLSGYHDPYKEEFEATARVMLLFLIEDQERVLEAVRLHPVPGIHGMLSEPEVYDFLCEGVSKAEGIRHYVTANGDRIEQTVVFGDSENDLEMIQKCGVSVSMKNGTEAVRAAADYVTGYTNNEDGVFRFLKEHEDWFQEG +>UniRef90_C7ZDV9 Succinate-semialdehyde dehydrogenase n=9 Tax=Fusarium solani species complex TaxID=232080 RepID=C7ZDV9_FUSV7 +MPYSAPKLKDPSLFVGKNYVDGQWIESVSGKRFDVHDPASGALIGSCPESVAQDAEQAIKIAAAALPEWRSRTGRNRSRILRRWYELVIENKEDLATLITWENGKAGPDAAGEVLFAASFLEWFAEEAPRVYGDVIPHSAPGFRVSVIKEPVGVVGLITPWNFPAAMITRKLGPALAAGCTAVVKTAGETPFTANALLVLGERAGVPKGVINSIAALENTPEIGQTLCASDVVRKISFTGSTRVGKILMNQSSDTLKKLSLELGGNAPFIVFDDADLDLAIAGAIASKFKCSGQTCVCSNRIFVQKGIYSQFVEKLKAVVSKFQVGHGFDSKTTHGPLVTAAAAERVDDLVKEAVKAGAKVEVGGKRRTDLGKSRPNFFEPTILTNVTTDMRLVRDEIFGPLAPIFSFDNEDEVVDIANKCDVGLASYIFTQDVNRVARVTELLHFGMVAVNTGIMSDAAAPFGGVKHSGMGREGSKYGIEDYLHVKTIVTGNVNVVHRALL +>UniRef90_UPI001F05B46E response regulator n=1 Tax=Desulfobulbus alkaliphilus TaxID=869814 RepID=UPI001F05B46E +MHLSTASAMHDEGESYPMKEIRLLTDRLHQEIAEKTRALEKFRHLFEGAENGILVARGDTIEFANPALKHILGHDAEKITSEPFITFIHPDDRATVLDRHIRRMRGEDLEKSYDFRVVASDGSVRWINLSAQIINWDGDLANLSFVNDITERKTAEKEHEKLQEQLFQAQKMETVGRLAGGVAHDFNNMLGVILGYSEMALSQMAADHPLHGALHGINQAAQRSADLTRQLLAFARKQTITPRIIDLNETVEGMLKMLRRLIGEDIDLIWLPGRNLCPVKMDPAQIDLILANLCVNARDAIKGHGKVTIETGLTSFDDAWGAVHTGVVPGEYVLLAVSDNGCGMDQETINHMFEPFFTTKEQGQGTGLGLASVYGAVTQNNGFIDVESEPGQGATFKIYLPQYVIRTEPLPVQDQVGATMRGHETILLVEDEPVILKMLRTMLEHQGYTVLTAGSPEEAIRLAEEHSSRIDLLMTDVVMPGMNGLDLARNLLSRYPGIKTLFMSGYTDDVIAHHGVLDEGVHFIQKPFSMRVLGEKLREALEG +>UniRef90_A0A8B8IMG2 serine/arginine repetitive matrix protein 1 n=4 Tax=Nymphalini TaxID=171576 RepID=A0A8B8IMG2_VANTA +MSSRRNGSVSRAAEAASKNRLHMDRNPQHSRITDPSNPAGRRKEIDNVMKRARQASPGSWDRKLLEVEEKDPNRWRHTGYKQMYLDGSGSASPRRSRSPRRSRSPSRRSRSPRKSRSRSPRRRSPLRRSPARRRRSASPRARRTRPPPRPPSPPDPRKSSPSGSSASSCSDESCSVCSAKNKKVPPKPIKPGVRTSPSPPRTKRPAPPVAARAVQPTRELLKARESSKRSREEKVLEWQRSQLAVRPAPPIPPAHIKREGERRPRPPRPERPDRPDRTDRVSPAAIAAALADSDSDSESDASSEPPPQRLTLSERFGKMAQWSAARCARLENMRITRRDSALHVHIERDDAAPAAPDAPRADYPGLDPAPVGSYPEELLAVAPGGLPSWDDVRVRYDYYKKRGYLRGLTLGDYVKWEEWWYKYQEWLKRERAYERWAEGEGGTSRRERRRRGGRHRRS +>UniRef90_R6N0F5 Polysulfide reductase n=2 Tax=Firmicutes TaxID=1239 RepID=R6N0F5_9CLOT +MESTLFKISEPSRVSGVLYGPITLVYGLGGIALTLADKYILSKIKCNKVLKIILSFIILALILTTVEFLSGYLCKLIFNTEMWNYHNKPYHIGKYICLEYIPLWGLLGTLIIYVLKPFFDKIIKLIPKEATYLLYLIMILDIIITLFTK +>UniRef90_A0A506TYF2 Sigma70_r2 domain-containing protein n=1 Tax=Pararhizobium mangrovi TaxID=2590452 RepID=A0A506TYF2_9HYPH +MTRKNMHINKRINFVIERRFPSFYEEIENVLDQAVDKYQTQNIRDPRIISYIISKCDTDTAVLVSRENDVDLLNDKDKISKDEKINKYLEIFEEYESRIHSFSSEELNAAYKEEKKLEENENLREMMAWDERQEFSDPMASADFDTWLSMATWTVDEAVSLSLAKEPGTVDRSSGFYKFSLKTGSPFISEYEKRTDQLSRAIKAQDLDKPLRPEAVMAWFQGQGMQGAFGGRVHHIARYDEEVEVLRRENERLKRLVTSPEKLETNSVLGLYRLCLGMAICRYEYRTDMRNGAAKSIAGEFAEVGLSITDDTVRKHLQRASKELGFEWKTRSPFEVRSKLRAKPKSD +>UniRef90_UPI000A646756 hypothetical protein n=1 Tax=Colibacter massiliensis TaxID=1852379 RepID=UPI000A646756 +MADIKKVINEKKEALRQICKGFTSNNTGGCCGVSLPPEEQAELKRLKEGKT +>UniRef90_A0A7L5ZNR0 Tetratricopeptide repeat protein n=1 Tax=Exiguobacterium profundum TaxID=307643 RepID=A0A7L5ZNR0_9BACL +MLARLAIALFWAAIFFGLGAWSGGHLRPIGDALVTGXANTGEKAVRLWTWARHGAPDAAPDASPATTAAALVDKGRAAFARGDLQGAVEAYREALELRPGDADILGELGNVYYTSGQTAEAALAFHAAAEALIDSGRIEAARALLPAVRAAAPTLAADLDTRLAAAAPVTQ +>UniRef90_A0A4T2C462 DUF445 domain-containing protein n=2 Tax=Subtercola vilae TaxID=2056433 RepID=A0A4T2C462_9MICO +MKLLATGLLVLMAVIFAVSFALQARYPWLQYVRAASEGGMVGALADWFAVTALFRRPLGLKIPHTAIIPTRKNEIGESLGEFVEENFLSDAVVQEKLASVGVSRVVSGWLSQPANAHRLTNEIAGGLTGALSFLSDDEIRSVIEGLARTHLVGRDWSPQIGELASSVLATGHQHIAVDLLVDKAEQWLAANPESFTALVSKRLPSWLPSFVDRLVDDRVYREALKFVQSVQANPGHPLRKALDEYLLRLADDLQHDPAMMKRVEALKEQVLDDPRLRELAALAWQAIKDALTASLENPESALRLTIESTLVDVGTRLASDARLASTVDTWVANAASHLLASYRHDIAAVISETVSRWDGKEASQKIELQVGRDLQFIRINGTVVGSLAGLAIFAVAQGLLSAF +>UniRef90_A0A2M9FV78 Enoyl-CoA hydratase n=1 Tax=Minwuia thermotolerans TaxID=2056226 RepID=A0A2M9FV78_9PROT +MNTTSEVAVGRVDGVVEGGIGWIVFDNQRRHNAMSMAMWEQLSEVLDKHVADPEVRVIVLKGAGDKAFVSGADISEFEKRRSTPEQSDAYSDAGTRAYTALADCPKPTVAMIHGYCLGGGLAIAVNCDIRIAAEGSTYSIPAAKLGIGYMVAGVERLLNLVGPAWTKEIFFSARRFEAAEALNMGLVNRVVPLENLADDVLTTAKQIASNAPLTIAAAKMAVDELLKDSANRNLGACERAIAACMQSSDFVEGRRAFMEKRPPRFTGA +>UniRef90_A0A2D7S292 Cysteine synthase n=1 Tax=Flavobacteriales bacterium TaxID=2021391 RepID=A0A2D7S292_9FLAO +MSNNIKEDLLLFNELVDVFLEEERLKPVTEYIEPNNVQQLLDIKLENNGLSKDKFKEALKQLILNTPKSSSKLFFNQLFGGRHSKAVLGDLLAAILNNSMATYKIAGPQVSVEKEILCQVYKLIGYNKNPGGTFPTGGSMSNFMSLVMARDKVNLEIQQKGITRKLVAYTSENAHYSVSKNASFIGLGKSNVRYIKSDLYGRISVMEFEKQVEKDLKNGFTPFYLNATAGTTVLCAFDNVNELSKCCKKNNMWLHLDGAFGGSVIFSDKYKRLVKGVNLTDSFCFNAHKTLGAPLSTSILVVKDKQDLYNSFNSKANYLYQTHGNEFNLGQTSFECGRRNNALKFWTMWKAIGLKGIASIVEEQFQLANAARKYIISNQDYSLYSFDDSLSICFNYKNFDPEDLCTKLFEMNSLMVGYGTFKKNRFIRLVIVNGENSLDDVTRFFGILERFTEEHQEHIKKI +>UniRef90_UPI001867027B BppU family phage baseplate upper protein n=1 Tax=Staphylococcus cohnii TaxID=29382 RepID=UPI001867027B +MAIYKNKDITTNIESEKLSINNSNTSFYTEDKGSAALRIFIKYRDGAFNLNDTNLTPTLDLFHNDGSIWRDEPLEVIMSDKGLLQYNIPDNVIAHAGLIKAKLFLRNAEQSVHVANFTFDIKDSGIEEAVAKEINVNIVDDTVKRIMNEQPELFKGEKGDDANPEDVKVLLEPYVDEKTNQEFEKLSSAKQVDGEVINARGSDKSLKSRLENPNYVPTKDEMNTKVIATHYDKKPMVTFIDDDGRTEVLQKWEPILQEKGNKLTIALVSSWIDNKESTVIKWEDVYRLKEQYGVEFVNHTYEHKHAQQLTDAEVDAEFRKNKEVLKREGLTHDIIVQPYGENTDSVRRISRKYAKANVSVKEGVNTLPLDTYRLFRISLGEDLYTTFEQYKAILDEAISKNAWVIFKSHSQYTSFDENQLQLIRQIIDYCRENGFIEATMEEGLRDRGNLIDVGDYTLKAKDSDYFILDKEGNIHSRKFAKNYYTLKYNTVDFNTPITNFEDMTTSTLAIVSTNSQGFPNNASGQLLTTKSESLVLSYQLYLPNNSNEIYKRRWNTKTNNWTEFELITPAMKELKTRHYAGNVDLNGQNTVDVVITNSVLDTMNFNTGDVISATVETPLPNGIMYNVFITEKNKITIRYSNVTTEKITIPATYFNFRITYK +>UniRef90_A0A7J2S7S4 DUF5050 domain-containing protein n=1 Tax=Thermoplasmatales archaeon TaxID=2268204 RepID=A0A7J2S7S4_9ARCH +MRRSYVKTIKSNSKMMKNTSLICISLLLINVLGSTGVLQNCGKKEEQVYFNFISRSMPHGRIIFQSLRDAPLGNPNSIKKYWELYSMDVDGSNVTRITRNLYWEHQPDISPDGNKIVFAIHYNPSIDTKETDSGWEIAVMDIDGTNLTRLTSNDKLDACPHWNHDGTKIVYVSDTYGNFSCFDIYIMDPNGENVTKLTNAGIGEFYADPSFSFSDGKSKILYIHSKGYTSNWDIYMMNEDGSDQHLILSTNNKYLAYHDPMFSPDDSAIVFSAKLNENGNHGIPIYKIFTARVDGSNIRQITDNDDESDVVPQYSPDGGKIVYFTWKWNGVVFERKIRIINIEGTNERIISSFSPEEMPSWYPRYIRIEKPVEKHLYIADREIIRLLKNTVIIGKITIKADAYDENGVEKVEFYIDDELKNTDYIMPYSWLWDEFAFGMHEIKVIAYDNEGNADTDEMEVAIFNF +>UniRef90_UPI001D13EC9B DUF485 domain-containing protein n=1 Tax=Saccharopolyspora sp. HNM0983 TaxID=2781240 RepID=UPI001D13EC9B +MRPPVAAGPPDYRAVVDSAEFQQLRTRFRAFVFPMSALFLAWYLTYVVIAAYAPAFMGTPVLGLINVGLLMGLGQFVSTVLIALGYRRYAERRVDPLIDDLRADPPREGDR +>UniRef90_UPI0021BCFAD5 translation initiation factor IF-2-like n=1 Tax=Macaca thibetana thibetana TaxID=257877 RepID=UPI0021BCFAD5 +MALNSGRRKEATLQKGVRTALEHSQERSLGGRPEWLRGPGGPGGPRSPAGQPLQPAGSDSRSSANTALGATPTSTRGHLPSLPPPDLQDRIYPGRPPARVSAPSRLGLSPPCTEMAAAGSLLPQPVAASSGPGWPRPPCVSRGTHCAVPVPPVLS +>UniRef90_A0A4U3CDX7 ATP synthase subunit b n=1 Tax=Blastococcus sp. CCUG 61487 TaxID=1840703 RepID=A0A4U3CDX7_9ACTN +MNILAAEQSVLVPPVGEIIIGLIAFAIVLFVVVKFVAPRFEQVFQARREAIEGGIERAEVMQAEAKAALEQYRAQLAEAREEAAQIRDAARAEGQQILEELRAQAQEESARIVARGEEQLATQRQQIVQELRGQIGTLAVDLAGRVVGESLADDARRSGTVDRFLAELDGMSAAGNGQGGAVPAGESNR +>UniRef90_A0A450TCR7 Uncharacterized protein n=1 Tax=Candidatus Kentron sp. FM TaxID=2126340 RepID=A0A450TCR7_9GAMM +MDKKSPFLAQFLARMSAFERENTMFLLVFHPVSADVIFWECTPFSVLLPGHFLFFSHVFGPPSLPQGAKYHSLGLWR +>UniRef90_A0LFP1 Ketoisovalerate ferredoxin oxidoreductase, delta subunit n=1 Tax=Syntrophobacter fumaroxidans (strain DSM 10017 / MPOB) TaxID=335543 RepID=A0LFP1_SYNFM +MNKAREDKFTQARSALCKGEAGRTGDWRSVRPRIDHAKCIPSKNRRPSCFICWLYCPEGVVKRSIPVEIDLDYCKGCGICAEECPGKAIEMVEEHEEA +>UniRef90_A0A351GGH7 TonB-dependent receptor n=1 Tax=Bacteroidetes bacterium TaxID=1898104 RepID=A0A351GGH7_9BACT +MVKKILNLILFLGLSFLSVAQTTTVTGTVKDTTGQTVIGAAVVVKGTNNGKITNENGAFSLNIQDPKTAILQVSYSGYKTNEVAVNGGKNIEIVLRENSLGLSEVMVVGYGTSTKKEFTGANSKVDGEDLQKLNIPRFDQALQGQVSGVNISTNSGSPGGGASIRIRGLSTFGDNDPLILVDGVVFDAAGLNSLNPDDIASVNVLKDATAGIYGVRAANGVILIETKKGKRNSKPSISISSYFGVQSTSRKLDLLNATEYATLKNEMFANGGDDVPFSNVNLLGEGTDWQAEVFQNAPIQSHNITISGGSEKTTYSIGGSYFTQDGIVGLDKSNFTRMNARVNLSTQMSDKLRLTSVFLYTKEQRSTLRENQIGSVLYNTVNAFPTDSVRTSDGRYSYLEEVSDIINPIAQMENTFNEANVNKFVGKEELAYDITDNLTFTNRLSYNYAIVDDKVFSPLVWYGPGKAPNTALNEDLDPTSVEIAPGTSVDRGASVYEQRASYSDLNFESFLNHEVRIKSLHRIKTTAGLSVFTRNGQAVNGTAYNIPNNDLEFADISANLAPGGYLNNTGSFQFQERLLSTFIRGEYGYGSRFNGSFILRRDGSSKFGPNNRYGIFPTVSGSWVISEEKNYAIDRMKFLKLRVSYGISGNDQIDNFAYRGLLNGEGHYVFDDIITQGVAIGRASNPDLKWETTRQFNIGTDFTFLHSFDVTMNYFIKNTRDLLFQPEVSAVLGTYGAGSFPPFINAGDVSNKGFELEVGYKTKSSKIWNLSTGLNATFIRNKVIKTPKGVDFLPGASFGVGGGTATRFQEGYAIGYFIGYETDGIFQSQEEIDNSPVVQEGAKPGDLRYKDINNDGKISFSDDSDKTQIGTPIPKVTLGFNVKVDYKGIDLSGNLFASLGQQIVRNYERQQPYANQLAYNINRWTADNPSQEYHRLTTDLTRNTVFSDFYVENGSFLRLRNLQLGYTFNPLLLKKAKIQSARVYISANNLLTITQYQGFDPDIGSSGGTLAAGIDYGFYPQARTLMTGLSIKF +>UniRef90_A0A565C3H5 BHLH domain-containing protein n=1 Tax=Arabis nemorensis TaxID=586526 RepID=A0A565C3H5_9BRAS +MNLLNSDDNLSMIEALLTSSDLCPLTPPNLSLETTLQKRLHAVLNGTHEAWTYAVFWKPSYYDYSGDSVLKWGDGIYKGDDGNSPRRRMKTTAEKDHRSNVLRELTSMIAGEGFPVMSDGDNDVEVTDTEWFYLVSMTWSFGSGSGLAGKAFATYDPVWVTGSDQIYGSGCDRARQGGDLGLQTIVCIPSDNGVLELGSTEQIRQNSDLFNKIRFLFNFERSKDFSGAPSLMPNELENGNLSXXXXXXXXXXXXXXXLVYKQIQNSLIQDLNFSTATFTSARDIPGEILSFGDDGIRISENPNHNSYSDQIPNEAGKISTGGQKFDSSYQFNIDDSDQYKIDDSILVLENKRPKKRGRKPAHDREVPINHVQAERLRREKLNKRFYALRAVVPNISKMDKASLLGDAIRYIHELKSKAKNTESEKNAIQIELNKLKEAITGRRENAISSVGEKDAITEIDVKIIGFDAMIRVESSKRNHPGARFMTALMDLELEVNHASISVINDLMIQQATVKMGSRSYTEEQLRVMLISKI +>UniRef90_U4LXJ3 Similar to Putative alpha,alpha-trehalose-phosphate synthase [UDP-forming] 106 kDa subunit acc. no. O14081 n=1 Tax=Pyronema omphalodes (strain CBS 100304) TaxID=1076935 RepID=U4LXJ3_PYROM +MSTGTTFVAALHLPYTVQFRSKESRPSSSKSLSSRSLPPPIPETRANVPQLTLSTLRNDLAKTPYGEPIATPMPNLLESLGHGNIATSPTPPLTPTTTTAEELFFRVPSTNSIALGSPSDPSMRRIPTIPAARPKATPFLPGGENVVGRGYFDIPVTEKLAPATRPSRRRSSVASGASIYSQQEQDDWTIEKTDFGNGGLKNAVEASQDASENVYVGTLGFGTDTLDEATKVAIEGRLREDHNCLVAYTSNADFDGHYNHYCKEVLWPVFHYLIPDHPKSKAFLDHSWQYFEALNRSIADVIIKDYKKGDTVWVNDYHLLLVPKMVRDALGPDARIGFFLHVGFPSSEIFRCLAHREKLLAGILGATMVGFQTEEYVRHFLQTCSRLLNVEVQENGVLLDSRLVNVVTLPIGIDPIQLAEKRNEQEVTNWTEQLQQRYAGKKLLVARDKLDGVRGVKQKLLAYELFLKKNPQWVGKVVLIQVALTTTSIVESQSTVSDIVTRINCTYSTLDYQPVVYLHQDITYHQYIALLQIADALVVTSLRDGMNLTSHEFVYLQDKHHAPLILSEFTGSAAIFGGAEISVNPWDHSMCARALERALTMPSQEKEERWKKLYARVTGHTAAHWFSEFLSKLEDAWEEQQRCGSAHIPRLSAKILAEQYSAARKKVFFLQYEGTLVSWGSSSSTVVTSPQRIMDTVNDLMEDPTNVVYIMSSRTVQDLEQIFLRVPSVGLFAEGGCFLRPFGKEKWIRLADPELPWKSSVRDILDYYVERTPGTWIEERSCSFIWHLEKAEDKASAQRQAGDCGNHVNGSCESFDVHAIPVTGGLLVECRRWNKVNACRLVLEHMEERKWVVDWILVAGSGRDDEGVFEWANGLRVEEGEEKEGKSKREVVTVRVGTGHTQAKATTNGVAGVVTALQRLANISVNEST +>UniRef90_A0A8S0R5G1 Eukaryotic translation initiation factor 4B2 n=2 Tax=Olea europaea subsp. europaea TaxID=158383 RepID=A0A8S0R5G1_OLEEU +MSKSPWKNIGDWAAESERAEAEEREQAEQAAAAAQAGGGNFPSLKEAVNTKQKKKTKMSLQEFTMQPSYGSGSAPPSRGLTQEEMFRLPTRPKERPPDEMQHGRHGGGFPSYGNRPGSGYGDGYSDRPTREFENRRSYGGFEDENRRGPTRVSGFDQQTSRADGVDNWASGKKALPDYTSGPAGRPARYSSLGGSSDGISRADEVDSWVATKKPFVQSQPPQQARSSGFGRLEPDRWTRNEGERQRLVLDPTKSDRGGDADVLVKVNKSNPFGAARPREEVLAEKGLDWKKMDMEIEVKKQQHSVSSSRPTSSQSSRPGSTHSSRSESLTTLQSGMAEGAAKQTPKMNPFGDAKPREVLLEQKGLDWRKIDLELEHRLVERPETEEENSLKEEIEHLKKEFLEKSGEEQSCLQDLILKREKDLELLRRELDDKVRYSQKVFERPGSGAGRDAISIERPSRLAPYEEPRAGFPERPPSRPGAHEDPRAGHSERPRSRPGLSEKYRPGFPERPSRPGLYEESRSVFTERPSRSGSYEETRAGFSEKSPSLSQAYQDPRAVDYMERPRSRGTVNSRTRPIDDRKASQGGGVRGFVGSRDVDRSRPRW +>UniRef90_A0A1V5GBZ2 DUF11 domain-containing protein n=1 Tax=Firmicutes bacterium ADurb.BinA205 TaxID=1852897 RepID=A0A1V5GBZ2_9FIRM +MATFYNQATLSYNGTVTNSNITAGEILEVLSADKYAVTSTYSADSDIVYIISIVNSGSSPVSNITVTDDLGAYPFGEEEDYAVPLTYNEGSVGYYINGIQQTPPTVADLSPLTITGITVPAGGNALIVYSARTNAFAPLGAGASITNTASISGTGFGTITASEQITADNAIDLAITKALSPSTVEANGEVTYTFVIQNFGGNAVTPADDVIFSDSFSPAIGSLTAEYNGTAWYEGTNYRYSETSGVFSSLSGQITVPAAQFIQDPATGEWSVQPGISTLTIKGNIL +>UniRef90_UPI001F36B3C5 hypothetical protein n=1 Tax=Alicyclobacillus tolerans TaxID=90970 RepID=UPI001F36B3C5 +MTTVFFKNLQINSVSQTSGVFHGDNYLGGFVSKTKSNEGFGEVSGQKNVVVECLDLVLDLDTLDTVVKKPPSPSSE +>UniRef90_W8SRT6 Transcriptional regulator, LysR family n=4 Tax=Alphaproteobacteria TaxID=28211 RepID=W8SRT6_9RHOB +MDWDKLRIFHAVADAGSLTHAGDTLHLSQSAVSRQIRALEEGLNTTLFHRHARGLILTEQGELLFDATKHMTKRLDAAAARIRDSEEEVFGELRVTTTIGFGSLWLAPRLPALYAKYPDLRIDLMLEERVLDLPMREADVAIRMKEPSQADLIRRKLMAINMRLYASPSYLEKNGTPQSLEELSEHRLISQNANSAQVSAGAVLVRELTSYDVGSHLTVNNYFGVLQGVIHDLGIGVLPDYLTQDFPEMVRVLPNVESNEVPVFLAYPEELRQSKRIEAFREFVTEEVIAHRKRLKESLGAQAG +>UniRef90_A0A0S8K1U0 Acyl-CoA_dh_1 domain-containing protein n=1 Tax=Anaerolineae bacterium SM23_84 TaxID=1703388 RepID=A0A0S8K1U0_9CHLR +MRVIHEYTRGCGRREEGGVYLVSELSPLGTLPPWVAIEPPILYGGEHFRGYIYVNGDQLLAGDEEGTWLIGPSLDRLIGEEWKLTLGMPLKIRQKFGICAGLKTVEDVTEKLADLGLYSDKMYPEIATDIHRALEYLKQLDTPAEGAASQLKMAQRLGLSGAQILARCWLIARQLLWDLPLRDPHNDIRVELRKDLARVMVLVGALEDARDLLTGRSREARATGRRSGALTEANTAAAPAPPNGGPARVERWPSVWLHAGRILRAAYSSSIVARSPCFVINSSHFCQTASWNCSRVPRSARLSASCRKSAHAGNGNLIAS +>UniRef90_A0A5P8D839 Lipoprotein n=1 Tax=Mycobacterium phage Marshawn TaxID=2652423 RepID=A0A5P8D839_9CAUD +MNRTLKGLAAAVAAATAVTVVGCSSDADVASDNLSKASEQFEVSRRIVAINGVTDKYLFVVEGRCSLEYPENRTEIVCKLDDGNLIKHVVRQSDNVTLIMEQTNGTAVSTDHYRVIFKPEVIIPNVDRP +>UniRef90_A0A1X7C2T9 histidine kinase n=4 Tax=Cellulosimicrobium TaxID=157920 RepID=A0A1X7C2T9_CELCE +MLRRLSVRGKILAALAVPVLVLFAAAAIISAQAISTARDASQTSALVAALAAQDAAGTEIAAERTYAFLDARGASEDAEAQMMAQREKTDKALDVRDRAYERLDTSALDPRVREALADTIADRSDLQSVRQAIDRSGLGQLQRNSLYGNLIDDALEVPRTLADTTPDRGLAQYLDTYVLLDELLAQQALEQPVAGAVLQAAQVGQESIATNQQAAVLVTTGDELAKRTQTAVRQLPGELRLETATATYNQIRQNLMGSRPGATPASQAAEWPALSQADRDQTAPVRDAVRVETEKKASDLAAAATTRAVVTILVTLAAVILSVLVAGLIARAIVNPLRRLTDAAEDVRDQLPKLVEQVAVPGQGPGIDLAPIAVESTDEVGQLATAFNDVNETTIRVAREQAALRGSIAEMFVNVARRDQVLLNRQLAFLDDLERSEEDAGTLSNLFRLDHLATRMRRNAESLLVLAGIDSGRRVRQPMPASDVIRTASSEIELYDRVRLNLVVDPLMLGHNALNAAHLLAELLENATMFSEPHTPVEVTTGRDENFVYVTVRDHGLGMTPEEIADANRKVATHAASDVVGAQRLGLFVVGRLADRLGAKVRFSAGGDEQGTEVVVSFPAVLFVPDSSVPLPQPTDPLETSTQAAAQQLAGPAAAPALPAPEAPAPFAAPAATASFPAVEPEAPAAVPVDIDALTDGTTQTGMPRRRSRTVDPAAAAPSASFASGPQTGAIVLPPLATPALPDQLPAADEAWTPPAEVADAGSALPSRARPAATPVEPVSAEIPVLDVSTRSALFSSFRPMGDRPAENPVELPAAPDVTATDIPLVTEVPTGSAPVPQDAWSPQPAPAEEPVAQAWPAPEAQAWAPEQAWAPEQPAVAAEQPPAAPEQPAEQSWAPAQAADTWAPSSVGDESLDATRVVPPVPAEPAEEATVARVPLAERAPAVSAPAAPEARPAEDVPVVESANAAAPAEDIPAELTFEALPRFEELMADLPTRRSLRESQARKRGLFGRRPRTTATPQARPAGTSASAAPAATAPAPAGPSAPAPSAPAPAAPAAAATPTAAPVAPSIPVAPQEPAAPARTSAFAPRADQPAPAASFAPPTTPAEEQVPASPEAAYTPLETAYSATEAPAAPQPSYEPSYAAPEQAYAPDVAPSEAGREPAPARDSWAPEPADAAEPAGYGPPSPLVRRPVSETTLEPLEPGYISDSVEARSDWMASAVLYEEMSTLLQGSTDFQEATLADSNDGIYQPLKVDATTASGLARRSRGEEREGYVDRFTARIDRDPEQLRARLSAFQSATARGRVEGQDETSSTWDPQAVDYVPDSAPQAR +>UniRef90_A0A6G5YKI4 Haemolysin XhlA n=1 Tax=Bacteriophage sp. TaxID=38018 RepID=A0A6G5YKI4_9VIRU +MDYMDDYRQQVTDARFQDLKEVINTRFDDMNSRLVTISKQLDNYETKDHAASEINHLAFRCDDLEQKLQDAEDELAKFREGIYRKAALLTTVLSSIVSLVFGILQFVIH +>UniRef90_UPI00190A6268 non-ribosomal peptide synthetase n=2 Tax=unclassified Streptomyces TaxID=2593676 RepID=UPI00190A6268 +MEKYRSLPAVGDTVVQLPDAGIPELFERQAAMTPDAVAVVSGDASMTYGELDAGASGVARELLRRGVGPESVVAVAFPRSPELLVALLGVLKAGAAYLPTDPDYPAERVGFMWGDARPVLLLTTAGTAVDLPDSCPRLTLEDLSPADAAPGGRTPYGGPAVHADQLAYVIYTSGSTGTPKGIGVTHRDVVALAADRRWYGGAHERVLLHSPLAFDASVYEIWVPLLNGGRVVVDPDGDLTPGGLSRLVADHGITAVFLTTALFNLLVDEDVRCLAGLREVWTGGERVSPAAFRQAVDACPRTTFVHVYGPTETTVFAVCRPMDPARPVGGDVPIGRPMDHTRTYVLDGSLRRVPPGAAGELYVAGAGVARGYLNRSALTAERFVACPYGTAGERMYRTGDVVLTTPDGELVFQGRADAQVKVRGFRIEPGEIESVLLAHPDVAQAVVTAREDRGAGTGKQLVGYVVPAGAGDGGAALDSASLVGELRTFVAERLPEFMMPAALVVLEQLPLTPNGKLDRTALPAPEFTAMTYRAPRSAGEETLAGIFAEVLGLGRVGIDDDFFTIGGDSIRSIQVVTRARAHGVSVSAGEIFRHRTVTGLAEAAAANARDGGSPVLAELDGGGVGPMPLMPVAKWIEELGPGFDRLSQAMVLELPAGIDRGGLAATVTAVLDRHDLLRARLIPDGLLVDPPGSVDADRLIRDVTCDGQWSGEPWRHLLVGELDEAAGRLDPAAGVVAQFVRFEPPSGPGRLLVVLHHLVIDGVSWRILMPDFAAAWKRIRAGEAPEPAGTLTSARRWAHALVDDAAGAARMAELPLWRSTVDGPDPLLGSRRLDPAVDVRSTVEKVRVLLPVPVTEALLTAVPTVFHGGVNDGLLTGLALAVGQWRRTRGVDEPSTLLTLEGHGREEDAVPGADLSRTVGWFTSVFPVRLDLAGIDLDEAFAGGPAAGAALKAVKEQLLAVPGRGIGYGLLRYLNPETAEVLRAYPMGQIGFNYLGRFSAADMPEELRGLGWTGTAELAEFTELAELDAGHDAAMPALSEVDINATVTDTAAGPRLGAVFGAPTGVLSPAEVRELADLWCAALRGLARYAAEPGAGGLTPSDVPLVSVGQREIEAWEKVYPALVDVWPLTALQSGLLHHSMLAGADADTYQVQLVFGFEGAVDASRMRAAAQALLDRYASLRTAYVPDSAGDFVQLVVEGVTLPWREVRVAAEAYEEFLAEERSVPFDTAAPPLLRTTLVRIGAERTELVLTAHHVLFDGWSEPILLHDLLCLYASDGSAPADPPSFKDFLAWLARRDQEQSVRAYARALEGVTGPTLLAPADPATGAAGFGELDVDLTAAEAQMLARRAADLGTTLNSVVQAAWAVLLAELTGGSDVVFGATVSGRPPTLAGVDSNVGLFINTLPVHVSCAPWKTLARVAADVQSAQAALLDHHDCGLADLHEATGLGVLFDTLVAFQSYPFDNTSIAEASSAAGLGVPSFRSIGGSHYPLVVMAEQDPHLRLRLQYRHSAFERDAAGRMADRFLRVLRAFLADPAGRVGAVGIRTPDERNTSRPEPGTPEVSVPELFVRRAAAMPDAPALVVDEVPVTFRELNARADRLAGACLGLGLGPDSVVAVRCSDPVDQVVALLGVLKAGACFLPIDPEDPPQWSDAVVRDAGPRAVVVDQEAAGPSWGVPRIRVEAPAGDSGPADGGPTGPALPGHMAYVDYVPDESAQPCGTAVTRGGMAARVPRFETFFPGETLAVGPGTRATDLLLALCAGRTVEVRKEAPSAHGDAPDSDRVQVLSPSLAPAAAEAVGELYVTGDVGRGHPGRPGLTAQRFVADPYGTAGSRMYRTGVLGPQGAPGTPAVGSPEVRTGRRAVESVLLAHPGVARAAVVTDGPGLVGYVVADGQAAVVADELRAFVARHLPDRLVPSALVEVDRLPMTANGRLDRRRLPAVAGEQHRTARGEREVLLSRLFSDVLGREEIGIDDDFFALGGNSLLATRLIGRIRNELGVEVSIRSVFQYTTIAELDAQWDDIATASGPRLRKTSRK +>UniRef90_A0A4R1FKP2 Lipoprotein n=1 Tax=Nocardia alba TaxID=225051 RepID=A0A4R1FKP2_9NOCA +MGVVSEIEGSRRRIMMSRSVSYTLPAVVAVALVSAGCGSATPKPAPRAASATLTTTSKPPLTTSRSATPTTTAAKSAAVGVCVDKTTNVRVADDRCDTGSSTHSRFWYQHTDTFVYPAIGVAVALAAGSFLRPTTGEVFDRGAPTDGGTVARGGLGKARPDSSGGGGSAGS +>UniRef90_A0A5E4BYY0 Calmodulin protein 4-like n=1 Tax=Marmota monax TaxID=9995 RepID=A0A5E4BYY0_MARMO +MTTVTIVNQVELAVTRVQGGRLTSPRAFPSLLTLLFGGFLDRNGELDFSTFLTIMHTQIKQEDPKKEILLAMLMADKEKKGYIMASELRAKLTRLGEKLTQKEVEDLFKEANIEPNGKVKYDEFIQKITLPVQDY +>UniRef90_UPI00101D8BA6 hypothetical protein n=1 Tax=Sphingosinicella sp. CPCC 101087 TaxID=2497754 RepID=UPI00101D8BA6 +MTDGARLFLDAWTHARPQPPARRAATLLARLGGEAEPERLPIGVRDRRLLELFAGMAGAHLAGVAECDSCGGAIEVAASVDMLMSGPPTAPILVEIDGERVPVRFPTTHDVLAAVAAPDPSRRLAELCAGKGELGAGEAEQVGAALLAADPLLDPQIAVTCPDCGAETVFGFDVGAFLWAKVEDRARHLLSQIHRLACAYGWTESEILKLPEARRAAYLELSAA +>UniRef90_A0A8D2QA42 NME/NM23 nucleoside diphosphate kinase 3 n=1 Tax=Zonotrichia albicollis TaxID=44394 RepID=A0A8D2QA42_ZONAL +SSGSKPSIRTNSFPSPCLEASPPELNLSSCLPGLVPSAQLQHPGSQRSVCSVQASEELLKEHYSALRDRPFYGRLVKYMSSGPIVAMVWQGLDVVKTVRSMIGETNPAESRPGTIRGDFCVEVGKHSCAKPARNESAFPEQKFSLLCSDQS +>UniRef90_A0A8D2AEW9 Espin n=1 Tax=Sciurus vulgaris TaxID=55149 RepID=A0A8D2AEW9_SCIVU +MAHSEEAALLPGNHVQNGCAADPKASRELPPPPPPPPPPLPEAQSSLPPAPPLPLEGAGSGQRRSSSSTGSTKSFNMMSPTGDNSELLAEIKAGKSLKPTPQSKGLTTVFSGSRQPATQPDTQVPPVSPAPSRARSPTPPAVGPQPLLNGSIVPAPPAIPAPGVQLNVETLVPTHDEQGRPIPEWKRQVMVRKLLVKMQEEEEQKRKEEEEEARLASLPAWRRDLLRKKMEEEREQKRKEEERQKQEEIQREKEQSEKLRTLGYDESKLAPWQRQVILKKGDIPKY +>UniRef90_UPI001E3E9EE4 hypothetical protein n=1 Tax=Mucilaginibacter roseus TaxID=1528868 RepID=UPI001E3E9EE4 +MMISIAACKNDNDNNPEPSVESVTIDGTSYPTVKIGKQQWISINYSGKGGVFYNGDRDVKYGKLYTRKEAQAIKLQDGWRLPTRSDFVKLASNFPNISADGYVNLKPEGVLKLASSSGWRDKSGDNSSGFNALPAGICKVEADGDNDYSYRGIATQFISSTTETFNDNGATRARTTTFFLQIANSSSQPPTTETAGGVVDVIRADDYRFSVRFLRDID +>UniRef90_A0A7W0CLV6 S1 motif domain-containing protein n=1 Tax=Nonomuraea soli TaxID=1032476 RepID=A0A7W0CLV6_9ACTN +MLSIQQRIADELGVREGQVSAAVDLLDGGSTVPFIARYRKEVTGALDDAQLRTLEERLRYLRDMEERRAAILESIESQGKLTDELREQILAAETKARLEDIYLPYKPKRRTKAQIARELGLEPLADALLADPSLDPVATAGPYVVEGLADAAAALEGARAILIERFAEDADLIGSLRERMWSYGQVSSRVKEGKEEAGAKFSDYFEFAEPFTKLPSHRILAIFRGEKEDVLSVALEPEEGDEYELRIASRFGVSDQGRPADKWLNETVRWAWRTRILVHLGIDLRTRLWQAAEDEAVRVFAANLKDLLLAAPAGARTTMGLDPGLRTGVKVAVVDKTGKVVETATIYPHEPKRQWDQSLAVLGALCQRHGVELIAIGNGTASRETDRLAAELVKHMPGITKIVVSEAGASVYSASEYASKELPELDVSLRGAVSIARRLQDPLAELVKIDPKSIGVGQYQHDVSETKLSRSLDAVVEDAVNAVGVDVNTASAPLLTRVSGIGSTLAASIVAHRDGNGPFRSRTALKDVPRLGPKAFEQCAGFLRIPGGDDPLDSSAVHPEAYPVVRRILTSAATDLKTLIGNTAALRSLKPADYVDDTFGLPTVTDILGELEKPGRDPRPAFKTATFKEGVEKISDLAPGMILEGVVTNVAAFGAFVDVGVHQDGLVHVSAMSRTFVKDPRDVAKPGDIVRVKVLDVDIPRKRISLTMRLEDETEQPTSGGAAGGGSGRGPRQSGGRPGGPRPASQDGRSTDTRPARDGAGGDASGRGGSRDGSARQGAGSGGAGSGSGRDGARGNRDNRGQRGDRSGDRAGDRSGDRAGDRSGDRAGDRSGDRGNDRGNDRRGGQRSGGDRRQDRSAPSGAMAEALRKAGLGGGSDTR +>UniRef90_UPI00068DFD47 tetratricopeptide repeat protein n=1 Tax=Herbidospora cretacea TaxID=28444 RepID=UPI00068DFD47 +MNPPEASGEAAVHNEITNGVFFSAVIQGRDITVQLPPQITPALSGMPAGSPAFTGRDLDLRDVLDVLAPVGTTDGSVPSTAVSSAAVVVTAVGGMGGVGKTELAIQAARTALDCGWFPGGVLFVDLFGYDKARRVEPGEALGGLLHALAIPGDHIPSDTEDRARLYASVLAAYAAAGRRVLVVIDNVCSAEQARPLLPTDGSSKAIVTSRHTLGMLGARLLDLKVLAEAEAVALLTRAVDIARPGDTRVSDHPEEAAELAHLCGYLPLALQIIAALLAENPVRPLSTMIEELADESSRLDEMEYGEVAVRAAFELSYRHLAAQEARVFRLLPVNPGPDVSTQAAAVLTGLEAVPARRLLERLARAHLIEHGLGYGRWRMHDLVRLFAEEHGRADAAADGRADALTVLLVHYHSTATAACHHLAATDRDAAKGGFGGRGDALTWLDAERANLVAATHTAAGHDPHRAIARDLPIRLGPFLQLRRHFDDWVALTTAALDAARELGDRRGEARASGDLGLAFRYSRRFDESISAHREAARIWRELGDRGGEARALSNLGLALQEVRRFDDAVAANQESLNIQRELGDRSGEARSLGTYGNALVLKRQFDEAVNVYRKARDIFHAMGDQSMEAAILANLGVALHELRRLDEVAVTYQDALRIYRELEDRHGQARTLTNLGHLLLEEQQLNLNDAVTNLQDALVLFRELEDRHGEARALNNLGLALQGLGQPNVAVTVHQQAVNAFRELEDRHGEAQALCNIGRSLLELMRFDEAIPHLRSALDLFAKIEDRHGAAQVLINQGVALTGLRRFDEAVAAIEEARDVFRELGDQHREAIALTNLEEIRRHR +>UniRef90_A0A7C6BF04 Glutamate synthase n=1 Tax=Rhodobacterales bacterium TaxID=1948890 RepID=A0A7C6BF04_9RHOB +IMMRSGAKSVTLITASGLPGPDTAPDDLINVVPCELEEAVEEGLQIIDHATVGRLIMKGSRVTGVEIVSLKKEVGKDGRKRRVASFGTERVVSVDMVVPCVGEQVDPEAFEGYIDGAYFWPDNPYGRIAEGVYAIGDARGNRGTVAAAIGDGRIAAEAVAAELSGEIDPPADERPVMELDGLNTAYYASTARVKVGKLAVSERTFEAEIEGAISRSEALAEAQRCLSCGNCLACDNCWTMCPDNAVIKTTELARDGSHYVFDYDYCKGCGICAQECPTGYIQSVPETS +>UniRef90_UPI0008A66679 hypothetical protein n=1 Tax=Streptococcus sp. HMSC072D07 TaxID=1739495 RepID=UPI0008A66679 +MVKSLCISDSREGIIEHIPKGAIAYYLPNPRGRKKVFFTKETLLLMYHLIRLKYFSREMILDQYFILTGKELYNDALYSLIGNSRMPICQFSSNYNIGRTKFMYVPKVFASWLLSVIPQIPELAELTEVTEYDGSHYSLITNRMNGGTYGIKKINLHDANTRSLALKIGRALIENKVGVSPSELNITYFFPTNRELISVVPDAVIFVQGERYYIEYDRNTEQHFKLLGKIIGYFEESYYKGDTIFFVFDNISEPKDNYLNARVMNFISNVHNVKFKDSGLTYYEQAQQNKVSLYALPYVNAISQIAEVIHLELDHDSTKEDIELVDRFKNEHLVPYEVLSADLVDEPDSPFDLTLTYIDDFFDKKEMPLLKLNYGDISNPDYFENLYKEYKDVYPQCGIIFSASISKQYYPIPHDDFFLAIYIR +>UniRef90_UPI0019112769 ABC transporter substrate-binding protein n=1 Tax=unclassified Pseudomonas TaxID=196821 RepID=UPI0019112769 +MTKPLETLWYTHSPVPTGLGIAVQSGRLAEAFTPFGTNIQSLRESSEREVREAHYDHHLQNSVRHGGNIPAIWAYASGVETRVLGLSWSDEVQLILTTEESGVRSIRDLKNRRFGIPKWANVQIDFTRAQALRGLENALKLEGLAVGDVELVDYPYGGTYSDDAKRHLYGAEVSLGTSRVSRRNNELIGLLRGDIDAIFLKGAHAVHLAHEFGLRVVVDTGSHPDPLIRSNNGTPRTLTVDRHLLENHFDASRTLVDTVLRTEQWAWANPVETRRFLARELNTSEYWVAAAYGDDAHRRLRTALDSRSIEALQDFTEFLFRWGFIPRRFDVKAWIDFRVLESVIGSTSRLAV +>UniRef90_A0A7C7DC20 2-isopropylmalate synthase n=1 Tax=Firmicutes bacterium TaxID=1879010 RepID=A0A7C7DC20_9FIRM +MRQVFIFDTTLRDGEQSPGVNLNVEEKVEIATQLAKLRVDVIEAGFPVASPGDFAAVEAVASQIKGPTIAALARTMEKDIDKAWEALRYAERPRIHTFIATSPVHMRYKLRKSPDEVLRMAVEAVRHAKSLTNDVEFSAEDAARSDRGFLREIFEAVIEAGATVINIPDTVGYSTPWEFADLVSYVKANTAGIDRVTISVHCHNDLGLAVANSLAAVTAGATQVECTINGLGERAGNAALEEVVMALRTRKDYFDVSVGIDTTHIYRTSRLVSSLTAVFVQPNKAVVGDNAFAHESGIHQDGILKERTTYEIMTPESVGLPESRLVLGKHSGRHAFSEKLKALGYSLTRDEMEKAFNRFIELADKKKQVSDRDIEAIVEDELVATPGFFELEYIHVISGNHAVPTATVRLKTVDGSVEEAACGDGPVEAVFKAVDAAAKLETHLVSYSLNAVTGGKDALGEATVRIKDNGDTYVGRGTSTDVIEASAKAYVQAINKLLHNRRTFSKAAAPAGAAGVSRPVQDALGTSGS +>UniRef90_A0A8H6QPS6 Uncharacterized protein n=3 Tax=Aspergillus TaxID=5052 RepID=A0A8H6QPS6_9EURO +MAPTKEAASSTSTSTSTSSSSPSSCPTNSASDANTNISDHGSGDSKTLAVGVGVGVSLGVVSLISLIWGVYERRKRQQLLNSMPSMMPMNSDPYAPPAVAKNQYTEPQELAP +>UniRef90_A0A6P6W929 uncharacterized aarF domain-containing protein kinase At5g05200, chloroplastic-like n=4 Tax=Coffea TaxID=13442 RepID=A0A6P6W929_COFAR +MAGVSLMRGMVNDGCLSIFHHQSRQLAPVTVRVSSRSRSTAARKLQFLSKRSSFYARYSQSRDIFTSRVQDRMEKLPKLVEDIVQTSLSTGPRGALRLAQGIQAVLGVGSEWLADLSKTANSSTTLPTEMQLGLLSPLYLRRLFERMGATYIKLGQFIASAPTLFPPQYVQEFQYCFDRVPAVPFADIQAILREELGQPIDAIFEYVDPTPLASASIAQVHGARIRGTQEDVVIKVLKPGIEDTLVADLNFVYIVARILEFLSPELNRASLVAIVKDIRESMLDEVDFKKEAANIESFRRYLEAMGLTRQATAPKVYLQYSTRRVLTMERLYGVPLTDLDSISALVPSPEASLITALNVWFGSLLACETFHADVHAGNLWLLRDGRIGFLDFGIVGRISPKTWAAMEIFLQSLATEDYNSMASALIDMDATNKDVDSMAFARDLEKIFSSIQDLDTEIVVATARGPNTSTTAVAANVIVDERQMNALFLDLVRVSESYGLRFPREFALLMKQLLYFDRYTRLLAPNLDMLRDQRITIVPNQRSRRIY +>UniRef90_UPI001C62E845 hypothetical protein n=1 Tax=Qipengyuania flava TaxID=192812 RepID=UPI001C62E845 +MAIASVWVLSGGLGGGSLLTWVVGLPGFLFFGGAMVGFVAALFDRRVKVSVSPQGLVVYPHSPRPIALRSIKRIGTQQSQVRILLHKPSKYPVEGRWRKALIAISSGIQRANGDVWMFCQLYDCSAREMVDAIRAARPRTKFEQEIDAVVASWDENGGPYGDAAHG +>UniRef90_A0A1E7NDJ8 3-dehydroquinate synthase n=37 Tax=Actinomycetia TaxID=1760 RepID=A0A1E7NDJ8_KITAU +MTDTTVRIHVGGSAGHDPYDVLIGHQLLGELAPLIGTRAKRVAIIHPEALAATADAIREDLAGEGYEAIALQVPNAEEAKSAEVAAYCWSVLGQTGFTRSDVVVGLGGGATTDLAGFVAATWLRGVRWISMPTTLLGMVDAAVGGKTGINIAEGKNMVGAFHPPVGVLADLGTLETVPRHDYVSGLAEVIKCGFIADPAILDLIEADPEGAKSPAGPHTVELIRRAIQVKADVVSGDLKESGRREILNYGHTLGHAIERNERYKWRHGAAISIGMVFAAELGRLAGRLDDETADRHRTVLASVGLPLSYRADAWPKLLDAMKIDKKSRGDLIRFIVLDGLGKTSVLEGPDPSLLVAAYAEVSA +>UniRef90_A0A1E3H4Y8 2-keto-3-deoxy-L-fuconate dehydrogenase n=1 Tax=Methylobrevis pamukkalensis TaxID=1439726 RepID=A0A1E3H4Y8_9HYPH +MTDRLKGKTAIVTAAAQGMGRTAVLAFAAEGARVLATDVNAERLAALADVPGVTTRLLDVTDGAAVAALAAEAEAPDILFNCAGFVHHGTVLDCDEAAWDFSFDLNVKSMYRMIRALLPGMLDNGGGSVINMASVASSVIGAPNRFVYGASKAAVIGMTKALATDFVARGVRFNAVCPGTVESPSLEGRMRALGDYETTRAAFVNRQPMGRLGTAEEIAHLVVYLASDESAFMTGQAIVIDGGWSNT +>UniRef90_A0A374BYN1 ParB/RepB/Spo0J family partition protein n=2 Tax=unclassified Firmicutes sensu stricto TaxID=84086 RepID=A0A374BYN1_9FIRM +MSEGKMNIGSAEGDQVLELDINRLRAFKNHPFKVTADMSMVELKDSIEKYGILNPFIVRPVPEGYYEIISGHRRKFAAKQLGYTKVPVIIKVMKNDEAIVAMVESNLQAGLIFV +>UniRef90_A0A254RGW8 Endoglucanase n=1 Tax=Fibrobacter sp. UWR2 TaxID=1964352 RepID=A0A254RGW8_9BACT +MSFKKLITTSTASVIALFIAACGDSDSGLRPVNENPDTPSSEAAVDPSSSSVADTSAQIPPVTGTGLLIDDLEDGDGSTLIGSGWYTYDDHDNGGASVITTPNVTEKGDPLPTATDNGSLYAFTVNYTLDKGDYAYDPYVGWGLLVPDAIDCSNFGGISYWYKGGKHEIHVETTDVTDYDVHLATVPASREWKQVSIRFKDLAQGGWGEEVAFDPFHIRAVSFQAKGDKVTDSLSIDNLYFQDTSEVEKDKPDMTIMDPIIPTVVIPEDLTISSPLQEKAMKYLNKGINITNWLEENKAYFKGKFKFDESDVKLMADNGIKSLRFPIDLDSYATNRDEFVADTTDTVELKFDDENLFAVLDSFVEWTGKHNMSFVIDYHEYDNSYNITSSKNARYIKMMANVWKHVAAHYASNEREDIFYELLNEPDMTNGAVKSPAWHAAAQEDVDSIRTVDTKHTIIFGDAEWYSISVLSKSEPLNDDNVIYAIHTYEPFIFTHQSASWAETKTIKNLMFPYDKEKWSEYSADFGVTKSTPSHIKNSLKNYNRTGSMEAILKSVVPAKKWAIEHNVPVIINEFGAYNLKTDKQSVLNYMSAMRTISDTLQIPLTHWGYTGGFALFDSEDGVKGTKLIDGMKEAYGL +>UniRef90_A0A0A9IMK9 Protein Iojap-related, mitochondrial n=1 Tax=Arundo donax TaxID=35708 RepID=A0A0A9IMK9_ARUDO +MPSVEGQQAGKWVVIDSGSIIIHALEERAREYYDLESIWSKEVSSNISVQELETSLVKTRRRNHSQKPMKSI +>UniRef90_A0A4D4MEH6 Mrr_cat domain-containing protein n=1 Tax=Streptomyces avermitilis TaxID=33903 RepID=A0A4D4MEH6_STRAX +MHQRGLPRKSSHPRAESAPGGPGRAARDSKGAAAYRERKLHKLRNKLTLAEVDRLLTIQETRWMQDMQDGHADGFGATNVWFPSTPTQAIDWRACEHIAAEHLRALGIADAEVTPARGDAGIDVRSEIAIAQVKHQRTPVGRPALQNLVGAAGPAHRGEIKPLKFFYSTSGYAKPAVEYARVNDVILYVINPATGCVSFVSTLYATSVSMPGLIR +>UniRef90_A0A3B3QJW8 Cingulin like 1 n=5 Tax=Mormyridae TaxID=31092 RepID=A0A3B3QJW8_9TELE +MEMESYRVGGISGGSLPPAYLAHECPSRPVSSGPGRYGLSIRVQGIGGHPYVVLNNREREPSPCKELESNGHSADGDPAEQYGQDRYTPPWEQHPDDSLVEYRSHKQMLFAGSHNGVTEFQESQKKPSTLLNFQRHPELLRPYDPENNSLNLEDLPVLTPRPASLSETGSLPCSQLTRGMSPSLDKPGTSATPVYQDRFPQQSEAQVQSLPRRHAPSPDRPAFQVQPETQEMLLPEPTPQSRQPVRPEAQVQQKPQLETQVQSPPHQQAKPQKPVQPTPQDQQKPQTEAAALAPSAPDAGQQARVAPPASTSTGSSLERSRRKPDVLLLRRHDSSGPVLQSQHSSHSSSSPSSTSRPLLGDPLESLGSDPINRHQNRRYIPFMPGTGRDIDTGSIKAVEELIDKFDGKEGLQRRGRAGRRNRINPEERKRSRSVDSAFPFGIRGDTDYLEEFSKNQGRSTEHVLRPSQLRQLKGALAQDFSGPTSPPRGKDGASAVARGRSAPGSPQGTALHSASSALGCRTAVSRSSTLPLESKGGDEPKSIRSFKVLTGMAAASPAVSMISSSKKNEADNPVTPDLLKDQQTLSQQTNEETAKQILFNYLKDGNPDNDDTTKRKVNLVFEKIQTLKSRAAGNVQGDNNPPEAASEVKALQDQKNQLEKEVTVLKKQLEEETKKTAGPTEVQENAGMRDLRMELVRSMEECARLQELLSKAEEELRTTMEELFQVKMEKEKHQTEIRDLQDQLSEMHDELDGAKRSESEGGEQEDVLEEMMQLKLDFQELLQVKEEQEELLRRRERELTALKGALKEEVATHDKEVDTLREQYEEEIRKLLSCVEDAKQNNVSVCREKQEVEAAKGVAESRVERLSLETERLRRRVQELENEVAKLNRIIDESKLQEGRLTDHMRHLEKENSLLGDSLAEVREQEEAMSRANRALTTRLEDVQRNLTKLTQDHKDLNEKLKEERIQKEQFKRTKDEIEDERRLLDRTVEKLQKEMCDMVEASQTSTQDLQVQIDEYKEKNRRELAELQRQLQERGVELENSRMATRKLQEEVSHLEEDLKQCKKERDEAVLREKKLELKVFDLEVELENVSHSKQDRPRYSKITEDRITQLEMDLEEERNNGDLLMDRIEQGRKQVEEMRNELLQERAMRQDLECDKVALERQNKDLKSRVTHLEGSQKSNKESLVSQLEGRIQELEERLEGEERDRANLQLVNRKLERKVKELMIQVDDEHTALQDQKDQLHLRLKALKRQIHEAEEEIERQEHGKKKLQRELEEQLEANEQLQGQILGLRNEMRRKNTTAPSLKDLDDNDDDMSTDGEIYYRSASGYKRSNHNPIS +>UniRef90_A0A3P9PT27 Chromosome 11 open reading frame 87 n=1 Tax=Poecilia reticulata TaxID=8081 RepID=A0A3P9PT27_POERE +MLAAPAASHCVKCVTTIRFTHFSPALPDCFIVAEASGLPAPPQRCLGGLQPNNGTCAEQLSVSLFPPLSSTLALLVLVAVLVGIILVSLATFLFHKRKLRNRKIQRAQEEYERDSRSPARAGPGAGEPARPCVIVRPVRRDEKPSRVTGCVRVAAEPWPRSTGSPHGRQKKPSGIQYF +>UniRef90_A0A183N228 Secreted protein n=1 Tax=Schistosoma margrebowiei TaxID=48269 RepID=A0A183N228_9TREM +MGQGLELHDFISLFIEVFDFLLLLLCTVRHGWGVGQVLIANFFSTFLVNDSLFLLEVCKIFEGISTADDLFTLPILNGDE +>UniRef90_A0A2U8W4D6 DUF2092 domain-containing protein n=2 Tax=Methylobacterium durans TaxID=2202825 RepID=A0A2U8W4D6_9HYPH +MSTAEPTVVRPAPKFCRNVSTRALPRACACTSIPRGARPRSGSGRQSGGSNAAALRRPAAEARASQPRCPRDREETMARPRDAIGLLAALVLCMTAPERAAAQQPAAAQPAQGVEPAAVALLKAAGDTLAAAKSLRFTAIAVHDVPNAEGQSIFYTVRSRVEFRRPDRLRVVTDGDGPSREFIVDGRTLTLFRPEADTVATAPAPASLDAALKAEVAATGESQAFADMLLTNPAQALTNGLTRAFVVGRSRLVGGVETDVVAFADRDAQAQVWIGVQDRLPRQLYVTETGAPGRPRNAVTFSDWMIDPPIEDRIFSTAHTEGARSVPFPNPDF +>UniRef90_A0A419WT42 Uncharacterized protein n=1 Tax=Marinifilum flexuosum TaxID=1117708 RepID=A0A419WT42_9BACT +MNKNTKVIEKYYEQIKANIELGLSPADFANKCVSDYVLIQDNEIKRKREEREKKKKNKIIKKQKEQAKTNIQEREKDLARTILYTKKMVKPITNTSEIDSKNANINPEQRRANKIAKLNINSLSSKMHVTDEVKDLGRLSTKEFDKNTVEGAINSLKMASRMLDLMRGGDDDSDEDYDDDIDE +>UniRef90_A0A6S4NGA2 GRAM_POS_ANCHORING domain-containing protein n=2 Tax=Lactobacillus johnsonii TaxID=33959 RepID=A0A6S4NGA2_LACJH +MPTDAEIIQAIGGLKSGDVYINGFTNGQMPVNVGSYQVKITDQLLQRLQAAFPDYDWDAVSGNNGTARSGSSDSDPIDARHEPATYVITPADTTVTINGAEHIKYGENSTIQYGSDNGYSITITAPVKNETTDNEHEPIYTDLKLETGDLEFVTTPGNVGTYEVKLSAQGLKKLQALTGSTNYSWTQASEARANFFVDQMPVTITVGGNEQNVTYSSNDWLKAIKENPQGYTLTVMTENGTTLNYQAKDGDLIFSQTPGDVGSYQVVLSAQGLDNIKQALGTNYAYPQAASDVTTYGTFNVNQGEVTISLDGSDSKIYDGKTTVPADLNIGKYNLTYSAPVYAPDGSPQTIKLTSDDLQFANGDPINAGTYTVELSPAGQAKLKNLTGNNGDNYKWIFNTQATYTINSATDASASLSGSNQMIFNGSPVTTAEINNGGNIVVNLNFPGSTENSIYHLQDGDYIWNDGAAPTNVGTYTIKLTQAGLAHLQAAIDQYAGSGNAKISADSLTGSATFEIVPKSITDVTISGKDQEKTYDGQAASLDVNDLTISATNLVTDSPLSMKDISASDFDWYDAQGKKLDAIPADAGTYEARLKPSALQALQKDNPNYSFNTASGTIKYTINQKAATDTLDGNGNKVYNGQETTVSDVLNSITWTPSGIVDGQSLDLSKLSDADYAWYTKNADGTYTEMAGLPTNAGTYYLKLKDSSIAKIQVANPNYSFATGAISGEYTYVITQANAVITLPNTSDQTVTWTGNPATIDPANFIPEITTDNPNEKTIVLPSTLQLTASDYEFSQNGKVISAPSEVGTYQVRLTEAGWQKVQNAIAENTNYTWNYQGEGNYHIEKATANVTLDGSASTIYTGNSVVIPATAGVVNGINVKLSNGQTYVLKPEDLEFVNDQGNQIPAPTDAGTYKVRLTKIALDQIRNIESNHYNYTYNNDAVDFTIEKANADVITSGSYDVVYNGQTPEINVDKITNTIATNNDVKLTAPTLTADDYEWVDETGKVITDPVNVGTYYLKLKDSSQSKIANNSNYIWNFKGLASVTISKANATIGFNGNQETSYTGSVIAVDPDKFEVKLSNGQTYQLTDKDIQVIGNPINVGTYKVELSQAGIDSIKAADSNYNYSYDDSQGVLVIVPAKASATISGSQTTQDLELDPHNYSVVLTLNGQQQTITGLTASDFVFSKDGHPAQLTEAGTYDVELSGDAINKIRQENPNYNIDFSSTATFTLENSSQTINYVDADNNVIGSTNISGHIKGTKLPFTPEIPVGWVASDPSDVPTEITINNGTTIIKIKHGTTNVDHNNPVPDGAKTVTGEVIDGAHASDLNQTITRTINVTNPDGTKSTEVQTAKIYRDASYDNVTGEVTYGEWSTGSWKEFSPAEIEGYSASEKVVPAVEVKDGQKNVTVDITYTANEQSGIISYQDEAGKEISTTPLSGKTGETVTVNPEIPAGWELVPGQEIPKTVTATGEGIPTVVIKIEHGITNVDHNNPVPDGAKTVTGEVINGAHASDLNQTITRTINVTNPDGTKNTEVQTAKLYRNASYDNVTGAVTYGEWSTGSWKEFSPAEIKGYTASEKVVPAVEVKDGQPDETINITYTANEQSGIISYQDEAGKEISTTPLSGKTGETVTVNSEIPAGWELVPGQEIPKTVTATGEGIPTVVIKVENSTIIVTPETPEKDIPNGKVPGNPSKNYPEMEKLEVAPTRAIILIKPDGSRENIIQKVIFTRSATFNEVTGEITYSAWKLSNSDDHEALWEAYEPMSISGYTVMNVNQEKVTPDTPNTQLEVTYIPINRPAVTATQTIHFVDEKGKLVESKIYTGKFGEVISVSLSVPKGYSLRNGQSLPTQITIENGMITINLKSESKHPIPNSENKQKPSVTPNTPDAHTDKNNLSSKDNKVVKSHGEKLINTNHVDHVVINQKATRKGTKASSQTYGEKHFESRHMLPQTGAHSENPIFTALGMLAVGLGLFGLSDRRKKKDK +>UniRef90_A0A438IK19 Retrovirus-related Pol polyprotein from transposon RE2 n=1 Tax=Vitis vinifera TaxID=29760 RepID=A0A438IK19_VITVI +MLVTVFHSGPLILFPNHSGQPHRRRISTTPATFSGEIFQRPIFRETTTYSETPEADLHASGNPTGNRHLTRPLARPDISFPNRGHTQVVGYTDTDWAGLPTDRRSTSGYCVFIGGNLISWKSKKQDVVVRSSAEAEYRAMTLATCELIWLRHLLRELRFGKDEQMKLICDNQAALHIASNPVFHEMTKHIEVDCHFIREKIASGCVATSFVNSNDQLADIFTKSLRGPRIKYICNKLGAYDVYAPA +>UniRef90_A0A847NUJ3 DUF1653 domain-containing protein n=1 Tax=Mollicutes bacterium TaxID=37628 RepID=A0A847NUJ3_9MOLU +MDIKIKGIYRHFKGHLYIVECIATHTETLEELVIYRNLETNEIWARPSHMFLAEVNKNNQKYRFELQK +>UniRef90_A0A8B9BS21 vesicle-fusing ATPase n=1 Tax=Anser brachyrhynchus TaxID=132585 RepID=A0A8B9BS21_9AVES +MASSTLYVVFTHRKPPHSPQTSQTAPWPSPEPRPPGGSALPGSPPLAPQPAPEGGPLPAAGSGQLGQLHAHPPVLVGPPPQPCPAAPVMCLLRGISGDDKVPKMLRAGLAQLSLSSMKSAGACIGRPVLLSAAEGRQEVCTAWPTTGFPGGKVGLSETTQKSLKVNLGDAVTVQPVTGAVIQAEEVDVKLRDKDACIKAEEMSVCLLRNLDGKVVLPGNLLAFSFYGKLCNIVVMRVKGTDGTELTAPATSSETQEPDLEKSDLEASALDLSLQLSGLDLDDNPEAVSVSTPSRRMDPASPVPPSSAVASGGHGPAEGALTGSPGVGADLPHGSQPAGTGGREGLLPPGKAGAASSTDSFYYISSRTRIQFVETRTGVADDGDCESRVTYDMIGGLNSQLKTIRETVELPVKQAELFKSYGIPPPRGVLLYGPPGTGKTMIAKAIANEVGAHVTVINGPEIISNPKSVLASTRCRPSIIFIDELDALCPKREGAQNEVEKRVVASLLTLMDGIGSEGSEGQLVVLGATNRPHALDAALRRPGRFDKEIEIGIPNAQDRLDILQKLLKKVPHSLTAAELVQLADSAHGYVGADLAALCKEAGLYALRRALGKRANPSDNEVAGSVMIAFNDFLQGMNDVRPSAMREVAVDVPKVSWSDIGGLEDIKLKLKQAVEWPLKHPEAFIRMGIQPPKGVLLYGPPGCSKTMIAKALAHESGLNFLAVKGPELMNKYVGESERAVREIFRKARAVSPSVLFFDEIDALAVERGSSSGAGNVADRVLAQLLTEMDGIEQLKDVTILAATNRPDMIDKALLRPGRIDRIIYVPLPDAATREEIFRLQFRSMPVSEEVCLVELVQQTHKYSGAEITAVCREAALLALQEDINAKFIMGRHFRYALTVVTPRNPDSLIQFYADYQQQSGLHAL +>UniRef90_L8JDR2 APH domain-containing protein n=1 Tax=Photobacterium marinum TaxID=1056511 RepID=L8JDR2_9GAMM +MIQPQLKRIAGNAYRMMFGLRPEVCNLQETFYGWVVFVASPGSRKAVVKFSREIGRLAKEVQGLERLSQVLTCPVPEVLFFGREEGHDYIMLEWLDGESAHNLPDDPVALEQFRESYTDVLLALHEHQSQKGFEIGDDEFVPDFIQAYESWMSPVLRYVQSSCSPFSSKLKDAYAGLWENREEILSPLNQIASLVHDDCHVGNVLFDPRTYKVAAIVDPCDVGFKHYELDLFHLYDVRPDLRLVERYQEKKKLAEGFEWRRWFFSLWDDAKHSRNMGWYDERWLVSKVALFEASYAGR +>UniRef90_A0A3M7QPY3 Uncharacterized protein n=1 Tax=Brachionus plicatilis TaxID=10195 RepID=A0A3M7QPY3_BRAPC +MNLFIITRFSQIDLIKLNSRQNYVKTTFLRNINNFIFKQYNKEFNFKIFIMIILLYIMDTIDRIIRPLVQTAIGAIMQVLPVTIVLVSFWICGHMASIRYM +>UniRef90_UPI0010AADB8D class I SAM-dependent methyltransferase n=1 Tax=Halorhabdus amylolytica TaxID=2559573 RepID=UPI0010AADB8D +MKRSLDDHAARFDQAADSYDEDGSPEYRAAAALVIEHAAPEPDDVVLDLGTGTGAIALALADDAGAVIGRDISEGMLEQAREKAAERGLESVTFDEGRFREPNVSGDRSVDVVVSNFAMHHLDDDAKREAIETIADLEPRRFVLGDVMLFGEADPEEPFYSPAVDDPATVGVLADALTDVGFALTAVEPVHEQVGVLVAERSEPTEDERA +>UniRef90_A0A8S1JP47 Histidine kinase domain-containing protein n=2 Tax=Paramecium TaxID=5884 RepID=A0A8S1JP47_PARPR +MENKAIKYLGMGLNVLISVFLALTECFIYELSDSIIMDIVLILCGTFFSWIFITQQLGWKKGDISPFFYWALAIKRITLVGTYRSEFIYFLFGFLNGIYSSKLVVKDQKRYFQKARTSFQVILILVLILFNFLTNTFQYQIILIIFNIILLLLLGIYDNIEIQPINSKQQDFNTDQRNTQAELKKCQTIIQQYQSSKSIWEQFNYLTDDWICKIDINKYKFNRSWESKEQSFVLKNFLQENKTNLNQFLNSLIIVGQSSNASVQLQYELQENNTLLQWLEKNYLQENRQNQQNFEKQKQLKDTKTNKQQVQDDQQSILSPQNDGKYIIQKDQSQDFSRLQATPLNMDQQVFANKKFLQCQLCLNQIIYNLNLSIFLIDDDKSNEIKQQSIIIQMKNIDRLIKSEIIDQQRSLFYRFISRLSFHSSQMLKSVCLIKKSIQLQLKEFDSIKSSNFNSSFNDIVLRKSERHIGGLFNAQQTFANQTSEQNTNQKITSTHSNPHESQILNMQQLQIAYFQQSQEIFKQIEKLNFDLIIMKQNNFNFFELFSHTKLDIEQFNILSSFNIVKDIFQQNPLLNQHNIIITQEINHETQVIIQSDRQKFKQILINIINNSIENFEHNFNIKKYQNYENPQIQQRYLKSKQDLKQQNMIVIKAQSDQDRIIIEIQDNGGGIDEEQLKNRLNECKFGLAASQKLLRYLAYDTRKPLEIINYEKCTTGVKGTIIKFVLPITFDNFQQNEDSNQSESLIISNIRDKV +>UniRef90_A0A7S4ARR9 CCHC-type domain-containing protein n=3 Tax=Pseudo-nitzschia australis TaxID=44445 RepID=A0A7S4ARR9_9STRA +EEHSETIEEHVAGLDRILEYPRVNEEIEIEEELAEEDSISSEESDSEFSCGETSSDSGIGSEDSWSTYSYNDLYTESDTDLYSELDSDSEESDGSSMKKSRRLYFGGEKGEFENFMIKWKTRGAKKGYSPYIMDKRHEDLPETGLMMDWTGVAKDVKKRQKKALRLHNYCIADLQEACEPWMVTAWIEESIGTTDEKRRAYPFGRVWIVLKAMITHYRGFSMLDINRFDIDKATIKMLPNENPDAIFNRIYAVRQKYAHQKDLQISDSSWVGLAVNGCTEAYRPVFMSAYSQNKHLPPKEIMAKLKDIAQDNFASMVQSKEIVSKFVTSDEVGLFAGIGPKTAKDKWRKGQECYLCGSKKHKAYNCPKKNQTNTGGGNGGGNGGGKTQNRGKSHANVECYYCHKKY +>UniRef90_A0A7K4MZ21 C2H2-type domain-containing protein n=1 Tax=Marine Group I thaumarchaeote TaxID=2511932 RepID=A0A7K4MZ21_9ARCH +MNFFRRNKEIVITGTTCKFCGMEFSAPDRMVKHMLKAHGKPKKNKGSSCPNC +>UniRef90_UPI00110FA3E4 hypothetical protein n=2 Tax=Streptomyces TaxID=1883 RepID=UPI00110FA3E4 +MSTARYLALIDLLRTREFPAQRRRTESGFSGPGYHTVELSAAGEPAGEPAGEDAADQVEARERCLAEHDALVAVLDGRWGEAQVFGLWSLLERSVGGEAVPAPWDELSAGFDSLHLWRADGRWIAVGLALDAEGPSYALAAVVTGIDPP +>UniRef90_A0A847PHQ1 GTPase n=1 Tax=Candidatus Atribacteria bacterium TaxID=2053509 RepID=A0A847PHQ1_9BACT +MFLKKQNVLIMGAAGRDFHNFNVFFRNNENFNVAAFTATQIPDIAGRKYPPELSGPLYPDGIPIFPEEDLPELIKKHNINQVVLAYSDLPHQYVMERASLVLAHGADFRLMGPDNTMLKAKVPLISICATRTGSGKSQTTRKVSAILKEMGKKVVVIRHPMPYGDLSDQIWQRFKTYDDLDRYECTIEEREEYEPHIDVGNIVYAGVDYGEILKRAEQEADIILWDGGNNDIPFYHTDLHIVVADPHRVGHELTYYPGLVNMMMADVVVINKIDTADQENIVQLRDHIAKIVPEAITIDAASPIKVDHAELIRGKKVIVVEDGPTLTHGEMQFGAGIVAAQKYGAAEIIDPRPFAVGSIKDTYQKYPGIGMVLPAMGYGSKQMQELESTINSIDVELVIIATPIDLSRVMKIEKNNVRVKYDLQEIGSPNLKEILLQKLS +>UniRef90_UPI0005F56F2E NADH-ubiquinone oxidoreductase subunit 8 n=2 Tax=Myrmicinae TaxID=34695 RepID=UPI0005F56F2E +MMGPLQIFTLSGKLAPRFLRIAPKGVSVYLSRNKYYYVREDKEQNWTDIMEAASTHMFFHELFRGFGIILSQVFREPATINYPFEKGPLSPRFRGEHALRRYPSGEERCIACKLCEAICPAQAITIEAEERADGSRRTTRYDIDMSKCIYCGFCQEACPVDAIVEGPNFEFSTETHEEMLYNKEKLLNNGDKWESEIASNIHADHLYR +>UniRef90_A0A1G0YLB9 Methyltransf_11 domain-containing protein n=2 Tax=PVC group TaxID=1783257 RepID=A0A1G0YLB9_9BACT +MSAAEYPETADIETSSDDYAGRFSGPIGEWMLGVQEQIALKVLSDRPGATVLDVGGGHGQLALPLCHRGFKVTVLGSADSCRRRIQGVVDEGLCKFLVGNVVELPFPAKSFDVAMSFRLLPHCERWPTLIAELCRVSRHAVIVDYPTTQSVNAFAPMLFGAKKKVEKNTRAWRMFGQGEIRQAFRQNGFSQLSLRKQFFLPMALHRMLNKPAFSKTAENLCRFLGLTAGLGSPVILKAVWDEDR +>UniRef90_UPI001572454A MerR family transcriptional regulator n=2 Tax=Nocardia TaxID=1817 RepID=UPI001572454A +MKSSRTLTIGELAQRFGLGTHVLRYWESMGLLEPARRAGGQRLYEHADLERVALILMGKEAGLTLGELATVLSTADPRDHRDLLCHHVEELERRITQARAAKELIEHVLACPHSLAECEHAREHIAARIPPLPRNSASV +>UniRef90_A0A8C2IYT9 Slow myosin heavy chain 3 n=1 Tax=Cyprinus carpio TaxID=7962 RepID=A0A8C2IYT9_CYPCA +MGDAQMAEFGAAAPFLRKSDIERLEAQTRPFDMKKACFVPDTEEEFVKATIISRDGDKVTCENSKGTTVTVKEIDVHPQNPPKFDKIEDMAMFTFLHEPAVLFNLKERYAAWMIYTYSGLFCVTVNPYKWLPVYNQEVVLAYRGKKRSEAPPHIFSISDNAYQYMLSDRENQSILITGESGAGKTVNTKRVIQYFASIAASPTKKETSDKKGTLEDQIIQCNPALEAFGNAKTIRNDNSSRFGKFIRIHFAASGKLASADIETYLLEKSRVTFQLKAERDYHIFYQILSQKKPELLEMLLITANPYDYAFISQGETQVASIDDADELMATDEAFDVLGFTQEEKNSIYKLVGAIMHYGNMRFKQKQREEQAEADGTEDADKSAYLMGLNSADLIKALCHPRVKVGNEWVTKGQNVQQVSYAVGALSKSVYEKMFLWMVVRINQSLDTKQPRQYFIGVLDIAGFEIFDFNTFEQLCINFTNEKLQQFFNHHMFVLEQEEYKKEGIEWVFIDFGMDLQACIDLIEKPMGIMSILEEECMFPKASDATFKAKLYDNHLGKSANFQKPRIVKGKPEAHFSLVHYAGTVDYNINNWLVKNKDPLNETVVGLYQKSTMKLLSILFANYASADSGELSKEKKKKGSSFQTVSALHRENLNKLMTNLRSTHPHFVRCIIPNETKTPGAMENPLLMHQLRCNGVLEGIRICRKGFPNRILYGDFKQRYRILNPAAIPEGQFIDSRKGAEKLLGSLDIDHNQYKFGHTKVFFKAGLLGTLEEMRDDRLALIITNIQARARGLLSRVEFQKIVERRDALLVIQWNIRAFMGVKNWPWMKLYFKIKPLLRSAEAEKEMANMKEEFLKLKEAYAKSEARRKELEEKMVSLLQEKNDLQLQVQTEQDNLCDAEERCEGLIKNKIQLEAKAKELTERLEDEEEMNAELTTKKRKLEDECSELKKDIDDLELTLAKVEKEKHATENKVKNLTEEMAALDEIIAKLTKEKKALQEAHQQTLDDLQSEEDKVNTLTKAKAKLEQQVDDLEGSLEQEKKLRMDLERAKRKLEGDLKLTQESLMDLENDKQQLEERLKKKDFEISQLNSKIEDEQVMAAQLQKKLKELQARIEELEEELEAERAARAKVEKQRADLSRELEEISERLEEAGGATAAQVEMNKKREAELQKLRRDLEEATLQHEATAATLRKKHSDSVADLGEQIDNLQRVKQKLEKEKSELRLELDDVVSNMEQLAKAKVLVSTLAFLLFSRQLEEKDSLVSQLTRGKQSYTQQIEDLKRQLEEEIKAKNALAHAVQSARHDSDLLREQYEEEQEAKAELQRSLSKANSEVAQWRTKYETDAIQRTEELEDAKKKLAQRLQDAEEAVEAVNAKCSSLEKTKHRLQNEIEDLMVDVERSNAAAAALDKKQRNFDKVLAEWKQKYEESQSELESSQKEARSLSTELFKLKNSYEESLDHLETMKRENKNLQEEISDLTEQIGESGKNIHELEKIRKQLEQEKAEIQAALEEAEGSLEHEEGKILRAQLEFSQIKADIERKLAEKDEEMEQSKRNQQRMIDTLQTSLESETRSRNEALRLKKKMEGDLNEMEIQLSQANRQASEAQKQLKGLHGHLKDIQLQLDDALRSNDDLKENIAIVERRNNLLQAELDELRSLVEQTERGRKLAEQELLDVSERVQLLHSQNTSLLNQKKKLEGDNSQLQTEVEEAVQECRNAEEKAKKAITDAAMMYFLYTLNNGLNNAFSFHTSCMFVRELENEVEIEQRKASESVKGVRKYERRIKELTYQTEEDRKNLARLQDLVDKLQLKVKSYKRAAEEAEEQANTNLGKFRKIQHELDEAEERADIAESQVNKLRAKSRDTRAAKKTSMMNLVQTDHKYHIN +>UniRef90_A0A6G7V9X9 Purine-binding chemotaxis protein CheW n=1 Tax=Caldichromatium japonicum TaxID=2699430 RepID=A0A6G7V9X9_9GAMM +MSAEHLQEAAVDEEGTESADVHQFVTFVVGGEVFAVDMAPVQEIIRLPAVVRVPLAPSSLLGLANLRGKVLPIILLRRIFGFPEQAHDDATRALVIDVGQPLGFVVDRVASVISVRSEQIEPVAGIQGTFNSELLTGILKDVGGFAMVMVLNFARLVAQEFAEIAQIARGTAMTGGVLDSSADNEDKEASDELQLVSFAVAGQEYAIDITSVQEIVQIPETIVHVPNSPTHVLGLMTLRERLLPLVSLRSLFALPARALDEKSRIVVVALGQAAVGIITDSVSEVLRVPLAQVDRMPGLLAREDALSDITEICRLDGGRRLVAILSVDNMFKHTVVQEALKTVDGMNANTHDEQPGEDRSDEEEQLVVFRLAESEFGVPIESVQEIVRLPDELTPVPKAPAYVEGVINLRGAVLPVIDQRKRLGLPPIERNDRQRIMVFVLNGVRTGFIVDTVTEVLKIPKAAIETAPRLSGEQARLLGRVANLEQQGRMIQLIEPAHLIDTTELADLNT +>UniRef90_UPI001A9564E1 hypothetical protein n=1 Tax=Segetibacter sp. SYSU D00508 TaxID=2810307 RepID=UPI001A9564E1 +MVLITLHEILLVVTAISFLLLPKLFFKYLPSPYEFYCKIASGILLLLVIWIPEPGDQQSQLLLQVLLTLLTTYYMCKNVMEYRKRKTGITHHK +>UniRef90_UPI0020C6B0B3 SPOR domain-containing protein n=1 Tax=Deinococcus sp. JMULE3 TaxID=2518341 RepID=UPI0020C6B0B3 +MIGALVLLLLGGFGTLLLRPQAGTPVSAAADSGTDAPATDTTTLDSVPGAPGSTESTDAATAPVSTTEITAPTGQDSVTSPGSDAPQADGSANPGSVPSTDGADTPVIAAAPIGTPDPTLTDTQTAPQTEDADPASADPASDTPATDPAAPAARTGGAVPTSEQRTPLRSDYRITLGTFGSDAAAQSATQGVGALGYTVYPITVAAGVVAQVGPFADEATAREALADVQRAYPGAVLYPPRDRSLSTPSTPATTGATAETAQTTPAEPATPAPTATTPTYLQVGAFDRLESAQNLVQQLRDLGYNPTVNAPAGKKVTVLVGPYTGDPLTRTETRLQENGLDSFRVR +>UniRef90_A0A2Z6TDT3 Spore coat protein n=1 Tax=Burkholderia vietnamiensis TaxID=60552 RepID=A0A2Z6TDT3_BURVI +MRALRRSFQPYFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFQPHFDPNSPPYSQPPP +>UniRef90_A0A5Y2QT59 PLD phosphodiesterase domain-containing protein n=3 Tax=Enterobacteriaceae TaxID=543 RepID=A0A5Y2QT59_SALER +MNQLIHNAEHYIYIENQFFVSAFGEPSVPDNAPYSPEAKEIARLDRIKAVTTKLVYGDSDKQPVNQIAQWLGDRIKNVIYARYTHDFHVCIVLPVHPEGKLDDGAVMAQVHLTRQTLVSGSKSLLNRVRQALWVRQQLDEDPRANWSKLIPALEKRCETEKKYEEISFEACAKYVTLLNLRGYAELAAYPDKKIAVTEQIYVHSKLMIVDDRYVLVGSANINERSLQGNRGYLATVLAGAGSNLALEGTPV +>UniRef90_A0A1J9RUE5 Cation chloride cotransporter n=1 Tax=Diplodia corticola TaxID=236234 RepID=A0A1J9RUE5_9PEZI +MASRGGSSRMPSRLHSRSNFTTRSAQDDSHQLQRRWSLSQMSAQDEAEPLLAAGPRRRRPVSVPRENRTFGSFLSALFTRRASTRSRSGHRRTRSSGTDRCKPASAPAKLGTFAGVFVPTTLNVLSILMFLRFGFILGQGGLLGMMGLLVACYAINLLTTLSVSAIATNGTVRGGGAYYLISRSLGPEFGGSIGIVFYLGCVLNTGMNAVGLVACFVQNFGSTHGSWANWLPDDFWWQYLWATVVLAVCTVICLAGSSLFARCSNALLIILLVATFSIPVSTLVQTPFSNVKLGIEYTGLSLETLKGNLLPNLTQGAAGSGLKGRETWQDLFGILFPATGGIFAGASMSGDLEAPSKSIPKGTLYGLALTFVTYTIVIISMAASITRLSFYNNDNVIQVVNVSGALVLLGEFASTLFSTLMGVIGSAKLLQALARDKLIPGLLVFAQGSKAADEPMLAIGLTYVLSQLTMLADINQIASLVTMAYLMTFLVTNLACFLLKVASAPNFRPSFHFFNWWTAAIGAIASALTMFFVDGLSASACFATIVLIFLIIHYTTPPKAWGDVSQSLIYHQVRKYLLRLRQEHVKFWRPQILLFINDPRRQYKLIQFCNSLKKGALFVLGHVIVTNDFAGAVPEVKKQQSAWTKYIDFSRIKAFISIVISPNIEWGTRNVVLSAGLGGMKPNIVVMGIYNLNDLRTNPLVDVPSPQPEHTQGTANGTAPHRLKSKGKWKIAEENKLRGQLPTDAIRKESAVTPQSYVTILEDLLLRLQMNVAIAKGFQDLELPAPRPSRLERVLDALHAKSADEEEGTKKYIDLWPIQMSAEVAAPSDGTQSILTTNFDTYTLILQLGCILNTVPSWKRAYRLRVAVFVEYESDVEEERARVKALLYNLRIEAEVMVLWLASGDLQSYEIIVNGQADESYREARQDIEEALREEAWWQDIQKLRQRQTGAITPMEELAQIEGFLETASNWPGTAFRQGDRETKSKRFADIKDMLIERRRTSVGSLKQMGVSMGMRTHRLPPGLDGQESSSDGSSSGGESEAECSDSDRSASSENDPQTESDEGTLSPMRRARSERESTSSFPSTPRQQSQPRRGELLPPAPTAAANSDSTLVTSQPPTNAGSHQSPPTFTSKPVPRTEVAADDGPGPSIMFAEPLSPEEQRERRFGTSIYTRSGSPQVAAPLPGPANPDESGSDSPSTPGSPGAASSSMSQASGFPLQQSVPLSFNDLPCRAQHLILNELIRRESGKDQRTAVVFTTLPSPVEGTCEDEHASVRYLADLEVLCQGLPPVMLVHSNSMTVTTNL +>UniRef90_UPI001F1A8850 DUF6338 family protein n=1 Tax=Pelomonas sp. P8 TaxID=2906762 RepID=UPI001F1A8850 +MNLALPTVVVFILLLPGFIFRSRLKRVERTSLDFSPFGAVVAEAVFFAAVLHAAALLLLFWVTGALPDLALLLTLLAPSPAPLNAIPAIGQHAGLVTGYFGLLLVASWLVPTLTRWLITVGRLDRLGHPLSPIARFHQAPWYYLLTGADFAADELPDYIRVTAVVDVGKGAVLYRGTLEEWFTNPDDGQLDRIVLSAASRRPFELDKPLDGSDGGAERFYPIDGDYFVLRYEHMLSLNVQYMRIIEQPDDDLPDDEEADTPAAQ +>UniRef90_V4QRW5 Methyltransferase n=1 Tax=Lutibaculum baratangense AMV1 TaxID=631454 RepID=V4QRW5_9HYPH +MQSEILEGYATAGPELIALYEAVPSAEIYALVRDLLPPGPARAADIGAGTGRASPRCWRRPGS +>UniRef90_A0A0D3GCY4 Uncharacterized protein n=1 Tax=Oryza barthii TaxID=65489 RepID=A0A0D3GCY4_9ORYZ +MNLSATYDSRTSDVESSVVARGDLWRAEASHSSAAAAAPPLFMVQLGPVLFVRDTTLLFPVHLSKRHLIWYGFERKNGVHSVCPAYWSAHRRWFFMSMICLNPFTCSFMDMQFPNGQLRYVAGDGFTTRAFLPLYRGIFQAHVKFPGEKKFSYSFKVSCQMNSKPYLNLLHLNSEVSLLHHIARLVLLTIFFQNRSGGSITPMVQWPDKSLSLGTVQTLSWKRCGLIICPTFGGSRPGLSMELIHSVNENAGVVCGYSHTASPSAYASVSIGRSKLNGSAASSGLVLRVDAPLQSFGRPWFSIQMNSGLEF +>UniRef90_K3XLW2 Ras-related protein RABE1c-like n=2 Tax=Setaria TaxID=4554 RepID=K3XLW2_SETIT +MAAPPARARADYDYLIKLLLIGDSGVGKSCLLLRFSDGSFTTSFITTIGIDFKIRTIELDGKRVKLQIWDTAGQERFRTITTAYYRGAMGILLVYDVTDESSFNNIRNWIRNIEQHASDNVNKILVGNKADMDESKRAVPTAKGQALADEYGIKFFETSAKTNLNVEQVFFSIARDIKQRLSETDSKPEDKVVNIRQDQGAEASSSQKSACCGS +>UniRef90_A0A8C0C567 Uncharacterized protein n=2 Tax=Accipitrinae TaxID=8955 RepID=A0A8C0C567_9AVES +MSKQVVNSSETVTPGPNEGTGVVGISPENEPQNAPSQAPAAMARLPRSLSNDNKTLSSEEAKPNDFERTKVGICKLSSTPVQANSTLQRESVETFPCKHTPGAGVAGQAAIPHCKIPALQSTDGDANLNLGKSTLEQNNAKGAWVTLSQSTVVLGTDGNTSVLPGRVEGVSWLLVGFLSPAFNSWE +>UniRef90_A0A2B7X7V6 Replication factor A protein 3 n=1 Tax=Polytolypa hystricis UAMH7299 TaxID=1447883 RepID=A0A2B7X7V6_9EURO +MSLSTPRLLPEHLHAFAPAPHKSARTVRILGTVSSLRGEHASITCGSHGEVTLVLNRDSHIQMGRVVDVIGKVVEVEGGLGVRVLGAADCGDPKDVDYKIYEELVDVTHRFKEIFYDE +>UniRef90_UPI001663C50F hypothetical protein n=1 Tax=Belliella aquatica TaxID=1323734 RepID=UPI001663C50F +MKKVLHTLAAILISVVSYAQVGIGTDNPDNSAMLQVASSEKGFLLPQMTSTQRNAVSSPANGLQVYDTTTNSIWFFNGSYWVNTQAMATVGDVKSGLQTNDHSGWVLLDGRSIGTLSDNQKAAASALGLSGTLPNAADAYLVQNGGSMGAISGSNTVTLTQANLPNVSFSGTAASAGGHTHTVDPAPVDTDSKGNHTHTVDPAPVNTDTKGEHTHTGSVGGSNWLGGGTLTGGFNAGTFPFQIPNLTINPAGDHFHTVDIPSTTSSENGAHKHSIDIPSTTSSSNGAHTHDVTVSSGGSATPVNVAPKSLSVNMFIYLGL +>UniRef90_A0A3Q3E9K7 Hydroxycarboxylic acid receptor 1-like n=3 Tax=Hippocampus comes TaxID=109280 RepID=A0A3Q3E9K7_HIPCM +MDLDLRSTPAPGGGGGGCPPVGIQLEGVILPPVLTVDVVLGLLGNAVALWVFCFRVKSWSANTVFLVNMVAADFLALVSLPLRIDALLRGHWVFGDVVCRLNLFLMFSNRTASIALMTVIAFYRYVKVVHPHHRFNRMSKRQAGILSLVVWLLVSSPRVPMLAYNHIKELFLKKKTSFTITNYFKRYLKRLLAGIVILVETHRVLTVLEFVIALALLVFYSVQISRSLKRRQMGNVAKVRKAMRVCAAVVAIFLVCFLPTTITTLGLWVSRSLRPWDCAAFYALTQLNIVSLSLNFLNSALDPILYVFSSSVFRKELLAAVPPRLRCKRAVEGTSSVSTSQSTGQVELESVKMTAGSEAS +>UniRef90_A0A3N0Y0W4 Complement factor I n=1 Tax=Anabarilius grahami TaxID=495550 RepID=A0A3N0Y0W4_ANAGA +MPYKCPRQDYHVCTLDGSEYYSMCQTKAISCRSNKPVFSHISTTCRAEEKVKVTVEDSGSHKVVMINTRLGKMFVCGNDWNMAAANVVCRNPLNVARGAAEVTKIKNRILDRDTKWPTECMSVRCTGSELSLAECTIYNPQPITENTVAIAKCYNEPKGAFSSF +>UniRef90_A0A124ILI9 30S ribosomal protein S15 n=1 Tax=Gracilibacter sp. BRH_c7a TaxID=1734398 RepID=A0A124ILI9_9FIRM +MLTPEKKKDIITKFQQHEGDTGSPEVQIAILTTRINELTEHFKTHKKDHHSRRGLLKLVGQRRALLNYLKKNDVNRYRKIVSDLGMRR +>UniRef90_A0A4C1ZDE1 Tubulin_C domain-containing protein n=1 Tax=Eumeta variegata TaxID=151549 RepID=A0A4C1ZDE1_EUMVA +MTVSFLCSGGDAPPQGLCFQNLNMRIHSYAHSNIFAEYYTSYVTDALYKQISKPKFSFWARRGKTVVALCVPFGVSPYRAALSSSPYTDREFLDSSVNIMRRAHDQSIGGGSAVWDLTIKRRPLRDRGVRYETCTALCE +>UniRef90_A0A2J6IBB8 Endonuclease/exonuclease/phosphatase n=1 Tax=Marinilabiliales bacterium TaxID=2053303 RepID=A0A2J6IBB8_9BACT +MKILKLIFFIALSVNLSSQSIMSFNIRYNNPNDGNNSWENRKFELTDLITKYRPDIFGIQEGLYEQNEYIKEQLANYTYVGVGREDGNKKGEFSPIFYDSLKYELIETKTYWLSDTPSEVSVGWDASMERISTFGAFRNINTKDTLYIFNCHYDHIGKKARRKSSKLIIKLIEDKGLLIKNLVVMGDLNSMPEDAAIKILKNKLTDSFEVSNYLKEESIQTYNNFDNQYISNKRIDYIFTRNIYVSSHKIIREKRSNGLFISDHFPVLIQFRNN +>UniRef90_A0A0F2Q2J6 Cupin_2 domain-containing protein n=1 Tax=Clostridiaceae bacterium BRH_c20a TaxID=1629719 RepID=A0A0F2Q2J6_9CLOT +MNKKIRDEIERSLNLKIIDEQSFSWGESYSLQLESKMDFDKYSKKNSRNVAVVTVKPNIKHESHTHYGYDEILYGLEGETIHWANSKKTYLQKGQLVLIPAEGQHIMVNNSPVPAKFLSIVYPTIPERWRR +>UniRef90_UPI00037CD391 VWA domain-containing protein n=1 Tax=Gilvimarinus chinensis TaxID=396005 RepID=UPI00037CD391 +MANSLIRVSVLLWAAFFCFHSHAQSPSPSAALVDADVRLLVDISGSMKNTDPDNLRQPALELMVKLLSESAYGGVWTFGEQVNMLVPFSRSDEDWQRRALEQTSRINSVGLFTNIGEVLHRATEVPAKTSSADVILLTDGKIDVDKNAGVNSRERNRVLSELLPEIAEKNFRLHTIALSADADSELLQQLSRTTDGHHLVAKNADELMQAYLQIFDQAVPAKRLPLENNRFLVDDQVNEFTALVFRAPTAEPTQLLMPDGKALSASSHGDNTQWYSADGYDLITITNPAAGRWQLKAQESAQNRVTVVSDLQLYVESLPNNLLAGNALTLAYALQEKGNNLTDADFLDLITAEIVVMNVTRDVSWNLALTDQPDKATGVFTHELPTFNERGQYRLRLRVDGKTFAREFQHQLQVGSMFAVQLDKAVQSSQVKYTLNVKTDSEFVNTDKTSVVAHVKHSSGESELRALKKVSDTQWQLTLTPAKPMRTLIELNASGELTDGREFNEVLPSQYVQFPQEGDPLVVQEDSELAMLKQQIETERAALANEERLADTVAKTPAAKSQTSSPVSESQDDKQEAGFESGPDSAEETDEGGINWPMIAAITLGNLLLIGGLYWAYRRFSAKDVQSELDEIEQQLQAAPNEPSGQATEQQKKEAVALDDDNSVSVLDSLDESSLPMDDFSFDDESDKK +>UniRef90_A0A853FEG6 5-formyltetrahydrofolate cyclo-ligase n=1 Tax=Pusillimonas soli TaxID=659016 RepID=A0A853FEG6_9BURK +MNDSTRNNATPLRTRLKQRRAAMDPVERSRGALLIRGRLYTWLATTRTRLREAGRPVPENIAAFWPLDEEPSLLPLLQQWVEEEGYRVSLPVVTVAGAPLQFRIWTPDAPMQPGAYGIHEPAGEIAPPPDIILVPALGYTRQGDRVGYGKGYYDRTLAALREQGHAFTSIGIAWATGDLSGDSHAPEPHDYRLDSILTDKGWAVPAPVIA +>UniRef90_UPI0021E303A4 FERM domain-containing protein 5 isoform X1 n=2 Tax=Acomys russatus TaxID=60746 RepID=UPI0021E303A4 +MLSRLMSGSSRSLEREYSCTVRLLDDSEYTCTIQRDAKGQYLFDLLCHHLNLLEKDYFGIRFVDPDKQRHWLEFTKSVVKQLRSQPPFTMCFRVKFYPADPAALKEEITRYLVFLQIKRDLYHGRLLCKTSDAALLAAYILQAEIGDYDPGKHPEGYSSKFQFFPKHSEKLEKKIAEIHKTELSGQTPATSELNFLRKAQTLETYGVDPHPCKDVSGNAAFLAFTPFGFVVLQGNKRVHFIKWNEVTKLKFEGKTFYLYVSQKEEKKIILTYFAPTPEACKHLWKCGIENQAFYKLEKSSQVRTVSSSNLFFKGSRFRYSGRVAKEVMESSAKIKREPPEIHRAGMVPSRSCPSITHGPRLSSVPRTRRRAVHISIMEGLESLRDSAHSTPVRSSSHGDTFLPHVRSSRADSNDRVAVIADEAYSPADSVLPTPVAEHSLELMLLSRQINGATCSIEEEKESEASTPTATEVEALGGELRALCQGHGGGPEQQQVNKFVLSVLRLLLVTLGLLFVLLLLLIILTESDLDIAFFRDIRQTPEFEQFHYQYFCPLRRWFACKIRSVVSLLIDT +>UniRef90_A0A485M2C4 Transcriptional regulatory protein ZraR n=1 Tax=anaerobic digester metagenome TaxID=1263854 RepID=A0A485M2C4_9ZZZZ +MPSKERKLAKKNIRILIIDDEESIRDGCQQILTRQGYEPTATADGMTGLELARTGAFDVILLDLRMPRIEGLEILRILKSEHPVASKIIVITGYGTIPVAVEAMRLGAHNFITKPFSAAELKLAVQDCLSEKSEERPTGDSLSMIIGTSDYVEELKETIRRVAKTDSTVLITGESGTGKELVARTIHSLSARSNKPFVPVDCSSLVHNLMESELFGHIKGAFSGATENRDGRFQTADKGTLFLDEISNISLDVQAKLLRVIQEQEVPRVGSSIPEKIDVRLITATNKDLRVEVQNGTFREDLFYRISVVPIHIKPLREHRSDIAPIAFHYFDIFRSRHGSKAQSLSPEVVKSLTSYTWPGNIRELKNTIERLCVLCDHEEVTLSDILYYGQDTCSKAPVVDPFSGKMTLVEVEKEHIEKALHHFNNQINKTARFLGIDRKTLRTKIRNYGIEIKDDE +>UniRef90_UPI00103184EA hypothetical protein n=2 Tax=Streptomyces TaxID=1883 RepID=UPI00103184EA +MSAGNNGMSTPEGGDDPFGYLYRPEDGQAPAQQPQQPSYHQVRPVGERRPYGGQRSGYGYPQPQSAPPQHDPHYAAPEAQPGGGGYHSGGPPGPYQNGGEPPRRNTLLIGAIAVVTAVVLGVGAALLFSNNDAGGDDDRADDSSEVNPTPDVPDDEDEGDTDEDGADEDETGEDEEDPEDSGDLPVADFNGADITLSNGAIVGGGQLEGARSSDGSYITGLNNNNSTVSWQFDFDGTPGDYRVYVGYTVEDGDQLMSWAINDSLRGDELEFKDHRKSGAYKDNWTYTWKQVYLNEGSNLLQIGCGGDDTCDVVIDGLVVTPHADGMEPW +>UniRef90_A9YMW7 Ac78 n=2 Tax=Betabaculovirus TaxID=558017 RepID=A9YMW7_9BBAC +MQQHLDIPFDRLTVPDVVDAIPLKLAYSKESDDNNKPPVVPSAQAVYGSREEKSAQSDMSNVWFIALACITVLVVIMLISYYIVSVLRTNNAPLRDYDDDDFE +>UniRef90_UPI00188515FC mitogen-activated protein kinase kinase kinase kinase 4 isoform X15 n=1 Tax=Peromyscus leucopus TaxID=10041 RepID=UPI00188515FC +MANDSPAKSLVDIDLSSLRDPAGIFELVEVVGNGTYGQVYKGRHVKTGQLAAIKVMDVTEDEEEEIKLEINMLKKYSHHRNIATYYGAFIKKSPPGHDDQLWLVMEFCGAGSITDLVKNTKGNTLKEDWIAYISREILRGLAHLHIHHVIHRDIKGQNVLLTENAEVKLVDFGVSAQLDRTVGRRNTFIGTPYWMAPEVIACDENPDATYDYRSDLWSCGITAIEMAEGAPPLCDMHPMRALFLIPRNPPPRLKSKKWSKKFFSFIEGCLVKNYMQRPSTEQLLKHPFIRDQPNERQVRIQLKDHIDRTRKKRGEKDETEYEYSGSEEEEEEVPEQEGEPSSIVNVPGESTLRRDFLRLQQENKERSEALRRQQLLQEQQLREQEEYKRQLLAERQKRIEQQKEQRRRLEEQQRREREARRQQEREQRRREQEEKRRLEELERRRKEEEERRRAEEEKRRVEREQEYIRRQLEEEQRHLEILQQQLLQEQAMLLECRWREMEEHRQAERLQRQLQQEQAYLLSLQHDHRRPHPQPPPPQQQPQQDRSKPSYHAPESKPHYDPADRAREWSHLASLKNNVSPVSRSHSFSDPSPPKFAHHHLRSQDPCPPSRSEALSQSSDSKSEVPDPTPKAWSRSDSDEVPPRVPVRTTSRSPVLSRRDSPLQGSGQQNSQAGQRNSTSIEPRLLWERVEKLVPRPGSGSSSGSSNSGSQPGSHPGSQSGSGERFRVRSSSKSEGSPSQRLENVAKKPEDKKEVFRPLKPAGEVDLTALAKELRAVEDVRPPHKVTDYSSSSEESGTTDEEEEDVEQEGADDSTSGPEDTRAASSLNLSNGETESVKTMIVHDDVESEPAMTPSKEGTLIVRQSAVDQKRASHHESNGFAGRVHLLPDLLQQSHSSSTSSTSSSPSSSQPTPTMSPQTPQDKLTAHETQSASSTLQKHKSSSSFTPFIDPRLLQISPSSGTTVTSVVGFSCDGMRPEAIRQDPTRKGSVVNVNPTNTRPQSDTPEIRKYKKRFNSEILCAALWGVNLLVGTESGLMLLDRSGQGKVYPLINRRRFQQMDVLEGLNVLVTISGKKDKLRVYYLSWLRNKILHNDPEVEKKQGWTTVGDLEGCVHYKVVKYERIKFLVIALKSSVEVYAWAPKPYHKFMAFKSFGELVHKPLLVDLTVEEGQRLKVIYGSCAGFHAVDVDSGSVYDIYLPTHIQCSIKPHAIIILPNTDGMELLVCYEDEGVYVNTYGRITKDVVLQWGEMPTSVAYIRSNQTMGWGEKAIEIRSVETGHLDGVFMHKRAQRLKFLCERNDKVFFASVRSGGSSQVYFMTLGRTSLLSW +>UniRef90_A0A0S9PKG7 4-hydroxybenzoate polyprenyltransferase n=3 Tax=unclassified Agreia TaxID=2641148 RepID=A0A0S9PKG7_9MICO +MSAAFAAASVGLFTPTTDTPGAHTWSSAILLFVIYLALLLRYRVTDEWKDFAHDSAVYPDRPVQRGVVSPRTLFVIGAGAFAVELLGVLLIGGALGFVLYLPVLAYSALTVFEFFSAPRLERHFTLSFVLHEAIYLPLFLWVAVVLGAAPDWRTAAGVLACTALFVSVELARKFSPRFDTEGRVVLDTYSAVWGRGRTLGAMVVLVVLSGVLATTAGAGLASPVIAVVAAAVALARPASDRWVTTVVAIHLPLQAAAMLS +>UniRef90_A0A835JN83 Dentin sialophosphoprotein-like n=1 Tax=Salix dunnii TaxID=1413687 RepID=A0A835JN83_9ROSI +MDLEHGSGTHSESHQEVIDGTGGSDNEDTYPRLRVRIGSSGRLQIDPEKIEGSESGKYSESHSEVINGSDSDKHIEPKPEFTVIEGDIYMPTIKFGSSYSSSSSSSSPSSSGSSLYDLFDVIPKESADPGAGSADFESSNKPHEVTQPASKDHENGVSIDNSHRSEENEDGSSDHALTPPVSGATCESLAHNMSPKQSPPLQVMERPGGYDPLRIPSSIFENNKGTQPMDWSVASNESLFSIHVGNNSFSRDHVLLFGDPGKSGDITKSGESIMFSPLPPREMVTNDNQSSVPDMETNKQKGGSSGMADNTVKDPAEYQNEEDNTNQAVSWKSPSSSNRSYGSGDSVKSFSFPIKASTLAHIMPKFTFSLLYMDVFIFADLLCEFSPDRNACVLGMLVFYA +>UniRef90_A0A0Q5NNY0 Response regulatory domain-containing protein n=2 Tax=Pedobacter sp. Leaf176 TaxID=1736286 RepID=A0A0Q5NNY0_9SPHI +MRYKILIVDDDEIALFLHEMVVGDCGPIDDAETFSSAETALSYLGDINDGSCEYLILLDINMPQMNGWEFAEVVKNHPLREKIKIVMVSSSVEKKDIERADSSVVIDDYLIKPLREEQILTLKEQPKFRAFFNDHQ +>UniRef90_UPI001D111BD5 2-oxo acid dehydrogenase subunit E2 n=1 Tax=Haladaptatus pallidirubidus TaxID=1008152 RepID=UPI001D111BD5 +MVEIIRIPKLGLSDYGDLVSWEAEDGEHVTAGDVVAIIESEKASAEVEAPTDGTLLGRYVEEGEEIEIEVGKPLAVIGDEGEEIPDISAIEDGSEVSTEGNSGKDNSSKNRATSSDDGSDVITDVKATPRAKRLATEKDVNLKQIEGTGPQDAVSEEDVQAFLESSDTDTKGDEQEVETEQSSSAGLTVTDSRKLTGTRKTIAKRLSQSAREKPHVMGTREVSVERIQALQSRLSERYGVEVSLNDIILFFVGRVLQDLPEFNAHFEDSQHKLIDEVNIGYAVDGPKGLVVPVIDDVTGRSLAELAERRRNLVGKVLDNEFTTVDLQDGTFTVTNVGVFNMDVSYSIINPPEVGILAIGRRKQAPVERDGEVEFETVVTMSLTIDHRVLDGADSGAFLECLAEYLEYPGNALESVQNEQESV +>UniRef90_A0A7Y3X359 DUF637 domain-containing protein n=1 Tax=Flavobacterium sp. CLA17 TaxID=2724135 RepID=A0A7Y3X359_9FLAO +MPTLSNLVAPKLGFSNGLVGNVMTGLLSNVISKAVQPNYTAQMNRQADEVGTRLLTTVGYSQSSLMNVSSSTRHAQIRAKVQQLIGSNSSSSWWSSGR +>UniRef90_A0A2H0L707 IPTL-CTERM sorting domain-containing protein (Fragment) n=1 Tax=Candidatus Peregrinibacteria bacterium CG11_big_fil_rev_8_21_14_0_20_41_10 TaxID=1974792 RepID=A0A2H0L707_9BACT +DADNNGIGDACDDPIATCEGVVLAPNCTTGNLCDNGDTMPGTEVCNIPNGVVEITCEDRPELCTDNCTDPTIVLNISRHTGDLCDTGEFCADGSERSGHWEVGDNCNYYPDECKVECDAFCVPNPNEECVPVTNNGEVTNNGGITNNGQIANNGDTHNNDTTNNGGDKIPAAPDTGCNVSTIDTPLQARDQIWALLMLAMAAGAMGYSKQRK +>UniRef90_UPI0020C3A1E9 DUF2243 domain-containing protein n=1 Tax=Halomarina sp. BCD28 TaxID=2961595 RepID=UPI0020C3A1E9 +MARTTTRRALVAAGVFGFGFSGLIDVLVLHHVLQLHHLVSGLYPMDTLSGLRTNIRADGLFSLAMVGIAGVGAGLLWQSERRTEAPLALRPVAGAALVGLGAFDLFDVLVDHVLLGLHQPTMQGGVYNPHWAAVSLLFVAAGWLLYRSGRDAEDVTRDTAETANDRTE +>UniRef90_A0A6P4XS04 protein timeless homolog n=1 Tax=Branchiostoma belcheri TaxID=7741 RepID=A0A6P4XS04_BRABE +MDLYMMNCELLATCSALGYLEGDTYHKEPDCHETVKDLIRYLRREDETRDIRQQLGASQIVQTDLIPIIKQYHDDKALFETIIRLLVNLTQPAIVCFGKVPKDKMFRHYFLDVVSYLQGYKVAFADGEVWTVLSRKLYELLQLDWENRQEEDSLLIERMLLLVRNILHVPADPEEEKRTDDDASVHDQVLW +>UniRef90_A0A7C3W5F8 4-hydroxythreonine-4-phosphate dehydrogenase PdxA n=1 Tax=candidate division NC10 bacterium TaxID=2072417 RepID=A0A7C3W5F8_9BACT +MKRPLIAVTMGDPAGIGPEIVVKALQDEEVMAASRPLVIGDRGVLEQAARFCEFQGKIRVVGGPEEGAYTLGTIELLDLENVELASLKIGAVQGMCGRAAFEYIQKAAELASSGRVDAIATAPINKESLRAAQVDFIGHTEILSALTGATDPLTMFQVRTLRVFFLSRHVPLQRACELVTRERVLSYIQRCSEALRQIGVAEGTLAVAGLNPHSGEHGLFGEEEVKEIEPALREAQRLGCRVVGPVPADLVFHQALQGQYSAVLSLYHDQGHIPTKMVDFERTVSVTLGLPFLRTSVDHGTAFDLAGTGKASAASMKEAILVAARYLRDFRRP +>UniRef90_A0A1G3PK91 DUF4294 domain-containing protein n=1 Tax=Spirochaetes bacterium GWF1_49_6 TaxID=1802189 RepID=A0A1G3PK91_9SPIR +MKHTLFLLLLLSCFSHLFAAPVNYPEIFGQDFMKALNISIEIKAQVVKLSKEMKADPELVLPAAFPELIRYSLFRDSMELFTLEVFYVNFGSGVNDFSVGIFQMKPSFVEQMENYLNTHDELKMYRPVFVYKFPNDPSAVRKERIERMTKIDWQIRYLVLFSKIAEQVFPKQPGQTKSELVKFYAGVYNTGFWKTKEQILKTMALNIFPNGMSYPGEQNNYSDIALYFFENYWQKFLKDDSIKSFPLR +>UniRef90_A0A6A5RRK3 4F5 domain-containing protein n=1 Tax=Didymella exigua CBS 183.55 TaxID=1150837 RepID=A0A6A5RRK3_9PLEO +MKETAHAEKLEKANVKELKAANKLYNNKIKEQKREAAAAAKEVRDRKCAEERVAIDARKAQRLKDKQARDAQKASQLPNKGKRKASKAPQAPAAKKRRSAQPRSGAVAAAAAPPRGTHTTRSGRTATLYK +>UniRef90_A0A7W8D7Z3 6-carboxy-5,6,7,8-tetrahydropterin synthase n=1 Tax=Chiayiivirga flava TaxID=659595 RepID=A0A7W8D7Z3_9GAMM +MPLTIFKVFQLEAAHRLPHVPPGHKCARVHGHSFKVEVHVGGPLDPTLGWVMDFADVKAAFAPLHEQLDHHYLNDVPGLDNPTSERIAQWIWERLQPTLPGLARVVVHETCTSGCDYRGPTA +>UniRef90_UPI001069C9AA uncharacterized protein LOC114541692 isoform X1 n=2 Tax=Dendronephthya gigantea TaxID=151771 RepID=UPI001069C9AA +MEKDKERSDKNVNEVQPVQTVPVERRVKTKALKGIYHSILMQNSKKTKSIEEPPPVKKQCVSAEEDDAPDDDDVYTTTMIEKQTYCALIPQKFKSLNDLCFSGVLQNCLAVISNVFTPKLAKNGNHFLKISITDPTHYGSYELMWFSKPTEFPNIYRTGEIVLLKGIKCQKYNEIHQILKNFTTNICVIPLDDDPPLMKKARQPLERYESKFGDAIKFLKKWRNSNITATTFSQLDVITTAVEGSSFNFCVKIMKLTELTCDSYCLTVWDGSRPSLQARAREENSNAKANACDVDEEELVDIIVLDQNRSIKKYNLRPLNVLALYDVTLNTDRRLELNMENEESGFTVVKPYCHVARYVPAREQRQEHTWNFKGW +>UniRef90_A0A356NIC5 Probable dual-specificity RNA methyltransferase RlmN n=3 Tax=Verrucomicrobiales TaxID=48461 RepID=A0A356NIC5_9BACT +MLPSLQSITPEILKSQLVDWKQPAYRGDQILDWVYHKRAVTVDSMSNLPKDLREQLDKNFKCYLPDCMQKQGSDDTTQKFLWKLNDGAFVESVLIPANPALYGEASDRHTLCISTQVGCAYGCKFCASGLDGWKRNLEPEEILGQLLAIEHHFQPKLKQGQGRKVNNLVIMGMGEPMANYENLMKALKIANAPWGCNIGARKITISTSGLAPQIVALSREPFQFRLAISLHGATDEVRSRIMPINRKYPIKDLMDACRQYLNKKGKMITFEYILIEGVNDGQNQIQPLADWARELHAKVNLIPYNTVEGLPWSRPEEDIQESFLEGLLSRGINATLRREKGHDIDAACGQLRLKVEKGLTE +>UniRef90_A0A1V5K701 Cell division protein FtsL n=1 Tax=Candidatus Aerophobetes bacterium ADurb.Bin490 TaxID=1852830 RepID=A0A1V5K701_9BACT +MAEFSNRFLRGLNAGSVRPARGGANKAVGLILLLSLPFLLVVWFYTQSAKLSYDITELTRERDSLKSQNKMLEMKVQVAMSGSGIEHIARERYGFRPAKPGDVQVIKKEYGALGLF +>UniRef90_A0A8H3UYL2 Carboxypeptidase n=2 Tax=Venturia inaequalis TaxID=5025 RepID=A0A8H3UYL2_VENIN +MSRFVALIACVFALLNGLSIARETMDERARSSRQRRSEMMTPVRRSPLESRDNSTWRFLNSKSQAYAVDSLPDLDFDLGEMYAGQIPIGNDTSRNMFFVYEPTISEPVDEVVIWFNGGPGCSSLEAFLQENGRFIWGWGQYSATENLYTWVNLTNVLWVEYPVGLGFSTGNVTATSEEETAADFVAFFKNFLDIFAIKNFKIYVTGESYAGRYVPYVSAAMLDENNKESFDLAGALMYDPVIGQYEYVGQTIPAVPYIQEYSKFFNFNQTFMDQLASAHESCGYADFIDKYMVFPPAGVQPWLEGGFNNKSAECDVWDLAWAAAFQPNPCFNVYEISSMCPILSDPLAYPSDLQYQYDGMGGIYFNRSDVKAAIHVSQDLSWSECSGPVFVRSAGGLYGNGDTSLDPIQYVLPKVIEATNRVLVANGDYDFELITNGTLLSIQNMTWNGALGFQSAPTTEIDITLPDLQWQATFEASGLGGYDGPGQGIMGVQHYERGLMWAETFQSGHMQPQFQPRSSYRHLQWLLGHIDTLYVAKAMTNPENEYVSLNKQRCMNEVLVAQADEVKNLLIGAFNTPPGYRPAHAKGTVLTGTWTPTTLPSPLTKAWHIQTPTTVLARFSNNTGIPTIPDTDPNATPKGLALRFNYPPAAADGKRKHTDIVAHSTPHFPARTGAEFARFLKALGEGAAAVDGFLGTHPHTLEFVQAAKPLPVSFGTEAFFGLNAFKFVAGDGVETYVRYEFVPVAGVAHLSDEQARGKGADYLAEEIRERIGRGPVGIKLIVQVAEEGDVVDDITVHWPAERAKVELGTVWLDAVDEEGLETQKKTIFDPIPRVEGIEPSADPILDFRAALYLISGRERRAA +>UniRef90_UPI0003871D39 macrophage-capping protein n=4 Tax=Falco TaxID=8952 RepID=UPI0003871D39 +MAPSDPRSPPERANPPGGTRGGAVRPPGVRLAVRRLHIWRVEKLRPGEVPKATWGTFFSGDAYLVLHNGPDERAHLHLWMGRDSSRDEQGACALLSTQLNALLGERPVTHREVQGNESDVFMEYFPRGITYQEGGVDSAFKPTRPSAGAGPVCKLYQVKGKKNIRASEQDLSWASFNTGDCFILDLGETLFVWCGARCNILERSKAQELAMAIRDGERGGKARLEIVVDGEEPPEMLQVLGPKPTLQEGSPEEDVVADQRNAGAAVLYKVSDMTGRMDLSQVATSSPFSQSLLCSDDCFVLDDSAGGKVYVWKGRKASEQERQAALKVAEEVITRMGHSPRTQVEILPQGHETPLFKQFFTSWK +>UniRef90_UPI002022F6CD restriction endonuclease subunit S n=1 Tax=Pediococcus acidilactici TaxID=1254 RepID=UPI002022F6CD +MSNKVPQIRFNGYSDAWEERKLGDVGDTFTGLTGKTKEDFGHGSAKFVTYVNVFQNPIATLDQLDAVEIDEKQNQVQKDDVFFTTSSEIPEEVGMSSVWTYDTKNVYLNSFTFGYRPRVSFDLNYMASMLRSPSIRKKITFLAQGISRYNISKTKMLEIEIPAPNLSEQKKSVRSSNS +>UniRef90_UPI001CBE7AE7 immune inhibitor A n=1 Tax=Kangiella taiwanensis TaxID=1079179 RepID=UPI001CBE7AE7 +MKIKLLAGLLAAAIIPSVNAAALESGAQVSPKDPALVNHERIIYWLEKRGELDANATDSQREAALATYLKGVRSNNVALPKIEQARLQRQQTSYLKGESKSHKRTDEKTVKVLAVLIDFPDLKHNAHGLTSGDTDMYYSSYPVSHYQDLMFSTTGFTGPSGQNFTSGYQYYQNESGGTFNFTGQTFGWVTADNNAKHYGQNDPDSNDNDKNVPALIKEAVTKAVAANSINLADYDIEDPYDLDGDGNVDEADGMIDHVMVYHSSIGEEAGGGNLGEDAIWSHRFFVDTNTNGYTIPGTGKKLFGYTIQSIDAATGVVVHEFGHDLGVPDEYDIAGSAVGSPVGYWSVMAGGSWAGEVAGTQPTGFSPYARAYFQSVYGGDWIDEQTVDFKAMATGSQNFDLVEAVNHNGLNQIRIDMPKPLVDFAPPYSGSYQYYSDEGHYLNNALSFDVNIPASGNSVLSMKARWDIEVDYDYAQVLVNGNPIAGNHTKVNNQYHSGVTHFITGESKTISGAEGALGWLDLTFDLSAYAGQSVTVEIKYVTDPAVGGYGLVIDDLVLNNGSDIFTDGAETEGSLTLNGFLRVSDKTDGKAQHYWVQLRSENGQDEGLKRTVYTPGVLVWFADEAYSDNKVEEHPGHGFLGVVDADQNPIKRNGSIASSSLQVIDAAFGLYNQKSYSGDSHLSSTATFDDSLDYSLPQQPESGLVLPTHGLSIEVTAQATNSSTATVKISKATPALTADFGFDIDYKQVAFSNNTKGGDANYTYAWDFGDGSAVSVDANPTHTYAQSGVYTVTLTVTDGEATVDSKSKSVSIADELQAEIVSSVNGAKVSVSGNAVGGSPDYTYSWDFGDGATSSNRSGEHTYALTGEYTITLSVTSSDKQAVEVSKVVQVVAALNASMNTSANGLKVNFTSNVGGGDGNYSYSWNFGDGSSATGANPSHTYASAGSYDVAFTVADSTGVEVTVNKTISVAEKSSGGGGGGSGNILLLMLLAAGLVLRRKS +>UniRef90_A0A0D2KAI6 Pentatricopeptide repeat-containing protein n=2 Tax=Fonsecaea multimorphosa TaxID=979981 RepID=A0A0D2KAI6_9EURO +MSMSLVHCLSDSVSSSGSFSRTFSRPFSISTSNFSASITSTKRPQRRSTSKSWLEDLSPRFFTDTPIYPDVLRIKPLTSNGAPPQDLSSLRPPPLPFIPPPQSNRNGRITLLQRLRYWWRRAAVMRKFYKQRIAQTRQNRKECALLSKRLPRMFVEHPDRAAIYGGSTFTVNDKSFPIPRISRREFQLLVQYGYDNWGFALAVRALPTSEKPEEDRNRQLKALCNRYDWFARNRNDKLDNVTDNSNLSHTAQAEEVFTLLQRRLLRWHYVVVDDALCKLIPWVPFAWTVYAARFFDRWCADYYRIITADTVLIMRQGGFNTLSADDIYDYCVKCASPTFISYAKQALQDGVNPANEAMRKAMIPVLDARAKRMLSIDWTRLKPHALGRIEPFSRVKDLKQPDSVWGRK +>UniRef90_UPI001CCE8B09 LacI family DNA-binding transcriptional regulator n=1 Tax=Celeribacter litoreus TaxID=2876714 RepID=UPI001CCE8B09 +MSEPDRISSKNLTMQDIAKAAGVSPMTVSNCFRYPDRVRPKTRETVMNVAAQLGYVPNMSAGLLAAGSSQVIGAVLPSIRNSAFYRYVAGLRQAATERGHELITMIAETPEEELSAVQTLLGLRVAGIALVAGPHVADLRQLLALSGTPVVESWGGEDAIGCGVAYDVGAASRELTQHLIKQGRRRIGFVQVLGGGEQRYTMRFPGFQKVMFDAGLADNLVLTVRAADGFGSGARILNEFLSLEPRLDAILCPTDVVAAGALFECQRRGLDIPGDIAIAGWGDYDIGRQLSPTLTTITPFSFDIGAGAVKMLLEGGAERPNSLLTPYALEVREST +>UniRef90_A0A7D6Z791 AAA family ATPase n=1 Tax=Nocardia huaxiensis TaxID=2755382 RepID=A0A7D6Z791_9NOCA +MAPNHQPFAQVRETHTGVVFLCGERAYKVKKPVVTDFLDFGTAAARERACARELELNRRFAPDVYLGLAQLSDPTGGPDEPVIVMRRMPDSARLADRLDADEEAPELSALAELLARLHDAARRGPEISAAGTPAAVRARWQALLHSLREQPLGALDPDDVEYAELLAGRFLDGRGDLLAQRIAQGRIVDGHGDLLAEDIFVLPDGFRILDCLDFDDALRYVDRLDDAAFLAMDLEFRGHSRLAEDFLREYLRRSGDAPPASLRHHYLAYRALVRAKTDRLRAAQGDPEAGGQARRHLRLTLRHLAAGAVRLVLVGGLPGTGKSTVAAQLGRLTGAEVISSDTVRAELRARGAITGRAGVFGAGAYRPQAKHAVYTQMLERARERLAHGVPVILDAAWTDVAERRRAVRLATDTCSDLVQLCCTCPGTMAAARMRTRAHGDSEATPAIAEAMAVAGEYWCGATLLDTTDTLEHTVAAALREWDAAPLRAPRRPESSSLPSR +>UniRef90_Q31A46 General secretion pathway protein C n=1 Tax=Prochlorococcus marinus (strain MIT 9312) TaxID=74546 RepID=Q31A46_PROM9 +MKKFIKFLFFVFICGLVSNSHLVLTKDDNRSKKEIKLHELPIKIKNSKNNQIQLKTLPLPLIEVAANSVNSERNPFLELNKSIEEIGINPKKFFTLTGIIQTGEQLSAMLKSSDGVNLFKEGENINKNLKIKKISLENETVIFTDGENEFKLEFSEK +>UniRef90_A0A848CYM8 YqaJ domain-containing protein n=2 Tax=Aneurinibacillus aneurinilyticus TaxID=1391 RepID=A0A848CYM8_ANEAE +MSNLINRSAAEALRRQISEAAEAQRGHEMVSDFLTMMDRWHGSAEVWDDTLEAEILEQQAYAIRRLKVFPPRGTTYFSPSSANSCKREMYVKLTGAARDNSDSQPHQGRWQRAGTAFGDTIQRDLLFIEKHYEKKFGEKPPFVPERTAHGFPMWERFARKFHSVEHRGYTVNFLGQPDGILRYKDGTRVGLEIKSKQTTSAQTTEYSMRGPKEDHVKQCVVYSIMYGVDDYLIVYGNLSKKAWVMTPEEYAKNPDLRAFYIHVSESDRQALLDDFVDVLQAVKDGNPPRLDVEKWTFNNYKTACALSLTDAELEDIRKQVRQVGRSRLPDWKKQAYYDALDFIERVRKEAM +>UniRef90_A0A1G5F3R4 Aldehyde dehydrogenase n=2 Tax=Desulfoluna spongiiphila TaxID=419481 RepID=A0A1G5F3R4_9DELT +MDTQQEMNKMETSLATMKRAFASSPMPSLNTRIGMLKNLKTALIEYTGKISSAMSDDYGKRSEIDTLIADIAPCIANINHTVGHLHEWMEPSKRDSGPLLSTASVEVIYQPLGVVGIVVPWNFPVMLSIGPLISAIAAGNRAMLKMSEFTPHTNKVLGEMLQSVFDEAYVNVFEGEAEVSAAFTALPFDHILFTGSTTVGRHVMRAAAANLTPVTLELGGKSPVIVADDVSMEMAVERIIYGKSLNNGQVCVAPDYVFLPEGRVESFIAEYKKQYGDLFPDGVDSENLTSMANTRQFNRIEGLLNGETEKQTRIEPCHGNSRDNAKNRLVTHMIVDPAKDSEVMTEEIFGPLLPLIPYGDVQEAMAYIQGNPRPLALYLMTFDEDLQQQVKTTVHSGGMCINDSVFHLAVDDAPFGGVGESGMGNYHGFEGFLTLSHSKTVMTSGTKHNIKHLFAKDDNAFKKAVLEAMLR +>UniRef90_A0A1X1T8H9 Chromosome partitioning protein ParA n=11 Tax=Mycobacteriaceae TaxID=1762 RepID=A0A1X1T8H9_9MYCO +MSADYDRLFHSPDAAQTPDEATLHVDRDALMRSNAAAPAPAGGSNHADGAVPPPLPITQPRTQTAPAPPPRHAEITTQMPPTTQMPPTTHMPPTTHMPPTTHMPPTTQMPPTTQAPPAQSPAPQRPPNGMMRTPQTNLPGGARFEAPRQATTPAPRPAPAPPPSAHFADAPPTEAAWPHGQPPAQPAPTSAAAMGNHRAIDALSHVGVKSAVKMPSQRGWRHILYLLTRINLGLSPDELYEMDLHARIRRNARDSYQIGVLGLKGGVGKTAVTVALGSTLAKVRGDRILAIDADPDAGNLADRAGRQSAATIADLLSDKELARYNDIRAYTSMNGANLEVLSSEEYSQARREFNDDDWKGATEVVSRYYNLVLADCGAGLFQPSSRAVLATVSGLVIVASASIDGARQAAVTMDWMRQNGYQDLLSRSCVVINHIVPSKPNIDVDDLVQQFERHVAPGRVIVLPWDKHIAAGTEIHLDLLDKVFQRRIIELAAALSDDFDRLERR +>UniRef90_A0A0R3QEL7 SH3 domain-containing protein n=1 Tax=Brugia timori TaxID=42155 RepID=A0A0R3QEL7_9BILA +MEKIKVINGLRTTISSLPVRESRKALRYLGRIKRTKRVKAVALECGLLRKLLPGFIVYFNVMLRKELVASGVRYGVMEAVAEHDFNATAEDELSFRKNQILK +>UniRef90_UPI001944A0FC hypothetical protein n=1 Tax=Levilactobacillus andaensis TaxID=2799570 RepID=UPI001944A0FC +MEREQQRLDTGLAAELNAALKTKRTQLELLQLLYGQTPRSQRQCSSVATEQVVRTDAE +>UniRef90_A0A672LGG0 C-type lectin domain-containing protein n=3 Tax=Sinocyclocheilus grahami TaxID=75366 RepID=A0A672LGG0_SINGR +DQNDLDLKIQDQVIHLTFLLVFQRGSRCLVLITVGLGLICVLLLVFIILQHITITAERDRIKSYKNTAEEFNQTINSLQDNHTDLTIKKSQLQDNFNSLSQKNLELESQVRSLSDQLKKESKRGQICCFWSSSLLMHVYSFLKCLCKNLCGLDGFFLSNEFKSWSDSRQYCRDHGADLVIINSGEKQVSFLWIGLSDRQQEGNMKWVDNSPLKQGFWLKGEPNDQGGDEDCIELMPSNPVLNNWNDLSCSEKRKGICQK +>UniRef90_A0A538MFC4 Thiamine-phosphate synthase n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A538MFC4_9ACTN +MRLHAIVEDLASARAAVEGGATVVQLRCKGASTDELVEAGRGFGVLEAAFVVNDDVEAALRLGADGVHLGRDDPGAERAVAAGLLLGTSAARVEEARAGEALGAAYVGAGPVWATPSKPDADPPIGLDGLAEICAAVSVPVVAIGGVDASSAGDCIRAGAAGVAVIRAALDAAAVRAAVDAAL +>UniRef90_A0A7V9WRH6 Nucleotidyltransferase family protein n=6 Tax=Streptococcus porcinus TaxID=1340 RepID=A0A7V9WRH6_STRPO +MEVIDKLISQNAELMNLLKLIKGLDLPDSWLCAGTLRNFIWNKLSNHNEILTTDIDLVFFDPNMTYQESLALEQSIMRKFPQYNWDVKNEVYMHYHTPAASAYSSACDAISKFPEKCTAIAARLDDKNQLELFLPYGEADILQFQVNPTPYYTENRERHKKYNQRQYQKNWSSTWPQLKVSFFPE +>UniRef90_UPI001CD804F7 response regulator n=1 Tax=Desulfuromonas sp. CSMB_57 TaxID=2807629 RepID=UPI001CD804F7 +MGHKVPKILVVDDEENARLALRVILQQEGYQVDSVANGLEALEFLRRHRVNVVISDIKMPQMNGLAFLRELNRRYPSTRVIMVTAHGGIESYLEAIHLGAFEYIHKPVRVEELKWVMSKMFNEGRTAKAN +>UniRef90_A0A167SRD8 Uncharacterized protein n=1 Tax=Fibularhizoctonia sp. CBS 109695 TaxID=436010 RepID=A0A167SRD8_9AGAM +MCHCGAECHHNINLFEVSQKSDHTSSEVQLIGLLFPYVARLWQRVNITLIAAAVCSRNGDLFGDVEMAAS +>UniRef90_A0A5B7IY87 Secreted protein n=1 Tax=Portunus trituberculatus TaxID=210409 RepID=A0A5B7IY87_PORTR +MLRLMLLSGWILHYHYATTLPRAPPCQCLTPSRPCRHLPLVKTRQQNMEYRLGPAECRRVLCNATPHSQSGLPPPCSFRPSDQHPTTPLVFPPLPQHTL +>UniRef90_A0A6M0BSB5 Uncharacterized protein (Fragment) n=1 Tax=Okeania sp. SIO2H7 TaxID=2607802 RepID=A0A6M0BSB5_9CYAN +MLNLAVIYIDNIFTNVEKKETGDRRQEMEKGVRRQESGDRRWKKESGDRSQETGVRRQELELCFLERSLKKELIDRMKREPAKN +>UniRef90_A0A7S1N3F1 RRM domain-containing protein n=1 Tax=Eutreptiella gymnastica TaxID=73025 RepID=A0A7S1N3F1_9EUGL +VEATAAGAAPTESKAKGTKRKRLPPASEDAAERPPPSKKERKGQLVSATTPKEVAALPPPPADVREVWMTNLPVIVSEKDLYAAYEELGWEAITKVKWMQRTHAAGTSFRRCAYVTFATPDLARRACTLDVEIKGKKPKLELTNPHHVHKSLELFTQGWPTQITDKQVHEAFLLLGLTGITAIRWLPKKGNRLSCFLDFDSKEARDKVLQGGTLQYKGRTVLVQKPLNTLPSDQRTAADRSAKSCELFLDPCFKAMTNDIIQTHYESTLGPDTVVTVRRWQNRGWVVFKTHELALQASKMKPPRNPGKEQVLVRWRLNAK +>UniRef90_A0A4Q3K0R9 MBL fold metallo-hydrolase n=1 Tax=Myxococcales bacterium TaxID=2026763 RepID=A0A4Q3K0R9_9DELT +MASLGEGNGKHPADFGVGVRPLTEVSPASGKPVLAFASHAHVDHIGSLHLYERRAGHPLEAHTFAAMDDLGTLAPEFIGIEGAVTASPSPGWTMADYALVPAPLTELLGEGDHVDLGDRRFTVLHLPGHSPGSIALLDERNGDFFSADAIYDEGLVDDIPGADIETYLRTMRRLADLDVGTVYAGHGEIMDRKQMRDVALGYIASKGG +>UniRef90_UPI000719B42D xenotropic and polytropic retrovirus receptor 1 homolog n=1 Tax=Priapulus caudatus TaxID=37621 RepID=UPI000719B42D +MSTARTCMLPTMLKDLLYAAQDEAPNADAVDDDHVQRFLANFEERFFRKSDQELVKINTFFSEKLAEAHRKWANLKSELGELEERDRNHVSGHQRRKLSSVVQRAKNKKEPAVRNLPQLKLAFSEFYLSLILLQNYQQLNFTGFRKILKKHDKLMQTETGSQWKSVNVASAHFYINKDIDRLIQETEVGRGYYEAIIPRNSGVRPWHSSEDHAGW +>UniRef90_UPI00123D7996 HNH endonuclease n=1 Tax=Roseibium aquae TaxID=1323746 RepID=UPI00123D7996 +MIEAPQSFVVREECGKAAFQNGFRRKREEREGWAGFSSTTVPGTIHLAAASAQGPWFLALDHTGVVEELDIPVVDIAGPGLARYAFETLGQVYAVLPRIYQLAASLPDAPLQEFETKVKDLPKTTEAERLVVQRIGQDIFRSGLLEYWQGRCPLTGISDEPLLRASHIIPWKDCESDAERLDVHNGLLLSALWDAAFDRGLVSFDDVGQPIFSPALGEHARSELRWQQPIALTEKHRARLAWHRSHLFKAEQ +>UniRef90_A0A3B6R914 Homeobox domain-containing protein n=2 Tax=Triticum TaxID=4564 RepID=A0A3B6R914_WHEAT +MSPSTSPESGISAGTKRGLEHTSSGVFPAASSDEDDGGGDGAGGRKNLRMSKDQSAVLEECFKTHSALNPKQNKALANRLGLRPQQVEVWFHNRRARTKLKQTALKAAPQAHNGASEGPLTTLTMSLSRKRVASTSSASACTVPRFSANAGTGMPMPSLKEWQFFCAFRDTGAMYGGSSRLAKVVKPAR +>UniRef90_A0A401M0J4 Potassium channel protein n=3 Tax=Bacteroides TaxID=816 RepID=A0A401M0J4_9BACE +MKSALSDFVWEKKGIYGILHVVILLMSLFLVISISIDTFKGIPFYTQTSYMKVQLWICIWFLFDFVLEFFLARHKWHYLRSHFVFLLVAIPYQNIIAYYGWTFSPEVTYMLRFIPLLRGGYALAIVVGWLTHNRASSLFISYLTMLLATVYFSSLAFFVLEHKVNPLVVGYGDALWWAFMDVTTVGSNIIAVTVTGRVLSVVLAALGMMMFPIFTVYVTNLIQRFNDQKNKYYQQQTTQQESVVSQGQTSPQGQTSQQSPTEKSAS +>UniRef90_UPI001FE9B9A5 beta-lactamase family protein n=1 Tax=Sphingomonas colocasiae TaxID=1848973 RepID=UPI001FE9B9A5 +MLALALLSLPAALAAQAPVPSDTPGKTASGISYTQPRDWTMTVKGSATIFAAPEANLNIAVVDAGEAESAQAAAAKAWAAYRPDAARTVRLVSPAARGDGWDERVGIAYETSPNERATVSALALRKDKGWTVVITDGAESTANKRSAATSVIQGSLRPAGYAPETFAGKAAHRLTPDRIQAIRDFVAESAKQLEVPGVGIALIDQGKVVWEGGVGVREIGGNEPVTAHTKFMVASNTKGMATLLLSVLADEGKLRWDQKVTDLYPAFRLGSDAVTQSTLVRHLVCACTGLPRKDYAFILADAGAPASDTFRQLAETQPTSKFGELFQYNNLMASAAGYLGGSLAYPKMELGAAFDKAMQTRIFGPLGMRDTGFDNAAAEKGDWARPHGLDVDGRMVEIPNTFNHLIVPHRPAGGAWSSAADMARYAQLELSKGLTPEGKRLVSEANLLERRKHGVPIGENGWYGMGLMERVVSGVTVVTHGGTLQGYHSSFFVLPDAGIGAVILTNADPGASMIAPYLRRLLEVVYDGKPEAAQDVAAVAARIKAQAQARRAKLTVPGDPAVLAGLATTYRSQIDGKISFSDRGGAKWMKAGFIEGPVATRKNADGTVSIVSAGGGAIGVEAVVGSKDGARTLTVRDSQHDYVYTEVR +>UniRef90_A0A536UTK9 SCO family protein (Fragment) n=1 Tax=Betaproteobacteria bacterium TaxID=1891241 RepID=A0A536UTK9_9PROT +REFKFYYSAQQADAQGNYTVDHGAGVYVFDPRGRLRLMMRPGSAVDAMAADVAQLLKE +>UniRef90_A0A290RU70 Cytochrome b561 n=15 Tax=Pseudoalteromonadaceae TaxID=267888 RepID=A0A290RU70_9GAMM +MFKNTPTSYGLIAITLHWLMAFTVFGLFGLGLYMVELTYYDSWYKGSLDLHKSIGITLAAVLIFRILWRVFSPKPRPLSQNKTVNHIAHTAHIVMYLILAVIVVAGYLISTADGRAIAVFSIFNIPALDYNFDGQADIAGKIHYYGACTLIGLAVLHALGALKHHFIDKDKTLTRMIKPKEY +>UniRef90_A0A7W1BD12 DUF1570 domain-containing protein n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A7W1BD12_9ACTN +MTASLDECWLKITRAESHFDIVKSAIHGFLQPNPERIAGQLDAESGEEVYYTRRYPGTRREWSIIIGDALQNWRNALDYIVCGLVRMNGEEPSSSNAFPIVDRESDYPAQSKQRIARVYPGSEAVVEGLQAFNRGNAPEDDPLCRLRDMNNWDKHKALHTTTHVVQLESAWPVRMSEDPSAGKFVSGAFERERPLARIPADRELGQAYAEMVFDATFDIAFEGGPPLTEGLEVIETLQQIGDFVRFETLPRFAQFFA +>UniRef90_A0A7C3X0Q5 Aldehyde dehydrogenase family protein n=1 Tax=Candidatus Hydrogenedentes bacterium TaxID=2030809 RepID=A0A7C3X0Q5_9BACT +MSKKELKVINPYTEKEVYSFPMDTIEDAYQKIENAYKAFQEWRFTSMNTRKELCLKFMKEFEKNRDNIAHEITEQMGKPLQQSQNEINTMLDRAQYMISIAEQTLADEYLPEKPGFVRYIRHEPIGVVLDIAAWNYPLLIAVNVIVPAIMAGNAVIVKHARLTPLCGKAFVEAFEKAGAPKGLIQDIIADHQVIDAVIKHPKIGFVSFTGSVRGGHEVVQSASTRFINQGLELGGKDPAYVCADADFDYAVANCVDGAFYNAGQSCCAVERIYVEKPIYNQFVEAFVELTRQYKLGDPMQKETTLGPLAVSSARQFLKKQVEEAVAQGGKLVVSPDEFEVPDQGWFFAPAVVADAPQKSSLMQEESFGTVIGILPVHNDEEAIEYMNDSPYGLTASIWTSDFERAKRIGERVETGTFYMNRCDYLDPALPWTGVKDTGRGASLSHYGYYQLTQLKSMHLRIKW +>UniRef90_A0A7Y5VDB2 Rhodanese-like domain-containing protein n=1 Tax=Saprospiraceae bacterium TaxID=2202734 RepID=A0A7Y5VDB2_9BACT +MFGLFQRTSSDYKNLNADDFRKAIEHDKNAVVLDVRTPAEAHGGKIKGAKVINFMDPGFATAISKLDPGKSYYVYCRSGVRSANACQVMAKNGFKELYNLRGGVLDWPFQLL +>UniRef90_A0A1F2RY10 Lactamase_B domain-containing protein n=1 Tax=Acidobacteria bacterium RIFCSPLOWO2_02_FULL_68_18 TaxID=1797185 RepID=A0A1F2RY10_9BACT +MTGRYVGIVAALALGGASATLQDATSVLNDAARALGASELRTVQYSGTGFVYAFAQSYRPGGPYPKFHATYSRAIDFERGLSRDETVRTQFEDPPRGGGGQPLYRDARAAGVVTENSPWGAGALALTPHGFLQAAMRATPTISTRRVGGGTVTVISFTARERYRVDAFVNGQHLIDRIETRAANPILGDMLIETTFAEYRAFGGVQFPTRIAQRQGGFPTLEIAVTDVRPNAAVALEAPEGGAPQPARSEGQRIAEGVWYLAGRPDPNSQLVEFRDYTVLIESSVTEARALLNLAEARRLVPGKPVRYHVNSHHHGDHAAGLRAMVAEGVTLITHETNRPFYEQTVLRNPHTLAPDLLARNPRPPAWVWVNDKYVLSDPTRTLELYHVENGHAANLLMGYIRQEKLLIITDIFNDFGEPRPNDPPSGLVSPYYAALGDRIRRLGLDVERIAPSHGTGTVPAERLWKALEGKVQAPPVAGR +>UniRef90_A0A7J5FRL1 Transposase n=3 Tax=Bacteroidales TaxID=171549 RepID=A0A7J5FRL1_PHOVU +MGIDDQNKLVNAGFQIIRKDDYPSPRIKFCTGRNGSWKTYKKFETKAERDRAFALLLKDEKIISD +>UniRef90_A0A0E3X9I7 Group-specific protein n=1 Tax=Staphylococcus phage IME-SA2 TaxID=1610831 RepID=A0A0E3X9I7_9CAUD +MDYREKMVSQGQPPLSNFEYYHVIVPYLVGVIVIILSIIFRDSLYSAQSGFGVIITSFIYMLVYVIIGLVGSFVLTIFQARKARQYQTQEDNNEVQ +>UniRef90_A0A2K2F967 Protein jag n=1 Tax=Pseudoclostridium thermosuccinogenes TaxID=84032 RepID=A0A2K2F967_9FIRM +MSYTIEKSAKTVQEAISAALEELNADENEVEVEVIDEGNKGIFGIIGTKLARVRVTLLDTPAKKAQDFLEDIFSKMGIAPEMELTEEDDTLSIKIKGKDIGIIIGRRGETLDSLQYLTSLVANKNGGKYKRVIIDVENYRQKREETLIKLANRLADRVVKYKKSVTLEPMNPYERRIIHSTLQNHKSVETYSVGEEPNRKVVIAPK +>UniRef90_A0YFF1 Hcy-binding domain-containing protein n=1 Tax=marine gamma proteobacterium HTCC2143 TaxID=247633 RepID=A0YFF1_9GAMM +MVMSKVVLLDGGMGQELLRRSSQKPHSMWSARVLLEEPEIVEAVHRDYIEAGARVITLNNYSATPERMAREGHPELFDILQKKAIDIAKRARDNSPRARDHDIKIAGCLPPLFASYKPELAPNFEECLERYRVIADIQKADVDLFICETMSSIKEGTASAVAAASTGLPVWLGLTLEDNLEGRLRSGETLADAMAPIVDLGVEALLLNCSMPESINAAIGTLINGYDTVGAYANGFTSIAALKPGGTVEELQARQDLSPNGYAKFALSWVDSGAKIIGGCCEVGPAHIAELEQQLLAKGHEICSAL +>UniRef90_A0A2T9WSI7 Nucleotidyl transferase n=1 Tax=Nanobsidianus stetteri TaxID=1294122 RepID=A0A2T9WSI7_NANST +MSLYTLILAGGFAKRFRPLSDYVPKPLFPVGGVPLIYYIIEKALETGSDGIIISTNKKYEYHFRHILASLYSFYEPSQIGKIRLVIEPSNSEENKLGSIGGLHYAIKEMGINNNLLILLGDNLFSFNLNKIIKLGNENNSIALAIYDVKNPDNAKNYGVVKIENNIIKEFYEKPQNPLYTTISTGIYYIPREKLYLLDEYMNSNYSKDSMGNFFEYLIKRGEKLYGYIYIMTIMNIGLILVQ +>UniRef90_G2I2J0 Competence-damage protein n=10 Tax=Komagataeibacter TaxID=1434011 RepID=G2I2J0_KOMMN +MNPTACLLVIGNEILSGRTQDVNVQYIARRLSETGITLSEVRIIPDIRTVIVRNVTETRAAYDNVFTTGGIGPTHDDITSACVAESFGVPWVHHPETFRLLEAHFAPDAFNAARQRMATMPQGATPIRNSVSVAPGFTMGNVHVMAGVPRIMRAMFEEVLPTLPHGTPVTSQAWHANGLYEGALAASLEAIQHCYPTVDIGSYPYRLDESQRGVCLLCKGTDTQAVQDAATAVRNLIVEMGFRPQAGEPAKA +>UniRef90_UPI0008255106 DegT/DnrJ/EryC1/StrS family aminotransferase n=1 Tax=Bacillus acidicola TaxID=209389 RepID=UPI0008255106 +MISTQLRNIPFSPPDLTEKEIEEVIKTLKSGWITTGPKTKEFEKKIAEYVGVNKAVCLNSATAAMELTLRILGVGPGDEVITSAYTYTASASIIEHVGAKIVLVDTAPNSFEMDYKKLAEAITEKTKVIIPVDIAGKMCDYDTIFEIVESKKELFNSNNELQGLFNRVIVMTDAAHAFGAERRGMKCGQVADFTTFSFHAVKNLTTAEGGAVVWRDIFGLDNEWLYKQFMIYSLHGQSKDALAKTQKGAWEYDIVYPAYKCNMTDIMASIGLIQLDRYEKLLQRRREIIEMYDKALSPIGVQSIQHFGEDFSSSGHLYLARIPEINEQHRNEIIVKMAEAGIACNVHYKPLPMFTAYKNLGFDIKDYPNAYNQYVNEITLPLHTLLSDEDVEYVVGNLKWNLNEI +>UniRef90_A0A455ZFP0 Paeninodin family lasso peptide n=1 Tax=Elizabethkingia anophelis TaxID=1117645 RepID=A0A455ZFP0_9FLAO +MVKKKDYIPPKLEVEIVEMECGIAANSAAVSPQTVNGNTDEAQTDWNGNDDTTIDTPF +>UniRef90_A0A7S3Z719 RNase H type-1 domain-containing protein (Fragment) n=1 Tax=Lotharella globosa TaxID=91324 RepID=A0A7S3Z719_9EUKA +WSLLLAPKAFLKRATSMQRRTLKRFLSLPTCAGGDVAEVYAAIAPLDVLLHRLCAGTLVRMVSAEDHEGRLAYRRYLDSDQPIKDIRRKVSTWKSPFGVMLKAAQALGLPLFPRAKRVRHAMAKSNVNVNVPVFKNFNKKFSERCKKKAREFAESVIANIPSDEYTLYTDGGQCDDHKFAAVCGVKDNMESFTLCFRLTGAAVSSHVAEVYAIKAAILWSIKHDVKVHIVSDSQAAIRATLSPASQCIHARKVHTLLANSKVASLVWVPSHVGLPGNERADAIASGGDHSTIVRVPTSVSDYTNRIKLRALEIWNDRWKRSKNSKELHRLMPNVPHDRSHILGCITARIMARLRTGYCSVASFLHRHKLKDSNLCGRCLDVGKHRVETVAHFFVCKANRPHSTAVLVDFTAILGHRPTSLSEVLDVNLYLSKQI +>UniRef90_K3VTF1 Adenylyl-sulfate kinase n=2 Tax=Fusarium pseudograminearum TaxID=101028 RepID=K3VTF1_FUSPC +MTLKKLTLPYYAPNAEASDKYPSFCPRLKPSDCNKKVERPAPIVHINGFPGVGKSTIAKKLHEHINKWKIKVVQHHELDLLANTIKTPETFDHEQLRRATRALALNTIAESEDRLDTCYVFEDFALNNQGGFRIMEEYRLLALRRGCSLIRIELTCDDVAYKTRLKDQGRIDFRTENDYPRRSCLTCTDQRLVTSPILCRGFSDGGLKSLDVSSKPELWTAMSAAHHVMVTWNAGL +>UniRef90_A1DJ33 Cyclic nucleotide-binding domain-containing protein n=11 Tax=Aspergillus TaxID=5052 RepID=A1DJ33_NEOFI +MERVRKTFFNPLATSKAQVEKILEGLPVGSAHPFSLEQILLCRTENGIEEIDISSYPENFFFNAMDLGEMGEILLRRMAGFQSHLKVFEDFQITQAPSSTFKIPIVSDQITILAVSERTPTYYDFCFADESCNACCWLARNTFPGITHSGDILNGQDLLDYVKINKDSLIEKEICVFISGYQSTLITRFLGTHPALLVADHVDKVLYIIPVPLDAATIGDATICCPLVIKRDGDSLIYSILPTATTDRGMMCDSNKLVSPAFPEAIKRADFTMCTPDLTTRKTAPANDSVVEDTASNSENLRKIITKENAIFTTDSAALPSFIDLEKTQIIRFGTGLEFKLPDEEVPMREEPSAIVLPCIFGTELQGPVLLATGTVPSNVPFPNENALRDYYKQLKNAVVIVDERMTDNARNLASAYRINALFIVQLTPETEPKDTNGVISLMDLANINAVTALAGPQSLILVQISEKYYFYRGIANRAHLNTSGLAFGADVTSVLESVGIGSILDPRIERVINLGDANSIVLPTTGQLVQPQDLQKLFEEISVDQIQNLEEDISAVVPQLQVLLNQKDLQELSRALVTALSTKISNAATPLRDSYTKFLTQDYRMEDPKSVQKKNKMLGELRKITKDMQKALEPVISCLANMISSQTTSKRTHDLKRLVRQTTIQNNVEAVKSMTFETLSGYLEEYAGDMGVMLLNIETTPYRELLGNLKNSAIDASQCCALDSRILHLEGFDAGIIMEQSQTKHNGPLKSTIGPSQPILALPYLSQSSGTGSMLAWVLRWMEKCNEPHIAALRIIMRSTLGQAVASREHDIQPSSPETGHLMSALLMAAMSKLAAMRTSKPVELEKAEDTVTRLMRGLFGNLLTIAGSGIRPLSMVWQLFGLNPQYDLPTSSAEWIWYENVVALYPYTGWPLRQFHGNLEKLLDKAVIRVVTKNENLARIKASRTAEMVKFCKLRNIQLEHSRTIITVFMRMLTAEDIDLQPVAARLLAQLPHKLERQSQSYTRMIMYLNHLARGGERRVNDDLTAANVYTSRSATFAELKKQVCEACKRSDWARMKEACQEIMTKHVEIAALWRVKPESLKIQNMKLYKALLAADFDDIDQNTQIKNIELTRQVLGDAENKRVPWQVGKKGQFGSSIEPLDEVFLHEIMTGEKSEPAPPATIDDFKGEEERAMIETEDEFAEFESSLRAEFIKTMQKNLSAEEVCDIINVPVSAMRVFIKALNPEFIWEDLAVNFKSVILELVKDRSNRVESRPVRRLLRIEVRKNLQIEG +>UniRef90_UPI001C2561C3 uncharacterized protein LOC121770608 n=1 Tax=Salvia splendens TaxID=180675 RepID=UPI001C2561C3 +MSAIEKKIEMEDEEKEMIDHWSHKHPLTLVDTTGSDRCYGCERSFSSGEQAYGCSIPGCEYSELLHEECSAMAREIRHPLHTQHILSQRHSQELFRCLICEGIIYSIGYKCTSSGCGYQVHLMCAHDKGVVDANHPEHELKLWRRRCSFKCDACGITSRGSSYTCIKGDCQYWIHVRCASLPQTLKREDHHHSLSLSSYIPPEYIKYNYKCDVCSKALLLKYWIYHCQICRFIVHIKCAFNKPPPPLTDASIGKDIVRLPMNEVAVELVTPFVMRQRGGEVGTLIPPFLIPATAVFDEEDELVNMKYKFLHHQHHLTLVSSTSQHPQILGEEEDEENYGVRWELICDGCITPISSSSSSSYYYMSCSECKYNLHLACFHLPPQLYSLPLHQHDDHQLVLQSCDKHQPWNYETCSVCEYPMNGLFYSCTACDFEVDIKCACMPDTIHHAAHPRHLLKHVTQSDLGRDINRWSLSCAATCGQHVVNYDCYRCCNSSCDFIVHVRCAVLLASVSSRRWDEQHPLLLTYDATVNRPGDFYCDQCETQMNPRSWMYHCRPCDVSFHPRCFITTSGEYRNIKMGQEYDVNEETHPHPLTFQLLTTKRRCNICHINNYELQGFYCALCNFFICYNFCGKGMIAKGDLKAVDLGKLSVLDH +>UniRef90_A0A0G1JNZ0 Integral membrane protein-like protein n=1 Tax=Microgenomates group bacterium GW2011_GWA2_44_7 TaxID=1618500 RepID=A0A0G1JNZ0_9BACT +MGNPSTRQFLLVAALALFLRLILIPHPGFLADIAYWKWWTKDSAQNGLVHTITQTGINYPPLYLTIMKATGHIYGLFANLNNDIQYWDKGNLLFLFLIKLPFILADLSVGYLIFWLLRRFYQRNLSHLGHLSNLPLLGAAFWLLNPGVIYNSALWGQTDSLGVVPILLAYLFAVSGRPIFAGALTGIAFFLKAQSIPLILFLYLYLYLKNGLLTTVKSGAAAVTAGLIVTSPFFLTHTMDRIISTIFTSVGYFPYASLYAFNLWWLVIRGASFQFPDQTLVGNLLSYRTIGFTLFWSAFGFLAFVLWQTALKKNAQELTERFLLSTPLVILSMFLLPTEIHERYLLPFFAFALLPLAFDAISARVKNIKLYLFSYAVLSLIWLLNLHFVMIKNYPENEQPILSLISPSMPVLGVVFSAVSVTLYLVFFGVFLKRCLPTNLKSRILAIGLLILLPLGLLSLQAAPVIKAKSQSKVLLSEIKPTFVRQGWGELSKDKSVAGGNLSTWYFFSWKGLGTHANSQIDFNLDGHYRRLETNVGVDTGGGEAASVEFLILGDDKVIAKSGILKKWQYQKSLVADLTGVKKLSLVVTDAGDGINGDHADWLYPTLYK +>UniRef90_K2AFW7 Extracellular solute-binding protein family 3 n=2 Tax=Bacteria TaxID=2 RepID=K2AFW7_9BACT +MKKLLLASALLAFGAGLASAEVVRLATEGAYPPFNFIDDKGEIAGFEREFGDEICKRAALECTWTTNEWDSIIPNLQSGNYDVIIAGMSITEERGKIITFSENYYPPAASAYLAASADADVKGGVVSAQVSTIQAAYVAESGATLLEFPTPDETVAAVRNGEAVAVFADKDYLRPFADESNGALMFVGDDISIGGGVGLGMRQSDTELKAKMDAAIQAMKADGSLNTLIEKYFGAEGLKF +>UniRef90_UPI001E5627F1 hypothetical protein n=1 Tax=Streptomyces sp. VRA16 Mangrove soil TaxID=2817434 RepID=UPI001E5627F1 +MRTLHGEWTKFRTVPGQLWTLPALPLAMIVCTALIAAGAHPEQEGTLDVTALSLSGVYFAQAVAVLVAVAVVSAEYPRMMRTTLAANPRRGTVFTAKTLLAAGAVGVLALPGVTGALLTGRAVLTGGAARLPLSSWPLWRATLGTAVYLLLVALLTTGIALIVRHAAAAVGTALTLLYGPYLATLIIEMPDHALHLVQKISPMTAGLAVQTVGGAGGTSPWSPGAGLAVTAVYAAGALVAGWGMLRWRDA +>UniRef90_A0A3B1DZ09 Chromosome partition protein Smc n=1 Tax=hydrothermal vent metagenome TaxID=652676 RepID=A0A3B1DZ09_9ZZZZ +MKLNSSGKTATIFLVIFSVLLISMTAISVFIFQKEKEMRIESEGDLEKKRSEVIELKTEMREVKRKNFLLQEKNKEADERVNSLMDEVELEKGLKEEVKQENVALEEKVEMFIIARKKLDEKIKKKKEDSQKKVAEFKTLLQAEAERLKEIESLKKVNKELEQKNKDLQGQVTKILEEGKLLKEDNKGSEVIKEMGEVKKKVKNKVELEPIIVTPASGKIAKDNKEKKSVQEEVAQTVANSMKGRIISVDRETEFVIVDLGKKSGIKMGQVMSVYRGKEYLGDIKITRIQPKMSAADLIPPFSSRIVHKNDQVVVK +>UniRef90_UPI0012E1D502 hypothetical protein n=1 Tax=Pseudorhodobacter antarcticus TaxID=1077947 RepID=UPI0012E1D502 +MRSLISSSAQAVACRAPAVTAVTAVTAVTAVTAVTAVTAVTAVTASLIRVSVLIKPL +>UniRef90_A0A2D9X1Q0 Protein TPX2 n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A2D9X1Q0_9ACTN +MKELDSPRNFSRDLQTPARILKVTRGKKKVTRATKLLPIGQSKKLENKFVESKRSAFKTVKPKGKLSPIQEVTQKTDKDSNTSLRSVETPLSRSLELPPPPPAPKKERAGRLEPLAQGIETNFYKNYYSL +>UniRef90_A0A7V6UPT2 Thiazole synthase n=3 Tax=Bacillales TaxID=1385 RepID=A0A7V6UPT2_9BACL +MTDKLVIGGYEFQSRFILGSGKFSLDLMEAVVEYGEAEIVTLALRRANTGGEENIVHYIPENITLLPNTSGARNAEEAVRIARLARELGCGNFVKLEVIHDSKYLLPDNYETIKATEILAKEGFIVMPYMYPDLYVARSLVDAGAAAVMPLGAPIGSNKGLATKNFIQILVDEINVPIIVDAGIGRPSQACEAMEMGVDAIMCNTAVATAGDVALMAKAFKLAIEAGRSAYLAGLGRVLDFKAEASSPLTGFLED +>UniRef90_UPI0005738328 YqcI/YcgG family protein n=1 Tax=Pseudomonas putida TaxID=303 RepID=UPI0005738328 +LRGVHARDPHPWPQAIPADPHDSGWSFCYAGMALFINMNFPGHHQMKSRNLGNHITFVINPRENFDEVANADTESGKRIRARIRERVQHYNDGVMPDSLGFFGQADNFEWKQYQLQEAGSLNPSRCPFHANVHAAPDTQIEN +>UniRef90_A0A158Q2K6 Cytochrome P450 n=1 Tax=Dracunculus medinensis TaxID=318479 RepID=A0A158Q2K6_DRAME +MSVLGIVIVISMAAWMTWMLLRKVSSIFNKINIIQGPSPLPVIGNIHQIHFKPDDFFEQAQGIAYMLQKNGERMTRIWFSGWPWVLLYGAEECEAILSSNRTLKKPFQYGFLSDWIGEGLLISDPKKWRPRRKLLTPAFHYDILKDFVGIYYKHGRTLLSKFENMIGEHYNEIFHIVSYCTLDVICEAALGINPDAQNKPSPYLDSVWRMKYIIHQRTIKAQYYPKIFFNLFGNGSECKKHIKILHDFTGKAIKERKRLADEAGGIENLLKSESKRENEKISINFFTSLFIYFRNQNISGKKRMAFLDLMLDMHSKGDLSLDGIQEEVDTFTFEGHDTTSASMNWFLHLMGTNPDIQRKVQKEVDDVLGKVNLTRLMTDLEERPITYEDLGELKYLEACIKETLRLYPSVPILARLLQEETKIKNNTLPKGTGVIIVPSMVHRDPRYWPDPEVFNPDRFINNEVKHPYSYIPFSAGARNCIGQRFAIMEEKCILALLMRHLKVKSELRTDQMRVSGELVIRPFFGNNIRFAKRTYGDYTQIA +>UniRef90_A0A3S1DSJ7 Alpha/beta hydrolase n=2 Tax=Halomonas TaxID=2745 RepID=A0A3S1DSJ7_9GAMM +MLTKEQVVARNNVTIVGSGEKTLMLAHGFGCDQQMWRHLIPHLKERYTLVLFDYVGSGQSQISAFSESRYRALEGYAKDVTEICQALNLTQVHLIGHSVSGTIGLLASIAHPELFASQVMICPSPCFLNMPPDYYGGFECADIEELLGLMDRNYIGWANYLAPLVMGLENSELLTSELSDSFCSTDPVVAKAFAKATFFSDYRHLLPQAKHEALLLQSQQDSLASPDVGHYMHAHMPGSTLRLLASEGHCLHMTHPELVAQEINTWLRD +>UniRef90_UPI001F334FC1 bifunctional ornithine acetyltransferase/N-acetylglutamate synthase n=1 Tax=Ktedonobacter robiniae TaxID=2778365 RepID=UPI001F334FC1 +MYTNFCSFSIKRLIHLCSKVACRLLVHILRDLLCERLRRCTVKVTVADAESFAQAKRVAKVVVNFPLVKTAIFCADPNWGRIAMVIGKCEAQTAIVLEKVSI +>UniRef90_UPI001EE7BB04 hypothetical protein n=2 Tax=unclassified Micromonospora TaxID=2617518 RepID=UPI001EE7BB04 +MAVPVTALLAGCAPATAVAGGATGPVSARRSPEGSYAVGVRTNPNAAFPPRPLADTARRRRPLAERAA +>UniRef90_A0A5E3WRX4 Oxidored_FMN domain-containing protein n=1 Tax=Peniophora sp. CBMAI 1063 TaxID=718367 RepID=A0A5E3WRX4_9AGAM +MSTTDKVIPTLFKPTKLGNLLLNHRVVLAPLTRFRADDDSVHTELAVEYYRQRSSTPGTFLITEATVIAPQAGGYPNAPGIWNNEQVAAWKKIADVVHGNGCPIFMQLWSIGRVAVPEVLEKYGHDVVGPSAIALDANHATPRALTVDEIKEYVQLYAQAARNAIRAGFDGVEVHSANGYLLDEFIQSNSNHRTDEYGGSIENRIRFTAEVVEAIAAAVGPERTSVRLSPWSRFQAMRMPDPIPTFNALVQRLADTQPALAYLHIVEPRVNGEADATDVGEDNNDVLKKIWSPRPLVVAGGFSLETALQVSERQENVLVAMGRYFISNPDLPRRWQEGFALAPYERQYFYSRGSRGYTDYAPYVEATKIAV +>UniRef90_A0A350NT93 COX3 domain-containing protein n=1 Tax=Flavobacteriales bacterium TaxID=2021391 RepID=A0A350NT93_9FLAO +MFWTSSEFMIKNTTPAPSNRRDVFDGVEPAVRERTKKMLMYFIIFAVVMLFAGFTSAYIVSNMGQYWVNIEPTSAFWVSNVLLVLSSIGLWSAVRSMRENHKQRAVLALAFTLISGIGFTISQAEGWKTLAEMGLGWTTTDHESGLEAYRWNSIESLLESDAIYGQDYTISRGGEPLLFDASKNEFYASNDALMVRPITRDVARTSNSGASYLWILIAVHILHLTFGFIYLVINGIRVVQGTIHAKDVVQLESLSIYWHFMGALWLYLFVFLFFLH +>UniRef90_A0A1J5ICS2 Polar amino acid ABC transporter permease n=2 Tax=unclassified Syntrophobacteraceae TaxID=869804 RepID=A0A1J5ICS2_9DELT +MDLTKFFLVVAAVAGLLAVGTERLGYHWQWYRMPRYLVRIGDGGWRPGPLLDGVLITFKISGLSLILCFSFGLVAALFRLSHSYLARLLARLYVELIRNTPLLVQIFFIYFVLGPVLGITRFTSAVLALSLFEGAYAAEIFRAGILSIPRGQWEAARSLGLSTYKCYRAVILPQAVRHVLPPLTSQAISLVKDSALVSTIAIYDLTMQGQAIIAETFLTFEVWFTVAAIYLIITVILSILVNVMENRLRVTG +>UniRef90_A0A5B8ASF5 DUF4760 domain-containing protein n=1 Tax=Georgenia wutianyii TaxID=2585135 RepID=A0A5B8ASF5_9MICO +MSVEVWVTLGGVILAGLLAWHQLRASLYVRRREFEDIYVQRYWEISNRLNLDLRIGSYSGGDFAELADAEDKDAQYLAMWDYLALCEDQIDLRKSGNVTDEAWAVWSSSIAGTVSRYPYEAFYDLIEQGLDEAHVDESDRPWEHLRTLRHDPGAGLPDPYPLSGTGWRQRWRRYATGRRERVALTGLEVERLKMRRR +>UniRef90_K1JNL9 ATP synthase subunit b n=2 Tax=Sutterella TaxID=40544 RepID=K1JNL9_9BURK +MNINASLFLQMVVFFLGAWITMKYIWPPLIHAIEERQKKIADGLSAANKGEKALAIATEQGKAIEADARARATTIVSDGEKRAQSIVDEAKAQAQVEADRIIENARAEAAQEMQRAREALRNEVAALAVAGAEQILAREVDKTVHAAMLEQLKAKL +>UniRef90_A0A1J4Z6F5 Chemotaxis protein n=2 Tax=Hydrogenophilales TaxID=119069 RepID=A0A1J4Z6F5_9PROT +MTTQRSFSIFDTAWGSGILGALAVAGPLAGTLAGGPWWPLVFALMAVALAVVCARHRLRQNAWMEKIRRMAADIADGHLSSRLTHVSDARSLAPVVTAFNDAMDRIEAAFREMSGALTAQEAGYTARHAQVIGQVGDYSHVLNTFNTVLASISKHKQAEAYNHMVVRVQSLNAAHLIPDLALTQADFARIVKEEEQVIDLASGSSQKANESAVAVEAMHQGFQRLQALIGEVSAAILDLSAKSSEINQAIDTIHALANQTNLLALNAAIEAARAGEAGRGFAVVADEVRKLAGHSKDAAMQIGNTMQALVSETQSMVVSAEEMRAITEESGRAAADISSEFSQIVSRSSETLRRAKTALTVAFASLTKCDHVVYKQRAYQTIVAGDESLRQQVDVDHHNCRLGKWYAGEGREQFGQLEAFREIDRPHAAVHDAVRQMLALTHQRTWQNDTAQMERVFAELQRMEDASEQVMSVLIALPEQASASSVPG +>UniRef90_UPI0018C1FAF3 GIY-YIG nuclease family protein n=1 Tax=Actinoplanes sp. NEAU-A11 TaxID=2792083 RepID=UPI0018C1FAF3 +MTSSGTRPDDVPTDRARTEEALRLLSGVPTGLDVAVKMLSRGGGVYAWWAAPSIFPDLPGPSNLSVPSLRLLYLGRATSLRGRILRNHLRRSGSSTLRRTLAGLLTCEGYRTTWTDRVVLIPEDESRLTAWMYTHLRLTWAEDPEPATIEAELVRRLHPPLNVHGVDPEHIQPAVVAAKNSYNASSRPTERPPTL +>UniRef90_A0A7C3K6X1 Ribosome maturation factor RimP n=1 Tax=Firmicutes bacterium TaxID=1879010 RepID=A0A7C3K6X1_9FIRM +MTREAIVAQVEALVEPIAQRYALEVADVELLGQGARTLLRVTVEQPAGAERVGVDELARFSEALSRQLDLRDLIPHAYTLEVTSPGLDRPLKKDRDFQRFAGREVQVTTFVPVEGRRHFTGRLVGLEAGEVRLEVAGHPVRLPRAQVASARLSIDENELKRDLSGGGRAAR +>UniRef90_A0A1E1W481 Chloride channel protein (Fragment) n=4 Tax=Pectinophora gossypiella TaxID=13191 RepID=A0A1E1W481_PECGO +GGYATVGAAAFTGAVTHTVSTIVIVIEMTGQVTHLLPIMAAVLAANAVAALLQPSCFDSIILIKKLPYLPDLLSSASRMYDICVEDFMVRDVKYIWNRMTFQQLKDLLKENKTIKSFPLVDSPTSMVLLGSIHRWELVRVIEKQVGRSRRLQVAAQWLRDAERRRQENEAKKRRPSRFEVTPAPDMLQVPGTGMTRGSSLTTKDQGGLIPSPGQLFRPKSILKKTNSFTLTRGLVSPGVPQTPLSP +>UniRef90_A4ERI7 Ubiquinone biosynthesis accessory factor UbiK n=1 Tax=Roseobacter sp. SK209-2-6 TaxID=388739 RepID=A4ERI7_9RHOB +MGTIERLAEKLAEDTLKVQDALGEDRFYMEVAQVLGAASQSLEEAFLTEIRVSLADRKAREFISKKLAQVQRELEEKAKG +>UniRef90_A0A7Y0XJK6 DZANK-type domain-containing protein n=3 Tax=Limosilactobacillus reuteri TaxID=1598 RepID=A0A7Y0XJK6_LIMRT +MKKCPYCNTLNPDDAEVCENCGKPLKGRMLALVCPNCGKVNALGSRECSVCHTKLSQSNHQLVSREITPRKNNKRWGYIALIAFGILIALFTYLGGRYARSTSIPGKIEALEFE +>UniRef90_A0A1Z8PZI4 HemY_N domain-containing protein n=1 Tax=Micavibrio sp. TMED27 TaxID=1986607 RepID=A0A1Z8PZI4_9PROT +MIKAFWFAIKVGLVVAIAIWIAERPGFVRIEWLDYVATIQMGFFLLLCVIAILISIFVYRVIAAIVNFPKTYQRYLEVRGYEKGVRALTLGMAAVAAGDEKIAVYQAHRATKLMPEDTGLTNLLTAQAARLDGREDDAVRAFARLLENKEASFLGVRGLLQAAIDKGDYETAKNLVDRALGLYPKQGWILKTAFDVYVRAEDYTEARVLLKRAAKAGTVKSETLHSDLAALYLAEALQDFEAARNERGIKLIKQALKKSKDFIPASVALIQYYIDNNDISSASKLLKKYWRREAHDLYVPQWLSIYKGASSEDKLKHMQSLLKINEKNAVACMETGKAALESSLWGEARKYFEKAESIEPTASLYRSYAQLEELSIHDEAAARTWLEKAINAPVERQWVCQETGRLYTQWKPIAQPHGAFNSMIWGRSTDLQSDNALLIHSGQSTMQGLVHAV +>UniRef90_UPI001FFBE095 hypothetical protein n=3 Tax=unclassified Bradyrhizobium TaxID=2631580 RepID=UPI001FFBE095 +MEKTTMRLAQKFWLVFLALGAAIAVQGAPASAQQRLEGQVLLAGEPVVSATVTLWTAGADQPRQVTQTQTGADGRFALSTPPGAGNAPTYLVAKGGTAGGAANTGVNNAIALMVLLGDPLPRAVTVNELTTVASAFAAAQFIKGEAISGNPLGMRIAAGNVPNLVDPATGQWGKVLLDPLNSTRTTTLANLNTLGSLITAFATTTNEDWRARFLKAATVPGGATPKNVIEAMTGIARKPWAQPKELYALFDEAYPQPKDGARRKAPFVPYLAYVPDDFVLSLCFAGGGVYSAGRLMFDAESNLWSGQNWMAGSQSGVNQSIGGGVVKLSPNGTALSPPITGFTGMGIDGVGWGTAVTKDKVWLTSFNGKILVLDFDGHPIGTESDFPFKEKFLGLMGIGVAANGDVWIADGSDNQLLHFPGGRVTDGRIVKVGGLKSPFDIVIDAQNRVWVSNSQSDKVVRFPADDPSKAESFRAGIGVRALALDSKSNVWVASNMSLDFPPPVIPDGASIMEQFKIAAGHMLKVLETNPHMVTGVVNMIRPDGSQPAPTGFTGDKAVSVPWGLNIDGNDDVWIGNFWGRGVVLMAGDNTKGHPAGTKMGDAIHVFKGGSIQMLTDVSIDPAGNVWAANNWNDLNGAASPDPTRPTSTWGGGSGITVIYGVAAPVQPPRMGMVRKP +>UniRef90_UPI0019539C4C hypothetical protein n=1 Tax=Serratia marcescens TaxID=615 RepID=UPI0019539C4C +DVGGRKFEMSDMAYVIRGLGYIKSKEDVENISLGQYNGIPVRVKDLGNVQMGGDLRLGIFDQNGNGEVVGGIV +>UniRef90_I3SW78 F-box/LRR protein n=7 Tax=Trifolieae TaxID=163742 RepID=I3SW78_MEDTR +MSSNSTSEDVISALCINEALTDDELRSILAKVDSEKDKETFGLVCKRWLRLQSTERKKLSARAGPHMLRKMADRFTRLVELDLAQSISRSFYPGVTDSDLAVIANGFRCLRILNLHNCKGITDVGMKAIGDGLSLLHSLDVSYCRKLTDKGLSAVAKGCCDLRILHLTGCRFVTDSILEALSKNCRNLEELVLQGCTSITDNGLMSLASGCQRIKFLDINKCSTVSDVGVSSICNACSSSLKTLKLLDCYRIGDKSILSLAKFCDNLETLIIGGCRDVSNDAIKLLATACRNKLKNLRMDWCLNVSDSSLSCILSQCRNLEALDIGCCEEVTDTAFHHISNEEPGLSLKILKVSNCPKITVVGIGILLGKCSYLEYLDVRSCPHITKAGLDEAGLHLPDFCKVNFNGSINEPAVLL +>UniRef90_UPI001F28D147 RimK-like ATPgrasp N-terminal domain-containing protein n=1 Tax=Thiomicrorhabdus immobilis TaxID=2791037 RepID=UPI001F28D147 +MSHFYVVVDSLTDWKPYYSSQDVITFDDYLERVNDRSKKRIRVINLCRDYRYLKTGYYCSLLAEARGHHVLPSLMTINDLGRKSLSSIQLTDTSQLVNRLPLGNEGEQLTFRCWFGKTLNPALAKLAAKLFEKFPTPLLEITLQFKQHWQVKQVKGVSLKALVDPAEQEAFAETFEKFSLQMWRKSKTRKAYRYDLAILVNPDDPLPPSDDAALKQFKKAANQLGIATEFITRKDYMRLAEFDGLFIRETTSVEDHTYQFAKKAEAEGLMVIDDALSILRCTNKIYLADLLNTHKIPTPKTVIINQPSEQALLKLENEIGFPMVLKIPDGSFSRGVVKVENAEELTEQAKILLKQSVMLLAQEYMYTQYDWRIGILNNKPLFACRYYMVDDHWQIYKHESQDTQSGGFETLPTFEAPKAVIDIALKAAKLIGNGFYGVDIKQSGDRVVIIEVNDNPSIDSGVEDKYLGEELYHEIMKDFLLRMESLGR +>UniRef90_A5W1W3 Antibiotic biosynthesis monooxygenase n=32 Tax=Proteobacteria TaxID=1224 RepID=A5W1W3_PSEP1 +MVKVALFVRLKAKPGKEKDVESFLLGGLPLVEEEPATTAWFGIRLGPSTFGIFDAFPDEAGRQAHLSGKVAAALMANAAELFAEPPSIEKVDVLAAKLPS +>UniRef90_A0A167MC44 Ribosomal RNA-processing protein 43 n=4 Tax=Cordycipitaceae TaxID=474943 RepID=A0A167MC44_CORFA +MPEVGLSRATFAKLSPHPYLLANLEPSNQDIPPARSNGRAPDEARTPEVNLSSLSHAHGSSLVRIGDTTAICGVRGETILTANIPNYRASNAASELRDYDLLVPNIELATGSSPQNLPGGPPSTLAQTLSTRVYSLLHSSQLLDAADFRIWHTQTADLTAADDEEMQDADADADGEDQAQFNNERQVIAYWVLYIDIFFISLDGNQFDAAWAATLAALRDTKLPRARYDPDSELIVCSRKDPKPLSLNGFPIACTAAVFTGKETDRPTEGKYWVLVDPDTLEESLCDESLTVVADCSGGTTSLLSVSKHGGTVLTPKHLRSKQLLGFVEKRWKGFADAMSV +>UniRef90_A0A1V6I1U0 TonB-dependent Receptor Plug Domain protein n=1 Tax=Bacteroidetes bacterium ADurb.Bin035 TaxID=1852799 RepID=A0A1V6I1U0_9BACT +MKKQKILLIIMLIFNISLSSQITINGKVIDRDSQKPLSFANIKIAGTFLGTVSGNDGSFSLQVKSLPVTLIISFIGYQTDTIVVNENQFLTIYLAPKSILTDEITVTAIRLDDNSPKNFTNLSIEKIQSLKTGQDLPLILNFTPSVVATSDAGNGVGYSDIRIRGTDITRINVTINGVPYNDPESQGVFWVDIPDIASSADNIQIQRGVGTSSFGTASFGASINILTGVMKNDPFVELQTNGGSFNTWGASAKFATGLIKDNWYLEGRLSHQYSDGYIDRAWSNLNSTYLSGGYYGKNTIVKGLFMAGIEKTYQAWGGVPKEYLDDPILRRYNPYTYENETDNYWQYHYHLNVTQKINDKNTLNATLFYIDGLGYYEQYKDNKKLSNYNIPPVILIDTTSNDTIMINSMDIIQRKYLENDFYGAIMSHIFDNNKNLKIRTGLNLYQYDGWHYGKIIWMQYAHNTPINYEWYRNKSIKKEFSLFTKIDYAINEYFNLFTDLQYRYIDFAIKGTDDAFISDTLTKYYNFFNPKLGLVYKISKKDELYLLLGMSHREPNRDNLMLINEDSLKPVPETLYDLELGYSRYFSKGIVNINTFYMYYDNQLVLTGKINDVGDPIMQNVPTSYRAGVELIWNFNFTKWLSWDANCTFSENKIKKMKIYIDDYDLWPQQRIYQVENRPISFSPSIVASSILTFKPISNLSVSIQSKYVSKQYIDNTGDEECVIDPFFVNNIRLDYCIKGKKFDKINLFVNFNNIFNEYYETNAWVYRYYEAGNEYKDFGYFPQATFNVLAGLNFYW +>UniRef90_UPI0019146668 MarR family transcriptional regulator n=1 Tax=unclassified Pseudomonas TaxID=196821 RepID=UPI0019146668 +MNPELQLAAPYLPALASYIETVLGDSPTFSGWDQTSRLPYYLNSSYFILQMTLLGQTCIVLLENQQRSVSLPDVKKHMDALRQLTESPLVFVTETLASYERKRLIERGVQFIVPGNQLFIPELGLDLREYFRARQEKTEFMSPATQAMVIHLLMNDWKHSLQLSQATLGQPFKYSKMTISRAVKELKGLGLITVEADKQQHIEIHVPARQLWQNARKHMRSPVKRTLWLNRVPLLDGQPLLLAGESALARQTLLVEPWLAIYACSSETLNALQNAAEPITEVAPEEAACALQIWSYDPTVYAWAVPYVDPFSLILSLQDSKDERIQIGLSQLEGDMKW +>UniRef90_A0A7C6YG77 Uncharacterized protein n=1 Tax=Actinomycetales bacterium TaxID=1911520 RepID=A0A7C6YG77_9ACTO +MNEYVEYPASAEAACRSTYKPASRLPGPGHEERLALSSPAVSSGA +>UniRef90_A0A8J7E1C9 Glutamine-dependent NAD(+) synthetase n=1 Tax=Nodosilinea sp. LEGE 07088 TaxID=2777968 RepID=A0A8J7E1C9_9CYAN +MKFAIAQLNPTIGDLAHNAQQVLNAARQADQLGAQILVTTELVLCGYPPRDLLLRPSFIQAMAQTLEDLALALPPHLAVLVGYAAANPKARYSGEKPLFNSTALLQGGQVQQVFHKQLLPTYDVFDEDRYFAPGQGPSSFTLPCGDWGIRVGVTICEDLWNDEEFWGGRSYARNPIADLAGDGVDLVINLSASPYSLHKAQLRSAMLAHSAARFRCPILYANQVGANDDLIFDGASLAFDRQGELVARLPAFQAGLAVVDYDPVKGDLTPGEVAPLPTDDNEALWSALVLGVRDYTHKCGFAQAVIGLSGGIDSALVAAIAAAALGPDNVLGVLMPSPYSSAHSVSDALALAQALGIAHQTLAIGPLMADYDQVLDPLFADTSPGIAEENIQSRIRGNLLMAISNKFGHLLLSTGNKSEMAVGYCTLYGDMNGGLAVIADVPKTRVYALCQWLNQQVGQGSNGAIAPVTLGTLATRVSAQGLIPQNILDKPPSAELKPGQVDQDSLPPYDVLDDILDRLVQRHESIADMVAAGHDAAVVEKVLRLVSRAEFKRRQAPPVLKVTDRAFGMGWRMPIANRWRSEAAVHPLTAEQLLEA +>UniRef90_L2GXC0 SWIM-type domain-containing protein n=1 Tax=Vavraia culicis (isolate floridensis) TaxID=948595 RepID=L2GXC0_VAVCU +MHFHTLEMLVMVVIFVHADLLKLKSVCKCAEEGSYQCQNVNNPNVKGNGGTTRKACITDDLYAGIFADVVGKDGLTDSHPRTDNAAHSQIMGCSSAPCPCDELLSDEMVEDASNLMRKSYQQNVEHSSCRIAARGDSPNNEEKLNVSDQPVCTRIGVEKECDQDNEENNDENAYWFGSYISSAIQNGCRTVSSIVEEVFSMFQGCGLWIDPSDERNEEFIDEAIDNMSESGNGTDNELKKAGKLLARTCKCFIREFFWCTIGLCDKISGVIGKRKVKYRDANIGSDKNKDKYSNLERTCTCEAYIKRAACRHGSGLKGKKGKAVEHVSDSIYCEFMRAFEQEKHGLTMQELIERVASRGEHRGTQIVDSKKCFNGCDEVQDVTKRSNFYETVELAIKMVSLMGVLLFMVALVATVLHHWTK +>UniRef90_A0A3D1CV37 Single-stranded DNA-binding protein n=1 Tax=Candidatus Pacebacteria bacterium TaxID=2053589 RepID=A0A3D1CV37_9BACT +MSVRSLNKVMLIGNLTRDPNLRFTPTGTAVCSFGIATNRAWTPSDGGEKQERVDFHNIVSWAKLAEICGQLLHKGDKVYLEGRIQTRDWKTEEGVEKRITEIIIDNMMLLSNGRGGAMGGNDQDGAGEDLGQTAPTPVSATTTRAKTKPAAKTDNEVEVVEDVSDDIPF +>UniRef90_W0ZCU4 Geranylgeranyl pyrophosphate synthase n=2 Tax=Microbacterium TaxID=33882 RepID=W0ZCU4_9MICO +MQGSPDAIQAVSQRLERFVSARVDEAADAGPLARPILELSAATLQGGKRLRAAFCYWGWRSVTDATGTDEIVAAAAALEVFHAAALVHDDIIDNSDTRRGHPATHRAFEGAHLAGGWTGDAAAYGRSSAILAGDLLVAWSDDLFEEGIADAPADRARAARRRYAEMRRDVTVGQYLDIAAETVPAPDAEQLGRALHVASFKSARYSVQQPLLIGAAIGGGSTEQQEALRDFGHPIGMAFQLRDDVLGVFGDSAATGKPSGDDLREGKRTALIAFARQELPASVRRTLDELLGDPDLEDTQVRMLQDTIRDSGALDRVEDLIASYTREADRALSGAPLDNASVGALRDLARAAVHRVA +>UniRef90_A0A1I9RWB5 Major capsid protein (Fragment) n=1 Tax=Feline calicivirus TaxID=11978 RepID=A0A1I9RWB5_9CALI +WSTPRFRPITINISVSNGAKLGXGVATDYIVPGIPDGWPDTTIAEKLTPAGDYSITTXSGNDITTAAEYDKADVVKNTTNFRGMYICGSLQRAWGDKKISNTAFITTGTVDNNNIKPSNTIDQXKIAVFQDTHAXXSVQT +>UniRef90_A0A7S1QBK8 Pentapeptide repeat-containing protein n=1 Tax=Neobodo designis TaxID=312471 RepID=A0A7S1QBK8_NEODS +APEHAVALDTVRTALSAPSHTALIEDALEGRPLRGVDLSALPKDVQCSVRRVDLRDASVVGCSFFAGANFDLADCRRTDFTGSQFRDISFAGATLRGAKLQRCTFKHCVFRRCDIRDADLCGATFVGCDFTLCDMSGCTTSGDTTFFEPQSWWRSRREEWRGTKPFVNLDAEEATQQMAARDDSRSRPRGGRPRNTPRRGKTWTKKISTKR +>UniRef90_UPI001F4247D0 hypothetical protein n=1 Tax=Xanthomonas citri TaxID=346 RepID=UPI001F4247D0 +MFGEGAEIRFAYQSFKWANLAAKNAGVSVAIIGLTRRNGGTKQIFIANEDGVVTVRTVSNISPYLVPGDNVLVSPRSKVPDERAPMQFGNHPYYANELMLSLDEASGMVGEDARVAEFIRPLYGSRESISGTPRTCLWITDENLALAQEIPAVWARVEKVRKDRKTKTKDVQAKKLVETPWRFRDQYEAESSLLVVPIVSSENRPYLPVVLLSKEAIVHNKAFALYDAPLWNFALIVSKMHLVWVAAVCVRLEMRYSYSNTLGWNTFPVPTLTEQNKADLTRCAEDILLARESHYPATIADLYGPDNMPDDLLRAHERNDEVLERIYIGRRFRNDTERLEKLFDLYTKMTAGQGKPKKKAKK +>UniRef90_A0A3C0QT04 Magnesium chelatase n=1 Tax=Ruminococcus sp. TaxID=41978 RepID=A0A3C0QT04_9FIRM +MIQTFAEKLHNSMAKAIVGKDDVIDRVIAALLCRGHILLDDIPGTGKTTLAKALASSIGCHHSRIQFTPDLLPSDVTGIHWFNQKTQEFTFRKGAVFTNILLADEINRTTPRTQSALLECMQERQVTLDGETMSLAEPFFVIATQNPIETQGTYPLPEAQLDRFFICLHLGYPEKEAERLILTGASQTISEPVCTVEELIQAQNAVENVLVSEPILEYLLAIAEKTRKDRTTIIGLSTRGLQALQLCSKAWAGMQGRNYVIPEDVQAVAPEIIAHRLIMKGGERLQRMEFRHESALRMVEEVSVPVE +>UniRef90_UPI000A359F7A tubulin polyglutamylase TTLL5 isoform X13 n=1 Tax=Heterocephalus glaber TaxID=10181 RepID=UPI000A359F7A +MPVVMARDLEETESSSEDEEVVSQEDHPCIMWTGGCRRIPVLVFHAEAILTKDNNIRVIGERYHLSYKIVRTDSRLVRNILTAHGFHEVHPSSTDYNLMWTGSHLKPFLLRTLSEAQKVNHFPRSYELTRKDRLYKNIVRMQHTHGFKAFHILPQTFLLPAEYAEFCNSYSKDRGPWIVKPVASSRGRGVYLINSPNQISLEENILVSRYINNPLLIDDFKFDVRLYVLVTSYDPLVIYLYEEGLARFATVRYDQGAKNIRNQFMHLTNYSVNKKSGDYVSCDDPEVEDYGNKWSMSAMLRYLKQEGRDTTALMAHVEDLIIKTIISAELAIATACKTFVPYRSSCFELYGFDVLIDSTLKPWLLEVNLSPSLACDAPLDLKIKASMISDMFTVVGFVCQDPAQRAATRPIYPTFESSRRKPIQKPQRSRPLSASDAEMKNLVGPPREKMSEKLGGSVLGLSMEEIKVLRRVKEENDRRGGFIRIFPTSETWEIYGSYLEHRTSMNYMLATRLFQDRGNTRRSLLTGRTRETRGLVKFQDYCHIRLKMTTDGMPELKVESVNSKAKLHAALYERKLLSLEVRKHRRRSGRLRALKPKYPVITQPAEMNGKTEAESEEEEEEVALDNEDEEQEASQEESAESLAENQGKFAPPLTIGIENLPKENSMEVPVWNNKGEQGCKIETQEPEPNFNLMQILQDNGNLSKVQARIAFSAYLQHVQTRLMKASGGQTFSASWAAKEDEQMELVVRFLKRASSNLQHSLRMVLPSRRLALLERRRILAHQLGDFIVVYNKETEQMAEKKSKKKFEEEEEDGVNAENFQKFIRQASEAELEEVLTFYTQKNKSAGVFLGTHSKSSKHSQTLSDNGAKGDHPEMIEEVKIKQPKHQQATEILSDKLSPSLCHPNKHHSGVAKAQKEGEDGSLYSKRYNQSMVTAELQRLAEKQAARQYSPASHITLLTQQAANLNMASGAINRSSASTPPSLRPVISPSGPAWSIQCDPHAPESHSSPPGSRRLQAGGFAWEGEIENNAYSKATGVVPQHKYLPTAGSYQLHFALQHLEQQKLQSRQLLDQGRARHQAIFGSQILPNSNLWTMNNATGCRISGATASGQKPTTLPQKVVPPPSSSTSLVPKPPTNHKQVLKKATSQRASKGSCEEGQLSELQSSLNTTAFVPLPSSTDHLSSFQKGMRQETRTPNPWLDHLPKGTRELKTTRVL +>UniRef90_UPI0016748451 MarR family transcriptional regulator n=1 Tax=Streptomyces xantholiticus TaxID=68285 RepID=UPI0016748451 +MPDLSHGATDADVAAVNSLRSAVMRLGRRLKHQRVDETLSPTEMSVLGTLATCGSATPGELARKEHVQPPSMTRIVALLEAKGLVRLEPHPADRRQKVVTQTEQAETMLEESRRKRNAWLATLAEGLDDEEWAKLRAAAPVLEKLAHLQ +>UniRef90_UPI0003C1277F tubulin polyglutamylase complex subunit 2 n=1 Tax=Latimeria chalumnae TaxID=7897 RepID=UPI0003C1277F +MDDNENSSISGFLDRLTLGVTKILETRPGVTEVKFFEKEPVERHVIISWEQRNCCTLPEDLKNFYLMTDGFHITWNVKFDDVPMQLGSMVINSILKLCRLKGSSVYALPHAPTLAILESDSDEEANESQPEKPHFDSRSRLFELDSCGGHGKVCLVYRNAKP +>UniRef90_A0A6J1YNG1 Voltage-dependent P/Q-type calcium channel subunit alpha n=1 Tax=Acinonyx jubatus TaxID=32536 RepID=A0A6J1YNG1_ACIJB +MWKASRVPDPMFSPRSYDALHDGGRGPPAADGTAGAPQDARGPRMSGPCPGPPLKRRGGVVDHRDVILAHQAHKIHSTPQARRKEWEMARFGDEMPARYGGGGSGAAAGVVVGAGGGRGAGGSRQGGQPGAQRMYKQSMAQRARTMALYNPIPVRQNCLTVNRSLFLFSEDNVVRKYAKKITEWPPFEYMILATIIANCIVLALEQHLPDDDKTPMSERLDDTEPYFIGIFCFEAGIKIIALGFAFHKGSYLRNGWNVMDFVVVLTGILATVGTEFDLRTLRAVRVLRPLKLVSGIPSLQVVLKSIMKAMIPLLQIGLLLFFAILIFAIIGLEFYMGKFHTTCFEEGTDDIQGESPAPCGTEEPARTCPNGTKCQPYWEGPNNGITQFDNILFAVLTVFQCITMEGWTDLLYNSNDASGNTWNWLYFIPLIIIGSFFMLNLVLGVLSGEFAKERERVENRRAFLKLRRQQQIERELNGYMEWISKAEEVILAEDETDGEQRHPFDVGALRRATIKKSKTDLLNPEEAEDQLADIASVGSPFARASIKSAKLENSTFFHKKERRMRFYIRRMVKTQAFYWTVLSLVALNTLCVAIVHYNQPEWLSDFLYYAEFIFLGLFMSEMFIKMYGLGTRPYFHSSFNCFDCGVIIGSIFEVIWAVIKPGTSFGISVLRALRLLRIFKVTKYWASLRNLVVSLLNSMKSIISLLFLLFLFIVVFALLGMQLFGGQFNFDEGTPPTNFDTFPAAIMTVFQILTGEDWNEVMYDGIKSQGGVQGGMVFSIYFIVLTLFGNYTLLNVFLAIAVDNLANAQELTKDEQEEEEAANQKLALQKAKEVAEVSPLSAANMSIAVKEQQKNQKPTKSVWEQRTSEMRKQNLLASREALYNEMDPDERWKASYARHLRPDMKTHLDRPLVVDPQENRNNNTNKSRAAEPTVDQRLGQQRAEDFLRKQARYHDRARDPSGSMGLDPRRPWAGSQEAELSREGPYGRESDHHAREGGLEQPGFWEGEAERGKAGDPHRRHAHRQGGSRESRSGSPRTGADGEPRRHRAHRRPGEEGAEDKAERRSRHREGSRPARGGEGGEGDGPEGGERRRRHRHGPPASYEADAARREDRERRHRRRKENQGSGVPVSGPNLSTTRPIQQDLGRQDPPLAEDIDNMRNNKLATAGSAGAHDSLGRPGLPQSPSRTGNSTDPGPAPAPPAVAANPQNAAGRRAPNNPGDPSDPGPPKTPENSLIVTNPSSTQTNSAKTARKPDHTTVDIPPACPPPLNHTVVQVNKNANPDPLPKKEEEKKEEEEDDPGEDGPKPMPPYSSMFILSTTNPLRRLCHYILNLRYFEMCILMVIAMSSIALAAEDPVQPNAPRNNVLRYFDYVFTGVFTFEMVIKMIDLGLVLHQGAYFRDLWNILDFIVVSGALVAFAFTGNSKGKDINTIKSLRVLRVLRPLKTIKRLPKLKAVFDCVVNSLKNVFNILIVYMLFMFIFAVVAVQLFKGKFFHCTDESKEFEKDCRGKYLLYEKNEVKARDRQWKKYEFHYDNVLWALLTLFTVSTGEGWPQVLKHSVDATFENQGPSPGYRMEMSIFYVVYFVVFPFFFVNIFVALIIITFQEQGDKMMEEYSLEKNERACIDFAISAKPLTRHMPQNKQSFQYRMWQFVVSPPFEYTIMAMIALNTIVLMMKFYGASVAYENALRVFNIVFTSLFSLECLLKVMAFGILNYFRDAWNIFDFVTVLGSITDILVTEFGNPNNFINLSFLRLFRAARLIKLLRQGYTIRILLWTFVQSFKALPYVCLLIAMLFFIYAIIGMQVFGNIGIDVEDEDSDEDEFQITEHNNFRTFFQALMLLFRSATGEAWHNIMLSCLSGKPCDKNSGILTPECGNEFAYFYFVSFIFLCSFLMLNLFVAVIMDNFEYLTRDSSILGPHHLDEYVRVWAEYDPAACGRIHYKDMYSLLRVISPPLGLGKKCPHRVACKRLLRMDLPVADDNTVHFNSTLMALIRTALDIKIAKGGADKQQMDAELRKEMMAIWPNLSQKTLDLLVTPHKSTDLTVGKIYAAMMIMEYYRQSKAKKLQALREEQNRTPLMFQRMEPPSPTQEGGPGQNALPSSQLDPGGGLLAHESSMKESPSWVTQRAQEMFQKTGTWSPERGPPTDMPNSQPNSQSVEMREMGRDGYSDSEHYVPMEGQARAASMPRLPAENQRRRGRPRGNNLSTISDTSPMKRSASVLGPKARRLDDYSLERVPPEDTQHHHQRRRDRGHRASERSLGRYTDVDTGLGTDLSMTTQSGDLPSKERDQERGRPKDRKHRQHHHHHHHHHPPPSDKERYAQERPDHGRARARDQRWSRSPSEGREHMAHRQGSSSVSGSPAPSTSGTSTPRRGRRQLPQTPSTPRPHVSYSPVIRKAGGSGPPQQQQQQQPAARPGRAAPSGPRRYPGPAAEPLAGERPPAGGHGSSRSPAMERRGPGPARSESPRACRHGGARWPASEGPPGPRHHGYYRGSDYDEADGPGGGGGEEPRAAAYDAPPPARRACSPRTPRAPGPAACASPSRHGRRLPNGYYLAHGPARPRGPGPRRGLHEAYSETDDDDWC +>UniRef90_A0A7W4JVT6 Chromosome segregation protein SMC n=1 Tax=Gluconacetobacter azotocaptans TaxID=142834 RepID=A0A7W4JVT6_9PROT +AAEAAERARAAARRALDRVEAHIALGRLERERHDEATRLDRLEHAEAEVARAGLRLAACTMDDARMAAIRQAERAVQTARAASRAQATVLNVVLEDGAEGRLVLDGRVLQTGSVDLTDSATLRIDGVGTIRIEPASGDRARLRAELTAAEDALRRMLNQAGCADPDAAETALAQRRQADLALNAARSVLSHLLPGTQDVAAAMAEARRRVAALDERIARQAASLAHGPNPADAAGGEPGVDVAATHDAALRAMQAADARAADARQALFAPDETLRQAAADLAGVRAEEQSAREAAARLVRDMAAARTAEADDVLSARQETARAALAQAGQAVQRAEAARPEGTEALADAAIRRQERLIQDGQARLGTLRQDMAALEARIRAAEGDGLDERIAGQERLRESCAAECAVCTREVKILHCLRDTLTAAERAATERYLAPLCRAIQPALAALFPRAGVTMEADFSVSRLTRRMDEPFDTLSDGTREQIAVLVRLGLADLLRARGRPAMLVLDDALTYSDAGRLERLFDILTDAADRMQILVLTCRAELFTGLGARPLTVEAVDKVQ +>UniRef90_A0A327SST6 Ferredoxin-NADP reductase n=2 Tax=unclassified Kitasatospora TaxID=2633591 RepID=A0A327SST6_9ACTN +MDLETPPPDLYGRPRADRFFARLTAFGDRYSPALGRPGLRRSPRRPEARPVPPLHLVVVSHRVVAEDVAELRLADPSGGMLPPWQPGARIVLTLPSGRARHYSLCGDPADRHAYRIAVRRIADGGGGSVEVHDDLHVGVRLRVRRPRNGFAFCGEEKVLFLAGGIGVTPLLPMARAARQAGLDWRLVHTGRTAAALPFTDELRALDPARVTVRTDDEHGLPDAAELLAHAPRGAAVYVCGPAPMLLAVQRALPGSPAAALHFERFGAAPIRDGHPFGIRIDGRTLTVPADRSALDVAREVRPDLPYSCRQGFCGTCVLKATGGTPEHRDRRLTAEQRAAGLILPCVTRAAAGETLVLEV +>UniRef90_UPI0002D87B73 type II secretion system minor pseudopilin GspI n=3 Tax=unclassified Sphingomonas TaxID=196159 RepID=UPI0002D87B73 +MPDRMRPDERGFTLIEMMVALAVFSLAALALIRLEGATIRGATTLDTTLMAQIVARNVAYTAMTDGRAPTIGAASGIEQNGGRSWAWTRVVQPTGDARILRIDVTVLDPGGRRAGHLTVVRDGATRP +>UniRef90_UPI000FEB7CF9 aspartate-semialdehyde dehydrogenase n=1 Tax=Streptomyces cavernae TaxID=2259034 RepID=UPI000FEB7CF9 +MAQARSGRPTLAVVGATGAVGTVMLQILSQHADIWGEIRLIASPRSVGRKLTVRGEEVEVVALAEAAFDGIDVAMFDVPDEVALKWAPVAAGRGAVVIDNSGAFRMDPDVPLVVPEVNPHRARVRPRGIVASPNCTTLSMIVALGALHAEFGLRELVVTAFQAVSGAGHAGVIALRRQLSLVAGTELGTSPGDLRRAVGDDTGPFPEPVALNVVPWAGSLHENGWSSEEMKVRDESRKILGLPHLPVAATCVRVPVVTTHSLTVHARFEGDVSVDGAREILATAPGVVLFDDPAAGEFPTPADAVGTDPTWVGRVRRALDDPTALELFVCGDNLRKGAALNTAQIAELVAEELTGR +>UniRef90_A0A7X3VZR8 Xanthine dehydrogenase family protein molybdopterin-binding subunit n=3 Tax=Dehalococcoidia bacterium TaxID=2026734 RepID=A0A7X3VZR8_9CHLR +MTTTEREETKFKVVGTRPVRHDGIEKVTGQALFGADIDLNGLLHGKVLRSPHAHARVVSIDTNRAESLPGVHAVITGDDLTPAGPMERGGGNRTDAILAQGKVLYKGHPVAAVAANSPHVAEEAITLIDVTYEPLPSVTNVEDAVAPSAPVLHEGWDDPSNGVPSSELDSPNAASLERHVRGDLEAGFAEADLVVEREFRTKTVHQGYIEPQNGTASWSPEGRLTIWCSSQGHFGIRDAVAELLDIPVSQLKVVPMEIGGGFGGKLTAYLEPLAAVLSKKSLRPVKMTMTRAEVLEASGPTAGSHVKVKIGVTNEGRITAASGKFLFEGGAFGGGPVAPACAAIFAPYNLENVRIDGYDIVTNKPSTRAYRAPGAPIVAYAVESVMDEIAEMLDIDPMEFRLLNVAREGIRRADGVMNGRIGAAEVMEAVRSHPHYVAPRDGANHGRGVAMGFCRNNTGPACVIANVQDDGRISLIEGSVDIGGSRTVIAQQLAEVLGIPVEDVNPSIGDTDSIGFTSNTGGSGAAFKSGWAAHEAARDIIAQLTERAALIWDVSPEQVRYEDGGVEHVSDTELRMSFREIAGMLPDSGGPVVGRANLNPVGQSGSYSANIVDVEVDPDTGKVDILRYTAFQDVGFAIHPSYVEGQIQGGTAQGIGWALNEEYFMSDDGAMLNTSLLDYRMPTTLDLPMIETVLVEVNNPGHPFGVRGVGEANISPPMAALANAIHDATGLRLRELPMNPQAVSKAIQEKAG +>UniRef90_A0A6G4ZTC8 Sodium:solute symporter family protein (Fragment) n=1 Tax=Chlamydiae bacterium TaxID=2081524 RepID=A0A6G4ZTC8_9BACT +MFLDLFFAGLFLAGLYFFGIRKSEKVQTESAYLIADRKIGLFPLTATLVMTEFNTATLISFSSLGYLAGKRALSLPLVFLIGLLFYAVSVAKKWKGFDGISVASYFSKRYGRDIGIIASIALFMAMSGFSAVYVKSLLLLFSPFFPSIEPWVLSGVLVALVLVMILRGGLLSIIRTDVFSFIVILGFFPLVALFAFKTPLGTPHEMIDVSSHLPVRFVISLVVLTMFTYILAPWYGQKIFAAKSQKTAFLSVFFAAIIVFVLYGLAVMSTWFLRKNGAEVSNPEQAFPMAMMLTLPSGLKGLGYAILFAASATTLSGVWSAMCSLAVGDFLKAKNSYKRSMGLTLMFALLSFVLANVLVDKVLDKLILANIPIAALSFALLAGFYWKRTSRFGVYLSMFVGWVCGIGSYLYFGEAGGYTWYWAMWGIPAT +>UniRef90_A0A7G9G4R0 Ribosome assembly RNA-binding protein YhbY n=2 Tax=Lachnospiraceae TaxID=186803 RepID=A0A7G9G4R0_9FIRM +MNSRQRAYLKSLAMTIDPVMQIGKSSLTPEITEAVSEALEARELVKVNVLKNCLDDPRMIAEALAERTRSQVVQVIGKKIVLYRESKTKKKLELPK +>UniRef90_P59908 Photosystem II protein Y n=4 Tax=Bacteria TaxID=2 RepID=PSBY_PARMW +MLGIDARLFLVVAPILAAVSWAAFNIGRAAVGQLQLLIKRSRA +>UniRef90_A0A645HJN1 CN hydrolase domain-containing protein n=1 Tax=bioreactor metagenome TaxID=1076179 RepID=A0A645HJN1_9ZZZZ +MGDGIQFWGQSFIAGTSGEILAKASADKEENLLVNLDLAEVDATRTHWPFLRDRRIDAYGDLTRRLID +>UniRef90_A0A3A4YZV3 Sulfurtransferase TusA family protein n=5 Tax=Deltaproteobacteria TaxID=28221 RepID=A0A3A4YZV3_9DELT +MTDITPNETLDCRGLSCPMPILKTKKTIGNMKSGQILEILGTDPGTRNDLPAFAKRSGHEYLGEKQDEGFSRFYIKVK +>UniRef90_A0A4U5NX06 Peptidase S1 domain-containing protein n=1 Tax=Steinernema carpocapsae TaxID=34508 RepID=A0A4U5NX06_STECR +MGAVHLFAVFGLLALVEAKELKLVSCFFTFQNVNRAVFSSTTASKVPFCARLELTKEPFKGQFRHIACSTLTSQFIFTSAHCVTFTANGAVFVGITDMATAFNDPNKQFVDFTPTDVIIHPEFSHKKGNGIALVKVRSL +>UniRef90_UPI0020216C25 phage major capsid protein, P2 family n=1 Tax=Halomonas sp. ATCHA TaxID=2945104 RepID=UPI0020216C25 +MRKDTRIAYNRLLDRIAQLSGVPSAKEQFAIEPSVQQTLESKIQESSEFLSSVNIIGVDELKGQKLGLGVTGPIASRTDTTQKDRTTSDVSSLESHDYECVATEFDTHITWAKLDAWAKFPDFQTRVRNAIVRQQALDRIMVGLNGTTAAAETDRVANPLLQDVNIGWLQQYRTHAPARVLSEGANAGEVRVGPSGDYENLDALVYDVVNEMLDPWFRESTDIRAICGRKILADKYFPLINQEQAPTEQRALDMILSQKRMGGQQAARVPFMPDGTLLITPPENLSLYWQNGSRRRYLEDNPKRNRIENYESSNDAYVIEDYGFGCLVENIVFGDWSV +>UniRef90_A0A3M1UPZ1 Chain-length determining protein n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A3M1UPZ1_9GAMM +MHELYEQLLTQLRGIWRFRWVIPTVAWVLFVAAAVVILRLPDEYRATATVYVDTHSILRPLLRGLAVTGNAEQRVRIMTKTLLTRPNLEKLMRMTDLDVKAATPAEREDLLDSLAARIRVESSRRGENLYKLSFEDPDRKLARKVVQALVSIFVEGLLGQSREDTDTAQKFLDRQLAAYAQRLNEAEKALADFKRKHVGMMPGEGKDYYASLKEEEEKLETARLQLRELENRRRVQRRQLAHLDEEESLFDLDPAEGGSLATPYDARIEALHQRLDELLLRFTDRHPDVIETRRLLAELEAKRKAFLAQARQEHKATGGSDPVRAQLQVLLSETESQIAALRTRVKAYEARVEKLRKMVDTIPKVEAQLKQLTRDYEVYKQQYEALLARRQQADISEKAEVSADDVKFRVVDPPHVPLTPSGPPRLLYLGLAVLGSLAAGVGLALLLHLLRPTFQDVRQLRDTLHLPVFGSVSIAVTDEIRRKRRMEMLSFGTIVLLLFGFYGMALFAELFQLGIIRQLHLHP +>UniRef90_A0A1T4V4Z1 Arabinogalactan endo-beta-1,4-galactanase n=2 Tax=Eubacterium TaxID=1730 RepID=A0A1T4V4Z1_9FIRM +MKKRSLQKVISTILCTAMVASLTSCSIGKGGKSEKPKETGIFADIVNPELSDKHKGDAVESSVLVNKVEGLSEGFIKGMDISSLIAEEQSGVKYHDKDGNEADLLKILKDSGYNYVRVRVWNDPYDANGNGYGGGNNDIDKCVEIGKRATENGIKTLVDFHYSDFWADPNKQSAPKAWANMGIEEKEKAIYEYTKESLNKLKTAGVDVGMVQLGNETNAWLCGEINWINITTLMNSAAKAIREVDKNIIIAVHFADPSSQERYKNYLQILQNFEVDYDVFGTSYYPYWHGSLENLTEILKFAAETYNKKVMVMETSWAYTPDDLDGHGNTIGAGANVVKNYSYTLQGQVEVINDVVQAVVNVGDAGIGVCYWEGGWIPVPEGDAPRSEKWEKYGSGWASSYSAEYDPDDAGKWYGGCAWDNQAMFDENGNILESLYTFDYCYTGTKCDVAIDEVANTECTIRIGDEIKLPETVTAIYNDRHTEEISVKWEEISESAKYSMQESGAQKYVIKGVASVSGTDYDVTCDVNMIEPNYVENQSFEDDSEEGMKVWTIEDRAKDDAEHELFNMDKITDAYTGTHALHWYSKTKCDFTVTQKITGLKPGKYKASCQVQGGDTTNGAFKLTVESNGKTYEEPTEVTEWAVFRQPTIENIVVGKDGTATISFTVYAEANGTKGPWGTVDDFLFNPVEKNK +>UniRef90_A0A1H3EFD9 Cyclic nucleotide-binding domain-containing protein n=1 Tax=Ruminococcaceae bacterium YAD3003 TaxID=1520816 RepID=A0A1H3EFD9_9FIRM +MYVICYGKSPKALEAGGKLIKDIGGRYITGTELLTGSFVIAEGETKCAIVMILPLEAAIRAMGETVTDKTRDLPVIAVSPEGHYAAIIKRGNSVYEQGTDEVYAAVLKSMGPFCFSEFESKSEITSDLTKLISKYNMAVNSEAVLDKVNAAINSGEKINVYTDLPIVFADPVIDPMTYSLHSYPYDLRDEFIKQYKATKNDKNVPSVFITCTYLGDEEDDTNLILVPKLLSLGIEIKVKTDPGYCRPAIRQSLINHLLNPMSVAKVAATYSARESEMVTGIAEELGAEVISYDAEQIANANAPMSMTFNPEKKNDTATALAFLASSEGSIVIRRATSAKGLVFSAAMNRDNIILPE +>UniRef90_A0A3B0X686 Sel1 repeat family protein n=1 Tax=hydrothermal vent metagenome TaxID=652676 RepID=A0A3B0X686_9ZZZZ +MNHFSPLALILLLACALSSTSLAASKNKKPGPPDDFEKGLIAYQKKDYATSLMLWFPLADAGNPQAQYRLGKMYLDQKDQRKDPAEAANWIKKAAIQKHAAAQSLLGQMYLKGVGVKRSFSKSAKWLLKAARKKDREAQYILAKLYYYGDGVDKSAPKAAYWYKKAAKQNHTAAQNKLALMYLTGEGIKKKHKKAKQWFEKAALAGSTHAQINLAKLYLNNEVVKKDSHKAFKWYQKAAITGNAEAQNQLGEMLENGVGTQKNIKQAINWYKKSAAHNYPQAHYNLGRAYVNGYGITKNFKKGIAHFHQAAEKGNGKAQKDLGVAYYTGKGITPDSAIAYAWFYVAAANNVADARKTTNALYKKLTAEDKKKAIALATEYKRKYFIRPE +>UniRef90_A0A4Y2D9G6 Uncharacterized protein n=1 Tax=Araneus ventricosus TaxID=182803 RepID=A0A4Y2D9G6_ARAVE +MVSFDDVWRAIACPWLSPHHCPSGIDLDVKSRLIRKEYVSPLLWCPTATFTGHSRALTCAGDKGTQTTGRRANIPPSCSLHDIVWRDMVLPASTESCDVSCRAVSVLRRLAH +>UniRef90_A0A2K9NRQ2 Peptide ABC transporter ATP-binding protein n=1 Tax=Bacteriovorax stolpii TaxID=960 RepID=A0A2K9NRQ2_BACTC +MLLEVSKLNIHFKSDRSPEPIHAVRDLSFTLKQGEMLGVVGESGSGKSITNMALMGLLPDTAIVRAEKANFNGHNLLNLKEKEWQKVRGQEIAMIFQDPMTALNPFLSVQFQMVETIQGHLKLSKKDAIDKSIELLNLVGIPSPKDRLKSYPFELSGGMAQRVMIAMAISTNPKLLIADEPTTALDVTIQKQILNLIKMLQEKNNMSVILVTHDLGVVSEYSERLQVMYAGEIVETGATADLVRHPRHPYTHALLASRPGAVVDDKKRIPKTPLPSISGIVPAFHQRPLGCQFNPRCQYMTHECQQGHIAIVGEGPQNDNFREYRCIHPIEEAIR +>UniRef90_A0A521V9W9 T9SS type A sorting domain-containing protein n=1 Tax=Saprospiraceae bacterium TaxID=2202734 RepID=A0A521V9W9_9BACT +MQPITHCMKKHLTLALLSLASILAAQPDSLTQEYIHGNNIGALLNSNGSLFWDGGNGHFIAGEDGRSLVRAAGLWIAGVGKAGNLKGAIQMYNEDGRSDFVPGLLGDTVNAENWNHIWKVTGEDILLHIRDWETDGVLDDTIASIFGWPGRGNPFFEQYNGFPLPDINSHQLAPFYDVNLNGVYEPHFGDFPMNDTRSCGSAPVPAELSWFSFHDNTPHSESNMAPLQIEVSTEVTAYRCTDNQFANNSLLLFYKITNLAQEDIDSCYFGVFFDFQIGCPNDDYMATYPEKNIFYAYNSDGYDEDCSPYNGFHDQPPVVAVTLLRGPRNEFLEELPLSVIMPIHEGSTIPGQAPPEQPAEYYNYLTGRGKDGIPLTNGGTGYNPGSTDYTNIIFPGRPGMDTTGWTELNAGTLPGRRRVLASYGPFTLQPNAVNAIQLIITQIPGTNGPLLENLDALYDSLFEAFGFLYNGCIDPTPLYPKCTEDIEIPPLPPPPPLPEEFIISPNPVSKILTIQIKDPGNVERLSIYDATGRLVFEKKMLTDVLEIDVAGWPKGTYFVRLGKGDEQFVKGFVVMRR +>UniRef90_A0A6L2N053 Extensin-like n=1 Tax=Tanacetum cinerariifolium TaxID=118510 RepID=A0A6L2N053_TANCI +MSDVSSAVTYTLVYTDSEPWRYYGEDSAETGPPRIIVLQPVAPPSLDYVPGPEHPPSLDYVPGPKHPPSPIEIPYVPKPEYPEYLAPSNDEVPLEDQPLRADASPIAASPDYLADSDPEEDPEEDPEDDQADYPVDGGDGDNEPFDDDDTDDEDPEEEPFEEDDEEEEEHLASADSPAAALLSPPLLVPSLPLPLPSPLITSSVDTGASLSYREAGIRMRALLPSTSRRTDILGADMPPQKKACLTTPAPGFEIGE +>UniRef90_A0A3P8RZN5 Otopetrin 2 n=1 Tax=Amphiprion percula TaxID=161767 RepID=A0A3P8RZN5_AMPPE +QGRGEPCGEQCSPWPRCSPCKCVTSDNPCEPCRMTVKDRETEEVHLSNNINAVGQTESASEPDLNDSSTEVVRERSRNWGWLLSGIICVNILILGCALVSGSAYNNVKISTPDLQVFLIIILLLTSIWMVYYVIYTARTENAVVYKDDHAGPVWLRGGLVLFGLLICNICFGFMVLKYESNCEIVLQTYFLWVHAKDCVQLQRNISRCGLMLTLSTNLVLWMTNPSARKHIITLLSFGTISCLTAGYGDDKCKCSHTSCSMFKEAYYYLYPFNIEYSLFASAMAYVMWKNVGRVAAEHGHHDIKFSLRDIFLGPVFGVLLVFTGLATFIVYEMEMKKDDHDADKKDQAVMMHFVMNIVIVTLMSVSSVIGCAIYRVDHREHVSEKNPTRSLDVGLLVGASLGQFIISYFSIVAMVATGAKGYLNGLNLAWSILMVIQLGLQNFFIIEGLHREPFHEVEPVAVVPNPYVLEPSKDLSIPEGPVMDTKPNPELTAHSHTPEHRHKLVWKRRVLKEVCVFLLLGNIILWIMPAFGARPQFDHDTETEFYKFNMWAAVVNIGLPFGIFYRMHSVASLFEVFLCS +>UniRef90_A0A267H7W8 ATP synthase subunit e, mitochondrial (Fragment) n=2 Tax=Macrostomum lignano TaxID=282301 RepID=A0A267H7W8_9PLAT +YLLLLFLLFKMLNYLMSASRASKLTFLASLAFTGFSVSFVLWTQKSERDAVKQGVLADIERQKLYEETLQKRAA +>UniRef90_UPI00201FA0E7 ABC transporter ATPase n=1 Tax=Flagellimonas sp. 2012CJ39-3 TaxID=2942214 RepID=UPI00201FA0E7 +MLVDFETLPDTARIWIYQSNRSFSPEELEEINQALSQFLNEWTAHGSTLQAGFEVKYKRFIVIGLDQSQASASGCSIDASVHFIQGLEQKYGVELMDRMNVSFKQGEYIAYKSLKDFKKMAKAKSISKNTTVFNNLVANKLEYSEHWEVPASESWHSRFL +>UniRef90_A0A674GZ47 Rap1 GTPase-GDP dissociation stimulator 1-like n=2 Tax=Estrildinae TaxID=40155 RepID=A0A674GZ47_TAEGU +MRTSESASESKGEAQGIHLTVTINCTVAPRANNRGGRPGPSDLTETLNKHLEHLGLCGDGTEAEDQILESLNGILLAITEDKQRSFHLLRGSKIFPTLAKILKGNPRCAVKAAHVLSEIAKNEEMKKPCIEADLVLTLIPLLESTDQEMLLHAGRAIGRICYDNRSLQEELVKVGVIPSLVRILTDYADSEPLVHVALLALYNLADLDSAKEALSMTKVAEQLVKQLRRAESHEKLEIVFEVLQALAENDALKVQLVDAGVPEVLSEILLRLQGSSQAEDTCIMKAASDLIVSLLLGDGNCLRMFQLGVVHQLLDLLEKQVQSGDTSVQQAALSALQSLAVPVVSKVQMLEEGVAERIEALLRAESPPVQFKLLGTLRTLADGQADAAEILGQDPQLLSRLVQWCSVSDPSGICGEANRLLASILHHNRSQEVVKAIQAAQGVKHLVSMTTNEHAAMQNEALNALAIASAIDLETLEESFKESQLVQSLHKLLRDDNTSPEVKYNSMGLLCRLLNSGDLRQEIEEDKIKDTLEKLCSHSNADVVKGATTTLQVLRGETPH +>UniRef90_A0A6L8ETX0 Helicase C-terminal domain-containing protein n=1 Tax=Candidatus Poribacteria bacterium TaxID=2026781 RepID=A0A6L8ETX0_9BACT +MSRANYSNREALNDALKVYLQAMYSFVSECLDEQSIRDFLKLQSSDDLMEDIEVKDIANLIKSYSYWSKCFKEKFKIIDRDNTRYYDARSVTSLIVEGRNQLSHQWLRELDPEFTRTQLFFITDILGKIKRSDAQREVEVIRDELFNDTTEQLVTIGVEDEKAKYEKSIAEMEKRLASAEKNKKKLSKQIVDNAVKLDEKTEELEKRSEQLVSAKLSKQECEKQRDSISKQLKKVQTAHSACKEHITTISNQLTTAETERDDYKERFETASRKREEAETEWQACEESLIAMRKLFTIAAIGNQTVQVVYPPIQTDSTIRILDRRNVEKKNYLLELLEQKQPTVIYVQSEERIDQLLALVGPEKADVIGEHNERISEAEEREILEKLQSGELIAVVSNTAFSTLASPHRIEHFVFCHLVPGLDEFFRQCTPAFASEKHAYLHLIYNSEQDIKGLDQKYPDRKTLEKFYPELRKLAETNGDLIRPESLYNELDIAKQGIETGLAIFEELQLLERNDEGIRLLPPAGNKLEASEIYRRGEQIKNGAADFQAFQFEQSIEQIWEALLKELNVDNEHILEASRVYEVRAFQDAIEDSRAQSESSTDAVEDDNAVDSEDAVAKPTLKSARANAKVTEEDVTEIRSRSAAGESDSELAEADSEKKPEVKQSEFWQPIRAGEFGELFTGKPVPVSNEGWIAKTVRNIGVCLYLTNQRCYVQVYFHGANGSERREKIMTLFPKSEYTYAYRDSSRETKVQFPVLDKGRKDQDDWDEIREKLVAMGTDIYNKIDASDL +>UniRef90_A0A4D9D465 MFS domain-containing protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=A0A4D9D465_9STRA +MEAPFLAPESSGSSQDGNVASQETVIQRHPWRVHGSRYFQLILLCILILNNAVVWVAFSAITPATAAVYGVSPGLVNIVALSFQMLFLPGTIAGYMLKERWGLRLTLLAGAFMTALSAAIRFVSLYVPPVSLRNASTDGHDVNNGGGAYALLLLGTSLAALAQPLLLNTPPDLAVHWFAVKERDLVTSLAFMCSPLGSALGVTLAPVFVSEAGADTEEDVSGSHRNDARGGLRLFLLAQLGMSVATTLLAHAGATDRPPTPPSRAAALGSQREEERVHSSDASGSRVLCMPLAWELVAPDLRRCLLCNPSFLLLLFCFGIGLGFFNALLTLLGQLLAPCGYSEAEAGALGGIFLGTGLVGAVMAGVLLDASHRYGLLLKSGFLGAWAASLFVVFTLRPDNFLVLALCFGLLGFTMLPLLPVAIENGVEITYPDVPEFFSSGLLLSAGNLTGIPLAFIFAWTIDSYEGSCRKLWKPAAVLVVVVTTACALPVLGYRPRAFGRWEAEKEQRREGLEGCGHDVATRDA +>UniRef90_A0A833JG99 Uncharacterized protein n=3 Tax=Komagataeibacter medellinensis TaxID=1177712 RepID=A0A833JG99_9PROT +MVVTMLFATVLFVVFVTVFVATLFTVLTTLAVVLTMVVTMLSMVFAVIVFSVGDNRQGQTKGSSKQKCFFHVNHFLLIN +>UniRef90_A0A8S3R600 ANK_REP_REGION domain-containing protein n=1 Tax=Mytilus edulis TaxID=6550 RepID=A0A8S3R600_MYTED +MNSWKMLLDNFGSLRDCEWFDVHLAIKSALESAFLYMDKSFIDYISFTYGKKTVDLNYFLNFACQNGKEIVVRWIFEQFETNHIDIIAPLLSVCRKGNKELVVYLLRKCCIEDLNLNATMQAACESGTLDVVTMLWEKFNFDIFDVESCFKSSCRKGNLNIVKWLYESFDKALFHDISVLNLACISSNIELVEYLIINFLKTSDNEMTKIEECLSYCNSSMLRFFVGKYGCDLFDLDHILSVGLSENNAEFVIWSLTNFDFKSVDLNNAVKLACQNGNFRLHTSGETRLVEWFLNSNCYESLELQQASNVSCARGKIDVVIMLHKRYNEKACNVKAAVNNACFSGSIETVYWLLNTFQEKDADLDVALAMACGNGKNNLVMWLLEKYDMKFNMKLAILETFKASLKKERSNGKLSENSSFELLNWMLKECGNHILDIKISVLLACKQGKIGHVKWLFDKFSETCRDINPSEALEAACHGFDTFAIYLFLVKRFRNRKFDLQKVMQYACEFGNDQIVEDLLKRFDKNKLNVREGIFAACLKGHLNVLRVLWLYAKPKYFREKRLVNLVSNSENSEMVNWLIAAVDR +>UniRef90_A0A6M3SAA8 L2 (Fragment) n=1 Tax=Human papillomavirus 35 TaxID=10587 RepID=A0A6M3SAA8_HPV35 +KRASATQLYRTCKAAGTCPPDVIPKVEGNTVADQILKYGSMAVFFGGLGIGSGSGTGGRSGYVPLGTTPPTAATNIPIRPPVTVESIPLDTIGPLDSSIVSLVEETSFIESGAPVVTPRVPPTTGFTITTSTDTTPAILDVTSISTHDNPTFTDPSVLHPPTPAEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPIPGSRPTTRLGLYSKGTQQVKVVDPAFMTSPAKLITYDNPAYEGLNPDTTLQFEHEDISLAPDPDFMDIIALHRPALTSRKGTIRYSRVGNKRTMHTRSGKAIGARVHYYQDLSSITEDIELXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSNTTIPLSSGYDIPITAGPDXXXXXXXXXXXXXXXXXXPIXXXXXXXXXXXXXXXXXXXXXXRKRIPXFFADVSVAV +>UniRef90_A0A7C6DX07 Oligosaccharide repeat unit polymerase n=1 Tax=Candidatus Bathyarchaeota archaeon TaxID=2026714 RepID=A0A7C6DX07_9ARCH +MGTVDLLVFVILGALCYFALRFSRFVYGDYFAPVGIFFGVNLASLAFYHLRLIPMVPLSSQAYALIAVAFFSFFTGALTATPTVALRGQPLRKRASSRHVWNSKGLGLFYYFSACVALAGWVFFVTQIVPPGWVRNLWMLQGDYEFPYHLGYTLVAGIAVPPSFVLLGAVRGKTTLPMIFFLITTVFALAIVGIKSYLTIAIATSLIVWATIHPGRLKWKHLAFLALCLVGFMALYDHFIDIFVPRHFPGSRFPTILAFLERPYLYLVGPWAAMSVVMAAPPPQAQWGQVTLFPLWKILGPGGLSVMERVPQYLPFVDIGPSMFNVYSLIGEVYWDWGWVGVILICFLLGFISTRLYVKAQNSRNWIDYLSTGFFSYGLFISFFAYYYRETLIFLLIYPVVIGPLVSKLVSSLRVPRVRPVGIKI +>UniRef90_A0A1M5D686 DNA-binding transcriptional regulator, Lrp family n=2 Tax=Caldanaerobius TaxID=862261 RepID=A0A1M5D686_9THEO +MDKCMDVIELLYENSRLTDEQIATMTGLDTEEVKNIIKKLEDEKVLLKYRALVNWEKTQKEVVHALIEVRVTPQQGHGFNAIAERICQFDEVTSVSLVSGGYDLAVEVEGKTMKEIALFVAERLAPIDGVLSTTTHFILKKYKQEGVFFTDGPEDQRLVVTP +>UniRef90_A0A353M699 ATP synthase protein I n=8 Tax=root TaxID=1 RepID=A0A353M699_9GAMM +MAVKSKLPKIQLIIILVTVAYFSTLGAGLSAAYGGLISLMNTGLVNRHTNKQREDLTISAQAGVGMMAISVIMRMAMVVSLTLAGHFLLKLSTDALIVSLVLGLIGFLIDKMLSNGGQ +>UniRef90_A0A8T0H0I4 Cytochrome c oxidase subunit 1 n=1 Tax=Ceratodon purpureus TaxID=3225 RepID=A0A8T0H0I4_CERPU +MINHSEGSTVKIMFYWGYFVSSSRKTGQWMSSSSFHTDIFTNGFYVGLHEASLIVLIAWFFPSPSICSSQSASVLFVIIASVSSCCKKNDCSPSLAMLHICSTIIKRVAIQFKCTH +>UniRef90_A0A536S874 SGNH_hydro domain-containing protein n=1 Tax=Chloroflexi bacterium TaxID=2026724 RepID=A0A536S874_9CHLR +MMHRVVAVDLLILVLLAGCNAASTATARVTPSPSGTSSPIATATPSSSASLNSVRYVAIGASDTVGVGAVDPARGSWPARIAALLPSGAAYVNLGVSGSLALQAQREQLPGAVAQRPTVVTVWLAVNDLNATIDPASYQDALGAIVDGLVQGTSAMIFVGNVPDLRGVPVYASVDKARLLAGITAYNDAIARVAARSATRVFVVDLFTGSAALVSTATVATDGFHPSDAGYQLIADRFAGAMRAKGIPLRS +>UniRef90_A0A1Q9YEZ7 Translation initiation factor IF-3 n=2 Tax=Erysipelotrichaceae TaxID=128827 RepID=A0A1Q9YEZ7_9FIRM +MSKGRYSIINNRKVAPNNVNDDLFNEKIPFREVRLIDSNGDQLGVKSKREALEIAYRQNLDLLCVAPKARPAVCKILDYGKYHFEQQKKAKEAKRKQHTVELKALRLSPVVDTHDFETKLRQARKWIEQGMKVKIDMRFRGRMMTRQEVGKQIMNDFLEQLSDIASVEKKPSLEGNTMSLILAPQKKK +>UniRef90_A0A1R4ENY9 LigA domain-containing protein n=1 Tax=Corynebacterium glutamicum TaxID=1718 RepID=A0A1R4ENY9_CORGT +MTLTPEDMQLFKDLRMTEFGRVIQEIIDDPDRDHDSFEDKIQQALYAQRDARDNRRIEKLLKAAGLSYTAAALERFDVTGDRGITADRLLRLGPATG +>UniRef90_A0A7J9XK46 Phenylacetate--CoA ligase family protein n=1 Tax=Pseudonocardiaceae bacterium TaxID=1873463 RepID=A0A7J9XK46_9PSEU +MSNANSTAPASRRGAAQRLSEYRRYWDEDRETMDPRLREKKIVERIQNQLRYVYAKVPFYRRHYDAHGFTPDMVTSLEDFTTKVPVITKKMLVADQAEHPPFGSYLGVERSELTRIHGSSGTMGTPTMYGVSRRDWAGAGKFSCMALWCAGLRPDDVVHISFPFTLFFGGWGLLQAAEQLGACTFPVGTMVSTERQIELLQRLDCDVLVATPSYVNHLGTTARAHGIDVRASAISVAVMGGEPGASIPAVRESLHQLWGEVSLIDLAAGSTSEMYPFTTSMGCLESDGGVHLFQDENYTEVVSIEDPNEPVPPGTSGAVVATHLWRDSQPMIRFWTGDEGVIDTEPCPCGRTYPRMPKGVYGRLDDMLLVRGANVYPSAIESVVRGVEGSGGEFRIIVDRPADLDEITVEVERDAALATDRAPALQATLQEQFKNALGVRVAIRVVEPATFEQQTFKARRVIDRRSSS +>UniRef90_A0A7S3PQM2 SSD domain-containing protein n=1 Tax=Aplanochytrium stocchinoi TaxID=215587 RepID=A0A7S3PQM2_9STRA +MLKDGAIDQSEEEGCVGSLKRRYLESMHKRTKTHCGGCFAIVLLLSFTVSAAYEFLQGDADFADPNQPATLAFDAVELSRELFDIAAEESEEESNHFEGVSFGYEWKDGRSENIFTPKNLQTICTIEQIMFAQSAYGFDLCDPRNINTTQTCVTSFTEEGVDTSIAGNFYRFENASFNFEDCHLLADEVVGNYSDLIYTSLSLSDSSPARFFVNSKTKSTITRSTLLLSHPVEKTAEEKLLDMEQDYFDFFGMEATLFRSVYRNPATLGDIKMSFFNIVLLENEFERMLPSDFIMAFGSMTFVAVWMGIYTKSLFLTVCCTGYILFSIPVSLFMYKVVFRILYFDFIHVLVIFIILGIGADGTFVVIDAYKQSRLLLDDDLERLVYSWSRSTATVFNTSFTTVVAFVVTGFTPLIPLSTFGIFAALCITVNFVFVCTIVPSTVILWERWFVKDKEKGVEKSEVVPELKKENSNSSFEGHFKSKDEAKHTLDALVEGNNRVFEHYYVPAILKCKQVFVLLGLVIGILGVYGVTKVSQLTKPEQWFPEDHTQSIFIEKLILEFLSGEEGEYAEVTVFWGIDKVERDYPARYSGDTETYDDKVIFDDSFDITDFQTQLAIIKMCELLENRTCDEDTCGGFTTLLFPETNTYQGMCTMREFHNWWNVEKNFSVPLNSANETLFYERLGLFVVENPEMARHVGIIGGVVKFFSIEYIMTLKILAPGSEVQNYVDIMDNIIEKYKSFAPASAQSVDYSSPDFVEYALELSLQETVIKGLAITFPIVFVVLLLATGNWILAAFSVIAIAFIVVTVMGFVFAALGWELGIAESIVSIMIVGLSVDYAIHLGHMYTVAGKSEGFESREDKFHYAVLTMGPTVLAGGMTTLGAGAFLFGAQITFFGKMGVLLVLTVTCSLFYSLVFLMSVAAWFGPQGTYANLNRTCSKQ +>UniRef90_H6QP23 RNase H domain-containing protein n=1 Tax=Puccinia graminis f. sp. tritici (strain CRL 75-36-700-3 / race SCCL) TaxID=418459 RepID=H6QP23_PUCGT +MAGARRWIGLEALEAGYSAACGEILGSRISGYSMYTDSMCVHNSTNRTFGWARS +>UniRef90_UPI00197E61F8 hypothetical protein n=1 Tax=Salmonella enterica TaxID=28901 RepID=UPI00197E61F8 +GRGGGGGRGGDRGRGEGEEEKGEGEGGERGGKKGRRGKEKDRKEERGGRGEGGKREREKEKKGREKGGGKENIGKKKGKRRRRRKGKKEEERGEKKKRKRRKGRRKRGGGKEERKRGKKKKGRKEEEGKRKRGKRKEGRKREEGEGEKRRGEGEKERGRKGERKRETRKKKRERRGEG +>UniRef90_UPI00082B7ECA thermonuclease family protein n=1 Tax=Sphingomonas soli TaxID=266127 RepID=UPI00082B7ECA +MLAALSLLIAAAPAGAACVAVDGDTLRCGDERVRLLGIDAPELPWHCQQGRHCAPGDPYASTRSLRAALSRGPVSLRRFGTDHYGPTLALVSAGGVDLSCWQLSHGQAIYKSWWDNGGQLARICPAAR +>UniRef90_A0A1V6AN80 Heptaprenyl diphosphate synthase component I n=1 Tax=Firmicutes bacterium ADurb.Bin146 TaxID=1852882 RepID=A0A1V6AN80_9FIRM +MNNTKKLTISAIFTALAIAISIAESYIPYSAIAPGVKLGLANVIPMTLLYVLGPLYAISVQAVRIIVTGLLRGNLVTFFFSFFGGMASTVLCALIKKQKIIEFSVIGLSVIGAVIHNTAQFFTALVILKNINILWYIAILAIFAVIAGVLTGIIAKYTIKAIERYSRSI +>UniRef90_V7ICF6 Signal peptide protein n=17 Tax=Eikenella TaxID=538 RepID=V7ICF6_EIKCO +MQKYILTTLLLACATTAGADNFRPQKLALIHSLYVPYQNGNTVHAHPERHFSADLRAVYQEDKQHTAPNEVGCIDYDPIIAGQDWDSASLNRTLNIRPLANGRIEAVFQQFPGDFSATQVQFVLQCSPNGRCLVDDIYSATPGHRLVSFKRSVRRCISEMTNQH +>UniRef90_UPI001C0085A9 TIGR02680 family protein n=1 Tax=Nocardioides sp. LMS-CY TaxID=2840457 RepID=UPI001C0085A9 +MTLTQIPTEGIETADQTPPKHHPYRWRMNRAGLVDVWYYYDTEFDLSGGRLVLRGTNGSGKSRALELLLPFVLDADRRKMDATGSGKVSLVELMKAGAADRTTRAGYVWLELARSVDPTDPADAELHESGTTEQHTTIGAHIRFSRSTGEAKVHYFTTDLRVGYDLELLSPTRETLPRDKLADLIGADRITTSPGTHRDRVRATVFTLTGDAGAERYAGLLQLLHTLRSPDVGNRIEEGRLPQILSDALPPLDERALNAAGEQLDGLSETRLAQGRLEAALGHVNTFFDTYRRYAATAVSDSAENTTKAASAAEAAVKDAKNRATVHAELDKARGENQARMGELDESIADLSGTIAGIKQSSAYADARDLDEREKRVEALGAAAVAALVTAERARGAEGREVRTANEAAAKGVSASERAAAAVEKARTKVDAAGVSGGLPASIAATTAPASVLTEPVRLTRDGDPTPLDRPVPVQLSVTPDDLGSAVEQARLVQVSATERGRQAAGRLDKAQALDVQRGKVEAAERRAEEADQRANEAEEVDLERQVELTTAADTYASQWRDWVSAAATVAAFGAEPDLTGTGIDAVLADAPIVIGDLSEDDLTELDHVAGMLAETVREQHTHTIAELDAADQVDDAVRNNLKVERTQLESAVDPSPTTPTWIRPRGVDAIPLWRAIDFGDDLDATDRAGLEGALLASGLLLADLHRDGTLHAENGQLLLTPTGPVDETPVTGKLIADPGSPMPVEVVEAVLARIGFGDRRSGGATTPAGVWVAPDGSWGSGPLTGRYLQPVARHIGTTARAEARRVRLAAIEVELAQLADAAEVRAAARAEARAARDRLGAVTRNAPRTQAVSSARVRAADATNRAAKERSRAHEAAMQASELRTAWSRDVSEHRAICSEFNLPHTADDLQVVRHATGEAESACRDLSNLLDQLITVVADHADAVGRAGDRTDERVEDELRAATEWTTWHREASELESVRSSIGQEAEAAKAELRECETTRKTLEGELDKARTLDSRLGVEVGTAEAEARAAAERVTTTHEDLAATFDQFRRRLEMPGITAAAFAEPPETIELSEVTPAAVRKAVTRTAAGLRRHSQGADENTLFGPQRTLERDLSGSYDVITEVRDGVRLIELSDATGRRSIADAAAELTRTVEEGRNALSERERSVFTEFVLGGVAEELRRRLDQADELIAAMNASLATIRTSHGIGVKLRWKISESSDPAVVRIKELVSTAGAVRSADQTAELTELLKDRVNEAFELDESAGYATHLHDALDYRSWHTVEVIILGPKSGQERRISRKARLSQGETRFVSYVALFAAIDAYLSGLPDTGRALRLLLLDDAFAKVDNRTIGELMGLLVRLDVDFAMTGHALWGDYPQVPALDCYEVRRVEGSAAVTTHVRWDGHTRHLRAAPR +>UniRef90_A0A3A5MMX1 DUF2236 domain-containing protein n=2 Tax=Cryobacterium TaxID=69578 RepID=A0A3A5MMX1_9MICO +MHELAGESVLIAAGGRSILLQLADPQIGHGVADHSNFAQRPLDRLNGTLSYVYAIACGTPAEAAHATARVNRAHKPVQSDGAGGGPAYSAYTPQLQLWVAATLYDSAITMYELIYGRLDDDRADDIYREYAALGTALQVPPGLWPATRADFAAYWQRRLGELATDAATRSVARQLLHSPTGPLWLKLGMPFARFLTIGLLPAHVRDLFDLEWTPGAERRFRRTLRVIRAVYPALPERIRHWPKNHYLRSLRASMAAVG +>UniRef90_A0A4Y9ZFN4 homoserine kinase n=1 Tax=Dentipellis fragilis TaxID=205917 RepID=A0A4Y9ZFN4_9AGAM +MQLSFITLALAFSALSVSAAPHSLAERAGKGGNKGGNANKGNANNDKGNNDAGAKAGGGGGDLQTSLTLDPSVLAKGFESDGQAQQEAGQVPSLTSSNNFINFCATTKKPITNGQQIKGGSCNPAPMGVIAATDKMPSSKFVFPKNTQTIKANQQFDVQMAIQNIVTGNFVNPNTNYYAAPQHTDDSGTIIGHTHFVIEKLDAIDQTKPTNPGTFAFFKGVNTAAKDGVLSVSVDKGLPAGIYRLASINAAANHQPVLVAIAQHGSLDDMVYFFVTEDGQPDAAAAGAQGNGTAAADVKGGAAADGQGGAAAAKGGDGAGAKGGQAQAAKGGNAQGGKGVYWLSGSGYYTVRTAMSTAPRSFTIRVPATSANIGPGFDVATPMSRPPSPTPARGADEVPLDPYKNLTTRVALYVLRCHDIPLLPSHLSIHVNNEIPFGRGLGSSGAAVIAGVLLGSALGNLNLPRERMLDYALMVERHPDNVTAALVGGFVGSYLRELDAAATQAASVPLSEVLPEYPPDAGPEWGTNPPKPPMGIGHYVRFGWAPAIRAVAIIPQFELSTAKAREVLPESYSRKDLVFNLQRLAVLTTALAQSPPDPELIYEAMKDRVHQPYRRGLIPGLPEVTSSITPKSHPGLLGICLSGAGPTILALAVSGFDAIAEDARKIFKEKGVEVIWKLLDVVSEGSLIKEED +>UniRef90_A0A1J3I6D3 Retrovirus-related Pol polyprotein from transposon TNT 1-94 n=1 Tax=Noccaea caerulescens TaxID=107243 RepID=A0A1J3I6D3_NOCCA +MTTTRIDVDRFDGTGDFSLWKVRMLAHFGVLGLKDILTDETLLRDSPTTGAASKEELDAAKKDPQKGIAAEASSSMDPGQELRVCCELQNLI +>UniRef90_UPI0020262455 photosystem reaction center subunit H n=1 Tax=Flavobacterium anhuiense TaxID=459526 RepID=UPI0020262455 +MDADNRTIGTIDNLWVNKDMQRVVYLDVKADKTLIEDSQREVHENIADGNEKEFMYRDGDSHLIIPIGSVNINKDTKTVMASGIGYDTFRRTGRFNTQQRFDRNYERAVLRSYYPDNDPSVGYDADDDTFYSRKEFGNR +>UniRef90_A0A4Z1PND5 DDE-1 domain-containing protein n=1 Tax=Venturia nashicola TaxID=86259 RepID=A0A4Z1PND5_9PEZI +MLRSKMICEKPVLWLRQQHTSAQDLVDAEIDTHGRIHFAGTSAAAWKIGDAYCKVKSYIPGMEYEADSINFVCSKVPTIPLPEVIHTWVDEELCRAFLILSQVKGKTLAECWHSLSSEQRTIIARTIASFCTLLAQNSESSLQSVAGRRISM +>UniRef90_A0A7V3M636 TNase-like domain-containing protein n=1 Tax=Proteobacteria bacterium TaxID=1977087 RepID=A0A7V3M636_9PROT +MRAVAIAVLLTLGACGPQLGSLEKGETGRVVRAYNGDTLELDSGLRVFLAEIDAPQGENAYAAQAQGELEALALHRDVQLAYGGARRWVGRAREGQAAAPEAAIAHVFVKSEGGRWFWLQHELVSRGAAYVRPRRDNHARTPELLALEAQARAAERGLWDRREYRSLSVRAAARLATESGGNCMRGDAPYRVIEGEVGEARVSESRALLRMEGAPAETTFALVVFGDNFRAWDGAPLASLNGARIRARGPLGVYAGEPQLCLEHASQLEVLTD +>UniRef90_A0A1C6CXG8 Membrane protein of uncharacterized function n=1 Tax=uncultured Clostridium sp. TaxID=59620 RepID=A0A1C6CXG8_9CLOT +MKRVSLFIIVNAISLYLVSLLMNSMYIGSFGALIILTIIFGALNLTVKPILEFLSLPITFLTLGLFLLIINAIVLKLAFGLVPGVYLYGFVNAIGASILLSIVNTIIYKILD +>UniRef90_UPI00097C6FDA NAD(P)H-quinone oxidoreductase n=1 Tax=Pseudomonas sp. KK4 TaxID=1855729 RepID=UPI00097C6FDA +MTLPHTMTHIEITQPGAPEVLQPRQVPVPTPGDGDVLIRVHAAGVNRPDALQRAGKYPMKPGMNPIPGLEVAGEVVAVGSGVRTFNIGDRVCALTNGGGYAQYCAVPASQTLPIPEGVDWLHAAAIPETYFTVWANLFEMGGARTGHRALIHGGTSGIGTTALMLCREFGIEAFATAGSADKCAVIGELGAQAINYRDQDFAKVIAEKTAGKGVDVVLDIMGGSYLNGNVAALGMEGRLVMLGFLGGAVAKEVDLLSIMAKRAIVTGSLLRSRTREEKAAIAQQLREHVWPVLAAGRCLPMIDKVYPLADASLAHARMEGGDHIGKIVLSVVQ +>UniRef90_A0A3D2TG15 Serine protease n=1 Tax=Planctomycetaceae bacterium TaxID=2026779 RepID=A0A3D2TG15_9PLAN +MTPIVRAVRDARPAVVNIQGQKSVSESAEGTPTSPRQVNGMGTGVVIDSRGYILTNHHVVAGVRRINITLAGGQTYVASVVAYDKTTDLAVIRIRTPSPLQTIRLGTSEDLMEGEAVIAVGNAFGYEHTVTTGIISALHRNVQVNEKQQYLDLIQTDASINPGNSGGPLLNIDGEMIGVNVAVRAGAQGIGFAIPLDKALEIAARLLSIEKLDNHWHGMTALSLDGPTGPVTIARLDRKSPAERSGLQRGDQLQRIGKTSIHRPLDVERALLGRGSGERVPLIVRRGDETLKLDLRLANRSHKRSRGTTRQLSSAIALQQASWDTLGLKLEVEPLDSFQELEVPYRGGMRVVSVRPGSSAAKQGVQTGDVLVKMHRWTTASEKDIRFIVEHADTLARAGKVKFYVVRGEETFFGHLSVAKRSESAVR +>UniRef90_A0A7I7W7J5 6-phosphofructokinase n=1 Tax=Mycobacterium branderi TaxID=43348 RepID=A0A7I7W7J5_9MYCO +MIKRIALNGHRATIVTLTMNPALDITTSADRVLPTDKIRCRGTRYDPGGGGINVARVARVLGASVSAVFPAGGPAGDMLANLLVGEQVPFHRVRIASSTRESLTVNEESSGQQYRFVLPGPQLTFSERAQCLDELRMAASSARFVVASGSLPPGVPAEFYQSVADVCRELGARLVLDTSGTGLQHITSGVYLLKPSVRELRECIGRDLGTEAEQVDAVQELIARGVAEVVVVSLGAQGALLVTKQGAQRFPAIHMRSGSGVGAGDAMTAAVTVGLCRGWPLAKSVQCGIAAGAAMLMTPGTAVCRRDDVERLFELAAEPVDLSSVSR +>UniRef90_A0A499UVA6 Secreted protein n=1 Tax=Streptomyces antimycoticus TaxID=68175 RepID=A0A499UVA6_9ACTN +MLGAEVVTLGLQLDVLRKGGGEHLQALGHDFLADTVTGDHCEANAARHTGTLPLVPWIDIAVPAFGQPPSGNHPFTPCMVRC +>UniRef90_A0A5P1EE21 Pyr_redox_2 domain-containing protein n=1 Tax=Asparagus officinalis TaxID=4686 RepID=A0A5P1EE21_ASPOF +MGNARDRLASKFAAKNAGLWSMDPNQIEEHKGNYANEFIERVRLCDVSAVIQEVMESYEVEINGKVFKKAKKVVVIGGGYIGMEVATATIGWNLDTTEDDDVNSANEGSLPHLRPMGTVVNRHPRHGNRHTRAYGDVLHPSRLQPAGGLMASLCSLVQRFVNRAQQYHKGTVVC +>UniRef90_A0A8K0D6L2 Peptidase S1 domain-containing protein n=1 Tax=Ignelater luminosus TaxID=2038154 RepID=A0A8K0D6L2_9COLE +MAKPTFLVLVCFLLMETYESRRQLKDYPFMKFSGIDDYPFHEEEASSLRNKMVPLVVNPPEQLQPPGFSIVVFRRSSIIGSGAIIAKYFALTICTLLKNLGEETFDLTPITKIQYVLHNSSVDDVDVITPIIHKLIPHPHCGNMKKWNPKANIGLIQTKEPMDKTASLRYPLLLTSGQPIPKGEYILSNFRIKNPNAINIKQAIWYVISKPASHQLCRNLFRADRQAYDTQTNLCMSYVHVGDADSCKGDLGIPLSVRHKNRDYLIGFSVHKHYCGSPKEVASFILVGPNKKWIESTIKKLQS +>UniRef90_A0A6B2C3S4 DEAD/DEAH box helicase n=2 Tax=Thermoprotei TaxID=183924 RepID=A0A6B2C3S4_9CREN +MQPDFTIEVPTFSIPYSNMYLSDSLRLNTFQAEAYNKINNRRDLVLVAPTGSGKTLILLLNNISAQDKIRGFAALYPNNTLLINQMRTVEEILIEHLEAKEVERVTSGCDNEGNKTEICKEEIFPLKIYKINRGKAEGPWSDTEYAAIMALSGKYIKPTSEETKSDVVYRLVEKLYEYSRKNNLYVIVFATPDTYLLVSTGAYRNFELVGKTLHNILVALVNEKSIDELDNILRRTKVLTRDQVSKSLSVYHQLLNQLPLFIDEFHLYSPFELSALYVIIKIYKSMSDLPIVFSSATPAKEIINELRDAGINPEMLNAEIIHGGDGFHVKGDSVIEVIGVDTGKKGLPAYYEAAEKVPGIVTEDLFDEVKEIDRYKDGRALIILERLWMVTRLAEELSKKGIRPDCIASIVPSKICAKGSNVIVGSEATTQGVNLGKIVWGITAGVSSEDVIQRIGRFGRKGVSSKIYLVLPKHVLEKNLPKSTMNYYELTEWLSKVYLDYPKRKKDVSNIIPSEFYNVRKKLIHAYALSSMVRVSGMKGLGEIDLKKEEALKLLNSFIGDSRALVNLLVFRRTGFSVEFIDIKYGEQGEASIGLIARNFKVLAYKGGKLEIDLSQSERQELVLSLNKEPRSFVNKFIDIRTLLKLLKGSLKIGDSLMLDEKSVGEGLVYVVDAGEDLAEYLSYTGEGARTVYTGGSEIRYAIMFI +>UniRef90_A0A6P0Q7Z9 VanZ family protein n=1 Tax=Microcoleus sp. SIO2G3 TaxID=2607795 RepID=A0A6P0Q7Z9_9CYAN +MPSHRSWFFALWFYLGILAAISLAVYLKIIPSKITKIQPIDTILHFIFIGFLAYIGHLSIKKYKIKIFQIFLPIAPIIVLFFSFIDEFIEIFIWRAGFDKLDSAADFCGVIFFTWLAERRHT +>UniRef90_A0A0N4VJ66 LisH domain-containing protein n=1 Tax=Enterobius vermicularis TaxID=51028 RepID=A0A0N4VJ66_ENTVE +MVEQCDKLLNFLSNEDSVKSNTEDLAIVAMFAPQPKAQATTRPAQMLTSQSEASAKENHKLYKVLGGIVLKVRLAGYVYEYLILNGATKTAECFKSEYLSTITKAMPTLQSSDPPGFLQNWFFLFWDLYSAAPEKRDSCEASQEAKAFHEFGFMNPSHGVPTGPVSGPMMNGMHTSHMFSSAAPSPLSLGPGPGGDGMMPGGGYYPPRSAQPGPSGSTSQASPISGVPSAGNFAAVPPRYGMPAARNGPPGPGGMPPAGFPGGAPPHMFTGSEQMRPLPAQRLPPNAGPMRMPTGYPGMRPNGPMRYTSPMYMESPTGAPFSNTMMPNGAMCSSSAASMMSSPGPGGPMQSGPESQDPRSYMMMSSASSMQYMHPEGSMTPGAGGRGSAGPPCSTSDPQMTSLLNGDEMKHSPASTHGGISCGTPSATGGPGSQAAVGGPGSVAGAGVGGPGSVHSQSGGSTGGQGGPPISQGGNAVSGQEEASEISKIKQSLFDDMKYGGKEESTTDNYHQYP +>UniRef90_Q0I9X6 Membrane or secreted protein n=1 Tax=Synechococcus sp. (strain CC9311) TaxID=64471 RepID=Q0I9X6_SYNS3 +MNLTKFILRASLLVLAVLVAVAFVLVRRDSIVGGDSFVGDQTKSQRFLVRNGRDRTQSPSTSNSY +>UniRef90_A0A1B6BJ90 Fe-S oxidoreductase n=1 Tax=Fusibacter sp. 3D3 TaxID=1048380 RepID=A0A1B6BJ90_9FIRM +MKTLFMTLNSKYIHSNLAIHSISKYIKRYCTHYDALHDDVLVKEYTINQSQDDILRELIEIDADVIVCSSYIWNIEALIILFSNYRKLNHNSYIIFGGPEVSYDAKDKLEKQAFLDMIAMGEGERTITQVLDLIYEQFKNSNPRNALTANFSHVSGVAYRAGDLISVNSKRIPIEPLDEIPFVYDDFTPFENRILYYESSRGCPYSCSYCLSAAEKGVRFYSLERVFNDLNVFLEKKVSQVKFVDRTFNVDKEHALSILRYLIEHDNGITNFHFEMTATLFDEDYFKLLLNAREGLFQFEIGVQSTYKETMIAINRPIAFDKLKINCMRLLKMGNIHIHLDLIAGLPHEGYERFLRSFDDVFEMNPHALQLGFLKILKGTPIMATQEKHGYEFRKQTPYEVLYNRYIRFEDLTKLKNLETVLEYYYNSGKFKHSIQYLLKTEKGTPSDFFLKLCDYFKAHDLMYIAHSTANLYDILYEFYQENYENHALFNDLLKFDYYYAHMKGLRPFFVMSEIPQFNTRRLHYLKALEHQELINPFYVGMQSKQILKTVEFITLNYDIIALIQSQYEFIEAKLNVVLFDYQRANHAIEPSKYFKVELPVI +>UniRef90_A0A2E4DAR7 ABC transporter domain-containing protein n=1 Tax=Halobacteriovoraceae bacterium TaxID=2026745 RepID=A0A2E4DAR7_9PROT +MKYRLNRKFIPWLVLHSIEYWYYYLGALFCLVMLHHFSSEIPMLAKELGDLAIAGKLDEIEIKTFFLLAIYILFFRTLSRLLFFYPARIQQRNLRMELVNRLEVAPPRNYKNYNEGMLFQTLYNDLNRIRGFVGFALLQFGNIIIATYIFVPKIRDFNPDFLVAFTPLIGTVFCFALIVGGFFPFVKRQMDQYADVQNFLLESYEAKKTIQNYHAEKDFYKYFDEVSGKELKTFFISSIGRVISFPLVKLGFGASLIWAALIVKNDNLPASDLIYFSSFLFLILEPLMFVSWIGIVTTQGYAAWVRIKSLVRDLSAPLTADWLVNQSGLESVRMPLWDHEIEVEFPKNQWSVIVGETGSGKSWLIENYAQYLQVKGKRYSLIHQEPYIYNDTILDNIFLGQEVTLEKLKLAKEYLHKFGLDILAKNMDDLLSLELGENGKRVSGGQAKRIALIRSLVADVDFVLWDDPFSSVDLILEAKILDDLQKEASLKNRTFVLTSHRLSTVRACDHITYISKSQGIIEKGKIEIILNQKSRVDEFFNKQMA +>UniRef90_A0A0C5PBV5 TrfA n=11 Tax=Enterobacterales TaxID=91347 RepID=A0A0C5PBV5_ECOLX +MTDNKTHSELDKLKEAALAQRKKTIDEKNTQKQLTLFDIAPWPDSMRALPNDYARSALFTVKNKRQPREALQKKEIYHINKDVRITYTGLELRADDDELVWQQVLEYAKRKPMGEPITFTFYELCQDLGWSYNGRYISKAEECLTRLQATAMQFISDRVGQLESVSLIGRFRVIERGTRSSRCEVMIDKEMVLLFAGDHYSKFVWEKYRKLSPTARRLFDYFGSHREPYPMKLDTFKLMCGSDSDRIKKWREQVNKACVELKESGLIHSAWVDKDRIYCKRSTDEPKSDGDT +>UniRef90_UPI00036E30A4 DUF4170 domain-containing protein n=1 Tax=Methyloferula stellata TaxID=876270 RepID=UPI00036E30A4 +MSQEAPAQLLHLVFGGELENLEGATFKDLSKVDLVGMFPDYASAYAAWKSRAQATVDNAQIRYFIVHLHRLMDPAKGE +>UniRef90_A0A151E9N9 DUF3467 domain-containing protein n=1 Tax=Euryarchaeota archaeon SM23-78 TaxID=1803821 RepID=A0A151E9N9_9EURY +MEKKEMPLIQNLDNNPLLSNQHAIVHNPDKFIIDFKGLYPQFTPDNKPQMVLTHKVVVLEPYVAKEFVKSLSDNIKKYEDKFGKIKEPKAVEKARKESKKADKKNKSTTPRPSYMG +>UniRef90_A0A8S5REQ6 ABC transporter permease n=1 Tax=virus sp. ctkyY8 TaxID=2827995 RepID=A0A8S5REQ6_9VIRU +MHTSVLSRIVRVFQMILTELSTKRRILTLFLWVGVVI +>UniRef90_A0A6P6A4G9 zinc finger protein 6-like n=1 Tax=Durio zibethinus TaxID=66656 RepID=A0A6P6A4G9_DURZI +MAENSISNKSSSADMAPDKQSDQKPSSSLKLFGFSLTEQDEILEKAEDFGESRKFECPFCHRVFANSQALGGHQNAHKRERQRARRAHFHSHQRFIAAAPVLSSHAVRSMPPSFPRGFSSNSAGKLVSQPGYYPSQPLLLPPTPSQYTPRIYIARPLHFGTAGPGFAEFSGKLPEADIGIDLHLKLSPSGS +>UniRef90_UPI000767A53D serine/threonine-protein kinase 17B isoform X2 n=3 Tax=Vespertilionidae TaxID=9431 RepID=UPI000767A53D +MFTIFLLLQKCLETVLSRGKFAVVRQCISKSTGQEYAAKFLKKRRRGQDCRAEILHEIAVLELARSCPHVINLHEVYENTSEIILVLEYAAGGEIFNLCLPELAEMVSESDIIRLIKQILEGVYYLHQNNIVHLDLKPQNILLSSIYPLGDIKIVDFGMSRKLGNACELREIMGTPEYLAPEILNYDPITTATDMWNIGIIAYMLVTHTSPFVGEDNQETYLNISQVNVDYSEETFSSVSQLATDFIQSLLVKNPEKRPTAEICLTHSWLQQWDFGNLFLPEEMSSPPQDQDHTTRSSEDKTLKSSCNGTCEDREDKENIPEDSSVVSKRFRFDDSLPSPHELVSDVLC +>UniRef90_A0A0F5JDP3 N-acetyltransferase n=21 Tax=Tannerellaceae TaxID=2005525 RepID=A0A0F5JDP3_9BACT +MGVVIKEVTSKKELKKFVKFNIDLYKDNPYHIPGLIEEEMVTLDKKKNPAFEVCDAIYFLAYKDGKIVGRIAGMINRRSNEVWNQQRARFGFLDFIDDAEVVDALFNAVEKWAKEQGMKEIHGPLGFTDMDHEGMLIEGFDQLGTMAAIYNFPYYPQHLERMGYEKDQDWHEFKIYIPEGVPDKHLRIGEIVKKKYGLKTMKFKKTKEIWPYAQKIFETLNEAYAPLYGFAPLTQKQIDYYVKMYIPMIRLDLVTLIIREEDDTVVGFGISLPSLSHAMQKAKGHLFPFGWIHLLKALKTKPKVIDLYLTGVLPEYQNKGVNALLFNDLIPVYIGLGVEYAESNPELASNNAVQAQWDYFKREHHKTRRAFIKKLK +>UniRef90_UPI001C659291 IS30 family transposase n=2 Tax=Arthrobacter sp. AQ5-06 TaxID=1914304 RepID=UPI001C659291 +RAAIPSEPSKRQGDLGHTHHPRVIETLRQLRSHPQQNRKEGDLIIGKGNQSAIGTLVERSTNYTMLVHLPDGYKAEQMRDALAAKIKTLPAALRHSLTWDQGIEMQDWKTVKIDTGIEIYFCDPHSPWQRGINENTNGLLHQYFPKGTDLSIHSAADLDWVAQELNDRPRKRLEFRKPIELIENLLLQRPPESADPSTGRRVGARANLLIRS +>UniRef90_A0A6G1SZ52 Flagellar basal body rod protein FlgB n=1 Tax=Dehalococcoidia bacterium TaxID=2026734 RepID=A0A6G1SZ52_9CHLR +MNTLFDTTAMRAAKAALTGLSRRQEAISANVANIDTPGYTRRAVSFEGALEAEVMRSQGAAAPGELVRTDAAHLAHRGGSQLGGAGASGDVTRDVVSARNDGNTVSVDEEMLLLVETQLRYQALTQSVGRRLSTLRSVIRG +>UniRef90_UPI001939DEA2 hypothetical protein n=2 Tax=Microvirga TaxID=186650 RepID=UPI001939DEA2 +MHLFGALELEIRPGTPDNPASVKIALLRYTRGEDGRLFITPECTSFEEIEGQINSLQDELDEIRERAQRAFQVT +>UniRef90_A0A7W0G2E6 HNH endonuclease n=1 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A7W0G2E6_9BACT +MRGEFSNPTRRQAFERAGGRCEICAIPFTPGKFAYDHRDPEWMCGDSTLGNCQVICNQCHADKTAVDAGNRSHVKRLIDRQLGIPKRKGPPMAGTRASGWKKLMNGQVVERR +>UniRef90_A0A4Y3PSW6 BPL/LPL catalytic domain-containing protein n=4 Tax=Paenibacillaceae TaxID=186822 RepID=A0A4Y3PSW6_BREPA +MPFYWWEQTPVQLLATVSRPYRGEVLIPFSVDEAYARLCSQEPTTAPVIHLWRHEKAIVLGARDAKLPHAAEAVRQLEAAGYQTAVRPSGGAAVPLAPGVINLSLVMPVAASDLNPEPFFLRMVELIRATLGDDGAKMSSGEVEGAYCPGTYDLAIAGYKFCGIAQRRLTRAVAVQAFINVEGCGRTYEEIIQSFYEKAAMGAPGEQFPQVQPGRMASLSELGVSGGVEGFVLRLQELLHAHAESSVAVLDACPDSLAHEAKQALDLLKGRHRQLVGS +>UniRef90_UPI001657DD0C hypothetical protein n=1 Tax=Sphingomonas sp. JC676 TaxID=2768065 RepID=UPI001657DD0C +MTIRSRPSLWLALVVPPLAWYGFQQGLATTLRGACGAAGVPLGPLWGAGSIALCIGAGWFARPRPGQQSSDRLLSQLGVLAAGLFSLAIFYQSVATMIIPPCAR +>UniRef90_B7K1R7 Transcriptional modulator of MazE/toxin, MazF n=1 Tax=Rippkaea orientalis (strain PCC 8801) TaxID=41431 RepID=B7K1R7_RIPO1 +MVTYNQFDVVVVPFPLTDKTTSKKRPALVISDMAFNLSLKKIVMAMITTSGHSSWMFDVSIVNLAASGLKSPSLIRMKLFTLDDALIVRKIGTLTQSDQERVKNSLKQLFKLL +>UniRef90_A0A846C4J9 Cobyrinate a,c-diamide synthase n=1 Tax=Okeania sp. SIO2F4 TaxID=2607790 RepID=A0A846C4J9_9CYAN +MSLIVAGERSGVGKTTITLALLAYLKQQHLKVQSFKVGPDYIDPMFHQYVTGKPCRNLDPVLTSEVYVQQCFGRNIQDVDCALVEGVMGLFDGVRFFDPPLPPLERGEKDDGDGCFPSFASTAHISRLLNLPVLLVLDCSRLSASVAAIAHGFVSFDPSINFAGLILNRVGSDRHLQLLQNSLKCINSPILGVFRRHQNISIPDRHLGLVPTDEMPDLDILINDLANLAKTCFDWEKLLPILKVENEIYQYLLSSQVCSDQTIYLPSLVANNFEKKRSEILIGVARDRAFNFYYQDNLDILEELGAKILFWSPLKDENLPVGIQGLYFGGGFPEVFAQQLSENFMVRKAVKEAIISGMPTYAECGGLMYLSEAIIDFNSNSWEMVGILPTKAVMGKSLKLGYRQAISNIDTPLLVANTQVYGHEFHRSELTEAPPMPLYKMWRVDEKKNQSQATFEGWNFEIVHASYLHLHWGNRIDIPRRFIEQGSRGVREWGRSQNKNN +>UniRef90_A0A1T0CQ58 Prevent-host-death protein n=2 Tax=Moraxella TaxID=475 RepID=A0A1T0CQ58_9GAMM +MMIDFATLPITVQERIVNLQEPVSILKDGQVVAVLSPKSYDAKFDFARIQASVSSGQVAVPKTATADIDAFDRWLADVAP +>UniRef90_C5M2E7 Topoisomerase I damage affected protein 11 n=1 Tax=Candida tropicalis (strain ATCC MYA-3404 / T1) TaxID=294747 RepID=C5M2E7_CANTT +MDIDEQLRYLALKEMCVVEIKDHITNLNNKLNEHQKELHHLREIIQRSLYKELSTGNSLAKATETRPRQNSNPRDEAIARTRRRRSSLFNDHHNKDFVTPPINDTTTNNTTPATVTTTANPESTSRIWSGLSKPLNLIQQFDTLIQNEFEKSLLSEKDQQVHNDQSRKLEKQISHQSKSSEGSISSIGSINSPLQSKSVNPRPIPMPKPYHNKPSKSDDMMQSVSSSLWSFVNDVKANVLSSLQEDERERKISGQNPPARMYNLDTGSTVDISQTSIAVEDDESETELLEPLASDEEDNVIETLDLSMYKR +>UniRef90_A0A6B8KL02 Type VI secretion system contractile sheath small subunit n=1 Tax=Methylocystis heyeri TaxID=391905 RepID=A0A6B8KL02_9HYPH +MARPSDSGQKFISRNRPPRVQIVYENPNNAEEKIELPFVMGVMADLSGNASGVEKQEVAQRKFLDIDMDNFERRMEAISPGVSLRVANKLADEPGEKLSINLKFQRMEDFGPAAIAEQTPALKKLLDARTQLANLLRYMDGKVAAEEQLRKLLKDPQLMAALRQHFPDQQNNEQ +>UniRef90_A0A1Q3DY06 Dipeptidyl-peptidase V n=2 Tax=Lentinula edodes TaxID=5353 RepID=A0A1Q3DY06_LENED +MVHSSFQFKEGADVFTPKDLMELGRPGVGVANHAGDFVIIPYSKYSFEEKKNHKSIYVAPLESTVKPFKLPLVEGGEAFWLNGKTLAYVVESEQKNLEIFALDVLYQPSTNDSAAVLSTNAPILLGSFPTTSASNFRYSTDGYLVFSDSVYSDGNLTTVKEQDEAWENRGNTALVYDRTYERHWDHWVGPKTQSLFSVRLVQDPNHMWTFGSEFVNLLAGTGHSSPVEPFGGTDDFYVSKQSVIYTTLDPAFEEERAWHTKQNVYIVSITAAGKPRELTSGSQGATRSPVLNDAGDKAAWLELDEDGYESDRAKIVIYDLKKDVRFTLTQKWDRSPGSLAFSKEGDFIYFTADDHALVKVFVLPIPSTPAKSTTDPSLSPKYLNPVTIVEDGASSGLQTLPYGRILISKSSFTSPNDVFLVKGLDALQAQITQSNGTARFTGEIDQVTNFTAPDLEGKNLSKGENFWFKGANDIDVQGWILKPKGWKHGEKKAFPILLLIHGGPQGAWEDQWSTRWNPNVFAQQGYFVVAMNPTGSTSFGQAFTDAIAGDWGGKPFVDLQKGWKYVLENYPEVDADRAVAAGASWGGYAINWIQGHPEFDFGFKALVCHDGVFDSNYNGFSTDELFFFNHDWRGRPWDKNSEEVLRKFNPANFVHKWSTPQLLIHGSKDYRLPETEGIGAFHALQQLHIPSRLVIFPDENHWVLNHGNSLKWHYEVLRWFDQFVGKKD +>UniRef90_A0A2N1ZL77 DNA repair protein RadC n=1 Tax=Gammaproteobacteria bacterium HGW-Gammaproteobacteria-12 TaxID=2013794 RepID=A0A2N1ZL77_9GAMM +MTAFSPSRAACASRIGGWAGYRPATAEQILDAARKVIDQKVQRGAAFTSSELVKDYLIAKLGGFEHEVFAALFLDAKHRLIQYVEMFRGTIDSASVYPREIVKEALRLNAAAVIFAHNHPSGIPEPSQADKVLTQRLKEALALVDVRSLDHIIVAGQRTVSFAELGLL +>UniRef90_UPI0021149202 TonB-dependent receptor n=1 Tax=Pseudomonas sp. LD120 TaxID=485751 RepID=UPI0021149202 +MDNLSLTLGNRFDHSEKYGNHNSPRAYVVYHPHPDWAVRGGVSKGFRAPSLKEGSAGAATESRGRGCGSLRPLGYVTGSCWMAGNPNLMPETSTNKEIGVAFEHDGWEAGLTYFHTDFTDKIEYGPLGQYQGRWWTMLENVDKARTRGWEGTTRVPLGDSVTWRTNATYMLESRNLSTGEDLISSPKLSAFSALDWQINDRLSTELSAQHVGKQRGMGNDFVQSYTTYDLTANLAVTKWLTLNGGVQNLMDKDLRDGSTNFYVPGRAFFAGATTYF +>UniRef90_UPI0020420B8D Na+/H+ antiporter NhaC n=1 Tax=unclassified Staphylococcus TaxID=91994 RepID=UPI0020420B8D +MGKKSENSDKNHKTKKPLGLTSALVTLTIMISTMLFTVAVLEKEPHIPLMIGTAVAILITMLHGYEFSEVEEMMYKGIRHALPAIVIIILVGLIIGSWIGSGVVATMIYYGLQLIDPRFFLAVVLILCGIVALAIGSSWSTMATVGVASMGIGISMGISPGMVAGAVICGSYFGDKMSPLSDTTNLASGLTDVDLFEHIKHMFYTTIPALIIAVVAFFFMGLQFGGKHFDTKKVEGILTTMQDNFTISPWLLLIPLIVILLVVVKVPAIPAICVGIILGFFAQIFVQGDSLTDALTALQTGYKIDSGNKMVDELFTRGGLESMFYTISLTLVAMTFGGVLEYSGMLSALINVILKFAKSTGSLIASVIVSCIGTNFTCSEQYISIIVPSRMYASTFKEKNLHPKNLSRALEDGGTLTSVFVPWNTCGVFIASTLGVSVMEYAPFAIVNYLVPIISIIYAYIGFKIVKLNDDRDTSLKEKPLSQSKPV +>UniRef90_U6R8E6 Transposase n=4 Tax=Phocaeicola massiliensis TaxID=204516 RepID=U6R8E6_9BACT +MRYALDIIKKWQFNFPILKYVTGKSGYNVKIRKLLDQIDREVKIFDKDSFDNIYNALYTMGSSKLCRKTHLDMLTKVQVNMYVSGHHKEGSSAVKHNSSLILKDRFIFMCAAYKQLNVIEK +>UniRef90_A0A534PU07 MarR family transcriptional regulator n=1 Tax=Deltaproteobacteria bacterium TaxID=2026735 RepID=A0A534PU07_9DELT +MRLLWAVDHSLQSASKRMESTYGITGPQRLVVRIVGRFPGIAAGRVAEILHVHPSTLTGILKRLEARSVLQRRSDPRDARRALFGLTAKGRKLDSVKTGMVEQAVRRVLTRDGEKVAAAQEILAALAEELEIEE +>UniRef90_C4GAH0 TonB-dependent receptor n=2 Tax=Shuttleworthia TaxID=177971 RepID=C4GAH0_9FIRM +MSRADFRAENLGYLAQSQEIAGAVSGLNFGEQSGIVIIENVPQRSEDNGYKI +>UniRef90_UPI001F50FB05 type I restriction endonuclease n=1 Tax=Enterococcus faecium TaxID=1352 RepID=UPI001F50FB05 +MIRVLGEGHNQWTYRPDLKSEEDLWVNLRQKIISNNQAELNDSPLTDKEFETIKTELLLRTKTPFEAAKWLKGENGMARITIEREDPQLGSASLILYSNQDIGGGISTYEVVHQIAKRGSNIEARDRRFDVTLLINGLPIVQIELKQVTA +>UniRef90_A0A061J7E0 Secreted protein n=2 Tax=Trypanosoma rangeli TaxID=5698 RepID=A0A061J7E0_TRYRA +MSPRRVCLSLQLHLCGAKLPFSLTSGGGCRYAHTGRPSTSFLWFSHKREKAARNVTFPPEATCSPSRAASKMSVVGGTLASSSSPPLLLDPPFTPVPGESQALRQRTNCGAPSFLLLYVCGTCKSPLFCSSEYAASSSLGQHSSGWPSFTAPVCNSVLQLRSLLQRSAVQEGGQTPLTATLAARGLRVEGEMRRQTRGGGCERLRPRTWREECLRDENKRSDPTVLEGCCTKCGRAVCRVVMERRRGVKYVVNPTAVNAELTECSDPGVASTPHPSQLPH +>UniRef90_A0A4Q8QWM3 Lipoprotein n=4 Tax=Bradyrhizobium TaxID=374 RepID=A0A4Q8QWM3_9BRAD +MLLRTCLAVIAALIVSASSAQAQAPTTHQTQPVQFRTLFKVLPDPRGEFVRQCAPHMLGRWAHPEAVCGCLHDYAAATVEDPDLREALLRGISETGVPTIETDWVPPSKQSEIGPTFTKIAKPTLQCMFDPATE +>UniRef90_A0A7W2L3H7 NADH:quinone oxidoreductase n=3 Tax=Pseudomonas TaxID=286 RepID=A0A7W2L3H7_PSEPU +MNRFCLLVAGLAPLLGATSSVAQGTAIGMSMLVLILAHQVLLSPLRSQLQGARYWLASLLIVAALASCLQLVLRAWALPLALSLGDFPLLIGVQCLATDSLLPNQGRWRQLLRYLSGLLFISVLLGASRQWLAEGLGLHLASLPSGALLLLGLLLALYNCLRPGPARQGKR +>UniRef90_A0A2V8UVF1 PNPLA domain-containing protein n=1 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A2V8UVF1_9BACT +MAGVWPKRYHFVDGGYYDNYGVATLVEWLEDVSHAQSVQPEILLLQIRDSPENGPPRPAEGQAGFLSQMLAPFFTIFRFRDAGQIAHGNLEYCSRQSLETASGVLLSPGLTTPRR +>UniRef90_A0A839QHS3 Uncharacterized protein n=1 Tax=Paeniglutamicibacter cryotolerans TaxID=670079 RepID=A0A839QHS3_9MICC +MSKPRNKKNTARPALRAAPAPVVNQSTQRTPEQARGNGNVIVLAAVGATILLFWYFHLLVLNQMSDLSGGLAMPDQMMGGYSVADIEALRAAMNSDAIGQLNYVHKTAGMLFPLFLALTTMLVVNLHTVRGPVRWVLWAVPMLFAIVDLWENAAIDALFNGPLDPGAVSLASTLTTISWVLLFATAAVLVGVLIASFITTFKAKWSEAGLS +>UniRef90_A0A100YU56 IstB_IS21 domain-containing protein n=2 Tax=Atopobiaceae TaxID=1643824 RepID=A0A100YU56_9ACTN +MGIVGSMGDFHADTGRDGRETRPQVLITPEEAIARGFAREAPPPVRCAHCGRQLRPLGIPVFGSIAWVSHEPCECDGSVRERMEEEQRILEERAMERERRLDRSGIPLRFRRAAPTEAQCIAYADAISGSTSDGLFIHGPVGTGKTHNAAAVAIAASDRGLRTVFTSAIAIFSNIRETFDGGGSSKRALERYASCEMLVLDDLGKESSSRWSLMTLFTIVNARYEGMRPTVITSQYTLGQLRARLASTGEAETAAAIVSRIAAMCADVTLSGPDLRGDAWKPLGMQTMQRTCDVAKRSKLDNFR +>UniRef90_A0A7H8S915 ATP-binding protein n=1 Tax=Lentibacillus sp. CBA3610 TaxID=2518176 RepID=A0A7H8S915_9BACI +MVEALKQTNFTAEPGELIVVVGPSGSGRVHPDDCRRSSNAESWEVINKHNITQMKEKKRSNIRLHEIDISGIPIWSISDSG +>UniRef90_A0A834H4E1 Transmembrane protein n=2 Tax=Rhododendron simsii TaxID=118357 RepID=A0A834H4E1_RHOSS +MIEDRRGGGGAPHAAIFAVVVVAVVVISVVLGDQGQVLTDFIAELLSPVGLLLLPIGLLLVIVFLSSDAGSAFSGLFSTGEPDTIHRVSGSPVGVALFLALLLFLLYSRVSIFGGDDGSDE +>UniRef90_A0A830HN61 MYND-type domain-containing protein n=2 Tax=Pycnococcus provasolii TaxID=41880 RepID=A0A830HN61_9CHLO +MSTGKDVSLVMELCHSSPLGHVVLHEVLRTTVANPDAWPALFPAEERSDGDDDDARHCQQPWNRAISLLRTMSHVSQLARSVATADALWKPAVHRLFEEKAFVCTEALKLKEEGKWRKAYFAACRRVREPRLTQGELCSINFHKRMKKCAGDAWLLRDPYWVTHGARCATMRFLDDGHAETSGEQVSEAAVPTNDEGANERADTAVDNGAPTTLAQLHPPPGAVSTRRKWRFSETGGGRGGPLGAFVRLSDGVREFPTFVVSFHRDTWSPYLESCWAVAASWQLKPEGEDSCMDDANLAISVDAQKAEALAYNCGLPMPEVRSPLEMKNAIAEILEKRDEDQRRLLHAMGIQDEEDDEDNRETTAVEEHDVATTSAGASATPTNSTTTNFDAIIQANRDFLSSFDSRWNAVKRRFDRAINRSIATIALGMTGDVDHAEALLTGSQARRSGGGADERRFEEDEEEQ +>UniRef90_UPI00207B9FB4 hypothetical protein n=1 Tax=Streptomyces hygroscopicus TaxID=1912 RepID=UPI00207B9FB4 +MCGICPSLRLPGGAFDVHLRPSAACPFDASTGHRFTEAGVPVCVHPERVGLPAAEYATAGLPLPWETPPPASPDEVAVWVRAALDAAPPDACAEVIERATEILRAADPELDVVAVLRTALS +>UniRef90_A0A386HU81 ATP-binding protein n=3 Tax=Arachidicoccus TaxID=1769012 RepID=A0A386HU81_9BACT +MPELIVGRDAEKKILKEVLDSKEAELLAVLGRRRVGKTFLIRNYYSKQLVFECTGMHEVSLMEQLSNFSNALQQAMKLQVPLAIPDSWLQAFTFLSDFLQAKPEKQPMVILFDEFPWLHTPKSGFLAAFGHWWNNWASRRPQLKVVICGSAASWMTENVLHNRGGLHNRVSRNIRLLPFSLKETEAYLVSRGISLDHYQILQLYMAMGGIPQYLKQVGRGESATQVIDKLFFEKGGMLKTEFDVLYRSLFNNASHHESIVRQLAKRAKGMSRAEVIKACGLTTGGTTTRLFEELEQSGFISQSIPFEKTSRDAIYKLLDEYSLFYLKFIDRARATGTGTWHKLAQGQSYNSWSGYAFEAICQKHIQQIKEVLGIGGVYTEASGWRYTSKTGETGTEIDLLLDRQDRCINLCEMKFSGQEFVINKKYASELDNKVNVFKEQTGTKKTIFLTMITTYGTKQNIYYTGRITSEVKMEDLFR +>UniRef90_A0A6I6M0J7 PEP-CTERM sorting domain-containing protein n=2 Tax=Pseudoduganella flava TaxID=871742 RepID=A0A6I6M0J7_9BURK +MPMKRLATIAVLGAALTAAFASPAAHAATSVATLSGLHVAIIDLTPDDGVAPSLTFMSTGGLVSAGVGTAGGMDTVTDFLRSGNVTAHNAIGGTASVAALYEGQVQAMGSVGNYGDFISQSWLYSNFTLGANTQLVLTGHASLGTDFAAGNPNNVGSASVYIEIVDDQDGGGISLMETYSNEVTSYTAGPVGANDDFTLTFTNASANALLARMTLSAHAEGLVSAVPEPSTWLMLGAGLALTGTLARRRRAQQAN +>UniRef90_E0RVU6 Flavodoxin/beta-lactamase domain-containing protein n=3 Tax=Butyrivibrio TaxID=830 RepID=E0RVU6_BUTPB +MNGVKKVTDGIFWIGGSDRRLERFENIFPIPEGVSYNSYFIDDDKTAVFDTADITISDQYLENLKDCLDGRKLDYLVVLHMEPDHCSLISTVTGLFPEVTVVGNAKTFQIMEQFFPEAAGFNKLEVKEGDSLSTGNHNFKFVTAPMVHWPEVLFAYDDTSKALLCADAFGTFGALDGGLFADEYDFEKVFLNSARRYYANIVGKYGMQVQAVLKKAQGLDIQMLLPLHGPVWRKDIAWFIDKYQKWSTYEPETEDIVVIYGSLYGHTASAAEAVAASIRNKTKAGVKVYDVSGTDVSYLIGEVWRCKNIVIMCPTYNNGIYPPMESFIADMAALGVQNRSFALAQNGTWAPVTVKLMTEKLQTLKNVTILEESLTIKSALHKKDTDSLEAFTDAIVKA +>UniRef90_UPI00034ADB16 hypothetical protein n=1 Tax=Wolbachia endosymbiont of Wuchereria bancrofti TaxID=96496 RepID=UPI00034ADB16 +MLTEISIDDLVRAKPMAGKKTVVSFTERENIREMPNKPQKHKFIANIIYSNTSTQTGDCILKFHPAA +>UniRef90_A0A3P8ZCD7 calcium/calmodulin-dependent protein kinase n=1 Tax=Esox lucius TaxID=8010 RepID=A0A3P8ZCD7_ESOLU +MATIVTSTRFTDEYQLYEELGKGAFSVVRRCVKKSSGQEFAAKIINTKKLSARDHQKLEREARICRLLKHPNIVRLHDSISEEGFHYLVFDLVTGGELFEDIVAREYYSEADASQCINQILESVQHIHQHDIVHRDLKPENLLLASKMKGAAVKLADFGLAIEVQGDQQAWFGFAGTPGYLSPEVLRKDPYGKPVDIWACGVILYILLVGYPPFWDEDQHKLYQQIKAGAYDFPSPEWDTVTPEAKNLINQMLTINPSKRITADQALKHPWICQRSTVASMIHRQETVECLRKFNARRKLKVRYFLYLYMSPPSFLTPPFCLNPVIYIFSLFTPLSLLGSDPHHNAGVKELLRWVCLPPSLQLQSGGRSELYSILGSPSIVNTILREGSTESCNTTEDEDMKEMETRGGLRDGDSQYRHSRGENGFYIAVSLNFCLNSSPPDLLSGFLFLARKQEIIKITEQLIEAVNNGDFEAYTRICDPGLTSFEPEALGNLVEGMDFHKFYFENLLSKNSKPVHTTLLNPHVHLIGEEAACIAYIRLTQFVDAQGRPRSSQSEETRVWHRRDSKWLNVHFHCSGAPAAPLQ +>UniRef90_UPI001A9C264E hypothetical protein n=1 Tax=Intestinimonas butyriciproducens TaxID=1297617 RepID=UPI001A9C264E +MRIIENADKEFAAEMHKAVKDNNGYCPCFIEKTPDTKCMCKEFREMEEGACHCGLYIKVK +>UniRef90_UPI0003B3D06B CCA tRNA nucleotidyltransferase n=1 Tax=Flavobacterium antarcticum TaxID=271155 RepID=UPI0003B3D06B +MNYSKDLQNPIFDVIAKASEQLNVESYVIGGFVRDLLLNRTAKKDIDIVAVGSGIELALKVSELLPKNPKVQVFKNYGTAMLRFEDTDIEFVGARKESYNFDSRKPLVENGTLEDDQNRRDFTINALALSLNKTNFGALLDPFNGLVDLEQKTIKTPLNPDVTYSDDPLRMMRGIRFASQLDFEIAAESFASITNNKDRISIISGERIVEELNKILMTDKPSTGFLLLYKSGLLDYILPELTDLNQVEEIEGHTHKNNFYHTLEVVDNIAPNTNDVWLRWAALLHDIGKAPTKRFTKKQGWTFHGHEFLGGKMVKKIFERLHMPLNQKMKFVQKMVIMSSRPIVLAQDEVTDSAVRRLVFDAGEEVDDLMTLCEADITTKNPSKFKKYHNNFNLVRQKIIEVEERDHVRQFQPPISGEQIMELFNLKPGREIGTLKESVKEAILEGHIPNEYEAALEFVTKKALKMGLNKD +>UniRef90_UPI001912B9C1 DUF86 domain-containing protein n=1 Tax=Cyanobacterium sp. IPPAS B-1200 TaxID=1562720 RepID=UPI001912B9C1 +MVFALVKAIEIVGEAAGKVSKEYQINHPEISWTAMISMRNRLVHAYFDINKKILWQTLKKDIPELVNILTELLDE +>UniRef90_A0A8J2SN30 3-isopropylmalate dehydrogenase n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2SN30_9STRA +MKLSLALLAACSDALIAPPAPKPTKTQLRAVAAPQDSYKITLLPGDGIGPEITTATVKALVAAGKTKGVTFDFDEQLLGGCAIDKEGTPWPDKTLKSCQAADSILMAAIGGPKWDGNPRELRPETGLLAMRQQLGLFANLRPAKAIPQLLDASSLKREVVEGVDIMVVRELCGDVYFGKPAGIYTDDAGVRWGQNNMIYSEPEIERIARVAMDVAQKRQGRCCSIDKANVLDVSQLWKDVVIRVHGECGQGVELSHMYVDNAAMQLVRWPKQFDTIVCGNIFGDILSDEASMLVGSLGMLPSASLPSEGPGVFEPIHGSAPDIAGTDAANPLAMILSAAMMCQYDLLQPDLAKLLEDAVEAVLDAGYRTRDIVNEGNADETLVGCKEMGDLVAAKVAELAA +>UniRef90_U4L0U5 Uncharacterized protein n=1 Tax=Pyronema omphalodes (strain CBS 100304) TaxID=1076935 RepID=U4L0U5_PYROM +MMVNSAAFADRQSIPLLS +>UniRef90_A0A8I0SUD4 Octanoyltransferase n=1 Tax=Magnetococcales bacterium TaxID=2026759 RepID=A0A8I0SUD4_9PROT +MVHPPENTHPYDLMRLGQMDYAQALAIQQQRVETLIAHGGPNLLMLLEHPPVYTIGRSGKSGEILDAIPTREHINIIATDRGGRVTYHGPGQLVAYVIRDLRPDTGRILDHVRRLEETIIGTLACFGILGTRERANPGVWVGNEKIAALGVRIRRGITYHGIAINRDPDLDHFSGIIPCGIRDRGVTSMARLGFKTTAEELEECLLAAFAKVFAARWTQ +>UniRef90_A0A3D9YY19 Heat shock protein HspQ n=2 Tax=Methylovirgula ligni TaxID=569860 RepID=A0A3D9YY19_9HYPH +MNVKPRKAKFGIGQIVKHRKYPFRGIIYDVDPVFANTDEWWLAIPEEVRPRKDQPFYHLYAENADTEYVAYVSEQNLLPDTSGDPVRHPQVEEMFTRADDGGYRVKTVRLN +>UniRef90_UPI001E452D4C zinc metallopeptidase n=1 Tax=Aegicerativicinus sediminis TaxID=2893202 RepID=UPI001E452D4C +MGIGLGYYILIGAIALVSWAVSAQLKSKFKKYSQVHLQNGMSGKEIAEKMLADNGIRDVQVISTAGQLTDHYNPKNKTVNLSEPVYHQRNAAAAAVAAHECGHAVQHATAYSMLQLRSKLVPVVSITSQMSQWLIIGGLVLGAAAGVGLGYWVAVAGLAMMGMATLFSFITLPVEYDASNRALAWLENKHMLNREEHAAASDALKWAARTYLVAAIGALASLIYWALQIFGGRD +>UniRef90_A0A5C5TAF6 Sorbosone dehydrogenase family protein n=1 Tax=Reyranella sp. CPCC 100927 TaxID=2599616 RepID=A0A5C5TAF6_9HYPH +MRPIIKKVLLGTVAIIAIVAAAAAFLIRGDTAKLPDEASVGPNPTLPQPTRSLVPTVSIATARGWPQGAKPVPAAGLSVQAFAAGLDHPRWLYVLPNGDVLVAETNAPARPQEGRGVKGWIADLLQNRAGAGVPSANRISLLRDADGDGVAEVKTPFITGLNSPFGMALVGQDLYVANTDAVVRFPYTVGATRIDAPATKIADLPAGPLNHHWTKALIASPDGAHLYVTVGSNSNVGENGLDNEARRAAILRIDRATGQIGVFASGLRNPNGMAWQPETGVLWTVVNERDELGSDLVPDYLTSVKEGAFYGWPFSYWGQHVDARVVPPRPDMVAKAIAPDYALGNHTASLGLVFGAGTSLPAMYRSGAFIGQHGSWNRKPRSGYKVIFVPFASGRPSGAPVDVLTGFLSDDDAAFGRPVGVVTDRTGALLVADDVGNVIWRVTSIGR +>UniRef90_A0A1S1R6I4 Secreted protein n=1 Tax=Frankia sp. BMG5.36 TaxID=1834512 RepID=A0A1S1R6I4_9ACTN +MVEAATASGAGIAKAADRAGPVLDRLDDALVPRTGRALEAVVGAAAATSRTVTAGLLRLALRTRLLPGPPEPPAPAPRPRTADGGSGPDAGSSPSPAAARDASASAVAEGPSVGRALLERGARIAVLGLVAMIVLSAAAALLPGMDGQPRTEPASPPPGGAPAGQADAAVVPSVTIGPTAGESTADYVGGADQSLVALAEAAPEADLLAVVSLNDYRTPDGLQALLATYRVTQVFFTVPGSGTVHQAEVRTPVDDVLAALAAQAAESSRRAATATDPAARERASAQAQTMRGGRSCSCLFAAVVRASAARLLALRQDSSVRVIDAAPPATLENAVRFIPVTPESR +>UniRef90_A0A8B6C0H3 RING-type domain-containing protein n=2 Tax=Mytilus galloprovincialis TaxID=29158 RepID=A0A8B6C0H3_MYTGA +MTDIPPNVSLPLLGIGLISLLLSFIFCIYMWRLRCRAREERGYNRIQFKEKNKKFSSMCAVCLEEFRNYEYIAICRCKHCFHMNCLLQWLKHRNFCPMCKATVQRVPSGERSSLIIMPQQAVPSTSNEPPVEGAQNV +>UniRef90_Q0RVU7 Biotin carboxyl carrier protein of acetyl-CoA carboxylase n=1 Tax=Rhodococcus jostii (strain RHA1) TaxID=101510 RepID=Q0RVU7_RHOJR +MSDTHTLKTSIPGIFYRRPSPSEPVYVEVGQEVATGDIVGLVEIMKSFHSVPSDLAGTVVRFLVEDGAEVSPGQDIVELARS +>UniRef90_A0A8H6B9I7 HAD family hydrolase n=4 Tax=Dekkera bruxellensis TaxID=5007 RepID=A0A8H6B9I7_DEKBR +MRPRMPKLITADAYGTLYAPRFSIPKQYNDVTARFGVVIPENQLEKKWLNSYHTVKKTYPNYGKAAGLTVDEFWRKVLVRIYGKCQEHPEMIGMIIDKLGKKESYKVFRDFVSLAEWAVWEKEIPFCVASNADSGVTHLVIKEFGMETFLDSQDIYLSYDLELWKPNPEFFNRIIDDQLARLRGIRSTDPNYLEERRKLLQSSWHVGDEYENDVKCAMAAGMGAILVDRSITNPELAIQKRGERFYVVSSLDRVRQIFEK +>UniRef90_A0A5J9WI98 Phospholipase A2 homolog 3 (Fragment) n=1 Tax=Eragrostis curvula TaxID=38414 RepID=A0A5J9WI98_9POAL +MASVLAFSRCSLLLLLLLLATTASHALNVGNLLGTPPAGSQGCSRKCESEFCTIPPLLRYGKYCGILYSGCPGEKPCDALDACCMVHDHCVAAHNNDYLNTRCNENLLRCLDSVSPAGPTFPGNDCDVGRTKFVIRGVIETAVVAGKILHKRDDGH +>UniRef90_UPI00200ED720 hypothetical protein n=1 Tax=Serratia sp. arafor3 TaxID=2824122 RepID=UPI00200ED720 +MMRYKDIPAEEQQNGPPNTDPASIMHTRLVIGDNVIMASDSCPADPTGATHRAYSLSIRSENVEQGGSITMPFQPAFWAKGFGMLTDKFGVNCRTV +>UniRef90_A0A2W6USA3 Glycosyl transferase n=1 Tax=Microbacterium sp. TaxID=51671 RepID=A0A2W6USA3_9MICO +MSKEPRVVLVAVPLMARSGVYRSTHDLVRAASAAGHQWQALIGMRPQASGDALATPGVREVPFDARGVGGISQIRALIDSVPEVRDADVIVSMITQTDIAVSRARAREDRGWIAWVRGKPWPAAGEQNLARRLLLRAWETRALRSADAVWATTPVLADEFASACQAAIVPAGIPSSRRIAHGEDATSPLVWAGRVDIDKRPELFSRIVELTGHPGRLYGDGPLKDRLASRRVTGLDWAGWRPSGELWSDASVFVGTSSREAFGRSAVEAAAAGIPIVIAREYGAAPLLFTDETLRRACVIDSADPEAWANAVRALLTDRQLRMAVSDHVHSNAQTLTIEASVDAAARRAAALLEGGCK +>UniRef90_A0A327NX72 ISXO2 transposase-like protein n=1 Tax=Algoriphagus yeomjeoni TaxID=291403 RepID=A0A327NX72_9BACT +MNIINFVQYFPDEESCEVYLKSYREKAGIRYKTCKSITKHYWFSTGKFFECSCCRRRSSLKSGTVMERSKLSLHVWMTAFMLMAATKKGFSCLEFQRQLGLCRYDTAFRLMHKIRVVMGKRDALYTLTDMVEMDEAYIGIATDKKVKENLKRGKGSQRKASVAVSAESIPLEDLETGKTSRFCGYYKMEVLGKVDGEHAEKFIKKNTSGEIVLFTDKNTAYEHIEDIVETHFTVISGKESTNDTLQWVHKAISNLKRKLLGINHMITYKYLQNYLNEFVYKLNRRYFGDRLFDRLIIAGIYPYVQ +>UniRef90_A0A3N1WFC1 D-alanyl-D-alanine dipeptidase n=1 Tax=Erwinia sp. JUb26 TaxID=2485126 RepID=A0A3N1WFC1_9GAMM +MDDIQLTDIATSLPQVKIDLKYATADNITGQPIYCEHRCLLHPDAAAALVRSAHIAAIAGFTLLIYDAYRPQKAQMNLWQACPDPDYVIPVSQGSNHSRGTAVDVTLIDEQGSIVDMGSGFDEMHERSHPWHPSVSARALRHRLMLSAIMLEGGFKGIATEWWHFELPGAADYPLLTDIFDCYPPPSAA +>UniRef90_A0A7J3I7R8 Na+/H+ antiporter subunit C n=1 Tax=Ignisphaera aggregans TaxID=334771 RepID=A0A7J3I7R8_9CREN +MSDLLISLAFRTAMIAFVFNTAIALYGVLSRPSLIKKFLCLIMFTDSINIFAIFIGFRYIPGSYPSPPILEDIPTSVRDIERLISMAVDPLPQAMILTAIVIGIACNMFLLSLILMYYKHYGTTDIHVTEEAEAYEETLE +>UniRef90_UPI000C1F926A ATP-binding protein n=1 Tax=Limosilactobacillus fermentum TaxID=1613 RepID=UPI000C1F926A +MDFLKFEDLSFSSAFSEPKEDIHLEYKTATWKLPKNFWETVSSFANTDGGLIVLGVKEDKDNHKYEITGVDDPIVVRQEIFNGNSNSECLSSPVIHDSDVKLVDCFDRTIIEVLVHPEQYNKRPLEAHGIAYVRTDDGDRKATEEQLKYFLVEHQQEIDTRLLRNFDLEDINSLDLDEYVTVLRKNTNTRYKDLESLAFDLGVFRRDRTSNGKDRLLTEGGLLFFGKYKVKSKMLV +>UniRef90_UPI001C270FE8 TRAP transporter substrate-binding protein DctP n=1 Tax=Desertibacillus haloalkaliphilus TaxID=1328930 RepID=UPI001C270FE8 +MKSFFVIFCLFIISIVTTACVQDGSNNNGSQSSENSEDTITLRVSSSLSPQNGWWAGFFIPWMESVEEKSEGKVQFDYFTAEELLSVGEELQGMREGTIDIAAPLWTVYDPQRFPLSEVTMLPLTDSDPMMASLAYSELVQSELELVDGKTYADYEFVEKGIKALPIPTTEQYVISTKDYEFNTIEDFEKVSLRSPSRVHEVFANEVGINTVTLPSTELFDSVNRGAMEGSFFSISDWTGYGMQDVFNYTLEGINLGHYSGVWAMSEDKWNSLPKEIQDIMIEAAIEQIPGGAQLWMDRSIENKENSIEDGGVFATTADLEPEAEEMVLQGMENTWYEWIEMTESNGHPGTQIAKLWRDLIVEQGGTVPESIMNLE +>UniRef90_A0A140IHG3 Sodefrin-like factor n=1 Tax=Cynops pyrrhogaster TaxID=8330 RepID=A0A140IHG3_CYNPY +MRAIIATVVLLQALITGDCLLCEQCFALQTSSCSGIFKQCSPDVTHCVAGLENNTLGTHVILTAFKDCLDPSQKAACGREVSFTAPAASLWTSRTCCDSDFCNGGDVQVPPPDDTPNGYICEGCGSDQSAKPCTATEYVQCSGKQNACGTFYGTASRPGKTGEEYTFKGCTTQDFCIAGIFHMAGMQAYDYYVLKCSPALKV +>UniRef90_UPI0021C67275 ABC transporter transmembrane domain-containing protein n=1 Tax=Mycoplasma gallisepticum TaxID=2096 RepID=UPI0021C67275 +MLGVAAVGFTFGYLGGRSIIIASVEFAKQLRVNIFERYQSFSVKNTDKFEKASVLTRMTTDINFIHQSIQSGRTAIRGMSVFLFSLVLMFVTS +>UniRef90_A0A5P2U3Z0 MFS domain-containing protein n=2 Tax=Kluyveromyces lactis TaxID=28985 RepID=A0A5P2U3Z0_KLULC +MAVKEEVLGKQAVSTHAVAANEHDLDEKQQEEFLNEYGLPDKLRFTRSLVLRKTEILAQQYDSWYWKAVLLFSVFLCSYGYGLDGSVRSVYTTYATNSYNTHSLLSTISIINLVIGASAQVFFARLSDVFGRLTLLIVATVFYSVGTIIQSQAYDVQRYAAGAVFYNVGLVGVVLQVILILSDFSSLRWRLFYTFVPSWPFIINMWVSGNVVDAANPLENWSWSIGMWAFIFPLTCLPLVCCILHMRYRASKTEAWRHLKVEKTYYQSHGLLQTLIQLFWKLDVVGVLLLTVTLGCILVPLTLAGGVSQKWNNPHVIAPFVLGFVLLPMFVVWESKWALDPIAPFKLLKDRGVWSALTIQFLIYFVYQMAVGYLYTILVIAVDESTTSATRITSVYSFTAAVASPFFALVVTRSKRLKPYIITGCSLWMVAMGILYHFRSGKDSDKGIIGGLVLWGLTSTLFTYPVTVSLQSITSHENMASVTALNYTVYRIGGAVASAASGAIWTQLLYKKLLKEMNGDAALATAAYGSPFDFILDYPWGTPTRDAMVESYRYVQKYEVLVALVFTVPMFILSMFLRDPPLTDDQAQENLKEGEYINTEHDDPIAAWMDDKWTRLTGGRKKE +>UniRef90_A0A2N6BMK7 Serine hydroxymethyltransferase n=2 Tax=Deltaproteobacteria bacterium TaxID=2026735 RepID=A0A2N6BMK7_9DELT +MILIASDHGGFEVKEAIGEHLKARGLEVEDLGTTNTDSVDYPDFAKKLARRVADEPQSKGILICGTGIGMSIAANKVPGIRAALVADTFSAKMAKEHNNANVIAVGGRTNTPEEAKSLVDAWLDAEFEGDRHARRLNKISQMEVSCGVARSISAEDPEVFSAMMGELRREEDTIVLIASENYASTAVLEAQGSVFTNKYAEGYPGARYYGGCEFTDKVETLAIERAKKLFGAEHANVQPIAGSAANMAAYYALINPGDKVVSMSLAHGGHLTHGAKVSFSGRLYDIVHYFVEEDTGKIDYDKLAELVKREKPRLVVAGASSYSRTLDFQRFREIADSVGAYLMVDMAHIAGLVAGGSHPSPVPYADIVTTTTHKTLRGPRGGLILCKAKYAAAVDKAVFPGLQGGPLVHTVASKAVAFREAMTDGFKQYADMVVKNAARMAEGFKKAGYDVVSGGTDNHLFLLDLSSRGLTGDAAEKSLDRAGITCNKNAVPYDKLPPTVTSGIRIGTPILTTRGMGEEEMDKVVELIIRVLENVGDAKVEASVREDVAALCRQFPFYADFLAD +>UniRef90_A0A2V8W5K0 DUF393 domain-containing protein n=5 Tax=unclassified Acidobacteria TaxID=305072 RepID=A0A2V8W5K0_9BACT +MISLVSEYTDGKGRHARGWLFFDAECKFCTRIARWLAPILEKRGMALAPLQDPRVGALLGLAREDLMREMQFLLSDGSRFGGADAAVALAREIWWGRPLVWISKIPGMMEILRKGYHWVAASRSCAAVSCPANEPSPRV +>UniRef90_A0A0A9RIL1 DUF5753 domain-containing protein n=1 Tax=Arundo donax TaxID=35708 RepID=A0A0A9RIL1_ARUDO +MQRVPLQVPLHHPPGQGHLLAHREHERLAIARRTAGRPANPADVLARVTGVVEEHHVVHVSKVDAS +>UniRef90_A0A1Z4M0Q0 Outer membrane efflux protein n=1 Tax=Calothrix parasitica NIES-267 TaxID=1973488 RepID=A0A1Z4M0Q0_9CYAN +MIAVAALNTQSAKADSNSLRQMQTIPNYSIPTSEETTGNFQLSVPSEVIPPDDVEKQLTSDESKSVLDALSPNPNPLQYPTRPEEVQIQKIQAITLEQALELARRNNRELQVGLLELQRAQAAVKESQASLLPNAGLSAEVARQQSAQNQLAVESTNIGTDEATTAFNGSLQLSYDLYTGGRRNAQIGQAKERLRVQELAVEVLEEEVRLNVSTEYFDLQQADEEVRIANAAVVNARASLRDAQALEQAGVGTQFDVLRTRVNLANAQQQLTNAVASQQVARRRLVTRLSLPQSVDIAAADPVKLASLWNLTLENSIVLAYQNRSELQQQLAQRNINLLDRRLALSALKPQVSLVASYSLLDQFDDSVSLTDGYSVGVQANLNLFDGGRAKAQAAQAKANAKIAETQFADTRNQIRFQVEQAYSGLQSNLENVQTSNAALEQARESLRLARLRFQAGVGTQLEVIDAENALTTAEGNNIRAILDYNRALASLQRSVTSRAIP +>UniRef90_A0A0W0Z402 Type I site-specific deoxyribonuclease n=1 Tax=Legionella spiritensis TaxID=452 RepID=A0A0W0Z402_LEGSP +MKKTFDKLDKLKLEQLDNPNYLPKIQNFLPQLKSDFEQHVAPGEFDPIKQADNWLEVVRNLANNKHPAINKDSLKKIEKIYDLLGGQDEDAFRLLDMYQSIDTVNSEQVASKTKKIVADYRAHLANKIEEKGFIISSEDNSIVSLNEGEITPKQQKLLNRYEAISALDERIHNKRILDESDKSEAKQALDICLKNKPEWSEKPFLQKLTDVLSVGIKPLYKAFFSKETRLKEELDQVISGPKR +>UniRef90_A0A2Z6DW79 GTPase HflX n=5 Tax=Proteobacteria TaxID=1224 RepID=A0A2Z6DW79_HYDTE +MFERPRFGERAWLVQIDFGEGRVAERLEELRQLVVSAGAEIVGALTVRRAKPDPATFLGSGKVTELAALVREHGADLVVFNHALSPAQQRNLEQALACRVVDRNTLILDIFALRAKSAEGKLQVELAQLEYLSTRLVRGWTHLERQRGGIGLRGPGETELETDRRLIGARVNRLKARLQRLEKQRATRRRGRQRYGVPQVSLVGYTNAGKSTLFNALTKAQTYAADQLFATLDTTSRRIWLPQTGNVVLSDTVGFIRDLPHDLVAAFHATLEEVKEADLLLVVSDLASPDNDAQREAVTETLRQIGAESVPVLEVGNKIDLLDQSPEVVRDGCGTIRRVTVSAATGAGLELLRAAIDERLHTATNASSGEKNTETNSASTQDHTEPFWEPLEREVSPCP +>UniRef90_A0A2M7SV67 PolyA_pol domain-containing protein (Fragment) n=1 Tax=Chloroflexi bacterium CG_4_10_14_0_8_um_filter_46_9 TaxID=1973937 RepID=A0A2M7SV67_9CHLR +MDLASKINSYFPKELLELLQDTSAEANKLGQRVYLVGGIVRDLLIGYPNFDLDLVTEGDAIELANRIARMSEAKLVIHPRFNTAKIKSGDFAIDIATARSETYASHGALPTVTPCPIEKDLFRRDFSINAMAISLTPEHYGELLDPYHGKDDLDAHLIRILHPGSFTDDATRILRAIRYEQRLGFNLEHETAQLLKRDISMLNTISGDR +>UniRef90_A0A0G1DQW2 peptide-methionine (R)-S-oxide reductase n=2 Tax=Candidatus Magasanikbacteria TaxID=1752731 RepID=A0A0G1DQW2_9BACT +MNDQEFREKLTQEQYHILRERGTEAPFSGKFLDHKEDGSYTCAACGNVLFASGAKFDSHCGWPSFDRDMGEGTVTFLDDTTLGMTRTEVRCAQCGSHLGHIFDDGPTETGKRYCINSLSLGFQSVDKR +>UniRef90_UPI000FD1EFED acyltransferase n=1 Tax=Mesorhizobium sp. M7A.F.Ca.ET.027.02.1.1 TaxID=2496655 RepID=UPI000FD1EFED +MTHQFGMKPRLVGLDVARIFAALAVMVFHLGFWSWAVKGSTPQSVVQGAAAFPELAPFTFWGRFGVEIFFVISGFVIAFSAASATPWQFIRARFLRLVPAALICATMTFVVAITIGLLPTSTLVDRYIRTLTFNPYAPWIDGVYWSLGVEISFYVLIAALLMIRRFSWIEPVAAIIGTASSFFWVWILAATLGYVHPPVSMIDGRSMDLLMITYGAYFATGVFLWSSLMIKPNAARSVALLLFVAGGLAGIYMNAPAYFAKIIDPSLRCVPAVVWLFAISFIVLATRFDYLIVSRMKPGMLAAIRLCGMATYPLYLLHDIIGAAVLRMLVLQDIDRFVALTYTFALMIALSLAVTLAVEPPFRKAISRVIDFRVLRPTTAEASQKA +>UniRef90_A0A2E6BIU5 Dephospho-CoA kinase n=4 Tax=Gammaproteobacteria TaxID=1236 RepID=A0A2E6BIU5_9GAMM +MTQTLKSERLIIGLTGGIGSGKSAATRFFSELGITVVDADELSREVVKPGEPALQAIVAHFGDGVLLDDGQLDRRQLRQRIFDDHNERKWLEQLLHPLIRQEIITRLTASTSPYTLLSSPLLLETDQQRLCSRVLLIDAPESLQIERTIIRDNSSEATVKAIMESQMARHARIERADDIIVNDGDLNQLKDAVAAQHQRYLEMTQ +>UniRef90_V7F2Q5 Stm1_N domain-containing protein n=1 Tax=Mesorhizobium sp. LSJC264A00 TaxID=1287321 RepID=V7F2Q5_9HYPH +MPETPKDKDLEKGDEVLRRLLKTPPKPHGDKAAKEKPEARPAKRSQNAKAK +>UniRef90_UPI0018E26317 uncharacterized protein zgc:113436 isoform X1 n=2 Tax=Cyprinodon tularosa TaxID=77115 RepID=UPI0018E26317 +MLSVDSLQVAEEEMVESSSNKLSDIYTFVAKGSLPLTMNPLQKKNFKRYAKKFIFEEGKLFYVGPKKEEKREVVIEAKRKMQIFLDSHLSDVGRHLGQKKTVHRIQSRFYWLGIIKDVVEWIKVCETCRQTERNKNLARTVRPARVEAPWDIVGIDFIGPFTETRRGNRSVVLFIDYFSKWPEAFPVQTVDPLSVARCVSNCIYRFGATKTVVCAQKPEFCEEVSKVLHEKWKLVQRVSALDQPQLNPLHDCSGPLLKEAVEQMVAEKQADWDDFLDPVLFLFRTSSNPTTKFAPYSLMFSRKANPPGETRLTPPQYDEPETDGCREQDGCREQDGCREQDGCREQDGCREQDGCREQDGCREQASTCMNIMREQQNAVKQMVIANMNAAYKQEKKRKKAKRRMQSASPATLKVTEPLFAAGDSPSAKKVKDSLYLSFPVETVLATEPNGAEGVKTELAYRLAQPDVH +>UniRef90_A0A672QD87 Serine/threonine-protein kinase VRK1 n=3 Tax=Sinocyclocheilus TaxID=75365 RepID=A0A672QD87_SINGR +MPPKSKAGGAKKARAPTKRKLAEEFPPGEVLTDNAKKKWKLGSPVGQGGFGLLYLANEDSSGSVGAAAPYVIKVEPSENGPLFSELKFYMRAAKPDLIGAWMKSRKIDYLGVPKYWGSGFHEKGGKRYRFMVMDRFGTDLQKKFEGNEKKFPRKLVLQLGLRLLDILEYIHDHEYVHADIKASNLLLSYTNPNQVYLVDYGLAYRYSPEGVPKEYKEDPKRCHDGTIEFTSIDLDFDVSTNDAGPPSIKTPKRKKAEEKGQSADETEGTPAKKRRAPQKKDVNGAKKTASPAKRPAKKEAQASSEPAVKKSRGRPKKNS +>UniRef90_UPI0013C2E1C0 hypothetical protein n=1 Tax=Trinickia diaoshuihuensis TaxID=2292265 RepID=UPI0013C2E1C0 +MVAVGNGKGAAGRGNGKSTVVDEAAVVAGLIFLKTIPCSCAPAATVHAAGGAALFEEDDEDDEDAADDEDAADDEDAADEEDAADEEDAADEEDAADEEDVADAAERGLNPGEPG +>UniRef90_A0A2X1W8T8 Ovule protein n=1 Tax=Photobacterium damselae TaxID=38293 RepID=A0A2X1W8T8_9GAMM +MCQKLYKLLIYYYSVCYFRILVRFTVLKNHGYLFAVKFKKSCTSGWLNLLSGSDYNRDMITLVLISLRIY +>UniRef90_UPI001FFDE7FD SusC/RagA family TonB-linked outer membrane protein n=1 Tax=Sinomicrobium weinanense TaxID=2842200 RepID=UPI001FFDE7FD +MKAMMCKRKTIYVLSAFFFYCQFMLAQQKTVTGVVTDADDGMPLPGVNIVIKGTTKGVSSDFDGNYSIEAPEDAVLVFSNLGYASREVPVAGQSTITITLSADAQELEGVVVTALGIKRETKRLGYAMTEVKGDELAKTNTVNPVQALQGKAPGVSIGSSDGGLFGNSKIQIRGVSALNSNNNQPIFVVDGVILDNNVSDSSADWEGNPNDYGNMLKNLNPDDYESISILKGAAATALYGSRGLNGVVLIKTKDGSGTRGLGVSVKQSVGIDHVYRQPDIQYEYGVGTRAGAVSYGERDANGNYYRFSNNQFYTNDDGIPTLIEHPSSLGYGPKYDGRPIIGYDGEMTTYSPAKDNLLDAYDTGWNTNTSVSLSGGHDKGNFFLSLSHNDRSGTLPNNSFKRDALLFSGAYQLADWLRADASISYTTSKSKNARNDLSQFFINGTYANGYNPSKYRQRQFWQASHGGIPNSDYSDKYAYVPGKSIWFEYSMNNAGSEEQVTRPIVRLTADVAEWLSITAEGNMNYYTTKYERKDWGSGFLNDGGEYQMRHNTDKSYTGKLTANFQKDLTPDITAQLLVGGELWKQEKSETDVRTDGGLIVPGQFFLENSKRNLISSGKVYGTKQISSLYFLSSFGYKDQVFLDITGRNDWSSSLVYTNGEGNYSYFYPSVSSSWLFTQTFNTPDWFTFGKLRASWAQVGSDTDPYAINKGYGIGRYQMDGDKFIYTNDITTTLVDKNIKPERKNSYEIGMDIRFFNNRLGVDFAYYNEIIKNQIGEIPFPQESGYNNYFTNIGTLSNYGVELSVTGTPVKTKNFTWNTTFNYWKNTTKIKDLHEDYGEYKALGGDVAYGNFRIGSVAFKGGEYGVLMSDSSPKKWQSDNPDDPRNGMNVLKWVDSDRGAFYERSYEPERVGKVQPDFEGSLNNSFTYKGISLSVLLDARFGGHIASYSNRYGTSYGWLETSLRGRSPEHGGMTWTSQYSDSQGQQFNDGVIPNGVFAEGQTVTAPNGSTVDVGGLTYQEAMDNGYVEPTHASYFNYYTNSWSDGVVNDDWFSEVKYIALRNISLGYNFPKSVSDKLGAKNFYVSFNARNLGYLYNSLPNNLNPESFRGTSSSDSFRERGFIPYTASYTMTIAIDF +>UniRef90_X1TZX9 KTSC domain-containing protein (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=X1TZX9_9ZZZZ +GFEYDPKVKDVFRLLMTPERYNTLYHRSKAAKTRIDRS +>UniRef90_A0A2E0MWS0 Asparaginase n=5 Tax=unclassified Euryarchaeota TaxID=115531 RepID=A0A2E0MWS0_9EURY +MTEQDRPSSVSHGRPGSGIYPSNPLGEKHEGIPTGRDVEWEPLVDFRRLDVSENTIHGAISWVHGDEVIHSFGGNVLVYGRSMMKPLLMKIFTDVLDDVLTDEQKAIACSSHNGDTEHVATAQSILTESEWGLMQCPLDVPLVQFGRQVRRPRRWFHTCSGEHAALLRALRLKGINRAGYTLPTSSWFQDFIDLLNSMLHPDWKPLRIAKDGCGLPTVSNTVDELATLFSALVRTKDDDWIWDAMCKHPDLIGGFNRLDSTIIKAGEGRVLAKEGADGLLGIAIEHDDWPKGLGIVIKIAHGWNSQATWYVARAVLGVLGIQLRNPYPLHRQKAFIVPGIVPEMYLKQLESVVTWDEWDPDQDRFQILENQDNLARNPHGNEGRM +>UniRef90_A0A348B110 Shikimate kinase n=1 Tax=Sulfodiicoccus acidiphilus TaxID=1670455 RepID=A0A348B110_9CREN +MQARAFGGISVVNAVPAWLGSTMAINLVVSVEIEEGDGREEGLIGYVLSYLRNAYSLPPLRVKVYSSLPQGGGLKSSSAVTVALIEAVSRLFNLRLDPPFLSAKLSLEGGFSLTGAYDDAFAAYRGGVSLTDNKSISLLKHLQPPEGLVFLVVPKEGRTADPRLLRRYSKTFEAIFQLALQGKLLEAMKINGVLVAEILGYDLSPIEVALSRGAIAAGVSGNGPSIFAACNEGDEGPVEDSLSRYGRVVRVEAVRIEGEDLQGQG +>UniRef90_A0A5S4GRQ6 ABC transporter substrate-binding protein n=2 Tax=Streptosporangiales TaxID=85012 RepID=A0A5S4GRQ6_9ACTN +MRRTAKIISVAMLAVAAAACAPSTAGNAPSTAATAKALPGPSLDANFDLEALVAAAKKEGSLLVYDSSGDIEEVAKAFTAKYGIAMEGVKSDTPQTAEKMIREHAADNVTIDAAMYEDGGVLVGQLAPQGVTQTWIPQDLKEQIPAENQNPLLALSKATVFAYNTKLSPGGCPVKNIWDLTEPEWAGKLVMQDPLGKPTVLSFFTQLDAHGNQALEQAFQAKYGKALKTEEKSAAYEWVKRLAGNRPVLTGSDEDISGAVGAPSATDKKIGFMSISKFRNNEDKGYTQSTCEGMAPFTGFSYPKYVAIASKSKHPNAAKLYVHFIMTEEGVKHEIGEGGISGNSTVKPLVTPAGLSDWQGQLFHTDPKGLLGDMQNRQTISDFWRVNKS +>UniRef90_A0A453IYK0 ADH_zinc_N domain-containing protein n=2 Tax=BOP clade TaxID=359160 RepID=A0A453IYK0_AEGTS +MALPTQGWGKTIILGVEMHGAPLTISSLEILHGKCVMGSLFGGVKPKQDIPILADKYLNKELELDKFITHEVGLKDINTAFDLLLQGKSLRCTIWMDK +>UniRef90_UPI0021183352 helix-turn-helix domain-containing protein n=1 Tax=Bifidobacterium longum TaxID=216816 RepID=UPI0021183352 +MGEVYSHLSEEERQVIQIEVGNGASIRGIGAMLGRSPSSISREIKRNTWFPSNENESYRPVLLQCLFDRFGSVFPQCGLMVFPGVVIVSR +>UniRef90_A0A4R6PNK8 Sucrase ferredoxin n=4 Tax=Nocardia TaxID=1817 RepID=A0A4R6PNK8_NOCIG +MNPFEGMVCSAAAADLPLLGTAVHATGWLCIEHPGAWGRDVLGDEVLGPEITAELAARTSAAKVRPTLIRRPGRYEFTGTRTVLLASARPEGSWCVRFEITDLRELFDIDLHLVDGPAPEIDVPVDDPIVLVCAHGKRDQCCARLGRPIAAALAAEQPGRVWEASHTGGHRFAPAVVLLPSGLTYGRVDIPAARDLLAAADTGEVSLTGLRGRSCYPPIAQLAEVAVREQVQAPADALTVALDPTPTHDPTLAGAAVVTHRDGRRWRVTTRTASAPPRQASCNAKPKPAGYLEPVSIEQLPTL +>UniRef90_A0A7W0RJ01 DNA ligase (ATP) n=1 Tax=Nocardioidaceae bacterium TaxID=1871072 RepID=A0A7W0RJ01_9ACTN +MDLPVMPPLSPMLAKVAKTVPSPEAFEGGLLYEPKWDGFRCIVFRDGDEVELGSRNERPLTRYFPEVVEAAKASLPDRCVIDGEIVVPIDGRLQFERLLERIHPADSRVRKLAVETPASLVAFDLLAIDDEALLGTPLGERRPRLEQALAGATDPIHVTPASDQLSTAEEWFAVFEGAGLDGIVAKPCASTYQPGARAMIKVKHVRTADVVLAGFRLHKKSTEQHPLLGSLLLGLYDDNGRLQHVGVSAAFPADRRAELVRELQPLVVEPADHPWAEWAIAEAGGDRMPGAQSRWNAGKNLSWVPLDPALVAEVGYDHMEGTRFRHTTQFKRWRPDRTPESCTYAQLEEPVNYDLDDILV +>UniRef90_UPI001C08EAC3 hypothetical protein n=1 Tax=Tamlana agarivorans TaxID=481183 RepID=UPI001C08EAC3 +MKNVLTLTKKGILMVAMLATVLGFANADDKVIVKRDAKKTSITLEDVKQGDLVSIKDNQGIIIFKESVEATGTYKKGFDLTGLENGDYVFEISKDLEVNTIPFTVNTTNIEFDEAEESTYYKPHTKHEAGLLYVTKLCSENEAAIINIFTEVAAGEYEMIHSELIEDALVIEKVYKLNTGNYKITIHSNNKEYTKFINN +>UniRef90_G0R3Q1 Transmembrane protein (Fragment) n=1 Tax=Ichthyophthirius multifiliis (strain G5) TaxID=857967 RepID=G0R3Q1_ICHMG +MEQERQYIQNQFKNDKNNLINQINFNNENIKLDDKQIKLLKEKKNITRDMLKQHYLQELKKNKGLQNTSMVWITKALLNINEDVNQSEIFPSIIDQQSVSYLIEYAQSEINYDELTFMLQKQQLQNISSSKLEENNFDKNYLNTQYQYNINTIKNKVSKLAQQTVKIKNPLLIQSSKTSIPNLVWEDTESAQKSSN +>UniRef90_T0DQ77 Globin n=3 Tax=Alicyclobacillus TaxID=29330 RepID=T0DQ77_ALIAG +MLSQETRDIIKSTVPVLETHGTAITTRFYQLLF +>UniRef90_A0A2C9KHU1 SHNi-TPR domain-containing protein n=1 Tax=Biomphalaria glabrata TaxID=6526 RepID=A0A2C9KHU1_BIOGL +MATESSTSAVDSVEKLEVMKKAADLLAQGKRNMLCGEVPKAVNLFEEAVQLLVKECGELSRDCADAYFSCGSALLELGRMETNVLGTALEGVEVEEEKEEEESEQFEKPPAEDDSVRQQLREEVYEAMAEGEREKDMQKTDKEIKDGEDGGASQMETVTDENKDNVADKSDLKESITAAGDADKELKKEEIPETNSTVEDKSLTESKINEVKPADSNTVADKDETKDQLEKPKQEEEMEVVEKNSEKSEISHKAHEDAAQSAEAEKETASENAVDTAMDIDEKKDVELEDESEADKDDEETEETVDEEEAVEGDESADGEKDEDVPNFQLAWEYLDLAKVIYLKNESKEDQLKAAECHLKLGEVSMETEQHTIAVEDLLSALKIQQKYLAPDDRLIAETHYQLGLAYGLGKEFKLSIEQYQLAISVIEAKIASLKKVLEDEQIDAENKENLETNPELKKFADEIKELQDLIPEMKNKTEDARIEENDLQKMKAIVKENLFPSGTTKEFGSPSKKSGGSVTSGDVDENGERKASDIAHLVRKKRKPEEDTSAPSEQEVKKIRQEVVSDDVNVETKVDDEAKMNVDEQVNTEESQVNSDNSNINVEPKVNGDEPKVNGDEPNVNGDEPKVNGDEPGVNGDDIKVSGDIIESKVISKVEVSPTEDAKMNGDTETPSIETSASTEVAPMAT +>UniRef90_Q883V3 histidine kinase n=513 Tax=Pseudomonadaceae TaxID=135621 RepID=Q883V3_PSESM +MSDSGRADALLAQLPREGRGRLKVFLGAAPGVGKTYAMLQAAHAQLRQGVRVMAGVVETHGRAETEALLNGLPQQPLLRTEYRGMTLEEMDLDALLKAAPSLVLVDELAHTNAPGSRHTKRWQDIQELLAAGIDVYTTVNVQHLESLNDQVRGITGVQVRETLPDWVLQEAFDLVLIDLPPRELLERLRDGKVYVPEQARAAIDAFFTQTNLTALREMAMQTAAAQVDNDLAQGYRQLGQSAPAVRGRMLVGIDGDMHAERLVRHASRVAQRRHLPWSAVHVDDGQTLDEQSRARLQNAQQLAERLGGEAVSLRAGEVARTLVQHAIERRASVVLVGQSRRHWRRRVFGGGVAARLLREGHGLEISVLDDSEELPDQPPRARPAREVVWFDYGLAFVATLIASLVAWGVAGVLALPNISLIFLAAVLLVAVRSSMGPALACAGLSFLAYDFLFIPPSFSLNIQREEDVLTLLFFLLMSALTGKLAARQRRQLQALRDTQEQTSELLDLSRKMTAATDRKAVLNAAEQHFSGWKELYLCLVDRDTQGGLVVETGGPLTFSEAERAAADWAWQHDQPAGSGTGTLPSGRWWWWPITAEEGPLALLGVCAREGQSFTDQHRRLLAALTQPLAQALARAQLAQELEAARLHGETEQLRSALLASVSHDLRTPLTSMRGSIDSLLALGEAIALEDRRELLEGTRDEAERLDRYIQNLLDMTRLGHGALKLARDWVSPADIVGSALNRLRAVLTPLQVSTQVTGDLPLLYVHAALIEQALVNVLENAARFSPLGGRLQVTAGVVDSELFFSVSDEGPGIPEDERAKIFDMFYTAARGDRGGQGTGLGLAICQGMIGAHGGRLTVEEGIDGLGTRITLFLPLQAQPDAEMEEPA +>UniRef90_Q2KHZ9 Glutaryl-CoA dehydrogenase, mitochondrial n=28 Tax=Pecora TaxID=35500 RepID=GCDH_BOVIN +MALRGVYAQLLNRGPGLRVFRSWSSATAQTEKGEKTQSRSAKPSRPEFDWRDPLLLEEQLTADEILIRDTFRTYCQERLMPRILLANRNEVFHREIISEMGELGMLGPTIQGYSCAGVSSVAYGLLARELERVDSGYRSAMSVQSSLVMYPIYAYGSEEQKQKYLPRLAKGELLGCFGLTEPNHGSDPSGMETRARHNPSSRSYILSGSKTWITNSPVADLLIVWARCEDSCIRGFLLEKGMRGLSTPRIEGKFSLRASSTGMIIMDDVEVPEENVLPGVSGLAGPFGCLNNARYGITWGVLGAAEFCLHTARQYTLDRIQFGVPLAKNQLIQKKLADMLTEITLGLHACLQLGRLKDQDKAAPEMVSLLKRNNCGKALDIARQARDMLGGNGISDEYHVIRHVMNLESVNTYEGTHDIHALILGRAITGIQAFVAGK +>UniRef90_UPI0021D8BFC3 hypothetical protein n=1 Tax=unclassified Shewanella TaxID=196818 RepID=UPI0021D8BFC3 +MALRLADIPYYLNPTYQSDGRVKIDSPQQLCIYLIGPDTVEKVRKTLNFFATISKICLVRREKLHIDFSNLQNFTAAASVLLFSEITRAQLVTEIADVVTFTLPKTPDVLKLFRGFGLYKAIMPGGNRKLINLFDDDHPYQSGTDPNKFLISTILNLKNQGLELSNPETRIIHRGIQEAMLNVIHHAYEHETDVSSGIGSRWWQLSFCKHDSKSVAFIIYDKGISIPESIAGKLPVNITTDAEAIEFAFQKGVTRYTDKPTRGKGSEDIKDVTTVKDNSKLLVYSGNGMYYINRERGDTRKLSLPASINGTMIEWLIPYE +>UniRef90_D9WD85 Integral membrane protein n=2 Tax=Streptomyces violaceusniger group TaxID=2839105 RepID=D9WD85_9ACTN +MGADVNEEEIARAVEEGMRRNDVRRAAAWRKARDQEARNLLKGLGCMALVFIVFIVLMVKNPGG +>UniRef90_UPI001FB071F5 discoidin domain-containing protein n=1 Tax=Clostridium perfringens TaxID=1502 RepID=UPI001FB071F5 +MLKNRERMKRLIACGIAASIVSVNGLSVLASELNKSDKVNLALNKKTVASSREVNDKWGAELITDGIKDKPSDPNAKPGNSRWASSRSVPQWIYIDFEEATTFDQVDILWDGAYSRNYKLEVSNDGETWEEVYATSEGKGNQESINLGEDITANYLRVSCEDTAHEWGNVSIYEVEVYDNENEENVTPPETETGVNIALNKTATASASETNTLTPDKVVDGDTSSRNSRWSSGGFSNGAKQWITIDLEKESTFDKVRLFWEAANAKVYEIQTSNDNENWKTVHRNEAGKGGTEVIELSEKENARYVRVYCEENNPAVWSSVSLYEVEIYNGEIPSSGDLDEVLNSLEVPTINKGDSKLQMPEVPKGFEIKFIGADYNQIRLLNKQNL +>UniRef90_UPI00166CCB99 hypothetical protein n=1 Tax=Kroppenstedtia guangzhouensis TaxID=1274356 RepID=UPI00166CCB99 +MEKFGLAVKVDGEELLLLEIEVENDGKKVISDLPGSIRKLAESMAILIEENGNPLEEVAK +>UniRef90_A0A1G6XTJ4 RNA_ligase domain-containing protein n=1 Tax=Niabella drilacis (strain DSM 25811 / CCM 8410 / LMG 26954 / E90) TaxID=1285928 RepID=A0A1G6XTJ4_NIADE +MPVIKLETLVSADPETCFDLSRSIDLHRFSTVQTGERAIAGKTSGLIEAGETVTWQARHFGVRQKLTSKITAYQRPVHFRDEQQRGAFRFMKHDHYFSAVEAGTLIKDVFEFQSPLGVLGRLTDAIIMRRYLTRFLTKRNRVIKDIAESGMGACLVAAERNPYILERAGAFSYTHDGFIQEEALLRACYAWADVETIFAYKQDLLTTDEVCLDLFTRNGMRVFISESCSGWDRFLQKLSEQFPSLSEGWEWEVAQPPFKTNLALLFDRRGRTLTQAETDCYGGAHKP +>UniRef90_A0A0G1M8D9 Single-stranded DNA-binding protein n=1 Tax=Parcubacteria group bacterium GW2011_GWA2_45_30 TaxID=1618834 RepID=A0A0G1M8D9_9BACT +MLVEGRLQTRSWQDQQGQKHWRTEIIAERIQLGPKPGGGGYEGAGIENENFEPAQNQARGPAAPKAVPPEETTPIIDIAEDEEINVKDIPF +>UniRef90_A0A388PNR4 PPM-type phosphatase domain-containing protein n=1 Tax=Opitutae bacterium TaxID=2026771 RepID=A0A388PNR4_9BACT +MFSSTKKNQTLRWVNCLSGARGLVDQFPFRLPAGSPSPQVTVSPATQGLTLTPTPGRRPLVNGLAIDGPVTIAETSTLQLEDGLLALSLEEADTFRDLRTDAWMLFDAASGELLGEFAPADLLDRANDLGRPPEHLACTPTGLEVGFSLSLAAPLLSPREEIATRGPGPALLAAEQNRGAHLCPVCWTRFDAGDALSIAVHEDLRGDPILGSDARLRFQPTRFNDQGLALDPMGLACTDLACPHCRRQLPPGYLDMPHRILSLIGAPSSGKSYYLAVLTRELQERLPKDFGLAFKDGDPSGNMLLNQMRNTLFSAATPEEALLGKTALEGATYEKLPRLGRLVSLPRPFIYALSRPGARKQETSLILYDNAGEHFEPGVDIHDSPGAMHVATSAGLIFLFDPTANARFKARLIGVEDPQLSLKGRVDQQDSILAEMETRIKRVMGLAHDQRIATPLAFVVGKCDTWSRLLSSPLEPVTTPTGLDLAAIERNSQRVRAVLLDLCPGLVASAESLAEEIRYFAATSFGHNPVVIQQGPNKGRIAPDPQRLAPAHVEEPVYWLLHRASPELLPSAPRVNLEKSPAASRP +>UniRef90_UPI0005BA3CE0 TSUP family transporter n=4 Tax=Streptomyces TaxID=1883 RepID=UPI0005BA3CE0 +MPDIALSTLVLLCLAALVAGWIDAVVGGGGLLLLPALLIGLPNATYPYVTGTNKAVAIVGTTGAAVTYVRKTKVPVWTAVRVGLAALAGSTAGALFTTAVDEEILRPLIIVVLVAVAAFVILKPSFGARPEGEDRAPLTRARVVTAIVLVGGGIGFYDGLFGPGTGTFLVLALTAVLHLDLVTASATAKIVNVCTNAGALAMFAYQGTVYWQLAALMAAFNLAGGMAGARMALSKGSGFVRGVLLVVVLSMVAKLGWDQWS +>UniRef90_A0A5Q2W0C9 Substrate-binding domain-containing protein n=2 Tax=unclassified Pseudactinotalea TaxID=2649176 RepID=A0A5Q2W0C9_9CELL +MAVSVRDVAALAGVSVGTVSNVLNRPEKVAPATVERVQGAIGELGFVRNDAARQLRAGRSSTLAMVVLDVANPFFTDVARGAEERAAEDGLTVLLGNSDDQAEREALYLEQFEQQRVRGVLITPVAEDMPLLRQLRERGTPVVLVDREVGDRTFSSVAVDDVAGGRLAVEHLLDGGRRRIAYVGGPVGTRQVIDRLSGARRAVAAVDGASLETVETRALTVHQGREAGEAIAGRDRADRPDAIFAANDLLAIGVLQGLQRSKVEVPTEVALIGYDDIDFVQSTVVPLSSIKQPAHLIGRTAVELLLQDAAGAGSPPEQVVFDPELVVRESTQTT +>UniRef90_UPI000D3822E6 PAS domain-containing protein n=1 Tax=Mangrovicoccus ximenensis TaxID=1911570 RepID=UPI000D3822E6 +MEREAGMPDKAGDLGEHVWADVLSAVDRTYAELIEYQEKLEARNNELQVLQDFLASVLASISDVLVVVSRDGLIEDASRSFCDAIGQKIGALRGQTLEGFFAEPARSQVGGAIAAAIRERRESVLEVDLAGAEEPVPLEFSVTAVIS +>UniRef90_A0A5B1CRN5 DNA-invertase hin n=1 Tax=Rubripirellula obstinata TaxID=406547 RepID=A0A5B1CRN5_9BACT +MKNRNIIAAYLRCSSDDQSTEAQRADLERYLEREGFDLSRVQWFIDEGTTGDNLDRPAFEELDRLIANGAVATVVVWKLDRLSRSMIDGLTTVSRWLESGVRFVSTTQAFDFRGTIGKMVAALCFGFAEIEQQSRRERQAVGIQHAKANGTYKGRAKGATKAGVDPSRAKELRSKGLTFREIAAALGVSAPTARSYCMA +>UniRef90_UPI001CB8FAB8 hypothetical protein n=1 Tax=Nostoc sp. 'Peltigera membranacea cyanobiont' 210A TaxID=2014529 RepID=UPI001CB8FAB8 +MPELFAGIERQDDSFPVPYPDANIPQAWAAGSIFLLIRTILGLKADASKQQLKVQPNLPDCLPDLELTNLSVGDATVGLRFWRNGEQTQWEVTHLDGELEVSTT +>UniRef90_UPI00200782AC uncharacterized protein n=1 Tax=Purpureocillium takamizusanense TaxID=2060973 RepID=UPI00200782AC +MDCDICHRGHDPQRLPFLCAVDARNQVYDARLKNLHLLIENDKLQAQIAKASGDDTPATTAQLALARQRLAEDRTDQILAAADKLRAEIQAARDDIKARRAALARRRSDLSSVSTGLVDRRARQQHEVEKSLQMLRFRWSQSAEDMAQTRAFLCTEALRLYGLKRTRKSNTSRYDYQIGKVPIVDLTSMDSLTPEIISTSLAHVAHIVMLVSHYLAIRLPAEITLPHRDYPRPTIFNLPGSYQHGPFAFPSASSSMTPMPSSAQIRDPESHHVPRPRPLFVDKPLPQLSKEDPTTYSFFLEGVTLLAYNIAWLCSCQGVSIGDKGSFEDMCHMGRNLYNFVLASQLQGYVQPAEPTNKGSNADNNNGVESRSNWIGRYSHGTSYYYLGGMEGTDFVRTFKLPSPMKLADKLKKKLLGDTPGADWEVLDDDAWKPEDGRTDQSGAKALSGALADKGGLDGTGATRSGTNGWTKVKHRT +>UniRef90_A0A2H5YHE1 Methylmalonyl-CoA carboxyltransferase 5S subunit n=4 Tax=Bacteria TaxID=2 RepID=A0A2H5YHE1_9BACT +MGVRVTDTTLRDAHQSLLATRMRIEDMLPIAPLMDEVGFHSVEVWGGATFDTCLRFLREDPWERLRRLKQCFRRTPLQMLLRGQNVVGYRHYADDVVEKFVELAVKNGMDIFRIFDALNDLRNLETAIRAVKRYGGHAQGTICYTISPVHTIDLYARLAQELVEMGSDSICIKDMAGILRPYEAYELVKRLKDTVPVPVQLHTHSTGGLAPLAVLKAIEAGVDVVDCAISSLSLGTSQPPCESLVATLHGTPYDTGLDLELLSQIADYFAQVRRKYAAFEGEVTVDVGVLIHQVPGGMISNLLSQLREMGAADRLPEVLAEIPRVRAELGYPPLVTPTSQIVGTQAVLNVLAGERYKQVTRETRAYVQGYYGRPPAPIDPDVQRKVLGDADVISGRPADHIPPELEKARADLGELASSEEDVVSYVLFPQVAREFLEWRARGGGLEPEEVAAIAVALAQDHARPQPAAAPRREVSLWKVAGRRRLLNRAGVP +>UniRef90_UPI0014216B0F DUF5668 domain-containing protein n=1 Tax=Alkalibacillus almallahensis TaxID=1379154 RepID=UPI0014216B0F +MKQSQSFLAITLIGFGLYFLIQQYDIPILSQFGNWPSILVILGVAFLFSAYGNNQHDNILPGIILFGLGVHFHLLQHQVNWIDHWGMYTLIIGIAFILRAQKKRQGTIIGIIFIVISFLALSAFAMPTWLGWLDVVFNMIEQFWPILLIIIGFVMLFKK +>UniRef90_UPI001E50B040 type II secretion system protein GspM n=1 Tax=Bordetella sp. LUAb4 TaxID=2843195 RepID=UPI001E50B040 +MKRPDDKDVSVPANAGRQSARGPDTPPAPVRGLAPTFATWRLKLRDALRPVAAWHAALTPRERRLVDVGGIVLALFLVFTFAIDPALTTIARSRNELPALRAQAAAVASLTNEAQRLRQHGGRTSNAPLAQTDIDESLRRAGFAPDSWRITQEVGNGNGGGNGNAGKPAVWRVELKQAPSTALMRWSDNVPAELRLRVANVELIRASTEYGRPIPGKVNGTVRLAASVGN +>UniRef90_A0A2T2YAG9 MFS transporter n=2 Tax=Adhaeribacter TaxID=299566 RepID=A0A2T2YAG9_9BACT +MKRTLAASRWYRLIPVAFITYSLAYLDRANFGFGAASSMATDLNITPATSSLLGSLFFLGYFFFQVPGAHYAAHNSAKKLIFWSLILWGGLATATGLVSNVNLLIVIRFMLGVVESAVMPAMLILLSNWFTKTERSRANTFLILGNPATILWMSILSGYLINAVGWRWMFILEGLPAVVWAFFWWRLVDDKPTKASWLTEPEKRALAEQLQAEQQGIKPVKNYAEAFKSRTVILLSFQYAFWSIGVYGFVMWLPSIIKAAPNMDIVKTGWLSSVPYVLAIIGMFSASYFSDKTLNRKAFVWPFLLIGALAFYGSYAIGSDNFWLSFVLLILAGGAMYAPYGPFFAIIPELLPRNVAGGAMALINSMGALGSFAGAYIVGYLNSSTKSFGASYLFMAGSLLLSALITLYAVRGTRTKTPEPIKQAV +>UniRef90_A0A7N1A149 DELLA protein n=1 Tax=Kalanchoe fedtschenkoi TaxID=63787 RepID=A0A7N1A149_KALFE +MKRENQYLYPNPDSSGAGSSSGGKGKVCWEDDPLPESGMDELLAVLGYKVKSSDMAEVAQKLEQLEEVMGSVREDGLSHLASETVHYNPSDISNWIENMLSEFVPAGFDSSLQPLPPASVHSFIPQLDSSASVNFPGFGGGDTSLPDYDLKAIPGNQIIYSPKQQQQQIDELGGNANKRLKTTVTATEAPLTTSTRPVVLVDSQEAGVRLVHTLMACAQAIQQSKLEVAGTLVNQIGLLAASQAGSMRKVATYFAEALERRIFNCHPQESVNPSFTDLLLMNFYEACPYLKFAHFTANQAILEAFSGKKEVHVIDFSMNQGMQWPALMQALALRPGGPPAFRLTGIGPPSPDNTDRLREVGLRLAQLAETIHVDFEFRGFVANSLADLDASKLELNPSDTESIAVNSVFELHRLLARPGAIEKVLSVIREIKPEIVTVVEQEANHNGPVFLDRFTESLHYYSTLFDSLEGSASSQDKVISEVYLGRQICNVVACEGPDRVERHETLDQWRLRFGSAGFEPVHIGSNAFKQASMLLDLFSGGEGYRVEENNGCLMLGWHTRPLIATSAWRVGSTGPS +>UniRef90_UPI0021515D3C SDR family oxidoreductase n=1 Tax=Streptomyces sp. KMM 9044 TaxID=2744474 RepID=UPI0021515D3C +MRIVIAGGHGQIALRLERLLAARGYEVAGIIRKPEQADELRKLGAEPVVLDLESASVEEVAERLRGADAAVFAAGSGPGSGVARKEAVDKASAVLFADAAVRAGVRRFVVVSSMGADPAHEGDEVFDVYQRAKGEADAYVRGLDALAWTILRPGSLTDGAGTGLVRLEARTGPGPISRDDVAAVLAELLKDSSTAGLTLELISGPSPIPAAVKSVAGE +>UniRef90_A0A850P7D6 ArsC family reductase n=1 Tax=Ameyamaea chiangmaiensis TaxID=442969 RepID=A0A850P7D6_9PROT +MTLTLYGIKACDTMKKARVWLETHAIDVVFHDYKTAGIDRRTLERWVAAKGWETILNRAGTTFRKLPEADRLALTPERAVTLMLAQPSMIKRPVLEGDGTLIVGFRPEFYETLLSA +>UniRef90_A0A559KBH2 ThrE_2 domain-containing protein n=2 Tax=Paenibacillus sp. JC52 TaxID=2163881 RepID=A0A559KBH2_9BACL +MMLAAYFGGPVSALAELAVVYIGRFLKEGAIGYVQMAIGITAALGTGLFYRYCRG +>UniRef90_S6GGD3 Lipoprotein n=1 Tax=Osedax symbiont Rs2 TaxID=1330035 RepID=S6GGD3_9GAMM +MQTHQINSWLLFSCLSALTGCANNYPLLQQQIETDNTLYRSGSHSISVSALLQNASTGTVAKVPQKKVQTPFQLRFNDTEVELNYVQQQRLQDYAQSLSAAVLSVHCGAGNSSSTLQAVSIALRRCQKIQRFLSGIQQQSQALVQADTPSQLITVAAANRQSGI +>UniRef90_A0A7V9G8G6 AraC family transcriptional regulator n=1 Tax=Planctomycetes bacterium TaxID=2026780 RepID=A0A7V9G8G6_9BACT +MAQSLRKTAFTIGPACRERFLPLDRPAGLVLRDLGVHLAGISDLARPYEIGRPGVDFHCVLYTVSGAGWCELEGLPPSVGPGDMLVLPAGTSYGYGIAADSWRILWFHFDDGRGLGQALHGRKPAIHAAASIPRLQAAMEGFLAEARETDPESLRAAGLHAELIACYLGRELAADIDPRVAAVRHRLQKLWDDVDRDLRHPWSVAALAGRVHESQINLYRLCARHFRVKPMAMVTRLRMERAKQLLRETDEPLKRIADWVGYHNEFAFSTAFKRFTGSNPRDFRKRKRS +>UniRef90_A0A804R300 LigA n=2 Tax=Zea mays TaxID=4577 RepID=A0A804R300_MAIZE +MRPRPPRVHDRSRQAAARQKPLPHVPHRAHHADDHVRQPDVRRRRHHATGSRLRPGHPLRPPPRRGAPHRPPRPRGLHDALHTAPRDARQGGRLRHVVPGRRGRGGLLLHHPVRRRARARAAGVRLHAVRRVDGRAHAAVTGAGRGGVRGLRGDGRNGRSARDAAGAGSSHAVSADEEGPELRVAGVPRQALHGGRRGHREHGGRAGAVHPRGHRRRPLRAKTPRSGRLPDRPGPASQAAVRARRRRAGSSTAARVREVARRAAPSVRRAALLWEHGRQLPVAPGPRDRRRPRAQRAPLPVGAPWPATAGRFQVPDGRQRPRAAPGRVPGEDEGPRPRVAHVGAAEGHPRQPRRRRLRHPLRLELHPREPVARRTDGALAAVRGAAPERVRARGRHGRRRRHAGGQEARQLRRGGGAGARGPVPDGRVGGEGEEGAGEGHGGEGPEPERRGQRRVVGRVGAETGARDFAQARRQGVCHRKRGEHGQRRRSRISGQNNMIPRTRRNRRRPRINRRPPCDPSGTAHVVWHCSQSPCAL +>UniRef90_A0A1Q9JNL8 Sugar ABC transporter permease n=2 Tax=Roseburia sp. 499 TaxID=1261634 RepID=A0A1Q9JNL8_9FIRM +MQPFRQSKQKWIPTVRNKKVPKWVLGLLFLAPSLLGVAVFVLVPFADVVRRSFLDAMGKEFAGISNYESVFQNEAFQLAAGNTIKFILICIPLLLLVSLVCALLINGLKGYQEFFKTTFLFPMAIPVASVVLLWRLFLDRNGFFNEGVRLFGLSPVDWMNSEKAFGVLVFTYLWKNVGYDMILWLAGLAAIPKERYEAASVDGAGRWQTFRYVTLPGLRSSVFVIGILSLVNCFKVFREAYLIAGDYPHESIYMMQHLFNNWFVSLDIQKMTAASVVMAIVMLVIMSLVWYRNERSQE +>UniRef90_A0A7C7UU56 Septum site-determining protein MinC n=1 Tax=Aquificaceae bacterium TaxID=2053503 RepID=A0A7C7UU56_9AQUI +MIEIKGKTTPVIYITIKEKGNIEALIQEISKKLNNKIFEGSLVIIENPEVLSEWERKKVEEILKKLTKGVFEKQKEEKEENRLLIINKSLRAGQRVEHKGDILILGDVNKDAEVLAGGNIIVFGKLRGIAKAGLIGDDIAP +>UniRef90_A0A535UZE8 M24 family metallopeptidase (Fragment) n=1 Tax=Chloroflexi bacterium TaxID=2026724 RepID=A0A535UZE8_9CHLR +FAWFGDRTAFVGFRLPHQFFPSGRRLEEGMPYILDVAPIVGGYTADIGYAACLGENPVHARLLADLAEYRELLLAGVRARRSLRTVYEDVDRLIDRHGYVNRHRAYPFGVIAHRVGTVGGRGPRPTVAGFGLRALRSLAHDGVMGRRGGWSPLWGPGRASDHPPTPGMWAVEPHIGFRGVGVKFEELLVVTESDAFWLDDDLPHVRRWRGAAAAVPA +>UniRef90_UPI00166AE77F antibiotic biosynthesis monooxygenase n=1 Tax=Ornithinibacillus halotolerans TaxID=1274357 RepID=UPI00166AE77F +MYAHMTNGTIDFLMKLTEKHPTIPFHFMSGTSKDVAYYEGVKKKYFQAGRSFEILVQLGEIQEQGYVVMNHIPVLDEGRPVFEDNFRKRKDEIHHQKGFQAFRLLKPLKGNTYVVFTQWDSANSYEQWKNSKEFQKAHTNIKPPAYFADRPFVNVYQMIEEE +>UniRef90_A0A1M3B6X1 K(+)-insensitive pyrophosphate-energized proton pump n=1 Tax=Chlamydia sp. 32-24 TaxID=1895742 RepID=A0A1M3B6X1_9CHLA +MLSYDYGFVIACGFLAILYGIIMIRYILSLSSGNEKMQSIASAIQEGASAYLNRQYQMITLVGIVIFALLTWILGWHVGIGFLIGAILSGLAGYIGMNISVRANVRTTEAAKKGLSEALGVAFKSGAITGMLVVGLGLLGITGYYLYLKWHNVPMRELLEALVGLGFGASLISIFARLGGGIFTKGADVGADLVGKIEANIPEDDPRNAAVIADNVGDNVGDCAGMAADLFETYCVTLVGTMLLAGVFFQGAILEKMMFYPLAICAVCIIASLFGTYFVKLGTSNNIMNALYKGFVSTAIFSAAGIWAVTKYVLGTDVIYENNGISFNGMNLFYCALTGLAVTGLIILITEYYTLGKYRPVKSIAESSKTGHGTNIIQGLAVSMEATALPVITICAGILIANANAGLFGIAVAATSMLALAGMVVALDAYGPVTDNAGGIAEMSNLPAEIRKTTDALDAVGNTTKAVTKGYAIGSAGFAALVLFAAFLQDLTRYFPASADQCSFNLTNTYVLVGLLIGGLLPYLFGALSMMAVGRAAGSVVVEVRRQFKEIPGIMDGSGKPDYGKAVDLLTKSAIKEMILPSLLPVGAPILLYVIINAFVGQNEAFVALGSMLLGVVITGLFVGLSMTSGGGAWDNAKKFIEEGNFGGKGSDAHHASVTGDTVGDPYKDTAGPAINPMIKIANIVALLLLAILAAMSNQ +>UniRef90_A0A3B4T4F2 Coiled-coil domain containing 142 n=4 Tax=Seriola TaxID=8160 RepID=A0A3B4T4F2_SERDU +MDQNNPETLKDPGGEPGLTADWNNSESVCPEKEQRRCLVTEDVTTNGSWSQSSISRSLQRAETLLRTTFNPSLKWLFHSRSQDEDAEEGHFVVAHNLVSRSSARLLRLQQALLTVAPQWQLVGGAQVGSPQVCVKGIPEREAEGGVVLVPSSSSLQGPYRTLWRLLEQRSLLLFIHEYTRRARLAAAYISRVSHLLEEQLRRPHLTPHQTLSSLSSFRVSLGSLSQELRVHLNHWSCLFSKVQSDHYLRPALVQQTRLLVEIKQTLDSLGLQALVLMEHYVCVILSAVAQAELDSVPREVLQDILAGTDVYNQAVEEQRAQRSATQLRTAVLLRAHHSTLDPGLPHSKQHHPAAFSVRELTVILAVHHAETAAEQLRSWASAQSCQVCQVHHTQEAGTSSVRSSISCGTCTLRPEWTWEQLQHTFLIPPPLLSSHQPTLQLHQDSAENHLPVLAKPTSVQQRPDCSDKDPTSQCQTHIPRNSPIQASVETVDLAQPHVENCEPPQTISPPSESSHRLSAPPVSAVCQQERSSVELLFQLLVSCSDLLVPLVSHTEAPAEPLLPHTPTDVTVTAPIISTDDSVELNRLSTDLNTEGSQADWAELDMTTRLETTCSSGFQRDRDPEGEGTVGLEGTAVAPDCVRPHSVQWLDLGQSLVFADLLGQYRALLWTLCSRALWLQMFVPPAGNAAGSINLQDNHRGFQILDRLSRASKTEDLVPKECRAMLEDFRLNLLVCTAHAQWDYVLCRGLGSALKDKCLIDGSHSVMSSSKMMSVTMEHFLLLTPPLLSSLCCQLSDSRSSGSSSLLTLHRQSVSLVLATVQLSTFWILSKAYQFLSSWSLNRFLLITQGDLKELRESLEVMVRQTRSLMMTPDSDYYSSLLLRQQLEALDRAVSELQTFSSLVLKTFSSDCKRMSGEIFEQTMPSSVHWKHSHRTGFPSSPSEYASLAAQTVIGQVLEGVAPLSDDARVQALSVTMTAFLEAWMEHILKQKIKFSVQGALQLKQDFDSIRELIQSDRYGLSADLHQHLLSLRVFQQVDSAVVCLLQQPQAKPYLQSRTWEPFTRCCPAGSRDSSDAAVGSSITNLGYVEGEDLTQADPSVMTSDLPPVDPSNPGEPYLAPSLALGPVQQEWLDLRIHGSARRWRLPGLQCLSKSEP +>UniRef90_A0A4Z1JUV9 MFS domain-containing protein n=3 Tax=Helotiales TaxID=5178 RepID=A0A4Z1JUV9_9HELO +MSQGEQIKDSDHVAVPTSEKQASSDSQESSDVEKKASFTTPDGIVEDTSFVYMTGWRLHLMRLCCAISMFLVNMEVSIIGTSLISITNDLRGFSQMGWVVTGYLITYTGLLIIWAKISDIYGRKPAMIISMLIFTVFSGGCGAAHTMMQLIVCRVFQGVGAAGAVSLALVAAYEMVPKDKYPLQAALIGSAIALGSLVGPLIGGGVSEHSTWRWVFLINVPVGVVCAALLYISVPSNFPYHGRPVLPHPITNSLSRLDISGASLLLGATVLLVTVLLEAGIEFAWKSGTAIALIILSGILFVAFMLNEKVVSKEKRTQEAVFPFRFLSNRPWMGTLLMSFLSGVPYNIIVIDIPQRFQAIDSISPFTSGLRLIPFNFSISLSSILVNIIAKQRVPPIILLFIGSIIQLVGMSLFSTLPENGTLPNTIYGWEVLTGFGMGWVMGICLLLPPAVVEGRDLAISGGSLLQFRVLGGVLGLAISTAIMNNHLTSHLTPLLGAEQLSLLLQSTREIENLSEELRIETVKAFAYGYNMQMKVNVAFSVVQVLIVGVMWTRNGKGWRGQIEVVEKQILKE +>UniRef90_A0A3C1JH31 Ovule protein n=1 Tax=Acidimicrobiaceae bacterium TaxID=2024894 RepID=A0A3C1JH31_9ACTN +MHLSTRAWDNHLEFIMLKGKNPKLTCRLYGATQMVSMANQSQNFFKKYTKLSLNRKTLWQTWTAGILIA +>UniRef90_A0A7V7MZ47 catalase n=1 Tax=Proteobacteria bacterium TaxID=1977087 RepID=A0A7V7MZ47_9PROT +KTDMFARFSTVAGERGAADAERDIRGFALKFYTDEGIWDLVGNNTPVFFFRDPLKFPDLNHAVKRDPKTNMRDANNNWDFWTLLPEALHQLTILMSDRGLPVGYRNMHGFGSHTYSLLNKDNVRHWVKFHFVTQQGIENLSDEEAAKVIGMDRESSQRDLFEAIKNKDFPKWKMFIQVMTEEQAKTYRFHPFDLTKVWSKKDFPLIPVGEFELNKNPENYFQDVEQAAFNPTNIVPGIGFSPDKMLQGRLFSYGDAQRYRLGVNHYQIPVNKPTCPYHAYHRDGAMRVDGNYGGSKHYEPNSYGEWQEQPEAQEPPLELSGDAYAHNFRDDDEDYFTQPGDLYRIIKADGKADLLFNNTAANIGGAEKFIQIRHIRHCYQADPEYGEGVAKALGLSMDEVNNFDMKPHDQWAPRPSQE +>UniRef90_A0A258AK22 Histidine--tRNA ligase n=1 Tax=Verrucomicrobia bacterium 12-59-8 TaxID=1970608 RepID=A0A258AK22_9BACT +MASFRTVKGFRDFFPEECALRNYITETWRSVARRYGFVEYEAPLVESTDLYRKKSGDEITNQLYCFLDKAEREISLRPEVTPSLARMATARQRDFKKPIKWFQIGPCFRYEEPQEGRGREFIQFNADILGDSSPATSAELIALAIDVMREFGVSADDFIIRLSNREIWSIFLADKNIAEEHTTTFLSIIDKIERARPEETEKKLALIGLTTAEVRAFMSSTDENHPAFAALRENLTARGLWQFIRIDATIVRGLAYYTGVVFEVFDLKHGLRALAGGGTYDKLCALMSDGGVDMPAAGFAMGDVVLGILLKRTPGAQMKLTSAYLAASSIDAFVVVADEAQRPHALAAVQSLRAAGIRIDYSFGSQKVGKQFQAAEDRKARFAIVFGAEYPEVVIKNLIARSQCAVPASGLVGEVQKMLAEPAVGPLIA +>UniRef90_A0A078FTM1 BnaC01g23140D protein n=1 Tax=Brassica napus TaxID=3708 RepID=A0A078FTM1_BRANA +MLLIDWKVTTVNASRVPTFRPHLTAERYILSPDLMWLCCNPNFRLDVFVTLSMFDSNTVSFHKRLEAMRGDPRKWLEVVSILMPLQEHTFISIRRLMLERATFTSWSPLMKHGNGNSLPSHVPDALPGRGRGGDGLGTFPKCFRDSGDGKCFWGRVARCTHAVPVSINFKFSRFPSPYLSPYPFRCNIVLHRTGLPSAAPLLRGYAKVETLTISERNEFIITALTQDIDFICTGKVTSSKIEKMMMFCCLL +>UniRef90_A0A369H8Y5 Uncharacterized protein n=1 Tax=Ophiocordyceps camponoti-saundersi (nom. inval.) TaxID=2039874 RepID=A0A369H8Y5_9HYPO +MAAANPFWWPMTIHKDVRFFQGQPNAPPHPPEARRRKEKLYREAMRKDDYDWASAYALEPVVKDISCDESTCARLCLDAFDDEPGLGRGRRGVWGFWFDFEHGACPMKRCWLDNDWSRKEDVLHWKIGGDRAVFDGLGYPTRDVVLLPGAFIVESLIYSCGDGW +>UniRef90_A0A7K6ALI1 Cytochrome P450 1A (Fragment) n=2 Tax=Upupiformes TaxID=57389 RepID=A0A7K6ALI1_UPUEP +MLAAMKAAMSLVETQGIVSATEVLLAAAVFCLVFLLIQSLRQHVPQGLKRPPGPRGYPILGNVLELRKDTHLALTRLSQKYGDVMEVKIGMRPVLVLSGLDTIRQALVKQGEDFMGRPDLYSFQYISNGQSLAFSTDSGEVWKARRKLAQNALKTFSIAPSPTSSSTCLLEEHVSKEADYLVTKLLQVMEKQKSFDLNQYLVVSVANVICAICFGKRYDHNDEELLKVVNLNNEFGDVAASGNPADFIPVLQYLPSHTMKLFKDVNKRFNFFVGKIVQEHYTSFDRGHIRDITDSLIEHCQEKTVGEDAHISLSNKKIINIVNDLFGAGFDTVATALSWSFMYAALYPDIQKKIQEELDQTIGWERRPRLSDRSMLPYTEAFILEVFRHSSFLPFTIPHSTTKATVLNGYYVPKDTCVFINQWQVNHDEKLWKDPSTFNPKRFLNATGTEIKRMEGDKVLAFGLGKRRCIGETIGRWEVFLFLATMLQQLEFSLLSGEKVDITPQYGLTMKYKRCEYFQVKKRSPVKNS +>UniRef90_A0A2E0V7U8 DNA-binding protein n=2 Tax=Verrucomicrobiaceae TaxID=203557 RepID=A0A2E0V7U8_9BACT +MNKAELIETVQGSLGRDATKRSAEDAVAAVLGAIANGVRTEGKVQLIGFGTFAAKTRKARMGRNPKTGEPMHIAASKSVGFKPSASLKASLAEPTEPTPPSA +>UniRef90_A8UFE2 Peptidase_M24 domain-containing protein n=1 Tax=Flavobacteriales bacterium ALC-1 TaxID=391603 RepID=A8UFE2_9FLAO +MTRTIPVSGKYNDRQKAVYNAVNRVKKEATKMLVPGTLWEQYHVEVGKLMTSELLGLGLIDKADVQNENPDWPAYKKYFMHGTSHHMGLDTHDYGLLNEPMQANMVFTVEPGIYIPDEGFGIRLEDDVVIQDSGEPFNLMRNIPIEIEEIEEIMNS +>UniRef90_A0A2V9IHY2 DUF4488 domain-containing protein n=2 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A2V9IHY2_9BACT +MNRSLRAAVIGSVMLWLAALGLAAEKKPKSGPLTGTWECVSHGGPQGDMKFTLYLEQNKETVNGTVSSPLGSTELTSASFKKNTLEIHIDTDQRNYLLIGRYKDGQLAGAWSTNEDQKGTWEGKKSAQTTSQP +>UniRef90_A0A2R6HCQ5 DUF4265 domain-containing protein n=1 Tax=Halobacteriales archaeon QS_4_69_34 TaxID=1919177 RepID=A0A2R6HCQ5_9EURY +MIDGGRGAGEGAPPDVPHWDDEYVDRVSDRLLSNYDLEKDYRVRGEVFPLYGQLSMTSHKQFLHPALSYARHDSAEHLFVRRVGSVTVAELERLVALAHDLADEWIVADEEHFGTEFTFALVVPAIPDEVRAFVADFSDRTLLKYGYYGHYEVNLVVVAPGREAHVASEGADVWRAFAPWADTDGEQPGLIDRLLGVLGR +>UniRef90_A0A3B9ERX6 Glutamine amidotransferase type-2 domain-containing protein n=1 Tax=Rhodospirillaceae bacterium TaxID=1898112 RepID=A0A3B9ERX6_9PROT +MCGIFGIILKDRSAAPKDAFEHDLSLLYKASMARGRDATGLALHDSRNVHLIRRDCSPKQMLASDAYRRVVREGYAAQAAAPLAAFGQCRLVTNGSLAIEANNQPVVAGNVVGAHNGIVVNDGDLLPSEAPKTSAGGGTTALAETVHAANDTTRLMEAIDGALNRLGNLRRAVGEVFLRLEGEASIVVMSRLDGAMTLATNTGSLYFLSRADGSAFAFASERPFLRRLIAEGYVFTDVGDDAVVHLKPGEFLHLVPGRTTFDHGSLTDAAVAPDSGKQADPDNEPPVAAPVIRASNSAGGLLRCTACVLPHTYPGISFDDKGVCNFCRNHQHQKVHGRAALEQLLDKHRRNDGCYDCIVGLSGGRDSSYGLHLLKTEYGMNPVAYTYDWGLTTDQSRRNQAIMCSKLGVEHVLRAPDIAKKRRHVRKNINAWLERPRMGMVPLFMAGDKDFYQLGRDLKRDYEVDLTVFCSGSLLEQRQFFVGFCGVHDHVTYTARLYGYTPKVKAQLALYYLSQYLLNPRYINESFFDSVRSFFTSFLFKDDFLYLYEYIDWDEREIDRTLRDLYDWQSDSGYGRNQWRMGDGQTAFTNYIFHAVAGFSEFDNFRSNQIREGLIERDEALKLVEEDNQPKWGALEYFAYVIGINLDEVLARINNIPKLY +>UniRef90_A0A7X7D244 Cytochrome c domain-containing protein (Fragment) n=1 Tax=Acidimicrobiales bacterium TaxID=2201156 RepID=A0A7X7D244_9ACTN +MSDHESGGEPSVPEVPEPPATAATAAGSAERSQTRRRLRIASLTGVAVALAAVGAFAYKQIKPVVDAQRYATVTYEVPVAPQLTAASGETLLRIDPTRSSLTYEIEETFAGAKRSTATGSTAGIAGDLALNTARLEDSRVGQIVVNIEQFESDNNLRDARIRQDFLQSHRYPLATFDFEEIEGLSGQLEEGETYEFQMLGHVTVKERPAASTWDVTASYDDGVLTATATATAKLSRFDAGPISIAGLVQTEDEVLLTLELTAVEPSANDIATTVERAGRLEAGSQEAPSYEQVIEPILEQHCASCHNSGQFGAHTLTLDDAGDVQAVSDGLKTVTQTGYMPPWFASDEGVELAHKPTISDEEIAALAAWSDAGGPLDVDPETPLDPTKEAAELLPRQDQELRIEPYTGSL +>UniRef90_A0A1F5NZ36 50S ribosomal protein L28 n=2 Tax=Bacteria candidate phyla TaxID=1783234 RepID=A0A1F5NZ36_9BACT +MITPMKSCDVCGKGSKMVGHRIKLRGHYNPTNWTRKYPNLQKTVTPAGEKAVACVQCIKTFAKPARPVKARVLAKTTASAK +>UniRef90_A0A091DCM9 Spindlin-4 n=2 Tax=Fukomys damarensis TaxID=885580 RepID=A0A091DCM9_FUKDA +MSPPAVPPTGIDGVSAYLMKKRHTHRKQRRKPTFLTCRNIVGCRIQHGWKEGNEPVEQWKGTVLEQVSVKPTLYIIKYDGKDSVYGLELHRDKRVLALEILPERVPTPRIDSGLADSLIGKAVGHVFEGEHGTKDEWKGMVLARAPVMDTWFYITYEKDPVLYMYTLLDDYKDGDLRIIPDSSYYFPTAEREPGEVVDSLVGKQVEHAKDDGSKRTGIFIHQVVAKPSVYFIKFDDDIHIYVYGLVKTPKKAVVTAAAWAVPSTIHHWRSGPPTKIIRKLRKITKLLCLQRMTTAFQIRTRSIAFSPQTPKLLEEIVGETDQAVAKNWDQGTYEDNLEGLRVFDKEGKGKVMGTEPRSVLITLGEKMTEEEVETVLAGHKDSNG +>UniRef90_A0A4U3LSB8 aldehyde dehydrogenase (NAD(+)) n=8 Tax=Herbidospora TaxID=28443 RepID=A0A4U3LSB8_9ACTN +MTRQIVSVIGGKDEPSGTPYVSRNPARLKEVVAEVALADAATFAAACRNAAAAQHDWARVPAPVRGRVIASIGRLVETNAEALARLVSEEIGKPYAEALGEVREIVDTCDFFIGEGRRLYGQTVPSEMPDKNLFTFRTPVGVAAVITAGNFPVAVPSWYLVPALLCGNSVVWKPAEYAAASASALHRIFSAAGLPEGVFNVVFADGEQTFAGLETALGEGTVHKVGFTGSSEVGRKIGELCGRHLQSPCLELGGKNPMVVMPDADLTLATEGALFAGFGTAGQRCTSLGTVIVHESIHSDFVARFTAAAQSAHVGDPARKVLMGPLLDQKFADRYEEFLTWIGDHHTVTGPVGRITEANPCGHFLGDDPNEGLFYHPVIVDGVRPTDRLFLEETFGPIVGVTTFSTLDEAIELANLPGYGLSSSIYTRDPQSAFRFRAGVSAGMVSVNNSTSGAEAHLPFGGNGKSGNGSRQSGMWVLDQFTRWQAMNWDYSGRLQKAQMDVAEITPDLEFTL +>UniRef90_A0A250G1B9 site-specific DNA-methyltransferase (adenine-specific) n=4 Tax=Capnocytophaga TaxID=1016 RepID=A0A250G1B9_9FLAO +MNDLKMNIPAKQSTKNKFGQYFTPEVIANFMISLANISNESKILEPSCGEGVFLNLLKEKGYHNLSAFEIDKELSKDFDFVRYESFISAKIDEKFDLIIGNPPYIRWKNLEEELKQELLKNETWNKYFNSLCDYLYIFILKSIELLSEKGQLIFICPEYWMNTTHSVSLRNYMVQNGYFEEIYHFNETPIFDKVTVSTVIFKYVKNCVRKEKIQISKYHSNKKLNNEILENLKNKKTFKDTYHFDIDQFKLNERWILQPEKLKRKLEVLENNCFKKNQSTLLSLFDENKREFHTIGDFCDIGNGLVSGLDKAFQINGCLLTKEENQATINVIKAKNINPYIANNITKYIYIEEGLEESEFIKKYPNFYLHFQKYKSQLEKRYQYNRKINYWEWVFLRNISLFKKQEKRIFVPCKERISNKNYFRFALVDKDVFPTQDVTAIFRKPNTSESIEYILAYLNTPIVFDWLKANGIVKGNIVEFSEKPISSIPFRTIDWSNGKEVEIHNFISESIRNYLKRPNELLLNLINESFSNLLCVK +>UniRef90_A0A7J5EE96 Hemerythrin domain-containing protein n=1 Tax=Flavobacteriales bacterium TaxID=2021391 RepID=A0A7J5EE96_9FLAO +MTKKTPQKRATELVSLSHEHHHALVFCVRLKKASQTTPEITQNYVRYFWENHISSHFDNEEKYLLHLMPTAPLKEQFLSEHNEIRVLVNQLLTSAEEVMNNALLLSEKLNQHIRFEERILFPEIEKFASKKELQAVALQLNKSADCPVFFPEFWK +>UniRef90_UPI001175E0D4 diacylglycerol kinase zeta isoform X2 n=3 Tax=Euacanthomorphacea TaxID=123369 RepID=UPI001175E0D4 +MEQPEEDQPPQHDTSLQDGEEPFTSTSVASSSSSSSSNTELPSVPPAPRCLHTSRTFTGLRIFCRRKALSKSGLQHVAAQPGASTPSRTDPLVEPSGTIDWTDNAQFGDHIWFETSGSGDFCYVGEQYCIAKTLQKSVARRKCAGCKISVHTMCMEQLEKINFRCKPSFREPGSRAVRESNVVRHHWVHRRRQTGKCRQCGKGFQQKFSFHSKEIVAISCSWCKQAYHNKVTCFMLQQIEECCSLGAHAAVIVPPTWIIRVRRLQSSLKSSKKKKRTSLKCSKSSKKGTEIQDGRWKPFLVKPLPSQLMKPLLVFVNPKSGGNQGAKIIQSFMWYLNPRQVFDLTKGGPREGLELYAKVPNLRILACGGDGTVGWVLSVLDQLKLRPQPPVAILPLGTGNDLARTLNWGGGYTDEPVTKILSHVEDGNIVQLDRWNLQVEPNPEARPEERDEHQTDKLPIDVFNNYFSLGFDAHVTLGFHESREANPEKFNSRFRNKMFYAGTAFSDFLSGSSKDLAKHIKVVCDGTDLTAKVQEMKLQCLLFLNIPRYCAGTMPWGHPSEHHDFEPQRHDDGCIEVIGFTMTSLATLQVGGHGERLHQCKEVTLTTYKSIPMQVDGEPCKLAPSIIHISLRNQANMVQKAKRRISMPHLNDQQPVPEKLQIRVNRISMAAYEALHYDKDQLKEASTPLGVIIVPGDSDLETCRSHIERLQDNLDQVDTATGQDQDAMKAECLSSQKLSPKWCFLDCTTADRFYRIDRAQEHLNYVTEISQEELYILDPELVLKETVGTSPGMPDLVDSYGEECQDHQRQFAFPCSPSSPSSSTTPRVRDCQRKRISSDSSVAEALAQSSSKTTLCRRGAKILNVHRSNTTLADFRPMLSSTSATSSDTEKELELINCVKTEDLDRLMELHQQGADILLQDSRGCTLLHHAVEAGSKDIVKYLIGNVPTSHLDITEKETGETALHKAATSCQRTICHILVEAGASLMKTDLQGETPKQRAEKAEDQELAEYLENRQHYQMIQREDQETAV +>UniRef90_A0A396NWZ4 PBSX family phage terminase large subunit n=3 Tax=root TaxID=1 RepID=A0A396NWZ4_9FIRM +MSDLTKLIAPSFYGVHHDIKAGRHTHYWLKGGRGSTKSSFISVEIILGMMQDAAANALVLRKVAVNLKDSVYEQLLWAIEALGVENLWQAKLSPLQLSYLPTGQRILFRGADEPKKIKSTKFRKGYCKYIWYEEADEFAGMQEIRTINQSLMRGGSSFFVFYSYNPPKSQSNWVNRECLQPKANRLVHTSDYRRVPPAWLGDAFLQEAEYLKELNEKAYRHEYLGEVVGSGGAVFDNVTVEEITDAEIAAFDRIYNGVDWGFYPDPWAFNRMHYDAARRTLYIFGELTRHRTGNAETARLLRQYGVQDTDLITADSAEPKSVADYRCYGLFCRGAVKGPGSVDYSMKWLQALVRIVIDPVRCPDTAKEFTAYEYDRNKEGEVISGYPDRDNHHIDAVRYGTEPIWKRRGQ +>UniRef90_W6SGZ7 Putative MATE family multidrug efflux pumps n=2 Tax=Clostridium bornimense TaxID=1216932 RepID=W6SGZ7_9CLOT +MENTISESSFSKSIIRIALPITLQSMIRSSFSIIDQVMIGQLGSESIAGIGLGGKFASIYSVVLGAITATAAIMISQYMGQKNVKNVRRSFHVNLLVALFITVLFTFASLLFTEQIFSFYTKDSVTKELGKSYLQIYAWSFLPIALSGMAEAMLCCMEMAVFPLVASVSSLFVNTALNYILIFGKFGLPELGVKGAAIGSVVAQIISCLLTLVFLLWQLRKKKMNLSFDIRFNGNEYISYIKILTPLLICEFMWSLGENVYSAIYGNISTNDCAAMTMTSPIQGLMIGALCGLSQAAGIMVGKSLGNQNYEKAYNDSKKLMKYGLIVSIALSILLILLGKVYTGIYNVAAAVKQTAYALLVVFAIVSPVKVQNMILGGGIIKSGGKTNYIMWIDIIGTWGFGVPLGLLSAFVLKLPIIYVYFILSLEECVRLAISLILFKRKSWMQKI +>UniRef90_A0A8B8PLS0 segment polarity protein dishevelled homolog DVL-3-like n=1 Tax=Rhodamnia argentea TaxID=178133 RepID=A0A8B8PLS0_9MYRT +MTTDIDSNSYFTETEDDSMSCSNYSETTCDTFISQRRNRYYNERSNGRSPNHHHGNQDTYRHTNSRARNIDNISQSSSSTTTSASQSDATAVHCITVYLVLTNENFLGLHIYANTLEGRDEGIYVDGVTENSAVALDGRIEPGDKIMQVNDVSLEELDNEEAVKVLKDAVIKRGPLKLVVAKFVDNNKDPVNGIVDPKEAIHPIDTAAWVAHAQAITMPRISSEMANSATSSPSFGSNAQDTDCIRPASAGMSRLNTGLRLNKATTDIQEIIEHMRMPNIGLEIKDREWLKIHIPKAFLGSDLIKWLERNVYGFSSNRDAKKFASRLLKEGYIRDPISKKSFNSKSYYTLEA +>UniRef90_A0A6L9YVB8 Efflux transporter periplasmic adaptor subunit n=1 Tax=Moorena sp. SIO4A3 TaxID=2607836 RepID=A0A6L9YVB8_9CYAN +MPIASCLARSAITVAAAAEVEATKGVITAMASLQQSQASVRAEQANQARALASLAQAKADMKKAIAARNLAETEMKRYQRLWQQGVVSASDRDRAVTQFQDAQAAVEAAEAGIVSAQSQIRAAQASLEAARGELIAAQAQIDTAESAVSSAKAQLNKRNVILKDTVLRAPFDGIVAYLNIREGL +>UniRef90_UPI0020C880D2 PfkB family carbohydrate kinase n=1 Tax=Alsobacter sp. SYSU M60028 TaxID=2962936 RepID=UPI0020C880D2 +MDALFIGQTYIDVTFLADRMPTGDEKSVARDYAVSFGGNAVTAAFCCAKLGVVPDLLTSLADDWLGRMFLDMAAKYRISVHGRKVRESSLSFVLPNNGKRAIIRCRDDHYLHPFPILNIGNIRALHLDGHQGDAAMHYARVCRERGVLTSLDGGGLRENTHDLLGFIDVAICAERLAEQMNLSPEGLLAYLKERGVKIGGVTMGEKGMLWYDEQGVIRRQPPLAVPASAVIDTSGAGDVFHGAYVYSAMQRPDAPWREHFAFARAASTYKIQHLGNEEGLPSLADIERIVSEYREAA +>UniRef90_A0A4R7D5Q2 peptide-methionine (S)-S-oxide reductase n=1 Tax=Maribacter caenipelagi TaxID=1447781 RepID=A0A4R7D5Q2_9FLAO +MKNVNKVGFGGGCHWCTEAVFMSLNGVIKVEQGFIAPKEHLTSFSEAVIVDYDSNVIELKDLVAIHLDTHRSTENHSMRNKYRSGIYFFKQEDELVLKEIMTDVQQDFETPLITAIFPFGAFKSSEDRYHNYYFKDTEKPFCKTHISPKIKMLKEKYAKHVSAKVQ +>UniRef90_A0A2J6HZN0 tRNA dihydrouridine synthase DusB (Fragment) n=1 Tax=Marinilabiliales bacterium TaxID=2053303 RepID=A0A2J6HZN0_9BACT +MSGTDNLYLAPFQGITGAVFREVYTRYFVGVDKLFTPFFTGIYKKKNLTTRSDELDKIHHNKIPLVPQILSKDADEIMRFGEFCSEKGFTEINWNLGCPYPRVANKKRGSGMLPHPKMVAEILSRVQGHLPVQLSVKCRLGYHTPDEIFKLIPVFNQFDI +>UniRef90_A0A3G9IWN6 Uncharacterized protein n=1 Tax=Paenibacillus baekrokdamisoli TaxID=1712516 RepID=A0A3G9IWN6_9BACL +MAAEPMIFIFTGTSGSGRKTIAKQIGSELGLYHVLSCTTRVPRATEGQDRDYHYISHDEFVELERSGQLLQSTTIGKERYGIRHQELDRALANGKHAYLILNSEGASLFKNLFKDRVIRIFIYVDKQTVRERLERKGTPYDVVDRYLDQYTEEVVYRKQCEHTIENVELIRTLEQIRTAINSHL +>UniRef90_A0A661X5S4 Ion_trans_2 domain-containing protein n=1 Tax=Caldiserica bacterium TaxID=2052147 RepID=A0A661X5S4_9BACT +MRIYLFLFFMVGVSILWLWFLFFITRKLTGAKVIAVIIIALVGLVVFFGIKYYSFYLYDPKSFYIIPAHKLTYGGVRLFDFIYFSFVTITTLGYGDIIPLHTLTKILTILEVLMGVSFVGLILGRIVIKRES +>UniRef90_A0A2M7LC39 Copper chaperone PCu(A)C n=1 Tax=Sphingomonadales bacterium CG_4_10_14_3_um_filter_58_15 TaxID=1974093 RepID=A0A2M7LC39_9SPHN +MNKISIMLAASASLLLASCGQGDVLYADKAVVNLSPVEGNPSAGYMNLHGGRTDVALVGVTSDDVLRMEMHETVEKDGMASMNQLKEIPVPAGKTVKLEPGGKHLMIWGVGAGSQQRGLLKMTLIYSNDDRIEIDAVVKKVGEAAPAVE +>UniRef90_A0A6H2DTH0 YbhB/YbcL family Raf kinase inhibitor-like protein n=1 Tax=Mycoplasma sp. 1654_15 TaxID=2725994 RepID=A0A6H2DTH0_9MOLU +MIKIEIKDVKDGVLDTQFGNANLGGKYKNTVSFPIKWSKVKDAKSYAITLVDLEASGAMGIVFIHWIAANIKTNKLSWDFSFEHKDKIYQFENSITDKAENYLLKAFYTEHPNGVYYGPFPPDQDHNYEFRVYALNVDDIFGSHPQLKNNNLFYDDFINLIHNKVIDQGFTTFLYRAKTKINADYTLEKLDKSPKELNAPLKKEKQNFYAIEHPVDFQIFSNSLEKINDNTFLLDINNLMSLANLGYFHGKELELQWNKVDSVQEYVILLYSIAETKTLGVGLVEWVKVGIRSKDFPNNVISSLNSKESVKISNTFSSISLFNIAKLADLDETAFDYIKNGYGLCYIPYLTNNQGNYILNVYGLNQEIDWEQYQKELNRELNLADVYRKIKSKVIAKSEKIIKISPTLI +>UniRef90_X1LS14 Ribosome-binding factor A (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=X1LS14_9ZZZZ +ASIKKLKEEKTVISFFLIKSFLNKKTFAFLNPNLKRSIRIKIADRLPVKIKISFLSK +>UniRef90_UPI0011132975 hypothetical protein n=1 Tax=Enterobacter kobei TaxID=208224 RepID=UPI0011132975 +MISYKVEFPTQKTVGFKVNGYSSAEGLDCKMVEAIGGDVKVQLDQKTMLTVPYREDITADFTLEGYKQRAETYAKTMIDQIVNAAQHRAADDLIQEVTNAVVSSELFSQLS +>UniRef90_UPI0004D08E5E LOW QUALITY PROTEIN: U7 snRNA-associated Sm-like protein LSm11 n=1 Tax=Galeopterus variegatus TaxID=482537 RepID=UPI0004D08E5E +NVLTRMPLHEGSPLGELHRCIREGVKVNVHIRTFKGLRGVCTGFLVAFDKFWNMVIKPFSRAWGTSXRLNLLYLFDRLKLQDSSKKEADSRSAVEDSTLSRYSQTSTWKVASVWGRGDTDRGSRRRSRSVPSSLQASAREESRSEMSGRTTRTEGSSAGGTFSRATTLSRGQSCKKKRKPKVDYQQVFTRHINQIFIRGENVLLVHLAQ +>UniRef90_A0A8J2R764 THAP-type domain-containing protein n=1 Tax=Daphnia galeata TaxID=27404 RepID=A0A8J2R764_9CRUS +MVRPCCICGIKKNSEAATKGIRFFKFPSTKSESHSNWIKTIRHHSTKISRPFTPRRNSIVCSSHFEDSCFNRSYRKLQLKQGSIPTIFNFDDSSKKVFSTACDVTSKADEEKEGNTEGNVSSSSLRDYASDGSSSLSPPVLLPLQDVNSDFEETIEDPPDLELYHINHDYDESTGLTSFADLDMIKMDHIGSVADILGPDPYMQDESIVMDERPDSSVGEERDEVDGQTILSFTSAEEMHEFAHREASSRLTKTNDFRQIKGWRNKFQQLTPSLSPSPCSSPVSLPARSAISASENSKSPLPTHFSRLCQNPSTSFEMKNLKENGASCEKNSPNLDTQQRPTSPVEEGCIVPSEETAETTEEMANSSLESTLPLPDLIAHSEETKETFQEERKEPLEEGMKKSLEDERKKPLEEETKEPLEEETSELLEETDELMEETAEPSDESTEAFPELGIDGLISYDYAKFAASAACFPFDEKRGKTFKKADNSLTASKKVSPRPKNSATRTRINKQSAVQHVQILPIVDIDEIPSGDMTGFDDSMEEVVVQEEEYVEVYDVPGNLVLPTADCGQLFCRLGCICDILIKTKNRTKVSVEHCGLPECMLQCVCGYQKGKPSSRKCFASLLKGNESFYSKINWSGERRRRERRVPERFSEFHLGNESSSSVSNRSSEEFKQVESKSKNNSHHRAGNSHSSRSSSPFKNASPPQSHSVSPQSVQDSLPCPPKNRKWEPFRVKVCADEIKLLRWDSFVSLSKVYIAPDHDIFCMEHTMYGCPCIETDRRIIRIPSEYVPLPVIDTTKNTENKSPTSSAKKVKAKNVTSSPSAKNVAKKHTNPNMRLAPKSKVMEENAAPAAPQEPVAKTSSLSKMRKILSDERFQLQKLMTEEKTRAFDEEVDLTVRQGQTVQLVAWIRFHRIYHAGRIHIRFLSRRAGPVILVMRPTEIVAADITCDIQDMKGNTNSPEIVKELLDPCISPEETSRYAFLLCDGVKWELVGCLSLKASNDAPPPTSTVPPASLDTPTLFPSPPSPQHSISTTEVPSVVLDEQNAQQKRVAAQMKFLARCPPRTRDEVSPDPSAIQRSSALELKRMQLEERLSVINSKLTLQPPKQSVSFKQFKNKSRASMAPILQPIIPTVSVVETPVIVEELPPSSLSAADPSIQAPRPKTVRRAGKRKPDMTYLIPDQCILPDDPEEMPVVSLTEELPEAQPKKNSQNLPDSVVSQEGKDPNQTLYPAAEKLAMFSRLIINSRNDSMSGGNFSNFEDSSMTASKLSRPAKRPPPKLERIPTPPLPVAVPLPLIAPESTVPNIPPSEMTFIKLQPIGSSLPNGISGQNTVRRIRILTPNSTVNGGSGNSLLPVLTSRNGWEPNLIQQQRLHWSSKGVKPPVNAKITPTPVISDSLITVLPVPTSLGTGQNVSTLTSSCATNASDIVQFIGPVPNQDGKTPAITSDLQVPDWSTQLLMKANAVASTSISLAGVKLLQQKQRGKSTSPPVVNAEPSKETESTSCVFPKIFTAEVITVKSPPGNASQRLKIIYEAMVGQHRDFCPSRASMILPLHNVDDQWCIVAINQVPDSGFQVPGVTVFIPRDMLGRAASAAMERKARVSFPLHFKLKNDGSALKSGFEVYGTPQLPHHVFVGPFPFNYIESCTPLSMMNNNVCMFVIKLTKPIPVSVSDCAKEVQQLKPTEQTEEVIQSTETKSTVNTPEPISETSPSTIEEVSVTSTPVSSNKSSSEADHTASSEATEVSESTLLNTKDSESAEIQIVDEKINSNPKSLSQLPGSSLLRQPIQSESVKRTKKPIRMFVARTPGLPPVNIKLFSENSVVVDHPFLSGEKKMFTSLEKAKTWLQTLAIRNCNVEVKKSKTSNSAEDSWANSDFTEDEEIDVCGQTQGESQEQEETVDSASTTSRSPKRIRRLTEKARILAASKSKSSRNSGSTTSSFKRSQDKLPLPRKVGSSRKNSIQRMLHIQKEQERRGLLGKLIRDLDALCASSSGTRAKIVVLKNATILVGQLEQQAKEMEALYQNLKEQRTTLLTLREQIFNKLPPNASQIFSCFMESVPLPSRHLAMIENNRIKRYRPQVPDRQSQNRVAVIVPNNALLSESVDVAQGGYVLTGVES +>UniRef90_R8UAD6 HTH cro/C1-type domain-containing protein n=1 Tax=Bacillus cereus VD184 TaxID=1053242 RepID=R8UAD6_BACCE +MEIKKFIALTLFDLRNDEGYNRENFAELAGISLNAYASIENGKSLIKIDTLHTLLSELSLPLSVFFRRVEAKIESSK +>UniRef90_UPI0021CAFDB3 AAA family ATPase n=1 Tax=Acidiferrimicrobium sp. IK TaxID=2871700 RepID=UPI0021CAFDB3 +MAIANQKGGVGKTTTAVNLGAGLAELGYRVLVVDLDPQGNASTGLGVNARNLEASVYDVILHDVPMEDVIEPTTLRNLFVVPATIDLAGAEIELVPAFSRELRLRRAVESVADDYDFVIIDCPPSLGLLTVNGLAAASEVVVPIQCEYYALEGLGQLLRNVNLVQTNLNPRLEVSTIVLTMYDARTRLAEQVVGEVRQHFGDRVCRNVVPRTVRLSEAPSFGQPIIVFDPSSRGAIAYRELAKEVSGGAAQRVG +>UniRef90_A0A176TEJ0 Cytochrome-c peroxidase n=1 Tax=Polaribacter atrinae TaxID=1333662 RepID=A0A176TEJ0_9FLAO +MKKLILSFLIIQLISSCTKEDVYEPFIFYNPEIEVAIPVNFPELNNSFYTNKPTKYGVKLGEKLFFDKKLSANNTISCSSCHIQANAFSDGISEAIGIYGRVGFRNTPPVQNMAFMQFYNWDGNKQALESQPLVPIITHEEMDSSILEVISKLETEEEYLHLFYNAFGDSKITGDRIYNSIAQYEYTLISANSKYDKVKRNEGETFTENEILGYKTFQDKCATCHSTELFTDQSFRNIGFPKNPNTDEAGRARVTGKTEDISRFRVPSLRNIEYTAPYGSFGQFATLKEVLDYLDNGVLEADNLDSVLKENNNQIPITEEEKDNLILFLKTLSDTDFIGQ +>UniRef90_A0A5C6S3D4 SDR family oxidoreductase n=1 Tax=Phaeodactylibacter luteus TaxID=1564516 RepID=A0A5C6S3D4_9BACT +MDFTGKRVLITGGSRGIGRAAAVAFARAGARVAINFHSNKEAAEEAIKAMPGNGHFAVRADISKPDAVFRMVGAVAEELGGIDILVNNAGVFFPHPVAQSDYAAWQESWSQTIGINLMGAAHTSYCVARQMMGQGMPGKILFVSSRGAFRGEPEHTAYGASKAGMNALAQSLAQELAPYHIFVGAVAPGFVETDMAAHVLDGEGGAAVKAQSPTGRVARPEEIAHCILFLATEGAAYATGCILDVNGASYLR +>UniRef90_A0A1V6YXR8 Abhydrolase_3 domain-containing protein n=4 Tax=Penicillium TaxID=5073 RepID=A0A1V6YXR8_PENNA +MSSIYAPAWDEFVQEIGPLLMTGSTVEDLYKDSEVNIQKIISKYEIPPPDNSVKTEDIKLNYAWIRVFTPPSATGNEPVGLFMHGGGWIMGSVDHEDAACRHITKSTGMKVVSIGYRLAPKFKFPRGLNDCVEATLWTLKHFSLSSVVLMGGSAGANLAFGVALRLIDAGVGDKVRGIVALVPCTVHPDAVPEDKKEHFTAYQENAVHTVNTLAAMKCFLDSYAPPPDDKYFSVLLHPRLQDLKKVYIVECGTDTLRDDARLMKGALEEAGVPIMYDDYPGYPHYFWSYPSPALAKASEEFHTNMFRAIKWINME +>UniRef90_A0A0M2PUS6 Imidazoleglycerol-phosphate dehydratase n=2 Tax=Prochlorothrix hollandica TaxID=1223 RepID=A0A0M2PUS6_PROHO +MTAQGIAVFDIDGVVRDVGQSYRRAIADTVEQFTGGAFRPTLDQIDGLKAEGIWNNDWLGSQELIYRYYEGQGQSRESISLTYDEVVDYFQRQYRGANLEDPSQWDGYINQEPLLMGAPYLQQLAAAGIAWGFFSGATRGSADYVLQRRIGLQFPPLVAMGEAPDKPDPLGLLKVVEQLTHSLGLSPTLPVLYAGDTVADLYTIREAQSQAPDRPWWAVGVLPPHVQEPGPRRQAYEQRLWDAGAHRVVSRVTDLTPGAIGQLFREGA +>UniRef90_A0A1Y4NII1 Topoisomerase n=2 Tax=Lachnoclostridium sp. An169 TaxID=1965569 RepID=A0A1Y4NII1_9FIRM +MPGVTKEQIQQARETDLFAYLQFHEPTVLKRDGPNYRHREHDSLVYVTGKKYWYWNSRGRSINALDYLIEIRGYDLVDAVNQLLGTDTRSVSIPKSSRAVTDQERNVAGEQRKQGNPSAESFSLPWARRCATFAVSYLRRRGISSEVILKCFRLGIFYEARYKGEAVCVFVGKDDEKKARFACMRSIMGKLKKDVYGSDKRYSFCYPPEHPGSRQVAVFEAPIDALSHATLQEVEGWKWDGYRLSLGGTSGVALFSFLERHPEILRVTLYMDNDLAGLVNARKIRSALHKDPMFKHIRVGINPPRTGKDYNEKLLCRLQQIKEDPDVSRQKEAAISI +>UniRef90_UPI001AE5D1C9 PTS transporter subunit EIIC n=1 Tax=Vagococcus allomyrinae TaxID=2794353 RepID=UPI001AE5D1C9 +MNAFITLVNKRVTPFATKLSRNIWIASLQDAIMSTLPLTLVGSVISVLSILNSYFPKFPDLSPISSFSFGIIGLAISFVLPVYILQRKKMDNKKNLAGIANVGLYLMLVLAQINENGELVFAGDSFGSGGMFLGILSGYFTAIIFILLAKFTFFKDSEAIPDYIVSSFDSFMPILIILTIAYLVVFTFNINFFEILTKILLPLTNFGQSYLGLLAFVFVTTILYSFGISPWLLYGLFYPIQLAGIAENTQLISQGLAATNINTGEVVQGLITLGGMGTTLPLAFMLIKSKSARLKAIGKAGIVPSIFNINEPIVFGAPIMLNPLLMIPFWLNSFINPTIVYFALKSGLVAIPTKVFNLWFIPAPIQGYLVSGDWKGILLSLVVLAVATAIWYPFWKAYDLEQLELEGEAK +>UniRef90_A0A1X9YSF4 Conjugal transfer protein TraG n=1 Tax=Pontibacter actiniarum TaxID=323450 RepID=A0A1X9YSF4_9BACT +MQTGENAQALRKIIDMTRLISLTLLILHAYVHLYRAFAAWQLTWPLLDRLLDRVLASGLLDGFHRSKFLALGFLAISLLGTRGRPSEALRPRTGWACLAAGLLLYTASSLFLYLPWPVTKAALGYLALLTTGYLLMLSGGTLLARVVRLRLQRPDIFNRANEAFPQEERLLENAYSVNLPARYTLRGKLRRSWINIINPFRGLLVLGTPGAGKSYFVIRHVITQHIRKGFTMFVYDFKFDDLSRIAYNTWLRQRPHDPVPPAFYTINFDDLSRSHRCNPLEPATMRDITDAAEAARTILLGLNREWIRRQGDFFVESPINFLTAVIWYLRCYRDGEFCTLPHVIELMQLDYDSLFTCLRTEKEIEVLINPFVNAYLHDVMEQLEGQIAAAKVAMARLSSPQLYYVLSGNDFTLDINNPDAPKIVCMGNNPQKIQVYGAVLSLYVTRLVKQVNQKDKRPSSLIFDEFPTLYLSSMDSLIATARSNRVATCLGLQDLSQLRKDYGREQAEVIAGIVGNVVSGQVTGDTAKQLSERIGRILQDRASVSINSSDTSVSRSTQLEAALPPSRIAGLSSGEFVGLVADDPDCRIERKAFHSEILNDHAALQREQESYLPLPQVRQLDQAVVQKNYRQIKQDMEELVSSEMERLLQDPSLRHLVIRK +>UniRef90_A0A4U1HMG8 Asparagine synthase (Glutamine-hydrolyzing) n=1 Tax=Polyangium aurulentum TaxID=2567896 RepID=A0A4U1HMG8_9DELT +MCGIFGYVTKKRAVGGPRALGAALRALRHRGPDDEASIELTSGDSRCGLAHTRLAIIDLSPAGRQPMSTADGRFTLVYNGEVYNHPELRKQLEALGVSFRGTSDTEVLLEAFARWGEAAIPRFRGMFALGIWDADRRSLLLARDHMGIKPLYFTAGPDGLAFASEVRALVAAGFAEPRPSRRAIASYLATGSVAEPDTIFEGVSPLPPGTILEYTDAGPRLSPYWELPLETAPPADRASAIEDVRATLADAIRLRLVADVPLGVFLSGGMDSTVIASFAARASSRPLNTFTVTFDEEAYSEERHAAEVARRIGSEHHQVRLSGGETMKSLPAAIDALDQPSVDGFNTYFVSKAARAAGLKVALSGLGGDEVFAGYASFSRFGPLLAAGRAGRRMMPLFDRAARALGKPFGALPQRGRKLLDALRAGGSPEKTYGVMRSMFDLGQISALLSPELAHEAASLPLNVPERLEPLVERGAMDPENAYSALEISNYLRNTLLRDTDVMSMSHALEVRVPLVDHVLVERVIRLPGDMKVGGGLNKPLLAAAAGDLPESVLRRPKMGFCLPFAEWMKGPLRGWAEEALLGEATRRLGFLNADAVARLWRAFLEGDRRVSASRVFCLITLAAYFGSHEALF +>UniRef90_A0A6C0E3C4 Methyltransferase n=1 Tax=viral metagenome TaxID=1070528 RepID=A0A6C0E3C4_9ZZZZ +MQFWKNCLQFFNLVKSTEQQGVSETEASHAKAKAEEPSKEPEVEDEKVKDVVAQESPIEPEVDHVEAEAEAEAEEALVEPEVAHVESEAEAEEALVEPEVDHVESEAEAEEALVEPEVAHVESEAEAEEALVELEVAHVESEAEAEEALVELEVAHVESEAEAEEALVEPEVAHVESEAEAEEALVEPEVAHVESEAEAEEALVEPEIAHELELNTYFNNDPFEYFRSEHTQEKDLLDSDSE +>UniRef90_A0A4R3GCS8 Conjugative transfer protein TraD n=2 Tax=unclassified Rhizobium TaxID=2613769 RepID=A0A4R3GCS8_9HYPH +MARTSTSDARKKDTREKIELGGLIVKAGLRYEKRTLLLGALVELKQRLGDDAGERLRLTLIGAKAFGDDA +>UniRef90_A0A150G0L4 Myb-like DNA-binding domain containing protein n=1 Tax=Gonium pectorale TaxID=33097 RepID=A0A150G0L4_GONPE +MARKKKCHDAKAQKKHSVKGTNTAWSDGEKLILAQAVSEVMPGAANADNIDWPVVARAVPGRTAKQCREKWLSDLRPGIKKGAFTLKEECVLIMAHSKFGNMWAKIAKYLPARSANAIKNCWSSRGRAKELQKVHTLLYLYILLVDVASKEPQEAGRRGKRRREGEDGAAAADNADAVKKAKEEYRELAAAHKLVPLKAFLVDIDHYLSDADGTSPAMRDPRPEIWIMGRGKSRVPVAGEVDRNRCLPLGHDDDDDDDDDDDEQTTTNGNGSGNDDGQRHEMPCDERAGGRPRAMPPVPSVGPGGGGGGGGNGDGGGNGDSCGAAMAAWNASEGERKAEAVDEGSAARGKVGRKGSAGSTARDGSHSFRTAATSNASAGAEQAVPLLEPPSGAYHPCVGGAIGTGDSGALGQQRTESPQHPAPFVFASYGMPGPLREALDAAERTARPQGPQGPQGPQGPGDASFEACLRTLGQRLAERDEQLGRRGGEGGDGGGGGGGQEGDWLCPLDAALRGNAREGGRGRESTPGRDLRRGRRASWSGGAFPSPSPPSFWDTREIDAHFAAELGHPLPGSGFGEADHHRDTPQQQCRSDCACGFHATGCPAAQAAAATQAWAPAPAPVPGWGRVSAGAFHPQQLAPALQNQLIQTPPATAAPSYGSVLPFHSLPGLTAPWEPHHQPPPPLRPATSAPAPFALAALSEPGLVPQQHYGLHGGMTAAPGVAHQAGGGVAGAGAGGAYAAAAFALAPPQPPQYMMLPPRPVWQHGPRLEVDAIRRARFHAEALM +>UniRef90_A0A7X9ZMZ4 Endolytic murein transglycosylase n=2 Tax=Sphingomonas sp. G-3-2-10 TaxID=2728838 RepID=A0A7X9ZMZ4_9SPHN +MIVLILVALAAGFGVLQIWAGPGPSRANVSVIIPEGASLTRAANELEKAGAIRSARVFVVLSQVFGGSEPIKAGEYRIPAGLRQSDVLAMLQGGKTLQRMVTVTPGTPSILVYEALMKAPHLTGEIEIPAEGSVLPDSYAYNRGDTRQMVLDRMQKAMVNYLAKAWEKRAPGIAVNNPRDALILASIVEKETGKAEERGLVAGVYSNRLKRNMKLQADPTIIYPITRGKALGRRILRSEIDAVNDYNTYSMTGLPKGPIANPSRASIDAVLNPAQTNAVFFVADGTGGHVFNETYEQHDAAVQKWREIRRQRGEIQ +>UniRef90_X5MP23 NADH dehydrogenase n=1 Tax=Candidatus Phaeomarinobacter ectocarpi TaxID=1458461 RepID=X5MP23_9HYPH +MGIRVSDVAFVRFQAPDLDQMEAFLSDFGLVRAARTEDALYMRGAGSDPFVHVTHKGEPGFAGIAFLADSVADLEVLAAMEGASPVEDITEPGGGKRVRFVDPNGHKVEVVADRELVPTLPVRRNTPGNEATHSQRVDAALRSGEGPAQVMRLGHCVLNVIDFRQSEAWYKERFGLVTSDEIEIEKDMSIGAFMRCDQGDKPVDHHTLFLLGTGAAGFNHAAFEVANVDDLMAGNSHLQAKGYTHEWGVGRHFLGSQIFDYWRDPWGHTVEHWTDGDLFTSDTPPNMQGIDTLLGVQWGPPPPPTLGT +>UniRef90_A0A259M653 DUF3298 domain-containing protein (Fragment) n=1 Tax=Hyphomonas sp. 34-62-18 TaxID=1970392 RepID=A0A259M653_9PROT +MNHPLNRRVAPLAAVFLLGLIGACGEPPKPDASDTDHGEATVEDYVRGPHNGRLLEDGAFALEMTIFETGVPPQYRIYPYKDGAPLDPSSVDLTVKLHRLG +>UniRef90_A0A060AF13 Flagellar FliJ protein n=1 Tax=Staphylococcus phage 6ec TaxID=1500386 RepID=A0A060AF13_9CAUD +MNYIERIYSELVDLKGTVNILQIEMKEINSKFEDILIKIRETEFNVSQSVEMYKRLQEFLQERRLLRAQIEEMEVQYEILGGDEQLKKYEKALDFKEVKKDREFKKDKKYYRDKKYYNNFREDLKEKAIDLYHIV +>UniRef90_UPI001F0D41BD helicase-associated domain-containing protein n=1 Tax=Arthrobacter silviterrae TaxID=2026658 RepID=UPI001F0D41BD +MAHFGWHHPRPARRVAKALAGFLSEAELLGLSGAGALTDHGRAIVHRDWDGALALVAAALPEPVEHLLLQGDLTAVAPGFLAPELAAELALLADPEGRGAAGVYRFSAASIQRAFSAGRTAEGILSFLAQHSATPVPQPLEYLLRDAQSRHGRFTVGQAGTYLTAEDAAALAELLAGGAAAALELTAISPTAAVSPRSAAEVVSALRAAGHSPGIAPGTPLAAGSDDGGTRRGTTSGAPRSRDRAAQSGPEMLAPHEVARLLAEEADETFEGGAGPDADSGAATAAVVLASAAEAAAAAQLGLLRSRPAWTPGTGESAPALALEQLHAAVRGKQAVWLTAVGSDGHPERRQLFPVSVAGGRVRVFDPGSGRERAIGIHRVMGVEIIAKGKGAP +>UniRef90_A0A6G0IZR0 Cilia- and flagella-associated protein 300 n=1 Tax=Larimichthys crocea TaxID=215358 RepID=A0A6G0IZR0_LARCR +MAGDESDVERAFRLRYGRHRDNTAQMSHVLRYITDGGVKEHFSQFGDVSGDKLVKFGSFWRTEPAPISAAKIRECQHFFSHLSGLAAFFTKSAKRTKLLDEICHAKTACLVCTVYERREELVELFEFVVDSHNDFDDDAVHSMALLTGFEFCFLLATFNSVFSFSDMLFGILQNKEYDMQFCLSSIDDFCSTTEREKVKFDSINEDTVREVGGPCGHRAQRVGDVRAVYQQVYCAFEIVL +>UniRef90_A0A2R6KP62 Cation transporter n=2 Tax=unclassified Halobacteriales TaxID=38063 RepID=A0A2R6KP62_9EURY +MSRASSLRRVGALVLVANIGLFAAKAVVWQTTGSLAVGSEAANSLADSAYSAVVLAGLYLTTQPADADHPHGHERIEPFVSLVVAGGIFLAGGAVAYNAITTVLSGSVTVSRGPTAAVVLAVGGVVKFGLYRYVLGVATDEQSPALRATALDNRNDILAAGAALAGVLGAQVGVPVLDPIAALAVSVAIGYTGVEVVRDNLSYLVGGAPPEELRAEILSRALDHPDVAGAHDVVAHYVGPEVDVSLHIEIEGATTVREAHEIETAVVRAVGETPEVDDVFVHVDPKELDEWKTDSEVDRLAVFEES +>UniRef90_A0A6L5DZ66 CHAT domain-containing protein n=2 Tax=Marinifilum sp. N1E240 TaxID=2608082 RepID=A0A6L5DZ66_9BACT +MKNILKKILLFSLLLVFLSGENLNLAHNSILFSVSEVKTNPDSLLVQQFDRAFQFLRKGDFQYAEQSFRNATNTIENGIVNNKILVYRTYVNFGVLLGRIGKSQEALKYYNLSEQFTIDNFGVNSQKLVPLYVNMGNIFAEAEDLFKAQTYYEKALNLIGNAKSRFLPKIHNNLGTVYYKKRQYNLALQSYKESLRLKELAKTGDKFSSLNGIANCYKRSGNFNEAELFYSKSIYEIKRIGGDNSYQLGDVYLNYAVFQNESKNYNKVLPYLTLAYKVYSSNYGLKHPDTAHCLFNFGDWYHDTNKKYDIALEYYQKAIVSELDNFQDSSIYINPNLNEIEPQLSILQILKGKARALKSLYSTSNKISDLDFGLQTYDLCLNIIDKIRIGYQDEESKFYLSKNEKDTYTVAIEIAVELFQLTGDVSYKEKAFKYAERSKAASLMSSLNDVNAKNFGGIPQELQDEEIQLRKDIASYREKIYEERKKASPDRKKISDWQGVLFDLNEKYNQMVLRFEEDYPEYYALKYDNHTIDIEELQSRLEDNDVLIEYSISDSALFTFTITSSSFEVTRQNLDKDSFESHLEEVRNCLKTNDFAEKSADYYKRYTKSAFHLYKELFQNQPNNLDNKNLMIVPDGKMAYIPFGVLLKNEADSTRMNYRGLDYLIKSNTITYHNSATLGFSIESAGFSFSSNKSVLAFAPSYEDVNDSILYAERAYRDKLYPLPGVKEEVNNISKVIPGDLYVDDFATERNFKDHASDYDVLHLAMHTIIDDENPMYSKLVFTQVEDTTQDGLLNTHEIYNMNFNARMVVLSACNTGDGKLMKGEGVMSLARGFFYAGCPSIIMTLWTVEDQTGSNLMTNFYNFLSQGLKKDEALRQAKLEYLKTADPLKSHPYFWSGYVTMGDVEPLYDFNLKSNIAYMAFGSLGLIFLLIAFRRFRAKKMTA +>UniRef90_A0A1H7CBQ7 Negative transcriptional regulator, PaiB family n=3 Tax=Paraburkholderia TaxID=1822464 RepID=A0A1H7CBQ7_9BURK +MYIPAHFEENRLEALHRLIADYPLGSLVTVGPNGLDANHVPFEFDAGKGPHGTLRAHVARANPVWQEVAERPDALVIFQGPSAYISPTWYPSKHETHRQVPTYNYMVVHAHGPIVVRDDEAFVRGLVARLTRKMEAGEPVPWKMGDAPADYISQMLGAIVGIEIELTKLTGKWKLSQNKASADRRGAADALNERDSDEQRAVADAMLAAPPNLD +>UniRef90_A0A1R3VCA4 MOSC domain containing protein n=10 Tax=Mesorhizobium TaxID=68287 RepID=A0A1R3VCA4_9HYPH +MQALTEIGTVSELWRYPASSLAGERRDVISVGSETIDGDRLFGLVDASDGEIARPDREAKWHKVPLIRARLSQARQLEIATPQGDWLPAPGAECDGAVSAFLGFAASIRPFRQKDAPDYAGLLTAERYRKAPIHLLTTASLARLKALHPEGVADPRRFRPNIVVDVAAIEGSFPETEWIGRKLAIGDLLLTISEPCRRCGFTIIAQDGFDHDAAILRNLVRHNAHNFGVYCTVDRPASVGVGEMMRLV +>UniRef90_A0A4C1WBZ0 Uncharacterized protein n=1 Tax=Eumeta variegata TaxID=151549 RepID=A0A4C1WBZ0_EUMVA +MPATFRTANPGWVHAATPTRKEDADMTNARVPRDLMLFSRSTSLAAGLRRFSQRLKLSPTNTARAPPAGMSTGDNPWRPPTDFDAKAAFDLIEFDHLSYVRLTHCPPLLSSDL +>UniRef90_A0A4Y9ZGX7 Fip1 domain-containing protein (Fragment) n=1 Tax=Hericium alpestre TaxID=135208 RepID=A0A4Y9ZGX7_9AGAM +MRGWFVHSFLAVAELRVEPGRGSNGTASEIETHVGEIVRRAKRASDSRLSFRCRFDQHTLEGEGSPGQLPTTMDDDDFLYGGSAEPEPVPTTPAPEPKPVVAAIEAETIVPDIPFGKREPSSGPITPLTPLDVKDESRNGSVIPPDIGVVVQEAAVMEEVVQVDAKMETEEQEQEEEEEEVEIEEESEDDIEFIMEPPTRSLDLRPSRPVQPRVPSATATFTPTKAPLAAGPSLTTEYTPRERGAPPKPAVTXPSAPPSVSVPPSLPPGPSAEPMQPEQPKIEEGPEPSTLPLVTAPPSHPQINPDIPGTLDGRSILDIDLANMSEKLWRRPGADISDWFNYGFDELSWEAYCYRRRELSDVSSMLKTNVL +>UniRef90_A0A515EVL7 DUF502 domain-containing protein n=2 Tax=Rhodoferax TaxID=28065 RepID=A0A515EVL7_9BURK +MVWLPLAITLWVLLWLVGLLDAVFASFLNGLSAVTPESLGPRLERLHAIPGLGVVLVFSAMLVTGALVSNVAGRWWVKQWDRLFTNIPIVKSIYNSVKKVSDTLFSSNGNAFRTALLVQYPRQGSWTVAFQTGSPSGEVASHLGADFVSVYVPTTPNPTSGFFLMLPKADVIELDMSVDEALTYVISMGSVAPGAQASKIPVSQ +>UniRef90_I9LJW7 Phage_Mu_F domain-containing protein n=1 Tax=Pelosinus fermentans B4 TaxID=1149862 RepID=I9LJW7_9FIRM +MDADSKAIIVQFLATVDKILLDGDFTTSKMLDLNKAILTLKNDYTKLIREGTVKATESAKKLKGVEFKAYKAEVQRLLSAQEVAAAEQVFILGKITAEFGGGLDAKVIDSVWNKVWPDALNVDDRIKRLSAKVKEFTERTIKQGISEGNSAANISRILREHFVIEGLEGKAAFRLAAHTTNMVYQATQAEISIQATFVMGIRIVRGMFGKISPKCPICYEHGGDSYKEYFKSYFGGRDIDLWVLANMPPYHSNCSCGIEQITEDAITFIQRARTEYALKNA +>UniRef90_A0A7R9TH37 IPPc domain-containing protein (Fragment) n=1 Tax=Micromonas pusilla TaxID=38833 RepID=A0A7R9TH37_MICPS +MAMGAGARASSIEDAEGPHPLTKAWAGRIKNAKVRAAFMDEPIAGYTSARDLKVLCGTWNTNGKSPPADLDVSRWLDASSRPDVVVVGFQEIVPLTAGKVLAVEDDKATREWEAIIERALNDAATTATTTAAAAAAPKNAAAFASDTSWQRAGQPPRTQTPQSAAGWTSFDSPGVSGGGGGWTSFDAPAFPGAAAAAAGRDRYIRLASKQLVGVYITVYVNASTAEHTRDVRVHTVSTGFNIGLNLGGFKTPDITLGNKGGAAVWMRVYSTPIVFICSHLSAGSKEGDAEKRSADFGEIVTKLSFPAPPSASSDGVAEKPAGVADAHAAVWLGDLNYRLNLPDDRVRAAIASGNCASLLGSDQLLLERAARKAFVGWIEAPVTFPPTYKYRPGTNTYSGAGDAGAEDENGGGGENGDAGGARVKVSAKEEKKKRTPAWCDRILWRGRDIRQNSYARAELTQSDHKPVLAEFTIVARELQPERLQETLDSLRRRLDAEEAASQPRCTLENPQADFGDLKHGETKAISFRLVNSGDVPARWGFVPGGA +>UniRef90_A0A2W4M120 Oxidoreductase n=1 Tax=Proteobacteria bacterium TaxID=1977087 RepID=A0A2W4M120_9PROT +MRLAPRVGFLGVGWIGSARLASLAASRTAHIAAVCDPSPEARARAHEVVPEASLFEHYEELLEVPLDGVVIATPSGLHARQCVAAFERGLAVFCQKPLATSAAEVQRVIGAARASDRLLRVDFCYRHTRALSVARELVASGELGPIHSVELVFHNAYGPEKAWALDPDLAGGGCLMDLGVHLVDAALWVLGSPRVERAVGRRFREGQRLAPHSSTLEDFAVGLLDLDGGVSASLACSWWSSFGDHARIRAEFLGARGGVVVENVAGSFYDFACDRLRNATRERLVSPPDDWGGRALVSWVAELRASPKYRPEPELLEVARSVDLLLGRDPTAASASEPERVDAAGVV +>UniRef90_UPI00140DB29E hypothetical protein n=1 Tax=Psychroflexus maritimus TaxID=2714865 RepID=UPI00140DB29E +MKNLSYLLFLFPVLCFSQIDLSPILTSGLEDANKFTSSYLEPGLDAVAFNLSNGWYSSAKAKGLGSFEIAIIGNASFVSEDQQSFELNTNEYDFLEFSDGSSAKNVANVLGENDPSITALSVYTDEFGNEQTVSFELPDGLSGSGLNFVPTAALQANVGLVFGFEAVVRALPEVKSENNKFRFYGFGLKNEFTKWIPGTKALPISIAGMINYSKFDARFALEETVLINGNDQRIDLGLETWAIDLIVSTRLPVINFYAGGGYVMANSTYGLNGTYQINDGPNSGETIVDPISNSSSLNGYRATLGTRLSLGIFKLFADYSFQEFSSVSVGMGFGI +>UniRef90_A0A0S4HPD3 SLT_4 domain-containing protein n=5 Tax=Pseudomonadaceae TaxID=135621 RepID=A0A0S4HPD3_9PSED +MKQWRTWLPVLMLLTLTGCATPPPKDQNNLCNIYREYPDWYEDSLKMQEKWGTPQHVAMAIMKQESSFISDALPPRDYLLWVIPWGRVSSAYGYAQAQDPVWGEYKNGTGNGGSRDNFDDAIMFIGWYTTGTQRQLGISKWDAYNQYLAYHEGRGGYRNGTHLSKPWLIQVARKVEQQSQSYNSQLKLCRQALEDNRSWFF +>UniRef90_A0A392UKT4 Ig-like domain-containing protein n=1 Tax=Trifolium medium TaxID=97028 RepID=A0A392UKT4_9FABA +MVTIPNFKAPGANLTVRCKSRNISNNSCWLAITAEHADTLFLLKASATTFAFPG +>UniRef90_A0A231P0P2 Aspartate 1-decarboxylase n=4 Tax=Desulfovibrio TaxID=872 RepID=A0A231P0P2_9DELT +MLKILRAKLHGIRVTQCALDYHGSITLDPEVCRLAGILPLEFVYIWNKNSGQRISTYVIFGEAGSRCCILNGAAARTCQIGDEVIIGAFEYVSGPQDICHREPVVLTFDAQNRIEERLRYVVAQDGEDMAFSIVPDPL +>UniRef90_A0A8H4AAK2 Nucleus protein n=3 Tax=Gigaspora TaxID=4873 RepID=A0A8H4AAK2_GIGMA +MPDESGHKRQRVSKACDSCRRKKVKCDGVQPVCGNCSTFNLDCTYNDATKKRGPPKGYIEAIETRLHRMESLLGGLVHSNDPFAEAVLAELMQDDPRPSRRSGNMEFTWKNGSLSTHGDTGRSGGSEVQSPENVLTSEAKDNSIDDLNEIMGILSIDENRQVRYHGRSSGFYLLKNSERYKNGILSLSDNSPKENLISTQNLESLKRPELTTLPPQEISDHLLETYFTHIHPLLPIIYKPIFFNRLKDRNNPPFLLLNAIYALAARYSDRPELRKVIQDSQTAGDEFFDRAKALLDNDYDKSHITTIQALIIMAIRDIRIDNTTRSWIYIGMAARMAQDLGIHRNNEKWQPISLSHEEKEEQKRAFWSCFVIDRIASTHMGRPLGIDEKDVDAAYPSEDEDDEYELLPFKMIHATSSTLLSSPASTNSSVLGSPMSPASTIINKDSPNAAHSVSRFNCLIKLCEIMGRIIQNIYAIRCNVSSANSTVTSILDSSLTSWYVNLPPHLQYNSSSDQHYDTTTLNLHGLYYSTLILLHRPYANTIGKNPSHNICTTAANAITDIADLMRQRKQLRHSPTTVIYCTFSAAVIHTYNAIQPDITISQPARVNLEKCLKILGDLITIWPLTYKYAVILTELANLRDAQLDVNMEQKNDGSEDGFNSRKHINPPIILDQHERQARYHPLNNKIITSHNNKGSSTQSQMFNPVSLNHSQTYERHPVMGFGNPITISSQSSSSYNQTQKSQLQLHHDLPESAQMFNNPFGYRYITSSTADQQTQHTMGGTDPYAAPGVVSTNNRIGNDTINSINSDLWFSQNAELNERSSYFGSQQMQQSVSPFSSPPSLHSQPQALMQIPLLHDDGNDVNMFADNHAFAAIGVGNCGNRRGNTSPVYY +>UniRef90_UPI0013A69B69 DUF2079 domain-containing protein n=2 Tax=unclassified Actinomyces TaxID=2609248 RepID=UPI0013A69B69 +MTAARLRPDRPLTRLLDGLPAALAVVVGAAAMIVYSVGQWRAMQVPSWDLAIFSELAKAYSRLEAPVVPIKGEGYNLLGDHFHPLLVLLGPVWRLFPTPLALLVVQDLLLAISAWPLTRLATRLLGRLAATVLGLFYVLSWGFQGAVASQFHEIAFAVPLLAWAAVAFVEGRWRSCALWLAPLVLIKEDLGLTVLMAGLAIALRGWQGAAQQPTHRGPAWWRRLSTARLGVLVALFGAAAFLLTVLVLLPALSPSGTWEYGLTGGGGADTSLIARLLSSEVKLQTLGALVGTAGLIGLTSPWMALVLPTLSWRFLSSNEFYWGWQNWHYNAILIPIALGALLDAVARLQAAPDAPATEVPGTPTPGTQQPDPEAPHATPGWSAVPMWARWAAALGVVLPLATGLLTLRDLPLWSITRSGYGAPSPRTQAAAQVMDLIPAGASVETDLGLLAYLVPDHTVYWVGTSEVDTDYVVVDSLSSAWGGNPPTDAAAWATGQSQNGAVYELVLDEGGYQLARRVS +>UniRef90_W7AVG7 RMI1_N domain-containing protein n=4 Tax=Plasmodium vinckei TaxID=5860 RepID=W7AVG7_PLAVN +MKRLIEKNVIKINYNTFVNQYKKAFKCEKDIIDEELYEHFIINPFTYSRPFGCLLPNYNNTETYYLNGINIFEVVDYVNINERLYKVENSGDNEDDSDQNEDSFNFPDNSGNEDTIDYSNSEGEYGNGNKKGKKNKKSNKNSESIKTKGHTKGTNRNINSSNITQAKKSNNKYRRIFRFLLFDGKYFIYAYEYEYNEIFNYLETNKYKYPKIILYNNPVIRRKVILLKKNQVIILFKGNTTIEQNSSSIKDEEECYDITDINKKSYFNYTNKQEELIPISTKNESNSYNWSGNYNMPNQNRHRNDDPNYLSRENNVRNFYYEDNKIKNTYTNSGTTKDEKNYNYFHNNNNSKGYNRFTLQENNNNSDKYEHFKSYTPLKQAPNFNENVHNKNFTQTNSPNNNPNRIWINNQSNINKDSFHTNNSNNNNQLIDLTEGFFSSKFFQKSPDISNTCDDVIILDD +>UniRef90_A0A6I7QQX8 ABC transporter permease n=1 Tax=Spirochaetaceae bacterium TaxID=1898206 RepID=A0A6I7QQX8_9SPIO +MFLRMALLNLLKHRRRTILIVFAIMVSVLVMEVMAGMFEGMRVNFFRNLTRESGHIQIHAPGYRDRLNPFTLDYVISGYEEITAALREIDGVLEAEEVLHFGALLEHEGRDLTMAGVGVRKGTRFYRDVREGIRGGTFPGDDAQADHTASGVLLSVAVARLLNLEQGDRVNVIVEDSTGSPYYLQLPLTGLFETSSPDLDEYTFFIDHESAQDLVYLEGGTIEIRLRLLHADEADAVAARIPGHLRRAGIDADLDVRTWRELHGGLTSLLEMMDFFILAMNVFVIIVVASVITNAILMNVFERMRVIGTMRAIGLKRRSAGAMILAEGAIQGVIGSALGLAAGIPIVLYFSVNGLDWGGISEAFGMGSSYYYFGYSLHNSVISALGGVLVALSGSLYAAWVGMRLTIMEALHHV +>UniRef90_J4S719 Universal stress family protein n=5 Tax=Burkholderia cepacia complex TaxID=87882 RepID=J4S719_9BURK +MHRHPFKGHAMYSNILVALDGSDTSSRALDAALDLAAQTGARLTPVYVVDFLVPAYDTFGYDPSILIDAFREEGLRVTEDAAHRMTARGVTGTPQISNVAPAGEDIAHRIVTVADDIGADLIVMGTHGRRGFRRLVLGSVAERVLRQATCPVLMIPASCASKASADTAAASIEKEPS +>UniRef90_A0A849MVB4 Uncharacterized protein n=1 Tax=Roseicella sp. DB1501 TaxID=2730925 RepID=A0A849MVB4_9PROT +MTLVFIALLALSWTGLSLAVLAMLMKRLGPPRQAAWRAFGLSLAVNTMGAAYATPGEPLSAVILILLCHALLLPPLLLAARREGQREGQRP +>UniRef90_A0A1G9RLY4 NlpC/P60 domain-containing protein n=2 Tax=Actinomyces ruminicola TaxID=332524 RepID=A0A1G9RLY4_9ACTO +MSPFKSLHRCTSTAVSVSAAAAAALSIAVALPAAPAQAVVQFDTTSDLMSASGLSGTVYTAGDEAADDGAGMSFSVTNTLPDGIEGNIAVPLADDTWAVPQGLPTSPTREADSAAVEDLISRAQTFYDAGGQLIWDSSRPTPLTGTVVRDSTTAPYGVTCSTFVSMVLLGWDYQHTTYTADTNTQVGYAVDFGVDPTTSKIWRANNLASWFYANGDLWLETDGNYQRGDILFFSEQDPEGRIDQVRSGAESTYFGNVYHAAIYLGDGMLIHSTGTGNGVNITTLNPLLEADLSFVARPTFTAEAANTGQAAESGDDATAQGETTESAGDDAAPTETTGSEGQDSSQDGTTGTTGTTGAGGVRAVTPVSPNRQYSRPIEDHRGWMSR +>UniRef90_UPI001F24B592 CHAD domain-containing protein n=1 Tax=Streptomyces sp. GQFP TaxID=2907545 RepID=UPI001F24B592 +MAQQHLEPTDPTTAGPVTADALADYLRAQATEFLRALRLHRETGTASSAPSAEEPVDAARALRHAARRITGTLHTFRPLLDPTWSETMHPELAWLSGTLAREHAYAARLERLLLALQRLSGAVPLPAQAGVAVGSRSARAERVGTAEPGTAGPPTHPATPDRSNLTVGAAKAGALLERQLTLARTRAHSAALQALGSSRFHAVADNVAVLASEVPLTPAATTTPTDLRPLAAAADERLCDAVNALPLLTAGHPYNAEALVHGLSPDPAPHPQDAPWHHVRLLLRLRRYAHEVLDGDEARVDVRMLTAGTALNRHRDASEAAAAAAAAARTPRIAPATAYALGVLHADQRHEVEAARFAFQQSWEKKAMSTR +>UniRef90_A0A0R1J1V1 N-acetylmuramidase n=3 Tax=Companilactobacillus TaxID=2767879 RepID=A0A0R1J1V1_9LACO +MPQKRNYNRRRRRKNKYNQPLIIFLTIIILLGAGVFGFRRYSEYKQEAQTEQVETEHNAFVKKVAPYAIYLGKEYGVLPSITIAQAILESDWGRSTLAKDYNNYFGVKGSDPSNTKVLQTKEYTDGQWVTINGRFRVYSDYRESMKDHAELLVNGTTWNSQQYQQVIHSKDYIEAAVALQTDGYATDPGYTSKIIRVIQKYNLKKYDEGIK +>UniRef90_A0A1Q6SW29 Glycerol-3-phosphate cytidylyltransferase n=2 Tax=Firmicutes TaxID=1239 RepID=A0A1Q6SW29_9FIRM +MNEKQPVIGYTTGVYDLFHIGHLNLFKNAKGMCDRLIVGVTVDELVEYKGKKAMIPFEDRIEIVRSCRYVDAAVPQYDMDKLTAARKLGATVLFVGDDWYGTEKWKKYEREFAEYGIRIIYFPYTKGISSTKITEALNSVRRDDLSDLK +>UniRef90_A0A4V6IDT8 DUF4309 domain-containing protein n=2 Tax=Chryseobacterium taihuense TaxID=1141221 RepID=A0A4V6IDT8_9FLAO +MKRRIIAFAVLFLFSAGIYFLLYHKDKNLNFIPENADAMILIDKKKLTRQYLSAFIAHPSQWFIESSESEKKRSVFKAGLKIPDFLQIFHLKNSKLTEWYAVFDIENPQKLLVFLKEHKFKNLGQNLYIKDMLYIKIADQKCYAGISGHDFEKIGRPLNGIFGDKKLNADHFMEEGTGSLSFISGTRTRNFSIELKDREIEIKNASNIENYASFISQLSKEDLFINAELNKENIKVFNKVLPDFFKDLSEVNHLKMNAKLKQVKDTIISYGYDDDFNEIEEISYQEIVQPDYMIQLETQDPAKIWKHFRSENLINDKNEFTGIPFQPNRVYQSDNGIVIKSVTEQSLHSQKKGKNFILIKNDPLLFSFSKGLNDFKYLKDIEYFFYGNKGQDFFLTLKLKDQKLPLILQ +>UniRef90_A0A4R2KRA3 Purine hydroxylase delta subunit apoprotein n=1 Tax=Marinisporobacter balticus TaxID=2018667 RepID=A0A4R2KRA3_9CLOT +MFRINFTINNKGYTVDVDEALRLVDLLRDKFQLTGTKEGCAEGECGACTVIMDGRTVQSCLVMAFQADGSNITTIEGLEREDGLHPIQRAFLDAGAVQCGFCTPGMVLSSKALLDKNSNPSREEIREGLSGNLCRCTGYNKIVDAVALASKYLKEEESDGASENSRK +>UniRef90_A0A0G1RJJ4 S23 ribosomal protein n=2 Tax=Parcubacteria group TaxID=1794811 RepID=A0A0G1RJJ4_9BACT +MDKLSNNGKYDLEERTAKFAECIIDFVRTIKQDAVNRRIIDQLVGSAGSTGANYCEAVEAESKKDFIHKVGIVKKEIKETKHWLRLFARANPERAEEMRKFWKEAHELLLIFSKISRSSRGQ +>UniRef90_A0A0Q9NGW8 Helicase n=2 Tax=unclassified Arthrobacter TaxID=235627 RepID=A0A0Q9NGW8_9MICC +MIDNDEIFEEAPASLQDLIDNDLDGLLNVPEKAKKVTSSDRLERAFLEIVEFRRTHERLPSSATREIAERKLGARLEGILANDEKIAALKHLDTEFELLAVEAAPESLDELLDSDDLDDLLGDDSGILDVSDLPVIKRPESPDSVAQRVKAEDFDLFEPLFKAKHAELAEGTYSLVPFTGMDLIREGAFFVLSGVMCFVAEVGEDVDLIVGGKPRQKQRLRLVFENGTESAMYKQSLMTRMYEAQGQVLARTGHDATEALDADVESGHIYVLQSLSKDPVVAGMKDLHKIGFSTTKVETRIKNAAKSPTYLMAPVKVLADYRLYNVRASWLEHLLHRVFAEVRLDLTQVDRKGRDYDPSEWFVVPLETINKAVAMIMSGEITDYVYDAQLKKLVERQQAGWE +>UniRef90_T0Z4L1 Delta-aminolevulinic acid dehydratase n=1 Tax=Leptospirillum sp. Group IV 'UBA BS' TaxID=1260983 RepID=T0Z4L1_9BACT +MSYAVKYASALYGPFRDAMMSGPQFGDRSSYQMDYRGIRDALREARLDAEEGADILMVKPALAYLDIITRVSEGPDLPVAAYQVSGEYAMICAAGQNGWIDQDRVMIETLTAIRRAGAQMIVTYFAVAAAKLLSLRP +>UniRef90_A0A8H7V2K7 ADF-H domain-containing protein n=1 Tax=Mucor plumbeus TaxID=97098 RepID=A0A8H7V2K7_9FUNG +MSLNVSDSALIDKYEDVRDDKSETNWVFFDFADGKPDRLQVAGSGNGGLAEFVAQLKPEVAGWGYLRMNMSNDEYSQRIKFVLVPWCGEKVGIMRKAKLSIQISDVKNVLRNFHIEVPASQTSELTESEILTRLRRAGGANYDRQSSNY +>UniRef90_A0A538BAD3 Trypsin-like peptidase domain-containing protein n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A538BAD3_9ACTN +MQMFTAGSQCTANFVYYDGTNVYVGQAAHCSGTGGNTETNGCTSGTLPVGTQVDVDGASKPGVMVYNSWITMQRLGEKDANTCQYNDLALVKLDPSDVASVNPSVPHWGGPVGLDTTGTTPGEKVYSYGNSELRGGVSQTSPKEGTSQGDTGAGWSHTVMTYNPGIPGDSGSGFLDATGNALGVLSTIDVGFPTGVTNGVGDLAKELSYLHAHESSFASVQLVDGTDPFQAGTLPGLGGLLGGLGLA +>UniRef90_A0A2E1DI39 Two-component sensor histidine kinase n=3 Tax=Flavobacteriaceae bacterium TaxID=1871037 RepID=A0A2E1DI39_9FLAO +MRENNISLSSRIFYYMMVFIVVESIMIAGVTLYQFNNQNSEYHEGRLERKEKNLLTDLKYEIDKSGINSIDALSNSMILEVADVHNLEFELYSLEGFLLKSSTALTGVRGTTIIDQQIVDYFKNENPSRYVEDDTNTNYFKSSYNLVTNFKNEPLGIIYIPYFADDTSSKQELTGFLIRLGFVHGNMILIAFVIAYFISNFVTKSLDSIGETIKKTNLQNQNVKINIDNTPREVVALIDSYNTMIDELKSSAVKLAKSERETAWREMAKQVAHEIKNPLTPMRLSIQTFERGFSKGQEFTKERIKEFSDSLIQQIDTMSSIATAFSDFAEMPEPKKELLNVVEVVGLAIDIFNKDHINFNSSNKVIQANFDRTQLIRVITNLLKNAFQAIPEDRTPEIKVSILEKDDNVNISIADNGYGISKTDTEKIFEPSFTTKSSGMGLGLSMIKSIISAYNGNITFSSKSNVGTTFNITFPKN +>UniRef90_UPI000DC13EC3 piggyBac transposable element-derived protein 4-like n=1 Tax=Melanaphis sacchari TaxID=742174 RepID=UPI000DC13EC3 +MTRNRFFELRSCFHVVDNKAIPKENSDKFVKIRPMYNSFIKRCAQLPVEQNLSVDEQTVPFKENLSIKQYIRGKPSLWGIKNCLLCGQSGLVYNLLLYQGSSTQIDENMQKNFGLGGAIVLKLVENVKPNKHFLFFDNYFSSYNLFCCLLKYKILAAGTI +>UniRef90_J4GUB1 Zn-dependent exopeptidase n=1 Tax=Fibroporia radiculosa TaxID=599839 RepID=J4GUB1_9APHY +MAGNKPSAKLEKQPGTIPAPVVSSPAPARGRCLLRRTVLVGIAAIATFYYVGSLVCQINREINAQQGLWLAKAFGGHSQKGFKHKAAPFGKVAEEIFLAVPNPASALATSRQYATAPHLAGSEGDYKTATDFLALLQSELGISASSPLPVFPAGSSESRGATLSITSSSPSKPSAWIDVYYPVMNTPLDRSLEILDEDGNAVWAANLEEQADETDSDAGKYADAVPTFHGLSRGGEAAGKLVYANYGRKQDYDALVASGVELNGTIVITRYGGIFRGLKVKGAQDLGAVACLIYSDPRDDGTVTQENGYEAYPNGPARNPTSVQRGSTQFLSIYPGDPTTPGYPSYENSTRTEGTNIPTIPSLPISWANAKVLLDEIEEGGGNRTISLVNHVDDRVIPIWNTMGVIPGYIKDEVVVIGNHRDVAHCIRAAWVLGATDPSSGTASIHEVIRGLGVLLKQGWKPLRTILIASWDAEEYGLIGSTEWGEDFADWIDEHVVAYVNLDSSVSGSSFYSAASPSLSHFMRSAAETIAHPTKPGLTLWDATKDKGPLYGNHIDAEALSVYEEEQAQMAADDLGVNVLGSGSDYTVFLQRIGVASTNNGFKSTLSDPVYHYHSVFDSERWQELYADPGFLRHVAIARFLGLQTLRLADSIVLPLNTTHYSVQLDAYLDKVEQLRSSMALDVDFSSLRESISSLRAASVALDNEKSEAESELRHLIRRIARRKFVRDHIRKAWCKLRKIFRKPCKHRKHEAGEEYGHRGNEEHARPRAGHAHPASPARTIEGRTVKPRVGRWAGMLKEQREREHGRDSADKHVRGQKCHIEAHDGKDKELREAFVRAVKRVRAANKKLVAFERGFIHPDGIRDREWYRHLGVAPGKWLGYGATTLPALTESITFDANATMAKYEAGRLKVLFDKLAEEIQV +>UniRef90_L7KPS4 DUF697 domain-containing protein n=2 Tax=Gordonia aichiensis TaxID=36820 RepID=L7KPS4_9ACTN +MDDVRAQPSTLDAVGAQSGQTSVSAGGRVVVAAAGGVDVEALVEACREVGASRGAPTIDFVGFDSDHGHAATSAAVFVIDPASAVVDDEEIAVLHELTAAVGNVALVCGRIESFWDWPRIVRGYRAELDPDELLPVFAVSATAALAGAVDESGIGDLIEWFSTPASAVGDGVAAGTPTPAGEVMSVGDARMRADALATRRARLLAQRDRGRSDRLASLRAGIVRVRAQSSADIATRVRELAAGAEHRSNAVTNADVEATATWLDREIAGLVADIDAVTHARLDAVASSTLVGLDVDDPPVQRADEPMGTRRDVPSGRRTGEDAMVLVIGASTGIGIGRLAVAPLASVHTLQWISMPAALLLGLAVAVWVIRMRRAATTRAQVRTWVGEVLADARTRVERRVAMVLSEAESRIGGQLLRAYERQGRRIADEVAEIDERLRELRTAVTGRSEK +>UniRef90_UPI001C5DEC67 DUF917 family protein n=1 Tax=Saccharothrix obliqua TaxID=2861747 RepID=UPI001C5DEC67 +MREISAADLPALMTGSRLLSASTGFIVDACLDWVAELVDRHGPVPLVGVADLPPESPCAAIAMVGSVTALAELPPTGEEPELAVRALEARLGHPLRAVMPLAAATVNALFPIAAAAVSGLPLVDCDGMGRVLPLIQQSTYALAGLPLTPLAAVGAAGDVVVVDAAATRADPLLRAAVTTAGGWMLCAMNPTTAGHLRNAAIPGAVSRLIDVGRVLRTAADHTALLDDLTRVLGAKLLGSGRVVELSHDTRPTGPGLPANPTSVAVVEYTGAGRLIRLEAQNEFLLATVDGAVAAAVPDLLCLLDRRERRVVDPESVVVGDHVDVLVIPAAPVWHTPEGLRLAGPRAFGFPVGHPREGISP +>UniRef90_A0A653DFF8 CCHC-type domain-containing protein (Fragment) n=1 Tax=Callosobruchus maculatus TaxID=64391 RepID=A0A653DFF8_CALMS +MESFVAPPRKTNFMEPDLAYVQVDEDRSIVDQGSSKANSTSKQFRCYRCNQPGHRAAGCTAGMSKKKKPKATDESLTNSLGFTQICSLENNSKSIAELLKENEELKEIIQQNQAIISEKEKLINQLLKENDHLQSHYNLINSNIIEKDTIVGTIDKITKRLENLEKQPSPISYASVANKQLGTPQKSLKKLVIKPKGKQNCSDTKKDLNKNINLSKLQIKIEAVNDTRDGGVELKLQDKYVNILKNEMDQVLLRKYEVMEEKKILPKIKIVGYKTREKPTMEEIKEKLIRENYFLHEEDIRVTYLNYIVQHNYYTIHAEVSG +>UniRef90_A0A0F8X3M4 Glyco_hydro_2_N domain-containing protein (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=A0A0F8X3M4_9ZZZZ +MLLYNSPDLQFSTMNLQRSTEKIVFCLLLICLQTSLLKAEKTDTGNPRTSYTINEDWSFTPQGLAFGYRPLAKDPGAEIISLPHTWNTQDPFDGKYTYRRGISWYRKELVVSEKLKGKRLFLYFEGANQVSDVYINSVFVGQHKGGYTAFAVDITDYATFGREEPNLIAVQVDNSHDNHIPPLSVGYALYGGIYRDVRLIATSPVHFKVSDHASSGIYIATPEVSDKMARVDVRGTLVNNTNE +>UniRef90_A0A3Q9BJ05 Cytochrome P450 CYP721A63 n=1 Tax=Panax ginseng TaxID=4054 RepID=A0A3Q9BJ05_PANGI +MNPFLLILLLLVISLLKFIHKFIWIPLSIQNHFRQQGIRGPNYRPFFGNTAEIRRWMMAEAKSSRTDFNHDIVVQRVMPHYYNWSMEYGKNFLYWFGAKPRLAIAEPDLIKVILMNTNGAFRKLKLNPSASLLFGDGLIELVGEKWAVHRRITSQAFNMERVKDWVPEMVASTMKMLDKWEEERGGRDDYEVDVHKELNKLSADIISRTAFGSNFEEGKRIFELQDQQTDLVLQAVRSIYIPGFKFLPTKKNRMRWRLDKETRHSIRTLIERSYTTQDKTKCLLTLLTSPYKNQENEEERLSSEEVIDECKTFYLAGKETTANHLTWTLLLLALHQEWQRKAREEVFQVCRNGEIPTADNLMDFKIINMILNETLRLYPPPVMLMRETCKNVKLGGFDIPAGTQLLLPMAAIHHDTEIWGADAKEFNPMRFAGSRKQLASFFPFSLGPRICVGQNLSVVEAKIIIAMIVRQYYFEVSPSYVHAPRQLLTMQPQFGAQILLRRISE +>UniRef90_A0A6L5FCG8 Thiamine pyrophosphate-binding protein (Fragment) n=1 Tax=Acidimicrobiia bacterium TaxID=2080302 RepID=A0A6L5FCG8_9ACTN +MTTVGHQVGLAVASFGARYAFGVVGSGNFHMTNGLIDGGSVFVPARHECGAATMADAYARTSGELGVVTLHQGCGLTNALTGITEAAKSHTPMLILAADTSSGAERSNFNIDQDAIAASVGAVPERVFSGSTHLDDLIRARNIAMGTGATVVVNVPIDIQTEEVPRQPDPTPFAPGPPLSPDDDSVEGFGRLLENAERPVFVAGRGARSEPARDSLLALSEQAGALLATSAAAKGLLVGSPWNLDISGGFATPLAAELIMGADLIVGWGCSLNMWTMRHGRLISQGTKVVQVDTDADALGAHRPIDLGVLGDVSETARAVSGTVSHGETRYRTDEVAQRIAEEGRWRDVPYHDRGDGERIDPRTLTIGLDDILPADRVMGLDSGNFMGYPSMFLDVPDERGFCFTQGFQSIGLGLATTIGAALAQPHRLPVAAVGDGGILMGASELDTVVRLGLPMVV +>UniRef90_A0A2J6L521 XH domain-containing protein n=2 Tax=Lactuca sativa TaxID=4236 RepID=A0A2J6L521_LACSA +MEEMENTTDDEKTTSLKASILSKYDEVFHAHTSDIKKVNEKITVDCEKFLQYYEDSCSQMEASSKSLQQQEYEITKKELKIQKAKSKQELKKRVRERLLSCKQLLNESCTSKRLLEGVKDELVILRKRRAELESQLKAENYESLESEITQLETALQAIQDDDCIDLQEQMKILQTKLIQKNEQIEEKKHQETIFRLAIETKNKELQEARWELIDGLKTYPIGGVIGTKRMGLVDSNPFFVGCTSSEKKKESATKFASLCKHLIEDPNWHPFTRKSDGSEIINEEDGKMVILKSECSVEQYGAVVTALVERNRYHKNGRNLMEEVWNYRENREVTLIEGIEHILKEWKIQKQRKR +>UniRef90_A0A2A4LJ60 Corrinoid adenosyltransferase n=2 Tax=Alphaproteobacteria TaxID=28211 RepID=A0A2A4LJ60_9PROT +MVKLNKIYTKTGDKGTTMLTSGDIVPKFDLRIEAYGCVDELNAQLGMACILAKKGSKLADLLQYIQHDLFDLGADLSTPKVEGEAPDAALRIIASQVSALEQNIDEFNANLTALKSFVLPNGTQLAVQLHICRTVTRRAERIVAQLMSEQAEQTNAESLKYLNRLSDLFFVLSRYDNDLSGQGDILWKPAKNR +>UniRef90_U7P8K1 Tryptophan-rich sensory protein n=2 Tax=Halomonas TaxID=2745 RepID=U7P8K1_9GAMM +MTPTRSALILLGWLALVMLAALTGIATPPGAWYAGLSKPPFTPPNLAFPIAWTLLYLLMALAAWRATLEAPAAMRWHTLWPFVAQLAANALWSPLFFGLHWMGAALAVLLLLWGLILLTLCRFAAVSRPAAWLLVPYLAWVSYAAYLNAATWWLTG +>UniRef90_A0A4S5EQE4 Transposase n=1 Tax=Candidatus Frankia alpina TaxID=2699483 RepID=A0A4S5EQE4_9ACTN +MPPSRPDARARAEALKPLLRTAHQREQVDQAVAAADGRWNVALDALKRKLPTVADRLAAADALVGWAGDHPSVARARCAEPAADPA +>UniRef90_UPI0004150940 Nif3-like dinuclear metal center hexameric protein n=1 Tax=Peribacillus kribbensis TaxID=356658 RepID=UPI0004150940 +MELLHQMVQKLDQELRIDDYGKDSGFSRFIPAVYEPAGFEWDMFFEKKFTELFNGLMLKGGPEVSKVFLAVFPADEVLEKFIAEAKEGDLLFMHHPLVMECGDPQGKWGQGFIPVKERYLRQIKEKKLSLYTCHTPLDYHQELGTNGAMAKALNGNVIDRCLPNEFGEYLVWICEIPSKSTQMLLSELKEIFEIPYVDFEGPAAGRIEKAAIIAGCGDKVSWMEEALRKGAQAYITGEIHCHINNEYGRRRYSEMMEFATRSPIPLIGVSHAASEFLVMKTLMKDWFEANFKVETVMLRQDQWWV +>UniRef90_UPI000C18D182 helix-turn-helix domain-containing protein n=3 Tax=Lysinibacillus TaxID=400634 RepID=UPI000C18D182 +MAFEYLAQYTTFESIADMDTAVENHMAAHYYDLTESERAIVFKLASHSLENPGACHLKAATIAAALEISTKTVYRSVKRLEELGIIEKVPSTKLNGIKGASIYRILPHVPSSVSQRETAQAISNDAVSETFTENQSSKSFNHLSFKTSTLQEIYNNTHAEKEAHKEYMNEYQVMLFDFMSSLPLADNLKDELHKVVLAAQVQNASDFIKAKNVLFKIAMDIKEGILTVTSTLRAVFTGAYNKAVQRSNMKLSKSSSIEETADRERLVPFYNWLNERDSRSEICSRPNLENWLEW +>UniRef90_UPI0021CC4CFF uncharacterized protein LOC127046616 n=1 Tax=Gopherus flavomarginatus TaxID=286002 RepID=UPI0021CC4CFF +MLERGHDRDTMQCRIKVKELRNAYCKAREGNRHSGAAPMTCRFYKELDAILGGDPTTNPRTTMDTSERGGEVEAEEKRGEEETESESTGVGGDTLESQEVCSQELFSSQEEGSQSQQPVLGEGQAEERVPATLSSQLPVLTAAQRLQNLWKKPRKSKDDLLQTVMDHSARENKKLQDWRERESRIHQRNAAARKKSTKQLISILARQVDSIHAGRALPRHPPIPKLFPLCPNVSSKPPSPASRFLPPPAASNTCTFTNQP +>UniRef90_UPI00167E4099 hypothetical protein n=1 Tax=Streptomyces echinoruber TaxID=68898 RepID=UPI00167E4099 +MTVHDDLASVQRCLDDLTRSVGRLEKQLGSTSLDLRRVRTDADHLRESVALLRAAAAAGPTAARPELVTIPDTPYDGSLWTDSDDEGLGARDRHAP +>UniRef90_A0A3B0UW67 FAD-binding PCMH-type domain-containing protein n=1 Tax=hydrothermal vent metagenome TaxID=652676 RepID=A0A3B0UW67_9ZZZZ +MAQFSPVSEAVLAALTAVVTSDNISTAEAERQLHAQDMSQHAPSLSEVVVWPTTAQQVANVLRIANENHIPLTPWGAGSSLEGNPIPLFGGILLSLQRMDQIITLHEDDFQVTVQPGIGYKDLNEFLGRHASFLPQTREPMPPLAACWQTMQQAAAR +>UniRef90_A0A085F9L8 Transcriptional regulator MarR family protein n=4 Tax=Massilia TaxID=149698 RepID=A0A085F9L8_9BURK +MGERYLKSVRLLAECMQGFERFSGESVRQHGLTHAQFDIIATLGNTPGMSYKELGERTLITKGTLTGVIERLEQKGLVLRERSSDDKRSFFVRLTPAGDGIFRDVFPRVIAHGKQLFSSYGEADFDALENVLRKLRDQIAAGSLPPQPPQAKELP +>UniRef90_UPI001662A726 hypothetical protein n=1 Tax=Pedobacter quisquiliarum TaxID=1834438 RepID=UPI001662A726 +MKLKNLSILAVLGLLAYSNHAEAQLLKKFQKTLEDKASQKVDDVLNGKKKATSPAAESTAAKDAPPPVEEVYSFTPGSTILFESDFKRDSKGSMPKRWKTSSTGSVVSIPDMPGNWLALAPRTTYKIDSLLKAPENFTIEFDLVTRSDEAKDIGSMAFGFARDNSIKNYISDAYNDNGITNTQFHFHNRDINNSSSDTKVYNTLSYPFANYANGLLHVAIAVEGETMRVYVNRSKVLDTRMLRKDLPKYFYLSAPFSYDNQAKVYFGNFVMSKS +>UniRef90_UPI00168950BE sulfotransferase family 2 domain-containing protein n=1 Tax=Leptolyngbya sp. FACHB-16 TaxID=2692800 RepID=UPI00168950BE +MKIYNPDQPLFSLHIPKTGGSSLEYVLATWFNKRKFPILRNRPKLERILSIGSLDFQIQRTLGCGFYFHYKNHRRNEVPRRVPLGKTYGFLRPTKQPECVHGHFSDYNTGENVFDFYPEASQFIMVLRDPLEMHISLYHYTKRMIEDNSLYWNGQKRDEFQFNSLDQWILERDFFLLKSLPWNLKAENFKGIIDKYFVHVCVLENFQESLNKLADKLGFEPVKIPQVNTTLRCEMSSSEAAIAFREKYSLEYAIYDYAKTLS +>UniRef90_A0A7V7X2U6 Outer membrane protein assembly factor BamA n=1 Tax=bacterium TaxID=1869227 RepID=A0A7V7X2U6_9BACT +MQKKRSTAKNKIVYISVLKFIHSTTERKFSLMKKLFLHRLPIVLVMALISCLFTVHIAAQTQGLAGRPKIASIKVEGNLKSDAELIIIASGLSVSQEFNADDITKAIENLWEMNVFKDIQVYGEQVEDGIEVVIVVKEYPRLESMDLEGQDNIDEEDIRGKMGLYTSQTVSPQHIKKAIERIKRKYAEEGYLNADVEITTYASQNDSNKVLLKIKITEGAKVKIRGINFFGNYSFADAKLEGTFDDTKSKSGVFRWFKGGDFDEKKYREDVKKLIAYYKKKGYRDFQVVNDSTYYAKNKKDFFIDIHVEEGVKYRIGDVRWTGNTLFSNEELSHAFGFSRGEIFNQEKYDKNMQEQVNAMYYDRGYIFAQIVPIEKPVSKDTLDLEFIVTEGNQVYIEKVEIRNNTKTKEKVIRRDVVAFPGEKFSREALIRSQRNLMVLNYFENVIPDVQPISQDKVNVIMTVTEKPTDTANLSMGYSAQDGLIGSAGVAFNNFLGNGQIVSLNLQLGGAGYRVFSVGFSEPYLFDTRTSFGASFYFSLDGNRRAQYVGYKQRSFGGSISFGRRLKWPDDYFLANWSVGYANSTLKPLSLSNLFPQFTYGQQQSLTLTQVIQRNSKDAAEFPKSGSVYTLTTDFGFVSIDTSGYANAVRVLPQNYTRHTFRAENYYPTLWSFVLYTDFTMGYSRTFKRNPLVEEIPQLDRFYMGGSALDIGSIQLRGYGGRGVGPQESGFAAGGASMVKYSAEIRLPVIPSPTMYILGFAEAGNVFRSLSETDPFKVKRSFGYGFRLFMPLVGVIGLDVAYGLDKTNKNRNFPRFHFQLGQQF +>UniRef90_UPI00217ED0B7 hypothetical protein n=1 Tax=Herbiconiux sp. CPCC 205716 TaxID=2970912 RepID=UPI00217ED0B7 +MADWHPVQTLHANSWIFPRPGTTEPFAEIRHLPVKVGERTVWAFRAVSWRRPRHLIGAGYFGTLEDAARECHRVALASAVPSVLNEQRR +>UniRef90_UPI001E5ED8EC ribonuclease HII n=1 Tax=Bordetella petrii TaxID=94624 RepID=UPI001E5ED8EC +MGQNSLFAETPDFTGVLMAGVDEAGRGPLAGGVYAAAVILDPDRPVAGLADSKVLIAERREELALLIQERALAWCVASATVPEIDTLNILRATLLAMQRAVDGLAHVPQVAMVDGNQAPKLRCTVQTVIKGDALVPAISAASILAKTARDADLLRLHALYPQYGFDQHKGYGTVLHMDRLREHGPCPEHRRSFAPVRDRLAGLP +>UniRef90_A0A2T2ULY6 SET domain-containing protein-lysine N-methyltransferase (Fragment) n=1 Tax=Proteobacteria bacterium SW_6_67_9 TaxID=1919227 RepID=A0A2T2ULY6_9PROT +QRVYVGRSPIHGWGLFAREHLERDAHIGTYLGPWAQRNGSHVLWVDTGEGWIGRRGFNRLRYVNHSKRPNAEFDGFDLYARRTIRPDEEITIDYGWDDD +>UniRef90_UPI001B816F5E CvpA family protein n=2 Tax=Neokomagataea TaxID=1223423 RepID=UPI001B816F5E +MQSFSDLAHGSLDALTRFDDVVLALIILSGLGGFVRGFATEISGLFSWVMAIAVTNRLHMMFEPYLAPYVHDVWLLQIFSGILVFLVTLLFLAMVGRKIAGIARVGLLSGVDRVLGLGYGLFRGYLVIVTLCLIGGAFFETTASYLMQRSLTAPYIVAGETRLVGYLPLSWRSHLASLATSGHDAR +>UniRef90_UPI0013CE7A73 prepilin-type N-terminal cleavage/methylation domain-containing protein n=1 Tax=Metabacillus litoralis TaxID=152268 RepID=UPI0013CE7A73 +MKFKLAKLFTYNKGFTLIEVLLSIVIFSILTLGMLALFSQAMTYTQKSENDTLGVYAARNMLNFMEQQSFEEIKKIYIDHLKSRGEGSITILNKGICEDWYKDMESDGYELCDLAFNPTINNREINVSVELKKHDDQSLQDLLIPIKVFVQWDKDNESTLEGFITNEKLR +>UniRef90_A0A4D6HJA5 DNA-3-methyladenine glycosylase 2 family protein n=1 Tax=Halapricum salinum TaxID=1457250 RepID=A0A4D6HJA5_9EURY +MTTVTDSPHAALRSDEYLGPLVERHGPVEVEPAEDFFQRFVVSILRQQVSMESAAATRERLFESVEVTPNGILAADKQVLRDAGLSRQKTRYVRNVAEAFIEEGYSRAYFEGMDDDAVRAELTEIPGVGPWTADMQLLFSLGRPDVFPVGDLGIRTRMARLFDDLAVEDRAVMRERSERWKPYRSYASLYLWRATES +>UniRef90_A0A3P1S3R7 FMN-binding protein n=1 Tax=Erysipelotrichaceae bacterium OH741_COT-311 TaxID=2491058 RepID=A0A3P1S3R7_9FIRM +MKKTVQLMLFLAIVSAIAGGILGYVNSITAPVIEKMAIAAEQKNLELLFPNGEFKALEFKDETGLVKGVYQVEGQGYVFKVETVGYNSSTPIVYMVAFSNEGNIIGFKELQQQETNGIGSRVFTDEYSQGLLKKTNKDNYDTLTGATVTSTAVVKGLNASRDLFNTINGLEKVETVEQEPKEVQAVKVLINQDWSVYDAQVTVEGSTYQVNVKGYGLLEGDSSHFDYVRNEFMIEIEDQKIKSITLVTFGDTPNIGDKAVDQTYLDQFIDKTMDDEVDLVTGATYTSNSVIASVLAALQAAGQ +>UniRef90_A0A5C7IGY6 Galactinol--sucrose galactosyltransferase n=1 Tax=Acer yangbiense TaxID=1000413 RepID=A0A5C7IGY6_9ROSI +MPSLSESRRRLLQVSSALLKKAWSILQRLGIWRFQEIYARSFANRLTNIKENHKFQKNGKEGHRVEDAALGLRHIVSDIKENRDLKYVFVWHAIPGYWGGVRPGVTEMEHYESEMAYPVSSPGVQNNEDCECLNSLAKNGLGLVNPEKVFTFYNELHSYLASAGIDGVKVDVQNILQTLGAGHGGRVKLTRKYRQALEASIVRNFRNNGIISCMSHNTDGLYSAKQTAFIRASDDFWPRDAASHTIHIASVAYNTSLHPMAEYHGAARAVGGCAIYVSDKPGQHDFYLLKKLVLPDGSILRAKLPGRPTRDCLFSDPARDGKSLLKIWNLNDFTGVMGVFNCQGAGWCKIGKTNLIHDEQPGTISGYVRAKGVDYLSRLATDQWTGDTIVYSHLGGEVVYLPKNATIPITLKSREYEVFTVVPVKEFSNNEAKLAPIGLIKMFNSGGAIKELRYDEAEGTAAADMKVRGCGLFGAYSSARPKMIQVDSEEVQFGYNEESVLQENKVIPGIKVDKGTVELAGTNQYNKTGARFAKWRAVLKIGPKRAI +>UniRef90_A0A2V5VET0 Divalent metal cation transporter (Fragment) n=1 Tax=Verrucomicrobia bacterium TaxID=2026799 RepID=A0A2V5VET0_9BACT +VLYLQQKGFRYIEALVITLIATIACCFGAELIFSKPNLMSVMLGFVPGPHIVTNQEMLYVSIGIIGATVMPHNLYLHSSIVQTRKFEQSPQGKREAIKYASIDSTGALMFALFINAAILILAASVFHWSGHQEVAAIQDAYQLLSPLLGVGFASALFAIALLASGQNSTLTGRAIAIVPAVLVIGIFGESKTTQLLIASQVVLSMQLGFAVWPLMRFTNEKAKMDEFANLLWLKILSWTTAAIIIVLNVKLLFDTFMPDSVLKAFYNFLRLPAPQ +>UniRef90_A0A6P0P8U6 Tandem-95 repeat protein n=5 Tax=unclassified Okeania TaxID=2634635 RepID=A0A6P0P8U6_9CYAN +MGTEGDDLAFGSVFSDTYSALGGNDIVFGQEEGDSLLGQEGNDQINGNRGNDTVSGGLGDDSLRGGRDADSVLGDAGNDTVFGDRGSDTVRGGEGRDVIYGGKENDDVAGGEENDFVSGDIGDDTVAGDGGNDTLLGQDGNDIISGGAGLDVIRGGEGTDSISGNEDNDSLSGNQGNDTLDGGTGDDVLSGGKDDDLLLGDAGADTLNGERGNDTLDGGEANDILSGGKGNDSIDGGQGDDLLIGGRGDDTLTGGEGEDSFVIVDFEESDNLYTVTDFNTTDDLLSLEGGLTFEDLEISDEGGNTVIRNADGNTLAILIGVDSGTLNSGNFFPTPETPFPTATPTPTPTPTDSPDPSPTPTDSPDPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPTDSPDSTPSPTPPDPGEVTPPSLNDPPTDILLDNDSVEENSEAGTVIGTFTTEDPDESDVHEYRLVDDADGRFALNEDQLVVAEGTNLDFEQQETYDIQVRTFDNAGENLTKSFTIALLNVNDPPEITIPDDQQLVNEGEQLDIVGIEVTDPDAGDGELEVTLETTNDGNLTLNSTSGLTFTTGDGQADAEIVFTGSLENINQSLNTLTYTGNNSGSDSISISVNDQGNTGLGEPQTDTALINLSINDLPLVGTNTELVVNTQETGIIDNTLLETTDDSKTSLIYTVTELPTRGNLLVDGGSFTSFTQEDIDQGLLTYEHDNNDTKNDSFSFSVSDQVGGETTDTFEIRVNVPPNITSKNLSLDEDTQEEITNKNLLAEDPDTDAVAETLIYEVTELPTSGKLQLGKAILEVTDTFTQEDIDQGSLSYQHTGDEPGTDTFSYVVTDQDGGTTSGLLNININPGDTSPIAGDDVFETNEDTAITINKSELLANDSEADGEQITITEFAADNIKNGTLAETTESFIYTPNENFSGQESFTYTITDTQGFTDTATVNINVTPVADTPNLEISTPNVSGTDIEELPLGIAASLVDTSGSENLSITISGVPAGATLSAGTDQGDGSWVLTPEELTNLTISPPGDRETGTTFSFDLTVTATATETANDATATQTGTISVQVEALNDAPVLTDLGNLALTTINENEVNNTGTPVASIIAGAVTDADGGASSGIAITQIDNSNGLWQYSVDDGTNWVDVSNSNTTLLKATTSDRLRFVPNTDFFGDATIQFRGWDTTDGSSNTSELTDISTIGGTNAFSEGVGTANILVNDIPEITKNSELVVNFGGTGSISQNLLQTTDGDNGTNAFTYTVTTEAAAGILQLEDNPTNTFTQENINSGLVIYEHTATNTNDDSFSFRVIDVDGGKVTDTFNIRVNEPPVGTTTDLSAFIGQSKVIPTENLQFIDPDVETATPASLQYTLTEVPTLGELQQGGETLAVGSKFTQENLDNGEISYATTTASIGTDSFNFLVTDQDGGTTSGLLNINIVEANRPPEVEADKTVTLEEDNNATLDIPAPTDPDGDALTITVDSIPNAEIGQVLLSNNTSVTALQQLTTEQLTSLTFVPVANANGAAGTFSYTVDDGNDENSSSTQVINIDVTPVNDLPIAIDDGPVFTNLGNVITIDVLGNDSDIDGPDPLSITTLSNDEPLGILNNLGTQVQYTAVFGTGTDLFQYTITDGLDEATATATVNILDVSNDPDFLVGGEFNDNFDGSGGDDTLEGLAGNDTLAGDDENDSLVGGDGNDSIDGGDDDDIFIGGLGADTLSDDNGNNTFVYTSADDGGAKFNAADAASIGTAISAGLYDRITGFEDLGVVGGDTIAFSSTVIPAVDNIATDVQTTNISGNVLIAGNPGLFAYEVEGKTYLIYDANGDNTVGDDSQILAELEDVSGVVALDINDDFTII +>UniRef90_A0A7K7WYR9 TENX protein (Fragment) n=1 Tax=Mohoua ochrocephala TaxID=874463 RepID=A0A7K7WYR9_9PASS +HFHTHHHPLSTTAAAQPEELPLTSEEPQHEKHRTESPASEAPLVRAVLGELRVSSVTPNSAQLQWSVPEGSFDSFMLQYRDAQGQPQALPIDGGSHSVTVPRLSPSHRYRFHLYGLRGRKKIDHVSTEAVTGTQEQEELPLPSEEQKHEKLQTEAPPSDAPLMRAVLGELKVSSVTPSSVGLQWSVPEGSFDSFMLQYRDAQGQPQALPIDAGSHSVTVPGLSPSRRYRFHLYGLQGRKKTDRVSIDIITAQPEELPLPTEEPQQEKPETKPRPSEGSPVRAVLEELRVSSVTPNSVQLQWSVPEDSFDSFMLQYRDAQGQPQALPIDGRSHSVTVP +>UniRef90_UPI001131192E phosphatidylinositol 5-phosphate 4-kinase type-2 alpha-like isoform X3 n=1 Tax=Oncorhynchus nerka TaxID=8023 RepID=UPI001131192E +MAKELPTYKDNDFINDGQKICIDDDNKKMFLEKLRKDVEFLAQLKLMDYSLLVGIHDVERAEQEEVESEDNEGDDEGESDGGIGTPPDSPSNTLDSTKPLSPGEFDPTIDVYAIKSNDGAPRKEVYFMAVI +>UniRef90_A0A101DIC7 DNA repair protein RadC n=1 Tax=Desulfonauticus sp. 38_4375 TaxID=1635258 RepID=A0A101DIC7_9DELT +MPNKNKPHYLGHRQRLKKKLRENPEALADYEVLELLLGYALPRKDTKPLAKTLLAKFKNFKQLLFAKEKELENIEGVGPGISTFWLALREFLSRASVQEFQKTKQKITSPQDVYNLLAPKLIPLSKEEVWLVMLDNKHQLIKMSRLSQGTLDSSPIYVREILEQVLLNQAKAFILAHNHPSGEPTPSLADLEITRKIEEACKNLEVSFLDHLIISKQGYQSLKEQGF +>UniRef90_UPI001D97EE8E Choline kinase n=1 Tax=Passalora fulva TaxID=5499 RepID=UPI001D97EE8E +MQSHRSSQVFSVFSVTFNPTARPNSRFGVQPHLYSCSSSTRSREEPLTDIRASCPWNHRRSLSALYHIWLRLPPLGPRSRHQSARNSDGREARDDTSCVSITMPHSEQPSPMSSGLVKPKLEECASPSSYLGLNRAASPRSTPKSVSISHHAETISPLILGQRKEDEESDLSPRRPAVISARSRRLSGRPASYGSPGLKPLTPALDGAVHSDERDAADSQHDGHHHIDALVDQVSMWIKDRRAKRSKRKEKRSARREARGAKASDGDVDEPEKSQRRDSDASDSSVDLENLERIIASNLSLRRSSVRRSSISLKSKASVRRLLRKQSTVSDSEEVDVSVPGCDAFLDNSKTLAYTGGASDLSDNDGDELRQVPSYRDFDAWAKFKFDIVRIIHTLRLKGWRKVALEMSSAIAVKRLSGALTNAVYVVSPPADLSLEKYDESGKVVGVSKAPPKLLLRVYGPQVEHLIDREAELAILQRLARKQIGPRLLGTFVNGRFEEYLHAQPLTPKELRDPATSRQIAKRMRELHEGIELLDQERSDGAFVWRNWDKWFQRVEHIVTRMDNQIKALPEDAKPTGQQAWMRRGYICGVPWAQFREIVEKYRMWLKAQYGGSKEVRDQLVFAHNDTQYGNILRMTPSGESPLLLPANTHKQLVVIDFEYANANTRGLEFANHFTEWCYNYHDERKPYAFNSSWYPTPEEQDRFLRAYVRHRPQDGLSTPQTGPSTPSSEVSTPPVKRATSSISDFMLDARHPQSARPNAAKEEEAAKAAEDLEIGRLANETRIWRLANTAQWVAWGLVQAKVPGMPDFDPDSPTSELTSDTEPEELLGERAEEYRQLAKEQAGEDEEEDEEFDYLGYAQHRALFFWGDAVQMGFVKAEDLPEETRSKLKTVPY +>UniRef90_A0A0E3NZ95 Probable dihydroorotate dehydrogenase B (NAD(+)), electron transfer subunit n=2 Tax=Methanosarcinaceae TaxID=2206 RepID=A0A0E3NZ95_9EURY +MIPLNATIEKIMEESPFIRTFVFDHRFEEMEPGQFVMVWVRGVDEVPMGLSRKNSITVQNVGEATAKLFELKEGDSFGLRGPLGKGFSSPAAGEKILVIAGGVGAAPLAPYAEAASTAGAKVHTILGARSGGDLLFEERFAAAGVLDITTDDGSKGTKGFVTDVLKKIDVSSYDNIAVCGPEVMMGFIFKILQEKEVLDKSEFSLHRYFKCGIGVCGACCIDRSGLRVCKDGPVFSGVQLVDSELGKYARDASGRRVKI +>UniRef90_A0A8T4KUD5 Pacifastin domain-containing protein n=1 Tax=Candidatus Aenigmarchaeota archaeon TaxID=2093792 RepID=A0A8T4KUD5_9ARCH +MKGVSLPVNAVIIIALAAVVLLVLSTFFLMGTGPSMSNIEAQRVFEEQCPKIKCEKFVTPGTPAFGGLYKNFFDACQRLYGISGTDSEKSKCFFYCNCGALTSECNTDCTICKNFPVDKERCFAELEKKHGLGCKNSCF +>UniRef90_C0HI41 Uncharacterized protein n=1 Tax=Zea mays TaxID=4577 RepID=C0HI41_MAIZE +MEGCRGRHQSHPPHAIDGARGKTAHLLPTPNLLPFQLKQHRRLVAVWLLVKAPADKGKMEHTTAAVSSVRWVCRSRCKATARSSWEAMVTANFGLWLANTCCRAPDYGSQGEVMLTFAENGSSKVGVRFDKQIPGAIDLGGSCELDHGLLCSVDSLCLDGPGWEDRAKHSFDVVFEVMEFLFFLEHAGELHIIIFRGKIESKLDQNKHYKLTKLPSGGHKHQCTKGSINLEEKQTNHLNSTKDLQ +>UniRef90_UPI001CDD57D1 hypothetical protein n=1 Tax=Vibrio vulnificus TaxID=672 RepID=UPI001CDD57D1 +MVENLVSGLVSGLIVVLITLVISRVWTLIVVPWFEERVYKDVKIEGKWFSYYTGGMLGRQEVITLKRHGHQITGTMVCTNIGQPDHGEQYNIHGTFKNLILPLVYENDNQSKTDRGTITLKSTFSAKKLVGQISYYSCREDIINTSIVTWYRTQEDMEAAKNSHETRLKEGFNPQGLIPTEDVVHDGVDKAQVG +>UniRef90_A0A267E9L2 NDT80 domain-containing protein n=3 Tax=Macrostomum lignano TaxID=282301 RepID=A0A267E9L2_9PLAT +MINGGFEDRDNFFLEEEHLTTSLEPHQFDPRLSNAEFIRASVLDGQKIKEELFGICESPFDQQDPSQFDSSVTYAPPATPAFVQPEALYVDQPSRIKRGYDESSSTLEVQTYRRPTSCGGGIDSCLAPPVAKRRLGHNRLQLVQTSVPSSSPSNSSSDAQSPAELGSSGAAAGQPTVAAATQPTSIVISSGPNSMATVGEYDKWSTAAQSFVRRSTIRETDALQCSAANRVGLSTSESRQIYAVDSKTAVDRITTELPPTRPPPAPPPPLSLVPSQQQNGDADVVHPPPPLRFQPWDAAPALTLLEVKPVSQNLQPASISFKIEVDKGFQFSGKEGIWICQKKNHFQITCQVSVTGCQWAVGASSGPQPVTGFRVNLYGVKAESPLDSLVSLEQSEVNRTKRLFAPIPVAMPGGGRFVRVVAQRLHFASTTLNNQRKRGDLHPDQRFFQLVLALEALTETSVAPVQRYISRFIIVRASNPGQFDSASASAVPDNPPAPTPLPQRQPPPQQRSPLPQSSMPPTVEEAATPEDAVGAWISDRPGVVYYSGNVGINTPNPAEALTVEGNLQLRGNLLQPSDARIKSIERELSPAEQLANISRIKIYSYSLSPNDVSDTGVIAQEVAGILPDAVHASSTERVPTGEPLLLVNKDRIYMENVGAVKQLGELTASLDCRIGELERMRSKLCRLRDSLRSSSSSSSTVTAAAAAAAAAAAATASSGCLVGSPRFRSVGTQSSLELEAGLPWPPNLPPPQPPPPPPPPPPPPPPPTLPKSTTPSLTVPASAAAAAAAAGQDQRNRRPRLCSHQHPVAQTLHQQQQQHQQQQRRSSFRFNVVLVALLVTLIVCFLGLASLLLIEKLLPHLSGPGFVGSRNGSSTVSSSGGGSSGGSSGSGPATPPGGGWPRPLHGASSHTTPPEPTPTQKPTPFRPASCGAGGGPCPPVRCCRGQQKLANGNSSGSGGAGSGSGDVIALFESAGDRSGSRGGSSDASSGSGNAAFWELLGAQLISPALGNWSLADAASMHCGSSSGSSSGSGSDVGGHRRRLLRYGGCTGSNLTFHLLLSNSFPLDARLSLRLTMSETLLAVRHCPPVESLSRCDGSGGPGAAADSQSSGCTPVLGDQRGFDCDVSAAASHLLHLAKFRLAAEAKNLCQLESSGLGKEFVELTVLLERQEFGC +>UniRef90_A0A2E8JXE6 Creatininase n=1 Tax=Planctomycetaceae bacterium TaxID=2026779 RepID=A0A2E8JXE6_9PLAN +MNSEAPWRLDETTLGDLEDRCTEPDDPGFDVAVIPFGCTEPHNLHLPYGTDTIESLAIGDRICGHAWRQGARVALLPAIPYGTTTNQAGVRLTLNLMPTTILAITRDLVASLVRHGVRRIVLLNSHGGNDXKWXLRELHDGPSPSAHLFLVDWXRAXRDVSDRIIEQPDDHAGEMETSILMAVRPDLVRHRSDGSLDADDGEVRSTSFEAVEKGWVSITRPWHLLTTNTGAGNPHAATAEKGETLLEILEERFGSFLVELAKGEPGPSFPFPDE +>UniRef90_A0A8J4EGG7 RGI_lyase domain-containing protein n=1 Tax=Virgisporangium ochraceum TaxID=65505 RepID=A0A8J4EGG7_9ACTN +MRAWNRRRFAALAVAAVCLVGVPLPASAAPGAPAGGGHGRVQLEKLDRGLVVATTTGGAFLSWRLLGHEVTGRTSSGMKGPGFEVYRDGRRIATVTDSTNYLDPAGTAGSTYQVAPVRGRKSAPARAWSTTHLDLPLRKPADGVTPAGEAYTYSANDLSVGDVDGDGAYEYIVKWDPSNSKDVSQVGYTGNVYIDAYELDGTPLYRIDLGVNVRAGAHYTQFLVYDFDGDGRSELMFKTAPGTKIIRYDRSGAVRSERFVSLPREDVAKGVTHADDYRMSAADYFEHLVTMFQGWHDHPEVEAGRWPATLEQAFGIAPAYTYPLSREDATALANHFVDVYAPARSARNQLRNFAGFIVDGPEYLTVFEGATGRELQTVRYEPGRHDDGLMWGDYAMARIEPGNRVDRFLATVAYLDGRRPSAVFARGYYTRSTLVAYDWDGRRLHKRWYVDSGWTPMTNPFNDSPHGRDGTDPEFRTLTTQGFHSLSSSDVDGDGKQEIVYGAATIDHDGSLLYSSFAPLPEGSASPGTQARLGHGDAMHVTDIDPTRPGLEIYTVHEGAAGAPYGHAMRDAKTGQVLFGTYSGRDTGRGMVGDILPEHAGLEAWATTGMGLWTAQGQKLGDTIPGTNQSIRWAADLSTQIVDGALEVTPTIQDHRRGTLLTAANTLTNNGTKGNPGLVADIFGDWREELLLRTADSSAIRIHLSTEVTTHKLYTLMHDPQYRAEVARQQTTYNQPSYTSFHLGTGTDWARVPVPTASYR +>UniRef90_A0A372F876 ZU5 domain-containing protein n=1 Tax=Emticicia sp. C21 TaxID=2302915 RepID=A0A372F876_9BACT +MKTLQTVAITLLSLLGLISCETDQQNPKPEQPSKGTPTEVGKPLGAVTAKMIGAQGGNISTPDGKVTLTFPAGALSKETNITIRPVENKAWGNVGIGYEFGPDGSEFAKPVTFTYRYTDKEISGVSLDNMALAFQDQNKIWQATAPLTVNKTQKTITGSIKHFSWWSMITKYRLTPEYDTVLIKQTKELQIEYLESEWPWSNKPDSDILLLVPLVAPKLADRTAISKIYLNGVDCTTTLPKDQSSGLLGFANKDNKAVVMYTAPNKKPNAAYNPVAISIELQHAGKAKLMLVSNLYIDTENTFSIDGSDPTSIAINAAYGAGALYISFEDNMSNVLRVYTEHFAPGTYTFNIKDTNIAAMHHSKKKAGGSVYEHCRDEKSESGRIVIDRIYQSNGKTVIQGSVTGKVCTLHDTDEKCNIIKHETMTVSAKFTTVVMM +>UniRef90_A0A7K4IPH3 DUF420 domain-containing protein n=1 Tax=Candidatus Bathyarchaeota archaeon TaxID=2026714 RepID=A0A7K4IPH3_9ARCH +MALWIADVNFVLQFVILGVLSVGLFYKQRGKFVFHGSTMLIAVVLNAVSFFLVMWPSFVAFDFTVLDSPLKVVSLTHGILGGIAEILGLFLVVAWGVQKKMQSCIRRKIVMRITILLWLIALVLGILLYAGLYGIITI +>UniRef90_A0A662SB18 TMP_3 domain-containing protein n=1 Tax=Candidatus Korarchaeota archaeon TaxID=2056630 RepID=A0A662SB18_9ARCH +MLRNAGIDPTTGSLKAIGDAVAALGGGQEKFNRVLIAFAQIAAKGRVQAEELLQLMEAGIPVQKILQEELGLTNEQIAEIGKLGIDAQVVLDALFSGMQRRYGGAMAELMQRFTGIISNLRDQWDLWLRDIMNAGPWQTLTALLKMALDHINRLKEEGKLDEWAEKIGKRVEDTFWNMAIGTATAIDALKEPILAVWGIIEDMWEGFKKLPSWIREIGIVAAIVGGKKGAAVIASLSWLVETLGRSVKGFEYAWKGWISWKDYITANKEELEKLIQEADRAHKTTGELGDISLDTSSKMGNLEQKVRQIRKEVEKYIETLKDEQKQERKPTETPTAKIPVEFVFDEEKLQKLYQDTIDQINKTILQGQELQAYRAEKWYEQMMENIDTLLEAGQITGEEWSRLFDRIEEGYQKLLEKSGESFDYMQEFAIQAARNMQTAMSDFFFDVMTGKFESFKEYIQGLANTISRIISEILAKLALAKIFGAFGWQAGIAALGLAKGGIVPGPVVPIKQFQYGGIVDRPTLFLAGEGRYPEAIVPLPNGRAIPVQIINKTEEKPIVVHIHIQTPDVESFRASRAQIATEITMALARARR +>UniRef90_A0A0F8B2Q3 Putative Ras-related protein Rab7 n=4 Tax=Sordariomycetes TaxID=147550 RepID=A0A0F8B2Q3_CERFI +MSAGKKGLLKVIILGDSGVGKTSLMNQYVNKKFSASYKATIGADFLTREVLVDDRQVTMQLWDTAGQERFQSLGVAFYRGADCCVLVYDVSNAKSFDALDSWRDEFLIQASPRDPDNFPFVVLGNKIDVEESKRVISNRRAMAFCQAKGGIPYFETSAKEAINIEQAFEVIARNALAQEESEEFSGEFQDPINIHIDNDRDGCAC +>UniRef90_A0A846WZ52 Signal peptide protein n=1 Tax=Tsukamurella spumae TaxID=44753 RepID=A0A846WZ52_9ACTN +MIARRLSVIGTVALATLAVVPGVAQAAPVNTARTILAAHEFPLGSTGYKVETETLKPFDEPDNANTPCSRFIRTMFERLGGAQVTNAQVTRGTTEVEVAVVNRPMAALMAEGFPTCEAQVDPRARSTVLAAPGDLTRLRPFVFRDADEMQAWVDLRGISVNVTATTKNRGPADAETFWQTLRAQVAKVERQP +>UniRef90_A0A6P6DIM4 protocadherin beta-14 n=1 Tax=Octodon degus TaxID=10160 RepID=A0A6P6DIM4_OCTDE +MIVFLNTASFGPRETLEMLLSKAPAKRQVTAILFLLLLREVGSETIKYSVLEESDRGSFVANLEKDLGLGLGELAVRGAQVRSKGSKQHLQLEQSGNLLLREKLDREELCGDTDPCLLPFQVLLKNPLQFIQGELQLQDINDNDPEFLENEILLKISESSRPGTPFPLKIAQDLDVGNNTVQNYTISTNSHFHLVTRDHNDGRKYPELVLDKALDHEEQPEMMLTLTALDGGSPPRTGIAQVHIMILDINDNAPEFGQGLYKVQVPENSPIGFHIITVSARDLDAGTHGELSYTFFQSSSQVMQTFEINTNTGEIRLKKLLDYEETKFYHVEVEASDGGGLSGKCTVKLEVMDVNDNAPELITSLLISDIPENSPETVVAIFEISDPDSGDNGKMVCSIQNHLPFNLKSTVENFYTLLTEGALDREKKSEYNITITVTDLGTPRLKTQHTITLQVSDINDNAPTFTQSSYTLFVPENNSPALLIGTISATDRDSGSNAQVTYSLLPPQHPHPHPQPHPQQQPQPDLASLVSINADTGQLFALRALDYEALRAFEFRVGAADRGSPALSSEALVRVRVLDANDNAPFVLYPPHNASAPYAPRHRLLVQVRDNGEPPLSASVTLHVLLVDGFSQPYLPAAEAAPERAQPASLTAHLVVALATVSSLFLLSLLLFVALRLCRRSGPAALGVCSAAPEGPFPAHLVDVSGTGTLSHSYQYEVCLTGGSGTDEFKFLKPFFPNLPPPNAAQQTEGSAMVRNSFGFH +>UniRef90_A0A0H3GRA2 Bifunctional protein PutA n=3 Tax=Enterobacteriaceae TaxID=543 RepID=A0A0H3GRA2_KLEPH +MGTTTMGVKLDDATRERIKSAASRIDRTPHWLIKQAIFNYLEKLENDETLPELPALLSGAANESDDASEPTEEPYQPFLEFAEQILPQSVSRAAITAAWRRPETDAVPMLLEQARLPQPLGEQAHKLAYQLAEKLRNQKTASGRAGMVQSLLQEFSLSSQEGVALMCLAEALLRIPDKATRDALIRDKISNGNWQSHIGRSPSLFVNAATWGLLFTGKLVSTHNETSLSRSLNRIIGKSGEPLIRKGVDMAMRLMGEQFVTGETIAEALANARKLEEKGFRYSYDMLGEAALTAADAQAYMVSYQQAIHAIGKASNGRGIYEGPGISIKLSALHPRYSRAQYDRVMEELYPRLKSLTLLARQYDIGINIDAEEADRLEISLDLLEKLCFEPELAGWNGIGFVIQAYQKRCPFVIDYLIDLATRSRRRLMIRLVKGAYWDSEIKRAQMEGLEGYPVYTRKVYTDVSYLACAKKLLAVPNLIYPQFATHNAHTLAAIYQLAGQNYYPGQYEFQCLHGMGEPLYEQVVGKVADGKLNRPCRIYAPVGTHETLLAYLVRRLLENGANTSFVNRIADNTLPLDELVADPVSAVEKLAQQEGQAGLPHPKIPLPRDLYGSGRSNSAGLDLANEHRLASLSSSLLNSALHKWQALPMLEQPVAEGEMQPVVNPAEPKDIVGYVREASDAEVQQALTSAINNAPIWFATPPQERAAILERAAVLMESQMPTLMGILVREAGKTFSNAIAEVREAVDFLHYYAGQVRDDFDNETHRPLGPVVCISPWNFPLAIFTGQIAAALAAGNSVLAKPAEQTPLIAAQGVAILLEAGVPPGVIQLLPGRGETVGAALTSDERVRGVMFTGSTEVATLLQRNIASRLDPQGRPTPLIAETGGMNAMIVDSSALTEQVVIDVLAPRRQRRPALLRPARALPAGRGRRSHLNHAARRHERVPDGQSGAPDHRYRSGYRCGSEREYRTPYSGDARQRPHRLPGGA +>UniRef90_A0A0X8F9Q8 Lipoprotein n=4 Tax=Aerococcus TaxID=1375 RepID=A0A0X8F9Q8_9LACT +MRKKVFLLVAVFALFLTACGSSSKETTHVKLGVVGDKNDQWEYIQKELKDKENIDLELVKFTDYRGPIVALEDGSIDLHAALTEIFMEEVNKEGGYSNTTIAYTTLNPMGVFSEKIDSLDDLRDGAVVALPNDVSNESRALLLLQTAGLIKLDPDKGLLPSISDITENPKNLNFKSMAANQTARSLGDADIALINNDMASDAGFVPTQDSIYLEPVAESSKPYYNVIAARQNEKDKDVYQTIVKYYQTDEVAKIIDEMTNGSSIPVWDKDQ +>UniRef90_UPI001E506DDD EcsC family protein n=1 Tax=Mycobacterium florentinum TaxID=292462 RepID=UPI001E506DDD +MGTVATAMGVDAAVLTACSAVVAHDALYYGYDPLDPAEEIFMMHVIALGLAETEPAKVAAYQQLTLLTESLARNAAWQQLDRQVAVKVIQKFAVKFAQDLTLKKLVQLVPGLGVGLGAALNWTTVGEIADAAYWAYRERFLYERAPNSSPSQPISRAPRTTIDYRSISKTSSSRKASSSTANANHGDPTAPTHYRDGQANKGRAPVDHIATADAIAAAAHAGQVDKAGMPYIGHVRRVASYVDPANTDAVVAALLHDVIEDTGLTAADLAERGIPQAAIDAIELLTRRDDQPSADYYRRISAHPTAGKSSSRTWPTTPIPNGWQT +>UniRef90_A0A117EBF1 DUF5753 domain-containing protein n=6 Tax=Streptomyces TaxID=1883 RepID=A0A117EBF1_9ACTN +MTSKLSRIETAKSPTKPNDLEDLLDLYAGLGRDVDDELRAALLALTNEGVRRGWWHSYRGTLTPVYEDLISLEAEAESVSYWQLGAIPGLLQTSEYAREIIRATAMSADVEARVDALVEVRLARQVVLTRETPLTLRAIISEAALRSTSGVDGLMDEQLGRLLTMGKRPNVHIQVLPSDAPLHAGQVGSFVILGFGPHADLDVVHIEGLSSASYIIEEREKVATHRDAWQRLTTTALPPEASTELITEIRKSV +>UniRef90_A0A6J2SVJ9 carboxypeptidase B n=1 Tax=Drosophila hydei TaxID=7224 RepID=A0A6J2SVJ9_DROHY +SLNSFKIYEVATKSRSAGDGLDFSKLANNDSYYELYYSNDAATHVLVHPDAQPEFIELLNGNTLSYKIVNHDAGLSLHREFETNRKLRNAHPYRGRLGTERYYSHGEINQYIEDLAKQHPTRVLVKTVGRSYEGRWLKTIRITNGDGRANKNVILMDGGFHAREWISPAAVVYAIGELVDNYEAYAQLLLDYDWVILPVVNADGYEYTQVSPDTRMWRKTRQPSSAACIGIDPNRNFDFHWNETGASSDPCSETYAGPKSFSEPEAIVVRDLIRGLADRGKMYLTVHSYGNYILYPWGYIDELPDTWEDLDEVGRAGGDAIKAATGTIYKVGCSTQLLYPAAGASDDYAFNAGFPISFTMELPAGGDNYFNPPPEDIDRLVKETWVGIVAMAQKVVEKYPLN +>UniRef90_A0A4Q6E3N3 Glycosyltransferase n=1 Tax=Sphingobacteriaceae bacterium TaxID=2021370 RepID=A0A4Q6E3N3_9SPHI +MDVSIIIPYYNAGNYLPDAISSVRQLLRRTDISCEIVICDDGSTDPYSIEILSGLEKEGLFTIARQPNKGPAAARNTAVKNSTGKYLVFLDSDNKLRERLVEKGIEILGSNKADVVYGNAAFFGESTKPLFTQGELNIPLLMARNYIDMCAIVRREVWETTGGFDEGEELRKGQEDWDLWLRAIKAGFRFLYVDEVLFDYRVRAASLTNDDSLERYNKAREYIYSKHPDFFKQSFFWLSDQLYAYQQDKRTPFRSFFKYLYLKYFKGGK +>UniRef90_A0A1W9W8B2 Prenyltransferase n=1 Tax=Anaerolineaceae bacterium 4572_78 TaxID=1972460 RepID=A0A1W9W8B2_9CHLR +MKNHSRSTKDLSFASNKLSSKIVSKPKSKVRLRTIALPAEHGSWGFVLEPICLGLGVAPSWAGLCLAIGVFALFLLRRPLKIILTDWQNHTTPPPPLKRRGAMRTVIAKRFVMGYGLIAVLGLISGVWLAGWESLYPLLIAVPFSMIFIAYDVKNKSRTWQAEFAGPTAFSLAAASIALAGGWAYNVSFALTGALFARAIPSVLYIRARIRLDKNKPHNKLLAIGMHVVGLIFVAVLTVGAYNHKPLLPTLAEVGLGIFLVLMMIISTRL +>UniRef90_A0A3N5LLQ8 OmpR/PhoB-type domain-containing protein n=1 Tax=Acidobacteria bacterium TaxID=1978231 RepID=A0A3N5LLQ8_9BACT +MKELPEEKTALTQELDRIVKSEAFRSSESLRRLLLYLGNKSLAGEAGDLKEYVVGVEAFGKSSAYDPQLDASVRIQAGKLRQKLQEFYRTEGMEDTVVVSLPKGHFQLDFELRSKPQERQQLQSVPRKWKIAVWSLAAATLLCCSCIAYLLLSVPSGNQPDGNGRLTADLRAIWDPVLKDDRPLVVAVGTPLFTKIGQGFYRDPAINEWNHSAVPSHLERLRDTLGATTLIPAPIYTGIGEATAAFLLCRLLSSEKDLEVRRSSALSWDDVKENNMIFVGCQKYNLQLRDLLSQQDFFMDGNHITNRRPRKGEPHSFTGTCPPDSAYVTQDFAVVTKLPNVQGRELFALAASSTEGTWAASEFLTNEIHARELVSLLRTPSGEMPDSYQVVIRARFRGQVPFEMAIVAERGASPAKSEATDTQTRR +>UniRef90_R8W248 Undecaprenyl-phosphate glucose phosphotransferase n=3 Tax=Butyricicoccus pullicaecorum TaxID=501571 RepID=R8W248_9CLOT +MKGFLQLCRSQLLSGISLGLALMVSALFAVYSFGDSAISARWMNLLPCMTVLYMLAGVLLMAWHRRPPRRRPATPYLSGLNARYIWVLPAFLWWLLFRLTGFDVLERCLLFNLILLAVLWTVEYSMARRMAKALNGALGTRTPTVMPASLIVDLDDCPKGIEAFCIEIERYCIKNHIDYQFIERDKPAIVLMNGVKHRVELGVYYGYVPGWFLKFTEL +>UniRef90_UPI0006692FD6 MazG-like family protein n=2 Tax=Pasteurella TaxID=745 RepID=UPI0006692FD6 +MKLTNEQLIDNIKQWARDRGLDTGSTLGKQFVKLMEEFGELCSGLAKQKTDVIADSIGDMIVVMVVMNTIYDNLPLQLKSDSDDKLLIKETMQRLESKYKQDQINTLSEHYFNHYDRRVSFAVGALNALGDETSRIDVFGKDTNIDFMSEAMFSLFRELYNLATAFGLNVNDCLNQAWNEIKDRKGKMIGGAFVKEGDLKDGQ +>UniRef90_A0A387BQQ7 Alkaline phosphatase family protein n=1 Tax=Gryllotalpicola protaetiae TaxID=2419771 RepID=A0A387BQQ7_9MICO +MATLPNAYSQSVSLAAVLASCFAAVERGAPQLPLAPVDAAVVVLADGLGALPLKARAGHARTIAPRLNRATTIESGFPTTTAAALATLCTGVFPGQHGITAYEAVDPEADRVFNHLSGWKTGPDPATWQRVPTLFETHAATGIRSYLVGQARYADTRLTQAVHRGAEYVPAKSIAERMSAAISLARAGRAVVFVYVPELDMAAHQYGWQSPEWTAALEELDAGMAQLERGLGKAQGALLTADHGMVDIADSGKLFFDREAELIEGVRHVAGDYRCVQLHLEPGATAGDLERLAQVWHEAEDDRAWVATRDEAIAAGWFGPSGVADEVLPRIGELLIAARSQVVYYDTRSTNAGNWSMVGQHGSFSPDEVRVPLIGFGAFA +>UniRef90_A0A4Y2A7J8 RNase H type-1 domain-containing protein n=1 Tax=Araneus ventricosus TaxID=182803 RepID=A0A4Y2A7J8_ARAVE +MSKKIRILHPPKSEFVSVYRTPSRKSVPIFIMMKFKFLDINSIPRFPPVGSKSFFAASCDFHVFSYHIETEVHQFRIRDECSVFQAELLCIAQAVNWIRTNENLSSNFLICSDSLSSLYALNCITSPNRLIVKTQTNLNFLHGRGVKVFFSFVRGHIGIYGNERADWLAKEATKLIDFIPVTVRKSFYKSVFKKHVISQWNNLHQISHNAKSTKEFFPSIHGRLKAVHFVPNFRVTQFLTGHGNFKAYLKRFNLSRTDLCSCSSGEIQDVNHLILSCPKFTPARCLLVSTLKKNNFAWPPSFSTLFQNKTCFASFCEFIDGIFPHTI +>UniRef90_UPI0018ED6A80 IS30 family transposase n=2 Tax=Dyella sp. ASV21 TaxID=2795114 RepID=UPI0018ED6A80 +SLTWDRGKEMADHRRFTLATDIQVYFCDPQHPWQRGSNENTNGLLRQYFPKGTDVSVYSQAKLDAVARRLNERPRQTLNFETPAERFQQCVAMTG +>UniRef90_UPI0020CC1823 hypothetical protein n=1 Tax=Phocaeicola vulgatus TaxID=821 RepID=UPI0020CC1823 +MTTLSSIADYVTDKISSNDISLNEYVTTDCILQNKKGREIATNLPPQPCSLAHYKRGDVLIANIRPYLKKVWFADIDGGASSDVLVFRAKEGHSPSFLYAVLLQDAFFDYVMQGAKGSKMPRGDKDQILRYKMPTLSCSEESIGTLFMNIDSKIRLNEQINQNLPKLDHSSEGAEARHVA +>UniRef90_UPI0021123217 secretion-regulating guanine nucleotide exchange factor isoform X3 n=3 Tax=Delphinidae TaxID=9726 RepID=UPI0021123217 +MEREPSATAAAPAAAALFAWGANSYGQLGLGHKEDVLLPQQLSDFCNPGCVKRITGGGGHSAVVTDEGSLFVCGLNKDGQLGLGHTEDVLYFTPCKSLLGCPIQQVACGWDFTIILTENGQVLSCGSNSFGQLGIPHGPRRCVVPQAIEPLREKVVSIAAGLRHALAATASGMVFQWGTGLASSGRRLCPGQTLPLFLTAKEPSRVTGLENSQAVCVLAGSDHSASLTDAGELFVWGSNKHGQLTSHAAFLPVPQKIEAHWFQNEKIAAVWNGWTHLVAQTETGKVFTWGRADYGQLGRTLESHEGWKPKKQDPSVRCSRPSKSTPSSLHCLTGATEQRLLPDAGICQWLVSGSPWSSRLVSSAALSPRVSCGSEHNLAVIEDLVLFQSLAFQVVSPQQCYPSTSQHSGFVVLRMGHWSCHHRLSVSGFRFPARPCEGDVHVTCLPSHDSRFRTKALR +>UniRef90_U3A3Q0 Fimbrial protein n=3 Tax=Vibrio TaxID=662 RepID=U3A3Q0_VIBPR +METMKTFVNNFINDEEGLTLLEYILGAALIVAALLSIGFWDTLASKFTDVASEISGINPTP +>UniRef90_A0A2E3DER3 Phenylalanine--tRNA ligase alpha subunit n=2 Tax=Euryarchaeota archaeon TaxID=2026739 RepID=A0A2E3DER3_9EURY +MDXVDLSPNELKLLKCLRVGTLTPHEASLKSELGEKETMSAASWLRSKGLVNILEESTTFLFPNEEGKKYAEQGLPERRAVEWLNQMGESLVDELPLDDDEKKVVIGWLKRKKFAELEKTEEGLKLIPTGNIDETPDENLLVILSRKPLAESEIDKEGLALLKGRQVLSSKEEISRTFTLTEEGQNFDVDSIDEGMIGELTPEIIKSGSWKDKTFQKYSTETSIESSDFATLHPLTRFTEEIRSIFLQMGFSEIEGDYVESAFWNMDVLFIPQDHPARDLQDTFYLSEPASFVINDQDLVEQVKAIHEDGGETESAGWGSKWSKEKAQQALLRTHTTVGTIRHLSNNPDPPVRVFSVGRVFRREALDATHLPEFTQVEGIIVEPEANFGMLIGVLKEFYRRMGFHDVRVRPAYFPYTEPSLEVEVRFGDKWLELGGAGIFRPEVTAPFGIEHPVLAWGLGLERLAMLHLGIKDIRMLYQSDLQWLKETV +>UniRef90_A0A842MRA5 LLM class flavin-dependent oxidoreductase n=1 Tax=Candidatus Bathyarchaeota archaeon TaxID=2026714 RepID=A0A842MRA5_9ARCH +MSLKSFKQLNFVGTPEDLMQSMQPYLDLDVTFFMLYFGDLPYGDSIKIFAETILKELS +>UniRef90_A0A3Q7RJQ3 complex I assembly factor TIMMDC1, mitochondrial n=41 Tax=Carnivora TaxID=33554 RepID=A0A3Q7RJQ3_VULVU +MAVRPRAPQCFLCGRLGPLPRVFAAGAVAAEAGALAGDQELPEYAESGWDRLRDLFVKDEQQRTSKELENIYKAAVSAGIIGWAYGGIPAFIHAKQRYVEQSQAEVYHNRFDAVQSAHRAATRGFIRYGWRWSWRTTVFVTIFNTVNTGLNVYRNKNALSHFVIAGAVTGGLFRINLGLHGLVAGGIIGALLGAPVGSLLMAFQKFYGETVQERTQKDRKALHELKLEESKARLQFTQLLPEEIESSLQKNQSKDDVKKIEALLNLPRNPSSTNKQDKD +>UniRef90_A0A0F9E616 Deacetylase sirtuin-type domain-containing protein (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=A0A0F9E616_9ZZZZ +MKTIDLFPPCTIENCEDKTPLHKHILDLQQEFLDASERFVAL +>UniRef90_UPI0021BE6A85 DinB family protein n=1 Tax=Deinococcus sp. Marseille-Q6407 TaxID=2969223 RepID=UPI0021BE6A85 +MTQADPRAQASTLAFARLLPKLFRGGQAFLSVEEIISDISPEQAAQQPERLPHSVASLLDHVNWWNRWMLDILESGEAKPYPEHAADTWREVPAGEWNAVKTEFYDLLARIDAHAARPDLSNPVNFEETVGELLADFALHTAHHFGQIISVRQSIGAWPPSGGGDTW +>UniRef90_A0A1S3XUT0 cytochrome b5-like n=2 Tax=Nicotiana TaxID=4085 RepID=A0A1S3XUT0_TOBAC +MPTLTKLFTMEEASQHNTKGDCWVVIDGKVYDVSSYLDEHPGGDDVVLAATGKDATDEFEDAGHSKDARELMEKFFIGELDSTSPPIPELEIVKKAAKNIPQKVKEITKQYWFIPVAVVGISVVVGFLYTRKK +>UniRef90_A0A8T1TPU1 Secreted protein n=2 Tax=Phytophthora cactorum TaxID=29920 RepID=A0A8T1TPU1_9STRA +MKVALSFFVVVLLSPMTGSSWLAAGNWCLGYTRVLVAGLELMVKDCSAFMFTIVGALEYGSGIIQNGRQVCIC +>UniRef90_A0A443J140 Ribonuclease n=1 Tax=Siminovitchia fortis TaxID=254758 RepID=A0A443J140_9BACI +MIIHSIVPHEHIFPANKDDFSNQTECIWNNIPLLVEQDGHKCKVIRIMSSNPSDYLKSEIQPGSHLYINEVHFS +>UniRef90_A0A2T0LCA4 Bh protein n=1 Tax=Planifilum fimeticola TaxID=201975 RepID=A0A2T0LCA4_9BACL +MEFQELQTELYCIKCEENEMHVLTYLNQRLYKARCEGCGHELFISPDPRKVLYDEFLQRIVTKPERISRELKENPRRIVTLPYRVISKPYRMYKEMQGLRQFIAQGKSRNGSKIS +>UniRef90_UPI00203278C4 MarR family transcriptional regulator n=7 Tax=Curtobacterium TaxID=2034 RepID=UPI00203278C4 +MQFVSRAEEAGRTVRVKDLSKHLGLTGPAITGMVDRLEHSGHISRVPNPDDGRSRYIELTDAARRDYARAMDGTNKHLHDLMASFSERERARFVRIIDRIVAAVDLGAPSP +>UniRef90_A0A6A5UJA8 SET domain-containing protein n=1 Tax=Bimuria novae-zelandiae CBS 107.79 TaxID=1447943 RepID=A0A6A5UJA8_9PLEO +MGFVSHPESCVNSLPCLFGSGYTVEGQKTSVEAHGGLQIEVIPKYQDHLRRWFQDTDGHVKTLDLNDVDIDWSQNLNEHDTPASIGLRVGQSVRSYAEPALQRKPLNVEGVAGQRDAVTPQAKYWTSNINASFSLSDPLLVPEFSMWNTKAHAATPATATVTTEAWETTLFSGKKKKAKAKNQWSLGSNEGVYLLNLEIHSSCDTLPEQEPAAEEVLEVQTRDPKAMGLAIDGKIVQDIY +>UniRef90_A0A849VSC1 High-affinity branched-chain amino acid ABC transporter permease LivM n=2 Tax=Phyllobacterium TaxID=28100 RepID=A0A849VSC1_9HYPH +MADVQNTERDSVFAKALKEGIISGAIALGLFCLIVGFRTEQNIRNELILTQRWGLLAIFVLVAAVGRFLVTYTAPMRAERKKLHKVAEAREPSAFRKSFPKIGLGLLFLYPALVVLILSAYQGSMMGGLQASLKYVDNFGIQILIYVMLAWGLNIVVGLAGLLDLGYVAFYAVGAYSYALLSAHFGLSFWLLLPMAGIFAATWGIILGFPVLRLRGDYLAIVTLAFGEIIRLVLINWTAVTKGTFGISGIAKATLFGIPFTPGPTGFAAMFGLPNSGVYYKIFLYYLILCLALLTAWVTIRLRRMPVGRAWEALREDEIACRSLGINTTTTKLTAFATGAMFGGFAGSFFAARQGFVSPESFVFLESAIILAMVVLGGMGSLVGIAIAAAVMIGGTELLRELEFLKLIFGPDFTPELYRMLLFGLAMIVVMVWKPRGFAGSREPSAFLHERKMISGEFTKEGHG +>UniRef90_A0A370FR42 NTE family protein n=4 Tax=Pseudacidovorax TaxID=433923 RepID=A0A370FR42_9BURK +MSASALPLPGRRPKVNLALQGGGSHGAFTWGVLDALLENGRLALDGISGASAGAVNAVALAHGFAKADDAGDPARTAARQAARETLERVWRRVAGVGAPGALASQFMRMLFGQAPAFPSLTTDPWASPYQFNPLGINPLRTLLDQEIDFDALATLDSPRVYVSATQVRTGRAQIFHGAQLTLSAVMASACLPTMFQAVEIDGEPYWDGGYSANPALLPLIENCDSADIVLVQLNPLHRADTPRTPHEIAQRVDELAFNASLISQMRSIDFMQQLLADGRLQEGRQFRQLRLHRIDIDSALDDPLPSSSKLSTDIAMIEQLFERGRHAAQDWLARHIDDVGRRTTIDIQADYVAGAPLPTEPVAKRAPQLRSA +>UniRef90_A0A024U664 TAZ-type domain-containing protein (Fragment) n=1 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024U664_9STRA +MTSTPFSSSTSTAPMTDGGATLSIQLPLPEQVAVLATHHSEIQLSQTEIHADSTTFLSRVQRYADTGKVDVDGLTATDAAALVHILRRLHATFVKQIDCDEIKCDASRKCPKCGASRVPSSPETSPQRNGTGTTPMSPTAASFRLNGSNSPPADVDMT +>UniRef90_UPI0016706687 nitrate reductase subunit beta n=2 Tax=Streptomyces TaxID=1883 RepID=UPI0016706687 +MRVMAQIAMVMNLDKCIGCHTCSVTCKQTWTNRAGVEYVWFNNVETRPGQGYPRRYEDQDRWRGGWELTRRGRLRPRSGGRLRRLASIFANPLLPGIRDYYEPWTYDYRTLTEAPAGDDFPVAAPRSLISGERMDTIPWSANWDDNLGGMPGHGPDDPVLARMSQKVRLEFEQSFMFYLPRICEHCLNPSCVAACPSGALYKREEDGIVLVDQDRCRGWRMCVTGCPYKKVYFNHRTGKAEKCTFCYPRVEAGLPTVCSETCVGRLRNLGVLLYDADRVREAAATPREQDLYEAQLSLFLDPHDPAVAGAAERAGIPLAWLDAARRSPVYDLIATHRVALPLHPEYRTMPMVWYVPPLSPVVESLTATGHDGEDEHNLFGAIASLRIPVAYLAELFSAGNTGPVDTALRRLAAMRAHRRRLNLGERPDASIAGSVGMSTEQLDDMYRLLALAKYEDRYVIPTAAVGDARALEESALGGCSLDFEGGPGMGGGHGSGPFGEASGRPAPATVETFHALRARATDDRPADTAGPGARVNLLNWDGNGRPDGLFPPRTGRDGDDADGDGDGDGDGRRR +>UniRef90_UPI0002DB281B autotransporter domain-containing protein n=1 Tax=Chlamydia abortus TaxID=83555 RepID=UPI0002DB281B +MLCPPPTPEPEPEPPLEGATSLTKLKEANLGSIPSPMGIMHSSVESSETTDNSVFTFEGNSGLTFSENSSDKCGGAIYAKNLKIVSGGPTVFTNNTAKKTGGAIADGGTLSLTAESGDIIFKGNTSNGGTPNAINIGSKAQITDLRASQGRSIIFYDPISFQPEAGTGGTLTEADGTLKINAPDPLPEKSSLPSMGRLMIRAEGDGQPTSKSYTGTVVFSGKSTTKAKEVTNIFLFPSPVELTAGRLVLSDGALFSATSFTQKDADSCVMLEQNTQLQASNSMDLKNLWVNIKDLNSSTFARVSAMGSSGNVNVSGPIIFTVSDPDFYNNPKLAQQLSREFLKISATRGQVTVSDNSNITNDKEETHLGYQGIWKLTWEDSPTGGSGNEKVANLNWQPLGYIPTMDDTQSYTSLVPNSLWGMVADVTAIQRLIEGEANSATGKDIWGAGLSNFFQGKKTHRNRKFRNFSSGYAVGVSSQSLHNFKFSFGFCQLFGQAKDYGETRIHEKILSGSLYTEYSTELLPILKFLAGTSVFKPKILKQVPEDFLVKFQSQSGYFYGDNSMKVRYSDGTQTHSSWENHCYSGDIGTSITLPIKSKDGLLQKATPFVKVQSVYIYQKGFHEKGLRRRAFSHTYLTNISLPLGIKIHGDSLSKDLHYELSAAYVGDAYRHNPKNITMPIVTHVVTTPWLTTATNLQRHAAQFACSGDYALTSYIHLFAQGSIELRKSARGYHANAGSSIHF +>UniRef90_A0A7C1IRV4 Glycosyltransferase family 2 protein n=1 Tax=Chloroflexi bacterium TaxID=2026724 RepID=A0A7C1IRV4_9CHLR +MFLSLIFPAHNEEHRLPPSLMAANAFLAKQPFESEIIVVENGSQDLTAVVAEAFAAEHPRVRVIRERGRGKGLAVRRGMLEARGQFRFFADVDLSMPIEEVSKFLPPQLGGFDVAIGSREAPGARRFNEPAYRHVQGRVFSNLVKWFALPGFEDTQCGFKCFTAHAAEDLFRTQTFDGMSFDVEVLFIARQRGYKILEVPIDWYYRSESRVDPLREPLRMLRDIFTIRRNWAAGKYVKREA +>UniRef90_UPI001E5CF05F helix-turn-helix domain-containing protein n=1 Tax=Streptomyces sp. UNOC14_S4 TaxID=2872340 RepID=UPI001E5CF05F +MADHDETVFFRGGDISALHALVGAEFSPYRLRVTGSCPRAEGSFRRLGRGALSVYELGYGVDADVLPGELPDFYHVHIPLAEHGVLTVDGKEPDSPLSVVGPGQRLVMSWRGDSLNQIVHVPRRTVDRAVAVRLGEPPASVVRFDPSLREENAPVRAWLSVVRAYVEGAEGGLLSASPLAQGHFEQLLVHGLLDTQPHTLGGALRESAAVPPAAVRRAVVFCDEHAHEPISVADIAQAARVSLRALRSGFRAHLGTTPLGHLRRVRLTRAHDDLRAAALGDTAESVTDIALRWGFTHLGRFAQAYRDAYGRTPSQTLRGEG +>UniRef90_UPI001E4F729E glutamate--cysteine ligase n=1 Tax=Blastococcus atacamensis TaxID=2070508 RepID=UPI001E4F729E +MGVEEELLVVDANGRPVPKGPQALDVASRAGEGEDVNLHDRAEHGEVETPETAHLMPELKAQQLELGTPVCSTLDDVRRELRHWRGRADAAASAVGARVAALATSPVAVEPVPTEGERYARLNEAFGLTAWDVLTCGCHVHVSVADDEEGVAVLNRIRVWLPVLTAMTANSPYWRGRDTAYASFRSQVWHRWPSAGPNGPFADAADYHRLVDEVLATETVLDTGMIYFDARLSAKWPTVEVRTADVALRVEDAVTLSGIVRGLVETAAREARAGGAVPHMRPEVLRLAAWRAGRSGLSGNLVHPPTGRPAPATDVLAELVDSIRPALSDAGDEQAVEQGVRAILERGTGADLQRRVHRETGDPAAVVRAAVEATHEDADRATAEATG +>UniRef90_A0A8J3L304 Aminotransferase n=1 Tax=Catellatospora coxensis TaxID=310354 RepID=A0A8J3L304_9ACTN +MTVSHGPESGRPARFPVASMSDLVDRPVRYDLAESTSPPLRLDELLDGDVADRLGALEIGYGTSQGDAELRALIAAGAGVSPADVLVTAGGSSGMFLLAFTLCRPEDHAVVVTPCFPPARAALDALGCRVTPVALSFDDGYRLDVDAVAAALTPQTRLVSLASPQNPSGVRFTEQELRALLGRMAVAAPHAVLLVDETYRQSCYGAAPVPRSTAGLSPRVVTCSSVSKAHGAPGIRVGWLTVTDPALYESLRVAKFNTLITGSGVDELLAAEVLRREEQILGVRRTALATALDTLDRWTAGHRDAVEFVRPDGGALCCLRLRADRYDDQAVRRFHEELAKRETRVGLGGWFGEPDRVFRLGFGHLPAPDFRTALERLAEALAVA +>UniRef90_UPI001BED38F5 hypothetical protein n=1 Tax=Arthrobacter sp. ISL-28 TaxID=2819108 RepID=UPI001BED38F5 +MKSKLLFGAGIAAGYVLGSRSGRAAYDKLKARATSIWDSKPVQDKVTAATEVVKEKAPEVGDQLSEAARRAGTVLSSAIHRDASKSADATSGGTSASVGTSVSSGTSASATSTSGTGASGTGASTGAGAGGDTLGSGHVPAHSTHPETVNLGTTSDVESDPARNDAMGQDWSDEGGATDAGAATNVDSKRH +>UniRef90_A0A3B9ZLU8 ABC transporter permease n=1 Tax=Prolixibacteraceae bacterium TaxID=2053594 RepID=A0A3B9ZLU8_9BACT +MNKSFLILKREYLTRVKKKSFIIMTLLIPLFMAAFTILPAYLASMDDKEERTIAVYDPTSLILGKLEDQGYTKFHYIPEQQYNELRKDFKSGQFYALLYIPENILTTNQAELISDKQITFDIKNMVSGRIGTIIETEKMQQVINETGMPDLEKKLAATKTHIELTTIKLGEEGKAVKSSTEIAMAIGYACGFLIYMFVLLYGTMVMRGVMEEKSSRIVEVIISSVKPFQLLFGKIVGIGLVGLTQIALWIILGIGISTGATFFMGGGSAATAVHAQDIMSGGKAMEQMASSNAAHGNVALDIIQMIGNLNLPLIFFALFFYFIGGFLLYASLFGAVGSAVDSDEDAQQMMFPIMMPLIFSIIMLFPVVKNPEGALAFWVSMIPFTSPVTMMVRIPFGVPVWQIILSMSILVATILGTIWVAGKIYRTGILMYGKKVNLKEIVKWLFYKN +>UniRef90_A0A136MJX9 Homoserine dehydrogenase n=2 Tax=unclassified Candidatus Omnitrophica TaxID=1047005 RepID=A0A136MJX9_9BACT +MAKEVKTGLVGFGVVGTGLVQCLQNNQHQIDDRAGIPIRLKTIADLDILTPRDADTSGIHLTTDVNDILNDPEIDVVVELIGGTGFAYDLITQALNAGKDVITANKALLALRGQDLFNLAHKKNRLLLFEAAVGGGIPIIQALRTGICSTEVERIYGILNGTANYILTRMEEAHLDFDVALIEAKAKGYAEADPTYDIEGHDTTHKILLLSQLAFGCQIRFDDIYREGITRLTFFDLQMARELGYRVKLLAIAKREGDRLDIRCHPALIPLSSQLAAVNGVYNAMVVAGHPVGTVMFYGPGAGGPATGAAVASDLMEVARQIQRGNQRRNDYSFDYRNLAIKPVGESACPYYIKLNVLDRPGVVAQVTAVLAEQSISIASFIQKERREPHEAVPIVLTTHEASESAMELAVEKIATLDSVVERPFLIRIENLQ +>UniRef90_UPI0017897FD0 DUF1906 domain-containing protein n=2 Tax=unclassified Paenibacillus TaxID=185978 RepID=UPI0017897FD0 +MAKGFDCATPLTDSTAAAFKRDGYVFVARYLVPSSWKALSVKEVQSICNAGLQIVSVFETTADRALGGRSAGLKDGAIALDLAAQMGQPPGSTIYFAVDFDATPAQMSSVIAYIKGASEATPGYNTGVYGSYAVVEAVYAAGACSRFWQTYAWSGGKKSSVANIYQYLNDIVVNGIGIDLNESYGQEGWWSTIPADYMLNPEDANKLIGFMKAGYEAANDAAGKEDFHRLANELRKASGQPEQ +>UniRef90_A0A377GHF6 Sulfate transporter ychM n=2 Tax=Legionellaceae TaxID=444 RepID=A0A377GHF6_9GAMM +MLAIVESYRAGLLTSKYWIQNLIAGLIVGVVALPLAMAFAIASGVKPEQGLYTAIIAALIVGIFGGSRVQIAGPTGAFVIILANITAQYGIDGLQIATLFAGFILVFMGFLKLGAVIKFIPDPVIVGFTGGIGVIIFVGEWNDFFGLSVHIPLNAPFYLKLLALIRAFPNLDWSTVGLAGLSLFLILITPKFLKRVPGPLIAMVVATVLQTLFHFKSVATIGSTFGGITQTLPQFHLPQIQLEYAFNLIGPAFTIALLGAIESLLSATAADGMSATRHHSNQELIGQGLANILSPLFGGFAATGAIARTATNIRNGGNSPIAAIVHSIFLILVIVLLAPFASNIPLCTLAAILFVVAYNMSDVPHFIYMIKHAPSYDLLVLITTFLLTIFTDLVVAVNVGVILAMLLFVRRMGQFVAIEQQDHETLKNELSDIILPKNTVVYTIQGPFFFGAAEKLERAFMITHSDPKNIIFRLKDVPFMDITGLQTFIEIIEQFHKRHINVYLCEAKSNVKNKLMNIGVMHLIKGERIFPTLKDTIKKLQN +>UniRef90_A0A0N0UYH6 Lipocalin-like domain-containing protein n=1 Tax=bacterium 336/3 TaxID=1664068 RepID=A0A0N0UYH6_9BACT +MKINLILKFLVLVAIFTFSCKKKSEPTPKDLLTAHIWIGVNLNYNVNTFGFSDAQIVNTDSTAVEFTKDNIVIFYTRDVNTGLLTERNRQTYTLSSDSKKIEISSTDGLLSPEIQASLSVFGITVPTSINIEKITTTELILKGSLQQNINIPQLPIPVPLTANYTWTYRN +>UniRef90_UPI001CF7C5F2 V-set and immunoglobulin domain-containing protein 2 n=1 Tax=Varanus komodoensis TaxID=61221 RepID=UPI001CF7C5F2 +MTGKMKAPAPPHLTLTSATQLPRHPLTGLGACVDVTVPHGQVMQKKGLNVTLPCNYQTSVDKAFMLEWKFSPGSTSPDGGKQILYFTSNTLYKPGAQAKRLHLLQDPPTLGIATIQLTDLRSSDAGIYTCEVNNPPDFYGTSFGQIELIVLMAPSSPVCRGTTSVSVGSNTTLTCNSTEGVPAPIYSWKRLDSKSPLPVSNTVQNEKTGTLELLNVSLALAGIYQCTSSNEFGQKTCQITLQVTAMAQAGVIAGAVIGVLLALLLLVGIAFYVLHRRKQKRNKKAQSIYSANEIREDATAPGISETSLQKKDSKSELHLLESESSRPGSASTTKSQLKHLFI +>UniRef90_A0A6M3IHK1 Putative peptidase n=2 Tax=viral metagenome TaxID=1070528 RepID=A0A6M3IHK1_9ZZZZ +MKIERRCLPITELRTIRDEGQRPKISGYAAVFNMLSEDLGGFREKIDPGAFKKSLGASDTRMLWNHDSNYVLGRKSAGTLKLKEDEHGLKIENIPPDTQWARDLLVSIERGDVTQMSFGFRIEEDKWEEKEGKETIRTLVSISDLMDVSPVTYPAYPDTEVALRSLDEWRAQNDPEHANAAGDHSEDANAPESVPFQALHRRRGLELKLKNERAE +>UniRef90_A0A7L9FI35 Magnesium-translocating P-type ATPase n=1 Tax=Infirmifilum lucidum TaxID=2776706 RepID=A0A7L9FI35_9CREN +MSSEGEWVERDARELVPGDIVFLRLGSIVPADAKVIDGNVLVDQ +>UniRef90_A0A538JN64 DUF5666 domain-containing protein n=1 Tax=Actinomycetia bacterium TaxID=1883427 RepID=A0A538JN64_9ACTN +MGTRTIKAVSAVTALAGVAAITGMVAYERGESHASSATVRYAVHLDGLAVVDGLDHVSRGHELRVAGSYDGRRGTLTITRN +>UniRef90_A0A6L5NWZ8 Methyl-accepting transducer domain-containing protein n=1 Tax=Shewanella sp. XMDDZSB0408 TaxID=2664453 RepID=A0A6L5NWZ8_9GAMM +MFFKKSKAAKVNQSTTAEVLKGSSNRVADKLALTQYSLILCYLPPSLAAQDVSQLTKQLTQRCGDVITIMSSGTISGTENIYNSPDESNVVIHAFPKSMISDVSVAKISIPAHTTDKEIHRHKNSLKSSLKGVNFNFDVDLKDTFILSYFSGLNAFENQTVESILNSGNENFSTHIIGGSAGGKLDFKSAAVAHNGNFSESQLLLVAVKLHPDFGYAINKTHNFAKNRISFVVAKSDNTTRTVTHVLDDNGNLTSIVSYLCSALSCSKQELSAQLANKQFCVDIEGDVMIRSVAAVDLEKESIAFFCDMAFGETIYMVTQEDFATKSNREFDKFTNDLTAKYCQEIDTIIGIDCVLRRLQNDPKVLKQVRLNNVKSHAAFSSFGEIHGQHQNNTSVLVAIYRKQTQSPHASVKRYFVALTEVARYYLAVELNRERFIGELKTSLIDELNHYEGIVVSSTEDLLRLSELSGLIDGEQQTVSQLINELLAKGESQAQIRQDLEARVTELKNSSKQILNVMSSIDAIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRSLASKSQQDIGRSREAIDSVELSIANISKSVDILTTTSVQMEQSIESAMEQTKKIAELTSKSSQIATHGLSSAQANQNEHVRIQAQKDKLTSLL +>UniRef90_A0A265NDR7 Hemerythrin domain-containing protein n=1 Tax=Virgibacillus indicus TaxID=2024554 RepID=A0A265NDR7_9BACI +MAITGPALRHLDSHRSIHQGAYAEARDITDVMNRLFYDNRMEDCLKAANALVEYWETRVIAHADTEDEGFYKELLEKKPELTKEIHMFSRDHDLFRKIVADIKEEISEEEKVTKNMVNQFNALLIIKKHHNKGEEENLFTE +>UniRef90_A0A838GFU4 Carbohydrate ABC transporter substrate-binding protein n=1 Tax=Chloroflexia bacterium TaxID=2448782 RepID=A0A838GFU4_9CHLR +MATSWARLYNQDLFTQAGIEAAPTSWSELIDAATRLNEAGITPCAGSWNPSWFGRHFLSDFYSTEYEALTGCDGSPGQSPQDEAAAIKAGILSTDDPRFMAWWPFFKGLTDLWSPEYLAQELSVADEGAQEDFQAGQSAMFYSGSWIPRTLQTVGIEFELGSFSFPQLTTEDIEFATNVDVAGVVGGPNAAFQYAMSTPESNTTLEEEGKEAAVIDFLHYIGTPEVIEKVVNELGSFAPTWPGTTPVTGLETFAEQANTGLRVVNIGNSSATILPSWERLFGLYLSGNLELEEAANQFQRELDRGVQGYEEDNPDLDIDSCFAS +>UniRef90_A0A1C0A8Z2 LYZ2 domain-containing protein n=1 Tax=Orenia metallireducens TaxID=1413210 RepID=A0A1C0A8Z2_9FIRM +MNKPKFKVIFLLVIMIFLAMMGYFWTSLFNSKEVNLKQDDSTGEALVSEEEAEPITEEAQEVQEVEQNSFTNIAYDSYKDWERLLEEYNYNINQELVEIPRVKVEKFPEDIGEISDVAKKKKIFLSIILIGAYHVNQDLIEDRRRLQSIAKQYSISDKIGLEDEEWLNQLKKEYSVKSDDLQESLDLLLVKVDIIPLSLVLAQAACESGWGTSRFTRVANNIFGEWTFSKMVAGVVPKDRPVNATYKIRKFDTIEESIKSYINNLNSHYAYEELWKIRANLREREERLDSLKLAEGLLNYSQRRELYIDELRDIIKYNNLQKLDSLLEE +>UniRef90_A0A382ZW10 Tripartite tricarboxylate transporter TctB family protein (Fragment) n=2 Tax=root TaxID=1 RepID=A0A382ZW10_9ZZZZ +MPLDRAIAGIFILICLIYGYTAFVPMEEGLLPFELNMTFLPNTLPKYLSVLGIVIGLVIVLQPRYEGASDSDPNEIDQKKLLQYKFSQALFLLGLMLAYALLLRPIGFVTTTTLFLAFGGIILGERRLVIL +>UniRef90_UPI0009B405AA mixed lineage kinase domain-like protein n=1 Tax=Monopterus albus TaxID=43700 RepID=UPI0009B405AA +MDFIDPILSIASQIYTLVENVQANKKRCRRVSDRVRALEELVKSIEKRKTVETSGNVTKALKELYHTLEAAQKLVKKYTLATWVKRILKSSSHEDEFNIVNERLNNAFQVLSGALQLEQGNVLCKVFALASREEEDKMDGKEDDAELGKLLLEHIKDQEEKTKAMQRTFDELKTSVEMVIEKLNKPSITSEGIRMIKLEELKNRRPFMKTPTSEVFKGQYHGFTVAIKRYTGLVNTSPREVRNIFTKEVETMKRFESPNILRMFGICIQDEDGPSPEFLIIMEYCEKGSLRQVLDSDCKLSWLKKACMCLDAAQGLYRSVIWLLDKFICVRNDRNMGRREEKPRYTGVIKKVKCHFECDIL +>UniRef90_UPI001CA7B725 uncharacterized protein LOC122510909 n=1 Tax=Leptopilina heterotoma TaxID=63436 RepID=UPI001CA7B725 +MPSSCIVDKCISASLIRKGRKLSLFKPRESTLELWRQIVPTKDNKELLKSHVVCELHFNENDMDKTFKTIINGVQHEMQKEKISLKVGAVPSLLLSNVKDKLDYSQIIKEKQIIALPSKNWSVVRTSEFIVWINWINNNPHTDRRIILYPDMKIKVFVYGNEVKEKDMDVKSVGDLIALFEKLEKFFPCGSSGTCRSENCIGFIIQKEKHERGRKFVLCAACSKFTKKINRQKRESDKLMKVKCKIEKLYKNSKNTHQKCKRLLDKV +>UniRef90_A0A257RIT0 Peptide deformylase n=3 Tax=Acetobacteraceae TaxID=433 RepID=A0A257RIT0_9PROT +MASAADERADLDSAHAQRYTKNPSFANLNASKFSRFRAGPVCETRQLRHLCIMAILKLARMGHPVLLTRADPVADPTAPEIRRLLADMIETLDDAGGVGLAAPQVHVPLRLFIYKVPERRVSTIEGDEPRGLSAVINPQLTLLDGDPIEDWEGCLSIPGMTALIPRAARLILTGTDASGAKFTRQAAGFHARVIQHEADHLDGILYPTRMTDLRMIGFTDEITKFREDILAVHHNPTL +>UniRef90_A0A6A4KJ17 Peptidyl-prolyl cis-trans isomerase (Fragment) n=1 Tax=Rhododendron williamsianum TaxID=262921 RepID=A0A6A4KJ17_9ERIC +MSSSSDKVRASHILIKHKGSRRKASWKDPDGHVITSTTRESAVAQLKALRDDIVSGKAKFNDSPLVSPIVAPPNAAAISVSLLASAVFSRIRLFRSKIQSPSVRIFYYEAMLSLVLFCKSVPI +>UniRef90_A0A329J1P4 Phage infection protein n=1 Tax=Pseudomonas sp. RIT 412 TaxID=2202161 RepID=A0A329J1P4_9PSED +MNTQKLILGLAFSVLATGAFALPTVHGTSAVAENGSSHTHIERVAADGADRVGANRVAENGSDRTALGRIAADGADRVGANRVAENGSDRTALGRIAADGADRVGANRLS +>UniRef90_A0A6A3LY11 Reverse transcriptase domain-containing protein n=2 Tax=Phytophthora rubi TaxID=129364 RepID=A0A6A3LY11_9STRA +MSPSSTRSRARRRRRMRRRASAASSTPDEVSSVLSGEAPHDCGEQLYTLVNGVTGDVDSDIGLDPLPSLNALLELEEMPVADFGEALKAGDLAEVVMIRPEDELNSSSLLDEAVLEDTKQALNARSGSAILKDPSDPLYSLVVEFGDVVSKVPPMGLPPDRGVRHEIDLVPGTKYCVMRQWPLPKEQCDVIDAFFRAKHAAGLVRESKSPHSTPTFCVRKSNGKWRIVHAFNKLNAATIPAQTPIPRKDVLQNNMVGCMLYSALDLVDGYYQLLMRASDIPLTAVSTPSGMLWEWLAMPQGLSNAPATFNRLVTQLFRPHRAYAQTYFDDIFVHSRAEHGKSDMENHIDHLRAVLECMRANKLYANADKCIFGAEEIPFLECFIGKRGLRADPAKVKAIVDWPVPANQKDLRKWLGLANYLHKYSENYAELARPLPTLLKKDAEWCWDTGQQEAFEAIKESLLQAPILALPDPDRPFSVVCDASDFAIGCALLQADGEGHERVIAFESRQLKAAEKNYPVHDKELLAMKYVLVKFRVHLLGSKPFVIYTDHASLRTATQSPHLSQRMARWLSFFAEYNFEVKYKPGRQNVLADALSRRPDYELAHVTSVTSSISEMIREAYARDDVCVALLRALGSEEFQNSDIKLSARLRARLHRYSLEGQMLYYSTGSDDTPRAVVPHDEDLKNRILYEAHDVPASGHLGREKTYSSVSRHYWWPKLYQWVKTYVSTCETCQRVKP +>UniRef90_A0A850EYH4 Ribosomal RNA small subunit methyltransferase D n=2 Tax=Enterobacteriaceae TaxID=543 RepID=A0A850EYH4_9ENTR +MKRPHSAGGGQIRIIGGQWRSRKLPVPDSPGLRPTTDRVRETLFNWLAPWVTRARCLDCFAGSGALGLEALSRYAASATLLEKDRIVAQQLRKNLETLKAPQGEVVNTDTLSFLAHPGTPFDLVFVDPPFRKGLLNETLHLLEHNGWLADEALIYVESEVENGPPNVPHTWSLHREKVAGQVAWRLYHREVTTGE +>UniRef90_A0A2M7RS75 Methicillin resistance protein n=2 Tax=Candidatus Gottesmanbacteria TaxID=1752720 RepID=A0A2M7RS75_9BACT +MIVKEITDKKIWEAYITQYSPNSLFQSWNWGEVAKKLDDRTNNTKLWRLGFYLNNKLFGIAQVVKVKAKRGIYIQVRHGPILSEWSKKNILMVTDYLKKIGCKENAYFIRMNPLISSSEDNKQIFKEIGFIDAPIHAMDGELVWVLDLNKKKEEIFSGMRKTTRYLIRKGEKLGVKIFKSQNKEDIDNFLILYKKTATRHHFIPHKGIKEEFVTFLKDKQIILFRGYYNNRLLSAALILFYNKQAIYHHSASIEQKVPVSYVLQWEVIKEVMNRGISIYNFWGIAPEDNLHHPWVGLSMFKKGFGGRKVEYLHTKDFILSPKYYFTYLFEYGRKIIKRY +>UniRef90_A0A3D0LW13 DUF4870 domain-containing protein n=1 Tax=Betaproteobacteria bacterium TaxID=1891241 RepID=A0A3D0LW13_9PROT +MSPSADDPPFPECPDPPGQTLAVIAEVLYLMNLLLLPGFAFLILLGLYFKEGGAPQLARCHLRQTVAASLWAVALLGAANGLILLLGGYAMPATWVVVILYFTVCHSTLVLLGVLGLAKAMAGRTFIYPVVGRRCDG +>UniRef90_A0A5C9DQB6 CopG family transcriptional regulator n=1 Tax=Spirochaetes bacterium TaxID=2202144 RepID=A0A5C9DQB6_9SPIR +MKNITLSMDEKVLRAGREYARRHNISFNVLVRRLVEQAVLSTKDSWLDDTFSLMDTLHASTENVMWTREELYRV +>UniRef90_A0A438CFM9 Beta-xylosidase/alpha-L-arabinofuranosidase 2 n=1 Tax=Vitis vinifera TaxID=29760 RepID=A0A438CFM9_VITVI +MSGGGFDISFAKNDDKIASILWVGYPGEAGGAAIADVIFGFYNPSGRLPMTWYPQSYIDKVPMTNMNMRPDPASGYPGRTYRFTLGKPFTHLEMD +>UniRef90_G1PVF8 Synaptotagmin like 5 n=10 Tax=Vespertilionidae TaxID=9431 RepID=G1PVF8_MYOLU +MSKNSEFINLSFLLDHEKEMILGVLKRDEYLKKVEEKRIRKLKNELLEAKHRSGKIQQETSRVCVYCQRNLGLIFDRGNPCQACSLRVCSECRVSDLDGSWKCTVCAKVAQLRIITGEWFFEEKAKRFKQVNVLGTDVVRQSILRRNPGGAKEIQSQEKNHQDAEKSNTSPSTGQKASHDESKEKGFLLSKFRSAARGEIIITPNTESGWSYSMDLDSRNFRHLKSAPSSDRRNTGSSDLNDKEVGPGTLKSSQSSGMTPVTHRSPAPSPCNITPVISREHGFENSLDLAAIEGTSEDFTKNHCTNTSGTPSIAVSRASLSSDQSQSELDLSGSFKEDLKDTVNLRSKYVPGALDKDLDSSEETEESIDDVVSSRFSANTHSLASGLSRNSQAGSDKKWTYLNVPDIDSDTASLNSMLSVYSETGDYGNVKVSGEILLHISYCYKTGGLHIFVKNCKNLAIGDEKKQRTDAYVKSYLLPDKSRNNKRKTKIRTGINPEFNETLKYTISHTQLETRTLQLSVWHYDRFGHNSFLGEVEIPFDSWNFENPSDEWFVLQPKMELSTDIGLQYKGELTVVLRYIPPDEYLMFPPGQLQAHTGKKTFKRGTKKPPVLSGGILEVLIKEAKNLTVVKSGGTSDSFVKGYLLPDDKKVTKHKTLVIKRSVNPQWNHTFMFCGLHPQDIKNVCLELTIWDKEAFSSNIFLGGVRLNSGSGVSHGKTVDWMDSQGEEQHLWQKMADNPGTPVEGILMLRSSMGKRQL +>UniRef90_A0A1G4YLJ9 Acetyltransferase n=2 Tax=unclassified Nitrosospira TaxID=2609267 RepID=A0A1G4YLJ9_9PROT +MNYDVFNGDADGLCALHQLRLAYPVKAELVTGVKRDIKLLDRVQAGAGDWVTVFDISLDSNRSRLMQLLEAAVHVEYFDHHYAGEIPRHINLVSHIDVSADVCTSILVDRSLEGRFRLWAVVAAFGDNLGQSTRSLVGSMGLAESQIEQLAGLGKYLNYNGYGDSVDDLHFHPAKLYEEMKPYPDPFDFIARSTAFNLLAAGFRDDMAMAGSLLPLSEEPCHAAYLLPDAPWARRVVGVFANRLATDHPSRAHAVITPTRHGDYAVSVRAPIAKPEGADMLCMKFETGGGRKAAAGINRLPMDELDRFLAIFAEQFD +>UniRef90_A0A104MTA2 DUF2384 domain-containing protein n=17 Tax=Burkholderia TaxID=32008 RepID=A0A104MTA2_BURPY +MTRHAHAIKGTVAILDVETEAALRSAVGAATMLGPDRARALLRLSDEQLGHLFKIGIAQAIDLAATVTFGIAAAATRDKKKSADPARHVKPAARTDGVPADFERGALSERQTLVAEGRLLPAIEVRVGLGITRQALSKAVAAGRIFTLDVGAGQYYPAFYLAGDIDRKTLGKVAQRLGSLPGWSKWQFFTAPKASLGNITPLEALSRGKVEQVERAAAAFAER +>UniRef90_UPI0021C2958F uncharacterized protein LOC126978868 n=1 Tax=Leptidea sinapis TaxID=189913 RepID=UPI0021C2958F +MSFLLIYPAVAALTLFIIVVIMVMLRFGATCCKLRHTAFANQEDWLEEEAYEQKVSYA +>UniRef90_M0NT14 DUF3194 domain-containing protein n=1 Tax=Halorubrum kocurii JCM 14978 TaxID=1230456 RepID=M0NT14_9EURY +MPSESTDEPTDEEVVRTAAEAAEGVVFAHYDQSAVTDLDVTVTFEEGVLDVDVYLNAPDDPDPDVVAREAAETAGEAVDELFAA +>UniRef90_A0A8C6TNC3 THAP-type domain-containing protein n=1 Tax=Neogobius melanostomus TaxID=47308 RepID=A0A8C6TNC3_9GOBI +MPSACYAMGCTNALSQKKGLAFYKFPKDPVRRQKWITRDEPTHANVRKRQSFVYYLPFL +>UniRef90_UPI000522A661 ubiquitin carboxyl-terminal hydrolase 15-like n=3 Tax=Amniota TaxID=32524 RepID=UPI000522A661 +YLVDSRWFKQWKKYVGFDSWDKYQMGDQNVYPGPIDNSGLLKDGDSQSLKEHLIDELDYILLPTEGWNRLVSWYTLMEGQEPIARKVVEQGMFVKHCKVEVYLTELKLCENGNMNNVVTRRFSKADTIDTIEKEIRKIFNIPGEKETRLWNKYMSNTFEPLNKPDSTIQDAGLYQGQVLVIEQKNEDGTWPRGPSTPKSPGASNFSTLPKISPSLSNNYNNMNNRNVKNSNYCLPSYTAYKNYDYSETGRHNEQPGLCGLSNLGNTCFMNSAIQ +>UniRef90_UPI000401F0EE valine--tRNA ligase n=1 Tax=Desulfuromonas sp. TF TaxID=1232410 RepID=UPI000401F0EE +MEPKLPKGYEPREVEEKWYAVWEQAGFFRADENSPKPHYSIVIPPPNVTGVLHMGHALNNTLQDILCRWKRMTGHEVLWMPGTDHAGIATQNVVEKQLAGEGKDRHELGREKFIERVWQWREESGGQIINQLKRLGASCDWERERFTMDEGLSRAVREVFVRLFEEGLIYRDNRLINWCPRCHTALSDLEVEHEEKKGHLWHLRYPVQGTDRFLVVATTRPETMLGDTAVAVNPGDERYADLIGRKVLLPLVDREIPIIADEYVDREFGSGAVKITPAHDFNDFEIGKRHDLEFINILDESGNINENGGPYDGLERYEARRKVVADLEAQGLIEKIDDYANAVGECYRCRTVIEPYMSKQWYVDVKPLAKEAIAAVEEGRTKIVPQQWEKTYYEWMYNIQDWCISRQIWWGHRIPAWFCDACGEITVSRQDPTECAQCGSADIRQETDVLDTWFSSALWPFSTMGWPDQTETLAKFYPTSCLVTGFDILFFWVARMMMMGIKFMGEVPFTEVYIHALVRDAQGQKMSKSKGNVIDPLTVIEEYGTDAFRFTLAAFAAMGRDIKLSTERIAGYRNFANKLWNASRFALMNLEDFNPEKVDLDKLELTLADRWILSRLSETAKEVDTALTGYKFNDAANALYSFTWHSFCDWYIELIKDELYGDDPQAKACAQAVLFTVLEQLLRLLHPFMPFITEEIWQALPGRRPEKSIMHAACPNGEDLPVDAEGAEKMERIMDVVKAIRNIRGEMDVAPSRQIAAVLDCKSESSAAVMREGEGYVKALARVNDLICGVEVERPAQAATQVAGEVEILLPLAGLIDVGEEEKRLEKEIAKVEKDVAMFSKKLSNEKFVSNAPPEVLEKDRGKLAAAEEKLGILQESLKKIQALK +>UniRef90_A0A4S4L702 BAG domain-containing protein n=1 Tax=Phellinidium pouzarii TaxID=167371 RepID=A0A4S4L702_9AGAM +MAYFCTPSSYASTFYDSPFSRRRPSPPPTTYYSRSNAYDPYVRAIAEEQVARSALQDAIQREQEARRRRTQEEARARARAQETARARSRAARQHAGMFYGLPARYQYADYPECGYGYGYEYGDEGDEDDEIKDTYSPFIHFYSTPEFVSKQGSAPPMSRSSSLRPSQQELRAKETEGQSSSKESTPKVSIPINTPSSQTSQHSDQVRNEAVLKIQTIYRKHVARKAALTEIESIRQRFETQCNAFSFPSVLDFQDDPASPEASAAPEERPRLAYTAHNTPVHVHEDALVKMLQALDSVESHGDATVRDVRRTLVRAVEEELGRVDAAVRRVWEELVVQAKAESHKTTEEPMEVLLDLASESDTTVEAVVDQPALAADQALPTMDVESASIAESIVQPVAEKTESGMEEPEARTFPPAEKTNIESTTSTAAESPFDEIAIDDVPIPSTIDNALGQMAHPISTLAPPPPAADVVFEPIPISEPPLNADSETDSEVETPSQPAVAFPAAQVVSAEDRQDDREEEDDTVLVEETLKTPDGYEKNSETAVVDTEFVLV +>UniRef90_A0A401PBY0 Tripartite motif containing 62 n=7 Tax=Chondrichthyes TaxID=7777 RepID=A0A401PBY0_SCYTO +MACSLKDELLCSICLSIYQDPVSFGCEHYFCRKCIAEHWSRQDQSSRDCPECRRSFRDPLLSPSLKLSNIVERYSAFPLDAILQAQRNSFPCKDHDKVKLFCLNDKCLVCFFCDEPALHEQHHVTNIEESFEEIQRELKDQYEVLQDSEHGHVKALQLLKRQLSETKSSAKSLRATIAEAFERLHRFLKEKQKSMLEELETDTARTLNDIEQKIQRYSHQLREVQEGMQILQEKLVEADKLLFLEGINITLERLKGKIHETNLTYEDFPTSKYMGPLQYTIWKSLFQDIQPVPAALTLDPITAHQRLILSDDCTIVAYGNLHPQPLQDSPKRFDVEVSVLGSDSFDGGVHYWEVMVSEKTQWMIGVALESVNRKGSIQIQPSRGFYCIVMHDGNQYSACTEPWTRLNVKSKLEKVGVYFDYNKSLLTFYNADDMSWLYTFREKFTGKFFPYFSPGQSHANGKNVQPLRINTVRI +>UniRef90_D5ASH9 Membrane protein, putative n=3 Tax=Rhodobacter TaxID=1060 RepID=D5ASH9_RHOCB +METLPILVPPVLNLVSAIAVGALIGTERERRKGEGPARSPAGLRTFAIASTAGAVGFSLGGAVLLAVVAASVAGLLAVSYGKRPHQDPGLTTEIVLLLTVLLGGLCIPAPQMAAAIAVTVTVLLHLKAWLHTLVTTLISKDELDDALIFAAATLVILPLVPDRPMGSWLALNPHSLGIVIVLVMAIGAAGYLAVRLFGARFGLPLSGALSGFVSSTATIGAMGARALQSPEMRAACVAGAVLSTVATVLQMALVLAAVSLPTLRQMILPLVFAGVTAVVYGVVLTLAAMRHPAPEAPGPGSAFSLKTALIFGTVLALVLVLAAGLQAHFGGSGVLLAATAAGLVDTHASAISVATLVAAGKVAPEAAAVPILAGLSANTATKILVAAISGGRGFALRVVPGLVLVILAAWAGSLFW +>UniRef90_A0A7S3BTX3 Protein kinase domain-containing protein (Fragment) n=1 Tax=Prasinoderma singulare TaxID=676789 RepID=A0A7S3BTX3_9VIRI +GAAPSASPPRALPAAGGLGPRRSQQSTVPMARTALRAPTARSTARAAARSSRGSRGNHRRAVAAALVGPEAAGALDALALAQQAAEHGVHHAALPSLAEGIGPQCALYDCGDMTYRSTLDLELRKELGGLTLQGKAIIGGVGLYLLATPGVLWGFIDTYIVRLLQRALSPAYRLRDFELGQRLGKGAFGEVFRATCLREGASEDQVVLKRADDYGAEEVWMNGRVSRLPVSTNFARYLGAFRETGRDGSEQTWLAWRYEGDFTLSTYMRRKDFPECLEVSLLGESLEGESKARRRSAVVRELMRQLFEALDAALG +>UniRef90_A0A812J0M9 Mfhas1 protein n=5 Tax=Symbiodinium TaxID=2949 RepID=A0A812J0M9_9DINO +MQKLAKHQNALGQYSSLGTEVFFTEFGADWTSYRSARNRRRVDFSGPQWSLETLEGEQENGLMHKQFIREHIEVLNLAKNKLTDIGCLNAMKDTRAFEFRRLQILNASRNMLTFVKLVNPSLTEINLSHNELIKLPDFSSLTQLSKLLLSHNYIDDMLDQFGQLQKLRVLDLSSNRFFWRPTLFKKQLGHLERIHLEELRFWPNPFAEGFKEYQFITASTLTSLTSLDGFQIDSDLRFQLRVQADQLQLNIADFSIFDVRVEDRGKVGEAEEKCSCRGTSRHHARALLGPHSKHFIPAFLGGREQEVAGVVGILETLKLGDRNVPPQQSGGKVPLLTELIEAMRKSLDQPNDLLKHVYDLEQKVVASDFASGTCHMRHCMQLSVLCLALKLQVLQHPSCNRTSSQVSCMWNAHFWDRRRLMLAEDGERKQRSYMKPAEADRAAAEFADKMQQVLGRFESVQDVLVMCLVRMLGCGNRQLSERCGTLLAEWVDANAEELHDRMDSMSEALFNDLRHALVVGIKSVNEKPMACYEASHGAREPEDDSELEQTEASWHILAALRRFGPSRLYDKVVSPWRARVLRPFLPALCRETKEVLGPDQPPDRWSKYQGFDSFSEDVAEVLEVQEKNLVSCEEKCVRQGFGGFVVEATDELGMVKVCFKQQSPQTLASLRRSSAKRTLHVRPLGRPPKRPNKAAEEGGGRNHAWEAWVDGLAVLVTATSDSQNAAYCVSYFDAHLAVTKHESDKQGFTEAALLGSSEANNAFVRLLQLARNLMQAYGDAGLKAARHFLEAKLHTNCWARARRRLQEGGSPLPVSRLSEMNPDDVALISELVGILHTMVKCGDLEISNQAMNDILAENGMDVFEMLLEVAASSADPDPLFLAISYESVYVFVQSDIMRPRVLSKVISRLRETAILLPYIRGPYIKDVPNEKYMQLWCKCELKYGMKNDARERLEKRYTSLDPDEHSQWRELVPEIRELQNTMMHRTLLGIVKIIQLFSDLARRDDSPPSLKMVTDNVCGGFVKSKKALGEIPGDLLNANDRERLLIGPTTGLVTCPDFDVRVESLICIRHVLEATPDQFDLEEMGWLLNYLTSVGMGIGKQGQFLTEVIDLIKMFVRNNSRTGQSFRNKFAKYAIRECFEMLTVNSRRETHGNKEEAKAKADLTAKIIELLKDCSRPLSGGLRKFLRRVDLLQSIREVLQQEERTSSNPATQILDIWTGRDIRQVLLPIVTSPAFDVHGPVVHAALMRLADVLQAYSWTDVPPTDEAGPWPGLTMLYRLLDYRDAIENEDSGYQQEYFMNSRGLDPLLDFAHRFFAANEDLNILLNRVQDKLAQELGEKERSLRAKWEGRQQDVHQSEASVKTKQEEQTMSEVVQDCLTARLRSLNEGAAAHFRCNLNQYDQKKQEFSLSKLAKVYQNYWKDNENRANQEVQERGDAVYELLRIPDKIAIDGQLRDVQDLGRVPRKQRRIRQPHRDFEKLMYQALSAHKIMKQMLCDSSKRDHNEVARWCQYEPDANGPPSVLAIGLLDFLQDNQALAIDAGLRPREELLVQDKYKYFRRHDRRTNLSCIVLEFPDARCLLAALQEFLKRAQRLFLYQVRNRFRLASDLGEYCIALKFQLQLKDSSIHYSELRMCLSGKSKKNNTVQQYRDTMRKVEEILQSSCDVPTSETTLVAQYLSTMLRSRSIHHSDIIFLRCKDVNLEVDGEEVFAQSAELTSCQLFVIEREAGDGVVKTGDRIRLKSKFTQKYLDVHASGHLRCRLADFSEDYDMTFTVEAIGCRDDYALSRCGMKGSLTEFRSLHTETSLRLKVSASNFVTVRQGANFLTSFGEKLSVKSEPNDAAHEAGQVFTIFRDGALLLDFHSTHSGSRAAIRTLALETSDEILQKTMMEAHMRTEISNGDVDVQGSSFRTVPPEFKTMMWSIAGHFRHVGHSKHAASHEASSLHKLWTRASKNLAAILRCLFVMMEFPQCVGGRRYVLDTFATRMTQHSSLPRIIALVSAVQLVRKEKMPDGELDLTCALLPKKFMRFCSALLSNLWVCQKPDEIEAIFTVPREQERHERELATIDRERMHLLSMVGSYTCDMVVKPMLDKLRVAGQRPLSRDEVLVFQDFASLCMALVQSIFDNEMRCLSLSNQASHHHHHHGTTAISDKERAGPQSGQSPSHKDAVAIPQNVDDGEQGDALNTNVLLASNADKRRANTLSQASWTYVTHFRAGISSATLAVMTRQDARAAVVAEIIPPITIKALVHLFLYALHQEAIAFRSATRDTEIPVRVISGIINQCVTALAALMTLTGKSNAEVGPTEDAPDASGSCDYDVCEAISQAMTEGAQLVPRARVAQLQAERGADCLRAHVQKMMEEGSFEFSSHRGPKLNLSTERVSTVGFVWTRLAGDIQACASPCFYDKQLFLNDRPRIVMHQDTRCLLVTTTRFRMILLRVPARASVMPQPADLHVLSEPRNMQDLKRVIFDLRTLNSVLESVKDRQVSKCPQSFVRMRQILCLVWDGEEGLKFQRLVFESSGRRRSFQEVLRKVPRKQQDTGEEDGKKETASIRMRARGILESAVKSTSLESLRETCQVRRGGIPLVSVTFVQSTGGLGLNAQLDMLVLTRCSVTVVSFNSFWSKFWRSDDESHYEREVTQASLDTDSEDDRLPDFSESVVATSNDHADKCEALHGPWDLEDLQGVWFLSEASPKVRLQFGSTLEVTFLSDGERQRFRRHLATILAEGAVPRAGKASQAWAVVPTDKTDIKTIQKETGAVQNGRLALTRGEGDDVARDVLPSVCFRSRCALWSGSPHKASSGKFAEHATFGGEADALNKRVACTGDDSEEDEWVVLLEVVEGLRSARAAFSDAEYQVLYSQVHSAWDPGRRFCNPLQRGAVRFCLEEHHVHAEELLASSRILSVAASTLTTLLLQAPSESLFWSSDEANASRDAERLVEGAVRSTFRNISSSMQHHLHLAQELDSFSLTEGQLKAFVSILEHLVDPRVQDLGLAVAKALDQYFQGGVTGEQDVKLLLLQATQPRIVEIRELWHEVKLGALHGPGLGWGVAVNPANLFVLQSFGQPVTYQPRQQEHSQAFWVAAATFEQARVLLLHLEALLRTFGMTINAHGLLQSLSGSSEPFLSQLLACHSDDAEAAEMGTEHDLSRYRRMACSIKYGSAGIDVIASIGGSHPGLAPAQS +>UniRef90_A0A6A6N897 Receptor-like protein EIX2 n=1 Tax=Hevea brasiliensis TaxID=3981 RepID=A0A6A6N897_HEVBR +MAWNQLRQWSGIACHNTTGAVLAVDLPNSSGRQPLGGEIRASLAKLKSLKHLDLSGNNFTGKIPHFLSSLENLQYLNLSYAGFSGAIPPNLGNLSSLQFLDVSYWGLTVDNLEWVSGLLSLKYLAMNSVDLSKLGGEWIEPLNKLPLLSELHLEYCGLSGFSYSLPSLNFTSLKVLNLQGSLFKAKLPTWLANISSLVSVDIGNSWLTGRIPLGFGELPNLQSLKLNYNLKLSASCFQLFARSWKKIQILDLSINGLHGVISEAHFHRLGKLEKISLSENSFVLNVSSIWVPPFQVIALEMGSCHLDPLTVKCSNDSNNGGDNYPDGGGKADQTDNGNGFIDKWFYMSIGVGFAAGLLLPYLVFAMKRSWGGVYFAFVDGTAYRLSSEKMKAAARRRNRGAR +>UniRef90_S7SN88 Polysaccharide biosynthesis protein n=4 Tax=Geobacillus TaxID=129337 RepID=S7SN88_9BACI +MRTVASMVAPVSNALYPVSAKLFKKSNDVAIKYLKKFLFIGSLVFMLAGVGMVVFSNVIVLVMTGEENIEIQYLLLIMAFIPLSIYINNIYGTQIMLNLYLEKVFKYLIITNDISLPVLSYILTLNFNLWGASFSLLITEILLTVSMVVYVEFIKKQGFLGVLKK +>UniRef90_E6QXG0 Secreted protein n=1 Tax=mine drainage metagenome TaxID=410659 RepID=E6QXG0_9ZZZZ +MWRQVYKWLLIYLLRWMGYWFDEMGSCGSFGTVFRVANDCNGVVCWFGIARGAIVHLVALSFDYGLESFRYLAGALAVWYSLSSVGSGKFTCCTEYCDGQAPIGLGNHCVACVVAADGDGD +>UniRef90_A0A3N7FFK6 NADH-ubiquinone reductase complex 1 MLRQ subunit n=2 Tax=Populus TaxID=3689 RepID=A0A3N7FFK6_POPTR +MASSRWIRPEVFPLFASVGVAVGICAMQLVRNICTNPEVRVTKENRAAGVLDNFKEGEKYAEHGLRKFVRNKTPQIMPSINGFFSDPDLPTN +>UniRef90_B8A485 PHD finger protein 3 (Fragment) n=1 Tax=Danio rerio TaxID=7955 RepID=B8A485_DANRE +MASRHHADHEMTGAGVRQSPSDGEHNQSGFLQDRRQAGQMQRRQTASRGRVRGRRLGPARKAAESYNRESTCSEEHDRDNSPDEKREALLSRRF +>UniRef90_UPI001F4BB424 secondary thiamine-phosphate synthase enzyme YjbQ n=2 Tax=Belliella TaxID=232244 RepID=UPI001F4BB424 +MKLFQKEIKLRSYPRGYHLITDVIQSQFPEIKLVHQGVLQIFIKHTSAGLTINENADPTVRKDFETFVNELVPESYPRFIHTYEGSDDMPAHLKSSFLGNSLQIPITGGKLNLGTWQGIYLCEFRDFGGARSLVLTAFGV +>UniRef90_UPI000F8ECADA GntR family transcriptional regulator n=1 Tax=Pararhodobacter zhoushanensis TaxID=2479545 RepID=UPI000F8ECADA +MNADAPSGPEALVRDVLQGLAEGRFVPGQRLAEPDLMARYGLGRSTVREGLGRLAASGIVVQAPHRGAQIRLLGRRAAQDVLRVTDLLLGLAARQAAEAVAAGADPAPLIAAARDYDAAVPGERARIRARYYRALTTLAGNAELDRLLPLLQVHLIRAQLRLNRPPGRPARTALVAAVAAGRPDAAEDAARSHIRALIAALPNLPDNAFAPD +>UniRef90_A0A7X9B2E4 Leucine-rich repeat protein n=1 Tax=Lentisphaerae bacterium TaxID=1932692 RepID=A0A7X9B2E4_9BACT +MKKLLQRKRRSASTLLAALMTFFLFVGASARGQGAPDPEKDYAYEPYSYGSASGVIITAYLGNEEVVTTPAHLGGQPVIAIGPGVPRVLIDQDMEPDWGTKGFCNTPVTDLTVSEGVLFIDDAGLGNDALTRISLPASLQELGGNPFFAQYNAPNAELVITVAAGNPNFAIEPNSGALIQNGTHLIFWPTLAARAAAVDGLLTIPDGVTHIGTRILAWNRYYDPDARANVYAFTRIAFPAGVTHIADCAFYACHLESLTLPTSLTSLGLWVSFTALDLPASLAHLGGHPSPHQGHLR +>UniRef90_A0A1H4NAP5 MFS transporter, AAHS family, 4-hydroxybenzoate transporter n=1 Tax=Beijerinckia sp. 28-YEA-48 TaxID=1882748 RepID=A0A1H4NAP5_9HYPH +METEALNVTSLIDDRPIGGLQIAVIILCALVNMLDGIDTQSIGVAAPFIAEGLGIPVAQFGPIFSAALLGAALGAIGFGAVADRLGRKPLLLVALLLIGVFTLLTAHASSVKWLVVYRFLAGAGLGGATPCFIALTSEYAPARNRAACVTLMWAGFPLGAMLGAFANSFLLPAFGWRAIFYIGGLLPLIVAMILIIWLPESLKFLVNRGAFDAARRILQRMGIKTEPGTKLTTNEHKQEGLPLRQVFSEGRGLLTLLLWVPFFISFGILTVAVLWTPTLLRLNGISPAMTAFVVAFNGLGALFGQGLAGRLVERFGALRTLVPAFILGALATAGLGYGASSVAAASFFIGLNGLFLGLASGGAIALAALLYPTAVRSSGVGLGMAMGRFGQVVSPLIAGGMLGAGFNAGQIMVVIGSGALVGALFVIWFRILAARRHIATVGTEASTG +>UniRef90_A0A848GUV0 Signal peptide protein n=1 Tax=Ramlibacter agri TaxID=2728837 RepID=A0A848GUV0_9BURK +MKLAVLALSLLACGSAFAQAAATAPEPDYTASVNIGAVTDYRYRGISQSRLQPALQGGADFAHKSGFYIGTWASSIKWVKDAGGNADAEVDLYGGYKFNGGPVAFDVGALRYLYPSSQLAVSPNTTELYVSGTYGPATLKYSHAITNLFGFADSKNSYYVDLNATFDTGYWGLTVTPHIGYQGIKNNSGFSYTDWSVALGKDFGNGFSASLAYVDTNNSNYRSPDGKDLGRATAVLGVKYTYSF +>UniRef90_UPI00214A619A hypothetical protein n=2 Tax=Lachnospiraceae TaxID=186803 RepID=UPI00214A619A +MIRNIYTKTLDSGPITPVSARKEKEKALSWRNTLMEHQKHLDKTLSQCISEDEYRLTAMELDCLEHVIQLDDFYDFCTDYMCEHGIDTVVDIGCAYGHQSEAFLEENLGYIGIESSGDSPKWNIDKCMYLTEKYPCKIPDGCRFAVSNMCFEYFINDYEALAHDFDTVILSGLGKNTKVFELFDVEEIHYRPLIDSNAIWNLFILTNKHIGD +>UniRef90_A0A0D6A1E3 Transcriptional regulator n=1 Tax=Lactobacillus acetotolerans TaxID=1600 RepID=A0A0D6A1E3_9LACO +MTDVVRKDVKQRLENGDYSCAKELTLSMFSGKWKIVILFHLGTDGPYRFNQLMRLLPKTSHKVLTNQLREMEEDQLISRTVKSDS +>UniRef90_A0A2H6N9Y6 Cytosolic carboxypeptidase 1 n=1 Tax=Micrurus lemniscatus carvalhoi TaxID=129465 RepID=A0A2H6N9Y6_MICLE +MWHCTVKVLKYGILLPFLNRTKIAQDIERLIHPNDIIDRVVYDLDNLSCLVPDEGDVLKFNSKFESGNLRKVIQIRKNEYDLILNSDINSNHYHQWFYFEVSGMRTGNAYRFNIINCEKTNSQFNYGMQPLMYSVQEALGGRPSWIRTGTDICYYKNHFSRSSIAAGGQKGKSYYTITFTVTFHHKDDVCYFAYHYPYTYSALMMHLQKLESTNNPQQIYFRQHLLCETLSGNNCPVVTITAMPESNYYEHICQFRNRPYIFLSARVHPGETNSSWVMKGTLEYLMSNTPGAQNLRESYIFKIVPMLNPDGVINGNHRCSLSGEDLNRQWQNPNPDLHPTIYHAKGLLQYLAAIKRLPLVFCDYHGHSRKKNVFMYGCSIKETIWHTNVSAASCDLIEDLGYRTLPKILSQAAPAFCMSSCSFVVEKSKESTARVVVWREIGVQRSYTMESTLCGCDQGKYKGLQIGTHELEEMGAKFCTGLLRLKKLTSPLEYNLPSTLLDIENELIESSCKVTSPTTYVLEEDEPHFLEEVDYSAESNDEPDIDLANNAGDYEPCLHEDGLSDSEITRTHLP +>UniRef90_UPI00197F5B0B hypothetical protein n=1 Tax=Pseudomonas viridiflava TaxID=33069 RepID=UPI00197F5B0B +ISHKIQFLQWVAGCLIRGGLPAMNDDAVLLTYRVDCIAGKPPPKVKCLPRDSATAKTWWCLPQSEFAAR +>UniRef90_A0A1E5KYP1 Zn-finger containing protein n=1 Tax=Enterococcus rivorum TaxID=762845 RepID=A0A1E5KYP1_9ENTE +MGQVWMERLMRWNAKLQHFLKGRYARMDQLNKTMLIGSIVLIIANSFLPTSVLRWIGLALIVFIYYRFLSKRIYVRANENTKYLKIHNRIFGKIKKIKLRFQQRKIYKYFTCPSCKQSLRAPKGKGQIKVTCSKCHQQFSKKV +>UniRef90_E3MKT5 Eukaryotic translation initiation factor 3 subunit A n=1 Tax=Caenorhabditis remanei TaxID=31234 RepID=E3MKT5_CAERE +MAPNYFQKPEAALKRAEELIQVGKESDALDTLHDTIKARRHKQWTQTHEAIMIKHMELCVDLKKQHLAKDALFQYKALTQQINVKSLETVVEHFLKLAESKTEEAQKQSIEKVEEIGDLDQGDVPERLLLAVVSGAAAQDRMDRTVLAPWLRFLWDSYRNCLELLRNNAQVEHLYHQISRHSFSFCLRYQRRTEFRKLCDLLRMHLNQIQKHQYAPNVNSFRVKLTSPESLALMQDTRLVQLDTAIQMELWQEAYKSAEDVHGMMQLSKDKDKRTVKPSSYVNYYDKLALVFWKAGNSLFHAAALLQKFIIYKDMKKSFTQEEAQEQATRVLLATLSIPEGSDSPSDLSRNLDIEEQHVANMRLLSNLLRLPIAPTKNGILKEAARIGVPEASGQIAKDLYKLLESNFSPLKVAKDVQAVLDTITRPDHQQYVESLQAVAAVKALKQVSVIYEAISWERIRKIIPFYSDLALERVVVEASKHRIVKAQIDHRADCVRFGSSDATLAGGVDECDNNEGFTGDDTQLGVEGVRNHLEAMYTRLRVLVEGLDAEKRRKEMVRKIENHVTSYEKNRPTEIDRIHRRKKMLENYKENWERVKAEKTLQAATEQAKREEAARAEEMKRLEEQNKESERKRKQAEAEEIQKKIKQDQLYKMQQNAIYQAIIKEKGLDQFRDMDPEQVLREQRERLDKERAETQRRLQQQEKNFDHHVRALHLEEMNERRAVMHMRMNEAPKLHDQYEEQRITKEM +>UniRef90_UPI001D11B2C3 phosphoribosyltransferase family protein n=1 Tax=Aquihabitans sp. Kera 3 TaxID=2884263 RepID=UPI001D11B2C3 +MTTAEPIEEREALTYELFGTAIRDLAHQVDDSGWEPDWILSIARGGLLIGGALAYALGMKNVATMNVEFYTDVEQRRDVPVVLPPVLELVHLADTKVLVADDVADTGETLQLVRDMVADTVAEVRTLVVYEKSRSVIRPDYVWRRTDRWIDFAWSAQPPVTRRPGVF +>UniRef90_UPI001CFFCFA9 GNAT family N-acetyltransferase n=1 Tax=Arthrobacter sp. ES1 TaxID=1897056 RepID=UPI001CFFCFA9 +MSVSFLQVRPLTDADAAVLGAWAEDELFCRHAGWTSSSPAKVCDFWIRQIKDPPTGLLRLAAESVDRELLGYMDLHGTDPESRELGFLVGPSRRWGHGLGRRIAEAGLTYGFTELSLERIWAEAVAANVASVQILRSLGMRETGRGEAETFLETNSYYLQFEILRDAWELGADR +>UniRef90_A0A1C6SX88 Beta_helix domain-containing protein n=2 Tax=Micromonospora rhizosphaerae TaxID=568872 RepID=A0A1C6SX88_9ACTN +MTALPSASARTAPSASTPPPRRSTSPSPRSAANPRHSLKAGKNSRAGCALPKYPSPDCTGVPAGTRLATLRLNLDNDSYAVYEAGAVIDRKHIPGNLLIRAPNVTVKDSQIDGTVFNDYNGRLHPFTIVDSTIGPATGCITAPGLAYANYTAKRVRIRGHDDGFRVATPGNVRIEDSYAKLCWNPPELAPPDGSHSGGIQADCRAGECVGIWFNHNTIDNRGPNGNSGITMMSFDGNPVRNVISNDNLVMGGGYSIIYWWTTGPNFELHNNRVVEGTYVYAPADANGTCAHQNWSGNTLVTIDARYNVTSTVGPLPCIQ +>UniRef90_A0A0H4BB36 Uma2 domain-containing protein n=1 Tax=Synechococcus sp. (strain WH8020) TaxID=32052 RepID=A0A0H4BB36_SYNPY +MWQQQPDYARYKEKLNGEGWLVNRQEGMLLQIKPDTPTQHAQFVLVSYYHLSARIGKPVRQQRMLRHLGIEMWINLQKIGWERCLAPQN +>UniRef90_A0A496XIQ2 Alkaline serine protease n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A496XIQ2_9GAMM +MRHHTRAVGLLVCLLSSAVQSAPAPETETLQVMLQGGSSQELTQLVETQGGTITHDLHIINAVGALLTQAQLDKVLKSPLVTRHIDDLSVSEAPDEPDESTCEVGGALELDYDTRGLRWTLYNKLPAPAILETLELTWPATLGTVEKISLGDTTIDPELYRDTQIGTLKLQFSGPAAPVLTGKADLRVDLKSPSLLHTSDLPLRQRDFTITASFLGDCSTKLIPGYENNHENFYYASVAGADALHLQGITGKGVTVAVLDSGLWEHEALVNDTSGKPRVLARYDAIKNISGNEVFDESGHGTHMTSVIAHSGAVTVDGKPTGSFKGTAPNVNLVAVKAFDVEGQGDLLDIVRAVQWVVDNRETYDIRVLNLSFSARPRWHYWEDPINQTIMRAWASGIIVIAAAGNTGPDPMTIGSPGNLPYVITVGAMTDSWTPDNRDDDYIPDFSSRGPTPTAHIKPDIVAPGGHITGLTRPNSTLMLEHPDYMLSTGEFVMTGSSQASALVSGIAALLLELEPNLSPDDIKCKLLSSAEPAIHRDGFLAYSPFQQGHGQVNATRAVTLGQIGCGNSDMNIRLDISGVKHFQGPAIVESDGNASLPGLSKIVSPEPSERGLSKTRKWGVKAHIERLDPAVTDLESSEISPIDWQKIYRQEKTAMESLIHEPPE +>UniRef90_A0A520FEH4 3-isopropylmalate dehydratase large subunit (Fragment) n=1 Tax=Sphingomonas sp. TaxID=28214 RepID=A0A520FEH4_SPHSX +MRSRPQTLYEKIWAAHVVERRDDGTCLVYIDRHLVHEVTSPQAFDGLRLAGRKVRRPDLTLAVPDHNLPTTQRVDAAGRELPIADPESAAQLDALRRNTTEFGIDYIDANAVQQGIVHVIGPELGFTLPGTTLVCGDSHTSAHGALGALAFGIGTSEVEHVLATQTLLLSPSKTMEVRVDGTLGFGVSAKDVILSIIGKIGAAGGTGHVIEYTGEVIRALSIEGRLTIANMSIEGGARAGLVAPDDTTFAYLKGRPLAPTGAAW +>UniRef90_A0A842QUU5 Flap endonuclease 1 n=1 Tax=Candidatus Bathyarchaeota archaeon TaxID=2026714 RepID=A0A842QUU5_9ARCH +MGVDLKSILVKDTIKLDELKGKVITIDASNILHQFLSTIRKPDGTPLTDSQGNVTSHLIGLFYRTLKMMREFSVKPVYVFDGEMPDLKTDVVEKRAERRREAKKKWSKAKQVGKDEKAFKEAVKTGFLDDQMIKDAKLLLNNMGLPIVQAPAEAEAQCAYMTHDEEIYAMNSRDYDSMLFGASKLLRYMTISNKDNIEIIDLDKFLNHHEISWAQLVDMGILIGTDYNEGVFRVGPKTALKLIKRHGSIEKIPEKYQKKLDENYADVRKLFLDPPLIEDYSLEFKEINRNGVMQFLCEERGFPHERVLNNLEK +>UniRef90_A0A4Q3S4G9 Acyltransferase domain-containing protein (Fragment) n=1 Tax=Chitinophagaceae bacterium TaxID=1869212 RepID=A0A4Q3S4G9_9BACT +MKAYIFPGQGAQFSGMGKELYENEQAKAMFEKANEIIG +>UniRef90_A0A1Z4EIA0 Peptidase M24 n=1 Tax=Mycobacterium shigaense TaxID=722731 RepID=A0A1Z4EIA0_9MYCO +MVLALTGYVWQQDVGAVFRRDTVLITDGGVDVLTDSPSWG +>UniRef90_A0A672Z142 Cytoplasmic linker associated protein 1a n=1 Tax=Sphaeramia orbicularis TaxID=375764 RepID=A0A672Z142_9TELE +MDLNMEDLLEQLMHKDLGRRIQVGQEILELIPDQDKFPELEQDQTLLDRMVDTVAGSWVNSSNFKVGVASTCLIKGLCLCLIATLNVSFSHLSMNCLVEIYRHVGERVRMDLGKKGLPQSRLNVIFSRFDEVQRSGNMVLSPLSGETYLLTPQTDGGGAGAVDEQDFIQSFDDVPTLQIYSNREVEETMTKIRDVLSDDKRDWELRVAALKKVRSLLLAGAVEFDGFLQQLRLMEAPFKLSVKDLRSQVVREACITLGHLSSVLGGRFDHAAEAIMPALLNLVPNSAKVMATSGVAAIRLILRHTHYPRLIPIITSNCTSKSVAVRRRCFEFMDLLLQEWQTNALERHGTVLMETIKKGIHDADAEARSVARKCYWGFHGHFSREAEQLFQTLESSYQKALQAHLRSGDSLMSLPASDRSSSSSQEIVFLTPASTSSSGSLHRSRSDVDVNAAATATARTRMPAVPAAMQAPPFSSASALPPGSYASLGETHLTTLSFGGSLWTAGRVLKHFHCFPAGSRSGSPGRLLSSTYGRIPRPTMGTAAATGCISGGTMEKGRPRGHRSQGCSRETSPSRSARSRIPRPSMSQGCSRETSRESSRDTSPARGFSPLDRLSHQARISASVNAMRILNTGTEVEAAVADALLLGDSRSKRRPARRRYESPGMYSDDDANSDASSACSERSFSSRNGGVAPHFLRQTEDVAEVLNHCASANWSERKEGLLGLQNLLKGQRTLSRVELKRLCEIFTRMFADPHSKVFSMFLETLVDFIVLHRDDLQDWLFVLLTQLLKKMGADLLGSVQAKVQKALDVTRESFPFEQQFNILMRFIVDQTQTPNLKVKVAILRYIHALARQMDPADFVNSSETRLAVSRIITWTTEPKSSDVRKAAQVVLIALFELNTPEFTMLLGALPKTFQDGTTKLLHNHLRNLCFLRPQASSGTALGRTPPRPPSSRGSPLTSPTNCSHGGLSPSMLDYGSENLNSEEIYSSLRGVSEAIQNFSFRSQEDLMESPRSDGMSGVAASSESAVEVGGRTALDNKTSLLNTPSPRSFAGPRFRDYNPYNYSDAIGSTDKVATKEALYEDAVDPAEQLELVGDLLKALSQAQGGEPGLDERRRTLLELLKVAREDSLVVWEEHFKTTLLLLLETLGDKDHTIRALAMRVLKEILRNQPARFKNYAELTIMKTLEAHKDSHKEVVRAAEEAASTLAGSIHPDQCIKVLCPIVQTADYPINLAAIKMQTRAIERIAKEPLHQLLPDIIPGLLQGYDNTESSVRKASVFCLVAIYSVIGEELKPYLAQLTGSKVPWESLRLVCTCADVGIQSHVKGMGKESVWLEMFF +>UniRef90_A0A7W5NUZ0 Glycosyltransferase involved in cell wall biosynthesis n=5 Tax=Pseudoxanthomonas TaxID=83618 RepID=A0A7W5NUZ0_9GAMM +MNTMAARLPAQDADTLVSVIMPVYNAEQTLRRSADSVLAQSFGQLELILIDDGSRDGSAAIVEELARRDERVVAVRQPNGGVAAARNTGLRAARGTHIAFLDSDDWWEPRKLELQLAWMRETGAMVCYASYQRVAEDGRLLSKVSPPLEVDYRRMLGSNHIGNLTGIYDRRLGEASFQKMGHEDYVFWLDRVRRAGSAVRVPGDAPLAYYLVRNGSVSANKLRAAGWQWRIYRQVEGLSAPRAAWYMLQYIRHALWKRKPVTT +>UniRef90_A0A534HYX9 DNA alkylation repair protein n=1 Tax=Euryarchaeota archaeon TaxID=2026739 RepID=A0A534HYX9_9EURY +MAGPVERMREDLVRQLDAAKRPGKLGAQAYLGSPVPVLGVPVPDLRKIVSGFKKTHKDVDAKTLNPLAASLWDGATFEEKAVAINLLDACLKILDEDSWTLLNRWAGEATGWGLCDWLGMGLIAKIVYRQPRRFQEILGWTKSTNPWRRRIAVYALRNFVFAGELDKPFRLLERLLYDPEVWVQRAVGTWLRECWKKDPRRTEAFLRKHVRGLPKVVITVATERAPAVFRAELRRGREPEAR +>UniRef90_A0A2N2AM00 Precorrin-6Y C5,15-methyltransferase (Decarboxylating) subunit CbiT n=1 Tax=Firmicutes bacterium HGW-Firmicutes-8 TaxID=2013789 RepID=A0A2N2AM00_9FIRM +MSDKQWIYRTGGIPDELFARDEVPMTKAEVRAVTLAKARLQESHVIWDIGAGTGSISIEAALMAVTGKVFAIEKKPEGVQLIKKNIEIFAVANITVCSGIAPEALQGLPEPDRVFIGGSGGNMAEIIRYVHEKMPIGGRVVVNAIVLESLVTSVETMKKYGFGDIDVTQVSIAKTVDVGRLHMFKSHNPVFIISGEKTTNQLTVKKETTEGLAQRSCNQF +>UniRef90_A0A2G2LVQ5 DNA-binding response regulator n=1 Tax=Robiginitomaculum sp. TaxID=2030823 RepID=A0A2G2LVQ5_9PROT +MQSTEQEKAHLLVVDDDDRIRDLLRTYLSRHGYRISVASDAKRVRRLLKTLEFDLVVLDVMMPGEDGISLTRFLRQSSAIPIFLLTARGAPEERIEGLRAGADDYLSKPFEPEELLLRIGAILRRKGTTIGSGATLQFGPWRFTPSTGELVGTKGRVSLTDNEARLLAALCKRPGEAFSREALSRDTAAIERSVDVQIARLRRKIEDNSRFPQYLQTVRGAGYRLLAHHVSETSSA +>UniRef90_A0A699XL38 Secreted protein (Fragment) n=1 Tax=Tanacetum cinerariifolium TaxID=118510 RepID=A0A699XL38_TANCI +MPSAPMMASCLACTPLANVMSPDDVSTSTHCSLVSSWTATLCGDTPDLVVDDKLDRLASTFFLQSAVHEHLVHVLTVEHV +>UniRef90_UPI001FF62731 hypothetical protein n=1 Tax=Amycolatopsis sp. WQ 127309 TaxID=2932773 RepID=UPI001FF62731 +MPPTQTFMVVAVLRDDTDLAEFAALRNDEEKQLELLRSAGRIGAHYISPARRATFVEVIADDEKQVAETLATLPFARFFDADVYPTAPPDAAEIAYRARAATA +>UniRef90_A0A8S5L7T1 Large Terminase n=1 Tax=Myoviridae sp. ctKHS5 TaxID=2823541 RepID=A0A8S5L7T1_9CAUD +MKSKEFLAELRAYADSLRQKVEAEFDGWDDSLQAIAERRKKVFDPVTGYDYFVSHYFPHYVRSPHRSELHDYLFATLPEVLADPKSVNMATAAPRGEAKSTLVSQLLTVYCLITQQKRYALIVMDSINQAYPMLESIKVELEFNQRLKIDFPEVAGQGRVWQATTILTKANQKVEIAGSGKRLRGLRHGAYRPDLVILDDIENDELVRSAEQRDKLHDWLKKTVLPLGVPGEKMDVVYIGTILHYDSVLNRTLSSKAWKTAKFKALKKMPDDMALWDKWESFYLNEGEAVADAFYYANRAAMDKGAEISWAARPLLALMKIRARDGHATFDSEYQNDPVSSEDAIFANAIRYWTELPSDLIYFGALDPSLGKAGASRDPSAILVGGYQRSTGKLYVVEAQIKKRLPDLIIEDVIRLHKQYHCQRWFVETVQFQEFLKDELVKRSAQRGCPVPATAIKPNTDKMLRIESLQPHMVNGLIMLHGSQATLIAQLRHFPKADHDDGPDALEMLFKNAASCAAPIEWMGLDALDDDEYDDNDLGYSKWKH +>UniRef90_A0A651EH65 DNA-binding response regulator (Fragment) n=1 Tax=Rhodobacteraceae bacterium TaxID=1904441 RepID=A0A651EH65_9RHOB +MATIALVDDDRNILTSVSLALEAEGFDVRSFTDGVAALAEFGRNAPDLAVLDIKMPRLDGMELLRRLRLKSDLPVIFLTSKDEEIDEVLGLRMGADDYIRKPFSQRLLIERIRAVLRRREAAVEGEREEDDRPLTRGRLTMDPLKHDAFWGGQEVTLTVTEFLILRALAQRPGVVKSRDQLMDVAYDDQVYVDDRTIDSHIKRIRKKFR +>UniRef90_A0A1C9CI92 Acyl carrier protein n=2 Tax=Rhodochaete parvula TaxID=110510 RepID=A0A1C9CI92_9RHOD +MEKHSISDRVKNIVSEQLGVNLDEVTDQASFVDDLGADTLDTVELVMAFEEEFSFEIPDEDAEKIKTVAQAMEFIQQKVEATAT +>UniRef90_A0A2E7B655 Type IV pilus biogenesis protein PilP n=1 Tax=Hyphomonas sp. TaxID=87 RepID=A0A2E7B655_9PROT +MLTLPLLAKMSSAAVAAAITASLTYGQYNIASGPNGSGLMPPASVLHPNARPGAMLDPLAEMASAMTSLKQERAKADRNRAMIDWLAGLQTRFTVQRFETGLVYKVRYAAAGXAGTVLQDXVAVPYGPELPXAVSLQAGXGGXVRVEGLSCSGQETLSEMDAGAGEQAVETAAMSRAEAYLXQPXAADPALPADCLMARLKRG +>UniRef90_A0A3N2C5J3 Vegetative cell wall protein gp1-like n=1 Tax=Plantibacter flavus TaxID=150123 RepID=A0A3N2C5J3_9MICO +MQTPPASRGSSTPPEPEAVPGPPRPPSSPGHRADPCRSPSRPSRSLSRPSRSPSRPLPVTEQPAPVTEPVEVPHTEAPRPTTLPGGPSTSSGNEYPHPGHASQPRSPSNPPRSPSNPHRSLSLSKCHTPKPPAPQRSPGALRHFDKLSAAKLRERTSLPRSPIRPSRSLSLSKCHTPKPPDPRRHPGGPSTLRQAQCGAAQGTDIPPPVTEQTAPGH +>UniRef90_A0A5J4QFG3 Virulence protein (Fragment) n=1 Tax=termite gut metagenome TaxID=433724 RepID=A0A5J4QFG3_9ZZZZ +MEDIPMKENEDIGGRKSKNEQIESYLQERYDFRFNTVKSKPEFRPKNGNHPFSPVTKFDLNSLKREMDRTMGIATSSDNVRTILESDFSPKIHPVREYFNRLPRLDPDINNYTWQLSQTVRVANSDKWLEYLVKWLVGVVANALHDVGCQNHTCLVLTGEQGRFKTTWLDHLCPPSLQSYLFTGKIDPQNKDVLTLIAEYLFINIDDQLKALNKRDENELKNLITTPAVKYRRPYGVYIEEYSHLASFMASVNGNDFLTDPTGSRRFLPFEVISIDME +>UniRef90_UPI0014789B01 phosphoribosylformylglycinamidine cyclo-ligase n=1 Tax=Leucothrix arctica TaxID=1481894 RepID=UPI0014789B01 +MEENKTSLTYQDAGVSIETGNALIDRIKPHAKRTKRPEVLGGLGGFGALMSIPSRYENPVLVSGTDGVGTKLKLAIDMNRFDTIGVDLVAMCVNDIIVTGAEPLFFLDYYATGKLNNDDAENVIKGIADGCEQAGAALIGGETAEMPGIYREGDFDLAGFSVGVVERDAIIDQSSVANGNVLIGLASSGPHSNGYSLVRKVIEVSGAKLDEKFSDKEETLLGDALLEPTIIYVKPLLKALKQFDIKALAHITGGGLTENLPRVLPSNCKAVIDLTSWDRPEIFNWLQKEGNIEDMEMLKTFNCGIGMVLVVAEDQADEVINSFKLQDIKSFKLGQISAAETEEAYVEYV +>UniRef90_A0A1I7TZE8 G_PROTEIN_RECEP_F1_2 domain-containing protein n=2 Tax=Caenorhabditis tropicalis TaxID=1561998 RepID=A0A1I7TZE8_9PELO +MDKKYMNCTRCELCATADVIYGTPFMEYSILLRLLTAPLATMGMGLLSATIVKTKGIHINTKVILFVLCISAITCNTGITIDCLYKFFISNVMPDYMQCDFQVFNPQYGLVIRHIEMLGSMCLSTSSIALAVERTVATIFYRNYPSKPTLGSILVVVQIHDYKFYHFITTWQALLNVLAISVFIILWIINYYRMKIIENSHLQVVLARYNLHENMSTTCLMAPIIVVLCLMVFSAELIILLFTPQYDEDTVVTHKVLDEVIEYSFYPELQLTLIPIFFIALILVLITQSKKLRENFLLVSNLSICFPVKVHTTDSRSSSESSSSEGSSSIHWNSKMDGLSITPQVPKF +>UniRef90_A0A3M2HUF5 Spermidine synthase n=2 Tax=Stutzerimonas TaxID=2901164 RepID=A0A3M2HUF5_9GAMM +MKRFVLIDTAQIPDDGGALCLFEYGEDFVIKIQGGNGNQLMNTRTHGSEDALAEIPCRKIAQRPHPRVLIGGLGMGFTLASALRHLGEDAEVHVAELVPGVIEWNRGPLGEKAGMPINDPRARVLRSDVADILKNEPQGFDAIMLDVDNGPEGLTRKSNSWLYSSAGLEACAKALRPKGLLAVWSASADQAFSQKLARSGFNAEEVQVFAHGNRGTRHTIWIAEKRE +>UniRef90_A0A2T1LZU9 histidine kinase n=1 Tax=Aphanothece hegewaldii CCALA 016 TaxID=2107694 RepID=A0A2T1LZU9_9CHRO +MKEQDIKRQFLDEAGDYLNVIESALLGCSTKEITSAQFDAVLRAAHSIKGGAAMMGYQTLSDFAHRLEDFFKVLKSHSKPEIDETVESLFLSSVDQLRQISSFYRQGAETIAPEWLSEQVEPIFQGLLDRIGELTPEKSLSLLSEDVGEEMTVLIFETEVESCLQGLESIIAQPQPTNLREEILSISQELGGLGEMLQLPQFSRLCTSIYEHLKSATEGIDAIALSAIQAWRRAQAMVIVGQKEAITSEFLLNHSTVIPTLETETTSPEELKIETVSTEEKTLRVSSSLLTELADLFGEMSIGRNSMDLQLQRLRRLFNLLNQRIQRLESSSQALRSLYDQRIQGYTSSVIPIKTNSVKPHLALFDNLEMDNYSDLHPLSQEVMETIFQIEEVANDLDIYLAETEKTAKDSQQTFELIQSQLTKARMRPLTDLIAHFPRALRDMSLKYGKPVELKIQGETTRIDRTILESLNDPLLHLLRNAFDHGIEDPEKRKEVGKPPQGTITISASTVRNHTIIQIQDDGAGINLDKIRSQAHKMGLDEDIIAKATIDDLLNLIFEPGFSTAENKSELSGRGVGMDIVKTQVQQMQGDIKVSTLAGQGTTFTITVPMTLSLIRVLLIEVEQMLMAVPCNAIEAMILPEPSQIIQFKGQTFLKEESELFPLIYLKDWLNIPTVYTQRDHESLPSIDKPTILKIALGNNYIGLWVERYWGEQEVTIRPVEGNLKLPNGFTGCTILGDGCVVPLIDPALLLQPSFPPSFLSSSFISNSQPTAQKATLLVIDDSINVRRLLALTLEKAGYQVEQAKDGQDALEKLQRGLGVQGIICDIEMPRLDGYGFLANYKTDSIGQNIPVVMLTSRSGEKHRSIAMNLGASAYFSKPFQEKLLLQTLQSLIKN +>UniRef90_A0A0R0EP28 Glutamyl-tRNA(Gln) amidotransferase subunit C, chloroplastic/mitochondrial n=4 Tax=Glycine subgen. Soja TaxID=1462606 RepID=A0A0R0EP28_SOYBN +MTSKGLLRGASLTANAVWHRSSFFPKVTVSVHPKLVKFQSFSSTTACSSLPPPDLPRLAKTAQISLTPNEVEEIAPKIQQVIEWFGQLQGIDLESVEPSIRAGSL +>UniRef90_UPI0015687092 helix-turn-helix domain-containing protein n=1 Tax=Ensifer adhaerens TaxID=106592 RepID=UPI0015687092 +MVDGIPSFFVYGEPEQPLEPGFFHVETVMARRGLHHGQVKAHKHDQLAQVTYWLRGRGSYFIEDKVLDFSAPAVSFVPSGIVHGFSVEPRESDAIVISIADGLMLSVRAQTALAIDVPVMIAGVSGDSQWQRLSQLMDIIADEYATAAFGTQSMMASLASAILTQIARLASFAPSPSQSPDMMLAMQLRRMIDAHFRENWTVGRYTDALGSTPHLLAKATGAAFGMQVKELINERRLLEAKRLLLFTIRPLEDIAYEIGFRDAAYFSRFFRLRTGVAPSDWRQLKLGQTASSP +>UniRef90_A0A261KVG4 Transposase (Fragment) n=1 Tax=Hydrocoleum sp. CS-953 TaxID=1671698 RepID=A0A261KVG4_9CYAN +MILYHFEKRILRPDCIILLSALAQVGHNSPDLIAYAFRSGLFRLPGGTSQTLPKEPVNYTLDQVGDSLKRLELATPKLKQSVVDACAYRTPKWIYKI +>UniRef90_A0A2T5BQX3 Heme-degrading monooxygenase HmoA n=1 Tax=Rhodovulum imhoffii TaxID=365340 RepID=A0A2T5BQX3_9RHOB +MPTISRSNEFQTVITTFEVTPGTCQDLLDALSEAYASFISRQPGFIGAGLHVNDAQTRIANYSQWVRREDFQAMLRSEEMRDRNRRFTELSKSFEPVMYDVFESYD +>UniRef90_A0A1G9W8E7 Neutral/alkaline non-lysosomal ceramidase, N-terminal n=1 Tax=Daejeonella rubra TaxID=990371 RepID=A0A1G9W8E7_9SPHI +MKKLFSCIIISVQIILLSERPAAQENSHSGWKAGVASVVITPEESLWMAGFAHRTKPSDGKLHELWAKALVIEDASGKQALLITTDLSGIPKSISDSIRNQLEKRFKFSRSQIIFNTSHTHSGPVLVDALWDLYPLDDTQKERITKYTKKFELQIESIVRKALGSMKPVNISSENGITRFAVNRRNNIENKIDAQTDLKGPSDYAVPVIRVSDQKGKILALAFGYACHNTVLHGYEWSGDYAGYAQITLEKAHPGATALFFQGCGGNQNALPRKTVPLATQYGKELALAVDAVLEGEMKILEPKLSTAYSEVKLELEKAPSKDELLTIVSKETGYIKNWALNMIKKADKGETFISSYPYPVQFWQLGNQSIVALGGEPVVDYAINLKKVFGPDLFVMGYSNDVMAYIPTAEILREGGYEGHTSQMAFGMPAKWKESIEPTIMREVMILAEQLGVKAKPKP +>UniRef90_A0A5C5YMF9 Putative electron transport protein YccM n=1 Tax=Posidoniimonas polymericola TaxID=2528002 RepID=A0A5C5YMF9_9BACT +MTPLSSLAAILRRAASLEIVVLAFAFLFALATGVEGQEAYDRPVSSAPQPDDIGAGYQTPEVQRTSPRSAALQMLDVVLLIGGMAAIAWVSRRGRRRWVVTAVTLASLAYFGFYRQGCVCPIGATQNVAASLSDASLATPMVVLAFFLLPLAASLLAGRVFCGGVCPLGAIQDLVLLRPVQTPQGVDRWLGMFRYVYLGLAVWFAVLPAGQRDFVICRFDPFVGFFRLNGPAWMLGVGVALLLLGTVVGRPYCRYLCPYGGLISVVSRFAIWPVRITPDEELDCGLCVDSCPFGAIKDLRAKPSECLACARCFAHCPRQQLAWGEIELVELDELVSSAKCVAQRSGGNE +>UniRef90_A0A1I0ZIW2 Enediyne biosynthesis thioesterase n=1 Tax=Amycolatopsis marina TaxID=490629 RepID=A0A1I0ZIW2_9PSEU +MAYYEIRHIVGFEETNLVGNVYYVNYLRWQGRCREMFLKEKAPAVLEEVRADLKLFTLKVDCEFFAEITAFDELSIRMRLEELTQTQIQFTFEYVQLAEGRENLVARGRQRIACMRGPNTATVPARVPEELRTALAPYAEDVKGARTESAAVPATGV +>UniRef90_UPI0013C30B07 phosphatase PAP2 family protein n=1 Tax=Euzebya tangerina TaxID=591198 RepID=UPI0013C30B07 +MVRQAFSRLPGAVALSRATTDLGSMFMVAGAAAMLLAGGRVRRAGEVAAAGALGWTVAHQAKKVFDRPRPYEAEATPRLIAEPTGSSMPSGHAAVAMATATVLAGRAGPGRRWVWLLMPAWVPLTRIHLGVHYPTDTMAGLILGHGLGRLVVAVSDHRSRRQPQDDGRVV +>UniRef90_UPI001C0550E4 protein PRRC2C isoform X12 n=1 Tax=Corvus kubaryi TaxID=68294 RepID=UPI001C0550E4 +MSEKSGQSTKAKDGKTKYATLSLFNTYKGKSLETQKTTVAARHGLQSLGKVAISRRMPPPANLPSLKAENKGNDPNVNIVPKDGTGWASKQEQHEEEKQPDVPQTQPKPAVPAPPEAAPVAKSWANTKPGGQEGPPIPINSYFQQEFPSLPAAGDQEKSGKDKDAPEDGSGPNLRPQNQDPKALGQEDASATPAEQNDGQKAGDKRDVRLPQVPQPKLNGQQQPPISSQYRAMMPPYMFNQYPRMAYPPSMQGPTRFPNSEPGRGPRGRGPPSWCSEPIERPSILSASELKELDKFDNLDAEADEGWAGAQSEVDYTEQLNFSDDDEQGSSQKEKESGDEQTPSKDSQSPDGQKETEEQTNAKSATQVSAAAAKGSYSKSSQLDQDRGPPQPSIHERGGPALPPKSILPPHPPPPDRQMGRQGPFPPKPVPDDDEIWKQRRRQQSEISAAVERARKRREEEERRMEEQRKAACAEKLKRLNEKFGCVTKPSREDPLKEREREREREREREREREREREKEREREREREKEREKEKEKEREREKEKEKEEKEKLEKAKEQEVEKEKEKEVEKEEKENEKEKEEEKPAHDVPEPVEPVATPVVEKQESETKNNKKEKEDQAVFTRQDSGRNEKEVSQVTHENEPDSGSQPRPAVSSGYSKQFQKSLPPRFQRQQEQMKQQQWQQQQQGVLPQSAPSQPSSGPVPPPQHRPLYQPMQPHPQHLASMGFDPRWLMMQSYMDPRMMSGRPAMDMPPIHPGIMPPKPLMRREQLEGSAAGSDSFEHMARSAREHTVPLSEPRMMWGSDPYPHAESQQSSSPPKVLEEPDDLRSEAHLEQERVAVPASAYPVEHNQLDSHPKTEFFRESGEVEVQKFPSRPLEDVQPLQTDTPNTAVNFEAVNEKVTRSSPELVPVGESHSSLKRSISHGSSHSLKSEDQRSETAANIPKLSNRPIEAKETIERLEIKPKKEILITNRTSEGPKPEKTFKPKSETRWGPRPGYGRRDEGGDRPVRRSGPIKKPVLRDMKEEREQREEREQRKEKEGEKTASEKPGKPEKSDKKEAPQVPLPQAEPERSTSSSAPLAKKITQDAAPVPASQESSQPEAAAKAVVQPPAPAVQQQLPAAQPAAAQLPPAIPQAPATQPAVQPPPHAQPPAPASKEEKQAEKVVSKEVVEKPRLETRPVKREPGLPPRTYWKEARDRDWFPDQGYRGRGRGEYYSRGRSYRGSYGGRGRGSRGHNREYPHYRDPKPRSEHVPSGPVRQREESETRSESSDFEVIPKRRRQHGSETDSDSEVHESASDTLLSDKDSIIKGKHPKREERADGKKPPKPLSFKPENNIRVDNRSLEKTYVRDDENKPKPGFLPKGEPSRRGRGGMYRRGGRDPGGRPPRPSTIRRPAYRDNQWNPRQTEIIKPEDGEPPRRNEHYGPIPIDKRPPKFERKFDPNRERPRRQRPARPPRQDKPPRFRRLKEREAASKMSEVVTSSTTSATVSNAVNEPSNPALDVSGSKTPDLSNQNSSDQANEEWETASESSDFNERRERDEKKTADAAAQVAAKAGENAGVPKREIAKRSFSSQRPGIDRQNRRGNNGPAKPGRNFSGPRSERRSGPPPRSGKRGPFEEQAAPVPGVDPANSNALHQEDGGVAAAGQKTTKDASGKKREEPKAGPKKPKEKVDALSQFDLNNYASVVIIDDHPEVTVVEDSQSNLNDDGFTEVVSKKQQKRLQDEERRKKEEQTVQVWTKKGSSEKGRGQNSKLPPRFAKKQQQAAAAAAQQAQAQPPCPAQSPAQPQAPVPTQSQAAGGTASTDYTVSGKVLQNTQAHNGLGAELWDNKVPPTAVLNDISKKLGPISPPQPPSVSAWNKPLTSFGSATSPEGTKPGQEGGVDLGIETIQFGAPASSGSDNEVGPVLSEKSTDKLPEPKEQRQKQPRAGPIKAQKLPDLSPVENKEYKPGPIGKERSLKNRKVKDAQQGEPEGQEKPSPTSVRSPEPVTTKETKAASELSTEIGTMISVSAPEFGTNTKESVTDYTTPSSHPNTVATSSTKMEETLVTNVPLPHTLPLPRRETLQQSSSLTPVSPATVDLTLKMESARKAWENSPNMGEKSSPVTSAASPIAGGSSSSSTGPSSGTYSSFSSASMPPIPVASVTPTTSLSGAGTYTTSSLSTKTASTSDPPNICKVKPQQLQTSSLASASHFSQLSCMPSLIAQQQQSPQVYVSQSAAGTTAQIPAFYMDTSHLFNTQHARLAPPSLAQQQGFQPGLSQPASVQQIPIPIYAPLQGQHQAQLSLGAAPAVSQAQELFNSSLQPYRSQQAFMQSGLSQPSPVVLSGTALHNFPAVQHQELAKAQSSLAFQQTSNTQPIPILYEHQLGQASGLGGSQLIDTHILQARATLTQASNLYSGQVQQPGQSNFYNTAQSPSALQQVTVPLPGSQISLPNFGSTAQPLIALPQSLQPPLQHTPPQAQAQNLSRPAQVTQPFRGLIPAGTQHSMIAATGKISEMDLKAFGGGIDVKPGTPPVTGRSTTPTSSPFRASSTSPNNQSNKMNSIVYQKQFQSAAAAVRMTQPFPAQFAPQILSQPNLLPPLVRAPFTNTFPAPVQRLPVVLHSQMPSQMTTGLMSHPQLPRVARGPCGSVPGARGTQAQAALKAERDMKVSM +>UniRef90_A0A1A2FR64 MPAB_Lcp_cat domain-containing protein n=1 Tax=Mycobacterium sp. 852002-51057_SCH5723018 TaxID=1834094 RepID=A0A1A2FR64_9MYCO +MKGPATRIADLLNPAAVLLPAANVIMQLSLPGVGYGVLESPVDSGNVYKHPFKRARTTGTYLAVAAIGTESDRALIRGAVDVAHRQVRSTPSSPVSYNAFDPKLQLWVAGCLYRYFVDQHEFLHGPLDDYSAEAVYRDAKRLGTTLQVPERMWPPDRAAFDAYWKRSLDQLRIDPPVREHLHGVASMAFLPWPLRMLAGPFNLFATTGFLAPEFRAMMRLDWSRSQQRRFDWLLVALRLADRLIPHRAWLFSYRLYLWDMRSRARRGRRIA +>UniRef90_A0A7C8PLT4 Uncharacterized protein n=1 Tax=Orbilia oligospora TaxID=2813651 RepID=A0A7C8PLT4_ORBOL +MPTGRFREQFRRFIASEILAASIASGPPKDLSRLEMPKYPIQTRPPKMPSESTRAASTESATLVRIAEYVFDEKYSNQNKFN +>UniRef90_R5PHK2 Glycosyltransferase group 1 family n=1 Tax=Prevotella sp. CAG:487 TaxID=1262928 RepID=R5PHK2_9BACT +MAGRLALKTCALGYVSDDKRIAVIYNAADIYVLPSVEDNLPNTIMEAMACGVPCVGFRTGGIPEMIDHGKNGYVADFRKADDLAAGMHRLLCGDDYEAMSRAAVSKVHIHYSQQSVAMRYIEVYNETAAMKKYII +>UniRef90_A0A067SRJ6 HET domain-containing protein n=2 Tax=Galerina marginata (strain CBS 339.88) TaxID=685588 RepID=A0A067SRJ6_GALM3 +MPAIKAAGIDNSRTLYDIVHGCCVTLFACTWLSIHPNICAPSDSDWTSRRRRLKTMLCALIVPELVLVWALRQRTGAKKIAEKQKEKKWTRYHGFFISMGGFNLFCDGKRIPLSPKRLEQLEECGWIAWPGISEREIKDKSKGDFLSKGIAVSQTLWFVVQCIARFEQGLAVTELELVTMAFVVLNVALYWAWWDKPLDVRCPVDVKIKEGITLPQVEDLFYRDDTRSDPPNRLQLPSFRILKLSTEEGIQPTYPDQTFFLRKFMTFIHPKGPHGCLHRMIISLARPFSDMLSSTEIPRGADCVPTFYAPSGDSRSDYSDEYSIALGLGFAILFGLSHCVGIWVNLSFPTEIEQDIWRVTAIAITAAPLAFQLLGGLVLALGSPEPERPWSGVFMYGCLVIWYLILIAYIFSRFVLLVLPLIAMRALPGSAFDDISWAKFLPHI +>UniRef90_A0A8J4Y4H5 Neurofibromin n=1 Tax=Chionoecetes opilio TaxID=41210 RepID=A0A8J4Y4H5_CHIOP +MCVCVTPSPVPSPVTRHRFCSHPDDKKRAKVAMILDKLITLTIEEVEMYPSIQAKIWGNIGQVSELIDMVLDSFIKRSVTGGLGSGQAEIMADTAVALASANVASVAKKVIGRLCRVIDKTCTSPTQTLEQHLMWDDIAILARYLLMLSFNNCLDVARHLPYLFHIITFLVTTGPVSMRASTHGLVINIIHSLCTCTKPTFLGKFVCFVAVFVCRFFRP +>UniRef90_UPI0021698233 SPOR domain-containing protein n=1 Tax=Mucilaginibacter sp. X4EP1 TaxID=2723092 RepID=UPI0021698233 +MKNTASYLKTKIGWIGYCIFFVLFILPALSHAQTRGKVEVVKDPLIDTLIARRASLGKNVAVGDDATSGYRVQIFFGSNRQDAYSAQARFLGEYPDTRTYILYTEPNFKVQVGDFRTKLEAQKLQNDLRDKFTSLFIIQGKINPPKTDASND +>UniRef90_A0A8T9PFL0 O-antigen ligase family protein n=1 Tax=Leucobacter sp. H25R-14 TaxID=2932245 RepID=A0A8T9PFL0_9MICO +MAESKTRLGVSAYAICVFIFTLGSNGVRNLVGWPAFLALAVVLTGLGIVLFVRLKPERFRWYRLPAPIYWFLILAALSILWSQYRLESVLGVAAQLATTVLAVVVAFVLSWHEVLRTLGTALRYLIGLSFLFELWVALFVRAPLLPWWMEEPEGETPKLLYWSRDLLFSGGPIQGLVASSVLLGFLGLLGVIIFAIQLRAGLVRPFSGWCWLALSLLTILLTRGATVWVALAAVVVGLVVALWARRLGPERRVPLYVTSGALLAAVIALTLFARDTVFGLLGKSGDMTGRLETWQKVIELAEQRPWFGWGWISYWAPWAEPFASLDRKAGLQVMSAHNAWLDVWLQLGIVGLLAFAPIVVLTMWRTWFRAVDQPRRGHGPALPYATSSLWPFLVIIALLVQSLTESRLLIEGNWVLLILLAVKSRFDFQLPSLDAEPTRLPWRRVPIPQERLVPYKRDPRD +>UniRef90_A0A1Q9V6M8 TetR family transcriptional regulator n=1 Tax=Saccharomonospora sp. CUA-673 TaxID=1904969 RepID=A0A1Q9V6M8_9PSEU +MPKYVDHEGRRTEIVEATWRLIAERGIEEATMRAISESLDMANGALKYYFPDKNSIIRAAFEHVVAATNARVRERVGEATGLAALRAFCVEMAPLTELTKLEARVVLPFWQRALSDPDLERLHTDSVTLLRAHIVEFLQQARAEGTVRASTPDDVLADQLLAMLIGLQALALLDQDGTGEAAQLRMIDAFLDSLA +>UniRef90_UPI0015550403 DUF3990 domain-containing protein n=1 Tax=Palleniella intestinalis TaxID=2736291 RepID=UPI0015550403 +MLVYHTSDVQLNIPDTVHSRGNLDFGRGFYTTRLKEQAIKYGERFVALGHDAYLHTFDYTPCSNLRIKTFDSYDEEWLRFVCSCRKGGTEYEQFDIIEGGVANDKVYRTVDFFMTGIYTLEQALQQLVYHKPNHQICFITRKAIDLCLRLSDCRKLNI +>UniRef90_A0A2G2GAA8 CSD domain-containing protein n=1 Tax=Arcobacter sp. TaxID=1872629 RepID=A0A2G2GAA8_9PROT +MKESKGFIMKGKLFNCSNGATSSEHCFVIADGGKHGYFVSSKKADGPLMNGACISFELEDQKKGSIVTDVHILD +>UniRef90_UPI000314C431 metal ABC transporter permease n=1 Tax=Bartonella rattaustraliani TaxID=481139 RepID=UPI000314C431 +MYAFFLAPFIDFHFMQNALIGSILLSISACPVGVFLMLRGMSLTGDAISHAILPGVAAAFLFRGFSLISMTLGGLIAGFIVVLATALISRNSFQKEDASLTVFYLIALAAGVMIVSLKNSATDLLHFLFGSVLALDTQAIFLITTIMVITVCSLYILWRALLVESFDPFFFKSLSPLSKYVHLSLLGLVVLNLVGGFQSLGTLLSVGIMMIPAITARFWLSRLGPICILSILLGIIASICGLLLSFHLSLPSGPAIIIAAGSLYLFSCFISPRGFIVAWFPHLFYNYFLNLKK +>UniRef90_UPI00210245CE peptidoglycan endopeptidase n=1 Tax=Sandaracinobacter sp. RS1-74 TaxID=2913411 RepID=UPI00210245CE +MGGAFRPQGRGEEGLDCLGLALRALAAGGCRVDMPRLPMRGHSVEQVHGWLCAAGFARLEVEEASPGDLLLSFPATRQAHLAVRTAEGFVEANAQLRRVVERPWGGGGVWDSAWCIGAGAVKGRG +>UniRef90_A0A2E9K2A4 AraC_E_bind domain-containing protein n=1 Tax=Alteromonadaceae bacterium TaxID=1916082 RepID=A0A2E9K2A4_9ALTE +MVLVSKTTDSTAMNEPEPALVQFEGVKLAQLVHRGSPQTLMASVGAFIQWRKLNGSPPSQSRTFNIFYSDPLNTEPAAFTFGIAAEHSKDIAPNSQGVSEAHIPALHCLSWIETGSDGKLQQRIEQVIGEGGYDWHFEQFPPFIERLHFYPDVPMAEAISRVYLPVQAQ +>UniRef90_A0A8T1N0L7 Fibronectin type-III domain-containing protein (Fragment) n=1 Tax=Clonorchis sinensis TaxID=79923 RepID=A0A8T1N0L7_CLOSI +MSITLDRLDECSETWMGIFAINFAGDSPVSPLVKLISPSAPTAPNDVRFNVDRRTRKIHITWKDTSVCPTTNYTLSDVQKGWLVTTVNREAYLDFGVPCYHYQIHIKGANTGGQGPASDVIRFFTPHNFDAPTNVRVTTEPSVPDVEVSWLATGVCHSIQYMVTLYVAGVIVKTEVTESLNVILRDLEKCKPSSITVKKYTQWWSGDESGRTEFQIPGVPSAPKLIGATTEQNVPSATVSWTYDGACTSTDFLVTVYATAESVPEPVRASGLSTSIGGLPMCVDLVFGVVGRNQFGSGQETKSSPIRIDAVPSAPKLIEATTEQNVSSATVSWTYDGACTSTDFLVTVYTTAGSVPEPVRASGLSTSIGGLPMCVDLVFGVVGRNQFGSGQETKSSPIRIDAVPSAPKLIGATTEQNVPSATVSWTYDGACTSTDFLVTVYTTAGSVPEPVRASGLSTSIGGLP +>UniRef90_A0A843CS01 PAS domain-containing protein (Fragment) n=1 Tax=Methanomicrobium sp. TaxID=2052684 RepID=A0A843CS01_9EURY +MTVKEITKVLEEALMGNYSVRVNVDEAEDELKELAETVNTAIEFIIDSKRTCDNVSMMIQQNPYPMMLLDRNFMPIDVNAAYEKLMGYSKDQILTMLASDYKSRRISGDNTETLFTAGHNTETLVEIDFKDGRKLFVEQRGVPLRDSDGNVEMGLFVFKNVTNEVIEKEEITKQLEQIKVLQGRSEVIVQENPMPILLCDKNF +>UniRef90_UPI0004174C5D hypothetical protein n=1 Tax=Mesorhizobium sp. WSM3224 TaxID=1040986 RepID=UPI0004174C5D +MPFTVIWYGRSGIVDKMSFDAEKAARDYAMSMFQTRKGDDGIVAVEVRKDNGAVVFSHSEN +>UniRef90_A0A1N6TYF1 Putative signal transducing protein n=2 Tax=Marinobacterium stanieri TaxID=49186 RepID=A0A1N6TYF1_9GAMM +MLVTIARYTYPYEAQIARALLDSEGIDAFIADEQTINMQWLYSDALGGVRLQVAQEDVMRAQRILQDDRETPLVELEGEDRPACPVCGSRDTEYYQIGRRWAFLMFLAIDFPLFRVQDGIRCHSCGAISKQHSDAARH +>UniRef90_A0A7Y4ZJH0 3-keto-5-aminohexanoate cleavage protein n=1 Tax=Polyangiaceae bacterium TaxID=2268199 RepID=A0A7Y4ZJH0_9DELT +MSSHDAHYAGELVDGARMLALFGDLATELLIRIDGDEGLFRAYESVEFLAPVLAGDYIEASAELLTLGNTSRKMAFVAKKVVSNLRAHGVSPSAAEVLDEPLVVCRAIGTCVTPKSLQRRPKGLYMPGLPPGPEPEASPIVTPVSNDVILTAAIVGAEVTRAQTKYLPITPQEIADEAARCREAGAAVIHLHVRNDDGTSTQSKERYAEVLEAIAKKTDCIVQTTTGGAVGMPIEERAGPLACKPEMATLNCGTINFGDDVFVNSRPDIRKLAKLIREAGSIPELECYEVGHVEEALALFREEHIQAPLHFQFVLGVAGGIGAREENVHYLRSLVPPEATWGVAAVGRHQVPMTELAMRLGGHARVGLEDNIYLSKGVLSEGSAPLVARAAAFAREIGRTPADPTRARQLLGLTK +>UniRef90_A0A0N5BVH2 Calponin-homology (CH) domain-containing protein n=1 Tax=Strongyloides papillosus TaxID=174720 RepID=A0A0N5BVH2_STREA +MTDNRLTEIPQIIIEKMKLLETLILAKNVIKTLPTCMKGFNSLNYLDLSSNNLTTIPSAIYSLPLQILLLSNNKLDTVSGDIVQMAPTIQELDFSKNRITSITSNISLLKQLRKLNLRSNRLGALPSEMASLDLYSLDISANRLTHIPVEFCSMQSLIHLSILDNPLLSPPIEIVLKGREHIFKYLQSAISSDVDYRGNYTDWSTNRNSFINATIRRPKNAEKVAAKAKRFAALNSSDSGYTSTGDDQRHSYDMEFSRNSLASIDENHKKETIIINKEYNGCLNNDDEGVDLSHTPKDVRKLNLIEECNDVNNSNNNNNNDINMDSSIYTTLASVTVTDSTYIKPNNIVVKDKEPKNEENPDSVLESTSPTTSESHSPLSESMASLSSPDGENNSTLVIESPNVKDNSNILVPISSNESPPKASNNRTLKPPTKKSPPSKVQSKLSVPSQGKSTLLIKKEPTISKLMKPSITTAIPTPRISKLTPPKKSMSISSSRSTTPSTPISPSNDDDVELMKKLLGSKLLAVTKEDEISKQLSSGVLLCNFVNKLKPRTIPVVMASLSPSQPVPLPKAKKNAENYVNAAKKLGLSEVCFTIFIISSF +>UniRef90_A0A1H1DUL9 Lipoprotein n=2 Tax=Pseudovibrio sp. Tun.PSC04-5.I4 TaxID=1798213 RepID=A0A1H1DUL9_9HYPH +MVGTQVANTLLKNTGRALLLIGIGASLAGCGSIMSSDSDLEASSSEAPATERTFDLSVLQAPAMCPSLQELSGTTILAKYPRGKEKTPENLTFQAVITDWARTCKRVGKDSAMKLGIAGNITPGPAWKGGEIFLPIRVAVTNEVDDVEKTTYSKLFSVPVTLGAGSPSATWAFVEEGIILPNETGQNVVFGFDEN +>UniRef90_UPI00097132DB hypothetical protein n=1 Tax=Herminiimonas arsenitoxidans TaxID=1809410 RepID=UPI00097132DB +MKQVLNIFIVGSILLSSQPVFAQSTTTVEADSQSYSVSALTERYPANSIQSSTAASSALADVTKARSFIESRFAAGQRACYKEFFTNSCLAKVKEQKRADLAVIKPIEIEANAYTRHAKVAESDRRLAEKAAQSEGRATASTQNKTDAASGKSTEANDLTKDAQRKVRAENYAKKNADYAERQKLLRENEQADAKKRAENVERYEAKVRESEARQKEVAAKKAEKAREQANKQ +>UniRef90_UPI000FD9191E proton-conducting transporter membrane subunit n=1 Tax=Rhodobacterales TaxID=204455 RepID=UPI000FD9191E +MTTAFSLSFLAPVLLIAAALAAFRTPGRRPGAVPQISEVAALGALGLVALGLIQVIVAGPAVSSLFDGAGVLALRADPVSATLALLVAFIGWIVLRYSRTYLDGEAREGAFHGLMLVTLAAVLIFVMSGSLWLLVAATIATGLGLKRLLLFYADRPEARRAAAKFGLVWHGGDAALIAAALVLTSAHGTGDLSAIAASNGGAGIAGHMAAGLLVLAAILKTACFPLHGWLTEVMEAPTPVSALLHAGIINSGGVILIKTAPLVQTSPGAMAALVMIGGFTALFGAAVMLTQSAVKTSLAWSTVSQMGFMLLQCGLGLWALALLHIVAHSLYKAHAFLSSGGAVAAVAAIRKPGPVAVPDLGAVLKSFGLALLLYAAIAGLFSVAIGPKTAQALALGAILVFGVAYLVAQGLADTAPAELTRRTVAASLAATLAYFSFQAVAQWVWGADLPAAPAPGPLEWALIVLAVLSFGMVALAQSLFPLWAHHPATAGLRVHLANGLYLNALLDRAIGGFRTTKSS +>UniRef90_A0A8J4S172 DNA ligase n=2 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A8J4S172_9STRA +MPAEDERAALRLSFGALCRVLEKLERTPKSDAKLRLLFSDALRAQLGGGDLYPLIRLVLPQLDRDRTYNLKEKMIAKIYIDVLGMASASKDAQKLEHFNDPNVIASKYVGDFAAVLYEVLLYRSLARDRQNERTLQDIIGLIDALEQADSSAMRKKVVMRLATEFSASEQKWIVRIVLKDLKVGLRHERVLNFLHPDAMKMYNHTNDLHKVCTDLRNSAVRYVPQLEPFRVFSPMVAKQVTFGECITAINADTFVMEPKLDGERITCHVQGKQVQFISRNGVNYTELYGTSMTPHVLSQLMPGVDCILDGEMMVWDNTEYQFREFGLLKNVANAMRNGDATNRWLCYTVWDVVYLGGSPKAESLIHEVFKGPREVSAVMGLPLHARRKLLLRILSPLDHRITIIEQTAVNAKSPKERHDIVMAEVDRQISNGGEGVIMKDLNAHYMCGESSRRAKKWLKLKPDYAGMTTDLDVLIIGGFYGTGRRRSGNVSAFLLGVLAQSVDENAAAETLKPGASCPMVYTFARVGTGYNLEELEQMRQELDPYWQPWDDNNIPPHLNGWKPQKYYLKPDLWIDPRHSKVLEVYGFELTYTTLYQTGLTIRFPRCKSIRNDKEWYQCINLQDLNAARGSLSIKRAGEIALGQKSTAKRAPKRQVLRARRAGGVLANYSQAALDGLEQECDVFEGKEFCVLPGKYDAPPPNSVSAIPSGILEEHAKHMSKQMVEKLLHSFGGSIVQNPIAESTNYVVAAGDAGFKVVNLKKQGHFNIVHISGSPPITAATGNDYGTSDRVQVEQLQPIVRKLRHQGLQEPPTVTKEWVEQSVEQRTQLPVEKFFVAM +>UniRef90_A0A239J7H2 Amino acid ABC transporter substrate-binding protein, PAAT family n=2 Tax=Streptomyces TaxID=1883 RepID=A0A239J7H2_9ACTN +MSERSSLSRRGFLSRTAAVGGLAAVPGLLAACSRTQAGTGAPTGDGDLLATLRKQGYVRVGFAGEAPYGYRDGNELAGEAPTLHGEIFTALGVPELRPTLTDFGALIPGLTADRFDVVSAGMAITPDRCRKVIFSEPEFVSPTALMVREGNPKGLSDLLSCAREKATVGVLSAAVEADYADAAGVPLTSVKSLAKQQDGVDALLADRIDAFALTGISLRWLARTNDGAAVEVLDPFLPVVGGRRQYSPGGAVFRPGATGLRDAFNKELGKITADPGRYTSLIGKYGFTKAEVPPATLRTAQLCKA +>UniRef90_UPI001877F83B 2-oxo acid dehydrogenase subunit E2 n=1 Tax=Microbacterium sp. YJN-G TaxID=2763257 RepID=UPI001877F83B +MIAEFRLPDLGEGLTEAEVVQWLVKPGDTVALNQTLAEVETAKAVVELPSPYEGTVSSLHADAGETVAVGAPLIAFDIGGDTPDSEPDGDEAATGEAADGGSAEKDAAPDAEKAQPNLVGYGAQPASSGRPARRVRRGGAGATATADAAVIEAAPHDALPPSAAEPAVGERPRSTPPVRAHAKRLGIDLVLVAAQVGDRVITRADVDAYAERVGAAAPVGTEQDAEMVPAAPPAPRGERAQTRIPIKGVRKHTAQAMVRSAFTAPHVTTFHTVDVTATMELIEQLRADRSLAEHRIGPLVVVARAVCLALGRNPSLNATWDEDAGEIIQNHFVDLGIAAATERGLIVPIIRDAERMSLPELADALQQLTQTVRAGKTGPADLAGGNFSITNIGVFGIDAGTPILPPGQSGILAVGAVRRQPWEHRGEIALRQVMTLSVSFDHRLVDGAEGARFLKDIADLLEQPGRAMLF +>UniRef90_UPI0004BB0B65 T9SS type A sorting domain-containing protein n=1 Tax=Alkaliflexus imshenetskii TaxID=286730 RepID=UPI0004BB0B65 +MKLRLSLLAFLLVLAVDGMLGQQVWFFSEGTGATFYDQGIVDVANLGGSSFEYTHPPGLPQFNDKVPCSATAWSGSTSLKFNYTSAASGNWKATIYRSDWSVADITGMEFLGFYLYAGSGLPASALPKIGLVANRLGGGGDATSLLYDLSAHNDDVPADQWVEVKIPLSVFIEDGGNALLDFTRVKGVVFSQSEVNGVPRLLFIDDIKAFVSMDVVPPVSQLKAEGFDSHVELRWQQPLDFLSYRIYARYAGSEDYVQIAETDKDYYLHFVPQSARNTEISYKVEAFSQDKESDAVTIQATVRDFTDEELLDMFQRYTFRYFWEGAHQPSGMALERTNGDGRTVASGATGMGLMAMVVAYERAYEERAEIKTRILKILEFLENCERHKGAWAHWYNGDTYQTQPFSSLDDGGDLVETSFVAQALITLRNYFRDEDAQSVQIRQKATLLWEAIDWNWYRNGNQNVLYWHWSPNHGFAMNMKIQGWNESLITYVMAAASPTFGINKETYTQGWARNGSMVNPRTYYEHPISLSPNWGGPLFWIHYSHLGLNPKGLSDQYADYWQEHVNTAKIHHAYAVNNPLGHQNYSENNWGLTASDDPFGYTAHEPMNNDNGTISPTAALASMPFTPMESMKALKYFYRERGADLFGLYGPYDAFNDNMGWVQKSYIGIDQGPIVVMIENHRTGLLWKHFMADAEVQAGLDKLGFSYQATSAAPGLEHSELINLFPNPAVDNVSIELPHHLVGRQIAVAIYATDGSQVYSSVFESSETIYTINCSAVQNGFYLLKMVSGSRVYRAKLIIRK +>UniRef90_A0A6I9VL36 secernin-1 n=6 Tax=Bactrocera TaxID=27456 RepID=A0A6I9VL36_BACDO +MSATGDCFIVQSPNTAENTIIFGRNALDADALTEAQEVQYYNANVALEGKPDGGADVVKANGEILRMILQKTQTGIWGGDVGANDHNVCIAVSWSAEEPANDSDTLRSTDIVRLTLAIAKTAVDAVERIGNLVANHGSDNAKFSFVVCDTKEVWLVSSGAKLWAAHQVADGFLRLTNKGLSVKTAIDKSTDDLGDALKTLGLWDGEGDLNFASCFDAAETAEAEWSGEAPNGDGSYTLTSMFDTLRSAADSATSRSASVSVLTNGISCHWFTATPNASESVFKPFVFAPNPKISPLTKVPPDNTHTLLHKLHAQRKPNAVEDLKALEAACVEELNAYLAEHPNADEELDELMKDCVEAEVKFYR +>UniRef90_A0A2Z5ZAZ3 Uncharacterized protein n=1 Tax=Nitzschia sp. PL1-4 TaxID=2083272 RepID=A0A2Z5ZAZ3_9STRA +MIYINFNILLNFFLILYIFFIYTLQVIRPEIVTDTDVMLMSLLVLYNWVLVIQGWKFDPIMLFSQYILILLILTLEWENIRLRGFILILKKIINNK +>UniRef90_UPI001BB17932 GATOR complex protein DEPDC5 isoform X7 n=1 Tax=Microtus oregoni TaxID=111838 RepID=UPI001BB17932 +MRTTKVYKLVIHKKGFGGSDDELVVNPKVFPHIKLGDIVEIAHPNDEYSPLLLQVKSLKEDLQKETISVDQTVTQVFRLRPYQDVYVNVVDPKDVTLDLVELTFKDQYIGRGDMWRLKKSLVSTCAYITQKVEFAGIRAQAGELWVKNEKVMCGYISEETRVVFRSTSAMVYIFIQMSCEMWDFDIYGDLYFEKAVNGFLADLFTKWKEKNCSHEVTVVLFSRTFYDAKSIDEFPEINRASIQQDHKGRFYEDFYKVVAQNERREEWTSLLVTIKKLFIQYPVLVRLEQAGGFPQGDNSTSAQGNYLEAINLSFNVFDKHYINRNFDRTGQMSVVITPGVGVFEVDRLLMILTKQRMIDNGIGVDLVCMGEQPLHAVPLFKLHNRSVPRDSRLGDDYNIPHWINHSFYTSKSQLFCNSFTPRIKLAGKKPTSEKTKNGRDTSLGTPKESENTLPIQVDYDAYDAQVFRLPGPSRAQRLATCRSVREQENHNRKSASSCDVSSSPSLPSRALPTEEVRSQASDDSSLGKSTNILMIPNPHLHQYEVSSSLGYTSTRDVLENMIEPPQRDSSAPGRFHVGSAESMLHVRPGGYTPQRALINPFAPSRMPMKLTSNRRRWMHTFPVGPSGEAIQIHHQTRQNMAELQGSRQRDPTHSSAELLELAYHEAAGRHSTSRHPGDSMSLNFGATEELSASLLSNSGAGLNPRTQNKDSPEDGVSTSPDPMPGFCCTVGVDWKSLTTPACLPLTTDYFPDRQGLQNDYTEGCYDLLPEADMDRRDEEGVQMTAQQVFEEFICQRLMQGYQIIVQPKAQKPSTTVPPPLSSSPLYSRGLVSRNRPEEEGQYWLSMGRTFHKVTLKDKMITVTRYLPKYPYESAQIHYTYSLCPSHSDSEFVSCWVEFCHERLEEYKWNYLDQYICSAGSEDFSLIESLKFWRTRFLLLPACVTATKRITEGEVHCDIYGDRPRADEDEWQLLDGFIRFVEGLNRIRRRHRSDRMIRKGTAMKGLQMTGPISAHSLESTGPPVGKKGTSALSALLEMEASQKCLGEQQATVHGKSSTQAAESSSVAMTPTYVDSPRKDGAFFMEFVRSPRTASSAFYPQASVDQTAALVSDSASLGVSTCQSLDRGSNQTLGNSQNIGEQAFPSANSDCSAQQHAASSLTSSSTLVEILEAMKHPSTGVQLLSEQKGLAPCCFISAEVVHWLMNNVEGVQTQAMAIDIMQKMLEEQLITHASGEAWRTFIYGFYFYKIVMDKEPDRVAMQQPTAPWHTTGVDDFASFQRKWFEVAFVAEELVHSEIPAFLLPWLPSRPASYASRHSSFSRSFGGRSQAAALLAATVPEQRTVTLDVDVNNRTDRLEWCSCYYHGNFSLNAAFEIKLHWMAVTATVLFEMVQGWHRKATSCGFLLVPVLEGPFALPSYLYGDPLRAQLFIPLNLSCLLKDGSEHLFDSFEPETYWDRMHLFQEAIAHRFGFVQDKYSASAFNFPAENKPQYIHVTGTVFLQLPYSKRKFSGQQRRRRNSTSSTNQNMFCEERVGYNWAYNTMLTKTWRSSATGDEKFADRLLKDFTDFCINRDNRLVMFWTNCLEKMHASAP +>UniRef90_A0A317JBS3 DUF2959 domain-containing protein n=1 Tax=Chlamydiae bacterium TaxID=2081524 RepID=A0A317JBS3_9BACT +MSLKEECKQLSDLFHRAAEGQSIDLQQVFAQSLQFFERLKVELKEEDPQRRQEAMAMLMEIYQHMIKDTKLICETSGMTEEQLVSFAENPTNFSPEQWASIQESREKISHAGQDLAKALEQLSSSQGEKKPHDPTKKSKKSDWMRS +>UniRef90_A0A8J7MXB5 Tripartite tricarboxylate transporter substrate binding protein n=1 Tax=Candidatus Odyssella sp. TaxID=2589116 RepID=A0A8J7MXB5_9PROT +MAAVAVAASALAVSTVAQAAWPERPVTIIVPAGAGGGTDATARLLAKQLQDELRQPFNVVNQGQASGLVGHTNISQARPDGYTLGIIYPYYQFNLSGQSQLDHSSFTPIALYNMDPSALSVAANSQFRTAQEALAFIRANPGRVRMSCGGSCGGSWDLPLAGLLVRLGIDPRTVVMVPSGGAAPGLQELVSGGVEMIACSLPEAAALISANRVRPLMVLASERAGNFPDVPTAREATGQDHTGGAWRAVAGPPGLPPEVVATMERTLERIWRSDEFQNAMRQRGFGLRWANSRDTAAFLLQHEREWTDGMTALGMVRRAPR +>UniRef90_A0A661CEU1 Ferredoxin (Fragment) n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A661CEU1_9GAMM +TQVTLYNTEQLLASDRQTQGLISQQTQQFAQIAEQRSQSDSGGGFGGFLKGLVSVAANVFLPGSGVIAGALVGVVSDVVQGKDLDEALIGGAKDIVGEHCPPCAPAMDVAEGLVQGKEPGDILLNVAKNQLGNYCPECTPFVDVADGLLTGEDPLTTLEHFAKSQLGDACPECVQVWDTAKGIAQGVPPEQLITDLVGHQIGQQCPDCMPAVQAIQGVVAGQPIETVLQNSIGTQLKTYCPECAPVVDIAQQVVAGESLDHILGQAATQALSQSCPECLPAVAVVRSLANGQSPITVLKQALAEPLQTACPSCGTLFEVAEDLAAGKDITDTLTTAAQNQVATVCPECVPAWQTAEKMLQGDDPKTVISALVTDKITEHCPDCAPTLDMVQQIAQGKNPLELVVETTQRQLAKDCPECGEVLQTIIPIAQQAAFDTKQKVLAHLQSQRYNAGFSKEISETLNVSKELMETLQNFL +>UniRef90_A0A2N0DCP7 TPR_REGION domain-containing protein n=2 Tax=Rhizobium sullae TaxID=50338 RepID=A0A2N0DCP7_RHISU +MRTRPDQLDENILTLFNRACRQSRWEVAEHLLRALEASSDEGDGCEPPCVRSPLTDAYLSIASLHSKQ +>UniRef90_A0A819ZRA3 G_PROTEIN_RECEP_F1_2 domain-containing protein (Fragment) n=1 Tax=Adineta steineri TaxID=433720 RepID=A0A819ZRA3_9BILA +MPLNIVQLDLIGRYLNIYLGSFMLIAGLLGSCINLWLFTRHRFRKSSCSRFVIASSLFDILHLIVALFLRVLADGFGKDPASSSVIGCR +>UniRef90_A0A533XQ95 DUF3108 domain-containing protein n=1 Tax=Nitrospirae bacterium TaxID=2026887 RepID=A0A533XQ95_9BACT +MKRVFSQTPSMIRLVGFILTMLLMVGGFMEASGTAEESDQKADAIPAGDYVLYDQVVTRKFLTSATQLVVIDRMTRLRLSPDQEGPTTIDTFQEQGYFDGELPADLVREFSAVNRQPSRLEGRFHFGVGYRFATGDTIEEPEVSLARPVTVARARPVQAPSVLDRLAFSRVARSLLNDDALLYVEALRPDGTGAGFLVWFRRQGGSLTLFDTEVAWAIQAQVEPEEGPLLAP +>UniRef90_A0A7C1TM52 OmpA family protein n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A7C1TM52_9GAMM +MHARTRFVVLFLGAMLAVSGCATDEYGRPREMTDTEKGAIIGAATGALLGLATRREAKYGVLYGIVGGVAGGAVGAYMDKQKKDFEKQLAPELDRGVIYMEKLPQNRLLVGMTAATAFEVDSTRIKPGFNPVLDKIARILNKYGKTHLTIIGHTDSTGSRAYNQKLSERRAEAVKQALLARNVIPERITTAGAGEDHPRASNATPEGRRKNRRVEIIIEPIVEPEG +>UniRef90_UPI0005283947 DNA polymerase III subunit gamma/tau n=1 Tax=Bordetella bronchiseptica TaxID=518 RepID=UPI0005283947 +MTYLVLARKWRPRSFDTLIGQDHVVRALTHALDTQRLHHAWLFTGTRGVGKTTLSRILAKSLNCENGITSKPCGQCRACTEIDAGRFVDYLELDAASNRGVEEMTQLLEQAVYAPGAGRFKVYMIDEVHMLTGHAFNAMLKTLEEPPPHVKFILATTDPQKIPVTVLSRCLQFNLKQMPPDAIVGHLQAVLGEEQIGFEVPALRLIGQAAGGSMRDALSLTDQAIAYSAGNLSEEAVRGMLGTIDQRHLVRLLDALASGDAAGVLAVADELAVRGLSYAGALADLAVLLSRVAIEQRVRGALPQDDPLTEDITRLAAALHPDAVQLFYSVAVHSRGELTLSPDEYAGFVMACLRMLALNGEAGPATAVQAPRADTTPRAAAPAAAAPAETRPEPTPAPALAPQAAAAPRAVARSESKPQPAPEPEPAPRPAATPVAATPPAVAEPEPVAAPAVQARAAEPEPAPAPVPPWEDLPEAVAAPAPAQPAAAPAPVAADDDGPPAWVDEAIPDEAGGGFVPEHSFTADPDDEFETLAPAAAAMPAPRAPTPRRESGGRGRAARSRLADMSPTGWPELAARLPVTGLAAELARQSEWAGVQGDAVLLRVAVRTLAESESRVRLQTVLCEHFGQGLRLEIEVGVTGDGTAHAVAQIERAARQQAAEDAVAVDPFVQALVADFGGRVVPGSIRHVDNPPAA +>UniRef90_A0A0B1P2W7 Putative rna binding protein n=1 Tax=Uncinula necator TaxID=52586 RepID=A0A0B1P2W7_UNCNE +MGEKTSSRNHQSRKERKAKKRAVENSIPDIPTPELELEPEPVSLATKSAEEVKQLQLDNSLNANEPQGNKRKRNKDGNGESGDNDEEEIDKKKKSKKRNKNLSNKEAKFCEVLKNSVSEATRENINYKNNGEEQRYSPLVKDEGKKKEKKKDSKTKKSNSIIATNNTEEGSSPLLDQEKSSSQKSSKKERKTAKLNVVALKHDHLQNGKNSDDHSGNENMDISKEGLKDSTSTIVTTTTITPPTTTTTSVDEKISKKKKHKKKNSQDPDQSIPKSTSTIIQNTNLPSKRSIKKTSENLVEKVSSSPPRGKSRFIVFVGNLPYTATKDSIMSHFSKLKPLSVRHLTKKEDSSKSRGIAFVEFENFDTHKTALKIMHHSIFDDGKSEPRMINVELTAGGGGNTEDRKTKIKVKNEKLNEERIRRVEEDKAKLKKEEEKKSGLGKESSLKDDQNSSESHIHPSRRRMITA +>UniRef90_UPI001E8E8CDE uncharacterized protein n=1 Tax=Fusarium flagelliforme TaxID=2675880 RepID=UPI001E8E8CDE +MDGPSHSTLPLNPVSVFFSKSSQPALFWSEFPSWASLSLPSLLFSPLFCFALHCASILESWSCVASITFVTSSAPTSTLIPQLHQPPSKRLINFCFTSQRKEDQDFTTSASYYTPSRPRHTASRVPLVVQPHLAVATRLIVLHNDETDFSTTPSETLSLPQYRKTVIVRVRTAEHSEAC +>UniRef90_A0A369W8G8 Formate dehydrogenase subunit gamma n=1 Tax=Pelagibacterium lacus TaxID=2282655 RepID=A0A369W8G8_9HYPH +MALQDPGPDAAAQTRNIIADMTHLEGPLLPMLHAVQAAFGHVPQEALPVIADTLNISNAEIHGVVSFYHDFRRAPAGRHVLKLCRAEACQSMGSEAVAAKLTALLGVRSGETSPDQAVTIEPVYCLGLCSCAPAALLDGEPIGRLDDERIVAIVERVRP +>UniRef90_A0A7I8XJZ7 (pine wood nematode) hypothetical protein n=1 Tax=Bursaphelenchus xylophilus TaxID=6326 RepID=A0A7I8XJZ7_BURXY +MEDGVEEKAWSVVWYGNMHKGFDLTHFGMGFIHLNLKFAVTVDAPEYDAIPTAHLAFHTSQMSMAGAVAS +>UniRef90_A0A6M4IS34 M42 family metallopeptidase n=1 Tax=Gemmatimonas groenlandica TaxID=2732249 RepID=A0A6M4IS34_9BACT +MLSESSVAFLKRLLDTPGPSGFEGAPARVWRAEAATFSTVKADVVGNSLATVEGSGGPTILLAGHIDEIGVIVTYIDENGYIYFEPIGGWDPQVLVGQRMRFLGRNGDVFGVIGKKPIHLMKPEEREKASKITDLWVDIGVKNKAEAMEHLEIGDAGVIDARVMEMPNNRIVSRAIDDRIGAFVVLEALRRYAAKPGAARVIAAATAQEEIGYAGGGARVAAQQLDAKMAIAVDVTFATDHPGVEKKELGEHNVGGGPVLTRGSIVHPVVFRLLADTAKKLEIPYSVHAAGRFTSTDADGIHLTRDGVATALLSIPNRYMHSPNELVSLDDLDRAADLIAEACRAVTSETDFTAR +>UniRef90_A0A836I9D3 60S ribosomal protein L22 n=18 Tax=Leishmaniinae TaxID=1286322 RepID=A0A836I9D3_9TRYP +MVAVRAKVGSRSHIRQKQLAKGKKVFKIDCSIPAADGIFSEDVLGNFEQFFQDNTKLNGRKGKLTEKVRLTMKDNVLIITTTMVYRKKYFKYLTKKFLKKKDLRDWIRILSTGKGTYQLKYFNIQDQEE +>UniRef90_A0A8S9ZRV0 Leo1-like protein n=1 Tax=Meloidogyne graminicola TaxID=189291 RepID=A0A8S9ZRV0_9BILA +MDMENFENGKIIPSQIRNFTVKDFGNSNEAKIELSKPHEELSIHGGRNLFIGNSSGSSSNKNRSRKRNDDNESNEPENCDELPPRQQRRNDGSSESDN +>UniRef90_Q8GPG3 Dimethylsulfide dehydrogenase subunit beta n=5 Tax=Rhodovulum sulfidophilum TaxID=35806 RepID=DDHB_RHOSU +MVKRQISMVLDLNKCIGCQTCTSACKLQWTNRNGREYMYWNNVETHPGPGYPRNYEHSGGGFDEEGALKIGITPSAEDYGIPWEYNYEEALMTGTDPWLRPNVKPTWGANWNEDEGRGEYPNSYYFYLPRICNHCANPGCLAACARNAIYKRQEDGIVLVDQERCRGYRYCITACPYKKVYFNEQISKAEKCIFCYPRIEKGLPTACAKQCVGRIRFIGYLDDEAGPVHLLVERYKVAIPLHPEWGTKPSVFYVPPLAPPRIGDDGEPTEETRVPLAYLKELFGEAVVPALETLKTERAKKQSGAESELMDTLIGYRHPEMFKLS +>UniRef90_A0A3N6CGQ7 ABC transmembrane type-1 domain-containing protein n=46 Tax=Paenibacillus TaxID=44249 RepID=A0A3N6CGQ7_9BACL +MGKSFDLSLVLDFIPELLRYLHITLIVLGGSIVLGLVGGVLLAIPRLYRIPVLSQLATLYVSFMRGTPILIKLFLVYYGLPELLKPIGIDLSRTDPLLFVIVTYALSDAASFAEIFRGAVRSVDKGQTEAAYAAGMTTFQSFRRIVVPQALIVAFPNMANTLIGSLKDTSLAFSIGVMDMVGRGQTLISATSHALEVYISLSVVYYVIVIVLEKGFAFAERRLQRHERKRVVHKPAIRAKRLKEVVQKVRF +>UniRef90_A0A1F8MA83 Ovule protein n=1 Tax=Chloroflexi bacterium RBG_13_51_36 TaxID=1797625 RepID=A0A1F8MA83_9CHLR +MGNEVGNKAEKNGESSTNQADNKVNQSLGLKYLETDQKRNLGLAGTNLEATQKLPPKHVETNLETDLETNRKLTRKPDPKLTQVDSNPDICGN +>UniRef90_A0A285JE01 Two component transcriptional regulator, LuxR family n=2 Tax=Arsukibacterium TaxID=336830 RepID=A0A285JE01_9GAMM +MHKVLLVDDQKLIRDGIKSLLGLSGKVVVVGECVDGSGVLTACSQLQPDVILLDLSMPVMNGVQTLASLKQAGVSTPVLILTTFDEHELVLKSISYGARGFLLKDVSLETLVQAIATLADGGSWFAPNITERLLGSIRQTSDAGFSMPAQLEPLSDKELEILQLMAAGYSNKEIAAALYKSEGTVKNQCSAILAKLGVRDRTRAVLLALELGLIN +>UniRef90_UPI0008F89955 permease n=1 Tax=Haloprofundus marisrubri TaxID=1514971 RepID=UPI0008F89955 +MSVVDQLVSAAELVIGMTWETWWALVLGFTLSGAVEAFVSEERMTDLLGDDGWREATLGTAFGAASSSCSYSAVGTARTLFKKGASGVAALAAFMFASTDLVFELGLVMWVLLGWQFVLGEYVGGLVAVVVMVAIFRYVVPQSWFDHARERVRENDDEECAACGMDADGDEAVYADAFPDAVFCCEGCLTAYENRTDAAGETSLRERVFSVAGWKSAASATTKDWEMLWDDIAIGFLIAGVVGAFVPTTWWTALFGADGSLEAVAVNVVIGVVIGILTFMCSVGNVPFALVLWTNGLPFGGILAFIYGDLLIPPLVNLYRKYYGWRLAAALSLSLFVSAVVAGVVVHTLFDGLGLIPTQGTVGGTLSGEYTTVLNLALTPVFLAQVYVTFGRDGVERRLAAGAAKLLRLAEWVVGTVAVLGTATGVVAGVVDAFGDVLHDAGDRARESVRHARVRALRRVRGREMPSPGTADATAEQTESDE +>UniRef90_A0A251SHM8 Ovule protein n=1 Tax=Helianthus annuus TaxID=4232 RepID=A0A251SHM8_HELAN +MNLRTCNKVDTVLRMHLLMNHITRRSNRIWVMGYTGMKVDTEVTVDTVVMVDTGVKVVTVYTIDLGMKLDTVDTKNMVDMVMSPVTHHFMNHLPRAIHFK +>UniRef90_A0A081IBZ0 THO complex subunit 2 n=10 Tax=Plasmodium (Vinckeia) TaxID=418101 RepID=A0A081IBZ0_PLAVN +MSLNFSDDDIYENKGDEIPYENNLNEDIENNEVNFNGDPYGDEYADEFERNANIEEEEQKEKKKKKTITFQLKNLFNETALKQINSDINKKRKNEKRNSYNDDYSNMMDQDEFEEQYSDNDELKKYVQDEKNKIKQLVDEKDELWDMYIYLNLKKKKRKIDYTEERYTSAIKKVLDSFCSEYKNMVIENLFKNKIFEKYLIVSDIDIFFKNNNIENVYKNTTTPVINKKNSLLEIKKRLVDIYNKGNCFNYLKEVSVDNRTRLNGVAEDEYGFENDESINEDKNEYMFNDNSKRGELDTNFIIEREKINLKINKLEHKYIKLIQTVKQYKRKHLRTNFNLFMNLINEVTSKLYFSIHNVLLMNDGENNLADIYKTIRRKYNIHDVLNKVQNLTQKKEVYEHYRSYLIYKYKSTYPICNNTFKNHQMEENINIFNFKKTYNTKFTNNFSLLQDENDLGDEHFNKVENSTSANKTDINANNNMNTNNKKVEENIFAQDIYEEDFFNIDTQNKESDIKTDSWEDREKNNETHPNTNSFASTKQDTQNKLNTPNEPTTIEETPLERAKRIAREKKKKLMESQAKIL +>UniRef90_UPI001C2DB369 hypothetical protein n=1 Tax=Catellatospora tritici TaxID=2851566 RepID=UPI001C2DB369 +MSEQNIADAQIVVKSDMGRNHELEFDYDIVVVAGERGRQLAAAQAESILEILEPFGPPAEPSDRPGPEPDETSSRAELM +>UniRef90_A0A1V6QLK6 FAA_hydrolase domain-containing protein n=2 Tax=Penicillium TaxID=5073 RepID=A0A1V6QLK6_9EURO +MSSINIPWTRLVRYSSSADGPVKYGEPVASPNADLGQLANEGKLQVKQLSGSDPFSLQTTDVTEGVFCLYGPLAPKDVPIIRCIGLNYKTHILETGRPLPTCPTIFTKPGPAVADHDSPVPIPTIAQEQCDYEGELVIVIGRDGKNISEADALDYVAAYTAGNDVSARDWQREAGKAGPVPQWGFSKSFDKYAPLGPCLVRQDQLNEANNLSLRTLVNGEVRQDSHTSDLCFGVRKLVAFCSQGQTLQKGSLIMTGTPGGVGLFMKPPNFLKDGDEVSVEIENIGTLRNIMKFEE +>UniRef90_A0A0C2I283 TPR_REGION domain-containing protein n=1 Tax=Pseudomonas batumici TaxID=226910 RepID=A0A0C2I283_9PSED +MSTRNWPRHLLCLSLSLPLGSALACGPDFPLRLLEDRAQSLADLPETNFQFEVNRLGEAVAGLKPATEATLTPYWDSDDNTKPYREQRDKVEASELPENLRAEVARLRNLADPQQVETEGASLPAELRLYIAGAVAFQSGDAQRAVDYFRQVLALPADQRKLRSTWAAYSLGRALVALSAQAEAGVDTPADSAAPVVTSPELQAQARLAFQQTRALSAGDFSDPLELGIASLGEEARLARFDNDWNRAIALYASQSRLGSNSGYTSLKQVAGELARLPDDELGALLKEKNVQALLTAYVLSRVGGFFDEQPEADQRLSRMVLASVAGSLDNADRLAALSYQKGDYAGAKAFVGHAGDGGLAWWVRAKLALRDGDKVQAAAAYAKAAKAFPKDEVWGPRRAPDWSFESIQPGCRVQGESAILALDRGDYLQAFDQLYRSQDIYWLDAATVAERVLTLDELKTYVDAHVPAPPAAKPEDKDNYVRRPVAAQLRELLGRRLLREGRYDEAPKYFDSPELQATARDYGRDRQQAVSRWTATGRAESLFAAATLARKSGMEILGYEMAPDYRALDGYYSLGAAELKPGPFLETAEVQRQQASVAKPDRRYHYRWVAADLANQAADQLPHSSQAFAAVLCKAANWVAGSDEEIQYYQRYVEQGPYVSWAANFGRQCQAPDFDQANRRYLTQPLNSVRSALRPYKVALVVGGLALFGGLAALWVRRRKAKL +>UniRef90_UPI001EF2088A response regulator n=1 Tax=Actinoplanes cyaneus TaxID=52696 RepID=UPI001EF2088A +MAEDDPDIREISLLLMRRAGHRVISAEDGAQGWRAVLFHDPDLVISDVDMPEMDGLELCAKIRGNPATELTPIIFISGVLMPDDDRVITAGATALLHKPFTAAEMLSCVNASLAAGAKAGRDTK +>UniRef90_A0A7Y2JY00 TetR/AcrR family transcriptional regulator n=1 Tax=Massilia aromaticivorans TaxID=2725995 RepID=A0A7Y2JY00_9BURK +MRQKTEAKRQAILAAAGAVFREHGFETSSVSDIAARVGGSKATIYSYFPSKEALLMEVILSAAETRSVTVFSEVLALGDVVTGLRRIGEAHLSFISTAEAVALARLAITAGERSTLGREFYTRGPLVMIENLAAFLAASIARDELRPGDPRQMAESLKALYEAGIVERHLLGDLKGLEGVDLAVHAAQAVDIFLAYYGKA +>UniRef90_A0A1R3UIW8 Inner membrane protein n=2 Tax=Nocardiopsis TaxID=2013 RepID=A0A1R3UIW8_9ACTN +MNFNSLSALAFRVVAVFEAFTWVGLLVGMYFKYLGNGSELGVQIFGPLHGGAFVAYGLVALLAAYRFRWGAWPTLVALAASVPPLGTLLADWWLHRTGRLDPERAETVRTPEPVA +>UniRef90_A0A222G883 Uncharacterized protein n=1 Tax=Cognaticolwellia beringensis TaxID=1967665 RepID=A0A222G883_9GAMM +MEANKLARLSCLFEKAVANNAKLLEKHELDELYNEFINDGRDHIKNTVVAFPKGLRRTAS +>UniRef90_UPI00190B6181 septal ring lytic transglycosylase RlpA family protein n=1 Tax=Paraburkholderia TaxID=1822464 RepID=UPI00190B6181 +MSNGQELVTSAPVTPRLIEGSPPMLVAGAENRLDAETPPLPYNHGHVAHFWQSGLASWYGKVFHGRRTASGEQYDMYALTAAHRTLPLGSYVRVTALRDARSVVVRINDRGPYARGRVIDLSYVAAAALGLSRTGTMRVRIESVGKQDSQRVALDCKCTEVETGG +>UniRef90_A0A148KMI4 Alginate lyase n=2 Tax=Paraglaciecola hydrolytica TaxID=1799789 RepID=A0A148KMI4_9ALTE +MLLTPCSYSATDTHQNTLPASHSALAEGELLGDFTKLDPSKKPSENFDLEDWSLTLPTDLNKDKKADMIYEKPLSSGFELKPLFYTADDGGMVFACPNVGAKTSNNTKYARTELREMLRRGDTHIKSQGITGNNWVFSSAHGSDRRNAGAVEGSLEATLAVNRVSTTGDEKMLGRVIIGQIHATDDEPIRLYYRKLPNNNKGSVYFAHEINGGDDVWLDLIGSRSHTLADPEDGIELDEKFSYKITVENDILFVTLVRQGKTNITQSLDMSQSGYNKSNQYMYFKAGVYNQNNSGDPKDYVQATFYHLDNQH +>UniRef90_Q90X71 carbonyl reductase (NADPH) n=2 Tax=Anguilla TaxID=7935 RepID=Q90X71_ANGJA +MSTNKVALVTGSNKGIGFAVVRALCKEFPGDVYLSARDVDRGTAAVENLKTEGLNPFFHQLDITDPASVRHARDFFKEKYGGLDVLVNNAGIAFKVADSTPFGIQAEVTLRTNFLATRDLCNEFLPIIKPGGRVVNVSSGMSSIALKSCSSELQARFRSNDITEEELVMLMEKFVQEAQKGEHTHKGWPNTAYGVSKIGVTVLSRIQARRLREERAGDQILLNACCPGWVRTDMAGPNATKSPDEGAVTPVYLALLPVGATEPQGQFVSEKQVQVW +>UniRef90_A0A5M9QSU3 DUF4134 domain-containing protein n=5 Tax=Lactococcus TaxID=1357 RepID=A0A5M9QSU3_9LACT +MKKNKIILGISLVGFIASMFLPSFQGIDIKVFDYTKMNYFELVKEKWWIYVLLLIILVLIRTLSIEKSKILSSIFVSGFIFFKLSLLSLENGHLFINGYPVLWGYAVATLFGLLVSFSLLIDTYKDRG +>UniRef90_UPI00146DA424 glycosyltransferase n=1 Tax=Flavobacterium silvaticum TaxID=1852020 RepID=UPI00146DA424 +MKTITVFTPTYNRAHCLTILYDSLLRQTSDDFEWLVIDDGSVDETKQLVQGWIDEGRIPITYKYKENGGMHTGHNTAYAMISTELNVCIDSDDYLPDDGIEKMITLWRRDGSNKYAGMIGLDVTIKGAVIGTQFPEGLKECTYSELAPRYKVVADKKLVYRTEVVKKYEPYPVFPDERFVPLYFPIVIDRDYKVLCYNEVFCIVDYQPDGSTIGIFKSYFRNPKGFAHSRKIEMIYDPFWKRKVKSAMHYVANAIMTKNANFLSESPKKLLTFLSIPGGVALYLYLNRKKNQDRDISKGYKR +>UniRef90_Q9AAQ7 TonB-dependent receptor n=4 Tax=Caulobacter vibrioides TaxID=155892 RepID=Q9AAQ7_CAUVC +MKKISGLRLCGDNVAALIVRPRVLKKVLEWSASCLQCATSPQSVFAPLSQGGIQKMTNTKTTATAGRRKAFVIALLSGACFAEAALAQSTPAPAADQAAVDEVVVTAFRKSLATALEVKRKDVRVSDGISSEDIGKFPSENIAEAIQRIPGVQISAINGRGSTISIRGLGPQYALTTVNGQAFKSSNFTDGFRYDVIQTELASGIQVYKSPTADMDAGGLAGTVNIDTVHPFDVKGRQIIVAGKLQQQELIGGNPTGKYGLTYVDHFLDGKLGVFLGGGYQELKDRGDYLWMDRWTVSNNVYTPARLRYRRIDRETKRSMINGAVQWKPTEHLQMDLIGTYAEDKTTQNIHQQVFLFTTPSASNVVPITVANGTSTKVQVNNFRLENNQQYENRPQSTSALTTKLHYTGLENWDFNAVAHYSRGNAKHNEEAAVLGINIPSATVDIADPKNVIFTTSTALTNTAQYAPTTLIRNTYPTGAFRTVGSHESAAQFDAKRYLDWGILESVQVGAKTRSEVLKRYVIRKDNQVVPASFSPTMANSGIAVTNFLDGQMTLPNAWVSPNLDAYREALKAQGISVYEGFDPLGSYRVERDLTSVYAMANLRGEVLSKSYRANIGVRNESTDQTIKGYIGSTANPQNTEVRLAAGNYTAKKSYDNLLPSANLSVDLTDNLLLRVAAAKVLVRPIIDSSNQLARTMTSATDTTGRRIFTISSGQGNLNPMTANQLDLTLEWYYGQGNGLSAGYFSKKVKNGVFSQLTCPTSYESVALSRDSSGVCVAANGDNYMITESFNDSRVVDIHGYEVNWQQSLDAWLPIEGFGLIANYTHVTPAKSTTGFRLANLSEHTANGTVYWENQKFSARLSANYRSAYDQTSVESFFAGPLGHTIKARTQLDLNLGYNFNERLSFAFAAMNINNAQEEAYLINASRWQETAVTGPSYFLSFQYKM +>UniRef90_A0A1J5H2U3 DUF3598 domain-containing protein n=1 Tax=Oscillatoriales cyanobacterium CG2_30_44_21 TaxID=1805292 RepID=A0A1J5H2U3_9CYAN +MRSQWECLLKNLGNWKGSFARLNPQGAILEDIPSETILELKEDRQTMRQTVRRFIDGQPQDLVLEYQNLNKSTTFFENGAFSQGSPQFAPYAEFGTEMGLIDGDRRLRLVLLYDKAAQLDRITLIREHLAHSENSQPPILTLHDLLGKWEGEAITIAADWSEPEVIATKTEWNQNGDRVTMSLQMGTQSLTATAFINPFQPQILTFPQDQVQTLFLPDGASLTCPVAIAPRQSFRLSVSWLLEPNLHQRMIRAYDAKGAWSSLSLVTERKTM +>UniRef90_A0A157SJD7 Acyl-CoA transferase n=8 Tax=Bordetella TaxID=517 RepID=A0A157SJD7_9BORD +MSQRSAPLTGIRVLDLTRVLAGPWCTQNLADLGAEVTKIERPGAGDDTREWGPPYLKDEHGNDTTEAAYYLSANRNKLSVALDIATPRGAELVRELAAQSDVLVENFKVGGLRKYGLDYDSLSQINPRLIYCSITGFGQTGPYASRPGYDFMIQGMGGLMSITGERDDLPGGGPQKAGVAVADLMTGMYSTVGILAALHERARSGLGQHLDMALLDCQVAMMANQNLNFMTSGKAPRRAGNAHQNLVPYQVFAARDGHLIVAVGNDSQFRNYSRVIGLPELSADPRYATNPQRVQNRDTLVPLLAERMATGERDRWLAELEAAGVPAGPINTLDQVYQDPQVLARNMRLELPHPTAGKVPMAASPLKFSGSPVQYRHAPPMLGQHTRQVLQERLGLSEDDIQALAQPRA +>UniRef90_A0A223S709 Alpha/beta hydrolase n=1 Tax=Nocardiopsis gilva YIM 90087 TaxID=1235441 RepID=A0A223S709_9ACTN +MGLPVVLVHGLRLSGTMWRPQQELLEAQGRRVVAVDLPGHGTRRGQEFTLPAAIDAVAEAIDAVGGRALLVGLSLGGFVSIAVAAAHPGRVAGLVAAGCTARPAQTLAQVYRIPAVLLDRLPDHGQAVNERFHRLTLPTDGAAAALDGGLAMEAARAVIDEISDMEVLEALGAYEGPVWLINGARDPFRIHERQFLEACVDGRLLNVPRAGHMVSLDQPENFAKLVGDIADVASVRAAEAPPGAARSHGPGV +>UniRef90_A0A8K0DS69 DDE Tnp4 domain-containing protein n=1 Tax=Ignelater luminosus TaxID=2038154 RepID=A0A8K0DS69_9COLE +MDAILKLKKVEKLSKLVKLKRLHEHKNKRLWSREWLLRRDSKELGACSFVEHELQEEDYNLYKNYLRMDKCVFEKLLRLIEEDIAKQDMQFRKSISPRFRLMITLRFLATGETFTSLSYSTRVGVSTLSTFIPEVLSAIYKNLCKLYLKVPSTTQEWKTISNEFLTQWNVPNTVGAMDGKHVVFRPPKSAGSHYYNYKGTHSIVLLAIVDASCRFLYIDVGTNGQISDGGVFEDCDFAVELNRHSLNIPEDTPLPGMTIPVPHVLLADAAFPAQQHILKPFPMKDMTKHQRIYNYQISRGRRIVENAFGILVNRFRVLLNPISLARDKVVLITQACCVLHNYIKTESHEQIIKAQDSENIKKITIQLYIMLHTPEDVQVSDILSHENNLKNTLIIMVQYLGRITKHNVFIIV +>UniRef90_UPI00177E212B Fe-S biogenesis protein NfuA n=1 Tax=Blochmannia endosymbiont of Colobopsis nipponica TaxID=2681987 RepID=UPI00177E212B +MIDITNIAQEHLTKLLSQQKPGTQIRIFVIEPGTYNAECGISYCFAENINPSDIKIRFKSFSVYINKTNLPYLKDTEIDLIFNQTESQLTIKAPNARMCQPNDDAPLDKKIEYILQSKINPVLAQHGGSVKLIEITKDMSAIIQFSGGCNGCSMVNLTLKESIEKELLQKFPELKKICDLTEHQHGKHSFY +>UniRef90_UPI001054CDFC AAA family ATPase n=1 Tax=Occultella glacieicola TaxID=2518684 RepID=UPI001054CDFC +MGRTNYLIEGLSGTGKTTVCDELQRRGHHAIHGDRELAYRGDPETGRPTAGFGHEHHIWDVDKVRALVADREHAATFFCGGSRNFSKFIDLFDGVFVLRVDLATLNRRLDERPDQEWGGGQPTERDRIVHWHRTNTDVPANGIAIDATAPVERVVDEILRRCETDR +>UniRef90_A0A146FHF8 Short-chain dehydrogenase n=1 Tax=Aspergillus kawachii TaxID=1069201 RepID=A0A146FHF8_ASPKA +MTRTWVVVGASRGIGLEFVRQLASSGERVIAAVRSLSSAEQLFGLLSQYTRNGAPLITVEECDVTKPDSIDDFSHNVEKAVRDGGLRLTNVILNAGINQYPNRATEMYAYRP +>UniRef90_A0A0A0MRI8 Obscurin (Fragment) n=3 Tax=Hominidae TaxID=9604 RepID=A0A0A0MRI8_HUMAN +AGKTMAIAAQGACRSLTIYRCEFADQGVYVCDAHDAQSSASVKVQGRNIQIVRPLEDVEVMEKDGATFSCEVSHDEVPGQWFWEGSKLRPTDNVRIRQEGRTYTLIYRRVLAEDAGEIQFVAENAESRAQLRVKELPVTLVRPLRDKIAMEKHRGVLECQVSRASAQVRWFKGSQELQPGPKYELVSDGLYRKLIISDVHAEDEDTYTCDAGDVKTSAQFFVEEQSITIVRGLQDVTVMEPAPAWFECETSIPSVRPPKWLLGKTVLQAGGNVGLEQEGTVHRLMLRRTCSTMTGPVHFTVGKSRSSARLVVSDIPVVLTRPLEPKTGRELQSVVLSCDFRPAPKAVQWYKDDTPLSPSEKFKMSLEGQMAELRILRLMPADAGVYRCQAGSAHSSTEVTVEAREVTVTGPLQDAEATEEGWASFSCELSHEDEEVEWSLNGMPLYNDSFHEISHKGRRHTLVLKSIQRADAGIVRASSLKVSTSARLEVRVKPVVFLKALDDLSAEERGTLALQCEVSDPEAHVVWRKDGVQLGPSDKYDFLHTAGTRGLVVHDVSPEDAGLYTCHVGSEETRARVRVHDLHVGITKRLKTMEVLEGESCSFECVLSHESASDPAMWTVGGKTVGSSSRFQATRQGRKYILVVREAAPSDAGEVVFSVRGLTSKASLIVRERPAAIIKPLEDQWVAPGEDVELRCELSRAGTPVHWLKDRKAIRKSQKYDVVCEGTMAMLVIRGASLKDAGEYTCEVEASKSTASLHVEEKANCFTEELTNLQVEEKGTAVFTCKTEHPAATVTWRKGLLELRASGKHQPSQEGLTLRLTISALEKADSDTYTCDIGQAQSRAQLLVQGEAAKCARA +>UniRef90_A0A5A9P3B1 Leucine-rich repeat and calponin-like proteiny domain-containing protein 3 n=1 Tax=Triplophysa tibetana TaxID=1572043 RepID=A0A5A9P3B1_9TELE +MAASVLHSAESAVPSFTVGHPARATGIHGLSNAPGPGSWNRSLDRALDEAAATGVLNLSGRKLKEFPVIVNFLSKTTHYYLSRNRLPELPVEVCMFVSLENLNLYQNCLRSLPESLINLQSLTYLNISRNQLSTLPAHLCRLPLKVLIACNNKLVSLPEDLGKLRHLTELDVSCNEIQTLPPQIGQLETLRDLNIRRNHLVRLPPEVAELPLVRLDFSCNKVTSIPVCYRNLRQLQSIILDNNPLQSPPAQICIKGKIHIFKYLNMEALVKRKRKNRLLNTPELSCNCLSSVERERKKERDKKKDRGVAEDLGDKRWSGNEASGFQPVEGRSQLASAPILNYACLLITQLMSLCVLTLSSGESRCTHTHSVRESRVQCFYSCRCGCVCKRVAGVTSGSEKQISAERRCYELRQADYLLTSQTFTMGRWHRTHDVCMVFQLCVCEHNKSSPSPTKLSPTDTCYLKSHVSCSISESVPLQTVHSHRRLRPLYGKSQSNRNFIVKRTQSLRLKHTYTGEEADLIEQLRRNIECRLKVSLPSDLGAALTDGVVLCHLANHVRPRSIPSIHVPSPAVPKLTMAKCRRNVENFLEACRRIGVPQKQLCLPLHVLEERGLSQVAGTVQALLDMAPPKQTSSFTL +>UniRef90_A0A1C6D475 Translation initiation factor IF-2 n=4 Tax=Eubacteriales TaxID=186802 RepID=A0A1C6D475_9CLOT +MAKLRVYELAKELGKESKDVLTVLASKNIEVKSHASSLSDEQVDMVRKSLSPKAQVQSQARPQSQVQRPSAPAGEAAAHAPEARPQQEVPKKKPNIIQVYNPQNSQQASLNRQSGRPQAGRPGQNPRPQGQRPMGSQQGARPAQGQGQPGTRPVQGQGQPGTRPVQGQGQQGTRPVQGQGQPGTRPVQGQGQPGTRPVQGQGQQGTRPVQGQGQPGTRPAQGQGQPGTRPVQGQGQQGTRPMQSQGQQGARPVQSQSQQGTRPAGQAGNQGVRPNGSYQGNQGQRPQGQQGSQNRPAGASQYNRPNGQQGNSSQRPAGNQQSYGSNRPYGQQNNNGNRNTAAGQGQRSGQGQYNRPAQGDRPNGRPNQGSGQYQNQGSGQYQRNSQGQGGQRSGQGQYGNRPYQGQNGRPQGQNNRSQGTRPGGAPSMRDGLTIPKPPQTKATEKQNVTSRAERGDRNDRSRDKDRNGRNDRRGYQDNRPNQRNMGGKGRNNAPAPKPVQQEPKEVTIRTIILPETMTIKELAEKMKVQAAAVVKKLFLQGSVVTVNQEIDFEKAEEIALEFNCIAEAEVKVDVIEELLKEEEEDPATLIPRPPVVCVMGHVDHGKTSLLDAIRNTHVIDKEAGGITQHIGAYTVSIDGQKITFLDTPGHEAFTAMRMRGANSTDIAILVVAADDGVMPQTIEAINHAKAAGIEIIVAINKIDKPSANIERVKQELTEYELIPEDWGGSTIFAPVSAHTHEGIDNLLEMILLTAEVCELKANPKRRARGLVIEAELDKGKGPVATVLVQKGTLHVGDSIAAGSSYGKVRAMMDDKGRRVKEAGPSTPVEILGLSDVPNAGDIFVSPENDKEARNFAQTFISEGRERLLEDTKAKMSLDDLFTQIKAGNVKELGIVVKADVQGSVEAVKQSLLKLSNEEVVVKIIHGGVGAINESDVILASASNAIIIGFNVRPDATAKNTAEREGVDMRLYRVIYDAIADVEAAMKGMLDPVFEEKVLGHAQVRQTFKASGVGTIAGAYILDGIFQRNCTVRLTRDGVVIYEGPLASLKRFKDDVKEVKSGFECGLVLEGFNDIKEEDLVEAYTMVEVPR +>UniRef90_A0A315BXB9 MFS domain-containing protein n=3 Tax=unclassified Limnohabitans TaxID=2626134 RepID=A0A315BXB9_9BURK +MMFGNVVIGTGVMMAAGTLNDIVDSLSISVATAGQLISSSALLVCFGAPVLAAVVAGWDRRKLLVGSLLWYALWHFLAALSPGFYSLLGFRAMAMLAAAIFTPQAASCIGLLVKEHQRGQAMTFVFLGWSVASVLGMPLGSWIGGHFGWRWSMGLIALLSVIGAYWLWRQMPSKVLPPALSGAAWRQTLTSRTIWVTLSVTMMLAAGQFVLFSYLAPYVKERFGVSPAQFSLMLLAYGSMGFVGNALLSRFIDRIGPSRCILISLSSMCLSVLIAGEVTHATGMALALGFWGLGGFSSNSAQQARLASQAPWLASASISLNTSAMYAGQAIGATVGGWTIVHQGMSALPQRGLIGLLLAIGLSLLATRYARLHPLRSPEKA +>UniRef90_A0A2N7D5J4 Flagellar basal-body rod protein FlgC n=2 Tax=unclassified Vibrio TaxID=2614977 RepID=A0A2N7D5J4_9VIBR +MSFTDIYSIAGSAMTAQTVRLNTVASNLANADAVSANPDDAYKALKPVFATVYNKSQLSAEQALYPNAEVRIVDVVQSQSQAEQRFEPSNPLANQEGYVYYPGIDVVTEMADMMSATRSFETNVEVLANVKSMQQGLLRLGEGR +>UniRef90_UPI001CF99253 hypothetical protein n=1 Tax=Pseudomonas sp. L5B5 TaxID=2883205 RepID=UPI001CF99253 +MLQTLWVLLNWEAWGESLVIAFIPFLLFVWVGALVTMLVLRFRGRISIFWASQLAGGVAGVAATLAFMMAANFVVDYKAYRESVRQLEAQERLQPKPESPNVETQPVELAGGMAGLESMKIFMALLSYRADSKRLRESDRQLGEKELLQTQKTSQTVEVQSVSSPENVLGEVSDSSGHR +>UniRef90_A0A8K0MZ08 Auxin-responsive protein n=1 Tax=Cocos nucifera TaxID=13894 RepID=A0A8K0MZ08_COCNU +MATSASIGVAGKELGVISEASSPLKRYNGLRPLLGSKQMASFAAMRKPNGPFPSLPSLKSPRIRAVASPTVAAPKREKDPKKRIVVTGIGLVSVFGSDIDTFYNKLLEGQSGISLIDRFDASSYSVRFGGQIRDFSSKGYIDGKNDRRLDDCWRYCLVAGKRALDDANLGPEVLQSMDRSRIGVLVGTGMGGLTAFSNGVEALIQKGYKKITPFFIPYSITNMGSALLAIETGLMGPNYSISTACATANYCFYAAANHIRRGEADIMVAGGTEAAILPTGVGGFIACRALSQRNDEPQKASRPWDKDRDGFVMGEGSGVLIMESLEHARKRGATIIAEYLGGAITCDAHHMTDPRSDGLGVSSCIVKSLEDAGVSPEEVNYVNAHATSTLAGDLAEVNAIKKSMIGHCLGAAGGLEAIATIKAITTGWLHPTINQNNLEPDVTVDTIPNVKKKHEVNVGLGEQDLTEELWRLCAGPLVEVPRVNERVFYFPQGHMEQLEASTNQELNQKIPRFNLPSKILCRVFNVQLRAEPETDEVYAQITLHPEPDQSEPTSLDPCPPETRRPMVYSFCQPRRHLLTTGWSTFVTSKRLVAGDAFVFLRFTGTVVGVEDVSSQWTDSKWRSLKVQWDEATNILRPDRISPWEIEPFNTTAPTLNAMHPVLVKNKRPRLPMDMVGYTVLEPTSPFWYSGTTHSHELDGLSSVDANSSATQVIWPCMQKENKGNGVKNGPGSCDPMVLDDWLKGLHSPIKSPPASLTDVSLKLFQDMNDETKVASWPVNPGSMMEQQPVLKLGNGVEEWKKPEVRSSSCRLFGIDLMNHSKSTTVSEKAIAAPAFTKSIAPIEGPSKATASVDESDQQQSGLSKASREHKQGLDSSPKEIQSKHHGSTRSRTKVHMQGMAVGRAVDLTNLVGYNELITELEQMFEIKGELRQRNKWEVVFTDDEGDMMLVGDDPWP +>UniRef90_A0A2E7GD31 50S ribosomal protein L18 n=1 Tax=Bdellovibrionaceae bacterium TaxID=2026715 RepID=A0A2E7GD31_9PROT +MSVKVRKRTDKKKVVRFKRKRKIRSTVEGSSERPRLCIFRSNTNVYAQLIDDQKGHTLASASTKDAELKDQKSTVEGAKQVGALLAKRAQAKKIESVVFDRNGYLYHGRVKALADAAREAGLKF +>UniRef90_UPI0011841962 trans-aconitate 2-methyltransferase n=1 Tax=Catellatospora sichuanensis TaxID=1969805 RepID=UPI0011841962 +MWNPETYLRFADERGRPFHDLLARVDAEQPRQVVDLGCGPGNLTATLTARWPGAQVRGIDSSPEMIEKAVADQGGPGPVSYQVGDVREYLPGPEVDVIVTNAVLQWVPGQEELVGRWARALRPGAWLALQVPGNHDGPAHRALRELCASSRWSALLGEIAEQPRSVPGSQEYARLLRAAGCAADTWETEYVHQLPVTGGPHPVLTWLTGTALRPVRAALAEQPGAWEAFCVALEPALISAYPADGAIVDFPFRRVFAVGRRTAAPS +>UniRef90_A0A0M8PST9 Uncharacterized protein n=1 Tax=Lysinibacillus sp. FJAT-14222 TaxID=1932366 RepID=A0A0M8PST9_9BACI +MSRLGQHDVGHEGVITRRDAFSLRSSMCSLQGLIFDANPQGVAQSQLQSTNSYSMYPLPIAII +>UniRef90_A0A7Y9F3N0 YtxH domain-containing protein n=1 Tax=Nocardioides marinisabuli TaxID=419476 RepID=A0A7Y9F3N0_9ACTN +MSRGLWFVAGAGAGVYAMVRGRRAAEALSADGLRDRAGALALGARMFRDEVAQGRAEAEDQLRQRLAAARPREIDSPHPTERTTEQEGTS +>UniRef90_UPI001967ED96 hypothetical protein n=1 Tax=Janthinobacterium lividum TaxID=29581 RepID=UPI001967ED96 +MQQDSGTAKAVPLNYFYRGVTVSKKQKTIVNHRSAVSGRFVTERYVKSHPATTVTEHNRISAPAKPLKRR +>UniRef90_A0A5A8ADR5 GNAT family N-acetyltransferase n=1 Tax=Chryseobacterium sp. SN22 TaxID=2606431 RepID=A0A5A8ADR5_9FLAO +MEHLTNFTYSDIKSELFRLKSKEMKANFFMTELQFNRLWSENKIQVFKTEKACFLLTDDDGFKRLYFIASDIEEIKYFLNNEIKNSDTDISVETVGNSKYLQDIRDAFLQNGFYEYSSMVRMSKIRNQVEEVDFENIHLLAADNKEEFQELYRKYFDKFVERIPAIEEIEGFIENKNAYYFSDNNEIQGFIVFEYYGITSHLRYWFVHPDYREKRIGSKLIQLFFNLGENIRRELFWVIESNENAIKRYKHFGFVEEDMHNLILINKNKKYEEPNY +>UniRef90_A0A2D7PFG9 NADPH:quinone reductase n=1 Tax=Candidatus Pelagibacter sp. TaxID=2024849 RepID=A0A2D7PFG9_9PROT +MKKIFIAFGHHNTKNSFNASIRDTFIEEAKKCGHNIDLVNLFDEQEKLPFYNQNINPPPQLVLDYRKRLEKCDVMMLIGSCNNLRLNAILENWIDWVLHPKWFFTYRSLLPGNKYFKNYGYPVAGAMKGKLGVVSITYGGPMISYQSFSFFDNIPYRRLKKSVFQLGGLKTKYLRFYSILPEMEKKEFENHMLKVRKFAKSL +>UniRef90_A0A415FL20 DUF2953 domain-containing protein n=2 Tax=Ruminococcus sp. AF46-10NS TaxID=2292072 RepID=A0A415FL20_9FIRM +MTAVQSFLGIPSKIFKKIRNLTLTIKKFCGKINWYKEFINHAQTRAALSLVWKDGKKLVRHVLPTRITGKITFGCEDPSITGTVLAVLGMTIPFHKNAIAVTPLFDSENVLEGEVMLKGRIYGIMLLKTAAELYFNKHIKYVIHRWRHKEVNHGERE +>UniRef90_A0A7G8QAU1 SmpA_OmlA domain-containing protein n=1 Tax=Dyella telluris TaxID=2763498 RepID=A0A7G8QAU1_9GAMM +MSKLSISLSIALLASAGLGTPAVASAESLLVNRVQQEKTMDLPSRGMSMAEVEKKYGAPQRKLSPRGGGSSKQPVINRWDYSNFIVYFEQSHVIHAVLNTPAGNNTNPASAN +>UniRef90_A0A6J4UR21 3-oxoacyl-[acyl-carrier protein] reductase n=1 Tax=uncultured Thermomicrobiales bacterium TaxID=1645740 RepID=A0A6J4UR21_9CHLR +MSDRARFAGKVALITGGGSGIGAATARLIAAEGGSVAVLGRTAATVKATATAIGGAGGRALAIAADVSREEAIDAAFTRAIEAFGRIDVVVANAAVQLHRRDLPIHEQDFAAWRETQEVNLGGAFLTCRAGVRQMLAQGEGGAIVIVSSVTALAGTAAQNPSYTASKGGLVSLSRALAVKYAPDHIRCNVVCPGALAAPPDVEEIDNAARERRLVGQIPLGRLGDFAEIAPMIAFLASDEASYATGGTFVVDGGLTAT +>UniRef90_A0A8T9LM70 LytTR family DNA-binding domain-containing protein n=2 Tax=unclassified Dyadobacter TaxID=2625061 RepID=A0A8T9LM70_9BACT +MMNTKQLTAKIVIVDDEFFVRQTLVSMIANIPNAMVVGEAEDVGSGIELILEKEPDLILLDIKMPVRSGFDLLEELTHCQQQYGLIFVSGYPDEALTAVQKAAPYFHSDFVVKPIDPVILQTKFSIFYNKWQAAKEQESELAGLLETGIPQIAYKSDQLVFQNSQLFHCIDIDDILYCESANRQINVYCSQYEHINIPNTTLDAIERMLPADAFIRIGKSHILNKSAIRFIQKGNRPKCILARNGKSYEVQLYASNVEKVEQSYSITRK +>UniRef90_A0A811MPR2 Rep_fac-A_C domain-containing protein n=1 Tax=Miscanthus lutarioriparius TaxID=422564 RepID=A0A811MPR2_9POAL +MGSSEDDFTPLSELTVGMNKCRVRVRVSRLWESFNPKNDISFGLDCLLIDDQGETMQARVLPDYIDQFEGQLIEGKTVVNEIEGDIDSIPLHSFEFIDFKNLHSMCDDISILRDVLGHIVYVGDLQEVEKKSRTIEICNATIQNLSGRKLGVTLYGDIACGFAEDMLEKGQKASGVAVFAGMRVESSHSVCSTTCSKYYLDLEIPEVQEFCENLSIQQENPVSEKSQAQKLAESWRTIEQLKRLNPKDYDEDTKFLCRVSLIDIDCTSGWCYLGCNTCYKSMYRAPRKYKCSRCGPIKRPINWYKLKTMVQDATGTMNLMIFCEVAEELVGVSAEELVDEIEDDEEWFTLPDEIEDLLGSTHTFQVFDKHLSGSFSVYAIMDDDTVPVPAATTSQCKEESVPEGSVNAAVPSPATTQCKAEPGMAAPAPAMIPCKEEPVLEENFSMVVPAPTTKHECKEEPFLEHSVNMAVLKPTITQCKVEEPVPKGSAGTGEARLKSTRLQKPNKRLLGDDWIN +>UniRef90_A0A5C7TQB5 Conjugative relaxase n=1 Tax=Rheinheimera sp. TaxID=1869214 RepID=A0A5C7TQB5_9GAMM +MLSIQTLGTMTKDKVAYYTELAATGYYTEAEEPAGQYFGKLASVLNLDQKAVTQEDLLELAKGFDTKGKALVANAGDEHRMGIDLTFSAPKSVSVCFGLAGTELRTAIQKAHESAVKAALTYAEQNFIQVRHGFEDNQQRRMINTGNALFALFEHGSSRSNDPLLHTHAVLLNFSQVKNGEFRCLEAPDLFNYKKALGALYRAELANQLEALGLKTEADEEFFKVTKVPDELCKLFSKRSNEIHDLLQEGGFTRANAKLKQNAALFTRQAKTHQSRETLYKNWAVEAEQISTWKPEQAFTKDRNQNKVDTEKLLESLTEKKSLFTYPDFLEQVFIHFQHAGLSSREAEEFAKATLESKAIRRIQHPQAGICYTTEQQYQLEMSFYKEMTEYLDRWRTAHARCPAFLPAWL +>UniRef90_UPI001A901165 agmatine deiminase n=4 Tax=Halomonadaceae TaxID=28256 RepID=UPI001A901165 +MHPTHCPSSVAPSAATPAAQGYVMPAEFAPHDACWMLWPQRPDTWRLGAKPAQQAFVAVASAIAESETVYVGVNDDQYENARHQLPAHVRVVELSSNDAWMRDVGPTFLVHPDKGLALVDWEFNAWGGLKDGLYFPWDKDRRIRPKIAEMLGIPCFDVEVVLEGGAIHVDGEGTLITTEECLLNPNRNPGMDRATMERRLQDSLGIQKVIWLPRGCYLDETDGHVDNLCCFVGPAEVALTWCDDDTDPEYAICREARAVLEASTDAKGRAITVHPLPQPGPLTIAEDEASGIDRLASSHPRRPGDRMAASYVNFYIGNRVVVMPQLDPRHDATVMDILARLFPDRRVVGVPAREILLGGGNIHCITQQQPRP +>UniRef90_A0A6L8CSU2 VWA domain-containing protein n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A6L8CSU2_9GAMM +MSGPLSPTPPASRMLEFAGYLRRHGYRIGVGELPDLFRLVDRGARDPVLTRRGLRALCCRTHDEWREFDRHFNRFWFPVESEQVAPASVPGGLPDSPGQTLVGLAGTSDREPDSTHGQSDIEGSGAGRQRTLGKADFRFLRDRTAMHEVESLVERLGQQLRRRLGKRREISPRGGHLDMRRSLRRSLATGGLPLKLVWSRPRPVPLHLVVLHDVSHSMTWNNPLLFRFVRGLMQNFRGSVAFAFHTRLFEVTPFFRERSLERMLARLDAGENLWLGGTCIARSLAEFNRHHAGTLLRSDSHVLIISDGFDTDDPEMLRTELSRIRLRCRQILWLNPMLGREGVTLTEASLSARLPEVHRFLPANSLDGLRAAVENLSRTGPRTRPGGTPPVHGQDSRQGDGH +>UniRef90_A0A1G8EYP0 Catechol 2,3-dioxygenase n=3 Tax=Agrococcus TaxID=46352 RepID=A0A1G8EYP0_9MICO +MPVTGPDFVSLQVRDLAGSQAFYERYLGLERSPAGPPHAVVFTTTPIAFALRDLVEGTDLDASQPGLGVALWLHATDVQQIHDALVADGHAIAVAPFDGPFGRTCTLVDPDGYLVTLHDRA +>UniRef90_A0A1F9IIM5 GlnD_UR_UTase domain-containing protein n=1 Tax=Deltaproteobacteria bacterium RIFCSPLOWO2_02_FULL_50_16 TaxID=1797881 RepID=A0A1F9IIM5_9DELT +MISWVFNIFGMTVEATRQGMTYLEKKAKPKLIDVAEGTFLAEKAREMHIAMRQLLQNHSVERQCSDVKRRARKRVKENIIKAYDRDDVVDEITVRLTDAAMADSFYKKWFAH +>UniRef90_A0A1F5VQL0 CZB domain-containing protein n=1 Tax=Candidatus Fischerbacteria bacterium RBG_13_37_8 TaxID=1817863 RepID=A0A1F5VQL0_9BACT +MGIAITGSDMLCKRITEGFVQQQESVQGKVFYSERIETDFDELLQKERINREVPGSWENTQAVRANKVESSVIRGKEECSRLENVMKEFEEMHNRLSEIITYTMNGRQFNAQELLAFQAEMHRITNYIEMVSKIIEQGINGVKHTLQTQV +>UniRef90_A0A2P8AWN7 HTH_17 domain-containing protein n=3 Tax=unclassified Micromonospora TaxID=2617518 RepID=A0A2P8AWN7_9ACTN +MTTPKRPERGTPRPARHLTIADVCDDLGISRSTFYDWRAKRKGPPARKLPNGEIRIERRDYETWLETLYEEAA +>UniRef90_A0A1M6QX74 Putative addiction module component n=1 Tax=Rubritalea squalenifaciens DSM 18772 TaxID=1123071 RepID=A0A1M6QX74_9BACT +MATLSELENEVLRLPKDQRVSLIHRILEKSELPENSDVKNLWNAEILERIERLDANSTECHSASDVFQAIDEQFAQ +>UniRef90_A0A1M7QN82 Germination protein, Ger(X)C family n=1 Tax=Gracilibacillus kekensis TaxID=1027249 RepID=A0A1M7QN82_9BACI +MIRVIVLLIFSILLSGCYDRIELEQQSYVIAIGIDKTEQEGVYSFTYQIANPEIGSAAVQSGPDEPPTEIVTVNGSDILSSTYTANSFVSKKITLDHTKIIVISEELARSEDFIRVIQSASRTPQIRRSVQMLVSKEKAIDFINNNEPIMEKRPHKYYQFMLNRAVQTGIIPKSTLHRFFQITEGDADLFLAIYATTEQSDQKKNTEGFEDKYIAGEIPQIGGSPTQFMGSAVFKEGQMIDILDGEETRVAQMLDKTLEMEDYLATIPDPKMPEYRISYNYYQKKEPIININYYKNKPTEIDVNISFQVEVIAIPSLIMYSQSKKDQQTLQEALTQRLEEKTNALIEKTQNSYKSDAFYWSLYIRKHFKDIKEYEDADWHKNIYPNAKINVTYELEKMEFGKMINDSNLEDVRD +>UniRef90_UPI001E451F19 hypothetical protein n=1 Tax=Methylococcus sp. BF19-07 TaxID=2743472 RepID=UPI001E451F19 +MLWPAWILPEDVFRSIWERVRPVFLASMGQQRIPFTLAEPLARVYLPLAAWVVAHKKDGPFVLGVNGAQGSGKSTLCEFLALILREGYGCKVAGFSLDDIYKTRSERERLAREVHPLLVTRGVPGTHDVGLGLQTLDRLTTAGPEIAVALPAFDKSIDDRCPMSAWPQTSAPVDIVIFEGWCVGCLPQSGEHLVRPINALEAGEDADGSWRTYVNEQLGGPYAELFGRLDRLIMLKVPDMECVYQWRSLQERKLAAAIGNGSSGHRLMDETALRRFIMHYERLTRHMLAEMPARADVTLFLDENHGFARVHINE +>UniRef90_A0A8X7XX04 Uncharacterized protein n=2 Tax=Populus TaxID=3689 RepID=A0A8X7XX04_POPTO +MNQSSSKTHNQKCPSAALPEQPTKIRRRKKQQHHQPSFRRNALQDLNNGGIDTTSIDNSSNASSLSSIEAPRGCLRFFLSHSSSSSSSAKTPFSSSSSNQRLKKVKPSRTPKSAPSMRPTKEKPISKKVEKGKRNHPPCLYQWQSGKKRASSRNEVGDSKVSSFLDSSGSLVKNKLKSGPGELKKVMIDGVCEGSGANLTPLCKVGSGSGLNLGVGGKVMNDDCYEKSSNGKAESNSTSSNTKTPPVQPSVSPEIQCGSSMKLMTVETITPATCYGAGHVVSGVTDKRKCRPRGILAGGEAKALGSFDSDDDIEQANDVGLIENSDVSMLPLPIDASMHWLLSPCDEKDEGQKDNSRNRSRRFRRLEERAIHNSPASPSSGYGGFSPELCNTSANRSISTVSAGRRSASLLSPSALPVPQFQGFLGTPLCDNFPVSSLEEETENRHCTDGENSPFSIGSLGSGNIIQTPQSDTSCDRRVGASGTQVDGKRKKCNFDSDLNSVAEQLQMTSLSPMSHASVWDPTNSSFRFDSLTMPSNSVDLSKFHKILEERNSWFSNSTIENVSQSQMRISWREGLMSRMFEMDEFDCCRYLSDEEDDGNVCNIDCLKSHKSPQLNVEAATDHISINGIGSTEFVKKEQDTGGKTKDGLPSQPPCSCAESISTDGGGLVRSDDSDWTLWSKDSEVNMGNLIEYIDLAGCGPGGKSQLHYKVDGARGLFADIGFTIFGSLVFEEWLAEVERQSMDKLQEMSQAYLELVANLPCHVRIKGKLSQESVPDLVSSSFVFPLIIREKEEPDRAERGSCVLMEGLIPLVCKAFRKNKTRRQYECLSVGTALSYNISDFYTHEAPKSELHFQPSMENTNSQKKVHRRFWSVHEDFSGGFSSPAVRSTTAASPQTKQLARFRSQRV +>UniRef90_A0A853BRY5 Anti-sigma regulatory factor (Ser/Thr protein kinase) n=1 Tax=Streptomonospora nanhaiensis TaxID=1323731 RepID=A0A853BRY5_9ACTN +MAQCDGVDDDVGIYTLRACRTFAGAARECREARLWARRHMRPFPDVADAVELVVSEFFGNAVRHTASGQPGGTVFVSLVGLVSGALHLEVHDEGPRRGAPRTTARVLAPDLERPDGRGLFLAAALTKEWGRLPLHGGPGYAERGYTSIFDPDLDHETSDYVGPMITWAEFSTSFRAAPASAAAHHAG +>UniRef90_X0WKB2 GH26 domain-containing protein (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=X0WKB2_9ZZZZ +TGSRPLGEYEPAGTWGSYGINHWLYVAAEDPLYGQAAKDYWGTVNVKGSGNIPLFLDCWFWCGGPENDDTPPAWDGHRILGHTESMNRFCINRHQQGINGVFLDYSARKVWLKELWHVKWARNFNVNYPGPYWETEAPWMAQFKAH +>UniRef90_UPI0012FA07AB hypothetical protein n=1 Tax=Nocardioides alkalitolerans TaxID=281714 RepID=UPI0012FA07AB +MTTLMLDQARTDDATTAPTDVRDVAGGLEDELFEQAVGEQVAGLTTMPSISTIHCLTSRHDTTLLPRL +>UniRef90_A0A2E0G851 Peptidase n=1 Tax=Candidatus Marinimicrobia bacterium TaxID=2026760 RepID=A0A2E0G851_9BACT +MIKKNKHIIFIIIFYSLFVESLFSSDTIVYRVPIQGVIDLGLPTYIERIINEAESNQAEAIIFDIDTFGGRVDAATQIKDAILDSDVPTIAFINRRAISAGALISLSCEKIYMTGGATIGAATAVDMSGNKASEKVISYMREEMASTAENRNRNTDIAKCMVDEDLSFTYVIIDNDSIEVTDLEGRKEGKLITLTTEQALKYKMADGLAEDLDELLSLLELSGAEVKTFYENWSENLVRFLTNPVVASLLTTFGFLGILFELQSPGWGIPGTFGAVCLTLSLSASVIVKLATKSDLLIVFFGLSLLMVEAFLIPGFGIAGLAGIGVILWGLYMLLLPDVPVSQEIYDSAMTGLTIGLIGAIIAVILLFRMMTKTKFWIKLTSPGIESSEEGYNTSLGLENLIGETGVATSDLRPSGWVLVNNEKIFVVTEGEFVDKDQEIKILSVDGNRVVVRINN +>UniRef90_UPI0012BBE16F YeaH/YhbH family protein n=1 Tax=Sansalvadorimonas verongulae TaxID=2172824 RepID=UPI0012BBE16F +MSSIIIDRRRNSKGKSTVNRERFMRRYRRQIQKAVNDAVNSRSITDTDSGEEITISRKSLSEPFFHHGEGGDRDQTHPGNKEFVTGDRFPKPKGGKGKGKGGGGGDASDSGEGLDDFAFQINRDEFLEYLFDDLELPNMVRKELKESSEFAFRRGGFTSAGAPDRLNVIRSLRGAHARRIALSGKDRKEIRALKRELREMEVSPDDTNEARAEEIKLRIKELNEKIKRLPFIDDFDLKFNNLIKVPLPSSSAVMFCVMDVSGSMTRDIKDMAKRFFFLLYMFLQRNYEKVEVVFIRHHAEAKECDEHDFFYARETGGTVVSSALTLARDIIDERYDPKKYNIYVAQASDGDNWEADSPKCSKVISEDMMKNLAYYAYVEITDRHHQNLWHEYKKLEQAHPDHFAMSHIKGPTDIYPVFRELFEKKEAMA +>UniRef90_A0A6A6R4P4 MFS domain-containing protein n=1 Tax=Lophium mytilinum TaxID=390894 RepID=A0A6A6R4P4_9PEZI +MRLLGESGLISKRRYPCIYTKMVLILLPHFQRLQELCRHRSWNGLLIFHAFWCCSVYHYTVRALFTFLFAMGFSVGSCMSFAIPFNVLDSRCAWLSTSERRAQFVLYNMPGCGVR +>UniRef90_A0A8J4XW43 Uncharacterized protein n=1 Tax=Chionoecetes opilio TaxID=41210 RepID=A0A8J4XW43_CHIOP +MAIYLFTRQDPSRPHPPAGKKDAVNWDQHAILLEGRKKTPPGVGWSFDSGLTDTSHVRKVAKNAAWKLELHPTRLRTSWTGSGSRHIYKSQVRSLMEYSPLAWSSYPPSYRCLLDRVQARAQRLARLKAPEDAAQIIQPLQQRRDVAGMWGHVQKGHRMQLLQLAELRLNPGPGPPIYPCGPQHRHQGLAIREDGKITSAPSYPAMVDYGTPFGAPDDLTFTPSMHAFKSGVNAWLQEADEALDGDEGWLLPITSHKASRPLHSEPFVPVAWMVD +>UniRef90_UPI001FD5AA06 methyltransferase domain-containing protein n=1 Tax=Nocardioides sp. W7 TaxID=2931390 RepID=UPI001FD5AA06 +MVAQAIPSRIRWAVEFMDVQPSDHVLEIGCGPGAGAEAICSKLETGKLFAIDRSESGVDRTKRRCAKYVASGRLTVRQIDLATLRVPVKRLTKVYAFNVNLFWVRECPDEIALLHERVLPGGAVFLFYEVKFPDQMPTIVEKASAALAGGGFRVSVVEQKTPAVVGVIGRR +>UniRef90_A0A7X8TA91 L-idonate 5-dehydrogenase n=1 Tax=Rhizobium sp. P32RR-XVIII TaxID=2726738 RepID=A0A7X8TA91_9HYPH +MKAVVIHAAKDLRVEERQEEALEPGQVAIAIEAGGICGSDLHYYNHGGFGAIRIREPMILGHEVAGTIKAVGEGVSRLAAGDRVAISPSRPCGSCEYCLKGQQNHCLNMRFYGSAMPMPHIQGAFRQRLVAEEWQCHKVAEGISINEAALAEPFAVTLHAVARAGSLLGKRVLVSGCGPIGALAIIAARAHGAREIIASDVMDAVLKKALSIGADRAINVADDPQALDAYSTNKGYFDVQFEASGNESAVRSGLGVLKPRSTLVQLGLGGDIAIPQNILVAKEIEMKGTFRFHEEFGLSVDLINARRVDLKPLLTGVFPLDDAVAAFEAAGDRSRNMKVQLAF +>UniRef90_A0A1F6CIC4 SsrA-binding protein n=1 Tax=Candidatus Kaiserbacteria bacterium RIFCSPHIGHO2_01_FULL_53_31 TaxID=1798481 RepID=A0A1F6CIC4_9BACT +MELIKNKKAHLKYVPLENFSAGIELIGQEVKALKNKLGSLEGARVVVRGGEAFIVGMTIPAYQAANAPKNYDPERPRRLLLAKAEIAELAAAESKKGLTSIPFGVYTAHNFVKAHVAIVRGKGKADRREDLKKRDAEREAGRILKNR +>UniRef90_A0A3M1TVI0 AarF/ABC1/UbiB kinase family protein n=1 Tax=Deltaproteobacteria bacterium TaxID=2026735 RepID=A0A3M1TVI0_9DELT +MLDAFGRVEVNRKTVEFAGLSATGYVRGGRAAPREEHAPGTPSVSKSSALRTVYANLMATRTAIRDVRRFRQIAGVLARHGFGFLFSRFSRKDPEVAKAVDEALQEAPSAPQVPQALPYAQLARRARAALEDLGPTFIKFGQILSTRPDLLPQAFCDELQNLQDDVPPMSIEEVNAVIRRELGSEPTEIFAEFDETPLAAASIAQVHRARLKSGEEVAVKVQRPGIAAIIEADLDILYFLARQLTVAVPETRLFDPPGIVREFERAIRKELDFSAEARHMKKFARNFREVDYIHIPEVYDRYSTAKVLTMEFIEGVKITDAVEQGLADGEVLAKRLLWALFKQFFQDGFFHGDLHPGNIYVLPGNRVCYLDFGLVGRLTPEMKDRVIDLLFAVGRQDFDALARVLFEMGIREGPVDYDAFVADVYEVAERYFDGTPLAEIDVGGLFRELVEGAMRHHMRMPTTYTMVFKALMTVEGLGKRIAPEMDLVEEAQPFIAELLRERYSPERLWKKASEALYTTSRLLRQVPPAMTRVFEDIDAGRLTFQIDAPRLDDYLEDRRRSDVMWGTGLAYATLMICATLALSWDEYRILGFPALSFIGYLLALPTGLWFFNHWWRR +>UniRef90_UPI00210E2C07 response regulator n=1 Tax=Stutzerimonas stutzeri TaxID=316 RepID=UPI00210E2C07 +MDIPLSQRLSFKQASLTVLLALTLGGAFGLTRAVLDYASERDGINRKAQALLTVTTAAADHALREQDARLADQLVHGLLQAPAVLRAELRAADGTPLAIASRHPTESGWRRRLSDRLFGAELHLTLPLADGRGSQHLLLDTWPHGQRFLRRAGLGLAGGLTSSLLLSLALLGLSHLLLTRPLGSLVAALGSRDAQRSARTPLPCPAGHRHDEIGALVGACNEQLARLDSEIAQRRAAEEHLTRALGELEGRVAERTAELERANRELLASNRELQLAQRTTQEMAQARAHFLASMSHEIRTPLNGLLGMLALALDSPLPPQVRQQLGIAHDSGRGLVELLNGVLDLSKFEAGQLELERIPFDLASLVEDTASLLAQNAAPGVELTCLIAPDLPGEVIGDPLRVRQIVSNLLANALKFTRHGRVDLRLIANPDGILLEVRDTGIGIAREALARIFQPFAQAEAGISRQFGGSGLGLSLTRRLCEAMQGTLEVDSQPGLGSRFSVRLPLATHAAATSLPSLHGRVVALCSRRSGLSELLDAWLPAWGIEYLRLDTDASLAGLEVDLLISDCPECLHGRRPQANAAILLVCSYGDFLPEGEAQALQPLEQLPRPLSRAALYQALQRGLGQPLGAGPAQTDEPRRPRILLVEDNPVNQLVVKGLLGRLGLTVEMARQGEQALKLLAQQNFDLVLMDCNMPILDGYETTRRLRREPRHAHLPVVALTANALPEERERCLQAGMNDYLSKPLRREELEAVLARWLPNCLQPA +>UniRef90_A0A6G6VZM2 Multifunctional oxoglutarate decarboxylase/oxoglutarate dehydrogenase thiamine pyrophosphate-binding subunit/dihydrolipoyllysine-residue succinyltransferase subunit n=1 Tax=Microbacterium sp. 4R-513 TaxID=2567934 RepID=A0A6G6VZM2_9MICO +MSSQVTGVGVSNEGEFGANEWLVEELYEQFKIDRNSVDKAWWPILENYHPVDEAAPAVPAAPSAPASEAAAPTQAQPGASEPRPVTAPIPVIGAQPVARTTAKPAANQPIPAQAPAAVPSTGEASTEEDQVTVLRGMTKTLAANMDESLTVPTATSVRTVPAKLMIDNRIVINNHMARTRGGKVSFTHLIGWAIIRALKEFPSQNVFYAEIDGKPSVVAPAHVNLGIAIDLPKPDGTRSLLVPSIKRADTLTFGEYLASYEDLISRARGNKLTAGDFQGTTISLTNPGGIGTVHSVPRLMKGQGCIVGAGALEYPAEFQGSSEKTLVELGIGKTITLTSTYDHRVIQGAGSGEFLKKVHELLIGQRNFYEDIFAALRIPYAPIHWASDINVDIAERVDKTARVQELINSFRVRGHLMADIDPLEYVQRTHPDLEIENHGLTFWDLDREFVTGGFGGKRIMKLRDILGVLRDSYCRTIGIEYMHIQDPGQRAWFQEHVEIKYQKPGHDEQLRILSKLNEAEAFETFLQTKYVGQKRFSLEGGESLIPLLDEILQGAAQSGLDGAAIGMAHRGRLNVLTNIAGKTYGQVFREFEGSVAVGSKSGSGDVKYHLGTEGTFVADGGDELPVLLAANPSHLETVDGVLEGITRAKQDRKPIGTFSWLPILVHGDAAFAGQGVVVETLQMSQLRGYRTGGTIHVVVNNQVGFTTVPGDARSSIYATDVAKTIQAPIFHVNGDDPEAVVRVAQLAFAYREQFHRDVVIDLVCYRRRGHNEGDDPSMTQPLMTNLIEAKRSVRRLYTEALVGRGDITEEEYEKAKLDFQNGLEVAFAETHAAQTGTHPVVPDAEASAPVSGAPETTGVPTEIVQLIGDAFVNKPDGFTVHPKLQQLLDKRLDMSRNGGIDWAFGELLAFGSLLIEGTNVRLAGQDARRGTFVQRHAVLHDRANGQEWIPLANLGDSQGRFWVYDSLLSEYAAMGFEYGYSVERADSLVLWEAQFGDFANGAQSVIDEYISAAEQKWGQQSSVVLLLPHGYEGQGPDHSSARIERYLSLCAQDNMTVARPSTPASYFHLLRRQAYARPRRPLIVFTPKAMLRLRGATSKVEDFVNGTFQPVLDDDRGVDKGAVTRVLLHAGKIHWDLRAELEKNPNPEVALVRLEQFYPAPIQELNAVIDSYPNAQLYWVQDEPENQGAWPFIALEVVKHLHGRTIRRISRSAAASPATGSPKVHAVEHAELMKKALTTTSR +>UniRef90_UPI0014206272 serine hydrolase n=1 Tax=Chryseobacterium sp. Tr-659 TaxID=2608340 RepID=UPI0014206272 +MKKLTLAFLISLSFNMFAQSVNDKIKLFESNLNYWDQLKTKKWSLKERMALYNANAVSIAVIKNYKVEWVKAYGFADISENRPATTQTLFQAASISKSINSLGILKLVQEGKLGLNDDINNYLKTWKFPYDDAVSKGKKISIANLLSHTGGLSVGGFGGYEKGEKLPTIIEILNGTAPANSNAVRSIFEPGSKFEYSGGGTVISQLILENTTGEKYEDYMLKNVLVPLGMNSSSFNQPPSKDKEALFAAAYVNGKEVTGKYHIYPEKAPAGLWTNPTDLAQYIIETQLSLLGKSNKVLSKEMSAKRIENNLGVFLNDFKGTKYFGHSGRNEGFTCHYVGSLEDGNGIIVMTNGSNMKLVEEIVSSIASLNQWKNYPLEPMKESIALTIRKECEKNIDKGIALYKKLKNTLPNNYNFSDENELNNLGYEFLRSGNIDSAIKIFNLNVYEFPKSANVYDSRGEAYLNKKEYQLSKEDYSKVLELDPTQQNAREMLLKIKKETGK +>UniRef90_A0A7S1LBN8 Cation_ATPase_C domain-containing protein (Fragment) n=1 Tax=Alexandrium catenella TaxID=2925 RepID=A0A7S1LBN8_ALECA +PNYVLDVCKTWVGRDGSVEAFSDAAREDAMRTIDILSSQALRVLAIAVRPMAQLPFDPEEDQDSSADEKMGILCQDLTLMGLVASIDPPRAGVRDAVQAAQNGHIRVMMITGDYLKTAAAIAQDVGILEPDVGERGALDCTSLRPSGDYLPDLKIDELTKDARVFARAKPEDKLEIVKSLQRQGLVSAMTGDGVNDAPALNAADIGVAMGIQGTEVAKGASAMILTDDNFVSIVGAVEKGRVIYAGIQKFVAFIMSVHIAEVLQIFICIVSELPVMRTPLQILYLILVTDLAPSIALGLEPGQAGIMNDRPRPKKQPILLWWMWVSTVANAAILTAIIISVYIWGLDTFVNERNVKMISRMVVDEEANGLPGHTKRGLEQAQTVAFISLVWSENIRAYTSRSFDSPVCKELCTNRYMQGAIGVAQAALYTAIFLPGLSDILGLKGADIGLKGWIAALVGAGACLVACEAYKALQWLAG +>UniRef90_A0A7J6FTG0 Calcium-binding protein CML44 n=2 Tax=Cannabis sativa TaxID=3483 RepID=A0A7J6FTG0_CANSA +MSPLSTYDLKRIFQKLDKNGDDLVSLEELSWLLERINNGSVHHQFSKTELESLVGKSSLNFDEFLFFYESISSKHNDEIDDEVEEIIISDLVKAFKVFDQNDDGFISCEELQSVLIRLGLMEENSTDKDCKTMINAFDANSDGQLDFEEFKTMMLLTITS +>UniRef90_A0A0P7TU97 Main olfactory receptor family H subfamily 129 member 1-like (Fragment) n=2 Tax=Scleropages formosus TaxID=113540 RepID=A0A0P7TU97_SCLFO +TDLKTDFAVAYRDIVGSGKVGVHEAAHGPGVDQSLSLHFPSALRQTNEYSETNETVLGNTTSNRSLMVIMKICFVSPFFGVFLYCIVVMLHTFILHRQFWDSSRYILFVYMLINDTLQLLSSVLLFLFVMADLHISFACCAPLLFLSTATFQNTPLILATMSLERYVAIFYPLQQPAAWHADHIWVIILSLWLISCIIPTVDFSLGGLRISIDVLLTPVLCKTQALNSSPVQMLFKVILNGLFFTLVAIIILFTYIRILLETRKMRQDRASVSKALHTVLLHGLQLLLCMMSLTHPITEGLIIQHMGWLQDNISFFNYFCFVLLPRFLSPLIYGLRDDMLRKKIRGAIFCCSTKGAQQVTDKHILK +>UniRef90_A0A0Q7EWN4 Carnitine dehydratase n=3 Tax=Massilia group TaxID=2895353 RepID=A0A0Q7EWN4_9BURK +MTPAEPSLPLSGIRVLDLTRLLPGPAATMQLADLGAEIIKIEDPGPGDYARAMGPVRKEVSQFFVAVNRGKRFLRMDLKDAAQREQLLAMVEQADVLVESFRPGVMDKLGLGWDVLRARNPKLVMCAISGYGQDGPYAMLAGHDINYVGYAGMLDQNAAPDGRPALPNLQVGDLLGGAQAALQGILAALVAVKMGGMGRFVDVSMTDAVFANNIMPLVAVNNGGDAAPGRDLLTGGVPCYNVYRTSDGRYMAVGALELKFWQACCDVLQRPDLKARHWQLGQQVGGPDALAVQAELEAVFAQRTLAQWTEAFAGSDCCVSPILRTSEALVHPLFQARGMAVRAVHESEGEYWAAAGPLKFKA +>UniRef90_A0A7W8G837 VWFA domain-containing protein n=1 Tax=Treponema ruminis TaxID=744515 RepID=A0A7W8G837_9SPIR +MPKRHLALILIISLFHSSILFSENAENEAGEVLSLKQIDLLIDTTAYNDALRELSRYIAAHPNDFDRAQKRISRVMKLREEYNKGADSLVELIRNGDESKSEKLAKIAELESSELESNENVIEFTNLARRTVTLGEILILYDRIMREGVALVRSEKFSDAAVKFEEGFAIKNEVSDLVFDVENHSFAAEGTPVVYESDITEPVRKSVSNIRSLVAGNLVSASMESRINDCEKAFNEYMRAVSARDVNSISAALKNVNAAFEKYAALRNKIIADAKVLEAADILANERNPLLYGTSYITFHQKFILGDESNPDTGIIGAFDAYFNSRVERMKDKTNEAVLETLNLLITNLPEGKIYSLANKIDAEQKNVAVAKMYSQFARYVHDLYNLEKNLDGSTVGEKFSGYASSMSFVSEYLSDLSLAYKSAQELAWEKANPEKIDKNDFSDPVLAYNLKKLLRYEQIKADSKSYISLVNEEEKKQKEFFDKKSEREKEIEELRRISGGRLRISGAQKRTTAGVQISDNPLDFRKQIGYFLSLNEQNLKEARNHAKGLWGYMASAYSALAKKDYDHYEKLCSDTEKLLTGGLASSSDSDFSSEFIKKYPIEAKDSALKINQEISIKKTELLEKREVLNGGEEYRMSESDYNKGTLALDKIILDFDSLYAKNQTLAEEAIPKIRDYENLIRNADEQYEIALRAFKKEDFENANIAVDSASEKYAEALDIEYSEKIRAMREETLNELAVKIQRAEYEKVLREVFALKDKAAIAYYSSSFDTAETLLVTAQSRWSKVSTEEDSEIEDMLNIVKTIKSIEYGRVLLQSDPHYPELSYSLDMAKQSFEKGVKLKNDGNTVKANEAFNLALTNIRNVQNVYPLNKEARLITLKIQQELDPEGFPRQFENQYNAARLNANKNERLADLEDLYAINPKYPGLAQEIYDIKDSLGMFPKKEVKKEVKRSADSKIAEAKKAFKDAGSDEAKLNKALLLANEAIAIDGTSKAAKELKLQIQLKIGASATAILSQNDEKMYAEAARLFNQRRFADAKGIMDNLLKGAAAKKSRKVIDLNNRLLKRL +>UniRef90_A0A847Q3W9 DUF814 domain-containing protein n=1 Tax=Candidatus Fermentibacteria bacterium TaxID=2044591 RepID=A0A847Q3W9_9BACT +MDGVYISAVACRLSEELTGRTCSRVTRPFAGGLGLSIGGRMLLLDARPPSPAAWLGDDGADDGDPAPQPWSDGLAGTRLEEVRQEGLDRILVFEFSRVRRYCNPLMRLIFEMTGRNCNLILADSGSRILACTRIVSRSMSRVRTVRPGETYEGPPSSGAGLGSWREDRVLEALGKATSPEEIHPLLEGVGPATAGAILEESRASGRKVPEVVAVLGSALESREFAPWASVHGPMPIRLGEGAPIADVLSPPSGGGPAGACRKAAVEILEARRAFLERKLEKLRSVLDGVPSEDLLRLRGAILLANIPRVPRGAEEVVLPDWDGMEHRIPLRPGRSAVENAQRYFRKARNAAVERSRLESSIRETRAAIGELDAALAGGSGQCRIDRLAGAVGATRGAEARSPAGRAMGGGWTCLVGRSARENDEITFRIAGRDDIWLHARGAAGAHVVLRHESRGQTPPRAVLEAAAALAAASVRNRPDVVPVDYTKVRYVRKFRGAGPGEVVYTGEKTLFVRLCSARRGGARPGEAK +>UniRef90_UPI001FF9ECF4 transglycosylase SLT domain-containing protein n=1 Tax=Bradyrhizobium sp. 1 TaxID=241591 RepID=UPI001FF9ECF4 +MPRDRAHFRFGATWRNVAAAALLLASSCAHAGDGEQYTAGAPDLGAAETATSRAEIRRIVDSETGKANLPADLADAVIFVESGYNSSVVGSVGEVGLMQVRPETAAMLGFRGTAEELAKPDANIHYGVLYLARAWRLSGGDLCRTLMKYRAGHGEETMTPRSQVYCNRARNHLLAMNSPVATGATAAPAPAPVPSTVVATTTTSIARSPKALSRPKEVYARFRQGTAAASRAYWAAHEARISLIKARIETRWKRVASR +>UniRef90_A0A0K2UCG6 Uncharacterized protein n=1 Tax=Lepeophtheirus salmonis TaxID=72036 RepID=A0A0K2UCG6_LEPSM +MWPTVHSLIQTLVLLLPDLQP +>UniRef90_UPI001E440651 type IV secretion protein Rhs n=1 Tax=Chryseobacterium gleum TaxID=250 RepID=UPI001E440651 +MAEFSVKTLPNDKIMKLYDKKIQLFSSFILSLCSVLGFSQTILYQAESTSRTVQDPQTVVLAPGFRASSTSSNPFVAKIGPATENPGGGPTDSNAGSNNPSGTTAPDGKSFHDTKGNIEVNGAGQLQFTLPIALPPGVKSVAPQVNLVYTSGSSNGIAGYSWNLSGVTTISRVGKNIEKDGEVKGIQLDYSDYYSFNGQRLILKSGEYGKDGAEYITENYSNIKIKSFGSIPGQVWKGPEYWEVTFEDGSQSWYGTIASGNSTARTPLEYNIVKWKDAQGNYITYNYTQNNSNNVAVISSITWGGNETLNKPHFNTIEFTYLPRKIVEISYLKGILFKQDKILDQIKVKANGSPFKSYSIQYSETQNIVNNDSNNKINYDFVEKIVEINSEGKEANPITLSTNPLLTGSNEFDFGDYDNIITTGDYNGDGLIDFIVRQPAQNSRPEGYYLYFNALNNSNPSFVYLGATSVFWPSSSLTTVNIKSADNFIKPRQGLVITKSNVGYNPPSTGNIELAYYSIKSDASVINTYNNPLVFEYSKTIQSNNYLFDSSLYPPETDPEYLGGLNQSGLSVLKEVDIDSDGISELVLPIEDKKCKYVVIVPDPPKGRWQCKTLGYRYIAVDNDNIQNNTISIIPGTTSKNILSKGGIMDFDNDGKQDIMFLEPTDSKVNVTFYTQVINSGSNNSSPVSLTTEAPLNNLKQYELKKVGNNYTINLKNTISVKGLADGLQFGDLNGDRNIEVLLPVGHPYINRLQGWSIYLNTGNGLQEDIQGLMPYFPYTSSNTDNYSYTIPKLMDLDNDGKSEIINSNVSFGPDVIPSNGSYHSSWYIDSYGEASYDPNNSQFKWSFAKKRIFSSVRNEVVVSPIFGDFRVNNSSSKILFLIKGINGNNERKIISYKHYSLNPDKNISLISQGSQNYYIDYKELDPSFNSNIYAPVKKEQYPFVEMDRLSQTFGVSQLRQTDGQTVRKQDFRYRGYIVNLHGNGVTGFRQAARSSWYADGFENTKIWSGTEMDPLNEGVPVKEWSIRTNNENQIFPADISENNTQLLSFKSTNYQIDKLLNGQVVSTVADSDKPKVVTVVAPKISRVKDFLTGTITESTITYGNYYLPSQSVSNVNNGYAITTSTSEYIHNPSGIGSDYYIGRPKSKINVVQAYGDTKSSKEEYIYENSFVKTLKTWNRDNTGYLQETYNYDGFGNVTGKVISNSIDSQTQTTTSSYDPKGRFVVKKTDNLGLETNITYNDWGQILTQTDPLGNVLTNTYDGWGKILTSKTNLAGTITYQYEKDNNSNIIVTQNDPDGNISKKFTNKLGQEYKTSTKAFGQGQYITKTILYDALGRKTSESEFTFSPDGLGGPWNLVAYDDTVFPTKVTATSFNGKQMETSMSGLTTTVKELNGYQRTTSKTTDVLGNIIYSTDKGGTIQFTYNAAGEQIKAQYGENIITTKYDSWGRKSEFNDPSNGIYKYEYDGFGQAKKITSPKGTKEYTYNNLGQLISQKEISTADGGQATNKLISYSYDNKGRLISKSGTSKGQAYSSNISYDLQGRLLSSSESSNGKYFIQKGITYDDKARVISCEKQLYSSGTLTKVQIENVYSIWNGELYQVKDKATGKILWELKETNAKGQVLKSKLGAADINNVYDANGLLANVNHSSQAKPGILQLSYSFDTIKNELKSRITGGDFNITESFDYDDNNRLVNWTNPVTGIKPTTSRNVYDVKGRIILNDQVGTVKFENSTKIYQPTGMTLNAAGEHNYNNDLIQSIIYNENNDPVFIDGMKGDAAFQYGLTSMRQRVTYGGNFSTDGEGKFTKFYSEDGSFEVVKDNTTGKEKHILYIGGTPYESNIVYLKNFSESSGSYKFLHKDYIGSILAISDEAGNKLEQRHFDAWGNFTHLQIGNGSIITDQNTILTLSKDLAIDRGYTSHEHFVEVGIIHMNGRLYDPLLRRFLNADENIQDIFNTQNYNKYGYVLNNPLMFNDPSGEFIWFLGAAWAAAHVFLAGVITAAVIGTAVGLAAYSLGVAISGSKWQLGGALKSMFWGGVSGAVTFGIGSAFTPVAGTVLTLTDKVASAMAQGLVHGFAQGVLSMMQGANFAHGFASGASGSWGASLFGAFAGSFANSAAGTVVSGALLGGVASELTGGNFWEGAVIGGVVAGLNHYLHKIETTNKIRKRIDKYYNDKSVADASVKKGFLQDLTKIFPEIYELTAKNFAIANEENLKQFNESTGADYVLIDKTIVSDGGNGENINGITSMKDGSVLISPHRTRTALGFAATWYHEGIHSLHLVTGMFKAWEIKYGAKEALRITEFYAHSMTDAMSGLSMTSSLAFSRYYPSLYIQSLSSFLRP +>UniRef90_A0A1A9ZG83 RNA_pol_A_bac domain-containing protein n=1 Tax=Glossina pallidipes TaxID=7398 RepID=A0A1A9ZG83_GLOPL +MTCIPEPRIARIFTQEKDTKSSPHESQRKRHENSNTFDNVCAIDMYGHQISSNNIRIKIYSGQIKWWPKGKQAQIYIESDVGPIDDDILITQMRPGHELDIRLAAVKGIGKDHAKFSPVATAFYRLLPEMKLKKDVVDVELRWKFQTK +>UniRef90_A0A0B6Z514 Protein CASP (Fragment) n=1 Tax=Arion vulgaris TaxID=1028688 RepID=A0A0B6Z514_9EUPU +PFKMAANVQLMCQYWKNFDLQELQRELDTTATELANRQDESEGSRKRLVEQSREFKKNTPEDIRKVVAPLLKSFQLEVDSLSKRSKATEAAFLSVYKKLIDLPDPVPTLEHAQNLQKKAHKVQDLEIENKQLRETLEEYNHEFAEVKNQEVTIKQLKEKLKEHEERVEATAQNRAKEKERELQRTFAEKERQLQETQLIVARKLGEAEHQIATLHRALETAQSELFEVKAKYDEATSAKSDEMEIVMADLERANERATSAERQVERLKQQLTLAAESLNHQDEEDITQQNLASDQAMDILKRSTLEVELAAKEKEIAQLVEDVQRLQASLNKLRETTSAQVTKLEEELTAKNHAFRILEDRLRTQEDYEEVKRELRVLKSIEFANVSSEESHNEESKSLEMRLLEKNKSLQTENTHLKVVNSGLTDQVRKLQEEYKEAAATVQEQKSLITQLEEDLRNINAFSSMFRGDAEGEPGPPDANSEAMASIVKEVTQLTSGKFSKSAADSLLPIIQSQRERYRLRAQELEAQTLSQQQQVTLLQNEMDKLRSDNVKLYEKIRFLQSYPNKDGTREGAATDDVTSSYSSQYEDRLDPFTYFSRAERQRRYHELKPYDKITLSMGRLIMGNRTARVFAFFYTVILHVLVFLVLYKLAHTESCKRDMAADWHQRYSEHMMKVHGEEGQHVD +>UniRef90_A0A1V5QNZ9 Transcriptional repressor NrdR n=1 Tax=Betaproteobacteria bacterium ADurb.Bin341 TaxID=1852821 RepID=A0A1V5QNZ9_9PROT +MKCPFCGAEDTAVVDTRINDEGDIVRRRRSCKVCDKRFTTYERAEIRLPQVVKKNGSRTEFNRDKLRASLDLALRKRPVTTEAVDAAITDIEEKLLAMGEREVTSQQVGELVMRELKRLDKVAYIRFASVYRNFEDVSAFSRAIKEVK +>UniRef90_A0A1S8RD89 Acetate CoA-transferase YdiF n=24 Tax=Clostridiaceae TaxID=31979 RepID=A0A1S8RD89_CLOBE +MVKIINSKEAADLVKDNNVLATSGFALLGVPESLIKRLEERFLEENSPKNLTLMFAAASGDRGSKGLNHLAHEGLTGRVIGGHFGLAPKIGALIRDNKTYAYNLPQGVMCHMFRDKASNRTGTITKVGLNTFVDPRVEGGKANSITKDDIVQVIDILGEENLIYKCPKIDIAFIRGTYADEKGNITMDHEATYSEAACIAQAVKNCGGTVVVQVEKIVKFGTLDPRAVKIPRIYVDYIVEAEDKEDQAQILGYNYDPSLTGEANMVVDGLAPLKLDERKIIGRRAAMELVKGQVVNIGIGMPEAISNVANEEGICDYFTLTVEPGAIGGIPQGGNKFGASINPECMYDQPTQFDFYDGGGLDIAFLGLAEVDKQGNINVSKFGPKVPGCGGFINITQSSKKVVFCGTFTAKGLDIKIEDGKLKIINDGSNKKFVDSVQQITFSGNRATKLKQPVMYITERAVFELKEDGLHLTEIAPGVNLEKDILAAMDFAPIVDKDLKLMDARIFEDKVMGLN +>UniRef90_A0A7S4VIJ8 Gp_dh_C domain-containing protein n=1 Tax=Alexandrium monilatum TaxID=311494 RepID=A0A7S4VIJ8_9DINO +TACGAFQEDTELVQISTKVLPLLAEEDPTDVQSLQDCAGALPAGDVPPGVTTALLGASVVPWKEPSAGPPAVGHMVDCSAIDAPRSPLSGSPIAVSSLLALIRAVSACDRTMKLTLEGMAS +>UniRef90_A0A7R8ANC3 Zn(2)-C6 fungal-type domain-containing protein n=1 Tax=Aspergillus puulaauensis TaxID=1220207 RepID=A0A7R8ANC3_9EURO +MSTRKSQSSRKRPLRLPTIAPKDDMTPLRSHDGTPAAIRATVIQPRLRFPPRSRTGCWTCRSRKIKCDEVHPQCNQCARLGHICDYQPRLCFRDDTRRVMERMPDVKTEGNSVWDPTKMSLWRERLGTSDSIPCDLLPDFSKLISDEDREKKAQGSVPGTYHVVAVPESFARLPEYTEDAFETVPGDPYWSPPSESSSHDLMDEVTTSEDPNVVILSQFRDSRKQPYSNRPSHTQSPESELRPTSVSVETIYTSLQNIPEDEISESIDLEAYDMTLLDHFENIVWMQLIPGDYGYLEANIFEQEASNFPPLLHVMMALSALSLVQQGNNHYMDVLQYYDQALPSLQSSLQNCDDVLSDGLFLTHFLLLIYQIAYTTPNNGLNLWSHHLSRLLQLSLLRQSVTEQERYPLIIWLTCHVDLYALLSGASEGAYVRAAIESHLLPETEFLLYPVGLQNSSVMHPDEYDPRSLIMRLYRECFILSARFGLFTAEVKGSKMAYTEPIFRELENMRAAFKHLWNSDEVQFFIESQSNMPKPSQHSFYQLSILFHTSLLFTCTSFGRIESELEKEIQHHTNAILHLAEKMIAQGRHNGPLFLTFPLFLSGAVTSSHTAKMTALKLLAQLGETELGYKAATTSSMLRIVCETQLQHWRSGGSVREIDWSEVAANHGFRLVNYG +>UniRef90_A0A2E4T8P5 AarF/ABC1/UbiB kinase family protein n=4 Tax=unclassified Alcanivorax TaxID=2638842 RepID=A0A2E4T8P5_9GAMM +MSKDTIVNEMRANLAREREGLALVRNTARGAFRVFETVGVVGRQGLGWLLGDREALPRHLRRTFESLGATYIKLGQFIASSPSLFPEEYVSEFQKCLDRTPPLPFHYIRETVEAELGAPLDTLYEWVDPKPLASASIAQVHAARLKNGADVVIKVQRPGVRQVLLTDFNFLYASARLVESLAPGLSRSALSGVIEELQAGMLEECDFLQEARNLDAFNRFLAETGNVAAVAPRPVASHTTKRVLTMERFHGVPLTDLQVLRRYTDDPAGTLITALNTWFSSLMVCDFFHADVHAGNLMLLEDGRVGFIDFGMVGRIRPEAWQGMMAFFEAIGSGDVPAMARAMAMVGMTSEEVDVDALARDISALQDRLTDVDASALVQADRNDREVNQLLTDLVRIGEGHGIRFPREFALLLKQFLYFDRYVQALAPELDMFSDQRVDLFGTLDQLPGDEPLH +>UniRef90_UPI00156E65B2 VOC family protein n=1 Tax=Flavobacterium sp. 7E TaxID=2735898 RepID=UPI00156E65B2 +MSKNITGIHHVTAIAGGAQKNLEFYAGILGLRLVKKTINFDAPEVYHLYYGDEQGNPGSVLTFFPYQGLKMGRHGKGMLNTTTFSVPLDSIAFWTERLSRFGIAFKPPQERFQNEIVIYFEDYDGMGLELVFNDTDSRVGYYNGAINESNAIRGFHNVEIWQEGYELTAGVLTQQLNHTLIAEKGNRFRFAAQESSGNYVDILCAPDSLKGLAGSGMVHHLAFKTPNKTSQEAIRTIIVDRGLNPTPILDRKYFTSIYFKEPGGVLFEIATEAPGFAIDEDAEHLGEELQLPEWFESRRAELNSKLPNISIDHNKFL +>UniRef90_A0A6B3SK05 ABC transporter ATP-binding protein/permease n=1 Tax=Noviherbaspirillum galbum TaxID=2709383 RepID=A0A6B3SK05_9BURK +MRRYSASSPEPAANQGTRNDWVTLKTLFPYLWAYKWRMLLALIFLIGAKLANVGVPLVLKKLVDNMSIEPNHPQALLVLPVGLLVAYGALRVSTTMFTELREFVFAKVTQRAVRTIALQVFRHLHALSLRFHLNRQTGGMTRDIERGTRGISSLVSYTLYSILPTLVEIALVTGYLVLHYDIWFAVITFIALGVYIGFTVAVTEWRTNFRRTMNELDSKANTRAIDSLINYETVKYFSNEDFEARRYDQSLENWETAAVKSQTSLSLLNTGQSLIIAIAVTLILWRATQGVIAGTMTLGDLVLVNAFMIQLYVPLNFLGVIYREIKQSMADMERLFQLLEQHREVADAPDAKPLAVRGAEVRFSHVNFSYESKRQILFDVDFSIPAGTTTAVVGHSGSGKSTLSRLLYRFYDIQSGSITIDGQDLRDVTQASLRAAIGIVPQDTVLFNDTIEYNIGYGKPEASKDDIVAAARAAHIHDFIVSLPDGYATMVGERGLKLSGGEKQRVAIARTLLKNPSILIFDEATSALDSKSEQAIQAQLKEVAQDRTTLVIAHRLSTIADAGQILVLDHGRIIERGTHGQLLAADGAYAQMWARQQAHRDEQTASPAAPDLDASAA +>UniRef90_A0A2N3HH73 Sialate O-acetylesterase n=2 Tax=Confluentibacter flavum TaxID=1909700 RepID=A0A2N3HH73_9FLAO +MTVKCFLFISCISMNTAVYAEIKLPAIFGSNMVLQRNSEVSVWGTAKTKSKVTVSTSWNNRSYETTSDKEGNWKIKVSTPEAGGPYIIKMSDGQELVLDNVLIGEVWLCSGQSNMERTLRGAGNDPILGANEAILKSNNPSIRFFTVERAKSEEPEDNFKGDWKVCNRSTAPDFSATGYFFGNLLQEILDVPVGLISSNWGGTQIQRWLDEGTIKTFAPEHWESSPSTLFNAMINPMLNFNIKGVIWYQGESNRENPEIYDEMMVKLVQNWREKWGIGNFPFYYCQIAPYEYDNKVNSAFLREAQLKASKEIPNSGMVSLLDVGEERNIHPANKRAAGERLAYFALKETYGIEGISARSPEYLDMKIEGSTVELNFSENLTSFGKELKLFEVAGKNQIFYPAKARIKGKGIILVSEEVAEPVAARYGFKNFVDGDLYNIHGIPASSFRTDKW +>UniRef90_A0A672QUX7 Galactose-3-O-sulfotransferase 2 n=3 Tax=Sinocyclocheilus grahami TaxID=75366 RepID=A0A672QUX7_SINGR +MLPPQRIAGRERRAFRWRTAIPWTTCVRVACCSRLRFMWFALVVLTVLCGALQMLGVVRQARSSKVLKLVSEQLVRMPAEMYRPVKHKDWENLWSVSAAIVEEPLDLQPFIQRKDESENPHSEEGRDQVLEDTRKKLSSSTKAAPPIEAIKLWLDQYFPNQPQRPAFPKRTPEIHKPPPSDDKTDKQTVKSLVDDTAMCHPKNHIVFLKTHKTASSTILNILYRYGESHNLTFALPLNMQSQLFYPAFFAAHFVEGVRTRSVEEFHILCNHMRFSSQEVRKVMPKDTFYFSILRNPVSMMESLFVYYKAIPAFRTVKSLEEFLIQAPENDTELDKRSAEVIAAVERDFPLILISEYFDESLVLLKHALCWSLDDVSSFRLNSRSERSRRPLSAEIAEWVKEWNSLDWRLYQHFNATFWKRIDSTLGRAKLQQEVELLSAKRRKLEKMCLQEGGAVDPAQVQDSSLKPFQYGAAVIQGYNLRLGLSNATRQLCHRLITPELQYTSALYTKQFPHLADVRAVAANKFAASRSTAMHRAVKHYFDLTYQYK +>UniRef90_A0A8E0G9R0 MaoC_dehydrat_N domain-containing protein n=6 Tax=Burkholderia TaxID=32008 RepID=A0A8E0G9R0_BURTH +MRATPAERRDDALRIVTDLVSPAPAAALAATLDRDAHPRAGDPLPPLWHWLYFWTAARQSSLGGDGHPRTGGFLPDPGLPRRMAAGGRVRFIAPLAIGSSATRTSRVASLERKAGRSGRLAFVTVEHRIESSGALAIHEEQDIVYREPAEPGAPSPPRQAAPDGAHWQREIAPAETLLFRYSALTFNGHRIHYDRAYAQHAEGYPDLVVHGPLIATLLLDLVSRSMPDAVVTDYAYKAVRPAFVGRALTLCGRLAPDGRSAELWAKDHEGSLTMSARASLVR +>UniRef90_A0A3P6UJT8 Mediator of RNA polymerase II transcription subunit 13 (Fragment) n=2 Tax=Gongylonema pulchrum TaxID=637853 RepID=A0A3P6UJT8_9BILA +MCLSLIRDTGEQENIGWEDVLTARQYMEYIDLSGYATQFKYQKVISSLHSIASALASCCGLGAFQSNTVMIEYPSQAALSGLPDSLLYHYHMHRVCVQHSNLVVVKGTFPLKMQ +>UniRef90_A0A8J6DP79 Uncharacterized protein n=1 Tax=Galemys pyrenaicus TaxID=202257 RepID=A0A8J6DP79_GALPY +MDGVMRMPGPTDRTERTNRTDSTDEHQRAAAVESSREVEMHMPASQPLAPMPAMYLTTSTNKSMKSHGGLQDSSSLTRLPRTILTLAPVPPFLPLQMIMENRM +>UniRef90_V5RHL7 Single-stranded DNA-binding protein n=1 Tax=Spiroplasma apis B31 TaxID=1276258 RepID=V5RHL7_SPIAP +MNNVNIIGQIEGTPQLVFNSKNGEKKLFKFILRVPRNYKNKDGIITDDFINVKVWSNVLGDEYEYYDQSFVGIEGRIISFGSTDSVTYGNEIVANKIIHIA +>UniRef90_A0A074WYW5 Ubiquitin carboxyl-terminal hydrolase n=29 Tax=Aureobasidium TaxID=5579 RepID=A0A074WYW5_9PEZI +MSGGWNTIESDAGVFTYLLENLGVKNVQFEELISLDAQSLGQLSPLGVIFLFKYNNDGRKSDGPLDGQFDFEATYNLDDAGSGGDGKGKVWFAAQTIQNACGTQALLSVLMNKDNADGVELGPHLTDFKDFTAAFPPDIRGEALSNSDLIRDTHNSFARSSPFVSDETRMATQDDDLFHFIAYTSINGKLYELDGLQEAPINHGPCAPTDFAEKVIPVLQRRIERYPSNEIRFNLLAMCQDLRVKAREFGDEDMVYREEEKRRAWQWENALRRHNFVGFVGELMKGVTAAKIADGSYDAWIEDSKQKTKKKLEEGKKKGYNPDEMEM +>UniRef90_A0A413WZM4 Secreted protein n=1 Tax=Bacteroides uniformis TaxID=820 RepID=A0A413WZM4_BACUN +MFYGINFLWPASGCFLYLVSKARSAGCARNDNSVSFHHAMFAHQCWNSEKYGIKFLEEMLLSNKREYKLLSFI +>UniRef90_A0A8S3J9F7 Glycylpeptide N-tetradecanoyltransferase n=1 Tax=Rotaria magnacalcarata TaxID=392030 RepID=A0A8S3J9F7_9BILA +MNTYIFNDDIFLATADQILEELADESVVDLRSHWPILPLLQINLYHVPPQPKKVQEWTIVEVDNDDILTPYPYPSDPMIAERFYEEYSSGNKQKSMENEPGKSKTEEKVFKKNNNATEEAMDPSMTLDATMIENNPEIRKMFLDAAVKQESSLVLKYKYGSFFFKNNNNNTVNLLECLM +>UniRef90_UPI00197D08DB FMN-dependent L-lactate dehydrogenase LldD n=1 Tax=Novosphingobium sp. GeG2 TaxID=2726189 RepID=UPI00197D08DB +MIPLSVFDYRSAAKRRLPKFLFEYIDGGSYAETTLRRNMADLQEISLNQRVLRDVSSIDLTTDLFGQTIDLPLVLAPVGLAGMNARRGEVQAVRAAQEKNIPFTLSTVSACSLPEVARATTRPFWFQLYMLRDRGFMREMLETAQEARCKTLVFTVDMPVPGTRYRDYRSGLAGAPGIVGRARRLFQAAMKPQWAWDVGLRGRPHTLGNVAPLLGRNTGLEDFFAWMRTNFDPSASWSDLEWVRERWPGTLVVKGILDVDDAKEAIHAGADGVIVSNHGGRQLDGVVSSAQALPAIAEALSGQATIMVDGGIRSGLDVVRMIALGADAVMIGRAWAYALAARGELGVSNLIDTIRSEMLVAMALTGETNVHNLCTNNIIR +>UniRef90_A0A358QV57 Na/Pi cotransporter family protein n=1 Tax=Desulfotomaculum sp. TaxID=41211 RepID=A0A358QV57_9FIRM +MWHVVILGLIGGMGLLLYGMQILSEGLQKIAGAKLRTLMSTLTQNRLSALAVGATITVLFQSSTATTVILVGLTSAGIMSLKQTLGVILGADIGTTVTAQLIALKVTEIALPIVGLGATIIFFTKRERYRRYGQVLMGFGLLFLGLKIMSDVMYPLRENPMFPEMMAKMSDNPLLAMLIAAVFTFLIHSSAASIGIIMVLSMQHLVSLHAAIYLLFGANIGTSFTAILSSLGSSRESQRVATAHLLFKVAGVIVFLPFVGPFIALMEKITDSPGYQVANAHTFFNIALAIAFTPFVSQFANLLMKIVPEKRKIGEVFGPRYLDIKLINTPAIALGLATKEINRTFDYVYEMTRDTLLMLEKNDASIISTVAKKEDRVDILFKEISQYLTNVLRQPHSRGEFVKCMGLINIVNDLEHIGDIIEKNVTYLAQCKIDGHCTFSEEGWDDISIMHKKVCDLMQMTSTAFVTSNHDLADRAYKLQPEITKMERHLRVLHIHRLRISGSTEEEGALYLDLINALLRISEHVRNIAWEVANEGLEFTASGERVATDER +>UniRef90_A7HUX0 Short-chain dehydrogenase/reductase SDR n=1 Tax=Parvibaculum lavamentivorans (strain DS-1 / DSM 13023 / NCIMB 13966) TaxID=402881 RepID=A7HUX0_PARL1 +MASGNTLSGKVAIVTGGASGIGRAIAHAFANEGAKVVIADVEEETGEKTAAEIVEGGGEAIFRYCDVGERLDVRNLVCAAGDAFEKVDILVNNAGVVSKGSDFLTLEEEEFDRVIRINLKGHFLVGQAVAQRMVAQIEEGHAPGTIINMSSINAVVAIPAQAAYSASKGGIKQLTEAMALSLAPYGIRVNAIGPGTIQTAMAGNVNENPGANKMLLSRTPLGRVGQPEEIASIAVFLASDGASYMTGQTVYADGGRLSLNYTALPMAKKKGEEKKE +>UniRef90_A0A3L7A326 GNAT family N-acetyltransferase n=1 Tax=Mycetocola tolaasinivorans TaxID=76635 RepID=A0A3L7A326_9MICO +MTTESMLPLNQRVTAPTQLPVPTGTEGVTWRPATAADLPAILTLDRAVEAVDDPRHVTTIEALTVDFAASGFDPAADSLLAETTDGTVIAYGTAHAEPEARSVVKVHVPGAVHPEYRGRGLGTALLDWQEARAAQHLAASDLAVPGWISTGAAEHAESPRGFLTTRGYVERRWWMELTRDLSDAIPELPLHADVRLEPLTEELSEATRQAFNDSFRDHWGSQPTNEEDWKKYGSVSTLRGDLSALAVTSDNEVAALVIVSVDPAQWEAAGYRFGYIDLVATRRDWRGKGLAKSLLAQVLRNLKAEGLERAALDVDSESPTGALRLYESVGFAPEARSVSLVREF +>UniRef90_A0A0A8VBS4 Transposase n=1 Tax=Yersinia ruckeri TaxID=29486 RepID=A0A0A8VBS4_YERRU +MTALIRRHLRPLYLSLDLTSVVQDSPWAEALSWLRMVFSKKQTLLQRPLAECPPETLPERLRPYLLEFGEDGEPTGLNAGRYEFWLYRQIRKRFKSGEFHLNNSLRHRHLSDELVPEGEQAAVLAAMNIPFLQKPVKTQLKALESELHRQWKAFNRELKQGKLKHLEYDQQTQKLTWHKSVVSRHKAQEKSFYEQLPFCDVTDVFRFVNEHCRFLPAMKPLQPRYAKNEVDADSLMAVIVAQAMNHGNHVMARTSDIPFHVLETTYEQYLRLASLLTANDCITDAIEALPIFPLYSFDPGTLYGAVDGQKFGVERPTVKARHSRKYFGRGKGMVAYTLLCNHIPINGYLIGTNDYEGHHVFDICYRNTSEVKPTAITGDMHSINKANFAILHWFGLRFEPHFTDLNRQLQELYCTRDPSAYKKCLIQPAGQIDLNLIIREKSNLDRIVATLGLKEMTQGTLIRKLCTYTTTNPTRQAVFAYDLLVRSIYTLKYLRDPQLERNIRRSQNRVESYHQLRAAVAKVGGKKELTGKNDIETEISNQCGRLICNAIVYYNSAILSRLLERLETEDNTKGIEALPRISPVAWQHILLNGHYIFQSNNEIIDLDALVAGLKLR +>UniRef90_K7W9Y4 Glycosyl transferase group 1 n=17 Tax=Nostocales TaxID=1161 RepID=K7W9Y4_9NOST +MAGKDIKLSSASASILTLGTGWFPNNPGGLERYIYELIHKLAASQDQVELCGVGLPLDAKNTQIKLTNLACPDSKISSRLWSIRDNFQKTRLGKPDAINLHFALYSFPILDILPKGVPVTFNFHGPWASESQEEVVNKKLSVWLKEKIIEQSTYNRCDRFIVLSKAFGQILHQKYQVPWQKIHIIPGGVDINHFQNNLSRQEARIKLGWPTNRPILFTSRRLVHRMGIDKLLQAIAMIKVGIPDIWLAIAGRGHIQALLQQQARELGLENNVQFLGFVPENDLPVAYQAADLTVMPSQSFEGFGLAILESLACGTPVLCTPVGGMPEILQKFSPDLITEAITVESIADKLAQVMLGKLPLPSREECRNYTIKNYDWTNIAQQVRQVLLA +>UniRef90_S4SV14 Cytochrome c oxidase subunit 3 n=3 Tax=Scarabaeoidea TaxID=75546 RepID=S4SV14_9SCAR +MSAKNHPYHLVDASPWPILGALSAMISMVGIIKWFHMFNSTLLLLGLSITSLIMYQWWRDISREGTFQGLHTYPVTMGLRWGMILFITSEVFFFISFFWAFFHSSLAPSIELGMNWPPKGVIPFNPIEIPLLNTLILLTSGLTVTWAHHSLMENNFTQATQSLILTVTLGVYFSVLQAYEYMEAPFTIADAAYGSTFFMATGFHGIHVIIGTTFLFTCLMRHLNNHFSSIHHFGFEAAAWYWHFVDVVWLFLYISVYWWGS +>UniRef90_A0A6G1DB44 Epidermal patterning factor-like protein n=1 Tax=Oryza meyeriana var. granulata TaxID=110450 RepID=A0A6G1DB44_9ORYZ +MGHLLLLLLALLLLASSVHAKSAAFTEEKGVAGITVVIGSRPPSCEGRCRSCGHCEAVQVPISPQELQKKSGQVDSKKKKKLGHGDRAAAAAGGRTMPDSYDDHSNYKPLSWRCKCGGLILNP +>UniRef90_B5HBE5 CsbD family protein n=4 Tax=Streptomyces TaxID=1883 RepID=B5HBE5_STRE2 +MGISDQFKDKAQELADQAKQKAGKGDQSERARRAREEVSERTQQGREQQGARSRESMQERGENAMRERRDRVEDYDA +>UniRef90_UPI001D7ADF37 heterokaryon incompatibility protein-domain-containing protein n=1 Tax=Truncatella angustata TaxID=152316 RepID=UPI001D7ADF37 +MDDDLERQHQEFINRPLRDELPCDRCANLKLSTELFNESFDIGEIELTNILVDHFIFREVNSEYCSSCVDLMRRIDRQEITIRPRRILGFNSESEGDDLLVRSTFQINPDLRPLLCRVDNDSKTFDWGSESKSFGTYTTSDIVGPDHIRHVGDTPNYDAIKVWLGHCLRSHKQCNYSGDLKSALEMIFLIDIEKRQVVTYPKNGEHAPEYFALSYVWGGYKGVSYKPHSTLPYPLPQTIEDAIFVTKRLKLGYLWVDAVCIDQDDDVQKKEQISLMASIYRGAVATIIPLSSNTSDDGFPRVHSGSRRSNQLSLDFGHGKCLQQKLPRLADAIHEAKWNTRCWTFQEKLLSHRRIYFTDHQVHLSCAELVCCEAWHDETHYHNNPEEEDYLIMNPPNREDDLFTQNDHDCDIVSDFENIVNQYLERELEKPEDILHAFSGILEELKQHKFPDGFHQGLPKEDFQHSLLWRAGKVYGVMVDKISGKKYGGLSQATKREFLPQLPSWSWISWRPISGIKFYRLPDQTREPEIYSLKPWVHISDTKQVQLYEGSVAFRRKWEKLVLAHHGWSQNFTSPYITINQDLKQDRAIPAHRSNLHEHARLCVEGIVLQLPFQFMRRNTRVRTTSSYTTRYTRDLELTICDHIISKRLDVEWHFDRRFDRTKKYEEALKSSPLLLLDAYLQTDGGILIPGDFVLNLELLVLSWNGLLARREGTVTVRLKLDRKLKNLKSLVLGHHSITSRDGIDWPSDRVGQVDDTKSDGFASLRIDTERMN +>UniRef90_A0A6A7C4R0 Thioredoxin-like protein (Fragment) n=1 Tax=Piedraia hortae CBS 480.64 TaxID=1314780 RepID=A0A6A7C4R0_9PEZI +LTLTTTEARCVVHFAKEEFARCRTMDTALEQLAKRHVETRFVRLEATEAPWVVERLKVRVLPCVMGFVGGKSVARITGFEGLGGGREEQSGFSLGKLERKLVEYGVLER +>UniRef90_UPI001FE2688D hypothetical protein n=1 Tax=Winogradskyella ursingii TaxID=2686079 RepID=UPI001FE2688D +MRQKLRHSSAVFFTILFVALLSAPTIITSFDDSIDISFFYSLSEEEENEKNFKLVFETDSDSEIFFDAKKRKGKGIYKFKKYPKPHLNLVSPPPEFIS +>UniRef90_M5C988 Delta14-sterol reductase n=1 Tax=Thanatephorus cucumeris (strain AG1-IB / isolate 7/3/14) TaxID=1108050 RepID=M5C988_THACB +MPLGTELRTGGRIKYKINAFSTMLLALGLTLGWIINFGPESFTFIYDHWVGLCTASLINSFIQATWCYYISTKNEETRTLAVGGNSGNVLYDWFIGRELNPTIGSFDIKSFNELRPGLILWLLCNISSACEQLTRRGTLIPTDSMGLVLLFQGLYVADALYNEPAIFTTMDITTDGFGFMLAVGDLAWVPFTYSLQARYLAFNHVELGPFWTCIIFVIHAVGYWIFRGANNEKNDFRNGKNPKNLTSLQTERGTRLLTSGWWGMCQHPNYLGDWIMSVSYSLPTGFNTPITYFYCIYFLILLLHRQTRDDDHCRKKYGKDWDTYTSIVPWRMFPYIY +>UniRef90_UPI001CF80729 YggS family pyridoxal phosphate-dependent enzyme n=2 Tax=Dechloromonas denitrificans TaxID=281362 RepID=UPI001CF80729 +MRKGSDDGETRPVSSSGTPPRQDELGRYPRPSSLEDFRRNLAAVRARIDAACRRVGRDPASVRLLPVSKTVDEGQIRLSYAAGCRLLGENKVQEAHRKWQAMADLIDLRWSVIGHLQTNKAKWVARFAAEFQALDSLRVAEALERRLQIEGRSLDVFVQVNTSGEASKYGLPPADVQAFLQALPGFPALRVRGLMTLALLSGEAERVRQCFIRLRTLRDQLRQSAPVGTCLDELSMGMSGDFEIAIEEGATVVRVGQAIYGARALPNSHFWPSETNTRESP +>UniRef90_UPI001010A2DF DUF58 domain-containing protein n=1 Tax=Cellulomonas endophytica TaxID=2494735 RepID=UPI001010A2DF +MVLTGRAVLLAAAGVVALALVPSAGTVLVWAVLVALVCVVDALLAASPRRVAVHREVPASVRLSQSATCTLTVTNVGPRRLRGLVRDAWQPSAGAVVDRHRVDLPPGEGRRLRTVLVPTRRGDRRADLVTVRTVGPLGVAGRQASVPVPARLRVLPEFASRRHLPSRLARLRELDGRSAVQVRGAGTEFDSLREYVVGDDVRSIDWRATARRNDVVVRTWRPERDRRVLLVLDTSRTSAARVGDAPRLDAALEAALLLAALASRAGDRVELLAYDRRVRARVVGASGPRLMPALADALAGVEPTLVEADWPGAAAQVRERLSRRALVVLLTALEPAAVEAGLLAVVGPLAQRHQVVLASVADPEAEDLRRGRGDAAAVFDAAAAERAGLERAAVALRLRQRGVEVVDALPDDLAPALADRYLALKAAGRL +>UniRef90_A0A7J2IPL5 (Fe-S)-binding protein n=1 Tax=Candidatus Bathyarchaeota archaeon TaxID=2026714 RepID=A0A7J2IPL5_9ARCH +MSSKMYELFKKTLEKYLPGKGVTKRITPDQLELKRFEDLEHYKDVLYFCGKCGQCRYVFQEAYWSRVCPSGELKKFEAYYLGGKNLLLWGVLSGKLKWTENLAKILYHCTLCGNCTQQCQIPEIHHYALEWLFAARIESVKRGIAPMPEHRKFGEWTKKEHNPYMELHTDRQKWISSDIRRELPEKADIVYFVGCTSSYREIQVAKAMLDILTSLKLNFTILKDEWCCGSPLFWTGQIDIAKECAKHNIEEIEKSGATIVVTSCAGCYRMIKEIYRNKFGLEYSFEVLHAPEFLLSLVKDGTLPLENEISEKVTYHDPCHIGRHMGLYEPPRELLKNIPGIELIEMTRNRRNAWCCGAGAGVKSAFKDLALFAAHERLKEAQSTEAEILATSCPFCERNLRDAAKAYNVNIKVVDIIELIKYSM +>UniRef90_A0A2E3V0Q5 Response regulatory domain-containing protein n=7 Tax=Chloroflexi TaxID=200795 RepID=A0A2E3V0Q5_9CHLR +MNNLSEKNRNQKILIVDDEHMSDLMRSVLRRLEVDGFNTIVVKPKGNMGTGDEYEIQTLFALEEHHPDAILLDVRFGEYDTDRFKGLSILKKIVERNNKIPVLMFTQYAQGPYRDTAVTATLSVDANVDFIDKLASPEEVVLRLRRLIGSSPEKVMIGDIFEIDSDNSAVYAIVDGKKEIVKDVQGMKLEILKELAAALYRSEGELVPFSKLERFSFGEDSRASLRVRIRELKISLGKSIGREFSANELIINVRNRGYRLIHPE +>UniRef90_UPI00189E7165 hypothetical protein n=1 Tax=Halomonas sp. KAO TaxID=2783858 RepID=UPI00189E7165 +MASRTSASLSPQAPLSRHLRSSLRLSRWSGQSSPRLPRLIEPAFHLEVEFDAESGELVGMERVRIDAMRRREEAP +>UniRef90_UPI0006E14DC3 hypothetical protein n=1 Tax=Streptomyces neyagawaensis TaxID=42238 RepID=UPI0006E14DC3 +MTHPTAVPLAVASLEPALLFAAAAVLTVLAVPSGVWLIRRRPTRIGRERPTAPAVWVAALAAIGCTAYSADTSWRFAADYLDMAGTTERAAMFAAAELALFATALMARQNLASQGAPGLPGVLVWIITGVQVIPAYAESGPIGGTVRAFVGPVMAAMLWHQAMGIELRLRKPGASSRGVTATLGREARERLLSRLGIAERDRDAAQITRDRATARAVTLATRLAGRTPKQRGNWRGRRITRRLQGALARADVGTDPEQLGVLLDQLAARRHATALATVDLPSPWTRPLLSPPHGRRDQPSLAPHQVAVGDQVTPQCHAVPKAGPETKMDSPRIRDRPEEGHMGPALGTEPAGDGDRPRPVPETGDRGAAGDLAADAAAGHGAKGDQASAVPGTEDAQDGDETSEGDGDKTAAQGSDIPSRTPFPYNGDHLVPRTETGAGTESTGDRPQTVPARRRPKASRTRTRGGQGKPSRRQPQLSVDQLVTQLRPHVPRLLERDGNAEVTRTQLREIMRAHNIGIRNDRLTPVLERLRREAATSTTKKRSAR +>UniRef90_UPI0005A97BD1 hypothetical protein n=1 Tax=Streptacidiphilus anmyonensis TaxID=405782 RepID=UPI0005A97BD1 +MSSAVLATRETSAAPRSGLRPRGVTWLTWRQTRAALLVVTLGYAAALAYLLYQHHQFDVTTVRLRGLHCSTDTRDPVSVITANCNLAALAVMQAASGVHRLATVALAAPGLLGAVLAAQPLAVDLERGRHRLLWSQSVSPRRWFTQRMLLPAAILLVLSAVLSVALRWAVLWTHPALPIEDWSFDNASDALAPVYPLLTLAAFALGAVVGLLLHRVIAALGITLALYGVLLYGMAQVRPYLVPLHRKVVGPGDPWPSGDWVYDSGPVVHGKDFSYSACPVATGCDKEPSWILYHPLSQFGPMLWVETGMLAALTAGLVALAYRRLLALTR +>UniRef90_A0A5B9QW56 Alkaline ceramidase n=1 Tax=Roseimaritima ulvae TaxID=980254 RepID=A0A5B9QW56_9BACT +MTHPPKSLKPHPGFKGRIGIAREDITPPVGIYSRNWGAAQHDTADSIHRPLTLTALTISASSTDEPLILIDADLGWWRPLDLFQQFQQRLLEELSLESSRLIFALTHTHAAAPLMKPDPALPSSEPLGPWLERVYQATVSAIRRALADADEAILDWHHGRCALAAVRDFPDPDPAANRILCGFNPAAVADDTLLVGRITDASGTVRATLVNYACHPTTLAWANTTISPDYIGAMRETLEAATGATAFFLQGMSGDVAPKHQYVGDVEVADRHGRQLGFAALATLQDMQPAGRQLYFDEVVESGAPLAAWRHRPHALSSELRAVEIAADLQIKDWPTAEELEQQRLACEDRALEERLRRKRDIRRSLGDGSSSPLAVHAWRIGDAVLVGCGGEAYSQLQQELRSRFPELAVICMNLINGSVGYLPPADLYDVDIYPVWQTPFARGCLEHIRETMTSAIEELVR +>UniRef90_UPI000D340775 DUF1566 domain-containing protein n=1 Tax=Muricauda amoyensis TaxID=2169401 RepID=UPI000D340775 +MNKTSKLTHLFILTILLIGFGCSNDDDAGSPISLEDLAVSMDENPSNGQTVGMVETVGGTAMNFSIVSQSPAGAMDIDSSSGELTVANASLFDYETNATITATIDAENAENTATITVTLNNVNEVSAQALEVTMDENPTNGDVVGSLQATGTASGFTITSQTPAGALTIDSATGELTVADATLFDYETNPTLTATVTLEDAQNPVTVTVNLDNVFEVTVQDITLSVDENPTDGQVIGIVQTSGATATNFNIVSQTPNGALNIDAATGELSVVDPNLFDFETNPTITATVIVDDAENPATVTINLNDVDEITVQPGNFTIDENPSNGDSIGTLQATAGSSLTYTITFQNPVGAFSIDQNTGELFVADETLFDFEANPNMFATISVDNGTYSVSANVFVALNNLNEIGEFKYGGVIFWIDPADNGHGLVSAITDQSTSATWGCQGTLISGTGTGIGSGDTNTAAIIAGCATPGIAADIASNTTIDGYSDWFLPSRSELNQMYAQKAIIDATAIANGGTAFPPSVFYWSSTEANSNTAWAVFFDNGNNGGFNKGVSTFYQVRVVREFDLGN +>UniRef90_UPI0013DE5835 hypothetical protein n=2 Tax=Pseudoalteromonas TaxID=53246 RepID=UPI0013DE5835 +MKVTLNKKSIKSLSANPATIIRAQETPQIGGGRVIDESFWVCINTRSNCEGTKRCPFD +>UniRef90_W9ZDG4 DUF4097 domain-containing protein n=1 Tax=Fusarium oxysporum f. sp. melonis 26406 TaxID=1089452 RepID=W9ZDG4_FUSOX +MDFSSFDLPFTIAEDHTAQPVSTGSAYDFRETIDGTLARRSLANTPDCLISKLAGLKLDSSSAVFRSRIVAVANEDKGVMVKGDGKPIDLLSGSLSIEQVPDKPSFSISSDKVAIQGYYLPGEDDVIIHGHGHDNNELEIAKYSSATGKMASPRVVGTQFRLDDGVWQVSEPSGMQFHLYVFPKTYFLHLTSKPSKRPRLEDGESTPRP +>UniRef90_UPI0010938F88 DUF3108 domain-containing protein n=1 Tax=Mesorhizobium sp. M4B.F.Ca.ET.172.01.1.1 TaxID=2563950 RepID=UPI0010938F88 +SSRYENGVYSIDGSVSAAGLAKRFDDTRGTISSKGTISSQKMVPQAFRADYTSGKKASLVDIRFGNGNVTSTKVVPAPEKRDPKSWVPLGAGDLKSVLDPMAA +>UniRef90_A0A095C0S5 Integral membrane protein n=5 Tax=Cryptococcus gattii species complex TaxID=1884637 RepID=A0A095C0S5_CRYGR +MKENYAVENALGTIGAVLWMVQILPQIIKSHREKTTKGLSASLMFIWALASFFLGAYIVAQKLSIPLQVQPQAFGVLAAVSWCQCLHYERGYSLKSVWAIFIAFCCVFAGFEAGSVYALWAGQRNGVEWPVLMYGYISAVLLAVALLPQYWEIYKYREVIGISLLFMVVDILGGVFSFLSLFFRNDLDIAAFVSYSLVVVLDGIVVILYFILNPIAERRRARQAGRHSDSEAKIEGSSSVGMSTVPTLVGHGLMIDKEVQDGDRRQDNVRVDSEMEQSRVDDRDKMKAGGAEVEVHGPDAQGHETTGSSGEHSEESVKTIK +>UniRef90_D7WDM9 Glycogen synthase, Corynebacterium family n=7 Tax=Corynebacterium TaxID=1716 RepID=D7WDM9_9CORY +MMTREYPPEVYGGAGVHVTELTRFMRDIVDVDVHCMGEPREGENIYVHGVDPELTEANGAIKTLSTGLRMAHAADNVDVVHSHTWYTGLGGHLAGLLHGVPHVVTAHSLEPDRPWKREQLGGGYDISSWSEKNAMENADAVIGVSTGMKKAILEAYPNIDEDKVHVVLNGIDTEDWHRVAPSDAESNGVIERLGVDTSKPVVAFVGRITRQKGVPHLVKAAQDFDEDIQIILCAGAPDTPEIADETQALVDKLREGRGGVYWVTDMLPKEEIREIYSAADIFVCPSVYEPLGIVNLEAMACETAVVASDVGGIPEVVVDGETGTLVHYDKDDTETFEKDLAEAVNTLAADADLTKRYAQAGLARVKKEFTWDKIAQETVDIYKSLI +>UniRef90_A0A0K6GGW7 DPBB_1 domain-containing protein n=1 Tax=Rhizoctonia solani TaxID=456999 RepID=A0A0K6GGW7_9AGAM +MRSTQILAVLAVLATSVSSMSIGHVPNQLTHRRHAAEVHESVIQARGARRAVFAQNTPEMAKRDDAPRRRKRGINQRRCAPKTTTGLPQTASVPSTSSAAPTSSAAPTSSVVPTSSAHTTSAASATTPEPEPTSSQAETTTSAKAKYTKPSAQTPTKTSTSVKPTATDDDSGSSSGSTYTGQATYYGTGLGACGITSSDTDYIAAASQLLFDGFDGYKGSDPNSNPICGKKVKANYQGKSVTITIVDRCVACAKYDLDFSPSAFSQLADQALGRLSGMTWSFIS +>UniRef90_A0A1Y1CLL0 PAS domain S-box protein n=1 Tax=Labilibaculum antarcticum TaxID=1717717 RepID=A0A1Y1CLL0_9BACT +MVEQKVLRSRILELLFKGESESAILNELVHQAQLIASDSICSILCVDEKGKRLLLGAAPDLPDFYNKVIHGTPIRHGVGSCGTAAFTGERVIVEDISTHPFWKNVKNLAKEADLGSCWSEPIKDPSGKVLGTFAIYHRTPNSPNPKDLELISELSDLTAIVLDRYKIIKRLEESENKYKVLANAGNEAIFILEGDKIVEVNKRAEIITGYSEMELSGMSIYNFLAKEYWITPYSDESRKFRHKIKAVGVNKNGLNVSVIVRIKNSTFKGKVVCLLSVRDVTNYINAKIELSKLSQSIIQSPVSVVITNVDGDIEYVNPKFNKLTGYSLEEVIGENPRLLSSGNNKAELYKSMWQEIKSGNVWRGEFQNKKKSGELFWEFATISPLKDDREQIINFIAVKEDITDRKRQEQIQRIILNISNAVFTQMTLVEFIQFIREELSSIMDTTNFFVALYDDETELFSLPFHDDEHDSFEKFPKGKTISGWVVDHETALLATAEKLDELEAKGEIDLVGEPSKIWLGMPLKGKEKVIGVLVIQSYIDENVVTEEDKNMLELVSQQISISIEQKRTEQELHKALRDATESDRLKSVFLATMSHELRTPLNAVIGFSELINNEIDLETAVEYSKMVNQSGQNLLNIVEDLFDISLIQSGAVKIKQENYSLLNLFYEISAVINVEQKVLNKEHIELKINFPSDYNDFFIKTDPHRFKQVYLNLLKNALKFTDRGSIEYGFTKSDLKSGIVLQFYVKDTGIGIPEEVQESIFGLFRQANEKLSRKYNGVGIGLSISKSLTELLGGKIWFDSIPEEGSTFYFTHPIK +>UniRef90_A0A2N8BAE4 Mandelate racemase n=1 Tax=Pseudomonas sp. FW305-25 TaxID=2070636 RepID=A0A2N8BAE4_9PSED +MKIISIKVFQFDVPLKEKYSLSGGRLQYASLDTTIVLVTTDSGLVGVGESCPWGATYLPAYAKGVRAGIDELAPHLLGENPLHLDQLNERMDVMLPGHPYVKAAIDLACWDILGKHCQLPVYTLLGGRFQDSVALQSSIPTDDAAQMMAHLERARNQGYRTHSCKVGTGIDDDVAQIKYLLDQRVPGEVITFDVNRAWTVAEAVAVMNSVADPTVCFEQPCESMDQCRAVRELTRNPIILDESIVTFADLVQAQRQNIAQLIGLKIGRVGGLTKARQMRDFCIHHGIRMNIEDVGGTQVSDSAVMHLAASTPRRFHRASWNCCRHHEVQLAEGSFDIRQGRAYLHDSPGLGLTLDPRQFECPIAQYS +>UniRef90_A0A8G2BJ52 Transmembrane transcriptional regulator (Anti-sigma factor RsiW) n=2 Tax=Thalassobaculum TaxID=526215 RepID=A0A8G2BJ52_9PROT +MSTRNGNGTNGSGSIEDWEVGAYVDDELSPQRRREIAAAAGASPELAARIEVYTRHKSLLAGLASRPVDDEIPEQMRAAATRLSRATTVHGWMRRGRQVMVAQARIAAVLVIGAVVGWTAQEILAPRPGNATDGPLAFIDEATEAHRTLALAPMFATDVGSVDFAKLSEMFSEGIDPAGLRANGLILSKVDMASTDQGPAVQFLFFDREARPVSLLLSVNSASLHSVGVPDGEMVVTSYNDFAVAFGRRDSIAFVVTAALPERRVGEIARQLVASAGF +>UniRef90_UPI001B3A3E04 LPS assembly protein LptD n=1 Tax=Pseudoalteromonas sp. MMG010 TaxID=2822685 RepID=UPI001B3A3E04 +MNKSWGILMLSVVSTSSLADTELTHKLCGVSMLTRTWQPMQGLELGTVDIKADEVEFLGTQSAEFNGNVDINTLDMSLSAQSALLDKERSLLNATGPITYQNSVSTVHSTGLNADLNNSEISLLGANYNLTEQLGKGGAEKLTVNNSGLLLMNASFTACPGEIPVWAIEADEINLSREEGWGETYNAVLRILDTPVLYLPYFTFPLDERRKSGLLTPSFSSSDSYGLETITPYYWNIAPNYDATITPRYMSRIGLQLQTEFRYLTDTSKGLVGIEYLNEDDSEPELDSRYMFHWQQKSYFGENWRASVDITNVSDDNYLTDLTSNYANTTDTQLYRTGALTHLGDTWRTDIKIQSFEVLGDHDESYTALPQINFTQTAPWRINHFDFSISGELSHFINGSTEVEVDEATRLHIEPKVRFGYEQYAWSFLSEVSLLQTNYKQHGDLDGTQYSSSVSRTLPKVRLYSQLNFERDTSFFFEDGIQTLEPQMQYLYTPNKDQTDIALFDTVNLQEDFFGLFRDTRFSGVDRIAGANQLTIGATTRLFSSKSEEVFNFSAGQIFYLSDSAKPTEQGITEETNYNALFAAQTMVHWHRRWYLSGGIQYDTDGKQMIQSNVTLDYKGDNNQLVQLNHRYANDVSGNTIEQVGMFTSVPISDEWQFIASYHKDIENKRSIEVLTGLQYESCCWAVQITGQRQIKTDLNQAIDQDQATFDSSIRLNFVLKGLGSKSSYDAQKLLQQSIFGYRRPYFLNN +>UniRef90_UPI0016098D3D hypothetical protein n=3 Tax=Rhizobium TaxID=379 RepID=UPI0016098D3D +MQNALLDYADLISLLTAVGTFVAIVAGVVELIKARREHVRAKEQEFNSSYLTISDAYHQLLELSVEYPHLGIFPWQEEPADLSPDDLVRRDIFYEMMISIFERAYLERHKTPEIAEHFWPGWETFLRRQIEKPSFRKYWGIFDGEGAFGAYDKRFEAFAKRLDGGLPGQDGV +>UniRef90_A0A3N5IFY8 Peroxiredoxin (Fragment) n=1 Tax=Planctomycetaceae bacterium TaxID=2026779 RepID=A0A3N5IFY8_9PLAN +MSDWLEPGTPMPSFTLADHTGAKVKSSQWKGKPLAIYFYPKDDTPGCTKEACAFRDASQPLEK +>UniRef90_A0A2Y9K040 AP-3 complex subunit sigma-2 isoform X3 n=13 Tax=Boreoeutheria TaxID=1437010 RepID=A0A2Y9K040_ENHLU +MIQAILVFNNHGKPRLVRFYQRFPEEIQQQIVRETFHLVLKRDDNICNFLEGGSLIGGSDYKLIYRHYATLYFVFCVDSSESELGILDLIQVFVETLDKCFENVCELDLIFHMDKGGLSAAPARAVSAVKNINLPEIPRNINIGDLNIKVPNLSQFV +>UniRef90_A0A379GMX6 Inner membrane ABC transporter permease protein ydcV n=7 Tax=Morganellaceae TaxID=1903414 RepID=A0A379GMX6_PROST +MNTIKTNNGQKVVKISLIFFIFINVVWLGLPFTMAILWSLVDPQHPWSYPDLFPQKLSLARWKIVWEQTSLATALFNSYTIAPAVAILSLLLATPTAYAFGRMTFKGKAVAEMLTLIPLVMPGMIIGIFFSSMLISLNISNTFMSIVIGHTVLTLPYSIRIMSAGFKSIPQDIIDASRDMGASFWGTFCNAFLPMLKPSLLASLIFCLVRSLEEFSISFVLGSPDFITVPTILYSFLGYSFVRPDAAVVSMILVIPNVILMIIIERLLKGNYLSQSTGKA +>UniRef90_A0A382A9E5 Swi3 domain-containing protein (Fragment) n=1 Tax=marine metagenome TaxID=408172 RepID=A0A382A9E5_9ZZZZ +LRPTPGRKDKEHDDGGLNENNDDEEDLEESLKISIKMPKASLFESAGFNVKQQKKVASIFESAIKSTTRQVGKQIHEHYSKVHKKRLAEHQQLIENRLNTYLDVVVEEWVETNRPAVRSSLRTELSENFLNGLQKLFTEHYIDVPESKTDVVKSLTQHVETLKRQVNEQYTEKLKLHRLAETANKKRIVATFARDMSESQAGKLEKLAEDTQYVNANDFREKLSMLKESYFEKQPSRATRLPEENVQEVTETGVAKGEADMVADAITRQAKSSDW +>UniRef90_F8A565 histidine kinase n=2 Tax=Cellulomonas gilvus TaxID=11 RepID=F8A565_CELGA +MSPAPGTRWGLAARLLAALVVVLAVAAFTAWLVASAVGPGLFHEHMVRAGLQDHDSAVLHAERAFRDASAVSLALALGAAAITSAAVSVVLAGRIGRSLATVSKAAARLGAGEYESRVPAAGLGAEFDDLADSFNTMAARLRDADRLRARLLADVAHEVRTPVATIAGYLEAVQDGAQPMDEATMTVLADQAARLTRLAQDLAAVTRAEAGDLVLNVEPVPTRDLLEQTAAAWRDRAAAAGVHLALDPDAGSGAGPVAVDRHRIAQVMDNLVANALRHTAAGGTITLRARAVDDPSRVALAVRDTGKGIAPEHLPHVFERFYRADTARDRASGGSGIGLAICKALTEAHGGTITAASAGVGAGATFVVTLPAINSGP +>UniRef90_A0A651I330 T9SS C-terminal target domain-containing protein n=1 Tax=Saprospirales bacterium TaxID=2026790 RepID=A0A651I330_9BACT +MKSSFFLLPLLFFGTLNMCFSQVPFIEVLNPNEVSLDSTEAVRYDSIVGFGENYQKYLIRINPIQNYVSLDTITISIPLAEIGEIQFVTTAIEYRNDSSFSLTGYNLSGGFLNFTLLESEIGANMFIPESQSLYQFNSISESYAVMLRYPNWTGFESIGCITTGEDGDQEDYYPDEFSGPDSLNYAQERSICDHNRIRVLVLFTTQGRNESFLRGSNMNRDAQRLIDELNLSIANTGISRSRISFALADTRLLGSFVEDDEDEDIQGDVELLSNNQEAQEMRDEVLADIVVLITGNVYGNIFGVARDIRASESRAYAISTYEFTFNGNLTGTHEIGHLIGTRHQRCRRCPSACDPKWSKYKGYKVGSDMRTIMHVQGCGRTRVNVWSSSGAKFMGQSTGNTNNRNSGILKNRASKVACFREGVPPIPPPPPLSIYYIEGPLFLCPDNAFPQYEVHYNQNVFQNPIFNWDISENGLFNWTTIIGKIKNGNPVTLTQPNNLPDVFWLRATVSDPSGTTASTTIQVRKRDEPYSCNTFLRILREANEQDGTNSEYILYPNPTNNDIFVSGIVGKVWYKIFSSAGELIKIGTDNLSKDQELNISLTYFPAGLYFMELIMENNESHVMKLVKK +>UniRef90_A0A4S8PU73 DUF4240 domain-containing protein n=1 Tax=Glycomyces buryatensis TaxID=2570927 RepID=A0A4S8PU73_9ACTN +MDTTKALKKGRNLIPDEVFAKLVTRIEAEHHFDADMAARCVDQAAAYLAACASSTAPLSPSMAADIGWHMFILHTRDYADFCEQVAGRFIHHVPHDEPAEQSTEDVQAILDRSSAAIRKAGYQVDTELWRADGGAGKCNGCHSGCHDDPAPVPPFHEG +>UniRef90_UPI0018E12798 fasciclin domain-containing protein n=1 Tax=Aquamicrobium zhengzhouense TaxID=2781738 RepID=UPI0018E12798 +MRMTFALAAGLIAIAIPAHAQDKDIVDTAVAAGEFTTLAAALDAAGLVQTLKGEGPFTVFAPTDAAFAKLPAGTVEELLRPENKEKLAAILTYHLVPGKVMAADVVSLDEAKTVNGETIEIQVDGNSVRVNDASVTATDVAASNGVIHVIDQVILPPEG +>UniRef90_UPI0010459B45 aminoglycoside 6-adenylyltransferase n=1 Tax=Streptococcus downii TaxID=1968889 RepID=UPI0010459B45 +MRTEPEMFDVILQIAKSLKVEAVAMSGSRTDTKAPKDEFQDYDVVYVVDDLDNLTSDLSWLDQFGTRIIEQHNVLGNRRLYLMLFEDGNRIDLTLCPTEYIQEWVDSEAGFTVLEDPKGLFAPYSPSPQRYWISLASQTDFEKACNEFWWVSAYVVKGICRKQVIYATDHLYGICQQELLKVVAWQVAADNGTVDVGKNYKYLFQYLPAEKEKEFSALLDFSSVEKLIQSLFATMQLFHQEAQFLANKMGFDYDKEVAEKMIQYAKERLN +>UniRef90_UPI000E3E49EC hypothetical protein n=1 Tax=Paraliobacillus sp. X-1268 TaxID=2213193 RepID=UPI000E3E49EC +MRNVRGAKELSKYLESIGAPISESTIFSLLREGKIPHQRPSPRILIFNLNAIDEWLNLK +>UniRef90_A0A286TUH0 Signal transduction histidine kinase (Fragment) n=1 Tax=Candidatus Scalindua japonica TaxID=1284222 RepID=A0A286TUH0_9BACT +CELGKEGAFIWVNQTAAEMFGYKSPEEMIGTKVNEIYVNIDDGRTQLEMLEKHGVLSNTVYLCKNKSGDCFYAECTSHLVKDKKGKQCRIEGIIRVITERKKSEYRLIAQHAVTKILSESETIKIAFQGILKVICEALDWDFGSLWLEHDNVLRCVYLWHVPGLQFSEFKKKTKEISFLPGIGLPGRVLSKGKAAWIKDVVVESNFPRATAASKVGLHGAFAFPIIANTEILGVIEFFSQKPEEPDKELLNMMEAIGSQVGQFIKRKQADEQVSKLSRAVEQSPVSVVITDTKNNIEYVNRKYTEVTGYSLEEVKGKNPIVLKTVEENVEEHKELWKTITSGKEWQGEFCNFNKNGEIYWESESISPIKNCDGIITGFIQLKEDITERKLVQSHLKTQLEVAKVLAESNTIREASTRIIEVVCIALGWDLGEVWIYDKQQYILRNTEIWHLPSLNFSEFKDITCRTTFSPQKGLPGLVWQTAKPLWIEDVARDSNFLRASVADKEGLHGAFGFPIAIDNVVLGTICFFSREIRRPDDKLLNMMSSIGNHIALFIERKQADEQISKLSRAVEQSPASVVITDTKGNIEYVNRKFTEVTGYSFEEVKGKNPRVLKSDERNSVDYKELWDTISSGKEWRGEFKNKNSDGKAYWEFASISPIKNNQGVTTGYIAIKEDITVHKNLEQQLMHAQKMESIGHLAAGIAHEINTPTQYIMDNTRFLQDSFNDINKLLEKYSHLLETCKSGSVESELIEEIEVAVRELDEDFLVDEIPNAITQSLEGLDRVKNIVYAMKNFSHPDNENKKPIDINKAINNTITVARNEWKYVAEVKTDFDSSLTSVPCFPGEFNQVILNLIVNAAHAIGEEPGNGNEGKGIIVISTLCDGEWAEIRVSDTGTGISGDIRKKIFDPFFTTKEVGKGTGQGLSLVHSTVVGRHNGTITLDTELGKGTTFIIRLPLCTSSSEIVKV +>UniRef90_A0A2N9EE18 Myb_DNA-bind_3 domain-containing protein n=1 Tax=Fagus sylvatica TaxID=28930 RepID=A0A2N9EE18_FAGSY +MGTGIYAREDAKLWPARLEKLFIDIMVEEMHKGNMPMGIFKLKTWCKILEELNLRSKQSFKLKQVKAKYNRLKQKYRVFSQLLQQNGFVWHGETNSVTASDEVWESYLYANPDAERFREKGCEHYKLLGILFNKLIAMGFMAFASTQDAPDTDEERELDEAYRNGAFIDVDSDSQDDHEKKVSQKRTKRSGKCPMRSEAKGRKRSRKADEFSELNDAIRAFAEQTKLMLEAKVARMKEKEKRKQQRDEFSIPNCVNALESLGDLDMNTYTLAIKKFSTAEWREAFMSLSSNARKKAWLDCLK +>UniRef90_L7LLZ8 Phosphoribosylformylglycinamidine synthase subunit PurS n=9 Tax=Gordoniaceae TaxID=85026 RepID=L7LLZ8_9ACTN +MARVVVDVMPKAEILDPQGQAIVGALGRLGFAGVADVRQGKRFELEVDGTVDDAALERIAEELLTNTVIENFNVTRVAE +>UniRef90_Q1IWN5 Nitrogen regulatory protein P-II n=7 Tax=Deinococcus TaxID=1298 RepID=Q1IWN5_DEIGD +MKLITAVVRPERVQQVKAALFEAGISGLTLSRVSGHGGEQEIVEHYRGTRVMVEFRDKVEFRMAVSEPFVEVAIRAICESARTGEVGDGKIFVQPLERVVRIRTGEEDNAALTPVTETRLTPGLPVRHAR +>UniRef90_A0A534D3W2 Lipoprotein (Fragment) n=1 Tax=Gammaproteobacteria bacterium TaxID=1913989 RepID=A0A534D3W2_9GAMM +MFREKRFVSLVLGVSLLAPGCGESTESVSPLQTLPASRGQLLNNPPTKLGSFSVSDLLSRLSGSQMGRELIKLAFSPTCSVDT +>UniRef90_A0A2G2QLC1 C4-dicarboxylate ABC transporter n=1 Tax=Cycloclasticus sp. TaxID=2024830 RepID=A0A2G2QLC1_9GAMM +MVSENKLPLAVVFLFLMLGVIWWPSFSNLGDLFGYAAKAEYKGVSLLNFFRAELVVLVTVWAVLISYKEQNDMVDGNAYVTRFLILVMFVIGQVFMGFFAGGFLVHQDASWYQVIHEANEVMPSQAVILLVCYPLYLFFGGSAFIYAKTRLPKFLKGKEFSFMVLTFAPLAFLPYYDSSFMQAKKDLFEIAYLSVYWLLSVGWVVIGVLYIILKASQGIFKGLSDPYGEM +>UniRef90_A0A562TCA1 Toprim domain-containing protein n=1 Tax=Chitinophaga japonensis TaxID=104662 RepID=A0A562TCA1_CHIJA +MKKLMCAEAKQIDLVDYLASLGHRPQKVRNQDYWYLSPLREEKTPSFKVNRQLNVWYDHGTGKGGDLIDFGTLYFGCSVSDLLDRLSHHQPAPSLSLHPPTHASRQHSGPASFAGERKDASGSRIVILDARPLAEPSLLEYLQKRCIPLEIATRFCKEVDFLLYGEKRTVIGFRNNAGGYELRSGNFKGSSSPKDVTFIDNHAGEITVFEGFFSFLSFQTINNNQQDTVSNCLILNSLSFFEKSRPLMEQHGKVHLVLDRDAAGIHHTQKTLQWDRDKYQDRSDFYHGHKDLNEWLVHHHHSQKEPQRLRRRP +>UniRef90_UPI0017892BBC TlpA family protein disulfide reductase n=1 Tax=Plantactinospora soyae TaxID=1544732 RepID=UPI0017892BBC +MRRPRRARLGALLAVAAALALALVGCSGEDDWKDDCTTKGGVIECAPEHRPQAPKVTGELLSGGNYDLAQDRGQVAVINFWGSWCAPCRAEADDLEATYQATRERGVRFIGINIQDGRDKARAFEEAFKVTYPSLFDPPSRLALAFDIPPNSIPATVVLDREGRIAVVIRTAVTRETLEPILTRVAAEQAAPGGGPN +>UniRef90_A0A3M8TKU5 Tail assembly chaperone n=2 Tax=Pseudomonas putida group TaxID=136845 RepID=A0A3M8TKU5_PSEPU +MKQPERITLVLRASEAAPLSSILPFTKLGDLVSAGRGLAVIAGFSEGDLQARLAECEAQLQEADVLLREAIAYVNDELVNVEYRDILIARIDRLLDRDQAQQAEKPREQEP +>UniRef90_A0A357MHW4 SseB domain-containing protein (Fragment) n=1 Tax=Rhodobacteraceae bacterium TaxID=1904441 RepID=A0A357MHW4_9RHOB +MTEAPKTPETPETALDAAHAAMQAAPADDAARLRFFERVADSELFLLLKREASGDQVDPESFELADGTFVLAFDREERLAAFTGRASPYLALSGRVLARMLAGQGIGLGLNLEVA +>UniRef90_UPI0004CC520E alpha-L-rhamnosidase N-terminal domain-containing protein n=1 Tax=Streptomyces cellulosae TaxID=1968 RepID=UPI0004CC520E +MTYTDGSATSLVTDKDWLTADGPTTFDQVYSGEKDDARRADELEEWRSAGHRAARAGQLLRTVPRVPRHACRGDYPRRPSAAHSGLVQDRVDDLSHLVPALMTADRAVLSLPGRDDRPDQLPRLQVALAPAPRTARTVAAADHAG diff --git a/flax_model/alphafold3/test_data/model_config.json b/flax_model/alphafold3/test_data/model_config.json new file mode 100644 index 0000000000000000000000000000000000000000..01a9127e6b2b2a51eafc6a62d1696ac59e667551 --- /dev/null +++ b/flax_model/alphafold3/test_data/model_config.json @@ -0,0 +1,231 @@ +{ + "evoformer": { + "max_relative_chain": 2, + "max_relative_idx": 32, + "msa_channel": 64, + "msa_stack": { + "msa_attention": { + "num_head": 8 + }, + "msa_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "num_layer": 4, + "outer_product_mean": { + "chunk_size": 128, + "num_outer_channel": 32 + }, + "pair_attention": { + "num_head": 4 + }, + "pair_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "shard_transition_blocks": true, + "triangle_multiplication_incoming": { + "equation": "kjc,kic->ijc", + "use_glu_kernel": true + }, + "triangle_multiplication_outgoing": { + "equation": "ikc,jkc->ijc", + "use_glu_kernel": true + } + }, + "num_msa": 1024, + "pair_channel": 128, + "pairformer": { + "block_remat": false, + "num_layer": 48, + "pair_attention": { + "num_head": 4 + }, + "pair_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "remat_block_size": 8, + "shard_transition_blocks": true, + "single_attention": { + "key_dim": null, + "num_head": 16, + "value_dim": null + }, + "single_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "triangle_multiplication_incoming": { + "equation": "kjc,kic->ijc", + "use_glu_kernel": true + }, + "triangle_multiplication_outgoing": { + "equation": "ikc,jkc->ijc", + "use_glu_kernel": true + } + }, + "per_atom_conditioning": { + "atom_transformer": { + "attention": { + "key_dim": 128, + "num_head": 4, + "value_dim": 128 + }, + "num_blocks": 3, + "num_intermediate_factor": 2 + }, + "per_atom_channels": 128, + "per_atom_pair_channels": 16, + "per_token_channels": 384 + }, + "seq_channel": 384, + "template": { + "dgram_features": { + "max_bin": 50.75, + "min_bin": 3.25, + "num_bins": 39 + }, + "num_channels": 64, + "template_stack": { + "num_layer": 2, + "pair_attention": { + "num_head": 4 + }, + "pair_transition": { + "num_intermediate_factor": 2, + "use_glu_kernel": true + }, + "shard_transition_blocks": true, + "single_attention": null, + "single_transition": null, + "triangle_multiplication_incoming": { + "equation": "kjc,kic->ijc", + "use_glu_kernel": true + }, + "triangle_multiplication_outgoing": { + "equation": "ikc,jkc->ijc", + "use_glu_kernel": true + } + } + } + }, + "global_config": { + "bfloat16": "all", + "final_init": "zeros", + "flash_attention_implementation": "triton", + "pair_attention_chunk_size": [ + [ + 1536, + 128 + ], + [ + null, + 32 + ] + ], + "pair_transition_shard_spec": [ + [ + 2048, + null + ], + [ + null, + 1024 + ] + ] + }, + "heads": { + "confidence": { + "dgram_features": { + "max_bin": 50.75, + "min_bin": 3.25, + "num_bins": 39 + }, + "max_error_bin": 31.0, + "no_embedding_prob": 0.2, + "num_bins": 64, + "num_plddt_bins": 50, + "pae": { + "max_error_bin": 31.0, + "num_bins": 64 + }, + "pairformer": { + "num_layer": 4, + "pair_attention": { + "num_head": 4 + }, + "pair_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "shard_transition_blocks": true, + "single_attention": { + "key_dim": null, + "num_head": 16, + "value_dim": null + }, + "single_transition": { + "num_intermediate_factor": 4, + "use_glu_kernel": true + }, + "triangle_multiplication_incoming": { + "equation": "kjc,kic->ijc", + "use_glu_kernel": true + }, + "triangle_multiplication_outgoing": { + "equation": "ikc,jkc->ijc", + "use_glu_kernel": true + } + } + }, + "diffusion": { + "atom_transformer": { + "attention": { + "key_dim": 128, + "num_head": 4, + "value_dim": 128 + }, + "num_blocks": 3, + "num_intermediate_factor": 2 + }, + "conditioning": { + "pair_channel": 128, + "prob": 0.8, + "seq_channel": 384 + }, + "eval": { + "gamma_0": 0.8, + "gamma_min": 1.0, + "noise_scale": 1.003, + "num_samples": 5, + "step_scale": 1.5, + "steps": 200 + }, + "eval_batch_dim_shard_size": 5, + "eval_batch_size": 5, + "per_atom_channels": 128, + "per_atom_pair_channels": 16, + "per_token_channels": 768, + "transformer": { + "attention": { + "key_dim": null, + "num_head": 16, + "value_dim": null + }, + "block_remat": false, + "num_blocks": 24, + "num_intermediate_factor": 2, + "super_block_size": 4 + } + }, + "distogram": { + "first_break": 2.3125, + "last_break": 21.6875, + "num_bins": 64 + } + }, + "num_recycles": 10, + "return_distogram": false, + "return_embeddings": false +} \ No newline at end of file diff --git a/flax_model/alphafold3/version.py b/flax_model/alphafold3/version.py new file mode 100644 index 0000000000000000000000000000000000000000..7aaa0a1cfed8114272ffd5b792f0fd7bed21d440 --- /dev/null +++ b/flax_model/alphafold3/version.py @@ -0,0 +1,13 @@ +# Copyright 2024 DeepMind Technologies Limited +# +# AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +# this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ +# +# To request access to the AlphaFold 3 model parameters, follow the process set +# out at https://github.com/google-deepmind/alphafold3. You may only use these +# if received directly from Google. Use is subject to terms of use available at +# https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md + +"""Single source of truth for the AlphaFold version.""" + +__version__ = '3.0.1' \ No newline at end of file diff --git a/inputs/7r6r_data.json b/inputs/7r6r_data.json new file mode 100644 index 0000000000000000000000000000000000000000..ed2b900fd127d1037d8d7c84ff46b5918666f0aa --- /dev/null +++ b/inputs/7r6r_data.json @@ -0,0 +1,57 @@ +{ + "dialect": "alphafold3", + "version": 3, + "name": "7r6r", + "sequences": [ + { + "protein": { + "id": "A", + "sequence": "MGSSHHHHHHSSGLVPRGSHMSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDISDDDLLIRVNEHTQLTAEGELLWSWPDDIEELLSEP", + "modifications": [], + "unpairedMsa": ">query\nMGSSHHHHHHSSGLVPRGSHMSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDISDDDLLIRVNEHTQLTAEGELLWSWPDDIEELLSEP\n>UniRef90_Q05286/1-183 [subseq from] Repressor-like immunity protein n=6 Tax=Fromanvirus TaxID=186764 RepID=VG71_BPML5\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDDDLVLEFDPSIEPYEGMAGGGFRYVPRGIEDDDLLIRVNEHTNLTAEGELLWSWPDDIEELLSEP\n>UniRef90_A0A3P3ZVQ9/1-183 [subseq from] Immunity repressor n=2 Tax=root TaxID=1 RepID=A0A3P3ZVQ9_MYCHD\n--------------------MSGKTSSKVVVPATSRVPLTLSVIEDLRSKGYNQSEIAEIFGVTRQAVSWHKKTYGGRLTTRQIVQQAWPWATTRLHSKSKAYQRLRDHGEYMRVGSFRTMSEDKRKRLVSWWKMLRDNNWVLEFDPSIEPYEGMAGGGFRYVPREERDDDLLIRVNEHTNLTDEGELIWSWPDNVDELIGKP\n>UniRef90_I1V1K8/4-148 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage SWU1 TaxID=1175504 RepID=I1V1K8_9CAUD\n-------------------NMSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDDDLVLEFDPSIEPYEGMAGGGFRYVP---------------------------------------\n>UniRef90_A0A6B9J6W4/4-184 [subseq from] Immunity repressor n=4 Tax=Pukovnikvirus TaxID=2948873 RepID=A0A6B9J6W4_9CAUD\n-------------------NMSGKITIRPKAKATARQALTLSDIEDLRRKGYNQSQIADMYGVTRQAVSWQKKTYGGRLTTRQIVQEAWPFETHMPHDKSKAYQRLRDHGEYMRVGSFKTLSEDKRKRLLSWWRKLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNDHTKLTEEGEMIWCWPPDIDSLL---\n>UniRef90_A0A516KSK3/4-185 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage NothingSpecial TaxID=2590945 RepID=A0A516KSK3_9CAUD\n-------------------NMSGKIKPLDIVKPVSRQPLTLSAIEDLRRKGYNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQEAWPWQTTKLHGKSKAYQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPDLPPEPGVAPyGGFRYVPRTDADDDLLIRVNEHTNLTEEGEMIWCWPPDIDSLL---\n>UniRef90_B3VGM1/4-185 [subseq from] Repressor n=1 Tax=Pukovnikvirus pukovnik TaxID=540068 RepID=B3VGM1_9CAUD\n-------------------NMSGKINNVARRSAPSRQPLTLSTIEDLRRKGFNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQEAWPWKTTKLHGKSKAYQRLRDHGEYMRVGSFKTMSEDKKKRLLSWWRKLRDENVVLEFDPDIPPEPGVAPyGGFRYVPRTSADDDLLIRVNKHTNLTEEGEMIWCWPPDIDSLL---\n>UniRef90_A0A481VYD5/4-187 [subseq from] Immunity repressor n=16 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A481VYD5_9CAUD\n-------------------NMSGNINRAIVSRPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>UniRef90_S5YS02/1-181 [subseq from] Repressor n=1 Tax=Mycobacterium phage Adzzy TaxID=1383059 RepID=S5YS02_9CAUD\n--------------------MSGKTQNTARQQASSRKPLTPSVIEDLRRKGFNQSEIADLHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDLVLEFDPNIPPTPGVApQGGFRYVARTEKDDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>UniRef90_W8ECM7/1-183 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage 40AC TaxID=1458717 RepID=W8ECM7_9CAUD\n--------------------MSGKISTLEIVKPTSRMALTLSSIEDLRRKGYNYQQIADMHGVTRQAVEWHVRVYGGHLNTRQQVKALWPFDTRKPMDKSKAYQRLRDHGEYMAIGSFRTMGEDKRKRLLSWWKMLRENDVVVEFDPNIKPYPGMSGGGFRYVPREERDDDLLIRANEHTNLTEKAEMIWSWPDDIEELLGEP\n>UniRef90_Q1A0D7/1-181 [subseq from] Immunity repressor n=3 Tax=Fromanvirus TaxID=186764 RepID=Q1A0D7_9CAUD\n--------------------MSGKMQNPARQQASSRQPLIPSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDWVLEFDPNIPPTPGVApHGGFRYVTRTEADDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>UniRef90_A0A5Q2WM60/1-187 [subseq from] Immunity repressor n=4 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A5Q2WM60_9CAUD\n--------------------MSGKITTIDVVPATSRRPLTLSEIEDLRRKGFNQSQIAQMYGVTRQAVSWTKKTYGGRLTTRQIVQELWPFETTKMHGKSKAFQRLRDHGEYMRTLSFKGFSPEKKQRLIRWWKMLRDQNLVLEFDPTIEPYPGMAGGGFRYVPREERDDDLLIRVNEHTKVEDDGkldmraELLWKWPPNVEELLA--\n>UniRef90_A0A345KUV7/1-180 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Acolyte TaxID=2250290 RepID=A0A345KUV7_9CAUD\n--------------------MSGKPTTPSMMKPIGRAPLLPSVIEELRRKGYNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKAHGKSKAYQRLRDHGEYMRVGDFSTMSEDKKKRLLSWWKMLRDKDVVLEFDPNLPPEPGVApHGGFRYVPRKASDDDLLIRVNKYTNLTEQGEMIWCWPPDIPTL----\n>UniRef90_A0A345L0P2/1-179 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Steamy TaxID=2250309 RepID=A0A345L0P2_9CAUD\n--------------------MSGKIN---IVKPQSRLPLTPSEIENLKRRGFNQSQIADLHGVTRQAVSWQKVTYGGSLTTRQIVNRTWPFKTTNLHGKSKAFQRLRDHGEYMRTGSFKGMSEEKVRNLKRWWKRLLDEDIVVEFDPSIEPYAGMAGGGFRYVPRRPEDDDLLIRVNKHTNLSEEGEMIWCWPPDIDSLLDE-\n>UniRef90_A0A5P8D965/1-186 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage GaugeLDP TaxID=2652419 RepID=A0A5P8D965_9CAUD\n--------------------MSGKIKTLDVVPATSRQPLTLSVIEDLRRKGYNESEIARMHGVTRQAVNWQLKTYGGRLTTRQQVKELWPFETNNLHGKSKAFQRLRDHGEYMRTLSFKGFSPEKKQRLIRWWRMLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNEYTKVEEDGmldkraELLWKWPPNVDELL---\n>UniRef90_A0A5N5UVZ2/3-169 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium phlei DSM 43239 = CCUG 21000 TaxID=1226750 RepID=A0A5N5UVZ2_MYCPH\n----------------------------------SRKPLTAKRIEELRAKGYNQSQIAEMHGVTRQAVSWHKVVYNGFLTTRQLAQRAWPWETTNTHGKSSAYQRLRDHGEFMLSGGFTSMSENKQRLLKSWWRRLRDDDVVLEFDPAIEPYRGMGGGGFRYVPRTAADGDLLIRVNEHTTLTAEGERIWCWPADIESLLG--\n>UniRef90_A0A4D6T8Z1/4-191 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage XianYue TaxID=2572534 RepID=A0A4D6T8Z1_9CAUD\n-------------------NMSGKINNLDVVRPASRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQIKELWPFETKKLHSKSKAYQRLRDHGEYMRQLSFKGFSEDKKKRLIAWWRMLRDDNVVLEFDPNIPPAPGMAGGGFRYVPREDGDDDLLIRVNEHTRVEDDGklnmkaELLWKWPPEIDELLA--\n>UniRef90_A0A649V6N4/1-189 [subseq from] Immunity repressor n=2 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A649V6N4_9CAUD\n--------------------MSGKISNLDVNRATSRQPLTLSTIEDLRRKGYNYQQIGDMHGVTRQAVDWQVRTYGGRLDTRQQVKALWPFETHKPHDKSKAFQRLRDHGEYMRQLSFKGFSEEKKKRLISWWRMLRNDNVVLEFDPSIEPYPGMVGGGFRYVPREERDDDQLIRVNEHVRpevldedgsLDSKAELIWTWPPDIDDLI---\n>UniRef90_A0A482JGG7/6-170 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Refuge TaxID=2517967 RepID=A0A482JGG7_9CAUD\n----------------------------------ARTPLIPSVIEDLKRKGYNQSQIAEMHGVTRQAVSWQKQTYGGSLNTRQVVNKAWPFTTTNAHGKSKPFQRLRDHGEYMRVGSFKGMSDEKVRNLKKWWTKLRDEDVVLEFDPTIEPHPGMAGGGFRYVPREASDGDLLIRVNDYTNLTPQGEVIWRWPPNIDSL----\n>UniRef90_R4JDZ9/4-61 [subseq from] Repressor n=11 Tax=Fromanvirus TaxID=186764 RepID=R4JDZ9_9CAUD\n-------------------SMSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQTTKFQG------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_R4JDZ9/54-163 [subseq from] Repressor n=11 Tax=Fromanvirus TaxID=186764 RepID=R4JDZ9_9CAUD\n------------------------------------------------------------------------------------------WQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDLVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEHTNLTDEGEMIWCWPPDIEELL---\n>UniRef90_A0A0A0RRI2/13-202 [subseq from] Immunity repressor n=2 Tax=Turbidovirus TaxID=2948936 RepID=A0A0A0RRI2_9CAUD\n------------------GNMSGKISNLDVVKSTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQQLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLRTENLVLEFDPTIEPAPGMAGGGFRYVPRTEEDDDLLIRVNEYTKVEDDGklnmkaELLWKWPPGIDELLSQ-\n>UniRef90_A0A6M3SYJ3/1-191 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Iwokeuplikedis TaxID=2725624 RepID=A0A6M3SYJ3_9CAUD\n--------------------MSGKIKTLDVVKPPSRTPLLPSTIEELRRKGYNYQQIGDMHGVTRQAVDWQVRTYGVRLDTRQQVKELWPFATHRPHDKSKAFQRLRDHAEFMRQQSFNGFSEDKKKRLLSFWRMLRDENLVVEFDPAIEPYPGMSGGGFRYVPRETRDEDLLIRVNEHVKpqvldddgtLNAKAELLWTWPRDIDDMLAQ-\n>UniRef90_A0A8A5LP85/4-192 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage TarsusIV TaxID=2816472 RepID=A0A8A5LP85_9CAUD\n-------------------NMSGKITTLSMMKPIGRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETSKEHSKSKAYQQLRDHGEYMRQLSFKDFSEEKKKRLISWWRRLRDNDLVLEFDPNIEPYPGMAGGGFRYVPREKRDGDCLIRINEYTKVDEDGlldkraELLWRFPPNIDEILSE-\n>UniRef90_A0A2H4PDB9/1-142 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Ph8s TaxID=2047842 RepID=A0A2H4PDB9_9CAUD\n-----------------------------------------------------------MHGVTRQAVSWQKKTYGGHLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDLVLEFDPNIPPTPGVApQGGFRYVARTEADDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>UniRef90_A0A481W3B5/12-170 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Pharaoh TaxID=2530140 RepID=A0A481W3B5_9CAUD\n-----------------------------------RQALLPSVIEELRRKGFNQSQIAEMHGVTRQAVSWQKQTYGGSLTTRQIVNKAWPFKTTNLHGKSKPYQRLRDHGEFMRTGSFKTMSEEKTRNLKKWWKKLRDENVVLEFDPNIPPQPGMAGGGFRYVPRLPSDGDLLIRVNEYTTLTDEGELIWCWPP---------\n>UniRef90_A0A1I9S419/6-171 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage DarthPhader TaxID=1912975 RepID=A0A1I9S419_9CAUD\n----------------------------------PRTPLIPSVIEDLKRKGFNQSQIAAMHGVTRQAVSWQKTVYGGSVSTRQVVNKAWPYTTTNLHGKSKPFQRLRDHGEYMRQLSFKGMSAEKERNLKKWWKKLHDEDVVLEFDPTIEPYPGMAGGGFRYVPREASDGDLLIRVNKYTNLTPQGEVIWRWPPNIESLI---\n>UniRef90_A0A386KPI9/1-189 [subseq from] Immunity repressor n=9 Tax=Turbidovirus TaxID=2948936 RepID=A0A386KPI9_9CAUD\n--------------------MSGKISNLDVIRPTSRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQRLRDHGEYMRQLSFKGFSAEKEKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDDDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>UniRef90_A0A649V936/8-176 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Yecey3 TaxID=2656617 RepID=A0A649V936_9CAUD\n----------------------------------HRAPLLPSVIEELRRKGFNQSQIADMHGVSRQAVSWQKKTYGGFVTPREIVREAWPFVTTNAHTKSTPYQRLRDHGEYMAQGSFKDMSDLKVRRLKAWWRKLHDEDVVLEFDPSIPAGPGMAGGGFRYVPRVVEDEDLLIRVNEHTTLSVYGETIWAWPPDIENLLAQP\n>UniRef90_V5R4N7/16-176 [subseq from] Immunity repressor n=27 Tax=Gladiatorvirus TaxID=2948726 RepID=V5R4N7_9CAUD\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>UniRef90_A0A249XTV3/1-190 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage JoshKayV TaxID=2024294 RepID=A0A249XTV3_9CAUD\n--------------------MSGKIKTLDVVKPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETHRVHSRSKAFQSLRDHGEYMRQQSFRGFSDEKKKRLISWWRRLWEQNVVLEFDPTIEPYPGMVGGGFRYVPREERDDELLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLIA--\n>UniRef90_A0A143FRM3/39-229 [subseq from] Immunity repressor n=25 Tax=Turbidovirus TaxID=2948936 RepID=A0A143FRM3_9CAUD\n------------------GNMSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKRRLISWWRRLREQNVVLEFDPNIPPAPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>UniRef90_A0A5J6TE93/4-175 [subseq from] Immunity repressor n=3 Tax=root TaxID=1 RepID=A0A5J6TE93_9CAUD\n-------------------NMSGKIT----KQPGQRAALTLSDIESLRRKGYNQSQIADMYGVSRQAVSWHKHTYGGSLTPRQIVNKAWPWKTTNLHGKAVAYQRLRDHGEFMAN-GFKDMSDEKKRRLVRWWEFLRDNDVVLEFDPNLPPEPGVApHGGFAYRPRKLSDDDLIIRANEYTNLTEEGDMIWCWPPD--------\n>UniRef90_D3JZD6/5-193 [subseq from] Repressor n=4 Tax=Fromanvirus TaxID=186764 RepID=D3JZD6_9CAUD\n--------------------MSGKIQTLDIVRPVSRRPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETSKLHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLLSFWRRMWDQNVVLEFDPTIEPYTGMVGGGFRYVPREERDDDLLIRVNEFVRpevldedgtLNAQAELLWTWPPGIEELI---\n>UniRef90_G1JV33/1-189 [subseq from] Immunity repressor n=2 Tax=Fromanvirus TaxID=186764 RepID=G1JV33_9CAUD\n--------------------MSGKITTLEIVKPTSRIPLTLSAIEDYVRKGYNYQQIGDMHGVTRQAVEWHVKTYGGRLNTRQQAKALWPFETLSKHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLISFWRRMWDQNVVLEFDPSIEPGPGMAGGGFRFVPREKRDGDLLIRVNEHVRpevvdddgtLNAQAELLWTWPPNVEDII---\n>UniRef90_A0A0Q8ZPK2/7-168 [subseq from] Immunity repressor n=1 Tax=Mycobacterium sp. Root265 TaxID=1736504 RepID=A0A0Q8ZPK2_9MYCO\n-----------------------------------RAPLVFSVVEDLRRRGYNQSQIAEMHGVTRQAVSWQKKTYGGSLTPRQIVQKAWPWKTSDAHGKSKAYQHLRNHGEFMATGG-RDMNEDKINRLKSWWQKLRDENVVLEFDPSIPPIPGVSpHGGFRYVPRLASDGDLLIRVNEHTDLSDEGEMIWCWPPDSS------\n>UniRef90_A0A481W4B7/10-179 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Arissanae TaxID=2530173 RepID=A0A481W4B7_9CAUD\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNEHTQSQPYQRLRDHGEWQQTGG-KGMSENKTKRLKSWWRKLRDEDVVLEFDPSIEPGPGMAGGGFRYVPRDIVVDgpDLLIRRNEHTApLTEKTEAIWSFPYDLDSLI---\n>UniRef90_W0LJ95/3-179 [subseq from] Immunity repressor n=2 Tax=Eagleeyevirus TaxID=2948689 RepID=W0LJ95_9CAUD\n----------------------GKTQQS----GSFRAPLIFSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNLHGKSVPFQRLRDHGEFMATGGA-GMSENKIRRLKAWWRKLRDEDVVLEFDPNIPPTPGMAGGGFRYVHRDIVTDgpDLLIRVNEHTApMTEKSEMIWSFPHDIEEILQ--\n>UniRef90_A0A6M3T4Q8/1-122 [subseq from] Immunity repressor n=4 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A6M3T4Q8_9CAUD\n------------------------------------------------------------------------------MTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>UniRef90_W0LJU9/1-189 [subseq from] Immunity repressor n=9 Tax=Caudoviricetes TaxID=2731619 RepID=W0LJU9_9CAUD\n--------------------MSGKISTLDVIKPTSRTPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKGHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDLVIRVNEHVRpeildedgtLNARAESVWTLPPGVEELT---\n>UniRef90_A0A5Q2WRX7/10-179 [subseq from] Immunity repressor n=2 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A5Q2WRX7_9CAUD\n--------------------------------RPTRAPLLFSTIEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNAHTKSQPYQRLRDHGEFQT-SGFKHMSDNKIMRLKAWWRKLRDEDVVLEFDPSIPPGPGMAGGGFRYVPRDIVTDglELVIRVNEHTApLDEKKSLIWSFPHDLEDIL---\n>UniRef90_A0A5J6TPD0/3-179 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Toaka TaxID=2599881 RepID=A0A5J6TPD0_9CAUD\n----------------------GKIKR----PA-NRASLIFSTIEDLRLKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEWQETGG-KGMSDNKTSRLKSWWRKLRDEDVVLEFDPSIPPAPGMAGGGFRYVPRDIVTDgtDLLIRVNEHTaRLDEKTEAIWSFPFDIEDILGQ-\n>UniRef90_UPI00048D867F/12-173 [subseq from] hypothetical protein n=1 Tax=Nocardia sp. 348MFTsu5.1 TaxID=1172185 RepID=UPI00048D867F\n--------------------------------------LSKEVIESLKAKGYTQTAIADMYGVTRQAVSWHLKTYGGQLSTRQIVNESWPWETKDFHGKAVAFRRLRDHGEFMRTGS-KDMSLDKMKRLKSWWKRLRDENLVVEFDPNIPPMPGVSStGGFAYRERTVEDDDLLIRVNEFTTITEQGKMIWCWPPDIDELI---\n>UniRef90_A0A160DGG7/12-172 [subseq from] Immunity repressor n=12 Tax=Soupsvirus TaxID=1982562 RepID=A0A160DGG7_9CAUD\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGDYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>UniRef90_A0A5J6T377/6-177 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Keziacharles14 TaxID=2575611 RepID=A0A5J6T377_9CAUD\n--------------------------------RPTRAPLLFSTIEDLRRKGLNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQAYQRLRDHGEYQETGG-KGMSANKIMRLRAWYRKLLAEDVVLEFDPNIPPGPGLAGGGFRYIPRDIVTDgkELLIRVNEHTAhLDEKKRLIWSFPDDLEEFLSQ-\n>UniRef90_A0A482JGB8/6-176 [subseq from] Immunity repressor n=3 Tax=unclassified Yeceytrevirus TaxID=2961482 RepID=A0A482JGB8_9CAUD\n--------------------------------RPTRAPLIFSTVEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFKTTNEHRKSQQFQRLRDHGEFQETGG-KGMSDNKMMRLRAWWRKLLAENVVLEFDPSIPPAPGLAGGGFRYVPRDLDVDgpELLIRVNEHTApLDEKKKLIWSFPDDLEDLLS--\n>UniRef90_A0A0F6SJH8/9-174 [subseq from] Immunity repressor n=3 Tax=Luchadorvirus TaxID=2948807 RepID=A0A0F6SJH8_9CAUD\n---------------------------------TGRQPLIPSVIEDLKRKGYNQSQIAGMHGVSRQAVSDMKIRYGGSVTLRQSVNEAWPWQTTNLHGKSTAYQRLRDHGEFM-VTDGKGMSEGKIEKLKRWWKFLRDNDLVLEFDPNIAPYPGQKYGGFRYVPRVLEDEELLIRVNEHTTMTPKGEVIWSWPTDIETLL---\n>UniRef90_A0A481W6T5/6-174 [subseq from] Immunity repressor n=2 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A481W6T5_9CAUD\n--------------------------------RPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNAHTKSQPYQRLRDHGEWQQTGG-KGMSDNKIMRLKAWWRKLRDEDVVLEFDPSIPPGPGMAGGGFRYVPRDIVVDgkELVIRRNEHTaQLDEKTEAIWSFPYDVEDL----\n>UniRef90_A0A2Z4Q1I7/13-174 [subseq from] Immunity repressor n=1 Tax=Gordonia phage Nedarya TaxID=2234025 RepID=A0A2Z4Q1I7_9CAUD\n--------------------------------------LSKEVIEDLKGKGYNQTEIADMFHVTRQAVSWHMRTYGGRMSTRQIVNESWPWATEYKHSKAVPYRRLRDHGEFMRTGGD-GMNPDSLRRLKNWWKKIRNDDVVVEFDPEIPPIKGVsAHGGFAYRPRVMGDDDLLIRVNEHTTLTEEGEMIWCWPPDIDQLI---\n>UniRef90_A0A5J6TLG8/10-180 [subseq from] Immunity repressor n=18 Tax=Fromanvirus TaxID=186764 RepID=A0A5J6TLG8_9CAUD\n--------------------------------RPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTQSQPYQRLRDHGEYQQTGG-KGMSDNKIMRLRAWYRKLLAEDVVLEFDPAIPPGPGMAGGGFRYVPRDkaVDGEELLIRVNEHTApLDEKRRLIWSFPDDLEEFLG--\n>UniRef90_UPI00110E3B6E/5-165 [subseq from] XRE family transcriptional regulator n=1 Tax=Rhodococcus pyridinivorans TaxID=103816 RepID=UPI00110E3B6E\n----------------------------------LKRQLSVTRIEQLKKKGFNQSEIAAMYGVTRQAVSWHLKTYGSALSTRQIVDQAWPWKTGHGHDKAVPYKRLRDHGEFMQTGG-KGMSDDKLKRLRSWWKRLRDEDIVVEFDPTLRPIKGVSPyGGFAYCSRTVEDGDLLIRVNEHTTLTEDGRRIWCWPSD--------\n>UniRef90_A0A5Q2WQ24/17-176 [subseq from] Immunity repressor n=1 Tax=Gordonia phage Anon TaxID=2653744 RepID=A0A5Q2WQ24_9CAUD\n---------------------------------------SKEVIETYLSQGLTQSDVAKLYNVTRQAVSWHMKTYGGRMSTRQIVNEAWPWETKAGHDKATPYRRLRDHGEFMKTGG-RGMNEDKLARLKKWWKMLRDEDLVVEFDPSIPPIKGVAShGGFAYRPREISDGNLLIRVNEHTTLTKAGAMIWRWPPNIDRL----\n>UniRef90_A0A142K5H1/15-204 [subseq from] Immunity repressor n=2 Tax=unclassified Fromanvirus TaxID=2562661 RepID=A0A142K5H1_9CAUD\n--------------------MSRKIQTLDVVRPASRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETTRLHSRSKAFQSLRDHGEYMRQLSFRGFSDEKKRRLLSFWRRMWDQGTVLEFDPSIEPYPGMIGGGFRYVTREERDDDLLIRVNDFVRpevldddgtLDSKAELLWTFPPGIEDLIH--\n>UniRef90_UPI001FB7C25E/13-173 [subseq from] XRE family transcriptional regulator n=2 Tax=Gordonia amicalis TaxID=89053 RepID=UPI001FB7C25E\n---------------------------------------SKEVIEDLKRKGYNQTEIAKMFNVTRQAVSWHLKTYGGQMSTRQIVNEAWPWKTNHAHTKSVVYRRLRDHGEYMRTGG-KGMNDDKLKRLRRWYKKMWDENLVGEFEPGIPPIKGVSSvGDFAYRPRAIEDDDLLIRVNDHTNLTDEGETIWCWPPDIERLI---\n>UniRef90_A0A5J6T7A6/1-125 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Hutc2 TaxID=2652408 RepID=A0A5J6T7A6_9CAUD\n------------------------------------------------------------------------------MTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>UniRef90_A0A7I7M303/469-644 [subseq from] Helix-turn-helix domain-containing protein n=1 Tax=Mycolicibacterium psychrotolerans TaxID=216929 RepID=A0A7I7M303_9MYCO\n-------------------------------QANSRTPLVFGEIEELRRRGLNQSEIAAMHGVSRQAVSWQKKTYGGMLTPRQLVQKEWPWETTSLHGKSKAFQRLRDHGEFMVT-AGGGMSEDKLQRLKSWWRTLRRQDVVLEFDPSTPPHPGLSPyGGFAYMKRVVEDDDLLIRVNEFTRtddagrLSASAAAMWRWPDNIDDLLR--\n>UniRef90_UPI001F51750A/1-134 [subseq from] Repressor-like immunity protein n=2 Tax=Mycolicibacterium phlei TaxID=1771 RepID=UPI001F51750A\n-------------------------------------------------------------------MSWHKVVYNGFLTTRQLAQRAWPWETTNTHGKSSAYQRLRDHGEFMLSGGFTSMSENKQRLLKSWWRRLRDDDVVLEFDPAIEPYRGMGGGGFRYVPRTAADGDLLIRVNEHTTLTAEGERIWCWPADIESLLG--\n>UniRef90_UPI00141DFA7F/10-170 [subseq from] Repressor-like immunity protein n=1 Tax=Mycobacterium sp. DL592 TaxID=2675524 RepID=UPI00141DFA7F\n----------------------------------HRVSLSLSDIEDLRKKGYNQSEIADMSGVTKQAVSWHKVTYGGFLTPRQVVNKAWPWKTTDLHGRSKPYQYLRNHGEFMATGG-KGMSQEKLKRLESWWKKLRDENVVLEFDPNIPPVPGVAPyGGFAYRTRRASDGDLLIRVNEHTNLTDEGRRMWRFPHH--------\n>UniRef90_UPI001E3D0CA2/10-171 [subseq from] XRE family transcriptional regulator n=1 Tax=Rhodococcus sp. JT-3 TaxID=1973213 RepID=UPI001E3D0CA2\n-------------------------------------DLTKEVIESLKAKGFNQSEIAEMYNVSRQAVSWHMRTYGGEKSPRQIVNEVWPWKTTAGHDKATAYRRLREHGEFMQTGGG-GMSEDTLDRLKKWWKKLREENLVVEFDPNIAPIPGIASrGGFAYRKRTVGD-DLLIRVNEFTELTEEGEMIWRWPPDIESLI---\n>UniRef90_A0A402CN08/14-174 [subseq from] Phage repressor n=2 Tax=Rhodococcus TaxID=1827 RepID=A0A402CN08_RHOWR\n-------------------------------------DLTKAVIESLKAQGFNQSEIAEWYNVSRQAVSWHMRTYGGEKSPRQIVNEAWPWKTTAGHDKATAYRRLRDHGEFVQTGGG-GMSEDKLDRLKKWWKKLRKENLVVEFDPSIPPIPGIASrGGFAYRARTV-DDDMLIRVNEFTELTEEGEMIWRWPPDIDSL----\n>UniRef90_UPI00095D2540/263-420 [subseq from] hypothetical protein n=1 Tax=Mycolicibacterium mageritense TaxID=53462 RepID=UPI00095D2540\n-------------------------------------SLSKDEIEALKAQGYNQTQIAKMFGVSRQAVSWHLKTYGGRLSPRQVANECWPWDTTNAHGKAKSYQRLRDHGEFMLT-RGRGMSEDKLKRLRSWWRMLRDENVVLEFGPDIPPVPGVSpNGGFAYRERISDDGDLLIRVNRYTHLTEEGKMIWRWPPD--------\n>UniRef90_A0A1A0MJ54/4-171 [subseq from] Repressor n=2 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=A0A1A0MJ54_9MYCO\n---------------------------KAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETKGPHGKSAAYQRLRDHGEFIATGG-RDMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRNprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>UniRef90_A0A4R5WHD6/7-170 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=A0A4R5WHD6_9MYCO\n------------------------------KAAHSR-ALVFGEIEELRRKGFNQTEIANLHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETTSSHSKSVAYQRLRDHGQFIAAGA-REMSDFKRGRHAAWVKMMRENDFVLEFDPNIPPTPRIApGGGFAYRKRDPRLDgfELLIRVNEFTNLTPEGRRLWSYA----------\n>UniRef90_A0A7I7SIY5/99-259 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium sarraceniae TaxID=1534348 RepID=A0A7I7SIY5_9MYCO\n----------------------------------TRQPLVFGVIEDLRRRGYNQSEIADMHGVSRQAVSWHKMTYGGHLTTRQMVNKAWPWKTTNLHGKSKVYQRLRDHGEYIATGGS-GMNETKIKLLESWWRTLRDKNVVVEFDPNLPPEKGISpHGGFAYRERIPEDGDLIIRKNEFTNLSEEGAKIWRWPSD--------\n>UniRef90_UPI0021B636A3/8-171 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycolicibacterium llatzerense TaxID=280871 RepID=UPI0021B636A3\n-------------------------------TATNRQPLVFGEIEELRRKGFNQTEIADMHGVSRQAVSWHKTTYGGAKSTRQIVNKAWPWETTAQHGKASPFQRLRDHGEFIASGG-QEMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDPQTDgfDLLIRVNEFTTLTPEGRRIWSYA----------\n>UniRef90_A0A4R5WHC6/4-169 [subseq from] Immunity repressor n=2 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=A0A4R5WHC6_9MYCO\n---------------------------KAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWHKTTYGGQKSTRQIVNEAWPWETTHLHGKAAPYKRLRDHAEYMATD-GRGMSEDKLKRLRTFYRKLRNENLVVEFDPDLPPEPGVSpHGGFAYRQRMVQDGDLLIRVNDHTQITDDGREIWCFP----------\n>UniRef90_R4JF74/56-154 [subseq from] Repressor-like protein n=1 Tax=Mycobacterium phage Chy4 TaxID=1327947 RepID=R4JF74_9CAUD\n-----------------------------------------------------------------------------------------------------SGQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDLVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEHTNLTDEGEMIWCWPPDIEELL---\n>UniRef90_UPI001CFA160B/15-186 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycolicibacterium phocaicum TaxID=319706 RepID=UPI001CFA160B\n-------------------HMSGKPEK-----STHRQALVFSEIEELRRKGLNQTEIANMHGVSRQAVSWHKTTYGGAKSTRQIVNHAWPWKTTGLHAKAAAYQRLRDHGEFVA-SDGRGMSEYKLGRHAAWLKMMRRSDYVLEFDPNIPPTPGVApGGGFAYRKRDpqIDGNDLLIRVNEFTTLTPEGRRLWSYPS---------\n>UniRef90_A0A2Z5XCC3/1-148 [subseq from] Putative immunity repressor n=1 Tax=Mycobacterium phage GS4E TaxID=2072004 RepID=A0A2Z5XCC3_9CAUD\n--------------------------------------------------------------MTRQAVEWQVKTYGGRLNTRQQVKALWPFETRKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDQIIRVNEHVRpeildedgtLNARAESVWTMPPNVEELVS--\n>UniRef90_A0A222YZF6/6-163 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage MyraDee TaxID=2024303 RepID=A0A222YZF6_9CAUD\n-----------------------------------KQELSLAIIEDLKGKGYSQSEIAEMFGVTRQAVSWHKHTYGGRLTPREIVHQSFPWAVSTEQSQSSPYRRMRDHGEYVATGGV-GMSEDKLKRLRTFYRKLRDDNLVLEYDPSLPPEPGVSNkGGFAFRRRAPEDGDLLIRVNEHTHITEEGRIIWRFP----------\n>UniRef90_UPI00167FCB2D/433-597 [subseq from] hypothetical protein n=1 Tax=Gordonia hankookensis TaxID=589403 RepID=UPI00167FCB2D\n-------------------------------PSNCKGGLSKAVIEELKTKGYNQSQIAAMFGVTRQAVSWHLKTYDAQLSPRQIVNKSWPWQTTSGHGKSVPCRRLRDHGEYMAT-SGKGMSADALKRLRSWWRKLDDENLVVEFDPNLPPLAGLSpHGGFAYRVRRSHDADLLIRVNEHTRLTEEGARIWCWPIDF-------\n>UniRef90_UPI001F1A1330/1352-1515 [subseq from] AAA domain-containing protein n=1 Tax=Mycolicibacterium fortuitum TaxID=1766 RepID=UPI001F1A1330\n--------------------------------SISRQPLVFSVIEDLRRKGYNQSEIAKMHGVSRQAVSWQKKTYGGFDTPRQIVNKAWPWKTNNGHSKAVPYKKLRDHAEYVATGGL-GMDEDRVRRLKSWWTKMRDENLVVEFDPDLPPEPGISPyGGFAYRQRVEADGDLLVRVNEHTNLTDKGRTFWCFPLDL-------\n>UniRef90_G4I6N5/9-168 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium rhodesiae JS60 TaxID=931627 RepID=G4I6N5_MYCRH\n----------------------------------SYRPLDLSTIEAYRKAGLNQTEIAEMHGVSRQAVSWHKTTYGGLMSTRQIVDKAWPWETTRAQGASVAFQRLRDHGEYMATGG-RGMSESKIKRYKSWLNRMRENDWVVEFDPNIPPTPKVApNGGFAYRPRDPKIDgyHLLIRVNEFTNLTPEGKRIWRY-----------\n>UniRef90_A0A3T0UWT1/12-166 [subseq from] Immunity repressor n=4 Tax=Gordonia TaxID=2053 RepID=A0A3T0UWT1_9ACTN\n--------------------------------------LSKEVIEDLKSKGYNQTQIAEMYGVTRQAVSWPLKTYGGKKSTRQLINDYWPWETSKGHDKAIPYRRLRDHGEYMATFG-AGMNSDKLDRLRVWWRKLEREAVVVEFDPNIPPTKGIcAQGGFAYRQRDDSDGNLLIRVNEYTNLTDEGRKVWCRP----------\n>UniRef90_U0FMT9/11-166 [subseq from] Immunity repressor n=1 Tax=Rhodococcus sp. P27 TaxID=1384060 RepID=U0FMT9_9NOCA\n-------------------------------------KLSLAEVEDLKNKGYSQTEIAEMYGVTRQYVSWIKHTYGGRLTPKEQVLQHFPWDVPVHMGQSSPYRRLRDHGEYVATGGV-GMTEDKLKRLRTFYKRLRDGNLVVEFDPELPPERGVSSvGGFAFRNREPDDDDLLIRVNEYTHLTDEGKMIWRFP----------\n>UniRef90_A0A7I7ZK91/8-171 [subseq from] Helix-turn-helix DNA binding protein n=1 Tax=Mycolicibacterium phocaicum TaxID=319706 RepID=A0A7I7ZK91_9MYCO\n-------------------------------TATHRKALIFSQIEELRRRGLNQTEIADMHGVSRQAVSQQKIKYGGVKTTRQIVNEAWPWTTTGLHGKSAAYQRLRDHGEFIVS-GGREMSEYKLGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDPQTDgfNLLIRVNEFTTLTPEGRRLWSYA----------\n>UniRef90_A0A391PIY4/8-136 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium sp. NCC-Tsukiji TaxID=2185272 RepID=A0A391PIY4_9MYCO\n-------------------------------TATRRQPLVFGEIEELRRKGFNQTEIADIHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETKGPHGKSAAYQRLRDHGEFIATGG-RDMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVAPtGGF-------------------------------------------\n>UniRef90_A0A481VS54/21-176 [subseq from] Immunity repressor n=9 Tax=Fromanvirus TaxID=186764 RepID=A0A481VS54_9CAUD\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>UniRef90_UPI00200AF64C/14-168 [subseq from] XRE family transcriptional regulator n=1 Tax=Gordonia terrae TaxID=2055 RepID=UPI00200AF64C\n----------------------------------------KEVIEALKLRGHNQSQIAEMFGVTRQAVSWHLKTYGGTRSTRQVLNDHWPWETSSEHCGAIPYRRLRDHAECVVTGG-REMSMDKLKRLQAWWRKMQDEDLVVEFDPGLEPVQRVStSGGFAYRQRASVDGELLIRVNGFTRLTDEGKTLWARPDA--------\n>UniRef90_A0A164HVN2/8-164 [subseq from] Repressor n=1 Tax=Nocardia terpenica TaxID=455432 RepID=A0A164HVN2_9NOCA\n------------------------------------DKLTLSIIEDLTGKGLNQTEIADMYGVTRQYVSWVKKTYGGKQTPREIALKNFPWILTTQQGQMAPARNLRNHAEFMATGG-RGMTADKLTKLRNFYKKLREQNVVVEFDPSLPPEPGVSSvGGFAYRPREASDGDLLIRVNEHTQMNEEGKIIWRFP----------\n>UniRef90_UPI000993C045/10-164 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Mycobacteroides salmoniphilum TaxID=404941 RepID=UPI000993C045\n--------------------------------------LSLATIEDLKGKGWSQTKIAEEYGVTRQYISWIKHTYGGRLTPKEIVLQNFPWKVPTSMCQASPYRRMRDHGEFMATGG-EGMSEVKLKRLRSFYQKLRDEDVVIEFDPDIPPTPGIASqGGFAYRKRKAKDGDLMIRVNEYANVTEEGRMIWRIP----------\n>UniRef90_A0A7R7MYT3/5-161 [subseq from] HTH cro/C1-type domain-containing protein n=1 Tax=Mycobacterium intracellulare TaxID=1767 RepID=A0A7R7MYT3_MYCIT\n------------------------------------NKLTLAIIEALKSKGLNQSEIAERFGVTRQYVSWIKHTYGGRLTPREQIMQEWPFQVPVRMGNTGPFKRLRDHGEFVATNGI-GMSHDKLSRLRGWYRKLRDENLVVEFDPSIPPIEGVSPvGGWAYRKRRKSDGDLLIRVNKHTRLTEKGRMIWRLP----------\n>UniRef90_UPI001E48B862/11-167 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycobacterium sp. IS-836 TaxID=1834160 RepID=UPI001E48B862\n--------------------------------------LTPAIIDDLKRKGFNQSQIGQMYGVTRQHVSWVKRTYGGQLTPREQIMREWPFKVPVAMGNTSPFKRLRDHGEYIATNGV-GMSADKVQRLRSFYRKLRDEHLVLEFDPCIPPIPGVSSrGGWAYRPRIKEDGDLLIRVNEHTTLTDAGRRIWRLPSD--------\n>UniRef90_UPI000925B5E9/14-173 [subseq from] hypothetical protein n=3 Tax=Mycobacteroides abscessus TaxID=36809 RepID=UPI000925B5E9\n---------------------------------PNSKKLSLAIIEDLKGKGWSQSRIAKEYGVTRQYISWIKHKYGGRLTPKEIVLQNFPWKVPTEMCKASPYRRLRDHAEFLATGG-EGMAEIKLKRLRYFYQKLRDEDLVVEFDPSIPPEPGIAGqGGFAYRKKEPRDGDLMIRVNEHTNMTEEGRMIWRIP----------\n>UniRef90_A0A7I7R937/5-161 [subseq from] HTH cro/C1-type domain-containing protein n=1 Tax=Mycolicibacter minnesotensis TaxID=1118379 RepID=A0A7I7R937_9MYCO\n-------------------------------------QLSLSIIEDLKGKGFNQSQIAEMFGKSRQAVSWHKTRYGGHRTPREIVMDAWPFDVPRAMGQTHPFRRLRDHAEYMVTGG-KGMPTDKLKRLRSFYKRME-N-EVLEFDPNIGPIDGVSRyGGWAYRTRRASDADLLIRVNEYTNLTEEARMIWRFPPEI-------\n>UniRef90_R9RW75/9-165 [subseq from] Immunity repressor n=67 Tax=Microwolfvirus TaxID=2942894 RepID=R9RW75_9CAUD\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>UniRef90_U5P4E6/21-176 [subseq from] Repressor n=1 Tax=Mycobacterium phage Fredward TaxID=1354510 RepID=U5P4E6_9CAUD\n-------------------------------------KLSLSIVEDLKGKGYTQSEIAEMYGVTRQYVSWIKHQYGGRRTPKEMVMDHFPWKVPSVQSHASPYRRLRDHGEYIATGGV-GMDEEKLKRLRSFYRKLKDDNVVVEYDPSLPPEKGVStKGGWAFRQRLPGDGDLIIRVNEHTNLTEEGRMIWRLP----------\n>UniRef90_A0A2R4AQT1/9-168 [subseq from] Immunity repressor n=2 Tax=Fionnbharthvirus TaxID=2948708 RepID=A0A2R4AQT1_9CAUD\n-----------------------------------RPGLSVGVIDALKQQGLNQSDIARLFGVSRQAVSWHKQTYNGRLTPReQVLREHWPFDCIYGQGEASPARRLRDHAEWFVVGEDG-ITADNMRRLRSFWKRLRDKGLVVEYDPALPPTPGLSKlGGWAYRPREPRDGDLMIRVNEHTRLTAEGRRIFRLPD---------\n>UniRef90_A0A1A2WNQ1/17-172 [subseq from] Repressor n=2 Tax=Mycobacterium sp. E2327 TaxID=1834132 RepID=A0A1A2WNQ1_9MYCO\n-------------------------------------RLTLAIVEALKTKGLSQSEIARQYGVTRQYVSWIKHTYGGRLTPREQSMQHFPFKVPTDMGQASPFRRLRDHGEYVATGGL-GMSEDKLQRLRSFYRMLRENNVVVEFDPNVPPIPGISNkGGWAYRERLPEDADLLIRVNEFTDITDEGRTIWRFP----------\n>UniRef90_W0LNF7/6-166 [subseq from] Immunity repressor n=103 Tax=Caudoviricetes TaxID=2731619 RepID=W0LNF7_9CAUD\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>UniRef90_UPI001BDB0D6E/2-162 [subseq from] XRE family transcriptional regulator n=1 Tax=Williamsia sp. CHRR-6 TaxID=2835871 RepID=UPI001BDB0D6E\n---------------------------------PAKPIMSLSDVESLKEQGWSQSDIARHYGVTRQYISWIKRHYGGKLSPREMVNQHFPFVVSTEQGQCTQFKRLRDHGEYVATDGI-GMSENKLSRLRSFYQMLRDKHLVIEFDPNIPPAKGFGkHGGWAYRPRVESDADLLIRVNEYTNLTEAGRMIWRFPP---------\n>UniRef90_A0A5J6THH9/15-170 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Anthony TaxID=2599857 RepID=A0A5J6THH9_9CAUD\n-------------------------------------KLTLSIIEALKNKGLNGAEIAEMYGVTKQYVSWIKHTYGGRLTPREQVMQHFPFKVPEQMGQSSPYRRLRDHGEYVATGGV-GMDQIALTRLRNFYKKLREKSLVVEFDPNLPPEKGVSSkGGWAYRERTNDDDDLLIRVNEFTELSEEGRMIWRFP----------\n>UniRef90_A0A649VSC2/8-135 [subseq from] Immunity repressor n=2 Tax=Gladiatorvirus TaxID=2948726 RepID=A0A649VSC2_9CAUD\n---------------------------------KTRSPLIFSVIEDLRRKGYNQSEIAEMHGVTRQAVSWHKKTYGGQLTPRQIVNAAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLQSFWAKLRDEDVVSSTRTSRRTQAWLAADSGMY-----------------------------------------\n>UniRef90_A0A2R4A210/5-164 [subseq from] Sigma70_r4 domain-containing protein n=21 Tax=Veracruzvirus TaxID=2948946 RepID=A0A2R4A210_9CAUD\n--------------------------------GTKKPELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>UniRef90_G1DB89/12-164 [subseq from] Immunity repressor n=2 Tax=Timshelvirus TaxID=2948926 RepID=G1DB89_9CAUD\n--------------------------------------LSLAIVEDLKGKGFSQSEIARKYGVTRQYISWIKHYYGGRLTPREVVMQHFPFQVPTEMGQTSPYRRLRDHGEYMATGGV-GMDKVTLGRLRGFYKKLQD--QVLEFDPNIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDYTDLTEQGRMIWRFP----------\n>UniRef90_UPI000A981E44/12-164 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Mycolicibacterium komanii TaxID=1566885 RepID=UPI000A981E44\n--------------------------------------LSLAIIEDLKRKGYTQSDIARMYGVSRQYISWIKHYYGGRLTPREQVLQHFPFQVPTKMGQTSPYRRLREHGEYMATGGV-GMDKVALGRLRGFYKKLQD--KVLEFDPTIPPIPGVSSqGGWRYVPRLPTDHDLLIRVNEYTQLTQEGRMIWRFP----------\n>UniRef90_A0A482JFG9/3-162 [subseq from] Immunity repressor n=16 Tax=Caudoviricetes TaxID=2731619 RepID=A0A482JFG9_9CAUD\n-------------------------------PKPDK-ELTLAVVEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQKGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRHH--VLEFDPNIPPEPGVSkHGGWAYRPRRPEDGELLIRVNEYTDLSEEGRMIWRFP----------\n>UniRef90_R4JMQ7/9-164 [subseq from] Immunity repressor n=10 Tax=Fromanvirus TaxID=186764 RepID=R4JMQ7_9CAUD\n-----------------------------------RPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDDDLLIRVNEYTDLTERGAMIWRFP----------\n>UniRef90_A0A1A2H967/17-172 [subseq from] Repressor n=2 Tax=Mycobacterium sp. E3198 TaxID=1834143 RepID=A0A1A2H967_9MYCO\n-------------------------------------RLTLAIVEALKNRGLSQSEIARQYGVTRQHVSWIKHTYGGRLTPRESVLQRFPFRVPVKMGNTSPFKRLRDHGEYVVTGGV-GMSEDKLQRLRSFYRKLRENDLVVEFNPNIPPIPGVSSrGGWAFRERTKDDEDLLIRVNEYTHIADELRDIWRFP----------\n>UniRef90_UPI000A70FE05/5-165 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycolicibacterium houstonense TaxID=146021 RepID=UPI000A70FE05\n-----------------------------------ELTLTLSVIEALKSQGYTEAEIARMFGVSRQAVSWHVHNYGGSMTPRQLVLKHFPFKVPSELTRCSIYQRLRDHGEWFAAGHKAALSADRLQRLTWFYDKLRRNNWVIEYDPNIPPIEGVSKcGGWAYRERTPADEDYLVRVNEYTTLTEYGQEIWRFPDE--------\n>UniRef90_A0A1X1UKB8/17-173 [subseq from] Repressor n=2 Tax=Mycobacterium fragae TaxID=1260918 RepID=A0A1X1UKB8_9MYCO\n------------------------------------ERLTPAIVEALKNKGLSQSDIAKQYGVTRQYVSWIKHTYGGRLTPRELALRHFPFKVPVEMGNTSPFKRLRDHGEYVATGGV-GMSDDKLQRLRSFYRKLREDNLVVEFDPSIPPIPGVSNkGGWAYRERLPEDGDLLIRVNEFTNITDRGRNIWRFP----------\n>UniRef90_UPI0015CDE20C/12-124 [subseq from] hypothetical protein n=1 Tax=Rhodococcus sp. ACPA1 TaxID=2028572 RepID=UPI0015CDE20C\n-----------------------------------SVDLTKAVIESLKAQGFNQSEIAELYNVSRQAVSWHMRTYGGEKSPRQIVNEAWPWKTVAGHDKATAYRRLRDHGEFMQTGGG-GMSEDKLDRLKKWWKKLRKENLVVEFDPSP------------------------------------------------------\n>UniRef90_R4JGC8/12-164 [subseq from] Immunity repressor n=2 Tax=Caudoviricetes TaxID=2731619 RepID=R4JGC8_9CAUD\n--------------------------------------LSLAIVEDLKGKGYTQSEIARKYGVTRQYISWIKHYYGGRLTPREVVMQHFPFQVPTEMGQTSPYRRLRDHGEYVATGGV-GMDKVTLGRLRGFYNKLQD--QVLEFDPNIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDFTDLTEQGRMIWRLP----------\n>UniRef90_UPI000A92BC90/17-144 [subseq from] hypothetical protein n=2 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=UPI000A92BC90\n-----------------------------------------------------------------IALSWHKTTYGGQKSTRQIVNEAWPWETTHLHGKAAPYKRLRDHAEYMATD-GRGMSEDKLKRLRTFYRKLRNENLVVEFDPDLPPEPGVSpHGGFAYRQRMVQDGDLLIRVNDHTQITDDGREIWCFP----------\n>UniRef90_A0A0A0RKI8/19-174 [subseq from] Immunity repressor n=99 Tax=Viruses TaxID=10239 RepID=A0A0A0RKI8_9CAUD\n--------------------------------------LSLEVIEALKAAGETETDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>UniRef90_A0A249XU35/12-164 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Kimona TaxID=2024295 RepID=A0A249XU35_9CAUD\n--------------------------------------LTLSIIEDLKSKGYTQSEIARKYDVSRQYVSWIKHYYGGRMTPREQMMEHFPFQVPTKMGQTSPYRRLRDHGEYMATGGV-GMDKVALGRLRGFYNKLRD--QVLEFDPNIPPIPGVSSqGGWRYVPRTPEDGDLLIRVNEYTDLTDKGRMIWRFP----------\n>UniRef90_B5U4N6/28-186 [subseq from] Immunity repressor n=113 Tax=Caudoviricetes TaxID=2731619 RepID=B5U4N6_9CAUD\n------------------------------------LPrLSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>UniRef90_A0A2Z5XVJ0/12-164 [subseq from] Putative immunity repressor n=1 Tax=Mycobacterium phage PP TaxID=2077134 RepID=A0A2Z5XVJ0_9CAUD\n--------------------------------------LTLAIIEDLKGKGYTQSEIARKYDVTRQYVSWIKHYYGGRLTPREQVLQHFPFQVPSKMGQTSPYRRLREHGEYMATGGV-GMDKVTLGRLRGFYAKLRD--QVPEFDPTIPPIPGVSSqGGWRYVPRTPEDGDLLIRVNEYTDLTERGRMIWRFP----------\n>UniRef90_UPI001894BA93/2-162 [subseq from] XRE family transcriptional regulator n=1 Tax=Nocardia cyriacigeorgica TaxID=135487 RepID=UPI001894BA93\n---------------------------------PKKPYVTLSQIEDLKRQGLTQSEIGDMFNLTRQAISWIKCTYGGSLTPREQMRGKFPWAITGGFKRAAPSHRLRDHAEYMATGG-KGMPEYKLKLLRGFYKRLRDNNLVVEYDPTIPPSRGIKPGGWAFRERVPTDGDLIVRLNEYSILSDEDKWIWEFPPE--------\n>UniRef90_A0A6G9YTE9/7-164 [subseq from] XRE family transcriptional regulator n=1 Tax=Nocardia arthritidis TaxID=228602 RepID=A0A6G9YTE9_9NOCA\n--------------------------------------LSFAEIEDLHNKGLTYTQIAKIKGVTKQAVSKVVRLHGGSQTPRQTVGQHFPWKEVPRHFrESSPYKRMRDHGEWMATGG-KGMQGYKLDRLRWWHRYLRENNVVLEFDPEIPAIDGVSpGGGFAYRPRQEEDGDLLIRVNGYTQMSPESYTIWVLPDP--------\n>UniRef90_A0A1A3GW86/9-165 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=A0A1A3GW86_9MYCO\n--------------------------------------LSLVAIEDFKRKGYSQTEIAEMYGVTRQAISWWVKTYGGRKTPRQEVLEAWPLTVEAPMTQTAVYRNLRNHAEYVITGGIGMKPAD-LKRLEAFYRFIADNDYIVEFDPTLVPPESMTNkGGWAWRKRRKSDGDLLIRENKYITATTEdWKDIWLLPE---------\n>UniRef90_A0A100XHH6/10-164 [subseq from] Immunity repressor n=1 Tax=Mycolicibacterium thermoresistibile TaxID=1797 RepID=A0A100XHH6_MYCTH\n-------------------------------------PLTPAIVEDLKGKGYSQSEIARRYGVTRQYISWIKYNYDGRLTpTEQLLQQHFPFQVPTEMGQTSPYRRLRDHGRYVATWGV-GMDNGTLGRLRGFYRKLQD--QVLEFDPNIPPIPGVSSkGGWRYVPRTADDGDLMIRVNDYTELTDEGRRVWRLP----------\n>UniRef90_G9FHP2/13-168 [subseq from] Repressor n=1 Tax=Rerduovirus RGL3 TaxID=1109716 RepID=G9FHP2_9CAUD\n-------------------------------------KLTLAIVEALKNKGRTQSDIAREYGVTRQHVSWIVKTYGGTQTPRQKLLEHFPWEVPSKQLASSPYRNMRNHAEYMATGGVG-MGAPELKRLRNFYQKLQDENLVLEFDPNIPGEPGFAiNGGFALRPREESDGDLMIRVNEYTKLSDEGKRLWRFP----------\n>UniRef90_A0A1A3M6T4/18-175 [subseq from] Repressor n=1 Tax=Mycolicibacterium fortuitum TaxID=1766 RepID=A0A1A3M6T4_MYCFO\n-----------------------------------KERLTLAIVEALKNQGLSGADIARRYGVTRQYVSWIKHTYGGQLTEREKVLREFPFKVPEKQGQASPYRRLRDHAQFISTGGA-DMTPDQLQRLRSFYRKLRAGNLVVEFDPNIPPIPGVSSkGGWAYRHRSPDDDELLIRVNEFTNLTEKGCEIWCFP----------\n>UniRef90_G1BRH1/15-155 [subseq from] Repressor n=1 Tax=Mycobacterium phage Rockstar TaxID=1034144 RepID=G1BRH1_9CAUD\n---------------------------------------------------ATQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>UniRef90_A0A345KV65/14-164 [subseq from] Helix-turn-helix DNA binding domain protein n=1 Tax=Mycobacterium phage Aminay TaxID=2250291 RepID=A0A345KV65_9CAUD\n--------------------------------------LSLPAIEDLKRAGLNQSEIARLYGVTRQAVSLWVRKYNGTQTARQLALQAWPWKVPTPQNQQTPYRSMRDHAEWWATGGEMNN-SDGLARLRAFHRRLVH--EVVEFDPELPPVDGLKYGGFRWLPRERGDAGLFFRVNVHTRLTDEAARIWSL-----------\n>UniRef90_F1BCL8/1-136 [subseq from] Gp74 n=1 Tax=Microwolfvirus wonder TaxID=927988 RepID=F1BCL8_9CAUD\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKESPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>UniRef90_A0A291RT21/8-167 [subseq from] Immunity repressor n=1 Tax=Nocardia terpenica TaxID=455432 RepID=A0A291RT21_9NOCA\n-------------------------------------ALTIEIVEQLKGEGMSQAEIARLYGVTRQAITDVKRRSGGYSTTpREDALKHFPWKVpgsrAVPMAMQKPYRNMRDHAEYMV-TNGEGMSAEKLKRLRGFYRKLHSENVVLEFDPNIPPSPGIGIGGFAYRARTPEDGDLIIRVNEHTTLTEEGRRIWTFP----------\n>UniRef90_UPI001186FC13/18-169 [subseq from] XRE family transcriptional regulator n=1 Tax=Actinopolyspora erythraea TaxID=414996 RepID=UPI001186FC13\n----------------------------------------LNSINPKTGKYYTQVEIADIYGVSKQYIYQKRKTGRYTPSPREVVKQNFPWSVKPEFHNAYIHKRIRDHGEYMASGGK-RMSEDKLKKLKGFYERIG-KDFVVEYDPNIPPSEYMKLGGFAYRERELKDGDLIIRVNEYTTLTNEGKKLWRMPP---------\n>UniRef90_UPI000CEA6F39/10-165 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Nocardia nova TaxID=37330 RepID=UPI000CEA6F39\n--------------------------------------ISIGEIEAYKNKGWSQSDIARAYGVTRQYISWIKHRYNGTLSPREQIMQHWMITVPHRMTQASPYQRLRDHGEYRATGG-EGMTDNQLNRLRGFYSKLRNNNTIVEFDPELPPEHGVStSGGWAYRPRSEEDGQLLLRENAHTSFTDAARSIWSFPP---------\n>UniRef90_A0A899IUI3/9-163 [subseq from] Immunity repressor n=4 Tax=root TaxID=1 RepID=A0A899IUI3_9CAUD\n--------------------------------------LTIGIIRQLKNEGYNHSQIAEMFGVTRQAVSYLWRKYDGTPTIRQRVAEALPFAVPEKFNRAQPLALLRDHAEHMMQGSDR-FTERRRSKLRSFYKKLRDENLVVEYDPEIPSDPGVCkPGGFAYRPREPRDKGLMIRVNEHTHITEYGEQIWKFP----------\n>UniRef90_UPI0008359707/9-164 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Nocardia caishijiensis TaxID=184756 RepID=UPI0008359707\n-------------------------------------KLSLAIVEALKNKGLSQSEIARQFNVTRQYVSWIKHTYGGRLTpTEKLLREHFPWKCPVVFSQAAPYQRLRNHGEFVATGG-NGMAEYKLDRLRGFYGRLREG-FVVEFDPDLPPERRVSNkGGWAYRERLPEDGDLLIRVNEHTNLTEEGARIWRLP----------\n>UniRef90_A0A1I4X6C9/22-173 [subseq from] Immunity repressor n=1 Tax=Saccharopolyspora antimicrobica TaxID=455193 RepID=A0A1I4X6C9_9PSEU\n--------------------------------------------NPKTGKKYTQNEIAAIAGVSRQRISQIKLASGNYsKTPRERVLEHYPWKTGAKFQPASPNRRLRDHAEYMATGGA-GMSDDKLARLLGFYRFLEEGDLVIEFDPGIPPAEGVSStGGFAYRSRKPSDGNLMIRVNEHTELTPEGVDLWVIPDK--------\n>UniRef90_UPI0005B7A52D/7-165 [subseq from] helix-turn-helix transcriptional regulator n=1 Tax=Nocardia vulneris TaxID=1141657 RepID=UPI0005B7A52D\n--------------------------------------LSLAEIEPLMRQGMTQKQIAEIMGVSRQAVSKFIGEHGEHlLTPRQVVAKHFPWRVPNHLLQVSPYKRMRDHGEWFETNG-EGMSPEKLQRLRWWYRYIRNENVVLEFDPDIAPEPGVSNkGGFAYRPRVASDGKLLFRVNRHTkEMTPEMHTIWELPEP--------\n>UniRef90_A0A7G8LF38/3-96 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage PainterBoy TaxID=2762425 RepID=A0A7G8LF38_9CAUD\n----------------------GKTQQS----GSFRAPLIFSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNLHGKSVPFQRLRDHGEFMATGERRH-----------------------------------------------------------------------------------\n>UniRef90_UPI00092A4161/22-181 [subseq from] helix-turn-helix domain containing protein n=4 Tax=Mycobacteroides abscessus TaxID=36809 RepID=UPI00092A4161\n--------------------------------------LDIDTIRQLKNQGWNQSEIAEFYGVTRQAVSYIWRKYGGELSLRQRVIQAMPYEpgSTGPFSKAAPMASLRDHAEFMMTGTTDRWAVKRINRLRGFYNKLRSNNWVVEYDPNIPSEPGVSkPGGFAYRPREPRDGNLLIRVNEYTNPTEyEGKNIWQFPP---------\n>UniRef90_UPI001E4A5752/2-144 [subseq from] hypothetical protein n=2 Tax=Mycobacteroides chelonae TaxID=1774 RepID=UPI001E4A5752\n----------------------------------------------------NFAEIAREFGVTRQAVSYLWRKYDGSQTTRQKVAAELPFNVPDQFNRAAPLQRLRDHAEFMMTLDDPQLREDQRKRLRSFYKKLRDDNVVVEYDPNIPSDPGVCkTGGFAYRPREPRDGDLLIRENEYTNLTEYGEnELWRFP----------\n>UniRef90_A0A370HYW3/11-163 [subseq from] Immunity repressor n=1 Tax=Nocardia pseudobrasiliensis TaxID=45979 RepID=A0A370HYW3_9NOCA\n---------------------------------------TEDVVQELLAQGLSKAEIGRLFGVSRQAVLQ--KAPREFIGPARIVEDSYPWAVDRELTRAVPYTRSREHAKYMALGR-GALSDDQAKRLRSWYRLLRNMNVVVEYDPEIPALEGIStNGGWRYVARTPEDGELIVRVNEYTRMTVEGRSIWVFPP---------\n>UniRef90_B3VG44/11-130 [subseq from] Immunity repressor n=1 Tax=Fromanvirus KBG TaxID=540066 RepID=B3VG44_9CAUD\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKRG--------------------------------------------\n>UniRef90_A0A1C9M2K6/67-188 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Bigfoot TaxID=1897425 RepID=A0A1C9M2K6_9CAUD\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKRG--------------------------------------------\n>UniRef90_A0A511MJW3/26-179 [subseq from] Immunity repressor n=2 Tax=Nocardia ninae TaxID=356145 RepID=A0A511MJW3_9NOCA\n-------------------------------------------VQALVDKGEGFAAIARRFGYTRQYVQQFAARNGISLpkTPRRMVGEEFPWKVPSAMQRTPPYRRMRDHGEFMATGG-EGMSDEKKSRLRSWYAMLRKYNYVLEFDPKLPPTVGVSpAGGFAYRPREERDGkKLLIRLNEHTRLTSDGKKIWVFPP---------\n>UniRef90_UPI001C45D007/13-166 [subseq from] XRE family transcriptional regulator n=1 Tax=Nocardia iowensis TaxID=204891 RepID=UPI001C45D007\n-------------------------------------------VKALVDEGVGFAEIARRCGKSRQYVQQFAARHGIALpkTPRRMVGEEFPWKVPSAMQRTPPYRRMRDHGEFMATGG-EGMSAEKKSRLRSWYDMLRKYEVVLEFDPELPPTPGVSpAGGFAYRPREQRDGaKLLIRLNEHTRLTSNGKKIWVFPP---------\n>UniRef90_A0A2U8UQU0/1-75 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Priamo TaxID=2182403 RepID=A0A2U8UQU0_9CAUD\n------------------------------------------------------------------------------------------------------------------------MNETKLKLLQSFWAKLRDEDVVVEFDPNIAPYPGMAGGGFRYVPREISDDCLLIRVNEYTNLTANGKRIWVWPPD--------\n>UniRef90_A0A023W7S6/6-133 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Phantastic TaxID=1486426 RepID=A0A023W7S6_9CAUD\n-------------------------------PSGKKSELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSRQGGL------------------------------------------\n>UniRef90_A0A0H5PB77/7-165 [subseq from] Immunity repressor n=1 Tax=Nocardia farcinica TaxID=37329 RepID=A0A0H5PB77_NOCFR\n--------------------------------------LSLDEVEALLRAGFTQQEIADIKGVTRAAVSVALKRHGMTArepGPRELGNKDFPFEVPVIFQ-QDPYQRLRDHGEYMFT-KGKGMSEARIKRLRTFYRKLIENNWVVEYDPNLPPVEGVSSkGGWAYRPREEKDGNLIIRVNEYTTLTDYARTVYVLPDV--------\n>UniRef90_A0A6G9Y3Z8/14-163 [subseq from] XRE family transcriptional regulator n=2 Tax=Nocardia brasiliensis TaxID=37326 RepID=A0A6G9Y3Z8_NOCBR\n---------------------------------------------ALVEAGESWAEIATRFDTSRQNVQQFAKRHGIEplKTPRREVAEHFPWKVPSDQQAAMPYQRLRDHGEYIASGGV-GMSERKLKGLRSWYEMLRKYNYVLEFDPHQPPIYGVSkYGGFVYRERQESDGNLLIRLNSHTRLTSRGKLIWVFP----------\n>UniRef90_A0A542DNK3/2-143 [subseq from] Sigma70_r4 domain-containing protein n=2 Tax=Amycolatopsis cihanbeyliensis TaxID=1128664 RepID=A0A542DNK3_AMYCI\n-----------------------------------------------ERKGLNQREIAEATGLTEARVSQIKKSIENRHkKPREEARENFPFPRiQEKFSRNSVYHRLADHMEYVATGG-KDMSEHKLKALLGFYKRLDEHNVVVEFDPNNPPMPGIKYGGFAYVPREERDGDLIVRINEHTKITDRSNV---------------\n>UniRef90_UPI001F236B43/2-145 [subseq from] hypothetical protein n=1 Tax=Amycolatopsis orientalis TaxID=31958 RepID=UPI001F236B43\n----------------------------------------------------TQAEIARMYGTTRAAVSYHLRKKPGPAypkRTADNLAERMPWPEASGKvKRTPEWRKLLNHLEYVETGG-RGMSDDKLARLAGFYRELEEFNVVVEFDPSIPPRPGSAGGGWAFVPRTEKDGDLIIRVNEHTQMTPRDYTVWKMP----------\n>UniRef90_UPI0014045524/20-180 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Actinocrispum wychmicini TaxID=1213861 RepID=UPI0014045524\n--------------------------------RPRKTDLTSEIVGKLLAEGLTQTQIAIEHNISKQTVSALAKDAPNRVkTPRQAVQENFPWPDMASqFKETSHYRQVVLHGEYIATGG-EGMSRDKLARVVSFYKRLRDDNVVIVFDPEIPPSSNKAG-GWGYLPREEGDADLILRVNRYTVMTDEGREIWRMP----------\n>UniRef90_UPI00195E552F/27-186 [subseq from] hypothetical protein n=1 Tax=Actinokineospora baliensis TaxID=547056 RepID=UPI00195E552F\n-----------------------------------RSGLTAALVDQLMKQGLTIEAIAAQYGVSKSAVSWHRNNGGQFRKPREKAMEYFPWKTMDPRFKVAAhYKRVTEHLLFAVCG-VDQLSDNQLDRLNSFHESLRDNRIVVEFDPAFPAKPGLASGGWDYVRREPADADLVIRVNEHTTVTDEDRGLWRLPQE--------\n>UniRef90_A0A1W9ZCA7/5-131 [subseq from] Lipocalin-like domain-containing protein n=1 Tax=Mycobacterium angelicum TaxID=470074 RepID=A0A1W9ZCA7_MYCAN\n---------------------------------------------------------------TPQFAKWLQQTYGGGSTPRDIVIRNWPFQIPDTSCPAPLYLRLLDHGEYVATGG-RGMSNDTLRDLTKFYQTLRDERAVVEYDPKNGVSE---SGGLSLVPREQKDGDLIIRVNEHTQLTDEGEMIWRFPP---------\n>UniRef90_UPI000DF9A0B1/8-173 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Nocardia farcinica TaxID=37329 RepID=UPI000DF9A0B1\n------------------------------TRSRKRQPIAPADVAAMKRGGMKPSAIAKELGVSRQRIYQILEALNdeSLLTPREyVLRKHFPWKISEQFSHAAPVLLIRDHGEYMATGG-KGMPERKLKALRGFYRRLRESNTVVVFDPSIPPIiDVSAPGGFDYVPRTEEDGDLLIRVNEYTNLTDEGKRIWRFP----------\n>UniRef90_A0A8J3CAV7/24-181 [subseq from] Immunity repressor n=1 Tax=Longimycelium tulufanense TaxID=907463 RepID=A0A8J3CAV7_9PSEU\n----------------------------------------------LIEAGVKQMDIAKWWGISKQRVSQLKQlaTRGKALTPREQVQEHFPYPGLPGRYHNSLYKRLRDHGEFVATGG-EGMTADKLQRLRSFYLKLRASRTVIVFDPSIPAKKGIStAGGWDLVPRTPEDKDSLIRWNKHTKRTPEGQMIYRFPPELPELLGE-\n>UniRef90_G1EDR9/29-173 [subseq from] Immunity repressor n=9 Tax=Caudoviricetes TaxID=2731619 RepID=G1EDR9_9CAUD\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>UniRef90_UPI001689CBA9/25-172 [subseq from] XRE family transcriptional regulator n=1 Tax=Saccharopolyspora pogona TaxID=333966 RepID=UPI001689CBA9\n-----------------------------------------------TGKHYNGNEIAEIYGTTRQNISyiWR-KEENRPKTARERVMEHYPWKQGARFHTNWLNLKMRDHAEFMATD-GKGMSEVKLQELLWFYQQLERENAVVEFDPNIPPSRPDGVGGFALRPRKPSDGDLIIRVNKYTNLTPEGMDLWIFPEE--------\n>UniRef90_A0A419HTJ9/9-167 [subseq from] XRE family transcriptional regulator n=1 Tax=Pseudonocardiaceae bacterium YIM PH 21723 TaxID=2340915 RepID=A0A419HTJ9_9PSEU\n---------------------------------------TAELIHELNtKENLTLTEIGARYGISPQAVSKIK-SKGKLKTPREVAMENFPWPGMDPKFKrSVPYQRITDHLEYVVTGG-TGMSKAKLTELRRWYKQFGKYNHVLVYDPTIPPRQGMQSGGWGLEPRVESDADLLIRENEYTTLSDAGREIWRIPDRFPE-----\n>UniRef90_UPI00131B6BCB/6-152 [subseq from] hypothetical protein n=1 Tax=Amycolatopsis anabasis TaxID=1840409 RepID=UPI00131B6BCB\n-----------------------------------------------INQGLSPTEAAKALGESKQLINYHLSKANYKSP-VRVAQENIPWKDISPeHKHTEPFNRVLNHLEYVATGG-RRMSKTKRQRLRQWYDRLKRFEVVLVHDPNIPPSPGMKAGGWDYVPRLPEDDDLIIRVNKYATMSDEAYELFRLPDE--------\n>UniRef90_UPI001E30C22B/9-163 [subseq from] hypothetical protein n=1 Tax=Nocardia acididurans TaxID=2802282 RepID=UPI001E30C22B\n--------------------------------------FTRESVAALLEQGLTKAEIGRLFGVSRQAVL-HKSP-ARYIRPTYAVEATYPWRVETRFQSAPPYARTRGHAKVMAHG-WKSLSAVQKSRLESWYTFLKNLNVVVEYDPEQPPLKGIAStGGWRYVPRTKADGELIIRINEHTLLTDGALRSWVFPRD--------\n>UniRef90_UPI001BB2F4C1/7-70 [subseq from] hypothetical protein n=1 Tax=unclassified Mycolicibacterium TaxID=2636767 RepID=UPI001BB2F4C1\n------------------------------KTATHRQPLVFGEIEELRRKGFNQTEIADFHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETK-------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A8J3C702/7-165 [subseq from] Immunity repressor n=1 Tax=Longimycelium tulufanense TaxID=907463 RepID=A0A8J3C702_9PSEU\n------------------------------------SGLTPEKVAACMLRGDTQAKIARDHGVSPQYVSQLKQQVGDRLKTpREEALEHFPWRPVpRRFKNSHPLRMLRDHFEYMATGG-RDFSDRRLRELASFYNYLEREDVVVEYDPEIPPHEVDSVGGFAYRRRQGSDGDLLIRVNEYTNLTERGRRLLKFPK---------\n>UniRef90_A0A3G6IUH0/35-193 [subseq from] HTH_7 domain-containing protein n=3 Tax=Corynebacterium TaxID=1716 RepID=A0A3G6IUH0_9CORY\n--------------------------------------LTKEIVAELLAKGMSQTAIAKEYDVSRQYVHILAKSAGYKPFSSRLVRDNLPWeDISSEHDDNIVFQAMRLHARVCLGGREQIRGKSRDKVNAMYRKLLRFNQ-VIDYDPSYPPMPGLSGtGGFAYVPRQESDEDYMIRIKPGVRLTEEGKKIWKMPKEL-------\n>UniRef90_A0A649VB91/101-218 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage AgronaGT15 TaxID=2656555 RepID=A0A649VB91_BPMB2\n-----------------------------------------------------------------------------SSGTRYPVLQEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>UniRef90_A0A075V695/4-164 [subseq from] Immunity repressor n=1 Tax=Amycolatopsis japonica TaxID=208439 RepID=A0A075V695_9PSEU\n-----------------------------------KPRITHSQVKELvEVHGLSLTAAAEALGVSKSLASYHLHNSGgGYVNPWKEARKSMPWKEIQPeHRDSGQARRAAWHAEYIATGG-KHMSEKKLRYLRQWYQRLANDGLVVVYDPTIPPHKGAKTGGWDYVPREEKDGDLLFRENEYTEVTDETRVDWRLPD---------\n>UniRef90_UPI00092B2B1E/9-151 [subseq from] hypothetical protein n=3 Tax=Mycobacteroides abscessus TaxID=36809 RepID=UPI00092B2B1E\n--------------------------------------LTKPIIEQLMNQGMNFTEIGNEWGMTRSGVSWIYNNYGGK-TLRKMIKEVLPFKVPNKFNRAYALKRLREHAEYVIVGNVDRYTDERRNKLRSFHKKMID--EVVEYSPD---------TGFTYRPREPRDNGLMIRVNEHTNITEYGEEVWKLP----------\n>UniRef90_S5Z3H3/29-172 [subseq from] Immunity repressor n=22 Tax=Caudoviricetes TaxID=2731619 RepID=S5Z3H3_9CAUD\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>UniRef90_UPI000A9D5C4F/18-159 [subseq from] helix-turn-helix domain-containing protein n=2 Tax=Nocardia TaxID=1817 RepID=UPI000A9D5C4F\n--------------------------------------LDASDLAELLAQGHNQSDIARMRGVSRQAVSKQLRRHGLITDRRRILEENFPFQVPARLAQTNQYRMLRDLAEFWVTRGA-RMSREKKSRLKSLHAIVGDGSHVIEFDPDLPPGPGVSGGGWAYRKRVVGDRNLIIRVNHHTL----------------------\n>UniRef90_A0A516KRT8/1-116 [subseq from] Immunity repressor n=3 Tax=Caudoviricetes TaxID=2731619 RepID=A0A516KRT8_9CAUD\n------------------------------------------------------------------------------MTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>UniRef90_UPI001F37B43F/2-147 [subseq from] XRE family transcriptional regulator n=1 Tax=Mycobacterium avium TaxID=1764 RepID=UPI001F37B43F\n----------------------------------------------------SQAHIARIFGVSRQAVHDMCVRYGIKRETRQELlteADVWPYKVSRELSNQYLFQLLRYHAQYMLT-QGKGMTKNQLARLRAFHRKLRDENQVVEYDPDIPPEPGVSpQGGFAYRKRRKSDRGLIIRVNGHTNITEQGREIWVFPDQ--------\n>UniRef90_A0A2R4A291/18-108 [subseq from] Immunity repressor n=3 Tax=Veracruzvirus TaxID=2948946 RepID=A0A2R4A291_9CAUD\n----------------------------------------------------------------------------------------------------SPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>UniRef90_G1JTX2/35-149 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage RidgeCB TaxID=1071506 RepID=G1JTX2_9CAUD\n-------------------------------------------------------------------------------RKRQVIRREYPFKVPEPLSQCTPHKRLRDHVEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>UniRef90_A0A385L6C1/1-76 [subseq from] Aminopeptidase n=1 Tax=Rhodococcus rhodochrous TaxID=1829 RepID=A0A385L6C1_RHORH\n------------------------------------------------------------------------------------------------------------------------MSDDKVKRLRSWWRRLRDENIVVEFDPTLPPIKGVSpHSGFAHRPRTVEDGDLLIWVNTYATLTKDGEMIWRWPPE--------\n>UniRef90_A0A2Z4Q949/3-114 [subseq from] Immunity repressor n=3 Tax=Rerduovirus TaxID=1982375 RepID=A0A2Z4Q949_9CAUD\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKAELVRLRNFYNKLMDEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>UniRef90_A0A4S8Q699/8-167 [subseq from] Helix-turn-helix domain-containing protein n=2 Tax=Glycomyces buryatensis TaxID=2570927 RepID=A0A4S8Q699_9ACTN\n--------------------------------------ITAEELAALDAGRITQADLARSKGVSRATISrWTRKTPGAPVPYRTQLAPFWPWKVTTSHQRAAAYMRAFDHLR-VRISG-AELDDERTSKLIAWYRAIRANGEVLAYDPDAPPTAWrVKHGGFEYLEREPADKDLLIRVPDPEWWTEERRAAWKLPKDLPE-----\n>UniRef90_R9R4E7/71-158 [subseq from] Repressor n=1 Tax=Mycobacterium phage BTCU-1 TaxID=1262532 RepID=R9R4E7_9CAUD\n-------------------------------------------------------------------------------------------------------PRLREHGEYMATGGV-GMDELKLSRLRGFYKKLRD--QVLEYDPNIPPIEGVSrQGGWAYRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>UniRef90_A0A0Q2UG27/3-119 [subseq from] Immunity protein 7 n=2 Tax=Mycobacterium gordonae TaxID=1778 RepID=A0A0Q2UG27_MYCGO\n-------------------------------------------------------------------------------TPREIVRLHFPWDVPVDLQDHPVYLLMRLHGDYMATGG-RDMPVDDVAAVHEFHAQLREHDWVVEYDPNITAPDGIDeRPGFVYRTRTIEDDDLIIRNNGHTVITDEGELIWRYPPDL-------\n>UniRef90_UPI0006854890/3-120 [subseq from] hypothetical protein n=1 Tax=Mycobacterium sp. JS623 TaxID=212767 RepID=UPI0006854890\n-------------------------------------------------------------------------------TPREIVRLHFPWDVPADLQDHPVYVLMRLHGDYVATGG-RGMPPADVAAVHAFHAQLREHDWVVEYDPNITAAEGIDDrPGFAYRARTIDDDDLIIRNNGHTVITDEGELIWRYPPDLD------\n>UniRef90_G7CFY7/2-108 [subseq from] Immunity protein 26 of polymorphic toxin system n=1 Tax=Mycolicibacterium thermoresistibile (strain ATCC 19527 / DSM 44167 / CIP 105390 / JCM 6362 / NCTC 10409 / 316) TaxID=1078020 RepID=G7CFY7_MYCT3\n------------------------------------------------------------------------------------LQQHFPFQVPTEMGQTSPYRRLRDHGRYVATWGV-GMDNGTLGRLRGFYRKLQD--QVLEFDPNIPPIPGVSSkGGWRYVPRTADDGDLMIRVNDYTELTDEGRRVWRLP----------\n>UniRef90_A0A100WIC0/4-122 [subseq from] Glyco_hydro_65N domain-containing protein n=2 Tax=Mycolicibacterium TaxID=1866885 RepID=A0A100WIC0_MYCCR\n--------------------------------------------------------------------------------PLEIARLHFPWDVPLELQPSPVYALMQLHGDFIATGG-RGMDTADLERVHSFHARLRDANVVIEFDPNIPADQGIDGaAGFAFRPRTIDDEDRLVRANGFTVLTEEGDMIWSFPPDLPDL----\n>UniRef90_G9FHV1/13-113 [subseq from] HTH cro/C1-type domain-containing protein n=33 Tax=Rerduovirus TaxID=1982375 RepID=G9FHV1_9CAUD\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEE----------------------------------------------------------------\n>UniRef90_A0A1S1BPA5/11-160 [subseq from] Immunity repressor n=7 Tax=Corynebacterium TaxID=1716 RepID=A0A1S1BPA5_9CORY\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPTLTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLMKRLRQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>UniRef90_UPI0008A56AEC/7-159 [subseq from] helix-turn-helix domain-containing protein n=2 Tax=Corynebacterium TaxID=1716 RepID=UPI0008A56AEC\n----------------------------------------PALVIYLMDQGHRQVDIAREYGVSRQYIH-HLAKQGGYNPPTTIVQENLPWDVDPAFARNSTFIAFRLIGHNMVAP--GKLTEESRERANGLLKRLRQFDVVVDYDPSYPPVIGLTSlPGFAYLPRTAEDENFVMKIKPGTRVTPLGDKIWRMPDE--------\n>UniRef90_A0A0E3N6F3/7-161 [subseq from] HTH_7 domain-containing protein n=3 Tax=Corynebacterium ulcerans TaxID=65058 RepID=A0A0E3N6F3_CORUL\n------------------------------------------QVMQLLGEGMTQSQIAREYGVTRQYIFILAKRAGHEAAEQEYIKDDLPWaDIDETHKDNTIFKALRMHARYMERGQKSLRGSSCVKLLGMYRKLVRFNQ-VIDYDESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQLPKKF-------\n>UniRef90_A0A172UWI7/5-103 [subseq from] SnoaL-like domain-containing protein n=2 Tax=Mycobacterium sp. YC-RL4 TaxID=1682113 RepID=A0A172UWI7_9MYCO\n----------------------------------------------------------------------------------------------------PVYALMRLHGDFMATGGQRMAD-ADLDRVHAFHDRLREEDAVIEFDPNIPADQGIDGaAGFAFRPRTIDDEDRLIRVNGFTVLTEEGDMIWSFPPDLPDL----\n>UniRef90_A0A7G8LF37/2-63 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage PainterBoy TaxID=2762425 RepID=A0A7G8LF37_9CAUD\n----------------------------------------------------------------------------------------------------------------------------------------------LEFDPNIPPTPGMAGGGFRYVHRDIVTDgpDLLIRVNEHTApMTEKSEMIWSFPHDIEEILQ--\n>UniRef90_UPI0011777C09/10-160 [subseq from] hypothetical protein n=1 Tax=Corynebacterium aurimucosum TaxID=169292 RepID=UPI0011777C09\n--------------------------------------------MSMIQEGYKQSQIAEAYGVSRQYVSKLAKQ-AGYISTMTIINDNLPWKVDPEYQKNTLYQALRLVGHYNLDGdeAFRHS-ETSRRKASVLVKKLVIYRQVIDYNPAYPAIPGVVNtPGFAYVPRTESDEDFIIKIRPDVRITTIGDRIWRLPE---------\n>UniRef90_V6V2I8/4-161 [subseq from] HTH_7 domain-containing protein n=6 Tax=Corynebacterium ulcerans TaxID=65058 RepID=V6V2I8_CORUL\n---------------------------------------TPERVMQLLGEGMTQSQIAREYGVTRQYIFTLAKRGGHEAREMEYIKDDIPWPKVKdKHRDNTIYKTLRIHARYMERGQEGVRGSSYVKLLGMYRKLVRFNQ-VIDYDESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQLPKKF-------\n>UniRef90_UPI000C78B8DD/4-159 [subseq from] helix-turn-helix domain-containing protein n=2 Tax=Corynebacterium ulcerans TaxID=65058 RepID=UPI000C78B8DD\n---------------------------------------TPERVMQLLGEGMTQSQIARKYGVTRQYIFTLAKRGGHQASAQEYIKDDLPWANvPDKHFNNTILSGLRIHARYMERGQEGLRGSSCVKLLGMYRKLVRFNQ-VIDYDESYPPVEGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQLPK---------\n>UniRef90_UPI000A7CAC94/6-158 [subseq from] hypothetical protein n=1 Tax=Corynebacterium atypicum TaxID=191610 RepID=UPI000A7CAC94\n---------------------------------------TPGIVNSLLDKGWRQFEIAEIYGVSRQYVHTLAK-KGGYIPASSVITQNFPWEVPDELKDNTLYHALRLLGIWQF-DKGR-LTGSSKTRLAGVLRRLKNFDQVVDFNPEYPPTRGLTNtHGFKYVPRTPEDEDYAIKIRPGITLTKLGTQLWRIPE---------\n>UniRef90_A0A1A0K7G2/14-159 [subseq from] HTH cro/C1-type domain-containing protein n=3 Tax=Corynebacterium TaxID=1716 RepID=A0A1A0K7G2_9CORY\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQVLRVIGTFNLD--PEAISDNTLRRVRAVLRKLRNFNTVIDCDPGYPAVPGLVNtAGFAYVPRAESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>UniRef90_UPI00125CB7AB/9-158 [subseq from] hypothetical protein n=1 Tax=Corynebacterium TaxID=1716 RepID=UPI00125CB7AB\n-------------------------------------------VVALMNSGYSQTAIGVEYGVSRQYVHQL-ALKAGHSPVIQKVKDIFPWDVSSEYYDNTVYQGLKLLGHY-RLGGEGSINGSSKKKVNSILKKIVVFHQVIDFDPSYPAIPGITNGpGFAYVPRTEKDEDFVVKIRPGTKIVGEGDRIWRIPE---------\n>UniRef90_A0A8S5TMF9/14-159 [subseq from] InsA C-terminal domain n=4 Tax=root TaxID=1 RepID=A0A8S5TMF9_9CAUD\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVSENFPWPIKPEFTKNNLYQALRVVGLWNMDT--EAVSLSTVKKVIGVLRKVHHFGSVIDYDPGYPAISGLVtTPGFAYVPRTESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>UniRef90_A0A3G6IUA6/27-186 [subseq from] Transposase n=2 Tax=Corynebacterium pseudopelargi TaxID=2080757 RepID=A0A3G6IUA6_9CORY\n-----------------------------------QTRLTPELVAGLLAEGNSQSGIARTFGVSRQHIHYLAKRAGLTAEAGEI-TQHLPWDVDQvKHGNNVILQSLRAHARYRLQGL-AGVQGSTRKRLAAFYRKITVFQQVVDFDPRQPPIPRVSsTGGFMFTPRTNSDGDYLIRIRNGLHWTEKGKTLWLQPTT--------\n>UniRef90_W5XYA4/3-147 [subseq from] Repressor-like immunity protein n=3 Tax=Corynebacterium vitaeruminis TaxID=38305 RepID=W5XYA4_9CORY\n-------------------------------------------------KGVRQSEIAREYGVSRQYVGQLAK-QGGYDSPITKVSRNLPWEVDPAFYANTIYKGVTLHGHMMLAGKEKIS-ATSQNKLLGFYRKLIRFNVVVDYDPDYLAQPGLTNtNGFAYVPRGAADKDYIIKVRPGVRITPLGEKLWRLPSD--------\n>UniRef90_UPI001F1F421B/3-159 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Corynebacterium uropygiale TaxID=1775911 RepID=UPI001F1F421B\n--------------------------------------ITPDEVMELLDQGMSQAEIARQVGVTRQYIYKL-AREGGYEPKWTKLTQHIPWDIPSEFKGNALYQGFRAIG-WVRWRGPASLTQSQYERARAIWRKLKAFNQVIDFDPKYPAVPGLTNGpGFAYVPRRESDGDYMIRIKPGVKLTPVGKKIWRMPEEW-------\n>UniRef90_UPI001CCF91C2/10-158 [subseq from] hypothetical protein n=1 Tax=Corynebacterium coyleae TaxID=53374 RepID=UPI001CCF91C2\n-------------------------------------------VIYLMDNGFRQVDIAREYKVSRQYIHTLAKQA-GYTSPITTVQENLPWDVDPDFNRNSTFMALRLVGHE-AVAP-GKLTEESRERAAGLIRRLRQFNVVVDYDPDYPPIVGLTNtPGFAYVPRTEKDEDFIVKIKPGVRITPLGDKIWRLPP---------\n>UniRef90_A0A837D8J9/2-85 [subseq from] YCII domain-containing protein n=2 Tax=Saccharomonospora viridis TaxID=1852 RepID=A0A837D8J9_9PSEU\n------------------------------------------------------------------------------------------------------------HIKYVALGE-QKLSDSEKKRLRNWYAELQRLNVVLEYDPNIPPTLHMSTGGWRYVPRADSDEGLVIRVNEHARMTDEAYEYLRFP----------\n>UniRef90_UPI001BB73744/1-76 [subseq from] hypothetical protein n=1 Tax=unclassified Mycolicibacterium TaxID=2636767 RepID=UPI001BB73744\n------------------------------------------------------------------------------------------------------------------------MSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>UniRef90_UPI00178C2948/3-148 [subseq from] hypothetical protein n=1 Tax=Corynebacterium jeikeium TaxID=38289 RepID=UPI00178C2948\n-------------------------------------------------EGLTQAAIAREYGVSRQYVNK-LAIQGGHTPVVPIITENLPWNIPSEYYENTLYQgmRLIGHGNYTGFDKLNGSSLAKARAILT--KLTRFR-QVIDFDPSYPAMPGLTNtPGFAYVPRTEDDEDFIVKIRPGTRITPEGRKIWRLPEEM-------\n>UniRef90_UPI000668A925/14-159 [subseq from] helix-turn-helix domain-containing protein n=2 Tax=Corynebacterium propinquum TaxID=43769 RepID=UPI000668A925\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHQPLRTIVTENFPWPIKPEFSQNNLYQALRVVGLWNMDP--NAVKPNTLQKLRGVLRKLQNFNTVLDYDAGYPAVPGLTNtPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEEV-------\n>UniRef90_A0A6M3T421/40-115 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage MA5 TaxID=2725640 RepID=A0A6M3T421_9CAUD\n-----------------GVAETGVIQVNTERPRGKKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQV--------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A5D4FRT4/12-158 [subseq from] HTH_7 domain-containing protein n=2 Tax=Corynebacterium urealyticum TaxID=43771 RepID=A0A5D4FRT4_9CORY\n----------------------------------------------LMGEGMTQSAIAREYGVARQYINILAKR-GGHEPVIPIVTENLPWTVPSEYHDNTIYQalRLASHANYAGLDSLRGTSQDKLARFVR--KLALF-NQVIDFDPSYPAIPGHSNtPGFAFVPRTPEDKDYMINIRPGVRITPTGRKMWRMPD---------\n>UniRef90_A0A2K9VI93/136-207 [subseq from] Nuclear transport factor 2 family protein n=1 Tax=Mycobacterium phage SWU2 TaxID=2077150 RepID=A0A2K9VI93_9CAUD\n------------------------------------------------------------------------------------------------------------------------MDKVRLGRLRSFYKKLQD--QVLEFDPAIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDYTDLTEQGRMIWRLP----------\n>UniRef90_A0A3S9UP84/60-136 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Zetzy TaxID=2499071 RepID=A0A3S9UP84_9CAUD\n-----------------------------------------------------------------------------------------------------------------------DMPDEKLKRLRSFYRKLRDEGLVLEFDPNIPPIEGVsAQGGWRFVEATSeeRESGILIRENEHSRLTEKGRMIWRFP----------\n>UniRef90_UPI00167161F4/19-114 [subseq from] hypothetical protein n=1 Tax=Lentzea flava TaxID=103732 RepID=UPI00167161F4\n-------------------------------------------IMALKRAGNSQRSIAQRFDVSEAAVSLRLGRAGLiDSTPRSDAMKHFPWKLGRAfHDAS-LGKLVRNHLEFVATNG-HGMSEDKLKRLRALYKKLLGE----------------------------------------------------------------\n>UniRef90_UPI00167161F4/134-186 [subseq from] hypothetical protein n=1 Tax=Lentzea flava TaxID=103732 RepID=UPI00167161F4\n--------------------------------------------------------------------------------------------------------------------------------------------FVVEFDPAIPPGKGNKTGGFALVPWEERDGDLLIRRNEHAELSDDALMVLRFP----------\n>UniRef90_UPI0020BE25DE/14-159 [subseq from] helix-turn-helix domain-containing protein n=2 Tax=Corynebacterium pseudodiphtheriticum TaxID=37637 RepID=UPI0020BE25DE\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHQPLRTIVTENFPWPIKPDFYENHLYTTLRSIGTFNLDP--TAVRETTLRGVRSVLRKLQNFNTVIDCDPGYPAVPGLVNtPGFAYVPRTESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>UniRef90_UPI0008A2BF9A/8-159 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=unclassified Corynebacterium TaxID=2624378 RepID=UPI0008A2BF9A\n------------------------------------------TIQTLLDEGMTQTEIARAAGVSRQRIHQIIKEAGYESLITE-VSENLPWEVEREFLTNTIYKAIRLHGHWMLDNEALTKGSIGKLR--AFHRKLIAFNQVVDYDPAFQAIPGISNtPGFAYLPRRPEDGNYVIRLRQGVRLTPTGERIWQLPSEL-------\n>UniRef90_A0A6M3T221/9-67 [subseq from] Immunity repressor n=2 Tax=unclassified Veracruzvirus TaxID=2961396 RepID=A0A6M3T221_9CAUD\n----------------------------------KKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQV--------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001C217985/33-140 [subseq from] hypothetical protein n=2 Tax=Rhodococcus TaxID=1827 RepID=UPI001C217985\n----------------------------------------------------------------------------------------LPWVVHADHLHSFPARSMRSHVRFIATGGVG-MCKLELGALRDFYDMLRDFDSVLEYDPHVRPLRGLCfDGGFRLVTRSIADRNLVIRLNDYTILQAADPTLWAIPEQM-------\n>UniRef90_A0A0B6EZY0/11-160 [subseq from] HTH cro/C1-type domain-containing protein n=1 Tax=Corynebacterium singulare TaxID=161899 RepID=A0A0B6EZY0_9CORY\n---------------------------------------------TMIKEGYRQSDIAREYGVSRQYVSKLAKQ-SGYISSMTIINDNLPWRVDSDFQKNSLYQSLRLIAHYNLEGEDAFVNakTSrrKAQRLA---ERLIVFRQVIDYNPAYPAIPGIVNtPGFAYVPRTESDEDFIIKIRPDVRVTTIGDRIWRLPE---------\n>UniRef90_A0A4R2JK35/8-104 [subseq from] Aminopeptidase n=2 Tax=Actinocrispum wychmicini TaxID=1213861 RepID=A0A4R2JK35_9PSEU\n---------------------------------------------------------------------------------------------------AAIYRRIAEYLKWVELGSDR-LTENQRERLRSFLDKLHERNLVVVFDPEIPPDAHNKYGGWATVPRLPSDGELLIRLNEYTHLAIpdEAEVIWSMPDD--------\n>UniRef90_A0A2Z4Q4X2/2-71 [subseq from] Immunity repressor n=1 Tax=Rhodococcus phage Gollum TaxID=2201450 RepID=A0A2Z4Q4X2_9CAUD\n-----------------------------------------------KNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGG--------------------------------------------------------------------------------------\n>UniRef90_U7MZ59/14-159 [subseq from] HTH cro/C1-type domain-containing protein n=3 Tax=Corynebacterium TaxID=1716 RepID=U7MZ59_9CORY\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEYTHNNLYTVLRVIGLWNLDPSaVQNSTMQKVKGV---LRKIQNFNTVIDCDPGHPDVPGLVNtPGFAYVPRTESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>UniRef90_UPI0013C3F30D/5-157 [subseq from] hypothetical protein n=1 Tax=Corynebacterium lactis TaxID=1231000 RepID=UPI0013C3F30D\n---------------------------------------TPEEVVLLMGEGMKQSEIARRYGVSRQYICQLA-QAGGHTPLTPIVAENMPWEVPSELLSNTIYKALRLFGHWQLDN--EALAEASLTKIRGFLNKLERFNQVVDYDPSYPAVPGLTNmPGFAYVPRVESDENFVFRVREGVRITPVGNRIWRLPE---------\n>UniRef90_UPI0011C3F11D/5-158 [subseq from] hypothetical protein n=2 Tax=Corynebacteriaceae TaxID=1653 RepID=UPI0011C3F11D\n---------------------------------------TPSLVIYLMKSGQRQTDIAQSYGVTRQYVNKLAK-QGGHISPITTVRENMPWEVDPELARNSTIVSFRLVGHA-AVA-PDNLSEESLERANSLIRRLKTYNVVVDYDPTYPPIIGLTStPGAKYFPRTEADEDFIMKIRPGVLVTPLGNRIWRLPKQ--------\n>UniRef90_A0A1J5VRN7/11-157 [subseq from] HTH psq-type domain-containing protein n=1 Tax=Corynebacterium sp. NML120713 TaxID=1906332 RepID=A0A1J5VRN7_9CORY\n----------------------------------------------LMEEGMSQAEIGRMYGVSRQYVNKLA-RQGGYVSRVNLLKEAMPWEVDKEFSRNASLIGFRLAGHV-ALDP-DNIAEEGRERAESFLNRLRTFNVVLDYNPEYPPIMGLTStPGFAYLPRTEEDEDFMMKIRPGVKVTPLGNRIWRLPEK--------\n>UniRef90_A0A376C983/9-159 [subseq from] Repressor-like immunity protein n=2 Tax=Corynebacterium TaxID=1716 RepID=A0A376C983_CORAY\n-------------------------------------------IRALLDEGMTQSDIARAAGVSRQRIHQIMKESGHESLITE-VTENLPWEVERQFLTNTIYKAMRLHGHWMLDNDALTAGSLGKLR--AFHRKLVAFNQVVDYDPAYQGIPGISNtPGFAYLPRRPEDGNYIIRVRQGVKLTPTGEKIWQLPSEL-------\n>UniRef90_UPI0007A4B3E9/3-107 [subseq from] hypothetical protein n=1 Tax=Nocardia TaxID=1817 RepID=UPI0007A4B3E9\n--------------------------------------------------------------------------------KRDVLLRHYPWTVPEEH-RGEIYRLLELHGEYFM-DAGKGMAESDLERLREFWAYLHEGDLVVEYNPW------AAGEKWSYQPRKPEDEKSMVRENRHTRITPEGQVIWRLP----------\n>UniRef90_UPI001C3F278E/3-63 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Nocardia thailandica TaxID=257275 RepID=UPI001C3F278E\n---------------------------------PEEDKLTLSIVEALKNKGLSQSDIARAYGVTRQYVSWIKRTYGGSLTPRETVLKHFPLEGR-------------------------------------------------------------------------------------------------------------\n>UniRef90_E5XRU7/1-74 [subseq from] Immunity protein n=1 Tax=Segniliparus rugosus (strain ATCC BAA-974 / DSM 45345 / CCUG 50838 / CIP 108380 / JCM 13579 / CDC 945) TaxID=679197 RepID=E5XRU7_SEGRC\n------------------------------------------------------------------------------------------------------------------------MREDKLSRLRGFYRRL--NSLVVEYDPNILPIPGVStNGGWAYRSRETSDSNLLIRINDYTKLTEEGFNIWRLPDQ--------\n>UniRef90_UPI001A93ACE6/2-138 [subseq from] hypothetical protein n=2 Tax=Arthrobacter TaxID=1663 RepID=UPI001A93ACE6\n-------------------------------PAERKLPNS-TTLRQLRKQGLRLIDIAEQYGVTEAAV-WRALDRAGFTKERATYKDVLPWEIADEHKTTAVMDRFRAIAKQKSGG---KLSPEEDRLLADWLRELADNDVVVNYHKDAPPNAASRKGGFYYVPRTDADQW-LI-----------------------------\n>UniRef90_A0A839QC01/7-53 [subseq from] Transcriptional regulator with XRE-family HTH domain n=1 Tax=Mycolicibacterium iranicum TaxID=912594 RepID=A0A839QC01_MYCIR\n----------------------------------PRKPLTLAIIEDLKGKGYSQSEIARMYGVTRQYVSWIKHNYNGRLTP--------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0020B6CE9D/7-99 [subseq from] hypothetical protein n=1 Tax=Mycobacteroides abscessus TaxID=36809 RepID=UPI0020B6CE9D\n-----------------------------------------------------------------------------------------PFKVPNKFNRAYALQRLREHAEYIIVGNVDRYTDKRRNKLRSFHKKMID--EVVEYSPE---------TGFTYRPREPRDNGLMIRVNEHTNITEYGEELWKLP----------\n>UniRef90_UPI0002438B6F/1-66 [subseq from] Transcriptional regulatory protein ComA n=2 Tax=Bacillus subtilis TaxID=1423 RepID=UPI0002438B6F\nMGSSHHHHHHSSGLVPRGSHMSSQKEQDVLTP---RECLILQEVE----KGFTNQEIADALHLSKRSIEYSLT----------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001BEBA453/32-139 [subseq from] hypothetical protein n=1 Tax=Rhodococcus erythropolis TaxID=1833 RepID=UPI001BEBA453\n---------------------------------------------------------------------------------------PLPWIVHAEHLHSFPARSVRSHVRFIATGGVGM-RAFELGALRDFYDILREFDSVLEYDPQVRPLRGFCfDGGFRLMTRSTADRNLVIRLNDYTILQAADPALWSIPER--------\n>UniRef90_UPI000312FF7C/1-77 [subseq from] hypothetical protein n=1 Tax=Nocardia thailandica TaxID=257275 RepID=UPI000312FF7C\n------------------------------------------------------------------------------------------------------------------------MAQYKLKRLRSFYKKLRDNGLVVEFDPNNSPVPGVSNrGGFALVeatPEELAS-GTLIRENEYSELTPEGREIWRFPS---------\n>UniRef90_A0A7L7ST41/1-53 [subseq from] Helix-turn-helix DNA binding protein n=1 Tax=Mycobacterium phage Maxo TaxID=2772029 RepID=A0A7L7ST41_9CAUD\n---------------------------------------------------------------------------------------------------------------------------------------------MLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>UniRef90_UPI000839B344/4-160 [subseq from] hypothetical protein n=1 Tax=Corynebacterium phoceense TaxID=1686286 RepID=UPI000839B344\n--------------------------------------LTPEDVMSLLEDGIRQSDIAREFGVSRQYVNKLAK-QGGHESVINLINENLPWELPMEYRGNHLYQALRltAHLNYDPEGMTSKANFDKIGSLI---RKLTVFNQVLDFDPDYPAVPRISNtPGFAFVPRTETDKNYMIKIRPGVKITKLGEKLWRLPQNL-------\n>UniRef90_UPI00135C30FA/2-139 [subseq from] hypothetical protein n=1 Tax=Arthrobacter zhaoguopingii TaxID=2681491 RepID=UPI00135C30FA\n-------------------------------PAVRKLPS-AHILRQLRLQGKTLKEIGDTYQVTESSV-WRAMERANLIDARPTVSDMLPWKIQNQHKTTAVMERFRTISKQ-KNG-LDTTAEEE-RLLDNWLRGLADNDVIVNYHPDAPPNDASSKGGFYYVPRAPE-DTWIVR----------------------------\n>UniRef90_UPI000A71C834/1-76 [subseq from] hypothetical protein n=1 Tax=Mycobacterium sp. Root265 TaxID=1736504 RepID=UPI000A71C834\n------------------------------------------------------------------------------------------------------------------------MSADQIRRLHSFYRRLGNENVVVEFDPNLPPQAGVSPfGAFAYRKRSSTDGGLMIRVNEFTSLTEPGRQLWKLPEQ--------\n>UniRef90_UPI0019508408/4-145 [subseq from] hypothetical protein n=1 Tax=Micromonospora trujilloniae TaxID=879618 RepID=UPI0019508408\n---------------------------------PRLLPDN-EVLINLRRQGWTYADIAREYGVSEHGVYMRLRNTNAVRKT-GGYQHLIPWRVKREHSFAFPVQMLRLLGRTEK-G--EMLPPVKKRMLDKWLREIQEAGVVVCYDPDMEPNPASKTGGFYYSRRRTSDGDSLIRVEQDA-----------------------\n>UniRef90_A0A0G3HCH2/9-163 [subseq from] Transposase n=1 Tax=Corynebacterium uterequi TaxID=1072256 RepID=A0A0G3HCH2_9CORY\n-------------------------------------------VMQLMEAGESQSAIARTFKVSRQYVHKLAKQGGHKSeNVGRIVTDNLPWEVPTEWQDGSLYYVIRLLAHYN-SGLY-EISPSSLERVNALVKRLKLFQQVIDYDPRYPAVKGLSSkPGFAYVPRTPEDEGMAIKIRPGIRLTDEGRKLWAMPKELPE-----\n>UniRef90_I1V1K7/1-28 [subseq from] RDF protein n=1 Tax=Mycobacterium phage SWU1 TaxID=1175504 RepID=I1V1K7_9CAUD\n-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------MNEHTNLTAEGELLWSWPDDIEELLSEP\n>UniRef90_A0A481VRH8/69-120 [subseq from] Methyltransferase n=1 Tax=Mycobacterium phage Ugenie5 TaxID=2530153 RepID=A0A481VRH8_9CAUD\n--------------------------------------------------------------------------------------------------------------------------------------------------------D-ILCGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLAQ-\n>UniRef90_A0A0N0N8V3/30-170 [subseq from] HTH_7 domain-containing protein n=1 Tax=Actinobacteria bacterium OV320 TaxID=1592329 RepID=A0A0N0N8V3_9ACTN\n----------------------------------------------LSIDGMNVVKVAKEFGVSRAAIYKHTKNRKEVLPqnLKSEIMRLSPWRDVEPeHAKAGQRAYIAHHIEYVLS-GFKKLEDWKMSRLRYFYRELGDpQDKVLTYDRNEPPNQWSSTGGWKYVDREESDGDLILRTSD--ELTEEQ-----------------\n>UniRef90_A0A482JF17/9-54 [subseq from] Immunity repressor n=1 Tax=Mycobacterium phage Noella TaxID=2517962 RepID=A0A482JF17_9CAUD\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTP--------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A0G3HCI9/14-166 [subseq from] CENP-B N-terminal DNA-binding domain n=1 Tax=Corynebacterium uterequi TaxID=1072256 RepID=A0A0G3HCI9_9CORY\n---------------------------------------------QLLESGESQAAIAREFGVTQQYVSKILKGAGYvYVTPSKFVAENMPWDVPTEWRNATIHNSIRLMAFW-NMDHelIKGEAVGKLSRFLN--KLIVFN-QVVDFNLNYPPIKGLNSkPGFAYVPRTPEDEGMAIKIRPGIRLTAEGRKLWAMPKELPE-----\n>UniRef90_A0A2I1VR73/5-162 [subseq from] HTH_7 domain-containing protein n=1 Tax=Corynebacterium pyruviciproducens TaxID=598660 RepID=A0A2I1VR73_9CORY\n---------------------------------------STDEIIALLEQGLSQAEVSRIYGCSRQYIHKLIKQagYTQAFTAqTQLIRDNFPWEIEDPEVYGNtVYIQLWLMARFN--DDPDSISEESVKRVKALVRKLVNFSQVVDYNPEYPWVKGLLNtRGLAFLPRGEADHDLAIKNRPGVKITHEGEKLWKIPD---------\n>UniRef90_A0A5N6MHR6/2-139 [subseq from] HTH_7 domain-containing protein n=1 Tax=Arthrobacter yangruifuii TaxID=2606616 RepID=A0A5N6MHR6_9MICC\n-------------------------------PAARKLPDN-TTLRQLRAQGMRLIDIAEKYGVTEAGV-WKALERAGFTETRATYKDILPWEIADEHKSTAVMDRFRSITKQKA-GG--ELSAHEAKLLEDWLQDLAASDVVVAYHKDAPPNSASRKGGFYYVPRTEQDE-WIIR----------------------------\n>UniRef90_A0A4Y3QZJ3/42-174 [subseq from] ArsR family transcriptional regulator n=1 Tax=Streptomyces cacaoi TaxID=1898 RepID=A0A4Y3QZJ3_STRCI\n---------------------------------------------------VSVARIAELLGVTRQSIYLHIRGNKNLLDRKhnEELEKLRPFEVQHEHRKCTAYVNLTHQIDYYL--SDGKLADYKLKRLRSFWRALGTNmSQVLVYDPEQEPNYVSKEGGWRYETRQPADEDFVVRPP--GELTDE------------------\n>UniRef90_G9FHV0/2-58 [subseq from] Immunity repressor n=1 Tax=Rhodococcus phage RER2 TaxID=1109715 RepID=G9FHV0_9CAUD\n----------------------------------------------------------------------------------------------------------------------------------------------LEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>UniRef90_UPI00076A2B9D/17-62 [subseq from] hypothetical protein n=1 Tax=Mycolicibacterium mucogenicum TaxID=56689 RepID=UPI00076A2B9D\n-------------------------GGKAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWR------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00216AA048/32-138 [subseq from] hypothetical protein n=1 Tax=Rhodococcus erythropolis TaxID=1833 RepID=UPI00216AA048\n---------------------------------------------------------------------------------------SLPWVVHAEHLNSFPARSVRSHVHFIATGGVG-MCKFQLGALRDFYDILREFDSVLEYNPQVHPLPGFGsDGGFRLLTRSFADRDLVIRTNEYTIPRKLDSKLWAIPG---------\n>UniRef90_A0A0C1CUC7/2-62 [subseq from] Glycosyl hydrolase n=1 Tax=Nocardia vulneris TaxID=1141657 RepID=A0A0C1CUC7_9NOCA\n----------------------------------------------------------------------------------------------------------------------------------------RNENVVLEFDPDIAPEPGVSNkGGFAYRPRVASDGKLLFRVNRHTkEMTPEMHTIWELPEP--------\n>UniRef90_A0A0G3HAQ1/9-164 [subseq from] HTH_7 domain-containing protein n=1 Tax=Corynebacterium uterequi TaxID=1072256 RepID=A0A0G3HAQ1_9CORY\n-------------------------------------------VMQLMEAGESQAAIARAFKVSRQYVHKLAK-QGGHETSQRLsdyVSRHFPWDIIPEANHSTLHQNIRLLALWNLDQS--ALERGGRLKLRAFLNKLNGFQQVVDYNPNYKAVKGLNNkPGFAYVPRTPEDEGMAIKIRPGIRLTDEGRKLWAMPKELPE-----\n>UniRef90_UPI000900761E/1-51 [subseq from] Magnetosome protein MamM n=23 Tax=Magnetospirillum gryphiswaldense TaxID=55518 RepID=UPI000900761E\nMGSSHHHHHHSSGLVPRGSHMEA-VQNR-IVEAAERVPGVRGVI-HLRARYVGQ-----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A7Z6KSK9/4-109 [subseq from] FAD-binding oxidoreductase n=1 Tax=Rhodococcus sp. AQ5-07 TaxID=2054902 RepID=A0A7Z6KSK9_9NOCA\n----------------------------------------------------------------------------------------LPWVVQAEHLNSFPARSVRSHVRFIATGGVG-MCKFQLGALRDFYDILREFDSVLEYNPQVRPLPGFCfDGGFRLVTRASADRNLVIRMNEFTIPQELGAELWAIPG---------\n>UniRef90_UPI0019081986/2-134 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Micromonospora veneta TaxID=2796464 RepID=UPI0019081986\n--------------------------------------------TDYRRQGWTYAQIAAEYGVSEQAVYMRLRKANATRKTP-GYKHLIPWRVKREHTFAFPAQMLRLLGR---IEKGEVLPPVKQRMLDKWLREVKEADVVVSYSPDQPPNYASKVGGFYYSRRRPEDGDSLIRVEEGAE----------------------\n>UniRef90_S2ZWX9/4-162 [subseq from] HTH cro/C1-type domain-containing protein n=2 Tax=Corynebacterium pyruviciproducens TaxID=598660 RepID=S2ZWX9_9CORY\n--------------------------------------ITIEEIFLLQGQGLTQAEIARRAGVTRQYIYKLLRESGYRseFAlQTRLIRNNFPWELENNEvmDNTVYI-QLWLAARFNHnPASISKTSTERVRALI--RKLVRFH-QVIDYDPHYPWVKGLFNtRGLAFLPRSLTDENYMIKIRPGVTLTEVGKTLWQMPD---------\n>UniRef90_UPI00192FB687/1-57 [subseq from] F5/8 type C domain protein n=4 Tax=Clostridium perfringens TaxID=1502 RepID=UPI00192FB687\nMGSSHHHHHHSSGLVPRGSHMASTLSSKPIIKGE-NLAYSMDEKVDLM-KGITATDIED------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001753B6B/1-34 [subseq from] O-GlcNAcase nagJ n=3 Tax=Clostridium perfringens TaxID=1502 RepID=UPI0001753B6B\nMGSSHHHHHHSSGLVPRGSHMASKLKEAAEVTGS-------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000011215B/1-66 [subseq from] Excinuclease ABC subunit C n=1 Tax=Escherichia coli TaxID=562 RepID=UPI000011215B\nMGSSHHHHHHSSGLVPRGSHMNTSSLETIEGVGPKRRQMLLKYMGGLQGlRNASVEEIAKVPGISQ------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A1X1YA86/31-133 [subseq from] SnoaL-like domain-containing protein n=1 Tax=Mycolicibacter longobardus TaxID=1108812 RepID=A0A1X1YA86_9MYCO\n----------------------------------------------------------------------------------DIVRSAFPFDVQPDHQADAFHYALREHGDYVATGG-RDWHDDRRRGLRSFYAMLRQENLVITYCPSQ---------GWGYEQRLPKDDDLIVRIEDPT---DEQEIIWRFlPDHLE------\n>UniRef90_UPI000225A895/1-46 [subseq from] Chemotaxis response regulator protein-glutamate methylesterase n=1 Tax=Thermotoga maritima TaxID=2336 RepID=UPI000225A895\nMGSSHHHHHHSSGLVPRGSHMTDRVIRVLVVDDSAFMRMVLKDIID-------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011821BA4/2-141 [subseq from] helix-turn-helix domain-containing protein n=1 Tax=Catellatospora sichuanensis TaxID=1969805 RepID=UPI0011821BA4\n-------------------------------PAPRLLPDN-DVLVNLRRQGWTYADIAAQYGVSTSAVYLRLRNA-NATAERPSYKAMIPWTVKRAHTYAFPVQMLRLL---ARKEKGETLSPVRERMLTKWLREIEGANVVVAYDPECPPNPAsPISGGFYYAPRADSDGKSIVR----------------------------\n>UniRef90_UPI0005448326/1-48 [subseq from] FIBER PROTEIN n=3 Tax=Snake adenovirus serotype 1 TaxID=189830 RepID=UPI0005448326\nMGSSHHHHHHSSGLVPRGSHMASMTggQQMGRIPSpPSKTSLDIAE--EL------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002459462/1-47 [subseq from] Double-stranded RNA-specific editase Adar n=1 Tax=Drosophila melanogaster TaxID=7227 RepID=UPI0002459462\nMGSSHHHHHHSSGLVPRGSHMSDpkKKMCKERIPQPKNTVAMLNELR--------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00038E9230/1-33 [subseq from] C4-dicarboxylate transport sensor protein dctB n=1 Tax=Rhizobium meliloti (strain 1021) TaxID=266834 RepID=UPI00038E9230\nMGSSHHHHHHSSGLVPRGSHMEERLARNALEAS--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00017541D3/1-73 [subseq from] Response regulator protein vraR n=1 Tax=Staphylococcus aureus TaxID=1280 RepID=UPI00017541D3\n-GSSHHHHHHSSGLVPRGSHMKKRAELYEMLTE------REMEILLLIAKGYSNQEIASASHITIKTVKTHVSNILSKLE---------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001EF244BB/4-115 [subseq from] hypothetical protein n=1 Tax=Corynebacterium sp. ACRPF TaxID=2918197 RepID=UPI001EF244BB\n------------------------------------------------------------------------------------INDHLPWefDTS-EYQENTLYQVFRLTATYNLEGEKAFVnSPSSKRKVRSFVKRLTVYNQVIDFDPDYPPIPGVVNGpGFAYVPRSPEDDNFMMKIRPGVRVTNVGNRIWRLP----------\n>UniRef90_UPI001CEE0892/1-53 [subseq from] GlnK2 from Methanothermococcus thermolithotrophicus n=2 Tax=Methanothermococcus thermolithotrophicus TaxID=2186 RepID=UPI001CEE0892\nMGSSHHHHHHSSGLVPRGSHMK-KVE--AII-RPERLDIVKNSLTDAGYVGMTVSEV--------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000022403F/1-41 [subseq from] PHOTOSYNTHETIC APPARATUS REGULATORY PROTEIN n=1 Tax=Cereibacter sphaeroides TaxID=1063 RepID=UPI000022403F\nMGSSHHHHHHSSGLVPRGSHMLAKGES---LPPPPENPMSADRV---------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001FBA1BD/1-29 [subseq from] Outer membrane protein icsA autotransporter n=1 Tax=Shigella flexneri TaxID=623 RepID=UPI0001FBA1BD\nMGSSHHHHHHSSGLVPRGSHMSGTVLINN------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A1E8Q0Q7/21-120 [subseq from] SnoaL-like domain-containing protein n=2 Tax=Mycobacterium grossiae TaxID=1552759 RepID=A0A1E8Q0Q7_9MYCO\n----------------------------------------------------------------------------------DIVRSSFPFDVQPDHQADAFHYALHEHGDFIATGG-RDWPEDRRRGLRSFYAMLGQESLVITYDPR----Q-----GWGHEQRQRADGDLIVRIEDPT---HEQELIWAFPPD--------\n>UniRef90_UPI0001F2FE3E/1-34 [subseq from] Integrin beta-3 n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI0001F2FE3E\nMGSSHHHHHHSSGLVPRGSHMSPEcLIWKLLITI--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001753A22/1-56 [subseq from] Nucleolar protein 3 n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0001753A22\nMGSSHHHHHHSSGLVPRGSHMS-KLPAKRYRITMKNLPegCSWQDLKDLARENSLET----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011B93420/1-53 [subseq from] Protein A n=1 Tax=Staphylococcus aureus TaxID=1280 RepID=UPI0011B93420\nMGSSHHHHHHSSGLVPRGSHMEK-LM-KAFQSLAFFEILNMPNLNEAQRNGFIQS----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011B933D9/1-49 [subseq from] SpA IgG-binding domain protein,Protein A n=4 Tax=Staphylococcus aureus TaxID=1280 RepID=UPI0011B933D9\nMGSSHHHHHHSSGLVPRGSHMFNKDQQSAFYEI-----LNMPNLNEAQRNGFIQ-----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00053BD53B/1-37 [subseq from] Ribonuclease E n=1 Tax=Caulobacter vibrioides (strain ATCC 19089 / CB15) TaxID=190650 RepID=UPI00053BD53B\nMGSSHHHHHHSSGLVPRGSHMSKKMLIDAAHAEETRV----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00210EB7BC/9-75 [subseq from] hypothetical protein n=2 Tax=Rhodococcus TaxID=1827 RepID=UPI00210EB7BC\n--------------------------------------------------------------------------------------------------------------------------------LRDFYDILREFDSVLEYDPRVRPLPGLCfDGGFRLVTRVSADRDLVIRLNEFTITQELDSKLWAIPG---------\n>UniRef90_A0A4S2SAK8/4-125 [subseq from] Immunity repressor n=1 Tax=Streptomyces sp. A1547 TaxID=2563105 RepID=A0A4S2SAK8_9ACTN\n------------------------------------------------------EQIAEMYGVTKGAVYWQLRDS-GQTKKRPDHKRFIPWTVKTEHAHARPVMMLRLLSR--KESGDETIPDVKVRMLTKWLGEVREADVVVCYDRSMPPNPASpSTGGFYYSKRRPEDGDSIIRFDP-------------------------\n>UniRef90_UPI0010FFCD7E/1-82 [subseq from] Protein of uncharacterized function (DUF1076) n=1 Tax=Salmonella typhi TaxID=90370 RepID=UPI0010FFCD7E\nMGSSHHHHHHSSGLVPRGSHMFLTFPNVAIT-RDNRIdKLSENDLELIRDTAIQnggrkiQVQLRDlLYEVSNRAVEGDNNTF--------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0006730520/1-66 [subseq from] Cellulosomal scaffoldin n=2 Tax=Acetivibrio cellulolyticus TaxID=35830 RepID=UPI0006730520\nMGSSHHHHHHSSGLVPRGSHMASGIVSEGTTVSGYINPdfVTTSTTAPIVKAGFT----VEIVGTTKSAV---------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001E67DF87/1-56 [subseq from] Baculoviral IAP repeat-containing protein 3 n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI001E67DF87\nMGSSHHHHHHSSGLVPRGSHMLScELYRMSTySTFPAGVPV--SE-RSLARAGFYYTGV--------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A249XTE2/70-104 [subseq from] Prophage protein n=1 Tax=Mycobacterium phage MissWhite TaxID=2024297 RepID=A0A249XTE2_9CAUD\n-----------------------------------------------------------------------------------------------------------------------------------------------------------------------DDcGDLLIRVNEYTNLTDEGEMIWCWPPDIEEILA--\n>UniRef90_UPI00001112FB/1-55 [subseq from] NUCLEOSIDE DIPHOSPHATE KINASE n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI00001112FB\nMGSSHHHHHHSSGLVPRGSHMGTRERTLvAVKPDGVQRRLVGDVIQRFERRGFTL-----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000455FFB7/1-53 [subseq from] Proto-oncogene tyrosine-protein kinase Src n=2 Tax=Gallus gallus TaxID=9031 RepID=UPI000455FFB7\nMGSSHHHHHHSSGLVPRGSHMTFVALYDYVAS--GETDLSFKKGERLQIVGYNHG----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00021E7B5E/1-29 [subseq from] Protein Dicer n=1 Tax=Schizosaccharomyces pombe TaxID=4896 RepID=UPI00021E7B5E\nMGSSHHHHHHSSGLVPRGSHMKGDIEHKV------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000F62C1BA/1-35 [subseq from] BPSL2520 n=1 Tax=Burkholderia pseudomallei (strain K96243) TaxID=272560 RepID=UPI000F62C1BA\nMGSSHHHHHHSSGLVPRGSHMAQSLSNQTSAPAAA------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00006830C1/1-47 [subseq from] Ataxin-2-binding protein 1 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI00006830C1\nMGSSHHHHHHSSGLVPRGSHMNTENKSQPKRLHVSNIPFRFRD-PDLR-----------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001019E95F/1-49 [subseq from] Archeal Protein MK0293 n=1 Tax=Methanopyrus kandleri (strain AV19 / DSM 6324 / JCM 9639 / NBRC 100938) TaxID=190192 RepID=UPI001019E95F\nMGSSHHHHHHSSGLVPRGSHMVpSRFEDVRVVQvvAGWRVSVKIAETEE-------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A4S2RLF9/29-141 [subseq from] Immunity repressor n=1 Tax=Streptomyces sp. A1277 TaxID=2563103 RepID=A0A4S2RLF9_9ACTN\n--------------------------------------------------------YKRRYGIDTGPSMWGNFRYREGLDRR-ITRddELIPWAVKKEHRQPYPIVMLRVEAR-RRAG--LPLDENRTKRLASWKKMLEDNNAVVHYDPDTEE-------GWFYVPRDEGDDDIIRRPAN-------------------------\n>UniRef90_UPI001E281B94/1-28 [subseq from] Network hallucinated protein 0217 n=1 Tax=synthetic construct TaxID=32630 RepID=UPI001E281B94\nMGSSHHHHHHSSGLVPRGSHMSP-IARQA------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0004DC97F9/1-48 [subseq from] Lysine-specific demethylase 4B n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0004DC97F9\nMGSSHHHHHHSSGLVPRGSHMG-SEDHGAQNPSCKIMTFrpTMEEFKDF------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001BB46F96/1-61 [subseq from] Serine protease HTRA1 n=5 Tax=Homo sapiens TaxID=9606 RepID=UPI001BB46F96\nMGSSHHHHHHSSGLVPRGSHMDpNSLRHKYnfIARVVEKIAPAVVHIELFRKLPFSKREVP-------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI002038EC82/1-55 [subseq from] 3C PROTEASE n=1 Tax=Senecavirus A TaxID=390157 RepID=UPI002038EC82\nMGSSHHHHHHSSGLVPRGSHMQPNVDMgfEAAVAKKVVVPITF--MVPNRPSGLTQS----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000277549B/1-30 [subseq from] Peroxiredoxin TSA1 n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI000277549B\nMGSSHHHHHHSSGLVPRGSHMVAQVQKQAP-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000049E3C0/1-48 [subseq from] ADENYLATE CYCLASE n=2 Tax=Arthrospira platensis TaxID=118562 RepID=UPI000049E3C0\nMGSSHHHHHHSSGLVPRGSHMGDLT--LDLRPEPRLITILFSDIVGFTRM---------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00147789EE/1-34 [subseq from] Transcriptional regulator MvfR n=2 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI00147789EE\nMGSSHHHHHHSSGLVPRGSHMASNLRVLLDTAIP-------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001FBA1D2/1-42 [subseq from] 7,8-dihydro-8-oxoguanine triphosphatase n=5 Tax=Boreoeutheria TaxID=1437010 RepID=UPI0001FBA1D2\nMGSSHHHHHHSSGLVPRGSHMGASrLYTLVLVLQPQRVLLGM------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00067E64C9/1-28 [subseq from] DNA-binding response regulator n=1 Tax=Mycobacterium tuberculosis CAS/NITR204 TaxID=1310114 RepID=UPI00067E64C9\nMGSSHHHHHHSSGLVPRGSHMKGNKEPR-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000332EA76/1-81 [subseq from] Oxygen sensor protein DosP n=1 Tax=Escherichia coli (strain K12) TaxID=83333 RepID=UPI000332EA76\nMGSSHHHHHHSSGLVPRGSHMFFSpamnemVKERLVLGAALKEAISNNQLKLVYQPQ-IFAETGELYGIEAL-ARWHDPLHGH------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001CFCCF83/4-127 [subseq from] hypothetical protein n=1 Tax=Streptomyces sp. SMC 277 TaxID=2883108 RepID=UPI001CFCCF83\n------------------------------------------------------EQIAEMYGVTKGAVYWQLRD-SGQTKKRPDHKRYLPWTVKAEHAHARPAMMLRLLS---RQESGDTTIPDVKARMLaKWLGEVRKADVVVCYDRSMPPNPASPnTGGFYYSKRRPEDDaKSLIRFNPK------------------------\n>UniRef90_UPI00028BC7B8/1-53 [subseq from] EPA1P n=6 Tax=Candida glabrata TaxID=5478 RepID=UPI00028BC7B8\nMGSSHHHHHHSSGLVPRGSHMTSSNDISLASKDPTTFPLGCSPDITTPKKGLS------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011B93422/1-43 [subseq from] 3LRH intrabody n=3 Tax=Homo sapiens TaxID=9606 RepID=UPI0011B93422\nMGSSHHHHHHSSGLVPRGSHMGSQpvlTQSPSVSAAP-RQRVTI------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001E929C9/1-54 [subseq from] Nucleoside diphosphate kinase A n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0001E929C9\nMGSSHHHHHHSSGLVPRGSHMANCERtFIAIKPDGVQRGLVGEIIKRFEQKGFR------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0010A1F823/1-30 [subseq from] Calmodulin n=1 Tax=Bos taurus TaxID=9913 RepID=UPI0010A1F823\nMGSSHHHHHHSSGLVPRGSHMADQLTEEQI-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000BB3E671/1-24 [subseq from] Bot.0671.2 n=1 Tax=unidentified TaxID=32644 RepID=UPI000BB3E671\nMGSSHHHHHHSSGLVPRGSHMQPM-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A1G6MJB6/62-139 [subseq from] Immunity repressor n=2 Tax=Streptomyces prasinopilosus TaxID=67344 RepID=A0A1G6MJB6_9ACTN\n----------------------------------------------------------------------------------------IPWAVELRHRHLYPLTMLRVEA---RARAGMSLDQDSRKRLESWWSMLTRDGVVVHYDPAA-------EGGFSYVPREEADDDIIRRP---------------------------\n>UniRef90_UPI00029DD249/1-25 [subseq from] Beta-N-acetylhexosaminidase n=1 Tax=Streptococcus pneumoniae TaxID=1313 RepID=UPI00029DD249\nMGSSHHHHHHSSGLVPRGSHMSLDE----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001A9A2C16/1-28 [subseq from] Myomesin-1 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI001A9A2C16\nMGSSHHHHHHSSGLVPRGSHMKSELAVE-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000112257/1-28 [subseq from] ARF guanine-nucleotide exchange factor 2 n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0000112257\nMGSSHHHHHHSSGLVPRGSHMDRKTEFI-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002274E79/1-47 [subseq from] BETA-N-ACETYLHEXOSAMINIDASE n=6 Tax=Streptococcus pneumoniae serotype 4 (strain ATCC BAA-334 / TIGR4) TaxID=170187 RepID=UPI0002274E79\nMGSSHHHHHHSSGLVPRGSHMEKLAKNKVISIDAGRKYFTLNQLKRI------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0014612D4C/1-24 [subseq from] De novo designed WSHC6 n=2 Tax=synthetic construct TaxID=32630 RepID=UPI0014612D4C\nMGSSHHHHHHSSGLVPRGSHMTED-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000BACEC1A/1-30 [subseq from] Chemotaxis protein n=1 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI000BACEC1A\nMGSSHHHHHHSSGLVPRGSHMNDYLQRNAI-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001BE6478/1-28 [subseq from] Suppressor of yeast profilin deletion n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0001BE6478\nMGSSHHHHHHSSGLVPRGSHMASMTEQR-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0021506BE7/1-41 [subseq from] Peptidyl-prolyl cis-trans isomerase A n=1 Tax=Escherichia coli (strain K12) TaxID=83333 RepID=UPI0021506BE7\nMGSSHHHHHHSSGLVPRGSHMAKGDPHVLLTTSAGNIELEL------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0019203BAE/1-30 [subseq from] Cyanate hydratase n=1 Tax=Thermomyces lanuginosus TaxID=5541 RepID=UPI0019203BAE\nMGSSHHHHHHSSGLVPRGSHMADI-ATLDVT----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000B803003/1-22 [subseq from] EEHEE_rd3_1049 n=1 Tax=Escherichia coli TaxID=562 RepID=UPI000B803003\nMGSSHHHHHHSSGLVPRGSHMT-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000641887F/1-37 [subseq from] DNA nucleotidylexotransferase n=4 Tax=Mus musculus TaxID=10090 RepID=UPI000641887F\nMGSSHHHHHHSSGLVPRGSHMSPsPVPGSQNVPAPAV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00005C40F5/1-30 [subseq from] Polypyrimidine tract-binding protein 1 n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI00005C40F5\nMGSSHHHHHHSSGLVPRGSHMGDS--RSAGVP---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00024DB0D6/1-26 [subseq from] Mitochondrial division protein 1 n=1 Tax=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) TaxID=559292 RepID=UPI00024DB0D6\nMGSSHHHHHHSSGLVPRGSHMDNKTC---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00143F05B5/1-33 [subseq from] Phthiocerol synthesis polyketide synthase type I PpsC n=1 Tax=Mycobacteroides abscessus (strain ATCC 19977 / DSM 44196 / CIP 104536 / JCM 13569 / NCTC 13031 / TMC 1543) TaxID=561007 RepID=UPI00143F05B5\nMGSSHHHHHHSSGLVPRGSHMAIRAQLDALDAA--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0018EA31CC/1-26 [subseq from] LPXTG cell wall anchor domain-containing protein n=1 Tax=Lacticaseibacillus rhamnosus TaxID=47715 RepID=UPI0018EA31CC\nMGSSHHHHHHSSGLVPRGSHMAATVP---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00003B0ECE/1-43 [subseq from] FK506-binding protein 4 n=3 Tax=Homo sapiens TaxID=9606 RepID=UPI00003B0ECE\nMGSSHHHHHHSSGLVPRGSHMTAE-EMKATESGAQSAPLPMEGV---------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001E281C6A/1-58 [subseq from] Sortase n=6 Tax=Bacilli TaxID=91061 RepID=UPI001E281C6A\nMGSSHHHHHHSSGLVPRGSHMVLQAQMAAQqLPVIGGIAIPELGINLPIFKGLGNTEL--------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00017541D7/1-22 [subseq from] Histone acetyltransferase ESA1 n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI00017541D7\nMGSSHHHHHHSSGLVPRGSHMS-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0020005BA5/1-66 [subseq from] Leucine-rich repeat receptor-like serine/threonine/tyrosine-protein kinase SOBIR1 n=2 Tax=Arabidopsis thaliana TaxID=3702 RepID=UPI0020005BA5\nMGSSHHHHHHSSGLVPRGSHMSifSPLIKKAEDLAFLENEEALASLEIIGRGGCGEVFKAELPGSN-------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002ADD622/1-30 [subseq from] Methyl-accepting chemotaxis protein n=2 Tax=Nostoc sp. (strain PCC 7120 / SAG 25.82 / UTEX 2576) TaxID=103690 RepID=UPI0002ADD622\nMGSSHHHHHHSSGLVPRGSHMAvSKVMEKI------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002C39233/1-31 [subseq from] Polyketide synthase extender modules 3-4 n=1 Tax=Saccharopolyspora spinosa TaxID=60894 RepID=UPI0002C39233\nMGSSHHHHHHSSGLVPRGSHMAASDEARAVS----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0010A1F8CB/1-45 [subseq from] Low calcium response E n=2 Tax=Chlamydia pneumoniae TaxID=83558 RepID=UPI0010A1F8CB\nMGSSHHHHHHSSGLVPRGSHMSESTEEKPDTDLADKYASGNSEIS--------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000181CF8D/1-29 [subseq from] Phenylalanyl-tRNA synthetase alpha chain n=1 Tax=Staphylococcus haemolyticus TaxID=1283 RepID=UPI000181CF8D\nMGSSHHHHHHSSGLVPRGSHMGTELMEKL------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A839QCJ4/15-75 [subseq from] DUF2794 domain-containing protein n=2 Tax=Mycolicibacterium iranicum TaxID=912594 RepID=A0A839QCJ4_MYCIR\n-------------------------------------------------------------------------------------------------------------------------------RLRGFYRRLI--DQVVEFDPSIPPIARVrRRGGWAYRPRMPEDGDLLIRVNEYAELTVVGRQI--------------\n>UniRef90_UPI0000D5BE35/1-32 [subseq from] Outer capsid protein VP4 n=1 Tax=Rotavirus A (strain RVA/Monkey/United States/RRV/1975/G3P5B[3]) TaxID=444185 RepID=UPI0000D5BE35\nMGSSHHHHHHSSGLVPRGSHMRAQANEDIVVS---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00003CEC09/1-24 [subseq from] conserved protein MTH187 n=1 Tax=Methanothermobacter thermautotrophicus TaxID=145262 RepID=UPI00003CEC09\nMGSSHHHHHHSSGLVPRGSHMADE-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001EFF5E63/1-29 [subseq from] Fatty Acid Kinase A n=1 Tax=Staphylococcus aureus TaxID=1280 RepID=UPI001EFF5E63\nMGSSHHHHHHSSGLVPRGSHMISKINGKL------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00035AC9A8/1-28 [subseq from] Tyrosine-protein phosphatase non-receptor type 22 n=6 Tax=Homo sapiens TaxID=9606 RepID=UPI00035AC9A8\nMGSSHHHHHHSSGLVPRGSHMASMDQRE-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001F5504D/1-34 [subseq from] Transcriptional regulator LrhA n=1 Tax=Yersinia pseudotuberculosis serotype O:1b (strain IP 31758) TaxID=349747 RepID=UPI0001F5504D\nMGSSHHHHHHSSGLVPRGSHMYSNMEGSLIIGAS-------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0015A75A21/1-38 [subseq from] VP1 n=1 Tax=New Jersey polyomavirus-2013 TaxID=1497391 RepID=UPI0015A75A21\nMGSSHHHHHHSSGLVPRGSHMlDGGVEVLNIITGPDAT----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0004437F2A/1-38 [subseq from] Sodium channel protein type 2 subunit alpha n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI0004437F2A\nMGSSHHHHHHSSGLVPRGSHMASE--NFSVATEESAEPLS-------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000E2E41C5/1-37 [subseq from] Artificial L-threonine 3-dehydrogenase n=2 Tax=synthetic construct TaxID=32630 RepID=UPI000E2E41C5\nMGSSHHHHHHSSGLVPRGSHMEAGKEKILIIGACGQI----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0007AC51B1/1-55 [subseq from] Ubiquitin carboxyl-terminal hydrolase 25 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0007AC51B1\nMGSSHHHHHHSSGLVPRGSHMTVEQNVLQQSAAQKHQQTFLNQLREI--TGINDTQI--------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0015F35244/11-57 [subseq from] Regulatory protein NPR4 n=1 Tax=Arabidopsis thaliana TaxID=3702 RepID=UPI0015F35244\nMGSSHHHHHHSSGLVPRGSHSE-NLYFQSMEPSKYRLCIDILERE-IRR----------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00084CE62A/1-30 [subseq from] LD10117p n=1 Tax=Drosophila melanogaster TaxID=7227 RepID=UPI00084CE62A\nMGSSHHHHHHSSGLVPRGSHMASMPYHRGG-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000B4966A0/1-26 [subseq from] Methionine-tRNA ligase n=1 Tax=Nanoarchaeum equitans (strain Kin4-M) TaxID=228908 RepID=UPI000B4966A0\nMGSSHHHHHHSSGLVPRGSHMEKAEE---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001D63BC9/1-30 [subseq from] Toxin coregulated pilin n=1 Tax=Vibrio cholerae TaxID=666 RepID=UPI0001D63BC9\nMGSSHHHHHHSSGLVPRGSHMDSQNMTKAA-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00024BBD1A/1-30 [subseq from] KLLA0E08119p n=1 Tax=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) TaxID=284590 RepID=UPI00024BBD1A\nMGSSHHHHHHSSGLVPRGSHMASEAQKKKP-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000252CAAA/1-24 [subseq from] Ankyrin repeat and SAM domain-containing protein 1A n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI000252CAAA\nMGSSHHHHHHSSGLVPRGSHMISG-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0021C4C927/1-39 [subseq from] alpha-1,3-mannosyl-glycoprotein 4-beta-N-acetylglucosaminyltransferase A-like isoform X2 n=1 Tax=Bombyx mandarina TaxID=7092 RepID=UPI0021C4C927\nMGSSHHHHHHSSGLVPRGSHMQSYFPHQN--PPAQKITTTI------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000453B3A3/1-25 [subseq from] Transcription regulator GlnR n=1 Tax=Amycolatopsis mediterranei TaxID=33910 RepID=UPI000453B3A3\nMGSSHHHHHHSSGLVPRGSHMSLDL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_A0A1F1L0P9/3-114 [subseq from] N-acetylmuramoyl-L-alanine amidase n=2 Tax=Corynebacterium sp. HMSC04H06 TaxID=1581050 RepID=A0A1F1L0P9_9CORY\n-----------------------------------------------------------------------------------IINDNLPWKVGGAYQDNTIYQGIRLIAHYNLEGERAFEGRPtNLRKLKAIMRKLHVFQQVVDFDPEYPAVPGVVNGpGFAYVPRTPRDKDLAIKIKPSLRFTRLGETLWKLP----------\n>UniRef90_UPI0001FBA1BA/1-63 [subseq from] Dockerin type 1 n=2 Tax=Acetivibrio thermocellus (strain ATCC 27405 / DSM 1237 / JCM 9322 / NBRC 103400 / NCIMB 10682 / NRRL B-4536 / VPI 7372) TaxID=203119 RepID=UPI0001FBA1BA\nMGSSHHHHHHSSGLVPRGSHMASPANTQSGILNDGYFPPGTSKHELIARA--SSLKVSEVKAIIK------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000255FFA7/1-24 [subseq from] ALPHA-N-ACETYLGLUCOSAMINIDASE FAMILY PROTEIN n=1 Tax=Clostridium perfringens TaxID=1502 RepID=UPI000255FFA7\nMGSSHHHHHHSSGLVPRGSHMASE-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00028BC762/1-33 [subseq from] FLOCCULATION PROTEIN FLO5 n=4 Tax=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) TaxID=559292 RepID=UPI00028BC762\nMGSSHHHHHHSSGLVPRGSHMSGATE--ACLPAGQ------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001B3581E8/1-24 [subseq from] Phototropin-2 n=2 Tax=Arabidopsis thaliana TaxID=3702 RepID=UPI001B3581E8\nMGSSHHHHHHSSGLVPRGSHMIEK-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001179F43A/1-26 [subseq from] hypothetical protein n=1 Tax=Ligilactobacillus ruminis TaxID=1623 RepID=UPI001179F43A\nMGSSHHHHHHSSGLVPRGSHMASMTG---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00006912AB/1-25 [subseq from] Dormancy Survival Regulator n=2 Tax=Mycobacterium tuberculosis TaxID=1773 RepID=UPI00006912AB\nMGSSHHHHHHSSGLVPRGSHMQDPL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001C68731A/1-37 [subseq from] L-threonine 3-dehydrogenase n=1 Tax=synthetic construct TaxID=32630 RepID=UPI001C68731A\nMGSSHHHHHHSSGLVPRGSHMEAGKEKILIVGACGQI----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002003D23/1-31 [subseq from] Immunoglobulin-binding protein 1 n=1 Tax=Mus musculus TaxID=10090 RepID=UPI0002003D23\nMGSSHHHHHHSSGLVPRGSHMAASEDE-LLLP---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00026048F8/1-25 [subseq from] Response regulator n=1 Tax=Streptococcus pneumoniae (strain ATCC BAA-255 / R6) TaxID=171101 RepID=UPI00026048F8\nMGSSHHHHHHSSGLVPRGSHMKVLV----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001B02B1C/1-50 [subseq from] cAMP-specific 3',5'-cyclic phosphodiesterase 4A n=3 Tax=Homo sapiens TaxID=9606 RepID=UPI0001B02B1C\nMGSSHHHHHHSSGLVPRGSHMN--IPRFGVKT--DQEELLAQELENLNKWGLNI-----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000358FD2D/1-53 [subseq from] Tuberous sclerosis 1 protein homolog n=2 Tax=Schizosaccharomyces pombe (strain 972 / ATCC 24843) TaxID=284812 RepID=UPI000358FD2D\nMGSSHHHHHHSSGLVPRGSHSENLYFQSHMMPLQSLVKALWNVLHEEESEGYP------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00065F26DF/1-28 [subseq from] SORTASE FAMILY PROTEIN n=1 Tax=Clostridium perfringens TaxID=1502 RepID=UPI00065F26DF\nMGSSHHHHHHSSGLVPRGSHM-GKLYKSS------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002250D66/1-22 [subseq from] DBF4 n=2 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0002250D66\nMGSSHHHHHHSSGLVPRGSHMK-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001F4DC37/1-30 [subseq from] Otoferlin n=1 Tax=Rattus norvegicus TaxID=10116 RepID=UPI0001F4DC37\nMGSSHHHHHHSSGLVPRGSHMALIVHLKTV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000688194/1-27 [subseq from] Vts1p n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0000688194\nMGSSHHHHHHSSGLVPRGSHMPKSLTD--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000BB3E6B2/1-30 [subseq from] Chemotactic transducer PctC n=1 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI000BB3E6B2\nMGSSHHHHHHSSGLVPRGSHMNDYRQREAV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00084CE623/1-29 [subseq from] Oxysterols receptor LXR-beta n=10 Tax=Homo sapiens TaxID=9606 RepID=UPI00084CE623\nMGSSHHHHHHSSGLVPRGSHMGEGVQLTA------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001DBB657/1-25 [subseq from] INHIBITOR OF CYSTEINE PEPTIDASE COMPND 3 n=2 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI0001DBB657\nMGSSHHHHHHSSGLVPRGSHMQKPV----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00207589D6/29-144 [subseq from] hypothetical protein n=1 Tax=Streptomyces sp. STCH 565 A TaxID=2950532 RepID=UPI00207589D6\n--------------------------------------------------------YRRKYNIEMKPSAWGNFRYRKGLA-RRIARDDalIPWAVKKEHRALYPLMMLRLEGR-KRAG--LPIDDDKTKRLESWHQMLKEEDAVVHYDPETD-------DGFFYVPREAGDKDIIREPEKATT----------------------\n>UniRef90_UPI0014778975/1-25 [subseq from] Thioredoxin-like 2-1, chloroplastic n=2 Tax=Arabidopsis thaliana TaxID=3702 RepID=UPI0014778975\nMGSSHHHHHHSSGLVPRGSHMVQAL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000A276D5A/1-57 [subseq from] Noranthrone synthase n=2 Tax=Aspergillus parasiticus TaxID=5067 RepID=UPI000A276D5A\nMGSSHHHHHHSSGLVPRGSHMEIKTTttlHRVVEETTKPLGATLVVETDISRKDVNG-----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000987D719/1-25 [subseq from] Flocculation protein FLO11 n=2 Tax=Komagataella phaffii (strain GS115 / ATCC 20864) TaxID=644223 RepID=UPI000987D719\nMGSSHHHHHHSSGLVPRGSHMSsGK-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000776AD91/1-22 [subseq from] Chromobox protein homolog 7 n=2 Tax=Mus musculus TaxID=10090 RepID=UPI000776AD91\nMGSSHHHHHHSSGLVPRGSHME-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001753A55/1-26 [subseq from] Capsid protein p24 (CA) n=2 Tax=Human immunodeficiency virus 1 TaxID=11676 RepID=UPI0001753A55\nMGSSHHHHHHSSGLVPRGSHMTSILD---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000418D6F/1-33 [subseq from] mitofusin 1 n=1 Tax=Mus musculus TaxID=10090 RepID=UPI0000418D6F\n-GSSHHHHHHSSGLVPRGSHMftSANCSHQVQQE---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000683590/1-54 [subseq from] cAMP-specific 3',5'-cyclic phosphodiesterase 4B n=5 Tax=Homo sapiens TaxID=9606 RepID=UPI0000683590\nMGSSHHHHHHSSGLVPRGSHMS--ISRFG-VNTENEDHL-AKELEDLNKWGLNIFNVA-------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001DD3770/1-24 [subseq from] Non-structural protein 5 n=1 Tax=West Nile virus TaxID=11082 RepID=UPI0001DD3770\nMGSSHHHHHHSSGLVPRGSHMGGA-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001E1E23E4/1-32 [subseq from] Poly(Aspartic acid) hydrolase n=1 Tax=Sphingomonas sp. KT-1 TaxID=88363 RepID=UPI001E1E23E4\nMGSSHHHHHHSSGLVPRGSHMAPKAKPEAVLK---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0004437F07/1-26 [subseq from] Poly(A)-binding protein 1 n=1 Tax=Citrus sinensis TaxID=2711 RepID=UPI0004437F07\nMGSSHHHHHHSSGLVPRGSHMGSDLE---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00045EDE79/1-36 [subseq from] Sodium channel protein type 5 subunit alpha n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI00045EDE79\nMGSSHHHHHHSSGLVPRGSHMASE--NFSVATEESTEP---------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000181BA1A/1-24 [subseq from] Prod 1 n=1 Tax=Notophthalmus viridescens TaxID=8316 RepID=UPI000181BA1A\nMGSSHHHHHHSSGLVPRGSHMALK-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00143F05D7/1-37 [subseq from] ATP-dependent DNA helicase Q1 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI00143F05D7\nMGSSHHHHHHSSGLVPRGSHMNRPNLYYEVRQKPSNT----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001CFC46C3/1-25 [subseq from] Transmembrane emp24 domain-containing protein 1 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI001CFC46C3\nMGSSHHHHHHSSGLVPRGSHMENLY----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002AB7FC9/1-27 [subseq from] Optineurin n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0002AB7FC9\nMGSSHHHHHHSSGLVPRGSHMASIPIH--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000181D39E/1-32 [subseq from] Tumor necrosis factor, alpha-induced protein 3 n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI000181D39E\nMGSSHHHHHHSSGLVPRGSHMAEQVLPQALYL---------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011B933C8/1-23 [subseq from] Immunoglobulin G-binding protein A n=1 Tax=Staphylococcus aureus (strain NCTC 8325 / PS 47) TaxID=93061 RepID=UPI0011B933C8\nMGSSHHHHHHSSGLVPRGSHMKE------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001D0C440/1-21 [subseq from] Invasin ipaB n=1 Tax=Shigella flexneri TaxID=623 RepID=UPI0001D0C440\nMGSSHHHHHHSSGLVPRGSHM--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0009FB94D6/1-24 [subseq from] Caspase n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0009FB94D6\nMGSSHHHHHHSSGLVPRGSHMASM-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00080A7F5F/1-34 [subseq from] CEP104 n=1 Tax=Gallus gallus TaxID=9031 RepID=UPI00080A7F5F\nMGSSHHHHHHSSGLVPRGSHMEPEpLSEKALREA--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0010849558/1-38 [subseq from] Putative copper-type nitrite reductase n=1 Tax=Candidatus Jettenia caeni TaxID=247490 RepID=UPI0010849558\nMGSSHHHHHHSSGLVPRGSHMVDVISNVAKDPAdiPGR-----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011E8A1BE/1-51 [subseq from] Poly(ethylene terephthalate) hydrolase n=20 Tax=root TaxID=1 RepID=UPI0011E8A1BE\nMGSSHHHHHHSSGLVPRGSHMRGPNPTAASLEA-SAGPFTVRSFTVSRPSGY-------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003903F5A/1-35 [subseq from] Protein disulfide-isomerase A6 n=2 Tax=Homo sapiens TaxID=9606 RepID=UPI0003903F5A\nMGSSHHHHHHSSGLVPRGSHMLYSSSDDVIELTPS------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001E929C0/1-24 [subseq from] DNA gyrase subunit A n=1 Tax=Aliivibrio fischeri (strain ATCC 700601 / ES114) TaxID=312309 RepID=UPI0001E929C0\nMGSSHHHHHHSSGLVPRGSHMTRR-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00017540C5/1-23 [subseq from] Baculoviral IAP repeat-containing protein 4 n=5 Tax=Homo sapiens TaxID=9606 RepID=UPI00017540C5\nMGSSHHHHHHSSGLVPRGSHMKT------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0013AE86D4/1-36 [subseq from] Small nuclear ribonucleoprotein Sm D3 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0013AE86D4\nMGSSHHHHHHSSGLVPRGSHMSIGVPIKVLHEAEGH-----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00038A5F49/1-24 [subseq from] Virulence regulon transcriptional activator virB n=1 Tax=Shigella flexneri 2a TaxID=42897 RepID=UPI00038A5F49\nMGSSHHHHHHSSGLVPRGSHMAKE-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00024BBD3D/1-22 [subseq from] Clathrin heavy chain 1 n=1 Tax=Bos taurus TaxID=9913 RepID=UPI00024BBD3D\nMGSSHHHHHHSSGLVPRGSHMW-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00187D6E42/1-64 [subseq from] Histidine kinase n=14 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI00187D6E42\nMGSSHHHHHHSSGLVPAGSHMDAApVAAGQEILLVEDNPVNQTVIEAmLRSLGYRVTLVADGIQ---------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0013F595D9/1-23 [subseq from] sohair n=1 Tax=synthetic construct TaxID=32630 RepID=UPI0013F595D9\nMGSSHHHHHHSSGLVPRGSHMMT------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00052E48DD/1-22 [subseq from] Acetylglutamate kinase n=2 Tax=Xylella fastidiosa (strain Temecula1 / ATCC 700964) TaxID=183190 RepID=UPI00052E48DD\nMGSSHHHHHHSSGLVPRGSHMV-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003994EAD/1-23 [subseq from] AdpA n=1 Tax=Streptomyces griseus TaxID=1911 RepID=UPI0003994EAD\nMGSSHHHHHHSSGLVPRGSHMGQ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000B549576/1-24 [subseq from] TAR DNA-binding protein 43 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI000B549576\nMGSSHHHHHHSSGLVPRGSHMASS-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000181CCAF/1-23 [subseq from] Pyrrolysyl-tRNA synthetase n=13 Tax=Methanosarcina mazei TaxID=2209 RepID=UPI000181CCAF\nMGSSHHHHHHSSGLVPRGSHMAS------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00006687B8/1-23 [subseq from] Hypothetical protein ydhA n=1 Tax=Escherichia coli (strain K12) TaxID=83333 RepID=UPI00006687B8\nMGSSHHHHHHSSGLVPRGSHMQT------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001C4DD96F/1-25 [subseq from] Heat shock protein n=1 Tax=Synechococcus phage S-ShM2 TaxID=445683 RepID=UPI001C4DD96F\nMGSSHHHHHHSSGLVPRGSHMASVV----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0011329FBA/1-35 [subseq from] Type I modular polyketide synthase n=1 Tax=Streptomyces albus subsp. albus TaxID=67257 RepID=UPI0011329FBA\nMGSSHHHHHHSSGLVPRGSHMGAPESvPGETVPAA-------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00027B2CC8/1-25 [subseq from] TolA protein n=1 Tax=Vibrio cholerae serotype O1 (strain ATCC 39541 / Classical Ogawa 395 / O395) TaxID=345073 RepID=UPI00027B2CC8\nMGSSHHHHHHSSGLVPRGSHMPNDI----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00017539F8/1-38 [subseq from] Myomesin-1 n=1 Tax=Mus musculus TaxID=10090 RepID=UPI00017539F8\n-GSSHHHHHHSSGLVPRGSHMEEEMKRLLALSQEHKFPT--------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00001A38C3/1-31 [subseq from] toxin-coregulated pilus subunit n=1 Tax=Vibrio cholerae TaxID=666 RepID=UPI00001A38C3\nMGSSHHHHHHSSGLVPRGSHMDSQNMTKAAQ----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001FBC1539/1-28 [subseq from] Fibroblast growth factor receptor 4 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI001FBC1539\nMGSSHHHHHHSSGLVPRGSHMSP---HRPIL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00156A73A8/1-25 [subseq from] DNA helicase n=1 Tax=Bacillus subtilis TaxID=1423 RepID=UPI00156A73A8\nMGSSHHHHHHSSGLVPRGSHMRSTR----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0004665C0A/12-136 [subseq from] hypothetical protein n=2 Tax=unclassified Arthrobacter TaxID=235627 RepID=UPI0004665C0A\n------------------------------------------TLRRMRNNDWRLKDIAKEYGVTEAAV-WKALDRANLVQGRTTYSEILPWKILPEHRATNIMVMFR---RILRQRKGEVLPENEQRYLDAWLKTLSDSNVVVNYHPEAPPNDASRKGGFYYVERQPTDKW--------------------------------\n>UniRef90_UPI00058401CA/1-27 [subseq from] Sortase n=3 Tax=Streptococcus pneumoniae TaxID=1313 RepID=UPI00058401CA\nMGSSHHHHHHSSGLVPRGSHMVLTSQW--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001E15DF3/1-25 [subseq from] NUCLEAR POLYADENYLATED RNA-BINDING PROTEIN 3 n=1 Tax=Saccharomyces cerevisiae TaxID=4932 RepID=UPI0001E15DF3\nMGSSHHHHHHSSGLVPRGSHMKSRL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000C122A5D/1-29 [subseq from] Cwp19 n=1 Tax=Clostridioides difficile TaxID=1496 RepID=UPI000C122A5D\nMGSSHHHHHHSSGLVPRGSHMSNDKEMRA------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003847977/1-38 [subseq from] E3 ubiquitin-protein ligase Mdm2 n=6 Tax=Homo sapiens TaxID=9606 RepID=UPI0003847977\n-GSSHHHHHHSSGLVPRGSHMSQipaSEQETLVRPKPLL-----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0018FE02F5/1-46 [subseq from] GGDEF diguanylate cyclase DgcB n=2 Tax=Caulobacter vibrioides (strain NA1000 / CB15N) TaxID=565050 RepID=UPI0018FE02F5\nMGSSHHHHHHSSGLVPRGSHMQSLEAR--LADSTAEVERLREHLEQVR-----------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_X1CVL1/53-87 [subseq from] Sigma-70 family RNA polymerase sigma factor (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=X1CVL1_9ZZZZ\n---------------------------------------TDEQLIELHEQGFNDREIGEQLGTSRSIVSYHRRR---------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_X1CVL1/100-136 [subseq from] Sigma-70 family RNA polymerase sigma factor (Fragment) n=1 Tax=marine sediment metagenome TaxID=412755 RepID=X1CVL1_9ZZZZ\n---------------------------------------TDEQLIDLHEKGLNDREIGEKLGANKMTVSIHRRRLG-------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001A2B807/1-30 [subseq from] HEAT SHOCK PROTEIN HSP 90-ALPHA, n=4 Tax=Homo sapiens TaxID=9606 RepID=UPI0001A2B807\nMGSSHHHHHHSSGLVPRGSHMDQPMEEEEV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001C4E283/1-29 [subseq from] Dedicator of cytokinesis protein 1 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0001C4E283\nMGSSHHHHHHSSGLVPRGSHMPGDVRNDI------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000F58ED5/1-30 [subseq from] Rho-related GTP-binding protein RhoC n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0000F58ED5\nMGSSHHHHHHSSGLVPRGSHMAA-IRKKLVI----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000CCFCAF6/1-33 [subseq from] PEAK1-related kinase-activating pseudokinase 1 n=1 Tax=Rattus norvegicus TaxID=10116 RepID=UPI000CCFCAF6\nMGSSHHHHHHSSGLVPRGSHMSSQLQLHSLLSS--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00126783AB/1-22 [subseq from] Outer membrane protein assembly factor BamA n=1 Tax=Haemophilus influenzae TaxID=727 RepID=UPI00126783AB\nMGSSHHHHHHSSGLVPRGSHML-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001C4E278/1-37 [subseq from] Carbon dioxide concentrating mechanism protein n=2 Tax=Thermosynechococcus vestitus (strain NIES-2133 / IAM M-273 / BP-1) TaxID=197221 RepID=UPI0001C4E278\nMGSSHHHHHHSSGLVPRGSHMA--VQSYAAPPTPWSRDL--------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001CF73AC/1-27 [subseq from] Thiol:disulfide interchange protein dsbE n=1 Tax=Pseudomonas aeruginosa TaxID=287 RepID=UPI0001CF73AC\nMGSSHHHHHHSSGLVPRGSHMLDPSEL--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003994F6B/1-22 [subseq from] Uncharacterized protein n=3 Tax=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) TaxID=208964 RepID=UPI0003994F6B\nMGSSHHHHHHSSGLVPRGSHMD-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001FBC14DB/1-29 [subseq from] Protein capicua homolog n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI001FBC14DB\nMGSSHHHHHHSSGLVPRGSHMDGRSPNKR------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000EF55C67/1-22 [subseq from] BA75_04148T0 n=1 Tax=Komagataella pastoris TaxID=4922 RepID=UPI000EF55C67\nMGSSHHHHHHSSGLVPRGSHMQ-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001C6872CA/1-45 [subseq from] Neurotoxin type E n=1 Tax=Clostridium botulinum TaxID=1491 RepID=UPI001C6872CA\nMGSSHHHHHHSSGLVPRGSHMASMYPYDVPDYAgsNNSIPFKLSS----------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00135F1852/1-28 [subseq from] ParB-like nuclease domain protein n=1 Tax=Myxococcus xanthus (strain DK1622) TaxID=246197 RepID=UPI00135F1852\nMGSSHHHHHHSSGLVPRGSHMPEPEQRL-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00192FB6EC/1-27 [subseq from] F5/8 type C domain protein n=3 Tax=Clostridium perfringens TaxID=1502 RepID=UPI00192FB6EC\nMGSSHHHHHHSSGLVPRGSHMASSHQ--A------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00018BF9D4/1-23 [subseq from] Terminase large subunit n=1 Tax=Escherichia phage RB49 TaxID=50948 RepID=UPI00018BF9D4\nMGSSHHHHHHSSGLVPRGSHMLE------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0021C4C987/1-27 [subseq from] Alpha-1,3-mannosyl-glycoprotein 4-beta-N-acetylglucosaminyltransferase A soluble form n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0021C4C987\nMGSSHHHHHHSSGLVPRGSHMASKIHV--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001EFF5D7A/1-23 [subseq from] Class C sortase n=1 Tax=Lacticaseibacillus rhamnosus TaxID=47715 RepID=UPI001EFF5D7A\nMGSSHHHHHHSSGLVPRGSHMAY------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000255FFA6/1-26 [subseq from] ALPHA-N-ACETYLGLUCOSAMINIDASE FAMILY PROTEIN n=1 Tax=Clostridium perfringens TaxID=1502 RepID=UPI000255FFA6\nMGSSHHHHHHSSGLVPRGSHMASALP---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001643FAE2/1-42 [subseq from] Sporulation and cell division protein SsgA n=1 Tax=Streptomyces sp. Ag82_O1-9 TaxID=1938856 RepID=UPI001643FAE2\nMGSSHHHHHHSSGLVPRGSHMNTTVScelhLRLVVSSESSLP---------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00025C06CB/1-23 [subseq from] Peptidyl-prolyl cis-trans isomerase n=1 Tax=Shewanella sp. SIB1 TaxID=117911 RepID=UPI00025C06CB\nMGSSHHHHHHSSGLVPRGSHMSD------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000453B3EA/1-44 [subseq from] Transcriptional regulatory protein n=1 Tax=Mycobacterium tuberculosis TaxID=1773 RepID=UPI000453B3EA\nMGSSHHHHHHSSGLVPRGSHMlellllTSELYPDPVLPALSLLP---------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001E112B7/1-27 [subseq from] HEAT SHOCK PROTEIN HSP 90-ALPHA n=4 Tax=Homo sapiens TaxID=9606 RepID=UPI0001E112B7\nMGSSHHHHHHSSGLVPRGSHMDQPMEE--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002604936/1-22 [subseq from] Aerotaxis transducer Aer2 n=1 Tax=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) TaxID=208964 RepID=UPI0002604936\nMGSSHHHHHHSSGLVPRGSHMA-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00128E102D/3-116 [subseq from] hypothetical protein n=1 Tax=Corynebacterium aurimucosum TaxID=169292 RepID=UPI00128E102D\n-----------------------------------------------------------------------------------IINDHLPWDIHTsDYQDNTLYQVFRMTATYNLEGEAaFTNSPSSRRKVRSFVKRLTVYQQVVDFNPEYPAIPGIVNGpGFAYVPRSSEDEDFIMKIRPGVRVSNVGNRIWRLPS---------\n>UniRef90_UPI00077B27C7/1-27 [subseq from] beta1_ex1 n=8 Tax=synthetic construct TaxID=32630 RepID=UPI00077B27C7\nMGSSHHHHHHSSGLVPRGSHMNvGEIL---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000877AF95/1-52 [subseq from] ToxR-activated gene (TagE) n=1 Tax=Helicobacter pylori (strain ATCC 700392 / 26695) TaxID=85962 RepID=UPI000877AF95\nMGSSHHHHHHSSGLVPRGSHLDNlnlAQKHLALMLIPNGMPIkTYSAIKPTK-----------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002A1156A/1-50 [subseq from] AusA reductase domain protein n=3 Tax=Staphylococcus aureus TaxID=1280 RepID=UPI0002A1156A\nMGSSHHHHHHSSGLVPRGSHMASMTGGQQMGRDPQslvALPDNLSELQKI------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001F53E34A/1-31 [subseq from] Casein kinase II subunit alpha n=5 Tax=Homo sapiens TaxID=9606 RepID=UPI001F53E34A\nMGSSHHHHHHSSGLVPRGSHMSGPVPSRARV----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000211B3A5/1-23 [subseq from] Precorrin-6y methylase n=1 Tax=Rhodobacter capsulatus (strain ATCC BAA-309 / NBRC 16581 / SB1003) TaxID=272942 RepID=UPI000211B3A5\nMGSSHHHHHHSSGLVPRGSHMSQ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001BE65C2/1-26 [subseq from] Large-conductance mechanosensitive channel n=1 Tax=Staphylococcus aureus (strain MW2) TaxID=196620 RepID=UPI0001BE65C2\nMGSSHHHHHHSSGLVPRGSHMLKEFK---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0005958582/1-23 [subseq from] Type I polyketide synthase AVES 1 n=1 Tax=Streptomyces avermitilis (strain ATCC 31267 / DSM 46492 / JCM 5070 / NBRC 14893 / NCIMB 12804 / NRRL 8165 / MA-4680) TaxID=227882 RepID=UPI0005958582\nMGSSHHHHHHSSGLVPRGSHMQR------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003E5C6BB/1-27 [subseq from] Putative uncharacterized protein n=1 Tax=Pseudomonas putida (strain ATCC 47054 / DSM 6125 / CFBP 8728 / NCIMB 11950 / KT2440) TaxID=160488 RepID=UPI0003E5C6BB\nMGSSHHHHHHSSGLVPRGSHMASHISP--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00166156DC/28-141 [subseq from] hypothetical protein n=1 Tax=Streptomyces grisecoloratus TaxID=2752516 RepID=UPI00166156DC\n-------------------------------------------------------EYRRKYGIDTRLSMWGNFRQR-RGLTRRIARDDdlLPWAVAPQHRQVYAVQMLRLEA---RVRAGMDIEPDKRKRLRSWLETLRRDNTVVHYDAATE-------EGFSYVPREPGDDDIIRRPPR-------------------------\n>UniRef90_UPI0010849509/1-25 [subseq from] ATP-citrate lyase alpha-subunit n=2 Tax=Chlorobium limicola TaxID=1092 RepID=UPI0010849509\nMGSSHHHHHHSSGLVPRGSHMVEPL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001C6872E1/1-30 [subseq from] Pilus biogenesis protein n=2 Tax=Xanthomonas axonopodis pv. citri (strain 306) TaxID=190486 RepID=UPI001C6872E1\nMGSSHHHHHHSSGLVPRGSHMITGIARRLV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0008521C96/1-30 [subseq from] PUTATIVE CELLULOSOMAL SCAFFOLDIN PROTEIN n=2 Tax=Ruminococcus flavefaciens FD-1 TaxID=641112 RepID=UPI0008521C96\nMGSSHHHHHHSSGLVPRGSHMASPVANADV-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000DC6639E/1-27 [subseq from] RNA polymerase sigma-54 factor,RNA polymerase sigma-54 factor,RNA polymerase sigma-54 factor,RNA polymerase sigma-54 factor,RNA polymerase sigma-54 factor n=3 Tax=Klebsiella pneumoniae TaxID=573 RepID=UPI000DC6639E\nMGSSHHHHHHSSGLVPRGSHMKQGLQL--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002A139CE/1-26 [subseq from] CS1 fimbrial subunit A n=1 Tax=Escherichia coli TaxID=562 RepID=UPI0002A139CE\nMGSSHHHHHHSSGLVPRGSHMDPTVD---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003D405D8/1-33 [subseq from] RBMA n=1 Tax=Vibrio cholerae serotype O1 (strain MJ-1236) TaxID=593588 RepID=UPI0003D405D8\nMGSSHHHHHHSSGLVPRGSHMEVDCELQPVIEA--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001D340F8/1-52 [subseq from] RISC-loading complex subunit TARBP2 n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0001D340F8\n----HHHHHHSSGLVPRGSHEVGALQE-LVVQKGWRLPeYTVtQESGPAHRKEFTMT----------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00067E64AD/1-22 [subseq from] FLOCCULATION PROTEIN FLO11 n=1 Tax=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) TaxID=559292 RepID=UPI00067E64AD\nMGSSHHHHHHSSGLVPRGSHMF-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000A17882F/1-27 [subseq from] Cycloisomaltooligosaccharide glucanotransferase n=1 Tax=Paenibacillus sp. 598K TaxID=1117987 RepID=UPI000A17882F\nMGSSHHHHHHSSGLVPRGSHMaSGDVE---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI001298EAAB/1-31 [subseq from] Extra-diol dioxygenase BphC n=1 Tax=metagenome TaxID=256318 RepID=UPI001298EAAB\nMGSSHHHHHHSSGLVPRGSHMIRSMAYLGLV----------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00032822D6/1-25 [subseq from] Tripartite terminase subunit UL15 n=1 Tax=Human herpesvirus 1 TaxID=10298 RepID=UPI00032822D6\nMGSSHHHHHHSSGLVPRGSHMTGDD----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0013F59633/1-23 [subseq from] Moevan n=1 Tax=synthetic construct TaxID=32630 RepID=UPI0013F59633\nMGSSHHHHHHSSGLVPRGSHMEA------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000C6C88C3/1-33 [subseq from] Tyrocidine synthase 2 n=1 Tax=Brevibacillus parabrevis TaxID=54914 RepID=UPI000C6C88C3\nMGSSHHHHHHSSGLVPRGSHMNSRESEQGVVEG--------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0003D79331/1-25 [subseq from] Sas-4 n=1 Tax=Drosophila melanogaster TaxID=7227 RepID=UPI0003D79331\nMGSSHHHHHHSSGLVPRGSHMSSSD----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00186BC337/1-26 [subseq from] Artificial L-threonine 3-dehydrogenase n=1 Tax=synthetic construct TaxID=32630 RepID=UPI00186BC337\nMGSSHHHHHHSSGLVPRGSHMMEAGK---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_D6YA91/10-132 [subseq from] HTH_7 domain-containing protein n=1 Tax=Thermobispora bispora (strain ATCC 19993 / DSM 43833 / CBS 139.67 / JCM 10125 / KCTC 9307 / NBRC 14880 / R51) TaxID=469371 RepID=D6YA91_THEBD\n-----------------------------------------DELRRLTAEGWSNARIAEYFGVTESGVLQAKRAAGLS-KPMTDHSRALPWKLKREHSQSGPATNLRNL---SAVAQGRTIPKEKLNTALRWADRLVSNDLDITYDPEHG-FREVPAGGDSHIARVLAE----------------------------------\n>UniRef90_UPI000F45EF62/1-25 [subseq from] TssA n=1 Tax=Burkholderia cenocepacia (strain H111) TaxID=1055524 RepID=UPI000F45EF62\nMGSSHHHHHHSSGLVPRGSHMPINL----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI00053BD530/1-26 [subseq from] Sialyltransferase 0160 n=1 Tax=Photobacterium damselae TaxID=38293 RepID=UPI00053BD530\nMGSSHHHHHHSSGLVPRGSHMTLEVY---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0002ADD61F/1-26 [subseq from] Histone RNA hairpin-binding protein n=1 Tax=Homo sapiens TaxID=9606 RepID=UPI0002ADD61F\nMGSSHHHHHHSSGLVPRGSHMPADFE---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0000E11D92/1-24 [subseq from] Type I polyketide synthase PikAIV n=2 Tax=Streptomyces venezuelae TaxID=54571 RepID=UPI0000E11D92\nMGSSHHHHHHSSGLVPRGSHMSGA-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000050C07E/1-25 [subseq from] Helicase of the snf2/rad54 family n=1 Tax=Saccharolobus solfataricus TaxID=2287 RepID=UPI000050C07E\nMGSSHHHHHHSSGLVPRGSHMASKS----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0001D1F7C0/1-22 [subseq from] Carotenogenesis protein carS n=1 Tax=Myxococcus xanthus TaxID=34 RepID=UPI0001D1F7C0\nMGSSHHHHHHSSGLVPRGSHMI-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI0009A09F09/1-36 [subseq from] sortase n=2 Tax=Streptomyces avermitilis (strain ATCC 31267 / DSM 46492 / JCM 5070 / NBRC 14893 / NCIMB 12804 / NRRL 8165 / MA-4680) TaxID=227882 RepID=UPI0009A09F09\nMGSSHHHHHHSSGLVPRGSHMKGTVRPTAAPGASAR-----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>UniRef90_UPI000D776074/1-24 [subseq from] Ras-related protein RABA1a n=2 Tax=Arabidopsis thaliana TaxID=3702 RepID=UPI000D776074\nMGSSHHHHHHSSGLVPRGSHMYDY-----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>SRR4051794_4190410/37-208 [subseq from] SRR4051794_4190410\n------------------------------KPAgVTRTRLVFSEIEDLRRNGHNQSEIAEMHGVSRQAVSWQKHTYGGHLTPRQVVNKSWPWQTTVMHGKAKAYQRLRDHGEFMVNRGFHGMSDDKIKRLKSWWRFLRENDVVLEFDPAIPPTPGVApHGGFRYVSRPASDENLLIRINEHTNLTEEGKLIWCWPRDIQSLI---\n>W8H7Q9_RHOOP/170-332 [subseq from] W8H7Q9_RHOOP\n-----------------------------------SVDLTKAVIESLKAQGFNQSEIAELYNVSRQAASWHMRTYGGEKSPRQIVNEAWPWKTTAGHGKATAYRRLRDHGEFMQTGGG-GMSEDKLDRLKKWWKKLRKENLVVEFDPSIPPIPGIASrGGFAYRARTV-DDDMLIRVTEFTELTEEGEMIWRWPPDIDSL----\n>SRR5690606_11523515/110-261 [subseq from] SRR5690606_11523515\n----------------------------------------IIEYEKI-VHGLNQAQIAKKYGTTRQNVSQIKRLRGGySMTPRERVMQQWPWKVPAHHQRCNIHHRMRDHAELVATGG-KGMSRDKLRRLLSFYTRLESENLVVEYHPDIPVNPDSACGGWRYVPRQDSDGDLMIRVNEHTHVTEEGKMLWRIP----------\n>SRR5690606_19046568/39-198 [subseq from] SRR5690606_19046568\n-------------------------------------GLTPAMIEALKNRGYNQNQIAEMYGISRQRVSQIKHKWANYYkSPRERAKEIFPFDVpRDPFQKSAADKRLRDHAEYALTGG-KGMNKEKLQRLRWFYNRLRRENVILVFDPAIPPSREVSTGGYAYVPRTRDDDDYIARSNEACDLSEEEKMPWRFPPVL-------\n>SRR5690606_37017759/53-218 [subseq from] SRR5690606_37017759\n--------------------------------MPAQVGVDTSIIETMLRQGFTQAEIAEHMGVTRQAINYHAKKMGWVDPAAQVT-ELLPWKTLTAKErKATPYVMLRNHVEYMLNGG-ELMSKDALRRLRSWYEsRIFEFDMVVEYDPNIPPSPNQKFGGWRYVHRTEQDDNLIIRENSYTKLNKTQKALFRLPKKLPE-----\n>SRR5690606_5647284/73-243 [subseq from] SRR5690606_5647284\n-------------------HGNGINGYVVIMTRPNQSGLTPELVRELLNKGLRVTEIARQFGVTVGYVSQLKAKIGYR-TPKQEAMDKMPWKKlPREQQRNRIYQNLRLHLFYVAVGRNG-VTASQVDHLLGFYNRV--EDYVVEYDPEIPSTPNNKGGGFQYVPREERDGDLILRRNKHTRIEDEDLVYWRIP----------\n>SRR5690606_8348115/21-154 [subseq from] SRR5690606_8348115\n--------------------------------------------------DFTPAQVARLLDVSRNTVAYHAKKA-GYVSPQEQVRELLPWQDLTPEDNrAWPYRMVYSHLEYMVTGG-RTMSNDKLEKLVQFYEgTITEFDTVVEFDPNIWPAPGRKYGRWQYTPRRPEDEDLIVRVNEYTRIPD-------------------\n>SRR5690606_7092152/64-207 [subseq from] SRR5690606_7092152\n---------------------------------------------------YTTTSYAKEVGVSKQAVHQALKKIGYRHP-LTIARDYIPWPDMPPGARSAtPYQRLVQHVEFTAAGE-KYMSEGVLKRLRHWYEnTLEKFSVVVEYDPEQYPVPGQQFGHWRYVPREPRDGDLILRQNEHTKLTPAQKVLFRMPER--------\n>SRR5690606_7263013/73-217 [subseq from] SRR5690606_7263013\n---------------------------------------------DTG-RKYTYSDIGRMFGVTRQAVSAMAKRYDLEPTPEQMARDAFPWTVPDKFQHSWMNLMLRLHGRYMATGGVG--IDDHRLVVLNyFYDKLERLDAVVEYDPSIPPSPDNKFGGFAYRKRRKSDGELIIRLNKLAEPTENSRRIYRM-----------\n>SRR4030095_5072975/39-180 [subseq from] SRR4030095_5072975\n-----------------------------LMPAIRKLPDG-ATLRRLRSQGWTQREIADTYGVSESAVWKALQRDGGYNAPEPTYRDILPWDLADEHKATAIMERFRSIVKQKKGAAMR---PEDEHRLTRWLKDLADNNLVVAYHPDAPANSASTNGGFYYTEREPGDDWIIRR----------------------------\n>SRR5690349_16447688/9-153 [subseq from] SRR5690349_16447688\n----------------------------RAMPAPRKLPDN-TTLRQLRAQNWTLQQIADEYDVTEAAV-WKALERAGFTEAKETYQDIIPWEIDPKHRSTAIAQRFRS---IMRMKRGQELNPNEQHLLDTWLQAMKEADVVLDYHKDAPPNTASRKGGFFYVKREPRDEGGIVRMPD-------------------------\n>ERR1740123_404666/208-261 [subseq from] ERR1740123_404666\n-----------------------------AEPSPSATARIDFEMVKLRQKGLKLREIGECYGLTPQRVGQRLKKYGALGFTRE------------------------------------------------------------------------------------------------------------------------\n>ERR1740123_404666/434-488 [subseq from] ERR1740123_404666\n----------------------------LAEPSPSATARIDSEMVKLRNKGLSLREIGERYGLTKQRVGQRLKKYGVRGFTKE------------------------------------------------------------------------------------------------------------------------\n>X1GQI4_9ZZZZ/12-48 [subseq from] X1GQI4_9ZZZZ\n---------------------------------------TDQQLIDLHEKGLNDREKAEKLGVTPSSVSYRRRKLG-------------------------------------------------------------------------------------------------------------------------------\n>X1GQI4_9ZZZZ/105-145 [subseq from] X1GQI4_9ZZZZ\n--------------------------------------FTDQQLIDLHERGLNGREIAEKLGVTPSAVNYRRRKLSLKS----------------------------------------------------------------------------------------------------------------------------\n>SRR6185312_12785434/4-168 [subseq from] SRR6185312_12785434\n-----HHHVAYMRLDLRCAGTKRERRNEGTMAAPRKLPDART-LLELRERGMTLAGIADLYDVTESGVQRAlarAEANVGRRTYRDI----LPWAIDSAHRSTAIMGHLRVLA---RQRSGLGASAGKLSALHAWLDWLDEHHLVLNYHPEAPPNPASRIGGFYYMERRP-DDSWILRQ---------------------------\n>SRR5690606_18755424/12-138 [subseq from] SRR5690606_18755424\n-----------------------------------------PKLLQLVDRGMTHQQIADLYGTSRQAVTLKLK--GA--TVPKAHRHDWPWEVQPRHKSGWLYQAIS-YWKIA-QEKERPLTERERQRLSSFLNMLESlpGDYVV-------TYVPDSASGFRLRPRTRGDDPNSILATEE------------------------\n>MGYP002715236104/8-171 [subseq from] FL=1\n-------------------------------TATRRQPLVFGEIEELRRKGFNQTEIADIHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETKGPHGKSAAYQRLRDHGEFIATGG-RDMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRNprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>MGYP001321887645/6-166 [subseq from] FL=1\n---------------------------------SSKTPLHFSVIEELRRKGYTQSEIADMHGVTRQAVSWQKHTYGGYLTPRQIVNQAWPWATTSLHSKCKPFQRMRDHGEYMATGG-KGMNADKINRLRSWYRKLKDENIVLEFDPDIPPIAGVSpNGGFRYMPRKPSDGNLLIRVNKYTELTEDGKRIWVFPP---------\n>MGYP002653346272/17-184 [subseq from] FL=1\n---------------------------KAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETTSSHSKSVAYQRLRDHGQFIAAGA-REMSDFKRGRHAAWVKMMRENDFVLEFDPNIPPTPRIApGGGFAYRKRDPRLDgfELLIRVNEFTNLTPEGRRLWSYA----------\n>MGYP000936449635/53-205 [subseq from] FL=0\n-------------------------------------SLSKDEIEALKAQGYNQTQIAKMFGVSRQAVSWHLKTYGGRLSPRQVANECWPWDTTNAHGKAKSYQRLRDHGEFMLT-RGRGMSEDKLKRLRSWWRMLRDENVVLEFGPDIPPVPGVSpNGGFAYRERSSDDGELLIRVSRYTHLTEAGKMIW-------------\n>MGYP000913146240/114-278 [subseq from] FL=1\n------------------------------GIAPKAAPeLTLAVIESLKMKGYSQSDIARMYGVSRQAVSWHKRHYGGRLSPRETVRQHFPWSVPTELGQCSPYKRLRDHGEYVATRGV-GMSSNKIKRLRAFYKKLRENELVVEFDPTIPPNPGVAkRGGFAYRKRSIEDEDFLIRVNEHTYLTEEGKGIWRFPS---------\n>MGYP001544718035/9-163 [subseq from] FL=1\n--------------------------------------LSLAVVEDLKAKGYNQTEIAEMFGVTRQYVSWIKHTYGGSRTPREIVLESWPFEVPAELSQTSPYRRLRDHGEYIWAGG-KDMTQDQLSRLRSFYKKLRDEDLVVEFDPAIPPIPGVSNkGGWAFRRRVPGDGDLLVRVNKHTRLTEEGRRIWRFP----------\n>MGYP001591419489/5-163 [subseq from] FL=1\n-----------------------------------ELKLSLSIVEDLKGKGYNQSEIAEMFGKTRQYVSWIKHTYGGRMTPREIVLKAWPWKVSTWQSQTSPYRRMRDHGEYIATGG-KGMSADKLNRLRAFYQKLHEEDLVVEFDPAIPPTPGVSNkGGWAFRRRLPQDGDLLIRVNEHTNLTDVGRRIWRFPE---------\n>MGYP000915859773/52-210 [subseq from] MGYP000915859773\n-----------------------------------RAPrLTVSIIDDLKAKGYNQSEIARMYGVTRQHVSWIKHTYGGRLTPREKALKHFPFKVPAAMTHSSPYRRLRDHAEFVATNGV-GMSADKLKRLRTFYRNIRENNLVLEFDPAIPPQPGVSrRGGWAYRPRTPEDGDLLIRVNEHTHLTEEGRSIWRLP----------\n>MGYP001056324886/16-171 [subseq from] FL=0\n-----------------------------------RPRLSLAVIESLKNKGFNQSEIARFFGVTRQAVSYHVRHYGGRLTPRQQIMQHWPWIVPVEMGQCSAYKRLRDHGEYVATGGA-GMSENKLSRLRGFYERLRD--QVVEFDPALPPEPGVSvAGGFAFRKRQESDLELLIRVNEHTHLSERGRAIWRFP----------\n>MGYP001008498213/1-134 [subseq from] MGYP001008498213\n-------------------------------------------------------------GVSRQAVSWHKTTYGGAKTTRQIVNKAWPWQTTAQHGKASPFQRLRDHGEFIASGG-REMSDFKRGRHAAWLKMMRENDFVLEFDPNIPPTAGVSpAGGFAYRKRDPQTDgfDLLIRVNEFTNLTPEGRRLWSYA----------\n>MGYP003520573345/1-134 [subseq from] FL=0\n-----------------------------------------------------------MHGVTRQAVSWQKQTYGLSRTPRQVIQQAWPWATSLAHSKSKSFQRLRDHGEYMIT-RGEGMNDDKLARLRSWYKKLRNENVVLKFDPTLPPEPGVApHGGFAYRTRVPTDEDFLIRVNQYTELTDEGRKIWRFP----------\n>MGYP000076166152/6-151 [subseq from] MGYP000076166152\n-----------------------------------------------RSSDLNQTEIAEMYGVTRQYVSWIKHTYGGRLTPREVVLQEFPFDVPVEMGQTSPYRRLRDHGEYVATGGV-GMSEDKLSRLRAFYDKLHGENVVLEFDPDFPPEPGVSNkGGWRFVKRTRKDEDLLIRVNEHTHLSDQGRMIWRFP----------\n>MGYP000848263209/20-164 [subseq from] FL=0\n--------------------------------APKAAPeLTLAVIESLKMKGYSQSDIARMYGVSRQAVSWHKRHYGGRLSPRETVRQHFPWSVPTELGQCSPYKRLRDHGEYVATRGV-GMSSNKIKRLRAFYKKLRENELVVEFDPTIPPNPGVAkRGGFAYRKRSIEDEDFLIRF---------------------------\n>MGYP002399260634/55-211 [subseq from] FL=0\n-------------------------------------KLTLAVVEALRNQGFNQSEIARMFGVSRQYVSWIVRHYNGSRTPRqQVLEEHFPFSVPTAMGQTAPFKRLRDHGEYM-VTDGKGMSPNKLDRLRSWYRRLREENLVVEFDPEIPPTPGVSkAGGWAYRPRREFDGNLLIRVNAHTRLTEEGRSIWCFP----------\n>MGYP001400405823/1-127 [subseq from] MGYP001400405823\n-------------------------------------------------------------------VSWHKVEYGGSLTPRQMANKAWPWKTSNHHGKSKAYQALRDLGEFQVTGG-KGMSEEKLYRLRVWLRNMRENDYVLEFDPELPAIPGVAPfGGFAYRKRHKSDGDLLIRVNEHTNLTEQGKMIWRYPP---------\n>MGYP001187629484/21-169 [subseq from] FL=1\n---------------------------------------------PDTGKKYTQSDIARIYGVTRAYVSWVKhQTQSFSRTPREAVMDHFPWRTTAEFHESSPYKRARDHLEYMATGG-KGMSHDKLRRLRWFYDYLERDNVVLEFDPDIPPSEGIQTGGFAYQPRRKDDGDLIIRVNEHTTLTEEGRMLWRFPP---------\n>MGYP000969936322/10-169 [subseq from] FL=1\n-----------------------------------RPELTIDVIEELMAQGHSQSEIARMFGVTRHAVSWHKRTYNGRLTARQEVMLTFPWKgVSQEQARCSAYRRLRDHGEFV-VTAGKDWDADKLRRLRAFYKKIREG-WVLEYDPRIPPEPGFAlHGGFALRKRLASDGDMLFRLNEFCQePTEEGRLIWRLPE---------\n>MGYP001348600169/4-159 [subseq from] FL=1\n-------------------------------------GLSREEIIRLLERGFTRSEVAEMYQVTPQAVNWHLNAKGRKYkDPRQRAMEHLPWKVESRHKNAAPFQKLRMHIKYVAVGE-KKLSESERKRLRSWYAELQRLDVVLEYDPSIPPTPQMSTGGWRYVPRADSDEGLIIRVNEHARMTDEAYEYLRFP----------\n>MGYP001440892830/20-175 [subseq from] FL=1\n------------------------------------------KVNPKTGKKYTQNDIAAHFGVTRQYVSWVKrhKSRSFSETPREVALKHYPWKTGERFHNAAPNRRMRDHAEFMATGG-KGMARFKLERLLWFYRFLRNENVVVEFDPNIPPIEGVSsDGGFAYRPRKDSDGDLIIRVNEHTTLTPEGKMLWRFPPKM-------\n>MGYP002737205182/3-111 [subseq from] FL=0\n------------------------------------------------------------------------------------VDLLWPWETNHEHGRTSGYQRLRDHGEFVATGG-KGMSENKLKRLRSWYRKLREEDVVLEFDPAFPPEEGVSpSGGFRYVKRRESDGDLLIRVNEHTNMSEEGRRIWRFP----------\n>MGYP001347247383/9-173 [subseq from] FL=1\n--------------------------------------LTPSDIEELKRKinpetgkKYTQNDIAKLFGVTRQYVSWVKRNKArsFSKTPRETALEHYPWKTGEKFHNASPNRRMRDHAEYVATGG-RGMNEEKLRRLVWFYDFLERENVVVEFDPNIPPKPGVSSvGGFAYRPRKDSDGDLMIRVNEHTTLTEMGKKLWRMPP---------\n>MGYP001241426783/81-197 [subseq from] FL=0\n-----------------------------------RPRLSLAVIESLKNKGFNQSEIARFFGVTRQAVSYHVRHYGGRLTPRQQIMQHWPWIVPVEMGQCSAYKRLRDHGEYVATGGA-GMSENKLSRLRGFYERLRD--QVVEFDPALPPEPGV------------------------------------------------\n>MGYP001278375350/19-172 [subseq from] FL=1\n-----------------------------------------RKVNPATGKRYTQSDIAEMYGVTRSYVSWIKKNKARsySKTPREEAMEHFPWDVGARFHNASPNKRVRDHLEFMAVGQ--KLSEKKKYRLIGFYRRLEMHNEVVEFDPDIPPNEDAKTGGFAYRKRTPSDGDLIIRVNRHTKLTELGKRLLRFPPE--------\n>MGYP000985375760/9-90 [subseq from] FL=0\n---------------------------------ASRKPLIFSEIEALRRQGYSQSDIAEMHGVSRQAVSWQKQTYGGYLTYRQVVNKAWPWATTNLHSKSKVYQRLRDHGNTIVV----------------------------------------------------------------------------------------\n>MGYP000436310350/3-128 [subseq from] FL=0\n-------------------------------------------IERLKRQGLSQSQIAERFGVTKQAVSWTVRNYGGSMTPRQKATQAFPFKVPANMCSASVCKRLRDHAELMTAGGDQ-LSVDAKRRLRNFYERLRANNHVVEFSPDIEPIKGISGtyGGWRYVERSAE-----------------------------------\n>MGYP001161893888/25-166 [subseq from] FL=1\n-------------------------------------------------RPYTLAEIARIFGVSRQYVSKLKKL-GTYRSPREMIMELWPWSV-PPEQQNATYHILRDHLEYMATR-GRYMQEWKLNQLAEFYDRLDRNNWVVEFSPDIEPNEHAENGGFTYRRRKPSDEGLIIRQNRVTRLTSRGKVVWRFPP---------\n>MGYP001371619519/5-162 [subseq from] FL=1\n------------------------------------PILTASDILRYLRQGKTQVEIAKIFGVTPAYVSKIKTGAGIVRSAREEVRRYWPWKVPTGLQGMGIPKRLRDHLEYFATR-GRGMPREALVRLRSFYQKLSDNNLVVEFHPDIPPNSDAKHGGWIFRPRVDTDGDLMIRVNEVTNLPDMGDVVWRLPDR--------\n>MGYP003711275365/8-124 [subseq from] FL=0\n----------------------------------DRGSMTLEVIERLKRQGLSQSQIAERFGVTKQAVSWTVRNYGGSMTPRQKATQAFPFKVPANMCSASVCKRLRDHAELMTAGGDR-LSVDAKRRLRNFYERLRANNHVVEFSPDIEPI---------------------------------------------------\n>MGYP003769277381/18-181 [subseq from] FL=0\n----------------------------QTMPRPNRTGLTGAVVDSLLKTGRTVSEIAEEYGVTVAYVSKIRRLYGKYRTPKERAMDALPWDDVSPeHKKSSVFKNIRRHLYYVAVGP-KVLPEWQKERLRAWYKKLEE--WVVVRDPDQGPTFNDKYGGWRYEPREEFDKDLILREDSNTQIRDEDRIFWRIPE---------\n>MGYP003489402940/1-89 [subseq from] FL=0\n----------------------------------------------------------------------------------------------------------RDHGEYMLTQ-GSGMSEDKLNRLQSWWRKLRNDDVVVEFDPALPPLRHVSpHGGFALRQRVPEDLDLLIRVNEHTTLTEGSRRIWCWPAN--------\n>MGYP001032262316/27-195 [subseq from] FL=1\n---------------------------------------TPATIKAFWARGWNNKQIAEYYGITPQAVSDMARRYNLyKGNPRKRVKEVFPWKVRDEHRLAAPNKRLRDHAEYFFSGG-DGMSDYKLYRLANFYRRLMEENLVITYEPDYVPENvssfthdpGrVSNGGWRWLPRTESDEDFIIRFNEYClELSEEAREVWRFPEEIPD-----\n>MGYP001451895062/5-124 [subseq from] FL=0\n---------------------------------------------------------------------------GWVTATRDWVLQHFPWRVIVEQGQAPVLRSLHDHAEFVVTGG-AAMPDHRLKRLRAFYRALREADVVVEYNPDIPPQPGLSrKGGFALRPRRPTDGDLMIRINEYTRLTTEGRNIWRLPED--------\n>MGYP003593653627/30-174 [subseq from] FL=0\n---------------------------------------------------YSDRQIGELVGLTRQGVfAWKIRQRPGVVywSPRSVAKQAFPWKglVRGKHNGNNACKRLHDHGEYKATGGD-GMSEEKLRKLVGWYNHME--DYVLEYDPTFKP--GVTSGGWIYRPRSAGDGHSLIRLNQYsrTDLTDEDLMVWEFPA---------\n>MGYP001445015334/6-121 [subseq from] MGYP001445015334\n----------------------------------------------------------------------------------EIVRLHFPWDVPSELQASPAYTLMRLHGDFMATGG-RGMDAEDVELVRAFHSRLRDENVVIEFDPSIPAAEGVdAAAGFAFRTRTPDDEDLLVRANGFTVLTPEGEMIWRFPPDMDY-----\n>MGYP001759390675/37-197 [subseq from] FL=0\n---------------------------------PMTTPLSPELVIYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPALTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLMKRLRQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>MGYP002507297482/17-141 [subseq from] FL=0\n------------------------------------EPLTPGLIAELMRQGLSLSDIARLKGVSRQRVSFVSKQSNiFPKTARETVKEHYPWDTSGGFFRHYVDLRMRDHGEWIWTD-GKALSEDRRKKLRYFYNSLASNNQVIEFDPHFPPSGQSTVGGFA------------------------------------------\n>MGYP002713385657/11-160 [subseq from] FL=1\n---------------------------------------------GLMNEGLAQSEIAREYGVSRQYVNK-LAIQGGHVPVIPTITENLPWDIPKEYYGNTLYQgmRLIGHGNYAGFDKLNGSSLAKARAILT--KLTRFR-QVIDFDPSYPAMPGLTNtPGFAYVPRTDDDEDFIVKIRPGTRITPEGNRIWRLPEEM-------\n>MGYP001595891148/25-122 [subseq from] FL=0\n-----------------------------------------------------------------------------GMTPREIVLKAWPWKVSTWQSQTSPYRRMRDHGEYIATGG-KGMSADKLNRLRAFYQKLHEEDLVVEFDPAIPPTPGVSNkGGWAFRRRLPQDGDLLIR----------------------------\n>MGYP002713664281/11-159 [subseq from] FL=1\n--------------------------------------------LYLLDNGYRQVDIAREYGVSRQYIYKLA-KDGGYISPIATVAENMPWDVDPEFSRNATLVALRLIG-HERVAPGKMI-DESRARANGLLKRLRQFNVVVDYDPSYPPIIGLTNtPGFAYVPREESDEDFIVKIKPGVRITPLGDKIWRMPPE--------\n>MGYP002716229312/10-160 [subseq from] FL=1\n--------------------------------------------MSMIQEGYKQSQIAEAYGVSRQYVSKPAKQ-SGYVSTMTVINDNLPWEVDPAYQKNTVYQALRLVAHYNIDGdeAFR-HSETSRRKAQGLVKKLIVYRQVIDYNPAYPAIPGVVNtPGFAFIPRTESDEDFIVKIRPDVRITTIGDRIWRLPE---------\n>MGYP001758184119/20-166 [subseq from] FL=0\n------------------------------------------------DQGMKQSEIARQYGVTRQYVNKLAK-QGGYVSNMTIISQHLPWDFdPAPYQDNTLYQVFRMTAAYNLEGEKAFISSPsSLRKVRSFVKRLTVYHQVVDYDPDYPPIPGIVNGpGFAYVPRTPEDEDYLMKIRPGVRVTNVGNRIWRLP----------\n>MGYP001758773713/16-159 [subseq from] FL=1\n-------------------------------------------------QGMRQVEIAEAYGVSRQYINNLAK-KGGYLSPITTVTENMPWEVASESYRHPAYMAMRLVGHFAV-AQS-NLEAESIERALGFIKRLRTYDAVVDYNPSYSGIIGVTTfPGFSFLPRVEADEDFIMKIRPGVRITPLGDKIWRMPDP--------\n>MGYP000551651949/14-159 [subseq from] MGYP000551651949\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAK-QAGHDSLRTIVSENFPWPIKPDFYENHLYAALRAIGTFNLDP--TAVREATLRRARSVLRKLQNFNTVIDCDPGYPAVPGLVNtPGFAYVPRTESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>MGYP000259665610/14-159 [subseq from] MGYP000259665610\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQALRVVGLWNMDK--DSVSLGTVKKVIGVLRKVHHFGSVIDYDPGYPAIPGLVtTPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEGV-------\n>MGYP000529372268/7-69 [subseq from] MGYP000529372268\n--------------------------------------VSLAEIEDLKAKGWTQTDIANHYGVTRAYISWIKRRYGGTLTPReQVLEQHYPWKVRGDHLRA-------------------------------------------------------------------------------------------------------\n>MGYP000710064489/14-159 [subseq from] MGYP000710064489\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEYTHNNLYTVLRVIGLWNLEPSA--VQDSTMKKVKGVLRKLQNFNTVIDCDPGYPAVPGLVNtPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEGV-------\n>MGYP002723120291/13-160 [subseq from] FL=1\n------------------------------------------------DKGMRQSEIARQYGVTRQYVNRLAKQ-AGYVSSMTIINDHLPWDIDtSDYQDNTLYQVFRLTATYNLEGETaFTNSPSSRRKVRSFVKRLTVYQQVVDFNPEYPAIPGIVNGpGFAYVPRSPEDDDFIMKIRPGVRISNVGNRIWRLPS---------\n>MGYP001758354948/29-175 [subseq from] FL=0\n------------------------------------------------DQGMKQSEIAREYGVTRQYVNRLAK-QGGYVSSMTIINDHLPWEFdTSEYQENTLYQVFRLTATYNLEGDKAFINApSSRRKVRSFVKRLTIYNQVIDFDPDYPPIPGVVNsHGFAYVPRSPEDDNFMMKIRPGVRVTNVGNRIWRLP----------\n>MGYP002722725990/5-158 [subseq from] FL=1\n---------------------------------------TPSLVIYLMKSGQRQTDIAQSYGVTRQYVNKLAK-QGGHISPITTVRENMPWEVDPELARNSTIVSFRLVGHA-AVA-PDNLSEESLERANSLIRRLKTYNVVVDYDPTYPPIIGLTStPGAKYFPRTEADEDFIMKIRPGVLVTPVGNRIWRLPKQ--------\n>MGYP001302551688/4-116 [subseq from] MGYP001302551688\n-------------------------------------------------------------------------------TPREAARQTFPWVVP-AEQQGWIYRTLLDHCDYIATR-GRGMEEWKLRRLQDFYDKLEQENLVVEYHPEIPANEAAEAGGFAYRTREDSDGRLIIRVNDVTTLTDASRIVWKMPP---------\n>MGYP001759497371/20-165 [subseq from] FL=0\n-----------------------------------------------MSKGRRQVDIAEEFGVSRQYVHNLAK-RGGYESPITTVTENMPWEVDSDHYRHPIYMAMRLVGHLALAPDNLTIE--SVERAEGLINRLRTFDVVVDYNPVYPPMPGVTGhTGFAYLPRTSEDEDFIMKVRPGVRITPLGSEIWRMPDE--------\n>MGYP000117004747/9-159 [subseq from] FL=1\n-------------------------------------------IRALLDEGMTQSDIARAAGVSRQRIHQIMKEAGHESLITE-VTENLPWEVERQFLTNTIYKAMRLHGHWMLDNDALTAGSLGKLR--AFHRKLVAFNQVIDYDPAYQAIPGISNtPGFAYLPRRPEDGNYIIRVRQGVKLTPTGEKIWQLPSEL-------\n>MGYP002149763071/6-61 [subseq from] FL=0\n--------------------------------------VSLAEIEDLKAKGWTQTDIANHYGVTRAYISWIKRRYGGTLTPReQVLEQHYPWKV--------------------------------------------------------------------------------------------------------------\n>MGYP002714067134/9-159 [subseq from] FL=1\n------------------------------------------LVMYLLDNGYRQVDIAREYGVSRQYIHMLAKDAG-YTSPIGTVRDNMPWDVDPEFSKNATLVAFRLVG-HERVAPGRMIDE-SRERANGLLKRLRQFNVVVDYDPRYPPIIGLTNtPGFAYVQRTDEDEDFIMKIKPGVRITPLGNKIWRMPPE--------\n>MGYP002757568590/5-150 [subseq from] FL=1\n------------------------------------------------SAGVSQVDIAKRFGVTRQYVNKLAKK-AGHVSAMTIINDNLPWKVGGAYQDNTIYQGIRLIAHYNLEGERAFEGRPtNLRKLKAIMRKLHVFQQVVDFDPEYPAVPGVVNGpGFAYVPRTPRDKDLAIKIKPSLRFTRLGETLWKLP----------\n>MGYP000937181109/2-58 [subseq from] MGYP000937181109\n-------------------------------------------------------------------------------------------------------------------------------------------NVVLEFGPDIPPVPGVSpNGGFAYRERSSDDGDLLIRVNRYTHLTEEGKMIWRWPPD--------\n>MGYP002722993099/5-146 [subseq from] FL=0\n---------------------------------------TPSLVIYLMKSGQRQTDIAQSYGVTRQYVNKLAK-QGGHISPITTVRENMPWEVDPELARNSTIVSFRLVGHA-AVA-PDNLSEESLERANSLIRRLKTYNVVVDYDPTYPPIIGLTStPGAKYFPRTEADEDLsLIHISEPTRL---------------------\n>MGYP002656055669/57-187 [subseq from] FL=0\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIQPDFTKNNLYQALRVVGLWNM--DTKSVSISTVKKVIGVLRKVHHFGSVIDYDPGYPAIPGLItTPGFAYVPRAESDENFIVKIKQETR----------------------\n>MGYP000914579548/39-92 [subseq from] MGYP000914579548\n---------------------------------------------------------------------------------------------------------------------------------------------VVEFDPTIPPNPGVAkRGGFAYRKRSIEDEDFLIRVNEHTYLTEEGKGIWRFPS---------\n>MGYP003456815932/4-139 [subseq from] FL=1\n---------------------------------VRKLPDTT-TLRRLRSQGWTQKQIATAYGASESAV-WKALQRAGYIDPQPTYKDILTWDIDEAHKATAIMERFRSIVKQKK---GATLRPDEEVLLRRWMRDLEANDLVVAYHPEAPKNSASSKGGFYYVPRTA-DDDWIIR----------------------------\n>MGYP001943534633/13-157 [subseq from] FL=1\n----------------------------------------------LMNNGHRQVDISREYGVSRQYVHKLAKDA-GYTSPIGMVRDNMPWEVDPSFNRNATLVAFRLVGHIALAPD--KLTKDSVDRAKGLLKRLEQFNVVVDYDPAYPPIMGLTNtPGFAYVPRTDEDENFIMKIKPSVRVTPLGNKIWRIP----------\n>MGYP003580026131/3-98 [subseq from] FL=1\n---------------------------------------------------------------------------------------------------------------YMATGG-KGMTRDRLRTLRGFYQNLIEEDLVVEFDPNIPPgkpegdpksnrkkADGYKFGGFAYQKRVPEDGNLIIRVNEHTTLTPEGEVYLTLPDV--------\n>MGYP001941615794/5-162 [subseq from] FL=1\n---------------------------------------TAKSIQQLLQAGLTQSEIARRYGVTRQHIHNVLKRsgYVPESTGqTKLIRDNFPWEIEDTEVYGnTVYIQLWLAARFND--DPESISKTSMERVRSLVrKLVRFNQ-VVDYDPDYPWIKGLLNtKGLAFLPRTQKDEDFMIKIRPGVRITEAGKTLWRMPD---------\n>MGYP001758929366/33-109 [subseq from] FL=0\n------------------------------------------------------------------------------------------------------------------------LTNESRERANGLMKRLRQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>MGYP000568974834/6-96 [subseq from] FL=0\n----------------------------------------------------------------------------------EIVRLHFPWDVPAELQGNPAYDLMRIHGDFMATGG-NGMEPAVLARLRAFHTKLRDESLVLEFNPNIAAEDGIDGqAGFAFRSRTIDDDELL------------------------------\n>MGYP000923230843/7-81 [subseq from] MGYP000923230843\n-----------------------------------------------------------------------------------------------------------------------GMSDSEIRRLTSFHDKLRRYNLVVEYSPEIPPSLDSSVGGWSYQARIADDGDLMIRVNEWTTLTDEGRrRIWKLP----------\n>MGYP000521776224/1-43 [subseq from] FL=0\nMGSSHHHHHHSSGLVPRGSHMVLTLYKLDASPPARAVMMTLEA----------------------------------------------------------------------------------------------------------------------------------------------------------------\n>MGYP001759090342/7-67 [subseq from] FL=0\n----------------------------------------------------------------------------------------------------------------------------------------KRQDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>MGYP002797258405/143-189 [subseq from] FL=0\n---------------------------------KNGKTVTRDDIEDLLNEGKNSTEIGELYGLTASGVTRLKERLGIKLR---------------------------------------------------------------------------------------------------------------------------\n>MGYP002797258405/211-252 [subseq from] FL=0\n--------------------------------------ITLDMYNELKEKGYNQEQMAEAWGIARSSITEIKKRLGIELS---------------------------------------------------------------------------------------------------------------------------\n>MGYP000636784504/1-22 [subseq from] FL=0\nMGSSHHHHHHSSGLVPRGSHMM-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>MGYP000188010789/1-37 [subseq from] MGYP000188010789\nMGSSHHHHHHSSGLVPRGSHMLEDQMLSSATPARDRT----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n>MGYP001627605828/1-28 [subseq from] FL=0\nMGSSHHHHHHSSGLVPRGSHMASMTGGQ-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n", + "pairedMsa": ">query\nMGSSHHHHHHSSGLVPRGSHMSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDISDDDLLIRVNEHTQLTAEGELLWSWPDDIEELLSEP\n>tr|A0A2D1GKF7|A0A2D1GKF7_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage TipsytheTRex OX=2041553 GN=SEA_TIPSYTHETREX_75 PE=4 SV=1\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDISDDDLLIRVNEHTQLTAEGELLWSWPDDIEELLSEP\n>tr|A0A0M5M6Q1|A0A0M5M6Q1_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Serenity OX=1701853 GN=SEA_SERENITY_79 PE=4 SV=1\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQSEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTGKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDIEDDDLLIRVNEHTHLTAEGELLWSWPDDIEELLSEP\n>tr|A0A2P1N239|A0A2P1N239_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Jsquared OX=2126814 GN=79 PE=4 SV=1\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQSEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTGKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPSIEPYEGMAGGGFRYVPRDIEDDDLLIRVNEHTHLTAEGELLWSWPDDIEELLSEP\n>sp|Q05286|VG71_BPML5/1-183 [subseq from] Repressor-like immunity protein OS=Mycobacterium phage L5 OX=31757 GN=71 PE=1 SV=1\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDDDLVLEFDPSIEPYEGMAGGGFRYVPRGIEDDDLLIRVNEHTNLTAEGELLWSWPDDIEELLSEP\n>tr|Q7Y5L7|Q7Y5L7_BPML5/1-183 [subseq from] Temperature-sensitive repressor protein cIts OS=Mycobacterium phage L1cIts391 OX=233585 PE=4 SV=1\n--------------------MSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDDDLVLEFDPSIELYEGMAGGGFRYVPRGIEDDDLLIRVNEHTNLTAEGELLWSWPDDIEELLSEP\n>tr|A0A1X9SF42|A0A1X9SF42_9CAUD/4-187 [subseq from] Immunity repressor OS=Mycobacterium phage Journey13 OX=1983408 GN=SEA_JOURNEY13_65 PE=4 SV=1\n-------------------SMSGKTSSKVVVPATSRIPLTLSVIEDLRRKGYNQSEIAEIFGVTRQAVSWHKKTYGGQLTTRQIVQQAWPWDTNRLHSKSKAYQRLRDHGEYMRVGSFRTMSEDKRKRLVSWWKMLRDNNWVLEFDPSIEPYEGMAGGGFRYVPREERDDDLLIRVNEHTNLTDEGELIWSWPDDIDELIGEP\n>tr|A0A3P3ZVQ9|A0A3P3ZVQ9_MYCHD/1-183 [subseq from] Uncharacterized protein OS=Mycolicibacterium hassiacum (strain DSM 44199 / CIP 105218 / JCM 12690 / 3849) OX=1122247 GN=MHAS_01193 PE=4 SV=1\n--------------------MSGKTSSKVVVPATSRVPLTLSVIEDLRSKGYNQSEIAEIFGVTRQAVSWHKKTYGGRLTTRQIVQQAWPWATTRLHSKSKAYQRLRDHGEYMRVGSFRTMSEDKRKRLVSWWKMLRDNNWVLEFDPSIEPYEGMAGGGFRYVPREERDDDLLIRVNEHTNLTDEGELIWSWPDNVDELIGKP\n>tr|I1V1K8|I1V1K8_9CAUD/4-148 [subseq from] Uncharacterized protein OS=Mycobacterium phage SWU1 OX=1175504 PE=4 SV=1\n-------------------NMSGKIQHKAVVPAPSRIPLTLSEIEDLRRKGFNQTEIAELYGVTRQAVSWHKKTYGGRLTTRQIVQQNWPWDTRKPHDKSKAFQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDDDLVLEFDPSIEPYEGMAGGGFRYVP---------------------------------------\n>tr|A0A1J0GVI1|A0A1J0GVI1_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage StarStuff OX=1913110 GN=78 PE=4 SV=1\n--------------------MSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDLVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEHTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A1J0GNS5|A0A1J0GNS5_9CAUD/5-184 [subseq from] Immunity repressor OS=Mycobacterium phage Jaan OX=1897439 GN=SEA_JAAN_74 PE=4 SV=1\n--------------------MSGKIRNRPVPKGTSRQPLTLSTIEDLRRKGYNQSEIADMHGVTRAAVSWHKKTYGGRLTTRQIVQEAWPFETHLPHDKSKAYQRLRDHGEYMRVGSFKTMSEDKKKRLLSWWRKLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNDHTKLTEEGEMIWCWPPDIDSLL---\n>tr|A0A482JAP9|A0A482JAP9_9CAUD/4-184 [subseq from] Immunity repressor OS=Mycobacterium phage DBQu4n OX=2517945 GN=78 PE=4 SV=1\n-------------------SMSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A1C9LYF3|A0A1C9LYF3_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage Pomar16 OX=1897543 GN=78 PE=4 SV=2\n--------------------MSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A1J0GNI2|A0A1J0GNI2_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage Kerberos OX=1897440 GN=SEA_KERBEROS_78 PE=4 SV=1\n--------------------MSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A345L0Y7|A0A345L0Y7_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage Tomathan OX=2250310 GN=78 PE=4 SV=1\n--------------------MSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A3S9UDA6|A0A3S9UDA6_9CAUD/4-184 [subseq from] Immunity repressor OS=Mycobacterium phage IronMan OX=2499042 GN=73 PE=4 SV=1\n-------------------NMSGKITIRPKAKATARQALTLSDIEDLRRKGYNQSQIADMYGVTRQAVSWQKKTYGGRLTTRQIVQEAWPFKTGTPHDKSKAYQRLRDHGEYMRVGSFKTMSEDKKKRLLSWWRKLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNDHTTLTEEGEMIWCWPPDIDSLL---\n>tr|A0A6B9J6W4|A0A6B9J6W4_9CAUD/4-184 [subseq from] Immunity repressor OS=Mycobacterium phage Phaded OX=2686088 GN=71 PE=4 SV=1\n-------------------NMSGKITIRPKAKATARQALTLSDIEDLRRKGYNQSQIADMYGVTRQAVSWQKKTYGGRLTTRQIVQEAWPFETHMPHDKSKAYQRLRDHGEYMRVGSFKTLSEDKRKRLLSWWRKLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNDHTKLTEEGEMIWCWPPDIDSLL---\n>tr|A0A127KPS0|A0A127KPS0_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage Bactobuster OX=1784956 GN=68 PE=4 SV=1\n--------------------MSGKITIRPKAKATARQALTLSDIEDLRRKGYNQSQIADMYGVTRQAVSWQKKTYGGRLTTRQIVQEAWPFETHMPHDKSKAYQRLRDHGEYMRVGSFKTLSEDKRKRLLSWWRKLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNDHTKLTEEGEMIWCWPPDIDSLL---\n>tr|A0A516KSK3|A0A516KSK3_9CAUD/4-185 [subseq from] Immunity repressor OS=Mycobacterium phage NothingSpecial OX=2590945 GN=71 PE=4 SV=1\n-------------------NMSGKIKPLDIVKPVSRQPLTLSAIEDLRRKGYNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQEAWPWQTTKLHGKSKAYQRLRDHGEYMRVGSFRTMSEDKKKRLLSWWKMLRDNDLVLEFDPDLPPEPGVAPyGGFRYVPRTDADDDLLIRVNEHTNLTEEGEMIWCWPPDIDSLL---\n>tr|B3VGM1|B3VGM1_9CAUD/4-185 [subseq from] Repressor OS=Mycobacterium virus Pukovnik OX=540068 GN=72 PE=4 SV=1\n-------------------NMSGKINNVARRSAPSRQPLTLSTIEDLRRKGFNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQEAWPWKTTKLHGKSKAYQRLRDHGEYMRVGSFKTMSEDKKKRLLSWWRKLRDENVVLEFDPDIPPEPGVAPyGGFRYVPRTSADDDLLIRVNKHTNLTEEGEMIWCWPPDIDSLL---\n>tr|A0A142F207|A0A142F207_9CAUD/4-187 [subseq from] Immunity repressor OS=Mycobacterium phage Mulciber OX=1805459 GN=PBI_MULCIBER_76 PE=4 SV=1\n-------------------NMSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A481VXW4|A0A481VXW4_9CAUD/4-187 [subseq from] Immunity repressor OS=Mycobacterium phage Bud OX=2530122 GN=73 PE=4 SV=1\n-------------------NMSGNINRAIVSRPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A481VYD5|A0A481VYD5_9CAUD/4-187 [subseq from] Immunity repressor OS=Mycobacterium phage Munch OX=2530134 GN=78 PE=4 SV=1\n-------------------NMSGNINRAIVSRPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A6B9SYK4|A0A6B9SYK4_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Mabel OX=2696374 GN=78 PE=4 SV=1\n--------------------MSGNINRAIVTRPTSRQPLIPSVIEDLRRKGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|S5YS02|S5YS02_9CAUD/1-181 [subseq from] Repressor OS=Mycobacterium phage Adzzy OX=1383059 GN=80 PE=4 SV=1\n--------------------MSGKTQNTARQQASSRKPLTPSVIEDLRRKGFNQSEIADLHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDLVLEFDPNIPPTPGVApQGGFRYVARTEKDDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>tr|W8ECM7|W8ECM7_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage 40AC OX=1458717 GN=40AC_74 PE=4 SV=1\n--------------------MSGKISTLEIVKPTSRMALTLSSIEDLRRKGYNYQQIADMHGVTRQAVEWHVRVYGGHLNTRQQVKALWPFDTRKPMDKSKAYQRLRDHGEYMAIGSFRTMGEDKRKRLLSWWKMLRENDVVVEFDPNIKPYPGMSGGGFRYVPREERDDDLLIRANEHTNLTEKAEMIWSWPDDIEELLGEP\n>tr|A0A482JF59|A0A482JF59_9CAUD/4-187 [subseq from] Immunity repressor OS=Mycobacterium phage Fibonacci OX=2517949 GN=77 PE=4 SV=1\n-------------------NMSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A649VG96|A0A649VG96_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Bachome OX=2656557 GN=76 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A222ZQL8|A0A222ZQL8_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Et2Brutus OX=2015881 GN=77 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A345L655|A0A345L655_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Snape OX=2250333 GN=77 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A2Z5H1B1|A0A2Z5H1B1_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Joselito OX=2234075 GN=77 PE=4 SV=1\n--------------------MSGNINR-AIVSRPtSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A6B9JA79|A0A6B9JA79_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Aneem OX=2686085 GN=79 PE=4 SV=1\n--------------------MSGNINR-AIVSRPtSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A7T3KB37|A0A7T3KB37_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Flaverint OX=2790992 GN=79 PE=4 SV=1\n--------------------MSGNINR-AIVSRPtSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A1S6L2C7|A0A1S6L2C7_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Jabith OX=1959484 GN=SEA_JABITH_77 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A2Z5H0Y6|A0A2Z5H0Y6_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Ebony OX=2234074 GN=78 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A481VZI1|A0A481VZI1_9CAUD/1-183 [subseq from] Immunity repressor OS=Mycobacterium phage Salz OX=2530147 GN=73 PE=4 SV=1\n--------------------MSGNINRAIVARPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|Q1A0D7|Q1A0D7_9CAUD/1-181 [subseq from] Uncharacterized protein OS=Mycobacterium virus Che12 OX=373405 GN=80 PE=4 SV=1\n--------------------MSGKMQNPARQQASSRQPLIPSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDWVLEFDPNIPPTPGVApHGGFRYVTRTEADDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>tr|A0A286MQ88|A0A286MQ88_9CAUD/1-187 [subseq from] Immunity repressor OS=Mycobacterium phage Lokk OX=2015821 GN=69 PE=4 SV=1\n--------------------MSGKIMTIDVVPATSRRPLTLSEIEDLRRKGFNQSQIAQMYGVTRQAVSWTKKTYGGRLTTRQIVQELWPFETTKMHGKSKAFQRLRDHGEYMRTLSFKGFSAEKKQRLIRWWKMLRDQNLVLEFDPAIEPYPGMAGGGFRYVPREERDDDLLIRVNEHTKVEDDGkldmraELLWKWPPNVEELLA--\n>tr|A0A4Y6EI96|A0A4Y6EI96_9CAUD/1-187 [subseq from] Immunity repressor OS=Mycobacterium Phage Rachaly OX=2588140 GN=71 PE=4 SV=1\n--------------------MSGKIMTIDVVPATSRRPLTLSEIEDLRRKGFNQSQIAQMYGVTRQAVSWTKKTYGGRLTTRQIVQELWPFETTKMHGKSKAFQRLRDHGEYMRTLSFKGFSAEKKQRLIRWWKMLRDQNLVLEFDPAIEPYPGMAGGGFRYVPREERDDDLLIRVNEHTKVEDDGkldmraELLWKWPPNVEELLA--\n>tr|A0A222ZN24|A0A222ZN24_9CAUD/1-187 [subseq from] Immunity repressor OS=Mycobacterium phage BobSwaget OX=2015842 GN=68 PE=4 SV=1\n--------------------MSGKITTIDVVPATSRRPLTLSEIEDLRRKGFNQSQIAQMYGVTRQAVSWTKKTYGGRLTTRQIVQELWPFETTKMHGKSKAFQRLRDHGEYMRTLSFKGFSAEKKQRLIRWWKMLRDQNLVLEFDPAIEPYPGMAGGGFRYVPREERDDDLLIRVNEHTKVEDDGkldmraELLWKWPPNVEELLA--\n>tr|A0A5Q2WM60|A0A5Q2WM60_9CAUD/1-187 [subseq from] Immunity repressor OS=Mycobacterium phage Miko OX=2653762 GN=69 PE=4 SV=1\n--------------------MSGKITTIDVVPATSRRPLTLSEIEDLRRKGFNQSQIAQMYGVTRQAVSWTKKTYGGRLTTRQIVQELWPFETTKMHGKSKAFQRLRDHGEYMRTLSFKGFSPEKKQRLIRWWKMLRDQNLVLEFDPTIEPYPGMAGGGFRYVPREERDDDLLIRVNEHTKVEDDGkldmraELLWKWPPNVEELLA--\n>tr|A0A649VBS3|A0A649VBS3_9CAUD/1-182 [subseq from] Immunity repressor OS=Mycobacterium phage Superchunk OX=2656608 GN=78 PE=4 SV=1\n--------------------MSGKMQNPARQRGSSRSPLLPSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQKAWPWKTGVGHDKSKAYQRLRDHGEYMRVGSFRTMSEDKQKRLKSWWKMLRDNDWVLEFDPSIPPTPGVAPyGGFRYVNREEADDDLLIRVNEYTNLTDEGEMLWCWPPDIEEILS--\n>tr|A0A345KUV7|A0A345KUV7_9CAUD/1-180 [subseq from] Immunity repressor OS=Mycobacterium phage Acolyte OX=2250290 GN=66 PE=4 SV=1\n--------------------MSGKPTTPSMMKPIGRAPLLPSVIEELRRKGYNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWQTTKAHGKSKAYQRLRDHGEYMRVGDFSTMSEDKKKRLLSWWKMLRDKDVVLEFDPNLPPEPGVApHGGFRYVPRKASDDDLLIRVNKYTNLTEQGEMIWCWPPDIPTL----\n>tr|S5M3V3|S5M3V3_9CAUD/8-177 [subseq from] Repressor OS=Mycobacterium phage Odin OX=1340711 GN=77 PE=4 SV=1\n-------------------------------RGSSRSPLLPSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRLTTRQIVQKAWPWKTGVGHDKSKAYQILRDHGEYMRVGSFRTMSEDKQKRLKSWWKMLRDNDWVLEFDPNIPPTPGVApHGGFRYVQREEEDDDLLIRVNKYTNLSDEGEMLWCWPPDIEEIL---\n>tr|A0A345L0P2|A0A345L0P2_9CAUD/1-179 [subseq from] Immunity repressor OS=Mycobacterium phage Steamy OX=2250309 GN=70 PE=4 SV=1\n--------------------MSGKIN---IVKPQSRLPLTPSEIENLKRRGFNQSQIADLHGVTRQAVSWQKVTYGGSLTTRQIVNRTWPFKTTNLHGKSKAFQRLRDHGEYMRTGSFKGMSEEKVRNLKRWWKRLLDEDIVVEFDPSIEPYAGMAGGGFRYVPRRPEDDDLLIRVNKHTNLSEEGEMIWCWPPDIDSLLDE-\n>tr|A0A5P8D965|A0A5P8D965_9CAUD/1-186 [subseq from] Immunity repressor OS=Mycobacterium phage GaugeLDP OX=2652419 GN=71 PE=4 SV=1\n--------------------MSGKIKTLDVVPATSRQPLTLSVIEDLRRKGYNESEIARMHGVTRQAVNWQLKTYGGRLTTRQQVKELWPFETNNLHGKSKAFQRLRDHGEYMRTLSFKGFSPEKKQRLIRWWRMLRDENVVLEFDPNIEPYPGMAGGGFRYVPREERDDDLLIRVNEYTKVEEDGmldkraELLWKWPPNVDELL---\n>tr|A0A5N5UVZ2|A0A5N5UVZ2_MYCPH/3-169 [subseq from] Uncharacterized protein OS=Mycolicibacterium phlei DSM 43239 = CCUG 21000 OX=1226750 GN=MPHL21000_17885 PE=4 SV=1\n----------------------------------SRKPLTAKRIEELRAKGYNQSQIAEMHGVTRQAVSWHKVVYNGFLTTRQLAQRAWPWETTNTHGKSSAYQRLRDHGEFMLSGGFTSMSENKQRLLKSWWRRLRDDDVVLEFDPAIEPYRGMGGGGFRYVPRTAADGDLLIRVNEHTTLTAEGERIWCWPADIESLLG--\n>tr|A0A649VGA5|A0A649VGA5_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage BiancaTri92 OX=2656559 GN=74 PE=4 SV=1\n--------------------MSGKISNLDVTKATSRQPLTLSTIEDLRRKGYNYQQIGDMHGVTRQAVDWQVRTYGGRLDTRQQVKALWPFETHKPHDKSKAFQRLRDHGEYMRQLSFKGFSEEKKKRLISWWRMLRNDNVVLEFDPSIEPYPGMVGGGFRYVPREERDDDQLIRVNEHVRpevldedgsLDSKAELIWTWPPDIDDLI---\n>tr|A0A4D6T8Z1|A0A4D6T8Z1_9CAUD/4-191 [subseq from] Immunity repressor OS=Mycobacterium phage XianYue OX=2572534 GN=71 PE=4 SV=1\n-------------------NMSGKINNLDVVRPASRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQIKELWPFETKKLHSKSKAYQRLRDHGEYMRQLSFKGFSEDKKKRLIAWWRMLRDDNVVLEFDPNIPPAPGMAGGGFRYVPREDGDDDLLIRVNEHTRVEDDGklnmkaELLWKWPPEIDELLA--\n>tr|A0A649V6N4|A0A649V6N4_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Leogania OX=2656588 GN=74 PE=4 SV=1\n--------------------MSGKISNLDVNRATSRQPLTLSTIEDLRRKGYNYQQIGDMHGVTRQAVDWQVRTYGGRLDTRQQVKALWPFETHKPHDKSKAFQRLRDHGEYMRQLSFKGFSEEKKKRLISWWRMLRNDNVVLEFDPSIEPYPGMVGGGFRYVPREERDDDQLIRVNEHVRpevldedgsLDSKAELIWTWPPDIDDLI---\n>tr|A0A482JGG7|A0A482JGG7_9CAUD/6-170 [subseq from] Immunity repressor OS=Mycobacterium phage Refuge OX=2517967 GN=73 PE=4 SV=1\n----------------------------------ARTPLIPSVIEDLKRKGYNQSQIAEMHGVTRQAVSWQKQTYGGSLNTRQVVNKAWPFTTTNAHGKSKPFQRLRDHGEYMRVGSFKGMSDEKVRNLKKWWTKLRDEDVVLEFDPTIEPHPGMAGGGFRYVPREASDGDLLIRVNDYTNLTPQGEVIWRWPPNIDSL----\n>tr|R4JDZ9|R4JDZ9_9CAUD/4-61 [subseq from] Repressor OS=Mycobacterium phage Chy5 OX=1327948 GN=Chy5_0070 PE=4 SV=1\n-------------------SMSGKTTNPARRRATSRAPLIPSVIEDLRRKGYNQSEIAEMHGVTRQAVSWQTTKFQG------------------------------------------------------------------------------------------------------------------------------\n>tr|R4JDZ9|R4JDZ9_9CAUD/54-163 [subseq from] Repressor OS=Mycobacterium phage Chy5 OX=1327948 GN=Chy5_0070 PE=4 SV=1\n------------------------------------------------------------------------------------------WQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDLVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEHTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A0A0RRI2|A0A0A0RRI2_9CAUD/13-202 [subseq from] Immunity repressor OS=Mycobacterium phage Larenn OX=1560285 GN=PBI_LARENN_72 PE=4 SV=1\n------------------GNMSGKISNLDVVKSTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQQLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLRTENLVLEFDPTIEPAPGMAGGGFRYVPRTEEDDDLLIRVNEYTKVEDDGklnmkaELLWKWPPGIDELLSQ-\n>tr|A0A3Q9R922|A0A3Q9R922_9CAUD/13-202 [subseq from] Immunity repressor OS=Mycobacterium phage Malec OX=2500574 GN=73 PE=4 SV=1\n------------------GNMSGKISNLDVVKSTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQQLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLRTENLVLEFDPTIEPAPGMAGGGFRYVPRTEEDDDLLIRVNEYTKVEDDGklnmkaELLWKWPPGIDELLSQ-\n>tr|A0A6M3SYJ3|A0A6M3SYJ3_9CAUD/1-191 [subseq from] Immunity repressor OS=Mycobacterium phage Iwokeuplikedis OX=2725624 GN=77 PE=4 SV=1\n--------------------MSGKIKTLDVVKPPSRTPLLPSTIEELRRKGYNYQQIGDMHGVTRQAVDWQVRTYGVRLDTRQQVKELWPFATHRPHDKSKAFQRLRDHAEFMRQQSFNGFSEDKKKRLLSFWRMLRDENLVVEFDPAIEPYPGMSGGGFRYVPRETRDEDLLIRVNEHVKpqvldddgtLNAKAELLWTWPRDIDDMLAQ-\n>tr|A0A8A5LP85|A0A8A5LP85_9CAUD/4-192 [subseq from] Uncharacterized protein OS=Mycobacterium phage TarsusIV OX=2816472 GN=73 PE=4 SV=1\n-------------------NMSGKITTLSMMKPIGRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETSKEHSKSKAYQQLRDHGEYMRQLSFKDFSEEKKKRLISWWRRLRDNDLVLEFDPNIEPYPGMAGGGFRYVPREKRDGDCLIRINEYTKVDEDGlldkraELLWRFPPNIDEILSE-\n>tr|A0A076YP22|A0A076YP22_9CAUD/13-203 [subseq from] Immunity repressor OS=Mycobacterium phage Piro94 OX=1527520 GN=PBI_PIRO94_75 PE=4 SV=1\n------------------GNMSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWAWPQGIEDLI---\n>tr|A0A2H4PDB9|A0A2H4PDB9_9CAUD/1-142 [subseq from] Immunity repressor OS=Mycobacterium phage Ph8s OX=2047842 GN=SEA_PH8S_80 PE=4 SV=1\n-----------------------------------------------------------MHGVTRQAVSWQKKTYGGHLTTRQIVQQAWPWKTGKGHDKAKGYQRLRDHGEYMRVGSFRTMSEDKEKRLKSWWKMLRDNDLVLEFDPNIPPTPGVApQGGFRYVARTEADDDLLIRVNEYTNLTDEGEMLWCWPPDIEEIL---\n>tr|A0A3G8FI04|A0A3G8FI04_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Centaur OX=2488784 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQRLRDHGEYMRQLSFKGFSEEKEKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDDDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A249XMB2|A0A249XMB2_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Drake55 OX=2027892 GN=SEA_DRAKE55_77 PE=4 SV=1\n--------------------MSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWAWPQGIEDLI---\n>tr|A0A097EWA3|A0A097EWA3_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Equemioh13 OX=1555201 GN=PBI_EQUEMIOH13_75 PE=4 SV=1\n--------------------MSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWKMLLDQNVVLEFDPNIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A1I9SAZ1|A0A1I9SAZ1_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Baehexic OX=1897448 GN=SEA_BAEHEXIC_74 PE=4 SV=1\n--------------------MSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWKMLLDQNVVLEFDPNIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A2D1GKS6|A0A2D1GKS6_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Updawg OX=2041554 GN=SEA_UPDAWG_76 PE=4 SV=1\n--------------------MSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWKMLLDQNVVLEFDPNIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A515MKS6|A0A515MKS6_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage WideWale OX=2591130 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPASRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKSYQRLRDHGEYMRQLSFKGFSEEKKKRLIAWWKMLLDQNVVLEFDPNIEPYPGMAGGGFRYVPRTDEDEDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A1D8EUT3|A0A1D8EUT3_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage Isiphiwo OX=1897544 GN=75 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTTRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLSDDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A482JBC0|A0A482JBC0_9CAUD/8-168 [subseq from] Immunity repressor OS=Mycobacterium phage Jordennis OX=2517955 GN=76 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTTRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A481W3B5|A0A481W3B5_9CAUD/12-170 [subseq from] Immunity repressor OS=Mycobacterium phage Pharaoh OX=2530140 GN=71 PE=4 SV=1\n-----------------------------------RQALLPSVIEELRRKGFNQSQIAEMHGVTRQAVSWQKQTYGGSLTTRQIVNKAWPFKTTNLHGKSKPYQRLRDHGEFMRTGSFKTMSEEKTRNLKKWWKKLRDENVVLEFDPNIPPQPGMAGGGFRYVPRLPSDGDLLIRVNEYTTLTDEGELIWCWPP---------\n>tr|A0A1I9S419|A0A1I9S419_9CAUD/6-171 [subseq from] Immunity repressor OS=Mycobacterium phage DarthPhader OX=1912975 GN=SEA_DARTHPHADER_73 PE=4 SV=1\n----------------------------------PRTPLIPSVIEDLKRKGFNQSQIAAMHGVTRQAVSWQKTVYGGSVSTRQVVNKAWPYTTTNLHGKSKPFQRLRDHGEYMRQLSFKGMSAEKERNLKKWWKKLHDEDVVLEFDPTIEPYPGMAGGGFRYVPREASDGDLLIRVNKYTNLTPQGEVIWRWPPNIESLI---\n>tr|A0A120HUM4|A0A120HUM4_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage NaSiaTalie OX=1777062 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQRLRDHGEYMRQLSFKGFSAEKEKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDDDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A386KPI9|A0A386KPI9_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Flare16 OX=2315707 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRKPLTLSTIEDLVRKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKELWPFETKVIHSKSKAYQRLRDHGEYMRQLSFKGFSAEKEKRLIAWWRMLLDQNVVLEFDPSIEPYPGMAGGGFRYVPRTDEDDDLLIRVNEHVRpeildedgtLNAKAESLWTWPQGIEDLI---\n>tr|A0A2P1N2H1|A0A2P1N2H1_9CAUD/8-168 [subseq from] Immunity repressor OS=Mycobacterium phage SuperAwesome OX=2126817 GN=78 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A6G8R1F8|A0A6G8R1F8_9CAUD/8-168 [subseq from] Immunity repressor OS=Mycobacterium phage Pmask OX=2713264 GN=77 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A097BXI0|A0A097BXI0_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage VohminGhazi OX=1542912 GN=PBI_VOHMINGHAZI_78 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A142F2A6|A0A142F2A6_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage McFly OX=1805460 GN=PBI_MCFLY_79 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A143FQ85|A0A143FQ85_9CAUD/5-164 [subseq from] Uncharacterized protein OS=Mycobacterium phage Kazan OX=1821726 GN=79 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A2R4APF8|A0A2R4APF8_9CAUD/5-164 [subseq from] Uncharacterized protein OS=Mycobacterium phage GreedyLawyer OX=2126950 GN=73 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A4Y6EKS2|A0A4Y6EKS2_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage Kipper29 OX=2590881 GN=78 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|A0A7G9A1E0|A0A7G9A1E0_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage SuperCallie99 OX=2759456 GN=75 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|G1D170|G1D170_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage DaVinci OX=1034102 GN=76 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|G1EBU9|G1EBU9_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium virus Ericb OX=1041406 GN=77 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRKKGYNQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWQTTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFDPNIEPYPGMAGGGFRYVPRTLADDDLLIRANEYTTLTANGKRIWVWPPD--------\n>tr|G1JUU8|G1JUU8_9CAUD/4-193 [subseq from] Immunity repressor OS=Mycobacterium phage Turbido OX=1071504 GN=76 PE=4 SV=1\n-------------------NMSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A649V936|A0A649V936_9CAUD/8-176 [subseq from] Immunity repressor OS=Mycobacterium phage Yecey3 OX=2656617 GN=79 PE=4 SV=1\n----------------------------------HRAPLLPSVIEELRRKGFNQSQIADMHGVSRQAVSWQKKTYGGFVTPREIVREAWPFVTTNAHTKSTPYQRLRDHGEYMAQGSFKDMSDLKVRRLKAWWRKLHDEDVVLEFDPSIPAGPGMAGGGFRYVPRVVEDEDLLIRVNEHTTLSVYGETIWAWPPDIENLLAQP\n>tr|A0A1C9LYW6|A0A1C9LYW6_9CAUD/16-176 [subseq from] Immunity repressor OS=Mycobacterium phage Gruunaga OX=1897770 GN=SEA_GRUUNAGA_77 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A386KHQ6|A0A386KHQ6_9CAUD/16-176 [subseq from] Immunity repressor OS=Mycobacterium phage Zulu OX=2315547 GN=77 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|G8I6C0|G8I6C0_9CAUD/16-176 [subseq from] Repressor OS=Mycobacterium phage Blue7 OX=1089117 GN=79 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|V5R442|V5R442_9CAUD/16-176 [subseq from] Immunity repressor OS=Mycobacterium phage CloudWang3 OX=1391430 GN=78 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|V5R4N7|V5R4N7_9CAUD/16-176 [subseq from] Immunity repressor OS=Mycobacterium phage Zaka OX=1391433 GN=78 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A1B1PDM9|A0A1B1PDM9_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage ToneTone OX=1873989 GN=SEA_TONETONE_75 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A249XS49|A0A249XS49_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage Wiks OX=2027904 GN=SEA_WIKS_77 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A6B9J2I8|A0A6B9J2I8_9CAUD/5-164 [subseq from] Immunity repressor OS=Mycobacterium phage Yokurt OX=2686212 GN=77 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A411CKH4|A0A411CKH4_9CAUD/15-176 [subseq from] Immunity repressor OS=Mycobacterium phage Hexamo OX=2502454 GN=76 PE=4 SV=1\n--------------------------------GKTRSPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|V5R5P2|V5R5P2_9CAUD/15-176 [subseq from] Immunity repressor OS=Mycobacterium phage Artemis2UCLA OX=1391429 GN=77 PE=4 SV=1\n--------------------------------GKTRSPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A2H4PE23|A0A2H4PE23_9CAUD/4-164 [subseq from] Immunity repressor OS=Mycobacterium phage Koko OX=2047840 GN=SEA_KOKO_79 PE=4 SV=1\n---------------------------------KTRSPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEHTHLTPNGKRIWVWPPD--------\n>tr|A0A1D8EZU9|A0A1D8EZU9_9CAUD/4-193 [subseq from] Immunity repressor OS=Mycobacterium phage Jerm OX=1897503 GN=SEA_JERM_77 PE=4 SV=1\n-------------------NMSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKRRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A2S1PAL8|A0A2S1PAL8_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage AbbyPaige OX=2163589 GN=77 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A249XTV3|A0A249XTV3_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage JoshKayV OX=2024294 GN=76 PE=4 SV=1\n--------------------MSGKIKTLDVVKPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETHRVHSRSKAFQSLRDHGEYMRQQSFRGFSDEKKKRLISWWRRLWEQNVVLEFDPTIEPYPGMVGGGFRYVPREERDDELLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A386KLX4|A0A386KLX4_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage LilTurb OX=2315709 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKRRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A481VSD1|A0A481VSD1_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Whabigail7 OX=2530156 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKRRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A649VE39|A0A649VE39_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Bugsy OX=2656567 GN=77 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFRGFSEEKKRRLISWWRRLREQNVVLEFDPSIPPGPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|G1BML2|G1BML2_9CAUD/16-176 [subseq from] Repressor OS=Mycobacterium virus Gladiator OX=1034135 GN=75 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEYTHLTPNGKRIWVWPPD--------\n>tr|G1D1S4|G1D1S4_9CAUD/16-176 [subseq from] Immunity repressor OS=Mycobacterium virus Hammer OX=1034103 GN=78 PE=4 SV=1\n---------------------------------NTRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLRSFWTKLRDEDVVVEFNPNIEPYPGMAGGGFRYVPREIRDDCLLIRVNEYTHLTPNGKRIWVWPPD--------\n>tr|A0A143FRM3|A0A143FRM3_9CAUD/39-229 [subseq from] Uncharacterized protein OS=Mycobacterium phage ChipMunk OX=1821722 GN=76 PE=4 SV=1\n------------------GNMSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKRRLISWWRRLREQNVVLEFDPNIPPAPGMAGGGFRYVPRETRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|A0A097BXZ9|A0A097BXZ9_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Power OX=1552733 GN=PBI_POWER_75 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPAPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A2Z5H0D8|A0A2Z5H0D8_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Crucio OX=2234072 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPAPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A385D3Q3|A0A385D3Q3_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage QueenBeesly OX=2301544 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPAPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A7D5JRL0|A0A7D5JRL0_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Georgie2 OX=2743928 GN=77 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPAPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A7G3VAI3|A0A7G3VAI3_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium Phage FiringLine OX=2743926 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPAPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A142K581|A0A142K581_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Loser OX=1815969 GN=77 PE=4 SV=1\n--------------------MSGKIQTLDIVRPVSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETSKLHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLLSFWRRMWDQNVVLEFDPAIEPYEGFAGGGFRYVPREERDDDLLIRVNEFVRpevldedgtLNAQAELLWTWPPGIEELI---\n>tr|A0A5J6TE93|A0A5J6TE93_9CAUD/4-175 [subseq from] Immunity repressor OS=Mycobacterium phage Herbertwm OX=2601640 GN=70 PE=4 SV=1\n-------------------NMSGKIT----KQPGQRAALTLSDIESLRRKGYNQSQIADMYGVSRQAVSWHKHTYGGSLTPRQIVNKAWPWKTTNLHGKAVAYQRLRDHGEFMAN-GFKDMSDEKKRRLVRWWEFLRDNDVVLEFDPNLPPEPGVApHGGFAYRPRKLSDDDLIIRANEYTNLTEEGDMIWCWPPD--------\n>tr|A0A097EWR6|A0A097EWR6_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage SweetiePie OX=1555235 GN=75 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPGPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A2D1GJL7|A0A2D1GJL7_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage SnapTap OX=2041549 GN=SEA_SNAPTAP_75 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPGPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|A0A5J6TM56|A0A5J6TM56_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage SemperFi OX=2599879 GN=76 PE=4 SV=1\n--------------------MSGKISNLDVVRSTSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETTSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKKRLISWWRRLREQNVVLEFDPSIQPGPGMAGGGFRYVPRERRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPEGIEDLI---\n>tr|S5VNR9|S5VNR9_9CAUD/13-203 [subseq from] Repressor protein OS=Mycobacterium phage AnnaL29 OX=1076630 GN=ANNAL29_75 PE=4 SV=1\n-------------------IMSGKFASLDIVRPTSRRPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETTKLHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLISFWRRMWDQNVVLEFDPTIEPYPGMVGGGFRFVPRELRDDDLLIRVNEHVRpevldddgtLNAQAELLWTWPPGIEELIH--\n>tr|A0A143FR59|A0A143FR59_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage EvilGenius OX=1821723 GN=75 PE=4 SV=1\n--------------------MSGKISNLDVIRPTSRTPLTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQQLRDHGEYMRQLSFKGFSEEKKRRLISWWRRLREQNVVLEFDPNIPPAPGMAGGGFRYVPREMRDGDCLIRVNEHVRpevldedgtLNAKAELLWTWPQGIEDLI---\n>tr|D3JZD6|D3JZD6_9CAUD/5-193 [subseq from] Repressor OS=Mycobacterium phage RedRock OX=711470 GN=74 PE=4 SV=1\n--------------------MSGKIQTLDIVRPVSRRPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETSKLHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLLSFWRRMWDQNVVLEFDPTIEPYTGMVGGGFRYVPREERDDDLLIRVNEFVRpevldedgtLNAQAELLWTWPPGIEELI---\n>tr|A0A220NSH3|A0A220NSH3_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage Heffalump OX=1983575 GN=73 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRLREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A2R4AP61|A0A2R4AP61_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage Fameo OX=2126943 GN=74 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRLREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A649VAR6|A0A649VAR6_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage QueenB2 OX=2656599 GN=73 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRLREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A378VD19|A0A378VD19_9MYCO/10-171 [subseq from] Uncharacterized protein OS=Mycolicibacterium aichiense OX=1799 GN=NCTC10820_05325 PE=4 SV=1\n---------------------------------GQRAALTLSDIESLRRKGYNQSQIADMYGVSRQAVSWHKHTYGGSLTPRQIVNKAWPWKTTNLHGKAVAYQRLRDHGEFMAN-GFKDMSDEKKRRLVRWWEFLRDNDVVLEFDPNLPPEPGVApHGGFAYRPRKLSDDDLIIRANEYTNLTEEGDMIWCWPPD--------\n>tr|G1JV33|G1JV33_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Trixie OX=1071503 GN=75 PE=4 SV=1\n--------------------MSGKITTLEIVKPTSRIPLTLSAIEDYVRKGYNYQQIGDMHGVTRQAVEWHVKTYGGRLNTRQQAKALWPFETLSKHSRSKAFQSLRDHGEYMRQLSFRGFSEEKKKRLISFWRRMWDQNVVLEFDPSIEPGPGMAGGGFRFVPREKRDGDLLIRVNEHVRpevvdddgtLNAQAELLWTWPPNVEDII---\n>tr|A0A1C9LZ81|A0A1C9LZ81_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage DudeLittle OX=1897766 GN=SEA_DUDELITTLE_74 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRMREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A2D1G5E2|A0A2D1G5E2_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage Anselm OX=2041517 GN=SEA_ANSELM_77 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRMREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A2D1G9X5|A0A2D1G9X5_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage Dalmatian OX=2041527 GN=SEA_DALMATIAN_76 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRMREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A649VBN8|A0A649VBN8_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage Retro23 OX=2656600 GN=76 PE=4 SV=1\n--------------------MSGKISTLGVIKSPSRTALTLSTIEDLVGKGYNYREIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETLSIHSKSKAFQSLRDHGEYMRQQSFRGFSEEKKKRLISWWRRMREQNVVLEFDPNIPPMPGMAGGGFRYVQREERDGDCLIRVNEHVRpeildedgtLNAKAELLWTWPQGIEDLIA--\n>tr|A0A5J6T2K2|A0A5J6T2K2_9CAUD/9-174 [subseq from] Immunity repressor OS=Mycobacterium phage Jeeves OX=2652402 GN=79 PE=4 SV=1\n---------------------------------SGRQPLIPSVIEDLKRKGYNQSQIAGMHGVTRQAVSDMKIRYGGSVTLRQTVNEAWPWDTSNLHGKSSAFQRLRDHGEFM-VTDGKGMSEGKLDKLKRWWKFLRDNDLVLEFDPSIEPYEGQKYGGFRYVPRVLEDEELLIRVNEHTTMTPKGEVIWSWPTDIETLL---\n>tr|A0A6M3T3B0|A0A6M3T3B0_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage AN3 OX=2725647 GN=77 PE=4 SV=1\n--------------------MSGKISTLDVIRPTSRTPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETRKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDQIIRVNEHVRpeildedgtLNARAESVWTMPPNVEELVS--\n>tr|A0A6M3T3J8|A0A6M3T3J8_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage VA6 OX=2725638 GN=75 PE=4 SV=1\n--------------------MSGKISTLDVIRPTSRTPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQVKALWPFETRKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDQIIRVNEHVRpeildedgtLNARAESVWTMPPNVEELVS--\n>tr|A0A0Q8ZPK2|A0A0Q8ZPK2_9MYCO/7-168 [subseq from] Uncharacterized protein OS=Mycobacterium sp. Root265 OX=1736504 GN=ASE48_08550 PE=4 SV=1\n-----------------------------------RAPLVFSVVEDLRRRGYNQSQIAEMHGVTRQAVSWQKKTYGGSLTPRQIVQKAWPWKTSDAHGKSKAYQHLRNHGEFMATGG-RDMNEDKINRLKSWWQKLRDENVVLEFDPSIPPIPGVSpHGGFRYVPRLASDGDLLIRVNEHTDLSDEGEMIWCWPPDSS------\n>tr|A0A142K4Y3|A0A142K4Y3_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage Eidsmoe OX=1821221 GN=PBI_EIDSMOE_75 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRVNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A2P1A123|A0A2P1A123_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage Conquerage OX=2081622 GN=75 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRVNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A2P1A2Z2|A0A2P1A2Z2_9CAUD/10-181 [subseq from] Immunity repressor OS=Mycobacterium phage Scherzo OX=2081628 GN=76 PE=4 SV=1\n--------------------------------RPSRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLAQ-\n>tr|A0A1D8EY87|A0A1D8EY87_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Qobbit OX=1897484 GN=SEA_QOBBIT_75 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRVNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A2Z5H5S7|A0A2Z5H5S7_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Priya OX=2250366 GN=75 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRVNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A3G8FFG7|A0A3G8FFG7_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage ExplosioNervosa OX=2488785 GN=75 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRVNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A1D8EVC4|A0A1D8EVC4_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Kalpine OX=1897545 GN=75 PE=4 SV=1\n--------------------MSGKITTLEIVKPTSRIPLTLSSIEDYTRKGYNYQQIGDMHGVTRQAVEWHVKTYGGRLNTRQQAKALWPFETISKHSRSKVFQSLRDHGEYMRQLSFRGFSEEKKKRLISFWRRMWDQNVVLEFDPSIPPGPGMAGGGFRFVPREERDDDLLIRVNQHVRpevldedgtLNAQAELLWTWPPNVEDII---\n>tr|A0A222ZP54|A0A222ZP54_9CAUD/4-193 [subseq from] Immunity repressor OS=Mycobacterium phage Changeling OX=2015877 GN=74 PE=4 SV=1\n-------------------NMSGKFQTLEVVRPTSRQPLTLSAIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETTKLHSRSKAFQSLRDHGEYMRQLSFRGFSDEKKKRLISFWRRMWEQGTVLEFDPSIEPYPGMIGGGFRYVPREERDDDLLIRVNSHIRpevldddgtLNAKAELLWTWPPGIEELI---\n>tr|A0A481W4B7|A0A481W4B7_9CAUD/10-179 [subseq from] Immunity repressor OS=Mycobacterium phage Arissanae OX=2530173 GN=74 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNEHTQSQPYQRLRDHGEWQQTGG-KGMSENKTKRLKSWWRKLRDEDVVLEFDPSIEPGPGMAGGGFRYVPRDIVVDgpDLLIRRNEHTApLTEKTEAIWSFPYDLDSLI---\n>tr|G8I7U4|G8I7U4_9CAUD/6-176 [subseq from] Repressor OS=Mycobacterium virus Alma OX=1089111 GN=75 PE=4 SV=1\n--------------------------------QPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRLNEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A514U3I9|A0A514U3I9_9CAUD/3-179 [subseq from] Immunity repressor OS=Mycobacterium phage Lucyedi OX=2593349 GN=80 PE=4 SV=1\n----------------------GKTQQS----GSFRAPLIFSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNLHGKSVPFQRLRDHGEFMATGGA-GMSENKIRRLKAWWRKLRDEDVVLEFDPNIPPTPGMAGGGFRYVHRDIVTDgpDLLIRVNEHTApMTEKSEMIWSFPHDIEEILQ--\n>tr|W0LJ95|W0LJ95_9CAUD/3-179 [subseq from] Immunity repressor OS=Mycobacterium phage EagleEye OX=1429759 GN=81 PE=4 SV=1\n----------------------GKTQQS----GSFRAPLIFSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNLHGKSVPFQRLRDHGEFMATGGA-GMSENKIRRLKAWWRKLRDEDVVLEFDPNIPPTPGMAGGGFRYVHRDIVTDgpDLLIRVNEHTApMTEKSEMIWSFPHDIEEILQ--\n>tr|A0A127KPU7|A0A127KPU7_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage Myxus OX=1805458 GN=PBI_MYXUS_77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A1C9M1N6|A0A1C9M1N6_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage HortumSL17 OX=1897517 GN=SEA_HORTUMSL17_78 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|G1BR82|G1BR82_9CAUD/10-180 [subseq from] Repressor OS=Mycobacterium virus Packman OX=1034142 GN=76 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A0K2CPU6|A0A0K2CPU6_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Pioneer OX=1698417 GN=SEA_PIONEER_77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A127KP95|A0A127KP95_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Catalina OX=1792253 GN=PBI_CATALINA_79 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A1D9CAC3|A0A1D9CAC3_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Phaeder OX=1897487 GN=SEA_PHAEDER_77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A2P1A267|A0A2P1A267_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Phonnegut OX=2081626 GN=77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A4Y6EW30|A0A4Y6EW30_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Tubs OX=2559715 GN=77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|A0A649V8R2|A0A649V8R2_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Beemo OX=2656558 GN=77 PE=4 SV=1\n--------------------------------KPTRAPLIFSTIEDLRRKGHNQSEIAEMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEYQQTGG-KGMSDNKLMRLRAWYRKLRDEDVVLEFDPSIPPGPGLAGGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLG--\n>tr|W8EBA8|W8EBA8_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage CRB1 OX=1458841 GN=CRB1_77 PE=4 SV=1\n--------------------MSGKITTLDVVRPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKTKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREMRDDGLVIRVNEHVRpeildedgtLTARAESVWALPPNVEELVS--\n>tr|A0A7G8LIF1|A0A7G8LIF1_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage BengiVuitton OX=2762282 GN=75 PE=4 SV=1\n--------------------MSGKIKTLDVVRPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLISWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREDRDDDQIIRVNEYVRpeildedgtLSARAESVWTLPPNVEELIS--\n>tr|M4HZC7|M4HZC7_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage First OX=1245814 GN=First_0076 PE=4 SV=1\n--------------------MSGKITTLDVVRPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKEHSRSKAYQSLRDHGEYMRQLSFRGFSAEKEKRLVSWWRRLLEEDVVLEFDPTIEPYPGMAGGGFRYVPRTIEDDGLVIRVNEHLRpeildedgtLNARAESVWTLPPNVEELVS--\n>tr|W8EHU8|W8EHU8_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage 20ES OX=1458726 GN=20ES_77 PE=4 SV=1\n--------------------MSGKITTLDVVRPPSRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKEHSRSKAYQSLRDHGEYMRQLSFRGFSAEKEKRLVSWWRRLLEEDVVLEFDPTIEPYPGMAGGGFRYVPRTIEDDGLVIRVNEHLRpeildedgtLNARAESVWTLPPNVEELVS--\n>tr|A0A2Z5XBJ4|A0A2Z5XBJ4_9CAUD/1-122 [subseq from] Putative immunity repressor OS=Mycobacterium phage C3 OX=2072005 PE=4 SV=1\n------------------------------------------------------------------------------MTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A6M3T0R3|A0A6M3T0R3_9CAUD/1-122 [subseq from] Immunity repressor OS=Mycobacterium phage VC3 OX=2725637 GN=77 PE=4 SV=1\n------------------------------------------------------------------------------MTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A6M3T4Q8|A0A6M3T4Q8_9CAUD/1-122 [subseq from] Immunity repressor OS=Mycobacterium phage ANI8 OX=2725645 GN=78 PE=4 SV=1\n------------------------------------------------------------------------------MTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A6M3T5K5|A0A6M3T5K5_9CAUD/1-122 [subseq from] Immunity repressor OS=Mycobacterium phage AN9 OX=2725646 GN=78 PE=4 SV=1\n------------------------------------------------------------------------------MTTRQIVQQAWPWQTTKFQGKSKAYQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A514A3T2|A0A514A3T2_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Benvolio OX=2591074 GN=73 PE=4 SV=1\n--------------------MSGKISTLDVIKPTSRTPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKGHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDLVIRVNEHVRpeildedgtLNARAESVWTLPPGVEELT---\n>tr|W0LJU9|W0LJU9_9CAUD/1-189 [subseq from] Immunity repressor OS=Mycobacterium phage Echild OX=1437839 GN=76 PE=4 SV=1\n--------------------MSGKISTLDVIKPTSRTPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFQTLKGHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDLVIRVNEHVRpeildedgtLNARAESVWTLPPGVEELT---\n>tr|A0A5Q2WRX7|A0A5Q2WRX7_9CAUD/10-179 [subseq from] Immunity repressor OS=Mycobacterium phage Rahalelujah OX=2653766 GN=78 PE=4 SV=1\n--------------------------------RPTRAPLLFSTIEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNAHTKSQPYQRLRDHGEFQT-SGFKHMSDNKIMRLKAWWRKLRDEDVVLEFDPSIPPGPGMAGGGFRYVPRDIVTDglELVIRVNEHTApLDEKKSLIWSFPHDLEDIL---\n>tr|A0A386KPD4|A0A386KPD4_9CAUD/1-190 [subseq from] Immunity repressor OS=Mycobacterium phage NicoleTera OX=2315713 GN=72 PE=4 SV=1\n--------------------MSGKIIHHlDVVRPASRQALTLSTIEDLVGKGFNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETTRLHSRSKAFQSLRDHGEYMRQLSFRSFSEEKKKRLISFWRRMWEQNVVLEFDPTIQPYPGMVGGGFRYIPREERDEDLLIRVNEFVRpevldddgtLNAQAELLWTWPPGIEELI---\n>tr|A0A160DG97|A0A160DG97_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Soups OX=1838079 GN=83 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A166YEG7|A0A166YEG7_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage KatherineG OX=1838070 GN=84 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A1B3B0G2|A0A1B3B0G2_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage JSwag OX=1887649 GN=84 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A1B3B158|A0A1B3B158_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Remus OX=1887652 GN=84 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A1B3B1C1|A0A1B3B1C1_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Strosahl OX=1887653 GN=84 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A2P1JSK0|A0A2P1JSK0_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Waits OX=2108120 GN=83 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A345KXX7|A0A345KXX7_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage LastResort OX=2250295 GN=82 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A515MHV5|A0A515MHV5_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage ReMo OX=2591115 GN=82 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A5P8D840|A0A5P8D840_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage MinecraftSteve OX=2652413 GN=84 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A7D5JR99|A0A7D5JR99_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Epsocamisio OX=2743984 GN=81 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGEYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A5J6TPD0|A0A5J6TPD0_9CAUD/3-179 [subseq from] Immunity repressor OS=Mycobacterium phage Toaka OX=2599881 GN=77 PE=4 SV=1\n----------------------GKIKR----PA-NRASLIFSTIEDLRLKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQPYQRLRDHGEWQETGG-KGMSDNKTSRLKSWWRKLRDEDVVLEFDPSIPPAPGMAGGGFRYVPRDIVTDgtDLLIRVNEHTaRLDEKTEAIWSFPFDIEDILGQ-\n>tr|A0A7D5FUT1|A0A7D5FUT1_9CAUD/9-174 [subseq from] Immunity repressor OS=Mycobacterium phage Gail OX=2743994 GN=77 PE=4 SV=1\n---------------------------------TGRQPLIPSVIEDLKRKGYNQSQIAGMHGVTRQAVSDMKIRYGGSVTLRQSVNEAWPWETSNLHGKSSAYQRLRDHGEFM-VTDGKGMSDSKIDKLKRWWKFLRDNDLVLEFDPNIDPYPGQKYGGFRYVPRVLEDEELLIRVNEHTKMTPKGEVIWSWPTDIETLL---\n>tr|A0A160DGG7|A0A160DGG7_9CAUD/12-172 [subseq from] Immunity repressor OS=Gordonia phage Rosalind OX=1838077 GN=82 PE=4 SV=1\n--------------------------------------LSKEVIESLKSQGHNQTEIAEMFNVTRQAVSWHIRTYGGRMSTRQVVNEAWPWETEFKHTKAVPYRRLRDHGDYMRTGG-KGMSEDKLNRLKKWWKKLRDEDIVVEFDPEIPPTPGVAkTGGFAYRPRVIGDDDLLIRVNEHTNLTDEGEMIWCWPPDIAQL----\n>tr|A0A5J6TE98|A0A5J6TE98_9CAUD/6-175 [subseq from] Immunity repressor OS=Mycobacterium phage Vanisoa OX=2599883 GN=74 PE=4 SV=1\n--------------------------------RPTRAPLLFSTIEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNTNTKSQAYQRLRDHGEFQTAG-FKGMSDNKIMRLKAWWRKLRDEDVVLEFDPNIPPGPGLAGGGFRYVPRDIVVDglELVIRVNEHTApLDEKKRLIWSFPHDLEDIL---\n>tr|A0A5J6T377|A0A5J6T377_9CAUD/6-177 [subseq from] Immunity repressor OS=Mycobacterium phage Keziacharles14 OX=2575611 GN=74 PE=4 SV=1\n--------------------------------RPTRAPLLFSTIEDLRRKGLNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTKSQAYQRLRDHGEYQETGG-KGMSANKIMRLRAWYRKLLAEDVVLEFDPNIPPGPGLAGGGFRYIPRDIVTDgkELLIRVNEHTAhLDEKKRLIWSFPDDLEEFLSQ-\n>tr|A0A482JGB8|A0A482JGB8_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage Charm OX=2517942 GN=71 PE=4 SV=1\n--------------------------------RPTRAPLIFSTVEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFKTTNEHRKSQQFQRLRDHGEFQETGG-KGMSDNKMMRLRAWWRKLLAENVVLEFDPSIPPAPGLAGGGFRYVPRDLDVDgpELLIRVNEHTApLDEKKKLIWSFPDDLEDLLS--\n>tr|A0A649V7K3|A0A649V7K3_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage DreamTeam1 OX=2656573 GN=71 PE=4 SV=1\n--------------------------------RPTRAPLIFSTVEDLRRKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFKTTNEHRKSQQFQRLRDHGEFQETGG-KGMSDNKMMRLRAWWRKLLAENVVLEFDPSIPPAPGLAGGGFRYVPRDLDVDgpELLIRVNEHTApLDEKKKLIWSFPDDLEDLLS--\n>tr|A0A0F6SJH8|A0A0F6SJH8_9CAUD/9-174 [subseq from] Immunity repressor OS=Mycobacterium phage Luchador OX=1647300 GN=78 PE=4 SV=1\n---------------------------------TGRQPLIPSVIEDLKRKGYNQSQIAGMHGVSRQAVSDMKIRYGGSVTLRQSVNEAWPWQTTNLHGKSTAYQRLRDHGEFM-VTDGKGMSEGKIEKLKRWWKFLRDNDLVLEFDPNIAPYPGQKYGGFRYVPRVLEDEELLIRVNEHTTMTPKGEVIWSWPTDIETLL---\n>tr|A0A481W6T5|A0A481W6T5_9CAUD/6-174 [subseq from] Immunity repressor OS=Mycobacterium phage Elephantoon OX=2530187 GN=77 PE=4 SV=1\n--------------------------------RPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNAHTKSQPYQRLRDHGEWQQTGG-KGMSDNKIMRLKAWWRKLRDEDVVLEFDPSIPPGPGMAGGGFRYVPRDIVVDgkELVIRRNEHTaQLDEKTEAIWSFPYDVEDL----\n>tr|A0A2Z4Q1I7|A0A2Z4Q1I7_9CAUD/13-174 [subseq from] Immunity repressor OS=Gordonia phage Nedarya OX=2234025 GN=79 PE=4 SV=1\n--------------------------------------LSKEVIEDLKGKGYNQTEIADMFHVTRQAVSWHMRTYGGRMSTRQIVNESWPWATEYKHSKAVPYRRLRDHGEFMRTGGD-GMNPDSLRRLKNWWKKIRNDDVVVEFDPEIPPIKGVsAHGGFAYRPRVMGDDDLLIRVNEHTTLTEEGEMIWCWPPDIDQLI---\n>tr|A0A5J6TLG8|A0A5J6TLG8_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage Maminiaina OX=2599871 GN=77 PE=4 SV=1\n--------------------------------RPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTQSQPYQRLRDHGEYQQTGG-KGMSDNKIMRLRAWYRKLLAEDVVLEFDPAIPPGPGMAGGGFRYVPRDkaVDGEELLIRVNEHTApLDEKRRLIWSFPDDLEEFLG--\n>tr|A0A5J6TY50|A0A5J6TY50_9CAUD/10-180 [subseq from] Immunity repressor OS=Mycobacterium phage BogosyJay OX=2599858 GN=77 PE=4 SV=1\n--------------------------------RPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNAHTQSQPYQRLRDHGEYQQTGG-KGMSDNKIMRLRAWYRKLLAEDVVLEFDPAIPPGPGMAGGGFRYVPRDkaVDGEELLIRVNEHTApLDEKRRLIWSFPDDLEEFLG--\n>tr|A0A5Q2WKJ1|A0A5Q2WKJ1_9CAUD/6-174 [subseq from] Immunity repressor OS=Mycobacterium phage LoneWolf OX=2653761 GN=78 PE=4 SV=1\n--------------------------------QPTRAPLIFSTIEDLRRKGHNQSEIADMFGVTRQAVSWQKKTYGGRMTPRDIVREAWPFQTTNAHTKSQPYQRLRDHGEWQQTGG-KGMSDNKIMRLKAWWRKLRDEDVVLEFDPAIPPGPGMAGGGFRYVPRDIVVDgkELVIRRNEHTApLNEKTEAIWSFPYDVEDL----\n>tr|A0A5Q2WQ24|A0A5Q2WQ24_9CAUD/17-176 [subseq from] Immunity repressor OS=Gordonia phage Anon OX=2653744 GN=80 PE=4 SV=1\n---------------------------------------SKEVIETYLSQGLTQSDVAKLYNVTRQAVSWHMKTYGGRMSTRQIVNEAWPWETKAGHDKATPYRRLRDHGEFMKTGG-RGMNEDKLARLKKWWKMLRDEDLVVEFDPSIPPIKGVAShGGFAYRPREISDGNLLIRVNEHTTLTKAGAMIWRWPPNIDRL----\n>tr|A0A649VD17|A0A649VD17_9CAUD/6-176 [subseq from] Immunity repressor OS=Mycobacterium phage SheaKeira OX=2656603 GN=71 PE=4 SV=1\n--------------------------------QPSRAPLLFSTIEDLRLKGHNQSEIAEMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFATTNANTKSQPYQRLRDHGEFQQTGG-KGMSDNKMMRLRAWWRKLQSENVVLEFDPDIPPSPGLAGGGFRYVPRDLDVDgpELLIRVNEHTApLDEKKKLIWSFPDDLEDLLS--\n>tr|A0A142K5H1|A0A142K5H1_9CAUD/15-204 [subseq from] Immunity repressor OS=Mycobacterium phage ArcherNM OX=1815972 GN=69 PE=4 SV=1\n--------------------MSRKIQTLDVVRPASRQPLTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNTRQQAKALWPFETTRLHSRSKAFQSLRDHGEYMRQLSFRGFSDEKKRRLLSFWRRMWDQGTVLEFDPSIEPYPGMIGGGFRYVTREERDDDLLIRVNDFVRpevldddgtLDSKAELLWTFPPGIEDLIH--\n>tr|A0A0M4RTF1|A0A0M4RTF1_9CAUD/1-171 [subseq from] Immunity repressor OS=Mycobacterium phage LadyBird OX=1718166 GN=SEA_LADYBIRD_79 PE=4 SV=1\n--------------------------------------MTLSTIEDLVGKGYNYRQIGDMHGVTRQAVEWQVKTYGGRLNVRQQVKALWPFETLKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREDRDDDLIIRVNEHVRpeildedgtLSARAESVWTLPPNVEELT---\n>tr|A0A5J6T7A6|A0A5J6T7A6_9CAUD/1-125 [subseq from] Immunity repressor OS=Mycobacterium phage Hutc2 OX=2652408 GN=72 PE=4 SV=1\n------------------------------------------------------------------------------MTTRQVVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADKVQRLKSWWRMLRDDDVVLEFDPSIEPYPGMSGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A7I7M303|A0A7I7M303_9MYCO/469-644 [subseq from] Uncharacterized protein OS=Mycolicibacterium psychrotolerans OX=216929 GN=MPSYJ_00390 PE=4 SV=1\n-------------------------------QANSRTPLVFGEIEELRRRGLNQSEIAAMHGVSRQAVSWQKKTYGGMLTPRQLVQKEWPWETTSLHGKSKAFQRLRDHGEFMVT-AGGGMSEDKLQRLKSWWRTLRRQDVVLEFDPSTPPHPGLSPyGGFAYMKRVVEDDDLLIRVNEFTRtddagrLSASAAAMWRWPDNIDDLLR--\n>tr|A0A7K2V914|A0A7K2V914_RHOER/11-172 [subseq from] XRE family transcriptional regulator OS=Rhodococcus erythropolis OX=1833 GN=GQ649_28770 PE=4 SV=1\n-------------------------------------DLTKEVIESLKAKGFNQSEIAEMYNVSRQAVSWHMRTYGGEKSPRQIVNEVWPWKTTAGHDKATAYRRLREHGEFMQTGGG-GMSEDTLDRLKKWWKKLREENLVVEFDPNIAPIPGIASrGGFAYRKRTVGD-DLLIRVNEFTELTEEGEMIWRWPPDIESLI---\n>tr|A0A402CN08|A0A402CN08_9NOCA/14-174 [subseq from] Phage repressor OS=Rhodococcus wratislaviensis OX=44752 GN=Rhow_000534 PE=4 SV=1\n-------------------------------------DLTKAVIESLKAQGFNQSEIAEWYNVSRQAVSWHMRTYGGEKSPRQIVNEAWPWKTTAGHDKATAYRRLRDHGEFVQTGGG-GMSEDKLDRLKKWWKKLRKENLVVEFDPSIPPIPGIASrGGFAYRARTV-DDDMLIRVNEFTELTEEGEMIWRWPPDIDSL----\n>tr|A0A1A0MJ54|A0A1A0MJ54_9MYCO/4-171 [subseq from] Repressor OS=Mycolicibacterium mucogenicum OX=56689 GN=A5642_02330 PE=4 SV=1\n---------------------------KAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETKGPHGKSAAYQRLRDHGEFIATGG-RDMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRNprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>tr|A0A4R5WHD6|A0A4R5WHD6_9MYCO/7-170 [subseq from] XRE family transcriptional regulator OS=Mycolicibacterium mucogenicum OX=56689 GN=EUA03_12720 PE=4 SV=1\n------------------------------KAAHSR-ALVFGEIEELRRKGFNQTEIANLHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETTSSHSKSVAYQRLRDHGQFIAAGA-REMSDFKRGRHAAWVKMMRENDFVLEFDPNIPPTPRIApGGGFAYRKRDPRLDgfELLIRVNEFTNLTPEGRRLWSYA----------\n>tr|A0A7I7SIY5|A0A7I7SIY5_9MYCO/99-259 [subseq from] Uncharacterized protein OS=Mycolicibacterium sarraceniae OX=1534348 GN=MSAR_00700 PE=4 SV=1\n----------------------------------TRQPLVFGVIEDLRRRGYNQSEIADMHGVSRQAVSWHKMTYGGHLTTRQMVNKAWPWKTTNLHGKSKVYQRLRDHGEYIATGGS-GMNETKIKLLESWWRTLRDKNVVVEFDPNLPPEKGISpHGGFAYRERIPEDGDLIIRKNEFTNLSEEGAKIWRWPSD--------\n>tr|A0A4R5WHC6|A0A4R5WHC6_9MYCO/4-169 [subseq from] Uncharacterized protein OS=Mycolicibacterium mucogenicum OX=56689 GN=EUA03_12725 PE=4 SV=1\n---------------------------KAYKTATNRKALIFSEIEELRRRGLNQTEIADMHGVSRQAVSWHKTTYGGQKSTRQIVNEAWPWETTHLHGKAAPYKRLRDHAEYMATD-GRGMSEDKLKRLRTFYRKLRNENLVVEFDPDLPPEPGVSpHGGFAYRQRMVQDGDLLIRVNDHTQITDDGREIWCFP----------\n>tr|R4JF74|R4JF74_9CAUD/56-154 [subseq from] Repressor-like protein OS=Mycobacterium phage Chy4 OX=1327947 GN=Chy4_0071 PE=4 SV=1\n-----------------------------------------------------------------------------------------------------SGQRLRDHGEYMRVGSFKTMSEDKRKRLLSWWKMLRDNDLVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEHTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A2N8LQ70|A0A2N8LQ70_9MYCO/4-157 [subseq from] Repressor-like immunity protein OS=Mycobacterium sp. ENV421 OX=1213407 GN=CRM90_12095 PE=4 SV=1\n-----------------------------------------GVIEDLRRRGYNQSEIADMHGVSRQAVSWHKMTYGGHLTTRQMVNKAWPWKTTNLHGKSTVYQRLRDHGEYIATR-GRGMSEGKLKLLESWWRKLREGNLVVEFDPNFPPEKGVSPyGGFAYRERIPEDGDLIIRMNEFTNLSEEGAKIWRWPSD--------\n>tr|A0A2Z5XCC3|A0A2Z5XCC3_9CAUD/1-148 [subseq from] Putative immunity repressor OS=Mycobacterium phage GS4E OX=2072004 PE=4 SV=1\n--------------------------------------------------------------MTRQAVEWQVKTYGGRLNTRQQVKALWPFETRKEHSRSKAYQSLRDHGEYMRQLSFRGFSEEKKKRLVSWWRRLLEENVVLEFDPTIEPYPGMAGGGFRYVPREERDDDQIIRVNEHVRpeildedgtLNARAESVWTMPPNVEELVS--\n>tr|A0A1Q9VDC1|A0A1Q9VDC1_9ACTN/12-166 [subseq from] Repressor OS=Gordonia sp. CNJ-863 OX=1904963 GN=BJF87_21205 PE=4 SV=1\n--------------------------------------LSKEVIEDLKSKGYNQTQIAEMYGVTRQAVSWHLKTYGGKKSTRQLINDCWPWETSKGHDKAIPYRRLRDHGEYMATFG-AGMNADKLDRLRVWWRKLEREAVVVEFDPNIPPTKGIcAHGGFAYRQRDDSDGNLLIRVNEYTNLTDEGRKVWCRP----------\n>tr|A0A6I5ZK08|A0A6I5ZK08_9ACTN/12-166 [subseq from] XRE family transcriptional regulator OS=Gordonia sp. 135 OX=2676309 GN=GKZ92_22145 PE=4 SV=1\n--------------------------------------LSKEVIEDLKSKGYNQTQIAEMYGVTRQAVSWHLKTYGGKKSTRQLINDCWPWETSKGHDKAIPYRRLRDHGEYMATFG-AGMNADKLDRLRVWWRKLEREAVVVEFDPNIPPTKGIcAHGGFAYRQRDDSDGNLLIRVNEYTNLTDEGRKVWCRP----------\n>tr|W9DLL8|W9DLL8_9ACTN/12-166 [subseq from] Repressor OS=Gordonia alkanivorans CGMCC 6845 OX=1423140 GN=V525_04475 PE=4 SV=1\n--------------------------------------LSKEVIEDLKSKGYNQTQIAEMYGVTRQAVSWHLKTYGGKKSTRQLINDCWPWETSKGHDKAIPYRRLRDHGEYMATFG-AGMNADKLDRLRVWWRKLEREAVVVEFDPNIPPTKGIcAHGGFAYRQRDDSDGNLLIRVNEYTNLTDEGRKVWCRP----------\n>tr|A0A222YZF6|A0A222YZF6_9CAUD/6-163 [subseq from] Immunity repressor OS=Mycobacterium phage MyraDee OX=2024303 GN=SEA_MYRADEE_73 PE=4 SV=1\n-----------------------------------KQELSLAIIEDLKGKGYSQSEIAEMFGVTRQAVSWHKHTYGGRLTPREIVHQSFPWAVSTEQSQSSPYRRMRDHGEYVATGGV-GMSEDKLKRLRTFYRKLRDDNLVLEYDPSLPPEPGVSNkGGFAFRRRAPEDGDLLIRVNEHTHITEEGRIIWRFP----------\n>tr|G4I6N5|G4I6N5_MYCRH/9-168 [subseq from] Uncharacterized protein OS=Mycolicibacterium rhodesiae JS60 OX=931627 GN=MycrhDRAFT_5748 PE=4 SV=1\n----------------------------------SYRPLDLSTIEAYRKAGLNQTEIAEMHGVSRQAVSWHKTTYGGLMSTRQIVDKAWPWETTRAQGASVAFQRLRDHGEYMATGG-RGMSESKIKRYKSWLNRMRENDWVVEFDPNIPPTPKVApNGGFAYRPRDPKIDgyHLLIRVNEFTNLTPEGKRIWRY-----------\n>tr|A0A3T0UWT1|A0A3T0UWT1_9ACTN/12-166 [subseq from] Uncharacterized protein OS=Gordonia alkanivorans OX=84096 GN=C5O27_05330 PE=4 SV=1\n--------------------------------------LSKEVIEDLKSKGYNQTQIAEMYGVTRQAVSWPLKTYGGKKSTRQLINDYWPWETSKGHDKAIPYRRLRDHGEYMATFG-AGMNSDKLDRLRVWWRKLEREAVVVEFDPNIPPTKGIcAQGGFAYRQRDDSDGNLLIRVNEYTNLTDEGRKVWCRP----------\n>tr|U0FMT9|U0FMT9_9NOCA/11-166 [subseq from] Uncharacterized protein OS=Rhodococcus sp. P27 OX=1384060 GN=N806_29685 PE=4 SV=1\n-------------------------------------KLSLAEVEDLKNKGYSQTEIAEMYGVTRQYVSWIKHTYGGRLTPKEQVLQHFPWDVPVHMGQSSPYRRLRDHGEYVATGGV-GMTEDKLKRLRTFYKRLRDGNLVVEFDPELPPERGVSSvGGFAFRNREPDDDDLLIRVNEYTHLTDEGKMIWRFP----------\n>tr|A0A7I7ZK91|A0A7I7ZK91_9MYCO/8-171 [subseq from] Uncharacterized protein OS=Mycolicibacterium phocaicum OX=319706 GN=MPHO_12010 PE=4 SV=1\n-------------------------------TATHRKALIFSQIEELRRRGLNQTEIADMHGVSRQAVSQQKIKYGGVKTTRQIVNEAWPWTTTGLHGKSAAYQRLRDHGEFIVS-GGREMSEYKLGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDPQTDgfNLLIRVNEFTTLTPEGRRLWSYA----------\n>tr|A0A386KPN1|A0A386KPN1_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium phage NearlyHeadless OX=2315712 GN=85 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEFDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A6M3SYH8|A0A6M3SYH8_9CAUD/8-163 [subseq from] Helix-turn-helix DNA-binding domain protein OS=Mycobacterium phage Danforth OX=2725623 GN=85 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEFDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|G8IRG3|G8IRG3_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium virus Saintus OX=1097754 GN=80 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEFDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A391PIY4|A0A391PIY4_9MYCO/8-136 [subseq from] Uncharacterized protein OS=Mycolicibacterium sp. NCC-Tsukiji OX=2185272 GN=NCCNTM_54410 PE=4 SV=1\n-------------------------------TATRRQPLVFGEIEELRRKGFNQTEIADIHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETKGPHGKSAAYQRLRDHGEFIATGG-RDMSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVAPtGGF-------------------------------------------\n>tr|A0A514DHE2|A0A514DHE2_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium phage Stephig9 OX=2591224 GN=83 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEFDPSLPPQKGVStKGGWAFRPKTPEDKDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A0H4TJU6|A0A0H4TJU6_9CAUD/8-163 [subseq from] Repressor OS=Mycobacterium phage Smeadley OX=1673873 GN=SEA_SMEADLEY_84 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|I6RA57|I6RA57_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium virus Astro OX=1195075 GN=84 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A481VS54|A0A481VS54_9CAUD/21-176 [subseq from] Immunity repressor OS=Mycobacterium phage Expelliarmus OX=2530127 GN=81 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A6B9L5Z3|A0A6B9L5Z3_9CAUD/21-176 [subseq from] HTH cro/C1-type domain-containing protein OS=Mycobacterium phage Roary OX=2686237 GN=86 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVMEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A385DYN7|A0A385DYN7_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium phage Dixon OX=2301699 GN=83 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKAKGFTQTEIAEMYGVTRQYVSWIKKTYGGRLTPKEMVLEHFPWKVPSVLSHASPYRRLRDHGEYIATGGV-GMTEDQLKRLRSFYRKLKEENVVIEYDPSLPPQKGVStKGGWAFRPKTPEDEDLIIRVNDHTNLTEEGRMIWRLP----------\n>tr|A0A164HVN2|A0A164HVN2_9NOCA/8-164 [subseq from] Repressor OS=Nocardia terpenica OX=455432 GN=AWN90_13805 PE=4 SV=1\n------------------------------------DKLTLSIIEDLTGKGLNQTEIADMYGVTRQYVSWVKKTYGGKQTPREIALKNFPWILTTQQGQMAPARNLRNHAEFMATGG-RGMTADKLTKLRNFYKKLREQNVVVEFDPSLPPEPGVSSvGGFAYRPREASDGDLLIRVNEHTQMNEEGKIIWRFP----------\n>tr|A0A2Z5XD48|A0A2Z5XD48_BPMD2/1-88 [subseq from] Uncharacterized protein OS=Mycobacterium phage D29 OX=28369 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------MRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A5J6TDD3|A0A5J6TDD3_9CAUD/1-88 [subseq from] Uncharacterized protein OS=Mycobacterium phage Naji OX=2599872 GN=78 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------MRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A6M3T2Z3|A0A6M3T2Z3_9CAUD/1-88 [subseq from] Immunity repressor OS=Mycobacterium phage D32 OX=2725644 GN=77 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------MRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|R4JKN9|R4JKN9_9CAUD/1-88 [subseq from] Uncharacterized protein OS=Mycobacterium phage Chy1 OX=1219531 GN=Chy1_0070 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------MRVGSFKTMSEDKRKRLLSWWKMLRDNDVVVEFDPNIEPYPGMAGGGFRYVPRTIEDDDLLIRVNEYTNLTDEGEMIWCWPPDIEELL---\n>tr|A0A7R7MYT3|A0A7R7MYT3_MYCIT/5-161 [subseq from] Uncharacterized protein OS=Mycobacterium intracellulare OX=1767 GN=MINTM018_52610 PE=4 SV=1\n------------------------------------NKLTLAIIEALKSKGLNQSEIAERFGVTRQYVSWIKHTYGGRLTPREQIMQEWPFQVPVRMGNTGPFKRLRDHGEFVATNGI-GMSHDKLSRLRGWYRKLRDENLVVEFDPSIPPIEGVSPvGGWAYRKRRKSDGDLLIRVNKHTRLTEKGRMIWRLP----------\n>tr|A0A1L5C0M4|A0A1L5C0M4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Camperdownii OX=1927024 GN=68 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDELKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRAEDGDLLIRVNEYTDLTEEGEMIWRFP----------\n>tr|A0A2D1G8L2|A0A2D1G8L2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Cindaradix OX=2041524 GN=SEA_CINDARADIX_66 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDELKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRAEDGDLLIRVNEYTDLTEEGEMIWRFP----------\n>tr|A0A088FWN5|A0A088FWN5_9CAUD/8-165 [subseq from] Immunity repressor OS=Mycobacterium phage MarQuardt OX=1527516 GN=PBI_MARQUARDT_79 PE=4 SV=1\n-------------------------------------RLSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|G1BSC0|G1BSC0_9CAUD/8-165 [subseq from] Repressor OS=Mycobacterium phage Vix OX=1034148 GN=75 PE=4 SV=1\n-------------------------------------RLSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A221J704|A0A221J704_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage KADY OX=2015846 GN=76 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGVVLEFDPSIPPIEGVsAQGGWRFVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A0K2CX64|A0A0K2CX64_9CAUD/20-177 [subseq from] Immunity repressor OS=Mycobacterium phage DaHudson OX=1698254 GN=SEA_DAHUDSON_78 PE=4 SV=1\n-------------------------------------RLSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2Z5H1Z0|A0A2Z5H1Z0_9CAUD/20-177 [subseq from] Immunity repressor OS=Mycobacterium phage Sabia OX=2234078 GN=77 PE=4 SV=1\n-------------------------------------RLSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A482J7B0|A0A482J7B0_9CAUD/20-177 [subseq from] Immunity repressor OS=Mycobacterium phage Mainiac OX=2517959 GN=78 PE=4 SV=1\n-------------------------------------RLSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A076YN64|A0A076YN64_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Tiffany OX=1527535 GN=PBI_TIFFANY_78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A088FWV4|A0A088FWV4_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Farber OX=1527517 GN=PBI_FARBER_79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A0A7RT64|A0A0A7RT64_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Spike509 OX=1567452 GN=PBI_SPIKE509_79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A0A7RY60|A0A0A7RY60_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Taurus OX=1567477 GN=80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A0A7S046|A0A0A7S046_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Phoxy OX=1567451 GN=PBI_PHOXY_79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A0U4II71|A0A0U4II71_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage JenCasNa OX=1777058 GN=80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A127KP83|A0A127KP83_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Marie OX=1792228 GN=PBI_MARIE_77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A142K6F9|A0A142K6F9_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Malinsilva OX=1821720 GN=PBI_MALINSILVA_81 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A143FQ93|A0A143FQ93_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Hercules11 OX=1821724 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A1B1SFE8|A0A1B1SFE8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Aglet OX=1873697 GN=SEA_AGLET_80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A1D9CAP8|A0A1D9CAP8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Watson OX=1897489 GN=SEA_WATSON_78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A1J0GPF2|A0A1J0GPF2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Sabinator OX=1913037 GN=SEA_SABINATOR_77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A222ZNC9|A0A222ZNC9_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Stagni OX=2015849 GN=76 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A286MQW0|A0A286MQW0_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage StepMih OX=2015850 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2L1IYH6|A0A2L1IYH6_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage LugYA OX=2079421 GN=SEA_LUGYA_82 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2P1N285|A0A2P1N285_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Lilith OX=2126815 GN=77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2S1GUG9|A0A2S1GUG9_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage PGHhamlin OX=2163596 GN=81 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2Z5HDH6|A0A2Z5HDH6_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Grum1 OX=2250378 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A345M493|A0A345M493_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage BreSam8 OX=2283251 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A385DXX8|A0A385DXX8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage MadMarie OX=2301708 GN=77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A4Y5P0K0|A0A4Y5P0K0_9CAUD/9-165 [subseq from] Uncharacterized protein OS=Mycobacterium phage MoneyMay OX=2584497 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A514U0T2|A0A514U0T2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Soshari OX=2593353 GN=81 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A5Q2W6W2|A0A5Q2W6W2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage GtownJaz OX=2660691 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A649VVJ4|A0A649VVJ4_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Fernando OX=2656578 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A6B9LET0|A0A6B9LET0_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage P28Green OX=2686236 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A7G9W2D8|A0A7G9W2D8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Grif OX=2768137 GN=77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A890URV7|A0A890URV7_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Phoebe OX=2805841 GN=80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|G1BNP9|G1BNP9_9CAUD/9-165 [subseq from] Repressor OS=Mycobacterium virus Microwolf OX=1034140 GN=75 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|R4JEF1|R4JEF1_BPMB2/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Methuselah OX=1327779 GN=72 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A097BYQ6|A0A097BYQ6_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Anubis OX=1354511 GN=82 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A1B1SEF2|A0A1B1SEF2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Penny1 OX=1873950 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2P1CF91|A0A2P1CF91_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage EpicPhail OX=2099628 GN=80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2U8UMG7|A0A2U8UMG7_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Beauxregard13 OX=2182392 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A345L595|A0A345L595_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Ollie OX=2250331 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A3S9URR5|A0A3S9URR5_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage PotatoSplit OX=2499052 GN=80 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A411CAH8|A0A411CAH8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage GingkoMaracino OX=2502447 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A411CUG2|A0A411CUG2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Daishi OX=2510509 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A649V6E0|A0A649V6E0_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Dieselweasel OX=2656571 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|G1BMV7|G1BMV7_9CAUD/9-165 [subseq from] Repressor OS=Mycobacterium virus JHC117 OX=1034136 GN=74 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A7I7R937|A0A7I7R937_9MYCO/5-161 [subseq from] Uncharacterized protein OS=Mycolicibacter minnesotensis OX=1118379 GN=MMIN_29830 PE=4 SV=1\n-------------------------------------QLSLSIIEDLKGKGFNQSQIAEMFGKSRQAVSWHKTRYGGHRTPREIVMDAWPFDVPRAMGQTHPFRRLRDHAEYMVTGG-KGMPTDKLKRLRSFYKRME-N-EVLEFDPNIGPIDGVSRyGGWAYRTRRASDADLLIRVNEYTNLTEEARMIWRFPPEI-------\n>tr|A0A481VVJ6|A0A481VVJ6_9CAUD/4-109 [subseq from] Immunity repressor OS=Mycobacterium phage Orange OX=2530137 GN=78 PE=4 SV=1\n-------------------NMSGNINRAIVSRPTSRQPLIPSVIEDLRRRGFNQSQIAEMHGVTRQAVSWQKKTYGGRLTTRQIVQQAWPWETTKLHGKSKAYQRLRDHGEYMRQGSFKGMSADK------------------------------------------------------------------------------\n>tr|A0A220NRZ3|A0A220NRZ3_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage PurpleHaze OX=1983577 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A2P1CHV3|A0A2P1CHV3_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage OlanP OX=2099641 GN=77 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A345KM73|A0A345KM73_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Kalnoky OX=2250421 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A345KND1|A0A345KND1_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Marius OX=2250423 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A345KNV1|A0A345KNV1_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage PhishRPhriends OX=2250424 GN=75 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A345KP98|A0A345KP98_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Reba OX=2250426 GN=74 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A3Q9R8H9|A0A3Q9R8H9_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage ACFishhook OX=2500573 GN=73 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A411BN73|A0A411BN73_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Gemma OX=2500804 GN=76 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A482JKL2|A0A482JKL2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Heliosoles OX=2517953 GN=76 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A515MLW6|A0A515MLW6_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Groupthink OX=2591127 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A516KUL6|A0A516KUL6_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage SoilDragon OX=2590944 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A5P8D8G8|A0A5P8D8G8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage JeppNRM OX=2652421 GN=79 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A7G8ZZY5|A0A7G8ZZY5_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Manu OX=2759452 GN=78 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|R9RW75|R9RW75_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Jobu08 OX=1327772 GN=75 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|U5P4E6|U5P4E6_9CAUD/21-176 [subseq from] Repressor OS=Mycobacterium phage Fredward OX=1354510 GN=FREDWARD_83 PE=4 SV=1\n-------------------------------------KLSLSIVEDLKGKGYTQSEIAEMYGVTRQYVSWIKHQYGGRRTPKEMVMDHFPWKVPSVQSHASPYRRLRDHGEYIATGGV-GMDEEKLKRLRSFYRKLKDDNVVVEYDPSLPPEKGVStKGGWAFRQRLPGDGDLIIRVNEHTNLTEEGRMIWRLP----------\n>tr|A0A0M4RRN8|A0A0M4RRN8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Wooldri OX=1701854 GN=SEA_WOOLDRI_81 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMHDEKLKRLRSFYRKLRDEGLVLEFDPTIPPVEGVsAQGGWQFVEAtpEERESGILIRENEYSRITEKGRMIWRFP----------\n>tr|A0A345L1I8|A0A345L1I8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage AugsMagnumOpus OX=2250325 GN=82 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMHDEKLKRLRSFYRKLRDEGLVLEFDPTIPPVEGVsAQGGWQFVEAtpEERESGILIRENEYSRITEKGRMIWRFP----------\n>tr|A0A385UEJ2|A0A385UEJ2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage MuchMore OX=2301606 GN=82 PE=4 SV=1\n--------------------------------------LSLAVVEDLKNKGFNQSEIAEMYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMHDEKLKRLRSFYRKLRDEGLVLEFDPTIPPVEGVsAQGGWQFVEAtpEERESGILIRENEYSRITEKGRMIWRFP----------\n>tr|A0A0A7RVL4|A0A0A7RVL4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Gadost OX=1567470 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A0M4S4V9|A0A0M4S4V9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Maverick OX=1701799 GN=SEA_MAVERICK_69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A0S2MV72|A0A0S2MV72_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Iracema64 OX=1755681 GN=SEA_IRACEMA64_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1D8EWQ7|A0A1D8EWQ7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Cocoaberry OX=1897499 GN=SEA_COCOABERRY_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MB01|A0A1J0MB01_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Palestino OX=1916117 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MBF9|A0A1J0MBF9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Eris OX=1916115 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C162|A0A1L5C162_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Funston OX=1927026 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C1F0|A0A1L5C1F0_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage JoongJeon OX=1927027 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C1X9|A0A1L5C1X9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kratark OX=1927029 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1S5VY94|A0A1S5VY94_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Tinybot OX=1955424 GN=SEA_TINYBOT_69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2P1CIU2|A0A2P1CIU2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Phacado OX=2099447 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2P1CK09|A0A2P1CK09_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Wander OX=2099451 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2S1PCC7|A0A2S1PCC7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Nemo27 OX=2163594 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345BMW6|A0A345BMW6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Houdini22 OX=2250379 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345BN66|A0A345BN66_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage NotAPhaseMom OX=2250384 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345KVF4|A0A345KVF4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Avle17 OX=2250292 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482J3Y3|A0A482J3Y3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Mazhar510 OX=2517960 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482J5U6|A0A482J5U6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage DirtyDunning OX=2517947 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482J944|A0A482J944_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Phighter1804 OX=2517964 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482JE19|A0A482JE19_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kyee OX=2517957 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482JKR7|A0A482JKR7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage PeterPeter OX=2517963 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|G1FN21|G1FN21_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage MeeZee OX=1056832 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A6B9L836|A0A6B9L836_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Cintron OX=2686232 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|I3WUK3|I3WUK3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage ICleared OX=1176425 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|S5Y6G6|S5Y6G6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Medusa OX=1340834 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7M1CP48|A0A7M1CP48_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage CentreCat OX=2776870 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A0N9SJN9|A0A0N9SJN9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Caelakin OX=1718177 GN=PBI_CAELAKIN_69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPSIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MAT3|A0A1J0MAT3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bruiser OX=1916114 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPSIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2U8UR54|A0A2U8UR54_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Relief OX=2182406 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPSIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411BPR2|A0A411BPR2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Lemur OX=2500805 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPSIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2R4AQT1|A0A2R4AQT1_9CAUD/9-168 [subseq from] Uncharacterized protein OS=Mycobacterium phage SamScheppers OX=2126955 GN=83 PE=4 SV=1\n-----------------------------------RPGLSVGVIDALKQQGLNQSDIARLFGVSRQAVSWHKQTYNGRLTPReQVLREHWPFDCIYGQGEASPARRLRDHAEWFVVGEDG-ITADNMRRLRSFWKRLRDKGLVVEYDPALPPTPGLSKlGGWAYRPREPRDGDLMIRVNEHTRLTAEGRRIFRLPD---------\n>tr|A0A482JEJ9|A0A482JEJ9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Connomayer OX=2517943 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDELKLKRLRGFYNKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|R4JN82|R4JN82_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Dhanush OX=1327769 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQgASPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7D5BVV4|A0A7D5BVV4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage OKaNui OX=2743844 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRSEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1D8EQ80|A0A1D8EQ80_9CAUD/49-208 [subseq from] Immunity repressor OS=Mycobacterium phage Taquito OX=1897500 GN=SEA_TAQUITO_84 PE=4 SV=1\n-----------------------------------RPGLSVGVIDALKQQGLNQSDIARLFGVSRQAVSWHKQTYNGRLTPReQVLREHWPFDCIYGQGEASPARRLRDHAEWFVVGEDG-ITADNMRRLRSFWKRLRDKGLVVEYDPALPPTPGLSKlGGWAYRPREPRDGDLMIRVNEHTRLTAEGRRIFRLPD---------\n>tr|A0A1A2WNQ1|A0A1A2WNQ1_9MYCO/17-172 [subseq from] Repressor OS=Mycobacterium sp. E2327 OX=1834132 GN=A5712_29855 PE=4 SV=1\n-------------------------------------RLTLAIVEALKTKGLSQSEIARQYGVTRQYVSWIKHTYGGRLTPREQSMQHFPFKVPTDMGQASPFRRLRDHGEYVATGGL-GMSEDKLQRLRSFYRMLRENNVVVEFDPNVPPIPGISNkGGWAYRERLPEDADLLIRVNEFTDITDEGRTIWRFP----------\n>tr|A0A2D1G846|A0A2D1G846_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Cerulean OX=2041522 GN=SEA_CERULEAN_71 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2D1GCA9|A0A2D1GCA9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage JetBlade OX=2041534 GN=SEA_JETBLADE_70 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A385DUL1|A0A385DUL1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage ChampagnePapi OX=2301703 GN=72 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A4Y6EBU5|A0A4Y6EBU5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage SheldonCooper OX=2583047 GN=70 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7T0Q5D1|A0A7T0Q5D1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage BangNhom OX=2793703 GN=68 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|F6MDU6|F6MDU6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Shaka OX=1034124 GN=68 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|G8IB19|G8IB19_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium virus LHTSCC OX=1089129 GN=72 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|W0LNF7|W0LNF7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Obama12 OX=1445715 GN=71 PE=4 SV=1\n-------------------------------PHKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A0A1EN59|A0A0A1EN59_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage HamSlice OX=1567483 GN=PBI_HAMSLICE_66 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A142K5R2|A0A142K5R2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Romney OX=1818374 GN=SEA_ROMNEY_69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A143FQL4|A0A143FQL4_9CAUD/6-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Burger OX=1821721 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1B1SE49|A0A1B1SE49_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Wilbur OX=1873449 GN=SEA_WILBUR_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0GPH0|A0A1J0GPH0_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Broseidon OX=1913036 GN=SEA_BROSEIDON_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0GQV5|A0A1J0GQV5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage LittleB OX=1913042 GN=SEA_LITTLEB_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MB99|A0A1J0MB99_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Millski OX=1916116 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C1L4|A0A1L5C1L4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage KFPoly OX=1927028 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C283|A0A1L5C283_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Thanksgivukkah OX=1927030 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2R4AMU6|A0A2R4AMU6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Annyong OX=2126945 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2U8UHC5|A0A2U8UHC5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage NorthStar OX=2178921 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2U8UQ55|A0A2U8UQ55_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Pipcraft OX=2182402 GN=67 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345KRI7|A0A345KRI7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Eapen OX=2250401 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A385D384|A0A385D384_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Jaykayelowell OX=2301554 GN=67 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A386KQ92|A0A386KQ92_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ruin OX=2315714 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7G8LLS5|A0A7G8LLS5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bombshell OX=2762403 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|C9DC52|C9DC52_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium virus Peaches OX=663557 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|I3WWK3|I3WWK3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Flux OX=1168593 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|K0GAB6|K0GAB6_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Sabertooth OX=1211284 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|W0LNI7|W0LNI7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Melvin OX=1429792 GN=72 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MAC3|A0A1J0MAC3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Abdiel OX=1916112 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345KR08|A0A345KR08_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Commander OX=2250400 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPTIPPEEGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A023W5V3|A0A023W5V3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kampy OX=1486425 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0MIT2|A0A1J0MIT2_9CAUD/6-166 [subseq from] Immunity repressor protein OS=Mycobacterium phage LeoAvram OX=1916120 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411CIJ3|A0A411CIJ3_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Nebs OX=2502452 GN=71 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A482J7J9|A0A482J7J9_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Lorenzo OX=2517958 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A6B9J4Z2|A0A6B9J4Z2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ohfah OX=2686211 GN=71 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A6G9LD70|A0A6G9LD70_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Polymorphads OX=2719207 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7M1CMQ0|A0A7M1CMQ0_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage TroyPia OX=2776874 GN=71 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|E0YQE5|E0YQE5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Eagle OX=861046 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|W0LNC1|W0LNC1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage BellusTerra OX=1429791 GN=71 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A143FQ60|A0A143FQ60_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Holli OX=1821725 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1C9LYB8|A0A1C9LYB8_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Florean OX=1897483 GN=SEA_FLOREAN_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1D8EZ28|A0A1D8EZ28_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage LittleGuy OX=1881139 GN=SEA_LITTLEGUY_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1D8F030|A0A1D8F030_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Roosevelt OX=1897504 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1J0GS60|A0A1J0GS60_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Albee OX=1913041 GN=SEA_ALBEE_70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C0F7|A0A1L5C0F7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage BubbleTrouble OX=1927023 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1U9WRK5|A0A1U9WRK5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage TinaFeyge OX=1958911 GN=68 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2H4PEJ7|A0A2H4PEJ7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Blackmoor OX=2047837 GN=SEA_BLACKMOOR_69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A345L2X2|A0A345L2X2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Druantia OX=2250327 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A3S9UNM2|A0A3S9UNM2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Citius OX=2499035 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411BQN8|A0A411BQN8_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kingmustik0402 OX=2502419 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411BZM1|A0A411BZM1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Baby16 OX=2502441 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411C0L5|A0A411C0L5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Eros OX=2502443 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A411C9N1|A0A411C9N1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Phontbonne OX=2502446 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A4Y6EEG1|A0A4Y6EEG1_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage TygerBlood OX=2583048 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A6N0A461|A0A6N0A461_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Deano OX=2744010 GN=67 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7G3VA75|A0A7G3VA75_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Chaph OX=2743927 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A7M1CQ72|A0A7M1CQ72_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bartimeaus OX=2776875 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|G1JZR7|G1JZR7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage TiroTheta9 OX=1074829 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|W0LPC4|W0LPC4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Nyxis OX=1445714 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A5J6THH9|A0A5J6THH9_9CAUD/15-170 [subseq from] Immunity repressor OS=Mycobacterium phage Anthony OX=2599857 GN=73 PE=4 SV=1\n-------------------------------------KLTLSIIEALKNKGLNGAEIAEMYGVTKQYVSWIKHTYGGRLTPREQVMQHFPFKVPEQMGQSSPYRRLRDHGEYVATGGV-GMDQIALTRLRNFYKKLREKSLVVEFDPNLPPEKGVSSkGGWAYRERTNDDDDLLIRVNEFTELSEEGRMIWRFP----------\n>tr|K0G9Z4|K0G9Z4_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium virus Arturo OX=1211281 GN=67 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGAAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A1L5C0Z5|A0A1L5C0Z5_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Clarenza OX=1927025 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEDGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A6N0A6N0|A0A6N0A6N0_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Scamp OX=2744012 GN=70 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEDGVSkAGGWAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2P1N516|A0A2P1N516_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Skipitt OX=2126791 GN=69 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYNKLRDH--VLEFDPNIPPEEGVSkAGGRAYRPRRPEDGDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A097BXT1|A0A097BXT1_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage QuinnKiro OX=1551642 GN=PBI_QUINNKIRO_72 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A0K2CXE2|A0A0K2CXE2_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Texage OX=1698419 GN=SEA_TEXAGE_71 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A1D8ET47|A0A1D8ET47_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Todacoro OX=1897490 GN=SEA_TODACORO_73 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A1D8EWI5|A0A1D8EWI5_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Margo OX=1897496 GN=SEA_MARGO_73 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A2L0HKX7|A0A2L0HKX7_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Lambert1 OX=2079569 GN=SEA_LAMBERT1_73 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A2P1N4R8|A0A2P1N4R8_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Panamaxus OX=2126789 GN=71 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A2Z4Q2A1|A0A2Z4Q2A1_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Hookmount OX=2234028 GN=73 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A3G3MAD0|A0A3G3MAD0_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Popcicle OX=2483676 GN=73 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A3T0IKR9|A0A3T0IKR9_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Norbert OX=2500575 GN=70 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A516KTD3|A0A516KTD3_9CAUD/9-165 [subseq from] Immunity repressor OS=Mycobacterium phage Pocahontas OX=2590943 GN=72 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTPREMVLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A2R4AR08|A0A2R4AR08_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage TNguyen7 OX=2126956 GN=74 PE=4 SV=1\n-------------------------------PSTKKPELSLAVIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>tr|A0A1S6L2S7|A0A1S6L2S7_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Idleandcovert OX=1958895 GN=SEA_IDLEANDCOVERT_74 PE=4 SV=1\n-------------------------------PGTKKSELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>tr|A0A649VSC2|A0A649VSC2_9CAUD/8-135 [subseq from] Immunity repressor OS=Mycobacterium phage Blinn1 OX=2656562 GN=82 PE=4 SV=1\n---------------------------------KTRSPLIFSVIEDLRRKGYNQSEIAEMHGVTRQAVSWHKKTYGGQLTPRQIVNAAWPWETTNLHGKSKPFQRLRDHGEFMATGG-RGMNETKLKLLQSFWAKLRDEDVVSSTRTSRRTQAWLAADSGMY-----------------------------------------\n>tr|A0A2R4A210|A0A2R4A210_9CAUD/5-164 [subseq from] Sigma70_r4 domain-containing protein OS=Mycobacterium phage Puppy OX=2126723 GN=74 PE=4 SV=1\n--------------------------------GTKKPELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>tr|A0A6N0A3Y3|A0A6N0A3Y3_9CAUD/12-164 [subseq from] Immunity repressor OS=Mycobacterium phage DroogsArmy OX=2744011 GN=69 PE=4 SV=1\n--------------------------------------LSLAIVEDLKGKGFSQSEIARKYGVTRQYISWIKHYYGGRLTPREVVMQHFPFQVPTEMGQTSPYRRLRDHGEYMATGGV-GMDKVTLGRLRGFYKKLQD--QVLEFDPNIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDYTDLTEQGRMIWRFP----------\n>tr|G1DB89|G1DB89_9CAUD/12-164 [subseq from] Immunity repressor OS=Mycobacterium phage Timshel OX=1032895 GN=71 PE=4 SV=1\n--------------------------------------LSLAIVEDLKGKGFSQSEIARKYGVTRQYISWIKHYYGGRLTPREVVMQHFPFQVPTEMGQTSPYRRLRDHGEYMATGGV-GMDKVTLGRLRGFYKKLQD--QVLEFDPNIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDYTDLTEQGRMIWRFP----------\n>tr|A0A4Y5P0F9|A0A4Y5P0F9_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage Xena OX=2584499 GN=68 PE=4 SV=1\n-------------------------------PKPDK-ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A1D8EUJ4|A0A1D8EUJ4_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium phage Stasia OX=1897548 GN=69 PE=4 SV=1\n------------------------------------AELTLAVIEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVEQQQGvSPYRRLREHGEYMATGGV-GMDDLKLARLRGFYKKLRDH--VLEYDPNIPPEEGVSrNGGWAYRKRLPSDGDLLIRVNDYTDLTEEGEMIWRFP----------\n>tr|A0A1D8EZA8|A0A1D8EZA8_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Badger OX=1881140 GN=SEA_BADGER_68 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A1J0MAJ7|A0A1J0MAJ7_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Achebe OX=1916113 GN=68 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A249XPQ7|A0A249XPQ7_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Morpher26 OX=2027898 GN=SEA_MORPHER26_69 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A385UGE3|A0A385UGE3_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Wizard007 OX=2301608 GN=69 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A3S9UN46|A0A3S9UN46_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Cici OX=2499034 GN=69 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A411BUV6|A0A411BUV6_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Katalie136 OX=2502428 GN=69 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A482JEY8|A0A482JEY8_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Bumblebee11 OX=2517940 GN=68 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A5P8D9R4|A0A5P8D9R4_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage AbbysRanger OX=2652418 GN=69 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|G1BL40|G1BL40_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium virus Backyardigan OX=1034129 GN=67 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|G1FNF5|G1FNF5_9CAUD/8-162 [subseq from] Immunity repressor OS=Mycobacterium phage Wile OX=1056833 GN=68 PE=4 SV=1\n-------------------------------------ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLKDH--VLEFNPNIPPEEGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A286MQ04|A0A286MQ04_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage Fred313 OX=2015809 GN=71 PE=4 SV=1\n-------------------------------PSGKKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAFRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|G1DAC2|G1DAC2_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium virus Heldan OX=1032892 GN=73 PE=4 SV=1\n-------------------------------PSGKKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAFRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A516KRM7|A0A516KRM7_9CAUD/4-164 [subseq from] Immunity repressor OS=Mycobacterium phage Heathen OX=2590942 GN=73 PE=4 SV=1\n-------------------------------PSGKKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAFRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A482JEW3|A0A482JEW3_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage AvatarAhPeg OX=2517938 GN=69 PE=4 SV=1\n-------------------------------PKPDK-ELTLAVVEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQKGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRHH--VLEFDPNIPPEPGVSkHGGWAYRPRRPEDGELLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A482JFG9|A0A482JFG9_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage Miramae OX=2517961 GN=69 PE=4 SV=1\n-------------------------------PKPDK-ELTLAVVEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQKGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRHH--VLEFDPNIPPEPGVSkHGGWAYRPRRPEDGELLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A2P1JTK2|A0A2P1JTK2_9CAUD/9-164 [subseq from] Immunity repressor OS=Mycobacterium phage KittenMittens OX=2108125 GN=67 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDDDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|R4JMQ7|R4JMQ7_9CAUD/9-164 [subseq from] Immunity repressor OS=Mycobacterium phage Severus OX=1327776 GN=68 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDDDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|A0A1D8EW42|A0A1D8EW42_9CAUD/6-166 [subseq from] Immunity repressor OS=Mycobacterium phage BabyRay OX=1897486 GN=SEA_BABYRAY_74 PE=4 SV=1\n-------------------------------PSTKKSELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDELKLSRLRGFYKKLRDH--VLEYDPDIPPIDGVSrQGGWAYRPRTPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A649VYN5|A0A649VYN5_9CAUD/9-166 [subseq from] Immunity repressor OS=Mycobacterium phage Isca OX=2656583 GN=71 PE=4 SV=1\n----------------------------------KKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A649VRD4|A0A649VRD4_9CAUD/8-163 [subseq from] Immunity repressor OS=Mycobacterium phage WalterMcMickey OX=2656614 GN=69 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGFTQSDIAKMYGVTRQYVSWIKQYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPNFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|H9NCM9|H9NCM9_9CAUD/9-164 [subseq from] Immunity repressor OS=Mycobacterium phage Twister OX=1161933 GN=69 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGFTQSDIAKMYGVTRQYVSWIKQYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPNFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|A0A482JHH2|A0A482JHH2_9CAUD/9-164 [subseq from] Immunity repressor OS=Mycobacterium phage Kristoff OX=2517956 GN=69 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGFTQSDIAKMYGVTRQYVSWIKQYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPNFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|J7KIT9|J7KIT9_9CAUD/9-164 [subseq from] Immunity repressor OS=Mycobacterium virus Rebeuca OX=1225862 GN=71 PE=4 SV=1\n-----------------------------------RPDLSLAVIEDLKGKGFTQSDIAKMYGVTRQYVSWIKQYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPNFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|A0A0B4ZYI2|A0A0B4ZYI2_9CAUD/13-165 [subseq from] Immunity repressor OS=Mycobacterium phage Sheen OX=1589274 GN=74 PE=4 SV=1\n--------------------------------------LSLAIVEDLKGKGFTQAEIARMYGVTRQYISWIKHYYGGRLTPKEVVMQHFPFQVPTEMGQTSPYRRLRDHGEYVATGGV-GMDKVALGRLRGFYNKLRE--QVLEFDPNIPPIPGVSNkGGWRYVPRTDDDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A1C9LYL9|A0A1C9LYL9_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage Mundrea OX=1897540 GN=SEA_MUNDREA_69 PE=4 SV=1\n-------------------------------PKPDK-ELSLAVIEDLKGKGYSQSEIARMYNVTRQYVSWIKQYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKRLKDH--VLEFDPNIPPEPGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A6B9L829|A0A6B9L829_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage Noelle OX=2572317 GN=70 PE=4 SV=1\n-------------------------------PKPDK-ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPRELVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGV-GMDDLKLTRLRGFYRKLKDH--VLEFDPNIPPEPGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|A0A1A2H967|A0A1A2H967_9MYCO/17-172 [subseq from] Repressor OS=Mycobacterium sp. E3198 OX=1834143 GN=A5673_15610 PE=4 SV=1\n-------------------------------------RLTLAIVEALKNRGLSQSEIARQYGVTRQHVSWIKHTYGGRLTPRESVLQRFPFRVPVKMGNTSPFKRLRDHGEYVVTGGV-GMSEDKLQRLRSFYRKLRENDLVVEFNPNIPPIPGVSSrGGWAFRERTKDDEDLLIRVNEYTHIADELRDIWRFP----------\n>tr|A0A291AV29|A0A291AV29_9CAUD/8-164 [subseq from] Immunity repressor OS=Mycobacterium phage OKCentral2016 OX=2040289 GN=68 PE=4 SV=1\n----------------------------------KRPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|A0A6B9LPL9|A0A6B9LPL9_9CAUD/8-164 [subseq from] Immunity repressor OS=Mycobacterium phage Chupacabra OX=2686096 GN=68 PE=4 SV=1\n----------------------------------KRPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|K0GAI3|K0GAI3_9CAUD/8-164 [subseq from] Immunity repressor OS=Mycobacterium virus Goose OX=1211282 GN=71 PE=4 SV=1\n----------------------------------KRPDLSLAVIEDLKGKGYTQSDIAKMYGVTRQYVSWIKSYYGGRLTPREEVLQHFPFQVSAYQSQTSPYRRLREHGEYMATGGV-GMDKIKLGRLRGFYAKLRDH--VLEFNPEFPPEPGVSSrGGWRYVPRVSDDGDLLIRVNEYTDLTERGAMIWRFP----------\n>tr|A0A411BZE9|A0A411BZE9_9CAUD/3-162 [subseq from] Immunity repressor OS=Mycobacterium phage Datway OX=2502440 GN=69 PE=4 SV=1\n-------------------------------PKPDK-ELSLAVIEDLKGKGYSQSEIARMYGVTRQYVSWIKQYYGGRLTPRELVLQHFPFQVPVPLQQGvSPYRRLREHGEYMATGGV-GMDDLKLTRLRGFYAKLKDH--VLEFDPNIPPEPGVSkQGGWAYRPRKPEDGDLLIRVNEYTDLSEEGRMIWRFP----------\n>tr|Q9G045|Q9G045_9VIRU/11-166 [subseq from] Gp6 OS=Mycobacterium phage Ms6 OX=65388 GN=rep PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGHHIWRFPS---------\n>tr|A0A7G9UXX0|A0A7G9UXX0_9CAUD/11-166 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Mova OX=2767562 GN=39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGHHIWRFPS---------\n>tr|A0A1X1UKB8|A0A1X1UKB8_9MYCO/17-173 [subseq from] Repressor OS=Mycobacterium fragae OX=1260918 GN=AWC06_00805 PE=4 SV=1\n------------------------------------ERLTPAIVEALKNKGLSQSDIAKQYGVTRQYVSWIKHTYGGRLTPRELALRHFPFKVPVEMGNTSPFKRLRDHGEYVATGGV-GMSDDKLQRLRSFYRKLREDNLVVEFDPSIPPIPGVSNkGGWAYRERLPEDGDLLIRVNEFTNITDRGRNIWRFP----------\n>tr|A0A0K2FN29|A0A0K2FN29_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage HyRo OX=1698710 GN=HYRO_222 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A0A7RWF0|A0A0A7RWF0_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Treddle OX=1567479 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|R4JGC8|R4JGC8_9CAUD/12-164 [subseq from] Immunity repressor OS=Mycobacterium phage HINdeR OX=1327770 GN=70 PE=4 SV=1\n--------------------------------------LSLAIVEDLKGKGYTQSEIARKYGVTRQYISWIKHYYGGRLTPREVVMQHFPFQVPTEMGQTSPYRRLRDHGEYVATGGV-GMDKVTLGRLRGFYNKLQD--QVLEFDPNIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDFTDLTEQGRMIWRLP----------\n>tr|A0A0A0RKI8|A0A0A0RKI8_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage CaptainTrips OX=1556289 GN=39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETETDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A386KMK1|A0A386KMK1_9CAUD/19-174 [subseq from] Helix-turn-helix DNA-binding domain protein OS=Mycobacterium phage MilleniumForce OX=2315711 GN=39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETETDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A5Q2WJ49|A0A5Q2WJ49_9CAUD/19-174 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage MinionDave OX=2653763 GN=41 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETETDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A7G9UXG6|A0A7G9UXG6_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage Moonbeam OX=2767561 GN=39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETETDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2P1CF95|A0A2P1CF95_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ichabod OX=2099633 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A345KQE4|A0A345KQE4_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage SwissCheese OX=2250428 GN=79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTSLSEIGRhHIWRFP----------\n>tr|A0A5Q2WB63|A0A5Q2WB63_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage DreamCatcher OX=2653721 GN=79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTSLSEIGRhHIWRFP----------\n>tr|G8I626|G8I626_9CAUD/11-166 [subseq from] Repressor OS=Mycobacterium virus Bruns OX=1089118 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTSLSEIGRhHIWRFP----------\n>tr|A0A2P1JTC0|A0A2P1JTC0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Smeagol OX=2108131 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKAKGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPGPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPILGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0K1LSF0|A0A0K1LSF0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Nhonho OX=1675553 GN=NHONHO_71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649V6W9|A0A649V6W9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Killigrew OX=2656586 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|C9DBF4|C9DBF4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage LRRHood OX=663556 GN=44 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A1D8ERG2|A0A1D8ERG2_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Harlequin OX=1897551 GN=SEA_HARLEQUIN_57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQTEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLIDEDVVLEFDPNIPGSPGFAKlGGFALRPREERDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A220NQD6|A0A220NQD6_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Jester OX=2015812 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQTEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLIDEDVVLEFDPNIPGSPGFAKlGGFALRPREERDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A345MFS4|A0A345MFS4_9CAUD/11-167 [subseq from] Immunity repressor OS=Mycobacterium phage NEHalo OX=2283298 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A059VKD4|A0A059VKD4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Pinto OX=1498204 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A1I9SB89|A0A1I9SB89_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage CactusRose OX=1897449 GN=SEA_CACTUSROSE_78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A2P1JV52|A0A2P1JV52_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Fascinus OX=2108118 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A125RPQ9|A0A125RPQ9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Dynamix OX=1792149 GN=PBI_DYNAMIX_75 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1JZC2|A0A2P1JZC2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage McGuire OX=2094137 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|R4JQI4|R4JQI4_9CAUD/11-166 [subseq from] Putative repressor protein OS=Mycobacterium phage CASbig OX=1327035 GN=CASbig_18 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0F6YQL4|A0A0F6YQL4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Nerujay OX=1647308 GN=79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0K2CKY3|A0A0K2CKY3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage TheloniousMonk OX=1701845 GN=THELONIOUSMONK_77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1L6BYC2|A0A1L6BYC2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Zephyr OX=1930080 GN=SEA_ZEPHYR_77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2H4PCB2|A0A2H4PCB2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Wilkins OX=2047845 GN=SEA_WILKINS_72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2L0HJF7|A0A2L0HJF7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Acme OX=2079563 GN=SEA_ACME_79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2L0HK64|A0A2L0HK64_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Greg OX=2079566 GN=SEA_GREG_78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1A1E2|A0A2P1A1E2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Fajezeel OX=2081623 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1CJ95|A0A2P1CJ95_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ruotula OX=2099448 GN=79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2U8UHC3|A0A2U8UHC3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Oogway OX=2178922 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A346FBH3|A0A346FBH3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Homines OX=2282908 GN=63 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A3G8FU05|A0A3G8FU05_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bones OX=2488963 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411BQF7|A0A411BQF7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage AFIS OX=2502418 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A481VVL8|A0A481VVL8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Zeuska OX=2341047 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A481W0D1|A0A481W0D1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ringer OX=2530144 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A482JGQ2|A0A482JGQ2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Dulcie OX=2517948 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A515MJ25|A0A515MJ25_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Big3 OX=2591126 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A5B8RNV5|A0A5B8RNV5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Buttons OX=2596981 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A5J6TQD3|A0A5J6TQD3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Paphu OX=2599873 GN=70 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649VDT5|A0A649VDT5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Traft412 OX=2656611 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A6B9LF20|A0A6B9LF20_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Atkinbua OX=2686230 GN=81 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7G8LR47|A0A7G8LR47_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage HarryOW OX=2762393 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7L8ZEE2|A0A7L8ZEE2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Topgun OX=2776846 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7U0GD85|A0A7U0GD85_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Gandalf20 OX=2801893 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|B5LLS4|B5LLS4_9CAUD/11-166 [subseq from] Putative repressor OS=Mycobacterium phage Solon OX=555603 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1D3C5|G1D3C5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus JC27 OX=1034108 GN=76 PE=4 SV=2\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G8IBB5|G8IBB5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Kugel OX=1089128 GN=77 PE=4 SV=2\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|R4JHG3|R4JHG3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage PattyP OX=1327773 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|V5R622|V5R622_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Graduation OX=1391432 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|Q5J5N6|Q5J5N6_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage U2 OX=260120 GN=PBI_U2_69 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRDRQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1N3K9|A0A2P1N3K9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Lopton OX=2126809 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411BRW7|A0A411BRW7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage SpikeBT OX=2502422 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A5Q2WCL8|A0A5Q2WCL8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage BaconJack OX=2664223 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649VED3|A0A649VED3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Briton15 OX=2656564 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1DA33|G1DA33_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus BBPiebs31 OX=1032891 GN=80 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0K1LS49|A0A0K1LS49_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Barriga OX=1675548 GN=BARRIGA_82 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0K2FK44|A0A0K2FK44_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Rufus OX=1698441 GN=PBI_RUFUS_78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0N9SKQ0|A0A0N9SKQ0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Pari OX=1718171 GN=SEA_PARI_80 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1B1PD19|A0A1B1PD19_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Papez OX=1873891 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1B1SFQ4|A0A1B1SFQ4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Gompeii16 OX=1873895 GN=Gompeii16_76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1L6BZA7|A0A1L6BZA7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Blue OX=1927019 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2L0HL79|A0A2L0HL79_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Pippin OX=2079571 GN=SEA_PIPPIN_76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1A0M1|A0A2P1A0M1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage BeesKnees OX=2081620 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1CE83|A0A2P1CE83_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Corvo OX=2099631 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1JYV9|A0A2P1JYV9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kykar OX=2094135 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1N1D9|A0A2P1N1D9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage GageAP OX=2126813 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2Z5H1J5|A0A2Z5H1J5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Michley OX=2234076 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2Z5H7I3|A0A2Z5H7I3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Magnar OX=2250361 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A345L2Q2|A0A345L2Q2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage DrFeelGood OX=2250326 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A345MC73|A0A345MC73_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Target OX=2283260 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A385CZU0|A0A385CZU0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Adahisdi OX=2301546 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A385DTR3|A0A385DTR3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage PherrisBueller OX=2301569 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411AYR2|A0A411AYR2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Beatrix OX=2500791 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411BNC4|A0A411BNC4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Fenn OX=2500803 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411BNJ9|A0A411BNJ9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage MetalQZJ OX=2500806 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411BVT2|A0A411BVT2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Fushigi OX=2502430 GN=69 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411CHW0|A0A411CHW0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage PinkPlastic OX=2502451 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A481VTS8|A0A481VTS8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Francis47 OX=2530129 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A481VTX3|A0A481VTX3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Tripl3t OX=2341048 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A481W010|A0A481W010_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Naira OX=2530135 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A4D6T4F4|A0A4D6T4F4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rutherferd OX=2530146 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A516KSZ4|A0A516KSZ4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ajay OX=2590940 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A5B8RPM8|A0A5B8RPM8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Anglerfish OX=2596980 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A5P8DCP5|A0A5P8DCP5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage JackSparrow OX=2652891 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649VAK6|A0A649VAK6_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Watermelon OX=2656615 GN=78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649VF64|A0A649VF64_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Sagefire OX=2656602 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7G8LEV8|A0A7G8LEV8_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage MaryBeth OX=2762423 GN=73 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7G9A2U1|A0A7G9A2U1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Mule OX=2759460 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7L7SHY7|A0A7L7SHY7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Jorgensen OX=2759390 GN=82 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A7M1CNU9|A0A7M1CNU9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage STLscum OX=2776872 GN=81 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A890V0J3|A0A890V0J3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rubeus OX=2805842 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|B3VGD2|B3VGD2_9CAUD/11-166 [subseq from] Repressor OS=Mycobacterium virus lockley OX=540067 GN=72 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|B3VGW2|B3VGW2_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Jasper OX=540065 GN=74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|B3VH55|B3VH55_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage DD5 OX=540064 GN=73 PE=4 SV=2\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1D716|G1D716_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Kssjeb OX=1034109 GN=72 PE=4 SV=2\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1DTW5|G1DTW5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Mrgordo OX=1036613 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1EV35|G1EV35_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Doom OX=1051138 GN=68 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1EVC8|G1EVC8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Euphoria OX=1051140 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G3LX34|G3LX34_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Perseus OX=1076136 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G3MDK5|G3MDK5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Dreamboat OX=1086749 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G8I6L6|G8I6L6_9CAUD/11-166 [subseq from] Repressor OS=Mycobacterium virus Billknuckles OX=1089116 GN=69 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|K0GAQ3|K0GAQ3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Marcell OX=1211283 GN=68 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|Q5J5E6|Q5J5E6_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium virus Bethlehem OX=260121 GN=PBI_BETHLEHEM_78 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|Q9B052|Q9B052_BPMB1/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bxb1 OX=148603 GN=69 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|S5YDH4|S5YDH4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Wheeler OX=1383054 GN=79 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|X2KSD4|X2KSD4_9CAUD/11-166 [subseq from] Repressor OS=Mycobacterium phage Seabiscuit OX=1458714 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A411C489|A0A411C489_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rajelicia OX=2502444 GN=77 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPDIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A249XU35|A0A249XU35_9CAUD/12-164 [subseq from] Immunity repressor OS=Mycobacterium phage Kimona OX=2024295 GN=69 PE=4 SV=1\n--------------------------------------LTLSIIEDLKSKGYTQSEIARKYDVSRQYVSWIKHYYGGRMTPREQMMEHFPFQVPTKMGQTSPYRRLRDHGEYMATGGV-GMDKVALGRLRGFYNKLRD--QVLEFDPNIPPIPGVSSqGGWRYVPRTPEDGDLLIRVNEYTDLTDKGRMIWRFP----------\n>tr|A0A2D1GC19|A0A2D1GC19_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage ILeeKay OX=2041533 GN=SEA_ILEEKAY_73 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1CH03|A0A2P1CH03_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage MPlant7149 OX=2099635 GN=75 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A249XS79|A0A249XS79_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Smairt OX=2027901 GN=SEA_SMAIRT_79 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMQEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRDRQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A097EVS6|A0A097EVS6_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium phage Abrogate OX=1551710 GN=PBI_ABROGATE_720 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1L6BXU3|A0A1L6BXU3_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium phage Petruchio OX=1927018 GN=SEA_PETRUCHIO_75 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1B1SFZ4|A0A1B1SFZ4_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium phage Bircsak OX=1873903 GN=SEA_BIRCSAK_76 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1C9LY82|A0A1C9LY82_9CAUD/66-224 [subseq from] Repressor OS=Mycobacterium phage PacerPaul OX=1897542 GN=SEA_PACERPAUL_80 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|D2XRS8|D2XRS8_9CAUD/66-224 [subseq from] Repressor OS=Mycobacterium phage SkiPole OX=701456 GN=84 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1D6H4|G1D6H4_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium phage Switzer OX=1034118 GN=74 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A346FE22|A0A346FE22_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rabinovish OX=2283291 GN=45 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A649V8E3|A0A649V8E3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kanely OX=2656585 GN=77 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGESEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0M4S752|A0A0M4S752_9CAUD/67-224 [subseq from] Uncharacterized protein OS=Mycobacterium phage Turj99 OX=1701849 GN=PBI_TURJ99_71 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1D8EZL6|A0A1D8EZL6_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Magnito OX=1881141 GN=SEA_MAGNITO_74 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A6M3TBJ3|A0A6M3TBJ3_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Manatee OX=2725652 GN=73 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|S5YMD5|S5YMD5_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Trouble OX=1340825 GN=75 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0A7RWI2|A0A0A7RWI2_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Thor OX=1567478 GN=79 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|S5Y7Y8|S5Y7Y8_9CAUD/67-224 [subseq from] Repressor OS=Mycobacterium phage SarFire OX=1340827 GN=79 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A346FBR7|A0A346FBR7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Zeeculate OX=2282911 GN=71 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRMRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A385D168|A0A385D168_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Crispicous1 OX=2301549 GN=70 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A385DXV4|A0A385DXV4_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Maroc7 OX=2301709 GN=77 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A386K9Z5|A0A386K9Z5_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage Arcanine OX=2315612 GN=79 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|V5RAW0|V5RAW0_9CAUD/67-224 [subseq from] Immunity repressor OS=Mycobacterium phage HanShotFirst OX=1429904 GN=73 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|T2A8S1|T2A8S1_9CAUD/67-224 [subseq from] Repressor OS=Mycobacterium phage PhrostyMug OX=1354512 GN=PHROSTYMUG_77 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|T2AAB8|T2AAB8_9CAUD/67-224 [subseq from] Repressor OS=Mycobacterium phage SargentShorty9 OX=1354513 GN=SARGENTSHORTY9_80 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A3G8FMF0|A0A3G8FMF0_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Morizzled23 OX=2488975 GN=50 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A249XME6|A0A249XME6_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Emma OX=2027893 GN=SEA_EMMA_41 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETESDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A5P8PJR1|A0A5P8PJR1_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Juice456 OX=2652403 GN=41 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETESDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A5Q2WJY4|A0A5Q2WJY4_9CAUD/11-166 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Kenuha5 OX=2653759 GN=35 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETESDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A5Q2WN84|A0A5Q2WN84_9CAUD/11-166 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Flathead OX=2653756 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETESDIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2P1CD78|A0A2P1CD78_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Bob3 OX=2099646 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A345KKX3|A0A345KKX3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage BigMau OX=2250419 GN=78 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A4Y5TXS7|A0A4Y5TXS7_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage HermioneGrange OX=2575356 GN=79 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A2P1CFH3|A0A2P1CFH3_9CAUD/11-167 [subseq from] Immunity repressor OS=Mycobacterium phage Forsytheast OX=2099632 GN=77 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A345KT58|A0A345KT58_9CAUD/11-167 [subseq from] Uncharacterized protein OS=Mycobacterium phage Moose OX=2250405 GN=77 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A345MBX7|A0A345MBX7_9CAUD/11-167 [subseq from] Immunity repressor OS=Mycobacterium phage Sibs6 OX=2283259 GN=75 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A411BQ66|A0A411BQ66_9CAUD/11-167 [subseq from] Immunity repressor OS=Mycobacterium phage Petp2012 OX=2502417 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A649VCT4|A0A649VCT4_9CAUD/11-167 [subseq from] Immunity repressor OS=Mycobacterium phage Snazzy OX=2656604 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFPS---------\n>tr|A0A345KWY5|A0A345KWY5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Hope4ever OX=2250300 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGQTEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A2Z5H1S6|A0A2Z5H1S6_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Mryolo OX=2234077 GN=70 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A345KPS3|A0A345KPS3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rohr OX=2250427 GN=78 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A345M6A0|A0A345M6A0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Pita2 OX=2283258 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A5Q2WQS5|A0A5Q2WQS5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage KyMonks1A OX=2653760 GN=81 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A7G8LHC3|A0A7G8LHC3_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Jerm2 OX=2762422 GN=77 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAVSWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|G1D4U7|G1D4U7_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium virus Museum OX=1034113 GN=75 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A649V7D5|A0A649V7D5_9CAUD/11-166 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage StAnnes OX=2656605 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFQVPEPLSQCSPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1N1C1|A0A2P1N1C1_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Batiatus OX=2126812 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2S1PC05|A0A2S1PC05_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Melissauren88 OX=2163593 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|W8FQC9|W8FQC9_9CAUD/58-224 [subseq from] Immunity repressor OS=Mycobacterium phage Alsfro OX=1458724 GN=82 PE=4 SV=1\n----------------------------PMRPTREQLPrLSLGVIEALKAAGETEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENSWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0H4U0E8|A0A0H4U0E8_9CAUD/19-174 [subseq from] Immunity repressor OS=Mycobacterium phage Ovechkin OX=1673889 GN=PBI_OVECHKIN_39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A385DZI1|A0A385DZI1_9CAUD/19-174 [subseq from] Cluster A immunity repressor OS=Mycobacterium phage KristaRAM OX=2301700 GN=40 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A385UEF2|A0A385UEF2_9CAUD/19-174 [subseq from] Immunity repressor OS=Mycobacterium phage Galactic OX=2301612 GN=41 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A7D5FT34|A0A7D5FT34_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage Soul22 OX=2743996 GN=44 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|B5U4N6|B5U4N6_9CAUD/28-186 [subseq from] Uncharacterized protein OS=Mycobacterium virus Fruitloop OX=563119 GN=37 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2D1GE14|A0A2D1GE14_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Koguma OX=2041537 GN=SEA_KOGUMA_43 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|R4TR25|R4TR25_9CAUD/15-170 [subseq from] Uncharacterized protein OS=Mycobacterium phage Astraea OX=1327762 GN=48 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|X2KSL1|X2KSL1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Lamina13 OX=1468169 GN=79 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|G1D3L8|G1D3L8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium virus Lesedi OX=1034110 GN=72 PE=4 SV=2\n--------------------------------------LSLGVIEALKAAGESEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENSWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0A7RV31|A0A0A7RV31_9CAUD/27-185 [subseq from] Immunity repressor OS=Mycobacterium phage Edtherson OX=1567468 GN=74 PE=4 SV=1\n------------------------------------LPrLSLGVIEALKAAGETEADIARMYGVTPQAISWYIHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0B4ZYQ2|A0A0B4ZYQ2_9CAUD/28-185 [subseq from] Immunity repressor OS=Mycobacterium phage Alvin OX=1567466 GN=73 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGVKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0K2CXN4|A0A0K2CXN4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Tasp14 OX=1698420 GN=SEA_TASP14_74 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRDRQESDEDLLIRVNEYATLSEIGRhHIWRFP----------\n>tr|A0A345MB16|A0A345MB16_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Arlo OX=2283250 GN=75 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAISWYIHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYMATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A097EVD5|A0A097EVD5_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Bipolar OX=1551711 GN=PBI_BIPOLAR_36 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A1J0M9N1|A0A1J0M9N1_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Lukilu OX=1913044 GN=SEA_LUKILU_41 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A411BTS6|A0A411BTS6_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Shaqnato OX=2502426 GN=43 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A6N0A4W3|A0A6N0A4W3_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Ronan OX=2742108 GN=41 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|G1D1D2|G1D1D2_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium virus Dlane OX=1034101 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|S5VVL1|S5VVL1_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Bobi OX=1340708 GN=40 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|G1BKE3|G1BKE3_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Alice OX=1034128 GN=41 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A649VES6|A0A649VES6_9CAUD/19-174 [subseq from] Helix-turn-helix DNA binding protein OS=Mycobacterium phage Donkeykong OX=2656572 GN=39 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A6G9LGF7|A0A6G9LGF7_9CAUD/19-174 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Phanphagia OX=2719206 GN=35 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A7M1CMD9|A0A7M1CMD9_9CAUD/19-174 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Coco12 OX=2776876 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|G1DU17|G1DU17_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage Shauna1 OX=1036615 GN=36 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A411CGL6|A0A411CGL6_9CAUD/15-170 [subseq from] Uncharacterized protein OS=Mycobacterium phage BadAgartude OX=2502475 GN=49 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A411AZ02|A0A411AZ02_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Stubby OX=2510577 GN=43 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2D1GHS9|A0A2D1GHS9_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Phox OX=2041545 GN=SEA_PHOX_45 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1S5VY92|A0A1S5VY92_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage AngryOrchard OX=1955425 GN=SEA_ANGRYORCHARD_55 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKAELVRLRNFYNKLMDEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A2Z5XVJ0|A0A2Z5XVJ0_9CAUD/12-164 [subseq from] Putative immunity repressor OS=Mycobacterium phage PP OX=2077134 PE=4 SV=1\n--------------------------------------LTLAIIEDLKGKGYTQSEIARKYDVTRQYVSWIKHYYGGRLTPREQVLQHFPFQVPSKMGQTSPYRRLREHGEYMATGGV-GMDKVTLGRLRGFYAKLRD--QVPEFDPTIPPIPGVSSqGGWRYVPRTPEDGDLLIRVNEYTDLTERGRMIWRFP----------\n>tr|A0A1B1PCG4|A0A1B1PCG4_9CAUD/66-224 [subseq from] Immunity repressor OS=Mycobacterium phage Makemake OX=1873889 GN=78 PE=4 SV=1\n------------------------------------LPrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFCRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2U8UMW9|A0A2U8UMW9_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage Byougenkin OX=2182394 GN=38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERRESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A515MMC8|A0A515MMC8_9CAUD/11-157 [subseq from] Immunity repressor OS=Mycobacterium phage Carlyle OX=2585231 GN=76 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEI------------------\n>tr|A0A0K2FNV4|A0A0K2FNV4_9CAUD/19-174 [subseq from] Uncharacterized protein OS=Mycobacterium phage XFactor OX=1698715 GN=XFACTOR_38 PE=4 SV=1\n--------------------------------------LSLEVIEALKAAGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYQMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G3MEQ5|G3MEQ5_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Violet OX=1086800 GN=70 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESGEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|I3WX87|I3WX87_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Aeneas OX=1168595 GN=AENEAS_80 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPTPGVSKcGGWAYRERQEYDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1C9LXC9|A0A1C9LXC9_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Natosaleda OX=1897541 GN=SEA_NATOSALEDA_57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A223FZP1|A0A223FZP1_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage AppleCloud OX=2015827 GN=SEA_APPLECLOUD_55 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A481VRI7|A0A481VRI7_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Espica OX=2530159 GN=59 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A481VT51|A0A481VT51_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Belenaria OX=2530158 GN=59 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A3G8FJM8|A0A3G8FJM8_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Rhynn OX=2488788 GN=71 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A4D6T5X4|A0A4D6T5X4_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Sumter OX=2572318 GN=72 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A2P1CJS1|A0A2P1CJS1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Scowl OX=2099449 GN=76 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGETEADIARMYGVTPQAISWYVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATRG-NGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A3G8FW12|A0A3G8FW12_9CAUD/2-152 [subseq from] Immunity repressor OS=Mycobacterium phage BigPaolini OX=2488962 GN=73 PE=4 SV=1\n-------------------------------------------IEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIAGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A6G6XSH6|A0A6G6XSH6_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Dinger OX=2708634 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A385UFF6|A0A385UFF6_9CAUD/9-166 [subseq from] Immunity repressor OS=Mycobacterium phage Kalah2 OX=2301614 GN=189 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|I3WUA3|I3WUA3_9CAUD/67-224 [subseq from] Putative repressor protein OS=Mycobacterium virus Nepal OX=1194642 GN=NEPAL_82 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPTPGVSKcGGWAYRERQEYDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0K2CLN9|A0A0K2CLN9_9CAUD/13-173 [subseq from] HTH DNA-binding protein OS=Rhodococcus phage CosmicSans OX=1701851 GN=SEA_COSMICSANS_58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A0K2FJX4|A0A0K2FJX4_9CAUD/13-173 [subseq from] Helix-turn-helix DNA binding domain protein OS=Rhodococcus phage Rhodalysa OX=1700839 GN=PBI_RHODALYSA_58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A0S2GLC2|A0A0S2GLC2_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage TWAMP OX=1747281 GN=SEA_TWAMP_58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A0S2MXK1|A0A0S2MXK1_9CAUD/13-173 [subseq from] HTH DNA binding protein OS=Rhodococcus phage Lillie OX=1755671 GN=SEA_LILLIE_58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A088FTX6|A0A088FTX6_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage Ariel OX=1541824 GN=194 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A0A1ES05|A0A0A1ES05_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium phage MiaZeal OX=1567005 GN=196 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A249XRA1|A0A249XRA1_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Squint OX=2027902 GN=SEA_SQUINT_188 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2D2W4P7|A0A2D2W4P7_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Superphikiman OX=2041551 GN=SEA_SUPERPHIKIMAN_191 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G1D479|G1D479_9CAUD/11-166 [subseq from] Uncharacterized protein OS=Mycobacterium virus Littlee OX=1034111 GN=195 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|G8I5P5|G8I5P5_9CAUD/12-167 [subseq from] Uncharacterized protein OS=Mycobacterium virus Courthouse OX=1089119 GN=190 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A1I9S7X2|A0A1I9S7X2_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Partridge OX=1897441 GN=SEA_PARTRIDGE_57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHLPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A7T7GTZ0|A0A7T7GTZ0_9CAUD/11-166 [subseq from] DNA binding protein OS=Mycobacterium phage Pound OX=2797323 GN=183 PE=4 SV=1\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGELTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGECIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A6G9YTE9|A0A6G9YTE9_9NOCA/7-164 [subseq from] XRE family transcriptional regulator OS=Nocardia arthritidis OX=228602 GN=F5544_43335 PE=4 SV=1\n--------------------------------------LSFAEIEDLHNKGLTYTQIAKIKGVTKQAVSKVVRLHGGSQTPRQTVGQHFPWKEVPRHFrESSPYKRMRDHGEWMATGG-KGMQGYKLDRLRWWHRYLRENNVVLEFDPEIPAIDGVSpGGGFAYRPRQEEDGDLLIRVNGYTQMSPESYTIWVLPDP--------\n>tr|A0A2U8UGX0|A0A2U8UGX0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage ConceptII OX=2178920 GN=80 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGESEADIARMYGVTPQAVSWYIHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPTPGVSKcGGWAYRERQEYDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A0P0M6L6|A0A0P0M6L6_9CAUD/2-152 [subseq from] Immunity repressor OS=Mycobacterium phage Pepe OX=1735466 GN=SEA_PEPE_69 PE=4 SV=1\n-------------------------------------------IEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRDRQESDEDLLIRVNEYATLSEIGRhHIWRFP----------\n>tr|A0A222ZAS1|A0A222ZAS1_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Yoncess OX=2024280 GN=SEA_YONCESS_57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMMEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A2Z5HEW0|A0A2Z5HEW0_9CAUD/11-166 [subseq from] Immunity repressor OS=Mycobacterium phage Niza OX=2250382 GN=75 PE=4 SV=1\n--------------------------------------LSLGVIEALKAAGESEADIARMYGVTPQAISWYIHTYGGKLTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPTPGVSKcGGWAYRERQEYDEDLLIRVNEYTTLSEIGRhEIWRFP----------\n>tr|A0A222ZIR3|A0A222ZIR3_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage StCroix OX=2015832 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A222ZIZ0|A0A222ZIZ0_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Krishelle OX=2015829 GN=58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2Z4Q2J4|A0A2Z4Q2J4_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Shuman OX=2234034 GN=59 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A222YZ67|A0A222YZ67_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Bonanza OX=2024254 GN=59 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A7T0M3C6|A0A7T0M3C6_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage PhailMary OX=2793705 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A222ZIA7|A0A222ZIA7_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage RexFury OX=2015831 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGFTQSEIAKQYGVTCQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A1A3GW86|A0A1A3GW86_9MYCO/9-165 [subseq from] Uncharacterized protein OS=Mycolicibacterium mucogenicum OX=56689 GN=A5630_25435 PE=4 SV=1\n--------------------------------------LSLVAIEDFKRKGYSQTEIAEMYGVTRQAISWWVKTYGGRKTPRQEVLEAWPLTVEAPMTQTAVYRNLRNHAEYVITGGIGMKPAD-LKRLEAFYRFIADNDYIVEFDPTLVPPESMTNkGGWAWRKRRKSDGDLLIRENKYITATTEdWKDIWLLPE---------\n>tr|A0A222ZIW8|A0A222ZIW8_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Naiad OX=2015830 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYLNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A100XHH6|A0A100XHH6_MYCTH/10-164 [subseq from] Immunity repressor OS=Mycolicibacterium thermoresistibile OX=1797 GN=RMCT_3616 PE=4 SV=1\n-------------------------------------PLTPAIVEDLKGKGYSQSEIARRYGVTRQYISWIKYNYDGRLTpTEQLLQQHFPFQVPTEMGQTSPYRRLRDHGRYVATWGV-GMDNGTLGRLRGFYRKLQD--QVLEFDPNIPPIPGVSSkGGWRYVPRTADDGDLMIRVNDYTELTDEGRRVWRLP----------\n>tr|G9FHP2|G9FHP2_9CAUD/13-168 [subseq from] Uncharacterized protein OS=Rhodococcus virus RGL3 OX=1109716 PE=4 SV=1\n-------------------------------------KLTLAIVEALKNKGRTQSDIAREYGVTRQHVSWIVKTYGGTQTPRQKLLEHFPWEVPSKQLASSPYRNMRNHAEYMATGGVG-MGAPELKRLRNFYQKLQDENLVLEFDPNIPGEPGFAiNGGFALRPREESDGDLMIRVNEYTKLSDEGKRLWRFP----------\n>tr|A0A222ZJ77|A0A222ZJ77_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Hiro OX=2015828 GN=58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYLNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A222ZIL7|A0A222ZIL7_9CAUD/13-173 [subseq from] Immunity repressor OS=Rhodococcus phage Alatin OX=2015826 GN=57 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMSNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2U8UQE4|A0A2U8UQE4_9CAUD/4-86 [subseq from] Uncharacterized protein OS=Mycobacterium phage Priamo OX=2182403 GN=80 PE=4 SV=1\n---------------------------------KTRSPLIFSVIEDLRRKGYNQSEIAEMHGVTRQAVSWHKKTYGGQLTPRQIVNAAWPWETTNLHGKSKPFQRLRDHGEFMATG---------------------------------------------------------------------------------------\n>tr|A0A1A3M6T4|A0A1A3M6T4_MYCFO/18-175 [subseq from] Repressor OS=Mycolicibacterium fortuitum OX=1766 GN=A5637_10445 PE=4 SV=1\n-----------------------------------KERLTLAIVEALKNQGLSGADIARRYGVTRQYVSWIKHTYGGQLTEREKVLREFPFKVPEKQGQASPYRRLRDHAQFISTGGA-DMTPDQLQRLRSFYRKLRAGNLVVEFDPNIPPIPGVSSkGGWAYRHRSPDDDELLIRVNEFTNLTEKGCEIWCFP----------\n>tr|A0A1B1SFG3|A0A1B1SFG3_BPMB2/1-136 [subseq from] Immunity repressor OS=Mycobacterium phage BuzzBuzz OX=1873892 GN=SEA_BUZZBUZZ_73 PE=4 SV=1\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGVVLEFDPSIPPIEGVsAQGGWRFVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A1I9SDC0|A0A1I9SDC0_9CAUD/1-136 [subseq from] Immunity repressor OS=Mycobacterium phage Louie6 OX=1897523 GN=SEA_LOUIE6_78 PE=4 SV=1\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGVVLEFDPSIPPIEGVsAQGGWRFVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|G1BRH1|G1BRH1_9CAUD/15-155 [subseq from] Repressor OS=Mycobacterium phage Rockstar OX=1034144 GN=72 PE=4 SV=1\n---------------------------------------------------ATQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|Q857E8|Q857E8_BPMB2/1-136 [subseq from] Uncharacterized protein OS=Mycobacterium phage Bxz2 OX=205870 GN=74 PE=4 SV=1\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A345KV65|A0A345KV65_9CAUD/14-164 [subseq from] Helix-turn-helix DNA binding domain protein OS=Mycobacterium phage Aminay OX=2250291 GN=81 PE=4 SV=1\n--------------------------------------LSLPAIEDLKRAGLNQSEIARLYGVTRQAVSLWVRKYNGTQTARQLALQAWPWKVPTPQNQQTPYRSMRDHAEWWATGGEMNN-SDGLARLRAFHRRLVH--EVVEFDPELPPVDGLKYGGFRWLPRERGDAGLFFRVNVHTRLTDEAARIWSL-----------\n>tr|F1BCL8|F1BCL8_9CAUD/1-136 [subseq from] Gp74 OS=Mycobacterium virus Wonder OX=927988 GN=MphageW_gp74 PE=4 SV=1\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKESPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A2Z5H5C6|A0A2Z5H5C6_9CAUD/1-136 [subseq from] Immunity repressor OS=Mycobacterium phage Phranny OX=2250365 GN=75 PE=4 SV=1\n-----------------------------------------------------------MYGVTRQYVSWIKHTYGGRLTPREEVLKEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|A0A291RT21|A0A291RT21_9NOCA/8-167 [subseq from] Uncharacterized protein OS=Nocardia terpenica OX=455432 GN=CRH09_35740 PE=4 SV=1\n-------------------------------------ALTIEIVEQLKGEGMSQAEIARLYGVTRQAITDVKRRSGGYSTTpREDALKHFPWKVpgsrAVPMAMQKPYRNMRDHAEYMV-TNGEGMSAEKLKRLRGFYRKLHSENVVLEFDPNIPPSPGIGIGGFAYRARTPEDGDLIIRVNEHTTLTEEGRRIWTFP----------\n>tr|A0A899IUI3|A0A899IUI3_9CAUD/9-163 [subseq from] Immunity repressor OS=Mycobacterium phage prophiGD24-3 OX=2813252 GN=38 PE=4 SV=1\n--------------------------------------LTIGIIRQLKNEGYNHSQIAEMFGVTRQAVSYLWRKYDGTPTIRQRVAEALPFAVPEKFNRAQPLALLRDHAEHMMQGSDR-FTERRRSKLRSFYKKLRDENLVVEYDPEIPSDPGVCkPGGFAYRPREPRDKGLMIRVNEHTHITEYGEQIWKFP----------\n>tr|A0A899IZX1|A0A899IZX1_9CAUD/9-163 [subseq from] Immunity repressor OS=Mycobacterium phage prophiGD43A-4 OX=2813263 GN=39 PE=4 SV=1\n--------------------------------------LTIGIIRQLKNEGYNHSQIAEMFGVTRQAVSYLWRKYDGTPTIRQRVAEALPFAVPEKFNRAQPLALLRDHAEHMMQGSDR-FTERRRSKLRSFYKKLRDENLVVEYDPEIPSDPGVCkPGGFAYRPREPRDKGLMIRVNEHTHITEYGEQIWKFP----------\n>tr|A0A1I4X6C9|A0A1I4X6C9_9PSEU/22-173 [subseq from] Uncharacterized protein OS=Saccharopolyspora antimicrobica OX=455193 GN=SAMN05421805_103252 PE=4 SV=1\n--------------------------------------------NPKTGKKYTQNEIAAIAGVSRQRISQIKLASGNYsKTPRERVLEHYPWKTGAKFQPASPNRRLRDHAEYMATGGA-GMSDDKLARLLGFYRFLEEGDLVIEFDPGIPPAEGVSStGGFAYRSRKPSDGNLMIRVNEHTELTPEGVDLWVIPDK--------\n>tr|A0A7T1KSW4|A0A7T1KSW4_9CAUD/9-163 [subseq from] Immunity repressor OS=Mycobacterium phage phiGD24-3 OX=2794955 GN=76 PE=4 SV=1\n--------------------------------------LTIGIIRQLKNEGYNHSQIAEMFGVTRQAVSYLWRKYDGTPAIRQRVAEALPFAVPEKFNRAQPLALLRDHAEHMMQGSDR-FTERRRSKLRSFYKKLRDENLVVEYDPEIPSDPGVCkPGGFAYRPREPRDKGLMIRVNEHTHITEYGEQIWKFP----------\n>tr|A0A7G8LF38|A0A7G8LF38_9CAUD/3-96 [subseq from] Immunity repressor OS=Mycobacterium phage PainterBoy OX=2762425 GN=80 PE=4 SV=1\n----------------------GKTQQS----GSFRAPLIFSVIEDLRRKGYNQSEIADMHGVTRQAVSWQKKTYGGRMTPRDIVREAWPFETTNLHGKSVPFQRLRDHGEFMATGERRH-----------------------------------------------------------------------------------\n>tr|A0A481VWP1|A0A481VWP1_9CAUD/1-69 [subseq from] Immunity repressor OS=Mycobacterium phage Orange OX=2530137 GN=77 PE=4 SV=1\n--------------------------------------------------------------------------------------------------------------------------------------MLRDDDVVLEFDPSIEPYPGMAGGGFRYVPRRLEDEDLLIRVNEHTNLTEEGEMIWCWPPKLDQLLAEP\n>tr|A0A370HYW3|A0A370HYW3_9NOCA/11-163 [subseq from] Uncharacterized protein OS=Nocardia pseudobrasiliensis OX=45979 GN=DFR76_10921 PE=4 SV=1\n---------------------------------------TEDVVQELLAQGLSKAEIGRLFGVSRQAVLQ--KAPREFIGPARIVEDSYPWAVDRELTRAVPYTRSREHAKYMALGR-GALSDDQAKRLRSWYRLLRNMNVVVEYDPEIPALEGIStNGGWRYVARTPEDGELIVRVNEYTRMTVEGRSIWVFPP---------\n>tr|B3VG44|B3VG44_9CAUD/11-130 [subseq from] Immunity repressor OS=Mycobacterium virus KBG OX=540066 GN=KBG_73 PE=4 SV=2\n--------------------------------------LSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCTPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKRG--------------------------------------------\n>tr|A0A1C9M2K6|A0A1C9M2K6_9CAUD/67-188 [subseq from] Immunity repressor OS=Mycobacterium phage Bigfoot OX=1897425 GN=SEA_BIGFOOT_70 PE=4 SV=1\n-------------------------------------PrLSLEVIEALKATGETEADIARMYGVTPQAVSWHVHTYGGKLTARQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKRG--------------------------------------------\n>tr|A0A511MJW3|A0A511MJW3_9NOCA/26-179 [subseq from] Uncharacterized protein OS=Nocardia ninae NBRC 108245 OX=1210091 GN=NN4_53980 PE=4 SV=1\n-------------------------------------------VQALVDKGEGFAAIARRFGYTRQYVQQFAARNGISLpkTPRRMVGEEFPWKVPSAMQRTPPYRRMRDHGEFMATGG-EGMSDEKKSRLRSWYAMLRKYNYVLEFDPKLPPTVGVSpAGGFAYRPREERDGkKLLIRLNEHTRLTSDGKKIWVFPP---------\n>tr|A0A543IQU3|A0A543IQU3_9ACTN/4-167 [subseq from] Helix-turn-helix protein OS=Actinopolyspora sp. DSM 45965 OX=2586995 GN=FHX43_4401 PE=4 SV=1\n-----------------------------------ESDITPDLIRSLQNKGLNQSQVAAELGVTRQAISKVlQGSFLHQKSPRQQANEAFPWEPGKQYNKSQSDRKLRDHAEFMITGG-KGMTRDKLYRLQGFYKKLERDNVVVEFHPDIPPTKGNPMGGYAYRERADSDGDLIIRVNELARITAENIDIWRFPPKLPQL----\n>tr|A0A2U8UQU0|A0A2U8UQU0_9CAUD/1-75 [subseq from] Uncharacterized protein OS=Mycobacterium phage Priamo OX=2182403 GN=79 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MNETKLKLLQSFWAKLRDEDVVVEFDPNIAPYPGMAGGGFRYVPREISDDCLLIRVNEYTNLTANGKRIWVWPPD--------\n>tr|A0A023W7S6|A0A023W7S6_9CAUD/6-133 [subseq from] Immunity repressor OS=Mycobacterium phage Phantastic OX=1486426 GN=75 PE=4 SV=1\n-------------------------------PSGKKSELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQVPVHQQQGvSPYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSRQGGL------------------------------------------\n>tr|A0A0H5PB77|A0A0H5PB77_NOCFR/7-165 [subseq from] Uncharacterized protein OS=Nocardia farcinica OX=37329 GN=ERS450000_03509 PE=4 SV=1\n--------------------------------------LSLDEVEALLRAGFTQQEIADIKGVTRAAVSVALKRHGMTArepGPRELGNKDFPFEVPVIFQ-QDPYQRLRDHGEYMFT-KGKGMSEARIKRLRTFYRKLIENNWVVEYDPNLPPVEGVSSkGGWAYRPREEKDGNLIIRVNEYTTLTDYARTVYVLPDV--------\n>tr|A0A6G9Y3Z8|A0A6G9Y3Z8_9NOCA/14-163 [subseq from] XRE family transcriptional regulator OS=Nocardia brasiliensis OX=37326 GN=F5X71_29585 PE=4 SV=1\n---------------------------------------------ALVEAGESWAEIATRFDTSRQNVQQFAKRHGIEplKTPRREVAEHFPWKVPSDQQAAMPYQRLRDHGEYIASGGV-GMSERKLKGLRSWYEMLRKYNYVLEFDPHQPPIYGVSkYGGFVYRERQESDGNLLIRLNSHTRLTSRGKLIWVFP----------\n>tr|A0A542DNK3|A0A542DNK3_9PSEU/2-143 [subseq from] Uncharacterized protein OS=Amycolatopsis cihanbeyliensis OX=1128664 GN=FB471_4471 PE=4 SV=1\n-----------------------------------------------ERKGLNQREIAEATGLTEARVSQIKKSIENRHkKPREEARENFPFPRiQEKFSRNSVYHRLADHMEYVATGG-KDMSEHKLKALLGFYKRLDEHNVVVEFDPNNPPMPGIKYGGFAYVPREERDGDLIVRINEHTKITDRSNV---------------\n>tr|A0A1W9ZCA7|A0A1W9ZCA7_9MYCO/5-131 [subseq from] Uncharacterized protein OS=Mycobacterium angelicum OX=470074 GN=BST12_25745 PE=4 SV=1\n---------------------------------------------------------------TPQFAKWLQQTYGGGSTPRDIVIRNWPFQIPDTSCPAPLYLRLLDHGEYVATGG-RGMSNDTLRDLTKFYQTLRDERAVVEYDPKNGVSE---SGGLSLVPREQKDGDLIIRVNEHTQLTDEGEMIWRFPP---------\n>tr|A0A2H4PC16|A0A2H4PC16_9CAUD/5-74 [subseq from] Immunity repressor OS=Mycobacterium phage WunderPhul OX=2047846 GN=SEA_WUNDERPHUL_78 PE=4 SV=1\n----------------------------------TRAPLIFSVIEDLRRKGYSQSEIAEMHGVTRQAVSWQKKTYGGHLTPRQIVNEAWPWETTNLHGKSKPFQ---------------------------------------------------------------------------------------------------\n>tr|A0A0K1LJW7|A0A0K1LJW7_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage UnionJack OX=1673876 GN=UNIONJACK_73 PE=4 SV=1\n-------------------------------------------------YGWKYADIARQVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYP----------\n>tr|A0A2P1N278|A0A2P1N278_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Naca OX=2126816 GN=72 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>tr|A0A2R4APT6|A0A2R4APT6_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Jabiru OX=2126951 GN=71 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>tr|G1EDM0|G1EDM0_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium virus Benedict OX=1041807 GN=73 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>tr|G1EDR9|G1EDR9_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Airmid OX=1041808 GN=72 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>tr|I6X361|I6X361_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacteriophage ElTiger69 OX=1195069 GN=75 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKAWPFEGvSGRHLEAYQYRLLRHHAEYMATGG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREESDGNLIVRENEHTHITEEGMNVWVYPK---------\n>tr|A0A419HTJ9|A0A419HTJ9_9PSEU/9-167 [subseq from] XRE family transcriptional regulator OS=Pseudonocardiaceae bacterium YIM PH 21723 OX=2340915 GN=D5S17_09245 PE=4 SV=1\n---------------------------------------TAELIHELNtKENLTLTEIGARYGISPQAVSKIK-SKGKLKTPREVAMENFPWPGMDPKFKrSVPYQRITDHLEYVVTGG-TGMSKAKLTELRRWYKQFGKYNHVLVYDPTIPPRQGMQSGGWGLEPRVESDADLLIRENEYTTLSDAGREIWRIPDRFPE-----\n>tr|A0A410W903|A0A410W903_9CORY/4-162 [subseq from] Uncharacterized protein OS=Corynebacterium pelargi OX=1471400 GN=CPELA_05805 PE=4 SV=1\n--------------------------------------LTKEIVAELLAKGMNQTAIAKEYDVTRQYVHILAKRAGYQPFNSRLVRDNLPWeDISSEHDDNVVFQAMRLHAR-VRVGGREQIRgKSRDKVNAMFRKLIRFNQ-VIDYDPSYPPMPGLSGtGGFAYVPRQESDEDYMIRIKPGVRLTEEGKKIWKMPKEL-------\n>tr|A0A2H4PFH1|A0A2H4PFH1_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Archetta OX=2047836 GN=SEA_ARCHETTA_67 PE=4 SV=1\n-------------------------------------------------HGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLAKAWPFDGvSGRHLEAYQYRMLRHHAEYMV-TNGEGMDDLILKRLRGFYKKLRSGDFVVEYDPAIPPCEDNIQGGWAYRPREERDGELIVRENEHTHITEEGMNVWVYPE---------\n>tr|A0A514U2G5|A0A514U2G5_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Zolita OX=2593355 GN=68 PE=4 SV=1\n-------------------------------------------------HGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLAKAWPFDGvSGRHLEAYQYRMLRHHAEYMV-TNGEGMDDLILKRLRGFYKKLRSGDFVVEYDPAIPPCEDNIQGGWAYRPREERDGELIVRENEHTHITEEGMNVWVYPE---------\n>tr|A0A5Q2WDD3|A0A5Q2WDD3_9CAUD/29-173 [subseq from] Immunity repressor OS=Mycobacterium phage Bluefalcon OX=2664224 GN=65 PE=4 SV=1\n-------------------------------------------------HGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLAKAWPFDGvSGRHLEAYQYRMLRHHAEYMV-TNGEGMDDLILKRLRGFYKKLRSGDFVVEYDPAIPPCEDNIQGGWAYRPREERDGELIVRENEHTHITEEGMNVWVYPE---------\n>tr|A0A810KKD3|A0A810KKD3_9MYCO/7-70 [subseq from] Uncharacterized protein OS=Mycolicibacterium sp. TY66 OX=2755560 GN=MTY66_35690 PE=4 SV=1\n------------------------------KTATHRQPLVFGEIEELRRKGFNQTEIADFHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETK-------------------------------------------------------------------------------------------------------------\n>tr|A0A810P279|A0A810P279_9MYCO/7-70 [subseq from] Uncharacterized protein OS=Mycolicibacterium sp. TY81 OX=2759662 GN=MTY81_17810 PE=4 SV=1\n------------------------------KTATHRQPLVFGEIEELRRKGFNQTEIADFHGVSRQAVSWHKTTYGGQKSTRQIVNQAWPWETK-------------------------------------------------------------------------------------------------------------\n>tr|A0A0K2CMH4|A0A0K2CMH4_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Chadwick OX=1698366 GN=SEA_CHADWICK_73 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKTWPFEGvSGRHLEAYQYRLLRHHAEYMATRG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREERDGNLIVRENEHTHITEEGMNVWVYP----------\n>tr|A0A482JBR5|A0A482JBR5_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Scorpia OX=2517968 GN=73 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKTWPFEGvSGRHLEAYQYRLLRHHAEYMATRG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREERDGNLIVRENEHTHITEEGMNVWVYP----------\n>tr|A0A649VYT0|A0A649VYT0_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage PetterN OX=2656598 GN=77 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVLMKTWPFEGvSGRHLEAYQYRLLRHHAEYMATRG-EGMDDLILKRLRGFYKKLRDGDFVVEYDPEIPPTEDNIQGGWAYRPREERDGNLIVRENEHTHITEEGMNVWVYP----------\n>tr|A0A3G6IUH0|A0A3G6IUH0_9CORY/35-193 [subseq from] Uncharacterized protein OS=Corynebacterium pseudopelargi OX=2080757 GN=CPPEL_06070 PE=4 SV=1\n--------------------------------------LTKEIVAELLAKGMSQTAIAKEYDVSRQYVHILAKSAGYKPFSSRLVRDNLPWeDISSEHDDNIVFQAMRLHARVCLGGREQIRGKSRDKVNAMYRKLLRFNQ-VIDYDPSYPPMPGLSGtGGFAYVPRQESDEDYMIRIKPGVRLTEEGKKIWKMPKEL-------\n>tr|A0A649VB91|A0A649VB91_9CAUD/101-218 [subseq from] Immunity repressor OS=Mycobacterium phage AgronaGT15 OX=2656555 GN=76 PE=4 SV=1\n-----------------------------------------------------------------------------SSGTRYPVLQEFPFDVPRNMGQTSPFKRLRDHGEYVATGGV-GMPDEKLKRLRSFYRKLRDEGLVLEFDPDIPPIDGVsAQGGWRYVEAtpEERESGILIRENEHSRITQKGRMIWRFP----------\n>tr|A0A075V695|A0A075V695_9PSEU/4-164 [subseq from] Uncharacterized protein OS=Amycolatopsis japonica OX=208439 GN=AJAP_27980 PE=4 SV=1\n-----------------------------------KPRITHSQVKELvEVHGLSLTAAAEALGVSKSLASYHLHNSGgGYVNPWKEARKSMPWKEIQPeHRDSGQARRAAWHAEYIATGG-KHMSEKKLRYLRQWYQRLANDGLVVVYDPTIPPHKGAKTGGWDYVPREEKDGDLLFRENEYTEVTDETRVDWRLPD---------\n>tr|A0A076YR77|A0A076YR77_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Swirley OX=1527534 GN=PBI_SWIRLEY_69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A2R4ANN2|A0A2R4ANN2_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Coog OX=2126948 GN=66 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A2R4AQ59|A0A2R4AQ59_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Midas2 OX=2126953 GN=66 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A2Z5H270|A0A2Z5H270_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Tarynearal OX=2234079 GN=68 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A411AXB8|A0A411AXB8_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage HuhtaEnerson15 OX=2500792 GN=67 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|G1BQB1|G1BQB1_9CAUD/29-172 [subseq from] Repressor OS=Mycobacterium virus George OX=1034133 GN=65 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|G1JUP3|G1JUP3_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium virus Cuco OX=1071502 GN=68 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|S5Z3H3|S5Z3H3_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage LittleCherry OX=1340818 GN=68 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A2Z5XBT3|A0A2Z5XBT3_9CAUD/1-116 [subseq from] Putative immunity repressor OS=Mycobacterium phage BK1 OX=2072006 PE=4 SV=1\n------------------------------------------------------------------------------MTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRDRQESDEDLLIRVNEYATLSEIGRhHIWRFP----------\n>tr|A0A2Z5XC18|A0A2Z5XC18_9CAUD/1-116 [subseq from] Putative immunity repressor OS=Mycobacterium phage A6 OX=2072003 PE=4 SV=1\n------------------------------------------------------------------------------MTARQVIRREYPFKVPEPLSQCSPHKRLRDHGEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRDRQESDEDLLIRVNEYATLSEIGRhHIWRFP----------\n>tr|A0A516KRT8|A0A516KRT8_9CAUD/1-116 [subseq from] Immunity repressor OS=Mycobacterium phage Grungle OX=2590947 GN=39 PE=4 SV=1\n------------------------------------------------------------------------------MTDRQVIRREYPFKVPEPLSQCAPHKRLRDHGEYIATRG-NGMKDYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A0N9RUN5|A0A0N9RUN5_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Theia OX=1718172 GN=68 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHAGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A2Z5H1E7|A0A2Z5H1E7_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Dublin OX=2234073 GN=69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHAGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A649VKP1|A0A649VKP1_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage MarysWell OX=2656594 GN=69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHAGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEHTHITEEGMNIWVYP----------\n>tr|A0A482JKE2|A0A482JKE2_9CAUD/2-109 [subseq from] Putative immunity repressor OS=Mycobacterium phage Noella OX=2517962 GN=73 PE=4 SV=1\n------------------------------------------------------------------------------------VLQHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A7L7SYD1|A0A7L7SYD1_9CAUD/6-96 [subseq from] Immunity repressor OS=Mycobacterium phage Maxo OX=2772029 GN=72 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIVLQHFPFQVPVPMQQGvSPYRRLREHGEYMATGGVG-MD---------------------------------------------------------------------------------\n>tr|A0A2H4PCS6|A0A2H4PCS6_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Phlorence OX=2047844 GN=SEA_PHLORENCE_68 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|A0A2H4PDZ5|A0A2H4PDZ5_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage ForGetIt OX=2047839 GN=SEA_FORGETIT_70 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|A0A2H4PFM2|A0A2H4PFM2_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Aragog OX=2047835 GN=SEA_ARAGOG_69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|A0A2H4PGC1|A0A2H4PGC1_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage AgentM OX=2047833 GN=SEA_AGENTM_69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|A0A649VXN4|A0A649VXN4_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Lev2 OX=2656589 GN=70 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|H9NCY1|H9NCY1_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Tiger OX=1161934 GN=69 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|V5R5U6|V5R5U6_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Conspiracy OX=1391431 GN=70 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|V5RB39|V5RB39_9CAUD/29-172 [subseq from] Immunity repressor OS=Mycobacterium phage Jovo OX=1429912 GN=70 PE=4 SV=1\n-------------------------------------------------YGWTYADIARHVGKTRQAVSFIAKKYIPPTPRQEVIAKAWPFNGvSGRHLEAYQYRMLRHHAEYMATNG-DGMKEIILKRLRGFYNKLHEGDFVVEYDPAIPPCEDNIHGGWAYRPREEKDGNLIVRENEYTHITEEGMNVWVYP----------\n>tr|A0A481VSQ7|A0A481VSQ7_9CAUD/3-108 [subseq from] Immunity repressor OS=Mycobacterium phage Veracruz OX=2530154 GN=70 PE=4 SV=1\n--------------------------------------------------------------------------------------QHFPFQVPVPQQQGvSPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDQ--VIEYDPNIPPIEGVSkQGGWAYRPRKPEDGDLLIRVNDYTELTDEGRMIWRFP----------\n>tr|A0A2R4A291|A0A2R4A291_9CAUD/18-108 [subseq from] Uncharacterized protein OS=Mycobacterium phage Pistachio OX=2126722 GN=73 PE=4 SV=1\n----------------------------------------------------------------------------------------------------SPYRRLREHGEYMATGGV-GMDDLKLKRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRTPEDGDLLIRVNEYTDLTDEGRMIWRFP----------\n>tr|G1JTX2|G1JTX2_9CAUD/35-149 [subseq from] Immunity repressor OS=Mycobacterium phage RidgeCB OX=1071506 GN=72 PE=4 SV=1\n-------------------------------------------------------------------------------RKRQVIRREYPFKVPEPLSQCTPHKRLRDHVEYIATR-GKGMKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSkRGGWAYRERQESDEDLLIRVNEYTTLSEIGRhHIWRFP----------\n>tr|A0A2P1JZK9|A0A2P1JZK9_9CAUD/7-96 [subseq from] Immunity repressor OS=Mycobacterium phage Morrow OX=2094138 GN=71 PE=4 SV=1\n-----------------------------------------------------------------------------------------------------PYRRLREHGEYMATGGV-GMDDLKLSRLRGFYKKLRDH--VLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A2Z5XVA1|A0A2Z5XVA1_9CAUD/6-95 [subseq from] Putative immunity repressor OS=Mycobacterium phage B1 OX=2077133 PE=4 SV=1\n-----------------------------------------------------------------------------------------------------PYRRLREHGEYMATGGV-GMDELKLSRLRGFYKKLRDH--VLEYDPNIPPIEGVSrQGGWAYRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A385L6C1|A0A385L6C1_RHORH/1-76 [subseq from] Uncharacterized protein OS=Rhodococcus rhodochrous OX=1829 GN=C6369_001315 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MSDDKVKRLRSWWRRLRDENIVVEFDPTLPPIKGVSpHSGFAHRPRTVEDGDLLIWVNTYATLTKDGEMIWRWPPE--------\n>tr|A0A2Z4Q949|A0A2Z4Q949_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Takoda OX=2201455 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYQNMRNHAEYMATGGV-GMDKAELVRLRNFYNKLMDEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPMLPE-----\n>tr|A0A4S8Q699|A0A4S8Q699_9ACTN/8-167 [subseq from] Uncharacterized protein OS=Glycomyces buryatensis OX=2570927 GN=FAB82_17375 PE=4 SV=1\n--------------------------------------ITAEELAALDAGRITQADLARSKGVSRATISrWTRKTPGAPVPYRTQLAPFWPWKVTTSHQRAAAYMRAFDHLR-VRISG-AELDDERTSKLIAWYRAIRANGEVLAYDPDAPPTAWrVKHGGFEYLEREPADKDLLIRVPDPEWWTEERRAAWKLPKDLPE-----\n>tr|R9R4E7|R9R4E7_9CAUD/71-158 [subseq from] Repressor OS=Mycobacterium phage BTCU-1 OX=1262532 GN=CKC_71 PE=4 SV=1\n-------------------------------------------------------------------------------------------------------PRLREHGEYMATGGV-GMDELKLSRLRGFYKKLRD--QVLEYDPNIPPIEGVSrQGGWAYRPRKPEDGDLLIRVNDYTDLTDEGRMIWRFP----------\n>tr|A0A0Q2UG27|A0A0Q2UG27_MYCGO/3-119 [subseq from] Uncharacterized protein OS=Mycobacterium gordonae OX=1778 GN=AO501_17280 PE=4 SV=1\n-------------------------------------------------------------------------------TPREIVRLHFPWDVPVDLQDHPVYLLMRLHGDYMATGG-RDMPVDDVAAVHEFHAQLREHDWVVEYDPNITAPDGIDeRPGFVYRTRTIEDDDLIIRNNGHTVITDEGELIWRYPPDL-------\n>tr|G7CFY7|G7CFY7_MYCT3/2-108 [subseq from] Uncharacterized protein OS=Mycolicibacterium thermoresistibile (strain ATCC 19527 / DSM 44167 / CIP 105390 / JCM 6362 / NCTC 10409 / 316) OX=1078020 GN=KEK_09542 PE=4 SV=1\n------------------------------------------------------------------------------------LQQHFPFQVPTEMGQTSPYRRLRDHGRYVATWGV-GMDNGTLGRLRGFYRKLQD--QVLEFDPNIPPIPGVSSkGGWRYVPRTADDGDLMIRVNDYTELTDEGRRVWRLP----------\n>tr|A0A100WIC0|A0A100WIC0_9MYCO/4-122 [subseq from] Uncharacterized protein OS=Mycolicibacterium canariasense OX=228230 GN=RMCC_5691 PE=4 SV=1\n--------------------------------------------------------------------------------PLEIARLHFPWDVPLELQPSPVYALMQLHGDFIATGG-RGMDTADLERVHSFHARLRDANVVIEFDPNIPADQGIDGaAGFAFRPRTIDDEDRLVRANGFTVLTEEGDMIWSFPPDLPDL----\n>tr|G9FHV1|G9FHV1_9CAUD/13-113 [subseq from] HTH cro/C1-type domain-containing protein OS=Rhodococcus phage RER2 OX=1109715 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEE----------------------------------------------------------------\n>tr|A0A2Z4Q9K8|A0A2Z4Q9K8_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Swann OX=2201454 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2Z4Q397|A0A2Z4Q397_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Bradshaw OX=2201447 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2Z4Q4E6|A0A2Z4Q4E6_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Erik OX=2201449 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2Z4Q755|A0A2Z4Q755_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Phrankenstein OX=2201452 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A2Z4Q995|A0A2Z4Q995_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage UhSalsa OX=2201445 GN=58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A1S5VYD6|A0A1S5VYD6_9CAUD/13-113 [subseq from] HTH cro/C1-type domain-containing protein OS=Rhodococcus phage BobbyDazzler OX=1955426 GN=SEA_BOBBYDAZZLER_58 PE=4 SV=1\n-------------------------------------KLTLAEVEALKNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEE----------------------------------------------------------------\n>tr|A0A1I9S7Q7|A0A1I9S7Q7_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Yogi OX=1897442 GN=SEA_YOGI_58 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A2Z4Q2U6|A0A2Z4Q2U6_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Alpacados OX=2201446 GN=57 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A2Z4Q3U4|A0A2Z4Q3U4_9CAUD/3-114 [subseq from] Immunity repressor OS=Rhodococcus phage Bryce OX=2201448 GN=57 PE=4 SV=1\n--------------------------------------------------------------------------------------EHFPWEVPVEMNPQSPYRNMRNHAEYMATGGVG-MDKAELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEKDGDLMIRVNEYTKLTEEGRRLWKIPPVLPE-----\n>tr|A0A1S1BPA5|A0A1S1BPA5_9CORY/11-160 [subseq from] Uncharacterized protein OS=Corynebacterium sp. HMSC034B08 OX=1715135 GN=HMPREF2656_09715 PE=4 SV=1\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPTLTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLMKRLRQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>tr|A0A2I1WBD8|A0A2I1WBD8_9CORY/11-160 [subseq from] Uncharacterized protein OS=Corynebacterium coyleae OX=53374 GN=CYJ45_07780 PE=4 SV=1\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPALTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLMKRLRQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGEKIWRMPTEL-------\n>tr|A0A0E3N6F3|A0A0E3N6F3_CORUL/7-161 [subseq from] HTH_7 domain-containing protein OS=Corynebacterium ulcerans OX=65058 GN=CUL131002_1771 PE=4 SV=1\n------------------------------------------QVMQLLGEGMTQSQIAREYGVTRQYIFILAKRAGHEAAEQEYIKDDLPWaDIDETHKDNTIFKALRMHARYMERGQKSLRGSSCVKLLGMYRKLVRFNQ-VIDYDESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQLPKKF-------\n>tr|A0A172UWI7|A0A172UWI7_9MYCO/5-103 [subseq from] Uncharacterized protein OS=Mycobacterium sp. YC-RL4 OX=1682113 GN=A7U43_28200 PE=4 SV=1\n----------------------------------------------------------------------------------------------------PVYALMRLHGDFMATGGQRMAD-ADLDRVHAFHDRLREEDAVIEFDPNIPADQGIDGaAGFAFRPRTIDDEDRLIRVNGFTVLTEEGDMIWSFPPDLPDL----\n>tr|A0A7G8LF37|A0A7G8LF37_9CAUD/2-63 [subseq from] Immunity repressor OS=Mycobacterium phage PainterBoy OX=2762425 GN=79 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------------------------------------LEFDPNIPPTPGMAGGGFRYVHRDIVTDgpDLLIRVNEHTApMTEKSEMIWSFPHDIEEILQ--\n>tr|A0A7T9WPX4|A0A7T9WPX4_CORUL/3-161 [subseq from] Uncharacterized protein OS=Corynebacterium ulcerans OX=65058 GN=I6I75_04195 PE=4 SV=1\n--------------------------------------ITPEEVMHLMGKGMTQSQIAREYGVTRQYIFTLAKRGGHQASEQEYIKDDLPWANvPDKHFNNTILSGLRIHARYMERGQEGLRGSSCVKLLSMYRKLVRFNQ-VIDYNESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPSVRITKRGARIWQLPKKF-------\n>tr|A0A549YWM8|A0A549YWM8_9CORY/3-156 [subseq from] Uncharacterized protein OS=Corynebacterium silvaticum OX=2320431 GN=EU799_05585 PE=4 SV=1\n--------------------------------------ITPEEVMRLIGKGMTQSQIAREYGVTRQYIFILAKRAGHEAAEQEYIKNDLPWTNiDETHKDNTIFKALRMHARYMERGQEGLHGSSCVKLLGMYRKFVRFNQ-VIDYDEAYPPVEGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQ------------\n>tr|A0A7Y4LKN4|A0A7Y4LKN4_CORUL/3-156 [subseq from] Uncharacterized protein OS=Corynebacterium ulcerans OX=65058 GN=CBE74_00150 PE=4 SV=1\n--------------------------------------ITPEEVMRLIGKGMTQSQIAREYGVTRQYIFILAKRAGHEAAEQEYIKNDLPWTNiDETHKDNTIFKALRMHARYMERGQEGLHGSSCVKLLGMYRKFVRFNQ-VIDYDEAYPPVEGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQ------------\n>tr|V6V2I8|V6V2I8_CORUL/4-161 [subseq from] HTH_7 domain-containing protein OS=Corynebacterium ulcerans NCTC 12077 OX=1258583 GN=D881_10115 PE=4 SV=1\n---------------------------------------TPERVMQLLGEGMTQSQIAREYGVTRQYIFTLAKRGGHEAREMEYIKDDIPWPKVKdKHRDNTIYKTLRIHARYMERGQEGVRGSSYVKLLGMYRKLVRFNQ-VIDYDESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGARIWQLPKKF-------\n>tr|A0A7T9WLY3|A0A7T9WLY3_CORUL/4-161 [subseq from] Helix-turn-helix domain-containing protein OS=Corynebacterium ulcerans OX=65058 GN=I6I75_06685 PE=4 SV=1\n---------------------------------------TPERVMQLLGEGMTQSQIAREYGVTRQYIFTLAKRGGHEAREMEYIKDDIPWPKVKdKHRDNTIYKTLRIHARYMERGQEGVRGSSYVKLLGMYRKLVRFNQ-VIDYDESYPPVKGLSNtGGFMYVPRSPEDGNLIIKMKPGVRITKRGAHIWQLPKKF-------\n>tr|A0A2Z4Q7E9|A0A2Z4Q7E9_9CAUD/7-114 [subseq from] Immunity repressor OS=Rhodococcus phage Rasputin OX=2201453 GN=58 PE=4 SV=1\n------------------------------------------------------------------------------------------CEVPVEMNPQSPYRNMRNHAEYMATGGV-GMDKGELVRLRNFYQKLMEEDSVLEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A1H4JAX9|A0A1H4JAX9_9CORY/11-159 [subseq from] Uncharacterized protein OS=Corynebacterium coyleae OX=53374 GN=SAMN04488531_0443 PE=4 SV=1\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPALTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLIKRLLQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPGTRVTPLGDKIWRMPDE--------\n>tr|A0A846SRX1|A0A846SRX1_9CORY/11-160 [subseq from] Uncharacterized protein OS=Corynebacterium coyleae OX=53374 GN=HC138_01865 PE=4 SV=1\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPALTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLIKRLLQFDVVIDYDPSYPPIMGLTNtPGFAYLPRTASDENFLMKIKPETRITPLGQKIWRMPTEL-------\n>tr|A0A1F1UNP3|A0A1F1UNP3_9CORY/11-160 [subseq from] Uncharacterized protein OS=Corynebacterium sp. HMSC08F01 OX=1581139 GN=HMPREF3171_10515 PE=4 SV=1\n--------------------------------------------IYMMENGYRQVEIAREYNVSRQYIHQLAKQA-GYTSPITTVQENLPWDVDPALTKNATFVAFRLIGHEMVA-PGK-LTNESRERANGLIKRLLQFDVVIDYDPSYPPVVGLTSlPGFAYLPRTASDENFLMKIKPETRITPLGQKIWRMPTEL-------\n>tr|A0A1A0K7G2|A0A1A0K7G2_9CORY/14-159 [subseq from] HTH cro/C1-type domain-containing protein OS=Corynebacterium sp. EPI-003-04-2554_SCH2473622 OX=1834153 GN=A5774_02025 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQVLRVIGTFNLD--PEAISDNTLRRVRAVLRKLRNFNTVIDCDPGYPAVPGLVNtAGFAYVPRAESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|U2GQK3|U2GQK3_9CORY/14-159 [subseq from] HTH cro/C1-type domain-containing protein OS=Corynebacterium pseudodiphtheriticum 090104 OX=1381111 GN=N579_05125 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQVLRVIGTFNLD--PEAISDNTLRRVRAVLRKLRNFNTVIDCDPGYPAVPGLVNtAGFAYVPRAESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|A0A3G6IUA6|A0A3G6IUA6_9CORY/27-186 [subseq from] Uncharacterized protein OS=Corynebacterium pseudopelargi OX=2080757 GN=CPPEL_06055 PE=4 SV=1\n-----------------------------------QTRLTPELVAGLLAEGNSQSGIARTFGVSRQHIHYLAKRAGLTAEAGEI-TQHLPWDVDQvKHGNNVILQSLRAHARYRLQGL-AGVQGSTRKRLAAFYRKITVFQQVVDFDPRQPPIPRVSsTGGFMFTPRTNSDGDYLIRIRNGLHWTEKGKTLWLQPTT--------\n>tr|W5XYA4|W5XYA4_9CORY/3-147 [subseq from] Repressor-like immunity protein OS=Corynebacterium vitaeruminis DSM 20294 OX=1224164 GN=B843_01390 PE=4 SV=1\n-------------------------------------------------KGVRQSEIAREYGVSRQYVGQLAK-QGGYDSPITKVSRNLPWEVDPAFYANTIYKGVTLHGHMMLAGKEKIS-ATSQNKLLGFYRKLIRFNVVVDYDPDYLAQPGLTNtNGFAYVPRGAADKDYIIKVRPGVRITPLGEKLWRLPSD--------\n>tr|A0A837D8J9|A0A837D8J9_9PSEU/2-85 [subseq from] Uncharacterized protein OS=Saccharomonospora viridis OX=1852 GN=MINT15_31030 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------HIKYVALGE-QKLSDSEKKRLRNWYAELQRLNVVLEYDPNIPPTLHMSTGGWRYVPRADSDEGLVIRVNEHARMTDEAYEYLRFP----------\n>tr|A0A810KL01|A0A810KL01_9MYCO/1-76 [subseq from] Uncharacterized protein OS=Mycolicibacterium sp. TY66 OX=2755560 GN=MTY66_35650 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>tr|A0A810P8N5|A0A810P8N5_9MYCO/1-76 [subseq from] Uncharacterized protein OS=Mycolicibacterium sp. TY81 OX=2759662 GN=MTY81_17840 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MSDFKRGRHAAWLKMMRRNDYVLEFDPNIPPTPGVApTGGFAYRKRDprIDGFELLIRVNEFTNLTPEGRRLWSYA----------\n>tr|A0A6M3T421|A0A6M3T421_9CAUD/40-115 [subseq from] Immunity repressor OS=Mycobacterium phage MA5 OX=2725640 GN=73 PE=4 SV=1\n-----------------GVAETGVIQVNTERPRGKKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQV--------------------------------------------------------------------------------------------------------------\n>tr|A0A5D4FRT4|A0A5D4FRT4_9CORY/12-158 [subseq from] Uncharacterized protein OS=Corynebacterium urealyticum OX=43771 GN=FYJ88_08830 PE=4 SV=1\n----------------------------------------------LMGEGMTQSAIAREYGVARQYINILAKR-GGHEPVIPIVTENLPWTVPSEYHDNTIYQalRLASHANYAGLDSLRGTSQDKLARFVR--KLALF-NQVIDFDPSYPAIPGHSNtPGFAFVPRTPEDKDYMINIRPGVRITPTGRKMWRMPD---------\n>tr|A0A433FIV8|A0A433FIV8_9CORY/14-159 [subseq from] XRE family transcriptional regulator OS=Corynebacterium propinquum OX=43769 GN=D8M20_03835 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQALRVVGLWNMDK--DSVSLGTVKKVIGVLRKVHHFGSVIDYDPGYPAIPGLVtTPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|A0A7U0CNK4|A0A7U0CNK4_9CORY/14-159 [subseq from] Helix-turn-helix transcriptional regulator OS=Corynebacterium propinquum OX=43769 GN=I6I70_10475 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEFSQNNLYQALRVVGLWNMDP--NAVKPNTLQKLRGVLRKLQNFNTVLDYDAGYPAVPGLTNtPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|A0A2K9VI93|A0A2K9VI93_9CAUD/136-207 [subseq from] Uncharacterized protein OS=Mycobacterium phage SWU2 OX=2077150 GN=JX_gp70 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MDKVRLGRLRSFYKKLQD--QVLEFDPAIPPIPGVSNkGGWRYVPRTADDGDLLIRVNDYTDLTEQGRMIWRLP----------\n>tr|A0A3S9UP84|A0A3S9UP84_9CAUD/60-136 [subseq from] Immunity repressor OS=Mycobacterium phage Zetzy OX=2499071 GN=76 PE=4 SV=1\n-----------------------------------------------------------------------------------------------------------------------DMPDEKLKRLRSFYRKLRDEGLVLEFDPNIPPIEGVsAQGGWRFVEATSeeRESGILIRENEHSRLTEKGRMIWRFP----------\n>tr|A0A7M1CRL0|A0A7M1CRL0_9CAUD/8-82 [subseq from] Uncharacterized protein OS=Mycobacterium phage Shifa OX=2776849 GN=214 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MKEYKLKRLRSFYRMLRENNWVVEFDPNIPPIPGVSKcGGWAYRERQESDEDLLIRVNEYTTLSEIGRhRIWRFP----------\n>tr|A0A2W5LFM2|A0A2W5LFM2_9CORY/14-159 [subseq from] XRE family transcriptional regulator OS=Corynebacterium propinquum OX=43769 GN=DI558_01395 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEYTHNNLYTVLRVIGLWNLEPSA--VQDSTMKKVKGVLRKLQNFNTVIDCDPGYPAVPGLVNtPGFAYVPRTESDEGFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|A0A6M3T221|A0A6M3T221_9CAUD/9-67 [subseq from] Immunity repressor OS=Mycobacterium phage JF2 OX=2725642 GN=71 PE=4 SV=1\n----------------------------------KKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQV--------------------------------------------------------------------------------------------------------------\n>tr|A0A6M3T235|A0A6M3T235_9CAUD/9-67 [subseq from] Immunity repressor OS=Mycobacterium phage JF4 OX=2725641 GN=71 PE=4 SV=1\n----------------------------------KKSDLSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGGKLTPRELVLQHFPFQV--------------------------------------------------------------------------------------------------------------\n>tr|A0A0B6EZY0|A0A0B6EZY0_9CORY/11-160 [subseq from] Uncharacterized protein OS=Corynebacterium singulare OX=161899 GN=CSING_04790 PE=4 SV=1\n---------------------------------------------TMIKEGYRQSDIAREYGVSRQYVSKLAKQ-SGYISSMTIINDNLPWRVDSDFQKNSLYQSLRLIAHYNLEGEDAFVNakTSrrKAQRLA---ERLIVFRQVIDYNPAYPAIPGIVNtPGFAYVPRTESDEDFIIKIRPDVRVTTIGDRIWRLPE---------\n>tr|A0A4R2JK35|A0A4R2JK35_9PSEU/8-104 [subseq from] Uncharacterized protein OS=Actinocrispum wychmicini OX=1213861 GN=EV192_106364 PE=4 SV=1\n---------------------------------------------------------------------------------------------------AAIYRRIAEYLKWVELGSDR-LTENQRERLRSFLDKLHERNLVVVFDPEIPPDAHNKYGGWATVPRLPSDGELLIRLNEYTHLAIpdEAEVIWSMPDD--------\n>tr|A0A2Z4Q4X2|A0A2Z4Q4X2_9CAUD/2-71 [subseq from] Immunity repressor OS=Rhodococcus phage Gollum OX=2201450 GN=58 PE=4 SV=1\n-----------------------------------------------KNKGLTQSEIAKQYGVTRQYVSWIIKTYGGTKTPRQKMLEHFPWEVPVEMNPQSPYRNMRNHAEYMATGG--------------------------------------------------------------------------------------\n>tr|A0A3G8FQ47|A0A3G8FQ47_9CAUD/1-76 [subseq from] Uncharacterized protein OS=Mycobacterium Phage Kalb97 OX=2488959 GN=79 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MPDEKLRRLRSFYRKLRDEGLVLEFDPTIPPIEGVsAQGGWRYVEAtpEERESGILIRENEYSRITQKGRMIWRFP----------\n>tr|U7MZ59|U7MZ59_9CORY/14-159 [subseq from] HTH cro/C1-type domain-containing protein OS=Corynebacterium sp. KPL1989 OX=1203622 GN=HMPREF1290_00408 PE=4 SV=1\n------------------------------------------------AQGMTQTELAREYGVTRQYIHKLAKQ-AGHEPLRTIVTENFPWPIKPEYTHNNLYTVLRVIGLWNLDPSaVQNSTMQKVKGV---LRKIQNFNTVIDCDPGHPDVPGLVNtPGFAYVPRTESDENFIVKIKPETRITPIGRKLWRMPEGV-------\n>tr|A0A1J5VRN7|A0A1J5VRN7_9CORY/11-157 [subseq from] Uncharacterized protein OS=Corynebacterium sp. NML120713 OX=1906332 GN=BJP06_06290 PE=4 SV=1\n----------------------------------------------LMEEGMSQAEIGRMYGVSRQYVNKLA-RQGGYVSRVNLLKEAMPWEVDKEFSRNASLIGFRLAGHV-ALDP-DNIAEEGRERAESFLNRLRTFNVVLDYNPEYPPIMGLTStPGFAYLPRTEEDEDFMMKIRPGVKVTPLGNRIWRLPEK--------\n>tr|A0A2P1JZK5|A0A2P1JZK5_9CAUD/6-59 [subseq from] Helix-turn-helix DNA-binding protein OS=Mycobacterium phage Morrow OX=2094138 GN=72 PE=4 SV=1\n-------------------------------PYKNQPELTLAVVEDLKGKGYTQSEIARMYGVTRQYVSWIKHYYGGRLTPREIV----------------------------------------------------------------------------------------------------------------------\n>tr|A0A376C983|A0A376C983_CORAY/9-159 [subseq from] Repressor-like immunity protein OS=Corynebacterium amycolatum OX=43765 GN=NCTC7243_01748 PE=4 SV=1\n-------------------------------------------IRALLDEGMTQSDIARAAGVSRQRIHQIMKESGHESLITE-VTENLPWEVERQFLTNTIYKAMRLHGHWMLDNDALTAGSLGKLR--AFHRKLVAFNQVVDYDPAYQGIPGISNtPGFAYLPRRPEDGNYIIRVRQGVKLTPTGEKIWQLPSEL-------\n>tr|E5XRU7|E5XRU7_SEGRC/1-74 [subseq from] Uncharacterized protein OS=Segniliparus rugosus (strain ATCC BAA-974 / DSM 45345 / CCUG 50838 / CIP 108380 / JCM 13579 / CDC 945) OX=679197 GN=HMPREF9336_02219 PE=4 SV=1\n------------------------------------------------------------------------------------------------------------------------MREDKLSRLRGFYRRL--NSLVVEYDPNILPIPGVStNGGWAYRSRETSDSNLLIRINDYTKLTEEGFNIWRLPDQ--------\n>tr|A0A839QC01|A0A839QC01_9MYCO/7-53 [subseq from] Transcriptional regulator with XRE-family HTH domain OS=Mycolicibacterium iranicum OX=912594 GN=FHR72_005170 PE=4 SV=1\n----------------------------------PRKPLTLAIIEDLKGKGYSQSEIARMYGVTRQYVSWIKHNYNGRLTP--------------------------------------------------------------------------------------------------------------------------\n>tr|A0A7L7ST41|A0A7L7ST41_9CAUD/1-53 [subseq from] Helix-turn-helix DNA binding protein OS=Mycobacterium phage Maxo OX=2772029 GN=71 PE=4 SV=1\n---------------------------------------------------------------------------------------------------------------------------------------------MLEFDPNIPPEEGVSkAGGWAYRPRRPEDKDLLIRVNDYTDLTEEGAMIWRFP----------\n>tr|A0A0G3HCH2|A0A0G3HCH2_9CORY/9-163 [subseq from] Uncharacterized protein OS=Corynebacterium uterequi OX=1072256 GN=CUTER_05470 PE=4 SV=1\n-------------------------------------------VMQLMEAGESQSAIARTFKVSRQYVHKLAKQGGHKSeNVGRIVTDNLPWEVPTEWQDGSLYYVIRLLAHYN-SGLY-EISPSSLERVNALVKRLKLFQQVIDYDPRYPAVKGLSSkPGFAYVPRTPEDEGMAIKIRPGIRLTDEGRKLWAMPKELPE-----\n>tr|I1V1K7|I1V1K7_9CAUD/1-28 [subseq from] Uncharacterized protein OS=Mycobacterium phage SWU1 OX=1175504 PE=4 SV=1\n-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------MNEHTNLTAEGELLWSWPDDIEELLSEP\n>tr|A0A481VRH8|A0A481VRH8_9CAUD/69-120 [subseq from] Methyltransferase OS=Mycobacterium phage Ugenie5 OX=2530153 GN=72 PE=4 SV=1\n--------------------------------------------------------------------------------------------------------------------------------------------------------D-ILCGGFRYVPRDIVIDgtDLLIRANEHTApLDEKRELIWSFPDDLEEFLAQ-\n>tr|A0A0N0N8V3|A0A0N0N8V3_9ACTN/30-170 [subseq from] Uncharacterized protein OS=Actinobacteria bacterium OV320 OX=1592329 GN=OV320_7826 PE=4 SV=1\n----------------------------------------------LSIDGMNVVKVAKEFGVSRAAIYKHTKNRKEVLPqnLKSEIMRLSPWRDVEPeHAKAGQRAYIAHHIEYVLS-GFKKLEDWKMSRLRYFYRELGDpQDKVLTYDRNEPPNQWSSTGGWKYVDREESDGDLILRTSD--ELTEEQ-----------------\n>tr|A0A482JF17|A0A482JF17_9CAUD/9-54 [subseq from] Uncharacterized protein OS=Mycobacterium phage Noella OX=2517962 GN=74 PE=4 SV=1\n------------------------------------QPeLSLAIIEDLRGKGYTQSDIARMYGVTRQYVSWIKHYYGGRLTP--------------------------------------------------------------------------------------------------------------------------\n>tr|A0A0G3HCI9|A0A0G3HCI9_9CORY/14-166 [subseq from] CENP-B N-terminal DNA-binding domain OS=Corynebacterium uterequi OX=1072256 GN=CUTER_02025 PE=4 SV=1\n---------------------------------------------QLLESGESQAAIAREFGVTQQYVSKILKGAGYvYVTPSKFVAENMPWDVPTEWRNATIHNSIRLMAFW-NMDHelIKGEAVGKLSRFLN--KLIVFN-QVVDFNLNYPPIKGLNSkPGFAYVPRTPEDEGMAIKIRPGIRLTAEGRKLWAMPKELPE-----\n>tr|A0A2I1VR73|A0A2I1VR73_9CORY/5-162 [subseq from] Uncharacterized protein OS=Corynebacterium pyruviciproducens OX=598660 GN=CYJ47_09230 PE=4 SV=1\n---------------------------------------STDEIIALLEQGLSQAEVSRIYGCSRQYIHKLIKQagYTQAFTAqTQLIRDNFPWEIEDPEVYGNtVYIQLWLMARFN--DDPDSISEESVKRVKALVRKLVNFSQVVDYNPEYPWVKGLLNtRGLAFLPRGEADHDLAIKNRPGVKITHEGEKLWKIPD---------\n>tr|A0A5N6MHR6|A0A5N6MHR6_9MICC/2-139 [subseq from] Uncharacterized protein OS=Arthrobacter yangruifuii OX=2606616 GN=GD627_11995 PE=4 SV=1\n-------------------------------PAARKLPDN-TTLRQLRAQGMRLIDIAEKYGVTEAGV-WKALERAGFTETRATYKDILPWEIADEHKSTAVMDRFRSITKQKA-GG--ELSAHEAKLLEDWLQDLAASDVVVAYHKDAPPNSASRKGGFYYVPRTEQDE-WIIR----------------------------\n>tr|A0A4Y3QZJ3|A0A4Y3QZJ3_STRCI/42-174 [subseq from] Uncharacterized protein OS=Streptomyces cacaoi subsp. cacaoi OX=66857 GN=SCA03_29600 PE=4 SV=1\n---------------------------------------------------VSVARIAELLGVTRQSIYLHIRGNKNLLDRKhnEELEKLRPFEVQHEHRKCTAYVNLTHQIDYYL--SDGKLADYKLKRLRSFWRALGTNmSQVLVYDPEQEPNYVSKEGGWRYETRQPADEDFVVRPP--GELTDE------------------\n>tr|G9FHV0|G9FHV0_9CAUD/2-58 [subseq from] Uncharacterized protein OS=Rhodococcus phage RER2 OX=1109715 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------------------------------------LEFDPNIPGTPGFAKlGGFALRPREEEDGDLMIRVNEYTKLTEEGKRLWKIPPVLPE-----\n>tr|A0A0C1CUC7|A0A0C1CUC7_9NOCA/2-62 [subseq from] Uncharacterized protein OS=Nocardia vulneris OX=1141657 GN=FG87_38155 PE=4 SV=1\n----------------------------------------------------------------------------------------------------------------------------------------RNENVVLEFDPDIAPEPGVSNkGGFAYRPRVASDGKLLFRVNRHTkEMTPEMHTIWELPEP--------\n>tr|A0A2R4A281|A0A2R4A281_9CAUD/6-51 [subseq from] Sigma70_r4 domain-containing protein OS=Mycobacterium phage Pistachio OX=2126722 GN=74 PE=4 SV=1\n-------------------------------PGTKKSELSLAIIEDLRGKGYTQSEIARMYGVTRQYVSWIKHYYGG------------------------------------------------------------------------------------------------------------------------------\n>tr|A0A0G3HAQ1|A0A0G3HAQ1_9CORY/9-164 [subseq from] Uncharacterized protein OS=Corynebacterium uterequi OX=1072256 GN=CUTER_02020 PE=4 SV=1\n-------------------------------------------VMQLMEAGESQAAIARAFKVSRQYVHKLAK-QGGHETSQRLsdyVSRHFPWDIIPEANHSTLHQNIRLLALWNLDQS--ALERGGRLKLRAFLNKLNGFQQVVDYNPNYKAVKGLNNkPGFAYVPRTPEDEGMAIKIRPGIRLTDEGRKLWAMPKELPE-----\n>tr|A0A7Z6KSK9|A0A7Z6KSK9_9NOCA/4-109 [subseq from] Uncharacterized protein OS=Rhodococcus sp. AQ5-07 OX=2054902 GN=CVN56_28420 PE=4 SV=1\n----------------------------------------------------------------------------------------LPWVVQAEHLNSFPARSVRSHVRFIATGGVG-MCKFQLGALRDFYDILREFDSVLEYNPQVRPLPGFCfDGGFRLVTRASADRNLVIRMNEFTIPQELGAELWAIPG---------\n>tr|A0A2I1VQZ4|A0A2I1VQZ4_9CORY/4-162 [subseq from] XRE family transcriptional regulator OS=Corynebacterium pyruviciproducens OX=598660 GN=CYJ47_09840 PE=4 SV=1\n--------------------------------------ITIEEIFLLQGQGLTQAEIARRAGVTRQYIYKLLRESGYRseFAlQTRLIRNNFPWELENNEvmDNTVYI-QLWLAARFNHnPASISKTSTERVRALI--RKLVRFH-QVIDYDPHYPWVKGLFNtRGLAFLPRSLTDENYMIKIRPGVTLTEVGKTLWQMPD---------\n>tr|S2ZWX9|S2ZWX9_9CORY/4-162 [subseq from] HTH cro/C1-type domain-containing protein OS=Corynebacterium pyruviciproducens ATCC BAA-1742 OX=1125779 GN=HMPREF1219_01743 PE=4 SV=1\n--------------------------------------ITIEEIFLLQGQGLTQAEIARRAGVTRQYIYKLLRESGYRseFAlQTRLIRNNFPWELENNEvmDNTVYI-QLWLAARFNHnPASISKTSTERVRALI--RKLVRFH-QVIDYDPHYPWVKGLFNtRGLAFLPRSLTDENYMIKIRPGVTLTEVGKTLWQMPD---------\n>tr|A0A329L8W1|A0A329L8W1_9MYCO/21-123 [subseq from] Uncharacterized protein OS=Mycolicibacter senuensis OX=386913 GN=DQP56_00425 PE=4 SV=1\n----------------------------------------------------------------------------------DIVRSAFPFDVQPDHQADAFHYALREHGDYVATGG-RDWHDDRRRGLRSFYAMLRQENLVITYCPSQ---------GWGYEQRLPKDDDLIVRIEDPT---DEQEIIWRFlPDHLE------\n>tr|A0A1X1YA86|A0A1X1YA86_9MYCO/31-133 [subseq from] Uncharacterized protein OS=Mycolicibacter longobardus OX=1108812 GN=AWC16_20045 PE=4 SV=1\n----------------------------------------------------------------------------------DIVRSAFPFDVQPDHQADAFHYALREHGDYVATGG-RDWHDDRRRGLRSFYAMLRQENLVITYCPSQ---------GWGYEQRLPKDDDLIVRIEDPT---DEQEIIWRFlPDHLE------\n>tr|A0A1E8Q0Q7|A0A1E8Q0Q7_9MYCO/21-120 [subseq from] Uncharacterized protein OS=Mycobacterium grossiae OX=1552759 GN=BEL07_18865 PE=4 SV=1\n----------------------------------------------------------------------------------DIVRSSFPFDVQPDHQADAFHYALHEHGDFIATGG-RDWPEDRRRGLRSFYAMLGQESLVITYDPR----Q-----GWGHEQRQRADGDLIVRIEDPT---HEQELIWAFPPD--------\n>tr|A0A4S2SAK8|A0A4S2SAK8_9ACTN/4-125 [subseq from] Uncharacterized protein OS=Streptomyces sp. A1547 OX=2563105 GN=E6W17_02520 PE=4 SV=1\n------------------------------------------------------EQIAEMYGVTKGAVYWQLRDS-GQTKKRPDHKRFIPWTVKTEHAHARPVMMLRLLSR--KESGDETIPDVKVRMLTKWLGEVREADVVVCYDRSMPPNPASpSTGGFYYSKRRPEDGDSIIRFDP-------------------------\n>tr|A0A249XTE2|A0A249XTE2_9CAUD/70-104 [subseq from] Uncharacterized protein OS=Mycobacterium phage MissWhite OX=2024297 GN=74 PE=4 SV=1\n-----------------------------------------------------------------------------------------------------------------------------------------------------------------------DDcGDLLIRVNEYTNLTDEGEMIWCWPPDIEEILA--\n>tr|A0A4S2RLF9|A0A4S2RLF9_9ACTN/29-141 [subseq from] Uncharacterized protein OS=Streptomyces sp. A1277 OX=2563103 GN=E6R18_13920 PE=4 SV=1\n--------------------------------------------------------YKRRYGIDTGPSMWGNFRYREGLDRR-ITRddELIPWAVKKEHRQPYPIVMLRVEAR-RRAG--LPLDENRTKRLASWKKMLEDNNAVVHYDPDTEE-------GWFYVPRDEGDDDIIRRPAN-------------------------\n>tr|A0A1G6MJB6|A0A1G6MJB6_9ACTN/62-139 [subseq from] Uncharacterized protein OS=Streptomyces prasinopilosus OX=67344 GN=SAMN05216505_102549 PE=4 SV=1\n----------------------------------------------------------------------------------------IPWAVELRHRHLYPLTMLRVEA---RARAGMSLDQDSRKRLESWWSMLTRDGVVVHYDPAA-------EGGFSYVPREEADDDIIRRP---------------------------\n>tr|A0A2N3TU13|A0A2N3TU13_9ACTN/8-150 [subseq from] Uncharacterized protein OS=Streptomyces sp. 73 OX=2035222 GN=CLW15_5049 PE=4 SV=1\n-----------------------------------------PELQKLYRNGFSDLEIAEMFGVTRQAVTFRLNAMGiqrapFRASATAILEAAWPVSETRR-GEFIHLNRARDLYAFLRRQLGdTALSKTQLGAAARFERLIRDSDAVLDLQPDAED------GPWVLAPRQPSDGRMVIRWPEGRELP-EG-----------------\n>tr|A0A839QCJ4|A0A839QCJ4_9MYCO/15-75 [subseq from] Uncharacterized protein OS=Mycolicibacterium iranicum OX=912594 GN=FHR72_005171 PE=4 SV=1\n-------------------------------------------------------------------------------------------------------------------------------RLRGFYRRLI--DQVVEFDPSIPPIARVrRRGGWAYRPRMPEDGDLLIRVNEYAELTVVGRQI--------------\n>tr|A0A1F1L0P9|A0A1F1L0P9_9CORY/3-114 [subseq from] Uncharacterized protein OS=Corynebacterium sp. HMSC04H06 OX=1581050 GN=HMPREF3067_06160 PE=4 SV=1\n-----------------------------------------------------------------------------------IINDNLPWKVGGAYQDNTIYQGIRLIAHYNLEGERAFEGRPtNLRKLKAIMRKLHVFQQVVDFDPEYPAVPGVVNGpGFAYVPRTPRDKDLAIKIKPSLRFTRLGETLWKLP----------\n>tr|A0A4R6XK45|A0A4R6XK45_9NOCA/9-75 [subseq from] Uncharacterized protein OS=Rhodococcus sp. LP_3_YM OX=2485208 GN=EC909_102172 PE=4 SV=1\n--------------------------------------------------------------------------------------------------------------------------------LRDFYDVLREFDSVLEYNPQVRPLPGFCfDGGFRLVTRASADRNLVIRMNEFTIPQELGAELWAIPG---------\n>tr|A0A4R7XAG6|A0A4R7XAG6_9NOCA/9-75 [subseq from] Uncharacterized protein OS=Rhodococcus sp. LP_11_YM OX=2485207 GN=EC908_102172 PE=4 SV=1\n--------------------------------------------------------------------------------------------------------------------------------LRDFYDVLREFDSVLEYNPQVRPLPGFCfDGGFRLVTRASADRNLVIRMNEFTIPQELGAELWAIPG---------\n>tr|A0A7G7BJ19|A0A7G7BJ19_9ACTN/28-143 [subseq from] Uncharacterized protein OS=Streptomyces finlayi OX=67296 GN=F0344_12535 PE=4 SV=1\n-------------------------------------------------------EYKRKYGIDTVSSMWGNFRYREGLDRR-IARddELIPWAVKKEHRQPYPIIMLRVEAR-RRAG--LPLDEDKTQRLARWKQMLEDNNCVVHYDPDTEE-------GWFYVPREEGDDDIIRRPERKT-----------------------\n>tr|X1CVL1|X1CVL1_9ZZZZ/53-87 [subseq from] Uncharacterized protein (Fragment) OS=marine sediment metagenome OX=412755 GN=S01H4_26882 PE=4 SV=1\n---------------------------------------TDEQLIELHEQGFNDREIGEQLGTSRSIVSYHRRR---------------------------------------------------------------------------------------------------------------------------------\n", + "templates": [ + { + "mmcif": "data_6P5R\n#\n_entry.id 6P5R\n#\nloop_\n_chem_comp.formula\n_chem_comp.formula_weight\n_chem_comp.id\n_chem_comp.mon_nstd_flag\n_chem_comp.name\n_chem_comp.pdbx_synonyms\n_chem_comp.type\n\"C3 H7 N O2\" 89.093 ALA y ALANINE ? \"L-peptide linking\" \n\"C6 H15 N4 O2 1\" 175.209 ARG y ARGININE ? \"L-peptide linking\" \n\"C4 H8 N2 O3\" 132.118 ASN y ASPARAGINE ? \"L-peptide linking\" \n\"C4 H7 N O4\" 133.103 ASP y \"ASPARTIC ACID\" ? \"L-peptide linking\" \n\"C3 H7 N O2 S\" 121.158 CYS y CYSTEINE ? \"L-peptide linking\" \n\"C10 H15 N5 O11 P2\" 443.201 GDP n \"GUANOSINE-5'-DIPHOSPHATE\" ? \"RNA linking\" \n\"C5 H10 N2 O3\" 146.144 GLN y GLUTAMINE ? \"L-peptide linking\" \n\"C5 H9 N O4\" 147.129 GLU y \"GLUTAMIC ACID\" ? \"L-peptide linking\" \n\"C2 H5 N O2\" 75.067 GLY y GLYCINE ? \"peptide linking\" \n\"C6 H10 N3 O2 1\" 156.162 HIS y HISTIDINE ? \"L-peptide linking\" \n\"H2 O\" 18.015 HOH . WATER ? non-polymer \n\"C6 H13 N O2\" 131.173 ILE y ISOLEUCINE ? \"L-peptide linking\" \n\"C6 H13 N O2\" 131.173 LEU y LEUCINE ? \"L-peptide linking\" \n\"C6 H15 N2 O2 1\" 147.195 LYS y LYSINE ? \"L-peptide linking\" \n\"C5 H11 N O2 S\" 149.211 MET y METHIONINE ? \"L-peptide linking\" \n\"C9 H11 N O2\" 165.189 PHE y PHENYLALANINE ? \"L-peptide linking\" \n\"C5 H9 N O2\" 115.130 PRO y PROLINE ? \"L-peptide linking\" \n\"C3 H7 N O3\" 105.093 SER y SERINE ? \"L-peptide linking\" \n\"C4 H9 N O3\" 119.119 THR y THREONINE ? \"L-peptide linking\" \n\"C11 H12 N2 O2\" 204.225 TRP y TRYPTOPHAN ? \"L-peptide linking\" \n\"C9 H11 N O3\" 181.189 TYR y TYROSINE ? \"L-peptide linking\" \n\"C5 H11 N O2\" 117.146 VAL y VALINE ? \"L-peptide linking\" \n#\n_entity.id 1\n_entity.pdbx_description \"Mitochondrial edited mRNA stability factor 1\"\n_entity.type polymer\n#\n_entity_poly.entity_id 1\n_entity_poly.pdbx_strand_id A\n_entity_poly.type polypeptide(L)\n#\nloop_\n_entity_poly_seq.entity_id\n_entity_poly_seq.hetero\n_entity_poly_seq.mon_id\n_entity_poly_seq.num\n1 n MET 1 \n1 n GLY 2 \n1 n SER 3 \n1 n SER 4 \n1 n HIS 5 \n1 n HIS 6 \n1 n HIS 7 \n1 n HIS 8 \n1 n HIS 9 \n1 n HIS 10 \n1 n SER 11 \n1 n SER 12 \n1 n GLY 13 \n1 n LEU 14 \n1 n VAL 15 \n1 n PRO 16 \n1 n ARG 17 \n1 n GLY 18 \n1 n SER 19 \n1 n HIS 20 \n1 n MET 21 \n1 n ASP 22 \n1 n ASP 23 \n1 n ALA 24 \n1 n LEU 25 \n1 n ARG 26 \n1 n GLY 27 \n1 n GLU 28 \n1 n LEU 29 \n1 n ALA 30 \n1 n MET 31 \n1 n GLY 32 \n1 n SER 33 \n1 n SER 34 \n1 n HIS 35 \n1 n HIS 36 \n1 n HIS 37 \n1 n HIS 38 \n1 n HIS 39 \n1 n HIS 40 \n1 n SER 41 \n1 n SER 42 \n1 n GLY 43 \n1 n LEU 44 \n1 n VAL 45 \n1 n PRO 46 \n1 n ARG 47 \n1 n GLY 48 \n1 n SER 49 \n1 n HIS 50 \n1 n MET 51 \n1 n ASP 52 \n1 n ASP 53 \n1 n ALA 54 \n1 n LEU 55 \n1 n ARG 56 \n1 n GLY 57 \n1 n GLU 58 \n1 n LEU 59 \n1 n ALA 60 \n1 n SER 61 \n1 n ALA 62 \n1 n LEU 63 \n1 n ASP 64 \n1 n THR 65 \n1 n GLU 66 \n1 n GLY 67 \n1 n HIS 68 \n1 n ALA 69 \n1 n LEU 70 \n1 n PRO 71 \n1 n PHE 72 \n1 n ASP 73 \n1 n VAL 74 \n1 n HIS 75 \n1 n LEU 76 \n1 n GLN 77 \n1 n GLN 78 \n1 n PRO 79 \n1 n HIS 80 \n1 n SER 81 \n1 n SER 82 \n1 n GLY 83 \n1 n ASP 84 \n1 n GLY 85 \n1 n THR 86 \n1 n ALA 87 \n1 n GLY 88 \n1 n ASP 89 \n1 n THR 90 \n1 n SER 91 \n1 n THR 92 \n1 n ILE 93 \n1 n GLN 94 \n1 n LEU 95 \n1 n GLU 96 \n1 n LYS 97 \n1 n LEU 98 \n1 n SER 99 \n1 n HIS 100 \n1 n PRO 101 \n1 n PRO 102 \n1 n ALA 103 \n1 n ARG 104 \n1 n PHE 105 \n1 n ASP 106 \n1 n LEU 107 \n1 n LEU 108 \n1 n THR 109 \n1 n ASN 110 \n1 n SER 111 \n1 n PHE 112 \n1 n VAL 113 \n1 n TYR 114 \n1 n LYS 115 \n1 n TRP 116 \n1 n GLN 117 \n1 n THR 118 \n1 n LYS 119 \n1 n ALA 120 \n1 n ALA 121 \n1 n LEU 122 \n1 n ALA 123 \n1 n ARG 124 \n1 n LYS 125 \n1 n VAL 126 \n1 n SER 127 \n1 n GLY 128 \n1 n PRO 129 \n1 n MET 130 \n1 n ARG 131 \n1 n GLU 132 \n1 n TRP 133 \n1 n ALA 134 \n1 n ALA 135 \n1 n GLU 136 \n1 n LEU 137 \n1 n LYS 138 \n1 n TYR 139 \n1 n ARG 140 \n1 n THR 141 \n1 n GLY 142 \n1 n VAL 143 \n1 n HIS 144 \n1 n ILE 145 \n1 n GLU 146 \n1 n LEU 147 \n1 n GLU 148 \n1 n PRO 149 \n1 n THR 150 \n1 n TYR 151 \n1 n PRO 152 \n1 n GLU 153 \n1 n ARG 154 \n1 n LEU 155 \n1 n SER 156 \n1 n GLU 157 \n1 n ASN 158 \n1 n ALA 159 \n1 n VAL 160 \n1 n LYS 161 \n1 n GLY 162 \n1 n SER 163 \n1 n GLY 164 \n1 n SER 165 \n1 n ASP 166 \n1 n ASP 167 \n1 n GLY 168 \n1 n ASP 169 \n1 n GLY 170 \n1 n THR 171 \n1 n GLN 172 \n1 n TRP 173 \n1 n GLY 174 \n1 n ALA 175 \n1 n TYR 176 \n1 n GLU 177 \n1 n THR 178 \n1 n ALA 179 \n1 n ASP 180 \n1 n ASP 181 \n1 n VAL 182 \n1 n ASP 183 \n1 n ILE 184 \n1 n THR 185 \n1 n VAL 186 \n1 n TYR 187 \n1 n LEU 188 \n1 n PHE 189 \n1 n GLY 190 \n1 n SER 191 \n1 n GLU 192 \n1 n ARG 193 \n1 n GLY 194 \n1 n ILE 195 \n1 n PHE 196 \n1 n ASN 197 \n1 n CYS 198 \n1 n HIS 199 \n1 n LYS 200 \n1 n LEU 201 \n1 n MET 202 \n1 n GLU 203 \n1 n ALA 204 \n1 n ALA 205 \n1 n ILE 206 \n1 n GLN 207 \n1 n GLN 208 \n1 n ASP 209 \n1 n PRO 210 \n1 n VAL 211 \n1 n TYR 212 \n1 n VAL 213 \n1 n ARG 214 \n1 n LEU 215 \n1 n GLY 216 \n1 n ILE 217 \n1 n PHE 218 \n1 n ARG 219 \n1 n ARG 220 \n1 n LEU 221 \n1 n ALA 222 \n1 n ASN 223 \n1 n SER 224 \n1 n SER 225 \n1 n GLU 226 \n1 n VAL 227 \n1 n GLU 228 \n1 n TRP 229 \n1 n LEU 230 \n1 n MET 231 \n1 n LEU 232 \n1 n ARG 233 \n1 n ARG 234 \n1 n ILE 235 \n1 n ASN 236 \n1 n ARG 237 \n1 n GLU 238 \n1 n LEU 239 \n1 n ARG 240 \n1 n PRO 241 \n1 n PRO 242 \n1 n ASP 243 \n1 n ILE 244 \n1 n PRO 245 \n1 n PRO 246 \n1 n ILE 247 \n1 n SER 248 \n1 n LEU 249 \n1 n LYS 250 \n1 n LEU 251 \n1 n PRO 252 \n1 n GLY 253 \n1 n LYS 254 \n1 n TRP 255 \n1 n THR 256 \n1 n LEU 257 \n1 n LEU 258 \n1 n TYR 259 \n1 n GLU 260 \n1 n ARG 261 \n1 n TYR 262 \n1 n LYS 263 \n1 n GLU 264 \n1 n ALA 265 \n1 n ALA 266 \n1 n ILE 267 \n1 n ARG 268 \n1 n THR 269 \n1 n LEU 270 \n1 n TRP 271 \n1 n GLU 272 \n1 n GLU 273 \n1 n THR 274 \n1 n GLY 275 \n1 n ILE 276 \n1 n THR 277 \n1 n VAL 278 \n1 n ASP 279 \n1 n ALA 280 \n1 n SER 281 \n1 n ASN 282 \n1 n VAL 283 \n1 n TYR 284 \n1 n PRO 285 \n1 n THR 286 \n1 n GLY 287 \n1 n HIS 288 \n1 n LEU 289 \n1 n TYR 290 \n1 n GLN 291 \n1 n THR 292 \n1 n VAL 293 \n1 n PRO 294 \n1 n GLN 295 \n1 n TYR 296 \n1 n TYR 297 \n1 n TRP 298 \n1 n ARG 299 \n1 n VAL 300 \n1 n PRO 301 \n1 n VAL 302 \n1 n ARG 303 \n1 n TYR 304 \n1 n PHE 305 \n1 n VAL 306 \n1 n ALA 307 \n1 n GLU 308 \n1 n VAL 309 \n1 n PRO 310 \n1 n SER 311 \n1 n ASP 312 \n1 n ILE 313 \n1 n ARG 314 \n1 n VAL 315 \n1 n GLU 316 \n1 n GLY 317 \n1 n PRO 318 \n1 n GLN 319 \n1 n VAL 320 \n1 n VAL 321 \n1 n PRO 322 \n1 n LEU 323 \n1 n GLN 324 \n1 n TYR 325 \n1 n MET 326 \n1 n ARG 327 \n1 n ASN 328 \n1 n TRP 329 \n1 n ASP 330 \n1 n ALA 331 \n1 n ARG 332 \n1 n LEU 333 \n1 n LEU 334 \n1 n ARG 335 \n1 n GLN 336 \n1 n SER 337 \n1 n PRO 338 \n1 n ASP 339 \n1 n PRO 340 \n1 n ILE 341 \n1 n ASP 342 \n1 n ARG 343 \n1 n ALA 344 \n1 n TRP 345 \n1 n ALA 346 \n1 n GLN 347 \n1 n LEU 348 \n1 n ALA 349 \n1 n ASP 350 \n1 n PRO 351 \n1 n ALA 352 \n1 n THR 353 \n1 n GLY 354 \n1 n CYS 355 \n1 n ALA 356 \n1 n TRP 357 \n1 n MET 358 \n1 n LYS 359 \n1 n ALA 360 \n1 n SER 361 \n1 n MET 362 \n1 n ILE 363 \n1 n ASP 364 \n1 n GLN 365 \n1 n LEU 366 \n1 n GLN 367 \n1 n LYS 368 \n1 n PRO 369 \n1 n LEU 370 \n1 n ARG 371 \n1 n GLY 372 \n1 n ASP 373 \n1 n ASN 374 \n1 n TYR 375 \n1 n MET 376 \n1 n ALA 377 \n1 n ILE 378 \n1 n ARG 379 \n1 n TYR 380 \n1 n THR 381 \n1 n PRO 382 \n1 n PRO 383 \n1 n PRO 384 \n1 n TYR 385 \n1 n SER 386 \n1 n ASN 387 \n1 n LEU 388 \n1 n GLN 389 \n1 n GLU 390 \n1 n VAL 391 \n1 n VAL 392 \n1 n GLY 393 \n1 n LEU 394 \n1 n GLY 395 \n1 n ASP 396 \n1 n GLY 397 \n1 n SER 398 \n1 n ILE 399 \n1 n THR 400 \n1 n PRO 401 \n1 n SER 402 \n1 n THR 403 \n1 n GLY 404 \n1 n ASN 405 \n1 n GLY 406 \n1 n GLU 407 \n1 n ASP 408 \n1 n ALA 409 \n1 n SER 410 \n#\n_exptl.method \"X-RAY DIFFRACTION\"\n#\n_pdbx_audit_revision_history.revision_date 2019-11-06\n#\n_pdbx_database_status.recvd_initial_deposition_date 2019-11-06\n#\nloop_\n_pdbx_poly_seq_scheme.asym_id\n_pdbx_poly_seq_scheme.auth_seq_num\n_pdbx_poly_seq_scheme.entity_id\n_pdbx_poly_seq_scheme.hetero\n_pdbx_poly_seq_scheme.mon_id\n_pdbx_poly_seq_scheme.pdb_ins_code\n_pdbx_poly_seq_scheme.pdb_seq_num\n_pdbx_poly_seq_scheme.pdb_strand_id\n_pdbx_poly_seq_scheme.seq_id\nA ? 1 n MET . 286 A 1 \nA ? 1 n GLY . 287 A 2 \nA ? 1 n SER . 288 A 3 \nA ? 1 n SER . 289 A 4 \nA ? 1 n HIS . 290 A 5 \nA ? 1 n HIS . 291 A 6 \nA ? 1 n HIS . 292 A 7 \nA ? 1 n HIS . 293 A 8 \nA ? 1 n HIS . 294 A 9 \nA ? 1 n HIS . 295 A 10 \nA ? 1 n SER . 296 A 11 \nA ? 1 n SER . 297 A 12 \nA ? 1 n GLY . 298 A 13 \nA ? 1 n LEU . 299 A 14 \nA ? 1 n VAL . 300 A 15 \nA ? 1 n PRO . 301 A 16 \nA ? 1 n ARG . 302 A 17 \nA ? 1 n GLY . 303 A 18 \nA ? 1 n SER . 304 A 19 \nA ? 1 n HIS . 305 A 20 \nA ? 1 n MET . 306 A 21 \nA ? 1 n ASP . 307 A 22 \nA ? 1 n ASP . 308 A 23 \nA ? 1 n ALA . 309 A 24 \nA ? 1 n LEU . 310 A 25 \nA ? 1 n ARG . 311 A 26 \nA ? 1 n GLY . 312 A 27 \nA ? 1 n GLU . 313 A 28 \nA ? 1 n LEU . 314 A 29 \nA ? 1 n ALA . 315 A 30 \nA ? 1 n MET . 316 A 31 \nA ? 1 n GLY . 317 A 32 \nA ? 1 n SER . 318 A 33 \nA ? 1 n SER . 319 A 34 \nA ? 1 n HIS . 320 A 35 \nA ? 1 n HIS . 321 A 36 \nA ? 1 n HIS . 322 A 37 \nA ? 1 n HIS . 323 A 38 \nA ? 1 n HIS . 324 A 39 \nA ? 1 n HIS . 325 A 40 \nA ? 1 n SER . 326 A 41 \nA ? 1 n SER . 327 A 42 \nA ? 1 n GLY . 328 A 43 \nA ? 1 n LEU . 329 A 44 \nA ? 1 n VAL . 330 A 45 \nA 331 1 n PRO . 331 A 46 \nA 332 1 n ARG . 332 A 47 \nA 333 1 n GLY . 333 A 48 \nA 334 1 n SER . 334 A 49 \nA 335 1 n HIS . 335 A 50 \nA 336 1 n MET . 336 A 51 \nA 337 1 n ASP . 337 A 52 \nA 338 1 n ASP . 338 A 53 \nA 339 1 n ALA . 339 A 54 \nA 340 1 n LEU . 340 A 55 \nA 341 1 n ARG . 341 A 56 \nA 342 1 n GLY . 342 A 57 \nA 343 1 n GLU . 343 A 58 \nA 344 1 n LEU . 344 A 59 \nA 345 1 n ALA . 345 A 60 \nA ? 1 n SER . 376 A 61 \nA ? 1 n ALA . 377 A 62 \nA ? 1 n LEU . 378 A 63 \nA ? 1 n ASP . 379 A 64 \nA ? 1 n THR . 380 A 65 \nA ? 1 n GLU . 381 A 66 \nA ? 1 n GLY . 382 A 67 \nA ? 1 n HIS . 383 A 68 \nA ? 1 n ALA . 384 A 69 \nA ? 1 n LEU . 385 A 70 \nA ? 1 n PRO . 386 A 71 \nA ? 1 n PHE . 387 A 72 \nA ? 1 n ASP . 388 A 73 \nA ? 1 n VAL . 389 A 74 \nA ? 1 n HIS . 390 A 75 \nA ? 1 n LEU . 391 A 76 \nA ? 1 n GLN . 392 A 77 \nA ? 1 n GLN . 393 A 78 \nA ? 1 n PRO . 394 A 79 \nA ? 1 n HIS . 395 A 80 \nA ? 1 n SER . 396 A 81 \nA ? 1 n SER . 397 A 82 \nA ? 1 n GLY . 398 A 83 \nA ? 1 n ASP . 399 A 84 \nA ? 1 n GLY . 400 A 85 \nA ? 1 n THR . 401 A 86 \nA ? 1 n ALA . 402 A 87 \nA ? 1 n GLY . 403 A 88 \nA ? 1 n ASP . 404 A 89 \nA ? 1 n THR . 405 A 90 \nA 406 1 n SER . 406 A 91 \nA 407 1 n THR . 407 A 92 \nA 408 1 n ILE . 408 A 93 \nA 409 1 n GLN . 409 A 94 \nA 410 1 n LEU . 410 A 95 \nA 411 1 n GLU . 411 A 96 \nA 412 1 n LYS . 412 A 97 \nA 413 1 n LEU . 413 A 98 \nA 414 1 n SER . 414 A 99 \nA 415 1 n HIS . 415 A 100 \nA 416 1 n PRO . 416 A 101 \nA 417 1 n PRO . 417 A 102 \nA 418 1 n ALA . 418 A 103 \nA 419 1 n ARG . 419 A 104 \nA 420 1 n PHE . 420 A 105 \nA 421 1 n ASP . 421 A 106 \nA 422 1 n LEU . 422 A 107 \nA 423 1 n LEU . 423 A 108 \nA 424 1 n THR . 424 A 109 \nA ? 1 n ASN . 425 A 110 \nA 426 1 n SER . 426 A 111 \nA 427 1 n PHE . 427 A 112 \nA 428 1 n VAL . 428 A 113 \nA 429 1 n TYR . 429 A 114 \nA 430 1 n LYS . 430 A 115 \nA 431 1 n TRP . 431 A 116 \nA 432 1 n GLN . 432 A 117 \nA 433 1 n THR . 433 A 118 \nA 434 1 n LYS . 434 A 119 \nA 435 1 n ALA . 435 A 120 \nA 436 1 n ALA . 436 A 121 \nA 437 1 n LEU . 437 A 122 \nA 438 1 n ALA . 438 A 123 \nA 439 1 n ARG . 439 A 124 \nA 440 1 n LYS . 440 A 125 \nA 441 1 n VAL . 441 A 126 \nA 442 1 n SER . 442 A 127 \nA 443 1 n GLY . 443 A 128 \nA 444 1 n PRO . 444 A 129 \nA 445 1 n MET . 445 A 130 \nA 446 1 n ARG . 446 A 131 \nA 447 1 n GLU . 447 A 132 \nA 448 1 n TRP . 448 A 133 \nA 449 1 n ALA . 449 A 134 \nA 450 1 n ALA . 450 A 135 \nA 451 1 n GLU . 451 A 136 \nA 452 1 n LEU . 452 A 137 \nA 453 1 n LYS . 453 A 138 \nA 454 1 n TYR . 454 A 139 \nA 455 1 n ARG . 455 A 140 \nA 456 1 n THR . 456 A 141 \nA 457 1 n GLY . 457 A 142 \nA 458 1 n VAL . 458 A 143 \nA 459 1 n HIS . 459 A 144 \nA 460 1 n ILE . 460 A 145 \nA 461 1 n GLU . 461 A 146 \nA 462 1 n LEU . 462 A 147 \nA 463 1 n GLU . 463 A 148 \nA 464 1 n PRO . 464 A 149 \nA 465 1 n THR . 465 A 150 \nA 466 1 n TYR . 466 A 151 \nA 467 1 n PRO . 467 A 152 \nA 468 1 n GLU . 468 A 153 \nA 469 1 n ARG . 469 A 154 \nA 470 1 n LEU . 470 A 155 \nA 471 1 n SER . 471 A 156 \nA 472 1 n GLU . 472 A 157 \nA 473 1 n ASN . 473 A 158 \nA 474 1 n ALA . 474 A 159 \nA ? 1 n VAL . 475 A 160 \nA ? 1 n LYS . 476 A 161 \nA ? 1 n GLY . 477 A 162 \nA ? 1 n SER . 478 A 163 \nA ? 1 n GLY . 479 A 164 \nA ? 1 n SER . 480 A 165 \nA ? 1 n ASP . 481 A 166 \nA ? 1 n ASP . 482 A 167 \nA ? 1 n GLY . 483 A 168 \nA ? 1 n ASP . 484 A 169 \nA ? 1 n GLY . 485 A 170 \nA 486 1 n THR . 486 A 171 \nA 487 1 n GLN . 487 A 172 \nA 488 1 n TRP . 488 A 173 \nA 489 1 n GLY . 489 A 174 \nA 490 1 n ALA . 490 A 175 \nA 491 1 n TYR . 491 A 176 \nA 492 1 n GLU . 492 A 177 \nA 493 1 n THR . 493 A 178 \nA 494 1 n ALA . 494 A 179 \nA 495 1 n ASP . 495 A 180 \nA 496 1 n ASP . 496 A 181 \nA 497 1 n VAL . 497 A 182 \nA 498 1 n ASP . 498 A 183 \nA 499 1 n ILE . 499 A 184 \nA 500 1 n THR . 500 A 185 \nA 501 1 n VAL . 501 A 186 \nA 502 1 n TYR . 502 A 187 \nA 503 1 n LEU . 503 A 188 \nA 504 1 n PHE . 504 A 189 \nA 505 1 n GLY . 505 A 190 \nA 506 1 n SER . 506 A 191 \nA 507 1 n GLU . 507 A 192 \nA 508 1 n ARG . 508 A 193 \nA 509 1 n GLY . 509 A 194 \nA 510 1 n ILE . 510 A 195 \nA 511 1 n PHE . 511 A 196 \nA 512 1 n ASN . 512 A 197 \nA 513 1 n CYS . 513 A 198 \nA 514 1 n HIS . 514 A 199 \nA 515 1 n LYS . 515 A 200 \nA 516 1 n LEU . 516 A 201 \nA 517 1 n MET . 517 A 202 \nA 518 1 n GLU . 518 A 203 \nA 519 1 n ALA . 519 A 204 \nA 520 1 n ALA . 520 A 205 \nA 521 1 n ILE . 521 A 206 \nA 522 1 n GLN . 522 A 207 \nA 523 1 n GLN . 523 A 208 \nA 524 1 n ASP . 524 A 209 \nA 525 1 n PRO . 525 A 210 \nA 526 1 n VAL . 526 A 211 \nA 527 1 n TYR . 527 A 212 \nA 528 1 n VAL . 528 A 213 \nA 529 1 n ARG . 529 A 214 \nA 530 1 n LEU . 530 A 215 \nA 531 1 n GLY . 531 A 216 \nA 532 1 n ILE . 532 A 217 \nA 533 1 n PHE . 533 A 218 \nA 534 1 n ARG . 534 A 219 \nA 535 1 n ARG . 535 A 220 \nA 536 1 n LEU . 536 A 221 \nA 537 1 n ALA . 537 A 222 \nA 538 1 n ASN . 538 A 223 \nA 539 1 n SER . 539 A 224 \nA 540 1 n SER . 540 A 225 \nA 541 1 n GLU . 541 A 226 \nA 542 1 n VAL . 542 A 227 \nA 543 1 n GLU . 543 A 228 \nA 544 1 n TRP . 544 A 229 \nA 545 1 n LEU . 545 A 230 \nA 546 1 n MET . 546 A 231 \nA 547 1 n LEU . 547 A 232 \nA 548 1 n ARG . 548 A 233 \nA 549 1 n ARG . 549 A 234 \nA 550 1 n ILE . 550 A 235 \nA 551 1 n ASN . 551 A 236 \nA 552 1 n ARG . 552 A 237 \nA 553 1 n GLU . 553 A 238 \nA 554 1 n LEU . 554 A 239 \nA 555 1 n ARG . 555 A 240 \nA 556 1 n PRO . 556 A 241 \nA 557 1 n PRO . 557 A 242 \nA 558 1 n ASP . 558 A 243 \nA 559 1 n ILE . 559 A 244 \nA 560 1 n PRO . 560 A 245 \nA 561 1 n PRO . 561 A 246 \nA 562 1 n ILE . 562 A 247 \nA 563 1 n SER . 563 A 248 \nA 564 1 n LEU . 564 A 249 \nA 565 1 n LYS . 565 A 250 \nA 566 1 n LEU . 566 A 251 \nA 567 1 n PRO . 567 A 252 \nA 568 1 n GLY . 568 A 253 \nA 569 1 n LYS . 569 A 254 \nA 570 1 n TRP . 570 A 255 \nA 571 1 n THR . 571 A 256 \nA 572 1 n LEU . 572 A 257 \nA 573 1 n LEU . 573 A 258 \nA 574 1 n TYR . 574 A 259 \nA 575 1 n GLU . 575 A 260 \nA 576 1 n ARG . 576 A 261 \nA 577 1 n TYR . 577 A 262 \nA 578 1 n LYS . 578 A 263 \nA 579 1 n GLU . 579 A 264 \nA 580 1 n ALA . 580 A 265 \nA 581 1 n ALA . 581 A 266 \nA 582 1 n ILE . 582 A 267 \nA 583 1 n ARG . 583 A 268 \nA 584 1 n THR . 584 A 269 \nA 585 1 n LEU . 585 A 270 \nA 586 1 n TRP . 586 A 271 \nA 587 1 n GLU . 587 A 272 \nA 588 1 n GLU . 588 A 273 \nA 589 1 n THR . 589 A 274 \nA 590 1 n GLY . 590 A 275 \nA 591 1 n ILE . 591 A 276 \nA 592 1 n THR . 592 A 277 \nA 593 1 n VAL . 593 A 278 \nA 594 1 n ASP . 594 A 279 \nA 595 1 n ALA . 595 A 280 \nA 596 1 n SER . 596 A 281 \nA 597 1 n ASN . 597 A 282 \nA 598 1 n VAL . 598 A 283 \nA 599 1 n TYR . 599 A 284 \nA 600 1 n PRO . 600 A 285 \nA 601 1 n THR . 601 A 286 \nA 602 1 n GLY . 602 A 287 \nA 603 1 n HIS . 603 A 288 \nA 604 1 n LEU . 604 A 289 \nA 605 1 n TYR . 605 A 290 \nA 606 1 n GLN . 606 A 291 \nA 607 1 n THR . 607 A 292 \nA 608 1 n VAL . 608 A 293 \nA 609 1 n PRO . 609 A 294 \nA 610 1 n GLN . 610 A 295 \nA 611 1 n TYR . 611 A 296 \nA 612 1 n TYR . 612 A 297 \nA 613 1 n TRP . 613 A 298 \nA 614 1 n ARG . 614 A 299 \nA 615 1 n VAL . 615 A 300 \nA 616 1 n PRO . 616 A 301 \nA 617 1 n VAL . 617 A 302 \nA 618 1 n ARG . 618 A 303 \nA 619 1 n TYR . 619 A 304 \nA 620 1 n PHE . 620 A 305 \nA 621 1 n VAL . 621 A 306 \nA 622 1 n ALA . 622 A 307 \nA 623 1 n GLU . 623 A 308 \nA 624 1 n VAL . 624 A 309 \nA 625 1 n PRO . 625 A 310 \nA 626 1 n SER . 626 A 311 \nA 627 1 n ASP . 627 A 312 \nA 628 1 n ILE . 628 A 313 \nA 629 1 n ARG . 629 A 314 \nA 630 1 n VAL . 630 A 315 \nA 631 1 n GLU . 631 A 316 \nA 632 1 n GLY . 632 A 317 \nA 633 1 n PRO . 633 A 318 \nA 634 1 n GLN . 634 A 319 \nA 635 1 n VAL . 635 A 320 \nA 636 1 n VAL . 636 A 321 \nA 637 1 n PRO . 637 A 322 \nA 638 1 n LEU . 638 A 323 \nA 639 1 n GLN . 639 A 324 \nA 640 1 n TYR . 640 A 325 \nA 641 1 n MET . 641 A 326 \nA 642 1 n ARG . 642 A 327 \nA 643 1 n ASN . 643 A 328 \nA 644 1 n TRP . 644 A 329 \nA 645 1 n ASP . 645 A 330 \nA 646 1 n ALA . 646 A 331 \nA 647 1 n ARG . 647 A 332 \nA 648 1 n LEU . 648 A 333 \nA 649 1 n LEU . 649 A 334 \nA 650 1 n ARG . 650 A 335 \nA 651 1 n GLN . 651 A 336 \nA 652 1 n SER . 652 A 337 \nA 653 1 n PRO . 653 A 338 \nA 654 1 n ASP . 654 A 339 \nA 655 1 n PRO . 655 A 340 \nA 656 1 n ILE . 656 A 341 \nA 657 1 n ASP . 657 A 342 \nA 658 1 n ARG . 658 A 343 \nA 659 1 n ALA . 659 A 344 \nA 660 1 n TRP . 660 A 345 \nA 661 1 n ALA . 661 A 346 \nA 662 1 n GLN . 662 A 347 \nA 663 1 n LEU . 663 A 348 \nA 664 1 n ALA . 664 A 349 \nA 665 1 n ASP . 665 A 350 \nA 666 1 n PRO . 666 A 351 \nA 667 1 n ALA . 667 A 352 \nA 668 1 n THR . 668 A 353 \nA 669 1 n GLY . 669 A 354 \nA 670 1 n CYS . 670 A 355 \nA 671 1 n ALA . 671 A 356 \nA 672 1 n TRP . 672 A 357 \nA 673 1 n MET . 673 A 358 \nA 674 1 n LYS . 674 A 359 \nA 675 1 n ALA . 675 A 360 \nA 676 1 n SER . 676 A 361 \nA 677 1 n MET . 677 A 362 \nA 678 1 n ILE . 678 A 363 \nA 679 1 n ASP . 679 A 364 \nA 680 1 n GLN . 680 A 365 \nA 681 1 n LEU . 681 A 366 \nA 682 1 n GLN . 682 A 367 \nA 683 1 n LYS . 683 A 368 \nA 684 1 n PRO . 684 A 369 \nA 685 1 n LEU . 685 A 370 \nA 686 1 n ARG . 686 A 371 \nA 687 1 n GLY . 687 A 372 \nA 688 1 n ASP . 688 A 373 \nA 689 1 n ASN . 689 A 374 \nA 690 1 n TYR . 690 A 375 \nA 691 1 n MET . 691 A 376 \nA 692 1 n ALA . 692 A 377 \nA 693 1 n ILE . 693 A 378 \nA 694 1 n ARG . 694 A 379 \nA 695 1 n TYR . 695 A 380 \nA 696 1 n THR . 696 A 381 \nA 697 1 n PRO . 697 A 382 \nA 698 1 n PRO . 698 A 383 \nA 699 1 n PRO . 699 A 384 \nA 700 1 n TYR . 700 A 385 \nA 701 1 n SER . 701 A 386 \nA 702 1 n ASN . 702 A 387 \nA 703 1 n LEU . 703 A 388 \nA 704 1 n GLN . 704 A 389 \nA 705 1 n GLU . 705 A 390 \nA 706 1 n VAL . 706 A 391 \nA 707 1 n VAL . 707 A 392 \nA 708 1 n GLY . 708 A 393 \nA 709 1 n LEU . 709 A 394 \nA 710 1 n GLY . 710 A 395 \nA ? 1 n ASP . 711 A 396 \nA ? 1 n GLY . 712 A 397 \nA ? 1 n SER . 713 A 398 \nA ? 1 n ILE . 714 A 399 \nA ? 1 n THR . 715 A 400 \nA ? 1 n PRO . 716 A 401 \nA ? 1 n SER . 717 A 402 \nA ? 1 n THR . 718 A 403 \nA ? 1 n GLY . 719 A 404 \nA ? 1 n ASN . 720 A 405 \nA ? 1 n GLY . 721 A 406 \nA ? 1 n GLU . 722 A 407 \nA ? 1 n ASP . 723 A 408 \nA ? 1 n ALA . 724 A 409 \nA ? 1 n SER . 725 A 410 \n#\nloop_\n_pdbx_struct_assembly.details\n_pdbx_struct_assembly.id\n_pdbx_struct_assembly.method_details\n_pdbx_struct_assembly.oligomeric_count\n_pdbx_struct_assembly.oligomeric_details\nauthor_defined_assembly 1 ? 1 monomeric \nsoftware_defined_assembly 2 PISA 2 dimeric \n#\nloop_\n_pdbx_struct_assembly_gen.assembly_id\n_pdbx_struct_assembly_gen.asym_id_list\n_pdbx_struct_assembly_gen.oper_expression\n1 A,B,C 1 \n2 A,B,C 1,2 \n#\nloop_\n_pdbx_struct_oper_list.id\n_pdbx_struct_oper_list.matrix[1][1]\n_pdbx_struct_oper_list.matrix[1][2]\n_pdbx_struct_oper_list.matrix[1][3]\n_pdbx_struct_oper_list.matrix[2][1]\n_pdbx_struct_oper_list.matrix[2][2]\n_pdbx_struct_oper_list.matrix[2][3]\n_pdbx_struct_oper_list.matrix[3][1]\n_pdbx_struct_oper_list.matrix[3][2]\n_pdbx_struct_oper_list.matrix[3][3]\n_pdbx_struct_oper_list.name\n_pdbx_struct_oper_list.symmetry_operation\n_pdbx_struct_oper_list.type\n_pdbx_struct_oper_list.vector[1]\n_pdbx_struct_oper_list.vector[2]\n_pdbx_struct_oper_list.vector[3]\n1 1.0000000000 0.0000000000 0.0000000000 0.0000000000 1.0000000000 0.0000000000 0.0000000000 0.0000000000 1.0000000000 1_555 x,y,z \"identity operation\" 0.0000000000 0.0000000000 0.0000000000 \n2 1.0000000000 0.0000000000 0.0000000000 0.0000000000 -1.0000000000 0.0000000000 0.0000000000 0.0000000000 -1.0000000000 4_555 x,-y,-z \"crystal symmetry operation\" 0.0000000000 0.0000000000 0.0000000000 \n#\n_refine.ls_d_res_high 2.45\n#\n_software.classification other\n_software.name \"DeepMind Structure Class\"\n_software.pdbx_ordinal 1\n_software.version 2.0.0\n#\n_struct_asym.entity_id 1\n_struct_asym.id A\n#\nloop_\n_atom_site.group_PDB\n_atom_site.id\n_atom_site.type_symbol\n_atom_site.label_atom_id\n_atom_site.label_alt_id\n_atom_site.label_comp_id\n_atom_site.label_asym_id\n_atom_site.label_entity_id\n_atom_site.label_seq_id\n_atom_site.pdbx_PDB_ins_code\n_atom_site.Cartn_x\n_atom_site.Cartn_y\n_atom_site.Cartn_z\n_atom_site.occupancy\n_atom_site.B_iso_or_equiv\n_atom_site.auth_seq_id\n_atom_site.auth_asym_id\n_atom_site.pdbx_PDB_model_num\nATOM 1 N N . PRO A 1 46 ? -5.863 5.415 -7.465 1.00 92.05 331 A 1 \nATOM 2 C CA . PRO A 1 46 ? -4.722 4.718 -6.884 1.00 93.73 331 A 1 \nATOM 3 C C . PRO A 1 46 ? -5.104 3.297 -6.481 1.00 93.97 331 A 1 \nATOM 4 O O . PRO A 1 46 ? -4.288 2.378 -6.560 1.00 96.83 331 A 1 \nATOM 5 C CB . PRO A 1 46 ? -4.184 5.488 -5.688 1.00 95.05 331 A 1 \nATOM 6 N N . ARG A 1 47 ? -6.355 3.122 -6.049 1.00 89.51 332 A 1 \nATOM 7 C CA . ARG A 1 47 ? -6.841 1.790 -5.709 1.00 84.63 332 A 1 \nATOM 8 C C . ARG A 1 47 ? -7.186 0.987 -6.957 1.00 83.03 332 A 1 \nATOM 9 O O . ARG A 1 47 ? -6.961 -0.227 -6.997 1.00 82.76 332 A 1 \nATOM 10 C CB . ARG A 1 47 ? -8.056 1.892 -4.787 1.00 79.05 332 A 1 \nATOM 11 N N . GLY A 1 48 ? -7.725 1.650 -7.984 1.00 82.13 333 A 1 \nATOM 12 C CA . GLY A 1 48 ? -8.106 0.950 -9.207 1.00 76.98 333 A 1 \nATOM 13 C C . GLY A 1 48 ? -6.903 0.294 -9.873 1.00 75.42 333 A 1 \nATOM 14 O O . GLY A 1 48 ? -7.006 -0.823 -10.394 1.00 74.96 333 A 1 \nATOM 15 N N . SER A 1 49 ? -5.755 0.973 -9.868 1.00 75.41 334 A 1 \nATOM 16 C CA . SER A 1 49 ? -4.557 0.395 -10.468 1.00 78.76 334 A 1 \nATOM 17 C C . SER A 1 49 ? -4.107 -0.843 -9.703 1.00 82.35 334 A 1 \nATOM 18 O O . SER A 1 49 ? -3.810 -1.882 -10.303 1.00 83.00 334 A 1 \nATOM 19 C CB . SER A 1 49 ? -3.440 1.438 -10.520 1.00 78.84 334 A 1 \nATOM 20 N N . HIS A 1 50 ? -4.078 -0.755 -8.370 1.00 85.44 335 A 1 \nATOM 21 C CA . HIS A 1 50 ? -3.561 -1.853 -7.558 1.00 86.51 335 A 1 \nATOM 22 C C . HIS A 1 50 ? -4.349 -3.139 -7.779 1.00 80.09 335 A 1 \nATOM 23 O O . HIS A 1 50 ? -3.771 -4.231 -7.810 1.00 82.06 335 A 1 \nATOM 24 C CB . HIS A 1 50 ? -3.576 -1.461 -6.080 1.00 91.14 335 A 1 \nATOM 25 N N . MET A 1 51 ? -5.671 -3.032 -7.938 1.00 73.81 336 A 1 \nATOM 26 C CA . MET A 1 51 ? -6.482 -4.225 -8.160 1.00 73.07 336 A 1 \nATOM 27 C C . MET A 1 51 ? -6.246 -4.807 -9.548 1.00 74.59 336 A 1 \nATOM 28 O O . MET A 1 51 ? -6.263 -6.031 -9.723 1.00 75.64 336 A 1 \nATOM 29 C CB . MET A 1 51 ? -7.961 -3.905 -7.949 1.00 71.64 336 A 1 \nATOM 30 C CG . MET A 1 51 ? -8.230 -3.098 -6.694 1.00 78.50 336 A 1 \nATOM 31 S SD . MET A 1 51 ? -9.780 -2.181 -6.735 1.00 79.98 336 A 1 \nATOM 32 C CE . MET A 1 51 ? -10.969 -3.514 -6.640 1.00 74.83 336 A 1 \nATOM 33 N N . ASP A 1 52 ? -6.025 -3.949 -10.546 1.00 77.14 337 A 1 \nATOM 34 C CA . ASP A 1 52 ? -5.712 -4.441 -11.885 1.00 73.94 337 A 1 \nATOM 35 C C . ASP A 1 52 ? -4.373 -5.167 -11.905 1.00 74.67 337 A 1 \nATOM 36 O O . ASP A 1 52 ? -4.238 -6.216 -12.547 1.00 73.16 337 A 1 \nATOM 37 C CB . ASP A 1 52 ? -5.707 -3.283 -12.881 1.00 74.15 337 A 1 \nATOM 38 C CG . ASP A 1 52 ? -7.082 -2.682 -13.081 1.00 74.87 337 A 1 \nATOM 39 O OD1 . ASP A 1 52 ? -8.079 -3.351 -12.739 1.00 74.12 337 A 1 \nATOM 40 O OD2 . ASP A 1 52 ? -7.166 -1.542 -13.585 1.00 76.04 337 A 1 \nATOM 41 N N . ASP A 1 53 ? -3.373 -4.623 -11.205 1.00 79.70 338 A 1 \nATOM 42 C CA . ASP A 1 53 ? -2.071 -5.276 -11.135 1.00 85.77 338 A 1 \nATOM 43 C C . ASP A 1 53 ? -2.165 -6.647 -10.480 1.00 88.00 338 A 1 \nATOM 44 O O . ASP A 1 53 ? -1.386 -7.548 -10.811 1.00 91.26 338 A 1 \nATOM 45 C CB . ASP A 1 53 ? -1.079 -4.395 -10.372 1.00 93.26 338 A 1 \nATOM 46 C CG . ASP A 1 53 ? -0.602 -3.205 -11.186 1.00 99.46 338 A 1 \nATOM 47 O OD1 . ASP A 1 53 ? -1.345 -2.208 -11.288 1.00 99.60 338 A 1 \nATOM 48 O OD2 . ASP A 1 53 ? 0.525 -3.262 -11.720 1.00 104.67 338 A 1 \nATOM 49 N N . ALA A 1 54 ? -3.112 -6.827 -9.555 1.00 87.24 339 A 1 \nATOM 50 C CA . ALA A 1 54 ? -3.232 -8.100 -8.853 1.00 88.19 339 A 1 \nATOM 51 C C . ALA A 1 54 ? -3.815 -9.189 -9.744 1.00 83.70 339 A 1 \nATOM 52 O O . ALA A 1 54 ? -3.453 -10.363 -9.601 1.00 86.89 339 A 1 \nATOM 53 C CB . ALA A 1 54 ? -4.089 -7.929 -7.599 1.00 78.40 339 A 1 \nATOM 54 N N . LEU A 1 55 ? -4.710 -8.827 -10.663 1.00 76.55 340 A 1 \nATOM 55 C CA . LEU A 1 55 ? -5.344 -9.809 -11.533 1.00 73.74 340 A 1 \nATOM 56 C C . LEU A 1 55 ? -4.459 -10.239 -12.694 1.00 79.60 340 A 1 \nATOM 57 O O . LEU A 1 55 ? -4.831 -11.170 -13.415 1.00 81.49 340 A 1 \nATOM 58 C CB . LEU A 1 55 ? -6.660 -9.255 -12.080 1.00 67.26 340 A 1 \nATOM 59 C CG . LEU A 1 55 ? -7.798 -9.139 -11.067 1.00 68.26 340 A 1 \nATOM 60 C CD1 . LEU A 1 55 ? -8.876 -8.218 -11.596 1.00 63.57 340 A 1 \nATOM 61 C CD2 . LEU A 1 55 ? -8.373 -10.508 -10.740 1.00 69.55 340 A 1 \nATOM 62 N N . ARG A 1 56 ? -3.306 -9.592 -12.887 1.00 82.11 341 A 1 \nATOM 63 C CA . ARG A 1 56 ? -2.444 -9.916 -14.020 1.00 83.25 341 A 1 \nATOM 64 C C . ARG A 1 56 ? -2.024 -11.381 -14.014 1.00 89.54 341 A 1 \nATOM 65 O O . ARG A 1 56 ? -1.872 -11.986 -15.082 1.00 91.91 341 A 1 \nATOM 66 C CB . ARG A 1 56 ? -1.216 -9.006 -14.012 1.00 85.69 341 A 1 \nATOM 67 C CG . ARG A 1 56 ? -0.206 -9.291 -15.110 1.00 91.03 341 A 1 \nATOM 68 C CD . ARG A 1 56 ? 1.209 -8.989 -14.641 1.00 97.84 341 A 1 \nATOM 69 N NE . ARG A 1 56 ? 1.240 -7.885 -13.685 1.00 98.83 341 A 1 \nATOM 70 C CZ . ARG A 1 56 ? 2.253 -7.636 -12.862 1.00 102.65 341 A 1 \nATOM 71 N NH1 . ARG A 1 56 ? 3.327 -8.413 -12.873 1.00 105.02 341 A 1 \nATOM 72 N NH2 . ARG A 1 56 ? 2.192 -6.609 -12.024 1.00 103.83 341 A 1 \nATOM 73 N N . GLY A 1 57 ? -1.844 -11.969 -12.830 1.00 92.38 342 A 1 \nATOM 74 C CA . GLY A 1 57 ? -1.475 -13.374 -12.765 1.00 92.74 342 A 1 \nATOM 75 C C . GLY A 1 57 ? -2.572 -14.294 -13.266 1.00 89.12 342 A 1 \nATOM 76 O O . GLY A 1 57 ? -2.298 -15.294 -13.935 1.00 93.79 342 A 1 \nATOM 77 N N . GLU A 1 58 ? -3.827 -13.969 -12.957 1.00 82.96 343 A 1 \nATOM 78 C CA . GLU A 1 58 ? -4.969 -14.772 -13.376 1.00 81.28 343 A 1 \nATOM 79 C C . GLU A 1 58 ? -5.433 -14.457 -14.793 1.00 79.19 343 A 1 \nATOM 80 O O . GLU A 1 58 ? -6.578 -14.773 -15.139 1.00 76.20 343 A 1 \nATOM 81 C CB . GLU A 1 58 ? -6.133 -14.583 -12.399 1.00 77.52 343 A 1 \nATOM 82 C CG . GLU A 1 58 ? -5.741 -14.691 -10.939 1.00 82.18 343 A 1 \nATOM 83 C CD . GLU A 1 58 ? -6.897 -14.398 -10.003 1.00 80.80 343 A 1 \nATOM 84 O OE1 . GLU A 1 58 ? -7.908 -15.130 -10.058 1.00 79.14 343 A 1 \nATOM 85 O OE2 . GLU A 1 58 ? -6.796 -13.435 -9.215 1.00 81.14 343 A 1 \nATOM 86 N N . LEU A 1 59 ? -4.586 -13.847 -15.618 1.00 80.89 344 A 1 \nATOM 87 C CA . LEU A 1 59 ? -4.951 -13.460 -16.975 1.00 80.87 344 A 1 \nATOM 88 C C . LEU A 1 59 ? -4.043 -14.183 -17.959 1.00 84.79 344 A 1 \nATOM 89 O O . LEU A 1 59 ? -2.825 -13.978 -17.952 1.00 87.52 344 A 1 \nATOM 90 C CB . LEU A 1 59 ? -4.853 -11.944 -17.158 1.00 77.81 344 A 1 \nATOM 91 C CG . LEU A 1 59 ? -5.872 -11.122 -16.363 1.00 71.79 344 A 1 \nATOM 92 C CD1 . LEU A 1 59 ? -5.679 -9.632 -16.602 1.00 72.02 344 A 1 \nATOM 93 C CD2 . LEU A 1 59 ? -7.297 -11.544 -16.690 1.00 67.15 344 A 1 \nATOM 94 N N . ALA A 1 60 ? -4.638 -15.025 -18.798 1.00 84.83 345 A 1 \nATOM 95 C CA . ALA A 1 60 ? -3.894 -15.774 -19.802 1.00 90.76 345 A 1 \nATOM 96 C C . ALA A 1 60 ? -4.807 -16.156 -20.962 1.00 94.06 345 A 1 \nATOM 97 O O . ALA A 1 60 ? -6.024 -15.980 -20.888 1.00 89.89 345 A 1 \nATOM 98 C CB . ALA A 1 60 ? -3.267 -17.015 -19.187 1.00 89.88 345 A 1 \nATOM 99 N N . SER A 1 91 ? -27.019 0.144 -27.082 1.00 91.86 406 A 1 \nATOM 100 C CA . SER A 1 91 ? -26.427 -0.738 -28.070 1.00 97.99 406 A 1 \nATOM 101 C C . SER A 1 91 ? -25.007 -0.359 -28.442 1.00 100.37 406 A 1 \nATOM 102 O O . SER A 1 91 ? -24.171 -1.226 -28.707 1.00 98.12 406 A 1 \nATOM 103 N N . THR A 1 92 ? -24.735 0.944 -28.464 1.00 102.93 407 A 1 \nATOM 104 C CA . THR A 1 92 ? -23.418 1.470 -28.787 1.00 100.44 407 A 1 \nATOM 105 C C . THR A 1 92 ? -22.967 2.419 -27.684 1.00 96.51 407 A 1 \nATOM 106 O O . THR A 1 92 ? -23.781 2.980 -26.946 1.00 94.12 407 A 1 \nATOM 107 C CB . THR A 1 92 ? -23.412 2.190 -30.145 1.00 102.68 407 A 1 \nATOM 108 O OG1 . THR A 1 92 ? -22.174 2.892 -30.316 1.00 106.96 407 A 1 \nATOM 109 C CG2 . THR A 1 92 ? -24.570 3.174 -30.235 1.00 99.59 407 A 1 \nATOM 110 N N . ILE A 1 93 ? -21.653 2.592 -27.579 1.00 93.90 408 A 1 \nATOM 111 C CA . ILE A 1 93 ? -21.042 3.394 -26.524 1.00 90.99 408 A 1 \nATOM 112 C C . ILE A 1 93 ? -20.649 4.746 -27.100 1.00 89.85 408 A 1 \nATOM 113 O O . ILE A 1 93 ? -19.980 4.817 -28.138 1.00 92.32 408 A 1 \nATOM 114 C CB . ILE A 1 93 ? -19.826 2.675 -25.916 1.00 92.95 408 A 1 \nATOM 115 C CG1 . ILE A 1 93 ? -20.277 1.408 -25.190 1.00 93.67 408 A 1 \nATOM 116 C CG2 . ILE A 1 93 ? -19.068 3.600 -24.978 1.00 100.81 408 A 1 \nATOM 117 C CD1 . ILE A 1 93 ? -19.167 0.681 -24.482 1.00 94.31 408 A 1 \nATOM 118 N N . GLN A 1 94 ? -21.063 5.818 -26.429 1.00 89.13 409 A 1 \nATOM 119 C CA . GLN A 1 94 ? -20.787 7.182 -26.874 1.00 90.19 409 A 1 \nATOM 120 C C . GLN A 1 94 ? -19.671 7.759 -26.013 1.00 89.14 409 A 1 \nATOM 121 O O . GLN A 1 94 ? -19.919 8.283 -24.925 1.00 90.59 409 A 1 \nATOM 122 C CB . GLN A 1 94 ? -22.041 8.047 -26.801 1.00 95.74 409 A 1 \nATOM 123 C CG . GLN A 1 94 ? -23.239 7.508 -27.576 1.00 101.77 409 A 1 \nATOM 124 C CD . GLN A 1 94 ? -22.899 7.096 -29.001 1.00 107.21 409 A 1 \nATOM 125 O OE1 . GLN A 1 94 ? -23.378 6.075 -29.492 1.00 109.79 409 A 1 \nATOM 126 N NE2 . GLN A 1 94 ? -22.089 7.902 -29.678 1.00 107.07 409 A 1 \nATOM 127 N N . LEU A 1 95 ? -18.439 7.665 -26.504 1.00 86.84 410 A 1 \nATOM 128 C CA . LEU A 1 95 ? -17.318 8.262 -25.802 1.00 85.16 410 A 1 \nATOM 129 C C . LEU A 1 95 ? -17.273 9.766 -26.055 1.00 87.97 410 A 1 \nATOM 130 O O . LEU A 1 95 ? -17.788 10.272 -27.056 1.00 92.44 410 A 1 \nATOM 131 C CB . LEU A 1 95 ? -16.000 7.616 -26.232 1.00 84.45 410 A 1 \nATOM 132 C CG . LEU A 1 95 ? -15.735 6.198 -25.721 1.00 84.78 410 A 1 \nATOM 133 C CD1 . LEU A 1 95 ? -14.293 5.792 -25.990 1.00 80.42 410 A 1 \nATOM 134 C CD2 . LEU A 1 95 ? -16.063 6.084 -24.240 1.00 79.37 410 A 1 \nATOM 135 N N . GLU A 1 96 ? -16.653 10.482 -25.122 1.00 90.00 411 A 1 \nATOM 136 C CA . GLU A 1 96 ? -16.514 11.933 -25.214 1.00 91.69 411 A 1 \nATOM 137 C C . GLU A 1 96 ? -15.106 12.296 -24.769 1.00 91.17 411 A 1 \nATOM 138 O O . GLU A 1 96 ? -14.771 12.146 -23.590 1.00 92.20 411 A 1 \nATOM 139 C CB . GLU A 1 96 ? -17.560 12.649 -24.359 1.00 91.98 411 A 1 \nATOM 140 C CG . GLU A 1 96 ? -18.983 12.525 -24.882 1.00 96.99 411 A 1 \nATOM 141 C CD . GLU A 1 96 ? -20.020 12.919 -23.849 1.00 101.51 411 A 1 \nATOM 142 O OE1 . GLU A 1 96 ? -21.060 12.232 -23.758 1.00 102.98 411 A 1 \nATOM 143 O OE2 . GLU A 1 96 ? -19.797 13.917 -23.131 1.00 102.15 411 A 1 \nATOM 144 N N . LYS A 1 97 ? -14.284 12.760 -25.707 1.00 90.10 412 A 1 \nATOM 145 C CA . LYS A 1 97 ? -12.922 13.149 -25.373 1.00 89.59 412 A 1 \nATOM 146 C C . LYS A 1 97 ? -12.932 14.370 -24.466 1.00 91.59 412 A 1 \nATOM 147 O O . LYS A 1 97 ? -13.671 15.331 -24.696 1.00 99.25 412 A 1 \nATOM 148 C CB . LYS A 1 97 ? -12.117 13.445 -26.639 1.00 91.81 412 A 1 \nATOM 149 C CG . LYS A 1 97 ? -10.693 13.912 -26.368 1.00 94.75 412 A 1 \nATOM 150 C CD . LYS A 1 97 ? -10.460 15.309 -26.914 1.00 98.92 412 A 1 \nATOM 151 C CE . LYS A 1 97 ? -9.076 15.831 -26.560 1.00 99.64 412 A 1 \nATOM 152 N NZ . LYS A 1 97 ? -9.115 17.266 -26.152 1.00 99.84 412 A 1 \nATOM 153 N N . LEU A 1 98 ? -12.114 14.324 -23.423 1.00 86.25 413 A 1 \nATOM 154 C CA . LEU A 1 98 ? -12.001 15.418 -22.473 1.00 85.04 413 A 1 \nATOM 155 C C . LEU A 1 98 ? -10.666 16.116 -22.679 1.00 86.52 413 A 1 \nATOM 156 O O . LEU A 1 98 ? -9.623 15.456 -22.756 1.00 85.46 413 A 1 \nATOM 157 C CB . LEU A 1 98 ? -12.128 14.915 -21.033 1.00 82.07 413 A 1 \nATOM 158 C CG . LEU A 1 98 ? -13.311 13.995 -20.723 1.00 81.23 413 A 1 \nATOM 159 C CD1 . LEU A 1 98 ? -13.474 13.826 -19.219 1.00 80.80 413 A 1 \nATOM 160 C CD2 . LEU A 1 98 ? -14.597 14.523 -21.341 1.00 82.46 413 A 1 \nATOM 161 N N . SER A 1 99 ? -10.717 17.446 -22.803 1.00 91.98 414 A 1 \nATOM 162 C CA . SER A 1 99 ? -9.524 18.283 -22.841 1.00 96.38 414 A 1 \nATOM 163 C C . SER A 1 99 ? -8.476 17.793 -21.851 1.00 92.39 414 A 1 \nATOM 164 O O . SER A 1 99 ? -7.328 17.514 -22.212 1.00 89.74 414 A 1 \nATOM 165 C CB . SER A 1 99 ? -9.913 19.730 -22.523 1.00 103.22 414 A 1 \nATOM 166 O OG . SER A 1 99 ? -10.619 19.786 -21.292 1.00 106.13 414 A 1 \nATOM 167 N N . HIS A 1 100 ? -8.879 17.687 -20.592 1.00 90.16 415 A 1 \nATOM 168 C CA . HIS A 1 100 ? -8.060 17.167 -19.509 1.00 87.33 415 A 1 \nATOM 169 C C . HIS A 1 100 ? -8.991 16.441 -18.554 1.00 86.82 415 A 1 \nATOM 170 O O . HIS A 1 100 ? -10.213 16.607 -18.634 1.00 81.10 415 A 1 \nATOM 171 C CB . HIS A 1 100 ? -7.301 18.297 -18.796 1.00 87.21 415 A 1 \nATOM 172 C CG . HIS A 1 100 ? -6.750 19.333 -19.726 1.00 92.62 415 A 1 \nATOM 173 N ND1 . HIS A 1 100 ? -7.529 20.329 -20.274 1.00 95.44 415 A 1 \nATOM 174 C CD2 . HIS A 1 100 ? -5.503 19.516 -20.221 1.00 94.37 415 A 1 \nATOM 175 C CE1 . HIS A 1 100 ? -6.785 21.086 -21.061 1.00 97.04 415 A 1 \nATOM 176 N NE2 . HIS A 1 100 ? -5.551 20.615 -21.045 1.00 96.05 415 A 1 \nATOM 177 N N . PRO A 1 101 ? -8.461 15.606 -17.667 1.00 84.46 416 A 1 \nATOM 178 C CA . PRO A 1 101 ? -9.321 14.954 -16.685 1.00 82.16 416 A 1 \nATOM 179 C C . PRO A 1 101 ? -9.663 15.911 -15.560 1.00 81.11 416 A 1 \nATOM 180 O O . PRO A 1 101 ? -8.971 16.921 -15.364 1.00 78.45 416 A 1 \nATOM 181 C CB . PRO A 1 101 ? -8.454 13.795 -16.180 1.00 81.47 416 A 1 \nATOM 182 C CG . PRO A 1 101 ? -7.099 14.358 -16.241 1.00 81.86 416 A 1 \nATOM 183 C CD . PRO A 1 101 ? -7.063 15.160 -17.522 1.00 83.19 416 A 1 \nATOM 184 N N . PRO A 1 102 ? -10.725 15.637 -14.807 1.00 81.20 417 A 1 \nATOM 185 C CA . PRO A 1 102 ? -10.947 16.382 -13.565 1.00 78.54 417 A 1 \nATOM 186 C C . PRO A 1 102 ? -9.773 16.186 -12.617 1.00 75.57 417 A 1 \nATOM 187 O O . PRO A 1 102 ? -9.047 15.192 -12.686 1.00 74.76 417 A 1 \nATOM 188 C CB . PRO A 1 102 ? -12.238 15.774 -13.001 1.00 75.76 417 A 1 \nATOM 189 C CG . PRO A 1 102 ? -12.417 14.475 -13.729 1.00 75.34 417 A 1 \nATOM 190 C CD . PRO A 1 102 ? -11.794 14.663 -15.074 1.00 82.69 417 A 1 \nATOM 191 N N . ALA A 1 103 ? -9.586 17.164 -11.725 1.00 78.21 418 A 1 \nATOM 192 C CA . ALA A 1 103 ? -8.420 17.162 -10.844 1.00 76.88 418 A 1 \nATOM 193 C C . ALA A 1 103 ? -8.306 15.870 -10.044 1.00 76.61 418 A 1 \nATOM 194 O O . ALA A 1 103 ? -7.192 15.411 -9.764 1.00 77.03 418 A 1 \nATOM 195 C CB . ALA A 1 103 ? -8.476 18.363 -9.900 1.00 77.30 418 A 1 \nATOM 196 N N . ARG A 1 104 ? -9.438 15.264 -9.685 1.00 75.69 419 A 1 \nATOM 197 C CA . ARG A 1 104 ? -9.420 14.040 -8.893 1.00 73.76 419 A 1 \nATOM 198 C C . ARG A 1 104 ? -8.763 12.877 -9.625 1.00 76.58 419 A 1 \nATOM 199 O O . ARG A 1 104 ? -8.338 11.915 -8.976 1.00 75.84 419 A 1 \nATOM 200 C CB . ARG A 1 104 ? -10.847 13.661 -8.498 1.00 71.45 419 A 1 \nATOM 201 C CG . ARG A 1 104 ? -11.737 13.342 -9.687 1.00 72.74 419 A 1 \nATOM 202 C CD . ARG A 1 104 ? -13.024 12.659 -9.258 1.00 71.54 419 A 1 \nATOM 203 N NE . ARG A 1 104 ? -14.033 12.684 -10.314 1.00 72.13 419 A 1 \nATOM 204 C CZ . ARG A 1 104 ? -14.732 13.761 -10.659 1.00 73.57 419 A 1 \nATOM 205 N NH1 . ARG A 1 104 ? -14.540 14.914 -10.033 1.00 75.79 419 A 1 \nATOM 206 N NH2 . ARG A 1 104 ? -15.630 13.685 -11.632 1.00 74.56 419 A 1 \nATOM 207 N N . PHE A 1 105 ? -8.671 12.937 -10.954 1.00 76.94 420 A 1 \nATOM 208 C CA . PHE A 1 105 ? -8.138 11.840 -11.752 1.00 76.03 420 A 1 \nATOM 209 C C . PHE A 1 105 ? -6.835 12.209 -12.454 1.00 80.44 420 A 1 \nATOM 210 O O . PHE A 1 105 ? -6.441 11.536 -13.412 1.00 77.93 420 A 1 \nATOM 211 C CB . PHE A 1 105 ? -9.175 11.381 -12.777 1.00 73.25 420 A 1 \nATOM 212 C CG . PHE A 1 105 ? -10.396 10.750 -12.168 1.00 74.65 420 A 1 \nATOM 213 C CD1 . PHE A 1 105 ? -10.316 10.065 -10.966 1.00 73.75 420 A 1 \nATOM 214 C CD2 . PHE A 1 105 ? -11.624 10.842 -12.801 1.00 76.82 420 A 1 \nATOM 215 C CE1 . PHE A 1 105 ? -11.439 9.483 -10.407 1.00 72.49 420 A 1 \nATOM 216 C CE2 . PHE A 1 105 ? -12.750 10.262 -12.247 1.00 77.69 420 A 1 \nATOM 217 C CZ . PHE A 1 105 ? -12.657 9.582 -11.049 1.00 73.58 420 A 1 \nATOM 218 N N . ASP A 1 106 ? -6.154 13.261 -11.992 1.00 86.07 421 A 1 \nATOM 219 C CA . ASP A 1 106 ? -4.955 13.730 -12.681 1.00 90.01 421 A 1 \nATOM 220 C C . ASP A 1 106 ? -3.798 12.745 -12.556 1.00 91.21 421 A 1 \nATOM 221 O O . ASP A 1 106 ? -2.978 12.641 -13.475 1.00 92.04 421 A 1 \nATOM 222 C CB . ASP A 1 106 ? -4.543 15.101 -12.145 1.00 92.64 421 A 1 \nATOM 223 C CG . ASP A 1 106 ? -5.046 16.242 -13.010 1.00 102.50 421 A 1 \nATOM 224 O OD1 . ASP A 1 106 ? -5.698 15.970 -14.037 1.00 106.54 421 A 1 \nATOM 225 O OD2 . ASP A 1 106 ? -4.788 17.415 -12.665 1.00 106.25 421 A 1 \nATOM 226 N N . LEU A 1 107 ? -3.711 12.018 -11.436 1.00 91.08 422 A 1 \nATOM 227 C CA . LEU A 1 107 ? -2.587 11.109 -11.228 1.00 92.01 422 A 1 \nATOM 228 C C . LEU A 1 107 ? -2.526 10.032 -12.306 1.00 97.46 422 A 1 \nATOM 229 O O . LEU A 1 107 ? -1.438 9.542 -12.630 1.00 100.04 422 A 1 \nATOM 230 C CB . LEU A 1 107 ? -2.670 10.474 -9.841 1.00 88.71 422 A 1 \nATOM 231 N N . LEU A 1 108 ? -3.673 9.665 -12.881 1.00 97.21 423 A 1 \nATOM 232 C CA . LEU A 1 108 ? -3.684 8.710 -13.983 1.00 95.95 423 A 1 \nATOM 233 C C . LEU A 1 108 ? -3.060 9.331 -15.234 1.00 101.71 423 A 1 \nATOM 234 O O . LEU A 1 108 ? -2.197 8.726 -15.887 1.00 104.06 423 A 1 \nATOM 235 C CB . LEU A 1 108 ? -5.125 8.240 -14.241 1.00 92.50 423 A 1 \nATOM 236 C CG . LEU A 1 108 ? -5.726 7.095 -13.396 1.00 90.34 423 A 1 \nATOM 237 C CD1 . LEU A 1 108 ? -5.255 7.112 -11.948 1.00 84.31 423 A 1 \nATOM 238 C CD2 . LEU A 1 108 ? -7.246 7.165 -13.430 1.00 92.72 423 A 1 \nATOM 239 N N . THR A 1 109 ? -3.492 10.543 -15.569 1.00 103.22 424 A 1 \nATOM 240 C CA . THR A 1 109 ? -2.935 11.390 -16.622 1.00 103.53 424 A 1 \nATOM 241 C C . THR A 1 109 ? -1.428 11.542 -16.388 1.00 103.44 424 A 1 \nATOM 242 O O . THR A 1 109 ? -0.664 11.958 -17.279 1.00 105.60 424 A 1 \nATOM 243 C CB . THR A 1 109 ? -3.689 12.753 -16.601 1.00 104.85 424 A 1 \nATOM 244 O OG1 . THR A 1 109 ? -4.978 12.574 -17.201 1.00 103.59 424 A 1 \nATOM 245 C CG2 . THR A 1 109 ? -2.922 13.907 -17.269 1.00 108.54 424 A 1 \nATOM 246 N N . SER A 1 111 ? -1.279 10.546 -22.832 1.00 117.44 426 A 1 \nATOM 247 C CA . SER A 1 111 ? -2.444 9.939 -22.214 1.00 111.91 426 A 1 \nATOM 248 C C . SER A 1 111 ? -3.648 10.847 -22.391 1.00 109.51 426 A 1 \nATOM 249 O O . SER A 1 111 ? -3.660 11.987 -21.925 1.00 108.30 426 A 1 \nATOM 250 C CB . SER A 1 111 ? -2.197 9.663 -20.730 1.00 111.10 426 A 1 \nATOM 251 O OG . SER A 1 111 ? -3.425 9.507 -20.040 1.00 107.89 426 A 1 \nATOM 252 N N . PHE A 1 112 ? -4.653 10.331 -23.088 1.00 106.84 427 A 1 \nATOM 253 C CA . PHE A 1 112 ? -5.878 11.065 -23.330 1.00 101.22 427 A 1 \nATOM 254 C C . PHE A 1 112 ? -6.888 10.664 -22.259 1.00 92.92 427 A 1 \nATOM 255 O O . PHE A 1 112 ? -6.598 9.856 -21.373 1.00 93.59 427 A 1 \nATOM 256 C CB . PHE A 1 112 ? -6.408 10.787 -24.740 1.00 100.95 427 A 1 \nATOM 257 C CG . PHE A 1 112 ? -5.416 11.080 -25.857 1.00 107.04 427 A 1 \nATOM 258 C CD1 . PHE A 1 112 ? -4.157 11.609 -25.604 1.00 110.65 427 A 1 \nATOM 259 C CD2 . PHE A 1 112 ? -5.759 10.814 -27.170 1.00 110.00 427 A 1 \nATOM 260 C CE1 . PHE A 1 112 ? -3.269 11.859 -26.635 1.00 116.94 427 A 1 \nATOM 261 C CE2 . PHE A 1 112 ? -4.876 11.067 -28.203 1.00 115.53 427 A 1 \nATOM 262 C CZ . PHE A 1 112 ? -3.632 11.589 -27.936 1.00 119.45 427 A 1 \nATOM 263 N N . VAL A 1 113 ? -8.089 11.225 -22.323 1.00 85.98 428 A 1 \nATOM 264 C CA . VAL A 1 113 ? -9.163 10.748 -21.459 1.00 79.67 428 A 1 \nATOM 265 C C . VAL A 1 113 ? -10.492 10.910 -22.180 1.00 76.09 428 A 1 \nATOM 266 O O . VAL A 1 113 ? -10.795 11.975 -22.727 1.00 79.28 428 A 1 \nATOM 267 C CB . VAL A 1 113 ? -9.173 11.452 -20.082 1.00 75.94 428 A 1 \nATOM 268 C CG1 . VAL A 1 113 ? -9.297 12.953 -20.236 1.00 77.32 428 A 1 \nATOM 269 C CG2 . VAL A 1 113 ? -10.286 10.894 -19.201 1.00 71.90 428 A 1 \nATOM 270 N N . TYR A 1 114 ? -11.278 9.837 -22.177 1.00 70.56 429 A 1 \nATOM 271 C CA . TYR A 1 114 ? -12.597 9.796 -22.784 1.00 70.24 429 A 1 \nATOM 272 C C . TYR A 1 114 ? -13.613 9.396 -21.725 1.00 71.24 429 A 1 \nATOM 273 O O . TYR A 1 114 ? -13.320 8.571 -20.852 1.00 73.59 429 A 1 \nATOM 274 C CB . TYR A 1 114 ? -12.638 8.803 -23.953 1.00 71.81 429 A 1 \nATOM 275 C CG . TYR A 1 114 ? -12.004 9.323 -25.222 1.00 77.62 429 A 1 \nATOM 276 C CD1 . TYR A 1 114 ? -10.626 9.452 -25.329 1.00 79.65 429 A 1 \nATOM 277 C CD2 . TYR A 1 114 ? -12.783 9.681 -26.316 1.00 82.05 429 A 1 \nATOM 278 C CE1 . TYR A 1 114 ? -10.039 9.926 -26.487 1.00 85.72 429 A 1 \nATOM 279 C CE2 . TYR A 1 114 ? -12.204 10.153 -27.482 1.00 85.99 429 A 1 \nATOM 280 C CZ . TYR A 1 114 ? -10.832 10.276 -27.559 1.00 88.39 429 A 1 \nATOM 281 O OH . TYR A 1 114 ? -10.248 10.749 -28.711 1.00 93.29 429 A 1 \nATOM 282 N N . LYS A 1 115 ? -14.802 9.984 -21.798 1.00 71.56 430 A 1 \nATOM 283 C CA . LYS A 1 115 ? -15.849 9.762 -20.814 1.00 69.14 430 A 1 \nATOM 284 C C . LYS A 1 115 ? -17.005 8.993 -21.438 1.00 67.88 430 A 1 \nATOM 285 O O . LYS A 1 115 ? -17.341 9.197 -22.609 1.00 69.37 430 A 1 \nATOM 286 C CB . LYS A 1 115 ? -16.354 11.091 -20.242 1.00 72.25 430 A 1 \nATOM 287 C CG . LYS A 1 115 ? -17.406 10.945 -19.156 1.00 72.97 430 A 1 \nATOM 288 C CD . LYS A 1 115 ? -17.855 12.296 -18.629 1.00 76.22 430 A 1 \nATOM 289 C CE . LYS A 1 115 ? -18.625 13.066 -19.689 1.00 84.12 430 A 1 \nATOM 290 N NZ . LYS A 1 115 ? -19.234 14.308 -19.139 1.00 87.68 430 A 1 \nATOM 291 N N . TRP A 1 116 ? -17.607 8.102 -20.649 1.00 61.24 431 A 1 \nATOM 292 C CA . TRP A 1 116 ? -18.784 7.343 -21.059 1.00 59.40 431 A 1 \nATOM 293 C C . TRP A 1 116 ? -19.827 7.459 -19.955 1.00 62.72 431 A 1 \nATOM 294 O O . TRP A 1 116 ? -19.679 6.855 -18.888 1.00 63.68 431 A 1 \nATOM 295 C CB . TRP A 1 116 ? -18.432 5.880 -21.334 1.00 59.15 431 A 1 \nATOM 296 C CG . TRP A 1 116 ? -19.619 5.028 -21.680 1.00 57.75 431 A 1 \nATOM 297 C CD1 . TRP A 1 116 ? -20.731 5.413 -22.372 1.00 56.27 431 A 1 \nATOM 298 C CD2 . TRP A 1 116 ? -19.813 3.648 -21.347 1.00 56.31 431 A 1 \nATOM 299 N NE1 . TRP A 1 116 ? -21.604 4.358 -22.490 1.00 56.44 431 A 1 \nATOM 300 C CE2 . TRP A 1 116 ? -21.063 3.263 -21.870 1.00 56.99 431 A 1 \nATOM 301 C CE3 . TRP A 1 116 ? -19.050 2.700 -20.657 1.00 54.84 431 A 1 \nATOM 302 C CZ2 . TRP A 1 116 ? -21.568 1.973 -21.723 1.00 58.30 431 A 1 \nATOM 303 C CZ3 . TRP A 1 116 ? -19.553 1.419 -20.515 1.00 53.42 431 A 1 \nATOM 304 C CH2 . TRP A 1 116 ? -20.800 1.068 -21.046 1.00 53.58 431 A 1 \nATOM 305 N N . GLN A 1 117 ? -20.874 8.242 -20.209 1.00 63.88 432 A 1 \nATOM 306 C CA . GLN A 1 117 ? -21.976 8.413 -19.268 1.00 62.75 432 A 1 \nATOM 307 C C . GLN A 1 117 ? -23.004 7.317 -19.528 1.00 63.73 432 A 1 \nATOM 308 O O . GLN A 1 117 ? -23.650 7.301 -20.581 1.00 69.44 432 A 1 \nATOM 309 C CB . GLN A 1 117 ? -22.594 9.801 -19.414 1.00 62.42 432 A 1 \nATOM 310 C CG . GLN A 1 117 ? -23.650 10.128 -18.376 1.00 66.44 432 A 1 \nATOM 311 C CD . GLN A 1 117 ? -23.095 10.139 -16.966 1.00 72.63 432 A 1 \nATOM 312 O OE1 . GLN A 1 117 ? -22.034 10.709 -16.708 1.00 76.66 432 A 1 \nATOM 313 N NE2 . GLN A 1 117 ? -23.810 9.506 -16.045 1.00 73.02 432 A 1 \nATOM 314 N N . THR A 1 118 ? -23.157 6.405 -18.576 1.00 59.69 433 A 1 \nATOM 315 C CA . THR A 1 118 ? -24.014 5.243 -18.777 1.00 60.99 433 A 1 \nATOM 316 C C . THR A 1 118 ? -24.668 4.878 -17.449 1.00 67.18 433 A 1 \nATOM 317 O O . THR A 1 118 ? -24.707 5.687 -16.516 1.00 67.99 433 A 1 \nATOM 318 C CB . THR A 1 118 ? -23.201 4.078 -19.367 1.00 60.96 433 A 1 \nATOM 319 O OG1 . THR A 1 118 ? -24.053 2.940 -19.549 1.00 65.32 433 A 1 \nATOM 320 C CG2 . THR A 1 118 ? -22.052 3.707 -18.437 1.00 58.16 433 A 1 \nATOM 321 N N . LYS A 1 119 ? -25.185 3.656 -17.368 1.00 67.39 434 A 1 \nATOM 322 C CA . LYS A 1 119 ? -25.815 3.120 -16.173 1.00 60.00 434 A 1 \nATOM 323 C C . LYS A 1 119 ? -25.055 1.886 -15.706 1.00 59.56 434 A 1 \nATOM 324 O O . LYS A 1 119 ? -24.248 1.309 -16.440 1.00 60.21 434 A 1 \nATOM 325 C CB . LYS A 1 119 ? -27.285 2.771 -16.437 1.00 59.54 434 A 1 \nATOM 326 C CG . LYS A 1 119 ? -27.997 3.754 -17.347 1.00 65.14 434 A 1 \nATOM 327 C CD . LYS A 1 119 ? -28.432 4.993 -16.583 1.00 69.21 434 A 1 \nATOM 328 C CE . LYS A 1 119 ? -29.823 4.819 -16.001 1.00 71.25 434 A 1 \nATOM 329 N NZ . LYS A 1 119 ? -30.403 6.114 -15.551 1.00 71.72 434 A 1 \nATOM 330 N N . ALA A 1 120 ? -25.327 1.478 -14.464 1.00 53.01 435 A 1 \nATOM 331 C CA . ALA A 1 120 ? -24.650 0.317 -13.900 1.00 52.41 435 A 1 \nATOM 332 C C . ALA A 1 120 ? -25.007 -0.973 -14.624 1.00 53.66 435 A 1 \nATOM 333 O O . ALA A 1 120 ? -24.224 -1.927 -14.577 1.00 49.92 435 A 1 \nATOM 334 C CB . ALA A 1 120 ? -24.975 0.189 -12.411 1.00 51.13 435 A 1 \nATOM 335 N N . ALA A 1 121 ? -26.164 -1.024 -15.290 1.00 58.17 436 A 1 \nATOM 336 C CA . ALA A 1 121 ? -26.509 -2.201 -16.081 1.00 56.81 436 A 1 \nATOM 337 C C . ALA A 1 121 ? -25.486 -2.456 -17.177 1.00 57.83 436 A 1 \nATOM 338 O O . ALA A 1 121 ? -25.317 -3.599 -17.616 1.00 63.36 436 A 1 \nATOM 339 C CB . ALA A 1 121 ? -27.901 -2.040 -16.694 1.00 49.31 436 A 1 \nATOM 340 N N . LEU A 1 122 ? -24.801 -1.412 -17.632 1.00 53.96 437 A 1 \nATOM 341 C CA . LEU A 1 122 ? -23.789 -1.522 -18.674 1.00 57.98 437 A 1 \nATOM 342 C C . LEU A 1 122 ? -22.372 -1.375 -18.145 1.00 53.77 437 A 1 \nATOM 343 O O . LEU A 1 122 ? -21.494 -2.158 -18.520 1.00 46.28 437 A 1 \nATOM 344 C CB . LEU A 1 122 ? -24.039 -0.466 -19.759 1.00 58.58 437 A 1 \nATOM 345 C CG . LEU A 1 122 ? -24.977 -0.792 -20.928 1.00 63.17 437 A 1 \nATOM 346 C CD1 . LEU A 1 122 ? -26.223 -1.545 -20.481 1.00 64.46 437 A 1 \nATOM 347 C CD2 . LEU A 1 122 ? -25.366 0.486 -21.650 1.00 65.65 437 A 1 \nATOM 348 N N . ALA A 1 123 ? -22.132 -0.399 -17.264 1.00 55.89 438 A 1 \nATOM 349 C CA . ALA A 1 123 ? -20.794 -0.179 -16.728 1.00 55.64 438 A 1 \nATOM 350 C C . ALA A 1 123 ? -20.306 -1.346 -15.880 1.00 54.33 438 A 1 \nATOM 351 O O . ALA A 1 123 ? -19.093 -1.502 -15.706 1.00 56.19 438 A 1 \nATOM 352 C CB . ALA A 1 123 ? -20.765 1.107 -15.905 1.00 56.26 438 A 1 \nATOM 353 N N . ARG A 1 124 ? -21.218 -2.162 -15.343 1.00 53.82 439 A 1 \nATOM 354 C CA . ARG A 1 124 ? -20.798 -3.352 -14.610 1.00 57.32 439 A 1 \nATOM 355 C C . ARG A 1 124 ? -20.094 -4.350 -15.520 1.00 57.71 439 A 1 \nATOM 356 O O . ARG A 1 124 ? -19.270 -5.143 -15.050 1.00 59.38 439 A 1 \nATOM 357 C CB . ARG A 1 124 ? -22.002 -4.017 -13.939 1.00 62.35 439 A 1 \nATOM 358 C CG . ARG A 1 124 ? -22.519 -5.246 -14.681 1.00 69.31 439 A 1 \nATOM 359 C CD . ARG A 1 124 ? -23.638 -5.940 -13.930 1.00 73.61 439 A 1 \nATOM 360 N NE . ARG A 1 124 ? -24.860 -5.145 -13.924 1.00 74.09 439 A 1 \nATOM 361 C CZ . ARG A 1 124 ? -25.427 -4.667 -12.823 1.00 71.92 439 A 1 \nATOM 362 N NH1 . ARG A 1 124 ? -24.880 -4.907 -11.641 1.00 77.39 439 A 1 \nATOM 363 N NH2 . ARG A 1 124 ? -26.537 -3.951 -12.901 1.00 68.65 439 A 1 \nATOM 364 N N . LYS A 1 125 ? -20.399 -4.328 -16.818 1.00 53.88 440 A 1 \nATOM 365 C CA . LYS A 1 125 ? -19.844 -5.304 -17.745 1.00 56.91 440 A 1 \nATOM 366 C C . LYS A 1 125 ? -18.427 -4.965 -18.187 1.00 55.96 440 A 1 \nATOM 367 O O . LYS A 1 125 ? -17.780 -5.800 -18.826 1.00 57.27 440 A 1 \nATOM 368 C CB . LYS A 1 125 ? -20.757 -5.440 -18.966 1.00 59.96 440 A 1 \nATOM 369 C CG . LYS A 1 125 ? -22.184 -5.838 -18.610 1.00 60.28 440 A 1 \nATOM 370 C CD . LYS A 1 125 ? -23.088 -5.871 -19.830 1.00 60.60 440 A 1 \nATOM 371 C CE . LYS A 1 125 ? -24.479 -6.369 -19.468 1.00 61.75 440 A 1 \nATOM 372 N NZ . LYS A 1 125 ? -25.416 -6.292 -20.622 1.00 71.38 440 A 1 \nATOM 373 N N . VAL A 1 126 ? -17.932 -3.771 -17.862 1.00 55.06 441 A 1 \nATOM 374 C CA . VAL A 1 126 ? -16.565 -3.375 -18.165 1.00 58.44 441 A 1 \nATOM 375 C C . VAL A 1 126 ? -15.746 -3.146 -16.901 1.00 59.42 441 A 1 \nATOM 376 O O . VAL A 1 126 ? -14.637 -2.618 -16.973 1.00 62.74 441 A 1 \nATOM 377 C CB . VAL A 1 126 ? -16.531 -2.126 -19.070 1.00 58.68 441 A 1 \nATOM 378 C CG1 . VAL A 1 126 ? -17.251 -2.402 -20.382 1.00 58.80 441 A 1 \nATOM 379 C CG2 . VAL A 1 126 ? -17.150 -0.937 -18.355 1.00 56.76 441 A 1 \nATOM 380 N N . SER A 1 127 ? -16.273 -3.533 -15.741 1.00 57.45 442 A 1 \nATOM 381 C CA . SER A 1 127 ? -15.562 -3.359 -14.481 1.00 58.65 442 A 1 \nATOM 382 C C . SER A 1 127 ? -15.529 -4.662 -13.693 1.00 57.84 442 A 1 \nATOM 383 O O . SER A 1 127 ? -14.574 -5.438 -13.804 1.00 56.92 442 A 1 \nATOM 384 C CB . SER A 1 127 ? -16.210 -2.250 -13.648 1.00 55.37 442 A 1 \nATOM 385 O OG . SER A 1 127 ? -17.610 -2.440 -13.547 1.00 55.48 442 A 1 \nATOM 386 N N . GLY A 1 128 ? -16.566 -4.910 -12.897 1.00 58.34 443 A 1 \nATOM 387 C CA . GLY A 1 128 ? -16.643 -6.110 -12.101 1.00 58.32 443 A 1 \nATOM 388 C C . GLY A 1 128 ? -16.346 -5.851 -10.640 1.00 54.36 443 A 1 \nATOM 389 O O . GLY A 1 128 ? -15.696 -4.864 -10.280 1.00 50.37 443 A 1 \nATOM 390 N N . PRO A 1 129 ? -16.829 -6.741 -9.765 1.00 56.90 444 A 1 \nATOM 391 C CA . PRO A 1 129 ? -16.606 -6.539 -8.320 1.00 54.22 444 A 1 \nATOM 392 C C . PRO A 1 129 ? -15.141 -6.390 -7.947 1.00 55.94 444 A 1 \nATOM 393 O O . PRO A 1 129 ? -14.788 -5.490 -7.173 1.00 57.77 444 A 1 \nATOM 394 C CB . PRO A 1 129 ? -17.238 -7.792 -7.698 1.00 54.12 444 A 1 \nATOM 395 C CG . PRO A 1 129 ? -18.261 -8.228 -8.693 1.00 56.70 444 A 1 \nATOM 396 C CD . PRO A 1 129 ? -17.697 -7.898 -10.042 1.00 56.59 444 A 1 \nATOM 397 N N . MET A 1 130 ? -14.272 -7.249 -8.477 1.00 55.91 445 A 1 \nATOM 398 C CA . MET A 1 130 ? -12.836 -7.142 -8.263 1.00 56.10 445 A 1 \nATOM 399 C C . MET A 1 130 ? -12.120 -6.528 -9.461 1.00 56.22 445 A 1 \nATOM 400 O O . MET A 1 130 ? -10.912 -6.732 -9.623 1.00 55.36 445 A 1 \nATOM 401 C CB . MET A 1 130 ? -12.243 -8.513 -7.937 1.00 56.80 445 A 1 \nATOM 402 C CG . MET A 1 130 ? -12.824 -9.162 -6.693 1.00 60.98 445 A 1 \nATOM 403 S SD . MET A 1 130 ? -12.519 -8.200 -5.197 1.00 63.22 445 A 1 \nATOM 404 C CE . MET A 1 130 ? -10.729 -8.170 -5.168 1.00 64.72 445 A 1 \nATOM 405 N N . ARG A 1 131 ? -12.845 -5.777 -10.294 1.00 55.02 446 A 1 \nATOM 406 C CA . ARG A 1 131 ? -12.303 -5.191 -11.522 1.00 58.10 446 A 1 \nATOM 407 C C . ARG A 1 131 ? -11.778 -6.272 -12.464 1.00 60.07 446 A 1 \nATOM 408 O O . ARG A 1 131 ? -10.762 -6.094 -13.139 1.00 56.70 446 A 1 \nATOM 409 C CB . ARG A 1 131 ? -11.216 -4.157 -11.218 1.00 56.28 446 A 1 \nATOM 410 C CG . ARG A 1 131 ? -11.710 -2.944 -10.449 1.00 53.86 446 A 1 \nATOM 411 C CD . ARG A 1 131 ? -10.579 -1.963 -10.199 1.00 58.06 446 A 1 \nATOM 412 N NE . ARG A 1 131 ? -9.903 -1.585 -11.436 1.00 65.17 446 A 1 \nATOM 413 C CZ . ARG A 1 131 ? -10.245 -0.538 -12.181 1.00 66.03 446 A 1 \nATOM 414 N NH1 . ARG A 1 131 ? -11.255 0.238 -11.812 1.00 64.27 446 A 1 \nATOM 415 N NH2 . ARG A 1 131 ? -9.575 -0.265 -13.293 1.00 66.49 446 A 1 \nATOM 416 N N . GLU A 1 132 ? -12.486 -7.404 -12.513 1.00 60.61 447 A 1 \nATOM 417 C CA . GLU A 1 132 ? -12.052 -8.525 -13.341 1.00 59.98 447 A 1 \nATOM 418 C C . GLU A 1 132 ? -11.986 -8.131 -14.811 1.00 57.14 447 A 1 \nATOM 419 O O . GLU A 1 132 ? -10.996 -8.408 -15.498 1.00 55.32 447 A 1 \nATOM 420 C CB . GLU A 1 132 ? -12.994 -9.714 -13.144 1.00 61.06 447 A 1 \nATOM 421 C CG . GLU A 1 132 ? -12.873 -10.394 -11.788 1.00 63.60 447 A 1 \nATOM 422 C CD . GLU A 1 132 ? -13.892 -9.887 -10.784 1.00 61.79 447 A 1 \nATOM 423 O OE1 . GLU A 1 132 ? -14.377 -8.749 -10.947 1.00 61.66 447 A 1 \nATOM 424 O OE2 . GLU A 1 132 ? -14.208 -10.629 -9.830 1.00 62.85 447 A 1 \nATOM 425 N N . TRP A 1 133 ? -13.030 -7.474 -15.310 1.00 51.61 448 A 1 \nATOM 426 C CA . TRP A 1 133 ? -13.093 -7.123 -16.722 1.00 57.20 448 A 1 \nATOM 427 C C . TRP A 1 133 ? -12.446 -5.780 -17.024 1.00 63.84 448 A 1 \nATOM 428 O O . TRP A 1 133 ? -11.956 -5.577 -18.141 1.00 70.61 448 A 1 \nATOM 429 C CB . TRP A 1 133 ? -14.550 -7.143 -17.189 1.00 55.09 448 A 1 \nATOM 430 C CG . TRP A 1 133 ? -15.168 -8.491 -16.974 1.00 60.66 448 A 1 \nATOM 431 C CD1 . TRP A 1 133 ? -14.920 -9.626 -17.687 1.00 62.05 448 A 1 \nATOM 432 C CD2 . TRP A 1 133 ? -16.104 -8.856 -15.954 1.00 64.73 448 A 1 \nATOM 433 N NE1 . TRP A 1 133 ? -15.656 -10.671 -17.188 1.00 66.77 448 A 1 \nATOM 434 C CE2 . TRP A 1 133 ? -16.391 -10.225 -16.121 1.00 66.57 448 A 1 \nATOM 435 C CE3 . TRP A 1 133 ? -16.735 -8.158 -14.922 1.00 68.72 448 A 1 \nATOM 436 C CZ2 . TRP A 1 133 ? -17.277 -10.910 -15.292 1.00 66.58 448 A 1 \nATOM 437 C CZ3 . TRP A 1 133 ? -17.618 -8.839 -14.102 1.00 70.05 448 A 1 \nATOM 438 C CH2 . TRP A 1 133 ? -17.882 -10.200 -14.293 1.00 67.74 448 A 1 \nATOM 439 N N . ALA A 1 134 ? -12.415 -4.862 -16.055 1.00 65.84 449 A 1 \nATOM 440 C CA . ALA A 1 134 ? -11.649 -3.635 -16.238 1.00 65.46 449 A 1 \nATOM 441 C C . ALA A 1 134 ? -10.154 -3.918 -16.312 1.00 68.42 449 A 1 \nATOM 442 O O . ALA A 1 134 ? -9.422 -3.198 -17.001 1.00 70.76 449 A 1 \nATOM 443 C CB . ALA A 1 134 ? -11.948 -2.650 -15.107 1.00 58.71 449 A 1 \nATOM 444 N N . ALA A 1 135 ? -9.686 -4.958 -15.619 1.00 66.55 450 A 1 \nATOM 445 C CA . ALA A 1 135 ? -8.272 -5.314 -15.669 1.00 66.80 450 A 1 \nATOM 446 C C . ALA A 1 135 ? -7.928 -6.060 -16.952 1.00 67.56 450 A 1 \nATOM 447 O O . ALA A 1 135 ? -6.829 -5.889 -17.492 1.00 72.26 450 A 1 \nATOM 448 C CB . ALA A 1 135 ? -7.892 -6.154 -14.451 1.00 64.78 450 A 1 \nATOM 449 N N . GLU A 1 136 ? -8.843 -6.898 -17.446 1.00 63.70 451 A 1 \nATOM 450 C CA . GLU A 1 136 ? -8.603 -7.566 -18.721 1.00 67.25 451 A 1 \nATOM 451 C C . GLU A 1 136 ? -8.564 -6.557 -19.861 1.00 67.03 451 A 1 \nATOM 452 O O . GLU A 1 136 ? -7.757 -6.688 -20.789 1.00 71.17 451 A 1 \nATOM 453 C CB . GLU A 1 136 ? -9.668 -8.639 -18.973 1.00 67.37 451 A 1 \nATOM 454 C CG . GLU A 1 136 ? -9.791 -9.070 -20.439 1.00 74.96 451 A 1 \nATOM 455 C CD . GLU A 1 136 ? -10.335 -10.478 -20.610 1.00 80.21 451 A 1 \nATOM 456 O OE1 . GLU A 1 136 ? -9.830 -11.205 -21.496 1.00 88.77 451 A 1 \nATOM 457 O OE2 . GLU A 1 136 ? -11.257 -10.857 -19.856 1.00 76.84 451 A 1 \nATOM 458 N N . LEU A 1 137 ? -9.415 -5.530 -19.798 1.00 62.04 452 A 1 \nATOM 459 C CA . LEU A 1 137 ? -9.389 -4.486 -20.815 1.00 66.29 452 A 1 \nATOM 460 C C . LEU A 1 137 ? -8.087 -3.696 -20.772 1.00 70.14 452 A 1 \nATOM 461 O O . LEU A 1 137 ? -7.612 -3.231 -21.815 1.00 75.95 452 A 1 \nATOM 462 C CB . LEU A 1 137 ? -10.596 -3.564 -20.645 1.00 62.38 452 A 1 \nATOM 463 C CG . LEU A 1 137 ? -11.920 -4.205 -21.076 1.00 61.16 452 A 1 \nATOM 464 C CD1 . LEU A 1 137 ? -13.113 -3.500 -20.451 1.00 57.46 452 A 1 \nATOM 465 C CD2 . LEU A 1 137 ? -12.037 -4.222 -22.592 1.00 62.41 452 A 1 \nATOM 466 N N . LYS A 1 138 ? -7.492 -3.541 -19.587 1.00 69.36 453 A 1 \nATOM 467 C CA . LYS A 1 138 ? -6.170 -2.930 -19.505 1.00 67.88 453 A 1 \nATOM 468 C C . LYS A 1 138 ? -5.092 -3.895 -19.979 1.00 66.87 453 A 1 \nATOM 469 O O . LYS A 1 138 ? -4.146 -3.490 -20.663 1.00 69.20 453 A 1 \nATOM 470 C CB . LYS A 1 138 ? -5.878 -2.473 -18.076 1.00 64.48 453 A 1 \nATOM 471 C CG . LYS A 1 138 ? -4.530 -1.783 -17.933 1.00 69.30 453 A 1 \nATOM 472 C CD . LYS A 1 138 ? -4.142 -1.604 -16.480 1.00 70.41 453 A 1 \nATOM 473 C CE . LYS A 1 138 ? -5.022 -0.573 -15.801 1.00 71.58 453 A 1 \nATOM 474 N NZ . LYS A 1 138 ? -4.641 -0.384 -14.374 1.00 75.16 453 A 1 \nATOM 475 N N . TYR A 1 139 ? -5.213 -5.173 -19.611 1.00 65.87 454 A 1 \nATOM 476 C CA . TYR A 1 139 ? -4.273 -6.178 -20.096 1.00 73.58 454 A 1 \nATOM 477 C C . TYR A 1 139 ? -4.282 -6.257 -21.617 1.00 78.30 454 A 1 \nATOM 478 O O . TYR A 1 139 ? -3.245 -6.537 -22.231 1.00 82.72 454 A 1 \nATOM 479 C CB . TYR A 1 139 ? -4.610 -7.540 -19.480 1.00 71.98 454 A 1 \nATOM 480 C CG . TYR A 1 139 ? -3.658 -8.658 -19.848 1.00 77.73 454 A 1 \nATOM 481 C CD1 . TYR A 1 139 ? -2.587 -8.984 -19.025 1.00 81.25 454 A 1 \nATOM 482 C CD2 . TYR A 1 139 ? -3.839 -9.399 -21.010 1.00 80.50 454 A 1 \nATOM 483 C CE1 . TYR A 1 139 ? -1.718 -10.008 -19.355 1.00 86.40 454 A 1 \nATOM 484 C CE2 . TYR A 1 139 ? -2.975 -10.422 -21.349 1.00 85.93 454 A 1 \nATOM 485 C CZ . TYR A 1 139 ? -1.917 -10.723 -20.519 1.00 90.85 454 A 1 \nATOM 486 O OH . TYR A 1 139 ? -1.056 -11.744 -20.855 1.00 98.14 454 A 1 \nATOM 487 N N . ARG A 1 140 ? -5.433 -5.999 -22.240 1.00 76.02 455 A 1 \nATOM 488 C CA . ARG A 1 140 ? -5.538 -6.077 -23.693 1.00 76.95 455 A 1 \nATOM 489 C C . ARG A 1 140 ? -5.019 -4.809 -24.366 1.00 77.62 455 A 1 \nATOM 490 O O . ARG A 1 140 ? -4.156 -4.877 -25.248 1.00 83.66 455 A 1 \nATOM 491 C CB . ARG A 1 140 ? -6.990 -6.344 -24.099 1.00 71.88 455 A 1 \nATOM 492 C CG . ARG A 1 140 ? -7.476 -7.760 -23.822 1.00 66.48 455 A 1 \nATOM 493 C CD . ARG A 1 140 ? -8.983 -7.860 -24.009 1.00 63.57 455 A 1 \nATOM 494 N NE . ARG A 1 140 ? -9.441 -9.241 -24.136 1.00 66.31 455 A 1 \nATOM 495 C CZ . ARG A 1 140 ? -9.530 -9.896 -25.289 1.00 68.36 455 A 1 \nATOM 496 N NH1 . ARG A 1 140 ? -9.185 -9.299 -26.422 1.00 75.42 455 A 1 \nATOM 497 N NH2 . ARG A 1 140 ? -9.961 -11.150 -25.312 1.00 65.08 455 A 1 \nATOM 498 N N . THR A 1 141 ? -5.525 -3.641 -23.961 1.00 72.07 456 A 1 \nATOM 499 C CA . THR A 1 141 ? -5.258 -2.394 -24.669 1.00 78.10 456 A 1 \nATOM 500 C C . THR A 1 141 ? -4.336 -1.432 -23.937 1.00 83.12 456 A 1 \nATOM 501 O O . THR A 1 141 ? -3.928 -0.427 -24.530 1.00 89.51 456 A 1 \nATOM 502 C CB . THR A 1 141 ? -6.570 -1.660 -24.957 1.00 78.46 456 A 1 \nATOM 503 O OG1 . THR A 1 141 ? -7.138 -1.209 -23.721 1.00 78.05 456 A 1 \nATOM 504 C CG2 . THR A 1 141 ? -7.524 -2.575 -25.637 1.00 77.83 456 A 1 \nATOM 505 N N . GLY A 1 142 ? -4.021 -1.681 -22.673 1.00 82.71 457 A 1 \nATOM 506 C CA . GLY A 1 142 ? -3.245 -0.728 -21.914 1.00 84.06 457 A 1 \nATOM 507 C C . GLY A 1 142 ? -4.011 0.484 -21.431 1.00 83.35 457 A 1 \nATOM 508 O O . GLY A 1 142 ? -3.404 1.373 -20.822 1.00 86.86 457 A 1 \nATOM 509 N N . VAL A 1 143 ? -5.318 0.556 -21.680 1.00 78.84 458 A 1 \nATOM 510 C CA . VAL A 1 143 ? -6.125 1.668 -21.192 1.00 81.21 458 A 1 \nATOM 511 C C . VAL A 1 143 ? -6.529 1.397 -19.749 1.00 83.57 458 A 1 \nATOM 512 O O . VAL A 1 143 ? -6.654 0.245 -19.319 1.00 85.71 458 A 1 \nATOM 513 C CB . VAL A 1 143 ? -7.358 1.887 -22.091 1.00 83.88 458 A 1 \nATOM 514 C CG1 . VAL A 1 143 ? -8.456 0.916 -21.722 1.00 79.65 458 A 1 \nATOM 515 C CG2 . VAL A 1 143 ? -7.862 3.314 -21.972 1.00 86.35 458 A 1 \nATOM 516 N N . HIS A 1 144 ? -6.729 2.464 -18.986 1.00 81.66 459 A 1 \nATOM 517 C CA . HIS A 1 144 ? -7.162 2.360 -17.600 1.00 73.93 459 A 1 \nATOM 518 C C . HIS A 1 144 ? -8.621 2.777 -17.497 1.00 70.83 459 A 1 \nATOM 519 O O . HIS A 1 144 ? -8.996 3.860 -17.959 1.00 75.52 459 A 1 \nATOM 520 C CB . HIS A 1 144 ? -6.297 3.223 -16.682 1.00 74.93 459 A 1 \nATOM 521 C CG . HIS A 1 144 ? -6.689 3.143 -15.241 1.00 74.75 459 A 1 \nATOM 522 N ND1 . HIS A 1 144 ? -6.211 2.168 -14.392 1.00 75.18 459 A 1 \nATOM 523 C CD2 . HIS A 1 144 ? -7.523 3.910 -14.500 1.00 73.26 459 A 1 \nATOM 524 C CE1 . HIS A 1 144 ? -6.728 2.341 -13.189 1.00 73.21 459 A 1 \nATOM 525 N NE2 . HIS A 1 144 ? -7.528 3.391 -13.228 1.00 72.44 459 A 1 \nATOM 526 N N . ILE A 1 145 ? -9.438 1.919 -16.895 1.00 67.86 460 A 1 \nATOM 527 C CA . ILE A 1 145 ? -10.861 2.175 -16.718 1.00 70.49 460 A 1 \nATOM 528 C C . ILE A 1 145 ? -11.096 2.664 -15.297 1.00 73.51 460 A 1 \nATOM 529 O O . ILE A 1 145 ? -10.642 2.035 -14.332 1.00 75.56 460 A 1 \nATOM 530 C CB . ILE A 1 145 ? -11.698 0.917 -17.008 1.00 69.48 460 A 1 \nATOM 531 C CG1 . ILE A 1 145 ? -11.448 0.425 -18.434 1.00 75.21 460 A 1 \nATOM 532 C CG2 . ILE A 1 145 ? -13.171 1.212 -16.806 1.00 64.49 460 A 1 \nATOM 533 C CD1 . ILE A 1 145 ? -12.620 -0.319 -19.037 1.00 76.75 460 A 1 \nATOM 534 N N . GLU A 1 146 ? -11.803 3.784 -15.167 1.00 72.32 461 A 1 \nATOM 535 C CA . GLU A 1 146 ? -12.176 4.338 -13.872 1.00 70.62 461 A 1 \nATOM 536 C C . GLU A 1 146 ? -13.672 4.609 -13.870 1.00 68.12 461 A 1 \nATOM 537 O O . GLU A 1 146 ? -14.194 5.231 -14.801 1.00 69.71 461 A 1 \nATOM 538 C CB . GLU A 1 146 ? -11.400 5.625 -13.569 1.00 74.73 461 A 1 \nATOM 539 C CG . GLU A 1 146 ? -11.535 6.107 -12.135 1.00 78.38 461 A 1 \nATOM 540 C CD . GLU A 1 146 ? -10.878 5.169 -11.143 1.00 80.53 461 A 1 \nATOM 541 O OE1 . GLU A 1 146 ? -9.772 4.672 -11.440 1.00 81.61 461 A 1 \nATOM 542 O OE2 . GLU A 1 146 ? -11.469 4.928 -10.069 1.00 80.32 461 A 1 \nATOM 543 N N . LEU A 1 147 ? -14.359 4.138 -12.831 1.00 62.13 462 A 1 \nATOM 544 C CA . LEU A 1 147 ? -15.802 4.289 -12.714 1.00 61.50 462 A 1 \nATOM 545 C C . LEU A 1 147 ? -16.151 4.980 -11.404 1.00 62.97 462 A 1 \nATOM 546 O O . LEU A 1 147 ? -15.477 4.800 -10.385 1.00 65.90 462 A 1 \nATOM 547 C CB . LEU A 1 147 ? -16.527 2.936 -12.787 1.00 57.56 462 A 1 \nATOM 548 C CG . LEU A 1 147 ? -16.332 2.087 -14.044 1.00 66.79 462 A 1 \nATOM 549 C CD1 . LEU A 1 147 ? -15.090 1.231 -13.916 1.00 66.33 462 A 1 \nATOM 550 C CD2 . LEU A 1 147 ? -17.548 1.219 -14.301 1.00 68.38 462 A 1 \nATOM 551 N N . GLU A 1 148 ? -17.224 5.770 -11.441 1.00 58.62 463 A 1 \nATOM 552 C CA . GLU A 1 148 ? -17.703 6.486 -10.278 1.00 58.47 463 A 1 \nATOM 553 C C . GLU A 1 148 ? -19.206 6.662 -10.421 1.00 59.63 463 A 1 \nATOM 554 O O . GLU A 1 148 ? -19.692 6.869 -11.543 1.00 54.89 463 A 1 \nATOM 555 C CB . GLU A 1 148 ? -17.028 7.854 -10.127 1.00 58.32 463 A 1 \nATOM 556 C CG . GLU A 1 148 ? -17.225 8.779 -11.322 1.00 64.21 463 A 1 \nATOM 557 C CD . GLU A 1 148 ? -16.592 10.143 -11.124 1.00 71.62 463 A 1 \nATOM 558 O OE1 . GLU A 1 148 ? -15.653 10.251 -10.308 1.00 74.29 463 A 1 \nATOM 559 O OE2 . GLU A 1 148 ? -17.034 11.108 -11.785 1.00 73.98 463 A 1 \nATOM 560 N N . PRO A 1 149 ? -19.963 6.563 -9.331 1.00 59.77 464 A 1 \nATOM 561 C CA . PRO A 1 149 ? -21.379 6.941 -9.393 1.00 59.01 464 A 1 \nATOM 562 C C . PRO A 1 149 ? -21.504 8.414 -9.749 1.00 62.50 464 A 1 \nATOM 563 O O . PRO A 1 149 ? -20.826 9.267 -9.174 1.00 66.22 464 A 1 \nATOM 564 C CB . PRO A 1 149 ? -21.891 6.648 -7.976 1.00 52.18 464 A 1 \nATOM 565 C CG . PRO A 1 149 ? -20.890 5.698 -7.391 1.00 51.37 464 A 1 \nATOM 566 C CD . PRO A 1 149 ? -19.576 6.071 -7.999 1.00 53.84 464 A 1 \nATOM 567 N N . THR A 1 150 ? -22.367 8.708 -10.723 1.00 61.81 465 A 1 \nATOM 568 C CA . THR A 1 150 ? -22.488 10.080 -11.204 1.00 60.04 465 A 1 \nATOM 569 C C . THR A 1 150 ? -23.015 11.000 -10.111 1.00 59.78 465 A 1 \nATOM 570 O O . THR A 1 150 ? -22.466 12.082 -9.874 1.00 62.42 465 A 1 \nATOM 571 C CB . THR A 1 150 ? -23.391 10.131 -12.438 1.00 59.58 465 A 1 \nATOM 572 O OG1 . THR A 1 150 ? -23.159 8.972 -13.248 1.00 58.92 465 A 1 \nATOM 573 C CG2 . THR A 1 150 ? -23.095 11.377 -13.257 1.00 58.98 465 A 1 \nATOM 574 N N . TYR A 1 151 ? -24.088 10.587 -9.432 1.00 58.63 466 A 1 \nATOM 575 C CA . TYR A 1 151 ? -24.674 11.333 -8.320 1.00 63.15 466 A 1 \nATOM 576 C C . TYR A 1 151 ? -24.725 10.404 -7.111 1.00 57.34 466 A 1 \nATOM 577 O O . TYR A 1 151 ? -25.790 9.865 -6.770 1.00 56.01 466 A 1 \nATOM 578 C CB . TYR A 1 151 ? -26.060 11.872 -8.677 1.00 70.78 466 A 1 \nATOM 579 C CG . TYR A 1 151 ? -26.178 12.378 -10.102 1.00 77.62 466 A 1 \nATOM 580 C CD1 . TYR A 1 151 ? -25.239 13.255 -10.634 1.00 80.47 466 A 1 \nATOM 581 C CD2 . TYR A 1 151 ? -27.231 11.978 -10.915 1.00 80.03 466 A 1 \nATOM 582 C CE1 . TYR A 1 151 ? -25.342 13.714 -11.934 1.00 81.39 466 A 1 \nATOM 583 C CE2 . TYR A 1 151 ? -27.344 12.435 -12.217 1.00 80.98 466 A 1 \nATOM 584 C CZ . TYR A 1 151 ? -26.396 13.302 -12.721 1.00 78.42 466 A 1 \nATOM 585 O OH . TYR A 1 151 ? -26.502 13.760 -14.015 1.00 72.52 466 A 1 \nATOM 586 N N . PRO A 1 152 ? -23.592 10.198 -6.431 1.00 54.40 467 A 1 \nATOM 587 C CA . PRO A 1 152 ? -23.550 9.196 -5.352 1.00 60.24 467 A 1 \nATOM 588 C C . PRO A 1 152 ? -24.442 9.517 -4.165 1.00 67.41 467 A 1 \nATOM 589 O O . PRO A 1 152 ? -24.730 8.611 -3.373 1.00 74.37 467 A 1 \nATOM 590 C CB . PRO A 1 152 ? -22.070 9.185 -4.942 1.00 57.10 467 A 1 \nATOM 591 C CG . PRO A 1 152 ? -21.555 10.525 -5.353 1.00 54.98 467 A 1 \nATOM 592 C CD . PRO A 1 152 ? -22.293 10.867 -6.616 1.00 54.85 467 A 1 \nATOM 593 N N . GLU A 1 153 ? -24.887 10.765 -4.009 1.00 68.81 468 A 1 \nATOM 594 C CA . GLU A 1 153 ? -25.757 11.095 -2.886 1.00 73.37 468 A 1 \nATOM 595 C C . GLU A 1 153 ? -27.104 10.393 -2.993 1.00 72.65 468 A 1 \nATOM 596 O O . GLU A 1 153 ? -27.764 10.164 -1.973 1.00 75.63 468 A 1 \nATOM 597 C CB . GLU A 1 153 ? -25.946 12.607 -2.796 1.00 81.99 468 A 1 \nATOM 598 C CG . GLU A 1 153 ? -24.779 13.401 -3.354 1.00 91.49 468 A 1 \nATOM 599 C CD . GLU A 1 153 ? -23.684 13.634 -2.332 1.00 99.54 468 A 1 \nATOM 600 O OE1 . GLU A 1 153 ? -22.681 14.293 -2.680 1.00 103.32 468 A 1 \nATOM 601 O OE2 . GLU A 1 153 ? -23.824 13.161 -1.184 1.00 103.04 468 A 1 \nATOM 602 N N . ARG A 1 154 ? -27.527 10.044 -4.211 1.00 67.09 469 A 1 \nATOM 603 C CA . ARG A 1 154 ? -28.763 9.293 -4.383 1.00 60.91 469 A 1 \nATOM 604 C C . ARG A 1 154 ? -28.668 7.891 -3.801 1.00 52.95 469 A 1 \nATOM 605 O O . ARG A 1 154 ? -29.700 7.302 -3.463 1.00 56.50 469 A 1 \nATOM 606 C CB . ARG A 1 154 ? -29.130 9.216 -5.865 1.00 61.25 469 A 1 \nATOM 607 C CG . ARG A 1 154 ? -29.466 10.558 -6.492 1.00 64.70 469 A 1 \nATOM 608 C CD . ARG A 1 154 ? -29.989 10.384 -7.907 1.00 66.03 469 A 1 \nATOM 609 N NE . ARG A 1 154 ? -31.197 9.564 -7.947 1.00 70.68 469 A 1 \nATOM 610 C CZ . ARG A 1 154 ? -31.806 9.185 -9.066 1.00 75.11 469 A 1 \nATOM 611 N NH1 . ARG A 1 154 ? -31.320 9.551 -10.245 1.00 75.72 469 A 1 \nATOM 612 N NH2 . ARG A 1 154 ? -32.900 8.438 -9.008 1.00 76.75 469 A 1 \nATOM 613 N N . LEU A 1 155 ? -27.457 7.347 -3.677 1.00 45.59 470 A 1 \nATOM 614 C CA . LEU A 1 155 ? -27.266 6.037 -3.072 1.00 49.72 470 A 1 \nATOM 615 C C . LEU A 1 155 ? -27.328 6.071 -1.551 1.00 47.82 470 A 1 \nATOM 616 O O . LEU A 1 155 ? -27.285 5.008 -0.923 1.00 49.22 470 A 1 \nATOM 617 C CB . LEU A 1 155 ? -25.931 5.442 -3.524 1.00 45.28 470 A 1 \nATOM 618 C CG . LEU A 1 155 ? -25.754 5.349 -5.041 1.00 49.83 470 A 1 \nATOM 619 C CD1 . LEU A 1 155 ? -24.283 5.244 -5.405 1.00 45.20 470 A 1 \nATOM 620 C CD2 . LEU A 1 155 ? -26.536 4.173 -5.600 1.00 50.60 470 A 1 \nATOM 621 N N . SER A 1 156 ? -27.420 7.255 -0.948 1.00 45.28 471 A 1 \nATOM 622 C CA . SER A 1 156 ? -27.674 7.390 0.479 1.00 56.68 471 A 1 \nATOM 623 C C . SER A 1 156 ? -29.144 7.629 0.787 1.00 62.57 471 A 1 \nATOM 624 O O . SER A 1 156 ? -29.506 7.761 1.961 1.00 68.22 471 A 1 \nATOM 625 C CB . SER A 1 156 ? -26.835 8.531 1.069 1.00 58.56 471 A 1 \nATOM 626 O OG . SER A 1 156 ? -25.479 8.150 1.220 1.00 57.42 471 A 1 \nATOM 627 N N . GLU A 1 157 ? -29.995 7.689 -0.233 1.00 61.12 472 A 1 \nATOM 628 C CA . GLU A 1 157 ? -31.414 7.943 -0.048 1.00 65.73 472 A 1 \nATOM 629 C C . GLU A 1 157 ? -32.184 6.633 0.063 1.00 72.39 472 A 1 \nATOM 630 O O . GLU A 1 157 ? -31.794 5.608 -0.503 1.00 74.81 472 A 1 \nATOM 631 C CB . GLU A 1 157 ? -31.969 8.775 -1.206 1.00 63.21 472 A 1 \nATOM 632 C CG . GLU A 1 157 ? -31.140 10.003 -1.540 1.00 62.89 472 A 1 \nATOM 633 C CD . GLU A 1 157 ? -31.486 11.192 -0.667 1.00 73.29 472 A 1 \nATOM 634 O OE1 . GLU A 1 157 ? -30.652 12.115 -0.557 1.00 76.39 472 A 1 \nATOM 635 O OE2 . GLU A 1 157 ? -32.594 11.203 -0.089 1.00 78.82 472 A 1 \nATOM 636 N N . ASN A 1 158 ? -33.289 6.678 0.803 1.00 79.34 473 A 1 \nATOM 637 C CA . ASN A 1 158 ? -34.162 5.526 0.987 1.00 80.77 473 A 1 \nATOM 638 C C . ASN A 1 158 ? -35.361 5.538 0.050 1.00 82.77 473 A 1 \nATOM 639 O O . ASN A 1 158 ? -35.742 4.486 -0.472 1.00 84.57 473 A 1 \nATOM 640 C CB . ASN A 1 158 ? -34.655 5.460 2.436 1.00 84.18 473 A 1 \nATOM 641 C CG . ASN A 1 158 ? -33.568 5.791 3.434 1.00 84.35 473 A 1 \nATOM 642 O OD1 . ASN A 1 158 ? -32.469 5.242 3.373 1.00 85.88 473 A 1 \nATOM 643 N ND2 . ASN A 1 158 ? -33.867 6.695 4.358 1.00 86.62 473 A 1 \nATOM 644 N N . ALA A 1 159 ? -35.961 6.702 -0.175 1.00 84.88 474 A 1 \nATOM 645 C CA . ALA A 1 159 ? -37.120 6.815 -1.052 1.00 85.61 474 A 1 \nATOM 646 C C . ALA A 1 159 ? -36.779 7.603 -2.313 1.00 82.97 474 A 1 \nATOM 647 O O . ALA A 1 159 ? -37.563 7.643 -3.261 1.00 85.61 474 A 1 \nATOM 648 C CB . ALA A 1 159 ? -38.280 7.469 -0.315 1.00 87.98 474 A 1 \nATOM 649 N N . THR A 1 171 ? -37.336 10.026 -10.805 1.00 132.56 486 A 1 \nATOM 650 C CA . THR A 1 171 ? -37.000 11.362 -10.327 1.00 134.18 486 A 1 \nATOM 651 C C . THR A 1 171 ? -35.490 11.573 -10.328 1.00 130.83 486 A 1 \nATOM 652 O O . THR A 1 171 ? -34.723 10.635 -10.105 1.00 129.12 486 A 1 \nATOM 653 C CB . THR A 1 171 ? -37.550 11.611 -8.910 1.00 136.90 486 A 1 \nATOM 654 O OG1 . THR A 1 171 ? -36.833 10.805 -7.966 1.00 135.37 486 A 1 \nATOM 655 C CG2 . THR A 1 171 ? -39.030 11.264 -8.846 1.00 139.75 486 A 1 \nATOM 656 N N . GLN A 1 172 ? -35.068 12.815 -10.580 1.00 130.67 487 A 1 \nATOM 657 C CA . GLN A 1 172 ? -33.645 13.120 -10.658 1.00 126.54 487 A 1 \nATOM 658 C C . GLN A 1 172 ? -32.936 12.955 -9.320 1.00 122.59 487 A 1 \nATOM 659 O O . GLN A 1 172 ? -31.713 12.783 -9.302 1.00 121.52 487 A 1 \nATOM 660 C CB . GLN A 1 172 ? -33.438 14.541 -11.187 1.00 128.76 487 A 1 \nATOM 661 C CG . GLN A 1 172 ? -33.146 14.609 -12.678 1.00 128.19 487 A 1 \nATOM 662 C CD . GLN A 1 172 ? -34.346 15.064 -13.486 1.00 130.84 487 A 1 \nATOM 663 O OE1 . GLN A 1 172 ? -35.183 15.826 -13.001 1.00 133.11 487 A 1 \nATOM 664 N NE2 . GLN A 1 172 ? -34.438 14.596 -14.726 1.00 130.45 487 A 1 \nATOM 665 N N . TRP A 1 173 ? -33.666 13.003 -8.207 1.00 119.81 488 A 1 \nATOM 666 C CA . TRP A 1 173 ? -33.074 12.772 -6.898 1.00 114.46 488 A 1 \nATOM 667 C C . TRP A 1 173 ? -34.008 11.916 -6.059 1.00 109.04 488 A 1 \nATOM 668 O O . TRP A 1 173 ? -35.228 11.928 -6.242 1.00 113.68 488 A 1 \nATOM 669 C CB . TRP A 1 173 ? -32.747 14.084 -6.180 1.00 117.48 488 A 1 \nATOM 670 C CG . TRP A 1 173 ? -31.483 14.666 -6.696 1.00 116.76 488 A 1 \nATOM 671 C CD1 . TRP A 1 173 ? -30.233 14.130 -6.593 1.00 114.29 488 A 1 \nATOM 672 C CD2 . TRP A 1 173 ? -31.342 15.876 -7.444 1.00 118.12 488 A 1 \nATOM 673 N NE1 . TRP A 1 173 ? -29.318 14.941 -7.214 1.00 114.20 488 A 1 \nATOM 674 C CE2 . TRP A 1 173 ? -29.975 16.021 -7.745 1.00 116.68 488 A 1 \nATOM 675 C CE3 . TRP A 1 173 ? -32.238 16.857 -7.879 1.00 120.21 488 A 1 \nATOM 676 C CZ2 . TRP A 1 173 ? -29.484 17.101 -8.464 1.00 117.20 488 A 1 \nATOM 677 C CZ3 . TRP A 1 173 ? -31.746 17.933 -8.590 1.00 120.68 488 A 1 \nATOM 678 C CH2 . TRP A 1 173 ? -30.383 18.048 -8.875 1.00 119.30 488 A 1 \nATOM 679 N N . GLY A 1 174 ? -33.413 11.180 -5.134 1.00 98.13 489 A 1 \nATOM 680 C CA . GLY A 1 174 ? -34.079 10.118 -4.413 1.00 91.64 489 A 1 \nATOM 681 C C . GLY A 1 174 ? -33.383 8.792 -4.641 1.00 85.30 489 A 1 \nATOM 682 O O . GLY A 1 174 ? -32.391 8.691 -5.361 1.00 83.77 489 A 1 \nATOM 683 N N . ALA A 1 175 ? -33.929 7.761 -4.005 1.00 83.18 490 A 1 \nATOM 684 C CA . ALA A 1 175 ? -33.340 6.435 -4.109 1.00 76.73 490 A 1 \nATOM 685 C C . ALA A 1 175 ? -33.528 5.872 -5.512 1.00 75.79 490 A 1 \nATOM 686 O O . ALA A 1 175 ? -34.571 6.064 -6.143 1.00 80.38 490 A 1 \nATOM 687 C CB . ALA A 1 175 ? -33.961 5.493 -3.080 1.00 74.36 490 A 1 \nATOM 688 N N . TYR A 1 176 ? -32.504 5.178 -6.002 1.00 68.53 491 A 1 \nATOM 689 C CA . TYR A 1 176 ? -32.614 4.494 -7.280 1.00 63.60 491 A 1 \nATOM 690 C C . TYR A 1 176 ? -33.583 3.324 -7.167 1.00 72.25 491 A 1 \nATOM 691 O O . TYR A 1 176 ? -33.700 2.684 -6.118 1.00 74.88 491 A 1 \nATOM 692 C CB . TYR A 1 176 ? -31.246 3.993 -7.743 1.00 54.72 491 A 1 \nATOM 693 C CG . TYR A 1 176 ? -30.340 5.068 -8.300 1.00 56.98 491 A 1 \nATOM 694 C CD1 . TYR A 1 176 ? -30.611 5.669 -9.524 1.00 60.83 491 A 1 \nATOM 695 C CD2 . TYR A 1 176 ? -29.208 5.475 -7.607 1.00 55.00 491 A 1 \nATOM 696 C CE1 . TYR A 1 176 ? -29.780 6.651 -10.038 1.00 60.90 491 A 1 \nATOM 697 C CE2 . TYR A 1 176 ? -28.373 6.455 -8.111 1.00 58.26 491 A 1 \nATOM 698 C CZ . TYR A 1 176 ? -28.663 7.039 -9.326 1.00 62.44 491 A 1 \nATOM 699 O OH . TYR A 1 176 ? -27.831 8.014 -9.828 1.00 63.10 491 A 1 \nATOM 700 N N . GLU A 1 177 ? -34.289 3.050 -8.264 1.00 78.50 492 A 1 \nATOM 701 C CA . GLU A 1 177 ? -35.211 1.919 -8.287 1.00 81.87 492 A 1 \nATOM 702 C C . GLU A 1 177 ? -34.461 0.606 -8.101 1.00 74.78 492 A 1 \nATOM 703 O O . GLU A 1 177 ? -34.741 -0.162 -7.173 1.00 74.87 492 A 1 \nATOM 704 C CB . GLU A 1 177 ? -36.003 1.914 -9.596 1.00 88.06 492 A 1 \nATOM 705 C CG . GLU A 1 177 ? -37.159 2.902 -9.631 1.00 95.62 492 A 1 \nATOM 706 C CD . GLU A 1 177 ? -38.340 2.452 -8.792 1.00 102.92 492 A 1 \nATOM 707 O OE1 . GLU A 1 177 ? -38.368 1.272 -8.383 1.00 104.72 492 A 1 \nATOM 708 O OE2 . GLU A 1 177 ? -39.241 3.280 -8.542 1.00 107.72 492 A 1 \nATOM 709 N N . THR A 1 178 ? -33.498 0.333 -8.978 1.00 67.87 493 A 1 \nATOM 710 C CA . THR A 1 178 ? -32.674 -0.865 -8.917 1.00 63.89 493 A 1 \nATOM 711 C C . THR A 1 178 ? -31.212 -0.469 -9.077 1.00 61.66 493 A 1 \nATOM 712 O O . THR A 1 178 ? -30.880 0.702 -9.285 1.00 62.92 493 A 1 \nATOM 713 C CB . THR A 1 178 ? -33.074 -1.880 -9.997 1.00 68.25 493 A 1 \nATOM 714 O OG1 . THR A 1 178 ? -32.855 -1.310 -11.295 1.00 69.68 493 A 1 \nATOM 715 C CG2 . THR A 1 178 ? -34.539 -2.274 -9.857 1.00 69.57 493 A 1 \nATOM 716 N N . ALA A 1 179 ? -30.328 -1.465 -8.982 1.00 59.80 494 A 1 \nATOM 717 C CA . ALA A 1 179 ? -28.908 -1.210 -9.201 1.00 56.01 494 A 1 \nATOM 718 C C . ALA A 1 179 ? -28.621 -0.906 -10.667 1.00 60.71 494 A 1 \nATOM 719 O O . ALA A 1 179 ? -27.752 -0.082 -10.976 1.00 60.25 494 A 1 \nATOM 720 C CB . ALA A 1 179 ? -28.078 -2.402 -8.727 1.00 48.15 494 A 1 \nATOM 721 N N . ASP A 1 180 ? -29.340 -1.562 -11.584 1.00 62.48 495 A 1 \nATOM 722 C CA . ASP A 1 180 ? -29.148 -1.309 -13.010 1.00 63.25 495 A 1 \nATOM 723 C C . ASP A 1 180 ? -29.353 0.160 -13.355 1.00 63.44 495 A 1 \nATOM 724 O O . ASP A 1 180 ? -28.709 0.679 -14.273 1.00 64.89 495 A 1 \nATOM 725 C CB . ASP A 1 180 ? -30.104 -2.175 -13.833 1.00 61.48 495 A 1 \nATOM 726 N N . ASP A 1 181 ? -30.235 0.843 -12.626 1.00 64.81 496 A 1 \nATOM 727 C CA . ASP A 1 181 ? -30.568 2.236 -12.887 1.00 68.97 496 A 1 \nATOM 728 C C . ASP A 1 181 ? -29.531 3.218 -12.351 1.00 66.18 496 A 1 \nATOM 729 O O . ASP A 1 181 ? -29.648 4.419 -12.616 1.00 67.68 496 A 1 \nATOM 730 C CB . ASP A 1 181 ? -31.939 2.551 -12.281 1.00 78.27 496 A 1 \nATOM 731 C CG . ASP A 1 181 ? -32.536 3.834 -12.815 1.00 87.47 496 A 1 \nATOM 732 O OD1 . ASP A 1 181 ? -32.273 4.170 -13.988 1.00 90.29 496 A 1 \nATOM 733 O OD2 . ASP A 1 181 ? -33.269 4.508 -12.060 1.00 91.64 496 A 1 \nATOM 734 N N . VAL A 1 182 ? -28.524 2.746 -11.618 1.00 59.19 497 A 1 \nATOM 735 C CA . VAL A 1 182 ? -27.546 3.641 -11.007 1.00 54.91 497 A 1 \nATOM 736 C C . VAL A 1 182 ? -26.708 4.295 -12.099 1.00 61.08 497 A 1 \nATOM 737 O O . VAL A 1 182 ? -26.061 3.610 -12.900 1.00 65.15 497 A 1 \nATOM 738 C CB . VAL A 1 182 ? -26.659 2.886 -10.010 1.00 50.35 497 A 1 \nATOM 739 C CG1 . VAL A 1 182 ? -25.485 3.754 -9.582 1.00 48.84 497 A 1 \nATOM 740 C CG2 . VAL A 1 182 ? -27.474 2.447 -8.804 1.00 50.84 497 A 1 \nATOM 741 N N . ASP A 1 183 ? -26.711 5.627 -12.128 1.00 58.44 498 A 1 \nATOM 742 C CA . ASP A 1 183 ? -25.898 6.361 -13.090 1.00 55.02 498 A 1 \nATOM 743 C C . ASP A 1 183 ? -24.419 6.203 -12.761 1.00 56.26 498 A 1 \nATOM 744 O O . ASP A 1 183 ? -23.988 6.474 -11.635 1.00 53.99 498 A 1 \nATOM 745 C CB . ASP A 1 183 ? -26.280 7.840 -13.091 1.00 51.47 498 A 1 \nATOM 746 C CG . ASP A 1 183 ? -27.733 8.067 -13.455 1.00 57.63 498 A 1 \nATOM 747 O OD1 . ASP A 1 183 ? -28.103 7.816 -14.622 1.00 60.65 498 A 1 \nATOM 748 O OD2 . ASP A 1 183 ? -28.505 8.500 -12.572 1.00 59.72 498 A 1 \nATOM 749 N N . ILE A 1 184 ? -23.640 5.768 -13.749 1.00 52.92 499 A 1 \nATOM 750 C CA . ILE A 1 184 ? -22.209 5.546 -13.592 1.00 46.82 499 A 1 \nATOM 751 C C . ILE A 1 184 ? -21.477 6.289 -14.700 1.00 54.37 499 A 1 \nATOM 752 O O . ILE A 1 184 ? -21.885 6.246 -15.867 1.00 56.31 499 A 1 \nATOM 753 C CB . ILE A 1 184 ? -21.859 4.044 -13.620 1.00 45.72 499 A 1 \nATOM 754 C CG1 . ILE A 1 184 ? -22.562 3.309 -12.475 1.00 48.35 499 A 1 \nATOM 755 C CG2 . ILE A 1 184 ? -20.353 3.843 -13.541 1.00 47.97 499 A 1 \nATOM 756 C CD1 . ILE A 1 184 ? -22.007 3.636 -11.103 1.00 42.68 499 A 1 \nATOM 757 N N . THR A 1 185 ? -20.397 6.973 -14.334 1.00 53.05 500 A 1 \nATOM 758 C CA . THR A 1 185 ? -19.550 7.694 -15.274 1.00 54.57 500 A 1 \nATOM 759 C C . THR A 1 185 ? -18.225 6.953 -15.398 1.00 58.31 500 A 1 \nATOM 760 O O . THR A 1 185 ? -17.510 6.786 -14.404 1.00 60.74 500 A 1 \nATOM 761 C CB . THR A 1 185 ? -19.322 9.133 -14.811 1.00 59.82 500 A 1 \nATOM 762 O OG1 . THR A 1 185 ? -20.585 9.763 -14.566 1.00 63.61 500 A 1 \nATOM 763 C CG2 . THR A 1 185 ? -18.568 9.920 -15.870 1.00 61.01 500 A 1 \nATOM 764 N N . VAL A 1 186 ? -17.904 6.509 -16.613 1.00 60.04 501 A 1 \nATOM 765 C CA . VAL A 1 186 ? -16.704 5.721 -16.875 1.00 58.50 501 A 1 \nATOM 766 C C . VAL A 1 186 ? -15.663 6.601 -17.551 1.00 59.16 501 A 1 \nATOM 767 O O . VAL A 1 186 ? -15.977 7.358 -18.479 1.00 63.47 501 A 1 \nATOM 768 C CB . VAL A 1 186 ? -17.026 4.485 -17.738 1.00 56.70 501 A 1 \nATOM 769 C CG1 . VAL A 1 186 ? -15.784 3.623 -17.922 1.00 55.82 501 A 1 \nATOM 770 C CG2 . VAL A 1 186 ? -18.152 3.678 -17.109 1.00 49.60 501 A 1 \nATOM 771 N N . TYR A 1 187 ? -14.420 6.501 -17.086 1.00 58.13 502 A 1 \nATOM 772 C CA . TYR A 1 187 ? -13.304 7.265 -17.622 1.00 61.68 502 A 1 \nATOM 773 C C . TYR A 1 187 ? -12.259 6.313 -18.188 1.00 63.62 502 A 1 \nATOM 774 O O . TYR A 1 187 ? -11.993 5.255 -17.610 1.00 59.90 502 A 1 \nATOM 775 C CB . TYR A 1 187 ? -12.672 8.154 -16.544 1.00 64.55 502 A 1 \nATOM 776 C CG . TYR A 1 187 ? -13.561 9.272 -16.046 1.00 66.36 502 A 1 \nATOM 777 C CD1 . TYR A 1 187 ? -13.469 10.550 -16.583 1.00 67.81 502 A 1 \nATOM 778 C CD2 . TYR A 1 187 ? -14.485 9.052 -15.032 1.00 62.18 502 A 1 \nATOM 779 C CE1 . TYR A 1 187 ? -14.276 11.576 -16.128 1.00 70.95 502 A 1 \nATOM 780 C CE2 . TYR A 1 187 ? -15.296 10.072 -14.571 1.00 63.85 502 A 1 \nATOM 781 C CZ . TYR A 1 187 ? -15.188 11.331 -15.122 1.00 69.99 502 A 1 \nATOM 782 O OH . TYR A 1 187 ? -15.994 12.348 -14.666 1.00 74.21 502 A 1 \nATOM 783 N N . LEU A 1 188 ? -11.667 6.695 -19.318 1.00 71.26 503 A 1 \nATOM 784 C CA . LEU A 1 188 ? -10.675 5.884 -20.012 1.00 73.54 503 A 1 \nATOM 785 C C . LEU A 1 188 ? -9.396 6.693 -20.168 1.00 76.55 503 A 1 \nATOM 786 O O . LEU A 1 188 ? -9.445 7.857 -20.572 1.00 79.42 503 A 1 \nATOM 787 C CB . LEU A 1 188 ? -11.194 5.436 -21.383 1.00 73.52 503 A 1 \nATOM 788 C CG . LEU A 1 188 ? -12.304 4.380 -21.392 1.00 72.50 503 A 1 \nATOM 789 C CD1 . LEU A 1 188 ? -12.058 3.342 -20.315 1.00 69.40 503 A 1 \nATOM 790 C CD2 . LEU A 1 188 ? -13.682 5.009 -21.226 1.00 72.12 503 A 1 \nATOM 791 N N . PHE A 1 189 ? -8.255 6.080 -19.852 1.00 76.05 504 A 1 \nATOM 792 C CA . PHE A 1 189 ? -6.975 6.780 -19.826 1.00 79.62 504 A 1 \nATOM 793 C C . PHE A 1 189 ? -5.952 6.009 -20.646 1.00 84.49 504 A 1 \nATOM 794 O O . PHE A 1 189 ? -5.650 4.853 -20.337 1.00 88.12 504 A 1 \nATOM 795 C CB . PHE A 1 189 ? -6.472 6.961 -18.390 1.00 76.40 504 A 1 \nATOM 796 C CG . PHE A 1 189 ? -7.416 7.723 -17.507 1.00 73.41 504 A 1 \nATOM 797 C CD1 . PHE A 1 189 ? -7.252 9.084 -17.305 1.00 74.88 504 A 1 \nATOM 798 C CD2 . PHE A 1 189 ? -8.466 7.079 -16.875 1.00 68.91 504 A 1 \nATOM 799 C CE1 . PHE A 1 189 ? -8.120 9.788 -16.491 1.00 71.16 504 A 1 \nATOM 800 C CE2 . PHE A 1 189 ? -9.336 7.777 -16.064 1.00 66.74 504 A 1 \nATOM 801 C CZ . PHE A 1 189 ? -9.163 9.132 -15.870 1.00 67.65 504 A 1 \nATOM 802 N N . GLY A 1 190 ? -5.410 6.654 -21.669 1.00 85.58 505 A 1 \nATOM 803 C CA . GLY A 1 190 ? -4.389 6.040 -22.490 1.00 88.37 505 A 1 \nATOM 804 C C . GLY A 1 190 ? -4.296 6.736 -23.834 1.00 91.75 505 A 1 \nATOM 805 O O . GLY A 1 190 ? -4.914 7.775 -24.064 1.00 93.45 505 A 1 \nATOM 806 N N . SER A 1 191 ? -3.497 6.138 -24.712 1.00 93.23 506 A 1 \nATOM 807 C CA . SER A 1 191 ? -3.378 6.644 -26.071 1.00 96.12 506 A 1 \nATOM 808 C C . SER A 1 191 ? -4.669 6.392 -26.841 1.00 98.79 506 A 1 \nATOM 809 O O . SER A 1 191 ? -5.417 5.453 -26.552 1.00 98.51 506 A 1 \nATOM 810 C CB . SER A 1 191 ? -2.200 5.984 -26.786 1.00 96.02 506 A 1 \nATOM 811 O OG . SER A 1 191 ? -2.269 4.572 -26.686 1.00 91.49 506 A 1 \nATOM 812 N N . GLU A 1 192 ? -4.932 7.252 -27.831 1.00 101.02 507 A 1 \nATOM 813 C CA . GLU A 1 192 ? -6.140 7.092 -28.636 1.00 103.37 507 A 1 \nATOM 814 C C . GLU A 1 192 ? -6.124 5.785 -29.413 1.00 105.84 507 A 1 \nATOM 815 O O . GLU A 1 192 ? -7.188 5.253 -29.751 1.00 103.52 507 A 1 \nATOM 816 C CB . GLU A 1 192 ? -6.310 8.274 -29.591 1.00 111.33 507 A 1 \nATOM 817 C CG . GLU A 1 192 ? -7.617 9.034 -29.394 1.00 113.41 507 A 1 \nATOM 818 C CD . GLU A 1 192 ? -7.697 10.297 -30.232 1.00 123.09 507 A 1 \nATOM 819 O OE1 . GLU A 1 192 ? -7.949 10.192 -31.451 1.00 128.04 507 A 1 \nATOM 820 O OE2 . GLU A 1 192 ? -7.519 11.398 -29.670 1.00 124.97 507 A 1 \nATOM 821 N N . ARG A 1 193 ? -4.935 5.256 -29.711 1.00 110.96 508 A 1 \nATOM 822 C CA . ARG A 1 193 ? -4.849 3.920 -30.289 1.00 110.34 508 A 1 \nATOM 823 C C . ARG A 1 193 ? -5.409 2.881 -29.326 1.00 101.14 508 A 1 \nATOM 824 O O . ARG A 1 193 ? -6.279 2.083 -29.691 1.00 100.46 508 A 1 \nATOM 825 C CB . ARG A 1 193 ? -3.400 3.596 -30.654 1.00 115.09 508 A 1 \nATOM 826 C CG . ARG A 1 193 ? -3.186 2.163 -31.117 1.00 117.36 508 A 1 \nATOM 827 C CD . ARG A 1 193 ? -1.918 1.569 -30.524 1.00 118.03 508 A 1 \nATOM 828 N NE . ARG A 1 193 ? -0.758 1.786 -31.384 1.00 121.75 508 A 1 \nATOM 829 C CZ . ARG A 1 193 ? -0.267 0.877 -32.220 1.00 124.08 508 A 1 \nATOM 830 N NH1 . ARG A 1 193 ? -0.836 -0.318 -32.310 1.00 122.61 508 A 1 \nATOM 831 N NH2 . ARG A 1 193 ? 0.793 1.161 -32.965 1.00 128.50 508 A 1 \nATOM 832 N N . GLY A 1 194 ? -4.931 2.889 -28.080 1.00 95.58 509 A 1 \nATOM 833 C CA . GLY A 1 194 ? -5.443 1.955 -27.093 1.00 88.25 509 A 1 \nATOM 834 C C . GLY A 1 194 ? -6.884 2.219 -26.709 1.00 83.01 509 A 1 \nATOM 835 O O . GLY A 1 194 ? -7.636 1.280 -26.427 1.00 84.62 509 A 1 \nATOM 836 N N . ILE A 1 195 ? -7.293 3.490 -26.692 1.00 78.50 510 A 1 \nATOM 837 C CA . ILE A 1 195 ? -8.675 3.818 -26.355 1.00 77.46 510 A 1 \nATOM 838 C C . ILE A 1 195 ? -9.619 3.343 -27.454 1.00 78.35 510 A 1 \nATOM 839 O O . ILE A 1 195 ? -10.730 2.873 -27.176 1.00 71.18 510 A 1 \nATOM 840 C CB . ILE A 1 195 ? -8.812 5.329 -26.087 1.00 82.19 510 A 1 \nATOM 841 C CG1 . ILE A 1 195 ? -8.362 5.652 -24.661 1.00 80.98 510 A 1 \nATOM 842 C CG2 . ILE A 1 195 ? -10.244 5.797 -26.298 1.00 82.51 510 A 1 \nATOM 843 C CD1 . ILE A 1 195 ? -8.065 7.113 -24.430 1.00 83.75 510 A 1 \nATOM 844 N N . PHE A 1 196 ? -9.190 3.439 -28.715 1.00 86.32 511 A 1 \nATOM 845 C CA . PHE A 1 196 ? -10.015 2.945 -29.814 1.00 86.12 511 A 1 \nATOM 846 C C . PHE A 1 196 ? -10.216 1.438 -29.717 1.00 85.49 511 A 1 \nATOM 847 O O . PHE A 1 196 ? -11.324 0.938 -29.941 1.00 85.21 511 A 1 \nATOM 848 C CB . PHE A 1 196 ? -9.384 3.315 -31.156 1.00 98.25 511 A 1 \nATOM 849 C CG . PHE A 1 196 ? -10.124 2.768 -32.346 1.00 101.80 511 A 1 \nATOM 850 C CD1 . PHE A 1 196 ? -11.192 3.460 -32.892 1.00 104.84 511 A 1 \nATOM 851 C CD2 . PHE A 1 196 ? -9.749 1.563 -32.922 1.00 99.56 511 A 1 \nATOM 852 C CE1 . PHE A 1 196 ? -11.874 2.961 -33.986 1.00 105.47 511 A 1 \nATOM 853 C CE2 . PHE A 1 196 ? -10.428 1.058 -34.013 1.00 102.21 511 A 1 \nATOM 854 C CZ . PHE A 1 196 ? -11.492 1.759 -34.546 1.00 105.06 511 A 1 \nATOM 855 N N . ASN A 1 197 ? -9.153 0.698 -29.392 1.00 87.46 512 A 1 \nATOM 856 C CA . ASN A 1 197 ? -9.274 -0.750 -29.254 1.00 88.95 512 A 1 \nATOM 857 C C . ASN A 1 197 ? -10.217 -1.114 -28.115 1.00 85.08 512 A 1 \nATOM 858 O O . ASN A 1 197 ? -11.112 -1.951 -28.277 1.00 85.92 512 A 1 \nATOM 859 C CB . ASN A 1 197 ? -7.898 -1.379 -29.028 1.00 95.00 512 A 1 \nATOM 860 C CG . ASN A 1 197 ? -6.837 -0.816 -29.952 1.00 105.63 512 A 1 \nATOM 861 O OD1 . ASN A 1 197 ? -7.127 -0.409 -31.077 1.00 107.64 512 A 1 \nATOM 862 N ND2 . ASN A 1 197 ? -5.596 -0.789 -29.478 1.00 111.16 512 A 1 \nATOM 863 N N . CYS A 1 198 ? -10.031 -0.489 -26.949 1.00 81.08 513 A 1 \nATOM 864 C CA . CYS A 1 198 ? -10.889 -0.789 -25.808 1.00 73.79 513 A 1 \nATOM 865 C C . CYS A 1 198 ? -12.332 -0.390 -26.072 1.00 70.62 513 A 1 \nATOM 866 O O . CYS A 1 198 ? -13.256 -1.063 -25.601 1.00 63.48 513 A 1 \nATOM 867 C CB . CYS A 1 198 ? -10.367 -0.089 -24.554 1.00 73.12 513 A 1 \nATOM 868 S SG . CYS A 1 198 ? -11.347 -0.398 -23.059 1.00 67.55 513 A 1 \nATOM 869 N N . HIS A 1 199 ? -12.546 0.691 -26.825 1.00 78.94 514 A 1 \nATOM 870 C CA . HIS A 1 199 ? -13.904 1.139 -27.115 1.00 80.78 514 A 1 \nATOM 871 C C . HIS A 1 199 ? -14.705 0.048 -27.815 1.00 81.49 514 A 1 \nATOM 872 O O . HIS A 1 199 ? -15.832 -0.264 -27.415 1.00 84.58 514 A 1 \nATOM 873 C CB . HIS A 1 199 ? -13.867 2.409 -27.963 1.00 83.02 514 A 1 \nATOM 874 C CG . HIS A 1 199 ? -15.207 2.820 -28.486 1.00 83.48 514 A 1 \nATOM 875 N ND1 . HIS A 1 199 ? -16.087 3.586 -27.753 1.00 81.57 514 A 1 \nATOM 876 C CD2 . HIS A 1 199 ? -15.819 2.570 -29.667 1.00 85.86 514 A 1 \nATOM 877 C CE1 . HIS A 1 199 ? -17.183 3.792 -28.460 1.00 81.79 514 A 1 \nATOM 878 N NE2 . HIS A 1 199 ? -17.046 3.187 -29.626 1.00 85.25 514 A 1 \nATOM 879 N N . LYS A 1 200 ? -14.132 -0.553 -28.861 1.00 78.32 515 A 1 \nATOM 880 C CA . LYS A 1 200 ? -14.828 -1.626 -29.561 1.00 81.19 515 A 1 \nATOM 881 C C . LYS A 1 200 ? -14.874 -2.901 -28.729 1.00 79.59 515 A 1 \nATOM 882 O O . LYS A 1 200 ? -15.849 -3.657 -28.810 1.00 84.26 515 A 1 \nATOM 883 C CB . LYS A 1 200 ? -14.170 -1.889 -30.918 1.00 84.88 515 A 1 \nATOM 884 C CG . LYS A 1 200 ? -15.159 -2.236 -32.024 1.00 87.52 515 A 1 \nATOM 885 C CD . LYS A 1 200 ? -16.067 -1.058 -32.349 1.00 90.85 515 A 1 \nATOM 886 C CE . LYS A 1 200 ? -15.532 -0.221 -33.503 1.00 100.93 515 A 1 \nATOM 887 N NZ . LYS A 1 200 ? -16.083 1.166 -33.489 1.00 103.06 515 A 1 \nATOM 888 N N . LEU A 1 201 ? -13.842 -3.164 -27.925 1.00 76.16 516 A 1 \nATOM 889 C CA . LEU A 1 201 ? -13.940 -4.263 -26.968 1.00 73.38 516 A 1 \nATOM 890 C C . LEU A 1 201 ? -15.075 -4.021 -25.986 1.00 68.48 516 A 1 \nATOM 891 O O . LEU A 1 201 ? -15.796 -4.953 -25.611 1.00 68.98 516 A 1 \nATOM 892 C CB . LEU A 1 201 ? -12.635 -4.431 -26.201 1.00 72.32 516 A 1 \nATOM 893 C CG . LEU A 1 201 ? -11.335 -4.863 -26.856 1.00 78.78 516 A 1 \nATOM 894 C CD1 . LEU A 1 201 ? -10.285 -4.290 -25.980 1.00 77.04 516 A 1 \nATOM 895 C CD2 . LEU A 1 201 ? -11.177 -6.357 -26.900 1.00 79.22 516 A 1 \nATOM 896 N N . MET A 1 202 ? -15.242 -2.769 -25.551 1.00 68.92 517 A 1 \nATOM 897 C CA . MET A 1 202 ? -16.290 -2.454 -24.590 1.00 71.78 517 A 1 \nATOM 898 C C . MET A 1 202 ? -17.666 -2.549 -25.230 1.00 76.59 517 A 1 \nATOM 899 O O . MET A 1 202 ? -18.617 -3.018 -24.596 1.00 77.95 517 A 1 \nATOM 900 C CB . MET A 1 202 ? -16.071 -1.060 -24.007 1.00 69.71 517 A 1 \nATOM 901 C CG . MET A 1 202 ? -15.003 -0.984 -22.935 1.00 67.41 517 A 1 \nATOM 902 S SD . MET A 1 202 ? -14.589 0.722 -22.534 1.00 74.37 517 A 1 \nATOM 903 C CE . MET A 1 202 ? -16.220 1.441 -22.363 1.00 74.30 517 A 1 \nATOM 904 N N . GLU A 1 203 ? -17.794 -2.104 -26.484 1.00 78.01 518 A 1 \nATOM 905 C CA . GLU A 1 203 ? -19.074 -2.217 -27.173 1.00 76.93 518 A 1 \nATOM 906 C C . GLU A 1 203 ? -19.470 -3.674 -27.367 1.00 71.06 518 A 1 \nATOM 907 O O . GLU A 1 203 ? -20.663 -3.993 -27.424 1.00 74.21 518 A 1 \nATOM 908 C CB . GLU A 1 203 ? -19.018 -1.490 -28.516 1.00 81.35 518 A 1 \nATOM 909 C CG . GLU A 1 203 ? -18.845 0.012 -28.383 1.00 85.42 518 A 1 \nATOM 910 C CD . GLU A 1 203 ? -18.963 0.734 -29.707 1.00 95.31 518 A 1 \nATOM 911 O OE1 . GLU A 1 203 ? -18.232 0.368 -30.649 1.00 99.93 518 A 1 \nATOM 912 O OE2 . GLU A 1 203 ? -19.780 1.674 -29.802 1.00 97.65 518 A 1 \nATOM 913 N N . ALA A 1 204 ? -18.488 -4.569 -27.467 1.00 61.83 519 A 1 \nATOM 914 C CA . ALA A 1 204 ? -18.785 -5.994 -27.467 1.00 67.63 519 A 1 \nATOM 915 C C . ALA A 1 204 ? -18.971 -6.528 -26.054 1.00 71.69 519 A 1 \nATOM 916 O O . ALA A 1 204 ? -19.717 -7.493 -25.855 1.00 73.88 519 A 1 \nATOM 917 C CB . ALA A 1 204 ? -17.674 -6.766 -28.180 1.00 67.84 519 A 1 \nATOM 918 N N . ALA A 1 205 ? -18.312 -5.914 -25.067 1.00 69.38 520 A 1 \nATOM 919 C CA . ALA A 1 205 ? -18.445 -6.370 -23.688 1.00 69.66 520 A 1 \nATOM 920 C C . ALA A 1 205 ? -19.851 -6.124 -23.156 1.00 66.81 520 A 1 \nATOM 921 O O . ALA A 1 205 ? -20.437 -6.999 -22.509 1.00 63.77 520 A 1 \nATOM 922 C CB . ALA A 1 205 ? -17.409 -5.677 -22.806 1.00 70.74 520 A 1 \nATOM 923 N N . ILE A 1 206 ? -20.412 -4.941 -23.422 1.00 66.16 521 A 1 \nATOM 924 C CA . ILE A 1 206 ? -21.756 -4.617 -22.958 1.00 68.73 521 A 1 \nATOM 925 C C . ILE A 1 206 ? -22.833 -5.405 -23.684 1.00 70.79 521 A 1 \nATOM 926 O O . ILE A 1 206 ? -24.002 -5.353 -23.287 1.00 66.46 521 A 1 \nATOM 927 C CB . ILE A 1 206 ? -22.031 -3.108 -23.110 1.00 71.00 521 A 1 \nATOM 928 C CG1 . ILE A 1 206 ? -22.015 -2.712 -24.589 1.00 72.59 521 A 1 \nATOM 929 C CG2 . ILE A 1 206 ? -21.015 -2.298 -22.317 1.00 66.68 521 A 1 \nATOM 930 C CD1 . ILE A 1 206 ? -22.663 -1.374 -24.870 1.00 73.22 521 A 1 \nATOM 931 N N . GLN A 1 207 ? -22.470 -6.135 -24.739 1.00 80.20 522 A 1 \nATOM 932 C CA . GLN A 1 207 ? -23.442 -6.941 -25.464 1.00 86.03 522 A 1 \nATOM 933 C C . GLN A 1 207 ? -23.715 -8.269 -24.770 1.00 83.76 522 A 1 \nATOM 934 O O . GLN A 1 207 ? -24.805 -8.836 -24.928 1.00 86.87 522 A 1 \nATOM 935 C CB . GLN A 1 207 ? -22.950 -7.185 -26.891 1.00 93.08 522 A 1 \nATOM 936 C CG . GLN A 1 207 ? -24.055 -7.251 -27.931 1.00 101.99 522 A 1 \nATOM 937 C CD . GLN A 1 207 ? -24.796 -5.939 -28.072 1.00 105.97 522 A 1 \nATOM 938 O OE1 . GLN A 1 207 ? -24.252 -4.955 -28.573 1.00 109.34 522 A 1 \nATOM 939 N NE2 . GLN A 1 207 ? -26.047 -5.917 -27.628 1.00 105.93 522 A 1 \nATOM 940 N N . GLN A 1 208 ? -22.755 -8.772 -23.999 1.00 89.89 523 A 1 \nATOM 941 C CA . GLN A 1 208 ? -22.847 -10.083 -23.385 1.00 89.04 523 A 1 \nATOM 942 C C . GLN A 1 208 ? -23.351 -9.960 -21.949 1.00 80.66 523 A 1 \nATOM 943 O O . GLN A 1 208 ? -23.773 -8.891 -21.500 1.00 79.40 523 A 1 \nATOM 944 C CB . GLN A 1 208 ? -21.486 -10.772 -23.456 1.00 94.43 523 A 1 \nATOM 945 C CG . GLN A 1 208 ? -20.639 -10.287 -24.607 1.00 101.28 523 A 1 \nATOM 946 C CD . GLN A 1 208 ? -19.403 -11.129 -24.793 1.00 106.24 523 A 1 \nATOM 947 O OE1 . GLN A 1 208 ? -19.411 -12.112 -25.534 1.00 110.51 523 A 1 \nATOM 948 N NE2 . GLN A 1 208 ? -18.328 -10.755 -24.108 1.00 105.94 523 A 1 \nATOM 949 N N . ASP A 1 209 ? -23.329 -11.079 -21.223 1.00 76.39 524 A 1 \nATOM 950 C CA . ASP A 1 209 ? -23.693 -11.125 -19.808 1.00 70.35 524 A 1 \nATOM 951 C C . ASP A 1 209 ? -22.533 -11.733 -19.031 1.00 61.29 524 A 1 \nATOM 952 O O . ASP A 1 209 ? -22.470 -12.959 -18.844 1.00 57.59 524 A 1 \nATOM 953 C CB . ASP A 1 209 ? -24.979 -11.920 -19.588 1.00 76.01 524 A 1 \nATOM 954 C CG . ASP A 1 209 ? -25.413 -11.934 -18.130 1.00 86.60 524 A 1 \nATOM 955 O OD1 . ASP A 1 209 ? -25.103 -10.968 -17.399 1.00 88.67 524 A 1 \nATOM 956 O OD2 . ASP A 1 209 ? -26.064 -12.915 -17.711 1.00 88.78 524 A 1 \nATOM 957 N N . PRO A 1 210 ? -21.598 -10.914 -18.548 1.00 60.76 525 A 1 \nATOM 958 C CA . PRO A 1 210 ? -20.474 -11.446 -17.766 1.00 61.25 525 A 1 \nATOM 959 C C . PRO A 1 210 ? -20.919 -11.757 -16.344 1.00 64.21 525 A 1 \nATOM 960 O O . PRO A 1 210 ? -21.537 -10.922 -15.678 1.00 63.57 525 A 1 \nATOM 961 C CB . PRO A 1 210 ? -19.443 -10.309 -17.798 1.00 59.22 525 A 1 \nATOM 962 C CG . PRO A 1 210 ? -20.086 -9.169 -18.569 1.00 65.57 525 A 1 \nATOM 963 C CD . PRO A 1 210 ? -21.547 -9.450 -18.661 1.00 64.79 525 A 1 \nATOM 964 N N . VAL A 1 211 ? -20.610 -12.970 -15.881 1.00 61.45 526 A 1 \nATOM 965 C CA . VAL A 1 211 ? -21.092 -13.472 -14.600 1.00 56.34 526 A 1 \nATOM 966 C C . VAL A 1 211 ? -19.959 -14.185 -13.872 1.00 52.45 526 A 1 \nATOM 967 O O . VAL A 1 211 ? -18.887 -14.436 -14.426 1.00 54.25 526 A 1 \nATOM 968 C CB . VAL A 1 211 ? -22.289 -14.435 -14.765 1.00 57.51 526 A 1 \nATOM 969 C CG1 . VAL A 1 211 ? -23.438 -13.761 -15.500 1.00 59.11 526 A 1 \nATOM 970 C CG2 . VAL A 1 211 ? -21.849 -15.698 -15.489 1.00 62.41 526 A 1 \nATOM 971 N N . TYR A 1 212 ? -20.214 -14.500 -12.605 1.00 48.15 527 A 1 \nATOM 972 C CA . TYR A 1 212 ? -19.412 -15.473 -11.881 1.00 50.31 527 A 1 \nATOM 973 C C . TYR A 1 212 ? -19.925 -16.875 -12.184 1.00 48.66 527 A 1 \nATOM 974 O O . TYR A 1 212 ? -21.121 -17.084 -12.407 1.00 49.47 527 A 1 \nATOM 975 C CB . TYR A 1 212 ? -19.477 -15.223 -10.373 1.00 56.46 527 A 1 \nATOM 976 C CG . TYR A 1 212 ? -18.632 -14.072 -9.870 1.00 57.58 527 A 1 \nATOM 977 C CD1 . TYR A 1 212 ? -18.815 -13.569 -8.589 1.00 58.71 527 A 1 \nATOM 978 C CD2 . TYR A 1 212 ? -17.654 -13.493 -10.667 1.00 61.80 527 A 1 \nATOM 979 C CE1 . TYR A 1 212 ? -18.051 -12.522 -8.114 1.00 57.43 527 A 1 \nATOM 980 C CE2 . TYR A 1 212 ? -16.882 -12.442 -10.200 1.00 62.29 527 A 1 \nATOM 981 C CZ . TYR A 1 212 ? -17.088 -11.961 -8.921 1.00 59.71 527 A 1 \nATOM 982 O OH . TYR A 1 212 ? -16.330 -10.917 -8.442 1.00 55.69 527 A 1 \nATOM 983 N N . VAL A 1 213 ? -19.013 -17.842 -12.190 1.00 48.94 528 A 1 \nATOM 984 C CA . VAL A 1 213 ? -19.360 -19.235 -12.442 1.00 50.57 528 A 1 \nATOM 985 C C . VAL A 1 213 ? -18.891 -20.082 -11.268 1.00 53.39 528 A 1 \nATOM 986 O O . VAL A 1 213 ? -17.838 -19.817 -10.678 1.00 56.76 528 A 1 \nATOM 987 C CB . VAL A 1 213 ? -18.755 -19.749 -13.764 1.00 51.88 528 A 1 \nATOM 988 C CG1 . VAL A 1 213 ? -19.464 -19.114 -14.951 1.00 47.71 528 A 1 \nATOM 989 C CG2 . VAL A 1 213 ? -17.261 -19.471 -13.813 1.00 55.26 528 A 1 \nATOM 990 N N . ARG A 1 214 ? -19.687 -21.092 -10.921 1.00 55.18 529 A 1 \nATOM 991 C CA . ARG A 1 214 ? -19.320 -22.065 -9.895 1.00 59.17 529 A 1 \nATOM 992 C C . ARG A 1 214 ? -19.687 -23.447 -10.419 1.00 64.59 529 A 1 \nATOM 993 O O . ARG A 1 214 ? -20.869 -23.739 -10.627 1.00 71.30 529 A 1 \nATOM 994 C CB . ARG A 1 214 ? -20.024 -21.779 -8.567 1.00 56.77 529 A 1 \nATOM 995 C CG . ARG A 1 214 ? -19.772 -20.386 -8.006 1.00 56.19 529 A 1 \nATOM 996 C CD . ARG A 1 214 ? -18.501 -20.337 -7.173 1.00 56.55 529 A 1 \nATOM 997 N NE . ARG A 1 214 ? -18.381 -19.078 -6.444 1.00 63.39 529 A 1 \nATOM 998 C CZ . ARG A 1 214 ? -17.630 -18.054 -6.835 1.00 64.33 529 A 1 \nATOM 999 N NH1 . ARG A 1 214 ? -16.924 -18.137 -7.953 1.00 65.90 529 A 1 \nATOM 1000 N NH2 . ARG A 1 214 ? -17.583 -16.947 -6.107 1.00 66.63 529 A 1 \nATOM 1001 N N . LEU A 1 215 ? -18.682 -24.288 -10.643 1.00 61.56 530 A 1 \nATOM 1002 C CA . LEU A 1 215 ? -18.891 -25.665 -11.085 1.00 62.07 530 A 1 \nATOM 1003 C C . LEU A 1 215 ? -18.860 -26.555 -9.847 1.00 63.06 530 A 1 \nATOM 1004 O O . LEU A 1 215 ? -17.790 -26.897 -9.339 1.00 61.17 530 A 1 \nATOM 1005 C CB . LEU A 1 215 ? -17.837 -26.076 -12.110 1.00 63.78 530 A 1 \nATOM 1006 C CG . LEU A 1 215 ? -17.880 -27.498 -12.680 1.00 65.82 530 A 1 \nATOM 1007 C CD1 . LEU A 1 215 ? -19.305 -28.008 -12.828 1.00 65.04 530 A 1 \nATOM 1008 C CD2 . LEU A 1 215 ? -17.157 -27.550 -14.018 1.00 67.83 530 A 1 \nATOM 1009 N N . GLY A 1 216 ? -20.044 -26.923 -9.362 1.00 65.67 531 A 1 \nATOM 1010 C CA . GLY A 1 216 ? -20.158 -27.788 -8.204 1.00 67.26 531 A 1 \nATOM 1011 C C . GLY A 1 216 ? -19.618 -29.181 -8.450 1.00 65.79 531 A 1 \nATOM 1012 O O . GLY A 1 216 ? -20.333 -30.058 -8.943 1.00 61.64 531 A 1 \nATOM 1013 N N . ILE A 1 217 ? -18.352 -29.392 -8.108 1.00 67.91 532 A 1 \nATOM 1014 C CA . ILE A 1 217 ? -17.712 -30.691 -8.276 1.00 72.27 532 A 1 \nATOM 1015 C C . ILE A 1 217 ? -18.078 -31.580 -7.094 1.00 73.13 532 A 1 \nATOM 1016 O O . ILE A 1 217 ? -17.928 -31.183 -5.933 1.00 74.82 532 A 1 \nATOM 1017 C CB . ILE A 1 217 ? -16.189 -30.526 -8.406 1.00 77.01 532 A 1 \nATOM 1018 C CG1 . ILE A 1 217 ? -15.828 -29.996 -9.795 1.00 83.26 532 A 1 \nATOM 1019 C CG2 . ILE A 1 217 ? -15.474 -31.832 -8.128 1.00 80.94 532 A 1 \nATOM 1020 C CD1 . ILE A 1 217 ? -16.722 -30.502 -10.910 1.00 85.92 532 A 1 \nATOM 1021 N N . PHE A 1 218 ? -18.567 -32.785 -7.387 1.00 76.42 533 A 1 \nATOM 1022 C CA . PHE A 1 218 ? -19.004 -33.707 -6.349 1.00 77.25 533 A 1 \nATOM 1023 C C . PHE A 1 218 ? -18.598 -35.130 -6.704 1.00 85.43 533 A 1 \nATOM 1024 O O . PHE A 1 218 ? -18.494 -35.491 -7.879 1.00 89.61 533 A 1 \nATOM 1025 C CB . PHE A 1 218 ? -20.525 -33.641 -6.132 1.00 73.55 533 A 1 \nATOM 1026 C CG . PHE A 1 218 ? -21.324 -34.295 -7.223 1.00 74.71 533 A 1 \nATOM 1027 C CD1 . PHE A 1 218 ? -21.630 -33.603 -8.383 1.00 71.29 533 A 1 \nATOM 1028 C CD2 . PHE A 1 218 ? -21.773 -35.601 -7.089 1.00 77.57 533 A 1 \nATOM 1029 C CE1 . PHE A 1 218 ? -22.364 -34.202 -9.392 1.00 73.89 533 A 1 \nATOM 1030 C CE2 . PHE A 1 218 ? -22.506 -36.205 -8.093 1.00 78.36 533 A 1 \nATOM 1031 C CZ . PHE A 1 218 ? -22.803 -35.503 -9.246 1.00 76.55 533 A 1 \nATOM 1032 N N . ARG A 1 219 ? -18.380 -35.936 -5.668 1.00 87.87 534 A 1 \nATOM 1033 C CA . ARG A 1 219 ? -18.090 -37.353 -5.811 1.00 88.74 534 A 1 \nATOM 1034 C C . ARG A 1 219 ? -19.013 -38.143 -4.895 1.00 95.06 534 A 1 \nATOM 1035 O O . ARG A 1 219 ? -19.459 -37.642 -3.859 1.00 94.01 534 A 1 \nATOM 1036 C CB . ARG A 1 219 ? -16.627 -37.672 -5.473 1.00 88.69 534 A 1 \nATOM 1037 C CG . ARG A 1 219 ? -16.302 -37.565 -3.991 1.00 94.19 534 A 1 \nATOM 1038 C CD . ARG A 1 219 ? -14.816 -37.728 -3.727 1.00 99.95 534 A 1 \nATOM 1039 N NE . ARG A 1 219 ? -14.526 -37.857 -2.301 1.00 101.19 534 A 1 \nATOM 1040 C CZ . ARG A 1 219 ? -13.305 -38.018 -1.799 1.00 102.47 534 A 1 \nATOM 1041 N NH1 . ARG A 1 219 ? -12.256 -38.064 -2.608 1.00 105.43 534 A 1 \nATOM 1042 N NH2 . ARG A 1 219 ? -13.132 -38.123 -0.489 1.00 100.05 534 A 1 \nATOM 1043 N N . ARG A 1 220 ? -19.302 -39.381 -5.286 1.00 100.43 535 A 1 \nATOM 1044 C CA . ARG A 1 220 ? -20.129 -40.260 -4.473 1.00 103.72 535 A 1 \nATOM 1045 C C . ARG A 1 220 ? -19.246 -41.148 -3.605 1.00 105.79 535 A 1 \nATOM 1046 O O . ARG A 1 220 ? -18.188 -41.613 -4.039 1.00 105.58 535 A 1 \nATOM 1047 C CB . ARG A 1 220 ? -21.052 -41.113 -5.349 1.00 107.51 535 A 1 \nATOM 1048 C CG . ARG A 1 220 ? -20.356 -42.202 -6.149 1.00 114.49 535 A 1 \nATOM 1049 C CD . ARG A 1 220 ? -20.854 -42.240 -7.586 1.00 119.28 535 A 1 \nATOM 1050 N NE . ARG A 1 220 ? -22.288 -42.502 -7.668 1.00 122.45 535 A 1 \nATOM 1051 C CZ . ARG A 1 220 ? -23.017 -42.323 -8.765 1.00 123.14 535 A 1 \nATOM 1052 N NH1 . ARG A 1 220 ? -22.448 -41.878 -9.877 1.00 122.32 535 A 1 \nATOM 1053 N NH2 . ARG A 1 220 ? -24.316 -42.589 -8.751 1.00 124.30 535 A 1 \nATOM 1054 N N . LEU A 1 221 ? -19.678 -41.359 -2.366 1.00 107.13 536 A 1 \nATOM 1055 C CA . LEU A 1 221 ? -18.959 -42.196 -1.417 1.00 114.32 536 A 1 \nATOM 1056 C C . LEU A 1 221 ? -19.593 -43.579 -1.390 1.00 123.55 536 A 1 \nATOM 1057 O O . LEU A 1 221 ? -20.818 -43.703 -1.294 1.00 125.78 536 A 1 \nATOM 1058 C CB . LEU A 1 221 ? -18.972 -41.576 -0.019 1.00 112.36 536 A 1 \nATOM 1059 N N . ALA A 1 222 ? -18.758 -44.616 -1.484 1.00 129.04 537 A 1 \nATOM 1060 C CA . ALA A 1 222 ? -19.276 -45.980 -1.477 1.00 135.71 537 A 1 \nATOM 1061 C C . ALA A 1 222 ? -19.917 -46.321 -0.138 1.00 138.22 537 A 1 \nATOM 1062 O O . ALA A 1 222 ? -20.953 -46.996 -0.093 1.00 139.90 537 A 1 \nATOM 1063 C CB . ALA A 1 222 ? -18.158 -46.968 -1.805 1.00 139.91 537 A 1 \nATOM 1064 N N . ASN A 1 223 ? -19.322 -45.856 0.962 1.00 139.56 538 A 1 \nATOM 1065 C CA . ASN A 1 223 ? -19.856 -46.168 2.283 1.00 143.83 538 A 1 \nATOM 1066 C C . ASN A 1 223 ? -21.135 -45.395 2.576 1.00 140.22 538 A 1 \nATOM 1067 O O . ASN A 1 223 ? -22.016 -45.903 3.280 1.00 143.02 538 A 1 \nATOM 1068 C CB . ASN A 1 223 ? -18.806 -45.872 3.354 1.00 145.74 538 A 1 \nATOM 1069 C CG . ASN A 1 223 ? -18.098 -44.549 3.123 1.00 142.35 538 A 1 \nATOM 1070 O OD1 . ASN A 1 223 ? -17.056 -44.495 2.469 1.00 143.17 538 A 1 \nATOM 1071 N ND2 . ASN A 1 223 ? -18.663 -43.474 3.660 1.00 137.59 538 A 1 \nATOM 1072 N N . SER A 1 224 ? -21.258 -44.180 2.053 1.00 132.75 539 A 1 \nATOM 1073 C CA . SER A 1 224 ? -22.384 -43.313 2.354 1.00 127.07 539 A 1 \nATOM 1074 C C . SER A 1 224 ? -23.362 -43.276 1.182 1.00 126.18 539 A 1 \nATOM 1075 O O . SER A 1 224 ? -23.161 -43.906 0.141 1.00 127.68 539 A 1 \nATOM 1076 C CB . SER A 1 224 ? -21.892 -41.906 2.698 1.00 120.75 539 A 1 \nATOM 1077 O OG . SER A 1 224 ? -22.968 -40.986 2.736 1.00 117.39 539 A 1 \nATOM 1078 N N . SER A 1 225 ? -24.446 -42.527 1.367 1.00 123.52 540 A 1 \nATOM 1079 C CA . SER A 1 225 ? -25.408 -42.258 0.307 1.00 120.88 540 A 1 \nATOM 1080 C C . SER A 1 225 ? -25.309 -40.846 -0.244 1.00 112.06 540 A 1 \nATOM 1081 O O . SER A 1 225 ? -25.521 -40.647 -1.442 1.00 109.36 540 A 1 \nATOM 1082 C CB . SER A 1 225 ? -26.836 -42.495 0.812 1.00 123.97 540 A 1 \nATOM 1083 O OG . SER A 1 225 ? -27.177 -41.562 1.823 1.00 122.60 540 A 1 \nATOM 1084 N N . GLU A 1 226 ? -24.988 -39.869 0.600 1.00 105.25 541 A 1 \nATOM 1085 C CA . GLU A 1 226 ? -24.808 -38.502 0.145 1.00 96.65 541 A 1 \nATOM 1086 C C . GLU A 1 226 ? -23.500 -38.372 -0.632 1.00 90.45 541 A 1 \nATOM 1087 O O . GLU A 1 226 ? -22.649 -39.267 -0.638 1.00 93.25 541 A 1 \nATOM 1088 C CB . GLU A 1 226 ? -24.824 -37.535 1.328 1.00 94.72 541 A 1 \nATOM 1089 N N . VAL A 1 227 ? -23.349 -37.235 -1.295 1.00 81.45 542 A 1 \nATOM 1090 C CA . VAL A 1 227 ? -22.170 -36.961 -2.091 1.00 78.41 542 A 1 \nATOM 1091 C C . VAL A 1 227 ? -21.278 -35.997 -1.326 1.00 79.57 542 A 1 \nATOM 1092 O O . VAL A 1 227 ? -21.707 -35.298 -0.404 1.00 79.28 542 A 1 \nATOM 1093 C CB . VAL A 1 227 ? -22.529 -36.398 -3.485 1.00 73.13 542 A 1 \nATOM 1094 C CG1 . VAL A 1 227 ? -23.307 -37.429 -4.288 1.00 73.32 542 A 1 \nATOM 1095 C CG2 . VAL A 1 227 ? -23.322 -35.109 -3.349 1.00 64.96 542 A 1 \nATOM 1096 N N . GLU A 1 228 ? -20.008 -35.969 -1.707 1.00 80.18 543 A 1 \nATOM 1097 C CA . GLU A 1 228 ? -19.046 -35.027 -1.162 1.00 80.25 543 A 1 \nATOM 1098 C C . GLU A 1 228 ? -18.740 -33.983 -2.226 1.00 75.91 543 A 1 \nATOM 1099 O O . GLU A 1 228 ? -18.568 -34.325 -3.399 1.00 76.21 543 A 1 \nATOM 1100 C CB . GLU A 1 228 ? -17.772 -35.749 -0.714 1.00 85.95 543 A 1 \nATOM 1101 C CG . GLU A 1 228 ? -17.903 -36.444 0.637 1.00 91.40 543 A 1 \nATOM 1102 C CD . GLU A 1 228 ? -16.585 -36.993 1.146 1.00 98.49 543 A 1 \nATOM 1103 O OE1 . GLU A 1 228 ? -15.613 -37.025 0.363 1.00 100.15 543 A 1 \nATOM 1104 O OE2 . GLU A 1 228 ? -16.522 -37.391 2.328 1.00 103.08 543 A 1 \nATOM 1105 N N . TRP A 1 229 ? -18.709 -32.717 -1.824 1.00 73.78 544 A 1 \nATOM 1106 C CA . TRP A 1 229 ? -18.370 -31.621 -2.720 1.00 73.60 544 A 1 \nATOM 1107 C C . TRP A 1 229 ? -17.000 -31.069 -2.355 1.00 75.54 544 A 1 \nATOM 1108 O O . TRP A 1 229 ? -16.655 -30.971 -1.174 1.00 80.19 544 A 1 \nATOM 1109 C CB . TRP A 1 229 ? -19.407 -30.498 -2.650 1.00 70.54 544 A 1 \nATOM 1110 C CG . TRP A 1 229 ? -20.810 -30.946 -2.877 1.00 71.95 544 A 1 \nATOM 1111 C CD1 . TRP A 1 229 ? -21.635 -31.542 -1.971 1.00 73.46 544 A 1 \nATOM 1112 C CD2 . TRP A 1 229 ? -21.563 -30.829 -4.090 1.00 74.84 544 A 1 \nATOM 1113 N NE1 . TRP A 1 229 ? -22.854 -31.809 -2.544 1.00 74.58 544 A 1 \nATOM 1114 C CE2 . TRP A 1 229 ? -22.836 -31.381 -3.845 1.00 77.12 544 A 1 \nATOM 1115 C CE3 . TRP A 1 229 ? -21.285 -30.311 -5.359 1.00 72.99 544 A 1 \nATOM 1116 C CZ2 . TRP A 1 229 ? -23.828 -31.431 -4.819 1.00 79.59 544 A 1 \nATOM 1117 C CZ3 . TRP A 1 229 ? -22.272 -30.363 -6.327 1.00 74.95 544 A 1 \nATOM 1118 C CH2 . TRP A 1 229 ? -23.528 -30.919 -6.052 1.00 78.51 544 A 1 \nATOM 1119 N N . LEU A 1 230 ? -16.223 -30.707 -3.372 1.00 69.91 545 A 1 \nATOM 1120 C CA . LEU A 1 230 ? -14.910 -30.128 -3.131 1.00 71.28 545 A 1 \nATOM 1121 C C . LEU A 1 230 ? -15.045 -28.643 -2.815 1.00 67.89 545 A 1 \nATOM 1122 O O . LEU A 1 230 ? -15.678 -27.894 -3.566 1.00 62.14 545 A 1 \nATOM 1123 C CB . LEU A 1 230 ? -13.994 -30.326 -4.336 1.00 72.27 545 A 1 \nATOM 1124 C CG . LEU A 1 230 ? -12.635 -29.665 -4.108 1.00 75.55 545 A 1 \nATOM 1125 C CD1 . LEU A 1 230 ? -11.994 -30.282 -2.877 1.00 82.21 545 A 1 \nATOM 1126 C CD2 . LEU A 1 230 ? -11.729 -29.798 -5.319 1.00 70.84 545 A 1 \nATOM 1127 N N . MET A 1 231 ? -14.442 -28.220 -1.707 1.00 70.04 546 A 1 \nATOM 1128 C CA . MET A 1 231 ? -14.541 -26.849 -1.231 1.00 64.61 546 A 1 \nATOM 1129 C C . MET A 1 231 ? -13.166 -26.202 -1.166 1.00 62.95 546 A 1 \nATOM 1130 O O . MET A 1 231 ? -12.158 -26.861 -0.891 1.00 65.98 546 A 1 \nATOM 1131 C CB . MET A 1 231 ? -15.193 -26.787 0.152 1.00 68.63 546 A 1 \nATOM 1132 C CG . MET A 1 231 ? -16.476 -27.582 0.262 1.00 72.42 546 A 1 \nATOM 1133 S SD . MET A 1 231 ? -17.821 -26.802 -0.643 1.00 71.47 546 A 1 \nATOM 1134 C CE . MET A 1 231 ? -17.979 -25.251 0.238 1.00 65.40 546 A 1 \nATOM 1135 N N . LEU A 1 232 ? -13.137 -24.897 -1.418 1.00 64.89 547 A 1 \nATOM 1136 C CA . LEU A 1 232 ? -11.933 -24.096 -1.284 1.00 66.86 547 A 1 \nATOM 1137 C C . LEU A 1 232 ? -12.250 -22.861 -0.456 1.00 65.40 547 A 1 \nATOM 1138 O O . LEU A 1 232 ? -13.414 -22.500 -0.260 1.00 65.53 547 A 1 \nATOM 1139 C CB . LEU A 1 232 ? -11.363 -23.679 -2.647 1.00 67.33 547 A 1 \nATOM 1140 C CG . LEU A 1 232 ? -11.110 -24.785 -3.672 1.00 69.41 547 A 1 \nATOM 1141 C CD1 . LEU A 1 232 ? -12.208 -24.799 -4.723 1.00 69.79 547 A 1 \nATOM 1142 C CD2 . LEU A 1 232 ? -9.749 -24.602 -4.318 1.00 72.09 547 A 1 \nATOM 1143 N N . ARG A 1 233 ? -11.196 -22.215 0.035 1.00 67.32 548 A 1 \nATOM 1144 C CA . ARG A 1 233 ? -11.314 -20.975 0.799 1.00 66.02 548 A 1 \nATOM 1145 C C . ARG A 1 233 ? -10.307 -19.984 0.227 1.00 68.28 548 A 1 \nATOM 1146 O O . ARG A 1 233 ? -9.110 -20.064 0.521 1.00 70.88 548 A 1 \nATOM 1147 C CB . ARG A 1 233 ? -11.082 -21.217 2.285 1.00 65.97 548 A 1 \nATOM 1148 C CG . ARG A 1 233 ? -12.225 -21.944 2.970 1.00 67.00 548 A 1 \nATOM 1149 C CD . ARG A 1 233 ? -12.004 -22.033 4.468 1.00 70.04 548 A 1 \nATOM 1150 N NE . ARG A 1 233 ? -12.231 -20.756 5.136 1.00 70.73 548 A 1 \nATOM 1151 C CZ . ARG A 1 233 ? -11.888 -20.504 6.395 1.00 73.06 548 A 1 \nATOM 1152 N NH1 . ARG A 1 233 ? -11.299 -21.443 7.123 1.00 74.69 548 A 1 \nATOM 1153 N NH2 . ARG A 1 233 ? -12.131 -19.314 6.926 1.00 73.69 548 A 1 \nATOM 1154 N N . ARG A 1 234 ? -10.792 -19.055 -0.593 1.00 66.28 549 A 1 \nATOM 1155 C CA . ARG A 1 234 ? -9.933 -18.066 -1.224 1.00 69.11 549 A 1 \nATOM 1156 C C . ARG A 1 234 ? -9.745 -16.866 -0.306 1.00 64.60 549 A 1 \nATOM 1157 O O . ARG A 1 234 ? -10.701 -16.375 0.301 1.00 58.04 549 A 1 \nATOM 1158 C CB . ARG A 1 234 ? -10.515 -17.612 -2.563 1.00 72.25 549 A 1 \nATOM 1159 C CG . ARG A 1 234 ? -9.497 -16.937 -3.469 1.00 78.27 549 A 1 \nATOM 1160 C CD . ARG A 1 234 ? -10.162 -16.021 -4.478 1.00 80.42 549 A 1 \nATOM 1161 N NE . ARG A 1 234 ? -9.186 -15.185 -5.171 1.00 85.64 549 A 1 \nATOM 1162 C CZ . ARG A 1 234 ? -8.603 -15.514 -6.319 1.00 89.10 549 A 1 \nATOM 1163 N NH1 . ARG A 1 234 ? -8.896 -16.665 -6.910 1.00 91.70 549 A 1 \nATOM 1164 N NH2 . ARG A 1 234 ? -7.725 -14.692 -6.877 1.00 88.74 549 A 1 \nATOM 1165 N N . ILE A 1 235 ? -8.502 -16.402 -0.210 1.00 67.52 550 A 1 \nATOM 1166 C CA . ILE A 1 235 ? -8.157 -15.246 0.610 1.00 69.61 550 A 1 \nATOM 1167 C C . ILE A 1 235 ? -8.236 -14.019 -0.291 1.00 70.14 550 A 1 \nATOM 1168 O O . ILE A 1 235 ? -7.301 -13.714 -1.034 1.00 77.62 550 A 1 \nATOM 1169 C CB . ILE A 1 235 ? -6.776 -15.397 1.249 1.00 73.96 550 A 1 \nATOM 1170 C CG1 . ILE A 1 235 ? -6.643 -16.774 1.904 1.00 74.43 550 A 1 \nATOM 1171 C CG2 . ILE A 1 235 ? -6.534 -14.286 2.261 1.00 76.61 550 A 1 \nATOM 1172 C CD1 . ILE A 1 235 ? -5.494 -16.885 2.885 1.00 76.79 550 A 1 \nATOM 1173 N N . ASN A 1 236 ? -9.364 -13.315 -0.230 1.00 63.37 551 A 1 \nATOM 1174 C CA . ASN A 1 236 ? -9.552 -12.121 -1.040 1.00 63.98 551 A 1 \nATOM 1175 C C . ASN A 1 236 ? -8.581 -11.024 -0.618 1.00 69.49 551 A 1 \nATOM 1176 O O . ASN A 1 236 ? -8.138 -10.962 0.532 1.00 71.94 551 A 1 \nATOM 1177 C CB . ASN A 1 236 ? -10.993 -11.625 -0.927 1.00 61.68 551 A 1 \nATOM 1178 C CG . ASN A 1 236 ? -12.005 -12.690 -1.307 1.00 60.77 551 A 1 \nATOM 1179 O OD1 . ASN A 1 236 ? -11.955 -13.248 -2.404 1.00 62.44 551 A 1 \nATOM 1180 N ND2 . ASN A 1 236 ? -12.929 -12.980 -0.398 1.00 52.83 551 A 1 \nATOM 1181 N N . ARG A 1 237 ? -8.248 -10.152 -1.565 1.00 75.57 552 A 1 \nATOM 1182 C CA . ARG A 1 237 ? -7.271 -9.107 -1.309 1.00 80.68 552 A 1 \nATOM 1183 C C . ARG A 1 237 ? -7.885 -7.972 -0.494 1.00 80.92 552 A 1 \nATOM 1184 O O . ARG A 1 237 ? -9.107 -7.851 -0.361 1.00 79.86 552 A 1 \nATOM 1185 C CB . ARG A 1 237 ? -6.706 -8.559 -2.618 1.00 84.12 552 A 1 \nATOM 1186 C CG . ARG A 1 237 ? -5.538 -9.357 -3.169 1.00 90.48 552 A 1 \nATOM 1187 C CD . ARG A 1 237 ? -5.974 -10.218 -4.337 1.00 93.96 552 A 1 \nATOM 1188 N NE . ARG A 1 237 ? -6.673 -9.442 -5.357 1.00 96.92 552 A 1 \nATOM 1189 C CZ . ARG A 1 237 ? -7.271 -9.971 -6.420 1.00 97.54 552 A 1 \nATOM 1190 N NH1 . ARG A 1 237 ? -7.259 -11.284 -6.605 1.00 95.64 552 A 1 \nATOM 1191 N NH2 . ARG A 1 237 ? -7.883 -9.188 -7.297 1.00 98.21 552 A 1 \nATOM 1192 N N . GLU A 1 238 ? -7.005 -7.129 0.052 1.00 84.07 553 A 1 \nATOM 1193 C CA . GLU A 1 238 ? -7.448 -6.014 0.884 1.00 86.22 553 A 1 \nATOM 1194 C C . GLU A 1 238 ? -8.329 -5.050 0.097 1.00 81.77 553 A 1 \nATOM 1195 O O . GLU A 1 238 ? -9.315 -4.525 0.628 1.00 80.82 553 A 1 \nATOM 1196 C CB . GLU A 1 238 ? -6.230 -5.292 1.466 1.00 94.12 553 A 1 \nATOM 1197 C CG . GLU A 1 238 ? -6.481 -3.863 1.926 1.00 100.23 553 A 1 \nATOM 1198 C CD . GLU A 1 238 ? -5.198 -3.140 2.301 1.00 107.06 553 A 1 \nATOM 1199 O OE1 . GLU A 1 238 ? -4.391 -3.714 3.062 1.00 109.34 553 A 1 \nATOM 1200 O OE2 . GLU A 1 238 ? -4.994 -1.999 1.835 1.00 108.73 553 A 1 \nATOM 1201 N N . LEU A 1 239 ? -7.999 -4.815 -1.171 1.00 78.02 554 A 1 \nATOM 1202 C CA . LEU A 1 239 ? -8.765 -3.903 -2.021 1.00 72.61 554 A 1 \nATOM 1203 C C . LEU A 1 239 ? -9.920 -4.682 -2.637 1.00 67.55 554 A 1 \nATOM 1204 O O . LEU A 1 239 ? -9.781 -5.326 -3.677 1.00 70.87 554 A 1 \nATOM 1205 C CB . LEU A 1 239 ? -7.868 -3.279 -3.081 1.00 73.13 554 A 1 \nATOM 1206 C CG . LEU A 1 239 ? -6.693 -2.466 -2.537 1.00 77.38 554 A 1 \nATOM 1207 C CD1 . LEU A 1 239 ? -5.380 -2.947 -3.136 1.00 80.09 554 A 1 \nATOM 1208 C CD2 . LEU A 1 239 ? -6.898 -0.985 -2.804 1.00 81.07 554 A 1 \nATOM 1209 N N . ARG A 1 240 ? -11.076 -4.617 -1.986 1.00 63.90 555 A 1 \nATOM 1210 C CA . ARG A 1 240 ? -12.251 -5.370 -2.397 1.00 61.21 555 A 1 \nATOM 1211 C C . ARG A 1 240 ? -13.489 -4.572 -2.021 1.00 60.50 555 A 1 \nATOM 1212 O O . ARG A 1 240 ? -13.437 -3.732 -1.114 1.00 64.68 555 A 1 \nATOM 1213 C CB . ARG A 1 240 ? -12.282 -6.758 -1.739 1.00 63.59 555 A 1 \nATOM 1214 C CG . ARG A 1 240 ? -12.874 -6.770 -0.339 1.00 63.62 555 A 1 \nATOM 1215 C CD . ARG A 1 240 ? -12.713 -8.130 0.318 1.00 65.60 555 A 1 \nATOM 1216 N NE . ARG A 1 240 ? -11.453 -8.235 1.044 1.00 67.75 555 A 1 \nATOM 1217 C CZ . ARG A 1 240 ? -11.332 -8.081 2.357 1.00 63.80 555 A 1 \nATOM 1218 N NH1 . ARG A 1 240 ? -12.401 -7.817 3.096 1.00 63.81 555 A 1 \nATOM 1219 N NH2 . ARG A 1 240 ? -10.143 -8.192 2.931 1.00 64.69 555 A 1 \nATOM 1220 N N . PRO A 1 241 ? -14.610 -4.798 -2.700 1.00 58.34 556 A 1 \nATOM 1221 C CA . PRO A 1 241 ? -15.846 -4.087 -2.353 1.00 58.48 556 A 1 \nATOM 1222 C C . PRO A 1 241 ? -16.398 -4.575 -1.026 1.00 56.23 556 A 1 \nATOM 1223 O O . PRO A 1 241 ? -16.084 -5.692 -0.588 1.00 54.27 556 A 1 \nATOM 1224 C CB . PRO A 1 241 ? -16.789 -4.432 -3.515 1.00 56.17 556 A 1 \nATOM 1225 C CG . PRO A 1 241 ? -16.280 -5.725 -4.034 1.00 54.28 556 A 1 \nATOM 1226 C CD . PRO A 1 241 ? -14.788 -5.663 -3.879 1.00 56.97 556 A 1 \nATOM 1227 N N . PRO A 1 242 ? -17.236 -3.772 -0.360 1.00 58.05 557 A 1 \nATOM 1228 C CA . PRO A 1 242 ? -17.682 -4.128 1.000 1.00 59.20 557 A 1 \nATOM 1229 C C . PRO A 1 242 ? -18.566 -5.364 1.074 1.00 60.23 557 A 1 \nATOM 1230 O O . PRO A 1 242 ? -18.859 -5.816 2.188 1.00 63.97 557 A 1 \nATOM 1231 C CB . PRO A 1 242 ? -18.450 -2.880 1.455 1.00 58.27 557 A 1 \nATOM 1232 C CG . PRO A 1 242 ? -18.865 -2.203 0.187 1.00 58.21 557 A 1 \nATOM 1233 C CD . PRO A 1 242 ? -17.757 -2.462 -0.788 1.00 57.21 557 A 1 \nATOM 1234 N N . ASP A 1 243 ? -19.001 -5.923 -0.054 1.00 54.20 558 A 1 \nATOM 1235 C CA . ASP A 1 243 ? -19.871 -7.091 -0.052 1.00 48.39 558 A 1 \nATOM 1236 C C . ASP A 1 243 ? -19.104 -8.397 -0.220 1.00 49.04 558 A 1 \nATOM 1237 O O . ASP A 1 243 ? -19.727 -9.457 -0.350 1.00 48.93 558 A 1 \nATOM 1238 C CB . ASP A 1 243 ? -20.928 -6.963 -1.150 1.00 51.12 558 A 1 \nATOM 1239 C CG . ASP A 1 243 ? -20.325 -6.977 -2.541 1.00 55.92 558 A 1 \nATOM 1240 O OD1 . ASP A 1 243 ? -19.337 -6.249 -2.773 1.00 57.78 558 A 1 \nATOM 1241 O OD2 . ASP A 1 243 ? -20.835 -7.722 -3.403 1.00 57.56 558 A 1 \nATOM 1242 N N . ILE A 1 244 ? -17.781 -8.350 -0.219 1.00 48.50 559 A 1 \nATOM 1243 C CA . ILE A 1 244 ? -16.934 -9.527 -0.404 1.00 51.76 559 A 1 \nATOM 1244 C C . ILE A 1 244 ? -16.219 -9.806 0.911 1.00 55.43 559 A 1 \nATOM 1245 O O . ILE A 1 244 ? -15.567 -8.906 1.450 1.00 59.48 559 A 1 \nATOM 1246 C CB . ILE A 1 244 ? -15.921 -9.331 -1.549 1.00 51.08 559 A 1 \nATOM 1247 C CG1 . ILE A 1 244 ? -16.655 -9.191 -2.886 1.00 49.72 559 A 1 \nATOM 1248 C CG2 . ILE A 1 244 ? -14.936 -10.491 -1.600 1.00 46.64 559 A 1 \nATOM 1249 C CD1 . ILE A 1 244 ? -15.765 -9.358 -4.103 1.00 52.26 559 A 1 \nATOM 1250 N N . PRO A 1 245 ? -16.314 -11.015 1.455 1.00 59.05 560 A 1 \nATOM 1251 C CA . PRO A 1 245 ? -15.714 -11.299 2.765 1.00 61.00 560 A 1 \nATOM 1252 C C . PRO A 1 245 ? -14.203 -11.402 2.663 1.00 63.15 560 A 1 \nATOM 1253 O O . PRO A 1 245 ? -13.652 -11.465 1.553 1.00 65.78 560 A 1 \nATOM 1254 C CB . PRO A 1 245 ? -16.340 -12.650 3.158 1.00 58.54 560 A 1 \nATOM 1255 C CG . PRO A 1 245 ? -17.456 -12.889 2.168 1.00 60.39 560 A 1 \nATOM 1256 C CD . PRO A 1 245 ? -17.050 -12.173 0.925 1.00 57.94 560 A 1 \nATOM 1257 N N . PRO A 1 246 ? -13.495 -11.409 3.797 1.00 63.74 561 A 1 \nATOM 1258 C CA . PRO A 1 246 ? -12.038 -11.628 3.736 1.00 64.06 561 A 1 \nATOM 1259 C C . PRO A 1 246 ? -11.665 -12.998 3.197 1.00 62.55 561 A 1 \nATOM 1260 O O . PRO A 1 246 ? -10.698 -13.120 2.435 1.00 61.14 561 A 1 \nATOM 1261 C CB . PRO A 1 246 ? -11.595 -11.450 5.197 1.00 62.88 561 A 1 \nATOM 1262 C CG . PRO A 1 246 ? -12.695 -10.675 5.848 1.00 62.79 561 A 1 \nATOM 1263 C CD . PRO A 1 246 ? -13.952 -11.104 5.164 1.00 62.68 561 A 1 \nATOM 1264 N N . ILE A 1 247 ? -12.402 -14.038 3.584 1.00 60.45 562 A 1 \nATOM 1265 C CA . ILE A 1 247 ? -12.190 -15.393 3.094 1.00 59.79 562 A 1 \nATOM 1266 C C . ILE A 1 247 ? -13.530 -15.941 2.627 1.00 63.29 562 A 1 \nATOM 1267 O O . ILE A 1 247 ? -14.550 -15.773 3.305 1.00 64.19 562 A 1 \nATOM 1268 C CB . ILE A 1 247 ? -11.571 -16.306 4.173 1.00 59.08 562 A 1 \nATOM 1269 C CG1 . ILE A 1 247 ? -10.238 -15.734 4.659 1.00 60.46 562 A 1 \nATOM 1270 C CG2 . ILE A 1 247 ? -11.376 -17.717 3.636 1.00 60.05 562 A 1 \nATOM 1271 C CD1 . ILE A 1 247 ? -9.572 -16.566 5.732 1.00 62.13 562 A 1 \nATOM 1272 N N . SER A 1 248 ? -13.531 -16.594 1.467 1.00 65.73 563 A 1 \nATOM 1273 C CA . SER A 1 248 ? -14.755 -17.087 0.842 1.00 63.93 563 A 1 \nATOM 1274 C C . SER A 1 248 ? -14.718 -18.608 0.796 1.00 66.87 563 A 1 \nATOM 1275 O O . SER A 1 248 ? -13.958 -19.192 0.015 1.00 72.08 563 A 1 \nATOM 1276 C CB . SER A 1 248 ? -14.921 -16.504 -0.560 1.00 61.77 563 A 1 \nATOM 1277 O OG . SER A 1 248 ? -14.990 -15.091 -0.518 1.00 62.32 563 A 1 \nATOM 1278 N N . LEU A 1 249 ? -15.537 -19.248 1.628 1.00 60.77 564 A 1 \nATOM 1279 C CA . LEU A 1 249 ? -15.748 -20.688 1.523 1.00 62.92 564 A 1 \nATOM 1280 C C . LEU A 1 249 ? -16.565 -20.963 0.268 1.00 61.97 564 A 1 \nATOM 1281 O O . LEU A 1 249 ? -17.774 -20.712 0.238 1.00 64.27 564 A 1 \nATOM 1282 C CB . LEU A 1 249 ? -16.453 -21.221 2.766 1.00 64.10 564 A 1 \nATOM 1283 C CG . LEU A 1 249 ? -16.798 -22.712 2.740 1.00 64.73 564 A 1 \nATOM 1284 C CD1 . LEU A 1 249 ? -15.535 -23.559 2.692 1.00 65.67 564 A 1 \nATOM 1285 C CD2 . LEU A 1 249 ? -17.658 -23.093 3.935 1.00 65.74 564 A 1 \nATOM 1286 N N . LYS A 1 250 ? -15.911 -21.472 -0.771 1.00 59.46 565 A 1 \nATOM 1287 C CA . LYS A 1 250 ? -16.525 -21.586 -2.083 1.00 56.51 565 A 1 \nATOM 1288 C C . LYS A 1 250 ? -16.287 -22.964 -2.676 1.00 62.14 565 A 1 \nATOM 1289 O O . LYS A 1 250 ? -15.324 -23.655 -2.332 1.00 67.91 565 A 1 \nATOM 1290 C CB . LYS A 1 250 ? -15.975 -20.526 -3.047 1.00 52.42 565 A 1 \nATOM 1291 C CG . LYS A 1 250 ? -14.509 -20.727 -3.407 1.00 52.06 565 A 1 \nATOM 1292 C CD . LYS A 1 250 ? -13.935 -19.521 -4.135 1.00 51.47 565 A 1 \nATOM 1293 C CE . LYS A 1 250 ? -14.579 -19.340 -5.497 1.00 51.75 565 A 1 \nATOM 1294 N NZ . LYS A 1 250 ? -14.332 -20.512 -6.382 1.00 52.06 565 A 1 \nATOM 1295 N N . LEU A 1 251 ? -17.186 -23.351 -3.563 1.00 63.00 566 A 1 \nATOM 1296 C CA . LEU A 1 251 ? -16.979 -24.426 -4.514 1.00 61.16 566 A 1 \nATOM 1297 C C . LEU A 1 251 ? -16.246 -23.876 -5.729 1.00 60.98 566 A 1 \nATOM 1298 O O . LEU A 1 251 ? -16.302 -22.671 -5.998 1.00 55.84 566 A 1 \nATOM 1299 C CB . LEU A 1 251 ? -18.323 -25.038 -4.914 1.00 58.19 566 A 1 \nATOM 1300 C CG . LEU A 1 251 ? -19.131 -25.668 -3.771 1.00 58.61 566 A 1 \nATOM 1301 C CD1 . LEU A 1 251 ? -20.036 -24.648 -3.082 1.00 50.04 566 A 1 \nATOM 1302 C CD2 . LEU A 1 251 ? -19.938 -26.862 -4.257 1.00 61.35 566 A 1 \nATOM 1303 N N . PRO A 1 252 ? -15.528 -24.720 -6.474 1.00 65.35 567 A 1 \nATOM 1304 C CA . PRO A 1 252 ? -14.650 -24.200 -7.532 1.00 65.08 567 A 1 \nATOM 1305 C C . PRO A 1 252 ? -15.401 -23.366 -8.562 1.00 61.61 567 A 1 \nATOM 1306 O O . PRO A 1 252 ? -16.602 -23.535 -8.782 1.00 58.22 567 A 1 \nATOM 1307 C CB . PRO A 1 252 ? -14.061 -25.468 -8.164 1.00 69.65 567 A 1 \nATOM 1308 C CG . PRO A 1 252 ? -14.939 -26.588 -7.705 1.00 68.80 567 A 1 \nATOM 1309 C CD . PRO A 1 252 ? -15.423 -26.184 -6.354 1.00 65.58 567 A 1 \nATOM 1310 N N . GLY A 1 253 ? -14.668 -22.445 -9.187 1.00 61.50 568 A 1 \nATOM 1311 C CA . GLY A 1 253 ? -15.230 -21.569 -10.195 1.00 61.39 568 A 1 \nATOM 1312 C C . GLY A 1 253 ? -14.908 -20.106 -9.966 1.00 60.63 568 A 1 \nATOM 1313 O O . GLY A 1 253 ? -14.921 -19.632 -8.826 1.00 59.30 568 A 1 \nATOM 1314 N N . LYS A 1 254 ? -14.616 -19.377 -11.044 1.00 60.98 569 A 1 \nATOM 1315 C CA . LYS A 1 254 ? -14.322 -17.953 -10.945 1.00 56.42 569 A 1 \nATOM 1316 C C . LYS A 1 254 ? -15.315 -17.136 -11.763 1.00 55.44 569 A 1 \nATOM 1317 O O . LYS A 1 254 ? -16.501 -17.071 -11.426 1.00 56.49 569 A 1 \nATOM 1318 C CB . LYS A 1 254 ? -12.893 -17.660 -11.403 1.00 55.28 569 A 1 \nATOM 1319 C CG . LYS A 1 254 ? -11.814 -18.366 -10.599 1.00 60.59 569 A 1 \nATOM 1320 C CD . LYS A 1 254 ? -10.431 -18.024 -11.132 1.00 67.60 569 A 1 \nATOM 1321 C CE . LYS A 1 254 ? -9.335 -18.609 -10.257 1.00 69.47 569 A 1 \nATOM 1322 N NZ . LYS A 1 254 ? -7.977 -18.293 -10.782 1.00 67.89 569 A 1 \nATOM 1323 N N . TRP A 1 255 ? -14.845 -16.514 -12.842 1.00 56.79 570 A 1 \nATOM 1324 C CA . TRP A 1 255 ? -15.683 -15.631 -13.637 1.00 58.44 570 A 1 \nATOM 1325 C C . TRP A 1 255 ? -15.451 -15.885 -15.119 1.00 60.75 570 A 1 \nATOM 1326 O O . TRP A 1 255 ? -14.413 -16.407 -15.532 1.00 60.18 570 A 1 \nATOM 1327 C CB . TRP A 1 255 ? -15.412 -14.156 -13.318 1.00 51.89 570 A 1 \nATOM 1328 C CG . TRP A 1 255 ? -14.082 -13.673 -13.811 1.00 50.84 570 A 1 \nATOM 1329 C CD1 . TRP A 1 255 ? -13.818 -13.082 -15.012 1.00 50.86 570 A 1 \nATOM 1330 C CD2 . TRP A 1 255 ? -12.834 -13.737 -13.113 1.00 53.92 570 A 1 \nATOM 1331 N NE1 . TRP A 1 255 ? -12.481 -12.778 -15.106 1.00 55.04 570 A 1 \nATOM 1332 C CE2 . TRP A 1 255 ? -11.855 -13.169 -13.952 1.00 55.99 570 A 1 \nATOM 1333 C CE3 . TRP A 1 255 ? -12.449 -14.218 -11.858 1.00 49.50 570 A 1 \nATOM 1334 C CZ2 . TRP A 1 255 ? -10.517 -13.070 -13.578 1.00 60.09 570 A 1 \nATOM 1335 C CZ3 . TRP A 1 255 ? -11.120 -14.120 -11.488 1.00 51.67 570 A 1 \nATOM 1336 C CH2 . TRP A 1 255 ? -10.170 -13.550 -12.345 1.00 58.33 570 A 1 \nATOM 1337 N N . THR A 1 256 ? -16.441 -15.494 -15.916 1.00 61.83 571 A 1 \nATOM 1338 C CA . THR A 1 256 ? -16.313 -15.557 -17.363 1.00 60.86 571 A 1 \nATOM 1339 C C . THR A 1 256 ? -15.407 -14.437 -17.852 1.00 61.41 571 A 1 \nATOM 1340 O O . THR A 1 256 ? -15.646 -13.261 -17.563 1.00 58.65 571 A 1 \nATOM 1341 C CB . THR A 1 256 ? -17.685 -15.443 -18.024 1.00 59.65 571 A 1 \nATOM 1342 O OG1 . THR A 1 256 ? -18.280 -14.189 -17.667 1.00 54.07 571 A 1 \nATOM 1343 C CG2 . THR A 1 256 ? -18.599 -16.573 -17.572 1.00 59.05 571 A 1 \nATOM 1344 N N . LEU A 1 257 ? -14.364 -14.800 -18.593 1.00 68.23 572 A 1 \nATOM 1345 C CA . LEU A 1 257 ? -13.536 -13.792 -19.232 1.00 70.62 572 A 1 \nATOM 1346 C C . LEU A 1 257 ? -14.338 -13.067 -20.310 1.00 70.44 572 A 1 \nATOM 1347 O O . LEU A 1 257 ? -15.482 -13.418 -20.619 1.00 70.11 572 A 1 \nATOM 1348 C CB . LEU A 1 257 ? -12.283 -14.425 -19.837 1.00 71.39 572 A 1 \nATOM 1349 C CG . LEU A 1 257 ? -11.256 -15.002 -18.860 1.00 72.80 572 A 1 \nATOM 1350 C CD1 . LEU A 1 257 ? -10.163 -15.748 -19.610 1.00 75.71 572 A 1 \nATOM 1351 C CD2 . LEU A 1 257 ? -10.661 -13.907 -17.987 1.00 70.73 572 A 1 \nATOM 1352 N N . LEU A 1 258 ? -13.727 -12.033 -20.882 1.00 71.67 573 A 1 \nATOM 1353 C CA . LEU A 1 258 ? -14.353 -11.335 -21.996 1.00 73.97 573 A 1 \nATOM 1354 C C . LEU A 1 258 ? -14.603 -12.312 -23.142 1.00 77.24 573 A 1 \nATOM 1355 O O . LEU A 1 258 ? -13.687 -13.007 -23.594 1.00 78.62 573 A 1 \nATOM 1356 C CB . LEU A 1 258 ? -13.472 -10.168 -22.453 1.00 77.74 573 A 1 \nATOM 1357 C CG . LEU A 1 258 ? -13.403 -8.896 -21.593 1.00 84.29 573 A 1 \nATOM 1358 C CD1 . LEU A 1 258 ? -14.798 -8.379 -21.307 1.00 86.34 573 A 1 \nATOM 1359 C CD2 . LEU A 1 258 ? -12.631 -9.089 -20.292 1.00 86.27 573 A 1 \nATOM 1360 N N . TYR A 1 259 ? -15.860 -12.381 -23.589 1.00 80.80 574 A 1 \nATOM 1361 C CA . TYR A 1 259 ? -16.369 -13.227 -24.672 1.00 88.88 574 A 1 \nATOM 1362 C C . TYR A 1 259 ? -16.350 -14.709 -24.335 1.00 87.10 574 A 1 \nATOM 1363 O O . TYR A 1 259 ? -16.754 -15.525 -25.172 1.00 91.97 574 A 1 \nATOM 1364 C CB . TYR A 1 259 ? -15.624 -12.994 -25.994 1.00 99.97 574 A 1 \nATOM 1365 C CG . TYR A 1 259 ? -15.138 -11.572 -26.111 1.00 110.36 574 A 1 \nATOM 1366 C CD1 . TYR A 1 259 ? -13.782 -11.280 -26.136 1.00 116.57 574 A 1 \nATOM 1367 C CD2 . TYR A 1 259 ? -16.038 -10.517 -26.148 1.00 113.41 574 A 1 \nATOM 1368 C CE1 . TYR A 1 259 ? -13.337 -9.982 -26.219 1.00 121.28 574 A 1 \nATOM 1369 C CE2 . TYR A 1 259 ? -15.604 -9.216 -26.232 1.00 117.50 574 A 1 \nATOM 1370 C CZ . TYR A 1 259 ? -14.252 -8.956 -26.268 1.00 122.16 574 A 1 \nATOM 1371 O OH . TYR A 1 259 ? -13.809 -7.663 -26.351 1.00 125.55 574 A 1 \nATOM 1372 N N . GLU A 1 260 ? -15.918 -15.086 -23.139 1.00 82.79 575 A 1 \nATOM 1373 C CA . GLU A 1 260 ? -16.024 -16.467 -22.706 1.00 76.78 575 A 1 \nATOM 1374 C C . GLU A 1 260 ? -17.457 -16.774 -22.290 1.00 74.35 575 A 1 \nATOM 1375 O O . GLU A 1 260 ? -18.199 -15.898 -21.835 1.00 73.93 575 A 1 \nATOM 1376 C CB . GLU A 1 260 ? -15.065 -16.737 -21.550 1.00 76.24 575 A 1 \nATOM 1377 C CG . GLU A 1 260 ? -14.834 -18.204 -21.272 1.00 78.81 575 A 1 \nATOM 1378 C CD . GLU A 1 260 ? -13.883 -18.425 -20.122 1.00 80.99 575 A 1 \nATOM 1379 O OE1 . GLU A 1 260 ? -13.824 -17.558 -19.223 1.00 79.18 575 A 1 \nATOM 1380 O OE2 . GLU A 1 260 ? -13.197 -19.468 -20.114 1.00 82.56 575 A 1 \nATOM 1381 N N . ARG A 1 261 ? -17.847 -18.030 -22.459 1.00 77.67 576 A 1 \nATOM 1382 C CA . ARG A 1 261 ? -19.193 -18.476 -22.142 1.00 75.10 576 A 1 \nATOM 1383 C C . ARG A 1 261 ? -19.218 -19.169 -20.784 1.00 68.41 576 A 1 \nATOM 1384 O O . ARG A 1 261 ? -18.180 -19.485 -20.198 1.00 67.84 576 A 1 \nATOM 1385 C CB . ARG A 1 261 ? -19.718 -19.400 -23.243 1.00 80.72 576 A 1 \nATOM 1386 C CG . ARG A 1 261 ? -19.275 -18.978 -24.633 1.00 86.75 576 A 1 \nATOM 1387 C CD . ARG A 1 261 ? -19.985 -19.770 -25.713 1.00 96.85 576 A 1 \nATOM 1388 N NE . ARG A 1 261 ? -21.436 -19.714 -25.571 1.00 103.09 576 A 1 \nATOM 1389 C CZ . ARG A 1 261 ? -22.220 -20.785 -25.497 1.00 108.92 576 A 1 \nATOM 1390 N NH1 . ARG A 1 261 ? -21.690 -22.000 -25.551 1.00 111.82 576 A 1 \nATOM 1391 N NH2 . ARG A 1 261 ? -23.532 -20.642 -25.370 1.00 109.37 576 A 1 \nATOM 1392 N N . TYR A 1 262 ? -20.434 -19.402 -20.288 1.00 67.16 577 A 1 \nATOM 1393 C CA . TYR A 1 262 ? -20.654 -19.897 -18.933 1.00 69.47 577 A 1 \nATOM 1394 C C . TYR A 1 262 ? -19.952 -21.226 -18.684 1.00 71.69 577 A 1 \nATOM 1395 O O . TYR A 1 262 ? -19.041 -21.309 -17.854 1.00 72.84 577 A 1 \nATOM 1396 C CB . TYR A 1 262 ? -22.151 -20.053 -18.661 1.00 72.23 577 A 1 \nATOM 1397 C CG . TYR A 1 262 ? -22.952 -18.779 -18.791 1.00 76.43 577 A 1 \nATOM 1398 C CD1 . TYR A 1 262 ? -24.308 -18.820 -19.086 1.00 80.38 577 A 1 \nATOM 1399 C CD2 . TYR A 1 262 ? -22.357 -17.538 -18.613 1.00 77.98 577 A 1 \nATOM 1400 C CE1 . TYR A 1 262 ? -25.049 -17.660 -19.203 1.00 82.05 577 A 1 \nATOM 1401 C CE2 . TYR A 1 262 ? -23.089 -16.372 -18.731 1.00 78.25 577 A 1 \nATOM 1402 C CZ . TYR A 1 262 ? -24.434 -16.439 -19.024 1.00 79.68 577 A 1 \nATOM 1403 O OH . TYR A 1 262 ? -25.166 -15.281 -19.140 1.00 79.98 577 A 1 \nATOM 1404 N N . LYS A 1 263 ? -20.383 -22.271 -19.395 1.00 71.25 578 A 1 \nATOM 1405 C CA . LYS A 1 263 ? -19.808 -23.597 -19.199 1.00 70.60 578 A 1 \nATOM 1406 C C . LYS A 1 263 ? -18.315 -23.603 -19.503 1.00 74.10 578 A 1 \nATOM 1407 O O . LYS A 1 263 ? -17.534 -24.266 -18.811 1.00 72.35 578 A 1 \nATOM 1408 C CB . LYS A 1 263 ? -20.547 -24.610 -20.074 1.00 70.16 578 A 1 \nATOM 1409 C CG . LYS A 1 263 ? -19.929 -25.993 -20.105 1.00 75.65 578 A 1 \nATOM 1410 C CD . LYS A 1 263 ? -20.979 -27.081 -19.939 1.00 77.59 578 A 1 \nATOM 1411 C CE . LYS A 1 263 ? -22.244 -26.782 -20.724 1.00 77.37 578 A 1 \nATOM 1412 N NZ . LYS A 1 263 ? -23.099 -27.993 -20.870 1.00 74.61 578 A 1 \nATOM 1413 N N . GLU A 1 264 ? -17.903 -22.861 -20.535 1.00 77.08 579 A 1 \nATOM 1414 C CA . GLU A 1 264 ? -16.486 -22.763 -20.868 1.00 79.19 579 A 1 \nATOM 1415 C C . GLU A 1 264 ? -15.689 -22.160 -19.717 1.00 74.34 579 A 1 \nATOM 1416 O O . GLU A 1 264 ? -14.582 -22.619 -19.409 1.00 76.14 579 A 1 \nATOM 1417 C CB . GLU A 1 264 ? -16.317 -21.934 -22.143 1.00 83.30 579 A 1 \nATOM 1418 C CG . GLU A 1 264 ? -14.881 -21.682 -22.566 1.00 88.26 579 A 1 \nATOM 1419 C CD . GLU A 1 264 ? -14.786 -20.685 -23.710 1.00 91.33 579 A 1 \nATOM 1420 O OE1 . GLU A 1 264 ? -15.845 -20.278 -24.235 1.00 89.69 579 A 1 \nATOM 1421 O OE2 . GLU A 1 264 ? -13.655 -20.307 -24.082 1.00 91.71 579 A 1 \nATOM 1422 N N . ALA A 1 265 ? -16.238 -21.136 -19.062 1.00 65.09 580 A 1 \nATOM 1423 C CA . ALA A 1 265 ? -15.544 -20.533 -17.930 1.00 62.88 580 A 1 \nATOM 1424 C C . ALA A 1 265 ? -15.559 -21.454 -16.718 1.00 60.68 580 A 1 \nATOM 1425 O O . ALA A 1 265 ? -14.544 -21.591 -16.027 1.00 60.82 580 A 1 \nATOM 1426 C CB . ALA A 1 265 ? -16.171 -19.185 -17.584 1.00 60.34 580 A 1 \nATOM 1427 N N . ALA A 1 266 ? -16.699 -22.095 -16.449 1.00 58.63 581 A 1 \nATOM 1428 C CA . ALA A 1 266 ? -16.800 -22.981 -15.293 1.00 53.11 581 A 1 \nATOM 1429 C C . ALA A 1 266 ? -15.779 -24.110 -15.365 1.00 58.44 581 A 1 \nATOM 1430 O O . ALA A 1 266 ? -15.175 -24.473 -14.350 1.00 59.27 581 A 1 \nATOM 1431 C CB . ALA A 1 266 ? -18.217 -23.544 -15.184 1.00 51.88 581 A 1 \nATOM 1432 N N . ILE A 1 267 ? -15.563 -24.670 -16.556 1.00 67.43 582 A 1 \nATOM 1433 C CA . ILE A 1 267 ? -14.622 -25.777 -16.692 1.00 70.73 582 A 1 \nATOM 1434 C C . ILE A 1 267 ? -13.187 -25.283 -16.560 1.00 72.21 582 A 1 \nATOM 1435 O O . ILE A 1 267 ? -12.370 -25.887 -15.854 1.00 75.50 582 A 1 \nATOM 1436 C CB . ILE A 1 267 ? -14.849 -26.511 -18.025 1.00 69.19 582 A 1 \nATOM 1437 C CG1 . ILE A 1 267 ? -16.142 -27.322 -17.968 1.00 72.61 582 A 1 \nATOM 1438 C CG2 . ILE A 1 267 ? -13.668 -27.415 -18.352 1.00 65.87 582 A 1 \nATOM 1439 C CD1 . ILE A 1 267 ? -16.797 -27.506 -19.311 1.00 78.50 582 A 1 \nATOM 1440 N N . ARG A 1 268 ? -12.857 -24.177 -17.230 1.00 69.22 583 A 1 \nATOM 1441 C CA . ARG A 1 268 ? -11.491 -23.667 -17.179 1.00 71.56 583 A 1 \nATOM 1442 C C . ARG A 1 268 ? -11.143 -23.150 -15.787 1.00 70.51 583 A 1 \nATOM 1443 O O . ARG A 1 268 ? -10.059 -23.438 -15.267 1.00 74.32 583 A 1 \nATOM 1444 C CB . ARG A 1 268 ? -11.295 -22.575 -18.231 1.00 69.30 583 A 1 \nATOM 1445 C CG . ARG A 1 268 ? -10.281 -21.512 -17.846 1.00 71.74 583 A 1 \nATOM 1446 C CD . ARG A 1 268 ? -10.449 -20.265 -18.690 1.00 72.58 583 A 1 \nATOM 1447 N NE . ARG A 1 268 ? -11.600 -19.474 -18.262 1.00 72.47 583 A 1 \nATOM 1448 C CZ . ARG A 1 268 ? -11.547 -18.496 -17.365 1.00 61.47 583 A 1 \nATOM 1449 N NH1 . ARG A 1 268 ? -10.394 -18.181 -16.792 1.00 58.34 583 A 1 \nATOM 1450 N NH2 . ARG A 1 268 ? -12.648 -17.831 -17.043 1.00 56.60 583 A 1 \nATOM 1451 N N . THR A 1 269 ? -12.050 -22.397 -15.160 1.00 66.85 584 A 1 \nATOM 1452 C CA . THR A 1 269 ? -11.795 -21.928 -13.803 1.00 67.02 584 A 1 \nATOM 1453 C C . THR A 1 269 ? -11.796 -23.065 -12.791 1.00 70.03 584 A 1 \nATOM 1454 O O . THR A 1 269 ? -11.182 -22.930 -11.728 1.00 70.95 584 A 1 \nATOM 1455 C CB . THR A 1 269 ? -12.824 -20.873 -13.396 1.00 61.73 584 A 1 \nATOM 1456 O OG1 . THR A 1 269 ? -14.142 -21.432 -13.465 1.00 62.15 584 A 1 \nATOM 1457 C CG2 . THR A 1 269 ? -12.738 -19.669 -14.317 1.00 61.60 584 A 1 \nATOM 1458 N N . LEU A 1 270 ? -12.472 -24.177 -13.094 1.00 70.87 585 A 1 \nATOM 1459 C CA . LEU A 1 270 ? -12.392 -25.347 -12.227 1.00 69.49 585 A 1 \nATOM 1460 C C . LEU A 1 270 ? -10.960 -25.861 -12.142 1.00 73.97 585 A 1 \nATOM 1461 O O . LEU A 1 270 ? -10.445 -26.123 -11.049 1.00 77.07 585 A 1 \nATOM 1462 C CB . LEU A 1 270 ? -13.328 -26.446 -12.735 1.00 68.23 585 A 1 \nATOM 1463 C CG . LEU A 1 270 ? -13.043 -27.864 -12.233 1.00 70.13 585 A 1 \nATOM 1464 C CD1 . LEU A 1 270 ? -13.160 -27.937 -10.718 1.00 63.31 585 A 1 \nATOM 1465 C CD2 . LEU A 1 270 ? -13.967 -28.877 -12.895 1.00 74.42 585 A 1 \nATOM 1466 N N . TRP A 1 271 ? -10.301 -26.013 -13.293 1.00 74.81 586 A 1 \nATOM 1467 C CA . TRP A 1 271 ? -8.917 -26.472 -13.282 1.00 76.40 586 A 1 \nATOM 1468 C C . TRP A 1 271 ? -8.000 -25.437 -12.645 1.00 77.36 586 A 1 \nATOM 1469 O O . TRP A 1 271 ? -7.040 -25.794 -11.953 1.00 78.57 586 A 1 \nATOM 1470 C CB . TRP A 1 271 ? -8.450 -26.797 -14.701 1.00 76.99 586 A 1 \nATOM 1471 C CG . TRP A 1 271 ? -7.034 -27.292 -14.747 1.00 75.51 586 A 1 \nATOM 1472 C CD1 . TRP A 1 271 ? -6.622 -28.591 -14.788 1.00 75.70 586 A 1 \nATOM 1473 C CD2 . TRP A 1 271 ? -5.843 -26.494 -14.743 1.00 76.80 586 A 1 \nATOM 1474 N NE1 . TRP A 1 271 ? -5.250 -28.653 -14.812 1.00 79.17 586 A 1 \nATOM 1475 C CE2 . TRP A 1 271 ? -4.748 -27.378 -14.784 1.00 78.88 586 A 1 \nATOM 1476 C CE3 . TRP A 1 271 ? -5.596 -25.117 -14.709 1.00 78.84 586 A 1 \nATOM 1477 C CZ2 . TRP A 1 271 ? -3.429 -26.932 -14.794 1.00 80.87 586 A 1 \nATOM 1478 C CZ3 . TRP A 1 271 ? -4.287 -24.677 -14.717 1.00 79.21 586 A 1 \nATOM 1479 C CH2 . TRP A 1 271 ? -3.220 -25.581 -14.760 1.00 79.44 586 A 1 \nATOM 1480 N N . GLU A 1 272 ? -8.272 -24.149 -12.875 1.00 79.57 587 A 1 \nATOM 1481 C CA . GLU A 1 272 ? -7.420 -23.103 -12.319 1.00 79.73 587 A 1 \nATOM 1482 C C . GLU A 1 272 ? -7.413 -23.136 -10.797 1.00 76.90 587 A 1 \nATOM 1483 O O . GLU A 1 272 ? -6.395 -22.812 -10.175 1.00 77.40 587 A 1 \nATOM 1484 C CB . GLU A 1 272 ? -7.875 -21.731 -12.821 1.00 79.30 587 A 1 \nATOM 1485 C CG . GLU A 1 272 ? -7.682 -21.519 -14.316 1.00 83.27 587 A 1 \nATOM 1486 C CD . GLU A 1 272 ? -7.888 -20.075 -14.735 1.00 84.71 587 A 1 \nATOM 1487 O OE1 . GLU A 1 272 ? -8.092 -19.220 -13.848 1.00 83.41 587 A 1 \nATOM 1488 O OE2 . GLU A 1 272 ? -7.849 -19.795 -15.953 1.00 87.20 587 A 1 \nATOM 1489 N N . GLU A 1 273 ? -8.526 -23.538 -10.184 1.00 75.17 588 A 1 \nATOM 1490 C CA . GLU A 1 273 ? -8.637 -23.584 -8.733 1.00 74.44 588 A 1 \nATOM 1491 C C . GLU A 1 273 ? -8.375 -24.964 -8.145 1.00 79.11 588 A 1 \nATOM 1492 O O . GLU A 1 273 ? -8.040 -25.057 -6.960 1.00 82.86 588 A 1 \nATOM 1493 C CB . GLU A 1 273 ? -10.030 -23.118 -8.291 1.00 70.21 588 A 1 \nATOM 1494 C CG . GLU A 1 273 ? -10.324 -21.656 -8.581 1.00 72.12 588 A 1 \nATOM 1495 C CD . GLU A 1 273 ? -11.433 -21.099 -7.706 1.00 70.77 588 A 1 \nATOM 1496 O OE1 . GLU A 1 273 ? -12.369 -21.856 -7.377 1.00 70.33 588 A 1 \nATOM 1497 O OE2 . GLU A 1 273 ? -11.367 -19.904 -7.346 1.00 69.72 588 A 1 \nATOM 1498 N N . THR A 1 274 ? -8.529 -26.032 -8.929 1.00 79.17 589 A 1 \nATOM 1499 C CA . THR A 1 274 ? -8.421 -27.381 -8.384 1.00 78.67 589 A 1 \nATOM 1500 C C . THR A 1 274 ? -7.411 -28.228 -9.147 1.00 83.55 589 A 1 \nATOM 1501 O O . THR A 1 274 ? -6.773 -29.112 -8.565 1.00 87.56 589 A 1 \nATOM 1502 C CB . THR A 1 274 ? -9.783 -28.081 -8.402 1.00 78.01 589 A 1 \nATOM 1503 O OG1 . THR A 1 274 ? -10.095 -28.485 -9.741 1.00 79.60 589 A 1 \nATOM 1504 C CG2 . THR A 1 274 ? -10.876 -27.157 -7.885 1.00 73.97 589 A 1 \nATOM 1505 N N . GLY A 1 275 ? -7.258 -27.971 -10.443 1.00 84.65 590 A 1 \nATOM 1506 C CA . GLY A 1 275 ? -6.441 -28.823 -11.280 1.00 84.98 590 A 1 \nATOM 1507 C C . GLY A 1 275 ? -7.142 -30.057 -11.797 1.00 89.36 590 A 1 \nATOM 1508 O O . GLY A 1 275 ? -6.474 -30.964 -12.306 1.00 95.82 590 A 1 \nATOM 1509 N N . ILE A 1 276 ? -8.467 -30.121 -11.681 1.00 86.04 591 A 1 \nATOM 1510 C CA . ILE A 1 276 ? -9.256 -31.259 -12.136 1.00 84.71 591 A 1 \nATOM 1511 C C . ILE A 1 276 ? -9.782 -30.956 -13.531 1.00 83.38 591 A 1 \nATOM 1512 O O . ILE A 1 276 ? -10.302 -29.861 -13.783 1.00 81.02 591 A 1 \nATOM 1513 C CB . ILE A 1 276 ? -10.414 -31.553 -11.166 1.00 79.42 591 A 1 \nATOM 1514 C CG1 . ILE A 1 276 ? -9.888 -32.143 -9.860 1.00 78.43 591 A 1 \nATOM 1515 C CG2 . ILE A 1 276 ? -11.430 -32.493 -11.797 1.00 79.84 591 A 1 \nATOM 1516 C CD1 . ILE A 1 276 ? -10.921 -32.138 -8.767 1.00 75.11 591 A 1 \nATOM 1517 N N . THR A 1 277 ? -9.650 -31.922 -14.436 1.00 86.89 592 A 1 \nATOM 1518 C CA . THR A 1 277 ? -10.112 -31.782 -15.810 1.00 90.81 592 A 1 \nATOM 1519 C C . THR A 1 277 ? -11.446 -32.503 -15.965 1.00 92.36 592 A 1 \nATOM 1520 O O . THR A 1 277 ? -11.529 -33.718 -15.754 1.00 92.73 592 A 1 \nATOM 1521 C CB . THR A 1 277 ? -9.083 -32.341 -16.793 1.00 94.88 592 A 1 \nATOM 1522 O OG1 . THR A 1 277 ? -7.852 -31.618 -16.660 1.00 95.88 592 A 1 \nATOM 1523 C CG2 . THR A 1 277 ? -9.588 -32.214 -18.221 1.00 92.61 592 A 1 \nATOM 1524 N N . VAL A 1 278 ? -12.480 -31.753 -16.334 1.00 91.84 593 A 1 \nATOM 1525 C CA . VAL A 1 278 ? -13.826 -32.277 -16.517 1.00 90.00 593 A 1 \nATOM 1526 C C . VAL A 1 278 ? -14.258 -31.997 -17.950 1.00 91.36 593 A 1 \nATOM 1527 O O . VAL A 1 278 ? -13.917 -30.952 -18.516 1.00 95.93 593 A 1 \nATOM 1528 C CB . VAL A 1 278 ? -14.806 -31.651 -15.497 1.00 84.76 593 A 1 \nATOM 1529 C CG1 . VAL A 1 278 ? -16.224 -31.657 -16.020 1.00 85.90 593 A 1 \nATOM 1530 C CG2 . VAL A 1 278 ? -14.735 -32.390 -14.171 1.00 81.15 593 A 1 \nATOM 1531 N N . ASP A 1 279 ? -14.983 -32.941 -18.545 1.00 92.15 594 A 1 \nATOM 1532 C CA . ASP A 1 279 ? -15.460 -32.797 -19.913 1.00 96.19 594 A 1 \nATOM 1533 C C . ASP A 1 279 ? -16.761 -32.003 -19.956 1.00 91.68 594 A 1 \nATOM 1534 O O . ASP A 1 279 ? -17.575 -32.051 -19.030 1.00 92.98 594 A 1 \nATOM 1535 C CB . ASP A 1 279 ? -15.665 -34.166 -20.561 1.00 103.62 594 A 1 \nATOM 1536 C CG . ASP A 1 279 ? -15.753 -34.086 -22.073 1.00 111.97 594 A 1 \nATOM 1537 O OD1 . ASP A 1 279 ? -14.701 -33.897 -22.720 1.00 116.03 594 A 1 \nATOM 1538 O OD2 . ASP A 1 279 ? -16.872 -34.210 -22.614 1.00 114.72 594 A 1 \nATOM 1539 N N . ALA A 1 280 ? -16.953 -31.276 -21.060 1.00 88.80 595 A 1 \nATOM 1540 C CA . ALA A 1 280 ? -18.122 -30.415 -21.209 1.00 85.73 595 A 1 \nATOM 1541 C C . ALA A 1 280 ? -19.426 -31.198 -21.286 1.00 86.17 595 A 1 \nATOM 1542 O O . ALA A 1 280 ? -20.484 -30.646 -20.964 1.00 86.77 595 A 1 \nATOM 1543 C CB . ALA A 1 280 ? -17.975 -29.536 -22.452 1.00 86.12 595 A 1 \nATOM 1544 N N . SER A 1 281 ? -19.380 -32.462 -21.709 1.00 88.70 596 A 1 \nATOM 1545 C CA . SER A 1 281 ? -20.590 -33.269 -21.781 1.00 92.02 596 A 1 \nATOM 1546 C C . SER A 1 281 ? -21.086 -33.708 -20.410 1.00 91.24 596 A 1 \nATOM 1547 O O . SER A 1 281 ? -22.230 -34.162 -20.302 1.00 93.50 596 A 1 \nATOM 1548 C CB . SER A 1 281 ? -20.353 -34.497 -22.664 1.00 98.21 596 A 1 \nATOM 1549 O OG . SER A 1 281 ? -19.312 -35.307 -22.145 1.00 101.39 596 A 1 \nATOM 1550 N N . ASN A 1 282 ? -20.261 -33.584 -19.371 1.00 87.42 597 A 1 \nATOM 1551 C CA . ASN A 1 282 ? -20.638 -33.966 -18.018 1.00 82.52 597 A 1 \nATOM 1552 C C . ASN A 1 282 ? -20.929 -32.771 -17.123 1.00 82.23 597 A 1 \nATOM 1553 O O . ASN A 1 282 ? -21.247 -32.961 -15.944 1.00 79.82 597 A 1 \nATOM 1554 C CB . ASN A 1 282 ? -19.539 -34.828 -17.387 1.00 83.98 597 A 1 \nATOM 1555 C CG . ASN A 1 282 ? -18.977 -35.853 -18.350 1.00 89.34 597 A 1 \nATOM 1556 O OD1 . ASN A 1 282 ? -17.770 -35.906 -18.585 1.00 90.29 597 A 1 \nATOM 1557 N ND2 . ASN A 1 282 ? -19.853 -36.676 -18.916 1.00 94.20 597 A 1 \nATOM 1558 N N . VAL A 1 283 ? -20.823 -31.552 -17.644 1.00 79.75 598 A 1 \nATOM 1559 C CA . VAL A 1 283 ? -21.155 -30.349 -16.891 1.00 72.33 598 A 1 \nATOM 1560 C C . VAL A 1 283 ? -22.601 -29.981 -17.182 1.00 76.01 598 A 1 \nATOM 1561 O O . VAL A 1 283 ? -22.999 -29.863 -18.347 1.00 83.09 598 A 1 \nATOM 1562 C CB . VAL A 1 283 ? -20.212 -29.193 -17.256 1.00 69.49 598 A 1 \nATOM 1563 C CG1 . VAL A 1 283 ? -20.535 -27.961 -16.427 1.00 63.40 598 A 1 \nATOM 1564 C CG2 . VAL A 1 283 ? -18.778 -29.605 -17.063 1.00 70.71 598 A 1 \nATOM 1565 N N . TYR A 1 284 ? -23.387 -29.793 -16.127 1.00 75.15 599 A 1 \nATOM 1566 C CA . TYR A 1 284 ? -24.803 -29.520 -16.265 1.00 74.72 599 A 1 \nATOM 1567 C C . TYR A 1 284 ? -25.162 -28.209 -15.579 1.00 70.84 599 A 1 \nATOM 1568 O O . TYR A 1 284 ? -24.830 -28.021 -14.400 1.00 69.12 599 A 1 \nATOM 1569 C CB . TYR A 1 284 ? -25.633 -30.667 -15.672 1.00 73.81 599 A 1 \nATOM 1570 C CG . TYR A 1 284 ? -25.390 -31.995 -16.354 1.00 75.71 599 A 1 \nATOM 1571 C CD1 . TYR A 1 284 ? -26.042 -32.318 -17.536 1.00 73.89 599 A 1 \nATOM 1572 C CD2 . TYR A 1 284 ? -24.502 -32.921 -15.821 1.00 75.95 599 A 1 \nATOM 1573 C CE1 . TYR A 1 284 ? -25.824 -33.529 -18.164 1.00 76.15 599 A 1 \nATOM 1574 C CE2 . TYR A 1 284 ? -24.276 -34.134 -16.443 1.00 78.84 599 A 1 \nATOM 1575 C CZ . TYR A 1 284 ? -24.940 -34.433 -17.615 1.00 77.02 599 A 1 \nATOM 1576 O OH . TYR A 1 284 ? -24.719 -35.639 -18.241 1.00 78.47 599 A 1 \nATOM 1577 N N . PRO A 1 285 ? -25.830 -27.285 -16.271 1.00 66.17 600 A 1 \nATOM 1578 C CA . PRO A 1 285 ? -26.249 -26.036 -15.621 1.00 62.77 600 A 1 \nATOM 1579 C C . PRO A 1 285 ? -27.364 -26.296 -14.619 1.00 66.55 600 A 1 \nATOM 1580 O O . PRO A 1 285 ? -28.332 -27.000 -14.914 1.00 68.57 600 A 1 \nATOM 1581 C CB . PRO A 1 285 ? -26.728 -25.171 -16.792 1.00 59.24 600 A 1 \nATOM 1582 C CG . PRO A 1 285 ? -27.147 -26.158 -17.836 1.00 64.65 600 A 1 \nATOM 1583 C CD . PRO A 1 285 ? -26.230 -27.342 -17.688 1.00 64.25 600 A 1 \nATOM 1584 N N . THR A 1 286 ? -27.220 -25.720 -13.424 1.00 67.31 601 A 1 \nATOM 1585 C CA . THR A 1 286 ? -28.172 -25.933 -12.345 1.00 69.92 601 A 1 \nATOM 1586 C C . THR A 1 286 ? -28.964 -24.688 -11.974 1.00 70.40 601 A 1 \nATOM 1587 O O . THR A 1 286 ? -29.868 -24.779 -11.135 1.00 70.83 601 A 1 \nATOM 1588 C CB . THR A 1 286 ? -27.451 -26.458 -11.095 1.00 65.67 601 A 1 \nATOM 1589 O OG1 . THR A 1 286 ? -26.299 -25.650 -10.830 1.00 66.25 601 A 1 \nATOM 1590 C CG2 . THR A 1 286 ? -27.012 -27.890 -11.311 1.00 65.14 601 A 1 \nATOM 1591 N N . GLY A 1 287 ? -28.659 -23.539 -12.567 1.00 71.75 602 A 1 \nATOM 1592 C CA . GLY A 1 287 ? -29.405 -22.332 -12.280 1.00 71.35 602 A 1 \nATOM 1593 C C . GLY A 1 287 ? -28.531 -21.103 -12.160 1.00 66.22 602 A 1 \nATOM 1594 O O . GLY A 1 287 ? -27.311 -21.175 -12.338 1.00 59.93 602 A 1 \nATOM 1595 N N . HIS A 1 288 ? -29.149 -19.965 -11.859 1.00 70.89 603 A 1 \nATOM 1596 C CA . HIS A 1 288 ? -28.419 -18.717 -11.701 1.00 72.28 603 A 1 \nATOM 1597 C C . HIS A 1 288 ? -29.078 -17.896 -10.604 1.00 68.47 603 A 1 \nATOM 1598 O O . HIS A 1 288 ? -30.271 -18.046 -10.327 1.00 69.16 603 A 1 \nATOM 1599 C CB . HIS A 1 288 ? -28.370 -17.921 -13.010 1.00 77.44 603 A 1 \nATOM 1600 C CG . HIS A 1 288 ? -29.698 -17.381 -13.437 1.00 81.64 603 A 1 \nATOM 1601 N ND1 . HIS A 1 288 ? -30.749 -18.194 -13.803 1.00 85.16 603 A 1 \nATOM 1602 C CD2 . HIS A 1 288 ? -30.147 -16.109 -13.555 1.00 82.69 603 A 1 \nATOM 1603 C CE1 . HIS A 1 288 ? -31.788 -17.446 -14.128 1.00 87.08 603 A 1 \nATOM 1604 N NE2 . HIS A 1 288 ? -31.449 -16.177 -13.987 1.00 85.08 603 A 1 \nATOM 1605 N N . LEU A 1 289 ? -28.287 -17.026 -9.982 1.00 63.71 604 A 1 \nATOM 1606 C CA . LEU A 1 289 ? -28.772 -16.186 -8.898 1.00 64.02 604 A 1 \nATOM 1607 C C . LEU A 1 289 ? -28.238 -14.775 -9.077 1.00 63.93 604 A 1 \nATOM 1608 O O . LEU A 1 289 ? -27.056 -14.588 -9.385 1.00 62.94 604 A 1 \nATOM 1609 C CB . LEU A 1 289 ? -28.347 -16.743 -7.536 1.00 63.73 604 A 1 \nATOM 1610 C CG . LEU A 1 289 ? -29.070 -17.985 -7.017 1.00 66.40 604 A 1 \nATOM 1611 C CD1 . LEU A 1 289 ? -28.472 -18.420 -5.690 1.00 65.88 604 A 1 \nATOM 1612 C CD2 . LEU A 1 289 ? -30.561 -17.723 -6.875 1.00 66.61 604 A 1 \nATOM 1613 N N . TYR A 1 290 ? -29.112 -13.788 -8.891 1.00 62.43 605 A 1 \nATOM 1614 C CA . TYR A 1 290 ? -28.734 -12.378 -8.951 1.00 60.22 605 A 1 \nATOM 1615 C C . TYR A 1 290 ? -29.522 -11.639 -7.880 1.00 57.68 605 A 1 \nATOM 1616 O O . TYR A 1 290 ? -30.737 -11.459 -8.009 1.00 60.07 605 A 1 \nATOM 1617 C CB . TYR A 1 290 ? -28.997 -11.778 -10.333 1.00 58.56 605 A 1 \nATOM 1618 C CG . TYR A 1 290 ? -28.535 -10.341 -10.461 1.00 62.12 605 A 1 \nATOM 1619 C CD1 . TYR A 1 290 ? -27.197 -10.004 -10.294 1.00 62.13 605 A 1 \nATOM 1620 C CD2 . TYR A 1 290 ? -29.436 -9.322 -10.744 1.00 65.65 605 A 1 \nATOM 1621 C CE1 . TYR A 1 290 ? -26.769 -8.693 -10.408 1.00 65.19 605 A 1 \nATOM 1622 C CE2 . TYR A 1 290 ? -29.016 -8.006 -10.860 1.00 66.58 605 A 1 \nATOM 1623 C CZ . TYR A 1 290 ? -27.682 -7.699 -10.692 1.00 65.22 605 A 1 \nATOM 1624 O OH . TYR A 1 290 ? -27.259 -6.394 -10.804 1.00 62.54 605 A 1 \nATOM 1625 N N . GLN A 1 291 ? -28.832 -11.217 -6.825 1.00 55.51 606 A 1 \nATOM 1626 C CA . GLN A 1 291 ? -29.450 -10.473 -5.731 1.00 54.81 606 A 1 \nATOM 1627 C C . GLN A 1 291 ? -28.530 -9.309 -5.400 1.00 54.25 606 A 1 \nATOM 1628 O O . GLN A 1 291 ? -27.406 -9.519 -4.931 1.00 52.89 606 A 1 \nATOM 1629 C CB . GLN A 1 291 ? -29.677 -11.366 -4.510 1.00 49.02 606 A 1 \nATOM 1630 C CG . GLN A 1 291 ? -30.182 -10.629 -3.291 1.00 54.00 606 A 1 \nATOM 1631 C CD . GLN A 1 291 ? -31.522 -9.965 -3.530 1.00 59.87 606 A 1 \nATOM 1632 O OE1 . GLN A 1 291 ? -32.503 -10.627 -3.871 1.00 63.28 606 A 1 \nATOM 1633 N NE2 . GLN A 1 291 ? -31.570 -8.650 -3.354 1.00 60.20 606 A 1 \nATOM 1634 N N . THR A 1 292 ? -28.997 -8.088 -5.648 1.00 52.86 607 A 1 \nATOM 1635 C CA . THR A 1 292 ? -28.176 -6.905 -5.450 1.00 54.98 607 A 1 \nATOM 1636 C C . THR A 1 292 ? -29.031 -5.763 -4.920 1.00 53.89 607 A 1 \nATOM 1637 O O . THR A 1 292 ? -30.262 -5.829 -4.902 1.00 51.57 607 A 1 \nATOM 1638 C CB . THR A 1 292 ? -27.481 -6.483 -6.749 1.00 55.08 607 A 1 \nATOM 1639 O OG1 . THR A 1 292 ? -26.507 -5.471 -6.463 1.00 53.63 607 A 1 \nATOM 1640 C CG2 . THR A 1 292 ? -28.499 -5.938 -7.744 1.00 53.37 607 A 1 \nATOM 1641 N N . VAL A 1 293 ? -28.350 -4.711 -4.478 1.00 57.59 608 A 1 \nATOM 1642 C CA . VAL A 1 293 ? -28.991 -3.469 -4.052 1.00 55.71 608 A 1 \nATOM 1643 C C . VAL A 1 293 ? -28.348 -2.325 -4.824 1.00 54.72 608 A 1 \nATOM 1644 O O . VAL A 1 293 ? -27.239 -2.473 -5.363 1.00 55.70 608 A 1 \nATOM 1645 C CB . VAL A 1 293 ? -28.864 -3.255 -2.526 1.00 55.86 608 A 1 \nATOM 1646 C CG1 . VAL A 1 293 ? -29.780 -4.209 -1.773 1.00 54.91 608 A 1 \nATOM 1647 C CG2 . VAL A 1 293 ? -27.422 -3.432 -2.090 1.00 55.13 608 A 1 \nATOM 1648 N N . PRO A 1 294 ? -29.024 -1.174 -4.915 1.00 55.19 609 A 1 \nATOM 1649 C CA . PRO A 1 294 ? -28.433 -0.042 -5.652 1.00 54.97 609 A 1 \nATOM 1650 C C . PRO A 1 294 ? -27.045 0.351 -5.171 1.00 57.81 609 A 1 \nATOM 1651 O O . PRO A 1 294 ? -26.198 0.729 -5.991 1.00 55.41 609 A 1 \nATOM 1652 C CB . PRO A 1 294 ? -29.453 1.082 -5.428 1.00 58.75 609 A 1 \nATOM 1653 C CG . PRO A 1 294 ? -30.743 0.374 -5.227 1.00 57.70 609 A 1 \nATOM 1654 C CD . PRO A 1 294 ? -30.409 -0.892 -4.493 1.00 54.64 609 A 1 \nATOM 1655 N N . GLN A 1 295 ? -26.783 0.266 -3.864 1.00 52.49 610 A 1 \nATOM 1656 C CA . GLN A 1 295 ? -25.465 0.613 -3.343 1.00 49.93 610 A 1 \nATOM 1657 C C . GLN A 1 295 ? -24.392 -0.370 -3.791 1.00 46.79 610 A 1 \nATOM 1658 O O . GLN A 1 295 ? -23.207 -0.018 -3.797 1.00 49.95 610 A 1 \nATOM 1659 C CB . GLN A 1 295 ? -25.504 0.685 -1.814 1.00 51.00 610 A 1 \nATOM 1660 C CG . GLN A 1 295 ? -26.332 1.839 -1.262 1.00 53.77 610 A 1 \nATOM 1661 C CD . GLN A 1 295 ? -27.826 1.576 -1.339 1.00 57.86 610 A 1 \nATOM 1662 O OE1 . GLN A 1 295 ? -28.221 0.390 -1.361 1.00 58.68 610 A 1 \nATOM 1663 N NE2 . GLN A 1 295 ? -28.605 2.551 -1.388 1.00 59.45 610 A 1 \nATOM 1664 N N . TYR A 1 296 ? -24.776 -1.591 -4.157 1.00 45.13 611 A 1 \nATOM 1665 C CA . TYR A 1 296 ? -23.826 -2.579 -4.651 1.00 48.67 611 A 1 \nATOM 1666 C C . TYR A 1 296 ? -24.040 -2.796 -6.143 1.00 51.00 611 A 1 \nATOM 1667 O O . TYR A 1 296 ? -24.271 -3.926 -6.586 1.00 46.33 611 A 1 \nATOM 1668 C CB . TYR A 1 296 ? -23.975 -3.899 -3.896 1.00 49.85 611 A 1 \nATOM 1669 C CG . TYR A 1 296 ? -23.705 -3.836 -2.406 1.00 53.25 611 A 1 \nATOM 1670 C CD1 . TYR A 1 296 ? -22.929 -2.824 -1.856 1.00 52.77 611 A 1 \nATOM 1671 C CD2 . TYR A 1 296 ? -24.218 -4.804 -1.553 1.00 49.86 611 A 1 \nATOM 1672 C CE1 . TYR A 1 296 ? -22.681 -2.775 -0.494 1.00 53.75 611 A 1 \nATOM 1673 C CE2 . TYR A 1 296 ? -23.978 -4.764 -0.196 1.00 53.26 611 A 1 \nATOM 1674 C CZ . TYR A 1 296 ? -23.210 -3.750 0.330 1.00 54.86 611 A 1 \nATOM 1675 O OH . TYR A 1 296 ? -22.973 -3.717 1.684 1.00 50.91 611 A 1 \nATOM 1676 N N . TYR A 1 297 ? -23.960 -1.714 -6.923 1.00 49.18 612 A 1 \nATOM 1677 C CA . TYR A 1 297 ? -24.285 -1.771 -8.344 1.00 53.23 612 A 1 \nATOM 1678 C C . TYR A 1 297 ? -23.347 -2.680 -9.127 1.00 56.60 612 A 1 \nATOM 1679 O O . TYR A 1 297 ? -23.707 -3.128 -10.221 1.00 62.60 612 A 1 \nATOM 1680 C CB . TYR A 1 297 ? -24.254 -0.360 -8.934 1.00 47.82 612 A 1 \nATOM 1681 C CG . TYR A 1 297 ? -22.993 0.406 -8.598 1.00 50.82 612 A 1 \nATOM 1682 C CD1 . TYR A 1 297 ? -21.837 0.246 -9.353 1.00 50.03 612 A 1 \nATOM 1683 C CD2 . TYR A 1 297 ? -22.954 1.284 -7.520 1.00 55.01 612 A 1 \nATOM 1684 C CE1 . TYR A 1 297 ? -20.680 0.936 -9.047 1.00 53.84 612 A 1 \nATOM 1685 C CE2 . TYR A 1 297 ? -21.801 1.980 -7.207 1.00 52.57 612 A 1 \nATOM 1686 C CZ . TYR A 1 297 ? -20.667 1.802 -7.973 1.00 56.22 612 A 1 \nATOM 1687 O OH . TYR A 1 297 ? -19.517 2.493 -7.667 1.00 60.30 612 A 1 \nATOM 1688 N N . TRP A 1 298 ? -22.158 -2.963 -8.595 1.00 56.73 613 A 1 \nATOM 1689 C CA . TRP A 1 298 ? -21.143 -3.721 -9.315 1.00 52.87 613 A 1 \nATOM 1690 C C . TRP A 1 298 ? -21.401 -5.222 -9.331 1.00 60.39 613 A 1 \nATOM 1691 O O . TRP A 1 298 ? -20.698 -5.943 -10.048 1.00 64.12 613 A 1 \nATOM 1692 C CB . TRP A 1 298 ? -19.770 -3.459 -8.696 1.00 47.77 613 A 1 \nATOM 1693 C CG . TRP A 1 298 ? -19.742 -3.719 -7.218 1.00 53.60 613 A 1 \nATOM 1694 C CD1 . TRP A 1 298 ? -19.567 -4.924 -6.600 1.00 49.96 613 A 1 \nATOM 1695 C CD2 . TRP A 1 298 ? -19.906 -2.752 -6.173 1.00 48.53 613 A 1 \nATOM 1696 N NE1 . TRP A 1 298 ? -19.607 -4.766 -5.237 1.00 49.42 613 A 1 \nATOM 1697 C CE2 . TRP A 1 298 ? -19.815 -3.443 -4.948 1.00 48.86 613 A 1 \nATOM 1698 C CE3 . TRP A 1 298 ? -20.120 -1.371 -6.155 1.00 48.57 613 A 1 \nATOM 1699 C CZ2 . TRP A 1 298 ? -19.928 -2.798 -3.717 1.00 46.32 613 A 1 \nATOM 1700 C CZ3 . TRP A 1 298 ? -20.232 -0.732 -4.932 1.00 51.73 613 A 1 \nATOM 1701 C CH2 . TRP A 1 298 ? -20.136 -1.446 -3.730 1.00 51.56 613 A 1 \nATOM 1702 N N . ARG A 1 299 ? -22.378 -5.709 -8.572 1.00 63.34 614 A 1 \nATOM 1703 C CA . ARG A 1 299 ? -22.523 -7.144 -8.374 1.00 58.71 614 A 1 \nATOM 1704 C C . ARG A 1 299 ? -23.024 -7.833 -9.637 1.00 57.50 614 A 1 \nATOM 1705 O O . ARG A 1 299 ? -23.864 -7.301 -10.368 1.00 58.96 614 A 1 \nATOM 1706 C CB . ARG A 1 299 ? -23.457 -7.420 -7.199 1.00 57.17 614 A 1 \nATOM 1707 C CG . ARG A 1 299 ? -22.761 -7.209 -5.871 1.00 57.90 614 A 1 \nATOM 1708 C CD . ARG A 1 299 ? -23.704 -7.197 -4.690 1.00 57.80 614 A 1 \nATOM 1709 N NE . ARG A 1 299 ? -24.609 -8.335 -4.645 1.00 53.97 614 A 1 \nATOM 1710 C CZ . ARG A 1 299 ? -24.441 -9.376 -3.840 1.00 56.19 614 A 1 \nATOM 1711 N NH1 . ARG A 1 299 ? -23.392 -9.429 -3.031 1.00 64.34 614 A 1 \nATOM 1712 N NH2 . ARG A 1 299 ? -25.320 -10.362 -3.845 1.00 47.58 614 A 1 \nATOM 1713 N N . VAL A 1 300 ? -22.499 -9.030 -9.881 1.00 54.81 615 A 1 \nATOM 1714 C CA . VAL A 1 300 ? -22.720 -9.763 -11.125 1.00 57.91 615 A 1 \nATOM 1715 C C . VAL A 1 300 ? -23.514 -11.031 -10.840 1.00 56.46 615 A 1 \nATOM 1716 O O . VAL A 1 300 ? -23.369 -11.619 -9.760 1.00 50.37 615 A 1 \nATOM 1717 C CB . VAL A 1 300 ? -21.383 -10.101 -11.805 1.00 57.78 615 A 1 \nATOM 1718 C CG1 . VAL A 1 300 ? -20.697 -8.836 -12.282 1.00 59.30 615 A 1 \nATOM 1719 C CG2 . VAL A 1 300 ? -20.480 -10.873 -10.848 1.00 53.52 615 A 1 \nATOM 1720 N N . PRO A 1 301 ? -24.345 -11.501 -11.771 1.00 58.25 616 A 1 \nATOM 1721 C CA . PRO A 1 301 ? -25.036 -12.777 -11.558 1.00 55.58 616 A 1 \nATOM 1722 C C . PRO A 1 301 ? -24.042 -13.915 -11.372 1.00 53.36 616 A 1 \nATOM 1723 O O . PRO A 1 301 ? -22.854 -13.799 -11.683 1.00 51.05 616 A 1 \nATOM 1724 C CB . PRO A 1 301 ? -25.861 -12.959 -12.839 1.00 54.26 616 A 1 \nATOM 1725 C CG . PRO A 1 301 ? -25.987 -11.584 -13.415 1.00 50.73 616 A 1 \nATOM 1726 C CD . PRO A 1 301 ? -24.719 -10.872 -13.048 1.00 52.05 616 A 1 \nATOM 1727 N N . VAL A 1 302 ? -24.539 -15.026 -10.838 1.00 56.97 617 A 1 \nATOM 1728 C CA . VAL A 1 302 ? -23.723 -16.212 -10.605 1.00 56.81 617 A 1 \nATOM 1729 C C . VAL A 1 302 ? -24.388 -17.390 -11.301 1.00 57.72 617 A 1 \nATOM 1730 O O . VAL A 1 302 ? -25.499 -17.786 -10.930 1.00 59.93 617 A 1 \nATOM 1731 C CB . VAL A 1 302 ? -23.539 -16.509 -9.107 1.00 52.42 617 A 1 \nATOM 1732 C CG1 . VAL A 1 302 ? -22.542 -17.644 -8.920 1.00 48.99 617 A 1 \nATOM 1733 C CG2 . VAL A 1 302 ? -23.081 -15.261 -8.363 1.00 49.62 617 A 1 \nATOM 1734 N N . ARG A 1 303 ? -23.713 -17.947 -12.303 1.00 56.17 618 A 1 \nATOM 1735 C CA . ARG A 1 303 ? -24.196 -19.131 -13.000 1.00 59.38 618 A 1 \nATOM 1736 C C . ARG A 1 303 ? -23.611 -20.377 -12.347 1.00 54.90 618 A 1 \nATOM 1737 O O . ARG A 1 303 ? -22.409 -20.430 -12.065 1.00 56.74 618 A 1 \nATOM 1738 C CB . ARG A 1 303 ? -23.821 -19.077 -14.481 1.00 61.64 618 A 1 \nATOM 1739 C CG . ARG A 1 303 ? -24.593 -18.034 -15.271 1.00 64.77 618 A 1 \nATOM 1740 C CD . ARG A 1 303 ? -25.924 -18.583 -15.749 1.00 72.44 618 A 1 \nATOM 1741 N NE . ARG A 1 303 ? -26.820 -17.525 -16.205 1.00 78.78 618 A 1 \nATOM 1742 C CZ . ARG A 1 303 ? -27.914 -17.734 -16.929 1.00 84.64 618 A 1 \nATOM 1743 N NH1 . ARG A 1 303 ? -28.253 -18.966 -17.283 1.00 87.19 618 A 1 \nATOM 1744 N NH2 . ARG A 1 303 ? -28.671 -16.710 -17.300 1.00 88.05 618 A 1 \nATOM 1745 N N . TYR A 1 304 ? -24.458 -21.376 -12.113 1.00 52.69 619 A 1 \nATOM 1746 C CA . TYR A 1 304 ? -24.082 -22.565 -11.361 1.00 56.81 619 A 1 \nATOM 1747 C C . TYR A 1 304 ? -24.090 -23.800 -12.250 1.00 60.00 619 A 1 \nATOM 1748 O O . TYR A 1 304 ? -24.954 -23.949 -13.120 1.00 66.22 619 A 1 \nATOM 1749 C CB . TYR A 1 304 ? -25.023 -22.779 -10.174 1.00 60.44 619 A 1 \nATOM 1750 C CG . TYR A 1 304 ? -24.929 -21.691 -9.135 1.00 58.59 619 A 1 \nATOM 1751 C CD1 . TYR A 1 304 ? -23.949 -21.727 -8.152 1.00 57.88 619 A 1 \nATOM 1752 C CD2 . TYR A 1 304 ? -25.813 -20.621 -9.144 1.00 56.59 619 A 1 \nATOM 1753 C CE1 . TYR A 1 304 ? -23.856 -20.732 -7.205 1.00 54.55 619 A 1 \nATOM 1754 C CE2 . TYR A 1 304 ? -25.728 -19.622 -8.199 1.00 57.65 619 A 1 \nATOM 1755 C CZ . TYR A 1 304 ? -24.748 -19.683 -7.234 1.00 56.71 619 A 1 \nATOM 1756 O OH . TYR A 1 304 ? -24.660 -18.690 -6.293 1.00 60.22 619 A 1 \nATOM 1757 N N . PHE A 1 305 ? -23.125 -24.685 -12.013 1.00 62.49 620 A 1 \nATOM 1758 C CA . PHE A 1 305 ? -23.013 -25.948 -12.727 1.00 64.72 620 A 1 \nATOM 1759 C C . PHE A 1 305 ? -22.623 -27.038 -11.740 1.00 64.84 620 A 1 \nATOM 1760 O O . PHE A 1 305 ? -22.093 -26.763 -10.661 1.00 67.13 620 A 1 \nATOM 1761 C CB . PHE A 1 305 ? -21.974 -25.880 -13.856 1.00 63.46 620 A 1 \nATOM 1762 C CG . PHE A 1 305 ? -22.266 -24.840 -14.898 1.00 61.39 620 A 1 \nATOM 1763 C CD1 . PHE A 1 305 ? -22.910 -25.184 -16.075 1.00 59.97 620 A 1 \nATOM 1764 C CD2 . PHE A 1 305 ? -21.878 -23.523 -14.712 1.00 60.10 620 A 1 \nATOM 1765 C CE1 . PHE A 1 305 ? -23.177 -24.234 -17.040 1.00 57.04 620 A 1 \nATOM 1766 C CE2 . PHE A 1 305 ? -22.142 -22.567 -15.675 1.00 61.68 620 A 1 \nATOM 1767 C CZ . PHE A 1 305 ? -22.792 -22.924 -16.841 1.00 58.94 620 A 1 \nATOM 1768 N N . VAL A 1 306 ? -22.893 -28.286 -12.119 1.00 65.76 621 A 1 \nATOM 1769 C CA . VAL A 1 306 ? -22.455 -29.446 -11.353 1.00 67.82 621 A 1 \nATOM 1770 C C . VAL A 1 306 ? -21.856 -30.468 -12.306 1.00 73.85 621 A 1 \nATOM 1771 O O . VAL A 1 306 ? -22.210 -30.531 -13.488 1.00 75.78 621 A 1 \nATOM 1772 C CB . VAL A 1 306 ? -23.593 -30.093 -10.529 1.00 65.73 621 A 1 \nATOM 1773 C CG1 . VAL A 1 306 ? -24.135 -29.116 -9.499 1.00 65.89 621 A 1 \nATOM 1774 C CG2 . VAL A 1 306 ? -24.696 -30.610 -11.441 1.00 60.48 621 A 1 \nATOM 1775 N N . ALA A 1 307 ? -20.939 -31.274 -11.777 1.00 74.13 622 A 1 \nATOM 1776 C CA . ALA A 1 307 ? -20.307 -32.336 -12.544 1.00 74.88 622 A 1 \nATOM 1777 C C . ALA A 1 307 ? -19.704 -33.335 -11.570 1.00 77.69 622 A 1 \nATOM 1778 O O . ALA A 1 307 ? -19.074 -32.943 -10.583 1.00 77.82 622 A 1 \nATOM 1779 C CB . ALA A 1 307 ? -19.230 -31.790 -13.489 1.00 70.55 622 A 1 \nATOM 1780 N N . GLU A 1 308 ? -19.907 -34.618 -11.846 1.00 78.86 623 A 1 \nATOM 1781 C CA . GLU A 1 308 ? -19.368 -35.664 -10.993 1.00 80.67 623 A 1 \nATOM 1782 C C . GLU A 1 308 ? -17.906 -35.928 -11.328 1.00 83.04 623 A 1 \nATOM 1783 O O . GLU A 1 308 ? -17.480 -35.831 -12.482 1.00 86.69 623 A 1 \nATOM 1784 C CB . GLU A 1 308 ? -20.175 -36.954 -11.141 1.00 86.56 623 A 1 \nATOM 1785 C CG . GLU A 1 308 ? -19.859 -38.004 -10.083 1.00 92.09 623 A 1 \nATOM 1786 C CD . GLU A 1 308 ? -20.399 -39.374 -10.436 1.00 100.84 623 A 1 \nATOM 1787 O OE1 . GLU A 1 308 ? -21.461 -39.445 -11.089 1.00 104.12 623 A 1 \nATOM 1788 O OE2 . GLU A 1 308 ? -19.762 -40.380 -10.060 1.00 106.55 623 A 1 \nATOM 1789 N N . VAL A 1 309 ? -17.134 -36.258 -10.298 1.00 88.39 624 A 1 \nATOM 1790 C CA . VAL A 1 309 ? -15.742 -36.662 -10.471 1.00 91.09 624 A 1 \nATOM 1791 C C . VAL A 1 309 ? -15.593 -38.079 -9.933 1.00 95.46 624 A 1 \nATOM 1792 O O . VAL A 1 309 ? -16.344 -38.478 -9.031 1.00 94.81 624 A 1 \nATOM 1793 C CB . VAL A 1 309 ? -14.780 -35.700 -9.758 1.00 89.01 624 A 1 \nATOM 1794 C CG1 . VAL A 1 309 ? -14.540 -34.459 -10.604 1.00 84.18 624 A 1 \nATOM 1795 C CG2 . VAL A 1 309 ? -15.318 -35.338 -8.385 1.00 90.26 624 A 1 \nATOM 1796 N N . PRO A 1 310 ? -14.663 -38.876 -10.458 1.00 100.17 625 A 1 \nATOM 1797 C CA . PRO A 1 310 ? -14.382 -40.174 -9.838 1.00 105.35 625 A 1 \nATOM 1798 C C . PRO A 1 310 ? -13.911 -39.986 -8.404 1.00 108.03 625 A 1 \nATOM 1799 O O . PRO A 1 310 ? -13.114 -39.093 -8.106 1.00 108.18 625 A 1 \nATOM 1800 C CB . PRO A 1 310 ? -13.281 -40.768 -10.726 1.00 107.26 625 A 1 \nATOM 1801 C CG . PRO A 1 310 ? -12.727 -39.608 -11.499 1.00 105.48 625 A 1 \nATOM 1802 C CD . PRO A 1 310 ? -13.861 -38.651 -11.671 1.00 101.19 625 A 1 \nATOM 1803 N N . SER A 1 311 ? -14.428 -40.834 -7.509 1.00 111.46 626 A 1 \nATOM 1804 C CA . SER A 1 311 ? -14.121 -40.698 -6.087 1.00 113.08 626 A 1 \nATOM 1805 C C . SER A 1 311 ? -12.622 -40.746 -5.825 1.00 117.97 626 A 1 \nATOM 1806 O O . SER A 1 311 ? -12.139 -40.123 -4.873 1.00 119.07 626 A 1 \nATOM 1807 C CB . SER A 1 311 ? -14.835 -41.789 -5.289 1.00 114.03 626 A 1 \nATOM 1808 O OG . SER A 1 311 ? -14.614 -41.628 -3.899 1.00 114.32 626 A 1 \nATOM 1809 N N . ASP A 1 312 ? -11.874 -41.471 -6.652 1.00 122.90 627 A 1 \nATOM 1810 C CA . ASP A 1 312 ? -10.418 -41.493 -6.587 1.00 127.10 627 A 1 \nATOM 1811 C C . ASP A 1 312 ? -9.884 -40.571 -7.679 1.00 127.56 627 A 1 \nATOM 1812 O O . ASP A 1 312 ? -9.977 -40.887 -8.869 1.00 131.19 627 A 1 \nATOM 1813 C CB . ASP A 1 312 ? -9.884 -42.915 -6.746 1.00 132.89 627 A 1 \nATOM 1814 C CG . ASP A 1 312 ? -10.484 -43.635 -7.940 1.00 136.30 627 A 1 \nATOM 1815 O OD1 . ASP A 1 312 ? -9.806 -43.721 -8.986 1.00 138.59 627 A 1 \nATOM 1816 O OD2 . ASP A 1 312 ? -11.633 -44.112 -7.835 1.00 136.97 627 A 1 \nATOM 1817 N N . ILE A 1 313 ? -9.337 -39.428 -7.276 1.00 124.30 628 A 1 \nATOM 1818 C CA . ILE A 1 313 ? -8.812 -38.458 -8.228 1.00 121.77 628 A 1 \nATOM 1819 C C . ILE A 1 313 ? -7.766 -37.612 -7.518 1.00 121.67 628 A 1 \nATOM 1820 O O . ILE A 1 313 ? -7.913 -37.273 -6.341 1.00 119.05 628 A 1 \nATOM 1821 C CB . ILE A 1 313 ? -9.945 -37.592 -8.832 1.00 116.25 628 A 1 \nATOM 1822 C CG1 . ILE A 1 313 ? -9.384 -36.612 -9.866 1.00 116.47 628 A 1 \nATOM 1823 C CG2 . ILE A 1 313 ? -10.707 -36.855 -7.739 1.00 111.15 628 A 1 \nATOM 1824 C CD1 . ILE A 1 313 ? -10.446 -35.871 -10.645 1.00 113.17 628 A 1 \nATOM 1825 N N . ARG A 1 314 ? -6.697 -37.287 -8.241 1.00 124.50 629 A 1 \nATOM 1826 C CA . ARG A 1 314 ? -5.642 -36.420 -7.723 1.00 124.62 629 A 1 \nATOM 1827 C C . ARG A 1 314 ? -6.129 -34.980 -7.789 1.00 118.39 629 A 1 \nATOM 1828 O O . ARG A 1 314 ? -6.116 -34.356 -8.853 1.00 117.73 629 A 1 \nATOM 1829 C CB . ARG A 1 314 ? -4.355 -36.596 -8.521 1.00 129.39 629 A 1 \nATOM 1830 C CG . ARG A 1 314 ? -3.790 -38.006 -8.523 1.00 135.11 629 A 1 \nATOM 1831 C CD . ARG A 1 314 ? -2.576 -38.099 -9.437 1.00 139.72 629 A 1 \nATOM 1832 N NE . ARG A 1 314 ? -1.915 -36.806 -9.597 1.00 139.44 629 A 1 \nATOM 1833 C CZ . ARG A 1 314 ? -0.694 -36.646 -10.097 1.00 143.25 629 A 1 \nATOM 1834 N NH1 . ARG A 1 314 ? 0.009 -37.700 -10.490 1.00 147.22 629 A 1 \nATOM 1835 N NH2 . ARG A 1 314 ? -0.175 -35.430 -10.205 1.00 142.91 629 A 1 \nATOM 1836 N N . VAL A 1 315 ? -6.566 -34.441 -6.654 1.00 112.79 630 A 1 \nATOM 1837 C CA . VAL A 1 315 ? -6.921 -33.030 -6.565 1.00 106.49 630 A 1 \nATOM 1838 C C . VAL A 1 315 ? -5.658 -32.289 -6.124 1.00 105.03 630 A 1 \nATOM 1839 O O . VAL A 1 315 ? -5.216 -32.382 -4.977 1.00 104.71 630 A 1 \nATOM 1840 C CB . VAL A 1 315 ? -8.130 -32.797 -5.648 1.00 102.60 630 A 1 \nATOM 1841 C CG1 . VAL A 1 315 ? -9.282 -33.676 -6.096 1.00 101.95 630 A 1 \nATOM 1842 C CG2 . VAL A 1 315 ? -7.841 -33.093 -4.182 1.00 103.02 630 A 1 \nATOM 1843 N N . GLU A 1 316 ? -5.029 -31.595 -7.071 1.00 103.54 631 A 1 \nATOM 1844 C CA . GLU A 1 316 ? -3.769 -30.926 -6.778 1.00 101.59 631 A 1 \nATOM 1845 C C . GLU A 1 316 ? -3.966 -29.598 -6.064 1.00 95.65 631 A 1 \nATOM 1846 O O . GLU A 1 316 ? -3.052 -29.141 -5.369 1.00 97.97 631 A 1 \nATOM 1847 C CB . GLU A 1 316 ? -2.973 -30.707 -8.067 1.00 103.65 631 A 1 \nATOM 1848 N N . GLY A 1 317 ? -5.132 -28.978 -6.210 1.00 87.82 632 A 1 \nATOM 1849 C CA . GLY A 1 317 ? -5.390 -27.694 -5.611 1.00 86.83 632 A 1 \nATOM 1850 C C . GLY A 1 317 ? -5.225 -26.569 -6.610 1.00 91.29 632 A 1 \nATOM 1851 O O . GLY A 1 317 ? -5.157 -26.789 -7.824 1.00 96.82 632 A 1 \nATOM 1852 N N . PRO A 1 318 ? -5.155 -25.336 -6.115 1.00 87.45 633 A 1 \nATOM 1853 C CA . PRO A 1 318 ? -5.012 -24.189 -7.019 1.00 85.10 633 A 1 \nATOM 1854 C C . PRO A 1 318 ? -3.687 -24.237 -7.765 1.00 86.33 633 A 1 \nATOM 1855 O O . PRO A 1 318 ? -2.620 -24.380 -7.165 1.00 86.68 633 A 1 \nATOM 1856 C CB . PRO A 1 318 ? -5.091 -22.981 -6.078 1.00 82.97 633 A 1 \nATOM 1857 C CG . PRO A 1 318 ? -5.682 -23.507 -4.804 1.00 79.88 633 A 1 \nATOM 1858 C CD . PRO A 1 318 ? -5.231 -24.924 -4.706 1.00 83.03 633 A 1 \nATOM 1859 N N . GLN A 1 319 ? -3.768 -24.134 -9.092 1.00 87.67 634 A 1 \nATOM 1860 C CA . GLN A 1 319 ? -2.584 -24.016 -9.928 1.00 91.99 634 A 1 \nATOM 1861 C C . GLN A 1 319 ? -2.382 -22.612 -10.476 1.00 93.81 634 A 1 \nATOM 1862 O O . GLN A 1 319 ? -1.252 -22.262 -10.829 1.00 99.00 634 A 1 \nATOM 1863 C CB . GLN A 1 319 ? -2.650 -25.015 -11.092 1.00 92.05 634 A 1 \nATOM 1864 C CG . GLN A 1 319 ? -3.191 -26.381 -10.689 1.00 95.11 634 A 1 \nATOM 1865 C CD . GLN A 1 319 ? -2.154 -27.483 -10.799 1.00 103.66 634 A 1 \nATOM 1866 O OE1 . GLN A 1 319 ? -0.981 -27.284 -10.483 1.00 109.11 634 A 1 \nATOM 1867 N NE2 . GLN A 1 319 ? -2.586 -28.658 -11.244 1.00 106.31 634 A 1 \nATOM 1868 N N . VAL A 1 320 ? -3.440 -21.810 -10.554 1.00 89.16 635 A 1 \nATOM 1869 C CA . VAL A 1 320 ? -3.341 -20.380 -10.819 1.00 86.57 635 A 1 \nATOM 1870 C C . VAL A 1 320 ? -3.480 -19.650 -9.493 1.00 83.63 635 A 1 \nATOM 1871 O O . VAL A 1 320 ? -4.376 -19.960 -8.697 1.00 81.32 635 A 1 \nATOM 1872 C CB . VAL A 1 320 ? -4.411 -19.918 -11.828 1.00 82.80 635 A 1 \nATOM 1873 C CG1 . VAL A 1 320 ? -4.272 -18.429 -12.111 1.00 81.33 635 A 1 \nATOM 1874 C CG2 . VAL A 1 320 ? -4.306 -20.719 -13.114 1.00 85.46 635 A 1 \nATOM 1875 N N . VAL A 1 321 ? -2.608 -18.666 -9.271 1.00 85.21 636 A 1 \nATOM 1876 C CA . VAL A 1 321 ? -2.428 -17.941 -8.008 1.00 84.21 636 A 1 \nATOM 1877 C C . VAL A 1 321 ? -2.713 -18.840 -6.807 1.00 86.24 636 A 1 \nATOM 1878 O O . VAL A 1 321 ? -3.657 -18.583 -6.044 1.00 83.65 636 A 1 \nATOM 1879 C CB . VAL A 1 321 ? -3.276 -16.654 -7.963 1.00 78.74 636 A 1 \nATOM 1880 C CG1 . VAL A 1 321 ? -2.663 -15.589 -8.863 1.00 80.72 636 A 1 \nATOM 1881 C CG2 . VAL A 1 321 ? -4.737 -16.900 -8.346 1.00 74.75 636 A 1 \nATOM 1882 N N . PRO A 1 322 ? -1.917 -19.892 -6.585 1.00 88.43 637 A 1 \nATOM 1883 C CA . PRO A 1 322 ? -2.193 -20.790 -5.453 1.00 85.69 637 A 1 \nATOM 1884 C C . PRO A 1 322 ? -1.941 -20.152 -4.101 1.00 84.56 637 A 1 \nATOM 1885 O O . PRO A 1 322 ? -2.537 -20.587 -3.108 1.00 79.36 637 A 1 \nATOM 1886 C CB . PRO A 1 322 ? -1.239 -21.963 -5.698 1.00 87.70 637 A 1 \nATOM 1887 C CG . PRO A 1 322 ? -0.095 -21.353 -6.432 1.00 91.81 637 A 1 \nATOM 1888 C CD . PRO A 1 322 ? -0.675 -20.255 -7.289 1.00 91.39 637 A 1 \nATOM 1889 N N . LEU A 1 323 ? -1.077 -19.137 -4.032 1.00 90.31 638 A 1 \nATOM 1890 C CA . LEU A 1 323 ? -0.803 -18.457 -2.773 1.00 91.55 638 A 1 \nATOM 1891 C C . LEU A 1 323 ? -2.013 -17.688 -2.262 1.00 87.60 638 A 1 \nATOM 1892 O O . LEU A 1 323 ? -2.081 -17.383 -1.066 1.00 83.99 638 A 1 \nATOM 1893 C CB . LEU A 1 323 ? 0.384 -17.505 -2.938 1.00 95.07 638 A 1 \nATOM 1894 C CG . LEU A 1 323 ? 1.771 -18.098 -3.214 1.00 98.98 638 A 1 \nATOM 1895 C CD1 . LEU A 1 323 ? 1.950 -18.467 -4.682 1.00 101.65 638 A 1 \nATOM 1896 C CD2 . LEU A 1 323 ? 2.853 -17.124 -2.778 1.00 101.21 638 A 1 \nATOM 1897 N N . GLN A 1 324 ? -2.964 -17.373 -3.137 1.00 88.29 639 A 1 \nATOM 1898 C CA . GLN A 1 324 ? -4.156 -16.616 -2.782 1.00 85.13 639 A 1 \nATOM 1899 C C . GLN A 1 324 ? -5.236 -17.471 -2.135 1.00 78.21 639 A 1 \nATOM 1900 O O . GLN A 1 324 ? -6.335 -16.966 -1.882 1.00 73.97 639 A 1 \nATOM 1901 C CB . GLN A 1 324 ? -4.722 -15.929 -4.025 1.00 88.30 639 A 1 \nATOM 1902 C CG . GLN A 1 324 ? -4.175 -14.538 -4.262 1.00 94.16 639 A 1 \nATOM 1903 C CD . GLN A 1 324 ? -5.202 -13.629 -4.894 1.00 98.33 639 A 1 \nATOM 1904 O OE1 . GLN A 1 324 ? -5.030 -13.165 -6.021 1.00 101.58 639 A 1 \nATOM 1905 N NE2 . GLN A 1 324 ? -6.291 -13.384 -4.175 1.00 97.97 639 A 1 \nATOM 1906 N N . TYR A 1 325 ? -4.956 -18.743 -1.873 1.00 78.53 640 A 1 \nATOM 1907 C CA . TYR A 1 325 ? -5.906 -19.648 -1.250 1.00 73.85 640 A 1 \nATOM 1908 C C . TYR A 1 325 ? -5.349 -20.132 0.081 1.00 72.82 640 A 1 \nATOM 1909 O O . TYR A 1 325 ? -4.138 -20.111 0.316 1.00 73.90 640 A 1 \nATOM 1910 C CB . TYR A 1 325 ? -6.219 -20.842 -2.164 1.00 71.18 640 A 1 \nATOM 1911 C CG . TYR A 1 325 ? -6.907 -20.453 -3.454 1.00 69.66 640 A 1 \nATOM 1912 C CD1 . TYR A 1 325 ? -6.178 -19.985 -4.540 1.00 70.42 640 A 1 \nATOM 1913 C CD2 . TYR A 1 325 ? -8.286 -20.545 -3.582 1.00 69.21 640 A 1 \nATOM 1914 C CE1 . TYR A 1 325 ? -6.803 -19.624 -5.718 1.00 70.46 640 A 1 \nATOM 1915 C CE2 . TYR A 1 325 ? -8.920 -20.186 -4.757 1.00 69.38 640 A 1 \nATOM 1916 C CZ . TYR A 1 325 ? -8.174 -19.726 -5.820 1.00 68.34 640 A 1 \nATOM 1917 O OH . TYR A 1 325 ? -8.802 -19.368 -6.989 1.00 65.33 640 A 1 \nATOM 1918 N N . MET A 1 326 ? -6.253 -20.559 0.959 1.00 72.48 641 A 1 \nATOM 1919 C CA . MET A 1 326 ? -5.845 -21.079 2.257 1.00 76.84 641 A 1 \nATOM 1920 C C . MET A 1 326 ? -5.002 -22.332 2.072 1.00 83.55 641 A 1 \nATOM 1921 O O . MET A 1 326 ? -5.480 -23.342 1.549 1.00 83.39 641 A 1 \nATOM 1922 C CB . MET A 1 326 ? -7.072 -21.378 3.116 1.00 76.47 641 A 1 \nATOM 1923 C CG . MET A 1 326 ? -7.778 -20.138 3.636 1.00 78.10 641 A 1 \nATOM 1924 S SD . MET A 1 326 ? -8.668 -20.442 5.175 1.00 77.37 641 A 1 \nATOM 1925 C CE . MET A 1 326 ? -7.310 -20.776 6.292 1.00 78.03 641 A 1 \nATOM 1926 N N . ARG A 1 327 ? -3.742 -22.260 2.494 1.00 91.40 642 A 1 \nATOM 1927 C CA . ARG A 1 327 ? -2.811 -23.363 2.317 1.00 97.74 642 A 1 \nATOM 1928 C C . ARG A 1 327 ? -1.790 -23.336 3.441 1.00 100.67 642 A 1 \nATOM 1929 O O . ARG A 1 327 ? -1.590 -22.309 4.097 1.00 97.91 642 A 1 \nATOM 1930 C CB . ARG A 1 327 ? -2.101 -23.291 0.960 1.00 100.39 642 A 1 \nATOM 1931 C CG . ARG A 1 327 ? -2.625 -24.261 -0.079 1.00 103.30 642 A 1 \nATOM 1932 C CD . ARG A 1 327 ? -2.054 -23.941 -1.450 1.00 107.21 642 A 1 \nATOM 1933 N NE . ARG A 1 327 ? -0.598 -23.829 -1.419 1.00 112.56 642 A 1 \nATOM 1934 C CZ . ARG A 1 327 ? 0.189 -24.031 -2.471 1.00 116.81 642 A 1 \nATOM 1935 N NH1 . ARG A 1 327 ? -0.339 -24.357 -3.643 1.00 116.60 642 A 1 \nATOM 1936 N NH2 . ARG A 1 327 ? 1.504 -23.908 -2.353 1.00 120.59 642 A 1 \nATOM 1937 N N . ASN A 1 328 ? -1.143 -24.485 3.650 1.00 105.84 643 A 1 \nATOM 1938 C CA . ASN A 1 328 ? -0.054 -24.617 4.618 1.00 109.15 643 A 1 \nATOM 1939 C C . ASN A 1 328 ? -0.469 -24.100 5.990 1.00 105.50 643 A 1 \nATOM 1940 O O . ASN A 1 328 ? 0.333 -23.534 6.737 1.00 106.43 643 A 1 \nATOM 1941 C CB . ASN A 1 328 ? 1.205 -23.905 4.127 1.00 113.29 643 A 1 \nATOM 1942 C CG . ASN A 1 328 ? 1.733 -24.489 2.838 1.00 115.91 643 A 1 \nATOM 1943 O OD1 . ASN A 1 328 ? 1.257 -25.524 2.371 1.00 115.41 643 A 1 \nATOM 1944 N ND2 . ASN A 1 328 ? 2.722 -23.827 2.252 1.00 119.05 643 A 1 \nATOM 1945 N N . TRP A 1 329 ? -1.744 -24.273 6.316 1.00 101.23 644 A 1 \nATOM 1946 C CA . TRP A 1 329 ? -2.224 -23.780 7.593 1.00 99.26 644 A 1 \nATOM 1947 C C . TRP A 1 329 ? -1.817 -24.743 8.694 1.00 103.15 644 A 1 \nATOM 1948 O O . TRP A 1 329 ? -1.104 -25.728 8.478 1.00 106.62 644 A 1 \nATOM 1949 C CB . TRP A 1 329 ? -3.736 -23.592 7.583 1.00 95.70 644 A 1 \nATOM 1950 C CG . TRP A 1 329 ? -4.517 -24.865 7.464 1.00 94.85 644 A 1 \nATOM 1951 C CD1 . TRP A 1 329 ? -4.800 -25.766 8.457 1.00 96.08 644 A 1 \nATOM 1952 C CD2 . TRP A 1 329 ? -5.128 -25.372 6.277 1.00 93.22 644 A 1 \nATOM 1953 N NE1 . TRP A 1 329 ? -5.545 -26.804 7.952 1.00 95.63 644 A 1 \nATOM 1954 C CE2 . TRP A 1 329 ? -5.760 -26.585 6.616 1.00 93.77 644 A 1 \nATOM 1955 C CE3 . TRP A 1 329 ? -5.200 -24.919 4.957 1.00 92.36 644 A 1 \nATOM 1956 C CZ2 . TRP A 1 329 ? -6.455 -27.348 5.682 1.00 93.63 644 A 1 \nATOM 1957 C CZ3 . TRP A 1 329 ? -5.889 -25.678 4.031 1.00 92.77 644 A 1 \nATOM 1958 C CH2 . TRP A 1 329 ? -6.509 -26.879 4.398 1.00 92.68 644 A 1 \nATOM 1959 N N . ASP A 1 330 ? -2.316 -24.476 9.883 1.00 101.88 645 A 1 \nATOM 1960 C CA . ASP A 1 330 ? -1.898 -25.192 11.074 1.00 104.39 645 A 1 \nATOM 1961 C C . ASP A 1 330 ? -3.169 -25.729 11.728 1.00 99.96 645 A 1 \nATOM 1962 O O . ASP A 1 330 ? -3.997 -24.960 12.225 1.00 99.47 645 A 1 \nATOM 1963 C CB . ASP A 1 330 ? -1.068 -24.263 11.963 1.00 108.96 645 A 1 \nATOM 1964 C CG . ASP A 1 330 ? -1.062 -24.676 13.407 1.00 115.00 645 A 1 \nATOM 1965 O OD1 . ASP A 1 330 ? -0.763 -25.839 13.702 1.00 118.85 645 A 1 \nATOM 1966 O OD2 . ASP A 1 330 ? -1.466 -23.873 14.266 1.00 116.00 645 A 1 \nATOM 1967 N N . ALA A 1 331 ? -3.341 -27.052 11.673 1.00 97.45 646 A 1 \nATOM 1968 C CA . ALA A 1 331 ? -4.603 -27.668 12.057 1.00 96.20 646 A 1 \nATOM 1969 C C . ALA A 1 331 ? -4.811 -27.658 13.568 1.00 103.85 646 A 1 \nATOM 1970 O O . ALA A 1 331 ? -5.956 -27.689 14.044 1.00 104.59 646 A 1 \nATOM 1971 C CB . ALA A 1 331 ? -4.655 -29.096 11.514 1.00 94.41 646 A 1 \nATOM 1972 N N . ARG A 1 332 ? -3.722 -27.616 14.335 1.00 108.74 647 A 1 \nATOM 1973 C CA . ARG A 1 332 ? -3.824 -27.606 15.790 1.00 109.11 647 A 1 \nATOM 1974 C C . ARG A 1 332 ? -4.560 -26.366 16.277 1.00 105.59 647 A 1 \nATOM 1975 O O . ARG A 1 332 ? -5.608 -26.455 16.927 1.00 106.49 647 A 1 \nATOM 1976 C CB . ARG A 1 332 ? -2.427 -27.671 16.412 1.00 113.50 647 A 1 \nATOM 1977 C CG . ARG A 1 332 ? -2.073 -28.999 17.063 1.00 118.46 647 A 1 \nATOM 1978 C CD . ARG A 1 332 ? -0.597 -29.028 17.432 1.00 123.89 647 A 1 \nATOM 1979 N NE . ARG A 1 332 ? 0.256 -28.867 16.257 1.00 126.34 647 A 1 \nATOM 1980 C CZ . ARG A 1 332 ? 1.571 -28.674 16.302 1.00 130.32 647 A 1 \nATOM 1981 N NH1 . ARG A 1 332 ? 2.195 -28.614 17.471 1.00 132.91 647 A 1 \nATOM 1982 N NH2 . ARG A 1 332 ? 2.262 -28.539 15.178 1.00 131.04 647 A 1 \nATOM 1983 N N . LEU A 1 333 ? -4.022 -25.192 15.957 1.00 101.62 648 A 1 \nATOM 1984 C CA . LEU A 1 333 ? -4.514 -23.949 16.539 1.00 98.21 648 A 1 \nATOM 1985 C C . LEU A 1 333 ? -5.815 -23.466 15.885 1.00 93.65 648 A 1 \nATOM 1986 O O . LEU A 1 333 ? -6.669 -22.892 16.571 1.00 95.90 648 A 1 \nATOM 1987 C CB . LEU A 1 333 ? -3.398 -22.900 16.467 1.00 97.80 648 A 1 \nATOM 1988 C CG . LEU A 1 333 ? -2.232 -23.002 17.463 1.00 101.55 648 A 1 \nATOM 1989 C CD1 . LEU A 1 333 ? -1.154 -24.038 17.099 1.00 101.98 648 A 1 \nATOM 1990 C CD2 . LEU A 1 333 ? -1.648 -21.605 17.605 1.00 104.40 648 A 1 \nATOM 1991 N N . LEU A 1 334 ? -6.011 -23.735 14.587 1.00 87.97 649 A 1 \nATOM 1992 C CA . LEU A 1 334 ? -7.224 -23.287 13.906 1.00 84.01 649 A 1 \nATOM 1993 C C . LEU A 1 334 ? -8.429 -24.136 14.290 1.00 83.54 649 A 1 \nATOM 1994 O O . LEU A 1 334 ? -9.559 -23.634 14.316 1.00 79.02 649 A 1 \nATOM 1995 C CB . LEU A 1 334 ? -7.024 -23.315 12.390 1.00 82.13 649 A 1 \nATOM 1996 C CG . LEU A 1 334 ? -8.308 -23.166 11.575 1.00 75.76 649 A 1 \nATOM 1997 C CD1 . LEU A 1 334 ? -8.630 -21.693 11.500 1.00 72.61 649 A 1 \nATOM 1998 C CD2 . LEU A 1 334 ? -8.165 -23.758 10.189 1.00 71.04 649 A 1 \nATOM 1999 N N . ARG A 1 335 ? -8.206 -25.420 14.590 1.00 89.39 650 A 1 \nATOM 2000 C CA . ARG A 1 335 ? -9.268 -26.264 15.129 1.00 94.50 650 A 1 \nATOM 2001 C C . ARG A 1 335 ? -9.946 -25.606 16.322 1.00 94.26 650 A 1 \nATOM 2002 O O . ARG A 1 335 ? -11.124 -25.860 16.588 1.00 99.72 650 A 1 \nATOM 2003 C CB . ARG A 1 335 ? -8.694 -27.629 15.525 1.00 103.64 650 A 1 \nATOM 2004 C CG . ARG A 1 335 ? -9.714 -28.660 15.998 1.00 112.68 650 A 1 \nATOM 2005 C CD . ARG A 1 335 ? -10.819 -28.868 14.952 1.00 115.58 650 A 1 \nATOM 2006 N NE . ARG A 1 335 ? -12.104 -29.308 15.508 1.00 120.06 650 A 1 \nATOM 2007 C CZ . ARG A 1 335 ? -12.790 -28.676 16.459 1.00 118.21 650 A 1 \nATOM 2008 N NH1 . ARG A 1 335 ? -12.329 -27.562 17.005 1.00 112.01 650 A 1 \nATOM 2009 N NH2 . ARG A 1 335 ? -13.949 -29.166 16.878 1.00 119.92 650 A 1 \nATOM 2010 N N . GLN A 1 336 ? -9.230 -24.740 17.036 1.00 91.77 651 A 1 \nATOM 2011 C CA . GLN A 1 336 ? -9.767 -24.048 18.195 1.00 92.90 651 A 1 \nATOM 2012 C C . GLN A 1 336 ? -10.199 -22.619 17.881 1.00 89.43 651 A 1 \nATOM 2013 O O . GLN A 1 336 ? -10.343 -21.807 18.800 1.00 92.69 651 A 1 \nATOM 2014 C CB . GLN A 1 336 ? -8.741 -24.061 19.327 1.00 99.10 651 A 1 \nATOM 2015 C CG . GLN A 1 336 ? -8.833 -25.298 20.201 1.00 105.11 651 A 1 \nATOM 2016 C CD . GLN A 1 336 ? -10.190 -25.426 20.854 1.00 109.59 651 A 1 \nATOM 2017 O OE1 . GLN A 1 336 ? -10.761 -24.438 21.304 1.00 112.15 651 A 1 \nATOM 2018 N NE2 . GLN A 1 336 ? -10.719 -26.642 20.903 1.00 111.20 651 A 1 \nATOM 2019 N N . SER A 1 337 ? -10.413 -22.297 16.607 1.00 84.12 652 A 1 \nATOM 2020 C CA . SER A 1 337 ? -10.916 -20.979 16.260 1.00 78.82 652 A 1 \nATOM 2021 C C . SER A 1 337 ? -12.410 -20.885 16.567 1.00 76.70 652 A 1 \nATOM 2022 O O . SER A 1 337 ? -13.137 -21.876 16.453 1.00 73.99 652 A 1 \nATOM 2023 C CB . SER A 1 337 ? -10.671 -20.684 14.783 1.00 75.70 652 A 1 \nATOM 2024 O OG . SER A 1 337 ? -11.585 -19.721 14.287 1.00 72.99 652 A 1 \nATOM 2025 N N . PRO A 1 338 ? -12.894 -19.704 16.965 1.00 74.95 653 A 1 \nATOM 2026 C CA . PRO A 1 338 ? -14.325 -19.563 17.275 1.00 74.93 653 A 1 \nATOM 2027 C C . PRO A 1 338 ? -15.228 -19.637 16.055 1.00 76.45 653 A 1 \nATOM 2028 O O . PRO A 1 338 ? -16.454 -19.678 16.221 1.00 80.42 653 A 1 \nATOM 2029 C CB . PRO A 1 338 ? -14.406 -18.183 17.940 1.00 71.71 653 A 1 \nATOM 2030 C CG . PRO A 1 338 ? -13.254 -17.431 17.369 1.00 71.32 653 A 1 \nATOM 2031 C CD . PRO A 1 338 ? -12.159 -18.443 17.158 1.00 72.63 653 A 1 \nATOM 2032 N N . ASP A 1 339 ? -14.667 -19.659 14.843 1.00 73.27 654 A 1 \nATOM 2033 C CA . ASP A 1 339 ? -15.446 -19.726 13.611 1.00 68.18 654 A 1 \nATOM 2034 C C . ASP A 1 339 ? -15.749 -21.178 13.261 1.00 67.08 654 A 1 \nATOM 2035 O O . ASP A 1 339 ? -14.822 -21.993 13.175 1.00 66.01 654 A 1 \nATOM 2036 C CB . ASP A 1 339 ? -14.695 -19.068 12.462 1.00 68.49 654 A 1 \nATOM 2037 C CG . ASP A 1 339 ? -15.602 -18.702 11.303 1.00 70.41 654 A 1 \nATOM 2038 O OD1 . ASP A 1 339 ? -16.351 -19.580 10.826 1.00 71.25 654 A 1 \nATOM 2039 O OD2 . ASP A 1 339 ? -15.564 -17.532 10.865 1.00 70.91 654 A 1 \nATOM 2040 N N . PRO A 1 340 ? -17.020 -21.535 13.055 1.00 67.13 655 A 1 \nATOM 2041 C CA . PRO A 1 340 ? -17.331 -22.917 12.650 1.00 68.98 655 A 1 \nATOM 2042 C C . PRO A 1 340 ? -16.712 -23.310 11.319 1.00 70.36 655 A 1 \nATOM 2043 O O . PRO A 1 340 ? -16.247 -24.449 11.176 1.00 71.99 655 A 1 \nATOM 2044 C CB . PRO A 1 340 ? -18.865 -22.924 12.588 1.00 67.73 655 A 1 \nATOM 2045 C CG . PRO A 1 340 ? -19.291 -21.782 13.461 1.00 68.71 655 A 1 \nATOM 2046 C CD . PRO A 1 340 ? -18.234 -20.737 13.296 1.00 66.07 655 A 1 \nATOM 2047 N N . ILE A 1 341 ? -16.717 -22.402 10.335 1.00 72.12 656 A 1 \nATOM 2048 C CA . ILE A 1 341 ? -16.035 -22.653 9.064 1.00 69.64 656 A 1 \nATOM 2049 C C . ILE A 1 341 ? -14.606 -23.089 9.325 1.00 68.78 656 A 1 \nATOM 2050 O O . ILE A 1 341 ? -14.112 -24.069 8.754 1.00 68.07 656 A 1 \nATOM 2051 C CB . ILE A 1 341 ? -16.056 -21.394 8.176 1.00 71.63 656 A 1 \nATOM 2052 C CG1 . ILE A 1 341 ? -17.475 -20.874 7.957 1.00 73.37 656 A 1 \nATOM 2053 C CG2 . ILE A 1 341 ? -15.371 -21.673 6.843 1.00 69.76 656 A 1 \nATOM 2054 C CD1 . ILE A 1 341 ? -18.476 -21.930 7.680 1.00 75.99 656 A 1 \nATOM 2055 N N . ASP A 1 342 ? -13.928 -22.353 10.204 1.00 71.88 657 A 1 \nATOM 2056 C CA . ASP A 1 342 ? -12.517 -22.585 10.471 1.00 74.32 657 A 1 \nATOM 2057 C C . ASP A 1 342 ? -12.290 -23.961 11.082 1.00 75.56 657 A 1 \nATOM 2058 O O . ASP A 1 342 ? -11.380 -24.691 10.674 1.00 75.09 657 A 1 \nATOM 2059 C CB . ASP A 1 342 ? -11.991 -21.483 11.390 1.00 77.85 657 A 1 \nATOM 2060 C CG . ASP A 1 342 ? -11.705 -20.193 10.646 1.00 77.98 657 A 1 \nATOM 2061 O OD1 . ASP A 1 342 ? -11.470 -20.254 9.421 1.00 78.01 657 A 1 \nATOM 2062 O OD2 . ASP A 1 342 ? -11.724 -19.118 11.281 1.00 79.24 657 A 1 \nATOM 2063 N N . ARG A 1 343 ? -13.118 -24.337 12.058 1.00 76.56 658 A 1 \nATOM 2064 C CA . ARG A 1 343 ? -12.977 -25.644 12.692 1.00 75.55 658 A 1 \nATOM 2065 C C . ARG A 1 343 ? -13.262 -26.767 11.702 1.00 76.96 658 A 1 \nATOM 2066 O O . ARG A 1 343 ? -12.527 -27.760 11.638 1.00 81.24 658 A 1 \nATOM 2067 C CB . ARG A 1 343 ? -13.912 -25.739 13.894 1.00 70.27 658 A 1 \nATOM 2068 C CG . ARG A 1 343 ? -13.587 -24.751 14.987 1.00 71.28 658 A 1 \nATOM 2069 C CD . ARG A 1 343 ? -14.194 -25.199 16.295 1.00 75.95 658 A 1 \nATOM 2070 N NE . ARG A 1 343 ? -15.648 -25.084 16.291 1.00 75.03 658 A 1 \nATOM 2071 C CZ . ARG A 1 343 ? -16.303 -23.928 16.345 1.00 72.34 658 A 1 \nATOM 2072 N NH1 . ARG A 1 343 ? -15.632 -22.786 16.423 1.00 71.23 658 A 1 \nATOM 2073 N NH2 . ARG A 1 343 ? -17.629 -23.908 16.340 1.00 72.01 658 A 1 \nATOM 2074 N N . ALA A 1 344 ? -14.340 -26.629 10.926 1.00 72.50 659 A 1 \nATOM 2075 C CA . ALA A 1 344 ? -14.639 -27.621 9.900 1.00 72.46 659 A 1 \nATOM 2076 C C . ALA A 1 344 ? -13.535 -27.683 8.855 1.00 77.36 659 A 1 \nATOM 2077 O O . ALA A 1 344 ? -13.275 -28.750 8.287 1.00 81.90 659 A 1 \nATOM 2078 C CB . ALA A 1 344 ? -15.983 -27.310 9.242 1.00 67.71 659 A 1 \nATOM 2079 N N . TRP A 1 345 ? -12.868 -26.556 8.597 1.00 76.79 660 A 1 \nATOM 2080 C CA . TRP A 1 345 ? -11.760 -26.548 7.650 1.00 76.52 660 A 1 \nATOM 2081 C C . TRP A 1 345 ? -10.548 -27.283 8.209 1.00 82.28 660 A 1 \nATOM 2082 O O . TRP A 1 345 ? -9.846 -27.985 7.472 1.00 81.90 660 A 1 \nATOM 2083 C CB . TRP A 1 345 ? -11.395 -25.109 7.288 1.00 72.01 660 A 1 \nATOM 2084 C CG . TRP A 1 345 ? -10.546 -24.997 6.065 1.00 72.17 660 A 1 \nATOM 2085 C CD1 . TRP A 1 345 ? -9.236 -24.626 6.010 1.00 74.08 660 A 1 \nATOM 2086 C CD2 . TRP A 1 345 ? -10.947 -25.259 4.716 1.00 69.26 660 A 1 \nATOM 2087 N NE1 . TRP A 1 345 ? -8.795 -24.637 4.710 1.00 74.01 660 A 1 \nATOM 2088 C CE2 . TRP A 1 345 ? -9.827 -25.023 3.895 1.00 71.46 660 A 1 \nATOM 2089 C CE3 . TRP A 1 345 ? -12.146 -25.667 4.122 1.00 68.10 660 A 1 \nATOM 2090 C CZ2 . TRP A 1 345 ? -9.867 -25.184 2.512 1.00 66.95 660 A 1 \nATOM 2091 C CZ3 . TRP A 1 345 ? -12.184 -25.825 2.747 1.00 68.67 660 A 1 \nATOM 2092 C CH2 . TRP A 1 345 ? -11.052 -25.585 1.958 1.00 66.83 660 A 1 \nATOM 2093 N N . ALA A 1 346 ? -10.284 -27.132 9.510 1.00 87.84 661 A 1 \nATOM 2094 C CA . ALA A 1 346 ? -9.134 -27.796 10.112 1.00 92.02 661 A 1 \nATOM 2095 C C . ALA A 1 346 ? -9.314 -29.306 10.154 1.00 96.77 661 A 1 \nATOM 2096 O O . ALA A 1 346 ? -8.325 -30.048 10.165 1.00 98.26 661 A 1 \nATOM 2097 C CB . ALA A 1 346 ? -8.891 -27.252 11.520 1.00 92.86 661 A 1 \nATOM 2098 N N . GLN A 1 347 ? -10.559 -29.778 10.164 1.00 100.09 662 A 1 \nATOM 2099 C CA . GLN A 1 347 ? -10.841 -31.199 10.304 1.00 107.27 662 A 1 \nATOM 2100 C C . GLN A 1 347 ? -10.974 -31.906 8.960 1.00 106.01 662 A 1 \nATOM 2101 O O . GLN A 1 347 ? -10.614 -33.085 8.852 1.00 108.95 662 A 1 \nATOM 2102 C CB . GLN A 1 347 ? -12.112 -31.383 11.145 1.00 113.12 662 A 1 \nATOM 2103 C CG . GLN A 1 347 ? -12.862 -32.689 10.953 1.00 119.49 662 A 1 \nATOM 2104 C CD . GLN A 1 347 ? -14.259 -32.645 11.542 1.00 122.08 662 A 1 \nATOM 2105 O OE1 . GLN A 1 347 ? -15.204 -32.213 10.883 1.00 120.50 662 A 1 \nATOM 2106 N NE2 . GLN A 1 347 ? -14.400 -33.106 12.781 1.00 126.73 662 A 1 \nATOM 2107 N N . LEU A 1 348 ? -11.447 -31.209 7.923 1.00 100.90 663 A 1 \nATOM 2108 C CA . LEU A 1 348 ? -11.658 -31.814 6.614 1.00 96.22 663 A 1 \nATOM 2109 C C . LEU A 1 348 ? -10.717 -31.295 5.534 1.00 89.53 663 A 1 \nATOM 2110 O O . LEU A 1 348 ? -10.625 -31.917 4.469 1.00 89.08 663 A 1 \nATOM 2111 C CB . LEU A 1 348 ? -13.113 -31.600 6.158 1.00 94.02 663 A 1 \nATOM 2112 C CG . LEU A 1 348 ? -14.251 -32.202 6.991 1.00 95.06 663 A 1 \nATOM 2113 C CD1 . LEU A 1 348 ? -15.442 -32.527 6.107 1.00 94.06 663 A 1 \nATOM 2114 C CD2 . LEU A 1 348 ? -13.798 -33.459 7.710 1.00 99.10 663 A 1 \nATOM 2115 N N . ALA A 1 349 ? -10.022 -30.186 5.769 1.00 84.17 664 A 1 \nATOM 2116 C CA . ALA A 1 349 ? -9.149 -29.617 4.763 1.00 80.71 664 A 1 \nATOM 2117 C C . ALA A 1 349 ? -7.757 -30.223 4.779 1.00 80.98 664 A 1 \nATOM 2118 O O . ALA A 1 349 ? -7.241 -30.623 5.819 1.00 78.68 664 A 1 \nATOM 2119 N N . ASP A 1 350 ? -7.151 -30.281 3.593 1.00 84.34 665 A 1 \nATOM 2120 C CA . ASP A 1 350 ? -5.786 -30.757 3.442 1.00 89.38 665 A 1 \nATOM 2121 C C . ASP A 1 350 ? -4.874 -29.558 3.232 1.00 91.11 665 A 1 \nATOM 2122 O O . ASP A 1 350 ? -4.973 -28.896 2.187 1.00 90.08 665 A 1 \nATOM 2123 C CB . ASP A 1 350 ? -5.682 -31.724 2.264 1.00 89.70 665 A 1 \nATOM 2124 C CG . ASP A 1 350 ? -4.285 -32.289 2.089 1.00 91.70 665 A 1 \nATOM 2125 O OD1 . ASP A 1 350 ? -3.465 -32.176 3.025 1.00 93.90 665 A 1 \nATOM 2126 O OD2 . ASP A 1 350 ? -4.006 -32.852 1.010 1.00 92.83 665 A 1 \nATOM 2127 N N . PRO A 1 351 ? -3.980 -29.240 4.172 1.00 92.22 666 A 1 \nATOM 2128 C CA . PRO A 1 351 ? -3.173 -28.015 4.034 1.00 93.14 666 A 1 \nATOM 2129 C C . PRO A 1 351 ? -2.224 -28.029 2.848 1.00 96.06 666 A 1 \nATOM 2130 O O . PRO A 1 351 ? -1.760 -26.958 2.438 1.00 95.62 666 A 1 \nATOM 2131 C CB . PRO A 1 351 ? -2.407 -27.946 5.363 1.00 92.44 666 A 1 \nATOM 2132 C CG . PRO A 1 351 ? -2.390 -29.351 5.867 1.00 91.79 666 A 1 \nATOM 2133 C CD . PRO A 1 351 ? -3.684 -29.964 5.420 1.00 90.47 666 A 1 \nATOM 2134 N N . ALA A 1 352 ? -1.921 -29.199 2.283 1.00 98.60 667 A 1 \nATOM 2135 C CA . ALA A 1 352 ? -1.030 -29.255 1.131 1.00 100.45 667 A 1 \nATOM 2136 C C . ALA A 1 352 ? -1.719 -28.803 -0.150 1.00 98.19 667 A 1 \nATOM 2137 O O . ALA A 1 352 ? -1.047 -28.349 -1.082 1.00 98.56 667 A 1 \nATOM 2138 C CB . ALA A 1 352 ? -0.480 -30.672 0.959 1.00 104.38 667 A 1 \nATOM 2139 N N . THR A 1 353 ? -3.046 -28.918 -0.216 1.00 95.03 668 A 1 \nATOM 2140 C CA . THR A 1 353 ? -3.801 -28.521 -1.394 1.00 91.97 668 A 1 \nATOM 2141 C C . THR A 1 353 ? -4.785 -27.388 -1.148 1.00 87.31 668 A 1 \nATOM 2142 O O . THR A 1 353 ? -5.204 -26.744 -2.115 1.00 85.64 668 A 1 \nATOM 2143 C CB . THR A 1 353 ? -4.578 -29.717 -1.968 1.00 91.57 668 A 1 \nATOM 2144 O OG1 . THR A 1 353 ? -5.581 -30.133 -1.032 1.00 89.02 668 A 1 \nATOM 2145 C CG2 . THR A 1 353 ? -3.639 -30.880 -2.246 1.00 95.85 668 A 1 \nATOM 2146 N N . GLY A 1 354 ? -5.162 -27.124 0.101 1.00 83.71 669 A 1 \nATOM 2147 C CA . GLY A 1 354 ? -6.170 -26.119 0.367 1.00 78.30 669 A 1 \nATOM 2148 C C . GLY A 1 354 ? -7.565 -26.511 -0.052 1.00 74.29 669 A 1 \nATOM 2149 O O . GLY A 1 354 ? -8.414 -25.639 -0.250 1.00 70.57 669 A 1 \nATOM 2150 N N . CYS A 1 355 ? -7.828 -27.806 -0.186 1.00 78.52 670 A 1 \nATOM 2151 C CA . CYS A 1 355 ? -9.100 -28.316 -0.670 1.00 80.82 670 A 1 \nATOM 2152 C C . CYS A 1 355 ? -9.720 -29.234 0.374 1.00 78.57 670 A 1 \nATOM 2153 O O . CYS A 1 355 ? -9.015 -29.845 1.183 1.00 79.80 670 A 1 \nATOM 2154 C CB . CYS A 1 355 ? -8.914 -29.068 -1.991 1.00 85.02 670 A 1 \nATOM 2155 S SG . CYS A 1 355 ? -8.402 -28.029 -3.377 1.00 85.86 670 A 1 \nATOM 2156 N N . ALA A 1 356 ? -11.048 -29.332 0.353 1.00 74.48 671 A 1 \nATOM 2157 C CA . ALA A 1 356 ? -11.752 -30.142 1.336 1.00 74.85 671 A 1 \nATOM 2158 C C . ALA A 1 356 ? -13.024 -30.712 0.727 1.00 73.79 671 A 1 \nATOM 2159 O O . ALA A 1 356 ? -13.696 -30.046 -0.061 1.00 74.41 671 A 1 \nATOM 2160 C CB . ALA A 1 356 ? -12.094 -29.330 2.588 1.00 70.81 671 A 1 \nATOM 2161 N N . TRP A 1 357 ? -13.353 -31.940 1.118 1.00 70.54 672 A 1 \nATOM 2162 C CA . TRP A 1 357 ? -14.565 -32.618 0.685 1.00 70.91 672 A 1 \nATOM 2163 C C . TRP A 1 357 ? -15.625 -32.461 1.773 1.00 69.94 672 A 1 \nATOM 2164 O O . TRP A 1 357 ? -15.382 -32.807 2.933 1.00 71.34 672 A 1 \nATOM 2165 C CB . TRP A 1 357 ? -14.289 -34.095 0.412 1.00 78.75 672 A 1 \nATOM 2166 C CG . TRP A 1 357 ? -13.615 -34.368 -0.892 1.00 84.36 672 A 1 \nATOM 2167 C CD1 . TRP A 1 357 ? -12.318 -34.750 -1.079 1.00 88.73 672 A 1 \nATOM 2168 C CD2 . TRP A 1 357 ? -14.206 -34.300 -2.195 1.00 80.82 672 A 1 \nATOM 2169 N NE1 . TRP A 1 357 ? -12.063 -34.919 -2.418 1.00 87.74 672 A 1 \nATOM 2170 C CE2 . TRP A 1 357 ? -13.205 -34.649 -3.124 1.00 83.46 672 A 1 \nATOM 2171 C CE3 . TRP A 1 357 ? -15.481 -33.978 -2.668 1.00 77.31 672 A 1 \nATOM 2172 C CZ2 . TRP A 1 357 ? -13.440 -34.683 -4.498 1.00 84.47 672 A 1 \nATOM 2173 C CZ3 . TRP A 1 357 ? -15.711 -34.013 -4.032 1.00 78.00 672 A 1 \nATOM 2174 C CH2 . TRP A 1 357 ? -14.696 -34.362 -4.931 1.00 81.27 672 A 1 \nATOM 2175 N N . MET A 1 358 ? -16.792 -31.937 1.398 1.00 69.50 673 A 1 \nATOM 2176 C CA . MET A 1 358 ? -17.871 -31.697 2.343 1.00 71.83 673 A 1 \nATOM 2177 C C . MET A 1 358 ? -19.194 -32.176 1.767 1.00 71.87 673 A 1 \nATOM 2178 O O . MET A 1 358 ? -19.435 -32.090 0.561 1.00 73.94 673 A 1 \nATOM 2179 C CB . MET A 1 358 ? -17.987 -30.210 2.704 1.00 72.40 673 A 1 \nATOM 2180 C CG . MET A 1 358 ? -16.855 -29.685 3.568 1.00 74.34 673 A 1 \nATOM 2181 S SD . MET A 1 358 ? -17.187 -28.016 4.164 1.00 72.89 673 A 1 \nATOM 2182 C CE . MET A 1 358 ? -15.578 -27.546 4.795 1.00 72.53 673 A 1 \nATOM 2183 N N . LYS A 1 359 ? -20.055 -32.681 2.649 1.00 72.02 674 A 1 \nATOM 2184 C CA . LYS A 1 359 ? -21.402 -33.062 2.261 1.00 73.21 674 A 1 \nATOM 2185 C C . LYS A 1 359 ? -22.314 -31.840 2.263 1.00 72.31 674 A 1 \nATOM 2186 O O . LYS A 1 359 ? -22.036 -30.826 2.909 1.00 71.89 674 A 1 \nATOM 2187 C CB . LYS A 1 359 ? -21.950 -34.135 3.202 1.00 76.86 674 A 1 \nATOM 2188 N N . ALA A 1 360 ? -23.418 -31.947 1.518 1.00 71.08 675 A 1 \nATOM 2189 C CA . ALA A 1 360 ? -24.354 -30.831 1.428 1.00 69.83 675 A 1 \nATOM 2190 C C . ALA A 1 360 ? -24.905 -30.462 2.800 1.00 70.20 675 A 1 \nATOM 2191 O O . ALA A 1 360 ? -25.057 -29.277 3.116 1.00 66.42 675 A 1 \nATOM 2192 C CB . ALA A 1 360 ? -25.487 -31.172 0.462 1.00 65.51 675 A 1 \nATOM 2193 N N . SER A 1 361 ? -25.196 -31.463 3.635 1.00 74.61 676 A 1 \nATOM 2194 C CA . SER A 1 361 ? -25.659 -31.181 4.991 1.00 75.77 676 A 1 \nATOM 2195 C C . SER A 1 361 ? -24.614 -30.416 5.789 1.00 73.63 676 A 1 \nATOM 2196 O O . SER A 1 361 ? -24.963 -29.599 6.649 1.00 70.95 676 A 1 \nATOM 2197 C CB . SER A 1 361 ? -26.018 -32.482 5.705 1.00 78.86 676 A 1 \nATOM 2198 O OG . SER A 1 361 ? -24.898 -33.348 5.763 1.00 80.79 676 A 1 \nATOM 2199 N N . MET A 1 362 ? -23.331 -30.669 5.524 1.00 72.99 677 A 1 \nATOM 2200 C CA . MET A 1 362 ? -22.270 -29.924 6.191 1.00 69.83 677 A 1 \nATOM 2201 C C . MET A 1 362 ? -22.122 -28.523 5.612 1.00 69.57 677 A 1 \nATOM 2202 O O . MET A 1 362 ? -21.922 -27.559 6.361 1.00 64.29 677 A 1 \nATOM 2203 C CB . MET A 1 362 ? -20.954 -30.703 6.099 1.00 74.82 677 A 1 \nATOM 2204 C CG . MET A 1 362 ? -19.704 -29.844 6.024 1.00 84.56 677 A 1 \nATOM 2205 S SD . MET A 1 362 ? -19.326 -29.024 7.584 1.00 98.28 677 A 1 \nATOM 2206 C CE . MET A 1 362 ? -19.277 -30.417 8.707 1.00 101.26 677 A 1 \nATOM 2207 N N . ILE A 1 363 ? -22.236 -28.378 4.289 1.00 69.80 678 A 1 \nATOM 2208 C CA . ILE A 1 363 ? -22.060 -27.057 3.680 1.00 67.82 678 A 1 \nATOM 2209 C C . ILE A 1 363 ? -23.188 -26.115 4.090 1.00 66.37 678 A 1 \nATOM 2210 O O . ILE A 1 363 ? -22.935 -24.957 4.444 1.00 67.37 678 A 1 \nATOM 2211 C CB . ILE A 1 363 ? -21.955 -27.186 2.147 1.00 66.03 678 A 1 \nATOM 2212 C CG1 . ILE A 1 363 ? -20.808 -28.118 1.758 1.00 66.16 678 A 1 \nATOM 2213 C CG2 . ILE A 1 363 ? -21.768 -25.820 1.522 1.00 57.03 678 A 1 \nATOM 2214 C CD1 . ILE A 1 363 ? -20.813 -28.514 0.307 1.00 61.56 678 A 1 \nATOM 2215 N N . ASP A 1 364 ? -24.441 -26.599 4.054 1.00 68.49 679 A 1 \nATOM 2216 C CA . ASP A 1 364 ? -25.573 -25.763 4.420 1.00 72.78 679 A 1 \nATOM 2217 C C . ASP A 1 364 ? -25.583 -25.458 5.909 1.00 72.87 679 A 1 \nATOM 2218 O O . ASP A 1 364 ? -26.040 -24.389 6.319 1.00 73.44 679 A 1 \nATOM 2219 C CB . ASP A 1 364 ? -26.902 -26.425 4.002 1.00 78.12 679 A 1 \nATOM 2220 C CG . ASP A 1 364 ? -26.856 -26.955 2.609 1.00 83.88 679 A 1 \nATOM 2221 O OD1 . ASP A 1 364 ? -26.356 -26.207 1.756 1.00 87.25 679 A 1 \nATOM 2222 O OD2 . ASP A 1 364 ? -27.390 -28.054 2.347 1.00 89.25 679 A 1 \nATOM 2223 N N . GLN A 1 365 ? -25.127 -26.397 6.729 1.00 75.91 680 A 1 \nATOM 2224 C CA . GLN A 1 365 ? -24.938 -26.101 8.144 1.00 76.32 680 A 1 \nATOM 2225 C C . GLN A 1 365 ? -23.947 -24.956 8.328 1.00 73.13 680 A 1 \nATOM 2226 O O . GLN A 1 365 ? -24.136 -24.078 9.183 1.00 70.98 680 A 1 \nATOM 2227 C CB . GLN A 1 365 ? -24.457 -27.358 8.883 1.00 77.47 680 A 1 \nATOM 2228 C CG . GLN A 1 365 ? -23.683 -27.059 10.160 1.00 80.81 680 A 1 \nATOM 2229 C CD . GLN A 1 365 ? -23.401 -28.298 11.009 1.00 90.53 680 A 1 \nATOM 2230 O OE1 . GLN A 1 365 ? -24.255 -29.174 11.155 1.00 96.08 680 A 1 \nATOM 2231 N NE2 . GLN A 1 365 ? -22.206 -28.361 11.588 1.00 92.06 680 A 1 \nATOM 2232 N N . LEU A 1 366 ? -22.876 -24.960 7.537 1.00 72.40 681 A 1 \nATOM 2233 C CA . LEU A 1 366 ? -21.883 -23.901 7.621 1.00 68.30 681 A 1 \nATOM 2234 C C . LEU A 1 366 ? -22.425 -22.594 7.063 1.00 66.54 681 A 1 \nATOM 2235 O O . LEU A 1 366 ? -22.092 -21.516 7.566 1.00 67.50 681 A 1 \nATOM 2236 C CB . LEU A 1 366 ? -20.622 -24.318 6.872 1.00 62.81 681 A 1 \nATOM 2237 C CG . LEU A 1 366 ? -19.814 -25.459 7.487 1.00 64.46 681 A 1 \nATOM 2238 C CD1 . LEU A 1 366 ? -18.489 -25.629 6.759 1.00 62.42 681 A 1 \nATOM 2239 C CD2 . LEU A 1 366 ? -19.597 -25.244 8.977 1.00 63.37 681 A 1 \nATOM 2240 N N . GLN A 1 367 ? -23.253 -22.667 6.022 1.00 65.17 682 A 1 \nATOM 2241 C CA . GLN A 1 367 ? -23.846 -21.479 5.423 1.00 65.92 682 A 1 \nATOM 2242 C C . GLN A 1 367 ? -25.179 -21.097 6.049 1.00 68.50 682 A 1 \nATOM 2243 O O . GLN A 1 367 ? -25.728 -20.044 5.703 1.00 72.98 682 A 1 \nATOM 2244 C CB . GLN A 1 367 ? -24.036 -21.685 3.916 1.00 62.56 682 A 1 \nATOM 2245 C CG . GLN A 1 367 ? -22.755 -22.017 3.172 1.00 62.53 682 A 1 \nATOM 2246 C CD . GLN A 1 367 ? -21.954 -20.781 2.819 1.00 67.98 682 A 1 \nATOM 2247 O OE1 . GLN A 1 367 ? -22.309 -19.665 3.202 1.00 68.05 682 A 1 \nATOM 2248 N NE2 . GLN A 1 367 ? -20.865 -20.973 2.081 1.00 67.60 682 A 1 \nATOM 2249 N N . LYS A 1 368 ? -25.714 -21.924 6.947 1.00 70.64 683 A 1 \nATOM 2250 C CA . LYS A 1 368 ? -26.992 -21.602 7.578 1.00 71.16 683 A 1 \nATOM 2251 C C . LYS A 1 368 ? -26.973 -20.261 8.297 1.00 75.24 683 A 1 \nATOM 2252 O O . LYS A 1 368 ? -27.862 -19.438 8.029 1.00 77.96 683 A 1 \nATOM 2253 C CB . LYS A 1 368 ? -27.417 -22.729 8.525 1.00 69.69 683 A 1 \nATOM 2254 C CG . LYS A 1 368 ? -28.717 -22.447 9.261 1.00 72.31 683 A 1 \nATOM 2255 C CD . LYS A 1 368 ? -29.060 -23.560 10.232 1.00 79.06 683 A 1 \nATOM 2256 C CE . LYS A 1 368 ? -30.309 -23.224 11.030 1.00 86.25 683 A 1 \nATOM 2257 N NZ . LYS A 1 368 ? -31.494 -23.025 10.151 1.00 88.54 683 A 1 \nATOM 2258 N N . PRO A 1 369 ? -26.018 -19.957 9.187 1.00 74.45 684 A 1 \nATOM 2259 C CA . PRO A 1 369 ? -26.080 -18.665 9.891 1.00 77.56 684 A 1 \nATOM 2260 C C . PRO A 1 369 ? -25.873 -17.464 8.984 1.00 75.90 684 A 1 \nATOM 2261 O O . PRO A 1 369 ? -26.222 -16.346 9.381 1.00 76.75 684 A 1 \nATOM 2262 C CB . PRO A 1 369 ? -24.959 -18.771 10.937 1.00 75.66 684 A 1 \nATOM 2263 C CG . PRO A 1 369 ? -24.606 -20.223 10.999 1.00 74.45 684 A 1 \nATOM 2264 C CD . PRO A 1 369 ? -24.852 -20.744 9.626 1.00 72.13 684 A 1 \nATOM 2265 N N . LEU A 1 370 ? -25.326 -17.653 7.785 1.00 75.80 685 A 1 \nATOM 2266 C CA . LEU A 1 370 ? -25.058 -16.542 6.880 1.00 73.47 685 A 1 \nATOM 2267 C C . LEU A 1 370 ? -26.053 -16.442 5.734 1.00 74.38 685 A 1 \nATOM 2268 O O . LEU A 1 370 ? -26.330 -15.332 5.268 1.00 73.52 685 A 1 \nATOM 2269 C CB . LEU A 1 370 ? -23.643 -16.657 6.298 1.00 72.04 685 A 1 \nATOM 2270 C CG . LEU A 1 370 ? -22.446 -16.595 7.253 1.00 76.30 685 A 1 \nATOM 2271 C CD1 . LEU A 1 370 ? -22.679 -15.582 8.367 1.00 76.53 685 A 1 \nATOM 2272 C CD2 . LEU A 1 370 ? -22.113 -17.972 7.824 1.00 80.56 685 A 1 \nATOM 2273 N N . ARG A 1 371 ? -26.605 -17.566 5.276 1.00 75.97 686 A 1 \nATOM 2274 C CA . ARG A 1 371 ? -27.433 -17.591 4.080 1.00 72.86 686 A 1 \nATOM 2275 C C . ARG A 1 371 ? -28.837 -18.129 4.300 1.00 74.48 686 A 1 \nATOM 2276 O O . ARG A 1 371 ? -29.675 -17.999 3.399 1.00 75.29 686 A 1 \nATOM 2277 C CB . ARG A 1 371 ? -26.761 -18.437 2.988 1.00 69.60 686 A 1 \nATOM 2278 C CG . ARG A 1 371 ? -25.307 -18.096 2.753 1.00 70.43 686 A 1 \nATOM 2279 C CD . ARG A 1 371 ? -25.182 -16.930 1.794 1.00 69.24 686 A 1 \nATOM 2280 N NE . ARG A 1 371 ? -23.830 -16.810 1.264 1.00 67.49 686 A 1 \nATOM 2281 C CZ . ARG A 1 371 ? -23.539 -16.278 0.082 1.00 68.43 686 A 1 \nATOM 2282 N NH1 . ARG A 1 371 ? -24.509 -15.815 -0.696 1.00 68.37 686 A 1 \nATOM 2283 N NH2 . ARG A 1 371 ? -22.277 -16.209 -0.321 1.00 65.32 686 A 1 \nATOM 2284 N N . GLY A 1 372 ? -29.123 -18.719 5.449 1.00 76.45 687 A 1 \nATOM 2285 C CA . GLY A 1 372 ? -30.364 -19.437 5.620 1.00 80.50 687 A 1 \nATOM 2286 C C . GLY A 1 372 ? -30.234 -20.869 5.147 1.00 83.82 687 A 1 \nATOM 2287 O O . GLY A 1 372 ? -29.149 -21.363 4.825 1.00 85.74 687 A 1 \nATOM 2288 N N . ASP A 1 373 ? -31.376 -21.545 5.096 1.00 85.84 688 A 1 \nATOM 2289 C CA . ASP A 1 373 ? -31.383 -22.948 4.717 1.00 86.44 688 A 1 \nATOM 2290 C C . ASP A 1 373 ? -31.265 -23.106 3.202 1.00 81.17 688 A 1 \nATOM 2291 O O . ASP A 1 373 ? -31.374 -22.145 2.434 1.00 80.80 688 A 1 \nATOM 2292 C CB . ASP A 1 373 ? -32.652 -23.632 5.223 1.00 92.80 688 A 1 \nATOM 2293 C CG . ASP A 1 373 ? -32.696 -23.735 6.734 1.00 98.48 688 A 1 \nATOM 2294 O OD1 . ASP A 1 373 ? -31.617 -23.838 7.356 1.00 98.60 688 A 1 \nATOM 2295 O OD2 . ASP A 1 373 ? -33.809 -23.712 7.298 1.00 102.75 688 A 1 \nATOM 2296 N N . ASN A 1 374 ? -31.015 -24.349 2.784 1.00 77.34 689 A 1 \nATOM 2297 C CA . ASN A 1 374 ? -31.055 -24.765 1.382 1.00 70.86 689 A 1 \nATOM 2298 C C . ASN A 1 374 ? -29.978 -24.093 0.532 1.00 69.68 689 A 1 \nATOM 2299 O O . ASN A 1 374 ? -30.204 -23.819 -0.647 1.00 67.10 689 A 1 \nATOM 2300 C CB . ASN A 1 374 ? -32.435 -24.515 0.768 1.00 69.80 689 A 1 \nATOM 2301 C CG . ASN A 1 374 ? -33.553 -25.128 1.581 1.00 75.86 689 A 1 \nATOM 2302 O OD1 . ASN A 1 374 ? -33.460 -26.276 2.018 1.00 75.92 689 A 1 \nATOM 2303 N ND2 . ASN A 1 374 ? -34.619 -24.366 1.791 1.00 82.11 689 A 1 \nATOM 2304 N N . TYR A 1 375 ? -28.797 -23.840 1.104 1.00 69.35 690 A 1 \nATOM 2305 C CA . TYR A 1 375 ? -27.731 -23.201 0.335 1.00 62.57 690 A 1 \nATOM 2306 C C . TYR A 1 375 ? -27.355 -24.033 -0.887 1.00 63.80 690 A 1 \nATOM 2307 O O . TYR A 1 375 ? -27.297 -23.516 -2.007 1.00 63.93 690 A 1 \nATOM 2308 C CB . TYR A 1 375 ? -26.507 -22.961 1.222 1.00 56.89 690 A 1 \nATOM 2309 C CG . TYR A 1 375 ? -25.305 -22.432 0.467 1.00 56.44 690 A 1 \nATOM 2310 C CD1 . TYR A 1 375 ? -25.193 -21.082 0.160 1.00 58.98 690 A 1 \nATOM 2311 C CD2 . TYR A 1 375 ? -24.287 -23.283 0.054 1.00 55.37 690 A 1 \nATOM 2312 C CE1 . TYR A 1 375 ? -24.098 -20.594 -0.532 1.00 58.87 690 A 1 \nATOM 2313 C CE2 . TYR A 1 375 ? -23.190 -22.804 -0.639 1.00 54.13 690 A 1 \nATOM 2314 C CZ . TYR A 1 375 ? -23.102 -21.461 -0.930 1.00 55.74 690 A 1 \nATOM 2315 O OH . TYR A 1 375 ? -22.012 -20.984 -1.617 1.00 56.18 690 A 1 \nATOM 2316 N N . MET A 1 376 ? -27.101 -25.331 -0.691 1.00 64.54 691 A 1 \nATOM 2317 C CA . MET A 1 376 ? -26.738 -26.187 -1.818 1.00 65.28 691 A 1 \nATOM 2318 C C . MET A 1 376 ? -27.932 -26.452 -2.727 1.00 64.84 691 A 1 \nATOM 2319 O O . MET A 1 376 ? -27.796 -26.446 -3.957 1.00 64.61 691 A 1 \nATOM 2320 C CB . MET A 1 376 ? -26.149 -27.507 -1.314 1.00 69.19 691 A 1 \nATOM 2321 C CG . MET A 1 376 ? -24.788 -27.369 -0.646 1.00 70.70 691 A 1 \nATOM 2322 S SD . MET A 1 376 ? -23.515 -26.783 -1.776 1.00 69.84 691 A 1 \nATOM 2323 C CE . MET A 1 376 ? -23.430 -28.150 -2.928 1.00 72.05 691 A 1 \nATOM 2324 N N . ALA A 1 377 ? -29.110 -26.690 -2.143 1.00 64.38 692 A 1 \nATOM 2325 C CA . ALA A 1 377 ? -30.280 -27.029 -2.949 1.00 63.72 692 A 1 \nATOM 2326 C C . ALA A 1 377 ? -30.676 -25.882 -3.870 1.00 63.44 692 A 1 \nATOM 2327 O O . ALA A 1 377 ? -31.121 -26.109 -5.000 1.00 63.39 692 A 1 \nATOM 2328 C CB . ALA A 1 377 ? -31.449 -27.416 -2.044 1.00 64.52 692 A 1 \nATOM 2329 N N . ILE A 1 378 ? -30.519 -24.641 -3.405 1.00 62.76 693 A 1 \nATOM 2330 C CA . ILE A 1 378 ? -30.901 -23.494 -4.221 1.00 63.70 693 A 1 \nATOM 2331 C C . ILE A 1 378 ? -29.999 -23.372 -5.445 1.00 64.52 693 A 1 \nATOM 2332 O O . ILE A 1 378 ? -30.452 -22.960 -6.521 1.00 60.99 693 A 1 \nATOM 2333 C CB . ILE A 1 378 ? -30.886 -22.212 -3.363 1.00 59.79 693 A 1 \nATOM 2334 C CG1 . ILE A 1 378 ? -32.193 -22.075 -2.576 1.00 59.78 693 A 1 \nATOM 2335 C CG2 . ILE A 1 378 ? -30.652 -20.972 -4.213 1.00 56.56 693 A 1 \nATOM 2336 C CD1 . ILE A 1 378 ? -32.042 -21.387 -1.232 1.00 58.86 693 A 1 \nATOM 2337 N N . ARG A 1 379 ? -28.731 -23.760 -5.322 1.00 65.54 694 A 1 \nATOM 2338 C CA . ARG A 1 379 ? -27.730 -23.495 -6.348 1.00 64.05 694 A 1 \nATOM 2339 C C . ARG A 1 379 ? -27.408 -24.697 -7.225 1.00 66.08 694 A 1 \nATOM 2340 O O . ARG A 1 379 ? -27.291 -24.547 -8.444 1.00 67.43 694 A 1 \nATOM 2341 C CB . ARG A 1 379 ? -26.437 -22.995 -5.699 1.00 62.80 694 A 1 \nATOM 2342 C CG . ARG A 1 379 ? -26.566 -21.632 -5.057 1.00 63.85 694 A 1 \nATOM 2343 C CD . ARG A 1 379 ? -25.480 -21.404 -4.022 1.00 62.85 694 A 1 \nATOM 2344 N NE . ARG A 1 379 ? -25.596 -20.087 -3.406 1.00 64.89 694 A 1 \nATOM 2345 C CZ . ARG A 1 379 ? -26.529 -19.756 -2.518 1.00 64.79 694 A 1 \nATOM 2346 N NH1 . ARG A 1 379 ? -27.429 -20.648 -2.129 1.00 62.95 694 A 1 \nATOM 2347 N NH2 . ARG A 1 379 ? -26.555 -18.533 -2.007 1.00 64.27 694 A 1 \nATOM 2348 N N . TYR A 1 380 ? -27.255 -25.884 -6.645 1.00 65.49 695 A 1 \nATOM 2349 C CA . TYR A 1 380 ? -26.659 -27.018 -7.340 1.00 61.34 695 A 1 \nATOM 2350 C C . TYR A 1 380 ? -27.641 -28.172 -7.510 1.00 64.19 695 A 1 \nATOM 2351 O O . TYR A 1 380 ? -27.266 -29.344 -7.437 1.00 67.15 695 A 1 \nATOM 2352 C CB . TYR A 1 380 ? -25.403 -27.485 -6.610 1.00 62.09 695 A 1 \nATOM 2353 C CG . TYR A 1 380 ? -24.356 -26.404 -6.463 1.00 62.01 695 A 1 \nATOM 2354 C CD1 . TYR A 1 380 ? -23.509 -26.083 -7.515 1.00 64.52 695 A 1 \nATOM 2355 C CD2 . TYR A 1 380 ? -24.218 -25.702 -5.274 1.00 62.48 695 A 1 \nATOM 2356 C CE1 . TYR A 1 380 ? -22.552 -25.093 -7.385 1.00 67.19 695 A 1 \nATOM 2357 C CE2 . TYR A 1 380 ? -23.264 -24.713 -5.133 1.00 63.72 695 A 1 \nATOM 2358 C CZ . TYR A 1 380 ? -22.434 -24.412 -6.191 1.00 63.43 695 A 1 \nATOM 2359 O OH . TYR A 1 380 ? -21.484 -23.428 -6.053 1.00 60.39 695 A 1 \nATOM 2360 N N . THR A 1 381 ? -28.907 -27.861 -7.756 1.00 65.61 696 A 1 \nATOM 2361 C CA . THR A 1 381 ? -29.882 -28.902 -8.062 1.00 71.76 696 A 1 \nATOM 2362 C C . THR A 1 381 ? -29.807 -29.244 -9.545 1.00 71.51 696 A 1 \nATOM 2363 O O . THR A 1 381 ? -30.072 -28.375 -10.383 1.00 73.31 696 A 1 \nATOM 2364 C CB . THR A 1 381 ? -31.290 -28.454 -7.693 1.00 75.47 696 A 1 \nATOM 2365 O OG1 . THR A 1 381 ? -31.432 -28.449 -6.267 1.00 75.03 696 A 1 \nATOM 2366 C CG2 . THR A 1 381 ? -32.325 -29.399 -8.295 1.00 77.21 696 A 1 \nATOM 2367 N N . PRO A 1 382 ? -29.454 -30.478 -9.912 1.00 74.48 697 A 1 \nATOM 2368 C CA . PRO A 1 382 ? -29.244 -30.785 -11.325 1.00 74.73 697 A 1 \nATOM 2369 C C . PRO A 1 382 ? -30.559 -30.798 -12.085 1.00 74.77 697 A 1 \nATOM 2370 O O . PRO A 1 382 ? -31.620 -31.100 -11.512 1.00 74.71 697 A 1 \nATOM 2371 C CB . PRO A 1 382 ? -28.603 -32.186 -11.294 1.00 75.97 697 A 1 \nATOM 2372 C CG . PRO A 1 382 ? -28.195 -32.415 -9.865 1.00 75.59 697 A 1 \nATOM 2373 C CD . PRO A 1 382 ? -29.159 -31.628 -9.044 1.00 75.75 697 A 1 \nATOM 2374 N N . PRO A 1 383 ? -30.537 -30.472 -13.379 1.00 74.76 698 A 1 \nATOM 2375 C CA . PRO A 1 383 ? -31.747 -30.622 -14.183 1.00 73.73 698 A 1 \nATOM 2376 C C . PRO A 1 383 ? -32.069 -32.091 -14.383 1.00 76.31 698 A 1 \nATOM 2377 O O . PRO A 1 383 ? -31.172 -32.950 -14.328 1.00 73.80 698 A 1 \nATOM 2378 C CB . PRO A 1 383 ? -31.374 -29.942 -15.512 1.00 73.17 698 A 1 \nATOM 2379 C CG . PRO A 1 383 ? -29.890 -30.065 -15.584 1.00 72.04 698 A 1 \nATOM 2380 C CD . PRO A 1 383 ? -29.398 -29.971 -14.167 1.00 72.44 698 A 1 \nATOM 2381 N N . PRO A 1 384 ? -33.340 -32.433 -14.613 1.00 80.71 699 A 1 \nATOM 2382 C CA . PRO A 1 384 ? -33.706 -33.858 -14.686 1.00 82.69 699 A 1 \nATOM 2383 C C . PRO A 1 384 ? -33.067 -34.599 -15.849 1.00 85.67 699 A 1 \nATOM 2384 O O . PRO A 1 384 ? -32.870 -35.817 -15.753 1.00 88.83 699 A 1 \nATOM 2385 C CB . PRO A 1 384 ? -35.238 -33.823 -14.809 1.00 83.28 699 A 1 \nATOM 2386 C CG . PRO A 1 384 ? -35.641 -32.461 -14.337 1.00 83.02 699 A 1 \nATOM 2387 C CD . PRO A 1 384 ? -34.515 -31.551 -14.708 1.00 82.07 699 A 1 \nATOM 2388 N N . TYR A 1 385 ? -32.733 -33.910 -16.944 1.00 84.25 700 A 1 \nATOM 2389 C CA . TYR A 1 385 ? -32.110 -34.595 -18.071 1.00 85.90 700 A 1 \nATOM 2390 C C . TYR A 1 385 ? -30.706 -35.078 -17.744 1.00 85.71 700 A 1 \nATOM 2391 O O . TYR A 1 385 ? -30.220 -36.015 -18.389 1.00 87.24 700 A 1 \nATOM 2392 C CB . TYR A 1 385 ? -32.089 -33.691 -19.310 1.00 83.28 700 A 1 \nATOM 2393 C CG . TYR A 1 385 ? -31.122 -32.522 -19.270 1.00 78.65 700 A 1 \nATOM 2394 C CD1 . TYR A 1 385 ? -29.770 -32.697 -19.544 1.00 76.79 700 A 1 \nATOM 2395 C CD2 . TYR A 1 385 ? -31.571 -31.235 -19.002 1.00 78.36 700 A 1 \nATOM 2396 C CE1 . TYR A 1 385 ? -28.891 -31.633 -19.528 1.00 75.02 700 A 1 \nATOM 2397 C CE2 . TYR A 1 385 ? -30.697 -30.161 -18.986 1.00 73.20 700 A 1 \nATOM 2398 C CZ . TYR A 1 385 ? -29.359 -30.368 -19.248 1.00 77.87 700 A 1 \nATOM 2399 O OH . TYR A 1 385 ? -28.487 -29.305 -19.232 1.00 76.45 700 A 1 \nATOM 2400 N N . SER A 1 386 ? -30.042 -34.458 -16.766 1.00 79.21 701 A 1 \nATOM 2401 C CA . SER A 1 386 ? -28.759 -34.968 -16.307 1.00 76.46 701 A 1 \nATOM 2402 C C . SER A 1 386 ? -28.894 -36.339 -15.665 1.00 80.25 701 A 1 \nATOM 2403 O O . SER A 1 386 ? -27.888 -37.043 -15.518 1.00 79.49 701 A 1 \nATOM 2404 C CB . SER A 1 386 ? -28.127 -33.990 -15.315 1.00 83.60 701 A 1 \nATOM 2405 O OG . SER A 1 386 ? -28.891 -33.905 -14.126 1.00 82.12 701 A 1 \nATOM 2406 N N . ASN A 1 387 ? -30.116 -36.734 -15.296 1.00 84.15 702 A 1 \nATOM 2407 C CA . ASN A 1 387 ? -30.359 -37.985 -14.581 1.00 92.01 702 A 1 \nATOM 2408 C C . ASN A 1 387 ? -29.465 -38.069 -13.350 1.00 94.53 702 A 1 \nATOM 2409 O O . ASN A 1 387 ? -28.880 -39.109 -13.042 1.00 99.22 702 A 1 \nATOM 2410 C CB . ASN A 1 387 ? -30.160 -39.192 -15.499 1.00 96.86 702 A 1 \nATOM 2411 C CG . ASN A 1 387 ? -30.634 -38.928 -16.915 1.00 99.64 702 A 1 \nATOM 2412 O OD1 . ASN A 1 387 ? -29.858 -39.012 -17.867 1.00 99.46 702 A 1 \nATOM 2413 N ND2 . ASN A 1 387 ? -31.913 -38.603 -17.061 1.00 102.75 702 A 1 \nATOM 2414 N N . LEU A 1 388 ? -29.358 -36.945 -12.642 1.00 90.34 703 A 1 \nATOM 2415 C CA . LEU A 1 388 ? -28.380 -36.784 -11.578 1.00 88.88 703 A 1 \nATOM 2416 C C . LEU A 1 388 ? -28.946 -36.230 -10.280 1.00 89.56 703 A 1 \nATOM 2417 O O . LEU A 1 388 ? -28.293 -36.382 -9.241 1.00 92.17 703 A 1 \nATOM 2418 C CB . LEU A 1 388 ? -27.237 -35.871 -12.046 1.00 85.40 703 A 1 \nATOM 2419 C CG . LEU A 1 388 ? -25.820 -36.249 -11.615 1.00 83.31 703 A 1 \nATOM 2420 C CD1 . LEU A 1 388 ? -25.501 -37.683 -12.002 1.00 80.31 703 A 1 \nATOM 2421 C CD2 . LEU A 1 388 ? -24.812 -35.288 -12.226 1.00 82.72 703 A 1 \nATOM 2422 N N . GLN A 1 389 ? -30.122 -35.596 -10.292 1.00 88.60 704 A 1 \nATOM 2423 C CA . GLN A 1 389 ? -30.711 -35.127 -9.044 1.00 92.49 704 A 1 \nATOM 2424 C C . GLN A 1 389 ? -31.080 -36.272 -8.111 1.00 96.50 704 A 1 \nATOM 2425 O O . GLN A 1 389 ? -31.344 -36.028 -6.928 1.00 95.49 704 A 1 \nATOM 2426 C CB . GLN A 1 389 ? -31.939 -34.255 -9.326 1.00 92.51 704 A 1 \nATOM 2427 C CG . GLN A 1 389 ? -33.088 -34.964 -10.019 1.00 95.60 704 A 1 \nATOM 2428 C CD . GLN A 1 389 ? -34.182 -34.003 -10.442 1.00 96.75 704 A 1 \nATOM 2429 O OE1 . GLN A 1 389 ? -33.910 -32.866 -10.829 1.00 93.79 704 A 1 \nATOM 2430 N NE2 . GLN A 1 389 ? -35.430 -34.453 -10.367 1.00 101.09 704 A 1 \nATOM 2431 N N . GLU A 1 390 ? -31.107 -37.508 -8.615 1.00 100.57 705 A 1 \nATOM 2432 C CA . GLU A 1 390 ? -31.213 -38.669 -7.737 1.00 104.04 705 A 1 \nATOM 2433 C C . GLU A 1 390 ? -29.906 -38.915 -6.995 1.00 100.62 705 A 1 \nATOM 2434 O O . GLU A 1 390 ? -29.912 -39.265 -5.810 1.00 98.56 705 A 1 \nATOM 2435 C CB . GLU A 1 390 ? -31.604 -39.903 -8.551 1.00 111.66 705 A 1 \nATOM 2436 C CG . GLU A 1 390 ? -32.833 -39.715 -9.422 1.00 117.21 705 A 1 \nATOM 2437 C CD . GLU A 1 390 ? -32.485 -39.446 -10.876 1.00 120.68 705 A 1 \nATOM 2438 O OE1 . GLU A 1 390 ? -33.416 -39.232 -11.680 1.00 123.49 705 A 1 \nATOM 2439 O OE2 . GLU A 1 390 ? -31.282 -39.444 -11.215 1.00 121.45 705 A 1 \nATOM 2440 N N . VAL A 1 391 ? -28.775 -38.722 -7.675 1.00 98.75 706 A 1 \nATOM 2441 C CA . VAL A 1 391 ? -27.477 -39.056 -7.096 1.00 96.36 706 A 1 \nATOM 2442 C C . VAL A 1 391 ? -26.986 -37.971 -6.133 1.00 94.24 706 A 1 \nATOM 2443 O O . VAL A 1 391 ? -26.358 -38.286 -5.116 1.00 97.43 706 A 1 \nATOM 2444 C CB . VAL A 1 391 ? -26.454 -39.308 -8.219 1.00 95.26 706 A 1 \nATOM 2445 C CG1 . VAL A 1 391 ? -25.077 -39.580 -7.638 1.00 95.47 706 A 1 \nATOM 2446 C CG2 . VAL A 1 391 ? -26.903 -40.463 -9.103 1.00 97.76 706 A 1 \nATOM 2447 N N . VAL A 1 392 ? -27.260 -36.697 -6.429 1.00 89.03 707 A 1 \nATOM 2448 C CA . VAL A 1 392 ? -26.666 -35.610 -5.659 1.00 88.04 707 A 1 \nATOM 2449 C C . VAL A 1 392 ? -27.362 -35.458 -4.312 1.00 88.05 707 A 1 \nATOM 2450 O O . VAL A 1 392 ? -26.727 -35.115 -3.305 1.00 85.54 707 A 1 \nATOM 2451 C CB . VAL A 1 392 ? -26.700 -34.305 -6.482 1.00 85.47 707 A 1 \nATOM 2452 C CG1 . VAL A 1 392 ? -26.752 -33.084 -5.580 1.00 84.40 707 A 1 \nATOM 2453 C CG2 . VAL A 1 392 ? -25.504 -34.238 -7.401 1.00 85.24 707 A 1 \nATOM 2454 N N . GLY A 1 393 ? -28.666 -35.721 -4.269 1.00 91.64 708 A 1 \nATOM 2455 C CA . GLY A 1 393 ? -29.409 -35.760 -3.027 1.00 96.39 708 A 1 \nATOM 2456 C C . GLY A 1 393 ? -30.284 -34.553 -2.766 1.00 97.48 708 A 1 \nATOM 2457 O O . GLY A 1 393 ? -31.200 -34.638 -1.941 1.00 102.59 708 A 1 \nATOM 2458 N N . LEU A 1 394 ? -30.018 -33.432 -3.435 1.00 95.07 709 A 1 \nATOM 2459 C CA . LEU A 1 394 ? -30.876 -32.262 -3.297 1.00 90.22 709 A 1 \nATOM 2460 C C . LEU A 1 394 ? -32.171 -32.450 -4.079 1.00 93.62 709 A 1 \nATOM 2461 O O . LEU A 1 394 ? -33.267 -32.405 -3.508 1.00 93.19 709 A 1 \nATOM 2462 C CB . LEU A 1 394 ? -30.134 -31.007 -3.759 1.00 81.61 709 A 1 \nATOM 2463 C CG . LEU A 1 394 ? -28.665 -30.911 -3.340 1.00 77.84 709 A 1 \nATOM 2464 C CD1 . LEU A 1 394 ? -27.953 -29.808 -4.109 1.00 74.11 709 A 1 \nATOM 2465 C CD2 . LEU A 1 394 ? -28.544 -30.690 -1.839 1.00 77.90 709 A 1 \nATOM 2466 N N . GLY A 1 395 ? -32.061 -32.668 -5.386 1.00 94.30 710 A 1 \nATOM 2467 C CA . GLY A 1 395 ? -33.218 -32.930 -6.223 1.00 93.36 710 A 1 \nATOM 2468 C C . GLY A 1 395 ? -34.192 -31.773 -6.330 1.00 92.57 710 A 1 \nATOM 2469 O O . GLY A 1 395 ? -35.268 -31.909 -6.914 1.00 94.61 710 A 1 \n#\n", + "queryIndices": [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27], + "templateIndices": [30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57] + }, + { + "mmcif": "data_3EGT\n#\n_entry.id 3EGT\n#\nloop_\n_chem_comp.formula\n_chem_comp.formula_weight\n_chem_comp.id\n_chem_comp.mon_nstd_flag\n_chem_comp.name\n_chem_comp.pdbx_synonyms\n_chem_comp.type\n\"C14 H26 N O7 P2 1\" 382.306 722 . 1-(2,2-diphosphonoethyl)-3-(heptyloxy)pyridinium ? non-polymer \n\"C3 H7 N O2\" 89.093 ALA y ALANINE ? \"L-peptide linking\" \n\"C6 H15 N4 O2 1\" 175.209 ARG y ARGININE ? \"L-peptide linking\" \n\"C4 H8 N2 O3\" 132.118 ASN y ASPARAGINE ? \"L-peptide linking\" \n\"C4 H7 N O4\" 133.103 ASP y \"ASPARTIC ACID\" ? \"L-peptide linking\" \n\"C3 H7 N O2 S\" 121.158 CYS y CYSTEINE ? \"L-peptide linking\" \n\"C5 H10 N2 O3\" 146.144 GLN y GLUTAMINE ? \"L-peptide linking\" \n\"C5 H9 N O4\" 147.129 GLU y \"GLUTAMIC ACID\" ? \"L-peptide linking\" \n\"C2 H5 N O2\" 75.067 GLY y GLYCINE ? \"peptide linking\" \n\"C6 H10 N3 O2 1\" 156.162 HIS y HISTIDINE ? \"L-peptide linking\" \n\"H2 O\" 18.015 HOH . WATER ? non-polymer \n\"C6 H13 N O2\" 131.173 ILE y ISOLEUCINE ? \"L-peptide linking\" \n\"C6 H13 N O2\" 131.173 LEU y LEUCINE ? \"L-peptide linking\" \n\"C6 H15 N2 O2 1\" 147.195 LYS y LYSINE ? \"L-peptide linking\" \n\"C5 H11 N O2 S\" 149.211 MET y METHIONINE ? \"L-peptide linking\" \n\"Mg 2\" 24.305 MG . \"MAGNESIUM ION\" ? non-polymer \n\"C9 H11 N O2\" 165.189 PHE y PHENYLALANINE ? \"L-peptide linking\" \n\"C5 H9 N O2\" 115.130 PRO y PROLINE ? \"L-peptide linking\" \n\"C3 H7 N O3\" 105.093 SER y SERINE ? \"L-peptide linking\" \n\"C4 H9 N O3\" 119.119 THR y THREONINE ? \"L-peptide linking\" \n\"C11 H12 N2 O2\" 204.225 TRP y TRYPTOPHAN ? \"L-peptide linking\" \n\"C9 H11 N O3\" 181.189 TYR y TYROSINE ? \"L-peptide linking\" \n\"C5 H11 N O2\" 117.146 VAL y VALINE ? \"L-peptide linking\" \n#\n_entity.id 1\n_entity.pdbx_description \"Farnesyl pyrophosphate synthase\"\n_entity.type polymer\n#\n_entity_poly.entity_id 1\n_entity_poly.pdbx_strand_id A\n_entity_poly.type polypeptide(L)\n#\nloop_\n_entity_poly_seq.entity_id\n_entity_poly_seq.hetero\n_entity_poly_seq.mon_id\n_entity_poly_seq.num\n1 n MET 1 \n1 n GLY 2 \n1 n SER 3 \n1 n SER 4 \n1 n HIS 5 \n1 n HIS 6 \n1 n HIS 7 \n1 n HIS 8 \n1 n HIS 9 \n1 n HIS 10 \n1 n SER 11 \n1 n SER 12 \n1 n GLY 13 \n1 n LEU 14 \n1 n VAL 15 \n1 n PRO 16 \n1 n ARG 17 \n1 n GLY 18 \n1 n SER 19 \n1 n HIS 20 \n1 n MET 21 \n1 n ALA 22 \n1 n SER 23 \n1 n MET 24 \n1 n GLY 25 \n1 n SER 26 \n1 n SER 27 \n1 n HIS 28 \n1 n HIS 29 \n1 n HIS 30 \n1 n HIS 31 \n1 n HIS 32 \n1 n HIS 33 \n1 n SER 34 \n1 n SER 35 \n1 n GLY 36 \n1 n LEU 37 \n1 n VAL 38 \n1 n PRO 39 \n1 n ARG 40 \n1 n GLY 41 \n1 n SER 42 \n1 n HIS 43 \n1 n MET 44 \n1 n ALA 45 \n1 n SER 46 \n1 n MET 47 \n1 n PRO 48 \n1 n MET 49 \n1 n GLN 50 \n1 n MET 51 \n1 n PHE 52 \n1 n MET 53 \n1 n GLN 54 \n1 n VAL 55 \n1 n TYR 56 \n1 n ASP 57 \n1 n GLU 58 \n1 n ILE 59 \n1 n GLN 60 \n1 n MET 61 \n1 n PHE 62 \n1 n LEU 63 \n1 n LEU 64 \n1 n GLU 65 \n1 n GLU 66 \n1 n LEU 67 \n1 n GLU 68 \n1 n LEU 69 \n1 n LYS 70 \n1 n PHE 71 \n1 n ASP 72 \n1 n MET 73 \n1 n ASP 74 \n1 n PRO 75 \n1 n ASN 76 \n1 n ARG 77 \n1 n VAL 78 \n1 n ARG 79 \n1 n TYR 80 \n1 n LEU 81 \n1 n ARG 82 \n1 n LYS 83 \n1 n MET 84 \n1 n MET 85 \n1 n ASP 86 \n1 n THR 87 \n1 n THR 88 \n1 n CYS 89 \n1 n LEU 90 \n1 n GLY 91 \n1 n GLY 92 \n1 n LYS 93 \n1 n TYR 94 \n1 n ASN 95 \n1 n ARG 96 \n1 n GLY 97 \n1 n LEU 98 \n1 n THR 99 \n1 n VAL 100 \n1 n ILE 101 \n1 n ASP 102 \n1 n VAL 103 \n1 n ALA 104 \n1 n GLU 105 \n1 n SER 106 \n1 n LEU 107 \n1 n LEU 108 \n1 n SER 109 \n1 n LEU 110 \n1 n SER 111 \n1 n PRO 112 \n1 n ASN 113 \n1 n ASN 114 \n1 n ASN 115 \n1 n GLY 116 \n1 n GLU 117 \n1 n GLU 118 \n1 n ASP 119 \n1 n ASP 120 \n1 n GLY 121 \n1 n ALA 122 \n1 n ARG 123 \n1 n ARG 124 \n1 n LYS 125 \n1 n ARG 126 \n1 n VAL 127 \n1 n LEU 128 \n1 n HIS 129 \n1 n ASP 130 \n1 n ALA 131 \n1 n CYS 132 \n1 n VAL 133 \n1 n CYS 134 \n1 n GLY 135 \n1 n TRP 136 \n1 n MET 137 \n1 n ILE 138 \n1 n GLU 139 \n1 n PHE 140 \n1 n LEU 141 \n1 n GLN 142 \n1 n ALA 143 \n1 n HIS 144 \n1 n TYR 145 \n1 n LEU 146 \n1 n VAL 147 \n1 n GLU 148 \n1 n ASP 149 \n1 n ASP 150 \n1 n ILE 151 \n1 n MET 152 \n1 n ASP 153 \n1 n ASN 154 \n1 n SER 155 \n1 n VAL 156 \n1 n THR 157 \n1 n ARG 158 \n1 n ARG 159 \n1 n GLY 160 \n1 n LYS 161 \n1 n PRO 162 \n1 n CYS 163 \n1 n TRP 164 \n1 n TYR 165 \n1 n ARG 166 \n1 n HIS 167 \n1 n PRO 168 \n1 n ASP 169 \n1 n VAL 170 \n1 n THR 171 \n1 n VAL 172 \n1 n GLN 173 \n1 n CYS 174 \n1 n ALA 175 \n1 n ILE 176 \n1 n ASN 177 \n1 n ASP 178 \n1 n GLY 179 \n1 n LEU 180 \n1 n LEU 181 \n1 n LEU 182 \n1 n LYS 183 \n1 n SER 184 \n1 n TRP 185 \n1 n THR 186 \n1 n HIS 187 \n1 n MET 188 \n1 n MET 189 \n1 n ALA 190 \n1 n MET 191 \n1 n HIS 192 \n1 n PHE 193 \n1 n PHE 194 \n1 n ALA 195 \n1 n ASP 196 \n1 n ARG 197 \n1 n PRO 198 \n1 n PHE 199 \n1 n LEU 200 \n1 n GLN 201 \n1 n ASP 202 \n1 n LEU 203 \n1 n LEU 204 \n1 n CYS 205 \n1 n ARG 206 \n1 n PHE 207 \n1 n ASN 208 \n1 n ARG 209 \n1 n VAL 210 \n1 n ASP 211 \n1 n TYR 212 \n1 n THR 213 \n1 n THR 214 \n1 n ALA 215 \n1 n VAL 216 \n1 n GLY 217 \n1 n GLN 218 \n1 n LEU 219 \n1 n TYR 220 \n1 n ASP 221 \n1 n VAL 222 \n1 n THR 223 \n1 n SER 224 \n1 n MET 225 \n1 n PHE 226 \n1 n ASP 227 \n1 n SER 228 \n1 n ASN 229 \n1 n LYS 230 \n1 n LEU 231 \n1 n ASP 232 \n1 n PRO 233 \n1 n ASP 234 \n1 n VAL 235 \n1 n SER 236 \n1 n GLN 237 \n1 n PRO 238 \n1 n THR 239 \n1 n THR 240 \n1 n THR 241 \n1 n ASP 242 \n1 n PHE 243 \n1 n ALA 244 \n1 n GLU 245 \n1 n PHE 246 \n1 n THR 247 \n1 n LEU 248 \n1 n SER 249 \n1 n ASN 250 \n1 n TYR 251 \n1 n LYS 252 \n1 n ARG 253 \n1 n ILE 254 \n1 n VAL 255 \n1 n LYS 256 \n1 n TYR 257 \n1 n LYS 258 \n1 n THR 259 \n1 n ALA 260 \n1 n TYR 261 \n1 n TYR 262 \n1 n THR 263 \n1 n TYR 264 \n1 n LEU 265 \n1 n LEU 266 \n1 n PRO 267 \n1 n LEU 268 \n1 n VAL 269 \n1 n MET 270 \n1 n GLY 271 \n1 n LEU 272 \n1 n ILE 273 \n1 n VAL 274 \n1 n SER 275 \n1 n GLU 276 \n1 n ALA 277 \n1 n LEU 278 \n1 n PRO 279 \n1 n THR 280 \n1 n VAL 281 \n1 n ASP 282 \n1 n MET 283 \n1 n GLY 284 \n1 n VAL 285 \n1 n THR 286 \n1 n GLU 287 \n1 n GLU 288 \n1 n LEU 289 \n1 n ALA 290 \n1 n MET 291 \n1 n LEU 292 \n1 n MET 293 \n1 n GLY 294 \n1 n GLU 295 \n1 n TYR 296 \n1 n PHE 297 \n1 n GLN 298 \n1 n VAL 299 \n1 n GLN 300 \n1 n ASP 301 \n1 n ASP 302 \n1 n VAL 303 \n1 n MET 304 \n1 n ASP 305 \n1 n CYS 306 \n1 n PHE 307 \n1 n THR 308 \n1 n PRO 309 \n1 n PRO 310 \n1 n GLU 311 \n1 n ARG 312 \n1 n LEU 313 \n1 n GLY 314 \n1 n LYS 315 \n1 n VAL 316 \n1 n GLY 317 \n1 n THR 318 \n1 n ASP 319 \n1 n ILE 320 \n1 n GLN 321 \n1 n ASP 322 \n1 n ALA 323 \n1 n LYS 324 \n1 n CYS 325 \n1 n SER 326 \n1 n TRP 327 \n1 n LEU 328 \n1 n ALA 329 \n1 n VAL 330 \n1 n THR 331 \n1 n PHE 332 \n1 n LEU 333 \n1 n ALA 334 \n1 n LYS 335 \n1 n ALA 336 \n1 n SER 337 \n1 n SER 338 \n1 n ALA 339 \n1 n GLN 340 \n1 n VAL 341 \n1 n ALA 342 \n1 n GLU 343 \n1 n PHE 344 \n1 n LYS 345 \n1 n ALA 346 \n1 n ASN 347 \n1 n TYR 348 \n1 n GLY 349 \n1 n SER 350 \n1 n GLY 351 \n1 n ASP 352 \n1 n SER 353 \n1 n GLU 354 \n1 n LYS 355 \n1 n VAL 356 \n1 n ALA 357 \n1 n THR 358 \n1 n VAL 359 \n1 n ARG 360 \n1 n ARG 361 \n1 n LEU 362 \n1 n TYR 363 \n1 n GLU 364 \n1 n GLU 365 \n1 n ALA 366 \n1 n ASP 367 \n1 n LEU 368 \n1 n GLN 369 \n1 n GLY 370 \n1 n ASP 371 \n1 n TYR 372 \n1 n VAL 373 \n1 n ALA 374 \n1 n TYR 375 \n1 n GLU 376 \n1 n ALA 377 \n1 n ALA 378 \n1 n VAL 379 \n1 n ALA 380 \n1 n GLU 381 \n1 n GLN 382 \n1 n VAL 383 \n1 n LYS 384 \n1 n GLU 385 \n1 n LEU 386 \n1 n ILE 387 \n1 n GLU 388 \n1 n LYS 389 \n1 n LEU 390 \n1 n ARG 391 \n1 n LEU 392 \n1 n CYS 393 \n1 n SER 394 \n1 n PRO 395 \n1 n GLY 396 \n1 n PHE 397 \n1 n ALA 398 \n1 n ALA 399 \n1 n SER 400 \n1 n VAL 401 \n1 n GLU 402 \n1 n THR 403 \n1 n LEU 404 \n1 n TRP 405 \n1 n GLY 406 \n1 n LYS 407 \n1 n THR 408 \n1 n TYR 409 \n1 n LYS 410 \n1 n ARG 411 \n1 n GLN 412 \n1 n LYS 413 \n#\n_exptl.method \"X-RAY DIFFRACTION\"\n#\n_pdbx_audit_revision_history.revision_date 2009-05-05\n#\n_pdbx_database_status.recvd_initial_deposition_date 2009-05-05\n#\nloop_\n_pdbx_poly_seq_scheme.asym_id\n_pdbx_poly_seq_scheme.auth_seq_num\n_pdbx_poly_seq_scheme.entity_id\n_pdbx_poly_seq_scheme.hetero\n_pdbx_poly_seq_scheme.mon_id\n_pdbx_poly_seq_scheme.pdb_ins_code\n_pdbx_poly_seq_scheme.pdb_seq_num\n_pdbx_poly_seq_scheme.pdb_strand_id\n_pdbx_poly_seq_scheme.seq_id\nA ? 1 n MET . -45 A 1 \nA ? 1 n GLY . -44 A 2 \nA ? 1 n SER . -43 A 3 \nA ? 1 n SER . -42 A 4 \nA ? 1 n HIS . -41 A 5 \nA ? 1 n HIS . -40 A 6 \nA ? 1 n HIS . -39 A 7 \nA ? 1 n HIS . -38 A 8 \nA ? 1 n HIS . -37 A 9 \nA ? 1 n HIS . -36 A 10 \nA ? 1 n SER . -35 A 11 \nA ? 1 n SER . -34 A 12 \nA ? 1 n GLY . -33 A 13 \nA ? 1 n LEU . -32 A 14 \nA ? 1 n VAL . -31 A 15 \nA ? 1 n PRO . -30 A 16 \nA ? 1 n ARG . -29 A 17 \nA ? 1 n GLY . -28 A 18 \nA ? 1 n SER . -27 A 19 \nA ? 1 n HIS . -26 A 20 \nA ? 1 n MET . -25 A 21 \nA ? 1 n ALA . -24 A 22 \nA ? 1 n SER . -23 A 23 \nA ? 1 n MET . -22 A 24 \nA ? 1 n GLY . -21 A 25 \nA ? 1 n SER . -20 A 26 \nA ? 1 n SER . -19 A 27 \nA ? 1 n HIS . -18 A 28 \nA ? 1 n HIS . -17 A 29 \nA ? 1 n HIS . -16 A 30 \nA ? 1 n HIS . -15 A 31 \nA ? 1 n HIS . -14 A 32 \nA ? 1 n HIS . -13 A 33 \nA ? 1 n SER . -12 A 34 \nA ? 1 n SER . -11 A 35 \nA ? 1 n GLY . -10 A 36 \nA ? 1 n LEU . -9 A 37 \nA ? 1 n VAL . -8 A 38 \nA ? 1 n PRO . -7 A 39 \nA ? 1 n ARG . -6 A 40 \nA ? 1 n GLY . -5 A 41 \nA ? 1 n SER . -4 A 42 \nA ? 1 n HIS . -3 A 43 \nA ? 1 n MET . -2 A 44 \nA ? 1 n ALA . -1 A 45 \nA ? 1 n SER . 0 A 46 \nA 1 1 n MET . 1 A 47 \nA 2 1 n PRO . 2 A 48 \nA 3 1 n MET . 3 A 49 \nA 4 1 n GLN . 4 A 50 \nA 5 1 n MET . 5 A 51 \nA 6 1 n PHE . 6 A 52 \nA 7 1 n MET . 7 A 53 \nA 8 1 n GLN . 8 A 54 \nA 9 1 n VAL . 9 A 55 \nA 10 1 n TYR . 10 A 56 \nA 11 1 n ASP . 11 A 57 \nA 12 1 n GLU . 12 A 58 \nA 13 1 n ILE . 13 A 59 \nA 14 1 n GLN . 14 A 60 \nA 15 1 n MET . 15 A 61 \nA 16 1 n PHE . 16 A 62 \nA 17 1 n LEU . 17 A 63 \nA 18 1 n LEU . 18 A 64 \nA 19 1 n GLU . 19 A 65 \nA 20 1 n GLU . 20 A 66 \nA 21 1 n LEU . 21 A 67 \nA 22 1 n GLU . 22 A 68 \nA 23 1 n LEU . 23 A 69 \nA 24 1 n LYS . 24 A 70 \nA 25 1 n PHE . 25 A 71 \nA 26 1 n ASP . 26 A 72 \nA 27 1 n MET . 27 A 73 \nA 28 1 n ASP . 28 A 74 \nA 29 1 n PRO . 29 A 75 \nA 30 1 n ASN . 30 A 76 \nA 31 1 n ARG . 31 A 77 \nA 32 1 n VAL . 32 A 78 \nA 33 1 n ARG . 33 A 79 \nA 34 1 n TYR . 34 A 80 \nA 35 1 n LEU . 35 A 81 \nA 36 1 n ARG . 36 A 82 \nA 37 1 n LYS . 37 A 83 \nA 38 1 n MET . 38 A 84 \nA 39 1 n MET . 39 A 85 \nA 40 1 n ASP . 40 A 86 \nA 41 1 n THR . 41 A 87 \nA 42 1 n THR . 42 A 88 \nA 43 1 n CYS . 43 A 89 \nA 44 1 n LEU . 44 A 90 \nA 45 1 n GLY . 45 A 91 \nA 46 1 n GLY . 46 A 92 \nA 47 1 n LYS . 47 A 93 \nA 48 1 n TYR . 48 A 94 \nA 49 1 n ASN . 49 A 95 \nA 50 1 n ARG . 50 A 96 \nA 51 1 n GLY . 51 A 97 \nA 52 1 n LEU . 52 A 98 \nA 53 1 n THR . 53 A 99 \nA 54 1 n VAL . 54 A 100 \nA 55 1 n ILE . 55 A 101 \nA 56 1 n ASP . 56 A 102 \nA 57 1 n VAL . 57 A 103 \nA 58 1 n ALA . 58 A 104 \nA 59 1 n GLU . 59 A 105 \nA 60 1 n SER . 60 A 106 \nA 61 1 n LEU . 61 A 107 \nA 62 1 n LEU . 62 A 108 \nA 63 1 n SER . 63 A 109 \nA 64 1 n LEU . 64 A 110 \nA ? 1 n SER . 65 A 111 \nA ? 1 n PRO . 66 A 112 \nA ? 1 n ASN . 67 A 113 \nA ? 1 n ASN . 68 A 114 \nA ? 1 n ASN . 69 A 115 \nA ? 1 n GLY . 70 A 116 \nA ? 1 n GLU . 71 A 117 \nA ? 1 n GLU . 72 A 118 \nA ? 1 n ASP . 73 A 119 \nA 74 1 n ASP . 74 A 120 \nA 75 1 n GLY . 75 A 121 \nA 76 1 n ALA . 76 A 122 \nA 77 1 n ARG . 77 A 123 \nA 78 1 n ARG . 78 A 124 \nA 79 1 n LYS . 79 A 125 \nA 80 1 n ARG . 80 A 126 \nA 81 1 n VAL . 81 A 127 \nA 82 1 n LEU . 82 A 128 \nA 83 1 n HIS . 83 A 129 \nA 84 1 n ASP . 84 A 130 \nA 85 1 n ALA . 85 A 131 \nA 86 1 n CYS . 86 A 132 \nA 87 1 n VAL . 87 A 133 \nA 88 1 n CYS . 88 A 134 \nA 89 1 n GLY . 89 A 135 \nA 90 1 n TRP . 90 A 136 \nA 91 1 n MET . 91 A 137 \nA 92 1 n ILE . 92 A 138 \nA 93 1 n GLU . 93 A 139 \nA 94 1 n PHE . 94 A 140 \nA 95 1 n LEU . 95 A 141 \nA 96 1 n GLN . 96 A 142 \nA 97 1 n ALA . 97 A 143 \nA 98 1 n HIS . 98 A 144 \nA 99 1 n TYR . 99 A 145 \nA 100 1 n LEU . 100 A 146 \nA 101 1 n VAL . 101 A 147 \nA 102 1 n GLU . 102 A 148 \nA 103 1 n ASP . 103 A 149 \nA 104 1 n ASP . 104 A 150 \nA 105 1 n ILE . 105 A 151 \nA 106 1 n MET . 106 A 152 \nA 107 1 n ASP . 107 A 153 \nA 108 1 n ASN . 108 A 154 \nA 109 1 n SER . 109 A 155 \nA 110 1 n VAL . 110 A 156 \nA 111 1 n THR . 111 A 157 \nA 112 1 n ARG . 112 A 158 \nA 113 1 n ARG . 113 A 159 \nA 114 1 n GLY . 114 A 160 \nA 115 1 n LYS . 115 A 161 \nA 116 1 n PRO . 116 A 162 \nA 117 1 n CYS . 117 A 163 \nA 118 1 n TRP . 118 A 164 \nA 119 1 n TYR . 119 A 165 \nA 120 1 n ARG . 120 A 166 \nA 121 1 n HIS . 121 A 167 \nA 122 1 n PRO . 122 A 168 \nA 123 1 n ASP . 123 A 169 \nA 124 1 n VAL . 124 A 170 \nA 125 1 n THR . 125 A 171 \nA 126 1 n VAL . 126 A 172 \nA 127 1 n GLN . 127 A 173 \nA 128 1 n CYS . 128 A 174 \nA 129 1 n ALA . 129 A 175 \nA 130 1 n ILE . 130 A 176 \nA 131 1 n ASN . 131 A 177 \nA 132 1 n ASP . 132 A 178 \nA 133 1 n GLY . 133 A 179 \nA 134 1 n LEU . 134 A 180 \nA 135 1 n LEU . 135 A 181 \nA 136 1 n LEU . 136 A 182 \nA 137 1 n LYS . 137 A 183 \nA 138 1 n SER . 138 A 184 \nA 139 1 n TRP . 139 A 185 \nA 140 1 n THR . 140 A 186 \nA 141 1 n HIS . 141 A 187 \nA 142 1 n MET . 142 A 188 \nA 143 1 n MET . 143 A 189 \nA 144 1 n ALA . 144 A 190 \nA 145 1 n MET . 145 A 191 \nA 146 1 n HIS . 146 A 192 \nA 147 1 n PHE . 147 A 193 \nA 148 1 n PHE . 148 A 194 \nA 149 1 n ALA . 149 A 195 \nA 150 1 n ASP . 150 A 196 \nA 151 1 n ARG . 151 A 197 \nA 152 1 n PRO . 152 A 198 \nA 153 1 n PHE . 153 A 199 \nA 154 1 n LEU . 154 A 200 \nA 155 1 n GLN . 155 A 201 \nA 156 1 n ASP . 156 A 202 \nA 157 1 n LEU . 157 A 203 \nA 158 1 n LEU . 158 A 204 \nA 159 1 n CYS . 159 A 205 \nA 160 1 n ARG . 160 A 206 \nA 161 1 n PHE . 161 A 207 \nA 162 1 n ASN . 162 A 208 \nA 163 1 n ARG . 163 A 209 \nA 164 1 n VAL . 164 A 210 \nA 165 1 n ASP . 165 A 211 \nA 166 1 n TYR . 166 A 212 \nA 167 1 n THR . 167 A 213 \nA 168 1 n THR . 168 A 214 \nA 169 1 n ALA . 169 A 215 \nA 170 1 n VAL . 170 A 216 \nA 171 1 n GLY . 171 A 217 \nA 172 1 n GLN . 172 A 218 \nA 173 1 n LEU . 173 A 219 \nA 174 1 n TYR . 174 A 220 \nA 175 1 n ASP . 175 A 221 \nA 176 1 n VAL . 176 A 222 \nA 177 1 n THR . 177 A 223 \nA 178 1 n SER . 178 A 224 \nA 179 1 n MET . 179 A 225 \nA 180 1 n PHE . 180 A 226 \nA 181 1 n ASP . 181 A 227 \nA 182 1 n SER . 182 A 228 \nA 183 1 n ASN . 183 A 229 \nA 184 1 n LYS . 184 A 230 \nA 185 1 n LEU . 185 A 231 \nA 186 1 n ASP . 186 A 232 \nA 187 1 n PRO . 187 A 233 \nA 188 1 n ASP . 188 A 234 \nA 189 1 n VAL . 189 A 235 \nA 190 1 n SER . 190 A 236 \nA 191 1 n GLN . 191 A 237 \nA 192 1 n PRO . 192 A 238 \nA 193 1 n THR . 193 A 239 \nA 194 1 n THR . 194 A 240 \nA 195 1 n THR . 195 A 241 \nA 196 1 n ASP . 196 A 242 \nA 197 1 n PHE . 197 A 243 \nA 198 1 n ALA . 198 A 244 \nA 199 1 n GLU . 199 A 245 \nA 200 1 n PHE . 200 A 246 \nA 201 1 n THR . 201 A 247 \nA 202 1 n LEU . 202 A 248 \nA 203 1 n SER . 203 A 249 \nA 204 1 n ASN . 204 A 250 \nA 205 1 n TYR . 205 A 251 \nA 206 1 n LYS . 206 A 252 \nA 207 1 n ARG . 207 A 253 \nA 208 1 n ILE . 208 A 254 \nA 209 1 n VAL . 209 A 255 \nA 210 1 n LYS . 210 A 256 \nA 211 1 n TYR . 211 A 257 \nA 212 1 n LYS . 212 A 258 \nA 213 1 n THR . 213 A 259 \nA 214 1 n ALA . 214 A 260 \nA 215 1 n TYR . 215 A 261 \nA 216 1 n TYR . 216 A 262 \nA 217 1 n THR . 217 A 263 \nA 218 1 n TYR . 218 A 264 \nA 219 1 n LEU . 219 A 265 \nA 220 1 n LEU . 220 A 266 \nA 221 1 n PRO . 221 A 267 \nA 222 1 n LEU . 222 A 268 \nA 223 1 n VAL . 223 A 269 \nA 224 1 n MET . 224 A 270 \nA 225 1 n GLY . 225 A 271 \nA 226 1 n LEU . 226 A 272 \nA 227 1 n ILE . 227 A 273 \nA 228 1 n VAL . 228 A 274 \nA 229 1 n SER . 229 A 275 \nA 230 1 n GLU . 230 A 276 \nA 231 1 n ALA . 231 A 277 \nA 232 1 n LEU . 232 A 278 \nA 233 1 n PRO . 233 A 279 \nA 234 1 n THR . 234 A 280 \nA 235 1 n VAL . 235 A 281 \nA 236 1 n ASP . 236 A 282 \nA 237 1 n MET . 237 A 283 \nA 238 1 n GLY . 238 A 284 \nA 239 1 n VAL . 239 A 285 \nA 240 1 n THR . 240 A 286 \nA 241 1 n GLU . 241 A 287 \nA 242 1 n GLU . 242 A 288 \nA 243 1 n LEU . 243 A 289 \nA 244 1 n ALA . 244 A 290 \nA 245 1 n MET . 245 A 291 \nA 246 1 n LEU . 246 A 292 \nA 247 1 n MET . 247 A 293 \nA 248 1 n GLY . 248 A 294 \nA 249 1 n GLU . 249 A 295 \nA 250 1 n TYR . 250 A 296 \nA 251 1 n PHE . 251 A 297 \nA 252 1 n GLN . 252 A 298 \nA 253 1 n VAL . 253 A 299 \nA 254 1 n GLN . 254 A 300 \nA 255 1 n ASP . 255 A 301 \nA 256 1 n ASP . 256 A 302 \nA 257 1 n VAL . 257 A 303 \nA 258 1 n MET . 258 A 304 \nA 259 1 n ASP . 259 A 305 \nA 260 1 n CYS . 260 A 306 \nA 261 1 n PHE . 261 A 307 \nA 262 1 n THR . 262 A 308 \nA 263 1 n PRO . 263 A 309 \nA 264 1 n PRO . 264 A 310 \nA 265 1 n GLU . 265 A 311 \nA 266 1 n ARG . 266 A 312 \nA 267 1 n LEU . 267 A 313 \nA 268 1 n GLY . 268 A 314 \nA 269 1 n LYS . 269 A 315 \nA 270 1 n VAL . 270 A 316 \nA 271 1 n GLY . 271 A 317 \nA 272 1 n THR . 272 A 318 \nA 273 1 n ASP . 273 A 319 \nA 274 1 n ILE . 274 A 320 \nA 275 1 n GLN . 275 A 321 \nA 276 1 n ASP . 276 A 322 \nA 277 1 n ALA . 277 A 323 \nA 278 1 n LYS . 278 A 324 \nA 279 1 n CYS . 279 A 325 \nA 280 1 n SER . 280 A 326 \nA 281 1 n TRP . 281 A 327 \nA 282 1 n LEU . 282 A 328 \nA 283 1 n ALA . 283 A 329 \nA 284 1 n VAL . 284 A 330 \nA 285 1 n THR . 285 A 331 \nA 286 1 n PHE . 286 A 332 \nA 287 1 n LEU . 287 A 333 \nA 288 1 n ALA . 288 A 334 \nA 289 1 n LYS . 289 A 335 \nA 290 1 n ALA . 290 A 336 \nA 291 1 n SER . 291 A 337 \nA 292 1 n SER . 292 A 338 \nA 293 1 n ALA . 293 A 339 \nA 294 1 n GLN . 294 A 340 \nA 295 1 n VAL . 295 A 341 \nA 296 1 n ALA . 296 A 342 \nA 297 1 n GLU . 297 A 343 \nA 298 1 n PHE . 298 A 344 \nA 299 1 n LYS . 299 A 345 \nA 300 1 n ALA . 300 A 346 \nA 301 1 n ASN . 301 A 347 \nA 302 1 n TYR . 302 A 348 \nA 303 1 n GLY . 303 A 349 \nA 304 1 n SER . 304 A 350 \nA 305 1 n GLY . 305 A 351 \nA 306 1 n ASP . 306 A 352 \nA 307 1 n SER . 307 A 353 \nA 308 1 n GLU . 308 A 354 \nA 309 1 n LYS . 309 A 355 \nA 310 1 n VAL . 310 A 356 \nA 311 1 n ALA . 311 A 357 \nA 312 1 n THR . 312 A 358 \nA 313 1 n VAL . 313 A 359 \nA 314 1 n ARG . 314 A 360 \nA 315 1 n ARG . 315 A 361 \nA 316 1 n LEU . 316 A 362 \nA 317 1 n TYR . 317 A 363 \nA 318 1 n GLU . 318 A 364 \nA 319 1 n GLU . 319 A 365 \nA 320 1 n ALA . 320 A 366 \nA 321 1 n ASP . 321 A 367 \nA 322 1 n LEU . 322 A 368 \nA 323 1 n GLN . 323 A 369 \nA 324 1 n GLY . 324 A 370 \nA 325 1 n ASP . 325 A 371 \nA 326 1 n TYR . 326 A 372 \nA 327 1 n VAL . 327 A 373 \nA 328 1 n ALA . 328 A 374 \nA 329 1 n TYR . 329 A 375 \nA 330 1 n GLU . 330 A 376 \nA 331 1 n ALA . 331 A 377 \nA 332 1 n ALA . 332 A 378 \nA 333 1 n VAL . 333 A 379 \nA 334 1 n ALA . 334 A 380 \nA 335 1 n GLU . 335 A 381 \nA 336 1 n GLN . 336 A 382 \nA 337 1 n VAL . 337 A 383 \nA 338 1 n LYS . 338 A 384 \nA 339 1 n GLU . 339 A 385 \nA 340 1 n LEU . 340 A 386 \nA 341 1 n ILE . 341 A 387 \nA 342 1 n GLU . 342 A 388 \nA 343 1 n LYS . 343 A 389 \nA 344 1 n LEU . 344 A 390 \nA 345 1 n ARG . 345 A 391 \nA 346 1 n LEU . 346 A 392 \nA 347 1 n CYS . 347 A 393 \nA 348 1 n SER . 348 A 394 \nA 349 1 n PRO . 349 A 395 \nA 350 1 n GLY . 350 A 396 \nA 351 1 n PHE . 351 A 397 \nA 352 1 n ALA . 352 A 398 \nA 353 1 n ALA . 353 A 399 \nA 354 1 n SER . 354 A 400 \nA 355 1 n VAL . 355 A 401 \nA 356 1 n GLU . 356 A 402 \nA 357 1 n THR . 357 A 403 \nA 358 1 n LEU . 358 A 404 \nA 359 1 n TRP . 359 A 405 \nA 360 1 n GLY . 360 A 406 \nA 361 1 n LYS . 361 A 407 \nA 362 1 n THR . 362 A 408 \nA 363 1 n TYR . 363 A 409 \nA 364 1 n LYS . 364 A 410 \nA 365 1 n ARG . 365 A 411 \nA 366 1 n GLN . 366 A 412 \nA 367 1 n LYS . 367 A 413 \n#\n_pdbx_struct_assembly.details author_and_software_defined_assembly\n_pdbx_struct_assembly.id 1\n_pdbx_struct_assembly.method_details PISA\n_pdbx_struct_assembly.oligomeric_count 2\n_pdbx_struct_assembly.oligomeric_details dimeric\n#\n_pdbx_struct_assembly_gen.assembly_id 1\n_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G,H,I,J,K,L\n_pdbx_struct_assembly_gen.oper_expression 1\n#\n_pdbx_struct_oper_list.id 1\n_pdbx_struct_oper_list.matrix[1][1] 1.0000000000\n_pdbx_struct_oper_list.matrix[1][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[1][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][2] 1.0000000000\n_pdbx_struct_oper_list.matrix[2][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][3] 1.0000000000\n_pdbx_struct_oper_list.name 1_555\n_pdbx_struct_oper_list.symmetry_operation x,y,z\n_pdbx_struct_oper_list.type \"identity operation\"\n_pdbx_struct_oper_list.vector[1] 0.0000000000\n_pdbx_struct_oper_list.vector[2] 0.0000000000\n_pdbx_struct_oper_list.vector[3] 0.0000000000\n#\n_refine.ls_d_res_high 2.00\n#\n_software.classification other\n_software.name \"DeepMind Structure Class\"\n_software.pdbx_ordinal 1\n_software.version 2.0.0\n#\n_struct_asym.entity_id 1\n_struct_asym.id A\n#\nloop_\n_atom_site.group_PDB\n_atom_site.id\n_atom_site.type_symbol\n_atom_site.label_atom_id\n_atom_site.label_alt_id\n_atom_site.label_comp_id\n_atom_site.label_asym_id\n_atom_site.label_entity_id\n_atom_site.label_seq_id\n_atom_site.pdbx_PDB_ins_code\n_atom_site.Cartn_x\n_atom_site.Cartn_y\n_atom_site.Cartn_z\n_atom_site.occupancy\n_atom_site.B_iso_or_equiv\n_atom_site.auth_seq_id\n_atom_site.auth_asym_id\n_atom_site.pdbx_PDB_model_num\nATOM 1 N N . MET A 1 47 ? 51.273 -12.047 -5.087 1.00 77.95 1 A 1 \nATOM 2 C CA . MET A 1 47 ? 52.223 -12.969 -4.388 1.00 77.59 1 A 1 \nATOM 3 C C . MET A 1 47 ? 51.591 -13.691 -3.180 1.00 77.06 1 A 1 \nATOM 4 O O . MET A 1 47 ? 51.597 -14.929 -3.147 1.00 77.15 1 A 1 \nATOM 5 C CB . MET A 1 47 ? 53.524 -12.240 -3.996 1.00 77.89 1 A 1 \nATOM 6 C CG . MET A 1 47 ? 54.526 -13.077 -3.172 1.00 78.70 1 A 1 \nATOM 7 S SD . MET A 1 47 ? 55.309 -14.448 -4.074 1.00 82.50 1 A 1 \nATOM 8 C CE . MET A 1 47 ? 56.538 -13.563 -5.045 1.00 82.38 1 A 1 \nATOM 9 N N . PRO A 1 48 ? 51.042 -12.932 -2.195 1.00 76.36 2 A 1 \nATOM 10 C CA . PRO A 1 48 ? 50.536 -13.577 -0.969 1.00 75.65 2 A 1 \nATOM 11 C C . PRO A 1 48 ? 49.364 -14.519 -1.237 1.00 74.77 2 A 1 \nATOM 12 O O . PRO A 1 48 ? 49.270 -15.570 -0.605 1.00 74.80 2 A 1 \nATOM 13 C CB . PRO A 1 48 ? 50.079 -12.394 -0.103 1.00 75.73 2 A 1 \nATOM 14 C CG . PRO A 1 48 ? 50.761 -11.195 -0.681 1.00 76.13 2 A 1 \nATOM 15 C CD . PRO A 1 48 ? 50.841 -11.471 -2.148 1.00 76.37 2 A 1 \nATOM 16 N N . MET A 1 49 ? 48.488 -14.143 -2.169 1.00 73.64 3 A 1 \nATOM 17 C CA . MET A 1 49 ? 47.386 -15.001 -2.594 1.00 72.38 3 A 1 \nATOM 18 C C . MET A 1 49 ? 47.894 -16.245 -3.333 1.00 71.46 3 A 1 \nATOM 19 O O . MET A 1 49 ? 47.307 -17.324 -3.221 1.00 71.37 3 A 1 \nATOM 20 C CB . MET A 1 49 ? 46.403 -14.222 -3.470 1.00 72.53 3 A 1 \nATOM 21 C CG . MET A 1 49 ? 45.110 -14.969 -3.776 1.00 72.83 3 A 1 \nATOM 22 S SD . MET A 1 49 ? 44.008 -15.140 -2.350 1.00 72.67 3 A 1 \nATOM 23 C CE . MET A 1 49 ? 43.113 -13.588 -2.444 1.00 72.67 3 A 1 \nATOM 24 N N . GLN A 1 50 ? 48.988 -16.092 -4.076 1.00 70.08 4 A 1 \nATOM 25 C CA . GLN A 1 50 ? 49.550 -17.193 -4.855 1.00 68.66 4 A 1 \nATOM 26 C C . GLN A 1 50 ? 50.189 -18.255 -3.955 1.00 67.00 4 A 1 \nATOM 27 O O . GLN A 1 50 ? 50.019 -19.453 -4.193 1.00 66.58 4 A 1 \nATOM 28 C CB . GLN A 1 50 ? 50.559 -16.672 -5.890 1.00 68.84 4 A 1 \nATOM 29 C CG . GLN A 1 50 ? 50.752 -17.588 -7.109 1.00 69.38 4 A 1 \nATOM 30 C CD . GLN A 1 50 ? 51.730 -17.030 -8.155 1.00 69.86 4 A 1 \nATOM 31 O OE1 . GLN A 1 50 ? 52.274 -17.785 -8.978 1.00 70.84 4 A 1 \nATOM 32 N NE2 . GLN A 1 50 ? 51.956 -15.711 -8.128 1.00 70.50 4 A 1 \nATOM 33 N N . MET A 1 51 ? 50.921 -17.816 -2.928 1.00 65.12 5 A 1 \nATOM 34 C CA . MET A 1 51 ? 51.556 -18.750 -1.996 1.00 63.27 5 A 1 \nATOM 35 C C . MET A 1 51 ? 50.518 -19.381 -1.057 1.00 60.98 5 A 1 \nATOM 36 O O . MET A 1 51 ? 50.664 -20.532 -0.651 1.00 60.81 5 A 1 \nATOM 37 C CB . MET A 1 51 ? 52.733 -18.099 -1.247 1.00 63.43 5 A 1 \nATOM 38 C CG . MET A 1 51 ? 52.454 -17.586 0.160 1.00 64.25 5 A 1 \nATOM 39 S SD . MET A 1 51 ? 53.914 -16.899 0.998 1.00 65.66 5 A 1 \nATOM 40 C CE . MET A 1 51 ? 53.615 -15.132 0.828 1.00 64.76 5 A 1 \nATOM 41 N N . PHE A 1 52 ? 49.458 -18.629 -0.762 1.00 58.45 6 A 1 \nATOM 42 C CA . PHE A 1 52 ? 48.328 -19.099 0.042 1.00 55.70 6 A 1 \nATOM 43 C C . PHE A 1 52 ? 47.583 -20.234 -0.655 1.00 54.64 6 A 1 \nATOM 44 O O . PHE A 1 52 ? 47.299 -21.263 -0.040 1.00 53.77 6 A 1 \nATOM 45 C CB . PHE A 1 52 ? 47.387 -17.928 0.348 1.00 55.15 6 A 1 \nATOM 46 C CG . PHE A 1 52 ? 46.391 -18.193 1.454 1.00 54.05 6 A 1 \nATOM 47 C CD1 . PHE A 1 52 ? 46.806 -18.669 2.705 1.00 52.11 6 A 1 \nATOM 48 C CD2 . PHE A 1 52 ? 45.038 -17.914 1.258 1.00 51.88 6 A 1 \nATOM 49 C CE1 . PHE A 1 52 ? 45.874 -18.888 3.738 1.00 51.87 6 A 1 \nATOM 50 C CE2 . PHE A 1 52 ? 44.102 -18.122 2.282 1.00 51.37 6 A 1 \nATOM 51 C CZ . PHE A 1 52 ? 44.517 -18.615 3.520 1.00 51.58 6 A 1 \nATOM 52 N N . MET A 1 53 ? 47.289 -20.049 -1.944 1.00 53.56 7 A 1 \nATOM 53 C CA . MET A 1 53 ? 46.581 -21.056 -2.743 1.00 52.48 7 A 1 \nATOM 54 C C . MET A 1 53 ? 47.403 -22.313 -3.024 1.00 51.64 7 A 1 \nATOM 55 O O . MET A 1 53 ? 46.838 -23.402 -3.141 1.00 50.81 7 A 1 \nATOM 56 C CB . MET A 1 53 ? 46.045 -20.454 -4.044 1.00 53.22 7 A 1 \nATOM 57 C CG . MET A 1 53 ? 44.997 -19.374 -3.855 1.00 53.75 7 A 1 \nATOM 58 S SD . MET A 1 53 ? 43.610 -19.853 -2.806 1.00 57.56 7 A 1 \nATOM 59 C CE . MET A 1 53 ? 42.847 -21.190 -3.734 1.00 55.93 7 A 1 \nATOM 60 N N . GLN A 1 54 ? 48.730 -22.157 -3.121 1.00 51.00 8 A 1 \nATOM 61 C CA . GLN A 1 54 ? 49.669 -23.284 -3.218 1.00 50.69 8 A 1 \nATOM 62 C C . GLN A 1 54 ? 49.598 -24.139 -1.949 1.00 49.16 8 A 1 \nATOM 63 O O . GLN A 1 54 ? 49.579 -25.371 -2.011 1.00 48.59 8 A 1 \nATOM 64 C CB . GLN A 1 54 ? 51.117 -22.783 -3.410 1.00 50.72 8 A 1 \nATOM 65 C CG . GLN A 1 54 ? 51.474 -22.347 -4.850 1.00 53.13 8 A 1 \nATOM 66 C CD . GLN A 1 54 ? 52.854 -21.680 -4.966 1.00 53.41 8 A 1 \nATOM 67 O OE1 . GLN A 1 54 ? 53.070 -20.814 -5.829 1.00 55.71 8 A 1 \nATOM 68 N NE2 . GLN A 1 54 ? 53.795 -22.079 -4.090 1.00 56.14 8 A 1 \nATOM 69 N N . VAL A 1 55 ? 49.577 -23.467 -0.798 1.00 47.75 9 A 1 \nATOM 70 C CA . VAL A 1 55 ? 49.441 -24.143 0.498 1.00 46.63 9 A 1 \nATOM 71 C C . VAL A 1 55 ? 48.059 -24.799 0.614 1.00 45.66 9 A 1 \nATOM 72 O O . VAL A 1 55 ? 47.948 -25.890 1.160 1.00 46.18 9 A 1 \nATOM 73 C CB . VAL A 1 55 ? 49.741 -23.192 1.695 1.00 46.49 9 A 1 \nATOM 74 C CG1 . VAL A 1 55 ? 49.423 -23.868 3.034 1.00 46.17 9 A 1 \nATOM 75 C CG2 . VAL A 1 55 ? 51.216 -22.718 1.666 1.00 46.24 9 A 1 \nATOM 76 N N . TYR A 1 56 ? 47.018 -24.167 0.072 1.00 44.58 10 A 1 \nATOM 77 C CA . TYR A 1 56 ? 45.695 -24.807 0.040 1.00 43.87 10 A 1 \nATOM 78 C C . TYR A 1 56 ? 45.764 -26.199 -0.590 1.00 44.19 10 A 1 \nATOM 79 O O . TYR A 1 56 ? 45.238 -27.165 -0.031 1.00 43.72 10 A 1 \nATOM 80 C CB . TYR A 1 56 ? 44.638 -23.957 -0.671 1.00 43.03 10 A 1 \nATOM 81 C CG . TYR A 1 56 ? 43.265 -24.614 -0.698 1.00 42.43 10 A 1 \nATOM 82 C CD1 . TYR A 1 56 ? 42.391 -24.512 0.397 1.00 41.52 10 A 1 \nATOM 83 C CD2 . TYR A 1 56 ? 42.853 -25.377 -1.804 1.00 41.19 10 A 1 \nATOM 84 C CE1 . TYR A 1 56 ? 41.137 -25.130 0.378 1.00 40.42 10 A 1 \nATOM 85 C CE2 . TYR A 1 56 ? 41.599 -25.990 -1.839 1.00 42.02 10 A 1 \nATOM 86 C CZ . TYR A 1 56 ? 40.748 -25.869 -0.738 1.00 41.77 10 A 1 \nATOM 87 O OH . TYR A 1 56 ? 39.514 -26.478 -0.766 1.00 41.56 10 A 1 \nATOM 88 N N . ASP A 1 57 ? 46.404 -26.294 -1.758 1.00 44.33 11 A 1 \nATOM 89 C CA . ASP A 1 57 ? 46.556 -27.572 -2.458 1.00 45.07 11 A 1 \nATOM 90 C C . ASP A 1 57 ? 47.416 -28.540 -1.659 1.00 44.73 11 A 1 \nATOM 91 O O . ASP A 1 57 ? 47.147 -29.735 -1.635 1.00 44.83 11 A 1 \nATOM 92 C CB . ASP A 1 57 ? 47.153 -27.361 -3.861 1.00 46.36 11 A 1 \nATOM 93 C CG . ASP A 1 57 ? 46.247 -26.543 -4.771 1.00 49.24 11 A 1 \nATOM 94 O OD1 . ASP A 1 57 ? 45.024 -26.838 -4.855 1.00 52.43 11 A 1 \nATOM 95 O OD2 . ASP A 1 57 ? 46.767 -25.603 -5.420 1.00 54.07 11 A 1 \nATOM 96 N N . GLU A 1 58 ? 48.446 -28.011 -1.003 1.00 44.26 12 A 1 \nATOM 97 C CA . GLU A 1 58 ? 49.252 -28.780 -0.068 1.00 44.55 12 A 1 \nATOM 98 C C . GLU A 1 58 ? 48.383 -29.379 1.069 1.00 43.76 12 A 1 \nATOM 99 O O . GLU A 1 58 ? 48.402 -30.592 1.323 1.00 43.25 12 A 1 \nATOM 100 C CB . GLU A 1 58 ? 50.344 -27.867 0.499 1.00 45.04 12 A 1 \nATOM 101 C CG . GLU A 1 58 ? 51.689 -28.525 0.751 1.00 46.16 12 A 1 \nATOM 102 C CD . GLU A 1 58 ? 52.655 -27.617 1.500 1.00 46.97 12 A 1 \nATOM 103 O OE1 . GLU A 1 58 ? 52.491 -26.372 1.455 1.00 48.44 12 A 1 \nATOM 104 O OE2 . GLU A 1 58 ? 53.592 -28.155 2.143 1.00 50.76 12 A 1 \nATOM 105 N N . ILE A 1 59 ? 47.596 -28.531 1.731 1.00 42.93 13 A 1 \nATOM 106 C CA . ILE A 1 59 ? 46.677 -28.992 2.780 1.00 41.71 13 A 1 \nATOM 107 C C . ILE A 1 59 ? 45.643 -29.968 2.235 1.00 41.42 13 A 1 \nATOM 108 O O . ILE A 1 59 ? 45.429 -31.041 2.807 1.00 40.67 13 A 1 \nATOM 109 C CB . ILE A 1 59 ? 45.977 -27.809 3.490 1.00 41.54 13 A 1 \nATOM 110 C CG1 . ILE A 1 59 ? 47.010 -26.970 4.247 1.00 41.14 13 A 1 \nATOM 111 C CG2 . ILE A 1 59 ? 44.859 -28.322 4.424 1.00 39.81 13 A 1 \nATOM 112 C CD1 . ILE A 1 59 ? 46.519 -25.592 4.681 1.00 38.99 13 A 1 \nATOM 113 N N . GLN A 1 60 ? 45.017 -29.619 1.113 1.00 41.80 14 A 1 \nATOM 114 C CA . GLN A 1 60 ? 43.985 -30.481 0.545 1.00 42.33 14 A 1 \nATOM 115 C C . GLN A 1 60 ? 44.499 -31.881 0.234 1.00 43.84 14 A 1 \nATOM 116 O O . GLN A 1 60 ? 43.795 -32.877 0.451 1.00 43.74 14 A 1 \nATOM 117 C CB . GLN A 1 60 ? 43.350 -29.869 -0.702 1.00 42.47 14 A 1 \nATOM 118 C CG . GLN A 1 60 ? 42.185 -30.700 -1.210 1.00 41.60 14 A 1 \nATOM 119 C CD . GLN A 1 60 ? 41.409 -30.013 -2.310 1.00 43.74 14 A 1 \nATOM 120 O OE1 . GLN A 1 60 ? 41.832 -30.020 -3.467 1.00 43.66 14 A 1 \nATOM 121 N NE2 . GLN A 1 60 ? 40.265 -29.418 -1.960 1.00 41.32 14 A 1 \nATOM 122 N N . MET A 1 61 ? 45.743 -31.960 -0.243 1.00 44.77 15 A 1 \nATOM 123 C CA . MET A 1 61 ? 46.297 -33.242 -0.658 1.00 45.93 15 A 1 \nATOM 124 C C . MET A 1 61 ? 46.585 -34.121 0.548 1.00 44.13 15 A 1 \nATOM 125 O O . MET A 1 61 ? 46.234 -35.297 0.554 1.00 43.05 15 A 1 \nATOM 126 C CB . MET A 1 61 ? 47.561 -33.038 -1.485 1.00 45.45 15 A 1 \nATOM 127 C CG . MET A 1 61 ? 48.230 -34.341 -1.913 1.00 48.90 15 A 1 \nATOM 128 S SD . MET A 1 61 ? 49.699 -34.053 -2.924 1.00 51.27 15 A 1 \nATOM 129 C CE . MET A 1 61 ? 49.015 -33.119 -4.309 1.00 50.30 15 A 1 \nATOM 130 N N . PHE A 1 62 ? 47.230 -33.558 1.565 1.00 43.74 16 A 1 \nATOM 131 C CA . PHE A 1 62 ? 47.450 -34.308 2.796 1.00 44.09 16 A 1 \nATOM 132 C C . PHE A 1 62 ? 46.133 -34.910 3.301 1.00 43.39 16 A 1 \nATOM 133 O O . PHE A 1 62 ? 46.025 -36.122 3.499 1.00 43.59 16 A 1 \nATOM 134 C CB . PHE A 1 62 ? 48.110 -33.443 3.878 1.00 44.38 16 A 1 \nATOM 135 C CG . PHE A 1 62 ? 47.911 -33.975 5.268 1.00 46.47 16 A 1 \nATOM 136 C CD1 . PHE A 1 62 ? 48.522 -35.171 5.668 1.00 47.30 16 A 1 \nATOM 137 C CD2 . PHE A 1 62 ? 47.090 -33.302 6.174 1.00 46.43 16 A 1 \nATOM 138 C CE1 . PHE A 1 62 ? 48.308 -35.689 6.933 1.00 46.56 16 A 1 \nATOM 139 C CE2 . PHE A 1 62 ? 46.882 -33.819 7.445 1.00 46.91 16 A 1 \nATOM 140 C CZ . PHE A 1 62 ? 47.496 -35.014 7.823 1.00 45.95 16 A 1 \nATOM 141 N N . LEU A 1 63 ? 45.118 -34.068 3.452 1.00 42.84 17 A 1 \nATOM 142 C CA . LEU A 1 63 ? 43.880 -34.481 4.113 1.00 42.40 17 A 1 \nATOM 143 C C . LEU A 1 63 ? 43.174 -35.589 3.366 1.00 42.33 17 A 1 \nATOM 144 O O . LEU A 1 63 ? 42.786 -36.598 3.959 1.00 42.04 17 A 1 \nATOM 145 C CB . LEU A 1 63 ? 42.936 -33.281 4.311 1.00 41.93 17 A 1 \nATOM 146 C CG . LEU A 1 63 ? 43.344 -32.236 5.356 1.00 41.41 17 A 1 \nATOM 147 C CD1 . LEU A 1 63 ? 42.453 -31.015 5.213 1.00 42.55 17 A 1 \nATOM 148 C CD2 . LEU A 1 63 ? 43.249 -32.782 6.766 1.00 40.13 17 A 1 \nATOM 149 N N . LEU A 1 64 ? 43.014 -35.397 2.061 1.00 42.20 18 A 1 \nATOM 150 C CA . LEU A 1 64 ? 42.288 -36.354 1.243 1.00 42.90 18 A 1 \nATOM 151 C C . LEU A 1 64 ? 43.054 -37.652 1.002 1.00 43.18 18 A 1 \nATOM 152 O O . LEU A 1 64 ? 42.450 -38.712 0.878 1.00 42.80 18 A 1 \nATOM 153 C CB . LEU A 1 64 ? 41.857 -35.711 -0.073 1.00 43.07 18 A 1 \nATOM 154 C CG . LEU A 1 64 ? 40.957 -34.477 0.043 1.00 44.46 18 A 1 \nATOM 155 C CD1 . LEU A 1 64 ? 40.528 -34.039 -1.334 1.00 46.79 18 A 1 \nATOM 156 C CD2 . LEU A 1 64 ? 39.724 -34.736 0.915 1.00 44.88 18 A 1 \nATOM 157 N N . GLU A 1 65 ? 44.380 -37.577 0.947 1.00 44.63 19 A 1 \nATOM 158 C CA . GLU A 1 65 ? 45.181 -38.794 0.825 1.00 45.70 19 A 1 \nATOM 159 C C . GLU A 1 65 ? 45.139 -39.607 2.116 1.00 45.86 19 A 1 \nATOM 160 O O . GLU A 1 65 ? 45.073 -40.835 2.064 1.00 45.85 19 A 1 \nATOM 161 C CB . GLU A 1 65 ? 46.620 -38.487 0.407 1.00 46.00 19 A 1 \nATOM 162 C CG . GLU A 1 65 ? 46.702 -37.873 -0.984 1.00 49.53 19 A 1 \nATOM 163 C CD . GLU A 1 65 ? 48.077 -37.960 -1.639 1.00 53.42 19 A 1 \nATOM 164 O OE1 . GLU A 1 65 ? 49.102 -38.092 -0.929 1.00 54.70 19 A 1 \nATOM 165 O OE2 . GLU A 1 65 ? 48.120 -37.870 -2.885 1.00 55.41 19 A 1 \nATOM 166 N N . GLU A 1 66 ? 45.159 -38.923 3.267 1.00 45.97 20 A 1 \nATOM 167 C CA . GLU A 1 66 ? 45.057 -39.593 4.563 1.00 46.49 20 A 1 \nATOM 168 C C . GLU A 1 66 ? 43.764 -40.399 4.639 1.00 46.71 20 A 1 \nATOM 169 O O . GLU A 1 66 ? 43.763 -41.535 5.120 1.00 46.71 20 A 1 \nATOM 170 C CB . GLU A 1 66 ? 45.141 -38.588 5.724 1.00 46.72 20 A 1 \nATOM 171 C CG . GLU A 1 66 ? 45.275 -39.250 7.109 1.00 46.80 20 A 1 \nATOM 172 C CD . GLU A 1 66 ? 45.430 -38.254 8.255 1.00 47.16 20 A 1 \nATOM 173 O OE1 . GLU A 1 66 ? 44.644 -37.287 8.320 1.00 47.36 20 A 1 \nATOM 174 O OE2 . GLU A 1 66 ? 46.343 -38.439 9.098 1.00 48.69 20 A 1 \nATOM 175 N N . LEU A 1 67 ? 42.675 -39.817 4.134 1.00 47.08 21 A 1 \nATOM 176 C CA . LEU A 1 67 ? 41.366 -40.473 4.124 1.00 47.72 21 A 1 \nATOM 177 C C . LEU A 1 67 ? 41.382 -41.754 3.292 1.00 48.39 21 A 1 \nATOM 178 O O . LEU A 1 67 ? 40.896 -42.792 3.741 1.00 48.47 21 A 1 \nATOM 179 C CB . LEU A 1 67 ? 40.275 -39.512 3.635 1.00 46.83 21 A 1 \nATOM 180 C CG . LEU A 1 67 ? 39.921 -38.436 4.675 1.00 46.36 21 A 1 \nATOM 181 C CD1 . LEU A 1 67 ? 39.136 -37.297 4.050 1.00 41.72 21 A 1 \nATOM 182 C CD2 . LEU A 1 67 ? 39.182 -39.023 5.888 1.00 44.13 21 A 1 \nATOM 183 N N . GLU A 1 68 ? 41.950 -41.673 2.089 1.00 49.71 22 A 1 \nATOM 184 C CA . GLU A 1 68 ? 42.152 -42.854 1.236 1.00 50.89 22 A 1 \nATOM 185 C C . GLU A 1 68 ? 43.063 -43.891 1.886 1.00 50.33 22 A 1 \nATOM 186 O O . GLU A 1 68 ? 42.750 -45.083 1.895 1.00 50.30 22 A 1 \nATOM 187 C CB . GLU A 1 68 ? 42.721 -42.454 -0.128 1.00 50.88 22 A 1 \nATOM 188 C CG . GLU A 1 68 ? 41.658 -42.269 -1.223 1.00 53.28 22 A 1 \nATOM 189 C CD . GLU A 1 68 ? 42.251 -42.058 -2.625 1.00 53.87 22 A 1 \nATOM 190 O OE1 . GLU A 1 68 ? 43.501 -41.918 -2.751 1.00 58.00 22 A 1 \nATOM 191 O OE2 . GLU A 1 68 ? 41.455 -42.015 -3.602 1.00 57.37 22 A 1 \nATOM 192 N N . LEU A 1 69 ? 44.174 -43.426 2.444 1.00 49.91 23 A 1 \nATOM 193 C CA . LEU A 1 69 ? 45.225 -44.324 2.919 1.00 50.02 23 A 1 \nATOM 194 C C . LEU A 1 69 ? 44.969 -44.911 4.303 1.00 49.88 23 A 1 \nATOM 195 O O . LEU A 1 69 ? 45.379 -46.042 4.581 1.00 50.06 23 A 1 \nATOM 196 C CB . LEU A 1 69 ? 46.601 -43.637 2.877 1.00 49.95 23 A 1 \nATOM 197 C CG . LEU A 1 69 ? 47.185 -43.229 1.516 1.00 49.98 23 A 1 \nATOM 198 C CD1 . LEU A 1 69 ? 48.448 -42.384 1.704 1.00 52.23 23 A 1 \nATOM 199 C CD2 . LEU A 1 69 ? 47.468 -44.435 0.608 1.00 51.30 23 A 1 \nATOM 200 N N . LYS A 1 70 ? 44.301 -44.160 5.174 1.00 49.63 24 A 1 \nATOM 201 C CA . LYS A 1 70 ? 44.161 -44.595 6.571 1.00 49.42 24 A 1 \nATOM 202 C C . LYS A 1 70 ? 42.729 -44.737 7.076 1.00 48.89 24 A 1 \nATOM 203 O O . LYS A 1 70 ? 42.509 -45.302 8.158 1.00 49.06 24 A 1 \nATOM 204 C CB . LYS A 1 70 ? 44.984 -43.696 7.503 1.00 49.73 24 A 1 \nATOM 205 C CG . LYS A 1 70 ? 46.481 -43.917 7.367 1.00 51.72 24 A 1 \nATOM 206 C CD . LYS A 1 70 ? 47.293 -42.959 8.222 1.00 54.85 24 A 1 \nATOM 207 C CE . LYS A 1 70 ? 48.795 -43.223 8.050 1.00 57.17 24 A 1 \nATOM 208 N NZ . LYS A 1 70 ? 49.639 -42.269 8.834 1.00 59.01 24 A 1 \nATOM 209 N N . PHE A 1 71 ? 41.763 -44.254 6.294 1.00 47.99 25 A 1 \nATOM 210 C CA . PHE A 1 71 ? 40.369 -44.214 6.743 1.00 47.58 25 A 1 \nATOM 211 C C . PHE A 1 71 ? 39.459 -45.032 5.835 1.00 47.58 25 A 1 \nATOM 212 O O . PHE A 1 71 ? 38.234 -44.864 5.847 1.00 47.49 25 A 1 \nATOM 213 C CB . PHE A 1 71 ? 39.879 -42.756 6.891 1.00 46.66 25 A 1 \nATOM 214 C CG . PHE A 1 71 ? 40.466 -42.032 8.083 1.00 46.39 25 A 1 \nATOM 215 C CD1 . PHE A 1 71 ? 39.711 -41.844 9.237 1.00 45.41 25 A 1 \nATOM 216 C CD2 . PHE A 1 71 ? 41.778 -41.553 8.056 1.00 45.08 25 A 1 \nATOM 217 C CE1 . PHE A 1 71 ? 40.250 -41.184 10.343 1.00 46.44 25 A 1 \nATOM 218 C CE2 . PHE A 1 71 ? 42.328 -40.900 9.148 1.00 46.40 25 A 1 \nATOM 219 C CZ . PHE A 1 71 ? 41.558 -40.705 10.298 1.00 46.85 25 A 1 \nATOM 220 N N . ASP A 1 72 ? 40.076 -45.923 5.054 1.00 48.18 26 A 1 \nATOM 221 C CA . ASP A 1 72 ? 39.377 -46.844 4.146 1.00 48.71 26 A 1 \nATOM 222 C C . ASP A 1 72 ? 38.388 -46.130 3.197 1.00 48.33 26 A 1 \nATOM 223 O O . ASP A 1 72 ? 37.371 -46.693 2.795 1.00 48.53 26 A 1 \nATOM 224 C CB . ASP A 1 72 ? 38.696 -47.992 4.938 1.00 49.14 26 A 1 \nATOM 225 C CG . ASP A 1 72 ? 39.678 -48.769 5.846 1.00 52.25 26 A 1 \nATOM 226 O OD1 . ASP A 1 72 ? 40.869 -48.941 5.473 1.00 54.63 26 A 1 \nATOM 227 O OD2 . ASP A 1 72 ? 39.259 -49.226 6.941 1.00 53.55 26 A 1 \nATOM 228 N N . MET A 1 73 ? 38.689 -44.883 2.839 1.00 48.08 27 A 1 \nATOM 229 C CA . MET A 1 73 ? 37.744 -44.098 2.040 1.00 47.72 27 A 1 \nATOM 230 C C . MET A 1 73 ? 37.822 -44.415 0.555 1.00 47.23 27 A 1 \nATOM 231 O O . MET A 1 73 ? 38.899 -44.644 0.023 1.00 46.74 27 A 1 \nATOM 232 C CB . MET A 1 73 ? 37.901 -42.589 2.253 1.00 47.72 27 A 1 \nATOM 233 C CG . MET A 1 73 ? 36.712 -41.821 1.659 1.00 47.13 27 A 1 \nATOM 234 S SD . MET A 1 73 ? 36.481 -40.144 2.252 1.00 47.54 27 A 1 \nATOM 235 C CE . MET A 1 73 ? 35.906 -40.466 3.923 1.00 45.45 27 A 1 \nATOM 236 N N . ASP A 1 74 ? 36.662 -44.382 -0.090 1.00 47.23 28 A 1 \nATOM 237 C CA . ASP A 1 74 ? 36.498 -44.703 -1.504 1.00 47.32 28 A 1 \nATOM 238 C C . ASP A 1 74 ? 36.581 -43.468 -2.396 1.00 47.52 28 A 1 \nATOM 239 O O . ASP A 1 74 ? 36.240 -42.355 -1.961 1.00 47.35 28 A 1 \nATOM 240 C CB . ASP A 1 74 ? 35.134 -45.346 -1.705 1.00 47.58 28 A 1 \nATOM 241 C CG . ASP A 1 74 ? 34.017 -44.486 -1.172 1.00 47.61 28 A 1 \nATOM 242 O OD1 . ASP A 1 74 ? 33.907 -44.373 0.071 1.00 46.64 28 A 1 \nATOM 243 O OD2 . ASP A 1 74 ? 33.273 -43.915 -1.993 1.00 47.03 28 A 1 \nATOM 244 N N . PRO A 1 75 ? 37.009 -43.653 -3.666 1.00 47.33 29 A 1 \nATOM 245 C CA . PRO A 1 75 ? 37.149 -42.512 -4.580 1.00 47.10 29 A 1 \nATOM 246 C C . PRO A 1 75 ? 35.902 -41.629 -4.717 1.00 46.44 29 A 1 \nATOM 247 O O . PRO A 1 75 ? 36.027 -40.420 -4.916 1.00 46.44 29 A 1 \nATOM 248 C CB . PRO A 1 75 ? 37.489 -43.180 -5.924 1.00 47.60 29 A 1 \nATOM 249 C CG . PRO A 1 75 ? 38.172 -44.460 -5.528 1.00 47.87 29 A 1 \nATOM 250 C CD . PRO A 1 75 ? 37.405 -44.922 -4.311 1.00 47.29 29 A 1 \nATOM 251 N N . ASN A 1 76 ? 34.719 -42.216 -4.599 1.00 45.57 30 A 1 \nATOM 252 C CA . ASN A 1 76 ? 33.490 -41.430 -4.695 1.00 45.48 30 A 1 \nATOM 253 C C . ASN A 1 76 ? 33.332 -40.442 -3.535 1.00 44.66 30 A 1 \nATOM 254 O O . ASN A 1 76 ? 32.968 -39.289 -3.740 1.00 44.73 30 A 1 \nATOM 255 C CB . ASN A 1 76 ? 32.271 -42.345 -4.764 1.00 45.99 30 A 1 \nATOM 256 C CG . ASN A 1 76 ? 32.121 -43.024 -6.111 1.00 48.44 30 A 1 \nATOM 257 O OD1 . ASN A 1 76 ? 32.259 -42.390 -7.162 1.00 51.04 30 A 1 \nATOM 258 N ND2 . ASN A 1 76 ? 31.797 -44.312 -6.087 1.00 50.96 30 A 1 \nATOM 259 N N . ARG A 1 77 ? 33.623 -40.886 -2.320 1.00 43.96 31 A 1 \nATOM 260 C CA . ARG A 1 77 ? 33.442 -40.006 -1.162 1.00 43.05 31 A 1 \nATOM 261 C C . ARG A 1 77 ? 34.585 -39.015 -1.039 1.00 42.67 31 A 1 \nATOM 262 O O . ARG A 1 77 ? 34.363 -37.858 -0.662 1.00 41.56 31 A 1 \nATOM 263 C CB . ARG A 1 77 ? 33.244 -40.809 0.115 1.00 43.46 31 A 1 \nATOM 264 C CG . ARG A 1 77 ? 31.852 -41.348 0.243 1.00 42.40 31 A 1 \nATOM 265 C CD . ARG A 1 77 ? 31.725 -42.239 1.426 1.00 41.66 31 A 1 \nATOM 266 N NE . ARG A 1 77 ? 30.387 -42.807 1.523 1.00 43.54 31 A 1 \nATOM 267 C CZ . ARG A 1 77 ? 29.993 -43.890 0.866 1.00 44.34 31 A 1 \nATOM 268 N NH1 . ARG A 1 77 ? 30.832 -44.508 0.036 1.00 46.41 31 A 1 \nATOM 269 N NH2 . ARG A 1 77 ? 28.762 -44.348 1.033 1.00 45.44 31 A 1 \nATOM 270 N N . VAL A 1 78 ? 35.794 -39.456 -1.403 1.00 42.98 32 A 1 \nATOM 271 C CA . VAL A 1 78 ? 36.955 -38.562 -1.517 1.00 43.66 32 A 1 \nATOM 272 C C . VAL A 1 78 ? 36.647 -37.352 -2.411 1.00 43.86 32 A 1 \nATOM 273 O O . VAL A 1 78 ? 36.959 -36.209 -2.053 1.00 43.27 32 A 1 \nATOM 274 C CB . VAL A 1 78 ? 38.218 -39.308 -2.039 1.00 43.54 32 A 1 \nATOM 275 C CG1 . VAL A 1 78 ? 39.307 -38.334 -2.419 1.00 44.15 32 A 1 \nATOM 276 C CG2 . VAL A 1 78 ? 38.737 -40.271 -0.990 1.00 42.90 32 A 1 \nATOM 277 N N . ARG A 1 79 ? 36.055 -37.628 -3.573 1.00 44.53 33 A 1 \nATOM 278 C CA . ARG A 1 79 ? 35.628 -36.612 -4.541 1.00 45.64 33 A 1 \nATOM 279 C C . ARG A 1 79 ? 34.546 -35.699 -3.954 1.00 44.65 33 A 1 \nATOM 280 O O . ARG A 1 79 ? 34.637 -34.477 -4.062 1.00 45.11 33 A 1 \nATOM 281 C CB . ARG A 1 79 ? 35.112 -37.299 -5.817 1.00 45.55 33 A 1 \nATOM 282 C CG . ARG A 1 79 ? 34.294 -36.425 -6.795 1.00 47.70 33 A 1 \nATOM 283 C CD . ARG A 1 79 ? 33.633 -37.302 -7.896 1.00 49.33 33 A 1 \nATOM 284 N NE . ARG A 1 79 ? 32.434 -37.996 -7.402 1.00 56.22 33 A 1 \nATOM 285 C CZ . ARG A 1 79 ? 32.102 -39.257 -7.681 1.00 57.51 33 A 1 \nATOM 286 N NH1 . ARG A 1 79 ? 32.880 -40.008 -8.460 1.00 60.02 33 A 1 \nATOM 287 N NH2 . ARG A 1 79 ? 30.990 -39.774 -7.166 1.00 58.62 33 A 1 \nATOM 288 N N . TYR A 1 80 ? 33.513 -36.300 -3.367 1.00 43.77 34 A 1 \nATOM 289 C CA . TYR A 1 80 ? 32.501 -35.555 -2.611 1.00 43.07 34 A 1 \nATOM 290 C C . TYR A 1 80 ? 33.133 -34.568 -1.622 1.00 42.52 34 A 1 \nATOM 291 O O . TYR A 1 80 ? 32.761 -33.389 -1.583 1.00 42.22 34 A 1 \nATOM 292 C CB . TYR A 1 80 ? 31.578 -36.514 -1.854 1.00 42.99 34 A 1 \nATOM 293 C CG . TYR A 1 80 ? 30.548 -35.803 -0.999 1.00 43.51 34 A 1 \nATOM 294 C CD1 . TYR A 1 80 ? 30.790 -35.551 0.356 1.00 43.97 34 A 1 \nATOM 295 C CD2 . TYR A 1 80 ? 29.353 -35.364 -1.542 1.00 43.85 34 A 1 \nATOM 296 C CE1 . TYR A 1 80 ? 29.860 -34.887 1.154 1.00 43.53 34 A 1 \nATOM 297 C CE2 . TYR A 1 80 ? 28.408 -34.690 -0.754 1.00 44.11 34 A 1 \nATOM 298 C CZ . TYR A 1 80 ? 28.671 -34.464 0.592 1.00 43.67 34 A 1 \nATOM 299 O OH . TYR A 1 80 ? 27.745 -33.812 1.359 1.00 42.33 34 A 1 \nATOM 300 N N . LEU A 1 81 ? 34.096 -35.055 -0.836 1.00 42.11 35 A 1 \nATOM 301 C CA . LEU A 1 81 ? 34.730 -34.236 0.189 1.00 42.12 35 A 1 \nATOM 302 C C . LEU A 1 81 ? 35.639 -33.156 -0.388 1.00 42.10 35 A 1 \nATOM 303 O O . LEU A 1 81 ? 35.717 -32.043 0.156 1.00 41.48 35 A 1 \nATOM 304 C CB . LEU A 1 81 ? 35.493 -35.103 1.210 1.00 41.45 35 A 1 \nATOM 305 C CG . LEU A 1 81 ? 34.633 -35.971 2.148 1.00 41.94 35 A 1 \nATOM 306 C CD1 . LEU A 1 81 ? 35.502 -36.700 3.152 1.00 41.67 35 A 1 \nATOM 307 C CD2 . LEU A 1 81 ? 33.538 -35.139 2.879 1.00 43.78 35 A 1 \nATOM 308 N N . ARG A 1 82 ? 36.321 -33.473 -1.486 1.00 41.93 36 A 1 \nATOM 309 C CA . ARG A 1 82 ? 37.118 -32.468 -2.203 1.00 42.35 36 A 1 \nATOM 310 C C . ARG A 1 82 ? 36.229 -31.322 -2.676 1.00 42.14 36 A 1 \nATOM 311 O O . ARG A 1 82 ? 36.598 -30.158 -2.581 1.00 42.55 36 A 1 \nATOM 312 C CB . ARG A 1 82 ? 37.834 -33.098 -3.401 1.00 41.97 36 A 1 \nATOM 313 C CG . ARG A 1 82 ? 38.643 -32.112 -4.222 1.00 42.93 36 A 1 \nATOM 314 C CD . ARG A 1 82 ? 39.208 -32.758 -5.493 1.00 43.61 36 A 1 \nATOM 315 N NE . ARG A 1 82 ? 39.832 -34.060 -5.249 1.00 49.48 36 A 1 \nATOM 316 C CZ . ARG A 1 82 ? 41.089 -34.234 -4.838 1.00 50.88 36 A 1 \nATOM 317 N NH1 . ARG A 1 82 ? 41.874 -33.179 -4.618 1.00 52.54 36 A 1 \nATOM 318 N NH2 . ARG A 1 82 ? 41.562 -35.466 -4.654 1.00 50.70 36 A 1 \nATOM 319 N N . LYS A 1 83 ? 35.055 -31.673 -3.182 1.00 42.22 37 A 1 \nATOM 320 C CA . LYS A 1 83 ? 34.064 -30.705 -3.635 1.00 42.32 37 A 1 \nATOM 321 C C . LYS A 1 83 ? 33.488 -29.888 -2.472 1.00 41.31 37 A 1 \nATOM 322 O O . LYS A 1 83 ? 33.325 -28.669 -2.574 1.00 41.04 37 A 1 \nATOM 323 C CB . LYS A 1 83 ? 32.926 -31.450 -4.325 1.00 42.57 37 A 1 \nATOM 324 C CG . LYS A 1 83 ? 32.144 -30.636 -5.356 1.00 45.51 37 A 1 \nATOM 325 C CD . LYS A 1 83 ? 31.563 -31.569 -6.433 1.00 50.49 37 A 1 \nATOM 326 C CE . LYS A 1 83 ? 32.587 -31.947 -7.505 1.00 53.35 37 A 1 \nATOM 327 N NZ . LYS A 1 83 ? 32.484 -33.396 -7.895 1.00 54.36 37 A 1 \nATOM 328 N N . MET A 1 84 ? 33.153 -30.586 -1.390 1.00 40.31 38 A 1 \nATOM 329 C CA . MET A 1 84 ? 32.669 -29.960 -0.153 1.00 39.34 38 A 1 \nATOM 330 C C . MET A 1 84 ? 33.683 -28.931 0.325 1.00 39.15 38 A 1 \nATOM 331 O O . MET A 1 84 ? 33.332 -27.788 0.577 1.00 39.22 38 A 1 \nATOM 332 C CB . MET A 1 84 ? 32.407 -31.024 0.927 1.00 38.59 38 A 1 \nATOM 333 C CG . MET A 1 84 ? 31.637 -30.500 2.144 1.00 39.22 38 A 1 \nATOM 334 S SD . MET A 1 84 ? 32.758 -29.714 3.322 1.00 36.39 38 A 1 \nATOM 335 C CE . MET A 1 84 ? 33.410 -31.135 4.207 1.00 36.98 38 A 1 \nATOM 336 N N . MET A 1 85 ? 34.941 -29.348 0.431 1.00 39.32 39 A 1 \nATOM 337 C CA . MET A 1 85 ? 36.035 -28.463 0.829 1.00 39.10 39 A 1 \nATOM 338 C C . MET A 1 85 ? 36.122 -27.207 -0.051 1.00 39.58 39 A 1 \nATOM 339 O O . MET A 1 85 ? 36.136 -26.080 0.457 1.00 39.67 39 A 1 \nATOM 340 C CB . MET A 1 85 ? 37.363 -29.241 0.802 1.00 38.92 39 A 1 \nATOM 341 C CG . MET A 1 85 ? 38.459 -28.579 1.595 1.00 37.12 39 A 1 \nATOM 342 S SD . MET A 1 85 ? 40.084 -29.333 1.363 1.00 38.86 39 A 1 \nATOM 343 C CE . MET A 1 85 ? 39.902 -30.955 2.066 1.00 34.85 39 A 1 \nATOM 344 N N . ASP A 1 86 ? 36.157 -27.402 -1.375 1.00 39.76 40 A 1 \nATOM 345 C CA . ASP A 1 86 ? 36.308 -26.283 -2.318 1.00 39.64 40 A 1 \nATOM 346 C C . ASP A 1 86 ? 35.164 -25.290 -2.244 1.00 38.70 40 A 1 \nATOM 347 O O . ASP A 1 86 ? 35.391 -24.088 -2.186 1.00 38.67 40 A 1 \nATOM 348 C CB . ASP A 1 86 ? 36.452 -26.789 -3.762 1.00 40.02 40 A 1 \nATOM 349 C CG . ASP A 1 86 ? 37.781 -27.471 -4.023 1.00 41.99 40 A 1 \nATOM 350 O OD1 . ASP A 1 86 ? 38.708 -27.413 -3.181 1.00 43.01 40 A 1 \nATOM 351 O OD2 . ASP A 1 86 ? 37.899 -28.081 -5.103 1.00 47.38 40 A 1 \nATOM 352 N N . THR A 1 87 ? 33.943 -25.809 -2.237 1.00 38.66 41 A 1 \nATOM 353 C CA . THR A 1 87 ? 32.723 -25.009 -2.133 1.00 38.62 41 A 1 \nATOM 354 C C . THR A 1 87 ? 32.632 -24.217 -0.816 1.00 38.49 41 A 1 \nATOM 355 O O . THR A 1 87 ? 32.291 -23.027 -0.818 1.00 37.87 41 A 1 \nATOM 356 C CB . THR A 1 87 ? 31.479 -25.907 -2.277 1.00 38.66 41 A 1 \nATOM 357 O OG1 . THR A 1 87 ? 31.612 -26.730 -3.450 1.00 39.90 41 A 1 \nATOM 358 C CG2 . THR A 1 87 ? 30.198 -25.091 -2.348 1.00 38.98 41 A 1 \nATOM 359 N N . THR A 1 88 ? 32.965 -24.862 0.300 1.00 37.80 42 A 1 \nATOM 360 C CA . THR A 1 88 ? 32.840 -24.203 1.615 1.00 37.16 42 A 1 \nATOM 361 C C . THR A 1 88 ? 34.029 -23.320 1.994 1.00 37.28 42 A 1 \nATOM 362 O O . THR A 1 88 ? 33.854 -22.302 2.662 1.00 36.80 42 A 1 \nATOM 363 C CB . THR A 1 88 ? 32.609 -25.232 2.746 1.00 36.84 42 A 1 \nATOM 364 O OG1 . THR A 1 88 ? 33.750 -26.098 2.850 1.00 34.70 42 A 1 \nATOM 365 C CG2 . THR A 1 88 ? 31.344 -26.028 2.500 1.00 36.18 42 A 1 \nATOM 366 N N . CYS A 1 89 ? 35.232 -23.693 1.565 1.00 37.96 43 A 1 \nATOM 367 C CA . CYS A 1 89 ? 36.437 -22.948 1.965 1.00 38.91 43 A 1 \nATOM 368 C C . CYS A 1 89 ? 36.903 -21.883 0.992 1.00 40.37 43 A 1 \nATOM 369 O O . CYS A 1 89 ? 37.600 -20.963 1.394 1.00 40.57 43 A 1 \nATOM 370 C CB . CYS A 1 89 ? 37.624 -23.875 2.262 1.00 38.60 43 A 1 \nATOM 371 S SG . CYS A 1 89 ? 37.323 -25.058 3.565 1.00 37.00 43 A 1 \nATOM 372 N N . LEU A 1 90 ? 36.559 -22.015 -0.287 1.00 42.81 44 A 1 \nATOM 373 C CA . LEU A 1 90 ? 37.051 -21.052 -1.291 1.00 44.03 44 A 1 \nATOM 374 C C . LEU A 1 90 ? 35.938 -20.189 -1.860 1.00 45.78 44 A 1 \nATOM 375 O O . LEU A 1 90 ? 34.768 -20.584 -1.869 1.00 46.09 44 A 1 \nATOM 376 C CB . LEU A 1 90 ? 37.737 -21.770 -2.449 1.00 44.11 44 A 1 \nATOM 377 C CG . LEU A 1 90 ? 38.760 -22.879 -2.256 1.00 41.61 44 A 1 \nATOM 378 C CD1 . LEU A 1 90 ? 39.020 -23.504 -3.631 1.00 41.06 44 A 1 \nATOM 379 C CD2 . LEU A 1 90 ? 40.059 -22.373 -1.638 1.00 42.73 44 A 1 \nATOM 380 N N . GLY A 1 91 ? 36.307 -19.011 -2.367 1.00 47.44 45 A 1 \nATOM 381 C CA . GLY A 1 91 ? 35.326 -18.138 -3.008 1.00 48.81 45 A 1 \nATOM 382 C C . GLY A 1 91 ? 35.185 -16.809 -2.302 1.00 49.59 45 A 1 \nATOM 383 O O . GLY A 1 91 ? 34.750 -15.826 -2.905 1.00 50.52 45 A 1 \nATOM 384 N N . GLY A 1 92 ? 35.555 -16.772 -1.028 1.00 49.25 46 A 1 \nATOM 385 C CA . GLY A 1 92 ? 35.496 -15.543 -0.252 1.00 49.41 46 A 1 \nATOM 386 C C . GLY A 1 92 ? 36.654 -14.613 -0.541 1.00 49.51 46 A 1 \nATOM 387 O O . GLY A 1 92 ? 37.357 -14.773 -1.536 1.00 49.94 46 A 1 \nATOM 388 N N . LYS A 1 93 ? 36.842 -13.626 0.329 1.00 49.77 47 A 1 \nATOM 389 C CA . LYS A 1 93 ? 37.928 -12.656 0.166 1.00 49.69 47 A 1 \nATOM 390 C C . LYS A 1 93 ? 39.205 -13.094 0.900 1.00 48.68 47 A 1 \nATOM 391 O O . LYS A 1 93 ? 40.274 -12.523 0.676 1.00 48.73 47 A 1 \nATOM 392 C CB . LYS A 1 93 ? 37.480 -11.277 0.655 1.00 50.60 47 A 1 \nATOM 393 C CG . LYS A 1 93 ? 36.267 -10.681 -0.074 1.00 52.52 47 A 1 \nATOM 394 C CD . LYS A 1 93 ? 35.329 -9.929 0.908 1.00 56.21 47 A 1 \nATOM 395 C CE . LYS A 1 93 ? 34.060 -10.745 1.252 1.00 57.13 47 A 1 \nATOM 396 N NZ . LYS A 1 93 ? 33.584 -10.572 2.675 1.00 56.81 47 A 1 \nATOM 397 N N . TYR A 1 94 ? 39.071 -14.111 1.764 1.00 47.34 48 A 1 \nATOM 398 C CA . TYR A 1 94 ? 40.155 -14.658 2.602 1.00 45.49 48 A 1 \nATOM 399 C C . TYR A 1 94 ? 40.766 -13.619 3.550 1.00 45.12 48 A 1 \nATOM 400 O O . TYR A 1 94 ? 41.950 -13.691 3.898 1.00 44.62 48 A 1 \nATOM 401 C CB . TYR A 1 94 ? 41.243 -15.350 1.765 1.00 45.53 48 A 1 \nATOM 402 C CG . TYR A 1 94 ? 40.703 -16.257 0.667 1.00 45.15 48 A 1 \nATOM 403 C CD1 . TYR A 1 94 ? 40.136 -17.489 0.971 1.00 43.29 48 A 1 \nATOM 404 C CD2 . TYR A 1 94 ? 40.761 -15.871 -0.676 1.00 45.10 48 A 1 \nATOM 405 C CE1 . TYR A 1 94 ? 39.632 -18.317 -0.027 1.00 45.98 48 A 1 \nATOM 406 C CE2 . TYR A 1 94 ? 40.269 -16.692 -1.687 1.00 45.70 48 A 1 \nATOM 407 C CZ . TYR A 1 94 ? 39.701 -17.914 -1.351 1.00 45.35 48 A 1 \nATOM 408 O OH . TYR A 1 94 ? 39.212 -18.738 -2.324 1.00 45.91 48 A 1 \nATOM 409 N N . ASN A 1 95 ? 39.956 -12.658 3.980 1.00 43.90 49 A 1 \nATOM 410 C CA . ASN A 1 95 ? 40.483 -11.596 4.818 1.00 43.75 49 A 1 \nATOM 411 C C . ASN A 1 95 ? 41.111 -12.092 6.120 1.00 42.50 49 A 1 \nATOM 412 O O . ASN A 1 95 ? 42.191 -11.640 6.484 1.00 42.86 49 A 1 \nATOM 413 C CB . ASN A 1 95 ? 39.451 -10.490 5.041 1.00 44.09 49 A 1 \nATOM 414 C CG . ASN A 1 95 ? 39.331 -9.563 3.834 1.00 46.82 49 A 1 \nATOM 415 O OD1 . ASN A 1 95 ? 40.328 -9.070 3.321 1.00 49.91 49 A 1 \nATOM 416 N ND2 . ASN A 1 95 ? 38.110 -9.360 3.353 1.00 49.90 49 A 1 \nATOM 417 N N . ARG A 1 96 ? 40.454 -13.040 6.791 1.00 41.32 50 A 1 \nATOM 418 C CA . ARG A 1 96 ? 41.022 -13.694 7.985 1.00 40.57 50 A 1 \nATOM 419 C C . ARG A 1 96 ? 42.375 -14.368 7.714 1.00 40.29 50 A 1 \nATOM 420 O O . ARG A 1 96 ? 43.354 -14.094 8.410 1.00 39.84 50 A 1 \nATOM 421 C CB . ARG A 1 96 ? 40.027 -14.688 8.589 1.00 40.15 50 A 1 \nATOM 422 C CG . ARG A 1 96 ? 38.917 -14.017 9.390 1.00 40.68 50 A 1 \nATOM 423 C CD . ARG A 1 96 ? 37.764 -14.968 9.629 1.00 42.78 50 A 1 \nATOM 424 N NE . ARG A 1 96 ? 36.525 -14.274 9.974 1.00 43.09 50 A 1 \nATOM 425 C CZ . ARG A 1 96 ? 35.597 -13.886 9.099 1.00 45.40 50 A 1 \nATOM 426 N NH1 . ARG A 1 96 ? 35.753 -14.095 7.787 1.00 46.55 50 A 1 \nATOM 427 N NH2 . ARG A 1 96 ? 34.512 -13.262 9.534 1.00 44.75 50 A 1 \nATOM 428 N N . GLY A 1 97 ? 42.432 -15.234 6.701 1.00 39.06 51 A 1 \nATOM 429 C CA . GLY A 1 97 ? 43.655 -15.977 6.401 1.00 39.59 51 A 1 \nATOM 430 C C . GLY A 1 97 ? 44.809 -15.078 5.988 1.00 39.98 51 A 1 \nATOM 431 O O . GLY A 1 97 ? 45.945 -15.236 6.460 1.00 39.63 51 A 1 \nATOM 432 N N . LEU A 1 98 ? 44.505 -14.122 5.111 1.00 39.71 52 A 1 \nATOM 433 C CA . LEU A 1 98 ? 45.494 -13.177 4.603 1.00 40.21 52 A 1 \nATOM 434 C C . LEU A 1 98 ? 46.064 -12.287 5.702 1.00 40.22 52 A 1 \nATOM 435 O O . LEU A 1 98 ? 47.227 -11.917 5.661 1.00 40.03 52 A 1 \nATOM 436 C CB . LEU A 1 98 ? 44.903 -12.337 3.456 1.00 40.19 52 A 1 \nATOM 437 C CG . LEU A 1 98 ? 44.755 -13.145 2.160 1.00 41.26 52 A 1 \nATOM 438 C CD1 . LEU A 1 98 ? 43.935 -12.416 1.067 1.00 41.76 52 A 1 \nATOM 439 C CD2 . LEU A 1 98 ? 46.133 -13.557 1.640 1.00 41.30 52 A 1 \nATOM 440 N N . THR A 1 99 ? 45.233 -11.948 6.683 1.00 39.76 53 A 1 \nATOM 441 C CA . THR A 1 99 ? 45.678 -11.146 7.817 1.00 39.59 53 A 1 \nATOM 442 C C . THR A 1 99 ? 46.814 -11.848 8.569 1.00 39.63 53 A 1 \nATOM 443 O O . THR A 1 99 ? 47.762 -11.198 8.949 1.00 39.72 53 A 1 \nATOM 444 C CB . THR A 1 99 ? 44.493 -10.752 8.739 1.00 39.75 53 A 1 \nATOM 445 O OG1 . THR A 1 99 ? 43.598 -9.882 8.012 1.00 40.38 53 A 1 \nATOM 446 C CG2 . THR A 1 99 ? 44.965 -10.038 9.999 1.00 38.49 53 A 1 \nATOM 447 N N . VAL A 1 100 ? 46.732 -13.172 8.737 1.00 39.24 54 A 1 \nATOM 448 C CA . VAL A 1 100 ? 47.812 -13.944 9.379 1.00 39.10 54 A 1 \nATOM 449 C C . VAL A 1 100 ? 49.126 -13.787 8.625 1.00 39.71 54 A 1 \nATOM 450 O O . VAL A 1 100 ? 50.161 -13.516 9.230 1.00 38.61 54 A 1 \nATOM 451 C CB . VAL A 1 100 ? 47.462 -15.437 9.523 1.00 38.66 54 A 1 \nATOM 452 C CG1 . VAL A 1 100 ? 48.540 -16.178 10.293 1.00 38.05 54 A 1 \nATOM 453 C CG2 . VAL A 1 100 ? 46.140 -15.579 10.250 1.00 38.15 54 A 1 \nATOM 454 N N . ILE A 1 101 ? 49.066 -13.921 7.303 1.00 39.96 55 A 1 \nATOM 455 C CA . ILE A 1 101 ? 50.239 -13.752 6.452 1.00 41.20 55 A 1 \nATOM 456 C C . ILE A 1 101 ? 50.854 -12.357 6.592 1.00 41.89 55 A 1 \nATOM 457 O O . ILE A 1 101 ? 52.060 -12.231 6.805 1.00 42.81 55 A 1 \nATOM 458 C CB . ILE A 1 101 ? 49.915 -14.075 4.982 1.00 40.91 55 A 1 \nATOM 459 C CG1 . ILE A 1 101 ? 49.524 -15.551 4.853 1.00 40.72 55 A 1 \nATOM 460 C CG2 . ILE A 1 101 ? 51.117 -13.741 4.087 1.00 42.21 55 A 1 \nATOM 461 C CD1 . ILE A 1 101 ? 48.752 -15.904 3.582 1.00 42.60 55 A 1 \nATOM 462 N N . ASP A 1 102 ? 50.022 -11.321 6.520 1.00 42.53 56 A 1 \nATOM 463 C CA . ASP A 1 102 ? 50.498 -9.939 6.607 1.00 43.14 56 A 1 \nATOM 464 C C . ASP A 1 102 ? 51.093 -9.604 7.961 1.00 43.75 56 A 1 \nATOM 465 O O . ASP A 1 102 ? 52.090 -8.891 8.030 1.00 43.65 56 A 1 \nATOM 466 C CB . ASP A 1 102 ? 49.392 -8.921 6.268 1.00 42.89 56 A 1 \nATOM 467 C CG . ASP A 1 102 ? 49.933 -7.500 6.164 1.00 43.42 56 A 1 \nATOM 468 O OD1 . ASP A 1 102 ? 50.750 -7.243 5.252 1.00 43.33 56 A 1 \nATOM 469 O OD2 . ASP A 1 102 ? 49.596 -6.658 7.026 1.00 43.60 56 A 1 \nATOM 470 N N . VAL A 1 103 ? 50.480 -10.104 9.031 1.00 44.73 57 A 1 \nATOM 471 C CA . VAL A 1 103 ? 51.020 -9.917 10.382 1.00 46.08 57 A 1 \nATOM 472 C C . VAL A 1 103 ? 52.403 -10.554 10.493 1.00 47.47 57 A 1 \nATOM 473 O O . VAL A 1 103 ? 53.335 -9.930 11.008 1.00 47.45 57 A 1 \nATOM 474 C CB . VAL A 1 103 ? 50.067 -10.474 11.475 1.00 46.19 57 A 1 \nATOM 475 C CG1 . VAL A 1 103 ? 50.692 -10.361 12.875 1.00 45.88 57 A 1 \nATOM 476 C CG2 . VAL A 1 103 ? 48.730 -9.737 11.444 1.00 44.87 57 A 1 \nATOM 477 N N . ALA A 1 104 ? 52.537 -11.780 9.988 1.00 49.36 58 A 1 \nATOM 478 C CA . ALA A 1 104 ? 53.812 -12.510 10.030 1.00 51.04 58 A 1 \nATOM 479 C C . ALA A 1 104 ? 54.886 -11.818 9.208 1.00 52.65 58 A 1 \nATOM 480 O O . ALA A 1 104 ? 56.006 -11.601 9.695 1.00 53.17 58 A 1 \nATOM 481 C CB . ALA A 1 104 ? 53.627 -13.942 9.552 1.00 50.95 58 A 1 \nATOM 482 N N . GLU A 1 105 ? 54.549 -11.481 7.963 1.00 54.29 59 A 1 \nATOM 483 C CA . GLU A 1 105 ? 55.456 -10.759 7.080 1.00 56.24 59 A 1 \nATOM 484 C C . GLU A 1 105 ? 55.923 -9.440 7.695 1.00 57.27 59 A 1 \nATOM 485 O O . GLU A 1 105 ? 57.088 -9.064 7.540 1.00 57.55 59 A 1 \nATOM 486 C CB . GLU A 1 105 ? 54.814 -10.499 5.721 1.00 56.30 59 A 1 \nATOM 487 C CG . GLU A 1 105 ? 55.823 -10.052 4.662 1.00 58.48 59 A 1 \nATOM 488 C CD . GLU A 1 105 ? 55.201 -9.177 3.588 1.00 60.43 59 A 1 \nATOM 489 O OE1 . GLU A 1 105 ? 54.577 -8.153 3.936 1.00 59.60 59 A 1 \nATOM 490 O OE2 . GLU A 1 105 ? 55.353 -9.511 2.389 1.00 62.31 59 A 1 \nATOM 491 N N . SER A 1 106 ? 55.025 -8.764 8.413 1.00 58.58 60 A 1 \nATOM 492 C CA . SER A 1 106 ? 55.335 -7.484 9.051 1.00 60.09 60 A 1 \nATOM 493 C C . SER A 1 106 ? 56.284 -7.614 10.241 1.00 61.41 60 A 1 \nATOM 494 O O . SER A 1 106 ? 56.963 -6.650 10.609 1.00 61.65 60 A 1 \nATOM 495 C CB . SER A 1 106 ? 54.048 -6.764 9.477 1.00 59.86 60 A 1 \nATOM 496 O OG . SER A 1 106 ? 53.278 -6.380 8.343 1.00 59.30 60 A 1 \nATOM 497 N N . LEU A 1 107 ? 56.330 -8.804 10.837 1.00 63.16 61 A 1 \nATOM 498 C CA . LEU A 1 107 ? 57.100 -9.033 12.058 1.00 64.86 61 A 1 \nATOM 499 C C . LEU A 1 107 ? 58.453 -9.717 11.864 1.00 66.15 61 A 1 \nATOM 500 O O . LEU A 1 107 ? 59.200 -9.883 12.838 1.00 66.63 61 A 1 \nATOM 501 C CB . LEU A 1 107 ? 56.276 -9.840 13.058 1.00 64.70 61 A 1 \nATOM 502 C CG . LEU A 1 107 ? 55.117 -9.151 13.774 1.00 65.14 61 A 1 \nATOM 503 C CD1 . LEU A 1 107 ? 54.165 -10.210 14.296 1.00 65.40 61 A 1 \nATOM 504 C CD2 . LEU A 1 107 ? 55.602 -8.262 14.909 1.00 65.83 61 A 1 \nATOM 505 N N . LEU A 1 108 ? 58.778 -10.131 10.641 1.00 67.72 62 A 1 \nATOM 506 C CA . LEU A 1 108 ? 60.054 -10.833 10.435 1.00 69.61 62 A 1 \nATOM 507 C C . LEU A 1 108 ? 61.277 -9.892 10.360 1.00 70.66 62 A 1 \nATOM 508 O O . LEU A 1 108 ? 61.686 -9.436 9.282 1.00 70.90 62 A 1 \nATOM 509 C CB . LEU A 1 108 ? 59.992 -11.871 9.295 1.00 69.52 62 A 1 \nATOM 510 C CG . LEU A 1 108 ? 59.056 -11.736 8.100 1.00 69.52 62 A 1 \nATOM 511 C CD1 . LEU A 1 108 ? 59.719 -10.945 6.995 1.00 70.50 62 A 1 \nATOM 512 C CD2 . LEU A 1 108 ? 58.686 -13.120 7.608 1.00 69.73 62 A 1 \nATOM 513 N N . SER A 1 109 ? 61.827 -9.614 11.543 1.00 71.86 63 A 1 \nATOM 514 C CA . SER A 1 109 ? 62.965 -8.707 11.762 1.00 73.07 63 A 1 \nATOM 515 C C . SER A 1 109 ? 63.083 -8.380 13.253 1.00 73.74 63 A 1 \nATOM 516 O O . SER A 1 109 ? 64.189 -8.341 13.813 1.00 73.79 63 A 1 \nATOM 517 C CB . SER A 1 109 ? 62.840 -7.402 10.951 1.00 73.29 63 A 1 \nATOM 518 O OG . SER A 1 109 ? 61.598 -6.747 11.173 1.00 73.52 63 A 1 \nATOM 519 N N . LEU A 1 110 ? 61.929 -8.158 13.882 1.00 74.43 64 A 1 \nATOM 520 C CA . LEU A 1 110 ? 61.848 -7.715 15.273 1.00 75.09 64 A 1 \nATOM 521 C C . LEU A 1 110 ? 61.073 -8.735 16.113 1.00 75.20 64 A 1 \nATOM 522 O O . LEU A 1 110 ? 59.845 -8.665 16.232 1.00 75.36 64 A 1 \nATOM 523 C CB . LEU A 1 110 ? 61.184 -6.331 15.342 1.00 75.22 64 A 1 \nATOM 524 C CG . LEU A 1 110 ? 61.475 -5.363 16.499 1.00 76.12 64 A 1 \nATOM 525 C CD1 . LEU A 1 110 ? 60.866 -3.982 16.209 1.00 76.03 64 A 1 \nATOM 526 C CD2 . LEU A 1 110 ? 60.991 -5.901 17.857 1.00 76.53 64 A 1 \nATOM 527 N N . ASP A 1 120 ? 68.396 -16.280 8.430 1.00 72.97 74 A 1 \nATOM 528 C CA . ASP A 1 120 ? 68.556 -16.808 7.076 1.00 72.96 74 A 1 \nATOM 529 C C . ASP A 1 120 ? 67.203 -16.832 6.363 1.00 72.73 74 A 1 \nATOM 530 O O . ASP A 1 120 ? 66.158 -16.934 7.011 1.00 73.12 74 A 1 \nATOM 531 C CB . ASP A 1 120 ? 69.177 -18.214 7.117 1.00 72.96 74 A 1 \nATOM 532 C CG . ASP A 1 120 ? 69.486 -18.777 5.722 1.00 73.34 74 A 1 \nATOM 533 O OD1 . ASP A 1 120 ? 69.638 -17.989 4.761 1.00 73.41 74 A 1 \nATOM 534 O OD2 . ASP A 1 120 ? 69.581 -20.020 5.594 1.00 73.48 74 A 1 \nATOM 535 N N . GLY A 1 121 ? 67.231 -16.733 5.032 1.00 72.25 75 A 1 \nATOM 536 C CA . GLY A 1 121 ? 66.019 -16.743 4.206 1.00 71.13 75 A 1 \nATOM 537 C C . GLY A 1 121 ? 65.194 -18.007 4.356 1.00 70.49 75 A 1 \nATOM 538 O O . GLY A 1 121 ? 64.043 -18.062 3.910 1.00 70.37 75 A 1 \nATOM 539 N N . ALA A 1 122 ? 65.793 -19.022 4.980 1.00 69.66 76 A 1 \nATOM 540 C CA . ALA A 1 122 ? 65.096 -20.251 5.353 1.00 68.88 76 A 1 \nATOM 541 C C . ALA A 1 122 ? 64.024 -19.979 6.411 1.00 68.42 76 A 1 \nATOM 542 O O . ALA A 1 122 ? 62.970 -20.626 6.419 1.00 68.34 76 A 1 \nATOM 543 C CB . ALA A 1 122 ? 66.086 -21.295 5.855 1.00 69.00 76 A 1 \nATOM 544 N N . ARG A 1 123 ? 64.298 -19.018 7.290 1.00 67.43 77 A 1 \nATOM 545 C CA . ARG A 1 123 ? 63.365 -18.643 8.345 1.00 66.93 77 A 1 \nATOM 546 C C . ARG A 1 123 ? 62.143 -17.916 7.783 1.00 65.89 77 A 1 \nATOM 547 O O . ARG A 1 123 ? 61.014 -18.204 8.175 1.00 65.52 77 A 1 \nATOM 548 C CB . ARG A 1 123 ? 64.054 -17.785 9.408 1.00 67.03 77 A 1 \nATOM 549 C CG . ARG A 1 123 ? 63.225 -17.626 10.657 1.00 68.68 77 A 1 \nATOM 550 C CD . ARG A 1 123 ? 63.750 -16.560 11.584 1.00 70.40 77 A 1 \nATOM 551 N NE . ARG A 1 123 ? 62.797 -16.327 12.668 1.00 72.41 77 A 1 \nATOM 552 C CZ . ARG A 1 123 ? 61.869 -15.372 12.662 1.00 72.85 77 A 1 \nATOM 553 N NH1 . ARG A 1 123 ? 61.768 -14.537 11.630 1.00 72.39 77 A 1 \nATOM 554 N NH2 . ARG A 1 123 ? 61.047 -15.244 13.695 1.00 73.03 77 A 1 \nATOM 555 N N . ARG A 1 124 ? 62.384 -16.977 6.870 1.00 64.90 78 A 1 \nATOM 556 C CA . ARG A 1 124 ? 61.315 -16.249 6.196 1.00 64.13 78 A 1 \nATOM 557 C C . ARG A 1 124 ? 60.391 -17.196 5.431 1.00 62.80 78 A 1 \nATOM 558 O O . ARG A 1 124 ? 59.172 -17.014 5.430 1.00 62.67 78 A 1 \nATOM 559 C CB . ARG A 1 124 ? 61.889 -15.189 5.252 1.00 64.19 78 A 1 \nATOM 560 C CG . ARG A 1 124 ? 60.830 -14.266 4.670 1.00 65.33 78 A 1 \nATOM 561 C CD . ARG A 1 124 ? 61.352 -13.355 3.559 1.00 65.48 78 A 1 \nATOM 562 N NE . ARG A 1 124 ? 60.239 -12.684 2.875 1.00 68.28 78 A 1 \nATOM 563 C CZ . ARG A 1 124 ? 59.627 -13.147 1.784 1.00 69.17 78 A 1 \nATOM 564 N NH1 . ARG A 1 124 ? 60.014 -14.294 1.224 1.00 69.01 78 A 1 \nATOM 565 N NH2 . ARG A 1 124 ? 58.625 -12.459 1.247 1.00 68.52 78 A 1 \nATOM 566 N N . LYS A 1 125 ? 60.976 -18.203 4.787 1.00 61.19 79 A 1 \nATOM 567 C CA . LYS A 1 125 ? 60.216 -19.220 4.064 1.00 59.72 79 A 1 \nATOM 568 C C . LYS A 1 125 ? 59.357 -20.060 5.014 1.00 58.48 79 A 1 \nATOM 569 O O . LYS A 1 125 ? 58.182 -20.326 4.736 1.00 58.08 79 A 1 \nATOM 570 C CB . LYS A 1 125 ? 61.159 -20.131 3.273 1.00 60.23 79 A 1 \nATOM 571 C CG . LYS A 1 125 ? 60.459 -21.038 2.266 1.00 60.96 79 A 1 \nATOM 572 C CD . LYS A 1 125 ? 61.392 -22.129 1.756 1.00 62.66 79 A 1 \nATOM 573 C CE . LYS A 1 125 ? 60.779 -22.880 0.573 1.00 64.13 79 A 1 \nATOM 574 N NZ . LYS A 1 125 ? 61.715 -23.913 0.010 1.00 65.26 79 A 1 \nATOM 575 N N . ARG A 1 126 ? 59.959 -20.481 6.125 1.00 56.47 80 A 1 \nATOM 576 C CA . ARG A 1 126 ? 59.279 -21.284 7.134 1.00 55.21 80 A 1 \nATOM 577 C C . ARG A 1 126 ? 58.174 -20.486 7.845 1.00 53.73 80 A 1 \nATOM 578 O O . ARG A 1 126 ? 57.038 -20.960 7.950 1.00 53.35 80 A 1 \nATOM 579 C CB . ARG A 1 126 ? 60.313 -21.846 8.125 1.00 55.76 80 A 1 \nATOM 580 C CG . ARG A 1 126 ? 59.811 -22.912 9.085 1.00 57.20 80 A 1 \nATOM 581 C CD . ARG A 1 126 ? 59.731 -22.366 10.500 1.00 59.78 80 A 1 \nATOM 582 N NE . ARG A 1 126 ? 61.009 -21.797 10.919 1.00 62.30 80 A 1 \nATOM 583 C CZ . ARG A 1 126 ? 61.171 -20.980 11.958 1.00 64.97 80 A 1 \nATOM 584 N NH1 . ARG A 1 126 ? 60.129 -20.620 12.707 1.00 65.02 80 A 1 \nATOM 585 N NH2 . ARG A 1 126 ? 62.384 -20.521 12.249 1.00 65.41 80 A 1 \nATOM 586 N N . VAL A 1 127 ? 58.502 -19.276 8.307 1.00 51.94 81 A 1 \nATOM 587 C CA . VAL A 1 127 ? 57.525 -18.421 8.987 1.00 50.20 81 A 1 \nATOM 588 C C . VAL A 1 127 ? 56.309 -18.134 8.078 1.00 49.16 81 A 1 \nATOM 589 O O . VAL A 1 127 ? 55.168 -18.275 8.516 1.00 48.49 81 A 1 \nATOM 590 C CB . VAL A 1 127 ? 58.151 -17.104 9.552 1.00 50.36 81 A 1 \nATOM 591 C CG1 . VAL A 1 127 ? 57.061 -16.109 9.996 1.00 49.54 81 A 1 \nATOM 592 C CG2 . VAL A 1 127 ? 59.093 -17.408 10.719 1.00 49.52 81 A 1 \nATOM 593 N N . LEU A 1 128 ? 56.555 -17.774 6.816 1.00 47.54 82 A 1 \nATOM 594 C CA . LEU A 1 128 ? 55.458 -17.493 5.888 1.00 46.20 82 A 1 \nATOM 595 C C . LEU A 1 128 ? 54.637 -18.727 5.526 1.00 44.83 82 A 1 \nATOM 596 O O . LEU A 1 128 ? 53.427 -18.625 5.319 1.00 45.09 82 A 1 \nATOM 597 C CB . LEU A 1 128 ? 55.934 -16.733 4.631 1.00 46.44 82 A 1 \nATOM 598 C CG . LEU A 1 128 ? 56.519 -15.326 4.851 1.00 47.84 82 A 1 \nATOM 599 C CD1 . LEU A 1 128 ? 56.827 -14.617 3.538 1.00 50.71 82 A 1 \nATOM 600 C CD2 . LEU A 1 128 ? 55.628 -14.436 5.731 1.00 50.25 82 A 1 \nATOM 601 N N . HIS A 1 129 ? 55.271 -19.890 5.441 1.00 43.09 83 A 1 \nATOM 602 C CA . HIS A 1 129 ? 54.515 -21.122 5.223 1.00 41.81 83 A 1 \nATOM 603 C C . HIS A 1 129 ? 53.627 -21.467 6.429 1.00 40.95 83 A 1 \nATOM 604 O O . HIS A 1 129 ? 52.481 -21.896 6.263 1.00 39.73 83 A 1 \nATOM 605 C CB . HIS A 1 129 ? 55.422 -22.300 4.894 1.00 41.26 83 A 1 \nATOM 606 C CG . HIS A 1 129 ? 54.677 -23.492 4.384 1.00 42.44 83 A 1 \nATOM 607 N ND1 . HIS A 1 129 ? 54.093 -24.418 5.220 1.00 42.48 83 A 1 \nATOM 608 C CD2 . HIS A 1 129 ? 54.375 -23.882 3.121 1.00 41.70 83 A 1 \nATOM 609 C CE1 . HIS A 1 129 ? 53.478 -25.336 4.497 1.00 41.50 83 A 1 \nATOM 610 N NE2 . HIS A 1 129 ? 53.638 -25.036 3.220 1.00 42.85 83 A 1 \nATOM 611 N N . ASP A 1 130 ? 54.175 -21.301 7.630 1.00 39.34 84 A 1 \nATOM 612 C CA . ASP A 1 130 ? 53.415 -21.492 8.858 1.00 38.78 84 A 1 \nATOM 613 C C . ASP A 1 130 ? 52.217 -20.541 8.876 1.00 38.63 84 A 1 \nATOM 614 O O . ASP A 1 130 ? 51.134 -20.928 9.295 1.00 38.29 84 A 1 \nATOM 615 C CB . ASP A 1 130 ? 54.290 -21.220 10.089 1.00 38.67 84 A 1 \nATOM 616 C CG . ASP A 1 130 ? 55.352 -22.306 10.331 1.00 37.75 84 A 1 \nATOM 617 O OD1 . ASP A 1 130 ? 55.347 -23.367 9.662 1.00 37.73 84 A 1 \nATOM 618 O OD2 . ASP A 1 130 ? 56.188 -22.089 11.229 1.00 41.89 84 A 1 \nATOM 619 N N . ALA A 1 131 ? 52.425 -19.296 8.439 1.00 38.63 85 A 1 \nATOM 620 C CA . ALA A 1 131 ? 51.362 -18.304 8.442 1.00 38.80 85 A 1 \nATOM 621 C C . ALA A 1 131 ? 50.259 -18.732 7.475 1.00 38.85 85 A 1 \nATOM 622 O O . ALA A 1 131 ? 49.061 -18.609 7.778 1.00 39.36 85 A 1 \nATOM 623 C CB . ALA A 1 131 ? 51.907 -16.913 8.097 1.00 38.63 85 A 1 \nATOM 624 N N . CYS A 1 132 ? 50.668 -19.263 6.325 1.00 38.75 86 A 1 \nATOM 625 C CA . CYS A 1 132 ? 49.721 -19.807 5.363 1.00 38.75 86 A 1 \nATOM 626 C C . CYS A 1 132 ? 48.861 -20.938 5.941 1.00 37.97 86 A 1 \nATOM 627 O O . CYS A 1 132 ? 47.648 -20.937 5.753 1.00 37.09 86 A 1 \nATOM 628 C CB . CYS A 1 132 ? 50.448 -20.265 4.106 1.00 38.99 86 A 1 \nATOM 629 S SG . CYS A 1 132 ? 51.059 -18.909 3.105 1.00 42.79 86 A 1 \nATOM 630 N N . VAL A 1 133 ? 49.476 -21.903 6.631 1.00 37.06 87 A 1 \nATOM 631 C CA . VAL A 1 133 ? 48.702 -22.997 7.257 1.00 37.32 87 A 1 \nATOM 632 C C . VAL A 1 133 ? 47.717 -22.460 8.324 1.00 37.42 87 A 1 \nATOM 633 O O . VAL A 1 133 ? 46.516 -22.815 8.307 1.00 37.39 87 A 1 \nATOM 634 C CB . VAL A 1 133 ? 49.602 -24.142 7.825 1.00 37.16 87 A 1 \nATOM 635 C CG1 . VAL A 1 133 ? 48.773 -25.241 8.509 1.00 37.45 87 A 1 \nATOM 636 C CG2 . VAL A 1 133 ? 50.456 -24.757 6.727 1.00 37.52 87 A 1 \nATOM 637 N N . CYS A 1 134 ? 48.207 -21.583 9.201 1.00 37.59 88 A 1 \nATOM 638 C CA . CYS A 1 134 ? 47.350 -20.942 10.212 1.00 38.54 88 A 1 \nATOM 639 C C . CYS A 1 134 ? 46.188 -20.176 9.539 1.00 38.15 88 A 1 \nATOM 640 O O . CYS A 1 134 ? 45.063 -20.184 10.026 1.00 38.57 88 A 1 \nATOM 641 C CB . CYS A 1 134 ? 48.155 -19.985 11.100 1.00 38.58 88 A 1 \nATOM 642 S SG . CYS A 1 134 ? 49.206 -20.749 12.438 1.00 41.91 88 A 1 \nATOM 643 N N . GLY A 1 135 ? 46.490 -19.502 8.429 1.00 37.86 89 A 1 \nATOM 644 C CA . GLY A 1 135 ? 45.502 -18.758 7.667 1.00 37.51 89 A 1 \nATOM 645 C C . GLY A 1 135 ? 44.397 -19.675 7.188 1.00 37.37 89 A 1 \nATOM 646 O O . GLY A 1 135 ? 43.230 -19.336 7.320 1.00 37.77 89 A 1 \nATOM 647 N N . TRP A 1 136 ? 44.774 -20.844 6.659 1.00 37.02 90 A 1 \nATOM 648 C CA . TRP A 1 136 ? 43.808 -21.910 6.340 1.00 37.20 90 A 1 \nATOM 649 C C . TRP A 1 136 ? 43.090 -22.530 7.542 1.00 36.33 90 A 1 \nATOM 650 O O . TRP A 1 136 ? 41.910 -22.839 7.446 1.00 36.54 90 A 1 \nATOM 651 C CB . TRP A 1 136 ? 44.409 -22.991 5.428 1.00 37.56 90 A 1 \nATOM 652 C CG . TRP A 1 136 ? 44.603 -22.489 4.021 1.00 39.47 90 A 1 \nATOM 653 C CD1 . TRP A 1 136 ? 45.793 -22.331 3.363 1.00 39.38 90 A 1 \nATOM 654 C CD2 . TRP A 1 136 ? 43.576 -22.043 3.113 1.00 38.64 90 A 1 \nATOM 655 N NE1 . TRP A 1 136 ? 45.570 -21.823 2.095 1.00 40.83 90 A 1 \nATOM 656 C CE2 . TRP A 1 136 ? 44.221 -21.633 1.920 1.00 39.41 90 A 1 \nATOM 657 C CE3 . TRP A 1 136 ? 42.176 -21.946 3.193 1.00 40.26 90 A 1 \nATOM 658 C CZ2 . TRP A 1 136 ? 43.510 -21.133 0.809 1.00 39.89 90 A 1 \nATOM 659 C CZ3 . TRP A 1 136 ? 41.468 -21.455 2.093 1.00 39.36 90 A 1 \nATOM 660 C CH2 . TRP A 1 136 ? 42.144 -21.049 0.913 1.00 38.93 90 A 1 \nATOM 661 N N . MET A 1 137 ? 43.773 -22.698 8.675 1.00 35.56 91 A 1 \nATOM 662 C CA . MET A 1 137 ? 43.065 -23.068 9.928 1.00 34.85 91 A 1 \nATOM 663 C C . MET A 1 137 ? 41.868 -22.139 10.210 1.00 33.99 91 A 1 \nATOM 664 O O . MET A 1 137 ? 40.760 -22.614 10.463 1.00 34.18 91 A 1 \nATOM 665 C CB . MET A 1 137 ? 44.036 -23.093 11.111 1.00 34.93 91 A 1 \nATOM 666 C CG . MET A 1 137 ? 44.900 -24.357 11.154 1.00 35.00 91 A 1 \nATOM 667 S SD . MET A 1 137 ? 46.209 -24.165 12.379 1.00 36.79 91 A 1 \nATOM 668 C CE . MET A 1 137 ? 45.298 -24.526 13.864 1.00 35.27 91 A 1 \nATOM 669 N N . ILE A 1 138 ? 42.067 -20.825 10.102 1.00 33.50 92 A 1 \nATOM 670 C CA . ILE A 1 138 ? 40.966 -19.868 10.352 1.00 33.14 92 A 1 \nATOM 671 C C . ILE A 1 138 ? 39.910 -19.871 9.262 1.00 32.58 92 A 1 \nATOM 672 O O . ILE A 1 138 ? 38.727 -19.746 9.565 1.00 32.30 92 A 1 \nATOM 673 C CB . ILE A 1 138 ? 41.444 -18.420 10.533 1.00 33.82 92 A 1 \nATOM 674 C CG1 . ILE A 1 138 ? 42.464 -18.350 11.656 1.00 35.80 92 A 1 \nATOM 675 C CG2 . ILE A 1 138 ? 40.253 -17.481 10.899 1.00 33.64 92 A 1 \nATOM 676 C CD1 . ILE A 1 138 ? 43.212 -17.023 11.707 1.00 38.51 92 A 1 \nATOM 677 N N . GLU A 1 139 ? 40.341 -20.010 8.002 1.00 32.46 93 A 1 \nATOM 678 C CA . GLU A 1 139 ? 39.395 -20.070 6.868 1.00 32.17 93 A 1 \nATOM 679 C C . GLU A 1 139 ? 38.584 -21.346 6.855 1.00 31.30 93 A 1 \nATOM 680 O O . GLU A 1 139 ? 37.421 -21.325 6.473 1.00 32.01 93 A 1 \nATOM 681 C CB . GLU A 1 139 ? 40.116 -19.918 5.523 1.00 32.06 93 A 1 \nATOM 682 C CG . GLU A 1 139 ? 40.806 -18.546 5.346 1.00 33.26 93 A 1 \nATOM 683 C CD . GLU A 1 139 ? 39.819 -17.408 5.169 1.00 34.99 93 A 1 \nATOM 684 O OE1 . GLU A 1 139 ? 38.729 -17.653 4.612 1.00 34.41 93 A 1 \nATOM 685 O OE2 . GLU A 1 139 ? 40.126 -16.269 5.596 1.00 34.71 93 A 1 \nATOM 686 N N . PHE A 1 140 ? 39.210 -22.468 7.196 1.00 30.85 94 A 1 \nATOM 687 C CA . PHE A 1 140 ? 38.491 -23.723 7.425 1.00 31.10 94 A 1 \nATOM 688 C C . PHE A 1 140 ? 37.518 -23.638 8.620 1.00 31.48 94 A 1 \nATOM 689 O O . PHE A 1 140 ? 36.385 -24.177 8.568 1.00 30.49 94 A 1 \nATOM 690 C CB . PHE A 1 140 ? 39.467 -24.893 7.605 1.00 31.66 94 A 1 \nATOM 691 C CG . PHE A 1 140 ? 39.928 -25.556 6.310 1.00 32.50 94 A 1 \nATOM 692 C CD1 . PHE A 1 140 ? 40.597 -24.825 5.317 1.00 33.49 94 A 1 \nATOM 693 C CD2 . PHE A 1 140 ? 39.743 -26.934 6.123 1.00 33.83 94 A 1 \nATOM 694 C CE1 . PHE A 1 140 ? 41.053 -25.451 4.150 1.00 33.14 94 A 1 \nATOM 695 C CE2 . PHE A 1 140 ? 40.188 -27.573 4.947 1.00 34.07 94 A 1 \nATOM 696 C CZ . PHE A 1 140 ? 40.843 -26.819 3.964 1.00 32.88 94 A 1 \nATOM 697 N N . LEU A 1 141 ? 37.951 -22.961 9.693 1.00 31.34 95 A 1 \nATOM 698 C CA . LEU A 1 141 ? 37.104 -22.739 10.885 1.00 31.09 95 A 1 \nATOM 699 C C . LEU A 1 141 ? 35.873 -21.903 10.555 1.00 31.83 95 A 1 \nATOM 700 O O . LEU A 1 141 ? 34.780 -22.235 10.945 1.00 29.99 95 A 1 \nATOM 701 C CB . LEU A 1 141 ? 37.880 -22.046 12.004 1.00 31.20 95 A 1 \nATOM 702 C CG . LEU A 1 141 ? 37.103 -21.903 13.327 1.00 31.69 95 A 1 \nATOM 703 C CD1 . LEU A 1 141 ? 36.749 -23.285 13.905 1.00 32.08 95 A 1 \nATOM 704 C CD2 . LEU A 1 141 ? 37.917 -21.071 14.337 1.00 31.63 95 A 1 \nATOM 705 N N . GLN A 1 142 ? 36.072 -20.808 9.821 1.00 33.36 96 A 1 \nATOM 706 C CA . GLN A 1 142 ? 34.945 -20.037 9.344 1.00 33.97 96 A 1 \nATOM 707 C C . GLN A 1 142 ? 34.093 -20.801 8.319 1.00 33.34 96 A 1 \nATOM 708 O O . GLN A 1 142 ? 32.886 -20.673 8.312 1.00 32.77 96 A 1 \nATOM 709 C CB . GLN A 1 142 ? 35.388 -18.698 8.796 1.00 34.52 96 A 1 \nATOM 710 C CG . GLN A 1 142 ? 34.283 -17.639 9.075 1.00 41.17 96 A 1 \nATOM 711 C CD . GLN A 1 142 ? 33.930 -16.971 7.828 1.00 45.78 96 A 1 \nATOM 712 O OE1 . GLN A 1 142 ? 34.379 -17.410 6.766 1.00 52.71 96 A 1 \nATOM 713 N NE2 . GLN A 1 142 ? 33.153 -15.901 7.902 1.00 46.36 96 A 1 \nATOM 714 N N . ALA A 1 143 ? 34.722 -21.586 7.443 1.00 33.19 97 A 1 \nATOM 715 C CA . ALA A 1 143 ? 33.961 -22.508 6.603 1.00 32.96 97 A 1 \nATOM 716 C C . ALA A 1 143 ? 32.996 -23.370 7.419 1.00 32.52 97 A 1 \nATOM 717 O O . ALA A 1 143 ? 31.803 -23.488 7.085 1.00 31.85 97 A 1 \nATOM 718 C CB . ALA A 1 143 ? 34.888 -23.382 5.755 1.00 33.08 97 A 1 \nATOM 719 N N . HIS A 1 144 ? 33.514 -23.978 8.480 1.00 31.60 98 A 1 \nATOM 720 C CA . HIS A 1 144 ? 32.699 -24.729 9.439 1.00 30.70 98 A 1 \nATOM 721 C C . HIS A 1 144 ? 31.582 -23.861 10.027 1.00 31.24 98 A 1 \nATOM 722 O O . HIS A 1 144 ? 30.391 -24.238 9.963 1.00 30.95 98 A 1 \nATOM 723 C CB . HIS A 1 144 ? 33.609 -25.326 10.530 1.00 30.35 98 A 1 \nATOM 724 C CG . HIS A 1 144 ? 32.929 -25.562 11.847 1.00 30.04 98 A 1 \nATOM 725 N ND1 . HIS A 1 144 ? 32.146 -26.669 12.103 1.00 32.47 98 A 1 \nATOM 726 C CD2 . HIS A 1 144 ? 32.981 -24.863 13.008 1.00 30.82 98 A 1 \nATOM 727 C CE1 . HIS A 1 144 ? 31.702 -26.614 13.349 1.00 31.26 98 A 1 \nATOM 728 N NE2 . HIS A 1 144 ? 32.202 -25.531 13.920 1.00 29.59 98 A 1 \nATOM 729 N N . TYR A 1 145 ? 31.943 -22.690 10.548 1.00 31.25 99 A 1 \nATOM 730 C CA . TYR A 1 145 ? 30.919 -21.773 11.082 1.00 31.83 99 A 1 \nATOM 731 C C . TYR A 1 145 ? 29.824 -21.470 10.067 1.00 31.83 99 A 1 \nATOM 732 O O . TYR A 1 145 ? 28.652 -21.560 10.383 1.00 32.46 99 A 1 \nATOM 733 C CB . TYR A 1 145 ? 31.506 -20.450 11.595 1.00 31.26 99 A 1 \nATOM 734 C CG . TYR A 1 145 ? 32.456 -20.562 12.778 1.00 31.08 99 A 1 \nATOM 735 C CD1 . TYR A 1 145 ? 32.325 -21.587 13.710 1.00 30.16 99 A 1 \nATOM 736 C CD2 . TYR A 1 145 ? 33.461 -19.600 12.982 1.00 30.90 99 A 1 \nATOM 737 C CE1 . TYR A 1 145 ? 33.208 -21.688 14.819 1.00 27.98 99 A 1 \nATOM 738 C CE2 . TYR A 1 145 ? 34.346 -19.695 14.087 1.00 31.22 99 A 1 \nATOM 739 C CZ . TYR A 1 145 ? 34.193 -20.741 14.994 1.00 29.35 99 A 1 \nATOM 740 O OH . TYR A 1 145 ? 35.054 -20.854 16.069 1.00 30.50 99 A 1 \nATOM 741 N N . LEU A 1 146 ? 30.208 -21.093 8.857 1.00 32.60 100 A 1 \nATOM 742 C CA . LEU A 1 146 ? 29.197 -20.728 7.842 1.00 33.14 100 A 1 \nATOM 743 C C . LEU A 1 146 ? 28.297 -21.898 7.439 1.00 33.66 100 A 1 \nATOM 744 O O . LEU A 1 146 ? 27.091 -21.714 7.278 1.00 34.68 100 A 1 \nATOM 745 C CB . LEU A 1 146 ? 29.851 -20.003 6.643 1.00 32.73 100 A 1 \nATOM 746 C CG . LEU A 1 146 ? 30.715 -18.761 6.989 1.00 33.66 100 A 1 \nATOM 747 C CD1 . LEU A 1 146 ? 31.244 -18.066 5.699 1.00 35.64 100 A 1 \nATOM 748 C CD2 . LEU A 1 146 ? 29.953 -17.757 7.825 1.00 29.78 100 A 1 \nATOM 749 N N . VAL A 1 147 ? 28.838 -23.109 7.317 1.00 34.19 101 A 1 \nATOM 750 C CA . VAL A 1 147 ? 27.968 -24.254 6.998 1.00 34.41 101 A 1 \nATOM 751 C C . VAL A 1 147 ? 26.883 -24.452 8.063 1.00 35.05 101 A 1 \nATOM 752 O O . VAL A 1 147 ? 25.691 -24.619 7.745 1.00 34.43 101 A 1 \nATOM 753 C CB . VAL A 1 147 ? 28.732 -25.596 6.780 1.00 35.07 101 A 1 \nATOM 754 C CG1 . VAL A 1 147 ? 27.715 -26.757 6.678 1.00 33.58 101 A 1 \nATOM 755 C CG2 . VAL A 1 147 ? 29.615 -25.522 5.506 1.00 33.54 101 A 1 \nATOM 756 N N . GLU A 1 148 ? 27.297 -24.437 9.325 1.00 34.56 102 A 1 \nATOM 757 C CA . GLU A 1 148 ? 26.341 -24.643 10.411 1.00 34.19 102 A 1 \nATOM 758 C C . GLU A 1 148 ? 25.411 -23.443 10.599 1.00 33.78 102 A 1 \nATOM 759 O O . GLU A 1 148 ? 24.230 -23.634 10.863 1.00 33.29 102 A 1 \nATOM 760 C CB . GLU A 1 148 ? 27.080 -25.001 11.709 1.00 34.20 102 A 1 \nATOM 761 C CG . GLU A 1 148 ? 28.104 -26.165 11.522 1.00 31.75 102 A 1 \nATOM 762 C CD . GLU A 1 148 ? 27.490 -27.535 11.252 1.00 31.73 102 A 1 \nATOM 763 O OE1 . GLU A 1 148 ? 26.252 -27.697 11.283 1.00 31.08 102 A 1 \nATOM 764 O OE2 . GLU A 1 148 ? 28.257 -28.507 11.055 1.00 33.35 102 A 1 \nATOM 765 N N . ASP A 1 149 ? 25.951 -22.223 10.468 1.00 33.54 103 A 1 \nATOM 766 C CA . ASP A 1 149 ? 25.185 -20.995 10.685 1.00 33.34 103 A 1 \nATOM 767 C C . ASP A 1 149 ? 24.085 -20.864 9.631 1.00 33.63 103 A 1 \nATOM 768 O O . ASP A 1 149 ? 22.962 -20.470 9.941 1.00 31.92 103 A 1 \nATOM 769 C CB . ASP A 1 149 ? 26.114 -19.792 10.639 1.00 33.11 103 A 1 \nATOM 770 C CG . ASP A 1 149 ? 25.375 -18.463 10.674 1.00 34.54 103 A 1 \nATOM 771 O OD1 . ASP A 1 149 ? 24.900 -18.052 11.761 1.00 35.53 103 A 1 \nATOM 772 O OD2 . ASP A 1 149 ? 25.305 -17.782 9.615 1.00 31.53 103 A 1 \nATOM 773 N N . ASP A 1 150 ? 24.419 -21.229 8.394 1.00 34.41 104 A 1 \nATOM 774 C CA . ASP A 1 150 ? 23.460 -21.169 7.304 1.00 35.34 104 A 1 \nATOM 775 C C . ASP A 1 150 ? 22.298 -22.069 7.596 1.00 35.73 104 A 1 \nATOM 776 O O . ASP A 1 150 ? 21.178 -21.693 7.348 1.00 35.93 104 A 1 \nATOM 777 C CB . ASP A 1 150 ? 24.131 -21.492 5.955 1.00 35.49 104 A 1 \nATOM 778 C CG . ASP A 1 150 ? 24.842 -20.289 5.361 1.00 35.33 104 A 1 \nATOM 779 O OD1 . ASP A 1 150 ? 24.576 -19.153 5.814 1.00 35.18 104 A 1 \nATOM 780 O OD2 . ASP A 1 150 ? 25.657 -20.464 4.427 1.00 34.42 104 A 1 \nATOM 781 N N . ILE A 1 151 ? 22.550 -23.244 8.179 1.00 36.93 105 A 1 \nATOM 782 C CA . ILE A 1 151 ? 21.441 -24.102 8.648 1.00 37.50 105 A 1 \nATOM 783 C C . ILE A 1 151 ? 20.636 -23.434 9.773 1.00 37.87 105 A 1 \nATOM 784 O O . ILE A 1 151 ? 19.415 -23.371 9.720 1.00 38.30 105 A 1 \nATOM 785 C CB . ILE A 1 151 ? 21.920 -25.505 9.108 1.00 37.53 105 A 1 \nATOM 786 C CG1 . ILE A 1 151 ? 22.550 -26.268 7.934 1.00 37.32 105 A 1 \nATOM 787 C CG2 . ILE A 1 151 ? 20.754 -26.300 9.751 1.00 37.04 105 A 1 \nATOM 788 C CD1 . ILE A 1 151 ? 23.277 -27.568 8.331 1.00 37.25 105 A 1 \nATOM 789 N N . MET A 1 152 ? 21.326 -22.919 10.783 1.00 38.14 106 A 1 \nATOM 790 C CA . MET A 1 152 ? 20.650 -22.276 11.924 1.00 38.17 106 A 1 \nATOM 791 C C . MET A 1 152 ? 19.827 -21.052 11.511 1.00 37.92 106 A 1 \nATOM 792 O O . MET A 1 152 ? 18.802 -20.755 12.121 1.00 37.77 106 A 1 \nATOM 793 C CB . MET A 1 152 ? 21.683 -21.850 12.974 1.00 37.85 106 A 1 \nATOM 794 C CG . MET A 1 152 ? 22.433 -23.015 13.611 1.00 38.11 106 A 1 \nATOM 795 S SD . MET A 1 152 ? 23.500 -22.440 14.925 1.00 38.49 106 A 1 \nATOM 796 C CE . MET A 1 152 ? 24.543 -23.857 15.178 1.00 37.67 106 A 1 \nATOM 797 N N . ASP A 1 153 ? 20.302 -20.333 10.495 1.00 38.31 107 A 1 \nATOM 798 C CA . ASP A 1 153 ? 19.707 -19.062 10.098 1.00 38.37 107 A 1 \nATOM 799 C C . ASP A 1 153 ? 18.739 -19.211 8.925 1.00 39.47 107 A 1 \nATOM 800 O O . ASP A 1 153 ? 18.174 -18.216 8.445 1.00 38.98 107 A 1 \nATOM 801 C CB . ASP A 1 153 ? 20.787 -18.047 9.731 1.00 37.70 107 A 1 \nATOM 802 C CG . ASP A 1 153 ? 21.623 -17.598 10.936 1.00 36.55 107 A 1 \nATOM 803 O OD1 . ASP A 1 153 ? 21.274 -17.914 12.099 1.00 36.02 107 A 1 \nATOM 804 O OD2 . ASP A 1 153 ? 22.648 -16.910 10.703 1.00 33.45 107 A 1 \nATOM 805 N N . ASN A 1 154 ? 18.586 -20.449 8.459 1.00 40.37 108 A 1 \nATOM 806 C CA . ASN A 1 154 ? 17.697 -20.777 7.348 1.00 42.12 108 A 1 \nATOM 807 C C . ASN A 1 154 ? 18.035 -19.912 6.134 1.00 42.08 108 A 1 \nATOM 808 O O . ASN A 1 154 ? 17.156 -19.361 5.484 1.00 42.67 108 A 1 \nATOM 809 C CB . ASN A 1 154 ? 16.227 -20.640 7.795 1.00 42.33 108 A 1 \nATOM 810 C CG . ASN A 1 154 ? 15.235 -21.128 6.750 1.00 45.38 108 A 1 \nATOM 811 O OD1 . ASN A 1 154 ? 15.466 -22.131 6.064 1.00 48.22 108 A 1 \nATOM 812 N ND2 . ASN A 1 154 ? 14.123 -20.412 6.625 1.00 45.27 108 A 1 \nATOM 813 N N . SER A 1 155 ? 19.326 -19.765 5.846 1.00 42.16 109 A 1 \nATOM 814 C CA . SER A 1 155 ? 19.738 -18.928 4.714 1.00 42.00 109 A 1 \nATOM 815 C C . SER A 1 155 ? 19.576 -19.678 3.387 1.00 42.25 109 A 1 \nATOM 816 O O . SER A 1 155 ? 19.355 -20.897 3.370 1.00 41.97 109 A 1 \nATOM 817 C CB . SER A 1 155 ? 21.163 -18.385 4.899 1.00 41.87 109 A 1 \nATOM 818 O OG . SER A 1 155 ? 21.262 -17.591 6.084 1.00 42.09 109 A 1 \nATOM 819 N N . VAL A 1 156 ? 19.670 -18.952 2.277 1.00 42.90 110 A 1 \nATOM 820 C CA . VAL A 1 156 ? 19.413 -19.563 0.967 1.00 43.86 110 A 1 \nATOM 821 C C . VAL A 1 156 ? 20.644 -19.585 0.068 1.00 43.36 110 A 1 \nATOM 822 O O . VAL A 1 156 ? 20.910 -20.597 -0.585 1.00 43.60 110 A 1 \nATOM 823 C CB . VAL A 1 156 ? 18.160 -18.946 0.256 1.00 44.01 110 A 1 \nATOM 824 C CG1 . VAL A 1 156 ? 18.003 -19.513 -1.155 1.00 44.35 110 A 1 \nATOM 825 C CG2 . VAL A 1 156 ? 16.912 -19.248 1.072 1.00 44.93 110 A 1 \nATOM 826 N N . THR A 1 157 ? 21.396 -18.484 0.062 1.00 43.63 111 A 1 \nATOM 827 C CA . THR A 1 157 ? 22.660 -18.404 -0.674 1.00 43.81 111 A 1 \nATOM 828 C C . THR A 1 157 ? 23.839 -17.976 0.207 1.00 44.52 111 A 1 \nATOM 829 O O . THR A 1 157 ? 23.655 -17.393 1.272 1.00 43.83 111 A 1 \nATOM 830 C CB . THR A 1 157 ? 22.579 -17.410 -1.877 1.00 43.79 111 A 1 \nATOM 831 O OG1 . THR A 1 157 ? 22.081 -16.144 -1.428 1.00 43.30 111 A 1 \nATOM 832 C CG2 . THR A 1 157 ? 21.672 -17.958 -3.005 1.00 43.62 111 A 1 \nATOM 833 N N . ARG A 1 158 ? 25.043 -18.232 -0.290 1.00 44.91 112 A 1 \nATOM 834 C CA . ARG A 1 158 ? 26.291 -17.854 0.356 1.00 46.55 112 A 1 \nATOM 835 C C . ARG A 1 158 ? 27.369 -17.760 -0.724 1.00 47.40 112 A 1 \nATOM 836 O O . ARG A 1 158 ? 27.476 -18.650 -1.566 1.00 48.35 112 A 1 \nATOM 837 C CB . ARG A 1 158 ? 26.659 -18.909 1.421 1.00 45.62 112 A 1 \nATOM 838 C CG . ARG A 1 158 ? 28.094 -18.894 1.910 1.00 45.09 112 A 1 \nATOM 839 C CD . ARG A 1 158 ? 28.341 -17.813 2.938 1.00 41.07 112 A 1 \nATOM 840 N NE . ARG A 1 158 ? 27.626 -18.026 4.207 1.00 38.62 112 A 1 \nATOM 841 C CZ . ARG A 1 158 ? 27.479 -17.072 5.132 1.00 37.88 112 A 1 \nATOM 842 N NH1 . ARG A 1 158 ? 27.985 -15.857 4.899 1.00 34.15 112 A 1 \nATOM 843 N NH2 . ARG A 1 158 ? 26.826 -17.323 6.275 1.00 34.56 112 A 1 \nATOM 844 N N . ARG A 1 159 ? 28.161 -16.687 -0.703 1.00 48.75 113 A 1 \nATOM 845 C CA . ARG A 1 159 ? 29.247 -16.481 -1.670 1.00 49.31 113 A 1 \nATOM 846 C C . ARG A 1 159 ? 28.799 -16.731 -3.126 1.00 49.76 113 A 1 \nATOM 847 O O . ARG A 1 159 ? 29.535 -17.325 -3.919 1.00 49.74 113 A 1 \nATOM 848 C CB . ARG A 1 159 ? 30.490 -17.334 -1.303 1.00 49.79 113 A 1 \nATOM 849 C CG . ARG A 1 159 ? 31.163 -16.971 0.038 1.00 49.48 113 A 1 \nATOM 850 C CD . ARG A 1 159 ? 32.028 -18.136 0.605 1.00 49.84 113 A 1 \nATOM 851 N NE . ARG A 1 159 ? 32.640 -17.790 1.893 1.00 49.59 113 A 1 \nATOM 852 C CZ . ARG A 1 159 ? 33.519 -18.550 2.556 1.00 53.17 113 A 1 \nATOM 853 N NH1 . ARG A 1 159 ? 33.908 -19.726 2.073 1.00 54.52 113 A 1 \nATOM 854 N NH2 . ARG A 1 159 ? 34.022 -18.138 3.716 1.00 52.47 113 A 1 \nATOM 855 N N . GLY A 1 160 ? 27.585 -16.290 -3.456 1.00 49.88 114 A 1 \nATOM 856 C CA . GLY A 1 160 ? 27.042 -16.427 -4.807 1.00 50.42 114 A 1 \nATOM 857 C C . GLY A 1 160 ? 26.418 -17.765 -5.189 1.00 50.75 114 A 1 \nATOM 858 O O . GLY A 1 160 ? 25.840 -17.898 -6.270 1.00 51.50 114 A 1 \nATOM 859 N N . LYS A 1 161 ? 26.527 -18.763 -4.318 1.00 50.28 115 A 1 \nATOM 860 C CA . LYS A 1 161 ? 26.024 -20.109 -4.619 1.00 49.81 115 A 1 \nATOM 861 C C . LYS A 1 161 ? 24.972 -20.495 -3.588 1.00 48.79 115 A 1 \nATOM 862 O O . LYS A 1 161 ? 24.841 -19.823 -2.566 1.00 48.91 115 A 1 \nATOM 863 C CB . LYS A 1 161 ? 27.163 -21.136 -4.542 1.00 50.15 115 A 1 \nATOM 864 C CG . LYS A 1 161 ? 28.382 -20.877 -5.408 1.00 51.56 115 A 1 \nATOM 865 C CD . LYS A 1 161 ? 29.557 -21.712 -4.864 1.00 53.33 115 A 1 \nATOM 866 C CE . LYS A 1 161 ? 30.633 -21.988 -5.918 1.00 55.20 115 A 1 \nATOM 867 N NZ . LYS A 1 161 ? 31.973 -22.372 -5.311 1.00 54.94 115 A 1 \nATOM 868 N N . PRO A 1 162 ? 24.237 -21.598 -3.814 1.00 47.68 116 A 1 \nATOM 869 C CA . PRO A 1 162 ? 23.438 -22.032 -2.660 1.00 46.84 116 A 1 \nATOM 870 C C . PRO A 1 162 ? 24.289 -22.281 -1.406 1.00 46.30 116 A 1 \nATOM 871 O O . PRO A 1 162 ? 25.504 -22.568 -1.502 1.00 45.26 116 A 1 \nATOM 872 C CB . PRO A 1 162 ? 22.783 -23.332 -3.143 1.00 47.26 116 A 1 \nATOM 873 C CG . PRO A 1 162 ? 22.794 -23.228 -4.652 1.00 47.10 116 A 1 \nATOM 874 C CD . PRO A 1 162 ? 24.038 -22.463 -4.992 1.00 47.43 116 A 1 \nATOM 875 N N . CYS A 1 163 ? 23.658 -22.149 -0.238 1.00 45.29 117 A 1 \nATOM 876 C CA . CYS A 1 163 ? 24.285 -22.582 1.015 1.00 44.47 117 A 1 \nATOM 877 C C . CYS A 1 163 ? 24.577 -24.064 0.881 1.00 43.82 117 A 1 \nATOM 878 O O . CYS A 1 163 ? 23.875 -24.762 0.151 1.00 44.33 117 A 1 \nATOM 879 C CB . CYS A 1 163 ? 23.360 -22.341 2.208 1.00 44.13 117 A 1 \nATOM 880 S SG . CYS A 1 163 ? 22.990 -20.604 2.487 1.00 42.95 117 A 1 \nATOM 881 N N . TRP A 1 164 ? 25.600 -24.548 1.579 1.00 43.06 118 A 1 \nATOM 882 C CA . TRP A 1 164 ? 25.964 -25.959 1.483 1.00 41.92 118 A 1 \nATOM 883 C C . TRP A 1 164 ? 24.753 -26.872 1.667 1.00 42.07 118 A 1 \nATOM 884 O O . TRP A 1 164 ? 24.471 -27.740 0.799 1.00 41.61 118 A 1 \nATOM 885 C CB . TRP A 1 164 ? 27.123 -26.338 2.418 1.00 40.70 118 A 1 \nATOM 886 C CG . TRP A 1 164 ? 27.585 -27.751 2.193 1.00 39.18 118 A 1 \nATOM 887 C CD1 . TRP A 1 164 ? 27.493 -28.792 3.068 1.00 38.05 118 A 1 \nATOM 888 C CD2 . TRP A 1 164 ? 28.147 -28.290 0.987 1.00 38.78 118 A 1 \nATOM 889 N NE1 . TRP A 1 164 ? 27.978 -29.937 2.497 1.00 36.09 118 A 1 \nATOM 890 C CE2 . TRP A 1 164 ? 28.392 -29.657 1.219 1.00 38.04 118 A 1 \nATOM 891 C CE3 . TRP A 1 164 ? 28.491 -27.740 -0.260 1.00 39.14 118 A 1 \nATOM 892 C CZ2 . TRP A 1 164 ? 28.961 -30.500 0.244 1.00 38.48 118 A 1 \nATOM 893 C CZ3 . TRP A 1 164 ? 29.079 -28.580 -1.225 1.00 38.73 118 A 1 \nATOM 894 C CH2 . TRP A 1 164 ? 29.297 -29.941 -0.963 1.00 39.05 118 A 1 \nATOM 895 N N . TYR A 1 165 ? 24.015 -26.650 2.754 1.00 41.74 119 A 1 \nATOM 896 C CA . TYR A 1 165 ? 22.860 -27.482 3.074 1.00 41.98 119 A 1 \nATOM 897 C C . TYR A 1 165 ? 21.750 -27.376 2.022 1.00 42.45 119 A 1 \nATOM 898 O O . TYR A 1 165 ? 20.865 -28.234 1.979 1.00 42.17 119 A 1 \nATOM 899 C CB . TYR A 1 165 ? 22.323 -27.199 4.496 1.00 41.45 119 A 1 \nATOM 900 C CG . TYR A 1 165 ? 21.354 -26.046 4.614 1.00 41.30 119 A 1 \nATOM 901 C CD1 . TYR A 1 165 ? 21.807 -24.730 4.593 1.00 41.58 119 A 1 \nATOM 902 C CD2 . TYR A 1 165 ? 19.986 -26.271 4.775 1.00 40.87 119 A 1 \nATOM 903 C CE1 . TYR A 1 165 ? 20.931 -23.671 4.696 1.00 40.57 119 A 1 \nATOM 904 C CE2 . TYR A 1 165 ? 19.094 -25.200 4.889 1.00 41.33 119 A 1 \nATOM 905 C CZ . TYR A 1 165 ? 19.583 -23.912 4.853 1.00 40.06 119 A 1 \nATOM 906 O OH . TYR A 1 165 ? 18.733 -22.842 4.951 1.00 42.05 119 A 1 \nATOM 907 N N . ARG A 1 166 ? 21.807 -26.336 1.186 1.00 43.37 120 A 1 \nATOM 908 C CA . ARG A 1 166 ? 20.803 -26.139 0.138 1.00 44.67 120 A 1 \nATOM 909 C C . ARG A 1 166 ? 21.257 -26.738 -1.187 1.00 45.08 120 A 1 \nATOM 910 O O . ARG A 1 166 ? 20.511 -26.695 -2.167 1.00 45.26 120 A 1 \nATOM 911 C CB . ARG A 1 166 ? 20.468 -24.650 -0.058 1.00 44.80 120 A 1 \nATOM 912 C CG . ARG A 1 166 ? 19.838 -23.954 1.136 1.00 45.68 120 A 1 \nATOM 913 C CD . ARG A 1 166 ? 18.344 -23.986 1.046 1.00 49.16 120 A 1 \nATOM 914 N NE . ARG A 1 166 ? 17.721 -23.244 2.138 1.00 50.49 120 A 1 \nATOM 915 C CZ . ARG A 1 166 ? 16.409 -23.141 2.322 1.00 50.93 120 A 1 \nATOM 916 N NH1 . ARG A 1 166 ? 15.568 -23.742 1.484 1.00 53.03 120 A 1 \nATOM 917 N NH2 . ARG A 1 166 ? 15.933 -22.436 3.343 1.00 50.01 120 A 1 \nATOM 918 N N . HIS A 1 167 ? 22.472 -27.288 -1.231 1.00 45.06 121 A 1 \nATOM 919 C CA . HIS A 1 167 ? 22.929 -27.962 -2.449 1.00 45.12 121 A 1 \nATOM 920 C C . HIS A 1 167 ? 22.065 -29.191 -2.717 1.00 46.10 121 A 1 \nATOM 921 O O . HIS A 1 167 ? 21.798 -29.981 -1.803 1.00 45.81 121 A 1 \nATOM 922 C CB . HIS A 1 167 ? 24.415 -28.330 -2.403 1.00 44.52 121 A 1 \nATOM 923 C CG . HIS A 1 167 ? 25.337 -27.211 -2.791 1.00 42.66 121 A 1 \nATOM 924 N ND1 . HIS A 1 167 ? 26.264 -27.332 -3.802 1.00 42.04 121 A 1 \nATOM 925 C CD2 . HIS A 1 167 ? 25.482 -25.959 -2.299 1.00 38.16 121 A 1 \nATOM 926 C CE1 . HIS A 1 167 ? 26.945 -26.204 -3.913 1.00 40.50 121 A 1 \nATOM 927 N NE2 . HIS A 1 167 ? 26.476 -25.349 -3.022 1.00 40.55 121 A 1 \nATOM 928 N N . PRO A 1 168 ? 21.618 -29.352 -3.981 1.00 47.15 122 A 1 \nATOM 929 C CA . PRO A 1 168 ? 20.710 -30.420 -4.419 1.00 47.85 122 A 1 \nATOM 930 C C . PRO A 1 168 ? 21.012 -31.814 -3.882 1.00 47.77 122 A 1 \nATOM 931 O O . PRO A 1 168 ? 20.084 -32.484 -3.438 1.00 47.78 122 A 1 \nATOM 932 C CB . PRO A 1 168 ? 20.836 -30.367 -5.947 1.00 48.40 122 A 1 \nATOM 933 C CG . PRO A 1 168 ? 21.024 -28.915 -6.207 1.00 48.40 122 A 1 \nATOM 934 C CD . PRO A 1 168 ? 21.961 -28.455 -5.104 1.00 47.43 122 A 1 \nATOM 935 N N . ASP A 1 169 ? 22.281 -32.240 -3.886 1.00 48.07 123 A 1 \nATOM 936 C CA . ASP A 1 169 ? 22.628 -33.557 -3.327 1.00 48.09 123 A 1 \nATOM 937 C C . ASP A 1 169 ? 23.354 -33.547 -1.994 1.00 48.08 123 A 1 \nATOM 938 O O . ASP A 1 169 ? 24.070 -34.496 -1.663 1.00 47.52 123 A 1 \nATOM 939 C CB . ASP A 1 169 ? 23.461 -34.372 -4.295 1.00 48.76 123 A 1 \nATOM 940 N N . VAL A 1 170 ? 23.186 -32.472 -1.240 1.00 47.88 124 A 1 \nATOM 941 C CA . VAL A 1 170 ? 23.640 -32.463 0.134 1.00 47.22 124 A 1 \nATOM 942 C C . VAL A 1 170 ? 22.384 -32.490 0.984 1.00 46.71 124 A 1 \nATOM 943 O O . VAL A 1 170 ? 21.528 -31.603 0.864 1.00 46.30 124 A 1 \nATOM 944 C CB . VAL A 1 170 ? 24.505 -31.228 0.463 1.00 47.62 124 A 1 \nATOM 945 C CG1 . VAL A 1 170 ? 25.015 -31.310 1.896 1.00 46.34 124 A 1 \nATOM 946 C CG2 . VAL A 1 170 ? 25.679 -31.119 -0.506 1.00 47.50 124 A 1 \nATOM 947 N N . THR A 1 171 ? 22.247 -33.538 1.797 1.00 45.94 125 A 1 \nATOM 948 C CA . THR A 1 171 ? 21.156 -33.604 2.772 1.00 45.42 125 A 1 \nATOM 949 C C . THR A 1 171 ? 21.528 -32.739 3.978 1.00 45.47 125 A 1 \nATOM 950 O O . THR A 1 171 ? 22.714 -32.489 4.230 1.00 45.12 125 A 1 \nATOM 951 C CB . THR A 1 171 ? 20.852 -35.052 3.204 1.00 45.81 125 A 1 \nATOM 952 O OG1 . THR A 1 171 ? 21.998 -35.619 3.863 1.00 44.48 125 A 1 \nATOM 953 C CG2 . THR A 1 171 ? 20.489 -35.920 1.988 1.00 44.23 125 A 1 \nATOM 954 N N . VAL A 1 172 ? 20.524 -32.260 4.706 1.00 45.63 126 A 1 \nATOM 955 C CA . VAL A 1 172 ? 20.781 -31.444 5.911 1.00 45.53 126 A 1 \nATOM 956 C C . VAL A 1 172 ? 21.593 -32.240 6.931 1.00 44.96 126 A 1 \nATOM 957 O O . VAL A 1 172 ? 22.505 -31.701 7.552 1.00 44.63 126 A 1 \nATOM 958 C CB . VAL A 1 172 ? 19.478 -30.873 6.547 1.00 45.85 126 A 1 \nATOM 959 C CG1 . VAL A 1 172 ? 19.790 -29.984 7.755 1.00 45.91 126 A 1 \nATOM 960 C CG2 . VAL A 1 172 ? 18.686 -30.072 5.520 1.00 46.50 126 A 1 \nATOM 961 N N . GLN A 1 173 ? 21.280 -33.527 7.080 1.00 44.76 127 A 1 \nATOM 962 C CA . GLN A 1 173 ? 22.064 -34.382 7.964 1.00 44.49 127 A 1 \nATOM 963 C C . GLN A 1 173 ? 23.511 -34.523 7.510 1.00 43.77 127 A 1 \nATOM 964 O O . GLN A 1 173 ? 24.421 -34.529 8.350 1.00 43.51 127 A 1 \nATOM 965 C CB . GLN A 1 173 ? 21.399 -35.753 8.214 1.00 45.14 127 A 1 \nATOM 966 C CG . GLN A 1 173 ? 21.468 -36.784 7.090 1.00 46.87 127 A 1 \nATOM 967 C CD . GLN A 1 173 ? 20.218 -36.786 6.231 1.00 48.64 127 A 1 \nATOM 968 O OE1 . GLN A 1 173 ? 19.513 -35.779 6.142 1.00 50.18 127 A 1 \nATOM 969 N NE2 . GLN A 1 173 ? 19.937 -37.920 5.593 1.00 49.72 127 A 1 \nATOM 970 N N . CYS A 1 174 ? 23.750 -34.606 6.198 1.00 42.53 128 A 1 \nATOM 971 C CA . CYS A 1 174 ? 25.133 -34.675 5.736 1.00 41.19 128 A 1 \nATOM 972 C C . CYS A 1 174 ? 25.833 -33.328 5.910 1.00 39.54 128 A 1 \nATOM 973 O O . CYS A 1 174 ? 27.013 -33.270 6.265 1.00 38.85 128 A 1 \nATOM 974 C CB . CYS A 1 174 ? 25.255 -35.203 4.287 1.00 41.80 128 A 1 \nATOM 975 S SG . CYS A 1 174 ? 26.928 -35.816 3.924 1.00 43.89 128 A 1 \nATOM 976 N N . ALA A 1 175 ? 25.084 -32.255 5.698 1.00 37.81 129 A 1 \nATOM 977 C CA . ALA A 1 175 ? 25.605 -30.897 5.825 1.00 37.11 129 A 1 \nATOM 978 C C . ALA A 1 175 ? 26.118 -30.590 7.242 1.00 36.22 129 A 1 \nATOM 979 O O . ALA A 1 175 ? 27.199 -30.018 7.390 1.00 36.16 129 A 1 \nATOM 980 C CB . ALA A 1 175 ? 24.540 -29.900 5.407 1.00 37.09 129 A 1 \nATOM 981 N N . ILE A 1 176 ? 25.354 -30.984 8.269 1.00 35.52 130 A 1 \nATOM 982 C CA . ILE A 1 176 ? 25.814 -30.882 9.676 1.00 35.53 130 A 1 \nATOM 983 C C . ILE A 1 176 ? 27.144 -31.603 9.867 1.00 34.91 130 A 1 \nATOM 984 O O . ILE A 1 176 ? 28.100 -31.053 10.430 1.00 35.17 130 A 1 \nATOM 985 C CB . ILE A 1 176 ? 24.760 -31.418 10.675 1.00 35.80 130 A 1 \nATOM 986 C CG1 . ILE A 1 176 ? 23.482 -30.575 10.588 1.00 35.62 130 A 1 \nATOM 987 C CG2 . ILE A 1 176 ? 25.296 -31.371 12.120 1.00 34.63 130 A 1 \nATOM 988 C CD1 . ILE A 1 176 ? 22.283 -31.182 11.294 1.00 36.20 130 A 1 \nATOM 989 N N . ASN A 1 177 ? 27.214 -32.836 9.369 1.00 34.93 131 A 1 \nATOM 990 C CA . ASN A 1 177 ? 28.440 -33.617 9.455 1.00 34.29 131 A 1 \nATOM 991 C C . ASN A 1 177 ? 29.571 -33.043 8.653 1.00 34.25 131 A 1 \nATOM 992 O O . ASN A 1 177 ? 30.698 -33.003 9.141 1.00 34.69 131 A 1 \nATOM 993 C CB . ASN A 1 177 ? 28.216 -35.091 9.074 1.00 34.42 131 A 1 \nATOM 994 C CG . ASN A 1 177 ? 29.193 -36.008 9.783 1.00 33.47 131 A 1 \nATOM 995 O OD1 . ASN A 1 177 ? 29.122 -36.162 10.991 1.00 35.90 131 A 1 \nATOM 996 N ND2 . ASN A 1 177 ? 30.116 -36.608 9.039 1.00 31.47 131 A 1 \nATOM 997 N N . ASP A 1 178 ? 29.283 -32.591 7.424 1.00 34.74 132 A 1 \nATOM 998 C CA . ASP A 1 178 ? 30.272 -31.910 6.577 1.00 34.49 132 A 1 \nATOM 999 C C . ASP A 1 178 ? 30.866 -30.686 7.306 1.00 33.93 132 A 1 \nATOM 1000 O O . ASP A 1 178 ? 32.085 -30.510 7.393 1.00 33.30 132 A 1 \nATOM 1001 C CB . ASP A 1 178 ? 29.633 -31.481 5.240 1.00 34.52 132 A 1 \nATOM 1002 C CG . ASP A 1 178 ? 29.283 -32.669 4.326 1.00 37.20 132 A 1 \nATOM 1003 O OD1 . ASP A 1 178 ? 29.818 -33.798 4.522 1.00 36.31 132 A 1 \nATOM 1004 O OD2 . ASP A 1 178 ? 28.465 -32.456 3.385 1.00 39.62 132 A 1 \nATOM 1005 N N . GLY A 1 179 ? 29.999 -29.851 7.859 1.00 33.39 133 A 1 \nATOM 1006 C CA . GLY A 1 179 ? 30.466 -28.723 8.653 1.00 33.49 133 A 1 \nATOM 1007 C C . GLY A 1 179 ? 31.379 -29.108 9.801 1.00 32.90 133 A 1 \nATOM 1008 O O . GLY A 1 179 ? 32.323 -28.394 10.114 1.00 33.67 133 A 1 \nATOM 1009 N N . LEU A 1 180 ? 31.110 -30.245 10.426 1.00 33.39 134 A 1 \nATOM 1010 C CA . LEU A 1 180 ? 31.948 -30.713 11.530 1.00 34.53 134 A 1 \nATOM 1011 C C . LEU A 1 180 ? 33.284 -31.310 11.073 1.00 33.60 134 A 1 \nATOM 1012 O O . LEU A 1 180 ? 34.310 -31.136 11.729 1.00 32.71 134 A 1 \nATOM 1013 C CB . LEU A 1 180 ? 31.156 -31.647 12.433 1.00 34.65 134 A 1 \nATOM 1014 C CG . LEU A 1 180 ? 30.614 -30.723 13.537 1.00 38.76 134 A 1 \nATOM 1015 C CD1 . LEU A 1 180 ? 29.244 -31.149 14.011 1.00 39.96 134 A 1 \nATOM 1016 C CD2 . LEU A 1 180 ? 31.624 -30.631 14.710 1.00 41.41 134 A 1 \nATOM 1017 N N . LEU A 1 181 ? 33.273 -31.944 9.898 1.00 33.40 135 A 1 \nATOM 1018 C CA . LEU A 1 181 ? 34.516 -32.367 9.227 1.00 32.72 135 A 1 \nATOM 1019 C C . LEU A 1 181 ? 35.441 -31.199 8.965 1.00 32.64 135 A 1 \nATOM 1020 O O . LEU A 1 181 ? 36.664 -31.308 9.178 1.00 32.42 135 A 1 \nATOM 1021 C CB . LEU A 1 181 ? 34.210 -33.133 7.921 1.00 33.79 135 A 1 \nATOM 1022 C CG . LEU A 1 181 ? 33.575 -34.516 8.137 1.00 34.46 135 A 1 \nATOM 1023 C CD1 . LEU A 1 181 ? 33.065 -35.149 6.829 1.00 34.88 135 A 1 \nATOM 1024 C CD2 . LEU A 1 181 ? 34.598 -35.445 8.831 1.00 35.14 135 A 1 \nATOM 1025 N N . LEU A 1 182 ? 34.877 -30.069 8.529 1.00 31.81 136 A 1 \nATOM 1026 C CA . LEU A 1 182 ? 35.663 -28.854 8.331 1.00 32.13 136 A 1 \nATOM 1027 C C . LEU A 1 182 ? 36.475 -28.426 9.582 1.00 32.28 136 A 1 \nATOM 1028 O O . LEU A 1 182 ? 37.638 -28.075 9.461 1.00 31.84 136 A 1 \nATOM 1029 C CB . LEU A 1 182 ? 34.797 -27.702 7.799 1.00 31.78 136 A 1 \nATOM 1030 C CG . LEU A 1 182 ? 34.314 -27.877 6.328 1.00 32.20 136 A 1 \nATOM 1031 C CD1 . LEU A 1 182 ? 33.081 -27.034 6.040 1.00 31.15 136 A 1 \nATOM 1032 C CD2 . LEU A 1 182 ? 35.431 -27.507 5.357 1.00 29.06 136 A 1 \nATOM 1033 N N . LYS A 1 183 ? 35.860 -28.447 10.763 1.00 32.69 137 A 1 \nATOM 1034 C CA . LYS A 1 183 ? 36.589 -28.125 11.984 1.00 33.18 137 A 1 \nATOM 1035 C C . LYS A 1 183 ? 37.636 -29.192 12.338 1.00 33.68 137 A 1 \nATOM 1036 O O . LYS A 1 183 ? 38.750 -28.869 12.760 1.00 35.00 137 A 1 \nATOM 1037 C CB . LYS A 1 183 ? 35.631 -27.872 13.148 1.00 33.41 137 A 1 \nATOM 1038 C CG . LYS A 1 183 ? 36.354 -27.256 14.368 1.00 33.33 137 A 1 \nATOM 1039 C CD . LYS A 1 183 ? 35.412 -26.570 15.360 1.00 32.06 137 A 1 \nATOM 1040 C CE . LYS A 1 183 ? 34.630 -27.585 16.161 1.00 31.64 137 A 1 \nATOM 1041 N NZ . LYS A 1 183 ? 34.053 -26.880 17.366 1.00 35.46 137 A 1 \nATOM 1042 N N . SER A 1 184 ? 37.284 -30.456 12.154 1.00 34.07 138 A 1 \nATOM 1043 C CA . SER A 1 184 ? 38.232 -31.532 12.365 1.00 35.15 138 A 1 \nATOM 1044 C C . SER A 1 184 ? 39.462 -31.342 11.506 1.00 35.55 138 A 1 \nATOM 1045 O O . SER A 1 184 ? 40.580 -31.552 11.987 1.00 34.73 138 A 1 \nATOM 1046 C CB . SER A 1 184 ? 37.603 -32.879 12.091 1.00 35.53 138 A 1 \nATOM 1047 O OG . SER A 1 184 ? 36.798 -33.249 13.186 1.00 39.80 138 A 1 \nATOM 1048 N N . TRP A 1 185 ? 39.264 -30.905 10.254 1.00 35.13 139 A 1 \nATOM 1049 C CA . TRP A 1 185 ? 40.395 -30.588 9.388 1.00 35.29 139 A 1 \nATOM 1050 C C . TRP A 1 185 ? 41.326 -29.501 9.926 1.00 35.61 139 A 1 \nATOM 1051 O O . TRP A 1 185 ? 42.522 -29.550 9.682 1.00 35.38 139 A 1 \nATOM 1052 C CB . TRP A 1 185 ? 39.942 -30.284 7.960 1.00 35.58 139 A 1 \nATOM 1053 C CG . TRP A 1 185 ? 39.397 -31.507 7.232 1.00 34.80 139 A 1 \nATOM 1054 C CD1 . TRP A 1 185 ? 39.676 -32.808 7.509 1.00 34.96 139 A 1 \nATOM 1055 C CD2 . TRP A 1 185 ? 38.537 -31.522 6.079 1.00 37.15 139 A 1 \nATOM 1056 N NE1 . TRP A 1 185 ? 39.040 -33.630 6.622 1.00 35.09 139 A 1 \nATOM 1057 C CE2 . TRP A 1 185 ? 38.330 -32.870 5.733 1.00 35.65 139 A 1 \nATOM 1058 C CE3 . TRP A 1 185 ? 37.920 -30.522 5.303 1.00 37.01 139 A 1 \nATOM 1059 C CZ2 . TRP A 1 185 ? 37.507 -33.260 4.657 1.00 36.66 139 A 1 \nATOM 1060 C CZ3 . TRP A 1 185 ? 37.099 -30.913 4.240 1.00 36.64 139 A 1 \nATOM 1061 C CH2 . TRP A 1 185 ? 36.920 -32.272 3.920 1.00 35.87 139 A 1 \nATOM 1062 N N . THR A 1 186 ? 40.798 -28.528 10.665 1.00 35.97 140 A 1 \nATOM 1063 C CA . THR A 1 186 ? 41.657 -27.497 11.271 1.00 35.78 140 A 1 \nATOM 1064 C C . THR A 1 186 ? 42.669 -28.067 12.244 1.00 36.59 140 A 1 \nATOM 1065 O O . THR A 1 186 ? 43.798 -27.577 12.340 1.00 36.44 140 A 1 \nATOM 1066 C CB . THR A 1 186 ? 40.858 -26.389 12.001 1.00 35.89 140 A 1 \nATOM 1067 O OG1 . THR A 1 186 ? 40.177 -26.953 13.133 1.00 34.29 140 A 1 \nATOM 1068 C CG2 . THR A 1 186 ? 39.845 -25.738 11.055 1.00 34.95 140 A 1 \nATOM 1069 N N . HIS A 1 187 ? 42.264 -29.093 12.982 1.00 37.66 141 A 1 \nATOM 1070 C CA . HIS A 1 187 ? 43.145 -29.717 13.946 1.00 37.87 141 A 1 \nATOM 1071 C C . HIS A 1 187 ? 44.110 -30.655 13.237 1.00 38.14 141 A 1 \nATOM 1072 O O . HIS A 1 187 ? 45.302 -30.647 13.533 1.00 37.46 141 A 1 \nATOM 1073 C CB . HIS A 1 187 ? 42.347 -30.467 15.007 1.00 37.67 141 A 1 \nATOM 1074 C CG . HIS A 1 187 ? 43.201 -31.120 16.058 1.00 40.21 141 A 1 \nATOM 1075 N ND1 . HIS A 1 187 ? 43.748 -32.381 15.899 1.00 41.26 141 A 1 \nATOM 1076 C CD2 . HIS A 1 187 ? 43.563 -30.709 17.298 1.00 39.88 141 A 1 \nATOM 1077 C CE1 . HIS A 1 187 ? 44.426 -32.705 16.988 1.00 42.31 141 A 1 \nATOM 1078 N NE2 . HIS A 1 187 ? 44.333 -31.710 17.850 1.00 42.06 141 A 1 \nATOM 1079 N N . MET A 1 188 ? 43.595 -31.447 12.298 1.00 37.92 142 A 1 \nATOM 1080 C CA . MET A 1 188 ? 44.449 -32.352 11.510 1.00 38.81 142 A 1 \nATOM 1081 C C . MET A 1 188 ? 45.572 -31.629 10.756 1.00 38.70 142 A 1 \nATOM 1082 O O . MET A 1 188 ? 46.718 -32.086 10.762 1.00 38.32 142 A 1 \nATOM 1083 C CB . MET A 1 188 ? 43.614 -33.197 10.546 1.00 38.46 142 A 1 \nATOM 1084 C CG . MET A 1 188 ? 42.552 -34.013 11.253 1.00 41.69 142 A 1 \nATOM 1085 S SD . MET A 1 188 ? 43.189 -35.044 12.613 1.00 45.87 142 A 1 \nATOM 1086 C CE . MET A 1 188 ? 43.752 -36.458 11.629 1.00 46.51 142 A 1 \nATOM 1087 N N . MET A 1 189 ? 45.257 -30.492 10.138 1.00 38.70 143 A 1 \nATOM 1088 C CA . MET A 1 189 ? 46.302 -29.703 9.472 1.00 39.15 143 A 1 \nATOM 1089 C C . MET A 1 189 ? 47.351 -29.138 10.442 1.00 39.81 143 A 1 \nATOM 1090 O O . MET A 1 189 ? 48.558 -29.220 10.170 1.00 40.78 143 A 1 \nATOM 1091 C CB . MET A 1 189 ? 45.708 -28.637 8.527 1.00 39.21 143 A 1 \nATOM 1092 C CG . MET A 1 189 ? 45.172 -27.372 9.174 1.00 38.27 143 A 1 \nATOM 1093 S SD . MET A 1 189 ? 44.484 -26.240 7.946 1.00 38.66 143 A 1 \nATOM 1094 C CE . MET A 1 189 ? 43.056 -27.139 7.400 1.00 38.86 143 A 1 \nATOM 1095 N N . ALA A 1 190 ? 46.913 -28.605 11.582 1.00 39.59 144 A 1 \nATOM 1096 C CA . ALA A 1 190 ? 47.837 -28.102 12.598 1.00 40.22 144 A 1 \nATOM 1097 C C . ALA A 1 190 ? 48.802 -29.185 13.064 1.00 41.29 144 A 1 \nATOM 1098 O O . ALA A 1 190 ? 50.025 -28.988 13.100 1.00 41.33 144 A 1 \nATOM 1099 C CB . ALA A 1 190 ? 47.054 -27.540 13.798 1.00 39.98 144 A 1 \nATOM 1100 N N . MET A 1 191 ? 48.240 -30.337 13.407 1.00 42.81 145 A 1 \nATOM 1101 C CA . MET A 1 191 ? 49.004 -31.454 13.956 1.00 44.60 145 A 1 \nATOM 1102 C C . MET A 1 191 ? 50.034 -31.995 12.963 1.00 44.77 145 A 1 \nATOM 1103 O O . MET A 1 191 ? 51.152 -32.342 13.350 1.00 45.16 145 A 1 \nATOM 1104 C CB . MET A 1 191 ? 48.041 -32.547 14.398 1.00 45.10 145 A 1 \nATOM 1105 C CG . MET A 1 191 ? 48.220 -32.962 15.825 1.00 47.57 145 A 1 \nATOM 1106 S SD . MET A 1 191 ? 48.175 -31.636 17.052 1.00 48.42 145 A 1 \nATOM 1107 C CE . MET A 1 191 ? 48.374 -32.669 18.492 1.00 48.30 145 A 1 \nATOM 1108 N N . HIS A 1 192 ? 49.665 -32.033 11.682 1.00 44.92 146 A 1 \nATOM 1109 C CA . HIS A 1 192 ? 50.558 -32.505 10.628 1.00 44.56 146 A 1 \nATOM 1110 C C . HIS A 1 192 ? 51.662 -31.506 10.266 1.00 44.42 146 A 1 \nATOM 1111 O O . HIS A 1 192 ? 52.847 -31.854 10.248 1.00 44.56 146 A 1 \nATOM 1112 C CB . HIS A 1 192 ? 49.754 -32.849 9.380 1.00 45.02 146 A 1 \nATOM 1113 C CG . HIS A 1 192 ? 50.603 -33.256 8.215 1.00 45.43 146 A 1 \nATOM 1114 N ND1 . HIS A 1 192 ? 50.860 -32.417 7.155 1.00 46.21 146 A 1 \nATOM 1115 C CD2 . HIS A 1 192 ? 51.277 -34.403 7.960 1.00 46.34 146 A 1 \nATOM 1116 C CE1 . HIS A 1 192 ? 51.643 -33.034 6.287 1.00 46.49 146 A 1 \nATOM 1117 N NE2 . HIS A 1 192 ? 51.912 -34.241 6.753 1.00 46.04 146 A 1 \nATOM 1118 N N . PHE A 1 193 ? 51.274 -30.266 9.981 1.00 43.56 147 A 1 \nATOM 1119 C CA . PHE A 1 193 ? 52.216 -29.254 9.532 1.00 43.35 147 A 1 \nATOM 1120 C C . PHE A 1 193 ? 53.055 -28.683 10.672 1.00 43.47 147 A 1 \nATOM 1121 O O . PHE A 1 193 ? 54.186 -28.260 10.459 1.00 43.93 147 A 1 \nATOM 1122 C CB . PHE A 1 193 ? 51.498 -28.153 8.721 1.00 42.83 147 A 1 \nATOM 1123 C CG . PHE A 1 193 ? 51.006 -28.618 7.362 1.00 42.10 147 A 1 \nATOM 1124 C CD1 . PHE A 1 193 ? 51.902 -28.755 6.291 1.00 41.74 147 A 1 \nATOM 1125 C CD2 . PHE A 1 193 ? 49.655 -28.924 7.151 1.00 40.96 147 A 1 \nATOM 1126 C CE1 . PHE A 1 193 ? 51.467 -29.185 5.036 1.00 41.36 147 A 1 \nATOM 1127 C CE2 . PHE A 1 193 ? 49.202 -29.354 5.908 1.00 40.82 147 A 1 \nATOM 1128 C CZ . PHE A 1 193 ? 50.112 -29.489 4.833 1.00 41.39 147 A 1 \nATOM 1129 N N . PHE A 1 194 ? 52.528 -28.690 11.891 1.00 43.45 148 A 1 \nATOM 1130 C CA . PHE A 1 194 ? 53.260 -28.081 13.000 1.00 43.41 148 A 1 \nATOM 1131 C C . PHE A 1 194 ? 53.742 -29.102 14.030 1.00 44.39 148 A 1 \nATOM 1132 O O . PHE A 1 194 ? 54.034 -28.740 15.175 1.00 44.40 148 A 1 \nATOM 1133 C CB . PHE A 1 194 ? 52.421 -27.005 13.707 1.00 42.41 148 A 1 \nATOM 1134 C CG . PHE A 1 194 ? 51.943 -25.885 12.814 1.00 40.78 148 A 1 \nATOM 1135 C CD1 . PHE A 1 194 ? 52.782 -25.297 11.869 1.00 38.64 148 A 1 \nATOM 1136 C CD2 . PHE A 1 194 ? 50.644 -25.391 12.957 1.00 40.04 148 A 1 \nATOM 1137 C CE1 . PHE A 1 194 ? 52.330 -24.239 11.074 1.00 38.96 148 A 1 \nATOM 1138 C CE2 . PHE A 1 194 ? 50.181 -24.341 12.160 1.00 38.58 148 A 1 \nATOM 1139 C CZ . PHE A 1 194 ? 51.027 -23.763 11.224 1.00 38.78 148 A 1 \nATOM 1140 N N . ALA A 1 195 ? 53.821 -30.362 13.622 1.00 46.11 149 A 1 \nATOM 1141 C CA . ALA A 1 195 ? 54.275 -31.454 14.498 1.00 47.84 149 A 1 \nATOM 1142 C C . ALA A 1 195 ? 55.541 -31.143 15.305 1.00 49.20 149 A 1 \nATOM 1143 O O . ALA A 1 195 ? 55.592 -31.456 16.484 1.00 50.17 149 A 1 \nATOM 1144 C CB . ALA A 1 195 ? 54.459 -32.747 13.705 1.00 47.89 149 A 1 \nATOM 1145 N N . ASP A 1 196 ? 56.537 -30.512 14.686 1.00 50.39 150 A 1 \nATOM 1146 C CA . ASP A 1 196 ? 57.815 -30.248 15.360 1.00 51.97 150 A 1 \nATOM 1147 C C . ASP A 1 196 ? 57.977 -28.825 15.881 1.00 52.01 150 A 1 \nATOM 1148 O O . ASP A 1 196 ? 59.038 -28.476 16.395 1.00 52.78 150 A 1 \nATOM 1149 C CB . ASP A 1 196 ? 58.994 -30.625 14.458 1.00 52.15 150 A 1 \nATOM 1150 C CG . ASP A 1 196 ? 58.870 -32.035 13.893 1.00 54.20 150 A 1 \nATOM 1151 O OD1 . ASP A 1 196 ? 58.393 -32.930 14.632 1.00 55.67 150 A 1 \nATOM 1152 O OD2 . ASP A 1 196 ? 59.243 -32.242 12.711 1.00 54.33 150 A 1 \nATOM 1153 N N . ARG A 1 197 ? 56.930 -28.010 15.763 1.00 51.70 151 A 1 \nATOM 1154 C CA . ARG A 1 197 ? 56.951 -26.638 16.269 1.00 51.11 151 A 1 \nATOM 1155 C C . ARG A 1 197 ? 56.684 -26.602 17.775 1.00 50.76 151 A 1 \nATOM 1156 O O . ARG A 1 197 ? 55.718 -27.196 18.238 1.00 51.12 151 A 1 \nATOM 1157 C CB . ARG A 1 197 ? 55.906 -25.790 15.535 1.00 51.07 151 A 1 \nATOM 1158 C CG . ARG A 1 197 ? 56.439 -24.784 14.509 1.00 51.43 151 A 1 \nATOM 1159 C CD . ARG A 1 197 ? 57.386 -25.372 13.511 1.00 52.89 151 A 1 \nATOM 1160 N NE . ARG A 1 197 ? 57.086 -24.965 12.143 1.00 53.49 151 A 1 \nATOM 1161 C CZ . ARG A 1 197 ? 57.603 -25.563 11.075 1.00 53.82 151 A 1 \nATOM 1162 N NH1 . ARG A 1 197 ? 58.454 -26.572 11.227 1.00 54.30 151 A 1 \nATOM 1163 N NH2 . ARG A 1 197 ? 57.285 -25.154 9.859 1.00 53.89 151 A 1 \nATOM 1164 N N . PRO A 1 198 ? 57.533 -25.896 18.542 1.00 50.20 152 A 1 \nATOM 1165 C CA . PRO A 1 198 ? 57.312 -25.730 19.984 1.00 50.20 152 A 1 \nATOM 1166 C C . PRO A 1 198 ? 56.055 -24.927 20.348 1.00 49.76 152 A 1 \nATOM 1167 O O . PRO A 1 198 ? 55.543 -25.084 21.459 1.00 50.03 152 A 1 \nATOM 1168 C CB . PRO A 1 198 ? 58.557 -24.966 20.449 1.00 50.11 152 A 1 \nATOM 1169 C CG . PRO A 1 198 ? 59.075 -24.317 19.257 1.00 50.69 152 A 1 \nATOM 1170 C CD . PRO A 1 198 ? 58.768 -25.226 18.104 1.00 50.25 152 A 1 \nATOM 1171 N N . PHE A 1 199 ? 55.587 -24.074 19.431 1.00 48.72 153 A 1 \nATOM 1172 C CA . PHE A 1 199 ? 54.389 -23.250 19.661 1.00 48.04 153 A 1 \nATOM 1173 C C . PHE A 1 199 ? 53.065 -24.012 19.508 1.00 48.01 153 A 1 \nATOM 1174 O O . PHE A 1 199 ? 51.989 -23.465 19.776 1.00 48.54 153 A 1 \nATOM 1175 C CB . PHE A 1 199 ? 54.398 -21.995 18.769 1.00 47.22 153 A 1 \nATOM 1176 C CG . PHE A 1 199 ? 54.257 -22.271 17.285 1.00 45.47 153 A 1 \nATOM 1177 C CD1 . PHE A 1 199 ? 53.162 -22.979 16.776 1.00 45.17 153 A 1 \nATOM 1178 C CD2 . PHE A 1 199 ? 55.187 -21.758 16.388 1.00 44.56 153 A 1 \nATOM 1179 C CE1 . PHE A 1 199 ? 53.034 -23.216 15.416 1.00 43.57 153 A 1 \nATOM 1180 C CE2 . PHE A 1 199 ? 55.061 -21.979 15.022 1.00 43.03 153 A 1 \nATOM 1181 C CZ . PHE A 1 199 ? 53.982 -22.708 14.534 1.00 43.94 153 A 1 \nATOM 1182 N N . LEU A 1 200 ? 53.143 -25.268 19.081 1.00 48.18 154 A 1 \nATOM 1183 C CA . LEU A 1 200 ? 51.949 -26.026 18.719 1.00 47.84 154 A 1 \nATOM 1184 C C . LEU A 1 200 ? 50.876 -26.088 19.811 1.00 48.48 154 A 1 \nATOM 1185 O O . LEU A 1 200 ? 49.687 -25.887 19.519 1.00 48.11 154 A 1 \nATOM 1186 C CB . LEU A 1 200 ? 52.307 -27.431 18.220 1.00 47.81 154 A 1 \nATOM 1187 C CG . LEU A 1 200 ? 51.125 -28.346 17.881 1.00 47.01 154 A 1 \nATOM 1188 C CD1 . LEU A 1 200 ? 50.156 -27.708 16.899 1.00 46.26 154 A 1 \nATOM 1189 C CD2 . LEU A 1 200 ? 51.601 -29.691 17.371 1.00 47.90 154 A 1 \nATOM 1190 N N . GLN A 1 201 ? 51.282 -26.383 21.046 1.00 48.69 155 A 1 \nATOM 1191 C CA . GLN A 1 201 ? 50.326 -26.465 22.163 1.00 49.78 155 A 1 \nATOM 1192 C C . GLN A 1 201 ? 49.621 -25.130 22.441 1.00 48.25 155 A 1 \nATOM 1193 O O . GLN A 1 201 ? 48.415 -25.113 22.567 1.00 48.88 155 A 1 \nATOM 1194 C CB . GLN A 1 201 ? 50.956 -27.028 23.461 1.00 49.71 155 A 1 \nATOM 1195 C CG . GLN A 1 201 ? 49.881 -27.458 24.507 1.00 52.62 155 A 1 \nATOM 1196 C CD . GLN A 1 201 ? 50.443 -27.781 25.911 1.00 52.77 155 A 1 \nATOM 1197 O OE1 . GLN A 1 201 ? 51.206 -28.738 26.087 1.00 55.68 155 A 1 \nATOM 1198 N NE2 . GLN A 1 201 ? 50.031 -26.993 26.916 1.00 55.90 155 A 1 \nATOM 1199 N N . ASP A 1 202 ? 50.383 -24.038 22.533 1.00 47.64 156 A 1 \nATOM 1200 C CA . ASP A 1 202 ? 49.862 -22.691 22.773 1.00 46.50 156 A 1 \nATOM 1201 C C . ASP A 1 202 ? 48.871 -22.301 21.671 1.00 45.57 156 A 1 \nATOM 1202 O O . ASP A 1 202 ? 47.748 -21.851 21.952 1.00 44.92 156 A 1 \nATOM 1203 C CB . ASP A 1 202 ? 51.036 -21.707 22.832 1.00 47.11 156 A 1 \nATOM 1204 C CG . ASP A 1 202 ? 50.618 -20.289 23.200 1.00 48.97 156 A 1 \nATOM 1205 O OD1 . ASP A 1 202 ? 50.096 -20.072 24.313 1.00 51.03 156 A 1 \nATOM 1206 O OD2 . ASP A 1 202 ? 50.852 -19.372 22.390 1.00 50.97 156 A 1 \nATOM 1207 N N . LEU A 1 203 ? 49.300 -22.496 20.421 1.00 44.08 157 A 1 \nATOM 1208 C CA . LEU A 1 203 ? 48.481 -22.269 19.232 1.00 42.99 157 A 1 \nATOM 1209 C C . LEU A 1 203 ? 47.106 -22.927 19.370 1.00 42.06 157 A 1 \nATOM 1210 O O . LEU A 1 203 ? 46.075 -22.252 19.303 1.00 40.90 157 A 1 \nATOM 1211 C CB . LEU A 1 203 ? 49.180 -22.857 18.011 1.00 42.37 157 A 1 \nATOM 1212 C CG . LEU A 1 203 ? 48.946 -22.320 16.598 1.00 45.19 157 A 1 \nATOM 1213 C CD1 . LEU A 1 203 ? 49.317 -23.373 15.567 1.00 45.72 157 A 1 \nATOM 1214 C CD2 . LEU A 1 203 ? 47.539 -21.861 16.378 1.00 44.91 157 A 1 \nATOM 1215 N N . LEU A 1 204 ? 47.107 -24.246 19.555 1.00 41.45 158 A 1 \nATOM 1216 C CA . LEU A 1 204 ? 45.864 -25.018 19.655 1.00 41.05 158 A 1 \nATOM 1217 C C . LEU A 1 204 ? 45.063 -24.654 20.893 1.00 40.76 158 A 1 \nATOM 1218 O O . LEU A 1 204 ? 43.842 -24.621 20.844 1.00 40.47 158 A 1 \nATOM 1219 C CB . LEU A 1 204 ? 46.141 -26.523 19.637 1.00 41.36 158 A 1 \nATOM 1220 C CG . LEU A 1 204 ? 46.557 -27.149 18.298 1.00 42.47 158 A 1 \nATOM 1221 C CD1 . LEU A 1 204 ? 46.842 -28.603 18.493 1.00 41.16 158 A 1 \nATOM 1222 C CD2 . LEU A 1 204 ? 45.473 -26.956 17.210 1.00 43.09 158 A 1 \nATOM 1223 N N . CYS A 1 205 ? 45.749 -24.380 22.004 1.00 41.25 159 A 1 \nATOM 1224 C CA . CYS A 1 205 ? 45.051 -23.918 23.202 1.00 40.86 159 A 1 \nATOM 1225 C C . CYS A 1 205 ? 44.282 -22.625 22.914 1.00 39.98 159 A 1 \nATOM 1226 O O . CYS A 1 205 ? 43.132 -22.495 23.302 1.00 40.90 159 A 1 \nATOM 1227 C CB . CYS A 1 205 ? 46.009 -23.712 24.365 1.00 40.11 159 A 1 \nATOM 1228 S SG . CYS A 1 205 ? 45.177 -22.948 25.781 1.00 43.62 159 A 1 \nATOM 1229 N N . ARG A 1 206 ? 44.904 -21.699 22.194 1.00 39.56 160 A 1 \nATOM 1230 C CA . ARG A 1 206 ? 44.286 -20.406 21.888 1.00 39.40 160 A 1 \nATOM 1231 C C . ARG A 1 206 ? 43.184 -20.501 20.830 1.00 39.48 160 A 1 \nATOM 1232 O O . ARG A 1 206 ? 42.167 -19.819 20.943 1.00 38.86 160 A 1 \nATOM 1233 C CB . ARG A 1 206 ? 45.337 -19.384 21.460 1.00 39.69 160 A 1 \nATOM 1234 C CG . ARG A 1 206 ? 46.349 -19.026 22.544 1.00 41.67 160 A 1 \nATOM 1235 C CD . ARG A 1 206 ? 47.384 -18.096 21.986 1.00 45.24 160 A 1 \nATOM 1236 N NE . ARG A 1 206 ? 48.408 -17.697 22.946 1.00 47.69 160 A 1 \nATOM 1237 C CZ . ARG A 1 206 ? 48.300 -16.683 23.803 1.00 49.79 160 A 1 \nATOM 1238 N NH1 . ARG A 1 206 ? 47.189 -15.949 23.861 1.00 50.49 160 A 1 \nATOM 1239 N NH2 . ARG A 1 206 ? 49.309 -16.404 24.614 1.00 49.63 160 A 1 \nATOM 1240 N N . PHE A 1 207 ? 43.408 -21.338 19.808 1.00 39.19 161 A 1 \nATOM 1241 C CA . PHE A 1 207 ? 42.443 -21.593 18.732 1.00 39.23 161 A 1 \nATOM 1242 C C . PHE A 1 207 ? 41.146 -22.136 19.329 1.00 38.19 161 A 1 \nATOM 1243 O O . PHE A 1 207 ? 40.080 -21.599 19.092 1.00 39.11 161 A 1 \nATOM 1244 C CB . PHE A 1 207 ? 43.066 -22.591 17.745 1.00 39.13 161 A 1 \nATOM 1245 C CG . PHE A 1 207 ? 42.348 -22.728 16.439 1.00 38.75 161 A 1 \nATOM 1246 C CD1 . PHE A 1 207 ? 42.595 -21.842 15.388 1.00 37.96 161 A 1 \nATOM 1247 C CD2 . PHE A 1 207 ? 41.491 -23.804 16.224 1.00 40.80 161 A 1 \nATOM 1248 C CE1 . PHE A 1 207 ? 41.943 -22.005 14.153 1.00 40.41 161 A 1 \nATOM 1249 C CE2 . PHE A 1 207 ? 40.827 -23.976 14.991 1.00 39.74 161 A 1 \nATOM 1250 C CZ . PHE A 1 207 ? 41.061 -23.083 13.955 1.00 37.98 161 A 1 \nATOM 1251 N N . ASN A 1 208 ? 41.264 -23.193 20.127 1.00 38.09 162 A 1 \nATOM 1252 C CA . ASN A 1 208 ? 40.149 -23.814 20.822 1.00 36.68 162 A 1 \nATOM 1253 C C . ASN A 1 208 ? 39.363 -22.898 21.752 1.00 36.03 162 A 1 \nATOM 1254 O O . ASN A 1 208 ? 38.134 -22.988 21.818 1.00 35.40 162 A 1 \nATOM 1255 C CB . ASN A 1 208 ? 40.634 -25.055 21.581 1.00 37.55 162 A 1 \nATOM 1256 C CG . ASN A 1 208 ? 40.837 -26.264 20.665 1.00 38.52 162 A 1 \nATOM 1257 O OD1 . ASN A 1 208 ? 41.955 -26.561 20.225 1.00 43.47 162 A 1 \nATOM 1258 N ND2 . ASN A 1 208 ? 39.760 -26.926 20.342 1.00 39.58 162 A 1 \nATOM 1259 N N . ARG A 1 209 ? 40.059 -22.021 22.470 1.00 35.51 163 A 1 \nATOM 1260 C CA . ARG A 1 209 ? 39.394 -21.061 23.348 1.00 35.96 163 A 1 \nATOM 1261 C C . ARG A 1 209 ? 38.564 -20.086 22.528 1.00 35.54 163 A 1 \nATOM 1262 O O . ARG A 1 209 ? 37.418 -19.768 22.892 1.00 36.04 163 A 1 \nATOM 1263 C CB . ARG A 1 209 ? 40.418 -20.278 24.185 1.00 35.61 163 A 1 \nATOM 1264 C CG . ARG A 1 209 ? 40.936 -21.054 25.379 1.00 39.50 163 A 1 \nATOM 1265 C CD . ARG A 1 209 ? 41.501 -20.111 26.456 1.00 44.53 163 A 1 \nATOM 1266 N NE . ARG A 1 209 ? 40.457 -19.343 27.141 1.00 48.10 163 A 1 \nATOM 1267 C CZ . ARG A 1 209 ? 39.652 -19.833 28.086 1.00 50.73 163 A 1 \nATOM 1268 N NH1 . ARG A 1 209 ? 39.757 -21.097 28.474 1.00 50.99 163 A 1 \nATOM 1269 N NH2 . ARG A 1 209 ? 38.744 -19.051 28.657 1.00 52.02 163 A 1 \nATOM 1270 N N . VAL A 1 210 ? 39.142 -19.612 21.428 1.00 35.25 164 A 1 \nATOM 1271 C CA . VAL A 1 210 ? 38.424 -18.720 20.508 1.00 35.63 164 A 1 \nATOM 1272 C C . VAL A 1 210 ? 37.207 -19.409 19.922 1.00 35.81 164 A 1 \nATOM 1273 O O . VAL A 1 210 ? 36.146 -18.818 19.857 1.00 36.44 164 A 1 \nATOM 1274 C CB . VAL A 1 210 ? 39.355 -18.130 19.402 1.00 36.03 164 A 1 \nATOM 1275 C CG1 . VAL A 1 210 ? 38.545 -17.422 18.324 1.00 35.34 164 A 1 \nATOM 1276 C CG2 . VAL A 1 210 ? 40.327 -17.146 20.006 1.00 35.29 164 A 1 \nATOM 1277 N N . ASP A 1 211 ? 37.358 -20.672 19.510 1.00 36.48 165 A 1 \nATOM 1278 C CA . ASP A 1 211 ? 36.247 -21.450 18.942 1.00 35.59 165 A 1 \nATOM 1279 C C . ASP A 1 211 ? 35.094 -21.610 19.952 1.00 35.19 165 A 1 \nATOM 1280 O O . ASP A 1 211 ? 33.903 -21.378 19.627 1.00 34.60 165 A 1 \nATOM 1281 C CB . ASP A 1 211 ? 36.791 -22.803 18.449 1.00 36.06 165 A 1 \nATOM 1282 C CG . ASP A 1 211 ? 35.718 -23.748 17.956 1.00 37.03 165 A 1 \nATOM 1283 O OD1 . ASP A 1 211 ? 34.885 -23.366 17.093 1.00 35.11 165 A 1 \nATOM 1284 O OD2 . ASP A 1 211 ? 35.750 -24.918 18.407 1.00 38.24 165 A 1 \nATOM 1285 N N . TYR A 1 212 ? 35.454 -21.998 21.175 1.00 34.14 166 A 1 \nATOM 1286 C CA . TYR A 1 212 ? 34.550 -22.016 22.330 1.00 33.81 166 A 1 \nATOM 1287 C C . TYR A 1 212 ? 33.798 -20.701 22.512 1.00 33.33 166 A 1 \nATOM 1288 O O . TYR A 1 212 ? 32.574 -20.681 22.722 1.00 33.99 166 A 1 \nATOM 1289 C CB . TYR A 1 212 ? 35.358 -22.315 23.612 1.00 34.24 166 A 1 \nATOM 1290 C CG . TYR A 1 212 ? 34.505 -22.511 24.849 1.00 33.36 166 A 1 \nATOM 1291 C CD1 . TYR A 1 212 ? 33.276 -23.138 24.753 1.00 31.06 166 A 1 \nATOM 1292 C CD2 . TYR A 1 212 ? 34.942 -22.079 26.116 1.00 32.36 166 A 1 \nATOM 1293 C CE1 . TYR A 1 212 ? 32.488 -23.341 25.843 1.00 32.42 166 A 1 \nATOM 1294 C CE2 . TYR A 1 212 ? 34.156 -22.285 27.244 1.00 31.91 166 A 1 \nATOM 1295 C CZ . TYR A 1 212 ? 32.922 -22.915 27.104 1.00 33.74 166 A 1 \nATOM 1296 O OH . TYR A 1 212 ? 32.075 -23.155 28.174 1.00 32.76 166 A 1 \nATOM 1297 N N . THR A 1 213 ? 34.536 -19.607 22.436 1.00 33.52 167 A 1 \nATOM 1298 C CA . THR A 1 213 ? 33.992 -18.264 22.623 1.00 34.45 167 A 1 \nATOM 1299 C C . THR A 1 213 ? 32.932 -17.932 21.569 1.00 33.70 167 A 1 \nATOM 1300 O O . THR A 1 213 ? 31.890 -17.316 21.895 1.00 32.86 167 A 1 \nATOM 1301 C CB . THR A 1 213 ? 35.144 -17.246 22.558 1.00 34.89 167 A 1 \nATOM 1302 O OG1 . THR A 1 213 ? 36.076 -17.547 23.606 1.00 38.10 167 A 1 \nATOM 1303 C CG2 . THR A 1 213 ? 34.649 -15.868 22.734 1.00 36.13 167 A 1 \nATOM 1304 N N . THR A 1 214 ? 33.216 -18.346 20.318 1.00 32.34 168 A 1 \nATOM 1305 C CA . THR A 1 214 ? 32.339 -18.122 19.167 1.00 31.94 168 A 1 \nATOM 1306 C C . THR A 1 214 ? 31.066 -18.928 19.339 1.00 32.04 168 A 1 \nATOM 1307 O O . THR A 1 214 ? 29.988 -18.420 19.057 1.00 32.69 168 A 1 \nATOM 1308 C CB . THR A 1 214 ? 33.071 -18.495 17.834 1.00 31.90 168 A 1 \nATOM 1309 O OG1 . THR A 1 214 ? 34.283 -17.744 17.744 1.00 31.33 168 A 1 \nATOM 1310 C CG2 . THR A 1 214 ? 32.240 -18.198 16.591 1.00 30.37 168 A 1 \nATOM 1311 N N . ALA A 1 215 ? 31.194 -20.180 19.796 1.00 31.62 169 A 1 \nATOM 1312 C CA . ALA A 1 215 ? 30.047 -21.041 20.076 1.00 31.02 169 A 1 \nATOM 1313 C C . ALA A 1 215 ? 29.126 -20.448 21.149 1.00 31.38 169 A 1 \nATOM 1314 O O . ALA A 1 215 ? 27.885 -20.511 21.028 1.00 30.28 169 A 1 \nATOM 1315 C CB . ALA A 1 215 ? 30.510 -22.446 20.485 1.00 31.41 169 A 1 \nATOM 1316 N N . VAL A 1 216 ? 29.734 -19.886 22.201 1.00 30.19 170 A 1 \nATOM 1317 C CA . VAL A 1 216 ? 28.983 -19.167 23.242 1.00 30.02 170 A 1 \nATOM 1318 C C . VAL A 1 216 ? 28.291 -17.935 22.628 1.00 30.13 170 A 1 \nATOM 1319 O O . VAL A 1 216 ? 27.137 -17.649 22.958 1.00 31.20 170 A 1 \nATOM 1320 C CB . VAL A 1 216 ? 29.897 -18.741 24.435 1.00 29.32 170 A 1 \nATOM 1321 C CG1 . VAL A 1 216 ? 29.153 -17.766 25.389 1.00 29.74 170 A 1 \nATOM 1322 C CG2 . VAL A 1 216 ? 30.428 -19.996 25.214 1.00 28.59 170 A 1 \nATOM 1323 N N . GLY A 1 217 ? 28.991 -17.222 21.748 1.00 29.48 171 A 1 \nATOM 1324 C CA . GLY A 1 217 ? 28.405 -16.065 21.032 1.00 30.17 171 A 1 \nATOM 1325 C C . GLY A 1 217 ? 27.229 -16.483 20.143 1.00 31.03 171 A 1 \nATOM 1326 O O . GLY A 1 217 ? 26.209 -15.784 20.061 1.00 31.74 171 A 1 \nATOM 1327 N N . GLN A 1 218 ? 27.380 -17.619 19.465 1.00 31.62 172 A 1 \nATOM 1328 C CA . GLN A 1 218 ? 26.298 -18.193 18.636 1.00 31.12 172 A 1 \nATOM 1329 C C . GLN A 1 218 ? 25.067 -18.538 19.470 1.00 32.23 172 A 1 \nATOM 1330 O O . GLN A 1 218 ? 23.941 -18.293 19.026 1.00 32.18 172 A 1 \nATOM 1331 C CB . GLN A 1 218 ? 26.780 -19.426 17.861 1.00 31.06 172 A 1 \nATOM 1332 C CG . GLN A 1 218 ? 25.793 -19.902 16.754 1.00 30.81 172 A 1 \nATOM 1333 C CD . GLN A 1 218 ? 25.811 -19.002 15.534 1.00 33.30 172 A 1 \nATOM 1334 O OE1 . GLN A 1 218 ? 26.212 -17.840 15.623 1.00 32.10 172 A 1 \nATOM 1335 N NE2 . GLN A 1 218 ? 25.391 -19.542 14.363 1.00 32.05 172 A 1 \nATOM 1336 N N . LEU A 1 219 ? 25.280 -19.091 20.675 1.00 32.53 173 A 1 \nATOM 1337 C CA . LEU A 1 219 ? 24.207 -19.274 21.642 1.00 34.06 173 A 1 \nATOM 1338 C C . LEU A 1 219 ? 23.480 -17.965 21.983 1.00 33.34 173 A 1 \nATOM 1339 O O . LEU A 1 219 ? 22.260 -17.953 22.010 1.00 32.97 173 A 1 \nATOM 1340 C CB . LEU A 1 219 ? 24.692 -19.978 22.925 1.00 34.25 173 A 1 \nATOM 1341 C CG . LEU A 1 219 ? 23.835 -19.868 24.201 1.00 35.76 173 A 1 \nATOM 1342 C CD1 . LEU A 1 219 ? 22.567 -20.716 24.148 1.00 36.50 173 A 1 \nATOM 1343 C CD2 . LEU A 1 219 ? 24.669 -20.255 25.424 1.00 36.60 173 A 1 \nATOM 1344 N N . TYR A 1 220 ? 24.226 -16.898 22.275 1.00 33.68 174 A 1 \nATOM 1345 C CA . TYR A 1 220 ? 23.647 -15.558 22.489 1.00 33.54 174 A 1 \nATOM 1346 C C . TYR A 1 220 ? 22.807 -15.081 21.282 1.00 33.84 174 A 1 \nATOM 1347 O O . TYR A 1 220 ? 21.750 -14.448 21.452 1.00 34.10 174 A 1 \nATOM 1348 C CB . TYR A 1 220 ? 24.746 -14.520 22.802 1.00 33.95 174 A 1 \nATOM 1349 C CG . TYR A 1 220 ? 25.493 -14.740 24.132 1.00 33.93 174 A 1 \nATOM 1350 C CD1 . TYR A 1 220 ? 24.871 -15.324 25.221 1.00 34.08 174 A 1 \nATOM 1351 C CD2 . TYR A 1 220 ? 26.824 -14.361 24.272 1.00 34.58 174 A 1 \nATOM 1352 C CE1 . TYR A 1 220 ? 25.570 -15.541 26.446 1.00 36.03 174 A 1 \nATOM 1353 C CE2 . TYR A 1 220 ? 27.526 -14.569 25.488 1.00 34.17 174 A 1 \nATOM 1354 C CZ . TYR A 1 220 ? 26.888 -15.151 26.556 1.00 34.94 174 A 1 \nATOM 1355 O OH . TYR A 1 220 ? 27.585 -15.368 27.739 1.00 36.76 174 A 1 \nATOM 1356 N N . ASP A 1 221 ? 23.277 -15.396 20.078 1.00 33.76 175 A 1 \nATOM 1357 C CA . ASP A 1 221 ? 22.612 -14.990 18.830 1.00 34.51 175 A 1 \nATOM 1358 C C . ASP A 1 221 ? 21.296 -15.722 18.654 1.00 35.13 175 A 1 \nATOM 1359 O O . ASP A 1 221 ? 20.254 -15.127 18.388 1.00 35.40 175 A 1 \nATOM 1360 C CB . ASP A 1 221 ? 23.538 -15.272 17.640 1.00 34.27 175 A 1 \nATOM 1361 C CG . ASP A 1 221 ? 22.867 -15.048 16.294 1.00 34.17 175 A 1 \nATOM 1362 O OD1 . ASP A 1 221 ? 22.045 -15.896 15.842 1.00 36.84 175 A 1 \nATOM 1363 O OD2 . ASP A 1 221 ? 23.180 -14.022 15.684 1.00 33.59 175 A 1 \nATOM 1364 N N . VAL A 1 222 ? 21.357 -17.034 18.809 1.00 36.36 176 A 1 \nATOM 1365 C CA . VAL A 1 222 ? 20.256 -17.898 18.471 1.00 36.52 176 A 1 \nATOM 1366 C C . VAL A 1 222 ? 19.141 -17.917 19.528 1.00 37.77 176 A 1 \nATOM 1367 O O . VAL A 1 222 ? 18.006 -18.339 19.246 1.00 37.76 176 A 1 \nATOM 1368 C CB . VAL A 1 222 ? 20.815 -19.287 18.108 1.00 37.48 176 A 1 \nATOM 1369 C CG1 . VAL A 1 222 ? 20.767 -20.280 19.290 1.00 36.40 176 A 1 \nATOM 1370 C CG2 . VAL A 1 222 ? 20.109 -19.807 16.869 1.00 38.32 176 A 1 \nATOM 1371 N N . THR A 1 223 ? 19.464 -17.465 20.745 1.00 37.76 177 A 1 \nATOM 1372 C CA . THR A 1 223 ? 18.464 -17.330 21.808 1.00 38.33 177 A 1 \nATOM 1373 C C . THR A 1 223 ? 18.101 -15.873 22.097 1.00 38.58 177 A 1 \nATOM 1374 O O . THR A 1 223 ? 17.447 -15.613 23.091 1.00 38.60 177 A 1 \nATOM 1375 C CB . THR A 1 223 ? 18.961 -17.928 23.136 1.00 37.85 177 A 1 \nATOM 1376 O OG1 . THR A 1 223 ? 20.192 -17.292 23.500 1.00 37.26 177 A 1 \nATOM 1377 C CG2 . THR A 1 223 ? 19.149 -19.448 23.014 1.00 39.29 177 A 1 \nATOM 1378 N N . SER A 1 224 ? 18.496 -14.937 21.233 1.00 39.71 178 A 1 \nATOM 1379 C CA . SER A 1 224 ? 18.277 -13.505 21.502 1.00 40.96 178 A 1 \nATOM 1380 C C . SER A 1 224 ? 16.833 -13.019 21.330 1.00 42.40 178 A 1 \nATOM 1381 O O . SER A 1 224 ? 16.473 -11.951 21.836 1.00 42.77 178 A 1 \nATOM 1382 C CB . SER A 1 224 ? 19.222 -12.628 20.687 1.00 40.55 178 A 1 \nATOM 1383 O OG . SER A 1 224 ? 18.936 -12.674 19.301 1.00 41.13 178 A 1 \nATOM 1384 N N . MET A 1 225 ? 16.019 -13.796 20.616 1.00 43.57 179 A 1 \nATOM 1385 C CA . MET A 1 225 ? 14.639 -13.423 20.344 1.00 44.28 179 A 1 \nATOM 1386 C C . MET A 1 225 ? 13.643 -14.178 21.231 1.00 45.15 179 A 1 \nATOM 1387 O O . MET A 1 225 ? 12.433 -14.145 20.999 1.00 45.12 179 A 1 \nATOM 1388 C CB . MET A 1 225 ? 14.329 -13.590 18.851 1.00 45.16 179 A 1 \nATOM 1389 C CG . MET A 1 225 ? 14.322 -15.037 18.323 1.00 45.24 179 A 1 \nATOM 1390 S SD . MET A 1 225 ? 15.934 -15.839 18.368 1.00 44.78 179 A 1 \nATOM 1391 C CE . MET A 1 225 ? 16.809 -14.906 17.120 1.00 42.80 179 A 1 \nATOM 1392 N N . PHE A 1 226 ? 14.162 -14.842 22.263 1.00 46.17 180 A 1 \nATOM 1393 C CA . PHE A 1 226 ? 13.331 -15.474 23.290 1.00 47.13 180 A 1 \nATOM 1394 C C . PHE A 1 226 ? 13.559 -14.793 24.630 1.00 47.71 180 A 1 \nATOM 1395 O O . PHE A 1 226 ? 14.689 -14.448 24.961 1.00 47.27 180 A 1 \nATOM 1396 C CB . PHE A 1 226 ? 13.651 -16.963 23.393 1.00 47.50 180 A 1 \nATOM 1397 C CG . PHE A 1 226 ? 13.466 -17.697 22.103 1.00 48.37 180 A 1 \nATOM 1398 C CD1 . PHE A 1 226 ? 12.194 -18.105 21.697 1.00 49.04 180 A 1 \nATOM 1399 C CD2 . PHE A 1 226 ? 14.550 -17.949 21.271 1.00 48.46 180 A 1 \nATOM 1400 C CE1 . PHE A 1 226 ? 12.010 -18.767 20.484 1.00 48.27 180 A 1 \nATOM 1401 C CE2 . PHE A 1 226 ? 14.372 -18.617 20.058 1.00 49.94 180 A 1 \nATOM 1402 C CZ . PHE A 1 226 ? 13.088 -19.020 19.664 1.00 47.72 180 A 1 \nATOM 1403 N N . ASP A 1 227 ? 12.480 -14.571 25.381 1.00 48.35 181 A 1 \nATOM 1404 C CA . ASP A 1 227 ? 12.574 -13.998 26.724 1.00 48.91 181 A 1 \nATOM 1405 C C . ASP A 1 227 ? 13.421 -14.955 27.556 1.00 48.66 181 A 1 \nATOM 1406 O O . ASP A 1 227 ? 13.005 -16.078 27.811 1.00 49.20 181 A 1 \nATOM 1407 C CB . ASP A 1 227 ? 11.160 -13.856 27.307 1.00 49.32 181 A 1 \nATOM 1408 C CG . ASP A 1 227 ? 11.136 -13.250 28.715 1.00 51.02 181 A 1 \nATOM 1409 O OD1 . ASP A 1 227 ? 12.200 -13.075 29.359 1.00 53.31 181 A 1 \nATOM 1410 O OD2 . ASP A 1 227 ? 10.021 -12.941 29.188 1.00 53.59 181 A 1 \nATOM 1411 N N . SER A 1 228 ? 14.613 -14.520 27.952 1.00 49.27 182 A 1 \nATOM 1412 C CA . SER A 1 228 ? 15.566 -15.392 28.650 1.00 49.63 182 A 1 \nATOM 1413 C C . SER A 1 228 ? 15.069 -15.848 30.026 1.00 50.40 182 A 1 \nATOM 1414 O O . SER A 1 228 ? 15.503 -16.887 30.532 1.00 49.65 182 A 1 \nATOM 1415 C CB . SER A 1 228 ? 16.961 -14.756 28.730 1.00 49.53 182 A 1 \nATOM 1416 O OG . SER A 1 228 ? 17.053 -13.802 29.772 1.00 50.50 182 A 1 \nATOM 1417 N N . ASN A 1 229 ? 14.145 -15.082 30.617 1.00 51.11 183 A 1 \nATOM 1418 C CA . ASN A 1 229 ? 13.505 -15.473 31.887 1.00 52.15 183 A 1 \nATOM 1419 C C . ASN A 1 229 ? 12.644 -16.728 31.723 1.00 52.43 183 A 1 \nATOM 1420 O O . ASN A 1 229 ? 12.423 -17.486 32.680 1.00 52.22 183 A 1 \nATOM 1421 C CB . ASN A 1 229 ? 12.638 -14.330 32.461 1.00 52.57 183 A 1 \nATOM 1422 C CG . ASN A 1 229 ? 13.427 -13.052 32.729 1.00 53.39 183 A 1 \nATOM 1423 O OD1 . ASN A 1 229 ? 12.883 -11.953 32.649 1.00 55.19 183 A 1 \nATOM 1424 N ND2 . ASN A 1 229 ? 14.702 -13.191 33.058 1.00 54.94 183 A 1 \nATOM 1425 N N . LYS A 1 230 ? 12.153 -16.937 30.504 1.00 52.86 184 A 1 \nATOM 1426 C CA . LYS A 1 230 ? 11.284 -18.074 30.204 1.00 53.74 184 A 1 \nATOM 1427 C C . LYS A 1 230 ? 12.036 -19.203 29.492 1.00 53.51 184 A 1 \nATOM 1428 O O . LYS A 1 230 ? 11.422 -20.182 29.062 1.00 53.66 184 A 1 \nATOM 1429 C CB . LYS A 1 230 ? 10.085 -17.627 29.361 1.00 53.74 184 A 1 \nATOM 1430 C CG . LYS A 1 230 ? 9.178 -16.607 30.054 1.00 55.35 184 A 1 \nATOM 1431 C CD . LYS A 1 230 ? 8.007 -16.200 29.150 1.00 55.40 184 A 1 \nATOM 1432 C CE . LYS A 1 230 ? 6.999 -15.316 29.898 1.00 59.33 184 A 1 \nATOM 1433 N NZ . LYS A 1 230 ? 5.655 -15.247 29.206 1.00 60.90 184 A 1 \nATOM 1434 N N . LEU A 1 231 ? 13.356 -19.058 29.366 1.00 52.95 185 A 1 \nATOM 1435 C CA . LEU A 1 231 ? 14.201 -20.090 28.755 1.00 52.85 185 A 1 \nATOM 1436 C C . LEU A 1 231 ? 14.169 -21.385 29.564 1.00 52.58 185 A 1 \nATOM 1437 O O . LEU A 1 231 ? 14.652 -21.424 30.704 1.00 53.52 185 A 1 \nATOM 1438 C CB . LEU A 1 231 ? 15.657 -19.602 28.626 1.00 52.68 185 A 1 \nATOM 1439 C CG . LEU A 1 231 ? 16.276 -19.468 27.234 1.00 53.78 185 A 1 \nATOM 1440 C CD1 . LEU A 1 231 ? 17.752 -19.149 27.343 1.00 52.78 185 A 1 \nATOM 1441 C CD2 . LEU A 1 231 ? 16.075 -20.737 26.411 1.00 54.66 185 A 1 \nATOM 1442 N N . ASP A 1 232 ? 13.628 -22.447 28.971 1.00 51.76 186 A 1 \nATOM 1443 C CA . ASP A 1 232 ? 13.399 -23.695 29.697 1.00 51.05 186 A 1 \nATOM 1444 C C . ASP A 1 232 ? 13.173 -24.841 28.720 1.00 50.34 186 A 1 \nATOM 1445 O O . ASP A 1 232 ? 12.167 -24.847 28.017 1.00 49.23 186 A 1 \nATOM 1446 C CB . ASP A 1 232 ? 12.189 -23.526 30.626 1.00 51.46 186 A 1 \nATOM 1447 C CG . ASP A 1 232 ? 11.849 -24.776 31.413 1.00 52.53 186 A 1 \nATOM 1448 O OD1 . ASP A 1 232 ? 12.514 -25.819 31.259 1.00 53.18 186 A 1 \nATOM 1449 O OD2 . ASP A 1 232 ? 10.878 -24.711 32.202 1.00 55.82 186 A 1 \nATOM 1450 N N . PRO A 1 233 ? 14.090 -25.834 28.697 1.00 50.14 187 A 1 \nATOM 1451 C CA . PRO A 1 233 ? 14.039 -26.959 27.740 1.00 50.25 187 A 1 \nATOM 1452 C C . PRO A 1 233 ? 12.689 -27.684 27.694 1.00 50.53 187 A 1 \nATOM 1453 O O . PRO A 1 233 ? 12.248 -28.101 26.624 1.00 49.94 187 A 1 \nATOM 1454 C CB . PRO A 1 233 ? 15.125 -27.908 28.257 1.00 50.16 187 A 1 \nATOM 1455 C CG . PRO A 1 233 ? 16.093 -27.011 28.968 1.00 50.54 187 A 1 \nATOM 1456 C CD . PRO A 1 233 ? 15.248 -25.945 29.607 1.00 50.18 187 A 1 \nATOM 1457 N N . ASP A 1 234 ? 12.030 -27.791 28.841 1.00 51.39 188 A 1 \nATOM 1458 C CA . ASP A 1 234 ? 10.803 -28.574 28.970 1.00 52.34 188 A 1 \nATOM 1459 C C . ASP A 1 234 ? 9.539 -27.872 28.471 1.00 52.79 188 A 1 \nATOM 1460 O O . ASP A 1 234 ? 8.499 -28.514 28.314 1.00 52.73 188 A 1 \nATOM 1461 C CB . ASP A 1 234 ? 10.612 -28.993 30.434 1.00 52.63 188 A 1 \nATOM 1462 C CG . ASP A 1 234 ? 11.596 -30.060 30.877 1.00 53.63 188 A 1 \nATOM 1463 O OD1 . ASP A 1 234 ? 12.135 -30.795 30.018 1.00 53.96 188 A 1 \nATOM 1464 O OD2 . ASP A 1 234 ? 11.820 -30.177 32.103 1.00 55.40 188 A 1 \nATOM 1465 N N . VAL A 1 235 ? 9.624 -26.564 28.220 1.00 53.38 189 A 1 \nATOM 1466 C CA . VAL A 1 235 ? 8.436 -25.749 27.939 1.00 54.22 189 A 1 \nATOM 1467 C C . VAL A 1 235 ? 8.640 -24.877 26.705 1.00 54.79 189 A 1 \nATOM 1468 O O . VAL A 1 235 ? 9.567 -24.073 26.666 1.00 54.88 189 A 1 \nATOM 1469 C CB . VAL A 1 235 ? 8.087 -24.829 29.161 1.00 54.19 189 A 1 \nATOM 1470 C CG1 . VAL A 1 235 ? 6.794 -24.087 28.930 1.00 54.95 189 A 1 \nATOM 1471 C CG2 . VAL A 1 235 ? 8.002 -25.636 30.452 1.00 53.97 189 A 1 \nATOM 1472 N N . SER A 1 236 ? 7.775 -25.009 25.702 1.00 55.77 190 A 1 \nATOM 1473 C CA . SER A 1 236 ? 7.909 -24.178 24.502 1.00 56.63 190 A 1 \nATOM 1474 C C . SER A 1 236 ? 7.637 -22.704 24.793 1.00 57.08 190 A 1 \nATOM 1475 O O . SER A 1 236 ? 6.945 -22.366 25.763 1.00 57.22 190 A 1 \nATOM 1476 C CB . SER A 1 236 ? 7.024 -24.677 23.357 1.00 56.80 190 A 1 \nATOM 1477 O OG . SER A 1 236 ? 5.702 -24.897 23.795 1.00 58.69 190 A 1 \nATOM 1478 N N . GLN A 1 237 ? 8.210 -21.835 23.961 1.00 57.37 191 A 1 \nATOM 1479 C CA . GLN A 1 237 ? 8.005 -20.394 24.075 1.00 57.58 191 A 1 \nATOM 1480 C C . GLN A 1 237 ? 8.140 -19.733 22.715 1.00 57.71 191 A 1 \nATOM 1481 O O . GLN A 1 237 ? 9.096 -20.019 21.978 1.00 57.73 191 A 1 \nATOM 1482 C CB . GLN A 1 237 ? 9.000 -19.772 25.058 1.00 57.86 191 A 1 \nATOM 1483 N N . PRO A 1 238 ? 7.194 -18.836 22.378 1.00 57.52 192 A 1 \nATOM 1484 C CA . PRO A 1 238 ? 7.240 -18.172 21.082 1.00 57.63 192 A 1 \nATOM 1485 C C . PRO A 1 238 ? 8.285 -17.063 21.109 1.00 57.48 192 A 1 \nATOM 1486 O O . PRO A 1 238 ? 8.814 -16.742 22.177 1.00 57.54 192 A 1 \nATOM 1487 C CB . PRO A 1 238 ? 5.832 -17.573 20.948 1.00 57.63 192 A 1 \nATOM 1488 C CG . PRO A 1 238 ? 5.445 -17.262 22.360 1.00 58.10 192 A 1 \nATOM 1489 C CD . PRO A 1 238 ? 6.063 -18.362 23.202 1.00 57.80 192 A 1 \nATOM 1490 N N . THR A 1 239 ? 8.585 -16.500 19.942 1.00 57.26 193 A 1 \nATOM 1491 C CA . THR A 1 239 ? 9.417 -15.312 19.841 1.00 57.14 193 A 1 \nATOM 1492 C C . THR A 1 239 ? 8.915 -14.277 20.847 1.00 56.92 193 A 1 \nATOM 1493 O O . THR A 1 239 ? 7.705 -14.193 21.114 1.00 56.65 193 A 1 \nATOM 1494 C CB . THR A 1 239 ? 9.357 -14.742 18.406 1.00 57.07 193 A 1 \nATOM 1495 O OG1 . THR A 1 239 ? 9.749 -15.762 17.483 1.00 58.02 193 A 1 \nATOM 1496 C CG2 . THR A 1 239 ? 10.270 -13.524 18.227 1.00 57.60 193 A 1 \nATOM 1497 N N . THR A 1 240 ? 9.846 -13.512 21.420 1.00 56.61 194 A 1 \nATOM 1498 C CA . THR A 1 240 ? 9.504 -12.403 22.322 1.00 56.08 194 A 1 \nATOM 1499 C C . THR A 1 240 ? 8.514 -11.448 21.657 1.00 55.81 194 A 1 \nATOM 1500 O O . THR A 1 240 ? 8.601 -11.205 20.453 1.00 55.88 194 A 1 \nATOM 1501 C CB . THR A 1 240 ? 10.751 -11.607 22.757 1.00 55.83 194 A 1 \nATOM 1502 O OG1 . THR A 1 240 ? 10.373 -10.616 23.713 1.00 55.32 194 A 1 \nATOM 1503 C CG2 . THR A 1 240 ? 11.415 -10.916 21.561 1.00 55.95 194 A 1 \nATOM 1504 N N . THR A 1 241 ? 7.574 -10.923 22.441 1.00 55.51 195 A 1 \nATOM 1505 C CA . THR A 1 241 ? 6.622 -9.929 21.927 1.00 55.09 195 A 1 \nATOM 1506 C C . THR A 1 241 ? 6.917 -8.511 22.415 1.00 54.65 195 A 1 \nATOM 1507 O O . THR A 1 241 ? 6.544 -7.548 21.746 1.00 54.90 195 A 1 \nATOM 1508 C CB . THR A 1 241 ? 5.143 -10.285 22.235 1.00 55.11 195 A 1 \nATOM 1509 O OG1 . THR A 1 241 ? 5.005 -10.669 23.609 1.00 55.41 195 A 1 \nATOM 1510 C CG2 . THR A 1 241 ? 4.632 -11.406 21.320 1.00 54.68 195 A 1 \nATOM 1511 N N . ASP A 1 242 ? 7.585 -8.381 23.565 1.00 53.94 196 A 1 \nATOM 1512 C CA . ASP A 1 242 ? 7.955 -7.058 24.088 1.00 52.92 196 A 1 \nATOM 1513 C C . ASP A 1 242 ? 9.358 -6.561 23.681 1.00 52.11 196 A 1 \nATOM 1514 O O . ASP A 1 242 ? 9.680 -5.387 23.880 1.00 51.63 196 A 1 \nATOM 1515 C CB . ASP A 1 242 ? 7.736 -6.962 25.616 1.00 53.43 196 A 1 \nATOM 1516 C CG . ASP A 1 242 ? 8.654 -7.882 26.420 1.00 54.27 196 A 1 \nATOM 1517 O OD1 . ASP A 1 242 ? 9.595 -8.469 25.842 1.00 55.79 196 A 1 \nATOM 1518 O OD2 . ASP A 1 242 ? 8.431 -8.011 27.648 1.00 54.87 196 A 1 \nATOM 1519 N N . PHE A 1 243 ? 10.181 -7.457 23.122 1.00 50.82 197 A 1 \nATOM 1520 C CA . PHE A 1 243 ? 11.551 -7.132 22.679 1.00 50.13 197 A 1 \nATOM 1521 C C . PHE A 1 243 ? 12.394 -6.418 23.741 1.00 49.70 197 A 1 \nATOM 1522 O O . PHE A 1 243 ? 13.305 -5.642 23.412 1.00 50.12 197 A 1 \nATOM 1523 C CB . PHE A 1 243 ? 11.517 -6.307 21.385 1.00 49.50 197 A 1 \nATOM 1524 C CG . PHE A 1 243 ? 11.054 -7.081 20.202 1.00 49.32 197 A 1 \nATOM 1525 C CD1 . PHE A 1 243 ? 11.973 -7.715 19.374 1.00 48.68 197 A 1 \nATOM 1526 C CD2 . PHE A 1 243 ? 9.690 -7.213 19.928 1.00 47.50 197 A 1 \nATOM 1527 C CE1 . PHE A 1 243 ? 11.544 -8.455 18.270 1.00 49.73 197 A 1 \nATOM 1528 C CE2 . PHE A 1 243 ? 9.255 -7.945 18.837 1.00 47.34 197 A 1 \nATOM 1529 C CZ . PHE A 1 243 ? 10.175 -8.568 18.007 1.00 48.76 197 A 1 \nATOM 1530 N N . ALA A 1 244 ? 12.091 -6.674 25.010 1.00 49.21 198 A 1 \nATOM 1531 C CA . ALA A 1 244 ? 12.734 -5.946 26.113 1.00 49.08 198 A 1 \nATOM 1532 C C . ALA A 1 244 ? 14.231 -6.224 26.219 1.00 48.56 198 A 1 \nATOM 1533 O O . ALA A 1 244 ? 14.977 -5.416 26.760 1.00 48.51 198 A 1 \nATOM 1534 C CB . ALA A 1 244 ? 12.035 -6.245 27.445 1.00 49.23 198 A 1 \nATOM 1535 N N . GLU A 1 245 ? 14.668 -7.358 25.679 1.00 48.22 199 A 1 \nATOM 1536 C CA . GLU A 1 245 ? 16.090 -7.728 25.711 1.00 47.81 199 A 1 \nATOM 1537 C C . GLU A 1 245 ? 16.864 -7.290 24.453 1.00 46.87 199 A 1 \nATOM 1538 O O . GLU A 1 245 ? 18.075 -7.537 24.344 1.00 46.59 199 A 1 \nATOM 1539 C CB . GLU A 1 245 ? 16.237 -9.234 25.943 1.00 48.21 199 A 1 \nATOM 1540 C CG . GLU A 1 245 ? 15.754 -9.707 27.337 1.00 48.95 199 A 1 \nATOM 1541 C CD . GLU A 1 245 ? 16.054 -11.172 27.591 1.00 49.11 199 A 1 \nATOM 1542 O OE1 . GLU A 1 245 ? 16.463 -11.510 28.709 1.00 53.45 199 A 1 \nATOM 1543 O OE2 . GLU A 1 245 ? 15.900 -11.994 26.671 1.00 52.35 199 A 1 \nATOM 1544 N N . PHE A 1 246 ? 16.171 -6.639 23.516 1.00 45.62 200 A 1 \nATOM 1545 C CA . PHE A 1 246 ? 16.812 -6.072 22.322 1.00 44.67 200 A 1 \nATOM 1546 C C . PHE A 1 246 ? 17.493 -4.738 22.670 1.00 44.71 200 A 1 \nATOM 1547 O O . PHE A 1 246 ? 17.129 -3.675 22.153 1.00 44.73 200 A 1 \nATOM 1548 C CB . PHE A 1 246 ? 15.786 -5.876 21.204 1.00 44.69 200 A 1 \nATOM 1549 C CG . PHE A 1 246 ? 15.618 -7.077 20.278 1.00 43.69 200 A 1 \nATOM 1550 C CD1 . PHE A 1 246 ? 15.536 -8.368 20.775 1.00 44.92 200 A 1 \nATOM 1551 C CD2 . PHE A 1 246 ? 15.494 -6.888 18.910 1.00 43.34 200 A 1 \nATOM 1552 C CE1 . PHE A 1 246 ? 15.376 -9.467 19.911 1.00 45.35 200 A 1 \nATOM 1553 C CE2 . PHE A 1 246 ? 15.325 -7.971 18.041 1.00 42.61 200 A 1 \nATOM 1554 C CZ . PHE A 1 246 ? 15.261 -9.257 18.542 1.00 43.89 200 A 1 \nATOM 1555 N N . THR A 1 247 ? 18.486 -4.806 23.554 1.00 44.31 201 A 1 \nATOM 1556 C CA . THR A 1 247 ? 19.189 -3.619 24.031 1.00 43.34 201 A 1 \nATOM 1557 C C . THR A 1 247 ? 20.560 -3.585 23.393 1.00 43.45 201 A 1 \nATOM 1558 O O . THR A 1 247 ? 21.025 -4.608 22.865 1.00 42.87 201 A 1 \nATOM 1559 C CB . THR A 1 247 ? 19.343 -3.641 25.568 1.00 43.61 201 A 1 \nATOM 1560 O OG1 . THR A 1 247 ? 20.080 -4.805 25.954 1.00 42.69 201 A 1 \nATOM 1561 C CG2 . THR A 1 247 ? 17.966 -3.695 26.258 1.00 43.18 201 A 1 \nATOM 1562 N N . LEU A 1 248 ? 21.207 -2.419 23.432 1.00 42.27 202 A 1 \nATOM 1563 C CA . LEU A 1 248 ? 22.542 -2.274 22.873 1.00 42.32 202 A 1 \nATOM 1564 C C . LEU A 1 248 ? 23.552 -3.082 23.676 1.00 42.07 202 A 1 \nATOM 1565 O O . LEU A 1 248 ? 24.531 -3.585 23.131 1.00 41.97 202 A 1 \nATOM 1566 C CB . LEU A 1 248 ? 22.969 -0.808 22.823 1.00 41.89 202 A 1 \nATOM 1567 C CG . LEU A 1 248 ? 24.336 -0.484 22.213 1.00 41.22 202 A 1 \nATOM 1568 C CD1 . LEU A 1 248 ? 24.506 -1.044 20.783 1.00 39.91 202 A 1 \nATOM 1569 C CD2 . LEU A 1 248 ? 24.579 1.017 22.249 1.00 42.12 202 A 1 \nATOM 1570 N N . SER A 1 249 ? 23.293 -3.213 24.971 1.00 41.70 203 A 1 \nATOM 1571 C CA . SER A 1 249 ? 24.168 -3.975 25.846 1.00 41.45 203 A 1 \nATOM 1572 C C . SER A 1 249 ? 24.165 -5.452 25.473 1.00 40.70 203 A 1 \nATOM 1573 O O . SER A 1 249 ? 25.209 -6.093 25.439 1.00 41.10 203 A 1 \nATOM 1574 C CB . SER A 1 249 ? 23.744 -3.798 27.312 1.00 41.65 203 A 1 \nATOM 1575 O OG . SER A 1 249 ? 24.456 -4.711 28.120 1.00 42.75 203 A 1 \nATOM 1576 N N . ASN A 1 250 ? 22.977 -5.989 25.225 1.00 40.44 204 A 1 \nATOM 1577 C CA . ASN A 1 250 ? 22.817 -7.368 24.823 1.00 39.96 204 A 1 \nATOM 1578 C C . ASN A 1 250 ? 23.358 -7.589 23.422 1.00 39.51 204 A 1 \nATOM 1579 O O . ASN A 1 250 ? 23.923 -8.638 23.146 1.00 40.40 204 A 1 \nATOM 1580 C CB . ASN A 1 250 ? 21.360 -7.788 24.925 1.00 40.26 204 A 1 \nATOM 1581 C CG . ASN A 1 250 ? 20.952 -8.096 26.349 1.00 42.44 204 A 1 \nATOM 1582 O OD1 . ASN A 1 250 ? 21.808 -8.233 27.229 1.00 43.78 204 A 1 \nATOM 1583 N ND2 . ASN A 1 250 ? 19.648 -8.196 26.591 1.00 41.99 204 A 1 \nATOM 1584 N N . TYR A 1 251 ? 23.211 -6.586 22.562 1.00 38.61 205 A 1 \nATOM 1585 C CA . TYR A 1 251 ? 23.785 -6.623 21.219 1.00 38.21 205 A 1 \nATOM 1586 C C . TYR A 1 251 ? 25.316 -6.677 21.248 1.00 38.04 205 A 1 \nATOM 1587 O O . TYR A 1 251 ? 25.935 -7.449 20.521 1.00 38.16 205 A 1 \nATOM 1588 C CB . TYR A 1 251 ? 23.331 -5.432 20.370 1.00 37.74 205 A 1 \nATOM 1589 C CG . TYR A 1 251 ? 23.963 -5.485 19.001 1.00 38.17 205 A 1 \nATOM 1590 C CD1 . TYR A 1 251 ? 23.490 -6.372 18.031 1.00 38.73 205 A 1 \nATOM 1591 C CD2 . TYR A 1 251 ? 25.060 -4.699 18.692 1.00 36.83 205 A 1 \nATOM 1592 C CE1 . TYR A 1 251 ? 24.108 -6.457 16.781 1.00 38.25 205 A 1 \nATOM 1593 C CE2 . TYR A 1 251 ? 25.686 -4.777 17.457 1.00 37.82 205 A 1 \nATOM 1594 C CZ . TYR A 1 251 ? 25.199 -5.655 16.499 1.00 37.98 205 A 1 \nATOM 1595 O OH . TYR A 1 251 ? 25.817 -5.732 15.251 1.00 37.06 205 A 1 \nATOM 1596 N N . LYS A 1 252 ? 25.927 -5.832 22.064 1.00 37.47 206 A 1 \nATOM 1597 C CA . LYS A 1 252 ? 27.388 -5.788 22.139 1.00 37.47 206 A 1 \nATOM 1598 C C . LYS A 1 252 ? 27.965 -7.122 22.631 1.00 36.24 206 A 1 \nATOM 1599 O O . LYS A 1 252 ? 29.046 -7.510 22.227 1.00 36.58 206 A 1 \nATOM 1600 C CB . LYS A 1 252 ? 27.858 -4.628 23.021 1.00 37.05 206 A 1 \nATOM 1601 C CG . LYS A 1 252 ? 27.608 -3.225 22.438 1.00 39.73 206 A 1 \nATOM 1602 C CD . LYS A 1 252 ? 27.794 -2.126 23.527 1.00 39.58 206 A 1 \nATOM 1603 C CE . LYS A 1 252 ? 29.252 -1.984 23.947 1.00 44.02 206 A 1 \nATOM 1604 N NZ . LYS A 1 252 ? 30.149 -1.489 22.838 1.00 46.23 206 A 1 \nATOM 1605 N N . ARG A 1 253 ? 27.233 -7.816 23.487 1.00 35.92 207 A 1 \nATOM 1606 C CA . ARG A 1 253 ? 27.666 -9.112 23.978 1.00 35.98 207 A 1 \nATOM 1607 C C . ARG A 1 253 ? 27.593 -10.192 22.875 1.00 35.80 207 A 1 \nATOM 1608 O O . ARG A 1 253 ? 28.561 -10.942 22.661 1.00 35.46 207 A 1 \nATOM 1609 C CB . ARG A 1 253 ? 26.892 -9.511 25.239 1.00 35.23 207 A 1 \nATOM 1610 C CG . ARG A 1 253 ? 27.221 -10.927 25.750 1.00 36.99 207 A 1 \nATOM 1611 C CD . ARG A 1 253 ? 26.451 -11.303 27.002 1.00 36.27 207 A 1 \nATOM 1612 N NE . ARG A 1 253 ? 25.088 -11.681 26.681 1.00 39.88 207 A 1 \nATOM 1613 C CZ . ARG A 1 253 ? 24.250 -12.308 27.498 1.00 41.99 207 A 1 \nATOM 1614 N NH1 . ARG A 1 253 ? 24.617 -12.648 28.736 1.00 43.60 207 A 1 \nATOM 1615 N NH2 . ARG A 1 253 ? 23.024 -12.587 27.072 1.00 44.80 207 A 1 \nATOM 1616 N N . ILE A 1 254 ? 26.469 -10.277 22.170 1.00 35.85 208 A 1 \nATOM 1617 C CA . ILE A 1 254 ? 26.355 -11.259 21.080 1.00 35.42 208 A 1 \nATOM 1618 C C . ILE A 1 254 ? 27.572 -11.166 20.165 1.00 35.21 208 A 1 \nATOM 1619 O O . ILE A 1 254 ? 28.258 -12.151 19.875 1.00 35.72 208 A 1 \nATOM 1620 C CB . ILE A 1 254 ? 25.088 -11.034 20.220 1.00 35.39 208 A 1 \nATOM 1621 C CG1 . ILE A 1 254 ? 23.832 -11.253 21.062 1.00 34.31 208 A 1 \nATOM 1622 C CG2 . ILE A 1 254 ? 25.104 -11.978 18.983 1.00 33.90 208 A 1 \nATOM 1623 C CD1 . ILE A 1 254 ? 22.569 -10.610 20.478 1.00 35.83 208 A 1 \nATOM 1624 N N . VAL A 1 255 ? 27.847 -9.938 19.773 1.00 35.65 209 A 1 \nATOM 1625 C CA . VAL A 1 255 ? 28.728 -9.597 18.677 1.00 35.43 209 A 1 \nATOM 1626 C C . VAL A 1 255 ? 30.216 -9.756 19.084 1.00 35.44 209 A 1 \nATOM 1627 O O . VAL A 1 255 ? 31.051 -10.254 18.315 1.00 35.16 209 A 1 \nATOM 1628 C CB . VAL A 1 255 ? 28.268 -8.183 18.210 1.00 36.31 209 A 1 \nATOM 1629 C CG1 . VAL A 1 255 ? 29.384 -7.207 17.947 1.00 35.70 209 A 1 \nATOM 1630 C CG2 . VAL A 1 255 ? 27.223 -8.300 17.099 1.00 35.81 209 A 1 \nATOM 1631 N N . LYS A 1 256 ? 30.532 -9.382 20.315 1.00 35.02 210 A 1 \nATOM 1632 C CA . LYS A 1 256 ? 31.881 -9.564 20.841 1.00 34.43 210 A 1 \nATOM 1633 C C . LYS A 1 256 ? 32.254 -11.053 20.812 1.00 33.91 210 A 1 \nATOM 1634 O O . LYS A 1 256 ? 33.386 -11.447 20.461 1.00 33.52 210 A 1 \nATOM 1635 C CB . LYS A 1 256 ? 31.909 -9.066 22.287 1.00 34.77 210 A 1 \nATOM 1636 C CG . LYS A 1 256 ? 33.173 -9.431 23.025 1.00 35.27 210 A 1 \nATOM 1637 C CD . LYS A 1 256 ? 33.128 -8.857 24.442 1.00 36.39 210 A 1 \nATOM 1638 C CE . LYS A 1 256 ? 34.418 -9.118 25.187 1.00 39.06 210 A 1 \nATOM 1639 N NZ . LYS A 1 256 ? 34.268 -8.642 26.607 1.00 40.24 210 A 1 \nATOM 1640 N N . TYR A 1 257 ? 31.291 -11.872 21.219 1.00 33.46 211 A 1 \nATOM 1641 C CA . TYR A 1 257 ? 31.495 -13.305 21.332 1.00 33.70 211 A 1 \nATOM 1642 C C . TYR A 1 257 ? 31.368 -14.054 19.985 1.00 33.35 211 A 1 \nATOM 1643 O O . TYR A 1 257 ? 32.253 -14.849 19.648 1.00 31.95 211 A 1 \nATOM 1644 C CB . TYR A 1 257 ? 30.643 -13.903 22.466 1.00 34.39 211 A 1 \nATOM 1645 C CG . TYR A 1 257 ? 31.166 -13.472 23.820 1.00 36.24 211 A 1 \nATOM 1646 C CD1 . TYR A 1 257 ? 32.189 -14.185 24.440 1.00 37.58 211 A 1 \nATOM 1647 C CD2 . TYR A 1 257 ? 30.673 -12.333 24.462 1.00 38.05 211 A 1 \nATOM 1648 C CE1 . TYR A 1 257 ? 32.719 -13.777 25.677 1.00 38.59 211 A 1 \nATOM 1649 C CE2 . TYR A 1 257 ? 31.201 -11.909 25.727 1.00 38.10 211 A 1 \nATOM 1650 C CZ . TYR A 1 257 ? 32.217 -12.646 26.311 1.00 38.24 211 A 1 \nATOM 1651 O OH . TYR A 1 257 ? 32.757 -12.271 27.526 1.00 38.25 211 A 1 \nATOM 1652 N N . LYS A 1 258 ? 30.307 -13.785 19.213 1.00 32.98 212 A 1 \nATOM 1653 C CA . LYS A 1 258 ? 30.097 -14.536 17.961 1.00 32.93 212 A 1 \nATOM 1654 C C . LYS A 1 258 ? 31.022 -14.114 16.835 1.00 32.58 212 A 1 \nATOM 1655 O O . LYS A 1 258 ? 31.273 -14.904 15.923 1.00 33.60 212 A 1 \nATOM 1656 C CB . LYS A 1 258 ? 28.610 -14.530 17.477 1.00 32.79 212 A 1 \nATOM 1657 C CG . LYS A 1 258 ? 28.171 -13.286 16.687 1.00 31.48 212 A 1 \nATOM 1658 C CD . LYS A 1 258 ? 26.782 -13.474 15.990 1.00 33.33 212 A 1 \nATOM 1659 C CE . LYS A 1 258 ? 26.350 -12.207 15.188 1.00 31.45 212 A 1 \nATOM 1660 N NZ . LYS A 1 258 ? 25.042 -12.478 14.404 1.00 32.26 212 A 1 \nATOM 1661 N N . THR A 1 259 ? 31.514 -12.882 16.854 1.00 32.69 213 A 1 \nATOM 1662 C CA . THR A 1 259 ? 32.310 -12.384 15.717 1.00 32.53 213 A 1 \nATOM 1663 C C . THR A 1 259 ? 33.760 -11.914 16.012 1.00 33.18 213 A 1 \nATOM 1664 O O . THR A 1 259 ? 34.675 -12.285 15.283 1.00 33.09 213 A 1 \nATOM 1665 C CB . THR A 1 259 ? 31.532 -11.324 14.911 1.00 32.40 213 A 1 \nATOM 1666 O OG1 . THR A 1 259 ? 30.325 -11.914 14.413 1.00 33.55 213 A 1 \nATOM 1667 C CG2 . THR A 1 259 ? 32.346 -10.773 13.754 1.00 31.29 213 A 1 \nATOM 1668 N N . ALA A 1 260 ? 33.947 -11.098 17.056 1.00 33.72 214 A 1 \nATOM 1669 C CA . ALA A 1 260 ? 35.185 -10.351 17.266 1.00 33.24 214 A 1 \nATOM 1670 C C . ALA A 1 260 ? 36.445 -11.184 17.576 1.00 33.86 214 A 1 \nATOM 1671 O O . ALA A 1 260 ? 37.573 -10.839 17.158 1.00 32.93 214 A 1 \nATOM 1672 C CB . ALA A 1 260 ? 34.956 -9.295 18.378 1.00 33.83 214 A 1 \nATOM 1673 N N . TYR A 1 261 ? 36.276 -12.241 18.357 1.00 33.93 215 A 1 \nATOM 1674 C CA . TYR A 1 261 ? 37.414 -13.060 18.740 1.00 34.87 215 A 1 \nATOM 1675 C C . TYR A 1 261 ? 38.005 -13.812 17.557 1.00 34.34 215 A 1 \nATOM 1676 O O . TYR A 1 261 ? 39.209 -13.767 17.334 1.00 34.62 215 A 1 \nATOM 1677 C CB . TYR A 1 261 ? 37.042 -14.024 19.861 1.00 35.66 215 A 1 \nATOM 1678 C CG . TYR A 1 261 ? 37.046 -13.359 21.211 1.00 38.03 215 A 1 \nATOM 1679 C CD1 . TYR A 1 261 ? 38.242 -13.139 21.889 1.00 37.53 215 A 1 \nATOM 1680 C CD2 . TYR A 1 261 ? 35.861 -12.947 21.814 1.00 37.45 215 A 1 \nATOM 1681 C CE1 . TYR A 1 261 ? 38.257 -12.535 23.135 1.00 39.12 215 A 1 \nATOM 1682 C CE2 . TYR A 1 261 ? 35.860 -12.339 23.063 1.00 38.82 215 A 1 \nATOM 1683 C CZ . TYR A 1 261 ? 37.072 -12.145 23.718 1.00 39.52 215 A 1 \nATOM 1684 O OH . TYR A 1 261 ? 37.101 -11.540 24.947 1.00 40.96 215 A 1 \nATOM 1685 N N . TYR A 1 262 ? 37.168 -14.488 16.789 1.00 33.95 216 A 1 \nATOM 1686 C CA . TYR A 1 262 ? 37.707 -15.293 15.703 1.00 34.89 216 A 1 \nATOM 1687 C C . TYR A 1 262 ? 38.004 -14.500 14.427 1.00 35.10 216 A 1 \nATOM 1688 O O . TYR A 1 262 ? 38.845 -14.902 13.619 1.00 35.63 216 A 1 \nATOM 1689 C CB . TYR A 1 262 ? 36.792 -16.488 15.422 1.00 34.83 216 A 1 \nATOM 1690 C CG . TYR A 1 262 ? 35.748 -16.280 14.367 1.00 35.10 216 A 1 \nATOM 1691 C CD1 . TYR A 1 262 ? 36.030 -16.571 13.034 1.00 36.57 216 A 1 \nATOM 1692 C CD2 . TYR A 1 262 ? 34.461 -15.820 14.690 1.00 34.31 216 A 1 \nATOM 1693 C CE1 . TYR A 1 262 ? 35.093 -16.418 12.070 1.00 33.97 216 A 1 \nATOM 1694 C CE2 . TYR A 1 262 ? 33.496 -15.668 13.703 1.00 32.25 216 A 1 \nATOM 1695 C CZ . TYR A 1 262 ? 33.829 -15.962 12.396 1.00 35.78 216 A 1 \nATOM 1696 O OH . TYR A 1 262 ? 32.906 -15.817 11.381 1.00 34.23 216 A 1 \nATOM 1697 N N . THR A 1 263 ? 37.310 -13.380 14.244 1.00 35.54 217 A 1 \nATOM 1698 C CA . THR A 1 263 ? 37.471 -12.582 13.030 1.00 34.70 217 A 1 \nATOM 1699 C C . THR A 1 263 ? 38.644 -11.618 13.143 1.00 35.62 217 A 1 \nATOM 1700 O O . THR A 1 263 ? 39.379 -11.425 12.156 1.00 35.69 217 A 1 \nATOM 1701 C CB . THR A 1 263 ? 36.140 -11.888 12.645 1.00 35.79 217 A 1 \nATOM 1702 O OG1 . THR A 1 263 ? 35.134 -12.900 12.523 1.00 34.12 217 A 1 \nATOM 1703 C CG2 . THR A 1 263 ? 36.257 -11.146 11.310 1.00 33.99 217 A 1 \nATOM 1704 N N . TYR A 1 264 ? 38.858 -11.064 14.342 1.00 35.21 218 A 1 \nATOM 1705 C CA . TYR A 1 264 ? 39.885 -10.042 14.565 1.00 36.42 218 A 1 \nATOM 1706 C C . TYR A 1 264 ? 41.064 -10.464 15.452 1.00 36.89 218 A 1 \nATOM 1707 O O . TYR A 1 264 ? 42.203 -10.359 15.019 1.00 36.76 218 A 1 \nATOM 1708 C CB . TYR A 1 264 ? 39.277 -8.682 14.995 1.00 36.74 218 A 1 \nATOM 1709 C CG . TYR A 1 264 ? 38.687 -8.004 13.793 1.00 37.41 218 A 1 \nATOM 1710 C CD1 . TYR A 1 264 ? 37.406 -8.337 13.356 1.00 38.42 218 A 1 \nATOM 1711 C CD2 . TYR A 1 264 ? 39.433 -7.103 13.034 1.00 37.93 218 A 1 \nATOM 1712 C CE1 . TYR A 1 264 ? 36.865 -7.773 12.216 1.00 38.73 218 A 1 \nATOM 1713 C CE2 . TYR A 1 264 ? 38.896 -6.535 11.881 1.00 40.17 218 A 1 \nATOM 1714 C CZ . TYR A 1 264 ? 37.612 -6.872 11.485 1.00 39.00 218 A 1 \nATOM 1715 O OH . TYR A 1 264 ? 37.055 -6.338 10.347 1.00 39.07 218 A 1 \nATOM 1716 N N . LEU A 1 265 ? 40.787 -10.966 16.655 1.00 37.33 219 A 1 \nATOM 1717 C CA . LEU A 1 265 ? 41.854 -11.372 17.580 1.00 38.02 219 A 1 \nATOM 1718 C C . LEU A 1 265 ? 42.657 -12.560 17.065 1.00 37.79 219 A 1 \nATOM 1719 O O . LEU A 1 265 ? 43.884 -12.538 17.105 1.00 37.96 219 A 1 \nATOM 1720 C CB . LEU A 1 265 ? 41.273 -11.743 18.940 1.00 38.38 219 A 1 \nATOM 1721 C CG . LEU A 1 265 ? 41.966 -11.215 20.202 1.00 39.39 219 A 1 \nATOM 1722 C CD1 . LEU A 1 265 ? 41.695 -12.158 21.365 1.00 39.96 219 A 1 \nATOM 1723 C CD2 . LEU A 1 265 ? 43.461 -10.935 20.072 1.00 40.37 219 A 1 \nATOM 1724 N N . LEU A 1 266 ? 41.959 -13.596 16.595 1.00 37.46 220 A 1 \nATOM 1725 C CA . LEU A 1 266 ? 42.596 -14.853 16.217 1.00 37.39 220 A 1 \nATOM 1726 C C . LEU A 1 266 ? 43.614 -14.697 15.081 1.00 37.68 220 A 1 \nATOM 1727 O O . LEU A 1 266 ? 44.731 -15.204 15.202 1.00 37.95 220 A 1 \nATOM 1728 C CB . LEU A 1 266 ? 41.541 -15.940 15.900 1.00 37.29 220 A 1 \nATOM 1729 C CG . LEU A 1 266 ? 41.994 -17.382 15.616 1.00 37.12 220 A 1 \nATOM 1730 C CD1 . LEU A 1 266 ? 42.836 -17.935 16.748 1.00 36.43 220 A 1 \nATOM 1731 C CD2 . LEU A 1 266 ? 40.799 -18.303 15.351 1.00 36.86 220 A 1 \nATOM 1732 N N . PRO A 1 267 ? 43.240 -14.016 13.972 1.00 37.95 221 A 1 \nATOM 1733 C CA . PRO A 1 267 ? 44.238 -13.834 12.918 1.00 37.75 221 A 1 \nATOM 1734 C C . PRO A 1 267 ? 45.493 -13.093 13.380 1.00 38.21 221 A 1 \nATOM 1735 O O . PRO A 1 267 ? 46.596 -13.478 13.003 1.00 38.17 221 A 1 \nATOM 1736 C CB . PRO A 1 267 ? 43.488 -13.043 11.840 1.00 37.64 221 A 1 \nATOM 1737 C CG . PRO A 1 267 ? 42.038 -13.332 12.084 1.00 38.17 221 A 1 \nATOM 1738 C CD . PRO A 1 267 ? 41.932 -13.453 13.587 1.00 37.71 221 A 1 \nATOM 1739 N N . LEU A 1 268 ? 45.314 -12.056 14.196 1.00 38.73 222 A 1 \nATOM 1740 C CA . LEU A 1 268 ? 46.422 -11.293 14.765 1.00 39.42 222 A 1 \nATOM 1741 C C . LEU A 1 268 ? 47.302 -12.154 15.656 1.00 39.99 222 A 1 \nATOM 1742 O O . LEU A 1 268 ? 48.527 -12.092 15.565 1.00 40.19 222 A 1 \nATOM 1743 C CB . LEU A 1 268 ? 45.891 -10.088 15.563 1.00 39.32 222 A 1 \nATOM 1744 C CG . LEU A 1 268 ? 45.158 -9.000 14.744 1.00 39.32 222 A 1 \nATOM 1745 C CD1 . LEU A 1 268 ? 44.509 -7.924 15.621 1.00 37.43 222 A 1 \nATOM 1746 C CD2 . LEU A 1 268 ? 46.096 -8.374 13.730 1.00 39.15 222 A 1 \nATOM 1747 N N . VAL A 1 269 ? 46.677 -12.936 16.530 1.00 40.61 223 A 1 \nATOM 1748 C CA . VAL A 1 269 ? 47.409 -13.721 17.522 1.00 41.70 223 A 1 \nATOM 1749 C C . VAL A 1 269 ? 48.225 -14.826 16.850 1.00 42.07 223 A 1 \nATOM 1750 O O . VAL A 1 269 ? 49.387 -15.041 17.199 1.00 43.36 223 A 1 \nATOM 1751 C CB . VAL A 1 269 ? 46.465 -14.272 18.641 1.00 41.82 223 A 1 \nATOM 1752 C CG1 . VAL A 1 269 ? 47.108 -15.422 19.393 1.00 42.90 223 A 1 \nATOM 1753 C CG2 . VAL A 1 269 ? 46.089 -13.154 19.623 1.00 41.40 223 A 1 \nATOM 1754 N N . MET A 1 270 ? 47.617 -15.496 15.878 1.00 42.74 224 A 1 \nATOM 1755 C CA . MET A 1 270 ? 48.275 -16.540 15.087 1.00 43.62 224 A 1 \nATOM 1756 C C . MET A 1 270 ? 49.446 -16.004 14.274 1.00 43.24 224 A 1 \nATOM 1757 O O . MET A 1 270 ? 50.412 -16.721 14.057 1.00 43.20 224 A 1 \nATOM 1758 C CB . MET A 1 270 ? 47.269 -17.221 14.152 1.00 43.20 224 A 1 \nATOM 1759 C CG . MET A 1 270 ? 46.243 -18.060 14.881 1.00 44.78 224 A 1 \nATOM 1760 S SD . MET A 1 270 ? 45.207 -19.068 13.824 1.00 46.57 224 A 1 \nATOM 1761 C CE . MET A 1 270 ? 45.921 -20.685 13.972 1.00 47.49 224 A 1 \nATOM 1762 N N . GLY A 1 271 ? 49.337 -14.759 13.801 1.00 43.44 225 A 1 \nATOM 1763 C CA . GLY A 1 271 ? 50.417 -14.100 13.067 1.00 43.76 225 A 1 \nATOM 1764 C C . GLY A 1 271 ? 51.611 -13.848 13.970 1.00 44.21 225 A 1 \nATOM 1765 O O . GLY A 1 271 ? 52.752 -14.063 13.577 1.00 44.06 225 A 1 \nATOM 1766 N N . LEU A 1 272 ? 51.323 -13.390 15.184 1.00 44.95 226 A 1 \nATOM 1767 C CA . LEU A 1 272 ? 52.312 -13.206 16.241 1.00 45.59 226 A 1 \nATOM 1768 C C . LEU A 1 272 ? 53.000 -14.514 16.675 1.00 46.25 226 A 1 \nATOM 1769 O O . LEU A 1 272 ? 54.195 -14.524 16.971 1.00 46.34 226 A 1 \nATOM 1770 C CB . LEU A 1 272 ? 51.644 -12.555 17.456 1.00 45.27 226 A 1 \nATOM 1771 C CG . LEU A 1 272 ? 51.316 -11.065 17.356 1.00 45.21 226 A 1 \nATOM 1772 C CD1 . LEU A 1 272 ? 50.301 -10.716 18.418 1.00 42.09 226 A 1 \nATOM 1773 C CD2 . LEU A 1 272 ? 52.595 -10.223 17.519 1.00 44.86 226 A 1 \nATOM 1774 N N . ILE A 1 273 ? 52.236 -15.603 16.710 1.00 47.08 227 A 1 \nATOM 1775 C CA . ILE A 1 273 ? 52.742 -16.918 17.131 1.00 47.50 227 A 1 \nATOM 1776 C C . ILE A 1 273 ? 53.723 -17.535 16.127 1.00 48.00 227 A 1 \nATOM 1777 O O . ILE A 1 273 ? 54.829 -17.958 16.513 1.00 48.09 227 A 1 \nATOM 1778 C CB . ILE A 1 273 ? 51.572 -17.894 17.432 1.00 47.31 227 A 1 \nATOM 1779 C CG1 . ILE A 1 273 ? 50.913 -17.532 18.763 1.00 47.40 227 A 1 \nATOM 1780 C CG2 . ILE A 1 273 ? 52.035 -19.361 17.413 1.00 46.86 227 A 1 \nATOM 1781 C CD1 . ILE A 1 273 ? 49.636 -18.325 19.055 1.00 47.76 227 A 1 \nATOM 1782 N N . VAL A 1 274 ? 53.334 -17.587 14.851 1.00 48.14 228 A 1 \nATOM 1783 C CA . VAL A 1 274 ? 54.214 -18.134 13.811 1.00 48.73 228 A 1 \nATOM 1784 C C . VAL A 1 274 ? 55.484 -17.291 13.635 1.00 49.65 228 A 1 \nATOM 1785 O O . VAL A 1 274 ? 56.489 -17.774 13.108 1.00 49.50 228 A 1 \nATOM 1786 C CB . VAL A 1 274 ? 53.492 -18.298 12.454 1.00 49.04 228 A 1 \nATOM 1787 C CG1 . VAL A 1 274 ? 52.287 -19.217 12.596 1.00 48.18 228 A 1 \nATOM 1788 C CG2 . VAL A 1 274 ? 53.076 -16.938 11.863 1.00 48.35 228 A 1 \nATOM 1789 N N . SER A 1 275 ? 55.396 -16.033 14.076 1.00 50.56 229 A 1 \nATOM 1790 C CA . SER A 1 275 ? 56.485 -15.053 14.077 1.00 51.52 229 A 1 \nATOM 1791 C C . SER A 1 275 ? 57.362 -15.174 15.311 1.00 51.95 229 A 1 \nATOM 1792 O O . SER A 1 275 ? 58.422 -14.555 15.380 1.00 52.23 229 A 1 \nATOM 1793 C CB . SER A 1 275 ? 55.904 -13.633 14.078 1.00 51.22 229 A 1 \nATOM 1794 O OG . SER A 1 275 ? 55.497 -13.233 12.792 1.00 52.95 229 A 1 \nATOM 1795 N N . GLU A 1 276 ? 56.888 -15.928 16.300 1.00 52.87 230 A 1 \nATOM 1796 C CA . GLU A 1 276 ? 57.545 -16.039 17.602 1.00 53.89 230 A 1 \nATOM 1797 C C . GLU A 1 276 ? 57.664 -14.664 18.269 1.00 54.12 230 A 1 \nATOM 1798 O O . GLU A 1 276 ? 58.635 -14.373 18.978 1.00 54.23 230 A 1 \nATOM 1799 C CB . GLU A 1 276 ? 58.892 -16.775 17.467 1.00 54.09 230 A 1 \nATOM 1800 C CG . GLU A 1 276 ? 58.686 -18.188 16.945 1.00 56.23 230 A 1 \nATOM 1801 C CD . GLU A 1 276 ? 59.926 -18.842 16.369 1.00 59.32 230 A 1 \nATOM 1802 O OE1 . GLU A 1 276 ? 60.574 -18.268 15.461 1.00 61.06 230 A 1 \nATOM 1803 O OE2 . GLU A 1 276 ? 60.224 -19.969 16.808 1.00 61.02 230 A 1 \nATOM 1804 N N . ALA A 1 277 ? 56.633 -13.843 18.045 1.00 54.36 231 A 1 \nATOM 1805 C CA . ALA A 1 277 ? 56.612 -12.434 18.440 1.00 54.24 231 A 1 \nATOM 1806 C C . ALA A 1 277 ? 55.483 -12.057 19.419 1.00 54.29 231 A 1 \nATOM 1807 O O . ALA A 1 277 ? 55.232 -10.871 19.652 1.00 54.10 231 A 1 \nATOM 1808 C CB . ALA A 1 277 ? 56.537 -11.562 17.187 1.00 54.11 231 A 1 \nATOM 1809 N N . LEU A 1 278 ? 54.810 -13.051 19.998 1.00 54.67 232 A 1 \nATOM 1810 C CA . LEU A 1 278 ? 53.658 -12.770 20.864 1.00 55.16 232 A 1 \nATOM 1811 C C . LEU A 1 278 ? 53.965 -11.940 22.123 1.00 55.45 232 A 1 \nATOM 1812 O O . LEU A 1 278 ? 53.234 -10.987 22.417 1.00 55.04 232 A 1 \nATOM 1813 C CB . LEU A 1 278 ? 52.851 -14.036 21.206 1.00 55.46 232 A 1 \nATOM 1814 C CG . LEU A 1 278 ? 51.449 -13.740 21.779 1.00 55.84 232 A 1 \nATOM 1815 C CD1 . LEU A 1 278 ? 50.371 -14.639 21.191 1.00 55.45 232 A 1 \nATOM 1816 C CD2 . LEU A 1 278 ? 51.441 -13.805 23.306 1.00 57.19 232 A 1 \nATOM 1817 N N . PRO A 1 279 ? 55.043 -12.279 22.864 1.00 56.01 233 A 1 \nATOM 1818 C CA . PRO A 1 279 ? 55.287 -11.502 24.082 1.00 56.05 233 A 1 \nATOM 1819 C C . PRO A 1 279 ? 55.743 -10.061 23.844 1.00 55.96 233 A 1 \nATOM 1820 O O . PRO A 1 279 ? 55.841 -9.297 24.806 1.00 56.03 233 A 1 \nATOM 1821 C CB . PRO A 1 279 ? 56.391 -12.308 24.802 1.00 56.31 233 A 1 \nATOM 1822 C CG . PRO A 1 279 ? 56.401 -13.672 24.120 1.00 56.65 233 A 1 \nATOM 1823 C CD . PRO A 1 279 ? 56.040 -13.356 22.705 1.00 56.21 233 A 1 \nATOM 1824 N N . THR A 1 280 ? 56.002 -9.687 22.590 1.00 55.70 234 A 1 \nATOM 1825 C CA . THR A 1 280 ? 56.546 -8.364 22.287 1.00 55.67 234 A 1 \nATOM 1826 C C . THR A 1 280 ? 55.494 -7.268 22.199 1.00 55.61 234 A 1 \nATOM 1827 O O . THR A 1 280 ? 55.841 -6.086 22.209 1.00 55.56 234 A 1 \nATOM 1828 C CB . THR A 1 280 ? 57.397 -8.322 20.984 1.00 55.73 234 A 1 \nATOM 1829 O OG1 . THR A 1 280 ? 56.550 -8.421 19.834 1.00 55.63 234 A 1 \nATOM 1830 C CG2 . THR A 1 280 ? 58.466 -9.421 20.957 1.00 56.22 234 A 1 \nATOM 1831 N N . VAL A 1 281 ? 54.220 -7.649 22.110 1.00 55.27 235 A 1 \nATOM 1832 C CA . VAL A 1 281 ? 53.138 -6.660 21.981 1.00 54.83 235 A 1 \nATOM 1833 C C . VAL A 1 281 ? 52.311 -6.455 23.255 1.00 54.76 235 A 1 \nATOM 1834 O O . VAL A 1 281 ? 52.295 -7.303 24.149 1.00 54.47 235 A 1 \nATOM 1835 C CB . VAL A 1 281 ? 52.166 -6.993 20.809 1.00 54.81 235 A 1 \nATOM 1836 C CG1 . VAL A 1 281 ? 52.933 -7.165 19.490 1.00 53.92 235 A 1 \nATOM 1837 C CG2 . VAL A 1 281 ? 51.320 -8.221 21.136 1.00 54.23 235 A 1 \nATOM 1838 N N . ASP A 1 282 ? 51.617 -5.318 23.302 1.00 54.75 236 A 1 \nATOM 1839 C CA . ASP A 1 282 ? 50.637 -5.024 24.345 1.00 54.88 236 A 1 \nATOM 1840 C C . ASP A 1 282 ? 49.326 -5.745 24.017 1.00 54.51 236 A 1 \nATOM 1841 O O . ASP A 1 282 ? 48.549 -5.277 23.190 1.00 54.16 236 A 1 \nATOM 1842 C CB . ASP A 1 282 ? 50.416 -3.509 24.454 1.00 54.81 236 A 1 \nATOM 1843 C CG . ASP A 1 282 ? 49.702 -3.100 25.743 1.00 55.63 236 A 1 \nATOM 1844 O OD1 . ASP A 1 282 ? 48.820 -3.854 26.219 1.00 56.21 236 A 1 \nATOM 1845 O OD2 . ASP A 1 282 ? 50.011 -2.001 26.270 1.00 55.10 236 A 1 \nATOM 1846 N N . MET A 1 283 ? 49.107 -6.880 24.675 1.00 54.28 237 A 1 \nATOM 1847 C CA . MET A 1 283 ? 47.946 -7.739 24.447 1.00 54.33 237 A 1 \nATOM 1848 C C . MET A 1 283 ? 46.637 -7.143 24.986 1.00 54.36 237 A 1 \nATOM 1849 O O . MET A 1 283 ? 45.543 -7.492 24.510 1.00 54.35 237 A 1 \nATOM 1850 C CB . MET A 1 283 ? 48.195 -9.131 25.043 1.00 54.47 237 A 1 \nATOM 1851 C CG . MET A 1 283 ? 47.289 -10.237 24.497 1.00 54.31 237 A 1 \nATOM 1852 S SD . MET A 1 283 ? 47.220 -10.219 22.699 1.00 54.86 237 A 1 \nATOM 1853 C CE . MET A 1 283 ? 48.718 -11.093 22.263 1.00 54.16 237 A 1 \nATOM 1854 N N . GLY A 1 284 ? 46.749 -6.247 25.968 1.00 53.87 238 A 1 \nATOM 1855 C CA . GLY A 1 284 ? 45.595 -5.490 26.457 1.00 53.33 238 A 1 \nATOM 1856 C C . GLY A 1 284 ? 45.086 -4.543 25.384 1.00 53.01 238 A 1 \nATOM 1857 O O . GLY A 1 284 ? 43.898 -4.541 25.045 1.00 52.78 238 A 1 \nATOM 1858 N N . VAL A 1 285 ? 46.000 -3.747 24.838 1.00 52.52 239 A 1 \nATOM 1859 C CA . VAL A 1 285 ? 45.687 -2.822 23.753 1.00 52.33 239 A 1 \nATOM 1860 C C . VAL A 1 285 ? 45.216 -3.608 22.528 1.00 52.06 239 A 1 \nATOM 1861 O O . VAL A 1 285 ? 44.214 -3.259 21.918 1.00 52.09 239 A 1 \nATOM 1862 C CB . VAL A 1 285 ? 46.894 -1.890 23.441 1.00 52.27 239 A 1 \nATOM 1863 C CG1 . VAL A 1 285 ? 46.669 -1.054 22.206 1.00 52.22 239 A 1 \nATOM 1864 C CG2 . VAL A 1 285 ? 47.164 -0.970 24.636 1.00 53.32 239 A 1 \nATOM 1865 N N . THR A 1 286 ? 45.917 -4.696 22.215 1.00 51.84 240 A 1 \nATOM 1866 C CA . THR A 1 286 ? 45.605 -5.542 21.057 1.00 51.46 240 A 1 \nATOM 1867 C C . THR A 1 286 ? 44.178 -6.117 21.098 1.00 51.04 240 A 1 \nATOM 1868 O O . THR A 1 286 ? 43.462 -6.100 20.093 1.00 50.63 240 A 1 \nATOM 1869 C CB . THR A 1 286 ? 46.662 -6.659 20.902 1.00 51.37 240 A 1 \nATOM 1870 O OG1 . THR A 1 286 ? 47.935 -6.052 20.665 1.00 51.32 240 A 1 \nATOM 1871 C CG2 . THR A 1 286 ? 46.338 -7.582 19.730 1.00 51.47 240 A 1 \nATOM 1872 N N . GLU A 1 287 ? 43.778 -6.616 22.263 1.00 50.86 241 A 1 \nATOM 1873 C CA . GLU A 1 287 ? 42.431 -7.128 22.461 1.00 51.11 241 A 1 \nATOM 1874 C C . GLU A 1 287 ? 41.383 -6.012 22.363 1.00 50.35 241 A 1 \nATOM 1875 O O . GLU A 1 287 ? 40.344 -6.200 21.741 1.00 50.30 241 A 1 \nATOM 1876 C CB . GLU A 1 287 ? 42.319 -7.915 23.774 1.00 50.87 241 A 1 \nATOM 1877 C CG . GLU A 1 287 ? 42.893 -9.321 23.661 1.00 52.58 241 A 1 \nATOM 1878 C CD . GLU A 1 287 ? 42.839 -10.114 24.959 1.00 53.28 241 A 1 \nATOM 1879 O OE1 . GLU A 1 287 ? 41.949 -9.843 25.804 1.00 56.52 241 A 1 \nATOM 1880 O OE2 . GLU A 1 287 ? 43.686 -11.026 25.120 1.00 55.19 241 A 1 \nATOM 1881 N N . GLU A 1 288 ? 41.671 -4.852 22.953 1.00 49.59 242 A 1 \nATOM 1882 C CA . GLU A 1 288 ? 40.805 -3.675 22.811 1.00 49.15 242 A 1 \nATOM 1883 C C . GLU A 1 288 ? 40.494 -3.365 21.349 1.00 47.38 242 A 1 \nATOM 1884 O O . GLU A 1 288 ? 39.335 -3.163 20.988 1.00 47.28 242 A 1 \nATOM 1885 C CB . GLU A 1 288 ? 41.430 -2.441 23.476 1.00 49.02 242 A 1 \nATOM 1886 C CG . GLU A 1 288 ? 41.005 -2.198 24.904 1.00 50.98 242 A 1 \nATOM 1887 C CD . GLU A 1 288 ? 41.387 -0.803 25.399 1.00 51.32 242 A 1 \nATOM 1888 O OE1 . GLU A 1 288 ? 40.481 0.049 25.564 1.00 54.28 242 A 1 \nATOM 1889 O OE2 . GLU A 1 288 ? 42.597 -0.552 25.601 1.00 55.64 242 A 1 \nATOM 1890 N N . LEU A 1 289 ? 41.533 -3.336 20.518 1.00 46.05 243 A 1 \nATOM 1891 C CA . LEU A 1 289 ? 41.392 -3.070 19.075 1.00 44.57 243 A 1 \nATOM 1892 C C . LEU A 1 289 ? 40.545 -4.129 18.384 1.00 43.54 243 A 1 \nATOM 1893 O O . LEU A 1 289 ? 39.649 -3.800 17.623 1.00 43.96 243 A 1 \nATOM 1894 C CB . LEU A 1 289 ? 42.762 -2.994 18.399 1.00 44.56 243 A 1 \nATOM 1895 C CG . LEU A 1 289 ? 43.531 -1.674 18.508 1.00 44.91 243 A 1 \nATOM 1896 C CD1 . LEU A 1 289 ? 45.035 -1.911 18.530 1.00 44.97 243 A 1 \nATOM 1897 C CD2 . LEU A 1 289 ? 43.146 -0.776 17.347 1.00 45.80 243 A 1 \nATOM 1898 N N . ALA A 1 290 ? 40.822 -5.396 18.674 1.00 42.38 244 A 1 \nATOM 1899 C CA . ALA A 1 290 ? 40.105 -6.522 18.080 1.00 41.10 244 A 1 \nATOM 1900 C C . ALA A 1 290 ? 38.615 -6.496 18.402 1.00 40.88 244 A 1 \nATOM 1901 O O . ALA A 1 290 ? 37.793 -6.726 17.523 1.00 39.18 244 A 1 \nATOM 1902 C CB . ALA A 1 290 ? 40.711 -7.827 18.527 1.00 40.87 244 A 1 \nATOM 1903 N N . MET A 1 291 ? 38.290 -6.192 19.661 1.00 40.93 245 A 1 \nATOM 1904 C CA . MET A 1 291 ? 36.910 -6.141 20.126 1.00 41.43 245 A 1 \nATOM 1905 C C . MET A 1 291 ? 36.159 -5.010 19.446 1.00 41.65 245 A 1 \nATOM 1906 O O . MET A 1 291 ? 35.001 -5.169 19.079 1.00 42.11 245 A 1 \nATOM 1907 C CB . MET A 1 291 ? 36.828 -5.974 21.653 1.00 41.49 245 A 1 \nATOM 1908 C CG . MET A 1 291 ? 37.318 -7.156 22.489 1.00 41.60 245 A 1 \nATOM 1909 S SD . MET A 1 291 ? 36.692 -8.787 22.007 1.00 44.61 245 A 1 \nATOM 1910 C CE . MET A 1 291 ? 38.126 -9.453 21.171 1.00 42.38 245 A 1 \nATOM 1911 N N . LEU A 1 292 ? 36.832 -3.878 19.275 1.00 42.14 246 A 1 \nATOM 1912 C CA . LEU A 1 292 ? 36.243 -2.682 18.700 1.00 42.25 246 A 1 \nATOM 1913 C C . LEU A 1 292 ? 36.037 -2.834 17.200 1.00 41.65 246 A 1 \nATOM 1914 O O . LEU A 1 292 ? 34.954 -2.571 16.679 1.00 41.67 246 A 1 \nATOM 1915 C CB . LEU A 1 292 ? 37.153 -1.486 18.985 1.00 42.65 246 A 1 \nATOM 1916 C CG . LEU A 1 292 ? 36.693 -0.101 18.537 1.00 43.69 246 A 1 \nATOM 1917 C CD1 . LEU A 1 292 ? 35.250 0.179 18.986 1.00 45.37 246 A 1 \nATOM 1918 C CD2 . LEU A 1 292 ? 37.667 0.961 19.092 1.00 44.10 246 A 1 \nATOM 1919 N N . MET A 1 293 ? 37.082 -3.266 16.512 1.00 41.01 247 A 1 \nATOM 1920 C CA . MET A 1 293 ? 37.001 -3.561 15.089 1.00 41.49 247 A 1 \nATOM 1921 C C . MET A 1 293 ? 35.985 -4.669 14.814 1.00 40.52 247 A 1 \nATOM 1922 O O . MET A 1 293 ? 35.206 -4.586 13.862 1.00 39.82 247 A 1 \nATOM 1923 C CB . MET A 1 293 ? 38.377 -3.958 14.562 1.00 41.06 247 A 1 \nATOM 1924 C CG . MET A 1 293 ? 39.371 -2.819 14.585 1.00 42.36 247 A 1 \nATOM 1925 S SD . MET A 1 293 ? 40.880 -3.146 13.666 1.00 45.07 247 A 1 \nATOM 1926 C CE . MET A 1 293 ? 40.217 -3.512 12.056 1.00 46.90 247 A 1 \nATOM 1927 N N . GLY A 1 294 ? 35.985 -5.700 15.661 1.00 39.98 248 A 1 \nATOM 1928 C CA . GLY A 1 294 ? 35.054 -6.818 15.509 1.00 39.10 248 A 1 \nATOM 1929 C C . GLY A 1 294 ? 33.593 -6.431 15.698 1.00 38.58 248 A 1 \nATOM 1930 O O . GLY A 1 294 ? 32.709 -6.918 14.977 1.00 37.48 248 A 1 \nATOM 1931 N N . GLU A 1 295 ? 33.324 -5.570 16.677 1.00 38.45 249 A 1 \nATOM 1932 C CA . GLU A 1 295 ? 31.961 -5.076 16.854 1.00 38.47 249 A 1 \nATOM 1933 C C . GLU A 1 295 ? 31.523 -4.281 15.627 1.00 38.71 249 A 1 \nATOM 1934 O O . GLU A 1 295 ? 30.408 -4.472 15.104 1.00 38.77 249 A 1 \nATOM 1935 C CB . GLU A 1 295 ? 31.843 -4.211 18.097 1.00 38.99 249 A 1 \nATOM 1936 C CG . GLU A 1 295 ? 30.477 -3.604 18.292 1.00 38.42 249 A 1 \nATOM 1937 C CD . GLU A 1 295 ? 30.438 -2.663 19.469 1.00 41.47 249 A 1 \nATOM 1938 O OE1 . GLU A 1 295 ? 30.354 -1.444 19.248 1.00 41.68 249 A 1 \nATOM 1939 O OE2 . GLU A 1 295 ? 30.515 -3.148 20.616 1.00 40.53 249 A 1 \nATOM 1940 N N . TYR A 1 296 ? 32.392 -3.380 15.187 1.00 38.59 250 A 1 \nATOM 1941 C CA . TYR A 1 296 ? 32.109 -2.538 14.030 1.00 39.23 250 A 1 \nATOM 1942 C C . TYR A 1 296 ? 31.896 -3.377 12.775 1.00 39.28 250 A 1 \nATOM 1943 O O . TYR A 1 296 ? 30.998 -3.092 11.991 1.00 39.35 250 A 1 \nATOM 1944 C CB . TYR A 1 296 ? 33.247 -1.546 13.829 1.00 39.59 250 A 1 \nATOM 1945 C CG . TYR A 1 296 ? 33.215 -0.763 12.542 1.00 40.93 250 A 1 \nATOM 1946 C CD1 . TYR A 1 296 ? 32.239 0.220 12.301 1.00 41.61 250 A 1 \nATOM 1947 C CD2 . TYR A 1 296 ? 34.176 -0.979 11.577 1.00 41.22 250 A 1 \nATOM 1948 C CE1 . TYR A 1 296 ? 32.250 0.959 11.115 1.00 41.81 250 A 1 \nATOM 1949 C CE2 . TYR A 1 296 ? 34.194 -0.260 10.406 1.00 43.95 250 A 1 \nATOM 1950 C CZ . TYR A 1 296 ? 33.225 0.700 10.170 1.00 41.34 250 A 1 \nATOM 1951 O OH . TYR A 1 296 ? 33.287 1.387 8.988 1.00 41.83 250 A 1 \nATOM 1952 N N . PHE A 1 297 ? 32.718 -4.415 12.595 1.00 38.89 251 A 1 \nATOM 1953 C CA . PHE A 1 297 ? 32.570 -5.344 11.456 1.00 38.77 251 A 1 \nATOM 1954 C C . PHE A 1 297 ? 31.169 -5.986 11.395 1.00 38.15 251 A 1 \nATOM 1955 O O . PHE A 1 297 ? 30.584 -6.128 10.322 1.00 38.28 251 A 1 \nATOM 1956 C CB . PHE A 1 297 ? 33.662 -6.426 11.511 1.00 38.42 251 A 1 \nATOM 1957 C CG . PHE A 1 297 ? 33.574 -7.464 10.404 1.00 38.32 251 A 1 \nATOM 1958 C CD1 . PHE A 1 297 ? 34.272 -7.292 9.218 1.00 38.24 251 A 1 \nATOM 1959 C CD2 . PHE A 1 297 ? 32.813 -8.619 10.570 1.00 39.09 251 A 1 \nATOM 1960 C CE1 . PHE A 1 297 ? 34.223 -8.253 8.197 1.00 39.17 251 A 1 \nATOM 1961 C CE2 . PHE A 1 297 ? 32.728 -9.575 9.561 1.00 40.03 251 A 1 \nATOM 1962 C CZ . PHE A 1 297 ? 33.441 -9.390 8.362 1.00 40.71 251 A 1 \nATOM 1963 N N . GLN A 1 298 ? 30.653 -6.372 12.553 1.00 37.53 252 A 1 \nATOM 1964 C CA . GLN A 1 298 ? 29.375 -7.041 12.658 1.00 37.60 252 A 1 \nATOM 1965 C C . GLN A 1 298 ? 28.213 -6.065 12.540 1.00 37.94 252 A 1 \nATOM 1966 O O . GLN A 1 298 ? 27.131 -6.435 12.070 1.00 37.90 252 A 1 \nATOM 1967 C CB . GLN A 1 298 ? 29.283 -7.806 13.989 1.00 37.52 252 A 1 \nATOM 1968 C CG . GLN A 1 298 ? 28.069 -8.742 14.084 1.00 36.94 252 A 1 \nATOM 1969 C CD . GLN A 1 298 ? 28.002 -9.744 12.936 1.00 35.54 252 A 1 \nATOM 1970 O OE1 . GLN A 1 298 ? 28.956 -10.466 12.670 1.00 35.33 252 A 1 \nATOM 1971 N NE2 . GLN A 1 298 ? 26.871 -9.799 12.274 1.00 31.82 252 A 1 \nATOM 1972 N N . VAL A 1 299 ? 28.425 -4.828 12.980 1.00 38.28 253 A 1 \nATOM 1973 C CA . VAL A 1 299 ? 27.433 -3.778 12.741 1.00 38.91 253 A 1 \nATOM 1974 C C . VAL A 1 299 ? 27.281 -3.591 11.227 1.00 39.29 253 A 1 \nATOM 1975 O O . VAL A 1 299 ? 26.177 -3.578 10.727 1.00 40.25 253 A 1 \nATOM 1976 C CB . VAL A 1 299 ? 27.780 -2.444 13.489 1.00 39.11 253 A 1 \nATOM 1977 C CG1 . VAL A 1 299 ? 26.936 -1.259 12.945 1.00 37.58 253 A 1 \nATOM 1978 C CG2 . VAL A 1 299 ? 27.570 -2.608 14.995 1.00 36.17 253 A 1 \nATOM 1979 N N . GLN A 1 300 ? 28.401 -3.483 10.517 1.00 40.06 254 A 1 \nATOM 1980 C CA . GLN A 1 300 ? 28.420 -3.451 9.045 1.00 40.01 254 A 1 \nATOM 1981 C C . GLN A 1 300 ? 27.663 -4.626 8.419 1.00 40.14 254 A 1 \nATOM 1982 O O . GLN A 1 300 ? 26.826 -4.438 7.518 1.00 40.99 254 A 1 \nATOM 1983 C CB . GLN A 1 300 ? 29.865 -3.464 8.559 1.00 40.27 254 A 1 \nATOM 1984 C CG . GLN A 1 300 ? 30.640 -2.206 8.825 1.00 41.41 254 A 1 \nATOM 1985 C CD . GLN A 1 300 ? 32.096 -2.337 8.429 1.00 43.77 254 A 1 \nATOM 1986 O OE1 . GLN A 1 300 ? 32.774 -3.302 8.795 1.00 43.71 254 A 1 \nATOM 1987 N NE2 . GLN A 1 300 ? 32.586 -1.370 7.672 1.00 46.33 254 A 1 \nATOM 1988 N N . ASP A 1 301 ? 27.944 -5.837 8.899 1.00 39.54 255 A 1 \nATOM 1989 C CA . ASP A 1 301 ? 27.276 -7.051 8.422 1.00 39.58 255 A 1 \nATOM 1990 C C . ASP A 1 301 ? 25.751 -7.002 8.589 1.00 39.80 255 A 1 \nATOM 1991 O O . ASP A 1 301 ? 25.001 -7.392 7.682 1.00 39.35 255 A 1 \nATOM 1992 C CB . ASP A 1 301 ? 27.816 -8.284 9.141 1.00 39.05 255 A 1 \nATOM 1993 C CG . ASP A 1 301 ? 27.331 -9.569 8.522 1.00 40.28 255 A 1 \nATOM 1994 O OD1 . ASP A 1 301 ? 27.619 -9.800 7.326 1.00 38.62 255 A 1 \nATOM 1995 O OD2 . ASP A 1 301 ? 26.652 -10.340 9.230 1.00 39.86 255 A 1 \nATOM 1996 N N . ASP A 1 302 ? 25.309 -6.568 9.766 1.00 39.60 256 A 1 \nATOM 1997 C CA . ASP A 1 302 ? 23.892 -6.418 10.054 1.00 40.68 256 A 1 \nATOM 1998 C C . ASP A 1 302 ? 23.244 -5.377 9.129 1.00 40.70 256 A 1 \nATOM 1999 O O . ASP A 1 302 ? 22.147 -5.593 8.610 1.00 41.04 256 A 1 \nATOM 2000 C CB . ASP A 1 302 ? 23.681 -5.981 11.503 1.00 39.77 256 A 1 \nATOM 2001 C CG . ASP A 1 302 ? 24.075 -7.033 12.514 1.00 40.33 256 A 1 \nATOM 2002 O OD1 . ASP A 1 302 ? 24.396 -8.201 12.137 1.00 38.52 256 A 1 \nATOM 2003 O OD2 . ASP A 1 302 ? 24.019 -6.666 13.716 1.00 36.44 256 A 1 \nATOM 2004 N N . VAL A 1 303 ? 23.920 -4.245 8.950 1.00 41.56 257 A 1 \nATOM 2005 C CA . VAL A 1 303 ? 23.416 -3.174 8.078 1.00 42.67 257 A 1 \nATOM 2006 C C . VAL A 1 303 ? 23.335 -3.630 6.617 1.00 43.84 257 A 1 \nATOM 2007 O O . VAL A 1 303 ? 22.330 -3.376 5.930 1.00 43.18 257 A 1 \nATOM 2008 C CB . VAL A 1 303 ? 24.228 -1.860 8.244 1.00 42.52 257 A 1 \nATOM 2009 C CG1 . VAL A 1 303 ? 24.160 -0.981 6.999 1.00 41.63 257 A 1 \nATOM 2010 C CG2 . VAL A 1 303 ? 23.758 -1.101 9.476 1.00 42.65 257 A 1 \nATOM 2011 N N . MET A 1 304 ? 24.363 -4.335 6.159 1.00 44.70 258 A 1 \nATOM 2012 C CA . MET A 1 304 ? 24.356 -4.857 4.791 1.00 46.82 258 A 1 \nATOM 2013 C C . MET A 1 304 ? 23.266 -5.894 4.565 1.00 46.59 258 A 1 \nATOM 2014 O O . MET A 1 304 ? 22.696 -5.962 3.482 1.00 46.79 258 A 1 \nATOM 2015 C CB . MET A 1 304 ? 25.729 -5.396 4.386 1.00 46.35 258 A 1 \nATOM 2016 C CG . MET A 1 304 ? 26.729 -4.285 4.149 1.00 47.69 258 A 1 \nATOM 2017 S SD . MET A 1 304 ? 28.340 -4.840 3.585 1.00 50.76 258 A 1 \nATOM 2018 C CE . MET A 1 304 ? 28.858 -5.859 4.966 1.00 47.51 258 A 1 \nATOM 2019 N N . ASP A 1 305 ? 22.978 -6.687 5.599 1.00 47.08 259 A 1 \nATOM 2020 C CA . ASP A 1 305 ? 21.931 -7.705 5.550 1.00 47.46 259 A 1 \nATOM 2021 C C . ASP A 1 305 ? 20.598 -7.109 5.131 1.00 48.16 259 A 1 \nATOM 2022 O O . ASP A 1 305 ? 19.845 -7.715 4.368 1.00 48.59 259 A 1 \nATOM 2023 C CB . ASP A 1 305 ? 21.745 -8.348 6.924 1.00 46.83 259 A 1 \nATOM 2024 C CG . ASP A 1 305 ? 20.992 -9.646 6.846 1.00 46.64 259 A 1 \nATOM 2025 O OD1 . ASP A 1 305 ? 21.601 -10.646 6.434 1.00 47.85 259 A 1 \nATOM 2026 O OD2 . ASP A 1 305 ? 19.790 -9.679 7.173 1.00 46.00 259 A 1 \nATOM 2027 N N . CYS A 1 306 ? 20.307 -5.928 5.664 1.00 49.21 260 A 1 \nATOM 2028 C CA . CYS A 1 306 ? 19.064 -5.230 5.375 1.00 50.42 260 A 1 \nATOM 2029 C C . CYS A 1 306 ? 19.137 -4.383 4.100 1.00 51.22 260 A 1 \nATOM 2030 O O . CYS A 1 306 ? 18.197 -4.374 3.306 1.00 51.74 260 A 1 \nATOM 2031 C CB . CYS A 1 306 ? 18.678 -4.347 6.560 1.00 50.39 260 A 1 \nATOM 2032 S SG . CYS A 1 306 ? 17.043 -3.625 6.394 1.00 49.54 260 A 1 \nATOM 2033 N N . PHE A 1 307 ? 20.252 -3.685 3.905 1.00 52.14 261 A 1 \nATOM 2034 C CA . PHE A 1 307 ? 20.306 -2.608 2.913 1.00 53.37 261 A 1 \nATOM 2035 C C . PHE A 1 307 ? 21.124 -2.868 1.643 1.00 53.93 261 A 1 \nATOM 2036 O O . PHE A 1 307 ? 20.926 -2.190 0.631 1.00 54.35 261 A 1 \nATOM 2037 C CB . PHE A 1 307 ? 20.686 -1.283 3.601 1.00 53.07 261 A 1 \nATOM 2038 C CG . PHE A 1 307 ? 19.608 -0.769 4.529 1.00 53.35 261 A 1 \nATOM 2039 C CD1 . PHE A 1 307 ? 18.418 -0.254 4.015 1.00 52.67 261 A 1 \nATOM 2040 C CD2 . PHE A 1 307 ? 19.757 -0.845 5.909 1.00 53.64 261 A 1 \nATOM 2041 C CE1 . PHE A 1 307 ? 17.411 0.207 4.857 1.00 52.37 261 A 1 \nATOM 2042 C CE2 . PHE A 1 307 ? 18.745 -0.385 6.768 1.00 53.39 261 A 1 \nATOM 2043 C CZ . PHE A 1 307 ? 17.570 0.136 6.236 1.00 52.55 261 A 1 \nATOM 2044 N N . THR A 1 308 ? 22.023 -3.846 1.680 1.00 54.47 262 A 1 \nATOM 2045 C CA . THR A 1 308 ? 22.848 -4.133 0.512 1.00 55.19 262 A 1 \nATOM 2046 C C . THR A 1 308 ? 22.182 -5.151 -0.419 1.00 55.91 262 A 1 \nATOM 2047 O O . THR A 1 308 ? 21.831 -6.258 0.016 1.00 55.69 262 A 1 \nATOM 2048 C CB . THR A 1 308 ? 24.271 -4.576 0.918 1.00 55.34 262 A 1 \nATOM 2049 O OG1 . THR A 1 308 ? 24.870 -3.526 1.679 1.00 55.15 262 A 1 \nATOM 2050 C CG2 . THR A 1 308 ? 25.140 -4.847 -0.305 1.00 54.64 262 A 1 \nATOM 2051 N N . PRO A 1 309 ? 21.994 -4.777 -1.702 1.00 56.47 263 A 1 \nATOM 2052 C CA . PRO A 1 309 ? 21.467 -5.748 -2.665 1.00 57.23 263 A 1 \nATOM 2053 C C . PRO A 1 309 ? 22.278 -7.037 -2.615 1.00 57.45 263 A 1 \nATOM 2054 O O . PRO A 1 309 ? 23.507 -6.965 -2.562 1.00 57.61 263 A 1 \nATOM 2055 C CB . PRO A 1 309 ? 21.631 -5.045 -4.024 1.00 57.14 263 A 1 \nATOM 2056 C CG . PRO A 1 309 ? 22.475 -3.842 -3.771 1.00 57.37 263 A 1 \nATOM 2057 C CD . PRO A 1 309 ? 22.245 -3.472 -2.331 1.00 56.79 263 A 1 \nATOM 2058 N N . PRO A 1 310 ? 21.592 -8.202 -2.598 1.00 58.09 264 A 1 \nATOM 2059 C CA . PRO A 1 310 ? 22.193 -9.545 -2.509 1.00 58.83 264 A 1 \nATOM 2060 C C . PRO A 1 310 ? 23.243 -9.847 -3.589 1.00 59.85 264 A 1 \nATOM 2061 O O . PRO A 1 310 ? 24.214 -10.559 -3.320 1.00 60.02 264 A 1 \nATOM 2062 C CB . PRO A 1 310 ? 20.985 -10.479 -2.667 1.00 58.83 264 A 1 \nATOM 2063 C CG . PRO A 1 310 ? 19.833 -9.679 -2.203 1.00 58.36 264 A 1 \nATOM 2064 C CD . PRO A 1 310 ? 20.120 -8.279 -2.658 1.00 57.75 264 A 1 \nATOM 2065 N N . GLU A 1 311 ? 23.046 -9.301 -4.791 1.00 60.84 265 A 1 \nATOM 2066 C CA . GLU A 1 311 ? 23.955 -9.511 -5.919 1.00 61.67 265 A 1 \nATOM 2067 C C . GLU A 1 311 ? 25.369 -9.052 -5.585 1.00 61.95 265 A 1 \nATOM 2068 O O . GLU A 1 311 ? 26.351 -9.654 -6.032 1.00 61.89 265 A 1 \nATOM 2069 C CB . GLU A 1 311 ? 23.452 -8.758 -7.154 1.00 62.34 265 A 1 \nATOM 2070 C CG . GLU A 1 311 ? 22.061 -9.182 -7.645 1.00 63.70 265 A 1 \nATOM 2071 C CD . GLU A 1 311 ? 20.915 -8.637 -6.791 1.00 66.47 265 A 1 \nATOM 2072 O OE1 . GLU A 1 311 ? 21.141 -7.685 -6.000 1.00 66.12 265 A 1 \nATOM 2073 O OE2 . GLU A 1 311 ? 19.783 -9.166 -6.923 1.00 67.06 265 A 1 \nATOM 2074 N N . ARG A 1 312 ? 25.461 -7.987 -4.789 1.00 61.98 266 A 1 \nATOM 2075 C CA . ARG A 1 312 ? 26.734 -7.423 -4.391 1.00 62.16 266 A 1 \nATOM 2076 C C . ARG A 1 312 ? 27.350 -8.237 -3.252 1.00 61.84 266 A 1 \nATOM 2077 O O . ARG A 1 312 ? 28.565 -8.396 -3.179 1.00 61.53 266 A 1 \nATOM 2078 C CB . ARG A 1 312 ? 26.541 -5.973 -3.959 1.00 62.54 266 A 1 \nATOM 2079 C CG . ARG A 1 312 ? 27.700 -5.048 -4.301 1.00 64.27 266 A 1 \nATOM 2080 C CD . ARG A 1 312 ? 27.203 -3.607 -4.450 1.00 67.10 266 A 1 \nATOM 2081 N NE . ARG A 1 312 ? 27.016 -2.931 -3.162 1.00 69.46 266 A 1 \nATOM 2082 C CZ . ARG A 1 312 ? 26.128 -1.961 -2.933 1.00 70.83 266 A 1 \nATOM 2083 N NH1 . ARG A 1 312 ? 25.313 -1.549 -3.901 1.00 71.38 266 A 1 \nATOM 2084 N NH2 . ARG A 1 312 ? 26.038 -1.408 -1.725 1.00 70.88 266 A 1 \nATOM 2085 N N . LEU A 1 313 ? 26.500 -8.755 -2.370 1.00 61.56 267 A 1 \nATOM 2086 C CA . LEU A 1 313 ? 26.967 -9.423 -1.153 1.00 61.15 267 A 1 \nATOM 2087 C C . LEU A 1 313 ? 27.193 -10.926 -1.366 1.00 60.40 267 A 1 \nATOM 2088 O O . LEU A 1 313 ? 28.033 -11.540 -0.697 1.00 60.94 267 A 1 \nATOM 2089 C CB . LEU A 1 313 ? 25.977 -9.178 -0.009 1.00 61.33 267 A 1 \nATOM 2090 C CG . LEU A 1 313 ? 26.574 -8.890 1.371 1.00 62.04 267 A 1 \nATOM 2091 C CD1 . LEU A 1 313 ? 27.172 -7.495 1.398 1.00 63.25 267 A 1 \nATOM 2092 C CD2 . LEU A 1 313 ? 25.534 -9.030 2.470 1.00 61.52 267 A 1 \nATOM 2093 N N . GLY A 1 314 ? 26.449 -11.507 -2.304 1.00 59.28 268 A 1 \nATOM 2094 C CA . GLY A 1 314 ? 26.544 -12.938 -2.594 1.00 57.96 268 A 1 \nATOM 2095 C C . GLY A 1 314 ? 25.553 -13.773 -1.807 1.00 56.77 268 A 1 \nATOM 2096 O O . GLY A 1 314 ? 25.413 -14.975 -2.048 1.00 56.98 268 A 1 \nATOM 2097 N N . LYS A 1 315 ? 24.866 -13.130 -0.864 1.00 55.36 269 A 1 \nATOM 2098 C CA . LYS A 1 315 ? 23.930 -13.812 0.020 1.00 53.86 269 A 1 \nATOM 2099 C C . LYS A 1 315 ? 22.637 -13.012 0.193 1.00 52.81 269 A 1 \nATOM 2100 O O . LYS A 1 315 ? 22.627 -11.793 0.029 1.00 53.13 269 A 1 \nATOM 2101 C CB . LYS A 1 315 ? 24.601 -14.123 1.375 1.00 53.76 269 A 1 \nATOM 2102 C CG . LYS A 1 315 ? 24.939 -12.907 2.235 1.00 53.55 269 A 1 \nATOM 2103 C CD . LYS A 1 315 ? 25.947 -13.246 3.339 1.00 53.95 269 A 1 \nATOM 2104 C CE . LYS A 1 315 ? 25.788 -12.325 4.526 1.00 54.00 269 A 1 \nATOM 2105 N NZ . LYS A 1 315 ? 27.056 -12.191 5.272 1.00 57.30 269 A 1 \nATOM 2106 N N . VAL A 1 316 ? 21.547 -13.703 0.506 1.00 51.47 270 A 1 \nATOM 2107 C CA . VAL A 1 316 ? 20.279 -13.042 0.803 1.00 50.32 270 A 1 \nATOM 2108 C C . VAL A 1 316 ? 20.113 -12.888 2.323 1.00 49.67 270 A 1 \nATOM 2109 O O . VAL A 1 316 ? 20.368 -13.829 3.086 1.00 49.28 270 A 1 \nATOM 2110 C CB . VAL A 1 316 ? 19.060 -13.788 0.179 1.00 50.29 270 A 1 \nATOM 2111 C CG1 . VAL A 1 316 ? 17.742 -13.120 0.588 1.00 49.37 270 A 1 \nATOM 2112 C CG2 . VAL A 1 316 ? 19.178 -13.843 -1.361 1.00 50.27 270 A 1 \nATOM 2113 N N . GLY A 1 317 ? 19.689 -11.698 2.747 1.00 48.95 271 A 1 \nATOM 2114 C CA . GLY A 1 317 ? 19.544 -11.374 4.166 1.00 47.74 271 A 1 \nATOM 2115 C C . GLY A 1 317 ? 18.367 -12.040 4.849 1.00 46.90 271 A 1 \nATOM 2116 O O . GLY A 1 317 ? 17.262 -12.104 4.284 1.00 46.61 271 A 1 \nATOM 2117 N N . THR A 1 318 ? 18.601 -12.529 6.065 1.00 45.56 272 A 1 \nATOM 2118 C CA . THR A 1 318 ? 17.571 -13.239 6.837 1.00 45.09 272 A 1 \nATOM 2119 C C . THR A 1 318 ? 17.271 -12.639 8.223 1.00 44.35 272 A 1 \nATOM 2120 O O . THR A 1 318 ? 16.426 -13.155 8.956 1.00 44.68 272 A 1 \nATOM 2121 C CB . THR A 1 318 ? 17.935 -14.740 7.019 1.00 45.35 272 A 1 \nATOM 2122 O OG1 . THR A 1 318 ? 19.218 -14.850 7.660 1.00 44.53 272 A 1 \nATOM 2123 C CG2 . THR A 1 318 ? 17.971 -15.474 5.658 1.00 45.19 272 A 1 \nATOM 2124 N N . ASP A 1 319 ? 17.962 -11.564 8.598 1.00 44.06 273 A 1 \nATOM 2125 C CA . ASP A 1 319 ? 17.912 -11.077 9.994 1.00 43.13 273 A 1 \nATOM 2126 C C . ASP A 1 319 ? 16.498 -10.665 10.405 1.00 42.34 273 A 1 \nATOM 2127 O O . ASP A 1 319 ? 16.012 -11.046 11.472 1.00 41.79 273 A 1 \nATOM 2128 C CB . ASP A 1 319 ? 18.889 -9.908 10.241 1.00 42.42 273 A 1 \nATOM 2129 C CG . ASP A 1 319 ? 20.355 -10.323 10.239 1.00 42.55 273 A 1 \nATOM 2130 O OD1 . ASP A 1 319 ? 20.691 -11.529 10.400 1.00 46.70 273 A 1 \nATOM 2131 O OD2 . ASP A 1 319 ? 21.190 -9.411 10.089 1.00 39.44 273 A 1 \nATOM 2132 N N . ILE A 1 320 ? 15.831 -9.887 9.561 1.00 42.88 274 A 1 \nATOM 2133 C CA . ILE A 1 320 ? 14.435 -9.512 9.846 1.00 42.30 274 A 1 \nATOM 2134 C C . ILE A 1 320 ? 13.572 -10.760 10.056 1.00 42.50 274 A 1 \nATOM 2135 O O . ILE A 1 320 ? 12.997 -10.955 11.132 1.00 42.36 274 A 1 \nATOM 2136 C CB . ILE A 1 320 ? 13.862 -8.529 8.785 1.00 42.17 274 A 1 \nATOM 2137 C CG1 . ILE A 1 320 ? 14.540 -7.171 8.912 1.00 41.92 274 A 1 \nATOM 2138 C CG2 . ILE A 1 320 ? 12.365 -8.335 8.986 1.00 42.29 274 A 1 \nATOM 2139 C CD1 . ILE A 1 320 ? 14.575 -6.338 7.638 1.00 39.40 274 A 1 \nATOM 2140 N N . GLN A 1 321 ? 13.529 -11.624 9.042 1.00 43.06 275 A 1 \nATOM 2141 C CA . GLN A 1 321 ? 12.767 -12.875 9.062 1.00 42.96 275 A 1 \nATOM 2142 C C . GLN A 1 321 ? 13.087 -13.756 10.289 1.00 43.11 275 A 1 \nATOM 2143 O O . GLN A 1 321 ? 12.186 -14.343 10.895 1.00 42.84 275 A 1 \nATOM 2144 C CB . GLN A 1 321 ? 13.040 -13.669 7.767 1.00 43.53 275 A 1 \nATOM 2145 C CG . GLN A 1 321 ? 12.717 -12.927 6.444 1.00 44.22 275 A 1 \nATOM 2146 C CD . GLN A 1 321 ? 13.853 -12.061 5.904 1.00 47.59 275 A 1 \nATOM 2147 O OE1 . GLN A 1 321 ? 14.748 -11.630 6.638 1.00 49.54 275 A 1 \nATOM 2148 N NE2 . GLN A 1 321 ? 13.811 -11.790 4.605 1.00 48.61 275 A 1 \nATOM 2149 N N . ASP A 1 322 ? 14.370 -13.844 10.653 1.00 43.07 276 A 1 \nATOM 2150 C CA . ASP A 1 322 ? 14.800 -14.660 11.809 1.00 42.72 276 A 1 \nATOM 2151 C C . ASP A 1 322 ? 14.599 -13.975 13.160 1.00 42.58 276 A 1 \nATOM 2152 O O . ASP A 1 322 ? 14.847 -14.577 14.222 1.00 42.94 276 A 1 \nATOM 2153 C CB . ASP A 1 322 ? 16.266 -15.087 11.656 1.00 42.40 276 A 1 \nATOM 2154 C CG . ASP A 1 322 ? 16.489 -16.039 10.480 1.00 42.22 276 A 1 \nATOM 2155 O OD1 . ASP A 1 322 ? 15.513 -16.400 9.779 1.00 37.95 276 A 1 \nATOM 2156 O OD2 . ASP A 1 322 ? 17.657 -16.421 10.261 1.00 38.69 276 A 1 \nATOM 2157 N N . ALA A 1 323 ? 14.144 -12.727 13.125 1.00 42.47 277 A 1 \nATOM 2158 C CA . ALA A 1 323 ? 13.995 -11.885 14.334 1.00 42.03 277 A 1 \nATOM 2159 C C . ALA A 1 323 ? 15.299 -11.699 15.092 1.00 41.73 277 A 1 \nATOM 2160 O O . ALA A 1 323 ? 15.310 -11.743 16.327 1.00 42.21 277 A 1 \nATOM 2161 C CB . ALA A 1 323 ? 12.892 -12.419 15.278 1.00 42.22 277 A 1 \nATOM 2162 N N . LYS A 1 324 ? 16.386 -11.473 14.354 1.00 41.02 278 A 1 \nATOM 2163 C CA . LYS A 1 324 ? 17.703 -11.287 14.951 1.00 40.95 278 A 1 \nATOM 2164 C C . LYS A 1 324 ? 17.784 -9.975 15.732 1.00 40.73 278 A 1 \nATOM 2165 O O . LYS A 1 324 ? 17.202 -8.950 15.326 1.00 39.81 278 A 1 \nATOM 2166 C CB . LYS A 1 324 ? 18.825 -11.384 13.896 1.00 40.55 278 A 1 \nATOM 2167 C CG . LYS A 1 324 ? 19.028 -12.824 13.370 1.00 40.68 278 A 1 \nATOM 2168 C CD . LYS A 1 324 ? 19.394 -13.722 14.552 1.00 39.88 278 A 1 \nATOM 2169 C CE . LYS A 1 324 ? 19.109 -15.180 14.330 1.00 40.26 278 A 1 \nATOM 2170 N NZ . LYS A 1 324 ? 20.077 -15.766 13.404 1.00 39.78 278 A 1 \nATOM 2171 N N . CYS A 1 325 ? 18.466 -10.054 16.872 1.00 40.01 279 A 1 \nATOM 2172 C CA . CYS A 1 325 ? 18.887 -8.885 17.643 1.00 40.00 279 A 1 \nATOM 2173 C C . CYS A 1 325 ? 20.060 -8.235 16.920 1.00 39.90 279 A 1 \nATOM 2174 O O . CYS A 1 325 ? 21.226 -8.358 17.335 1.00 40.76 279 A 1 \nATOM 2175 C CB . CYS A 1 325 ? 19.244 -9.297 19.083 1.00 39.75 279 A 1 \nATOM 2176 S SG . CYS A 1 325 ? 19.611 -7.920 20.212 1.00 39.90 279 A 1 \nATOM 2177 N N . SER A 1 326 ? 19.753 -7.579 15.805 1.00 39.48 280 A 1 \nATOM 2178 C CA . SER A 1 326 ? 20.758 -6.900 14.999 1.00 39.49 280 A 1 \nATOM 2179 C C . SER A 1 326 ? 21.052 -5.505 15.554 1.00 39.79 280 A 1 \nATOM 2180 O O . SER A 1 326 ? 20.349 -5.018 16.445 1.00 39.76 280 A 1 \nATOM 2181 C CB . SER A 1 326 ? 20.258 -6.747 13.564 1.00 39.70 280 A 1 \nATOM 2182 O OG . SER A 1 326 ? 19.112 -5.914 13.546 1.00 39.27 280 A 1 \nATOM 2183 N N . TRP A 1 327 ? 22.065 -4.852 14.992 1.00 39.90 281 A 1 \nATOM 2184 C CA . TRP A 1 327 ? 22.362 -3.465 15.348 1.00 40.13 281 A 1 \nATOM 2185 C C . TRP A 1 327 ? 21.179 -2.575 14.985 1.00 40.09 281 A 1 \nATOM 2186 O O . TRP A 1 327 ? 20.772 -1.715 15.767 1.00 40.04 281 A 1 \nATOM 2187 C CB . TRP A 1 327 ? 23.628 -2.968 14.671 1.00 40.08 281 A 1 \nATOM 2188 C CG . TRP A 1 327 ? 24.001 -1.573 15.125 1.00 40.43 281 A 1 \nATOM 2189 C CD1 . TRP A 1 327 ? 24.663 -1.228 16.272 1.00 39.77 281 A 1 \nATOM 2190 C CD2 . TRP A 1 327 ? 23.721 -0.350 14.442 1.00 40.52 281 A 1 \nATOM 2191 N NE1 . TRP A 1 327 ? 24.817 0.142 16.341 1.00 39.96 281 A 1 \nATOM 2192 C CE2 . TRP A 1 327 ? 24.253 0.704 15.227 1.00 40.69 281 A 1 \nATOM 2193 C CE3 . TRP A 1 327 ? 23.078 -0.037 13.242 1.00 42.04 281 A 1 \nATOM 2194 C CZ2 . TRP A 1 327 ? 24.144 2.048 14.852 1.00 40.80 281 A 1 \nATOM 2195 C CZ3 . TRP A 1 327 ? 22.978 1.315 12.867 1.00 41.85 281 A 1 \nATOM 2196 C CH2 . TRP A 1 327 ? 23.513 2.332 13.670 1.00 39.86 281 A 1 \nATOM 2197 N N . LEU A 1 328 ? 20.610 -2.811 13.809 1.00 39.38 282 A 1 \nATOM 2198 C CA . LEU A 1 328 ? 19.466 -2.021 13.360 1.00 39.39 282 A 1 \nATOM 2199 C C . LEU A 1 328 ? 18.305 -2.102 14.330 1.00 38.68 282 A 1 \nATOM 2200 O O . LEU A 1 328 ? 17.758 -1.075 14.708 1.00 38.58 282 A 1 \nATOM 2201 C CB . LEU A 1 328 ? 19.046 -2.425 11.954 1.00 39.53 282 A 1 \nATOM 2202 C CG . LEU A 1 328 ? 20.139 -2.144 10.928 1.00 39.53 282 A 1 \nATOM 2203 C CD1 . LEU A 1 328 ? 19.768 -2.769 9.601 1.00 39.37 282 A 1 \nATOM 2204 C CD2 . LEU A 1 328 ? 20.347 -0.670 10.771 1.00 38.75 282 A 1 \nATOM 2205 N N . ALA A 1 329 ? 17.976 -3.313 14.771 1.00 38.51 283 A 1 \nATOM 2206 C CA . ALA A 1 329 ? 16.855 -3.529 15.671 1.00 38.26 283 A 1 \nATOM 2207 C C . ALA A 1 329 ? 17.008 -2.834 17.023 1.00 38.75 283 A 1 \nATOM 2208 O O . ALA A 1 329 ? 16.076 -2.182 17.496 1.00 38.61 283 A 1 \nATOM 2209 C CB . ALA A 1 329 ? 16.601 -5.000 15.856 1.00 38.28 283 A 1 \nATOM 2210 N N . VAL A 1 330 ? 18.180 -2.962 17.641 1.00 38.14 284 A 1 \nATOM 2211 C CA . VAL A 1 330 ? 18.408 -2.374 18.959 1.00 37.90 284 A 1 \nATOM 2212 C C . VAL A 1 330 ? 18.397 -0.847 18.887 1.00 37.86 284 A 1 \nATOM 2213 O O . VAL A 1 330 ? 17.847 -0.199 19.772 1.00 37.26 284 A 1 \nATOM 2214 C CB . VAL A 1 330 ? 19.739 -2.891 19.592 1.00 38.09 284 A 1 \nATOM 2215 C CG1 . VAL A 1 330 ? 19.658 -4.401 19.804 1.00 38.38 284 A 1 \nATOM 2216 C CG2 . VAL A 1 330 ? 20.900 -2.571 18.706 1.00 36.67 284 A 1 \nATOM 2217 N N . THR A 1 331 ? 18.995 -0.294 17.825 1.00 38.04 285 A 1 \nATOM 2218 C CA . THR A 1 331 ? 19.141 1.145 17.648 1.00 39.07 285 A 1 \nATOM 2219 C C . THR A 1 331 ? 17.792 1.781 17.269 1.00 40.13 285 A 1 \nATOM 2220 O O . THR A 1 331 ? 17.461 2.861 17.742 1.00 41.02 285 A 1 \nATOM 2221 C CB . THR A 1 331 ? 20.245 1.484 16.612 1.00 39.26 285 A 1 \nATOM 2222 O OG1 . THR A 1 331 ? 21.441 0.757 16.920 1.00 39.78 285 A 1 \nATOM 2223 C CG2 . THR A 1 331 ? 20.581 2.971 16.607 1.00 39.63 285 A 1 \nATOM 2224 N N . PHE A 1 332 ? 17.017 1.099 16.436 1.00 39.79 286 A 1 \nATOM 2225 C CA . PHE A 1 332 ? 15.639 1.517 16.163 1.00 40.43 286 A 1 \nATOM 2226 C C . PHE A 1 332 ? 14.796 1.568 17.446 1.00 40.44 286 A 1 \nATOM 2227 O O . PHE A 1 332 ? 14.239 2.614 17.788 1.00 40.57 286 A 1 \nATOM 2228 C CB . PHE A 1 332 ? 14.987 0.592 15.129 1.00 39.67 286 A 1 \nATOM 2229 C CG . PHE A 1 332 ? 13.513 0.860 14.926 1.00 40.07 286 A 1 \nATOM 2230 C CD1 . PHE A 1 332 ? 13.095 1.908 14.111 1.00 39.58 286 A 1 \nATOM 2231 C CD2 . PHE A 1 332 ? 12.554 0.083 15.568 1.00 38.66 286 A 1 \nATOM 2232 C CE1 . PHE A 1 332 ? 11.733 2.157 13.918 1.00 40.05 286 A 1 \nATOM 2233 C CE2 . PHE A 1 332 ? 11.188 0.335 15.389 1.00 40.45 286 A 1 \nATOM 2234 C CZ . PHE A 1 332 ? 10.787 1.370 14.561 1.00 39.43 286 A 1 \nATOM 2235 N N . LEU A 1 333 ? 14.724 0.449 18.166 1.00 40.18 287 A 1 \nATOM 2236 C CA . LEU A 1 333 ? 13.885 0.377 19.352 1.00 40.24 287 A 1 \nATOM 2237 C C . LEU A 1 333 ? 14.264 1.340 20.492 1.00 41.25 287 A 1 \nATOM 2238 O O . LEU A 1 333 ? 13.385 1.789 21.247 1.00 41.42 287 A 1 \nATOM 2239 C CB . LEU A 1 333 ? 13.796 -1.059 19.867 1.00 39.75 287 A 1 \nATOM 2240 C CG . LEU A 1 333 ? 13.220 -2.088 18.894 1.00 38.54 287 A 1 \nATOM 2241 C CD1 . LEU A 1 333 ? 13.592 -3.501 19.322 1.00 37.32 287 A 1 \nATOM 2242 C CD2 . LEU A 1 333 ? 11.687 -1.933 18.744 1.00 36.57 287 A 1 \nATOM 2243 N N . ALA A 1 334 ? 15.550 1.657 20.608 1.00 40.90 288 A 1 \nATOM 2244 C CA . ALA A 1 334 ? 16.030 2.561 21.647 1.00 42.50 288 A 1 \nATOM 2245 C C . ALA A 1 334 ? 15.527 3.988 21.447 1.00 42.81 288 A 1 \nATOM 2246 O O . ALA A 1 334 ? 15.288 4.704 22.424 1.00 43.54 288 A 1 \nATOM 2247 C CB . ALA A 1 334 ? 17.559 2.531 21.720 1.00 41.97 288 A 1 \nATOM 2248 N N . LYS A 1 335 ? 15.371 4.396 20.187 1.00 43.03 289 A 1 \nATOM 2249 C CA . LYS A 1 335 ? 14.963 5.763 19.839 1.00 43.23 289 A 1 \nATOM 2250 C C . LYS A 1 335 ? 13.526 5.880 19.284 1.00 43.71 289 A 1 \nATOM 2251 O O . LYS A 1 335 ? 13.019 6.996 19.099 1.00 43.29 289 A 1 \nATOM 2252 C CB . LYS A 1 335 ? 15.928 6.357 18.806 1.00 43.29 289 A 1 \nATOM 2253 C CG . LYS A 1 335 ? 15.800 5.728 17.424 1.00 42.60 289 A 1 \nATOM 2254 C CD . LYS A 1 335 ? 16.895 6.152 16.482 1.00 44.55 289 A 1 \nATOM 2255 C CE . LYS A 1 335 ? 16.773 7.582 16.046 1.00 44.20 289 A 1 \nATOM 2256 N NZ . LYS A 1 335 ? 17.684 7.837 14.877 1.00 45.78 289 A 1 \nATOM 2257 N N . ALA A 1 336 ? 12.887 4.742 19.007 1.00 43.67 290 A 1 \nATOM 2258 C CA . ALA A 1 336 ? 11.591 4.740 18.331 1.00 43.33 290 A 1 \nATOM 2259 C C . ALA A 1 336 ? 10.441 5.254 19.224 1.00 43.57 290 A 1 \nATOM 2260 O O . ALA A 1 336 ? 10.455 5.100 20.448 1.00 43.05 290 A 1 \nATOM 2261 C CB . ALA A 1 336 ? 11.278 3.351 17.781 1.00 43.30 290 A 1 \nATOM 2262 N N . SER A 1 337 ? 9.447 5.879 18.594 1.00 43.57 291 A 1 \nATOM 2263 C CA . SER A 1 337 ? 8.237 6.263 19.299 1.00 43.36 291 A 1 \nATOM 2264 C C . SER A 1 337 ? 7.429 4.997 19.565 1.00 43.58 291 A 1 \nATOM 2265 O O . SER A 1 337 ? 7.755 3.942 19.031 1.00 43.88 291 A 1 \nATOM 2266 C CB . SER A 1 337 ? 7.454 7.271 18.456 1.00 43.41 291 A 1 \nATOM 2267 O OG . SER A 1 337 ? 6.884 6.651 17.325 1.00 42.21 291 A 1 \nATOM 2268 N N . SER A 1 338 ? 6.383 5.087 20.383 1.00 43.93 292 A 1 \nATOM 2269 C CA . SER A 1 338 ? 5.530 3.934 20.679 1.00 43.78 292 A 1 \nATOM 2270 C C . SER A 1 338 ? 4.778 3.422 19.447 1.00 44.76 292 A 1 \nATOM 2271 O O . SER A 1 338 ? 4.570 2.211 19.299 1.00 44.44 292 A 1 \nATOM 2272 C CB . SER A 1 338 ? 4.536 4.271 21.787 1.00 44.00 292 A 1 \nATOM 2273 O OG . SER A 1 338 ? 5.180 4.409 23.040 1.00 43.16 292 A 1 \nATOM 2274 N N . ALA A 1 339 ? 4.363 4.343 18.577 1.00 44.98 293 A 1 \nATOM 2275 C CA . ALA A 1 339 ? 3.676 3.968 17.342 1.00 45.98 293 A 1 \nATOM 2276 C C . ALA A 1 339 ? 4.610 3.186 16.413 1.00 45.70 293 A 1 \nATOM 2277 O O . ALA A 1 339 ? 4.220 2.158 15.872 1.00 45.82 293 A 1 \nATOM 2278 C CB . ALA A 1 339 ? 3.076 5.198 16.631 1.00 45.92 293 A 1 \nATOM 2279 N N . GLN A 1 340 ? 5.837 3.664 16.258 1.00 46.07 294 A 1 \nATOM 2280 C CA . GLN A 1 340 ? 6.858 2.966 15.460 1.00 46.22 294 A 1 \nATOM 2281 C C . GLN A 1 340 ? 7.230 1.601 16.038 1.00 46.02 294 A 1 \nATOM 2282 O O . GLN A 1 340 ? 7.459 0.642 15.296 1.00 46.22 294 A 1 \nATOM 2283 C CB . GLN A 1 340 ? 8.107 3.833 15.307 1.00 46.44 294 A 1 \nATOM 2284 C CG . GLN A 1 340 ? 7.955 4.940 14.297 1.00 48.40 294 A 1 \nATOM 2285 C CD . GLN A 1 340 ? 9.044 5.991 14.372 1.00 52.60 294 A 1 \nATOM 2286 O OE1 . GLN A 1 340 ? 9.773 6.103 15.371 1.00 51.23 294 A 1 \nATOM 2287 N NE2 . GLN A 1 340 ? 9.159 6.787 13.301 1.00 54.71 294 A 1 \nATOM 2288 N N . VAL A 1 341 ? 7.298 1.514 17.359 1.00 45.18 295 A 1 \nATOM 2289 C CA . VAL A 1 341 ? 7.571 0.235 18.006 1.00 45.00 295 A 1 \nATOM 2290 C C . VAL A 1 341 ? 6.425 -0.751 17.790 1.00 44.89 295 A 1 \nATOM 2291 O O . VAL A 1 341 ? 6.666 -1.934 17.557 1.00 44.03 295 A 1 \nATOM 2292 C CB . VAL A 1 341 ? 7.920 0.411 19.498 1.00 44.57 295 A 1 \nATOM 2293 C CG1 . VAL A 1 341 ? 7.900 -0.922 20.239 1.00 44.08 295 A 1 \nATOM 2294 C CG2 . VAL A 1 341 ? 9.274 1.071 19.621 1.00 45.37 295 A 1 \nATOM 2295 N N . ALA A 1 342 ? 5.189 -0.253 17.845 1.00 45.16 296 A 1 \nATOM 2296 C CA . ALA A 1 342 ? 4.007 -1.061 17.546 1.00 45.71 296 A 1 \nATOM 2297 C C . ALA A 1 342 ? 4.048 -1.645 16.130 1.00 46.10 296 A 1 \nATOM 2298 O O . ALA A 1 342 ? 3.859 -2.837 15.963 1.00 46.48 296 A 1 \nATOM 2299 C CB . ALA A 1 342 ? 2.716 -0.253 17.768 1.00 45.97 296 A 1 \nATOM 2300 N N . GLU A 1 343 ? 4.287 -0.800 15.131 1.00 46.76 297 A 1 \nATOM 2301 C CA . GLU A 1 343 ? 4.436 -1.237 13.741 1.00 48.04 297 A 1 \nATOM 2302 C C . GLU A 1 343 ? 5.505 -2.339 13.585 1.00 47.89 297 A 1 \nATOM 2303 O O . GLU A 1 343 ? 5.245 -3.388 12.989 1.00 47.59 297 A 1 \nATOM 2304 C CB . GLU A 1 343 ? 4.823 -0.058 12.855 1.00 48.14 297 A 1 \nATOM 2305 C CG . GLU A 1 343 ? 3.708 0.577 12.080 1.00 50.89 297 A 1 \nATOM 2306 C CD . GLU A 1 343 ? 4.226 1.272 10.839 1.00 52.73 297 A 1 \nATOM 2307 O OE1 . GLU A 1 343 ? 4.665 2.456 10.915 1.00 52.48 297 A 1 \nATOM 2308 O OE2 . GLU A 1 343 ? 4.189 0.614 9.780 1.00 55.21 297 A 1 \nATOM 2309 N N . PHE A 1 344 ? 6.698 -2.077 14.126 1.00 47.60 298 A 1 \nATOM 2310 C CA . PHE A 1 344 ? 7.818 -3.035 14.140 1.00 47.29 298 A 1 \nATOM 2311 C C . PHE A 1 344 ? 7.402 -4.393 14.707 1.00 47.80 298 A 1 \nATOM 2312 O O . PHE A 1 344 ? 7.655 -5.434 14.099 1.00 47.74 298 A 1 \nATOM 2313 C CB . PHE A 1 344 ? 8.980 -2.434 14.953 1.00 46.26 298 A 1 \nATOM 2314 C CG . PHE A 1 344 ? 10.170 -3.375 15.175 1.00 45.11 298 A 1 \nATOM 2315 C CD1 . PHE A 1 344 ? 11.287 -3.307 14.357 1.00 43.11 298 A 1 \nATOM 2316 C CD2 . PHE A 1 344 ? 10.189 -4.268 16.243 1.00 44.20 298 A 1 \nATOM 2317 C CE1 . PHE A 1 344 ? 12.392 -4.151 14.576 1.00 43.75 298 A 1 \nATOM 2318 C CE2 . PHE A 1 344 ? 11.291 -5.119 16.467 1.00 42.72 298 A 1 \nATOM 2319 C CZ . PHE A 1 344 ? 12.388 -5.048 15.637 1.00 43.04 298 A 1 \nATOM 2320 N N . LYS A 1 345 ? 6.767 -4.371 15.873 1.00 48.37 299 A 1 \nATOM 2321 C CA . LYS A 1 345 ? 6.353 -5.592 16.564 1.00 49.01 299 A 1 \nATOM 2322 C C . LYS A 1 345 ? 5.414 -6.438 15.711 1.00 49.43 299 A 1 \nATOM 2323 O O . LYS A 1 345 ? 5.471 -7.671 15.745 1.00 48.99 299 A 1 \nATOM 2324 C CB . LYS A 1 345 ? 5.655 -5.251 17.884 1.00 49.19 299 A 1 \nATOM 2325 C CG . LYS A 1 345 ? 6.576 -4.928 19.058 1.00 49.32 299 A 1 \nATOM 2326 C CD . LYS A 1 345 ? 5.733 -4.691 20.307 1.00 49.14 299 A 1 \nATOM 2327 C CE . LYS A 1 345 ? 6.568 -4.186 21.467 1.00 48.34 299 A 1 \nATOM 2328 N NZ . LYS A 1 345 ? 5.684 -3.830 22.603 1.00 48.65 299 A 1 \nATOM 2329 N N . ALA A 1 346 ? 4.542 -5.761 14.967 1.00 49.59 300 A 1 \nATOM 2330 C CA . ALA A 1 346 ? 3.526 -6.429 14.151 1.00 50.27 300 A 1 \nATOM 2331 C C . ALA A 1 346 ? 4.079 -6.919 12.816 1.00 50.06 300 A 1 \nATOM 2332 O O . ALA A 1 346 ? 3.382 -7.615 12.074 1.00 50.66 300 A 1 \nATOM 2333 C CB . ALA A 1 346 ? 2.316 -5.495 13.924 1.00 49.83 300 A 1 \nATOM 2334 N N . ASN A 1 347 ? 5.317 -6.542 12.509 1.00 49.98 301 A 1 \nATOM 2335 C CA . ASN A 1 347 ? 5.955 -6.900 11.238 1.00 50.06 301 A 1 \nATOM 2336 C C . ASN A 1 347 ? 7.272 -7.707 11.350 1.00 50.02 301 A 1 \nATOM 2337 O O . ASN A 1 347 ? 7.704 -8.325 10.370 1.00 50.40 301 A 1 \nATOM 2338 C CB . ASN A 1 347 ? 6.169 -5.648 10.380 1.00 49.83 301 A 1 \nATOM 2339 C CG . ASN A 1 347 ? 4.869 -5.087 9.823 1.00 51.36 301 A 1 \nATOM 2340 O OD1 . ASN A 1 347 ? 4.381 -5.540 8.784 1.00 52.71 301 A 1 \nATOM 2341 N ND2 . ASN A 1 347 ? 4.317 -4.077 10.495 1.00 50.31 301 A 1 \nATOM 2342 N N . TYR A 1 348 ? 7.884 -7.723 12.536 1.00 49.28 302 A 1 \nATOM 2343 C CA . TYR A 1 348 ? 9.202 -8.357 12.725 1.00 48.57 302 A 1 \nATOM 2344 C C . TYR A 1 348 ? 9.123 -9.879 12.910 1.00 49.30 302 A 1 \nATOM 2345 O O . TYR A 1 348 ? 8.225 -10.400 13.589 1.00 48.79 302 A 1 \nATOM 2346 C CB . TYR A 1 348 ? 9.966 -7.705 13.895 1.00 47.24 302 A 1 \nATOM 2347 C CG . TYR A 1 348 ? 11.497 -7.802 13.815 1.00 44.65 302 A 1 \nATOM 2348 C CD1 . TYR A 1 348 ? 12.203 -7.127 12.824 1.00 43.29 302 A 1 \nATOM 2349 C CD2 . TYR A 1 348 ? 12.226 -8.559 14.734 1.00 43.26 302 A 1 \nATOM 2350 C CE1 . TYR A 1 348 ? 13.574 -7.206 12.733 1.00 41.84 302 A 1 \nATOM 2351 C CE2 . TYR A 1 348 ? 13.631 -8.635 14.661 1.00 42.23 302 A 1 \nATOM 2352 C CZ . TYR A 1 348 ? 14.287 -7.957 13.648 1.00 43.39 302 A 1 \nATOM 2353 O OH . TYR A 1 348 ? 15.650 -8.012 13.522 1.00 43.64 302 A 1 \nATOM 2354 N N . GLY A 1 349 ? 10.077 -10.588 12.308 1.00 50.29 303 A 1 \nATOM 2355 C CA . GLY A 1 349 ? 10.172 -12.044 12.468 1.00 51.37 303 A 1 \nATOM 2356 C C . GLY A 1 349 ? 9.181 -12.815 11.611 1.00 52.76 303 A 1 \nATOM 2357 O O . GLY A 1 349 ? 8.650 -13.847 12.033 1.00 52.56 303 A 1 \nATOM 2358 N N . SER A 1 350 ? 8.936 -12.319 10.403 1.00 53.56 304 A 1 \nATOM 2359 C CA . SER A 1 350 ? 8.014 -12.979 9.487 1.00 55.53 304 A 1 \nATOM 2360 C C . SER A 1 350 ? 8.634 -13.036 8.109 1.00 56.27 304 A 1 \nATOM 2361 O O . SER A 1 350 ? 9.344 -12.111 7.708 1.00 56.28 304 A 1 \nATOM 2362 C CB . SER A 1 350 ? 6.678 -12.232 9.433 1.00 55.61 304 A 1 \nATOM 2363 O OG . SER A 1 350 ? 5.876 -12.658 8.340 1.00 57.30 304 A 1 \nATOM 2364 N N . GLY A 1 351 ? 8.356 -14.128 7.393 1.00 57.36 305 A 1 \nATOM 2365 C CA . GLY A 1 351 ? 8.870 -14.323 6.038 1.00 58.28 305 A 1 \nATOM 2366 C C . GLY A 1 351 ? 8.232 -13.411 5.006 1.00 59.09 305 A 1 \nATOM 2367 O O . GLY A 1 351 ? 8.855 -13.080 3.994 1.00 59.30 305 A 1 \nATOM 2368 N N . ASP A 1 352 ? 6.990 -13.010 5.271 1.00 59.97 306 A 1 \nATOM 2369 C CA . ASP A 1 352 ? 6.189 -12.180 4.366 1.00 60.73 306 A 1 \nATOM 2370 C C . ASP A 1 352 ? 6.918 -10.926 3.893 1.00 60.97 306 A 1 \nATOM 2371 O O . ASP A 1 352 ? 7.220 -10.043 4.687 1.00 61.14 306 A 1 \nATOM 2372 C CB . ASP A 1 352 ? 4.876 -11.799 5.052 1.00 60.95 306 A 1 \nATOM 2373 C CG . ASP A 1 352 ? 3.959 -10.969 4.170 1.00 62.44 306 A 1 \nATOM 2374 O OD1 . ASP A 1 352 ? 4.453 -10.246 3.269 1.00 63.06 306 A 1 \nATOM 2375 O OD2 . ASP A 1 352 ? 2.728 -11.039 4.389 1.00 64.51 306 A 1 \nATOM 2376 N N . SER A 1 353 ? 7.154 -10.851 2.583 1.00 61.46 307 A 1 \nATOM 2377 C CA . SER A 1 353 ? 7.952 -9.785 1.951 1.00 61.81 307 A 1 \nATOM 2378 C C . SER A 1 353 ? 7.516 -8.335 2.208 1.00 61.79 307 A 1 \nATOM 2379 O O . SER A 1 353 ? 8.367 -7.443 2.271 1.00 62.00 307 A 1 \nATOM 2380 C CB . SER A 1 353 ? 8.051 -10.022 0.444 1.00 61.85 307 A 1 \nATOM 2381 O OG . SER A 1 353 ? 8.664 -11.271 0.179 1.00 62.74 307 A 1 \nATOM 2382 N N . GLU A 1 354 ? 6.210 -8.096 2.331 1.00 61.75 308 A 1 \nATOM 2383 C CA . GLU A 1 354 ? 5.713 -6.735 2.588 1.00 61.80 308 A 1 \nATOM 2384 C C . GLU A 1 354 ? 5.983 -6.313 4.044 1.00 60.60 308 A 1 \nATOM 2385 O O . GLU A 1 354 ? 6.306 -5.152 4.306 1.00 60.41 308 A 1 \nATOM 2386 C CB . GLU A 1 354 ? 4.222 -6.574 2.209 1.00 61.81 308 A 1 \nATOM 2387 C CG . GLU A 1 354 ? 3.238 -7.392 3.062 1.00 63.36 308 A 1 \nATOM 2388 C CD . GLU A 1 354 ? 1.824 -6.816 3.104 1.00 63.96 308 A 1 \nATOM 2389 O OE1 . GLU A 1 354 ? 1.169 -6.705 2.035 1.00 66.23 308 A 1 \nATOM 2390 O OE2 . GLU A 1 354 ? 1.358 -6.497 4.222 1.00 66.88 308 A 1 \nATOM 2391 N N . LYS A 1 355 ? 5.851 -7.268 4.968 1.00 59.44 309 A 1 \nATOM 2392 C CA . LYS A 1 355 ? 6.195 -7.066 6.378 1.00 58.41 309 A 1 \nATOM 2393 C C . LYS A 1 355 ? 7.685 -6.731 6.532 1.00 57.85 309 A 1 \nATOM 2394 O O . LYS A 1 355 ? 8.053 -5.814 7.277 1.00 57.48 309 A 1 \nATOM 2395 C CB . LYS A 1 355 ? 5.846 -8.301 7.208 1.00 58.14 309 A 1 \nATOM 2396 C CG . LYS A 1 355 ? 4.366 -8.569 7.370 1.00 58.24 309 A 1 \nATOM 2397 C CD . LYS A 1 355 ? 4.133 -9.661 8.391 1.00 58.11 309 A 1 \nATOM 2398 C CE . LYS A 1 355 ? 2.670 -10.080 8.451 1.00 58.70 309 A 1 \nATOM 2399 N NZ . LYS A 1 355 ? 1.848 -9.173 9.311 1.00 59.15 309 A 1 \nATOM 2400 N N . VAL A 1 356 ? 8.524 -7.480 5.814 1.00 56.93 310 A 1 \nATOM 2401 C CA . VAL A 1 356 ? 9.968 -7.243 5.745 1.00 56.33 310 A 1 \nATOM 2402 C C . VAL A 1 356 ? 10.271 -5.850 5.172 1.00 56.17 310 A 1 \nATOM 2403 O O . VAL A 1 356 ? 11.146 -5.135 5.679 1.00 55.86 310 A 1 \nATOM 2404 C CB . VAL A 1 356 ? 10.675 -8.352 4.907 1.00 55.98 310 A 1 \nATOM 2405 C CG1 . VAL A 1 356 ? 12.105 -7.969 4.566 1.00 56.17 310 A 1 \nATOM 2406 C CG2 . VAL A 1 356 ? 10.646 -9.675 5.639 1.00 55.62 310 A 1 \nATOM 2407 N N . ALA A 1 357 ? 9.531 -5.471 4.127 1.00 55.89 311 A 1 \nATOM 2408 C CA . ALA A 1 357 ? 9.656 -4.148 3.521 1.00 55.71 311 A 1 \nATOM 2409 C C . ALA A 1 357 ? 9.219 -3.034 4.474 1.00 55.64 311 A 1 \nATOM 2410 O O . ALA A 1 357 ? 9.771 -1.929 4.439 1.00 56.02 311 A 1 \nATOM 2411 C CB . ALA A 1 357 ? 8.854 -4.078 2.226 1.00 56.09 311 A 1 \nATOM 2412 N N . THR A 1 358 ? 8.231 -3.331 5.314 1.00 55.36 312 A 1 \nATOM 2413 C CA . THR A 1 358 ? 7.734 -2.384 6.317 1.00 55.45 312 A 1 \nATOM 2414 C C . THR A 1 358 ? 8.788 -2.108 7.400 1.00 54.83 312 A 1 \nATOM 2415 O O . THR A 1 358 ? 8.998 -0.955 7.780 1.00 54.54 312 A 1 \nATOM 2416 C CB . THR A 1 358 ? 6.373 -2.868 6.900 1.00 55.66 312 A 1 \nATOM 2417 O OG1 . THR A 1 358 ? 5.401 -2.856 5.851 1.00 55.95 312 A 1 \nATOM 2418 C CG2 . THR A 1 358 ? 5.862 -1.977 8.047 1.00 55.54 312 A 1 \nATOM 2419 N N . VAL A 1 359 ? 9.464 -3.164 7.870 1.00 54.68 313 A 1 \nATOM 2420 C CA . VAL A 1 359 ? 10.583 -3.020 8.826 1.00 53.71 313 A 1 \nATOM 2421 C C . VAL A 1 359 ? 11.703 -2.152 8.229 1.00 53.73 313 A 1 \nATOM 2422 O O . VAL A 1 359 ? 12.173 -1.205 8.868 1.00 53.66 313 A 1 \nATOM 2423 C CB . VAL A 1 359 ? 11.134 -4.399 9.299 1.00 53.82 313 A 1 \nATOM 2424 C CG1 . VAL A 1 359 ? 12.386 -4.228 10.167 1.00 52.81 313 A 1 \nATOM 2425 C CG2 . VAL A 1 359 ? 10.060 -5.181 10.047 1.00 52.24 313 A 1 \nATOM 2426 N N . ARG A 1 360 ? 12.109 -2.471 6.998 1.00 53.68 314 A 1 \nATOM 2427 C CA . ARG A 1 360 ? 13.113 -1.694 6.269 1.00 54.13 314 A 1 \nATOM 2428 C C . ARG A 1 360 ? 12.722 -0.213 6.175 1.00 53.97 314 A 1 \nATOM 2429 O O . ARG A 1 360 ? 13.549 0.674 6.402 1.00 54.05 314 A 1 \nATOM 2430 C CB . ARG A 1 360 ? 13.303 -2.297 4.876 1.00 54.29 314 A 1 \nATOM 2431 C CG . ARG A 1 360 ? 14.601 -1.931 4.164 1.00 56.42 314 A 1 \nATOM 2432 C CD . ARG A 1 360 ? 15.151 -3.127 3.351 1.00 58.39 314 A 1 \nATOM 2433 N NE . ARG A 1 360 ? 14.070 -3.973 2.853 1.00 60.36 314 A 1 \nATOM 2434 C CZ . ARG A 1 360 ? 14.143 -5.282 2.634 1.00 59.77 314 A 1 \nATOM 2435 N NH1 . ARG A 1 360 ? 15.266 -5.951 2.851 1.00 59.27 314 A 1 \nATOM 2436 N NH2 . ARG A 1 360 ? 13.063 -5.920 2.197 1.00 59.93 314 A 1 \nATOM 2437 N N . ARG A 1 361 ? 11.455 0.028 5.851 1.00 54.04 315 A 1 \nATOM 2438 C CA . ARG A 1 361 ? 10.853 1.366 5.822 1.00 54.11 315 A 1 \nATOM 2439 C C . ARG A 1 361 ? 11.003 2.064 7.170 1.00 53.38 315 A 1 \nATOM 2440 O O . ARG A 1 361 ? 11.422 3.217 7.239 1.00 53.35 315 A 1 \nATOM 2441 C CB . ARG A 1 361 ? 9.365 1.249 5.501 1.00 54.19 315 A 1 \nATOM 2442 C CG . ARG A 1 361 ? 8.814 2.377 4.630 1.00 56.57 315 A 1 \nATOM 2443 C CD . ARG A 1 361 ? 7.555 3.034 5.201 1.00 57.33 315 A 1 \nATOM 2444 N NE . ARG A 1 361 ? 6.469 2.125 5.572 1.00 58.47 315 A 1 \nATOM 2445 C CZ . ARG A 1 361 ? 5.892 2.095 6.777 1.00 58.97 315 A 1 \nATOM 2446 N NH1 . ARG A 1 361 ? 6.296 2.922 7.738 1.00 58.02 315 A 1 \nATOM 2447 N NH2 . ARG A 1 361 ? 4.893 1.246 7.019 1.00 58.14 315 A 1 \nATOM 2448 N N . LEU A 1 362 ? 10.655 1.351 8.240 1.00 52.95 316 A 1 \nATOM 2449 C CA . LEU A 1 362 ? 10.780 1.879 9.597 1.00 52.10 316 A 1 \nATOM 2450 C C . LEU A 1 362 ? 12.218 2.285 9.925 1.00 52.04 316 A 1 \nATOM 2451 O O . LEU A 1 362 ? 12.438 3.366 10.467 1.00 51.63 316 A 1 \nATOM 2452 C CB . LEU A 1 362 ? 10.236 0.887 10.632 1.00 51.90 316 A 1 \nATOM 2453 C CG . LEU A 1 362 ? 8.718 0.639 10.699 1.00 51.56 316 A 1 \nATOM 2454 C CD1 . LEU A 1 362 ? 8.445 -0.493 11.641 1.00 51.83 316 A 1 \nATOM 2455 C CD2 . LEU A 1 362 ? 7.928 1.873 11.132 1.00 51.33 316 A 1 \nATOM 2456 N N . TYR A 1 363 ? 13.186 1.436 9.568 1.00 51.93 317 A 1 \nATOM 2457 C CA . TYR A 1 363 ? 14.608 1.731 9.809 1.00 52.02 317 A 1 \nATOM 2458 C C . TYR A 1 363 ? 15.072 3.034 9.151 1.00 53.03 317 A 1 \nATOM 2459 O O . TYR A 1 363 ? 15.744 3.845 9.782 1.00 52.62 317 A 1 \nATOM 2460 C CB . TYR A 1 363 ? 15.508 0.569 9.358 1.00 50.65 317 A 1 \nATOM 2461 C CG . TYR A 1 363 ? 15.424 -0.704 10.196 1.00 49.09 317 A 1 \nATOM 2462 C CD1 . TYR A 1 363 ? 14.835 -0.702 11.463 1.00 47.53 317 A 1 \nATOM 2463 C CD2 . TYR A 1 363 ? 15.969 -1.903 9.725 1.00 47.16 317 A 1 \nATOM 2464 C CE1 . TYR A 1 363 ? 14.774 -1.867 12.229 1.00 48.06 317 A 1 \nATOM 2465 C CE2 . TYR A 1 363 ? 15.918 -3.080 10.494 1.00 45.90 317 A 1 \nATOM 2466 C CZ . TYR A 1 363 ? 15.326 -3.050 11.733 1.00 47.35 317 A 1 \nATOM 2467 O OH . TYR A 1 363 ? 15.264 -4.195 12.488 1.00 47.38 317 A 1 \nATOM 2468 N N . GLU A 1 364 ? 14.710 3.233 7.888 1.00 55.05 318 A 1 \nATOM 2469 C CA . GLU A 1 364 ? 15.141 4.427 7.150 1.00 57.43 318 A 1 \nATOM 2470 C C . GLU A 1 364 ? 14.332 5.681 7.489 1.00 57.81 318 A 1 \nATOM 2471 O O . GLU A 1 364 ? 14.765 6.796 7.205 1.00 58.49 318 A 1 \nATOM 2472 C CB . GLU A 1 364 ? 15.189 4.181 5.630 1.00 57.47 318 A 1 \nATOM 2473 C CG . GLU A 1 364 ? 13.903 3.660 5.012 1.00 59.28 318 A 1 \nATOM 2474 C CD . GLU A 1 364 ? 13.885 3.740 3.480 1.00 59.71 318 A 1 \nATOM 2475 O OE1 . GLU A 1 364 ? 14.591 4.607 2.902 1.00 62.09 318 A 1 \nATOM 2476 O OE2 . GLU A 1 364 ? 13.150 2.934 2.858 1.00 62.33 318 A 1 \nATOM 2477 N N . GLU A 1 365 ? 13.168 5.491 8.101 1.00 58.48 319 A 1 \nATOM 2478 C CA . GLU A 1 365 ? 12.369 6.605 8.607 1.00 59.12 319 A 1 \nATOM 2479 C C . GLU A 1 365 ? 12.884 7.129 9.949 1.00 58.79 319 A 1 \nATOM 2480 O O . GLU A 1 365 ? 12.767 8.320 10.245 1.00 58.48 319 A 1 \nATOM 2481 C CB . GLU A 1 365 ? 10.908 6.194 8.734 1.00 59.36 319 A 1 \nATOM 2482 C CG . GLU A 1 365 ? 10.185 6.162 7.397 1.00 61.98 319 A 1 \nATOM 2483 C CD . GLU A 1 365 ? 8.722 5.795 7.529 1.00 64.88 319 A 1 \nATOM 2484 O OE1 . GLU A 1 365 ? 8.257 5.554 8.677 1.00 64.73 319 A 1 \nATOM 2485 O OE2 . GLU A 1 365 ? 8.045 5.749 6.473 1.00 66.32 319 A 1 \nATOM 2486 N N . ALA A 1 366 ? 13.457 6.230 10.751 1.00 58.79 320 A 1 \nATOM 2487 C CA . ALA A 1 366 ? 14.024 6.585 12.050 1.00 58.40 320 A 1 \nATOM 2488 C C . ALA A 1 366 ? 15.464 7.099 11.951 1.00 58.38 320 A 1 \nATOM 2489 O O . ALA A 1 366 ? 16.140 7.254 12.968 1.00 58.11 320 A 1 \nATOM 2490 C CB . ALA A 1 366 ? 13.929 5.399 13.017 1.00 58.34 320 A 1 \nATOM 2491 N N . ASP A 1 367 ? 15.914 7.373 10.728 1.00 58.56 321 A 1 \nATOM 2492 C CA . ASP A 1 367 ? 17.262 7.891 10.461 1.00 59.14 321 A 1 \nATOM 2493 C C . ASP A 1 367 ? 18.365 7.013 11.058 1.00 59.44 321 A 1 \nATOM 2494 O O . ASP A 1 367 ? 19.207 7.478 11.846 1.00 59.42 321 A 1 \nATOM 2495 C CB . ASP A 1 367 ? 17.416 9.347 10.925 1.00 59.21 321 A 1 \nATOM 2496 C CG . ASP A 1 367 ? 18.725 9.980 10.446 1.00 60.10 321 A 1 \nATOM 2497 O OD1 . ASP A 1 367 ? 19.215 9.610 9.356 1.00 60.52 321 A 1 \nATOM 2498 O OD2 . ASP A 1 367 ? 19.265 10.845 11.161 1.00 61.61 321 A 1 \nATOM 2499 N N . LEU A 1 368 ? 18.355 5.742 10.678 1.00 59.68 322 A 1 \nATOM 2500 C CA . LEU A 1 368 ? 19.378 4.814 11.149 1.00 59.80 322 A 1 \nATOM 2501 C C . LEU A 1 368 ? 20.728 5.106 10.492 1.00 59.95 322 A 1 \nATOM 2502 O O . LEU A 1 368 ? 21.779 4.935 11.128 1.00 59.42 322 A 1 \nATOM 2503 C CB . LEU A 1 368 ? 18.931 3.358 10.959 1.00 59.88 322 A 1 \nATOM 2504 C CG . LEU A 1 368 ? 18.166 2.659 12.100 1.00 60.45 322 A 1 \nATOM 2505 C CD1 . LEU A 1 368 ? 19.128 2.102 13.130 1.00 62.06 322 A 1 \nATOM 2506 C CD2 . LEU A 1 368 ? 17.132 3.533 12.797 1.00 60.31 322 A 1 \nATOM 2507 N N . GLN A 1 369 ? 20.704 5.600 9.250 1.00 60.08 323 A 1 \nATOM 2508 C CA . GLN A 1 369 ? 21.952 5.984 8.574 1.00 60.69 323 A 1 \nATOM 2509 C C . GLN A 1 369 ? 22.650 7.152 9.276 1.00 60.01 323 A 1 \nATOM 2510 O O . GLN A 1 369 ? 23.874 7.267 9.240 1.00 60.52 323 A 1 \nATOM 2511 C CB . GLN A 1 369 ? 21.742 6.266 7.082 1.00 61.37 323 A 1 \nATOM 2512 C CG . GLN A 1 369 ? 21.237 7.660 6.743 1.00 63.36 323 A 1 \nATOM 2513 C CD . GLN A 1 369 ? 21.651 8.102 5.347 1.00 66.37 323 A 1 \nATOM 2514 O OE1 . GLN A 1 369 ? 21.571 7.329 4.381 1.00 67.66 323 A 1 \nATOM 2515 N NE2 . GLN A 1 369 ? 22.095 9.355 5.233 1.00 67.27 323 A 1 \nATOM 2516 N N . GLY A 1 370 ? 21.862 8.002 9.928 1.00 59.10 324 A 1 \nATOM 2517 C CA . GLY A 1 370 ? 22.398 9.066 10.755 1.00 57.99 324 A 1 \nATOM 2518 C C . GLY A 1 370 ? 23.183 8.486 11.914 1.00 56.88 324 A 1 \nATOM 2519 O O . GLY A 1 370 ? 24.327 8.871 12.153 1.00 57.58 324 A 1 \nATOM 2520 N N . ASP A 1 371 ? 22.565 7.548 12.624 1.00 55.62 325 A 1 \nATOM 2521 C CA . ASP A 1 371 ? 23.192 6.889 13.766 1.00 54.38 325 A 1 \nATOM 2522 C C . ASP A 1 371 ? 24.429 6.086 13.354 1.00 53.40 325 A 1 \nATOM 2523 O O . ASP A 1 371 ? 25.411 6.040 14.099 1.00 52.61 325 A 1 \nATOM 2524 C CB . ASP A 1 371 ? 22.182 5.978 14.481 1.00 54.53 325 A 1 \nATOM 2525 C CG . ASP A 1 371 ? 20.992 6.745 15.063 1.00 55.34 325 A 1 \nATOM 2526 O OD1 . ASP A 1 371 ? 21.181 7.861 15.593 1.00 57.11 325 A 1 \nATOM 2527 O OD2 . ASP A 1 371 ? 19.864 6.217 15.017 1.00 54.76 325 A 1 \nATOM 2528 N N . TYR A 1 372 ? 24.379 5.481 12.165 1.00 52.25 326 A 1 \nATOM 2529 C CA . TYR A 1 372 ? 25.459 4.617 11.688 1.00 52.36 326 A 1 \nATOM 2530 C C . TYR A 1 372 ? 26.721 5.397 11.313 1.00 52.37 326 A 1 \nATOM 2531 O O . TYR A 1 372 ? 27.826 4.970 11.623 1.00 52.22 326 A 1 \nATOM 2532 C CB . TYR A 1 372 ? 25.012 3.690 10.541 1.00 52.51 326 A 1 \nATOM 2533 C CG . TYR A 1 372 ? 26.163 2.899 9.972 1.00 52.98 326 A 1 \nATOM 2534 C CD1 . TYR A 1 372 ? 26.636 1.746 10.616 1.00 52.37 326 A 1 \nATOM 2535 C CD2 . TYR A 1 372 ? 26.826 3.333 8.815 1.00 54.14 326 A 1 \nATOM 2536 C CE1 . TYR A 1 372 ? 27.727 1.037 10.114 1.00 52.01 326 A 1 \nATOM 2537 C CE2 . TYR A 1 372 ? 27.922 2.633 8.304 1.00 54.17 326 A 1 \nATOM 2538 C CZ . TYR A 1 372 ? 28.361 1.484 8.957 1.00 53.70 326 A 1 \nATOM 2539 O OH . TYR A 1 372 ? 29.434 0.800 8.450 1.00 54.22 326 A 1 \nATOM 2540 N N . VAL A 1 373 ? 26.545 6.541 10.652 1.00 52.08 327 A 1 \nATOM 2541 C CA . VAL A 1 373 ? 27.660 7.428 10.316 1.00 51.64 327 A 1 \nATOM 2542 C C . VAL A 1 373 ? 28.374 7.916 11.582 1.00 50.98 327 A 1 \nATOM 2543 O O . VAL A 1 373 ? 29.605 7.939 11.634 1.00 51.14 327 A 1 \nATOM 2544 C CB . VAL A 1 373 ? 27.178 8.618 9.422 1.00 51.74 327 A 1 \nATOM 2545 C CG1 . VAL A 1 373 ? 28.208 9.749 9.373 1.00 52.55 327 A 1 \nATOM 2546 C CG2 . VAL A 1 373 ? 26.861 8.118 8.022 1.00 51.91 327 A 1 \nATOM 2547 N N . ALA A 1 374 ? 27.594 8.273 12.598 1.00 50.28 328 A 1 \nATOM 2548 C CA . ALA A 1 374 ? 28.115 8.745 13.884 1.00 49.56 328 A 1 \nATOM 2549 C C . ALA A 1 374 ? 28.787 7.639 14.694 1.00 49.29 328 A 1 \nATOM 2550 O O . ALA A 1 374 ? 29.745 7.894 15.453 1.00 49.58 328 A 1 \nATOM 2551 C CB . ALA A 1 374 ? 27.001 9.383 14.695 1.00 49.46 328 A 1 \nATOM 2552 N N . TYR A 1 375 ? 28.274 6.418 14.560 1.00 48.17 329 A 1 \nATOM 2553 C CA . TYR A 1 375 ? 28.873 5.273 15.232 1.00 47.79 329 A 1 \nATOM 2554 C C . TYR A 1 375 ? 30.271 5.003 14.669 1.00 47.51 329 A 1 \nATOM 2555 O O . TYR A 1 375 ? 31.249 4.885 15.413 1.00 46.96 329 A 1 \nATOM 2556 C CB . TYR A 1 375 ? 27.973 4.038 15.112 1.00 47.28 329 A 1 \nATOM 2557 C CG . TYR A 1 375 ? 28.644 2.754 15.536 1.00 46.92 329 A 1 \nATOM 2558 C CD1 . TYR A 1 375 ? 28.938 2.508 16.882 1.00 46.56 329 A 1 \nATOM 2559 C CD2 . TYR A 1 375 ? 29.001 1.790 14.592 1.00 48.17 329 A 1 \nATOM 2560 C CE1 . TYR A 1 375 ? 29.562 1.341 17.271 1.00 45.46 329 A 1 \nATOM 2561 C CE2 . TYR A 1 375 ? 29.637 0.605 14.980 1.00 47.15 329 A 1 \nATOM 2562 C CZ . TYR A 1 375 ? 29.903 0.395 16.318 1.00 46.35 329 A 1 \nATOM 2563 O OH . TYR A 1 375 ? 30.515 -0.756 16.709 1.00 46.69 329 A 1 \nATOM 2564 N N . GLU A 1 376 ? 30.334 4.948 13.342 1.00 47.85 330 A 1 \nATOM 2565 C CA . GLU A 1 376 ? 31.541 4.668 12.591 1.00 48.43 330 A 1 \nATOM 2566 C C . GLU A 1 376 ? 32.632 5.686 12.891 1.00 49.15 330 A 1 \nATOM 2567 O O . GLU A 1 376 ? 33.805 5.331 12.986 1.00 49.04 330 A 1 \nATOM 2568 C CB . GLU A 1 376 ? 31.195 4.704 11.104 1.00 48.68 330 A 1 \nATOM 2569 C CG . GLU A 1 376 ? 32.337 4.424 10.161 1.00 48.85 330 A 1 \nATOM 2570 C CD . GLU A 1 376 ? 31.843 4.328 8.741 1.00 50.22 330 A 1 \nATOM 2571 O OE1 . GLU A 1 376 ? 31.472 5.381 8.182 1.00 51.77 330 A 1 \nATOM 2572 O OE2 . GLU A 1 376 ? 31.814 3.210 8.187 1.00 48.37 330 A 1 \nATOM 2573 N N . ALA A 1 377 ? 32.234 6.950 13.032 1.00 49.56 331 A 1 \nATOM 2574 C CA . ALA A 1 377 ? 33.165 8.033 13.301 1.00 50.00 331 A 1 \nATOM 2575 C C . ALA A 1 377 ? 33.731 7.873 14.702 1.00 50.00 331 A 1 \nATOM 2576 O O . ALA A 1 377 ? 34.929 8.050 14.917 1.00 50.24 331 A 1 \nATOM 2577 C CB . ALA A 1 377 ? 32.473 9.391 13.136 1.00 50.41 331 A 1 \nATOM 2578 N N . ALA A 1 378 ? 32.869 7.500 15.643 1.00 50.16 332 A 1 \nATOM 2579 C CA . ALA A 1 378 ? 33.300 7.231 17.009 1.00 50.59 332 A 1 \nATOM 2580 C C . ALA A 1 378 ? 34.249 6.031 17.076 1.00 50.89 332 A 1 \nATOM 2581 O O . ALA A 1 378 ? 35.199 6.041 17.853 1.00 51.53 332 A 1 \nATOM 2582 C CB . ALA A 1 378 ? 32.107 7.023 17.921 1.00 50.45 332 A 1 \nATOM 2583 N N . VAL A 1 379 ? 33.992 5.009 16.263 1.00 51.43 333 A 1 \nATOM 2584 C CA . VAL A 1 379 ? 34.860 3.822 16.199 1.00 51.63 333 A 1 \nATOM 2585 C C . VAL A 1 379 ? 36.209 4.182 15.581 1.00 52.26 333 A 1 \nATOM 2586 O O . VAL A 1 379 ? 37.249 3.906 16.171 1.00 51.37 333 A 1 \nATOM 2587 C CB . VAL A 1 379 ? 34.209 2.638 15.405 1.00 52.04 333 A 1 \nATOM 2588 C CG1 . VAL A 1 379 ? 35.211 1.504 15.199 1.00 50.87 333 A 1 \nATOM 2589 C CG2 . VAL A 1 379 ? 32.951 2.113 16.116 1.00 50.67 333 A 1 \nATOM 2590 N N . ALA A 1 380 ? 36.181 4.790 14.393 1.00 53.33 334 A 1 \nATOM 2591 C CA . ALA A 1 380 ? 37.405 5.235 13.719 1.00 54.70 334 A 1 \nATOM 2592 C C . ALA A 1 380 ? 38.306 6.015 14.681 1.00 56.06 334 A 1 \nATOM 2593 O O . ALA A 1 380 ? 39.513 5.758 14.764 1.00 56.29 334 A 1 \nATOM 2594 C CB . ALA A 1 380 ? 37.071 6.068 12.498 1.00 54.32 334 A 1 \nATOM 2595 N N . GLU A 1 381 ? 37.704 6.940 15.427 1.00 57.54 335 A 1 \nATOM 2596 C CA . GLU A 1 381 ? 38.410 7.741 16.420 1.00 59.03 335 A 1 \nATOM 2597 C C . GLU A 1 381 ? 39.166 6.869 17.420 1.00 59.37 335 A 1 \nATOM 2598 O O . GLU A 1 381 ? 40.375 7.024 17.586 1.00 59.58 335 A 1 \nATOM 2599 C CB . GLU A 1 381 ? 37.427 8.665 17.144 1.00 59.51 335 A 1 \nATOM 2600 C CG . GLU A 1 381 ? 37.979 9.294 18.429 1.00 62.31 335 A 1 \nATOM 2601 C CD . GLU A 1 381 ? 36.881 9.724 19.392 1.00 66.75 335 A 1 \nATOM 2602 O OE1 . GLU A 1 381 ? 35.950 8.910 19.653 1.00 67.92 335 A 1 \nATOM 2603 O OE2 . GLU A 1 381 ? 36.961 10.873 19.891 1.00 67.61 335 A 1 \nATOM 2604 N N . GLN A 1 382 ? 38.452 5.948 18.066 1.00 59.75 336 A 1 \nATOM 2605 C CA . GLN A 1 382 ? 39.030 5.097 19.108 1.00 60.77 336 A 1 \nATOM 2606 C C . GLN A 1 382 ? 40.052 4.109 18.562 1.00 60.50 336 A 1 \nATOM 2607 O O . GLN A 1 382 ? 41.047 3.812 19.228 1.00 60.22 336 A 1 \nATOM 2608 C CB . GLN A 1 382 ? 37.938 4.351 19.881 1.00 60.80 336 A 1 \nATOM 2609 C CG . GLN A 1 382 ? 37.167 5.212 20.878 1.00 62.24 336 A 1 \nATOM 2610 C CD . GLN A 1 382 ? 36.091 4.434 21.619 1.00 62.74 336 A 1 \nATOM 2611 O OE1 . GLN A 1 382 ? 35.477 3.514 21.069 1.00 65.59 336 A 1 \nATOM 2612 N NE2 . GLN A 1 382 ? 35.849 4.808 22.873 1.00 65.49 336 A 1 \nATOM 2613 N N . VAL A 1 383 ? 39.791 3.606 17.355 1.00 60.56 337 A 1 \nATOM 2614 C CA . VAL A 1 383 ? 40.721 2.729 16.656 1.00 60.90 337 A 1 \nATOM 2615 C C . VAL A 1 383 ? 42.027 3.475 16.352 1.00 61.45 337 A 1 \nATOM 2616 O O . VAL A 1 383 ? 43.111 2.965 16.654 1.00 61.61 337 A 1 \nATOM 2617 C CB . VAL A 1 383 ? 40.101 2.133 15.362 1.00 60.65 337 A 1 \nATOM 2618 C CG1 . VAL A 1 383 ? 41.160 1.520 14.478 1.00 60.05 337 A 1 \nATOM 2619 C CG2 . VAL A 1 383 ? 39.041 1.089 15.702 1.00 60.25 337 A 1 \nATOM 2620 N N . LYS A 1 384 ? 41.914 4.672 15.770 1.00 61.90 338 A 1 \nATOM 2621 C CA . LYS A 1 384 ? 43.079 5.519 15.460 1.00 62.70 338 A 1 \nATOM 2622 C C . LYS A 1 384 ? 43.980 5.729 16.673 1.00 62.69 338 A 1 \nATOM 2623 O O . LYS A 1 384 ? 45.202 5.621 16.563 1.00 62.91 338 A 1 \nATOM 2624 C CB . LYS A 1 384 ? 42.652 6.871 14.869 1.00 62.93 338 A 1 \nATOM 2625 C CG . LYS A 1 384 ? 42.914 7.032 13.362 1.00 64.14 338 A 1 \nATOM 2626 C CD . LYS A 1 384 ? 41.733 6.618 12.477 1.00 66.30 338 A 1 \nATOM 2627 C CE . LYS A 1 384 ? 40.592 7.649 12.481 1.00 67.69 338 A 1 \nATOM 2628 N NZ . LYS A 1 384 ? 41.007 9.052 12.179 1.00 68.13 338 A 1 \nATOM 2629 N N . GLU A 1 385 ? 43.359 5.993 17.821 1.00 63.04 339 A 1 \nATOM 2630 C CA . GLU A 1 385 ? 44.055 6.178 19.090 1.00 63.75 339 A 1 \nATOM 2631 C C . GLU A 1 385 ? 44.798 4.937 19.578 1.00 63.29 339 A 1 \nATOM 2632 O O . GLU A 1 385 ? 45.949 5.032 20.016 1.00 62.98 339 A 1 \nATOM 2633 C CB . GLU A 1 385 ? 43.083 6.665 20.181 1.00 63.78 339 A 1 \nATOM 2634 C CG . GLU A 1 385 ? 43.067 8.184 20.377 1.00 64.95 339 A 1 \nATOM 2635 C CD . GLU A 1 385 ? 41.957 8.660 21.311 1.00 65.58 339 A 1 \nATOM 2636 O OE1 . GLU A 1 385 ? 41.961 8.267 22.503 1.00 67.46 339 A 1 \nATOM 2637 O OE2 . GLU A 1 385 ? 41.087 9.443 20.854 1.00 67.72 339 A 1 \nATOM 2638 N N . LEU A 1 386 ? 44.140 3.781 19.513 1.00 62.96 340 A 1 \nATOM 2639 C CA . LEU A 1 386 ? 44.716 2.545 20.053 1.00 62.65 340 A 1 \nATOM 2640 C C . LEU A 1 386 ? 45.889 2.031 19.219 1.00 62.54 340 A 1 \nATOM 2641 O O . LEU A 1 386 ? 46.848 1.486 19.765 1.00 62.50 340 A 1 \nATOM 2642 C CB . LEU A 1 386 ? 43.645 1.465 20.229 1.00 62.58 340 A 1 \nATOM 2643 C CG . LEU A 1 386 ? 42.738 1.602 21.454 1.00 62.31 340 A 1 \nATOM 2644 C CD1 . LEU A 1 386 ? 41.446 0.825 21.257 1.00 62.58 340 A 1 \nATOM 2645 C CD2 . LEU A 1 386 ? 43.451 1.148 22.718 1.00 62.14 340 A 1 \nATOM 2646 N N . ILE A 1 387 ? 45.817 2.219 17.905 1.00 62.54 341 A 1 \nATOM 2647 C CA . ILE A 1 387 ? 46.921 1.859 17.020 1.00 62.72 341 A 1 \nATOM 2648 C C . ILE A 1 387 ? 48.198 2.630 17.386 1.00 63.62 341 A 1 \nATOM 2649 O O . ILE A 1 387 ? 49.294 2.067 17.370 1.00 63.69 341 A 1 \nATOM 2650 C CB . ILE A 1 387 ? 46.536 2.031 15.528 1.00 62.63 341 A 1 \nATOM 2651 C CG1 . ILE A 1 387 ? 45.571 0.915 15.115 1.00 61.44 341 A 1 \nATOM 2652 C CG2 . ILE A 1 387 ? 47.773 2.028 14.623 1.00 61.81 341 A 1 \nATOM 2653 C CD1 . ILE A 1 387 ? 44.881 1.143 13.790 1.00 60.92 341 A 1 \nATOM 2654 N N . GLU A 1 388 ? 48.047 3.903 17.747 1.00 64.38 342 A 1 \nATOM 2655 C CA . GLU A 1 388 ? 49.182 4.718 18.185 1.00 64.96 342 A 1 \nATOM 2656 C C . GLU A 1 388 ? 49.789 4.201 19.478 1.00 65.45 342 A 1 \nATOM 2657 O O . GLU A 1 388 ? 51.009 4.104 19.586 1.00 65.41 342 A 1 \nATOM 2658 C CB . GLU A 1 388 ? 48.789 6.191 18.324 1.00 64.92 342 A 1 \nATOM 2659 C CG . GLU A 1 388 ? 48.362 6.837 17.011 1.00 65.53 342 A 1 \nATOM 2660 C CD . GLU A 1 388 ? 49.432 6.772 15.936 1.00 66.67 342 A 1 \nATOM 2661 O OE1 . GLU A 1 388 ? 50.614 7.017 16.255 1.00 68.51 342 A 1 \nATOM 2662 O OE2 . GLU A 1 388 ? 49.092 6.485 14.767 1.00 66.92 342 A 1 \nATOM 2663 N N . LYS A 1 389 ? 48.941 3.852 20.445 1.00 65.97 343 A 1 \nATOM 2664 C CA . LYS A 1 389 ? 49.402 3.251 21.695 1.00 66.47 343 A 1 \nATOM 2665 C C . LYS A 1 389 ? 50.223 1.996 21.420 1.00 66.57 343 A 1 \nATOM 2666 O O . LYS A 1 389 ? 51.196 1.708 22.122 1.00 66.69 343 A 1 \nATOM 2667 C CB . LYS A 1 389 ? 48.218 2.930 22.608 1.00 66.65 343 A 1 \nATOM 2668 C CG . LYS A 1 389 ? 48.100 3.848 23.817 1.00 68.15 343 A 1 \nATOM 2669 C CD . LYS A 1 389 ? 46.694 3.844 24.422 1.00 70.66 343 A 1 \nATOM 2670 C CE . LYS A 1 389 ? 45.807 4.952 23.828 1.00 72.61 343 A 1 \nATOM 2671 N NZ . LYS A 1 389 ? 46.156 6.333 24.324 1.00 72.91 343 A 1 \nATOM 2672 N N . LEU A 1 390 ? 49.829 1.274 20.374 1.00 66.57 344 A 1 \nATOM 2673 C CA . LEU A 1 390 ? 50.485 0.045 19.959 1.00 66.45 344 A 1 \nATOM 2674 C C . LEU A 1 390 ? 51.783 0.355 19.219 1.00 66.38 344 A 1 \nATOM 2675 O O . LEU A 1 390 ? 52.808 -0.286 19.453 1.00 66.23 344 A 1 \nATOM 2676 C CB . LEU A 1 390 ? 49.531 -0.761 19.068 1.00 66.68 344 A 1 \nATOM 2677 C CG . LEU A 1 390 ? 49.648 -2.279 18.947 1.00 66.80 344 A 1 \nATOM 2678 C CD1 . LEU A 1 390 ? 49.414 -2.982 20.288 1.00 66.52 344 A 1 \nATOM 2679 C CD2 . LEU A 1 390 ? 48.661 -2.764 17.894 1.00 66.33 344 A 1 \nATOM 2680 N N . ARG A 1 391 ? 51.728 1.357 18.343 1.00 66.42 345 A 1 \nATOM 2681 C CA . ARG A 1 391 ? 52.874 1.800 17.541 1.00 66.61 345 A 1 \nATOM 2682 C C . ARG A 1 391 ? 54.109 2.136 18.380 1.00 66.84 345 A 1 \nATOM 2683 O O . ARG A 1 391 ? 55.239 1.887 17.954 1.00 67.03 345 A 1 \nATOM 2684 C CB . ARG A 1 391 ? 52.487 3.013 16.697 1.00 66.19 345 A 1 \nATOM 2685 C CG . ARG A 1 391 ? 53.164 3.057 15.353 1.00 66.32 345 A 1 \nATOM 2686 C CD . ARG A 1 391 ? 52.964 4.395 14.641 1.00 67.41 345 A 1 \nATOM 2687 N NE . ARG A 1 391 ? 51.576 4.695 14.267 1.00 67.80 345 A 1 \nATOM 2688 C CZ . ARG A 1 391 ? 50.912 4.127 13.263 1.00 67.38 345 A 1 \nATOM 2689 N NH1 . ARG A 1 391 ? 51.481 3.184 12.521 1.00 67.17 345 A 1 \nATOM 2690 N NH2 . ARG A 1 391 ? 49.663 4.497 13.007 1.00 67.56 345 A 1 \nATOM 2691 N N . LEU A 1 392 ? 53.880 2.696 19.568 1.00 67.30 346 A 1 \nATOM 2692 C CA . LEU A 1 392 ? 54.952 3.092 20.498 1.00 67.55 346 A 1 \nATOM 2693 C C . LEU A 1 392 ? 55.963 1.992 20.811 1.00 67.42 346 A 1 \nATOM 2694 O O . LEU A 1 392 ? 57.164 2.262 20.903 1.00 67.56 346 A 1 \nATOM 2695 C CB . LEU A 1 392 ? 54.356 3.608 21.811 1.00 67.64 346 A 1 \nATOM 2696 C CG . LEU A 1 392 ? 54.226 5.108 22.066 1.00 67.81 346 A 1 \nATOM 2697 C CD1 . LEU A 1 392 ? 53.470 5.830 20.956 1.00 68.24 346 A 1 \nATOM 2698 C CD2 . LEU A 1 392 ? 53.545 5.314 23.419 1.00 67.71 346 A 1 \nATOM 2699 N N . CYS A 1 393 ? 55.477 0.764 20.985 1.00 67.04 347 A 1 \nATOM 2700 C CA . CYS A 1 393 ? 56.351 -0.366 21.315 1.00 66.87 347 A 1 \nATOM 2701 C C . CYS A 1 393 ? 56.412 -1.456 20.235 1.00 66.13 347 A 1 \nATOM 2702 O O . CYS A 1 393 ? 57.353 -2.254 20.207 1.00 66.53 347 A 1 \nATOM 2703 C CB . CYS A 1 393 ? 55.964 -0.963 22.670 1.00 67.03 347 A 1 \nATOM 2704 S SG . CYS A 1 393 ? 56.155 0.207 24.033 1.00 69.01 347 A 1 \nATOM 2705 N N . SER A 1 394 ? 55.418 -1.480 19.350 1.00 65.08 348 A 1 \nATOM 2706 C CA . SER A 1 394 ? 55.341 -2.492 18.293 1.00 63.94 348 A 1 \nATOM 2707 C C . SER A 1 394 ? 54.999 -1.851 16.938 1.00 63.05 348 A 1 \nATOM 2708 O O . SER A 1 394 ? 53.887 -2.029 16.427 1.00 63.18 348 A 1 \nATOM 2709 C CB . SER A 1 394 ? 54.304 -3.569 18.651 1.00 63.88 348 A 1 \nATOM 2710 O OG . SER A 1 394 ? 54.385 -3.967 20.013 1.00 64.07 348 A 1 \nATOM 2711 N N . PRO A 1 395 ? 55.956 -1.102 16.349 1.00 62.21 349 A 1 \nATOM 2712 C CA . PRO A 1 395 ? 55.712 -0.374 15.096 1.00 61.13 349 A 1 \nATOM 2713 C C . PRO A 1 395 ? 55.275 -1.274 13.943 1.00 60.00 349 A 1 \nATOM 2714 O O . PRO A 1 395 ? 54.394 -0.894 13.167 1.00 60.19 349 A 1 \nATOM 2715 C CB . PRO A 1 395 ? 57.077 0.265 14.785 1.00 61.45 349 A 1 \nATOM 2716 C CG . PRO A 1 395 ? 58.063 -0.517 15.571 1.00 61.45 349 A 1 \nATOM 2717 C CD . PRO A 1 395 ? 57.339 -0.900 16.823 1.00 62.06 349 A 1 \nATOM 2718 N N . GLY A 1 396 ? 55.892 -2.447 13.834 1.00 58.50 350 A 1 \nATOM 2719 C CA . GLY A 1 396 ? 55.574 -3.397 12.774 1.00 56.86 350 A 1 \nATOM 2720 C C . GLY A 1 396 ? 54.193 -4.019 12.915 1.00 55.59 350 A 1 \nATOM 2721 O O . GLY A 1 396 ? 53.473 -4.167 11.922 1.00 55.20 350 A 1 \nATOM 2722 N N . PHE A 1 397 ? 53.838 -4.395 14.145 1.00 54.26 351 A 1 \nATOM 2723 C CA . PHE A 1 397 ? 52.538 -5.010 14.431 1.00 53.49 351 A 1 \nATOM 2724 C C . PHE A 1 397 ? 51.424 -3.987 14.218 1.00 53.28 351 A 1 \nATOM 2725 O O . PHE A 1 397 ? 50.412 -4.298 13.586 1.00 53.19 351 A 1 \nATOM 2726 C CB . PHE A 1 397 ? 52.503 -5.599 15.852 1.00 52.72 351 A 1 \nATOM 2727 C CG . PHE A 1 397 ? 51.179 -6.247 16.237 1.00 51.84 351 A 1 \nATOM 2728 C CD1 . PHE A 1 397 ? 50.658 -7.320 15.508 1.00 50.22 351 A 1 \nATOM 2729 C CD2 . PHE A 1 397 ? 50.472 -5.799 17.353 1.00 49.69 351 A 1 \nATOM 2730 C CE1 . PHE A 1 397 ? 49.442 -7.923 15.876 1.00 48.20 351 A 1 \nATOM 2731 C CE2 . PHE A 1 397 ? 49.263 -6.400 17.721 1.00 49.84 351 A 1 \nATOM 2732 C CZ . PHE A 1 397 ? 48.754 -7.469 16.981 1.00 48.32 351 A 1 \nATOM 2733 N N . ALA A 1 398 ? 51.634 -2.765 14.714 1.00 52.72 352 A 1 \nATOM 2734 C CA . ALA A 1 398 ? 50.663 -1.684 14.545 1.00 52.58 352 A 1 \nATOM 2735 C C . ALA A 1 398 ? 50.353 -1.449 13.076 1.00 52.28 352 A 1 \nATOM 2736 O O . ALA A 1 398 ? 49.197 -1.219 12.712 1.00 52.64 352 A 1 \nATOM 2737 C CB . ALA A 1 398 ? 51.146 -0.397 15.199 1.00 52.72 352 A 1 \nATOM 2738 N N . ALA A 1 399 ? 51.385 -1.519 12.236 1.00 51.45 353 A 1 \nATOM 2739 C CA . ALA A 1 399 ? 51.229 -1.387 10.787 1.00 50.41 353 A 1 \nATOM 2740 C C . ALA A 1 399 ? 50.315 -2.459 10.193 1.00 49.92 353 A 1 \nATOM 2741 O O . ALA A 1 399 ? 49.510 -2.171 9.302 1.00 50.11 353 A 1 \nATOM 2742 C CB . ALA A 1 399 ? 52.583 -1.418 10.112 1.00 50.32 353 A 1 \nATOM 2743 N N . SER A 1 400 ? 50.448 -3.698 10.661 1.00 49.10 354 A 1 \nATOM 2744 C CA . SER A 1 400 ? 49.563 -4.771 10.187 1.00 48.87 354 A 1 \nATOM 2745 C C . SER A 1 400 ? 48.119 -4.582 10.665 1.00 48.33 354 A 1 \nATOM 2746 O O . SER A 1 400 ? 47.173 -4.852 9.917 1.00 48.27 354 A 1 \nATOM 2747 C CB . SER A 1 400 ? 50.104 -6.164 10.534 1.00 48.71 354 A 1 \nATOM 2748 O OG . SER A 1 400 ? 50.196 -6.383 11.939 1.00 49.49 354 A 1 \nATOM 2749 N N . VAL A 1 401 ? 47.966 -4.103 11.899 1.00 47.96 355 A 1 \nATOM 2750 C CA . VAL A 1 401 ? 46.650 -3.784 12.480 1.00 47.71 355 A 1 \nATOM 2751 C C . VAL A 1 401 ? 46.019 -2.638 11.681 1.00 48.15 355 A 1 \nATOM 2752 O O . VAL A 1 401 ? 44.840 -2.686 11.329 1.00 48.21 355 A 1 \nATOM 2753 C CB . VAL A 1 401 ? 46.755 -3.444 14.002 1.00 47.49 355 A 1 \nATOM 2754 C CG1 . VAL A 1 401 ? 45.421 -3.008 14.584 1.00 47.10 355 A 1 \nATOM 2755 C CG2 . VAL A 1 401 ? 47.289 -4.636 14.791 1.00 46.24 355 A 1 \nATOM 2756 N N . GLU A 1 402 ? 46.826 -1.631 11.362 1.00 48.11 356 A 1 \nATOM 2757 C CA . GLU A 1 402 ? 46.386 -0.516 10.530 1.00 48.96 356 A 1 \nATOM 2758 C C . GLU A 1 402 ? 45.934 -0.977 9.142 1.00 48.05 356 A 1 \nATOM 2759 O O . GLU A 1 402 ? 44.974 -0.451 8.597 1.00 48.11 356 A 1 \nATOM 2760 C CB . GLU A 1 402 ? 47.509 0.517 10.404 1.00 48.73 356 A 1 \nATOM 2761 C CG . GLU A 1 402 ? 47.022 1.912 10.140 1.00 50.93 356 A 1 \nATOM 2762 C CD . GLU A 1 402 ? 48.141 2.922 9.872 1.00 51.47 356 A 1 \nATOM 2763 O OE1 . GLU A 1 402 ? 49.349 2.545 9.832 1.00 56.28 356 A 1 \nATOM 2764 O OE2 . GLU A 1 402 ? 47.787 4.111 9.698 1.00 55.47 356 A 1 \nATOM 2765 N N . THR A 1 403 ? 46.622 -1.962 8.575 1.00 47.67 357 A 1 \nATOM 2766 C CA . THR A 1 403 ? 46.212 -2.530 7.286 1.00 47.14 357 A 1 \nATOM 2767 C C . THR A 1 403 ? 44.878 -3.260 7.424 1.00 46.97 357 A 1 \nATOM 2768 O O . THR A 1 403 ? 44.027 -3.179 6.546 1.00 46.65 357 A 1 \nATOM 2769 C CB . THR A 1 403 ? 47.284 -3.457 6.713 1.00 46.77 357 A 1 \nATOM 2770 O OG1 . THR A 1 403 ? 48.465 -2.691 6.447 1.00 47.70 357 A 1 \nATOM 2771 C CG2 . THR A 1 403 ? 46.814 -4.132 5.404 1.00 47.09 357 A 1 \nATOM 2772 N N . LEU A 1 404 ? 44.705 -3.966 8.538 1.00 47.01 358 A 1 \nATOM 2773 C CA . LEU A 1 404 ? 43.480 -4.712 8.791 1.00 47.08 358 A 1 \nATOM 2774 C C . LEU A 1 404 ? 42.301 -3.749 8.951 1.00 47.37 358 A 1 \nATOM 2775 O O . LEU A 1 404 ? 41.211 -4.012 8.438 1.00 46.81 358 A 1 \nATOM 2776 C CB . LEU A 1 404 ? 43.649 -5.598 10.026 1.00 46.91 358 A 1 \nATOM 2777 C CG . LEU A 1 404 ? 42.456 -6.364 10.606 1.00 46.79 358 A 1 \nATOM 2778 C CD1 . LEU A 1 404 ? 41.864 -7.382 9.641 1.00 46.56 358 A 1 \nATOM 2779 C CD2 . LEU A 1 404 ? 42.874 -7.029 11.900 1.00 47.11 358 A 1 \nATOM 2780 N N . TRP A 1 405 ? 42.533 -2.643 9.662 1.00 47.65 359 A 1 \nATOM 2781 C CA . TRP A 1 405 ? 41.538 -1.579 9.791 1.00 48.70 359 A 1 \nATOM 2782 C C . TRP A 1 405 ? 41.154 -1.030 8.420 1.00 48.97 359 A 1 \nATOM 2783 O O . TRP A 1 405 ? 39.978 -0.827 8.146 1.00 49.42 359 A 1 \nATOM 2784 C CB . TRP A 1 405 ? 42.035 -0.470 10.735 1.00 48.61 359 A 1 \nATOM 2785 C CG . TRP A 1 405 ? 41.060 0.693 10.937 1.00 49.30 359 A 1 \nATOM 2786 C CD1 . TRP A 1 405 ? 41.339 2.026 10.791 1.00 48.99 359 A 1 \nATOM 2787 C CD2 . TRP A 1 405 ? 39.678 0.618 11.325 1.00 49.22 359 A 1 \nATOM 2788 N NE1 . TRP A 1 405 ? 40.222 2.779 11.056 1.00 49.26 359 A 1 \nATOM 2789 C CE2 . TRP A 1 405 ? 39.190 1.945 11.394 1.00 49.16 359 A 1 \nATOM 2790 C CE3 . TRP A 1 405 ? 38.804 -0.437 11.624 1.00 49.77 359 A 1 \nATOM 2791 C CZ2 . TRP A 1 405 ? 37.861 2.246 11.730 1.00 49.77 359 A 1 \nATOM 2792 C CZ3 . TRP A 1 405 ? 37.478 -0.134 11.966 1.00 49.39 359 A 1 \nATOM 2793 C CH2 . TRP A 1 405 ? 37.025 1.198 12.016 1.00 48.30 359 A 1 \nATOM 2794 N N . GLY A 1 406 ? 42.150 -0.827 7.559 1.00 49.54 360 A 1 \nATOM 2795 C CA . GLY A 1 406 ? 41.928 -0.332 6.198 1.00 50.11 360 A 1 \nATOM 2796 C C . GLY A 1 406 ? 41.027 -1.254 5.405 1.00 50.52 360 A 1 \nATOM 2797 O O . GLY A 1 406 ? 40.266 -0.806 4.551 1.00 50.36 360 A 1 \nATOM 2798 N N . LYS A 1 407 ? 41.108 -2.548 5.709 1.00 50.86 361 A 1 \nATOM 2799 C CA . LYS A 1 407 ? 40.244 -3.561 5.114 1.00 51.21 361 A 1 \nATOM 2800 C C . LYS A 1 407 ? 38.807 -3.527 5.660 1.00 51.14 361 A 1 \nATOM 2801 O O . LYS A 1 407 ? 37.887 -4.125 5.068 1.00 51.23 361 A 1 \nATOM 2802 C CB . LYS A 1 407 ? 40.829 -4.948 5.374 1.00 51.61 361 A 1 \nATOM 2803 C CG . LYS A 1 407 ? 42.013 -5.353 4.501 1.00 53.45 361 A 1 \nATOM 2804 C CD . LYS A 1 407 ? 42.186 -6.867 4.586 1.00 55.48 361 A 1 \nATOM 2805 C CE . LYS A 1 407 ? 43.235 -7.403 3.615 1.00 58.55 361 A 1 \nATOM 2806 N NZ . LYS A 1 407 ? 43.097 -8.893 3.422 1.00 57.82 361 A 1 \nATOM 2807 N N . THR A 1 408 ? 38.615 -2.843 6.784 1.00 50.85 362 A 1 \nATOM 2808 C CA . THR A 1 408 ? 37.336 -2.882 7.500 1.00 51.12 362 A 1 \nATOM 2809 C C . THR A 1 408 ? 36.510 -1.598 7.339 1.00 51.41 362 A 1 \nATOM 2810 O O . THR A 1 408 ? 35.332 -1.649 6.972 1.00 51.23 362 A 1 \nATOM 2811 C CB . THR A 1 408 ? 37.561 -3.175 9.012 1.00 51.32 362 A 1 \nATOM 2812 O OG1 . THR A 1 408 ? 38.466 -4.282 9.163 1.00 49.15 362 A 1 \nATOM 2813 C CG2 . THR A 1 408 ? 36.229 -3.473 9.706 1.00 50.52 362 A 1 \nATOM 2814 N N . TYR A 1 409 ? 37.143 -0.467 7.640 1.00 52.36 363 A 1 \nATOM 2815 C CA . TYR A 1 409 ? 36.551 0.865 7.537 1.00 53.55 363 A 1 \nATOM 2816 C C . TYR A 1 409 ? 35.906 1.104 6.176 1.00 54.55 363 A 1 \nATOM 2817 O O . TYR A 1 409 ? 36.538 0.901 5.133 1.00 54.50 363 A 1 \nATOM 2818 C CB . TYR A 1 409 ? 37.631 1.911 7.793 1.00 53.88 363 A 1 \nATOM 2819 C CG . TYR A 1 409 ? 37.149 3.334 7.935 1.00 54.17 363 A 1 \nATOM 2820 C CD1 . TYR A 1 409 ? 36.218 3.688 8.915 1.00 53.56 363 A 1 \nATOM 2821 C CD2 . TYR A 1 409 ? 37.660 4.342 7.114 1.00 54.94 363 A 1 \nATOM 2822 C CE1 . TYR A 1 409 ? 35.787 5.016 9.061 1.00 54.11 363 A 1 \nATOM 2823 C CE2 . TYR A 1 409 ? 37.236 5.669 7.251 1.00 54.76 363 A 1 \nATOM 2824 C CZ . TYR A 1 409 ? 36.300 5.996 8.222 1.00 54.27 363 A 1 \nATOM 2825 O OH . TYR A 1 409 ? 35.884 7.306 8.353 1.00 55.01 363 A 1 \nATOM 2826 N N . LYS A 1 410 ? 34.636 1.506 6.217 1.00 55.61 364 A 1 \nATOM 2827 C CA . LYS A 1 410 ? 33.812 1.797 5.035 1.00 57.02 364 A 1 \nATOM 2828 C C . LYS A 1 410 ? 33.853 0.711 3.953 1.00 57.70 364 A 1 \nATOM 2829 O O . LYS A 1 410 ? 33.796 1.004 2.750 1.00 57.19 364 A 1 \nATOM 2830 C CB . LYS A 1 410 ? 34.130 3.195 4.466 1.00 57.01 364 A 1 \nATOM 2831 C CG . LYS A 1 410 ? 33.414 4.322 5.213 1.00 57.94 364 A 1 \nATOM 2832 C CD . LYS A 1 410 ? 34.115 5.670 5.053 1.00 59.24 364 A 1 \nATOM 2833 C CE . LYS A 1 410 ? 33.344 6.781 5.758 1.00 59.73 364 A 1 \nATOM 2834 N NZ . LYS A 1 410 ? 33.971 8.133 5.571 1.00 60.74 364 A 1 \nATOM 2835 N N . ARG A 1 411 ? 33.939 -0.545 4.393 1.00 58.85 365 A 1 \nATOM 2836 C CA . ARG A 1 411 ? 33.930 -1.677 3.478 1.00 59.85 365 A 1 \nATOM 2837 C C . ARG A 1 411 ? 32.584 -1.743 2.766 1.00 61.36 365 A 1 \nATOM 2838 O O . ARG A 1 411 ? 31.550 -1.324 3.300 1.00 61.47 365 A 1 \nATOM 2839 C CB . ARG A 1 411 ? 34.250 -2.997 4.205 1.00 59.90 365 A 1 \nATOM 2840 C CG . ARG A 1 411 ? 33.159 -3.513 5.156 1.00 59.01 365 A 1 \nATOM 2841 C CD . ARG A 1 411 ? 33.632 -4.745 5.932 1.00 58.56 365 A 1 \nATOM 2842 N NE . ARG A 1 411 ? 32.613 -5.279 6.835 1.00 54.17 365 A 1 \nATOM 2843 C CZ . ARG A 1 411 ? 31.879 -6.367 6.602 1.00 53.67 365 A 1 \nATOM 2844 N NH1 . ARG A 1 411 ? 32.041 -7.066 5.487 1.00 51.75 365 A 1 \nATOM 2845 N NH2 . ARG A 1 411 ? 30.975 -6.764 7.491 1.00 50.51 365 A 1 \nATOM 2846 N N . GLN A 1 412 ? 32.614 -2.251 1.545 1.00 63.16 366 A 1 \nATOM 2847 C CA . GLN A 1 412 ? 31.415 -2.383 0.734 1.00 65.15 366 A 1 \nATOM 2848 C C . GLN A 1 412 ? 31.151 -3.877 0.597 1.00 66.28 366 A 1 \nATOM 2849 O O . GLN A 1 412 ? 30.031 -4.304 0.282 1.00 66.58 366 A 1 \nATOM 2850 C CB . GLN A 1 412 ? 31.636 -1.732 -0.639 1.00 65.23 366 A 1 \nATOM 2851 C CG . GLN A 1 412 ? 32.394 -0.386 -0.601 1.00 65.60 366 A 1 \nATOM 2852 C CD . GLN A 1 412 ? 31.479 0.813 -0.405 1.00 66.39 366 A 1 \nATOM 2853 O OE1 . GLN A 1 412 ? 30.590 1.073 -1.220 1.00 65.46 366 A 1 \nATOM 2854 N NE2 . GLN A 1 412 ? 31.702 1.560 0.677 1.00 67.05 366 A 1 \nATOM 2855 N N . LYS A 1 413 ? 32.217 -4.640 0.858 1.00 67.49 367 A 1 \nATOM 2856 C CA . LYS A 1 413 ? 32.290 -6.110 0.786 1.00 68.72 367 A 1 \nATOM 2857 C C . LYS A 1 413 ? 31.410 -6.788 -0.261 1.00 69.12 367 A 1 \nATOM 2858 O O . LYS A 1 413 ? 31.929 -7.223 -1.300 1.00 69.54 367 A 1 \nATOM 2859 C CB . LYS A 1 413 ? 32.088 -6.751 2.168 1.00 68.62 367 A 1 \nATOM 2860 C CG . LYS A 1 413 ? 33.239 -6.516 3.139 1.00 69.70 367 A 1 \nATOM 2861 C CD . LYS A 1 413 ? 34.509 -7.306 2.796 1.00 72.47 367 A 1 \nATOM 2862 C CE . LYS A 1 413 ? 35.331 -7.676 4.039 1.00 72.87 367 A 1 \nATOM 2863 N NZ . LYS A 1 413 ? 35.034 -9.053 4.554 1.00 73.49 367 A 1 \nATOM 2864 O OXT . LYS A 1 413 ? 30.193 -6.930 -0.072 1.00 69.52 367 A 1 \n#\n", + "queryIndices": [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31], + "templateIndices": [23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54] + }, + { + "mmcif": "data_2QHX\n#\n_entry.id 2QHX\n#\nloop_\n_chem_comp.formula\n_chem_comp.formula_weight\n_chem_comp.id\n_chem_comp.mon_nstd_flag\n_chem_comp.name\n_chem_comp.pdbx_synonyms\n_chem_comp.type\n\"C3 H7 N O2\" 89.093 ALA y ALANINE ? \"L-peptide linking\" \n\"C6 H15 N4 O2 1\" 175.209 ARG y ARGININE ? \"L-peptide linking\" \n\"C4 H8 N2 O3\" 132.118 ASN y ASPARAGINE ? \"L-peptide linking\" \n\"C4 H7 N O4\" 133.103 ASP y \"ASPARTIC ACID\" ? \"L-peptide linking\" \n\"C3 H7 N O2 S\" 121.158 CYS y CYSTEINE ? \"L-peptide linking\" \n\"C22 H26 N8 O3\" 450.494 FE1 . \"METHYL 1-(4-{[(2,4-DIAMINOPTERIDIN-6-YL)METHYL](METHYL)AMINO}BENZOYL)PIPERIDINE-4-CARBOXYLATE\" 903R non-polymer \n\"C5 H10 N2 O3\" 146.144 GLN y GLUTAMINE ? \"L-peptide linking\" \n\"C5 H9 N O4\" 147.129 GLU y \"GLUTAMIC ACID\" ? \"L-peptide linking\" \n\"C2 H5 N O2\" 75.067 GLY y GLYCINE ? \"peptide linking\" \n\"C6 H10 N3 O2 1\" 156.162 HIS y HISTIDINE ? \"L-peptide linking\" \n\"H2 O\" 18.015 HOH . WATER ? non-polymer \n\"C6 H13 N O2\" 131.173 ILE y ISOLEUCINE ? \"L-peptide linking\" \n\"I -1\" 126.904 IOD . \"IODIDE ION\" ? non-polymer \n\"C6 H13 N O2\" 131.173 LEU y LEUCINE ? \"L-peptide linking\" \n\"C6 H15 N2 O2 1\" 147.195 LYS y LYSINE ? \"L-peptide linking\" \n\"C5 H11 N O2 S\" 149.211 MET y METHIONINE ? \"L-peptide linking\" \n\"C21 H28 N7 O17 P3\" 743.405 NAP . \"NADP NICOTINAMIDE-ADENINE-DINUCLEOTIDE PHOSPHATE\" \"2'-MONOPHOSPHOADENOSINE 5'-DIPHOSPHORIBOSE\" non-polymer \n\"C9 H11 N O2\" 165.189 PHE y PHENYLALANINE ? \"L-peptide linking\" \n\"C5 H9 N O2\" 115.130 PRO y PROLINE ? \"L-peptide linking\" \n\"C3 H7 N O3\" 105.093 SER y SERINE ? \"L-peptide linking\" \n\"C4 H9 N O3\" 119.119 THR y THREONINE ? \"L-peptide linking\" \n\"C11 H12 N2 O2\" 204.225 TRP y TRYPTOPHAN ? \"L-peptide linking\" \n\"C9 H11 N O3\" 181.189 TYR y TYROSINE ? \"L-peptide linking\" \n\"C5 H11 N O2\" 117.146 VAL y VALINE ? \"L-peptide linking\" \n#\n_entity.id 1\n_entity.pdbx_description \"Pteridine reductase 1\"\n_entity.type polymer\n#\n_entity_poly.entity_id 1\n_entity_poly.pdbx_strand_id A\n_entity_poly.type polypeptide(L)\n#\nloop_\n_entity_poly_seq.entity_id\n_entity_poly_seq.hetero\n_entity_poly_seq.mon_id\n_entity_poly_seq.num\n1 n MET 1 \n1 n GLY 2 \n1 n SER 3 \n1 n SER 4 \n1 n HIS 5 \n1 n HIS 6 \n1 n HIS 7 \n1 n HIS 8 \n1 n HIS 9 \n1 n HIS 10 \n1 n SER 11 \n1 n SER 12 \n1 n GLY 13 \n1 n LEU 14 \n1 n VAL 15 \n1 n PRO 16 \n1 n ARG 17 \n1 n GLY 18 \n1 n SER 19 \n1 n HIS 20 \n1 n MET 21 \n1 n GLY 22 \n1 n SER 23 \n1 n SER 24 \n1 n HIS 25 \n1 n HIS 26 \n1 n HIS 27 \n1 n HIS 28 \n1 n HIS 29 \n1 n HIS 30 \n1 n SER 31 \n1 n SER 32 \n1 n GLY 33 \n1 n LEU 34 \n1 n VAL 35 \n1 n PRO 36 \n1 n ARG 37 \n1 n GLY 38 \n1 n SER 39 \n1 n HIS 40 \n1 n MET 41 \n1 n THR 42 \n1 n ALA 43 \n1 n PRO 44 \n1 n THR 45 \n1 n VAL 46 \n1 n PRO 47 \n1 n VAL 48 \n1 n ALA 49 \n1 n LEU 50 \n1 n VAL 51 \n1 n THR 52 \n1 n GLY 53 \n1 n ALA 54 \n1 n ALA 55 \n1 n LYS 56 \n1 n ARG 57 \n1 n LEU 58 \n1 n GLY 59 \n1 n ARG 60 \n1 n SER 61 \n1 n ILE 62 \n1 n ALA 63 \n1 n GLU 64 \n1 n GLY 65 \n1 n LEU 66 \n1 n HIS 67 \n1 n ALA 68 \n1 n GLU 69 \n1 n GLY 70 \n1 n TYR 71 \n1 n ALA 72 \n1 n VAL 73 \n1 n CYS 74 \n1 n LEU 75 \n1 n HIS 76 \n1 n TYR 77 \n1 n HIS 78 \n1 n ARG 79 \n1 n SER 80 \n1 n ALA 81 \n1 n ALA 82 \n1 n GLU 83 \n1 n ALA 84 \n1 n ASN 85 \n1 n ALA 86 \n1 n LEU 87 \n1 n SER 88 \n1 n ALA 89 \n1 n THR 90 \n1 n LEU 91 \n1 n ASN 92 \n1 n ALA 93 \n1 n ARG 94 \n1 n ARG 95 \n1 n PRO 96 \n1 n ASN 97 \n1 n SER 98 \n1 n ALA 99 \n1 n ILE 100 \n1 n THR 101 \n1 n VAL 102 \n1 n GLN 103 \n1 n ALA 104 \n1 n ASP 105 \n1 n LEU 106 \n1 n SER 107 \n1 n ASN 108 \n1 n VAL 109 \n1 n ALA 110 \n1 n THR 111 \n1 n ALA 112 \n1 n PRO 113 \n1 n VAL 114 \n1 n SER 115 \n1 n GLY 116 \n1 n ALA 117 \n1 n ASP 118 \n1 n GLY 119 \n1 n SER 120 \n1 n ALA 121 \n1 n PRO 122 \n1 n VAL 123 \n1 n THR 124 \n1 n LEU 125 \n1 n PHE 126 \n1 n THR 127 \n1 n ARG 128 \n1 n CYS 129 \n1 n ALA 130 \n1 n GLU 131 \n1 n LEU 132 \n1 n VAL 133 \n1 n ALA 134 \n1 n ALA 135 \n1 n CYS 136 \n1 n TYR 137 \n1 n THR 138 \n1 n HIS 139 \n1 n TRP 140 \n1 n GLY 141 \n1 n ARG 142 \n1 n CYS 143 \n1 n ASP 144 \n1 n VAL 145 \n1 n LEU 146 \n1 n VAL 147 \n1 n ASN 148 \n1 n ASN 149 \n1 n ALA 150 \n1 n SER 151 \n1 n SER 152 \n1 n PHE 153 \n1 n TYR 154 \n1 n PRO 155 \n1 n THR 156 \n1 n PRO 157 \n1 n LEU 158 \n1 n LEU 159 \n1 n ARG 160 \n1 n ASN 161 \n1 n ASP 162 \n1 n GLU 163 \n1 n ASP 164 \n1 n GLY 165 \n1 n HIS 166 \n1 n GLU 167 \n1 n PRO 168 \n1 n CYS 169 \n1 n VAL 170 \n1 n GLY 171 \n1 n ASP 172 \n1 n ARG 173 \n1 n GLU 174 \n1 n ALA 175 \n1 n MET 176 \n1 n GLU 177 \n1 n THR 178 \n1 n ALA 179 \n1 n THR 180 \n1 n ALA 181 \n1 n ASP 182 \n1 n LEU 183 \n1 n PHE 184 \n1 n GLY 185 \n1 n SER 186 \n1 n ASN 187 \n1 n ALA 188 \n1 n ILE 189 \n1 n ALA 190 \n1 n PRO 191 \n1 n TYR 192 \n1 n PHE 193 \n1 n LEU 194 \n1 n ILE 195 \n1 n LYS 196 \n1 n ALA 197 \n1 n PHE 198 \n1 n ALA 199 \n1 n HIS 200 \n1 n ARG 201 \n1 n VAL 202 \n1 n ALA 203 \n1 n GLY 204 \n1 n THR 205 \n1 n PRO 206 \n1 n ALA 207 \n1 n LYS 208 \n1 n HIS 209 \n1 n ARG 210 \n1 n GLY 211 \n1 n THR 212 \n1 n ASN 213 \n1 n TYR 214 \n1 n SER 215 \n1 n ILE 216 \n1 n ILE 217 \n1 n ASN 218 \n1 n MET 219 \n1 n VAL 220 \n1 n ASP 221 \n1 n ALA 222 \n1 n MET 223 \n1 n THR 224 \n1 n ASN 225 \n1 n GLN 226 \n1 n PRO 227 \n1 n LEU 228 \n1 n LEU 229 \n1 n GLY 230 \n1 n TYR 231 \n1 n THR 232 \n1 n ILE 233 \n1 n TYR 234 \n1 n THR 235 \n1 n MET 236 \n1 n ALA 237 \n1 n LYS 238 \n1 n GLY 239 \n1 n ALA 240 \n1 n LEU 241 \n1 n GLU 242 \n1 n GLY 243 \n1 n LEU 244 \n1 n THR 245 \n1 n ARG 246 \n1 n SER 247 \n1 n ALA 248 \n1 n ALA 249 \n1 n LEU 250 \n1 n GLU 251 \n1 n LEU 252 \n1 n ALA 253 \n1 n PRO 254 \n1 n LEU 255 \n1 n GLN 256 \n1 n ILE 257 \n1 n ARG 258 \n1 n VAL 259 \n1 n ASN 260 \n1 n GLY 261 \n1 n VAL 262 \n1 n GLY 263 \n1 n PRO 264 \n1 n GLY 265 \n1 n LEU 266 \n1 n SER 267 \n1 n VAL 268 \n1 n LEU 269 \n1 n VAL 270 \n1 n ASP 271 \n1 n ASP 272 \n1 n MET 273 \n1 n PRO 274 \n1 n PRO 275 \n1 n ALA 276 \n1 n VAL 277 \n1 n TRP 278 \n1 n GLU 279 \n1 n GLY 280 \n1 n HIS 281 \n1 n ARG 282 \n1 n SER 283 \n1 n LYS 284 \n1 n VAL 285 \n1 n PRO 286 \n1 n LEU 287 \n1 n TYR 288 \n1 n GLN 289 \n1 n ARG 290 \n1 n ASP 291 \n1 n SER 292 \n1 n SER 293 \n1 n ALA 294 \n1 n ALA 295 \n1 n GLU 296 \n1 n VAL 297 \n1 n SER 298 \n1 n ASP 299 \n1 n VAL 300 \n1 n VAL 301 \n1 n ILE 302 \n1 n PHE 303 \n1 n LEU 304 \n1 n CYS 305 \n1 n SER 306 \n1 n SER 307 \n1 n LYS 308 \n1 n ALA 309 \n1 n LYS 310 \n1 n TYR 311 \n1 n ILE 312 \n1 n THR 313 \n1 n GLY 314 \n1 n THR 315 \n1 n CYS 316 \n1 n VAL 317 \n1 n LYS 318 \n1 n VAL 319 \n1 n ASP 320 \n1 n GLY 321 \n1 n GLY 322 \n1 n TYR 323 \n1 n SER 324 \n1 n LEU 325 \n1 n THR 326 \n1 n ARG 327 \n1 n ALA 328 \n#\n_exptl.method \"X-RAY DIFFRACTION\"\n#\n_pdbx_audit_revision_history.revision_date 2007-12-25\n#\n_pdbx_database_status.recvd_initial_deposition_date 2007-12-25\n#\nloop_\n_pdbx_poly_seq_scheme.asym_id\n_pdbx_poly_seq_scheme.auth_seq_num\n_pdbx_poly_seq_scheme.entity_id\n_pdbx_poly_seq_scheme.hetero\n_pdbx_poly_seq_scheme.mon_id\n_pdbx_poly_seq_scheme.pdb_ins_code\n_pdbx_poly_seq_scheme.pdb_seq_num\n_pdbx_poly_seq_scheme.pdb_strand_id\n_pdbx_poly_seq_scheme.seq_id\nA ? 1 n MET . -39 A 1 \nA ? 1 n GLY . -38 A 2 \nA ? 1 n SER . -37 A 3 \nA ? 1 n SER . -36 A 4 \nA ? 1 n HIS . -35 A 5 \nA ? 1 n HIS . -34 A 6 \nA ? 1 n HIS . -33 A 7 \nA ? 1 n HIS . -32 A 8 \nA ? 1 n HIS . -31 A 9 \nA ? 1 n HIS . -30 A 10 \nA ? 1 n SER . -29 A 11 \nA ? 1 n SER . -28 A 12 \nA ? 1 n GLY . -27 A 13 \nA ? 1 n LEU . -26 A 14 \nA ? 1 n VAL . -25 A 15 \nA ? 1 n PRO . -24 A 16 \nA ? 1 n ARG . -23 A 17 \nA ? 1 n GLY . -22 A 18 \nA ? 1 n SER . -21 A 19 \nA ? 1 n HIS . -20 A 20 \nA ? 1 n MET . -19 A 21 \nA ? 1 n GLY . -18 A 22 \nA ? 1 n SER . -17 A 23 \nA ? 1 n SER . -16 A 24 \nA ? 1 n HIS . -15 A 25 \nA ? 1 n HIS . -14 A 26 \nA ? 1 n HIS . -13 A 27 \nA ? 1 n HIS . -12 A 28 \nA ? 1 n HIS . -11 A 29 \nA ? 1 n HIS . -10 A 30 \nA ? 1 n SER . -9 A 31 \nA ? 1 n SER . -8 A 32 \nA ? 1 n GLY . -7 A 33 \nA ? 1 n LEU . -6 A 34 \nA ? 1 n VAL . -5 A 35 \nA ? 1 n PRO . -4 A 36 \nA ? 1 n ARG . -3 A 37 \nA ? 1 n GLY . -2 A 38 \nA ? 1 n SER . -1 A 39 \nA ? 1 n HIS . 0 A 40 \nA ? 1 n MET . 1 A 41 \nA ? 1 n THR . 2 A 42 \nA ? 1 n ALA . 3 A 43 \nA ? 1 n PRO . 4 A 44 \nA 5 1 n THR . 5 A 45 \nA 6 1 n VAL . 6 A 46 \nA 7 1 n PRO . 7 A 47 \nA 8 1 n VAL . 8 A 48 \nA 9 1 n ALA . 9 A 49 \nA 10 1 n LEU . 10 A 50 \nA 11 1 n VAL . 11 A 51 \nA 12 1 n THR . 12 A 52 \nA 13 1 n GLY . 13 A 53 \nA 14 1 n ALA . 14 A 54 \nA 15 1 n ALA . 15 A 55 \nA 16 1 n LYS . 16 A 56 \nA 17 1 n ARG . 17 A 57 \nA 18 1 n LEU . 18 A 58 \nA 19 1 n GLY . 19 A 59 \nA 20 1 n ARG . 20 A 60 \nA 21 1 n SER . 21 A 61 \nA 22 1 n ILE . 22 A 62 \nA 23 1 n ALA . 23 A 63 \nA 24 1 n GLU . 24 A 64 \nA 25 1 n GLY . 25 A 65 \nA 26 1 n LEU . 26 A 66 \nA 27 1 n HIS . 27 A 67 \nA 28 1 n ALA . 28 A 68 \nA 29 1 n GLU . 29 A 69 \nA 30 1 n GLY . 30 A 70 \nA 31 1 n TYR . 31 A 71 \nA 32 1 n ALA . 32 A 72 \nA 33 1 n VAL . 33 A 73 \nA 34 1 n CYS . 34 A 74 \nA 35 1 n LEU . 35 A 75 \nA 36 1 n HIS . 36 A 76 \nA 37 1 n TYR . 37 A 77 \nA 38 1 n HIS . 38 A 78 \nA 39 1 n ARG . 39 A 79 \nA 40 1 n SER . 40 A 80 \nA 41 1 n ALA . 41 A 81 \nA 42 1 n ALA . 42 A 82 \nA 43 1 n GLU . 43 A 83 \nA 44 1 n ALA . 44 A 84 \nA 45 1 n ASN . 45 A 85 \nA 46 1 n ALA . 46 A 86 \nA 47 1 n LEU . 47 A 87 \nA 48 1 n SER . 48 A 88 \nA 49 1 n ALA . 49 A 89 \nA 50 1 n THR . 50 A 90 \nA 51 1 n LEU . 51 A 91 \nA 52 1 n ASN . 52 A 92 \nA 53 1 n ALA . 53 A 93 \nA 54 1 n ARG . 54 A 94 \nA 55 1 n ARG . 55 A 95 \nA 56 1 n PRO . 56 A 96 \nA 57 1 n ASN . 57 A 97 \nA 58 1 n SER . 58 A 98 \nA 59 1 n ALA . 59 A 99 \nA 60 1 n ILE . 60 A 100 \nA 61 1 n THR . 61 A 101 \nA 62 1 n VAL . 62 A 102 \nA 63 1 n GLN . 63 A 103 \nA 64 1 n ALA . 64 A 104 \nA 65 1 n ASP . 65 A 105 \nA 66 1 n LEU . 66 A 106 \nA 67 1 n SER . 67 A 107 \nA 68 1 n ASN . 68 A 108 \nA 69 1 n VAL . 69 A 109 \nA 70 1 n ALA . 70 A 110 \nA 71 1 n THR . 71 A 111 \nA 72 1 n ALA . 72 A 112 \nA 73 1 n PRO . 73 A 113 \nA ? 1 n VAL . 74 A 114 \nA ? 1 n SER . 75 A 115 \nA ? 1 n GLY . 76 A 116 \nA ? 1 n ALA . 77 A 117 \nA ? 1 n ASP . 78 A 118 \nA ? 1 n GLY . 79 A 119 \nA ? 1 n SER . 80 A 120 \nA 81 1 n ALA . 81 A 121 \nA 82 1 n PRO . 82 A 122 \nA 83 1 n VAL . 83 A 123 \nA 84 1 n THR . 84 A 124 \nA 85 1 n LEU . 85 A 125 \nA 86 1 n PHE . 86 A 126 \nA 87 1 n THR . 87 A 127 \nA 88 1 n ARG . 88 A 128 \nA 89 1 n CYS . 89 A 129 \nA 90 1 n ALA . 90 A 130 \nA 91 1 n GLU . 91 A 131 \nA 92 1 n LEU . 92 A 132 \nA 93 1 n VAL . 93 A 133 \nA 94 1 n ALA . 94 A 134 \nA 95 1 n ALA . 95 A 135 \nA 96 1 n CYS . 96 A 136 \nA 97 1 n TYR . 97 A 137 \nA 98 1 n THR . 98 A 138 \nA 99 1 n HIS . 99 A 139 \nA 100 1 n TRP . 100 A 140 \nA 101 1 n GLY . 101 A 141 \nA 102 1 n ARG . 102 A 142 \nA 103 1 n CYS . 103 A 143 \nA 104 1 n ASP . 104 A 144 \nA 105 1 n VAL . 105 A 145 \nA 106 1 n LEU . 106 A 146 \nA 107 1 n VAL . 107 A 147 \nA 108 1 n ASN . 108 A 148 \nA 109 1 n ASN . 109 A 149 \nA 110 1 n ALA . 110 A 150 \nA 111 1 n SER . 111 A 151 \nA 112 1 n SER . 112 A 152 \nA 113 1 n PHE . 113 A 153 \nA 114 1 n TYR . 114 A 154 \nA 115 1 n PRO . 115 A 155 \nA 116 1 n THR . 116 A 156 \nA 117 1 n PRO . 117 A 157 \nA 118 1 n LEU . 118 A 158 \nA 119 1 n LEU . 119 A 159 \nA 120 1 n ARG . 120 A 160 \nA ? 1 n ASN . 121 A 161 \nA ? 1 n ASP . 122 A 162 \nA ? 1 n GLU . 123 A 163 \nA ? 1 n ASP . 124 A 164 \nA ? 1 n GLY . 125 A 165 \nA ? 1 n HIS . 126 A 166 \nA ? 1 n GLU . 127 A 167 \nA ? 1 n PRO . 128 A 168 \nA ? 1 n CYS . 129 A 169 \nA ? 1 n VAL . 130 A 170 \nA ? 1 n GLY . 131 A 171 \nA ? 1 n ASP . 132 A 172 \nA ? 1 n ARG . 133 A 173 \nA 134 1 n GLU . 134 A 174 \nA 135 1 n ALA . 135 A 175 \nA 136 1 n MET . 136 A 176 \nA 137 1 n GLU . 137 A 177 \nA 138 1 n THR . 138 A 178 \nA 139 1 n ALA . 139 A 179 \nA 140 1 n THR . 140 A 180 \nA 141 1 n ALA . 141 A 181 \nA 142 1 n ASP . 142 A 182 \nA 143 1 n LEU . 143 A 183 \nA 144 1 n PHE . 144 A 184 \nA 145 1 n GLY . 145 A 185 \nA 146 1 n SER . 146 A 186 \nA 147 1 n ASN . 147 A 187 \nA 148 1 n ALA . 148 A 188 \nA 149 1 n ILE . 149 A 189 \nA 150 1 n ALA . 150 A 190 \nA 151 1 n PRO . 151 A 191 \nA 152 1 n TYR . 152 A 192 \nA 153 1 n PHE . 153 A 193 \nA 154 1 n LEU . 154 A 194 \nA 155 1 n ILE . 155 A 195 \nA 156 1 n LYS . 156 A 196 \nA 157 1 n ALA . 157 A 197 \nA 158 1 n PHE . 158 A 198 \nA 159 1 n ALA . 159 A 199 \nA 160 1 n HIS . 160 A 200 \nA 161 1 n ARG . 161 A 201 \nA 162 1 n VAL . 162 A 202 \nA 163 1 n ALA . 163 A 203 \nA 164 1 n GLY . 164 A 204 \nA 165 1 n THR . 165 A 205 \nA 166 1 n PRO . 166 A 206 \nA 167 1 n ALA . 167 A 207 \nA 168 1 n LYS . 168 A 208 \nA 169 1 n HIS . 169 A 209 \nA 170 1 n ARG . 170 A 210 \nA 171 1 n GLY . 171 A 211 \nA 172 1 n THR . 172 A 212 \nA 173 1 n ASN . 173 A 213 \nA 174 1 n TYR . 174 A 214 \nA 175 1 n SER . 175 A 215 \nA 176 1 n ILE . 176 A 216 \nA 177 1 n ILE . 177 A 217 \nA 178 1 n ASN . 178 A 218 \nA 179 1 n MET . 179 A 219 \nA 180 1 n VAL . 180 A 220 \nA 181 1 n ASP . 181 A 221 \nA 182 1 n ALA . 182 A 222 \nA 183 1 n MET . 183 A 223 \nA 184 1 n THR . 184 A 224 \nA 185 1 n ASN . 185 A 225 \nA 186 1 n GLN . 186 A 226 \nA 187 1 n PRO . 187 A 227 \nA 188 1 n LEU . 188 A 228 \nA 189 1 n LEU . 189 A 229 \nA 190 1 n GLY . 190 A 230 \nA 191 1 n TYR . 191 A 231 \nA 192 1 n THR . 192 A 232 \nA 193 1 n ILE . 193 A 233 \nA 194 1 n TYR . 194 A 234 \nA 195 1 n THR . 195 A 235 \nA 196 1 n MET . 196 A 236 \nA 197 1 n ALA . 197 A 237 \nA 198 1 n LYS . 198 A 238 \nA 199 1 n GLY . 199 A 239 \nA 200 1 n ALA . 200 A 240 \nA 201 1 n LEU . 201 A 241 \nA 202 1 n GLU . 202 A 242 \nA 203 1 n GLY . 203 A 243 \nA 204 1 n LEU . 204 A 244 \nA 205 1 n THR . 205 A 245 \nA 206 1 n ARG . 206 A 246 \nA 207 1 n SER . 207 A 247 \nA 208 1 n ALA . 208 A 248 \nA 209 1 n ALA . 209 A 249 \nA 210 1 n LEU . 210 A 250 \nA 211 1 n GLU . 211 A 251 \nA 212 1 n LEU . 212 A 252 \nA 213 1 n ALA . 213 A 253 \nA 214 1 n PRO . 214 A 254 \nA 215 1 n LEU . 215 A 255 \nA 216 1 n GLN . 216 A 256 \nA 217 1 n ILE . 217 A 257 \nA 218 1 n ARG . 218 A 258 \nA 219 1 n VAL . 219 A 259 \nA 220 1 n ASN . 220 A 260 \nA 221 1 n GLY . 221 A 261 \nA 222 1 n VAL . 222 A 262 \nA 223 1 n GLY . 223 A 263 \nA 224 1 n PRO . 224 A 264 \nA 225 1 n GLY . 225 A 265 \nA 226 1 n LEU . 226 A 266 \nA 227 1 n SER . 227 A 267 \nA 228 1 n VAL . 228 A 268 \nA 229 1 n LEU . 229 A 269 \nA 230 1 n VAL . 230 A 270 \nA 231 1 n ASP . 231 A 271 \nA 232 1 n ASP . 232 A 272 \nA 233 1 n MET . 233 A 273 \nA 234 1 n PRO . 234 A 274 \nA 235 1 n PRO . 235 A 275 \nA 236 1 n ALA . 236 A 276 \nA 237 1 n VAL . 237 A 277 \nA 238 1 n TRP . 238 A 278 \nA 239 1 n GLU . 239 A 279 \nA 240 1 n GLY . 240 A 280 \nA 241 1 n HIS . 241 A 281 \nA 242 1 n ARG . 242 A 282 \nA 243 1 n SER . 243 A 283 \nA 244 1 n LYS . 244 A 284 \nA 245 1 n VAL . 245 A 285 \nA 246 1 n PRO . 246 A 286 \nA 247 1 n LEU . 247 A 287 \nA 248 1 n TYR . 248 A 288 \nA 249 1 n GLN . 249 A 289 \nA 250 1 n ARG . 250 A 290 \nA 251 1 n ASP . 251 A 291 \nA 252 1 n SER . 252 A 292 \nA 253 1 n SER . 253 A 293 \nA 254 1 n ALA . 254 A 294 \nA 255 1 n ALA . 255 A 295 \nA 256 1 n GLU . 256 A 296 \nA 257 1 n VAL . 257 A 297 \nA 258 1 n SER . 258 A 298 \nA 259 1 n ASP . 259 A 299 \nA 260 1 n VAL . 260 A 300 \nA 261 1 n VAL . 261 A 301 \nA 262 1 n ILE . 262 A 302 \nA 263 1 n PHE . 263 A 303 \nA 264 1 n LEU . 264 A 304 \nA 265 1 n CYS . 265 A 305 \nA 266 1 n SER . 266 A 306 \nA 267 1 n SER . 267 A 307 \nA 268 1 n LYS . 268 A 308 \nA 269 1 n ALA . 269 A 309 \nA 270 1 n LYS . 270 A 310 \nA 271 1 n TYR . 271 A 311 \nA 272 1 n ILE . 272 A 312 \nA 273 1 n THR . 273 A 313 \nA 274 1 n GLY . 274 A 314 \nA 275 1 n THR . 275 A 315 \nA 276 1 n CYS . 276 A 316 \nA 277 1 n VAL . 277 A 317 \nA 278 1 n LYS . 278 A 318 \nA 279 1 n VAL . 279 A 319 \nA 280 1 n ASP . 280 A 320 \nA 281 1 n GLY . 281 A 321 \nA 282 1 n GLY . 282 A 322 \nA 283 1 n TYR . 283 A 323 \nA 284 1 n SER . 284 A 324 \nA 285 1 n LEU . 285 A 325 \nA 286 1 n THR . 286 A 326 \nA 287 1 n ARG . 287 A 327 \nA 288 1 n ALA . 288 A 328 \n#\n_pdbx_struct_assembly.details author_and_software_defined_assembly\n_pdbx_struct_assembly.id 1\n_pdbx_struct_assembly.method_details PISA\n_pdbx_struct_assembly.oligomeric_count 4\n_pdbx_struct_assembly.oligomeric_details tetrameric\n#\n_pdbx_struct_assembly_gen.assembly_id 1\n_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F,G,H,I,J,K,L,M,N,O,P,Q,R\n_pdbx_struct_assembly_gen.oper_expression 1\n#\n_pdbx_struct_oper_list.id 1\n_pdbx_struct_oper_list.matrix[1][1] 1.0000000000\n_pdbx_struct_oper_list.matrix[1][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[1][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][2] 1.0000000000\n_pdbx_struct_oper_list.matrix[2][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][3] 1.0000000000\n_pdbx_struct_oper_list.name 1_555\n_pdbx_struct_oper_list.symmetry_operation x,y,z\n_pdbx_struct_oper_list.type \"identity operation\"\n_pdbx_struct_oper_list.vector[1] 0.0000000000\n_pdbx_struct_oper_list.vector[2] 0.0000000000\n_pdbx_struct_oper_list.vector[3] 0.0000000000\n#\n_refine.ls_d_res_high 2.61\n#\n_software.classification other\n_software.name \"DeepMind Structure Class\"\n_software.pdbx_ordinal 1\n_software.version 2.0.0\n#\n_struct_asym.entity_id 1\n_struct_asym.id A\n#\nloop_\n_atom_site.group_PDB\n_atom_site.id\n_atom_site.type_symbol\n_atom_site.label_atom_id\n_atom_site.label_alt_id\n_atom_site.label_comp_id\n_atom_site.label_asym_id\n_atom_site.label_entity_id\n_atom_site.label_seq_id\n_atom_site.pdbx_PDB_ins_code\n_atom_site.Cartn_x\n_atom_site.Cartn_y\n_atom_site.Cartn_z\n_atom_site.occupancy\n_atom_site.B_iso_or_equiv\n_atom_site.auth_seq_id\n_atom_site.auth_asym_id\n_atom_site.pdbx_PDB_model_num\nATOM 1 N N . THR A 1 45 ? 12.314 31.829 30.777 1.00 40.28 5 A 1 \nATOM 2 C CA . THR A 1 45 ? 11.479 30.857 31.552 1.00 40.64 5 A 1 \nATOM 3 C C . THR A 1 45 ? 10.750 31.467 32.791 1.00 38.01 5 A 1 \nATOM 4 O O . THR A 1 45 ? 11.076 32.568 33.259 1.00 39.58 5 A 1 \nATOM 5 C CB . THR A 1 45 ? 12.265 29.510 31.852 1.00 42.41 5 A 1 \nATOM 6 O OG1 . THR A 1 45 ? 11.554 28.706 32.804 1.00 43.52 5 A 1 \nATOM 7 C CG2 . THR A 1 45 ? 13.697 29.773 32.354 1.00 45.96 5 A 1 \nATOM 8 N N . VAL A 1 46 ? 9.752 30.727 33.271 1.00 30.38 6 A 1 \nATOM 9 C CA . VAL A 1 46 ? 8.767 31.095 34.297 1.00 28.25 6 A 1 \nATOM 10 C C . VAL A 1 46 ? 9.265 30.776 35.724 1.00 26.54 6 A 1 \nATOM 11 O O . VAL A 1 46 ? 9.715 29.649 35.989 1.00 26.74 6 A 1 \nATOM 12 C CB . VAL A 1 46 ? 7.457 30.291 34.007 1.00 28.20 6 A 1 \nATOM 13 C CG1 . VAL A 1 46 ? 6.489 30.319 35.163 1.00 27.88 6 A 1 \nATOM 14 C CG2 . VAL A 1 46 ? 6.785 30.787 32.738 1.00 28.18 6 A 1 \nATOM 15 N N . PRO A 1 47 ? 9.188 31.761 36.648 1.00 24.17 7 A 1 \nATOM 16 C CA . PRO A 1 47 ? 9.640 31.537 38.020 1.00 22.52 7 A 1 \nATOM 17 C C . PRO A 1 47 ? 8.691 30.663 38.851 1.00 21.34 7 A 1 \nATOM 18 O O . PRO A 1 47 ? 7.492 30.586 38.572 1.00 21.06 7 A 1 \nATOM 19 C CB . PRO A 1 47 ? 9.723 32.953 38.601 1.00 22.51 7 A 1 \nATOM 20 C CG . PRO A 1 47 ? 8.735 33.729 37.844 1.00 23.20 7 A 1 \nATOM 21 C CD . PRO A 1 47 ? 8.684 33.134 36.457 1.00 24.11 7 A 1 \nATOM 22 N N . VAL A 1 48 ? 9.248 30.021 39.874 1.00 19.61 8 A 1 \nATOM 23 C CA . VAL A 1 48 ? 8.528 29.039 40.680 1.00 17.90 8 A 1 \nATOM 24 C C . VAL A 1 48 ? 8.463 29.422 42.168 1.00 17.31 8 A 1 \nATOM 25 O O . VAL A 1 48 ? 9.473 29.796 42.785 1.00 16.59 8 A 1 \nATOM 26 C CB . VAL A 1 48 ? 9.150 27.624 40.507 1.00 17.46 8 A 1 \nATOM 27 C CG1 . VAL A 1 48 ? 8.609 26.638 41.549 1.00 15.95 8 A 1 \nATOM 28 C CG2 . VAL A 1 48 ? 8.898 27.117 39.111 1.00 17.10 8 A 1 \nATOM 29 N N . ALA A 1 49 ? 7.264 29.313 42.736 1.00 15.96 9 A 1 \nATOM 30 C CA . ALA A 1 49 ? 7.072 29.576 44.155 1.00 14.95 9 A 1 \nATOM 31 C C . ALA A 1 49 ? 6.582 28.331 44.871 1.00 14.75 9 A 1 \nATOM 32 O O . ALA A 1 49 ? 5.681 27.642 44.387 1.00 15.50 9 A 1 \nATOM 33 C CB . ALA A 1 49 ? 6.092 30.735 44.362 1.00 14.69 9 A 1 \nATOM 34 N N . LEU A 1 50 ? 7.185 28.041 46.017 1.00 14.08 10 A 1 \nATOM 35 C CA . LEU A 1 50 ? 6.682 27.008 46.905 1.00 13.48 10 A 1 \nATOM 36 C C . LEU A 1 50 ? 5.959 27.681 48.061 1.00 13.84 10 A 1 \nATOM 37 O O . LEU A 1 50 ? 6.549 28.489 48.783 1.00 14.64 10 A 1 \nATOM 38 C CB . LEU A 1 50 ? 7.823 26.127 47.418 1.00 13.22 10 A 1 \nATOM 39 C CG . LEU A 1 50 ? 7.521 25.133 48.545 1.00 12.78 10 A 1 \nATOM 40 C CD1 . LEU A 1 50 ? 6.466 24.138 48.119 1.00 12.27 10 A 1 \nATOM 41 C CD2 . LEU A 1 50 ? 8.788 24.413 48.972 1.00 12.16 10 A 1 \nATOM 42 N N . VAL A 1 51 ? 4.679 27.358 48.217 1.00 13.19 11 A 1 \nATOM 43 C CA . VAL A 1 51 ? 3.857 27.913 49.286 1.00 12.82 11 A 1 \nATOM 44 C C . VAL A 1 51 ? 3.384 26.769 50.165 1.00 13.05 11 A 1 \nATOM 45 O O . VAL A 1 51 ? 2.647 25.906 49.702 1.00 13.87 11 A 1 \nATOM 46 C CB . VAL A 1 51 ? 2.623 28.702 48.734 1.00 12.87 11 A 1 \nATOM 47 C CG1 . VAL A 1 51 ? 1.827 29.340 49.869 1.00 11.84 11 A 1 \nATOM 48 C CG2 . VAL A 1 51 ? 3.056 29.768 47.748 1.00 11.42 11 A 1 \nATOM 49 N N . THR A 1 52 ? 3.813 26.758 51.422 1.00 12.78 12 A 1 \nATOM 50 C CA . THR A 1 52 ? 3.382 25.739 52.370 1.00 12.63 12 A 1 \nATOM 51 C C . THR A 1 52 ? 2.023 26.104 52.969 1.00 13.07 12 A 1 \nATOM 52 O O . THR A 1 52 ? 1.733 27.279 53.182 1.00 12.08 12 A 1 \nATOM 53 C CB . THR A 1 52 ? 4.414 25.508 53.490 1.00 12.54 12 A 1 \nATOM 54 O OG1 . THR A 1 52 ? 4.493 26.665 54.328 1.00 12.82 12 A 1 \nATOM 55 C CG2 . THR A 1 52 ? 5.765 25.207 52.910 1.00 9.40 12 A 1 \nATOM 56 N N . GLY A 1 53 ? 1.197 25.086 53.229 1.00 13.63 13 A 1 \nATOM 57 C CA . GLY A 1 53 ? -0.172 25.287 53.729 1.00 14.37 13 A 1 \nATOM 58 C C . GLY A 1 53 ? -0.985 26.152 52.781 1.00 15.16 13 A 1 \nATOM 59 O O . GLY A 1 53 ? -1.644 27.108 53.204 1.00 15.10 13 A 1 \nATOM 60 N N . ALA A 1 54 ? -0.941 25.799 51.496 1.00 15.73 14 A 1 \nATOM 61 C CA . ALA A 1 54 ? -1.470 26.638 50.425 1.00 15.60 14 A 1 \nATOM 62 C C . ALA A 1 54 ? -2.948 26.401 50.092 1.00 15.80 14 A 1 \nATOM 63 O O . ALA A 1 54 ? -3.496 27.083 49.230 1.00 15.26 14 A 1 \nATOM 64 C CB . ALA A 1 54 ? -0.601 26.467 49.169 1.00 15.16 14 A 1 \nATOM 65 N N . ALA A 1 55 ? -3.590 25.446 50.770 1.00 16.41 15 A 1 \nATOM 66 C CA . ALA A 1 55 ? -4.926 24.979 50.363 1.00 16.99 15 A 1 \nATOM 67 C C . ALA A 1 55 ? -6.024 26.027 50.518 1.00 17.98 15 A 1 \nATOM 68 O O . ALA A 1 55 ? -6.868 26.196 49.635 1.00 18.10 15 A 1 \nATOM 69 C CB . ALA A 1 55 ? -5.301 23.704 51.093 1.00 15.93 15 A 1 \nATOM 70 N N . LYS A 1 56 ? -6.016 26.731 51.641 1.00 18.39 16 A 1 \nATOM 71 C CA . LYS A 1 56 ? -7.062 27.705 51.897 1.00 19.06 16 A 1 \nATOM 72 C C . LYS A 1 56 ? -6.577 28.968 52.595 1.00 18.89 16 A 1 \nATOM 73 O O . LYS A 1 56 ? -5.379 29.133 52.845 1.00 19.11 16 A 1 \nATOM 74 C CB . LYS A 1 56 ? -8.235 27.058 52.648 1.00 19.82 16 A 1 \nATOM 75 C CG . LYS A 1 56 ? -7.857 26.167 53.803 1.00 20.65 16 A 1 \nATOM 76 C CD . LYS A 1 56 ? -8.881 25.067 53.987 1.00 21.94 16 A 1 \nATOM 77 C CE . LYS A 1 56 ? -8.673 24.348 55.308 1.00 25.15 16 A 1 \nATOM 78 N NZ . LYS A 1 56 ? -9.590 23.184 55.443 1.00 28.09 16 A 1 \nATOM 79 N N . ARG A 1 57 ? -7.523 29.870 52.862 1.00 17.94 17 A 1 \nATOM 80 C CA . ARG A 1 57 ? -7.276 31.088 53.630 1.00 16.87 17 A 1 \nATOM 81 C C . ARG A 1 57 ? -6.060 31.866 53.101 1.00 17.18 17 A 1 \nATOM 82 O O . ARG A 1 57 ? -6.004 32.135 51.906 1.00 17.96 17 A 1 \nATOM 83 C CB . ARG A 1 57 ? -7.195 30.758 55.117 1.00 16.29 17 A 1 \nATOM 84 C CG . ARG A 1 57 ? -8.478 30.114 55.634 1.00 17.32 17 A 1 \nATOM 85 C CD . ARG A 1 57 ? -8.286 29.372 56.954 1.00 18.99 17 A 1 \nATOM 86 N NE . ARG A 1 57 ? -7.690 30.244 57.964 1.00 21.11 17 A 1 \nATOM 87 C CZ . ARG A 1 57 ? -8.354 31.185 58.625 1.00 21.43 17 A 1 \nATOM 88 N NH1 . ARG A 1 57 ? -9.651 31.380 58.411 1.00 19.47 17 A 1 \nATOM 89 N NH2 . ARG A 1 57 ? -7.716 31.928 59.509 1.00 22.20 17 A 1 \nATOM 90 N N . LEU A 1 58 ? -5.098 32.218 53.957 1.00 16.99 18 A 1 \nATOM 91 C CA . LEU A 1 58 ? -3.991 33.098 53.549 1.00 16.46 18 A 1 \nATOM 92 C C . LEU A 1 58 ? -3.034 32.445 52.555 1.00 16.05 18 A 1 \nATOM 93 O O . LEU A 1 58 ? -2.600 33.091 51.605 1.00 16.09 18 A 1 \nATOM 94 C CB . LEU A 1 58 ? -3.211 33.647 54.759 1.00 16.73 18 A 1 \nATOM 95 C CG . LEU A 1 58 ? -3.921 34.492 55.833 1.00 17.31 18 A 1 \nATOM 96 C CD1 . LEU A 1 58 ? -2.934 35.110 56.823 1.00 14.93 18 A 1 \nATOM 97 C CD2 . LEU A 1 58 ? -4.768 35.577 55.213 1.00 17.17 18 A 1 \nATOM 98 N N . GLY A 1 59 ? -2.708 31.171 52.775 1.00 15.95 19 A 1 \nATOM 99 C CA . GLY A 1 59 ? -1.838 30.418 51.863 1.00 15.39 19 A 1 \nATOM 100 C C . GLY A 1 59 ? -2.370 30.349 50.438 1.00 15.68 19 A 1 \nATOM 101 O O . GLY A 1 59 ? -1.613 30.510 49.472 1.00 15.69 19 A 1 \nATOM 102 N N . ARG A 1 60 ? -3.679 30.114 50.312 1.00 14.97 20 A 1 \nATOM 103 C CA . ARG A 1 60 ? -4.341 30.130 49.011 1.00 14.81 20 A 1 \nATOM 104 C C . ARG A 1 60 ? -4.233 31.500 48.346 1.00 14.86 20 A 1 \nATOM 105 O O . ARG A 1 60 ? -3.929 31.596 47.156 1.00 14.88 20 A 1 \nATOM 106 C CB . ARG A 1 60 ? -5.801 29.709 49.132 1.00 14.42 20 A 1 \nATOM 107 C CG . ARG A 1 60 ? -6.599 29.958 47.882 0.50 14.61 20 A 1 \nATOM 108 C CD . ARG A 1 60 ? -7.937 29.308 47.949 0.50 15.97 20 A 1 \nATOM 109 N NE . ARG A 1 60 ? -8.746 29.716 46.813 0.50 18.91 20 A 1 \nATOM 110 C CZ . ARG A 1 60 ? -10.005 29.350 46.613 0.50 18.80 20 A 1 \nATOM 111 N NH1 . ARG A 1 60 ? -10.624 28.548 47.473 0.50 17.40 20 A 1 \nATOM 112 N NH2 . ARG A 1 60 ? -10.647 29.794 45.545 0.50 18.20 20 A 1 \nATOM 113 N N . SER A 1 61 ? -4.480 32.548 49.126 1.00 14.19 21 A 1 \nATOM 114 C CA . SER A 1 61 ? -4.435 33.916 48.638 1.00 14.28 21 A 1 \nATOM 115 C C . SER A 1 61 ? -3.016 34.274 48.191 1.00 14.71 21 A 1 \nATOM 116 O O . SER A 1 61 ? -2.826 34.970 47.199 1.00 15.15 21 A 1 \nATOM 117 C CB . SER A 1 61 ? -4.925 34.872 49.726 1.00 14.26 21 A 1 \nATOM 118 O OG . SER A 1 61 ? -5.187 36.168 49.212 1.00 14.58 21 A 1 \nATOM 119 N N . ILE A 1 62 ? -2.023 33.785 48.925 1.00 14.69 22 A 1 \nATOM 120 C CA . ILE A 1 62 ? -0.629 33.969 48.555 1.00 14.87 22 A 1 \nATOM 121 C C . ILE A 1 62 ? -0.312 33.200 47.259 1.00 15.83 22 A 1 \nATOM 122 O O . ILE A 1 62 ? 0.301 33.756 46.337 1.00 15.89 22 A 1 \nATOM 123 C CB . ILE A 1 62 ? 0.312 33.554 49.711 1.00 14.78 22 A 1 \nATOM 124 C CG1 . ILE A 1 62 ? 0.175 34.536 50.878 1.00 14.52 22 A 1 \nATOM 125 C CG2 . ILE A 1 62 ? 1.772 33.452 49.239 1.00 13.31 22 A 1 \nATOM 126 C CD1 . ILE A 1 62 ? 0.721 34.021 52.192 1.00 14.61 22 A 1 \nATOM 127 N N . ALA A 1 63 ? -0.737 31.937 47.188 1.00 15.68 23 A 1 \nATOM 128 C CA . ALA A 1 63 ? -0.566 31.152 45.974 1.00 15.89 23 A 1 \nATOM 129 C C . ALA A 1 63 ? -1.219 31.836 44.764 1.00 16.52 23 A 1 \nATOM 130 O O . ALA A 1 63 ? -0.608 31.944 43.700 1.00 16.82 23 A 1 \nATOM 131 C CB . ALA A 1 63 ? -1.118 29.770 46.166 1.00 15.90 23 A 1 \nATOM 132 N N . GLU A 1 64 ? -2.452 32.306 44.940 1.00 16.43 24 A 1 \nATOM 133 C CA . GLU A 1 64 ? -3.185 32.984 43.878 1.00 16.72 24 A 1 \nATOM 134 C C . GLU A 1 64 ? -2.500 34.285 43.471 1.00 16.73 24 A 1 \nATOM 135 O O . GLU A 1 64 ? -2.378 34.582 42.282 1.00 16.76 24 A 1 \nATOM 136 C CB . GLU A 1 64 ? -4.631 33.259 44.301 1.00 16.87 24 A 1 \nATOM 137 C CG . GLU A 1 64 ? -5.530 32.041 44.279 1.00 18.72 24 A 1 \nATOM 138 C CD . GLU A 1 64 ? -6.871 32.257 44.978 1.00 22.10 24 A 1 \nATOM 139 O OE1 . GLU A 1 64 ? -7.016 33.210 45.771 1.00 21.17 24 A 1 \nATOM 140 O OE2 . GLU A 1 64 ? -7.794 31.452 44.746 1.00 25.16 24 A 1 \nATOM 141 N N . GLY A 1 65 ? -2.057 35.055 44.460 1.00 16.55 25 A 1 \nATOM 142 C CA . GLY A 1 65 ? -1.382 36.331 44.214 1.00 15.87 25 A 1 \nATOM 143 C C . GLY A 1 65 ? -0.106 36.152 43.414 1.00 16.40 25 A 1 \nATOM 144 O O . GLY A 1 65 ? 0.163 36.902 42.475 1.00 17.01 25 A 1 \nATOM 145 N N . LEU A 1 66 ? 0.680 35.145 43.778 1.00 16.34 26 A 1 \nATOM 146 C CA . LEU A 1 66 ? 1.921 34.845 43.076 1.00 16.33 26 A 1 \nATOM 147 C C . LEU A 1 66 ? 1.648 34.328 41.664 1.00 16.91 26 A 1 \nATOM 148 O O . LEU A 1 66 ? 2.339 34.692 40.709 1.00 17.17 26 A 1 \nATOM 149 C CB . LEU A 1 66 ? 2.758 33.840 43.875 1.00 15.57 26 A 1 \nATOM 150 C CG . LEU A 1 66 ? 3.452 34.410 45.116 1.00 15.01 26 A 1 \nATOM 151 C CD1 . LEU A 1 66 ? 3.969 33.291 46.028 1.00 11.11 26 A 1 \nATOM 152 C CD2 . LEU A 1 66 ? 4.570 35.380 44.727 1.00 12.21 26 A 1 \nATOM 153 N N . HIS A 1 67 ? 0.627 33.489 41.541 1.00 16.76 27 A 1 \nATOM 154 C CA . HIS A 1 67 ? 0.231 32.941 40.256 1.00 17.35 27 A 1 \nATOM 155 C C . HIS A 1 67 ? -0.195 34.056 39.305 1.00 17.45 27 A 1 \nATOM 156 O O . HIS A 1 67 ? 0.115 34.008 38.111 1.00 17.50 27 A 1 \nATOM 157 C CB . HIS A 1 67 ? -0.901 31.928 40.440 1.00 17.19 27 A 1 \nATOM 158 C CG . HIS A 1 67 ? -1.272 31.198 39.190 1.00 18.30 27 A 1 \nATOM 159 N ND1 . HIS A 1 67 ? -2.216 31.672 38.302 1.00 18.13 27 A 1 \nATOM 160 C CD2 . HIS A 1 67 ? -0.831 30.024 38.680 1.00 18.16 27 A 1 \nATOM 161 C CE1 . HIS A 1 67 ? -2.337 30.826 37.296 1.00 17.73 27 A 1 \nATOM 162 N NE2 . HIS A 1 67 ? -1.507 29.818 37.500 1.00 17.80 27 A 1 \nATOM 163 N N . ALA A 1 68 ? -0.881 35.061 39.850 1.00 16.82 28 A 1 \nATOM 164 C CA . ALA A 1 68 ? -1.379 36.203 39.070 1.00 17.00 28 A 1 \nATOM 165 C C . ALA A 1 68 ? -0.243 37.068 38.533 1.00 17.14 28 A 1 \nATOM 166 O O . ALA A 1 68 ? -0.437 37.851 37.595 1.00 17.32 28 A 1 \nATOM 167 C CB . ALA A 1 68 ? -2.353 37.057 39.903 1.00 16.28 28 A 1 \nATOM 168 N N . GLU A 1 69 ? 0.933 36.922 39.140 1.00 17.40 29 A 1 \nATOM 169 C CA . GLU A 1 69 ? 2.120 37.648 38.726 1.00 17.72 29 A 1 \nATOM 170 C C . GLU A 1 69 ? 2.949 36.815 37.742 1.00 18.30 29 A 1 \nATOM 171 O O . GLU A 1 69 ? 3.977 37.278 37.240 1.00 19.18 29 A 1 \nATOM 172 C CB . GLU A 1 69 ? 2.962 38.047 39.946 1.00 18.01 29 A 1 \nATOM 173 C CG . GLU A 1 69 ? 2.268 38.978 40.934 1.00 19.55 29 A 1 \nATOM 174 C CD . GLU A 1 69 ? 1.920 40.342 40.339 1.00 22.89 29 A 1 \nATOM 175 O OE1 . GLU A 1 69 ? 2.756 40.912 39.606 1.00 24.07 29 A 1 \nATOM 176 O OE2 . GLU A 1 69 ? 0.808 40.850 40.608 1.00 23.12 29 A 1 \nATOM 177 N N . GLY A 1 70 ? 2.508 35.589 37.468 1.00 17.66 30 A 1 \nATOM 178 C CA . GLY A 1 70 ? 3.155 34.759 36.461 1.00 16.93 30 A 1 \nATOM 179 C C . GLY A 1 70 ? 3.931 33.570 36.991 1.00 17.04 30 A 1 \nATOM 180 O O . GLY A 1 70 ? 4.470 32.799 36.212 1.00 17.78 30 A 1 \nATOM 181 N N . TYR A 1 71 ? 3.982 33.420 38.311 1.00 16.44 31 A 1 \nATOM 182 C CA . TYR A 1 71 ? 4.659 32.295 38.941 1.00 15.63 31 A 1 \nATOM 183 C C . TYR A 1 71 ? 3.941 30.983 38.699 1.00 15.71 31 A 1 \nATOM 184 O O . TYR A 1 71 ? 2.714 30.928 38.731 1.00 16.28 31 A 1 \nATOM 185 C CB . TYR A 1 71 ? 4.740 32.500 40.457 1.00 15.18 31 A 1 \nATOM 186 C CG . TYR A 1 71 ? 5.782 33.478 40.912 1.00 14.82 31 A 1 \nATOM 187 C CD1 . TYR A 1 71 ? 5.491 34.840 41.017 1.00 14.52 31 A 1 \nATOM 188 C CD2 . TYR A 1 71 ? 7.062 33.044 41.248 1.00 15.11 31 A 1 \nATOM 189 C CE1 . TYR A 1 71 ? 6.454 35.751 41.445 1.00 13.71 31 A 1 \nATOM 190 C CE2 . TYR A 1 71 ? 8.040 33.949 41.672 1.00 16.42 31 A 1 \nATOM 191 C CZ . TYR A 1 71 ? 7.724 35.296 41.771 1.00 14.96 31 A 1 \nATOM 192 O OH . TYR A 1 71 ? 8.679 36.176 42.198 1.00 14.94 31 A 1 \nATOM 193 N N . ALA A 1 72 ? 4.709 29.925 38.459 1.00 15.96 32 A 1 \nATOM 194 C CA . ALA A 1 72 ? 4.192 28.571 38.633 1.00 15.98 32 A 1 \nATOM 195 C C . ALA A 1 72 ? 4.250 28.309 40.131 1.00 16.59 32 A 1 \nATOM 196 O O . ALA A 1 72 ? 5.158 28.794 40.825 1.00 17.45 32 A 1 \nATOM 197 C CB . ALA A 1 72 ? 5.028 27.571 37.875 1.00 15.31 32 A 1 \nATOM 198 N N . VAL A 1 73 ? 3.279 27.573 40.652 1.00 16.58 33 A 1 \nATOM 199 C CA . VAL A 1 73 ? 3.169 27.457 42.103 1.00 16.97 33 A 1 \nATOM 200 C C . VAL A 1 73 ? 3.083 26.012 42.564 1.00 17.18 33 A 1 \nATOM 201 O O . VAL A 1 73 ? 2.244 25.256 42.091 1.00 18.17 33 A 1 \nATOM 202 C CB . VAL A 1 73 ? 1.970 28.262 42.654 1.00 17.03 33 A 1 \nATOM 203 C CG1 . VAL A 1 73 ? 1.921 28.157 44.158 1.00 19.44 33 A 1 \nATOM 204 C CG2 . VAL A 1 73 ? 2.066 29.728 42.254 1.00 16.05 33 A 1 \nATOM 205 N N . CYS A 1 74 ? 3.969 25.626 43.477 1.00 16.51 34 A 1 \nATOM 206 C CA . CYS A 1 74 ? 3.864 24.328 44.128 1.00 16.03 34 A 1 \nATOM 207 C C . CYS A 1 74 ? 3.055 24.473 45.418 1.00 16.28 34 A 1 \nATOM 208 O O . CYS A 1 74 ? 3.478 25.146 46.360 1.00 16.35 34 A 1 \nATOM 209 C CB . CYS A 1 74 ? 5.245 23.746 44.407 1.00 15.75 34 A 1 \nATOM 210 S SG . CYS A 1 74 ? 5.199 22.146 45.257 1.00 16.41 34 A 1 \nATOM 211 N N . LEU A 1 75 ? 1.883 23.844 45.438 1.00 16.02 35 A 1 \nATOM 212 C CA . LEU A 1 75 ? 0.933 24.001 46.532 1.00 15.32 35 A 1 \nATOM 213 C C . LEU A 1 75 ? 1.103 22.904 47.571 1.00 15.58 35 A 1 \nATOM 214 O O . LEU A 1 75 ? 0.700 21.772 47.337 1.00 16.31 35 A 1 \nATOM 215 C CB . LEU A 1 75 ? -0.499 23.986 45.994 1.00 14.11 35 A 1 \nATOM 216 C CG . LEU A 1 75 ? -0.845 24.948 44.858 1.00 13.96 35 A 1 \nATOM 217 C CD1 . LEU A 1 75 ? -2.129 24.530 44.160 1.00 11.80 35 A 1 \nATOM 218 C CD2 . LEU A 1 75 ? -0.963 26.357 45.376 1.00 12.48 35 A 1 \nATOM 219 N N . HIS A 1 76 ? 1.701 23.233 48.716 1.00 15.69 36 A 1 \nATOM 220 C CA . HIS A 1 76 ? 1.837 22.249 49.789 1.00 15.65 36 A 1 \nATOM 221 C C . HIS A 1 76 ? 0.553 22.156 50.613 1.00 16.40 36 A 1 \nATOM 222 O O . HIS A 1 76 ? -0.104 23.168 50.889 1.00 16.81 36 A 1 \nATOM 223 C CB . HIS A 1 76 ? 3.035 22.534 50.709 1.00 15.37 36 A 1 \nATOM 224 C CG . HIS A 1 76 ? 2.981 21.781 52.005 1.00 14.65 36 A 1 \nATOM 225 N ND1 . HIS A 1 76 ? 2.290 22.244 53.106 1.00 12.18 36 A 1 \nATOM 226 C CD2 . HIS A 1 76 ? 3.493 20.580 52.361 1.00 13.76 36 A 1 \nATOM 227 C CE1 . HIS A 1 76 ? 2.387 21.362 54.085 1.00 13.92 36 A 1 \nATOM 228 N NE2 . HIS A 1 76 ? 3.114 20.344 53.660 1.00 13.60 36 A 1 \nATOM 229 N N . TYR A 1 77 ? 0.212 20.934 51.010 1.00 16.15 37 A 1 \nATOM 230 C CA . TYR A 1 77 ? -0.896 20.703 51.918 1.00 17.21 37 A 1 \nATOM 231 C C . TYR A 1 77 ? -0.568 19.560 52.880 1.00 17.96 37 A 1 \nATOM 232 O O . TYR A 1 77 ? 0.314 18.736 52.608 1.00 17.97 37 A 1 \nATOM 233 C CB . TYR A 1 77 ? -2.166 20.384 51.131 1.00 17.64 37 A 1 \nATOM 234 C CG . TYR A 1 77 ? -2.148 19.035 50.448 1.00 18.01 37 A 1 \nATOM 235 C CD1 . TYR A 1 77 ? -2.692 17.909 51.067 1.00 17.40 37 A 1 \nATOM 236 C CD2 . TYR A 1 77 ? -1.590 18.885 49.175 1.00 18.19 37 A 1 \nATOM 237 C CE1 . TYR A 1 77 ? -2.673 16.669 50.438 1.00 18.01 37 A 1 \nATOM 238 C CE2 . TYR A 1 77 ? -1.571 17.652 48.540 1.00 18.66 37 A 1 \nATOM 239 C CZ . TYR A 1 77 ? -2.114 16.555 49.177 1.00 18.69 37 A 1 \nATOM 240 O OH . TYR A 1 77 ? -2.091 15.341 48.552 1.00 18.91 37 A 1 \nATOM 241 N N . HIS A 1 78 ? -1.271 19.522 54.006 1.00 18.17 38 A 1 \nATOM 242 C CA . HIS A 1 78 ? -1.139 18.418 54.935 1.00 18.79 38 A 1 \nATOM 243 C C . HIS A 1 78 ? -2.398 17.561 54.898 1.00 19.43 38 A 1 \nATOM 244 O O . HIS A 1 78 ? -2.353 16.425 54.427 1.00 19.65 38 A 1 \nATOM 245 C CB . HIS A 1 78 ? -0.843 18.911 56.350 1.00 18.66 38 A 1 \nATOM 246 C CG . HIS A 1 78 ? -0.649 17.807 57.344 1.00 18.51 38 A 1 \nATOM 247 N ND1 . HIS A 1 78 ? -0.984 17.937 58.676 1.00 18.10 38 A 1 \nATOM 248 C CD2 . HIS A 1 78 ? -0.174 16.545 57.196 1.00 18.20 38 A 1 \nATOM 249 C CE1 . HIS A 1 78 ? -0.711 16.809 59.307 1.00 17.96 38 A 1 \nATOM 250 N NE2 . HIS A 1 78 ? -0.220 15.947 58.432 1.00 19.64 38 A 1 \nATOM 251 N N . ARG A 1 79 ? -3.518 18.111 55.362 1.00 19.88 39 A 1 \nATOM 252 C CA . ARG A 1 79 ? -4.762 17.355 55.420 1.00 20.87 39 A 1 \nATOM 253 C C . ARG A 1 79 ? -5.782 17.782 54.371 1.00 21.24 39 A 1 \nATOM 254 O O . ARG A 1 79 ? -6.732 17.052 54.100 1.00 22.45 39 A 1 \nATOM 255 C CB . ARG A 1 79 ? -5.372 17.430 56.822 1.00 21.12 39 A 1 \nATOM 256 C CG . ARG A 1 79 ? -4.406 17.000 57.918 1.00 24.24 39 A 1 \nATOM 257 C CD . ARG A 1 79 ? -5.144 16.508 59.137 1.00 29.13 39 A 1 \nATOM 258 N NE . ARG A 1 79 ? -4.248 16.204 60.257 1.00 33.34 39 A 1 \nATOM 259 C CZ . ARG A 1 79 ? -3.490 15.110 60.359 1.00 34.87 39 A 1 \nATOM 260 N NH1 . ARG A 1 79 ? -3.488 14.186 59.406 1.00 34.36 39 A 1 \nATOM 261 N NH2 . ARG A 1 79 ? -2.729 14.932 61.429 1.00 35.12 39 A 1 \nATOM 262 N N . SER A 1 80 ? -5.579 18.949 53.771 1.00 20.53 40 A 1 \nATOM 263 C CA . SER A 1 80 ? -6.568 19.513 52.864 1.00 20.08 40 A 1 \nATOM 264 C C . SER A 1 80 ? -6.314 19.166 51.396 1.00 20.35 40 A 1 \nATOM 265 O O . SER A 1 80 ? -6.118 20.056 50.564 1.00 20.21 40 A 1 \nATOM 266 C CB . SER A 1 80 ? -6.639 21.025 53.061 1.00 19.92 40 A 1 \nATOM 267 O OG . SER A 1 80 ? -7.096 21.333 54.364 1.00 20.26 40 A 1 \nATOM 268 N N . ALA A 1 81 ? -6.329 17.872 51.087 1.00 19.95 41 A 1 \nATOM 269 C CA . ALA A 1 81 ? -6.108 17.388 49.721 1.00 20.02 41 A 1 \nATOM 270 C C . ALA A 1 81 ? -7.132 17.934 48.718 1.00 19.78 41 A 1 \nATOM 271 O O . ALA A 1 81 ? -6.765 18.443 47.654 1.00 20.06 41 A 1 \nATOM 272 C CB . ALA A 1 81 ? -6.087 15.863 49.693 1.00 19.65 41 A 1 \nATOM 273 N N . ALA A 1 82 ? -8.409 17.837 49.069 1.00 19.02 42 A 1 \nATOM 274 C CA . ALA A 1 82 ? -9.478 18.286 48.197 1.00 19.48 42 A 1 \nATOM 275 C C . ALA A 1 82 ? -9.300 19.749 47.792 1.00 19.96 42 A 1 \nATOM 276 O O . ALA A 1 82 ? -9.254 20.068 46.602 1.00 20.31 42 A 1 \nATOM 277 C CB . ALA A 1 82 ? -10.839 18.072 48.870 1.00 19.41 42 A 1 \nATOM 278 N N . GLU A 1 83 ? -9.192 20.622 48.794 1.00 20.30 43 A 1 \nATOM 279 C CA . GLU A 1 83 ? -9.045 22.068 48.596 1.00 20.23 43 A 1 \nATOM 280 C C . GLU A 1 83 ? -7.802 22.422 47.780 1.00 20.11 43 A 1 \nATOM 281 O O . GLU A 1 83 ? -7.860 23.263 46.886 1.00 20.46 43 A 1 \nATOM 282 C CB . GLU A 1 83 ? -8.996 22.804 49.937 1.00 20.11 43 A 1 \nATOM 283 C CG . GLU A 1 83 ? -10.294 22.793 50.726 1.00 21.74 43 A 1 \nATOM 284 C CD . GLU A 1 83 ? -10.450 21.575 51.651 1.00 27.10 43 A 1 \nATOM 285 O OE1 . GLU A 1 83 ? -9.671 20.597 51.549 1.00 25.61 43 A 1 \nATOM 286 O OE2 . GLU A 1 83 ? -11.376 21.597 52.488 1.00 31.15 43 A 1 \nATOM 287 N N . ALA A 1 84 ? -6.687 21.776 48.101 1.00 19.50 44 A 1 \nATOM 288 C CA . ALA A 1 84 ? -5.443 21.970 47.386 1.00 19.46 44 A 1 \nATOM 289 C C . ALA A 1 84 ? -5.584 21.572 45.919 1.00 19.41 44 A 1 \nATOM 290 O O . ALA A 1 84 ? -5.244 22.355 45.039 1.00 19.12 44 A 1 \nATOM 291 C CB . ALA A 1 84 ? -4.308 21.194 48.070 1.00 19.19 44 A 1 \nATOM 292 N N . ASN A 1 85 ? -6.103 20.369 45.664 1.00 19.68 45 A 1 \nATOM 293 C CA . ASN A 1 85 ? -6.324 19.890 44.290 1.00 19.83 45 A 1 \nATOM 294 C C . ASN A 1 85 ? -7.321 20.735 43.489 1.00 19.66 45 A 1 \nATOM 295 O O . ASN A 1 85 ? -7.165 20.912 42.286 1.00 20.45 45 A 1 \nATOM 296 C CB . ASN A 1 85 ? -6.732 18.419 44.282 1.00 19.47 45 A 1 \nATOM 297 C CG . ASN A 1 85 ? -5.616 17.507 44.750 1.00 20.41 45 A 1 \nATOM 298 O OD1 . ASN A 1 85 ? -4.445 17.724 44.438 1.00 20.14 45 A 1 \nATOM 299 N ND2 . ASN A 1 85 ? -5.975 16.474 45.498 1.00 20.30 45 A 1 \nATOM 300 N N . ALA A 1 86 ? -8.331 21.262 44.166 1.00 19.05 46 A 1 \nATOM 301 C CA . ALA A 1 86 ? -9.291 22.160 43.545 1.00 18.90 46 A 1 \nATOM 302 C C . ALA A 1 86 ? -8.623 23.473 43.143 1.00 19.47 46 A 1 \nATOM 303 O O . ALA A 1 86 ? -8.867 23.999 42.051 1.00 19.68 46 A 1 \nATOM 304 C CB . ALA A 1 86 ? -10.441 22.417 44.486 1.00 18.38 46 A 1 \nATOM 305 N N . LEU A 1 87 ? -7.776 23.997 44.027 1.00 19.22 47 A 1 \nATOM 306 C CA . LEU A 1 87 ? -7.002 25.202 43.728 1.00 19.13 47 A 1 \nATOM 307 C C . LEU A 1 87 ? -6.032 24.982 42.558 1.00 19.28 47 A 1 \nATOM 308 O O . LEU A 1 87 ? -5.905 25.846 41.693 1.00 19.95 47 A 1 \nATOM 309 C CB . LEU A 1 87 ? -6.258 25.697 44.973 1.00 18.41 47 A 1 \nATOM 310 C CG . LEU A 1 87 ? -5.292 26.877 44.831 1.00 18.20 47 A 1 \nATOM 311 C CD1 . LEU A 1 87 ? -5.957 28.150 44.274 1.00 16.23 47 A 1 \nATOM 312 C CD2 . LEU A 1 87 ? -4.632 27.161 46.161 1.00 18.45 47 A 1 \nATOM 313 N N . SER A 1 88 ? -5.369 23.827 42.537 1.00 18.64 48 A 1 \nATOM 314 C CA . SER A 1 88 ? -4.458 23.466 41.462 1.00 18.57 48 A 1 \nATOM 315 C C . SER A 1 88 ? -5.186 23.416 40.131 1.00 19.31 48 A 1 \nATOM 316 O O . SER A 1 88 ? -4.666 23.893 39.114 1.00 19.19 48 A 1 \nATOM 317 C CB . SER A 1 88 ? -3.795 22.119 41.745 1.00 18.38 48 A 1 \nATOM 318 O OG . SER A 1 88 ? -2.783 21.846 40.796 1.00 17.90 48 A 1 \nATOM 319 N N . ALA A 1 89 ? -6.392 22.845 40.156 1.00 19.29 49 A 1 \nATOM 320 C CA . ALA A 1 89 ? -7.248 22.741 38.979 1.00 18.95 49 A 1 \nATOM 321 C C . ALA A 1 89 ? -7.573 24.121 38.400 1.00 18.94 49 A 1 \nATOM 322 O O . ALA A 1 89 ? -7.418 24.345 37.201 1.00 19.19 49 A 1 \nATOM 323 C CB . ALA A 1 89 ? -8.523 21.967 39.309 1.00 18.45 49 A 1 \nATOM 324 N N . THR A 1 90 ? -8.006 25.040 39.258 1.00 19.17 50 A 1 \nATOM 325 C CA . THR A 1 90 ? -8.324 26.401 38.838 1.00 19.64 50 A 1 \nATOM 326 C C . THR A 1 90 ? -7.129 27.077 38.168 1.00 20.21 50 A 1 \nATOM 327 O O . THR A 1 90 ? -7.262 27.673 37.105 1.00 20.99 50 A 1 \nATOM 328 C CB . THR A 1 90 ? -8.785 27.262 40.034 1.00 20.03 50 A 1 \nATOM 329 O OG1 . THR A 1 90 ? -9.960 26.682 40.619 1.00 21.02 50 A 1 \nATOM 330 C CG2 . THR A 1 90 ? -9.079 28.700 39.603 1.00 19.06 50 A 1 \nATOM 331 N N . LEU A 1 91 ? -5.965 26.964 38.795 1.00 20.13 51 A 1 \nATOM 332 C CA . LEU A 1 91 ? -4.758 27.619 38.311 1.00 20.09 51 A 1 \nATOM 333 C C . LEU A 1 91 ? -4.236 27.010 37.005 1.00 20.59 51 A 1 \nATOM 334 O O . LEU A 1 91 ? -3.846 27.745 36.096 1.00 20.55 51 A 1 \nATOM 335 C CB . LEU A 1 91 ? -3.672 27.635 39.399 1.00 20.04 51 A 1 \nATOM 336 C CG . LEU A 1 91 ? -4.022 28.330 40.725 1.00 19.59 51 A 1 \nATOM 337 C CD1 . LEU A 1 91 ? -2.868 28.219 41.701 1.00 18.40 51 A 1 \nATOM 338 C CD2 . LEU A 1 91 ? -4.443 29.792 40.532 1.00 17.89 51 A 1 \nATOM 339 N N . ASN A 1 92 ? -4.253 25.677 36.910 1.00 20.44 52 A 1 \nATOM 340 C CA . ASN A 1 92 ? -3.887 24.976 35.669 1.00 20.37 52 A 1 \nATOM 341 C C . ASN A 1 92 ? -4.848 25.263 34.513 1.00 21.18 52 A 1 \nATOM 342 O O . ASN A 1 92 ? -4.443 25.270 33.350 1.00 21.67 52 A 1 \nATOM 343 C CB . ASN A 1 92 ? -3.736 23.473 35.895 1.00 19.57 52 A 1 \nATOM 344 C CG . ASN A 1 92 ? -2.481 23.128 36.680 1.00 20.09 52 A 1 \nATOM 345 O OD1 . ASN A 1 92 ? -1.366 23.518 36.308 1.00 18.13 52 A 1 \nATOM 346 N ND2 . ASN A 1 92 ? -2.656 22.398 37.780 1.00 17.94 52 A 1 \nATOM 347 N N . ALA A 1 93 ? -6.111 25.519 34.834 1.00 21.13 53 A 1 \nATOM 348 C CA . ALA A 1 93 ? -7.077 25.938 33.826 1.00 21.73 53 A 1 \nATOM 349 C C . ALA A 1 93 ? -6.763 27.320 33.249 1.00 22.18 53 A 1 \nATOM 350 O O . ALA A 1 93 ? -6.863 27.512 32.039 1.00 22.94 53 A 1 \nATOM 351 C CB . ALA A 1 93 ? -8.490 25.889 34.380 1.00 21.51 53 A 1 \nATOM 352 N N . ARG A 1 94 ? -6.385 28.270 34.108 1.00 22.67 54 A 1 \nATOM 353 C CA . ARG A 1 94 ? -6.001 29.619 33.667 1.00 23.52 54 A 1 \nATOM 354 C C . ARG A 1 94 ? -4.721 29.583 32.845 1.00 23.67 54 A 1 \nATOM 355 O O . ARG A 1 94 ? -4.589 30.303 31.849 1.00 23.82 54 A 1 \nATOM 356 C CB . ARG A 1 94 ? -5.786 30.560 34.854 1.00 23.72 54 A 1 \nATOM 357 C CG . ARG A 1 94 ? -7.044 30.997 35.555 1.00 27.03 54 A 1 \nATOM 358 C CD . ARG A 1 94 ? -6.744 31.929 36.727 1.00 29.71 54 A 1 \nATOM 359 N NE . ARG A 1 94 ? -7.882 31.996 37.643 1.00 32.93 54 A 1 \nATOM 360 C CZ . ARG A 1 94 ? -7.801 32.277 38.942 1.00 35.13 54 A 1 \nATOM 361 N NH1 . ARG A 1 94 ? -6.626 32.524 39.513 1.00 35.50 54 A 1 \nATOM 362 N NH2 . ARG A 1 94 ? -8.904 32.304 39.679 1.00 35.21 54 A 1 \nATOM 363 N N . ARG A 1 95 ? -3.786 28.734 33.278 1.00 22.92 55 A 1 \nATOM 364 C CA . ARG A 1 95 ? -2.470 28.651 32.676 1.00 22.30 55 A 1 \nATOM 365 C C . ARG A 1 95 ? -1.993 27.210 32.824 1.00 21.96 55 A 1 \nATOM 366 O O . ARG A 1 95 ? -1.696 26.772 33.929 1.00 22.87 55 A 1 \nATOM 367 C CB . ARG A 1 95 ? -1.531 29.643 33.367 1.00 21.52 55 A 1 \nATOM 368 C CG . ARG A 1 95 ? -0.281 29.958 32.598 1.00 23.83 55 A 1 \nATOM 369 C CD . ARG A 1 95 ? 0.323 31.305 32.986 1.00 24.65 55 A 1 \nATOM 370 N NE . ARG A 1 95 ? 0.965 31.275 34.303 1.00 25.98 55 A 1 \nATOM 371 C CZ . ARG A 1 95 ? 0.548 31.966 35.360 1.00 26.76 55 A 1 \nATOM 372 N NH1 . ARG A 1 95 ? -0.509 32.768 35.271 1.00 26.99 55 A 1 \nATOM 373 N NH2 . ARG A 1 95 ? 1.198 31.866 36.508 1.00 26.29 55 A 1 \nATOM 374 N N . PRO A 1 96 ? -1.964 26.447 31.715 1.00 22.00 56 A 1 \nATOM 375 C CA . PRO A 1 96 ? -1.555 25.039 31.793 1.00 21.32 56 A 1 \nATOM 376 C C . PRO A 1 96 ? -0.177 24.871 32.408 1.00 20.58 56 A 1 \nATOM 377 O O . PRO A 1 96 ? 0.716 25.681 32.143 1.00 20.59 56 A 1 \nATOM 378 C CB . PRO A 1 96 ? -1.544 24.604 30.331 1.00 21.20 56 A 1 \nATOM 379 C CG . PRO A 1 96 ? -2.542 25.514 29.679 1.00 21.35 56 A 1 \nATOM 380 C CD . PRO A 1 96 ? -2.341 26.832 30.342 1.00 21.44 56 A 1 \nATOM 381 N N . ASN A 1 97 ? -0.029 23.837 33.237 1.00 20.13 57 A 1 \nATOM 382 C CA . ASN A 1 97 ? 1.231 23.515 33.919 1.00 19.39 57 A 1 \nATOM 383 C C . ASN A 1 97 ? 1.788 24.653 34.787 1.00 18.97 57 A 1 \nATOM 384 O O . ASN A 1 97 ? 2.991 24.930 34.790 1.00 19.20 57 A 1 \nATOM 385 C CB . ASN A 1 97 ? 2.279 23.020 32.916 1.00 19.06 57 A 1 \nATOM 386 C CG . ASN A 1 97 ? 3.423 22.295 33.585 1.00 19.46 57 A 1 \nATOM 387 O OD1 . ASN A 1 97 ? 3.250 21.680 34.640 1.00 22.28 57 A 1 \nATOM 388 N ND2 . ASN A 1 97 ? 4.598 22.356 32.978 1.00 17.44 57 A 1 \nATOM 389 N N . SER A 1 98 ? 0.903 25.304 35.532 1.00 18.12 58 A 1 \nATOM 390 C CA . SER A 1 98 ? 1.305 26.393 36.425 1.00 17.27 58 A 1 \nATOM 391 C C . SER A 1 98 ? 1.054 26.084 37.910 1.00 17.05 58 A 1 \nATOM 392 O O . SER A 1 98 ? 1.245 26.942 38.768 1.00 17.36 58 A 1 \nATOM 393 C CB . SER A 1 98 ? 0.600 27.687 36.029 1.00 16.46 58 A 1 \nATOM 394 O OG . SER A 1 98 ? -0.787 27.562 36.244 0.75 15.58 58 A 1 \nATOM 395 N N . ALA A 1 99 ? 0.636 24.858 38.209 1.00 16.76 59 A 1 \nATOM 396 C CA . ALA A 1 99 ? 0.365 24.457 39.585 1.00 16.97 59 A 1 \nATOM 397 C C . ALA A 1 99 ? 0.529 22.959 39.799 1.00 17.58 59 A 1 \nATOM 398 O O . ALA A 1 99 ? 0.160 22.152 38.936 1.00 18.73 59 A 1 \nATOM 399 C CB . ALA A 1 99 ? -1.025 24.899 40.004 1.00 16.90 59 A 1 \nATOM 400 N N . ILE A 1 100 ? 1.104 22.596 40.943 1.00 17.65 60 A 1 \nATOM 401 C CA . ILE A 1 100 ? 1.159 21.209 41.397 1.00 18.23 60 A 1 \nATOM 402 C C . ILE A 1 100 ? 0.848 21.167 42.890 1.00 18.83 60 A 1 \nATOM 403 O O . ILE A 1 100 ? 0.876 22.202 43.559 1.00 18.89 60 A 1 \nATOM 404 C CB . ILE A 1 100 ? 2.528 20.510 41.101 1.00 18.32 60 A 1 \nATOM 405 C CG1 . ILE A 1 100 ? 3.689 21.219 41.809 1.00 17.37 60 A 1 \nATOM 406 C CG2 . ILE A 1 100 ? 2.779 20.385 39.596 1.00 17.41 60 A 1 \nATOM 407 C CD1 . ILE A 1 100 ? 4.957 20.390 41.887 1.00 16.11 60 A 1 \nATOM 408 N N . THR A 1 101 ? 0.538 19.981 43.407 1.00 19.07 61 A 1 \nATOM 409 C CA . THR A 1 101 ? 0.293 19.809 44.838 1.00 19.14 61 A 1 \nATOM 410 C C . THR A 1 101 ? 1.212 18.748 45.417 1.00 19.66 61 A 1 \nATOM 411 O O . THR A 1 101 ? 1.455 17.723 44.783 1.00 19.69 61 A 1 \nATOM 412 C CB . THR A 1 101 ? -1.166 19.408 45.152 1.00 19.17 61 A 1 \nATOM 413 O OG1 . THR A 1 101 ? -1.429 18.106 44.626 1.00 19.76 61 A 1 \nATOM 414 C CG2 . THR A 1 101 ? -2.156 20.407 44.567 1.00 18.93 61 A 1 \nATOM 415 N N . VAL A 1 102 ? 1.721 19.007 46.620 1.00 20.55 62 A 1 \nATOM 416 C CA . VAL A 1 102 ? 2.556 18.050 47.344 1.00 20.94 62 A 1 \nATOM 417 C C . VAL A 1 102 ? 2.070 17.943 48.792 1.00 20.83 62 A 1 \nATOM 418 O O . VAL A 1 102 ? 1.705 18.945 49.411 1.00 21.23 62 A 1 \nATOM 419 C CB . VAL A 1 102 ? 4.054 18.432 47.315 1.00 21.04 62 A 1 \nATOM 420 C CG1 . VAL A 1 102 ? 4.901 17.273 47.806 1.00 22.92 62 A 1 \nATOM 421 C CG2 . VAL A 1 102 ? 4.498 18.785 45.916 1.00 21.55 62 A 1 \nATOM 422 N N . GLN A 1 103 ? 2.053 16.720 49.311 1.00 20.51 63 A 1 \nATOM 423 C CA . GLN A 1 103 ? 1.556 16.454 50.647 1.00 20.15 63 A 1 \nATOM 424 C C . GLN A 1 103 ? 2.748 16.275 51.564 1.00 20.14 63 A 1 \nATOM 425 O O . GLN A 1 103 ? 3.710 15.586 51.202 1.00 20.84 63 A 1 \nATOM 426 C CB . GLN A 1 103 ? 0.690 15.192 50.646 1.00 20.25 63 A 1 \nATOM 427 C CG . GLN A 1 103 ? -0.146 14.955 51.901 1.00 21.30 63 A 1 \nATOM 428 C CD . GLN A 1 103 ? 0.672 14.459 53.068 1.00 23.92 63 A 1 \nATOM 429 O OE1 . GLN A 1 103 ? 1.606 13.676 52.896 1.00 26.11 63 A 1 \nATOM 430 N NE2 . GLN A 1 103 ? 0.336 14.921 54.266 1.00 23.31 63 A 1 \nATOM 431 N N . ALA A 1 104 ? 2.689 16.898 52.744 1.00 19.27 64 A 1 \nATOM 432 C CA . ALA A 1 104 ? 3.706 16.697 53.778 1.00 18.63 64 A 1 \nATOM 433 C C . ALA A 1 104 ? 3.238 17.125 55.159 1.00 18.60 64 A 1 \nATOM 434 O O . ALA A 1 104 ? 2.639 18.193 55.323 1.00 17.79 64 A 1 \nATOM 435 C CB . ALA A 1 104 ? 5.006 17.414 53.419 1.00 18.39 64 A 1 \nATOM 436 N N . ASP A 1 105 ? 3.513 16.269 56.140 1.00 18.64 65 A 1 \nATOM 437 C CA . ASP A 1 105 ? 3.359 16.613 57.540 1.00 18.86 65 A 1 \nATOM 438 C C . ASP A 1 105 ? 4.631 17.347 57.954 1.00 18.71 65 A 1 \nATOM 439 O O . ASP A 1 105 ? 5.724 16.782 57.896 1.00 17.91 65 A 1 \nATOM 440 C CB . ASP A 1 105 ? 3.156 15.354 58.385 1.00 18.94 65 A 1 \nATOM 441 C CG . ASP A 1 105 ? 2.907 15.660 59.852 1.00 19.50 65 A 1 \nATOM 442 O OD1 . ASP A 1 105 ? 2.859 16.845 60.231 1.00 20.56 65 A 1 \nATOM 443 O OD2 . ASP A 1 105 ? 2.754 14.705 60.636 1.00 23.31 65 A 1 \nATOM 444 N N . LEU A 1 106 ? 4.478 18.607 58.356 1.00 18.26 66 A 1 \nATOM 445 C CA . LEU A 1 106 ? 5.612 19.463 58.676 1.00 18.24 66 A 1 \nATOM 446 C C . LEU A 1 106 ? 5.872 19.505 60.167 1.00 18.68 66 A 1 \nATOM 447 O O . LEU A 1 106 ? 6.684 20.294 60.644 1.00 18.69 66 A 1 \nATOM 448 C CB . LEU A 1 106 ? 5.423 20.873 58.101 1.00 17.69 66 A 1 \nATOM 449 C CG . LEU A 1 106 ? 5.375 20.962 56.564 1.00 17.50 66 A 1 \nATOM 450 C CD1 . LEU A 1 106 ? 5.138 22.383 56.092 1.00 16.48 66 A 1 \nATOM 451 C CD2 . LEU A 1 106 ? 6.635 20.371 55.912 1.00 16.16 66 A 1 \nATOM 452 N N . SER A 1 107 ? 5.184 18.632 60.893 1.00 19.54 67 A 1 \nATOM 453 C CA . SER A 1 107 ? 5.432 18.424 62.306 1.00 20.79 67 A 1 \nATOM 454 C C . SER A 1 107 ? 6.798 17.762 62.510 1.00 21.09 67 A 1 \nATOM 455 O O . SER A 1 107 ? 7.242 16.990 61.662 1.00 21.25 67 A 1 \nATOM 456 C CB . SER A 1 107 ? 4.319 17.565 62.891 1.00 20.66 67 A 1 \nATOM 457 O OG . SER A 1 107 ? 4.640 17.164 64.206 1.00 24.85 67 A 1 \nATOM 458 N N . ASN A 1 108 ? 7.460 18.073 63.627 1.00 21.65 68 A 1 \nATOM 459 C CA . ASN A 1 108 ? 8.812 17.574 63.913 1.00 22.20 68 A 1 \nATOM 460 C C . ASN A 1 108 ? 8.819 16.104 64.358 1.00 23.02 68 A 1 \nATOM 461 O O . ASN A 1 108 ? 9.225 15.760 65.476 1.00 22.62 68 A 1 \nATOM 462 C CB . ASN A 1 108 ? 9.531 18.483 64.929 1.00 21.99 68 A 1 \nATOM 463 C CG . ASN A 1 108 ? 11.035 18.163 65.061 1.00 22.23 68 A 1 \nATOM 464 O OD1 . ASN A 1 108 ? 11.676 17.681 64.122 1.00 21.94 68 A 1 \nATOM 465 N ND2 . ASN A 1 108 ? 11.591 18.437 66.231 1.00 21.33 68 A 1 \nATOM 466 N N . VAL A 1 109 ? 8.357 15.243 63.462 1.00 23.93 69 A 1 \nATOM 467 C CA . VAL A 1 109 ? 8.262 13.816 63.730 1.00 25.54 69 A 1 \nATOM 468 C C . VAL A 1 109 ? 8.786 13.029 62.544 1.00 26.61 69 A 1 \nATOM 469 O O . VAL A 1 109 ? 8.784 13.521 61.417 1.00 26.41 69 A 1 \nATOM 470 C CB . VAL A 1 109 ? 6.796 13.372 64.015 1.00 25.35 69 A 1 \nATOM 471 C CG1 . VAL A 1 109 ? 6.330 13.855 65.394 1.00 25.75 69 A 1 \nATOM 472 C CG2 . VAL A 1 109 ? 5.851 13.848 62.911 1.00 24.31 69 A 1 \nATOM 473 N N . ALA A 1 110 ? 9.234 11.806 62.806 1.00 28.42 70 A 1 \nATOM 474 C CA . ALA A 1 110 ? 9.500 10.845 61.744 1.00 29.91 70 A 1 \nATOM 475 C C . ALA A 1 110 ? 8.179 10.271 61.217 1.00 31.47 70 A 1 \nATOM 476 O O . ALA A 1 110 ? 7.224 10.077 61.975 1.00 31.80 70 A 1 \nATOM 477 C CB . ALA A 1 110 ? 10.395 9.746 62.249 1.00 29.20 70 A 1 \nATOM 478 N N . THR A 1 111 ? 8.119 10.023 59.914 1.00 33.26 71 A 1 \nATOM 479 C CA . THR A 1 111 ? 6.957 9.379 59.309 1.00 35.47 71 A 1 \nATOM 480 C C . THR A 1 111 ? 7.319 8.009 58.730 1.00 37.59 71 A 1 \nATOM 481 O O . THR A 1 111 ? 8.501 7.666 58.617 1.00 37.67 71 A 1 \nATOM 482 C CB . THR A 1 111 ? 6.310 10.260 58.209 1.00 35.26 71 A 1 \nATOM 483 O OG1 . THR A 1 111 ? 7.312 10.700 57.284 1.00 34.62 71 A 1 \nATOM 484 C CG2 . THR A 1 111 ? 5.611 11.461 58.820 1.00 34.04 71 A 1 \nATOM 485 N N . ALA A 1 112 ? 6.291 7.236 58.371 1.00 40.37 72 A 1 \nATOM 486 C CA . ALA A 1 112 ? 6.460 5.917 57.744 1.00 42.27 72 A 1 \nATOM 487 C C . ALA A 1 112 ? 6.935 6.055 56.296 1.00 43.60 72 A 1 \nATOM 488 O O . ALA A 1 112 ? 6.465 6.947 55.578 1.00 43.97 72 A 1 \nATOM 489 C CB . ALA A 1 112 ? 5.146 5.131 57.795 1.00 42.07 72 A 1 \nATOM 490 N N . PRO A 1 113 ? 7.877 5.186 55.865 1.00 44.87 73 A 1 \nATOM 491 C CA . PRO A 1 113 ? 8.300 5.133 54.449 1.00 45.32 73 A 1 \nATOM 492 C C . PRO A 1 113 ? 7.233 4.517 53.542 1.00 45.60 73 A 1 \nATOM 493 O O . PRO A 1 113 ? 6.396 5.238 52.990 1.00 45.81 73 A 1 \nATOM 494 C CB . PRO A 1 113 ? 9.536 4.229 54.485 1.00 45.40 73 A 1 \nATOM 495 C CG . PRO A 1 113 ? 9.318 3.351 55.692 1.00 45.98 73 A 1 \nATOM 496 C CD . PRO A 1 113 ? 8.618 4.220 56.703 1.00 45.09 73 A 1 \nATOM 497 N N . ALA A 1 121 ? 13.548 2.395 56.738 1.00 40.92 81 A 1 \nATOM 498 C CA . ALA A 1 121 ? 13.793 3.421 57.752 1.00 40.33 81 A 1 \nATOM 499 C C . ALA A 1 121 ? 12.672 4.473 57.789 1.00 39.46 81 A 1 \nATOM 500 O O . ALA A 1 121 ? 12.028 4.723 56.758 1.00 39.71 81 A 1 \nATOM 501 C CB . ALA A 1 121 ? 15.155 4.093 57.506 1.00 40.63 81 A 1 \nATOM 502 N N . PRO A 1 122 ? 12.437 5.096 58.971 1.00 37.87 82 A 1 \nATOM 503 C CA . PRO A 1 122 ? 11.434 6.163 59.037 1.00 36.36 82 A 1 \nATOM 504 C C . PRO A 1 122 ? 11.946 7.420 58.334 1.00 34.54 82 A 1 \nATOM 505 O O . PRO A 1 122 ? 13.159 7.638 58.268 1.00 35.02 82 A 1 \nATOM 506 C CB . PRO A 1 122 ? 11.270 6.419 60.548 1.00 36.46 82 A 1 \nATOM 507 C CG . PRO A 1 122 ? 12.034 5.335 61.247 1.00 37.00 82 A 1 \nATOM 508 C CD . PRO A 1 122 ? 13.077 4.871 60.281 1.00 37.80 82 A 1 \nATOM 509 N N . VAL A 1 123 ? 11.036 8.228 57.803 1.00 32.02 83 A 1 \nATOM 510 C CA . VAL A 1 123 ? 11.418 9.446 57.099 1.00 29.96 83 A 1 \nATOM 511 C C . VAL A 1 123 ? 11.369 10.652 58.036 1.00 29.12 83 A 1 \nATOM 512 O O . VAL A 1 123 ? 10.345 10.936 58.652 1.00 28.80 83 A 1 \nATOM 513 C CB . VAL A 1 123 ? 10.522 9.685 55.861 1.00 30.04 83 A 1 \nATOM 514 C CG1 . VAL A 1 123 ? 10.997 10.896 55.072 1.00 28.57 83 A 1 \nATOM 515 C CG2 . VAL A 1 123 ? 10.501 8.446 54.969 1.00 29.37 83 A 1 \nATOM 516 N N . THR A 1 124 ? 12.486 11.359 58.142 1.00 27.88 84 A 1 \nATOM 517 C CA . THR A 1 124 ? 12.573 12.520 59.030 1.00 27.59 84 A 1 \nATOM 518 C C . THR A 1 124 ? 11.957 13.776 58.420 1.00 26.51 84 A 1 \nATOM 519 O O . THR A 1 124 ? 11.748 13.847 57.213 1.00 26.28 84 A 1 \nATOM 520 C CB . THR A 1 124 ? 14.027 12.825 59.425 1.00 27.63 84 A 1 \nATOM 521 O OG1 . THR A 1 124 ? 14.748 13.311 58.283 1.00 28.30 84 A 1 \nATOM 522 C CG2 . THR A 1 124 ? 14.702 11.572 59.996 1.00 28.34 84 A 1 \nATOM 523 N N . LEU A 1 125 ? 11.678 14.766 59.267 1.00 25.37 85 A 1 \nATOM 524 C CA . LEU A 1 125 ? 11.112 16.039 58.823 1.00 23.95 85 A 1 \nATOM 525 C C . LEU A 1 125 ? 12.031 16.731 57.822 1.00 23.87 85 A 1 \nATOM 526 O O . LEU A 1 125 ? 11.574 17.275 56.819 1.00 23.69 85 A 1 \nATOM 527 C CB . LEU A 1 125 ? 10.826 16.964 60.011 1.00 23.46 85 A 1 \nATOM 528 C CG . LEU A 1 125 ? 10.459 18.419 59.679 1.00 22.31 85 A 1 \nATOM 529 C CD1 . LEU A 1 125 ? 9.152 18.515 58.893 1.00 20.29 85 A 1 \nATOM 530 C CD2 . LEU A 1 125 ? 10.397 19.256 60.946 1.00 20.63 85 A 1 \nATOM 531 N N . PHE A 1 126 ? 13.327 16.705 58.101 1.00 23.79 86 A 1 \nATOM 532 C CA . PHE A 1 126 ? 14.296 17.301 57.207 1.00 24.51 86 A 1 \nATOM 533 C C . PHE A 1 126 ? 14.169 16.740 55.791 1.00 24.32 86 A 1 \nATOM 534 O O . PHE A 1 126 ? 14.058 17.503 54.829 1.00 24.08 86 A 1 \nATOM 535 C CB . PHE A 1 126 ? 15.725 17.130 57.729 1.00 26.01 86 A 1 \nATOM 536 C CG . PHE A 1 126 ? 16.765 17.415 56.695 1.00 28.60 86 A 1 \nATOM 537 C CD1 . PHE A 1 126 ? 16.934 18.715 56.200 1.00 31.90 86 A 1 \nATOM 538 C CD2 . PHE A 1 126 ? 17.550 16.385 56.178 1.00 30.62 86 A 1 \nATOM 539 C CE1 . PHE A 1 126 ? 17.887 19.000 55.211 1.00 33.63 86 A 1 \nATOM 540 C CE2 . PHE A 1 126 ? 18.511 16.647 55.188 1.00 32.73 86 A 1 \nATOM 541 C CZ . PHE A 1 126 ? 18.681 17.965 54.704 1.00 33.16 86 A 1 \nATOM 542 N N . THR A 1 127 ? 14.187 15.409 55.679 1.00 23.82 87 A 1 \nATOM 543 C CA . THR A 1 127 ? 14.007 14.721 54.403 1.00 22.79 87 A 1 \nATOM 544 C C . THR A 1 127 ? 12.725 15.176 53.707 1.00 22.02 87 A 1 \nATOM 545 O O . THR A 1 127 ? 12.753 15.542 52.527 1.00 21.43 87 A 1 \nATOM 546 C CB . THR A 1 127 ? 14.008 13.193 54.583 1.00 23.44 87 A 1 \nATOM 547 O OG1 . THR A 1 127 ? 15.206 12.796 55.264 1.00 24.64 87 A 1 \nATOM 548 C CG2 . THR A 1 127 ? 13.941 12.488 53.232 1.00 23.17 87 A 1 \nATOM 549 N N . ARG A 1 128 ? 11.614 15.177 54.447 1.00 20.84 88 A 1 \nATOM 550 C CA . ARG A 1 128 ? 10.326 15.616 53.908 1.00 20.45 88 A 1 \nATOM 551 C C . ARG A 1 128 ? 10.373 17.054 53.394 1.00 20.63 88 A 1 \nATOM 552 O O . ARG A 1 128 ? 9.761 17.367 52.371 1.00 20.88 88 A 1 \nATOM 553 C CB . ARG A 1 128 ? 9.200 15.441 54.929 1.00 20.26 88 A 1 \nATOM 554 C CG . ARG A 1 128 ? 8.864 13.987 55.238 1.00 18.85 88 A 1 \nATOM 555 C CD . ARG A 1 128 ? 7.486 13.813 55.891 1.00 18.81 88 A 1 \nATOM 556 N NE . ARG A 1 128 ? 7.284 14.662 57.067 1.00 19.08 88 A 1 \nATOM 557 C CZ . ARG A 1 128 ? 7.749 14.410 58.288 1.00 18.55 88 A 1 \nATOM 558 N NH1 . ARG A 1 128 ? 8.464 13.327 58.525 1.00 19.78 88 A 1 \nATOM 559 N NH2 . ARG A 1 128 ? 7.499 15.257 59.275 1.00 17.62 88 A 1 \nATOM 560 N N . CYS A 1 129 ? 11.108 17.917 54.097 1.00 20.44 89 A 1 \nATOM 561 C CA . CYS A 1 129 ? 11.286 19.306 53.665 1.00 20.51 89 A 1 \nATOM 562 C C . CYS A 1 129 ? 12.130 19.415 52.391 1.00 20.67 89 A 1 \nATOM 563 O O . CYS A 1 129 ? 11.808 20.185 51.484 1.00 20.55 89 A 1 \nATOM 564 C CB . CYS A 1 129 ? 11.908 20.143 54.778 1.00 20.28 89 A 1 \nATOM 565 S SG . CYS A 1 129 ? 10.787 20.504 56.107 1.00 19.09 89 A 1 \nATOM 566 N N . ALA A 1 130 ? 13.200 18.633 52.332 1.00 21.05 90 A 1 \nATOM 567 C CA . ALA A 1 130 ? 14.069 18.597 51.163 1.00 21.88 90 A 1 \nATOM 568 C C . ALA A 1 130 ? 13.312 18.147 49.912 1.00 22.12 90 A 1 \nATOM 569 O O . ALA A 1 130 ? 13.551 18.665 48.816 1.00 22.41 90 A 1 \nATOM 570 C CB . ALA A 1 130 ? 15.258 17.690 51.416 1.00 21.80 90 A 1 \nATOM 571 N N . GLU A 1 131 ? 12.396 17.195 50.084 1.00 21.88 91 A 1 \nATOM 572 C CA . GLU A 1 131 ? 11.614 16.688 48.962 1.00 22.39 91 A 1 \nATOM 573 C C . GLU A 1 131 ? 10.570 17.696 48.450 1.00 22.12 91 A 1 \nATOM 574 O O . GLU A 1 131 ? 10.220 17.676 47.267 1.00 22.35 91 A 1 \nATOM 575 C CB . GLU A 1 131 ? 10.919 15.369 49.352 0.50 20.98 91 A 1 \nATOM 576 C CG . GLU A 1 131 ? 11.872 14.272 49.847 0.50 18.84 91 A 1 \nATOM 577 C CD . GLU A 1 131 ? 11.195 12.929 50.133 0.50 17.36 91 A 1 \nATOM 578 O OE1 . GLU A 1 131 ? 10.157 12.888 50.841 0.50 12.93 91 A 1 \nATOM 579 O OE2 . GLU A 1 131 ? 11.731 11.904 49.660 0.50 13.61 91 A 1 \nATOM 580 N N . LEU A 1 132 ? 10.100 18.582 49.326 1.00 21.68 92 A 1 \nATOM 581 C CA . LEU A 1 132 ? 9.238 19.683 48.901 1.00 21.22 92 A 1 \nATOM 582 C C . LEU A 1 132 ? 9.974 20.625 47.943 1.00 20.46 92 A 1 \nATOM 583 O O . LEU A 1 132 ? 9.443 21.012 46.903 1.00 21.00 92 A 1 \nATOM 584 C CB . LEU A 1 132 ? 8.709 20.471 50.101 1.00 21.23 92 A 1 \nATOM 585 C CG . LEU A 1 132 ? 7.536 19.913 50.892 1.00 21.74 92 A 1 \nATOM 586 C CD1 . LEU A 1 132 ? 7.136 20.905 51.967 1.00 21.33 92 A 1 \nATOM 587 C CD2 . LEU A 1 132 ? 6.368 19.639 49.970 1.00 23.23 92 A 1 \nATOM 588 N N . VAL A 1 133 ? 11.197 20.992 48.297 1.00 19.48 93 A 1 \nATOM 589 C CA . VAL A 1 133 ? 11.985 21.852 47.435 1.00 19.34 93 A 1 \nATOM 590 C C . VAL A 1 133 ? 12.351 21.084 46.165 1.00 19.65 93 A 1 \nATOM 591 O O . VAL A 1 133 ? 12.219 21.612 45.058 1.00 20.33 93 A 1 \nATOM 592 C CB . VAL A 1 133 ? 13.228 22.426 48.155 1.00 18.87 93 A 1 \nATOM 593 C CG1 . VAL A 1 133 ? 14.047 23.303 47.210 1.00 17.04 93 A 1 \nATOM 594 C CG2 . VAL A 1 133 ? 12.800 23.228 49.386 1.00 18.00 93 A 1 \nATOM 595 N N . ALA A 1 134 ? 12.760 19.828 46.328 1.00 18.81 94 A 1 \nATOM 596 C CA . ALA A 1 134 ? 13.089 18.972 45.193 1.00 18.57 94 A 1 \nATOM 597 C C . ALA A 1 134 ? 11.961 18.861 44.159 1.00 18.62 94 A 1 \nATOM 598 O O . ALA A 1 134 ? 12.221 18.853 42.950 1.00 18.96 94 A 1 \nATOM 599 C CB . ALA A 1 134 ? 13.522 17.596 45.672 1.00 18.18 94 A 1 \nATOM 600 N N . ALA A 1 135 ? 10.720 18.783 44.638 1.00 18.43 95 A 1 \nATOM 601 C CA . ALA A 1 135 ? 9.552 18.649 43.768 1.00 18.38 95 A 1 \nATOM 602 C C . ALA A 1 135 ? 9.447 19.812 42.785 1.00 18.91 95 A 1 \nATOM 603 O O . ALA A 1 135 ? 8.995 19.640 41.650 1.00 19.01 95 A 1 \nATOM 604 C CB . ALA A 1 135 ? 8.272 18.521 44.593 1.00 17.80 95 A 1 \nATOM 605 N N . CYS A 1 136 ? 9.863 20.993 43.231 1.00 19.06 96 A 1 \nATOM 606 C CA . CYS A 1 136 ? 9.895 22.167 42.369 1.00 19.21 96 A 1 \nATOM 607 C C . CYS A 1 136 ? 10.950 22.011 41.280 1.00 19.95 96 A 1 \nATOM 608 O O . CYS A 1 136 ? 10.700 22.316 40.108 1.00 20.84 96 A 1 \nATOM 609 C CB . CYS A 1 136 ? 10.175 23.427 43.185 1.00 18.90 96 A 1 \nATOM 610 S SG . CYS A 1 136 ? 8.835 23.895 44.265 1.00 18.81 96 A 1 \nATOM 611 N N . TYR A 1 137 ? 12.126 21.525 41.669 1.00 19.82 97 A 1 \nATOM 612 C CA . TYR A 1 137 ? 13.220 21.320 40.724 1.00 20.16 97 A 1 \nATOM 613 C C . TYR A 1 137 ? 12.935 20.196 39.721 1.00 20.57 97 A 1 \nATOM 614 O O . TYR A 1 137 ? 13.188 20.348 38.527 1.00 20.70 97 A 1 \nATOM 615 C CB . TYR A 1 137 ? 14.539 21.107 41.470 1.00 19.50 97 A 1 \nATOM 616 C CG . TYR A 1 137 ? 15.124 22.405 41.961 1.00 19.89 97 A 1 \nATOM 617 C CD1 . TYR A 1 137 ? 14.772 22.932 43.207 1.00 19.26 97 A 1 \nATOM 618 C CD2 . TYR A 1 137 ? 16.006 23.130 41.162 1.00 18.70 97 A 1 \nATOM 619 C CE1 . TYR A 1 137 ? 15.306 24.149 43.644 1.00 18.76 97 A 1 \nATOM 620 C CE2 . TYR A 1 137 ? 16.545 24.333 41.590 1.00 18.71 97 A 1 \nATOM 621 C CZ . TYR A 1 137 ? 16.196 24.838 42.824 1.00 19.16 97 A 1 \nATOM 622 O OH . TYR A 1 137 ? 16.742 26.033 43.219 1.00 19.35 97 A 1 \nATOM 623 N N . THR A 1 138 ? 12.388 19.086 40.213 1.00 20.30 98 A 1 \nATOM 624 C CA . THR A 1 138 ? 11.994 17.971 39.358 1.00 20.53 98 A 1 \nATOM 625 C C . THR A 1 138 ? 10.959 18.400 38.309 1.00 21.12 98 A 1 \nATOM 626 O O . THR A 1 138 ? 11.079 18.049 37.139 1.00 21.94 98 A 1 \nATOM 627 C CB . THR A 1 138 ? 11.450 16.775 40.187 1.00 20.97 98 A 1 \nATOM 628 O OG1 . THR A 1 138 ? 12.468 16.302 41.075 1.00 21.62 98 A 1 \nATOM 629 C CG2 . THR A 1 138 ? 11.017 15.629 39.287 1.00 20.46 98 A 1 \nATOM 630 N N . HIS A 1 139 ? 9.957 19.167 38.721 1.00 20.73 99 A 1 \nATOM 631 C CA . HIS A 1 139 ? 8.878 19.521 37.814 1.00 20.21 99 A 1 \nATOM 632 C C . HIS A 1 139 ? 9.170 20.696 36.900 1.00 20.56 99 A 1 \nATOM 633 O O . HIS A 1 139 ? 8.764 20.686 35.736 1.00 20.47 99 A 1 \nATOM 634 C CB . HIS A 1 139 ? 7.582 19.791 38.566 1.00 20.22 99 A 1 \nATOM 635 C CG . HIS A 1 139 ? 6.375 19.739 37.684 1.00 21.32 99 A 1 \nATOM 636 N ND1 . HIS A 1 139 ? 5.642 18.587 37.496 1.00 21.49 99 A 1 \nATOM 637 C CD2 . HIS A 1 139 ? 5.798 20.686 36.905 1.00 21.15 99 A 1 \nATOM 638 C CE1 . HIS A 1 139 ? 4.656 18.830 36.650 1.00 21.53 99 A 1 \nATOM 639 N NE2 . HIS A 1 139 ? 4.730 20.095 36.275 1.00 21.15 99 A 1 \nATOM 640 N N . TRP A 1 140 ? 9.861 21.706 37.426 1.00 20.39 100 A 1 \nATOM 641 C CA . TRP A 1 140 ? 10.055 22.966 36.702 1.00 19.75 100 A 1 \nATOM 642 C C . TRP A 1 140 ? 11.523 23.424 36.581 1.00 19.76 100 A 1 \nATOM 643 O O . TRP A 1 140 ? 11.813 24.439 35.939 1.00 19.61 100 A 1 \nATOM 644 C CB . TRP A 1 140 ? 9.234 24.069 37.362 1.00 19.29 100 A 1 \nATOM 645 C CG . TRP A 1 140 ? 7.759 24.032 37.103 1.00 19.82 100 A 1 \nATOM 646 C CD1 . TRP A 1 140 ? 7.133 24.067 35.889 1.00 19.63 100 A 1 \nATOM 647 C CD2 . TRP A 1 140 ? 6.716 24.013 38.088 1.00 20.32 100 A 1 \nATOM 648 N NE1 . TRP A 1 140 ? 5.765 24.048 36.054 1.00 19.12 100 A 1 \nATOM 649 C CE2 . TRP A 1 140 ? 5.483 24.020 37.393 1.00 19.64 100 A 1 \nATOM 650 C CE3 . TRP A 1 140 ? 6.702 23.990 39.492 1.00 19.33 100 A 1 \nATOM 651 C CZ2 . TRP A 1 140 ? 4.255 24.006 38.049 1.00 19.69 100 A 1 \nATOM 652 C CZ3 . TRP A 1 140 ? 5.477 23.975 40.145 1.00 19.04 100 A 1 \nATOM 653 C CH2 . TRP A 1 140 ? 4.270 23.984 39.425 1.00 19.60 100 A 1 \nATOM 654 N N . GLY A 1 141 ? 12.438 22.694 37.207 1.00 19.27 101 A 1 \nATOM 655 C CA . GLY A 1 141 ? 13.852 23.010 37.099 1.00 19.16 101 A 1 \nATOM 656 C C . GLY A 1 141 ? 14.324 24.178 37.943 1.00 19.08 101 A 1 \nATOM 657 O O . GLY A 1 141 ? 15.472 24.603 37.814 1.00 19.17 101 A 1 \nATOM 658 N N . ARG A 1 142 ? 13.460 24.692 38.816 1.00 18.77 102 A 1 \nATOM 659 C CA . ARG A 1 142 ? 13.809 25.854 39.639 1.00 18.62 102 A 1 \nATOM 660 C C . ARG A 1 142 ? 12.892 26.040 40.839 1.00 18.38 102 A 1 \nATOM 661 O O . ARG A 1 142 ? 11.809 25.456 40.898 1.00 18.55 102 A 1 \nATOM 662 C CB . ARG A 1 142 ? 13.821 27.136 38.789 1.00 18.36 102 A 1 \nATOM 663 C CG . ARG A 1 142 ? 12.528 27.419 38.043 1.00 19.13 102 A 1 \nATOM 664 C CD . ARG A 1 142 ? 12.733 28.489 36.991 1.00 20.55 102 A 1 \nATOM 665 N NE . ARG A 1 142 ? 13.219 29.735 37.582 1.00 24.21 102 A 1 \nATOM 666 C CZ . ARG A 1 142 ? 13.543 30.824 36.892 1.00 25.31 102 A 1 \nATOM 667 N NH1 . ARG A 1 142 ? 13.441 30.832 35.568 1.00 28.49 102 A 1 \nATOM 668 N NH2 . ARG A 1 142 ? 13.969 31.909 37.528 1.00 26.62 102 A 1 \nATOM 669 N N . CYS A 1 143 ? 13.350 26.845 41.794 1.00 17.37 103 A 1 \nATOM 670 C CA . CYS A 1 143 ? 12.525 27.305 42.904 1.00 17.13 103 A 1 \nATOM 671 C C . CYS A 1 143 ? 12.996 28.702 43.322 1.00 16.86 103 A 1 \nATOM 672 O O . CYS A 1 143 ? 14.063 28.858 43.913 1.00 17.18 103 A 1 \nATOM 673 C CB . CYS A 1 143 ? 12.585 26.316 44.071 1.00 17.27 103 A 1 \nATOM 674 S SG . CYS A 1 143 ? 11.482 26.701 45.434 1.00 16.98 103 A 1 \nATOM 675 N N . ASP A 1 144 ? 12.201 29.711 43.003 1.00 16.51 104 A 1 \nATOM 676 C CA . ASP A 1 144 ? 12.609 31.104 43.184 1.00 16.65 104 A 1 \nATOM 677 C C . ASP A 1 144 ? 12.100 31.738 44.474 1.00 16.58 104 A 1 \nATOM 678 O O . ASP A 1 144 ? 12.764 32.601 45.055 1.00 17.64 104 A 1 \nATOM 679 C CB . ASP A 1 144 ? 12.139 31.936 41.992 1.00 16.68 104 A 1 \nATOM 680 C CG . ASP A 1 144 ? 12.687 31.423 40.672 1.00 17.79 104 A 1 \nATOM 681 O OD1 . ASP A 1 144 ? 13.834 31.773 40.310 1.00 20.65 104 A 1 \nATOM 682 O OD2 . ASP A 1 144 ? 11.973 30.663 39.997 1.00 16.39 104 A 1 \nATOM 683 N N . VAL A 1 145 ? 10.914 31.316 44.905 1.00 16.09 105 A 1 \nATOM 684 C CA . VAL A 1 145 ? 10.255 31.881 46.073 1.00 14.76 105 A 1 \nATOM 685 C C . VAL A 1 145 ? 9.821 30.767 47.012 1.00 14.76 105 A 1 \nATOM 686 O O . VAL A 1 145 ? 9.311 29.742 46.562 1.00 14.65 105 A 1 \nATOM 687 C CB . VAL A 1 145 ? 9.036 32.753 45.664 1.00 14.41 105 A 1 \nATOM 688 C CG1 . VAL A 1 145 ? 8.133 33.045 46.852 1.00 13.06 105 A 1 \nATOM 689 C CG2 . VAL A 1 145 ? 9.499 34.055 45.031 1.00 13.50 105 A 1 \nATOM 690 N N . LEU A 1 146 ? 10.056 30.965 48.309 1.00 14.30 106 A 1 \nATOM 691 C CA . LEU A 1 146 ? 9.537 30.074 49.345 1.00 14.04 106 A 1 \nATOM 692 C C . LEU A 1 146 ? 8.719 30.884 50.324 1.00 14.11 106 A 1 \nATOM 693 O O . LEU A 1 146 ? 9.209 31.871 50.871 1.00 14.84 106 A 1 \nATOM 694 C CB . LEU A 1 146 ? 10.670 29.358 50.084 1.00 13.98 106 A 1 \nATOM 695 C CG . LEU A 1 146 ? 10.380 28.650 51.421 1.00 13.98 106 A 1 \nATOM 696 C CD1 . LEU A 1 146 ? 9.349 27.521 51.278 1.00 13.19 106 A 1 \nATOM 697 C CD2 . LEU A 1 146 ? 11.676 28.121 52.040 1.00 13.32 106 A 1 \nATOM 698 N N . VAL A 1 147 ? 7.468 30.483 50.525 1.00 13.52 107 A 1 \nATOM 699 C CA . VAL A 1 147 ? 6.620 31.123 51.525 1.00 13.09 107 A 1 \nATOM 700 C C . VAL A 1 147 ? 6.299 30.118 52.624 1.00 13.30 107 A 1 \nATOM 701 O O . VAL A 1 147 ? 5.568 29.148 52.413 1.00 13.12 107 A 1 \nATOM 702 C CB . VAL A 1 147 ? 5.322 31.724 50.927 1.00 13.37 107 A 1 \nATOM 703 C CG1 . VAL A 1 147 ? 4.483 32.379 52.023 1.00 12.17 107 A 1 \nATOM 704 C CG2 . VAL A 1 147 ? 5.649 32.743 49.827 1.00 11.90 107 A 1 \nATOM 705 N N . ASN A 1 148 ? 6.890 30.344 53.789 1.00 13.53 108 A 1 \nATOM 706 C CA . ASN A 1 148 ? 6.628 29.525 54.958 1.00 13.50 108 A 1 \nATOM 707 C C . ASN A 1 148 ? 5.356 30.012 55.603 1.00 13.57 108 A 1 \nATOM 708 O O . ASN A 1 148 ? 5.373 30.938 56.422 1.00 14.13 108 A 1 \nATOM 709 C CB . ASN A 1 148 ? 7.794 29.590 55.938 1.00 13.60 108 A 1 \nATOM 710 C CG . ASN A 1 148 ? 8.991 28.796 55.463 1.00 14.16 108 A 1 \nATOM 711 O OD1 . ASN A 1 148 ? 8.893 27.598 55.199 1.00 13.54 108 A 1 \nATOM 712 N ND2 . ASN A 1 148 ? 10.132 29.455 55.366 1.00 14.10 108 A 1 \nATOM 713 N N . ASN A 1 149 ? 4.248 29.394 55.196 1.00 13.50 109 A 1 \nATOM 714 C CA . ASN A 1 149 ? 2.918 29.816 55.607 1.00 12.89 109 A 1 \nATOM 715 C C . ASN A 1 149 ? 2.249 28.803 56.518 1.00 12.99 109 A 1 \nATOM 716 O O . ASN A 1 149 ? 1.555 29.189 57.448 1.00 13.05 109 A 1 \nATOM 717 C CB . ASN A 1 149 ? 2.047 30.098 54.385 1.00 12.51 109 A 1 \nATOM 718 C CG . ASN A 1 149 ? 0.623 30.456 54.753 1.00 13.30 109 A 1 \nATOM 719 O OD1 . ASN A 1 149 ? 0.350 31.572 55.186 1.00 13.63 109 A 1 \nATOM 720 N ND2 . ASN A 1 149 ? -0.297 29.503 54.590 1.00 10.77 109 A 1 \nATOM 721 N N . ALA A 1 150 ? 2.457 27.513 56.245 1.00 13.18 110 A 1 \nATOM 722 C CA . ALA A 1 150 ? 1.861 26.430 57.042 1.00 13.38 110 A 1 \nATOM 723 C C . ALA A 1 150 ? 2.149 26.616 58.530 1.00 13.92 110 A 1 \nATOM 724 O O . ALA A 1 150 ? 3.282 26.911 58.927 1.00 14.06 110 A 1 \nATOM 725 C CB . ALA A 1 150 ? 2.357 25.070 56.569 1.00 13.39 110 A 1 \nATOM 726 N N . SER A 1 151 ? 1.117 26.442 59.349 1.00 14.04 111 A 1 \nATOM 727 C CA . SER A 1 151 ? 1.214 26.758 60.758 1.00 14.03 111 A 1 \nATOM 728 C C . SER A 1 151 ? 0.065 26.162 61.546 1.00 14.47 111 A 1 \nATOM 729 O O . SER A 1 151 ? -1.107 26.427 61.249 1.00 15.67 111 A 1 \nATOM 730 C CB . SER A 1 151 ? 1.207 28.280 60.925 1.00 14.09 111 A 1 \nATOM 731 O OG . SER A 1 151 ? 1.041 28.665 62.272 1.00 14.43 111 A 1 \nATOM 732 N N . SER A 1 152 ? 0.390 25.367 62.559 1.00 14.87 112 A 1 \nATOM 733 C CA . SER A 1 152 ? -0.632 24.952 63.523 1.00 14.87 112 A 1 \nATOM 734 C C . SER A 1 152 ? -0.759 26.000 64.635 1.00 15.10 112 A 1 \nATOM 735 O O . SER A 1 152 ? 0.180 26.766 64.906 1.00 14.89 112 A 1 \nATOM 736 C CB . SER A 1 152 ? -0.373 23.544 64.067 1.00 14.66 112 A 1 \nATOM 737 O OG . SER A 1 152 ? 0.951 23.393 64.526 1.00 16.57 112 A 1 \nATOM 738 N N . PHE A 1 153 ? -1.931 26.047 65.260 1.00 15.22 113 A 1 \nATOM 739 C CA . PHE A 1 153 ? -2.281 27.141 66.160 1.00 15.32 113 A 1 \nATOM 740 C C . PHE A 1 153 ? -3.383 26.693 67.102 1.00 16.28 113 A 1 \nATOM 741 O O . PHE A 1 153 ? -4.538 26.560 66.700 1.00 16.89 113 A 1 \nATOM 742 C CB . PHE A 1 153 ? -2.723 28.351 65.329 1.00 14.83 113 A 1 \nATOM 743 C CG . PHE A 1 153 ? -3.317 29.489 66.122 1.00 13.49 113 A 1 \nATOM 744 C CD1 . PHE A 1 153 ? -2.507 30.350 66.862 1.00 12.11 113 A 1 \nATOM 745 C CD2 . PHE A 1 153 ? -4.692 29.738 66.073 1.00 11.89 113 A 1 \nATOM 746 C CE1 . PHE A 1 153 ? -3.057 31.408 67.570 1.00 12.18 113 A 1 \nATOM 747 C CE2 . PHE A 1 153 ? -5.251 30.791 66.776 1.00 11.76 113 A 1 \nATOM 748 C CZ . PHE A 1 153 ? -4.438 31.628 67.529 1.00 12.63 113 A 1 \nATOM 749 N N . TYR A 1 154 ? -3.008 26.438 68.354 1.00 16.42 114 A 1 \nATOM 750 C CA . TYR A 1 154 ? -3.957 26.037 69.405 1.00 16.49 114 A 1 \nATOM 751 C C . TYR A 1 154 ? -3.304 26.195 70.769 1.00 16.12 114 A 1 \nATOM 752 O O . TYR A 1 154 ? -2.082 26.282 70.860 1.00 15.23 114 A 1 \nATOM 753 C CB . TYR A 1 154 ? -4.486 24.598 69.201 1.00 15.93 114 A 1 \nATOM 754 C CG . TYR A 1 154 ? -3.433 23.551 68.888 1.00 15.51 114 A 1 \nATOM 755 C CD1 . TYR A 1 154 ? -2.696 22.941 69.908 1.00 13.86 114 A 1 \nATOM 756 C CD2 . TYR A 1 154 ? -3.183 23.162 67.568 1.00 14.04 114 A 1 \nATOM 757 C CE1 . TYR A 1 154 ? -1.736 21.982 69.622 1.00 13.75 114 A 1 \nATOM 758 C CE2 . TYR A 1 154 ? -2.236 22.196 67.274 1.00 13.80 114 A 1 \nATOM 759 C CZ . TYR A 1 154 ? -1.523 21.615 68.302 1.00 15.18 114 A 1 \nATOM 760 O OH . TYR A 1 154 ? -0.586 20.673 68.002 1.00 16.43 114 A 1 \nATOM 761 N N . PRO A 1 155 ? -4.125 26.257 71.833 1.00 16.76 115 A 1 \nATOM 762 C CA . PRO A 1 155 ? -3.626 26.456 73.190 1.00 16.67 115 A 1 \nATOM 763 C C . PRO A 1 155 ? -2.672 25.374 73.673 1.00 16.86 115 A 1 \nATOM 764 O O . PRO A 1 155 ? -2.892 24.200 73.411 1.00 16.78 115 A 1 \nATOM 765 C CB . PRO A 1 155 ? -4.906 26.431 74.037 1.00 16.56 115 A 1 \nATOM 766 C CG . PRO A 1 155 ? -5.982 26.788 73.113 1.00 15.59 115 A 1 \nATOM 767 C CD . PRO A 1 155 ? -5.595 26.175 71.813 1.00 16.29 115 A 1 \nATOM 768 N N . THR A 1 156 ? -1.607 25.800 74.345 1.00 17.40 116 A 1 \nATOM 769 C CA . THR A 1 156 ? -0.764 24.926 75.161 1.00 17.78 116 A 1 \nATOM 770 C C . THR A 1 156 ? -0.603 25.601 76.530 1.00 18.92 116 A 1 \nATOM 771 O O . THR A 1 156 ? 0.420 26.237 76.800 1.00 18.34 116 A 1 \nATOM 772 C CB . THR A 1 156 ? 0.608 24.701 74.538 1.00 17.35 116 A 1 \nATOM 773 O OG1 . THR A 1 156 ? 1.199 25.970 74.212 1.00 17.56 116 A 1 \nATOM 774 C CG2 . THR A 1 156 ? 0.489 23.839 73.292 1.00 16.86 116 A 1 \nATOM 775 N N . PRO A 1 157 ? -1.626 25.467 77.396 1.00 20.20 117 A 1 \nATOM 776 C CA . PRO A 1 157 ? -1.689 26.247 78.628 1.00 21.37 117 A 1 \nATOM 777 C C . PRO A 1 157 ? -0.591 25.844 79.593 1.00 22.41 117 A 1 \nATOM 778 O O . PRO A 1 157 ? -0.216 24.675 79.637 1.00 22.90 117 A 1 \nATOM 779 C CB . PRO A 1 157 ? -3.063 25.880 79.215 1.00 21.08 117 A 1 \nATOM 780 C CG . PRO A 1 157 ? -3.807 25.210 78.124 1.00 20.53 117 A 1 \nATOM 781 C CD . PRO A 1 157 ? -2.774 24.553 77.277 1.00 20.09 117 A 1 \nATOM 782 N N . LEU A 1 158 ? -0.075 26.813 80.342 1.00 23.90 118 A 1 \nATOM 783 C CA . LEU A 1 158 ? 0.899 26.542 81.398 1.00 25.47 118 A 1 \nATOM 784 C C . LEU A 1 158 ? 0.191 26.063 82.661 1.00 27.15 118 A 1 \nATOM 785 O O . LEU A 1 158 ? 0.765 25.335 83.460 1.00 27.62 118 A 1 \nATOM 786 C CB . LEU A 1 158 ? 1.730 27.788 81.705 1.00 24.71 118 A 1 \nATOM 787 C CG . LEU A 1 158 ? 2.696 28.267 80.620 1.00 24.14 118 A 1 \nATOM 788 C CD1 . LEU A 1 158 ? 3.178 29.688 80.914 1.00 23.49 118 A 1 \nATOM 789 C CD2 . LEU A 1 158 ? 3.877 27.322 80.487 1.00 22.72 118 A 1 \nATOM 790 N N . LEU A 1 159 ? -1.064 26.475 82.817 1.00 29.19 119 A 1 \nATOM 791 C CA . LEU A 1 159 ? -1.881 26.119 83.971 1.00 31.33 119 A 1 \nATOM 792 C C . LEU A 1 159 ? -3.111 25.309 83.557 1.00 33.87 119 A 1 \nATOM 793 O O . LEU A 1 159 ? -3.774 25.637 82.560 1.00 34.36 119 A 1 \nATOM 794 C CB . LEU A 1 159 ? -2.321 27.385 84.712 1.00 30.60 119 A 1 \nATOM 795 C CG . LEU A 1 159 ? -1.221 28.241 85.334 1.00 29.87 119 A 1 \nATOM 796 C CD1 . LEU A 1 159 ? -1.800 29.560 85.833 1.00 27.81 119 A 1 \nATOM 797 C CD2 . LEU A 1 159 ? -0.484 27.483 86.446 1.00 27.93 119 A 1 \nATOM 798 N N . ARG A 1 160 ? -3.413 24.264 84.334 1.00 35.86 120 A 1 \nATOM 799 C CA . ARG A 1 160 ? -4.581 23.388 84.104 1.00 37.93 120 A 1 \nATOM 800 C C . ARG A 1 160 ? -5.944 24.105 84.195 1.00 38.47 120 A 1 \nATOM 801 O O . ARG A 1 160 ? -6.276 24.729 85.208 1.00 39.14 120 A 1 \nATOM 802 C CB . ARG A 1 160 ? -4.558 22.164 85.042 1.00 38.22 120 A 1 \nATOM 803 C CG . ARG A 1 160 ? -3.760 22.351 86.338 1.00 40.31 120 A 1 \nATOM 804 C CD . ARG A 1 160 ? -4.471 21.785 87.580 1.00 43.84 120 A 1 \nATOM 805 N NE . ARG A 1 160 ? -4.864 20.377 87.454 1.00 46.16 120 A 1 \nATOM 806 C CZ . ARG A 1 160 ? -6.127 19.950 87.374 1.00 47.91 120 A 1 \nATOM 807 N NH1 . ARG A 1 160 ? -7.137 20.817 87.407 1.00 47.98 120 A 1 \nATOM 808 N NH2 . ARG A 1 160 ? -6.385 18.651 87.262 1.00 48.29 120 A 1 \nATOM 809 N N . GLU A 1 174 ? -0.317 11.527 75.839 1.00 53.48 134 A 1 \nATOM 810 C CA . GLU A 1 174 ? 0.425 11.847 74.618 1.00 55.23 134 A 1 \nATOM 811 C C . GLU A 1 174 ? -0.079 13.129 73.925 1.00 56.03 134 A 1 \nATOM 812 O O . GLU A 1 174 ? 0.176 13.344 72.729 1.00 56.49 134 A 1 \nATOM 813 C CB . GLU A 1 174 ? 0.423 10.654 73.640 1.00 55.25 134 A 1 \nATOM 814 C CG . GLU A 1 174 ? -0.950 10.282 73.067 0.20 53.41 134 A 1 \nATOM 815 C CD . GLU A 1 174 ? -0.868 9.335 71.879 0.20 51.93 134 A 1 \nATOM 816 O OE1 . GLU A 1 174 ? -1.798 8.519 71.709 0.20 50.66 134 A 1 \nATOM 817 O OE2 . GLU A 1 174 ? 0.118 9.405 71.114 0.20 50.61 134 A 1 \nATOM 818 N N . ALA A 1 175 ? -0.783 13.978 74.678 1.00 55.09 135 A 1 \nATOM 819 C CA . ALA A 1 175 ? -1.304 15.248 74.142 1.00 53.97 135 A 1 \nATOM 820 C C . ALA A 1 175 ? -0.107 16.114 73.724 1.00 53.42 135 A 1 \nATOM 821 O O . ALA A 1 175 ? -0.178 16.754 72.674 1.00 53.61 135 A 1 \nATOM 822 C CB . ALA A 1 175 ? -2.264 15.916 75.091 1.00 54.13 135 A 1 \nATOM 823 N N . MET A 1 176 ? 0.931 16.290 74.550 1.00 52.12 136 A 1 \nATOM 824 C CA . MET A 1 176 ? 1.312 17.592 75.058 1.00 51.81 136 A 1 \nATOM 825 C C . MET A 1 176 ? 2.471 17.917 74.068 1.00 49.83 136 A 1 \nATOM 826 O O . MET A 1 176 ? 3.139 18.953 74.196 1.00 50.15 136 A 1 \nATOM 827 C CB . MET A 1 176 ? 1.658 17.728 76.546 1.00 51.77 136 A 1 \nATOM 828 C CG . MET A 1 176 ? 2.917 17.069 77.025 0.20 52.96 136 A 1 \nATOM 829 S SD . MET A 1 176 ? 3.272 17.553 78.729 0.20 55.57 136 A 1 \nATOM 830 C CE . MET A 1 176 ? 1.800 16.977 79.588 0.20 54.48 136 A 1 \nATOM 831 N N . GLU A 1 177 ? 2.803 17.016 73.128 1.00 46.70 137 A 1 \nATOM 832 C CA . GLU A 1 177 ? 4.016 16.210 73.050 1.00 44.03 137 A 1 \nATOM 833 C C . GLU A 1 177 ? 4.323 15.965 71.557 1.00 41.87 137 A 1 \nATOM 834 O O . GLU A 1 177 ? 5.303 16.522 71.039 1.00 40.92 137 A 1 \nATOM 835 C CB . GLU A 1 177 ? 4.117 14.878 73.830 1.00 44.89 137 A 1 \nATOM 836 C CG . GLU A 1 177 ? 5.604 14.361 73.965 0.20 46.71 137 A 1 \nATOM 837 C CD . GLU A 1 177 ? 6.191 14.563 75.358 0.20 50.10 137 A 1 \nATOM 838 O OE1 . GLU A 1 177 ? 5.809 13.807 76.275 0.20 51.06 137 A 1 \nATOM 839 O OE2 . GLU A 1 177 ? 7.037 15.464 75.540 0.20 51.61 137 A 1 \nATOM 840 N N . THR A 1 178 ? 3.462 15.292 70.782 1.00 39.22 138 A 1 \nATOM 841 C CA . THR A 1 178 ? 2.510 15.831 69.772 1.00 36.01 138 A 1 \nATOM 842 C C . THR A 1 178 ? 2.261 17.312 69.561 1.00 33.20 138 A 1 \nATOM 843 O O . THR A 1 178 ? 2.564 17.825 68.480 1.00 33.00 138 A 1 \nATOM 844 C CB . THR A 1 178 ? 1.271 14.938 69.469 1.00 36.16 138 A 1 \nATOM 845 O OG1 . THR A 1 178 ? 0.238 15.185 70.419 1.00 36.96 138 A 1 \nATOM 846 C CG2 . THR A 1 178 ? 1.649 13.451 69.461 1.00 35.53 138 A 1 \nATOM 847 N N . ALA A 1 179 ? 1.720 17.994 70.564 1.00 30.56 139 A 1 \nATOM 848 C CA . ALA A 1 179 ? 1.524 19.440 70.473 1.00 28.06 139 A 1 \nATOM 849 C C . ALA A 1 179 ? 2.845 20.187 70.249 1.00 26.84 139 A 1 \nATOM 850 O O . ALA A 1 179 ? 2.927 21.067 69.381 1.00 26.68 139 A 1 \nATOM 851 C CB . ALA A 1 179 ? 0.823 19.955 71.698 1.00 27.82 139 A 1 \nATOM 852 N N . THR A 1 180 ? 3.870 19.818 71.018 1.00 24.91 140 A 1 \nATOM 853 C CA . THR A 1 180 ? 5.194 20.431 70.908 1.00 23.30 140 A 1 \nATOM 854 C C . THR A 1 180 ? 5.768 20.255 69.504 1.00 22.31 140 A 1 \nATOM 855 O O . THR A 1 180 ? 6.203 21.220 68.891 1.00 23.16 140 A 1 \nATOM 856 C CB . THR A 1 180 ? 6.162 19.877 71.980 1.00 22.99 140 A 1 \nATOM 857 O OG1 . THR A 1 180 ? 5.617 20.136 73.275 1.00 23.27 140 A 1 \nATOM 858 C CG2 . THR A 1 180 ? 7.536 20.524 71.885 1.00 22.15 140 A 1 \nATOM 859 N N . ALA A 1 181 ? 5.726 19.031 68.992 1.00 20.83 141 A 1 \nATOM 860 C CA . ALA A 1 181 ? 6.294 18.715 67.684 1.00 19.69 141 A 1 \nATOM 861 C C . ALA A 1 181 ? 5.490 19.313 66.526 1.00 19.30 141 A 1 \nATOM 862 O O . ALA A 1 181 ? 6.055 19.725 65.515 1.00 19.64 141 A 1 \nATOM 863 C CB . ALA A 1 181 ? 6.438 17.209 67.520 1.00 19.49 141 A 1 \nATOM 864 N N . ASP A 1 182 ? 4.172 19.360 66.681 1.00 18.59 142 A 1 \nATOM 865 C CA . ASP A 1 182 ? 3.290 19.928 65.666 1.00 18.05 142 A 1 \nATOM 866 C C . ASP A 1 182 ? 3.472 21.444 65.574 1.00 17.43 142 A 1 \nATOM 867 O O . ASP A 1 182 ? 3.683 21.984 64.491 1.00 16.61 142 A 1 \nATOM 868 C CB . ASP A 1 182 ? 1.834 19.561 65.991 1.00 18.17 142 A 1 \nATOM 869 C CG . ASP A 1 182 ? 0.836 20.103 64.978 1.00 19.69 142 A 1 \nATOM 870 O OD1 . ASP A 1 182 ? 1.173 20.215 63.783 1.00 22.46 142 A 1 \nATOM 871 O OD2 . ASP A 1 182 ? -0.306 20.405 65.379 1.00 21.88 142 A 1 \nATOM 872 N N . LEU A 1 183 ? 3.399 22.117 66.722 1.00 17.16 143 A 1 \nATOM 873 C CA . LEU A 1 183 ? 3.464 23.569 66.763 1.00 16.34 143 A 1 \nATOM 874 C C . LEU A 1 183 ? 4.857 24.072 66.424 1.00 16.70 143 A 1 \nATOM 875 O O . LEU A 1 183 ? 4.992 24.994 65.629 1.00 16.80 143 A 1 \nATOM 876 C CB . LEU A 1 183 ? 2.997 24.099 68.120 1.00 16.19 143 A 1 \nATOM 877 C CG . LEU A 1 183 ? 1.502 23.997 68.441 1.00 15.07 143 A 1 \nATOM 878 C CD1 . LEU A 1 183 ? 1.232 24.315 69.895 1.00 13.37 143 A 1 \nATOM 879 C CD2 . LEU A 1 183 ? 0.681 24.907 67.558 1.00 12.95 143 A 1 \nATOM 880 N N . PHE A 1 184 ? 5.887 23.455 67.003 1.00 16.69 144 A 1 \nATOM 881 C CA . PHE A 1 184 ? 7.267 23.857 66.715 1.00 17.38 144 A 1 \nATOM 882 C C . PHE A 1 184 ? 7.756 23.456 65.335 1.00 17.24 144 A 1 \nATOM 883 O O . PHE A 1 184 ? 8.535 24.187 64.711 1.00 17.35 144 A 1 \nATOM 884 C CB . PHE A 1 184 ? 8.246 23.372 67.780 1.00 18.23 144 A 1 \nATOM 885 C CG . PHE A 1 184 ? 8.682 24.454 68.706 1.00 20.73 144 A 1 \nATOM 886 C CD1 . PHE A 1 184 ? 9.527 25.464 68.259 1.00 24.27 144 A 1 \nATOM 887 C CD2 . PHE A 1 184 ? 8.228 24.492 70.018 1.00 25.23 144 A 1 \nATOM 888 C CE1 . PHE A 1 184 ? 9.928 26.490 69.106 1.00 25.70 144 A 1 \nATOM 889 C CE2 . PHE A 1 184 ? 8.620 25.521 70.879 1.00 25.63 144 A 1 \nATOM 890 C CZ . PHE A 1 184 ? 9.473 26.520 70.418 1.00 24.70 144 A 1 \nATOM 891 N N . GLY A 1 185 ? 7.300 22.298 64.867 1.00 16.79 145 A 1 \nATOM 892 C CA . GLY A 1 185 ? 7.664 21.805 63.555 1.00 15.75 145 A 1 \nATOM 893 C C . GLY A 1 185 ? 7.174 22.715 62.458 1.00 15.65 145 A 1 \nATOM 894 O O . GLY A 1 185 ? 7.965 23.194 61.648 1.00 16.32 145 A 1 \nATOM 895 N N . SER A 1 186 ? 5.867 22.966 62.438 1.00 15.13 146 A 1 \nATOM 896 C CA . SER A 1 186 ? 5.245 23.724 61.356 1.00 14.65 146 A 1 \nATOM 897 C C . SER A 1 186 ? 5.685 25.175 61.344 1.00 14.32 146 A 1 \nATOM 898 O O . SER A 1 186 ? 5.963 25.732 60.288 1.00 14.27 146 A 1 \nATOM 899 C CB . SER A 1 186 ? 3.717 23.630 61.435 1.00 14.35 146 A 1 \nATOM 900 O OG . SER A 1 186 ? 3.236 24.133 62.665 1.00 14.43 146 A 1 \nATOM 901 N N . ASN A 1 187 ? 5.758 25.772 62.528 1.00 14.18 147 A 1 \nATOM 902 C CA . ASN A 1 187 ? 6.025 27.203 62.675 1.00 13.71 147 A 1 \nATOM 903 C C . ASN A 1 187 ? 7.500 27.600 62.617 1.00 13.75 147 A 1 \nATOM 904 O O . ASN A 1 187 ? 7.815 28.757 62.297 1.00 13.81 147 A 1 \nATOM 905 C CB . ASN A 1 187 ? 5.403 27.731 63.975 1.00 13.04 147 A 1 \nATOM 906 C CG . ASN A 1 187 ? 3.908 27.914 63.870 1.00 13.84 147 A 1 \nATOM 907 O OD1 . ASN A 1 187 ? 3.429 28.807 63.173 1.00 14.07 147 A 1 \nATOM 908 N ND2 . ASN A 1 187 ? 3.157 27.069 64.562 1.00 14.10 147 A 1 \nATOM 909 N N . ALA A 1 188 ? 8.393 26.657 62.924 1.00 13.10 148 A 1 \nATOM 910 C CA . ALA A 1 188 ? 9.809 26.989 63.119 1.00 13.22 148 A 1 \nATOM 911 C C . ALA A 1 188 ? 10.810 26.001 62.510 1.00 13.75 148 A 1 \nATOM 912 O O . ALA A 1 188 ? 11.610 26.393 61.660 1.00 13.86 148 A 1 \nATOM 913 C CB . ALA A 1 188 ? 10.104 27.212 64.597 1.00 12.42 148 A 1 \nATOM 914 N N . ILE A 1 189 ? 10.766 24.735 62.935 1.00 13.61 149 A 1 \nATOM 915 C CA . ILE A 1 189 ? 11.736 23.727 62.491 1.00 13.44 149 A 1 \nATOM 916 C C . ILE A 1 189 ? 11.641 23.402 60.992 1.00 13.54 149 A 1 \nATOM 917 O O . ILE A 1 189 ? 12.666 23.364 60.317 1.00 13.60 149 A 1 \nATOM 918 C CB . ILE A 1 189 ? 11.641 22.411 63.319 1.00 14.06 149 A 1 \nATOM 919 C CG1 . ILE A 1 189 ? 11.567 22.689 64.828 1.00 14.54 149 A 1 \nATOM 920 C CG2 . ILE A 1 189 ? 12.788 21.466 62.981 1.00 12.51 149 A 1 \nATOM 921 C CD1 . ILE A 1 189 ? 12.791 23.332 65.411 1.00 15.40 149 A 1 \nATOM 922 N N . ALA A 1 190 ? 10.432 23.159 60.478 1.00 13.07 150 A 1 \nATOM 923 C CA . ALA A 1 190 ? 10.248 22.901 59.044 1.00 13.14 150 A 1 \nATOM 924 C C . ALA A 1 190 ? 10.695 24.090 58.170 1.00 13.83 150 A 1 \nATOM 925 O O . ALA A 1 190 ? 11.426 23.885 57.198 1.00 13.52 150 A 1 \nATOM 926 C CB . ALA A 1 190 ? 8.823 22.483 58.718 1.00 12.59 150 A 1 \nATOM 927 N N . PRO A 1 191 ? 10.271 25.333 58.513 1.00 14.04 151 A 1 \nATOM 928 C CA . PRO A 1 191 ? 10.827 26.504 57.820 1.00 14.25 151 A 1 \nATOM 929 C C . PRO A 1 191 ? 12.357 26.524 57.776 1.00 14.80 151 A 1 \nATOM 930 O O . PRO A 1 191 ? 12.933 26.842 56.732 1.00 14.66 151 A 1 \nATOM 931 C CB . PRO A 1 191 ? 10.299 27.681 58.646 1.00 13.87 151 A 1 \nATOM 932 C CG . PRO A 1 191 ? 9.001 27.191 59.161 1.00 14.23 151 A 1 \nATOM 933 C CD . PRO A 1 191 ? 9.245 25.735 59.495 1.00 14.10 151 A 1 \nATOM 934 N N . TYR A 1 192 ? 13.008 26.186 58.886 1.00 14.78 152 A 1 \nATOM 935 C CA . TYR A 1 192 ? 14.461 26.113 58.901 1.00 14.84 152 A 1 \nATOM 936 C C . TYR A 1 192 ? 14.982 25.127 57.847 1.00 15.22 152 A 1 \nATOM 937 O O . TYR A 1 192 ? 15.801 25.502 57.005 1.00 15.49 152 A 1 \nATOM 938 C CB . TYR A 1 192 ? 14.984 25.764 60.294 1.00 14.79 152 A 1 \nATOM 939 C CG . TYR A 1 192 ? 16.447 25.389 60.300 1.00 14.79 152 A 1 \nATOM 940 C CD1 . TYR A 1 192 ? 17.436 26.367 60.222 1.00 14.57 152 A 1 \nATOM 941 C CD2 . TYR A 1 192 ? 16.842 24.047 60.363 1.00 14.98 152 A 1 \nATOM 942 C CE1 . TYR A 1 192 ? 18.786 26.023 60.217 1.00 14.68 152 A 1 \nATOM 943 C CE2 . TYR A 1 192 ? 18.184 23.692 60.354 1.00 14.60 152 A 1 \nATOM 944 C CZ . TYR A 1 192 ? 19.150 24.687 60.282 1.00 15.37 152 A 1 \nATOM 945 O OH . TYR A 1 192 ? 20.478 24.334 60.280 1.00 17.20 152 A 1 \nATOM 946 N N . PHE A 1 193 ? 14.491 23.882 57.892 1.00 14.92 153 A 1 \nATOM 947 C CA . PHE A 1 193 ? 14.901 22.845 56.946 1.00 14.99 153 A 1 \nATOM 948 C C . PHE A 1 193 ? 14.553 23.215 55.507 1.00 15.42 153 A 1 \nATOM 949 O O . PHE A 1 193 ? 15.340 22.975 54.592 1.00 15.18 153 A 1 \nATOM 950 C CB . PHE A 1 193 ? 14.296 21.484 57.307 1.00 15.19 153 A 1 \nATOM 951 C CG . PHE A 1 193 ? 14.870 20.868 58.567 1.00 15.93 153 A 1 \nATOM 952 C CD1 . PHE A 1 193 ? 16.237 20.931 58.842 1.00 15.02 153 A 1 \nATOM 953 C CD2 . PHE A 1 193 ? 14.043 20.195 59.468 1.00 16.33 153 A 1 \nATOM 954 C CE1 . PHE A 1 193 ? 16.764 20.363 60.008 1.00 15.11 153 A 1 \nATOM 955 C CE2 . PHE A 1 193 ? 14.564 19.616 60.626 1.00 16.63 153 A 1 \nATOM 956 C CZ . PHE A 1 193 ? 15.926 19.708 60.900 1.00 15.28 153 A 1 \nATOM 957 N N . LEU A 1 194 ? 13.376 23.808 55.322 1.00 15.44 154 A 1 \nATOM 958 C CA . LEU A 1 194 ? 12.940 24.287 54.016 1.00 14.88 154 A 1 \nATOM 959 C C . LEU A 1 194 ? 13.873 25.366 53.483 1.00 15.45 154 A 1 \nATOM 960 O O . LEU A 1 194 ? 14.261 25.330 52.310 1.00 15.57 154 A 1 \nATOM 961 C CB . LEU A 1 194 ? 11.493 24.777 54.057 1.00 14.81 154 A 1 \nATOM 962 C CG . LEU A 1 194 ? 10.392 23.705 54.134 1.00 14.38 154 A 1 \nATOM 963 C CD1 . LEU A 1 194 ? 9.061 24.305 54.553 1.00 12.55 154 A 1 \nATOM 964 C CD2 . LEU A 1 194 ? 10.240 22.972 52.817 1.00 12.45 154 A 1 \nATOM 965 N N . ILE A 1 195 ? 14.257 26.306 54.341 1.00 15.82 155 A 1 \nATOM 966 C CA . ILE A 1 195 ? 15.202 27.351 53.936 1.00 15.93 155 A 1 \nATOM 967 C C . ILE A 1 195 ? 16.555 26.724 53.577 1.00 16.75 155 A 1 \nATOM 968 O O . ILE A 1 195 ? 17.119 27.021 52.518 1.00 16.68 155 A 1 \nATOM 969 C CB . ILE A 1 195 ? 15.338 28.477 54.999 1.00 15.39 155 A 1 \nATOM 970 C CG1 . ILE A 1 195 ? 14.060 29.321 55.033 1.00 15.04 155 A 1 \nATOM 971 C CG2 . ILE A 1 195 ? 16.534 29.368 54.702 1.00 14.00 155 A 1 \nATOM 972 C CD1 . ILE A 1 195 ? 14.106 30.503 56.010 1.00 15.25 155 A 1 \nATOM 973 N N . LYS A 1 196 ? 17.048 25.840 54.446 1.00 16.85 156 A 1 \nATOM 974 C CA . LYS A 1 196 ? 18.292 25.110 54.201 1.00 17.08 156 A 1 \nATOM 975 C C . LYS A 1 196 ? 18.298 24.424 52.825 1.00 17.21 156 A 1 \nATOM 976 O O . LYS A 1 196 ? 19.211 24.646 52.029 1.00 18.08 156 A 1 \nATOM 977 C CB . LYS A 1 196 ? 18.558 24.097 55.314 1.00 16.85 156 A 1 \nATOM 978 C CG . LYS A 1 196 ? 19.950 23.519 55.264 1.00 19.77 156 A 1 \nATOM 979 C CD . LYS A 1 196 ? 20.304 22.719 56.507 1.00 22.10 156 A 1 \nATOM 980 C CE . LYS A 1 196 ? 21.730 22.190 56.406 1.00 25.85 156 A 1 \nATOM 981 N NZ . LYS A 1 196 ? 22.002 21.108 57.392 1.00 31.03 156 A 1 \nATOM 982 N N . ALA A 1 197 ? 17.272 23.622 52.544 1.00 16.00 157 A 1 \nATOM 983 C CA . ALA A 1 197 ? 17.127 22.951 51.254 1.00 15.31 157 A 1 \nATOM 984 C C . ALA A 1 197 ? 17.061 23.937 50.084 1.00 15.38 157 A 1 \nATOM 985 O O . ALA A 1 197 ? 17.717 23.729 49.061 1.00 15.66 157 A 1 \nATOM 986 C CB . ALA A 1 197 ? 15.893 22.056 51.259 1.00 15.48 157 A 1 \nATOM 987 N N . PHE A 1 198 ? 16.259 24.993 50.245 1.00 14.82 158 A 1 \nATOM 988 C CA . PHE A 1 198 ? 16.104 26.054 49.251 1.00 14.69 158 A 1 \nATOM 989 C C . PHE A 1 198 ? 17.457 26.683 48.934 1.00 15.26 158 A 1 \nATOM 990 O O . PHE A 1 198 ? 17.791 26.879 47.762 1.00 15.13 158 A 1 \nATOM 991 C CB . PHE A 1 198 ? 15.139 27.125 49.768 1.00 14.30 158 A 1 \nATOM 992 C CG . PHE A 1 198 ? 14.899 28.257 48.808 1.00 12.92 158 A 1 \nATOM 993 C CD1 . PHE A 1 198 ? 15.803 29.316 48.706 1.00 11.80 158 A 1 \nATOM 994 C CD2 . PHE A 1 198 ? 13.751 28.281 48.021 1.00 12.80 158 A 1 \nATOM 995 C CE1 . PHE A 1 198 ? 15.571 30.374 47.818 1.00 12.54 158 A 1 \nATOM 996 C CE2 . PHE A 1 198 ? 13.509 29.340 47.129 1.00 13.72 158 A 1 \nATOM 997 C CZ . PHE A 1 198 ? 14.417 30.386 47.033 1.00 12.88 158 A 1 \nATOM 998 N N . ALA A 1 199 ? 18.231 26.969 49.984 1.00 15.49 159 A 1 \nATOM 999 C CA . ALA A 1 199 ? 19.538 27.598 49.847 1.00 15.81 159 A 1 \nATOM 1000 C C . ALA A 1 199 ? 20.547 26.655 49.202 1.00 16.80 159 A 1 \nATOM 1001 O O . ALA A 1 199 ? 21.308 27.059 48.310 1.00 17.65 159 A 1 \nATOM 1002 C CB . ALA A 1 199 ? 20.033 28.081 51.192 1.00 15.14 159 A 1 \nATOM 1003 N N . HIS A 1 200 ? 20.537 25.398 49.644 1.00 17.25 160 A 1 \nATOM 1004 C CA . HIS A 1 200 ? 21.417 24.367 49.094 1.00 17.49 160 A 1 \nATOM 1005 C C . HIS A 1 200 ? 21.249 24.225 47.578 1.00 18.06 160 A 1 \nATOM 1006 O O . HIS A 1 200 ? 22.240 24.123 46.861 1.00 18.40 160 A 1 \nATOM 1007 C CB . HIS A 1 200 ? 21.144 23.024 49.784 0.50 18.07 160 A 1 \nATOM 1008 C CG . HIS A 1 200 ? 21.986 21.889 49.278 0.50 19.69 160 A 1 \nATOM 1009 N ND1 . HIS A 1 200 ? 21.473 20.863 48.511 0.50 20.25 160 A 1 \nATOM 1010 C CD2 . HIS A 1 200 ? 23.303 21.614 49.441 0.50 20.70 160 A 1 \nATOM 1011 C CE1 . HIS A 1 200 ? 22.438 20.009 48.220 0.50 20.31 160 A 1 \nATOM 1012 N NE2 . HIS A 1 200 ? 23.557 20.439 48.776 0.50 20.58 160 A 1 \nATOM 1013 N N . ARG A 1 201 ? 19.999 24.239 47.106 1.00 17.99 161 A 1 \nATOM 1014 C CA . ARG A 1 201 ? 19.704 24.155 45.669 1.00 18.42 161 A 1 \nATOM 1015 C C . ARG A 1 201 ? 20.197 25.362 44.866 1.00 18.29 161 A 1 \nATOM 1016 O O . ARG A 1 201 ? 20.673 25.203 43.749 1.00 18.40 161 A 1 \nATOM 1017 C CB . ARG A 1 201 ? 18.209 23.922 45.413 1.00 18.52 161 A 1 \nATOM 1018 C CG . ARG A 1 201 ? 17.640 22.598 45.943 1.00 18.94 161 A 1 \nATOM 1019 C CD . ARG A 1 201 ? 18.463 21.383 45.546 1.00 19.90 161 A 1 \nATOM 1020 N NE . ARG A 1 201 ? 18.283 21.010 44.152 1.00 22.65 161 A 1 \nATOM 1021 C CZ . ARG A 1 201 ? 17.472 20.042 43.723 1.00 23.57 161 A 1 \nATOM 1022 N NH1 . ARG A 1 201 ? 16.742 19.330 44.577 1.00 20.91 161 A 1 \nATOM 1023 N NH2 . ARG A 1 201 ? 17.392 19.783 42.423 1.00 21.90 161 A 1 \nATOM 1024 N N . VAL A 1 202 ? 20.078 26.559 45.438 1.00 18.47 162 A 1 \nATOM 1025 C CA . VAL A 1 202 ? 20.590 27.769 44.800 1.00 18.33 162 A 1 \nATOM 1026 C C . VAL A 1 202 ? 22.120 27.740 44.735 1.00 19.13 162 A 1 \nATOM 1027 O O . VAL A 1 202 ? 22.704 28.037 43.693 1.00 19.39 162 A 1 \nATOM 1028 C CB . VAL A 1 202 ? 20.116 29.050 45.517 1.00 18.00 162 A 1 \nATOM 1029 C CG1 . VAL A 1 202 ? 20.768 30.281 44.902 1.00 15.74 162 A 1 \nATOM 1030 C CG2 . VAL A 1 202 ? 18.614 29.162 45.439 1.00 18.11 162 A 1 \nATOM 1031 N N . ALA A 1 203 ? 22.758 27.379 45.849 1.00 19.33 163 A 1 \nATOM 1032 C CA . ALA A 1 203 ? 24.222 27.265 45.905 1.00 19.66 163 A 1 \nATOM 1033 C C . ALA A 1 203 ? 24.748 26.241 44.906 1.00 20.03 163 A 1 \nATOM 1034 O O . ALA A 1 203 ? 25.790 26.446 44.293 1.00 19.65 163 A 1 \nATOM 1035 C CB . ALA A 1 203 ? 24.682 26.912 47.310 1.00 18.62 163 A 1 \nATOM 1036 N N . GLY A 1 204 ? 24.004 25.147 44.750 1.00 21.16 164 A 1 \nATOM 1037 C CA . GLY A 1 204 ? 24.355 24.060 43.835 1.00 21.91 164 A 1 \nATOM 1038 C C . GLY A 1 204 ? 24.147 24.388 42.371 1.00 22.49 164 A 1 \nATOM 1039 O O . GLY A 1 204 ? 24.652 23.682 41.504 1.00 23.54 164 A 1 \nATOM 1040 N N . THR A 1 205 ? 23.399 25.452 42.104 1.00 22.44 165 A 1 \nATOM 1041 C CA . THR A 1 205 ? 23.155 25.921 40.750 1.00 22.40 165 A 1 \nATOM 1042 C C . THR A 1 205 ? 24.302 26.824 40.318 1.00 23.34 165 A 1 \nATOM 1043 O O . THR A 1 205 ? 24.697 27.713 41.071 1.00 23.60 165 A 1 \nATOM 1044 C CB . THR A 1 205 ? 21.817 26.688 40.662 1.00 22.07 165 A 1 \nATOM 1045 O OG1 . THR A 1 205 ? 20.747 25.826 41.068 1.00 21.34 165 A 1 \nATOM 1046 C CG2 . THR A 1 205 ? 21.561 27.188 39.244 1.00 22.02 165 A 1 \nATOM 1047 N N . PRO A 1 206 ? 24.858 26.584 39.112 1.00 24.04 166 A 1 \nATOM 1048 C CA . PRO A 1 206 ? 25.904 27.460 38.564 1.00 24.23 166 A 1 \nATOM 1049 C C . PRO A 1 206 ? 25.395 28.889 38.432 1.00 24.66 166 A 1 \nATOM 1050 O O . PRO A 1 206 ? 24.265 29.104 37.996 1.00 23.85 166 A 1 \nATOM 1051 C CB . PRO A 1 206 ? 26.175 26.868 37.177 1.00 24.16 166 A 1 \nATOM 1052 C CG . PRO A 1 206 ? 25.718 25.461 37.267 1.00 24.31 166 A 1 \nATOM 1053 C CD . PRO A 1 206 ? 24.547 25.467 38.202 1.00 23.77 166 A 1 \nATOM 1054 N N . ALA A 1 207 ? 26.230 29.851 38.818 1.00 26.19 167 A 1 \nATOM 1055 C CA . ALA A 1 207 ? 25.850 31.267 38.860 1.00 27.17 167 A 1 \nATOM 1056 C C . ALA A 1 207 ? 25.123 31.739 37.598 1.00 28.48 167 A 1 \nATOM 1057 O O . ALA A 1 207 ? 24.121 32.450 37.687 1.00 29.31 167 A 1 \nATOM 1058 C CB . ALA A 1 207 ? 27.064 32.133 39.134 1.00 26.72 167 A 1 \nATOM 1059 N N . LYS A 1 208 ? 25.618 31.328 36.433 1.00 29.07 168 A 1 \nATOM 1060 C CA . LYS A 1 208 ? 25.032 31.719 35.155 1.00 29.99 168 A 1 \nATOM 1061 C C . LYS A 1 208 ? 23.615 31.178 34.912 1.00 30.01 168 A 1 \nATOM 1062 O O . LYS A 1 208 ? 22.925 31.648 34.026 1.00 30.52 168 A 1 \nATOM 1063 C CB . LYS A 1 208 ? 25.958 31.323 33.995 1.00 30.62 168 A 1 \nATOM 1064 C CG . LYS A 1 208 ? 26.191 29.812 33.838 1.00 30.88 168 A 1 \nATOM 1065 C CD . LYS A 1 208 ? 27.203 29.508 32.740 1.00 35.90 168 A 1 \nATOM 1066 C CE . LYS A 1 208 ? 27.623 28.040 32.716 1.00 38.25 168 A 1 \nATOM 1067 N NZ . LYS A 1 208 ? 26.612 27.139 32.084 1.00 38.42 168 A 1 \nATOM 1068 N N . HIS A 1 209 ? 23.193 30.190 35.693 1.00 29.32 169 A 1 \nATOM 1069 C CA . HIS A 1 209 ? 21.874 29.580 35.525 1.00 29.44 169 A 1 \nATOM 1070 C C . HIS A 1 209 ? 20.891 29.943 36.639 1.00 28.22 169 A 1 \nATOM 1071 O O . HIS A 1 209 ? 19.743 29.510 36.617 1.00 28.45 169 A 1 \nATOM 1072 C CB . HIS A 1 209 ? 22.002 28.053 35.421 1.00 30.68 169 A 1 \nATOM 1073 C CG . HIS A 1 209 ? 22.502 27.571 34.092 1.00 35.23 169 A 1 \nATOM 1074 N ND1 . HIS A 1 209 ? 23.540 28.177 33.419 1.00 38.78 169 A 1 \nATOM 1075 C CD2 . HIS A 1 209 ? 22.120 26.527 33.323 1.00 38.15 169 A 1 \nATOM 1076 C CE1 . HIS A 1 209 ? 23.767 27.537 32.288 1.00 38.88 169 A 1 \nATOM 1077 N NE2 . HIS A 1 209 ? 22.921 26.528 32.208 1.00 40.13 169 A 1 \nATOM 1078 N N . ARG A 1 210 ? 21.350 30.732 37.607 1.00 26.29 170 A 1 \nATOM 1079 C CA . ARG A 1 210 ? 20.536 31.117 38.757 1.00 24.52 170 A 1 \nATOM 1080 C C . ARG A 1 210 ? 19.446 32.128 38.402 1.00 23.87 170 A 1 \nATOM 1081 O O . ARG A 1 210 ? 19.588 32.884 37.438 1.00 24.31 170 A 1 \nATOM 1082 C CB . ARG A 1 210 ? 21.420 31.684 39.870 1.00 24.19 170 A 1 \nATOM 1083 C CG . ARG A 1 210 ? 22.166 30.638 40.667 1.00 23.12 170 A 1 \nATOM 1084 C CD . ARG A 1 210 ? 23.252 31.256 41.528 1.00 21.32 170 A 1 \nATOM 1085 N NE . ARG A 1 210 ? 24.089 30.222 42.139 1.00 21.53 170 A 1 \nATOM 1086 C CZ . ARG A 1 210 ? 25.213 30.446 42.814 1.00 21.10 170 A 1 \nATOM 1087 N NH1 . ARG A 1 210 ? 25.677 31.676 42.981 1.00 19.54 170 A 1 \nATOM 1088 N NH2 . ARG A 1 210 ? 25.886 29.428 43.320 1.00 19.69 170 A 1 \nATOM 1089 N N . GLY A 1 211 ? 18.362 32.129 39.178 1.00 22.07 171 A 1 \nATOM 1090 C CA . GLY A 1 211 ? 17.318 33.138 39.052 1.00 20.82 171 A 1 \nATOM 1091 C C . GLY A 1 211 ? 17.814 34.481 39.550 1.00 20.45 171 A 1 \nATOM 1092 O O . GLY A 1 211 ? 18.853 34.558 40.196 1.00 20.86 171 A 1 \nATOM 1093 N N . THR A 1 212 ? 17.071 35.541 39.256 1.00 19.63 172 A 1 \nATOM 1094 C CA . THR A 1 212 ? 17.532 36.895 39.540 1.00 19.14 172 A 1 \nATOM 1095 C C . THR A 1 212 ? 16.746 37.560 40.667 1.00 18.50 172 A 1 \nATOM 1096 O O . THR A 1 212 ? 16.989 38.721 40.997 1.00 18.51 172 A 1 \nATOM 1097 C CB . THR A 1 212 ? 17.472 37.779 38.278 1.00 19.66 172 A 1 \nATOM 1098 O OG1 . THR A 1 212 ? 16.144 37.759 37.752 1.00 20.91 172 A 1 \nATOM 1099 C CG2 . THR A 1 212 ? 18.419 37.264 37.209 1.00 20.05 172 A 1 \nATOM 1100 N N . ASN A 1 213 ? 15.820 36.822 41.268 1.00 17.48 173 A 1 \nATOM 1101 C CA . ASN A 1 213 ? 14.930 37.384 42.288 1.00 17.28 173 A 1 \nATOM 1102 C C . ASN A 1 213 ? 14.495 36.333 43.304 1.00 16.44 173 A 1 \nATOM 1103 O O . ASN A 1 213 ? 13.323 35.962 43.376 1.00 15.79 173 A 1 \nATOM 1104 C CB . ASN A 1 213 ? 13.703 38.039 41.623 1.00 17.32 173 A 1 \nATOM 1105 C CG . ASN A 1 213 ? 12.874 38.865 42.593 1.00 18.60 173 A 1 \nATOM 1106 O OD1 . ASN A 1 213 ? 13.368 39.329 43.621 1.00 21.72 173 A 1 \nATOM 1107 N ND2 . ASN A 1 213 ? 11.606 39.063 42.260 1.00 19.17 173 A 1 \nATOM 1108 N N . TYR A 1 214 ? 15.456 35.837 44.072 1.00 16.07 174 A 1 \nATOM 1109 C CA . TYR A 1 214 ? 15.180 34.825 45.088 1.00 16.03 174 A 1 \nATOM 1110 C C . TYR A 1 214 ? 14.616 35.479 46.336 1.00 16.18 174 A 1 \nATOM 1111 O O . TYR A 1 214 ? 15.183 36.445 46.857 1.00 16.02 174 A 1 \nATOM 1112 C CB . TYR A 1 214 ? 16.445 34.050 45.444 1.00 15.93 174 A 1 \nATOM 1113 C CG . TYR A 1 214 ? 16.929 33.071 44.399 1.00 16.26 174 A 1 \nATOM 1114 C CD1 . TYR A 1 214 ? 16.203 31.917 44.099 1.00 15.82 174 A 1 \nATOM 1115 C CD2 . TYR A 1 214 ? 18.138 33.276 43.736 1.00 17.09 174 A 1 \nATOM 1116 C CE1 . TYR A 1 214 ? 16.667 31.004 43.153 1.00 15.94 174 A 1 \nATOM 1117 C CE2 . TYR A 1 214 ? 18.605 32.370 42.793 1.00 16.12 174 A 1 \nATOM 1118 C CZ . TYR A 1 214 ? 17.871 31.239 42.511 1.00 16.15 174 A 1 \nATOM 1119 O OH . TYR A 1 214 ? 18.347 30.352 41.574 1.00 16.46 174 A 1 \nATOM 1120 N N . SER A 1 215 ? 13.502 34.949 46.822 1.00 15.80 175 A 1 \nATOM 1121 C CA . SER A 1 215 ? 12.809 35.570 47.938 1.00 16.02 175 A 1 \nATOM 1122 C C . SER A 1 215 ? 12.163 34.520 48.843 1.00 15.37 175 A 1 \nATOM 1123 O O . SER A 1 215 ? 11.442 33.644 48.372 1.00 15.75 175 A 1 \nATOM 1124 C CB . SER A 1 215 ? 11.772 36.561 47.399 1.00 16.16 175 A 1 \nATOM 1125 O OG . SER A 1 215 ? 11.075 37.217 48.438 1.00 19.91 175 A 1 \nATOM 1126 N N . ILE A 1 216 ? 12.454 34.595 50.139 1.00 14.38 176 A 1 \nATOM 1127 C CA . ILE A 1 216 ? 11.810 33.731 51.137 1.00 13.12 176 A 1 \nATOM 1128 C C . ILE A 1 216 ? 10.980 34.588 52.088 1.00 13.07 176 A 1 \nATOM 1129 O O . ILE A 1 216 ? 11.494 35.531 52.689 1.00 13.46 176 A 1 \nATOM 1130 C CB . ILE A 1 216 ? 12.839 32.911 51.961 1.00 12.54 176 A 1 \nATOM 1131 C CG1 . ILE A 1 216 ? 13.688 32.025 51.048 1.00 11.13 176 A 1 \nATOM 1132 C CG2 . ILE A 1 216 ? 12.132 32.075 53.020 1.00 10.48 176 A 1 \nATOM 1133 C CD1 . ILE A 1 216 ? 14.835 31.318 51.769 1.00 5.83 176 A 1 \nATOM 1134 N N . ILE A 1 217 ? 9.698 34.265 52.214 1.00 12.87 177 A 1 \nATOM 1135 C CA . ILE A 1 217 ? 8.808 34.989 53.126 1.00 12.70 177 A 1 \nATOM 1136 C C . ILE A 1 217 ? 8.331 34.065 54.240 1.00 12.77 177 A 1 \nATOM 1137 O O . ILE A 1 217 ? 7.795 32.985 53.991 1.00 13.03 177 A 1 \nATOM 1138 C CB . ILE A 1 217 ? 7.578 35.596 52.400 1.00 13.02 177 A 1 \nATOM 1139 C CG1 . ILE A 1 217 ? 8.004 36.498 51.223 1.00 13.07 177 A 1 \nATOM 1140 C CG2 . ILE A 1 217 ? 6.668 36.335 53.385 1.00 12.30 177 A 1 \nATOM 1141 C CD1 . ILE A 1 217 ? 8.717 37.784 51.616 1.00 15.12 177 A 1 \nATOM 1142 N N . ASN A 1 218 ? 8.545 34.502 55.472 1.00 12.38 178 A 1 \nATOM 1143 C CA . ASN A 1 218 ? 8.067 33.776 56.634 1.00 11.91 178 A 1 \nATOM 1144 C C . ASN A 1 218 ? 6.804 34.432 57.179 1.00 12.12 178 A 1 \nATOM 1145 O O . ASN A 1 218 ? 6.802 35.624 57.498 1.00 11.77 178 A 1 \nATOM 1146 C CB . ASN A 1 218 ? 9.156 33.728 57.714 1.00 11.42 178 A 1 \nATOM 1147 C CG . ASN A 1 218 ? 10.370 32.933 57.284 1.00 10.54 178 A 1 \nATOM 1148 O OD1 . ASN A 1 218 ? 10.254 31.930 56.583 1.00 10.22 178 A 1 \nATOM 1149 N ND2 . ASN A 1 218 ? 11.542 33.373 57.706 1.00 7.56 178 A 1 \nATOM 1150 N N . MET A 1 219 ? 5.726 33.660 57.273 1.00 12.10 179 A 1 \nATOM 1151 C CA . MET A 1 219 ? 4.494 34.174 57.862 1.00 11.88 179 A 1 \nATOM 1152 C C . MET A 1 219 ? 4.594 34.161 59.385 1.00 12.30 179 A 1 \nATOM 1153 O O . MET A 1 219 ? 4.502 33.109 60.029 1.00 12.89 179 A 1 \nATOM 1154 C CB . MET A 1 219 ? 3.280 33.388 57.373 1.00 11.41 179 A 1 \nATOM 1155 C CG . MET A 1 219 ? 3.039 33.467 55.869 1.00 10.91 179 A 1 \nATOM 1156 S SD . MET A 1 219 ? 3.030 35.146 55.185 1.00 12.62 179 A 1 \nATOM 1157 C CE . MET A 1 219 ? 1.455 35.732 55.837 1.00 13.56 179 A 1 \nATOM 1158 N N . VAL A 1 220 ? 4.809 35.341 59.951 1.00 11.89 180 A 1 \nATOM 1159 C CA . VAL A 1 220 ? 4.936 35.490 61.395 1.00 11.99 180 A 1 \nATOM 1160 C C . VAL A 1 220 ? 3.637 36.042 61.986 1.00 12.87 180 A 1 \nATOM 1161 O O . VAL A 1 220 ? 2.562 35.823 61.431 1.00 12.90 180 A 1 \nATOM 1162 C CB . VAL A 1 220 ? 6.183 36.336 61.784 1.00 11.86 180 A 1 \nATOM 1163 C CG1 . VAL A 1 220 ? 7.471 35.571 61.467 1.00 10.08 180 A 1 \nATOM 1164 C CG2 . VAL A 1 220 ? 6.169 37.681 61.076 1.00 10.57 180 A 1 \nATOM 1165 N N . ASP A 1 221 ? 3.732 36.742 63.110 1.00 13.36 181 A 1 \nATOM 1166 C CA . ASP A 1 221 ? 2.552 37.201 63.832 1.00 13.77 181 A 1 \nATOM 1167 C C . ASP A 1 221 ? 2.838 38.583 64.403 1.00 14.41 181 A 1 \nATOM 1168 O O . ASP A 1 221 ? 3.801 38.766 65.142 1.00 15.38 181 A 1 \nATOM 1169 C CB . ASP A 1 221 ? 2.223 36.213 64.952 1.00 13.43 181 A 1 \nATOM 1170 C CG . ASP A 1 221 ? 0.890 36.490 65.626 1.00 14.00 181 A 1 \nATOM 1171 O OD1 . ASP A 1 221 ? 0.433 37.653 65.654 1.00 13.84 181 A 1 \nATOM 1172 O OD2 . ASP A 1 221 ? 0.298 35.526 66.155 1.00 13.28 181 A 1 \nATOM 1173 N N . ALA A 1 222 ? 2.002 39.555 64.059 1.00 14.55 182 A 1 \nATOM 1174 C CA . ALA A 1 222 ? 2.202 40.924 64.524 1.00 15.46 182 A 1 \nATOM 1175 C C . ALA A 1 222 ? 1.960 41.074 66.031 1.00 16.43 182 A 1 \nATOM 1176 O O . ALA A 1 222 ? 2.449 42.016 66.661 1.00 16.71 182 A 1 \nATOM 1177 C CB . ALA A 1 222 ? 1.307 41.883 63.744 1.00 14.91 182 A 1 \nATOM 1178 N N . MET A 1 223 ? 1.225 40.125 66.599 1.00 17.30 183 A 1 \nATOM 1179 C CA . MET A 1 223 ? 0.706 40.258 67.947 1.00 18.02 183 A 1 \nATOM 1180 C C . MET A 1 223 ? 1.476 39.494 69.020 1.00 19.44 183 A 1 \nATOM 1181 O O . MET A 1 223 ? 1.159 39.629 70.197 1.00 20.21 183 A 1 \nATOM 1182 C CB . MET A 1 223 ? -0.765 39.836 67.980 1.00 17.65 183 A 1 \nATOM 1183 C CG . MET A 1 223 ? -1.681 40.709 67.150 1.00 15.96 183 A 1 \nATOM 1184 S SD . MET A 1 223 ? -1.463 42.463 67.482 1.00 16.28 183 A 1 \nATOM 1185 C CE . MET A 1 223 ? -1.969 42.595 69.198 1.00 14.14 183 A 1 \nATOM 1186 N N . THR A 1 224 ? 2.474 38.700 68.633 1.00 20.40 184 A 1 \nATOM 1187 C CA . THR A 1 224 ? 3.107 37.777 69.587 1.00 20.81 184 A 1 \nATOM 1188 C C . THR A 1 224 ? 3.922 38.443 70.695 1.00 21.14 184 A 1 \nATOM 1189 O O . THR A 1 224 ? 4.184 37.823 71.729 1.00 22.11 184 A 1 \nATOM 1190 C CB . THR A 1 224 ? 3.942 36.666 68.902 1.00 21.55 184 A 1 \nATOM 1191 O OG1 . THR A 1 224 ? 4.677 37.209 67.796 1.00 22.65 184 A 1 \nATOM 1192 C CG2 . THR A 1 224 ? 3.037 35.548 68.418 1.00 21.25 184 A 1 \nATOM 1193 N N . ASN A 1 225 ? 4.311 39.702 70.489 1.00 20.59 185 A 1 \nATOM 1194 C CA . ASN A 1 225 ? 4.884 40.508 71.567 1.00 19.75 185 A 1 \nATOM 1195 C C . ASN A 1 225 ? 3.858 40.942 72.604 1.00 18.70 185 A 1 \nATOM 1196 O O . ASN A 1 225 ? 4.212 41.450 73.671 1.00 18.84 185 A 1 \nATOM 1197 C CB . ASN A 1 225 ? 5.612 41.715 71.006 1.00 20.36 185 A 1 \nATOM 1198 C CG . ASN A 1 225 ? 6.947 41.345 70.426 1.00 23.89 185 A 1 \nATOM 1199 O OD1 . ASN A 1 225 ? 7.198 40.177 70.091 1.00 26.08 185 A 1 \nATOM 1200 N ND2 . ASN A 1 225 ? 7.824 42.330 70.310 1.00 26.99 185 A 1 \nATOM 1201 N N . GLN A 1 226 ? 2.589 40.737 72.275 1.00 17.28 186 A 1 \nATOM 1202 C CA . GLN A 1 226 ? 1.493 40.914 73.198 1.00 16.32 186 A 1 \nATOM 1203 C C . GLN A 1 226 ? 0.803 39.550 73.259 1.00 16.62 186 A 1 \nATOM 1204 O O . GLN A 1 226 ? -0.300 39.379 72.743 1.00 15.95 186 A 1 \nATOM 1205 C CB . GLN A 1 226 ? 0.557 42.007 72.687 1.00 15.86 186 A 1 \nATOM 1206 C CG . GLN A 1 226 ? 1.166 43.408 72.694 1.00 15.09 186 A 1 \nATOM 1207 C CD . GLN A 1 226 ? 0.598 44.304 71.599 1.00 16.29 186 A 1 \nATOM 1208 O OE1 . GLN A 1 226 ? 0.881 44.111 70.415 1.00 16.53 186 A 1 \nATOM 1209 N NE2 . GLN A 1 226 ? -0.204 45.291 71.993 1.00 13.41 186 A 1 \nATOM 1210 N N . PRO A 1 227 ? 1.457 38.566 73.904 1.00 16.70 187 A 1 \nATOM 1211 C CA . PRO A 1 227 ? 1.105 37.168 73.705 1.00 16.57 187 A 1 \nATOM 1212 C C . PRO A 1 227 ? -0.362 36.854 73.965 1.00 16.61 187 A 1 \nATOM 1213 O O . PRO A 1 227 ? -0.980 37.425 74.863 1.00 16.38 187 A 1 \nATOM 1214 C CB . PRO A 1 227 ? 1.993 36.439 74.718 1.00 16.24 187 A 1 \nATOM 1215 C CG . PRO A 1 227 ? 3.127 37.346 74.936 1.00 16.12 187 A 1 \nATOM 1216 C CD . PRO A 1 227 ? 2.535 38.704 74.901 1.00 16.52 187 A 1 \nATOM 1217 N N . LEU A 1 228 ? -0.899 35.950 73.155 1.00 16.84 188 A 1 \nATOM 1218 C CA . LEU A 1 228 ? -2.238 35.430 73.341 1.00 17.03 188 A 1 \nATOM 1219 C C . LEU A 1 228 ? -2.207 34.439 74.501 1.00 17.17 188 A 1 \nATOM 1220 O O . LEU A 1 228 ? -1.418 33.486 74.499 1.00 17.31 188 A 1 \nATOM 1221 C CB . LEU A 1 228 ? -2.706 34.753 72.051 1.00 17.41 188 A 1 \nATOM 1222 C CG . LEU A 1 228 ? -4.192 34.439 71.883 1.00 18.20 188 A 1 \nATOM 1223 C CD1 . LEU A 1 228 ? -5.045 35.692 71.992 1.00 16.93 188 A 1 \nATOM 1224 C CD2 . LEU A 1 228 ? -4.404 33.760 70.544 1.00 18.45 188 A 1 \nATOM 1225 N N . LEU A 1 229 ? -3.057 34.674 75.494 1.00 17.40 189 A 1 \nATOM 1226 C CA . LEU A 1 229 ? -3.065 33.882 76.719 1.00 17.00 189 A 1 \nATOM 1227 C C . LEU A 1 229 ? -3.292 32.394 76.466 1.00 16.94 189 A 1 \nATOM 1228 O O . LEU A 1 229 ? -4.277 32.003 75.841 1.00 17.53 189 A 1 \nATOM 1229 C CB . LEU A 1 229 ? -4.130 34.406 77.673 1.00 16.81 189 A 1 \nATOM 1230 C CG . LEU A 1 229 ? -4.089 33.841 79.091 1.00 18.74 189 A 1 \nATOM 1231 C CD1 . LEU A 1 229 ? -2.944 34.452 79.901 1.00 18.06 189 A 1 \nATOM 1232 C CD2 . LEU A 1 229 ? -5.426 34.099 79.767 1.00 20.84 189 A 1 \nATOM 1233 N N . GLY A 1 230 ? -2.369 31.568 76.945 1.00 16.76 190 A 1 \nATOM 1234 C CA . GLY A 1 230 ? -2.479 30.121 76.789 1.00 15.99 190 A 1 \nATOM 1235 C C . GLY A 1 230 ? -1.862 29.535 75.528 1.00 16.25 190 A 1 \nATOM 1236 O O . GLY A 1 230 ? -1.993 28.330 75.288 1.00 16.57 190 A 1 \nATOM 1237 N N . TYR A 1 231 ? -1.170 30.364 74.739 1.00 15.49 191 A 1 \nATOM 1238 C CA . TYR A 1 231 ? -0.603 29.921 73.461 1.00 15.26 191 A 1 \nATOM 1239 C C . TYR A 1 231 ? 0.930 29.880 73.438 1.00 15.30 191 A 1 \nATOM 1240 O O . TYR A 1 231 ? 1.551 30.162 72.406 1.00 15.13 191 A 1 \nATOM 1241 C CB . TYR A 1 231 ? -1.127 30.808 72.334 1.00 15.36 191 A 1 \nATOM 1242 C CG . TYR A 1 231 ? -2.534 30.472 71.905 1.00 16.46 191 A 1 \nATOM 1243 C CD1 . TYR A 1 231 ? -3.637 30.833 72.692 1.00 17.53 191 A 1 \nATOM 1244 C CD2 . TYR A 1 231 ? -2.771 29.790 70.709 1.00 16.06 191 A 1 \nATOM 1245 C CE1 . TYR A 1 231 ? -4.934 30.518 72.303 1.00 17.59 191 A 1 \nATOM 1246 C CE2 . TYR A 1 231 ? -4.065 29.476 70.304 1.00 15.75 191 A 1 \nATOM 1247 C CZ . TYR A 1 231 ? -5.142 29.839 71.108 1.00 18.38 191 A 1 \nATOM 1248 O OH . TYR A 1 231 ? -6.428 29.530 70.725 1.00 18.38 191 A 1 \nATOM 1249 N N . THR A 1 232 ? 1.535 29.503 74.565 1.00 14.17 192 A 1 \nATOM 1250 C CA . THR A 1 232 ? 2.980 29.643 74.744 1.00 13.64 192 A 1 \nATOM 1251 C C . THR A 1 232 ? 3.811 29.006 73.625 1.00 13.76 192 A 1 \nATOM 1252 O O . THR A 1 232 ? 4.590 29.705 72.981 1.00 13.67 192 A 1 \nATOM 1253 C CB . THR A 1 232 ? 3.443 29.155 76.131 1.00 13.98 192 A 1 \nATOM 1254 O OG1 . THR A 1 232 ? 2.848 29.974 77.146 1.00 14.27 192 A 1 \nATOM 1255 C CG2 . THR A 1 232 ? 4.960 29.247 76.263 1.00 13.99 192 A 1 \nATOM 1256 N N . ILE A 1 233 ? 3.638 27.707 73.380 1.00 13.13 193 A 1 \nATOM 1257 C CA . ILE A 1 233 ? 4.422 27.023 72.356 1.00 12.65 193 A 1 \nATOM 1258 C C . ILE A 1 233 ? 4.311 27.733 71.006 1.00 12.82 193 A 1 \nATOM 1259 O O . ILE A 1 233 ? 5.334 27.987 70.350 1.00 12.62 193 A 1 \nATOM 1260 C CB . ILE A 1 233 ? 4.054 25.522 72.212 1.00 13.35 193 A 1 \nATOM 1261 C CG1 . ILE A 1 233 ? 4.299 24.768 73.525 1.00 14.74 193 A 1 \nATOM 1262 C CG2 . ILE A 1 233 ? 4.858 24.875 71.088 1.00 11.13 193 A 1 \nATOM 1263 C CD1 . ILE A 1 233 ? 5.775 24.647 73.923 1.00 18.59 193 A 1 \nATOM 1264 N N . TYR A 1 234 ? 3.082 28.064 70.604 1.00 12.06 194 A 1 \nATOM 1265 C CA . TYR A 1 234 ? 2.859 28.789 69.361 1.00 11.85 194 A 1 \nATOM 1266 C C . TYR A 1 234 ? 3.681 30.082 69.333 1.00 12.02 194 A 1 \nATOM 1267 O O . TYR A 1 234 ? 4.398 30.349 68.357 1.00 12.10 194 A 1 \nATOM 1268 C CB . TYR A 1 234 ? 1.368 29.088 69.136 1.00 11.96 194 A 1 \nATOM 1269 C CG . TYR A 1 234 ? 1.134 30.156 68.085 1.00 12.10 194 A 1 \nATOM 1270 C CD1 . TYR A 1 234 ? 1.102 29.837 66.720 1.00 11.69 194 A 1 \nATOM 1271 C CD2 . TYR A 1 234 ? 0.968 31.487 68.451 1.00 12.20 194 A 1 \nATOM 1272 C CE1 . TYR A 1 234 ? 0.911 30.819 65.763 1.00 11.33 194 A 1 \nATOM 1273 C CE2 . TYR A 1 234 ? 0.782 32.475 67.492 1.00 12.89 194 A 1 \nATOM 1274 C CZ . TYR A 1 234 ? 0.755 32.133 66.160 1.00 12.24 194 A 1 \nATOM 1275 O OH . TYR A 1 234 ? 0.575 33.117 65.221 1.00 11.89 194 A 1 \nATOM 1276 N N . THR A 1 235 ? 3.575 30.862 70.413 1.00 11.24 195 A 1 \nATOM 1277 C CA . THR A 1 235 ? 4.255 32.149 70.546 1.00 11.11 195 A 1 \nATOM 1278 C C . THR A 1 235 ? 5.773 31.977 70.505 1.00 11.63 195 A 1 \nATOM 1279 O O . THR A 1 235 ? 6.484 32.736 69.845 1.00 11.70 195 A 1 \nATOM 1280 C CB . THR A 1 235 ? 3.825 32.846 71.855 1.00 11.37 195 A 1 \nATOM 1281 O OG1 . THR A 1 235 ? 2.410 33.076 71.820 1.00 10.23 195 A 1 \nATOM 1282 C CG2 . THR A 1 235 ? 4.575 34.170 72.066 1.00 10.37 195 A 1 \nATOM 1283 N N . MET A 1 236 ? 6.259 30.969 71.214 1.00 12.01 196 A 1 \nATOM 1284 C CA . MET A 1 236 ? 7.670 30.601 71.181 1.00 12.47 196 A 1 \nATOM 1285 C C . MET A 1 236 ? 8.133 30.288 69.759 1.00 12.75 196 A 1 \nATOM 1286 O O . MET A 1 236 ? 9.198 30.736 69.338 1.00 12.84 196 A 1 \nATOM 1287 C CB . MET A 1 236 ? 7.919 29.395 72.082 1.00 12.13 196 A 1 \nATOM 1288 C CG . MET A 1 236 ? 7.795 29.684 73.569 1.00 11.61 196 A 1 \nATOM 1289 S SD . MET A 1 236 ? 8.205 28.222 74.534 1.00 13.48 196 A 1 \nATOM 1290 C CE . MET A 1 236 ? 9.927 27.947 74.088 1.00 11.48 196 A 1 \nATOM 1291 N N . ALA A 1 237 ? 7.314 29.537 69.026 1.00 12.88 197 A 1 \nATOM 1292 C CA . ALA A 1 237 ? 7.648 29.124 67.669 1.00 12.78 197 A 1 \nATOM 1293 C C . ALA A 1 237 ? 7.721 30.304 66.695 1.00 13.03 197 A 1 \nATOM 1294 O O . ALA A 1 237 ? 8.612 30.337 65.841 1.00 13.55 197 A 1 \nATOM 1295 C CB . ALA A 1 237 ? 6.678 28.089 67.183 1.00 12.27 197 A 1 \nATOM 1296 N N . LYS A 1 238 ? 6.812 31.272 66.832 1.00 11.99 198 A 1 \nATOM 1297 C CA . LYS A 1 238 ? 6.865 32.495 66.021 1.00 12.39 198 A 1 \nATOM 1298 C C . LYS A 1 238 ? 8.092 33.327 66.365 1.00 13.16 198 A 1 \nATOM 1299 O O . LYS A 1 238 ? 8.719 33.918 65.479 1.00 14.05 198 A 1 \nATOM 1300 C CB . LYS A 1 238 ? 5.591 33.336 66.165 1.00 11.84 198 A 1 \nATOM 1301 C CG . LYS A 1 238 ? 4.363 32.742 65.490 1.00 11.57 198 A 1 \nATOM 1302 C CD . LYS A 1 238 ? 4.586 32.474 64.004 1.00 9.94 198 A 1 \nATOM 1303 C CE . LYS A 1 238 ? 3.364 31.807 63.405 1.00 10.82 198 A 1 \nATOM 1304 N NZ . LYS A 1 238 ? 3.533 31.426 61.972 1.00 9.78 198 A 1 \nATOM 1305 N N . GLY A 1 239 ? 8.435 33.364 67.648 1.00 12.39 199 A 1 \nATOM 1306 C CA . GLY A 1 239 ? 9.684 33.968 68.084 1.00 12.65 199 A 1 \nATOM 1307 C C . GLY A 1 239 ? 10.875 33.356 67.368 1.00 12.96 199 A 1 \nATOM 1308 O O . GLY A 1 239 ? 11.761 34.078 66.897 1.00 13.53 199 A 1 \nATOM 1309 N N . ALA A 1 240 ? 10.880 32.025 67.278 1.00 12.17 200 A 1 \nATOM 1310 C CA . ALA A 1 240 ? 11.927 31.288 66.566 1.00 12.31 200 A 1 \nATOM 1311 C C . ALA A 1 240 ? 11.933 31.615 65.074 1.00 12.45 200 A 1 \nATOM 1312 O O . ALA A 1 240 ? 12.998 31.782 64.476 1.00 12.67 200 A 1 \nATOM 1313 C CB . ALA A 1 240 ? 11.768 29.790 66.779 1.00 11.98 200 A 1 \nATOM 1314 N N . LEU A 1 241 ? 10.742 31.721 64.486 1.00 11.52 201 A 1 \nATOM 1315 C CA . LEU A 1 241 ? 10.616 32.051 63.074 1.00 11.69 201 A 1 \nATOM 1316 C C . LEU A 1 241 ? 11.138 33.456 62.781 1.00 11.94 201 A 1 \nATOM 1317 O O . LEU A 1 241 ? 11.734 33.694 61.739 1.00 12.01 201 A 1 \nATOM 1318 C CB . LEU A 1 241 ? 9.165 31.881 62.606 1.00 12.00 201 A 1 \nATOM 1319 C CG . LEU A 1 241 ? 8.862 31.964 61.101 1.00 11.65 201 A 1 \nATOM 1320 C CD1 . LEU A 1 241 ? 9.691 30.970 60.283 1.00 11.13 201 A 1 \nATOM 1321 C CD2 . LEU A 1 241 ? 7.380 31.781 60.830 1.00 10.95 201 A 1 \nATOM 1322 N N . GLU A 1 242 ? 10.923 34.383 63.708 1.00 12.58 202 A 1 \nATOM 1323 C CA . GLU A 1 242 ? 11.497 35.715 63.588 1.00 13.52 202 A 1 \nATOM 1324 C C . GLU A 1 242 ? 13.025 35.653 63.590 1.00 13.15 202 A 1 \nATOM 1325 O O . GLU A 1 242 ? 13.676 36.329 62.791 1.00 13.65 202 A 1 \nATOM 1326 C CB . GLU A 1 242 ? 11.001 36.627 64.706 1.00 14.21 202 A 1 \nATOM 1327 C CG . GLU A 1 242 ? 9.658 37.283 64.442 1.00 17.70 202 A 1 \nATOM 1328 C CD . GLU A 1 242 ? 9.085 37.928 65.694 1.00 24.11 202 A 1 \nATOM 1329 O OE1 . GLU A 1 242 ? 9.880 38.452 66.512 1.00 28.48 202 A 1 \nATOM 1330 O OE2 . GLU A 1 242 ? 7.846 37.906 65.865 1.00 25.06 202 A 1 \nATOM 1331 N N . GLY A 1 243 ? 13.584 34.836 64.480 1.00 12.22 203 A 1 \nATOM 1332 C CA . GLY A 1 243 ? 15.017 34.625 64.527 1.00 11.27 203 A 1 \nATOM 1333 C C . GLY A 1 243 ? 15.526 34.033 63.227 1.00 11.85 203 A 1 \nATOM 1334 O O . GLY A 1 243 ? 16.559 34.443 62.703 1.00 11.80 203 A 1 \nATOM 1335 N N . LEU A 1 244 ? 14.793 33.067 62.695 1.00 12.24 204 A 1 \nATOM 1336 C CA . LEU A 1 244 ? 15.155 32.444 61.431 1.00 11.76 204 A 1 \nATOM 1337 C C . LEU A 1 244 ? 15.203 33.475 60.302 1.00 12.17 204 A 1 \nATOM 1338 O O . LEU A 1 244 ? 16.130 33.459 59.483 1.00 12.71 204 A 1 \nATOM 1339 C CB . LEU A 1 244 ? 14.187 31.309 61.092 1.00 11.59 204 A 1 \nATOM 1340 C CG . LEU A 1 244 ? 14.385 30.592 59.758 1.00 11.11 204 A 1 \nATOM 1341 C CD1 . LEU A 1 244 ? 15.763 29.982 59.646 1.00 10.55 204 A 1 \nATOM 1342 C CD2 . LEU A 1 244 ? 13.342 29.529 59.584 1.00 10.82 204 A 1 \nATOM 1343 N N . THR A 1 245 ? 14.213 34.368 60.275 1.00 11.78 205 A 1 \nATOM 1344 C CA . THR A 1 245 ? 14.160 35.444 59.291 1.00 11.49 205 A 1 \nATOM 1345 C C . THR A 1 245 ? 15.453 36.279 59.303 1.00 12.21 205 A 1 \nATOM 1346 O O . THR A 1 245 ? 16.067 36.514 58.249 1.00 12.68 205 A 1 \nATOM 1347 C CB . THR A 1 245 ? 12.940 36.358 59.538 1.00 10.62 205 A 1 \nATOM 1348 O OG1 . THR A 1 245 ? 11.754 35.566 59.547 1.00 10.78 205 A 1 \nATOM 1349 C CG2 . THR A 1 245 ? 12.816 37.426 58.462 1.00 9.65 205 A 1 \nATOM 1350 N N . ARG A 1 246 ? 15.859 36.705 60.497 1.00 11.29 206 A 1 \nATOM 1351 C CA . ARG A 1 246 ? 17.032 37.543 60.657 1.00 11.96 206 A 1 \nATOM 1352 C C . ARG A 1 246 ? 18.328 36.794 60.364 1.00 11.93 206 A 1 \nATOM 1353 O O . ARG A 1 246 ? 19.176 37.294 59.622 1.00 11.96 206 A 1 \nATOM 1354 C CB . ARG A 1 246 ? 17.062 38.174 62.049 1.00 11.95 206 A 1 \nATOM 1355 C CG . ARG A 1 246 ? 16.095 39.341 62.185 1.00 13.33 206 A 1 \nATOM 1356 C CD . ARG A 1 246 ? 16.250 40.066 63.502 1.00 15.45 206 A 1 \nATOM 1357 N NE . ARG A 1 246 ? 15.755 39.226 64.585 1.00 20.07 206 A 1 \nATOM 1358 C CZ . ARG A 1 246 ? 14.579 39.374 65.185 1.00 20.36 206 A 1 \nATOM 1359 N NH1 . ARG A 1 246 ? 13.766 40.357 64.834 1.00 20.74 206 A 1 \nATOM 1360 N NH2 . ARG A 1 246 ? 14.223 38.535 66.147 1.00 22.43 206 A 1 \nATOM 1361 N N . SER A 1 247 ? 18.469 35.594 60.923 1.00 11.71 207 A 1 \nATOM 1362 C CA . SER A 1 247 ? 19.680 34.796 60.724 1.00 11.94 207 A 1 \nATOM 1363 C C . SER A 1 247 ? 19.856 34.384 59.267 1.00 12.34 207 A 1 \nATOM 1364 O O . SER A 1 247 ? 20.950 34.510 58.715 1.00 12.73 207 A 1 \nATOM 1365 C CB . SER A 1 247 ? 19.686 33.564 61.633 1.00 12.28 207 A 1 \nATOM 1366 O OG . SER A 1 247 ? 20.876 32.813 61.478 1.00 10.57 207 A 1 \nATOM 1367 N N . ALA A 1 248 ? 18.784 33.904 58.643 1.00 12.14 208 A 1 \nATOM 1368 C CA . ALA A 1 248 ? 18.841 33.509 57.236 1.00 12.07 208 A 1 \nATOM 1369 C C . ALA A 1 248 ? 19.125 34.696 56.307 1.00 12.11 208 A 1 \nATOM 1370 O O . ALA A 1 248 ? 19.898 34.571 55.360 1.00 11.83 208 A 1 \nATOM 1371 C CB . ALA A 1 248 ? 17.567 32.778 56.822 1.00 11.45 208 A 1 \nATOM 1372 N N . ALA A 1 249 ? 18.511 35.844 56.585 1.00 11.87 209 A 1 \nATOM 1373 C CA . ALA A 1 249 ? 18.725 37.031 55.767 1.00 12.30 209 A 1 \nATOM 1374 C C . ALA A 1 249 ? 20.208 37.376 55.704 1.00 12.68 209 A 1 \nATOM 1375 O O . ALA A 1 249 ? 20.731 37.697 54.631 1.00 13.14 209 A 1 \nATOM 1376 C CB . ALA A 1 249 ? 17.934 38.193 56.299 1.00 12.15 209 A 1 \nATOM 1377 N N . LEU A 1 250 ? 20.884 37.272 56.848 1.00 13.06 210 A 1 \nATOM 1378 C CA . LEU A 1 250 ? 22.293 37.610 56.933 1.00 13.03 210 A 1 \nATOM 1379 C C . LEU A 1 250 ? 23.148 36.598 56.189 1.00 13.38 210 A 1 \nATOM 1380 O O . LEU A 1 250 ? 24.021 36.972 55.404 1.00 13.60 210 A 1 \nATOM 1381 C CB . LEU A 1 250 ? 22.751 37.730 58.389 1.00 12.95 210 A 1 \nATOM 1382 C CG . LEU A 1 250 ? 24.168 38.266 58.609 1.00 13.01 210 A 1 \nATOM 1383 C CD1 . LEU A 1 250 ? 24.225 39.766 58.418 1.00 12.81 210 A 1 \nATOM 1384 C CD2 . LEU A 1 250 ? 24.653 37.900 59.993 1.00 14.85 210 A 1 \nATOM 1385 N N . GLU A 1 251 ? 22.879 35.320 56.425 1.00 13.43 211 A 1 \nATOM 1386 C CA . GLU A 1 251 ? 23.714 34.249 55.878 1.00 14.07 211 A 1 \nATOM 1387 C C . GLU A 1 251 ? 23.510 34.029 54.381 1.00 14.92 211 A 1 \nATOM 1388 O O . GLU A 1 251 ? 24.434 33.604 53.680 1.00 15.18 211 A 1 \nATOM 1389 C CB . GLU A 1 251 ? 23.472 32.948 56.635 1.00 13.94 211 A 1 \nATOM 1390 C CG . GLU A 1 251 ? 24.569 31.919 56.442 1.00 15.91 211 A 1 \nATOM 1391 C CD . GLU A 1 251 ? 24.387 30.672 57.292 1.00 18.18 211 A 1 \nATOM 1392 O OE1 . GLU A 1 251 ? 23.692 30.737 58.325 1.00 19.03 211 A 1 \nATOM 1393 O OE2 . GLU A 1 251 ? 24.950 29.621 56.927 1.00 20.21 211 A 1 \nATOM 1394 N N . LEU A 1 252 ? 22.302 34.323 53.898 1.00 15.36 212 A 1 \nATOM 1395 C CA . LEU A 1 252 ? 21.957 34.075 52.506 1.00 14.80 212 A 1 \nATOM 1396 C C . LEU A 1 252 ? 22.076 35.320 51.627 1.00 15.53 212 A 1 \nATOM 1397 O O . LEU A 1 252 ? 21.867 35.245 50.409 1.00 15.97 212 A 1 \nATOM 1398 C CB . LEU A 1 252 ? 20.567 33.448 52.389 1.00 13.85 212 A 1 \nATOM 1399 C CG . LEU A 1 252 ? 20.320 32.160 53.178 1.00 13.32 212 A 1 \nATOM 1400 C CD1 . LEU A 1 252 ? 18.928 31.636 52.906 1.00 13.55 212 A 1 \nATOM 1401 C CD2 . LEU A 1 252 ? 21.354 31.095 52.864 1.00 13.85 212 A 1 \nATOM 1402 N N . ALA A 1 253 ? 22.429 36.453 52.232 1.00 15.01 213 A 1 \nATOM 1403 C CA . ALA A 1 253 ? 22.667 37.675 51.463 1.00 15.13 213 A 1 \nATOM 1404 C C . ALA A 1 253 ? 23.701 37.516 50.333 1.00 14.83 213 A 1 \nATOM 1405 O O . ALA A 1 253 ? 23.463 38.010 49.240 1.00 15.39 213 A 1 \nATOM 1406 C CB . ALA A 1 253 ? 23.025 38.831 52.373 1.00 14.90 213 A 1 \nATOM 1407 N N . PRO A 1 254 ? 24.847 36.834 50.585 1.00 15.43 214 A 1 \nATOM 1408 C CA . PRO A 1 254 ? 25.797 36.591 49.488 1.00 15.38 214 A 1 \nATOM 1409 C C . PRO A 1 254 ? 25.199 35.889 48.267 1.00 15.80 214 A 1 \nATOM 1410 O O . PRO A 1 254 ? 25.670 36.104 47.150 1.00 16.87 214 A 1 \nATOM 1411 C CB . PRO A 1 254 ? 26.869 35.705 50.138 1.00 14.44 214 A 1 \nATOM 1412 C CG . PRO A 1 254 ? 26.820 36.050 51.561 1.00 14.77 214 A 1 \nATOM 1413 C CD . PRO A 1 254 ? 25.370 36.304 51.860 1.00 15.64 214 A 1 \nATOM 1414 N N . LEU A 1 255 ? 24.185 35.054 48.470 1.00 15.34 215 A 1 \nATOM 1415 C CA . LEU A 1 255 ? 23.515 34.403 47.345 1.00 15.20 215 A 1 \nATOM 1416 C C . LEU A 1 255 ? 22.324 35.202 46.818 1.00 15.38 215 A 1 \nATOM 1417 O O . LEU A 1 255 ? 21.542 34.697 46.015 1.00 15.69 215 A 1 \nATOM 1418 C CB . LEU A 1 255 ? 23.058 33.001 47.723 1.00 15.16 215 A 1 \nATOM 1419 C CG . LEU A 1 255 ? 24.112 31.908 47.858 1.00 16.59 215 A 1 \nATOM 1420 C CD1 . LEU A 1 255 ? 23.452 30.628 48.382 1.00 16.23 215 A 1 \nATOM 1421 C CD2 . LEU A 1 255 ? 24.817 31.655 46.522 1.00 15.19 215 A 1 \nATOM 1422 N N . GLN A 1 256 ? 22.191 36.445 47.272 1.00 15.45 216 A 1 \nATOM 1423 C CA . GLN A 1 256 ? 21.081 37.318 46.882 1.00 15.98 216 A 1 \nATOM 1424 C C . GLN A 1 256 ? 19.706 36.726 47.177 1.00 15.46 216 A 1 \nATOM 1425 O O . GLN A 1 256 ? 18.725 37.033 46.501 1.00 16.21 216 A 1 \nATOM 1426 C CB . GLN A 1 256 ? 21.192 37.736 45.412 1.00 16.19 216 A 1 \nATOM 1427 C CG . GLN A 1 256 ? 22.431 38.562 45.118 1.00 19.47 216 A 1 \nATOM 1428 C CD . GLN A 1 256 ? 22.426 39.187 43.739 1.00 22.67 216 A 1 \nATOM 1429 O OE1 . GLN A 1 256 ? 23.394 39.826 43.349 1.00 25.63 216 A 1 \nATOM 1430 N NE2 . GLN A 1 256 ? 21.338 39.011 42.993 1.00 25.64 216 A 1 \nATOM 1431 N N . ILE A 1 257 ? 19.638 35.877 48.190 1.00 14.74 217 A 1 \nATOM 1432 C CA . ILE A 1 257 ? 18.365 35.369 48.658 1.00 13.91 217 A 1 \nATOM 1433 C C . ILE A 1 257 ? 17.902 36.285 49.773 1.00 14.33 217 A 1 \nATOM 1434 O O . ILE A 1 257 ? 18.567 36.404 50.805 1.00 14.34 217 A 1 \nATOM 1435 C CB . ILE A 1 257 ? 18.472 33.920 49.172 1.00 13.61 217 A 1 \nATOM 1436 C CG1 . ILE A 1 257 ? 18.966 32.986 48.056 1.00 13.01 217 A 1 \nATOM 1437 C CG2 . ILE A 1 257 ? 17.132 33.460 49.703 1.00 12.04 217 A 1 \nATOM 1438 C CD1 . ILE A 1 257 ? 19.364 31.608 48.531 1.00 11.42 217 A 1 \nATOM 1439 N N . ARG A 1 258 ? 16.774 36.949 49.552 1.00 13.62 218 A 1 \nATOM 1440 C CA . ARG A 1 258 ? 16.188 37.820 50.556 1.00 13.47 218 A 1 \nATOM 1441 C C . ARG A 1 258 ? 15.279 37.010 51.477 1.00 13.31 218 A 1 \nATOM 1442 O O . ARG A 1 258 ? 14.557 36.116 51.021 1.00 13.98 218 A 1 \nATOM 1443 C CB . ARG A 1 258 ? 15.426 38.961 49.884 1.00 13.33 218 A 1 \nATOM 1444 C CG . ARG A 1 258 ? 16.316 39.834 49.020 1.00 14.35 218 A 1 \nATOM 1445 C CD . ARG A 1 258 ? 15.569 41.000 48.415 1.00 14.76 218 A 1 \nATOM 1446 N NE . ARG A 1 258 ? 14.678 40.597 47.330 1.00 18.30 218 A 1 \nATOM 1447 C CZ . ARG A 1 258 ? 13.348 40.562 47.409 1.00 20.87 218 A 1 \nATOM 1448 N NH1 . ARG A 1 258 ? 12.726 40.913 48.530 1.00 21.79 218 A 1 \nATOM 1449 N NH2 . ARG A 1 258 ? 12.637 40.180 46.357 1.00 18.55 218 A 1 \nATOM 1450 N N . VAL A 1 259 ? 15.337 37.292 52.775 1.00 12.61 219 A 1 \nATOM 1451 C CA . VAL A 1 259 ? 14.472 36.605 53.730 1.00 11.91 219 A 1 \nATOM 1452 C C . VAL A 1 259 ? 13.767 37.637 54.582 1.00 12.03 219 A 1 \nATOM 1453 O O . VAL A 1 259 ? 14.402 38.372 55.335 1.00 12.89 219 A 1 \nATOM 1454 C CB . VAL A 1 259 ? 15.240 35.610 54.644 1.00 11.80 219 A 1 \nATOM 1455 C CG1 . VAL A 1 259 ? 14.263 34.766 55.436 1.00 10.44 219 A 1 \nATOM 1456 C CG2 . VAL A 1 259 ? 16.157 34.716 53.840 1.00 10.12 219 A 1 \nATOM 1457 N N . ASN A 1 260 ? 12.448 37.687 54.461 1.00 12.21 220 A 1 \nATOM 1458 C CA . ASN A 1 260 ? 11.631 38.664 55.182 1.00 11.60 220 A 1 \nATOM 1459 C C . ASN A 1 260 ? 10.422 38.027 55.849 1.00 11.50 220 A 1 \nATOM 1460 O O . ASN A 1 260 ? 10.081 36.874 55.575 1.00 10.97 220 A 1 \nATOM 1461 C CB . ASN A 1 260 ? 11.193 39.774 54.235 1.00 11.70 220 A 1 \nATOM 1462 C CG . ASN A 1 260 ? 12.334 40.702 53.866 1.00 12.72 220 A 1 \nATOM 1463 O OD1 . ASN A 1 260 ? 12.880 41.403 54.722 1.00 15.31 220 A 1 \nATOM 1464 N ND2 . ASN A 1 260 ? 12.698 40.720 52.590 1.00 10.23 220 A 1 \nATOM 1465 N N . GLY A 1 261 ? 9.782 38.776 56.735 1.00 11.50 221 A 1 \nATOM 1466 C CA . GLY A 1 261 ? 8.596 38.294 57.418 1.00 11.44 221 A 1 \nATOM 1467 C C . GLY A 1 261 ? 7.381 39.151 57.143 1.00 11.74 221 A 1 \nATOM 1468 O O . GLY A 1 261 ? 7.497 40.357 56.947 1.00 11.78 221 A 1 \nATOM 1469 N N . VAL A 1 262 ? 6.212 38.515 57.107 1.00 11.37 222 A 1 \nATOM 1470 C CA . VAL A 1 262 ? 4.940 39.231 57.084 1.00 10.91 222 A 1 \nATOM 1471 C C . VAL A 1 262 ? 4.136 38.782 58.297 1.00 10.69 222 A 1 \nATOM 1472 O O . VAL A 1 262 ? 3.964 37.586 58.530 1.00 11.49 222 A 1 \nATOM 1473 C CB . VAL A 1 262 ? 4.155 38.983 55.774 1.00 10.78 222 A 1 \nATOM 1474 C CG1 . VAL A 1 262 ? 2.756 39.592 55.850 1.00 9.90 222 A 1 \nATOM 1475 C CG2 . VAL A 1 262 ? 4.910 39.548 54.593 1.00 10.39 222 A 1 \nATOM 1476 N N . GLY A 1 263 ? 3.653 39.739 59.076 1.00 9.82 223 A 1 \nATOM 1477 C CA . GLY A 1 263 ? 2.931 39.427 60.301 1.00 10.09 223 A 1 \nATOM 1478 C C . GLY A 1 263 ? 1.521 39.970 60.316 1.00 10.41 223 A 1 \nATOM 1479 O O . GLY A 1 263 ? 1.330 41.161 60.515 1.00 10.70 223 A 1 \nATOM 1480 N N . PRO A 1 264 ? 0.522 39.107 60.055 1.00 11.10 224 A 1 \nATOM 1481 C CA . PRO A 1 264 ? -0.873 39.480 60.251 1.00 11.25 224 A 1 \nATOM 1482 C C . PRO A 1 264 ? -1.181 39.745 61.716 1.00 12.11 224 A 1 \nATOM 1483 O O . PRO A 1 264 ? -0.462 39.255 62.595 1.00 12.70 224 A 1 \nATOM 1484 C CB . PRO A 1 264 ? -1.634 38.232 59.787 1.00 10.76 224 A 1 \nATOM 1485 C CG . PRO A 1 264 ? -0.696 37.535 58.882 1.00 10.59 224 A 1 \nATOM 1486 C CD . PRO A 1 264 ? 0.640 37.750 59.495 1.00 10.92 224 A 1 \nATOM 1487 N N . GLY A 1 265 ? -2.225 40.530 61.963 1.00 12.65 225 A 1 \nATOM 1488 C CA . GLY A 1 265 ? -2.792 40.682 63.295 1.00 12.76 225 A 1 \nATOM 1489 C C . GLY A 1 265 ? -4.002 39.774 63.404 1.00 13.62 225 A 1 \nATOM 1490 O O . GLY A 1 265 ? -3.922 38.665 63.955 1.00 13.33 225 A 1 \nATOM 1491 N N . LEU A 1 266 ? -5.120 40.256 62.865 1.00 13.97 226 A 1 \nATOM 1492 C CA . LEU A 1 266 ? -6.338 39.474 62.737 1.00 14.60 226 A 1 \nATOM 1493 C C . LEU A 1 266 ? -6.758 39.414 61.272 1.00 15.44 226 A 1 \nATOM 1494 O O . LEU A 1 266 ? -7.002 40.448 60.652 1.00 15.88 226 A 1 \nATOM 1495 C CB . LEU A 1 266 ? -7.457 40.074 63.581 1.00 14.54 226 A 1 \nATOM 1496 C CG . LEU A 1 266 ? -7.239 40.269 65.084 1.00 15.19 226 A 1 \nATOM 1497 C CD1 . LEU A 1 266 ? -8.484 40.928 65.696 1.00 14.68 226 A 1 \nATOM 1498 C CD2 . LEU A 1 266 ? -6.911 38.953 65.799 1.00 14.55 226 A 1 \nATOM 1499 N N . SER A 1 267 ? -6.822 38.200 60.724 1.00 16.40 227 A 1 \nATOM 1500 C CA . SER A 1 267 ? -7.175 37.987 59.318 1.00 17.46 227 A 1 \nATOM 1501 C C . SER A 1 267 ? -8.166 36.849 59.134 1.00 18.52 227 A 1 \nATOM 1502 O O . SER A 1 267 ? -8.028 35.791 59.748 1.00 18.39 227 A 1 \nATOM 1503 C CB . SER A 1 267 ? -5.933 37.672 58.492 1.00 17.15 227 A 1 \nATOM 1504 O OG . SER A 1 267 ? -5.000 38.711 58.582 1.00 19.12 227 A 1 \nATOM 1505 N N . VAL A 1 268 ? -9.136 37.063 58.251 1.00 19.55 228 A 1 \nATOM 1506 C CA . VAL A 1 268 ? -10.152 36.058 57.925 1.00 20.86 228 A 1 \nATOM 1507 C C . VAL A 1 268 ? -10.603 35.274 59.165 1.00 21.87 228 A 1 \nATOM 1508 O O . VAL A 1 268 ? -10.512 34.040 59.236 1.00 21.82 228 A 1 \nATOM 1509 C CB . VAL A 1 268 ? -9.736 35.147 56.716 1.00 20.71 228 A 1 \nATOM 1510 C CG1 . VAL A 1 268 ? -9.684 35.971 55.440 1.00 20.78 228 A 1 \nATOM 1511 C CG2 . VAL A 1 268 ? -8.386 34.465 56.948 1.00 20.61 228 A 1 \nATOM 1512 N N . LEU A 1 269 ? -11.085 36.035 60.141 1.00 23.88 229 A 1 \nATOM 1513 C CA . LEU A 1 269 ? -11.548 35.513 61.415 1.00 26.22 229 A 1 \nATOM 1514 C C . LEU A 1 269 ? -12.774 34.625 61.219 1.00 28.40 229 A 1 \nATOM 1515 O O . LEU A 1 269 ? -13.731 35.015 60.523 1.00 28.84 229 A 1 \nATOM 1516 C CB . LEU A 1 269 ? -11.891 36.696 62.314 1.00 26.02 229 A 1 \nATOM 1517 C CG . LEU A 1 269 ? -11.464 36.745 63.778 1.00 26.86 229 A 1 \nATOM 1518 C CD1 . LEU A 1 269 ? -9.952 36.635 63.934 1.00 26.58 229 A 1 \nATOM 1519 C CD2 . LEU A 1 269 ? -11.972 38.042 64.388 1.00 27.96 229 A 1 \nATOM 1520 N N . VAL A 1 270 ? -12.732 33.434 61.815 1.00 30.86 230 A 1 \nATOM 1521 C CA . VAL A 1 270 ? -13.835 32.468 61.707 1.00 33.89 230 A 1 \nATOM 1522 C C . VAL A 1 270 ? -14.920 32.793 62.721 1.00 34.86 230 A 1 \nATOM 1523 O O . VAL A 1 270 ? -14.639 33.011 63.904 1.00 35.68 230 A 1 \nATOM 1524 C CB . VAL A 1 270 ? -13.381 30.990 61.938 1.00 34.55 230 A 1 \nATOM 1525 C CG1 . VAL A 1 270 ? -14.476 29.985 61.527 1.00 35.37 230 A 1 \nATOM 1526 C CG2 . VAL A 1 270 ? -12.054 30.686 61.260 1.00 35.78 230 A 1 \nATOM 1527 N N . ASP A 1 271 ? -16.156 32.794 62.234 1.00 35.02 231 A 1 \nATOM 1528 C CA . ASP A 1 271 ? -17.311 33.182 63.017 1.00 36.95 231 A 1 \nATOM 1529 C C . ASP A 1 271 ? -17.863 32.029 63.867 1.00 35.82 231 A 1 \nATOM 1530 O O . ASP A 1 271 ? -19.045 32.025 64.214 1.00 36.59 231 A 1 \nATOM 1531 C CB . ASP A 1 271 ? -18.390 33.768 62.086 1.00 37.89 231 A 1 \nATOM 1532 C CG . ASP A 1 271 ? -18.607 32.928 60.830 1.00 43.39 231 A 1 \nATOM 1533 O OD1 . ASP A 1 271 ? -17.636 32.314 60.333 1.00 47.64 231 A 1 \nATOM 1534 O OD2 . ASP A 1 271 ? -19.753 32.887 60.333 1.00 47.74 231 A 1 \nATOM 1535 N N . ASP A 1 272 ? -17.003 31.076 64.227 1.00 33.23 232 A 1 \nATOM 1536 C CA . ASP A 1 272 ? -17.427 29.889 64.981 1.00 32.35 232 A 1 \nATOM 1537 C C . ASP A 1 272 ? -17.623 30.175 66.479 1.00 28.91 232 A 1 \nATOM 1538 O O . ASP A 1 272 ? -17.166 29.432 67.354 1.00 28.69 232 A 1 \nATOM 1539 C CB . ASP A 1 272 ? -16.463 28.711 64.741 1.00 34.56 232 A 1 \nATOM 1540 C CG . ASP A 1 272 ? -15.133 28.871 65.473 1.00 40.34 232 A 1 \nATOM 1541 O OD1 . ASP A 1 272 ? -14.535 29.976 65.428 1.00 41.41 232 A 1 \nATOM 1542 O OD2 . ASP A 1 272 ? -14.693 27.880 66.103 1.00 44.20 232 A 1 \nATOM 1543 N N . MET A 1 273 ? -18.324 31.266 66.751 1.00 25.61 233 A 1 \nATOM 1544 C CA . MET A 1 273 ? -18.602 31.733 68.099 1.00 23.78 233 A 1 \nATOM 1545 C C . MET A 1 273 ? -19.817 32.651 68.017 1.00 20.53 233 A 1 \nATOM 1546 O O . MET A 1 273 ? -20.185 33.078 66.927 1.00 20.76 233 A 1 \nATOM 1547 C CB . MET A 1 273 ? -17.401 32.500 68.643 1.00 23.29 233 A 1 \nATOM 1548 C CG . MET A 1 273 ? -17.131 33.820 67.931 1.00 24.72 233 A 1 \nATOM 1549 S SD . MET A 1 273 ? -15.467 34.422 68.231 1.00 27.84 233 A 1 \nATOM 1550 C CE . MET A 1 273 ? -14.511 33.302 67.220 1.00 24.72 233 A 1 \nATOM 1551 N N . PRO A 1 274 ? -20.438 32.976 69.162 1.00 19.24 234 A 1 \nATOM 1552 C CA . PRO A 1 274 ? -21.561 33.917 69.110 1.00 18.30 234 A 1 \nATOM 1553 C C . PRO A 1 274 ? -21.198 35.164 68.295 1.00 18.18 234 A 1 \nATOM 1554 O O . PRO A 1 274 ? -20.126 35.734 68.505 1.00 19.57 234 A 1 \nATOM 1555 C CB . PRO A 1 274 ? -21.760 34.301 70.574 1.00 17.31 234 A 1 \nATOM 1556 C CG . PRO A 1 274 ? -21.242 33.158 71.345 1.00 20.43 234 A 1 \nATOM 1557 C CD . PRO A 1 274 ? -20.146 32.528 70.536 1.00 19.01 234 A 1 \nATOM 1558 N N . PRO A 1 275 ? -22.074 35.582 67.365 1.00 18.15 235 A 1 \nATOM 1559 C CA . PRO A 1 275 ? -21.800 36.734 66.495 1.00 17.99 235 A 1 \nATOM 1560 C C . PRO A 1 275 ? -21.317 37.986 67.248 1.00 19.16 235 A 1 \nATOM 1561 O O . PRO A 1 275 ? -20.416 38.690 66.773 1.00 17.98 235 A 1 \nATOM 1562 C CB . PRO A 1 275 ? -23.155 37.006 65.830 1.00 18.01 235 A 1 \nATOM 1563 C CG . PRO A 1 275 ? -23.855 35.710 65.855 1.00 20.43 235 A 1 \nATOM 1564 C CD . PRO A 1 275 ? -23.386 34.972 67.080 1.00 17.94 235 A 1 \nATOM 1565 N N . ALA A 1 276 ? -21.909 38.258 68.411 1.00 18.54 236 A 1 \nATOM 1566 C CA . ALA A 1 276 ? -21.538 39.435 69.182 1.00 18.53 236 A 1 \nATOM 1567 C C . ALA A 1 276 ? -20.105 39.322 69.709 1.00 19.72 236 A 1 \nATOM 1568 O O . ALA A 1 276 ? -19.417 40.336 69.877 1.00 19.72 236 A 1 \nATOM 1569 C CB . ALA A 1 276 ? -22.526 39.677 70.315 1.00 16.21 236 A 1 \nATOM 1570 N N . VAL A 1 277 ? -19.662 38.089 69.951 1.00 19.73 237 A 1 \nATOM 1571 C CA . VAL A 1 277 ? -18.302 37.826 70.419 1.00 21.58 237 A 1 \nATOM 1572 C C . VAL A 1 277 ? -17.302 38.014 69.278 1.00 22.04 237 A 1 \nATOM 1573 O O . VAL A 1 277 ? -16.269 38.663 69.447 1.00 21.62 237 A 1 \nATOM 1574 C CB . VAL A 1 277 ? -18.179 36.415 71.055 1.00 22.26 237 A 1 \nATOM 1575 C CG1 . VAL A 1 277 ? -16.732 36.094 71.425 1.00 17.92 237 A 1 \nATOM 1576 C CG2 . VAL A 1 277 ? -19.075 36.320 72.283 1.00 20.93 237 A 1 \nATOM 1577 N N . TRP A 1 278 ? -17.635 37.459 68.117 1.00 23.49 238 A 1 \nATOM 1578 C CA . TRP A 1 278 ? -16.856 37.636 66.900 1.00 24.50 238 A 1 \nATOM 1579 C C . TRP A 1 278 ? -16.648 39.112 66.618 1.00 27.50 238 A 1 \nATOM 1580 O O . TRP A 1 278 ? -15.541 39.535 66.312 1.00 27.57 238 A 1 \nATOM 1581 C CB . TRP A 1 278 ? -17.587 36.983 65.732 1.00 22.07 238 A 1 \nATOM 1582 C CG . TRP A 1 278 ? -16.844 37.006 64.429 1.00 18.69 238 A 1 \nATOM 1583 C CD1 . TRP A 1 278 ? -15.707 36.314 64.117 1.00 14.55 238 A 1 \nATOM 1584 C CD2 . TRP A 1 278 ? -17.212 37.728 63.249 1.00 17.36 238 A 1 \nATOM 1585 N NE1 . TRP A 1 278 ? -15.338 36.570 62.820 1.00 16.16 238 A 1 \nATOM 1586 C CE2 . TRP A 1 278 ? -16.241 37.436 62.263 1.00 17.46 238 A 1 \nATOM 1587 C CE3 . TRP A 1 278 ? -18.264 38.599 62.931 1.00 13.91 238 A 1 \nATOM 1588 C CZ2 . TRP A 1 278 ? -16.285 37.989 60.982 1.00 14.98 238 A 1 \nATOM 1589 C CZ3 . TRP A 1 278 ? -18.305 39.149 61.662 1.00 16.25 238 A 1 \nATOM 1590 C CH2 . TRP A 1 278 ? -17.324 38.836 60.700 1.00 16.11 238 A 1 \nATOM 1591 N N . GLU A 1 279 ? -17.723 39.884 66.749 1.00 33.93 239 A 1 \nATOM 1592 C CA . GLU A 1 279 ? -17.699 41.330 66.562 1.00 35.99 239 A 1 \nATOM 1593 C C . GLU A 1 279 ? -16.852 42.065 67.594 1.00 35.97 239 A 1 \nATOM 1594 O O . GLU A 1 279 ? -16.234 43.081 67.275 1.00 36.08 239 A 1 \nATOM 1595 C CB . GLU A 1 279 ? -19.119 41.891 66.593 1.00 37.06 239 A 1 \nATOM 1596 C CG . GLU A 1 279 ? -19.878 41.755 65.292 1.00 41.97 239 A 1 \nATOM 1597 C CD . GLU A 1 279 ? -19.320 42.625 64.162 1.00 48.23 239 A 1 \nATOM 1598 O OE1 . GLU A 1 279 ? -18.448 43.495 64.413 1.00 47.77 239 A 1 \nATOM 1599 O OE2 . GLU A 1 279 ? -19.776 42.432 63.009 1.00 50.09 239 A 1 \nATOM 1600 N N . GLY A 1 280 ? -16.849 41.558 68.827 1.00 35.55 240 A 1 \nATOM 1601 C CA . GLY A 1 280 ? -16.085 42.149 69.910 1.00 34.99 240 A 1 \nATOM 1602 C C . GLY A 1 280 ? -14.601 42.149 69.610 1.00 35.11 240 A 1 \nATOM 1603 O O . GLY A 1 280 ? -13.925 43.161 69.812 1.00 35.80 240 A 1 \nATOM 1604 N N . HIS A 1 281 ? -14.098 41.017 69.119 1.00 34.32 241 A 1 \nATOM 1605 C CA . HIS A 1 281 ? -12.679 40.871 68.828 1.00 33.89 241 A 1 \nATOM 1606 C C . HIS A 1 281 ? -12.234 41.773 67.680 1.00 32.09 241 A 1 \nATOM 1607 O O . HIS A 1 281 ? -11.269 42.520 67.825 1.00 31.84 241 A 1 \nATOM 1608 C CB . HIS A 1 281 ? -12.314 39.406 68.556 1.00 35.14 241 A 1 \nATOM 1609 C CG . HIS A 1 281 ? -12.509 38.501 69.736 1.00 39.70 241 A 1 \nATOM 1610 N ND1 . HIS A 1 281 ? -12.666 37.137 69.605 1.00 43.23 241 A 1 \nATOM 1611 C CD2 . HIS A 1 281 ? -12.580 38.760 71.066 1.00 42.45 241 A 1 \nATOM 1612 C CE1 . HIS A 1 281 ? -12.820 36.594 70.802 1.00 43.54 241 A 1 \nATOM 1613 N NE2 . HIS A 1 281 ? -12.774 37.557 71.705 1.00 43.66 241 A 1 \nATOM 1614 N N . ARG A 1 282 ? -12.948 41.718 66.557 1.00 29.75 242 A 1 \nATOM 1615 C CA . ARG A 1 282 ? -12.584 42.509 65.373 1.00 28.43 242 A 1 \nATOM 1616 C C . ARG A 1 282 ? -12.720 44.022 65.546 1.00 26.68 242 A 1 \nATOM 1617 O O . ARG A 1 282 ? -12.002 44.785 64.900 1.00 26.72 242 A 1 \nATOM 1618 C CB . ARG A 1 282 ? -13.334 42.048 64.115 1.00 28.68 242 A 1 \nATOM 1619 C CG . ARG A 1 282 ? -14.770 41.640 64.333 1.00 30.21 242 A 1 \nATOM 1620 C CD . ARG A 1 282 ? -15.673 42.008 63.161 1.00 31.87 242 A 1 \nATOM 1621 N NE . ARG A 1 282 ? -15.231 41.437 61.895 1.00 33.10 242 A 1 \nATOM 1622 C CZ . ARG A 1 282 ? -15.711 41.793 60.705 1.00 33.81 242 A 1 \nATOM 1623 N NH1 . ARG A 1 282 ? -16.660 42.712 60.612 1.00 31.43 242 A 1 \nATOM 1624 N NH2 . ARG A 1 282 ? -15.238 41.228 59.601 1.00 34.34 242 A 1 \nATOM 1625 N N . SER A 1 283 ? -13.624 44.444 66.425 1.00 24.87 243 A 1 \nATOM 1626 C CA . SER A 1 283 ? -13.845 45.863 66.685 1.00 23.90 243 A 1 \nATOM 1627 C C . SER A 1 283 ? -12.660 46.525 67.396 1.00 23.08 243 A 1 \nATOM 1628 O O . SER A 1 283 ? -12.575 47.753 67.438 1.00 23.11 243 A 1 \nATOM 1629 C CB . SER A 1 283 ? -15.144 46.078 67.476 1.00 23.66 243 A 1 \nATOM 1630 O OG . SER A 1 283 ? -15.008 45.635 68.815 1.00 24.17 243 A 1 \nATOM 1631 N N . LYS A 1 284 ? -11.743 45.712 67.925 1.00 22.19 244 A 1 \nATOM 1632 C CA . LYS A 1 284 ? -10.577 46.214 68.644 1.00 21.32 244 A 1 \nATOM 1633 C C . LYS A 1 284 ? -9.452 46.687 67.727 1.00 19.99 244 A 1 \nATOM 1634 O O . LYS A 1 284 ? -8.533 47.376 68.178 1.00 20.20 244 A 1 \nATOM 1635 C CB . LYS A 1 284 ? -10.040 45.155 69.610 1.00 22.46 244 A 1 \nATOM 1636 C CG . LYS A 1 284 ? -11.042 44.623 70.632 1.00 24.98 244 A 1 \nATOM 1637 C CD . LYS A 1 284 ? -11.473 45.689 71.645 1.00 30.06 244 A 1 \nATOM 1638 C CE . LYS A 1 284 ? -12.431 45.102 72.683 1.00 34.16 244 A 1 \nATOM 1639 N NZ . LYS A 1 284 ? -11.886 43.842 73.298 1.00 35.71 244 A 1 \nATOM 1640 N N . VAL A 1 285 ? -9.513 46.305 66.454 1.00 17.96 245 A 1 \nATOM 1641 C CA . VAL A 1 285 ? -8.553 46.762 65.456 1.00 16.88 245 A 1 \nATOM 1642 C C . VAL A 1 285 ? -8.808 48.238 65.149 1.00 16.40 245 A 1 \nATOM 1643 O O . VAL A 1 285 ? -9.864 48.576 64.628 1.00 16.52 245 A 1 \nATOM 1644 C CB . VAL A 1 285 ? -8.670 45.934 64.152 1.00 17.03 245 A 1 \nATOM 1645 C CG1 . VAL A 1 285 ? -7.693 46.429 63.104 1.00 16.36 245 A 1 \nATOM 1646 C CG2 . VAL A 1 285 ? -8.430 44.461 64.429 1.00 16.87 245 A 1 \nATOM 1647 N N . PRO A 1 286 ? -7.850 49.124 65.480 1.00 15.84 246 A 1 \nATOM 1648 C CA . PRO A 1 286 ? -8.061 50.566 65.277 1.00 15.40 246 A 1 \nATOM 1649 C C . PRO A 1 286 ? -8.482 50.932 63.846 1.00 15.05 246 A 1 \nATOM 1650 O O . PRO A 1 286 ? -9.433 51.689 63.660 1.00 15.17 246 A 1 \nATOM 1651 C CB . PRO A 1 286 ? -6.692 51.175 65.611 1.00 15.66 246 A 1 \nATOM 1652 C CG . PRO A 1 286 ? -6.070 50.188 66.559 1.00 15.39 246 A 1 \nATOM 1653 C CD . PRO A 1 286 ? -6.527 48.839 66.068 1.00 15.82 246 A 1 \nATOM 1654 N N . LEU A 1 287 ? -7.791 50.387 62.848 1.00 14.76 247 A 1 \nATOM 1655 C CA . LEU A 1 287 ? -8.133 50.655 61.448 1.00 14.24 247 A 1 \nATOM 1656 C C . LEU A 1 287 ? -9.255 49.743 60.921 1.00 14.54 247 A 1 \nATOM 1657 O O . LEU A 1 287 ? -9.078 48.521 60.809 1.00 13.98 247 A 1 \nATOM 1658 C CB . LEU A 1 287 ? -6.890 50.536 60.563 1.00 13.58 247 A 1 \nATOM 1659 C CG . LEU A 1 287 ? -6.989 51.052 59.126 1.00 12.77 247 A 1 \nATOM 1660 C CD1 . LEU A 1 287 ? -7.174 52.576 59.071 1.00 11.48 247 A 1 \nATOM 1661 C CD2 . LEU A 1 287 ? -5.760 50.644 58.360 1.00 10.58 247 A 1 \nATOM 1662 N N . TYR A 1 288 ? -10.398 50.358 60.601 1.00 14.12 248 A 1 \nATOM 1663 C CA . TYR A 1 288 ? -11.575 49.693 60.005 1.00 14.17 248 A 1 \nATOM 1664 C C . TYR A 1 288 ? -12.453 48.921 61.000 1.00 15.03 248 A 1 \nATOM 1665 O O . TYR A 1 288 ? -13.599 48.567 60.686 1.00 15.31 248 A 1 \nATOM 1666 C CB . TYR A 1 288 ? -11.206 48.795 58.805 1.00 13.58 248 A 1 \nATOM 1667 C CG . TYR A 1 288 ? -10.262 49.420 57.792 1.00 13.23 248 A 1 \nATOM 1668 C CD1 . TYR A 1 288 ? -10.441 50.738 57.351 1.00 12.78 248 A 1 \nATOM 1669 C CD2 . TYR A 1 288 ? -9.198 48.691 57.270 1.00 13.19 248 A 1 \nATOM 1670 C CE1 . TYR A 1 288 ? -9.572 51.315 56.428 1.00 12.46 248 A 1 \nATOM 1671 C CE2 . TYR A 1 288 ? -8.326 49.254 56.345 1.00 14.12 248 A 1 \nATOM 1672 C CZ . TYR A 1 288 ? -8.515 50.568 55.926 1.00 13.21 248 A 1 \nATOM 1673 O OH . TYR A 1 288 ? -7.654 51.132 55.004 1.00 12.80 248 A 1 \nATOM 1674 N N . GLN A 1 289 ? -11.923 48.673 62.196 1.00 14.88 249 A 1 \nATOM 1675 C CA . GLN A 1 289 ? -12.616 47.898 63.233 1.00 15.05 249 A 1 \nATOM 1676 C C . GLN A 1 289 ? -13.053 46.546 62.698 1.00 14.95 249 A 1 \nATOM 1677 O O . GLN A 1 289 ? -14.182 46.108 62.919 1.00 16.02 249 A 1 \nATOM 1678 C CB . GLN A 1 289 ? -13.804 48.671 63.845 1.00 15.12 249 A 1 \nATOM 1679 C CG . GLN A 1 289 ? -13.449 50.024 64.483 1.00 15.88 249 A 1 \nATOM 1680 C CD . GLN A 1 289 ? -13.296 51.133 63.450 1.00 17.89 249 A 1 \nATOM 1681 O OE1 . GLN A 1 289 ? -14.163 51.333 62.598 1.00 19.31 249 A 1 \nATOM 1682 N NE2 . GLN A 1 289 ? -12.180 51.847 63.512 1.00 18.44 249 A 1 \nATOM 1683 N N . ARG A 1 290 ? -12.145 45.894 61.986 1.00 13.89 250 A 1 \nATOM 1684 C CA . ARG A 1 290 ? -12.384 44.569 61.437 1.00 14.48 250 A 1 \nATOM 1685 C C . ARG A 1 290 ? -11.067 43.828 61.212 1.00 14.63 250 A 1 \nATOM 1686 O O . ARG A 1 290 ? -9.997 44.438 61.101 1.00 14.70 250 A 1 \nATOM 1687 C CB . ARG A 1 290 ? -13.158 44.651 60.108 1.00 14.40 250 A 1 \nATOM 1688 C CG . ARG A 1 290 ? -12.391 45.352 58.979 1.00 13.28 250 A 1 \nATOM 1689 C CD . ARG A 1 290 ? -12.888 44.950 57.618 1.00 11.92 250 A 1 \nATOM 1690 N NE . ARG A 1 290 ? -12.416 45.867 56.583 1.00 12.77 250 A 1 \nATOM 1691 C CZ . ARG A 1 290 ? -11.322 45.688 55.851 1.00 12.42 250 A 1 \nATOM 1692 N NH1 . ARG A 1 290 ? -10.568 44.614 56.027 1.00 10.95 250 A 1 \nATOM 1693 N NH2 . ARG A 1 290 ? -10.982 46.591 54.939 1.00 11.12 250 A 1 \nATOM 1694 N N . ASP A 1 291 ? -11.162 42.509 61.131 1.00 14.14 251 A 1 \nATOM 1695 C CA . ASP A 1 291 ? -10.051 41.679 60.692 1.00 14.55 251 A 1 \nATOM 1696 C C . ASP A 1 291 ? -9.775 41.924 59.206 1.00 14.47 251 A 1 \nATOM 1697 O O . ASP A 1 291 ? -10.631 42.438 58.483 1.00 15.14 251 A 1 \nATOM 1698 C CB . ASP A 1 291 ? -10.383 40.208 60.938 1.00 15.07 251 A 1 \nATOM 1699 C CG . ASP A 1 291 ? -11.711 39.800 60.324 1.00 16.45 251 A 1 \nATOM 1700 O OD1 . ASP A 1 291 ? -12.714 40.516 60.524 1.00 17.89 251 A 1 \nATOM 1701 O OD2 . ASP A 1 291 ? -11.750 38.760 59.638 1.00 18.64 251 A 1 \nATOM 1702 N N . SER A 1 292 ? -8.585 41.564 58.748 1.00 14.12 252 A 1 \nATOM 1703 C CA . SER A 1 292 ? -8.239 41.766 57.350 1.00 14.09 252 A 1 \nATOM 1704 C C . SER A 1 292 ? -8.826 40.682 56.454 1.00 14.47 252 A 1 \nATOM 1705 O O . SER A 1 292 ? -9.204 39.598 56.923 1.00 14.55 252 A 1 \nATOM 1706 C CB . SER A 1 292 ? -6.720 41.823 57.164 1.00 13.98 252 A 1 \nATOM 1707 O OG . SER A 1 292 ? -6.157 40.538 57.045 1.00 15.30 252 A 1 \nATOM 1708 N N . SER A 1 293 ? -8.902 40.985 55.161 1.00 14.31 253 A 1 \nATOM 1709 C CA . SER A 1 293 ? -9.161 39.977 54.149 1.00 14.05 253 A 1 \nATOM 1710 C C . SER A 1 293 ? -7.849 39.263 53.855 1.00 14.35 253 A 1 \nATOM 1711 O O . SER A 1 293 ? -6.774 39.744 54.224 1.00 14.26 253 A 1 \nATOM 1712 C CB . SER A 1 293 ? -9.682 40.632 52.874 1.00 13.62 253 A 1 \nATOM 1713 O OG . SER A 1 293 ? -8.656 41.387 52.246 1.00 14.56 253 A 1 \nATOM 1714 N N . ALA A 1 294 ? -7.938 38.115 53.191 1.00 14.72 254 A 1 \nATOM 1715 C CA . ALA A 1 294 ? -6.751 37.360 52.820 1.00 14.50 254 A 1 \nATOM 1716 C C . ALA A 1 294 ? -5.854 38.161 51.871 1.00 14.85 254 A 1 \nATOM 1717 O O . ALA A 1 294 ? -4.637 38.176 52.035 1.00 14.73 254 A 1 \nATOM 1718 C CB . ALA A 1 294 ? -7.139 36.023 52.214 1.00 14.13 254 A 1 \nATOM 1719 N N . ALA A 1 295 ? -6.464 38.848 50.907 1.00 14.56 255 A 1 \nATOM 1720 C CA . ALA A 1 295 ? -5.719 39.652 49.937 1.00 15.10 255 A 1 \nATOM 1721 C C . ALA A 1 295 ? -4.950 40.793 50.593 1.00 14.74 255 A 1 \nATOM 1722 O O . ALA A 1 295 ? -3.856 41.132 50.153 1.00 14.54 255 A 1 \nATOM 1723 C CB . ALA A 1 295 ? -6.648 40.188 48.857 1.00 14.10 255 A 1 \nATOM 1724 N N . GLU A 1 296 ? -5.526 41.378 51.642 1.00 14.44 256 A 1 \nATOM 1725 C CA . GLU A 1 296 ? -4.866 42.469 52.370 1.00 14.45 256 A 1 \nATOM 1726 C C . GLU A 1 296 ? -3.544 42.031 52.995 1.00 14.14 256 A 1 \nATOM 1727 O O . GLU A 1 296 ? -2.664 42.860 53.224 1.00 14.76 256 A 1 \nATOM 1728 C CB . GLU A 1 296 ? -5.796 43.087 53.421 1.00 14.15 256 A 1 \nATOM 1729 C CG . GLU A 1 296 ? -6.852 44.019 52.833 1.00 14.69 256 A 1 \nATOM 1730 C CD . GLU A 1 296 ? -7.947 44.402 53.832 1.00 17.00 256 A 1 \nATOM 1731 O OE1 . GLU A 1 296 ? -8.185 43.651 54.801 1.00 16.58 256 A 1 \nATOM 1732 O OE2 . GLU A 1 296 ? -8.584 45.459 53.638 1.00 18.12 256 A 1 \nATOM 1733 N N . VAL A 1 297 ? -3.408 40.734 53.266 1.00 13.28 257 A 1 \nATOM 1734 C CA . VAL A 1 297 ? -2.135 40.179 53.715 1.00 13.44 257 A 1 \nATOM 1735 C C . VAL A 1 297 ? -1.289 39.703 52.525 1.00 13.90 257 A 1 \nATOM 1736 O O . VAL A 1 297 ? -0.132 40.090 52.401 1.00 14.79 257 A 1 \nATOM 1737 C CB . VAL A 1 297 ? -2.324 39.034 54.743 1.00 13.84 257 A 1 \nATOM 1738 C CG1 . VAL A 1 297 ? -0.997 38.353 55.047 1.00 11.90 257 A 1 \nATOM 1739 C CG2 . VAL A 1 297 ? -2.964 39.563 56.022 1.00 12.79 257 A 1 \nATOM 1740 N N . SER A 1 298 ? -1.871 38.884 51.648 1.00 13.65 258 A 1 \nATOM 1741 C CA . SER A 1 298 ? -1.140 38.283 50.533 1.00 13.52 258 A 1 \nATOM 1742 C C . SER A 1 298 ? -0.535 39.298 49.554 1.00 13.35 258 A 1 \nATOM 1743 O O . SER A 1 298 ? 0.565 39.079 49.062 1.00 13.43 258 A 1 \nATOM 1744 C CB . SER A 1 298 ? -1.996 37.234 49.803 1.00 13.89 258 A 1 \nATOM 1745 O OG . SER A 1 298 ? -3.048 37.806 49.046 1.00 15.21 258 A 1 \nATOM 1746 N N . ASP A 1 299 ? -1.230 40.406 49.288 1.00 12.87 259 A 1 \nATOM 1747 C CA . ASP A 1 299 ? -0.692 41.460 48.416 1.00 13.23 259 A 1 \nATOM 1748 C C . ASP A 1 299 ? 0.647 41.992 48.912 1.00 13.25 259 A 1 \nATOM 1749 O O . ASP A 1 299 ? 1.502 42.358 48.103 1.00 14.06 259 A 1 \nATOM 1750 C CB . ASP A 1 299 ? -1.679 42.622 48.246 1.00 13.49 259 A 1 \nATOM 1751 C CG . ASP A 1 299 ? -2.841 42.279 47.323 1.00 14.76 259 A 1 \nATOM 1752 O OD1 . ASP A 1 299 ? -2.721 41.325 46.528 1.00 14.65 259 A 1 \nATOM 1753 O OD2 . ASP A 1 299 ? -3.883 42.965 47.393 1.00 14.72 259 A 1 \nATOM 1754 N N . VAL A 1 300 ? 0.819 42.024 50.236 1.00 12.38 260 A 1 \nATOM 1755 C CA . VAL A 1 300 ? 2.070 42.459 50.857 1.00 11.40 260 A 1 \nATOM 1756 C C . VAL A 1 300 ? 3.173 41.432 50.621 1.00 11.50 260 A 1 \nATOM 1757 O O . VAL A 1 300 ? 4.294 41.797 50.264 1.00 11.26 260 A 1 \nATOM 1758 C CB . VAL A 1 300 ? 1.901 42.758 52.375 1.00 11.94 260 A 1 \nATOM 1759 C CG1 . VAL A 1 300 ? 3.205 43.303 52.977 1.00 9.84 260 A 1 \nATOM 1760 C CG2 . VAL A 1 300 ? 0.765 43.742 52.601 1.00 10.33 260 A 1 \nATOM 1761 N N . VAL A 1 301 ? 2.846 40.153 50.811 1.00 11.58 261 A 1 \nATOM 1762 C CA . VAL A 1 301 ? 3.767 39.049 50.502 1.00 11.57 261 A 1 \nATOM 1763 C C . VAL A 1 301 ? 4.226 39.137 49.041 1.00 12.32 261 A 1 \nATOM 1764 O O . VAL A 1 301 ? 5.423 39.034 48.744 1.00 12.47 261 A 1 \nATOM 1765 C CB . VAL A 1 301 ? 3.105 37.656 50.749 1.00 12.23 261 A 1 \nATOM 1766 C CG1 . VAL A 1 301 ? 4.050 36.511 50.344 1.00 10.34 261 A 1 \nATOM 1767 C CG2 . VAL A 1 301 ? 2.635 37.511 52.201 1.00 10.38 261 A 1 \nATOM 1768 N N . ILE A 1 302 ? 3.264 39.348 48.142 1.00 11.89 262 A 1 \nATOM 1769 C CA . ILE A 1 302 ? 3.544 39.487 46.717 1.00 12.30 262 A 1 \nATOM 1770 C C . ILE A 1 302 ? 4.469 40.663 46.418 1.00 12.99 262 A 1 \nATOM 1771 O O . ILE A 1 302 ? 5.416 40.520 45.648 1.00 13.34 262 A 1 \nATOM 1772 C CB . ILE A 1 302 ? 2.233 39.515 45.862 1.00 12.74 262 A 1 \nATOM 1773 C CG1 . ILE A 1 302 ? 1.793 38.091 45.503 1.00 12.00 262 A 1 \nATOM 1774 C CG2 . ILE A 1 302 ? 2.413 40.295 44.562 1.00 10.18 262 A 1 \nATOM 1775 C CD1 . ILE A 1 302 ? 1.427 37.197 46.671 1.00 9.42 262 A 1 \nATOM 1776 N N . PHE A 1 303 ? 4.218 41.814 47.040 1.00 13.13 263 A 1 \nATOM 1777 C CA . PHE A 1 303 ? 5.108 42.963 46.842 1.00 13.47 263 A 1 \nATOM 1778 C C . PHE A 1 303 ? 6.542 42.663 47.272 1.00 13.81 263 A 1 \nATOM 1779 O O . PHE A 1 303 ? 7.480 42.940 46.526 1.00 14.18 263 A 1 \nATOM 1780 C CB . PHE A 1 303 ? 4.620 44.227 47.562 1.00 13.55 263 A 1 \nATOM 1781 C CG . PHE A 1 303 ? 5.652 45.321 47.592 1.00 13.36 263 A 1 \nATOM 1782 C CD1 . PHE A 1 303 ? 5.920 46.074 46.444 1.00 12.97 263 A 1 \nATOM 1783 C CD2 . PHE A 1 303 ? 6.388 45.572 48.748 1.00 13.46 263 A 1 \nATOM 1784 C CE1 . PHE A 1 303 ? 6.894 47.074 46.462 1.00 13.10 263 A 1 \nATOM 1785 C CE2 . PHE A 1 303 ? 7.364 46.560 48.769 1.00 13.56 263 A 1 \nATOM 1786 C CZ . PHE A 1 303 ? 7.614 47.315 47.628 1.00 13.55 263 A 1 \nATOM 1787 N N . LEU A 1 304 ? 6.705 42.120 48.479 1.00 13.62 264 A 1 \nATOM 1788 C CA . LEU A 1 304 ? 8.023 41.764 48.995 1.00 13.72 264 A 1 \nATOM 1789 C C . LEU A 1 304 ? 8.782 40.771 48.108 1.00 14.54 264 A 1 \nATOM 1790 O O . LEU A 1 304 ? 10.016 40.765 48.100 1.00 14.96 264 A 1 \nATOM 1791 C CB . LEU A 1 304 ? 7.921 41.236 50.428 1.00 13.41 264 A 1 \nATOM 1792 C CG . LEU A 1 304 ? 7.511 42.248 51.497 1.00 12.78 264 A 1 \nATOM 1793 C CD1 . LEU A 1 304 ? 7.245 41.542 52.805 1.00 10.62 264 A 1 \nATOM 1794 C CD2 . LEU A 1 304 ? 8.576 43.323 51.672 1.00 12.58 264 A 1 \nATOM 1795 N N . CYS A 1 305 ? 8.054 39.940 47.365 1.00 14.44 265 A 1 \nATOM 1796 C CA . CYS A 1 305 ? 8.686 39.022 46.417 1.00 14.87 265 A 1 \nATOM 1797 C C . CYS A 1 305 ? 9.055 39.689 45.094 1.00 14.80 265 A 1 \nATOM 1798 O O . CYS A 1 305 ? 9.856 39.149 44.334 1.00 14.86 265 A 1 \nATOM 1799 C CB . CYS A 1 305 ? 7.788 37.817 46.147 1.00 14.89 265 A 1 \nATOM 1800 S SG . CYS A 1 305 ? 7.608 36.691 47.544 1.00 15.93 265 A 1 \nATOM 1801 N N . SER A 1 306 ? 8.464 40.852 44.819 1.00 14.84 266 A 1 \nATOM 1802 C CA . SER A 1 306 ? 8.709 41.564 43.561 1.00 15.25 266 A 1 \nATOM 1803 C C . SER A 1 306 ? 10.099 42.195 43.547 1.00 15.78 266 A 1 \nATOM 1804 O O . SER A 1 306 ? 10.671 42.475 44.603 1.00 16.45 266 A 1 \nATOM 1805 C CB . SER A 1 306 ? 7.626 42.617 43.288 1.00 14.84 266 A 1 \nATOM 1806 O OG . SER A 1 306 ? 7.867 43.824 43.989 1.00 14.57 266 A 1 \nATOM 1807 N N . SER A 1 307 ? 10.636 42.421 42.353 1.00 16.24 267 A 1 \nATOM 1808 C CA . SER A 1 307 ? 11.967 43.008 42.216 1.00 17.50 267 A 1 \nATOM 1809 C C . SER A 1 307 ? 12.046 44.452 42.729 1.00 17.54 267 A 1 \nATOM 1810 O O . SER A 1 307 ? 13.137 44.947 43.015 1.00 18.40 267 A 1 \nATOM 1811 C CB . SER A 1 307 ? 12.463 42.911 40.767 1.00 17.13 267 A 1 \nATOM 1812 O OG . SER A 1 307 ? 11.666 43.710 39.928 1.00 18.77 267 A 1 \nATOM 1813 N N . LYS A 1 308 ? 10.903 45.122 42.850 1.00 16.95 268 A 1 \nATOM 1814 C CA . LYS A 1 308 ? 10.883 46.476 43.413 1.00 17.43 268 A 1 \nATOM 1815 C C . LYS A 1 308 ? 11.240 46.491 44.900 1.00 17.18 268 A 1 \nATOM 1816 O O . LYS A 1 308 ? 11.694 47.505 45.429 1.00 17.57 268 A 1 \nATOM 1817 C CB . LYS A 1 308 ? 9.541 47.166 43.170 1.00 17.62 268 A 1 \nATOM 1818 C CG . LYS A 1 308 ? 9.444 47.832 41.816 1.00 18.70 268 A 1 \nATOM 1819 C CD . LYS A 1 308 ? 8.071 48.423 41.589 1.00 20.93 268 A 1 \nATOM 1820 C CE . LYS A 1 308 ? 8.005 49.151 40.252 1.00 21.97 268 A 1 \nATOM 1821 N NZ . LYS A 1 308 ? 6.663 49.749 40.011 1.00 22.30 268 A 1 \nATOM 1822 N N . ALA A 1 309 ? 11.046 45.355 45.561 1.00 16.51 269 A 1 \nATOM 1823 C CA . ALA A 1 309 ? 11.413 45.202 46.969 1.00 16.46 269 A 1 \nATOM 1824 C C . ALA A 1 309 ? 12.788 44.552 47.173 1.00 16.53 269 A 1 \nATOM 1825 O O . ALA A 1 309 ? 13.056 44.017 48.247 1.00 16.81 269 A 1 \nATOM 1826 C CB . ALA A 1 309 ? 10.339 44.405 47.705 1.00 15.92 269 A 1 \nATOM 1827 N N . LYS A 1 310 ? 13.661 44.615 46.165 1.00 16.26 270 A 1 \nATOM 1828 C CA . LYS A 1 310 ? 14.904 43.838 46.189 1.00 16.36 270 A 1 \nATOM 1829 C C . LYS A 1 310 ? 15.990 44.334 47.148 1.00 16.04 270 A 1 \nATOM 1830 O O . LYS A 1 310 ? 17.029 43.688 47.277 1.00 16.14 270 A 1 \nATOM 1831 C CB . LYS A 1 310 ? 15.487 43.641 44.783 1.00 17.07 270 A 1 \nATOM 1832 C CG . LYS A 1 310 ? 16.159 44.871 44.179 1.00 21.71 270 A 1 \nATOM 1833 C CD . LYS A 1 310 ? 17.077 44.480 43.027 1.00 25.92 270 A 1 \nATOM 1834 C CE . LYS A 1 310 ? 17.041 45.508 41.898 1.00 28.88 270 A 1 \nATOM 1835 N NZ . LYS A 1 310 ? 17.387 46.895 42.331 1.00 29.86 270 A 1 \nATOM 1836 N N . TYR A 1 311 ? 15.767 45.468 47.809 1.00 14.27 271 A 1 \nATOM 1837 C CA . TYR A 1 311 ? 16.718 45.957 48.803 1.00 13.16 271 A 1 \nATOM 1838 C C . TYR A 1 311 ? 16.241 45.660 50.230 1.00 13.49 271 A 1 \nATOM 1839 O O . TYR A 1 311 ? 16.946 45.955 51.199 1.00 13.64 271 A 1 \nATOM 1840 C CB . TYR A 1 311 ? 17.009 47.452 48.611 1.00 13.14 271 A 1 \nATOM 1841 C CG . TYR A 1 311 ? 18.315 47.901 49.233 1.00 11.92 271 A 1 \nATOM 1842 C CD1 . TYR A 1 311 ? 19.534 47.601 48.621 1.00 12.35 271 A 1 \nATOM 1843 C CD2 . TYR A 1 311 ? 18.337 48.621 50.430 1.00 9.55 271 A 1 \nATOM 1844 C CE1 . TYR A 1 311 ? 20.745 47.990 49.185 1.00 10.68 271 A 1 \nATOM 1845 C CE2 . TYR A 1 311 ? 19.543 49.020 51.006 1.00 10.86 271 A 1 \nATOM 1846 C CZ . TYR A 1 311 ? 20.744 48.693 50.378 1.00 11.65 271 A 1 \nATOM 1847 O OH . TYR A 1 311 ? 21.948 49.077 50.928 1.00 11.15 271 A 1 \nATOM 1848 N N . ILE A 1 312 ? 15.053 45.061 50.350 1.00 12.98 272 A 1 \nATOM 1849 C CA . ILE A 1 312 ? 14.504 44.658 51.644 1.00 11.60 272 A 1 \nATOM 1850 C C . ILE A 1 312 ? 14.932 43.232 51.962 1.00 12.71 272 A 1 \nATOM 1851 O O . ILE A 1 312 ? 14.646 42.304 51.201 1.00 12.93 272 A 1 \nATOM 1852 C CB . ILE A 1 312 ? 12.961 44.750 51.695 1.00 10.79 272 A 1 \nATOM 1853 C CG1 . ILE A 1 312 ? 12.482 46.173 51.378 1.00 11.05 272 A 1 \nATOM 1854 C CG2 . ILE A 1 312 ? 12.451 44.333 53.072 1.00 9.23 272 A 1 \nATOM 1855 C CD1 . ILE A 1 312 ? 10.979 46.294 51.156 1.00 8.33 272 A 1 \nATOM 1856 N N . THR A 1 313 ? 15.637 43.066 53.076 1.00 12.56 273 A 1 \nATOM 1857 C CA . THR A 1 313 ? 15.889 41.745 53.633 1.00 12.21 273 A 1 \nATOM 1858 C C . THR A 1 313 ? 16.034 41.826 55.151 1.00 13.26 273 A 1 \nATOM 1859 O O . THR A 1 313 ? 16.421 42.866 55.689 1.00 13.20 273 A 1 \nATOM 1860 C CB . THR A 1 313 ? 17.115 41.049 52.988 1.00 12.63 273 A 1 \nATOM 1861 O OG1 . THR A 1 313 ? 17.059 39.642 53.261 1.00 13.00 273 A 1 \nATOM 1862 C CG2 . THR A 1 313 ? 18.438 41.621 53.502 1.00 11.42 273 A 1 \nATOM 1863 N N . GLY A 1 314 ? 15.698 40.735 55.832 1.00 13.60 274 A 1 \nATOM 1864 C CA . GLY A 1 314 ? 15.796 40.649 57.284 1.00 14.95 274 A 1 \nATOM 1865 C C . GLY A 1 314 ? 14.758 41.428 58.075 1.00 16.37 274 A 1 \nATOM 1866 O O . GLY A 1 314 ? 14.927 41.637 59.280 1.00 16.82 274 A 1 \nATOM 1867 N N . THR A 1 315 ? 13.686 41.858 57.416 1.00 16.49 275 A 1 \nATOM 1868 C CA . THR A 1 315 ? 12.702 42.709 58.072 1.00 18.17 275 A 1 \nATOM 1869 C C . THR A 1 315 ? 11.325 42.047 58.162 1.00 18.59 275 A 1 \nATOM 1870 O O . THR A 1 315 ? 10.965 41.231 57.306 1.00 18.81 275 A 1 \nATOM 1871 C CB . THR A 1 315 ? 12.586 44.107 57.396 1.00 18.55 275 A 1 \nATOM 1872 O OG1 . THR A 1 315 ? 11.623 44.062 56.342 1.00 21.20 275 A 1 \nATOM 1873 C CG2 . THR A 1 315 ? 13.912 44.543 56.823 1.00 19.74 275 A 1 \nATOM 1874 N N . CYS A 1 316 ? 10.568 42.405 59.201 1.00 18.61 276 A 1 \nATOM 1875 C CA . CYS A 1 316 ? 9.201 41.916 59.359 1.00 19.06 276 A 1 \nATOM 1876 C C . CYS A 1 316 ? 8.194 43.059 59.178 1.00 19.12 276 A 1 \nATOM 1877 O O . CYS A 1 316 ? 8.279 44.087 59.845 1.00 19.98 276 A 1 \nATOM 1878 C CB . CYS A 1 316 ? 9.007 41.202 60.706 1.00 19.34 276 A 1 \nATOM 1879 S SG . CYS A 1 316 ? 9.941 39.627 60.896 1.00 30.76 276 A 1 \nATOM 1880 N N . VAL A 1 317 ? 7.256 42.873 58.253 1.00 18.33 277 A 1 \nATOM 1881 C CA . VAL A 1 317 ? 6.219 43.853 57.982 1.00 17.42 277 A 1 \nATOM 1882 C C . VAL A 1 317 ? 4.909 43.456 58.659 1.00 17.31 277 A 1 \nATOM 1883 O O . VAL A 1 317 ? 4.323 42.430 58.317 1.00 17.88 277 A 1 \nATOM 1884 C CB . VAL A 1 317 ? 5.989 44.028 56.460 1.00 17.51 277 A 1 \nATOM 1885 C CG1 . VAL A 1 317 ? 4.897 45.067 56.195 1.00 16.74 277 A 1 \nATOM 1886 C CG2 . VAL A 1 317 ? 7.286 44.415 55.763 1.00 17.08 277 A 1 \nATOM 1887 N N . LYS A 1 318 ? 4.467 44.270 59.621 1.00 16.34 278 A 1 \nATOM 1888 C CA . LYS A 1 318 ? 3.162 44.093 60.256 1.00 16.04 278 A 1 \nATOM 1889 C C . LYS A 1 318 ? 2.048 44.478 59.287 1.00 15.27 278 A 1 \nATOM 1890 O O . LYS A 1 318 ? 2.081 45.551 58.687 1.00 14.68 278 A 1 \nATOM 1891 C CB . LYS A 1 318 ? 3.029 44.958 61.513 1.00 16.09 278 A 1 \nATOM 1892 C CG . LYS A 1 318 ? 3.801 44.504 62.728 1.00 18.45 278 A 1 \nATOM 1893 C CD . LYS A 1 318 ? 3.808 45.625 63.775 1.00 23.67 278 A 1 \nATOM 1894 C CE . LYS A 1 318 ? 4.167 45.126 65.180 1.00 25.95 278 A 1 \nATOM 1895 N NZ . LYS A 1 318 ? 5.512 44.474 65.262 1.00 30.65 278 A 1 \nATOM 1896 N N . VAL A 1 319 ? 1.072 43.593 59.138 1.00 14.41 279 A 1 \nATOM 1897 C CA . VAL A 1 319 ? -0.149 43.886 58.401 1.00 13.88 279 A 1 \nATOM 1898 C C . VAL A 1 319 ? -1.302 43.664 59.379 1.00 13.77 279 A 1 \nATOM 1899 O O . VAL A 1 319 ? -1.975 42.629 59.331 1.00 14.31 279 A 1 \nATOM 1900 C CB . VAL A 1 319 ? -0.283 42.978 57.155 1.00 14.34 279 A 1 \nATOM 1901 C CG1 . VAL A 1 319 ? -1.525 43.348 56.321 1.00 13.97 279 A 1 \nATOM 1902 C CG2 . VAL A 1 319 ? 0.976 43.063 56.310 1.00 12.97 279 A 1 \nATOM 1903 N N . ASP A 1 320 ? -1.511 44.635 60.273 1.00 13.11 280 A 1 \nATOM 1904 C CA . ASP A 1 320 ? -2.357 44.433 61.459 1.00 12.76 280 A 1 \nATOM 1905 C C . ASP A 1 320 ? -3.370 45.530 61.770 1.00 12.73 280 A 1 \nATOM 1906 O O . ASP A 1 320 ? -4.002 45.496 62.828 1.00 13.12 280 A 1 \nATOM 1907 C CB . ASP A 1 320 ? -1.484 44.186 62.696 1.00 12.56 280 A 1 \nATOM 1908 C CG . ASP A 1 320 ? -0.838 45.466 63.243 1.00 13.83 280 A 1 \nATOM 1909 O OD1 . ASP A 1 320 ? -0.781 46.498 62.531 1.00 15.83 280 A 1 \nATOM 1910 O OD2 . ASP A 1 320 ? -0.369 45.443 64.401 1.00 12.19 280 A 1 \nATOM 1911 N N . GLY A 1 321 ? -3.509 46.505 60.871 1.00 11.99 281 A 1 \nATOM 1912 C CA . GLY A 1 321 ? -4.476 47.589 61.058 1.00 11.81 281 A 1 \nATOM 1913 C C . GLY A 1 321 ? -4.290 48.346 62.362 1.00 11.86 281 A 1 \nATOM 1914 O O . GLY A 1 321 ? -5.246 48.903 62.916 1.00 11.78 281 A 1 \nATOM 1915 N N . GLY A 1 322 ? -3.057 48.358 62.858 1.00 10.91 282 A 1 \nATOM 1916 C CA . GLY A 1 322 ? -2.729 49.087 64.067 1.00 11.13 282 A 1 \nATOM 1917 C C . GLY A 1 322 ? -3.043 48.344 65.350 1.00 11.66 282 A 1 \nATOM 1918 O O . GLY A 1 322 ? -2.938 48.913 66.431 1.00 12.48 282 A 1 \nATOM 1919 N N . TYR A 1 323 ? -3.411 47.071 65.248 1.00 11.41 283 A 1 \nATOM 1920 C CA . TYR A 1 323 ? -3.788 46.287 66.424 1.00 11.51 283 A 1 \nATOM 1921 C C . TYR A 1 323 ? -2.675 46.160 67.480 1.00 12.00 283 A 1 \nATOM 1922 O O . TYR A 1 323 ? -2.952 46.231 68.678 1.00 11.66 283 A 1 \nATOM 1923 C CB . TYR A 1 323 ? -4.344 44.912 66.009 1.00 11.51 283 A 1 \nATOM 1924 C CG . TYR A 1 323 ? -5.031 44.144 67.129 1.00 11.50 283 A 1 \nATOM 1925 C CD1 . TYR A 1 323 ? -5.781 44.805 68.104 1.00 11.33 283 A 1 \nATOM 1926 C CD2 . TYR A 1 323 ? -4.942 42.753 67.200 1.00 10.53 283 A 1 \nATOM 1927 C CE1 . TYR A 1 323 ? -6.404 44.105 69.121 1.00 11.32 283 A 1 \nATOM 1928 C CE2 . TYR A 1 323 ? -5.567 42.038 68.221 1.00 10.77 283 A 1 \nATOM 1929 C CZ . TYR A 1 323 ? -6.294 42.721 69.174 1.00 11.67 283 A 1 \nATOM 1930 O OH . TYR A 1 323 ? -6.904 42.033 70.198 1.00 12.23 283 A 1 \nATOM 1931 N N . SER A 1 324 ? -1.426 45.999 67.040 1.00 12.37 284 A 1 \nATOM 1932 C CA . SER A 1 324 ? -0.285 45.918 67.966 1.00 12.48 284 A 1 \nATOM 1933 C C . SER A 1 324 ? 0.030 47.227 68.700 1.00 12.79 284 A 1 \nATOM 1934 O O . SER A 1 324 ? 0.848 47.239 69.620 1.00 12.99 284 A 1 \nATOM 1935 C CB . SER A 1 324 ? 0.966 45.408 67.252 1.00 11.74 284 A 1 \nATOM 1936 O OG . SER A 1 324 ? 1.429 46.342 66.289 1.00 11.98 284 A 1 \nATOM 1937 N N . LEU A 1 325 ? -0.612 48.319 68.296 1.00 12.86 285 A 1 \nATOM 1938 C CA . LEU A 1 325 ? -0.455 49.598 68.978 1.00 13.47 285 A 1 \nATOM 1939 C C . LEU A 1 325 ? -1.401 49.709 70.165 1.00 13.65 285 A 1 \nATOM 1940 O O . LEU A 1 325 ? -1.307 50.659 70.936 1.00 13.84 285 A 1 \nATOM 1941 C CB . LEU A 1 325 ? -0.721 50.773 68.029 1.00 13.41 285 A 1 \nATOM 1942 C CG . LEU A 1 325 ? -0.060 50.867 66.652 1.00 14.15 285 A 1 \nATOM 1943 C CD1 . LEU A 1 325 ? -0.712 51.985 65.846 1.00 12.42 285 A 1 \nATOM 1944 C CD2 . LEU A 1 325 ? 1.456 51.071 66.759 1.00 14.49 285 A 1 \nATOM 1945 N N . THR A 1 326 ? -2.324 48.756 70.296 1.00 13.46 286 A 1 \nATOM 1946 C CA . THR A 1 326 ? -3.339 48.797 71.366 1.00 13.55 286 A 1 \nATOM 1947 C C . THR A 1 326 ? -2.826 48.278 72.705 1.00 14.01 286 A 1 \nATOM 1948 O O . THR A 1 326 ? -1.826 47.564 72.772 1.00 14.55 286 A 1 \nATOM 1949 C CB . THR A 1 326 ? -4.643 48.025 70.997 1.00 12.75 286 A 1 \nATOM 1950 O OG1 . THR A 1 326 ? -4.379 46.617 70.895 1.00 11.63 286 A 1 \nATOM 1951 C CG2 . THR A 1 326 ? -5.217 48.525 69.701 1.00 12.17 286 A 1 \nATOM 1952 N N . ARG A 1 327 ? -3.536 48.641 73.765 1.00 15.18 287 A 1 \nATOM 1953 C CA . ARG A 1 327 ? -3.227 48.203 75.125 1.00 16.21 287 A 1 \nATOM 1954 C C . ARG A 1 327 ? -4.548 47.871 75.804 1.00 16.80 287 A 1 \nATOM 1955 O O . ARG A 1 327 ? -5.596 48.373 75.382 1.00 17.97 287 A 1 \nATOM 1956 C CB . ARG A 1 327 ? -2.513 49.326 75.881 1.00 16.04 287 A 1 \nATOM 1957 C CG . ARG A 1 327 ? -3.339 50.594 75.985 1.00 17.59 287 A 1 \nATOM 1958 C CD . ARG A 1 327 ? -2.759 51.582 76.948 1.00 20.96 287 A 1 \nATOM 1959 N NE . ARG A 1 327 ? -1.649 52.327 76.360 1.00 23.17 287 A 1 \nATOM 1960 C CZ . ARG A 1 327 ? -0.986 53.291 76.990 1.00 23.43 287 A 1 \nATOM 1961 N NH1 . ARG A 1 327 ? -1.319 53.639 78.229 1.00 24.49 287 A 1 \nATOM 1962 N NH2 . ARG A 1 327 ? 0.019 53.902 76.380 1.00 23.65 287 A 1 \nATOM 1963 N N . ALA A 1 328 ? -4.512 47.040 76.846 1.00 17.32 288 A 1 \nATOM 1964 C CA . ALA A 1 328 ? -5.728 46.686 77.594 1.00 17.50 288 A 1 \nATOM 1965 C C . ALA A 1 328 ? -6.290 47.884 78.369 1.00 18.52 288 A 1 \nATOM 1966 O O . ALA A 1 328 ? -7.484 47.929 78.688 1.00 18.55 288 A 1 \nATOM 1967 C CB . ALA A 1 328 ? -5.461 45.522 78.534 1.00 16.80 288 A 1 \nATOM 1968 O OXT . ALA A 1 328 ? -5.571 48.838 78.697 1.00 19.14 288 A 1 \n#\n", + "queryIndices": [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51], + "templateIndices": [20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 70] + }, + { + "mmcif": "data_5ICJ\n#\n_entry.id 5ICJ\n#\nloop_\n_chem_comp.formula\n_chem_comp.formula_weight\n_chem_comp.id\n_chem_comp.mon_nstd_flag\n_chem_comp.name\n_chem_comp.pdbx_synonyms\n_chem_comp.type\n\"C17 H19 F3 N2 O2\" 340.340 69Y . 4,4,4-trifluoro-1-(3-phenyl-1-oxa-2,8-diazaspiro[4.5]dec-2-en-8-yl)butan-1-one ? non-polymer \n\"C3 H7 N O2\" 89.093 ALA y ALANINE ? \"L-peptide linking\" \n\"C6 H15 N4 O2 1\" 175.209 ARG y ARGININE ? \"L-peptide linking\" \n\"C4 H8 N2 O3\" 132.118 ASN y ASPARAGINE ? \"L-peptide linking\" \n\"C4 H7 N O4\" 133.103 ASP y \"ASPARTIC ACID\" ? \"L-peptide linking\" \n\"C5 H10 N2 O3\" 146.144 GLN y GLUTAMINE ? \"L-peptide linking\" \n\"C5 H9 N O4\" 147.129 GLU y \"GLUTAMIC ACID\" ? \"L-peptide linking\" \n\"C2 H5 N O2\" 75.067 GLY y GLYCINE ? \"peptide linking\" \n\"C6 H10 N3 O2 1\" 156.162 HIS y HISTIDINE ? \"L-peptide linking\" \n\"H2 O\" 18.015 HOH . WATER ? non-polymer \n\"C6 H13 N O2\" 131.173 ILE y ISOLEUCINE ? \"L-peptide linking\" \n\"C6 H13 N O2\" 131.173 LEU y LEUCINE ? \"L-peptide linking\" \n\"C6 H15 N2 O2 1\" 147.195 LYS y LYSINE ? \"L-peptide linking\" \n\"C5 H11 N O2 S\" 149.211 MET y METHIONINE ? \"L-peptide linking\" \n\"C9 H11 N O2\" 165.189 PHE y PHENYLALANINE ? \"L-peptide linking\" \n\"C5 H9 N O2\" 115.130 PRO y PROLINE ? \"L-peptide linking\" \n\"C3 H7 N O3\" 105.093 SER y SERINE ? \"L-peptide linking\" \n\"C4 H9 N O3\" 119.119 THR y THREONINE ? \"L-peptide linking\" \n\"C11 H12 N2 O2\" 204.225 TRP y TRYPTOPHAN ? \"L-peptide linking\" \n\"C9 H11 N O3\" 181.189 TYR y TYROSINE ? \"L-peptide linking\" \n\"C5 H11 N O2\" 117.146 VAL y VALINE ? \"L-peptide linking\" \n#\n_entity.id 1\n_entity.pdbx_description \"Probable transcriptional regulatory protein\"\n_entity.type polymer\n#\n_entity_poly.entity_id 1\n_entity_poly.pdbx_strand_id A\n_entity_poly.type polypeptide(L)\n#\nloop_\n_entity_poly_seq.entity_id\n_entity_poly_seq.hetero\n_entity_poly_seq.mon_id\n_entity_poly_seq.num\n1 n MET 1 \n1 n GLY 2 \n1 n SER 3 \n1 n SER 4 \n1 n HIS 5 \n1 n HIS 6 \n1 n HIS 7 \n1 n HIS 8 \n1 n HIS 9 \n1 n HIS 10 \n1 n SER 11 \n1 n SER 12 \n1 n GLY 13 \n1 n LEU 14 \n1 n VAL 15 \n1 n PRO 16 \n1 n ARG 17 \n1 n GLY 18 \n1 n SER 19 \n1 n HIS 20 \n1 n MET 21 \n1 n GLU 22 \n1 n ILE 23 \n1 n LYS 24 \n1 n ARG 25 \n1 n ARG 26 \n1 n THR 27 \n1 n GLN 28 \n1 n GLU 29 \n1 n GLU 30 \n1 n ARG 31 \n1 n SER 32 \n1 n ALA 33 \n1 n ALA 34 \n1 n THR 35 \n1 n ARG 36 \n1 n GLU 37 \n1 n ALA 38 \n1 n LEU 39 \n1 n ILE 40 \n1 n THR 41 \n1 n GLY 42 \n1 n ALA 43 \n1 n ARG 44 \n1 n LYS 45 \n1 n LEU 46 \n1 n TRP 47 \n1 n GLY 48 \n1 n LEU 49 \n1 n ARG 50 \n1 n GLY 51 \n1 n TYR 52 \n1 n ALA 53 \n1 n GLU 54 \n1 n VAL 55 \n1 n GLY 56 \n1 n THR 57 \n1 n PRO 58 \n1 n GLU 59 \n1 n ILE 60 \n1 n ALA 61 \n1 n THR 62 \n1 n GLU 63 \n1 n ALA 64 \n1 n GLY 65 \n1 n VAL 66 \n1 n THR 67 \n1 n ARG 68 \n1 n GLY 69 \n1 n ALA 70 \n1 n MET 71 \n1 n TYR 72 \n1 n HIS 73 \n1 n GLN 74 \n1 n PHE 75 \n1 n ALA 76 \n1 n ASP 77 \n1 n LYS 78 \n1 n ALA 79 \n1 n ALA 80 \n1 n LEU 81 \n1 n PHE 82 \n1 n ARG 83 \n1 n ASP 84 \n1 n VAL 85 \n1 n VAL 86 \n1 n GLU 87 \n1 n VAL 88 \n1 n VAL 89 \n1 n GLU 90 \n1 n GLN 91 \n1 n ASP 92 \n1 n VAL 93 \n1 n MET 94 \n1 n ALA 95 \n1 n ARG 96 \n1 n MET 97 \n1 n ALA 98 \n1 n THR 99 \n1 n LEU 100 \n1 n VAL 101 \n1 n ALA 102 \n1 n ALA 103 \n1 n SER 104 \n1 n GLY 105 \n1 n ALA 106 \n1 n ALA 107 \n1 n THR 108 \n1 n PRO 109 \n1 n ALA 110 \n1 n ASP 111 \n1 n ALA 112 \n1 n ILE 113 \n1 n ARG 114 \n1 n ALA 115 \n1 n ALA 116 \n1 n VAL 117 \n1 n ASP 118 \n1 n ALA 119 \n1 n TRP 120 \n1 n LEU 121 \n1 n GLU 122 \n1 n VAL 123 \n1 n SER 124 \n1 n GLY 125 \n1 n ASP 126 \n1 n PRO 127 \n1 n GLU 128 \n1 n VAL 129 \n1 n ARG 130 \n1 n GLN 131 \n1 n LEU 132 \n1 n ILE 133 \n1 n LEU 134 \n1 n LEU 135 \n1 n ASP 136 \n1 n ALA 137 \n1 n PRO 138 \n1 n VAL 139 \n1 n VAL 140 \n1 n LEU 141 \n1 n GLY 142 \n1 n TRP 143 \n1 n ALA 144 \n1 n GLY 145 \n1 n PHE 146 \n1 n ARG 147 \n1 n ASP 148 \n1 n VAL 149 \n1 n ALA 150 \n1 n GLN 151 \n1 n ARG 152 \n1 n TYR 153 \n1 n SER 154 \n1 n LEU 155 \n1 n GLY 156 \n1 n MET 157 \n1 n THR 158 \n1 n GLU 159 \n1 n GLN 160 \n1 n LEU 161 \n1 n ILE 162 \n1 n THR 163 \n1 n GLU 164 \n1 n ALA 165 \n1 n ILE 166 \n1 n ARG 167 \n1 n ALA 168 \n1 n GLY 169 \n1 n GLN 170 \n1 n LEU 171 \n1 n ALA 172 \n1 n ARG 173 \n1 n GLN 174 \n1 n PRO 175 \n1 n VAL 176 \n1 n ARG 177 \n1 n PRO 178 \n1 n LEU 179 \n1 n ALA 180 \n1 n GLN 181 \n1 n VAL 182 \n1 n LEU 183 \n1 n ILE 184 \n1 n GLY 185 \n1 n ALA 186 \n1 n LEU 187 \n1 n ASP 188 \n1 n GLU 189 \n1 n ALA 190 \n1 n ALA 191 \n1 n MET 192 \n1 n PHE 193 \n1 n ILE 194 \n1 n ALA 195 \n1 n THR 196 \n1 n ALA 197 \n1 n ASP 198 \n1 n ASP 199 \n1 n PRO 200 \n1 n LYS 201 \n1 n ARG 202 \n1 n ALA 203 \n1 n ARG 204 \n1 n ARG 205 \n1 n GLU 206 \n1 n THR 207 \n1 n ARG 208 \n1 n GLN 209 \n1 n VAL 210 \n1 n LEU 211 \n1 n ARG 212 \n1 n ARG 213 \n1 n LEU 214 \n1 n ILE 215 \n1 n ASP 216 \n1 n GLY 217 \n1 n MET 218 \n1 n LEU 219 \n1 n ASN 220 \n1 n GLY 221 \n#\n_exptl.method \"X-RAY DIFFRACTION\"\n#\n_pdbx_audit_revision_history.revision_date 2017-04-26\n#\n_pdbx_database_status.recvd_initial_deposition_date 2017-04-26\n#\nloop_\n_pdbx_poly_seq_scheme.asym_id\n_pdbx_poly_seq_scheme.auth_seq_num\n_pdbx_poly_seq_scheme.entity_id\n_pdbx_poly_seq_scheme.hetero\n_pdbx_poly_seq_scheme.mon_id\n_pdbx_poly_seq_scheme.pdb_ins_code\n_pdbx_poly_seq_scheme.pdb_seq_num\n_pdbx_poly_seq_scheme.pdb_strand_id\n_pdbx_poly_seq_scheme.seq_id\nA ? 1 n MET . -19 A 1 \nA ? 1 n GLY . -18 A 2 \nA ? 1 n SER . -17 A 3 \nA ? 1 n SER . -16 A 4 \nA ? 1 n HIS . -15 A 5 \nA ? 1 n HIS . -14 A 6 \nA ? 1 n HIS . -13 A 7 \nA ? 1 n HIS . -12 A 8 \nA ? 1 n HIS . -11 A 9 \nA ? 1 n HIS . -10 A 10 \nA ? 1 n SER . -9 A 11 \nA ? 1 n SER . -8 A 12 \nA ? 1 n GLY . -7 A 13 \nA ? 1 n LEU . -6 A 14 \nA ? 1 n VAL . -5 A 15 \nA ? 1 n PRO . -4 A 16 \nA ? 1 n ARG . -3 A 17 \nA ? 1 n GLY . -2 A 18 \nA ? 1 n SER . -1 A 19 \nA ? 1 n HIS . 0 A 20 \nA ? 1 n MET . 1 A 21 \nA ? 1 n GLU . 2 A 22 \nA ? 1 n ILE . 3 A 23 \nA ? 1 n LYS . 4 A 24 \nA ? 1 n ARG . 5 A 25 \nA ? 1 n ARG . 6 A 26 \nA ? 1 n THR . 7 A 27 \nA ? 1 n GLN . 8 A 28 \nA ? 1 n GLU . 9 A 29 \nA ? 1 n GLU . 10 A 30 \nA ? 1 n ARG . 11 A 31 \nA 12 1 n SER . 12 A 32 \nA 13 1 n ALA . 13 A 33 \nA 14 1 n ALA . 14 A 34 \nA 15 1 n THR . 15 A 35 \nA 16 1 n ARG . 16 A 36 \nA 17 1 n GLU . 17 A 37 \nA 18 1 n ALA . 18 A 38 \nA 19 1 n LEU . 19 A 39 \nA 20 1 n ILE . 20 A 40 \nA 21 1 n THR . 21 A 41 \nA 22 1 n GLY . 22 A 42 \nA 23 1 n ALA . 23 A 43 \nA 24 1 n ARG . 24 A 44 \nA 25 1 n LYS . 25 A 45 \nA 26 1 n LEU . 26 A 46 \nA 27 1 n TRP . 27 A 47 \nA 28 1 n GLY . 28 A 48 \nA 29 1 n LEU . 29 A 49 \nA 30 1 n ARG . 30 A 50 \nA 31 1 n GLY . 31 A 51 \nA 32 1 n TYR . 32 A 52 \nA 33 1 n ALA . 33 A 53 \nA 34 1 n GLU . 34 A 54 \nA 35 1 n VAL . 35 A 55 \nA 36 1 n GLY . 36 A 56 \nA 37 1 n THR . 37 A 57 \nA 38 1 n PRO . 38 A 58 \nA 39 1 n GLU . 39 A 59 \nA 40 1 n ILE . 40 A 60 \nA 41 1 n ALA . 41 A 61 \nA 42 1 n THR . 42 A 62 \nA 43 1 n GLU . 43 A 63 \nA 44 1 n ALA . 44 A 64 \nA 45 1 n GLY . 45 A 65 \nA 46 1 n VAL . 46 A 66 \nA 47 1 n THR . 47 A 67 \nA 48 1 n ARG . 48 A 68 \nA 49 1 n GLY . 49 A 69 \nA 50 1 n ALA . 50 A 70 \nA 51 1 n MET . 51 A 71 \nA 52 1 n TYR . 52 A 72 \nA 53 1 n HIS . 53 A 73 \nA 54 1 n GLN . 54 A 74 \nA 55 1 n PHE . 55 A 75 \nA 56 1 n ALA . 56 A 76 \nA 57 1 n ASP . 57 A 77 \nA 58 1 n LYS . 58 A 78 \nA 59 1 n ALA . 59 A 79 \nA 60 1 n ALA . 60 A 80 \nA 61 1 n LEU . 61 A 81 \nA 62 1 n PHE . 62 A 82 \nA 63 1 n ARG . 63 A 83 \nA 64 1 n ASP . 64 A 84 \nA 65 1 n VAL . 65 A 85 \nA 66 1 n VAL . 66 A 86 \nA 67 1 n GLU . 67 A 87 \nA 68 1 n VAL . 68 A 88 \nA 69 1 n VAL . 69 A 89 \nA 70 1 n GLU . 70 A 90 \nA 71 1 n GLN . 71 A 91 \nA 72 1 n ASP . 72 A 92 \nA 73 1 n VAL . 73 A 93 \nA 74 1 n MET . 74 A 94 \nA 75 1 n ALA . 75 A 95 \nA 76 1 n ARG . 76 A 96 \nA 77 1 n MET . 77 A 97 \nA 78 1 n ALA . 78 A 98 \nA 79 1 n THR . 79 A 99 \nA 80 1 n LEU . 80 A 100 \nA 81 1 n VAL . 81 A 101 \nA 82 1 n ALA . 82 A 102 \nA 83 1 n ALA . 83 A 103 \nA 84 1 n SER . 84 A 104 \nA 85 1 n GLY . 85 A 105 \nA 86 1 n ALA . 86 A 106 \nA 87 1 n ALA . 87 A 107 \nA 88 1 n THR . 88 A 108 \nA 89 1 n PRO . 89 A 109 \nA 90 1 n ALA . 90 A 110 \nA 91 1 n ASP . 91 A 111 \nA 92 1 n ALA . 92 A 112 \nA 93 1 n ILE . 93 A 113 \nA 94 1 n ARG . 94 A 114 \nA 95 1 n ALA . 95 A 115 \nA 96 1 n ALA . 96 A 116 \nA 97 1 n VAL . 97 A 117 \nA 98 1 n ASP . 98 A 118 \nA 99 1 n ALA . 99 A 119 \nA 100 1 n TRP . 100 A 120 \nA 101 1 n LEU . 101 A 121 \nA 102 1 n GLU . 102 A 122 \nA 103 1 n VAL . 103 A 123 \nA 104 1 n SER . 104 A 124 \nA 105 1 n GLY . 105 A 125 \nA 106 1 n ASP . 106 A 126 \nA 107 1 n PRO . 107 A 127 \nA 108 1 n GLU . 108 A 128 \nA 109 1 n VAL . 109 A 129 \nA 110 1 n ARG . 110 A 130 \nA 111 1 n GLN . 111 A 131 \nA 112 1 n LEU . 112 A 132 \nA 113 1 n ILE . 113 A 133 \nA 114 1 n LEU . 114 A 134 \nA 115 1 n LEU . 115 A 135 \nA 116 1 n ASP . 116 A 136 \nA 117 1 n ALA . 117 A 137 \nA 118 1 n PRO . 118 A 138 \nA 119 1 n VAL . 119 A 139 \nA 120 1 n VAL . 120 A 140 \nA 121 1 n LEU . 121 A 141 \nA 122 1 n GLY . 122 A 142 \nA 123 1 n TRP . 123 A 143 \nA 124 1 n ALA . 124 A 144 \nA 125 1 n GLY . 125 A 145 \nA 126 1 n PHE . 126 A 146 \nA 127 1 n ARG . 127 A 147 \nA 128 1 n ASP . 128 A 148 \nA 129 1 n VAL . 129 A 149 \nA 130 1 n ALA . 130 A 150 \nA 131 1 n GLN . 131 A 151 \nA 132 1 n ARG . 132 A 152 \nA 133 1 n TYR . 133 A 153 \nA 134 1 n SER . 134 A 154 \nA 135 1 n LEU . 135 A 155 \nA 136 1 n GLY . 136 A 156 \nA 137 1 n MET . 137 A 157 \nA 138 1 n THR . 138 A 158 \nA 139 1 n GLU . 139 A 159 \nA 140 1 n GLN . 140 A 160 \nA 141 1 n LEU . 141 A 161 \nA 142 1 n ILE . 142 A 162 \nA 143 1 n THR . 143 A 163 \nA 144 1 n GLU . 144 A 164 \nA 145 1 n ALA . 145 A 165 \nA 146 1 n ILE . 146 A 166 \nA 147 1 n ARG . 147 A 167 \nA 148 1 n ALA . 148 A 168 \nA 149 1 n GLY . 149 A 169 \nA 150 1 n GLN . 150 A 170 \nA 151 1 n LEU . 151 A 171 \nA 152 1 n ALA . 152 A 172 \nA 153 1 n ARG . 153 A 173 \nA 154 1 n GLN . 154 A 174 \nA 155 1 n PRO . 155 A 175 \nA 156 1 n VAL . 156 A 176 \nA 157 1 n ARG . 157 A 177 \nA 158 1 n PRO . 158 A 178 \nA 159 1 n LEU . 159 A 179 \nA 160 1 n ALA . 160 A 180 \nA 161 1 n GLN . 161 A 181 \nA 162 1 n VAL . 162 A 182 \nA 163 1 n LEU . 163 A 183 \nA 164 1 n ILE . 164 A 184 \nA 165 1 n GLY . 165 A 185 \nA 166 1 n ALA . 166 A 186 \nA 167 1 n LEU . 167 A 187 \nA 168 1 n ASP . 168 A 188 \nA 169 1 n GLU . 169 A 189 \nA 170 1 n ALA . 170 A 190 \nA 171 1 n ALA . 171 A 191 \nA 172 1 n MET . 172 A 192 \nA 173 1 n PHE . 173 A 193 \nA 174 1 n ILE . 174 A 194 \nA 175 1 n ALA . 175 A 195 \nA 176 1 n THR . 176 A 196 \nA 177 1 n ALA . 177 A 197 \nA 178 1 n ASP . 178 A 198 \nA 179 1 n ASP . 179 A 199 \nA 180 1 n PRO . 180 A 200 \nA 181 1 n LYS . 181 A 201 \nA 182 1 n ARG . 182 A 202 \nA 183 1 n ALA . 183 A 203 \nA 184 1 n ARG . 184 A 204 \nA 185 1 n ARG . 185 A 205 \nA 186 1 n GLU . 186 A 206 \nA 187 1 n THR . 187 A 207 \nA 188 1 n ARG . 188 A 208 \nA 189 1 n GLN . 189 A 209 \nA 190 1 n VAL . 190 A 210 \nA 191 1 n LEU . 191 A 211 \nA 192 1 n ARG . 192 A 212 \nA 193 1 n ARG . 193 A 213 \nA 194 1 n LEU . 194 A 214 \nA 195 1 n ILE . 195 A 215 \nA 196 1 n ASP . 196 A 216 \nA 197 1 n GLY . 197 A 217 \nA 198 1 n MET . 198 A 218 \nA 199 1 n LEU . 199 A 219 \nA 200 1 n ASN . 200 A 220 \nA 201 1 n GLY . 201 A 221 \n#\n_pdbx_struct_assembly.details author_defined_assembly\n_pdbx_struct_assembly.id 1\n_pdbx_struct_assembly.method_details ?\n_pdbx_struct_assembly.oligomeric_count 2\n_pdbx_struct_assembly.oligomeric_details dimeric\n#\n_pdbx_struct_assembly_gen.assembly_id 1\n_pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E\n_pdbx_struct_assembly_gen.oper_expression 1\n#\n_pdbx_struct_oper_list.id 1\n_pdbx_struct_oper_list.matrix[1][1] 1.0000000000\n_pdbx_struct_oper_list.matrix[1][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[1][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[2][2] 1.0000000000\n_pdbx_struct_oper_list.matrix[2][3] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][1] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][2] 0.0000000000\n_pdbx_struct_oper_list.matrix[3][3] 1.0000000000\n_pdbx_struct_oper_list.name 1_555\n_pdbx_struct_oper_list.symmetry_operation x,y,z\n_pdbx_struct_oper_list.type \"identity operation\"\n_pdbx_struct_oper_list.vector[1] 0.0000000000\n_pdbx_struct_oper_list.vector[2] 0.0000000000\n_pdbx_struct_oper_list.vector[3] 0.0000000000\n#\n_refine.ls_d_res_high 2.40\n#\n_software.classification other\n_software.name \"DeepMind Structure Class\"\n_software.pdbx_ordinal 1\n_software.version 2.0.0\n#\n_struct_asym.entity_id 1\n_struct_asym.id A\n#\nloop_\n_atom_site.group_PDB\n_atom_site.id\n_atom_site.type_symbol\n_atom_site.label_atom_id\n_atom_site.label_alt_id\n_atom_site.label_comp_id\n_atom_site.label_asym_id\n_atom_site.label_entity_id\n_atom_site.label_seq_id\n_atom_site.pdbx_PDB_ins_code\n_atom_site.Cartn_x\n_atom_site.Cartn_y\n_atom_site.Cartn_z\n_atom_site.occupancy\n_atom_site.B_iso_or_equiv\n_atom_site.auth_seq_id\n_atom_site.auth_asym_id\n_atom_site.pdbx_PDB_model_num\nATOM 1 N N . SER A 1 32 ? 16.135 -15.731 -5.987 1.00 46.09 12 A 1 \nATOM 2 C CA . SER A 1 32 ? 15.599 -14.623 -6.829 1.00 53.35 12 A 1 \nATOM 3 C C . SER A 1 32 ? 14.065 -14.666 -7.029 1.00 52.42 12 A 1 \nATOM 4 O O . SER A 1 32 ? 13.415 -13.626 -6.984 1.00 50.08 12 A 1 \nATOM 5 C CB . SER A 1 32 ? 16.317 -14.526 -8.179 1.00 59.16 12 A 1 \nATOM 6 O OG . SER A 1 32 ? 15.546 -15.137 -9.191 1.00 66.70 12 A 1 \nATOM 7 N N . ALA A 1 33 ? 13.497 -15.844 -7.249 1.00 47.19 13 A 1 \nATOM 8 C CA . ALA A 1 33 ? 12.046 -16.003 -7.068 1.00 45.19 13 A 1 \nATOM 9 C C . ALA A 1 33 ? 11.708 -15.732 -5.605 1.00 42.42 13 A 1 \nATOM 10 O O . ALA A 1 33 ? 10.699 -15.048 -5.287 1.00 38.62 13 A 1 \nATOM 11 C CB . ALA A 1 33 ? 11.567 -17.381 -7.489 1.00 39.60 13 A 1 \nATOM 12 N N . ALA A 1 34 ? 12.571 -16.228 -4.715 1.00 40.19 14 A 1 \nATOM 13 C CA . ALA A 1 34 ? 12.400 -16.036 -3.247 1.00 40.95 14 A 1 \nATOM 14 C C . ALA A 1 34 ? 12.470 -14.574 -2.901 1.00 39.58 14 A 1 \nATOM 15 O O . ALA A 1 34 ? 11.675 -14.076 -2.110 1.00 38.72 14 A 1 \nATOM 16 C CB . ALA A 1 34 ? 13.432 -16.817 -2.437 1.00 34.41 14 A 1 \nATOM 17 N N . THR A 1 35 ? 13.413 -13.894 -3.542 1.00 42.61 15 A 1 \nATOM 18 C CA . THR A 1 35 ? 13.638 -12.464 -3.378 1.00 42.28 15 A 1 \nATOM 19 C C . THR A 1 35 ? 12.396 -11.654 -3.803 1.00 38.02 15 A 1 \nATOM 20 O O . THR A 1 35 ? 11.975 -10.746 -3.091 1.00 34.80 15 A 1 \nATOM 21 C CB . THR A 1 35 ? 14.880 -12.054 -4.222 1.00 42.09 15 A 1 \nATOM 22 O OG1 . THR A 1 35 ? 16.025 -12.819 -3.810 1.00 39.93 15 A 1 \nATOM 23 C CG2 . THR A 1 35 ? 15.166 -10.584 -4.142 1.00 44.97 15 A 1 \nATOM 24 N N . ARG A 1 36 ? 11.838 -11.997 -4.957 1.00 34.19 16 A 1 \nATOM 25 C CA . ARG A 1 36 ? 10.570 -11.414 -5.464 1.00 37.91 16 A 1 \nATOM 26 C C . ARG A 1 36 ? 9.443 -11.512 -4.425 1.00 36.82 16 A 1 \nATOM 27 O O . ARG A 1 36 ? 8.845 -10.493 -4.061 1.00 36.34 16 A 1 \nATOM 28 C CB . ARG A 1 36 ? 10.196 -12.061 -6.790 1.00 35.12 16 A 1 \nATOM 29 C CG . ARG A 1 36 ? 9.025 -11.498 -7.529 1.00 41.79 16 A 1 \nATOM 30 C CD . ARG A 1 36 ? 8.944 -12.129 -8.906 1.00 43.12 16 A 1 \nATOM 31 N NE . ARG A 1 36 ? 9.655 -11.258 -9.806 1.00 51.07 16 A 1 \nATOM 32 C CZ . ARG A 1 36 ? 9.141 -10.174 -10.396 1.00 52.89 16 A 1 \nATOM 33 N NH1 . ARG A 1 36 ? 7.855 -9.846 -10.248 1.00 46.33 16 A 1 \nATOM 34 N NH2 . ARG A 1 36 ? 9.936 -9.416 -11.151 1.00 56.28 16 A 1 \nATOM 35 N N . GLU A 1 37 ? 9.240 -12.714 -3.876 1.00 40.69 17 A 1 \nATOM 36 C CA . GLU A 1 37 ? 8.198 -12.955 -2.860 1.00 38.94 17 A 1 \nATOM 37 C C . GLU A 1 37 ? 8.422 -12.187 -1.564 1.00 39.89 17 A 1 \nATOM 38 O O . GLU A 1 37 ? 7.492 -11.601 -0.990 1.00 41.18 17 A 1 \nATOM 39 C CB . GLU A 1 37 ? 8.095 -14.451 -2.563 1.00 40.31 17 A 1 \nATOM 40 C CG . GLU A 1 37 ? 7.596 -15.227 -3.761 1.00 43.23 17 A 1 \nATOM 41 C CD . GLU A 1 37 ? 6.248 -14.741 -4.267 1.00 51.87 17 A 1 \nATOM 42 O OE1 . GLU A 1 37 ? 6.085 -14.684 -5.501 1.00 61.52 17 A 1 \nATOM 43 O OE2 . GLU A 1 37 ? 5.367 -14.397 -3.434 1.00 50.18 17 A 1 \nATOM 44 N N . ALA A 1 38 ? 9.658 -12.198 -1.084 1.00 35.95 18 A 1 \nATOM 45 C CA . ALA A 1 38 ? 9.998 -11.486 0.148 1.00 35.71 18 A 1 \nATOM 46 C C . ALA A 1 38 ? 9.794 -9.986 -0.042 1.00 36.14 18 A 1 \nATOM 47 O O . ALA A 1 38 ? 9.334 -9.317 0.867 1.00 33.67 18 A 1 \nATOM 48 C CB . ALA A 1 38 ? 11.428 -11.786 0.564 1.00 37.97 18 A 1 \nATOM 49 N N . LEU A 1 39 ? 10.109 -9.469 -1.232 1.00 36.73 19 A 1 \nATOM 50 C CA . LEU A 1 39 ? 9.933 -8.054 -1.523 1.00 37.51 19 A 1 \nATOM 51 C C . LEU A 1 39 ? 8.464 -7.674 -1.620 1.00 36.28 19 A 1 \nATOM 52 O O . LEU A 1 39 ? 8.064 -6.674 -1.009 1.00 33.51 19 A 1 \nATOM 53 C CB . LEU A 1 39 ? 10.727 -7.615 -2.751 1.00 39.00 19 A 1 \nATOM 54 C CG . LEU A 1 39 ? 12.257 -7.560 -2.525 1.00 38.49 19 A 1 \nATOM 55 C CD1 . LEU A 1 39 ? 12.958 -7.650 -3.866 1.00 39.55 19 A 1 \nATOM 56 C CD2 . LEU A 1 39 ? 12.720 -6.344 -1.739 1.00 37.47 19 A 1 \nATOM 57 N N . ILE A 1 40 ? 7.645 -8.499 -2.273 1.00 37.38 20 A 1 \nATOM 58 C CA . ILE A 1 40 ? 6.180 -8.215 -2.322 1.00 34.88 20 A 1 \nATOM 59 C C . ILE A 1 40 ? 5.520 -8.185 -0.911 1.00 33.38 20 A 1 \nATOM 60 O O . ILE A 1 40 ? 4.793 -7.236 -0.557 1.00 36.57 20 A 1 \nATOM 61 C CB . ILE A 1 40 ? 5.468 -9.172 -3.319 1.00 33.87 20 A 1 \nATOM 62 C CG1 . ILE A 1 40 ? 5.838 -8.784 -4.754 1.00 35.50 20 A 1 \nATOM 63 C CG2 . ILE A 1 40 ? 3.961 -9.128 -3.156 1.00 38.18 20 A 1 \nATOM 64 C CD1 . ILE A 1 40 ? 5.615 -9.836 -5.818 1.00 35.78 20 A 1 \nATOM 65 N N . THR A 1 41 ? 5.848 -9.187 -0.104 1.00 34.78 21 A 1 \nATOM 66 C CA . THR A 1 41 ? 5.323 -9.352 1.282 1.00 35.81 21 A 1 \nATOM 67 C C . THR A 1 41 ? 5.746 -8.217 2.215 1.00 35.14 21 A 1 \nATOM 68 O O . THR A 1 41 ? 4.923 -7.628 2.918 1.00 37.68 21 A 1 \nATOM 69 C CB . THR A 1 41 ? 5.813 -10.689 1.904 1.00 35.74 21 A 1 \nATOM 70 O OG1 . THR A 1 41 ? 5.296 -11.761 1.130 1.00 33.75 21 A 1 \nATOM 71 C CG2 . THR A 1 41 ? 5.347 -10.872 3.368 1.00 35.88 21 A 1 \nATOM 72 N N . GLY A 1 42 ? 7.037 -7.904 2.190 1.00 33.96 22 A 1 \nATOM 73 C CA . GLY A 1 42 ? 7.545 -6.797 2.956 1.00 34.92 22 A 1 \nATOM 74 C C . GLY A 1 42 ? 6.969 -5.465 2.539 1.00 36.99 22 A 1 \nATOM 75 O O . GLY A 1 42 ? 6.601 -4.663 3.396 1.00 38.29 22 A 1 \nATOM 76 N N . ALA A 1 43 ? 6.889 -5.223 1.227 1.00 35.01 23 A 1 \nATOM 77 C CA . ALA A 1 43 ? 6.275 -3.990 0.741 1.00 37.28 23 A 1 \nATOM 78 C C . ALA A 1 43 ? 4.797 -3.927 1.160 1.00 37.98 23 A 1 \nATOM 79 O O . ALA A 1 43 ? 4.329 -2.898 1.664 1.00 32.51 23 A 1 \nATOM 80 C CB . ALA A 1 43 ? 6.373 -3.894 -0.763 1.00 38.82 23 A 1 \nATOM 81 N N . ARG A 1 44 ? 4.084 -5.033 0.969 1.00 38.38 24 A 1 \nATOM 82 C CA . ARG A 1 44 ? 2.680 -5.077 1.335 1.00 40.26 24 A 1 \nATOM 83 C C . ARG A 1 44 ? 2.460 -4.758 2.811 1.00 41.78 24 A 1 \nATOM 84 O O . ARG A 1 44 ? 1.548 -3.974 3.135 1.00 41.19 24 A 1 \nATOM 85 C CB . ARG A 1 44 ? 2.082 -6.430 0.985 1.00 39.52 24 A 1 \nATOM 86 C CG . ARG A 1 44 ? 0.672 -6.631 1.474 1.00 37.19 24 A 1 \nATOM 87 C CD . ARG A 1 44 ? 0.212 -7.998 1.082 1.00 37.38 24 A 1 \nATOM 88 N NE . ARG A 1 44 ? -1.196 -8.152 1.407 1.00 36.46 24 A 1 \nATOM 89 C CZ . ARG A 1 44 ? -1.952 -9.176 1.009 1.00 36.58 24 A 1 \nATOM 90 N NH1 . ARG A 1 44 ? -1.448 -10.139 0.245 1.00 36.00 24 A 1 \nATOM 91 N NH2 . ARG A 1 44 ? -3.244 -9.179 1.322 1.00 37.49 24 A 1 \nATOM 92 N N . LYS A 1 45 ? 3.287 -5.339 3.687 1.00 38.35 25 A 1 \nATOM 93 C CA . LYS A 1 45 ? 3.118 -5.141 5.130 1.00 37.56 25 A 1 \nATOM 94 C C . LYS A 1 45 ? 3.416 -3.697 5.488 1.00 41.30 25 A 1 \nATOM 95 O O . LYS A 1 45 ? 2.578 -3.040 6.108 1.00 42.37 25 A 1 \nATOM 96 C CB . LYS A 1 45 ? 4.012 -6.083 5.957 1.00 37.75 25 A 1 \nATOM 97 N N . LEU A 1 46 ? 4.601 -3.210 5.112 1.00 39.91 26 A 1 \nATOM 98 C CA . LEU A 1 46 ? 5.004 -1.851 5.466 1.00 41.75 26 A 1 \nATOM 99 C C . LEU A 1 46 ? 4.158 -0.713 4.827 1.00 39.70 26 A 1 \nATOM 100 O O . LEU A 1 46 ? 3.756 0.224 5.527 1.00 42.03 26 A 1 \nATOM 101 C CB . LEU A 1 46 ? 6.490 -1.652 5.161 1.00 42.89 26 A 1 \nATOM 102 C CG . LEU A 1 46 ? 7.430 -2.512 6.022 1.00 49.00 26 A 1 \nATOM 103 C CD1 . LEU A 1 46 ? 8.866 -2.221 5.650 1.00 47.90 26 A 1 \nATOM 104 C CD2 . LEU A 1 46 ? 7.202 -2.257 7.518 1.00 49.74 26 A 1 \nATOM 105 N N . TRP A 1 47 ? 3.917 -0.789 3.524 1.00 32.52 27 A 1 \nATOM 106 C CA . TRP A 1 47 ? 3.054 0.162 2.869 1.00 34.86 27 A 1 \nATOM 107 C C . TRP A 1 47 ? 1.613 0.072 3.406 1.00 38.55 27 A 1 \nATOM 108 O O . TRP A 1 47 ? 0.942 1.107 3.493 1.00 36.72 27 A 1 \nATOM 109 C CB . TRP A 1 47 ? 3.062 0.016 1.330 1.00 34.21 27 A 1 \nATOM 110 C CG . TRP A 1 47 ? 4.345 0.551 0.663 1.00 33.50 27 A 1 \nATOM 111 C CD1 . TRP A 1 47 ? 5.170 1.561 1.113 1.00 33.44 27 A 1 \nATOM 112 C CD2 . TRP A 1 47 ? 4.902 0.127 -0.578 1.00 29.90 27 A 1 \nATOM 113 N NE1 . TRP A 1 47 ? 6.191 1.785 0.216 1.00 33.03 27 A 1 \nATOM 114 C CE2 . TRP A 1 47 ? 6.054 0.923 -0.826 1.00 30.70 27 A 1 \nATOM 115 C CE3 . TRP A 1 47 ? 4.523 -0.809 -1.519 1.00 29.39 27 A 1 \nATOM 116 C CZ2 . TRP A 1 47 ? 6.835 0.776 -1.961 1.00 31.85 27 A 1 \nATOM 117 C CZ3 . TRP A 1 47 ? 5.303 -0.975 -2.654 1.00 33.21 27 A 1 \nATOM 118 C CH2 . TRP A 1 47 ? 6.457 -0.190 -2.871 1.00 33.57 27 A 1 \nATOM 119 N N . GLY A 1 48 ? 1.155 -1.136 3.776 1.00 33.15 28 A 1 \nATOM 120 C CA . GLY A 1 48 ? -0.153 -1.328 4.371 1.00 33.80 28 A 1 \nATOM 121 C C . GLY A 1 48 ? -0.355 -0.610 5.686 1.00 40.51 28 A 1 \nATOM 122 O O . GLY A 1 48 ? -1.442 -0.087 5.955 1.00 46.60 28 A 1 \nATOM 123 N N . LEU A 1 49 ? 0.700 -0.565 6.500 1.00 44.55 29 A 1 \nATOM 124 C CA . LEU A 1 49 ? 0.688 0.136 7.794 1.00 47.68 29 A 1 \nATOM 125 C C . LEU A 1 49 ? 0.924 1.646 7.691 1.00 47.24 29 A 1 \nATOM 126 O O . LEU A 1 49 ? 0.273 2.424 8.369 1.00 44.45 29 A 1 \nATOM 127 C CB . LEU A 1 49 ? 1.759 -0.446 8.716 1.00 53.55 29 A 1 \nATOM 128 C CG . LEU A 1 49 ? 1.480 -1.865 9.193 1.00 60.12 29 A 1 \nATOM 129 C CD1 . LEU A 1 49 ? 2.765 -2.504 9.717 1.00 68.68 29 A 1 \nATOM 130 C CD2 . LEU A 1 49 ? 0.354 -1.907 10.232 1.00 59.63 29 A 1 \nATOM 131 N N . ARG A 1 50 ? 1.886 2.052 6.872 1.00 46.39 30 A 1 \nATOM 132 C CA . ARG A 1 50 ? 2.370 3.416 6.893 1.00 44.98 30 A 1 \nATOM 133 C C . ARG A 1 50 ? 2.043 4.173 5.591 1.00 43.12 30 A 1 \nATOM 134 O O . ARG A 1 50 ? 2.145 5.405 5.537 1.00 43.80 30 A 1 \nATOM 135 C CB . ARG A 1 50 ? 3.895 3.403 7.226 1.00 45.26 30 A 1 \nATOM 136 N N . GLY A 1 51 ? 1.616 3.460 4.546 1.00 41.44 31 A 1 \nATOM 137 C CA . GLY A 1 51 ? 1.324 4.084 3.257 1.00 35.88 31 A 1 \nATOM 138 C C . GLY A 1 51 ? 2.543 4.161 2.371 1.00 37.16 31 A 1 \nATOM 139 O O . GLY A 1 51 ? 3.689 4.274 2.844 1.00 40.97 31 A 1 \nATOM 140 N N . TYR A 1 52 ? 2.293 4.090 1.072 1.00 36.53 32 A 1 \nATOM 141 C CA . TYR A 1 52 ? 3.330 4.195 0.032 1.00 39.41 32 A 1 \nATOM 142 C C . TYR A 1 52 ? 4.334 5.335 0.243 1.00 41.90 32 A 1 \nATOM 143 O O . TYR A 1 52 ? 5.553 5.127 0.187 1.00 45.28 32 A 1 \nATOM 144 C CB . TYR A 1 52 ? 2.652 4.344 -1.332 1.00 35.87 32 A 1 \nATOM 145 C CG . TYR A 1 52 ? 3.569 4.400 -2.502 1.00 31.22 32 A 1 \nATOM 146 C CD1 . TYR A 1 52 ? 4.039 3.226 -3.085 1.00 32.89 32 A 1 \nATOM 147 C CD2 . TYR A 1 52 ? 3.936 5.625 -3.077 1.00 30.08 32 A 1 \nATOM 148 C CE1 . TYR A 1 52 ? 4.876 3.258 -4.206 1.00 31.73 32 A 1 \nATOM 149 C CE2 . TYR A 1 52 ? 4.765 5.674 -4.208 1.00 32.10 32 A 1 \nATOM 150 C CZ . TYR A 1 52 ? 5.234 4.475 -4.757 1.00 34.10 32 A 1 \nATOM 151 O OH . TYR A 1 52 ? 6.043 4.468 -5.865 1.00 36.02 32 A 1 \nATOM 152 N N . ALA A 1 53 ? 3.804 6.528 0.493 1.00 45.75 33 A 1 \nATOM 153 C CA . ALA A 1 53 ? 4.633 7.735 0.571 1.00 46.23 33 A 1 \nATOM 154 C C . ALA A 1 53 ? 5.661 7.679 1.702 1.00 49.93 33 A 1 \nATOM 155 O O . ALA A 1 53 ? 6.751 8.253 1.565 1.00 48.50 33 A 1 \nATOM 156 C CB . ALA A 1 53 ? 3.767 8.960 0.736 1.00 43.67 33 A 1 \nATOM 157 N N . GLU A 1 54 ? 5.322 6.966 2.786 1.00 49.28 34 A 1 \nATOM 158 C CA . GLU A 1 54 ? 6.087 7.014 4.037 1.00 48.96 34 A 1 \nATOM 159 C C . GLU A 1 54 ? 7.171 5.945 4.203 1.00 51.08 34 A 1 \nATOM 160 O O . GLU A 1 54 ? 7.871 5.953 5.199 1.00 50.98 34 A 1 \nATOM 161 C CB . GLU A 1 54 ? 5.124 6.981 5.238 1.00 48.92 34 A 1 \nATOM 162 C CG . GLU A 1 54 ? 4.029 8.049 5.208 1.00 55.88 34 A 1 \nATOM 163 C CD . GLU A 1 54 ? 4.575 9.468 5.059 1.00 62.23 34 A 1 \nATOM 164 O OE1 . GLU A 1 54 ? 5.425 9.831 5.910 1.00 61.30 34 A 1 \nATOM 165 O OE2 . GLU A 1 54 ? 4.177 10.194 4.095 1.00 56.23 34 A 1 \nATOM 166 N N . VAL A 1 55 ? 7.326 5.040 3.232 1.00 53.51 35 A 1 \nATOM 167 C CA . VAL A 1 55 ? 8.328 3.946 3.308 1.00 43.37 35 A 1 \nATOM 168 C C . VAL A 1 55 ? 9.048 3.855 1.974 1.00 38.88 35 A 1 \nATOM 169 O O . VAL A 1 55 ? 8.413 3.769 0.948 1.00 34.39 35 A 1 \nATOM 170 C CB . VAL A 1 55 ? 7.706 2.558 3.601 1.00 42.09 35 A 1 \nATOM 171 C CG1 . VAL A 1 55 ? 8.795 1.540 3.919 1.00 42.46 35 A 1 \nATOM 172 C CG2 . VAL A 1 55 ? 6.702 2.623 4.755 1.00 44.08 35 A 1 \nATOM 173 N N . GLY A 1 56 ? 10.377 3.871 2.018 1.00 35.77 36 A 1 \nATOM 174 C CA . GLY A 1 56 ? 11.215 3.783 0.859 1.00 32.43 36 A 1 \nATOM 175 C C . GLY A 1 56 ? 11.641 2.382 0.562 1.00 34.89 36 A 1 \nATOM 176 O O . GLY A 1 56 ? 11.494 1.485 1.386 1.00 39.12 36 A 1 \nATOM 177 N N . THR A 1 57 ? 12.208 2.219 -0.617 1.00 40.83 37 A 1 \nATOM 178 C CA . THR A 1 57 ? 12.696 0.930 -1.101 1.00 42.50 37 A 1 \nATOM 179 C C . THR A 1 57 ? 13.882 0.396 -0.279 1.00 47.06 37 A 1 \nATOM 180 O O . THR A 1 57 ? 13.991 -0.815 -0.125 1.00 46.96 37 A 1 \nATOM 181 C CB . THR A 1 57 ? 13.078 0.952 -2.620 1.00 37.21 37 A 1 \nATOM 182 O OG1 . THR A 1 57 ? 14.050 1.968 -2.913 1.00 40.49 37 A 1 \nATOM 183 C CG2 . THR A 1 57 ? 11.876 1.160 -3.451 1.00 39.01 37 A 1 \nATOM 184 N N . PRO A 1 58 ? 14.765 1.282 0.260 1.00 48.33 38 A 1 \nATOM 185 C CA . PRO A 1 58 ? 15.842 0.715 1.087 1.00 45.48 38 A 1 \nATOM 186 C C . PRO A 1 58 ? 15.326 0.010 2.338 1.00 44.80 38 A 1 \nATOM 187 O O . PRO A 1 58 ? 15.781 -1.101 2.640 1.00 46.18 38 A 1 \nATOM 188 C CB . PRO A 1 58 ? 16.711 1.938 1.443 1.00 45.75 38 A 1 \nATOM 189 C CG . PRO A 1 58 ? 16.407 2.950 0.375 1.00 47.82 38 A 1 \nATOM 190 C CD . PRO A 1 58 ? 14.929 2.742 0.100 1.00 49.35 38 A 1 \nATOM 191 N N . GLU A 1 59 ? 14.359 0.626 3.027 1.00 42.42 39 A 1 \nATOM 192 C CA . GLU A 1 59 ? 13.772 0.022 4.221 1.00 42.31 39 A 1 \nATOM 193 C C . GLU A 1 59 ? 13.027 -1.283 3.902 1.00 46.38 39 A 1 \nATOM 194 O O . GLU A 1 59 ? 12.978 -2.189 4.721 1.00 47.66 39 A 1 \nATOM 195 C CB . GLU A 1 59 ? 12.802 1.006 4.862 1.00 46.57 39 A 1 \nATOM 196 C CG . GLU A 1 59 ? 12.145 0.460 6.125 1.00 46.51 39 A 1 \nATOM 197 C CD . GLU A 1 59 ? 11.337 1.470 6.867 1.00 48.81 39 A 1 \nATOM 198 O OE1 . GLU A 1 59 ? 11.296 2.636 6.431 1.00 47.42 39 A 1 \nATOM 199 O OE2 . GLU A 1 59 ? 10.727 1.053 7.875 1.00 52.14 39 A 1 \nATOM 200 N N . ILE A 1 60 ? 12.420 -1.352 2.716 1.00 44.02 40 A 1 \nATOM 201 C CA . ILE A 1 60 ? 11.743 -2.549 2.263 1.00 39.37 40 A 1 \nATOM 202 C C . ILE A 1 60 ? 12.757 -3.654 2.026 1.00 39.71 40 A 1 \nATOM 203 O O . ILE A 1 60 ? 12.515 -4.810 2.382 1.00 39.18 40 A 1 \nATOM 204 C CB . ILE A 1 60 ? 10.857 -2.257 1.029 1.00 37.72 40 A 1 \nATOM 205 C CG1 . ILE A 1 60 ? 9.655 -1.433 1.509 1.00 39.59 40 A 1 \nATOM 206 C CG2 . ILE A 1 60 ? 10.354 -3.545 0.373 1.00 37.72 40 A 1 \nATOM 207 C CD1 . ILE A 1 60 ? 8.752 -0.807 0.449 1.00 45.21 40 A 1 \nATOM 208 N N . ALA A 1 61 ? 13.890 -3.318 1.428 1.00 41.65 41 A 1 \nATOM 209 C CA . ALA A 1 61 ? 14.913 -4.337 1.136 1.00 43.44 41 A 1 \nATOM 210 C C . ALA A 1 61 ? 15.484 -4.917 2.443 1.00 43.60 41 A 1 \nATOM 211 O O . ALA A 1 61 ? 15.632 -6.134 2.570 1.00 42.48 41 A 1 \nATOM 212 C CB . ALA A 1 61 ? 16.019 -3.747 0.292 1.00 42.86 41 A 1 \nATOM 213 N N . THR A 1 62 ? 15.741 -4.039 3.410 1.00 42.00 42 A 1 \nATOM 214 C CA . THR A 1 62 ? 16.219 -4.430 4.727 1.00 45.08 42 A 1 \nATOM 215 C C . THR A 1 62 ? 15.213 -5.344 5.394 1.00 47.52 42 A 1 \nATOM 216 O O . THR A 1 62 ? 15.597 -6.369 5.928 1.00 56.20 42 A 1 \nATOM 217 C CB . THR A 1 62 ? 16.470 -3.183 5.631 1.00 50.01 42 A 1 \nATOM 218 O OG1 . THR A 1 62 ? 17.453 -2.325 5.041 1.00 47.62 42 A 1 \nATOM 219 C CG2 . THR A 1 62 ? 16.888 -3.570 7.045 1.00 49.41 42 A 1 \nATOM 220 N N . GLU A 1 63 ? 13.926 -4.975 5.351 1.00 53.82 43 A 1 \nATOM 221 C CA . GLU A 1 63 ? 12.822 -5.773 5.912 1.00 49.88 43 A 1 \nATOM 222 C C . GLU A 1 63 ? 12.814 -7.158 5.287 1.00 48.37 43 A 1 \nATOM 223 O O . GLU A 1 63 ? 12.589 -8.141 5.985 1.00 49.07 43 A 1 \nATOM 224 C CB . GLU A 1 63 ? 11.478 -5.097 5.592 1.00 51.51 43 A 1 \nATOM 225 C CG . GLU A 1 63 ? 10.210 -5.902 5.926 1.00 53.29 43 A 1 \nATOM 226 C CD . GLU A 1 63 ? 9.987 -6.072 7.412 1.00 57.25 43 A 1 \nATOM 227 O OE1 . GLU A 1 63 ? 10.409 -5.159 8.157 1.00 68.21 43 A 1 \nATOM 228 O OE2 . GLU A 1 63 ? 9.394 -7.094 7.823 1.00 52.58 43 A 1 \nATOM 229 N N . ALA A 1 64 ? 13.000 -7.206 3.966 1.00 41.68 44 A 1 \nATOM 230 C CA . ALA A 1 64 ? 12.959 -8.451 3.226 1.00 40.92 44 A 1 \nATOM 231 C C . ALA A 1 64 ? 14.236 -9.318 3.390 1.00 41.76 44 A 1 \nATOM 232 O O . ALA A 1 64 ? 14.244 -10.484 2.976 1.00 41.89 44 A 1 \nATOM 233 C CB . ALA A 1 64 ? 12.716 -8.151 1.743 1.00 42.32 44 A 1 \nATOM 234 N N . GLY A 1 65 ? 15.309 -8.725 3.924 1.00 42.20 45 A 1 \nATOM 235 C CA . GLY A 1 65 ? 16.603 -9.397 4.082 1.00 46.55 45 A 1 \nATOM 236 C C . GLY A 1 65 ? 17.362 -9.568 2.775 1.00 49.21 45 A 1 \nATOM 237 O O . GLY A 1 65 ? 17.992 -10.604 2.552 1.00 50.36 45 A 1 \nATOM 238 N N . VAL A 1 66 ? 17.277 -8.570 1.892 1.00 48.44 46 A 1 \nATOM 239 C CA . VAL A 1 66 ? 17.988 -8.606 0.623 1.00 44.59 46 A 1 \nATOM 240 C C . VAL A 1 66 ? 18.703 -7.281 0.359 1.00 44.41 46 A 1 \nATOM 241 O O . VAL A 1 66 ? 18.456 -6.254 1.013 1.00 41.18 46 A 1 \nATOM 242 C CB . VAL A 1 66 ? 17.079 -8.989 -0.569 1.00 45.56 46 A 1 \nATOM 243 C CG1 . VAL A 1 66 ? 16.363 -10.301 -0.289 1.00 44.42 46 A 1 \nATOM 244 C CG2 . VAL A 1 66 ? 16.106 -7.847 -0.951 1.00 49.30 46 A 1 \nATOM 245 N N . THR A 1 67 ? 19.609 -7.347 -0.597 1.00 41.68 47 A 1 \nATOM 246 C CA . THR A 1 67 ? 20.375 -6.191 -1.020 1.00 43.86 47 A 1 \nATOM 247 C C . THR A 1 67 ? 19.588 -5.394 -2.070 1.00 43.90 47 A 1 \nATOM 248 O O . THR A 1 67 ? 18.742 -5.934 -2.802 1.00 45.86 47 A 1 \nATOM 249 C CB . THR A 1 67 ? 21.719 -6.623 -1.671 1.00 42.81 47 A 1 \nATOM 250 O OG1 . THR A 1 67 ? 21.464 -7.302 -2.935 1.00 39.64 47 A 1 \nATOM 251 C CG2 . THR A 1 67 ? 22.600 -7.487 -0.660 1.00 42.67 47 A 1 \nATOM 252 N N . ARG A 1 68 ? 19.940 -4.122 -2.159 1.00 43.02 48 A 1 \nATOM 253 C CA . ARG A 1 68 ? 19.376 -3.210 -3.124 1.00 42.59 48 A 1 \nATOM 254 C C . ARG A 1 68 ? 19.577 -3.701 -4.562 1.00 42.19 48 A 1 \nATOM 255 O O . ARG A 1 68 ? 18.649 -3.603 -5.374 1.00 41.86 48 A 1 \nATOM 256 C CB . ARG A 1 68 ? 19.948 -1.808 -2.931 1.00 46.44 48 A 1 \nATOM 257 C CG . ARG A 1 68 ? 19.569 -1.141 -1.594 1.00 51.44 48 A 1 \nATOM 258 C CD . ARG A 1 68 ? 20.221 0.235 -1.470 1.00 54.99 48 A 1 \nATOM 259 N NE . ARG A 1 68 ? 20.011 1.032 -2.693 1.00 64.50 48 A 1 \nATOM 260 C CZ . ARG A 1 68 ? 20.926 1.310 -3.630 1.00 62.92 48 A 1 \nATOM 261 N NH1 . ARG A 1 68 ? 22.190 0.932 -3.492 1.00 62.80 48 A 1 \nATOM 262 N NH2 . ARG A 1 68 ? 20.572 2.019 -4.705 1.00 62.80 48 A 1 \nATOM 263 N N . GLY A 1 69 ? 20.744 -4.268 -4.868 1.00 38.07 49 A 1 \nATOM 264 C CA . GLY A 1 69 ? 21.024 -4.823 -6.208 1.00 38.12 49 A 1 \nATOM 265 C C . GLY A 1 69 ? 20.110 -5.985 -6.599 1.00 37.59 49 A 1 \nATOM 266 O O . GLY A 1 69 ? 19.706 -6.097 -7.749 1.00 33.21 49 A 1 \nATOM 267 N N . ALA A 1 70 ? 19.758 -6.838 -5.634 1.00 40.15 50 A 1 \nATOM 268 C CA . ALA A 1 70 ? 18.798 -7.915 -5.904 1.00 39.41 50 A 1 \nATOM 269 C C . ALA A 1 70 ? 17.366 -7.349 -6.067 1.00 39.44 50 A 1 \nATOM 270 O O . ALA A 1 70 ? 16.563 -7.837 -6.866 1.00 39.61 50 A 1 \nATOM 271 C CB . ALA A 1 70 ? 18.828 -8.948 -4.796 1.00 37.82 50 A 1 \nATOM 272 N N . MET A 1 71 ? 17.045 -6.315 -5.307 1.00 40.97 51 A 1 \nATOM 273 C CA . MET A 1 71 ? 15.735 -5.691 -5.439 1.00 42.60 51 A 1 \nATOM 274 C C . MET A 1 71 ? 15.549 -5.083 -6.801 1.00 43.44 51 A 1 \nATOM 275 O O . MET A 1 71 ? 14.505 -5.294 -7.449 1.00 41.95 51 A 1 \nATOM 276 C CB . MET A 1 71 ? 15.545 -4.617 -4.385 1.00 43.70 51 A 1 \nATOM 277 C CG . MET A 1 71 ? 14.248 -3.843 -4.488 1.00 46.92 51 A 1 \nATOM 278 S SD . MET A 1 71 ? 14.054 -2.882 -2.963 1.00 49.23 51 A 1 \nATOM 279 C CE . MET A 1 71 ? 12.433 -2.233 -3.323 1.00 63.38 51 A 1 \nATOM 280 N N . TYR A 1 72 ? 16.554 -4.320 -7.222 1.00 46.31 52 A 1 \nATOM 281 C CA . TYR A 1 72 ? 16.516 -3.623 -8.505 1.00 52.35 52 A 1 \nATOM 282 C C . TYR A 1 72 ? 16.575 -4.555 -9.685 1.00 44.27 52 A 1 \nATOM 283 O O . TYR A 1 72 ? 16.007 -4.236 -10.710 1.00 49.43 52 A 1 \nATOM 284 C CB . TYR A 1 72 ? 17.527 -2.427 -8.569 1.00 61.56 52 A 1 \nATOM 285 C CG . TYR A 1 72 ? 17.068 -1.281 -7.635 1.00 71.78 52 A 1 \nATOM 286 C CD1 . TYR A 1 72 ? 15.772 -0.752 -7.752 1.00 78.00 52 A 1 \nATOM 287 C CD2 . TYR A 1 72 ? 17.888 -0.760 -6.615 1.00 83.54 52 A 1 \nATOM 288 C CE1 . TYR A 1 72 ? 15.302 0.248 -6.906 1.00 83.23 52 A 1 \nATOM 289 C CE2 . TYR A 1 72 ? 17.426 0.246 -5.766 1.00 84.86 52 A 1 \nATOM 290 C CZ . TYR A 1 72 ? 16.132 0.753 -5.924 1.00 89.02 52 A 1 \nATOM 291 O OH . TYR A 1 72 ? 15.649 1.758 -5.117 1.00 92.68 52 A 1 \nATOM 292 N N . HIS A 1 73 ? 17.155 -5.735 -9.533 1.00 44.33 53 A 1 \nATOM 293 C CA . HIS A 1 73 ? 17.061 -6.771 -10.584 1.00 43.91 53 A 1 \nATOM 294 C C . HIS A 1 73 ? 15.587 -7.228 -10.791 1.00 46.89 53 A 1 \nATOM 295 O O . HIS A 1 73 ? 15.174 -7.515 -11.931 1.00 45.29 53 A 1 \nATOM 296 C CB . HIS A 1 73 ? 17.993 -7.950 -10.267 1.00 44.68 53 A 1 \nATOM 297 C CG . HIS A 1 73 ? 17.988 -9.040 -11.300 1.00 46.53 53 A 1 \nATOM 298 N ND1 . HIS A 1 73 ? 18.438 -8.858 -12.588 1.00 53.49 53 A 1 \nATOM 299 C CD2 . HIS A 1 73 ? 17.600 -10.336 -11.224 1.00 51.40 53 A 1 \nATOM 300 C CE1 . HIS A 1 73 ? 18.309 -9.984 -13.268 1.00 54.30 53 A 1 \nATOM 301 N NE2 . HIS A 1 73 ? 17.808 -10.902 -12.458 1.00 52.89 53 A 1 \nATOM 302 N N . GLN A 1 74 ? 14.797 -7.268 -9.715 1.00 41.64 54 A 1 \nATOM 303 C CA . GLN A 1 74 ? 13.396 -7.680 -9.805 1.00 42.41 54 A 1 \nATOM 304 C C . GLN A 1 74 ? 12.394 -6.531 -10.071 1.00 41.20 54 A 1 \nATOM 305 O O . GLN A 1 74 ? 11.359 -6.756 -10.692 1.00 39.35 54 A 1 \nATOM 306 C CB . GLN A 1 74 ? 12.987 -8.438 -8.530 1.00 43.07 54 A 1 \nATOM 307 C CG . GLN A 1 74 ? 13.778 -9.707 -8.261 1.00 46.94 54 A 1 \nATOM 308 C CD . GLN A 1 74 ? 13.670 -10.722 -9.398 1.00 53.71 54 A 1 \nATOM 309 O OE1 . GLN A 1 74 ? 12.588 -11.007 -9.897 1.00 56.97 54 A 1 \nATOM 310 N NE2 . GLN A 1 74 ? 14.797 -11.280 -9.791 1.00 53.85 54 A 1 \nATOM 311 N N . PHE A 1 75 ? 12.673 -5.335 -9.567 1.00 40.80 55 A 1 \nATOM 312 C CA . PHE A 1 75 ? 11.774 -4.191 -9.709 1.00 38.60 55 A 1 \nATOM 313 C C . PHE A 1 75 ? 12.603 -2.947 -9.989 1.00 41.75 55 A 1 \nATOM 314 O O . PHE A 1 75 ? 13.374 -2.506 -9.142 1.00 43.49 55 A 1 \nATOM 315 C CB . PHE A 1 75 ? 10.949 -3.980 -8.436 1.00 40.27 55 A 1 \nATOM 316 C CG . PHE A 1 75 ? 10.149 -5.186 -8.013 1.00 41.53 55 A 1 \nATOM 317 C CD1 . PHE A 1 75 ? 8.937 -5.491 -8.641 1.00 42.13 55 A 1 \nATOM 318 C CD2 . PHE A 1 75 ? 10.606 -6.024 -6.973 1.00 39.84 55 A 1 \nATOM 319 C CE1 . PHE A 1 75 ? 8.218 -6.642 -8.267 1.00 42.38 55 A 1 \nATOM 320 C CE2 . PHE A 1 75 ? 9.860 -7.149 -6.589 1.00 40.72 55 A 1 \nATOM 321 C CZ . PHE A 1 75 ? 8.672 -7.461 -7.251 1.00 37.21 55 A 1 \nATOM 322 N N . ALA A 1 76 ? 12.423 -2.372 -11.174 1.00 45.82 56 A 1 \nATOM 323 C CA . ALA A 1 76 ? 13.175 -1.198 -11.621 1.00 47.40 56 A 1 \nATOM 324 C C . ALA A 1 76 ? 12.999 0.017 -10.725 1.00 48.52 56 A 1 \nATOM 325 O O . ALA A 1 76 ? 13.947 0.786 -10.562 1.00 53.39 56 A 1 \nATOM 326 C CB . ALA A 1 76 ? 12.801 -0.845 -13.052 1.00 51.45 56 A 1 \nATOM 327 N N . ASP A 1 77 ? 11.804 0.206 -10.152 1.00 44.05 57 A 1 \nATOM 328 C CA . ASP A 1 77 ? 11.593 1.314 -9.201 1.00 40.24 57 A 1 \nATOM 329 C C . ASP A 1 77 ? 10.530 1.003 -8.167 1.00 36.21 57 A 1 \nATOM 330 O O . ASP A 1 77 ? 9.921 -0.072 -8.199 1.00 38.80 57 A 1 \nATOM 331 C CB . ASP A 1 77 ? 11.300 2.632 -9.951 1.00 42.15 57 A 1 \nATOM 332 C CG . ASP A 1 77 ? 10.189 2.499 -10.969 1.00 47.99 57 A 1 \nATOM 333 O OD1 . ASP A 1 77 ? 9.131 1.890 -10.685 1.00 44.59 57 A 1 \nATOM 334 O OD2 . ASP A 1 77 ? 10.400 2.986 -12.118 1.00 55.57 57 A 1 \nATOM 335 N N . LYS A 1 78 ? 10.341 1.945 -7.258 1.00 31.93 58 A 1 \nATOM 336 C CA . LYS A 1 78 ? 9.335 1.918 -6.219 1.00 33.65 58 A 1 \nATOM 337 C C . LYS A 1 78 ? 7.954 1.564 -6.771 1.00 36.37 58 A 1 \nATOM 338 O O . LYS A 1 78 ? 7.268 0.685 -6.257 1.00 34.38 58 A 1 \nATOM 339 C CB . LYS A 1 78 ? 9.282 3.288 -5.512 1.00 34.06 58 A 1 \nATOM 340 C CG . LYS A 1 78 ? 8.585 3.239 -4.176 1.00 37.05 58 A 1 \nATOM 341 C CD . LYS A 1 78 ? 8.523 4.605 -3.470 1.00 37.44 58 A 1 \nATOM 342 C CE . LYS A 1 78 ? 7.875 4.418 -2.105 1.00 37.22 58 A 1 \nATOM 343 N NZ . LYS A 1 78 ? 7.637 5.648 -1.314 1.00 40.87 58 A 1 \nATOM 344 N N . ALA A 1 79 ? 7.547 2.255 -7.830 1.00 39.95 59 A 1 \nATOM 345 C CA . ALA A 1 79 ? 6.193 2.100 -8.375 1.00 38.81 59 A 1 \nATOM 346 C C . ALA A 1 79 ? 5.967 0.699 -8.979 1.00 38.40 59 A 1 \nATOM 347 O O . ALA A 1 79 ? 4.850 0.169 -8.907 1.00 37.30 59 A 1 \nATOM 348 C CB . ALA A 1 79 ? 5.894 3.195 -9.401 1.00 37.57 59 A 1 \nATOM 349 N N . ALA A 1 80 ? 7.008 0.094 -9.545 1.00 34.29 60 A 1 \nATOM 350 C CA . ALA A 1 80 ? 6.868 -1.223 -10.184 1.00 34.12 60 A 1 \nATOM 351 C C . ALA A 1 80 ? 6.612 -2.280 -9.097 1.00 35.29 60 A 1 \nATOM 352 O O . ALA A 1 80 ? 5.786 -3.159 -9.279 1.00 34.52 60 A 1 \nATOM 353 C CB . ALA A 1 80 ? 8.113 -1.545 -11.009 1.00 31.29 60 A 1 \nATOM 354 N N . LEU A 1 81 ? 7.276 -2.152 -7.954 1.00 34.26 61 A 1 \nATOM 355 C CA . LEU A 1 81 ? 7.005 -3.051 -6.817 1.00 34.15 61 A 1 \nATOM 356 C C . LEU A 1 81 ? 5.558 -2.862 -6.316 1.00 34.55 61 A 1 \nATOM 357 O O . LEU A 1 81 ? 4.868 -3.824 -5.980 1.00 36.36 61 A 1 \nATOM 358 C CB . LEU A 1 81 ? 8.019 -2.801 -5.688 1.00 32.78 61 A 1 \nATOM 359 C CG . LEU A 1 81 ? 7.838 -3.497 -4.348 1.00 33.06 61 A 1 \nATOM 360 C CD1 . LEU A 1 81 ? 7.704 -4.984 -4.499 1.00 31.58 61 A 1 \nATOM 361 C CD2 . LEU A 1 81 ? 9.012 -3.194 -3.447 1.00 34.50 61 A 1 \nATOM 362 N N . PHE A 1 82 ? 5.108 -1.611 -6.276 1.00 37.83 62 A 1 \nATOM 363 C CA . PHE A 1 82 ? 3.756 -1.278 -5.856 1.00 36.61 62 A 1 \nATOM 364 C C . PHE A 1 82 ? 2.681 -1.858 -6.790 1.00 36.36 62 A 1 \nATOM 365 O O . PHE A 1 82 ? 1.658 -2.306 -6.332 1.00 35.62 62 A 1 \nATOM 366 C CB . PHE A 1 82 ? 3.569 0.241 -5.685 1.00 36.24 62 A 1 \nATOM 367 C CG . PHE A 1 82 ? 2.193 0.614 -5.206 1.00 37.02 62 A 1 \nATOM 368 C CD1 . PHE A 1 82 ? 1.884 0.601 -3.857 1.00 39.09 62 A 1 \nATOM 369 C CD2 . PHE A 1 82 ? 1.202 0.889 -6.104 1.00 36.35 62 A 1 \nATOM 370 C CE1 . PHE A 1 82 ? 0.613 0.887 -3.426 1.00 38.05 62 A 1 \nATOM 371 C CE2 . PHE A 1 82 ? -0.053 1.224 -5.696 1.00 37.42 62 A 1 \nATOM 372 C CZ . PHE A 1 82 ? -0.369 1.217 -4.353 1.00 40.30 62 A 1 \nATOM 373 N N . ARG A 1 83 ? 2.914 -1.877 -8.087 1.00 38.64 63 A 1 \nATOM 374 C CA . ARG A 1 83 ? 1.943 -2.525 -9.003 1.00 38.58 63 A 1 \nATOM 375 C C . ARG A 1 83 ? 1.760 -4.004 -8.651 1.00 41.18 63 A 1 \nATOM 376 O O . ARG A 1 83 ? 0.629 -4.511 -8.698 1.00 39.03 63 A 1 \nATOM 377 C CB . ARG A 1 83 ? 2.368 -2.379 -10.473 1.00 40.52 63 A 1 \nATOM 378 C CG . ARG A 1 83 ? 2.237 -0.924 -10.919 1.00 39.99 63 A 1 \nATOM 379 C CD . ARG A 1 83 ? 2.508 -0.676 -12.373 1.00 38.83 63 A 1 \nATOM 380 N NE . ARG A 1 83 ? 3.741 -1.253 -12.889 1.00 40.85 63 A 1 \nATOM 381 C CZ . ARG A 1 83 ? 4.885 -0.605 -13.160 1.00 38.96 63 A 1 \nATOM 382 N NH1 . ARG A 1 83 ? 5.045 0.684 -12.915 1.00 38.25 63 A 1 \nATOM 383 N NH2 . ARG A 1 83 ? 5.884 -1.288 -13.686 1.00 40.53 63 A 1 \nATOM 384 N N . ASP A 1 84 ? 2.861 -4.691 -8.309 1.00 40.34 64 A 1 \nATOM 385 C CA . ASP A 1 84 ? 2.780 -6.098 -7.922 1.00 35.98 64 A 1 \nATOM 386 C C . ASP A 1 84 ? 2.132 -6.286 -6.559 1.00 33.92 64 A 1 \nATOM 387 O O . ASP A 1 84 ? 1.405 -7.277 -6.362 1.00 30.71 64 A 1 \nATOM 388 C CB . ASP A 1 84 ? 4.128 -6.804 -8.017 1.00 37.51 64 A 1 \nATOM 389 C CG . ASP A 1 84 ? 4.595 -6.993 -9.444 1.00 37.63 64 A 1 \nATOM 390 O OD1 . ASP A 1 84 ? 4.067 -6.382 -10.370 1.00 42.21 64 A 1 \nATOM 391 O OD2 . ASP A 1 84 ? 5.535 -7.751 -9.650 1.00 48.27 64 A 1 \nATOM 392 N N . VAL A 1 85 ? 2.327 -5.328 -5.643 1.00 31.61 65 A 1 \nATOM 393 C CA . VAL A 1 85 ? 1.632 -5.385 -4.361 1.00 32.12 65 A 1 \nATOM 394 C C . VAL A 1 85 ? 0.111 -5.238 -4.573 1.00 34.51 65 A 1 \nATOM 395 O O . VAL A 1 85 ? -0.680 -5.937 -3.940 1.00 33.96 65 A 1 \nATOM 396 C CB . VAL A 1 85 ? 2.153 -4.325 -3.399 1.00 33.63 65 A 1 \nATOM 397 C CG1 . VAL A 1 85 ? 1.206 -4.086 -2.216 1.00 35.14 65 A 1 \nATOM 398 C CG2 . VAL A 1 85 ? 3.538 -4.703 -2.926 1.00 31.45 65 A 1 \nATOM 399 N N . VAL A 1 86 ? -0.286 -4.375 -5.495 1.00 34.68 66 A 1 \nATOM 400 C CA . VAL A 1 86 ? -1.680 -4.166 -5.808 1.00 34.74 66 A 1 \nATOM 401 C C . VAL A 1 86 ? -2.312 -5.427 -6.379 1.00 37.76 66 A 1 \nATOM 402 O O . VAL A 1 86 ? -3.421 -5.770 -5.989 1.00 37.13 66 A 1 \nATOM 403 C CB . VAL A 1 86 ? -1.873 -2.984 -6.779 1.00 35.01 66 A 1 \nATOM 404 C CG1 . VAL A 1 86 ? -3.295 -2.956 -7.402 1.00 37.26 66 A 1 \nATOM 405 C CG2 . VAL A 1 86 ? -1.580 -1.674 -6.045 1.00 31.98 66 A 1 \nATOM 406 N N . GLU A 1 87 ? -1.647 -6.107 -7.306 1.00 39.61 67 A 1 \nATOM 407 C CA . GLU A 1 87 ? -2.211 -7.342 -7.840 1.00 42.13 67 A 1 \nATOM 408 C C . GLU A 1 87 ? -2.516 -8.354 -6.713 1.00 43.04 67 A 1 \nATOM 409 O O . GLU A 1 87 ? -3.625 -8.856 -6.655 1.00 42.63 67 A 1 \nATOM 410 C CB . GLU A 1 87 ? -1.285 -7.980 -8.830 1.00 43.02 67 A 1 \nATOM 411 C CG . GLU A 1 87 ? -1.280 -7.293 -10.171 1.00 48.03 67 A 1 \nATOM 412 C CD . GLU A 1 87 ? -0.147 -7.836 -11.011 1.00 54.85 67 A 1 \nATOM 413 O OE1 . GLU A 1 87 ? 0.972 -7.329 -10.812 1.00 63.97 67 A 1 \nATOM 414 O OE2 . GLU A 1 87 ? -0.332 -8.784 -11.813 1.00 57.02 67 A 1 \nATOM 415 N N . VAL A 1 88 ? -1.546 -8.605 -5.831 1.00 38.20 68 A 1 \nATOM 416 C CA . VAL A 1 88 ? -1.742 -9.618 -4.788 1.00 38.73 68 A 1 \nATOM 417 C C . VAL A 1 88 ? -2.854 -9.208 -3.821 1.00 36.95 68 A 1 \nATOM 418 O O . VAL A 1 88 ? -3.649 -10.057 -3.420 1.00 35.41 68 A 1 \nATOM 419 C CB . VAL A 1 88 ? -0.490 -10.025 -3.944 1.00 37.71 68 A 1 \nATOM 420 C CG1 . VAL A 1 88 ? 0.468 -10.907 -4.719 1.00 40.92 68 A 1 \nATOM 421 C CG2 . VAL A 1 88 ? 0.208 -8.834 -3.345 1.00 45.10 68 A 1 \nATOM 422 N N . VAL A 1 89 ? -2.914 -7.925 -3.469 1.00 34.71 69 A 1 \nATOM 423 C CA . VAL A 1 89 ? -3.941 -7.424 -2.580 1.00 35.58 69 A 1 \nATOM 424 C C . VAL A 1 89 ? -5.336 -7.548 -3.219 1.00 35.15 69 A 1 \nATOM 425 O O . VAL A 1 89 ? -6.232 -8.107 -2.596 1.00 34.40 69 A 1 \nATOM 426 C CB . VAL A 1 89 ? -3.692 -5.990 -2.139 1.00 34.11 69 A 1 \nATOM 427 C CG1 . VAL A 1 89 ? -4.922 -5.464 -1.355 1.00 37.59 69 A 1 \nATOM 428 C CG2 . VAL A 1 89 ? -2.469 -5.899 -1.284 1.00 31.10 69 A 1 \nATOM 429 N N . GLU A 1 90 ? -5.479 -7.074 -4.455 1.00 36.54 70 A 1 \nATOM 430 C CA . GLU A 1 90 ? -6.717 -7.272 -5.222 1.00 38.98 70 A 1 \nATOM 431 C C . GLU A 1 90 ? -7.087 -8.732 -5.410 1.00 36.59 70 A 1 \nATOM 432 O O . GLU A 1 90 ? -8.280 -9.070 -5.368 1.00 40.93 70 A 1 \nATOM 433 C CB . GLU A 1 90 ? -6.700 -6.582 -6.597 1.00 42.24 70 A 1 \nATOM 434 C CG . GLU A 1 90 ? -7.364 -5.200 -6.622 1.00 50.47 70 A 1 \nATOM 435 C CD . GLU A 1 90 ? -8.836 -5.202 -6.168 1.00 49.54 70 A 1 \nATOM 436 O OE1 . GLU A 1 90 ? -9.722 -5.822 -6.803 1.00 43.94 70 A 1 \nATOM 437 O OE2 . GLU A 1 90 ? -9.107 -4.562 -5.142 1.00 50.61 70 A 1 \nATOM 438 N N . GLN A 1 91 ? -6.103 -9.595 -5.623 1.00 38.50 71 A 1 \nATOM 439 C CA . GLN A 1 91 ? -6.356 -11.072 -5.673 1.00 44.25 71 A 1 \nATOM 440 C C . GLN A 1 91 ? -7.038 -11.530 -4.395 1.00 39.93 71 A 1 \nATOM 441 O O . GLN A 1 91 ? -8.014 -12.257 -4.443 1.00 42.80 71 A 1 \nATOM 442 C CB . GLN A 1 91 ? -5.079 -11.889 -5.905 1.00 46.11 71 A 1 \nATOM 443 C CG . GLN A 1 91 ? -4.968 -12.584 -7.264 1.00 56.57 71 A 1 \nATOM 444 C CD . GLN A 1 91 ? -3.518 -12.635 -7.805 1.00 66.53 71 A 1 \nATOM 445 O OE1 . GLN A 1 91 ? -3.279 -12.264 -8.970 1.00 60.42 71 A 1 \nATOM 446 N NE2 . GLN A 1 91 ? -2.546 -13.012 -6.947 1.00 61.48 71 A 1 \nATOM 447 N N . ASP A 1 92 ? -6.528 -11.058 -3.274 1.00 37.95 72 A 1 \nATOM 448 C CA . ASP A 1 92 ? -7.035 -11.425 -1.953 1.00 40.73 72 A 1 \nATOM 449 C C . ASP A 1 92 ? -8.397 -10.837 -1.682 1.00 38.90 72 A 1 \nATOM 450 O O . ASP A 1 92 ? -9.247 -11.528 -1.166 1.00 32.87 72 A 1 \nATOM 451 C CB . ASP A 1 92 ? -6.028 -11.043 -0.864 1.00 43.21 72 A 1 \nATOM 452 C CG . ASP A 1 92 ? -4.837 -11.999 -0.840 1.00 51.59 72 A 1 \nATOM 453 O OD1 . ASP A 1 92 ? -4.836 -13.022 -1.572 1.00 46.83 72 A 1 \nATOM 454 O OD2 . ASP A 1 92 ? -3.880 -11.700 -0.118 1.00 54.53 72 A 1 \nATOM 455 N N . VAL A 1 93 ? -8.600 -9.576 -2.069 1.00 39.60 73 A 1 \nATOM 456 C CA . VAL A 1 93 ? -9.911 -8.922 -2.005 1.00 39.85 73 A 1 \nATOM 457 C C . VAL A 1 93 ? -10.949 -9.824 -2.716 1.00 38.94 73 A 1 \nATOM 458 O O . VAL A 1 93 ? -11.979 -10.133 -2.131 1.00 35.44 73 A 1 \nATOM 459 C CB . VAL A 1 93 ? -9.846 -7.470 -2.602 1.00 42.28 73 A 1 \nATOM 460 C CG1 . VAL A 1 93 ? -11.231 -6.922 -2.989 1.00 42.32 73 A 1 \nATOM 461 C CG2 . VAL A 1 93 ? -9.112 -6.527 -1.635 1.00 39.58 73 A 1 \nATOM 462 N N . MET A 1 94 ? -10.649 -10.292 -3.935 1.00 38.40 74 A 1 \nATOM 463 C CA . MET A 1 94 ? -11.608 -11.103 -4.689 1.00 35.77 74 A 1 \nATOM 464 C C . MET A 1 94 ? -11.857 -12.465 -4.053 1.00 34.84 74 A 1 \nATOM 465 O O . MET A 1 94 ? -12.994 -12.889 -3.949 1.00 39.04 74 A 1 \nATOM 466 C CB . MET A 1 94 ? -11.193 -11.261 -6.150 1.00 36.69 74 A 1 \nATOM 467 C CG . MET A 1 94 ? -11.301 -9.963 -6.981 1.00 41.48 74 A 1 \nATOM 468 S SD . MET A 1 94 ? -12.713 -8.821 -6.751 1.00 48.46 74 A 1 \nATOM 469 C CE . MET A 1 94 ? -14.148 -9.813 -7.303 1.00 41.20 74 A 1 \nATOM 470 N N . ALA A 1 95 ? -10.808 -13.143 -3.617 1.00 34.05 75 A 1 \nATOM 471 C CA . ALA A 1 95 ? -10.950 -14.409 -2.919 1.00 35.20 75 A 1 \nATOM 472 C C . ALA A 1 95 ? -11.728 -14.242 -1.615 1.00 34.49 75 A 1 \nATOM 473 O O . ALA A 1 95 ? -12.611 -15.039 -1.327 1.00 35.74 75 A 1 \nATOM 474 C CB . ALA A 1 95 ? -9.577 -15.037 -2.657 1.00 34.59 75 A 1 \nATOM 475 N N . ARG A 1 96 ? -11.436 -13.198 -0.845 1.00 34.06 76 A 1 \nATOM 476 C CA . ARG A 1 96 ? -12.206 -12.897 0.348 1.00 35.11 76 A 1 \nATOM 477 C C . ARG A 1 96 ? -13.688 -12.587 0.053 1.00 38.58 76 A 1 \nATOM 478 O O . ARG A 1 96 ? -14.558 -13.011 0.800 1.00 38.97 76 A 1 \nATOM 479 C CB . ARG A 1 96 ? -11.617 -11.744 1.107 1.00 38.54 76 A 1 \nATOM 480 C CG . ARG A 1 96 ? -11.838 -11.957 2.585 1.00 45.03 76 A 1 \nATOM 481 C CD . ARG A 1 96 ? -11.450 -10.773 3.452 1.00 45.69 76 A 1 \nATOM 482 N NE . ARG A 1 96 ? -12.222 -10.856 4.688 1.00 46.75 76 A 1 \nATOM 483 C CZ . ARG A 1 96 ? -12.375 -9.890 5.580 1.00 39.84 76 A 1 \nATOM 484 N NH1 . ARG A 1 96 ? -11.824 -8.708 5.402 1.00 42.36 76 A 1 \nATOM 485 N NH2 . ARG A 1 96 ? -13.122 -10.123 6.642 1.00 40.53 76 A 1 \nATOM 486 N N . MET A 1 97 ? -13.953 -11.837 -1.023 1.00 40.81 77 A 1 \nATOM 487 C CA . MET A 1 97 ? -15.314 -11.613 -1.519 1.00 39.83 77 A 1 \nATOM 488 C C . MET A 1 97 ? -16.054 -12.935 -1.787 1.00 38.14 77 A 1 \nATOM 489 O O . MET A 1 97 ? -17.149 -13.155 -1.262 1.00 34.54 77 A 1 \nATOM 490 C CB . MET A 1 97 ? -15.312 -10.778 -2.833 1.00 42.46 77 A 1 \nATOM 491 C CG . MET A 1 97 ? -15.020 -9.291 -2.746 1.00 40.45 77 A 1 \nATOM 492 S SD . MET A 1 97 ? -16.221 -8.376 -1.812 1.00 46.79 77 A 1 \nATOM 493 C CE . MET A 1 97 ? -17.688 -8.712 -2.807 1.00 48.76 77 A 1 \nATOM 494 N N . ALA A 1 98 ? -15.437 -13.814 -2.573 1.00 37.36 78 A 1 \nATOM 495 C CA . ALA A 1 98 ? -16.038 -15.129 -2.918 1.00 37.86 78 A 1 \nATOM 496 C C . ALA A 1 98 ? -16.298 -16.001 -1.678 1.00 38.24 78 A 1 \nATOM 497 O O . ALA A 1 98 ? -17.309 -16.699 -1.595 1.00 46.27 78 A 1 \nATOM 498 C CB . ALA A 1 98 ? -15.174 -15.867 -3.952 1.00 34.00 78 A 1 \nATOM 499 N N . THR A 1 99 ? -15.383 -15.939 -0.717 1.00 38.41 79 A 1 \nATOM 500 C CA . THR A 1 99 ? -15.493 -16.623 0.581 1.00 35.60 79 A 1 \nATOM 501 C C . THR A 1 99 ? -16.701 -16.109 1.370 1.00 37.09 79 A 1 \nATOM 502 O O . THR A 1 99 ? -17.491 -16.899 1.881 1.00 38.98 79 A 1 \nATOM 503 C CB . THR A 1 99 ? -14.180 -16.395 1.391 1.00 35.34 79 A 1 \nATOM 504 O OG1 . THR A 1 99 ? -13.125 -17.002 0.702 1.00 32.02 79 A 1 \nATOM 505 C CG2 . THR A 1 99 ? -14.178 -16.975 2.801 1.00 34.51 79 A 1 \nATOM 506 N N . LEU A 1 100 ? -16.847 -14.789 1.478 1.00 39.34 80 A 1 \nATOM 507 C CA . LEU A 1 100 ? -17.940 -14.220 2.291 1.00 39.21 80 A 1 \nATOM 508 C C . LEU A 1 100 ? -19.348 -14.444 1.687 1.00 37.92 80 A 1 \nATOM 509 O O . LEU A 1 100 ? -20.309 -14.595 2.425 1.00 41.21 80 A 1 \nATOM 510 C CB . LEU A 1 100 ? -17.686 -12.737 2.567 1.00 36.66 80 A 1 \nATOM 511 C CG . LEU A 1 100 ? -16.626 -12.447 3.612 1.00 39.10 80 A 1 \nATOM 512 C CD1 . LEU A 1 100 ? -16.281 -10.943 3.560 1.00 40.88 80 A 1 \nATOM 513 C CD2 . LEU A 1 100 ? -17.033 -12.904 5.029 1.00 36.43 80 A 1 \nATOM 514 N N . VAL A 1 101 ? -19.449 -14.440 0.359 1.00 38.90 81 A 1 \nATOM 515 C CA . VAL A 1 101 ? -20.686 -14.754 -0.347 1.00 38.12 81 A 1 \nATOM 516 C C . VAL A 1 101 ? -21.040 -16.239 -0.116 1.00 40.12 81 A 1 \nATOM 517 O O . VAL A 1 101 ? -22.197 -16.545 0.257 1.00 38.24 81 A 1 \nATOM 518 C CB . VAL A 1 101 ? -20.582 -14.437 -1.856 1.00 36.31 81 A 1 \nATOM 519 C CG1 . VAL A 1 101 ? -21.743 -15.041 -2.669 1.00 37.42 81 A 1 \nATOM 520 C CG2 . VAL A 1 101 ? -20.546 -12.942 -2.082 1.00 37.28 81 A 1 \nATOM 521 N N . ALA A 1 102 ? -20.050 -17.135 -0.281 1.00 42.16 82 A 1 \nATOM 522 C CA . ALA A 1 102 ? -20.219 -18.593 0.036 1.00 45.93 82 A 1 \nATOM 523 C C . ALA A 1 102 ? -20.627 -18.776 1.504 1.00 44.87 82 A 1 \nATOM 524 O O . ALA A 1 102 ? -21.613 -19.423 1.786 1.00 48.88 82 A 1 \nATOM 525 C CB . ALA A 1 102 ? -18.969 -19.416 -0.288 1.00 45.61 82 A 1 \nATOM 526 N N . ALA A 1 103 ? -19.929 -18.099 2.404 1.00 45.61 83 A 1 \nATOM 527 C CA . ALA A 1 103 ? -20.245 -18.123 3.841 1.00 45.93 83 A 1 \nATOM 528 C C . ALA A 1 103 ? -21.633 -17.569 4.241 1.00 43.72 83 A 1 \nATOM 529 O O . ALA A 1 103 ? -22.126 -17.884 5.323 1.00 34.33 83 A 1 \nATOM 530 C CB . ALA A 1 103 ? -19.160 -17.362 4.613 1.00 45.60 83 A 1 \nATOM 531 N N . SER A 1 104 ? -22.232 -16.709 3.415 1.00 41.61 84 A 1 \nATOM 532 C CA . SER A 1 104 ? -23.539 -16.145 3.758 1.00 42.51 84 A 1 \nATOM 533 C C . SER A 1 104 ? -24.634 -17.210 3.693 1.00 42.05 84 A 1 \nATOM 534 O O . SER A 1 104 ? -25.647 -17.046 4.312 1.00 44.99 84 A 1 \nATOM 535 C CB . SER A 1 104 ? -23.913 -14.950 2.842 1.00 41.66 84 A 1 \nATOM 536 O OG . SER A 1 104 ? -24.066 -15.345 1.490 1.00 38.50 84 A 1 \nATOM 537 N N . GLY A 1 105 ? -24.438 -18.272 2.918 1.00 46.19 85 A 1 \nATOM 538 C CA . GLY A 1 105 ? -25.487 -19.218 2.651 1.00 51.23 85 A 1 \nATOM 539 C C . GLY A 1 105 ? -26.594 -18.646 1.778 1.00 56.67 85 A 1 \nATOM 540 O O . GLY A 1 105 ? -27.761 -18.932 1.996 1.00 59.68 85 A 1 \nATOM 541 N N . ALA A 1 106 ? -26.238 -17.830 0.796 1.00 57.89 86 A 1 \nATOM 542 C CA . ALA A 1 106 ? -27.205 -17.381 -0.189 1.00 59.86 86 A 1 \nATOM 543 C C . ALA A 1 106 ? -27.651 -18.527 -1.142 1.00 64.17 86 A 1 \nATOM 544 O O . ALA A 1 106 ? -26.858 -19.087 -1.924 1.00 63.99 86 A 1 \nATOM 545 C CB . ALA A 1 106 ? -26.641 -16.216 -0.974 1.00 58.91 86 A 1 \nATOM 546 N N . ALA A 1 107 ? -28.937 -18.843 -1.070 1.00 69.54 87 A 1 \nATOM 547 C CA . ALA A 1 107 ? -29.561 -19.859 -1.916 1.00 73.62 87 A 1 \nATOM 548 C C . ALA A 1 107 ? -29.805 -19.273 -3.307 1.00 69.82 87 A 1 \nATOM 549 O O . ALA A 1 107 ? -29.231 -19.736 -4.296 1.00 74.62 87 A 1 \nATOM 550 C CB . ALA A 1 107 ? -30.874 -20.330 -1.293 1.00 75.28 87 A 1 \nATOM 551 N N . THR A 1 108 ? -30.594 -18.208 -3.347 1.00 58.41 88 A 1 \nATOM 552 C CA . THR A 1 108 ? -30.938 -17.512 -4.599 1.00 51.05 88 A 1 \nATOM 553 C C . THR A 1 108 ? -29.865 -16.503 -5.027 1.00 45.35 88 A 1 \nATOM 554 O O . THR A 1 108 ? -29.187 -15.947 -4.170 1.00 44.69 88 A 1 \nATOM 555 C CB . THR A 1 108 ? -32.253 -16.730 -4.418 1.00 48.59 88 A 1 \nATOM 556 O OG1 . THR A 1 108 ? -32.081 -15.732 -3.416 1.00 39.93 88 A 1 \nATOM 557 C CG2 . THR A 1 108 ? -33.416 -17.658 -3.997 1.00 47.44 88 A 1 \nATOM 558 N N . PRO A 1 109 ? -29.746 -16.211 -6.338 1.00 43.31 89 A 1 \nATOM 559 C CA . PRO A 1 109 ? -28.880 -15.101 -6.811 1.00 42.53 89 A 1 \nATOM 560 C C . PRO A 1 109 ? -29.115 -13.724 -6.154 1.00 42.39 89 A 1 \nATOM 561 O O . PRO A 1 109 ? -28.158 -12.990 -5.865 1.00 47.55 89 A 1 \nATOM 562 C CB . PRO A 1 109 ? -29.191 -15.030 -8.314 1.00 42.12 89 A 1 \nATOM 563 C CG . PRO A 1 109 ? -29.558 -16.435 -8.664 1.00 39.37 89 A 1 \nATOM 564 C CD . PRO A 1 109 ? -30.324 -16.956 -7.472 1.00 40.97 89 A 1 \nATOM 565 N N . ALA A 1 110 ? -30.372 -13.377 -5.909 1.00 41.58 90 A 1 \nATOM 566 C CA . ALA A 1 110 ? -30.701 -12.117 -5.250 1.00 38.14 90 A 1 \nATOM 567 C C . ALA A 1 110 ? -30.015 -11.965 -3.903 1.00 38.96 90 A 1 \nATOM 568 O O . ALA A 1 110 ? -29.504 -10.898 -3.589 1.00 37.55 90 A 1 \nATOM 569 C CB . ALA A 1 110 ? -32.223 -11.957 -5.116 1.00 37.16 90 A 1 \nATOM 570 N N . ASP A 1 111 ? -30.031 -13.024 -3.103 1.00 43.29 91 A 1 \nATOM 571 C CA . ASP A 1 111 ? -29.380 -13.010 -1.771 1.00 45.26 91 A 1 \nATOM 572 C C . ASP A 1 111 ? -27.860 -12.937 -1.872 1.00 42.07 91 A 1 \nATOM 573 O O . ASP A 1 111 ? -27.194 -12.360 -1.013 1.00 43.66 91 A 1 \nATOM 574 C CB . ASP A 1 111 ? -29.757 -14.249 -0.958 1.00 45.89 91 A 1 \nATOM 575 C CG . ASP A 1 111 ? -31.235 -14.253 -0.545 1.00 50.22 91 A 1 \nATOM 576 O OD1 . ASP A 1 111 ? -31.762 -13.278 0.049 1.00 51.39 91 A 1 \nATOM 577 O OD2 . ASP A 1 111 ? -31.892 -15.244 -0.854 1.00 60.61 91 A 1 \nATOM 578 N N . ALA A 1 112 ? -27.324 -13.549 -2.918 1.00 40.95 92 A 1 \nATOM 579 C CA . ALA A 1 112 ? -25.897 -13.537 -3.177 1.00 40.07 92 A 1 \nATOM 580 C C . ALA A 1 112 ? -25.481 -12.111 -3.472 1.00 41.67 92 A 1 \nATOM 581 O O . ALA A 1 112 ? -24.442 -11.641 -2.944 1.00 37.73 92 A 1 \nATOM 582 C CB . ALA A 1 112 ? -25.526 -14.471 -4.342 1.00 37.50 92 A 1 \nATOM 583 N N . ILE A 1 113 ? -26.296 -11.440 -4.310 1.00 36.50 93 A 1 \nATOM 584 C CA . ILE A 1 113 ? -26.110 -10.016 -4.600 1.00 36.49 93 A 1 \nATOM 585 C C . ILE A 1 113 ? -26.119 -9.162 -3.329 1.00 36.15 93 A 1 \nATOM 586 O O . ILE A 1 113 ? -25.221 -8.318 -3.157 1.00 37.67 93 A 1 \nATOM 587 C CB . ILE A 1 113 ? -27.124 -9.511 -5.657 1.00 36.77 93 A 1 \nATOM 588 C CG1 . ILE A 1 113 ? -26.669 -10.017 -7.033 1.00 36.71 93 A 1 \nATOM 589 C CG2 . ILE A 1 113 ? -27.252 -7.980 -5.629 1.00 36.99 93 A 1 \nATOM 590 C CD1 . ILE A 1 113 ? -27.653 -9.797 -8.147 1.00 36.57 93 A 1 \nATOM 591 N N . ARG A 1 114 ? -27.088 -9.397 -2.441 1.00 34.99 94 A 1 \nATOM 592 C CA . ARG A 1 114 ? -27.137 -8.710 -1.141 1.00 36.30 94 A 1 \nATOM 593 C C . ARG A 1 114 ? -25.902 -9.015 -0.259 1.00 38.68 94 A 1 \nATOM 594 O O . ARG A 1 114 ? -25.365 -8.111 0.450 1.00 37.53 94 A 1 \nATOM 595 C CB . ARG A 1 114 ? -28.369 -9.086 -0.348 1.00 38.17 94 A 1 \nATOM 596 C CG . ARG A 1 114 ? -29.700 -8.662 -0.915 1.00 41.99 94 A 1 \nATOM 597 C CD . ARG A 1 114 ? -30.922 -9.265 -0.166 1.00 42.54 94 A 1 \nATOM 598 N NE . ARG A 1 114 ? -32.116 -8.727 -0.822 1.00 43.30 94 A 1 \nATOM 599 C CZ . ARG A 1 114 ? -32.957 -9.369 -1.632 1.00 44.51 94 A 1 \nATOM 600 N NH1 . ARG A 1 114 ? -32.893 -10.673 -1.832 1.00 46.09 94 A 1 \nATOM 601 N NH2 . ARG A 1 114 ? -33.928 -8.680 -2.200 1.00 49.97 94 A 1 \nATOM 602 N N . ALA A 1 115 ? -25.483 -10.290 -0.279 1.00 33.48 95 A 1 \nATOM 603 C CA . ALA A 1 115 ? -24.313 -10.716 0.464 1.00 32.13 95 A 1 \nATOM 604 C C . ALA A 1 115 ? -22.995 -10.106 -0.097 1.00 34.08 95 A 1 \nATOM 605 O O . ALA A 1 115 ? -22.091 -9.738 0.683 1.00 36.09 95 A 1 \nATOM 606 C CB . ALA A 1 115 ? -24.221 -12.232 0.487 1.00 30.44 95 A 1 \nATOM 607 N N . ALA A 1 116 ? -22.914 -10.001 -1.420 1.00 35.53 96 A 1 \nATOM 608 C CA . ALA A 1 116 ? -21.755 -9.387 -2.087 1.00 38.07 96 A 1 \nATOM 609 C C . ALA A 1 116 ? -21.624 -7.919 -1.744 1.00 39.60 96 A 1 \nATOM 610 O O . ALA A 1 116 ? -20.518 -7.457 -1.446 1.00 38.65 96 A 1 \nATOM 611 C CB . ALA A 1 116 ? -21.836 -9.535 -3.596 1.00 42.84 96 A 1 \nATOM 612 N N . VAL A 1 117 ? -22.740 -7.184 -1.728 1.00 38.34 97 A 1 \nATOM 613 C CA . VAL A 1 117 ? -22.661 -5.793 -1.277 1.00 38.37 97 A 1 \nATOM 614 C C . VAL A 1 117 ? -22.043 -5.697 0.117 1.00 40.03 97 A 1 \nATOM 615 O O . VAL A 1 117 ? -21.070 -4.970 0.313 1.00 36.90 97 A 1 \nATOM 616 C CB . VAL A 1 117 ? -24.032 -5.077 -1.273 1.00 39.16 97 A 1 \nATOM 617 C CG1 . VAL A 1 117 ? -23.945 -3.737 -0.556 1.00 42.04 97 A 1 \nATOM 618 C CG2 . VAL A 1 117 ? -24.502 -4.860 -2.705 1.00 40.64 97 A 1 \nATOM 619 N N . ASP A 1 118 ? -22.596 -6.445 1.078 1.00 43.93 98 A 1 \nATOM 620 C CA . ASP A 1 118 ? -22.101 -6.404 2.466 1.00 40.63 98 A 1 \nATOM 621 C C . ASP A 1 118 ? -20.626 -6.800 2.524 1.00 41.50 98 A 1 \nATOM 622 O O . ASP A 1 118 ? -19.826 -6.133 3.206 1.00 39.39 98 A 1 \nATOM 623 C CB . ASP A 1 118 ? -22.910 -7.296 3.400 1.00 38.41 98 A 1 \nATOM 624 C CG . ASP A 1 118 ? -24.306 -6.750 3.667 1.00 40.84 98 A 1 \nATOM 625 O OD1 . ASP A 1 118 ? -24.597 -5.578 3.359 1.00 45.24 98 A 1 \nATOM 626 O OD2 . ASP A 1 118 ? -25.148 -7.515 4.171 1.00 50.10 98 A 1 \nATOM 627 N N . ALA A 1 119 ? -20.283 -7.852 1.781 1.00 39.23 99 A 1 \nATOM 628 C CA . ALA A 1 119 ? -18.920 -8.378 1.758 1.00 37.65 99 A 1 \nATOM 629 C C . ALA A 1 119 ? -17.925 -7.324 1.329 1.00 37.13 99 A 1 \nATOM 630 O O . ALA A 1 119 ? -16.926 -7.158 1.999 1.00 41.13 99 A 1 \nATOM 631 C CB . ALA A 1 119 ? -18.839 -9.570 0.831 1.00 37.15 99 A 1 \nATOM 632 N N . TRP A 1 120 ? -18.229 -6.596 0.242 1.00 39.41 100 A 1 \nATOM 633 C CA . TRP A 1 120 ? -17.373 -5.504 -0.250 1.00 35.58 100 A 1 \nATOM 634 C C . TRP A 1 120 ? -17.173 -4.397 0.764 1.00 38.00 100 A 1 \nATOM 635 O O . TRP A 1 120 ? -16.089 -3.890 0.889 1.00 38.75 100 A 1 \nATOM 636 C CB . TRP A 1 120 ? -17.891 -4.923 -1.569 1.00 33.05 100 A 1 \nATOM 637 C CG . TRP A 1 120 ? -17.211 -3.618 -2.005 1.00 32.66 100 A 1 \nATOM 638 C CD1 . TRP A 1 120 ? -17.813 -2.438 -2.242 1.00 31.34 100 A 1 \nATOM 639 C CD2 . TRP A 1 120 ? -15.796 -3.390 -2.202 1.00 30.97 100 A 1 \nATOM 640 N NE1 . TRP A 1 120 ? -16.887 -1.482 -2.586 1.00 31.36 100 A 1 \nATOM 641 C CE2 . TRP A 1 120 ? -15.641 -2.044 -2.571 1.00 30.41 100 A 1 \nATOM 642 C CE3 . TRP A 1 120 ? -14.669 -4.193 -2.105 1.00 29.99 100 A 1 \nATOM 643 C CZ2 . TRP A 1 120 ? -14.405 -1.484 -2.856 1.00 31.62 100 A 1 \nATOM 644 C CZ3 . TRP A 1 120 ? -13.439 -3.641 -2.388 1.00 32.10 100 A 1 \nATOM 645 C CH2 . TRP A 1 120 ? -13.313 -2.300 -2.776 1.00 32.74 100 A 1 \nATOM 646 N N . LEU A 1 121 ? -18.218 -4.025 1.495 1.00 39.97 101 A 1 \nATOM 647 C CA . LEU A 1 121 ? -18.062 -3.003 2.522 1.00 37.77 101 A 1 \nATOM 648 C C . LEU A 1 121 ? -17.214 -3.518 3.692 1.00 37.23 101 A 1 \nATOM 649 O O . LEU A 1 121 ? -16.465 -2.752 4.301 1.00 40.54 101 A 1 \nATOM 650 C CB . LEU A 1 121 ? -19.426 -2.518 3.013 1.00 35.58 101 A 1 \nATOM 651 C CG . LEU A 1 121 ? -20.346 -1.936 1.961 1.00 36.94 101 A 1 \nATOM 652 C CD1 . LEU A 1 121 ? -21.698 -1.563 2.537 1.00 36.40 101 A 1 \nATOM 653 C CD2 . LEU A 1 121 ? -19.704 -0.755 1.256 1.00 40.81 101 A 1 \nATOM 654 N N . GLU A 1 122 ? -17.361 -4.803 4.011 1.00 39.67 102 A 1 \nATOM 655 C CA . GLU A 1 122 ? -16.544 -5.480 5.008 1.00 42.49 102 A 1 \nATOM 656 C C . GLU A 1 122 ? -15.064 -5.398 4.584 1.00 45.12 102 A 1 \nATOM 657 O O . GLU A 1 122 ? -14.258 -4.812 5.296 1.00 50.55 102 A 1 \nATOM 658 C CB . GLU A 1 122 ? -17.045 -6.924 5.185 1.00 46.50 102 A 1 \nATOM 659 C CG . GLU A 1 122 ? -16.251 -7.851 6.093 1.00 55.12 102 A 1 \nATOM 660 C CD . GLU A 1 122 ? -16.178 -7.394 7.517 1.00 64.09 102 A 1 \nATOM 661 O OE1 . GLU A 1 122 ? -16.964 -6.510 7.928 1.00 69.81 102 A 1 \nATOM 662 O OE2 . GLU A 1 122 ? -15.346 -7.972 8.259 1.00 72.56 102 A 1 \nATOM 663 N N . VAL A 1 123 ? -14.751 -5.889 3.386 1.00 40.63 103 A 1 \nATOM 664 C CA . VAL A 1 123 ? -13.371 -6.022 2.862 1.00 40.81 103 A 1 \nATOM 665 C C . VAL A 1 123 ? -12.679 -4.683 2.590 1.00 40.41 103 A 1 \nATOM 666 O O . VAL A 1 123 ? -11.496 -4.553 2.835 1.00 47.74 103 A 1 \nATOM 667 C CB . VAL A 1 123 ? -13.375 -6.863 1.514 1.00 37.61 103 A 1 \nATOM 668 C CG1 . VAL A 1 123 ? -11.993 -7.034 0.901 1.00 36.60 103 A 1 \nATOM 669 C CG2 . VAL A 1 123 ? -13.985 -8.248 1.734 1.00 36.79 103 A 1 \nATOM 670 N N . SER A 1 124 ? -13.410 -3.722 2.049 1.00 37.08 104 A 1 \nATOM 671 C CA . SER A 1 124 ? -12.984 -2.325 1.877 1.00 37.08 104 A 1 \nATOM 672 C C . SER A 1 124 ? -12.528 -1.671 3.148 1.00 38.15 104 A 1 \nATOM 673 O O . SER A 1 124 ? -11.760 -0.706 3.107 1.00 38.78 104 A 1 \nATOM 674 C CB . SER A 1 124 ? -14.203 -1.452 1.547 1.00 35.75 104 A 1 \nATOM 675 O OG . SER A 1 124 ? -14.594 -1.665 0.288 1.00 45.99 104 A 1 \nATOM 676 N N . GLY A 1 125 ? -13.182 -2.082 4.244 1.00 37.79 105 A 1 \nATOM 677 C CA . GLY A 1 125 ? -12.955 -1.537 5.567 1.00 37.71 105 A 1 \nATOM 678 C C . GLY A 1 125 ? -11.658 -2.021 6.185 1.00 39.02 105 A 1 \nATOM 679 O O . GLY A 1 125 ? -11.155 -1.378 7.082 1.00 45.87 105 A 1 \nATOM 680 N N . ASP A 1 126 ? -11.132 -3.162 5.729 1.00 39.36 106 A 1 \nATOM 681 C CA . ASP A 1 126 ? -9.803 -3.663 6.130 1.00 41.15 106 A 1 \nATOM 682 C C . ASP A 1 126 ? -8.749 -2.557 5.894 1.00 43.85 106 A 1 \nATOM 683 O O . ASP A 1 126 ? -8.615 -2.106 4.767 1.00 44.27 106 A 1 \nATOM 684 C CB . ASP A 1 126 ? -9.470 -4.904 5.312 1.00 42.69 106 A 1 \nATOM 685 C CG . ASP A 1 126 ? -8.107 -5.539 5.676 1.00 47.52 106 A 1 \nATOM 686 O OD1 . ASP A 1 126 ? -7.236 -4.883 6.290 1.00 48.94 106 A 1 \nATOM 687 O OD2 . ASP A 1 126 ? -7.875 -6.700 5.280 1.00 48.61 106 A 1 \nATOM 688 N N . PRO A 1 127 ? -8.027 -2.105 6.955 1.00 46.44 107 A 1 \nATOM 689 C CA . PRO A 1 127 ? -7.083 -0.968 6.871 1.00 44.19 107 A 1 \nATOM 690 C C . PRO A 1 127 ? -6.002 -1.046 5.775 1.00 42.80 107 A 1 \nATOM 691 O O . PRO A 1 127 ? -5.597 -0.029 5.212 1.00 40.03 107 A 1 \nATOM 692 C CB . PRO A 1 127 ? -6.398 -0.998 8.244 1.00 47.40 107 A 1 \nATOM 693 C CG . PRO A 1 127 ? -7.431 -1.549 9.156 1.00 48.20 107 A 1 \nATOM 694 C CD . PRO A 1 127 ? -8.171 -2.573 8.351 1.00 46.74 107 A 1 \nATOM 695 N N . GLU A 1 128 ? -5.547 -2.253 5.501 1.00 43.38 108 A 1 \nATOM 696 C CA . GLU A 1 128 ? -4.582 -2.521 4.435 1.00 42.27 108 A 1 \nATOM 697 C C . GLU A 1 128 ? -5.228 -2.308 3.064 1.00 38.17 108 A 1 \nATOM 698 O O . GLU A 1 128 ? -4.625 -1.719 2.185 1.00 37.77 108 A 1 \nATOM 699 C CB . GLU A 1 128 ? -4.010 -3.955 4.595 1.00 44.64 108 A 1 \nATOM 700 C CG . GLU A 1 128 ? -3.012 -4.349 3.529 1.00 53.21 108 A 1 \nATOM 701 C CD . GLU A 1 128 ? -2.344 -5.691 3.725 1.00 55.31 108 A 1 \nATOM 702 O OE1 . GLU A 1 128 ? -2.916 -6.701 3.229 1.00 51.87 108 A 1 \nATOM 703 O OE2 . GLU A 1 128 ? -1.243 -5.675 4.338 1.00 55.96 108 A 1 \nATOM 704 N N . VAL A 1 129 ? -6.459 -2.779 2.885 1.00 40.18 109 A 1 \nATOM 705 C CA . VAL A 1 129 ? -7.188 -2.582 1.612 1.00 37.46 109 A 1 \nATOM 706 C C . VAL A 1 129 ? -7.463 -1.097 1.430 1.00 35.64 109 A 1 \nATOM 707 O O . VAL A 1 129 ? -7.221 -0.534 0.338 1.00 32.78 109 A 1 \nATOM 708 C CB . VAL A 1 129 ? -8.457 -3.441 1.512 1.00 36.45 109 A 1 \nATOM 709 C CG1 . VAL A 1 129 ? -9.202 -3.183 0.208 1.00 35.36 109 A 1 \nATOM 710 C CG2 . VAL A 1 129 ? -8.081 -4.924 1.624 1.00 39.20 109 A 1 \nATOM 711 N N . ARG A 1 130 ? -7.894 -0.450 2.515 1.00 34.60 110 A 1 \nATOM 712 C CA . ARG A 1 130 ? -8.179 0.979 2.477 1.00 34.30 110 A 1 \nATOM 713 C C . ARG A 1 130 ? -6.957 1.753 2.029 1.00 32.12 110 A 1 \nATOM 714 O O . ARG A 1 130 ? -7.032 2.528 1.100 1.00 40.56 110 A 1 \nATOM 715 C CB . ARG A 1 130 ? -8.681 1.473 3.847 1.00 36.11 110 A 1 \nATOM 716 C CG . ARG A 1 130 ? -8.785 3.000 3.952 1.00 34.94 110 A 1 \nATOM 717 C CD . ARG A 1 130 ? -9.329 3.405 5.302 1.00 33.72 110 A 1 \nATOM 718 N NE . ARG A 1 130 ? -9.344 4.866 5.417 1.00 36.56 110 A 1 \nATOM 719 C CZ . ARG A 1 130 ? -8.311 5.639 5.774 1.00 36.11 110 A 1 \nATOM 720 N NH1 . ARG A 1 130 ? -7.122 5.128 6.074 1.00 37.20 110 A 1 \nATOM 721 N NH2 . ARG A 1 130 ? -8.465 6.950 5.817 1.00 34.89 110 A 1 \nATOM 722 N N . GLN A 1 131 ? -5.822 1.494 2.651 1.00 32.72 111 A 1 \nATOM 723 C CA . GLN A 1 131 ? -4.587 2.246 2.387 1.00 33.00 111 A 1 \nATOM 724 C C . GLN A 1 131 ? -4.013 2.024 0.998 1.00 35.70 111 A 1 \nATOM 725 O O . GLN A 1 131 ? -3.639 2.971 0.332 1.00 38.64 111 A 1 \nATOM 726 C CB . GLN A 1 131 ? -3.522 1.838 3.403 1.00 36.89 111 A 1 \nATOM 727 C CG . GLN A 1 131 ? -2.204 2.576 3.314 1.00 38.10 111 A 1 \nATOM 728 C CD . GLN A 1 131 ? -2.400 4.059 3.499 1.00 39.54 111 A 1 \nATOM 729 O OE1 . GLN A 1 131 ? -2.932 4.490 4.511 1.00 39.62 111 A 1 \nATOM 730 N NE2 . GLN A 1 131 ? -2.039 4.844 2.487 1.00 37.74 111 A 1 \nATOM 731 N N . LEU A 1 132 ? -3.931 0.766 0.574 1.00 35.53 112 A 1 \nATOM 732 C CA . LEU A 1 132 ? -3.230 0.390 -0.656 1.00 31.60 112 A 1 \nATOM 733 C C . LEU A 1 132 ? -4.084 0.550 -1.883 1.00 29.88 112 A 1 \nATOM 734 O O . LEU A 1 132 ? -3.585 0.993 -2.908 1.00 29.26 112 A 1 \nATOM 735 C CB . LEU A 1 132 ? -2.736 -1.072 -0.590 1.00 31.45 112 A 1 \nATOM 736 C CG . LEU A 1 132 ? -1.779 -1.374 0.558 1.00 32.27 112 A 1 \nATOM 737 C CD1 . LEU A 1 132 ? -1.512 -2.838 0.646 1.00 34.53 112 A 1 \nATOM 738 C CD2 . LEU A 1 132 ? -0.459 -0.629 0.449 1.00 36.21 112 A 1 \nATOM 739 N N . ILE A 1 133 ? -5.346 0.139 -1.789 1.00 33.04 113 A 1 \nATOM 740 C CA . ILE A 1 133 ? -6.245 0.066 -2.949 1.00 34.14 113 A 1 \nATOM 741 C C . ILE A 1 133 ? -7.063 1.361 -3.125 1.00 36.12 113 A 1 \nATOM 742 O O . ILE A 1 133 ? -7.093 1.930 -4.224 1.00 32.73 113 A 1 \nATOM 743 C CB . ILE A 1 133 ? -7.199 -1.136 -2.843 1.00 33.35 113 A 1 \nATOM 744 C CG1 . ILE A 1 133 ? -6.417 -2.449 -2.697 1.00 33.78 113 A 1 \nATOM 745 C CG2 . ILE A 1 133 ? -8.122 -1.181 -4.069 1.00 36.77 113 A 1 \nATOM 746 C CD1 . ILE A 1 133 ? -5.353 -2.697 -3.777 1.00 34.30 113 A 1 \nATOM 747 N N . LEU A 1 134 ? -7.698 1.821 -2.040 1.00 36.00 114 A 1 \nATOM 748 C CA . LEU A 1 134 ? -8.544 3.009 -2.096 1.00 39.51 114 A 1 \nATOM 749 C C . LEU A 1 134 ? -7.728 4.298 -2.154 1.00 41.85 114 A 1 \nATOM 750 O O . LEU A 1 134 ? -8.017 5.150 -2.997 1.00 42.07 114 A 1 \nATOM 751 C CB . LEU A 1 134 ? -9.570 3.034 -0.951 1.00 36.89 114 A 1 \nATOM 752 C CG . LEU A 1 134 ? -10.452 1.772 -0.868 1.00 39.11 114 A 1 \nATOM 753 C CD1 . LEU A 1 134 ? -11.455 1.781 0.304 1.00 41.01 114 A 1 \nATOM 754 C CD2 . LEU A 1 134 ? -11.198 1.558 -2.183 1.00 38.63 114 A 1 \nATOM 755 N N . LEU A 1 135 ? -6.695 4.414 -1.312 1.00 39.66 115 A 1 \nATOM 756 C CA . LEU A 1 135 ? -5.897 5.654 -1.214 1.00 38.58 115 A 1 \nATOM 757 C C . LEU A 1 135 ? -4.624 5.694 -2.083 1.00 38.92 115 A 1 \nATOM 758 O O . LEU A 1 135 ? -4.431 6.633 -2.839 1.00 40.68 115 A 1 \nATOM 759 C CB . LEU A 1 135 ? -5.517 5.941 0.239 1.00 38.73 115 A 1 \nATOM 760 C CG . LEU A 1 135 ? -6.581 6.008 1.349 1.00 42.56 115 A 1 \nATOM 761 C CD1 . LEU A 1 135 ? -5.977 6.415 2.679 1.00 42.10 115 A 1 \nATOM 762 C CD2 . LEU A 1 135 ? -7.734 6.946 0.975 1.00 44.00 115 A 1 \nATOM 763 N N . ASP A 1 136 ? -3.723 4.713 -1.975 1.00 40.60 116 A 1 \nATOM 764 C CA . ASP A 1 136 ? -2.442 4.810 -2.706 1.00 39.91 116 A 1 \nATOM 765 C C . ASP A 1 136 ? -2.540 4.465 -4.178 1.00 37.39 116 A 1 \nATOM 766 O O . ASP A 1 136 ? -1.878 5.108 -4.979 1.00 45.68 116 A 1 \nATOM 767 C CB . ASP A 1 136 ? -1.351 3.943 -2.059 1.00 39.88 116 A 1 \nATOM 768 C CG . ASP A 1 136 ? -0.936 4.433 -0.691 1.00 38.86 116 A 1 \nATOM 769 O OD1 . ASP A 1 136 ? -0.951 5.639 -0.440 1.00 43.16 116 A 1 \nATOM 770 O OD2 . ASP A 1 136 ? -0.590 3.595 0.151 1.00 41.32 116 A 1 \nATOM 771 N N . ALA A 1 137 ? -3.337 3.453 -4.530 1.00 32.68 117 A 1 \nATOM 772 C CA . ALA A 1 137 ? -3.320 2.924 -5.876 1.00 32.92 117 A 1 \nATOM 773 C C . ALA A 1 137 ? -3.687 3.929 -6.960 1.00 35.16 117 A 1 \nATOM 774 O O . ALA A 1 137 ? -2.934 4.066 -7.937 1.00 39.28 117 A 1 \nATOM 775 C CB . ALA A 1 137 ? -4.168 1.671 -5.974 1.00 33.95 117 A 1 \nATOM 776 N N . PRO A 1 138 ? -4.822 4.661 -6.785 1.00 39.42 118 A 1 \nATOM 777 C CA . PRO A 1 138 ? -5.180 5.685 -7.772 1.00 38.04 118 A 1 \nATOM 778 C C . PRO A 1 138 ? -4.099 6.753 -7.935 1.00 38.41 118 A 1 \nATOM 779 O O . PRO A 1 138 ? -3.785 7.147 -9.059 1.00 40.87 118 A 1 \nATOM 780 C CB . PRO A 1 138 ? -6.477 6.261 -7.219 1.00 36.25 118 A 1 \nATOM 781 C CG . PRO A 1 138 ? -6.935 5.295 -6.176 1.00 35.85 118 A 1 \nATOM 782 C CD . PRO A 1 138 ? -5.707 4.735 -5.610 1.00 36.84 118 A 1 \nATOM 783 N N . VAL A 1 139 ? -3.480 7.165 -6.832 1.00 40.86 119 A 1 \nATOM 784 C CA . VAL A 1 139 ? -2.385 8.127 -6.937 1.00 39.34 119 A 1 \nATOM 785 C C . VAL A 1 139 ? -1.173 7.561 -7.678 1.00 42.56 119 A 1 \nATOM 786 O O . VAL A 1 139 ? -0.633 8.240 -8.530 1.00 50.62 119 A 1 \nATOM 787 C CB . VAL A 1 139 ? -1.953 8.707 -5.580 1.00 37.26 119 A 1 \nATOM 788 C CG1 . VAL A 1 139 ? -0.747 9.649 -5.754 1.00 38.24 119 A 1 \nATOM 789 C CG2 . VAL A 1 139 ? -3.113 9.419 -4.901 1.00 33.11 119 A 1 \nATOM 790 N N . VAL A 1 140 ? -0.754 6.328 -7.394 1.00 48.00 120 A 1 \nATOM 791 C CA . VAL A 1 140 ? 0.573 5.808 -7.879 1.00 41.52 120 A 1 \nATOM 792 C C . VAL A 1 140 ? 0.493 5.175 -9.253 1.00 43.79 120 A 1 \nATOM 793 O O . VAL A 1 140 ? 1.416 5.318 -10.047 1.00 42.70 120 A 1 \nATOM 794 C CB . VAL A 1 140 ? 1.148 4.765 -6.884 1.00 42.64 120 A 1 \nATOM 795 C CG1 . VAL A 1 140 ? 2.426 4.098 -7.423 1.00 45.11 120 A 1 \nATOM 796 C CG2 . VAL A 1 140 ? 1.365 5.415 -5.507 1.00 38.08 120 A 1 \nATOM 797 N N . LEU A 1 141 ? -0.605 4.462 -9.519 1.00 47.89 121 A 1 \nATOM 798 C CA . LEU A 1 141 ? -0.841 3.830 -10.823 1.00 47.17 121 A 1 \nATOM 799 C C . LEU A 1 141 ? -1.365 4.843 -11.855 1.00 47.42 121 A 1 \nATOM 800 O O . LEU A 1 141 ? -1.242 4.623 -13.077 1.00 46.11 121 A 1 \nATOM 801 C CB . LEU A 1 141 ? -1.885 2.707 -10.695 1.00 46.59 121 A 1 \nATOM 802 C CG . LEU A 1 141 ? -1.426 1.309 -10.335 1.00 45.31 121 A 1 \nATOM 803 C CD1 . LEU A 1 141 ? -0.591 1.349 -9.116 1.00 45.94 121 A 1 \nATOM 804 C CD2 . LEU A 1 141 ? -2.651 0.423 -10.104 1.00 49.16 121 A 1 \nATOM 805 N N . GLY A 1 142 ? -2.031 5.889 -11.338 1.00 46.24 122 A 1 \nATOM 806 C CA . GLY A 1 142 ? -2.749 6.814 -12.144 1.00 45.73 122 A 1 \nATOM 807 C C . GLY A 1 142 ? -4.109 6.232 -12.427 1.00 45.21 122 A 1 \nATOM 808 O O . GLY A 1 142 ? -4.392 5.074 -12.075 1.00 45.66 122 A 1 \nATOM 809 N N . TRP A 1 143 ? -4.939 7.059 -13.065 1.00 45.16 123 A 1 \nATOM 810 C CA . TRP A 1 143 ? -6.326 6.741 -13.358 1.00 48.82 123 A 1 \nATOM 811 C C . TRP A 1 143 ? -6.481 5.534 -14.334 1.00 49.35 123 A 1 \nATOM 812 O O . TRP A 1 143 ? -7.247 4.598 -14.089 1.00 45.06 123 A 1 \nATOM 813 C CB . TRP A 1 143 ? -7.029 8.005 -13.928 1.00 50.07 123 A 1 \nATOM 814 C CG . TRP A 1 143 ? -8.490 7.762 -14.278 1.00 57.37 123 A 1 \nATOM 815 C CD1 . TRP A 1 143 ? -9.042 7.749 -15.533 1.00 56.73 123 A 1 \nATOM 816 C CD2 . TRP A 1 143 ? -9.540 7.388 -13.373 1.00 59.21 123 A 1 \nATOM 817 N NE1 . TRP A 1 143 ? -10.380 7.439 -15.454 1.00 61.77 123 A 1 \nATOM 818 C CE2 . TRP A 1 143 ? -10.715 7.231 -14.138 1.00 64.44 123 A 1 \nATOM 819 C CE3 . TRP A 1 143 ? -9.606 7.171 -11.991 1.00 66.21 123 A 1 \nATOM 820 C CZ2 . TRP A 1 143 ? -11.947 6.865 -13.561 1.00 68.48 123 A 1 \nATOM 821 C CZ3 . TRP A 1 143 ? -10.845 6.805 -11.418 1.00 67.93 123 A 1 \nATOM 822 C CH2 . TRP A 1 143 ? -11.984 6.648 -12.205 1.00 66.24 123 A 1 \nATOM 823 N N . ALA A 1 144 ? -5.767 5.593 -15.452 1.00 47.45 124 A 1 \nATOM 824 C CA . ALA A 1 144 ? -5.887 4.549 -16.454 1.00 42.36 124 A 1 \nATOM 825 C C . ALA A 1 144 ? -5.497 3.213 -15.808 1.00 41.88 124 A 1 \nATOM 826 O O . ALA A 1 144 ? -6.306 2.282 -15.800 1.00 44.86 124 A 1 \nATOM 827 C CB . ALA A 1 144 ? -5.013 4.866 -17.683 1.00 40.18 124 A 1 \nATOM 828 N N . GLY A 1 145 ? -4.294 3.161 -15.217 1.00 42.37 125 A 1 \nATOM 829 C CA . GLY A 1 145 ? -3.796 1.977 -14.497 1.00 45.09 125 A 1 \nATOM 830 C C . GLY A 1 145 ? -4.768 1.472 -13.430 1.00 45.60 125 A 1 \nATOM 831 O O . GLY A 1 145 ? -5.133 0.301 -13.421 1.00 46.41 125 A 1 \nATOM 832 N N . PHE A 1 146 ? -5.233 2.379 -12.577 1.00 44.92 126 A 1 \nATOM 833 C CA . PHE A 1 146 ? -6.136 1.997 -11.526 1.00 42.17 126 A 1 \nATOM 834 C C . PHE A 1 146 ? -7.453 1.437 -12.030 1.00 45.05 126 A 1 \nATOM 835 O O . PHE A 1 146 ? -7.976 0.487 -11.436 1.00 47.67 126 A 1 \nATOM 836 C CB . PHE A 1 146 ? -6.433 3.170 -10.598 1.00 44.03 126 A 1 \nATOM 837 C CG . PHE A 1 146 ? -7.371 2.805 -9.476 1.00 43.07 126 A 1 \nATOM 838 C CD1 . PHE A 1 146 ? -6.919 2.075 -8.381 1.00 39.97 126 A 1 \nATOM 839 C CD2 . PHE A 1 146 ? -8.715 3.114 -9.564 1.00 45.41 126 A 1 \nATOM 840 C CE1 . PHE A 1 146 ? -7.774 1.701 -7.380 1.00 42.85 126 A 1 \nATOM 841 C CE2 . PHE A 1 146 ? -9.586 2.750 -8.548 1.00 51.98 126 A 1 \nATOM 842 C CZ . PHE A 1 146 ? -9.105 2.035 -7.447 1.00 44.89 126 A 1 \nATOM 843 N N . ARG A 1 147 ? -8.036 2.056 -13.060 1.00 44.60 127 A 1 \nATOM 844 C CA . ARG A 1 147 ? -9.317 1.579 -13.597 1.00 47.28 127 A 1 \nATOM 845 C C . ARG A 1 147 ? -9.095 0.205 -14.244 1.00 43.44 127 A 1 \nATOM 846 O O . ARG A 1 147 ? -9.869 -0.717 -14.080 1.00 39.12 127 A 1 \nATOM 847 C CB . ARG A 1 147 ? -9.901 2.576 -14.600 1.00 54.23 127 A 1 \nATOM 848 C CG . ARG A 1 147 ? -11.417 2.635 -14.602 1.00 63.20 127 A 1 \nATOM 849 C CD . ARG A 1 147 ? -11.938 3.780 -15.488 1.00 71.15 127 A 1 \nATOM 850 N NE . ARG A 1 147 ? -13.337 3.643 -15.930 1.00 74.43 127 A 1 \nATOM 851 C CZ . ARG A 1 147 ? -13.762 2.817 -16.893 1.00 81.11 127 A 1 \nATOM 852 N NH1 . ARG A 1 147 ? -12.918 2.011 -17.530 1.00 81.11 127 A 1 \nATOM 853 N NH2 . ARG A 1 147 ? -15.055 2.783 -17.227 1.00 92.28 127 A 1 \nATOM 854 N N . ASP A 1 148 ? -7.984 0.064 -14.947 1.00 43.01 128 A 1 \nATOM 855 C CA . ASP A 1 148 ? -7.701 -1.185 -15.614 1.00 45.84 128 A 1 \nATOM 856 C C . ASP A 1 148 ? -7.631 -2.375 -14.618 1.00 50.16 128 A 1 \nATOM 857 O O . ASP A 1 148 ? -8.181 -3.446 -14.875 1.00 49.81 128 A 1 \nATOM 858 C CB . ASP A 1 148 ? -6.413 -1.066 -16.405 1.00 46.79 128 A 1 \nATOM 859 C CG . ASP A 1 148 ? -6.306 -2.113 -17.401 1.00 46.58 128 A 1 \nATOM 860 O OD1 . ASP A 1 148 ? -7.266 -2.283 -18.167 1.00 59.71 128 A 1 \nATOM 861 O OD2 . ASP A 1 148 ? -5.256 -2.746 -17.457 1.00 48.17 128 A 1 \nATOM 862 N N . VAL A 1 149 ? -6.970 -2.160 -13.482 1.00 44.39 129 A 1 \nATOM 863 C CA . VAL A 1 149 ? -6.833 -3.178 -12.455 1.00 47.11 129 A 1 \nATOM 864 C C . VAL A 1 149 ? -8.182 -3.487 -11.815 1.00 45.72 129 A 1 \nATOM 865 O O . VAL A 1 149 ? -8.613 -4.649 -11.742 1.00 50.39 129 A 1 \nATOM 866 C CB . VAL A 1 149 ? -5.762 -2.766 -11.392 1.00 48.34 129 A 1 \nATOM 867 C CG1 . VAL A 1 149 ? -5.890 -3.565 -10.094 1.00 53.11 129 A 1 \nATOM 868 C CG2 . VAL A 1 149 ? -4.398 -2.840 -12.029 1.00 48.94 129 A 1 \nATOM 869 N N . ALA A 1 150 ? -8.837 -2.446 -11.346 1.00 48.20 130 A 1 \nATOM 870 C CA . ALA A 1 150 ? -10.150 -2.549 -10.732 1.00 49.97 130 A 1 \nATOM 871 C C . ALA A 1 150 ? -11.182 -3.269 -11.606 1.00 54.18 130 A 1 \nATOM 872 O O . ALA A 1 150 ? -11.981 -4.048 -11.073 1.00 56.25 130 A 1 \nATOM 873 C CB . ALA A 1 150 ? -10.646 -1.164 -10.364 1.00 52.61 130 A 1 \nATOM 874 N N . GLN A 1 151 ? -11.181 -3.000 -12.916 1.00 51.75 131 A 1 \nATOM 875 C CA . GLN A 1 151 ? -12.038 -3.741 -13.867 1.00 56.02 131 A 1 \nATOM 876 C C . GLN A 1 151 ? -11.671 -5.229 -13.995 1.00 51.60 131 A 1 \nATOM 877 O O . GLN A 1 151 ? -12.535 -6.108 -14.075 1.00 43.96 131 A 1 \nATOM 878 C CB . GLN A 1 151 ? -11.874 -3.225 -15.315 1.00 59.43 131 A 1 \nATOM 879 C CG . GLN A 1 151 ? -12.402 -1.856 -15.705 1.00 63.87 131 A 1 \nATOM 880 C CD . GLN A 1 151 ? -13.892 -1.686 -15.495 1.00 65.98 131 A 1 \nATOM 881 O OE1 . GLN A 1 151 ? -14.304 -1.021 -14.548 1.00 64.24 131 A 1 \nATOM 882 N NE2 . GLN A 1 151 ? -14.693 -2.325 -16.342 1.00 66.63 131 A 1 \nATOM 883 N N . ARG A 1 152 ? -10.367 -5.483 -14.092 1.00 50.43 132 A 1 \nATOM 884 C CA . ARG A 1 152 ? -9.831 -6.825 -14.330 1.00 47.88 132 A 1 \nATOM 885 C C . ARG A 1 152 ? -10.220 -7.777 -13.236 1.00 41.30 132 A 1 \nATOM 886 O O . ARG A 1 152 ? -10.445 -8.946 -13.480 1.00 38.97 132 A 1 \nATOM 887 C CB . ARG A 1 152 ? -8.285 -6.745 -14.487 1.00 49.58 132 A 1 \nATOM 888 C CG . ARG A 1 152 ? -7.482 -8.019 -14.432 1.00 56.68 132 A 1 \nATOM 889 C CD . ARG A 1 152 ? -6.037 -7.652 -14.650 1.00 62.78 132 A 1 \nATOM 890 N NE . ARG A 1 152 ? -5.181 -8.518 -13.874 1.00 58.20 132 A 1 \nATOM 891 C CZ . ARG A 1 152 ? -3.940 -8.229 -13.507 1.00 65.37 132 A 1 \nATOM 892 N NH1 . ARG A 1 152 ? -3.348 -7.064 -13.815 1.00 64.12 132 A 1 \nATOM 893 N NH2 . ARG A 1 152 ? -3.261 -9.129 -12.793 1.00 67.69 132 A 1 \nATOM 894 N N . TYR A 1 153 ? -10.262 -7.281 -12.012 1.00 41.84 133 A 1 \nATOM 895 C CA . TYR A 1 153 ? -10.584 -8.125 -10.874 1.00 42.69 133 A 1 \nATOM 896 C C . TYR A 1 153 ? -12.074 -8.117 -10.543 1.00 42.76 133 A 1 \nATOM 897 O O . TYR A 1 153 ? -12.531 -9.078 -9.978 1.00 44.11 133 A 1 \nATOM 898 C CB . TYR A 1 153 ? -9.731 -7.727 -9.664 1.00 43.91 133 A 1 \nATOM 899 C CG . TYR A 1 153 ? -8.289 -8.203 -9.785 1.00 47.53 133 A 1 \nATOM 900 C CD1 . TYR A 1 153 ? -7.960 -9.537 -9.580 1.00 43.47 133 A 1 \nATOM 901 C CD2 . TYR A 1 153 ? -7.263 -7.315 -10.122 1.00 49.22 133 A 1 \nATOM 902 C CE1 . TYR A 1 153 ? -6.649 -9.979 -9.666 1.00 48.13 133 A 1 \nATOM 903 C CE2 . TYR A 1 153 ? -5.954 -7.750 -10.239 1.00 48.85 133 A 1 \nATOM 904 C CZ . TYR A 1 153 ? -5.641 -9.071 -9.984 1.00 49.02 133 A 1 \nATOM 905 O OH . TYR A 1 153 ? -4.338 -9.487 -10.090 1.00 43.51 133 A 1 \nATOM 906 N N . SER A 1 154 ? -12.805 -7.048 -10.882 1.00 42.82 134 A 1 \nATOM 907 C CA . SER A 1 154 ? -14.209 -6.878 -10.477 1.00 48.99 134 A 1 \nATOM 908 C C . SER A 1 154 ? -15.242 -7.292 -11.513 1.00 46.84 134 A 1 \nATOM 909 O O . SER A 1 154 ? -16.302 -7.823 -11.157 1.00 52.62 134 A 1 \nATOM 910 C CB . SER A 1 154 ? -14.515 -5.418 -10.127 1.00 51.16 134 A 1 \nATOM 911 O OG . SER A 1 154 ? -13.613 -4.962 -9.167 1.00 57.29 134 A 1 \nATOM 912 N N . LEU A 1 155 ? -14.957 -7.007 -12.782 1.00 46.29 135 A 1 \nATOM 913 C CA . LEU A 1 155 ? -15.973 -7.129 -13.818 1.00 43.98 135 A 1 \nATOM 914 C C . LEU A 1 155 ? -16.626 -8.528 -13.853 1.00 46.94 135 A 1 \nATOM 915 O O . LEU A 1 155 ? -17.863 -8.665 -13.816 1.00 49.47 135 A 1 \nATOM 916 C CB . LEU A 1 155 ? -15.418 -6.739 -15.181 1.00 40.44 135 A 1 \nATOM 917 C CG . LEU A 1 155 ? -16.485 -6.499 -16.260 1.00 43.30 135 A 1 \nATOM 918 C CD1 . LEU A 1 155 ? -17.593 -5.505 -15.824 1.00 43.09 135 A 1 \nATOM 919 C CD2 . LEU A 1 155 ? -15.805 -6.012 -17.531 1.00 42.12 135 A 1 \nATOM 920 N N . GLY A 1 156 ? -15.783 -9.557 -13.874 1.00 43.05 136 A 1 \nATOM 921 C CA . GLY A 1 156 ? -16.230 -10.947 -14.012 1.00 43.38 136 A 1 \nATOM 922 C C . GLY A 1 156 ? -17.188 -11.418 -12.944 1.00 42.74 136 A 1 \nATOM 923 O O . GLY A 1 156 ? -18.203 -11.992 -13.258 1.00 48.94 136 A 1 \nATOM 924 N N . MET A 1 157 ? -16.852 -11.190 -11.681 1.00 46.26 137 A 1 \nATOM 925 C CA . MET A 1 157 ? -17.752 -11.493 -10.576 1.00 48.71 137 A 1 \nATOM 926 C C . MET A 1 157 ? -19.068 -10.690 -10.705 1.00 45.91 137 A 1 \nATOM 927 O O . MET A 1 157 ? -20.161 -11.231 -10.541 1.00 39.91 137 A 1 \nATOM 928 C CB . MET A 1 157 ? -17.099 -11.184 -9.232 1.00 48.95 137 A 1 \nATOM 929 C CG . MET A 1 157 ? -18.025 -11.409 -8.052 1.00 56.35 137 A 1 \nATOM 930 S SD . MET A 1 157 ? -17.201 -11.319 -6.467 1.00 62.90 137 A 1 \nATOM 931 C CE . MET A 1 157 ? -18.194 -12.394 -5.438 1.00 64.76 137 A 1 \nATOM 932 N N . THR A 1 158 ? -18.941 -9.398 -10.988 1.00 41.55 138 A 1 \nATOM 933 C CA . THR A 1 158 ? -20.094 -8.553 -11.141 1.00 43.96 138 A 1 \nATOM 934 C C . THR A 1 158 ? -21.076 -9.002 -12.245 1.00 44.09 138 A 1 \nATOM 935 O O . THR A 1 158 ? -22.308 -9.106 -11.998 1.00 40.00 138 A 1 \nATOM 936 C CB . THR A 1 158 ? -19.651 -7.120 -11.343 1.00 44.31 138 A 1 \nATOM 937 O OG1 . THR A 1 158 ? -18.747 -6.773 -10.277 1.00 45.88 138 A 1 \nATOM 938 C CG2 . THR A 1 158 ? -20.846 -6.194 -11.310 1.00 41.86 138 A 1 \nATOM 939 N N . GLU A 1 159 ? -20.534 -9.292 -13.425 1.00 43.66 139 A 1 \nATOM 940 C CA . GLU A 1 159 ? -21.325 -9.845 -14.531 1.00 38.85 139 A 1 \nATOM 941 C C . GLU A 1 159 ? -21.965 -11.194 -14.204 1.00 38.81 139 A 1 \nATOM 942 O O . GLU A 1 159 ? -23.102 -11.452 -14.611 1.00 46.68 139 A 1 \nATOM 943 C CB . GLU A 1 159 ? -20.479 -9.967 -15.793 1.00 37.54 139 A 1 \nATOM 944 C CG . GLU A 1 159 ? -20.077 -8.612 -16.351 1.00 41.17 139 A 1 \nATOM 945 C CD . GLU A 1 159 ? -19.371 -8.676 -17.685 1.00 39.93 139 A 1 \nATOM 946 O OE1 . GLU A 1 159 ? -18.692 -9.671 -17.912 1.00 41.07 139 A 1 \nATOM 947 O OE2 . GLU A 1 159 ? -19.498 -7.740 -18.500 1.00 39.40 139 A 1 \nATOM 948 N N . GLN A 1 160 ? -21.265 -12.036 -13.456 1.00 37.92 140 A 1 \nATOM 949 C CA . GLN A 1 160 ? -21.760 -13.354 -13.111 1.00 39.91 140 A 1 \nATOM 950 C C . GLN A 1 160 ? -22.991 -13.254 -12.225 1.00 40.16 140 A 1 \nATOM 951 O O . GLN A 1 160 ? -24.007 -13.893 -12.502 1.00 47.78 140 A 1 \nATOM 952 C CB . GLN A 1 160 ? -20.676 -14.232 -12.466 1.00 40.86 140 A 1 \nATOM 953 C CG . GLN A 1 160 ? -21.171 -15.656 -12.187 1.00 47.75 140 A 1 \nATOM 954 C CD . GLN A 1 160 ? -20.141 -16.617 -11.557 1.00 58.09 140 A 1 \nATOM 955 O OE1 . GLN A 1 160 ? -18.931 -16.377 -11.555 1.00 58.33 140 A 1 \nATOM 956 N NE2 . GLN A 1 160 ? -20.641 -17.741 -11.033 1.00 69.87 140 A 1 \nATOM 957 N N . LEU A 1 161 ? -22.894 -12.450 -11.164 1.00 44.21 141 A 1 \nATOM 958 C CA . LEU A 1 161 ? -23.993 -12.255 -10.211 1.00 42.29 141 A 1 \nATOM 959 C C . LEU A 1 161 ? -25.258 -11.742 -10.887 1.00 41.58 141 A 1 \nATOM 960 O O . LEU A 1 161 ? -26.361 -12.191 -10.570 1.00 45.07 141 A 1 \nATOM 961 C CB . LEU A 1 161 ? -23.596 -11.288 -9.100 1.00 41.69 141 A 1 \nATOM 962 C CG . LEU A 1 161 ? -22.594 -11.866 -8.094 1.00 44.14 141 A 1 \nATOM 963 C CD1 . LEU A 1 161 ? -22.031 -10.772 -7.192 1.00 46.61 141 A 1 \nATOM 964 C CD2 . LEU A 1 161 ? -23.210 -12.974 -7.243 1.00 44.51 141 A 1 \nATOM 965 N N . ILE A 1 162 ? -25.076 -10.795 -11.803 1.00 42.62 142 A 1 \nATOM 966 C CA . ILE A 1 162 ? -26.152 -10.217 -12.594 1.00 41.13 142 A 1 \nATOM 967 C C . ILE A 1 162 ? -26.774 -11.282 -13.476 1.00 42.53 142 A 1 \nATOM 968 O O . ILE A 1 162 ? -28.015 -11.423 -13.499 1.00 38.21 142 A 1 \nATOM 969 C CB . ILE A 1 162 ? -25.658 -9.035 -13.458 1.00 42.13 142 A 1 \nATOM 970 C CG1 . ILE A 1 162 ? -25.382 -7.827 -12.563 1.00 44.75 142 A 1 \nATOM 971 C CG2 . ILE A 1 162 ? -26.667 -8.664 -14.551 1.00 39.63 142 A 1 \nATOM 972 C CD1 . ILE A 1 162 ? -24.490 -6.807 -13.216 1.00 43.43 142 A 1 \nATOM 973 N N . THR A 1 163 ? -25.925 -12.026 -14.185 1.00 44.24 143 A 1 \nATOM 974 C CA . THR A 1 163 ? -26.394 -12.988 -15.180 1.00 42.49 143 A 1 \nATOM 975 C C . THR A 1 163 ? -27.252 -14.049 -14.511 1.00 46.10 143 A 1 \nATOM 976 O O . THR A 1 163 ? -28.299 -14.415 -15.046 1.00 46.93 143 A 1 \nATOM 977 C CB . THR A 1 163 ? -25.207 -13.627 -15.932 1.00 47.88 143 A 1 \nATOM 978 O OG1 . THR A 1 163 ? -24.539 -12.622 -16.673 1.00 49.01 143 A 1 \nATOM 979 C CG2 . THR A 1 163 ? -25.671 -14.714 -16.924 1.00 52.52 143 A 1 \nATOM 980 N N . GLU A 1 164 ? -26.829 -14.502 -13.327 1.00 46.11 144 A 1 \nATOM 981 C CA . GLU A 1 164 ? -27.566 -15.523 -12.610 1.00 47.01 144 A 1 \nATOM 982 C C . GLU A 1 164 ? -28.908 -15.022 -12.085 1.00 47.15 144 A 1 \nATOM 983 O O . GLU A 1 164 ? -29.890 -15.753 -12.127 1.00 51.74 144 A 1 \nATOM 984 C CB . GLU A 1 164 ? -26.713 -16.114 -11.495 1.00 46.46 144 A 1 \nATOM 985 C CG . GLU A 1 164 ? -25.725 -17.133 -12.052 1.00 57.47 144 A 1 \nATOM 986 C CD . GLU A 1 164 ? -24.516 -17.364 -11.162 1.00 66.51 144 A 1 \nATOM 987 O OE1 . GLU A 1 164 ? -24.592 -17.091 -9.931 1.00 75.40 144 A 1 \nATOM 988 O OE2 . GLU A 1 164 ? -23.479 -17.826 -11.709 1.00 69.64 144 A 1 \nATOM 989 N N . ALA A 1 165 ? -28.947 -13.778 -11.622 1.00 48.34 145 A 1 \nATOM 990 C CA . ALA A 1 165 ? -30.188 -13.148 -11.172 1.00 46.18 145 A 1 \nATOM 991 C C . ALA A 1 165 ? -31.181 -13.005 -12.324 1.00 42.13 145 A 1 \nATOM 992 O O . ALA A 1 165 ? -32.371 -13.207 -12.147 1.00 45.14 145 A 1 \nATOM 993 C CB . ALA A 1 165 ? -29.895 -11.785 -10.522 1.00 42.28 145 A 1 \nATOM 994 N N . ILE A 1 166 ? -30.675 -12.685 -13.505 1.00 44.57 146 A 1 \nATOM 995 C CA . ILE A 1 166 ? -31.514 -12.636 -14.701 1.00 44.65 146 A 1 \nATOM 996 C C . ILE A 1 166 ? -32.028 -14.042 -15.036 1.00 47.79 146 A 1 \nATOM 997 O O . ILE A 1 166 ? -33.229 -14.212 -15.249 1.00 54.35 146 A 1 \nATOM 998 C CB . ILE A 1 166 ? -30.789 -12.013 -15.920 1.00 42.17 146 A 1 \nATOM 999 C CG1 . ILE A 1 166 ? -30.374 -10.578 -15.632 1.00 39.84 146 A 1 \nATOM 1000 C CG2 . ILE A 1 166 ? -31.693 -12.032 -17.148 1.00 37.73 146 A 1 \nATOM 1001 C CD1 . ILE A 1 166 ? -29.430 -10.010 -16.667 1.00 38.55 146 A 1 \nATOM 1002 N N . ARG A 1 167 ? -31.148 -15.043 -15.038 1.00 47.81 147 A 1 \nATOM 1003 C CA . ARG A 1 167 ? -31.566 -16.438 -15.342 1.00 49.71 147 A 1 \nATOM 1004 C C . ARG A 1 167 ? -32.629 -16.969 -14.382 1.00 45.87 147 A 1 \nATOM 1005 O O . ARG A 1 167 ? -33.539 -17.649 -14.789 1.00 48.47 147 A 1 \nATOM 1006 C CB . ARG A 1 167 ? -30.357 -17.388 -15.365 1.00 50.85 147 A 1 \nATOM 1007 C CG . ARG A 1 167 ? -29.505 -17.283 -16.635 1.00 56.36 147 A 1 \nATOM 1008 C CD . ARG A 1 167 ? -28.103 -17.843 -16.422 1.00 70.56 147 A 1 \nATOM 1009 N NE . ARG A 1 167 ? -27.989 -19.253 -16.791 1.00 76.13 147 A 1 \nATOM 1010 C CZ . ARG A 1 167 ? -27.537 -19.713 -17.962 1.00 89.48 147 A 1 \nATOM 1011 N NH1 . ARG A 1 167 ? -27.118 -18.890 -18.937 1.00 92.94 147 A 1 \nATOM 1012 N NH2 . ARG A 1 167 ? -27.485 -21.034 -18.167 1.00 91.49 147 A 1 \nATOM 1013 N N . ALA A 1 168 ? -32.502 -16.646 -13.106 1.00 48.38 148 A 1 \nATOM 1014 C CA . ALA A 1 168 ? -33.484 -17.047 -12.082 1.00 48.49 148 A 1 \nATOM 1015 C C . ALA A 1 168 ? -34.778 -16.244 -12.141 1.00 45.60 148 A 1 \nATOM 1016 O O . ALA A 1 168 ? -35.690 -16.500 -11.372 1.00 50.26 148 A 1 \nATOM 1017 C CB . ALA A 1 168 ? -32.881 -16.928 -10.683 1.00 46.52 148 A 1 \nATOM 1018 N N . GLY A 1 169 ? -34.857 -15.263 -13.020 1.00 42.36 149 A 1 \nATOM 1019 C CA . GLY A 1 169 ? -35.991 -14.352 -13.036 1.00 45.66 149 A 1 \nATOM 1020 C C . GLY A 1 169 ? -36.068 -13.353 -11.899 1.00 46.36 149 A 1 \nATOM 1021 O O . GLY A 1 169 ? -37.085 -12.707 -11.790 1.00 56.52 149 A 1 \nATOM 1022 N N . GLN A 1 170 ? -35.004 -13.170 -11.103 1.00 48.49 150 A 1 \nATOM 1023 C CA . GLN A 1 170 ? -34.988 -12.167 -10.010 1.00 44.20 150 A 1 \nATOM 1024 C C . GLN A 1 170 ? -34.521 -10.757 -10.419 1.00 44.40 150 A 1 \nATOM 1025 O O . GLN A 1 170 ? -34.558 -9.790 -9.607 1.00 43.75 150 A 1 \nATOM 1026 C CB . GLN A 1 170 ? -34.152 -12.669 -8.862 1.00 44.28 150 A 1 \nATOM 1027 C CG . GLN A 1 170 ? -34.690 -13.974 -8.294 1.00 42.98 150 A 1 \nATOM 1028 C CD . GLN A 1 170 ? -33.886 -14.442 -7.124 1.00 40.94 150 A 1 \nATOM 1029 O OE1 . GLN A 1 170 ? -32.697 -14.647 -7.241 1.00 47.44 150 A 1 \nATOM 1030 N NE2 . GLN A 1 170 ? -34.516 -14.607 -6.003 1.00 42.76 150 A 1 \nATOM 1031 N N . LEU A 1 171 ? -34.137 -10.618 -11.679 1.00 39.57 151 A 1 \nATOM 1032 C CA . LEU A 1 171 ? -33.703 -9.366 -12.208 1.00 39.84 151 A 1 \nATOM 1033 C C . LEU A 1 171 ? -34.109 -9.306 -13.653 1.00 37.66 151 A 1 \nATOM 1034 O O . LEU A 1 171 ? -33.869 -10.238 -14.389 1.00 44.38 151 A 1 \nATOM 1035 C CB . LEU A 1 171 ? -32.169 -9.295 -12.080 1.00 44.92 151 A 1 \nATOM 1036 C CG . LEU A 1 171 ? -31.437 -7.983 -12.382 1.00 44.83 151 A 1 \nATOM 1037 C CD1 . LEU A 1 171 ? -31.994 -6.895 -11.499 1.00 43.83 151 A 1 \nATOM 1038 C CD2 . LEU A 1 171 ? -29.921 -8.138 -12.145 1.00 44.49 151 A 1 \nATOM 1039 N N . ALA A 1 172 ? -34.693 -8.201 -14.072 1.00 36.48 152 A 1 \nATOM 1040 C CA . ALA A 1 172 ? -35.157 -8.029 -15.423 1.00 36.30 152 A 1 \nATOM 1041 C C . ALA A 1 172 ? -34.020 -8.190 -16.424 1.00 39.69 152 A 1 \nATOM 1042 O O . ALA A 1 172 ? -32.905 -7.740 -16.185 1.00 49.14 152 A 1 \nATOM 1043 C CB . ALA A 1 172 ? -35.780 -6.633 -15.565 1.00 33.28 152 A 1 \nATOM 1044 N N . ARG A 1 173 ? -34.312 -8.849 -17.528 1.00 42.49 153 A 1 \nATOM 1045 C CA . ARG A 1 173 ? -33.410 -8.927 -18.657 1.00 48.34 153 A 1 \nATOM 1046 C C . ARG A 1 173 ? -33.044 -7.523 -19.106 1.00 45.76 153 A 1 \nATOM 1047 O O . ARG A 1 173 ? -33.920 -6.717 -19.363 1.00 48.09 153 A 1 \nATOM 1048 C CB . ARG A 1 173 ? -34.059 -9.659 -19.834 1.00 51.02 153 A 1 \nATOM 1049 C CG . ARG A 1 173 ? -33.465 -11.002 -20.096 1.00 60.64 153 A 1 \nATOM 1050 C CD . ARG A 1 173 ? -34.430 -11.851 -20.888 1.00 69.10 153 A 1 \nATOM 1051 N NE . ARG A 1 173 ? -35.546 -12.320 -20.048 1.00 67.53 153 A 1 \nATOM 1052 C CZ . ARG A 1 173 ? -36.849 -12.083 -20.249 1.00 65.77 153 A 1 \nATOM 1053 N NH1 . ARG A 1 173 ? -37.283 -11.366 -21.290 1.00 64.67 153 A 1 \nATOM 1054 N NH2 . ARG A 1 173 ? -37.740 -12.579 -19.384 1.00 61.40 153 A 1 \nATOM 1055 N N . GLN A 1 174 ? -31.749 -7.252 -19.199 1.00 43.75 154 A 1 \nATOM 1056 C CA . GLN A 1 174 ? -31.231 -5.944 -19.536 1.00 42.33 154 A 1 \nATOM 1057 C C . GLN A 1 174 ? -29.764 -6.123 -19.855 1.00 38.63 154 A 1 \nATOM 1058 O O . GLN A 1 174 ? -29.181 -7.137 -19.480 1.00 38.86 154 A 1 \nATOM 1059 C CB . GLN A 1 174 ? -31.398 -4.973 -18.333 1.00 48.60 154 A 1 \nATOM 1060 C CG . GLN A 1 174 ? -30.571 -5.358 -17.081 1.00 47.05 154 A 1 \nATOM 1061 C CD . GLN A 1 174 ? -30.956 -4.564 -15.856 1.00 46.58 154 A 1 \nATOM 1062 O OE1 . GLN A 1 174 ? -30.617 -3.376 -15.743 1.00 41.56 154 A 1 \nATOM 1063 N NE2 . GLN A 1 174 ? -31.699 -5.214 -14.929 1.00 47.76 154 A 1 \nATOM 1064 N N . PRO A 1 175 ? -29.142 -5.144 -20.521 1.00 41.42 155 A 1 \nATOM 1065 C CA . PRO A 1 175 ? -27.737 -5.324 -20.908 1.00 45.56 155 A 1 \nATOM 1066 C C . PRO A 1 175 ? -26.842 -5.535 -19.673 1.00 42.96 155 A 1 \nATOM 1067 O O . PRO A 1 175 ? -26.815 -4.693 -18.769 1.00 46.06 155 A 1 \nATOM 1068 C CB . PRO A 1 175 ? -27.408 -4.014 -21.642 1.00 45.75 155 A 1 \nATOM 1069 C CG . PRO A 1 175 ? -28.737 -3.501 -22.124 1.00 43.97 155 A 1 \nATOM 1070 C CD . PRO A 1 175 ? -29.677 -3.858 -21.012 1.00 46.95 155 A 1 \nATOM 1071 N N . VAL A 1 176 ? -26.121 -6.646 -19.671 1.00 41.69 156 A 1 \nATOM 1072 C CA . VAL A 1 176 ? -25.319 -7.104 -18.538 1.00 46.87 156 A 1 \nATOM 1073 C C . VAL A 1 176 ? -24.098 -6.212 -18.261 1.00 49.96 156 A 1 \nATOM 1074 O O . VAL A 1 176 ? -23.892 -5.804 -17.106 1.00 46.81 156 A 1 \nATOM 1075 C CB . VAL A 1 176 ? -24.866 -8.569 -18.745 1.00 46.82 156 A 1 \nATOM 1076 C CG1 . VAL A 1 176 ? -23.849 -9.015 -17.697 1.00 48.93 156 A 1 \nATOM 1077 C CG2 . VAL A 1 176 ? -26.097 -9.483 -18.728 1.00 49.87 156 A 1 \nATOM 1078 N N . ARG A 1 177 ? -23.318 -5.899 -19.306 1.00 49.19 157 A 1 \nATOM 1079 C CA . ARG A 1 177 ? -22.064 -5.164 -19.130 1.00 50.86 157 A 1 \nATOM 1080 C C . ARG A 1 177 ? -22.281 -3.721 -18.582 1.00 50.58 157 A 1 \nATOM 1081 O O . ARG A 1 177 ? -21.593 -3.310 -17.659 1.00 42.44 157 A 1 \nATOM 1082 C CB . ARG A 1 177 ? -21.215 -5.194 -20.417 1.00 55.03 157 A 1 \nATOM 1083 C CG . ARG A 1 177 ? -20.031 -4.223 -20.477 1.00 65.51 157 A 1 \nATOM 1084 C CD . ARG A 1 177 ? -18.929 -4.555 -19.478 1.00 70.46 157 A 1 \nATOM 1085 N NE . ARG A 1 177 ? -17.808 -3.614 -19.573 1.00 78.94 157 A 1 \nATOM 1086 C CZ . ARG A 1 177 ? -16.820 -3.658 -20.477 1.00 81.43 157 A 1 \nATOM 1087 N NH1 . ARG A 1 177 ? -16.772 -4.598 -21.416 1.00 80.09 157 A 1 \nATOM 1088 N NH2 . ARG A 1 177 ? -15.856 -2.745 -20.443 1.00 86.97 157 A 1 \nATOM 1089 N N . PRO A 1 178 ? -23.248 -2.972 -19.149 1.00 44.81 158 A 1 \nATOM 1090 C CA . PRO A 1 178 ? -23.610 -1.674 -18.636 1.00 42.64 158 A 1 \nATOM 1091 C C . PRO A 1 178 ? -24.115 -1.619 -17.193 1.00 43.67 158 A 1 \nATOM 1092 O O . PRO A 1 178 ? -23.768 -0.684 -16.469 1.00 45.24 158 A 1 \nATOM 1093 C CB . PRO A 1 178 ? -24.737 -1.243 -19.586 1.00 44.98 158 A 1 \nATOM 1094 C CG . PRO A 1 178 ? -24.378 -1.917 -20.869 1.00 44.63 158 A 1 \nATOM 1095 C CD . PRO A 1 178 ? -23.935 -3.254 -20.427 1.00 43.36 158 A 1 \nATOM 1096 N N . LEU A 1 179 ? -24.949 -2.575 -16.784 1.00 42.82 159 A 1 \nATOM 1097 C CA . LEU A 1 179 ? -25.384 -2.655 -15.378 1.00 37.65 159 A 1 \nATOM 1098 C C . LEU A 1 179 ? -24.197 -2.963 -14.469 1.00 35.17 159 A 1 \nATOM 1099 O O . LEU A 1 179 ? -24.018 -2.309 -13.445 1.00 32.73 159 A 1 \nATOM 1100 C CB . LEU A 1 179 ? -26.505 -3.688 -15.155 1.00 37.08 159 A 1 \nATOM 1101 C CG . LEU A 1 179 ? -26.962 -3.752 -13.663 1.00 38.11 159 A 1 \nATOM 1102 C CD1 . LEU A 1 179 ? -27.465 -2.393 -13.179 1.00 37.25 159 A 1 \nATOM 1103 C CD2 . LEU A 1 179 ? -28.005 -4.781 -13.355 1.00 40.45 159 A 1 \nATOM 1104 N N . ALA A 1 180 ? -23.386 -3.950 -14.849 1.00 37.75 160 A 1 \nATOM 1105 C CA . ALA A 1 180 ? -22.141 -4.285 -14.113 1.00 38.86 160 A 1 \nATOM 1106 C C . ALA A 1 180 ? -21.287 -3.052 -13.852 1.00 41.91 160 A 1 \nATOM 1107 O O . ALA A 1 180 ? -20.805 -2.801 -12.753 1.00 46.21 160 A 1 \nATOM 1108 C CB . ALA A 1 180 ? -21.331 -5.312 -14.878 1.00 38.88 160 A 1 \nATOM 1109 N N . GLN A 1 181 ? -21.160 -2.265 -14.895 1.00 45.59 161 A 1 \nATOM 1110 C CA . GLN A 1 181 ? -20.314 -1.107 -14.917 1.00 45.25 161 A 1 \nATOM 1111 C C . GLN A 1 181 ? -20.852 -0.036 -13.981 1.00 41.97 161 A 1 \nATOM 1112 O O . GLN A 1 181 ? -20.119 0.547 -13.193 1.00 41.03 161 A 1 \nATOM 1113 C CB . GLN A 1 181 ? -20.258 -0.641 -16.373 1.00 49.00 161 A 1 \nATOM 1114 C CG . GLN A 1 181 ? -18.994 0.043 -16.776 1.00 53.84 161 A 1 \nATOM 1115 C CD . GLN A 1 181 ? -17.727 -0.786 -16.591 1.00 49.56 161 A 1 \nATOM 1116 O OE1 . GLN A 1 181 ? -17.533 -1.856 -17.210 1.00 48.44 161 A 1 \nATOM 1117 N NE2 . GLN A 1 181 ? -16.872 -0.277 -15.749 1.00 44.62 161 A 1 \nATOM 1118 N N . VAL A 1 182 ? -22.156 0.190 -14.058 1.00 41.49 162 A 1 \nATOM 1119 C CA . VAL A 1 182 ? -22.874 1.122 -13.157 1.00 39.99 162 A 1 \nATOM 1120 C C . VAL A 1 182 ? -22.784 0.694 -11.700 1.00 37.87 162 A 1 \nATOM 1121 O O . VAL A 1 182 ? -22.562 1.515 -10.827 1.00 39.75 162 A 1 \nATOM 1122 C CB . VAL A 1 182 ? -24.338 1.311 -13.612 1.00 40.60 162 A 1 \nATOM 1123 C CG1 . VAL A 1 182 ? -25.189 2.042 -12.584 1.00 38.95 162 A 1 \nATOM 1124 C CG2 . VAL A 1 182 ? -24.359 2.085 -14.925 1.00 44.42 162 A 1 \nATOM 1125 N N . LEU A 1 183 ? -22.910 -0.594 -11.439 1.00 38.24 163 A 1 \nATOM 1126 C CA . LEU A 1 183 ? -22.805 -1.071 -10.065 1.00 38.37 163 A 1 \nATOM 1127 C C . LEU A 1 183 ? -21.401 -0.966 -9.519 1.00 38.47 163 A 1 \nATOM 1128 O O . LEU A 1 183 ? -21.215 -0.568 -8.372 1.00 38.32 163 A 1 \nATOM 1129 C CB . LEU A 1 183 ? -23.292 -2.496 -9.940 1.00 39.13 163 A 1 \nATOM 1130 C CG . LEU A 1 183 ? -24.789 -2.692 -10.159 1.00 38.08 163 A 1 \nATOM 1131 C CD1 . LEU A 1 183 ? -25.058 -4.194 -10.045 1.00 46.18 163 A 1 \nATOM 1132 C CD2 . LEU A 1 183 ? -25.640 -1.922 -9.188 1.00 37.49 163 A 1 \nATOM 1133 N N . ILE A 1 184 ? -20.417 -1.316 -10.339 1.00 39.34 164 A 1 \nATOM 1134 C CA . ILE A 1 184 ? -19.008 -1.125 -9.968 1.00 43.34 164 A 1 \nATOM 1135 C C . ILE A 1 184 ? -18.726 0.345 -9.611 1.00 42.40 164 A 1 \nATOM 1136 O O . ILE A 1 184 ? -18.079 0.604 -8.605 1.00 41.12 164 A 1 \nATOM 1137 C CB . ILE A 1 184 ? -18.030 -1.685 -11.028 1.00 41.79 164 A 1 \nATOM 1138 C CG1 . ILE A 1 184 ? -17.952 -3.198 -10.881 1.00 40.19 164 A 1 \nATOM 1139 C CG2 . ILE A 1 184 ? -16.618 -1.100 -10.923 1.00 41.38 164 A 1 \nATOM 1140 C CD1 . ILE A 1 184 ? -17.505 -3.900 -12.146 1.00 39.64 164 A 1 \nATOM 1141 N N . GLY A 1 185 ? -19.261 1.284 -10.378 1.00 37.11 165 A 1 \nATOM 1142 C CA . GLY A 1 185 ? -19.062 2.681 -10.061 1.00 40.23 165 A 1 \nATOM 1143 C C . GLY A 1 185 ? -19.716 3.092 -8.737 1.00 41.69 165 A 1 \nATOM 1144 O O . GLY A 1 185 ? -19.142 3.843 -7.962 1.00 42.50 165 A 1 \nATOM 1145 N N . ALA A 1 186 ? -20.939 2.630 -8.514 1.00 37.60 166 A 1 \nATOM 1146 C CA . ALA A 1 186 ? -21.636 2.875 -7.288 1.00 35.25 166 A 1 \nATOM 1147 C C . ALA A 1 186 ? -20.864 2.282 -6.095 1.00 34.63 166 A 1 \nATOM 1148 O O . ALA A 1 186 ? -20.677 2.967 -5.085 1.00 29.21 166 A 1 \nATOM 1149 C CB . ALA A 1 186 ? -23.034 2.292 -7.368 1.00 34.72 166 A 1 \nATOM 1150 N N . LEU A 1 187 ? -20.406 1.031 -6.232 1.00 31.78 167 A 1 \nATOM 1151 C CA . LEU A 1 187 ? -19.778 0.329 -5.110 1.00 34.75 167 A 1 \nATOM 1152 C C . LEU A 1 187 ? -18.356 0.840 -4.790 1.00 37.62 167 A 1 \nATOM 1153 O O . LEU A 1 187 ? -17.982 0.960 -3.624 1.00 31.54 167 A 1 \nATOM 1154 C CB . LEU A 1 187 ? -19.733 -1.156 -5.375 1.00 40.14 167 A 1 \nATOM 1155 C CG . LEU A 1 187 ? -21.116 -1.836 -5.384 1.00 40.35 167 A 1 \nATOM 1156 C CD1 . LEU A 1 187 ? -20.991 -3.154 -6.121 1.00 39.82 167 A 1 \nATOM 1157 C CD2 . LEU A 1 187 ? -21.680 -2.018 -3.996 1.00 40.62 167 A 1 \nATOM 1158 N N . ASP A 1 188 ? -17.580 1.162 -5.832 1.00 36.19 168 A 1 \nATOM 1159 C CA . ASP A 1 188 ? -16.255 1.783 -5.662 1.00 35.90 168 A 1 \nATOM 1160 C C . ASP A 1 188 ? -16.353 3.160 -5.017 1.00 36.01 168 A 1 \nATOM 1161 O O . ASP A 1 188 ? -15.531 3.495 -4.153 1.00 34.82 168 A 1 \nATOM 1162 C CB . ASP A 1 188 ? -15.506 1.891 -6.989 1.00 34.69 168 A 1 \nATOM 1163 C CG . ASP A 1 188 ? -15.070 0.551 -7.505 1.00 37.68 168 A 1 \nATOM 1164 O OD1 . ASP A 1 188 ? -15.163 -0.412 -6.702 1.00 34.63 168 A 1 \nATOM 1165 O OD2 . ASP A 1 188 ? -14.650 0.464 -8.695 1.00 35.36 168 A 1 \nATOM 1166 N N . GLU A 1 189 ? -17.364 3.921 -5.404 1.00 35.10 169 A 1 \nATOM 1167 C CA . GLU A 1 189 ? -17.607 5.226 -4.829 1.00 38.70 169 A 1 \nATOM 1168 C C . GLU A 1 189 ? -18.058 5.130 -3.361 1.00 41.26 169 A 1 \nATOM 1169 O O . GLU A 1 189 ? -17.580 5.918 -2.513 1.00 35.73 169 A 1 \nATOM 1170 C CB . GLU A 1 189 ? -18.631 5.982 -5.683 1.00 40.89 169 A 1 \nATOM 1171 C CG . GLU A 1 189 ? -19.060 7.355 -5.196 1.00 43.73 169 A 1 \nATOM 1172 C CD . GLU A 1 189 ? -17.903 8.261 -4.813 1.00 48.84 169 A 1 \nATOM 1173 O OE1 . GLU A 1 189 ? -18.024 8.847 -3.716 1.00 51.70 169 A 1 \nATOM 1174 O OE2 . GLU A 1 189 ? -16.870 8.336 -5.550 1.00 47.85 169 A 1 \nATOM 1175 N N . ALA A 1 190 ? -18.929 4.156 -3.061 1.00 37.11 170 A 1 \nATOM 1176 C CA . ALA A 1 190 ? -19.305 3.856 -1.673 1.00 39.10 170 A 1 \nATOM 1177 C C . ALA A 1 190 ? -18.075 3.670 -0.799 1.00 38.94 170 A 1 \nATOM 1178 O O . ALA A 1 190 ? -17.933 4.337 0.229 1.00 39.00 170 A 1 \nATOM 1179 C CB . ALA A 1 190 ? -20.182 2.608 -1.596 1.00 38.63 170 A 1 \nATOM 1180 N N . ALA A 1 191 ? -17.191 2.783 -1.245 1.00 38.48 171 A 1 \nATOM 1181 C CA . ALA A 1 191 ? -15.968 2.473 -0.541 1.00 38.83 171 A 1 \nATOM 1182 C C . ALA A 1 191 ? -15.049 3.669 -0.364 1.00 38.18 171 A 1 \nATOM 1183 O O . ALA A 1 191 ? -14.458 3.855 0.711 1.00 37.95 171 A 1 \nATOM 1184 C CB . ALA A 1 191 ? -15.226 1.331 -1.226 1.00 41.47 171 A 1 \nATOM 1185 N N . MET A 1 192 ? -14.947 4.498 -1.401 1.00 38.19 172 A 1 \nATOM 1186 C CA . MET A 1 192 ? -14.156 5.702 -1.296 1.00 40.10 172 A 1 \nATOM 1187 C C . MET A 1 192 ? -14.741 6.722 -0.337 1.00 41.05 172 A 1 \nATOM 1188 O O . MET A 1 192 ? -13.991 7.446 0.319 1.00 45.58 172 A 1 \nATOM 1189 C CB . MET A 1 192 ? -14.038 6.388 -2.648 1.00 45.83 172 A 1 \nATOM 1190 C CG . MET A 1 192 ? -13.173 5.693 -3.630 1.00 51.98 172 A 1 \nATOM 1191 S SD . MET A 1 192 ? -11.529 5.302 -3.044 1.00 71.15 172 A 1 \nATOM 1192 C CE . MET A 1 192 ? -11.044 6.938 -2.411 1.00 66.21 172 A 1 \nATOM 1193 N N . PHE A 1 193 ? -16.070 6.804 -0.303 1.00 40.85 173 A 1 \nATOM 1194 C CA . PHE A 1 193 ? -16.764 7.747 0.548 1.00 39.08 173 A 1 \nATOM 1195 C C . PHE A 1 193 ? -16.516 7.373 2.003 1.00 37.80 173 A 1 \nATOM 1196 O O . PHE A 1 193 ? -16.127 8.227 2.789 1.00 35.36 173 A 1 \nATOM 1197 C CB . PHE A 1 193 ? -18.267 7.812 0.185 1.00 37.72 173 A 1 \nATOM 1198 C CG . PHE A 1 193 ? -19.100 8.533 1.172 1.00 36.09 173 A 1 \nATOM 1199 C CD1 . PHE A 1 193 ? -18.911 9.875 1.416 1.00 35.41 173 A 1 \nATOM 1200 C CD2 . PHE A 1 193 ? -20.090 7.854 1.888 1.00 43.46 173 A 1 \nATOM 1201 C CE1 . PHE A 1 193 ? -19.683 10.542 2.365 1.00 35.42 173 A 1 \nATOM 1202 C CE2 . PHE A 1 193 ? -20.901 8.528 2.833 1.00 40.04 173 A 1 \nATOM 1203 C CZ . PHE A 1 193 ? -20.682 9.866 3.075 1.00 36.64 173 A 1 \nATOM 1204 N N . ILE A 1 194 ? -16.701 6.094 2.330 1.00 35.57 174 A 1 \nATOM 1205 C CA . ILE A 1 194 ? -16.458 5.570 3.687 1.00 34.77 174 A 1 \nATOM 1206 C C . ILE A 1 194 ? -14.983 5.790 4.079 1.00 37.50 174 A 1 \nATOM 1207 O O . ILE A 1 194 ? -14.719 6.280 5.160 1.00 37.78 174 A 1 \nATOM 1208 C CB . ILE A 1 194 ? -16.815 4.061 3.790 1.00 32.11 174 A 1 \nATOM 1209 C CG1 . ILE A 1 194 ? -18.317 3.818 3.622 1.00 30.48 174 A 1 \nATOM 1210 C CG2 . ILE A 1 194 ? -16.349 3.428 5.109 1.00 32.27 174 A 1 \nATOM 1211 C CD1 . ILE A 1 194 ? -18.615 2.454 3.002 1.00 28.97 174 A 1 \nATOM 1212 N N . ALA A 1 195 ? -14.059 5.440 3.175 1.00 36.37 175 A 1 \nATOM 1213 C CA . ALA A 1 195 ? -12.610 5.543 3.403 1.00 36.81 175 A 1 \nATOM 1214 C C . ALA A 1 195 ? -12.104 6.918 3.876 1.00 42.85 175 A 1 \nATOM 1215 O O . ALA A 1 195 ? -11.160 6.993 4.676 1.00 43.02 175 A 1 \nATOM 1216 C CB . ALA A 1 195 ? -11.868 5.146 2.150 1.00 35.86 175 A 1 \nATOM 1217 N N . THR A 1 196 ? -12.723 7.988 3.378 1.00 41.80 176 A 1 \nATOM 1218 C CA . THR A 1 196 ? -12.381 9.334 3.795 1.00 40.71 176 A 1 \nATOM 1219 C C . THR A 1 196 ? -13.459 10.008 4.662 1.00 43.26 176 A 1 \nATOM 1220 O O . THR A 1 196 ? -13.397 11.204 4.858 1.00 47.80 176 A 1 \nATOM 1221 C CB . THR A 1 196 ? -12.123 10.238 2.582 1.00 41.45 176 A 1 \nATOM 1222 O OG1 . THR A 1 196 ? -13.280 10.247 1.745 1.00 46.64 176 A 1 \nATOM 1223 C CG2 . THR A 1 196 ? -10.909 9.779 1.803 1.00 43.81 176 A 1 \nATOM 1224 N N . ALA A 1 197 ? -14.414 9.264 5.205 1.00 43.41 177 A 1 \nATOM 1225 C CA . ALA A 1 197 ? -15.490 9.901 5.976 1.00 41.83 177 A 1 \nATOM 1226 C C . ALA A 1 197 ? -14.913 10.485 7.277 1.00 42.42 177 A 1 \nATOM 1227 O O . ALA A 1 197 ? -14.019 9.878 7.846 1.00 44.78 177 A 1 \nATOM 1228 C CB . ALA A 1 197 ? -16.593 8.895 6.300 1.00 41.21 177 A 1 \nATOM 1229 N N . ASP A 1 198 ? -15.431 11.627 7.737 1.00 44.61 178 A 1 \nATOM 1230 C CA . ASP A 1 198 ? -15.195 12.080 9.119 1.00 54.47 178 A 1 \nATOM 1231 C C . ASP A 1 198 ? -15.548 10.948 10.102 1.00 52.20 178 A 1 \nATOM 1232 O O . ASP A 1 198 ? -14.758 10.629 10.968 1.00 52.41 178 A 1 \nATOM 1233 C CB . ASP A 1 198 ? -15.975 13.387 9.459 1.00 64.25 178 A 1 \nATOM 1234 C CG . ASP A 1 198 ? -15.443 14.646 8.699 1.00 74.65 178 A 1 \nATOM 1235 O OD1 . ASP A 1 198 ? -14.214 14.790 8.496 1.00 77.28 178 A 1 \nATOM 1236 O OD2 . ASP A 1 198 ? -16.265 15.511 8.317 1.00 73.58 178 A 1 \nATOM 1237 N N . ASP A 1 199 ? -16.696 10.295 9.901 1.00 54.63 179 A 1 \nATOM 1238 C CA . ASP A 1 199 ? -17.149 9.185 10.752 1.00 52.91 179 A 1 \nATOM 1239 C C . ASP A 1 199 ? -17.388 7.888 9.941 1.00 53.98 179 A 1 \nATOM 1240 O O . ASP A 1 199 ? -18.522 7.592 9.578 1.00 59.20 179 A 1 \nATOM 1241 C CB . ASP A 1 199 ? -18.402 9.638 11.511 1.00 53.26 179 A 1 \nATOM 1242 C CG . ASP A 1 199 ? -18.931 8.597 12.499 1.00 57.59 179 A 1 \nATOM 1243 O OD1 . ASP A 1 199 ? -18.372 7.473 12.628 1.00 55.03 179 A 1 \nATOM 1244 O OD2 . ASP A 1 199 ? -19.945 8.935 13.158 1.00 61.11 179 A 1 \nATOM 1245 N N . PRO A 1 200 ? -16.319 7.092 9.687 1.00 48.73 180 A 1 \nATOM 1246 C CA . PRO A 1 200 ? -16.416 5.876 8.842 1.00 45.66 180 A 1 \nATOM 1247 C C . PRO A 1 200 ? -17.433 4.813 9.269 1.00 45.46 180 A 1 \nATOM 1248 O O . PRO A 1 200 ? -17.941 4.063 8.420 1.00 48.60 180 A 1 \nATOM 1249 C CB . PRO A 1 200 ? -14.997 5.266 8.902 1.00 43.20 180 A 1 \nATOM 1250 C CG . PRO A 1 200 ? -14.109 6.356 9.347 1.00 45.91 180 A 1 \nATOM 1251 C CD . PRO A 1 200 ? -14.929 7.408 10.052 1.00 46.11 180 A 1 \nATOM 1252 N N . LYS A 1 201 ? -17.677 4.690 10.569 1.00 44.47 181 A 1 \nATOM 1253 C CA . LYS A 1 201 ? -18.628 3.693 11.078 1.00 48.66 181 A 1 \nATOM 1254 C C . LYS A 1 201 ? -20.029 4.140 10.721 1.00 43.33 181 A 1 \nATOM 1255 O O . LYS A 1 201 ? -20.840 3.330 10.322 1.00 47.64 181 A 1 \nATOM 1256 C CB . LYS A 1 201 ? -18.481 3.458 12.596 1.00 53.49 181 A 1 \nATOM 1257 N N . ARG A 1 202 ? -20.299 5.429 10.844 1.00 44.04 182 A 1 \nATOM 1258 C CA . ARG A 1 202 ? -21.608 5.998 10.449 1.00 46.75 182 A 1 \nATOM 1259 C C . ARG A 1 202 ? -21.772 5.875 8.927 1.00 41.12 182 A 1 \nATOM 1260 O O . ARG A 1 202 ? -22.756 5.305 8.456 1.00 44.69 182 A 1 \nATOM 1261 C CB . ARG A 1 202 ? -21.747 7.457 10.920 1.00 43.92 182 A 1 \nATOM 1262 C CG . ARG A 1 202 ? -23.108 8.065 10.668 1.00 47.91 182 A 1 \nATOM 1263 C CD . ARG A 1 202 ? -23.120 9.536 11.044 1.00 51.90 182 A 1 \nATOM 1264 N NE . ARG A 1 202 ? -24.128 10.283 10.295 1.00 60.84 182 A 1 \nATOM 1265 C CZ . ARG A 1 202 ? -24.545 11.523 10.582 1.00 67.98 182 A 1 \nATOM 1266 N NH1 . ARG A 1 202 ? -24.033 12.206 11.603 1.00 75.25 182 A 1 \nATOM 1267 N NH2 . ARG A 1 202 ? -25.494 12.088 9.838 1.00 67.27 182 A 1 \nATOM 1268 N N . ALA A 1 203 ? -20.796 6.378 8.184 1.00 36.70 183 A 1 \nATOM 1269 C CA . ALA A 1 203 ? -20.822 6.326 6.719 1.00 40.61 183 A 1 \nATOM 1270 C C . ALA A 1 203 ? -20.962 4.903 6.162 1.00 40.28 183 A 1 \nATOM 1271 O O . ALA A 1 203 ? -21.668 4.700 5.188 1.00 39.75 183 A 1 \nATOM 1272 C CB . ALA A 1 203 ? -19.594 7.007 6.131 1.00 41.98 183 A 1 \nATOM 1273 N N . ARG A 1 204 ? -20.323 3.926 6.808 1.00 42.66 184 A 1 \nATOM 1274 C CA . ARG A 1 204 ? -20.507 2.514 6.430 1.00 42.62 184 A 1 \nATOM 1275 C C . ARG A 1 204 ? -21.925 2.020 6.632 1.00 39.67 184 A 1 \nATOM 1276 O O . ARG A 1 204 ? -22.458 1.313 5.767 1.00 40.68 184 A 1 \nATOM 1277 C CB . ARG A 1 204 ? -19.490 1.575 7.119 1.00 45.37 184 A 1 \nATOM 1278 C CG . ARG A 1 204 ? -19.715 0.122 6.690 1.00 43.32 184 A 1 \nATOM 1279 C CD . ARG A 1 204 ? -18.604 -0.781 7.130 1.00 45.84 184 A 1 \nATOM 1280 N NE . ARG A 1 204 ? -19.011 -2.192 7.079 1.00 53.47 184 A 1 \nATOM 1281 C CZ . ARG A 1 204 ? -18.323 -3.217 7.610 1.00 55.32 184 A 1 \nATOM 1282 N NH1 . ARG A 1 204 ? -17.179 -3.013 8.249 1.00 52.79 184 A 1 \nATOM 1283 N NH2 . ARG A 1 204 ? -18.768 -4.468 7.495 1.00 58.96 184 A 1 \nATOM 1284 N N . ARG A 1 205 ? -22.543 2.379 7.757 1.00 41.67 185 A 1 \nATOM 1285 C CA . ARG A 1 205 ? -23.921 1.910 8.066 1.00 46.20 185 A 1 \nATOM 1286 C C . ARG A 1 205 ? -24.916 2.567 7.126 1.00 40.53 185 A 1 \nATOM 1287 O O . ARG A 1 205 ? -25.733 1.903 6.526 1.00 42.67 185 A 1 \nATOM 1288 C CB . ARG A 1 205 ? -24.320 2.213 9.529 1.00 52.28 185 A 1 \nATOM 1289 C CG . ARG A 1 205 ? -23.898 1.178 10.582 1.00 63.13 185 A 1 \nATOM 1290 C CD . ARG A 1 205 ? -23.610 1.785 11.980 1.00 65.81 185 A 1 \nATOM 1291 N NE . ARG A 1 205 ? -24.336 3.049 12.174 1.00 61.14 185 A 1 \nATOM 1292 C CZ . ARG A 1 205 ? -23.930 4.072 12.923 1.00 65.06 185 A 1 \nATOM 1293 N NH1 . ARG A 1 205 ? -22.807 4.015 13.655 1.00 60.37 185 A 1 \nATOM 1294 N NH2 . ARG A 1 205 ? -24.676 5.184 12.940 1.00 68.11 185 A 1 \nATOM 1295 N N . GLU A 1 206 ? -24.830 3.880 7.019 1.00 38.23 186 A 1 \nATOM 1296 C CA . GLU A 1 206 ? -25.703 4.659 6.132 1.00 39.31 186 A 1 \nATOM 1297 C C . GLU A 1 206 ? -25.598 4.266 4.658 1.00 36.26 186 A 1 \nATOM 1298 O O . GLU A 1 206 ? -26.614 4.083 3.986 1.00 43.44 186 A 1 \nATOM 1299 C CB . GLU A 1 206 ? -25.416 6.149 6.306 1.00 38.11 186 A 1 \nATOM 1300 C CG . GLU A 1 206 ? -25.913 6.659 7.654 1.00 40.61 186 A 1 \nATOM 1301 C CD . GLU A 1 206 ? -25.713 8.135 7.851 1.00 43.99 186 A 1 \nATOM 1302 O OE1 . GLU A 1 206 ? -25.227 8.812 6.933 1.00 55.00 186 A 1 \nATOM 1303 O OE2 . GLU A 1 206 ? -26.040 8.621 8.944 1.00 52.15 186 A 1 \nATOM 1304 N N . THR A 1 207 ? -24.377 4.108 4.184 1.00 33.73 187 A 1 \nATOM 1305 C CA . THR A 1 207 ? -24.123 3.728 2.811 1.00 36.13 187 A 1 \nATOM 1306 C C . THR A 1 207 ? -24.633 2.317 2.554 1.00 36.01 187 A 1 \nATOM 1307 O O . THR A 1 207 ? -25.180 2.032 1.490 1.00 40.42 187 A 1 \nATOM 1308 C CB . THR A 1 207 ? -22.609 3.855 2.481 1.00 36.57 187 A 1 \nATOM 1309 O OG1 . THR A 1 207 ? -22.201 5.225 2.665 1.00 36.91 187 A 1 \nATOM 1310 C CG2 . THR A 1 207 ? -22.349 3.462 1.079 1.00 37.28 187 A 1 \nATOM 1311 N N . ARG A 1 208 ? -24.462 1.437 3.541 1.00 39.98 188 A 1 \nATOM 1312 C CA . ARG A 1 208 ? -24.962 0.064 3.453 1.00 42.02 188 A 1 \nATOM 1313 C C . ARG A 1 208 ? -26.510 0.035 3.274 1.00 40.63 188 A 1 \nATOM 1314 O O . ARG A 1 208 ? -27.027 -0.683 2.433 1.00 37.91 188 A 1 \nATOM 1315 C CB . ARG A 1 208 ? -24.515 -0.716 4.705 1.00 44.73 188 A 1 \nATOM 1316 C CG . ARG A 1 208 ? -24.679 -2.209 4.638 1.00 48.88 188 A 1 \nATOM 1317 C CD . ARG A 1 208 ? -25.823 -2.659 5.493 1.00 56.39 188 A 1 \nATOM 1318 N NE . ARG A 1 208 ? -26.247 -4.012 5.140 1.00 65.66 188 A 1 \nATOM 1319 C CZ . ARG A 1 208 ? -27.157 -4.719 5.801 1.00 69.07 188 A 1 \nATOM 1320 N NH1 . ARG A 1 208 ? -27.765 -4.220 6.882 1.00 71.35 188 A 1 \nATOM 1321 N NH2 . ARG A 1 208 ? -27.457 -5.940 5.376 1.00 72.29 188 A 1 \nATOM 1322 N N . GLN A 1 209 ? -27.210 0.842 4.075 1.00 38.50 189 A 1 \nATOM 1323 C CA . GLN A 1 209 ? -28.667 0.953 4.036 1.00 41.47 189 A 1 \nATOM 1324 C C . GLN A 1 209 ? -29.107 1.457 2.660 1.00 41.85 189 A 1 \nATOM 1325 O O . GLN A 1 209 ? -30.037 0.929 2.050 1.00 36.13 189 A 1 \nATOM 1326 C CB . GLN A 1 209 ? -29.143 1.922 5.133 1.00 43.46 189 A 1 \nATOM 1327 C CG . GLN A 1 209 ? -30.662 2.175 5.201 1.00 54.36 189 A 1 \nATOM 1328 C CD . GLN A 1 209 ? -31.031 3.417 6.047 1.00 58.89 189 A 1 \nATOM 1329 O OE1 . GLN A 1 209 ? -32.042 4.062 5.807 1.00 57.27 189 A 1 \nATOM 1330 N NE2 . GLN A 1 209 ? -30.192 3.759 7.025 1.00 54.90 189 A 1 \nATOM 1331 N N . VAL A 1 210 ? -28.418 2.484 2.186 1.00 37.82 190 A 1 \nATOM 1332 C CA . VAL A 1 210 ? -28.709 3.080 0.911 1.00 38.23 190 A 1 \nATOM 1333 C C . VAL A 1 210 ? -28.477 2.087 -0.222 1.00 37.56 190 A 1 \nATOM 1334 O O . VAL A 1 210 ? -29.278 2.028 -1.146 1.00 37.13 190 A 1 \nATOM 1335 C CB . VAL A 1 210 ? -27.878 4.369 0.753 1.00 44.62 190 A 1 \nATOM 1336 C CG1 . VAL A 1 210 ? -27.514 4.643 -0.689 1.00 49.36 190 A 1 \nATOM 1337 C CG2 . VAL A 1 210 ? -28.627 5.531 1.389 1.00 44.71 190 A 1 \nATOM 1338 N N . LEU A 1 211 ? -27.400 1.301 -0.154 1.00 39.32 191 A 1 \nATOM 1339 C CA . LEU A 1 211 ? -27.181 0.273 -1.171 1.00 37.01 191 A 1 \nATOM 1340 C C . LEU A 1 211 ? -28.235 -0.860 -1.068 1.00 39.67 191 A 1 \nATOM 1341 O O . LEU A 1 211 ? -28.736 -1.352 -2.096 1.00 35.50 191 A 1 \nATOM 1342 C CB . LEU A 1 211 ? -25.771 -0.290 -1.090 1.00 36.61 191 A 1 \nATOM 1343 C CG . LEU A 1 211 ? -24.678 0.726 -1.462 1.00 39.55 191 A 1 \nATOM 1344 C CD1 . LEU A 1 211 ? -23.278 0.281 -1.018 1.00 34.03 191 A 1 \nATOM 1345 C CD2 . LEU A 1 211 ? -24.678 1.105 -2.948 1.00 41.38 191 A 1 \nATOM 1346 N N . ARG A 1 212 ? -28.560 -1.269 0.165 1.00 39.09 192 A 1 \nATOM 1347 C CA . ARG A 1 212 ? -29.517 -2.326 0.362 1.00 41.89 192 A 1 \nATOM 1348 C C . ARG A 1 212 ? -30.877 -1.875 -0.185 1.00 40.58 192 A 1 \nATOM 1349 O O . ARG A 1 212 ? -31.518 -2.652 -0.877 1.00 34.93 192 A 1 \nATOM 1350 C CB . ARG A 1 212 ? -29.608 -2.797 1.826 1.00 45.09 192 A 1 \nATOM 1351 C CG . ARG A 1 212 ? -30.802 -3.709 2.106 1.00 50.11 192 A 1 \nATOM 1352 C CD . ARG A 1 212 ? -30.848 -4.972 1.240 1.00 54.02 192 A 1 \nATOM 1353 N NE . ARG A 1 212 ? -29.759 -5.844 1.674 1.00 66.09 192 A 1 \nATOM 1354 C CZ . ARG A 1 212 ? -29.843 -6.895 2.497 1.00 59.92 192 A 1 \nATOM 1355 N NH1 . ARG A 1 212 ? -31.014 -7.357 2.973 1.00 54.10 192 A 1 \nATOM 1356 N NH2 . ARG A 1 212 ? -28.707 -7.519 2.812 1.00 60.00 192 A 1 \nATOM 1357 N N . ARG A 1 213 ? -31.290 -0.626 0.084 1.00 40.93 193 A 1 \nATOM 1358 C CA . ARG A 1 213 ? -32.553 -0.102 -0.490 1.00 43.66 193 A 1 \nATOM 1359 C C . ARG A 1 213 ? -32.586 -0.097 -2.032 1.00 43.64 193 A 1 \nATOM 1360 O O . ARG A 1 213 ? -33.559 -0.547 -2.646 1.00 42.63 193 A 1 \nATOM 1361 C CB . ARG A 1 213 ? -32.845 1.299 -0.001 1.00 46.47 193 A 1 \nATOM 1362 C CG . ARG A 1 213 ? -33.331 1.386 1.429 1.00 51.75 193 A 1 \nATOM 1363 C CD . ARG A 1 213 ? -34.262 2.601 1.588 1.00 62.01 193 A 1 \nATOM 1364 N NE . ARG A 1 213 ? -35.244 2.392 2.660 1.00 67.62 193 A 1 \nATOM 1365 C CZ . ARG A 1 213 ? -35.017 2.624 3.946 1.00 70.73 193 A 1 \nATOM 1366 N NH1 . ARG A 1 213 ? -33.855 3.123 4.365 1.00 84.86 193 A 1 \nATOM 1367 N NH2 . ARG A 1 213 ? -35.954 2.373 4.841 1.00 74.69 193 A 1 \nATOM 1368 N N . LEU A 1 214 ? -31.515 0.393 -2.636 1.00 40.56 194 A 1 \nATOM 1369 C CA . LEU A 1 214 ? -31.393 0.449 -4.083 1.00 46.08 194 A 1 \nATOM 1370 C C . LEU A 1 214 ? -31.554 -0.933 -4.718 1.00 46.93 194 A 1 \nATOM 1371 O O . LEU A 1 214 ? -32.307 -1.123 -5.690 1.00 42.28 194 A 1 \nATOM 1372 C CB . LEU A 1 214 ? -30.034 1.034 -4.460 1.00 48.33 194 A 1 \nATOM 1373 C CG . LEU A 1 214 ? -29.862 1.321 -5.939 1.00 60.25 194 A 1 \nATOM 1374 C CD1 . LEU A 1 214 ? -30.808 2.436 -6.380 1.00 64.00 194 A 1 \nATOM 1375 C CD2 . LEU A 1 214 ? -28.400 1.646 -6.173 1.00 66.33 194 A 1 \nATOM 1376 N N . ILE A 1 215 ? -30.853 -1.890 -4.131 1.00 47.25 195 A 1 \nATOM 1377 C CA . ILE A 1 215 ? -30.831 -3.266 -4.598 1.00 49.78 195 A 1 \nATOM 1378 C C . ILE A 1 215 ? -32.217 -3.944 -4.421 1.00 44.91 195 A 1 \nATOM 1379 O O . ILE A 1 215 ? -32.695 -4.592 -5.323 1.00 41.54 195 A 1 \nATOM 1380 C CB . ILE A 1 215 ? -29.688 -4.046 -3.871 1.00 53.70 195 A 1 \nATOM 1381 C CG1 . ILE A 1 215 ? -28.314 -3.512 -4.303 1.00 57.92 195 A 1 \nATOM 1382 C CG2 . ILE A 1 215 ? -29.742 -5.528 -4.169 1.00 57.74 195 A 1 \nATOM 1383 C CD1 . ILE A 1 215 ? -27.851 -3.883 -5.710 1.00 61.31 195 A 1 \nATOM 1384 N N . ASP A 1 216 ? -32.840 -3.748 -3.264 1.00 38.83 196 A 1 \nATOM 1385 C CA . ASP A 1 216 ? -34.163 -4.249 -2.982 1.00 37.34 196 A 1 \nATOM 1386 C C . ASP A 1 216 ? -35.273 -3.672 -3.879 1.00 37.98 196 A 1 \nATOM 1387 O O . ASP A 1 216 ? -36.309 -4.302 -4.054 1.00 39.33 196 A 1 \nATOM 1388 C CB . ASP A 1 216 ? -34.513 -4.045 -1.515 1.00 40.70 196 A 1 \nATOM 1389 C CG . ASP A 1 216 ? -33.833 -5.052 -0.602 1.00 42.63 196 A 1 \nATOM 1390 O OD1 . ASP A 1 216 ? -33.189 -5.997 -1.100 1.00 40.28 196 A 1 \nATOM 1391 O OD2 . ASP A 1 216 ? -33.968 -4.872 0.628 1.00 48.26 196 A 1 \nATOM 1392 N N . GLY A 1 217 ? -35.053 -2.501 -4.451 1.00 35.57 197 A 1 \nATOM 1393 C CA . GLY A 1 217 ? -35.956 -1.940 -5.441 1.00 34.18 197 A 1 \nATOM 1394 C C . GLY A 1 217 ? -35.705 -2.476 -6.850 1.00 37.64 197 A 1 \nATOM 1395 O O . GLY A 1 217 ? -36.581 -2.466 -7.682 1.00 44.75 197 A 1 \nATOM 1396 N N . MET A 1 218 ? -34.499 -2.911 -7.129 1.00 44.31 198 A 1 \nATOM 1397 C CA . MET A 1 218 ? -34.179 -3.515 -8.422 1.00 47.24 198 A 1 \nATOM 1398 C C . MET A 1 218 ? -34.627 -4.957 -8.486 1.00 46.38 198 A 1 \nATOM 1399 O O . MET A 1 218 ? -35.114 -5.402 -9.512 1.00 50.52 198 A 1 \nATOM 1400 C CB . MET A 1 218 ? -32.680 -3.390 -8.679 1.00 54.09 198 A 1 \nATOM 1401 C CG . MET A 1 218 ? -32.400 -2.147 -9.517 1.00 60.58 198 A 1 \nATOM 1402 S SD . MET A 1 218 ? -30.672 -1.653 -9.534 1.00 72.35 198 A 1 \nATOM 1403 C CE . MET A 1 218 ? -29.908 -3.254 -9.857 1.00 73.64 198 A 1 \nATOM 1404 N N . LEU A 1 219 ? -34.475 -5.677 -7.383 1.00 44.77 199 A 1 \nATOM 1405 C CA . LEU A 1 219 ? -34.575 -7.119 -7.401 1.00 43.11 199 A 1 \nATOM 1406 C C . LEU A 1 219 ? -36.009 -7.615 -7.207 1.00 43.08 199 A 1 \nATOM 1407 O O . LEU A 1 219 ? -36.744 -7.093 -6.389 1.00 44.39 199 A 1 \nATOM 1408 C CB . LEU A 1 219 ? -33.672 -7.733 -6.314 1.00 42.69 199 A 1 \nATOM 1409 C CG . LEU A 1 219 ? -32.154 -7.637 -6.505 1.00 42.72 199 A 1 \nATOM 1410 C CD1 . LEU A 1 219 ? -31.457 -8.085 -5.237 1.00 44.98 199 A 1 \nATOM 1411 C CD2 . LEU A 1 219 ? -31.685 -8.492 -7.652 1.00 43.01 199 A 1 \nATOM 1412 N N . ASN A 1 220 ? -36.367 -8.666 -7.951 1.00 43.14 200 A 1 \nATOM 1413 C CA . ASN A 1 220 ? -37.619 -9.332 -7.828 1.00 44.12 200 A 1 \nATOM 1414 C C . ASN A 1 220 ? -37.371 -10.508 -6.887 1.00 43.05 200 A 1 \nATOM 1415 O O . ASN A 1 220 ? -36.992 -11.580 -7.325 1.00 45.96 200 A 1 \nATOM 1416 C CB . ASN A 1 220 ? -38.140 -9.775 -9.214 1.00 45.27 200 A 1 \nATOM 1417 C CG . ASN A 1 220 ? -39.423 -10.601 -9.107 1.00 46.55 200 A 1 \nATOM 1418 O OD1 . ASN A 1 220 ? -40.150 -10.530 -8.110 1.00 49.25 200 A 1 \nATOM 1419 N ND2 . ASN A 1 220 ? -39.670 -11.421 -10.111 1.00 44.11 200 A 1 \nATOM 1420 N N . GLY A 1 221 ? -37.515 -10.266 -5.597 1.00 50.43 201 A 1 \nATOM 1421 C CA . GLY A 1 221 ? -37.118 -11.232 -4.562 1.00 55.05 201 A 1 \nATOM 1422 C C . GLY A 1 221 ? -35.731 -10.978 -4.003 1.00 49.85 201 A 1 \nATOM 1423 O O . GLY A 1 221 ? -35.295 -11.697 -3.100 1.00 54.25 201 A 1 \n#\n", + "queryIndices": [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 70, 71, 72, 73, 74, 75, 76], + "templateIndices": [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 70, 71, 72, 73, 74, 75, 76, 77, 78, 79] + } + ] + } + }, + { + "dna": { + "id": "B", + "sequence": "TTTCGGTGGCTGTCAAGCGGG", + "modifications": [] + } + }, + { + "dna": { + "id": "C", + "sequence": "CCCGCTTGACAGCCACCGAAA", + "modifications": [] + } + } + ], + "modelSeeds": [ + 101 + ], + "bondedAtomPairs": null, + "userCCD": null +} \ No newline at end of file diff --git a/inputs/t1119_search.json b/inputs/t1119_search.json new file mode 100644 index 0000000000000000000000000000000000000000..e13a51338ff3d6fc19a90c6429cc7ede27c066e4 --- /dev/null +++ b/inputs/t1119_search.json @@ -0,0 +1,19 @@ +{ + "dialect": "alphafold3", + "version": 1, + "name": "T1119", + "sequences": [ + { + "protein": { + "id": "A", + "sequence": "QLEDSEVEAVAKGLEEMYANGVTEDNFKNYVKNNFAQQEISSVEEELNVNISDSCVANKIKDEFFAMISISAIVKAAQKKAWKELAVTVLRFAKANGLKTNAIIVAGQLALWAVQCG" + } + } + ], + "modelSeeds": [ + 100 + ], + "bondedAtomPairs": null, + "userCCD": null +} + diff --git a/scripts/infer.sh b/scripts/infer.sh new file mode 100644 index 0000000000000000000000000000000000000000..d7c6b708d0d38a784b19d1bd654b3c3b100d3bcb --- /dev/null +++ b/scripts/infer.sh @@ -0,0 +1,28 @@ +#!/bin/bash +set -euo pipefail + +SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" +PROJECT_ROOT="$(cd "${SCRIPT_DIR}/.." && pwd)" + + + +export TF_CPP_MIN_LOG_LEVEL="${TF_CPP_MIN_LOG_LEVEL:-0}" +export XLA_PYTHON_CLIENT_MEM_FRACTION="${XLA_PYTHON_CLIENT_MEM_FRACTION:-0.95}" +export TRITON_ENABLE_GLOBAL_TO_LOCAL="${TRITON_ENABLE_GLOBAL_TO_LOCAL:-1}" +export TRITON_USE_MAKE_BLOCK_PTR="${TRITON_USE_MAKE_BLOCK_PTR:-1}" +export TRITON_DEFAULT_ENABLE_NUM_VGPRS512="${TRITON_DEFAULT_ENABLE_NUM_VGPRS512:-1}" + +MODEL_ROOT="${ONESCIENCE_MODELS_DIR:-${PROJECT_ROOT}/weight}" +MODEL_DIR="${ALPHAFOLD3_MODEL_DIR:-${MODEL_ROOT}}" +JSON_PATH="${ALPHAFOLD3_JSON_PATH:-${PROJECT_ROOT}/inputs/7r6r_data.json}" +OUTPUT_DIR="${ALPHAFOLD3_OUTPUT_DIR:-${PROJECT_ROOT}/outputs}" +FLASH_ATTENTION="${ALPHAFOLD3_FLASH_ATTENTION:-triton}" + +mkdir -p "${OUTPUT_DIR}" + +python "${PROJECT_ROOT}/scripts/run_alphafold.py" \ + --json_path="${JSON_PATH}" \ + --model_dir="${MODEL_DIR}" \ + --output_dir="${OUTPUT_DIR}" \ + --run_data_pipeline=false \ + --flash_attention_implementation="${FLASH_ATTENTION}" diff --git a/scripts/infer_jackhmmer.sh b/scripts/infer_jackhmmer.sh new file mode 100644 index 0000000000000000000000000000000000000000..1c2b608aa0684c57ed053fa2fce0645271906ed2 --- /dev/null +++ b/scripts/infer_jackhmmer.sh @@ -0,0 +1,53 @@ +#!/bin/bash +set -euo pipefail + +SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" +PROJECT_ROOT="$(cd "${SCRIPT_DIR}/.." && pwd)" + + +export PATH="${PROJECT_ROOT}/flax_model/alphafold3/_tools/hmmer/bin:${PATH}" +export TF_CPP_MIN_LOG_LEVEL="${TF_CPP_MIN_LOG_LEVEL:-0}" +export JAX_TRACEBACK_FILTERING="${JAX_TRACEBACK_FILTERING:-off}" +export XLA_CLIENT_MEM_FRACTION="${XLA_CLIENT_MEM_FRACTION:-0.95}" +export TRITON_ENABLE_GLOBAL_TO_LOCAL="${TRITON_ENABLE_GLOBAL_TO_LOCAL:-1}" +export TRITON_USE_MAKE_BLOCK_PTR="${TRITON_USE_MAKE_BLOCK_PTR:-1}" +export TRITON_DEFAULT_ENABLE_NUM_VGPRS512="${TRITON_DEFAULT_ENABLE_NUM_VGPRS512:-1}" +export HIP_VISIBLE_DEVICES="${HIP_VISIBLE_DEVICES:-0}" + +MODEL_ROOT="${ONESCIENCE_MODELS_DIR:-${PROJECT_ROOT}/weight}" +MODEL_DIR="${ALPHAFOLD3_MODEL_DIR:-${MODEL_ROOT}}" +DATASET_ROOT="${ALPHAFOLD3_DATASET_ROOT:-${ONESCIENCE_DATASETS_DIR:-${PROJECT_ROOT}/data}/alphafold3}" +DB_DIRS="${ALPHAFOLD3_DB_DIR:-${DATASET_ROOT}/public_databases}" +MMSEQS_DB_DIRS="${ALPHAFOLD3_MMSEQS_DB_DIR:-${DATASET_ROOT}/mmseqsDB}" +JSON_PATH="${ALPHAFOLD3_JSON_PATH:-${PROJECT_ROOT}/inputs/t1119_search.json}" +OUTPUT_DIR="${ALPHAFOLD3_OUTPUT_DIR:-${PROJECT_ROOT}/outputs}" +RUN_INFERENCE="${ALPHAFOLD3_RUN_INFERENCE:-false}" +FLASH_ATTENTION="${ALPHAFOLD3_FLASH_ATTENTION:-cutlass}" + +mkdir -p "${OUTPUT_DIR}" + +python "${PROJECT_ROOT}/scripts/run_alphafold.py" \ + --json_path="${JSON_PATH}" \ + --model_dir="${MODEL_DIR}" \ + --output_dir="${OUTPUT_DIR}" \ + --run_data_pipeline=true \ + --run_inference="${RUN_INFERENCE}" \ + --flash_attention_implementation="${FLASH_ATTENTION}" \ + --use_mmseqs=false \ + --use_mmseqs_gpu=false \ + --db_dir="${DB_DIRS}" \ + --mmseqs_db_dir="${MMSEQS_DB_DIRS}" \ + --small_bfd_database_path="${DATASET_ROOT}/jackhmmer_split/bfd-first_non_consensus_sequences.fasta@64" \ + --small_bfd_z_value=65928866 \ + --mgnify_database_path="${DATASET_ROOT}/jackhmmer_split/mgy_clusters_2022_05.fa@512" \ + --mgnify_z_value=623796864 \ + --uniprot_cluster_annot_database_path="${DATASET_ROOT}/jackhmmer_split/uniprot_cluster_annot_2021_04.fa@256" \ + --uniprot_cluster_annot_z_value=225619586 \ + --uniref90_database_path="${DATASET_ROOT}/jackhmmer_split/uniref90_2022_05.fa@128" \ + --uniref90_z_value=153742194 \ + --jackhmmer_n_cpu="${ALPHAFOLD3_JACKHMMER_N_CPU:-2}" \ + --jackhmmer_max_parallel_shards="${ALPHAFOLD3_JACKHMMER_MAX_PARALLEL_SHARDS:-1}" \ + --jackhmmer_max_threads="${ALPHAFOLD3_JACKHMMER_MAX_THREADS:-8}" \ + --nhmmer_n_cpu="${ALPHAFOLD3_NHMMER_N_CPU:-2}" \ + --nhmmer_max_parallel_shards="${ALPHAFOLD3_NHMMER_MAX_PARALLEL_SHARDS:-1}" \ + --nhmmer_max_threads="${ALPHAFOLD3_NHMMER_MAX_THREADS:-8}" diff --git a/scripts/infer_mmseqs.sh b/scripts/infer_mmseqs.sh new file mode 100644 index 0000000000000000000000000000000000000000..6d7d12df28ee5b474e53cea8eb82be25561a40ea --- /dev/null +++ b/scripts/infer_mmseqs.sh @@ -0,0 +1,42 @@ +#!/bin/bash +set -euo pipefail + +SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" +PROJECT_ROOT="$(cd "${SCRIPT_DIR}/.." && pwd)" + +MODEL_ROOT="${ONESCIENCE_MODELS_DIR:-${PROJECT_ROOT}/weight}" +MODEL_DIR="${ALPHAFOLD3_MODEL_DIR:-${MODEL_ROOT}}" +MMSEQS_HOME="${ALPHAFOLD3_MMSEQS_HOME:-${MODEL_DIR}/mmseqs}" +export PATH="${MMSEQS_HOME}/bin:${PATH}" +export LD_LIBRARY_PATH="${MMSEQS_HOME}/lib:${LD_LIBRARY_PATH:-}" +export TF_CPP_MIN_LOG_LEVEL="${TF_CPP_MIN_LOG_LEVEL:-0}" +export JAX_TRACEBACK_FILTERING="${JAX_TRACEBACK_FILTERING:-off}" +export XLA_PYTHON_CLIENT_ALLOCATOR="${XLA_PYTHON_CLIENT_ALLOCATOR:-platform}" +export TRITON_ENABLE_GLOBAL_TO_LOCAL="${TRITON_ENABLE_GLOBAL_TO_LOCAL:-1}" +export TRITON_USE_MAKE_BLOCK_PTR="${TRITON_USE_MAKE_BLOCK_PTR:-1}" +export TRITON_DEFAULT_ENABLE_NUM_VGPRS512="${TRITON_DEFAULT_ENABLE_NUM_VGPRS512:-1}" +export HIP_VISIBLE_DEVICES="${HIP_VISIBLE_DEVICES:-0}" + +DATASET_ROOT="${ALPHAFOLD3_DATASET_ROOT:-${ONESCIENCE_DATASETS_DIR:-${PROJECT_ROOT}/data}/alphafold3}" +DB_DIRS="${ALPHAFOLD3_DB_DIR:-${DATASET_ROOT}/public_databases}" +MMSEQS_DB_DIRS="${ALPHAFOLD3_MMSEQS_DB_DIR:-${DATASET_ROOT}/mmseqsDB}" +JSON_PATH="${ALPHAFOLD3_JSON_PATH:-${PROJECT_ROOT}/inputs/t1119_search.json}" +OUTPUT_DIR="${ALPHAFOLD3_OUTPUT_DIR:-${PROJECT_ROOT}/outputs}" +RUN_INFERENCE="${ALPHAFOLD3_RUN_INFERENCE:-false}" +FLASH_ATTENTION="${ALPHAFOLD3_FLASH_ATTENTION:-triton}" +MMSEQS_OPTIONS="${ALPHAFOLD3_MMSEQS_OPTIONS:---num-iterations 1 --db-load-mode 2 -a --max-seqs 10000 --prefilter-mode 3}" + +mkdir -p "${OUTPUT_DIR}" + +python "${PROJECT_ROOT}/scripts/run_alphafold.py" \ + --json_path="${JSON_PATH}" \ + --model_dir="${MODEL_DIR}" \ + --output_dir="${OUTPUT_DIR}" \ + --run_data_pipeline=true \ + --run_inference="${RUN_INFERENCE}" \ + --flash_attention_implementation="${FLASH_ATTENTION}" \ + --db_dir="${DB_DIRS}" \ + --mmseqs_db_dir="${MMSEQS_DB_DIRS}" \ + --use_mmseqs=true \ + --use_mmseqs_gpu=true \ + --mmseqs_options="${MMSEQS_OPTIONS}" diff --git a/scripts/preflight.py b/scripts/preflight.py new file mode 100644 index 0000000000000000000000000000000000000000..da5dde34364fb8d93d0b3a633ac7f13930241440 --- /dev/null +++ b/scripts/preflight.py @@ -0,0 +1,89 @@ +#!/usr/bin/env python3 +from __future__ import annotations + +import argparse +import hashlib +import json +from pathlib import Path + +try: + import yaml +except ImportError as exc: + raise SystemExit("PyYAML is required for preflight: pip install pyyaml") from exc + + +MODEL_FILES = { + "af3.bin": (1146811260, "a43670ea1fae790cd30ccc8c8bf836c4098014c45250fb310a5338407e321de7"), + "libflash_atten_c.so": (75882104, "2ea956e8d13317dd795ffce846079f20e502a39df66802f485d5f25900ef493b"), + "mmseqs/bin/mmseqs": (14417192, "d166c67ca79089ea5f89ec1133f67ab1c216e1734a0408bbc7205e588fe865ed"), + "mmseqs/lib/libmarv.so": (58277568, "fdc787467b6d05d36db1f034a2cb8944b5b072bbe6d46172013810a066583928"), +} + +DATASET_REQUIRED = [ + "infer_input_data/readme.md", + "infer_input_data/all_data/7r6r_data.json", + "infer_input_data/all_data/t1119_data.json", + "public_databases/pdb_seqres_2022_09_28.fasta", + "mmseqsDB/small_bfd_db", + "mmseqsDB/small_bfd_db.dbtype", + "jackhmmer_split/bfd-first_non_consensus_sequences.fasta-00000-of-00064", +] + + +def sha256(path: Path) -> str: + h = hashlib.sha256() + with path.open("rb") as f: + for chunk in iter(lambda: f.read(1024 * 1024), b""): + h.update(chunk) + return h.hexdigest() + + +def check_json(path: Path) -> None: + data = json.loads(path.read_text(encoding="utf-8")) + if data.get("dialect") != "alphafold3": + raise AssertionError(f"{path} dialect is not alphafold3") + if not data.get("name"): + raise AssertionError(f"{path} missing name") + if not isinstance(data.get("sequences"), list) or not data["sequences"]: + raise AssertionError(f"{path} missing sequences") + + +def main() -> None: + parser = argparse.ArgumentParser() + parser.add_argument("--root", default=".") + parser.add_argument("--dataset-root", default="data/alphafold3_dataset") + parser.add_argument("--model-dir", default="checkpoints/AlphaFold3") + parser.add_argument("--skip-hash", action="store_true") + args = parser.parse_args() + + root = Path(args.root).resolve() + model_dir = (root / args.model_dir).resolve() + dataset_root = (root / args.dataset_root).resolve() + + config = yaml.safe_load((root / "conf" / "alphafold3_paths.yaml").read_text(encoding="utf-8")) + if config["model"]["repo_id"] != "OneScience/AlphaFold3/": + raise AssertionError("model repo_id mismatch in conf/alphafold3_paths.yaml") + if config["dataset"]["repo_id"] != "OneScience/AlphaFold3_dataset": + raise AssertionError("dataset repo_id mismatch in conf/alphafold3_paths.yaml") + + for rel, (size, digest) in MODEL_FILES.items(): + path = model_dir / rel + if not path.is_file(): + raise AssertionError(f"missing model file: {path}") + if path.stat().st_size != size: + raise AssertionError(f"model size mismatch: {path}") + if not args.skip_hash and sha256(path) != digest: + raise AssertionError(f"model sha256 mismatch: {path}") + + for rel in DATASET_REQUIRED: + path = dataset_root / rel + if not path.exists(): + raise AssertionError(f"missing dataset dependency: {path}") + + check_json(root / "inputs" / "7r6r_data.json") + check_json(root / "inputs" / "t1119_search.json") + print("model_preflight_ok: true") + + +if __name__ == "__main__": + main() diff --git a/scripts/run_alphafold.py b/scripts/run_alphafold.py new file mode 100644 index 0000000000000000000000000000000000000000..b54f95ffc82d60f0568c5fa5aa459920492dbb5a --- /dev/null +++ b/scripts/run_alphafold.py @@ -0,0 +1,1194 @@ + + +"""AlphaFold 3 structure prediction script. + +AlphaFold 3 source code is licensed under CC BY-NC-SA 4.0. To view a copy of +this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/ + +To request access to the AlphaFold 3 model parameters, follow the process set +out at https://github.com/google-deepmind/alphafold3. You may only use these +if received directly from Google. Use is subject to terms of use available at +https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md +""" + +from collections.abc import Callable, Sequence +import csv +import dataclasses +import datetime +import functools +import multiprocessing +import os +import pathlib +import shutil +import string +import sys +import textwrap +import time +import typing +from typing import overload + +_PROJECT_ROOT = pathlib.Path(__file__).resolve().parents[1] +if str(_PROJECT_ROOT) not in sys.path: + sys.path.insert(0, str(_PROJECT_ROOT)) + +from absl import app +from absl import flags +from flax_model.alphafold3.common import folding_input +from flax_model.alphafold3.common import resources +from flax_model.alphafold3.constants import chemical_components +import flax_model.alphafold3.cpp as af3_cpp +from flax_model.alphafold3.data import featurisation +from flax_model.alphafold3.data import pipeline +from flax_model.alphafold3.jax.attention import attention +from flax_model.alphafold3.model import features +from flax_model.alphafold3.model import model +from flax_model.alphafold3.model import params +from flax_model.alphafold3.model import post_processing +from flax_model.alphafold3.model.components import utils +import haiku as hk +import jax +from jax import numpy as jnp +import numpy as np + + +_HOME_DIR = pathlib.Path(os.environ.get('HOME', _PROJECT_ROOT)) +_MODELS_ROOT = pathlib.Path( + os.environ.get('ONESCIENCE_MODELS_DIR', _PROJECT_ROOT / 'weight') +) +_DATASETS_ROOT = pathlib.Path( + os.environ.get('ONESCIENCE_DATASETS_DIR', _HOME_DIR) +) / 'alphafold3' +_DEFAULT_MODEL_DIR = pathlib.Path( + os.environ.get('ALPHAFOLD3_MODEL_DIR', _MODELS_ROOT / 'AlphaFold3') +) +_DEFAULT_DB_DIR = pathlib.Path( + os.environ.get('ALPHAFOLD3_DB_DIR', _DATASETS_ROOT / 'public_databases') +) +_DEFAULT_MMSEQS_DB_DIR = pathlib.Path( + os.environ.get('ALPHAFOLD3_MMSEQS_DB_DIR', _DATASETS_ROOT / 'mmseqsDB') +) + +# Input and output paths. +_JSON_PATH = flags.DEFINE_string( + 'json_path', + None, + 'Path to the input JSON file.', +) +_INPUT_DIR = flags.DEFINE_string( + 'input_dir', + None, + 'Path to the directory containing input JSON files.', +) +_OUTPUT_DIR = flags.DEFINE_string( + 'output_dir', + None, + 'Path to a directory where the results will be saved.', +) +MODEL_DIR = flags.DEFINE_string( + 'model_dir', + _DEFAULT_MODEL_DIR.as_posix(), + 'Path to the model to use for inference.', +) + +# Control which stages to run. +_RUN_DATA_PIPELINE = flags.DEFINE_bool( + 'run_data_pipeline', + True, + 'Whether to run the data pipeline on the fold inputs.', +) +_RUN_INFERENCE = flags.DEFINE_bool( + 'run_inference', + True, + 'Whether to run inference on the fold inputs.', +) + + +_DEFAULT_MMSEQS_OPTIONS ='--num-iterations 1 --db-load-mode 2 -a --max-seqs 10000 --prefilter-mode 1' +_DEFAULT_R2MSA_OPTIONS ='--filter-msa 1 --filter-min-enable 1000 --diff 3000 --qid 0.0,0.2,0.4,0.6,0.8,1.0 --qsc 0 --max-seq-id 0.95' +_AF3_DIR = _PROJECT_ROOT / 'flax_model' / 'alphafold3' +_HMMER_BIN_DIR = _AF3_DIR / '_tools' / 'hmmer' / 'bin' + + +def _resolve_af3_tool(binary_name: str) -> str | None: + local_binary = _HMMER_BIN_DIR / binary_name + if local_binary.exists(): + return str(local_binary) + return shutil.which(binary_name) + + +def _available_cpu_count() -> int: + if hasattr(os, 'sched_getaffinity'): + return len(os.sched_getaffinity(0)) + return multiprocessing.cpu_count() + + +_USE_MMSEQS = flags.DEFINE_bool( + 'use_mmseqs', + False, + 'Whether to use mmseqs for protein MSA search', +) +_USE_MMSEQS_GPU = flags.DEFINE_bool( + 'use_mmseqs_gpu', + False, + 'Whether to use mmseqs GPU for protein MSA search', +) +_MMSEQS_OPTIONS = flags.DEFINE_string( + 'mmseqs_options', + _DEFAULT_MMSEQS_OPTIONS, + 'mmseqs serach options', +) +_R2MSA_OPTIONS = flags.DEFINE_string( + 'result2msa_options', + _DEFAULT_R2MSA_OPTIONS, + 'mmseqs result2msa options', +) + + +# Binary paths. +_JACKHMMER_BINARY_PATH = flags.DEFINE_string( + 'jackhmmer_binary_path', + _resolve_af3_tool('jackhmmer'), + 'Path to the Jackhmmer binary.', +) +_NHMMER_BINARY_PATH = flags.DEFINE_string( + 'nhmmer_binary_path', + _resolve_af3_tool('nhmmer'), + 'Path to the Nhmmer binary.', +) +_HMMALIGN_BINARY_PATH = flags.DEFINE_string( + 'hmmalign_binary_path', + _resolve_af3_tool('hmmalign'), + 'Path to the Hmmalign binary.', +) +_HMMSEARCH_BINARY_PATH = flags.DEFINE_string( + 'hmmsearch_binary_path', + _resolve_af3_tool('hmmsearch'), + 'Path to the Hmmsearch binary.', +) +_HMMBUILD_BINARY_PATH = flags.DEFINE_string( + 'hmmbuild_binary_path', + _resolve_af3_tool('hmmbuild'), + 'Path to the Hmmbuild binary.', +) +_MMSEQS_BINARY_PATH = flags.DEFINE_string( + 'mmseqs_binary_path', + shutil.which('mmseqs'), + 'Path to the mmseqs binary.', +) + +# Database paths. +DB_DIR = flags.DEFINE_multi_string( + 'db_dir', + (_DEFAULT_DB_DIR.as_posix(),), + 'Path to the directory containing the databases. Can be specified multiple' + ' times to search multiple directories in order.', +) +MMSEQS_DB_DIR = flags.DEFINE_multi_string( + 'mmseqs_db_dir', + (_DEFAULT_MMSEQS_DB_DIR.as_posix(),), + 'Path to the directory containing the mmseqs databases. Can be specified multiple' + ' times to search multiple directories in order.', +) + +_SMALL_BFD_DATABASE_PATH = flags.DEFINE_string( + 'small_bfd_database_path', + '${DB_DIR}/bfd-first_non_consensus_sequences.fasta', + 'Small BFD database path, used for protein MSA search.', +) +_SMALL_BFD_Z_VALUE = flags.DEFINE_integer( + 'small_bfd_z_value', + None, + 'The Z-value representing the database size in number of sequences for' + ' E-value calculation. Must be set for sharded databases.', + lower_bound=0, +) +_MGNIFY_DATABASE_PATH = flags.DEFINE_string( + 'mgnify_database_path', + '${DB_DIR}/mgy_clusters_2022_05.fa', + 'Mgnify database path, used for protein MSA search.', +) +_MGNIFY_Z_VALUE = flags.DEFINE_integer( + 'mgnify_z_value', + None, + 'The Z-value representing the database size in number of sequences for' + ' E-value calculation. Must be set for sharded databases.', + lower_bound=0, +) +_UNIPROT_CLUSTER_ANNOT_DATABASE_PATH = flags.DEFINE_string( + 'uniprot_cluster_annot_database_path', + '${DB_DIR}/uniprot_all_2021_04.fa', + 'UniProt database path, used for protein paired MSA search.', +) +_UNIPROT_CLUSTER_ANNOT_Z_VALUE = flags.DEFINE_integer( + 'uniprot_cluster_annot_z_value', + None, + 'The Z-value representing the database size in number of sequences for' + ' E-value calculation. Must be set for sharded databases.', + lower_bound=0, +) +_UNIREF90_DATABASE_PATH = flags.DEFINE_string( + 'uniref90_database_path', + '${DB_DIR}/uniref90_2022_05.fa', + 'UniRef90 database path, used for MSA search. The MSA obtained by ' + 'searching it is used to construct the profile for template search.', +) +_UNIREF90_Z_VALUE = flags.DEFINE_integer( + 'uniref90_z_value', + None, + 'The Z-value representing the database size in number of sequences for' + ' E-value calculation. Must be set for sharded databases.', + lower_bound=0, +) +_NTRNA_DATABASE_PATH = flags.DEFINE_string( + 'ntrna_database_path', + '${DB_DIR}/nt_rna_2023_02_23_clust_seq_id_90_cov_80_rep_seq.fasta', + 'NT-RNA database path, used for RNA MSA search.', +) +_NTRNA_Z_VALUE = flags.DEFINE_float( + 'ntrna_z_value', + None, + 'The Z-value representing the database size in megabases for E-value' + ' calculation. Must be set for sharded databases.', + lower_bound=0.0, +) +_RFAM_DATABASE_PATH = flags.DEFINE_string( + 'rfam_database_path', + '${DB_DIR}/rfam_14_9_clust_seq_id_90_cov_80_rep_seq.fasta', + 'Rfam database path, used for RNA MSA search.', +) +_RFAM_Z_VALUE = flags.DEFINE_float( + 'rfam_z_value', + None, + 'The Z-value representing the database size in megabases for E-value' + ' calculation. Must be set for sharded databases.', + lower_bound=0.0, +) +_RNA_CENTRAL_DATABASE_PATH = flags.DEFINE_string( + 'rna_central_database_path', + '${DB_DIR}/rnacentral_active_seq_id_90_cov_80_linclust.fasta', + 'RNAcentral database path, used for RNA MSA search.', +) +_RNA_CENTRAL_Z_VALUE = flags.DEFINE_float( + 'rna_central_z_value', + None, + 'The Z-value representing the database size in megabases for E-value' + ' calculation. Must be set for sharded databases.', + lower_bound=0.0, +) +_PDB_DATABASE_PATH = flags.DEFINE_string( + 'pdb_database_path', + '${DB_DIR}/mmcif_files', + 'PDB database directory with mmCIF files path, used for template search.', +) +_SEQRES_DATABASE_PATH = flags.DEFINE_string( + 'seqres_database_path', + '${DB_DIR}/pdb_seqres_2022_09_28.fasta', + 'PDB sequence database path, used for template search.', +) + +# MMSEQS Database paths. +_MMSEQS_SMALL_BFD_DATABASE_PATH = flags.DEFINE_string( + 'mmseqs_small_bfd_database_path', + '${MMSEQS_DB_DIR}/small_bfd_db', + 'Small BFD database path, used for protein MSA search.', +) +_MMSEQS_MGNIFY_DATABASE_PATH = flags.DEFINE_string( + 'mmseqs_mgnify_database_path', + '${MMSEQS_DB_DIR}/mgnify_db', + 'Mgnify database path, used for protein MSA search.', +) +_MMSEQS_UNIPROT_CLUSTER_ANNOT_DATABASE_PATH = flags.DEFINE_string( + 'mmseqs_uniprot_cluster_annot_database_path', + '${MMSEQS_DB_DIR}/uniprot_cluster_annot_db', + 'UniProt database path, used for protein paired MSA search.', +) +_MMSEQS_UNIREF90_DATABASE_PATH = flags.DEFINE_string( + 'mmseqs_uniref90_database_path', + '${MMSEQS_DB_DIR}/uniref90_db', + 'UniRef90 database path, used for MSA search. ', +) + +_JACKHMMER_MAX_THREADS = flags.DEFINE_integer( + 'jackhmmer_max_threads', + None, + 'Maximum number of threads used when running sharded databases. If unset,' + ' defaults to None (no limit).', + lower_bound=1, +) +# Number of CPUs to use for MSA tools. +_JACKHMMER_N_CPU = flags.DEFINE_integer( + 'jackhmmer_n_cpu', + # Unfortunately, os.process_cpu_count() is only available in Python 3.13+. + min(_available_cpu_count(), 8), + 'Number of CPUs to use for Jackhmmer. Defaults to min(cpu_count, 8). Going' + ' above 8 CPUs provides very little additional speedup.', + lower_bound=0, +) +_JACKHMMER_MAX_PARALLEL_SHARDS = flags.DEFINE_integer( + 'jackhmmer_max_parallel_shards', + None, + 'Maximum number of shards to search against in parallel. If unset, one' + ' Jackhmmer instance will be run per shard. Only applicable if the' + ' database is sharded.', + lower_bound=1, +) +_NHMMER_N_CPU = flags.DEFINE_integer( + 'nhmmer_n_cpu', + # Unfortunately, os.process_cpu_count() is only available in Python 3.13+. + min(_available_cpu_count(), 8), + 'Number of CPUs to use for Nhmmer. Defaults to min(cpu_count, 8). Going' + ' above 8 CPUs provides very little additional speedup.', + lower_bound=0, +) +_NHMMER_MAX_PARALLEL_SHARDS = flags.DEFINE_integer( + 'nhmmer_max_parallel_shards', + None, + 'Maximum number of shards to search against in parallel. If unset, one' + ' Nhmmer instance will be run per shard. Only applicable if the' + ' database is sharded.', + lower_bound=1, +) +_NHMMER_MAX_THREADS = flags.DEFINE_integer( + 'nhmmer_max_threads', + None, + 'Maximum number of threads used when running sharded databases. If unset,' + ' defaults to None (no limit).', + lower_bound=1, +) +# Data pipeline configuration. +_RESOLVE_MSA_OVERLAPS = flags.DEFINE_bool( + 'resolve_msa_overlaps', + True, + 'Whether to deduplicate unpaired MSA against paired MSA. The default' + ' behaviour matches the method described in the AlphaFold 3 paper. Set this' + ' to false if providing custom paired MSA using the unpaired MSA field to' + ' keep it exactly as is as deduplication against the paired MSA could break' + ' the manually crafted pairing between MSA sequences.', +) +_MMSEQS_N_CPU = flags.DEFINE_integer( + 'mmseqs_n_cpu', + min(multiprocessing.cpu_count(), 8), + 'Number of CPUs to use for MMseqs. Default to min(cpu_count, 8). Going' + ' beyond 8 CPUs provides very little additional speedup.', +) + +# Template search configuration. +_MAX_TEMPLATE_DATE = flags.DEFINE_string( + 'max_template_date', + '2021-09-30', # By default, use the date from the AlphaFold 3 paper. + 'Maximum template release date to consider. Format: YYYY-MM-DD. All' + ' templates released after this date will be ignored. Controls also whether' + ' to allow use of model coordinates for a chemical component from the CCD' + ' if RDKit conformer generation fails and the component does not have ideal' + ' coordinates set. Only for components that have been released before this' + ' date the model coordinates can be used as a fallback.', +) + +_CONFORMER_MAX_ITERATIONS = flags.DEFINE_integer( + 'conformer_max_iterations', + None, # Default to RDKit default parameters value. + 'Optional override for maximum number of iterations to run for RDKit ' + 'conformer search.', + lower_bound=0, +) + +# JAX inference performance tuning. +_JAX_COMPILATION_CACHE_DIR = flags.DEFINE_string( + 'jax_compilation_cache_dir', + None, + 'Path to a directory for the JAX compilation cache.', +) +_GPU_DEVICE = flags.DEFINE_integer( + 'gpu_device', + 0, + 'Optional override for the GPU device to use for inference, uses zero-based' + ' indexing. Defaults to the 0th GPU on the system. Useful on multi-GPU' + ' systems to pin each run to a specific GPU. Note that if GPUs are already' + ' pre-filtered by the environment (e.g. by using CUDA_VISIBLE_DEVICES),' + ' this flag refers to the GPU index after the filtering has been done.', +) +_BUCKETS = flags.DEFINE_list( + 'buckets', + # pyformat: disable + ['256', '512', '768', '1024', '1280', '1536', '2048', '2560', '3072', + '3584', '4096', '4608', '5120'], + # pyformat: enable + 'Strictly increasing order of token sizes for which to cache compilations.' + ' For any input with more tokens than the largest bucket size, a new bucket' + ' is created for exactly that number of tokens.', +) +_FLASH_ATTENTION_IMPLEMENTATION = flags.DEFINE_enum( + 'flash_attention_implementation', + default='triton', + enum_values=['triton', 'cudnn', 'xla', 'cutlass',], + help=( + "Flash attention implementation to use. 'triton' and 'cudnn' uses a" + ' Triton and cuDNN flash attention implementation, respectively. The' + ' Triton kernel is fastest and has been tested more thoroughly. The' + " Triton and cuDNN kernels require Ampere GPUs or later. 'xla' uses an" + ' XLA attention implementation (no flash attention) and is portable' + ' across GPU devices.' + ), +) +_NUM_RECYCLES = flags.DEFINE_integer( + 'num_recycles', + 10, + 'Number of recycles to use during inference.', + lower_bound=1, +) +_NUM_DIFFUSION_SAMPLES = flags.DEFINE_integer( + 'num_diffusion_samples', + 5, + 'Number of diffusion samples to generate.', + lower_bound=1, +) +_NUM_SEEDS = flags.DEFINE_integer( + 'num_seeds', + None, + 'Number of seeds to use for inference. If set, only a single seed must be' + ' provided in the input JSON. AlphaFold 3 will then generate random seeds' + ' in sequence, starting from the single seed specified in the input JSON.' + ' The full input JSON produced by AlphaFold 3 will include the generated' + ' random seeds. If not set, AlphaFold 3 will use the seeds as provided in' + ' the input JSON.', + lower_bound=1, +) + +# Output controls. +_SAVE_EMBEDDINGS = flags.DEFINE_bool( + 'save_embeddings', + False, + 'Whether to save the final trunk single and pair embeddings in the output.' + ' Note that the embeddings are large float16 arrays: num_tokens * 384' + ' + num_tokens * num_tokens * 128.', +) +_SAVE_DISTOGRAM = flags.DEFINE_bool( + 'save_distogram', + False, + 'Whether to save the final distogram in the output. Note that the distogram' + ' is a large float16 array: num_tokens * num_tokens * 64.', +) +_FORCE_OUTPUT_DIR = flags.DEFINE_bool( + 'force_output_dir', + False, + 'Whether to force the output directory to be used even if it already exists' + ' and is non-empty. Useful to set this to True to run the data pipeline and' + ' the inference separately, but use the same output directory.', +) + + +def make_model_config( + *, + flash_attention_implementation: attention.Implementation = 'triton', + num_diffusion_samples: int = 5, + num_recycles: int = 10, + return_embeddings: bool = False, + return_distogram: bool = False, +) -> model.Model.Config: + """Returns a model config with some defaults overridden.""" + config = model.Model.Config() + config.global_config.flash_attention_implementation = ( + flash_attention_implementation + ) + config.heads.diffusion.eval.num_samples = num_diffusion_samples + config.num_recycles = num_recycles + config.return_embeddings = return_embeddings + config.return_distogram = return_distogram + return config + + +class ModelRunner: + """Helper class to run structure prediction stages.""" + + def __init__( + self, + config: model.Model.Config, + device: jax.Device, + model_dir: pathlib.Path, + ): + self._model_config = config + self._device = device + self._model_dir = model_dir + + @functools.cached_property + def model_params(self) -> hk.Params: + """Loads model parameters from the model directory.""" + return params.get_model_haiku_params(model_dir=self._model_dir) + + @functools.cached_property + def _model( + self, + ) -> Callable[[jnp.ndarray, features.BatchDict], model.ModelResult]: + """Loads model parameters and returns a jitted model forward pass.""" + + @hk.transform + def forward_fn(batch): + return model.Model(self._model_config)(batch) + + return functools.partial( + jax.jit(forward_fn.apply, device=self._device), self.model_params + ) + + def run_inference( + self, featurised_example: features.BatchDict, rng_key: jnp.ndarray + ) -> model.ModelResult: + """Computes a forward pass of the model on a featurised example.""" + featurised_example = jax.device_put( + jax.tree_util.tree_map( + jnp.asarray, utils.remove_invalidly_typed_feats(featurised_example) + ), + self._device, + ) + + result = self._model(rng_key, featurised_example) + result = jax.tree.map(np.asarray, result) + result = jax.tree.map( + lambda x: x.astype(jnp.float32) if x.dtype == jnp.bfloat16 else x, + result, + ) + result = dict(result) + identifier = self.model_params['__meta__']['__identifier__'].tobytes() + result['__identifier__'] = identifier + return result + + def extract_inference_results( + self, + batch: features.BatchDict, + result: model.ModelResult, + target_name: str, + ) -> list[model.InferenceResult]: + """Extracts inference results from model outputs.""" + return list( + model.Model.get_inference_result( + batch=batch, result=result, target_name=target_name + ) + ) + + def extract_embeddings( + self, result: model.ModelResult, num_tokens: int + ) -> dict[str, np.ndarray] | None: + """Extracts embeddings from model outputs.""" + embeddings = {} + if 'single_embeddings' in result: + embeddings['single_embeddings'] = result['single_embeddings'][ + :num_tokens + ].astype(np.float16) + if 'pair_embeddings' in result: + embeddings['pair_embeddings'] = result['pair_embeddings'][ + :num_tokens, :num_tokens + ].astype(np.float16) + return embeddings or None + + def extract_distogram( + self, result: model.ModelResult, num_tokens: int + ) -> np.ndarray | None: + """Extracts distogram from model outputs.""" + if 'distogram' not in result['distogram']: + return None + distogram = result['distogram']['distogram'][:num_tokens, :num_tokens, :] + return distogram + + +@dataclasses.dataclass(frozen=True, slots=True, kw_only=True) +class ResultsForSeed: + """Stores the inference results (diffusion samples) for a single seed. + + Attributes: + seed: The seed used to generate the samples. + inference_results: The inference results, one per sample. + full_fold_input: The fold input that must also include the results of + running the data pipeline - MSA and templates. + embeddings: The final trunk single and pair embeddings, if requested. + distogram: The token distance histogram, if requested. + """ + + seed: int + inference_results: Sequence[model.InferenceResult] + full_fold_input: folding_input.Input + embeddings: dict[str, np.ndarray] | None = None + distogram: np.ndarray | None = None + + +def predict_structure( + fold_input: folding_input.Input, + model_runner: ModelRunner, + buckets: Sequence[int] | None = None, + ref_max_modified_date: datetime.date | None = None, + conformer_max_iterations: int | None = None, + resolve_msa_overlaps: bool = True, +) -> Sequence[ResultsForSeed]: + """Runs the full inference pipeline to predict structures for each seed.""" + + print(f'Featurising data with {len(fold_input.rng_seeds)} seed(s)...') + featurisation_start_time = time.time() + ccd = chemical_components.Ccd(user_ccd=fold_input.user_ccd) + featurised_examples = featurisation.featurise_input( + fold_input=fold_input, + buckets=buckets, + ccd=ccd, + verbose=True, + ref_max_modified_date=ref_max_modified_date, + conformer_max_iterations=conformer_max_iterations, + resolve_msa_overlaps=resolve_msa_overlaps, + ) + print( + f'Featurising data with {len(fold_input.rng_seeds)} seed(s) took' + f' {time.time() - featurisation_start_time:.2f} seconds.' + ) + print( + 'Running model inference and extracting output structure samples with' + f' {len(fold_input.rng_seeds)} seed(s)...' + ) + all_inference_start_time = time.time() + all_inference_results = [] + for seed, example in zip(fold_input.rng_seeds, featurised_examples): + print(f'Running model inference with seed {seed}...') + inference_start_time = time.time() + rng_key = jax.random.PRNGKey(seed) + result = model_runner.run_inference(example, rng_key) + print( + f'Running model inference with seed {seed} took' + f' {time.time() - inference_start_time:.2f} seconds.' + ) + print(f'Extracting inference results with seed {seed}...') + extract_structures = time.time() + inference_results = model_runner.extract_inference_results( + batch=example, result=result, target_name=fold_input.name + ) + num_tokens = len(inference_results[0].metadata['token_chain_ids']) + embeddings = model_runner.extract_embeddings( + result=result, num_tokens=num_tokens + ) + distogram = model_runner.extract_distogram( + result=result, num_tokens=num_tokens + ) + print( + f'Extracting {len(inference_results)} inference samples with' + f' seed {seed} took {time.time() - extract_structures:.2f} seconds.' + ) + + all_inference_results.append( + ResultsForSeed( + seed=seed, + inference_results=inference_results, + full_fold_input=fold_input, + embeddings=embeddings, + distogram=distogram, + ) + ) + print( + 'Running model inference and extracting output structures with' + f' {len(fold_input.rng_seeds)} seed(s) took' + f' {time.time() - all_inference_start_time:.2f} seconds.' + ) + return all_inference_results + + +def write_fold_input_json( + fold_input: folding_input.Input, + output_dir: os.PathLike[str] | str, +) -> None: + """Writes the input JSON to the output directory.""" + os.makedirs(output_dir, exist_ok=True) + path = os.path.join(output_dir, f'{fold_input.sanitised_name()}_data.json') + print(f'Writing model input JSON to {path}') + with open(path, 'wt') as f: + f.write(fold_input.to_json()) + + +def write_outputs( + all_inference_results: Sequence[ResultsForSeed], + output_dir: os.PathLike[str] | str, + job_name: str, +) -> None: + """Writes outputs to the specified output directory.""" + ranking_scores = [] + max_ranking_score = None + max_ranking_result = None + try: + output_terms = ( + pathlib.Path(af3_cpp.__file__).parent / 'OUTPUT_TERMS_OF_USE.md' + ).read_text() + except FileNotFoundError: + output_terms = None + os.makedirs(output_dir, exist_ok=True) + for results_for_seed in all_inference_results: + seed = results_for_seed.seed + for sample_idx, result in enumerate(results_for_seed.inference_results): + sample_dir = os.path.join(output_dir, f'seed-{seed}_sample-{sample_idx}') + os.makedirs(sample_dir, exist_ok=True) + post_processing.write_output( + inference_result=result, + output_dir=sample_dir, + name=f'{job_name}_seed-{seed}_sample-{sample_idx}', + ) + ranking_score = float(result.metadata['ranking_score']) + ranking_scores.append((seed, sample_idx, ranking_score)) + if max_ranking_score is None or ranking_score > max_ranking_score: + max_ranking_score = ranking_score + max_ranking_result = result + + if embeddings := results_for_seed.embeddings: + embeddings_dir = os.path.join(output_dir, f'seed-{seed}_embeddings') + os.makedirs(embeddings_dir, exist_ok=True) + post_processing.write_embeddings( + embeddings=embeddings, + output_dir=embeddings_dir, + name=f'{job_name}_seed-{seed}', + ) + + if (distogram := results_for_seed.distogram) is not None: + distogram_dir = os.path.join(output_dir, f'seed-{seed}_distogram') + os.makedirs(distogram_dir, exist_ok=True) + distogram_path = os.path.join( + distogram_dir, f'{job_name}_seed-{seed}_distogram.npz' + ) + with open(distogram_path, 'wb') as f: + np.savez_compressed(f, distogram=distogram.astype(np.float16)) + + if max_ranking_result is not None: # True iff ranking_scores non-empty. + post_processing.write_output( + inference_result=max_ranking_result, + output_dir=output_dir, + # The output terms of use are the same for all seeds/samples. + terms_of_use=output_terms, + name=job_name, + ) + # Save csv of ranking scores with seeds and sample indices, to allow easier + # comparison of ranking scores across different runs. + with open( + os.path.join(output_dir, f'{job_name}_ranking_scores.csv'), 'wt' + ) as f: + writer = csv.writer(f) + writer.writerow(['seed', 'sample', 'ranking_score']) + writer.writerows(ranking_scores) + + +def replace_db_dir(path_with_db_dir: str, db_dirs: Sequence[str]) -> str: + """Replaces the DB_DIR placeholder in a path with the given DB_DIR.""" + template = string.Template(path_with_db_dir) + if 'DB_DIR' in template.get_identifiers(): + for db_dir in db_dirs: + path = template.substitute(DB_DIR=db_dir) + if os.path.exists(path): + return path + raise FileNotFoundError( + f'{path_with_db_dir} with ${{DB_DIR}} not found in any of {db_dirs}.' + ) + if not os.path.exists(path_with_db_dir): + raise FileNotFoundError(f'{path_with_db_dir} does not exist.') + return path_with_db_dir + + +def replace_mmseqs_db_dir( + path_with_db_dir: str, + db_dirs: Sequence[str], + mmseqs_db_dirs: Sequence[str] +) -> str: + """Replaces the MMSEQS_DB_DIR placeholder in a path with the given MMSEQS_DB_DIR. + + Args: + path_with_db_dir: Path containing MMSEQS_DB_DIR placeholder + db_dirs: List of database directories + mmseqs_db_dirs: List of mmseqs database directories + use_gpu: Whether to use GPU version of mmseqs databases + + Returns: + The expanded path if found, otherwise raises FileNotFoundError + """ + template = string.Template(path_with_db_dir) + + is_jackhmmer_db = any( + path_with_db_dir.endswith(db) for db in [ + 'bfd-first_non_consensus_sequences.fasta', + 'mgy_clusters_2022_05.fa', + 'uniprot_all_2021_04.fa', + 'uniref90_2022_05.fa' + ] + ) + + if 'MMSEQS_DB_DIR' in template.get_identifiers(): + db_suffixes = [ + 'small_bfd_db', + 'mgnify_db', + 'uniprot_cluster_annot_db', + 'uniref90_db' + ] + + is_mmseqs_db = any( + path_with_db_dir.endswith(suffix) for suffix in db_suffixes + ) + + for mmseqs_db_dir in mmseqs_db_dirs: + path = template.substitute(MMSEQS_DB_DIR=mmseqs_db_dir) + if is_mmseqs_db: + if os.path.exists(path): + return path + else: + return path + + if is_mmseqs_db: + raise FileNotFoundError( + f'{path_with_db_dir} with ${{MMSEQS_DB_DIR}} not found in any of {mmseqs_db_dirs}.' + ) + return template.substitute(MMSEQS_DB_DIR=mmseqs_db_dirs[0]) + + if 'DB_DIR' in template.get_identifiers(): + for db_dir in db_dirs: + path = template.substitute(DB_DIR=db_dir) + if is_jackhmmer_db: + return path + if os.path.exists(path): + return path + if is_jackhmmer_db: + return template.substitute(DB_DIR=db_dirs[0]) + raise FileNotFoundError( + f'{path_with_db_dir} with ${{DB_DIR}} not found in any of {db_dirs}.' + ) + if not is_jackhmmer_db and not os.path.exists(path_with_db_dir): + raise FileNotFoundError(f'{path_with_db_dir} does not exist.') + return path_with_db_dir + + +@overload +def process_fold_input( + fold_input: folding_input.Input, + data_pipeline_config: pipeline.DataPipelineConfig | None, + model_runner: None, + output_dir: os.PathLike[str] | str, + buckets: Sequence[int] | None = None, + ref_max_modified_date: datetime.date | None = None, + conformer_max_iterations: int | None = None, + resolve_msa_overlaps: bool = True, + force_output_dir: bool = False, +) -> folding_input.Input: + ... + + +@overload +def process_fold_input( + fold_input: folding_input.Input, + data_pipeline_config: pipeline.DataPipelineConfig | None, + model_runner: ModelRunner, + output_dir: os.PathLike[str] | str, + buckets: Sequence[int] | None = None, + ref_max_modified_date: datetime.date | None = None, + conformer_max_iterations: int | None = None, + resolve_msa_overlaps: bool = True, + force_output_dir: bool = False, +) -> Sequence[ResultsForSeed]: + ... + + +def process_fold_input( + fold_input: folding_input.Input, + data_pipeline_config: pipeline.DataPipelineConfig | None, + model_runner: ModelRunner | None, + output_dir: os.PathLike[str] | str, + buckets: Sequence[int] | None = None, + ref_max_modified_date: datetime.date | None = None, + conformer_max_iterations: int | None = None, + resolve_msa_overlaps: bool = True, + force_output_dir: bool = False, +) -> folding_input.Input | Sequence[ResultsForSeed]: + """Runs data pipeline and/or inference on a single fold input. + + Args: + fold_input: Fold input to process. + data_pipeline_config: Data pipeline config to use. If None, skip the data + pipeline. + model_runner: Model runner to use. If None, skip inference. + output_dir: Output directory to write to. + buckets: Bucket sizes to pad the data to, to avoid excessive re-compilation + of the model. If None, calculate the appropriate bucket size from the + number of tokens. If not None, must be a sequence of at least one integer, + in strictly increasing order. Will raise an error if the number of tokens + is more than the largest bucket size. + ref_max_modified_date: Optional maximum date that controls whether to allow + use of model coordinates for a chemical component from the CCD if RDKit + conformer generation fails and the component does not have ideal + coordinates set. Only for components that have been released before this + date the model coordinates can be used as a fallback. + conformer_max_iterations: Optional override for maximum number of iterations + to run for RDKit conformer search. + resolve_msa_overlaps: Whether to deduplicate unpaired MSA against paired + MSA. The default behaviour matches the method described in the AlphaFold 3 + paper. Set this to false if providing custom paired MSA using the unpaired + MSA field to keep it exactly as is as deduplication against the paired MSA + could break the manually crafted pairing between MSA sequences. + force_output_dir: If True, do not create a new output directory even if the + existing one is non-empty. Instead use the existing output directory and + potentially overwrite existing files. If False, create a new timestamped + output directory instead if the existing one is non-empty. + + Returns: + The processed fold input, or the inference results for each seed. + + Raises: + ValueError: If the fold input has no chains. + """ + print(f'\nRunning fold job {fold_input.name}...') + + if not fold_input.chains: + raise ValueError('Fold input has no chains.') + + if ( + not force_output_dir + and os.path.exists(output_dir) + and os.listdir(output_dir) + ): + new_output_dir = ( + f'{output_dir}_{datetime.datetime.now().strftime("%Y%m%d_%H%M%S")}' + ) + print( + f'Output will be written in {new_output_dir} since {output_dir} is' + ' non-empty.' + ) + output_dir = new_output_dir + else: + print(f'Output will be written in {output_dir}') + + # Create model loader callback function + def load_model_callback(): + if model_runner is not None: + _ = model_runner.model_params + + if data_pipeline_config is None: + print('Skipping data pipeline...') + # Load model immediately when skipping pipeline + if model_runner is not None: + print('Loading model parameters (no pipeline to wait for)...') + load_model_callback() + else: + print('Running data pipeline...') + fold_input = pipeline.DataPipeline(data_pipeline_config, load_model_callback).process(fold_input) + + write_fold_input_json(fold_input, output_dir) + if model_runner is None: + print('Skipping model inference...') + output = fold_input + else: + print( + f'Predicting 3D structure for {fold_input.name} with' + f' {len(fold_input.rng_seeds)} seed(s)...' + ) + all_inference_results = predict_structure( + fold_input=fold_input, + model_runner=model_runner, + buckets=buckets, + ref_max_modified_date=ref_max_modified_date, + conformer_max_iterations=conformer_max_iterations, + resolve_msa_overlaps=resolve_msa_overlaps, + ) + print(f'Writing outputs with {len(fold_input.rng_seeds)} seed(s)...') + write_outputs( + all_inference_results=all_inference_results, + output_dir=output_dir, + job_name=fold_input.sanitised_name(), + ) + output = all_inference_results + + print(f'Fold job {fold_input.name} done, output written to {output_dir}\n') + return output + + +def main(_): + if _JAX_COMPILATION_CACHE_DIR.value is not None: + jax.config.update( + 'jax_compilation_cache_dir', _JAX_COMPILATION_CACHE_DIR.value + ) + + if _JSON_PATH.value is None == _INPUT_DIR.value is None: + raise ValueError( + 'Exactly one of --json_path or --input_dir must be specified.' + ) + + if not _RUN_INFERENCE.value and not _RUN_DATA_PIPELINE.value: + raise ValueError( + 'At least one of --run_inference or --run_data_pipeline must be' + ' set to true.' + ) + + if _INPUT_DIR.value is not None: + fold_inputs = folding_input.load_fold_inputs_from_dir( + pathlib.Path(_INPUT_DIR.value) + ) + elif _JSON_PATH.value is not None: + fold_inputs = folding_input.load_fold_inputs_from_path( + pathlib.Path(_JSON_PATH.value) + ) + else: + raise AssertionError( + 'Exactly one of --json_path or --input_dir must be specified.' + ) + + # Make sure we can create the output directory before running anything. + try: + os.makedirs(_OUTPUT_DIR.value, exist_ok=True) + except OSError as e: + print(f'Failed to create output directory {_OUTPUT_DIR.value}: {e}') + raise + + # if _RUN_INFERENCE.value: + # # Fail early on incompatible devices, but only if we're running inference. + # gpu_devices = jax.local_devices(backend='gpu') + # if gpu_devices: + # compute_capability = float( + # gpu_devices[_GPU_DEVICE.value].compute_capability + # ) + # if compute_capability < 6.0: + # raise ValueError( + # 'AlphaFold 3 requires at least GPU compute capability 6.0 (see' + # ' https://developer.nvidia.com/cuda-gpus).' + # ) + # elif 7.0 <= compute_capability < 8.0: + # xla_flags = os.environ.get('XLA_FLAGS') + # required_flag = '--xla_disable_hlo_passes=custom-kernel-fusion-rewriter' + # if not xla_flags or required_flag not in xla_flags: + # raise ValueError( + # 'For devices with GPU compute capability 7.x (see' + # ' https://developer.nvidia.com/cuda-gpus) the ENV XLA_FLAGS must' + # f' include "{required_flag}".' + # ) + # if _FLASH_ATTENTION_IMPLEMENTATION.value != 'xla': + # raise ValueError( + # 'For devices with GPU compute capability 7.x (see' + # ' https://developer.nvidia.com/cuda-gpus) the' + # ' --flash_attention_implementation must be set to "xla".' + # ) + + notice = textwrap.wrap( + 'Running AlphaFold 3. Please note that standard AlphaFold 3 model' + ' parameters are only available under terms of use provided at' + ' https://github.com/google-deepmind/alphafold3/blob/main/WEIGHTS_TERMS_OF_USE.md.' + ' If you do not agree to these terms and are using AlphaFold 3 derived' + ' model parameters, cancel execution of AlphaFold 3 inference with' + ' CTRL-C, and do not use the model parameters.', + break_long_words=False, + break_on_hyphens=False, + width=80, + ) + print('\n' + '\n'.join(notice) + '\n') + + max_template_date = datetime.date.fromisoformat(_MAX_TEMPLATE_DATE.value) + if _RUN_DATA_PIPELINE.value: + if not _USE_MMSEQS.value: + expand_path = lambda x: replace_db_dir(x, DB_DIR.value) + data_pipeline_config = pipeline.DataPipelineConfig( + jackhmmer_binary_path=_JACKHMMER_BINARY_PATH.value, + nhmmer_binary_path=_NHMMER_BINARY_PATH.value, + hmmalign_binary_path=_HMMALIGN_BINARY_PATH.value, + hmmsearch_binary_path=_HMMSEARCH_BINARY_PATH.value, + hmmbuild_binary_path=_HMMBUILD_BINARY_PATH.value, + mmseqs_binary_path=_MMSEQS_BINARY_PATH.value, + small_bfd_database_path=expand_path(_SMALL_BFD_DATABASE_PATH.value), + small_bfd_z_value=_SMALL_BFD_Z_VALUE.value, + mgnify_database_path=expand_path(_MGNIFY_DATABASE_PATH.value), + mgnify_z_value=_MGNIFY_Z_VALUE.value, + uniprot_cluster_annot_database_path=expand_path( + _UNIPROT_CLUSTER_ANNOT_DATABASE_PATH.value + ), + uniprot_cluster_annot_z_value=_UNIPROT_CLUSTER_ANNOT_Z_VALUE.value, + uniref90_database_path=expand_path(_UNIREF90_DATABASE_PATH.value), + uniref90_z_value=_UNIREF90_Z_VALUE.value, + ntrna_database_path=expand_path(_NTRNA_DATABASE_PATH.value), + ntrna_z_value=_NTRNA_Z_VALUE.value, + rfam_database_path=expand_path(_RFAM_DATABASE_PATH.value), + rfam_z_value=_RFAM_Z_VALUE.value, + rna_central_database_path=expand_path(_RNA_CENTRAL_DATABASE_PATH.value), + rna_central_z_value=_RNA_CENTRAL_Z_VALUE.value, + pdb_database_path=expand_path(_PDB_DATABASE_PATH.value), + seqres_database_path=expand_path(_SEQRES_DATABASE_PATH.value), + jackhmmer_n_cpu=_JACKHMMER_N_CPU.value, + jackhmmer_max_parallel_shards=_JACKHMMER_MAX_PARALLEL_SHARDS.value, + jackhmmer_max_threads=_JACKHMMER_MAX_THREADS.value, + nhmmer_n_cpu=_NHMMER_N_CPU.value, + nhmmer_max_parallel_shards=_NHMMER_MAX_PARALLEL_SHARDS.value, + nhmmer_max_threads=_NHMMER_MAX_THREADS.value, + max_template_date=max_template_date, + use_mmseqs=_USE_MMSEQS.value, + mmseqs_options=_MMSEQS_OPTIONS.value, + result2msa_options=_R2MSA_OPTIONS.value, + ) + else: + expand_path = lambda x: replace_mmseqs_db_dir(x, DB_DIR.value, MMSEQS_DB_DIR.value) + data_pipeline_config = pipeline.DataPipelineConfig( + jackhmmer_binary_path=_JACKHMMER_BINARY_PATH.value, + nhmmer_binary_path=_NHMMER_BINARY_PATH.value, + hmmalign_binary_path=_HMMALIGN_BINARY_PATH.value, + hmmsearch_binary_path=_HMMSEARCH_BINARY_PATH.value, + hmmbuild_binary_path=_HMMBUILD_BINARY_PATH.value, + mmseqs_binary_path=_MMSEQS_BINARY_PATH.value, + small_bfd_database_path=expand_path(_MMSEQS_SMALL_BFD_DATABASE_PATH.value), + mgnify_database_path=expand_path(_MMSEQS_MGNIFY_DATABASE_PATH.value), + uniprot_cluster_annot_database_path=expand_path( + _MMSEQS_UNIPROT_CLUSTER_ANNOT_DATABASE_PATH.value + ), + uniref90_database_path=expand_path(_MMSEQS_UNIREF90_DATABASE_PATH.value), + ntrna_database_path=expand_path(_NTRNA_DATABASE_PATH.value), + rfam_database_path=expand_path(_RFAM_DATABASE_PATH.value), + rna_central_database_path=expand_path(_RNA_CENTRAL_DATABASE_PATH.value), + pdb_database_path=expand_path(_PDB_DATABASE_PATH.value), + seqres_database_path=expand_path(_SEQRES_DATABASE_PATH.value), + mmseqs_n_cpu=_MMSEQS_N_CPU.value, + nhmmer_n_cpu=_NHMMER_N_CPU.value, + max_template_date=max_template_date, + use_mmseqs=_USE_MMSEQS.value, + use_mmseqs_gpu=_USE_MMSEQS_GPU.value, + mmseqs_options=_MMSEQS_OPTIONS.value, + result2msa_options=_R2MSA_OPTIONS.value, + ) + else: + data_pipeline_config = None + + if _RUN_INFERENCE.value: + devices = jax.local_devices(backend='gpu') + print( + f'Found local devices: {devices}, using device {_GPU_DEVICE.value}:' + f' {devices[_GPU_DEVICE.value]}' + ) + + print('Building model from scratch...') + model_runner = ModelRunner( + config=make_model_config( + flash_attention_implementation=typing.cast( + attention.Implementation, _FLASH_ATTENTION_IMPLEMENTATION.value + ), + num_diffusion_samples=_NUM_DIFFUSION_SAMPLES.value, + num_recycles=_NUM_RECYCLES.value, + return_embeddings=_SAVE_EMBEDDINGS.value, + return_distogram=_SAVE_DISTOGRAM.value, + ), + device=devices[_GPU_DEVICE.value], + model_dir=pathlib.Path(MODEL_DIR.value), + ) + # Check we can load the model parameters before launching anything. + print('Checking that model parameters can be loaded...') + _ = model_runner.model_params + else: + model_runner = None + + num_fold_inputs = 0 + for fold_input in fold_inputs: + if _NUM_SEEDS.value is not None: + print(f'Expanding fold job {fold_input.name} to {_NUM_SEEDS.value} seeds') + fold_input = fold_input.with_multiple_seeds(_NUM_SEEDS.value) + process_fold_input( + fold_input=fold_input, + data_pipeline_config=data_pipeline_config, + model_runner=model_runner, + output_dir=os.path.join(_OUTPUT_DIR.value, fold_input.sanitised_name()), + buckets=tuple(int(bucket) for bucket in _BUCKETS.value), + ref_max_modified_date=max_template_date, + conformer_max_iterations=_CONFORMER_MAX_ITERATIONS.value, + resolve_msa_overlaps=_RESOLVE_MSA_OVERLAPS.value, + force_output_dir=_FORCE_OUTPUT_DIR.value, + ) + num_fold_inputs += 1 + + print(f'Done running {num_fold_inputs} fold jobs.') + + +if __name__ == '__main__': + flags.mark_flags_as_required(['output_dir']) + app.run(main) diff --git a/tests/check_import_boundaries.py b/tests/check_import_boundaries.py new file mode 100644 index 0000000000000000000000000000000000000000..b18346badea9eefbf5cb41df0fe1444fc3a02228 --- /dev/null +++ b/tests/check_import_boundaries.py @@ -0,0 +1,49 @@ +from pathlib import Path +import re +import sys + + +PROJECT_ROOT = Path(__file__).resolve().parents[1] +LOCAL_ROOTS = ( + PROJECT_ROOT / "flax_model", + PROJECT_ROOT / "model", + PROJECT_ROOT / "scripts", +) + + +def _python_files(root: Path): + return [ + path + for path in root.rglob("*.py") + if "__pycache__" not in path.parts + ] + + +def _check_no_onescience_model_imports(): + pattern = re.compile( + r"onescience\.(flax_models|models)\.", + re.MULTILINE, + ) + offenders = [] + for root in LOCAL_ROOTS: + for path in _python_files(root): + text = path.read_text(encoding="utf-8", errors="ignore") + if pattern.search(text): + offenders.append(str(path.relative_to(PROJECT_ROOT))) + return offenders + + +def main(): + offenders = _check_no_onescience_model_imports() + if offenders: + print("Forbidden onescience model imports:") + for offender in offenders: + print(f" {offender}") + return 1 + + print("Import boundary checks passed") + return 0 + + +if __name__ == "__main__": + sys.exit(main()) diff --git a/weight/README.md b/weight/README.md new file mode 100644 index 0000000000000000000000000000000000000000..c841380cfa6cea8bb67039e60283c3c0caf963e5 --- /dev/null +++ b/weight/README.md @@ -0,0 +1,10 @@ +# weight + +Place AlphaFold3 model weights here for fully local runs, or set +`ALPHAFOLD3_MODEL_DIR`. + +The default lookup order used by the scripts is: + +1. `ALPHAFOLD3_MODEL_DIR` +2. `${ONESCIENCE_MODELS_DIR}/AlphaFold3` +3. `./weight/AlphaFold3`